AK018 – Annotation

Gene IDLength(bp)Gene nameCOGProductNucleotide seqProtein seqPGPT:Locus TagPGPT:EffectPGPT:L1PGPT:L2PGPT:L3PGPT:L4PGPT:L5PGPT:L6
AK018_00001669COG0127dITP/XTP pyrophosphataseATGGCCGGCGCCGCGGCGTCGGCCCCGCACGGCGCACGGCTCGTGCTGGCCACGCACAACCGCAAGAAGCTCGTCGAGCTGCTCGCGATCCTGCGCACCCAGCCCGGTCTCGACGCGCTGCCGGACGACGCCGTCGTCACCGCCGGGGACCTGGAGGCCCCCGAGCCCGTCGAGGACGGCGTGACGTTCGCCGAGAACGCGCTGATCAAGGCCCGCGCCCTGGCGGCCGCGACCGGCCTGCCTGCCGTCGCCGACGACTCGGGCCTGAGCGTCGACGTGCTCGGCGGGGCGCCGGGGATCTTCTCGGCCCGCTGGGCCGGGCGGCACGGCGACGACGTCGCGAACCTGGAGCTGCTGCTCGCGCAGCTCGGCGACGTCCGCGACGAGCACCGCGCGGCGGCGTTCGTGTGCGCGGCGGCGCTGGTCACGCCGGACGGGCGTGAGGAGGTCGCGCTCGGCGAGATGCCCGGCGTGCTGGTCCGTTCCCCGCGCGGTGAGGGCGGTTTCGGCTACGACCCGATCCTCGTGCCGGCCGAGCAGCCCGCGGGTCCGGACGGTTCGCCGGGGACGCGCACCTCGGCCGAGCTGAGCCCTGAGGAGAAGAACGCGATCAGCCACCGCGGCAAGGCGCTGCGGTCGCTCGCTCCGGCGGTCGCCGCCGCGCTCTGAMAGAAASAPHGARLVLATHNRKKLVELLAILRTQPGLDALPDDAVVTAGDLEAPEPVEDGVTFAENALIKARALAAATGLPAVADDSGLSVDVLGGAPGIFSARWAGRHGDDVANLELLLAQLGDVRDEHRAAAFVCAAALVTPDGREEVALGEMPGVLVRSPRGEGGFGYDPILVPAEQPAGPDGSPGTRTSAELSPEEKNAISHRGKALRSLAPAVAAALPGPT0021590_1204DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428NANA
AK018_00002738rph_1COG0689Ribonuclease PHATGACCACTCGCGCTGACGGCCGTACCCCTGACCAGCTCCGCCCCGTGACGATCACCCGCCACTGGAGCGAGAACGCCGAGGGCTCCGTGCTCATCGAGTTCGGCAAGACCCGCGTGCTGTGCACCGCGTCCCTGACCGAGGGCGTGCCGCGCTGGAAGAAGGGCTCCGGCGAGGGCTGGGTGACCGCCGAGTACGCGATGCTGCCGCGCGCCACCAACGAGCGCAGCCCCCGCGAGTCCGTCAAGGGCAAGATCGGCGGCCGCACCCACGAGATCTCGCGGCTCATCGGCCGGTCCCTGCGCGCCGTCGTCGACGTCTCCGCGCTCGGGGAGAACACGATCGTGCTGGACTGCGACGTGCTGCAGGCCGACGGTGGCACCCGCACCGCCGCGATCACCGGCGCTTACGTGGCGCTCGCCGACGCCGTCGCCTGGGGGCAGCGCCACGGCCTGATCACCGCCCGCGGCAAGACCGTGCTCACCGGGTCGGTGGCCGCCGTCAGCGTCGGCATCATCGACGGCACCCCGATGCTGGACCTGCCCTACGTCGAGGACGTCCGCGCCGAGACGGACATGAACGTCGTCACCACCGGCGACGGGGAGTTCGTGGAGATCCAGGGCACCGCCGAGGGCGTGCCGTTCGCGCGCCACGAGCTCGACGCGCTGCTCGACCTGGCCGTGGCGGGCACCACCGAGCTCGCGAAGGCCCAGCAGGCCGCGCTGGCCGAGGACGCCTGAMTTRADGRTPDQLRPVTITRHWSENAEGSVLIEFGKTRVLCTASLTEGVPRWKKGSGEGWVTAEYAMLPRATNERSPRESVKGKIGGRTHEISRLIGRSLRAVVDVSALGENTIVLDCDVLQADGGTRTAAITGAYVALADAVAWGQRHGLITARGKTVLTGSVAAVSVGIIDGTPMLDLPYVEDVRAETDMNVVTTGDGEFVEIQGTAEGVPFARHELDALLDLAVAGTTELAKAQQAALAEDAPGPT0021590_9DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428NANA
AK018_00003834lytR_1COG3279Sensory transduction protein LytRGTGCGACCGAAGGCGCTCATCGTGGACGACGAGGCACCCGCCCGGGCCGAGCTGCGCTACCTGCTCGAGGAGGTCGGGCAGGTGCAGGTCGTGGGCGAGGCCACCAACGGCGAGGAAGCCCTGCTGCTGCTGGGCTCCCTCGACTACGACCTGGTGCTGCTGGACGTGCGCATGCCCGGCGGGTCCGGCCTGGAGGTCGCCGCCGCGCTGCGCGACCGTCCGCGCCCGCCCAAGGTCATCTTCACGACCGCGTTCCCCGACCACGCCGTGGACGCCTTCGACCTGGCGGCCGTGGACTACCTGCTCAAGCCGTTCGACGCGGAGCGGCTGCAGCGGGCGCTGGAGCGGGCGCTGCGGTCCGACGGCGCGGGGGCCGGCGAGCAGGCCACGGAGCGCGTCGCGGACGAGGACAGCGCGACGAGCCCGCCCCCGCCCGGGCCGCGACCGGCGTCGTCCGGGCCGCCGGCGTCGTCCGGGCCGGCGTCGTCCGACGACGCCGAGACCCTGGTGCGCATCCCCGTGCAGAAGGACGGCCGCACCGTGCTGGTCGACGGCGACTCGATCGTGTACGCCAGCGCCGCCCGCGGCTACTCCTACCTCAAGCTGGCCGACGAGCGGCTGCTGGTGACGATGTCGCTCAACGAGCTCGAGCGGCGGCTGCGCGGGCACTTCTTCCGCGCCCACCGCTCCTACCTGGTCAACCTCGACCACGTGCGCGAGCTCGTGCCCGACTTCCAGGGATCGCTCGTCGTGGTCATGGACGACCGGCAGCGCTCGCGGGTCGAGGTCTCGCGGCGTCACGCCCGCGAGCTGCGGCGCCGGTTCGGCATGTGAMRPKALIVDDEAPARAELRYLLEEVGQVQVVGEATNGEEALLLLGSLDYDLVLLDVRMPGGSGLEVAAALRDRPRPPKVIFTTAFPDHAVDAFDLAAVDYLLKPFDAERLQRALERALRSDGAGAGEQATERVADEDSATSPPPPGPRPASSGPPASSGPASSDDAETLVRIPVQKDGRTVLVDGDSIVYASAARGYSYLKLADERLLVTMSLNELERRLRGHFFRAHRSYLVNLDHVRELVPDFQGSLVVVMDDRQRSRVEVSRRHARELRRRFGMPGPT0026304_550DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026304-lytR|ypdB|yehT-K02477NANA
AK018_000041335ypdA_1COG3275Sensor histidine kinase YpdAGTGCGCGGCGGTAGCTGGCTGCTGGCGGTCGTCCTCGCCGTCGCCTGGGGGCTGGTGTACCTGGTCACCCAGGTGCTGGTCACGCCCCCGCTGGACGTGCTGGCCACCGTCGCCGCCGGGCTCGTGGTGAGCACCGTCGTCGTGCTCGGCTACCCCTCGGCCCTGCGCGGCCCGCGCTCCGGGGCCACGGCCCGCACCCGCGCATGGCGGCCCGCGTCCCGCCCGCAGGACCCGCGCGGGATGCGCGACGGGCTGACCATCGCCGCCGCCGGCCGGTCCGTGCCGCTGCGCCACGGCCTGACCCGCGACGCGGCCCGCCGCACCGCCCAGCTCATCCGCCCGCTGCTCGGCGGGGACGCCATCGCCATCACCGACACCGAGCAGGTGCTCGCGTTCGTCGGACCCGGCAGCGACCACCACAAGGTCGGCCAGGCGATGCAGACCCGTGTCTCGCGGCTCGCCCTCGGCAAGGGGCGCACCGTCGTCGTGCACGCCCGCGAGGGCATCGGCTGCCCGGAGCCGGACTGCCCGCTGCGTACCGCCGTCGTCGCCCCGCTGGCCGTGGCCGACCGGATCGTGGGCACGCTGAAGGTCTACCGCACCCAGGACGAGCCGGCCCCGCGCGTGCTCGTCGACGACATGGCCTCGATGCTGTCGCTGCACCTGGAGCTGGCCGAGATGGACCGCGAGCGCCACCTGGCCTCCGACGCCCAGCTCGACGCCCTGCGCGCGCAGATCAACCCGCACTTCCTGTTCAACATCCTCAACACCATCGCCTCGAAGTCGCGCACCGACCCCGAGGAGGCCCGCCAGCTCCTGCTGCGGCTCAGCGACTTCTTCCGCTACGCGGTGCGCCAGGACGGTCACTTCGCGGAGTTCAGCCAGGAGTACTTCTTCGTGCGCACGTACGTCTCCCTGGAGCAGGCCCGGTTCGGCGACCGCCTGCGGGTGCGCTACGACATCGACCCGCAGGTGCTGACCTCGCGGGTGCCGGTGCTGGTCATCCAGCCGCTGGTGGAGAACGCCGTCAAGCACGGGATCGCCGACTCGGTGGACGGCGGCACCGTGCACCTGCGCGCCCGCGTGGACCCGCTGACCCGCACGACCTCGATCCGGGTGAGCGACGACGGCGTCGGCATGCCGCAGGAGACGCTGCAGCGGCTGCTGGCCGGGTGCCGGCCCGACGGCGCCGGCCCGGGGGCACGGCACTCCGGGGTGGGCATGTGGAACATCTCCCAGCGCCTCGACGCGCTGTTCGGGGACCGGTACTCGTTCGACGTCGCCTCGCGGCCGGGCAAGGGCACGACCGTCGACCTGCGGATCCCGCTAAGGTGAMRGGSWLLAVVLAVAWGLVYLVTQVLVTPPLDVLATVAAGLVVSTVVVLGYPSALRGPRSGATARTRAWRPASRPQDPRGMRDGLTIAAAGRSVPLRHGLTRDAARRTAQLIRPLLGGDAIAITDTEQVLAFVGPGSDHHKVGQAMQTRVSRLALGKGRTVVVHAREGIGCPEPDCPLRTAVVAPLAVADRIVGTLKVYRTQDEPAPRVLVDDMASMLSLHLELAEMDRERHLASDAQLDALRAQINPHFLFNILNTIASKSRTDPEEARQLLLRLSDFFRYAVRQDGHFAEFSQEYFFVRTYVSLEQARFGDRLRVRYDIDPQVLTSRVPVLVIQPLVENAVKHGIADSVDGGTVHLRARVDPLTRTTSIRVSDDGVGMPQETLQRLLAGCRPDGAGPGARHSGVGMWNISQRLDALFGDRYSFDVASRPGKGTTVDLRIPLRPGPT0026305_993DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026305-lytS|ypdA|yehU-K02478NANA
AK018_000051695actP_1COG4147Cation/acetate symporter ActPGTGACGCTGTCCAGCGGCCTCACCCTGGCCGCCGTGCTGGCCCTGGTGACCGTCGTCGCGGTCGTGATGCGCCCGCGCGGGACCTCGACCGTCGACTTCTACCTCGCCGGGCAGCGCGTGGGGGTGGCGACCAACGCCTGGGCCATCTGCGGCGACTACTTCTCGGCCGCGTCGTTCCTGGGCGTCGCGGCCGCGGTGTACGCCACGGGTCTGGACGGCGCCTGGTACGCCGTCGGGTTCGCCGCCGGGTTCGTGCCCGTGCTGCTGTTCGTCGCCGCGCCGCTGCGCCGGTTCGGGGAGTTCTCCATCCCGGACTTCCTGGGCCGGCGTCTCGGCTCGGAGCGGGTGCGGCTCGTGGCGGTCGGGGTCGTCCAGCTCGTCATCCTGTCCTACCTGGTGCCGCAGACCGTCGGGTCCGGGATCACCTGGGAGCTGCTGGTCGGGCAGGGCGTGGGAGGACTGAGCCCCTACGCCACCGGCATCGTGGTCTCCACCGCGGTGGTGGCCGCGCTGGTCTCGTTCGGGGGCATGCGCGGCACCACGTGGACGCAGGCGGTGCAGTTCCTGCTGCTGCTCGGCGCGCTGCTGTGGCTCGCCGGCACGGTGCTCGGCGAGGGCTTCCACTACGGGGACGCCGTCGAGCGGATCTCCACCACGCCGCTGGGCAACCCGGCCCCCGACGGCGCGCTGGCCACCGAGCCGAACGCGCTCCACCCGGGCGAGCCGGCCGTGTTCGGCGAGCCCGGCGCCCGGTACGACGTGCTCGGCCAGCTCGCCCTCATCGTCACCCTGGCGATGGGCACCGCCGGGCTGCCGCACGTGATGAACCGCTACTTCACCTCCCCGACCGGGACGGCGGCGCGCACCACGACCGTGTGGGTGCTGTGCCTGGCCGGCGTCTTCTACGCCGTGGCGGTGATGCTGGGCACGGCGGCCCGCGAACTGATCCCCCGCGCCGTGGCCGACAACCCGTGGCTCGAGGAGCTCACGGTCGACGGCGTGCTGACGGTCCCCGAGCACGCCCTGCCGGTGCTGGGACGCATCTACGGCGGCGACGCCGGCCTCGGCGTGGTGGCCGCCGGCGCACTCATCGCCGTGCTGTCGACCATCGCCGGCCTGCTGCTGGCGGCCGCGACCTCGTGGGGCCACGACGTCTACGAGCGGCACATCAACCCGCGCGCCACGCAGCGTCAGGCCGTGCTGGCCGGCCGGGTCACCACGCTGACCACGGCCTGCCTGGCGGCCGGCCTGGGGCTCGTGCTCAGTCCCACGACCTTCTCCGCCTCGACGCCGTCCATCGTGGCCACGATGGTGACCTGGGCGTTCGCCATCGCCGGGTCGGCGCTGACCCCCGTGTTCCTGCTGTCGATCTGGTGGCGCCGCACGACGGCGGCCGGCGCCGTGGCGGGGATGGCGACCGGCGTCACGGTCGCCGTGGGGATGCTGGTCGCCGGGACCGTCGCCGACGGCTCCGTGTGGCCCGACCTGCTGCTCACCCCGACCCTGCTCGCCGCGCCGGTGACCACGGTCGTGACCGTGCTGGTGTCCCGGCGCACGGCTCCCCCGCCGGACGTCGAGCGGTCGTGGCTGATCATGCACGGCACCGCCGCGGACCGGCACGCCGTGGCGCTGGCCCGCCTGGTCCTGGCCGAGACCCGGCGACGACGGCGGGAGGTGCGGCGTGCGCGGCGGTAGMTLSSGLTLAAVLALVTVVAVVMRPRGTSTVDFYLAGQRVGVATNAWAICGDYFSAASFLGVAAAVYATGLDGAWYAVGFAAGFVPVLLFVAAPLRRFGEFSIPDFLGRRLGSERVRLVAVGVVQLVILSYLVPQTVGSGITWELLVGQGVGGLSPYATGIVVSTAVVAALVSFGGMRGTTWTQAVQFLLLLGALLWLAGTVLGEGFHYGDAVERISTTPLGNPAPDGALATEPNALHPGEPAVFGEPGARYDVLGQLALIVTLAMGTAGLPHVMNRYFTSPTGTAARTTTVWVLCLAGVFYAVAVMLGTAARELIPRAVADNPWLEELTVDGVLTVPEHALPVLGRIYGGDAGLGVVAAGALIAVLSTIAGLLLAAATSWGHDVYERHINPRATQRQAVLAGRVTTLTTACLAAGLGLVLSPTTFSASTPSIVATMVTWAFAIAGSALTPVFLLSIWWRRTTAAGAVAGMATGVTVAVGMLVAGTVADGSVWPDLLLTPTLLAAPVTTVVTVLVSRRTAPPPDVERSWLIMHGTAADRHAVALARLVLAETRRRRREVRRARRPGPT0001400_1269DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393NANA
AK018_00006336hypothetical proteinATGGACGACGACGACGTCGGGACCCGGGACACGCCGGCGGAGGTGGACGCGGCCTTCCGCACGCTGCGCCGCGTCTCGGTCGGGTACTTCGTCGTGTTCCTGCTCGGCGTGGCGGCCTTCCCCGTGCTCACCCTCACGCTGGACTGGTGGTCACAGGCTCGCCTGGTGGGCGGCATGAGCCCGGGCTTCCTCGTCGCCGCGTTCGGCCTCTACCTGTTCTTCGCCGTCCTGGGGATCGCGGCCGCGCGGCTGTCCTCGGCCGTCGAGCACCGGATGCTGGGCGCGGCCGAGCAGGGGTCCGACGGCGCGGGCGCGGCCGCGGAGGACACCCCGTGAMDDDDVGTRDTPAEVDAAFRTLRRVSVGYFVVFLLGVAAFPVLTLTLDWWSQARLVGGMSPGFLVAAFGLYLFFAVLGIAAARLSSAVEHRMLGAAEQGSDGAGAAAEDTPNANANANANA
AK018_00007462hypothetical proteinATGGCCTCGACGACGAGCACCTCCCTGGGCAACCTGCTGCGCGCCGGCGGACGGACGCCGGCCCGACGGACCCGGGTCTTCCACCCGGGCAGTCTGGGCATGCTGCTGGGGGCGCTGGCCGTGATCGTCGGCAGCCTGCTGCCGTGGGTCATCACCCCGGTCGGCACCCTGAGCGGGACGGCCGGCCCGGGCCTGTGGACGCTGTGCGCGGGGTTCATCGCCGTCGCCGGGGCCGTCGTCCCCCGACGCTGGGTCGCGGTCTCCCACAGCCTCGTCGCCGGCGGCGCGGTGCTGTTCGTCGCGGCCTGGCAGCTGCTGCGCCTCGGTCAGGTCAGCGCCGCCACGGACTCCTGGGGCCAGGCCATGCCTGGCATCGGGCTGATCATGGCGGCCGGCGGTGCCGTCGTGCTCCTGGTCACCGGGGTCCGGCTGCTGCGCACGGCCCCCGCGCCGACGTCGTGAMASTTSTSLGNLLRAGGRTPARRTRVFHPGSLGMLLGALAVIVGSLLPWVITPVGTLSGTAGPGLWTLCAGFIAVAGAVVPRRWVAVSHSLVAGGAVLFVAAWQLLRLGQVSAATDSWGQAMPGIGLIMAAGGAVVLLVTGVRLLRTAPAPTSNANANANANA
AK018_00008324hypothetical proteinATGGTCGACACCGAGCGAGGGAGCTCGCCGGATCCTGGGCCGCCGCCCCACAACGGGTGGCGTCAGGAGTACTGGAAGAAGAACCTGCGGCTGATGATCGTGCTGCTCAGCATCTGGTTCCTGGTCTCGTTCGTGTGCGGGATCCTGTTCATCGAGCAGCTCAACACCATCGAGGTCTTCGGCTTCCCCCTGGGGCTGTGGTTCGCCCAGCAGGGTTCGATCTACACGTTCATCGTCCTGATCCTCGTGTACACGCTGCGCATGGACAGGCTCGACGACGAGTACGGCGTGGCCGAGCGTGACGAGGAGGGGAACCGACTGTGAMVDTERGSSPDPGPPPHNGWRQEYWKKNLRLMIVLLSIWFLVSFVCGILFIEQLNTIEVFGFPLGLWFAQQGSIYTFIVLILVYTLRMDRLDDEYGVAERDEEGNRLNANANANANA
AK018_000091677actP_2COG4147Cation/acetate symporter ActPGTGAGCGACATCCAGATCTGGACCCTCGTCTTCGTGGGCCTGTCCTTCGGGACCTACCTGACCATCGCCTGGCGCAGCCGCGTCCGGGAGACCAAGGGCTTCTACGTCGCCGGCCAGGGCATCCCCGCGGTGGCCAACGGCGCCGCCGTCGCCGCGGACTGGATGTCCGCCGCGTCGTTCATCTCCATGGCGGGCCTCATCGCCTTCCTCGGCTCCGACGGCTCGGTCTACCTCATGGGCTGGACCGGCGGGTACGTGCTGCTGGCCCTGCTGCTCGCGCCCTACCTGCGCAAGTGGGGCAAGTTCACCGTCCCCGAGTTCGTCGGCGACCGGTACTCGGAGTACGTGCGGCTCATCGCCGCGGTCGCCGCGATCATCGTGTCGTTCACCTACGTCGTGGGGCAGATGCGCGGCGGCGGCATCGTGTTCAGCCGGTTCCTCAACCTCACCATCGAGGGCGGCGTGGCCGTGGCCGCGGGTGTGATCTTCCTGTACGCGGTGCTGGGCGGCATGAAGGGCATCACCTGGACCCAGGTGGCCCAGTACACGGTGATGATCGTCGCCTACCTCATCCCCGCGTGGACGATCGCGCAGAAGATGACGGGCTTCCCGGTCCCGCAGGTGACGTTCGGGCAGATCCTCGACGAGCTGAACGCGCTGAGCCAGGAGTTCGGCCTCGAGCAGTACACCGAGGCGTTCGCCGTGCGGCCCCAGCTCGACGTGTTCCTGGTGACCCTGTCGCTGATGATCGGCACGGCGGGTCTGCCGCACGTCATCATCCGCTTCTACACCACGAAGTCGGTGCGCGGTGCGCGGTTCAGCGCGCTGTGGGCGCTGGTGTTCATCGGCCTGCTGTACACCACGGCCCCCGCCGTGGGGGCGTTCACCAAGCTGAACCTCATGCAGTCGGTGAACGGCGTGGCGGTGGACGCCTTGCCGGCCTGGGTGAACAACTGGGCCGCCACGGGGCTGGTGACGGTCTCCGACTCCGCGTCGACGATCACGACGTTGAGCAACGACCCCGCCTCGGGGGCGGACCTCATCGTCAACAACGACATCCTGGTGCTCGCCACCCCGGAGATCGCCGGGCTGCCGGCACCGATCGTCGGGCTGGTCGCGGCCGGCGGCCTGGCCGCCGCGATGTCGACGGCGGCCGGCCTGCTGCTCGTCATCTCCTCCTCGGTGTCGCACGACCTGTACTTCCGGGTCGTCAAGAAGCCGACGTCGGACTCGCGTCGCCTGCTCGTGGGGCGGATCGCGATGGGTGCCGCGGTGCTGGTGGCGATCTACGGCGGCATCAACCCGCCGGCGTACGTGGCCCAGGTGGTCGCCTTCGCCTTCGGGCTGGCGGCGTCGACGTTCTTCCCGATCCTCGTGCTGGGGATCTTCTGGAAGCGCGCCAACGCCATCGGTGCGGCGTCCGGCATGATCTCCGGCCTGGCGTTCACCGGGGCGTACATGCTCTACACCCTCGAGGTGTTCGGGACGTCGTCCCACGACTACCTGTTCGGCATCTCGCCGGAGGGCATCGGCGCGCTCGGCGCGTTGGTCAACGTCGTCGTGACGATCGTCGTCTCGAAGCTGACGACACCACCGACCGAGCACGTCCAGGAGATGGTCGAGGAGCTGCGGTACCCGGCGAAGCGGGTGGTGTCGCCCGCGGCCGAGACCGAGTAGMSDIQIWTLVFVGLSFGTYLTIAWRSRVRETKGFYVAGQGIPAVANGAAVAADWMSAASFISMAGLIAFLGSDGSVYLMGWTGGYVLLALLLAPYLRKWGKFTVPEFVGDRYSEYVRLIAAVAAIIVSFTYVVGQMRGGGIVFSRFLNLTIEGGVAVAAGVIFLYAVLGGMKGITWTQVAQYTVMIVAYLIPAWTIAQKMTGFPVPQVTFGQILDELNALSQEFGLEQYTEAFAVRPQLDVFLVTLSLMIGTAGLPHVIIRFYTTKSVRGARFSALWALVFIGLLYTTAPAVGAFTKLNLMQSVNGVAVDALPAWVNNWAATGLVTVSDSASTITTLSNDPASGADLIVNNDILVLATPEIAGLPAPIVGLVAAGGLAAAMSTAAGLLLVISSSVSHDLYFRVVKKPTSDSRRLLVGRIAMGAAVLVAIYGGINPPAYVAQVVAFAFGLAASTFFPILVLGIFWKRANAIGAASGMISGLAFTGAYMLYTLEVFGTSSHDYLFGISPEGIGALGALVNVVVTIVVSKLTTPPTEHVQEMVEELRYPAKRVVSPAAETEPGPT0001400_1457DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393NANA
AK018_000101194hpxO_1COG0654FAD-dependent urate hydroxylaseATGAAGATCATCGTGATCGGGGCGGGCGTCGGCGGCACCAGCGCCGCCATCGCCCTGCAGCGGCTGGGGCACGAGGTCGTCGTCTACGACCGGATGCGGGAGAACAAGCCCGTGGGCGCCGCGCTGTCGCTGTGGTCGAACGGCGTCAAGGTGCTCAACTGGCTGGGCCTCGGCGACCAGGTCGCCGCGCTCGGCGGGGCCATGGACGACATGGCCTACCTCGACGGGCACACCGGAGAGACGCTGTGCCGGTTCAGCCTGGCGCCGGTCACCGAGCAGACGGGCCAGAGGCCCTACCCCGTGGCGCGCGCGGACCTGCAGCGTCTGCTCATGGAGAGCTTCGGGACCGAGCAGATCCACCTGGGCAAGCGGCTGGTGTCCGTCGCCGACGACGGCGAGCAGGTCACCGCGACCTTCGCCGACGGGTCCACCGACACCGCCGACCTGCTCGTCGGGGCCGACGGCGCCCGGTCCGTCGTGCGCGACCACGTCACCGGCGCGCACGAGGGCGGCGAGCGGATCGAGCGGACGTACTCGGGCTACACGAACTTCAACGGCCTGGTCGCCGCCGACACCGCCGTCGGGCCGAAGAACCAGTGGACGACCTACGTCGCCGAGGGCAAGCGCGCCGCCGTCATGCCCGTGGCCGACGGGCGGTTCTACTTCTGGTTCGACGTGCCGCAGCCCGCGGGTCTGTCGTACGACGCCGCGGACGGCGCGGCGCCGCTGCACGAGGCGTTCGGCCACTGGGCTCCCGGGGTCCGGGCGCTGCTCGGGGCGATCGACCCGGACCGGTCCCTCAACCGGGTGGAGATCTGGGACATCGACCCGTTCCACACCTGGGTCCGCGGACGCGTCGCGATCCTCGGCGACGCCGCCCACAACACCGCCCCGGACATCGGGCAGGGCGCCTGCCTGGCCCTGGAGGACTCCTTCGCCCTGGCGATCAGCCTGGCGACGAACACCGTGAGCGTCGAGGACTCCCTGCGGCGCTACGAGCACAGCCGCACCGGGCGGGCCGCCGACCTCGTGGAGCGCGCCCGCGCGCGCGGCGCGGAGACGCACGGTGAGGACCCCGAGCGGACCGCCGCCTGGTACGCGAGCCTGCGGGGCACCGACGGCAGCGGCATCATCCGCGGCATCGTCGGCAACATCACCGGCAGCCCCATCAACCTCGGCGCCGGCCCCCTCTGAMKIIVIGAGVGGTSAAIALQRLGHEVVVYDRMRENKPVGAALSLWSNGVKVLNWLGLGDQVAALGGAMDDMAYLDGHTGETLCRFSLAPVTEQTGQRPYPVARADLQRLLMESFGTEQIHLGKRLVSVADDGEQVTATFADGSTDTADLLVGADGARSVVRDHVTGAHEGGERIERTYSGYTNFNGLVAADTAVGPKNQWTTYVAEGKRAAVMPVADGRFYFWFDVPQPAGLSYDAADGAAPLHEAFGHWAPGVRALLGAIDPDRSLNRVEIWDIDPFHTWVRGRVAILGDAAHNTAPDIGQGACLALEDSFALAISLATNTVSVEDSLRRYEHSRTGRAADLVERARARGAETHGEDPERTAAWYASLRGTDGSGIIRGIVGNITGSPINLGAGPLPGPT0021115_96DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021115-hpxO-K16839NANA
AK018_00011330hiuH_15-hydroxyisourate hydrolaseATGAGCCACCTGACGACCCACGTGCTGGACGCCGGCACGGGCGAACCGGCCACGGGGCTGCGACTCGAGCTGACCGACTCCCACGGGCAGCGCATCGACGACGCGGACACCGACGACGACGGCCGCGCCGACCTCGGCCCGAACCTGCTGCCCTCGGGGACCTACACGCTCACCTTCGACACCGGCACGTACTTCGCCGAGCGGGAGGTCGAGACCTTCTACCCGTCGGTGGCGGTGACGTTCGTCGTGACGCCCGAGGGCGCGGGCAGGCACTACCACGTGCCGCTGCTGCTGAGCCCGTTCGCCTACTCGACCTACCGCGGGAGCTGAMSHLTTHVLDAGTGEPATGLRLELTDSHGQRIDDADTDDDGRADLGPNLLPSGTYTLTFDTGTYFAEREVETFYPSVAVTFVVTPEGAGRHYHVPLLLSPFAYSTYRGSPGPT0021125_2032DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021125-uraH|pucM|hiuH-K07127NANA
AK018_00012510hypothetical proteinGTGCACATCGACGAGTTCGACACCCTGGACGACGCGCCCGCCCGCGAGGTCGTGTCCGTCTGGGCCGCCGTCCCCCCCTGGGTCGACGCCGTGGTCGCCGGGCGACCGTACGGGTCCGTCCGGGCGCTGGCCGACCGCGCCACCGCGCTGACCCGCTCGTGGGACGGCGCCACGCTGGACGCGGCACTGGCCCACCACCCGCGGATCGGCGAGAGGGCCGCGGGCGACGGCGCCGAGGCCGCGGCCTCGCGCCGGGAGCAGGCGAGCATGGCCGACGCCGGCGCGGACGTCGAGACGCGGATGGCCGCGGGCAACCGGGCCTACGAGGAGCGGTTCGGCCGCGTCTTCCTCGTGCGGGCCGCGGGGCGGTCGCCGCAGGAGATGCTCGCCGAGCTCGAGCGACGCCTGGGCAACGACGAGGCCACCGAGACCGCCGAGGCCTGCGACCAGCTCGCGCAGATCGCGCTGCAGCGGCTGCACGACACGATCACCGAGGAGACGACCCGATGAMHIDEFDTLDDAPAREVVSVWAAVPPWVDAVVAGRPYGSVRALADRATALTRSWDGATLDAALAHHPRIGERAAGDGAEAAASRREQASMADAGADVETRMAAGNRAYEERFGRVFLVRAAGRSPQEMLAELERRLGNDEATETAEACDQLAQIALQRLHDTITEETTRPGPT0021135_331DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021135-hpxQ-K16840NANA
AK018_00013636hypothetical proteinGTGGACGAGACCCTGCTCCCCGCCCGCATCGGCGGCCGACTGCGTCGGCTGCGCACCGAGAGCGGTCGGTCGCTGGCGTCGGTCGCGCAGGAGCTCGGCGTCTCGTCCAGCGCCCTCTCCCAGATCGAGAACGGGGTGATGAAGCCGTCGGTCCAGCGTCTGGTCGAGCTCGTCGGCATCCTGGGCGTGCCGGTGTCGGCGATCTTCGACGACGTCGCGGTGTCCGTCCCGCGCGTGGACGACGACGTCACCGACGTCTCCGAGCCGCTGCCCGGCGTCCTGGTCGCCACGCGCGAGGCGGACTCGCCGGCGCAGCTGGGGCAGGGGGTCACCTATCGCCGGCTGTCCCCGGCGCCGCTGCCGGGCGTGACCTGGTTCGAGTCCACCTACCCGCCCGGGGCGTCCTCGAGCGAGGACGGCTCCATGCTCGTGCACACCGGGTACGAGAGCGGGCACGTCGTGTCCGGCGAGCTCGTCTTCGAGTTCGCGCAGGGGGCCGTCCGGCTGGGACCGGGCGACTCGCTGTCCTTCGCCGCCAGCCGGCCGCACCGCGTGGTCAACGACGGCGACGTCGTCGCGGTGGCGCTCTGGCTGACCGTGGAGCCGTCGGCCACGGCCGAGGCGGAGGAGGCGTAAMDETLLPARIGGRLRRLRTESGRSLASVAQELGVSSSALSQIENGVMKPSVQRLVELVGILGVPVSAIFDDVAVSVPRVDDDVTDVSEPLPGVLVATREADSPAQLGQGVTYRRLSPAPLPGVTWFESTYPPGASSSEDGSMLVHTGYESGHVVSGELVFEFAQGAVRLGPGDSLSFAASRPHRVVNDGDVVAVALWLTVEPSATAEAEEANANANANANA
AK018_000141374allB_1COG0044AllantoinaseGTGACGGCCGCCCGGCAGGTGTTCCGCGCCGAGCGGGCCTTCGTCGCCGGCGCCTTCCGGCCGGCCGCCGTCGTCGTCGAGGACGGCCGGATCGCCGACGTGCTCGACGCCGACGCGCCCGTCCCCGGGGCCGAGACCGTCGTGGTCCCCGACGACGCCGTGCTCCTGCCCGGACTGGTCGACTCCCACGTGCACGTCAACGACCCGGGGCGCGCCGAGTGGGAGGGCTTCGGCTCCGCGACCGCCGCCGCGGCCGCCGGCGGCGTCACCACCATCGTGGACATGCCGCTGAACTCCCTGCCGCCGACGACCACGGCCGACGCGCTCGCGGTCAAGCGGGCCGTGGCCGCGCCCGCGGCGCGTGTCGACGTCGGGTTCTGGGGCGGCGCGGTGCCCGAGAACCTCGGACGCCTCGCCCCCCTGCACGAGGCCGGGGTGTACGGGTTCAAGTGCTTCCTGGCGCCGTCCGGCGTGGACGAGTTCGGCCACCTCGACGCCGACGGGCTCGACGCGGCGGCCGCGGAGGTCGCCCGCCTCGGCTCGCGGCTCATCGTGCACGCCGAGGACCCGGGGCTCCTGCACGGCGGCGGGGCCCTCGGCCGCGGCTACGACGCGTTCCTGCGGTCGCGGCCGCCCGCCAGCGAGGCCGCCGCCGTCACGGCCGTCGTCGAGGCAGCGCGGCGCCACGGCGCGCGGGTCCACGTCCTGCACCTCAGCGACGCAGGGTCCCTGCCGGTGATCCGCGCGGCCCGGGCCGACGGCGTCGACCTGACCGTCGAGACGTGCCCGCACTACCTGACGATCACGGCCGAGGAGGTCCCCGACGGGGCGTCCGAGTTCAAGTGCTGCCCGCCGATCCGGGACGCCGCGAACCGGGACCTGCTGTGGGAGGGCCTGCTCGACGGGACCCTCGACGCCGTCGTCAGCGACCACTCGCCCTCCACCGTCGAGCGCAAGCGTGCCGGGGACGGGGACTTCGGCCTCGCCTGGGGCGGGATCTCCGGGCTCCAGGTCGGGCTGTCGGCGGTGTGGACCGAGGCCCGGGCCCGCGGCGTCGCCCTCGAGACCGTGCTGCCGTGGTTCACCACCGGGCCCGCCGGCGTCGCGGGCCTCGACGGCCCGGGGACGATCGCCCCCGGCGCGCCCGCGCACCTGACCGTCTTCGGCGTCGACGACCCGTTCGTCGTCGACGCCGCCGCCCTCCTGCACAGGAACCCGATCACGGCGTACGACGGGCGCGCGCTGCGCGGCCGGGTCCGCGCCACGTGGCTGCGGGGCCGGCCGGTGTACGCCGTCGACAGCGCCGGCACCGGCGTGGTCGACGGCGACCCCGCGGGCCGTCTGCTGGCCGCCCCGACGGAGGTGCCCGCATGAMTAARQVFRAERAFVAGAFRPAAVVVEDGRIADVLDADAPVPGAETVVVPDDAVLLPGLVDSHVHVNDPGRAEWEGFGSATAAAAAGGVTTIVDMPLNSLPPTTTADALAVKRAVAAPAARVDVGFWGGAVPENLGRLAPLHEAGVYGFKCFLAPSGVDEFGHLDADGLDAAAAEVARLGSRLIVHAEDPGLLHGGGALGRGYDAFLRSRPPASEAAAVTAVVEAARRHGARVHVLHLSDAGSLPVIRAARADGVDLTVETCPHYLTITAEEVPDGASEFKCCPPIRDAANRDLLWEGLLDGTLDAVVSDHSPSTVERKRAGDGDFGLAWGGISGLQVGLSAVWTEARARGVALETVLPWFTTGPAGVAGLDGPGTIAPGAPAHLTVFGVDDPFVVDAAALLHRNPITAYDGRALRGRVRATWLRGRPVYAVDSAGTGVVDGDPAGRLLAAPTEVPAPGPT0000870_413DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0000870-allB-K01466NANA
AK018_000151128hypothetical proteinATGACCACGCCGATCCTGCAGCCGGGACGGGGCGACCTGCCCGGCGACCACTACCTCGCCGCCACGCCCGGCACGGTGTCGTGGGGACGCCTGCCGTGCGCGGCCGACGCCCCCGTCCTGACGATCGCGTCCGGCGAGACCGTCACCGTCGACACCGTGAGCCACGAGGGCCTGCTCGAGGACCAGGGCTCGGACCCCCGGGCGTACTTCGGCAGTCACGGCGTGCCGCCCGAGAGCGTCCTGGACGACGCCGTCACGATCGCCGCCGAGGTCGCCCGCGACCCCGACCGCGACGGCCCGCACGTCGTCACGGGCCCCGTCCGGGTCGAGGGGGCCGAGCCCGGCGACCTCCTGAAGGTCACCGTCGAGCGCCTCCGGCCCCGGGTGCCCTACGGCGTGGTCTCGAACCGGCACGGCACGGGGGCGCTCGCCGGCGAGCTGCCGCGCGGTGCGCACAACGTCAGCGTGTTCTGCCCTGTCGCCGACCGGGCCGGCCGGTCGGTCGGCACGCTCCCGGTGACCGACGGCGGACCGCGGGTCGTGGAGTTCCCGCTCGCCCCCTTCCTCGGGATCATGGGCGTCGCGGTACCGGGCGACGAGCGCCCGCACTCCGTGCCGCCCGGCCCGCACGGCGGCAACATCGACATCAACCTGCTCGTCGAGGGCGCCGAGCTGTACCTGCCGGTGCAGGTCGCCGGGGCGCTCGCCTACGTCGGCGACCCGCACTTCGCCCAGGGCGACGGCGAGGTGGCCCTCACCGCGCTGGAGGCCTCGCTGCGCGCGACCCTGCGGTTCGACGTCGTCCCGCGGGCCGAGGCGCTCGCGGCGTTCGGCGAGGTGACGGGGCCCCTGGCGCGGGCCGGCGGCTACCTCGTCCCCACGGGGCTCGACGAGGACCTCGACGAGGCGATGCGCCGTGCCGTGCGCGCCGCGATCGCGCTCGTGCGGGCCCGGTGGGGACTCGACGAGCACCTCGCCTACGCCTACCTCAGCGCGGCGACCGACTTCGACGTCTCCCAGGTGGTCGACGTCGTGTGCGGCGTGCACGCCCGCATCCGCGAGTCCGACTTCGACGGGGTGCTCGGCACCGGCGGTGCCGAGCACCCGGACGACGGGAGCGAGTCATGAMTTPILQPGRGDLPGDHYLAATPGTVSWGRLPCAADAPVLTIASGETVTVDTVSHEGLLEDQGSDPRAYFGSHGVPPESVLDDAVTIAAEVARDPDRDGPHVVTGPVRVEGAEPGDLLKVTVERLRPRVPYGVVSNRHGTGALAGELPRGAHNVSVFCPVADRAGRSVGTLPVTDGGPRVVEFPLAPFLGIMGVAVPGDERPHSVPPGPHGGNIDINLLVEGAELYLPVQVAGALAYVGDPHFAQGDGEVALTALEASLRATLRFDVVPRAEALAAFGEVTGPLARAGGYLVPTGLDEDLDEAMRRAVRAAIALVRARWGLDEHLAYAYLSAATDFDVSQVVDVVCGVHARIRESDFDGVLGTGGAEHPDDGSESNANANANANA
AK018_000161635QRSL1_1Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrialATGAGCGACATCGGGGGTGCCGACACGGTGCCGGAGGACCTGCTCGAGGCGTTCACGCGCTACGAGGCGGCGGTCGTGGCGAACGACCTCGACCACCTCGACGCCGCGTTCGCGCCGGGGGGGTCCACCCTGCGCGGCGACGCCGCCGGGCTGCTCGTCGGCCACGAGGCGATCTCCGCGTTCCGCGGGACCCGCGGCGGCGTGCCCCCGCGTCGGATCGAGCGCATCGAGCACCGCGAGCTCGGCCCGGACGTGGCGCTGCTGGTCTCCGTCTCGCGCTACGACTCCGGCGGCACCGGGCTGCAGACGCAGGTGTGGCAGCGCGTCGACGGCACGTGGCTCATCACCGCCGCGCACGTGACCCCGCGTGCGACGGCGCTGGACCGGCGCGTCTGGCGCACCGTCGGCGACCCGATGTACCAGGGGGCGTGGGAGGGACCGCTGGCCGGGCTGACCGTGGCCGTCAAGGACCTCTTCGCGATCTCCGGGTACCGGATCGGCGCCGGGAACCCCACGTTCCTCGACGACGGTCGCGCCGAGACCTCGACGGCCCCGGCCGTCTCCGACCTGCTGCGCGGCGGCGCCTCGCTGCGCGGCATCGCCCGCACCGACGAGCTCGCCTACTCGGTCGCGGGCGACAACGTCCACTACGGCACGCCGCCCAACGGGGCGCTGCCCGGCGCGCTGCCGGGCGGTTCCTCGAGCGGGCCGGCCTCCGCCGTGGCGACCGGCCAGGCCGAGGTCGGACTGGCCACCGACACCGCGGGCTCCGTCCGCGTCCCCGCCTCCTACCAGGGGCTGTGGGGGCTGCGCACGACGCACGGGCTGGTGCCGCGGCAGGGGATGCTGCCGCTGGCGCAGTCCTTCGACACGGTCGGCTGGCTCACGCGCGACGGCGGCACGCTGCAGCGGGTCGCCGACTGGTGCCTGAGCTACGACGGCTCGGAGTCGACCGAGAACGTCTACGGCGAGTCCGGGCACGACCTGCCGTGGCGGTTCGTGGTGCCCACCGAGCTGCTCGCCGTGGCCGAGCCCGACACCCGGGCGGCCCTCGAGGAGCTCGTCGACACGCTCGCACGGCACCCCGAGGCGCCGGCGGTCGGCACCGGCGAGGTCGGGGACCTCGACGAGTACCTCACGGCGTTCCGGACCGTCCAGGGTGCCGAGGCGTGGCGCAACCACGGAGCGTGGCTGCGCCGGCATCCCGACGCCGTCGGCCCCGCCGTCGCCGAGCGCTTCCGGGCCGCAGCGGCGGTGACGGCCGAGCAGGAGTCCGCCGCACGGGCCGCGCTGTCGCCCCTCGCCGCGCGCGTGCACGCACTCGTCGAGGACGCGGTCCTGCTCCTGCCCACCGTTCCCGGGCCGGCGCCGCTGCGCACGAGCGGCGGCGAGCGGGTCGACGCCGTCCGCGCCGCGACGCTGCGCCTGACCACCCCCGCCGCGGTCGCCGGGCTGCCGGCGCTGTCCGCGCCCCTGCTCACCGTCCCGTCGCTGCTCGGCCCCGCGCCCGTCGGGGTGTGCCTCGTCTCGCGCGCCGGTACCGACATCGCCCTCGTCCGCCTGGCCCGTCGGCTCGCCCGCCTCCTCGGGCCCGGCGACGGCGGCCCCACCACGACCGGAGGAACGATCGCATGAMSDIGGADTVPEDLLEAFTRYEAAVVANDLDHLDAAFAPGGSTLRGDAAGLLVGHEAISAFRGTRGGVPPRRIERIEHRELGPDVALLVSVSRYDSGGTGLQTQVWQRVDGTWLITAAHVTPRATALDRRVWRTVGDPMYQGAWEGPLAGLTVAVKDLFAISGYRIGAGNPTFLDDGRAETSTAPAVSDLLRGGASLRGIARTDELAYSVAGDNVHYGTPPNGALPGALPGGSSSGPASAVATGQAEVGLATDTAGSVRVPASYQGLWGLRTTHGLVPRQGMLPLAQSFDTVGWLTRDGGTLQRVADWCLSYDGSESTENVYGESGHDLPWRFVVPTELLAVAEPDTRAALEELVDTLARHPEAPAVGTGEVGDLDEYLTAFRTVQGAEAWRNHGAWLRRHPDAVGPAVAERFRAAAAVTAEQESAARAALSPLAARVHALVEDAVLLLPTVPGPAPLRTSGGERVDAVRAATLRLTTPAAVAGLPALSAPLLTVPSLLGPAPVGVCLVSRAGTDIALVRLARRLARLLGPGDGGPTTTGGTIAPGPT0006115_1167DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426NANA
AK018_000171260pucG_1COG0075(S)-ureidoglycine--glyoxylate transaminaseATGACCGCCGCCCTGCCTGGTTCGAGCCTGCCCCGACCGGGCTTGCCCGGCCCGATCGAGCCGCCCGCCCGCCTGCTCATGGGTCCCGGCCCCGTGTCGGCGTACCCCAGCGTGCTGCGCGCGATGTCGGCGCCGCTGGTGGGCCAGTACGACCCCTTCATGACGGCGTCGATGACCGAGACCCAGGAGCTGTACCGCCAGGTCTGGGGCACGACGAACGAGGCGACCGTGCTCGTCGACGGCACCTCGCGCGCCGGGATCGAGGCGGCGATCGTCTCGCTGGTGCGCCCGGGGGAGCGGGTGCTGGTGCCGGTCTTCGGCCGGTTCGGCCTGCTGCTCGCCGAGATCGCCGAGCGGGCGATGGCCGAGGTGCACACCATCGAGGTGCCGTGGGGGCAGGTCGTGCCCGTCTCGATGATCGCCGAGGCGATCGAGCGGGTGCGCCCCACGCTGCTGGCCCTGGTCCAGGGCGACACGTCGACCACGATAAACCAGCCGCTCGACGAGGTCGGGGCGCTCTGCGAGAAGCACGGCGTGCTGTTCTACTCCGACGCCACCGCCTCGCTCGGCGGCAACGCCTTCGAGGCGGACGCGTGGGGGCTCGACGCCGCCACCGCCGGCCTGCAGAAGTGCCTCGGCGGGCCGGCCGGGGCGGCACCGATCACGCTGTCGCCCCGCGCCGAGGAGGTGGTGCGGTCGCGGAAGCGGGTCGAGGCCGGGATCCGCGAGCCGGACGACCCCGAGGCGACCGACTTCGTGCGCTCGAACTACTTCGACCTCGGCATGATCCTCGACTACTGGGGGCCGCGCCGTCTCAACCACCACACCGAGGCCACGTCGATGCTGTACGCGGCGCGCGAGTGCGCCCGCGTGATCCTGGCCGAGGGGCGGGACGCCGTCGTCGAGCGGCACCGGCTCGCCGGGGAGGCGATGCTCGCGGGCGTGCGCGGCCTGGGACTGCAGGTCTTCGGCGACGTCGCGCACAAGATGCACAACGTCGTCGCCGTCGAGATCCCCGAGGGGGTGCCCGGCGACGCCGCCCGTGCCGCGCTGCTGGCCGACTACGGCATCGAGATCGGGACGTCCTTCGGTCCGCTGCACGGACGGGTGTGGCGCATCGGCACCATGGGCTACAACGCCCGGCAGGACGCCGTCCTGGCCACCCTGGCCGCGCTCGAGGACGTGCTGCGCCGGTTCGGGTGCGCCGTGCCCGCCGGGGGCGGGACCGAGGCGGCCGCCGACGTCTACCGAGGCGCGTGAMTAALPGSSLPRPGLPGPIEPPARLLMGPGPVSAYPSVLRAMSAPLVGQYDPFMTASMTETQELYRQVWGTTNEATVLVDGTSRAGIEAAIVSLVRPGERVLVPVFGRFGLLLAEIAERAMAEVHTIEVPWGQVVPVSMIAEAIERVRPTLLALVQGDTSTTINQPLDEVGALCEKHGVLFYSDATASLGGNAFEADAWGLDAATAGLQKCLGGPAGAAPITLSPRAEEVVRSRKRVEAGIREPDDPEATDFVRSNYFDLGMILDYWGPRRLNHHTEATSMLYAARECARVILAEGRDAVVERHRLAGEAMLAGVRGLGLQVFGDVAHKMHNVVAVEIPEGVPGDAARAALLADYGIEIGTSFGPLHGRVWRIGTMGYNARQDAVLATLAALEDVLRRFGCAVPAGGGTEAAADVYRGAPGPT0021460_305DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021460-pucG-K00839NANA
AK018_000181329amaB_1N-carbamoyl-L-amino acid hydrolaseATGGCGGCGCTGCTGCAGACCGCCCCCGACACCCTCGCCGCGGCCGCCCGCCGGGTGATGGCCCGCTGCGACGAGCTCGCCCGGGTCAGCGCCACGGCCGGGGGCATCGAGCGCGTCTACCTCTCCCCGGAGCACGCCCGCGTGAACCGGCTGGCCGCGCAGTGGATGCGCGAGATCGGCATGACCACGCGTCTCGACGCCGCCGGCAACCAGGTCGGGCGGCTGGAACGCTCGACCGCGTCCGGGGCGCCGGACCTCGACGCGCCCGCCCTCGTGCTCGGGTCCCACCTGGACACCGTGCCCGACGCCGGGCGCTACGACGGGATCGTCGGCGTCCTCATGGGTCTGGAGGTCGTGCGGATGCTGCGCGTGCCGGGCCCCGACGGGACGGGGTGGCGGTCCCCGCTGCCGTTCGCCCTGGAGGTCGTCGCCTTCTCGGACGAGGAGGGCACCCGGTTCGGCAAGGCGCTGCTGGGCTCCTCCGCCGTCGCGGGCACCTGGGACCCCGACTGGTGGGACCTCACCGACGCCGACGGCGTCACCCTGCGCGAGGCGTTCGCCGAGTTCGGGCTCGACCCCGGTCGCGTCGGGGAGGCGGCCCGGCGGCCCGAGGAGCTCGCCGGCTACCTCGAGGCCCACATCGAGCAGGGCCCCGAGCTCGACGAGCGGGGGGAGTCGCTCGCCGTCGTGTCCTCGATCGCGTCCGCCCGACGGTTCCAGCTCGTCGTCGAGGGGGAGGCCCGGCACGCCGGCGGGACCCCGTACGACCGCCGTCGCGACGCGCTCCTCGGGGCGAGCGAGGCGGCGCTGGCGATCGAGCGCGTCTGCCGCGCCGAGCACCACGTCATCGGCACGGTCGGGCAGCTCGAGGCCTACCCGGGGGCGGTGAACATCGTGCCGGGCGAGGCGCGCCTCAGCCTCGACCTGCGCGGTGAGTTCGACGACGCCCGGGACGACGTGTGGACGTCGATCGAGCGCGAGCTCGACGTGATCACGGGGCGCCGCGGCCTGCGGTGGCACGCCCGCGAGGTCCACAGCGCGCCCGCCGTGTTCTGCGCGCCGCTGCTGCAGGACGTCGTCCGCGAGGGCATCGTCTCGACCCTCGGCCGCGGCGTCGACGACCCGGCGACGATCTTCAGCCGCGCGGGGCACGACGCCATGGCGATCGGGTCGGTGACCGACGTGGGGATGCTGTTCCTGCGCAACCCGGACGGCATCAGCCACCACCCGGACGAGGCGGTGTCCGCCGGGGACGTCGCGTACGGCACCCGCGCGCTGGCGGAGTCGGTGCTGCAGCTGGCGGCCGACCGGGCGGTGTCGGCGGGCTGAMAALLQTAPDTLAAAARRVMARCDELARVSATAGGIERVYLSPEHARVNRLAAQWMREIGMTTRLDAAGNQVGRLERSTASGAPDLDAPALVLGSHLDTVPDAGRYDGIVGVLMGLEVVRMLRVPGPDGTGWRSPLPFALEVVAFSDEEGTRFGKALLGSSAVAGTWDPDWWDLTDADGVTLREAFAEFGLDPGRVGEAARRPEELAGYLEAHIEQGPELDERGESLAVVSSIASARRFQLVVEGEARHAGGTPYDRRRDALLGASEAALAIERVCRAEHHVIGTVGQLEAYPGAVNIVPGEARLSLDLRGEFDDARDDVWTSIERELDVITGRRGLRWHAREVHSAPAVFCAPLLQDVVREGIVSTLGRGVDDPATIFSRAGHDAMAIGSVTDVGMLFLRNPDGISHHPDEAVSAGDVAYGTRALAESVLQLAADRAVSAGPGPT0000875_151DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000875-allC-K02083NANA
AK018_00019588hypothetical proteinATGGACCCCCGTCAGCGGCGCACCCGGGCGAGCCTGCGGGCCGCGATCCTCGAGCTCGCTGGTCAGCGGCCCGTCGGCGAGCTCACGGTCGCCGAGGTCGCCCGCGCCGCCGGTGTGACGCGTGACACCTTCTACCGCCACACGTCCAGCCCCACCGAGCTGCTCGCCGGCGTCCTCGAGGAGGAGCTGCGGCGGATCGAGCCACCCCAGCACGGCGAGCCCGACGAGTTCGTGCGCGCCGAGACGCAGCTGCTGCACCACGTCGCCGACCACGGGGCCATCTACCGCGCCGCGCTCGTCGACGGCGCGGACGGCCGCCTGCGCGAGGTCCTGCACGCGGTCATCGCGGCGCGCCTCGACGAGTTCCTGCGCGCGAACCCGCAGGCAGCGCCCGCCATCCCCGGCGGGCTGCCCGCCGCGGACGCGCGCGCCGTACTGGTCGCCTATTCCGCGGCCGGCACCGTGGGCGCGATCAGCGCCTGGCTGCGCGCCGACGGCGACCGGGCCGAGATCCCGGCGCTGGCCCGCACCATCATCGCCGGCGGCCCCCCGGCGTGGTACGGGGCACGGCAGGGCGCGCAGCCCTGAMDPRQRRTRASLRAAILELAGQRPVGELTVAEVARAAGVTRDTFYRHTSSPTELLAGVLEEELRRIEPPQHGEPDEFVRAETQLLHHVADHGAIYRAALVDGADGRLREVLHAVIAARLDEFLRANPQAAPAIPGGLPAADARAVLVAYSAAGTVGAISAWLRADGDRAEIPALARTIIAGGPPAWYGARQGAQPNANANANANA
AK018_000201056D-arabitol-phosphate dehydrogenaseATGAAGGCCGCAGTGCTCCACGCCCAGGAAGACCTCCGCGTCGAGGACGTCGCCGAGCCCACCCCCGGGCCCGGTCAGGTCAAGCTCCGCAACGCCTACGCGGGCATCTGCGGCTCGGACCTCCACGCGTACTTCGACCCGGCCGGTGCCGGGCTCGACCTGGAGAACCCGCACCCGGTGACGGGCTCCACGCCGCCCCAGATCCTCGGCCACGAGTTCTCCGGCACCGTCGTCGAGGTCGGCGAGGGCGTCGAGGGTCTGGCCGTCGGCGACCGCGTCGCCGTCTGGCCCGTGTACTCCTGCGGCGAGTGCACCGCGTGCCGTCGCGGCAACCCGAACGTCTGCCGCACCATCGGCTTCCACGGCCTGACGTCGCACGGTGGCGGCATGGCCGAGTACACGACCGTCCAGGCGGCGAAGTGCCACCGGCTCCCGGAGAACGTCGACCTCAAGCTCGGCGCGCTCGTCGAGCCCATGGCCGTCGCCTGGCACGCCGTCGACCGGGCCCCCGTCCAGGCGGGCGGGAGCGCCCTCATCGCCGGCGCCGGCCCGATCGGCATCGGCCTGTTCTTCGCGCTGCGCGCCCGGGGCGTGGAGAACATCGTGGTCTCCGAGCCCAGCGCCGAGCGTCGCGCGGCGATCGCCGCCGTCGGCGCCACGAACGTCGTCGACCCGGTCACCGAGGACCTCGCAGCCCGCGTGGCCGAGGCCACCGGCGGCGACGGTGTCGACGTCGCGTACGACGCCGCGGGCGTCGGTCCGGCCGTCACGTCGAGCCTGGCCTCGCTGACCCCGGGCGGCACCGTGCTCGTCGTCGCGATCCACGAGCGGACGATGGAGATCCACCCGACGGCCCACCTCGTCATGGGCGAGACCACCATCACCGGTGCGCTCGGCCAGCTGCCCGCGGACTTCGACGCCGTCATCGAGGCGATGTCGAAGGGCCTCTACGAGGTGTCCGAGGCCTGGGTCTCCGAGGTCTCGATCGACGAGGTCCCCGCGGCGATCGCCGACCTGCGTGCCGGCAAGCGTATGAAGGTGCTCGTCCGGGCCTGAMKAAVLHAQEDLRVEDVAEPTPGPGQVKLRNAYAGICGSDLHAYFDPAGAGLDLENPHPVTGSTPPQILGHEFSGTVVEVGEGVEGLAVGDRVAVWPVYSCGECTACRRGNPNVCRTIGFHGLTSHGGGMAEYTTVQAAKCHRLPENVDLKLGALVEPMAVAWHAVDRAPVQAGGSALIAGAGPIGIGLFFALRARGVENIVVSEPSAERRAAIAAVGATNVVDPVTEDLAARVAEATGGDGVDVAYDAAGVGPAVTSSLASLTPGGTVLVVAIHERTMEIHPTAHLVMGETTITGALGQLPADFDAVIEAMSKGLYEVSEAWVSEVSIDEVPAAIADLRAGKRMKVLVRAPGPT0008200_631DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008200-butB-K00004NANA
AK018_00021804ribX_1Riboflavin transport system permease protein RibXATGACCGCCGTGTCCTGGCGCCCCGTGGGGCGCGCCGTCCTCAACGCGCTGCTGACCCTGGTGATCGTGCTGGCCCTGTGGTGGGCGGTCGTCAACCTCACCGGCATGTCCCCCTACGTCGCCAAGGGCCCGGCCGACGTCTGGGAGTTCCTCGTCGCCGGCGAGGAGGCCGTAGCGAACCGTGCGGACCTGACACCGCTGCTGACGCAGACCCTGCAGGACGCCGCACTCGGATTCGTCGCCGGGATGGGCGTCGCCGGCGTCCTCGCCGTGGCGTTCTCGCTGTCGCGCACCGTCGAGGCCGGTGTCATGCCGCTGGCCCTGCTGCTGCGGGCGATCCCGCTGGTGTCGATCGCGCCGGTGATCATCCTCATCACGGGGCGCGGCACCCAGGCCTCGGTCGCCGTCATCGGCTCGATCGTCGTGCTGTTCCCGGCGCTGGCGTCGATCCTGTTCGGTCTCAACCGGGCGAGCGTGCAGAGCCTGGACCTGGTGCACGTCTACGGCGGCTCCCGCCTGACCGCGATGCGCAAGGTCAACATCCCCGGCGCCCTGCCGTCGCTGTTCGCCGCGGCACGGGTCTCGGTCCCCGGTGCGGTCACGGGCGCGCTGCTCGCCGAGTGGCTGTCGACGGGCACGGGGATCGGCGGGTCGATCGTGAAGTTCACGGCGTCCGCCCGCTTCGACGACCTGTGGGCGTCGGTCGCGCTCATCACGATCGTCACGCTGCTGCTCTACAACGTGGTCCAGGTGATCGAGAACGTGGTGCTGACCCGCATGGCGATGACGTCCGCGCAGCGCTGAMTAVSWRPVGRAVLNALLTLVIVLALWWAVVNLTGMSPYVAKGPADVWEFLVAGEEAVANRADLTPLLTQTLQDAALGFVAGMGVAGVLAVAFSLSRTVEAGVMPLALLLRAIPLVSIAPVIILITGRGTQASVAVIGSIVVLFPALASILFGLNRASVQSLDLVHVYGGSRLTAMRKVNIPGALPSLFAAARVSVPGAVTGALLAEWLSTGTGIGGSIVKFTASARFDDLWASVALITIVTLLLYNVVQVIENVVLTRMAMTSAQRNANANANANA
AK018_00022810hypothetical proteinATGTCCCGGCGTACACGGATCCCCGGCTGGCTCGCGGGCGTCATCGGCGCGGTCGCGCTGGTGGGCGCCTGGTGGCTGTTCTCGGCCACGATCTTCCAGCCGCCGCCCGGCACCACCTTCACGCCGGTCCCCTCCCCGTGGGTGGTGTTCTCCACGATCGCCGACGACGGCCTGGCGGCGTACCGGGGCGTGTTCTCGGTGACGATCACCGAGGCGCTCATCGGCTTCGCCTGGGGCAACGGCATCGCCCTGCTGCTCGCCGCGACGGTGCTGCTCGCACCCCGCATCGAGACGGTCGTGACCCAGATCGCCGTGGTCAGCTACTGCCTGCCGGTGGTGGCCGTCGGCGGCATCGCCATCGTGGTCCTCGGCGGGGCGCCGCGCCCGGGCGAGCCGAGCGCGACGGCGATCTTCCTCGCGGCCCTGGCGGTCTTCTTCACGACCGTGGTCGGCGCGCTGCTGGGGTTCAAGTCGGCCGACAGGGCGAGCCTCGACGTCGTGCGCGTCTACGGCGGGACCCGGTTCACGCAGCTGCGCAAGGTGCGGCTCATCGCCGCGACCCCCGCGATCCTCAACGCCTTGCAGATCGCCGTGCCGTCGGCGTTCCTCGGCGCGGTCCTCGGCGAGTACATGGGCGGGATCGACCAGGGCGTCGGCATCACCCTGATCCGCCTGCAGGGCGAGCTCGACTCGCCCCGCGTGTGGGCCGTCTTCCTGCTCACCGCCGCCGTCGCCCTGATCGGCTACGGCATCGTCGGTCTCCTCTCGCGCGTGGCCACCCCGTGGGTGGCAGGACGGAGCACGTCATGAMSRRTRIPGWLAGVIGAVALVGAWWLFSATIFQPPPGTTFTPVPSPWVVFSTIADDGLAAYRGVFSVTITEALIGFAWGNGIALLLAATVLLAPRIETVVTQIAVVSYCLPVVAVGGIAIVVLGGAPRPGEPSATAIFLAALAVFFTTVVGALLGFKSADRASLDVVRVYGGTRFTQLRKVRLIAATPAILNALQIAVPSAFLGAVLGEYMGGIDQGVGITLIRLQGELDSPRVWAVFLLTAAVALIGYGIVGLLSRVATPWVAGRSTSPGPT0001145_3920DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_00023849nrtD_1COG1116Nitrate import ATP-binding protein NrtDATGAGCCACGACACCACGTCGGGTGCCCGCCCCTCGGGGCTGCCGCAGGATGCTGCGGCAGCCCCGGGGGGCACCGGCATCCACATCGACGGACTGACCAAGACGTTCCACACCGGTCGCCGCAAGACGGTGACCGCGCTGCAGGACGCCCACCTGCACACCGACAAGGGCTCGTTCCTCGCTCTCCTGGGCCCCTCGGGCTGCGGCAAGTCGACGATCCTGCGGGTGCTGGCCGACCTCGAGCACCCCACCGCCGGTGAGGTGTTCGTCGACGGCAAGACGCCGGCCCAGCTGCGCCGCGACAGCGAGCTCGGCATCGCGTTCCAGGACCACGCCCTGCTGCCGTGGCGCAGCGTGCTCACCAACATCCGTCTCGTCTTCGAGGTCGCCGGCCGCAAGGTCGACAAGGCCTACGTCGAGGAGCTCATCGAGCTCGTCGGTCTGACCGGCTTCGAGAAGGCCAAGCCGGCACAGCTCTCCGGCGGCATGCGCCAGCGCGTCTCGATCGCGCGCGCCCTGGCCCTCAAGCCGTCCGTGCTGCTCCTGGACGAGCCGTTCGGCGCGCTGGACGACATGACGCGCCAGAGCCTCAACCTGGAGCTGCTGCGCATCTGGACCGAGAAGCCCGCCACGACGCTGCTCGTCACCCACGGCATCTCCGAGGCGATCTTCCTGTCGGACCGGGTCGCGGTGATGTCGGCCCGCCCGGGACGCATCAAGGAGATCATCGAGGTCGACCTCCCGCGCCCGCGCACCCCCGAGATGATGCGCACCCCGGAGTTCCACGCGCTCGTGGACCGCGCCTCCGAGATCCTGTTCGGTGCGCACGGCGCCGCGGCGGAGGCCTGAMSHDTTSGARPSGLPQDAAAAPGGTGIHIDGLTKTFHTGRRKTVTALQDAHLHTDKGSFLALLGPSGCGKSTILRVLADLEHPTAGEVFVDGKTPAQLRRDSELGIAFQDHALLPWRSVLTNIRLVFEVAGRKVDKAYVEELIELVGLTGFEKAKPAQLSGGMRQRVSIARALALKPSVLLLDEPFGALDDMTRQSLNLELLRIWTEKPATTLLVTHGISEAIFLSDRVAVMSARPGRIKEIIEVDLPRPRTPEMMRTPEFHALVDRASEILFGAHGAAAEAPGPT0001140_1431DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
AK018_000241113hypothetical proteinATGGCAGTCCACAGCAACCTCCCACGCCGCGCCCGGACGGGCGCCGTCGTCGCGGCCGTCGCCGCGAGCACCCTCGCACTCGCCGCCTGCGGCGGCGAGGACACCGCGAGCGGCTCCGGCGAGTCCGAGGACGCCTCGTACGGCGAGATCAGCGTCCAGTACTCCTGGATCAAGAACGAGGAGTTCGCCGGCGAGTTCTACGCCTACGAGAACGGCTACTACGACGAGGCCGGTTTCGACGAGGTCGTGGGCATCTCCGGCCCGGACACCGGAGTCGCCAAGCTCCTGTCCGGCTCCGTCGAGGTCGCCCTGAGCGACGCCGCGTCGATCGGCGCCGCCATCGCCGAGCAGGACGCGCCGCTGAAGATCATCGGCGCCACCTTCCAGAAGAACCCCTTCACGATCCTGTCGCTGGCCGACGGCGCCGACATCTCCTCCCCGGAGGACCTCGTGGGCAAGACGATCGGCGTGCAGGACTCCAACTCCTCGGTGTTCGCGGCGCTGCTGCAGGCCAACGGGATCGACGAGGGCGACGTGACCGTCGTGCCCGTCGACTTCGACCCGACGCCGCTGATGAACGAGGAGGTCGACGGGTTCATGGCCTACCTCACCAACGAGGCCCTGACCGTCGAGCTGGCCGGGTACGACGTCACCAACCTCGCCTACGCCGAGAACGGCGTGCCGTACGTGGCCGAGACGTTCAGCGTCACCGACCAGTACCTCGAGGAGAACCCCGACCTGCTCAAGGCGTTCCTCACCGCCGAGATCAAGGGCTGGACCGACGTCTTCACCGAGTCCTCCGAGGACACCGTCGCGCTGGTGGAGAAGTACTACAACGAGGCCGCCGCGTCGTCGGAGGACGGCCTGGAGGCCGCGTTCGGGGCCCTCGACCCGGTCAAGACCGAGATGGGCCTGGAGGCGGAGAAGGAGCTCATCTCCACGTCCGAGACCGAGGCGAACGGCCTGTTCACGATCTCCGACGAGCTCCAGCAGGAGACCGTCGACTCCCTGGCCGCGGCCGGCTGGGACGTGAGCGTGGACGACCTCTTCGACACCACGCTCATCGACGAGATCTACGCCGAGCAGCCCGAGCTCGTCGACTACCTGCCGTAGMAVHSNLPRRARTGAVVAAVAASTLALAACGGEDTASGSGESEDASYGEISVQYSWIKNEEFAGEFYAYENGYYDEAGFDEVVGISGPDTGVAKLLSGSVEVALSDAASIGAAIAEQDAPLKIIGATFQKNPFTILSLADGADISSPEDLVGKTIGVQDSNSSVFAALLQANGIDEGDVTVVPVDFDPTPLMNEEVDGFMAYLTNEALTVELAGYDVTNLAYAENGVPYVAETFSVTDQYLEENPDLLKAFLTAEIKGWTDVFTESSEDTVALVEKYYNEAAASSEDGLEAAFGALDPVKTEMGLEAEKELISTSETEANGLFTISDELQQETVDSLAAAGWDVSVDDLFDTTLIDEIYAEQPELVDYLPNANANANANA
AK018_000252832hypothetical proteinATGAAGCTGCACGTCAACGGCACCGGCCACGACACCGACCCCCGCCCCGGGCAGTGCCTGCGCACCCTGCTGCGCGAGCACGGCCACACCGAGGTCAAGAAGGGCTGCGACGCCGGGGACTGCGGGGCGTGCGCCGTCCTGCTGGACGGCGAGCCCGTGCACTCGTGCATCGTGCCCGCCCCGCGCGCCGAGGGCGCGCAGGTCACCACCGCCGCCGGGCTCGCCCCGGGCGACGATCTGCACCCCGTGCAGGAGGCGCTGGTCGAGGAGTTCGGCTTCCAGTGCGGGTTCTGCACGCCGGGCATGAGCGTCACCGCGTCCTGCCTGACGGCCGACGACCTGCCCGACCTCGACCGGCGGCTCAAGGGCTCGCTGTGCCGCTGCACCGGCTACCGCCCGATCCGCTCGGCGATCCGCCGGACCCTCGGCGAGGGCGACGCGCCGCCCTCGCCGGTCGACCCGGCCACGAGCGGGCCCGCGACCACGGGCGAACCCGGCACCGGGGACGACGACGGCGCCCCGGCGGCCGGCGTCGGACGGTCGGTCTCGCCCGAGCCCGCGCGCCGCGTGGTCCAGGGCCTGGAGCCGTACACCTTCGACACCCCCGAGGCGACGGGCACGCTCGTGCTGCGCGTCCTCGGCTCGAAGCACGCGCACGCCCGGATCACCGCGATCGACACCGCCGCCGCCCGTGCGCTGCCCGGCGTCGTCACCGTCCTCACGCACGCCGACGCCCCCGCGACACGGTTCTCCACCGCCCGGCACGAGCACCGCACCGACGACCCCGACGACACCCGGGTGCTCGACGACACGGTCCGCTTCGTCGGCCAGCGCGTGGCCGCCGTCGTCGCCGAGACCGCCGAGATCGCCGACGCCGCGCTCGGGCTGATCGACGTGACCTACGAGCCCCTGCCGTTCGTGCTCGACGCCGAGGAGGCGCGACGGCCGGGCGCCCCGGCGGTCCACCCGGACCGGCCGGTCGCCGTCCAGGCCGACCCGGACCGCCCGAACGTGCTCGGCAGCCTGCACGCCGGCATCGGCGGCGACGTCGACGCGGCGCTCGCGGCGAGCGCCGTCACGGTCGGCGGGACCTGGCACACCGGACGGGTAGCGCACGCCCAGCTCGAGACCCACGGCGCGCTCGGCCGGCTCGACGACGACGGACGGCTCGTGATCCGCTCCAGCACCCAGGTGCCGTTCCTCACACGGAACGAGCTCGCCCACGTCTTCGACCTGCCCCGCGACCGCGTGCGGGTGCACGCCGCTCGCGTCGGCGGCGGGTTCGGCGGCAAGCAGGAGATGTTCGTCGAGGACATCGTGGCGCTCGCCGTGCTGGCCACGGGTCGGCCCGTGTCCTACGAGTTCTCCCGCACCGACGAGTTCCGGCGCGCGGCGCTGCGCCACCCCTTCCGGGTGGAGGTCTCCCTCGGCGCGACGGCCGACGGGACGCTGACGGCGATGAAGGTCGACGTGCTGAGCAACACCGGCGCGTACGGCAACCACGGCATCGGGGTGCTGTTCCACTCGGTGGCCGAGTCGATCAACGTCTACCGCTGCGCGGTCAAGCGCGTCGACGCCGAGTCGGTGTACACGAACGCCGTCCCCTCGGGGGCGTTCCGGGGGTACGGGCTGGGGCAGGTGATCCTCGGCGTGGAGTCGGCGATGGACATGCTGGCCGAGCGGCTCGGGATCGACCCGTTCGAGCTGCGCCGTCGCAACGCGGTGCGCGACGGCGACCCGCTGCTGACCGTCGACGACGAGCCCGAGCCGGACCTGCGCTGGGGCAGCTACGGGCTGGACCAGTGCCTCGACCTCGCCCAGGACGCGCTGCGGCGCGGCAACGGCGTCGAGGCCCCGCCCGGGTGGCGGGTCGGCGAGGGCATGGCGATCGCGTTCATCGCGGGCGCGGCCCCGGGCGGCCACCACGCGCACGCGGCGGCGTCGCTGCGCCCGGACGGCACGTTCGCGCTGTCGGTCGGGACGGCCGAGTTCGGCAACGGCACCAGCACGGTGCACCGGCAGATCGCCGCCTCGACCCTGGCGGCGACGCCGGACCGGATCGTGCTGCGCGCCGCCGACACCGATCTGGTGGACCACGACACGGGCGCGTTCGCGTCGGCGGGCACGGTGGTGGCCGGCAAGGCGCTGGCGCGCGCCTGCACGGCGCTGCGCGGCCTGATGATCGACGTCGCGCGGCGGGTGGCCGACGGCGACGCACCGGCGGGAGGCGCGGCGCAGCCGGCCGAGCTCGTCGCCGAGGGCGTCCGCGTGGGCGACCGGCTCGTCGGGTTCGCCGCGATCGTGGCCGCTGCCGGGGACCCGGAGAGCCGGGAGCTGACGACCCACGGCAGCGACGACGGCAAGGAGCGCAGCCTGGCCTTCAACGTGCACGCGGTGCGCGTCGCCGTCGAGGAGGAGACGGGGTCGGTGCGCGTGCTGCAGTCGGTGCAGTCCGCCGACGCCGGGTTCGTCATGAACCCGGCCCAGTGCCGCGGTCAGGTCGAAGGCGGTGCGGCCCAGGGGCTGGGCAGCGCGCTGTACGAGGAGGTGCTGGTCGACGACCGGGGCGCGGTGACCAACCCGGTGTTCCGCACCTACCGTGTCCCGCAGTCCGCCGACGTCCCCGACACCGAGGTGTACTTCGCCGACACCGTCGACACGATCGGGCCGTTCGGCGCGAAGTCGATGAGCGAGTCGCCGTACAACCCGGTGGCGCCCGCTGTCGGCAACGCGATCGCCCGCGCGCTGGGACGGCGGCCGTTCCGCCAGCCGTTCACCCGCGAACGGGTGTGGCGGCTGGCGCAGGAGGCACCCGAGCCCCGGGTGAAGTGAMKLHVNGTGHDTDPRPGQCLRTLLREHGHTEVKKGCDAGDCGACAVLLDGEPVHSCIVPAPRAEGAQVTTAAGLAPGDDLHPVQEALVEEFGFQCGFCTPGMSVTASCLTADDLPDLDRRLKGSLCRCTGYRPIRSAIRRTLGEGDAPPSPVDPATSGPATTGEPGTGDDDGAPAAGVGRSVSPEPARRVVQGLEPYTFDTPEATGTLVLRVLGSKHAHARITAIDTAAARALPGVVTVLTHADAPATRFSTARHEHRTDDPDDTRVLDDTVRFVGQRVAAVVAETAEIADAALGLIDVTYEPLPFVLDAEEARRPGAPAVHPDRPVAVQADPDRPNVLGSLHAGIGGDVDAALAASAVTVGGTWHTGRVAHAQLETHGALGRLDDDGRLVIRSSTQVPFLTRNELAHVFDLPRDRVRVHAARVGGGFGGKQEMFVEDIVALAVLATGRPVSYEFSRTDEFRRAALRHPFRVEVSLGATADGTLTAMKVDVLSNTGAYGNHGIGVLFHSVAESINVYRCAVKRVDAESVYTNAVPSGAFRGYGLGQVILGVESAMDMLAERLGIDPFELRRRNAVRDGDPLLTVDDEPEPDLRWGSYGLDQCLDLAQDALRRGNGVEAPPGWRVGEGMAIAFIAGAAPGGHHAHAAASLRPDGTFALSVGTAEFGNGTSTVHRQIAASTLAATPDRIVLRAADTDLVDHDTGAFASAGTVVAGKALARACTALRGLMIDVARRVADGDAPAGGAAQPAELVAEGVRVGDRLVGFAAIVAAAGDPESRELTTHGSDDGKERSLAFNVHAVRVAVEEETGSVRVLQSVQSADAGFVMNPAQCRGQVEGGAAQGLGSALYEEVLVDDRGAVTNPVFRTYRVPQSADVPDTEVYFADTVDTIGPFGAKSMSESPYNPVAPAVGNAIARALGRRPFRQPFTRERVWRLAQEAPEPRVKPGPT0004835_214DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_HOMEOSTASIS,PGPT0004835-xdhD-K12528NANA
AK018_00026855hypothetical proteinATGGACGTCACCTCGGTCACCGGGTTCCGGACCGCCCGCACGCGCGAGGACCTCGCGCTGGACCCCGGGGAGGTCTTCCTCGGGGGCGGCACCTGGCTGATGAGCGAGCCGCAGCCCGGCACCACCGGGCTCGTCGACCTCACCACGCTCGGCTGGCCCGACCTGGAGGTCCGCACCGAGGGGCTGCGCATCGCCGCGACCTGCACGATCGCCACGCTGCGGGGCTGGGCCGAGGGACGCGGCCCCGTGCCCGTGCCGGCCGACTGGTCGGCGGTCGCGATGATCCCCGACGCCGCGGACGCGCTGCTGGCCTCCTTCAAGATCTGGAACACCGCCACCGTCGGCGGCAACGTCTGCCGGGCCTTCCCCGCCGCCGCGATGGTCTCGCTCGCCGTGGCCCTCGACGGGGTCGCCGAGGTGTGGACGCCCGACGGCGGCAGCCACCGCCTGCCCGTGGCCGAGCTCGTCACCGGCGCCGGCGAGACCGCCCTGCGCCACGGCGAGGTGCTGCGCGCGATCGAGCTGCCCGCGAGCGCCCTGCGCTCCCGCGCCGGGCTGCACAAGATCGCGCTCGCCGAGCTCGGTCGGTCCGGCGCCGTCGTCTCGGGCCGCCGCGACGCCGACGGCACGTGCGTCGTCGCGGTGACGGCCGCGGTCGAACGACCCGCCGTGCTGCGGTTCGCCGCGCTGCCCGACGCCGCCACGCTCGCGGCCGCCGTCGGCGACCTCGACGGCTGGTACACCGACTCCCTCGGCGCGGCCGACTGGCGGCGCGGCGTGAGCATCGTGCTCGCCGAACGCCTGCGCGGCGAGCTCGCCGGCGACTCGGAGAAGGACCCGGAGGACCCCGCATGAMDVTSVTGFRTARTREDLALDPGEVFLGGGTWLMSEPQPGTTGLVDLTTLGWPDLEVRTEGLRIAATCTIATLRGWAEGRGPVPVPADWSAVAMIPDAADALLASFKIWNTATVGGNVCRAFPAAAMVSLAVALDGVAEVWTPDGGSHRLPVAELVTGAGETALRHGEVLRAIELPASALRSRAGLHKIALAELGRSGAVVSGRRDADGTCVVAVTAAVERPAVLRFAALPDAATLAAAVGDLDGWYTDSLGAADWRRGVSIVLAERLRGELAGDSEKDPEDPAPGPT0007270_243DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0007270-ygeT|xdhB-K13479NANA
AK018_000271359COG04028-oxoguanine deaminaseATGACCCGCACCATCGTCGAGAACGGCTACGTCGCCACGGTGGACGCCGCCGGCACCGAGCACGCCGTCGGGCACGTCGTGCTCGACGGCGGCGAGGTCGTGGCCGTCGGGGCCGGCCCGGCGCCGGAGCACCTGCGCGCTGGGGCCGAGGTCGTCGACGCCTCCGGCTGCCTGGTCACGCCGGGCCTGGTCAACACCCACCACCACCTGTACCAGTGGCTCACCCGCGGCTACGCCCAGGACTCGATCCTGTTCGACTGGCTCACCGCGCTGTACCCGCTGTGGTCGCGCATCGACGCCGACCTGACCGGGACGGGGGCGGCCGGGGCGATGGCGGTCCTGGCCCGCGCGGGCTGCACCACGGTCGGCGACCACCACTACGTCTTCCCGCAGGGGTCGGGCGACATCGTCGGCGCGCTGGTCGAGGCGGCCTCCCGTGTCGGCGTCCGCCTGCACGCCACCCGCGGGTCGATGGACCTCGGTGCCTCGCAGGGCGGGCTCCCGCCGGACTTCGCCGTCGAGACCACGGACGCGGCCCTCGCGGCGTCCGCCGAGGCCGTCGAGCGGTACCACGACCGCTCCCGCGAGGCGATGGTGCGCATCGCGATCGCGCCGTGCTCGCCGTTCTCGGTCACCCCGGACCTGCTGCGCGAGGCGGCCGTCCTCGCCCGCTCCCTCGACGTGCGCCTGCACACCCACGCCTCGGAGACCGCCGAGGAGGACGCCTACTGCCTCGAGCACTTCGGCACGACACCCACGCAGTACCTGGAGGACCAGGGCTGGCTGGGCCCCGACGTCTGGATGGCGCACGCCGTGCACCTCGACGACCCCGCGATCGAGCGGTACGCCGCCACCGGGACGGGCGTGGCGCACTGCCCGTCCTCGAACGGTCGCCTGGCCGCCGGGATCGCGCCCGTGCGCGCCATGCTCGACGCCGGGGTGGCGGTGGGTCTGGGTGTCGACGGCGCCGCCTCCAACGAGTCGGGCCAGCTCGGCGTCGAGATCCGCGAGTCCGTGCTCATGAACCGGCTGCGCACGGGGGCGGACTCGATGAGCGTGCGCGACGGGCTGCGTCTGGCGACGATCGGCGGTGCGCACGTCCTGGGACGCCAGGACGAGATCGGCTCGCTCGAGGTCGGCAAGCTCGCCGACGTCGCCGTCTGGCGGGTCGACGGCGTGGAGCACGCCGGCATCCTCGACCCCGTCGCCGCCCTGGGGCTCGGCGCGCTGCCGCCGCTGAAGCGCCTCTACGTGGGCGGCCGCGCCGTCGTCGAGGACGCCGCGCTGGTCACGACCGACGAGCCGACGCTCGCCCACGAGGTGGCGCTCGCCTCGCGCGAGCTGGCCGAGCGGCTCTGAMTRTIVENGYVATVDAAGTEHAVGHVVLDGGEVVAVGAGPAPEHLRAGAEVVDASGCLVTPGLVNTHHHLYQWLTRGYAQDSILFDWLTALYPLWSRIDADLTGTGAAGAMAVLARAGCTTVGDHHYVFPQGSGDIVGALVEAASRVGVRLHATRGSMDLGASQGGLPPDFAVETTDAALAASAEAVERYHDRSREAMVRIAIAPCSPFSVTPDLLREAAVLARSLDVRLHTHASETAEEDAYCLEHFGTTPTQYLEDQGWLGPDVWMAHAVHLDDPAIERYAATGTGVAHCPSSNGRLAAGIAPVRAMLDAGVAVGLGVDGAASNESGQLGVEIRESVLMNRLRTGADSMSVRDGLRLATIGGAHVLGRQDEIGSLEVGKLADVAVWRVDGVEHAGILDPVAALGLGALPPLKRLYVGGRAVVEDAALVTTDEPTLAHEVALASRELAERLNANANANANA
AK018_000281107pucA_1COG1975putative xanthine dehydrogenase subunit AATGCTTGAACTTGCCCGCGATCTCCTGCCGCTGGTCCGGTCGTCCGCGCCGGTCGCCGTGGTCACGGTGGCGCGCGTCGCCAGCAGCGCGCCGCGCGGCGTCGGCTCGGCGATGGCGGTCACCGGTGACGGCGCGGTGCTCGGGTCGATCTCGGGCGGCTGCGTGGAGAGCGAGGCGGTCGTGCTCGCCCACGCCGCCCTCGCGACCGGCCGGGCGCAGACGGCCCGCTTCGGGTTCGACGACGCCACCGCCCACGCCGCGGGCCTCGCCTGCGGCGGCCAGGTGGACGTCGTCGCCCAGCGCCTCGAACCGACCGACACCCGCACGGTGCGGGCGCTGGAGGACGCCGCGGCGGACCGGCCCGCCAGGCTCGGCCTCGTGGTCTCCGGACCGGCGGCCGGACGCACCGTCGACGTCGAGGCCACCGTCGACGCCACCGCCGCGGCGACGCTCGCCGACCGCGCCAGCCGCCTGCTGCCCGGGGCGTACGGCGGCGAGGACCTGCTGGTGGTGCAGCACGCGCCCCGGGCCCGCCTCGTCCTCCTCGGCGCCGGTGAGCACGCCGCGGCCCTGTGCCACGTGGGCGCGGCGGCCGGGTTCGCGGTGACCGTGTGCGACCCGTGGGAGACCCTGGTGACACCCGCGCGGTTCCCCGCAGCGACGGAGCTCGTCACCGCGCTCCCCCACGAGTACCTCGCCGGGCTCGACGAGCACGACACCGACGCCCGCACGGCCGTGTGCGTCCTCACCCACGACGAGCGCCTCGACGTCCCGGCGATCCGGCAGGCGCTGTCGATGCCGGTGGGCTTCGTCGGCGCGATGGGGGCGCGCGCCACCGTGACGCGTCGTGCCGCCCGGCTGCGCGACGTCGGCGTCGCCGAGGTCGACCTCGCCCGCCTGCACTCCCCCCTCGGGCTCGACCTGGCCGGGTCCTCGCCCGAGGAGACCGCCCTGTCGGTCCTGGCCGAGATCGTCGCCTCACGGCACGGCGGCTCCGGCCGCCCGCTGCGCGAGACGGCGGGCCGGATCCACCGCGGTCCGTCGACCGCACCCTCGTGCCGGGTCACCGGCCCGGACCGCACCGCCCTCGGAGGTACCCGCCCATGAMLELARDLLPLVRSSAPVAVVTVARVASSAPRGVGSAMAVTGDGAVLGSISGGCVESEAVVLAHAALATGRAQTARFGFDDATAHAAGLACGGQVDVVAQRLEPTDTRTVRALEDAAADRPARLGLVVSGPAAGRTVDVEATVDATAAATLADRASRLLPGAYGGEDLLVVQHAPRARLVLLGAGEHAAALCHVGAAAGFAVTVCDPWETLVTPARFPAATELVTALPHEYLAGLDEHDTDARTAVCVLTHDERLDVPAIRQALSMPVGFVGAMGARATVTRRAARLRDVGVAEVDLARLHSPLGLDLAGSSPEETALSVLAEIVASRHGGSGRPLRETAGRIHRGPSTAPSCRVTGPDRTALGGTRPPGPT0007280_624DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_BIOSYNTHESIS,PGPT0007280-xdhC|paod|ygeB|pucA-K07402NANA
AK018_00029570nboR_1Nicotine blue oxidoreductaseATGCGGGTCTGCGGGCTGGTGCTGGCCGCGGGCGCGGGCACCCGGTTCGGCGGCCCCAAGGGCCTGGCGCGCACGACGTCGGGCGATCCGTGGGTGCGACGCGCGGTCGTGATGCTGCAGGACGCGGGGTGCGACGAGGTGCTCGTCGCCGTGGGCGCTCGGGGGCCGGAGGTCGCCGCGCTCGTGCCGCCGTCCGCCCGCGCGGTCACCGTCGCGAGCTGGGCCGACGGGCTGGCCGCCACGCTGCGCGCGGGTCTCGACGCCGCTGCGCGTGGTGACGCCGAGGCACTGGTCGTGACCCCGGTCGACACCCCCGACGCGCCGCCGGAGGCCGTGCGACGCGTGCTCGACCGGGCCGCAGGCGAGGCGGCGGCGCCCGACGACGCCCTGGCGCGCGCCGTCTACGCCGGGCGTCCCGGCCACCCGGTGCTCCTGGGACGGGCGCACTGGGGCGGGGTGCGCGCCACGCTGACCGGCGACGTCGGGGCGGGGCGCTACCTCGCCGCCCGCGGGGCGCTGGTCGTCGAGTGCGGCGACCTGTGGTCCGGGCACGACGTCGACCGTGCCTAGMRVCGLVLAAGAGTRFGGPKGLARTTSGDPWVRRAVVMLQDAGCDEVLVAVGARGPEVAALVPPSARAVTVASWADGLAATLRAGLDAAARGDAEALVVTPVDTPDAPPEAVRRVLDRAAGEAAAPDDALARAVYAGRPGHPVLLGRAHWGGVRATLTGDVGAGRYLAARGALVVECGDLWSGHDVDRANANANANANA
AK018_000301647yheS_1COG0488putative ABC transporter ATP-binding protein YheSGTGCAGCTCGTCGCCACCGGCCTCTCCTACGCCTACCCGGAGCACCCCGTGCTCGACCGGGTGGACCTGCGCGTCTCCGACGGGGTCCGCCTCGGCGTCGTGGGGGAGAACGGGTCGGGCAAGTCGACGCTGCTCCACCTGCTGGCCGGCGACCTGGCGACCCAGACGGGTGAGGTGCGCCGGCACGGCTCCGTCGCCCTGGTGACCCAGGAGCTCCACGAGGAACCCGGCCGCACCATCGGCGACCTGGTCGAGGCCACGCTGGCCGACCTGCGGGCCCTCGCGCGCGAGCTGCAGCGTGCCGCCGAGGCCTTCGACCACGAGCGCGGAGACCTGCGCGAGCTCGGCGAGCTGCTGGGCCGCGTCGAGCACCTGGCGGCGTGGGACGCCGACCGCCGCGTCGACGAGGCCCTGACACGCCTCGGTGCCGTGCGCGACCTCGACCGCCGCCTCGACACGCTGTCCGTCGGGCAGCGCTACCGGGTGCGCCTGGCGTGCCGGCTGGCCGAACGAGCCGACCTGCTGCTGCTGGACGAACCCACGAACCACCTCGACGACTCCGGCGTCGCGTACCTGACCGAGCAGCTGCGGACCTGGCGCGGCGGCGTCGTGCTCGTCACCCACGACCGAGAGCTGCTCGACGACGTCGCCACCGCGATCTACGACCTCGACCCCTCCATGGACGGGCGGCCCGTGCTCTACGGCCAGCCCGGCTACCACTCCTACCGGCTCGGCAAGGCGGCGATGCTCGCTCGCTGGCAGCAGCGCTACCGGGTCGAGCAGGAACGTGCCGAGGAGCTGTGGTTCCGCCGCGACCGCTCCTACGAGGGGCTCTCCGACGAGTGGCGTCCGCCCAAGGGCTCCCAGAAGCACCGCCGCGGCACCCGTGCCCGCATCCACGTCAAGGCCGCCGACCGGCTGGTGGAGAAGCTCGAGGCCGAGGCGCTCGACGTCCCGCCGCCGCCCCTGGAGCTCGCCTTCCCGGACCTGCCGGCGATGTCACCGGGGTGGGACCCCGGCGAACCGCTGGTCGAGCTGCGCTCGCCCCGGGTCGAGGCGCCCGACGGCACCGCGATGCTGGACCTGCCGGGCACCAGGTTGGCGGTACCGCCGTCGGGCCGGCTGCTCGTCGTCGGGTCGAACGGCACCGGGAAGTCCACGGCGCTGGCGGCGCTCGCCGGCACGGCCGAGCTCGCCCGCGGAGCCCGGACGCTGCGCGACGGCGTCAGGTTCGGGGTCGTCGCCCAGGAGCGCAGGACGGCGGACGGCGGCAGCGCCGGGAGATCCGGGTTCGACGCCTCTGCGGCGGAGGCGCTGGAGCTGTTGTCCCGCGGGGAGCTGGACCCGGACCACCTGGTCCCGGTCGCCGCGCTCGGGCTGCTCACCGAGGACGAGCTGGACCGCCCGCTGCGCGAGCTGAGCGTCGGGCAGCAGCGGCGGTTCGACGTCGCGCTCGCGCTGCTGCACGCCCCGCACCTGCTGATCCTCGACGAGCCGACGAACCACCTGTCCGTGGACCTGGTGGACGCGCTGACGCTGGCGCTGCAGCGCACGTCCGCCGCCGTCGTCGTCGCCACCCACGACCGCCGCATGCGGGCGGACCTGGCGGACTGGCCGATGCTCGACCTGAGCCGTCCCGCGAGGTAGMQLVATGLSYAYPEHPVLDRVDLRVSDGVRLGVVGENGSGKSTLLHLLAGDLATQTGEVRRHGSVALVTQELHEEPGRTIGDLVEATLADLRALARELQRAAEAFDHERGDLRELGELLGRVEHLAAWDADRRVDEALTRLGAVRDLDRRLDTLSVGQRYRVRLACRLAERADLLLLDEPTNHLDDSGVAYLTEQLRTWRGGVVLVTHDRELLDDVATAIYDLDPSMDGRPVLYGQPGYHSYRLGKAAMLARWQQRYRVEQERAEELWFRRDRSYEGLSDEWRPPKGSQKHRRGTRARIHVKAADRLVEKLEAEALDVPPPPLELAFPDLPAMSPGWDPGEPLVELRSPRVEAPDGTAMLDLPGTRLAVPPSGRLLVVGSNGTGKSTALAALAGTAELARGARTLRDGVRFGVVAQERRTADGGSAGRSGFDASAAEALELLSRGELDPDHLVPVAALGLLTEDELDRPLRELSVGQQRRFDVALALLHAPHLLILDEPTNHLSVDLVDALTLALQRTSAAVVVATHDRRMRADLADWPMLDLSRPARPGPT0027935_122DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027935-tylC|oleB|carA|srmB-K18230NANA
AK018_00031252hypothetical proteinATGGTCACCGTCACCGTCTACAGCACTGGTCCGTCGTGCATCCGATGCCGCATGACGATCGACAAGCTGCAGGACAAGGGAGTCACGCCGGTCGTGGTCCAGCTGGCCGAGAAGCCGGCCGCGCACGAGTACGTGATCGAAGAGCTCGGCTACAGCGAGGCCCCCGTGGTCGTCGTCGAGGACGGCACCGGACAGGACCACTGGAGCGGGTTTCGAACCGACCAGATCGCTCGCGTGGCCCGGGCGGCCTGAMVTVTVYSTGPSCIRCRMTIDKLQDKGVTPVVVQLAEKPAAHEYVIEELGYSEAPVVVVEDGTGQDHWSGFRTDQIARVARAANANANANANA
AK018_000321020dnaG_1COG0358DNA primaseATGACCACCACGGCACGGGTCCTGGCCGCGAACGCCGCGGCCTGGGACTACTGGCGCTGGCACGCCGGCCAGGCCGACGCCTGGGTGAGCGACTACCTCGCCGCCCGCGGGTTGCGCGGCACGGTCGCCGGCCAGGCCCCGGCCGGGTGGGCGCGGCTGGTGCCCACGCTGACCAAGCGAGGCTTCACCGAGGCTGAGCTGCTCGACGCCGGCCTGGCCGTGCGCGCCGGCAACGGCTCGGTGGGCGATGCCTTCCGGGACCGGATCATGCTGCCCATCTGCGATGACGCAGGGCAGATCATCGGATTCACCGCACGTCGCAACTCGGCCAGCGACGATGCAAACGAGCCGCCGGCGAAGTACCTGAACACCACCAGCACGGCCGTCTACGACAAGAGCCGGGCGCTGTACGGGCTGGACGCCAAGACCACACAGCGACTACGCCGCGGCGCAACACCGGTACTGGTCGAGGGCGCCCTCGACGCCGAGGCCGTGCGCCGCACCGGCGCCGACCTCGTGCCCCTGGCCGCGTGTGGCACCGCCATCACCACCGGCCACCTCGAGGCGCTGCGAGCCATCGACCCCGACAGCGTGGGCCGGCTGATCCTGGCCACCGACGCCGACACCGCGGGCCAGCGGGCCACCTGCCGCCTGGTCGGGCTGCTCACGCCCGACGAGGTCGCCACCGTGCGCGTCGCCGAGCTCGAGCCCGACACCGACCCGGCCGACCTGATCCAGCAGGGCCGGCGCACCGACCTGCGGGCCGCACTGGTCCAGCAAGCCCGAACCCTGGCCGAGGTCGCCATCGACGCCACCCTGGCCAGCTACGACCTGACCAGCATCGAGGGCAGCGCCGCCCTGCGGCATGTCACCGCCGCCGTCGCGAGCCAGAACCCGGCCACCCTGGCCCATGCGACGACCCACCTGACCCACCGCCTGGCCCCCGTGCTGGACCACGACATCGTCGCCGGCGAGATGGTCGACGCCATCACCACTTCGAGCAGCGGGGACGGTAAGTGAMTTTARVLAANAAAWDYWRWHAGQADAWVSDYLAARGLRGTVAGQAPAGWARLVPTLTKRGFTEAELLDAGLAVRAGNGSVGDAFRDRIMLPICDDAGQIIGFTARRNSASDDANEPPAKYLNTTSTAVYDKSRALYGLDAKTTQRLRRGATPVLVEGALDAEAVRRTGADLVPLAACGTAITTGHLEALRAIDPDSVGRLILATDADTAGQRATCRLVGLLTPDEVATVRVAELEPDTDPADLIQQGRRTDLRAALVQQARTLAEVAIDATLASYDLTSIEGSAALRHVTAAVASQNPATLAHATTHLTHRLAPVLDHDIVAGEMVDAITTSSSGDGKNANANANANA
AK018_00033204hypothetical proteinATGTTCATTTCGGCAGAGTATGACGCCCTCTGGACTCTCGCCGTGGCGGCCATCTTCTCCGCACTAGTTCTGATGGTCTGCGCGATCGCCACCTGGATCGCCCGAGGGGGCAGAGATGGGTTGGGATGGCTTACGCTGGCCGTCTTCGCACCGGTGGTTGGACCCATAATCTTCCTTCGCCGGGCGCGAACTGAGCGGTCGTAGMFISAEYDALWTLAVAAIFSALVLMVCAIATWIARGGRDGLGWLTLAVFAPVVGPIIFLRRARTERSNANANANANA
AK018_00034444hypothetical proteinATGAGCGACTGGGGCGAAGACGACATCGGCACCCCGGACGACGTCGAGCCGGGCGACGAGGTTGGTGAGCCCGACGAGACCCCGCAGCTGTACTACGGGTCCGTCGACGAGTTCGTGCGCGACTACCTGCGCCACGTCTACCGGCGCCGCATCGACGGCCGCCACCGGTGCTGGGCCGGCCGCTGGTGGCAGCACCCTGAGGCCGTGATCCGGCTCGAAGCGCTCTGGCGGTCCTGGGAACACCTGCGCCTCGACCCCGCCACCGGCATGAGCGTGTGGTGGCGCGACCACGTCGACCATCACATGACCGTCCTGATGGATCCCGACGGTCCGTTCGCCACGGCGACCGAGGGCACCGAGAACGCCTCCAAGCGCGGCGAACCGTTGCCCTACATCGCTCCGCCGGCAGGCATGTTCCCCGACGTCCGTGAGCACCAACCGTGAMSDWGEDDIGTPDDVEPGDEVGEPDETPQLYYGSVDEFVRDYLRHVYRRRIDGRHRCWAGRWWQHPEAVIRLEALWRSWEHLRLDPATGMSVWWRDHVDHHMTVLMDPDGPFATATEGTENASKRGEPLPYIAPPAGMFPDVREHQPNANANANANA
AK018_000351797hypothetical proteinATGAGCACCCCGAACAACCGCCGCCGAGACCCCGGCGGCCTGACCGGCGAGATGGCGCTGCTCTGGGTCGGCATCGTGCTGGTCGTGCTGGTCGTCGGATCGCTGTACTTCGCGATGCGGATCGGTCATCGCATCGCCGGTACCGGCGAGACCGTCCCGGCCAACCCCTTCGACGTGTTCTTCGGGATCCTCGACGGCGAGCTCGCGTGGCCGGGCACTCCCGGCTGGTGGGTGCTGGGTGTGGTGGCCTCCGTGATCCTGGTCCTGACCGTCATGGCCACGGTCGCGATGACTCGGATGCGCCGTCGCCGCTCCCGGGTGGACCGCGCCGCGGCCTACATGGGCCGCGGCCGCGACGTCGCCGACCTGAGCCGCAAGAGCGCCGCCGCCAAGGCTCGCCGCCTGGGCGCCGGCGAGACCCCCGGGGTCCCGATCGGCCAGACCGTCGGCACGGGGCAGCCGCTGTTCGGCTCCTGGGAGGACATGCACATCGACATCTGGGGCCCGCGCACCGGCAAGACGACCTCCCGCGCGGTACCGGCGATCCTCGAGGCGCCAGGGTCGGTGCTGGTGACGTCGAACAAGCGCGACGTCGTCGACGCCACCCGCGACGTGCGCGCCGCGGCCGGGCCAGTGTGGGTCTTCGACCCGCAGGCGATCGCGCGCGAGGAACCGACGTGGTGGTGGAACCCGCTGTCCTACGTCACCGACGAGGTCCGCGCCGCCAAGCTCGCCGAGCACTTCGCCTCCGGGTCCCGCGACCCGGGCGCCAAGACCGACGCCTACTTCGACCCCGCCGGACAGGACCTGCTCGCCGGGCTGCTGCTGGCCGCGGCCCTGGACTCCCGACCGATCACCGACGTGTACTCCTGGCTGACCCGCCCCACCGACGAGACGGCCGTCGACATCCTGCGCGAGCACGGCTTCACCCTGACCTCGGACCAGGTCGCCGGCGTCGTGGCGGCCCCGGATAAGCAGCGCGGTGGCGTGTTCGGCACCGCCCAGCAGATGGCCTCGTGCCTGACGAACCGGCAGGTCGCCCGCTGGGTCACCCCGAACGGGCCGGCCGACGACCGCCCCCAGCTGCGGCCCGAGGACTTCGTGGGCGCCGAAGGCGGCACCCTGTACTCGCTGTCCAAGGAGGGGCGCGGCACCGCCGGACCCCTGGTCACCGCCCTGACCGTCGCCGTCGTCGAAGCCGCTGAAGAGCTCGCTGCCGCCTCCGCCGGCGGCCGGCTGGCCACGCCGCTGCTCGGCGTCCTGGACGAAGCCGCGAACGTGTGCCGGTGGCGCGAGCTGCCCAACCTGTACTCCCACTACGGCTCGCGCGGGATCGTGCTCATGACGATCTTGCAGTCCTGGTCCCAGGGCGTCGAGGTATGGGGAGAGTCCGGGATGAAGAAGCTGTGGAGCGCCTCCAACGTCAAGGTCTACGGCGGCGGCGTCTCCGAGACCGTCTTCCTCGAGGACCTGTCACGCATGATCGGCGACTACGACCGCCTGCAGTCCTCGACGTCGTCCGGTCGGGGACATCGCACCGTCTCCCAGCAGCTGCACCGTGAACGCATCCTCGACGTCGCCGACCTCGCCGCCCTGCCCAAGGGTCGCGCCGTGGTCCTGGCCTCCGGATCACGACCCACCCTGATCCGAACCAAGCCCTGGATGACCGGCCCGCACGCTGCCGCCGTGCAGGCGTCCCTCGACGCCCACGACCCGCAGGCCGCACGCACGATCCAGGAAGCGGAAGACTCGGTCGCCGAGGTGGAGGCCGACGAACTCGAAAGGACCACGGCATGAMSTPNNRRRDPGGLTGEMALLWVGIVLVVLVVGSLYFAMRIGHRIAGTGETVPANPFDVFFGILDGELAWPGTPGWWVLGVVASVILVLTVMATVAMTRMRRRRSRVDRAAAYMGRGRDVADLSRKSAAAKARRLGAGETPGVPIGQTVGTGQPLFGSWEDMHIDIWGPRTGKTTSRAVPAILEAPGSVLVTSNKRDVVDATRDVRAAAGPVWVFDPQAIAREEPTWWWNPLSYVTDEVRAAKLAEHFASGSRDPGAKTDAYFDPAGQDLLAGLLLAAALDSRPITDVYSWLTRPTDETAVDILREHGFTLTSDQVAGVVAAPDKQRGGVFGTAQQMASCLTNRQVARWVTPNGPADDRPQLRPEDFVGAEGGTLYSLSKEGRGTAGPLVTALTVAVVEAAEELAAASAGGRLATPLLGVLDEAANVCRWRELPNLYSHYGSRGIVLMTILQSWSQGVEVWGESGMKKLWSASNVKVYGGGVSETVFLEDLSRMIGDYDRLQSSTSSGRGHRTVSQQLHRERILDVADLAALPKGRAVVLASGSRPTLIRTKPWMTGPHAAAVQASLDAHDPQAARTIQEAEDSVAEVEADELERTTANANANANANA
AK018_000361332hypothetical proteinGTGCCGTTCGGGCGGCACATCCAGACCGGCGCGACGGTGTGCTGCGACCCGATCAGCTGGTACCAGCGTGCCAACCTCATCGGCAACCCGTCCGTGTTCTTCCTGGGTCGTCCCGGTCTGGGCAAGACGTCGGCGGTGATGCGCATGGCGGTCGGCCTGGCCGGCATGGGCGTCAGCCCACTGGTGCTCGGGGACACCCGGCCGGACTACATCCGGATGGTCGAGCAGCTCGGTGGTCAGGTGATCCCGCTCGGTCGCCACCGTGGCTCGCTGAATGTGCTCGATCCCGGGGAGGCCCCCCAGGCGGCGGCCCGACTGCGCTCGGCCGGGTACGACCAGGCCGCTGACGAGGTCCTGGCCGACGCCCAAGGACTGCGTCTGAACATGGTGCTGTCACTGATCACCGTGCTGCGCAAGAGCGAACCGACGGCACGCGAGAGCACAATCCTGTCGCGGGCCATCGACTGGCTTGACGAGCACCACGACGGCGTGCCGTTGATCCCGGACCTGCTGCAGGTGGTGCGTGCCGCGCCGCCCGAGCTGCGGGAGGCAGCGCTGGACCGCGGCACCACCTCGAAGTACCAGGCGATCACCGAAGAGCTCGAGGCCTCCCTCGTGGCGCTGTGCCCCGGTGGAAAGTTCGGCGACGTGTTCGCCCGACCGACCACGCAGCCGATGCGGCGTGACCGCGCCGTCGTCTACGACGTCTCGGCGATTCCGCAGTCCGATGCCGATCTGCGGGCGGTCGCCCTGCTGGCCTCCTGGTCGGCCGGCTTCGCCGTGGTCAAGACGGCCCAGACGCTGGCCGACTTCGATTTGGAGGCGCGTAGGCACTACTTCGTGATCCTCGACGAGCTGCACCAGGCGCTCAAGGCCGGCCCCGGCCTCGTCGATCGCGTCGACTACCTGACGCGGCTGAACCGCACCGTCGGCGTCGGCCTGGCGATGATCACCCACACCATGAAGGATCTGCGGTCCTTGCCCTACGAAGAGGACCGGCAGAAGGCCATGGGGTTCATCGAGCGGTCGGGCCTGGTCGTGTGCGGAGGCCTGCCGTTCAGCGAGATGCCGCTGCTGTCCTCCATCGTGTCGCTGTCGGGCGCCGAGCAGGATCTGCTCGGCGGCTGGCAGGACCCGCCGGCGTGGGACTCCAAGGAGGGCCAGCAAGCACCTCCACCCGGGCGCGGCAAGTTCCTGGTCAAGGTCGGCGGCAGGCCCGGCATCCCGGTCGACCTGGTGCTCACCGCGGCCGAGCGGTCCCTGCACATGAGTGCGGCGCGCTGGACGGATCAGTCTCGCACCGGCCGCATCGAGGAAGGAACGCCAGCATGAMPFGRHIQTGATVCCDPISWYQRANLIGNPSVFFLGRPGLGKTSAVMRMAVGLAGMGVSPLVLGDTRPDYIRMVEQLGGQVIPLGRHRGSLNVLDPGEAPQAAARLRSAGYDQAADEVLADAQGLRLNMVLSLITVLRKSEPTARESTILSRAIDWLDEHHDGVPLIPDLLQVVRAAPPELREAALDRGTTSKYQAITEELEASLVALCPGGKFGDVFARPTTQPMRRDRAVVYDVSAIPQSDADLRAVALLASWSAGFAVVKTAQTLADFDLEARRHYFVILDELHQALKAGPGLVDRVDYLTRLNRTVGVGLAMITHTMKDLRSLPYEEDRQKAMGFIERSGLVVCGGLPFSEMPLLSSIVSLSGAEQDLLGGWQDPPAWDSKEGQQAPPPGRGKFLVKVGGRPGIPVDLVLTAAERSLHMSAARWTDQSRTGRIEEGTPANANANANANA
AK018_00037570hypothetical proteinGTGACCGACACCGCCGAGTTCCCTCCCGACGACGACAACGGGCACGAGTCCGGCCCGACCGGCTGGCTCACGCCCGAGGACCTCGCCTCCGTGCGTGCCCAGCTGCCCCTGGTGTACGTCGACGCCGTCCCGGTCCGCGTCGACGACTCGGGCGACGTCGTCGCCGTGGGTCTGCTGCTGCGCGCCAGCCCGCTGGGCAACATGACCCGCGCCCTGGTGACGGGCCGGGTGCTCTACCACGAGCGCGTCCGCGACGCCCTGCTGCGGCACATCGAGAAGGACCTGGGCCCGGTGGCCCTCCCCCGGGTGCCGGCCTCCCCGCAGCCGTTCACGGTCGCGGAGTACTTCCCGACCCCGGGCATCACGCCGTTCCACGACCCGCGCCAGCACGCGATCTCGCTCGCCTACGTGGTGCCGGTGACGGGTGACTGCCGCCCGCAGCAGAATGCGCTCGACCTCGCCTGGCTCACGCCCGAGGAGGCCTGCAGCGACACGGTGCAGGCGGAGATGGTCAACGGCCAGGGCGCCCTCGTGCGCCAGGCGATGGCGCACGTCGGCCGTCTCGACTGAMTDTAEFPPDDDNGHESGPTGWLTPEDLASVRAQLPLVYVDAVPVRVDDSGDVVAVGLLLRASPLGNMTRALVTGRVLYHERVRDALLRHIEKDLGPVALPRVPASPQPFTVAEYFPTPGITPFHDPRQHAISLAYVVPVTGDCRPQQNALDLAWLTPEEACSDTVQAEMVNGQGALVRQAMAHVGRLDNANANANANA
AK018_00038378trxC_1COG0526Putative thioredoxin 2ATGGCCACCGTCGAGCTCACCGACTCCACCTTCGAGCAGGCGATCAAGGACAACGACATCGTGCTGGTCGACTTCTGGGCCTCCTGGTGCGGCCCGTGCCGCCAGTTCGCGCCCGTCTTCGAGGCGTCGAGCGAGGAGTACCCCGACGTCGTGCACGGCAAGCTGGACACCGAGGCGCAGCAGCAGATCGCCGCCGCCGCCGGTGTCACCGCCATCCCGACGCTCATGGCGTTCCGCGAGGGCATCATGGTCTTCAACCAGGCCGGCGCCCTGCCCGCGCCCGCTCTGAAGCAGGTCGTCGACGCGGTCAAGGACCTGGACATGGACGACGTCCGTGAGCAGATCGCCGCGGCGCAGGACGGCCAGCACCAGCACTGAMATVELTDSTFEQAIKDNDIVLVDFWASWCGPCRQFAPVFEASSEEYPDVVHGKLDTEAQQQIAAAAGVTAIPTLMAFREGIMVFNQAGALPAPALKQVVDAVKDLDMDDVREQIAAAQDGQHQHPGPT0013055_3538DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671NANA
AK018_000393462hypothetical proteinATGTCCACACCCTGGAACGACCCCGTACCCGCGCGCCGGACCGCCGCTCTGGCCGCCCTCGCGATCCTGACCGGCGGTCTCGTGGCCACGAGCACCCCGGCCCACGCCGACGTCGTCGACGTGGGCGCCGGCAGCTACACGACCGACACCGTCGGCCCGACACCCCAGGGGTGCGCCGCCGTCGAGGCCGACCCCCGCGCGTTCGTCACGGACGACGCGCCCAGCACCCCGCTGCCCACCAACGACTGGTGGACCTCGCTGGCCTACAAGGTCTTCGACTGCTCGTTCAGCCCACCCCTGCACGCGCACCCGGCGAGCTACCTGCCCACGGCCGGCGGACTGGGCATCTCCTACACCACCGAGGCGACCGTCACCGGTGACCCCGCCGGGGTCTCGGAGTACCACTACGAGTACACCGAGGACCTGCGCGCCGGCGTCGTCGGCCTGGACGCCCCCCACGTGGCCGTCGGGGGCTGGACGGACTGGACGGTCGACCCGGTCTGGGACGACGGCGAGCAGTCGCTGCGCGCCACCATCGGCCACGGGCTGCCGATCTCCTGGTTCGAGGCGACCGGCGGCGACGCCCTGCTGACGCTCGCCGGCTCGCCCGACGTCTGGCTGGACGAGCCGGGCCGCGTCGGCCTGAGCGTCGGCGGCGCCGACTACCTGGCCGTCCTGCCGTCCGACGTGTCCTGGACGACGAGCGGCACGTCGCTGACGGCCCCGGTCGCGACCTTCGCCGTCGCCCTGCTGCCCGACGTCGGACCCGCCGCGCGGGACGACCTCGTCCAGACCTACACCGACGCCGCCCGCTCCCCCGTGACCGGCACCCGGGCCGACTACGCCTACGACGCCGGCGCCGGCGTCGTACGCACCACGTACCACCTGGAGACCTCGCCCTGGCCGGGGGCCGACGACGGCGGCACCGTCGCGGCGCTGTACCCGCACCAGAGCGCGTACCTCACCGGGGCGGAGGCGTCCGGGGGGACCTACACCTCGCCGCGTGGCGACATGGCCGTGCTCACCGGGACCGCGCAGTTCACCACGACCACCCCGTACACCGGCGTACTGACCGAGCTGCCCGCGGTGGCGACGTCGTCCGGCGCCGAGCGCGACCGCCTCGAGGCGCTGCTGGACCAGCTCGGCGACCCCCTCGACCAGCAGAAGGCGGACACCTACTGGACCGGCAAGGCACTCGGTCGGGCGACCCGCATCGTCGAGATCGCCGACCAGCTCGGCCGCACGGCTCAGCGCGACGCCGCGCTGGCCGACGTCCGCGCGGTGCTGACGGACTGGTTCACCGCCACCGCGGGCAAGACCGAGCAGGTCTTCGCCTACGACGACGGGTGGGGCACGCTCGTCGGGCACCCCGGCTCGTACGGCTCGGACACCGAGCTGAACGACCACCACTTCCACTACGGCTACTACATCGCCGCCGCGGCCACCCTGGCCCGGTTCGACCCGCAGTGGGCGGCCGACTACGGCGAGATGGTGGACCTGCTGATCCGGGACGCCAACGGGTACGACCGTGCCGAGACCCGGTTCCCCTACCTGCGTGACTTCGACGTCTACGCCGGGCACGACTGGGCCTCGGGGCACGGCGCCTTCGCGGCGGGCAACAACCAGGAGTCGAGCTCGGAGGGCATGAACTTCGCCGGCGCCCTGGTCCAGTGGGGCGAGGCCACCGGGGACACCGCGGTGCGCGACGCCGGGGTGTACCTGTACGCCACCCAGGCCGCGGCGATCCAGCGGTACTGGTTCGACGTCGACGGCGCGGCCTACCCCGAGAGCTTCGGGCACCCCGTGGTCGGCATGGTCTGGGGCGACGGCGGGTCGTACGCGACGTGGTTCAGCGCCGAGGCGGAGAAGATCCAGGGCATCAACACCCTGCCGATCACCGGCTCCCACCTCTACCTCGGGACCTCGCCCGCCACGGTGCGTGCCGCGTACGACCACCTGGAGCGGGTCAACGGCGGCCCCCCGACGGTCTGGCAGGACATCCTGTGGCAGTACCTCGCGCTCGGCGACGCCGACCGCGCCCTGTCACTGCTGGAGTCGACGTCCTTCACCCCCGAGGAGGGCGAGACGCCCGCGCACACGTACCACTGGATCGCCAACCTGGCGGCGCTCGGGACTCTCGCGACGGACACCCGCGCCGACGACCCGCTGGCCGCGGCGTTCGACGGCGACCAGGGACGCACGTACGTCGCCTCCAACGTCACCGCCGCCGACCGGACGGTGACGTTCTCCGACGGCACCGTCGTCGACGTCCCGGCCGGCCAGGTGGTGGCCACGGGAGCGCACACCTTCGCCGGCGGCGACGCCACCGGTGGCCCGACGCCGAGCCCGACCCCGGAGCCGACTCCGGACCCGACTCCGGAGCCCTCCGAGGAACCGTCGCCGACGCCGGACCCGTCGCCGGAGCCCAGCCCCGAGCCCAGCGAGGATCCGGGTTCCGGGCCGGTGCGCTACCTCGGCGACGACGGCTCCCTGCCCGCACAGGCCGGACCCGAGGGCACCGTCCAGCTCACCTCCGCCGGCGGCCAGAACCACGACGGCACCCCGCACCAGCCCGCCGTCTTCGAGGCCACCGGACTCACCGGCACCCACACCGGCCAGACGACCGCGTTCTCCTTCGCCGTCGACGCCGGCGACGACGTCGGTCAGGCCGTCCAGGCCCGCGTCAGCTACGACCTCACCGGCGACGGCACCTGGGACCGCATCGAGACCTACGGCTACTTCGCCACCGACCCCGTCCCCGGCGACGAGACCTACACCTCGCAGGGACGCCTCGCGACGCAGGACGGCACCCTCGGAGACCTCGACGACGGCACCGTCCGCCTCGAGATCTGGAGCGCCCTGGGCACCGCCACCCCGACCGTGACCACCGGCCCCGACTCCACCCTCACCCTGCCGTTCACCGACTCGACGGAGCCAGGTCCGGACCCGACTCCGGAGCCCAGCCCGGAACCCAGCGAGAACCCGGGTGCAGGGCCGGTGCGCTATCTCGGCGACGACGGCGCCCTGCCCGCACAGGCCGGACCCGAGGGCACCGTCCAGCTCACCTCCGCCGGTGGCCAGAACCACGACGGCACCCCGCACCAGCCCGCCGTCTTCGAGGCCACCGGACTCACCGGCACCCACACCGGCGAGACGACCGCGTTCTCCTTCGCCGTCGACGCCGGCGACGACGTCGGCCAGGCCGTCCAGGCCCGCGTCAGCTACGACCTCACCGGCGACGGCACCTGGGACCGCATCGAGACCTACGGCTACTTCGCCACCGACCCCGTCCCCGGCGACGAGACCTACACCTCGCAGGGACGCCTCGCGACGCAGGACGGCACCCTCGGAGACCTCGACGACGGCACCGTCCGCCTCGAGATCTGGAGCGCCCTGGGCACCGCCACCCCGACCGTGACCACCGGCCCCGACTCCACCCTCACCCTGCCGTTCACCGACTGAMSTPWNDPVPARRTAALAALAILTGGLVATSTPAHADVVDVGAGSYTTDTVGPTPQGCAAVEADPRAFVTDDAPSTPLPTNDWWTSLAYKVFDCSFSPPLHAHPASYLPTAGGLGISYTTEATVTGDPAGVSEYHYEYTEDLRAGVVGLDAPHVAVGGWTDWTVDPVWDDGEQSLRATIGHGLPISWFEATGGDALLTLAGSPDVWLDEPGRVGLSVGGADYLAVLPSDVSWTTSGTSLTAPVATFAVALLPDVGPAARDDLVQTYTDAARSPVTGTRADYAYDAGAGVVRTTYHLETSPWPGADDGGTVAALYPHQSAYLTGAEASGGTYTSPRGDMAVLTGTAQFTTTTPYTGVLTELPAVATSSGAERDRLEALLDQLGDPLDQQKADTYWTGKALGRATRIVEIADQLGRTAQRDAALADVRAVLTDWFTATAGKTEQVFAYDDGWGTLVGHPGSYGSDTELNDHHFHYGYYIAAAATLARFDPQWAADYGEMVDLLIRDANGYDRAETRFPYLRDFDVYAGHDWASGHGAFAAGNNQESSSEGMNFAGALVQWGEATGDTAVRDAGVYLYATQAAAIQRYWFDVDGAAYPESFGHPVVGMVWGDGGSYATWFSAEAEKIQGINTLPITGSHLYLGTSPATVRAAYDHLERVNGGPPTVWQDILWQYLALGDADRALSLLESTSFTPEEGETPAHTYHWIANLAALGTLATDTRADDPLAAAFDGDQGRTYVASNVTAADRTVTFSDGTVVDVPAGQVVATGAHTFAGGDATGGPTPSPTPEPTPDPTPEPSEEPSPTPDPSPEPSPEPSEDPGSGPVRYLGDDGSLPAQAGPEGTVQLTSAGGQNHDGTPHQPAVFEATGLTGTHTGQTTAFSFAVDAGDDVGQAVQARVSYDLTGDGTWDRIETYGYFATDPVPGDETYTSQGRLATQDGTLGDLDDGTVRLEIWSALGTATPTVTTGPDSTLTLPFTDSTEPGPDPTPEPSPEPSENPGAGPVRYLGDDGALPAQAGPEGTVQLTSAGGQNHDGTPHQPAVFEATGLTGTHTGETTAFSFAVDAGDDVGQAVQARVSYDLTGDGTWDRIETYGYFATDPVPGDETYTSQGRLATQDGTLGDLDDGTVRLEIWSALGTATPTVTTGPDSTLTLPFTDNANANANANA
AK018_00040258hypothetical proteinATGGCCACGCTGAGCGAGTTCCTCAAGGCCCGGATCTCCGAGCTCCTGTCCCACGAGGGCAAGCACCGCGAGGAGCACGGCCACCCGCCGCTGACGCCGGAACGCGAGGCGGAGCTGCGCGAGCTGCACGCCCAGGCCAACCAGTACGAGCAGGGCCTGTTCGGCCCCGGCCAGGCGTCCTGGGTCGAGGGCCTGATGCGCGAACGCGCGGCCGACTTCTCCGACCACCCGGACTATCGCGACGAGTGGCGGCGCTGAMATLSEFLKARISELLSHEGKHREEHGHPPLTPEREAELRELHAQANQYEQGLFGPGQASWVEGLMRERAADFSDHPDYRDEWRRNANANANANA
AK018_00042483bcp_1COG1225Putative peroxiredoxinGTGACCCGTCTCGCCGCCGGCGACACCGCGCCCGACTTCACCCTGCCGACCGCCGACGGGAGCACCGTCTCGCTGGCGACGCTGCGACAGAGCGCCGAGCGGGGCGTGGTCGTCTACTTCTACCCCGCGGCCATGACCCCGGGGTGCACGAAGGAGGCCTGCGACTTCCGCGACTCGCTGGACGCCCTGCAGGGCGCCGGGTACGCCGTCGTCGGCATCTCCCCCGACGAGCCCGAGAAGCTCGCCCGGTTCGTCGAGCGCGACGCGCTGACCTACCCCCTCGCCTCGGACCCGGAGCACGAGGTCCTCGAGGCCTACGGCGCGTGGGGCGAGAAGAAGAACTACGGCCGCACCTACGTCGGAGTGATCCGTTCGACCGTCGTGGTCGGCGCCGACGGCACCGTCGAGCTCGCCCAGTACAACGTCAAGGCGACCGGGCACGTCGCCCGGCTGCGGACCCAGCTCGGGCTCGACGCCGCCTGAMTRLAAGDTAPDFTLPTADGSTVSLATLRQSAERGVVVYFYPAAMTPGCTKEACDFRDSLDALQGAGYAVVGISPDEPEKLARFVERDALTYPLASDPEHEVLEAYGAWGEKKNYGRTYVGVIRSTVVVGADGTVELAQYNVKATGHVARLRTQLGLDAAPGPT0013120_2527DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013120-bcp|PRXQ|DOT5-K03564NANA
AK018_00043402groS_110 kDa chaperoninATGCGGGGACGACGGCGGTTCTCGCGTAGCGTGGCCCTCGTGAGTTCCGCAGCACCTTCTCCCGCGTCGACGGGCGGCGAGGCCACCGAGCCGCTGCCGATCCGCATGCTCCACGACCGTGTCCTGGTCGATCCCGAGGTGGACTCGGCCGAGCGGCAGTCCGCGGCCGGTCTTGTCATCCCCGCCACCGCCACGGGACCGAAGCGCCTGGCGTGGGCGAGGGTCGTCGCCAAGGGCGAGCACGTCCGCCAGGTCGAGGTCGGCGATCGCGTGCTCTACGACCCCGAGGAGCGCGCCGAGGTCGAGCTCGGTGGCACCGACTACGTGCTGCTGCGCGAACGGGACGTGCACGCCGTCGCCGAGCGGTCCGACGAGACCGGGGCGACGGGCCTGTACCTGTGAMRGRRRFSRSVALVSSAAPSPASTGGEATEPLPIRMLHDRVLVDPEVDSAERQSAAGLVIPATATGPKRLAWARVVAKGEHVRQVEVGDRVLYDPEERAEVELGGTDYVLLRERDVHAVAERSDETGATGLYLPGPT0014565_595DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078NANA
AK018_000461644hypothetical proteinATGTCCGTCAGCCGACGACGTGCCGTCGCCGCAGGAACAGGCCTCACCCTGCTGGCGTCCGCACTCTCCCTCCCGGCCGCCTCGGCGGCGCCCGACACCCCGGACCCCGCCGTGACCGGCCCGGTCCCCGCCACGACCGCCGTCGGGGACCCGGCCCACGGGTACCCCTTCCTCGCCACCGACGTCGACCTGGCCGACCACGGCTACGTCGAGCAGGAGTTCTTCCTCTCCGGCGAGGCGACCCGCTACGACGCCGACGGCACCTCCGACGCGGAGGTGATCAGCACCGGCCACGAGTACCGCACCCGGATGGTCGTGCGGCGCCCCACGGACCCGGGCGCGTTCAACGGCACCGTCATCACCGAGTGGTACAACGTCTCCAACCAGTGGGACCAGGAGGTCGACTGGTTCCAGACCCACGAGCACCTCCTGCGCGAGGGCTACGCCTGGGTCGGCGTCTCGGCGCAGCGGGCCGGGGTCCACTCCGGCACCGGACTGCGGTCGTGGAGCCCCGACCGGTACGGCTCCCTCGACCTGACCGACGGCGGCACGGTCACCGACGACACCCTGTCCTGGGACGTCTTCAGCCAGGCCGTCGGAGCCGTCCGCGAGCCCGCCGGCACCGCCCCGCTGGGCCCGCTGGAGGCCGAGACCGTGATGGCCACCGGCCACTCCCAGTCGGCCGGACGCCTGTGGTCGTACGTCAACTCGGTCGACCCGGGCGGCGACGTGGTCGACGCGGTCGTGCTGCACGGCGGCGGCGGGCCCCTCCGTGACGCGGTCGAGACCCCGGTGCTCAAGATCAACAGCGAGACCGACGTCGCGATCGACCTGCTGGGCGCGGCCCAGCGCCAGCCGGACAGCGACACGCTGCGCACCTGGGAGGTCGCCGGCGCCTCCCACGGCGACTGGAAGCTCATCACGGACTACGGCCGCCTGCGCATCCGCGACATCGGCACGGCCCCCGGCGGATACCCGGGCACGCCGCAGACGTGCGACGAGCCGTCCGGCTCCCGCGTCCCGCAGCACATGGTCCAGGGCGCGGCGTACGACCACGTGGCGGACTGGGCGGCCGGTGGGGACGCTCCGCCGTCGGCGCCCGCCATCGACCTCCTCGCGGACGGCTCCGTGGACCGCGACGACCTCGGTCTCGGTCGGGGCGGCATCCGGCTGGCCGCGCAGGAGGTCCCGGTGCGGCTGAACTCGGGGCTCAACACCGGCCCCGGCTTCTGCTTCATCGACGGGTCGTCCCGTCCGGTCGACGACGCGACGCTGGCCGCCTGGTACCCGGACGAGGAGCAGTACGTCGACGAGGTCGTGGCCGTCACCGGTGCCGCCGTCGAGGCGGGGTACGTCCCAGCGGACGTCGCGGCCGACCCGTCGTGGTACACCGACGTCGCCGAGCTCGTCCAGGACCGGGTGGAGTCCGGCCTCGTCCGCGAGCAGGTCGGCGCACGGATCGTCGACCGGATGCACCGCGCCCTGGAGGCGGCCGACGACGGCGACTGGAACGCCGCGGACCGATGGGTGCGCCAGGCTCACACGTTCGCCGAACGGCAGGTGCGCGACGACCTCGCGTCGGCGTCCGTGGCGCGCTCCACCGCGGCGGTGCGCGGCGTGCTGGCGTTGACCGTCGACGGCTGAMSVSRRRAVAAGTGLTLLASALSLPAASAAPDTPDPAVTGPVPATTAVGDPAHGYPFLATDVDLADHGYVEQEFFLSGEATRYDADGTSDAEVISTGHEYRTRMVVRRPTDPGAFNGTVITEWYNVSNQWDQEVDWFQTHEHLLREGYAWVGVSAQRAGVHSGTGLRSWSPDRYGSLDLTDGGTVTDDTLSWDVFSQAVGAVREPAGTAPLGPLEAETVMATGHSQSAGRLWSYVNSVDPGGDVVDAVVLHGGGGPLRDAVETPVLKINSETDVAIDLLGAAQRQPDSDTLRTWEVAGASHGDWKLITDYGRLRIRDIGTAPGGYPGTPQTCDEPSGSRVPQHMVQGAAYDHVADWAAGGDAPPSAPAIDLLADGSVDRDDLGLGRGGIRLAAQEVPVRLNSGLNTGPGFCFIDGSSRPVDDATLAAWYPDEEQYVDEVVAVTGAAVEAGYVPADVAADPSWYTDVAELVQDRVESGLVREQVGARIVDRMHRALEAADDGDWNAADRWVRQAHTFAERQVRDDLASASVARSTAAVRGVLALTVDGNANANANANA
AK018_00047408hypothetical proteinATGATCTCCACCGAGCTCGCCACCCGGTTGCGCGACGCGGGACTGATCTGGAAGCCGGCCGACGGCGACCGGTTCCACATCGACGCGCCGGACCTGATCGAGGACGTCTTCACGATCTCCACCCTGGTCGTCGAGACGCACCACGTCGACACCGGCACGGTGCTCGGCTTCAACGGGACCACCGAGTGGGCCCTGGACTCGGTCGACATCGACGACACGCTGTGGCTGCCGCGCGAGGACCAGCTCCGCGACCTGCTGGGCGGCACCTTCCGCTCGCTGCACGCCGAGGACGACGTCTTCACCGTCGAGGTGGAGCTGCTCGGCGAGCGCCGGACCTTCGACGCCCCGGACGCCGCCGACGCCTACGGGGAGGCGTTGCTGGCCCTCATCGGACTCTCGTCGGGATGAMISTELATRLRDAGLIWKPADGDRFHIDAPDLIEDVFTISTLVVETHHVDTGTVLGFNGTTEWALDSVDIDDTLWLPREDQLRDLLGGTFRSLHAEDDVFTVEVELLGERRTFDAPDAADAYGEALLALIGLSSGNANANANANA
AK018_00048813trmB_1COG0220tRNA (guanine-N(7)-)-methyltransferaseGTGCCGAACTCACCGCAGGAGAACCCGGACGTCCCGCAGGACACCCCGGTCGAGGACTCCGTCGACACCCGACACCACCGCCGTCCGCTGAGCTACGTGCGCCGCACCGCCCGCCTGACCGCGGGCCAGCAGAAGGCGTGGGACACCCGCCGGCACCGGTACCTGATCGAGGTCCCGCGCGAGCACCGCGACATGTCGGTGCACCCGGACTGGCAGCTCGACCCGGCCGCCGAGTTCGGCCGCACCGCGCCCCTCGTCCTGGAGATCGGGACCGGCCTGGGCGAGTGCGTCGTGCACGCCGCCGCGACGCACCCCGAGCGCGACCACCTGGCCGTCGAGGTCTACCGTCCGGGCGTCGCGCAGACCATCGTGCGCGCGGGGCACGCCGGGGCCGACCCGGCCGTCGCCGGCGGCGACCCGGGCCACGAGCTCGACAACCTGCGGATCATGCAGGTCGACGCCGCCGAGCTGCTCGGGCACGGCCTGCCCGAGGCGAGCCTGGACGAGCTGTGGGTGTTCTTCCCGGACCCGTGGCCCAAGAAGCGCCACCACAAGCGCCGGCTGGTCACCCCCGCCTTCGCCGAGCTCGCGGCCCGCGCGATCAAGCCCGGTGGCCGGTGGCGCCTGGCCACCGACTGGGCCGAGTACGGCGAGGTGATGCTCGAGGTGCTCGACGCCGCCGAGGACTTCCGCAACGCCCACGGCCCCGGCGGGCGCGCCCCGCGCTTCGAGGGCCGCGTCATGACCAGCTTCGAGCGCAAGGGTCTGAACGCCGGGCGCAGCGTGACCGACCTGGAGTACGTCCGGCTCTGAMPNSPQENPDVPQDTPVEDSVDTRHHRRPLSYVRRTARLTAGQQKAWDTRRHRYLIEVPREHRDMSVHPDWQLDPAAEFGRTAPLVLEIGTGLGECVVHAAATHPERDHLAVEVYRPGVAQTIVRAGHAGADPAVAGGDPGHELDNLRIMQVDAAELLGHGLPEASLDELWVFFPDPWPKKRHHKRRLVTPAFAELAARAIKPGGRWRLATDWAEYGEVMLEVLDAAEDFRNAHGPGGRAPRFEGRVMTSFERKGLNAGRSVTDLEYVRLNANANANANA
AK018_00049618bioNCOG0619Energy-coupling factor transporter transmembrane protein BioNATGACGTCCGGCCCGGCGCCCGCCACGGCATCCCCGAGGGCCCCCAGGTCCCCGGTGCACCGGCTCGGCGCGGGGACGAAGCTCGCCGGGCTGTGCGTGTGCTCGCTGGCGCTGCTCGCCGTGGACGGACCGCGGGGAGCCGCCGTCGCCGTCGTCGGCGTCGTGACGCTGTTCACCCTGGCCCGGCTGGGACCGCGGACGCTGTGGGCCCAGGTCCGGCCGCTGCGATGGGTCGTGGTGTGCCTGCTGGCGGTGCAGTGGTGGGTGCTGGGCCCCGTGGCGGCGGTGGTCCTGAGCACGCGGCTCGTGGCCCTGGTGGCCCTCGCCGGTCTCGTCACGGCCACGACCCCGACGGCGCAGGTCCTGGACGTCGTGGAGCGCGTGCTGCGGCCGGGGCGCCGGTGGGGCCTCGACCCGGAGCGTGCCGCGCTGGTGCTGGCCCTGACCCTGCGGTCCGTCCCTGTGCTCACCGACCTGGCCGCGCGGGTGCGGGACGCGCAGCGCGCCCGGGGCCGCGAGCGCGACGTGCGGGCCTTCGCGGTGCCGCTGGTGGTGGGGTCGCTGCGGCGGGCCGACGCCCTGGGCGAGGCCCTGGCGGCGCGCGGCCTGGACGACTGAMTSGPAPATASPRAPRSPVHRLGAGTKLAGLCVCSLALLAVDGPRGAAVAVVGVVTLFTLARLGPRTLWAQVRPLRWVVVCLLAVQWWVLGPVAAVVLSTRLVALVALAGLVTATTPTAQVLDVVERVLRPGRRWGLDPERAALVLALTLRSVPVLTDLAARVRDAQRARGRERDVRAFAVPLVVGSLRRADALGEALAARGLDDNANANANANA
AK018_00050693bioM_1COG1122Biotin transport ATP-binding protein BioMGTGACCGGGATCGTGCTGGACGACGTGCACGTGCGCCGCGAGGGCCGGCACGTGCTGCGCGGGGTGTCGGTCCGGCTGACCGAGCACCGGGTGGCGGTGATCGGCGCGAACGGCTCGGGCAAGTCGACGCTCGCGCGGCTGCTCAACGGCCTGGTGGCCCCGACGTCGGGCCGGGTGCTGGTCGACGGGCTGGACGTGGCCCGGCACGGCCGCGCCGTGCGCCGGCGGGTCGGGTTCGTGTTCACCGACCCGGACGCCCAGATCGTCATGCCGACCGTCGCCGAGGACGTCGCGTTCTCGCTGCGCGGCTCCGGGCTGTCCCGCGCCGAGGTCGGCGCCCGGGTGGCGGCCGAGCTGGTGCGGCACGGCCTGGCCGGGCACGCGGACCATCCGGCGCACCTGCTCTCCGGGGGCCAGAAGCAGCTCCTGGCGCTGTCCAGCGTGCTGGTGTCCCGCCCGGACGTCGTGGTGGCCGACGAACCGACGACCCTGCTCGACCTGCGGAACACCCGGTGCGTCGCACAGCGCCTGGCGGCGCTGGAGCAGCGGGTGGTGCTGGTCACCCACGACCTGGACCTCGTGGGCGGCTACGAACGGGTGCTGGTGGTCGACGAGGGCCGGGTCGTGGTCGACGACGTCCCGGCCGTGGCGGTGCCGGCCTACCGCGCGCTGATGGGAGCGCCGGTCCGATGAMTGIVLDDVHVRREGRHVLRGVSVRLTEHRVAVIGANGSGKSTLARLLNGLVAPTSGRVLVDGLDVARHGRAVRRRVGFVFTDPDAQIVMPTVAEDVAFSLRGSGLSRAEVGARVAAELVRHGLAGHADHPAHLLSGGQKQLLALSSVLVSRPDVVVADEPTTLLDLRNTRCVAQRLAALEQRVVLVTHDLDLVGGYERVLVVDEGRVVVDDVPAVAVPAYRALMGAPVRPGPT0022045_471DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_TRANSPORT,PGPT0022045-bioM-K16784NANA
AK018_000511146yhfSCOG0183Putative acetyl-CoA C-acetyltransferase YhfSGTGAGCGTGGTGGTGGCCGCCCGGCGCACGTGGACCGGCCGGCGCGGCGGCGGGCACGCCGGGGCCGACGAGGCCCGGCTGGCCGCCGCGGTCCTCAGCGCCGCCGCGCACGACGCAGCGCACGACGCAGCGCACGACGCAGCGCACGACGCAGCGCACGACGCGGCCGCCGGCCCGGTGGACGAGGTGGTGCTGGGCAACGCCGCGGGCCACGGCGGCAACGTGGCACGTCGTGGGGCGCTGACCGCCGTCGGCCGGCACGTGCCCGGGATGAGCGTGGACCGGCAGTGCGCCTCCGGGCTCGCCGCCGTGGGCACGGCCGCCGCGCTGGTCGACGCCGGGCACGCCCGCGTCGTGCTGGCGGGCGGCGTCGAGAGCGCCACCCGGGCACCGGGGCGCGCGCACGGCACGCTCGGCTACGACCGCGCGTCCTTCACCGCCCCGCCGTGGGCGGACCCGGAGGCCGGCCGGGCCGCGGACCGGATCGCCGCCGAGCGCGGTATCTCCCGGGCGCTGCAGCACCGCTACGCCGTGGCCTCGCACGAGCGGCTGCGCGCCGCGCACACGGCCGGGCGGTTCGCCACCGAGACCGTGGCCGTCGGGCCGCTGGACCGCGACGAGCACGCCCGGGCGCTGCCCCCGAGGCTGCTGGACCGGCTGCCGGGGGCCTTCTCCCCCGACGGCACGGTGACGGCGGCCTCGGCCGCACCGGCCGCGGACGGGGCGGCCACCGTGGTGCTGGCGCCGGACGGCGCCCCGGGGCTGCGGGTCCGAACGGTGGCGACCGTGGGCGGCGACCCCGCGATGCCCCTGCTGACCCCCGTGTCCGCCGTGCGCGCGGCGTGCGCGCGCGGCGGGGTCCGGCTCGAGGACGTGTCCGCGCTGGAGCTCGTCGAGGCGTTCGCCGTGCAGGCGCTCGCGGTGGCCGGGGACCTCGGCGTGGACCCGCTGACCGATCCGCGCTGGAACCCCGACGGCGGGGCCCTGGCGGGCGGGCACCCGTTCGGGGCGAGCGGGGCGGTCTCCGTCGTCCGGCTGTTCTCCCGGCTGGTGCGCGGCGGCGCACCGGCGGGCACGCTCGGGCTCGCCACGGCGGCGGGGACCGGCGGGATCGGCGTCGCCGTGCTCGTGGAGGTGGTCCGGTGAMSVVVAARRTWTGRRGGGHAGADEARLAAAVLSAAAHDAAHDAAHDAAHDAAHDAAAGPVDEVVLGNAAGHGGNVARRGALTAVGRHVPGMSVDRQCASGLAAVGTAAALVDAGHARVVLAGGVESATRAPGRAHGTLGYDRASFTAPPWADPEAGRAADRIAAERGISRALQHRYAVASHERLRAAHTAGRFATETVAVGPLDRDEHARALPPRLLDRLPGAFSPDGTVTAASAAPAADGAATVVLAPDGAPGLRVRTVATVGGDPAMPLLTPVSAVRAACARGGVRLEDVSALELVEAFAVQALAVAGDLGVDPLTDPRWNPDGGALAGGHPFGASGAVSVVRLFSRLVRGGAPAGTLGLATAAGTGGIGVAVLVEVVRPGPT0008320_14219DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
AK018_000521422menE_12-succinylbenzoate--CoA ligaseGTGCCGGTCGCCCACCACGTCCTGCAGCACGCGCACGGCCCCGCCGCGGACCGTGTCGCGGTGCGCAGCGGCGAGCGCAGCCGCACCTACGCCGAGCTGGCCGCCGACCTCGTCGCGGGCGCCGAGCACCTCGCCGCGACCGGGACGCGCCCCGGGGACCTGGTCGCCCTGTCGCTCGCCGATCCCCTGGACACGCTCGTCGCGCTGCTCGCCGCGGACCGGGCCGGTGCCGTCGGGCTGGTCGGTGACCAGGCCTGGCCGGTGCACCAGCGGGCCGAGGTGCTGCACGCCCTGACCCCCGCCGTCGTCGTGCACGTGCCGCTGCCGCGCGGCCACGGCGCTCCTCCCCCACGTCCGGGACCGGCCCCGGACGACGCCGCACCCGCGTGGGCGGGCTTCTCCTCGGGCAGCACGGGGCGTCCGCGCGCCGTGCTGCGCTCCCGCGGGTCCTGGACGGGCTCCTTCGAGCACGTCTCGCGCCTGACCGGCACCCGCGCCGGGGACACGGTCCTGGTCACGGGCCCCCTGGCCAGCTCGCTGCACTGCTTCGCGGCGGTGCACGCCCTGGCGGCGGGGGCGTCGGTGGAGCTCGCGCCGACCGTGTCGGCGACGACGGCGGCGCTCGCCGGGGCCGACCTGGCCCATCTGGTCCCCTCCCGGCTCGACGACGTCCTGGACGCCCTCGACGCGGGCGTGCCGTCCCGGCTGCGCACCGTCGTGGTGGGCGGCGCCGGCACGGACCCCGCCCAGCGGGCCCGGGCCCACGCGCACGGCGTGCGGGTCGTGGCGTACTACGGGGCGGTGGAGCTGAGCTTCGTCGCGATCGACACCGGGGACGGGCTGGTGCCGTTCCCGCAGGTCGAGGTGCAGGTCCGGCCGCAGCCGGGTACGAGCCTGGGCGAGGTGTGGGTACGCTCGCCGTGGACGGCGAGCGGCTACCTGGCCGGGGCGACCGGGCCGCTGCGCACCCAGGACGGCTGGAGCACCGTCGGTGACCTGGCCGACCTGCCTGACCTGCCCGACGGCGACTCGGCGGACCCCGGGGGCCACGCGCTGCGGCTGCGAGGTCGTGGCGACGGCGCGATCCTCACCGCCGGTGCCACCGTCGTGCCCGAAGACGTCGAGGCCGCGCTGCGGCCCGTGCCCGGGGTCCGCGACGTCGTGGTGGCCGGGGCCCCGCACCGCCGGTTCGTCGCCGTCGTCGTCGCCGTCGTCGAGGCCGACGACCACCCCGGGCTGCGCGCCCACCTGGAGCGGGTCGCCCGGGCCACCCTCGCCCCGGCGCAGCGGCCCCGGCGGTGGTTCCGCGTCGACGCCCTGCCGCGCACCTCGAACGGCAAGGTGGCCCGTTCCGCGCTCGGTGCCGCCGTCGCGGGCCACGACCCGGCCGCGCAGGTCGGCGACCTCGCGGTGCTGCGGTGAMPVAHHVLQHAHGPAADRVAVRSGERSRTYAELAADLVAGAEHLAATGTRPGDLVALSLADPLDTLVALLAADRAGAVGLVGDQAWPVHQRAEVLHALTPAVVVHVPLPRGHGAPPPRPGPAPDDAAPAWAGFSSGSTGRPRAVLRSRGSWTGSFEHVSRLTGTRAGDTVLVTGPLASSLHCFAAVHALAAGASVELAPTVSATTAALAGADLAHLVPSRLDDVLDALDAGVPSRLRTVVVGGAGTDPAQRARAHAHGVRVVAYYGAVELSFVAIDTGDGLVPFPQVEVQVRPQPGTSLGEVWVRSPWTASGYLAGATGPLRTQDGWSTVGDLADLPDLPDGDSADPGGHALRLRGRGDGAILTAGATVVPEDVEAALRPVPGVRDVVVAGAPHRRFVAVVVAVVEADDHPGLRAHLERVARATLAPAQRPRRWFRVDALPRTSNGKVARSALGAAVAGHDPAAQVGDLAVLRPGPT0008380_15990DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
AK018_00053594bioY_1COG1268Biotin transporter BioYGTGACCGAGACCGCCGCAGCCCGGACCCCGGCCCGCTCGACCACCGCCGACGCCGCACGGGTGGCCACCTTCGCGGCGCTGATCGCCGTCCTGGGCCTGCCCGGGTCGATCGCGCTGCTCGGCAACGCCGTCCCGGTGACGCTGCAGACCCTCGGGGTGATGCTCGCCGGGGCGATCCTGGGCGCCCGCCGCGGCGCGCTGGCGGTGCTGACGCTGCTCGCCCTGGTCGCGGCCGGACTGCCGCTGCTCGCGGGCGGTCGGGGCGGTCTCGGCGTGTTCGTGGGACCCTCGGCCGGCTACCTGCTCGGGTTCGTGGCCGGCGCCTTCGTCGTCGGGCTGCTGGTCGAGCGGCAGCGGAGGGTGACGTTCCTGAGCGTGCTCCTCGCCGCGCTCGTCGGCGGCGTCGGCATGGTGTACGCCGTCGGGATCCCCGTCCAGGCCGTGCTGACCGGCGTGCCCCTGGCCGAGACGGCGCTGCTGTCCCTCGCCTTCGTGCCCGGGGACCTGCTCAAGGCGCTGGCCTGCGCCGCGATCACCGCCGCCGTCGCGCGGGCGTACCCCGCCGCGGTGCGCCGCGGGGGCCGGGAGGCCTGAMTETAAARTPARSTTADAARVATFAALIAVLGLPGSIALLGNAVPVTLQTLGVMLAGAILGARRGALAVLTLLALVAAGLPLLAGGRGGLGVFVGPSAGYLLGFVAGAFVVGLLVERQRRVTFLSVLLAALVGGVGMVYAVGIPVQAVLTGVPLAETALLSLAFVPGDLLKALACAAITAAVARAYPAAVRRGGREAPGPT0022050_58DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_TRANSPORT,PGPT0022050-bioY-K03523NANA
AK018_000541506lpdDihydrolipoyl dehydrogenaseGTGACGCGACACCATGCCCGGATGGAGCAGACGTACGACGTGATCGTCATCGGTGCCGGCCCCGTGGGGGAGAACGCGGCCGACCGCGCGGCGCGCGGCGGGCTGTCCGTCGCCGTCGTCGAGGCCGAGCTCGTGGGCGGGGAGTGCTCGTACTGGGCGTGCATCCCCTCCAAGACCCTGCTGTCGCCCGGAGCCGCGCGGCAGGCGGCGCGCGAGGCGCCCGGCGTGGGCGACCCCGGACCGCTGGACGTGGACGCGGTGCTGGCGCGCCGCGACGAGATGACCGGCCAGGGCGACGACTCCGGCCAGGAGGAGTGGCTCGACTCCGTGGGCATCACGCTGGTGCGCGGCCACGGCCGTCTGGCCGGGAAGCGCACGGTCGAGGTCGTGCCCGCCACGGGCGTCGACGACGACGCGGCCGGCGAGACGCACCGCCTGCTCGCGCGCTGCGCCGTCGTGGTCTCCACCGGCAGCGCCGCGGTGGTCCCGGACCTGCCGGGTCTGGCCGAGGCCAACCCGTGGACCTCGCGCGAGGCCACCGCCGCCGAGGCGGTCCCGGAGTCGCTGGTGATCCTCGGCGGCGGCGTCGTCGGGGTGGAGATGGCCACCGTCTACGCCGACCTCGGCGCCCGGGTGACCCTGCTCGCCCGGGGCGGGCTGCTCGCCGGGGCCGAACCCTTCGCCGGGGAGATGGTCGCCGAGGCGCTGCGCGACGCCGGCGTGGACGTGCGCCTCGGGACCGAGGCGCGCCGCGTGGAGCGCCCGGCCCCGGGCGGTCCCGTCACCGTGACGGTCGGCGGGGCCGACGGCGCGGAGATCGTCACCGCCGCCGAGCTGCTGGTCGCCACCGGGCGCCGGCCCCGCACCGGCGACGTCGGGCTCGACACGGTCGGGCTCGAGCCCGGTGCGCCGCTGACGATCGACGACACCACGGCCGTGGAGGAGGTCGGCCGGGACGTCGTCGGCAAGCCGTGGTTGTTCGCCTGCGGCGACGTGACCGGACGGGTGGGCACCACCCACCAGGGCAAGTACCAGGCCCGGGTCACCGGCGACGTCGTGGCCGCGCTGTACGGGTCCGGCGGGGACCGGGAGGCGATCGTCGCGGCCTCGGGCGCCCGGTGGAGCCGGTACGCGGCCCGGGCCGACCACGACGCGCAGACGCAGGCCGTGTTCGCCCGCCCGCACGTCGCCTGGGTCGGGCCCACGGAGGCCGAGGCCCGGCGCGCCGGGCTGCCCGTGCGCGCCGTCTCCTACGACCTCGCCTCGGTGGCCGGGGCCGCCGTCACCTCGCCGGACCACGGCGGCCGGGCCCAGGTCCTGGTGGACACCGAGCGCGACGTCCTGGTGGGCGCCACGTTCGTCGGGCCCGACGCCGCCGAGATGCTGCACGCCGCGACCGTCGCCGTCGTCGGCGAGGTGCCGCTCGACGCCCTGTGGCACGCCGTGCCGCCGTTCCCCACGGTCAGCGAGGTGTGGCTGCGGCTGCTGGAGGAGCTCGGCCGGTGAMTRHHARMEQTYDVIVIGAGPVGENAADRAARGGLSVAVVEAELVGGECSYWACIPSKTLLSPGAARQAAREAPGVGDPGPLDVDAVLARRDEMTGQGDDSGQEEWLDSVGITLVRGHGRLAGKRTVEVVPATGVDDDAAGETHRLLARCAVVVSTGSAAVVPDLPGLAEANPWTSREATAAEAVPESLVILGGGVVGVEMATVYADLGARVTLLARGGLLAGAEPFAGEMVAEALRDAGVDVRLGTEARRVERPAPGGPVTVTVGGADGAEIVTAAELLVATGRRPRTGDVGLDTVGLEPGAPLTIDDTTAVEEVGRDVVGKPWLFACGDVTGRVGTTHQGKYQARVTGDVVAALYGSGGDREAIVAASGARWSRYAARADHDAQTQAVFARPHVAWVGPTEAEARRAGLPVRAVSYDLASVAGAAVTSPDHGGRAQVLVDTERDVLVGATFVGPDAAEMLHAATVAVVGEVPLDALWHAVPPFPTVSEVWLRLLEELGRNANANANANA
AK018_00055915dcsG_1Cycloserine biosynthesis protein DcsGGTGACCACCACGACGAAGCGAGTCGGACTCGCCACCTGCTCCGTCCTGCCCGACCTGGACGCGGACGACCGTCCGATCGTCCCCGCACTGGCCGCGCGCGGCGTCACCGCCGAGCCCGTGGTGTGGGACGACCCGGACGTCGACTGGTCCTCCTACGACCTCGTCGTGGTGCGATCCACCTACGACTACTCCCCGCGCCGCGACGAGTTCGTCGAGTGGGCGCGCTCGGTGCCGCACCTGGCCAACAGCGCCGACGTCATCGCCTGGAACACGGACAAGACCTACCTGCAGACCCTCGACGAGGCCGGCGTGCCGGTCATCCCCACGATCTGGCTCGACCCCGAGCGGCACCTGGGCAAGCGCGCGATCCACACGCGGATGCCGGCCTTCGGCGACTTCGTGGTCAAGCCGGTCGTCTCCGCCGGAGCGCAGGACACCGGCCGCTACCAGCCGGTCAGCGCCGAGTCGCGGGCCCTGGCCATCGAGCACGCCAAGACGCTGCTCGACGACGGCCGTGCCGTGATGATCCAGCCGTACATCACCAGCGTCGACACCGCGGGCGAGACCTGCCTGATCTTCGTCGAGGGCGAGGTCCAGCACGCCGTGCGCAAGAACGCGCTGCTCACCGGGCCCAGCCGGCCGACCCAGGGCCTGTACCGCAAGGAGCAGATGCAGCCGGTGGAGCCCACCGCGGCGCAGATCGACGCGGCCCGCCAAGCGATCGCCGTCGCGCACGAGCGGCTCGGGGTGACCGAGCCCTTCCTCTACGCCCGCGTCGACCTGGTCGGTGGCGAGGACGACACCCCGACGGTCATCGAGCTCGAGCTCACCGAGCCGTCGCTGTGGCTGAAGCACGCCGGTGACGCCGGAACGGTCGGACGGCTCGCCGACGCGATCGTCGCCCGCCTCGGCTGAMTTTTKRVGLATCSVLPDLDADDRPIVPALAARGVTAEPVVWDDPDVDWSSYDLVVVRSTYDYSPRRDEFVEWARSVPHLANSADVIAWNTDKTYLQTLDEAGVPVIPTIWLDPERHLGKRAIHTRMPAFGDFVVKPVVSAGAQDTGRYQPVSAESRALAIEHAKTLLDDGRAVMIQPYITSVDTAGETCLIFVEGEVQHAVRKNALLTGPSRPTQGLYRKEQMQPVEPTAAQIDAARQAIAVAHERLGVTEPFLYARVDLVGGEDDTPTVIELELTEPSLWLKHAGDAGTVGRLADAIVARLGNANANANANA
AK018_00056915yehZ_1COG1732Glycine betaine-binding protein YehZATGCGCACCACCCGACGCACCACCGCGCTCGTGGCCGGAGCCGCCGCGGCTCTGCTGATCCTGACCGCCTGCGGAGGCGACGCCGACCCCCTGGCGCAGGACGCGGGCGACGACGGCGAGGAGACGTCCTCCGACACGATCGTCGTGGGCTCGCAGGCGTACTACTCGAACGAGATCATCGCCGAGATCTACGCCCAGGCCCTCGAGGCCGACGGGTTCACCGTCGAGCGCAACTACTCCATCGGGCAGCGCGACGCCTACATGCCCGCGCTGGAGGCCGGCGAGGTCCAGGTCTTCCCGGAGTACACCGGCAACCTGCTGCAGTACTACGACCCCGAGACGACTGCGACGACCGCGGACGACGTCTACGCCGAGCTCAGCGACGCCCTGCCGGACACCCTGGCCGTGCTCGACCGGTCCCCGGCCACCGACCAGGACTCCTACAACGTCACCGCCGAGTTCGCCGAGTCGAACGGGCTGACCACGATCGGCGACCTCGCCGACCTGGACGGCCTGACCCTCGGCGGCCCGGCCGAGCTGGAGGAGCGTCCCTACGGTCCGGAGGGGCTGGCCGACGTCTACGGCGTCGACGTCGCCTTCGAGGCCACCGGTGACACGACCGTGCAGGACCTCGTGGCCGGCACGGTGGACGTCGCGAACGTCTTCAGCGCCGACCCGCGCATCCAGACCGAGGACCTCGTCACCCTGGAGGACCCGGAGGGCCTGTTCCTCGCCTCCAACGTGGTGCCGCTGGTCAGCAGCGACGTGGCCGACCAGGTGGCCGACGTCATCAACCCGGTCAGCGCCGCCCTGACGCCCGAGGGCCTGGTCGACCTCAACGTCCGGTCCACCGAGGAGCAGCGCTCCAGCGAGGACATCGCCGCCGACTGGCTGAGCGAGAACGGCATCGGCTGAMRTTRRTTALVAGAAAALLILTACGGDADPLAQDAGDDGEETSSDTIVVGSQAYYSNEIIAEIYAQALEADGFTVERNYSIGQRDAYMPALEAGEVQVFPEYTGNLLQYYDPETTATTADDVYAELSDALPDTLAVLDRSPATDQDSYNVTAEFAESNGLTTIGDLADLDGLTLGGPAELEERPYGPEGLADVYGVDVAFEATGDTTVQDLVAGTVDVANVFSADPRIQTEDLVTLEDPEGLFLASNVVPLVSSDVADQVADVINPVSAALTPEGLVDLNVRSTEEQRSSEDIAADWLSENGIGPGPT0013595_2681DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013595-opuC|yehZ-K05845NANA
AK018_00057687opuCB_1COG1174Glycine betaine/carnitine/choline transport system permease protein OpuCBATGGAGCTCTTCGCCGAGGCCGTCGCCTGGATCTTCTCCTCCGACGCGCAGTCCGGTTCGCTGCCCCTGTCCGAGGCGATCGCCACGCACCTGGCGTTCACGTTCGTCTCCGTGCTCCTCGCCGCCGCGATCGCCGTCCCGGCCGGCTGGGTGGTCGGGCACACGGGCCGGGGCCGCGAGGCCGCCGTGGCGCTGTCCGGGGCCGCCCGCGCCGTCCCGTCCTTCGGCCTGGTTCTGCTGCTGGTCCTCGTCCTCGGGGTGACGCACAAGGTCGGCGCGTCCACCACCGCCTTCGTCCTGCTCGCGATCCCACCGATCCTGGCGGGCGCGTACTCCGGCGTCGAGGCCGTCGACCGGCGGGTGGTCGACGGCGCCCGCGCGGTCGGCATGACGCCCCGGCAGGTGCTGGGCAGGGTCGAGATCCCGCTGGGGCTGCCGCTGCTGATCGGCGGTCTGCGGTCGGCGACGCTGCAGGTCGTGGCCACCGTCACGCTGGCCGGCTACGTCGGGAGCTGGGGCCTGGGCTTCTACATCGTCCAGGGCATCCAGATCCGCGACTTCGCGCAGATCCTGGGCGCGGCGCTGGTGATCGTGGTCCTCGCCGTGCTGCTCGACCTGCTCTTCGCGCTCCTCGAGCGGGCGGTCGTCCCGCGGGGTGTCCGGGCGCGGCACGAGACGTCCTCCTGAMELFAEAVAWIFSSDAQSGSLPLSEAIATHLAFTFVSVLLAAAIAVPAGWVVGHTGRGREAAVALSGAARAVPSFGLVLLLVLVLGVTHKVGASTTAFVLLAIPPILAGAYSGVEAVDRRVVDGARAVGMTPRQVLGRVEIPLGLPLLIGGLRSATLQVVATVTLAGYVGSWGLGFYIVQGIQIRDFAQILGAALVIVVLAVLLDLLFALLERAVVPRGVRARHETSSPGPT0013581_38DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013581-opuCB|yvbD-NANANA
AK018_00058639opuCB_2COG1174Glycine betaine/carnitine/choline transport system permease protein OpuCBATGACCTGGGTCGTCGAGAACCTCGACCTCATCGGTCGCCTCACCGTCGAGCACCTGCGCCAGAGCGCCCTGCCGATCGTGCTGGGGCTGGTGCTGTCGATCCCGGCCGGCTGGTTCGCGTTCCGCTTCCGCCCGACGCGGGGCCTGGTGCTCACCGCCGTCGGGCTGCTCTACACGATCCCGTCGCTGGCGCTGTTCGCCCTGCTGCCGCCGCTGCTCGGCATCAGCTTCCTGTCCGAGGTCAACCTGATCATCGCGCTGACGATCTACGCCGTGGCGATCATGACGCGGTTCGTCGCCGACGCCCTGGCCTCGGTCGAACCGCAGGTGCGGCAGGCCGCCGACGCCGTCGGGTACAGCACCTGGCGCCGGTTCTGGCAGGTGGACCTGCCGCTGGCCGGACCCGTCGTCCTGGCCGGGCTGCGGGTGACCGCCGTGTCGACGATCTCGCTGTGCACGGTGGGGATCCTCATCGGGATCGACAACCTCGGCTACCTGTTCACGAACGGCTACCAGCGCCAGATCGTCCCCGAGATCCTCGCCGGGGTGGTCGCCGTCGTCGTCATCGCGCTGCTGGTCGACTGGCTGCTCGTGCTCGCCGGGCGCGTCCTGATGCCGTGGACCCGGAAGGGGGACTGAMTWVVENLDLIGRLTVEHLRQSALPIVLGLVLSIPAGWFAFRFRPTRGLVLTAVGLLYTIPSLALFALLPPLLGISFLSEVNLIIALTIYAVAIMTRFVADALASVEPQVRQAADAVGYSTWRRFWQVDLPLAGPVVLAGLRVTAVSTISLCTVGILIGIDNLGYLFTNGYQRQIVPEILAGVVAVVVIALLVDWLLVLAGRVLMPWTRKGDPGPT0013590_4914DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013590-opuBD|yehW-K05846NANA
AK018_00059831opuBA_1COG1125Choline transport ATP-binding protein OpuBAATGATCGAGTTCCGGTCGGTCACCAAGACCTACCCCGACGGCACCGACGCCGTGGCCGACTTCTCCCTGGTCGTGCCGGCGCACACCACCACGGTGCTGGTCGGCTCGTCCGGCAGCGGCAAGACCACGCTGCTTCGCATGATCAACCGCATGGTGGAGCCGACGTCCGGCACCATCGAGATCGACGGCGAGGCCATCGCCGACCGCGACCCGGTCCGGCTGCGTCGCAGCATCGGCTACGTGCTGCAGAACGGCGGGCTGCTCCCCCACCACCGGGTGGTCGACAACGTCGCCACGGTGCTGCGTCTGGAGGGCACCCCCAAGAGCGAGGCTCGGCAGCGGGCCCTGGAGGTGCTCGACGTCGTCGGCCTGGACCGCGGACTGGCCGAGAGGTACCCGAGCCAGCTCTCCGGCGGCCAGCAGCAGCGCGTCGGGGTGGCGCGCGCCCTGGCCGCCGACCCGAACATCCTGCTCATGGACGAGCCGTTCGGCGCCGTCGACCCGATCGTGCGCTCCGAGCTGCAGACCGAGACGCTGCGCCTGCAGCAGCAGCTGCACAAGACGATCGTGTTCGTCACCCACGACGTCGACGAGGCGTTCCTGCTGGGCGACCAGGTCGTCATCCTGTCCACCGGCGCCCAGATCGCCCAGGTCGGCTCGCCGAGCGAGATCATCGAGAACCCGGCCGACGAGTTCGTCGCCAGCTTCATCGGCGCCGAGCGCGGCGCCCGGGCGCTGCACACCAAGGACACGCGCCACGGCACCGTGCTCGTGGACGGCACGGGCCGCACCCAGGGCCGCCTCGTCGAGGGCGGTCAGGGCGCCGCATGAMIEFRSVTKTYPDGTDAVADFSLVVPAHTTTVLVGSSGSGKTTLLRMINRMVEPTSGTIEIDGEAIADRDPVRLRRSIGYVLQNGGLLPHHRVVDNVATVLRLEGTPKSEARQRALEVLDVVGLDRGLAERYPSQLSGGQQQRVGVARALAADPNILLMDEPFGAVDPIVRSELQTETLRLQQQLHKTIVFVTHDVDEAFLLGDQVVILSTGAQIAQVGSPSEIIENPADEFVASFIGAERGARALHTKDTRHGTVLVDGTGRTQGRLVEGGQGAAPGPT0013585_2584DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013585-opuA|osmV|yehX-K05847NANA
AK018_00060477hypothetical proteinATGTCCGCACCGTCGTTCGCCGACCCCACGATCGAGACCCGTGGCGAGCAGCACCTGGCCGTGGTCCGCGAGACCGTGGCGCTCGCCGACATCCCCGCGCTCTACGACCGGGCGTTCCCGCTGATCTTCGCCGCGCTCGGGCGGGCGGGCCTCGAACCCGTGGCCCCGCCGCTGGGCATCAGCCACGGCATGCCGACCGAGACCCTCGACCTGTCGGTCGCCGTCCCGGTCGCCGCGCCGTTCGCCGACGACGGCGAGGTCACCGGCGAGACCTTGCCGGCCTGCCGCGCAGCCACCCTGCTCGTGCGCGGCGCGTACGACCGGATCGCACCCGCCTACGAGCACCTCTTCGGCTGGGTCGCCGCCCAAGGACTCGTCCCGACCGGGACCGCGTGGGAGCAGTACCTCACCGAGCCGTCGCCGGGGGGCGACCCGTCCCGCAACGAGACGCTCGTCGGCGCCGACCTGGTGGACTGAMSAPSFADPTIETRGEQHLAVVRETVALADIPALYDRAFPLIFAALGRAGLEPVAPPLGISHGMPTETLDLSVAVPVAAPFADDGEVTGETLPACRAATLLVRGAYDRIAPAYEHLFGWVAAQGLVPTGTAWEQYLTEPSPGGDPSRNETLVGADLVDNANANANANA
AK018_00062648orn_1COG1949OligoribonucleaseGTGGTCCCCGTGAGCCCGAGCAACCCGAACGACCGCATCGTGTGGATCGACTGCGAGATGACCGGCCTCGACACCCGGGCGGACGCCCTGGTCGAGGTGGCCGCCGTGGTCACCGACTCCGAGCTCAACGTGCTCGGGGACGGCGTCGACGTCGTCATCCGCCCGCCCGCCGGGGCGCTGGAGCAGATGAACGACTTCGTGCGCGAGATGCACACCACGTCCGGGCTGATCACCGAGCTCGACGGCGGCACCACGCTGGCCGACGCCGAGGCCCGCGTGCTCGCCTACCTCCGCGAGCACGTGCCCGAGGCCCGCAAGGCGCCGCTGGCCGGCAACTCCGTGGGGACCGACAAGATGTTCCTCGACCGGGACATGCCCGAGCTCGTCGGCCACCTGCACTACCGGATCGTGGACGTGTCCTCCGTCAAGGAGCTCGCCCGGCGCTGGTACCCGCGCGTCTACTTCGCCTCCCCGCCCAAGGACGGCGGCCACCGGGCGCTGGCGGACATCCTGGAGTCGATCGACGAGCTGCGCTACTACCGCGAAGCCCTGTTCGTGCCCCAGCCCGGCCCCGACACCAAGACCGCCCGCGAGGTCTCGGCCCGGATCAAGGAGACCTCGGTCACGAAGTCCGGCACGGTGTCCTGAMVPVSPSNPNDRIVWIDCEMTGLDTRADALVEVAAVVTDSELNVLGDGVDVVIRPPAGALEQMNDFVREMHTTSGLITELDGGTTLADAEARVLAYLREHVPEARKAPLAGNSVGTDKMFLDRDMPELVGHLHYRIVDVSSVKELARRWYPRVYFASPPKDGGHRALADILESIDELRYYREALFVPQPGPDTKTAREVSARIKETSVTKSGTVSPGPT0017710_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835NANA
AK018_00063198hypothetical proteinATGCACCCGATCGAGATGCACGCCGTCGCGCGTGCGATCCACACCGAACGCCTGGAGGACGCCGAGCGCGCCCGCCGGGAACGCCGACAACGGCGGTCCCCCGCCGCCCGGCCGTCCGTGAGCAGGGCGCGGCGCCGTGTCCACCGCTTCCTGCGGCGGCTGCGCGTCGAGCGTCCCCTCGTCGGGCGACCCGCATGAMHPIEMHAVARAIHTERLEDAERARRERRQRRSPAARPSVSRARRRVHRFLRRLRVERPLVGRPANANANANANA
AK018_00065321hypothetical proteinATGGCCAGCAGCGAGCTCCGGCTCCAGGTCGACCTGCCCACCGAGCACGAGACGGGCGTGCCCGCCGACTTCGCCTCGGTGTGGCACACGTCGGCGTCGTTCGTCCTCGACTTCGTCGCGGCGAAGTCCCCGGCCAAGGCCGCCGTCGACAAGACCACCGGCGCCGAGACCGGCGGGCGGGTCATGCCGGCCCGGGTCGTGTCCCGCGTGCGCATCCCGCCCCAGCAGGTCTTCGAGCTGGCGCGTGCCCTGACCCAGCAGCTCGACGCCTGGGAGCGGGAGACCGGCCACAAGGCCGACGGCTCCGGCACGGGGGACTGAMASSELRLQVDLPTEHETGVPADFASVWHTSASFVLDFVAAKSPAKAAVDKTTGAETGGRVMPARVVSRVRIPPQQVFELARALTQQLDAWERETGHKADGSGTGDNANANANANA
AK018_000661656hypothetical proteinGTGACTACCTCCATGCGTACGGGCCGGCTCCTCGGTGGGCGGTCCGACGTCGATGCGGACACGGAGATCGGTCTCACCGTCTACGACGTCGCCCGGGACCTCCGGCGTGACGTCGCGGCGGTGCGGCTGCCGATGCCCATCGACGGAGCCGCCGAGGCGGAGGGCTCCCGCGACCGGCTGCTCGCCCAGCTCGACGAGCACCTGCTGCCCCGCCTGGCCGAGCTGAGCTCGCCGGCGATCGTCGTCGTCGCGGGCTCCACCGGTGCGGGCAAGTCGACGCTGTACAACTCCCTGCTGGGCGAGGAGGTCTCCGCCGCCGGCGTGCTGCGCCCCACGACCCGTGAGCCCGTGCTCGCCTTCAACCCGGCCGACGCCGACGTCGTCGCCGAGGGTCCGGTCACCGAGCTGTCCCGCGTCGTGCACCACGCGGGCGTGCCCCGGGGCACGGCGCTGCTGGACGCTCCCGACCTCGACTCGTTCGTCCAGGAGAACCGCTCCACCGCGCAGCAGCTGCTCGAGGCGGCCGACCTGTGGCTCTTCGTCACCACCGCCTCGCGCTACGGCGACGCTCTGCCCTGGCAGGCCCTGGCGCGAGCGACCGAGCGCGGTGCGTCGGTCGCGATGGTGCTCAACCGGGTCCCGCACGAGGATCTCGTGACCGTCCGCGGCGACCTGATGGGCCGCCTGCGCTCGCACGGCATGGTCGACACACCGTTGTTCGTGGTGCCCGACGTCGGCCCGCACGAGGGACTCCTGGACGACAAGCCCGTCGCGCAGGTCAAGCGCTGGCTGACCATGCTCGCCGGCCCCGAGCGGTCCCGCGCCGTCGTGGTGCGCACCCTCAAGGGCTCCCTGAACGCGCTGCCCGGCTGGGTGACCTCCCTGGCCGACGCCGTCGAGGCCCAGGCGGGAGCCGCCGCGACCCTGCGACGGGCCGTGGAGGCCGAGGTGCCGGCCGCCGAGCAGCTCGCCCGCGACGCCGTGGGCGCCGGCGTCGTGGCCGGTGCCGCCGTCGAGGCGCGCTGGCGGGAGCTGTCCGGCACGGCCAAGATCGAGCGCCTCCGGTTCCGCGGCGACCAGGTACGCAGCTCGCGCCGGGCCGGCCGCGCCCGCTCCGCCGCGCTCGAGGTCCTGCGCGCGGACGTCTGCGAGGCCGCCGCGCACACGCTGACCGCGTCCGGGGCCCGGGTCGCGGACCGGCTGCGGGCGGTCCTCGACGGACCGTCCGCCCCTCCCGGCGGGTCGTCCGTGCTGCCCGACCCCGACGAGCGTGCCGCCGACCGCGAGACGGCCGTGCCGGCCACCGTCACCGCCTGGGCCGACGCCGCGGACGAGCGGCTCGCCGCCCTCCTCGCCGAGGGTGCCCCGGGGCCGGCCACCGCGGCCGTGCGGGCCTTCGGCGACCGGGGGCTGGCCACGCTGGTGCTCGCCGCCGCGGCCGGCAGCGACGACGCGCGCCGGCTGCTGGACCGGGTGCTCGGCGACGCACTCGACGAGCAGGTCGCCGCCCTGCGCGACGACCTCGCCGACCGGGCCGCCGCCGTCGTCGACCGCGAGGTCGTCGCCGTCCTGGACGCCCTCGACTCACCCGACCTGACCGACGACGCGGCCACGGCGCTGCGGTTGCGGCTCGCCGAGCTGAGGAGACTGACATGAMTTSMRTGRLLGGRSDVDADTEIGLTVYDVARDLRRDVAAVRLPMPIDGAAEAEGSRDRLLAQLDEHLLPRLAELSSPAIVVVAGSTGAGKSTLYNSLLGEEVSAAGVLRPTTREPVLAFNPADADVVAEGPVTELSRVVHHAGVPRGTALLDAPDLDSFVQENRSTAQQLLEAADLWLFVTTASRYGDALPWQALARATERGASVAMVLNRVPHEDLVTVRGDLMGRLRSHGMVDTPLFVVPDVGPHEGLLDDKPVAQVKRWLTMLAGPERSRAVVVRTLKGSLNALPGWVTSLADAVEAQAGAAATLRRAVEAEVPAAEQLARDAVGAGVVAGAAVEARWRELSGTAKIERLRFRGDQVRSSRRAGRARSAALEVLRADVCEAAAHTLTASGARVADRLRAVLDGPSAPPGGSSVLPDPDERAADRETAVPATVTAWADAADERLAALLAEGAPGPATAAVRAFGDRGLATLVLAAAAGSDDARRLLDRVLGDALDEQVAALRDDLADRAAAVVDREVVAVLDALDSPDLTDDAATALRLRLAELRRLTNANANANANA
AK018_000671584hypothetical proteinATGAACGCCTCGCACGACGCGACCCTGCGGGCGCGCACCGAGGACCTCGCCGAGGCGCTCGCCCTGGCCGGGCCGCGTCTCGACTCCGTGACCGCCCAGCGCGTGCAGACCGCCGTCGACGGGGTGCGCCAGCGCCTCGCCCTCGGGGTCGACCACACGGTCGTGGCGCTCGCGGGGGGCACCGGCTCGGGCAAGTCGAGCCTGTTCAACAAGATCTCCCGGCTCTCCTTCGCGGACGTCGGGGTCAAGCGCCCGACGACGGCGCGGGTCACGGCCTGCTCCTGGTCCGACGCCGCGGAACCGCTGCTCGACTGGATCGGCGTCGACCGGGAACGGCGCATCACCCACTCCGAGGTCCTCGAGGGCGACGGCGCCGGGGCGATGGCGGGGCTCGTGCTGCTCGACCTGCCGGACCACGACTCGGTCGAACCGGCCCACCGCGAGGTCGTGGACCGGGTGCTGCCGCTGGTCGACCTGCTCGTGTGGGTCGTGGACCCCCAGAAGTACGCCGACGACGCCCTGCACTCCGGCTACCTGCGCGACCAGGTCGGGTCGGAGTCCTCGATGGTGGTCGTCCTCAACCAGGTCGACACCGTGCCGGACACCCAGCGCGAGAACCTCGTCGAGGACCTGGAACGGCTGCTCGCCGACGACGGGCTCCACGACGTGCTCGTCCAGCCCGTCTCGGCCCGGACCGGCGAGGGCGTGGCCCGCGTGCGCGAGGTGCTCGAGGAGGCCTGCGCCCGGCGCTCGGTCGCGGCCGGACGGGCGGCCGCCGAGCTCGACGCCGCCGGCAGGGCCCTCCTGACGCAGACGCCCGCGGACGTGCCGTGGCAGCTCGACGCCGCCGTCGACCGCGAGCTGGAGCCGGTGGTGGGCGCGACCGGGCTGGACGCCGTCGCCAACCAGGTCGGCGCCGGGGTGCGCAACGGCTACGGCATGCCCGAGCTGCCGGTGCCCGACCGGGACACGATCGCCCTGGCCCGGGCGCGCTGGTTGACCCGCGCCGGGGCCTCGCTGCGCCCGGGGTGGCAGCGCTCGCTCGCGGAGTCCGCCGCCAGCGCCGACCAGCTGCGCGCCGCGGTGACGACGGCGCTGCGCGGCGTCGACCTGGACGTGAGCGGACCCCGGCACTCGCGGGCGCTGCGGCGCACGGCCTGGGTCTGCCTGGCCCTCGGCGTGGTGCTCGGGGTGGTCGGCGGGCTAGCCCTCGGTGACGTGATCGGGGTCGCGGACCCGTGGGGTCTGGTCCTGGCCGTCGCCGGCGGGGTGCTGCTGGTCGGCGCCGTGGTGCTGGCCGTGGTGCGGGTGGTGCTGCGGCGACGCCGGGCGGCGCGGCGGCGCGAGGAGGTGCGCACCCAGGGCCGCCGGGCGATCCGCGAGGTGCTGGTGACACGGCTGGGCGAACCCACCCAGCGGGTGCTCGTCGAGCACCGCCAGGTGCGCGACTACGCGCTGTCCGCCCGGGAGCTGCCGTCGGCGGCGCCGCTGACCGGCAGCGTGCGGCTACCCACAGGGGACGAGCTCGCCACGTCGTCCACAGCCCGTGCCGAGGACGGAGCCCGTACCGACGCGACCGCGTGAMNASHDATLRARTEDLAEALALAGPRLDSVTAQRVQTAVDGVRQRLALGVDHTVVALAGGTGSGKSSLFNKISRLSFADVGVKRPTTARVTACSWSDAAEPLLDWIGVDRERRITHSEVLEGDGAGAMAGLVLLDLPDHDSVEPAHREVVDRVLPLVDLLVWVVDPQKYADDALHSGYLRDQVGSESSMVVVLNQVDTVPDTQRENLVEDLERLLADDGLHDVLVQPVSARTGEGVARVREVLEEACARRSVAAGRAAAELDAAGRALLTQTPADVPWQLDAAVDRELEPVVGATGLDAVANQVGAGVRNGYGMPELPVPDRDTIALARARWLTRAGASLRPGWQRSLAESAASADQLRAAVTTALRGVDLDVSGPRHSRALRRTAWVCLALGVVLGVVGGLALGDVIGVADPWGLVLAVAGGVLLVGAVVLAVVRVVLRRRRAARRREEVRTQGRRAIREVLVTRLGEPTQRVLVEHRQVRDYALSARELPSAAPLTGSVRLPTGDELATSSTARAEDGARTDATANANANANANA
AK018_00068558ssb_1COG0629Single-stranded DNA-binding proteinATGAGCGACGCGAGGACGACCGTGACCGGCTACGTCGGCACCACGCCGGTGCTGCACCTGTCGGCCAACCAGGTGCCGTGGACGAGCTTCCGGGTGGGCAGCACCCGCCGGTTCCGGGACGCGGCGACGGGGGAGTGGCGCGACGGCCGGACCACGTGGTTCACCGTCAAGGCGTTCCGCGGTGCGGCCCGGACGATCTGCGAGTCCCTCACCCAGGGCCAGCCCGTGGTCGTCACGGGTCGCGCCTCGACCGAGGAGTGGGTCGACAAGGAGGGGCGCGACCGGTTCGCGCTGATCGTCGACGCCGACGCCGTCGGCCCCGACGCGACGCGCGGGCTGACGCGGTTCACCAAGGTGGTCCACGACGACGCCCCCGCCGAGCGACCGACGCAGGGCTCGACGTCGACGCCCGACCCGTGGGGGCTGCCGCCGGCACCCCGCGGCGACGGAGGGGCTGTCGCGGACGCCGGCACGCCGGACGGCGAGGACGACGTCGTGGACCCGCTCGGGGGGTCCGACGACCAGACCGAGCCCGCCGCCGAGCCCGCCGTCGCGTAGMSDARTTVTGYVGTTPVLHLSANQVPWTSFRVGSTRRFRDAATGEWRDGRTTWFTVKAFRGAARTICESLTQGQPVVVTGRASTEEWVDKEGRDRFALIVDADAVGPDATRGLTRFTKVVHDDAPAERPTQGSTSTPDPWGLPPAPRGDGGAVADAGTPDGEDDVVDPLGGSDDQTEPAAEPAVANANANANANA
AK018_000691683ettA_1COG0488Energy-dependent translational throttle protein EttAGTGGCTGAGTTCATCTACTCCATGTACAAGGCGCGCAAGGCGCACGGCGACAAGGTCATCCTCGACGACGTGTCGCTGAACTTCTTGCCCGGTGCCAAGATCGGCGTCGTCGGCCCGAACGGTGCCGGCAAGTCGACGATCCTCAAGATCATGGCCGGACTCGACCAGCCCTCCAACGGCGAGGCGCGGCTCTCCCCGGGCTACACGGTCGGCATCCTGCAGCAGGAGCCGCCGCTGAACGAGTCCAAGACCGTCCTCGGCAACGTCGAGGAGGGTGTCGGCGAGATCAAGGCCAAGGTCGACCGGTTCAACGAGATCTCCGGTCTCATGGCCGAGCCCGACGCCGACTTCGACTCCCTCATGGCCGAGATGGGCGAGCTGCAGGAGGCCATCGACGCCGCCGACGCCTGGGACCTGGACAGCCAGCTCGAGCAGGCGATGGACGCGTTGCGCTGCCCGCCGCCGGACGCGGAGGTCTCCGTGCTCTCCGGCGGTGAGCGCCGCCGCGTGGCGCTGTGCAAGCTGCTGCTCGAGAAGCCGGACCTGCTGCTGCTCGACGAGCCCACCAACCACCTGGACGCCGAGTCCGTGCTGTGGCTCGAGCAGCACCTGGCGACCTACCCCGGCGCCGTCCTGGCCGTGACCCACGACCGGTACTTCCTCGACCACGTCGCCGAGTGGATCTGCGAGGTGGACCGCGGTCGCCTCTACCCCTACGAGGGCAACTACTCGACGTACCTGGAGAAGAAGCAGGCCCGTCTCGAGGTGCAGGGCAAGAAGGACGCCAAGCTGTCCAAGCGCCTCAAGGACGAGCTCGAGTGGGTGCGCCAGAACGCCAAGGGCCGCCAGACCAAGTCCAAGGCGCGTCTGGCCCGCTACGAGGAGATGGCTGCCGAGGCCGAGCGCACCAAGAAGCTGGACTTCGAGGAGATCCAGATCCCGGCCGGCCCCCGTCTGGGCAGCCTGGTGCTGGAGGCCGACAAGCTGCAGAAGGGCTTCGGCGACCGCCAGCTCATCGACGGGCTCAGCTTCACGTTGCCGCGCAACGGCATCGTGGGCGTCATCGGCCCGAACGGCGTCGGCAAGACCACGCTGTTCAAGACGATCGTCGGCATGGAGCCGCTCGACGGCGGCGACCTCAAGGTCGGCGACTCGGTGAAGATCTCCTACGTGGACCAGTCCCGTGGTGGGATCGACCCGGACAAGTCGCTGTGGGAGGTCGTCTCGGACGGTCTGGACTTCATCCAGGTCGGCAACGTCGAGATCCCCTCGCGCGCCTACGTCGCCTCGTTCGGCTTCAAGGGCGCCGACCAGCAGAAGAAGGCCGGTGTGCTCTCCGGCGGTGAGCGCAACCGCCTCAACCTGGCCCTGACGCTCAAGCAGGGCGGCAACCTGCTCCTGCTGGACGAGCCCACCAACGACCTCGACGTCGAGACCCTGGGCTCGCTGGAGAACGCGCTGCTGGAGTTCCCGGGCTGTGCCGTCGTGGTCTCCCACGACCGCTGGTTCCTCGACCGCGTGGCCACGCACATCCTGGCCTACGAGGGCACCGAGGAGGACCCGGCGAACTGGTACTGGTTCGAGGGCAACTTCGCCTCCTACGAGGAGAACAAGGTCGAGCGCCTCGGCGCCGAGGCCGCGCGTCCGCACCGCGTGACCTACCGCCGCCTCACCCGCGACTGAMAEFIYSMYKARKAHGDKVILDDVSLNFLPGAKIGVVGPNGAGKSTILKIMAGLDQPSNGEARLSPGYTVGILQQEPPLNESKTVLGNVEEGVGEIKAKVDRFNEISGLMAEPDADFDSLMAEMGELQEAIDAADAWDLDSQLEQAMDALRCPPPDAEVSVLSGGERRRVALCKLLLEKPDLLLLDEPTNHLDAESVLWLEQHLATYPGAVLAVTHDRYFLDHVAEWICEVDRGRLYPYEGNYSTYLEKKQARLEVQGKKDAKLSKRLKDELEWVRQNAKGRQTKSKARLARYEEMAAEAERTKKLDFEEIQIPAGPRLGSLVLEADKLQKGFGDRQLIDGLSFTLPRNGIVGVIGPNGVGKTTLFKTIVGMEPLDGGDLKVGDSVKISYVDQSRGGIDPDKSLWEVVSDGLDFIQVGNVEIPSRAYVASFGFKGADQQKKAGVLSGGERNRLNLALTLKQGGNLLLLDEPTNDLDVETLGSLENALLEFPGCAVVVSHDRWFLDRVATHILAYEGTEEDPANWYWFEGNFASYEENKVERLGAEAARPHRVTYRRLTRDNANANANANA
AK018_000702025hypothetical proteinATGACCTCCACCGGCACCCCGGACGACGCCGGCCCCGCCGTCTCGCCGAGCGCCGCCGCCCTCACGACGGACGCGGCCACGGCCGTGCTCGTCGACGCCCTGGAGTCGCTGCGCGCCCGGCTCGGCGCGCTGCGCCTGCCGCTCGACGTCCCCGGAGCCACCCACCTCCGCGAGGAGCTCGCCCGCGCGACCGACCAGCTCGACGACTACCTGCTGCCCCGGCTGCGCGCCGAGCGCGCACCCCTGCTCGTCGTCGTCGGCGGGTCCACCGGCGCGGGCAAGTCGACCCTCGTCAACTCCCTGCTCGGCGAGCAGGTCACCAGCCCGGGCGTGCTGCGCCCCACCACCCGCTCGCCCGTGCTCGTCCACCATCCCCTCGACGCTCGCTGGTTCGGCGCCGACCGCGTGCTGCCCGGGCTGGCCCGGGTCGCCACCCACGGCGACGCGTCCGGTCCGTCCTCGTCGCGTGACGACGACGGCCGCCCCACCCGCACGCTGCGCCTGGTGCCCAGCGCCAACCTGCCGCAGGGCCTCGCGCTGCTGGACGCGCCCGACGTCGACTCCGTCGAGGAGGCCAACCGGGAGCTCGCCGGCCAGCTGCTCGGCGCCGCGGACCTGTGGCTCTTCGTCACCACGGCCGCCCGCTACGCCGACGCCGTGCCCTGGGGGCTGCTCACCACCGCCGCGTCGCGCCGCGCCCAGGTCGCGCTCGTCCTGGACCGTGTCGACCCGGGGACCGAGGAGGTCGCCGGCGACCTGCGTCGTCTCATGACCGAGCACGGGCTGGCCGACGCCGCCCTGTTCGTCGTGCCGGAGACGGGCGGGGCGGGGGACGAGCGCATGATCGACGGTCTGCTGCCCGAGTCCGCCGTCGGCGAGCTCGCCACCTGGCTGTCCGGCGTCGGCGGGGACCCCGACTCCCGGGCCCGCGTCATCACGGCCACCCGCGACGGCGTGGTCGACGACCTCGTGCGTCGCACGCAGGCGCTGGCCGACGCCGCCGAGGCCCAGCGGGCCGCCGACGCGCGGCTGCGCGGCGCCGTCGAGCGCCACCACGCCGAGGCGCTGCGCCAGGTGGAGGCGGCGACCTCCGACGGTGCCCTGCTGCGGGGGGAGGTGCTGGCCCGCTGGCAGGACTTCATCGGCACCGGGGAGTTCTTCCGCTCGCTGGAGGCCGGCGTCGGCAAGGTGCGCGACGCCGTCGGCCGGTTCTTCCGCGGCCGGCCGAAGGAGGCGCCGCAGGTCGAGCAGGCCATCGCCCACGGGCTGGAGTCCGTCGTCCTGGACGGGGCCGAGCAGGCGGCCGAGCGCACCTACGCCGACTGGCGCGACGACGTCGCCGGCTCCACCCTCCTGGACGGGCTCGAGCTGTCCCGCACCGCCCCGAACCTGCGCGCAGAGGTCGCCGAGGCCATCCGTGGCTGGCAGGGCGACGTCCTGGCCCTCGTGCGCGAGCAGGGCGAGGGCCGCCGCGGGACCGCCCGCGCCCTGTCCTTCGGCGTCAACGCGCTCGGCGTGAGCCTGATGGTGGTCGTCTTCGCCTCCACCGCCGGCCTGACCGGCCTCGAGATCGGCATCGCCGGCGGCACCGCCGTGGCTGCGCAGAAGATCCTCGAGGCCGTGTTCGGCGACGACGCGGTACGCCGCCTGGCGGCCCAGGCCAAGGAGCGGCTGACCGCGCGCGTGGAGACGGTGCTGCGGGGGCAGTCGGCCCGCTACACGGCCCAGCTCGACGCGCTGGGTGCCGACCGTGCCGACGGCGAACGGCTGCGGGAGGCCGCCCGCGAGGTCGCCGACGCCGCGCGCACCGAACGGACCGGCCGGGAACGGCCCGCCGACGGGCTCACGCGGCCGTGGAGCGGCGGTCTGCTGCGTGGCGCCGGCACCTTCCGGCCACCCACCGGCCCCGACGGCGTGCCCCGCGTGGCGGGCTCCCTCGCCGGGCGTGACACCGAGACCCCCGCACCCGACGAGCCGCCCAGGCCCCGCCTCTGGCAGCGGTGGCGACGGAAGGACCGCCCATGAMTSTGTPDDAGPAVSPSAAALTTDAATAVLVDALESLRARLGALRLPLDVPGATHLREELARATDQLDDYLLPRLRAERAPLLVVVGGSTGAGKSTLVNSLLGEQVTSPGVLRPTTRSPVLVHHPLDARWFGADRVLPGLARVATHGDASGPSSSRDDDGRPTRTLRLVPSANLPQGLALLDAPDVDSVEEANRELAGQLLGAADLWLFVTTAARYADAVPWGLLTTAASRRAQVALVLDRVDPGTEEVAGDLRRLMTEHGLADAALFVVPETGGAGDERMIDGLLPESAVGELATWLSGVGGDPDSRARVITATRDGVVDDLVRRTQALADAAEAQRAADARLRGAVERHHAEALRQVEAATSDGALLRGEVLARWQDFIGTGEFFRSLEAGVGKVRDAVGRFFRGRPKEAPQVEQAIAHGLESVVLDGAEQAAERTYADWRDDVAGSTLLDGLELSRTAPNLRAEVAEAIRGWQGDVLALVREQGEGRRGTARALSFGVNALGVSLMVVVFASTAGLTGLEIGIAGGTAVAAQKILEAVFGDDAVRRLAAQAKERLTARVETVLRGQSARYTAQLDALGADRADGERLREAAREVADAARTERTGRERPADGLTRPWSGGLLRGAGTFRPPTGPDGVPRVAGSLAGRDTETPAPDEPPRPRLWQRWRRKDRPNANANANANA
AK018_000711677hypothetical proteinATGAAGGCCCCCGACCTGGCGACCCGGACCGCGGCGCTGGAGCGCGCCGTCGAGGCCGGGCAGGGGCGGCTGGACCGCGAGCTGGTGGACTCCGCACGGGGCGTGGTGGAACGCACCCGCGAACGTGGCGGGCTGAGCGCCGAGCACACCGTCGCGGCGCTCGCCGGAGCGACGGGGTCGGGCAAGTCCAGCGTGCTCAACGCCGTCGCCGACGCCGACCTGGCGGTGCCCGGCGTACAGCGCCCGACGACGGCGCACGCCCTCGCGGCGGTGTGGGGCGAGGGCGCGGACGAGCTGCTCGACTGGCTGGACGTGCCGCGCCGCCACGAGATGGAACCCGTCGCGGGCCAGGCCCCGCCGTCGGGCGTGCTGCGCCGCAGCCGGCCGGCGGGGATCTCGACCGGCCTGGTGCTGCTCGACCTGCCCGACCACGACTCGGTCGTGGTCGAGCACCGGGTGCGCGCCGAGCGGCTCGTGGAGCGTGCCGACCTGCTGGTGTGGGTCGTCGACCCGCAGAAGTACGCGGACGCGGCGCTGCACGAGCGGTACCTGCGCCCCCTGGCCGGCCGCGCGGAGGTCGTGGTCGTCGCGCTGAACCAGGTCGACCGGTTGTCCGCGGCCGAGACCGACGCCGTGCTCGCCGACCTGCGCCGGCTCGTGGCCGACGACGGCCTGGCCGGCGCCCGGGTCCTGGGCGTGTCGGCCCGCACCGGTCAGGGGATCGACGAGCTGCGCGGTCTGCTGGCCGAGGCGGCACGGCGCCGCGAGGCGGCCACCGCGCGGCTGACCGGCGACCTGCAGGCGGTCGGTCGCCGGGTCGCCGCGGCCGGCGGTCAGGCGCCGCCCGCCCGGGCCGCGGACCGCGCGCAGGGCGCGCTGGTGGACGCTCTGGAGGACGCGGCCGGAGCGACGACGGTCGTCGAGGCGGTGCGCTCCGCGGCACGGCGGGACGCGCGGATCGCCACCGGGTGGCCTGTGACACGCTGGATCGCCCGGGGCCGCAAGGACCCGCTGCGTCGTCTCGGGCTGCGGCGGGACGACCTGCGGGTGCCGGCCGACCGGCCCGACCTGGCGCGGACGTCCTTACCGCAGACCCGCCCGAGCGTGCGGGCCGCGACGGCCACCGCGGTGCGCTCCTACGTGGACCAGGTCACGGCCGGCGCCCCCGACGCGTGGGTGCTGGCCGCACGGGACCGCGGGACGACGGCGATCGAGCGGCTCCCGGACGCACTGGACCAGGCCGTCGCGGGCACGCGGCTGGAGGCCGAGCGGCGGCCGGTGTGGTGGCGGGTCGTCGGAGTGCTGCAGTGGCTGCTGCTCGCCGCTGCCGTCGTGGGGCTGCTCTGGCTCGGCGTCTCGGCGGTGCTGTCGTACTTCCAGCTGCCGCCCCTGCTGATGCCCGTGGTGACGGTGGACCTCACGGCCCGGGGTGGGGGGACCTTCGACGTCCCCTGGCCGACGGTGCTGGCCCTGGGCGGCATCCTCGCCGGTCTGCTGCTGGCGCTGGTGTCACGGGGAGCGGCGGCGGTCGGTGCCCGACGGCGGGCCGGACGCGTCCGCCGGCGGCTGCGGGCCTCGGTGAGCGAGGTCGCCGAGGTCGAGGTGCGCCGGCCGGTCGCGGCGGAGATGGAGGCGCTGGCGACCTGCCGGGAGGCGGCGGCGGTCGCCGCGTCCTGAMKAPDLATRTAALERAVEAGQGRLDRELVDSARGVVERTRERGGLSAEHTVAALAGATGSGKSSVLNAVADADLAVPGVQRPTTAHALAAVWGEGADELLDWLDVPRRHEMEPVAGQAPPSGVLRRSRPAGISTGLVLLDLPDHDSVVVEHRVRAERLVERADLLVWVVDPQKYADAALHERYLRPLAGRAEVVVVALNQVDRLSAAETDAVLADLRRLVADDGLAGARVLGVSARTGQGIDELRGLLAEAARRREAATARLTGDLQAVGRRVAAAGGQAPPARAADRAQGALVDALEDAAGATTVVEAVRSAARRDARIATGWPVTRWIARGRKDPLRRLGLRRDDLRVPADRPDLARTSLPQTRPSVRAATATAVRSYVDQVTAGAPDAWVLAARDRGTTAIERLPDALDQAVAGTRLEAERRPVWWRVVGVLQWLLLAAAVVGLLWLGVSAVLSYFQLPPLLMPVVTVDLTARGGGTFDVPWPTVLALGGILAGLLLALVSRGAAAVGARRRAGRVRRRLRASVSEVAEVEVRRPVAAEMEALATCREAAAVAASNANANANANA
AK018_00072507hypothetical proteinATGCCGACCATGACTCGTCTGCACGTGCCCGTCTCGCTGCGCTGGTCCGACCTGGACGCCTACCAGCACGTCAACAACGTCGCGATGTTCCGCCTGCTGGAGGACGCCCGCATCACCGCGTTCTGGCAGCACCCCGAGTCGGAGGACCCCTGGCCGACGGCGATCCTGGACACGGGTCCGCACGCCACCTCGCACACGCTCGTGGCCGGTCAGCAGATCGAGTACCTGCGTCCGCTCGGCTTCTCCCGCGACCCCGTGCGCGTGGAGATGTGGATCGGGTCGATCGGCGGCGCGTCCCTGGAGGTCTGCTACGAGGTGTACGACGGCGCCCAGGGCGGCTTCCCGCGGACCGGCCCGGCGTCCGGGCGGGAGCCGTACACCCGGGCGGTGACGACGATCGTGGTGATCGACGCCGCCTCGGGCCGGCCGCGCCGGATCTCGCCCGACGAGCGTGCCGTGTTTGCACGGTTCGCAGAGGACCCGATCGCGTTCCGCCGACGTCGCTGAMPTMTRLHVPVSLRWSDLDAYQHVNNVAMFRLLEDARITAFWQHPESEDPWPTAILDTGPHATSHTLVAGQQIEYLRPLGFSRDPVRVEMWIGSIGGASLEVCYEVYDGAQGGFPRTGPASGREPYTRAVTTIVVIDAASGRPRRISPDERAVFARFAEDPIAFRRRRPGPT0001850_706DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
AK018_000731638hypothetical proteinATGTCGACCGACTCCCCCGCCCCGGACCCTGTGACCGCCTCGGTGCCCACCGACACGCCGGCCACGGTCGCGGTGACCGGCGTGACCGGCTACGTGGGTGGCCGGCTCGTCCCCGAGCTGCTCGCGGCCGGCTACACCGTGCGTGCGCTGACGCGGAACCCCGACCGTCTCGCGGGGCGCCGGTGGGCCGACGACGTCGAGGCGGTCCGCGCCGACGTCTCCGACCTGGACGCCACCCGCGCGGCGCTGCGGGGCGCCGACGTCGCCTACTACCTGGTGCACTCGCTCGGCACGGGTCGCACCTTCGAGGTGCGCGACCGGCGCAACGCGCTGACGTTCGCCCGCGCGGCGCGGGAGGCGGGCGTGGGGCGCATCGTCTACCTCGGCGGCCTGTATCCCGACGTCCCCGAGGGCGAGCTGTCGCCGCACCTGTCCTCGCGCAAGGAGGTCGAGGAGATCCTGCTCGCCTCGGGCGTGCCGACGACGGTGCTGCGCGCGGCGGTCGTCCTCGGCTCGGGCTCGGCGTCGTTCGAGATGATGCGCTACCTGACCGAACGGCTGCCCGCGATGACCACACCGCGGTGGGTGGACAACCGCATCCAGCCGATCGCGATCCGCGACGTGCTGCGCTACCTGGTCGGCGCGGCCGCGATGCCGTCGGACGTCTCGCGCGGGTTCGACATCGGCGGCCCGGAGATCGTCACCTACCGCGACATGATGCAGCGCTACGCCCGGGTCGCGGGCCTGCCCCGGCGACTCATCGTCGGGGTGCCGGTGCTGACGCCGCGGCTGTCCAGCCACTGGGTGGGCGTGGTGACGCCCGTCCCGTCCGGGATCGCCCGCCCGCTGGTCGAGTCGCTGCAGCACGAGGTCGTGTGCCTGGAGGACGACATCCGCGAGCTCGTGCCCGACCCGCCCGAGGGACGCGTGGACGTGACCCGGGCGATCGAGCTGGCGCTGACCCGCATCCACGACGGCGAGGTGACGACCCGCTGGACCTCGGCCTCGGTGCCGGGGGCGCCGTCGGACCCGCTGCCCACGGACCCCGACTGGGCCGGCGGGTCGCTCTACGTCGACGAGCGACGCACGGTCGTGCACGCCCCGCGGGACGTGCTGTGGCAGGTGATCGAGGAGATCGGCGGCCAGGACGGCTGGTACTCGTGGTCGCTGGCGTGGCGGCTGCGGGGGCTGATGGACCGCATCGTCGGCGGGCCGGGGCTGCGCCGTGGCCGGCGGGACGAGCACCGGCTGCGGGTCGACGACGCGCTCGACTTCTGGCGGGTCGAGGCCCTGGAGCCGGGCCGACGCCTGCTGCTGCGGGCGGAGATGCGGCTGCCGGGGCTGGCCTGGCTGGAGCTGCGGGTGGACGAGTCGGCGGAGGAGGTCACCGACGCGGACGACCCGGGGCCGGAGCCCGCCGACGCCAGCGGGCCGCAGCGCACCTACTTCGCCCAGCGGGCGCTCTTCTACCCGCACGGCCTCTTCGGCCAGGCCTACTGGTGGTCCGTCATCCCGTTCCACGGGATCGTGTTCGGCGGGATGCAGCGCAACGTCGCGCGCGCCGCCGAGGCGCGCGCGGGCGACCCGCAGGAGAGCCGGCACCGGGCCGGGAGCCGGGCCTCCGACACGGGCTCCTGAMSTDSPAPDPVTASVPTDTPATVAVTGVTGYVGGRLVPELLAAGYTVRALTRNPDRLAGRRWADDVEAVRADVSDLDATRAALRGADVAYYLVHSLGTGRTFEVRDRRNALTFARAAREAGVGRIVYLGGLYPDVPEGELSPHLSSRKEVEEILLASGVPTTVLRAAVVLGSGSASFEMMRYLTERLPAMTTPRWVDNRIQPIAIRDVLRYLVGAAAMPSDVSRGFDIGGPEIVTYRDMMQRYARVAGLPRRLIVGVPVLTPRLSSHWVGVVTPVPSGIARPLVESLQHEVVCLEDDIRELVPDPPEGRVDVTRAIELALTRIHDGEVTTRWTSASVPGAPSDPLPTDPDWAGGSLYVDERRTVVHAPRDVLWQVIEEIGGQDGWYSWSLAWRLRGLMDRIVGGPGLRRGRRDEHRLRVDDALDFWRVEALEPGRRLLLRAEMRLPGLAWLELRVDESAEEVTDADDPGPEPADASGPQRTYFAQRALFYPHGLFGQAYWWSVIPFHGIVFGGMQRNVARAAEARAGDPQESRHRAGSRASDTGSNANANANANA
AK018_00074897tesB_1COG1946Acyl-CoA thioesterase 2GTGAGCGACGCCCCCGACGGCCCCCTGGACCGGCTGCTGGCCGTCCTCGACCTGCACGAGATCGAGGGCTGGGGACCCCGCGGCGAGGACGACGTCTGGCGCGGCGACTCCGTACCCGGCCCGGCCCGCCGGGTCTACGGCGGGCAGGTGCTGGCCCAGGCGCTGCTGGCGTGCGGCCGCACCGTCGAGGACGACCGGCTCCCGCACTCCCTGCACGCCTACTTCCTGCGCGAGGGGTCCCTGGACGCCCCGATCGACTTCGCCGTCGAACGGCTGCGCGACGGCCGCTCCTTCAGCGCGCGCCGCACGCACGCGATCCAGGCGGGTCGTCCGATCCTGTCGCTGACGGCGTCGTTCCAGGTCGACCAACCCGGCTACGAGACGCACGTCCCGATGCCCGACGGCGTCCCGGCGCCGGAGGAGGTGACCTCGGCCTTCGAGGCCCTGCGCGGGATCGACCACCCGGCGGCCCGCTACTGGGCCGACGGGTCGGCGTTCGAGCTGGCGCACGTGGGCGGCTCGCTCTACGTGGGCCCGGCGGACGAGCCCCGCCCGCAGCAGATGGTGTGGATGCGCGCGCGGCACGCGATCGAGTCCGACGACCTGCTGCTGCACCGCGCGCTCCTGGCGTACAGCTGCGACCAGGTCATGCTGGAGCCGATCCTGCGCGGGGCCGGCAAGTCCTGGCTGGACGTCGGCGGCGCGGTGCCGATGGCCTCGCTGGACCACGCCATGTGGTTCCACCGGGACGCTCGCGCCGACGAGTGGCTGCTGTACGTCCAGGAGTCGCCGGGCGCGCAGGGCGGCCGCGGACTGGGGCTGGCCCGCGTGTACGACCGCGAGGGCGCCCTGGTGGCGACCATCGCCCAGGAGGGCATGGTCCGGCTGCCCGCCTGAMSDAPDGPLDRLLAVLDLHEIEGWGPRGEDDVWRGDSVPGPARRVYGGQVLAQALLACGRTVEDDRLPHSLHAYFLREGSLDAPIDFAVERLRDGRSFSARRTHAIQAGRPILSLTASFQVDQPGYETHVPMPDGVPAPEEVTSAFEALRGIDHPAARYWADGSAFELAHVGGSLYVGPADEPRPQQMVWMRARHAIESDDLLLHRALLAYSCDQVMLEPILRGAGKSWLDVGGAVPMASLDHAMWFHRDARADEWLLYVQESPGAQGGRGLGLARVYDREGALVATIAQEGMVRLPAPGPT0001835_187DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001835-tesB-K10805NANA
AK018_00075474hypothetical proteinTTGCAGTTCCGTGACCAGCCTAACCCCTTGCACGAGCGGGCGGTGACTTCCGCCACGGACGCCCGGGCGTGCGTCTGGGAAGATGTGCCCGTGACGACCCCCACCTTCTACGACGACGTCGGCGGCCACGAGACGTTCGTGCGCCTCGTGGACGTGTTCTACGAGGGCGTGGCCACCGACGAGGTCCTGCGCCCGATGTACCCCGAGGAGGACCTCGGACCGGCGAAGGAACGCCTGACGCTCTTCCTCGAGCAGTACTGGGGCGGTCCGACGACGTACAGCCAGCAGCGCGGGCACCCGCGGCTGCGGATGCGGCACGCTCCGTTCAAGGTCAACCCCGACGCCCGGGACCGCTGGCTGGCGCACATGCGCACCGCCGTCGACTCCCTGGACCTGCCGCCCGCCCACGAGTCCCAGCTCTGGGACTACCTGGAGCGCGCGGCCTTCAGCATGATCAACACCTTCGAGGAATGAMQFRDQPNPLHERAVTSATDARACVWEDVPVTTPTFYDDVGGHETFVRLVDVFYEGVATDEVLRPMYPEEDLGPAKERLTLFLEQYWGGPTTYSQQRGHPRLRMRHAPFKVNPDARDRWLAHMRTAVDSLDLPPAHESQLWDYLERAAFSMINTFEEPGPT0018560_1759DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_00076240nagF_1COG1264PTS system N-acetylglucosamine-specific EIIB componentATGAGCAAGGCGGAGAACATCCTCGCAGCACTGGGCGGGACCGCGAACGTGGTCGAGCTGGAGCCGTGCATCACGCGGCTGCGTGTCCAGGTGTCGGATCCCGAGCAGGTCGACGAGCCCGCCCTCAAGGAGTCCGGCGCCTTCGGCGTCGTACGATCCGGACGCATCATCCAGGTCATCGTCGGCCCCGAGGCCGACAACCTGGCCGCCGAGCTCGACGGACGGCTCACCTCGGCCTGAMSKAENILAALGGTANVVELEPCITRLRVQVSDPEQVDEPALKESGAFGVVRSGRIIQVIVGPEADNLAAELDGRLTSAPGPT0016860_566DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_N_ACETYLGLUCOSAMINE_PTS_SYSTEM,PGPT0016860-nagE|nagP-K02804NANA
AK018_000771044hypothetical proteinGTGGCCCTCGTGCGTGATGATTTCGTGACCTTGAGCCCGCCCCTGGCGTCCGACACCGACCCCGCCCCCGAGCCGAGCAGCTCCGAGGGGGTGCTGGAGCGCACGGGGGACGCGGCCGTCGACGCCGGGAACACCTTCTGGGAGTGGTTCACCGGCTGGCCGCTGCAGATCCTCGTGATCCTGCTCGTCGGGATCGTCGTCCTCGTGGCGCTGCGCCGCGTGATCTCCCACGTCGCCGAGCGCATCGCCCTCGGGGGCAGCAAGGCCGTCCCCGCCGAGCGCAAGGGGTGGAAGGCCTGGTTCGGCAGGACGCCGCTCGTCGAGGACGCGATGGCCGTGGCCAACCCACTGGCCTCCGAGCGACGCGCCCAGCGCGCCCGGACCGTCGGTTCGGTGCTGACCTCCACGGCGAACATCGTCGTCGGCGTCATGGTGGTGCTCAGCGTGCTGTCCGCCGTGGGCCAGCCCGTCGGGCCGCTGCTCGCCTCCGCCGGTGTGGCCGGTATCGCGCTGGGCTTCGGCGCGCAGTCGCTGGTGCGCGACTTCATCTCCGGCATCTTCATCCTCATCGAGGACCAGTACGGCGTCGGCGACTGGGTCGACCTCGGCTCCGGCGCGGAGGGCGAGGTCGAGGAGGTCCAGCTGCGCACGACCAAGGTGCGGGCCCTGGACGGCACGCTGTGGTGGGTACGCAACGGCGAGATCCTGCGGGCCGGCAACCGGACCCAGCGCTGGTCGCGCGCGCTGGCCGAGGTGCACGTCCCGGTCGACGCCGACGTCGACGTCGTCCGGGCGGCACTGGGCCGGGCCTGCGACGCCGTGGCCCGCAGCGAGGAGTTCGGTCAGGAGTTCCTCGAGCCGCCGGCGGTTCGCAACGGCGTGGACGCGGTGTCGGACTTCTCGATGTCGTTCACGATCATGGCCCAGACGCGTCCGGGCATCCAGTGGAACGTCTCCCGCGCGCTGCTGCGGGCGGCGCAGGACGAGCTGCGCCAGGTCGGTGCGGTGCGTTCGGAGCGGATCGAGGTCCCCGAGCAGGGTTGAMALVRDDFVTLSPPLASDTDPAPEPSSSEGVLERTGDAAVDAGNTFWEWFTGWPLQILVILLVGIVVLVALRRVISHVAERIALGGSKAVPAERKGWKAWFGRTPLVEDAMAVANPLASERRAQRARTVGSVLTSTANIVVGVMVVLSVLSAVGQPVGPLLASAGVAGIALGFGAQSLVRDFISGIFILIEDQYGVGDWVDLGSGAEGEVEEVQLRTTKVRALDGTLWWVRNGEILRAGNRTQRWSRALAEVHVPVDADVDVVRAALGRACDAVARSEEFGQEFLEPPAVRNGVDAVSDFSMSFTIMAQTRPGIQWNVSRALLRAAQDELRQVGAVRSERIEVPEQGPGPT0013695_1548DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013695-ykuT|ybiO-K22044NANA
AK018_000782175malQ_1COG16404-alpha-glucanotransferaseGTGAGCCTTGACGACCAGACATCGGCCGTGCCCGACGACGGTGCGCCCACCGAGCTGCGTGAGCTGGCGGCGGCGCACGGTGTGCTCACCGAGTACCACCGGTTCGGCGGGGGGATCGCGCACGTCTCCGACGCCACCCTCGTCGCCGTCCTGACCGCCCTCGGCGTGGCGGCGACGACCCGGCAGGAGGTCTCCCAGAGCCTGCGCCGTGCACGGGACGACGAGTGGCGCACCGTCCTGCCCCCGACCGTGGTCGCCCGCCAGGGCGACGCCCGTGACCTCCCGGTCCACGTCAGCGACGGAGCGTCGGTGCACGTGTGGGTCGAGCTCGACGGCGCCGAGCCGGAGGCCCGCCCCCACGAGCTGCGCCGTCGTCGGGACCTCGAGCAGCGCGACGTGTTCGTCACGCCGCGGGAGGTCGACGGCCGCACGGTCGGGCGTGCGACCTTCGCCGTGCCGGACGACCTGCCGCTGGGCTGGCACACGCTGCACGCGCTGACCGAGGGCCAGGAGTGGTCGACCACCCTCGTGGTCACCCCGGCGCGTCTCGACCTGGGCGACGACATCGAGCGCGACCAGGTCTGGGGGGTACTCGCCCAGCTGTACTCCGTCCGCTCGCGGACGTCGTGGGGCATGGGGGACCTGGCGGACCTGGCCGACCTCGCCTGGCTGACGGCGCACCAGGCCGGTGCCGACTTCGTGGCGGTGAACCCGCTGTCCGCGGCCGAGCCCACCGTGCCGATGACGCCGTCGCCGTACCTGCCCACGTCACGGCGGTTCGGCAACCCGATCTACGTCCGGGTCGAGGACATCCTCGAGACGGCCTATCTCTCCGCCGCGGACCGGTCGCTCGTCGAGTGGGCCGCCGACCCGGTGCGCGACCTGGACACGGACGCCGGGGCGCTGGACCGCGACGCGGTCTGGGAGGCGAAGAAGGCCGCGCTGGAGGTCGTCCACACCGCGCCGCGTCGCGCCGCCCGGCAGGCGGCCTACGAGGCCTTCGTCGAGTCCCAGGGGCAGGGCCTGCAGGACTTCGCGACCTGGTGCGCCCTCACCGAGGAGCTGGGCGGCGCGCCCTGGCCCGACGAGCTGCGCGACCCCTGGTCGCCGGCCGTGGCAGCGGCGCGCGAGCGGCTGGCCGAACGCGTCGACTTCTACTGCTGGTTGCAGTGGGTCTTCGACGAGCAGAAGCACGCCGCCCAGCGCACCGCCCTCGAGGCCGGCATGCGGGTCGGCATCATGCACGACCTCGCCGTGGGGGTGCACCCCGCCGGGGCCGACGTGTGGGCCCTCGGCGACGTGCTGGCGCACGGGGTCGGCGTCGGCGCGCCGCCCGACATGTACAACCAGCAGGGGCAGAACTGGTCCCAGCCGCCGTGGAACCCGCGCACGCTCGCGCGCGCCGGCTACGGGCCGTACCGGGACATGCTGCGCACCGCGCTGCGGCACGCCGGCGCGCTGCGCGTCGACCACATCCTCGGCCTCTTCCGGCTGTTCTGGGTCCCGGACGGCATGCGCCCCACCGAGGGCACCTACGTGCGCTACGACCACGACGCGCTCATCGGGATCCTGTGCCTGGAGGCCCAGCGCGCCGGTGCCGTCGTCATCGGCGAGGACCTCGGTGTCTTCGAGCCCTGGGTCCGCGACTACCTCGCCTCGCGCGGCGTGCTCGGCACGTCGGTCTTCTGGTTCGAGAAGTCCGACGGGCGGCCCCTGCCTCCCGAGGACTACCGGCACCTGACCTTCGCCACGGTGGGCACCCACGACATGCCGCCGACGGCCGGCTACCTCGCCGGCGAGCACGTGGACCTGCGCGAACGACTCGGGCTGCTCACCGAGGACGCCCAGGTGCTGCGGGCGCAGGCCCGCGCGGAGCGCGACGGCGCCGTGCTGGCCCTGTCCGAGAGGGGGCTGGTCGGGGACTCGCCCTCGGAGCGCGAGGTGGTCGAGGGGCTGCACCGCTACCTGCGGCGCTCTCGGGCCGCCCTCGTCGGCGTCCAGCTCGTCGACGCGGTGGGGGAGCGGCGTTCGCAGAACCAGCCCGGCACCGACACCGAGTACCCGAACTGGAAGGTGCCGCTGGGCGACTCCGCGGGCAACATCGTCCTGGTCGAGGACCTGTTCGACAACGCGCGGCTGCGCTCCCTCTTCGCAGCCGTCGCCTCCGCCCGCTGAMSLDDQTSAVPDDGAPTELRELAAAHGVLTEYHRFGGGIAHVSDATLVAVLTALGVAATTRQEVSQSLRRARDDEWRTVLPPTVVARQGDARDLPVHVSDGASVHVWVELDGAEPEARPHELRRRRDLEQRDVFVTPREVDGRTVGRATFAVPDDLPLGWHTLHALTEGQEWSTTLVVTPARLDLGDDIERDQVWGVLAQLYSVRSRTSWGMGDLADLADLAWLTAHQAGADFVAVNPLSAAEPTVPMTPSPYLPTSRRFGNPIYVRVEDILETAYLSAADRSLVEWAADPVRDLDTDAGALDRDAVWEAKKAALEVVHTAPRRAARQAAYEAFVESQGQGLQDFATWCALTEELGGAPWPDELRDPWSPAVAAARERLAERVDFYCWLQWVFDEQKHAAQRTALEAGMRVGIMHDLAVGVHPAGADVWALGDVLAHGVGVGAPPDMYNQQGQNWSQPPWNPRTLARAGYGPYRDMLRTALRHAGALRVDHILGLFRLFWVPDGMRPTEGTYVRYDHDALIGILCLEAQRAGAVVIGEDLGVFEPWVRDYLASRGVLGTSVFWFEKSDGRPLPPEDYRHLTFATVGTHDMPPTAGYLAGEHVDLRERLGLLTEDAQVLRAQARAERDGAVLALSERGLVGDSPSEREVVEGLHRYLRRSRAALVGVQLVDAVGERRSQNQPGTDTEYPNWKVPLGDSAGNIVLVEDLFDNARLRSLFAAVASARPGPT0018570_780DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018570-malQ-K00705NANA
AK018_000792571pepN_1Aminopeptidase NGTGCCCGGAGAGAACCTGACCCGCGCCGAGGCGATCGCACGCGCCGACGTCGTCACCGCCGTCGAGTCCTACGCGATCGACCTCGACCTGACCACCGGGCCCGAGGTGTTCGCGTCGACCACCGTCATCCGGTTCTCGGCGACCGAGGGCGCGAGCACGTTCCTCGACCTCGTCGCCCCGCGCGTGCACGAGATCGTGCTCAACGGCCGATCGCTCGACGTCGGCACGGTGTTCTCGGACTCGCGGATCGCCCTGGACGACCTCGCCGCGGACAACGAGGTGCGCGTCGTCGCCGACTGCGCCTACATGAACACCGGCGAGGGGCTGCACCGGTTCGTCGACCCGGTCGACGACGAGGTCTACCTCTACACCCAGTTCGAGGTGCCCGACGCCCGCCGGGTCTTCGCCACCTTCGAGCAGCCCGACCTCAAGGCGCCGTTCCAGCTGTCGGTGACCGCGCCCGCGCGGTGGCACGTCGTGGCCAACCAGCCGACGCCGGAGCCCACGCCCGCCACGCACGCGACCGACGGCGACGTCGAGGCCGCCCGGTGGGAGTTCGGGCCGACCCCGCGCATCTCCACCTACCTCGTGGCGCTCGTCGCCGGACCGTACGCCGTCGAGCGCGGCGAGGTCACCTCGTCGGACGGCCGCGTGATCCCGTTGGGCGTGTACTGCCGCACCTCGCTCTCCGAGCACCTCGACGCCGAGGCGATCATGGAGACGACGCGCCAGGGCTTCGGGTTCTACGAGTCGACGTTCGACGTCCCGTACCCGTTCGACAAGTACGACCAGCTCTTCGTGCCCGAGTACAACATGGGCGCGATGGAGAACCCGGGCTGCGTCACCTTCACCGAGTCCTACGTCTTCCGCTCCCAGGTCACCGACGCCATCCGCGAGCGCCGCGTCGTGACGATCCTGCACGAGCTGGCACACATGTGGTTCGGCGACCTGGTGACGATGAAGTGGTGGAACGACCTGTGGCTGAACGAGTCGTTCGCCGAGTACGTCTCCACCCTCGCCACGGCCGAGGCCACCGAGTGGGAGGCCGCCTGGACGACGTTCAACGCCATGGAGAAGACCTGGGCCTACCGCCAGGACCAGCTCCCCTCCACGCACCCGATCGTCGCGCCGATCAACGACCTGGAGGACGTCCAGGTCAACTTCGACGGCATCACCTACGCCAAGGGCGCCTCGGTGCTCAAGCAGCTCGTGGCCTGGGTGGGTCGTGACGAGTTCGTCGCGGGCGTCTCCGCCTACTTCCGCAAGCACGCCTGGGGCAACACCGAGCTGCGCGACCTGCTGGTCGAGCTCGAGGCCACCAGCGGGCGCGACCTGTCCGCCTGGTCGCAGGCCTGGCTGGAGACCGCCGGCGTCAACACGCTGCGCCCGGCGATCGAGCTGGACTCCCACGGCCGCACCACGGCGTTCGTCATCGAGCAGACGGCGCACGAGGACTACCCGACGATCCGTCCGCACCGGCTCGGCATCGGGTTCTACGACTTCGACACCTCCGGCGACGTGGTGCGCACGCGGTCCGTCCAGGTGGACGTCGACGGCGAGCGGACCGAGGTCCCCGAGCTCATCGAGCTCGACCGGCCCGCGCTCGTGCTGATCAACGACGACGACCTCGCCTACGCCAAGGTCCGCCTGGACGAGGCGTCGCTGACGTTCGCCGTCGAGAACCTCTCACGGATCGCGGACCCGCTCGCCCGCTCGCTGGTGTGGGGCTCGGTGTGGGACGCCGTGCGCGACGGCGAGACCCCGGCGTCGTCCTACGTCGACCTGGTGCTGGGCAACATCGCCGCGGAGACCGAGTCGACGACGGTGCGCACCACGCTGGCCCAGCTCGGGCTGGCCACGCGGACCTACGTGGCTCCGGCGCGGCGCGCCGAGACGCTGCAGCGCGTCGGCGACACGCTGTGGACGCTCGCCCAGGACGCCGCCCCCGGCTCCGACCTGCAGCTGCAGCTCGTGAAGTACTTCTCGGCACTGGCCTCGACCGCCGACCACGTCGCCCCGCTGCGGGGGCTGCTCGACGGGTCGGTGACGCTCGAGGGCCTCACCGTCGACACCGACCTGCGCTGGGAGCTGCTCCAGGGCCTGGTGCTGCTCGGCGATGCCGACGCCGCCGAGATCGACGCCGCACAGGCGGCCGACGACACGGCGACCGGGCGCCAGGCGGCGGCCCGTGCCCGGGCGACCACGCCGTCGGTCGCGGGCAAGGAGCGCGCCTTCGCCTCCGTGGTCGACGACTCGGACGTGCCGAACGCGATCATCCGCGCCACGGCCTCCGGGTTCGTGCACGTGACGGACCCGGCGGTGCTGGAGCCGTTCGCCCAGCGGTACGTCGACGCGCTGCTGCCGATCTGGGAGAACCGCAGCTACCACATCGCCGAGGAACTCGTGGAGGGCCTGTACCCGGCGCCGCTGGCCTCGGTCGAGCTGCGGGACACGGTGCGCGGCTGGCTCGAGGCGCACCCCGAGGCCCCGGCGGCGCTGCGCCGCATGGTGGTCGAGGGGCTGGCCGGCACCGAGCGTGCGCTGGCGGCCCAGGCCGTCGACGCCGCCTGAMPGENLTRAEAIARADVVTAVESYAIDLDLTTGPEVFASTTVIRFSATEGASTFLDLVAPRVHEIVLNGRSLDVGTVFSDSRIALDDLAADNEVRVVADCAYMNTGEGLHRFVDPVDDEVYLYTQFEVPDARRVFATFEQPDLKAPFQLSVTAPARWHVVANQPTPEPTPATHATDGDVEAARWEFGPTPRISTYLVALVAGPYAVERGEVTSSDGRVIPLGVYCRTSLSEHLDAEAIMETTRQGFGFYESTFDVPYPFDKYDQLFVPEYNMGAMENPGCVTFTESYVFRSQVTDAIRERRVVTILHELAHMWFGDLVTMKWWNDLWLNESFAEYVSTLATAEATEWEAAWTTFNAMEKTWAYRQDQLPSTHPIVAPINDLEDVQVNFDGITYAKGASVLKQLVAWVGRDEFVAGVSAYFRKHAWGNTELRDLLVELEATSGRDLSAWSQAWLETAGVNTLRPAIELDSHGRTTAFVIEQTAHEDYPTIRPHRLGIGFYDFDTSGDVVRTRSVQVDVDGERTEVPELIELDRPALVLINDDDLAYAKVRLDEASLTFAVENLSRIADPLARSLVWGSVWDAVRDGETPASSYVDLVLGNIAAETESTTVRTTLAQLGLATRTYVAPARRAETLQRVGDTLWTLAQDAAPGSDLQLQLVKYFSALASTADHVAPLRGLLDGSVTLEGLTVDTDLRWELLQGLVLLGDADAAEIDAAQAADDTATGRQAAARARATTPSVAGKERAFASVVDDSDVPNAIIRATASGFVHVTDPAVLEPFAQRYVDALLPIWENRSYHIAEELVEGLYPAPLASVELRDTVRGWLEAHPEAPAALRRMVVEGLAGTERALAAQAVDAANANANANANA
AK018_000801005hypothetical proteinATGTCCGGCACGGTGCCGCCGCCCCCGCCGCCCGGCCCTGGACCGCAGGAGCCCGGTGGCGCCGCCTCGCCCGCCGCGGGCCCGCGCGGAGATGACGCCCGCCCGGCGTCGCCGCCGTCGTTCGCCCCGCGGGGGGCCTCGACGGGCGGGTCCGCGCCGGTCCCCGACGAGCAGCCGACCCAGCCGCACGCCCCGATACCGCCGGCCCCGGCGTCCCCGGCGACGAGCTCGCCGGCCCCCGCACCCGCCGCGGCGCCCGCCCCGGTACGGTCCGCGGCGTGGAACGCGACCCCGCCGGTGGCCGGTGCGCCCGCGCCCGCGGAGCAGCAGTACGGCTACACGCCGCAGCGGTACGCGTACCAGCAGCCCCCGGCAGCGGGGCCGGCGGCCGGCACCCCGCCGACCGGCACCACCCAGCAGCCGTCCGTCGGCGGTCGCGGCCGGCGGCTCAGCGCGGGTTGGATCGCCTTCATCGTGCTCGACGTCGTCCTCGTGGTCGTCGTGGCGGTCCTGGCGTTCCGCGCGCTGGGCGGTCCGGACCCGTCCAGCACCCCGACGGGCGACCCCGAGGCCGTCGCCGGCCAGGACGCGCAGGAGGGTCAGGGCGACGGCGACGAGGCCGGCGACCAGGAGGCCGAGGACGGGCCGGGCGAGCTCGTGACCGAGTTCGCCTCGCCGTCGCGCAACATCACCTGCCAGGTCTACGCCGACGAGGTGACCTGCGGCCTGGCCGAGCTCAACCAGCAGCCGGCACCGGTCGAGGGCTGCGACGGCACGACCGGGTACGTCGTCACCCTGTCCGGGGAGGGCGAGGTCGCGCTGCCCTGCGTGCCGCAGGGGGAGAAACCGGGCCCGGCGGGCGACGGGCTGGACGAGCTGCCCTACGGCGAGTCCCGCACCGAGGGCGACTTCACCTGCACCAGCGAGACCGACGGCATGTACTGCCAGCACGACCCCACGGGCAACGGGTTCTCCCTGGCCCGGGCCGGCGTCGGGACGTACTGAMSGTVPPPPPPGPGPQEPGGAASPAAGPRGDDARPASPPSFAPRGASTGGSAPVPDEQPTQPHAPIPPAPASPATSSPAPAPAAAPAPVRSAAWNATPPVAGAPAPAEQQYGYTPQRYAYQQPPAAGPAAGTPPTGTTQQPSVGGRGRRLSAGWIAFIVLDVVLVVVVAVLAFRALGGPDPSSTPTGDPEAVAGQDAQEGQGDGDEAGDQEAEDGPGELVTEFASPSRNITCQVYADEVTCGLAELNQQPAPVEGCDGTTGYVVTLSGEGEVALPCVPQGEKPGPAGDGLDELPYGESRTEGDFTCTSETDGMYCQHDPTGNGFSLARAGVGTYNANANANANA
AK018_000812013pepO_1COG3590Neutral endopeptidaseATGACGACCGACGCGACCGGGCTGCGGTCCGGCATCGACACAGCAGCACTCGACGAGTCCGTCCGCCCCCAGGACGACCTGTTCCGCCACGTCAACGGGCGGTGGCTCGCCACGCACGAGATCCCGGCCGACCGCGCCATGGACGGCGCGTTCCGCGAGCTGCACGACCAGGCCGAGGACCAGGTGCGCGACATCATCACCGACGCCGGCGAGGCCGTGCGCGCGGGCAGCGCCACCGGCGCGCAGCAGCAGATCGGCGCCCTGTACGCCAGCTTCATGGACACCGAGCGCGTCGAGGAGCTCGGGACCACGCCGATCGTCCAGGAGGTCGCCGCGGTCCGCGACGCCGCGGACCGGACCGGGCTGACCCGGGTGCTGGGCGCCCTGCAGCGCACCGGCGGCGGCGGCGCCGTCGCCTTCGGCGTCGACAACGACGCCAAGGACCCCGAGCGGTACGTGACGATCATGGTCCAGGCCGGGCTCGGCCTGCCCGACGAGGCGTACTACCGCGAGGACCAGTACGAGCCGGTGCGAGCCGCCTACGCCCCGCACGTGGCGCGGATGCTCGCGATCGCCGGCGTCGGCACCGAGGACTGGGGCGTCGGCCCCGAGGAGGCCGCCGCGCGGGTGGTCGCCCTGGAGACGCAGCTCGCGACGCACCACTGGGACGTCGTGCGCGACCGGGACGCGACCCTGACCTACAACCCCATGACCTTCGCCGAGCTCGTCGAGGCCGCCCCCGGGTTCGACTGGGCGGTCTGGGCGGACGCTCTCGGGGCCCCCGCCGGGGCCATGGACGCCCTGGTGGTGCGCGAGCCGTCGTTCGTCACCGGCCTCGGCGAGCTGTGGTCGACGCTCCCGCTGCTCGACTGGCAGCTGTGGGCGGCCTACCACCTCGTCACCGCCCGGGCGCCGTACCTGTCCGACGAGATCGTCCAGGCGAACTTCGACTTCTACGGCAAGGTCCTCTCCGGTGCCGAGCAGGTGCGCGAGCGCTGGAAGCGCGGCGTGAGCCTCGTCCAGGGCGCCCTCGGCGAGGCGGTCGGCCAGGAGTACGTGGCCCGCCACTTCCCGCCGGAGCACAAGGAGCGCATGGACGTCCTGGTCGAGCACCTCATCGCCGCGTACCGCGAGTCGATCGAGGACCTGGACTGGATGACCGCCGAGACCAAGCAGCGGGCGCTGGCCAAGCTCGAGAAGTTCACGCCCAAGGTCGGCTACCCCGCCACATGGCGCGACTACACCGGCCTGGAGCTGTCCGCGGACGACGTCGTGGGCAACGTGCGGCGCGCGCACGCGTTCGAGCAGGACTACGAGCTGGGCAAGATCGGCAAGCCGCTGGACCGCGACGAGTGGTTCATGACGCCGCAGACCGTCAACGCCTACTTCAACCCGGGGATGAACGAGATCGTCTTCCCCGCCGCGATCCTGCACCCGCCGTTCTTCGACCCCGAGGCCGACGACGCCGTCAACTACGGCGGCATCGGCGCGGTCATCGGGCACGAGATCGGCCACGGGTTCGACGACCAGGGCTCGAAGTACGACGGCGACGGCCGGCTCGAGGACTGGTGGACCGAGACCGACCGCACCGAGTTCGAGAAGCGCACCAAGGACCTCGTCGCGCAGTACGACGCGTTCCGCCCGGCCCAGCTCGGCGAGGACGGTCCGACCGTCAACGGGTCGCTGACCATCGGCGAGAACATCGGCGACCTGGGCGGGCTGTCCATCGCCATCAATGCCTACCGCATCGCCCTCGGCGGCTCGCTCGACGACGCCCCGGTCATCGACGGCTACACCGGTCTGCAGCGGGTGTTCCTGTCCTGGGCGCAGGTGTGGCAGGCCAAGGGACGCGACGCCGAGGTGGAGCGCCGGCTGGCCACGGACCCGCACTCGCCGAACGAGTTCCGCTGCAACGGCGTCGTGCGCAACGTCGACGAGTTCTACCGCGCCTTCGACGTCGCGGCGGACGACGCGCTGTACCTGCCGCCGCAGGAACGCGTCAGCATCTGGTGAMTTDATGLRSGIDTAALDESVRPQDDLFRHVNGRWLATHEIPADRAMDGAFRELHDQAEDQVRDIITDAGEAVRAGSATGAQQQIGALYASFMDTERVEELGTTPIVQEVAAVRDAADRTGLTRVLGALQRTGGGGAVAFGVDNDAKDPERYVTIMVQAGLGLPDEAYYREDQYEPVRAAYAPHVARMLAIAGVGTEDWGVGPEEAAARVVALETQLATHHWDVVRDRDATLTYNPMTFAELVEAAPGFDWAVWADALGAPAGAMDALVVREPSFVTGLGELWSTLPLLDWQLWAAYHLVTARAPYLSDEIVQANFDFYGKVLSGAEQVRERWKRGVSLVQGALGEAVGQEYVARHFPPEHKERMDVLVEHLIAAYRESIEDLDWMTAETKQRALAKLEKFTPKVGYPATWRDYTGLELSADDVVGNVRRAHAFEQDYELGKIGKPLDRDEWFMTPQTVNAYFNPGMNEIVFPAAILHPPFFDPEADDAVNYGGIGAVIGHEIGHGFDDQGSKYDGDGRLEDWWTETDRTEFEKRTKDLVAQYDAFRPAQLGEDGPTVNGSLTIGENIGDLGGLSIAINAYRIALGGSLDDAPVIDGYTGLQRVFLSWAQVWQAKGRDAEVERRLATDPHSPNEFRCNGVVRNVDEFYRAFDVAADDALYLPPQERVSIWNANANANANA
AK018_00082471rpiB_1COG0698Ribose-5-phosphate isomerase BATGGGCCTCATGCGTCTGCACATCGCCGCCGATCACGCCGGATTCGAGCTCAAGTCCCACCTCGTCGAGCACCTGCGCGCCGCCGGTCACGACGTCGTCGACCACGGTGCGCACACCTACGACGCCCTGGACGACTACCCCGCGTTCTGCTTCTCCGCGGGCGAGGCCGTCGTGGCCGAGGCGGGGTCGCTCGGCATCGTCATCGGCGGGTCGGGCAACGGCGAGCAGATCGCCGCCAACAAGGTCACCGGTGTCCGCGCGGTGCTGGCCTGGTCGGCCGAGACGGCCCGGCTGGGTCGTCAGCACAACGACGCCAACGTCATCGCCGTCGGCGGTCGCATGCACTCCCTGGAGGAGGCCACCGCTCTGGTGGAGGCGTTCGTGGCCGAGCCATTCTCCGGCGACGCGCGCCACCAGCGCCGCATCGACCAGCTCGCCGCCTACGAGGCCGACCGGCCCACCGCCCCCTGAMGLMRLHIAADHAGFELKSHLVEHLRAAGHDVVDHGAHTYDALDDYPAFCFSAGEAVVAEAGSLGIVIGGSGNGEQIAANKVTGVRAVLAWSAETARLGRQHNDANVIAVGGRMHSLEEATALVEAFVAEPFSGDARHQRRIDQLAAYEADRPTAPPGPT0017395_191DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_D-ERYTHRULOSE|D-THREITOL_DEGRADATION,PGPT0017395-rpiB-K01808NANA
AK018_000831080nei1_1COG0266Endonuclease 8 1GTGCCCGAGGGGCACACGGTCCACCGCCTGGCCCGGACCCTCGACCAGCTCTTCGCCGGCCGACGGCTCGCGGTGAGCAGCCCGCAGGGGCGCTTCGCCGCCGGCGCCGACGTGCTCGACGGCGCCACCCTCGTCGGGGCCGAGGCGTGGGGCAAGCAGCTGTTCTGCCGGTTCGCCGTGCCGGGCCCCGACGCCGGGGCGTACGAGCGCTGGTTGCGGGTCCACCTGGGGCTCTACGGCGCCTGGACGTTCGCGGGCGACGGCAGCGCCGACGTCGTGCACGCCATCGGGGCGCCGCGCCGGCGGGTCGGGGAGCGCGAGACCACCCTGTCCTCGGTGCCGTCGGACCAGGCCTCCGGCGGTCGGGCACCGCGTCCCGCGGGTCCGGGGGAGTGGGGCGCCCCGGAGCCGCGCGGCGCCGTGCGGGTCCGCCTGCTCGCTCCGCACGCCGTCGCCGACCTGACCGGCCCGACCGCCTGCGAGGTGCTCACCCCGGACGAGAAGGCTGCCGTCGAGGACCGCCTCGGTCCCGACCCGATCCGGCCCGACGGCGGCCACGACTCGCTCGAGGCGGCCCGTGCGGCGTTCGTCGCCCGGGTGCGGCGCTCGCGGGTCACCGTCGGTCAGCAGCTCATGGACCAGGCCGTCGTCGCCGGCGTCGGCAACATCTACCGCGCCGAGGCGCTCTTCCGGGCCGGGCTGGACCCGCGGCGGCCGGGACGCGACGTGGCCGCGGCGGTCCTGGAGCAGATCTGGGACGACCTCGTGGTGCTCCTGCGCGACGGCGCCGCCTCCGGCCGCATCGTCACCACGCGCCCGGAGCACCGCGACGACGGCGGGGCGGCGGACAGCGGCGGTGCGCCGGGTGACGAGCAGGCGCGGGCCGGAGCGGCGGGCACGGCCGCGGGCCGTCGTCGCACCCGGCAGAACACCGACGACGACCCGGACGCCGTGCCCGCCCACGAGGCGTTCTACGTCTACCACCGCGAGGGGCTGCCCTGCCGGGTGTGCGGCACGCCGGTGCTGATCGAGGAGCTGGCGGGCCGCAACCTGTTCTGGTGCGGCGTCTGCCAGGCCTGAMPEGHTVHRLARTLDQLFAGRRLAVSSPQGRFAAGADVLDGATLVGAEAWGKQLFCRFAVPGPDAGAYERWLRVHLGLYGAWTFAGDGSADVVHAIGAPRRRVGERETTLSSVPSDQASGGRAPRPAGPGEWGAPEPRGAVRVRLLAPHAVADLTGPTACEVLTPDEKAAVEDRLGPDPIRPDGGHDSLEAARAAFVARVRRSRVTVGQQLMDQAVVAGVGNIYRAEALFRAGLDPRRPGRDVAAAVLEQIWDDLVVLLRDGAASGRIVTTRPEHRDDGGAADSGGAPGDEQARAGAAGTAAGRRRTRQNTDDDPDAVPAHEAFYVYHREGLPCRVCGTPVLIEELAGRNLFWCGVCQANANANANANA
AK018_000841308eis_1COG4552N-acetyltransferase EisATGACCCTCGACTCCCCGCTGCCTGCCGGCTACCGGTTCCGCCGGCTGACCGCCGACGACGACCGCGCTGTGATCGACCTCGACTCCTGGGCGTTCCCCGTCCCCGTGGAACCCGAGGAGATCGCGAAGATGCCCTCGCCGCTGTCCTGGGACCGTGCCGTCGGCGTCGAGGCCGACGGCGGCTCCCCGGGCGGATCGCCTCTGGTGGCGATGCACGCCTCCTACCCGTTCACCCGGTTCCCGGTCCCGGGCGGCACGCTGCCGACCGCGGGGCTGACCTGGGTCGGGGTCCACCCCCAGCACCGGCGCCGCGGCCTGGCGAGCGCCATGCTCGACCTGCACCTGGCCCGGTGCCGCGAGCGGGGCGAGCCGCTGTCGGCGCTGTACGCCGCCGAGTACGCGATCTACGGGCGGTTCGGGTACGGGCGCGCCGCCGACGACGTCCGCGTCACCCTCCCGCGGGGAGCGGCGCTGCGGGACGTGCCCGGCGCGTCCGAGCACACGGTCCGCATCGAGCACGCCGACCGGGAGCACCACGGGGACCTCGTCGCCGCCGTCCACCGTGCCGCCGGGCGCGACGCGGCCGGGCTCGGGGTGAACCGCCCGGGCTGGGCGAGCCCCGAGACCCCGGAGCTGCAGGCTCACCGCTGGCACGACGCGGCCGCGTTCCGTCAGGGGTTCGAGACGCGCCGGATCGTGGTCGTCGAGCGTGCCGGCGAGCCGCGTGGCTACGCCCTGCTGCGCCGCAAGCTGGACTGGGAGGTCACGGGACCGCGGGGCACGGTGAGCGTCGGCGAGGCCGTCGCGCTCGACGCCGCGGCGTCCCGCGCCCTGTGGGGCGTGCTGGTGGACCTGGACCTGATGAACGAGACCAGGCCGTTCATCCTCGCCCCGGACGACCCGCTGCTCGGCCTGCTCGTCGACCGCCGCAGCGCCGACCTGCGGGTCGCCGACAACGTCTGGGTCCGCCTCGTCGACGTGCCCACGGCGCTGGCCGGCCGGCAGTACGCCGCCGACGTCGACGTCACGCTGGCCGTGACGGACACCCGCCTGGGCGAGAACGACGGCGTCTGGCGGTTGCGGGCGTCCGCGTTCGGCGAGGCGACCTGCGAGCGCTCGGACGTCGCGGCCGCCGACGCCGACCTGGCGCTGGACGTGCGCGAGCTCGGCGCCGCGTACCTCGGCGGGACGTCGCTGTCCGAGCTCGGGGGCGCCGGTCTGGTGTCCGAGCGGTCCCCGGGCGCGCTCGCGCGGGCGTCGACCGCCTTCGGCTGGCCCGTCGCGCCGGTCTGCAGCTGGGTGTTCTGAMTLDSPLPAGYRFRRLTADDDRAVIDLDSWAFPVPVEPEEIAKMPSPLSWDRAVGVEADGGSPGGSPLVAMHASYPFTRFPVPGGTLPTAGLTWVGVHPQHRRRGLASAMLDLHLARCRERGEPLSALYAAEYAIYGRFGYGRAADDVRVTLPRGAALRDVPGASEHTVRIEHADREHHGDLVAAVHRAAGRDAAGLGVNRPGWASPETPELQAHRWHDAAAFRQGFETRRIVVVERAGEPRGYALLRRKLDWEVTGPRGTVSVGEAVALDAAASRALWGVLVDLDLMNETRPFILAPDDPLLGLLVDRRSADLRVADNVWVRLVDVPTALAGRQYAADVDVTLAVTDTRLGENDGVWRLRASAFGEATCERSDVAAADADLALDVRELGAAYLGGTSLSELGGAGLVSERSPGALARASTAFGWPVAPVCSWVFNANANANANA
AK018_00085327DNA base-flipping proteinATGGACCCCACGCCCGTTCCGCCCGCCGAGGAGTACCTGGCCGAGGTGCTGACGGTCGTCGAGCGCGTCCCCGCCGGCCGCGCGACGACGTACGGACTGGTGGCCGAGGCGGTCGCCGACGTGCTCGGGCGGGGCGGCCCGCGCCAGGTCGGGCAGGTGATGGCGCGGGCCGGCTCGGGGGTCGCCTGGTGGCGGATCGTCAACGCCGCCGGGTCGCCCCCGGCGCACCACCTCGACGAGGCGCTGACCGAGCTGCGGGTCGAGGGGTGCCCGCTGACGCGCGACGGACGCCGCGTCGACCTGCGGCGCGCCGTCTGGCTGCCGTGAMDPTPVPPAEEYLAEVLTVVERVPAGRATTYGLVAEAVADVLGRGGPRQVGQVMARAGSGVAWWRIVNAAGSPPAHHLDEALTELRVEGCPLTRDGRRVDLRRAVWLPNANANANANA
AK018_000861041Putative coenzyme F420-dependent oxidoreductaseATGACCACCCTGCGCATCGGCATCCAGACCGGCTACTGGTCCCGCAAGCCGCCGACCGGCATCGTCGAGGCGCTGCAGCAGGGCGAGGCCGCCGGGCTGGACTCGGTGTGGACCGCCGAGGCCTACGGGTCGGACGCCTTCACGCCCCTGGCCTGGTGGGGTTCGCACACCTCGCGCCTGCGGCTCGGGACCGGCATCGCGCAGATGGCCGCCCGCACGCCGACGGCGACCGCCATGCAGGCGATCACGCTCGACCACCTCTCCGGCGGCCGGTTCGTGCTCGGGCTCGGCGCCTCGGGACCGCAGGTCGTCGAGGGCTGGTACGGCCAGCCCTATCGCCGCCCCCTGGCCCGCACCCGCGAGTACGTCGACATCGTGCGCCAGGTGATCGCCCGCGAGCGCCCCGTGGCCTACGACGGCGAGTTCTTCACCCTGCCGGTCGGCGCGGACACCCCGGGGGCGACCGGCCTGGGCAAGCCACTGAAGCCGACGGTCCACCCCCTGCGCGCCGAGATCCCGATCGTGCTGGCCGCGCAGGGCCCGAGGAACGTGGCGCTGGCGGCGGAGATCGCCGACGGCTGGATGGCCGGCTTCTACGCGCCCAGCGCGGACGCCGGGCACCGTGAGCAGCTCGCCGAGGGTTTCGCACGGCGTGCCGAGGAGCGCTCGGCCGTCGAGGACTTCGAGGTCGCCGCGCTGGTCCCGGTGGTGGTGCGCGACGACGTCGAGTCCGCCGCCGACCTGGTGCGTCCCCACGTCGCGCTGTACGTCGGCGGCATGGGCGCCAAGGGCGCGAACTTCCACAAGGACTCGCTCGACCGGCTGGGGTTCGCCGCGGTCACCGACGAGGTGCAGCGCCTCTACCTGGACGGCCGCCCCCAGGACGCGGCCCGCGCGGTCCCGACCGAGCTGGTCGAGGAGATCGCCCTGGTCGGCCCGGCCGCGAAGGTGCGCGCCGACCTCGGACGCTGGGAGGACACGGCCCTGACGACGCTGCTCGCCCAGGGCGACCCGGCGTCGGTCGCGGCGCTGCTCGGCTGAMTTLRIGIQTGYWSRKPPTGIVEALQQGEAAGLDSVWTAEAYGSDAFTPLAWWGSHTSRLRLGTGIAQMAARTPTATAMQAITLDHLSGGRFVLGLGASGPQVVEGWYGQPYRRPLARTREYVDIVRQVIARERPVAYDGEFFTLPVGADTPGATGLGKPLKPTVHPLRAEIPIVLAAQGPRNVALAAEIADGWMAGFYAPSADAGHREQLAEGFARRAEERSAVEDFEVAALVPVVVRDDVESAADLVRPHVALYVGGMGAKGANFHKDSLDRLGFAAVTDEVQRLYLDGRPQDAARAVPTELVEEIALVGPAAKVRADLGRWEDTALTTLLAQGDPASVAALLGNANANANANA
AK018_00087390hypothetical proteinATGGCCACGTACGACGACGTCGCGCAGCTCGCCCTCGCGCTCCCGGGGACCGCCGAGGCCACCTCGCACGGGTGGCGCACCTGGACGGTGGAGGGCCGCCAGTTCGTCTGGGAGCGGCCGTTCCGGCCGGCCGACCTGCGCCGGTTCGGCGACGACCCGGTGCCGGCCGGGCCGATCCTCGCGGCCGCCGTGGACGACCTCGAGGAGAAGGACGCGGTGCTCGCCGCGCACCCGGAGTCGCACTTCACCATCGCCCACGTCGACGGGTACGCGGCGGTGCTGGTCCGGCTCGAGGCGGTGGACGACGTCGTCCTGGCCGAGACCGTCGAGGACGCGTGGGCGGCCCGGGCGCCGTACTCGCTGGTCACCCGGCACCGCCCCCCGCGGTGAMATYDDVAQLALALPGTAEATSHGWRTWTVEGRQFVWERPFRPADLRRFGDDPVPAGPILAAAVDDLEEKDAVLAAHPESHFTIAHVDGYAAVLVRLEAVDDVVLAETVEDAWAARAPYSLVTRHRPPRNANANANANA
AK018_000881011hypothetical proteinATGACCACCCACCCCGACCCGACACCGGCCTGGCGCCGGCGCGCCCGCCGCTCGACCCTGTGGTCCTCGCTCGCCGGGCTGGCCCTCACCCTCGGCGCTGCCGCGACCGTGTGGGGCTGGCGCGACGACCTGCCCGACGAGGTCGCCACGCACTGGGGGGCCGGCGGCACCCCGGACGCCTCCATGACGGTCACGGGCCTGGTGGCGACCGCGGTGGCCACGACCGTGGGCCTGCTGGCCCTGTTCGCCGTCGTCGGCCTGGCCTGGGGCTCCAGCGCCTCCACCCGACGGACGGCGGCCGGTGCCGCCGTCTGGTCCGGCGGGCTGGGCGCCGCCCTCCTGCTGGTCACCGCCGGTCTCCAGCGGGGCCTGGACACCCCGCAGGCCGCAGAGCTGCCCGGCTGGGCGCTGGCCGTGGTCCTCCTCGCCCCGCTGCTCCCCGCCGTGATCGCCGCGGCGCTCGTGCCGGGCGACCCGGCCCTGCCGGCCGAGGGCCCCGTCGCGGCCGGCGCTCCCCGAGCGACGCTGACCGACAGCGAGCGTGCCGTCTGGATGCGGACGGCCCAGGGCGGCGCGGCCCTCGTGCTGGGGATCGGGGCCGTCGTCGCCACGACGGTGCTCGCCGTCGTCGCCCAGCTCTGGGCGATGCTGCTGGTCCCCGCTCTGCTGGCCGTGCTGTTCGCCGCGATGTTCGCCTTCCGGGTGCGGGTCGACGCGACCGGCTTCACCGTGCGGTCGGTGCTGGGATGGCCCGGGACCCACGTCCCGGCCGACGAGGTCGTGGAAGCCTCGGTGACCCGGGTCAGCCCGCTCGGGGACTTCGGCGGCTGGGGCTGGCGCGTCGGCTTCGACAAGGGCCGCGTCGGGGTCGTGCTGCGGTCGGGCGAGGCCGTGCTGGTGGAGCGCACCGGAGGGCGCGGCCTCGTGGTCACGGTGGACGACGCCGCGCGCGCCGCGGCCCTGCTCAACACGATGGCCGACCGGGCGCGCGCGGACCGCACCCCCGGGTGAMTTHPDPTPAWRRRARRSTLWSSLAGLALTLGAAATVWGWRDDLPDEVATHWGAGGTPDASMTVTGLVATAVATTVGLLALFAVVGLAWGSSASTRRTAAGAAVWSGGLGAALLLVTAGLQRGLDTPQAAELPGWALAVVLLAPLLPAVIAAALVPGDPALPAEGPVAAGAPRATLTDSERAVWMRTAQGGAALVLGIGAVVATTVLAVVAQLWAMLLVPALLAVLFAAMFAFRVRVDATGFTVRSVLGWPGTHVPADEVVEASVTRVSPLGDFGGWGWRVGFDKGRVGVVLRSGEAVLVERTGGRGLVVTVDDAARAAALLNTMADRARADRTPGNANANANANA
AK018_00089357ytrA_1COG1725HTH-type transcriptional repressor YtrAATGCTCTGGACCATCGACGCCGGGAGCGACGAGCCGCTGTACGCACAGCTCGTCGCGCAGGCGCACCTCGCCGTCGCCCGCGGCGACCTCGCCCCCGGCGACCGCCTGCCCGCGGCACGCGAGCTCGCGACCTCGCTGGACCTCAACGTGCACACCGTGCTGCGCGCCTACCAGCAGCTGCGGGACGAGGGTCTCGTCGACCTGCGGCGCTCGCGCGGCGCCGTGATCACCGGGGCCGCCGCGACGGACCTGACGACCGTCGAAGAGGCGCTGCGCGCCTTCGTCGCGGCGGCCCGCGAGGCGCGCCTCTCCCCCGAAGCCACCACCACCCTTCTCCAGGAAGAGCTCAAGCGATGAMLWTIDAGSDEPLYAQLVAQAHLAVARGDLAPGDRLPAARELATSLDLNVHTVLRAYQQLRDEGLVDLRRSRGAVITGAAATDLTTVEEALRAFVAAAREARLSPEATTTLLQEELKRNANANANANA
AK018_00090633cysE_1COG1045Serine acetyltransferaseATGGCGGACTCCCCGGCGCGCGCGTTCCTCCGCCTCCTCCGCGAGGACGCGGAGGTCGCGCGCGCCCAGGACCCGGCGGCGGACTCGCTGCTGTCGGTCGTCCTGACCTACCCCGGCGTCCATGCCGTGTGGCACTACCGCCTCGCCCACGCGATGTGGCAGTCACCTCTGCTGCGCATGCCCGCACGGATGCTGTCCCTGGCCTCGCGGCTGTTCACCGGCGTCGAGATCCACCCGGCGGCCCGGATCGGCCGCCGGCTGTTCATCGACCACGGCATGGGCCTGGTCATCGGTGCCACGGCCGAGGTCGGCGACGACTGCCTGCTCTTCCACGGCGTCACCCTGGGCGGGCGCACCATGAACCCCGGCAAGCGGCACCCCACCCTCGGCGACCGCGTGATGGTCGGTTCCGGGGCCAAGGTGCTCGGACCGCTGTGGATCGGCGACGACGCCAAGATCGGCGCGAACGCCGTGGTGACCAAGGACGTGCCGAACGGCGCGGTCGCCATCGGCGTGCCGGCGAAGAACAAGGTGCCCGCCGCGCAGCCGCCGGACCCGACCTCGAACGGTAGGTCCCGCAGCACGCCGCGCACGATCGAGGACCCGTCGCAGCTCATCGAGTACGTCATCTGAMADSPARAFLRLLREDAEVARAQDPAADSLLSVVLTYPGVHAVWHYRLAHAMWQSPLLRMPARMLSLASRLFTGVEIHPAARIGRRLFIDHGMGLVIGATAEVGDDCLLFHGVTLGGRTMNPGKRHPTLGDRVMVGSGAKVLGPLWIGDDAKIGANAVVTKDVPNGAVAIGVPAKNKVPAAQPPDPTSNGRSRSTPRTIEDPSQLIEYVIPGPT0020265_4584DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTIONCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0020265-cysE-K00640NANA
AK018_00091936cysK1_1COG0031O-acetylserine sulfhydrylaseATGGCCACCATCTACGACGACGCGACGCAGCTCATCGGCCGGACGCCGCTGGTGCGGATCAACCGTCTCACCGAGGGCTCGGAGGCGACCGTCGCCGCCAAGCTCGAGTTCTACAACCCGGCCAGCTCGGTCAAGGACCGCATCGGCGTCTCGATCATCGACGCCGCCGAGGCCTCCGGCGAGCTGAAGCCCGGCGGGACCATCGTCGAGGGCACCTCCGGCAACACCGGCATCGCCCTCGCCTTCGTCGGTGCCGCTCGCGGCTACCACGTCGTGCTCGCGATGCCCGAGACGATGTCCAAGGAGCGCCGCGCGCTGCTGCGCGCCTACGGCGCCGAGCTGGTCCTGACCCCGGGCTCGGAGGGCATGAAGGGGGCCGTCGCGGCCGCCGAGAAGATCGCCGCCGAGCGTCCCGGGGCGATCCTGGCCCGCCAGTTCGCCAACGAGGCCAACCCGAAGATCCACCGCGAGACGACGGCCGAGGAGATCTGGGCCGACACCGACGGCGAGGTCGACATCGTCGTGGCCGGCATCGGTACCGGCGGCACCATCACCGGCGTCGGCCAGGTCCTCAAGGAGCGCAAGCCCGAGGTCCAGATCGTCGCCGTCGAGCCGGAGGAGTCGCCCATCCTCAACGGCGGTGCCCCCGGACCCCACAAGATCCAGGGCATCGGCGCGAACTTCGTCCCGGAGATCCTCGACACCGAGATCTACGACGAGGTCATCGACGTCAACGCGGAGACCGCCGTCGAGTGGGCGCGGCGCGCCGCTCGCGAGGAGGGCCTGCTCGTGGGCATCTCCTCCGGCGCCGCTCTGAACGCCGCGGCCCAGGTCGCGGAGCGCCCGGAGAACGCCGGCAAGACGATCGTCGTGATCATCCCGAGCTTCGGCGAGCGCTACCTGTCCACCGTGCTGTTCTCGGACCTGCTGGACTGAMATIYDDATQLIGRTPLVRINRLTEGSEATVAAKLEFYNPASSVKDRIGVSIIDAAEASGELKPGGTIVEGTSGNTGIALAFVGAARGYHVVLAMPETMSKERRALLRAYGAELVLTPGSEGMKGAVAAAEKIAAERPGAILARQFANEANPKIHRETTAEEIWADTDGEVDIVVAGIGTGGTITGVGQVLKERKPEVQIVAVEPEESPILNGGAPGPHKIQGIGANFVPEILDTEIYDEVIDVNAETAVEWARRAAREEGLLVGISSGAALNAAAQVAERPENAGKTIVVIIPSFGERYLSTVLFSDLLDPGPT0002810_5166DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002810-cysK-K01738NANA
AK018_00092108hypothetical proteinATGACGACCATCGCACTCTCCCACGTCTCCGGCCCCGACACCTTCGCTGCCGCGCCCCTCGTGCGCCGGCCGATGTGCGCCTGCCCCGCGGTCTGCTGCTGTCGGTAGMTTIALSHVSGPDTFAAAPLVRRPMCACPAVCCCRNANANANANA
AK018_000951128crtL_1Lycopene beta cyclaseATGGCGGACGTCGCGGTGGTCGGGCTGGGTCCGGCCGGGCGTGCCCTCGCCTCTCGGTGCGCGGCCGCCGGCCTGTCGGTGGTCGCGGTCGACCCGCGCCCCGACGCGGTGTGGACGCCGACCTACGGTCTCTGGGCCGACGAGCTGGGCGACCTGCCCGCCTCCGTCGTGCGGGCACGGGCCGAGAACCCCGAGCTGCGGGCGACCGGCGTGCACCCCCTGCAGCGTGCGTACCTGGTCCTGGACAACGCCGCGCTGCAGGCCGCCCTGCCCCTGGAGGGCGTCGCGGTCCGTGCCGGGCGCCTCGACGACGCGCAGGTCGGCGCCCTCCGCGGGGAGGCCCGCGTGGTGGTCGACGCCCGCGGTGCGCGACCCGGCGGGCTGCGGGCCGACGACCCGGCGCCGCTGCAGACCGCCTACGGGATCGTCGTGCCGGCCGAGGCCGCCGCGCCGGCCCTCCAGGGCGCCGAGTCCCTGCTGATGGACTGGCGCACCGACTGGTCGGAGCAGGAACGACCCACCGCCACCCCGACCTTCCTCTACGCGATCCCCGTGGGCGGCGAGCGGATGCTGCTCGAGGAGACGTGCCTGGCCGCCGCGCCGGGGCTGCCCGTCGCCGAGCTGCGGACGCGGCTCCGGCGTCGCCTGCTGGCCCGCGGCGTCGACGCGGCCACGGTGGACCATCCTCTCGACCGCGAGGTCGTGCGCATCCCCATGCGCGGCCGGGACGCTCCGCCGCCCCCGGGCGTCCTGGCCGTCGGCACCGCCGGACGTGGCGGGCACCGGATCACCGGCTACTCCGTGGCGCACTCCCTGCGCCGGACCGACGTCCTCGCGCGCGTTCTCGCGCAGGGCGACGTGCCGGCGGACGTGGATCCGACGGACGCCGCCGAGCGCCTCCGGGAGGTCGGGCTGCGCGCGCTGCTGCGGCTGAGCACGCTGGGCACGCTGGAGCTCTTCGAGGGCTTCGGCCGCCTGCCGGCCCCCCGTCGGCGGGCGCTCCTCTCCCGCGACGCGGACGCGGGCCGGCTGGCGGGCGCCATGTGGGGGATGTTCGCGCGGATGCCGTGGGCGGCCAGGGGTGAGCTGGTCCGCGCGTCGCTGAGCCCCTCGCGCCCGGGCGGCTGAMADVAVVGLGPAGRALASRCAAAGLSVVAVDPRPDAVWTPTYGLWADELGDLPASVVRARAENPELRATGVHPLQRAYLVLDNAALQAALPLEGVAVRAGRLDDAQVGALRGEARVVVDARGARPGGLRADDPAPLQTAYGIVVPAEAAAPALQGAESLLMDWRTDWSEQERPTATPTFLYAIPVGGERMLLEETCLAAAPGLPVAELRTRLRRRLLARGVDAATVDHPLDREVVRIPMRGRDAPPPPGVLAVGTAGRGGHRITGYSVAHSLRRTDVLARVLAQGDVPADVDPTDAAERLREVGLRALLRLSTLGTLELFEGFGRLPAPRRRALLSRDADAGRLAGAMWGMFARMPWAARGELVRASLSPSRPGGPGPT0007410_705DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007410-crtL1|crtY|lcyB-K06443NANA
AK018_00096411hypothetical proteinATGCCCCACCCGCACCTGATCTGGCTGCGCAGCGCAGCGACCGTGCTCATCAGCTGCGTCATCGCACAGGCCGGCTGGGCCTCGGCCTACCTCGGCGGAGATCCGGACTACCTCGTCCAGCACCGGGTCGGCGCCTGGGTCACCCTGGCGGTCGCCTGGCTGGCGGTCGTCGTCTACCTCGTGCTGCGGCGTTCCGCCGGTCGGGTCAACGTGGCGCTGGCCGTGGCGACGGCGGTGCTGGTGACCGTGCAGTTCACCCTCGGTCGGCTCGGCGGGGACCTGCGGGCGCTGCACATCTTCACCGGCGTGCTGCTCGCGGTGCTCGTGACGGCCCTGACGTCGTGGACCTACCGTCACCGGCTGCCGGAGGAGGCGGCGGGCAGCTCCAGCTCCAGCCCCCGCAGCGTGTAGMPHPHLIWLRSAATVLISCVIAQAGWASAYLGGDPDYLVQHRVGAWVTLAVAWLAVVVYLVLRRSAGRVNVALAVATAVLVTVQFTLGRLGGDLRALHIFTGVLLAVLVTALTSWTYRHRLPEEAAGSSSSSPRSVNANANANANA
AK018_000971230Cytochrome P450(MEG)ATGACGGGCCGACGGCGGGCGGTGCGCCCGGGCGAGCCGAGCACGCCGCGCGTCGAGCGGCAGGGGGCCGACGGCGGCCGCGGGGTCAGCACCGTGTGGCGCCTCCGGTCGCTGGAGGCGGCGCGGCAGGTGCTGCGCGCGCGGCACGCCACGACGCAGGCCGGCTTCACCGCCGAGGCCATCCCCCAGCGGCTCAAGCACCACCCGATCCTCATCTCCGACGGTCCGCAGCACGACGAGCAGCGCCGCAAGGTCGCCCGCTTCTTCGCGCCCGTGGTCGTGGCCGAGCGCTACACCGCGCAGATGGAGGAGTGCGCCGACCGGCTGCTCGGCGGGACCCCGCCCGGCGGCCGGCTGGTGCTCGACGAGCTCGCGCTGCACTACACCGTCGAGGTCACCGCGGAGGCGGTCGGGCTGACCGAGTCGTCCGTGCCGCGGATGTCGCGCCGGCTGGTGAGCTTCTTCCGCCAGCCGCCCTTCGACATCACCCGCCGCGACCTGGGCCGCACGCGACGCCAGTGGATGCGGGCGGCCGTCAACGGGCTCCTGCCGGTCGCGCGCTTCTACCTCGCGGACGTGCGCCCGGCGGTCCGGGCGCGTCGCACGGAGCGCCGCGAGGACATCATCAGCCACCTGGTCGACGAGGGCTACACCGACGTCGACATCCTGGTCGAGTGCGTCACCTACGGCACGGCGGGCATGGTGACCACGCGCGAGTTCGTCACGATGGCGGCCTGGCACCTGCTGCGCGACGACGCCCTGCGCGAGCGGTACGCCGTCGCCGGCCAGGAGGAGCGCATCGCGATCCTGCACGAGATCATCCGGCTGGAGCCGGTCGTCGGGCACCTGTACCGACGCGCGCAGGAGCCGATCAGCATCACCGACGGCGACGGCTCGTGGACGATCGAGGCCGGCGACCTGGTCGACGTGAGCGTCCGGTCCGCCAACGCCGACCCCCGGGCGCTGGACGAGGACGGCCTGGACCTGTGCCCCGGCCGGTCCCTGCCGCGGGGCGTCAACGCCACCGGCCTCACCTTCGGCGACGGCGCCCACAAGTGCCCCGGCCAGCCCCTGGCGATCCTGGAGACCGACGTGCTGCTCACCCGGCTCCTGGCACGCTCGCCGCGCCTGGTGTCCGAGCCCGAGGTGGGCTGGGACGACCTCATCGAGGGCTACACGCTGCGGGGGCTGGAGCTGGAGCTGCCCGCCGCCTCCTCCGGCAGCCGGTGAMTGRRRAVRPGEPSTPRVERQGADGGRGVSTVWRLRSLEAARQVLRARHATTQAGFTAEAIPQRLKHHPILISDGPQHDEQRRKVARFFAPVVVAERYTAQMEECADRLLGGTPPGGRLVLDELALHYTVEVTAEAVGLTESSVPRMSRRLVSFFRQPPFDITRRDLGRTRRQWMRAAVNGLLPVARFYLADVRPAVRARRTERREDIISHLVDEGYTDVDILVECVTYGTAGMVTTREFVTMAAWHLLRDDALRERYAVAGQEERIAILHEIIRLEPVVGHLYRRAQEPISITDGDGSWTIEAGDLVDVSVRSANADPRALDEDGLDLCPGRSLPRGVNATGLTFGDGAHKCPGQPLAILETDVLLTRLLARSPRLVSEPEVGWDDLIEGYTLRGLELELPAASSGSRNANANANANA
AK018_000981650hypothetical proteinGTGAGCCGACCCGTCCCGCCGGGCCGCGACGGCGCCGCCGTCCTCCACCCGGCAGCGCCCGGCGCCGAGCGCGTCGGCGACGGCCAGCACGTGGTCGTCGTCGGCGGCGGCATCGCCGGCCTGGCCGCGGCGGCGATCCTGGCCGAGCGGGGCGTACGGGTGACGGTGCTCGAGGCCTGCGACCAGCTCGGCGGCCGGGTCCGCGCGTGGCCGGTCGACGGCGCCGCCGAGGACGGCCGCACCATGAGCCGCGGCTTCCACGCCTTCTTCCGGCAGTACTACACGCTGCGGGCGCTGCTGCGCCGCGCCGACCCGACGCTCGCCCACCTGGTGCCCGTCCCCGACTACCCCCTGCGCCGCGGCGACGGCCTCACCGACAGCTTCGCGGCGCTGCCGCTGACCCCGCCGGTCAACCTCGCGGCGTTCGTCGTGCGCAGCCCCACCTTCCCGATCTCCGCGCTGACCAGGGTGCACCTGCCCAGCGCCGTCGAGCTCGTCTCGGTCTCCTACCCCGCGAGCCACGAGCGCTACGACGGCGAGTCGGCCCAGGACTTCCTCGACCGCCTGCGCTTCCCCGAAGGTGCGCGGCACCTCGCCCTGGAGGTGTTCGCCCGGTCCTTCTTCGCCCACCCCACCGACTTCGGGGCCGGCGAGCTCGTCGGCATGTTCCACACCTACTTCGCCGGGTCCTCGGAGGGACTGCTCTTCGACGTCCCCGACGACGACTACGACACCGCGCTGTGGGCCCCGCTGGGCCGCTACCTGGGCGGGCTGGGCGTCGACGTGCGCACCGGTACGCGGGCCGAGTCGCTCACCCGGGACGAGGACGGGACCTGGCACGTGGGCACGTCGTCCGCGGACCTCACCGCGGACGCCGTCGTGGTGGCCGCCGACCCCCGGGCGGCACGTGGCCTGCTCGCGCCGCTCGCCGACCAGCCGGACGACGGTCTCGACCCCGCGGAGCGGCAGCAGTGGCACCGGCGGGTCGCCGCCGGGCGCAACGCCCCGCCCTTCGCCGTGCTGCGGCTGTGGCTCGACGGCCCGGTCGCCCCGGAGCGGGAGGCGTTCCTCGGCACGTCCGGCTTCGACCTGCTCGACAACGTCACCGTCCTGGAACGGTTCGAGCAGGGAGCGGCCGACTGGGCGCTCGAGCACGGCGGCTCGGTCGTGGAGCTGCACGGCTACGCCGTCGACCCCGAGCGGGATACCGACCTGGCCGGCGACGGGCCGCGCGGGCTCGACACCTCGCGTCTGCGCACGCGGCTGCTGGACGCCCTGCACGAGGTCTACCCCGAGACCCGCGGGCTGCAGGCGGTCCACTCCGAGCTCCTCGTCGAGGACGACTGCGGGCTGGTCGGCACCGGCCCGTGGCGCGACCGGCTCACCGTCGACACCCCGTACCCGGGCCTGGTCCTGGCGGGCGACGGACTCCGGGTCGACTGGCCGATCGCGCTCATGGAGCGCGCCGCCGTGACCGGCGTGCTCGCCGCCAACCACCTGCTGCAGGGCTGGGACGTGCGGGGCGAGGACGTCTGGACCGTCCCGCTGCAGGGTGTGCTCCGGCGTCGGCCGGACCTGTCGGCTGCGGGAGCGGCCGTGGCCCGGACCGCGCGGACCGTGCGGGACCGCCTGCCCGTCGGGCGGCGATGAMSRPVPPGRDGAAVLHPAAPGAERVGDGQHVVVVGGGIAGLAAAAILAERGVRVTVLEACDQLGGRVRAWPVDGAAEDGRTMSRGFHAFFRQYYTLRALLRRADPTLAHLVPVPDYPLRRGDGLTDSFAALPLTPPVNLAAFVVRSPTFPISALTRVHLPSAVELVSVSYPASHERYDGESAQDFLDRLRFPEGARHLALEVFARSFFAHPTDFGAGELVGMFHTYFAGSSEGLLFDVPDDDYDTALWAPLGRYLGGLGVDVRTGTRAESLTRDEDGTWHVGTSSADLTADAVVVAADPRAARGLLAPLADQPDDGLDPAERQQWHRRVAAGRNAPPFAVLRLWLDGPVAPEREAFLGTSGFDLLDNVTVLERFEQGAADWALEHGGSVVELHGYAVDPERDTDLAGDGPRGLDTSRLRTRLLDALHEVYPETRGLQAVHSELLVEDDCGLVGTGPWRDRLTVDTPYPGLVLAGDGLRVDWPIALMERAAVTGVLAANHLLQGWDVRGEDVWTVPLQGVLRRRPDLSAAGAAVARTARTVRDRLPVGRRPGPT0007465_63DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007465-crtU|cruE-K09879NANA
AK018_00099786COQ5_12-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialGTGCTACGCAAACGCCCCGCCGTCGTGGGTCCTGTCGAGACGCGGGGAGCGCAGCTCTCCGACGAGTTCGACCGCGCCGCGGACCGCTACGACCTGCTGACCCGGCTCAACCCGGGCTACCACCAGGCCCTGAGCACAGCGGCACGCGCGCTGGTCTCCCTGCTGCCGCGCCGCTCCGACGACGAGCCGTTCGTGCTGTGGGACCTGGGGTGCGGCTCCGGGCTGTCCACGCGGGCCCTGGTCGACGCGGCCGGCGACAGGACCCGCGTCGTCGGGCTGGACGCCTCCGCCGGGATGCTGAGCCGGGCCCGGGCCAAGACTTGGCCGGACGGCGTCCGGTTCGTGCAGGCCTTCGCCCAGTCCCTGCCCGAGGTGGCGCGCGACCACGTGGGGCGGGACGCCGACGGGGCCTTCGCCGCCTACCTGCTGCGCAACGTCCCCGAGGAGCAGCGCGACGACGTCGTCACCGCCATCCACGACCAGGTGCGGCCCGGCGGCTGGGTGGCGCTGCAGGACTACCACGTCAAGGACGACCGGGTCGCCACGGCCGTGTGGACCGCCGTCTGCTGGGCCGTCGTCATGCCCCTGTCCTTCCTCGTGCGCGGCAACCCGGCGATCTACCGCTACCTGTGGCGCAGCGTCGTCGACAACGACAGCACCTCCGAGCTCCAGGAACGCCTCGAACGGGCCGGGCTCACCGACGTCCGCTGGCAGACCGGCACGGGCTGGCAGCGCGGCATCCTGCACACGGTCCTGGCCCGCCGACCCGAGACGGACCCCGCGTGAMLRKRPAVVGPVETRGAQLSDEFDRAADRYDLLTRLNPGYHQALSTAARALVSLLPRRSDDEPFVLWDLGCGSGLSTRALVDAAGDRTRVVGLDASAGMLSRARAKTWPDGVRFVQAFAQSLPEVARDHVGRDADGAFAAYLLRNVPEEQRDDVVTAIHDQVRPGGWVALQDYHVKDDRVATAVWTAVCWAVVMPLSFLVRGNPAIYRYLWRSVVDNDSTSELQERLERAGLTDVRWQTGTGWQRGILHTVLARRPETDPANANANANANA
AK018_00100354hypothetical proteinATGACCGGTCCGTCCCCCGGTCACGGACCGACCGACGCGGGCGCCCCCGGGCTGTGGGCCGAGCGCACCGCGCTGGCCTGGCGACGCACGCTGCTGTCGTTCACGGCGGCCTGCCTGGTGGCCGTCCAGGTGCTGCCCGCGGCCCGGAGCGCCCGCGCCCTGCTGCTGGCGGCCGCCGTCGCGCTGCTCCTCACCGCGCCCGGCTGGTGGTTCGCCCGCAGCCACGCCCGGCACACGGACGCCCACCTGCGCCGAGAGGTCCCGCGGCTACGGCACGGCCGCCGGATCGTGGCGATGTGCGCCGGCACGAGCCTGCTCGCCCTCGGCGGCCTGGCGCTCGTCCTCGTCGTCTGAMTGPSPGHGPTDAGAPGLWAERTALAWRRTLLSFTAACLVAVQVLPAARSARALLLAAAVALLLTAPGWWFARSHARHTDAHLRREVPRLRHGRRIVAMCAGTSLLALGGLALVLVVNANANANANA
AK018_00101441hypothetical proteinATGAGCGACGAGAGGCCGTCGGACCGCGACCGCGAAGGGATCCGCATGCCGCCCGGGGACACGACCAGCGAGCCGCGACCGCGCCCCGAACGCTTCCCGCGCTGGGTCTACTCCCGGGGCCGCGAACCCGACCCGCGCTTCTCGCTGGCCAACGAGCGGACCGTTCTGGCCTGGATCCGCACCTCCCTGGGCCTGATCGCCGGCGGGACGGCCCTGGAGGCGCTCGATTTGCCGATGGAACCCCACCTGCGGCTCGCCTCGGCGGTGGTCCTGCTGCTGGCCGGGGCGACCGTCCCCGTCGTGGCGGCGGTCGAGTGGGCCCGCACCGAACGGGCGATGCGGGAGGACGCCGCGCTGCCGGGCGCGATCACCGGGTTCGTGCTCGTGGCGACGATGACGACCGTCGGTGTGCTGCTGCTGCTGGCGCTGCTGCTGCGATGAMSDERPSDRDREGIRMPPGDTTSEPRPRPERFPRWVYSRGREPDPRFSLANERTVLAWIRTSLGLIAGGTALEALDLPMEPHLRLASAVVLLLAGATVPVVAAVEWARTERAMREDAALPGAITGFVLVATMTTVGVLLLLALLLRNANANANANA
AK018_001021041fieF_1Ferrous-iron efflux pump FieFATGACCTCCTCCGTCGACCCGTCGCCCGTCGAGAACGTCGCCCCGCCGGCCGACCCGCGCGTCGCGAGACCGCCCGAGCACGGCGGCGAGAGCGCCACGACGGTGGTCGTCGCCTTCGTCGCCAACGGGCTCGTCGCCGTCGCCAAGTCGGCGGCCGCCCTGCTCACCGGGTCGGCGTCGATGCTGGCCGAGGCCGTGCACTCGTGGGCCGACACGGGCAACGAGGTGTTCCTGCTCGTGGCGTCGAAGAGGTCGCGCCGGCCGGCCGACCGCGGGCACCCGGTCGGGTACGGGCGGGAGGCGTACGTCTGGTCGATGTTCGCCGCCATCGGCCTGTTCGCCGTCGGCGCGGGCGTCTCGATCACGCACGGTGTCCAGGAGCTGCTCGACCCGGAGCCGGCCGAGGACCTCGGCATCGCCTACGCCGTGCTCGCCCTGGCCTTCGTCCTCGAGGGGGTGTCGTTCCTCCAGGCCGTGCGCCAGGTCCGGGCCGAGGCCCGGCGGACGCGTCAGGACCCGTTCGAGCACGTGCTGCAGACCTCCGACCCGACGCTGCGCGCGGTCGTCGCCGAGGACGCGGCGGCGCTGGTCGGCCTCGTCATCGCGTTCGCGGGCGTGCTGGCCCACCAGCTCACGGGGTCGGCGGTGCCGGACGCGATCGGGTCGATCGCCATCGGCGTGCTGCTGGCCGTGGTCTCGCTCGTGCTCGTCGACCGCAACCGGCGGTTCCTGGTGGGCGAGGAGGTGCGTCCCGCCGTCCGGGACGCGGTCCTGGCCCGGCTGCTGGCGCAGCCGACGGTGGACAGGGTGACCTACCTGCGGATCGAGTACGTAGGTCCCCGGCGGCTGTACCTGGTGGCCAGCGTCGACCTGGCGGGGGAGGACCGCGAGACCGCCGTCGCGCGACGGCTGGACGAGCTCGAGCGCGCCGCGACCGGTCACCCCCGCGTCGCGGGAGCCGTGTTCACGGTGTCCACGCCGGAGGAGTCGTCCCTGGTCCCGGCGGTGGACGACCGGGACGACCCGCCCGCCGACCGGTAGMTSSVDPSPVENVAPPADPRVARPPEHGGESATTVVVAFVANGLVAVAKSAAALLTGSASMLAEAVHSWADTGNEVFLLVASKRSRRPADRGHPVGYGREAYVWSMFAAIGLFAVGAGVSITHGVQELLDPEPAEDLGIAYAVLALAFVLEGVSFLQAVRQVRAEARRTRQDPFEHVLQTSDPTLRAVVAEDAAALVGLVIAFAGVLAHQLTGSAVPDAIGSIAIGVLLAVVSLVLVDRNRRFLVGEEVRPAVRDAVLARLLAQPTVDRVTYLRIEYVGPRRLYLVASVDLAGEDRETAVARRLDELERAATGHPRVAGAVFTVSTPEESSLVPAVDDRDDPPADRNANANANANA
AK018_00103531hypothetical proteinGTGACGGACCCGAACGACCCCTACGCCGCCCCGGGCGGCGAGCACCCGCAGCAGCACCCGACGCAGCCGGTGCCGCCGGCCTCGTCGGCCACGCCGCCGACCCCGCCGTCCGCGCCGGGCGACCTGTACGGACCGCCGGCCCCGCCGGCGGGCTACGCCGCCGGTCCGCCGCCGTCCTCGGTGCCGCAGGGTTCGGGCGTCGCCTACCCGTCGTCCGGCGGAGCCTGGCCGGCCGGGCCGCAGCCGGGTCCGCCGTACGGCGCCTGGCCGTACCCGGTGCGGCGGACCAACGGCCTGGCGGTGGCCTCGCTGGTGCTGGGCATCCTCTGGCTCTACTGGGTCGGAAGCGTCCTGGCCCTGATCTTCGGGTACGTGGCGCTGAGCCAGATCAAGAGAGCCCCGGCCTCCGCCCCGCAGGACGGTCGCGGGCTGGCGATCGCCGGGGTCGTGCTCGGGTGGGTCGGGGCGGCGACGCTCGCGCTGATGATCTTCTTCCTCGCCGCGGTGTCTTCGGCGCCCGTCGGCTACTGAMTDPNDPYAAPGGEHPQQHPTQPVPPASSATPPTPPSAPGDLYGPPAPPAGYAAGPPPSSVPQGSGVAYPSSGGAWPAGPQPGPPYGAWPYPVRRTNGLAVASLVLGILWLYWVGSVLALIFGYVALSQIKRAPASAPQDGRGLAIAGVVLGWVGAATLALMIFFLAAVSSAPVGYNANANANANA
AK018_00104588hypothetical proteinGTGGTGGACGATCTCGGCACGGCGCTCGACTCGGTGGGGCCGCGGCTGCGCAGGCTGCGCCAGGACCGCGGGACGACCCTCGCGGCGGTCTCCGAGCGCACCGGCATCTCGATCAGCACGCTCTCGCGCCTGGAGTCCGGCGCGCGCCGGCCTTCGCTGGAGCTGCTGCTTCCCCTGGCCCGCGAGCACGGCGTGACGCTCGACGACCTGGTCGACGCCCCGACCACCGGCGACCCGCGCGTGCACCTCAAGCCCGAGACCGCCGACGGCGTCACGGCCATCGCGCTCACCCCGGGTGCCGCCGACGTCGCGGCCTACAAGATGATCTTCACCGCCGACGCCCGGTCCGGCGGGCCCGACCCGCGCACGCACGAGGGGTACGAGTGGCTCTACGTGCTCGCCGGCCGACTCCGCCTCGTGCTCGGCCACCACGACGTCGAGATGGGCCCGGGAGAGGCCGCCGAGTTCGACACCCGGGTGCCGCACTGGTTCGGACCCGTCGGCGACGAGACCGTCGAGCTGCTCAGTCTCTTCGGCCCGCAGGGGCAGCGCATCCACACGCGCGTGCGGCCCCGGTCGTCCCGGTAGMVDDLGTALDSVGPRLRRLRQDRGTTLAAVSERTGISISTLSRLESGARRPSLELLLPLAREHGVTLDDLVDAPTTGDPRVHLKPETADGVTAIALTPGAADVAAYKMIFTADARSGGPDPRTHEGYEWLYVLAGRLRLVLGHHDVEMGPGEAAEFDTRVPHWFGPVGDETVELLSLFGPQGQRIHTRVRPRSSRNANANANANA
AK018_001051434tig_1COG0544Trigger factorGTGAAGAGCGCCGTCGAGACCCTGGAGCCCACCAAGGTCAAGCTGACCGTCGAGGTGGAGTACGACGAGCTCAAGCCGAGCATCGACCACGCCTACAAGCACATCGCGGAGCAGGTGAACATCCCCGGCTTCCGCAAGGGCAAGGTCCCCCCGCGCATCATCGACCAGCGCATCGGCTGGGGTGCCGTCATCGAGCACGCCGTGAACGAGGGCCTGTCCGGCTTCTACCGCGACGCCGTGAGCGCCGAGGAGCTGCGCCCGCTGGGCCAGCCCGAGGTCGAGGTCACCGGCATCCCGGAGAAGGCCGGCGAGGGCCGGCTGGAGTTCGTCGCGCAGGTCGAGGTCCGCCCGGAGCTCGAGCTGCCCGAGCTGTCCGCCATCGAGCTCACCGTGGAGTCCACCGAGGTCTCCGACGAGGACGTCGCCGAGCGTCTCGACTCGCTGCGCGAGCGGTTCGGCACCCTCGTGGGCGTCGACCGCCCGGCCGTCGAGGGCGACTACGTCGTCATCGACCTCAAGGCCATGGTCGGCGAGGACGAGGTCGACTCCGTCTCCGGCGTCTCCTACCAGATCGGCGCGGGCAACATGCTCGAGGGTCTGGACGAGGCGCTGACCGGTCTGTCCGCGGACGAGACCACCACCTTCACCACCAACCTCGCCGGCGGCGAGCACGAGGGCGCCGAGGCGACGGTCACGGTGGCCGCCACCTCCGTCAAGGAGCGCGAGCTGCCCGAGGCGGACGACGACTTCGCCCAGATGGCCTCGGAGTTCGACACCCTCGAGGAGCTCAAGGCCGACCTGCGCGCGCAGGTCGCCTCCTCCAAGTCCTCCGACCAGGCCGTCGCCGCGCGCGACGCGCTGCTGGAGAAGCTGCTCGAGGCCGTCGAGGTGCCGGTGCCGTCCGGCGTCGTCGAGGCCGAGGTGCACCGCCACCTCGAGCAGGAGGGTCGTCTCGAGGACGACGAGCACCGCACCGAGGTCACCGCGGACGCCACCAAGGCGATCACGAACCAGATCCTGCTCGACACCCTCGCCGAGAAGCTCGAGGTGCAGGTCGGCCAGGGTGAGCTCATCGAGTACCTGGTCCAGGCCTCCCAGCAGTACGGCATGGAGCCGCAGCAGTTCATCCAGACCCTCGACCAGTCGGGCCAGATCCCGGCCATGGTCGGCGAGGTCGCGCGGTCCAAGGCGCTCGCCGTGGCCCTGCGCGACATCGAGGTCAAGGACGCCGACGGCAACGTCGTCGACCTGACCGAGTTCATCGGGTCCGAGGAGGACGACGAGGCCGCGGCCGCCGCCACCGAGGCCGCGCAGTCGGAGCTCGCCGACGCCGAGTCCGGCGAGTCGGCCGAGTCGCCGGAGTCGGCCGGGTCGGCGGACACCCCGGACTCCGCGGAGTCCGGCGACTCCGCCGAGGAGACCGGCAAGGCCTGAMKSAVETLEPTKVKLTVEVEYDELKPSIDHAYKHIAEQVNIPGFRKGKVPPRIIDQRIGWGAVIEHAVNEGLSGFYRDAVSAEELRPLGQPEVEVTGIPEKAGEGRLEFVAQVEVRPELELPELSAIELTVESTEVSDEDVAERLDSLRERFGTLVGVDRPAVEGDYVVIDLKAMVGEDEVDSVSGVSYQIGAGNMLEGLDEALTGLSADETTTFTTNLAGGEHEGAEATVTVAATSVKERELPEADDDFAQMASEFDTLEELKADLRAQVASSKSSDQAVAARDALLEKLLEAVEVPVPSGVVEAEVHRHLEQEGRLEDDEHRTEVTADATKAITNQILLDTLAEKLEVQVGQGELIEYLVQASQQYGMEPQQFIQTLDQSGQIPAMVGEVARSKALAVALRDIEVKDADGNVVDLTEFIGSEEDDEAAAAATEAAQSELADAESGESAESPESAGSADTPDSAESGDSAEETGKANANANANANA
AK018_00106765clpP_1ATP-dependent Clp protease proteolytic subunitGTGCGGGCCGTCGTCGTCCCCGGCGACGTGCCGCTGTGCGCCTGCAGCGAAACAGGGCGCTCCCGGGACTCGGCGGGCACGCCCTGCACGTTAGGGTCGAGCGACAGCGAAGCGAAGGAGACGGACGTGAACGACCTGCTGCAGATGGGCTCAGCGGCACCTGAGGCCCGCGCCGACGGCCCGGGCTTCGGCCTCAACGACTCCATCTACAACCGGCTCCTCAAGGAGCGCATCATCTGGCTCGGCTCGGAGGTGCGCGACGACAACGCGAACGCCATCTGCGCCCAGATGATGCTGCTCGCGGCGGAGGACCCGGACAAGGACATCTACCTCTACATCAACTCCCCGGGCGGCTCGATCACGGCCGGCATGGCGATCTACGACACCATGCAGTTCATCCAGCCGGACGTCGCCACGGTCGCGATGGGCATGGCCGCCTCGATGGGGCAGTTCCTGCTGTCCTCGGGCGCCAAGGGCAAGCGCTACATCACCCCGCACGCGCGGGTCCTGATGCACCAGCCCTCCGGCGGTGTCGGTGGCACGGCCACCGACGTGCGCATCGGCGCCCAGCTCATCATGCACATGAAGAAGGTGCTCGCGGAGCTCACGGCCGAGCAGACCGGCCAGCCGCTCGAGAAGATCCTCAAGGACAACGACCGCGACAGCTGGTTCACGGCGGACGAGGCCCTCGAGTACGGCTTCGTCGACCGGGTCGTCGCCAACGCTGCCTCGGTGTCCGGGGGCGGCGGCACGAACGCCAGCTGAMRAVVVPGDVPLCACSETGRSRDSAGTPCTLGSSDSEAKETDVNDLLQMGSAAPEARADGPGFGLNDSIYNRLLKERIIWLGSEVRDDNANAICAQMMLLAAEDPDKDIYLYINSPGGSITAGMAIYDTMQFIQPDVATVAMGMAASMGQFLLSSGAKGKRYITPHARVLMHQPSGGVGGTATDVRIGAQLIMHMKKVLAELTAEQTGQPLEKILKDNDRDSWFTADEALEYGFVDRVVANAASVSGGGGTNASPGPT0014595_3920DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358NANA
AK018_00107714clpP2_1COG0740ATP-dependent Clp protease proteolytic subunit 2ATGAGCCACTCCGCCGAGTACCAGTTCGCGATGCGGGCCGAGCGTCTCGCCGGCGACGCCGCCCGCCCGGGCGGGATCGCGCTGCCGCACGGCGCCCCGTCGTCGCGCTACGTGCTCCCGCAGTTCGAGGAGCGCACGCCGTACGGCTTCAAGCGCCAGGACCCGTACACGAAGCTGTTCGAGGACCGCATCATCTTCATGGGCGTCCAGGTCGACGACGCGTCGGCCGACGACATCATGGCCCAGCTGCTCGTCCTGGAGTCCCAGGACCCCGACCGCGACGTGATGATCTACATCAACTCCCCGGGCGGGTCGTTCACCGCGATGACCGCGCTCTACGACACGATGCAGTTCATCAAGCCGCAGATCCAGACGGTCTGCCTCGGGCAGGCGGCCTCCGCCGCGTCCGTGCTGCTGGCCGCGGGGCAGCCCGGCAAGCGCCTGGCGCTGCCGAACGCCCGCGTGCTGATCCACCAGCCGGCGATGGAGGGCGGCGGCTACGCGCAGGCCTCCGACATCGAGATCCACGCCAACGAGCTCATCCGCATGCGTGAGTGGCTCGAGGAGACGCTGGCCCGGCACACCGGCAAGGACGTCGAGGAGATCCGCGACGACATCGAGCGCGACAAGATCCTCACGGCCGCCGAGGCCAAGGACTACGGCCTGGTCGACCAGGTGCTCGAGTCCCGCAAGCCGGGTCAGATCCGGGCCTGAMSHSAEYQFAMRAERLAGDAARPGGIALPHGAPSSRYVLPQFEERTPYGFKRQDPYTKLFEDRIIFMGVQVDDASADDIMAQLLVLESQDPDRDVMIYINSPGGSFTAMTALYDTMQFIKPQIQTVCLGQAASAASVLLAAGQPGKRLALPNARVLIHQPAMEGGGYAQASDIEIHANELIRMREWLEETLARHTGKDVEEIRDDIERDKILTAAEAKDYGLVDQVLESRKPGQIRAPGPT0014595_1779DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358NANA
AK018_001081266clpX_1COG1219ATP-dependent Clp protease ATP-binding subunit ClpXGTGGCTCGAATCGGTGACGGTGCAGACCTGCTCAAGTGCTCCTTCTGCGGGAAGTCGCAGAAGCAGGTCAAGAAGCTGATCGCTGGGCCCGGCGTATACATCTGCGACGAGTGCATCGACCTGTGCAACGAGATCATCGAGGAAGAGCTCGGTGAGACGACGGAGCTGGGGCTGACCGAGCTGCCCAAGCCGCGGGAGATCTTCGACTTCCTCGAGCAGTACGTCATCGGTCAGGACCCCGCGAAGCGCGCGCTCGCCGTCGCGGTCTACAACCACTACAAGCGGGTCCAGGCGCCCCCGCCGGCCAAGGACGACGAGGACTCGGTGGAGATCGCCAAGTCCAACATCCTGCTCATCGGGCCCACCGGGACCGGCAAGACCTACCTGGCGCAGACGCTGGCCAAGATGCTCAACGTCCCGTTCGCCATCGCCGACGCGACGGCGCTGACGGAGGCCGGCTACGTGGGCGAGGACGTCGAGAACATCCTGCTCAAGCTGATCCAGGCCGCGGACTACGACGTCAAGAAGGCCGAGACGGGCATCATCTACATCGACGAGATCGACAAGGTGGCCCGCAAGGCCGAGAACCCGTCGATCACGCGCGACGTCTCCGGCGAGGGCGTCCAGCAGGCCCTGCTGAAGATCATCGAGGGCACCAGCGCGTCGGTGCCGCCGCAGGGCGGGCGCAAGCACCCGCACCAGGAGTTCATCCAGATCGACACCTCGAACGTGCTGTTCGTGGTCGCCGGGGCGTTCGCCGGGCTGGACGACATCATCGCCTCCCGCGCCCGCCAGCGCGGCATCGGCTTCTCCGCCCCGATGGAGTCCACCGCCGACGTCGACCTCTTCTCCGAGGTGCGCCCCGAGGACCTGCACAAGTTCGGCCTCATCCCCGAGTTCATCGGCCGTCTGCCCGTCATCGCCTCCGTCTCGCCGCTGGACCGCGACGCGCTCGTGCGCATCCTCACCGAGCCGCGCAACGCCCTGGTCAAGCAGTACCAGCGGATGTTCGAGATCGACGGCGTGCGCCTGGAGTTCGCCGACGACGCGGTCGAGGCGATCGCCGAGCAGGCGCTGCTGCGGGGGACCGGTGCCCGCGGGCTGCGGGCCATCATGGAGGAGGTCCTGCAGCAGGTGATGTTCGACGTGCCGAGCCGTGACGACGTCGAAGGCGTGGTCATCACCCGCGAGGTCGTCGAGGAGAACGTCAACCCGACGATCGTGCCGCGGTCCTCGGGACCGGTGCGCAACCGCAAGTCCGCCTGAMARIGDGADLLKCSFCGKSQKQVKKLIAGPGVYICDECIDLCNEIIEEELGETTELGLTELPKPREIFDFLEQYVIGQDPAKRALAVAVYNHYKRVQAPPPAKDDEDSVEIAKSNILLIGPTGTGKTYLAQTLAKMLNVPFAIADATALTEAGYVGEDVENILLKLIQAADYDVKKAETGIIYIDEIDKVARKAENPSITRDVSGEGVQQALLKIIEGTSASVPPQGGRKHPHQEFIQIDTSNVLFVVAGAFAGLDDIIASRARQRGIGFSAPMESTADVDLFSEVRPEDLHKFGLIPEFIGRLPVIASVSPLDRDALVRILTEPRNALVKQYQRMFEIDGVRLEFADDAVEAIAEQALLRGTGARGLRAIMEEVLQQVMFDVPSRDDVEGVVITREVVEENVNPTIVPRSSGPVRNRKSAPGPT0014600_3651DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014600-clpX-K03544NANA
AK018_00109378hypothetical proteinATGGCTGAGCCCTTCGACGAAGCACCCGTGCCCGAGACCGGTCGGGCGCTGCCGACCGAGATCCTCGGGCTGCGCAGCACGATCGACAACATCGACGCCGCGCTGGTGCACCTGCTGGCCGAGCGGTTCCGCGCCACGCAGCGCGTGGGCGAGCTGAAGGCGACCGAGGGCCTGCCGCCGGCGGACCCCCAGCGCGACCGCCAGCAGATCGACCGGCTCAAGGCCATCGCCTCCGGTGCCGGGCTGGACCCCGAGTTCGCCGAGCAGTTCCGCCACTTCATCGTCTCCGAGGTCATCCGCCGCCACGAGCGGATCGCCGCTGAGCACGCCGCCGCCGGACGCGCCGAGGACGTGCCCCCGCTGGACACCTACAGTTGAMAEPFDEAPVPETGRALPTEILGLRSTIDNIDAALVHLLAERFRATQRVGELKATEGLPPADPQRDRQQIDRLKAIASGAGLDPEFAEQFRHFIVSEVIRRHERIAAEHAAAGRAEDVPPLDTYSPGPT0003065_207DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_AQUIRED_RESISTANCE|SARSAR-SALICYLIC_ACID_METABOLISMSAR-SALICYLIC_ACID_BIOSYNTHESIS,PGPT0003065-pchB|pmsB-K04782NANA
AK018_001101242hypothetical proteinATGAAGATCGATTGGCTCAAGCCCTTGGTCGGACACCCCGGCCCGTTCGCGACGGTCTACCTTGACGCGACGCGATCGGTCGAGGCCGGCGACAAGGATGTGGCGAACCGGTGGCGTTCCGTGCGCCGCTCGCTCGCCAAGCAGGGCGCCACGGACACCGTCCTGAGCGACCTGGACGCCTCCGTGGACCGCCCGACATGGGTGCACGGCCCGCACGGCCGTGTGCTCATCGCCGACGACGAGGGGGTGCTGGTCGACCGGGTCCTGCGCGAGCCGCCGCCGGTGATGGCGGGGGTCTGGCACCGCGTCCCGAGCCTGCTGCAGGCGGCACGGTCGGCCGACGAGGAGGTCGACGCGCTCTGCGTGGCCATCGACCGCTCGGGGGCCGACTTCTTCGCGGTGGGCTCCGACGGGCGTCCCGTCGGCGAGAAGGAGACCTTCGAGGGGCCGGACGACGAGATCTCCAAGACGTCCAGCACGTCGACCAAGCGGTCGGTGATCGAGTCGCGCGCCGAGGACTCGTGGCACCGCAACGCCGAGGCGGTGGCCGGCGAGATCGACCGGCGCGTGGCCGAACGCCGCCCGGAGATCGTGCTGATCACCGGCGACGTGCGGGCCGTGCACATGGTGCGGGACGCGCTCGGTCAGCAGGCCGCCCAGGTCACCGTGGAGGTGCCCGGCGGGGGTCGCGACGACGGCGTGCACGTGGGTCCCTTCGCGGAGACCGTCGCGGACGCTCTCGACTCGTTCCGCGAACGTCGCCGCGAGCAGGTCCTGGCGGAGCTGCGCGAGGGGCTCGGCCGCGAGGCGGGGGCCGTGACCAGCATCGGTGACGTCGCCCAGGTCCTGGCGCGCGGCCAGGTCAAGCAGCTCGTGCTCTCCGAGGAGCTGGCCGACGACGCGGCCCGTGCCCTGCACGCCTGGGTCGACGGCTCGGTCGAGGAGCCCGGGCTGGGCGGTCTGCTCAACGGCTTCCAGCTGTTCGTCGGCCCCGACCCGATGCACATCGCCGCGTCGCGGGTCGAGCTCGAGGGCGTCGGCGAGCTCGAGGAGCTGCCGGCCGCGACCGCGCTGCTGCGTGCCGCCATCGGGCAGGACGCCGGGCTCGTCTTCGCCCCGGAGGGCTCGGTCGAGCTCCGGGACGGTGTCGGGGCCACGCTGCGCTGGCACGACGGCGGGACGCCGCACGAGTCGGCCGCCACCATGAGCGGCGACGACGGCCGTGTCTCGGCGGCTCACTAGMKIDWLKPLVGHPGPFATVYLDATRSVEAGDKDVANRWRSVRRSLAKQGATDTVLSDLDASVDRPTWVHGPHGRVLIADDEGVLVDRVLREPPPVMAGVWHRVPSLLQAARSADEEVDALCVAIDRSGADFFAVGSDGRPVGEKETFEGPDDEISKTSSTSTKRSVIESRAEDSWHRNAEAVAGEIDRRVAERRPEIVLITGDVRAVHMVRDALGQQAAQVTVEVPGGGRDDGVHVGPFAETVADALDSFRERRREQVLAELREGLGREAGAVTSIGDVAQVLARGQVKQLVLSEELADDAARALHAWVDGSVEEPGLGGLLNGFQLFVGPDPMHIAASRVELEGVGELEELPAATALLRAAIGQDAGLVFAPEGSVELRDGVGATLRWHDGGTPHESAATMSGDDGRVSAAHNANANANANA
AK018_001112787valS_1COG0525Valine--tRNA ligaseATGAGCGACTTCCCGAACCCCGGGGCGCCGACCGCGCCCGAGCAGACTCCCGCAGCGACCTCCGCGTCCGGCCCCGTAGCCGACGACGTCGTGCGCGCGGTGGTCCGGGAGGTACCGGACAGGGTCAGCACCGACGGCCTCGAGGAGAAGTTCGACGAGCGCTGGGCCACCGAGCGCACGTTCGCCTTCGACCGCTCCGCCACGCGCGAGCAGGTCTACTCCATCGACACCCCGCCGCCGACCGTCTCCGGCTCGCTGCACGTGGGCCACGTGTTCAGCTACACCCACACCGACGTCGTCGCGCGCTTCCAGCGCATGCGCGGCAAGGAAGTCTTCTACCCGATGGGCTGGGACGACAACGGCCTGCCCACCGAGCGTCGCGTGCAGAACTACTACGGCGTGCGCTGCGACCCGTCGCTGCCCTACGACCCGGACTTCGCTCCCCCGCACCAGGGCACCGAGGGCAAGAAGGTCAAGCCCGGCGACCAGGTGCCGATCAGCCGCCGCAACTTCATCGAGCTGTGCGAGGAGCTGACCGCCGACGACGAGCGCCAGTTCGAGGAGCTGTGGCGCCGGCTCGGGCTGTCCGTGGACTGGTCGCAGACGTACCAGACCATCGACGCCACCTCGCGCGCCGCCTCGCAGCGGGCGTTCCTGCGCAACCTGCAGCGCGGCGAGGCCTACCAGGCCGAGGCCCCGGGACTGTGGGACGTCACCTTCCAGACGGCCGTCGCCCAGGCCGAGCTCGAGGCCCGCGAGTACCCCGGCCACTACCACCGCGTCGCGTTCCACCGTGCCGGTGACGGCGCGACCGGTGAGCCGGTGTACATCGAGACCACTCGGCCCGAGCTCGTGCCGTCCGTCGTGGCCCTCATCGCCCACCCGGACGACGAGCGCTACCAGCACCTCTTCGGCACCACCGTGACCTCGCCCCTGTTCGGCGTCGAGGTGCCGGTGCTCGCCCACCACGCCGCCGCCATGGACAAGGGCGCCGGCATCGCCATGTGCTGCACCTTCGGCGACCTCACCGACGTGCAGTGGTGGCGCGAGCTGCAGCTGCCCACGCGCTCCGTCATCGGCCGCGACGGCCGCCTGACCCGCGAGACCCCCGAGTGGATCGCGGGCGGCCCCGGCGCCGACCTGTACGCCGAGGGCCTCGCCGGCAAGACGGCGTTCAGCGCCCGCACCGCCGTCGTCGACGCGCTGCGCGAGTCCGGTGACCTGGACGGCGAGCCCTCGCCCACCCAGCGCATGACGAACTTCTACGAGAAGGGCGACAAGCCCCTCGAGATCGTCACCTCCCGCCAGTGGTACATCCGCAACGGGGGCCGCGCCTGGGAGCAGCGCGACCTGAAGGCCGAGCTGCTCGCGCGCGGCAAGGAGCTCGACTTCCACCCCGACTTCATGCGGGTGCGCTACGAGAACTGGGTCAACGGCCTCAACGGCGACTGGCTCATCTCCCGCCAGCGGTTCTTCGGCGTGGCCGTGCCGGTCTGGTACGAGCTCGACTCCCGCGGCGAGGTGGACTACGAGCGCCTCATCACGCCGTCCGAGGCCGAGCTGCCCGTGGACCCGACGTCGCAGGCGCCCGCGGGCTACACCGAGGACCAGCGCGGCGAGCCCGGCGGGTTCGTCGGCGACAACGACGTCATGGACACCTGGGCGACGTCGTCGCTGAGCCCCCTGATCGTCTCCGGCTGGGAGCGCGACGCCGACCTGTTCGACCGCGTCTACCCCATGGACCTGCGTCCGCAGGGCCAGGACATCATCCGCACCTGGCTGTTCTCCTCCGTGGTGCGCTCGCACCTGGAGTGCGGCGTGCTGCCGTGGAAGAACGCGGCCATCAGCGGCTGGATCCTCGACCCCGACCGCAAGAAGATGTCCAAGTCCAAGGGCAACGTCGTCACGCCGATGGACCTGCTCACCGAGCACGGGTCCGACGCCGTGCGCTACTGGGCGGCAGCGGCGCGCCTGGGCACGGACGCGGCCTTCGAGGTCGGCCAGATGAAGATCGGTCGCCGGCTGGCGATCAAGGTCCTCAACGCCTCCAAGTTCGCCCTGACCTTCGGCGTGGACCCCGAGTCCGGCGCCGGCGAGATCGTGCTCGACCCCGCCGCCGTCACCGTCGACCTGGACCGCGCCATGCTGGCCGGGCTGGCCGACGTCGTCGACCAGGCGACCGCCGCGCTCGAGTCGTACGACCACACGCGCGCCCTGGAGATCACCGAGTCCTACTTCTGGGCGTTCTGCGACGATTACCTCGAGCTCGTCAAGGACCGCGCCTACGGCGCCGGGGCCGACGCTGCCGAGGTCGCGGCCGAGACGCTCTCGGCCCGCACCGCCCTGGCGATCGCCCTGGACGCGATGCTGCGGCTGCTGGCCCCGTTCATCCCGTTCGCCACCGAGGAGGTCTGGTCCTGGTGGCGTACCGGGTCCGTCCACCGGGCCCCGTGGCCGACGGCGCAGCCGCTGCGGGACGCGTCCGCCGGCGTCGACCCGACCGGCCTCACCGCGGCCGGCCACGCCCTGGCCGCGCTGCGCAAGCTGAAGTCGGCCGCCAAGGTCTCCATGAAGACCCCGGTCCTGTCCGGCACCGTCGCGGTCCCGGCGCACCTGCTGCCGGGCGTCGAGTCCGCCATGGTGGACCTGCGCGGCGCGGGCCGCGTCACCGGCCCCCTGGAGCTCGTGGAGGCGACCGACGGCCAGGGTGACCCCGACGTCCAGGGCGGGATCGTCGTCGTCGAGCACGAGCTGGGTGAGCCGCCGGCCAAGAAGCCGCGCGGCTGAMSDFPNPGAPTAPEQTPAATSASGPVADDVVRAVVREVPDRVSTDGLEEKFDERWATERTFAFDRSATREQVYSIDTPPPTVSGSLHVGHVFSYTHTDVVARFQRMRGKEVFYPMGWDDNGLPTERRVQNYYGVRCDPSLPYDPDFAPPHQGTEGKKVKPGDQVPISRRNFIELCEELTADDERQFEELWRRLGLSVDWSQTYQTIDATSRAASQRAFLRNLQRGEAYQAEAPGLWDVTFQTAVAQAELEAREYPGHYHRVAFHRAGDGATGEPVYIETTRPELVPSVVALIAHPDDERYQHLFGTTVTSPLFGVEVPVLAHHAAAMDKGAGIAMCCTFGDLTDVQWWRELQLPTRSVIGRDGRLTRETPEWIAGGPGADLYAEGLAGKTAFSARTAVVDALRESGDLDGEPSPTQRMTNFYEKGDKPLEIVTSRQWYIRNGGRAWEQRDLKAELLARGKELDFHPDFMRVRYENWVNGLNGDWLISRQRFFGVAVPVWYELDSRGEVDYERLITPSEAELPVDPTSQAPAGYTEDQRGEPGGFVGDNDVMDTWATSSLSPLIVSGWERDADLFDRVYPMDLRPQGQDIIRTWLFSSVVRSHLECGVLPWKNAAISGWILDPDRKKMSKSKGNVVTPMDLLTEHGSDAVRYWAAAARLGTDAAFEVGQMKIGRRLAIKVLNASKFALTFGVDPESGAGEIVLDPAAVTVDLDRAMLAGLADVVDQATAALESYDHTRALEITESYFWAFCDDYLELVKDRAYGAGADAAEVAAETLSARTALAIALDAMLRLLAPFIPFATEEVWSWWRTGSVHRAPWPTAQPLRDASAGVDPTGLTAAGHALAALRKLKSAAKVSMKTPVLSGTVAVPAHLLPGVESAMVDLRGAGRVTGPLELVEATDGQGDPDVQGGIVVVEHELGEPPAKKPRGNANANANANA
AK018_00112894hypothetical proteinATGAGCGTGTCAGATCCTGTCGACGTCCTGCGCCGGTTCAACCGCGGCTACACCCAGCGGGTGGGTGCGCTGGAGGAGTCCTTCCTCGGGCTGGGGATGCCGCTCGGCACCGCGCGGCTGCTGTACGAGATCGGCGTCGAGCCCGGGACGACCCGGTCGTTGCGCACACGCCTCGGCCTCGACTCGGGGTACCTGAGCCGGCTGCTGCGCCGGCTGGAGGACGACGGTCTCGTCGCGCTCGGACCCGACCCGGTCGACCGGCGTCGGCGCCGCGTGGCCCTGACGGCCGCCGGCCGCCGGACCTGGGACGAGCTCGAGCGGCGCTCTGCCGAGCGTGCCCACCGCCTCGTCGACCCGCTCACCGAGCGTCAGCGCGCCCGGTTGTCCGCGGCGCTGGCCGAGGCCGACCTGCTCGTGCGCGCCGCCACCGTCGAGCTGGAGACGGTGGCACCCACCACGCCCCTCGCGCGGCGTGCCGTCGCCGCTTACCTGACCGAGGTCGGCACGCGGATCGGGGGCGCGGGCACGTTCGACGTCGAGGCCGAGCTCGCCGCCGACGCCGGACGACTCGCCCCGCCGCACGGCGCGTTCGTCGTCGCCACCTCCGCGGGCGCGCCCGTCGCGTGCGGCGGGGTCCAGGCGCTCGCCGGCGGCGGCGCGGAGATCAAGCGGATGTGGGTCGACGACGCCTGGCGCGGCGCCGGGCTCGGGTCCCGGCTGCTGCGCCGGCTGGAGGAGCTCGCGCGCGAGCTCGGGCACGCCGTCGTCCACCTCGACACGAACGCCGCGCTCACCGAGGCGATCGCGATGTACGAGCGGGCCGGCTACCGGCAGGTCGAGCGGTACAACGACAACCCGCACGCCACGCACTTCTTCGCGAAGGACCTCACCTGAMSVSDPVDVLRRFNRGYTQRVGALEESFLGLGMPLGTARLLYEIGVEPGTTRSLRTRLGLDSGYLSRLLRRLEDDGLVALGPDPVDRRRRRVALTAAGRRTWDELERRSAERAHRLVDPLTERQRARLSAALAEADLLVRAATVELETVAPTTPLARRAVAAYLTEVGTRIGGAGTFDVEAELAADAGRLAPPHGAFVVATSAGAPVACGGVQALAGGGAEIKRMWVDDAWRGAGLGSRLLRRLEELARELGHAVVHLDTNAALTEAIAMYERAGYRQVERYNDNPHATHFFAKDLTNANANANANA
AK018_001131011fgd1_1COG2141F420-dependent glucose-6-phosphate dehydrogenase 1ATGGCAGCTTCGAAGGACCTCACCGTCGGCTACGCCGCGATGCTCGAGCAGTTCCACCCGACCGACGTGGTCGACTACTCCGCCTATGCCGAGGAGCACGGCTTCGACGGCGTCATGGCCGCCGACCACTTCCAGCCGTGGGTCCCGCAGCAGGGGGAGGCCGCGTTCGTCTGGAACGTGCTGACCGCCCTGGGCGAGCGCACCCGTGGGGACCTCGGCCCCGGCGTGACGTGCCCCTCCTTCCGGTTCCACCCGGCGATGGTGGCGCAGGCCTCGGCGACCCTCGCGGCGATGTACCCGGGCCGGCACTGGCTCGGCCTGGGCTCGGGCGAGGCGCTCAACGAGCACGTCACGGCCGGCTACTGGCCCGAGGCGCCCGAGCGGATCAACCGCATGTTCGAGGCCATCGACATCATCAAGAAGCTCTTCGCCTCCGGCGTCGACGGCAAGGACGTCAAGCACTCCGGGCAGTTCTACAAGATGGAGTCCACCCGGCTGTGGACCATGCCCGAGGTCCCGCCGGAGATCCTCGTGGCCACCGCCGGGCCGATCACGGCCAAGCGGGCCGGCAAGCACGCCGACGGCCTGATCACCGTCGGGGCGCCGCTGGAGAAGATCGAGATGCTGTTCGGACGGTTCGAGGCCGGCGTCAAGGAGTCCGGCCGGGACGCCTCGACGATGCCGAAGGTCCTCCAGGTGCACATGTCCTGGGCCGAGACCGACGAGGAGGCCATGGCCAACGCCATGACCGAGTGGCCGAACGGCGGCATGAAGTTCCCCAAGGCCGACATCCGCTCGCCGCACGACTTCGCCCAGATGGCCAAGCTCGTCCGCCCCGAGGACTTCTCCGGCCGGATGGTGGTCGCCGCGGACCCCGACAAGCACCGCGAGGCCATCCAGCAGTACGTCGACCTCGGCTTCGACCGCATCTACCTGCACAACGTGGGCCGGAACCAGAAGGAGTGGATCGAGGTCTTCGGCCGCGAGGTGCTGCCGAAGCTGGTCCGGTGAMAASKDLTVGYAAMLEQFHPTDVVDYSAYAEEHGFDGVMAADHFQPWVPQQGEAAFVWNVLTALGERTRGDLGPGVTCPSFRFHPAMVAQASATLAAMYPGRHWLGLGSGEALNEHVTAGYWPEAPERINRMFEAIDIIKKLFASGVDGKDVKHSGQFYKMESTRLWTMPEVPPEILVATAGPITAKRAGKHADGLITVGAPLEKIEMLFGRFEAGVKESGRDASTMPKVLQVHMSWAETDEEAMANAMTEWPNGGMKFPKADIRSPHDFAQMAKLVRPEDFSGRMVVAADPDKHREAIQQYVDLGFDRIYLHNVGRNQKEWIEVFGREVLPKLVRNANANANANA
AK018_00114822fbiB_1COG0778Bifunctional F420 biosynthesis protein FbiBGTGACGGCAGTCCTCGACGGCGCCCGCCTGACGCTGTGGGCGCCGGCCGGGCTGGGTGAGGTCCGTCCCGGCGACGACCTCGCGGCGCTGGTCGGCGACCTGCTCGCCCGTGACGCGGAGGGTTCCGGCGACCCGCTCGCCGAGGGCGACGTCGTCGTGGTGACCTCCAAGATCGTGTCCAAGGCCGAGGGCCGCGTCGTGCGCGCCACCGACCGCGAGCAGGCGATCACCGACGAGACCGTGCGGGTCGTGGCCACCCGGGAGCGGCCCGACGGGCTGCCGCCCCTGCGCATCGTGGAGAACCGGCTCGGTCTCGTGATGGCCGCGGCCGGAGTGGACGCCTCGAACACGCCGGACGGCACGGTGCTGCTGCTGCCGAAGGACCCGGACGCCTCGGCGCGGACGGTGCGGGCCGCGTTGCGGGACCGGTTCGGTCTCGACCGGCTCGGCGTCGTCGTCACCGACACCGCGGGCCGCCCGTGGCGCGACGGCGTGACCGACGTCGCGATCGGCGCCGCCGGGCTGCACGTGGTCGACGACCTGCGCGGCGGGGTGGACTCGCACGGGCGGCCGATCTCGGTCACGGTGACGGCGGTGGCCGACGAGATCGCCGCGGCCTCGGAGCTGGTGCGTGGCAAGGCCTCCGGCCGGGCCGTGGCGGTGGCGCGCGGGCTGTCCCGGTTCGTGCGCGGGGGGACCGGGCCGGACGGCGACGGCCCGGGTGCCCGGGTCCTGGTGCGGACGGGGCCCGACGACCTGTTCCGCGAGGGCAGCGCGGAGGCCTACGCGCGGGGTGTCGCGGACGGTCGCGCGAGCCGCTAGMTAVLDGARLTLWAPAGLGEVRPGDDLAALVGDLLARDAEGSGDPLAEGDVVVVTSKIVSKAEGRVVRATDREQAITDETVRVVATRERPDGLPPLRIVENRLGLVMAAAGVDASNTPDGTVLLLPKDPDASARTVRAALRDRFGLDRLGVVVTDTAGRPWRDGVTDVAIGAAGLHVVDDLRGGVDSHGRPISVTVTAVADEIAAASELVRGKASGRAVAVARGLSRFVRGGTGPDGDGPGARVLVRTGPDDLFREGSAEAYARGVADGRASRNANANANANA
AK018_00115495hypothetical proteinATGAGCTCCCCGACGACTTCACACCCCGCCGTCGAGCAGGTCCGTGCCGCGCTGGTCGAGGCCGGTGCCACGGACGCGGCGCACGGGATCCGCTGGTTCGACGACGCCGTGACCACCGCCGCGGCGGCGGCCGACGCCCTGGGCGTCGAGGTCGCCGCGATCGCCAACTCGCTCGTCTTCACCCTCGACGACACCCCGCTGCTGGTGCTGACCTCGGGCGCGCACCGCGTCGACACCGCGTTCCTGGGTGAGCGCCTCGGAGGCCGCATCGGGCGGGCGTCGAAGGAGCTCGTCAAGGAGGCCACCGGCCAGGTGATCGGCGGGGTCGCGCCGGTGGGGCACCCCGCTCCGGTGCGCACGGTGGTGGACACCGCCCTGGCCGACCTCGACGTCGTCTGGGCGGCCGCCGGGCACGCCCGGACGGTGTTCCCCACGACCTTCGACGAGCTGGTGCGCCTCACGGGCGGACAGCCGTCGCCCGTCACGCCGGACTGAMSSPTTSHPAVEQVRAALVEAGATDAAHGIRWFDDAVTTAAAAADALGVEVAAIANSLVFTLDDTPLLVLTSGAHRVDTAFLGERLGGRIGRASKELVKEATGQVIGGVAPVGHPAPVRTVVDTALADLDVVWAAAGHARTVFPTTFDELVRLTGGQPSPVTPDNANANANANA
AK018_00116789hypothetical proteinATGACCCACCACGTGACCAGCGTGGCCGGGGACCGGGTCGGGTTCGACCGCGACGGCGAGGGTCCCGCGGTGGTGTTCGTCGCAGGGGCGGGCCCGTTCCGGGCCGTCGACCCGGTGACGACCGAGACGGCCGCGCGCTGCGCGCAGCAGGGCCTCACGGCAGTCGTCTACGACCGGCTCGGGCGGGGCGACAGCCCGGCCGACGGCGTGCTCGACCTCGATCGCGAGCTGTCCGCCCTGCACGCCGTGATCGACGCGGCCGGTGCCCCGGCGGTGCTGGTCGGTCACTCCTCAGGCGCTGCGCTGGCCCTGTGCGCCGCGGACGCGGAGCTGCCTGTGTCCGGGCTCGTGCTGTGGGAGGCACCGCTCGCGCGGTCCGCGGAGGACACGGTCGCGTGGATCACCGAGTTCGAGGAGCGGCTCGACGCCGAGGACTACGTCGGCGCCCTCGAGCAGTACATGAAGGACATGCCGGCCGAGTGGTTGGAGGGGCTGCGTGCCTCGCCGGACTTCGAGCAGATCGCCCGTACCTCGATCAGCCAGCGTGCGGACGGTCAGGCGCTGGTGCGTGCCACCGACCTCCTCGAGGCCGACCTGCTGCGTGAGCTGGCGGTACCCGTCCTGGCGACCTACGGCACGAGCACCTTCGACGAGATGCCCGTCGCGGCGCGACGCATCGCCGGTGCCGTGACCCGCGGCACCGAGCGGGAGGTCGCCGGCGCCGACCACACCTGGGACGTCGGCGCGATGGCCGACCAGATCGTGCGGTTCGTGCGCGACGAGACCTGAMTHHVTSVAGDRVGFDRDGEGPAVVFVAGAGPFRAVDPVTTETAARCAQQGLTAVVYDRLGRGDSPADGVLDLDRELSALHAVIDAAGAPAVLVGHSSGAALALCAADAELPVSGLVLWEAPLARSAEDTVAWITEFEERLDAEDYVGALEQYMKDMPAEWLEGLRASPDFEQIARTSISQRADGQALVRATDLLEADLLRELAVPVLATYGTSTFDEMPVAARRIAGAVTRGTEREVAGADHTWDVGAMADQIVRFVRDETNANANANANA
AK018_001171218hypothetical proteinGTGACGTCGACACCCGCCATCCCGGCCAGCAGCACCCGTCCTCCGCACGATCCGCACCCACCGACCCCCGGGACGACCGGACTGTCCCCGGCGGCGCGCACCCTGCTCGCCCTGGCCTGCGGCGTGCTGGTGCTCGCGGGCATGGCCGCGGCGGCCGAGGTGCTGGCACCGCTGTTCCTGGCGGCCGTCATCGTGATCATCTGCCACCCGGTCCGGTTCCCGCTGCTGGCGCGGGGATGGCCGAGCTGGCTGGCCACCACGACCGTCATCCTGGTCGCCTACCTCATCCTGGCGGCCCTGGTGGGCATGCTCGTCTGGTCCGGGTTCCGGTTCGCGGCTCTGGTACGGGAGTTCCTCCCCCAGCTCAGCGAGTCCGTGGCGGAGATCCAGGGGCAGCTCGCCGCCGCGGGTCTCGACACCCAGATCGCCGAGGCCGTCACGGGATGGTTCCAGCCGTCCAACATCCTGTCGCTCGCGGGCGGCGTCAGCTCGGTCGCGCTGGGCATCGGCACGGCGTTCTTCTTCGTCCTGGCCTACGCCGTGTTCATGGCGGCCGACGCCGGTCGCTACTCCACGGCGTCGCAGCGCTTCGGCGTCTCGCGCGCGGGGGCCATCGACCGCGCCACCCGGTTCAGCAGCGGGGTGCGGCGGTACTACGTCGTCAACGCCTCGTTCGGCGCCGTCGTGGCGGTCGTGGACGGCGTCGCGCTGTGGCTGCTCAACGTCCCCGGCGCAGCCATCTGGGCGATCCTGGCGTTCGTCACCAACTTCGTGCCGAACATCGGGTTCATCCTCGGCCTGGTGCCGCCCGCCATCATGGCCTTCGTCGTCGGCGGCTGGCAGCTCGCGCTGGCTGTGGTCGCGGTCTACTGCGTGGTCAACGTGGTGCTGCAGGTGTTCGTCCAGCCGAAGTTCGTCTCGGACGCCGTGTCGCTGTCGCTGACGCTCAGCTTCGTCTCGGTCGTCTTCTGGACCTTCGTCATCGGCCCGCTCGGCGCGATCCTGTCCATCCCGCTGACGCTGCTCGTGCGGGCGCTGCTGCTGGAGGGCGACCCGCGCAACGCGTGGTTGCGGTGGCTGTCGGGAGACGACGTCGAGCCCGCCGAGGAGGACTCGCACGACCGGGACGCCGTCGGCCGCCGGGAAGCCGACCACGACGAGGAGCCGACGGCGGACGGCGGCCTCGACGGCGAGCCGGCCGACGAGCACGGTCGCTGAMTSTPAIPASSTRPPHDPHPPTPGTTGLSPAARTLLALACGVLVLAGMAAAAEVLAPLFLAAVIVIICHPVRFPLLARGWPSWLATTTVILVAYLILAALVGMLVWSGFRFAALVREFLPQLSESVAEIQGQLAAAGLDTQIAEAVTGWFQPSNILSLAGGVSSVALGIGTAFFFVLAYAVFMAADAGRYSTASQRFGVSRAGAIDRATRFSSGVRRYYVVNASFGAVVAVVDGVALWLLNVPGAAIWAILAFVTNFVPNIGFILGLVPPAIMAFVVGGWQLALAVVAVYCVVNVVLQVFVQPKFVSDAVSLSLTLSFVSVVFWTFVIGPLGAILSIPLTLLVRALLLEGDPRNAWLRWLSGDDVEPAEEDSHDRDAVGRREADHDEEPTADGGLDGEPADEHGRPGPT0025496_15DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-BF-RELATED-AI-2_TRANSPORT,PGPT0025496-tqsA|ydgG-K11744NANA
AK018_00118447hypothetical proteinGTGCGTGGTGACGTGGTGCGGTACGACGCGGTCAAGGGATACGCCTTCGTCGCGGCGGACGAGCTCGACGAGGACGTGTTCCTCCACGTGAACGACCTCGACTTCGACAAGTCGCTCCTGGCGGTCGGCACGGTCGTGGATTTCACCCACGAGATGGGCGAGCGGGGGCCGCGCGCGCTGAGCGCCTCGCTGATCTCCTCCCCGGTGGCCGAGGCGGTGCAGGCGGCGATGGGCGGCGGCCCGTCGCGCGAGCACGCCGCGCCGCCGTCGTCCGCGCCGGAGGGGCACCACGACGGCTACGCGGACGTGCTCTCGGCCGCCGAGCTGCGCACCGAGGTCACCGAGAAGCTGCTCGCGGCGGTCGGGGACCTCACCGCACGCCAGGTGCTGGCGGTGCGCACCGCCGTCGAGCAGGTCGCTCGGCGGCACGGCTGGCTGGACGCCTGAMRGDVVRYDAVKGYAFVAADELDEDVFLHVNDLDFDKSLLAVGTVVDFTHEMGERGPRALSASLISSPVAEAVQAAMGGGPSREHAAPPSSAPEGHHDGYADVLSAAELRTEVTEKLLAAVGDLTARQVLAVRTAVEQVARRHGWLDAPGPT0014675_833DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_001191158corA_1COG0598Cobalt/magnesium transport protein CorAATGGCCTTCAGCTCCAACCGTTCGGTCCGCACCCGCCAGATGCTGGGCGCGCTGCGCCCGCGTCGACCCGGCACGCAGCAGGTGCCGGGATACCCGGAGAACGAGCCGACACCCCCCACCCCGATCCGTCCGCGCTCGGCGATGGTGGCCGCCGCCGTCTACGACGACGAGGGCCACCGCAGCGCGAGCTTCACGCGGCTCGCCGACGCCTTCCGTGCCCTGCGCTCCACCCCCGGCGGCATGGCGTGGATCGGCCTCGAACGCCCGGACGAGCACGAGCTCGCCGCACTGGCCCGCGAGTTCGACCTGCACCCGCTGGCGATCGAGGACGCGATCCAGGCGCACCAGCGCCCCAAGATCGAGCGCTACGGCGAGACGCTGTTCGTCGTGCTGCACGCCGCGCGCTACCTGGACTCGATCGAGGAGGTGGAGTTCTCCGAGCTCCACCTGTTCGTCGGCCCCGACTTCGTGGTCTCGGTGCGGCACGGGGACTCCCCCGACCTCAGCGCCGTGCGCGCGCGGCTGGAGTCGACGCCGCAGATGCTCGCCCGCGGCCCCGAGGCCGTGCTGTACGCGATCATGGACCGCGTCGTGGACGACTACGCACCCGTCGTCTCCGGCCTGGACTACGACATCGACCAGATCGAGGGCGAGGTCTTCTCCGGCGACGCCCACGTCTCGCGGCGCATCTACGAGCTGTCCCGCGAGGTCGTCGACTTCCAGCGCGCGGTCCGCCCGCTGCAGAACGTCTGCCTGTCCCTGGCCAAGGGCGCCGAGAAGTACGGCGTCGACTCCGAGCTCCAGGCCTACCTGCGCGACGTCGCCGACCACCTCATCGAGGTCGCCGAGTCCGTGGAGACCTACCGTGTCGCGCTGCGCGACATCCTCACGGTGAACGCCACCCTCGTGGCCCAGCGGCAGAACGAGGAGATGACGCACCTGACCGAGGTGTCCATCAAGCAGGGCGAGGAGGTCAAGAAGATCTCCGGCTGGGCGGCCATCCTGTTCGCCCCGACCCTCGTCGGCACGGTCTACGGGATGAACTTCGACGTGATGCCCGAGCTGCACTGGGCCTGGGGCTACCCGGTGGCGCTCGTGCTCATGGTCGGCGTCTCCGTGAGCCTGTTCGCCGTCTTCCGCTGGAAGAAGTGGATCTGAMAFSSNRSVRTRQMLGALRPRRPGTQQVPGYPENEPTPPTPIRPRSAMVAAAVYDDEGHRSASFTRLADAFRALRSTPGGMAWIGLERPDEHELAALAREFDLHPLAIEDAIQAHQRPKIERYGETLFVVLHAARYLDSIEEVEFSELHLFVGPDFVVSVRHGDSPDLSAVRARLESTPQMLARGPEAVLYAIMDRVVDDYAPVVSGLDYDIDQIEGEVFSGDAHVSRRIYELSREVVDFQRAVRPLQNVCLSLAKGAEKYGVDSELQAYLRDVADHLIEVAESVETYRVALRDILTVNATLVAQRQNEEMTHLTEVSIKQGEEVKKISGWAAILFAPTLVGTVYGMNFDVMPELHWAWGYPVALVLMVGVSVSLFAVFRWKKWIPGPT0014010_319DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284NANA
AK018_001201053Alcohol dehydrogenaseATGCGCGCCGTCGCCTACGACGCCTTCGGCGGTCCCGTCACGGTCCGTGAGCTGCCCGAGCCCGTCGCGCCCGACGGCGGCGTCGTGGTGCGCGTGCACGCCACGGGGCTGTGCCTGAGCGACTGGCACGGCTGGGCCGGCCATGACGGCGACATCACCACGTTTCCGCACGTGCCGGGCCACGAGCTGGCCGGCACGGTCGCCGCCGTCGGCGCCGGGGTGCGGCGGTGGAGGGTCGGCGACCGCGTCACCACGCCGTTCGTCTGCGGCTGCGGACGCTGCGCGTGGTGCCGGGCGGGCGACGCCCAGGTCTGCCCCGACCAGACCCAGCCCGGGTTCACCCACCACGGCTCCTGGGCCGAGCTCGTGGCTCTGCACGCGGCGGACACCAACCTCGTCGCGGTGCCGGACGACGTCACCGACGCCACCGCGGCGGCCCTCGGCTGCCGCTTCGCCACCGCGTTCCGCGCCGTGGCGCACCGTGCCCGCGTGCGCGCGGGAGAGCAGGTCACCGTCGTCGGGGCCGGCGGCGTCGGCCTGAGCGCCGTCATGGTCGCGGCCGCCCGCGGGGCCCGGGTGATCGCCGTCGACCGCGACCCCGCCGCGCTGGAGGCCGCTCGCCGCGCCGGGGCCGAGCACACCCTCCTGGCCGACGGCACCGACGGCACCGACGTCACCACCGCGATCCACGACCTGTCCGACGGCGGCACCCACGTCGCGCTCGACGCCGTCGGCTCGCCGGACACCTGCGCGACGGCGATCGGTGCGCTGCGTCGCCGGGGCCGGCACGTGCAGGTCGGCCTGCTGCCCGCCGTCGAGGGCCGCCCGCCGGTGGCGATGGACCGGGTCATCGCGCTCGAGCTGGACGTGCTGGGTTCGCACGGCATGTCCGCGGCCGACTACCCGGCGATGATGGGGCTCGTCGGCGACGGGACGCTGCGTCCGCAGGACCTCCTCGACGGTGTCGTGGACCTCGCGGCGGCGGCCGACCTGCTGCCGCGGATGCGCGAGCGCAGCACGGCGGGCCTCACGGTCTGCGACCCGCGCCGCTGAMRAVAYDAFGGPVTVRELPEPVAPDGGVVVRVHATGLCLSDWHGWAGHDGDITTFPHVPGHELAGTVAAVGAGVRRWRVGDRVTTPFVCGCGRCAWCRAGDAQVCPDQTQPGFTHHGSWAELVALHAADTNLVAVPDDVTDATAAALGCRFATAFRAVAHRARVRAGEQVTVVGAGGVGLSAVMVAAARGARVIAVDRDPAALEAARRAGAEHTLLADGTDGTDVTTAIHDLSDGGTHVALDAVGSPDTCATAIGALRRRGRHVQVGLLPAVEGRPPVAMDRVIALELDVLGSHGMSAADYPAMMGLVGDGTLRPQDLLDGVVDLAAAADLLPRMRERSTAGLTVCDPRRPGPT0006375_1068DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
AK018_00121693gpmB_1phosphoglycerate mutase GpmBATGACCCTCACCCTCACGCTCGTCCGCCACGGGCAGACGACCCTCAACGCCCGCCGCCACCTGCAGGGCGCCTGCGACTCGCCGCTGACGCGGACGGGCCGTGCCGGTGTCCGGGTCACGGCCCAGCACCTGGCCGACCAGTCGTTCGACGCCGTCTACTCCTCCCCGCAGGGCCGGGCGGTCCAGACGGCCACGGAGATCCTCAAGCACCACCCCGACCAGCGGCTGCGCATCGACGAGGGCCTGCGAGAGCTGTCGTTCGGCAGCTTCGAACGGCGGCCCGAGCACACCCTCGACGCCGAGGTGCCGTGGACCGAGCTCGTCCCCGCGATGCTCGCGGGCACCCACCCGGGCGTCGGCGGCGGGGAGTCCGGCGGCGACTTCATGCACCGGGTCCGCGGCACCTTCCGGCGCATCCTCGCCGAGCACGCGACGGCGCCCGCGGGCGCCTCGCACGGAGCGGCAGCGCCCCGCACGGCGCACGTCCTCGTCGTCGGGCACGGCCTGACGCTCGCCGCCTACCTGTGGACCGTCGACCCGTCCGGGCTCACCGCGCTGCCGAACGCCTCCGTCTCGACCGTCGAGGTGTCCGACGGCGCAGCCCGCGTCGTGCGCGCGGGCGTCGACGTCGCGGGCCACGGCGCCGTGGCGGCGCGCCCCGCCCCGGCACCCGCGGCGGCCGCCGCACGCTGAMTLTLTLVRHGQTTLNARRHLQGACDSPLTRTGRAGVRVTAQHLADQSFDAVYSSPQGRAVQTATEILKHHPDQRLRIDEGLRELSFGSFERRPEHTLDAEVPWTELVPAMLAGTHPGVGGGESGGDFMHRVRGTFRRILAEHATAPAGASHGAAAPRTAHVLVVGHGLTLAAYLWTVDPSGLTALPNASVSTVEVSDGAARVVRAGVDVAGHGAVAARPAPAPAAAAARPGPT0018035_321DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018035-gpmB-K15634NANA
AK018_001229482-haloacrylate reductaseATGCGCGCAGCACTCGTCCAGCAGTACGGTCCGCCCGACGTCGTCCGCGTCGCCGATGTCTCCGCGCCCACGCCAGGCCGGGACGAGGTGCTCGTGCGGGTCCGCGCCGCGGCCGTCACGGTCGCCGACGCCCGCATCCGCGGGTCCCGGTTCCCCCGGGGGTTCCGCCTCCTCGCCCGGCTCGCCCTGGGGCTCCGCCGGCCGCGCCGCCCGATCCTCGGCGGCGTCTTCTCCGGTGTCGTCGAGCAGGTCGGCCAGGACGTCACGACTCTTTCCCGGGGCGACGAGGTGGCGGGGATGACCGGCACCCGGATGGGCACTCACGCCGAGCTCGTCGTCGTGCCCGCCGACCGCACCGTCCCGAAGCCCGACGGCGTCAGCCACGAGGACGCCGCGGCCGTGCTGTTCGGCGGCACCACGGCGCTGCACTACCTGACCCGGCGAGCCGAGGTCGGCCCCGGCACGTCCGTGCTCGTGGTCGGCGCGTCGGGCGCCGTCGGCACCGCGGTCGTCCAGCTCGCCGCCCACCGGGGCGCCACGGTCACCGGGGTGGCGAGCGCGGCCAACCTCGACCTGGTCCGGCGGCTCGGTGCCCACCACGTCGTCGACTACAGGACCACACCGGTGCAGGAGCTCACCGGTCGCTACGACGTGGTCGTCGACGTCGTCGGCGCGCTGAGCACCCGGGCCGGGCGACGCCTGCTCACCGACGACGGCGTCCTGCTGCTGATCACGGGCACGTTCGGGCAGTCGCTGACCTCCGTCGGCCGGGTGCGCTCCGGCCCCGCGCCGGAGAAGCCGCAGGACGTCGCCGAGCTGCTCCGCCTCGTCGCCGAGGGAGCGCTGACTCCGGTCACCGAGTCCGTCGTCGGGCTGGACGACGTCGCTGCCGCGCACGCCCGGATCGACACCGGACACAAGGTCGGCAACATCGTGCTCACGCCGTGAMRAALVQQYGPPDVVRVADVSAPTPGRDEVLVRVRAAAVTVADARIRGSRFPRGFRLLARLALGLRRPRRPILGGVFSGVVEQVGQDVTTLSRGDEVAGMTGTRMGTHAELVVVPADRTVPKPDGVSHEDAAAVLFGGTTALHYLTRRAEVGPGTSVLVVGASGAVGTAVVQLAAHRGATVTGVASAANLDLVRRLGAHHVVDYRTTPVQELTGRYDVVVDVVGALSTRAGRRLLTDDGVLLLITGTFGQSLTSVGRVRSGPAPEKPQDVAELLRLVAEGALTPVTESVVGLDDVAAAHARIDTGHKVGNIVLTPNANANANANA
AK018_00123642tetR_1Tetracycline repressor protein class A from transposon 1721ATGGCACGTGTCGCGTTGACCAGCGAGAAGATCCTCGACGCTGCTGCCGGCGTCGCCGACGACGGCGGGCTGGCGGCCGTCAGTATGCGCAACGTCGGACGGCGCCTCGGTGTCGAGGCCATGTCGCTCTACCACCACGTCGCGAACAAGGAAGCCCTGCTCGACCAGCTCGCCGACTGGGTGTTCGCCCGCATCGAACTGCCTGTCGTGGGCGACCCGTGGCGACCGGCGATGGCGGCCCGCGCCGCCTCGGCGCGGACCGTGCTGGCGGCGCACCCCTGGGCGCTCGGCCTCGTGGAGTCGCGGCGCACGCCCGGCCCCGCCCTGCTGCACCACCACGACACCGTGCTCGGGTGCCTGCGGGCCGGCGGATTCTCCGTCGCGCTGGCGAGCCAGGCGTTCGCCGCCATCGACTCCTACGTCTACGGATTCGTGCTGACCGAGCAGAGGCTCCCGTTCGACGCCGCGGGAGAGGCCGGCGCGTTCGTGGCGGACGTCGACCTGCCTGTGGGCGACCATCCCCACCTCGCCGAGATGGTCGACGAGATCGTCATGGGTGGCGACTACCGGTTCGCCGACCAGTTCGACGACGGCCTCGAGCTGATCCTGGACGGCCTCGAGCGTCGGCTCGGCGGGGACTGAMARVALTSEKILDAAAGVADDGGLAAVSMRNVGRRLGVEAMSLYHHVANKEALLDQLADWVFARIELPVVGDPWRPAMAARAASARTVLAAHPWALGLVESRRTPGPALLHHHDTVLGCLRAGGFSVALASQAFAAIDSYVYGFVLTEQRLPFDAAGEAGAFVADVDLPVGDHPHLAEMVDEIVMGGDYRFADQFDDGLELILDGLERRLGGDNANANANANA
AK018_00124435hypothetical proteinATGAGCATGGACAGCGGACCGCGCTACTACGACCTGGACGGCATGCCCGTCTCCGAGGCGCGGTGGGCGGTCATGTGGCACACGGAGGACCGGTGCGTCGCGCAGACGCTCGTCGGGGCGGACTACGTCGTCGAGGCCCGCTGGGTCGGGACCGACCGGGAGGACCGCCGGCTCGGACCGCCGCACATCTACCGGGTCAGCGTCCATCCCCTGGGATACCTGCTGCCCGCGCACGCCGACGACGACACTCCCGCCACGCTGCTGCTCACCGACGAGACCGTGGTCGAGGAGTCCTTCGCCGACCGGTCCGCCGCCGTGGCGCGGCACGATCAGCTCGTGGCCGCGCTGCGGGACCGGCTCGCCGCGGCGTCCTACCTCACCAGCGGGTGCGTCCCGCTGCGCGACCTGCTCACCGAGCCGTTGACCCCGGCCTGAMSMDSGPRYYDLDGMPVSEARWAVMWHTEDRCVAQTLVGADYVVEARWVGTDREDRRLGPPHIYRVSVHPLGYLLPAHADDDTPATLLLTDETVVEESFADRSAAVARHDQLVAALRDRLAAASYLTSGCVPLRDLLTEPLTPANANANANANA
AK018_00125762ddaH_1COG1834N(G),N(G)-dimethylarginine dimethylaminohydrolaseATGCCCGGCACCCTGCTCGTCCGCCCGCCCTCGCCCCGCCTCGCCGAGGGCGAGCTGACCCACCTCGACCGCGTCCCGGTCGACGCCGACCTGGCCCGCCGCCAGTGGCAGGAGTACACGACGCGGTACGCCGACCGCGGCTGGCAGCTCGTCGAGCTCCCCGCTGCGGACGAGCACCCGGACGGCGTCTTCGTCGAGGACGCCGTCGTGGTCTTCGACGACCTCGCCGTGCTCACCCGCCCGGGCGCGGAGTCCCGCCGGGGCGAGGTCGCCAGCATGCGCCCCGTCGTCGAGTCCCTCGGCCTGGAGGTCGCCGCGATCGAGGCACCCGCCACCCTCGAGGGCGGGGACGTGCTCAAGGTGGGTCGCACGGTCTACGTGGGCCGCTCCAGCCGTACCGACGACGACGGCGTGGCCCAGCTCCGCGCGCTCCTGAAGCCGCGCGGGTGGCAGGTCGTGTCGGTGCCGGTCACCCGGGTGCTGCACCTCAAGAGCGCCGTCACGGCGCTGCCGGACGGCACCGTGATCGGCCACGAGCCGCTGGTCGAGGCGCCCGAGCTGTTCGAGCGGTTCGTGCCGGTCCCCGAGGCCGAGGGGAACGCCGTCGTCGTCCTCGACGAGGGCACGGTGCTGCTGTCCGCGAGCGCCCCGCGCACGGCCGAGCTCCTGCGAGCCCGCGGTCTGGAGGTCGTCACCACGCCGGTGACGGAGTTCGAGAAGCTCGAGGGCTGCGTCACGTGCCTGTCCGTCCGGGTGCGCTGAMPGTLLVRPPSPRLAEGELTHLDRVPVDADLARRQWQEYTTRYADRGWQLVELPAADEHPDGVFVEDAVVVFDDLAVLTRPGAESRRGEVASMRPVVESLGLEVAAIEAPATLEGGDVLKVGRTVYVGRSSRTDDDGVAQLRALLKPRGWQVVSVPVTRVLHLKSAVTALPDGTVIGHEPLVEAPELFERFVPVPEAEGNAVVVLDEGTVLLSASAPRTAELLRARGLEVVTTPVTEFEKLEGCVTCLSVRVRNANANANANA
AK018_00126711hypothetical proteinATGGGAACGAGCCTGGCCGGGGGCCAGTCCCTGCTCGACCGACTCCCCGGGCAGGAGGACCTGCTGGAACAGGGCGTCCGGTTCCGCCCGCGGTGGTGGACCTCGCGGGTACCGGCGTCCTCGTGGCTCGAGGAGCTCCCGGCGGACCCGACCGACCCGGAGCGCCGCCGACTCTCGCGCGGCCGGATGCTCGCCGCCGCCGACGGGGCGGACGGAGGGGAGTCGCAGGCCTTGCTCGCGTCGTGCGCGTGGAGTGCGGGGGACCGGGCCCTCGTGGCGAGCCGCAGCGCGCGCGCCCTCGTCGAGACGGAGCCGAGCGAGCTCCTGTCACGGCTCCGGCTGGCCGCCAAGCATCTCGGCACGGCGCGGGGAGCGGTCGACGCCTACCGCGCGATGCAACGTGGGGGAGCGGCGAACGTGAAGCACCTCGGGCCCGCGTCGTTCACGACGTTCCTGTACGTCGCCGACTTCGGGACCCGCGGCGGCGTGCGCGGCGGTGACGCGCTGATCATGGACCGGTTCGTCGTCCGCGCGCTGGACGACCTGCACGGCCTGTCGGTGCCCGACGGCGGTCCGTGGTCCGTGGACCTGTACGCGCGCTGGCTCGACATCGCCGCGGAGCAGGCATGGCTGGCCACGGTCGAGCTCGGCCGCTCGGTGCGCAGCGACGAGATCGAGTACGCCTACTCGGAGCACGGCCGGGTGCTCTGAMGTSLAGGQSLLDRLPGQEDLLEQGVRFRPRWWTSRVPASSWLEELPADPTDPERRRLSRGRMLAAADGADGGESQALLASCAWSAGDRALVASRSARALVETEPSELLSRLRLAAKHLGTARGAVDAYRAMQRGGAANVKHLGPASFTTFLYVADFGTRGGVRGGDALIMDRFVVRALDDLHGLSVPDGGPWSVDLYARWLDIAAEQAWLATVELGRSVRSDEIEYAYSEHGRVLNANANANANA
AK018_00127246hypothetical proteinATGCTGCGATTCGCGGCCGAGGACCTCCCCATCCGGCTGGGCGAGACCGTCGCTCGTATCGACCGGGACGACCCGACGTTCGTCGACAGCCGGCCGGGGCTGGAGCTTCGCCGCGTCCAGGAGGCCCGCAGCCTCGTGGCCCACGGCTATGACGTCGTCGACGCCGCGATCGTGTGGTCGATCCTGGAGAACAACATCCCGGTCGTGGCAGCTCGCGTGGCCGACCTCCTGGGCAGGACCCGCTGAMLRFAAEDLPIRLGETVARIDRDDPTFVDSRPGLELRRVQEARSLVAHGYDVVDAAIVWSILENNIPVVAARVADLLGRTRNANANANANA
AK018_00128159hypothetical proteinATGATGCGGAGGTGTGGGGACACCCCCGCGAGCGACCTCGACATCGTCGTGCATGTGCCACCCGAGGCCGCGTGGACGTTCGTCTCGACAGCCCGCGAGCTCTCCGACCTGCTGGGCGTCCACGTCGACGTCCTCAGCGACGGCGGCCTGCAGGAGTAGMMRRCGDTPASDLDIVVHVPPEAAWTFVSTARELSDLLGVHVDVLSDGGLQENANANANANA
AK018_001291269hypothetical proteinATGTCTCCCGTCTCCCGAGGCCGCAAGAAGAAGCCGCAGGTCAAGCGATCCCCGCGGGACAACCCGGCGTCCAGGAGCCGCTTCGCCGAGCAGCGGTTCGAGAACGCCCGCGAAGCCTTGCACCGTGAGCTCGCGGCGACGCCCGGCTGGTTCAACCCGGCCACGTCCAGCGTGCTGAGCTCGGCCGACGACCTGCTCGGCCTGGACGGGCCGCGCGACGTCGAGGACGCCGTCGTCCGACTCCTGGCGGTCCAGATGGCCGACGCGCTGGAGTCGGCCGACGCCGCGACCCCCTTCGAGCGCTGGTTCGCCTTCCTCGTCGAACGGGCGGGCATGGAGTTCGCCGAAGGCCTCGCGGACGACGCCGGCACGGCGTGGCGGGGGCCGCTGCGGCTGCTGTACGGACTGACGTCGATCTCCTGGGGTGAGCACCGCTCCGGGGCCGAGGACACGCTCGCTGCCGCACAGCTCGACCTGCGTGCCGCCGGCGTCGGGCAGGACGAACCGCGATGGCTGCGCGCCGCACCGCGCCTGCGGTCCTCCGGCGAGATCCATCAGGTCGCCGACCGATTCGGTGGCCGCCACGGCGTCTTCGCCGTGATGGACGACCGGTCCGGGCGAACAGCCGTCTACGCCTGGGACGTCGACGTCTGCTTCATGCCCGTCGTCGCCGGGGGAGGCTGGTTCGACGATCTCGACGCCGCGACCCGGTGGTGGCGCACGCAGGCCGGCGCGGCCGCGGTCGGGCCCGACGGCGACCTCGATCCACGCCCGACCCGGGACGTCGCACCCCTGCGCGAGCTGGACTTCATGCTGCACGGCGACGAGACCGGGACAGCCCTGGAGGAGTTCTTCCGGGCCCGGCGCCGGGTCGAGGACCTCGATCGGACAGCGTCCCTCGACGCCGGACGTTTCGTGCCTGACGTCGCGGCGCGGGCCGAGGAGTTCGAGGCCTGGCTGCGCGAGCGCGACGCCGGCGACGTGGACCCGGAGGTTCTCGACTACTTCGTGCACGAGGCGACCCGCGGAGACGTCACGCCGAGCGGCGTCGCGTCCGCGCACCGCGCCTTCTTCCTGCGCGACACGATCACCACAGAGGTGGATCCGGACCATGCCGTGTCCGGCGTGATGACGGCGCTGCTGCCCCTGTGGTTCCGCTTCCTCGGCGAGGGCCTCGCCCTGACGGGCGACGAGCTCGCCCGGCCGATCGACGTCGCCGGCGGCGCTCCGCTGGAGGACGACGACTGCCTCGGGGTCTTCGCGCGCTGAMSPVSRGRKKKPQVKRSPRDNPASRSRFAEQRFENAREALHRELAATPGWFNPATSSVLSSADDLLGLDGPRDVEDAVVRLLAVQMADALESADAATPFERWFAFLVERAGMEFAEGLADDAGTAWRGPLRLLYGLTSISWGEHRSGAEDTLAAAQLDLRAAGVGQDEPRWLRAAPRLRSSGEIHQVADRFGGRHGVFAVMDDRSGRTAVYAWDVDVCFMPVVAGGGWFDDLDAATRWWRTQAGAAAVGPDGDLDPRPTRDVAPLRELDFMLHGDETGTALEEFFRARRRVEDLDRTASLDAGRFVPDVAARAEEFEAWLRERDAGDVDPEVLDYFVHEATRGDVTPSGVASAHRAFFLRDTITTEVDPDHAVSGVMTALLPLWFRFLGEGLALTGDELARPIDVAGGAPLEDDDCLGVFARNANANANANA
AK018_001301290hypothetical proteinTTGAGTACGACCCAGACCCTGACCGCGACGACGCAGGTCACCGGGCCCGAGTCCACGCCGGACACGCACCGCAGCACCACCGTGCTGCAGGCCGTGGGCCGCACCTACTTCCCGCTGGCGTTCGTCGCGCGCCTGCCGTTCGCGATGATGGTCGTCGGCGTGCTGACCCTGGTGGTCGCCGGCCGCGACTCGCTCACGCTGGGCGGCGCGACGTCGGGCATGGTCGGCCTCGGAGGGGCGGCGATCGGGCCGCTCGTCGGGGCCTGGGCCGACCGCGCGGGCCAGCGTCGCGTCCTGCTCGCGACCGCCGCAGTGCACAGCCTGCTGCTCCTCGGCCTGACGGCCGCCGTGTACTCCACGGCGTCGGACGCCGCCGTCCTCGCGATCGCGTTCGCCATCGGCGCCAGCGCCCCGCAGGTGCCGCCGATGTCGCGCAGCCGCCTCGTGGCGATCATCCGCACGCGCCTTCCCGCGGCACGGCAGCAGCGCACCCTGAGCCGCACCATGTCGTACGAGTCCGCGGCCGACGAGATCGTCTTCGTCGTCGGACCGTTCGTCGTCGGCGTGCTGGCGGCGGCCTTCGGCCCCACCGCGCCGATGATCGCGGCGGCCGGGCTGACCGCCGTGGCTGTCGGGGCCTTCGCCCTGCACGCCACGTCGCGCACGACGGCGGCACCCGCCACGGGTGCGTCGGCCCCCGCTGCCCGTGTGGCCGGCTCCCAGGCGCCGGTCCAGGAGCTGTGGCACCGGCGCGTCCTGGTCCTGGTCGTCGGGTTCGTCGGCATCGGACTGTTCTTCGGTGCGACGCTGACCGCGATGTCCGCCGTGACCGGGGACGCCGGGCACTCCGAGCGGGCTGGGGTGCTGTACGGGTTCATGGGGATCGGGTCGGTCGTCTCGGCGCTCGCGGTCTCCGCGTTCCCGGCGCGGTTCAGCCTCCGCGCCCGCTGGCTGACGGCCGCCGTCCTGCAGCTCGCCGGTGCCGTCGTGGTCGCCACGTCGGACTCGACCGGCGTGCTGATCGTCGGGCTCCTGGTCGCCGGGCTCGGTGTCGGCCCGAGCCTCGTGACGATCTACTCGCTCGGTTCGGAGCGCAGCCCGCGCGGCCGCGGCACCACCCTGATGACCATGCTGGGTTCGTCGGTGATCCTGGGGCAGTCGGCGGCCTCGGCGGCCACGGGCGCGCTCGCCGACACGGTCGGCACGGGGGCCGCCCTGGCGACGCCGGCAGTCGCCGGAGGTGTCGTCCTGGCGGCCGCCGTCGCGAACTGGAGGCCGGCCGACCGCTAAMSTTQTLTATTQVTGPESTPDTHRSTTVLQAVGRTYFPLAFVARLPFAMMVVGVLTLVVAGRDSLTLGGATSGMVGLGGAAIGPLVGAWADRAGQRRVLLATAAVHSLLLLGLTAAVYSTASDAAVLAIAFAIGASAPQVPPMSRSRLVAIIRTRLPAARQQRTLSRTMSYESAADEIVFVVGPFVVGVLAAAFGPTAPMIAAAGLTAVAVGAFALHATSRTTAAPATGASAPAARVAGSQAPVQELWHRRVLVLVVGFVGIGLFFGATLTAMSAVTGDAGHSERAGVLYGFMGIGSVVSALAVSAFPARFSLRARWLTAAVLQLAGAVVVATSDSTGVLIVGLLVAGLGVGPSLVTIYSLGSERSPRGRGTTLMTMLGSSVILGQSAASAATGALADTVGTGAALATPAVAGGVVLAAAVANWRPADRNANANANANA
AK018_00131528hypothetical proteinATGGCACCTGCTGAACGCTGGGACGCGGACCTCGCCCGGGACGGGCGAGCGCAGATCACCGCGTCCCGCGCGCGGATGCTCTGGCCGCTCGCCGCGGCGGCCGTCTTCCTCGCCCTCGGGGTCGCCATGGTGAGCGACGAGGTCCGGCCACTGTCCGTCGCCGTCGTCGTGGTCTTCGCGGTCGGCGTCGGCGTCCTGCTGTGGCGGATCGTGCGCCCCGTCCGGCTCGAGGTCTCGCGGGACGGCGTCCGCTACCGACGTCTCGAGCTGTCGTGGGACGACGTCGTCGCGGTCCACGAGCGGTCCACCGGGGCCAACCACTTCGTGCTGCTGCAGATCACCGACGAGGCGGCGGCGCGGCTCGGCTCCCAGCACGGGGTCACCCGCCGGTTGCTGCGCCATGACGACGATACGTCCGGCACGGCCTGCGTGGAGGTCGCCGGTCCGTTCGACCACCACGACGAGCTCGTGGCATGGCTCGCCGACGTGCGGCTCAGGCCGCGCGACGTCGGTGCTCGGCGGGACTGAMAPAERWDADLARDGRAQITASRARMLWPLAAAAVFLALGVAMVSDEVRPLSVAVVVVFAVGVGVLLWRIVRPVRLEVSRDGVRYRRLELSWDDVVAVHERSTGANHFVLLQITDEAAARLGSQHGVTRRLLRHDDDTSGTACVEVAGPFDHHDELVAWLADVRLRPRDVGARRDNANANANANA
AK018_00132987hypothetical proteinGTGGACGTCGTCGCTGGCCTGCTCGACGGCCCCCGGGCGCGGGGCGCCTTCCTGCTGCGCAGCCACCTCACGGCGCCGTGGGGCATGCGCATCGAGGACGAGTCGCCGCTGACCATCGTCCCCGTCCTGCGCGGACGGGCGTGGCTGGGCCCGGACGAGACCACGACGACCGGGGCCGACGACGGCACGCCGGCGGCGCTGTCGGGCACGGATAGCGAGAGCGGGACCTGGGTCGAGGCGGGCGACGTGGTGCTGCTGCGCGGACCGGAGCACTACGTGGTGACCGACTCCCCCGCGACGCAACCGACCGTCGTCGTCGGCCCGAACCCGCAGGACTGCCGCGCGATCGACGGCGGACCGTCGGAGATGACGACCTTCGGCGTGCGCTCGTGGGGCAACGACCCCGCCGGCGAGACCGTGATCGTCACCGGCACCTACCCGCTGGACGGCGCGGTCGGGCGACGCATCCTGCGCCTCCTGCCGCACCGCGTCGTGCTGCGGCGGGGCGACATCGACGGCACGGTGATCGACCTGCTCGCCCGGGAGGTCGTCCAGGACCTCCCCGGCCAGGAGGCCGTGCTGGACCGTCTGCTCGACCTGCTCCTGATCACCTGCCTACGGACCTGGCTGGACCGGCCCGACGCTCCTGGCTGGTACCGCGCCGAGGCCGACCCGGCCGTCCGCGCCGCGCTGCGGCTCGTTCACGACGATCCGGCGCGACCGTGGAGCGTGGAGTCGTTGGCGCGGGAGGTCGGTCTGTCCCGGGCGGCGTTCGCACGGCGGTTCACCGCGCTCGTGGGCGAGCCGCCGATGGCCTACCTCACGGGCTGGCGCCTCGACCTGGCGGCCGACCTGCTGCTGGCCGACGACGCGACGCTGGCGGCGGTGGCCCGCGCCGTGGGCTACACGACGCCCTTCGCGCTGAGCGCCGCGTTCAAGCGTGAGCGCGGGATCAGTCCCGCCGAGCACCGACGTCGCGCGGCCTGAMDVVAGLLDGPRARGAFLLRSHLTAPWGMRIEDESPLTIVPVLRGRAWLGPDETTTTGADDGTPAALSGTDSESGTWVEAGDVVLLRGPEHYVVTDSPATQPTVVVGPNPQDCRAIDGGPSEMTTFGVRSWGNDPAGETVIVTGTYPLDGAVGRRILRLLPHRVVLRRGDIDGTVIDLLAREVVQDLPGQEAVLDRLLDLLLITCLRTWLDRPDAPGWYRAEADPAVRAALRLVHDDPARPWSVESLAREVGLSRAAFARRFTALVGEPPMAYLTGWRLDLAADLLLADDATLAAVARAVGYTTPFALSAAFKRERGISPAEHRRRAANANANANANA
AK018_00133873azoB_1NAD(P)H azoreductaseATGACCGTGCACAGCACACCCCTCGAGACGCCCCGGCACGAGACCGCACCGGGCGACGGCGTGGTCGCCGTCCTCGGCGGCACCGGCAAGACCGGTCGCCGGGTCACCGAGCGGCTGCACGACCTGGGTGTCCCGGTCCGTGCCGTCTCCCGTAGCACGACGCCGCGTTTCGACTGGGATGACGAGTCCACCTGGGGGCCGGTCCTGGACGGTGTCGCCGCCGTGTACGTCGCCTACGCGCCGGACCTCGCCGTCCCCGGCGCTCCCGAGATCGTGACCCGCCTCGCCGCCCGAGCCCGGGACGCTGGCGTACGGCGGCTCGTGCTGCTCACCGGACGGGGTGAGGAGGAGGCGCAGCGGGCCGAGCGGCTCGTCGCTGAGGCGTTCCCCGGGCGCACCGTCGTCCGGGCCGCCTTCTTCGCCCAGAACTTCTCGGAGAGCTTCCTCCTCGACCCGGTCCGTTCCGGTTCGCTCGCGCTGCCGGTGGACGACGTCGTCGAACCGTTCGTCGATCTCGAGGACGTCGCCGACGTCGCGGTGGCGGCGCTCATCGACGACCGGCACGCGGGCGAGACCTACGAGCTCACCGGACCGCGGCTGCTGACGTTCGCCGACGTGGTCGACGAGATCTCGGCCGCGAGCGGGCACGAGGTCGAGTTCGTCCCGATCGGCATGGAGGACTTCACCGCCGGGCTGACCGCGGTCGGGGTGCCGGACGTGGAGGTCGACCTGCTGCGCTACCTGTTCACCGAGGTGCTGGACGGTCGTGGTGCGTTCGTCACCGACGGTGTCCAGCGCGTGCTCGGTCGGCCGGCACGGGACGTCCGCGAGTACGCCCGGCGGGAGGCCGGGGTCTGGCGGGTGGCGTCATGAMTVHSTPLETPRHETAPGDGVVAVLGGTGKTGRRVTERLHDLGVPVRAVSRSTTPRFDWDDESTWGPVLDGVAAVYVAYAPDLAVPGAPEIVTRLAARARDAGVRRLVLLTGRGEEEAQRAERLVAEAFPGRTVVRAAFFAQNFSESFLLDPVRSGSLALPVDDVVEPFVDLEDVADVAVAALIDDRHAGETYELTGPRLLTFADVVDEISAASGHEVEFVPIGMEDFTAGLTAVGVPDVEVDLLRYLFTEVLDGRGAFVTDGVQRVLGRPARDVREYARREAGVWRVASNANANANANA
AK018_00134474hypothetical proteinATGAGCCTCTACGCAGCACTCACGGTGTCCGCCGCCGTGGCGACCGGGCTGGCGGGTGGTGTGACGTACGCCTTCTCGTCATTCGTCATGGCCGGCCTGCGTCGGTTGCCGCCCGACGCCGGGGCGGCGGCGATGCAGGAGATCAACCGGACCGCCGTCCGCCCGCCGCTGGGCGTCCTGCTGGGTGCGTCGGTCGTCCTGCCCGCGGCGTCGGCGGCGCTCGGCCTGGCCCAGGGGAGGGGCGGCGCGGGGCTCGCCGCCGTCGGGGCCGGTGTCGCGGTGGTCGGCATCCTCGGCGTCACCGGCCTGGGCAACGTCCCGCTCAACGACCGGCTCATGGCCAGCGACGAACGCGCCGACGAGTGGCAGCGGATCTACCGTCCGTGGATGCGCTGGAACCATCTGCGTACGCTCGCCGCGGCGGTGTCCTGCGTCCTGCTCGTCGCGGCGGCCCCGGCGGTGGTCGCGACCTGAMSLYAALTVSAAVATGLAGGVTYAFSSFVMAGLRRLPPDAGAAAMQEINRTAVRPPLGVLLGASVVLPAASAALGLAQGRGGAGLAAVGAGVAVVGILGVTGLGNVPLNDRLMASDERADEWQRIYRPWMRWNHLRTLAAAVSCVLLVAAAPAVVATNANANANANA
AK018_00135318cutA_1COG1324Divalent-cation tolerance protein CutAATGGACGACGTCGTGCAGGTCGTGACCACCACCGACTCCGAGGAGGGCGCGCTGCGGCTCGTGCGGGACGCCGTCGGGCACCGGCTGGTCGCGTGCGGCCAGGTCGACGGCCCGGTGAGCAGCGTGTACCGGTGGGACGGCGTCGTCCGGACGGCCGACGAGTGGCGGCTCACGCTCAAGACGACGACGGCGCGCTCGGGCGAGCTGCAGACGTGGCTCGCCGAGCATCACCCGTACGACGTGCCCGAGGTGCTCGTCACGTCGGTGACCGACGGGAACCCCGACTACCTCGCCTGGGTGCGGTCCGAGGTCGGGTGAMDDVVQVVTTTDSEEGALRLVRDAVGHRLVACGQVDGPVSSVYRWDGVVRTADEWRLTLKTTTARSGELQTWLAEHHPYDVPEVLVTSVTDGNPDYLAWVRSEVGPGPT0004080_1859DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-DIVALENT_CATION_TOLERANCE,PGPT0004080-cutA-K03926NANA
AK018_00136882hypothetical proteinATGAGGAGCATCGCGCTCACGGCCATCGTTGCTTCGGCCGCTGTCCTAGCACCGCATGCGAGTGCCAGCCAGGTGCTTCTCGCGGCTTCTGGCGAACCTGGCCCGATCTACGACACCGGCCTCGACGACGACAGGGACCCTGCGGTCAATGTCGGCGCAACGCTCGAAGAGCAGAACGACCTCCTCAACGGCACGAGCGACGACTCCGCCTCCGACACCCGCTACTTCCGGGCCACGGTGCACTACTGCCTGCTCGCCGACCTGGAGAACACCGTCCTGCGCGTCGCCTGCGCAGCGGGCACGGAGACCATCGCGACCGGCGTGGACTGCCCCGACGACGCCTACGAGCTCCCCGGCCTGTTCTCCGTCACGGTCGGAGGCAACGGGTCCGAGTCTGCTCCGACACTCGTCAGCGCGGGGACCTGCGTCACGCCGGCCGACCTGCGGGCCGAGGCCGAGCGCGCCTTCCGGACGATGCCCGTGGAACCGGCCGAGATCGAGCTCGAGGTCGATCGGGACTGGGCCATCGTCAACTTCGGCATCCACCCCCGCACCACCGACGCCGACCAGGTCATGGACACCACGCTCCTGGGCGTCCCGGTCCAGATCCGGGCACTCCCCGCCGAGTTCACCTGGGATGCAGGCGACGAGACCGAGCCACTCACCACCGAGCATCCCGGCGGTCGCTGGGACAGCGCCGACGCCGTCCATCTCCCCTACCCGGCGCCGGGGACCTTCACCGCGAGCCTCACCACCACGTGGCACGGTCAGTTCCGCATCACCGGCACGCCGACCTGGACCGACATCGACGGCGAGCTCACCACCACCGACTCGACCCCGCCGATCGAGGTGCACGACGCCCAGGTCCGCCTGACCGGCTGAMRSIALTAIVASAAVLAPHASASQVLLAASGEPGPIYDTGLDDDRDPAVNVGATLEEQNDLLNGTSDDSASDTRYFRATVHYCLLADLENTVLRVACAAGTETIATGVDCPDDAYELPGLFSVTVGGNGSESAPTLVSAGTCVTPADLRAEAERAFRTMPVEPAEIELEVDRDWAIVNFGIHPRTTDADQVMDTTLLGVPVQIRALPAEFTWDAGDETEPLTTEHPGGRWDSADAVHLPYPAPGTFTASLTTTWHGQFRITGTPTWTDIDGELTTTDSTPPIEVHDAQVRLTGNANANANANA
AK018_00137408hypothetical proteinATGGACCGCAAGGATGCCGACGGCGCGGCCGCGGCAGTGAAGTACATCCTCGGGCTCGAGCAACCGATGATGATCTCCGGAGACACGTCGGACTGGGAGAAGCACTCCCATCGGTCATGCGAGTACTGCGAGGCACGGCTCGAGCAGGCGAAGACCATCGCGAAGCGAGGCGACACGTTCCTGGGCGGAGAAGTCAGTGTCACCGTCGACACGGTCTACCAACGCGACGCCGTCACGGGCATCTGGCCCATCGACGTGTCGATCAAGGAGTCGGCGACCACCATCACCGACGCTTCGGGAGAAGTCGTCTTTGAGGCACGCGACGCAACAGGAGAACGTCGAGTTGAGATTGGGCTCGTCGACGACAGCTGGGTACTTGTAGAACGAGCAGAGATCCCGGAGAACTAGMDRKDADGAAAAVKYILGLEQPMMISGDTSDWEKHSHRSCEYCEARLEQAKTIAKRGDTFLGGEVSVTVDTVYQRDAVTGIWPIDVSIKESATTITDASGEVVFEARDATGERRVEIGLVDDSWVLVERAEIPENNANANANANA
AK018_00138846hypothetical proteinATGGACGCTCTGCTCCCCCTCGGTACTGCCCCGCGCCCGGACTCGGACCAGGACCTGGCCGCCCGGCTGCGTGCCGCGCTCGTCGGTCTGGCCGGCGACCGCGTGCAGGGCCTGGACGCCGCGAAGATCCTGCCGGTGCTCGACGGCGCCGACGTCGCCTCGCTCGACCTCGACCTGACCGACGTGGTGGTCGGCATGCCGACCGGCGCTCAGGACAAGCCCGAGCAGTGGCGACCGCAGGTCACCGAGCGGGAGGCCGCAGCGCTGCGCACGCTGCGGATCGACGCGCACCCGATGGTCGCCGTCGACCTGCCCGTCGACCTGACCACCGAGATCACCGGGCTGCAGTTCTCCTGGGTGACCGCGGCCGACGACACCGTCGGCGTGGAGTTCGTCGAGCCGACCGACGACTCGCCCGTCTCCGGGCACGCGCGCGTGGCGGTGTCCCGCGACGGGATGGCCGGCACCGTGCAGGGCCTGCTCGCCGTGGCGCTGTCCGGCAACGGCATCGCGCTCAACGACTTCGACCTGCAGGTCGAGCAGGCCGGACCGCGCGAGGCGTCGCTGCGGATCGAGGCGGGGATCAAGAAGTCGTTCCTGTCCGCGACGGTGACCGCGACGGCCTCGGCGTCCGTCGACGACGCCATGGTGCTCACGATCGGCGACGTCGAGCTGTCCAGCGGCAACCCGATCGTCGGGGCCATGCTCGGGGCGATCCGAGGCCGTCTCGAGGCCGCGGCCGGCCGGAAGATCGACCTGTCGGCGTCGCTGCCTCCCGGCGTGCAGCTTGCGGACGTGCAGATCGACGTGGGCGACGACATCGTCCTCACCGCCCAGCTCGCCTGAMDALLPLGTAPRPDSDQDLAARLRAALVGLAGDRVQGLDAAKILPVLDGADVASLDLDLTDVVVGMPTGAQDKPEQWRPQVTEREAAALRTLRIDAHPMVAVDLPVDLTTEITGLQFSWVTAADDTVGVEFVEPTDDSPVSGHARVAVSRDGMAGTVQGLLAVALSGNGIALNDFDLQVEQAGPREASLRIEAGIKKSFLSATVTATASASVDDAMVLTIGDVELSSGNPIVGAMLGAIRGRLEAAAGRKIDLSASLPPGVQLADVQIDVGDDIVLTAQLANANANANANA
AK018_00139660hypothetical proteinATGCTGGAGCTCGCCACCGGGACCGGACTCGCGCTCGCCGCCGGGCTGAACGCGTGGATCCCGCTGCTGGCCCTCGGTCTGCTTGCCCGGTACACGGACCTGCTGACCCTGCCGAGCGGCTGGGCCTGGCTGGAGAACGGCTGGGTGCTGCTGGTCCTGGGCGTGCTGCTCCTGCTCGAGGTGGTCGGCGACAAGGTGCCGGTGCTCGACTCGGCGAGCGACCTCGTCCAGACGGTGGTGCGGCCCGGTGCGGGCGGGATCGCCTTCGGCGCCGGGGCGACGTCGTCGACCACGCGGGTGGAGGACCCGGGCGCGTTCGTGGACTCCGGGGCCTGGGTCCCGGTGGTGCTCGGCGTCGTGCTGGCGCTCGCCGTCCACCTGACCAAGGCGGCGCTGCGCGCCGGCGCCAACGCCGCCACCGGCGGGCTCGCCGCCCCGGTGCTGTCCACGGCGGAGGACGGCGCGTCGGTGGGGCTGTCGCTGGCGGCGATCCTCGTGCCGCTGCTGGTGATCCCCCTCGTCGTCGTCCTCGCGGTCCTGGTCTGGCGGATGCTGCGGGCACGGGGACGACGGCGCAAGGCGGCCCGGGGTGTCGAGCCTCACGCGGGCGGGCCGCCCGCGCCTCCGCCGGGGCCGCCGTCGGGCACCCGTGGCGGTTAGMLELATGTGLALAAGLNAWIPLLALGLLARYTDLLTLPSGWAWLENGWVLLVLGVLLLLEVVGDKVPVLDSASDLVQTVVRPGAGGIAFGAGATSSTTRVEDPGAFVDSGAWVPVVLGVVLALAVHLTKAALRAGANAATGGLAAPVLSTAEDGASVGLSLAAILVPLLVIPLVVVLAVLVWRMLRARGRRRKAARGVEPHAGGPPAPPPGPPSGTRGGNANANANANA
AK018_001401080hypothetical proteinGTGAGCGAGCAGCAGACGAGCCCCGGCACGACGGCGGAGCGCCCCGAGCACGCCCAGGGCGGCACCTACACGGTGCCCGGCCAGGAGTACGTGCGCGACCAGAACTACCTCTCGACCCGCATCACCCGCGACGGGGCCGACGGCTACCCGGTCGAGCCGGGCCGGTACCGGCTCGTGGCGGCCCGCGCCTGCCCGTGGGCGAACCGTTCGATCATCGTGCGGCGGCTGCTGGGTCTCGAGGACGTGCTCAGCATCGGGATGCCCGGCCCGACCCACGACGAGCGCAGCTGGACGTTCGACCTCGACCCGGACGGTCGGGACCCGGTGCTCGGCATCGAGCGCCTGCAGGAGGCGTTCTTCGCCCGGGACCCGGAGTACCCGCGCGGCATCACGGTGCCGGCGATCGTCGACACCCGCGACGGCGCCGTGGTGACGAACGACTTCGACCTGATCACGCGCGACCTGTCGGGCGAGTGGACCGAGCACCACCGGGCGGGCGCGCCGGCCCTGTGGCCCACCGATCCCGACGAGGCCGCCGAGATGGAGTCCGTCATGCGGCGGGTCTTCACCGAGGTCAACAACGGCGTCTACCGGTGCGGGTTCGCGGGCTCCCAGGACGCCTACGAGGCGGCCTACCTGCGGCTCTGGACCGCGATGGACTGGCTGGAGGACCGGCTCAGCACGCGCCGCTTCCTCATGGGCGACCGGGTCACCGAGGCCGACGTGCGGCTGTTCACGACCCTGGTGCGGTTCGACGCCGTCTACCACGGGCACTTCAAGTGCAACCGCAACAAGCTGACCGAGATGCCGGTGCTGTGGGCGTACGCCCGTGACCTGTTCCAGCTGCCCGGGTTCGGCGACACCGTCGACTTCGAGCAGATCAAGGAGCACTACTACGTGGTGCACACCGACATCAATCCCACCCAGATCATCCCGTGCGGGCCCGACACCTCCGGCTGGATGACGCCGCACGGCCGCGAGTCGTTCGGCGGCGACCCGTGGGGTGGCGGCACCGCGCCGGGTCCGGTGCGCGACGGCGAGCAGGTCACCGCCGGCCACAACCCGCTCGTGGAGCTGTGAMSEQQTSPGTTAERPEHAQGGTYTVPGQEYVRDQNYLSTRITRDGADGYPVEPGRYRLVAARACPWANRSIIVRRLLGLEDVLSIGMPGPTHDERSWTFDLDPDGRDPVLGIERLQEAFFARDPEYPRGITVPAIVDTRDGAVVTNDFDLITRDLSGEWTEHHRAGAPALWPTDPDEAAEMESVMRRVFTEVNNGVYRCGFAGSQDAYEAAYLRLWTAMDWLEDRLSTRRFLMGDRVTEADVRLFTTLVRFDAVYHGHFKCNRNKLTEMPVLWAYARDLFQLPGFGDTVDFEQIKEHYYVVHTDINPTQIIPCGPDTSGWMTPHGRESFGGDPWGGGTAPGPVRDGEQVTAGHNPLVELPGPT0013050_458DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013050-yqjG-K07393NANA
AK018_00141603hypothetical proteinATGACTGACGCGCTCTGGATCACCGGTGACGACGCCACGGACCGGCTGCTCGCCGAGGACCCGTTCGCGCTGCTGATCGGGATGCTGCTGGACCAGCAGTACCCGATGGAGCACGCGTTCTCGGGGCCGCGCAAGATCGCCGACCGGTTCGGCACGCTCGACCCGGCCGCGATCGCCGACGCCGACCCCGACGCGTTCGTCGAGATGGCGACCACTCCCCCGGCGATCCACCGCTACGGCCGCTCCATGGCCGGGCGGGTGCAGGCCGTGGCCCGCGCCGTCGTCGACGACTACGACGGGGACGTGACCCGGATCTGGACCGACCCGGGGGCCTCCGGCGAGCCCCCGACCGGTGCCGAGGTGGTGAAGCGGCTGAACGCTCTGCCCGGGTTCGGCACGCAGAAGGCGCAGATCTTCCTGGCGCTGCTGGGCAAGCAGCGCGGCGTCGAGCCGGACGGATGGCGCGAGGCCGCCGGGCACTACGGCGACGACGGGTCGCGCCGCTCGATCGCGGACGTGACCAGCGCGGAGACCCTGCAGGAGGTCCGCGAGTTCAAGAAGGCCCAGAAGGCCGCAGCCAAGACAGCGAAGGCGACCAAGTGAMTDALWITGDDATDRLLAEDPFALLIGMLLDQQYPMEHAFSGPRKIADRFGTLDPAAIADADPDAFVEMATTPPAIHRYGRSMAGRVQAVARAVVDDYDGDVTRIWTDPGASGEPPTGAEVVKRLNALPGFGTQKAQIFLALLGKQRGVEPDGWREAAGHYGDDGSRRSIADVTSAETLQEVREFKKAQKAAAKTAKATKNANANANANA
AK018_00142381hypothetical proteinATGGCTCGACACCCGAACGTCCTGGCCGGCTCGCTCGCCGCCGCGCTCACCGTCACCGGCACCCTGCACCTCGTCCGGCCCCGGGTGTTCGAGGGGCTCATCCCCGAGGCGCTGGGTTCACCGCGCGCGTGGGTGTACGGCAGCGGCGTGGCCGAGCTCGCCTGTGCCGCCGCGGTCGCGGTCCCGGCCACGCGCCGCGTCGGCGGGTACGCCTCCGCGGCGCTGTTCGTCGGGGTGTTCCCCGGCAACGTGAAGATGGCGCTCGACTCCCACCCGGGCGCGCGGCACTGGTCGCGCAAGCCGTCGGTCGCCTGGGGTCGGCTGCCGCTGCAGGTCCCGCTGGTCGCGTGGGCCTGGAGGGTGGCCCGCAGCGCCGGGTGAMARHPNVLAGSLAAALTVTGTLHLVRPRVFEGLIPEALGSPRAWVYGSGVAELACAAAVAVPATRRVGGYASAALFVGVFPGNVKMALDSHPGARHWSRKPSVAWGRLPLQVPLVAWAWRVARSAGNANANANANA
AK018_00143630hypothetical proteinATGACCTTCCGATGGCGCACCCTGTGGCCGGCCCTGCTCGTCCTGCTCGTCGCCGGATGCGGGTCCCCGGCGGTCGACGGCGGTCACGCACCGCCCGGCGTCGCCACGCCCGCCGCCGCGACCCCCGTCGATGCTACTGACGCCGCCGTTCACGAGTACTCCGCGGCGCCCGACCACGCCGCGGAGAGCAGCGAGAGCCCCCCACCGCCGGTCGATGAGGCCCTCACCGCGTTGCAGCGTTACCTCGACCGTGAACGCGAGGTCTACCGCACCGGGGACGCGGCCGAGGCCGAGGCGATGGTCGGGGCGGACTGCTCCGCGTGCCGCACCCGCGTCCGGATCGGCGTGGACACCCACGCCGCCGGCCTCGAGCTCGAGGGCGCGCACGCTCGGGTCGAGCTCGTCCGACGGATCCCGGTCGCGGAGGTCGCCGACACCGACGGGCTGGACGACGACTTCGTCGCACGGACGTTCCTGCTGCACACCCGGGTGCACCAGGACGCCGGCGTGCTCCGGGGCGCCGACGACGCCCTGCGACGGGTGCCGGCGTCGGCCTACGACCTGTACGCCTCGCTCTACGCCGCCGAGGACGGCGGCTGGACGGTCGACGGGCTCACGGAGGCCCCGTGAMTFRWRTLWPALLVLLVAGCGSPAVDGGHAPPGVATPAAATPVDATDAAVHEYSAAPDHAAESSESPPPPVDEALTALQRYLDREREVYRTGDAAEAEAMVGADCSACRTRVRIGVDTHAAGLELEGAHARVELVRRIPVAEVADTDGLDDDFVARTFLLHTRVHQDAGVLRGADDALRRVPASAYDLYASLYAAEDGGWTVDGLTEAPNANANANANA
AK018_00144957fecE_1COG1120Fe(3+) dicitrate transport ATP-binding protein FecEATGACACAGACCTCCGAGCACCGCCCGGGCACCCGGACGCCGGGGGCCGACCCACGCTTGCAGGGCGCGGCGTCGTCCGGCACCGGACTGGCCGCCGACCGGGTGCGCTGGTCGGTGGGCGACCGACTGATCCTCGACGACGTCGACGTCACCGCTCCCCCGGGTGCCCTGACCGGTCTGGTCGGGCCGAACGGCACCGGCAAGTCGAGCCTGCTGCGCCTGATCGCCGGGGTGGAGCGGCCCGACGGCGGCCGCGTCGCCCTGGTCCCGCGGCACGGCGGCGCCGACTCGGCCGGGGCCGGGGAATCCGCTGCAGCCGACGGTGCCGCCGGCGCCACCGGTCCTGCCGGGGCCGGCGCGACGGAGGACCTGCTGACGATGCGTCGGCGCCGTCGGGCCCGAACGCTGGCCTTCGTGGAGCAGGACGCCGCGTCCGAGCTGCCGGTGACGGTGTTCGACGCCGTCCTGCTGGGCCGCACCCCGCACCGCTCGGTGCTGGCCGGCCCCACCGAGGACGACCACACGATCGCTCGGTCCGCGCTCGAGCGGGCCGGCGCGGGCGACCTGGCCGCCCGCGAGGTCTCGACGCTGTCCGGGGGCGAGCGCCAGCGGGTGCACATGGCCCGGGCGCTCGCGCAGCAGCCGCGTGTGCTGCTCCTCGACGAGCCGACCAACCACCTCGACGTGGCCGCCCAGCTCGCCACGATGCGGCTGGTCGGCGAGCTCGCGGCCGACGGCGTCACCGTGCTGGCCGCGCTGCACGACCTGTCCCTGGCTGCCGCGACGTGCGACCACGTCGTCGTGCTCGGCCCGGAGCCGGCCGGGCACGTCGTCGCGGCCGGACCGGTCGAGGAGGTCCTGGTGCCCGAGGTCATCGACCCGACCTACGGGGTGCGCACCACGGTGCTGCGCCATCCGCGCACCGGGCGGCCGGTGCTGACGTTCGACGAACGGTAGMTQTSEHRPGTRTPGADPRLQGAASSGTGLAADRVRWSVGDRLILDDVDVTAPPGALTGLVGPNGTGKSSLLRLIAGVERPDGGRVALVPRHGGADSAGAGESAAADGAAGATGPAGAGATEDLLTMRRRRRARTLAFVEQDAASELPVTVFDAVLLGRTPHRSVLAGPTEDDHTIARSALERAGAGDLAAREVSTLSGGERQRVHMARALAQQPRVLLLDEPTNHLDVAAQLATMRLVGELAADGVTVLAALHDLSLAAATCDHVVVLGPEPAGHVVAAGPVEEVLVPEVIDPTYGVRTTVLRHPRTGRPVLTFDERPGPT0003760_564DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_00145990hmuU_1COG0609Hemin transport system permease protein HmuUGTGCTGCTGGCCAGCGTCGTCGTCACGGTCGCGATCGGCCCGGCCGGGCTGACGCCGTCGGACGTCGGGCAGGTCGTGGCGACGCGGCTCGGGCTGGGCGATCTGATGGGGATCGCCGCGCCGGACCGGCTCGACGACGGCATCGTGTGGCAGCTGCGCCTCCCCCGGGTGCTCACCGCCGCGGCCGTGGGCGCGGGGCTCGCGGTGTGCGGAGTGGTGATGCAGTCGCTGACCCGCAACCCGCTGGCCGACCCCTACCTGCTGGGCCTCAGCTCGGGAGCGTCGCTGGGCGCGGTCAGCGTGCTCGTGCTCGGCTGGCTCGCCGTGCTGCCGGTCGCGGCATTCGTCGGCGCGACCGCCGCCCTGGTCGCGACGCTGGCGCTGGCCACGGCCGCCGGCCGCGGTGCCGGCGGGCTGTCCCCCGGTCGCACGGTGCTGGCCGGTCTCGCAGTGTCCCAGCTCGCGGCGGCGGCGACCAGCTTCGTCATCTTCTGGTCCGCCCAGGGCGACCAGTACCGCGAGATCCTGTCGTGGATGCTCGGGTCGGTGGCCGGGGCGGAGTGGTCCTCGGTGCTGATCGCCGGGGGCGCGGTGCTCGTGCTGGGCACGCTGCTCGCCTCGACCGGGTCGGTGCTGGACGCCTTCACCTTCGGCGACACGGCCGCCGCGACGCTCGGCGTGCCGGTGGCCCGGGTGCGCTGGGTGCTGCTGATCGGCGTCGCGCTGCTGACCGGCGCCCTGGTCTCGCAGTCCGGGGCCATCGGGTTCGTCGGCCTCATCCTGCCGCACGCGGTGCGGATGATCACCGGTGCCCGGCACCGCGCCCTGCTGCCGCTGTCCATGCTCTGCGGGGCGACGTTCCTCATCTGGGCCGACACCCTGGCCCGCACGGTCTTCGCCCCGCGCGAGCTGCCGGTCGGGATCGTGACGGCCGCGATCGGTGCGCCCGTGTTCGCCGTGCTGCTCTGGAAGGGACGGGCCCGCGCATGAMLLASVVVTVAIGPAGLTPSDVGQVVATRLGLGDLMGIAAPDRLDDGIVWQLRLPRVLTAAAVGAGLAVCGVVMQSLTRNPLADPYLLGLSSGASLGAVSVLVLGWLAVLPVAAFVGATAALVATLALATAAGRGAGGLSPGRTVLAGLAVSQLAAAATSFVIFWSAQGDQYREILSWMLGSVAGAEWSSVLIAGGAVLVLGTLLASTGSVLDAFTFGDTAAATLGVPVARVRWVLLIGVALLTGALVSQSGAIGFVGLILPHAVRMITGARHRALLPLSMLCGATFLIWADTLARTVFAPRELPVGIVTAAIGAPVFAVLLWKGRARAPGPT0003770_2194DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_001461035hypothetical proteinGTGCCCCGAGCGCGTATCGCTGCCCTGACCCTCGCGACCCTCGCCGTCGCCTCCCTCGCCGCCTGCTCGACCGGCTCGCCGCCGGCCGACGGAGCAGCGTCCGCGGGACCGTCCGAGTCCGCCGTGTCCGACGGCATCAGGACCGGGTACCCGCTGACCCTCGACAACTGCGGGACCGAGGTGACGTTCGACGCCGCGCCCGAGCGCGTCGTCACCATCAAGTCCTCCACGGCTGAGACGCTGCTGGCGCTCGGCCTCGGCGACCGCATCGTCGGATCGGCCTTCCTCGACGGCCCCGTGCCGGACTGGCTGGCCGAGGACGCCGAGGGCACGGCCGTCACCGATCCCTTCAGCGACGAGGTGCCCGGCACCGAGGCGGTCCTCGAGCTGGAGCCGGACCTGGTCTACGCGGGCTGGGAGTCGAACGTCGCGGCCGACGGCGCCGGCGACCGCGAGACCCTCGACTCGCTGGGGGTGCACAGCTATGTCGCCCCGGCCGCCTGCAAGGCGGCCGAGTACATGCCGAACCCGCTGACCTTCGAGGAGGTCTTCGCCGAGATCAGCGAGGTCGGCGCGATCTTCGACGCGAACGACGCCGCCGCCGCGCTCGTCGCGGAGCAGCAGGAGACTCTCGACGGGGTCACCCCGGACGACCGCGACCTCAGCGCCCTGTGGTACTCCTCGGGCAGCGACATCCCCTACGTCGGGGCCGGCATCGGTGCCCCGCAGATGATCCTGGAGGCCGTCGGGCTGTCCAACGTCGCCGGGGACGTCGAGGACACCTGGACGTCGCTGTCCTGGGAGGAGATCGTCGACGCCGACCCGGACGTCATCGTCCTGGTGGACGCCGTCTGGAACTCGGCCGACGACAAGATCGCCCGCCTCGAGGACAACCCGGCCACCGCGGAGCTGACCGCGGTGCGCGAGGAGCGCTACCTCGTCGTGCCGTTCCCGGCCACCGAGGCGGGCGTGCGCAACGCCGACGCCGTCGCCGACCTCGCCGACCAGCTCGCGGAGCTCGAGATTGCCGACTAGMPRARIAALTLATLAVASLAACSTGSPPADGAASAGPSESAVSDGIRTGYPLTLDNCGTEVTFDAAPERVVTIKSSTAETLLALGLGDRIVGSAFLDGPVPDWLAEDAEGTAVTDPFSDEVPGTEAVLELEPDLVYAGWESNVAADGAGDRETLDSLGVHSYVAPAACKAAEYMPNPLTFEEVFAEISEVGAIFDANDAAAALVAEQQETLDGVTPDDRDLSALWYSSGSDIPYVGAGIGAPQMILEAVGLSNVAGDVEDTWTSLSWEEIVDADPDVIVLVDAVWNSADDKIARLEDNPATAELTAVREERYLVVPFPATEAGVRNADAVADLADQLAELEIADPGPT0003765_4646DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
AK018_001471599msrP_1Protein-methionine-sulfoxide reductase catalytic subunit MsrPATGAGCACCCGAGGAAACGGCTGGTGGGCCGCCCTGGCCGGCGTCGTCGCCGCCGGCGCCGGTCTGGCGCTGGCCGAGCTGATCGCCGCCTGGGTCGACCCGGCCTCCTCGCCGGTGCTCGCCCTGGGCGGGGTGGTGGTCGACTCCGTCCCGCCGTGGCTCAAGGACGTCGCCGTCGAGTGGTTCGGCACCGCGGACAAGCTCGTGCTGCTGTCCACGATGGGCGTCGTGCTGGCCGCGGGCGCGGCGCTGTCCGGGTGGCTGGAGCTGCGTCGGCCCCCCGCCGGCCGGGTCCTGCTCGGTGCCGTGGGCGTCGTTATGGCGCTCGTCGCCGCGACCCGGCCCGAGGCCACGCCGCTGTGGGCCGTCCCGGCGGTCGTCGGCGTCGGCGCCGCGGTGGTGCTGCTGCGGCTGCTCGTCGCGCGCGTGCCGGCGCCTGCCGCCGTCGCCGTGGTACCGGTCGCCGCCGGCGGGGCCGGCGGCGAGCCGACCGACACGGCGGCCGAGAGCACGGGGGCCGAGACCGGCGCCTCGCGCCGCACCTTCCTGGTCTGGACCGGGGCGACCGCCGTCGGCGGCATCCTCGCCCTGGCGGCGTCGCGCACCCTGGCCGCCGGCAGCCGCGCGGTCGAGGTGGTCCGCGAGGCCATCCGGCTGCCCGCCGCGGCCACCCCCGCTCCCGCCGTCCCGGCCGGCGCCGACCTGGGCGTCGAGGGGCTCACGCCCTACGTCACGCCGAACCCGGACTTCTACCGCATCGACACCGCCCTGCGGGTGCCGAAGGTCGACCCTGCGACGTGGTCGTTGAAGGTCACGGGTCTGGTCGACGAGCCGTTCGAGATCTCCTGGGACGAGCTGCTCGACCTGCCGATGACCGAGCACCACGTGACGTTGTGCTGCGTGTCCAACCAGGTCGGCGGCGACCTCATCGACAACGCGCTGTGGCTCGGCTACCCGGTCCGCGAGCTCCTGGCCCGCGCCGGCCCGCAGGCCGACGCCGACATGGTGCTGTCCTCCTCCGTCGACGGCTGGACGGCGGGGACACCCTTGGAGGCGCTGACCGACCCCGACCGGGAGGCCCTGCTCGCGATCGGCATGAACGGCGAGCCCCTGCCCGAGGAGCACGGTTTCCCGGCGCGCCTCGTCGTGCCGGGACTGTACGGCTACGTCTCGGCGACCAAGTGGGTCACCGAGCTGAAGGTCACCCGCTTCGCCGACGACGAGGGCTACTGGACCCCGCGCGGCTGGTCGGCGCGAGGGCCGGTCAAGCTGCACTCGCGCATCGACGTGCCGCGCCCCGGCACCCCGCTCGAGCCGGGCCCCGTCACGCTCGCCGGGGTCGCGTGGGCCCAGCACACTGGTATCGCCGGAGTCGAGGTGCGCGTGGACGACGGCGACTGGATGCCCGCCGAGCTCGCCGACACCGTCGGCCCGGACACGTGGCGCCAGTGGCGGTACGTCTGGGACGCCACCGCGGGCGACCACACCGTCCTCGTCCGCGCGACCGACACCGACGGGCAGGTGCAGACCGAGGAGGAGGCGCCACCGGCACCGGACGGCGCGACCGGCCACCACTCGTTCGGCCTCTTCGTCGGCTGAMSTRGNGWWAALAGVVAAGAGLALAELIAAWVDPASSPVLALGGVVVDSVPPWLKDVAVEWFGTADKLVLLSTMGVVLAAGAALSGWLELRRPPAGRVLLGAVGVVMALVAATRPEATPLWAVPAVVGVGAAVVLLRLLVARVPAPAAVAVVPVAAGGAGGEPTDTAAESTGAETGASRRTFLVWTGATAVGGILALAASRTLAAGSRAVEVVREAIRLPAAATPAPAVPAGADLGVEGLTPYVTPNPDFYRIDTALRVPKVDPATWSLKVTGLVDEPFEISWDELLDLPMTEHHVTLCCVSNQVGGDLIDNALWLGYPVRELLARAGPQADADMVLSSSVDGWTAGTPLEALTDPDREALLAIGMNGEPLPEEHGFPARLVVPGLYGYVSATKWVTELKVTRFADDEGYWTPRGWSARGPVKLHSRIDVPRPGTPLEPGPVTLAGVAWAQHTGIAGVEVRVDDGDWMPAELADTVGPDTWRQWRYVWDATAGDHTVLVRATDTDGQVQTEEEAPPAPDGATGHHSFGLFVGNANANANANA
AK018_001481419ptsJ_1COG1167Vitamin B6 salvage pathway transcriptional repressor PtsJATGCCCCAGGTTCAGCAGCCCGAGCACGACCTCGACGTCGCGCGGCTCGCCGCACGGGTCACCGACCCCAGCCCCCGCGGCATCGCCGCCACGCTGTCCCGGGTGGTGCGCTCCGGCGAGCTCCGGCCCGGCGACCGCCTGCCGACCGTGCGCGACCTCGCCGCGGCCCTCGGCGTCAGCCCGGCCACGGTCAGCGGCGCGTTCCAGGCGCTGTCCGCCGTCGGGCTCGTCACGTCCCGGGGCCGTGCCGGGACCGTCGTGCTGCCCGAGCCGCGCGGCTGGCTGCCCCCGCGGTACCGGTCGATGGCCGACGGCGGTCCGCGGTCCGGGGCCCCGTCCGCCGCGCAGGGCGACGCCCGCCGTCTCGACCTGTCCGGCGGGACGCCCGACCCGGCCCTGCTCCCCCGCCTGGGCGCCGCGCTGCGCCGCGCCGCCGCCGACGACCCGGCCGCCGACACCGGCAGCTACCTCGACGCGCCCCTGCTGCCGGAGCTCGAGACGCTGCAGCGCGAGACCTGGCCGTTCCTGCCGCAGCGCGTCACCGTCGTCGACGGCGCCCTGGACGCCATCGAGCGCACGCTGGAGCAGGTGGCGGGGTTCGGCGACCGCGTCGCCGTCGAGGACCCCGGGTTCCCGCCCGTGTTCGACGTCCTGGACCAGCTCGGCCTGGAGCGGGTGCCGCTCGCGCTCGACGGCCACGGCGTGCGCCCGGAGTCCCTGGCGCAGGCCCTGCGGCGCGGGGTGCGCGCCGTCGTGCTCCAGCCGCGCGCGCAGAACCCGACCGGACGCAGCCTGACCTCGACGCGGGCCCGCGAGCTCGCGCGACTGCTGCGCACGCACGGCCCCGACGTCGTCGTCCTCGAGGACGACCACTCCGGCCTCATCGCCTCGGCCCGGGACGTCAGCCTCGGGTCCTACCTGCCCGACCGCGTGGTGCACGTGCGCTCGTACTCCAAGTCGCACGGCCCCGACCTGCGCATCGCGACCGTCGGCGGACCGGCCACGGTGCTCGACCCGCTGGTGGCCCGGCGCATGCTCGGGCCCGGCTGGACCAGCCGCCTGCTGCAACGCGTCCTGGCCGACCTGCTCACCGACTCCGAGGCCATCGCGGCCGTCGAGCACGCCCGCCGGATGTACTTCGCCCGCCAGCGCGGCTTCGTCGCCGCCCTGGAGCGGCACGGCGTGGTGGCACAGGCCGGCGACGGGGTGAACCTGTGGCTGGCGGTGGCCGACGAGGACACCGCGCTCGTCCGCCTGGAGGCCGCGGGGATCCGGGCCGCCCCCGGGTCACCGTTCCACGCCGGCCGGGAGGGCTCGGCGGCCGACGGCGGCCCGCACGTGCGGCTCACCGTCGGGATGGTGCGCGACGACGTCGAGGAGGTGGCCGCAGCCGTCGCCCTGGCCGTCGGGGGCGCGTGAMPQVQQPEHDLDVARLAARVTDPSPRGIAATLSRVVRSGELRPGDRLPTVRDLAAALGVSPATVSGAFQALSAVGLVTSRGRAGTVVLPEPRGWLPPRYRSMADGGPRSGAPSAAQGDARRLDLSGGTPDPALLPRLGAALRRAAADDPAADTGSYLDAPLLPELETLQRETWPFLPQRVTVVDGALDAIERTLEQVAGFGDRVAVEDPGFPPVFDVLDQLGLERVPLALDGHGVRPESLAQALRRGVRAVVLQPRAQNPTGRSLTSTRARELARLLRTHGPDVVVLEDDHSGLIASARDVSLGSYLPDRVVHVRSYSKSHGPDLRIATVGGPATVLDPLVARRMLGPGWTSRLLQRVLADLLTDSEAIAAVEHARRMYFARQRGFVAALERHGVVAQAGDGVNLWLAVADEDTALVRLEAAGIRAAPGSPFHAGREGSAADGGPHVRLTVGMVRDDVEEVAAAVALAVGGANANANANANA
AK018_00149849N-carbamoyl-D-amino acid hydrolaseATGAGCGTGGTACGCGTCGCATTCACCCAGGCCCGCTGGGCCGGCGACAAGGAGTCGATGATCGCGCTGCACGAGCGCTGGACCCGCGAGGCCGCCGAGCAGGGCGCGCAGGTCGTCGCCTTCCAGGAGCTGTTCTACGGCCCCTACTTCGGCATCACGCAGGACACCGAGTACTACGACTACGCCGAGTCCGTCCCCGGCCCGACCGTCGATCGCTTCGCCGCGCTGGCGAAGGAGCTCGGCGTCGTGATGGTGCTCCCCGTCTACGAGGAGGAGCAGCCGGGCGTGCTGTACAACACCGCGGCCGTCATCGACGCCGACGGCACCTACCTCGGCAAGTACCGCAAGCACCACATCCCGCACCTGCCGAGGTTCTGGGAGAAGTTCTACTTCCGCCCCGGCAACCTCGGCTACCCCGTCTTCGAGACCGCCGTGGGCAAGATCGGCGTCAACATCTGCTACGACCGGCACTTCCCCGAGGGCTGGCGCGTGCTGGCCCTGAACGGCGCCGAGATCGTGTTCAACCCGAACGCCACCGCCCCGGGCGTCTCCAACCGGCTGTGGGAGATCGAGCAGCCCGCCGCGGCGGCCGCCAACGGGTACTTCATCGTCGCGAACAACCGCGTCGGCCTCGAGGACAACGAGTACGGCGACGAGGCGGTCCAGTTCTACGGCAGCTCCTACGCCGTCGGCCCCGACGGCAACTACGTCGGCGACGTCGCCAGCGACAGCGACGACGAGCTCGTGATCCGCGACCTCGACCTCGGTCAGATCCGCGAGGTCCGCCGACGCTGGCAGTTCTTCCGCGACCGCCGCCCGGACGCCTACGGCCCGATCGTCGCCCCGTGAMSVVRVAFTQARWAGDKESMIALHERWTREAAEQGAQVVAFQELFYGPYFGITQDTEYYDYAESVPGPTVDRFAALAKELGVVMVLPVYEEEQPGVLYNTAAVIDADGTYLGKYRKHHIPHLPRFWEKFYFRPGNLGYPVFETAVGKIGVNICYDRHFPEGWRVLALNGAEIVFNPNATAPGVSNRLWEIEQPAAAAANGYFIVANNRVGLEDNEYGDEAVQFYGSSYAVGPDGNYVGDVASDSDDELVIRDLDLGQIREVRRRWQFFRDRRPDAYGPIVAPPGPT0008885_530DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0008885-UPB1_like|pydC-K01431NANA
AK018_001501434D-hydantoinaseATGAAGACCCTCATCACCGGCGGCACCGTCGTCAACGCCACCGGCCGCTCGCGGGCGGACGTGCTCATCGACGGCGAGCAGATCGTCGCCCTGCTGGAACCCGGATCCACCCTGTTCGGCGTGGACCTCGCCGCGTCGGTCGACCGGGTGATCGACGCGACCGGCAAGTACGTCGTGCCCGGCGGGATCGACGCCCACACCCACATGGAGATGCCGTTCGGCGGCACCTTCGCCGCCGACACCTTCACCACCGGTACGACGGCGGCCGCCTGGGGCGGGACGACGACGATCGTCGACTTCGTGGTCCAGTACCCCGACCAGAACGTCCTCGACCAGTACGCCCTGTGGCACGACAAGGCCGCCGGGAACTGCGCCGTCGACTACGGCTTCCACCAGATCCTGTCCGACGTGCAGGACTCGTCGTTGGCGGCGATGGACGAGCTCATCGACGAGGGGGTCACCAGCTTCAAGCTGTTCATGGCCTACAAGGGCGTGTTCCTCTCCGACGACGGCCAGATCCTGCGGGCCATGCAGAAAGCCGCCGACAACGGCGCCATGATGATGATGCACGCCGAGAACGGCGCCGTCATCGACGTCCTGGTGCAGCAGGCGCTCGCCGCCGGCAACACGTCCCCGTTCTTCCACGGCACCACCCGCCCGTGGCAGGCCGAGGCCGAGGCCACGAGCCGGGCCATCATGCTCGCCGACCTCACCGGTGCCCCGCTGTACGTCGTGCACGTCTCGGCCAAGCAGGCCGTCGAGCAGATCGCCCTGGCCCGCGACAAGGGCCAGAACGTGTTCGGCGAGACGTGCCCGCAGTACCTCTATCTGTCCCTGGAGGAGCAGCTCGGCGCCGTGAGCGAGCAGTGGGGCGACTTCGAGGGCGCCAAGTGGGTGTGCTCCACCCCGCTGCGCTCGAAGCACGAGGGCCACCAGCACCACATGTGGCAGGCCCTGCGCACCAACGACCTGCAGCTCGTCTCCACCGACCACTGCCCGTTCTGCATGGCCGACCAGAAGGAGCTCGGGCGCGGCGACTTCTCCAAGATCCCCAACGGCATCGGGTCGGTCGAGCACCGTATGGACCTGATGTACCAGGGCGTGGTCACCGGTCAGATCTCGCTGGAGCGCTGGGTCGAGATCACCTCGGTCACCCCGGCGCGGATGTTCGGCATGTACGGCCGCAAGGGCGTGCTCGCCCCGGGCGCCGACGCCGACGTCGTGGTCTACGACCCGGCCGGCCACACCTCCATCGGCCTGGGCAAGACCCACCACATGAACATGGACTACTCGCCCTGGGAGGGCTTCGAGATCGACGGCCACGTCGACACGGTGATCTCGCGCGGGCAGGTCCTGGTCGCCGACGACGAGTTCGTCGGACGCGTCGGGCACGGCAAGTACGTCAAGCGCGACCTGACCCAGTACCTCGTCTGAMKTLITGGTVVNATGRSRADVLIDGEQIVALLEPGSTLFGVDLAASVDRVIDATGKYVVPGGIDAHTHMEMPFGGTFAADTFTTGTTAAAWGGTTTIVDFVVQYPDQNVLDQYALWHDKAAGNCAVDYGFHQILSDVQDSSLAAMDELIDEGVTSFKLFMAYKGVFLSDDGQILRAMQKAADNGAMMMMHAENGAVIDVLVQQALAAGNTSPFFHGTTRPWQAEAEATSRAIMLADLTGAPLYVVHVSAKQAVEQIALARDKGQNVFGETCPQYLYLSLEEQLGAVSEQWGDFEGAKWVCSTPLRSKHEGHQHHMWQALRTNDLQLVSTDHCPFCMADQKELGRGDFSKIPNGIGSVEHRMDLMYQGVVTGQISLERWVEITSVTPARMFGMYGRKGVLAPGADADVVVYDPAGHTSIGLGKTHHMNMDYSPWEGFEIDGHVDTVISRGQVLVADDEFVGRVGHGKYVKRDLTQYLVPGPT0008880_1074DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0008880-dht|hydA-K01464NANA
AK018_001511032fgd_1F420-dependent glucose-6-phosphate dehydrogenaseATGGACTTCGGCGTCGTCCTGCAGACCGACCCGCCCGCCTCCCGCGTCGTCGAGCTCACGCGCCAGGCCGAGAACCACGGCTTCGACTACGCGTGGACGTTCGACTCCCACCTGCTGTGGCAGGAGCCCTTCGTCATCTACTCGGCGATGCTCGCCGCCACCCGCAAGATCACCGTCGGGCCGATGGTCACGAACCCAGCCACCCGCGACTGGACGGTCCTGGCCTCGCTGTTCGCCACGCTCAACGACATGTACGGCAACCGCACCGTCTGCGGCATCGGTCGCGGCGACTCGGCGGTGCGCACCCTCAACGGTCGGCCCTCGAACCTGGCGACCCTGCGCGACGCCGTCGAGGTCATCCGCGAGCTCGGCAACTCCCGCCCGGCCACGGTGGGGGAGCGGACCGTGCAGTTCCCGTGGAGCAGCGGGTCGGAGCTGGACGTCTGGGTCGCCGCGTACGGGCCCAAGGCGCTCGCCCTGACCGGCGAGGTGGGTGACGGTTTCATCCTGCAGCTCGCCGACCCGGACATCGCCGCGTGGATGATCAAGGCCGTCCGCGACTCCGCCGAGGCCGCCGGGCGGGACCCCGACGACGTGACGTTCTGCGTCGCCGCCCCCGGCTACACGGGTGACGGGTCCTCGCCGGCCGCCCGGGCGCACATGCGCGAGCAGTGCCGGTGGTTCGGCGGCATGGTGGGCAACCACGTCGCCGACATCGTGCGGCGCTACGGCACGGACTCGGCGATCCCGCAGGCGCTGACCGACTACATCCGCGACCGCGAGGGCTACGACTACAACGAGCACGGCCGCGCCGGGAACACCCACACCGCGTTCGTCCCCGACGAGATCGTCGAGCGGTTCTGCCTGCTCGGCTCCCCGCACGAGCACGTCGAGAAGCTCCAGGCGCTGCGCGAGCTCGGTGTCGACCAGTTCGCCCTCTACCTGCAGCACGACAACAAGGACGACACGCTGCGCACCTACGGCGAGCGCGTCATCCCGGCGATGCGCGAGCCGGTGGTGGCGAGCGCATGAMDFGVVLQTDPPASRVVELTRQAENHGFDYAWTFDSHLLWQEPFVIYSAMLAATRKITVGPMVTNPATRDWTVLASLFATLNDMYGNRTVCGIGRGDSAVRTLNGRPSNLATLRDAVEVIRELGNSRPATVGERTVQFPWSSGSELDVWVAAYGPKALALTGEVGDGFILQLADPDIAAWMIKAVRDSAEAAGRDPDDVTFCVAAPGYTGDGSSPAARAHMREQCRWFGGMVGNHVADIVRRYGTDSAIPQALTDYIRDREGYDYNEHGRAGNTHTAFVPDEIVERFCLLGSPHEHVEKLQALRELGVDQFALYLQHDNKDDTLRTYGERVIPAMREPVVASANANANANANA
AK018_00152861hypothetical proteinATGAGACGCCAGGTGCTCCTGGGCGCCGCCGGCGTCGGCGCGCTGGCGCTGCTGTGGGAGGGGTACAAGCTGGTGGCGCCCGACGACGGCGTCGTGGTCGGCGGGCTCACCGTCCTGCCCCGCACGAACGACATCGCCATGCCGCACCTGTGGGACATGGCGGCGCGGGCGGCCGAACCGGTGAACTCCGCCACCGATGCCCTGCCGCTGTGGGTCGCCGTGCTGATCGCCGCCGGGTTCACCCTCGGGGTGGCCGCCGTCGGCTGGGTCGTGGGCGTCGTCGTCGGGCTGGGCACCGCCACCCTCATGCAGCGCTTCCGCACCGCCGAGTCCGCGCTGCTGCCCTGGGTGGTGCTGTCCCAGACGGTGCCGCTCATCGCGCTCGCGCCGCTGGTGCGGCGGTGGGGCAGCCAGCTCGAGGTCGGCACCTTCGACTGGCAGGACTGGATGTCGGTCGCGGTGATCGCGTCCTACCTGGCGTTCTTCCCCGTCTCGATCGGCGCGCTGCGCGGGCTGTCCTCCCCGGACGCCGTGCACCTGGACCTCATGCGTTCCTACGGCGTCGGGTGGTGGCGCACCTACCGCAGCCTGCGCCTGCCGGCCGCGGTGCCCCACCTGATCCCCGCCCTGCGCCTGGCGGCGGCGAACGCGGTCATCGGCACCGTCGTCGCGGAGGTCTCCATCGGCCTGCGCGGCGGGATCGGCCGGATGATCGTCGAGTTCGGCGCCAGCGCCAGCGCCGACCCCGCCAAGCAGTGGTCGCCGATCTTCGGCGCCGTCCTCGTCGGTCTCGTCGCCGCCGGCGTGTGCGCCCTGATCGCCCGCGGCCTGGCCCGTTACCGCGTCTCGGAGGTCTCATGAMRRQVLLGAAGVGALALLWEGYKLVAPDDGVVVGGLTVLPRTNDIAMPHLWDMAARAAEPVNSATDALPLWVAVLIAAGFTLGVAAVGWVVGVVVGLGTATLMQRFRTAESALLPWVVLSQTVPLIALAPLVRRWGSQLEVGTFDWQDWMSVAVIASYLAFFPVSIGALRGLSSPDAVHLDLMRSYGVGWWRTYRSLRLPAAVPHLIPALRLAAANAVIGTVVAEVSIGLRGGIGRMIVEFGASASADPAKQWSPIFGAVLVGLVAAGVCALIARGLARYRVSEVSPGPT0001145_1555DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_00153888btuD_1Vitamin B12 import ATP-binding protein BtuDATGAACTCGTCCGCGCCCACCCGCGCCACCGCGACGTCGGCCGGCCCGGCCGGCGCCCCGGCCGGGACCGCCCCCGACGTGCACGCCGCCGCCGCCGTCGAGGTCCGCGGCGTCACCCGGCGCTTCACCTCCCGCTCCGGCGAGGTCGTCGCGCTGTCCGACGTCGACCTCACCGTCCGCGCCGGGGAGTTCGTCTCGCTCATCGGCCCGTCGGGCTGCGGCAAGTCCACGCTGCTGCGGCTGATCGCCGACCTCGACGAGCCCACCGCCGGCGAGCTGTCCGTCTTCGGCCGGCCACCGCGGGTGGCCCGGCAGAACCACGACTTCGGCATCGCCTTCCAGCAGGCCGGGCTGCTGCCGTGGCGCAGCGTGCGCACCAACGTCGAGCTGCCGCTGCAGCTGCACGGCACCGGGCGCGGCGCTCGCCGCGCCCGGGCCACCGAGCTGCTGGAGATGGTCGGGCTGGCCGACTTCGCCGAGCACCTGCCGCACCAGCTCTCCGGCGGTATGCAGCAGCGCGTCGCCATCGCCCGCGCGCTCGCCGAGCGGCCCAGCCTGCTGCTGATGGACGAGCCCTTCGGTGCGCTGGACGAGATGACCCGCGAGCACGTCCAGACCGAGCTGCTGCGGCTGCGCGCCGAGACCGGGGCCGCCGTCGTGTTCGTCACCCACTCCATCCCGGAAGCGGTCTACCTCTCGGACCGCGTGGTCGTGATGTCCGCCCGCCCCGGCCAGGTGCGCGAGGTCGTGCCGGTCGGCCTCGGCGAGGCCCACGACCGCAGCGACGACGTCCGCGAGGACGACGCCTTCTTCGACCGGGTGCGGGCCGTGCGCGAGGCGCTGCACGGCACCGACGGCACCACACTCCGGGGGGTGGACCGGCGATGAMNSSAPTRATATSAGPAGAPAGTAPDVHAAAAVEVRGVTRRFTSRSGEVVALSDVDLTVRAGEFVSLIGPSGCGKSTLLRLIADLDEPTAGELSVFGRPPRVARQNHDFGIAFQQAGLLPWRSVRTNVELPLQLHGTGRGARRARATELLEMVGLADFAEHLPHQLSGGMQQRVAIARALAERPSLLLMDEPFGALDEMTREHVQTELLRLRAETGAAVVFVTHSIPEAVYLSDRVVVMSARPGQVREVVPVGLGEAHDRSDDVREDDAFFDRVRAVREALHGTDGTTLRGVDRRPGPT0001140_853DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
AK018_00154783ribX_2Riboflavin transport system permease protein RibXATGACCCGATCAGCGACGACCACCTGGCGCCGCGTGGAGGTCGTCCTCGCCCCCGTCCTGCTCGGGCTGCTCGCCCTGGCGCTGTGGGAGACCGCCGTCGTCGTGCTCGAGCTGCGACCGTTCGTCGTGCCCAGCCCGACCAGCATCGGCGCCGAGCTCACCGGCAACGCCGGCATCATCACCACCGCCGCGCTCTCCACGGCCCTCAACGCCTGGTGGGGACTGGTGATCGGCGTCGTCGTCGCGCTGGTCGCGGCCGCGGTCTCCGCCGCCGTGCGCACGATCGACGAGATGTCGGCGCCCCTGGCCGCCGCCGCGGCCGTCGTGCCGATCGTCGCCCTCGCCCCGGTGCTCTACACGATGTTCGGGGCGAGCACCCAGACCGCGCGGGTCGCCGTGGCCGCGATCGTGTCCTTCGTCCCGGTGTACGTCAACACCCTGCGGGGCCTGCGCACCGTGGCCCCGGTGCACCGCGACCTGCTGCGTGCCTACGCCGCGACCCGCCGGCAGGCGACGCTCACCGTCACCCTGCCCGGCGCGCTGCCGTTCTTCTTCAGCGGCCTGCGGGTCGCCACCTCCCTGGCCGTGATCTCCGCCCTGGTCGCGGAGTACTTCGGCGGGCCGGTGGACGGGCTCGGCAAGGCGATCACCTCGGCCGTGTCGTCCAGCAACTACCCGCTCGCGTGGGCCTACGTCGTGGGAGCCGTCGTCGTCGGGCTCCTGTTCTTCTGCGGCAGCTCCGGGCTGGAGCGGGCGGTCCTGCACCGCCGCTCCCAGCGTTGAMTRSATTTWRRVEVVLAPVLLGLLALALWETAVVVLELRPFVVPSPTSIGAELTGNAGIITTAALSTALNAWWGLVIGVVVALVAAAVSAAVRTIDEMSAPLAAAAAVVPIVALAPVLYTMFGASTQTARVAVAAIVSFVPVYVNTLRGLRTVAPVHRDLLRAYAATRRQATLTVTLPGALPFFFSGLRVATSLAVISALVAEYFGGPVDGLGKAITSAVSSSNYPLAWAYVVGAVVVGLLFFCGSSGLERAVLHRRSQRPGPT0001145_4142DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_001551149hypothetical proteinATGAAGCACACAGCACGCACCGTCGTCACCACCGGGGCCGTCGTCGCGAGCACAGCGCTCGTGCTGTCCGCCTGCGGCGGCGAGACCGAGCCCACCGAGTCCGCCGACGGCGAGGAGCTGACCCCGGTCACGCTCCAGCTCCAGTGGGTCGCCCAGGCCCAGTTCGCCGGCTACTACGCCGCCGTCGACCAGGGCTTCTACGAGGAGGAGGGCCTGGACGTCACGATCCAGGAGGCCGGGACCGACACCGTCCCGATCGACGTGCTCGCCGCCGGCGAGGCCGACTACGCCATCTCCTGGGTGCCGAAGGTGCTCGGGTCGATCGAGCAGGGCACGGAGGTGACCAACGTCGCCCAGGTGTTCGAGCGCTCGGGCACGCTGCAGGTCGCCATGGCCGACTCCGGCATCGAGGGCCCCGAGGACCTGGCCGGCAAGAACGTCGGCTCGTGGGGCTACGGCAACGAGTGGGAGCTCTTCGCCGGGATGCAGCAGGCCGGCCTGGACACCAGCGAGGACATCACCCTCGTCCAGCAGGCCTTCGACATGAACGGCTTCCTGGCCGGTGACATCGACGCCGCCCAGGCGATGACGTACAACGAGTACGCCCAGGTGCTGGAGACGGTGAACCCCGACACCGGTGAGCTCTACCAGCCCGAGGACCTGACGGTCATCGACTGGAACGAGGTCGGCACGGCGATGCTGCAGGACGCCATATGGGCCGACGCCACCCGCCTGGCCGACGACGAGGCCTACGCCGAGACCACGGTCGACTTCATCAAGGCGTCCCTCAAGGGCTGGGCGTACGCCCGCGACGACGCCGAGGCGGCGGCCGACATCGTTACCGCCGCCGGGTCCACGCTCGGCACGAGCCACCAGCTCTGGCAGACCAACGAGACCAACAAGCTCATCTGGCCGTCCACCTCGGGCGTCGGCACCATCAACGCCGACCAGTGGGACCAGACCGTCGACATCGCGATGAACACCCAGAACGAGACCGGGTCGACGATCATCACCACCGAGCCGCCGGAGACGGCCTACTCCAACGAGTACGTCGAGGAGGCCCTGGCCGAGCTCACCGAGGAGGGCGTCGACGTCATGGGCGAGGACTTCGCCCCGATCGAGGTCACCCTCACCGAGGGCGGCGCGTAAMKHTARTVVTTGAVVASTALVLSACGGETEPTESADGEELTPVTLQLQWVAQAQFAGYYAAVDQGFYEEEGLDVTIQEAGTDTVPIDVLAAGEADYAISWVPKVLGSIEQGTEVTNVAQVFERSGTLQVAMADSGIEGPEDLAGKNVGSWGYGNEWELFAGMQQAGLDTSEDITLVQQAFDMNGFLAGDIDAAQAMTYNEYAQVLETVNPDTGELYQPEDLTVIDWNEVGTAMLQDAIWADATRLADDEAYAETTVDFIKASLKGWAYARDDAEAAADIVTAAGSTLGTSHQLWQTNETNKLIWPSTSGVGTINADQWDQTVDIAMNTQNETGSTIITTEPPETAYSNEYVEEALAELTEEGVDVMGEDFAPIEVTLTEGGAPGPT0001135_762DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
AK018_001561344tpa_1COG0161Taurine--pyruvate aminotransferaseATGACCGCCACCGAACCGTTGACCGGCGCGGCACTCGACGCCGCCGTCGTCGAGGCCGACCACCGGCACGTGCTGCACTCCTGGTCCGCCCAGGCGCACCTGCCGTCCTTCGTCGTCGCCGGCGGTGCCGGCTGCCGGGTCTGGGACCACGCCGGGACCAGCTGGCTGGACTTCTCCAGCCAGCTGGTCAACACCAACATCGGCCACCAGCACCCGGCGGTCGTCGCCGCCATCGCCGAGCAGGCCCGCACCCTGACCACGATCTCGCCCGCCACCGCGAACCTGGCCCGCGGCCGGGCCGCCGAGCGCATCCTGGCCCGCGCCCCGGAGGGCTTCGCCAAGGTCTTCTTCACCAACGGCGGCGCCGACGCCAACGAGAACGCCGTGCGCATGGCCCGCCTGCACACCGGCCGCGACAAGGTGGTCTCCACCTACCGCTCGTACCACGGCAACACCGGGGCCGCCGTCGTCGCCACGGGGGACTGGCGGCGCGTGCCCAACGAGTACGCCCGCGGCCACGTGCACGCCTTCGGGCCCTACGCCTACCGTTCGGAGTTCTGGGCGACGTCGGAGGCCGAGGAGTGCGAGCGGGCCCTGCACCACCTCGAACGGGTGGTGCAGTGCGAGGGGCCGGCGTCGGTCGCCGCGATCCTGCTCGAGACGGTCCCCGGCACGGCGGGCGTGCTCGTGCCGCCGCCCGGCTACCTCGCCGGCGTGCGCGAGATCTGCGACCGGTACGGCGTCCTGCTGATCCTCGACGAGGTGATGGCCGGGTTCGGCCGGACCGGGTCCTGGTTCGCCTTCGACGACCACGACGTCGTGCCCGACCTGGTCACCTTCGCCAAGGGGGTCAACTCCGGGTACGTGCCCGCCGGCGGCGTCCTCGTCAGCGCCGACGTCGCCGCGACCTTCGACGAGCGGGTCTTCCCGGGCGGGCTGACCTACTCGGGCCATCCGCTGGCGATGGCCGCGATCGTGGCCGCCCTGGACGCCATGGAGGCCGAGGGGGTGGTCGAGAACGCGGCCCGGGTCGGGCGCGAGGTGCTCGGCCCCGGCCTGGCGGCGCTCGCGGCCGAGAACCCGCTCGTCGGGGAGGTGCGCGGCACGGGGGTGTTCTGGGCGGTCGAGCTCGTCGCGGACCCGGCCACGCGCGAACCGCTGCCGGCCGCCGACATGGCCCGGATCAAGACACTCTGCCTCGAGCGTGGTTTGCTGCCCTTCGTGGCCGAGAACCGCGTCCACGTCGTGCCGCCGTGCGTCGTCACCGACGACGAGGCGCGCGAGGGCCTGGCGATCCTCGCCGGCGTCCTGCGCGACGTCGCCGCCGACCGACCCTCCGCCTGAMTATEPLTGAALDAAVVEADHRHVLHSWSAQAHLPSFVVAGGAGCRVWDHAGTSWLDFSSQLVNTNIGHQHPAVVAAIAEQARTLTTISPATANLARGRAAERILARAPEGFAKVFFTNGGADANENAVRMARLHTGRDKVVSTYRSYHGNTGAAVVATGDWRRVPNEYARGHVHAFGPYAYRSEFWATSEAEECERALHHLERVVQCEGPASVAAILLETVPGTAGVLVPPPGYLAGVREICDRYGVLLILDEVMAGFGRTGSWFAFDDHDVVPDLVTFAKGVNSGYVPAGGVLVSADVAATFDERVFPGGLTYSGHPLAMAAIVAALDAMEAEGVVENAARVGREVLGPGLAALAAENPLVGEVRGTGVFWAVELVADPATREPLPAADMARIKTLCLERGLLPFVAENRVHVVPPCVVTDDEAREGLAILAGVLRDVAADRPSANANANANANA
AK018_00157786COG4221putative oxidoreductaseATGAGCACCACCCCCACGCCCGCTCGCCGCGCCCTGGTCACCGGGGCGTCCTCCGGCATCGGCGCCGCCGTCGTCCGTCGCCTGCGCGCCGAGGGCTGGCAGGTCGTCGCGTCCGCCCGGCGCGCGGACCGCCTGGAGGACCTGGCCGCCGAGACCGGGGCCGAGGCCTACCCGCTGGACGTGACCGACGAGGCGGCCGTGGCCGCGCTGGCCACGCACCTGGAGGCGACCGGCGGGCTGGACGCCGTGGTGAACAACGCCGGCGGCGCGCTCGGCCTGGACCGCGTCGAGGACGGCGACCTGGACGGCTGGCGGCAGATGTACGAGCTGAACGTGCTCGGCACGCTGCGCGTCACGCAGGCTGTGCTGCCGCTGCTGCGCGCGTCCGCGGAGGCGCAGGGGCCCGCCGGCGGCGCGGACGTCGTGGTCGTGACGTCCACCGCCGCGCACGGCGCCTACGAGGGCGGCGCCGGGTACACCGGCGTCAAGCACGCCGAGCGGATGCTGACCACGACGCTGCGCTGGGAGATCGCCGGGGAGCCGATCCGCGTCATGGAGATCGCGCCCGGCAACGTCGCGACCGAGGAGTTCTCACTGGTGCGGTTCGACGGAGACGCCGAGCGGGCGGCGGCCGTCTACGAGGGGTATCAGCCCCTGGTGGCCGAAGACATCGCCGACGCGGTCGCCTGGGCCCTGACGCGGCCCGCGCACGTCAACACCGACCTGATGGTCATCCGGCCACGCGCTCAGGCGCACAACCAGAAGATCGCGCGCACGGGGGTCTGAMSTTPTPARRALVTGASSGIGAAVVRRLRAEGWQVVASARRADRLEDLAAETGAEAYPLDVTDEAAVAALATHLEATGGLDAVVNNAGGALGLDRVEDGDLDGWRQMYELNVLGTLRVTQAVLPLLRASAEAQGPAGGADVVVVTSTAAHGAYEGGAGYTGVKHAERMLTTTLRWEIAGEPIRVMEIAPGNVATEEFSLVRFDGDAERAAAVYEGYQPLVAEDIADAVAWALTRPAHVNTDLMVIRPRAQAHNQKIARTGVPGPT0021285_1141DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066NANA
AK018_001581332rfnT_1Riboflavin transporter RfnTATGTCCGCCGCACCGGCCCCCACCCGTCCCGTCGCCGCGGTGCAGCGGCGCACCCTGCGCGTCCTGGTGCTGGCCCAGGTGCTGTCCGGCGCCGGGCTCGCGGCGGGCATCACCGTCGGTGCCCTGCTGGTGACCGACCTTCTCGGGTCCGCGCGGTTCGCGGGACTGCCCGCGGCGCTGTTCACCGGCGGGTCGGCCCTGGCCGCGCTGGCCGTCGGCCGGCTGTCGCAGCGCCACGGTCGTCGCGCCGGGCTCGCGGCCGGCTACGTCGCCGGCGCCGTGGGCGCCTTCGTCGTCGTGGTCGCGGCGGCCGCGGAGAACGTCTGGGTCCTGATGGGCGCGTTCGCCCTGTACGGCGCCGGGACGGCCACCAACCTGCAGGCCCGCTACGCCGGGGCGGACCTCGCCGCGCCGGACCGCCGCGCCCGCGCCCTGAGCACCGTGCTCGTCGCCACCACGCTGGGTGCCGTCGCCGGCCCGAACCTCGTGGGCGTCATGGGCGACGTCGCCACCGGCTGGGGCCTGCCGGCGCTCACCGGCCCGTTCGTCCTCGGCGGGGCGGCCTACGCGGCGGCCGGGATCGTGCTCTGGGTCGCGCTGCGGCCCGACCCGTTGCTGCTGGCCCGCCGGCGGGACGAGGCCGCGGTCGAGAGCGCGACGGTGCCCGCGGCGGGCGAGGCCGTGGACGCGACCGCGGACCACGCGGACGACGACGGCGGAACCCCCGCCCCGACGGCACCGGACGGCGTCGAGGAGGACGCCGGGGACCCCGGGGCGGTGCGCCGCGCGGTGCTGGTCGCCGGGACGGTCATGGTCCTCACGCAGGCCGTCATGGTCGCGATCATGACGATGACACCGGTGCACATGGCCGACCACGGCCACGCGGTGTCCACGGCGGGGTTCGTCATCGCCGTGCACGTGGGGATGATGTACCTGCCCTCGCCACTGTCGGGCTGGCTGACCGACCGGTTCGGGCCGCTGCGGGTGGCGGTCGCCGCCGCGGTGACGCTGCTGGCCTCGGGGCTCGTCGCGGGCCTCGTGCCGTCGTCGTCGGTGGTCGGGCTCGCCGTCGGCCTGGGTCTGCTGGGGCTGGGCTGGAGCCTCGGGCTGGTGTCCGGCACCGCGATGCTCACGTCGTCGCTGCCCCTGGCGACCCGGGCCCGCACCCAGGGGGCCGTCGACCTGGCCCTCGCCCTGGCGGGCGCGGCCGGCGGGCTCGGGTCCGGGTTCGTCGTGGCGTCCACCAGCTTCGCGACGCTCTCGCTCGGTGGCGGCCTGCTCGCGCTGGCCGTGCTGCCGGTGGTGGCGTGGACCGCCCGGTCCCGTACCTGAMSAAPAPTRPVAAVQRRTLRVLVLAQVLSGAGLAAGITVGALLVTDLLGSARFAGLPAALFTGGSALAALAVGRLSQRHGRRAGLAAGYVAGAVGAFVVVVAAAAENVWVLMGAFALYGAGTATNLQARYAGADLAAPDRRARALSTVLVATTLGAVAGPNLVGVMGDVATGWGLPALTGPFVLGGAAYAAAGIVLWVALRPDPLLLARRRDEAAVESATVPAAGEAVDATADHADDDGGTPAPTAPDGVEEDAGDPGAVRRAVLVAGTVMVLTQAVMVAIMTMTPVHMADHGHAVSTAGFVIAVHVGMMYLPSPLSGWLTDRFGPLRVAVAAAVTLLASGLVAGLVPSSSVVGLAVGLGLLGLGWSLGLVSGTAMLTSSLPLATRARTQGAVDLALALAGAAGGLGSGFVVASTSFATLSLGGGLLALAVLPVVAWTARSRTNANANANANA
AK018_001593324ileS_1COG0060Isoleucine--tRNA ligaseATGGCCTACCCGCTGCACCGCACCCCCGACGCGTCCGCGTCCACGCCCGGCGAGGCGTTCGGCATCGCCGGCGTCCCCGCGTCCCCGCAGCTGCCGCAGATCGAGCGCGAGGTGCTGGCCCACTGGGAGGCCGACGACACCTTCCGGGCCTCGGTCGCCAAGAACCCGGCCGGCGAGAACGGCGAGAACGAGTTCGTCTTCTACGACGGCCCGCCGTTCGCCAACGGTCTGCCGCACTACGGCCACCTGCTCACCGGCTACGTCAAGGACGTCGTGCCGCGGTACCAGACGATGCGCGGCAAGCACGTCGAGCGCCGCTTCGGGTGGGACACCCACGGCCTGCCCGCCGAGCTCGAGGCGATGAGCCAGCTCGGCATCAAGACCAAGGACGAGATCCTCGACCTCGGCATCGAGACGTTCAACGACGCCTGCCGCTCGTCGGTGCTGAAGTACACCGCCGAGTGGCGCGAGTACGTCACCCGCCAGGCGCGCTGGGTCGACTTCGACCACGACTACAAGACGTTCAACCCCGACTACATGGAGTCGGTGATCTGGGCGTTCTCCGAGCTGTACCGCAAGGGTCTGGTGTACGAGGACTTCCGTGTCCTGCCGTACTGCTGGAACGACCAGACGCCGCTGTCCAACCACGAGCTGCGCATGGACGACGACGTCTACCAGAACCGCCAGGACCCCGCGGTGACCGTGGGGCTGGACGTGACGTCCGTGCCCGACGGCGGCACCGATGTCGTGCGCCCCGGCGACAAGCTGCTCGTGTGGACCACCACGCCGTGGACCCTGCCGTCCAACCTGCTCGTCATGGTCGGCGCGGACATCGACTACGTCGTCGTCGAGGCCTCGCCGACCGGGACGCCGCAGCGGTTCGTGCTCGCCGAAGCGCTGCTGGGCGCCTACGCCCGCGAGCTGACCGACGACGGTGCGGAGGAGCCGCGCGTCGTGGGTCGCCTGACGGGCCGCGACCTGCTCGGCATCACCTACGCCCCGCCGTTCTCCTACTACGCCGGGCGCGAGCGGGCCCACCGCGTCGTCGAGGCGGACTTCGTCACGACCACCGACGGCACCGGCCTGGTCCACTCCGCCGGCGCCTTCGGCGAGGACGACAAGGTCGTCTGCGACCGCGAGGGCGTGGCCTCGGTCATGCCCGTCAAGGCCGACGGCACGTTCACCGCCCCCGTCGCCGAGTACGCGGGTCTGCAGGTGTTCGATGCCAACGCCCCGATCATCGACCACCTCAAGGCCCGCACCCGCGCGGAGGCCGACGCCGGGTCCGTCAGTGCCGGGACGGTGCTGCTGCGCCGCGAGTCCTACGACCACGCCTACCCGCACTGCTGGCGCTGCCGGCAGCCGCTGATGTACATGGGCGTGTCGTCCTGGTTCGTCGAGGTCACGAAGATCAAGGAGCGGATGCTCGAGCTCAACGAGCAGATCGCCTGGACGCCGGACCACATCCAGCACGGCCAGTTCGGCAAGTGGCTGGAGAACGCCCGCGACTGGTCGATCACCCGCAACCGGTTCTGGGGCTCCCCGGTGCCGGTGTGGAAGTCCGACGACCCCGCCTACCCGCGCGTCGACGTCTACGGCTCCTTCGCCGAGCTCGAGCGCGACTTCGGCACCCTGCCGCGCAACGCGGCCGGCGAGCCGGACCTGCACCGCCCGTTCGTCGACGACCTGACCCGGCCGAACCCCGACGACCCGACGGGCAGGTCCACGATGCGGCGCGTCGAGGACGTGCTCGACGTCTGGTTCGACTCGGGCTCGATGCCCTACGCCCAGGTGCACCACCCCTTCGAGAACGGCGAGTGGTTCGAGGACCACTACCCGGGCGACTTCATCGTGGAGTACATCGGCCAGACCCGCGGCTGGTTCTACACGCTGCACATCCTGGCCACCGCCCTGTTCGACCGGCCGGCCTTCCGCTCGGCGGTCTCGCACGGCATCGTGCTCGGCTCCGACGGGCGCAAGATGAGCAAGTCGCTGCGCAACTACCCGGACGTCAACGAGGTCTTCGACCGCGACGGCTCCGACGCGATGCGCTGGTTCCTCATGGCCAGCCCGATCCTGCGCGGCGGCAACCTCGTGGTCACCGAGGACGGCATCCGCGACGCCGTGCGTCAGGTGCTGCTGCCGCTGTGGAGCACGTACTACTTCTTCACCCTGTACGCGAACAGCGCGAGCGGTTCCGAGGGCTCCGCCGCGGGATACCTCGCGAAGCCCGTGACGGCCGACCGGGTGCCCGGTCTGCCCGCCCTGGACCGCTACCTGCTGGCCCGCACCCACGACCTCGTGGGCCGCGTGACCGACCAGCTCGACGCCTACGACGTCGCGGGCGCCTGCGAGACCGTGCGCGAGCACCTCGACGTGCTCACCAACTGGTACGTGCGCACCCAGCGGGACCGGTTCTGGGCGGAGGACGCCGACGCGTTCGACACCCTGTACACGGCTCTCGAGGTGCTGTGCCGCGTCATGGCACCGCTCGCCCCGCTGGTGACCGAAGAGATCTGGCGCGGGCTGACCGGGGAGCGCTCGGTGCACCTGGCCGACTGGCCGACGGCGGACACGCATCCCGCACTCGTCGCCGACGACGCGCTCGTGGCCGCCATGGACGAGGTGCGCGCCGTGGTCTCGTCCACGCTCGCGCTGCGCAAGGCGAACCAGCTCCGCGTCCGACAGCCGCTGGCCCGGCTCACCGTGGCCGTGCCGGACCCGGAGGCGCTCGCGGACTACACCGGGCTGCTGACCGGCGAGCTCAACGTCAAGGCCGTCGACCTGGTCGTGGCCGACGCCGCGGCCTCCGAGCGGTTCGGGATCACCGAGCGGCTCGCGGTCAACGCGCGGGCCGCCGGTCCGCGGCTCGGGCGGGGCGTGCAGGCGGTCATCAAGGCGGCCAAGACCGGCGCCTGGCACCAGGTCGACGGCGAGGTCGTGGTGACCACCGACGACGGCGAGGTGTCGCTGCTGCCGGCCGAGTACGAGCTGACCACCGTCGTCGGCTCCGAGGCCGGTGCCGACGTGGCCGCCTCCGTGCTGCCCGGCGGGGGGTTCGTCGTCCTCGACCTGGCACTGGACGACGCGCTGCGCGCCGAGGGGTACGCCCGCGACGTCGTCCGCGACGTCCAGGACGCCCGCAAGGCCGCCGGACTCGAGGTGAGCGACCGCATCGACCTGTCGCTCGGGGTGCCGGCCGAGCACGTGGCCGCCGTCGAGGCGCACCGCGGCCTGGTGATGCGCGAGACCCTGGCGACGTCCCTGGACGTGACCGCCGTCGACGGCGGCGAGCGTTCGGTCGAGGTCGCCCGCGCGAAGTAGMAYPLHRTPDASASTPGEAFGIAGVPASPQLPQIEREVLAHWEADDTFRASVAKNPAGENGENEFVFYDGPPFANGLPHYGHLLTGYVKDVVPRYQTMRGKHVERRFGWDTHGLPAELEAMSQLGIKTKDEILDLGIETFNDACRSSVLKYTAEWREYVTRQARWVDFDHDYKTFNPDYMESVIWAFSELYRKGLVYEDFRVLPYCWNDQTPLSNHELRMDDDVYQNRQDPAVTVGLDVTSVPDGGTDVVRPGDKLLVWTTTPWTLPSNLLVMVGADIDYVVVEASPTGTPQRFVLAEALLGAYARELTDDGAEEPRVVGRLTGRDLLGITYAPPFSYYAGRERAHRVVEADFVTTTDGTGLVHSAGAFGEDDKVVCDREGVASVMPVKADGTFTAPVAEYAGLQVFDANAPIIDHLKARTRAEADAGSVSAGTVLLRRESYDHAYPHCWRCRQPLMYMGVSSWFVEVTKIKERMLELNEQIAWTPDHIQHGQFGKWLENARDWSITRNRFWGSPVPVWKSDDPAYPRVDVYGSFAELERDFGTLPRNAAGEPDLHRPFVDDLTRPNPDDPTGRSTMRRVEDVLDVWFDSGSMPYAQVHHPFENGEWFEDHYPGDFIVEYIGQTRGWFYTLHILATALFDRPAFRSAVSHGIVLGSDGRKMSKSLRNYPDVNEVFDRDGSDAMRWFLMASPILRGGNLVVTEDGIRDAVRQVLLPLWSTYYFFTLYANSASGSEGSAAGYLAKPVTADRVPGLPALDRYLLARTHDLVGRVTDQLDAYDVAGACETVREHLDVLTNWYVRTQRDRFWAEDADAFDTLYTALEVLCRVMAPLAPLVTEEIWRGLTGERSVHLADWPTADTHPALVADDALVAAMDEVRAVVSSTLALRKANQLRVRQPLARLTVAVPDPEALADYTGLLTGELNVKAVDLVVADAAASERFGITERLAVNARAAGPRLGRGVQAVIKAAKTGAWHQVDGEVVVTTDDGEVSLLPAEYELTTVVGSEAGADVAASVLPGGGFVVLDLALDDALRAEGYARDVVRDVQDARKAAGLEVSDRIDLSLGVPAEHVAAVEAHRGLVMRETLATSLDVTAVDGGERSVEVARAKNANANANANA
AK018_001601422folC_1COG0285Dihydrofolate synthase/folylpolyglutamate synthaseGTGAGCGACGAGCAGGGCAAGACGAAGAAGCAGAAGGCCGACGAGCGCAAGGCGGCCCGGACCGCCGCGGAGGACGCCGCCGCGCGCGAGGACCTGGAGCGCATCTACGCCCACATCGTGTCCCGGGCGCCGGAGCACGACATCTCGCCGACTCTCGACCGGGTCGCGCGGCTGCTCGAGCTCCTCGGGGACCCGCAGCACACCTTCCGGGCGATCCATCTGACCGGCACGAACGGCAAGTCGTCGACCGCCCGGATGGCCGAACGGCTCGTGCGCGAGCACGGGCTGCGCTCGGGACTGTTCACCTCCCCGCACCTGAGCAGCGTCACCGAACGCATCCAGGTCGACGGCGAACCGCTCAGCCCGGTGCGCTTCGTCGAGATCTGGAACGACGTCCACCCCTACATCCAGGTCGTCGACGCCGAGCTGATCGAGGCCGGGCAGTCGCGCCTGAACTTCTTCGAGGTGCTGACGGGTCTGGCCTTCGCGGCGTTCGCCGACGCCCCGGTCGACATCGCCGTGCTCGAGGTCGGGATGGGCGGCACCTGGGACACCACCAACACCGTCGACGCCGACGTCGCCGTGATCACGCCGATCAGCGTCGACCACGAAAAGTGGCTCGGCTCCACGCCGGCCGAGATCGCGGGGCTCAAGGCCGGCATCATCAAGCCCGGCGCGACGGCGTTCTCGGCCGTCCAGCGCCCCGAGGTCGACGAGGTCCTGGTCGAGCGGGCCCTCGAGGTCGGCGCCCGGCTGCTGCGCGAGGACGTCGACCTGGAGGTCGTGGCGCGCCAGGTCGCGGTGGGCGGCCAGATGGTCAGCCTGCGCACCCCGCTGGCCACCTACACCGAGATCTTCGTGCCGCTGCACGGTGAGCACCAGGCCCACAACGCCCTGCTGGCGCTCGCGGCGGCGGAGCAGGCCCTGGGCGGTCGCGCCCTGGACGGGGGAGCGGTCGAGACGGCCTTCGCCGACGTCGCCGTCCCCGGCCGGCTGGAGCTCGTCCGCTCCAGCCCGACGGTCCTGGTCGACGTGGCGCACAACCCGCACGGCGCGGAGTCGCTGGTGGCGGCGCTGGACGAGGCGTTCACTCTGCGCACCGTGGTCGGCGTGGTCGGCCTGATGGCCGACAAGGACGCCGAGGGACTTCTCACCGCGCTGGAGCCGGGGCTGTCCCAGGTGGTGCTGACGCGGAACTCCTCGGAGCGCTCGGCGGACCCCTTCGCGGTGGCGGAGATCGCCCGCGAGATCTTCGGCGACCACCGGGTCCAGGTCACCGAGCGTCTCGACGAGGCGCTGCAGGTGGCGACGGACCTGCTCGAGGCGGCGGACTCGGTCGGCGTCGGGCACGGCACCGGTGTCGTCGTCACGGGCTCCGTCGTCACGGTGGCGGACACCCGGATCCTCCTCGGGCGCGGCTGAMSDEQGKTKKQKADERKAARTAAEDAAAREDLERIYAHIVSRAPEHDISPTLDRVARLLELLGDPQHTFRAIHLTGTNGKSSTARMAERLVREHGLRSGLFTSPHLSSVTERIQVDGEPLSPVRFVEIWNDVHPYIQVVDAELIEAGQSRLNFFEVLTGLAFAAFADAPVDIAVLEVGMGGTWDTTNTVDADVAVITPISVDHEKWLGSTPAEIAGLKAGIIKPGATAFSAVQRPEVDEVLVERALEVGARLLREDVDLEVVARQVAVGGQMVSLRTPLATYTEIFVPLHGEHQAHNALLALAAAEQALGGRALDGGAVETAFADVAVPGRLELVRSSPTVLVDVAHNPHGAESLVAALDEAFTLRTVVGVVGLMADKDAEGLLTALEPGLSQVVLTRNSSERSADPFAVAEIAREIFGDHRVQVTERLDEALQVATDLLEAADSVGVGHGTGVVVTGSVVTVADTRILLGRGPGPT0007975_551DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007975-folC-K11754NANA
AK018_00161981yclQ_1COG4607Petrobactin-binding protein YclQGTGAGCATTCGCTCCCTGCGTCGCGCGGCCGTCGTCGCGGCGCCCGCCGCCGTCCTGGCGCTGTCCCTGTCGGCCTGCGCCGACGCCGACGAGACCGAGGCCGGCGCGGCCGAGGCGGACACCGCTGCCGGGACCACGACCCTCACCATCGAGCACGCGCAGGGCACCACCGAGCTCGACGGTGTCCCGGAGAAGATCTTCACCTTCGACTACGCGGCGCTGGCAGTCCTCGACGCGCTGGACGTCGACGTCGCCGGCGTCGCCAAGTCGAACCTGCCCGACGTGTTCTCCGAGTACGCCGGGGACGACGTCACCGACATCGGCACGATCTTCGAGCCCGACTACGAGACGGTCGCCGCCGAGCAGCCCGACCTCATCATCGTCGCGGGCCGTTCCTCCACCGCCTACCCGGACCTGTCGGAGATCGCCCCGACCATCGACCTGTCCAACGACTGGGCGAGCTTCCACGACTCCGTGGTCGCCAACACCGAGCTGCTCGGCGAGGCGGTCGGTGCCGAGGAGGGCGTCGACGAGCTCATCGCCGACCTCGACGAGTCCGTCGCCGCCGCGCAGGAGGTCGCCGCCGACGCCGGGACGGGCCTGATCGTCCTGACCTCCGGCGGCGAGGTCACCGCGTACGGACCGGGGTCCCGCTTCGGGTACCTGCACGACACGCTCGGTGTCACGCCGGCGGTCGAGGACGTCGAGGCGGAGACGCACGGCGAGGCGGTCTCCTTCGAGTTCGTCCTCGAGGCGGACCCCGACTGGCTCTTCGTCCTGGACCGCGACGCCGCGATCGGCGAGGGCACCGACAACGCCGAGCAGGTGCTCGACAACGCCGTGGTGCACGAGACCACCGCGTGGTCCGAGGACCAGGTCGTCTACCTGGACCCGGTCGCCTGGTACATCGTCAACGGCGGCGTGCCCACCCTGACGGGGATGGCCGACGAGGTCACCGCCGCGCTGCAGGACGCCTCCTGAMSIRSLRRAAVVAAPAAVLALSLSACADADETEAGAAEADTAAGTTTLTIEHAQGTTELDGVPEKIFTFDYAALAVLDALDVDVAGVAKSNLPDVFSEYAGDDVTDIGTIFEPDYETVAAEQPDLIIVAGRSSTAYPDLSEIAPTIDLSNDWASFHDSVVANTELLGEAVGAEEGVDELIADLDESVAAAQEVAADAGTGLIVLTSGGEVTAYGPGSRFGYLHDTLGVTPAVEDVEAETHGEAVSFEFVLEADPDWLFVLDRDAAIGEGTDNAEQVLDNAVVHETTAWSEDQVVYLDPVAWYIVNGGVPTLTGMADEVTAALQDASPGPT0003765_3419DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
AK018_001621005yclN_1COG4606Petrobactin import system permease protein YclNATGAGCGTCACGACCGCACCTGCCGGGACGGCGTCGCACCGCGGCGCCGTCCTCGGCATCCCCCTGGCGCTGCTCGGGCTGGCCCTCGGGGCCGTCGCCTCGGTGTTCATCGGCGTCAGCGACGTCTCGCCGGCCACGCTGTGGGCGGACGACGGGCACGCCCGCCAGCTCCTGACGGTGTCGCGGCTGCCGCGCACCGTCGCGATCCTGCTCGCCGGCGCCTGCACCGCCGTCGCCGGCGTCGTGATGCAGATGCTGGTGCGCAACCGGTTCGTCGAGCCGTCCACCGTCGGCACCTCGGAGTCGGCCGCCCTGGGCCTGCTGATCGTCACCCTCTTCGCGCCCGGCATGGCGCTGCCCGGCAAGATCGGCGTCGGGGCGGTGTTCGCGGTGGCCGGGACCCTGCTGTTCCTGTGCGTGCTGCGGGCCGTGCCGATCCGGTCGGTCGTCACCGTGCCGCTGGTCGGCCTCATGCTCGGCGGCATCATCGGCGCCGTGGCGGCGTACATCGCGTTCCGGCACGACCTGATGCAGACGCTGTCCGCCTGGCTGACGGGGGACTTCTCCGGCGTGACGGCCGGCCGGTACGAGATGCTCTGGGTCGTCGCGGCCCTGACCGTCGTCGTCTACGTCCTCGCCGACCGGTTCACCGTCGTCGGGCTCGGGCGGGACACCGCCACCGCCCTCGGCCTCGGCTACCGCGGCGTGATGGCCCTGGGTCTGGGGGTCGTGGCGGTCACGAGCGCGGTCGTGGTCGTGGTGGTCGGTGCGCTGCCGTTCCTGGGGCTGGTCGTGCCGAACGTCGTCAGCCTGCTGCGCGGGGACAACCTGCGTCGTTCCCTGCCGTGGGTCGCCATCGGGGGCGCGGCCCTGGTGCTCGTGTGCGACGTCGTCGGCCGCGTCGTCCGCTACCCCTACGAGATCCCGATCGGCGTCGTCATGGGCGTGGTCGGCGCGGCCGTCTTCCTGTGGCTGCTGCTGCGGAGGGCCCCCGATGTCGGTTGAMSVTTAPAGTASHRGAVLGIPLALLGLALGAVASVFIGVSDVSPATLWADDGHARQLLTVSRLPRTVAILLAGACTAVAGVVMQMLVRNRFVEPSTVGTSESAALGLLIVTLFAPGMALPGKIGVGAVFAVAGTLLFLCVLRAVPIRSVVTVPLVGLMLGGIIGAVAAYIAFRHDLMQTLSAWLTGDFSGVTAGRYEMLWVVAALTVVVYVLADRFTVVGLGRDTATALGLGYRGVMALGLGVVAVTSAVVVVVVGALPFLGLVVPNVVSLLRGDNLRRSLPWVAIGGAALVLVCDVVGRVVRYPYEIPIGVVMGVVGAAVFLWLLLRRAPDVGPGPT0003770_8158DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_001631047yclO_1COG4605Petrobactin import system permease protein YclOATGTCGGTTGACACCCATCCGCTCGACGCGGTGCCGGGTGCCCGGTCCGACGCCGGGACTCCCGTTGCCGCGAGCGACCCCACCGAGCGGGCCCTGCGCCGTCGCGCCCTGGGCGTGCTGGGCGGGCTCGGCGTGCTCGCGCTGGCGGTGACCGTCCTGTACCTGACCGTGGACGTGCGCGCGGGCTGGGAGTTCACTCTGCCCTTCCGGGGGCGACGGGTGGCGGCCATGGTCGTCGTCGGGGTGGCGGTCGCCGCGTCGACGGTCGTCTTCCAGACCCTGACGACGAACCGCATCCTGACCCCGTCGATCCTCGGGTTCGACTCCCTGTACCAGCTGCTGCAGACCACGCTGGTGTTCGTGCTCGGCTCGTACGCCCTCGCCTCGGTCGGGGTGGTCGAGCAGTTCGGTCTCGCGGTCGCCCTCATGGTGGGTGCCTCCCTGGCCCTCTTCCTCGGCCTGTTCGGCGGCGCGCGCCGTTCCCTGCACCTCGTGCTGCTCATCGGCGTCGTGCTCGGCACGCTGCTGCGCTCGGCCACCGCGCTGATGCAGCGGATGATGGACCCGAGCGAGTTCCAGGTGCTGCAGTCGCGGCTCTTCGCCAGCTTCACCGGGGTCGACGAGCGACTCCTGGGTGTCAGCGCCGTCGTCGTCGCGGCCTGCTGCGGCGTGCTGTGGGTCCTGCGCCGCCGTCTCGACGTCGTCGCCCTGGGGCGCGACACGGCCGTGTCCCTGGGCGTGGACCATCGCCGCACGTCCTTGCTGGTGCTGGTCGTGGTCGCCGTCCTGGTCTCGGTCTCCACGGCCCTGGTCGGGCCGATCACGTTCTTCGGCCTGCTGGTGGCCAACCTGGCCTACGTGCTGCTCGGCACCCAGCGGCACGCCCTGACCCTGCCCGTGGCGGCGCTGCTGTCCGTCGTGACCCTGGTCGGGGGCCAGACCGTGCTCGAGCACCTGCTCGGCATGGAGACCGTGCTGTCCGTCGTCATCGAGTTCAGTGGAGGCATCGTGTTCATCGCCCTGCTCGTCGCCGGGGGGCGGCGATGAMSVDTHPLDAVPGARSDAGTPVAASDPTERALRRRALGVLGGLGVLALAVTVLYLTVDVRAGWEFTLPFRGRRVAAMVVVGVAVAASTVVFQTLTTNRILTPSILGFDSLYQLLQTTLVFVLGSYALASVGVVEQFGLAVALMVGASLALFLGLFGGARRSLHLVLLIGVVLGTLLRSATALMQRMMDPSEFQVLQSRLFASFTGVDERLLGVSAVVVAACCGVLWVLRRRLDVVALGRDTAVSLGVDHRRTSLLVLVVVAVLVSVSTALVGPITFFGLLVANLAYVLLGTQRHALTLPVAALLSVVTLVGGQTVLEHLLGMETVLSVVIEFSGGIVFIALLVAGGRRPGPT0003770_10338DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_00164786yclP_1COG4604Petrobactin import ATP-binding protein YclPATGACGGCACCGACCGAGGTCCGGCGCGCCATCGCCGCCGAGGGCCTGACCAAGCGCTACGGGCGGACCGTCGTCGTCGACGACGTGAGCCTCGAGCTCCCGGCCGGCGGCGTGGTCTCGATCGTCGGCCCCAACGGGGCCGGCAAGTCGACGCTGCTCGGCATGGTCTCGCGCCTGCTGCCCGTGGACGCCGGCCGGGTGGTCGTGGACGGGGACGACATCGCCTGCACCCCGGCGGACGTGATGGCGCGGCGCCTGGGCATCCTGCGCCAGGACAACCACCTGGCGGTGCGCCTGACGGTGCGCGAGCTGGTGACCTTCGGCCGGTATCCCCACAGCAAGGGGCGCACGACCGCGGAGGACCGGCGCCACGTCGACGCCGCGCTGGAGTACCTGGACCTCACGGGGCTCGCGGGGAGGTTCCTCGACGAGATGTCGGGCGGGCAGCGCCAGCGTGCCTTCGTCGCGATGGTCCTCGCCCAGGACACGGACTACGTGCTGCTGGACGAGCCGCTGAACAACCTCGACATGGTGCACGCCCGCGCCATGATGCGGCTGGCCCGTCGCGCGGCGGACGACCTCGGCAAGACGGTCGTGACGGTGCTGCACGACATCAACTTCGCCGCCGCCTGGTCGGACCGCGTCGTGGCCATGAAGGACGGTCGCGTCGCGGCGCACGGCACCCCGGCCGAGATCATGCGGCCCGACGTCCTGGGTGCGGTCTTCGACATGGACGTGGCCGTGCACGAGATCGACGGCCGACCGGTCGCGCTGTACTACACGTGAMTAPTEVRRAIAAEGLTKRYGRTVVVDDVSLELPAGGVVSIVGPNGAGKSTLLGMVSRLLPVDAGRVVVDGDDIACTPADVMARRLGILRQDNHLAVRLTVRELVTFGRYPHSKGRTTAEDRRHVDAALEYLDLTGLAGRFLDEMSGGQRQRAFVAMVLAQDTDYVLLDEPLNNLDMVHARAMMRLARRAADDLGKTVVTVLHDINFAAAWSDRVVAMKDGRVAAHGTPAEIMRPDVLGAVFDMDVAVHEIDGRPVALYYTPGPT0003760_3375DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_00165996dhaK_1COG2376PEP-dependent dihydroxyacetone kinase, dihydroxyacetone-binding subunit DhaKATGAAGAAGTTGCTCGACGACCCGTCACAGGCCGTCACTGACTCGCTCCGGGGGTTCGGTCTGGCGCACGCCGACCAGGTCTCGGTGCACCACGGGCCGAACTACGTCGTCCGGGCCGGTGGGACGCCGCCCGGCCAGGTCGCCGTCGTCAGCGGTGGTGGCTCCGGGCACGAGCCGCTGCACGCCGGGTTCGTCGGGGCCGGCATGCTGGACGCCGCGGTCCCGGGCGAGGTGTTCACCTCGCCGACGCCGGACCAGGTCCTGGCGGCCGTGCAGGCCGCCGACGGCGGCGCCGGCGTCCTGCTGATCGTCAAGAACTACACCGGCGACGTGCTCAACTTCGAGACGGCCGCCGAGCTCGCCGAGGCCGAGGACGTCGAGACCACCAGCGTGCTGGTGAACGACGACGTCGCGGTCGAGGACTCGCTGTACACGGCCGGACGCCGCGGCGTCGCCGGCACGCTGTTCGTCGAGAAGGTCGCCGGTGCCGCGGCGGCCCGGGGCGACTCGCTCGCGCAGGTCACCGCGCTGGCCGAGCGCGCGGCGTCCGCGGTGCGCTCCATGGGGGTGGCCCTGACCGCGTGCACGGTGCCCCACGTCGGCAAGCCGAGCTTCGACCTCGGCGAGGACGAGGTCGAGATCGGCATCGGCATCCACGGCGAGCCCGGTCGTCACCGGGTGACGGCGAGCGGCGCGAGCGACATCACGCGGCGCCTGGTCGACTCGGTCCTGGACGACATCGAGCTGGCCGAGGGCGCTCGCGTGCTGCTGTTCGTCAACGGCATGGGCGGCACGCCCGCGAGCGAGCTCTACGTCGTGTACGGGATCGCCCGGCAGATGCTGGTCGACCACGGGGCGCAGGTGGAGCGCTCGCTGGTGGGCAGCTACGTGACGTCGTTGGAGATGCAGGGGGTGTCGGTGACCGTGGCGGTGCTCGACGACGAGCTGATCGAGCTCTGGGACGCGCCGGTCCGGACCCCGGCCCTGACGTGGTGAMKKLLDDPSQAVTDSLRGFGLAHADQVSVHHGPNYVVRAGGTPPGQVAVVSGGGSGHEPLHAGFVGAGMLDAAVPGEVFTSPTPDQVLAAVQAADGGAGVLLIVKNYTGDVLNFETAAELAEAEDVETTSVLVNDDVAVEDSLYTAGRRGVAGTLFVEKVAGAAAARGDSLAQVTALAERAASAVRSMGVALTACTVPHVGKPSFDLGEDEVEIGIGIHGEPGRHRVTASGASDITRRLVDSVLDDIELAEGARVLLFVNGMGGTPASELYVVYGIARQMLVDHGAQVERSLVGSYVTSLEMQGVSVTVAVLDDELIELWDAPVRTPALTWPGPT0018460_1095DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018460-dhaK|dak-K05878NANA
AK018_00166642dhaL_1COG2376PEP-dependent dihydroxyacetone kinase, ADP-binding subunit DhaLGTGAGCGCGCTGGACGCCGGATGGGCCGAACGATGGATGCGTCAGGCGGCGAGCGACCTGAAGGCGGGTCGTGACGAGCTGACCGAGCTGGACCGCCGCATCGGCGACGGTGACCACGGCAACAACATGGACCGGGGTTTCACCGCCGTCGTCGCGAAGCTGGACGACGCGGGCTCGCCGGACACCGTCGGGCAGGTGCTGAAGCTGGTCGCCACGACGCTGATGTCCACCGTCGGCGGGGCCTCGGGCCCGCTGTACGGCACGGCGTTCCTGCGCGCGTCGAAGGTCGTGGACCGGGCTACGGTCGACCCGGCCTGCCTGGTCTCGCTCGCCGAGGCGGCGACCGAGGGGATCGTGGCCCGCGGTCGCGCGCACGTGGGGGAGAAGACGATGGTCGACGCGTGGCAGCCGGCCGTCGAGGCGGCCGAGCAGGCGGCGGGGTCGGGGGACGTCCTGGACGTGCTCCGCGCTGCGGCTGCGGCCGCCGAGGCCGGTGCGGTCGCGACGATCCCGCTGGTGGCCACCAAGGGTCGCGCGTCCTACCTGGGCGAACGCAGCGCCGGCACCGAGGACCCGGGCGCCCGGTCGACGGCGATGCTGCTGGCGGCGGCGGTGACCGCCGCCGAGGAGGTGGCCGGGTGAMSALDAGWAERWMRQAASDLKAGRDELTELDRRIGDGDHGNNMDRGFTAVVAKLDDAGSPDTVGQVLKLVATTLMSTVGGASGPLYGTAFLRASKVVDRATVDPACLVSLAEAATEGIVARGRAHVGEKTMVDAWQPAVEAAEQAAGSGDVLDVLRAAAAAAEAGAVATIPLVATKGRASYLGERSAGTEDPGARSTAMLLAAAVTAAEEVAGPGPT0018455_635DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018455-dhaL-K05879NANA
AK018_00167762dhaM_1COG1080PEP-dependent dihydroxyacetone kinase, phosphoryl donor subunit DhaMGTGAGCGTGGCCCTGGTGCTCGTCTCCCACTCGCCGCGGCTGGCCGACGGTCTCGCCGAGCTGACCGCCCAGATGGCCCCGGACGTCGTGGTGTGCTGCGCGGCGGGCGACGTGGACGGCGGCCTGGGCACCTCGCTCGACCGCGTGCAGGAGGCGCTCGAGGCGGCGCTGGCACGGGCCGACGCCGTCGTCGTGCTGGCCGACCTCGGGTCCGCCGTGCTCGTGGTGGAGTCGGTGCTGGAGCTGGACCCGGACCTGCCGCCGCGGGTGCGGACGGTCTCGGCACCCTTCGTGGAGGGTGCCGTCGCGGCGGCCGTGAGCGCCCAGCAGGGTGCGGACCTGGACGGGGTGGCGGCCGCCGCGGAGGACGCCGCACGGTCGATCGGGCCGGAACCGGTCTACCAGGTGGTGGAGGCCGCCGGGACGGGTAGTCCGCCGATCGCGGGGACGTGGGCGCAGGGCGAGGTGGTGCCGGAGCCGGGGGCGCCGTCGTCGGGCGCCGCGGACGAGGTCAGCGCGACCGTCGAGATCCGCAACGCGCTCGGGCTGCACGCGCGGCCGGCGGCGGTGGTGGCCCGGGCCGCGGCCGACCTGGGGGTGCCGGTGACGATCGAGGGGGCGGACGCCACGAGCGTGCTCGCCCTGATGTCCCTCGGGACGACGGCGGGGCAGCGGGTGACCGTGACGGCTCGCGGGGACGGCGCGCAGGGCGCGGTCGCGCTGGTGTCGGGGCTGATCGAGGGCGGTTTCGGCGAGGCGTGAMSVALVLVSHSPRLADGLAELTAQMAPDVVVCCAAGDVDGGLGTSLDRVQEALEAALARADAVVVLADLGSAVLVVESVLELDPDLPPRVRTVSAPFVEGAVAAAVSAQQGADLDGVAAAAEDAARSIGPEPVYQVVEAAGTGSPPIAGTWAQGEVVPEPGAPSSGAADEVSATVEIRNALGLHARPAAVVARAAADLGVPVTIEGADATSVLALMSLGTTAGQRVTVTARGDGAQGAVALVSGLIEGGFGEAPGPT0018450_174DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018450-dhaM-K05881NANA
AK018_00168606hypothetical proteinGTGACACCGACCGACCCGCCCTCCGGGCTGCGCGCCCGCAAGAAGCAGGCGCGCGCCGACGCCATCGTCGACGCCGCCCAGCGGCTCGTGCTCGACCGCGGCCTGGACGCCGTCACCGTCGAGGGGATCGCCGAGGCGGCGGGGATCTCCCCGCGGACCTTCTTCAACTACTTCGACTCCAAGGACGACGCCGTGCTCGGCCAGCGCGGTCTGGACGTCGACGACGAGGCCGTGGCGACCTTCGTCGCCGGCGGACCGACCGGCGACTTCCTCGACGACGTCGAGGCGCTCGTGACCGCCTTGGTCGCCGCGATGGCCGGCGGCCACGACCGGGCCGAGCGCGCCTTCGGCCTGATGGAGTCCGAGCCCCGGCTGCTGGCCGGTCACGTCACGTGGCTCGAGAAGCACCGCACCGAGATCGCGGCGCTCTTCGCCCGCCGGGTCGAGCGCACCCCTGGCCCGGCCGACCCGGACTTCTGCTCGATGACCGTGTTCCTGCTCGTCCGGGCGACCGGTGAGCGCTGGGAGCGGTCCGGCCGCACGGGCGAGCTGACCGACCACGTGCCCGGTGCCGTCGCGGCGCTGCGCGCCCTCTCCCGGGCCTGAMTPTDPPSGLRARKKQARADAIVDAAQRLVLDRGLDAVTVEGIAEAAGISPRTFFNYFDSKDDAVLGQRGLDVDDEAVATFVAGGPTGDFLDDVEALVTALVAAMAGGHDRAERAFGLMESEPRLLAGHVTWLEKHRTEIAALFARRVERTPGPADPDFCSMTVFLLVRATGERWERSGRTGELTDHVPGAVAALRALSRANANANANANA
AK018_001691704bmr3_1Multidrug resistance protein 3ATGGCTCACGCCCCCGCACCCGCGCCGGAGAAGCCGGTCGTCGTCCTGACGCAGCGCACCGTCTGGCTGATCTTCAGCGCCCTGCTGGCCTCGATGTTCCTCGCCTCGCTGGACCAGACGATCGTCGGCACCGCGATGCCGACGATCGTCGGCGAGCTCGACGGGGTCGCCCACCAGGGATGGGTCATCACCGCCTACATCCTGGCCGTCGCGATCGGCATGCCCCTGTACGGCAAGTTCGGCGACCTGTACGGGCGCCGGTGGCCGTTCCTCGTCGCCATCGGGCTGTTCACCGTGTCCTCGGCCGGGGCGGCCCTGGCCGACGGGATGCTGGCCCTGGTGCTCTGGCGTGCCGTGCAGGGTCTCGGCGGCGGCGGGCTGATGATCCTGTCGCAGTCGATCATCGCCGACATCGTGCCCGCCTCCGAGCGCGGCAAGTACATGGGTCCGCTGGGTGCGCTGTTCGGGATCTCGGCCGTGCTCGGACCGCTCCTCGGCGGCTGGCTCACCGAGGGGCCGGGCTGGCGCTGGGCCTTCTGGCTCAACATCCCGATCGGTCTGGCGGCCTTCGCCGTCGCCTGGTTCGCGCTGCGGCTGCCGTCGCACCGCTCGTCGCGGCCGGTCGACTGGCCCGGCATCGTCTCGATGGCCCTGGCGACCACGGGCATCGTGCTCGTGACCAGCTGGGAGTCCCTGGCCGACGGCGGCTACGACTGGTCCGACGGGCGCCTGGGCGCGCTCGTGGTGGGCACCCTGGCCGCGATCGCGGTGTTCGTCGTGGCCGAGAACCGTGCCGCCGAGCCGCTGCTGCCGCTGCGCCTGTTCACGAACCGCACCTTCACGCTCTCCACGCTGATCGGGCTGGTCCTCGGCATGGGGATGTTCTCGGCGATGGCCATGCTGCCGACGTTCCTGCAGATGTCCACCGGGGCCGGGATCACCGAGTCCGGCTGGCTGATGCTGCCGATGATGGCGGGCATGATGATCACCTCCATCGGCTCGGGGCTGGCGATCACGCGGACCGGCCGGTACAAGGCCTTCCCGGTCGTCGGACTGGTCGTGGTGGGCCTGTCCATGGTCTGGCTGACGACCTTGACCGGGGACATCTCGATGTGGACCTTCGGCGCGATGATCTTCGCGCTCGGTGCCGGCATGGGGCTGGTCATGCAGGTCGTCGTGCTCGCGGTGCAGAACGCCGTCGACCCCCACGAGCTGGGCACTGCGACCAGCGCCAACAACTTCTTCCGGGAGATCGGCGCCGCGGTCGGCTCGGCGCTGTTCACCACGATGTTCACCTCGCGCCTGACGGACAACCTCGCCGAGGTGTTCGCCGGGGCGCCCGGCGGTGCGGCGGAGGCCGAGGCGGGCCTGACGCCGCAGGTCGTGCACCAGCTGCCCGAGCCCGTGCGGTCCGGGGTCGTCGACGCCTACGCCGACTCGCTGGCGCCGTCGTTCTGGTACCTGGTGCCGCTCGTGGCGTTCGGGCTGGTGCTGGCCCTGTTCCTGCCCGTGCTGAAGCTCTCCGACGTCGCCGGCATGGTCGCCCGGGGCGAGGCCGTGACCGACGAGAGCGAGCTGCCGGCGCCGCGTGCCGCCGTCGTCGCGCCGTCCGACGACGCGGGCGACGGGCCGGCCGGCGACGGGACCGACGCCGACGACGACGGACCCGCCGGGGTCCGGGCAACGGATACCCTGGAGCGGTGAMAHAPAPAPEKPVVVLTQRTVWLIFSALLASMFLASLDQTIVGTAMPTIVGELDGVAHQGWVITAYILAVAIGMPLYGKFGDLYGRRWPFLVAIGLFTVSSAGAALADGMLALVLWRAVQGLGGGGLMILSQSIIADIVPASERGKYMGPLGALFGISAVLGPLLGGWLTEGPGWRWAFWLNIPIGLAAFAVAWFALRLPSHRSSRPVDWPGIVSMALATTGIVLVTSWESLADGGYDWSDGRLGALVVGTLAAIAVFVVAENRAAEPLLPLRLFTNRTFTLSTLIGLVLGMGMFSAMAMLPTFLQMSTGAGITESGWLMLPMMAGMMITSIGSGLAITRTGRYKAFPVVGLVVVGLSMVWLTTLTGDISMWTFGAMIFALGAGMGLVMQVVVLAVQNAVDPHELGTATSANNFFREIGAAVGSALFTTMFTSRLTDNLAEVFAGAPGGAAEAEAGLTPQVVHQLPEPVRSGVVDAYADSLAPSFWYLVPLVAFGLVLALFLPVLKLSDVAGMVARGEAVTDESELPAPRAAVVAPSDDAGDGPAGDGTDADDDGPAGVRATDTLERNANANANANA
AK018_00170447hypothetical proteinGTGAGCCGCACGAAGGACGACCGCCCCCGCCCGGGCGACCGCATCGCACCGCGCAAGCCGGCGAAAGTGCAGTTCGCCGCGACCATGCTCCAGCTCGAGGCGTTCGTGGTCGTGTTCGCCGCGCTCGCCCTGTACGGACTGCGCGACTCGGCCTACGAGCGCGGGCCGCTGGTCATCGAGTCGATGCCGGCGATGTGGACCGTCGCCGGCGTGCTGTTCGTCGTGCTGATCGTGCTCTCGCGCCTCGTGGGCAAGCCGGGCGGCTTCCTGGCGGGGTCCGTGGTGCAGGTACCGGTCCTGGCCCTCGGGCTGCTGCTGCCGATGATGTTCCTCGTGGCAGGGATCTTCGTGATCCTGTGGGTCGTGGCGCTGCGCCTCGGGGGTCGGATCGACGCCGAGCGCGCCGCGTACGACGCCGAGAACCCGGACACGGCGCCCAACGCCTGAMSRTKDDRPRPGDRIAPRKPAKVQFAATMLQLEAFVVVFAALALYGLRDSAYERGPLVIESMPAMWTVAGVLFVVLIVLSRLVGKPGGFLAGSVVQVPVLALGLLLPMMFLVAGIFVILWVVALRLGGRIDAERAAYDAENPDTAPNANANANANANA
AK018_00171441ndkCOG0105Nucleoside diphosphate kinaseATGACCGAACCGACCACGCCTGCCATCGAGCGCACCCTCATCCTCGTCAAGCCCGACGGCGTCCGCCGCGGCCTGACCGGTGAGATCCTGCGGCGCGTCGAGGCCAAGGGCTACACGCTCGCCGCCGTCGAGCTCCAGCACGCCACCCCCGACCAGCTCGCCACGCACTACGCCGAGCACGAGGGCAAGCCCTTCTACGCCCCGCTGGTGGAGTTCATGCTCTCCGGCCCGACCCTCGCGGTGATCGCCGAGGGGCAGGGCGTCATCGCCGGTTTCCGCTCGCTCGCCGGCGCCACCGACCCGACGGCCGCCGCCCCGGGCACCATCCGCGGCGACATGGCCCGCGACTGGGGCCTCAAGGTCCAGCAGAACCTCGTGCACGGGTCGGACTCCCCGGAGTCGGCCGAGCGCGAGATCGCGATCTGGTTCCCCGGCCGCTGAMTEPTTPAIERTLILVKPDGVRRGLTGEILRRVEAKGYTLAAVELQHATPDQLATHYAEHEGKPFYAPLVEFMLSGPTLAVIAEGQGVIAGFRSLAGATDPTAAAPGTIRGDMARDWGLKVQQNLVHGSDSPESAEREIAIWFPGRPGPT0021210_2480DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021210-ndk-K00940NANA
AK018_001723567smc_1COG1196Chromosome partition protein SmcGTGCACCTCAAGACGCTCACCCTGCGGGGCTTCAAGTCGTTCGCCTCGGCGACGACGCTGAGCTTCGAGCCGGGGATCACGTGCGTCGTCGGGCCGAACGGCTCCGGCAAGTCCAACGTCGTGGACGCCCTGTCGTGGGTCATGGGGGAGCAGGGCGCCAAGTCCCTGCGCGGCGGCAAGATGGAGGACGTCATCTTCGCCGGCACGTCCGGCCGGCCGCCCCTGGGCCGCGCCGAGGTCGCCCTGACCATCGACAACACCGACGGCGCCCTGCCGATCGACTACACCGAGGTGACGATCTCGCGGACGCTGTTCCGCAGCGGTGGGTCGGAGTACGCGATCAACGGCAGCGCCTGCCGCCTCCTCGACGTCCAGGAGCTGCTCAGCGACTCCGGCATCGGCCGCGAGATGCACGTCGTCATCGGCCAGGGCCAGCTCGACGCCGTGCTGCGCGCGACGCCCGAGGAGCGGCGCGGCTTCATCGAGGAGGCCGCGGGGGTCCTCAAGCACCGCAAGCGCAAGGAGAAGGCGCTGCGCAAGCTCGAGGCGATGGCCGGCAACCTCGCCCGGCTCACCGACCTGACCACCGAGCTGCGACGCCAGCTCGGTCCGCTCGGCAAGCAGGCCGAGGCCGCCCGCAGGGCCCGGGCCGTCCAGAGCGAGGTCCGCGACGCCCGCGCCCGGCTGCTGGCCGACGACCTCGCCCAGCTCGGCGCCCGGCTGGAGCAGGAGCGGGCCGACGAGGCCGCGCTCGCGGAGCGCCGGCGCGCCACCGAGGACGAGCTGGCCGCGAGCCGACGGCGCCTGACCGGCCTCGAGGCAGCCGCCGCCGAGACCGCACGCGCCGCGGCCCGTGCCGCCGAGACGGTGCACGCCCTGGACGGGCTGCGCGAGCGGCTGCGCGGCCTGGGCTCCCTGGCCGACGAACGCGTGCGGCTGCTCGGCGCGGCCGAGCCGGAGCACCGGGGCCAGGACCCCGACGAGCTCGAGGCCCAGGCCGAGCGCGCCCGCGTCTCGGAGTCGGAGCTGACCCGGGAGGTCGAGCTGGCCCGCGAGGCGCTGGAGACGGCCGAGGGACGGCGGGCCGACGCCGAGCGGGCGGCCCAGCAGGCCGAGCGCGAGCTGGCCACCCTGCACCGCGGTGCGGCCGACCGGCGCGAGGGTCTGGCGCGGCTGGCCGGCCAGGTGTCCACCTGCCGCAGCCGCGTCGAGGCCGCCGACGCCGAGATCGAGCGCGTGCGCGACGGCCTGGCCGAGGCCGAGCGGCGCGCCCAGGAGGCGGCGCGGGAGTTCGCGGCGCTCGAGACCGAGGCCGTCGGGGCCGAGGCCGGCGAGGAGGGGCTGGACGCCGACCACGAGCACGCCGCCGAGGAGCTGGCCGGGGCGCGCGACGCCGTCGCCCGCCTCGAGGAGCTCGTCGCCGCCGCCGAGAAGGACCGGGCGACCTGGACGGCCCGGGTCGAGGCGCTCGAGCTGAGCCTCGACCGCAAGGACGGAGCCGGGGCGCTGCTCGCCGCCGACCAGCCGGGCGTGCTCGGTTCGGTCGCGGCGCTGCTCGGCGTGGAGCCCGGGTACGAGGAAGCGGTCGCCGCCGCCCTCGGACCGCTGGCCGACGCCGTGGCCGTCGAGAGCCTCGAGGCGGCGGTGGACGCCCTGCGGCTGCTGCGGGACGACGACGGCGGCCGCGCCGGCCTCGTCGTCGGCGGCTCGTCGGCCGGGAGGCCACGCGACCTGGGAGAGCTGCCCGGGGGAGCCCGGCCCGCCGTCGACGTCGTCACGGCGTCGGGAGGGGCCGCCGCGGCGGTGCGCTCGCTGCTGGCCGACGTCGTCGTCGTGCAGGACCTGGCCGAGGCGCGCGCGCTCGTCGCGGCCCGCGCCGACGTCGTCGCCGCCACCCGGGCGGGCGACCTGCTCGCCGCGACCCGCGCCTCGGGCGGGTCGGCGGGGGCCCCGAGCGTGCTGCACCTGACCAGCGCCCTGGACGAGGCGCGCGCCGGCCTCGAGGACGCCGAGCGTCGCGGCGAGCGCTCGGGGAGCGAGCTGGCCGACGCCCGCCGGGCCCGCGAGGCCGCCCAGCGGCGGCACGACGAGACCCTGGAGCGCCTGCACGAGTCCGACGCCGCGCTGGCGGCGGTGGCCGAGCAGCTCGGCACCCTCGGCGCCGCCCGCCGTGCGGCCCAGACGGAGGCCGAGCGCCACCGCGCGACGATGGAGGACGCGACGCAGCGCCGGCGGACCGCCGAGGAGGAGCTGGCCGACCTGCAGCGCCGGCTCGAGGTCGCCGAGGCGGAACCGGCGCGTTCCGAGGAGGACGTCGAGGCCGCGACGGCGGACCGGGACGCCGCGCAGCAGGCGGCGACGACCGCTCGACAGGCCGAGACCGAGACCCGCCTCGCGCTGCGGACCGCCGAGGAGCGGGCCCGCGCCGTGACCGGCCGGGCCCAGGCGCTGGCGCACGCGGCCGAGCAGGAGCGCCGCGCCCGCGAGGAGGCGGCCGCCCGCGCTCGTCGGCGGGCCGCCCAGGCGCACCGTGCGGCGGAGGTGCGCGAGGACGTGGCCACGGCGCTCGGCGCGATCTCGCGGTCGATCGAGCGTGCCCGTGACGAGCAGGCCCGCGCGCGGGCGGACCGGGACCGCCAGCGGCGCGAGGTCGACGACGTGCGCACCGACGTCGACCGGCTGACCGGCGAGCTGCGGGACCTGACGGACGTGGCCCACCGGGACGAGGTGGCCCGCGCCCAGCAGCTCGCGCGCCTGGAGCAGCTGCGGACCCGCGCCGTCGAGGAGCTCGGCACGGACCCCGAGGTGCTCGTCGAGGAGTTCGGTCCGCACCACCCGGTGCCGGTGGCCCGGCCGACGGACGCCGCCGAGGACGACCCGGACCCGGACCCCGTCCCGTACGTGCGCGCCGAGCAGGAGAAGCGGCTGGCGTCGGCGGAGCGCGCCCTCAAGCGGATCGGCACGGTCAACCCCCTCGCGCTGGAGGAGTTCGCGGCCCTGGAGGAGCGGCACCAGTTCCTCGCCGACCAGCTCGCGGACCTGAAGAAGTCGCGCGAGGACCTGCTCCAGATCGTCGCCGACATCGACGACCGCGTGCAGCAGGTGTTCGCCGAGGCGTTCCGGGACACGGCCGAGCAGTTCGAGGGCGTGTTCTCCCGGCTGTTCCCCGGGGGCGAGGGGCGCCTGGTGCTCACCGACCCGAGCGACCTGCTGACGACCGGTCTCGAGATCGAGGCGCGGCCGGCGGGCAAGAAGGTCAAGCGCCTGTCGCTGCTGTCGGGGGGCGAGCGGTCGCTCACGGCGGTCGCGTTCCTGGTCTCGATCTTCAAGGCGCGCCCGAGCCCGTTCTACGTGATGGACGAGGTCGAGGCCGCCCTGGACGACGTCAACCTGGGCCGCCTGCTGGAGATCTTCCGCGAGCTGCGCGACGACTCCCAGCTCATCGTCATCACCCACCAGAAGCGCACCATGGAGATCGCCGACGCCCTGTACGGCGTGACGATGCGCGGCGACGGTGTGACGACGGTCATCTCCCAGCGGCTGAGCGAAACCGCCGAGACGGGGTGAMHLKTLTLRGFKSFASATTLSFEPGITCVVGPNGSGKSNVVDALSWVMGEQGAKSLRGGKMEDVIFAGTSGRPPLGRAEVALTIDNTDGALPIDYTEVTISRTLFRSGGSEYAINGSACRLLDVQELLSDSGIGREMHVVIGQGQLDAVLRATPEERRGFIEEAAGVLKHRKRKEKALRKLEAMAGNLARLTDLTTELRRQLGPLGKQAEAARRARAVQSEVRDARARLLADDLAQLGARLEQERADEAALAERRRATEDELAASRRRLTGLEAAAAETARAAARAAETVHALDGLRERLRGLGSLADERVRLLGAAEPEHRGQDPDELEAQAERARVSESELTREVELAREALETAEGRRADAERAAQQAERELATLHRGAADRREGLARLAGQVSTCRSRVEAADAEIERVRDGLAEAERRAQEAAREFAALETEAVGAEAGEEGLDADHEHAAEELAGARDAVARLEELVAAAEKDRATWTARVEALELSLDRKDGAGALLAADQPGVLGSVAALLGVEPGYEEAVAAALGPLADAVAVESLEAAVDALRLLRDDDGGRAGLVVGGSSAGRPRDLGELPGGARPAVDVVTASGGAAAAVRSLLADVVVVQDLAEARALVAARADVVAATRAGDLLAATRASGGSAGAPSVLHLTSALDEARAGLEDAERRGERSGSELADARRAREAAQRRHDETLERLHESDAALAAVAEQLGTLGAARRAAQTEAERHRATMEDATQRRRTAEEELADLQRRLEVAEAEPARSEEDVEAATADRDAAQQAATTARQAETETRLALRTAEERARAVTGRAQALAHAAEQERRAREEAAARARRRAAQAHRAAEVREDVATALGAISRSIERARDEQARARADRDRQRREVDDVRTDVDRLTGELRDLTDVAHRDEVARAQQLARLEQLRTRAVEELGTDPEVLVEEFGPHHPVPVARPTDAAEDDPDPDPVPYVRAEQEKRLASAERALKRIGTVNPLALEEFAALEERHQFLADQLADLKKSREDLLQIVADIDDRVQQVFAEAFRDTAEQFEGVFSRLFPGGEGRLVLTDPSDLLTTGLEIEARPAGKKVKRLSLLSGGERSLTAVAFLVSIFKARPSPFYVMDEVEAALDDVNLGRLLEIFRELRDDSQLIVITHQKRTMEIADALYGVTMRGDGVTTVISQRLSETAETGNANANANANA
AK018_00173330hypothetical proteinGTGGTCACGTTCATCGTCTGGTTCGGAGTCTCGCTGCTGCTGTGCGCAGCGGTGTTCCTCGTCGCGAGCGTGATGGACCGCGGCGACGACGAGGGCGAGGGCCTGCGCGGGTTCGTCCGCGACTTCCGGGCCGGCCTGAGGCGCCGGGGCGGCACGTCCCGGCCGGTGGACACCGACATGGACGACTTCTTCGCCGCCAACCTCGAGTCGGCCCCGGGCTACGTCGACGCCGACGAGCTCTCGGGTGCGCTGCAGCGCGCGCAGGGCCGGGTGCGCCCGCACGGACAGGCACCGGGAGCGGCGTCGGACGGCGGGGCGTCGCCGCGCTGAMVTFIVWFGVSLLLCAAVFLVASVMDRGDDEGEGLRGFVRDFRAGLRRRGGTSRPVDTDMDDFFAANLESAPGYVDADELSGALQRAQGRVRPHGQAPGAASDGGASPRNANANANANA
AK018_001741149ftsY_1COG0552Signal recognition particle receptor FtsYGTGACTGACTTTCTGTGGCTCTACATCCTTCTCGGTGTCGTCCTGGTCGTGGGGCTCGGCTCCGCGCTCGTCGTCCCGCGCCTGCGTCGGGGCCGGTCCGACGACGGGACCGCGCTCGCGCCGCCCCCGTCCGACGTCGAGGGCGAGCCTGCCGACGAGGGTGCCGCCGACCAGGGGACCGGCACCGCGACGGCGGTCCTCGAGCGCCCGGAGCCGGCCGCCGGCCGGATGGTGCGCCTGCGCGACCGGCTCGCCCGCTCCGGCTCGCCGCTGGGCGCCCGGCTGCTGACGATGCTCTCGCGCGACCAGCTCACCGAGGACGACTGGGACGAGATCGAGGAGACCCTGCTGCTGGCCGACCTCGGCACCGGTCCCGCCGAGGAGCTGCTGGAGTCGCTGCGGACCCGGGTGCGCGTGCTGGGGGTGCGCGAGCCGTCGGCGGTGCGCGACCTGCTGCGCTCGGAGCTGCTGAAGGTCGTCGACCCCACCCTCGACCGCGCGCTCGCGCTGGACCGCCCCGTGGTCGACGGCGAGACGAAGCCCGCGGTCCTGCTCGTGGTCGGCGTCAACGGCACGGGCAAGACCACGACGGTGGGCAAGCTGGCCCGCGTGCTGGTGGCGGAGGACAGGTCCGTCGTGCTGGGTGCTGCCGACACGTTCCGCGCCGCCGCGGCCGACCAGCTGCAGACGTGGGGCTCGCGCGTGGGGGTCGAGACCGTCCGGTCCGACCGGGACGGCGCCGACCCGGCCGCCGTCGCGTTCGACGCGGTGCGCACCGGCGCGGCGAACGACACGGACGTGGTGGTCGTGGACACCGCCGGCCGGCTGCAGAACAAGGCAGGGCTCATGGACGAGCTCGGCAAGATCTCCCGCGTCATCACGCGCGAGGCGCCGCTGTCCGAGGTCCTGCTCGTGCTGGACGCCACGACGGGGCAGAACGGCATGCAGCAGGCGAAGGTCTTCTCCGAGGTCGCGGGGGTGACGGGCATCGTGCTCACGAAGCTGGACGGCACGGCCAAGGGCGGGATCGTCGTGGCGGTCCAGCGCGAGCTCGGCGTGCCGGTCAAGCTCGTGGGCCTCGGCGAGGGGCCCGACGACCTCGCCCCCTTCGACGCGGAGGACTTCGTGGACGGGATCCTCGGGGGCTGAMTDFLWLYILLGVVLVVGLGSALVVPRLRRGRSDDGTALAPPPSDVEGEPADEGAADQGTGTATAVLERPEPAAGRMVRLRDRLARSGSPLGARLLTMLSRDQLTEDDWDEIEETLLLADLGTGPAEELLESLRTRVRVLGVREPSAVRDLLRSELLKVVDPTLDRALALDRPVVDGETKPAVLLVVGVNGTGKTTTVGKLARVLVAEDRSVVLGAADTFRAAAADQLQTWGSRVGVETVRSDRDGADPAAVAFDAVRTGAANDTDVVVVDTAGRLQNKAGLMDELGKISRVITREAPLSEVLLVLDATTGQNGMQQAKVFSEVAGVTGIVLTKLDGTAKGGIVVAVQRELGVPVKLVGLGEGPDDLAPFDAEDFVDGILGGPGPT0025740_2699DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025740-ftsY-K03110NANA
AK018_001751287amt_1Ammonia channelATGGAGCTGGATACCGGAGTGACCGCATGGATGCTGACGTCAGCATCCCTCGTGCTCCTGATGACGCCTGGTCTGGCGTTGTTCTACGGAGGCATGGTTCGCGGCAAGTCCGTCCTGAACATGATGATGATGTCGTTCGGCGCCATGGCGGTCGTCGGTGTCATCTATGTCCTGTGGGGCTGGTCGATGTCCTACGCCACGGGCGTGGGGCCGGAGGGCTACTCGCTCTTCGCCAACCCCTTCGAGCAGTTCGGCCTCGGCGGCGGCGCGATCATGGACGACGCCGGTGAGTTCGTCGGCGAGGGCCTGCCCGTCGTCGTCGACGTCGGCTTCCAGGCGACGTTCGCGATCATCACCGTCGCGCTCGTCTCGGGTGCGATCGCCGACCGCGTCAAGTTCGGCACGTGGATGGTCTTCGCGGGCCTCTTCGCCACGCTGTCGTACTTCCCGCTGTCGCACATGGTCTGGGGCGGCGGCCTGCTGTCCGACGCCGGCCCGTTCGTCTTCGGCGACGCCGCACCGATCGACTTCGCCGGCGGCACCGTGGTGCACATCAACGCCGGTATCGCCGCGCTCGTGCTGGCCCTGATCGTCGGCAAGCGCAAGGGCTTCGGCTCCGAGCCGATGCGCCCGCACAACCTGCCGTTCGTCATGCTGGGCGCCGCCCTGCTGTGGTTCGGCTGGTTCGGCTTCAACGCCGGTTCCGCCTACGGTGCCGACGGCGCCGCGGGTCTCGCCTGGGTCAACACCACCACCGCGACCGCCGCGGCCATCATCGGCTGGCTCGTCACGGAGAAGCTGCGCGACGGCTCGGCCACCTCGCTCGGTGCCGCCTCGGGCATCGTCGCCGGTCTGGTCGCCATCACCCCGGCCGCGGGCGACGTCTCGCCGGTCGGCGCGATCTTCGTCGGTCTGATCGCCGGTGCGCTGTCCGCCTTCGCGGTGGGCCTGAAGTTCAAGTTCGGCTACGACGACTCGCTCGACGTCGTCGGCATCCACCTCGTGGCCGGCCTGTGGGGCACGCTGTCCCTCGGCTTCTTCGCCACCAGCACGGGCCTGTTCTACGGCGGCGACTTCGCCCAGCTCGGCGTCCAGGCGGTCATCGCCCTCGTCGCGATGATCTTCGCCGGTGTCGTCACCCTGGTCATCGGCCTGGTGCTGAAGGCCACGATGGGCTGGCGGATCTCCGAGGAGGCCGAGGTCAGCGGTATCGACCTCGCCGTGCACTCCGAGACGGCGTACGAGACCATCGCTCAGGGTTCTGTCATCAAGGAGGTCCGTTCATGAMELDTGVTAWMLTSASLVLLMTPGLALFYGGMVRGKSVLNMMMMSFGAMAVVGVIYVLWGWSMSYATGVGPEGYSLFANPFEQFGLGGGAIMDDAGEFVGEGLPVVVDVGFQATFAIITVALVSGAIADRVKFGTWMVFAGLFATLSYFPLSHMVWGGGLLSDAGPFVFGDAAPIDFAGGTVVHINAGIAALVLALIVGKRKGFGSEPMRPHNLPFVMLGAALLWFGWFGFNAGSAYGADGAAGLAWVNTTTATAAAIIGWLVTEKLRDGSATSLGAASGIVAGLVAITPAAGDVSPVGAIFVGLIAGALSAFAVGLKFKFGYDDSLDVVGIHLVAGLWGTLSLGFFATSTGLFYGGDFAQLGVQAVIALVAMIFAGVVTLVIGLVLKATMGWRISEEAEVSGIDLAVHSETAYETIAQGSVIKEVRSPGPT0000840_5593DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-AMMONIUM_ASSIMILATION|USAGEN-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320NANA
AK018_00176339glnB_1COG0347Nitrogen regulatory protein P-IIATGAAGCTCGTCACCGGAGTCATCCAGCCCCACCGTCTCGACGACGTGAAGTCGGCACTCGAGGCCTCGGGGGTCCGGGGCATGACCGTCAGCGAGGCCAGCGGCTACGGCCGGCAGAAGGGCCACACCGAGGTCTACCGCGGTGCCGAGTACACCGTGGACCTGGTTCCCAAGGTCCGGATCGAGATCCTCGTCGGGGACGAGGACGTCGCATCGATCGTCGACGTCGTGGTCAACGCGGCGCAGACCGGCAAGATCGGTGACGGCAAGGTCTGGACGGTCCCCGTCGACGACATCGCCCGGGTCCGCACCGGCGAGCACGGCGACTCCGCTCTCTGAMKLVTGVIQPHRLDDVKSALEASGVRGMTVSEASGYGRQKGHTEVYRGAEYTVDLVPKVRIEILVGDEDVASIVDVVVNAAQTGKIGDGKVWTVPVDDIARVRTGEHGDSALPGPT0000650_2361DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000650-glnB|glnY-K04751NANA
AK018_001771863glnD_1COG2844Bifunctional uridylyltransferase/uridylyl-removing enzymeATGGCCGACCACCCGATCCCGGGCGGCGGCCCCGCGCAGCAGGCCCCGCACCCCACCACCGGGGTGCGGGGCCCTGTCGTCGGGCTCCGCGAAGACCTGCTCACCACCGCCCGGGACCTCACCGGACCGGGACGCTCGGGCGTCGCGCGTCGCGCCATGCTCCAGCAGCTCGTCACCGACCGCCTCGGCGTCCTGTACGCCGAGGCCACCGCCGACGTCGACCCCGCGGGGCTGGCGCTGGCCGCCGTCGGCTCCCTGGGCCGCGGGGAGCTGGGTCCGCTGTCCGACCTGGACCTCGTGCTCGTGCACGACGGGCGCACGCACAAGCCCGACGAGCTCGCCCAGGTCGCCGAGCGTCTCTGGTACCCGCTGTGGGACTCGGGCGTCGACATCGACCACGCGGTGCGTTCGTTGAACCAGACCCGCCAGCTCGCCATGCGCGACCTGCCCGCCGCCGTCGGCTGGCTGGACGTGCGCCCCGTGGCGGGCGACGCCGTCGTCGTGCACCGGGCCGCGTCGGGGATCCTCACCGACTGGCGCTCCGCCGCCCGCCGCCGGCTGCCCGAGCTGCTCTCCAGCGTGCGCGAGCGTGCCGAACGCTCCGGGGACCTGGCCTACCTCATCGAGCCCGACCTCAAGGAGGCCCGTGGCGGCATCCGGGACGCCGTCGTCGTCTCGGCGCTCGCCGCGACCTGGCTCACCGACCGGCCCCACGGACGGGTCGACTCGGCCTACGCCCACCTCCTGGACGTCCGCGACACGCTCCACGTCGTGACCGGCCGGCGGGCCACCCGGCTGCTCCTGGCCGACCTGGAGGAGGTCGCGGCCCGGTGCGGCTACGACGACCCGGACGAGCTGCTGGCGAGCCTGGCGGCCGCCGGCCGGGAGATCTCCTTCGCCCTCGACTCCACCGTGCGACGTGCGCGCCAGGCCCTGCAGCGGCCCGCGGCCCGGCGTCCGAGGGTGGTGCGCGGCCGCCGGCAGCCGCCCCGGCTGCGCTCGGTCGGCGACGGGCTGGTCGAGCACGACGGCGAGCTCGTGCTCGGCGTCAACGTCTCGCCGCGCGAGGACCCCCAGCTCTCGTTGCGCGCCGCCGCGACGGCCGCGCGCACGGGGCTCGTGCTCTCCCCGGTGACCATGCACTCGCTGGGCGAGTGCCCGCCCGTCCCGGAGCCGTGGCCCCAGACGGCGCGCAGCCACCTGCTGACGCTGCTGGCCTCCGGACCCGCGCAGATCCACGTCTGGGAGGCGCTCGACCTGGCCGGCGCCGTGACCACGTGGATCCCCGAGTGGGCCGACGTGCGCAACAAGCCGCAACGGGCCGCCATCCACCGTCACACGGTGGACCGGCACCTGGTCGAGACGGCGGCGCTGGCCACGGGGGTGCGCAAGCGGCAGATCGCCGACGGCGTCGCCGCGCGCCTGCTGCCCGCGGACCTGCTGCTCGTCACCGCGATCCTGCACGACATCGGCAAGCGACGGCGCGCGACCAGCAGCGACCACTCCGTCGAGGGCGCGGCGATCGCTCCGTCGATCGTGCGGCGCATGGGCTTCTCCGAGGAGTTCACCGCCGACGTCGAACGGCTCGTGCGCCACCACCTGACGCTGTCCGGTCTCGCCACGCGCTCCGACCCCGAGGACCCGGCGACCGTGCGGGCGCTGCTCGAGGCGGTCGACCACCGGCCCGACCTGCTCGAGGTGCTGCGGGCGCTCACCGAGTGCGACGCGACCTCACTGGGACCCGCCGGCTGGACCGGCTGGCGGGGCAGCCTCGTCGACCAGCTCACCGACCTGGCGCGTGCCGCCCTGGCCGAGGAGGGCGCCCCGGCCGACGGTCCGGCCGACGGTGAACCCCGCCGGTAGMADHPIPGGGPAQQAPHPTTGVRGPVVGLREDLLTTARDLTGPGRSGVARRAMLQQLVTDRLGVLYAEATADVDPAGLALAAVGSLGRGELGPLSDLDLVLVHDGRTHKPDELAQVAERLWYPLWDSGVDIDHAVRSLNQTRQLAMRDLPAAVGWLDVRPVAGDAVVVHRAASGILTDWRSAARRRLPELLSSVRERAERSGDLAYLIEPDLKEARGGIRDAVVVSALAATWLTDRPHGRVDSAYAHLLDVRDTLHVVTGRRATRLLLADLEEVAARCGYDDPDELLASLAAAGREISFALDSTVRRARQALQRPAARRPRVVRGRRQPPRLRSVGDGLVEHDGELVLGVNVSPREDPQLSLRAAATAARTGLVLSPVTMHSLGECPPVPEPWPQTARSHLLTLLASGPAQIHVWEALDLAGAVTTWIPEWADVRNKPQRAAIHRHTVDRHLVETAALATGVRKRQIADGVAARLLPADLLLVTAILHDIGKRRRATSSDHSVEGAAIAPSIVRRMGFSEEFTADVERLVRHHLTLSGLATRSDPEDPATVRALLEAVDHRPDLLEVLRALTECDATSLGPAGWTGWRGSLVDQLTDLARAALAEEGAPADGPADGEPRRPGPT0000660_2672DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONGLN-NITROGEN_REGULATORY_SYSTEM,PGPT0000660-glnD-K00990NANA
AK018_001781635ffh_1COG0541Signal recognition particle proteinGTGTTCAACTCCCTGTCGGACCGTCTCGCTGCGACGTTCAAGAACCTGCGCGGCCGGGGACGGCTGTCCGAGGCGGACATCGACGCGACCGTGCGGGAGATCCGGCGCGCGCTGCTCGATGCCGACGTCGCCGTCCCTGTCGTGCGGGAGTTCACGCGCGCCGTGCGCGAGCGTGCGCTCGGCGCCGAGGTCTCGGCCGCGCTGAACCCTGCCCAGCAGGTCGTCAAGATCGTCAACGACGAGCTCGTCGAGATCCTCGGCGGGCAGACCCGCCCGCTGTCGCTGGCCAAGAACCCGCCGACGGTCATCATGCTGGCCGGTCTGCAGGGCGCCGGCAAGACGACGCTGGCCGGCAAGCTGGCGCTCGCGCTCAAGGAGCAGGGGCACACCCCGCTGCTGGTCGCCGCCGACCTGCAGCGGCCCAACGCCGTGACCCAGCTCTCGGTGGTCGCCGAGCGGGCCGGCGTGCCGGTCTTCGCGCCGCACCCGGGCAACACCTCCGCCGAGGACACCGACGCCGTCATCGGCGACCCGGTCGGGGTCGCGCGCGACGGCGTCGGCGAGGCGCGCGCCAAGCAGCACGACGTCGTCATCGTCGACACCGCGGGCCGGCTGGGCATCGACCAGGTGCTCATGCAGCAGGCCGCGGACATCCGCACGGCGGTCGACCCGGACGAGGTCCTGTTCGTCATCGACGCGATGATCGGTCAGGACGCCGTCAGCACGGCCAGCGCGTTCGCCGAGGGTGTCGACTTCACCGGTGTCGTCCTGTCCAAGCTCGACGGCGACGCCCGCGGTGGCGCGGCGCTCTCGGTCGCGAAGGTCACGGGCCGTCCGATCATGTTCGCCTCGACCGGTGAGAAGCTCACCGACTTCGAGGTCTTCCACCCGGACCGCATGGCCTCGCGCATCCTCGACATGGGTGACGTGCTCACCCTCATCGAGCAGGCCGAGAAGGCGTTCGACGCCGAAGAGGCCGAGAAGATGGCCGCCAAGGTGGCCGGCGGCGAGGACTTCACGCTCAGCGACTTCCTGGTGCAGATGCAGCAGATGAAGAAGCTCGGGTCGATGAAGAAGATGCTCGGGATGATGCCCGGCATGGCCCAGATACGCGAGCAGATCGAGAACTTCGACGAGCGCGAGGTCGACCGCGTCCAGGCGCTGATCCAGTCGATGACGCCCGCCGAGCGGGACAACCCCAAGATCATCAACGGCTCGCGCCGGGCGCGCATCGCCCGCGGTGCGGGGCAGACGACGGCGGCGGTCAACGGCCTGCTGGACCGCTTCGCCCAGGCGCAGAAGATGATGCGCCAGATGTCCTCGGGAGGCGGTATGCCGGGCGGTGGCCCCGGCGGCATGCCGGGGATGCCCGGGATGCCGGGCATGCCGGGCGGCGGCAAGAAGTCCCGGGGCAAGCAGGCCCCCAAGAAGAAGGTCAAGGGCAAGTCCGGCAACCCCGCCAAGCGGGCGCAGCAGGAGCGCGAGGCCATGCAGCGGGCGCTCGGCGGGGGCGGCAGGAAGCCGGCCGCGTCCGGGTCCGCGTTCGGCATCGGCGGCGACCAGCCCGAGGCCACGGACGTGGAGAACCTCGAGCTGCCGTCGGACGTCAGCAAGCTCCTGGGTGGCGGGCGCTGAMFNSLSDRLAATFKNLRGRGRLSEADIDATVREIRRALLDADVAVPVVREFTRAVRERALGAEVSAALNPAQQVVKIVNDELVEILGGQTRPLSLAKNPPTVIMLAGLQGAGKTTLAGKLALALKEQGHTPLLVAADLQRPNAVTQLSVVAERAGVPVFAPHPGNTSAEDTDAVIGDPVGVARDGVGEARAKQHDVVIVDTAGRLGIDQVLMQQAADIRTAVDPDEVLFVIDAMIGQDAVSTASAFAEGVDFTGVVLSKLDGDARGGAALSVAKVTGRPIMFASTGEKLTDFEVFHPDRMASRILDMGDVLTLIEQAEKAFDAEEAEKMAAKVAGGEDFTLSDFLVQMQQMKKLGSMKKMLGMMPGMAQIREQIENFDEREVDRVQALIQSMTPAERDNPKIINGSRRARIARGAGQTTAAVNGLLDRFAQAQKMMRQMSSGGGMPGGGPGGMPGMPGMPGMPGGGKKSRGKQAPKKKVKGKSGNPAKRAQQEREAMQRALGGGGRKPAASGSAFGIGGDQPEATDVENLELPSDVSKLLGGGRPGPT0025750_307DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025750-ffh-K03106NANA
AK018_001791113COG1228putative proteinATGTCCGTCCCGCACGTCCCGCTGCACGTCACCGGCCGGATCCTGCTCGACGGCGAGCGCGAGGTCGGCGAGATGTGGGTCCGCGACGGACGCCTCAGCCTGCTGCGCCCGACGCCCCAGGGCAGCTCCGCCACGGAGCTGGAGGGGTGGGTCGTCCCCGGCCTCGTCGACGTGCACTGCCACGTCGGGCTCGACGCCGGGGGAGCGACGGACCCCGCGACCGCCGCCAAGCAGGCGCTGGCCGACCGCGACGCCGGGGTGCTGCTGATCCGTGACGCCGGGTCCCCGCTGGACACCTCCTGGGTGGCCGACCGCGCCGACCTGCCCCGCCTGGTGCGGGCCGGCGCCCACCTGGCGCGGCCCAAGCGGTACCTGCGGCGCTACGGCCTGGAGCTCGACGACGTCGCCGACCTCCCGCGCGTCGTGCGCGAGCAGGCCCGCGCCGGCGACGGCTGGGTCAAGCTCGTCGGGGACTGGATCGACCGCGACCTGGGTGCCGACGGCGACCTGCGACCGCTGTGGCCGGCGGACGTGCTGTCCGAGGCCGTCGCCGCGGCGCACGCCGAGGCCGCCCGGGTGACGGTGCACGCCTTCTCCGAGGAGGTCGTGCCGGACCTGCTCGCCGCCGGGGTCGACGGCATCGAGCACGGCACCGGGCTGACGGCCGACCAGATCGTCGAGGTCGCCCACCGCGGCATCCCGGTCACGCCGACCCTGCTGCAGGTGAACCAGTTCGAGAACATCGCCGCCCAGGCCGACGGCAAGTACCCCGTCTACGCCGCCCGGATGCGGCGCATGCACGCCCGGCGCCACGAGCAGGTGCGCGCCCTGCACGAGGCCGGGGTCCCGCTGCTGGTCGGCACGGACGCGGGCGGGACCATCGACCACGGTCGGATCGCCGACGAGTGCGCCGAGCTCGTCGCGGCGGGGATCCCGGCGGCCGAGGTGGTGGCCATGGCCACGTGGCGCGCGCGGGCACTCCTGGGCCAGGCGGGGATGGTCGAGGGCGCCAGCGCGGACTTCGTCGTCTACCCGGCCGACCCCCGGGAGGACATCGAGGTGCTGCGCCACCCGACGGCGATCGTGCTGCGGGGACGGGTCGTCGCGCCGTAGMSVPHVPLHVTGRILLDGEREVGEMWVRDGRLSLLRPTPQGSSATELEGWVVPGLVDVHCHVGLDAGGATDPATAAKQALADRDAGVLLIRDAGSPLDTSWVADRADLPRLVRAGAHLARPKRYLRRYGLELDDVADLPRVVREQARAGDGWVKLVGDWIDRDLGADGDLRPLWPADVLSEAVAAAHAEAARVTVHAFSEEVVPDLLAAGVDGIEHGTGLTADQIVEVAHRGIPVTPTLLQVNQFENIAAQADGKYPVYAARMRRMHARRHEQVRALHEAGVPLLVGTDAGGTIDHGRIADECAELVAAGIPAAEVVAMATWRARALLGQAGMVEGASADFVVYPADPREDIEVLRHPTAIVLRGRVVAPNANANANANA
AK018_00180414rpsP_1COG022830S ribosomal protein S16GTGGCCGTCAAGATTCGTCTGAAGCGTTTCGGCAAGATTCGCAGCCCCTTCTACCGTGTCGTCGTCGCCGACTCGCGCACCAAGCGCGACGGTCGTGTGATCGAGGAGATCGGCAAGTACCACCCCACCGAGGAGCCCTCGTTCATCGAGATCGACTCCGAGCGGGCGCAGTACTGGCTCGGTGTCGGCGCCCAGCCGACCGAGCAGGTCGCCGCTCTGCTCCGTGTCACGGGCGACTGGCAGAAGTTCAAGGGTCTCCCGGGCGCCGAGGGCACCCTGAAGACCAAGCAGGCCGCCTCCGACTCCACCTCGGCCGTCGACGCGGTCAACGCCGAGGCGGAGAAGGCCAAGGCGAAGGCCTCCGCCGAGAAGGACGCCGCGTCCTCGGACGACGAGGCCGAGGCCGAGGCCTGAMAVKIRLKRFGKIRSPFYRVVVADSRTKRDGRVIEEIGKYHPTEEPSFIEIDSERAQYWLGVGAQPTEQVAALLRVTGDWQKFKGLPGAEGTLKTKQAASDSTSAVDAVNAEAEKAKAKASAEKDAASSDDEAEAEANANANANANA
AK018_00181240hypothetical proteinATGCTGGCAGACGCCCTCGAGCACCTGGTGCGCGGCATCGTGGACAACCCGGACGACGTCCAGGTGTCCGCCCGCACGCAGCGCCGGGGCGATCTGCTCGAGGTCCGGGTGCACCCCGACGACCTCGGCCGAGTGATCGGGCGGGGCGGCCGGACCGCCAAGGCGCTGCGCACCGTCGTCGGTGCGCTCGCCACCGACGGTCCGGTGCGGGTCGACGTCGTGGACGTCGACCGGCGCTGAMLADALEHLVRGIVDNPDDVQVSARTQRRGDLLEVRVHPDDLGRVIGRGGRTAKALRTVVGALATDGPVRVDVVDVDRRNANANANANA
AK018_00182540rimM_1COG0806Ribosome maturation factor RimMATGGAGCTGGTGGTGGCCCGCGTGGGCCGCGCGCACGGACTGCGCGGCGAGGTCGCGCTCGAGATGCGCACCGACGTCCCCGAGGAGCGGTTCACCGTCGGGGCCGTCCTGGCGACCGAGCCGGCCGCGGCGGGGCCGCTGACGGTGGAGAGCACCCGGGTGCACCAGGGGCGCTGGCTGGTCCGCTTCGCCGAGACCGCCGACCGCACGGCCGCCGAGGCCCTGCGCGGCACCGAGCTGCTCGTCGACGTCGAGGAGTCCGACGAGGAGGACGCCTGGTACCCGCACGAGCTGACGGGCCTGCGGGCCGAGCTCGTCGACGGCACCGTGGTCGGCGAGGTCGCCGGGCTCGAGCACCTGCCCGCGCACGACGCGCTCGTGGTGCGCGAGGACGGCGGGGCCCGCACGCTCGTCCCGTTCGTGCGCGCCATCGTGCCGACCGTCGACGTGGCCGGCGGACGCGTCGTGCTGGACCCGCCCGGCGGTCTGCTCGCCCGCGACCAGGTCGCGGACGAGGCCGCCGGCGAGCCGGAGGCCTGAMELVVARVGRAHGLRGEVALEMRTDVPEERFTVGAVLATEPAAAGPLTVESTRVHQGRWLVRFAETADRTAAEALRGTELLVDVEESDEEDAWYPHELTGLRAELVDGTVVGEVAGLEHLPAHDALVVREDGGARTLVPFVRAIVPTVDVAGGRVVLDPPGGLLARDQVADEAAGEPEANANANANANA
AK018_00183789trmD_1COG0336tRNA (guanine-N(1)-)-methyltransferaseGTGCGCATCGACGTCGTCACGATCTTCCCGGAGTACCTGGCGGCCCTCGACCTGTCGCTCGTGGGCAAGGCTCGCCGCGCGGGCCTGCTCGACCTGCGGGTCCACGACCTGCGCGACTGGACCGACGACCGCCACCGCACCGTCGACGACACCCCGTTCGGCGGGGGCGCGGGGATGGTCATGCGGGCCGACGTGTGGGGTCGTGCGCTCGACGAGCTGCTGGCCGCGGACGGCCCGGCCCGGCTCGTGGTCCCCGCACCGTCGGGCGAGGTCTTCACCCAGCGCCGCGCCGAGGCGCTGGCGACCGAGGAGCACCTGGTCGTGGCCTGCGGCCGCTACGAGGGCATCGACGCCCGGGTGGTCGAGCACTACCGCGACCGCGGCGTGGCCGTCGACGAGCTCTCGCTCGGTGACTACGTGCTCAACGGCGGGGAGGTGGCCGCGCTGGTCATGGTCGAGGCCGTGGGGCGGCTCCTGCCCGGCGTCGTCGGCAACCCGCACTCGCTGGTCGAGGAGTCGCACGGGGAGGCCGGGCTCCTCGAGTACCCGGTCTACACCAAGCCCCCGGTCTGGCAGGGGCGCGAGGTCCCGGACGTCCTGCTCTCGGGCCACCACGCGCGGATCGAGCGCTGGCGGCGCGACGAGGCGCTGCGGCGCACCGCCCGGCGGCGTCCCGACATGGTCGCGGCGCTGGGGGACGGGGACCTGGACGCCCGTGACCGCGAGGTCCTGGCCGAGTCGGCCGAGGACCTGCCGGACGGTGGCGCGCCTCACGAGCCGCGCGGCTGAMRIDVVTIFPEYLAALDLSLVGKARRAGLLDLRVHDLRDWTDDRHRTVDDTPFGGGAGMVMRADVWGRALDELLAADGPARLVVPAPSGEVFTQRRAEALATEEHLVVACGRYEGIDARVVEHYRDRGVAVDELSLGDYVLNGGEVAALVMVEAVGRLLPGVVGNPHSLVEESHGEAGLLEYPVYTKPPVWQGREVPDVLLSGHHARIERWRRDEALRRTARRRPDMVAALGDGDLDARDREVLAESAEDLPDGGAPHEPRGPGPT0007595_14DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770NANA
AK018_00184357rplS_1COG033550S ribosomal protein L19ATGAAGACGCTCGACTCCGTCGACGCAGCCACGCTGCGCTCCGACATCCCGGACTTCCGCGCCGGTGACACCGTCAAGGTCAACGTCAAGGTCATCGAGGGCAACCGCTCGCGCATCCAGGCGTTCCAGGGCGTCGTGATCGCGCGCCGCAACGCCGGTGTCGGCTCGACCTTCACCGTCCGCAAGATCAGCTTCGGCGTCGGCGTGGAGCGCACCTTCCCGGTGCACGCCCCGACGGTCGAGTCCGTCGAGGTCGTCAGCCGCGGTGACGTGCGACGCGCCAAGCTCTACTACCTGCGCGAGCTGCGCGGCAAGAAGGCCAAGATCCGCGAGAAGCGCGAGACCCCCAAGAAGTGAMKTLDSVDAATLRSDIPDFRAGDTVKVNVKVIEGNRSRIQAFQGVVIARRNAGVGSTFTVRKISFGVGVERTFPVHAPTVESVEVVSRGDVRRAKLYYLRELRGKKAKIREKRETPKKNANANANANA
AK018_00185834hypothetical proteinATGACCTCCGCGCCGGACCGACCCGAGGACCAGGGCGACGCGACCGACGACGTCGTGGGACGGTCCGACGAGGCCGAGCGCTCCGTGCGTGCGGACGGCCCCCCGGCGCACGCCGCCGCCGTCGCCGAGGACTCGCGCAGCCGGGGCCTCGGGCTGCTGCGCGAGACGGCGATCATCGTCGTCTCGGCACTGGTGCTGTCGTGGCTGATCAAGACCTTCCTCGTCCAGGCCTTCTACATCCCCAGCTCCTCGATGGAGGACACCCTCCAGATCGGGGACCGCGTGATGGTGTCCCGGCTGGTCCCGGACGCGCTGGACGTGAACCGCGGCGACGTCGTCGTCTTCCAGGATCCGGGCGGGTGGTTGCCGCCCTACGAGGAGCCGGACCGCGGACCGGTCGGCAACGCCCTGCGCGGGGCCGCGACCTTCGTCGGGCTGCTCCCGCAGGACGCCGGCGACCACCTCATCAAGCGGGTCGTGGGCACGCCGGGCGACACCGTGGCCTGCTGCGACGACGACGGCCGGGTCACGGTCAACGGCGAGCCGGTCGACGAGAGCGAGTACCTGGCCGACGGCGCCGTGCCGAGCCAGACGACCTTCGAGCACGAGGTCCCCGAGGGCATGCTGTTCGTCATGGGGGACAACCGGCAGAACTCCCAGGACTCCCGCTACAACACCGGCAAGCCGGGCGGGGGGTTCGTCCCGCTCGACAACGTCGTGGGCAACGCGTTCGTCATCATGTGGCCGTTCGAGGACGCCCGGCTGCTGCGCAACCCGGCCGACGTCTTCGCCGACGTCCCCGCGGCCGACGGGGCCGAGGAGCCGGCGCCATGAMTSAPDRPEDQGDATDDVVGRSDEAERSVRADGPPAHAAAVAEDSRSRGLGLLRETAIIVVSALVLSWLIKTFLVQAFYIPSSSMEDTLQIGDRVMVSRLVPDALDVNRGDVVVFQDPGGWLPPYEEPDRGPVGNALRGAATFVGLLPQDAGDHLIKRVVGTPGDTVACCDDDGRVTVNGEPVDESEYLADGAVPSQTTFEHEVPEGMLFVMGDNRQNSQDSRYNTGKPGGGFVPLDNVVGNAFVIMWPFEDARLLRNPADVFADVPAADGAEEPAPPGPT0030468_59DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
AK018_00186813rnhB_1Ribonuclease HIIATGACGACCCGGAACGGACGCCGGAGCCCGACCCTGCGGGCCGAGCGGTCCCTGCTGTCCGACGGCGCACGCCTGGTCGGGGGGATGGACGAGGTCGGCCGTGGCGCCCTGGCGGGCCCGGTCAGCGTCGGCCTCGTCGTCGTCGACGCCGGCACCCGGACCGCGCCGCGCGGGCTGACCGACTCCAAGCTGCTGGCCCCGAAGGTCCGCGAGGCGATGGTCGACCCGCTGCGGCGGTGGGCGGTGGCCTGGGCCGTGGGGCACGCCGGCCCCGCCGAGATCGACGCGCACGGCATCGTCGCGGCGCTGCGGTTGGCGGGACGCCGGGCGCTGGCGCAGATCCGGCGCACCCACGGCGACGTCGACGTCGTGCTCCTGGACGGGTCGCACGACTGGCTCAGCCGGCCGGGGGCGGACCTCTTCGAGGCGGCCGACCTCGATCCGGGCGGGGCGCTCGACGCCCCCGAGCCCGGGGTGCGCACGATGGTCAAGGCCGACCTGCAGTGCTCGTCGGTCGCCGCGGCCAGCGTGCTGGCCAAGGTGGAGCGCGACGGCCTGCTCAGCCGGCTGGCCGCCCAGTACCCGCACTACGCCTGGGAGCAGAACAAGGGCTACTCGGCCCCGGCCCACCTGGACGGCCTGCGCCGCCTCGGCCCGACGCCGCAGCACCGGCGGTCCTGGAACCTGCGGGTGCTCGACGACACCCCCGCCGCGCCCGGGACCCCCGGGACGACGGGCGAACCGGCGGACGTGGTCACCCTCGAGGCGGCCGCGGCGCCCGAGGAGGCAGCCTCGCGCTACCGGGTGGGATGAMTTRNGRRSPTLRAERSLLSDGARLVGGMDEVGRGALAGPVSVGLVVVDAGTRTAPRGLTDSKLLAPKVREAMVDPLRRWAVAWAVGHAGPAEIDAHGIVAALRLAGRRALAQIRRTHGDVDVVLLDGSHDWLSRPGADLFEAADLDPGGALDAPEPGVRTMVKADLQCSSVAAASVLAKVERDGLLSRLAAQYPHYAWEQNKGYSAPAHLDGLRRLGPTPQHRRSWNLRVLDDTPAAPGTPGTTGEPADVVTLEAAAAPEEAASRYRVGNANANANANA
AK018_00187300putative proteinGTGAGCGCTGAGGACCTCGAGAACTACGAGAACGACGCCGAGCTGGCCCTCTACCGCGAGTACCGGGACGTCGTGGGCCTGTTCTCGTACGTGGTGGAGACCGAACGCCGGTTCTACCTCGCCAACCAGGTCGACCTGCAGGTCCGGTCCGCCGCGGGCGAGGTGTACTTCGAGCTGCGGCTGACCGACGCGTGGGTGTGGGACGTGTACCGCTCCGCACGCTTCGTCAAGGCCGTGCGGGTGGTGACGTTCAAGGACGTCAACGTCGAGGAGCTCGCCAAGGCCGAGATCGCCCTGTAGMSAEDLENYENDAELALYREYRDVVGLFSYVVETERRFYLANQVDLQVRSAAGEVYFELRLTDAWVWDVYRSARFVKAVRVVTFKDVNVEELAKAEIALNANANANANA
AK018_00188357hypothetical proteinGTGCGAGCCAAGGATGCCGTCGGACGGCACGGCGAACGGGTGGCGGCGCGCTACCTGACCGAACGCGGGTACGAGGTCCTGGACCGCAACTGGCGGGGGACCGGCGGTGAGCTGGACCTGGTCCTCGGCGACCGGGGCCGCGTGGTCGCCGTCGAGGTCAAGACGCGCCGCGGCACCGCCTACGGCCACCCGGCCGAGGCGGTCACCGAGGCCAAGCTGCGCCGGGTGCGGCGGCTGACCGCCGAGTGGCTGCGCACCCACCCGGGCCCGTGGCGCGAGATACGGGTCGACGTGGTGGCGGTGCTGCTGCCCCGCTCCGGCGCCGCCCAGGTCGAGCACCTGCGGGGAGTCCTCTGAMRAKDAVGRHGERVAARYLTERGYEVLDRNWRGTGGELDLVLGDRGRVVAVEVKTRRGTAYGHPAEAVTEAKLRRVRRLTAEWLRTHPGPWREIRVDVVAVLLPRSGAAQVEHLRGVLNANANANANA
AK018_001891539comM_1COG0606Competence protein ComMATGGGGTACGCCACGACCACCGGCGTCGCGCTCGCCGGGATGGAGGGCCACCTGGTCGAGGTGCAGGCACAGCTCGCCCGGTCCGTGCCGGGGTTCACCCTCGTGGGGCTCCCCGACACGGCGCTGGCGGAGTCGCGCGACCGGGTGCGCGCCGCCGTGCTGTCGACCGGGATCGAGTGGCCGCAGCGCAAGGTCACGGTCAACCTCTCGCCCGCCTCGCTGCGCAAGTCCGGCTCGGGCTTCGACCTCGCCATCGCGATGGCCGTCCTGGCCGGTCACGGCGTGGTGCCGGCCGCCGGGCTCGGCCCGGTGGTGCACCTGGCCGAGCTGGGTCTCGACGGCCGGCTCCAGCCGGTCCGCGGGGTGCTCCCGGCGGTCGCCGCGGCCGTCGCCGCCGGCCACCGGGACGTCGTCGTGGCGGCCGGCGACGAGGCCGAGGCGGCGCTGGTCCCAGGTGCCCGGGTCCACGGCGCGGCCCATCTGGGTGACGTCGTGCTCCGCCACGGCGGCAGGCTGCGCCACCACCGGCACGTCGAGCCCGTGGCCGCGGCGCGCTCCGCGGTGCCGCGTCGACCCGGAGGAGACCTGGCGGACGTCGTCGGGCAGACCGAGGCGCGGACGGCGCTCGAGATCGCGGCCGCCGGCGGGCATCACCTGGCGATGGTCGGCCCGCCGGGCGCAGGCAAGACGATGCTGGCGGCCCGGCTCCCCGGCCTCCTGCCGGACCTCACCGACGCCGAGGCGGTCGAGGTCACGGCGGTGCACTCGGTGGCGGGCACCTTCGACCCGGGCGGCGGGCTCCTGCGCCGACCACCCTTCGAGGACCCGCACCACACGGCTACCCCGGCTGCGATCGCCGGCGGCGGCGCGGGTCTGGCCCGCCCGGGGGCGGTGTCCCGCGCGCACCGCGGGGTGCTCTTCCTCGACGAGGCGCCCGAGTTCGCCCCGCGGGTGCTGCAGACGCTGCGCCAGCCGCTGGAGGCCGGAGAGCTCGTGCTGCACCGCAGCGGTGGCGCGACCCGCTACCCGGCGCGCTTCCAGCTGGTCCTGGCGGCCAACCCCTGCCCGTGCGGGATGGCGGACACCCGCGCCGGCCAGGACTGCACCTGCTCGGTGACGGCACGACGCCGGTACCTGGGTCGGGTGTCGGGGCCGCTGCTGGACCGGGTCGACCTCCAGGTCCACCTGCCCGGACCGAGCCGCGCCGACCGTGTGCTCGGCGCCGCGGGCGAGCCGACCCGCGTCGTGGCCGCCCGGGTGGCCGCCGCCCGGGACCGGGCGCGCGAACGCCTGGGGGACACGCCGTGGTGCACCAACGCCGAGCTGCCGGGCCCGTGGCTGCACGAGCGGCTCCGCGGCGAGCGCGCGGTGCTCGGCCCCGTCGAGCGACAGCTCGACGAGGGTCGGCTGTCGATGCGCGGTGCCCACCGGGTGCTGCGGGTCGCGTGGACGGTCGTCGAGCTGGACGGACGGGACGTCCCGCGCGCCGACGACGTCGACACCGCGACCGTGCTGCGGACGGAGGGGTCCCGTGGCTGAMGYATTTGVALAGMEGHLVEVQAQLARSVPGFTLVGLPDTALAESRDRVRAAVLSTGIEWPQRKVTVNLSPASLRKSGSGFDLAIAMAVLAGHGVVPAAGLGPVVHLAELGLDGRLQPVRGVLPAVAAAVAAGHRDVVVAAGDEAEAALVPGARVHGAAHLGDVVLRHGGRLRHHRHVEPVAAARSAVPRRPGGDLADVVGQTEARTALEIAAAGGHHLAMVGPPGAGKTMLAARLPGLLPDLTDAEAVEVTAVHSVAGTFDPGGGLLRRPPFEDPHHTATPAAIAGGGAGLARPGAVSRAHRGVLFLDEAPEFAPRVLQTLRQPLEAGELVLHRSGGATRYPARFQLVLAANPCPCGMADTRAGQDCTCSVTARRRYLGRVSGPLLDRVDLQVHLPGPSRADRVLGAAGEPTRVVAARVAAARDRARERLGDTPWCTNAELPGPWLHERLRGERAVLGPVERQLDEGRLSMRGAHRVLRVAWTVVELDGRDVPRADDVDTATVLRTEGSRGNANANANANA
AK018_001901284hypothetical proteinGTGGCTGATCACCTCCTCGACCGCACCGGCCCCGCCCGCACGGGGGTGCGCTTCGACGTCGACGACCCGGTGCTGGCCGCGGCGGCCTGGAGCCGGCTGGCCGAACCCGGCGACGTGGTGGCCGGGGCCGTGGTGGAGCACCTGGGCGCGTCGGGAGCCCTGTCCTGGCTCGTGGACGCCACCACCGACCCGGTCGGGGCCCGCCGTGCCGCCGGCCTCGACGGCCTGGCGCTGCCCGACCCGCCGTCCGTCCCCGGCGGCCTCGCCGCACCGCCTCGCGCCGAGGCCGGGCAGGACGCCGCCGCCCGGCTCGGTGCCGCCGTGCGTCGGTGGGCCCCGCGCCTGGAGAGCCTCGACCCGCGCCGCGAGCTGCGCGTGCTCGACCGGTGCCAGGGGACGCTCCTGACCCCGCAGGACGACCGGTGGCCGCGGACCCTCGGCGACCTGGGTACGGCGGCGCCGTTCGCGCTGTGGGTGCGCGGACGCGCCGACGTCGCGACCTGGGCGGACCGCGCGGTGGCGCTCGTGGGGTCCCGCGCCTCGACCCGGTACGGCGAGCGCGTCGCCGAGGACCTCGCCGCCGGTGTCGCCGACCGCGGTTTCACCGTCGTGTCCGGGGGCGCCTACGGCATCGACGCCGCCGCTCACCGCGGGGCGCTCGCGGCGGGCGGCGCGACGTGCGCGGTGCTGGCCGGCGGCGTGGACCGCTACTACCCGCAGGGCAACGACGGCCTGCTGCGGCACCTGGTCGCGCAGGGCGGGGCCGTGCTCAGCGAGGTCCCTCCGGGATCGGCTCCGTACCGTCGGCGCTTCCTGGCGCGCAACCGCGTGATCGCGGCGCTGACGGGGGCGACGGTCGTCGTCGAGGCCGCGCGGCGGTCCGGCGCCCTGTCGACGGCGCGCCGGGCGGCCGAGCTGCTGCGTCCTCTCGGCGCGGTGCCGGGGCCGGTGACGTCGATCGCGTCGTCCGGGTGCCACGGTCTGCTGCGCGACGGCGCCGCCGTCTGCGTGACCGACCCGGCCGAGGTCGCCGAGCTGGCGGGGCGGCTGGGCGCGGACGCGGTGCCCGAGGACCCGCTGCCCGGGTCGCACGACCGGCTCGACGGGCTCGGACCGGACGAGCGTGCGCTCTGGGACGCGCTGCCGCTGCGCTCGGGGGCGACCGTCGACGCCCTGGCGCGCAGCGCCGGTCTCTCGCCGCGCCGGGTGATGACCCTGGTGGGCGGCATCGAGCGCCGCGGGCTGGCGCGCTGCGACGCCGGACGGTGGCTGCGGGGCACCTGAMADHLLDRTGPARTGVRFDVDDPVLAAAAWSRLAEPGDVVAGAVVEHLGASGALSWLVDATTDPVGARRAAGLDGLALPDPPSVPGGLAAPPRAEAGQDAAARLGAAVRRWAPRLESLDPRRELRVLDRCQGTLLTPQDDRWPRTLGDLGTAAPFALWVRGRADVATWADRAVALVGSRASTRYGERVAEDLAAGVADRGFTVVSGGAYGIDAAAHRGALAAGGATCAVLAGGVDRYYPQGNDGLLRHLVAQGGAVLSEVPPGSAPYRRRFLARNRVIAALTGATVVVEAARRSGALSTARRAAELLRPLGAVPGPVTSIASSGCHGLLRDGAAVCVTDPAEVAELAGRLGADAVPEDPLPGSHDRLDGLGPDERALWDALPLRSGATVDALARSAGLSPRRVMTLVGGIERRGLARCDAGRWLRGTNANANANANA
AK018_00191945xerC_1COG0582Tyrosine recombinase XerCGTGACCGACCCCGACGTCCCGCCGCTGCCCGCCGCGCTCGCCGGCGCGGTGGACGGGTTCTCGCGGCACCTGGCTACCCGCCAGGGCCACTCGGCGCACACCCGGCGTGCCTACCGAGCGGACGTGACCGCGCTGCTGCGGTACGCCGTCCGGCACGGTGCCGACGGCCTCGACGGCCTCGACCTGACCATGCTGCGCGGCTGGCTCGGTGCGCAGGCCGACCGCGGTCTGTCGCGCGCGACGCTCGCGCGGCGGGGCGCGGCGGCGCGGGCCTTCCTGCGCTGGGCCCACCACGAGGGCCTCGTGGCGAGCGACCCGTCCGTGCGGCTGGCCACCCCGCGCACCCCGCGGACGCTGCCCACCGTGCTCTCGACCCGGGCCGCGGCGCGGCTGCTCGACACCGCCCGGTCCGACGCGGAGGCGGCCGAGCCCGAGCACCGGCCCGCGGCGCTGCGTGCCTGGGCGGCGGCCGAGCTGCTCTACGGGTCCGGTGTGCGGATCGGGGAGCTGACGGCGGCCGACCTGACCGACGTCGACGTCTCCGAGCGGATCGTGCGCGTCCTCGGCAAGGGCGGCAAGGAACGCGTCGTGCCGTTCGGCGTCCCGGCGGCCCGCGCGCTGCAGGCGTGGGTCTCGGACGGCAGGCCCGCCCTCGTGCGTGCCGCGAGCCCGGCAGCGCTGTTCCTCGGTGACCGGGGCGGACGCTGGGGGCAGCGGCAGGCCCGCGACGCCGTGCACCGCCTGGCCGCCCGGGCCGAGGTGGACGACGTGGCCCCGCACGCGCTGCGGCACTCGGCCGCGACGCACCTGCTGGCCGGCGGGTCCGACCTGCGGTCGGTGCAGGAGGTGCTCGGGCACGCCGACCTGGGCACGACCCAGCGGTACATCCACGTGGACGCCGACCGGCTGCGGCAGGTGTTCGAGCAGGCGTTCCCCCGCGCCTGAMTDPDVPPLPAALAGAVDGFSRHLATRQGHSAHTRRAYRADVTALLRYAVRHGADGLDGLDLTMLRGWLGAQADRGLSRATLARRGAAARAFLRWAHHEGLVASDPSVRLATPRTPRTLPTVLSTRAAARLLDTARSDAEAAEPEHRPAALRAWAAAELLYGSGVRIGELTAADLTDVDVSERIVRVLGKGGKERVVPFGVPAARALQAWVSDGRPALVRAASPAALFLGDRGGRWGQRQARDAVHRLAARAEVDDVAPHALRHSAATHLLAGGSDLRSVQEVLGHADLGTTQRYIHVDADRLRQVFEQAFPRAPGPT0021995_1515DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021995-xerC-K03733NANA
AK018_00192633hypothetical proteinATGGCGCCCGACCCCCACCCCGACCGCCGTCCGCGACGGCCCGGTCGCCGCCCGCGACGATCACGGCTGCGCGCCGCCCTGACCGTGGCCCTGCTCGCCGGTGCGGCCGTCGTGCTCACGACCGGACCGGCGGCGCCCGCTCCCCCGCCGCGCGCGGTCGTCGTCGCGGCCGAGCGACCCGTCGCGGCCCAGCCACCCGCAGCTCGCGAGCGGCCCGGGGCCCCCGACGGGTGGCGTCTCCCCCTGCCCGGCCCGGTCCGGACGGTCGTCGACCTGCCGGCCGAGCCCTGGCGGCCCGGGCACCGCGGCGTCGACCTGCCCGCCGCTGCCGGCTCGACCGTCCGCGCCCCGCGGGCCGGAACGGTCACGTTCGCCGGCCAGGTCGGCGGCAAGCCCGTCGTCGTCCTCGCGCACGGTGCGCTGCGGTCGACGTTCGAGCCGGCCGAGGCCCTGGTGGAGGTGGGAGGCACCGTCCGCGCGGGCCGCCCGGTGGCCGTCGTCGCCGCCGCGGGCGCGGGGCACTGCGCTCCCGACCGGTGCCTGCACTGGGGCGTCCGACGCGGGGACCGCTACCTCGACCCGCTGGTCCTGGTCGGACGAGCCGTGCCCGTGGTGCTGCTCCCCCACGGCTGAMAPDPHPDRRPRRPGRRPRRSRLRAALTVALLAGAAVVLTTGPAAPAPPPRAVVVAAERPVAAQPPAARERPGAPDGWRLPLPGPVRTVVDLPAEPWRPGHRGVDLPAAAGSTVRAPRAGTVTFAGQVGGKPVVVLAHGALRSTFEPAEALVEVGGTVRAGRPVAVVAAAGAGHCAPDRCLHWGVRRGDRYLDPLVLVGRAVPVVLLPHGNANANANANA
AK018_00193894rpsB_1COG005230S ribosomal protein S2ATGGCCGTCGTGACCATGCGTCAGCTCCTCGAGAGCGGTGTCCACTTCGGGCACCAGACCCGTCGTTGGAACCCGAAGATGAAGCGGTTCATCTTCACCGAGCGCAACGGCATCTACATCGTCGACCTGCAGCAGTCGCTGTCGTACATCGACCGCTCCTACGAGTTCGTCAAGGAGACCGTCGCCCACGGCGGCACGATCCTGTTCGTCGGCACCAAGAAGCAGGCCCAGGAGGCCATCGCGGAGCAGTCCTCCCGCGTCGGCATGCCCTACGTCAACCACCGTTGGCTCGGCGGCATGCTCACCAACTTCACCACCGTGCACAAGCGGCTCCAGCGTCTCAAGGAGCTCGAGGAGATCGACTTCGACGACGTCGCCGGCTCCGGCCTGACGAAGAAGGAGCTCCTCGTCCTGCGCCGCGAGAAGGACAAGCTCTCGCGCACGCTGGGTGGCATCCGCGACATGGCCAAGACGCCGTCGGCCGTGTGGATCGTGGACACCAACAAGGAGCACCTCGCCGTGGACGAGGCCCGCAAGCTGGGCATCCCGGTCGTGGCGATCCTGGACACCAACTGCGACCCCGACCTGGTCGACTACGCGATCCCGGGCAACGACGACGCGATCCGCTCCGTCACGCTGCTCACGCGGGTCATCGCCGACGCCGTCGCCGAGGGCCTCATGCAGCGCGCCGCCGGCAAGAAGGGCGAGTCGGCCCCCGAGGAGTCCGAGCCGCTGGCCGAGTGGGAGCGCGAGCTCCTCGCCGGTGCCGAGGGCGAGCAGGCCGCGGACGCCGCGCAGCCGGTCGCCCCGGCCGAGGACGCCGCTGCCGAGCAGCCCGCCGCGGAGGCCGCCCCGGCCGAGCAGCCGGCGGAGCCCGCCGAGAAGTCCGAGTGAMAVVTMRQLLESGVHFGHQTRRWNPKMKRFIFTERNGIYIVDLQQSLSYIDRSYEFVKETVAHGGTILFVGTKKQAQEAIAEQSSRVGMPYVNHRWLGGMLTNFTTVHKRLQRLKELEEIDFDDVAGSGLTKKELLVLRREKDKLSRTLGGIRDMAKTPSAVWIVDTNKEHLAVDEARKLGIPVVAILDTNCDPDLVDYAIPGNDDAIRSVTLLTRVIADAVAEGLMQRAAGKKGESAPEESEPLAEWERELLAGAEGEQAADAAQPVAPAEDAAAEQPAAEAAPAEQPAEPAEKSENANANANANA
AK018_00194840tsf_1COG0264Elongation factor TsATGGCGAACTACACCGCCGCTGACATCAAGGCGCTGCGCGAGCGCACCGGCGCCGGCATGCTCGACGTCAAGAAGGCGCTCGACGAGGCCGACGGCAATGCCGACCAGGCCATCGAGATCATCCGCAAGAAGGGCCTGGCCAAGGCCGCCAAGCGTGAGGGCAACACCGCCTCCGAGGGTCTCGTCGCCGCGACGATCACCGACGCGGGCGACGGCCAGGTCGCCACGCTGATCGAGCTGAACGCCGAGACGGACTTCGTCGTCAAGAACGAGAACTTCGTCGCGCTGGCCGACACCGTCCTCGCGGCCGCTGCCGCGGCCGGCGCCACCGATGCCGAGTCGGCGCTGGCCGCCCCGGCCGCCGACGGCACGGTCGCCGACACGATCGCCGCCCAGGGCGCGACCATGGGCGAGAAGGTCGTCCTGCGCCGCGTCGCTCGCGTCGAGGGCCCGAAGGTCACCGCCTACCTGCACAAGACCGCCAAGGACCTGCCGCCGTCGATCGGCGTCCTGGTCGTGACGGACGCCGCGGGCGAGGCCGTCGCCAAGGACGTGGCGCAGCACGTCGCCGCGCTGGCGCCGCAGTACCTCACCCGTGAGGACGTCCCGGCCGAGGTCGTCGACAAGGAGCGCGAGATCGCCCGCGAGCGGTCCATCGCCGAGGGCAAGCCCGAGGCCGCGCTGCCGAAGATCGTCGAGGGTCGTCTCAACGGCTTCTTCAAGGAGGCCGTGCTGGTGGACCAGCCGCTGGCCAAGGACACCAAGACGACCGTGGGCAAGCACGTCGAGGCCGCCGGCGGCGAGCTGCTCGGCTTCGTCCGCTTCCGCGTCGGCAGCTGAMANYTAADIKALRERTGAGMLDVKKALDEADGNADQAIEIIRKKGLAKAAKREGNTASEGLVAATITDAGDGQVATLIELNAETDFVVKNENFVALADTVLAAAAAAGATDAESALAAPAADGTVADTIAAQGATMGEKVVLRRVARVEGPKVTAYLHKTAKDLPPSIGVLVVTDAAGEAVAKDVAQHVAALAPQYLTREDVPAEVVDKEREIARERSIAEGKPEAALPKIVEGRLNGFFKEAVLVDQPLAKDTKTTVGKHVEAAGGELLGFVRFRVGSNANANANANA
AK018_00195765pyrH_1COG0528Uridylate kinaseATGACGCAGATCGATCAGACCCAGACGGCGACCGGACACGTCCCGCCGAAGGACCCCGACACCCGGCGCGTCCTGCTCAAGCTGTCCGGCGAGACCTTCGGCGGCGGCGCCGTCGGGCTGGCCAGCGACGTCGTGCGCCGGGTCGCCCAGGAGATCGGTGAGGCGGTCCGTCAGGGGGTCCAGGTCGCCATCGTCGTCGGCGGGGGCAACTTCTTCCGCGGCGCCGAGCTGTCCCGGGCCGGTCTGGACCGGGCCCGCGCCGACTACATGGGCATGCTCGGCACGGTGATGAACTGCCTGGCCCTGCAGGACTTCCTCGAGCAGGACGGCGTCAAGACCCGCGTCCAGACGGCGATCACCATGGGACAGGTGGCCGAGCCGTACATCCCGCTGCGCGCGATGCGTCACCTGGAGAAGGGCCGTGTCGTCATCTTCGGCGCGGGGGCCGGGATGCCCTACTTCTCCACCGACACGGTCTCGGTCCAGCGCGCCCTGGAGACGCACTGCGACGAGGTCCTCATGGGCAAGAACGGGGTCGACGGCGTCTACACCGCCGACCCCCGCACCGACCACGACGCCGAGAAGCTCGAGCACCTCACCTACACCGACGCCCTCGTGCGCGGGCTCAACGTCATGGACGCCACCGCGCTGTCGATGTGCCGGGACAACGACGTGGCCATGCGTGTCTTCGGCCTGGAGCAGACCGGTAACGTGACCCGTGCACTGCTCGGCGAGAAGATCGGTACGTCCGTCACGACCCGCTGAMTQIDQTQTATGHVPPKDPDTRRVLLKLSGETFGGGAVGLASDVVRRVAQEIGEAVRQGVQVAIVVGGGNFFRGAELSRAGLDRARADYMGMLGTVMNCLALQDFLEQDGVKTRVQTAITMGQVAEPYIPLRAMRHLEKGRVVIFGAGAGMPYFSTDTVSVQRALETHCDEVLMGKNGVDGVYTADPRTDHDAEKLEHLTYTDALVRGLNVMDATALSMCRDNDVAMRVFGLEQTGNVTRALLGEKIGTSVTTRPGPT0021205_263DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021205-pyrH-K09903NANA
AK018_00196558frr_1COG0233Ribosome-recycling factorGTGATCGACGACACCCTCCTCGAGGCCGAGGAGAAGATGGACACGGCGATCGAGGTCGCCAAGGAGCAGTTCGGCTCGATCCGCACCGGGCGCGCGAACGCCGGCATGTTCTCCTCGCTCGAGGTGGACTACTACGGCGCGCCGACGCCCCTGCAGCAGCTGGCCTCGTTCAACATCCCCGACGGCCGCACGGTGCTGATCTCCCCGTTCGACAAGAGCTCGATGTCGGCGATCGAGAAGACGCTGCGCGAGTCCGACCTCGGCGTCAACCCGTCCAACGACGGCAACGCGATCCGCGTCATCATGCCGACGCTGACCGAGGAGCGCCGCCGCGACTACGTCAAGCTGGCCAAGACCAAGGCGGAGGACGCCCGGATCTCGGTCCGCGGCGTGCGCCGCAAGGCCAAGGAGCAGCTGGACAAGCTGGTCAAGGACGGCGACGTCGGCGAGGACGAGGGCGCCCGGGCGGAGAAGGAGCTCGAGGCGCTCACCAAGAAGCACGTGGAGCTGGTCGACCAGCTGCTCGCCCACAAGGAGAGCGAGCTGCTCGAGGTCTGAMIDDTLLEAEEKMDTAIEVAKEQFGSIRTGRANAGMFSSLEVDYYGAPTPLQQLASFNIPDGRTVLISPFDKSSMSAIEKTLRESDLGVNPSNDGNAIRVIMPTLTEERRRDYVKLAKTKAEDARISVRGVRRKAKEQLDKLVKDGDVGEDEGARAEKELEALTKKHVELVDQLLAHKESELLEVNANANANANA
AK018_00197834cdsA_1COG0575Phosphatidate cytidylyltransferaseATGTCCCCCGTCGACGCGCAGCGCCGGCCGTCCCGCGCCGGGCGCAACCTGCCGGCCGCCGTCGCGGTCGGGGTCGGGCTGCTCCTGCTGCTCGCCGCGTCCCTCTGGTTCCGTCCCGAGCCCTTCGTGGCGTTCGTGGTCGTGGCCCAGAGCGCGGCCCTGTGGGAGCTGCGCGTCGCCTTCGCCCGACGGGAGATCCACGTCCCGCTGACCCCGCTGCTCGTGGGAGGGGCCGGCATGGCCGTGTCGGCGTACGTCGCCGGGCCCGAGGCGCTGCTCGTGGCGTTCATGCTCACCGTGGGCGCCGTCGTCGTGTGGCGCGTGCTGGACGGCTCGGGACCGCAGGCGCTGCGGGACGCGGCCGCCGGCGTGTTCGCCGCCACGTACCTGCCGTTCCTGGCCGGGTTCGTGCTGCTCGTCCTGGACCAGCCGGACGGCGAGCTGCGGGTCGTGCTGTTCGTGCTCCTCGCGGTGGCCAACGACGTCGGCGGCTACGTCGCCGGCGTGCTCTTCGGACGCCACCCGATGGCGCCCTCGGTCAGTCCCAAGAAGAGCTGGGAGGGACTGGCCGGCTCGGTGGCCCTGACCACCGCCGTCGGCGTCGCCGGGGCGCTGTTCGTCCTGGACGCCCCCTGGTGGCTGGGCGTCGCGCTCGGGGTGCTGACCGCCGTCACCGCCACCGCGGGGGACCTGGCCGAGTCCCTCATCAAGCGCGATCTCGACCTCAAGGACATGGGGTCGTTGCTGCCGGGTCACGGGGGCGTGCTCGACCGTCTCGACTCCCTGGTCATCACCGCCCCGTTCGTCTACCTGGTCCTGGCCGCCACCGTCTGAMSPVDAQRRPSRAGRNLPAAVAVGVGLLLLLAASLWFRPEPFVAFVVVAQSAALWELRVAFARREIHVPLTPLLVGGAGMAVSAYVAGPEALLVAFMLTVGAVVVWRVLDGSGPQALRDAAAGVFAATYLPFLAGFVLLVLDQPDGELRVVLFVLLAVANDVGGYVAGVLFGRHPMAPSVSPKKSWEGLAGSVALTTAVGVAGALFVLDAPWWLGVALGVLTAVTATAGDLAESLIKRDLDLKDMGSLLPGHGGVLDRLDSLVITAPFVYLVLAATVPGPT0007685_4019DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981NANA
AK018_001981191rlmN_1COG0820Dual-specificity RNA methyltransferase RlmNATGGCATCACCGACCGCGCCCTCCGGCGCCGGCGCCGACCTCGGCATCCCCGCGGTGCGGCCGTCCGACGAGACCCGCCCGATCCCGCTGCAGATGGCGCCCCGGCGCCGGGGCAAGCCCCCGAAGCACTTCGCCGACCTCACCGCCGACGAGCGGGTCGCCAGCGTCACCGAGATGGGGGAGAAGGCGTTCCGGGCCAAGCAGCTCGCGGCGCACTACTTCACCCACTACACCTCCGACCCGGCGGAGATGACCGACCTGCCGAAGGCGACCCGCGACCAGCTGGCCACCACGATGTTCCCGCCGCTGATCCGGCCCACGCGCCGCATGGAGGCGGACGGCGGCACCACCGTCAAGACGCTGTGGCACCTGTTCGACGACGCCAAGGTCGAGTCGGTGCTGATGCGCTACCCGCACCGCACCACGCTGTGCGTCTCGTCCCAGGCCGGCTGCGGCATGGCCTGCCCGTTCTGCGCCACGGGTCAGCTCGGGCTGACCCGCAACCTGTCGACGGCCGAGATCCTCGAGCAGGTCCGCGACGCCTTCCGTGCCCTGGACCGCGGCGAGATCCCGGGCGGCCCGGCCCGGCTGAACAACCTCGTGTTCATGGGGATGGGGGAGCCGCTCGCGAACCCGCGCGCCGTCATCGAGACGGTCAAGGCCCTGGTGGCGCCCGCTCCCGAGGGGTTCGGGATGTCGGCGCGCAACATCACGGTGTCGACCGTCGGCCTCGTGCCGGCGATGCGCAAGCTCGCCGACCTCGGCATCCCCGTCACGCTGGCCCTGTCGTTGCACGCCCCGGACGACGACCTGCGCAGCGAGCTGGTGCCGATCAACACGCGCTGGAGCGTCGACGAGGCGATCGACGCGGCGCGGCACTACTACGAGGTGACGGGCCGGCGCGTGTCCATCGAGTACGCGCTCATCAAGGACATGAACGACCACGGCTGGCGTGCTGACCTGCTCGCGGAGAAGCTCAACGCCCGCGGCCGGGGCTGGGTGCACGTCAACCCGATCCCGCTCAACCCGACCCCCGGCTCGATCTGGACGGCGTCCGACCGTTCCGTGGAGGACGAGTTCGTGGCACGATTGCGCGGGCACGGGATCCCCACCACGATCCGTGACACCCGCGGGAGCGACATCGACGGCGCCTGCGGGCAGCTGGCCGCCGAGGAGGACGACGACGAGTGAMASPTAPSGAGADLGIPAVRPSDETRPIPLQMAPRRRGKPPKHFADLTADERVASVTEMGEKAFRAKQLAAHYFTHYTSDPAEMTDLPKATRDQLATTMFPPLIRPTRRMEADGGTTVKTLWHLFDDAKVESVLMRYPHRTTLCVSSQAGCGMACPFCATGQLGLTRNLSTAEILEQVRDAFRALDRGEIPGGPARLNNLVFMGMGEPLANPRAVIETVKALVAPAPEGFGMSARNITVSTVGLVPAMRKLADLGIPVTLALSLHAPDDDLRSELVPINTRWSVDEAIDAARHYYEVTGRRVSIEYALIKDMNDHGWRADLLAEKLNARGRGWVHVNPIPLNPTPGSIWTASDRSVEDEFVARLRGHGIPTTIRDTRGSDIDGACGQLAAEEDDDENANANANANA
AK018_00199552hypothetical proteinGTGAGCACGCTCTTTTCCACCGTGTCGAAGATGCGACAGGGTTATGAACCGGACGAGGTCGACGAGTTCTTCGACCACGCCCGGCAGGCGTACGAGGGGCAGACCCCCGAGCCGATGACGAACGCGGACGTCGCGGCGTCCACGTTCGAGCTGGTGCGCGGCGGCTACAACACTCACGAGGTCGACGCGGCGCTGGACCGCCTGGAGGGTGCCTTCATCGCCCGCCAGCGGGCCGACTTCGTCAACGAGCACGGCCAGGACGCCTGGATGGCGGCGCTGGCCGAGCGTGCCCGCACGCTGTACGGCCGGCTGGGCCGCCCCGACGGGCTGAAGTTCGCCCCGGCGGAGCGCGGGCAGCAGGGCTACGACATGGACGACGTCGACGCCCTGTGCGACCGGCTCGTGGGCTACTTCGACCGGCAGGAGCCGCTGACGGCGGCCGAGCTGCGGTCGGCCACGTTCAGCCGCGCCAAGGGCAAGGACGCCTACGCCGAGGGAGCGGTGGACAAGTTCCTCGCCCGGGCGATCGAGGTGCTCCTCGGGGTCGAGTGAMSTLFSTVSKMRQGYEPDEVDEFFDHARQAYEGQTPEPMTNADVAASTFELVRGGYNTHEVDAALDRLEGAFIARQRADFVNEHGQDAWMAALAERARTLYGRLGRPDGLKFAPAERGQQGYDMDDVDALCDRLVGYFDRQEPLTAAELRSATFSRAKGKDAYAEGAVDKFLARAIEVLLGVEPGPT0014806_9DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014806-gpsB-NANANA
AK018_002001185dxr_1COG07431-deoxy-D-xylulose 5-phosphate reductoisomeraseATGCCCCACGCTGCACGGACCCTGACCCTGCTCGGATCCACCGGATCGATCGGCACCCAGGCCCTCGACGTCGTCGACGCCCACCCGGGCCGGTTCGAGGTCGAGGCGCTCAGCGCCGGCGGGTCCGACGTCGGAGCGCTCGCCGCCCAGGCGGCCCGGCACGGGGTGCGTGCCGTCGCGATCGCCGACGCCGGTCGTGCGGACGCGCTCCGCGAGGCGCTGGTCGGGGCGATGGGTCCGCGGGCGGCCGACGTCGAGGTCCTCGCGGGCCCGCACGCCGCCACCGAGCTGGCCGGGCGCGGCAGCGACGTCGTGCTCAACGGCATCACCGGGTCGGTCGGCCTGCGGCCCACCCTCGCGGCGCTGGGCGCCGGGTCGACCCTGGCGCTGGCGAACAAGGAGTCCCTGGTCGTCGGCGGCGCCCTCGTCAAGGCCGCCGCCGCCCCGGGGCAGATCGTCCCGGTCGACTCCGAGCACTCCGCCATCGCCCAGGCGCTGCGCGGCGGGGCCCGCGAGGAGGTCCGCCGCATCGTCCTGACGGCCTCCGGCGGACCGTTCCGGGGCCGGACCCGTGACGAGATCGAGGCGGTGACCGCGGACGAGGCGCTCGCCCACCCCACCTGGGCGATGGGTCCGGTGGTCACGGTCAACTCGGCCTCCCTGATGAACAAGGGGCTCGAGCTCATCGAGGCGCACCTGCTGTTCGACGTCCCCACCGACGACATCACCGTCGTCGTGCACCCGCAGTCGGTCGTGCACTCGATGGTCGAGTTCCGCGACGGCTCGACGATCGCGCAGGCCTCGCCGCCGGACATGCGCCTGCCCATCGCGCTGGGCCTGTCGTGGCCCGAGCGCCTCGACGTCGTCTCCCCGCCGTGCGACTGGACGCAGGCGGCGAGCTGGACCTTCGAGCCGCTGGACGAGCACACGTTCCCGGCCGTCGGGCTCGCGCGGGCGGCGGCTGCGGCCTCGGCGACCCACCCGGCCGTCTACAACGCCGCCAACGAGCAGGGCGTCGCCGCCTTCCTGCGGGGGCGGATCGGGTTCCTGGACATCGTGGGCACCGTCGAGCGGGTGCTCGGCGAGCACGACGGCGCGGCCGCGGCGGACGTGACGCTCCAGGACGTCGAGGAGACCGAGACCTGGGCGCGCGCCCGGGCGGACGAGCTGCTCGCCCGCCGCTGAMPHAARTLTLLGSTGSIGTQALDVVDAHPGRFEVEALSAGGSDVGALAAQAARHGVRAVAIADAGRADALREALVGAMGPRAADVEVLAGPHAATELAGRGSDVVLNGITGSVGLRPTLAALGAGSTLALANKESLVVGGALVKAAAAPGQIVPVDSEHSAIAQALRGGAREEVRRIVLTASGGPFRGRTRDEIEAVTADEALAHPTWAMGPVVTVNSASLMNKGLELIEAHLLFDVPTDDITVVVHPQSVVHSMVEFRDGSTIAQASPPDMRLPIALGLSWPERLDVVSPPCDWTQAASWTFEPLDEHTFPAVGLARAAAAASATHPAVYNAANEQGVAAFLRGRIGFLDIVGTVERVLGEHDGAAAADVTLQDVEETETWARARADELLARRPGPT0007585_1954DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007585-ispC|dxr-K00099NANA
AK018_002011287rip1_1COG0750Zinc metalloprotease Rip1ATGGTCGCCTACCCTGCTGGTGTGGACATCCTTCCTCTCGTCGTCGGCATCGTCGTCATCGTGCTCGGCATCCTCGTCTCGATCGCCCTGCACGAGGTCGGGCACATGGTGCCCGCCAAGAAGTTCGGCGTGCGCGTGAGCGAGTACATGGTGGGGTTCGGGCCCACCCTCTGGTCGCGCCGCAAGGGCGAGACCGAGTATGGCCTCAAGGCGATCCCGCTGGGCGGCTACGTGCGTCTGGTCGGCATGATGCCGCCCGCACCGGCGGGCCGTCGTCCGCGCGGCGGGTTCTTCGGCCAGGTGATCGCCGACGCCCGCGACGCCAGCGTCTCCGAGATCCGACCCGGCGAGGAGCACCGCGCGTTCTACCGGCTGTCCACGCCGAAGAAGCTCGTCGTCATGCTCGGCGGTCCGGTGATGAACCTCGTCATCGCCGTCGTGCTGCTGGCGGTCGTGTTCCTGGCGATCGGCATGCCGACGGTGACGACCACCGTCGCGCAGGTCGGCGACGACTCCGCCGCGTCGTCCGCCGGGATCGAGGCCGGTGACGAGGTGGTCGCCTTCGACGGGGTGCCCGTCGAGGAGTGGAACCAGCTCGTGGGCATGGTCAACGACTCGGCCGGCGAGGCCGTGCCGATGGTCGTCGAGCGGGACGGCGAGCAGGTCGCCCTGACCGTCACGCCCGTGCCGGCGGAGCGGCCGGCGACCGACGACCAGGGCTACCCGGTCCTCGACGACGACGGCGAGCCCGTGATGATCGACGGCGCCCTGCTCGGCGTCACCTCCAGCGTCGAGCGTCAGGCCCTGCCGGTCTCGTCGGTGCCCGAGGCCGTCTGGCTCCAGGTCTCGGAGACCGCCCGGGCGATCGTCACCCTGCCGGTGCGCATCTACGACGCCGCCTACGAGGCGTTCACCGACGCCCCGCGCTCGCAGGACTCGGTGATGTCGGTGGTCGGCGTGGGCCGCGCGGCCGTGGACACCGCGGGGGCCGAGGACTACTCGGTGCTCGCCCGGGTGCAGCTGATGCTGATGCTCCTGGCGTCGCTGAACGTCGCGCTGTTCATGTTCAACCTCATCCCGCTGCTGCCGCTCGACGGCGGCCACGTGGCCAACGCCCTGTACGAGGGGGCACGCCGCCAGGTCGCCCGGGTCCGCGGTCGCGCCGTGCCGGGACCGGCCGACGTGGCCCGGATGATGCCCGTGGCGTACGTGGTCTTCGTGCTGCTCATCGGCGTGGGTGCCGTACTGATGGTCGCCGACCTGGTCGATCCCGTCCGGCTGTTCTGAMVAYPAGVDILPLVVGIVVIVLGILVSIALHEVGHMVPAKKFGVRVSEYMVGFGPTLWSRRKGETEYGLKAIPLGGYVRLVGMMPPAPAGRRPRGGFFGQVIADARDASVSEIRPGEEHRAFYRLSTPKKLVVMLGGPVMNLVIAVVLLAVVFLAIGMPTVTTTVAQVGDDSAASSAGIEAGDEVVAFDGVPVEEWNQLVGMVNDSAGEAVPMVVERDGEQVALTVTPVPAERPATDDQGYPVLDDDGEPVMIDGALLGVTSSVERQALPVSSVPEAVWLQVSETARAIVTLPVRIYDAAYEAFTDAPRSQDSVMSVVGVGRAAVDTAGAEDYSVLARVQLMLMLLASLNVALFMFNLIPLLPLDGGHVANALYEGARRQVARVRGRAVPGPADVARMMPVAYVVFVLLIGVGAVLMVADLVDPVRLFNANANANANA
AK018_002021140ispG_1COG08214-hydroxy-3-methylbut-2-en-1-yl diphosphate synthase (flavodoxin)ATGCCCGCACCCCCCGCGCCCACGCTCGCCGCGCGCCGGAAGACCCGCAAGATCAAGGTCGGTGACGTATACGTCGGTGGCGACGCCCCGATCAGCGTCCAGTCGATGACGACGACCAAGACCACCGACATCAACGGCACCCTCCAGCAGATCGCGGAGCTGACGGCCGCCGGCTGCGACATCGTCCGTGTCGCGTGCCCCACCCAGGACGACGCCGACGCGCTGCCCATCATCGCGAAGAAGTCCCAGATCCCCGTCATCGCGGACATCCACTTCCAGCCGAAGTACGTGTTCGCGGCCATCGAGGCCGGTTGCGCCGCCGTGCGGGTCAACCCGGGCAACATCCGCCGGTTCGACGACCAGGTCAAGGAGATCGCCCAGGCGGCGAAGGACCACGGCACCTCGTTGCGCATCGGCGTCAACGCCGGGTCGCTGGACAAGCGCCTCATCGAGAAGTACGGCAAGCCGACCCCCGAGGCGCTGGTCGAGTCGGCCGTGTGGGAGGCGAGCCTCTTCGAGGAGCACGACTTCCACGACTTCAAGATCTCCGTCAAGCACAACGACCCCGTGGTCATGGTCGAGGCGTACCGGCAGCTGTCCGAGCGGGGTGCGTGGCCCCTGCACCTCGGGGTCACCGAGGCGGGACCGGCCTTCCAGGGCACGATCAAGTCCGCCACGGCCTTCGGTGCGCTGCTCAGCGAGGGTATCGGCGACACCATCCGCGTCTCGCTGTCGGCGCCTCCGGTCGAGGAGGTCAAGGTCGGTACGCAGATCCTGCAGTCGCTCAACCTGCGCCCCCGCAAGCTCGAGATCGTCTCCTGCCCGTCCTGCGGGCGGGCGCAGGTGGACGTCTACGAGCTCGCCGACAAGGTCACCGCGGGTCTGGAGGGCATGGCGGTCCCGCTGCGCGTGGCCGTGATGGGCTGCGTCGTCAACGGTCCCGGTGAGGCGCGCGAGGCCGACCTGGGTGTGGCGTCCGGCAACGGCAAGGGGCAGATCTTCGTCAAGGGCGAGGTCATCAAGACCGTCCCGGAGGCCGAGATCGTCGAGACGCTGATCGACGAGGCGAACCGCATCGCCGCGACCATGGACGCGCCGGAGAACGACGACCAGGCCGGCGCCGTGGTGACGGTCTCCTAGMPAPPAPTLAARRKTRKIKVGDVYVGGDAPISVQSMTTTKTTDINGTLQQIAELTAAGCDIVRVACPTQDDADALPIIAKKSQIPVIADIHFQPKYVFAAIEAGCAAVRVNPGNIRRFDDQVKEIAQAAKDHGTSLRIGVNAGSLDKRLIEKYGKPTPEALVESAVWEASLFEEHDFHDFKISVKHNDPVVMVEAYRQLSERGAWPLHLGVTEAGPAFQGTIKSATAFGALLSEGIGDTIRVSLSAPPVEEVKVGTQILQSLNLRPRKLEIVSCPSCGRAQVDVYELADKVTAGLEGMAVPLRVAVMGCVVNGPGEAREADLGVASGNGKGQIFVKGEVIKTVPEAEIVETLIDEANRIAATMDAPENDDQAGAVVTVSPGPT0007580_1817DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007580-gcpE|ispG-K03526NANA
AK018_00203924hypothetical proteinATGGGATGGCGACCGGCGCTGCGCAGCCGGTCGGCCGCGCCCGGGGACGGCTCCGGGGCCGGCGCTCGGGTCCTGGGACCCGACGACCTGGTCGAGGCACGCCGGGTCTGCACGCGCGACCCGGTGGCGTCCGTGCTCGCCGCCGCCCGGCTCGACGTGGCCCTGCACGTCGGTCTGGCCGCGGCCGGCGGGCAGGTGTGGGGCTACCCGGCCACCGGCGAGCTGCGCGCCGTGTGCTGGGCCGGGGCCAACCTCGTCCCGGTGGTGCCGTCGTCGGTGGACCCCGCCGAGGCCGACGACGCCGTGGCGTCCTTCGCGGTCCTGGCGCGTCAGCAGGGCCGCCGGTCCAGCTCGGTCGTGGGGGAGCAGCGCACCACGCTGCGCCTGTGGGAGCTGCTCGCGCGGGTCTGGCCCCCGCCGCGCGAGGTGCGCACCGACCAGCCCTCCCTCGTGCTCGACCGCGACCCGCTCGTCGCGCCCGACCCGGGCGTGCGGCACGCGGCCCTGTCCGAGCTGGAGCTGGTCCTGCCCGCCTGCGTCCGCATGTTCACCGAGGAGGTGGGCTACTCCCCGGTGGCGGGCGGCGGCAGCGCCTATGCCGCCCGGGTGCGGTCGCTGGTGGCCGAGCGGCGCTCGTTCGTGCGGATCGAGCCCGACGACGACGGCGCGCCCCGGGTGGTCTTCAAGGCAGAGCTGGGCGCGGTGTCCGGCGGCGTGGCCCAGGTCCAGGGCGTCTGGGTCGACCCGGAGCTGCGCGGGCGAGGGCTCTCCGTCCCGGGGATGGCCGCGGTGGTCGCCCTGACCCGGCAGCACGTCGCCCCCGTGGTCTCGTTGTACGTCAACGGGTTCAACGCCCCTGCGCTGGCCACCTACCGCCGGGTGGGCTTCGAGCAGGCCGGGACCTTCGCGACCGTCCTGTTCTAGMGWRPALRSRSAAPGDGSGAGARVLGPDDLVEARRVCTRDPVASVLAAARLDVALHVGLAAAGGQVWGYPATGELRAVCWAGANLVPVVPSSVDPAEADDAVASFAVLARQQGRRSSSVVGEQRTTLRLWELLARVWPPPREVRTDQPSLVLDRDPLVAPDPGVRHAALSELELVLPACVRMFTEEVGYSPVAGGGSAYAARVRSLVAERRSFVRIEPDDDGAPRVVFKAELGAVSGGVAQVQGVWVDPELRGRGLSVPGMAAVVALTRQHVAPVVSLYVNGFNAPALATYRRVGFEQAGTFATVLFNANANANANA
AK018_00204879mutM_1Formamidopyrimidine-DNA glycosylaseATGCCGGAGCTGCCCGAGGTGGAGGGACTGGCGCGCTTCCTCGACGAGCGCACGCGCGGTCGGACCGTCGTGGCCGCCGACGTCGCCGCCGTCGCCGCGCTCAAGACCCACGACCCGCCGGTGTCGTCCCTGGTGGGCGCCACGGTGCGCGGGTGGACGCGCCGGGGCAAGTGGCTGGTGCTCGGCACCGACGGCCCCGTGCTGGCGGTGCACCTGGCCCGCGGTGGCTGGGTGCGGTGGCGGGAGGACGCGCCGACGACCCCGGTGCGTCCACGGCTGGGCGGTTCGTCCCGGGGTGCGGCGCTCGCGCTGCGGCTGCGGTTCGACGACGGCGCGGGCGCGGACGTCACCGAGGCCGGCACGCGCAAGCGCCTCGCCGTGCACGTGGTCCGCGCGGCCGAGGACGTCGAGGCGATCCGCACCCTCGGCGTCGAGCCCCTGTCCGAGGCCTTCATCCCGGCGGTGCTGGCCGAGCTGATGCGCGGGCGCAACCAGCAGCTCAAGGGACTGCTGCGGGACCAGCACGCGATCGCCGGGATCGGCAACGCCTACTCCGACGAGATCCTGCACGCCGCCCGCCTGTCCCCCTTCGCCCTGACCCGGTCGTTCGACGCCGCGGGGGTGGCAGCGCTGCACGCGGCCGTGGTGGGCACGCTGGCCGCGGCGGTGGACGCGGCGACGGGCCGCCCGGCGGCCGAGCTCAAGGACGCCAAGCGGCGCGGCATGCACGTGCACGGCCGCACCGGCGAGGCGTGCCCGGAGTGCGGCGACGTGGTGCGCGAGGTGTCGTTCGCCGACCGCTCGCTGCAGTACTGCGCGACCTGCCAGACCGGCGGTCAGGTGCTGGCCGACCGGCGGATGTCCCGGCTGCTGCGCTAGMPELPEVEGLARFLDERTRGRTVVAADVAAVAALKTHDPPVSSLVGATVRGWTRRGKWLVLGTDGPVLAVHLARGGWVRWREDAPTTPVRPRLGGSSRGAALALRLRFDDGAGADVTEAGTRKRLAVHVVRAAEDVEAIRTLGVEPLSEAFIPAVLAELMRGRNQQLKGLLRDQHAIAGIGNAYSDEILHAARLSPFALTRSFDAAGVAALHAAVVGTLAAAVDAATGRPAAELKDAKRRGMHVHGRTGEACPECGDVVREVSFADRSLQYCATCQTGGQVLADRRMSRLLRNANANANANA
AK018_002051827proS_1COG0442Proline--tRNA ligaseATGTCGATCGCGTCCCACCGCAGCGGTGACCTGCTGCGCCTGTCCTCCCTCTTCGTCCGCACCCTGCGCGAGGATCCCGCCGACGCCGAGGTCGCCAGCCACCGGCTGCTGGTGCGCGCGGGCTACATCCGTCGGGCGGCCCCGGGCGTGTACTCCTGGCTGCCGCTGGGACTGCGCGTGCTCGCCAAGGTCGAGCAGGTGGTGCGCGAGGAGATGGCCGCGATCGGCGCGCAGGAGGTGCACTTCCCGGCGCTGCTGCCGCGCGAGCCCTACGAGGCCACCGGCCGCTGGAGCGAGTACGGTCCCAACCTGTTCCGGCTCACGGACCGCAAGGACGCCGACTACCTCCTCGCGCCGACGCACGAGGAGATGTTCACCCTGCTGGTCAAGGACCTGTACTCCTCGTACAAGGACCTGCCGCTGGCGCTGTACCAGATCCAGACCAAGTACCGCGACGAGGCCCGTCCGCGGGCCGGGCTGATCCGCGGCCGCGAGTTCATCATGAAGGACGCCTACTCCTTCGACCTGGACGACGACGGTCTCGCCGCCGCGTACGACAAGCAGCGCGGCGCCTACCAGCGGATCTTCGAACGCCTCGGGCTCGACTACGTCGTCGTCGCGGCGACCTCGGGCGCCATGGGCGGCTCGCGCTCGGAGGAGTTCCTCTCCCCGTCGCCGATCGGCGAGGACACCTTCGTGCGCTCGGCCGGCGGCTACGCGGCCAACGTGGAGGCCGTCACCACGCCGGTGCCCGAGCCCGTGGCGTACGACGACGCCCCCGCGGCCCACGTCGAGGACACCCCGGACACCCCGACGATCGAGACGCTGGTGGACGTGGCCAACGCCCGTCACCCGCGTCCGGACCGGGCGTGGACCGCCGCGGACACGCTGAAGAACGTCGTGCTCGCCGCGACGCACCCCGACGGGCGGCGCGAGCTCGTCGTCGTCGGCGTGCCCGGCGACCGCGAGGTGGACGTCAAGCGGCTGGAGGCGTCCATGGCCCCGGCCGAGGTGGAGCCTGCCACGGAGGCGGACTTCGCGGCCCACGCCGAGCTCGTCAAGGGCTACATCGGGCCGGGCGTGCTGGGACCGCAGGGCAAGCAGGTGACCGACGTCGAGACCGGCGAGGCCCGCTCGGCGATCCGGTACCTGCTCGACCCCCGGGTGGTCACGGGGACGCGCTGGATCACGGGCGCCGACGAGACCGGCAAGCACGTGTTCGACCTGGTGGCGGGCCGGGACTTCACCGCGGACGGCACCGTCGAGGCCGCGGAGGTCCGTGCCGGCGACCCCGCGCCCGACGGCTCGGGACCGCTCGAGCTCGCGCGTGGCATCGAGATCGGTCACATCTTCCAGCTGGGCCGCAAGTACGCCGAGGCCCTCGACCTGAAGGTGCTCGACCCGAACGGCAAGCAGGCCGTGGTGACCATGGGGTCCTACGGCATCGGCGTGAGCCGCGTGCTGGCCGCCCTGGCGGAGGCGAACCACGACGAGCGCGGGCTCGCGTGGCCGGCGCAGGTCGCCCCGGCGCACGTCCACGTGGTCGCCACCGGCAAGGGGGCCGAGGTCTTCGAGGCCGCCGACGCCCTGGCCTCGCAGCTCGCGGCCGAGGGCGTCGAGGTGGTCTACGACGACCGACCGAAGGTCTCGCCCGGGGTGAAGTTCGCCGACGCGGAGCTCTTCGGCGTGCCGCTCGTGGTCGTCGTGGGCCGGGGCCTGTCCGACGGCGTGGTGGAGGTCCGTCCCCGCGTCGGGTCGGCGGAGCAGGTCGCCGTGGACGACGCCGTGGCGGAGGTCACGCGTCGGGTCGGCGAGCTGCTGGCCTGAMSIASHRSGDLLRLSSLFVRTLREDPADAEVASHRLLVRAGYIRRAAPGVYSWLPLGLRVLAKVEQVVREEMAAIGAQEVHFPALLPREPYEATGRWSEYGPNLFRLTDRKDADYLLAPTHEEMFTLLVKDLYSSYKDLPLALYQIQTKYRDEARPRAGLIRGREFIMKDAYSFDLDDDGLAAAYDKQRGAYQRIFERLGLDYVVVAATSGAMGGSRSEEFLSPSPIGEDTFVRSAGGYAANVEAVTTPVPEPVAYDDAPAAHVEDTPDTPTIETLVDVANARHPRPDRAWTAADTLKNVVLAATHPDGRRELVVVGVPGDREVDVKRLEASMAPAEVEPATEADFAAHAELVKGYIGPGVLGPQGKQVTDVETGEARSAIRYLLDPRVVTGTRWITGADETGKHVFDLVAGRDFTADGTVEAAEVRAGDPAPDGSGPLELARGIEIGHIFQLGRKYAEALDLKVLDPNGKQAVVTMGSYGIGVSRVLAALAEANHDERGLAWPAQVAPAHVHVVATGKGAEVFEAADALASQLAAEGVEVVYDDRPKVSPGVKFADAELFGVPLVVVVGRGLSDGVVEVRPRVGSAEQVAVDDAVAEVTRRVGELLANANANANANA
AK018_002061236hypothetical proteinATGACGCTGCAGCCTGCCCCCGACCCGACCCGCCGCCGGAGCCGGGGCGTGATCGGCGGCCTGCTCGCCGTGCTCCTGCTCGCCGGCTGCGGCCTCCGCCTGGAGACGCCCCCGCCCGCCGAGCCGGAGCCCGACACGCTCGAGATCGTGCGTCGCACCGCCGTCACGGACGCCCTGTTCGTCGCCGAGCAGGCCGACGCCGCGATCGAGGAGCTGGGCGACCGGCGCCGGCGGCTGGTCGCCGAGCTCGAGCGGGTCGCGGCCGACTCCCACGAGCAGGCGGACCAGCTCGGCGGCGTGTACGACTCCGGGCTGCAGGAGCCCGCCGACCCGCCGAGCGGTTCGCCGCAGAGCACGCCGGCCGACGAGCCGGTGCTGGCCCGAGACGTCGTCGACGCGCTGACGAACGCCTCGGGACGCAACCGGACGGCGGCCGGCACCACGGCCGACGGCTCCCTGGCGAGGCTGCTGGCCTCGGTGGGCGCGGCGCAGGCCGTCTCGGCCGCCCGCGTGGGCGGGTTCACCGACGACGGCGCCCCCGCGCCGGTCGTGCCGCGGCTGCCCGGACCCGACGAGGTGGCGGCCGCCGCCCCGTCGGGCGCGTCGCCGGCCGGCGACGACGCCGGGCAGGCGGCCGACCGGTCGGGGTCGGCCGCGCTCACCGCTCCCTCCGGCGCCGAGGAGCCCCCGTCCACCGAGGAGCCCGGCGGGGACGGGGTCTCGAGCACGTCACCGGACTCCGACGAGCCCCCCGTGGTGCCGGTGGGCCTGACGGCGGCCGACCTGCGCACCCTCGTGGCCTCGGAGCACGGGGCGGGCTACGCCCTGCGGCTGCGTGCCGCGCTCCGGCCCGAGGACGAGCGCGCCCGCCTCGCCGACCGTGCCGACGTGCACACCGCCCGGGCCCAGGACTGGGCCGTCGTGGCCGGCACGGACGGGACGGCCCAGGACCCGCGCCAGGTGGCCTACGCGGTCCCCCGCGGCCCCGGCGACCGGGCGCTGGTCCGCGCGGTCGAGGACGACCTGGCCACGACCTACGCGACGCTGGTCGGCTCGACCGCGGCGGGCACCCGCGCCGTCCTGGTCGACCTGCTCGTCGAGACCGCCCTCACGCTCGACGCGTGGGGCGCCGACCCCGTGCCCTTCCCCGGGCTGCCGGAGCAGGCGCCGCAGGAGACCACCGACGACGGGGACGCCGCGGAGGACCAGGGCGAGCAGTCCGACCAGGACGGCTGAMTLQPAPDPTRRRSRGVIGGLLAVLLLAGCGLRLETPPPAEPEPDTLEIVRRTAVTDALFVAEQADAAIEELGDRRRRLVAELERVAADSHEQADQLGGVYDSGLQEPADPPSGSPQSTPADEPVLARDVVDALTNASGRNRTAAGTTADGSLARLLASVGAAQAVSAARVGGFTDDGAPAPVVPRLPGPDEVAAAAPSGASPAGDDAGQAADRSGSAALTAPSGAEEPPSTEEPGGDGVSSTSPDSDEPPVVPVGLTAADLRTLVASEHGAGYALRLRAALRPEDERARLADRADVHTARAQDWAVVAGTDGTAQDPRQVAYAVPRGPGDRALVRAVEDDLATTYATLVGSTAAGTRAVLVDLLVETALTLDAWGADPVPFPGLPEQAPQETTDDGDAAEDQGEQSDQDGNANANANANA
AK018_00207525rimP_1Ribosome maturation factor RimPATGGCAGCAGGAGAGGACCGGACCGCGGACGGTCGCGTCCGAGCGGTGGTCGCTCCGGTGGTCGACGACGTCGGCCTGTCCCTCGAGGACGTCCGGGTGACGCGGGCGGGGAACCGCTCGGTGGTCCGCCTGACGATCGACCTGCCCGAGGACGCGGTGGGCAGCCTCGACTCCGACACCCTCGCCGACGCCTCGCGGTCGCTGTCCGCGGCCCTGGACGACGCGGACGCGGTGCGCGGCCAGTACACGCTGGAGGTCTCCACCCCGGGTGTCTCGCGGCCGCTGACGGAGCTGCGGCACTATCGTCGGGCGCGGACGCGTCTGGTGCGTCTGACGCTCGACGACGGCCAGGTGGTCACCGGGCGGCTGACGGACGTGGACGGCGGCGGCGACGACGCCGTGCTCGTCCTGGACGACGAGCGACGCGTCGGGCTCGGGCAGGTGCGGCGCGGCCGTGTCGAGGTGGAGCTGGACCGGCGCGAGGACGACGAGGCGGGGACCTCCCGCCAGGGCGAGGAGAGCTGAMAAGEDRTADGRVRAVVAPVVDDVGLSLEDVRVTRAGNRSVVRLTIDLPEDAVGSLDSDTLADASRSLSAALDDADAVRGQYTLEVSTPGVSRPLTELRHYRRARTRLVRLTLDDGQVVTGRLTDVDGGGDDAVLVLDDERRVGLGQVRRGRVEVELDRREDDEAGTSRQGEESNANANANANA
AK018_002081041nusA_1COG0195Transcription termination/antitermination protein NusAGTGGACATCGACATGAGCGCGCTGCGGATGCTGGAGCGCGAGCGGGAGATCAGCCTGGACCTGCTGGTCGGGGCGATCGAGGACGCGCTGCTGTCCGCCTACCACCGCACCCCGGACGCCTACCACCACGCGCGGGTCGAGCTGGACCGCACGTCCGGTCACGTCACCGTGTGGGCGCGCGAGCAGATCCGCACGCCCGACCCGGAGGACCCGGAGGGGCGGGGCACGGTGGAGCTGGGCCCCGAGATCGACGACACGCCGGAGAACTTCGGGCGCATCGCCACCGCCACGGCCCGCCAGGTGATCGTGCAGCGGCTGCGGGACGCCGAGGACGACCAGGTGCTGGGCACGTTCCGCGGCAAGGAGGGCGAGATCCTCGCCGGGGTGATCCAGCAGGGTCACGACCCGCGCACGGTGCTCGTCGACGTCGGCGAGACCGAGGCCGTGCTCCCGCACCACGAGCAGGTGCCGGGGGAGAAGTACGTCCACGGTGAGCGCCTGCGCGGCTACGTGGTGGAGGTCGCCCGCGGCATGAAGGGCGCCAAGGTCACGCTCAGCCGGACCCACCCGGGCCTGGTGCGCAAGCTGTTCGAGCTGGAGGTCCCCGAGATCGCGGACGGCTCGGTCGAGATCACCGCCGTCGCCCGCGAGGCCGGGCACCGCTCGAAGGTCGCGGTGCGCTCGCGGGTGCCCGGCCTCAATGCCAAGGGTGCCTGCATCGGACCGATGGGGTCCCGGGTGCGCGCCGTGATGGCCGAGCTGCACGGGGAGAAGATCGACATCGTCGACCACAGCGACGACCCGGCCCGGTTCGTGGCGAGCGCCCTGTCGCCGGCGCGTGTGAGCTCGGTCACCGTCGTGGACGCCGACGCCAAGGCCGCGCGCGCCGTCGTGCCTGACTACCAGCTCTCCCTCGCGATCGGCAAGGAAGGGCAGAATGCTCGGCTTGCGGCCAAGCTCACGGGGTGGCGGATCGACATCCGGTCCGACGAGGGCACACCCGGGGCGGTGGCCGACGGTGACCGGGTCGAGGGCGCCTGAMDIDMSALRMLEREREISLDLLVGAIEDALLSAYHRTPDAYHHARVELDRTSGHVTVWAREQIRTPDPEDPEGRGTVELGPEIDDTPENFGRIATATARQVIVQRLRDAEDDQVLGTFRGKEGEILAGVIQQGHDPRTVLVDVGETEAVLPHHEQVPGEKYVHGERLRGYVVEVARGMKGAKVTLSRTHPGLVRKLFELEVPEIADGSVEITAVAREAGHRSKVAVRSRVPGLNAKGACIGPMGSRVRAVMAELHGEKIDIVDHSDDPARFVASALSPARVSSVTVVDADAKAARAVVPDYQLSLAIGKEGQNARLAAKLTGWRIDIRSDEGTPGAVADGDRVEGANANANANANA
AK018_00209234hypothetical proteinATGCGTGACCTGCGGTCGCAGCTCCTGCGGCTGGTCCTCGCGACGTCGGACGACGCCCAGCGTGTCGTCGTGGACGTCCGCGGGTGCCTGCCGGGGCGGGGTGCCTGGCTCCACGAGGACCTCGCCTGCTGGGAACGTGCTGTCCGGCGACGGGCCGTCCCGCGCGCACTGCGTGCGGACGGGCCGGTGGACCTGGACCCGGTCCGGGCATATCTGGAGCACCAGGACCGTTGAMRDLRSQLLRLVLATSDDAQRVVVDVRGCLPGRGAWLHEDLACWERAVRRRAVPRALRADGPVDLDPVRAYLEHQDRNANANANANA
AK018_002102895infB_1Translation initiation factor IF-2GTGGCGAAGATCCGCGTCCACGAGCTGGCGAAGCAGCTCGGGGTGGAGAGCAAGACCCTGCTGGCCGAGCTGAAGGCCTCAGGTGAATTCGTCCGGTCGGCGTCCTCGACGCTCGAGGCACCGGTCGAGCGCATGATGCGCGGCAAGTTCGCGTCGTCCGACGGCGGCGCGTCGAAGGGCGACAAGCCCGCCAAGCCGGCGCAGAGGAAGGCGGCCGCGCCCAAGCCGGGTGCGCCGAAGCCGGGTGGCGCGAAGGCCCCGAAGCCGGGCGCCCCGACGCCCGCGGAGGCGCCCAAGCCCGGCGCCGCCACGGCGCCGAGCTCCGAGACGGCCCCGCCGGCCGCTCCGAAGCCGGCCGGTGAGCAGGCCCCGACGTCCGGCGCCCCCACGCCGGGTGCGCCCACGCCGGGCACGGCCCCGAAGCCCGGTGGCGCGCCCAAGCCGGGCGGTGCGCCCAAGCCGGGCGGCGCGCCCAAGCCGGGCGGCGCGCCCAAGCCGGGCGGTGCGCCCAAGCCGGGCGGCCAGCGGTCCGGTGGTCGCGGTGGCCCGCGTCCGGGCAACAACCCGTTCTCCTCGCAGCAGGGCATGCAGCGTTCGGGCGGTGGCCCGCGTCCGGGCAACAACCCGTACTCCTCGCAGCAGGGCATGCAGCAGCGCCCCGCACGTGGTGAGGGCAAGCAGGGCGAGCGATCCGGCGGTCCCCGTCCGGGCGCTCCGCGTCCGGCGGCCCCGCGTCCGGGCGCCCCGCGCCCGAACCCGGGCATGATGCCCGGCAAGACGAGCATGCCGCGTCCGGGCGAGCGTCCCGGCGGCGGCGGTCGTGGCGGCCGTGGCCGCGGCGGCGGTCCGGGCGGTCCCGGCGGCGCCGGTGGTCCCGGGGGTCCCGGCGGCGGTCGGGGCGGTTTCCGCCCCGGTGGCGGCGGTGGCTTCCGCGGTCGCGGTGGCGCCGGCCGCGGCAGCACCCAGGGTGCGTTCGGTCGCGCCGGCGGCAAGCCGGTCCGGGGCCGCAAGTCGAAGCGGGCGAAGCGTCAAGAGTTCGAGCAGATGCAGGCCCCCACGCCGGGTGGCGTGTCGGTCCCTCGGGGCAACGGCAACACCCTGGTGCGCCTGCGCCACGGCTCGTCGCTCAACGACTTCGCGGACAAGATCGACGCGAACCCCGCCGCGCTCGTCACGGTGCTGCTGCACCTCGGCGAGATGGCGACCGCGACCCAGTCGCTGGACGAGGACACCTTCGTCACGCTCGGGTCCGAGCTCGGCTACAAGATCGAGATGGTCTCGGCCGAGGAGGAGGACCGCGAGCTGCTCGAGTCCTTCGCCATCGACCTGCAGGCCGAGGAGGCCGAGGAGACCGACGAGGACCTCGTCGCCCGGCCGCCGGTCGTGACCGTCATGGGTCACGTCGACCACGGCAAGACGAAGCTCCTGGACGCCATCCGCTCCACGGACGTCGTCGCGGGCGAGGCCGGCGGGATCACCCAGCACATCGGTGCGTACCAGGTGCACACCGAGCACGAGGACGTGGACCGTGCGGTCACGTTCATCGACACCCCGGGTCACGAGGCCTTCACGGCCATGCGTGCCCGTGGTGCCAAGGCGACGGACATCGCGATCCTCGTGGTGGCCGCGGACGACGGCGTGATGCCGCAGACGATCGAGGCGCTGAACCACGCGCAGGCGGCCGACGTGCCCGTCGTGGTCGCGGTGAACAAGGTGGACAAGGAGGGGGCCAACCCCGCCAAGATCCGCCAGCAGCTCACCGAGTACAACCTGGTGGCCGAGGAGTACGGCGGCGACACGATGTTCGTCGACGTCTCGGCGCTGCAGCGCAAGGGCATCGACGAGCTGCTCGAGGCCGTGCTGCTGACGGCGGACGCGGCCCTCGACCTGCGGGCGAACCCCACCAAGGACGCCCGTGGTGTGGCGATCGAGGCGCACCTGGACAAGGGCCGCGGCTCCGTGGCCACCGTCCTGGTGCAGTCCGGCACCCTGCACGTCGGGGACGCCATCGTGGCGGGCACGGCGCACGGCCGGGTGCGGGCCATGTTCGACGAGCACGGCGAGTCCGTCACCGAGGCGGGTCCGGCGCGTCCGGTCCAGGTCCTGGGTCTGGCGTCGGTGCCGAGCGCGGGGGACACCTTCCTCGCGGCGCCCGACGAGCGCACCGCCCGGCAGATCGCCGAGAAGCGCGAGGCCGCCGAGCGTGCCGCCCTCCTGGCCAAGCGCCGCAAGCGCATCAGCCTGGAGGACTTCACCAAGGCGCTCGAGCAGGGCAAGGTCGAGACCCTCAACCTGGTCCTCAAGGGCGACGTCTCCGGTGCCGTCGAGGCGCTGGAGGACGCCCTGCTCAAGATCGACGTGGGCGACGAGGTCGACCTGCGCGTCATCCACCGCGGTGTCGGTGCGATCACGCAGAACGACGTCAACCTGGCCACGGTCGACAACGCCGTGATCCTCGGCTTCAACGTCCGCTTCGGCGAGCGTGTCGAGGACCTCGCCGAGCGCGAGGGCGTCGAGGTGAAGTTCTACTCGGTCATCTACCAGGCGATCGACGACATCGAGGCGGCCCTCAAGGGCATGCTCAAGCCGGAGTACGAGGAGGCGAAGCTCGGCAGCGCCGAGATCCGCCAGGTCTTCCGGTCCTCGAAGTTCGGCAACATCGCCGGTTCGATCGTCCGGTCGGGCACGATCCGTCGCAACACCAAGGCCCGCGTGCTGCGCGACGGCCGCGTGGTGGGCGACGAGCTCACGGTCGAGTCGCTGCGACGCGAGAAGGACGACGTCACCGAGGTCCGCGAGGGCTTCGAGTGCGGTATCGGTCTCGGGTCGTACAACGACATCGTCGAGGGCGACATCATCGAGACCTTCGAGATGCGCGAGATCCCGCGCGACTGAMAKIRVHELAKQLGVESKTLLAELKASGEFVRSASSTLEAPVERMMRGKFASSDGGASKGDKPAKPAQRKAAAPKPGAPKPGGAKAPKPGAPTPAEAPKPGAATAPSSETAPPAAPKPAGEQAPTSGAPTPGAPTPGTAPKPGGAPKPGGAPKPGGAPKPGGAPKPGGAPKPGGQRSGGRGGPRPGNNPFSSQQGMQRSGGGPRPGNNPYSSQQGMQQRPARGEGKQGERSGGPRPGAPRPAAPRPGAPRPNPGMMPGKTSMPRPGERPGGGGRGGRGRGGGPGGPGGAGGPGGPGGGRGGFRPGGGGGFRGRGGAGRGSTQGAFGRAGGKPVRGRKSKRAKRQEFEQMQAPTPGGVSVPRGNGNTLVRLRHGSSLNDFADKIDANPAALVTVLLHLGEMATATQSLDEDTFVTLGSELGYKIEMVSAEEEDRELLESFAIDLQAEEAEETDEDLVARPPVVTVMGHVDHGKTKLLDAIRSTDVVAGEAGGITQHIGAYQVHTEHEDVDRAVTFIDTPGHEAFTAMRARGAKATDIAILVVAADDGVMPQTIEALNHAQAADVPVVVAVNKVDKEGANPAKIRQQLTEYNLVAEEYGGDTMFVDVSALQRKGIDELLEAVLLTADAALDLRANPTKDARGVAIEAHLDKGRGSVATVLVQSGTLHVGDAIVAGTAHGRVRAMFDEHGESVTEAGPARPVQVLGLASVPSAGDTFLAAPDERTARQIAEKREAAERAALLAKRRKRISLEDFTKALEQGKVETLNLVLKGDVSGAVEALEDALLKIDVGDEVDLRVIHRGVGAITQNDVNLATVDNAVILGFNVRFGERVEDLAEREGVEVKFYSVIYQAIDDIEAALKGMLKPEYEEAKLGSAEIRQVFRSSKFGNIAGSIVRSGTIRRNTKARVLRDGRVVGDELTVESLRREKDDVTEVREGFECGIGLGSYNDIVEGDIIETFEMREIPRDNANANANANA
AK018_00211438rbfA_1COG0858Ribosome-binding factor AATGAGCGAGAACCCGCGGGCGCGCCGGTTGGCGGACCGCATCAAGGAGATCGTCGCGCAGATGCTCGACACGCGGATCAAGGACCCCCGCCTCGGGTTCGTCACGGTCACGGACGTGCGTGTCACCGGCGACCTGCAGCAGGCGTCGGTGTTCTACACGGTCTTCGGCAGCGACGAGGAGCGGACCGGGACCGCCGCCGCGCTGGAGAGCGCCAAGGGGATGATCCGTTCCGAGGTCGGCAAGCAGACGGGCGTGCGGCTCACGCCGACCATCGAGTTCCACCTGGACTCGGTGCCGGAGACTGCGGCGCACCTCGACGCGGCGCTGTCGCAGGCCCGCCTGCGCGACGCCGAGCTGGCGGCGCTGCGCGAGGGCAAGTCCCCGGCGGGTGACGCCGACCCGTACCGCACGAGCGACGAGCACGCCGACGACGAGTGAMSENPRARRLADRIKEIVAQMLDTRIKDPRLGFVTVTDVRVTGDLQQASVFYTVFGSDEERTGTAAALESAKGMIRSEVGKQTGVRLTPTIEFHLDSVPETAAHLDAALSQARLRDAELAALREGKSPAGDADPYRTSDEHADDENANANANANA
AK018_00212960truB_1COG0130tRNA pseudouridine synthase BGTGGCCGAGGAGAGCTCCGGCCGTCCCGCGCGGCGCCCGACGGCGCCCGACGGTCTGCTGGTCGTCGACAAGCCGGCCGGCTGGACCAGCCACGACGTCGTCGGGCGGTGCCGCCGGTTGGCGGGCACGCGCAAGGTCGGCCACGCCGGCACGCTGGACCCGATGGCCACGGGCGTGCTCGTGATCGGCGTCGGGCGGGCCACCAAGCTGCTCACCTACGTCGTGGGGGCCGACAAGGCCTACACCGCGACGATCCGCCTCGGGGTCGCGACCACCACGGACGACGCCGAGGGAGAGGTCGTCGACGCCCCCGGCGTCGGTGACGGCGTGGACCCGGCGGCGCTGGACCGCGAGATCGGCCGGCTCACCGGGGACATCCAGCAGGTGCCGACCACCGTCAGCGCGATCAAGGTGGACGGCCGGCGCGCCTACGCGCGGGCCCGGGCCGGCGAGGACGTGGAGCTCGCCGCCCGCCCGGTGACCGTGAGCACCTTCGAGGTGACCGCCACCCGGCCCGCGACGTCCCACGACGGGACCGCGGTCCTCGACCTCGACGTCGTCGTGGTCGTCTCCTCCGGCACGTACGTGCGCGCCCTGGCGCGGGACCTCGGGGCGGCGCTCGGCGTGGGCGGGCACCTGACGGCGCTGCGGCGGACGCGCGTGGGCGGCTACACCCTCGACCGGGCCGCCACCCTCGACGAGCTCGAGGCACAGGCCGACGCGGACGGCGTGCTCGCCACGCTGCCGCTCGGCGACGCGGCGCGCAGCACGTTCCCGGTGCGTGAGCTGACCGAGGCCGAGACCCGCGCCCTGGGCTACGGGCAGTGGGTGACGCCGACCGGGATGCGCGGGACCGTGGCGGGCCTGGGCCCGGACGGCACCCTGGTCGCCCTGCTCGAGGACACGACCCGGCGCGGCGAGCGCCTGGCGAAGCCGGTGCTGGTGCTCGCCCCGGCCTGAMAEESSGRPARRPTAPDGLLVVDKPAGWTSHDVVGRCRRLAGTRKVGHAGTLDPMATGVLVIGVGRATKLLTYVVGADKAYTATIRLGVATTTDDAEGEVVDAPGVGDGVDPAALDREIGRLTGDIQQVPTTVSAIKVDGRRAYARARAGEDVELAARPVTVSTFEVTATRPATSHDGTAVLDLDVVVVVSSGTYVRALARDLGAALGVGGHLTALRRTRVGGYTLDRAATLDELEAQADADGVLATLPLGDAARSTFPVRELTEAETRALGYGQWVTPTGMRGTVAGLGPDGTLVALLEDTTRRGERLAKPVLVLAPANANANANANA
AK018_00213978ribF_1Bifunctional riboflavin kinase/FMN adenylyltransferaseGTGCAGGTGTTCACGGACCTCGCCGAGGTCCCCGACGGCTTCGGCCCGTCGGTGGTGACGATCGGCAACTTCGACGGCGTCCATCGCGGCCACCAGGCCGTCCTGGGACGTCTCGTCCGGCTCGCCCGGGCGGACTCCCGCGCCGCCGTCGCCGTGACCTTCGACCCGCACCCGGCGCTGGTGCACCGCCCGGAGTCGGCCCCGGAGCTGATCACGGGCCTCGCCGACCGCCTCGAGCTGCTGGCGCGGACGGGCCTGGACGCGGTGCTCGTGGTCCGCTACTCCCTCGATTTCGCAGAGCAGAGCCCCGAGGAGTTCGTCACCCGCTACCTCACCGGGGCACTCGGCGCGCGCAGCGTCGTCGTGGGCCACGACGTGCGCTTCGGCCGGGCCAACGCCGGGACGCTGGCCACCATGGTCGACCTCGGCGGGCGCCACGGCTTCGAGGTCGTGGCCGTCGACGACGTCGGCGAGTGCGCACCGCAGGACGACGGCGCCGGGGAGCGCTGGTCGAGCTCGGCCGCCCGCGCCCTGATCGCCGAGGGCGACGTGGCGCAGGCCGCCGACGTCCTGGGCCGGCCCCACCGGGTGCGCGGCGTCGTCGTGCACGGTGACGCCCGCGGCCGCGAGCTCGGGTTCCCCACGGCGAACCTGGGCGGCATCGACGGCATGGTGCCCGCCGACGGCGTCTACGCCGGATGGCTGCGCCGGCCGGGTCTGGCCGACCGCGAGCCCGACCACCCCGACGTCGTGCTGCCGGCGGCGATCTCCATCGGCACCAATCCGACGTTCGACGGTGTGGAGCGCCGCGTCGAGGCGTACGTCCTGGACCGGACCGACCTCGACCTGTACGGCGAGGAGGTCGTGCTCGAGATGGTCCAGCACCTGCGTCCCACCGTCCGGTTCGACGGCATCGACGCCCTGGTGGCCCAGATGACCGACGACGTCGTGCGCGCCCGGGCCGCCCTGCTCTCCTGAMQVFTDLAEVPDGFGPSVVTIGNFDGVHRGHQAVLGRLVRLARADSRAAVAVTFDPHPALVHRPESAPELITGLADRLELLARTGLDAVLVVRYSLDFAEQSPEEFVTRYLTGALGARSVVVGHDVRFGRANAGTLATMVDLGGRHGFEVVAVDDVGECAPQDDGAGERWSSSAARALIAEGDVAQAADVLGRPHRVRGVVVHGDARGRELGFPTANLGGIDGMVPADGVYAGWLRRPGLADREPDHPDVVLPAAISIGTNPTFDGVERRVEAYVLDRTDLDLYGEEVVLEMVQHLRPTVRFDGIDALVAQMTDDVVRARAALLSPGPT0008625_759DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008625-ribF-K11753NANA
AK018_00214270rpsO_130S ribosomal protein S15ATGCCGCTCGACGCTGCCACGAAGCAGTCCATCATCACCGAGTACGCGACTCACGAGGGCGACACCGGCTCGCCGGAGGTGCAGATCGCTCTGCTGACCCGGCGGATCACCGATCTGACCGAGCACCTCAAGGAGCACAAGCAGGACCACCACTCCCGTCGTGGTCTGCTCCTCCTGGTCGGTCAGCGTCGCCGTCTGCTGAGCTACCTGCAGAAGGTCGACATCCAGCGCTACCGCGCGCTCATCGAGCGCCTCGGTCTGCGTCGCTGAMPLDAATKQSIITEYATHEGDTGSPEVQIALLTRRITDLTEHLKEHKQDHHSRRGLLLLVGQRRRLLSYLQKVDIQRYRALIERLGLRRNANANANANA
AK018_002162253pnp_1COG1185Polyribonucleotide nucleotidyltransferaseGTGGAGGGTCCCGAGATCCAGTTCGCCGAGGCCGTCATCGACAACGGCCGCTTCGGCACCCGTACCGTCCGCTTCGAGACCGGCCGACTGGCCCGGCAGGCCGCCGGCGCCGTGTCCGCCTACCTCGACGGCGAGACCATGCTGCTGTCGACCACTGCGGTCGGCAAGCACCCCAAGGACCAGTTCGACTTCTTCCCGCTGACGGTGGACGTCGAGGAGCGGATGTACGCCGCGGGCCGCATCCCCGGCTCGTTCTTCCGCCGTGAGGGCCGCCCGTCGACCGAGGCGATCCTGACCTGCCGCCTCACCGACCGCCCGCTGCGCCCGCTGTTCGTCAAGGGCCTGCGCAACGAGGTCCAGATCGTCATCACGGTCATGGCCCAGCACCCGGACGACGCCTACGACGTCCTGGCGATGAACGCGGCCTCCGCGTCGACGCAGATCTCCGGTCTGCCGTTCTCCGGCCCGGCCGGCGCCGTGCGCATCGCGCTCATCGACAACCAGTGGGTCGCGTTCCCGAAGTACTCGGACAAGGAGCGCGCCGTCTTCGAGATGGTCGTCGCGGGCCGCAAGGTCACCGCCGCCGACGGTTCCGAGGACGTCGCCATCGCGATGATCGAGGCCGAGGCGACCGACGACGCGTGGAACCTCGTCAAGAACGAGGGCGCCACCGCCCCGACCGAGCAGGTCGTGGCCGAGGGCATCGACGCGGCCAAGCCGTTCATCGCCGCCCTGTGCGACGCCCAGCTCTCCCTGGCCTCGCAGTCGGCCAAGGACGTCGCCGAGTTCCCGCTCTTCCCGGACTACGCCGACGACGCCTACGCCGCCGTCGAGTCCGCGGCGTCGGCCCCGGCCGCCGAGGCGCTGGCGATCGCCGACAAGCAGCAGCGCGAGAGCCGTCTCGACGAGATCAAGGCCGGCGTGCTCGAGCAGCTCGGCGAGCAGTTCGAGGGCCGCGAGAAGGAGCTGTCGGCCGCCTACCGCAGCCTGCAGAAGCAGCTCGTGCGTCAGCGCGTGCTGACCGAGGGCGTGCGCATCGACGGCCGCGGTCTCGCGGACATCCGCACCCTGTCGGCCGAGGTCGAGGTGCTGCCCCGCGTGCACGGCTCGGCGCTGTTCGAGCGCGGCGAGACCCAGATCCTGGGTGTCACCACGCTGAACATGCTGCGCATGGAGCAGCAGATCGACTCCCTCGGGCCGGTCACGCGCAAGCGCTACATGCACAACTACAACTTCCCGCCGTACTCGACCGGTGAGACCGGCCGGGTCGGCTCGCCGAAGCGTCGCGAGATCGGCCACGGCGCGCTCGCCGAGCGCGCCCTGGTGCCGGTGCTGCCGAGCCGCGAGGAGTTCCCCTACGCGATCCGCCAGGTCTCCGAGGCCCTCGGGTCCAACGGCTCGACCTCGATGGGCTCGGTCTGCGCCTCGACGCTGTCCATGCTCAACGCCGGCGTGCCGCTCAAGGCCCCCGTCGCGGGCATCGCGATGGGCCTGGTGTCCGACACGGTCGACGGGGAGACCCGCTACGCGGCCATGACGGACATCCTCGGTGCCGAGGACGCCTTCGGCGACATGGACTTCAAGGTCGCCGGCACCCGCGAGTTCGTCACCGCCATCCAGCTCGACACCAAGCTCGACGGCATCCCCGCCTCGGTGCTGGCCGCCGCGCTGGGCCAGGCGCACGACGCCCGCCTGACGATCCTCGACGTCATCGCCGAGGCCATCGACACCCCGGACGAGATGTCGCCGTACGCGCCGCGGGTCATCGCGGTCAAGGTCCCCGTGGACAAGATCGGCGAGGTCATCGGGCCCAAGGGCAAGATGATCAACCAGATCCAGGAGGAGACCGGCGCCGACATCTCCATCGAGGACGACGGCACGGTCTACATCGGCGCCACGGACGGTCCGAGCGCGGAGGCGGCGCGCGCGTCGATCAACGCGATCGCCAACCCGCACGTGCCGGAGGTCGGCGAGCGCTTCGTCGGCACCGTGGTCAAGACGACCTCCTTCGGTGCGTTCATCTCGCTCGCGCCGGGCAAGGACGGCCTGCTGCACATCAGCCAGCTGCGCAAGCTGGTCGGCGGCAAGCGCGTGGAGAACGTCGACGACGTGCTCTCCATCGGCCAGAAGATCCAGGTCGAGATCGGTGAGATCGACTCGCGCGGCAAGCTGTCGCTGGTCGCCATCACCGAGGAGGACGACAAGGCGGCCGACGCCGACGAGGCGCCGGCCACCGAGGCGAGCGAGGCCTGAMEGPEIQFAEAVIDNGRFGTRTVRFETGRLARQAAGAVSAYLDGETMLLSTTAVGKHPKDQFDFFPLTVDVEERMYAAGRIPGSFFRREGRPSTEAILTCRLTDRPLRPLFVKGLRNEVQIVITVMAQHPDDAYDVLAMNAASASTQISGLPFSGPAGAVRIALIDNQWVAFPKYSDKERAVFEMVVAGRKVTAADGSEDVAIAMIEAEATDDAWNLVKNEGATAPTEQVVAEGIDAAKPFIAALCDAQLSLASQSAKDVAEFPLFPDYADDAYAAVESAASAPAAEALAIADKQQRESRLDEIKAGVLEQLGEQFEGREKELSAAYRSLQKQLVRQRVLTEGVRIDGRGLADIRTLSAEVEVLPRVHGSALFERGETQILGVTTLNMLRMEQQIDSLGPVTRKRYMHNYNFPPYSTGETGRVGSPKRREIGHGALAERALVPVLPSREEFPYAIRQVSEALGSNGSTSMGSVCASTLSMLNAGVPLKAPVAGIAMGLVSDTVDGETRYAAMTDILGAEDAFGDMDFKVAGTREFVTAIQLDTKLDGIPASVLAAALGQAHDARLTILDVIAEAIDTPDEMSPYAPRVIAVKVPVDKIGEVIGPKGKMINQIQEETGADISIEDDGTVYIGATDGPSAEAARASINAIANPHVPEVGERFVGTVVKTTSFGAFISLAPGKDGLLHISQLRKLVGGKRVENVDDVLSIGQKIQVEIGEIDSRGKLSLVAITEEDDKAADADEAPATEASEANANANANANA
AK018_002171404COG0612putative zinc proteaseATGAGCCAGCACCTGCCGCTCGTCGGAGCGGACCAGCCGGGTGCGGAGCTGACCGCCGGGCCGGACGGGGGGCCGGTGCCGGGCCCCCGCCGGGCCCGGGGGGGGGGGGTGGGGCGCGGGGGCGGGGGGGGGCCCCCCCCCCGCCCCCCCCCCCGCCCCGGCGGTGTGCGTGTGCTCACCGAGCACATGCCGGGGCTGCGCTCGGCCACCGTCGGCGCCTGGGTCGGGGTCGGGTCCCGCGACGAGACGGACGGGCACCACGGGTCGACCCACTTCCTGGAGCACCTGCTGTTCAAGGGCACCGCACGACGCACGGCCCTGGACATCGCCGAGGCGTTCGACGCCGTCGGGGGCGAGGCCAACGCGGCGACCGGCAAGGAGCACACGTGCTACTACGCCCGGGTGCTCGACGCCGACGTCCCGATGGCGGTCGACGTCGTCAGCGACATGATGACCTCGGCCCGGCTGGACCCGGACGAGCTCGAGACGGAGCGGGGCGTCATCCTCGAGGAGCTCGCGATGGCCGAGGACGACCCGGGCGACCTCGTGCACGAGCGGTTCGCCGCCACCGTGCTCGGCAGCCACCCGCTCGGCCGTCCCATCGGCGGCACCCCCGAGGCGATCCGCGGCGTGCCGCGGGAGGCCGTCTGGGAGCACTACCGGTGGCACTACCGTCCCGAGACCCTCGTCGTCGCGGCGGCGGGCGGGGTGGACCACGACCGGCTCGTCGGTCAGGTCGGCGAGGCGCTGTCCGCCGGCGGCTGGGACCTTTCCGGCGCCGCGGGCCCGCGGGAGCGCCGCTCCGGCGCTCCGGAGTCCGACGGCGTGCCGGCCGAGGGTGCCGAGGTCACGGTGCGGCGCCCCACCGAGCAGGCGAACGTGATCCTGGGCACCACCGGGCTCAGCGCGACCGACGAGCGCCGCTTCACGATGACGGTGCTCAACGCGGTGCTGGGCGGCAGCATGTCGTCGCGGCTGTTCCAGGAGATCCGCGAGAAGCGGGGTCTGGCGTACGCGACCTACTCCTTCGCCCAGGGGCACGGCGGCCTGGGGACCTTCGGGCTCTACGCCGGGTGCGCCCCGGCCCGCACCGACGAGGTCGTGGCGATGCTCGGCGTCGAGCTCGACCGGCTCGCGCAGGACGGCATCACCTCCGCCGAGCTCGAGCGCTCGGTGGGCCAGCTCTCCGGCGGGCTCGTGCTGGGCCTGGAGGACACCGGGTCGCGGATGAGCAGGCTGGGCAGGTCGGAGCTCGTCCTCGGCGAGCTGATGACCGTCGACGAGTCGCTGCAGCGCATCCGGGCCGTCACCCGCGAGGACGTCCGGGAGCTGGCTGCCGACCTGGCCGGGCGTCCGCGGTCGGTCGTGCGGGTGGGACCTTTCGCAGAACAGGGAGAGCAGTGAMSQHLPLVGADQPGAELTAGPDGGPVPGPRRARGGGVGRGGGGGPPPRPPPRPGGVRVLTEHMPGLRSATVGAWVGVGSRDETDGHHGSTHFLEHLLFKGTARRTALDIAEAFDAVGGEANAATGKEHTCYYARVLDADVPMAVDVVSDMMTSARLDPDELETERGVILEELAMAEDDPGDLVHERFAATVLGSHPLGRPIGGTPEAIRGVPREAVWEHYRWHYRPETLVVAAAGGVDHDRLVGQVGEALSAGGWDLSGAAGPRERRSGAPESDGVPAEGAEVTVRRPTEQANVILGTTGLSATDERRFTMTVLNAVLGGSMSSRLFQEIREKRGLAYATYSFAQGHGGLGTFGLYAGCAPARTDEVVAMLGVELDRLAQDGITSAELERSVGQLSGGLVLGLEDTGSRMSRLGRSELVLGELMTVDESLQRIRAVTREDVRELAADLAGRPRSVVRVGPFAEQGEQNANANANANA
AK018_00218774dapB_1COG02894-hydroxy-tetrahydrodipicolinate reductaseATGAGCAGCGCGACCAGGGTGGCCGTCATCGGTGCGGCCGGACGGATGGGCAGCCAGACGTGCGCCGCGGTCGAGGCCGCCGAGGACCTCGAGCTCGTGGCCCGCGTCGACGCCGGTGACGACGTCGCGTCGGCGGTGCGCGACTCCGGCGCCCAGGTGGCCGTGGACTTCACCGTCCCGGCGGTCACCGAGGCCAACGTGCACGCGGCGCTGGACGCCGGTGCCCACGTCGTGGTCGGGACGACCGGCTGGGACGACGACTCGCGCGGCCGGGTCACGGAGCACCTCGAACGGCTCGCCGCCGAGCAGGAGGGCGACGGGCCGGGTGTGCTCATCGCGCCGAACTTCGGCCTGTCCGCGGTGCTGGCCATGACGTTCGCGGCCAAGGCGGCCCGGTACTTCGAGTCCGCCGAGGTCGTCGAGCTGCACCACCCGAACAAGGTCGACGCCCCGTCGGGCACGGCCCGGCACACGGCGGCCGCGATCGCCGCGGCGCGCGCGGACGCCGGCCTCGGGGACTCGCCCGACGCGACCCAGGACGGCTGGGAGGCGCGGGGTGCCGACGTCGACGGCGTGCGGGTGCACGCGGTCCGGCTGCGCGGCCTGGTGGCCCACGAGGAGATCCTGTTCGGCAACGCCGGGGAGCAGCTGACGATCCGCCAGGACTCGTTCGACCGGGCCTCGTTCATGCCGGGCGTGCTGCTGGCGGTGCGCGAGGTCGGGTCGCGTCCCGGTCTGACGGTCGGGCTCGAGCACGTGCTGGACCTGTCGTGAMSSATRVAVIGAAGRMGSQTCAAVEAAEDLELVARVDAGDDVASAVRDSGAQVAVDFTVPAVTEANVHAALDAGAHVVVGTTGWDDDSRGRVTEHLERLAAEQEGDGPGVLIAPNFGLSAVLAMTFAAKAARYFESAEVVELHHPNKVDAPSGTARHTAAAIAAARADAGLGDSPDATQDGWEARGADVDGVRVHAVRLRGLVAHEEILFGNAGEQLTIRQDSFDRASFMPGVLLAVREVGSRPGLTVGLEHVLDLSNANANANANA
AK018_00219483hypothetical proteinGTGACCACCGAGGACGGCTCCTCGCCGCCCGCCCGGAGGCGTCCGCCACGGGGACTGGTCGGCGCGCTGGCGGTGACGTTCCTGCTGGCGATCTACGTCTGGGCGATCGCCGGGCGCGGTGTGGCGATGATGGCCAGCGGCGAGCCCGTGCTCGTCGCCATCGGTGCCGCCGCGCTGGTCGTCCCGCTGCTGGTCGTGGGGCTCATCGCGCGCGAGTTCTGGCTCGCGGCCCGAGTCCAGCGGATGGCCGACGTCCTCGCCGACGCCGGCGAGCTGCCCGTCGACGACCTGCCCCGGTCCCCGGGAGGACGGATCGACCGCGCCGCCGCCGACGCCGCCTTCACCGAGGCGCAGGCCGCCGTCGAGGCCGAGCCGGAGAGCTGGCGGGCCTGGTACCACCTGGCCTTCGCCTACGACGCCGCCCGCGACCGCCGGCGGGCCCGGGCAGCCTTGCGCAAGGCCTCCTCGCTCTTCACGGGCTGAMTTEDGSSPPARRRPPRGLVGALAVTFLLAIYVWAIAGRGVAMMASGEPVLVAIGAAALVVPLLVVGLIAREFWLAARVQRMADVLADAGELPVDDLPRSPGGRIDRAAADAAFTEAQAAVEAEPESWRAWYHLAFAYDAARDRRRARAALRKASSLFTGNANANANANA
AK018_00220462hypothetical proteinATGCTCACCGACTACTTCGCCGCGCCGTCCGACGCGCTCGCCGCGACGGTGCTGCACGTCGAGACCGGGCCGAGCACCCCGACGCGAGGGTCCGGCGAGCCGCTCTTCGACACGGTGGCGCTGCCGTCGATCGACCCCTTCGTCGCGCTGGCGGTGCTGGCGGAGGTGACCTTCGGCCTCCCCTACGGCGAGGTGACGGCCGATCCCCGGCACGGTCAGGTCGTCGGCGGGCAGGACGAGGGTCCGTTCGTCGTGACGGTGGCCGCCGAGCTCGCCGACCACCTGGCGGCCGCCTCCCCGCAGCAGCTCGCCGAGGCAGCCCGCGAGTGGGCGCGGCGCGTCGAGCACACGGTCGACGCCGCGGCGCTGGCCCGCTCCCTCGAGGATCTGGGCGAGCTCGCCTGGCGGGCCGCCGACGTCCGCCACGAGCTGTACTGCTGGACCCGGTGGCCGTCCGCCTGAMLTDYFAAPSDALAATVLHVETGPSTPTRGSGEPLFDTVALPSIDPFVALAVLAEVTFGLPYGEVTADPRHGQVVGGQDEGPFVVTVAAELADHLAAASPQQLAEAAREWARRVEHTVDAAALARSLEDLGELAWRAADVRHELYCWTRWPSANANANANANA
AK018_002211164sotB_1sugar efflux transporterGTGGAACACCGCACCGTCCGCGACGCCCTGGCGGGGATCACGATCCTGGCCGTCGCGAACTTCGTCGCCATCACCACCGAGGTGCTCCCGGTCGGGCTGCTGCCGCAGCTCGCGGACGGCCTCGGGGTGCCGGAGTCGACCGCCGGGCTGCTCGTGTCCGTGTACGCGTTCGTCGTGGCGGCGTGCGCGGTCCCGCTGACGCTGCTCACCCGGCGCCTGGCCCGCAAGCCGCTGCTGCTCACCACGGTGGTCGTCTACGCCGTCGCGAACGTGCTGGCCGCCCTCGCGCCGTCGTTCGGCGTCGTCGCGGCCCGGACCCTCGGCGGGCTCGGGCACGCGCTGTTCTTCTCGGTCTCGATCGCCTACGCGGCGCGGCTGGTCTCGCCGCTGTACACCGGCCGCGCGGTGACGCTGGTGACCACCGGCGGCACCTTCGGGTTCGTGCTCGGCGTGCCGCTGTCCACCTCGCTCGGCGCGGCCGTCGGGTGGCGGTGGTCCTTCGCGGTGCTCGCCGGCGTGTGCGCGCTGACCGCCCTCCTCGTCGCGCGGCTCCTGCCCCCGGTCGGGGTCGAGCAGGTCGCGCCGGGCGGCTCGCCGCACCGCGGGCGGTCGCGTCTCGGGATCGTCGTGGGGACCAACACGCTGCTGTTCGTGGGCCAGTACACGGTGTACACCTTCGTCTCCCTGCTGCTGCTCGCCACCGGCCTGACCGAGGCCGCGGTCGGCCCGGCCCTGCTCGTCTTCGGCGCGCTGGGGATCGTGGGGCTCTGGGCGGCCGCGCGCTACCTGGACCGCCGCCCGCGCGCCCTGACGCTCGCCACCGTCGGGGTGATGGTGCTCGCGCTGGTCGTCGTCGGGCTGGCACTGCCGCAGCGGCTCCCCGTGCTGGTCGCGGCGGCGGTGTGGCTCGCCGCGTTCGGGGCCGTGCCCGCCGCGTTCCAGACCCTGGCGCTGCGGGCCCGCGGCGCGAGCGCGGACGTCGCGGGCGCGTTCGTCAACGCCACCTCGAACCTCGGCATCGGTCTCGGGGCGGCCGTCGGGGCCGTCGTCGTCGCCGGCCCCGGACTGCCCGCCCTCGCCTGGACCGGGGCGGCGGCCATGGCCGCCGCCGGCGTCGTGGTGCTGGTCGCCCGGCGAGCGTTCCCGCGCGACCCCGCGCGGTAAMEHRTVRDALAGITILAVANFVAITTEVLPVGLLPQLADGLGVPESTAGLLVSVYAFVVAACAVPLTLLTRRLARKPLLLTTVVVYAVANVLAALAPSFGVVAARTLGGLGHALFFSVSIAYAARLVSPLYTGRAVTLVTTGGTFGFVLGVPLSTSLGAAVGWRWSFAVLAGVCALTALLVARLLPPVGVEQVAPGGSPHRGRSRLGIVVGTNTLLFVGQYTVYTFVSLLLLATGLTEAAVGPALLVFGALGIVGLWAAARYLDRRPRALTLATVGVMVLALVVVGLALPQRLPVLVAAAVWLAAFGAVPAAFQTLALRARGASADVAGAFVNATSNLGIGLGAAVGAVVVAGPGLPALAWTGAAAMAAAGVVVLVARRAFPRDPARPGPT0028991_1561DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
AK018_002221872hypothetical proteinTTGAGAACCGCGACCGACGACGCCGTAGGGACCGGGGCCGTCCCGGCGGACGCCCCGTACCGGGACCGGACCCGCCCCGTCGGCGAGCGCGTCACCGACCTGCTGGGTCGCATGACCCTCGCCGAGAAGGCCGGTCAGCTCTTCCACACGATGATCGAGACCGGCCCCGGCGGCACCCTCGCCGAGGAGCCCTCGCCCATGGGCGTGCCCGCCACCAGCGACATGCTCCTGGGTCGGCACATGACGCACTTCAACGTGCTCGCCTCGCCCGCGACCGCCGAGGAGTTCGCCCGCTGGCACAACCGGCTCCAGGAGCTCGCCGCCTCGACGCGGCTCGGCATCCCGGTGACGGTGTCCAGCGACCCGCGCCACGGTTTCACCGACAACCCCGGCACGGCGCTGCTGGCCGGCCCGTTCTCGCAGTGGCCCGAGACGCCGGGCCTGGCGGCCGTCGGCGATCCCGGGCTCGTGGAGGAGCAGGCCGACGCCGTGCGGCGCGAGTACCTGGCCGTGGGGATCCGCACCGCGCTGCACCCGCAGGTCGACCTCGCCACGGAACCCCGCTGGTCGCGGGCCGCGGGGACCTTCGGCGAGGACCCCGAGGCCGCCGGACGGCTCGGCGCCGCCGCCGTCCACGGGCTGCAGGGCACCGGTGCGGTCGCACGTCGTGCCGGACTGCCCGGGACCTTCGGCCCGTCCTCCGTGTCGACCATGACCAAGCACTTCCCCGGCGGCGGGCCGCAGGCCGACGGCGAGGACCCCCACTTCGCCTACGGGCGCGAGCAGGTCTACCCGGGCGGGGCCTTCGCCACGCACCTCGCACCGTTCACCGAGCTCATCGCCGCCGGCACCCGCCAGATGATGCCCTACTACGGCATGCCGGTGGGCCTCGAGGTCGACGGCGAGGCGGTCGAACCCGTCGGCTTCGCCTTCAACCGGCAGGTCCTCACCAGGCTGCTGCGCGAGCGGCTCGGGTTCGACGGCATCGTCTGCACGGACTGGGGCCTGGTCAACGACGCCGAGATCCTCGGCACCGAGTATCCCGCCCGCGCGTGGGGCGTCGAGGACCTCACCCCGCTCGAGCGGGTCGAGCGGATCCTCGCCGCCGGAGCCGACCAGCTCGGCGGCGAGGCCTGCCCCGAGCTCGTCGTCGAGCTCGTCCGCACCGGCCGGGTCCCCGAGGAGCGGCTGGACGTCTCCGTCGCCCGCCTGCTGCGCGAGAAGTTCGTCCTCGGGCTGTTCGACGACGCCCGGTACGTGGACGTCGACGCCGCGAGCGCCGTCGTCGGGCATCCCGAGCTCGTCGCGGCGGGACGCCGGGCCCAGTCCCGGTCGGTGACGGTCCTGTCCGCCGCCCGGAGCGGTCCGGCGGCCCTGCCGACCGCTCGCGGCCTGCGCGTCTGGCTCGAGGGGGCCGACGACGTCACCGACGTCTCCCCCGGCCTGGTGACCCTCGTCGACTCGCCGGAGGAGGCCGACGTGGCGCTGCTGCGCCTCAAGGCGCCCTACGAGGCACGCGGAGACGGCTTCGAGGCGTTCTTCCACGCGGGGTCCCTGGACTTCCCCGCCGAGGTGCTCTCCCACGTCGCCACGGTCGCCTCCCGGGTGGCGACCGTCGTGGACGTCTACCTCGACCGCCCGGCGATCCTCGCCCCCGTGCTCGACGCCCTGGGCTCGACGGGGTCGCTCGTGGCGAGCTACGGGGCCTCCACCGGCGCGCTGCTCGACGCCCTGACCGGCGTCGTGCGACCCGAGGGCAGGCTGCCGTTCGACCTGCCCCGCTCGATGGCCGCCGTCGAGGCCTCCCGGGAGGACGTGCCGTTCGACACCGCGGACCCGCTGTTCCGCTGCGGTCACGGCCTGTCGGTCTGAMRTATDDAVGTGAVPADAPYRDRTRPVGERVTDLLGRMTLAEKAGQLFHTMIETGPGGTLAEEPSPMGVPATSDMLLGRHMTHFNVLASPATAEEFARWHNRLQELAASTRLGIPVTVSSDPRHGFTDNPGTALLAGPFSQWPETPGLAAVGDPGLVEEQADAVRREYLAVGIRTALHPQVDLATEPRWSRAAGTFGEDPEAAGRLGAAAVHGLQGTGAVARRAGLPGTFGPSSVSTMTKHFPGGGPQADGEDPHFAYGREQVYPGGAFATHLAPFTELIAAGTRQMMPYYGMPVGLEVDGEAVEPVGFAFNRQVLTRLLRERLGFDGIVCTDWGLVNDAEILGTEYPARAWGVEDLTPLERVERILAAGADQLGGEACPELVVELVRTGRVPEERLDVSVARLLREKFVLGLFDDARYVDVDAASAVVGHPELVAAGRRAQSRSVTVLSAARSGPAALPTARGLRVWLEGADDVTDVSPGLVTLVDSPEEADVALLRLKAPYEARGDGFEAFFHAGSLDFPAEVLSHVATVASRVATVVDVYLDRPAILAPVLDALGSTGSLVASYGASTGALLDALTGVVRPEGRLPFDLPRSMAAVEASREDVPFDTADPLFRCGHGLSVPGPT0019110_6622DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_002231281hypothetical proteinATGACCGCCACACCCACCCCGGCCGACGGCCGGGCACTGTCCCAGGACCCCGGTCCGGCGACGACGCCACGCGGCTACGGATCCGGCCTGACGCTCGCCGCGTTCGGCGTGTACTTCGCGCTGTTCACGCCGGTGATGGTCGCCATGGCGTTCAAGATCCAGCACATCGACCCCGAGGGCGCCGTCGGCAGCCTCGGGCTCGTACTCGGCGTCGGCGCGGCGTTCGCCCTCGTCGCGAACCCACTGGCCGGGCGGCTGTCGGACCGCTCCACGGCGCGCTTCGGCAAGCGGCGGCCGTTCATCGTCGGCGGCTCTCTCGTCGGGACCCTGGCCATGGCGGTGATCGGCGTGACCGAGTCGGTGCCGATGGTCCTGGTCGCGTGGTGCCTGGCGCAGGCCGCCTACAACGGGGCGCTGGCCGCGATCATCGCGACCCTGCACGACCAGGTCGCCCCCGCCCGCCGCGGGCGGTTCTCCGCGCTCATCGGCATCGGCACGCCGCTGGCCATCCTCGGCGCCTCGGTGCTCGCCAACCTCGTCGCCGCCGACCTGTGGCGGTTCCTGCTGCCCGGCCTGGTCGCCACCGTGGCGAGCATCGTCTTCGCCGTCGTGCTCGACGACGTCGTGCGCACCGTCCCGCCCGCGGAGCCCTTCCGCGTCAAGGAGTTCTTCGGTTCCTTCGTCTTCGACCCCCGCACCCACCGGGACTTCGGCTGGACCTGGCTGACGAAGTTCTTCGTCATGTTCGGCTACGCCGGCATCGCGACCTACATCCCCTACTACCTGACCGACACCTTCGGCCTGGCCGAGGCCGAGGCGACCGAGGTCATCCTCGCGGCCAACATGGCCTCCACCGTGGCCATGCTCGTCTCGAGCCCGCTGGGCGGCTGGCTGTCGGACAAGCTCGGCAAGCGCCGGCCCTTCGTCACCGCCGCCGGTCTGGTGATGGTGCTCGGTCTCCTGCTCCTCGCGCTGGCCCCGTCGGTGGCGATGGTCGTGGTCGCCCAGGGCGTCGTCGGCTTCGGCGCCGGCTCGTTCCTCTCGGTGGACCAGGCCCTGGCCACCCAGGTGCTGCCGAACGCGGAGGACGCCGCCAAGGACCTCGGGGTGCTCAACATCGCCAACGCCCTGCCCCAGTCGCTCGCCCCGGCGATGGCGCCCAGCATCATCGCCGTCGGCACGGCCGTCGGCATCGGCGGCTACACCGCCTGGTTCCTCTTCGGAGCGTTCGTCGCCTTCTTCGGCGCCGTGCTCGTCTACCGCATCAAGGGCGTGCGTTGAMTATPTPADGRALSQDPGPATTPRGYGSGLTLAAFGVYFALFTPVMVAMAFKIQHIDPEGAVGSLGLVLGVGAAFALVANPLAGRLSDRSTARFGKRRPFIVGGSLVGTLAMAVIGVTESVPMVLVAWCLAQAAYNGALAAIIATLHDQVAPARRGRFSALIGIGTPLAILGASVLANLVAADLWRFLLPGLVATVASIVFAVVLDDVVRTVPPAEPFRVKEFFGSFVFDPRTHRDFGWTWLTKFFVMFGYAGIATYIPYYLTDTFGLAEAEATEVILAANMASTVAMLVSSPLGGWLSDKLGKRRPFVTAAGLVMVLGLLLLALAPSVAMVVVAQGVVGFGAGSFLSVDQALATQVLPNAEDAAKDLGVLNIANALPQSLAPAMAPSIIAVGTAVGIGGYTAWFLFGAFVAFFGAVLVYRIKGVRNANANANANA
AK018_00224657hypothetical proteinATGACGACCACCGGTACGACACCCCAGGCCAGCGGCTCGCGGGCCGGTGGCTACGCGCGCGGCCGCCGGAAGCGCGAGCAGATCCTGCAGGCCGCGATCGCGCTGTTCGGCGAGGCCGGCTTCCACGGGACCTCCCTGCGCGACATCGCCGCGGCCGCGGGGATCTCCCACCCCGGGCTGCTGCACCACTTCCCGACCAAGGCGGCGGTGCTGGAGGCGCTGCTGGAGCACCGGGACGAGGTCGACGAGGCGGACCTCGAGGCGGAGCTGGACCGGGGCACCGACTTCTTCACCGCGATGATCCACCTCGTGGAGCGCAACGCGCTGCGCCCGGCGATCGTGGACCTCTACACCTCCGTCGCCGCCGAGGCGACGTCCCCGGACCACCCCGCGCACGCCTACTTCGAGCAGCGGTACGCCGTCACCGTCGCGCGGATGCTCGAGGAGCTGGAGACCCGCCGGGACGCCGGCGGCCTGCGCCCCGGCCTCGACCTGGAGGCCGCCGCCCGGTCGATCGTCGCCATCATGGACGGGATGCAGCTGCAGTGGCTGCTCGCCCGCGACCTCCCGCGGGCACAGCGTCCGGACATGGCCGGTGCCCTGCGGGCCTACCTCGACCTCGTCCTCGTGCCGGAGGGTGCCCGCGCGGCGGACTGAMTTTGTTPQASGSRAGGYARGRRKREQILQAAIALFGEAGFHGTSLRDIAAAAGISHPGLLHHFPTKAAVLEALLEHRDEVDEADLEAELDRGTDFFTAMIHLVERNALRPAIVDLYTSVAAEATSPDHPAHAYFEQRYAVTVARMLEELETRRDAGGLRPGLDLEAAARSIVAIMDGMQLQWLLARDLPRAQRPDMAGALRAYLDLVLVPEGARAADNANANANANA
AK018_002251017hypothetical proteinATGGCACGCGACGACGGAACGACCCACGACGAGACCACCGCCGAGGCGCCGGGCGCCGCACGCAACCCGTTCCGCCGGGTGTGGTGGCTCCCCGTGCTCCGGGGGATCTCCTACATCGTGCTCGGTCTGCTGCTCATGATCGAGCCGCTCGAGGAGCTGGAGATCCTGCGCCTGCTCATCGGGATCTTCCTCGCCTTCGACGGCGTGCTGGTCCTGGTCCAGTGGCTGGTGCACCGCCGGCAGGTCGGCTCGGCCTGGTGGCTCGCCCAGGCCGGGGTCAACCTCGGCTTCGGTGCCGCCGTCGCCCTGTGGCCCGAGCTGTCGCCGACGCCGTTGTACTACCTGCTCGCGGTCTGGACGATCGTGCTGGGCATCGTGGCGATCATCGGCGGTGCGGCGCTGTCGAGGAACCGGGACCTCGGCTGGCCGTGGATGGTCGCGTTCGGCATCACGGCCGCCCTCTTCGGCCTCCTGCTCGTGACGCGGCCGCTGGACTCCTTCGACGTCCTGCGGCTGGTGACGATCGTCTTCGCGCTGTTCGCGTTCGTGGCCGGATCGCTGAACATCGTCTCCGGGTTCGCCGTCCGCTCCGTGTCGCGCGAGCTGCAGGGCCTGCGCGAGCAGGCCGAACGCGTGGGGGTCGTGGTCACCGGTGGCTCGGTGCTCGGCGCCGCCAACCCGCAGGCCGCGCCCGCCCGTGCCGCCGGCCCGCGTCCCGCGCCCGGCGGCCAGGAGGTCGGTGCGACGTCGGCCGGTGACGCTCCCGGCACGACGTCGGGGCCGCGGGACGAGGCGTCCTCGCCGACCGCGGCACCGGACGGCGGGACCGGTGCTCCCACCGCCGGGGGGACGGGGACGCCCTCCGACGGCGGCACCTCGCCCGCGCCCGACGCCCCGTCCGGCCCGGACGGACCGTCCGGCGAGGGCAGCCCCGCGACGGGCACTCCCGCGGACGGCGAGGACCCGGGCGCGGGGTCGCCCGGAGGGACCACCGGCCGGTGGCGCCGGCGCCCCTGAMARDDGTTHDETTAEAPGAARNPFRRVWWLPVLRGISYIVLGLLLMIEPLEELEILRLLIGIFLAFDGVLVLVQWLVHRRQVGSAWWLAQAGVNLGFGAAVALWPELSPTPLYYLLAVWTIVLGIVAIIGGAALSRNRDLGWPWMVAFGITAALFGLLLVTRPLDSFDVLRLVTIVFALFAFVAGSLNIVSGFAVRSVSRELQGLREQAERVGVVVTGGSVLGAANPQAAPARAAGPRPAPGGQEVGATSAGDAPGTTSGPRDEASSPTAAPDGGTGAPTAGGTGTPSDGGTSPAPDAPSGPDGPSGEGSPATGTPADGEDPGAGSPGGTTGRWRRRPNANANANANA
AK018_00226507hypothetical proteinATGGCACTGTTCCAGGAGACCGCCGACGTCTCGGTGCGCCCCGCCGTCCCCGGCGACGAGGAGGCCGTCACCCGCATCCAGGTCGAGGCCTGGCGCACCACGCACGCCGACGTGCTCGGGGGCGCCGTCGACGCCCTGGACACCACGGCGATGACCGACCGGTGGGCCGACGCGATCTCCCGGCCGCCGGGTCCCGGCTTCGCCGTGCTCGTCGCCCTGGACGGACCGACGGTCGTCGGCTTCGCCGCCGTCGCCCCGGGCCAGGTGATGTCCCTGGAGGTGGCGCCCCACGCCCGGCGCGGCGGTCACGGCTCACGGCTGCTGGCCGCGGCCGTGGACCGGCTGCGGACCGACGGCGAGTCCGAGGTCGTCACCTGGGTGCTCGACGGCGACGACGGCCGTGAACGGTTCCTGTCGTCCTCGGGCCTCGGTCCCGACGGCACGGAGCGCGCCCTGGCCACCGGGGTCCGCGACGTCGTCGAGCGGCGCTGGTCCGCCACGATCTGAMALFQETADVSVRPAVPGDEEAVTRIQVEAWRTTHADVLGGAVDALDTTAMTDRWADAISRPPGPGFAVLVALDGPTVVGFAAVAPGQVMSLEVAPHARRGGHGSRLLAAAVDRLRTDGESEVVTWVLDGDDGRERFLSSSGLGPDGTERALATGVRDVVERRWSATINANANANANA
AK018_00227321hypothetical proteinATGACCCCGACCGTGCTGTGGGCGACCGTGCTGGTGGCCTCCGTGGCGAGCTTCGCCCTCAAGCTCGCGGGTCACCTCGTCCCGCAGCACTGGCTGGCCACCGACCGCGTGCAGCGCACCTCGGGGCTGGTCACGGTGGCGCTGCTCGTGGCCCTCGTGGTGGTGCAGACCTTCGCCACCGGCCCTGCTCTCACGGTGGACGCGCGCGTGCCGGCGCTGGCCACCGCGGCGGCAGCGCTCGCACTGCGCGCACCCTTCGTCGTGGTCATCGTGGTCGCGGCTGCCGTGGCCGCGGGCCTGCGCGCGCTCGGCTGGGGCTGAMTPTVLWATVLVASVASFALKLAGHLVPQHWLATDRVQRTSGLVTVALLVALVVVQTFATGPALTVDARVPALATAAAALALRAPFVVVIVVAAAVAAGLRALGWGNANANANANA
AK018_00228705hypothetical proteinGTGTCCCGCCCCCGCTCCCCCGCGGTCTCGGCCGCCGTCCGCCAGGGCCTCAGCGTCTCCGTGGCCACCGGGCTCTACGGCGTCTCGTTCGGCGCGCTGGCGGTGGTCGCCGGTCTGACCGTGGCCCAGACCGCCGCGCTGAGCCTGCTGCTCTTCTCGGGCGGCTCGCAGTTCGCCCTCGTCGGGGTCGTGGCCGCCGGCGGCTCCCCGCTGGCCGCCGTGGCGACGTCGAGCCTGCTCGGCGTGCGCAACACCCTCTACGGCGCGGTGGTCTCCCCGCTGCTCGACGTGCGCGGGTGGCGCCGCTGGGCGGCCGCGCAGGTCACGATCGACGAGTCGACCGCGGTCGCGGTGGCCCAGCGCGACCCGCAGGCCGTACGGGTCGGGTTCTGGGCCACCGGGCTGGGCGTCTTCGTGCTGTGGAACGTCTGCAGCCTGCTCGGGGCGCTGGCCGGCGACGCGCTCGGGGACCCGCGGGTCTGGGGTCTGGACGCGGCCGCCGGGGCCGCCTTCCTCGCGCTCGTCTGGCCGCGCCTGGCCTCCCGCGACGCCCGCCTGGTGGCCGGTCTCGCCGTCGTCGTCTCCGCCGCCCTGGTCCCGGTGACCCCCGCGGGCATCCCGGTCCTGGGGGCGGCCGCGGCGGCGATCGCGGCCGGGCTCCTCGCCCCGGCGCCCCGTGCCTCACGACGCGGAGGGTCGCGATGAMSRPRSPAVSAAVRQGLSVSVATGLYGVSFGALAVVAGLTVAQTAALSLLLFSGGSQFALVGVVAAGGSPLAAVATSSLLGVRNTLYGAVVSPLLDVRGWRRWAAAQVTIDESTAVAVAQRDPQAVRVGFWATGLGVFVLWNVCSLLGALAGDALGDPRVWGLDAAAGAAFLALVWPRLASRDARLVAGLAVVVSAALVPVTPAGIPVLGAAAAAIAAGLLAPAPRASRRGGSRNANANANANA
AK018_002291470sad_1Succinate-semialdehyde dehydrogenaseATGACTGCGACGACGCCGACCACCTCTCCCGTCCCTGACGTCCCGACCGAGGTGCTCGTCGACGGCCGCTGGCGTGCGGCCACCGGCGGCGGCATGTTCGAGGTCGTCGACCCGGCGACCGAGGAGATCCTGTGCTCGGTGGCGGACGCCGGTCCCGAGGACGGCGAGGCGGCCCTGGCCGCGGCGCACGCGGCAGCCCCGGAGTGGGCGCGGGTCGCCCCGCGCGAGCGCGCCGAGCTGCTGCGGGCCACCTTCGAGACCGTCACCGCCCGCACCGAGCAGCTGGCCGCCCTCATCACCGCCGAGTGCGGCAAGACCCTCGCCGAGTCGCGCGCCGAGGTCGCCTACGGCGCCGAGTTCCTCCGGTGGTTCGCCGAGGAGGCGGTGCGCGCGCCCGGTCTGCTGCGCCGCGCACCGGCCGGCGCGAACCAGCAGCTCGTCCACCGGCGGCCGGTGGGGCCGGCGCTGCTCATCACCCCGTGGAACTTCCCCATCGCGATGGCGACGCGCAAGATCGGTCCCGCCCTGGCCGCCGGGTGCCCGGTCGTGATCAAGCCGGCCCAGCTCACCCCGCTGACCACCCTCGCCGTGGCCGAGATCCTGCGTGACGAGCTGGAGCGCCGCGGGCTGCCCGCCGGCGTCGTCAACGTCGTCCCCACCTCCTCGGCCGGGGACGTCACGGGCCCGCTGCTGGCGGACGACCGGTTGCGCAAGCTGTCGTTCACCGGGTCCACCGGTGTCGGGCGGCGGCTGCTGGCCCAGGCGGCCGACCAGGTGCTGTCCTGCTCGATGGAGCTGGGCGGCAACGCGCCGTTCGTCGTCTTCGGCGACGCCGACCTCGAGGCCGCCGTGGACGGTGCGGCCGTGGCCAAGCTGCGCAACGGCGGCCAGTCGTGCGTGGCGGCCAACCGCTTCCTCGTGCACGAGTCGCTGGCCACCGAGTTCGCCGACCGACTCGGTGCTCGCTTCGCCGACCTGACCGTGGGGCCCGGCGCCGAGGGCAACGACGTCGGGCCGCTCATCGGTGCCGACGCGGTGGACGCCGTGCACACGCTGGTCGCCGACGCCGTGGACCACGGCGCCCGCGTGGTCACCGGGGGGCAGCGCCCCGCCGGTCCCGGCTACTTCTACCCGCCCACGGTGCTCGCCGACGTCGCCCGGGACGCGCGGTGCGTGCACGAGGAGATCTTCGGGCCCGTGGCCCCGGTGGTCGCGTTCGCCGACGACGACGAGGGCATCGCCCTGGCCAACGACACGCCCTACGGGCTGGCGGCCTACGCCTACACCCGGGACCTGGACCTGGCGATGCGCGCGGCGCACGAGCTGGACGCGGGCATGATCGGGGTGAACCGGGGCATGGTCAGCGACGCGAGCGCGCCGTTCGGCGGCACCAAGCAGTCCGGGCTGGGCCGCGAGGGCGGCGAGGCCGGTCTCGAGGAGTACCTCGAGACCGTGTACGTGGCGATGTGAMTATTPTTSPVPDVPTEVLVDGRWRAATGGGMFEVVDPATEEILCSVADAGPEDGEAALAAAHAAAPEWARVAPRERAELLRATFETVTARTEQLAALITAECGKTLAESRAEVAYGAEFLRWFAEEAVRAPGLLRRAPAGANQQLVHRRPVGPALLITPWNFPIAMATRKIGPALAAGCPVVIKPAQLTPLTTLAVAEILRDELERRGLPAGVVNVVPTSSAGDVTGPLLADDRLRKLSFTGSTGVGRRLLAQAADQVLSCSMELGGNAPFVVFGDADLEAAVDGAAVAKLRNGGQSCVAANRFLVHESLATEFADRLGARFADLTVGPGAEGNDVGPLIGADAVDAVHTLVADAVDHGARVVTGGQRPAGPGYFYPPTVLADVARDARCVHEEIFGPVAPVVAFADDDEGIALANDTPYGLAAYAYTRDLDLAMRAAHELDAGMIGVNRGMVSDASAPFGGTKQSGLGREGGEAGLEEYLETVYVAMPGPT0001580_2082DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
AK018_00230924dapA_1COG03294-hydroxy-tetrahydrodipicolinate synthaseATGACGCTGCCCGGTACCCCTGCGCGCCCTTTCGGCGCCGTGCTCACCGCGATGGTCACGCCCATGTCGGGGTCGGGCGCGATCGATCTCGACGCCGCTGCGCGGCTCGCGACGCGGCTCGTGGACGCAGGCAACGACGGCCTCGTGCTGTCGGGCACCACGGGCGAGGCGCCCGTGACGCACGCCCCGGAGAAGGCCGACCTGGTGCACGCCGTCGTCGAGGCCGTCGGTGACCGGGCGACCGTCCTGTCCGGTGCCGGTTCGAACGACACGGCGCACGCCGTGCGCATGGCCGAGCAGGCGGCCGAGGCCGGCGCGGACGGGCTCCTCGTCGTCTCGCCGTACTACTCCCGCCCCACCCAGGAGGGGCTGTACCAGCACTTCGCGACGGTGGCCGACTCCACCGACCTGCCGGTCATGCTCTACGACATCCCCGGCCGGGCCGGGGTGCGCATCGCACCCGCGACGTACGAGCGGATCTCCGCCCACCCCCGCGTGGTGGCCACCAAGGACGCCACCGGGGACGTGGGCTCGGTGCCCGCGCTGCAGCGGCTGACCGGCCTGGCCTGGTACTCCGGCGACGACGGGCTCCTGCTGCCCTTCCTCGCCCACGGCGCGGCGGGGATCGTCTCGGTCTCCGCGCACCTCGTCGGCGACCGGTTCGCCGAGGTCGTGCGGCGCTTCGACGCCGGGGACCACGTCGGCGCGCTCGAGGTCTTCAACACGACGATGCCCGTGCTGGCCGCCATGAACGGCGCCGGTGCGCAGGCCGTCATGGTCAAGGCCGCCCTGGAGCTGCTCGGCGTCCACGACAACCGCGAGCTGCGCCTGCCGAACGTCGCCGCCACGGACGACGACGTCGCCGCGGTGCGCGCCGCCCTCATCGCCGGCGGGGTCATGGAACCCGCCACCACACCCCAGTAAMTLPGTPARPFGAVLTAMVTPMSGSGAIDLDAAARLATRLVDAGNDGLVLSGTTGEAPVTHAPEKADLVHAVVEAVGDRATVLSGAGSNDTAHAVRMAEQAAEAGADGLLVVSPYYSRPTQEGLYQHFATVADSTDLPVMLYDIPGRAGVRIAPATYERISAHPRVVATKDATGDVGSVPALQRLTGLAWYSGDDGLLLPFLAHGAAGIVSVSAHLVGDRFAEVVRRFDAGDHVGALEVFNTTMPVLAAMNGAGAQAVMVKAALELLGVHDNRELRLPNVAATDDDVAAVRAALIAGGVMEPATTPQPGPT0002080_290DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714NANA
AK018_002311686rnj_1COG0595Ribonuclease JGTGAGTCACCCTCACCCCGAACTTCCCCTGCCCCCCGAGCTGCCGGCCGACGGTCTGCGGATCGTCGCCCTCGGCGGGCTGGGGGAGGTCGGCCGCAACATGGCCGTCCTCGAGCACCGCGGACGGCTGCTCATCATCGACTGCGGCGTCCTCTTCCCGGAGGACCACCAGCCCGGCGTCGACCTCATCCTGCCCGACTTCGAGTACATCGCCGACCGCATGGACGACGTCGAGGCGATCGTGCTCACCCACGGCCACGAGGACCACATCGGTGCCGTGCCCTACCTGCTGCGCCTGCGCCGCGACATCCCGATCTACGGCTCGCAGCTGACGCTGGCGTTCATCGAGGCCAAGCTCAAGGAGCACCGCATCAAGCCGGTCACCCACGTGGTGGCCGAGGGCGACTCCGTGCAGCTCGGGGAGTTCGGCTGCGAGTTCGTGGCCGTCAACCACTCCATCCCGGACGCGCTCGCCGTGGCCGTCACCACGGCCGCCGGTACCGTGCTGCACACCGGCGACTTCAAGATGGACCAGCTGCCCCTGGACGGTCGCGTCACCGACCTGCGGGCCTTCGCCCGGCTCGGCGCGAAGGGGGTCGACCTGTTCATGGTCGACTCCACCAACGCGGAGGTCCCCGGCTTCGTCACCAACGAGGCGGAGATCGGACCGGTGCTGGACAACGTCTTCGCGCAGGCGGAGAAGCGCATCGTCGTCGCCTCGTTCTCCTCCCATGTCCACCGCGTCCAGCAGGTCCTCAACGCCGCGCACGCCCACGGGCGCAAGGTCGCCTTCGTCGGCCGCTCGATGGTGCGCAACATGGGGATCGCCGCCGAGCTCGGCTACCTCGACGTCCCGCCCGGTGTGCTCATCGAGCTCAAGCAGGCCACCAACCTGCCCGACGACCAGGTCGTCTACATGAGCACCGGGTCGCAGGGCGAGCCCATGGCGGCGCTGAGCCGCATGGCGAACGGCGACCACAAGGTCAACGTCGGCCACGGCGACACCGTGATCCTCGCCTCGTCGCTCATCCCGGGCAACGAGAACTCCGTGTTCCGCGTCATCAACGGACTGACCCGGCTCGGCGCGCGCGTGGTGCACTCCGGCAACGCCAAGGTGCACGTCTCCGGGCACGCCAGCGCCGGCGAGCTGCTGTACTGCTACAACATCCTGCGGCCCAAGAACGTCATGCCGGTGCACGGCGAGGTGCGCCACCTCGTGGCCAACGCGGCGCTCGCGGTCAAGACCGGGGTCCCCGCCGACCGCGTCGTGCTCGCCGAGGACGGCGTCGTCGTCGACCTCGTGGACGGCAAGGCCTCCGTGGTGGGCGCGGTCCCGTGCGGCTACGTGTTCGTGGACGGCTCCTCGGTCGGCGAGGTGACCGAGAGCGAGCTGAAGGACCGTCGCACGCTCGGCGAGGAGGGCTTCGTGTCCGTCTTCGCCGTGGTCGACACCGCCACGGGCAAGGTGCTCGCCGGACCGCAGATCCTGGCGCGCGGCATGGCCGAGGACGACGCCGTGTTCTCCGAGATCCAGCCGGACGTGGTCCAGGCCCTCGAGGACGCGATCGCCGGGGGCGCCACCGACACCTACCAGCTCCAGCAGATCATGCGGCGCGTCATCGGCCGCTGGGTCAACCGGCGTCTCCGCCGCCGCCCGATGATCGTCCCCGTCGTCGTCGAAGCCTGAMSHPHPELPLPPELPADGLRIVALGGLGEVGRNMAVLEHRGRLLIIDCGVLFPEDHQPGVDLILPDFEYIADRMDDVEAIVLTHGHEDHIGAVPYLLRLRRDIPIYGSQLTLAFIEAKLKEHRIKPVTHVVAEGDSVQLGEFGCEFVAVNHSIPDALAVAVTTAAGTVLHTGDFKMDQLPLDGRVTDLRAFARLGAKGVDLFMVDSTNAEVPGFVTNEAEIGPVLDNVFAQAEKRIVVASFSSHVHRVQQVLNAAHAHGRKVAFVGRSMVRNMGIAAELGYLDVPPGVLIELKQATNLPDDQVVYMSTGSQGEPMAALSRMANGDHKVNVGHGDTVILASSLIPGNENSVFRVINGLTRLGARVVHSGNAKVHVSGHASAGELLYCYNILRPKNVMPVHGEVRHLVANAALAVKTGVPADRVVLAEDGVVVDLVDGKASVVGAVPCGYVFVDGSSVGEVTESELKDRRTLGEEGFVSVFAVVDTATGKVLAGPQILARGMAEDDAVFSEIQPDVVQALEDAIAGGATDTYQLQQIMRRVIGRWVNRRLRRRPMIVPVVVEANANANANANA
AK018_002322568hypothetical proteinATGGTGCGCGGCGCCTACCTGGGCGTCGCGCACGGCCTGGGTGCCCTGACCCGCACGATCACCAAGGGAGCGAGAGACCTGGAACCCGAGCACCGCCGAGACGGCGTCGCCTTCTTCCTCATCGCGATCGCCCTCGTCGTGGCGGCCCGCGAGTGGTGGGGCATCCCCGGGGCCTTCGGCACCTGGGTCCACGCGGTCGTCGCGGGGACGGTCGGGCTGGCGGGCGTCGCGATCCCCGTCCTGCTCATCTGGATCGGCGTGCGGATCATGCGTCACCCCGAGCGGGGCCACGCGAACTCCCGCGTGGCCATCGGGGTGAGCCTGCTCGTGGTCTCCGTCTGCTCGCTCGTGGCCATCGCCGAGGACACCCCGTCCCCGCGGGACGGGTTCGACCAGGTGCAGGACGCCGGCGGCATCATCGGCTACCTTGCGGCGACGCCCGTCGTCATCGGCGTCACGGCGTGGGTGGCCGTGCCGCTGTTCCTGCTGCTCGGCTTCTTCGGGCTCCTCGTCGTCACCGCGACCCCGGTGCACCGCATCCCCGAACGGGTGCGGGGGCTGTACGACCGCCTCACGGGCAACCACGGCTCCGCCGCGGACGACGGCGGGCTCGAGCTCGCCGACGGCGTCTCCCAGCACGACGGCACCGACGAGAAGCCCGCCCGCAGGAGGCGCACCAGGCGGGTGCGCTCCACCCGCGCCGAGCGCGCCGCGAAGGCGGCCTCCGGCGACCTCGACGAGTACGCCGGCGACCAGGCCTTCGACAAGGCGGCCACCCTCGACCCGGCCGGCCCGTCGGCGCCGCCCGGTGCCGACGACCCGGGAGCGACGCAGGTGATCGCCACGGGGGCGACGGCGTCGCCCGCGCCGGCCGACAGCGCCCCGGCGGCGCCGTCGGGGCCGGCTGCACCGGAACCGCTGCCCGCTCCCCAGGGGCGGGCGGAGCAGCCGATGCTCTCCGGCGACACGGTCTACCTGCTGCCGTCGGAGGACGCGCTGGTCCAGGGCGCGCCGCACAAGAGCCGCTCGGCGGCCAACGACCGCGTGGTGGCCGCCCTCGAGCAGACCTTCGAGCAGTTCGGCGTGGACGCCCAGGTCACCAACTTCACCCGGGGGCCCACGGTCACCCGGTACGAGGTGGAGGTCGGCCCCAAGACCAAGGTCGAGCGCATCACCGGGCTGAGCAACAACATCGCCTACGCGGTCGCCAGCGCCGACGTGCGGATCCTGTCGCCGATCCCCGGCAAGTCCGCGATCGGCATCGAGATCCCGAACACCGACCGGGAGACGGTCGTGCTCGGGGACGTGCTGCGCTCGTCGGCGGCCCGCCGCACCGAGCACCCGATGGTCATGGGTGTGGGCAAGGACGTCGAGGGCGGTTTCGTCGTGGCGAACCTGGCCAAGATGCCGCACATCCTCGTCGCCGGTGCGACCGGTGCCGGTAAGTCGAGCTTCATCAACTCGATGATCACCTCGATCCTCATGCGTGCCACCCCCGAGCAGGTGCGACTGATCCTCGTCGACCCCAAGCGGGTCGAGCTCACGCTGTACGAGGGCATCCCGCACCTGATCACGCCGATCATCACGAGCCCGAAGAAGGCGGCCGAGGCGCTCGACTGGGTCGTGCGCGAGATGGACGCCCGGTACGACGACCTGGCGACGTTCGGGTACAAGCACATCGACGACTTCAACGCCGCCGTGCGGGCCGGCAAGGTGACGCCGCCGCCGGGCTCGGAGCGCAAGGTCGCCGCCTACCCGTACCTGCTGGTCGTCGTGGACGAGCTCGCCGACCTGATGATGGTCGCGCCGCGGGACGTGGAGGCCGCGATCCAGCGCATCACCCAGCTCGCGCGGGCCGCGGGCATCCACCTCGTGCTGGCCACGCAGCGTCCCTCCGTGGACGTCGTGACCGGTCTGATCAAGGCGAACGTGCCCTCGCGGCTGGCGTTCGCGACGTCGTCCCTGGCCGACTCCCGCGTCGTGCTCGACCAGCCGGGCGCCGAGAAGCTCATCGGTCAGGGTGACGCGCTGTTCCTGCCGATGGGCGCCTCCAAGCCGATGCGCGTCCAGGGGGCGTGGGTCAGCGAGTCCGAGGTGCACGCCGTCACCGAGCACGTGAAGTCCCAGCTCAAGCCGATCTACCGCGAGGACGTCACCGCCCCGGCGGCCGCCAAGAAGCAGATCGACGAGGACATCGGCGACGACCTCGACGTGCTGCTGCAGGCGGCCGAGCTCGTGGTGTCGACGCAGTTCGGCTCGACGTCGATGCTGCAGCGCAAGCTGCGCGTCGGGTTCGCCAAGGCCGGCCGGCTGATGGACCTGCTCGAGTCGCGCGAGATCGTCGGCCCCTCCGAGGGGTCGAAGGCCCGCGATGTGCTCGTCCAGCCCGAGTCCCTGTCGTCCGCGCTCGCCCTGATCCGCGGGGAGACGCCGTCCGCCTACGACCAGGACGCCGAGACCGCGGCCTCGGGGGACCGGTACGCCGACGGCACCGACGGACACCGGCCGCCCACGGCGACCGACTACCACGACGGCGCCGACACCGATGCCGAGCACCCCGTGCGCTGAMVRGAYLGVAHGLGALTRTITKGARDLEPEHRRDGVAFFLIAIALVVAAREWWGIPGAFGTWVHAVVAGTVGLAGVAIPVLLIWIGVRIMRHPERGHANSRVAIGVSLLVVSVCSLVAIAEDTPSPRDGFDQVQDAGGIIGYLAATPVVIGVTAWVAVPLFLLLGFFGLLVVTATPVHRIPERVRGLYDRLTGNHGSAADDGGLELADGVSQHDGTDEKPARRRRTRRVRSTRAERAAKAASGDLDEYAGDQAFDKAATLDPAGPSAPPGADDPGATQVIATGATASPAPADSAPAAPSGPAAPEPLPAPQGRAEQPMLSGDTVYLLPSEDALVQGAPHKSRSAANDRVVAALEQTFEQFGVDAQVTNFTRGPTVTRYEVEVGPKTKVERITGLSNNIAYAVASADVRILSPIPGKSAIGIEIPNTDRETVVLGDVLRSSAARRTEHPMVMGVGKDVEGGFVVANLAKMPHILVAGATGAGKSSFINSMITSILMRATPEQVRLILVDPKRVELTLYEGIPHLITPIITSPKKAAEALDWVVREMDARYDDLATFGYKHIDDFNAAVRAGKVTPPPGSERKVAAYPYLLVVVDELADLMMVAPRDVEAAIQRITQLARAAGIHLVLATQRPSVDVVTGLIKANVPSRLAFATSSLADSRVVLDQPGAEKLIGQGDALFLPMGASKPMRVQGAWVSESEVHAVTEHVKSQLKPIYREDVTAPAAAKKQIDEDIGDDLDVLLQAAELVVSTQFGSTSMLQRKLRVGFAKAGRLMDLLESREIVGPSEGSKARDVLVQPESLSSALALIRGETPSAYDQDAETAASGDRYADGTDGHRPPTATDYHDGADTDAEHPVRPGPT0030468_3205DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
AK018_00233783hypothetical proteinATGCCGAGCACCCCGTGCGCTGAGCTCCTCGTCCGCCGGGCCCGGGGGCGGGTTCAGCGGTCCCGGACGGCAGGGTCCCGGGGCAGGACGGTGGGGGCCCCGCCGGTCGGGCCCGGCGGGCGCCGACGCTCGCGGGCCTGCGGACCGACCGCATCGGCGACCCGGTCGTGGCGGGTGCGCAGCTCGCGGCGGTCCAGCGTCGTGGCGCCGGCGTCCGAGCACGTGCACGCGGTGCCCCGCCGGGATGTCCACGGTCGTGGCGGTCCAGCGGACGTCGGTCACGCGTGCCGGCTCGGCCGGTCGTTCCTCGGTGACGGTGGCGGTCAGCAGCACGCCGCTGCTGGTCCGGGGGTCGCAGCAGGACCCGCTCTGGTTCGACAGCAGGTTGCCCAGCCCGTAGGCGACCCACATGCCGGCACGGCGCGGCCCGCCGCCGAGCCGCTCGATCCGCTGGGGCACGTGCGCGTGGTGCCCGATCACGAGGTCGACCGCACGGGAGGCGGCCAGGGCCGCCGTGACGTCCTCCTGCTGGGCGGTGAGCTGCTCGGTGTACTCGGCGCCGGCGTGCAGGCTGACGAGCACGACGTCGGCCCCGCCGTCCCGTCGGGCGGTGCGCGCGGCGTCCACGAGCGCCTCCGCGTCGATGAGGTCGACCGCCCAGGGCGCCTCGGCGGGCACCGGGAAGCCGTTGAGTCCGTAGGTGGCGGACAGGTGCGCCACGACCAGGTCCCGGTCGGACCGCTGGAGGCGGTAGTGCTGGGCCGACCTCTGCTCGCGGCGTGAMPSTPCAELLVRRARGRVQRSRTAGSRGRTVGAPPVGPGGRRRSRACGPTASATRSWRVRSSRRSSVVAPASEHVHAVPRRDVHGRGGPADVGHACRLGRSFLGDGGGQQHAAAGPGVAAGPALVRQQVAQPVGDPHAGTARPAAEPLDPLGHVRVVPDHEVDRTGGGQGRRDVLLLGGELLGVLGAGVQADEHDVGPAVPSGGARGVHERLRVDEVDRPGRLGGHREAVESVGGGQVRHDQVPVGPLEAVVLGRPLLAANANANANANA
AK018_00234648pgsA_1CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferaseATGCCGGACGCCGCACCTTCGCCCTGGAACATCGCGAACATCGTCACGATGATCCGCATCGCTCTCGTCCCCGTCTTCGCGGCGGCCCTGCTGGTCGACGGCGGCGAGTCGATGCTCTGGCGCCTGGTGGCGACGGCCATCTTCCTGCTGGCCGCGCTCAGCGACAAGGTCGACGGCCACCTGGCGCGGTCGCGCGGGCTCGTGACGGACCTGGGCAAGCTCCTGGACCCGATCGCCGACAAGGCTCTGGTGGGGACGGCGCTCGTCCTGCTGTGGTGGCCGCTCGGCGAGCTGCCCTGGTGGGTCCCGACGATCATCCTGGCGCGCGAGCTGGGGATCACGCTGATGCGCATGGCCGTCCTGAAGTACGCGGTGATGCCGGCCTCGCGCGGCGGCAAGATCAAGACGGTGCTGCAGGTCGTCGCGATCTCGCTGTTCCTGCTGCCGCTGGCGCAGCTGCCGGGCGCCGTGGTGGTCGTCGCGTGGGTCGTCATGGGGGCGGCCATCGTCGTGACCGTGGTGACCGGTGTCGACTACGCCATCCAGGGGCTGCGCCTGCGTCGCCGGGCCCGGCAGGACGGCACGGACGCCGCTCCCGAGGACGGGCCGGCCGGCGGTACGTCGGGAGCACCCCGGACCGAGGGATGAMPDAAPSPWNIANIVTMIRIALVPVFAAALLVDGGESMLWRLVATAIFLLAALSDKVDGHLARSRGLVTDLGKLLDPIADKALVGTALVLLWWPLGELPWWVPTIILARELGITLMRMAVLKYAVMPASRGGKIKTVLQVVAISLFLLPLAQLPGAVVVVAWVVMGAAIVVTVVTGVDYAIQGLRLRRRARQDGTDAAPEDGPAGGTSGAPRTEGPGPT0007705_3138DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995NANA
AK018_00235474cinACOG1058Putative competence-damage inducible proteinATGACGGCCCGGGAGGTCCTGGCGGCGGCGGCCGCGAGGGGATGGACGCTCGGCGTCGCCGAGTCGCTGACCGCGGGCATGGTCGCGGCCGAGCTCGCCACGGTGCCGGGTGCCTCCGCCGTCCTGCGCGGCGGTGTCGTCGCCTACGCGACGGACCTGAAGGCGTCGTTGCTGGGGGTGGACGCGGACCTGCTGGCCGCCCGGGGGGCCGTGGACCCCGACGTCGCCGGTGCGATGGCCACGGGCGTGCGCTCCGCGACGGGGGCGGACGTCGGGCTCGCCACGACCGGGGTCGCCGGGCCGGACCCCCAGGACGGCCGGGCCCCCGGGCTCGTCTTCGTCGCCGTGGCCACGCCGACGGCCACCGAGGTGCGCCGGTGCGACCTGGACGGCGGCCGCGCCGCGGTCCGTGCGGGGGCGGTCGCGGCGGCCCTGGACCTCTGCGCAGCGGTGCTGGGTGACGCCGCCGCGTGAMTAREVLAAAAARGWTLGVAESLTAGMVAAELATVPGASAVLRGGVVAYATDLKASLLGVDADLLAARGAVDPDVAGAMATGVRSATGADVGLATTGVAGPDPQDGRAPGLVFVAVATPTATEVRRCDLDGGRAAVRAGAVAAALDLCAAVLGDAAAPGPT0013460_3010DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013460-pncC2-K03743NANA
AK018_00236330hypothetical proteinATGGTCGTCCTGCGACAGGAGATCGGTGACGTGCTGCGCGACGCGCGGCAGCGTCAGGGGCGCACCCTGCGAGAGGTGTCCTCGGCCGCACGGGTCTCGCTCGGCTACCTCAGCGAGGTCGAGCGCGGGCAGAAGGAGGCCTCCTCCGAGCTGCTGGCCTCCATCTGCGAGGCCCTCGACATCCCGCTGTCCCTCGTGCTGCGCGAGGTGAGCGACCGGATCGCGGTCGCCGAGGGGCTGCTGGTCCCGGACACGATCCCCACGGACGTGCTCGCCGGGATGCTCTCCCGCGGCGCCGTCGAGCGCGAGGACCTCACGCCGGTCGGCTGAMVVLRQEIGDVLRDARQRQGRTLREVSSAARVSLGYLSEVERGQKEASSELLASICEALDIPLSLVLREVSDRIAVAEGLLVPDTIPTDVLAGMLSRGAVEREDLTPVGNANANANANA
AK018_00237801neiCOG0266Endonuclease 8ATGCCCGAGGGGGACGTGCTGCGGCTGACGGCCGAACGCCTCGACCAGGCCCTGCGCGGCAGGCCGCTGGTGCGCGCCGAGCTGCGCTGGCCGAACGTCGGCGGGGCCGAGCTGACGGGCCGGACGGTCACGGGCTGCGTCTCGTACGGCAAGCACCTGCTGACCCGCTTCGACGACGGCCGCACCCTGCACACCCACCTGCGGATGGAGGGCGCGTGGCGGGTGGTGCCGACCGACGGCCGCGCCTCGGCCGCGGGCCATCCGCAGGTGCGCGCCGTGCTGTCGACCGCCCGCTGGACCGCCGTGGGGTGGCGGCTCGGCATGCTGGACCTGCTGCGGACCCGGGACGAGCCGCGCCTGCTCGCTCATCTGGGACCGGACGTGCTCGCCGACGACTTCGGCACCCACGGGCTGCCCGAGGCCCTCGACCGGTGGCGGGCCCAGGGGGACCGCCCGCTGTGCGACGTCCTGCTGGACCAGTCGATCGTGGCCGGGCTGGGGACGATCTGGATGGCGGAGTCGCTCTTCGCGCGACGGCTGCACCCGTGGGCCCCGGCCGACTCCCTGTCGGAGGACGAGGTGCGCAGCCTGCTCGTCACGGCGCGCCGACTCGTGGGGAGCAGTGTCGAGATCGGCCGCCGCCAGGGCCTGGGCGAGGTGCCGCGGTCCGTGCACGGGCGGCTGGGCCGACCCTGCCGACGGTGCCGGACGCCGATCGCCGTCGGGCAGGCGAACGAGCCGCCGTACGAGCGGCCGGTGTTCTGGTGCCCCACCTGCCAGGCGGTCAGCCGACCGGCGTGAMPEGDVLRLTAERLDQALRGRPLVRAELRWPNVGGAELTGRTVTGCVSYGKHLLTRFDDGRTLHTHLRMEGAWRVVPTDGRASAAGHPQVRAVLSTARWTAVGWRLGMLDLLRTRDEPRLLAHLGPDVLADDFGTHGLPEALDRWRAQGDRPLCDVLLDQSIVAGLGTIWMAESLFARRLHPWAPADSLSEDEVRSLLVTARRLVGSSVEIGRRQGLGEVPRSVHGRLGRPCRRCRTPIAVGQANEPPYERPVFWCPTCQAVSRPANANANANANA
AK018_002384704rhlE_1ATP-dependent RNA helicase RhlEGTGCACCATGGGCTGGTGGCCACCGACCCGCTCGCCCGCTTCGCCCCCGCGACCCGGGCCTGGTTCCGCGACGCGTTCGCGGGCCCCACGACGGCGCAGGTGGGCGCCTGGGAGGCCGTCGAGGCGGACCGGCACGCGCTCGTGGTCGCGCCCACGGGCTCGGGCAAGACGCTGGCCGCGTTCCTCTGGGCGATCGACCGCCTGACGTCCGCGCCACCGCCGGCGGAGCCCGCGCACCGCTGCCGGGTGCTGTACGTCTCCCCCCTCAAGGCGCTGGCGGCGGACGTCCAGCGCAACCTGAGCGCCCCCCTGACCGGGATCCGCCGGGCCGCCGACCGGCTCGCGGTCGGTGCCCACGACGTGCACGTGGGGATGCGCACCGGCGACACTCCTCCCGCCGAGCGCCGCGCCTTCGCCACCCGTCCCCCGGACGTCCTCGTCACGACGCCCGAGTCGCTGTTCCTCGTGCTCACCTCGGCGGCCCGCGCCGGCCTGGCCGGCGTCGAGACGGTGATCGTCGACGAGATCCACGCGCTGGCAGCCACGAAGCGCGGCGCGCACCTGGCCGTCAGCCTCGAGCGGCTCGACGCCCTGCTGCCCCGCCCCGCCCAGCGCATCGGCCTGTCGGCCACCGTGCGTCCGGCGGAGGAGGTCGCCGGGTTCCTCGGCGGGAGCCGTCCGACGACGGAGGGCGGCCGCGAGGTCGTCGTCGTCCAGCCGCCGTCCGAGAAGCGCTGGGACCTGGACGTCGCCGTCCCCGTCCCCGACCTGACCGACCTCGGCGGCGACGAGGAGCCCGACCTGTCCGGGGCCGCGAGCGGTCCGCAGCGGCAGGCCTCGATCTGGCCCCACGTGACCGACCGGGTCGTCGACCTCGTCAGCGACCACCGCTCGACCCTGGTGTTCACCAACTCCCGGCGCGGGGCGGAGCGGCTCACCGCCCGTGTCAACGAGACCTGGGCGGAGCGCGAGGGGACGGCCGCGCCCGACGCCGGGGCGGAGCAGGCGGCCGCGACACCCGGCCAGTCGGGCACGGCGGCGGCGCTGGACGCCGGGGTCCCGGTCCTCGCCCGCGCCCACCACGGCTCGATGAGCCGGACCGAGCGCACGCGGACCGAGTCCGACCTCAAGGCGGGGCTGCTGCCCGCCGTGGTCGCGACGTCGTCCCTGGAGCTCGGCATCGACATGGGGGCGGTGGACCTCGTCGTGCAGGTCGGCGCCCCGCCGTCGGTGGCCAGCGGCCTGCAGCGCATCGGTCGGGCCGGGCACCAGGTCGGGGCCGTCTCGCGCGGCGTGGTCCTGCCCACGCACCGGGGCGACCTCGTCCCGGCGACGGTGGTCACCCAGCGCATGCGCTCCGGCGACATCGAGCCCCTGCGAGTCGTGTCCACGCCGTTGGACGTGCTCGCCCAGCAGGTCGTGGCCGCGCTCGCCGTCGACGACTGGGACGCCGACGAGCTGCTCGGCACGTTCCGTCGGGCCGCGCCCTTCGCCGCCCTCGGCGACGCGACGTGGCACGCGGTGCTCGACATGCTGGCCGGGCGCTACCCCAGCGAGGAGTTCGCCGAGCTGCGGCCGCGGATCGTGTGGGACCGGGCCACGGGGCGGCTCACGGCCCGTCCCGGTGCCCTGCGGCTGGCCGCCACCAGCGGCGGGACCATCCCCGACCGCGGGCTCTACGGCGTCTACCTGGCCGGCGACGACGGCGGTCGCGGCGGCAAGCGTGTCGGCGAGCTCGACGAGGAGATGGTCTACGAGTCCCGCGCCGGGGACACCTTCACCCTCGGGTCCTCGACCTGGCGGGTCGAGGAGATCACCCCGGACCGCGTGCTGGTCACCCCGGCGCCGGGCCTGCCCGGCCGCCTGCCGTTCTGGCGGGGCGACTCCCCCGGCCGACCCGTGGCACTCGGACGGGCGGTCGGCGCGTTCCTCCGGGAGTCCGACGAGCACCTCGTCGACGACGCCGAGAAGGGCCGCGCCCACCTGCGCGAGGCGGGGCTGGACGCGTGGGCCGCCGACAACCTCGCCGGCTACCTCACCGAGCAGCGCGCCGCGACCGGCCGCGTCCCCGACGACCGCACCGTCGTCGTCGAGCGCTTCCGCGACGAGCTCGGCGACTGGCGGGTCGTGGTCCACTCCCCGCTGGGAGCCCGCGTCCACGAGCCCTGGGCGCTGGTGGTCGGCGCGCGGCTGCGGGAGCGCCTGGGCACCGACGTCGCCGCCATGGCCGCCGACGACGGGATCGTCCTGCGCCTGCCCGGCGACTCGCCGTGGGACCTCGAGGCCGCGACGGCACGGCCCGAGGTCACCACGGCCGACCTCCTCGTCGACCCGGAGGAGGTCGACGGGGCCGTCCGCGCCGAGCTCGGGTCCTCCGTGCTGTTCGCGTCCCGGTTCCGCGAGGCGGCGGCCCGCGCCCTGCTGCTGCCCCGCCGTCGTCCCGACCGCCGCGCCCCGCTGTGGCAGCAGCGCCAGCGGGCCGCCCAGCTGCTGCAGGTCGCCTCGGCCCACCCGGACTTCCCGATCGTGCTCGAGGCCGCGCGCGAGTGCCTGCAGGACGACTTCGACGTCGCCGCCCTGCGCGCGCTGATGACCGACCTGGCCGCGGGAGACGTCCGGCTCGTCGAGATCTCCACCGAGGGACCCTCGCCGTTCGCCCGCTCGCTGCTGTTCGGGTACACCGCCCAGTTCCTGTACGACGGCGACGCGCCGCTCGCCGAGCGCCGGGCCGCCGCCCTCTCGCTGGACCCGACGCTGCTGGCCGAGCTGCTCGGCGAGCAGGGCGCGACCGACCTGGCCGACCTGCTGGACCCCCAGGTGGTCGAGCGGACCGAGGCCGAGCTGCAGGGGCTCGCCCCCGACCGCCGTGCGACCGACGCCGAGGGGGTCTGGGACCTGCTGCGCCGCACCGGACCGCACGGGCTCGAGGAGGTGCGCCGGCGGGTGGCCGACGACGTCACCGGCGCGGTCCCCGACTGGCTGGCCGCGCTGGAACGGGACCGCCGGGCCATCCGGCTCCGCGTCGCCGGCACCGAGCAGTGGGCGGTCGCCGAGGACGCCGGCCGGCTGCGCGACGCGCTCGGGGTGGCACCGCCCGCGGGCCTGCCGGACGCCGTCATGGCGCCCGCCGCCGACCCGCTGACGGACCTGCTGCGCCGCCACGCCCGCACGCACGGGCCGTTCACGGCGGCCGGGGCCGCGCACCGGTTCGGGCTCGGCGTCGCCGTGGTGACCGCGGTGCTGTCCCGGCTGGAGCGGGACGGCCGGCTGACCCGCGGCGCCCTGCGACCCGAGGTGATCGGCGGCACCGGCGACGAGTTCTGCGACCCGCAGGTGCTGCGGACCCTGCGGCGGCGTTCCCTGGCCGCGCTGCGCGCCGAGGTCGAACCGGTGGAGCCGGAGGCGCTGGGCGTGTTCCTGCCCCGCTGGCAGGGCACCACGGGACCGCGGCTGCGGGGCGCCGACGGTCTGCTCCGGGCGGTCGAGCAGCTCGCGGGTGCCGCGGTGCCCGCCTCGGCGCTGGAGACGCTGGTGCTCCCCGCCCGGGTCACCGACTACTCCCCCGCGCTGCTGGACGAGCTGACCACCACCGGCGAGGTCGTCTGGGCCGGCCACGCCGCGCTGCCCGGCACGGACGGCACCGTGAGCCTGCACCTGGCCGAGGACGCCCCGCTGACGCTGGCGCAGCCGGCGCCCCTGGGTCCCGAGGGGACGCTGGACACCGACCTGCACCGGGTGCTGCTCGACCTGCTCACGTCGTCGGGCGGCTTCTTCCTGCCCCGCCTCGTCGAGCTCGCGGACGCCTCGGCCGAGGACGTGCTCGAGACGCTGTGGGACCTCGTCTGGGGCGGGCACGTCACCAACGACGGGCTCGCCGTGCTGCGGGCGCGGCTCGGCACGGGCGGTGGCGCGCACCGGGCACCCCGGCAGCCGGGGCGCGCCCGCCCCGTGCGGCGGTCCCGCTTCGCCGTGGCCCGCTCCACCGTGCCGCCGGCGGGAGCCGGCCGTTGGTCCGCGCTGCCGACCCGCGAGCAGGACGCCACGGTGCGCACGCACGCCCTGGCCCAGGTGCTGCTGGACCGGCACGGCGTCCTGACGCGTGCCGTCGCGCCGTCCGAGCACGTGGCCGGGCAGTTCCGGGAGGTCTACCGGGTGCTCACCGGGCTCGAGGAGCGCGGGGCGGTCCGGCGCGGGTACTTCGTCGAACGGCTGGGCGGCGCGCAGTTCGCCTTGCCCGGTGCGGTCGACCGGCTGCGCGTGGACGCCGGGGACCGCGACCGGGTCCGCGACGACCCCGACGCCGCACCGCCCGGCCTGCTGCTCGCCGCGACCGACCCCGCCAACCCGTACGGGGCGGCGCTGCCCTGGCCGGGCACCACCCCGGGGCCGGGTGACGCGCCCGGCGGCCACCGGCCCGGCCGCAAGGCGGGGGCCGTGGTGGTGCTGACGAACGGCGAGCCGGCGCTCTACGTCGAACGGGGCGGCCGCACGCTGCTGACGTTCACCACGGAGCCGGCCGCCCTCGAGGTCGCGGCGGTGACGCTGGCCGGCCATGCGCGCCAGGGGCGGCTGGGTCGGCTCGTGGTGCAGCGGATCGACGGCGTGGCGTCCCTGGAGGCCGTCCGGACACCGTCCGCGGCCGCCGGGGCGCTGCTGGGGGCAGGTTTCTCCGTCACCCCCCGCGGCCTGCGGGTGGCGGTCTGAMHHGLVATDPLARFAPATRAWFRDAFAGPTTAQVGAWEAVEADRHALVVAPTGSGKTLAAFLWAIDRLTSAPPPAEPAHRCRVLYVSPLKALAADVQRNLSAPLTGIRRAADRLAVGAHDVHVGMRTGDTPPAERRAFATRPPDVLVTTPESLFLVLTSAARAGLAGVETVIVDEIHALAATKRGAHLAVSLERLDALLPRPAQRIGLSATVRPAEEVAGFLGGSRPTTEGGREVVVVQPPSEKRWDLDVAVPVPDLTDLGGDEEPDLSGAASGPQRQASIWPHVTDRVVDLVSDHRSTLVFTNSRRGAERLTARVNETWAEREGTAAPDAGAEQAAATPGQSGTAAALDAGVPVLARAHHGSMSRTERTRTESDLKAGLLPAVVATSSLELGIDMGAVDLVVQVGAPPSVASGLQRIGRAGHQVGAVSRGVVLPTHRGDLVPATVVTQRMRSGDIEPLRVVSTPLDVLAQQVVAALAVDDWDADELLGTFRRAAPFAALGDATWHAVLDMLAGRYPSEEFAELRPRIVWDRATGRLTARPGALRLAATSGGTIPDRGLYGVYLAGDDGGRGGKRVGELDEEMVYESRAGDTFTLGSSTWRVEEITPDRVLVTPAPGLPGRLPFWRGDSPGRPVALGRAVGAFLRESDEHLVDDAEKGRAHLREAGLDAWAADNLAGYLTEQRAATGRVPDDRTVVVERFRDELGDWRVVVHSPLGARVHEPWALVVGARLRERLGTDVAAMAADDGIVLRLPGDSPWDLEAATARPEVTTADLLVDPEEVDGAVRAELGSSVLFASRFREAAARALLLPRRRPDRRAPLWQQRQRAAQLLQVASAHPDFPIVLEAARECLQDDFDVAALRALMTDLAAGDVRLVEISTEGPSPFARSLLFGYTAQFLYDGDAPLAERRAAALSLDPTLLAELLGEQGATDLADLLDPQVVERTEAELQGLAPDRRATDAEGVWDLLRRTGPHGLEEVRRRVADDVTGAVPDWLAALERDRRAIRLRVAGTEQWAVAEDAGRLRDALGVAPPAGLPDAVMAPAADPLTDLLRRHARTHGPFTAAGAAHRFGLGVAVVTAVLSRLERDGRLTRGALRPEVIGGTGDEFCDPQVLRTLRRRSLAALRAEVEPVEPEALGVFLPRWQGTTGPRLRGADGLLRAVEQLAGAAVPASALETLVLPARVTDYSPALLDELTTTGEVVWAGHAALPGTDGTVSLHLAEDAPLTLAQPAPLGPEGTLDTDLHRVLLDLLTSSGGFFLPRLVELADASAEDVLETLWDLVWGGHVTNDGLAVLRARLGTGGGAHRAPRQPGRARPVRRSRFAVARSTVPPAGAGRWSALPTREQDATVRTHALAQVLLDRHGVLTRAVAPSEHVAGQFREVYRVLTGLEERGAVRRGYFVERLGGAQFALPGAVDRLRVDAGDRDRVRDDPDAAPPGLLLAATDPANPYGAALPWPGTTPGPGDAPGGHRPGRKAGAVVVLTNGEPALYVERGGRTLLTFTTEPAALEVAAVTLAGHARQGRLGRLVVQRIDGVASLEAVRTPSAAAGALLGAGFSVTPRGLRVAVNANANANANA
AK018_00239234hypothetical proteinGTGCTCTACTCCGACTTCACCCAGCTCGTCGACGAGGTGTTCGGCCGGGCCTACGGGCGGACCCTCGTGCGCGAGCAGGTGCTGCCCCGCCTCGGCGACCGGACGCCCGCCGAGGCGCTCGACGCCGGGACGGACCCCCGCGACGTGTGGCACGCCCTGTGCGACGCCCTGGACGTCCCGGACCGCGAGCGGTGGGGGACCGACGAGCACCGGCAGGCCCCGCCGCCGCGCTGAMLYSDFTQLVDEVFGRAYGRTLVREQVLPRLGDRTPAEALDAGTDPRDVWHALCDALDVPDRERWGTDEHRQAPPPRNANANANANA
AK018_002402295recA_1Protein RecAATGAGCAGCAGACCGAAGGCGCGCGGCCGCGCGCAGAACACGAAGGTGACCGACATGCCAGCACCGGAAGACCGTGAGAAGGCCCTCGAGGCCGCGCTCGCCCAGATCGACCGCAGCTTCGGCAAGGGCTCGGTCATGCGGCTCGGCCAGGAGGGGCGCGCCCCGGTGGACGTCATCCCCACCGGCTCCATCGCCCTCGACGTGGCCCTCGGCATCGGCGGCCTGCCCCGTGGCCGCGTGATCGAGGTCTACGGCCCCGAGTCCTCCGGCAAGACGACCGTCGCCCTGCACGCGGTCGCCAACGCCCAGAAGAACGGCGGCATTGCCGCCTTCGTCGACGCCGAGCACGCCCTGGATCCCGAGTACGCCAAGAAGCTCGGCGTGGACACCGACGCGCTGCTCGTCTCCCAGCCCGACACCGGTGAGCAGGCCCTGGAGATCGCGGACATGCTGATCCGCTCGGGCGCGCTCGACATCATCGTCATCGACTCCGTCGCCGCCCTGGTGCCCAAGGCGGAGATCGAGGGCGAGATGGGTGACAGCCACGTCGGTCTGCAGGCGCGTCTGATGTCGCAGGCGCTGCGCAAGATCGCCGGTGCGCTGAGCTCGTCGGGCACCACGGCGATCTTCATCAACCAGCTCCGCGAGAAGATCGGCGTGTTCTTCGGGTGCTTCCACTACTCCACGCGTGTCCAGCTGGCCGACGGTACGACGGAGAAGATCGGCAAGATCGTGAACCAGAAGATGCCGGTCGAGGTCATGTCCTACGACCCGGACTCGGGACAGGTCGTGCCGCGCAAGGTCGTCAACTGGTTCGACAACGGCCCGACGGACCACTTCCTGCAGTTCACGGTGGAGAAGTCGGGGAAGAACGGCCGGGCGCAGTTCGCCGCGACCGAGAACCACCTGATCCGGACGCCCGGTGGCTGGCGCGAGGCCGGCGAGCTCATGGCCGGCGACCGGGTGATGGTGGCCGAGGACGTGCTGCTGTCCGACCAGCAGTGGCAGATGGTGCTCGGCGGTCTGCTCGGCGACGCGAACCTGTCCCCGAACACCCGCGGACGTCGCGGGGTCCGCTTCCGGATGGGGCACGGGCCCCGTCAGGTCGAGTACGTCGACTGGAAGGCGTCGATGCTCGGCAACGTCGGGCAGTCACGGACGGAGCGCCCGGACGGTTCGGTGCACGTGGACCTGCGGCCGCTGCCCGAGCTGGCCGAGCTGCACGACGTCGTCTACTTCGGTGACGGCAAGAAGCACATCACCGAGGACTACCTCAAGGCGCTGACCCCGCTGGCGCTGGCCGTCTGGTACATGGACGACTTCAGCTTCCAGCCGCGGTCGAAGGGCCTGCAGGAGCGTACCGCCGGGGGCTCGGGCCGTGCCGAGGCCTGCGTCGACGCCATGAGCCCGGGATCGCGGGAGCGCCTGGCCGACTACCTGCGCGACGTCCACGGCGTCGAGTGCTCCCTGCGTCAGCGCGGGGAGAGGCAGCAGTGGGTCCTGCAGCTCACGACGGCCGGTACCGCGCGGCTGCAGGAGATCGTCGCGCCCTACGTCCACCCGTCGATGCAGGACAAGCTGCTGCCCCGGTTCCAGGACCGTTTCGACGTCACGCCCGAGTTCGTCGAGCCGCGCAGCGTGCCGGTGCCGTCACGGGTCCTGGACATCCACGTCAAGCCGGAGAGCCGGGCGACGCACCGGTTCGACATCGAGGTGGAGGGCAACCACAACTACTTCGTCGACGGCGTCATGGTGCACAACAGCCCCGAGACGACGACCGGTGGTAAGGCGCTGAAGTTCTACGCCTCGGTCCGCATGGACATCCGACGGATCGAGACCCTCAAGGAGGGCACCGACTCGGTCGGCAACCGCACCCGCGTCAAGGTCGTCAAGAACAAGATGGCGCCCCCGTTCAAGCAGGCCGAGTTCGACATCCTCTACGGGGTCGGGATCTCCCGCGAGGGCGGTCTGATCGACATGGGTGTCGAGCACGGGTTCGTGCGCAAGTCCGGGTCGTGGTTCACCTACGGCGGGGACCAGCTCGGTCAAGGCAAGGAGAACGCTCGCTCGTTCCTGCGGGACAACCCGGACCTGGCGAACGAGCTGGAGAAGAAGATCAAGGAGAAGCTCGGCGTCGGCCCGCAGGTGGACGCCCCGGCCGACGGTGACGCCCCCGCGGGCGAGACCGCAACGGCCGGCGCGGCCGACGCGGCCGACGAGAAGGCGCCGGCGAAGGCGCCCGCGGCGAGCAAGAGCGCGGGCCGGACGGCCGCGAAGAAGAAGGCGCCGTTCTGAMSSRPKARGRAQNTKVTDMPAPEDREKALEAALAQIDRSFGKGSVMRLGQEGRAPVDVIPTGSIALDVALGIGGLPRGRVIEVYGPESSGKTTVALHAVANAQKNGGIAAFVDAEHALDPEYAKKLGVDTDALLVSQPDTGEQALEIADMLIRSGALDIIVIDSVAALVPKAEIEGEMGDSHVGLQARLMSQALRKIAGALSSSGTTAIFINQLREKIGVFFGCFHYSTRVQLADGTTEKIGKIVNQKMPVEVMSYDPDSGQVVPRKVVNWFDNGPTDHFLQFTVEKSGKNGRAQFAATENHLIRTPGGWREAGELMAGDRVMVAEDVLLSDQQWQMVLGGLLGDANLSPNTRGRRGVRFRMGHGPRQVEYVDWKASMLGNVGQSRTERPDGSVHVDLRPLPELAELHDVVYFGDGKKHITEDYLKALTPLALAVWYMDDFSFQPRSKGLQERTAGGSGRAEACVDAMSPGSRERLADYLRDVHGVECSLRQRGERQQWVLQLTTAGTARLQEIVAPYVHPSMQDKLLPRFQDRFDVTPEFVEPRSVPVPSRVLDIHVKPESRATHRFDIEVEGNHNYFVDGVMVHNSPETTTGGKALKFYASVRMDIRRIETLKEGTDSVGNRTRVKVVKNKMAPPFKQAEFDILYGVGISREGGLIDMGVEHGFVRKSGSWFTYGGDQLGQGKENARSFLRDNPDLANELEKKIKEKLGVGPQVDAPADGDAPAGETATAGAADAADEKAPAKAPAASKSAGRTAAKKKAPFPGPT0007235_10DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0007235-recA-K03553NANA
AK018_00241618recX_1COG2137Regulatory protein RecXGTGGGGGGGGGGGGGGCGGGGGGGGCGGGGGGGGCCCCCCCCGCCCCCCGCCCCCCCCCCCCCCCCCCCCCGACCGTCGTCGAGAGGCTCGAGGCCGGAGAGCTCTCCCGCGACGAGGCCACGGAGCTGACGCGGGAGGCCGTCCTGCGCACGCTCACCGCCGCACCGAAGAGCCGGGTCGAGCTGGCACGGTCCCTCGCGCGCAAGGGGTACCCGGAGGAGCTGGCGGAGCAGGTGCTGGACCGCCTCGAGGACGTCCACCTCGTCGACGACGCCGCGTACGCCGAGATGATCGTGCGGACCCGGCACGCGGAGCGTGGACAGGCTCGGCGGGCGATCTCCGCCGAGCTGCACCGCCGGGGCGTCGACACCGAGACGGCGGCCACCGCGCTCGACCAGATCGACGGCGACGACGAGCGCGTCGCCGCGGCCGAGCTGGCCCGCAAGCACGTCGCGCGCACGCGCGGGCTGGACCGGGACAAGCGCGTCCGGCGTGCCGTGGGGGCGCTGAGCCGCAAGGGGCACAACCCCTCGGTCGCCTTCGCCGCGGTCAAGGAGGCACTGGCCGTCGAGGGCGAGAGTGACGACCTGGACGACGTGGTGGCGTTCGACGACTAGMGGGGAGGAGGAPPAPRPPPPPPPTVVERLEAGELSRDEATELTREAVLRTLTAAPKSRVELARSLARKGYPEELAEQVLDRLEDVHLVDDAAYAEMIVRTRHAERGQARRAISAELHRRGVDTETAATALDQIDGDDERVAAAELARKHVARTRGLDRDKRVRRAVGALSRKGHNPSVAFAAVKEALAVEGESDDLDDVVAFDDPGPT0007240_1471DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007240-recX-K03565NANA
AK018_002429512-haloacrylate reductaseATGCGCGCAGCCGTGCACGACCGGTACGGGCCGCCCGAGGTGGTGCGCGTCGAGGAGGTTCCCGATCCCTCGCCGGGTCCCGGTGAGATCCTCGTCCGGATCCGCGCGACGACCGTGAACCGCACCGACACCGCGTACCGTGCGGGCCGCCCCTGGTTCGCCCGGGCGATGTACGGGCCGCGGCGCCCGCGGGCGCGGGTGCTGGGGTGCGAGTACGCGGGCACGGTGGAGGCCGTCGGGGACGGCGTCCGCGGCCGTGCGGTGGGGGACCGCGTCTACGGCTACGTCGAAGGTCCCTTCGGGGCGCACGCCGAGCTGATGACGGTCCGCAGCGACGGCTGGGTCGAGACGATCCCCGACCACCTCTCCTTCGCGCAGGCGGCCACGGTGACCGAGGGTCCGCACTACGCCTGGGCGTTCTGCGAGCGGCTGCAGGTCGGCCCGGGCACGGACGTGCTCGTGCACGGCGCGACCGGGGCGATCGGGTCTGCCGCCGTCCAGCTCGCGGCGTCCTGCGGGGCGACGGTGACGGCGGTGTGCGACGCCGAGCACGCTGACCTCGTGCGGAGCCTGGGTGCCGACCGGGTGATCGCGCGGGACGAGGGGGACTTCACCCGCGACGCCGCTCGCTTCGACGTCGTCATGGACGCCGTGGGAAAGAGCTCCTTCGCCCGGTGCCGACGCCTCCTGCGGCCGCACGGGGTGTACGCCTCGTCGGAGCTCGGTCCCGGCGGCGTCAACCTCCTGCTTGCGCTGGCGCCGTGGGCCCGGGTGCGGTTCCCGGCACCTGTCCCGGACGGACCCACGCGCCGCGTGCTGCACGAGCTGGTCACGGCCGGACGGCTCGTCCCGGTCGTCGATCGGCACTACACGCTGGAGGACATCACGGCGGCGCACCGGTACGTCGACTCCGGCCGCAAGGTGGGCAGCGTCGTCGTCGACGTCTCCTGAMRAAVHDRYGPPEVVRVEEVPDPSPGPGEILVRIRATTVNRTDTAYRAGRPWFARAMYGPRRPRARVLGCEYAGTVEAVGDGVRGRAVGDRVYGYVEGPFGAHAELMTVRSDGWVETIPDHLSFAQAATVTEGPHYAWAFCERLQVGPGTDVLVHGATGAIGSAAVQLAASCGATVTAVCDAEHADLVRSLGADRVIARDEGDFTRDAARFDVVMDAVGKSSFARCRRLLRPHGVYASSELGPGGVNLLLALAPWARVRFPAPVPDGPTRRVLHELVTAGRLVPVVDRHYTLEDITAAHRYVDSGRKVGSVVVDVSNANANANANA
AK018_00243948hypothetical proteinATGAGCGCCCAGACCGTCCTCTTCGACGCTCCCGGGCCCCGTGCCAAGCGCCGGATCCTGCTGGGCAACGTCATCGGTGCCGTCATCGTCGTCGGCATCGCGGCTCTCGTGCTCGCGCGGCTCGGCGACAAGGGCCAGCTCGATCCTGACCTGTGGCTCGCCGCCGTGGACGGCGACGCCTGGGCCTACTACTACTGGCCGGGGTTCCTGGCCACCATGCGCGCTGCAGCCGTGGCGATCGTCGGCGCCTTCGCCTTCGGCCTGCTCTTCGGTGTGGGCCGGCTCTCCGCGCTGCTGCCGGTCCGGGTGGTGTGCGGCGCCGTCGTGGAGTTCTTCCGCGCCGTGCCGGTGCTGCTCATGATGGTGTTCTTCTGGCTGCTGCTCGCCAACGCCGGTGTCGACGACTCGTCCTTCTGGGGGGTCGTCATCGGCCTGATCCTCTACAACGGGTCCGTCGTGGCGGAGCTGGTGCGGTCCGGCGTCCACGGCCTGCCCGCGGGTCAGCGCGAGGCCGCGCTGTCGACGGGACTGACGCGGGGTCAGTCGCTGCGGTCCGTCGAGGTCCCCCAGGCCCTCATCGCCATGCTGCCCGCGCTGCTCTCCCAGCTCGTGGTCGTGCTCAAGGACTCCGCCCTCGGCGCGATCATCACCTACCGCGAGCTCCTGCAGGAGGCCCGCCGCCTCGGCTCCGGCGAGGGCAACATCCTGCAGACCCTCGCCGTCGCCGCCGTACTGTTCATTCTCATCAACTGGAGCCTGACCAAGCTGGCGGAGCGGCTGGGCAGCTCCTTGCGGCGCACCTCGGGGCGGACCGGGACGATGGCCGCCGGACTGGACGCCGGTGTCGGGGTGGGCGCGACGGCCCAGGCCGCCGAGCGCCCGCACGGGGTCGACGAAGGACCCGACGCCGGTCCCGGGGACCCCGGCCGACCGGGACGGTGGACCTGAMSAQTVLFDAPGPRAKRRILLGNVIGAVIVVGIAALVLARLGDKGQLDPDLWLAAVDGDAWAYYYWPGFLATMRAAAVAIVGAFAFGLLFGVGRLSALLPVRVVCGAVVEFFRAVPVLLMMVFFWLLLANAGVDDSSFWGVVIGLILYNGSVVAELVRSGVHGLPAGQREAALSTGLTRGQSLRSVEVPQALIAMLPALLSQLVVVLKDSALGAIITYRELLQEARRLGSGEGNILQTLAVAAVLFILINWSLTKLAERLGSSLRRTSGRTGTMAAGLDAGVGVGATAQAAERPHGVDEGPDAGPGDPGRPGRWTPGPT0000780_71DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000780-gluD-K10007NANA
AK018_00244678glnM_1COG0765putative glutamine ABC transporter permease protein GlnMGTGGAGGAGTACCTCGACATCATCCGCCAGTACGACGTGCTGGGGGCGTTCTGGGTCAACATCCAGCTCGCCTTCTGGGCGGCGCTGCTCTCCCTGGCCCTCGGGTCGGTGCTGGCACTGTTCCGCATCTCCCCCATCGGGAGCCTGCAGTGGGCAGGGTCCGCGTACGTGACGATCCTGCGGAACACCCCGCTGACGATCATCATGGTGTTCATGGTCCTCGGGGCCTGGGGCCAGCTCGAGCTGACCCTGGCGACCGACTTCGACCTCAACTTCTTCTGGCTCGCGGTCGTGGGGCTGTCGATCTACCACGCGGCCTTCGTGTGCGAGGCGATCCGCTCCGGGGTCAACACGGTGCCGGTCGGGCAGGCCGAGGCCGCACGCTCCATCGGCCTGTCGTTCCTGCCCTCGGCCCGGCTGGTCATCCTGCCGCAGGCCTTCCGCGGCGCGATCGCCCCGCTCGGCAACGTCCTCATCGCCCTCATCAAGAACACCACGGTCGCCGCGGCCGCCTCGGTGGCGACCGAGACCTCCTCGGTGATGCGGACGATGATCGAGTTCCGGCCCGACTACATCTACGCGATCTTCTTCACCTTCGCGATCGGCTACGTGATCCTCGTGACCCCCGTCGGACTGCTGGCCACCTCGTTCTCGCGTCGACTGGCGGTGGCCCGATGAMEEYLDIIRQYDVLGAFWVNIQLAFWAALLSLALGSVLALFRISPIGSLQWAGSAYVTILRNTPLTIIMVFMVLGAWGQLELTLATDFDLNFFWLAVVGLSIYHAAFVCEAIRSGVNTVPVGQAEAARSIGLSFLPSARLVILPQAFRGAIAPLGNVLIALIKNTTVAAAASVATETSSVMRTMIEFRPDYIYAIFFTFAIGYVILVTPVGLLATSFSRRLAVARPGPT0000775_211DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000775-gluC-K10006NANA
AK018_00245894glnH_1COG0834ABC transporter glutamine-binding protein GlnHATGCGACGCACACGCACCACCGGGGTGATCGCCCTGGCCGCCACGGCCGCGCTCGCGCTGGCCGCCTGTTCCTCCGACGACGGCGGAGGGGACACCGACGCCGACGCCGGTAGCGAGACCACCGACACCATGGAGGAGGAGGAGGAAGGAGCCGGCGGCGAGGGCCTCACCATCGGCATCAAGTTCGACCAGCCCGGCCTCGGCTTCATGGACGGCGACACGCCGTCGGGCTTCGACGTCGACGTCGCCAAGTACGTCGCGAGCGAGCTCGGCTACTCCGAGGACCAGATCGAATGGGTCGAGGCCCCGTCCGCCCAGCGCGAGACGCTGCTGTCGACCGGCCAGGTCGACATGATCTTCGCCACCTACTCGATCACCGACGAGCGGCGCGAGCAGGTCTCCTACGCCGGCCCGTACTTCGTGGCCGGCCAGGACCTCCTCGTCGCGGCCGACAACACCGACATCACCGGGCCCGACACCCTGGACGGCAAGAACCTGTGCTCGGTCACCGGTTCGACGTCCGCCCAGCGCATCAAGGACGAGTACTCCGAGGGCGTCAACCTCCTCGAGCAGCCCGGGTACGCCGAGTGCGTCACCGCGCTCACCTCGGGGCAGGTCGACGCCGTGACCACCGACGACATCATCCTCGCCGGCCTGGGCGCCCAGCCCGCCAACGCCGGCCAGGTCAAGGTCGTGGGCAACACGTTCTCCGAGGAGCGCTACGGCGTCGGCATCCCGCAGGAGTCCGAGCAGTGCGAGGACATCAACGCGGCGCTGACGCAGATGATCGACGACGGCTCGTGGCAGGAGTACATCGACGCCGCCACCGAGGGCACCGGCTACACGCCGAACTCCGACCTGAACCCGCCGGAGTTCGACCCCTGCGACATGTGAMRRTRTTGVIALAATAALALAACSSDDGGGDTDADAGSETTDTMEEEEEGAGGEGLTIGIKFDQPGLGFMDGDTPSGFDVDVAKYVASELGYSEDQIEWVEAPSAQRETLLSTGQVDMIFATYSITDERREQVSYAGPYFVAGQDLLVAADNTDITGPDTLDGKNLCSVTGSTSAQRIKDEYSEGVNLLEQPGYAECVTALTSGQVDAVTTDDIILAGLGAQPANAGQVKVVGNTFSEERYGVGIPQESEQCEDINAALTQMIDDGSWQEYIDAATEGTGYTPNSDLNPPEFDPCDMPGPT0000770_570DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000770-gluB-K10005NANA
AK018_00246801glnQ_1Glutamine transport ATP-binding protein GlnQATGGATCACAGCGGAACGACTCCGGCGGGCGACCAGCACCCGCCGGCGGACGACTCGCACCTGGGCGCCCCGCTCGTCGAGCTCGACGCGGTCGACAAGTACTTCGGCGACCTGCACGTGCTGCAGGACATCAACCTGACGGTGCGCCGGGGCGAGGTGCTCGTCGTCATCGGCCCGTCGGGTTCGGGCAAGTCCACGCTGTGCCGTGCCATCAACCGGCTGGAGACGATCGACGGCGGCGACATCTCCATCGACGGGCAACCGCTGCCGGCCGAGGGCCGCCAGCTCGCCCGGCTGCGCGCCGACGTCGGCATGGTCTTCCAGGCGTTCAACCTCTTCGCGCACAAGACGGTGCTCGACAACGTCACGCTCGGCCCGCGCAAGGTCCGCGGGCTGAGCAAGTCCGACGCCGAGGCCGAGGCCCTGCAGCTCCTCGACCGGGTCGGGGTCAAGAACCAGGCCGCCAAGTTCCCTGCCCAGCTCTCCGGCGGGCAGCAGCAGCGCGTGGCGATCGCCCGCTCGCTGGCCATGCACCCCAAGGTGATGCTCTTCGACGAGCCGACGTCTGCCCTCGATCCCGAGATGATCAACGAGGTGCTCGACGTGATGGAGCAGCTCGCCAAGGAGGGCATGACGATGATCGTCGTCACGCACGAGATGGGGTTCGCCCGCAAGGCGGCCGACCGGGTGGTGTTCATGGCCGACGGCCAGATCGTCGAGGAGGCCACCCCCGAAGAGTTCTTCCACCACCCGCGCAGCGACCGCGCCAAGGATTTCCTGTCGAAGATCCTCACCCACTGAMDHSGTTPAGDQHPPADDSHLGAPLVELDAVDKYFGDLHVLQDINLTVRRGEVLVVIGPSGSGKSTLCRAINRLETIDGGDISIDGQPLPAEGRQLARLRADVGMVFQAFNLFAHKTVLDNVTLGPRKVRGLSKSDAEAEALQLLDRVGVKNQAAKFPAQLSGGQQQRVAIARSLAMHPKVMLFDEPTSALDPEMINEVLDVMEQLAKEGMTMIVVTHEMGFARKAADRVVFMADGQIVEEATPEEFFHHPRSDRAKDFLSKILTHPGPT0000785_218DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000785-gluA-K10008NANA
AK018_002471641miaB_1COG0621tRNA-2-methylthio-N(6)-dimethylallyladenosine synthaseATGTCCACCACCATGCCGTCACCCCGCGAGACCGTCACGCCCCCGCCCTCCGACGGGGCCGGCCGGACGTACACGGTCCGCACCCTGGGGTGCCAGATGAACGTCCACGACTCCGAGCACATGGCCGGGATGCTCGAGCAGGCCGGCTACACGCGGGCGTCGGCCGCCGACGAGGCGGCCAGCAACGCCGACGTGGTGGTCATCAACACCTGCGCCGTGCGCGAGAACGCCGCCACCCGCCTCTACGGCAACCTCGGCCAGCTCGCCGGGCTCAAGGCGGAACGACCGGGCATGCAGATCGCCGTCGGCGGCTGCCTCGCCCAGAAGGACCGCGGCGAGATCGTCGACAAGGCGCCCTGGGTCGACGTCGTGTTCGGCACCCACAACCTGGATGCCCTGCCGGTGCTCCTCGAGCGGGCGCGGCACAACGAGGCCGCCCAGGTCGAGATCGCCGAGTCCCTGCAGGTCTTCCCCTCCACGCTGCCGACCCGCCGCGAGTCGGTGTACGCCGGCTGGGTCTCCATCTCCGTGGGCTGCAACAACACCTGCACCTTCTGCATCGTCCCGCACCTGCGGGGCAAGGAGCGCGACCGCCGGCCGGGGGAGGTCCTCGCGGAGGTCCAGGCCCTGGTGGACGCCGGTGCCGTCGAGGTCACGCTGCTGGGCCAGAACGTCAACAGCTACGGCGTCGAGTTCGGTGACCGCGGAGCGTTCGCCAAGCTGCTGCGCGCCTGCGGGAGCATCGAGGGACTGGAGCGCGTGCGCTTCACCTCGCCCCACCCGGCCGCCTTCACCGACGACGTCATCGAGGCGATGGCCGAGACCCCGAACGTCATGCCGCAGCTGCACATGCCGCTGCAGTCCGGCTCGGACCGGGTCCTGCGCGCCATGCGCCGCAGCTACCGGTCGACCAAGTTCCTCGGCATCCTGGACCGCGTGCGCGCCGCGATGCCCGACGCCGCGATCACCACCGACATCATCGTCGGTTTCCCCGGGGAGACCGAGGAGGACTTCGCCGAGACGCTGCGCGTCGTCGAGGCGTCGCGATTCAGCTCGGCCTTCATGTTCCAGTACTCCCCGCGCCCCGGGACGCCGGCGGCGGAGATGGACGACCAGCTGCCCAAGGAGGTCGTCCAGGAGCGTTTCGACCGGCTGCTGGCGCTCCAGGAGCGGATCAGCGCCGAGGAGTCGGTGCGGCAGACCGGCCGGACCCTCGAGGTGCTCGTCTCGGAGGGCTCGGGGAAGAAGGACGGTGCCACCCACCGGCTGTCGGGCCGGGCCCCGGACAACCGCCTGGTCCACCTCGCGGTGCCGACCGGCGTGCTGCCCGAGGGCGGCCTGGCCGACCAGCCGGCCTCCCTCGACGACCCGCGGCTCGTCGACGTCGCCGACCTGGACCCGGCGCTCCCGCGCCCGGGGGACATGGTGACCGTCGAGGTCACGCGGGCGGCGCCGCACCACCTCATCGCCGACTCCGCGCTCGACGGCGGCACGTACGCGGTGCGGCGCACCCGGTCCGGCGACGCCTGGGTGCAGCGGGAGTCCGCCCGCCTCGGCGGCGGCCACGACGACCACTCCCACGGCGGCGGTGGCGAGCCCGGCGGCCCGGTCACCCTGGGGATGCCGACGCTGCGTCGTTGAMSTTMPSPRETVTPPPSDGAGRTYTVRTLGCQMNVHDSEHMAGMLEQAGYTRASAADEAASNADVVVINTCAVRENAATRLYGNLGQLAGLKAERPGMQIAVGGCLAQKDRGEIVDKAPWVDVVFGTHNLDALPVLLERARHNEAAQVEIAESLQVFPSTLPTRRESVYAGWVSISVGCNNTCTFCIVPHLRGKERDRRPGEVLAEVQALVDAGAVEVTLLGQNVNSYGVEFGDRGAFAKLLRACGSIEGLERVRFTSPHPAAFTDDVIEAMAETPNVMPQLHMPLQSGSDRVLRAMRRSYRSTKFLGILDRVRAAMPDAAITTDIIVGFPGETEEDFAETLRVVEASRFSSAFMFQYSPRPGTPAAEMDDQLPKEVVQERFDRLLALQERISAEESVRQTGRTLEVLVSEGSGKKDGATHRLSGRAPDNRLVHLAVPTGVLPEGGLADQPASLDDPRLVDVADLDPALPRPGDMVTVEVTRAAPHHLIADSALDGGTYAVRRTRSGDAWVQRESARLGGGHDDHSHGGGGEPGGPVTLGMPTLRRPGPT0007215_30DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007215-miaB-K06168NANA
AK018_00248510hypothetical proteinGTGAGCGGGCCGCTGCGACGAGCCGCGACGGCGGTGCTGCAGGTGGCGCGTCGTCGGCGCGCCGACGACACCGAGCCCCCGGCCGCACGCCCCACCCCGGTGACGGCCCGACGCATCGGCGCCGACCTCGCGCGTCGCGGCTACCGGTTCCGCACCGACGACGACGGCGACCTCACCGGGACGTGGGACGGCCACCGGTTCTGGTTCCTGCTGCTGGGCGACGCCGGGGAGATCCTCCAGGTCCGCGGACGCTGGTCGGGCACCGTGCCCGACTCGGCACGGCCGGCGGTGCTGCAGGCGTGCAACGACTGGAACCGCGAGCGCATCTGGCCGAAGGTCTACACCCGCCCCGAGGCCGGCGGCCTCGCCCTCTACGGCGAGGTGTCCGTCGACCTGGAGCACGGCGCGACCGACGAGCAGCTCGCCGAGACGCTGTCGTGCGGTCTGGTGACGACGTCCCAGTTCTTCTCGGGGCTCGGCGCCCTGGTCGGCCCGGAGGCCGAGGACTGAMSGPLRRAATAVLQVARRRRADDTEPPAARPTPVTARRIGADLARRGYRFRTDDDGDLTGTWDGHRFWFLLLGDAGEILQVRGRWSGTVPDSARPAVLQACNDWNRERIWPKVYTRPEAGGLALYGEVSVDLEHGATDEQLAETLSCGLVTTSQFFSGLGALVGPEAEDNANANANANA
AK018_00249576hypothetical proteinGTGGGTGCTGTGAGGTTCTTCGGGTCGCGCCGGATCGCCAGATCGTCAGCCGCATCGCGTGAGGAGCCCCTCGACGCGGATCTGTTGCGCAGCGACGTCGAGAACGTGCTGCTGGCCGGGCCGGTCGGGCAGCTCGCCGGGGCGACCCCCCGCCCGGTGACGCGGGAGCGGGTCAGCGCCTGGCTGGACTCCTCGGGGTTCACCTACGCCGTCGACAACGACGGCGACCCGGGCGGCATCTGGCACGGACGGCAGTTCTCCTTCCTCGTGCTGGGCGACGAGGGCGAGGTCCTGCAGGTGCGCGGCCAGTGGCACCGCCAGGCCACCATCGAACGGCTCGGGGAGATCCTCGACGTGTGCAACGCCTGGAACGCCGAGCGCATCTGGCCGACGACGTACGCGCGGGTGCGCGACGACGGCGCGGTCGTGGTCTGCGCCGAGGTCACCACGAGCCTCGAGCACGGCGCCACCGACGACCAGCTCGGCCAGCTCCTGGAGTGCGGGCTGTCGACCGGGGTGATGTTCTTCGAGCACCTGGACTCGGTGTTCCCGGACCCGCTGCAGGTGGCACCGTGAMGAVRFFGSRRIARSSAASREEPLDADLLRSDVENVLLAGPVGQLAGATPRPVTRERVSAWLDSSGFTYAVDNDGDPGGIWHGRQFSFLVLGDEGEVLQVRGQWHRQATIERLGEILDVCNAWNAERIWPTTYARVRDDGAVVVCAEVTTSLEHGATDDQLGQLLECGLSTGVMFFEHLDSVFPDPLQVAPNANANANANA
AK018_00250597hypothetical proteinGTGCCCGCTCGTGCCGTCGTCCTGCCCGCGACCCCGCTCCTGGTCCCCGGTGCCGCCGGGACGGCACGGCCCCTGGACGACCTGCGTGCCGCCGTCGCGGACGCCCTGGCCGCCGTCCGGACCCCGCACGGAGCCGTCCCGCAGCGCTGGGGGGTGCTCGCGCCCGGTCCGCGCACCACCGCCGGCGCCCGGCGGGCCTCCCTCGCCGCGGCCGGCGTCCACGACCGCTGGCTGCCTGGTCCCCCCACGGGCGTCACGCTCCCGGCGGCACACCTTCCCGCCTCGGTGGCGCTGCTCGTCCTGGCCCGCGCGCTGGGCGACGACGCCGCGGCCGGGGCGCACGTCGTCGAGGTCGCCGACGACGATCCCGGGGCCGTGCGCGTCGGCCTGCGCGAGCTCGCCGGCGTCGACGCCCTCGTCGTGGCCGGCGGTGCCCCCGCCGACCCGGCGGCCGGACCCACGGCCTGCACGACGGCGGTCGCGGGCGTCCTGGCCGGGCTCGCGGACCGCGGCGGCTGGTCGGCGACCACCCGGACCGTCGCCGCGTCCGGGGACCACCTGCCGGGTGCCTACGACGTCGTGACCTGGGCCGGCTGAMPARAVVLPATPLLVPGAAGTARPLDDLRAAVADALAAVRTPHGAVPQRWGVLAPGPRTTAGARRASLAAAGVHDRWLPGPPTGVTLPAAHLPASVALLVLARALGDDAAAGAHVVEVADDDPGAVRVGLRELAGVDALVVAGGAPADPAAGPTACTTAVAGVLAGLADRGGWSATTRTVAASGDHLPGAYDVVTWAGNANANANANA
AK018_00251468hypothetical proteinGTGCTGCTGCTGTCCGTGCTCGCCGTGAGCCTGCTGTCCGGGCTCGTCCCGGTGGTCAGCATCGAGGTGTACCTCGGGGGCGTGGCGGCGGTGACGGACGCGGCGTCGGACCCGGTCCGGGTGGCGCTGATCGCTCTCGTGGCCGGGATCGGCCAGACCGTGTCCAAGGTGGTGTGGTACCTCGGCGCGGCCCGGTCGATGGAGACGCGGTGGGTGCGCGAGAAGCTGGCCGTCAAGCGGCGCCGCGAGACCTTCGACCGGTGGCAGGACCGCATCCAGGGCCGGCCCTGGCTCAGCGCCGCGGTGCTCCTCGCGTCGGCCTCGGCGGGCTTCCCGCCGCTGATGATCATGGCCGTCGTGGCCGGCTCGCTGCGGGTGCCCATGGCCGTCTACGTCCCGACCCTCCTGGTCGGCCGGACGGTGCGGTTCTGGCTGCTGCTCGCCGGCATCGGCTGGTTCGCCGCGTGAMLLLSVLAVSLLSGLVPVVSIEVYLGGVAAVTDAASDPVRVALIALVAGIGQTVSKVVWYLGAARSMETRWVREKLAVKRRRETFDRWQDRIQGRPWLSAAVLLASASAGFPPLMIMAVVAGSLRVPMAVYVPTLLVGRTVRFWLLLAGIGWFAANANANANANA
AK018_00252984miaA_1COG0324tRNA dimethylallyltransferaseGTGATCGTCGCCGTCGTGGGACCCACCGCCACCGGGAAGTCGGACCTCGCCCTGGACCTCGCCGAGGCGCTGTCCGGACCGCGGGCACCGGCCGAGATCGTCAACGCCGACGCCTTCCAGCTCTACCGCGGCATGGACGTCGGCACCGCCAAGGTGCCGCCGGCCGAGCGCCGGGGGATCGTCCACCACCAGCTCGACGTGCTGGACCCCACCCAGGACGCCTCCGTGGCGCACTACCAGGCCGCGGCCCGCGCGGACCTCGACGCGATCGCGGCCCGCGACGCCCGCGCCGTCGTCGTCGGCGGCTCCGGGCTCTACGTGCGCGCACTGCTGGACGAGATGAACTTCCCGGGCACCGACCCGCAGGTGCGCGCCCGCCTCGAGGAGCGCGCCGAGACCGAGGGACGCCGCGCGCTGCACGCCGAGCTGGCGCGCCGCGACCCCGACGCCGCCGCGTCCATCGGCCCGGAGAACACCCGGCGCCTCGTGCGCGCGCTGGAGGTGATCGAGATCACCGGGCAGCCGTTCACCGCCAACCTGCCCCGCCAGGAGTACGTGCGTCCGGCCGTCCAGATCGGTCTCGACTGCGACCGCCCCACGCTCGACGCCCGGGTCGCCGGCCGGGTGGACCGGATGTGGTCCGCCGGGCTCGTCGACGAGGTGCGGTCGCTGGCCTCGCCCGCGCAGGGCGGGACCGGTGCCGGCCTCGGCACGACGGCGGCGCGCGCCGTGGGGTACGCCGAGCTGCTGCGCTGGTTCGCGGGCGACCTGAGCGAGGACGCCGCGCGCGAGGCCGTGGTGACCGACACCCGGCGGCTCGCGCGCAAGCAGATGGGATGGTTCGGCCGCGACCCCCGGGTGCAGTGGCTCGACGCCGGGTCGCCGACCCTGCTCGCCGACGCCCTCGCCGTGGTCCGGGCGGCCGACGCGGAGACCCTCCCGGCGCCGGAGGACCGACCCGTCCGCCGTAGTCTGGGCTCATGAMIVAVVGPTATGKSDLALDLAEALSGPRAPAEIVNADAFQLYRGMDVGTAKVPPAERRGIVHHQLDVLDPTQDASVAHYQAAARADLDAIAARDARAVVVGGSGLYVRALLDEMNFPGTDPQVRARLEERAETEGRRALHAELARRDPDAAASIGPENTRRLVRALEVIEITGQPFTANLPRQEYVRPAVQIGLDCDRPTLDARVAGRVDRMWSAGLVDEVRSLASPAQGGTGAGLGTTAARAVGYAELLRWFAGDLSEDAAREAVVTDTRRLARKQMGWFGRDPRVQWLDAGSPTLLADALAVVRAADAETLPAPEDRPVRRSLGSPGPT0007210_1173DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0007210-miaA|ipt-K00791NANA
AK018_00253933dapF_1COG0253Diaminopimelate epimeraseATGACCGTACGTTTCACCAAGGGGCACGGCACGCAGAACGACTTCGTGCTCGTCGCCGACACCCGCGGCGACATGGACCTCACGGCCGAGCAGGTGCGGCGCCTCGCGGATCGGCGCAGCGGCATCGGCGCCGACGGCGTCATCCGGCTCGCGCCGACGGCCGCGGTCGCGCAGGCGGGCGAGCAGGTGGCCGACGACGTGCTCGCCGCCGCGCCGGAGGCCATCTGGTTCATGGACTACCGCAACGGTGACGGCAGCCCGGCCGAGATGTGCGGCAACGGCGTGCGGGTCTTCACCGCGTTCGCCGAGAGCCTGGGGCTCGCCGACCTGTCCGACGGCGCCGAGCTGGTGCTGGGCACCCGCGGGGGCGTCAAGCGGGTCCGTCGCGAGCAGAACGGCTGGTACGCCGTCGACATGGGGCCGTGGTCCCTCACCGGGGGCGACGGCGCGGCCGCGGCCGGAGCCGACGCCATGGTGCTCGCGGCGGGCTGGGACGCCCCGCGTCCGGCGCTGAGCCTCGACCTGGGCAACCCGCACACGGTGGTGGCGCTGTCCGACGGCGCCGAGCTCGACGCGCTGGACCTCACCCGGGCCCCGGCCGTCGAACCCGTCCCGCCGCACGGCACCAACGTCGAGCTCGTCGTCCCGCTCGGGGAGGAGGCCGGTCCCGAGGGGCGGCCCGTCGGGCGGATCCGCATGCGGGTGCACGAGCGCGGCGTCGGCGAGACGCGGTCGTGCGGCACCGGCGCGTGCGCGGCGGCGCTCGCGGTGCGCACCTGGGCGGCGCACGGCGTGGACGACCCTCACGGGGTGCCGTCGACCTGGTTCGTCGAGGTGCCCGGCGGCGAGGTCCGCGTCCGGCTGCTGCACGGCGGGCACGTGGAGCTCGCCGGACCCGCCGAGCTCGTCTTCAGCGGCGAGATCGACCTGTAGMTVRFTKGHGTQNDFVLVADTRGDMDLTAEQVRRLADRRSGIGADGVIRLAPTAAVAQAGEQVADDVLAAAPEAIWFMDYRNGDGSPAEMCGNGVRVFTAFAESLGLADLSDGAELVLGTRGGVKRVRREQNGWYAVDMGPWSLTGGDGAAAAGADAMVLAAGWDAPRPALSLDLGNPHTVVALSDGAELDALDLTRAPAVEPVPPHGTNVELVVPLGEEAGPEGRPVGRIRMRVHERGVGETRSCGTGACAAALAVRTWAAHGVDDPHGVPSTWFVEVPGGEVRVRLLHGGHVELAGPAELVFSGEIDLPGPT0007230_576DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778NANA
AK018_00254609rsmC_1Ribosomal RNA small subunit methyltransferase CGTGAGCGACCACTACTTCACGGCCCGCCCGGCGTCCGACGACGAGCGTCGCACCCTCGACGTGCGGCTCCCCGGACGCGAGGCGACCGTCGAGGTCGCCGCCGGCATCTTCTCCCCCGGCGGGGTCGACAAGGGCACCCGGATCCTGCTCGACGAGGTGCCCGCCCCGCCGGCGGGCGACCTGCTGGACCTCGGGTGCGGCTGGGGCCCGATCACGCTCACGGCGGCGCTGGAGAACCCGGCGACGACGGTCTGGGCCGTCGACGTCAACGAGCGCGCGCTGGACCTGGTGCGCCGCAACGCCGACCGGCTCGGGGTCTCCGACCGGGTCCGGGCGGTGACGCCGGAGGGGGTGCCCGACGACGTCAGGTTCGCCGCGATCTGGTCGAACCCGCCGATCCGCGTGGGCAAGCAGGTGCTGCACGACATGCTGCGACGCTGGCTGCCGCGGCTGGCGGACCCCGCACCGACGGGCGGGGGCGCCTGGCTGGTGGTGCAGAAGAACCTGGGAGCCGACTCCCTGGCCCGGTGGATCGAGGCCGAGCTCGGGCAGCCCACGCGGCGCGCGGCCTCGTCGAAGGGCTTCCGCATCCTGCACGTGACGCGCTGAMSDHYFTARPASDDERRTLDVRLPGREATVEVAAGIFSPGGVDKGTRILLDEVPAPPAGDLLDLGCGWGPITLTAALENPATTVWAVDVNERALDLVRRNADRLGVSDRVRAVTPEGVPDDVRFAAIWSNPPIRVGKQVLHDMLRRWLPRLADPAPTGGGAWLVVQKNLGADSLARWIEAELGQPTRRAASSKGFRILHVTRNANANANANA
AK018_002551602hflX_1GTPase HflXATGCGCTTCGTCGGGACGAAACCGCGTGGGATCCTTGTTGTACCCGGCGAACCCACCGAGAGGACCGACTTGACCCACACCCCCACCGACCCCGAGCAGACCGCGACGGGCGCCGAGGCCACCGAGGAGCCCCGGGACGCGCAGTCGATCGCCCACGACGTGGTCGCACGCGTCCTCGCGAGAGCCGGGACGGCGCGGGCCGAGGGCGGGACCGTGCACTCCGCGTACGACGGCGACCAGCTCGACCTGGCCGAGCGCTCGGCGCTGCGTCGCGTCTCCGGGCTGTCCACCGAGCTCGACGACGTCACCGAGGTCGAGTACCGCCAGCTCCGGCTGGAGAAGGTCGTCCTCGTCGGCCTGCACTCCGGGGGCGAGGTCGCCTCCCGCGACGCCGAGATCTCGCTGCGCGAGCTCGCCGCGCTCGCCGAGACCGCCGGCTCCCAGGTGCTCGACGGCCTGCTCCAGAAGCGCGCCAACCCCGACCCGGGCACCTATCTGGGTTCCGGCAAGGCGGCCGAGCTCGCCGACATGGTCGCCGCCAGCGGTGCCGACACCGTCGTCGTCGACTCCGAGCTCGCCCCGTCCCAGCGTCGCGCGCTGGAGGACGTCGTCAAGGTGAAGGTCGTCGACCGCACCGCACTGATCCTGGACATCTTCGCCCAGCACGCCAAGTCGCGGGAGGGCAAGGCGCAGGTCGAGCTCGCCCAGCTCGAGTACCTGCTGCCGCGCCTGCGCGGCTGGGGCGAGTCGATGTCCCGGCAGGCCGGCGGCCAGGTCGGCGGCGCAAGCGCCGGCATGGGCTCGCGCGGTCCCGGCGAGACGAAGATCGAGCTCGACCGCCGCCGGATCCGCAACCGCATGGCCAAGCTGCGCCGCGAGATCGCCGCGATGGCGCCCGCCCGGGAGACCAAGCGCCTCGAGCGTCGTCGTCACGCGGTGCCGAACGTCGCGATCGCCGGGTACACCAACGCCGGGAAGTCCTCGCTGCTCAACGTCCTCACCGACGCCGGGGTGCTGGTCGAGAACGCCCTGTTCGCGACGCTCGACGCCACGGTGCGGCGCGCCCGCACCGAGGACGGCCGCCTGTACACGCTCGCCGACACCGTCGGGTTCGTGCGGCACCTGCCGCACCAGCTCGTCGAGGCGTTCCGGTCCACCCTCGAGGAGGTCGGCGACGCGGCGCTGCTGCTGCACGTCGTCGACGCCTCCCACCCCGACCCCGAGGGGCAGATCGACGCCGTCCGCGAGGTGCTGTCCGACATCCCCGGGGTGGAGGACGTCCCCGAGATCGTCGTGCTGAACAAGGCCGACCTCGCCGACCCCGTCACCGTGGGACGGATCCAGCGCCGCGAACGGCGCACCGCCGTCGTCTCGGCGCACTCCGGCGAGGGGATCGCCGAGCTCAAGGCGCTGATCGCCGACGCGCTGCCGCGCCCGGCCGTGGAGATCGACCTGGTCGTGCCGTACTCGCGCGGCGACCTCGTGCACCGGGTCCACGAGCACGGCGAGCTCGCCGACGAGGAGTACCTCGCCGAGGGCACGCGCCTGCGCGGACGGGTCGACGCGGCGCTCGCGGCCGAGCTGGACGCCGCGGCCGTCTGAMRFVGTKPRGILVVPGEPTERTDLTHTPTDPEQTATGAEATEEPRDAQSIAHDVVARVLARAGTARAEGGTVHSAYDGDQLDLAERSALRRVSGLSTELDDVTEVEYRQLRLEKVVLVGLHSGGEVASRDAEISLRELAALAETAGSQVLDGLLQKRANPDPGTYLGSGKAAELADMVAASGADTVVVDSELAPSQRRALEDVVKVKVVDRTALILDIFAQHAKSREGKAQVELAQLEYLLPRLRGWGESMSRQAGGQVGGASAGMGSRGPGETKIELDRRRIRNRMAKLRREIAAMAPARETKRLERRRHAVPNVAIAGYTNAGKSSLLNVLTDAGVLVENALFATLDATVRRARTEDGRLYTLADTVGFVRHLPHQLVEAFRSTLEEVGDAALLLHVVDASHPDPEGQIDAVREVLSDIPGVEDVPEIVVLNKADLADPVTVGRIQRRERRTAVVSAHSGEGIAELKALIADALPRPAVEIDLVVPYSRGDLVHRVHEHGELADEEYLAEGTRLRGRVDAALAAELDAAAVPGPT0007245_630DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007245-hflX-K03665NANA
AK018_002562037dinG_1COG1199putative ATP-dependent helicase DinGGTGACCTCGTCCGACCCCGCCGCCGCACCCGACGTCTCGACGCTGCTCGACCGCGCGGTCGGGGCCCTCGGCGGCAGCCCGCGCGCGGGCCAGCGGGAGATGGCCTCGGAGGTCGCGCGGGCCATCGACGACGGGCGGCACCTGCTCGTGCAGGCCGGCACCGGCACCGGCAAGTCCCTGGGCTATCTCGTGCCCGCCGTGCGCCACGCGGTGACGCAGGAGGAGCGGGTCGTGGTGTCGACCGCCACGCTCGCCCTGCAGCGCCAGGTCATCACCCGGGACCTGCCCCTGGTGGCCGACGCGGTGGCGCCGGCCTTGCCGCGGCCGCCGCGGGTCGCCCTGCTCAAGGGGTGGCACAACTACCTGTGCCGGCACAAGATCACCGGCGGCTACCCGACGGACGACGCCACGCTGTTCGACCTGCCGCCCGACCCCGGCCCGGGCGAGGGGGCGGCCGCCGAGCAGCACCCGGCCACCCCGCGCGGCGGGGACGCGGCGTCGGACCGGCTGGCCGACCAGGTGCGTCGGCTGCACACCTGGGCCGAGGAGACCGACACCGGAGACCGGGACGACCTGGTCCCCGGCGTCCCGGACCGTGCCTGGCGGCAGGTGTCGGTCACCTCCCTGGAGTGCCTCGGTCAGCGGTGCCCGGTCTTCGACGAGTGCTTCGCCGAGCAGGCGCGCGCCACCGCCCGCGAGGCCGACGTCGTGGTCACCAACCACGCCATGCTGGGGATCGCCGCGTCCGGGAACCAGCACGTCCTGCCGGAGCACGACGTGCTGGTGGTCGACGAGGCCCACGAGCTCGCCGACCGCATCACCTCCGCCGCGACGGTCGACCTGTCGGCCGGCACGGTCGAGCACGCGGCCCGGCTCGCCCGCCGGCACGGCGGCCGGACCACGGACGACCTCGACGCCGCCGCCCAGGGCCTGGCGCAGGTGCTCGCCACGGTCCCGGCCGAGCGGTACCCCCAGGGGCTGCCGGAGTCGTTGCACACCGCTGTGTCGGCGGTGCGGGACGCCGCCCGCGGCCTGCTCGCCGAGCTGCGGCCGGAGCCCGGTGCCGAGCCCGACGCCGGCATCCGTATGGCGCAGTCGGCGATCCAGCAGCTCTTCGACGTGGCCGAACGCATGGCGGCCGAGGACACGAGCGACGACGTCCTGTGGTGCTCCCGCCCGCCCGCCGACGCGCCCTGGGGCGACGGGGTCGCCCGGCTGCACGCCGCGCCGCTGGCGGTCGCGGGGCTGATCAGCTCCCAGCTGCTCACCGAGCGCACCGGTGTCCTGACCTCGGCCACGCTGACGCTGGGCGGCAGCTTCGACCCGCTGGCGCGGTCCCTCGGGCTCGCCGCCTCGACGGGCGACGACGACGGCGACTGGCGCGGGATCGACGTCGGCAGCCCGTTCGACTACCGCCGCCAGGGCATCTGCTACGTGGCCAAGCACCTGCCCGCGCCCGGTCGCGAACCCACCACCGAGGCGCAGCTCGACGAGATCGCCGGCCTGATCGAGGCGGCCGGCGGGCGCACGCTGGGGCTGTTCTCCTCCCGCCGCGCCGCGACGGCCGCGGCCGAGGCGATGCGCGAGCGGCTGGACGTCCCGGTGCTGTGCCAGGGCGATGACCAGCTGCCGAGCCTGGTGGCGCAGTTCGCGGCCGATCCGGCGACGTGCCTGTTCGGCACGCTGTCGTTGTGGCAGGGGGTGGACGTGCCGGGGGACGCCTGTCGGCTGGTCCTCATCGACCGGGTACCGTTCCCGCGCCCCGACGACCCCGTCAAGGCGGCCCGTGCTCGCGCGGTCGAGCAGGCCGGCGGCAACGGGTTCATGCAGGTCGCCGCGACGCACGCCGCGCTGCTGCTGGCGCAGGGCGCCGGTCGGCTCATCCGCTCCCAGGAGGACAAGGGCGTCGTGGCGGTCCTGGACCCCCGCCTCGTCACGGCCCGGTACGGATCCTTCCTCACCCGTTCCCTGCCCGACTTCTGGCGGACCACCGACCAGGATCTGGTCCGCGGTGCACTGCGGCGGCTCGACACATAGMTSSDPAAAPDVSTLLDRAVGALGGSPRAGQREMASEVARAIDDGRHLLVQAGTGTGKSLGYLVPAVRHAVTQEERVVVSTATLALQRQVITRDLPLVADAVAPALPRPPRVALLKGWHNYLCRHKITGGYPTDDATLFDLPPDPGPGEGAAAEQHPATPRGGDAASDRLADQVRRLHTWAEETDTGDRDDLVPGVPDRAWRQVSVTSLECLGQRCPVFDECFAEQARATAREADVVVTNHAMLGIAASGNQHVLPEHDVLVVDEAHELADRITSAATVDLSAGTVEHAARLARRHGGRTTDDLDAAAQGLAQVLATVPAERYPQGLPESLHTAVSAVRDAARGLLAELRPEPGAEPDAGIRMAQSAIQQLFDVAERMAAEDTSDDVLWCSRPPADAPWGDGVARLHAAPLAVAGLISSQLLTERTGVLTSATLTLGGSFDPLARSLGLAASTGDDDGDWRGIDVGSPFDYRRQGICYVAKHLPAPGREPTTEAQLDEIAGLIEAAGGRTLGLFSSRRAATAAAEAMRERLDVPVLCQGDDQLPSLVAQFAADPATCLFGTLSLWQGVDVPGDACRLVLIDRVPFPRPDDPVKAARARAVEQAGGNGFMQVAATHAALLLAQGAGRLIRSQEDKGVVAVLDPRLVTARYGSFLTRSLPDFWRTTDQDLVRGALRRLDTNANANANANA
AK018_00257996ldh2_1COG0039L-lactate dehydrogenase 2GTGCACTGCGGCGGCTCGACACATAGTCTGTCCTGCGTGAACGCACTCCGCAGCACGACCAAGCTCGCCGTGGTCGGCGCCGGATCCGTCGGCGCCACCCTCGCCTACGCCGCGCTGGCGCGCGGTACCGCGCGGACCGTCGCGCTGATGGACGTCAACAAGTCCAAGGTCGACGCCGAAGTGCTCGACCTGCAGCACGGCGGCATGTTCGTCCCCGAGGCCGAGGTGATCGGCTCGGACGACGTCGAGGTGTGCCGCGGCGCCGACGTGGTCGTCGTGACCGCCGGGGCGAAGCAGCAGCCGGGGCAGTCCCGCCTGGACCTCGCCGAGGCCACCATCGGCCTCACGCGCAAGATCCTGCCCGGTCTGGTCGAGGTGGCCCCGGACGCGATCTACCTGATGGTCACCAACCCGGTCGACGTCGTCACCTATGCGGCCCAGCAGATCTCCGGCCTCCCGCCGGAGCGGGTCTTCGGGTCGGGTACCGTCCTGGACTCCTCGCGGCTGCGAGCCGCCCTGGCCGAGCACTGTGGCGTCGCGACGGCCAACGTGCACGCCTACGTCGCGGGCGAGCACGGCGACTCGGAGATCGCGCTGTGGAGCTCGGCGCGCATCGCGGGCGTCCCGCTGCTGGAGTGGGAGCACCTGCCGGGCCGGCCCCCGCTGGACGACGCGGCGCGGGCGGCTATCGCCCGTGACGTCGTGGAGTCGGCGTACAAGGTCATCGCCGGCAAGGGGGCCACCAACTACGCGGTCGGCCTCGCGGCGACGCGGATCGTCGAGGCGGTGCTGAAGAACGAGCACCGGGTGATGCCGGTCTCGACCCGGGTGGACGGATTCCACGGGATCGACGGCGTCTGCCTGTCCATGCCCACCCTGGTCGACTCGCGCGGCGCGACCACCGTCATCGACACGCCGGTCTCCGACGAGGAGGCGGCCGGGCTGCGGGCCTCCGCCGAGAGCGTGCGCTCCGTGCTGCACCGCTTCGGGCTCTGAMHCGGSTHSLSCVNALRSTTKLAVVGAGSVGATLAYAALARGTARTVALMDVNKSKVDAEVLDLQHGGMFVPEAEVIGSDDVEVCRGADVVVVTAGAKQQPGQSRLDLAEATIGLTRKILPGLVEVAPDAIYLMVTNPVDVVTYAAQQISGLPPERVFGSGTVLDSSRLRAALAEHCGVATANVHAYVAGEHGDSEIALWSSARIAGVPLLEWEHLPGRPPLDDAARAAIARDVVESAYKVIAGKGATNYAVGLAATRIVEAVLKNEHRVMPVSTRVDGFHGIDGVCLSMPTLVDSRGATTVIDTPVSDEEAAGLRASAESVRSVLHRFGLPGPT0001760_1539DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001760-ldh-K00016NANA
AK018_00258753lexA_1COG1974LexA repressorATGACGACGCGACAGCACAACGACGGGACGGGCACCGGCGACGGCCTGGCGTCGGTCTCGGAGCTCGCCCCCGGACCGGACCGGCTCACGGCACGCCAGCGTGGCGTGCTCACCACGATCCGCGAGTCGGTCGAGTCACGGGGCTACCCGCCCACCATGCGGGAGATCGGCGAGGCCGTCGGTCTGGCGAGCCCCTCGTCCGTCAAGCACCAGCTCACCGTGCTCGAGCGCAAGGGCTACCTGCGCCGCGACCCGAACCGGCCGCGCGCGATGGAGGTCGTCGACCCGGACACCGGTCGGACCGCCAGCACCACAGCTCCCCCCGCGCCGCCCGTGCCCGCCGCGCCGACGCCGGACGGCGAGGGCGAGGAGACGCCGGCGCCGTCCTACGTCCCCCTCGTCGGCCGGATCGCCGCCGGTGGGCCGATCCTGGCCGAGCAGGTCGTCGAGGACGTCTTCCCGCTGCCGCGCCAGCTCGTGGGCGACGGGGAGCTGTTCCTGCTCAAGGTCGCCGGCGACTCCATGGTCGACGCCGCGATCTGCGACGGGGACTGGGTCGTGGTCCGACGCCAGAACGTCGCGGAGCAGGGCGAGATCGTGGCCGCCATGATCGACGGCGAGGCGACGGTCAAGACCTTCAAGCAGGCGGACGGGCACACCTGGCTCCTGCCGCAGAACCCGGCCTACTCCCCCATCGCCGGCGACGAGGCGCAGGTCCTGGGTCGCGTGGTGGCGGTGCTCCGCAGCCTCTGAMTTRQHNDGTGTGDGLASVSELAPGPDRLTARQRGVLTTIRESVESRGYPPTMREIGEAVGLASPSSVKHQLTVLERKGYLRRDPNRPRAMEVVDPDTGRTASTTAPPAPPVPAAPTPDGEGEETPAPSYVPLVGRIAAGGPILAEQVVEDVFPLPRQLVGDGELFLLKVAGDSMVDAAICDGDWVVVRRQNVAEQGEIVAAMIDGEATVKTFKQADGHTWLLPQNPAYSPIAGDEAQVLGRVVAVLRSLPGPT0014895_306DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014895-lexA-K01356NANA
AK018_00259342hypothetical proteinATGACCACGATGACGGCACACCCGAGCAGCATGCAGGACAGGTGGGGGCTGACCGGGCTGCGGCTGACGGTCCGCGGACGGGTCGTGCTGGCCGTGCTGGCGCTGGCCGTCGGCCTCCCGATCGCCTTCGCCGGGGGGCAGGCGGTGGCGGGCTCGCCCGGCGAGCCCCTGGAGGTCCGCCTGCACACGGTGGCGCCCGGGGAGACGCTCTGGGACTTCGCGGCGCCCCTCGCCGATCCCGGCCAGGACGTGCGCGACGTCGTCGCGGAGCTCCGCGACCTGAACGGTATGACGGAGTCGTCCCTGCGGGTGGGGCAGGTGCTGGTGCTGCCGAGGTCGTAGMTTMTAHPSSMQDRWGLTGLRLTVRGRVVLAVLALAVGLPIAFAGGQAVAGSPGEPLEVRLHTVAPGETLWDFAAPLADPGQDVRDVVAELRDLNGMTESSLRVGQVLVLPRSNANANANANA
AK018_00260486nrdR_1COG1327Transcriptional repressor NrdRATGCACTGCCCTTTCTGTCGGCACGCCGACTCGCGCGTCGTCGACTCGCGGACCTCGGACGACGGTGCGTCGATCCGCCGACGCCGTCAGTGCCCCGAGTGCCAGCGCCGGTTCACGACGATCGAGACCGCGAGCCTGTCGGTCGTCAAGCGCTCCGGCGCCACCGAGCCGTTCAGCCGCGAGAAGGTCGTCTCCGGGGTCCGCAAGGCCTGCCAGGGCCGGCCCGTCAGCGGCGACGACCTCGCGCTGCTCGCGCAGCGGGTCGAGGAGACGTTGCGCTCCAGCGGCAGCGCCGAGATCGACGCCTACGAGATCGGGCTGGCGATCCTCGGACCGCTGCGCGAGCTGGACGAGGTGGCGTACCTGAGGTTCGCCTCGGTCTACCAGGACTTCGACTCCCTGGAGGACTTCGAGGCGGCGATCACCTCGCTGCGGGCGGAGCGACTCGAACGCGAGTCGTCCGCCGCGCAGCGTGCGGAGGGGTGAMHCPFCRHADSRVVDSRTSDDGASIRRRRQCPECQRRFTTIETASLSVVKRSGATEPFSREKVVSGVRKACQGRPVSGDDLALLAQRVEETLRSSGSAEIDAYEIGLAILGPLRELDEVAYLRFASVYQDFDSLEDFEAAITSLRAERLERESSAAQRAEGNANANANANA
AK018_002611239serA_1COG0111D-3-phosphoglycerate dehydrogenaseGTGCTGCGCGCCCTCCTTCTCGAGAACATCCACCCTGACGCCGTCGCCATCATGGAAGCGGCGGGCATCGAGGTCGAGACCCGACCCGGTGCCCTCGACGAGTCCGAGCTGATCGAGACCCTCGCGGACTTCCAGATCCTCGGCATCCGGTCCAAGACCCAGGTCACCCGCCGGGTGATCGAGGACTCCCCCGGTCTGCTGGCGGTCGGGACGTTCTCGATCGGCACCAACCAGATCGACCTCGAGGCCGCCGCCGGCCACGGCGTGGCCGTGTTCAACGCCCCGTTCTCCAACACGCGCTCGGTCGTCGAGCTGGCGGTCTCGGAGATCATCGCCCTGACCCGCCGGCTGACGGTGCGCGACAAGGCGCTGCACGACGGCGTGTGGGACAAGACGGCCGACGGGTCGCACGAGGTCCGCGGCCGCACGCTGGGCATCATCGGCTACGGCAACATCGGCTCCCAGCTGTCGGTGCTGGCCGAGAACCTCGGCATGAACGTGGTCTTCTTCGACACCTCCGAGAAGCTGGCCCTCGGCAACGCCCGCCGGGTCGAGACCCTCGGCGAGCTGCTCGAGGTCTCCGACACCGTGACGATCCACGTCGACGGACGCGCCGGGAACGCCGGGCTGTTCGGGGACGACCTGTTCGCCCGCATGAAGCCGGGCGCGATCTTCCTCAACCTCTCGCGCGGTTTCGTCGTCGACGTCGAGGCGCTGCGCGAGCACATCCTCAGCGGCCACCTGTCCGGGGCCGCGGTCGACGTCTTCCCGACCGAGCCGAAGAAGCGCGGGGACCACTTCGAGTCGCCGCTGCGCGGCCTGGACAACGTGATCCTCACCCCGCACGTGGGCGGGTCGACCGAGGAGGCCCAGCAGAGCATCGGCCTGTTCGTGGCCAAGAAGCTGCGCGACTACCTGCTCACGGGATCGACCACGCTGTCCGTCAACCTGCCCAACCTGCAGCTCGAGCACACCGGTGTGGGCCGCATCGCCCTGCTGCACCGCAACGTGCCGGGTGTGCTGGCGGCCGTCAACCAGGTCTTCGCCGACCACGGCGCGAACATCGAGGCCCAGATGCTCGCCACGCACGGCGAGCTCGGCTACGTGGTCACCGACATCTCCGACGTGACCCACCGCGGCGCCTCGAGCAAGCTCATGGCGATGGACACCACGGTGCGGCTGCGGATCCGGGACGCGTTCGACCGGCCGGAGTTCCCTCCGGGTCCGGCCGCGCACTGAMLRALLLENIHPDAVAIMEAAGIEVETRPGALDESELIETLADFQILGIRSKTQVTRRVIEDSPGLLAVGTFSIGTNQIDLEAAAGHGVAVFNAPFSNTRSVVELAVSEIIALTRRLTVRDKALHDGVWDKTADGSHEVRGRTLGIIGYGNIGSQLSVLAENLGMNVVFFDTSEKLALGNARRVETLGELLEVSDTVTIHVDGRAGNAGLFGDDLFARMKPGAIFLNLSRGFVVDVEALREHILSGHLSGAAVDVFPTEPKKRGDHFESPLRGLDNVILTPHVGGSTEEAQQSIGLFVAKKLRDYLLTGSTTLSVNLPNLQLEHTGVGRIALLHRNVPGVLAAVNQVFADHGANIEAQMLATHGELGYVVTDISDVTHRGASSKLMAMDTTVRLRIRDAFDRPEFPPGPAAHPGPT0009155_3318DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
AK018_002622262hypothetical proteinGTGGCGGGCAGGCACGACGAGCTGGCGCGCGAGCAGGTGGTCGTCGACCGCCTCTACGAGCGACTGGACGAGCTGCGCGCCACCGCGCGCGAGCGGCTCGCGGCGGTCCGACGCGAGGGGCCGTCGGGGTCGCCGCAGAACCGCAGCGAGCGCGACGCCTTCGCCACCATGTACGCGGACCGGGCGGCCCGCCTGGACGCCGTCGAGGACCGGCTCGCCTTCGGGCGGCTCGACCTCGAGACCGGCGAGGAGCGGTACATCGGCCGGATCGGCCTGACCGACGACGAGCACCGCACGCTGCTCACCGACTGGCGCGCGCCCGCCGCCCAGGCCTTCTACCGCGCCACCGCACGGCACCCGGACGGCGTGCGTCGGCGTCGTCACGTCGTGACCACGGGGCGCACCGTCACCGGTCTGGAGGACGAGGTCCTGGACCTCGACGCCGTCGACGACGGGCTCGACGTCTCCACGCTGTCGGGCGAGGGCGCGCTGCTCGCGTCGCTGGCGCGGCGCCGGACCGGCCGGATGTCCGACATCGTGGCGACGATCCAGGGCGAGCAGGACCGCATCGTGCGCGACGAGCTCGGCGGGGCCGTGGTCGTGCAGGGCGGGCCCGGCACCGGCAAGACCGCCGTGGCCCTGCACCGCGCCGCCTACCTGCTGTACGCCCACCGCCGGCTCCTCGAGCGCTCCGGCGTGCTGCTCGTCGGTCCCAGCCGCGCGTTCCTGCGCTACATCGACCAGGTGCTGCCCTCCCTCGGCGAGACGGGCGTCGTGTCGACCACGATCGCCGAGCTGCTGCCCGGGCTGACCGCGGACGGCGTCGAGACGCCCGCCGCCGCGGAGATCAAGGGCCGGCTGCTGTGGCGCGCGGCGATCAAGCGGGCCGTGCGCGCCCGCCAGCGCGTCCCCGCGCAGGACGTGCCGGTGCGCATCGACGGCGTCGAGCTGCACGTGCGCCGCCGGGACGTGCGCGACGCGATGGCGCGCGCCCGCCGCACGCACAAGCCGCACAACGAGGCGCGCGCGACCTTCGTGCGCGAGATGCTCGGCAAGCTGGTCGAGCAGTACCGCGAGCGCACCCAGCGCGAGGTGACCGAGCACGACCTCGCGGTGCTGACCGAGGACCTGCGCTCGGACCGGGACGTGCGGGTGGCGATCAACCTCGCGTGGTTCCCGATCACGCCCGAGCGGCTCGTGGCCGACCTGTGGGCCAAGCCGCACCGGCTGGCGGAGGCAGCACCGGAGCTGACGGAGGACGAGCGGGCCGCGCTGCGCCGCGACCGCGGCGCCCGCTGGACCGAGTCCGACGTGCCGATCCTCGACGAGGCGGCCGAGCTGCTCGGCGAGGACGACACCGTCGCGCGGGCCGAGGCCCAGGCCGCCGAGGCACGCCGCGCGGCCGAGGTCGAGTACGCCCGCCAGATGCTGGAGAGCTCCGGCGCGGGCCAGGGCATGGTCGACGCCGAGACCCTGGCGGCGCGGTTCGCCGAGTCCGGACCCACCCTGACGACGGCGGAGCGCGCGGCGTCGGACCGGTCGTGGACCTACGGGCACGTCGTGGTCGACGAGGCCCAGGAGCTCAGCCCGATGGCGTGGCACACCCTGGTACGCCGGGTGCCCACCCGCTCCCTGACGATCGTCGGGGACGTCGCGCAGACCTCGTCCGCGGCGGGGTCCCGCTCGTGGCAGAAGACCCTCGGGTCGGTCCTGCGCGACGGCTGGCGCCTGCACGAGCTGACGGTCTCCTACCGGACCCCGGCCGAGGTCGCCACGACCGCGCAGCGTGTCGCGGTCGAGGCCGGGCTGCCCGTGTCCCCGCTCACGGCCGCCCGCGACGTGGCCGACGCCCTCGTCGTCGCGCCCACCGACGACCTCGTCGCCGAGACCGCACGCCGCGTCGCCGCCGAGGCGCGCGAGCACGTCGACCCCGACGGCGCCGGACGGGTGGCCGTCATCGCCCCCGAGGACGCCGTGGCAGGACTGCGCGCACCGGTCGCCGCCGCGGTGGCCGACGCCCTCGGCGCCGACGAGGCCGCGCGGCTGGACCGGCAGCGCCCCGAGGACGCCCAGGTCCTCGTCGCCCCGCCGCGGGAGATCAAGGGGCTCGAGTTCGACGCGGTCGTGGTCGTCGAGCCGGCGGCCGTGGCCACCGGCGCCGGCGGCTGGGGAGACCTCTACGTGGCCATGACGCGCCCCACCCAGCGTCTGGTCGTCGTGCACGCCGCGGACCTGCCGGCGGGGCTCGTGCACGAGGGGTGAMAGRHDELAREQVVVDRLYERLDELRATARERLAAVRREGPSGSPQNRSERDAFATMYADRAARLDAVEDRLAFGRLDLETGEERYIGRIGLTDDEHRTLLTDWRAPAAQAFYRATARHPDGVRRRRHVVTTGRTVTGLEDEVLDLDAVDDGLDVSTLSGEGALLASLARRRTGRMSDIVATIQGEQDRIVRDELGGAVVVQGGPGTGKTAVALHRAAYLLYAHRRLLERSGVLLVGPSRAFLRYIDQVLPSLGETGVVSTTIAELLPGLTADGVETPAAAEIKGRLLWRAAIKRAVRARQRVPAQDVPVRIDGVELHVRRRDVRDAMARARRTHKPHNEARATFVREMLGKLVEQYRERTQREVTEHDLAVLTEDLRSDRDVRVAINLAWFPITPERLVADLWAKPHRLAEAAPELTEDERAALRRDRGARWTESDVPILDEAAELLGEDDTVARAEAQAAEARRAAEVEYARQMLESSGAGQGMVDAETLAARFAESGPTLTTAERAASDRSWTYGHVVVDEAQELSPMAWHTLVRRVPTRSLTIVGDVAQTSSAAGSRSWQKTLGSVLRDGWRLHELTVSYRTPAEVATTAQRVAVEAGLPVSPLTAARDVADALVVAPTDDLVAETARRVAAEAREHVDPDGAGRVAVIAPEDAVAGLRAPVAAAVADALGADEAARLDRQRPEDAQVLVAPPREIKGLEFDAVVVVEPAAVATGAGGWGDLYVAMTRPTQRLVVVHAADLPAGLVHEGNANANANANA
AK018_002631317hypothetical proteinATGAGCAGCGGCGACGGGGATCACGACGGCGCCGAGCCGGCGCGCGGGTCGCTGCCGTGCGTCCTGCTGGTCGAGGACGACGACGGCGACGCGGTGCTGGTCGACGAGCTGCTCTCCGACGCCGAGATCGACGTCGAGCTGCGCCGTGTCGTCTCGGTCTCCGAGGCCGAGGACGAGGTCGCCACCGGCTCGGTGGACTGTCTCGTGGTCGACCTCGGGCTCCCGGACGCCGTCGGTCTGGACGCCGTGCAACGGCTGCGGCGGGCGGGCACCCGGCACGCCGCGCCGCCCGCCCTGGTGGTGCTGACCGGACTGGGCAGCGTGGACCGGGGTGTCGAGGCGGTCGCGGCCGGCGCCGACGACTACCTCGTCAAGGGCGAGGTCGGACCGGACCTGCTCGGGCGGTCGTTGCGGTACGCCCTGCAGCGGCGCCGGTCGGTGGCCCAGGAGCGCGCGCTGTACCGCAGCGAGGTGCGGGCGGCGGAGACCGAGCGGCTCGAGAAGGCGCTGCTGCCCCGGCCGCTCGTCGAGGACCCCGCGGTCTCGGTCATGGTGGGCTACCTGCCCGGCGGGGAGGGGCTGCTGGGGGGCGACTTCTTCGACACGGTGGAGACGGCGGACGGCCGGGTGCTCTCGGTCATCGGCGACGTGGCGGGTCACGGGCCGGACGAGGCGGCGCTCGGGGCGACCCTGCGCACGGCGTGGCGGACGCTGGTGCTCACCGGGACGCCGCCCGAGGAGATCTTCGCGGGGCTGGAGACGGTGCTGCGCACCGAGCGGGCCCGGCCGGAGATCTTCGTGACGCTGTGCCAGGTGACGATCGCCGCCGACCGGTCCACCGTCGACGTCTGCCTCGCCGGGCACCTGGCGCCCATGCTGCTCACGGGGCCCGTCGGCGACGTGCGCTGCACCGTCGTGCGTCCGGTCGAGCGCGGCCGGGCGCTGGGCGTCCCGGTGCCCGGGGAGTGGCCGACGCAGCGGATCCCCCTCGGCGAGCCCTTCGCCGTGCTGACCTACACCGACGGGCTCGTGGAGGCGTCGCTGGCCGCCGAGGATCCTCCCGGTCCCGCAGCGGGTGGACGACGGCGCGGGGCGCTGCGCGTGGGCGTGGCCGGCCTGGCCGACCTGGTCCAGGACGAGCTGGACACCGACGGGATCGTCGGGATCGTCGAGCGCGTCCTGCGCCGGGTGCGGCGGCTGCACGGCGGCCCGCTGGTCGACGACGCCGCGATGCTGGTCGTCGGGTGGACCGGTGCCGACGACGTGCCGGGGGAGCGGTCCTCGACGCTGGCCGACTCGATGGAGTGGGCCCGATGAMSSGDGDHDGAEPARGSLPCVLLVEDDDGDAVLVDELLSDAEIDVELRRVVSVSEAEDEVATGSVDCLVVDLGLPDAVGLDAVQRLRRAGTRHAAPPALVVLTGLGSVDRGVEAVAAGADDYLVKGEVGPDLLGRSLRYALQRRRSVAQERALYRSEVRAAETERLEKALLPRPLVEDPAVSVMVGYLPGGEGLLGGDFFDTVETADGRVLSVIGDVAGHGPDEAALGATLRTAWRTLVLTGTPPEEIFAGLETVLRTERARPEIFVTLCQVTIAADRSTVDVCLAGHLAPMLLTGPVGDVRCTVVRPVERGRALGVPVPGEWPTQRIPLGEPFAVLTYTDGLVEASLAAEDPPGPAAGGRRRGALRVGVAGLADLVQDELDTDGIVGIVERVLRRVRRLHGGPLVDDAAMLVVGWTGADDVPGERSSTLADSMEWARNANANANANA
AK018_002641170sasA_1Adaptive-response sensory-kinase SasAATGAGCGCGTCGAGCTCGGTGCTGGACCGCGTACGCCGGCTGCTGCGGTGGGCGACCGCCGCTCTCGTCGGCGGCCTCGTGGTCGCGGTGGTCGCCACGCTGTTCTCGTGGCAGCTGCTGACCGCGGGGGCGGACGCCGTGGCCGTCGACGACGCCAGGGTCTGGAACGAGGTGCTCCTCGCGGTCGTGCTCCTCCTCGGCGGTGTCGGCGTCGCGGTGGCGTTCGCGGTCTGGCGGGAGGTGCGCGTGGGCCTCACGACGCCGCTGGCCACCCTCGCCGCCGAGGTGCGCGCCGCCAGCACGGGCGAGCACGACCACGAGATCCCCCTGGTCGGCTCGGGCGAGGTGGCGGCGTTGTCGCGCGACGTCGAGGACATGCGGCGCGAGCTCGTCGCCCAGGTGGCGGACGCCCGGGCGGCGCACCAGGAGGTCGAGGACGCCCACGTGCGCCTGCGGCAGCAGGCCGCCGAGCTGGAACGGTCGAACCGCGACCTGGAGCAGTTCGCCTACGTCGCCTCCCACGACCTGCAGGAGCCGCTGCGCAAGGTGGCCAGCTTCACCCAGCTGCTGCAGAAGCGCTACGGCGACCAGCTCGACGACCGCGCCGACCAGTACATCGCCTTCGCCGTGGACGGCGCCCACCGCATGCAGCGGCTCATCCAGGACCTGCTGAGCTTCTCCCGGGTCGGCCGGTCGGGGGAGAAGCGCGAGCGGGTGGACCTGGCGGACGCCCTGGACCACGTCCTGGCCGACCTGTCCGAGCGCATCGCGGACAAGAGGGCCGAGGTGACCACCGACCCGCTGCCGGTGGTGGAGGGCGAGCGGGGCCCGCTGACCATGCTGCTGCGGAACGTCGTCGGCAACGCCCTGAAGTTCTCCCACCCGGACCGGCCGCCCCGGGTGCACCTGTCGGCCCGTCGGGTCGCCGGACCGGAGGGCGACGAGTGGGAGCTGACCTGCGCGGACAACGGGATCGGCATCGACCCGCAGTACGCCGACCGGGTCTTCGTGATCTTCCAGCGGCTGCACCCCAAGGAGGTGTACAGCGGCACCGGCATCGGCCTGGCCCTCGTCAAGAGGGTCGTGGAGCACCACGGCGGCCGGGTGCGGATCGACACCGGCGTCACCGAGGGGACGACGATCCGCTGGACCCTGCCGGCGTCCGACTAGMSASSSVLDRVRRLLRWATAALVGGLVVAVVATLFSWQLLTAGADAVAVDDARVWNEVLLAVVLLLGGVGVAVAFAVWREVRVGLTTPLATLAAEVRAASTGEHDHEIPLVGSGEVAALSRDVEDMRRELVAQVADARAAHQEVEDAHVRLRQQAAELERSNRDLEQFAYVASHDLQEPLRKVASFTQLLQKRYGDQLDDRADQYIAFAVDGAHRMQRLIQDLLSFSRVGRSGEKRERVDLADALDHVLADLSERIADKRAEVTTDPLPVVEGERGPLTMLLRNVVGNALKFSHPDRPPRVHLSARRVAGPEGDEWELTCADNGIGIDPQYADRVFVIFQRLHPKEVYSGTGIGLALVKRVVEHHGGRVRIDTGVTEGTTIRWTLPASDNANANANANA
AK018_00265441rcp1_1Response regulator rcp1ATGACGGAGCAGCAGGTCGGAATCGAGGTCCTCCTGGTCGAGGACGACCCGGGTGACGTGCTCATGACCCGGGAGGCCTTCGCCGAGCACAAGGTCGCCAACCGCCTCTGGGTGGTGTCCGACGGCGTCAGCGCGCTGCAGTTCCTGCGCAAGGAGGGGGAGCACGCCGAGGCGCCCACCCCCGACCTGGTCCTGCTGGACCTGAACCTGCCGCGCATGGACGGCCGCGAGGTGCTGGCCGAGGTCAAGCAGGACGCGGCGCTGCGCCACATCCCCGTGGTCGTCCTGACCACGTCGGAGGCGGAGGAGGACGTCCTGCGCTCCTACAGCCTGCACGCCAACGCGTACGTGACGAAGCCGGTCGACTTCGAGCGCTTCATCGACGTCGTGCAGCAGATCGACGAGTTCTTCGTCTCGGTCGTGCGCCTGCCGCAGCGCTGAMTEQQVGIEVLLVEDDPGDVLMTREAFAEHKVANRLWVVSDGVSALQFLRKEGEHAEAPTPDLVLLDLNLPRMDGREVLAEVKQDAALRHIPVVVLTTSEAEEDVLRSYSLHANAYVTKPVDFERFIDVVQQIDEFFVSVVRLPQRNANANANANA
AK018_00266933hypothetical proteinGTGCAGGACCCGCAGAGCATCTACGAGGTGGATCACGACGCGGTGGAGCGCACCCTGGGGACGTCCGAGGACGGCGGGCCCGCGTCGGCGCCCGTGCTCGTGCACGCGGTGCGGGGCTTCGTCGACGCCGGCGCCGCCGGTGAGCTGGCGGCGGAGCACCTGCTGGAGCGGTTCACGGCGACCCGGCTGGTCACCTTCGACGTCGACCGGCTCGTCGACTACCGCTCGCGGCGGCCTCCCATGACGTTCGACGCGGACCGGTGGGCCGGCTACGACGGCCCGGAGCTCGTCGTCGACCACCTGGTCGACGACGAGGGCACGGGTTTCCTGCTGCTGCACGGCGTGGAGCCGGACCTGCAGTGGGAGCGCGCCGCGGCGGCGGTGCGCGGGATCGTCGACGAGCTGGGCGTCTCCCTGACCGTGGGCCTGCACGGCATCCCGATGGCGGTGCCGCACACGCGCCCGCTCACGCTGACGGTGCACGGGACTCGCGAGGGCCTGGTCGACGACCACGCCTCCTACTTCGGCCGGGTCCAGGTGCCGGGGTCCTGGGAGGCCCTGCTCGAGTACCGGCTCGGGGAGACCGAGCACGACGCCATGGGGTTCGCGGTCCACGTGCCGCACTACCTGGGGCAGTCGCGCTACGTGCCGGCGGCCGTGGTGGCCCTGCAGCAGCTCGAGAAGGCGACGGGGCTCGCCCTGGCCACGGGTGGGCTCGACGAGGCCGCCGGGCAGGCCCGTGTGGAGGTGGCCGAGCTGGTCGCCGACAACGAGGAGGTCTCCACGGTCGTGCACCAGCTCGAGGAGCAGTACGACGCCTTCGCCCGGTCGGTGGGGCGCACGAACCTGCTCGCGGAGGACTCCGCGCTGCCCACGGCCGACGAGCTGGGCGCCGAGTTCGAACGGTTCCTCGCCGAGCGCGGGGACGAGTAGMQDPQSIYEVDHDAVERTLGTSEDGGPASAPVLVHAVRGFVDAGAAGELAAEHLLERFTATRLVTFDVDRLVDYRSRRPPMTFDADRWAGYDGPELVVDHLVDDEGTGFLLLHGVEPDLQWERAAAAVRGIVDELGVSLTVGLHGIPMAVPHTRPLTLTVHGTREGLVDDHASYFGRVQVPGSWEALLEYRLGETEHDAMGFAVHVPHYLGQSRYVPAAVVALQQLEKATGLALATGGLDEAAGQARVEVAELVADNEEVSTVVHQLEEQYDAFARSVGRTNLLAEDSALPTADELGAEFERFLAERGDENANANANANA
AK018_00267204scoF_1COG1278Cold shock protein ScoFATGGCGCAGGGTTCCGTGAAGTGGTTCAACGCTGAGAAGGGCTACGGGTTCATCGCCCAGGACGGCGGCGGTGCCGACGTCTTCGTGCACTACTCGGCGATCCAGACGCAGGGGTACCGCACCCTGGACGAGGCCCAGCGGGTCGAGTTCGAGATCACCCAGGGTCCGAAGGGCCCGCAGGCGGAGCAGGTCGTCCCTCTCTGAMAQGSVKWFNAEKGYGFIAQDGGGADVFVHYSAIQTQGYRTLDEAQRVEFEITQGPKGPQAEQVVPLPGPT0014675_7814DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_00268894hypothetical proteinATGGCCAGACGCTCCCGCCGCGCCCGTCGCGACCGATCCTCCCGCGAGGCACCGACACTCCCCCGGGAGGAGGTGCCGATCGACACCGGCACGGCGCGCGTCGAGGTCGACCCGGAGGACCCGCAGCGCCTGACCCTGCACGTCAACGGCGTGCCGAGCTCGTGCCTGGACCTGGCCGACCCCGGCTTCCTCGCCTTCGAGTACCTGCAGCAGATGGCCGCCGTCGTCGACGCGCTGCCCGCCGGACCGGTGCGGGCCGTCCATCTCGGAGCGGCAGGCTGCGCCCTGCCCCGGTACGTCGAGCACACGCGGCCCGGGTCGCGGCAGATCGGCGTGGACATCGACGCGGAGCTCCTGCGGCTGGTGCGCGACTGGTTCGACCTGCCCCGCTCCCCCGCCCTGCGCCTGCGCGCCGACGACGCCGGCCGCGCGCTGTCCGGCCTCACGCCCGGCCTGGCCGACGTGGTGGTCCGCGACGTCTTCGACGGCGACACCACCCCGGAGCACCTGGTCGGCAGGGCGTTCGCGGACGCGTGCGTCCGGGCGCTGCGACCGGGCGGGCTGCTGCTGGCCAACTGCGCCGACCGGCCGCCCCTGACGACGGCCCGGCGCGAGGTGGCGTCCGTCGCGGACGCGCTCGGGGACGACCCGATCGGTCAGGGACGGCTCGCCCTGGTCGCCGAGCCGGCGATCCTCAAGGGGCGCCGGTACGGCAACGTGACGATCGTCGCCGTGACCTCGCCGGAGCAGGACGCCGCGCCGGACGCAGCGGAGTCGCTCGACGTGCGGGCCGCCGACCTCGGGCGGGCGCTGCGGTCGCTGGCCGTCCCCGCCCACGTCCTCGCCGGGGCGGAGCTGTCCCGGTTCGTCGCGGGGGCCGTGCCGCTGCCCTGAMARRSRRARRDRSSREAPTLPREEVPIDTGTARVEVDPEDPQRLTLHVNGVPSSCLDLADPGFLAFEYLQQMAAVVDALPAGPVRAVHLGAAGCALPRYVEHTRPGSRQIGVDIDAELLRLVRDWFDLPRSPALRLRADDAGRALSGLTPGLADVVVRDVFDGDTTPEHLVGRAFADACVRALRPGGLLLANCADRPPLTTARREVASVADALGDDPIGQGRLALVAEPAILKGRRYGNVTIVAVTSPEQDAAPDAAESLDVRAADLGRALRSLAVPAHVLAGAELSRFVAGAVPLPNANANANANA
AK018_00269438hypothetical proteinATGTCCGCACGTGACGGAGTCCCGGCGCCGGAGCGCGTCCAGCAGCTGCTCGCCCGCGCCGACGCCGAGCTCGCGGCCGCCGTGGAGGCGCACGACGCCGGCGACCGTTTCGTGCATGCCCACCTCGCCGCGCTGCGTGCTGCGGCCGCCCTCGTGGCCTGGCACGGGGACACGCCGCGCCGGGGTCGTGCGCGGCCCGTGTGGGAGCTGCTGAGCGGGGTCGAGCCCGAGCTGGCCGCGTGGAGCGTCTACTTCGCCTCGGGGGCGCGGCTGCGCGCGGTGGTCGACTCCGGCCACGGGGACGAGGTGCCGGCTCGTCGCGCCGACGAGCTGCTGGCCTGCGCCGAGGACTTCCGCGACGAGGTCGGGCTCCGGCTCGACCCGCAGGCCGGCTTCACGCTCACCGGCGTGCACGGGCCGTCGACGGCGGCGTCATGAMSARDGVPAPERVQQLLARADAELAAAVEAHDAGDRFVHAHLAALRAAAALVAWHGDTPRRGRARPVWELLSGVEPELAAWSVYFASGARLRAVVDSGHGDEVPARRADELLACAEDFRDEVGLRLDPQAGFTLTGVHGPSTAASNANANANANA
AK018_002701263dinB1_1COG0389DNA polymerase IV 1ATGAGCCGCGGTCCGCGCTCCGCCGCCGTCCGCCGGGACTGGGGGACGGACGAGGAGGGCGCGACGGTCCTGCACGTGGACATGGACGCCTTCTTCGCCTCGGTGGAGCTGGCACGCCGGCCGGAGCTGCGCGGTCGACCGGTGATCGTGGGCGGGCGGGACCGGGGCGTCGTGCTCGCCGCCACCTACGAGGCCAGGGCCTACGGCGTGCGGTCCGCGATGTCGATGACGCAGGCCCTGCGGCAGTGCCCCCAGGCGGTGGTGGTCCGCCCGGACCACCAGGCCTACCGCGACGTCTCCCGGTCGGTCATGGAGATGCTCGGGGACATCACCGCGGTCGTGGAGCAGGTCTCCGTCGACGAGGCCTATCTCGACGTGGCGGGTGCTCGCCGTCGGCTCGGGCCCCCGACGGCGATCGGGGCGGCGCTGCGCGAGCGCGTGCGCGCCGAGCACGGGGTGACGTGCTCGGTCGGGATCGGGCGGAACAAGCTCGTCGCCAAGCTGGCCTCCACGCACGCCAAGCCCGACGGCATGCTCCTCGTGCCCCGGGACGCGACGGAGCCGTTCCTGCGCGCCCTGCCCGTGGGGGCCCTGAACGGGGTCGGGGACAAGACCGAGGCGGTGCTGGCGCGGTGGGGGATCACCACCGTGGCCCAGCTGGCCGACACCGAGGTGGACGTCCTGCGGGCCGCCGTCGGGCCCGTGGCGGGGCAGCACCTGCACGACCTCGCCTGGGGTCGGGACCCGCGGCCGGTGGTGGCCGGCCGCGCGGAGCGGAGCATCGGGGCGGAGACGACCTTCGAGCGTGACGTGGCCGACCGCGAGGAGCTCGTCCACCGGCTGCACGAGCTGGCCGACCGCGTGGCCGCCCGGCTGCGTCGCCACGAGGTCGTCGCCCGGACGGTCACGCTGAAGGTGCGCACCAGCGACTTCCGCACCGTGACCAGGTCCCGGACGGTGGAGACCCCGACGGACGTGGCCCAGGAGCTGTTCGCCGTGGCCCGCGAGCTGCTCGTCGGTGTCGACCTGGGCGGGCTGGCCGTGCGGCTCGTCGGGGTGCGCGGGGAGAACCTGCGACCCCGGACGGGGCTCTCGAGCCAGCCGACCCTGTTCGACGCCGAGGACGACCGCAGCGGGGCCCGTCGCGAGGCCGAGCTCGCCGTCGACGCGGTACGCGCGCGCTTCGGGACGTCCGCCGTGGCGCTCGGTGCGTCGTTCGCCCCCTCGTCGACTACCATCCATGGTTCAGCGGGCATATCCTAGMSRGPRSAAVRRDWGTDEEGATVLHVDMDAFFASVELARRPELRGRPVIVGGRDRGVVLAATYEARAYGVRSAMSMTQALRQCPQAVVVRPDHQAYRDVSRSVMEMLGDITAVVEQVSVDEAYLDVAGARRRLGPPTAIGAALRERVRAEHGVTCSVGIGRNKLVAKLASTHAKPDGMLLVPRDATEPFLRALPVGALNGVGDKTEAVLARWGITTVAQLADTEVDVLRAAVGPVAGQHLHDLAWGRDPRPVVAGRAERSIGAETTFERDVADREELVHRLHELADRVAARLRRHEVVARTVTLKVRTSDFRTVTRSRTVETPTDVAQELFAVARELLVGVDLGGLAVRLVGVRGENLRPRTGLSSQPTLFDAEDDRSGARREAELAVDAVRARFGTSAVALGASFAPSSTTIHGSAGISPGPT0014881_1158DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ADAPTIVE_MUTATIONCE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014881-dinB-K02346NANA
AK018_00271414hypothetical proteinATGCCTCTGTCGGAGTACGAGCAGCGCGTTCTGGAGCAGATGGAGCGCGCGCTGGAGAGCGACGACCCCCGGCTCGCGACCACCCTCCAGCAGTCGCGGCGGCGTTCCCCGCTGCGTTTCGTGCTCGCCGGGGTCGGAGTCGTCCTCGGCCTGCTGCTCCTCGTGATCGGTGCCGCCTCGCAGATGGCGTGGCTCGGGGTCGTCGGCTTCGCGCTGATGTTCGCCGGGGTCGCGTTCGTCTTCGCCGCGCCCCGCAAGAAGGGCCCCCAGGGCGTCGTCAAGGACGACGGCAACGTGACTCCCGCGGCGGCGGCGTCCGGTGGCACCCGGACCGCCAAGCCCAAGCCCAAGAGCGCCGGGTTCCTCGACCGCCTCGAGGAGCGCTGGAACAAGCGTCGCGACGAAGGCCGCTGAMPLSEYEQRVLEQMERALESDDPRLATTLQQSRRRSPLRFVLAGVGVVLGLLLLVIGAASQMAWLGVVGFALMFAGVAFVFAAPRKKGPQGVVKDDGNVTPAAAASGGTRTAKPKPKSAGFLDRLEERWNKRRDEGRNANANANANA
AK018_002722265hypothetical proteinATGATCCCCCCGTACACCGGTCCGGTCGTGCGGCTCGTGGCCACCGGCCTCCTCGTCGCGCTGGCCGTCGCCGCGTCGATGACGGCGCTGACCGAGCTGGTGCTGCCCGGCCCGTGGGTGCGGACCGGCCTGCTCGGGATCGTGCTGGTCTCGGTCGCCACGACCGTGACCCGCGGGCTGATGGACGCACGGGCCCGCCGTCGCGGGACCACCGAGACCGGATCCGGGTCGGCGCTGCCCACCCTCGCCGGGGCCGCGGTCGCCGGCTGGTTCGTCCTGTCGCGCTTCGGGGCGCCGACGTCGGACCCCGACCTGCTCGTCGGACCCGAGCACCTCGGCCGGGTGGTGGCGCGCCTGGGCGAGGCCGGTGAGATCATCCGCTCCCAGGTCGCGCCCGTGCCGGGCACGCTGCCCATCGCCCTGCTCACCGTCGGGGGGACGCTCGCGGTGCTGCTGCTGGCCGACGCCCTCGCCGGCGGGCTGCACTGGTACGCCGGGGTCGGGCTGCCGCTGCTGGCCCTGTGGGCCCCGCCCCTGGTGCTGGCCGGCGAGGTGCCCCGCACCGTCTTCGTCGTCGTGGTGGCGACGCTGCTGCTCCTCCTGACGGTCTCGCCGCGCGGGGGCCCACGGCCACGCCGCCCCGAGCGCCCCCCGGCCTCCGTGCGCCGTGCCGAGGGGTTCCGCTCGGTGGTCACCACCGCGGTGGCCGTCGTGGTGGCCCTCGGCGCCGGGCTCGTGGCCAGCGCCTCGGACTCGTTGCCGGGGTACGCGGGCGCCTGGTACCAGGCGTTCACCACCTCCGGCGACGCCATCCAGCTCTCCGAGGACCTGGACGTGCTCGGGAGCCTCACCGAGCGGTCGGGCGAGGTGGTGCTGACCTACACGGGACCGTCCGAGGGCGTCGGCCCCTGGCGCACCTACACGACCTCCGCGTTCGACGGCCGCCGCTGGCAGCGGGGCGACGAGCGCACCGGCGAGCCGTTCGGCCCGGACGACCTGCTGTGGCCCGACGACGTCGACCAGGGCGACCTCGCCGGAGCGCGTGACGTGGCGGTCACGATCGGGTCGCTGCGCGACGACCAGCTCCCGGTGCCCGGCGAGCCGCGCCGGGTGGACGCCACCGGGACCTGGGGCTACGACGCGATCCGTGACGAGGTCGTCGGGGACCGGACGGACGAGGGCGAGACCTTCGCCGTCTCGGTCCGCCCCCGCGACCTGGACCCCGAGCGGCTGCGCGCCGCCGGCCCCGGCACGGCCGTCGACGCCTACCTGCTGGTGCCCGAGACGGAGCACTCCGCCGACGTCGCCGCGCTCGCCGCGGAGGTGGCGGGCGAGGCCCCCACCGCCTACGACCAGGCGGTCGCGCTGCAGCAGTGGCTGCGGGACCCGTCGTCCTTCACCTACTCGACCGAGCTCCCGCGGGGCGGGACGGGTGACCCCGTCTGGGACTTCCTGCAGCACCGCACGGGCTACTGCGTCCAGTTCGCCACCACGATGACGATGATGGCCCGCACCCTGGACATCCCCGCCCGCCTCGGCGTCGGGTTCCTGCCCGGCGACACCGTCGAGGAGTCCGAGGACTCCTCGACCTGGCAGGTCACCGGGCAGGACTCGCACGCCTGGCCCGAGCTCTACTTCGAGGGAGTCGGCTGGGTCCGTTTCGAGCCGACGCCGGCGATCCAGACGGGCGCTCCGCCCGAGCACACCACACCGCGGGACGACGGCACCGCCGCCCAGGATCAGGCCGACCAGGTCCCGCCGGTGCCCGAGCAGGTACCGCCGGAGGAGCGCCAGGAGCAGCAGCCGGCGGCGTCCGCACCCCCGATCGCGGTCTCCGGCGGCGCCGACTCCGGCGGTCCGGCCGTCTGGGTGTGGGCCGTCCTCGGGCTCGTGGTGCTCGGTGCCGCGGGCGCCGGCGTCGTCCTCCTGCGTCGCCGTCGCGACGACGGCCCGGTCGACGCCGAGAGGGCGTGGGAACGGGTCCTGGCGGCGCTCGCCCGCGACGGTGTGACACTGCCTCCCCCGACCACGCCCCGCCAGGCCCCGGAGGCCATCGTCACGGCGGTCACCGCGGCGCACGGCCGCGAGCCGTCGCCCGAGGTGCGCGACGGGCTGCACCGCATCGCCGAGGCCGTCGAGCACAGCCGGTACGCCGCTCCGGACGAGGCCGAGACCGACACCGACCTCGCGGCCCTGGCCGAGACCGTGACCGATGGACTGGCCGAGGCGCGGCGTGCGCGGAGGGGCGTGACCTCGGGGCGCTGAMIPPYTGPVVRLVATGLLVALAVAASMTALTELVLPGPWVRTGLLGIVLVSVATTVTRGLMDARARRRGTTETGSGSALPTLAGAAVAGWFVLSRFGAPTSDPDLLVGPEHLGRVVARLGEAGEIIRSQVAPVPGTLPIALLTVGGTLAVLLLADALAGGLHWYAGVGLPLLALWAPPLVLAGEVPRTVFVVVVATLLLLLTVSPRGGPRPRRPERPPASVRRAEGFRSVVTTAVAVVVALGAGLVASASDSLPGYAGAWYQAFTTSGDAIQLSEDLDVLGSLTERSGEVVLTYTGPSEGVGPWRTYTTSAFDGRRWQRGDERTGEPFGPDDLLWPDDVDQGDLAGARDVAVTIGSLRDDQLPVPGEPRRVDATGTWGYDAIRDEVVGDRTDEGETFAVSVRPRDLDPERLRAAGPGTAVDAYLLVPETEHSADVAALAAEVAGEAPTAYDQAVALQQWLRDPSSFTYSTELPRGGTGDPVWDFLQHRTGYCVQFATTMTMMARTLDIPARLGVGFLPGDTVEESEDSSTWQVTGQDSHAWPELYFEGVGWVRFEPTPAIQTGAPPEHTTPRDDGTAAQDQADQVPPVPEQVPPEERQEQQPAASAPPIAVSGGADSGGPAVWVWAVLGLVVLGAAGAGVVLLRRRRDDGPVDAERAWERVLAALARDGVTLPPPTTPRQAPEAIVTAVTAAHGREPSPEVRDGLHRIAEAVEHSRYAAPDEAETDTDLAALAETVTDGLAEARRARRGVTSGRNANANANANA
AK018_002731326hypothetical proteinATGGCGGTCGAGCAGGTCCGGGACGCGCTCCGGCGTCTGGTACGGGTGCGCCCGACCGCACGGGGAGCCCTGCTGGTCTGCGCCGGCCTCGTCCTCGCCGTGGTCGGCGTCGTGCTCGACCTGCCGGACCTCGTCGGCCTCGGGGCCGCGGCCCTGCTCGTCGTGGCGGCCGCCTGGGTCTCCCTGGGACTGCAGCGCCTGGACACCGGCCGCGGCGCCCTCGACGTGGAACGGCACCTGGCACCCCACCCCGTGGTCGCGGGGCAGCAGGCCACCACCCGTCTGGTCGTGCGCGCCCGCGCCCGCACCGGGGCAGCCTTCGAACGGCTCGCCCGGCTGCGGCTGTCCGAGCAGGCCGCGCACGAGCTGGCCGGGCCGCACGGCATCCGCGCGCAGGTGCGCGCGCACCCCGACCACGTGGCGGTGCAGTACGCGATCGCGCCGGTGCGACGCGGGCGCTGGGCGCTCGGTCCGGTGCTGACCACGCGGACCGACGTCTTCGGGCTGGCCCGCACCACGCAACCGCTGGGGACCAGCACCGCGGTGTCGGTGTGGCCCCGGACCACGCGGGTGGCCGCGCGCAACGCCGCCCTGGGCGACGTCGACCGGGCCGCCGCCGGTGCACGCCTCGCCTCCTCCGACGACTCGGTGCTCCGGGAGTACGTGTCGGGCGACGACCCGCGCCGCGTCCACTGGGCCGGATCGGCGCGCCAGGGACGCCTCATGGTGCGGGCCGACGAGAGCGCGGGGCTGCGCCCGGTGACCGTCCTGCTCGACAGCGGCCTGCTCGCGCCGGCCGCGGAGGACCGTCCCGGTGGCCGGGCGCCGACGCACGCCGCCGTCGCCGACGGCGAGTGGGCGGTCGAGCTGGCGGCGTCGATCGCCACCTCGTTCCTCGAGGCGGGCCACCCGACCCGCCTGGCCGCCACGGGCGGCGCGCACCACCCGCTCACGCACGTCACCGGCGTGCAGACCGGACGGGCCGTGGTGCTGGACGCCACCGTGGACCTCAGCGGGCTGCGGGGCACCGCGGCGGAACGCGCCCTCGAGCAGTCCGTGGCGGCCCTGCGCGCCGACCGGACGCAGTCCGAGATCACCGTCGCGGTCCTCGGCCCGACCACGGGCGCGGCACGGCACGCGATCGCCTCCCTCGGGGCGGACGGGGTGTCCTGGGCGCTGCTCGTCGTCCCGCGGGCCGAGGGGATGCGCCACGACGTCGACCCGACGGCCGACGACCTGCGGGCCGCCGGCTGGCGGGTGACCACCTGCGCACCGGGCACACCGCCGGAACGGGTGTGGTCCGCCGTCACGGAGCGTGTCGCATGAMAVEQVRDALRRLVRVRPTARGALLVCAGLVLAVVGVVLDLPDLVGLGAAALLVVAAAWVSLGLQRLDTGRGALDVERHLAPHPVVAGQQATTRLVVRARARTGAAFERLARLRLSEQAAHELAGPHGIRAQVRAHPDHVAVQYAIAPVRRGRWALGPVLTTRTDVFGLARTTQPLGTSTAVSVWPRTTRVAARNAALGDVDRAAAGARLASSDDSVLREYVSGDDPRRVHWAGSARQGRLMVRADESAGLRPVTVLLDSGLLAPAAEDRPGGRAPTHAAVADGEWAVELAASIATSFLEAGHPTRLAATGGAHHPLTHVTGVQTGRAVVLDATVDLSGLRGTAAERALEQSVAALRADRTQSEITVAVLGPTTGAARHAIASLGADGVSWALLVVPRAEGMRHDVDPTADDLRAAGWRVTTCAPGTPPERVWSAVTERVANANANANANA
AK018_002741059hypothetical proteinGTGCAGACCGACCACGTCACCGGCACCCTGCCGCAGGCGCCGCCCGACGGCGGGCAGGAGGCCCTGCGGGCCGGGCTGGGCGAGCTGGTGGCCACCACGGCCCGCGTGCGCGACCAGGTGGAGAGCGTCGTCACCGGACGCCCCGACCTGGCCCGGTTGACGGTCGCGGTCCTGCTGGCCGGGGGGCACCTGCTGGTCGAGGACGTGCCCGGCGTGGGCAAGACCACGCTCGCCAAGGCGCTGGCGCGCACGATCGACTCCCGCGTCGGCCGGGTGCAGTTCACCCCGGACCTGCTGCCCAGCGATCTCACCGGCGTCAACGTGTACCGGTCGACCACCGGGGAGTTCGAGTTCCGGCCGGGCCCGGTGTTCAACAACGTCGTGATCGGCGACGAGATCAACCGCGCCTCGCCGAAGACGCAGTCGGCGCTGCTGGAGTGCATGGAGGAGGGCCAGGTCACCATCGACGGGTCCACCTACGCCCTGCCGCAGCCCTTCCTGGTGGTCGCCACGCAGAACCCGGTCGAGATGGAGGGCACGTACCCGCTGCCCGAGGCGCAGCGGGACCGGTTCATGGCCCGGCTGTCGGTGGGCTACCCCGACAACCAGGCCGAGATGCGCATGCTCGACGCCCAGACGTCGGCGGACCCCCTGGCGCACCTGGAGACGGTCACCCACGCCGACACGATGCTGCGCTTCGCGGGCTGGATCCGTGCCGTGCACGCGGCACCCGCGGTCAAGCAGTACATCCTGGACCTGGTGGGACGGACCCGGGAGCACCCCGGGCTGCGTCTCGGGGCCTCGCCGCGCGCGTCGCTGCAGCTGCTGAAGGTCGCCAAGGCGCACGCCGCCATGGCCGGCCGGATGCACGTGCTCCCGGACGACGTCCAGGCGCTGGCGGTCCCCGTGCTCGCGCACCGCCTCGTGCTGTCGACCGAGTCCCGTCTCAGCGGCCTCGACGCCTCCGGCATCGTCGAGGACGTCGTCCGGCAGACCCCGGTGCCGACCCGCGCGGACGTCCCCGTCGGCGGCGCCGCCGCCCACCACCAGCCCCGCTGAMQTDHVTGTLPQAPPDGGQEALRAGLGELVATTARVRDQVESVVTGRPDLARLTVAVLLAGGHLLVEDVPGVGKTTLAKALARTIDSRVGRVQFTPDLLPSDLTGVNVYRSTTGEFEFRPGPVFNNVVIGDEINRASPKTQSALLECMEEGQVTIDGSTYALPQPFLVVATQNPVEMEGTYPLPEAQRDRFMARLSVGYPDNQAEMRMLDAQTSADPLAHLETVTHADTMLRFAGWIRAVHAAPAVKQYILDLVGRTREHPGLRLGASPRASLQLLKVAKAHAAMAGRMHVLPDDVQALAVPVLAHRLVLSTESRLSGLDASGIVEDVVRQTPVPTRADVPVGGAAAHHQPRNANANANANA
AK018_00275474mraZ_1COG2001Transcriptional regulator MraZGTGGCAGGAGCGCTGGGGGACCAGTTCCCGGGTACCGGGCTGCTGCTCGGGACGTACACCCCGAGGCTCGACGAGAAGGGACGGCTGATCCTGCCGGCGAAGTTCCGTTCCCGACTCGCCGCCGGGCTCGTCATGACGCGGGGGCAGGAGCGCTGCGTGTTCCTGCTGCCGATGGACGAGTTCTCCCGCATGTACGAGCAGGTCCGGCAGGCGCCGGTCACCAGCCGGCAGGCACGCGACTACCTGCGCGTGTTCCTGTCGGGGGCGAGCGACGAGGTGCCGGACAAGCAGGGCCGCGTGGTGATCCCCGCGAACCTGCGCGAGTACGCGGGCCTCGGCCGGGACGTCGCCGTCATCGGCGCCGGCACCCGGGTCGAGGTCTGGGACGCCGGTGCGTGGGAGAGCTACCTGTCCGCGCAGGAGGCGGACTACTCCGACGTGGCCGAGCAGATCTTCCCCGACCTGCAGTTCTGAMAGALGDQFPGTGLLLGTYTPRLDEKGRLILPAKFRSRLAAGLVMTRGQERCVFLLPMDEFSRMYEQVRQAPVTSRQARDYLRVFLSGASDEVPDKQGRVVIPANLREYAGLGRDVAVIGAGTRVEVWDAGAWESYLSAQEADYSDVAEQIFPDLQFNANANANANA
AK018_002771023rsmH_1COG0275Ribosomal RNA small subunit methyltransferase HGTGGTGGACGAACGACCGGACGACGCGGCACGGCCGACGAGCGACCGCCACCTGCCGGTGCTCCTCCAGCGGTGCGTCGACCTGCTCGCCCCGGCCCTGACCGAGCCCGGCAGCGTCCTGGTGGACTGCACGCTCGGGATGGGCGGGCACACCGAGGCCGTGCTCGAGCAGGTCCCGACCGCCCGGGTGCTCGGCATCGACCGGGACCCGCAGGCCCTCGAGCTCGCCGGACGGCGGCTGGCCCGCTTCGGCGACCGGTTCACCCCGGTGCACGCCGTGTACGACGAGATCGCCGACGTCGTCGACGAGCACACCGACGGCGCGGTCCAGGGCGTCCTGATGGACCTGGGCGTGTCCTCGCTCCAGCTCGACGAGCCGGAGCGCGGGTTCTCCTACGCCCAGGACGCCCCGCTGGACATGCGCATGGACCCCTCGCGGGGCATCACGGCCGCCGACGTGCTGAACACCTACGACGAGGCGGACATCACCCGCGTCCTGCGTCGCTACGGCGAGGAGCGGTTCGCCCCGCGGATCGCCCGCGCGGTGGTCCGACGGCGGGAGCGCGAGCCGTGGGCACGGACCGCCGAGCTCGCCGACGCGGTCCGCGCCGCCATCCCGGCGGCCGCGCGGCGCACCGGGGGCAACCCGTCCAAGCGGACGTTCCAGGCGCTGCGGATCGAGGTCAACGGCGAGCTCGAGGTGCTCGAGCGGGCCGTCCCCGCCGCGGTCGAGGCGCTCGCGGTCGACGGCCGCATCGTCGTGGAGTCCTACCACTCGTTGGAGGACCGCATCGTCAAGCGGGCCATCGCCCGCGGCACCACGTCCAGCGCGCCGCCCGACCTGCCCGTCGAGCCGGAGACCCACCGGCCCTACCTCGAGGCCCTCACCCGCGGCGCCGAGGAGGCCGACGAGGCCGAGCGGGAGCGCAACCCGCGGTCGGCCTCGGTCCGCCTGCGCGCCGCCCGCCGACTGCGACCCACGCCCGCCCACCTGCTCGGCCCGAACCGGAAGGAGTCACGATGAMVDERPDDAARPTSDRHLPVLLQRCVDLLAPALTEPGSVLVDCTLGMGGHTEAVLEQVPTARVLGIDRDPQALELAGRRLARFGDRFTPVHAVYDEIADVVDEHTDGAVQGVLMDLGVSSLQLDEPERGFSYAQDAPLDMRMDPSRGITAADVLNTYDEADITRVLRRYGEERFAPRIARAVVRRREREPWARTAELADAVRAAIPAAARRTGGNPSKRTFQALRIEVNGELEVLERAVPAAVEALAVDGRIVVESYHSLEDRIVKRAIARGTTSSAPPDLPVEPETHRPYLEALTRGAEEADEAERERNPRSASVRLRAARRLRPTPAHLLGPNRKESRNANANANANA
AK018_00278432hypothetical proteinATGAGTGCTCTGCGAGCCTCCACCGTCCACCCGGTGCCCCGTGGCGAGCCCACCCCGCGCCGCGCGCCCCTGCGCGCCGTCGACGGAGGTGCCGGCCGTCGCTTCGACGCCGTCCGGGCGCCGTTGCAGGCCACGTCCGGGGTCCCCTTCATGCTGCTGTGCGCCCTGGTGCTGGTCGCCGCGCTGCTGGCGGCCCTGCTGCTCAACACGACGATGGCGCACGGCTCGTACGAGATGTCCCGGCTGCAGCGCGAGGCGGGCCTGGTCGCCCAGGACGTCCAGGAGGTCCGGTCCCGGCTGCGCGTCGCCGAGGCCTCGCTGCCGCAGCAGGCCGAGCGGCTCGGCATGGTGCCCGCCGAGGAGATGACCATGCTGTCCGCCGTCGACCGGGCGGTCGTGCCGGGACCCACGGAGCCCGCGGAGCAGCCGTGAMSALRASTVHPVPRGEPTPRRAPLRAVDGGAGRRFDAVRAPLQATSGVPFMLLCALVLVAALLAALLLNTTMAHGSYEMSRLQREAGLVAQDVQEVRSRLRVAEASLPQQAERLGMVPAEEMTMLSAVDRAVVPGPTEPAEQPNANANANANA
AK018_002791857pbpB_1COG0768Penicillin-binding protein PbpBGTGCAGACCAGGCGAACCGGGAGAGCCCGGGCCGGCGCGACGAGCACGGGGCGCGGCTCGGCGGTTGCCGGTCGCGGGCGCCCGCCCCGTGCGCCCGGACGCCTGGCCGGCGACCCCGAGCGGCGGCAGCGCTGGCTGATCGCCCTGGCGGCCGTGGTGGTGACGGTGTTCGTGGGCCGGCTGGTGGACGTCCAGGTCGTCCAGGGGCCCGCGCTGGCGTCGACCGCCCAGCAGGCACGACTGGCCACGCAGGTCACCCAGGCCCACCGCGGCGACATCCTCGACGCCGACGGGCGCGTGCTGGCGACGTCCGTGGACCGCTACCGGATCGTGGCCGACCAGGTGAACATCCAGGGGTTCCGCGGCAACGGACGCCACGACGCGGACGGCGAGCCGGTCCAGGACGGCGCCCTGGGCATCGCCCAGCTGCTGGCCCCGGTCCTGGGCGAGAGCGAGGCCACCCTCGGTGCCCGGCTCAACGGCGAGGACCAGTACGTGGTCCTGGCCCGCGACGTCGTACCGGAGGTGCAGCGCGCCGTCTCGGCCCTGGGCCTGTACGGCTACGTGTTCTCCCACCTGACGTCCGAGCGCACGTATCCCGCCGGGGCGGTGGCCGGCCCGCTGCTCGGACACGTCAACAGCGAGCAGGTCGGGATGGGCGGCCTCGAGGCCACCTTCGACGAGGTGCTCTCCGGCACCGACGGCACCCTGACCTACGAGCGCGGGCGGGACGGCGCACGGATCCCGGCGTCGGAGCTGGAGTCCGTCCCCGCCGAGCCCGGCGAGGACGTCCAGCTCACCCTGGACTCCGACGTCCAGTGGAAGGCGGAGGAGCTGCTCGACGAGGCGGTGTCCGACACCGGGGCGAGCTACGCCATCGCCGTCGTCCAGGACCTGCGGACCGGGGACGTCGTGTCGATGGCCGACTCCGGCGAGGTCGACCCGAACGGGACCTCCGGCGACGTCGCCGACGGCTCGCGCGCGGTGAACGTCGTCTTCGAACCGGGGTCGACCGGCAAGGTCATCTCGATGGCCGCCGCGCTCGAGGGCGGCTACTGGGAACCCACGGACGAGTTCGAGGTGCCGGACCGCTACACGGTCGACGGCGAGACGTTCCGCGACTCCCACCCGCACCCCGTCGAGCGCTGGACCCTCGCGGGCATCCTCGCCCAGTCCTCCAACGCCGGCACCGTGATGATGGGCGAGGAGATCCCGTTCGCGGTGCGCTACGACTACCTGCGCAAGTTCGGGTTCGGCCAGCGGACGGCGCTCGGGCTGCCGGGGGAGAGCGCGGGCATCCTGCCCGACGAGAACATCGACGAGATCGAGAACCGCACGCCCTACACGGTGCTGTTCGGACAGGGCGTCGCGGTCAGCGCCATGCAGGCCACCCAGGTGTTCTCGACCATCGCCAACGACGGCGTGCGGATGCCGGCCACCCTGGTCGCCGGCACCCGCACCGCGACCGGCGAGCTCGTCCCCGTCGAACGCGACGAGGGCACGCGCGTGGTGTCCGCGCAGACCGCGAACGACGTGCTGACCATGATGGAGGCCGTCACCGCGGAGGACGGCACGGGGACCGCGGCCCAGGTCCCGGGGTACCGGGTGGCGGGCAAGACCGGCACCGCGCAGATGTTCGAGGGCGGCGGCACCACCTACGTGGCCTCGTTCATCGGCGTGGCACCCGTCGACGACCCCCGCTACACGGTGTCGGTGTTCCTCAAGAGTCCCCGGTCCTCGATCTACGGCGGGGTGGTGGCCGCTCCGGTCTTCAGCGAGCTGATGGGCTACGTGCTGCGTGCCGACGGCGTCCCGCCGTCCGACGAGCCGGCCGACCTGTTCCCGCTGACCTGGTGAMQTRRTGRARAGATSTGRGSAVAGRGRPPRAPGRLAGDPERRQRWLIALAAVVVTVFVGRLVDVQVVQGPALASTAQQARLATQVTQAHRGDILDADGRVLATSVDRYRIVADQVNIQGFRGNGRHDADGEPVQDGALGIAQLLAPVLGESEATLGARLNGEDQYVVLARDVVPEVQRAVSALGLYGYVFSHLTSERTYPAGAVAGPLLGHVNSEQVGMGGLEATFDEVLSGTDGTLTYERGRDGARIPASELESVPAEPGEDVQLTLDSDVQWKAEELLDEAVSDTGASYAIAVVQDLRTGDVVSMADSGEVDPNGTSGDVADGSRAVNVVFEPGSTGKVISMAAALEGGYWEPTDEFEVPDRYTVDGETFRDSHPHPVERWTLAGILAQSSNAGTVMMGEEIPFAVRYDYLRKFGFGQRTALGLPGESAGILPDENIDEIENRTPYTVLFGQGVAVSAMQATQVFSTIANDGVRMPATLVAGTRTATGELVPVERDEGTRVVSAQTANDVLTMMEAVTAEDGTGTAAQVPGYRVAGKTGTAQMFEGGGTTYVASFIGVAPVDDPRYTVSVFLKSPRSSIYGGVVAAPVFSELMGYVLRADGVPPSDEPADLFPLTWPGPT0023865_365DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023865-ftsI-K03587NANA
AK018_002801599murE_1COG0769UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--2,6-diaminopimelate ligaseGTGACATCCCCGACCGATCGCATCCGGCCCGCGGTGCTCGTCCCGCGACGTGTGGCCGACCTCGTGGCCCGGTTCGACCTGACCACCGTCGTCCCCGGCCCGGACGCCGAGGCGGAGGTGACCGCGGTCGCCGGCGACAACCGTGCCGTGGCCGCCGGTGACCTCTTCGTGGCGCTGCCCGGCGCGCGCGCCCACGGCGCGGCCTTCGCCGCCGACGCCGTGTCCCGCGGAGCCCACGCCGTGCTGACGGACCCGGCGGGCGCCGACCGGCTGCGCGACCTGCCGGTGCCCGTGCTCGTGACCGACGACCCGCGCACGTTGCTCGGTCCCGTCGCCGCGTGGGTGCACGGCGCCCCCGCCGAGCGGCTGACCACCTTCGGCATCACCGGCACCAACGGCAAGACCACCACGACCTACCAGCTCGACCACCTGCTGCGCTCCCTGGGCCGCCGCGGCGGTCTCGTCGGCACGGTCGAGACGCGGTCCGGCGACCGGGTGCTGCCCAGCCGGCTGACCACCCCGGAGGCCTCCGACCTGCAGGCGGTGCTCGCCGCGATGTGCGAGGACGGCGTCGACTCGCTGTCGATGGAGGTCTCCTCGCACGCCATCGCGATGCACCGCGTCGACGGCGTGGTCTACGACGTCGCCGGCTTCACCAACCTCAGCCAGGACCACCTCGACTTCCACGGGGACCTGCCCACGTACTTCGCCGCCAAGGCCGAGCTCTTCACGCCGGCCCGGGCCCGCCGGGGTGTCGTCGTGGTCGACGACGCGTGGGGCGAGCGCATGGCCGCCGCGGCCACCGTCCCGGTCGAGACCGTCCGGACCACGGCGCCCGCGCCGGACTCCCCGGCGGCCGACTGGACGGTCTCCGAGGTGGTCCCGCACGGCACCGGGTCGGCCTTCACCCTGACCCGGACCGACGGGCTCTCCCTGCGCACGTCCACGTCCCTGCCGGGACACTTCAACGTCGCCAACGCCGCGCTGGCCGTGGTGATGGTGCTCGCCTCCGGCGTCGACCCGCAGGACGTCGTGGCCGCGCTCGAGGCGGGGGACGGGCTGTCCGCGCGGGTGCCCGGCCGGATGGAGGTCGTCGGCCCCGGGGACGACGGCCACCCCCGCGTCGTCGTCGACTTCGCGCACAACACCGACGCCCTCGAGCTGGCCCTCGCGGCGCTGCGCCCGACGACGACCGGGCGCCTGGCCGTCGTCTTCGGCGCCACCGGCGACCGCGACCCGGGCAAGCGCCCGGCGATGGGTGCGGCCGCCGTCGCGGGTGCCGACGTCGTGGTCATCACCGACGACGACCCGCACGACGAGGACGCCGCCGCGGTCCGCGCCGCCGTGCGTGCCGGCGCCGAGGCGGCCCGCGAGAGCGCGGCGGCCGCCGGCCGCGAGGTGACCGTGACGGAGGTCGCCCCGCGCGGGGAAGCCGTCCGGCGCGCCGTGCTGGAGGCCGCCGGCACCGACACGGTGCTCGTCGCCGGCCGCGGCCACGAGACCTTCCAGGAGGTCCGCGGCGTGGACCTCGAGCTGGACGACCGCGTCGAGGCGCGCGCCGCGCTGCGCGCCCGCGCAGAGAGGACCCCCACCGCATGAMTSPTDRIRPAVLVPRRVADLVARFDLTTVVPGPDAEAEVTAVAGDNRAVAAGDLFVALPGARAHGAAFAADAVSRGAHAVLTDPAGADRLRDLPVPVLVTDDPRTLLGPVAAWVHGAPAERLTTFGITGTNGKTTTTYQLDHLLRSLGRRGGLVGTVETRSGDRVLPSRLTTPEASDLQAVLAAMCEDGVDSLSMEVSSHAIAMHRVDGVVYDVAGFTNLSQDHLDFHGDLPTYFAAKAELFTPARARRGVVVVDDAWGERMAAAATVPVETVRTTAPAPDSPAADWTVSEVVPHGTGSAFTLTRTDGLSLRTSTSLPGHFNVANAALAVVMVLASGVDPQDVVAALEAGDGLSARVPGRMEVVGPGDDGHPRVVVDFAHNTDALELALAALRPTTTGRLAVVFGATGDRDPGKRPAMGAAAVAGADVVVITDDDPHDEDAAAVRAAVRAGAEAARESAAAAGREVTVTEVAPRGEAVRRAVLEAAGTDTVLVAGRGHETFQEVRGVDLELDDRVEARAALRARAERTPTAPGPT0024130_322DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024130-murE-K01928NANA
AK018_002821443murD_1COG0771UDP-N-acetylmuramoylalanine--D-glutamate ligaseGTGGGTCGTCAGTTGAGCCCTCGGGCGCGCGACGTCGACCTGGCCGGCGCCCGGGTCGTCGTCGCCGGGCTGGGTGTCACCGGTCGCGCCGTCGTCGAGGCGCTCGCCGGTCGGGCCGGTACGGTGACCACCGTGGACGGCCGTGCCGCGGACGCGGACGTGACCGGCGTGGACGCGGCCGACCCGGCGGTGGCCGCCGACCTGGTCGCGCGGTCCGACCTCGTCGTCGCGTCCCCGGGGTGGGCACCGACGACCCCGCTGCTGGCCGCGGCGCAGCGGGCCGGTGTCCCCGTGTGGAGCGAGGTCGAGCTGGCCTGGCGGCTGCGCAGCGGGGCCCCGTGGCTCGCCGTCACCGGCACCAACGGCAAGACCACCACCGTGCAGATGCTGGCGTCGATCCTGACCGCCGCCGGGCTGCGCACCGCGACGGTCGGCAACGTCGGGACCCCGGTGCTGACCGCGGCGCAGGACCCCGATCTGGACGTGCTGGCCGTGGAGCTGTCCAGCTTCCAGCTGCACCACACCCGCACGATGGCGGTCGAGGCCGGCGCGGTGCTCAACGTGGCCGACGACCACCTGGACTGGCACGGGTCGGCCGCGGCGTACGCCGCCGACAAGGGCCGGATCTACCACGGCGCGCAGGTGGCGTGCGTGTACAACGTGGCGGACCCGCGCACCGAACGTCTCGTGCGCGAGGCCGACGTGGCCGAGGGCGCCCGGGCGGTCGGCTTCACCCTCGGCGCGCCCGGCCCCGGCCAGCTCGGCGTGGTCGAGGACGTGCTGGTCGACCGCGCCTTCCACACGGCCGCCGACGCCCCCGACCGCCACCGCACGGCCGCGGAGCTGGGCACGCTCGCCGACCTGGCCCACCTGGGTGGTCCCCAGGGTGCGCCCCCGCACGTCGTGGCCAACGCCCTGGCCGCCGCCGCCCTCGCCCGCGCCCACGGGGTCGAGGCCCGGGCCGTGCGTGACGGTCTGCGCCACTTCTCCGCGGACGCGCACCGGGCCGCCGTCGTGCGCACGCTCGACGGGGTGACCTACGTCGACGACTCCAAGGCGACCAACGCCCACGCCGCGGCCGCCTCGCTGGCCGCCTGCGCCCCCGGCACCGGCGTGTGGATCGCGGGCGGCCTGGCCAAGGGGGCGACCTTCGACGACCTGGTGGCGAGCCGGGCCGACCGGCTGCGGGCCGCCGTCGTCATCGGCACCGACCCGGAGCCGTTCACCGACGCACTGGCCCGACACGCGCCCGAGGTGCCGGTCCGCGTGATCGATCCCGGCGACACTGGCAGCGTGATGCGTCGCGCGGTGTCCGCGGCGCGGCAGGCCGCCCGGGAGGGCGACACCGTGCTGCTGGCCCCGGCCGGCGCGTCCATGGACCAGTTCGCGTCCTACGCGGCGCGGGGGGAGGAGTTCGCCTCCGCGGTGCAGGACCTGACGTAGMGRQLSPRARDVDLAGARVVVAGLGVTGRAVVEALAGRAGTVTTVDGRAADADVTGVDAADPAVAADLVARSDLVVASPGWAPTTPLLAAAQRAGVPVWSEVELAWRLRSGAPWLAVTGTNGKTTTVQMLASILTAAGLRTATVGNVGTPVLTAAQDPDLDVLAVELSSFQLHHTRTMAVEAGAVLNVADDHLDWHGSAAAYAADKGRIYHGAQVACVYNVADPRTERLVREADVAEGARAVGFTLGAPGPGQLGVVEDVLVDRAFHTAADAPDRHRTAAELGTLADLAHLGGPQGAPPHVVANALAAAALARAHGVEARAVRDGLRHFSADAHRAAVVRTLDGVTYVDDSKATNAHAAAASLAACAPGTGVWIAGGLAKGATFDDLVASRADRLRAAVVIGTDPEPFTDALARHAPEVPVRVIDPGDTGSVMRRAVSAARQAAREGDTVLLAPAGASMDQFASYAARGEEFASAVQDLTPGPT0024125_796DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024125-murD-K01925NANA
AK018_002831239ftsW_1COG0772putative peptidoglycan glycosyltransferase FtsWATGGCGGTCACGCCCGCGGCGCGCACGCGCAGCACCGACCGGCCGTGGCTGGGGCAGTGGAACTCCGCGGTGACGAGCTACTACCTCGTCGTCGGGGCGACCGGGCTGCTGCTGCTCATCGGACTGGTCATGGTGTTCTCCAGCACGGCCGTCACCTCGATCGCCGCCGGCGAGTCCCCCTACGCCGCCGGGCTGACGCAGGCACGGTTCGCCCTCATCGGCCTGCCCGTGCTGCTGGTCGCGGCCCGGCTGCCGGTGCGGTGGTACAAGCGGCTGGCCTGGCCGGCCCTCGCCGTGGCCGTCGTCCTGCAGTCGCTGACGCTCGTGCCGGCGCTGGCGCGCGCGCAGGGCGGCAACGTCGGCTGGATCTCCCTCGGCGGCGTCACGGTGCAGCCGGCCGAGGTGAGCAAGCTCGCCCTGGCCGTCTGGCTCGGGGTCGTGCTCGGGCGCAAGCAGCACCTGCTCGGGTCCTGGGCGCACGCGATCGTGCCCGCCGTGCCCGGGGCACTGATCGTCCTGGGACTGGTCATCGCCGGGAACGACCTGGGCACGATGCTGGTCATCGCCGGGCTCGTGGCGGGAGCGCTGTGGGTCGCCGGTGCGCCGTGGCGCATGCTCGCGCTGGGCGGTGCCGCCGCGGTGACGGCGATCGTCGGGCTCTTCGTGCTCGGCAACTCCAACCGGATGGGACGCATCCTGGCGACCTACGGCGAGTGCACCGACGCCGAGGGCCTGTGCTACCAGTCCCTGCACGGCATGTACGGCCTGGGTACCGGCGGGCTGTTCGGCGTCGGGCTCGGGGCCAGCCGCGAGAAGTGGCGGTACCTGCCCGAGGCGCACAACGACTTCATCTACGCCATCATCGGCGAGGAGCTCGGCCTCCTCGGCACCCTGCTCGTGCTGTCGCTGTTCGTGGTGCTCGGGGTCGCCATGGCACGGATCGTGCGGCGGCACGAGGACCCTTTCGTCAAGATCGCCACCGCCGCGGTGGCGTGCTGGATCGTGGGCCAGGCGTTCGTCAACATCGGTGTCGTGCTGGGGCTGCTGCCGGTCATCGGCGTCCCGCTGCCGCTGGTGTCCGCCGGCGGGTCGGCCCTGGTGACGACCATGGCGGCCCTGGGCATGGTCATCAGCTTCGCGCGCTCCGAGCCGGGTGCCGCGGAGGCGCTCGCGGCGCGACCGAGCGTCGTGCGTCGCTCGCTCACCGTGCTGAGCGGTGCGCGCCGCCGGGGCCGGTAGMAVTPAARTRSTDRPWLGQWNSAVTSYYLVVGATGLLLLIGLVMVFSSTAVTSIAAGESPYAAGLTQARFALIGLPVLLVAARLPVRWYKRLAWPALAVAVVLQSLTLVPALARAQGGNVGWISLGGVTVQPAEVSKLALAVWLGVVLGRKQHLLGSWAHAIVPAVPGALIVLGLVIAGNDLGTMLVIAGLVAGALWVAGAPWRMLALGGAAAVTAIVGLFVLGNSNRMGRILATYGECTDAEGLCYQSLHGMYGLGTGGLFGVGLGASREKWRYLPEAHNDFIYAIIGEELGLLGTLLVLSLFVVLGVAMARIVRRHEDPFVKIATAAVACWIVGQAFVNIGVVLGLLPVIGVPLPLVSAGGSALVTTMAALGMVISFARSEPGAAEALAARPSVVRRSLTVLSGARRRGRPGPT0014810_1136DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014810-ftsW|spoVE-K03588NANA
AK018_002841143murG_1COG0707UDP-N-acetylglucosamine--N-acetylmuramyl-(pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferaseGTGAAGACTTCCTCCGTGCGCTCTGTCGTGCTGGCCGGCGGAGGGACCGCCGGCCACGTCAACCCGCTGCTCGCCGTGGCCGACGAGCTGCGGGCCCGTGATCCCGAGACGTCGTTCCGGGTGCTGGGCACCGCGGCCGGTCTGGAGGCCGACCTCGTCCCCGCCGCCGGCTACCGGCTCCACGAGATCCCCCGGGTCCCGCTGCCGCGCCGCCCGAGCACGGACCTGCTGCGGCTGCCGGGCCGCCTGCGCGCGGCCGTGCGGTCGGCGCAGGACGCCATCACCGAGATCGACGCCCGGGCCGTGGTCGGCTTCGGCGGCTACGTGTCCACCCCGGCCTACCTGGCGGCGCGACGCCTCGGCGTGCCGGTGGTGATCCACGAGCAGAACGCCCGCCCGGGTCTGGCGAACCGGCTCGGGTCCCGCTGGGCGGCCGCCGTGGGCACCACCTTCGCCGACACGGCGATCGCCGGGGCCACCTGCGTCGGGCTGCCGCTGCGCCCGGCGATCGCCGCCCTGGTGGACGAGCGCCGGGCGGACCCGGCCGGTTCCCGGACCCGCGGGGCCGCCGCGCTCGGCCTCGACCCCGACCTGCCGACGCTGCTGGTCACCGGGGGGTCCTCCGGGGCCCTGAACGTCAACCGGGCGGTGACGGGTGCCGCCGCCGCGCTCCTGGACGCGGGGATCCAGGTGCTGCACCTGACCGGCCGGGGCAAGGACGCCGAGGTGCGCGAGGCCGTCGCCGCGCTGGCCGGCGACCACGACGTGTCCCGCTACCACGTGCGCGAGTACCTGTCGGACATGCAGCACGCGCTGGCCGCCTGCGACCTCGTCGTCGCGCGCTCCGGTGCCGGGACGGTCTGCGAGCTCGCCGCGCTGGGGCTGCCCGCGGTGTACGTCCCGCTGCCGATCGGCAACGGCGAGCAGCGGCTGAACGCCCGCGACGTCGTCGGGGCCGGCGGCGGCATCGTGATCGACGACGCCGCGTTCACCCCGGAGCGGGTCGCGGCCGAGGTGCCCGCCCTGCTCCAGGACCGGGCACGGCTGGCCGCCATGGCCGAGGCCGCCGGCTCGGTCGGGGTCCGCGACGCGGCGGCCCGGGTCGCCGACATGGTCGAGGCGGCCGCGGGGGCGGACCGATGAMKTSSVRSVVLAGGGTAGHVNPLLAVADELRARDPETSFRVLGTAAGLEADLVPAAGYRLHEIPRVPLPRRPSTDLLRLPGRLRAAVRSAQDAITEIDARAVVGFGGYVSTPAYLAARRLGVPVVIHEQNARPGLANRLGSRWAAAVGTTFADTAIAGATCVGLPLRPAIAALVDERRADPAGSRTRGAAALGLDPDLPTLLVTGGSSGALNVNRAVTGAAAALLDAGIQVLHLTGRGKDAEVREAVAALAGDHDVSRYHVREYLSDMQHALAACDLVVARSGAGTVCELAALGLPAVYVPLPIGNGEQRLNARDVVGAGGGIVIDDAAFTPERVAAEVPALLQDRARLAAMAEAAGSVGVRDAAARVADMVEAAAGADRPGPT0024150_692DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024150-murG-K02563NANA
AK018_002851497murC_1COG0773UDP-N-acetylmuramate--L-alanine ligaseATGAGCGCCCCGTCCGCCGTCGCCGCGCTCGGGCGCGTCCACCTCGTCGGCGTCGGCGGAGCCGGGGTGTCCGTCGTCGCCCGTCTGCTCGCCGCCCAGGGGGCCCCGGTCCAGGGGTCGGACGCCGTCGAGAGTCCCGCGCTGTCCGCGCTGCGGGCCGACGGCGTGACCGTGTGGGTCGGGCACGACGCCGACCACGTCGTCGCGCCGGACGGCACCCCGCGGGTCGACACCGTCGTCGTCTCCACCGCCGTGCGGGAGAGCAACCCCGAGCTGGCCGCCGCGCGCGCGGCGGGCCTGCGGGTCCTGCACCGCTCCCAGGCGCTCGCCGCCCTCATGCAGGGGCGGCGCACCGTGGCGGTCGCCGGCGCGCACGGCAAGACCACGACCTCGGCCATGGTGGCCACCGTGCTCGCCGCGGTCGGGGTCGACGCCTCGTTCGCGATCGGGGGCACGGTCCGACGGCGGGACGCCACGGGGGAGCGGACCGTGCCCGGCGGCCACGCCGGCAGCGCGGACGTGCTCGTGGCCGAGGCCGACGAGTCCGACGGGTCCTTCCTCAACTACGCCCCGACGGTGGCGGTGGTGACCAACGTCGAGGCGGACCACCTCGACCACTACGGCTCGCACGAGGCGTTCGAGCAGGCGTTCGTGGACTTCGCCGCGCGGATCACCCCCGACGGGGCGCTCGTCGCCTGCGCGGACGACGCCGGTTCGGCCCGGCTGGCCGCCGCGCACCGCGAGGACGGCCGACGGGTGGTCACCTACGGGGTCGCGGAGGGTGCCGACGTCCGCGTGCGGGACGTCGTCGTCGGCGCCGGGACCGTCCGCGCCGTCGTGTCCGGTGGGCCCCTGGGTGCGACGGACCACGTGCTGGCCCTCGACGTGCCGGGGGCGCACAACGCGCTGAACGCCACCGCCGCGGTCGTCGCCGCGGTGCTGCTCGGGGCGGAGCCGGCGGCCGCCGTGGCAGGCGCCGGCACGTTCGTGGGGACAGGTCGACGCTTCGAGCCGCGCGGCGAGGTCGCGGGCGTGCGGGTGTTCGACAGCTACGACCACCACCCGACCGAGGTCGAGGCGCTGCTGCGCGCGGCCCGCCCGGTGGCCGGCGACGGACGGGTGGTCGTGCTGTTCCAGCCCCACCTGTACTCGCGCACGCGGATCTTCGCCGACCGGTTCGCCGCGGCCCTGGCGCTCGCCGACGAGGTCGTGGTGACCGGGGTGTACCGGGCGCGGGAGGACGTCGACCCGCAGGTGACGGCGCGGACCATCACCGACCGGGCCGGCGCGACGGTCTCCGGGGGGCGGGTCCGCCCGGTCGAGGACCGGCTCGCGGCCGCGCACGCCGTGGCGGGGCTGGCCCGTCCCGGTGACGTCGTCCTGACCGTCGGCGCCGGCGACGTCACCGAGCTCGGCCCCGTCGTCCTGGCGGACCTGGCGGCCCGTCACGGCGTGGCGGACCCCTCGGGGCCCGCGCCGGACGCGACCATGGGGTGAMSAPSAVAALGRVHLVGVGGAGVSVVARLLAAQGAPVQGSDAVESPALSALRADGVTVWVGHDADHVVAPDGTPRVDTVVVSTAVRESNPELAAARAAGLRVLHRSQALAALMQGRRTVAVAGAHGKTTTSAMVATVLAAVGVDASFAIGGTVRRRDATGERTVPGGHAGSADVLVAEADESDGSFLNYAPTVAVVTNVEADHLDHYGSHEAFEQAFVDFAARITPDGALVACADDAGSARLAAAHREDGRRVVTYGVAEGADVRVRDVVVGAGTVRAVVSGGPLGATDHVLALDVPGAHNALNATAAVVAAVLLGAEPAAAVAGAGTFVGTGRRFEPRGEVAGVRVFDSYDHHPTEVEALLRAARPVAGDGRVVVLFQPHLYSRTRIFADRFAAALALADEVVVTGVYRAREDVDPQVTARTITDRAGATVSGGRVRPVEDRLAAAHAVAGLARPGDVVLTVGAGDVTELGPVVLADLAARHGVADPSGPAPDATMGPGPT0024120_274DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024120-murC-K01924NANA
AK018_00286693ftsQ_1COG1589Cell division protein FtsQATGCGTCGTCACCGGTCGTGGCGCACCGTGCTCGTGGTCGTGCTGGTGCTCCTGCTCGCCGGGGGAGCCGGCTGGGTGGTCGGGTGGTCCGACCTGCTGGCGCTCGAGGCCGACGAGGTGGCCGTGACGGGGGCCGACTCGTCCGTCGTCGACGACGAGCGGGTCCACGAGATCGCCGTCGCGGCCGCCGGCACGCCGCTGGCGCGGCTGGACGCCTCGGGCATGGCGGAGGAGATCCGCGGGCTGCGCGGTGTCAAGGACGTCGCGCTGGAGCGGTCGTGGCCGCACGGTCTGCAGGTGTCCGTCGTGGCGCGCGAACCGGTCGCCGCGGTCCCGGACGACGGGGACTTCGTGCTGCTCGACGACGAGGGGGTCCGCCTCGGCCGTCGGGGCGCGGTGCCGGAGGGGCTCCCGGTGGTCTCCGTGCCGCTCGAGCAGGAGTCCGTCCGCGCGCTGCGGGCGGCGCTGGCCGTGGTCGCGGCGCTGCCGCCCGGTCTGGCAGCCCGTGTGGAGACGGTGAGCGCCCGCACCCAGGACGACGTCGAGACCGTGCTCCGCGACGGACTGAGCGTCCGGTGGGGCGGTGCGGAGCGGCTGCCGCTGAAGGTGGAGGTCGTGCGCACCCTGCGTCAGGTCGGCGGCGACGTCGCCGTCATCGACGTGTCCTCGCCCGAGCTTCCCGTGACCCGTTGAMRRHRSWRTVLVVVLVLLLAGGAGWVVGWSDLLALEADEVAVTGADSSVVDDERVHEIAVAAAGTPLARLDASGMAEEIRGLRGVKDVALERSWPHGLQVSVVAREPVAAVPDDGDFVLLDDEGVRLGRRGAVPEGLPVVSVPLEQESVRALRAALAVVAALPPGLAARVETVSARTQDDVETVLRDGLSVRWGGAERLPLKVEVVRTLRQVGGDVAVIDVSSPELPVTRNANANANANA
AK018_002871344ftsZ_1Cell division protein FtsZGTGGCAACTCCGCAGAACTACCTGGCAGTGATCAAGGTGGTCGGCATCGGCGGTGGCGGCGTGAACGCCGTGAACCGCATGATCGAGGTCGGCCTCAAGGGTGTCGAGTTCATCGCCATCAACACCGACGCGCAGGCCCTGCTGATGTCGGACGCCGACGTCAAGCTGGACGTCGGCCGCGAGCTCACGCGCGGGCTCGGCGCGGGGGCGGACCCCGAGGTCGGCCGCAAGGCCGCCGAGGACCACGCCGAGGAGATCGAGGACGTCCTGCGAGGGGCGGACATGGTCTTCGTCACGGCGGGCGAGGGCGGCGGCACCGGCACCGGCGGCGCGCCGGTCGTGGCCCGCATCGCGCGGTCGCTGGGTGCGCTGACCGTGGGCGTGGTCACCCGGCCGTTCACCTTCGAGGGGCGTCGCCGCTCGGTGCAGGCCGAACAGGGGATCGAGCAGCTCCGCGAGGAGGTCGACACCCTCATCGTGATCCCGAACGACCGGCTGCTGTCGATGTCGGACCGGAACGTCTCGGCGATCGCCGCGTTCCACTCCGCCGACCAGGTGCTGCACTCCGGCGTCCAGGGGATCACCGACCTCATCACCACCCCCGGCCTGATCAACCTGGACTTCGCCGACGTGAAGTCCGTGATGCAGGGTGCCGGGTCCGCCCTCATGGGCATCGGCTCGGCCCGCGGGGAGGACCGCGCCGTCCAGGCCGCCGAGCTCGCGATCTCCTCGCCGCTGCTGGAGGCCTCCATCGACGGCGCGCACGGCGTGCTGCTGTCGATCCAGGGCGGCAGCGACCTCGGCCTGTTCGAGGTGCACGAGGCGGCACGCCTGGTGCAGGAGGCGGCCCACCCCGAGGCGAACATCATCTTCGGCACGGTCATCGACGACGCGCTCGGCGACGAGGTCCGGGTCACGGTCATCGCCGCCGGCTTCGACGGCGGGCTGCCCAAGGCGCGCGAGGACTCCCGGGCGCTCGGGCAGGTCACCGGCAGCTCCGCGGCCGGCCGGCCGGCCGTCGACGACGGCGCGGCCGGGCGTCCTGCCCCGGCGTCCGCGTCGAGCCCGGCGTCGCCGGCCGGTGGTCAGGGCGTCTCCCCGGCGACCGCCCCGGTGCCCGCCGCCGAGCCCGCGCACGCCCGTCCGCGGCCGATCCCGGCGGACCCGGACGACGTGCCGGCGAGCCTGGAGCCGGTGGGCGGCAGCCCGCGCCCGGCGCAGCTCGGCGTCGTCGAGGAGGGCAACGGCGAGGGCGTGACGGTCGAGCGTCCGGTGGACGTGCCCCGGATGGTCGACCAGTCCCGGCCCGCCGAGGACCTCGACGTCCCCGACTTCCTCAAGTGAMATPQNYLAVIKVVGIGGGGVNAVNRMIEVGLKGVEFIAINTDAQALLMSDADVKLDVGRELTRGLGAGADPEVGRKAAEDHAEEIEDVLRGADMVFVTAGEGGGTGTGGAPVVARIARSLGALTVGVVTRPFTFEGRRRSVQAEQGIEQLREEVDTLIVIPNDRLLSMSDRNVSAIAAFHSADQVLHSGVQGITDLITTPGLINLDFADVKSVMQGAGSALMGIGSARGEDRAVQAAELAISSPLLEASIDGAHGVLLSIQGGSDLGLFEVHEAARLVQEAAHPEANIIFGTVIDDALGDEVRVTVIAAGFDGGLPKAREDSRALGQVTGSSAAGRPAVDDGAAGRPAPASASSPASPAGGQGVSPATAPVPAAEPAHARPRPIPADPDDVPASLEPVGGSPRPAQLGVVEEGNGEGVTVERPVDVPRMVDQSRPAEDLDVPDFLKPGPT0027695_1461DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027695-ftsZ-K03531NANA
AK018_00288774COG1496Polyphenol oxidaseATGTTGCCCGAGGACTTCGGCGCGGGTCTGCTGCGGGCAGACCTGGGCGAGGGCGTGGTGGCGGGGTTCACCACGCGCCACGGCGGCGTCTCGCCGGCGCCGTGGTCGTCCCTCGACCTGGCCGACATCACGGGCGACGACAGCGCGCGCGTCCAGCGCAACCGCGACCTCCTGGCCGAGTGGGTCGGGGCCCCCGTGGCCTTCGCCACGCAGGTGCACGGCGCGGACGTCCTCGAGCTCGGACCGGCCGAGCGTGGCGAGTGGTCCGGTGCGCCCCCGATGAGCGCCGGTACCGCGGACGGCCTGGTCACCGCGGAACCGGGACTGGGGCTCGGCGTGCTCGTCGCGGACTGCGTCCCGGTGCTGCTCGCCGACCCCGTGGCCCGGGTGGTCGGCGTCGCCCACGCCGGACGCCGGGGACTCGTCGCCGGCGTCGTGGACCGTGTCGTCGACCGCCTGCTGGCGCGCGGCGCCGAGGTGGACCGGCTGCGCGCCGCCGTCGGGCCGGCGGCGTGCGGGGCGTGCTACGAGGTGCCGGAGGACCTGCGCGACGAGGTCACCGCCGTCGTGCCCGAGAGCTGGGCGACCACGGCGCGCGGCACCGCCGGGCTGGACCTGCCGGCCGGGGTGACGGCCCGGCTCGCCGCGCGGGGCGTCGCCACCACACGGGTCGATCGCTGCACGATGACCGACGCGGACCTGTTCTCGCACCGTCGGGCCACGGCCGCCGGCGAGGTCGCGGGACGCCAGGCGGGTGTCGTCGTCCTGTCGTGAMLPEDFGAGLLRADLGEGVVAGFTTRHGGVSPAPWSSLDLADITGDDSARVQRNRDLLAEWVGAPVAFATQVHGADVLELGPAERGEWSGAPPMSAGTADGLVTAEPGLGLGVLVADCVPVLLADPVARVVGVAHAGRRGLVAGVVDRVVDRLLARGAEVDRLRAAVGPAACGACYEVPEDLRDEVTAVVPESWATTARGTAGLDLPAGVTARLAARGVATTRVDRCTMTDADLFSHRRATAAGEVAGRQAGVVVLSPGPT0019965_1709DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-POLYPHENOL_OXIDASE,PGPT0019965-yfiH-K05810NANA
AK018_00289477sepF_1Cell division protein SepFATGGGCGGAGCGCTTCGCAAGACGATGCTGTACCTGGGGCTGGCCGACGACCAGCGCCCCGACGGGGAGTACCTCGACGACTACGACGAGGAGCTGGAGCCGGTGCGTGACGACGACTACCAGGCCGAGGTCACGCCGCTGCACCGTGACGGGGTGCCGGCCGACGCCCTCGTCGGCGGCGACCTGCGTCGCATCACCACCATCCACCCGCGGTCGTACAACGACGCGCGGCTGATCGGCGAGGCCTTCCGCGGCGGGACGCCGGTCATCATGAACCTGTCGGACATGGACGACTCCGACGCCAAGCGGCTCGTCGACTTCTCGGCGGGACTGATCTTCGGCCTGCGGGGCTCCATCGAGCGGGTCACGAACAAGGTCTTCCTGCTCTCGCCCGAGCACGTCGAGATCGCGGGCGAGGAGCAGGTCGCCCCGCGGCCGACCGAGGCCCGTGCGGGAGCCTTCTACAACCAGAGCTGAMGGALRKTMLYLGLADDQRPDGEYLDDYDEELEPVRDDDYQAEVTPLHRDGVPADALVGGDLRRITTIHPRSYNDARLIGEAFRGGTPVIMNLSDMDDSDAKRLVDFSAGLIFGLRGSIERVTNKVFLLSPEHVEIAGEEQVAPRPTEARAGAFYNQSNANANANANA
AK018_00290297hypothetical proteinGTGAGCGTGATCTTCAGCCTCGTCGGCTTCGTCCTGCTGCTGTTCCTGCTGTGCCTCATCGTCCGGCTGGTCTTCGACTGGGTGCAGTTCTTCGCCCGTGACTGGCGTCCGCGCGGCGTCGTCCTCGTGATCGCCGAGGGTGTGTACACCGTCACAGACCCGCCGCTGCGCGCGCTGCGCCGGATCATCCCGCCGCTGACCCTCGGCAGCGTGCGCCTGGACCTCGCCTTCCTCGTCCTGTTCCTGGCGACGTCGATCCTCATGCAGGTCGCGAACGGTCTGGCTGCGAGCCTCTGAMSVIFSLVGFVLLLFLLCLIVRLVFDWVQFFARDWRPRGVVLVIAEGVYTVTDPPLRALRRIIPPLTLGSVRLDLAFLVLFLATSILMQVANGLAASLPGPT0013730_1997DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IVa_PILUS_HOMOLOG_PROTEIN,PGPT0013730-yggT|ylmG-K02221NANA
AK018_00291648COG3599Cell wall synthesis protein Wag31ATGGCACTGCTGACGGCAGAGGACATCCTCAACAAGAAGTTCTCGGCGACGAAGTTCCGCGAGGGCTACGACGTCGAAGAGGTCGACGACTTCCTGGACGAGGTCGTCCGGACTCTGACGGCGGTGCAGGAGGAGAACGACGACCTGCGGTCGAAGCTGTCCGCGGCCGAGAGCCGGGTCGCGGAGCTCAGCCGCAACGAGGCCGCGGCGCAGTCGGCCGAGAAGCCCGAGGCCCCGGCTCCGGCCGCCGCGCCCGCTCCCGCGCCGGCCCTGGCCGAGGCGGCCGCCGGCAAGCAGGGCGCCGAGCCCGAGTCCGCCACGGGCATGCTGCAGCTCGCCCAGAAGCTGCACGACGACTACGTCCGCTCCGGCCAGGAGGAGGGCGACCGGCTCATCGCCGAGGCGAAGGCCGAGGGCTCCCGCATCGTCCGCGAGGCCGAGGAGACCAGCCACCGCACGCTGTCGCAGCTGGAGCAGGAGCGGTCGCTGCTCGAGCGCAAGATCGACGAGCTGCGCCTGTTCGAGCGGGACTATCGCACCCGCCTGAAGAGCTTCCTGCAGAACCTGCTCGGCGACCTGGACGCCCGCGGCTCGGCCCTGCCGCCGCAGCGTCAGAACGCCGCGGCGGGTCGCTCGCAGGACGTCTGAMALLTAEDILNKKFSATKFREGYDVEEVDDFLDEVVRTLTAVQEENDDLRSKLSAAESRVAELSRNEAAAQSAEKPEAPAPAAAPAPAPALAEAAAGKQGAEPESATGMLQLAQKLHDDYVRSGQEEGDRLIAEAKAEGSRIVREAEETSHRTLSQLEQERSLLERKIDELRLFERDYRTRLKSFLQNLLGDLDARGSALPPQRQNAAAGRSQDVPGPT0014806_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014806-gpsB-NANANA
AK018_00292462dksA_1RNA polymerase-binding transcription factor DksAATGTCCAAGCTCTCCACCTCCCAGCGGGCGACGATCCGCGAGGAGTTCCCGAACCTGACGCGTGACGTCAAGGAGTTCCCCGTGCGTGACGGCGAGGAGCCGTGGACGCTCCAGGAGGTGTCCGAGCTCGCGCTGCTGCTCCTGGAGGACAAGGAACGCTTCACCGCCGAGCTGGCCGCTGCCGACGCCGAGCTGTCCGACCTCCTGCGCAACTCCGGCGACGGCGCCGGGGACGACCAGGCCGACTACGGTTCCAGCGCGCTCGAGCGCGAGCAGGAGCTCACGCTCGTGAACAACCTGCGCGACCTGCTGGACCAGACGACCCACGCGCTGGACCGCATCCGCAACGGCGCCTACGCCACCTGCGAGGTCACCGGGGCGCCGATCGGCAAGGCACGGCTGCAGGCCTTCCCGCGCGCGACCCTGTCGGTCGAGGCGAAGGCACGCGAGGAGCGTCGGTAGMSKLSTSQRATIREEFPNLTRDVKEFPVRDGEEPWTLQEVSELALLLLEDKERFTAELAAADAELSDLLRNSGDGAGDDQADYGSSALEREQELTLVNNLRDLLDQTTHALDRIRNGAYATCEVTGAPIGKARLQAFPRATLSVEAKAREERRPGPT0014560_543DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204NANA
AK018_00293630lspA_1COG0597Lipoprotein signal peptidaseATGTCCACGACGCCCGCCGGGTCCGACCCGGTCCCCGACCCTCCCCACGAGACCGCGTCCTCCGCGCCCCAGGACGCCGACGACGCCGTCGCCACGCACGACGCCGCGGCGGCCGCCCGTCGCCGTCGGCTCGGCGTCGGCGCGCTGAGCCTCGCCGCCGTCGTGCTGGTCACCGACCAGCTGACGAAGTGGTGGGCGCTGGTCGCGCTGACCGAGGGCGAACGGATCGCGCTGCTCGGCGACCTGCTGGGGCTGACCCTGGTGTTCAACCCGGGCGCCGCGCTGTCGTTCATGGCGAACGGCTACACCTGGGTCCTGACGATCGTCGTCGTGGTGGTCGTCGTGGTGATCCTGCGCGCGATGCGTCGCATCGGGTCGCTCGGCTGGGCCGTCGCGCTGGGCCTGCTCCTGGGCGGCGCGCTGGGCAACCTCGTCGACCGGATCTTCCGGCAGCCGGGCTTCGCCCGCGGCGAGGTGGTCGACATGATCGCCTACGCCGACTTCTTCGTCGGCAACGTCGCGGACATCGCCATCGTCGTCGCCGCCGGTCTGATCATCCTGCTGTCCTTCCGGGGCGTCGGGCTCGACGGCACGCGTCAGATCTCCGACGAGACGGAGGACGAGGACTGAMSTTPAGSDPVPDPPHETASSAPQDADDAVATHDAAAAARRRRLGVGALSLAAVVLVTDQLTKWWALVALTEGERIALLGDLLGLTLVFNPGAALSFMANGYTWVLTIVVVVVVVVILRAMRRIGSLGWAVALGLLLGGALGNLVDRIFRQPGFARGEVVDMIAYADFFVGNVADIAIVVAAGLIILLSFRGVGLDGTRQISDETEDEDPGPT0004770_713DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004770-pbrB|pbrC-K03101NANA
AK018_00294933COG0564putative RNA pseudouridine synthaseATGGCGCTGCGGACGCTGCCCGTGCCCGACGGCCTGGCCGGTGAACGGGTGGACGTCGCCCTGGGCCGCATGCTCGGGTTCTCCCGCAGCCAGGCGGCCGAGCTCGCCGCGTCCGGCGCGGTGCGCGCGGACGGGCGCACCGTGGGCAAGTCCGACCGGCTGGTGCCCGACACGCTCCTCGAGGTGGACGTCCCGGACGCCCCGGCCGAGGCGGTGGAGGTCGTCGCCGAGCCGGTGGAGGGCATGTCGATCGCCTACGACGACGACGACGTCGTGGTCGTGGACAAGCCGGTCGGGGTGGCCGCGCACCCGTCGCCGGGGTGGACCGGCCCGACCGTGGTCGGCGCGCTGGCCGCCGCCGGCTACCGCATCGCCACGTCTGGCGCCGCCGAGCGGCAGGGGATCGTGCACCGCCTCGACGTCGGCACCTCCGGCCTGATGGCGGTGGCCAAGTCCGAGGCCGCCTACACGGGTCTCAAGCGCGCCTTCAAGGAGCGCACGGTCGACAAGGTCTACCACGCGCTCGCCCAGGGCCATCCGGAGCCGACGACGGGCACGATCGACGCGCCGATCGGCCGGCACCCGCACCACGACTACAAGTTCGCCGTGGTCGCCGACGGCAAGCCCTCGGTGACCCACTACGAGGTGCTGGAGATGCTGCCGGCCGCGTCCCTGGTCGAGGTGCACCTGGAGACGGGCCGCACCCACCAGATCCGGGTGCACTTCGCCGCGCTGCGCCACCCGCTCGTCGGCGACCTGACCTACGGGGCCGACCCCACGCTCGCCGCCCGCACGGGGCTGCAGCGGCAGTGGCTGCACGCGATGCGCCTGGGGTTCACCCACCCCGTCACGGGGAAGGACGTCGTCGTGGAGTCCGAGTACCCCGAGGACCTGTCGCACGCCCTGCAGACGCTGCGCGACGCCTACCTGTGAMALRTLPVPDGLAGERVDVALGRMLGFSRSQAAELAASGAVRADGRTVGKSDRLVPDTLLEVDVPDAPAEAVEVVAEPVEGMSIAYDDDDVVVVDKPVGVAAHPSPGWTGPTVVGALAAAGYRIATSGAAERQGIVHRLDVGTSGLMAVAKSEAAYTGLKRAFKERTVDKVYHALAQGHPEPTTGTIDAPIGRHPHHDYKFAVVADGKPSVTHYEVLEMLPAASLVEVHLETGRTHQIRVHFAALRHPLVGDLTYGADPTLAARTGLQRQWLHAMRLGFTHPVTGKDVVVESEYPEDLSHALQTLRDAYLNANANANANA
AK018_002953570dnaE1_1COG0587DNA polymerase III subunit alphaATGCCGGACGCCGCCACCTCGAAGACCGACGACTTCGTCCATCTGCACGTGCACACCGAGTACTCCATGCTCGACGGCGCCGCGCGGATGGACGACCTCTTCTCCGAGGTGGCGCGGCTCGGACAGAAGGCCGTCGCGATCACGGACCACGGCTACCTGTTCGGCGCCTTCGACTTCTGGAGCACGGCCCGGAAGTACGACGTCAAGCCGATCATCGGCGTCGAGGCGTACGTCACGCCGGGCACCAGCCGCCACGACCGCACGAAGGTCCAGTGGGGCGAGCAGCACCAGAAGCGCGACGACGTCTCCGCCGGCGGCGCCTACACCCACATGACCCTGTGGTCGCGGAACAACACCGGGATGCACAACCTCTTCCGGGCGTCCTCGCTGGCCTCGCTGGACGGCCAGATGGGCAAGTGGCCCCGCATGGACCGCGAGCTGCTGGAGACGTACTCCGACGGGCTGATGGCCACCACGGGCTGCCCCTCGGGGGAGATCCAGACCCGGCTCCGGCTCGGCCAGTGGGACGAGGCGGTCCGGGCCGCCGGCGAGTACCAGGACATCTTCGGCCACGAGAACTACTTCGTGGAGCTGATGGACCACGGGATCGAGATCGAGTCCCGGACCTCGAAGCAGCTCCTCGAGCTCGCGCAGCACATCGGCGCCCCGCTGGTGGCCACCAACGACCTGCACTACACCAAGCGCGAGGACTCCCACGCCCACGAGGTGCTGCTGGCGGTCAACTCGGGCTCGACCCTGGACGAGCCCACCTACGACCAGGGCGGCAGCCGGTTCGCGTTCAGCGGCGACAACTTCTACGTCAAGTCCGGCGCCGAGATGCGCCGGCTCTTCACCGAGATGCCCGAGGCGATCGACAACACCCTGCTCATCGCCGAACGGTGCGAGGTCTCCTTCGACACCGGGGCGAACTACATGCCGAACTTCCCGGTGCCCGCCGGGGAGGACGAGGTCTCCTGGTTCGTCAAGGAGGTCGAGAAGGGCATGCACGTCCGGTACCCGCAGGGTGTCCCCGACCCCGTGCGCGCCCAGGCGAAGTACGAGACCGAGGTCATCGTCCAGATGGGCTTCCCCGGGTACTTCCTCGTGGTGGCCGACTTCATCAACTGGGCCAAGGAGCAGGGCATCCGCGTCGGCCCGGGCCGTGGCTCGGCCGCCGGGTCGATGGTCGCCTACGTCATGGGCATCACGGAGCTCGACCCGATCGAGCACGGCCTGATCTTCGAGCGCTTCCTCAACCCCGAGCGCGTGAGCATGCCCGACGTCGACGTGGACTTCGACGAGCGCCGGCGCTCCGAGGTCATCCGCTACGTCTCCGACAAGTACGGCGACGACCGCGTGGCCATGATCGCCACCTACGGGTCCATCAAGGCCAAGCAGGCGCTCAAGGACGCCTCGCGGGTGCTCGGGTTCCCGTTCGCGATGGGGGAGAAGCTCACCAAGGCGATGCCGCCGCCCGTCATGGGCAAGGACATCCCGCTGTCCGGCATCTTCGACCCGGACCACGACCGGTACTCCGAGGCCGGCGAGTTCCGCCAGCTGCACGACACCGACCCCGAGGCGCAGCGCGTCGTCGAGACCGCGCGCGGCATCGAGGGCCTGAAGCGGCAGTGGGGCGTGCACGCGGCCGGCGTCATCATGTCCAGCGACCCGCTGATCGACGTCATCCCCATCATGCGGCGCCCGCAGGACGGCGCGGTCATCACGCAGTTCGACTACCCGACCTGCGAGGGCCTCGGCCTGATCAAGATGGACTTCCTCGGGCTGCGCAACCTCACGATCCTCGAGGACGCCCTGGAGATCATCGAGGCCAACGGCAAGGACCCCGTCCAGATCGAGACGGTGGCGCTGGACGACAAGGCGTCCTACGACCTGCTCGCCCGCGGCGAGACCCTCGGGGTGTTCCAGCTCGACGGCGGGCCCATGCGCTCGCTGCTGCGCCAGATGCGGCCCGACAAGTTCGACGACCTCTCCGCCGTCATCGCCCTGTACCGACCCGGTCCGATGGGCATGAACTCGCACGTCAACTACGCGCTGCGCAAGAACGGCATGCAGAAGATCGAGCCGATCCACCCCGAGCTCGCGGAGCCGTTGTCGGAGGTGCTCGACGAGACCTACGGCCTCATCGTCTACCAGGAGCAGGTCCAGCGCGCCGCGCAGGTGCTCGCCGGGTACTCGCTGGGCCAGGCCGACCTGCTGCGCCGCGCCATGGGCAAGAAGAAGCCCGAGGTGCTCGCCAAGGAGTTCGTGAACTTCGAGGCCGGCTGCAAGGAGCGCGGCTACTCGGACGCCGCCATCCAGGCGGTGTGGGACGTGCTGGTGCCCTTCGCCGGGTACGCCTTCAACAAGGCGCACTCGGCCGGCTACGGCCTGGTCGCCTACTGGACCGCCTTCCTCAAGGCGAACTACCCGACCGAGTACATGGCGGGTCTCCTGCAGTCGGTGCGGGACGACAAGGACAAGATGGCGCTCTACCTCAACGAGTGCCGTCGCATGCGCATCACGGTGCTGCCGCCGGACGTCAACGACTCCGCGGCCAAGTTCACGGCCGTCGGCGAGGACATCCGCTTCGGCCTGACGGCGGTGCGCAACGTCGGCGCCAACGTGGTGGACGCGATCGTCGCGGCCCGCGAGGAGCACGGGGCCTTCACCTCGTTCACCGACTTCCTGGACAAGGTGCCCGCGGTGGTGTGCAACAAGCGCACCATCGAGTCGCTGATCAAGGCCGGAGCCTTCGACTCGCTGGGCCACCCGCGCCGGGCGCTGCTCGTCGTGCACGAGCAGGCGGTGGACTCGGTGATCTCGGTCAAGCGCAAGGAGGCGGAGGGGCAGTTCGACCTCTTCGCCGACTTCGGTGCGGACGGCGCCGCGGACGACGCCGTGTCGTTCGCCGTCGACGTGCCGGACCTGCCCGACTGGGACAAGAAGCAGCGGTTGTCCTTCGAGCGGGAGATGCTCGGCCTGTACGTCTCGGACCACCCGCTGTCCGGGCTGGAGCACGTCCTGGCGCGTGCCGCCGACACCTCGATCGCGCTGCTCATGGCCGACGAGACCCGGGCCGACGGGTCCTCGGTCACCGTCGCCGGCCTGCTGACGTCGGTGCAGCGCAAGATCAGCAAGAACGGCAACCCGTGGGCCGCGGTGACGATCGAGGACCTGGAGGGCGGCGTCGAGGTGATGTTCTTCGGCGAGACGTACCTGGCCTACTCCACGGTGCTGGCCGAGGACCAGGTCGTCACGATCCGCGGCCGCGTGCGGCGCCGGGACGAGCAGATGCAGCTCCAGGCGCAGGAGGTCTCCCTGCCCGACACCTCGGCGGTGGCGGACGCCCCGGTGCACGTCACCGTGCCGCACACCCGGTGCGTCGAACCGGTGATGCTGCGCCTGCGCGAGGTGCTGTCGACCCACCCGGGGTCCTCGGCCGTGCACGTCGCCGTCGCCGAGCCGGGCAAGAAGACCCTGGTGCAGGCCGGTGACGGGCTGCGGGTCGAGAGGTCACCCGCCCTGTTCGGCGACCTCAAGGCGCTCCTCGGCCCGAGCTGCCTGTCGTGAMPDAATSKTDDFVHLHVHTEYSMLDGAARMDDLFSEVARLGQKAVAITDHGYLFGAFDFWSTARKYDVKPIIGVEAYVTPGTSRHDRTKVQWGEQHQKRDDVSAGGAYTHMTLWSRNNTGMHNLFRASSLASLDGQMGKWPRMDRELLETYSDGLMATTGCPSGEIQTRLRLGQWDEAVRAAGEYQDIFGHENYFVELMDHGIEIESRTSKQLLELAQHIGAPLVATNDLHYTKREDSHAHEVLLAVNSGSTLDEPTYDQGGSRFAFSGDNFYVKSGAEMRRLFTEMPEAIDNTLLIAERCEVSFDTGANYMPNFPVPAGEDEVSWFVKEVEKGMHVRYPQGVPDPVRAQAKYETEVIVQMGFPGYFLVVADFINWAKEQGIRVGPGRGSAAGSMVAYVMGITELDPIEHGLIFERFLNPERVSMPDVDVDFDERRRSEVIRYVSDKYGDDRVAMIATYGSIKAKQALKDASRVLGFPFAMGEKLTKAMPPPVMGKDIPLSGIFDPDHDRYSEAGEFRQLHDTDPEAQRVVETARGIEGLKRQWGVHAAGVIMSSDPLIDVIPIMRRPQDGAVITQFDYPTCEGLGLIKMDFLGLRNLTILEDALEIIEANGKDPVQIETVALDDKASYDLLARGETLGVFQLDGGPMRSLLRQMRPDKFDDLSAVIALYRPGPMGMNSHVNYALRKNGMQKIEPIHPELAEPLSEVLDETYGLIVYQEQVQRAAQVLAGYSLGQADLLRRAMGKKKPEVLAKEFVNFEAGCKERGYSDAAIQAVWDVLVPFAGYAFNKAHSAGYGLVAYWTAFLKANYPTEYMAGLLQSVRDDKDKMALYLNECRRMRITVLPPDVNDSAAKFTAVGEDIRFGLTAVRNVGANVVDAIVAAREEHGAFTSFTDFLDKVPAVVCNKRTIESLIKAGAFDSLGHPRRALLVVHEQAVDSVISVKRKEAEGQFDLFADFGADGAADDAVSFAVDVPDLPDWDKKQRLSFEREMLGLYVSDHPLSGLEHVLARAADTSIALLMADETRADGSSVTVAGLLTSVQRKISKNGNPWAAVTIEDLEGGVEVMFFGETYLAYSTVLAEDQVVTIRGRVRRRDEQMQLQAQEVSLPDTSAVADAPVHVTVPHTRCVEPVMLRLREVLSTHPGSSAVHVAVAEPGKKTLVQAGDGLRVERSPALFGDLKALLGPSCLSNANANANANA
AK018_00296483hypothetical proteinGTGACCGGCACCGGGGACGACGGCAGCGCCGACCACCGGTTCCGGGTGGTCCCGGCGGCGTACCTGCTGCTGCGCCGGGAGGGGCAGGTGCTCCTGCAGCTGCGCCAGGGCACGGGGTTCATGGACGGGTACTGGGCGGCCGGGGCGGCCGGGCACGTCGAGCCGGGGGAGTCCGCGGTGGCCGCGGCGGTGCGCGAGGCGGCCGAGGAGCTCGGCGTCGCCGTGGCGCCGTCGGACGTGGTGCCGCTGACGGCGCAGCACCGGGGTATCCCGGGCGGCCCCGCGCTCGAGCAGCGCGTGGACTTCTTCTTCGCCGCCGACCGCTGGACCGGCGAGCTGCAGATCCGTGAGCCGGCCCGGACGGCGGACCTGCGCTGGTTCCCCCTGGTCGCGCTGCCCGAGCCGGTCGTCCCGCACGAGCTGCCCGTGCTGCGTGGCCTGCACGACGGCGTCCTGGCCCCGGTGCTGACGTTCGGCTTCTGAMTGTGDDGSADHRFRVVPAAYLLLRREGQVLLQLRQGTGFMDGYWAAGAAGHVEPGESAVAAAVREAAEELGVAVAPSDVVPLTAQHRGIPGGPALEQRVDFFFAADRWTGELQIREPARTADLRWFPLVALPEPVVPHELPVLRGLHDGVLAPVLTFGFPGPT0007945_13DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287NANA
AK018_00297798hypothetical proteinATGACAGCAGCGGAACGCCTCGGCAACCCGATAGAACCGCTGCGCGCTCTGGCGCTCTCAGTGGCTCGCTGCACCGAGGTCGAGGCGGCTGCAAAATGTTCGGAGCACCCCTGCCACGAGGTCGTTCAGGCGCAGGCAGGATCGCCTGCCATCCAACTTCCCGAGGCATGGGCGGGGAACCTTGCCGACGCAAAGATCCTGTTCCTCAGTTCGAATCCCTCGATCAGTACCCCCAAGCAAGGCGAACCATCGTCGTCCGCCGAGGCGTACCCGGACGCCAGGGCGACCGACGATGTCGTCGCCGACTTCGTCCTCCACCGTTTCGACGGCTACTGGGCCCTGCCTGAGGGCAAGCACCGACGCCTCGACGGAAAGTACACCTACGTACACTTCTGGGGCGCGATCCGCAAGGTGGCAACCGACCTTCTTGGGTACGCAGCAAGTCCCGCCGCGGACTACGTCATGACCGAACTAGTGCATTGCAAGAGCGTCAAGGAGACGGGGGTCACGCAGGCTTTGCCTCGCTGCTCTGAGCTGCACCTGGAGAGGATCATTGCCGCGAGCCCGGCGCAAGTCATCGTTGTCGTCGGTAGCAAGGCCCGCGATCGCGCGGCTGCATTGTGGGATCTTCCGTGGAAGGGCAGTGACGTACCTGCGGTGGCACGAACTGTCGCGGGACGCCGGCGCACGCTCGTCCAACTCGCGCACCCGGCAGCGTTCGGCCCGAAAGAGATGGTGTCGACGAAGTACCCCGAGGCCATTGCGCGACTCCGCTCTCTGGCCCTGGCCGAGAGCTGAMTAAERLGNPIEPLRALALSVARCTEVEAAAKCSEHPCHEVVQAQAGSPAIQLPEAWAGNLADAKILFLSSNPSISTPKQGEPSSSAEAYPDARATDDVVADFVLHRFDGYWALPEGKHRRLDGKYTYVHFWGAIRKVATDLLGYAASPAADYVMTELVHCKSVKETGVTQALPRCSELHLERIIAASPAQVIVVVGSKARDRAAALWDLPWKGSDVPAVARTVAGRRRTLVQLAHPAAFGPKEMVSTKYPEAIARLRSLALAESNANANANANA
AK018_00298408F420H(2)-dependent biliverdin reductaseGTGAAGCGCCTCAACCCCGAACAGCTCGTGTTCGTCACCGAGCGGCACCTGGCCACCCTGACGACCCTGCGCGCGAACGGGACCCCGCACGTCGTGCCGGTCGCCTTCACGTGGGACCCCGACCTCGGCATCGCCCGCATCACGGCGCGGCGGGGATCGGTCAAGGCGCGGAACGCCCGGCGCCTCGGCCGGGACGGCGAGCCGCCGCGGGCCGCGCTGTGCCAGGTCGACGGCGGCCGCTGGCTGACGCTGGAGGGCACGCTGGAAGCCGTCGAGGACCCGGACGCGGTGGCCGAGGCCGTCCGCCGCTACGCCCAGCGGTACCGCCAGGTCCAGTACGACCCGGACCGGATCGTGCTGCACCTGCACGTCGACCGGACGATGTCCTCCGCCTACATGGCGTCCTGAMKRLNPEQLVFVTERHLATLTTLRANGTPHVVPVAFTWDPDLGIARITARRGSVKARNARRLGRDGEPPRAALCQVDGGRWLTLEGTLEAVEDPDAVAEAVRRYAQRYRQVQYDPDRIVLHLHVDRTMSSAYMASNANANANANA
AK018_00299228hypothetical proteinATGGACACCCCGATCGAGGTCCCGATCCGTGACGACGTCATCCGGCTGGGACAGTTCCTCAAGCTGGCCGGCCTGGCCGAGTCGGGCACGCACGCCCGCGACCTGGTCGCGGACGGCGACGTGCGCGTCGACGGCGAGGTGGAGACGCGCCGCGGCCGGCAGCTCTCCCGGGGGACACGGGTCACCGTGGTCGGCCCGGAGGGGGACGAGACCGTCGTCGTGGCCTGAMDTPIEVPIRDDVIRLGQFLKLAGLAESGTHARDLVADGDVRVDGEVETRRGRQLSRGTRVTVVGPEGDETVVVANANANANANA
AK018_003001266hisD_1COG0141Histidinol dehydrogenaseGTGCTCCCGCGCCCCGAGGTCGGCGTGGAGCAGGCGACCGACGCCGTCGCCCCGGTCCTCGCCGACGTCCGGTCCCGCGGTGCCGCCGCGCTGCGCGACCTGGCCGAGCGTTTCGACGGGGTGCGCCCGGAGCATCTGCGGGTCCCGGCCGAGGCGCTGCGCACCGCGCTGGCCGAGCTGGACCCGGCGATCCGGGCCGGGCTGGAGGAGTCCGTGCGCCGGGTGCGGGCGGTGCACGCCGACCAGGTGCCGCGCGAGCACACCACGGTGCTGGCCGACGGCGCGGAGGTGCGCCAGCGCTGGATCCCCGTCCAGCGCGTCGGCCTGTACGCGCCGGGCGGTCTCGCGGTCTACCCCTCGTCGGTGATCATGAACGTCGTCGCCGCCCAGGAGGCGGGCGTGCCCGGCCTCGCCGTCGCCTCCCCGCCGCAGCGGGACGCCGGCGGTCTGCCGCACCCGACGATCCTGGCCGCCTGCGAGCTGCTCGGCGTGGACGAGGTCTACGCCGTCGGCGGCGCCCAGGCGGTCGCGATGCTCGCCTACGGCGCGGTCGGCTCCGACCCGGTCGACGGCGAGCAGCTGTGCGAGCCCGTGGACGTCGTCACCGGTCCGGGCAACGTCTACGTCGCCGCGGCGAAGCGCCTCGTGCGCGGCGTCGTGGGGATCGACGCCGAGGCCGGGCCGACGGAGATCGCCGTGCTGGCGGACGACACCGCTGACGCGGGTCACGTCGCGCTCGACCTGATCAGCCAGGCCGAGCACGACCCGATGGCCGCCGCGGTCCTGGTCACCCCCTCGCCGCAGCTCGCCGGGGCGGTGGAGGCCAAGCTGGTCGACCTCACCGAGGCCACCAAGCACACCGAGCGGGTGACCACTGCGCTGTCGGGCCCGCAGTCCGCGGTCGTGCTCGTCGACGACCTCGAGCAGGGCCTCGCGGTGGTGGACGCCTACGGCGCCGAGCACCTGGAGATCCAGACGGTCGACGCCGCCGCACGGGCCGAGCGGGTCCGGTCCGCCGGGGCGATCTTCGTCGGGCCCTTCGCCCCGGTGTCGCTGGGGGACTACCTGGCCGGCTCGAACCACGTGCTGCCCACGGGCGGCACGGCGCACTTCGCCAGCGGGCTGGGCGTGCACGCCTTCCTCAAGTCCGTCCAGGTCGTCGAGTACAGCCGTGAGGCCCTCGCCGAGGTGGCCGACAGGATCGTCGCGGTCGCCGACGACGAGGACCTGCCCGCGCACGGCGAGGCGGTCCGCGGGCGGTTCTGAMLPRPEVGVEQATDAVAPVLADVRSRGAAALRDLAERFDGVRPEHLRVPAEALRTALAELDPAIRAGLEESVRRVRAVHADQVPREHTTVLADGAEVRQRWIPVQRVGLYAPGGLAVYPSSVIMNVVAAQEAGVPGLAVASPPQRDAGGLPHPTILAACELLGVDEVYAVGGAQAVAMLAYGAVGSDPVDGEQLCEPVDVVTGPGNVYVAAAKRLVRGVVGIDAEAGPTEIAVLADDTADAGHVALDLISQAEHDPMAAAVLVTPSPQLAGAVEAKLVDLTEATKHTERVTTALSGPQSAVVLVDDLEQGLAVVDAYGAEHLEIQTVDAAARAERVRSAGAIFVGPFAPVSLGDYLAGSNHVLPTGGTAHFASGLGVHAFLKSVQVVEYSREALAEVADRIVAVADDEDLPAHGEAVRGRFNANANANANA
AK018_003013300hypothetical proteinATGGGCGCCATGTCCGCCGCCCCGCCCCGCTTCGATCCGCTGGAGATCGGTGCCCTCGTCGGGACGGCGACGTTCCGACGGGCGCAGGGGTACGAGCGGGGCGGCATGGTCGTCGCCTGGAGCTGGGACGAGGACGAGCGCGTCCTGTCCGCCCGCGTCGCGGGCAGCGAGGCGCGGCCGTACGGGTGCCGGGTGCGCTTCGGCCTCGACGCCGACGACCGGTACGTCCTCGGGTCCTCGACGTGCAGCTGTCCCGTCGGCACGGACTGCAAGCACGTCGCCGCCGCGCTGCTGCATGTGGGCCGGCACGGCGTCGACGGCCCCGACGGGCCGCCGGCGCCGTCCGGATGGCGCGGCCGTCTCGCCGCCGTCACGGCCCCCGACCCGGGGTCCGGCGCGGGCGACGGGACGGTCCTGCCCGTCGGCCTGCGGTTCCGGGTGGACGGCGCCTTCGCCGACGAGCCGCCCGAGCTCTCCGTCCGACCCGTCGTACCGGCCCGCCACGGCGGGTGGCGGACCGCCCCGGAGGCGAGCTGGGACGCCCTGGCCCGCGGGCTGTACGCGTTCGCCGACGTCCGCGCCACCCCGGCCCCGGCGGTGCGGCGCTGGTTCGCCGATTTCGGGGCCGCGACGAGCGACGGGTCCTCCCGTGGCCGCGAGGTGTGGCGACCGCTGGCCACGGCGGGGCGTGGGCTCTGGCCGCTCCTCGCCGAGGCGACCGCGCTCCAGATCCCGTTCGTGGGTCAGGGGAGCCGCGACGAGGTGCTCCTCGCCGGGGCGGCCTCGGTGCGCCTCGTGGCCGCGCAGACCCGGGACGGTGTCCGGCTCGATCCTGTGGTGAGCATGGACGACACGGACGTCGAGGCGCCCGACCGGCAGGGCACCGTCGGCACGACTGGCCTGTTCACGGTCGAGGCACGGCGCGGGGGCACCGTGCTGCGCCTGGGACCCAGCCCCCGCCGGCTGTCCGACGGCGCGCGGCGGCTCGTGGCCGGCGGTCCCGTCGACGTGCCGGCCGCCGACGTCGACGAGCTCCTCGCCGAGCACCTGCCCGGGCTGCGCCGTGCCGTGCCGGTCGTGTCGGACGGCAGCGTCCGGCTGCCCGAGCCCGCGCGCCCGGTGCCGGTGGCGCGCGCCGAGTTCGCGTCTCCGCAGCGGGCGCTGCTGCGGTGGTCGTGGCGGTACCCGCGGCCGTCGCCGGGCGAGGCACGGGAGGTGCCGTGGGAGGGGGCCGCCCACGACCCGGCCCGGGACCCCGCGGCGGAGGACGAGCTGCGCGCCAAGGCGGTCGCGGCCGTGCGGGCGCTGCCCGGTTTCGAGCGCTTCGACCCCGTCGACGGGCAGTCCTTCACCGGCCTGGAGGCCCTCGACCTCGCCGGCGAGGTGCTGCCCGCCCTGGCCGGCGCCGGCGTCGTCGTCGAGGCGCCCGACCTGCCCGACTACCGGCACCTGGACGCCCCGCCCCGCGTCGTGGTCGACGGGGCGCCGTCCGGCGACGCGGACTGGTTGGACCTGGGCATCTCCGTCACCGTCGCGGGCAAGGAGATCCCGTTCACCCGGCTGTTCACCGCCCTGGCCCGCGGCCAGCAGCGGCTGCTGCTCACCGACGGCTCGTGGTTGCGCCTGAACCACACCTCGTTGCGGCGCCTGCGGAACCTCATCGACGAGGCCTCCGCCCTCGACGACGGCTCGCGCACCCTGCGCGTCAGCCGGTACGACGCCGAGCTCTGGGGCGACCTGGAGGACCTGGCCGACACCGTCGACGTCTCGCAGGAGTGGCGGCGCACGGTGGCCGACCTGCGCGCCCTCGCGGCCGGGGAGCGGACCGTCGCCCCGGTCCCGCCACCGCCGGGGCTGCGGGCGGAGCTGCGTCCCTACCAGCACCAGGCGTACGAGTGGCTGACCTTCCTGCACCGTCACGGCCTGGGCGGGATCCTCGCCGACGACATGGGGCTGGGCAAGACCCTCGAGGTGCTCGCGTTCGTCGCGGGCGCCCGGTCCCGGGCCGCGACCGAGGACGCGCCGCTGCGGCCCGTCGTCGTGGTCGCTCCCGCCTCCGTCGTCGGCAACTGGGTCGACGAGGCGAGCCGGTTCACCCCCGACCTGCGGGTCGTCACGGTGCCCACCACGACGGCGAAGCGCGGCCGGCCGCTGGGCGAGCTCTGCGCCGACGCCGACGTCGTCGTGGTCTCCTACGCCGTGTTCCGGCTGGACTTCGCCGCCTTCCAGGAGCTGACGTGGGCAGGTCTCGTCCTCGACGAGGCCCAGTTCGCCAAGAACCCGCGCACCCGCGCGCACCAGACGGCGCGGCGCCTGCGCGCGCCCTTCAAGCTGGCCGTCACGGGTACCCCGCTGGAGAACAACCTCACCGAGCTGTGGGCGATGCTCGCCGTCGTCGCCCCGGGGCTGTACCCCTCCTCGCACCGGTTCCGGGCCGAGGTGGTCCGTCCGGTCGAGGCGGCGGGCCGCGACGACGACCCGCAGGTCGTCGCCGCCGGGAACCGGGCGCTGTCACGGCTGCAGCGGCGGCTGCGCACCCTCATGCTGCGGCGCACCAAGGAGCAGGTCGCCCCGGAGCTGCCGGCGCGGACCGAGCAGGTGCTGCGGGTGCCGCTCACGGCCGACCACCGCAAGGTCTACGACACCCACCTGCAGCGCGAGCGGCAGCGCCTCCTCGGCCTGCTCACCGACTTCGAGGCCAACAAGGCGGCGATCTTCCGTTCGCTGACGACGCTGCGGCGGCTGGCACTGGACGCCGCCCTCGTCGACGACGCCTACACCGGGGTCACCTCGGCCAAGCTCGACCTCGTGGTCGACCAGCTCGTCGAGATGGCCGCCGAGGGGCACCGGGCCCTGGTCTTCTCCCAGTTCCCCTCGTTCCTGCGCCGGGTCGAGGCGCGCTGCGAGGAGGCGGGACTGCCGACGGCGTTCCTCGACGGCGCCACCCGCGACCGGGCCGGGGCGATCGCCGGCTTCACGGACGGGGCGACCCCCGTGTTCCTCATCAGCCTCAAGGCCGGCGGGTTCGGGCTCAACCTCACCGAGGCCGACCACGTCTACCTGCTGGACCCGTGGTGGAACCCGGCGGTGGAGGCGCAGGCGATCGACCGCACGCACCGGATCGGCCAGACGCGACCGGTGCAGGTCACCCGGCTGGTCGCCGCCGACACCGTCGAGGAGAAGGTCATGGCCCTGGCGGCCCGCAAGGCGGCACTCTTCGACGCCGTCGTCGACGACGCGACGGGCCGGTTCGCCAGCGGTCTCGACGCCGACGACGTGCGCGGTCTGCTGGGGGAGTAGMGAMSAAPPRFDPLEIGALVGTATFRRAQGYERGGMVVAWSWDEDERVLSARVAGSEARPYGCRVRFGLDADDRYVLGSSTCSCPVGTDCKHVAAALLHVGRHGVDGPDGPPAPSGWRGRLAAVTAPDPGSGAGDGTVLPVGLRFRVDGAFADEPPELSVRPVVPARHGGWRTAPEASWDALARGLYAFADVRATPAPAVRRWFADFGAATSDGSSRGREVWRPLATAGRGLWPLLAEATALQIPFVGQGSRDEVLLAGAASVRLVAAQTRDGVRLDPVVSMDDTDVEAPDRQGTVGTTGLFTVEARRGGTVLRLGPSPRRLSDGARRLVAGGPVDVPAADVDELLAEHLPGLRRAVPVVSDGSVRLPEPARPVPVARAEFASPQRALLRWSWRYPRPSPGEAREVPWEGAAHDPARDPAAEDELRAKAVAAVRALPGFERFDPVDGQSFTGLEALDLAGEVLPALAGAGVVVEAPDLPDYRHLDAPPRVVVDGAPSGDADWLDLGISVTVAGKEIPFTRLFTALARGQQRLLLTDGSWLRLNHTSLRRLRNLIDEASALDDGSRTLRVSRYDAELWGDLEDLADTVDVSQEWRRTVADLRALAAGERTVAPVPPPPGLRAELRPYQHQAYEWLTFLHRHGLGGILADDMGLGKTLEVLAFVAGARSRAATEDAPLRPVVVVAPASVVGNWVDEASRFTPDLRVVTVPTTTAKRGRPLGELCADADVVVVSYAVFRLDFAAFQELTWAGLVLDEAQFAKNPRTRAHQTARRLRAPFKLAVTGTPLENNLTELWAMLAVVAPGLYPSSHRFRAEVVRPVEAAGRDDDPQVVAAGNRALSRLQRRLRTLMLRRTKEQVAPELPARTEQVLRVPLTADHRKVYDTHLQRERQRLLGLLTDFEANKAAIFRSLTTLRRLALDAALVDDAYTGVTSAKLDLVVDQLVEMAAEGHRALVFSQFPSFLRRVEARCEEAGLPTAFLDGATRDRAGAIAGFTDGATPVFLISLKAGGFGLNLTEADHVYLLDPWWNPAVEAQAIDRTHRIGQTRPVQVTRLVAADTVEEKVMALAARKAALFDAVVDDATGRFASGLDADDVRGLLGENANANANANA
AK018_003022463rhlE_2ATP-dependent RNA helicase RhlEGTGACCTCCTCCGACGACCCGTACGCCGGCCTCGAGCCGGTCTGGACCGACGCCGACGTGCCGCCGGACGACGACGTCCCGCCGCCCGAGGACGAGCTCGACCCTCCCGCGGACGCGCACCTGGCGCGCCCGGCCGCCGCCCCGGCACCCGCGGCGGCGGCTGCGGCCGGGGCACCGGGAACCGGCGCGGGTGACCGGGCCGAGGCCGCCCGGCGCGCGAAGCTCGCGATGCTGCGGGGCCTGATGGACACCGCCGGCAGCGGCGACGGGTCGAGCACGCTGCGCGAGGAGGCCGCCACGGCCCTGCGCGCGCTGGTCGGACGCGACGACGCCGAGCTGCGCGAGGACCAGTGGAGCGCCATCGAGGCGCTCGTCGCCTTCCACCGCCGGGCGCTGGTCGTCCAGCGCACCGGCTGGGGCAAGTCGGCGGTCTACTTCGTCGCCACCCGGCTGCTGCGCGCCCGCGGCGCCGGGCCGACCGTCATCGTCTCGCCGCTGCTGGCGCTCATGCGCGACCAGATCGCCGCCGCCGAGCGGGCAGGCATCCACGCGGTGACGATCAACTCCTCGAACGTCACCGAGTGGGACGCGATCCACGCCCAGATCGCCGCGGGCGAGGTGGACGTGCTGCTGTGCTCCCCCGAGCGGCTCAACAACCCGGCGTTCCGCGACGAGGTGCTGCCGCGCCTGGCTGCGGACGCCGGCCTGGTGGTCGTCGACGAGGCGCACTGCATCTCCGACTGGGGGCACGACTTCCGGCCCGACTACCGGCGCATCCGCACGCTCCTGGCCGACCTGCCGCCGGGCATCCCGGTGCTGGCGACCACCGCGACCGCCAACGAGCGCGTCACGCGCGACGTGGCCGAGCAGATGGCCGTCCACGGCGAGGGGGTCACCGCCGCCGACGGCGCCCTGGCGACCAGCGACGACGTCCTCGTGCTCCGCGGTGGCCTGGACCGGGAGTCGCTGCACCTGGCGGTGCTGGAGCTCGGGGACCAGCCGACGCGCGTGGCCTGGCTCGTCGAGGCGTTGCAGGAGATCGACGGGTCCGGGATCGTGTACTGCCTGACGGTCTCGGCCGCGGAGGAGGTCGCCGCCCAGCTCCGGGCCGCGGGTCTGGCCGTGGCGGCCTACACGGGGCGCACCGACCCGACGCAGCGCGCCCAGCTCGAGGCGGACCTCAAGGCCGACGAGGTCAAGGCGCTGGTGGCGACGTCGGCGCTCGGCATGGGCTTCGACAAGCCGGACCTGGCCTTCGTCGTGCACGTCGGCGCCCCGTCGTCGCCGATCGCCTACTACCAGCAGGTCGGCCGCGCCGGTCGCGGTGTCGACGACGCCGTCGTGGTGCTGCTGCCCGGCCACGAGGACAGGGCCATCTGGGACTGGTTCGGCGCGCAGGCCTTCCCCGCCGAGGCGCAGGTCCGCGCGACGCTGTCCGCCCTGAGCGACGCCGGCGCGGCGATGTCGACCGCCGCGCTGGAGACCCACGTCGACCTCAAGCGGTCGCGGCTGGAGACGATGCTCAAGGTGCTCGACGTCGACGGGGCCGTGCGCCGCGTCCAGGGCGGCTGGGTCGCCACCGGCGTCGAGTGGGTCTACGACGCCGGTCGCTACGCCCGCGTGGCCGAGACCCGCCGCACGGAGCAGCAGGCGATGCTCGACTTCATCGCCACGCCGGGCTGCCGCATGCGGTTCCTGCGCGATCAGCTCGACGACCCGGAGCTGCCGGACGGCTGGACGTGCGGACGCTGCGACCGCTGCGGCGGGGTGACGCTGCCCCCGCCGCCCTCGGCCGACACGGTCGCCGAGGCACGGTCCGAGATGGACCGGCCCGGGGTGGCGGTCGAGCCCCGCAAGATGTGGCCGTCGGGCCTGGCCACGCTGGGGCTGGACCTGAAGGGCAAGATCGGCGACGCCGAACGCGCCGAGCCCGGACGGGCCGTGGCACGCTTCGACGGACTGGGCTGGTCGAACCCGGTGCGCGAGCTGTTCGCCCCCACCACCGCCGACGGCGAGACCCCGGTCCCGCTGCGCGGTGCCGCGGCGCGCGTGCTGGACGACTGGGACGCGCTGCGCGCCGAGGCCGCGGAGGAGGGTGCGGACCGGCCGCTGCTCGTCGAGGGCGTCGTCGCCGTGCGGTCGGTGACGCGACCGCAGCTGACCTACCACCTGGCCCACGGTCTGGCCGCGTACCTCGGCGTGCCGCTCATCGGCGCCGTCGGCCCCGCCCCGGGGGCCGAGGAACCCGGCCGGCACGACGTCAACTCCGCCATGCGCCTGGCGGGGGTGGCCCGCCGCCTCCGGCTCGAGCTGAACGAGGCGGCCCTGGCGGGCCTGCCGGGGCGCCGCGTGCTCCTGGTCGACGACTGGACCGAGTCCGGGTGGACCCTGACGGTCGCCGCACGGCTGCTGCGCCAGGCGGGCGCGGAGGCGGTGCACCCGTTCGTGCTCGGCGTGCGCTGAMTSSDDPYAGLEPVWTDADVPPDDDVPPPEDELDPPADAHLARPAAAPAPAAAAAAGAPGTGAGDRAEAARRAKLAMLRGLMDTAGSGDGSSTLREEAATALRALVGRDDAELREDQWSAIEALVAFHRRALVVQRTGWGKSAVYFVATRLLRARGAGPTVIVSPLLALMRDQIAAAERAGIHAVTINSSNVTEWDAIHAQIAAGEVDVLLCSPERLNNPAFRDEVLPRLAADAGLVVVDEAHCISDWGHDFRPDYRRIRTLLADLPPGIPVLATTATANERVTRDVAEQMAVHGEGVTAADGALATSDDVLVLRGGLDRESLHLAVLELGDQPTRVAWLVEALQEIDGSGIVYCLTVSAAEEVAAQLRAAGLAVAAYTGRTDPTQRAQLEADLKADEVKALVATSALGMGFDKPDLAFVVHVGAPSSPIAYYQQVGRAGRGVDDAVVVLLPGHEDRAIWDWFGAQAFPAEAQVRATLSALSDAGAAMSTAALETHVDLKRSRLETMLKVLDVDGAVRRVQGGWVATGVEWVYDAGRYARVAETRRTEQQAMLDFIATPGCRMRFLRDQLDDPELPDGWTCGRCDRCGGVTLPPPPSADTVAEARSEMDRPGVAVEPRKMWPSGLATLGLDLKGKIGDAERAEPGRAVARFDGLGWSNPVRELFAPTTADGETPVPLRGAAARVLDDWDALRAEAAEEGADRPLLVEGVVAVRSVTRPQLTYHLAHGLAAYLGVPLIGAVGPAPGAEEPGRHDVNSAMRLAGVARRLRLELNEAALAGLPGRRVLLVDDWTESGWTLTVAARLLRQAGAEAVHPFVLGVRNANANANANA
AK018_00303426hypothetical proteinATGACCATCATGGACGCACCCACCGGACCGGTGCCAGCGACGCGCGGCACGCCGAGCGCTCCCGTCGCCTGGGTGTGGCGTTCCCTCGCGGCCGTGAGCGTGGCCGTCTCCGCCGTGGTGCACCTGGTGCTGTGGAGCGACGGGTACCGGGACCTGGACGTCGTCGGCCCGCTGTTCCTGCTCAACGCCGTCGGAGGCCTCGCGCTCGCCGTGCTGCTCGTCGTCTGGCGGCACTGGCTCCCCCTGGTGGGCGGCATCGCGTTCGGCGCGCTCACGCTGCTGGCGTTCGTGGCCTCGGGCACCGTGGGCTTCTTCGACGTGTCCGGTCCGCTGATGTTCGGCCGCAACGAGACGATCGCGGCCGTCGCCGAGGTGGTGGCGGTGGTCGCCTCGACCGTGGCGCTGCTGCGCGAGCCGTCCCGCTGAMTIMDAPTGPVPATRGTPSAPVAWVWRSLAAVSVAVSAVVHLVLWSDGYRDLDVVGPLFLLNAVGGLALAVLLVVWRHWLPLVGGIAFGALTLLAFVASGTVGFFDVSGPLMFGRNETIAAVAEVVAVVASTVALLREPSRNANANANANA
AK018_00304447petC_1Cytochrome b6-f complex iron-sulfur subunitATGACCTCGTCCACCCCGTCCTGCTGCTCGCGCCGCCAGCTGCTGCGCGGCGCGGGCGCCGTCGCCGGCACCGCGGCCGTCGGCGGTGTCCTCGTGGCCTGCAGCGAGGGCACGGACCCGGCGGAGTCCGTGGACGACGTCGCCTCGACCGGTGCGGGGGAGGCGATCGTCGCGCTGGCCGACGTGCCGGTCGGCGGCGCGGTGAGCGCCGAGGTCGGGGGCGTCCCGGTCCTGGTCACGCAGCCGGCGGAGGGGGAGGTGCACGTCTTCAGCGCCGTGTGCACCCACCAGGGCTGCACCGTCACGCCGGGCGACGGCGTGCTCGAGTGCCCCTGCCACCGCTCGGTGTTCTCGCTCACCGACGCCGCCGTGCAGTCGGGGCCCGCGCCCGAGCCGCTGGGCGAGATCTCCGTCGAGGTGTCCGCGGGCGACGTGGTGGTCGCCTGAMTSSTPSCCSRRQLLRGAGAVAGTAAVGGVLVACSEGTDPAESVDDVASTGAGEAIVALADVPVGGAVSAEVGGVPVLVTQPAEGEVHVFSAVCTHQGCTVTPGDGVLECPCHRSVFSLTDAAVQSGPAPEPLGEISVEVSAGDVVVANANANANANA
AK018_003051134hisC_1COG0079Histidinol-phosphate aminotransferaseGTGTCCACCCCTGATGCACCGGTCCTGCCGCTGCGCCCCGAGCTCGCCGACGAGGTGCCCTACGGCGCCCCGCAGCTCGAGGTGCCCGTGCTGCTGAACGTCAACGAGAACCCGTACCCGCCCTCGGAGCAGGTCGTGGCGAGCATCGCCGCCGGCGTCGCCGACGCCGCGCGGTCGCTCAACCGCTACCCGGACCGCGACTTCCCCGCGCTGCGCCAGGACCTCGCCGACTACCTGGCCGTGGAGTCGGGCGTGCGCGTGGCGCCGGAGCAGGTCTGGGCGGCGAACGGGTCGAACGAGGTCATGCTGCACCTGCTGCAGGCGTTCGGCGGCCCCGGGCGCACGGCGCTGTCCTTCGCCCCGACCTACTCGATGTACCCGGAGTACGCCCGGGACACCCACACCCGCTGGGTGACGGGCCGCCGGGCCGAGGACTTCACCATCGACCCGGACGCCGCGGCCGCGCTGGTCGAGGCCGAGCGGCCGTCGGTGATCCTGCTGGCCAGCCCCAACAACCCGACGGGCACCGCGCTGCCGCGCGAGACCCTCGAGGCGGTCCTGGACGCCGCCGCACGGGTCCCCGCCGTCGTCGTGGTCGACGAGGCGTACGCCGAGTTCCGGCGCGCGGGCACGCCGTCGGCCCTGGAGCTGCTGGGGGCGTACCCGCACCTGGCGGTGACCCGCACGATGTCCAAGGCGTTCGCCGCGGCAGGCCTGCGGCTCGGCTACCTCGCGGCGTCGACGGCGCTCGTCGACGCCCTGCGCGTGGTGCGGCTGCCGTACCACCTGTCGGCCGTCACCCAGGCGACCGCGCGGGCCGCGCTCGCCCACCGCGACGCCCTGCTGGCTCAGGTCGCGGACCTGCGTGCGGAGCGTGACGCCCTCGTGGCATGGTTGCGTCGGCAGCGCAGCGCCGCGGGTCCGGTGCAGGTGGCCGAGAGTGACGCCAACTTCGTGCTCTTCGGGACCTTCGCGGACCGGCACGCCGTCTGGCAGGGCCTGCTGGACCGTGGCGTGCTGATTCGTGAGACCGGCCCGGACGGCTGGTTGCGCGTCTCGGTCGGCACCCGCTCGGAGACCCAGGCGTTCCAGGACGCGCTGACCGACGTGATCGCCGAACAGGAGCAGGGATGAMSTPDAPVLPLRPELADEVPYGAPQLEVPVLLNVNENPYPPSEQVVASIAAGVADAARSLNRYPDRDFPALRQDLADYLAVESGVRVAPEQVWAANGSNEVMLHLLQAFGGPGRTALSFAPTYSMYPEYARDTHTRWVTGRRAEDFTIDPDAAAALVEAERPSVILLASPNNPTGTALPRETLEAVLDAAARVPAVVVVDEAYAEFRRAGTPSALELLGAYPHLAVTRTMSKAFAAAGLRLGYLAASTALVDALRVVRLPYHLSAVTQATARAALAHRDALLAQVADLRAERDALVAWLRRQRSAAGPVQVAESDANFVLFGTFADRHAVWQGLLDRGVLIRETGPDGWLRVSVGTRSETQAFQDALTDVIAEQEQGPGPT0020305_1133DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
AK018_00306603hisB_1COG0131Imidazoleglycerol-phosphate dehydrataseATGACAGGCCGCACCGCGCGCATCGAGCGCGCCACGAGCGAGTCCACCGTCGTCGTCGAGCTGGACCTCGACGGGACCGGGCGCACCGACGTCTCCACCACGGTGCCGTTCTACGACCACATGCTCACCGCGCTGGGCAAGCACTCGCTGATCGACCTGACCGTACGGGCCACCGGCGACACCGAGATCGACGCGCACCACACGGTCGAGGACACCGCGATCGTGCTGGGGGAGGCGATCAAGCAGGCGCTGGGCGACAAGAAGGGCATCGCCCGGTTCGGCGACGCCCTGGTCCCGCTGGACGAGGCGCTCGCCCAGGCCGTGGTCGACGTCTCCGGGCGTCCCTACCTGGTGCACTCCGGCGAGCCGGCGGGGCAGGAGTACCACCTCATCGGCGGTCACTTCACGGGTTCGCTGACCCGGCACGTGCTCGAGTCGATCGCCCACCACGCCGACATCTGCCTCCACGTGCGCGTCCTGGCCGGCCGGGACCCGCACCACGTCGTCGAGGCCCAGTTCAAGGCCCTGGCCCGCGCGCTGCGGGCCGCCGTCGCCCTCGACCCGCGGGTCGAGGGCATCCCGTCGACCAAGGGAGCGCTGTAGMTGRTARIERATSESTVVVELDLDGTGRTDVSTTVPFYDHMLTALGKHSLIDLTVRATGDTEIDAHHTVEDTAIVLGEAIKQALGDKKGIARFGDALVPLDEALAQAVVDVSGRPYLVHSGEPAGQEYHLIGGHFTGSLTRHVLESIAHHADICLHVRVLAGRDPHHVVEAQFKALARALRAAVALDPRVEGIPSTKGALPGPT0020305_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
AK018_00307537hypothetical proteinGTGCCCGACTACCCCGAACCCGACCAGCCCGGCCGGTCCGAGCCCGAGCTGCCGGACGACCTGGAGATCCCGGACGACCTGTCCGGCCTGACCGGCTCCGACGAGCCCGAGATCGCGGTGCTCATCACCCAGGTCGCCGACGCCGAGGCGCTGGCGGCGGCCTGCGTGCTGGCGCAGATCGACGTCGACGCGGTGCCCACCCCCGTGGGGTCCCTGGCCGTCCTGCGCGACCGCACCGGCGACGCGCCGAGCACGGCGGCGGCCCGCATCTCGCAGGTCGTCAAGGGCGTGCCGCTCGTGCTGGTGACGCGCGACGGCGAGCAGCTGACCTGCCACCGGTACGCCGACGGCGCCGACGACGGCGAGCTGCCGCCCGGTCTCGTGCTCGGCGGTGCGCCGGAGGCGCTGGAGGACCTGCTCACCGGCCACCTGAGCCTCGACGAGCTGCCCGGCGTGGTCTCCTCCGACGGCATCGGACGGCTCAAGGCGGTCCGCATGCTCTCCGCCGTGTCCCGCAAGGTCCGGAAGAAGAAGTGAMPDYPEPDQPGRSEPELPDDLEIPDDLSGLTGSDEPEIAVLITQVADAEALAAACVLAQIDVDAVPTPVGSLAVLRDRTGDAPSTAAARISQVVKGVPLVLVTRDGEQLTCHRYADGADDGELPPGLVLGGAPEALEDLLTGHLSLDELPGVVSSDGIGRLKAVRMLSAVSRKVRKKKNANANANANA
AK018_00308747hisH_1Imidazole glycerol phosphate synthase subunit HisHATGGCGTCCTCCGAGAGCTCCGGGCTGCTGCCCGACGACGGGGCGTCCGCCGAGCTGAACGTCCGCCCGGCCCCCGCCGCCCGCAGCACCCACCGCCCGAGCGTCGTCGTGCTCGACTACGGGTTCGGCAACGTGCGCTCCGCGGTGCGCGCGCTGGAGCGGGTCGGCGCGGACGTCGAGCTGACGGCCGACCGGCACGCGGCGGGCGAGGCCGACGGGCTCGTCGTCCCGGGTGTCGGCGCCTTCGCCGCGTGCATGGCCGGGCTGCGCGAGGTGCGCGGCGACCAGGTCGTGGACCGGCGGCTCGCGGGCGGACGCCCGGTGCTGGGCATCTGCGTCGGCATGCAGGTCATGTTCGACGCCGGGGTCGAGCACGGCGTGCGGGCCGAGGGGCTGGGGGAGTGGCGCGGCGTCGTCGACCGTCTGGACGCCCCGGTGGTGCCCCACATGGGGTGGTCGCGGGTGGAGGCCGCCGCGGGCTCGACCCTGTTCCGCGGGGTGGAGGACGAGCGCTTCTACTTCGTCCACTCCTACGCGGCGCAGTCCTTCACCCAGGGCCACGACGACGGCGCCGACCCGCGATTCACCCCGCCGCGCGTCACCTGGTCCTCCCACGGCCCGGCCGGGTCGGCGGCACGGTTCGTCGCCGCCGTCGAGGACGGACCCCTGTCCGCCACGCAGTTCCACCCCGAGAAGTCCGGCGACGCCGGCGCGACCCTGCTCGAGAACTGGGTGCGCTCGCTCTGAMASSESSGLLPDDGASAELNVRPAPAARSTHRPSVVVLDYGFGNVRSAVRALERVGADVELTADRHAAGEADGLVVPGVGAFAACMAGLREVRGDQVVDRRLAGGRPVLGICVGMQVMFDAGVEHGVRAEGLGEWRGVVDRLDAPVVPHMGWSRVEAAAGSTLFRGVEDERFYFVHSYAAQSFTQGHDDGADPRFTPPRVTWSSHGPAGSAARFVAAVEDGPLSATQFHPEKSGDAGATLLENWVRSLNANANANANA
AK018_00309732hisA_1COG01061-(5-phosphoribosyl)-5-[(5-phosphoribosylamino)methylideneamino] imidazole-4-carboxamide isomeraseATGACCGAACGCCTCGTGCTGCTGCCCGCCGTCGACGTCGCCGACGGCCAGGCCGTCCGCCTCGTCCAGGGCGAGGCCGGCTCCGAGACCTCGTACGGCGACCCGCTGTCCGCCGCGCTCGACTGGCAGACCGGCGGCGCCGAGTGGATCCACCTGGTCGACCTCGACGCCGCCTTCGGGCGGGGCTCGAACGCCGACCTGCTGGCCCGCGTCGTGGGGGAGGTCGACGTCCAGGTCGAGCTGTCCGGCGGCATCCGGGACGACGCCTCGCTCGAGCGGGCGCTCGGCACCGGTGCGCGGCGGGTCAACATCGGTACCGCCGCGCTGGAGGACCCCGAGTGGACCGCGCGGGTGATCGCCGAGCACGGTGACGCCGTGGCCGTCGGCCTCGACGTACGCGGCACGACGCTGGCCGCACGGGGCTGGACCCGCGAGGGCGGTGACCTGTGGGAGGTCCTCGAGCGCCTCGACGCGGCCGGCTGCGCGCGCTACGTCGTCACCGACGTCACCAAGGACGGCACGCTGCGCGGTCCGAACGTCGAGCTGCTGCGCGAGGTCGCCTCGCGCACGCCGGCCAAGGTGGTCGCCTCGGGCGGGATCTCCTCCCTCGACGACCTCGCCGCGCTGCGCACCCTGACCGGTGACGGCGTCGAGGGTGCCGTCGTCGGCAAGGCGCTGTACGCCGGTGCCTTCACGCTGCCTCAGGCGCTCGACGTGGCGGGCCGGCCATGAMTERLVLLPAVDVADGQAVRLVQGEAGSETSYGDPLSAALDWQTGGAEWIHLVDLDAAFGRGSNADLLARVVGEVDVQVELSGGIRDDASLERALGTGARRVNIGTAALEDPEWTARVIAEHGDAVAVGLDVRGTTLAARGWTREGGDLWEVLERLDAAGCARYVVTDVTKDGTLRGPNVELLREVASRTPAKVVASGGISSLDDLAALRTLTGDGVEGAVVGKALYAGAFTLPQALDVAGRPNANANANANA
AK018_00310738hypothetical proteinATGAGGTCGATCCAGCCCACGAGCCAGTTCTCCGGCGACGACGGCTCCGCGGACGCCGAGCTGGTCCGCCGGCTCGACGGCTGGCGGGCCGGCACGGTCCCGGTGCGCGACGTCGTGGCCCGGCTGGCCGAGACCCGCGTGCTCGTCCCCGTGCTGGCGGAGGTCGAGTCCGAGGCCACCGTGCAGCACGACGGCGAGGAGCTCACGGTGGACAAGGAGGCCTCGGCAGGCGTCGTGGCGCTCGAGTCGCCCGACGGTCGCCGGGCCCTGCCGGTCTTCTCCTCCGTGGCGGCGATGCAGGCCTGGCGCCCCGACGCCCGGCCGGTCCCGGCCGAGGCGGTGCGCGCCGCGCTGTCGGCGGTGAACGAGAAGTGGTCCCTGCTGGTGCTGGACCCGGCCGGTCCGGTCACCGTCCAGATCCCGCGACCGGCCGTCTGGGCGCTCGCCCAGGGCGTCGAGTGGCGTCCCGCGCTGGTCCCCACCGACGACGGCCTCGAGGTGGACGCGGAGGTGTCCCGGGCGATCGCCGACGCGGCCGCCCCGGTGCAGCACGTGGTCCGCGCGACGGCGGTCCCGGGTCGGTCGGCGGAGGTGGCCGTCCGGCTGGAGCTGAACCCGGGCCTGGACCGGGCCGGTCTCGACACCGTGCTGGGCCAGGTCAACGCCCGCCTCGCCGCGGCCAAGGTCGTCGCCGAGCGGGTGGACTCCCTCGAGCTGCGGATCGCCGCCGCCCGCTGAMRSIQPTSQFSGDDGSADAELVRRLDGWRAGTVPVRDVVARLAETRVLVPVLAEVESEATVQHDGEELTVDKEASAGVVALESPDGRRALPVFSSVAAMQAWRPDARPVPAEAVRAALSAVNEKWSLLVLDPAGPVTVQIPRPAVWALAQGVEWRPALVPTDDGLEVDAEVSRAIADAAAPVQHVVRATAVPGRSAEVAVRLELNPGLDRAGLDTVLGQVNARLAAAKVVAERVDSLELRIAAARNANANANANA
AK018_00311729hypothetical proteinGTGAGAGCGCCGGTGCGGGGCGCCCTGGCGGCGGCGGGCGTCGCCGTCGTCGCGGCGTGCGGCACGCTGCCGGACATGCCCCCGTCGGTGCCGGCCGACATCGTCCCGAGCGTGGCGGCACCGTCGCTGGACGCGGCCGAGTCCGGACGACTCTCCCCCGACGGCTTCGACGCCGTGCAGCGCATGGCGGTGCGGATCCGCAACGTGGGCTGCGAGGGGCTGTCCACCGGGTCCGGGTTCGCCCTCGACGCCACGACGCTGATCACCAACCGGCACGTCGTGGCCGGCTCGGAGTCGTTGCAGGTCAACACCTACGACGGCCGCGACATCGACGTCTCGGCGGCGAGCACCGCGACGCTCGCCGACCTCGCCGTGGTCCGCACCGAGGACGAGCTGCCGTCCTCCCCCGAGCTCGCCGAGGCGGACCCCGCGCCGGGTGCCCGGGTGAGCGTCGTCGGCTACCCGTCGGGCGGCAGGCTGACCGTGACCGCGGGCGAGGTGATCGGCACCACGACCGACCCGCTCAACGAGAACCTCGGCGAGGTGCTCGTCACCGACGCCCCCGTCGAGCCCGGGTCCTCCGGCTCCGCGGCGCTGGACGAGTCCGGCCGGGTCATCGGGGTGGTGTACGCCAGGACGACCGACGGACGCTCCCTGGTGGTGCCGCAGTCGACGCTGCGCGAGATGCTCGACGACACCAGCGCGTTCACGCCGCTGCCGGCCTGCTGAMRAPVRGALAAAGVAVVAACGTLPDMPPSVPADIVPSVAAPSLDAAESGRLSPDGFDAVQRMAVRIRNVGCEGLSTGSGFALDATTLITNRHVVAGSESLQVNTYDGRDIDVSAASTATLADLAVVRTEDELPSSPELAEADPAPGARVSVVGYPSGGRLTVTAGEVIGTTTDPLNENLGEVLVTDAPVEPGSSGSAALDESGRVIGVVYARTTDGRSLVVPQSTLREMLDDTSAFTPLPACPGPT0015105_7168DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771NANA
AK018_00312597hypothetical proteinATGACCTCCCCCACGCCGTCCTGGGAGGCCGCGGGGCCGGTGCACCGGCCCGAGGACCCTGCACCGGGACGTCGCGCGCCCCGCCGTCCCGGCCGAGGGGCGCGCGTCACCGCCGTGGTCCTCGGGATCGCCCTCATCGTGGCCCTCGCGACCGCGGGCTACCTGTGGCAGACCACGACGGCCTGGGAGGACCACGCCGCCGAGTGGGAGGCCGAGGCCCAGCGGTACGCCGACGAGGTCGCGGCGCTGCAGGTCGAGCTCGACGGCGTCACGGCCGAGCTCGTCGCGGCCCGCGAGCAGCTCGACACGGCCACCGAGCGGATCACCGAGCTGGCCGACGAGAAGGCCCAGCTCGGCGACGAGAACGTCGCCAGCCAGCAGTACCTCGACTACCAGCGCCGGGTCAGCGAGGCCGCGGGGGTCGTGGCCACGGCGCTCGAGCAGTGCACCCAGGCCCAGTTCCAGCTCATCGGCTACCTGGAGAACCGGGAGGCCTACGACCCCGCCGACCTCGACCGGTTCGGCGACGACGTGCAGGCGCTGTGCGACGAGGCCGGCGAGGCCAACGAGCAGCTGCAGCAGGAGCTGGCCCAGTGAMTSPTPSWEAAGPVHRPEDPAPGRRAPRRPGRGARVTAVVLGIALIVALATAGYLWQTTTAWEDHAAEWEAEAQRYADEVAALQVELDGVTAELVAAREQLDTATERITELADEKAQLGDENVASQQYLDYQRRVSEAAGVVATALEQCTQAQFQLIGYLENREAYDPADLDRFGDDVQALCDEAGEANEQLQQELAQNANANANANA
AK018_00313366hypothetical proteinATGGACCCCATGAACGCCAGCACCGACCCCCTCGACGCGACCGGGGCCACGCGCGACATCGCCGACGTGGCCGCCGTCGAGGTCATCACCACCTCCGCGGTCCACCTCATGAGCGCCGCGGCGGTCAAGTGCGGCCTCGCCGCCGAGGACGACGCCCCCGAGCACCTCGACCTCGACGAGGCCCGCAAGCTCATCACCGCCCTGGCCGCGCTCGTCACGGCCAGCGCCCCCGACATCGGGAACCAGCACGCCCGCTCGCTGCGCGACGGCCTGCGCTCCCTGCAGCTCGCCTTCCGCGAGGCCTCCGTCGTCCCGGACGCCCCCGGCGAGGGGCCCGGGGAGGCCTTCACGGGCTCCGTCGTCTGAMDPMNASTDPLDATGATRDIADVAAVEVITTSAVHLMSAAAVKCGLAAEDDAPEHLDLDEARKLITALAALVTASAPDIGNQHARSLRDGLRSLQLAFREASVVPDAPGEGPGEAFTGSVVNANANANANA
AK018_003141449katA_1COG0753CatalaseATGACGACCCCCCACACGACGACGCAGACCGGCAGCCCGGTCGCGAGCGACCAGTACTCGCTCACCGTCGGCGCCGACGGCCCCACCGTGCTGCACGACCGCTACCTGGTCGAGAAGCTCGCGTCCTTCAACCGCGAGCGCGTCCCCGAGCGCAACCCGCACGCCAAGGGCGGCGGCGCGTTCGGCGAGTTCGTGGTCACCGAGGACGTCTCGCAGTACACCTCCGCCGCCGTGTTCCAGCCGGGTGCGACCTCCGAGACCCTGCTGCGGTTCTCGTCCGTGGCCGGCGAGCAGGGCTCCCCCGACACCTGGCGCGACGTGCGCGGGTTCGCGCTGCGTTTCTACACGGAAGAGGGCAACCTCGACGTCGTCGGCAACAACACGCCGGTGTTCTTCCTGCGCGACGCGATGAAGTTCCCGGACTTCATCCACTCCCAGAAGCGTCTCGGTGCCTCCGGGCTGCGGGACGCGGACATGCAGTGGGACTTCTGGACCCTGTCGCCCGAGTCCGCCCACCAGGTCACCTACCTCATGGGTGACCGCGGGCTGTCGCGGTCGTGGCGGCACCTCAACGGCTACGGCTCGCACACCTACCAGTGGATCAACGCCGAGGGCGAGCGCTTCTGGGTGCAGTACCACTTCATCGCGAAGCAGGGCGTCGAGATGATGAGCAACGCCGACGCCGAGCGCATCGCCGGCGAGGACGCGGACTACTACCGCCGCGACCTGTTCGAGGCGATCGAGCGCGGCGAGCACCCCTCGTGGGACGTCAAGGTCCAGGTCATGCCGTACGAGGACGCCAAGACCTACCGGTTCAACCCGTTCGACATGACGAAGGTCTGGCCGCACGCGGACTACCCGCTCATCAAGGTCGGGACGTTCACCCTGAACCGCAACCCGCGCAACTTCTTCGCGGAGATCGAGCAGGCCGCGTTCTCCCCGGGCAACCAGGTGCCCGGCACCGACATCTCGCCCGACAAGATGCTCATGGCGCGCGTGTTCTCGTACAACGACGCGCACCGCCACCGCATCGGCGCGAACTTCAACCAGCTGCCGGTGAACCAGCCGCACGCCTCCGAGGTGCACACCTACATGCACCAGGGACCGATGCAGTACCACTTCAACGGTCCCGAGCACCCGGTCTACACGCCGAACTCGTTCGGCGGCCCCGCCGCGGACCCGGCGCGCGCCTCCGAGGGCAGCTGGGAGACCGACGGCGAGCTCATGCGCTCGGCCTACACGCTGCACGCCGAGGACGACGACTTCGGCCAGGCCGGCACCCTGTACCGCGAGGTCTTCGACGACGCGGCCAAGGCCCGCTTCCTCGAGACGCTGACCGGCCAGGGCAAGGCCATCACGATCGACGAGATCCGTGAGCGGTTCTTCCAGTACTGGACGAACGTGGACGCCGAGCTCGGGGCGAAGCTGCGCTCCGAGGTCGCCGCGTGAMTTPHTTTQTGSPVASDQYSLTVGADGPTVLHDRYLVEKLASFNRERVPERNPHAKGGGAFGEFVVTEDVSQYTSAAVFQPGATSETLLRFSSVAGEQGSPDTWRDVRGFALRFYTEEGNLDVVGNNTPVFFLRDAMKFPDFIHSQKRLGASGLRDADMQWDFWTLSPESAHQVTYLMGDRGLSRSWRHLNGYGSHTYQWINAEGERFWVQYHFIAKQGVEMMSNADAERIAGEDADYYRRDLFEAIERGEHPSWDVKVQVMPYEDAKTYRFNPFDMTKVWPHADYPLIKVGTFTLNRNPRNFFAEIEQAAFSPGNQVPGTDISPDKMLMARVFSYNDAHRHRIGANFNQLPVNQPHASEVHTYMHQGPMQYHFNGPEHPVYTPNSFGGPAADPARASEGSWETDGELMRSAYTLHAEDDDFGQAGTLYREVFDDAAKARFLETLTGQGKAITIDEIRERFFQYWTNVDAELGAKLRSEVAAPGPT0014380_3249DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
AK018_00315438furA_1COG0735Transcriptional regulator FurAATGAGCACCACACCGGTCGAGACGTCGACGGAGCGCCGCCTGCTGCGCGACGCCGGTCTGCGCGTGACCGGTGTGCGCCTCGCCGTCCTGCGCGCGCTCGGCGAGCACCAGCACTCGACGGCCGACACCGTGGTGCGGGCCGTGCGCGCCGAGCTCGGCTCCGCCTCGGTGCAGGCGGTCTACGACTCCCTGCACACCCTGACCGACGCCGACCTGCTGCGCCGCGTGGAGCCCGCCGGGCACCCCGCACGCTACGAGCGACGGGTCGGCGACAACCACCACCACGTGGTCTGCCGCGGGTGCGGCGCCGTCGCCGACGTCGACTGCGCCGTCGGGCCGGCTCCCTGCCTCGTGCCCGGCGACGCCCACGGCTTCTCCGTCGACCTCGCCGAGGTGACGTTCTGGGGCATGTGCCCCGCGTGCACCGAGGCCTCCTGAMSTTPVETSTERRLLRDAGLRVTGVRLAVLRALGEHQHSTADTVVRAVRAELGSASVQAVYDSLHTLTDADLLRRVEPAGHPARYERRVGDNHHHVVCRGCGAVADVDCAVGPAPCLVPGDAHGFSVDLAEVTFWGMCPACTEASPGPT0003880_810DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711NANA
AK018_00316657infC_1Translation initiation factor IF-3GTGGTCGCCACGGGAGTCGCCCTGAAGCTTGCCCAGGACGCGGACCTCGACCTCGTCGAGGTCGCCCCGGCAGCCCGTCCTCCCGTCGCCAAGCTCATGGACTTCGGCAAGTACAAGTACGAGTCGGACATGAAGGCGCGCGAGGCGCGGCGCAAGCAGGCGAACACCCTCCTGAAGGAGATCCGCTTCCGCCTCAAGATCGACCCGCACGACTACGCCACCAAGAAGGGGCACGTCGAGCGGTTCCTCTCGGCCGGCGACAAGGTCAAGGTCATGATCATGTTCCGTGGCCGTGAGCAGTCCCGCCCGGAGGCCGGCGTGCGCCTGCTGCAGCGGCTCGCGGACGACGTCGCCGAGCTCGGTTTCGTCGAGTCGATGCCGAAGCAGGACGGGCGCAACATGACCATGGTCCTCGGACCGGTCAAGAAGAAGTCCGAGGCCAAGAGCGAGCAGCGCAAGCGGTCCGCCGAGGTCAACGCCCAGCGCAAGACCAAGTCGGAGGTCAAGGCCGAGCGGCGCGCCGCGGAAGGCCGGCCCGAGCCGGAGGAGGCACCGGAGGTGGCCTCGGAGCCGGCCCCGGAGCCGACGGTCTCCGAGTCCGGCGCCGGTGCGTCCGGACCCAAGCCGGGTCCGAAGCCCGGTCCGCGCCAGGGCTGAMVATGVALKLAQDADLDLVEVAPAARPPVAKLMDFGKYKYESDMKAREARRKQANTLLKEIRFRLKIDPHDYATKKGHVERFLSAGDKVKVMIMFRGREQSRPEAGVRLLQRLADDVAELGFVESMPKQDGRNMTMVLGPVKKKSEAKSEQRKRSAEVNAQRKTKSEVKAERRAAEGRPEPEEAPEVASEPAPEPTVSESGAGASGPKPGPKPGPRQGNANANANANA
AK018_00317195rpmI_1COG029150S ribosomal protein L35ATGCCGAAGAACAAGACGCACTCCGGCGCCAAGAAGCGCTTCCGGACGACCGGCAAGGGCAAGCTCATGCGCGAGCAGGCGAACCGTCGCCACCTGTTCGAGCACAAGCCGACCAAGCGCACCCGCCGGCTGGCCTCCGACGAGCCGGTGGCCAAGGCCGACGTCCAGCGAATCAAGAAGATGCTCGGTAAGTGAMPKNKTHSGAKKRFRTTGKGKLMREQANRRHLFEHKPTKRTRRLASDEPVAKADVQRIKKMLGKNANANANANA
AK018_00318384rplT_1COG029250S ribosomal protein L20GTGGCACGCGTGAAGCGGGCGGTCAACGCCCACAAGAAGCGCCGTACGACCCTCGAGCGCGCCAGCGGCTACCGCGGCCAGCGTTCCCGTCTGTACCGCAAGGCCAAGGAGCAGGTCACCCACTCCTTCGTCTACTCGTACCGTGACCGGAAGGCCAAGAAGGGCGACTTCCGCAAGCTGTGGATCCAGCGCATCAACGCTGCGGCCCGCCAGCAGGGTCTGACCTACAACCGGTTCGTCCAGGGCCTCAAGGCCGCGGGCGTCGAGGTCGACCGTCGCATGCTCGCCGAGCTCGCGGTCAACGACACCGCCGCGTTCAACGCGCTGGTCCAGGTCGCCAAGGACGCCCTGCCCCAGGACGTCAACGCGCCGAAGGCCGCCTGAMARVKRAVNAHKKRRTTLERASGYRGQRSRLYRKAKEQVTHSFVYSYRDRKAKKGDFRKLWIQRINAAARQQGLTYNRFVQGLKAAGVEVDRRMLAELAVNDTAAFNALVQVAKDALPQDVNAPKAANANANANANA
AK018_00319855aviRb_123S rRNA (uridine(2479)-2'-O)-methyltransferaseATGCCCCGCATCCCCGACGTGACGCTCGCCAACCCGCGAGCAGGTCGCGTCAAGCAGGTCAGGGCGCTGTCCGGGCGTTCTGCTCGGTCCAAGCACGGCCAGTTCCTCGTCGAGGGCCCGCAGGGCGTCCGGGAGGTCGTGCGGCACGCCCCGCAGGACGTGCGCGACCTCTACCTCACCGCGGCCGCTGCCCGCCGCTATCCCGAGATCCTCGACGCGGCGCAGCACGCCGACCTCTACGTCCACGTCGGGACCCCCGAGGTGCTCGACGCCATGAGCGCCGACGCCCAGGGCGTGCTCGCCGTCGTCCGCGCCCGGGCTCCCGAGCTGACGACCGCGCTCGCCACGGCCGGGTCGCCCGACCGCGCCCTGCTCGTGGCCGTGCTGGCCTCGGTGCGGGACCCGGGCAACGCCGGCACCGTGATCCGCGCCGCCGACGCCGCCGGGGCCGACCTGGTGGTGCTGGCCGGCGACAGCGTCGACGTCCACAACCCGAAGGTCGTCCGCTCCACCGCGGGGTCGCTCTTCCACCTGCCGGTCGTGACCGGGGTGACGCTGGCGCAGACCGTCGACGCGGCCCGCGCCGCGGGCTGCACCGTGCTCGCCGCCGACGGGACCGGCCGCCACGACCTCGACGACCTGCTCGACGTCGCCGGCAGCGACGCCGCGGACGTGCCGGACCTGGCGCGCGGCACGGCCTGGGTCTTCGGCAACGAGGCGTGGGGCCTGCCGGCGCCGGACCGCGCGCTGGCCGACGCCGTCGTCCGCGTCCCGATCCGCGGGCGGGCCGAGTCCCTCAACCTGGCGACGGCAGCGACGGTCTGCCTCTACGCCTCGGGACGCGCCCACCGCTGAMPRIPDVTLANPRAGRVKQVRALSGRSARSKHGQFLVEGPQGVREVVRHAPQDVRDLYLTAAAARRYPEILDAAQHADLYVHVGTPEVLDAMSADAQGVLAVVRARAPELTTALATAGSPDRALLVAVLASVRDPGNAGTVIRAADAAGADLVVLAGDSVDVHNPKVVRSTAGSLFHLPVVTGVTLAQTVDAARAAGCTVLAADGTGRHDLDDLLDVAGSDAADVPDLARGTAWVFGNEAWGLPAPDRALADAVVRVPIRGRAESLNLATAATVCLYASGRAHRNANANANANA
AK018_00320360hypothetical proteinATGAAGCGCATCGCCGTCGCCTCAGTGTCCGCGGCGCTCGCCGCCCTGGCCACGGTCGGAGCCGCCGGTTCGGCCTCCGCCGCCGCCCCGGTCGGAGCGGGAGACGGCGGCAAGCCGACCGGCGTCGCCTGCCAGCAGTTCGGCATCGGCGTGCTCCAGGACACCGGCGTCCTGAGCAGCGTGGCCGCGAACGGGCTGGAGTGGCCGATCGGGAGCGGTGACTACCTGCCCTTCAGCACGGTGCTGAACATCCACCGTACGGACCCCGGCACCGCGAACGTCGTCCTCAAGGCCTACGCGGACGTGCTGCTGCCCGGCGCGGACGTCGACGCTGCGATCGACGCCGCCTGCCCGGCCTGAMKRIAVASVSAALAALATVGAAGSASAAAPVGAGDGGKPTGVACQQFGIGVLQDTGVLSSVAANGLEWPIGSGDYLPFSTVLNIHRTDPGTANVVLKAYADVLLPGADVDAAIDAACPANANANANANA
AK018_00321624thpR_1RNA 2',3'-cyclic phosphodiesteraseGTGCGACTGTTCACGGCGGTGTACCCGCCCCGGGAGGCGCTCGAGCACCTCGACCTGGCGCTGGGCGGGGTCGGAGGACCCTCGGCGTCCGCACCGGGCAGCGGGCTGCGCTGGGTCCCGTCCGCGCAGCGGCACGTGACGCTCGCCTTCCACGGGGAGGTCCCCGACGGCGCCGTGGAGGACTACGTCGACGAGCTCGCCACGGTGGTGGCCCGCGCGGCCCCGTTCGAGACGGCGCTGGTCGGCAGCGGCACGTTCGGGGGGCGCACGCTGTGGGTCGGCGTCGGCGGTGAGGTGGACCGGCTGCGGGCGCTGTCGCACGAGGTGGCCCGCGCGGCGGACGCCGTGGGGATCGCGGGCGCCGACCGGGCCGGCGGCCGCCCCCACCTGACCGTGGCGAGGGTCTCGGCCGCGCGGCGGGGCAGGGACCGGCACGGACGCGGCCGAGGCGCCGCGCGCGAGGCGGACCCGGCGACGCCGTTCGCCCGCTGGGCCCGCGCGCTGGCGGTCTACCGGGGCCCGACCTGGCCGGTCCGTACCGTGCACGTGGTCGCCTCGCGCCTCGGGGCGGGTCGTTCCGGCGGTCCGGCCCACGAGGACGTCGCGGTGCTGCCCCTCGGGTGAMRLFTAVYPPREALEHLDLALGGVGGPSASAPGSGLRWVPSAQRHVTLAFHGEVPDGAVEDYVDELATVVARAAPFETALVGSGTFGGRTLWVGVGGEVDRLRALSHEVARAADAVGIAGADRAGGRPHLTVARVSAARRGRDRHGRGRGAAREADPATPFARWARALAVYRGPTWPVRTVHVVASRLGAGRSGGPAHEDVAVLPLGNANANANANA
AK018_003221101pheS_1COG0016Phenylalanine--tRNA ligase alpha subunitATGACTGCGCCCGAACCGCTGCCCGACCCGCTGGACGTCGCCGCCCTGGACGCGGCGGTGGACGCCGCGCTGGCCGACGTCGCCGCAGCGACCCAGCTCGACGAGCTGAAGACCGTCCGTACCCGGCACACCGGTGACAGGAGCCCGCTGGCCCTGGCGAACCGTGCCATCGGCGCCTTGCCCGGCCCCGACAAGGCCGCGGCCGGCAAGAACGTCGGCCCCCGGCGCGGACGGATCAACCAGGCGCTGGCCGCCCGCCAGACCGAGCTCGAGGCCGAGCGGGACGCCCGCGTGCTGGTCGAGGAGACCGTCGACGTCACCCTCCCGACGCACCGGGCCCCGGTCGGTGCCCGGCACCCGATCGAGCTCGTCCAGGAGCGCGTCGCCGACTTCTTCGTCGGGATGGGCTGGGAGATCGCGGACGGTCCCGAGGTCGAGGCCGAGTGGTTCAACTTCGACGCCCTCAACTTCGGGCCCGACCACCCGGCCCGGCAGATGCAGGACACCTTCTACGTCGCGGGCACCGACGGGCCCGGCACCGACGGCGCGGGTGCCGGGGAGGATCCGTCCGCGGCGCCGAACCTGGTGCTGCGCACGCACACCTCGCCGGTGCAGGCGCGTTCCCTGCTGGCGCGCGGCGTGCCGCTCTACATCGCCTGCCCGGGCAAGGTGTTCCGCACCGACGCCCTGGACGCCACGCACACCCCGGTGTTCCACCAGGTCGAGGGCCTCGCCGTGGACAAGGGACTGACGATGGCCAACCTCGTCGGCACGCTGGACGCCTTCGCCCGGGCGATGTTCGGGCCGGAGGCCAAGACCCGCCTGCGGCCGAGCTTCTTCCCGTTCACCGAACCCAGCGCCGAGATGGACCTGTGGTTCCCGCAGAAGAAGGGTGGGGCCGGCTGGATCGAGTGGGGCGGCTGCGGCATGGTGCACCCCAACGTGCTGCGGGCCGCCGGCGTCGACCCGGAGGAGTACTCCGGGTTCGCGTTCGGCATGGGGATCGAGCGCACGCTGATGCTCCGCCACTCGATCGCTGACATGCACGACATCGTGGAGGGCGACGTGCGCTTCTCCATGCAGTTCGGGACGGAGATCTGAMTAPEPLPDPLDVAALDAAVDAALADVAAATQLDELKTVRTRHTGDRSPLALANRAIGALPGPDKAAAGKNVGPRRGRINQALAARQTELEAERDARVLVEETVDVTLPTHRAPVGARHPIELVQERVADFFVGMGWEIADGPEVEAEWFNFDALNFGPDHPARQMQDTFYVAGTDGPGTDGAGAGEDPSAAPNLVLRTHTSPVQARSLLARGVPLYIACPGKVFRTDALDATHTPVFHQVEGLAVDKGLTMANLVGTLDAFARAMFGPEAKTRLRPSFFPFTEPSAEMDLWFPQKKGGAGWIEWGGCGMVHPNVLRAAGVDPEEYSGFAFGMGIERTLMLRHSIADMHDIVEGDVRFSMQFGTEINANANANANA
AK018_003232607pheT_1COG0072Phenylalanine--tRNA ligase beta subunitATGCCCCGCATCGTTGCTGACTGGCTCGCCGACCACGTCGAGCTGCCCGCGGACCTGAGCGCCGAGCAGCTCGCCGCCGACCTCGTCCGGGTCGGCCTGGAGGAGGAGGAGATCCACCCCGCCGCGGTCACCGGGCCGCTCGTGGTGGGCCGCGTCCTCGAGCTGACGCCCGAGGAGCAGAAGAACGGCAAGACGATCAACTGGTGCCTGGTCGACGTCGGCGGCGAGCACAACGCGGCGCAGATCGCGGGCGTCGACGACGCCGACGTGCCCGCCGGGGGAGCGCGGGGCGTCGTGTGCGGCGCGCACAACTTCGGCGTCGGGGACCTGGTCGTGGTCTCGCTGCCCGGCACGGTGCTGCCGGGCGGGTTCGCGATCGCCTCGCGCAAGACCTACGGGCACGTCTCGGACGGCATGATCTGCTCGACCAAGGAGCTCGGTCTGGGCGAGGACCACGCCGGCATCCTGGTGCTGACGGAGGCCGGCTTCGACGCCGCGGACCTCACGCCCGGCCAGGACGCGGTCGCGCTCCTCGGACTCGGGGACGAGGTGCTCGAGATCAACGTCACCCCGGACCGCGGCTACGCGTTCAGCTACCGGGGCGTGGCGCGCGAGTACGCCCACTCCACGGGCGCCGCGTTCACCGATCGCGGCCGACCGGACGCGCTGCCGACGGCGCCGCCGGCCGCCACGGACGACGGCTTCGCCGTCGAGGTCGACGACGCCGCCCCGATCGACGGGCAGGTCGGCTGCGACCGGTTCGTCACGCGCGTCGTGCGCGGCATCGACCCGGCCGCGCCCACCCCGCCCTGGATGAAGCGCCGGCTCGAGGGCTCGGGCATGCGGTCGATCTCGCTCGCCGTGGACGTCACGAACTACGTGATGCTCGACCTGGGCCAGCCGCTGCACGCCTACGACCTCGCCCAGGTCGCCGCGCCGATCGTGGTCCGCCGGGCCACTCCGGGGGAGCGCCTGACCACCCTCGACGACGTCGACCGCACCCTGCACGCCGAGGACCTGCTCATCACCGACTCGCCCGACGGCGCCCGGGGGGCACGCGTGCTGGGCCTGGCCGGCGTCATGGGCGGGGCCTCGTCGGAGGTGTCCGACGCGACGACCGACGTCCTCGTCGAGGCCGCGCACTTCGACCAGGTCACCGTCGCCCGCACGGCACGCCGGCACAAGCTGCCCTCCGAGGCGGCCAAGCGCTTCGAGCGCGGCGTCGACCCGCTGCTGGCGCCCGTGGCCGCGCAGCGCGTCGTCGACCTGCTCGTCGAGCTCGGCGGCGGGACCGCGGACCCGGCGGTGAGCGACCTGGACACCACCACGTCGCCCACGCCGATCGAGATGGACGTCGCCCTGCCCGCGCGCACCTCGGGCGTGTCCTACTCGCGCGCGCAGGTCGTGGGCATCCTCGAGCAGATCGGCTGCACGGTGACCGGCGAGGAGACGCTGACCGTCACCCCGCCGACCTGGCGCCCGGACCTCACCGAGCCGGCCGCCCTGGTCGAGGAGGTCGTGCGCATCGCCGGCTACGACCAGATCGCCTCCGAGCTCCCGTCGGCCCCCGGCGGCCGGGGCCTCACGCCCGAGCAGCGTGTGCGACGGTCGGTCGCCCGCGCGCTCGCGGACGCGGGCCTGGTCGAGGTGCTGTCGTACCCGTTCGTCGGCCCGCAGGACCTGGACGCGCTCGGGCTGCCCGCCGACGACGCGCGTCGCCGGGCGCTGCGGCTGGCGAACCCGCTGGCGGACGACCGTCCCCTGATGCGGACCAACCTGCTGGTCAGCCTGCTCGAGACCGCGCGACGCAACGTCTCGCGCGGGATCGACGACGTCGCCGTCTTCGAGGTCGGCCAGGTGACCCGCCCGGCCGTCGACGCCCCGGCGGCTCCGCAGCTGCCGGTGGGCGTGCGGCCCTCGGCGGACCAGCTCGACGCGCTGGCCGCCGCCACGCCGGACCAGCCCCGCCGTGTCGCCGGCGTCCTGGCCGGGAACCGCGCGCCGGCCGGCTGGTGGGGCGAGGGGCGTCCCGTCGACTGGGCCGACGCCGTCGAGGCGGCCCGGACGGTGACCGACCTCGTGGGCGTGGAGGTCGTGGTCGCGAACGACCCCGAGCACATGCCGTGGCACCCCGGGCGGTGCGCCCGGTTCGCCGTCGCCGACGGTGACGGATCGCTGCGGACCGTGGGTCACGCCGGCGAGCTGCACCCCAAGGTCCTGGAGGAGCTCGGCCTGCCGCGTCGCACGGCCGCGTTCGAGCTCGACCTGTCGGCGCTGGTCGCGGCGGCGGACACGGCGCCCCGCACGGCCGCGCCGGTGTCGGCCTTCCCCGCGGCCAAGGAGGACTTCGCCCTCGTCGTCGACGCCGGTGTCCCGGCCGCCGAGGTCGAGGCCGCGGTCGTGGCCGGTGCCGGGGACCTGCTCGAGCGCGTGGAGCTCTTCGACCTCTTCACCGGCGAGCAGGTCGGCGAGGGCAAGAAGTCGCTGGCCTACTCCGTCCGGCTGCGCGCCGCGGACCGGACGCTGACCGCCGACGACGTGCGCGCCGTCCGCGACGGCGTCGTGCGCGCCACCGCCGAGCGCGTCGGGGCGGTCCTCCGTGGCTGAMPRIVADWLADHVELPADLSAEQLAADLVRVGLEEEEIHPAAVTGPLVVGRVLELTPEEQKNGKTINWCLVDVGGEHNAAQIAGVDDADVPAGGARGVVCGAHNFGVGDLVVVSLPGTVLPGGFAIASRKTYGHVSDGMICSTKELGLGEDHAGILVLTEAGFDAADLTPGQDAVALLGLGDEVLEINVTPDRGYAFSYRGVAREYAHSTGAAFTDRGRPDALPTAPPAATDDGFAVEVDDAAPIDGQVGCDRFVTRVVRGIDPAAPTPPWMKRRLEGSGMRSISLAVDVTNYVMLDLGQPLHAYDLAQVAAPIVVRRATPGERLTTLDDVDRTLHAEDLLITDSPDGARGARVLGLAGVMGGASSEVSDATTDVLVEAAHFDQVTVARTARRHKLPSEAAKRFERGVDPLLAPVAAQRVVDLLVELGGGTADPAVSDLDTTTSPTPIEMDVALPARTSGVSYSRAQVVGILEQIGCTVTGEETLTVTPPTWRPDLTEPAALVEEVVRIAGYDQIASELPSAPGGRGLTPEQRVRRSVARALADAGLVEVLSYPFVGPQDLDALGLPADDARRRALRLANPLADDRPLMRTNLLVSLLETARRNVSRGIDDVAVFEVGQVTRPAVDAPAAPQLPVGVRPSADQLDALAAATPDQPRRVAGVLAGNRAPAGWWGEGRPVDWADAVEAARTVTDLVGVEVVVANDPEHMPWHPGRCARFAVADGDGSLRTVGHAGELHPKVLEELGLPRRTAAFELDLSALVAAADTAPRTAAPVSAFPAAKEDFALVVDAGVPAAEVEAAVVAGAGDLLERVELFDLFTGEQVGEGKKSLAYSVRLRAADRTLTADDVRAVRDGVVRATAERVGAVLRGNANANANANA
AK018_00324840hypothetical proteinGTGGCTGAGCCGCACCAGGTCCCCGCGGCGCGGACCGCGCTGGTCACCGGGGCGACGCGCGGCATCGGCCGGGCCGTGGCCCTGGGTCTGGCCGAGGCCGGTCTCGACCTGGCGCTGCTGGCCCGCGACGCCGACCGGCTGGCCGAGGTCGCCGGGCTCGTCCGGGCCGCGGGCCGGACGGCGGTCGTCCTGCCGTGCGACGTGACGGACCCGCGGGCCGTCTCCGCCGCGGTGGACCGTGCCGAGGACGAGCTCGGCCCGATCGACCTGCTGGTCAACAACGCCGGGCGCATCGACGCCGAGGTCCCCGTGTGGGAGGCGGACGCGGAGGAGTGGTGGTCGGTCATGGCCACCAACCTGCGCGGCCCGTTCCTCCTCGTGCGGAACGTCGTGCCGGCGATGCTCGCCCGCGGGGGCGGCCGGGTGATCGACCTGAACAGCGGGGCGGGTTCGCACGACATGACCTACTCCAGCGCCTACAACCTGTCCAAGACCGCGCTGATGCGCCTCGGCCAGCAGCTGCACGCCACGGGCCACGACCAGGGGCTGCGGACGCTCGAACTCGCGCCGGGCGTGGTGGCCACGGACATGACCGCCGGGATGCGGACCCACGAGGGGCGCACGGAGTGGACGCCCGTGGAGCGCACCGTGGACGTCGCGGTCGCCTTCGCCCGCGGCGAGCTCGACGACTGCTCGGGCTGGTTCGTGCGCGTCTCCGACGACACCCCGGAGTCGTTGCGGGCGGTCGCCGCCGAGGCGACGGCCGCCGTGCCGCGCCGGCTGCGGGTGCTGCCGGCCGGCGACGACGATCCGCTGCGTCGGACCCTCACGGAGCGCTGAMAEPHQVPAARTALVTGATRGIGRAVALGLAEAGLDLALLARDADRLAEVAGLVRAAGRTAVVLPCDVTDPRAVSAAVDRAEDELGPIDLLVNNAGRIDAEVPVWEADAEEWWSVMATNLRGPFLLVRNVVPAMLARGGGRVIDLNSGAGSHDMTYSSAYNLSKTALMRLGQQLHATGHDQGLRTLELAPGVVATDMTAGMRTHEGRTEWTPVERTVDVAVAFARGELDDCSGWFVRVSDDTPESLRAVAAEATAAVPRRLRVLPAGDDDPLRRTLTERPGPT0003180_1250DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_00325792fgd_2F420-dependent glucose-6-phosphate dehydrogenaseATGACCTCCACCACGCCCGAGCGACCCGTGCGCGTCGCCGTCCAGCTCCAGCCCCAGCACGCCGACTACGGCCAGATCCGCGACGCCGTGCTGCGCGCCGAGGACCTGGGCGTCGACGTGGTCTTCAACTGGGACCACTTCTACCCGCTGTCCGGCGACCCCGACGGCAAGCACTTCGAGTGCTGGACCATGCTCGGTGCCTGGGCCGAGCAGACCGAGCGCGTCGAGATCGGCGCCCTGGTCACCGGCAACGGCTACCGCAACCCCGACCTGCTGGCCGACATGGCCCGCACCGTCGACCACGTCTCCGGCGGCCGGCTGATCCTCGGGATGGGGGCCGGCTGGTTCGAGAAGGACTACCGGGAGTTCGGCTACGAGTTCGGCACGGCCGGCTCGCGCATCGCCGGCCTGGCCGAGGCGATGCCGCGCCTCCGCCACCGGCTGGCCGTCGGCAACCCCGCGCCCACCCGCGAGATCCCGATCCTCATCGGTGGCGGCGGGGAGAAGAAGACCCTGCGGATCGTGGCCGAGCACGCGGACGTGTGGCACTCCTTCGGCGACGTCGACACGCTGCGCCGCAAGTCGGCGATCCTGGACGAGCACGGCGCCGCCGTCGGCCGGGACACCGCCCGGCTGGTCGAGCGCTCCGTCGGGGTCCACGGGGCGCCCGACGCGACCGGTCCCGACCTGGTCGCGGCCGGAGCGACCCTGCTGACGATCGGCGTCGGCGGCCCGGACTACGACCTCAGCACCGTCGCGGACTGGGTCGCCTGGCGCGACGCCCAGGGCTGAMTSTTPERPVRVAVQLQPQHADYGQIRDAVLRAEDLGVDVVFNWDHFYPLSGDPDGKHFECWTMLGAWAEQTERVEIGALVTGNGYRNPDLLADMARTVDHVSGGRLILGMGAGWFEKDYREFGYEFGTAGSRIAGLAEAMPRLRHRLAVGNPAPTREIPILIGGGGEKKTLRIVAEHADVWHSFGDVDTLRRKSAILDEHGAAVGRDTARLVERSVGVHGAPDATGPDLVAAGATLLTIGVGGPDYDLSTVADWVAWRDAQGNANANANANA
AK018_003269842-haloacrylate reductaseATGCGTGCAGTGGTGGCCCGCGCCGCGGGTGGTCCCGAGGTCCTGGAGTACACCGAACGTCCCGACCCCACGCCCGGTCCGGACGACCTGCTCGTGCGGGTCGCCGCCGCCGGCGTCAACTTCATCGACACCTACCGGCGGTCGGGCACCTACCCGATGGAGTTCCCGCACGTCGTGGGCGTCGAGGGTGCCGGTGAGGTGGAGGCGGTCGGCGACGACGTCGTCGGGTTCGCCGTCGGCGATCGCGTCGCGTGGCACGCTGCACCCGGCTCGTACGCCGAGCTGGCCCGCGTCCCGGCCGCGGGCGCCGTGCACGTCCCGGCCGAGCTGGACCTCACGACGGCGGCCGCCCTGCCCCTGCAGGGGATGACGGCGCACTACCTGGTCGCGTCCACGTTCGAGGTCGGGCCGGGGCACGACGTGCTGCTCACCGCCGGCGCGGGCGGTGTCGGGCTGCTGGCGACCCAGCTCGCCGTCGCCCGCGGCGGTCGCGTCCTGACGACCGTCTCCTCTCCCGAGAAGGCCGCCCTGTCGTCCGCCGCCGGGGCCGCGCACACCGTCGACTACGCCGCGATGGCGGACCTGACCGCCGAGCTGCCCGCCGTCGTGCGCCGCCTGACCGACGGCGAGGGGGTGCACGTCGTCTACGACGGCGTCGGCGCGGCGACCTTCGACGCCTCGCTCGCCGCACTGCGCCCCCGCGGCACCCTGGCGCTGTTCGGCGCCGCCTCGGGCCCCGTGCCGCCGGTCGACCCGCAACGCCTCAACACGGCCGGATCCGTCTACCTGACCCGGCCCTCGCTCGTGCACTACACGGCCGGCCGGTCCGAGCTGGAGTGGCGGGCCGCCGAGGTGTTCGACGCCGCGGTGGCCGAGGACCTGGACGTGCGGATCGGCGCGACGTACCCGCTGGCCGACGCCGCGCAGGCGCACCGTGCCCTGGAAGGACGCCGCACGACCGGCAAGGTGCTGCTCATCCCCTGAMRAVVARAAGGPEVLEYTERPDPTPGPDDLLVRVAAAGVNFIDTYRRSGTYPMEFPHVVGVEGAGEVEAVGDDVVGFAVGDRVAWHAAPGSYAELARVPAAGAVHVPAELDLTTAAALPLQGMTAHYLVASTFEVGPGHDVLLTAGAGGVGLLATQLAVARGGRVLTTVSSPEKAALSSAAGAAHTVDYAAMADLTAELPAVVRRLTDGEGVHVVYDGVGAATFDASLAALRPRGTLALFGAASGPVPPVDPQRLNTAGSVYLTRPSLVHYTAGRSELEWRAAEVFDAAVAEDLDVRIGATYPLADAAQAHRALEGRRTTGKVLLIPPGPT0013255_4864DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_00327609COQ5_22-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialATGGCGACCGACCCCGCCGTGCTCGCCGAGTACGAGTCGCGCGCACCGACGTACGACCGCAGCGCCGTGCATCGTGCGCTCGCCGACGCCGTCGCGGACTTCGCCCGGCCCGACGGCGCCGGCACCGTCGTGGACGTCGCCACCGGCACCGGGCTCGTGCTGCGGGCCCTCGCGCGGCGGTCGCCGTCGGCGCGGACGGTCGGCCTCGACATCGCCCCGTCCATGCTCGCCGTCGCCCGCGACGCGCTCCCGCGCGCCACCCTGCTCCGCGCCGACGCCGCCGCGCTCCCCCTGGCCGGCGGCTGCGCCGACCTCGTCACCTGCGTCACGGCGCTGCACCTCCTGCCGGACCCGACGCCCGTCCTGCGCGAGTGGGCGCGCGTGCTGCGCCCCGGCGGGCGCGCGGTCACGGCCACGTTCCGGATCGCGGACCGCCCGGCGGGTTCCCGCGGCTTCCCCACGTTCCACACGCGGACGGCCTCGCCGGCCGCGCTCGCCCGGACCGTCGCGCCCGCGGGCCTGCGCGTGACGCGGCACCGCACCTGGGACCACGACAGCGGCGGCTCGCTGCTCCTGGCCGAGCTCGAGCCGGTCCCCCGCACCGCCTGAMATDPAVLAEYESRAPTYDRSAVHRALADAVADFARPDGAGTVVDVATGTGLVLRALARRSPSARTVGLDIAPSMLAVARDALPRATLLRADAAALPLAGGCADLVTCVTALHLLPDPTPVLREWARVLRPGGRAVTATFRIADRPAGSRGFPTFHTRTASPAALARTVAPAGLRVTRHRTWDHDSGGSLLLAELEPVPRTANANANANANA
AK018_00328525hypothetical proteinGTGATCACCGACCCCTCGCCCGGTGCGCCGCCCCTGACGATCCGGACGGCCCGCCCGGACGACTGGCCCGCCCTGTGGCGGATCGTCGAACCGGTCGTGCGCGAGGGGGAGACGTACACCTATCCCACGGACCTGACGAGCGACGAGGCGCGCGACCTGTGGCTCGCCGCGCCACCCGCCCGCACGGTGCTCGCGGAGGCCGACGGCGTGGTGCTGGGAACGGCCCGCATGGGCCCGAACAAGCCCGGCCACGGCGACCACGTCGGCACCGCGGCGTTCATGGTCGCGCCGGCCGCGCGGGGGCGCGGCGTCGCCCGTGCGCTGGCCGAGCACGTGATCGCCTGGCACCGTGCCGAGGGCTACCGCGGCATCCAGTTCAACGCGGTCGTCGAGACCAACACCGCCGCCGTGCGGTTGTGGCACTCCCTGGGGTGGCGGACGGTGGGGACCGTGCCGGGCGCGTTCCGCAGCCCGGCCCACGGCGACGTGGGGCTGCACGTGATGTTCCGGTCCGTGGACACCTAGMITDPSPGAPPLTIRTARPDDWPALWRIVEPVVREGETYTYPTDLTSDEARDLWLAAPPARTVLAEADGVVLGTARMGPNKPGHGDHVGTAAFMVAPAARGRGVARALAEHVIAWHRAEGYRGIQFNAVVETNTAAVRLWHSLGWRTVGTVPGAFRSPAHGDVGLHVMFRSVDTNANANANANA
AK018_003291104argC_1COG0002N-acetyl-gamma-glutamyl-phosphate reductaseATGTATAGTGGCGCCATGGCCAGCACGCACCCCTCGCAGAAGCCGCTGCGCGTCGCCGTCGCCGGTGCCTCCGGGTACGCCGGCGGGGAGTTCCTCCGCCTCGCCGTGCAGCACCCGCACCTCGAGATCGGGACGCTCACCGCGCACTCCAACGCCGGCAGCCGCCTCGGCGCGCTGCAGCCGCACCTGCGCTCGCTGGCGGACCGCGTGCTCGAGCCCACCGCGGCCGAGGCGCTCGCCGGGCACGACGTCGTCGTCCTCGGTCTGCCGCACGGCGCCTCGGGCGAGATCGCGGCCCAGCTGCCCGACGACGTGCTCGTCCTCGACCTCGGAGCGGACCACCGCCTCGCCTCGGCCGCGGACTGGCAGGCCTTCTACGGCTCCGAGCACGCCGGCACCTGGCCCTACGGGCTGCCCGAGCTCGTCCTCGACTCCTCCGACGGTGACACCGGCACCCAGCGGGACCTGCTCGTCGGTGCCCGCCGCATCGCCGTGCCGGGGTGCAACGTCACCGCGGTGACTCTCGGCCTGCAGCCCGGGGTGGCCGCCGGGCTGCTCGACCCGACCGACCTCGTGGCCGTCCTGGCGAACGGGTTCTCGGGGGCGGGCAAGGCGCTCAAGCCGCACCTGCTCGCCGCCGAGGGGCTCGGGGCCGCGTCCCCGTACGCCGTCGCCGGCACGCACCGCCACATCCCCGAGATCACGCAGAACCTGCGCACGGCCGGCGCGTCGGAGGTGTCGATCAGCTTCACCCCGACGCTCGTGCCGATGTCGCGGGGCATCCTGGCCACCGCGACCGCGCGGATCGCCCCCGGGCGGGACGCGGACGCCGACTCCGTGCGGGCCGTGTGGGAGGCCGCCTACGCCGACGAACCGTTCGTCGAGCTCCTGCCCGCCGGCCAGTGGCCCTCCACCGCGGCCACGCTCGGCAGCAACTCGGCCCTCGTCCAGGTCGCCCTCGACGCCGCATCCGGCCGCGTCGTCACCGTCACGGCGATCGACAACCTCGTCAAGGGCACCGCCGGGCAGGCGGTGCAGGCGATGAACATCGCGCTCGGCCTGCCCGAGACCGCCGGCCTCGTCACCGAAGGAGTCGCCCCGTGAMYSGAMASTHPSQKPLRVAVAGASGYAGGEFLRLAVQHPHLEIGTLTAHSNAGSRLGALQPHLRSLADRVLEPTAAEALAGHDVVVLGLPHGASGEIAAQLPDDVLVLDLGADHRLASAADWQAFYGSEHAGTWPYGLPELVLDSSDGDTGTQRDLLVGARRIAVPGCNVTAVTLGLQPGVAAGLLDPTDLVAVLANGFSGAGKALKPHLLAAEGLGAASPYAVAGTHRHIPEITQNLRTAGASEVSISFTPTLVPMSRGILATATARIAPGRDADADSVRAVWEAAYADEPFVELLPAGQWPSTAATLGSNSALVQVALDAASGRVVTVTAIDNLVKGTAGQAVQAMNIALGLPETAGLVTEGVAPPGPT0014251_253DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014251-argC-K00145NANA
AK018_003301191argJ_1COG1364Arginine biosynthesis bifunctional protein ArgJGTGACCGTCACCACCCCCCAGGGTTTCCGCGCCGCCGGTGTCGCCGGCGGGCTGAAGGCCTCCGGCGGGCGCGACGTCGCCCTCGTCGTCAACGACGGTCCGCTGCGCACGGCCGCCGCCGTGCTCACCGGCAACCGGGTGCAGGCCGCACCCGTGGTGTGGACCCGGCAGGCCGTCTCGGACGGTGCCGCCCGCGCCGTCGTCCTGAACTCCGGCGGTGCCAACGCCTGCACCGGCCCGGACGGCTTCGCCGACACCCACCGCACCGCCGAGCACGTCGCGGCGGTGCTGTCCGCCGCGGCCGCCGCACCGCAGGACGAGGTCGGGGCCGGGGACGTGCTCGTCTGCTCGACCGGACTCATCGGTGTCCGGCTGGACATGCCCGCCCTGCTCGGCGGGATCGACACCGCGGCCGGGTCCCTGGCCGCCGACGGCGGCGCGGACGCCGCGCACGCCATCATGACCACCGACACTGTCGCCAAGACCGCCGTGGCCGAGCGCGAGGGCTGGAGCGTCGGCGGCATGGCCAAGGGCGCGGGGATGCTCGCGCCCGCGATGGCCACCATGCTCAGCGTCGTCACCACCGACGCCGTCGTGGACCCGGCGACCGCCCGGGCCGCCCTGCGCGCGGCCACCGCCCGGACCTTCGACCGGGTCGACTCCGACGGGTGCCAGTCCACCAACGACACCGTGATCCTGCTCGCCTCCGGCGCGTCCGGCGTCGAGGTCGACGAGGCCACGCTCGGCGAGGCGCTCACGGAGGTGTGCGCCGACCTGTCCCGTCAGCTCGTCGCCGACGCCGAGGGTGCCGGGCACGACATCGCCGTCACCGTGGTGAACGCGAGCTCGGAGGACGCCGCCGTCGCGGTCGCGCGTGCCGTCACCCGGTCCAACCTGTTCAAGACGGCGATCTTCGGCAACGACCCCAACTGGGGGCGGATCGTGGCCGCCGTCGGCACCGTGCCCGAGGACGTCGCTCCGTACGACCCGTTGGCCCTCGACGTCTCCGTCAACGGCGTCCAGGTGTGCCGCGCCCAGGGCGTGGGCGAGCCCCGCGAGCTCGTCGACCTCGCCGCCGACCGCGAGGTGCAGGTCGAGATCGACCTGCACGCCGGTCCGGCGAGCGCCACGGTCTGGACCAACGACCTGACCCACGACTACGTCCACGAGAACAGCGCGTACTCCTCATGAMTVTTPQGFRAAGVAGGLKASGGRDVALVVNDGPLRTAAAVLTGNRVQAAPVVWTRQAVSDGAARAVVLNSGGANACTGPDGFADTHRTAEHVAAVLSAAAAAPQDEVGAGDVLVCSTGLIGVRLDMPALLGGIDTAAGSLAADGGADAAHAIMTTDTVAKTAVAEREGWSVGGMAKGAGMLAPAMATMLSVVTTDAVVDPATARAALRAATARTFDRVDSDGCQSTNDTVILLASGASGVEVDEATLGEALTEVCADLSRQLVADAEGAGHDIAVTVVNASSEDAAVAVARAVTRSNLFKTAIFGNDPNWGRIVAAVGTVPEDVAPYDPLALDVSVNGVQVCRAQGVGEPRELVDLAADREVQVEIDLHAGPASATVWTNDLTHDYVHENSAYSSPGPT0014244_2749DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014244-argJ-K00620NANA
AK018_00331951argB_1COG0548Acetylglutamate kinaseATGAGCGACACGAACCCCGCGACCCCCGACGACGAGTTCACCTTCGACACCCGCACCGACCTGCGCCCCGACCAGAAGGCGGAGGTGCTGATCGAGGCGCTGCCCTGGCTGCAGGAGTTCGCCGGCGCGCTCGTCGTGGTCAAGTACGGCGGCAACGCCATGGTCGACGACGAGCTCAAGGCGGCCTTCGCCCAGGACATGGTCTTCCTGCGCCAGGTCGGCCTGCACCCCGTCGTCGTGCACGGCGGCGGCCCGCAGATCTCCACGATGCTCGACCGCGTCGGCATCCACTCCGAGTTCCGCGGCGGCCTGCGGGTCACGACGCCCGAGGCGATGGACGTCGTGCGCATGGTGCTGACCGGCCAGGTCCAGCGCGACCTCGTCGGCCTGCTCAACGCGCACGCCCCCCGCGCCGTCGGGCTGTCCGGGGAGGACGCCGGCCTGTTCGGCGCGGTGCGCCGGCACGCCACGGTCGACGGGTCCCCGGTCGACGTGGGCCTCGTCGGTGACGTCGTGCGGGTGAACCCCGGTGCCGTGCAGGACCTGCTCGACGCCGGACGGATCCCGGTGGTGTCCACCGTCGCCCCCGACGTCGACGACCCCACCCAGGTGCTCAACGTCAACGCCGACACCGCGGCCTCGGCGCTCGCGGTCGCGCTCGGCGCGAAGAAGCTCATCGTGCTGACCGACGTCGAGGGGCTGTACACCGACTGGCCGGACCGCGGCTCGCTCGTCGAGGAGATCACCGCCGGCGACCTGCACCAGCTCCTGCCCACGCTGAGCGCCGGCATGGTGCCCAAGATGGAGGCCTGCCTGCGCGCCGTGCAGGGCGGCGTGCCCAAGGCGTCGGTCATCGACGGACGCCAGCCGCACTCGGTGCTGCTGGAGGTCTTCACCACGCGCGGCAACGGCACGATGGTCGTCCCCGACCCGACGGAGGAGGCGGCATGAMSDTNPATPDDEFTFDTRTDLRPDQKAEVLIEALPWLQEFAGALVVVKYGGNAMVDDELKAAFAQDMVFLRQVGLHPVVVHGGGPQISTMLDRVGIHSEFRGGLRVTTPEAMDVVRMVLTGQVQRDLVGLLNAHAPRAVGLSGEDAGLFGAVRRHATVDGSPVDVGLVGDVVRVNPGAVQDLLDAGRIPVVSTVAPDVDDPTQVLNVNADTAASALAVALGAKKLIVLTDVEGLYTDWPDRGSLVEEITAGDLHQLLPTLSAGMVPKMEACLRAVQGGVPKASVIDGRQPHSVLLEVFTTRGNGTMVVPDPTEEAAPGPT0014249_226DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014249-argB-K00930NANA
AK018_003321254argD_1COG4992Acetylornithine aminotransferaseATGAACGAGATGGCCACCCGTCGCGAGCTGACCACCGCCGAGTGGCAGGACGCCTACACCGGCGCCGTGATGGACACCTTCGGACCGCCGCAGCGCATCCTCGTGCGCGGCGAGGGCGCCTACGTCTGGGACGCCGAGGGCACGCGCTACCTCGACCTGCTGGCCGGGATCGCCGTCAACTCCCTGGGCCACGCCCACCCCACGCTGACGGCGGCCGTCAGCGCCCAGCTCGGCACGCTCGGGCACGTGTCGAACTTCTTCGGCACGCCCACGCAGATCACGCTCGCCGAGCGGCTGCTGGCGCTCGCCGAGGCGCCGTCGGGGTCGAAGGTCTTCTTCGCCAACTCGGGGACCGAGGCCAACGAGGCCGCGTTCAAGATGGCGCGGCGCACCGGTCGGACCCGGATCCTCGCGCTCGAGGGCGGCTTCCACGGCCGGACCGTCGGGGCTCTGGCCCTGACCCACAAGCCGGCCTACCGCGAGCCGTTCGAGCCGCTGCCCGGCGGGGTCGAGCACGTCGCCTTCGGGGACACGGCCGCGCTGGAGGAGGCCTTCTCGCCGGTCGCCGTGGCCGAACGCGGCGAGGTCGCGGCGCTGGTCGTCGAACCCGTCCAGGGCGAGGCCGGGGTGCGCGAGCTGCCCGCCGGCTACCTGGCGCTCGCCCGCCGGCTGACGCACGACGCCGACGCGCTGCTCGTCCTCGACGAGGTGCAGACCGGCGTCGGACGCACCGGGTCGTGGTTCGCCTACCAGCAGCCGGAGATCGGCGGCGGCATCGTGCCCGACGTCGTCACCCTCGCCAAGGGCCTGGGCGGCGGCTTCCCGGTCGGCGCCGTCATCGCCTACGGCGAGCGTGCGGCGACGCTGCTGGGGCGCGGCCAGCACGGGACGACGTTCGGCGGCAACCCGGTGGCGGCCGCCGCGGCGCTGGCGACGATCGGCGTCATCGAGCGGGACCGGCTGCTGGCCCAGGTGCGTCAGGTCGGCGAGACCCTGCGCCGGGCGATCACCGCCGCGGGCAACCCCCTGGTCGCCGAGGTGCGGGGACGGGGCCTGCTGCTGGCGGTCCGGCTCACCCGCCCGGTGGCGGCCCAGGTGGCGGCTGCGGCGCTGGAGGCCGGGTTCATCGTCAACCCCGTCGCGCCCGACGCCGTCCGCCTCGCCCCGCCGCTGATCCTCACCACGGACCAGGCCCTGGACGCCGCACGGTTCTTCGCCGAGGTCACCGTGCCCGAGACCCCGAAGGAAGGCTGAMNEMATRRELTTAEWQDAYTGAVMDTFGPPQRILVRGEGAYVWDAEGTRYLDLLAGIAVNSLGHAHPTLTAAVSAQLGTLGHVSNFFGTPTQITLAERLLALAEAPSGSKVFFANSGTEANEAAFKMARRTGRTRILALEGGFHGRTVGALALTHKPAYREPFEPLPGGVEHVAFGDTAALEEAFSPVAVAERGEVAALVVEPVQGEAGVRELPAGYLALARRLTHDADALLVLDEVQTGVGRTGSWFAYQQPEIGGGIVPDVVTLAKGLGGGFPVGAVIAYGERAATLLGRGQHGTTFGGNPVAAAAALATIGVIERDRLLAQVRQVGETLRRAITAAGNPLVAEVRGRGLLLAVRLTRPVAAQVAAAALEAGFIVNPVAPDAVRLAPPLILTTDQALDAARFFAEVTVPETPKEGPGPT0014253_476DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821NANA
AK018_00333933argF_1COG0078Ornithine carbamoyltransferaseATGCCCCGCCACTTCCTGCGCGACGACGACCTGACGCCCGCCGAGCAGCGCGAGGTGCTCCGTCGGGCGCTCGAGCTGCGGGTCGAGCCGTTCGCGCGCACGCCGCTGGCCGGTCCGCAGAGCGTCGCGCTGCTGTTCGACAAGCCCACGCTGCGCACGCAGGCCTCGTTCTCGGCCGGGATCGCCGAGCTCGGCGGCTTCCCGATGGTGGTCGACGGCCGGCTCGCCCAGGTGGGCGTGCGCGAGTCCGTCGCGGACGTCACCCGCGTGCTGGACCGGCAGGTCTCGGCGATCGTGTGGCGCACCTTCGGCCAGGAGCGCCTCGACGAGATGGCCGCCGTCTCCACCGTCCCCGTGGTCAACGCGCTGACCGACCAGTTCCACCCGTGCCAGATCCTGGCCGACCTGCTCACCGTCGCCCAGCACCGCGGCGGTCTCGACGCCCTGCCCGGGCAGCGGCTGGCCTACGTCGGCGACGCGGCGAACAACATGGGCGCCTCGTACCTGATCGGCGGTGCGACGGCCGGGTTGCACGTGCTGGTCGGCGGGCCCGAGGGCTACCAGCCGGACGCCGACGTCGTGCGCCGCGCCGAGGAGATCGCGGCCACCACGGGTGGCTCGGTCACGGTGACGACCGACCCGGCCGCGGCGGTCGCCGACGCGGACGTCGTGGTGACCGACACGTGGGTCTCGATGGGCGACGAGGAGTCCGCGGCGCAGCGCGTCCGGGACCTCTCGCCGTACCAGGTGACGCCGGAGCTCATGGACGGCGCGCGGTCCGACGCGATCTTCCTGCACTGCCTGCCGGCCTACCGCGGCAAGGAGGTGGCCGCGGAGGTCATCGACGGGCCGCATTCGGCCGTGTGGGACGAGGCGGAGAACCGCCGGCACGCCCAGAAGGCCGTCCTGACGTTCCTGCTGGAGCAGCGATGAMPRHFLRDDDLTPAEQREVLRRALELRVEPFARTPLAGPQSVALLFDKPTLRTQASFSAGIAELGGFPMVVDGRLAQVGVRESVADVTRVLDRQVSAIVWRTFGQERLDEMAAVSTVPVVNALTDQFHPCQILADLLTVAQHRGGLDALPGQRLAYVGDAANNMGASYLIGGATAGLHVLVGGPEGYQPDADVVRRAEEIAATTGGSVTVTTDPAAAVADADVVVTDTWVSMGDEESAAQRVRDLSPYQVTPELMDGARSDAIFLHCLPAYRGKEVAAEVIDGPHSAVWDEAENRRHAQKAVLTFLLEQRPGPT0020080_3394DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020080-arcB|argF|argI-K00611NANA
AK018_00334534argR_1COG1438Arginine repressorATGACCACGCCGTCCGGTCACGCCCCCGCCACCAAGGCGGCCCGCCAGGCCCGTATCACCGAGATCCTGCACCGCACGGCGATCCACTCCCAGGCCGAGCTCGCCCGCGAGCTCGCCGCCGAGGGCCTGTCCGTCACGCAGGGCACGCTGTCCCGCGACCTCATCGAGCTGCGGGCCGAGAAGGTCCGCAGCGCCTCGGGCGCCCTCGTGTACGCCGTCCCCGGCGAGGGCGGTGACCGCACCGTGCGCGCCGCCGGCGTGGACGGGTACGACGGCGGCTACCTGGCCGCCCGGCTGGCCCGGCTCTGCGCCGACCTGCTCGTCTCCGCCGAGGCGTCGGGCAACCAGGTGGTGCTGCGCACCCCGCCCGGGGCGGCGAACTACCTCGCCTCGGCCATCGACCACTCCGTCTTCCCCGGGGTCCTCGGCTGCATCGCCGGGGACGACACGATCCTCGTGATCGCCCGGGACCCGGCCGGGGGCGACGATCTCGCCCACCGGTTCCTCGAGCTCACCGCGCCCCAGGACGCCTGAMTTPSGHAPATKAARQARITEILHRTAIHSQAELARELAAEGLSVTQGTLSRDLIELRAEKVRSASGALVYAVPGEGGDRTVRAAGVDGYDGGYLAARLARLCADLLVSAEASGNQVVLRTPPGAANYLASAIDHSVFPGVLGCIAGDDTILVIARDPAGGDDLAHRFLELTAPQDAPGPT0020105_222DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020105-ahrC-K03402NANA
AK018_003351230argG_1COG0137Argininosuccinate synthaseATGACTGATCGCGTCGTGCTCGCCTACTCCGGCGGCCTGGACACCTCCGTGGCCATCGGCTGGATCGCCGAGGCCACCGGGGCCGAGGTCGTCGCCGTCGCCGTCGACGTCGGCCAGGGAGGCGAGGACCTCAACGTCATCCGGCAGCGCGCTCTCGACTGCGGCGCCGTCGAGGCCTACGTGGCCGACGCCCGCGACGAGTTCGCCACCGAGTACTGCATGCCGGCCCTGCAGGCCAACGGCCTCTACCTCGACCGGTACCCGCTCGTCTCGGCGATCTCGCGCCCCGTCATCGTCAAGCACATGGTCCGCGCCGCGCGCCAGTTCGGCGCCAAGACCGTCGCGCACGGCTGCACCGGCAAGGGCAACGACCAGGTCCGCTTCGAGGTGGCCACCACCTCGCTCGCCCCGGAGCTGACCTCGATCGCCCCGGTCCGCGACCTCGCGCTGACCCGCGAGAAGGCGATCGACTACGCCGAGAAGCACGACCTGCCGATCGCGACGACGAAGAACAACCCGTTCTCCATCGACCAGAACGTCTGGGGCCGCGCCGTCGAGACGGGCTTCCTCGAGGACATCTGGAACGAGCCCACCAAGGACGTCTACTCCTACACCGACGACCCGACGTTCCCGCCGGTCGCCGACGAGGTCGTCATCACCTTCGAGCAGGGCCTCCCGGTGGCCCTCGACGGCGTCGCGGTCACGCCGCTGCAGGCCATCGAGGAGATGAACCGTCGGGCCGGCGCCCAGGGCGTGGGCCGGATCGACATCGTCGAGGACCGGCTCGTGGGCATCAAGTCGCGCGAGGTGTACGAGGCGCCGGGCGCGATGGCGCTCATCGCCGCCCACCAGGAGCTCGAGAACGTCACGCTCGAGCGGGAGCAGGCGCGCTTCAAGAAGGGCGTCGAGCAGCGCTGGGGCGAGCTCGTCTACGACGGCATGTGGTTCTCGCCGCTGAAGAAGAGCCTCGACACGTTCGTCGCCGACACCCAGAAGTACGTCTCTGGCGACATCCGCCTCGTGCTGCACGGGGGCCGCGCCACGGTCACGGGCCGTCGCTCGGAGGCCTCGCTGTACGACTTCAACCTCGCGACCTACGACGAGGGCGACGCCTTCGACCAGTCGCACGCCAAGGGGTTCATCGAGATCTACGGCCTGGCCGCCAAGCAGGCCGCCGCCCGTGACGAGCGGTTCGGCAACGGCCCGGACTTCGGCGTGGGGACCCTCTGAMTDRVVLAYSGGLDTSVAIGWIAEATGAEVVAVAVDVGQGGEDLNVIRQRALDCGAVEAYVADARDEFATEYCMPALQANGLYLDRYPLVSAISRPVIVKHMVRAARQFGAKTVAHGCTGKGNDQVRFEVATTSLAPELTSIAPVRDLALTREKAIDYAEKHDLPIATTKNNPFSIDQNVWGRAVETGFLEDIWNEPTKDVYSYTDDPTFPPVADEVVITFEQGLPVALDGVAVTPLQAIEEMNRRAGAQGVGRIDIVEDRLVGIKSREVYEAPGAMALIAAHQELENVTLEREQARFKKGVEQRWGELVYDGMWFSPLKKSLDTFVADTQKYVSGDIRLVLHGGRATVTGRRSEASLYDFNLATYDEGDAFDQSHAKGFIEIYGLAAKQAAARDERFGNGPDFGVGTLPGPT0020130_2233DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020130-argG-K01940NANA
AK018_003361443argH_1COG0165Argininosuccinate lyaseATGAGCGACGAGACCCTGCCCGACGGCGTGTCGAGCGACGGACCGGTCGCCCTGTGGGGCGGCCGGTTCGCCGGGGGGCCCGCCCCCGAGCTGGCACGGCTGAGCAAGTCGACGGACTTCGACTGGGCGCTGGCGCAGTACGACATCCGCGGCTCGCGCGCCCACGCCGAGGTGCTGCACGCCGCGCGTCTGCTGACCGACGACGAGCTGACCGCCATGCACGAGGCGCTGGACCGGCTGTCCGAGGACGTCGCCTCAGGGGTGTTCGTGGCCGCCCCGGAGGACGAGGACGTGCACACGGCCCTCGAGCGCGGCCTGCTGCAGCGGGCCGGCGACGACCTCGGCGGCAAGCTGCGGGCGGGTCGTTCGCGCAACGACCAGATCGCGACGCAGGTGCGCATGTACCTGCGCGACCACGCCCGCGTCATCGCCGAGCAGCTCGTCACGGTCGTCGACGAGCTCATCACGCAGGCCGAGGCCGCCGGCGAGGCCGTCATGCCGGGGCGCACCCACCTGCAGCACGCCCAGCCCGTGCTGCTGGCGCACCACCTGCTGGCGCACGCGTGGCCGCTCCTGCGCGACGTCGACCGGCTCATCGACTGGGACGTGCGGGCCGCGCGCTCGCCGTACGGGTCCGGGGCGCTCGCGGGCTCGTCCCTCGGCCTCGACCCGGCCGCCGTCGCCGCCGGGCTGGGGTTCGACGGTCCCGTGGAGAACTCGATCGACGGCACCGCGGCGCGCGACGTCGTGGCCGAGTTCGCGTTCGTGGCGGCGATGATCGGCATCGACCTGTCGAGGATCTCCGAGGAGATCATCCTGTGGAACACCAAGGAGTTCGGGTTCGTGCGCCTGGACGACGCCTGGTCGACCGGGTCGAGCATCATGCCGCAGAAGAAGAACCCGGACATCGCCGAGCTGGCGCGGGGGAAGTCCGGCCGGCTCGTCGGTGACCTGACGGGTCTTCTCACCACGCTCAAGGGCCTGCCGCTGGCGTACAACCGCGACCTGCAGGAGGACAAGGAGCCGGTCTTCGACCAGGTCGGCACCCTGACGGTCCTCCTGCCGGCCTTCGCCGGCATGGTGCGCACGCTGACCTTCGACACCACGCGCATGGCCGAGCTGGCGCCGCAGGGATTCTCCCTGGCCACGGACGTCGCCGAGTGGCTGGTGCGCGAGGGCGTGCCCTTCCGGGTCGCCCACGAGGTCGCCGGGTCCTGCGTGCGCGTGTGCGAGGAGCGCGGCATCGAGCTGTGGGACCTGTCGGACGACGACCTCGCGGAGATCTCGGAGCACCTGACCCCGGGCGTGCGCGAGGTGCTCTCCGTGCCCGGGTCGGTGGCGTCCCGGGACGCCGTCGGCGGGACCGCCCCGGTGCGTGTGGCCGAGCAGCTCGAGGCGGCGAAGGAGCGGGCCACCGAGTTCCGCTTCTGGGCCGAGGGCTGAMSDETLPDGVSSDGPVALWGGRFAGGPAPELARLSKSTDFDWALAQYDIRGSRAHAEVLHAARLLTDDELTAMHEALDRLSEDVASGVFVAAPEDEDVHTALERGLLQRAGDDLGGKLRAGRSRNDQIATQVRMYLRDHARVIAEQLVTVVDELITQAEAAGEAVMPGRTHLQHAQPVLLAHHLLAHAWPLLRDVDRLIDWDVRAARSPYGSGALAGSSLGLDPAAVAAGLGFDGPVENSIDGTAARDVVAEFAFVAAMIGIDLSRISEEIILWNTKEFGFVRLDDAWSTGSSIMPQKKNPDIAELARGKSGRLVGDLTGLLTTLKGLPLAYNRDLQEDKEPVFDQVGTLTVLLPAFAGMVRTLTFDTTRMAELAPQGFSLATDVAEWLVREGVPFRVAHEVAGSCVRVCEERGIELWDLSDDDLAEISEHLTPGVREVLSVPGSVASRDAVGGTAPVRVAEQLEAAKERATEFRFWAEGPGPT0014242_83DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014242-argHA-K14681NANA
AK018_00337618hypothetical proteinGTGACCGTTCCGCCGCAGGTGCTCGACGTCGTCGTGCACCGCGTCCATGCCGCCTCCGCGCGGCTGCCCGGGCCGGGTGCGTCGCCCTCGTGGCGACGCACCCGGCTCGTGTGCGTCGACGGACCGGCCGGGTCCGGCAAGACCTCGCTCGCCACCCAGCTCGCGGTCGAGCTGTGCTGCCAGGTCGTGCACATGGACGACCTGTACGAGGGCTGGGAGGACGGCCCGGACGGCGGTGCCCGGCGGCTCGCGCGACGGGTGCTGGAACCGCTGGCCCGCGGAGGGGCGGGGGAGTACCGCCGCTACGACTGGCCGGCGGGCGCGTGGGCCGAGACGCACGCCGTCGAGCCGGCGCCGTTCCTGGTCGTCGAGGGGTGCGGGGCCGCCGCCCGCAGCGCGGACCCGTGGGCCGCCCTGCGCGTCTGGGTCGCCGCCGACGACGACGAGCGCCTGCGCCGCGGACTGGCGCGGGACGGCGCGGAGGCCCGGGAGCACTGGTTGCGCTGGATGGCCGACGAGGCCGAGCATTACGCTGCGGAGCAGACGCGCGAGCGGGCCGACGTCTGGCTGGACGGTGTCGGACGGTTGCGCGGCCCGGACCGGGCGGAGGAGGCGTGAMTVPPQVLDVVVHRVHAASARLPGPGASPSWRRTRLVCVDGPAGSGKTSLATQLAVELCCQVVHMDDLYEGWEDGPDGGARRLARRVLEPLARGGAGEYRRYDWPAGAWAETHAVEPAPFLVVEGCGAAARSADPWAALRVWVAADDDERLRRGLARDGAEAREHWLRWMADEAEHYAAEQTRERADVWLDGVGRLRGPDRAEEANANANANANA
AK018_00338672COG2094Putative 3-methyladenine DNA glycosylaseATGAGCGAGACGACCCACGAACAGGCCGCCGCGGTCCCGTGGCAGGTGCCCGGCACGTCCTGGTACGCGCGCAGCGTGCACGACGTGGCCCGTGACCTGCTCGGTGCGTACCTCGTGCGGCGACGTCCCGACGGCGACGTCACCCTGCGCATTACCGAGGTCGAGGCCTACGGCGGTGCCGACGACCCCGCCTCCCACGCGTTCCGCGGCCCGACCGCCCGCAACCGCTCGATGTTCGGCCGTCCGGGCAGGCTCTACGTCTACCGGCACCTGGGCCTGCACCACTGCGTCAACATCGTCTGCGGGTCGGTCGGCGACGCGGGTGCCGTGCTGCTGCGTGCCGGCGAGGTCGTGGAGGGCCGGGCGGTGGCACGAGAGCGGCGCGAGGCCGCCGGCCGCTGCGACTCGGAGCGGCAGATCGCCCGCGGGCCCGCCCGGCTCGCCGTGGCGCTCTCGCTCGACCTGCAGGACGACTCGTGCGACGTCACCGAGCCGTCCGGTGCGGTGGCCGTCCAGCTCCCGGTGGACCCGCTGCCCCGCACGATCGCGACGGGACCCCGCGTCGGCGTCGGGGGAGAGGGAGCCGACCCCGCCCGGTTCGGCTGGCGCTCCTGGCTCGTCGACGAGCCCACCGTCTCCTCCTACCGCCCGGTGGCCGGTCGCGTGCGCTGAMSETTHEQAAAVPWQVPGTSWYARSVHDVARDLLGAYLVRRRPDGDVTLRITEVEAYGGADDPASHAFRGPTARNRSMFGRPGRLYVYRHLGLHHCVNIVCGSVGDAGAVLLRAGEVVEGRAVARERREAAGRCDSERQIARGPARLAVALSLDLQDDSCDVTEPSGAVAVQLPVDPLPRTIATGPRVGVGGEGADPARFGWRSWLVDEPTVSSYRPVAGRVRPGPT0014885_595DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014885-yxlJ|aag-K03652NANA
AK018_00339801COG2200putative signaling proteinATGATCGAGCACTTCACGTACGGACTCCTGACCCCTGCACTGTCGTTCGTGCTCTCGTGCCTCGGATGCGCCGCAGGGCTGTCCTGCACCGCCCGAGCGCGCCTCTACACCGGCCGGGCGCGGCGGTGGTGGCTCTGGATGGGCGCCGTCGCCATCGGGGGCACCGGCATCTGGGTCATGCACTTCGTGGCCATGCTCGGGTTCTCGGTCGAGGGCGCCGAGATCCGCTACGACATCCCGCTGACCGTGGCGAGCGCCGTGCTCGCGATCGGCGTCGTCGCGATCGGCCTGTTCCTGGTGGACCGCAGCGGTGGACGGACGGGAGCCGTCGTCGTCGGCGGGACCGTCGCCGGCCTCGGGGTGTCGAGCATGCACTACCTCGGCATGCGCGCCATGCACACGGACGTGGCGATCGACTACGACCCGTGGCTCGTGACGCTCTCCGTCGCGATCGGCGTCGTGGCGGCATCGGCGGGCCTCTGGCTCGCGTTCATCGTCCGGACCACCGCCGCCGGGGCGGCAGCAGCCGTCGTGATGGGTGTCGCCGTCTCCGGGATGCACTACACCGGGATGGCCGCGATGAACGTCGAAGGGCACGCCGACCACGGCATGAGCGCTCCGGACGGACTCACGACCGGCGAGCTCCTCGTCCCGCTGATCATCTTCCTCACACTGTCGACGCTTGCCCTCGTCGTCACGGTCGTCCTCGCCCGGAGCCCCGGCGAGATCACGGCCGACCGCGCCTTCGACGAGTGGCGGAACGAGCTGCGCCGCTCGACCGACGACGTCGACTCCCGGTAGMIEHFTYGLLTPALSFVLSCLGCAAGLSCTARARLYTGRARRWWLWMGAVAIGGTGIWVMHFVAMLGFSVEGAEIRYDIPLTVASAVLAIGVVAIGLFLVDRSGGRTGAVVVGGTVAGLGVSSMHYLGMRAMHTDVAIDYDPWLVTLSVAIGVVAASAGLWLAFIVRTTAAGAAAAVVMGVAVSGMHYTGMAAMNVEGHADHGMSAPDGLTTGELLVPLIIFLTLSTLALVVTVVLARSPGEITADRAFDEWRNELRRSTDDVDSRPGPT0026010_1612DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
AK018_003401260tyrS_1COG0162Tyrosine--tRNA ligaseGTGACCGACGTTCTCGACGAGCTGCACTGGCGAGGCCTGGTGGCGCAGTCCACCGACGAGGCCGCGCTGCGCGACGCACTCTCGAAGGGGCCGGTCACCTACTACTGCGGGTTCGATCCGACGGCCCCGAGCCTGCACCATGGCCACCTGGTCCAGCTGATCCTGCTGCGGCACCTGCAGCTGGCCGGACACCGCGCGATCGCTCTGGTCGGCGGCGCCACCGGCATGATCGGGGACCCCCGGCAGTCGGGGGAGCGAGTGCTGAACACCAAGGAGACGGTGGCCGAGTGGACGGAGAAGATCCGTGCGCAGGTCTCCCGGTTCCTGGACCTGACGGGGGACAACCCGGCCCGGGTCGTGAACAACCTCGACTGGACGTCGGAGATGTCGGCGATCGACTTCCTGCGGGACGTCGGCAAGCACTACCGCCTCGGCACGATGCTCGCCAAGGACACGATCGCCCGCCGCCTGCACAGCGACGAGGGCCTGTCGTTCACGGAGTTCAGCTACCAGATCCTGCAGGGCATCGACTTCCGCGAGCTGTTCCGCCGGTACGACTGCACGCTGCAGACCGGCGGCAACGACCAGTGGGGGAACCTGCTCTCGGGCGTCGAGCTCATCCGCCGCACCGAGGGCGCGGCGGTGCACGCGATGACGACGCCGCTGATCACCAAGGCCGACGGCACGAAGTTCGGCAAGACCGAGGGCGGCGCCGTCTGGCTCGACCCGGAGCTCATGAGCCCGTACGCCTTCTACCAGTTCTGGCTGAACCAGGCCGATGCCGACGTCGTGCGGTTCCTGAGGATCTTCACCTTCCGCACGCGGGAGGAGATCGAGGAGCTCGAGCGTGAGGTCGCCGAGCGGCCCTTCGCCCGCGTGGCCCAGAAGACGCTCGCCACCGACGTGACGACGCTCGTGCACGGACAGGAGGCCACCGACGCGGTCATCGCCGCCAGCCAGGCGCTGTTCGGCCGCGGCGAGCTGACCGAGCTGGACGCCGGCACCCTGGGTGCCGCCACCGCCGAGCTGCCGCGCGCCACGGTCCGCCCGGGTGTCAGCGTGCTCGACGCGCTCGTCGAGAGCGGGTTGGTGCCGTCCAAGGCGGCCGGCCGGCGGGCGATCGCCGACGGCGGCGCCTACGTCAACAACGTCAAGGTCGGCGGCGACGAGGACGTGCTGCGTGACGAGCACCTGCTGCACGGTCGCTACGCCGTGCTGCGCCGCGGCAAGAAGACCCTCGCGGTCGCCGTCGTGGAGTGAMTDVLDELHWRGLVAQSTDEAALRDALSKGPVTYYCGFDPTAPSLHHGHLVQLILLRHLQLAGHRAIALVGGATGMIGDPRQSGERVLNTKETVAEWTEKIRAQVSRFLDLTGDNPARVVNNLDWTSEMSAIDFLRDVGKHYRLGTMLAKDTIARRLHSDEGLSFTEFSYQILQGIDFRELFRRYDCTLQTGGNDQWGNLLSGVELIRRTEGAAVHAMTTPLITKADGTKFGKTEGGAVWLDPELMSPYAFYQFWLNQADADVVRFLRIFTFRTREEIEELEREVAERPFARVAQKTLATDVTTLVHGQEATDAVIAASQALFGRGELTELDAGTLGAATAELPRATVRPGVSVLDALVESGLVPSKAAGRRAIADGGAYVNNVKVGGDEDVLRDEHLLHGRYAVLRRGKKTLAVAVVENANANANANA
AK018_00341273hypothetical proteinATGAGCGCCGACGACCGCCGCGCCTTCATCGCCGACCTCAAGGCCGACCCCGGCGTGCGCTCCATCGGCGGACTCCTCACCGGCCTACACCGCTCAGGACGCCTCGCCGCCCGCATCGCCGAGTGGCACGAGCTGCGCGACATCCCCGCCACCCGCCGCGACCCACCACGCGACCGCCAAGGCCAGATCCTCGCCGCCGAACTCGAACGAGCCCAGGCCGCCGACACCCACCCCACCAACGTCTTCCAGCTCCCCTCCGGAGGCGCACCGTGAMSADDRRAFIADLKADPGVRSIGGLLTGLHRSGRLAARIAEWHELRDIPATRRDPPRDRQGQILAAELERAQAADTHPTNVFQLPSGGAPNANANANANA
AK018_00342486hypothetical proteinGTGAACAACACCGACGCCGCCCAGCTCGTCGCCTACCTCAACCGCGCCGGCCTCATCGGCGCCATGGAAGGTCAGGCCGCCGTCTGGGCCGACGCTCTCGCCGACGTCCCCGCCGTCACCGCCCAGCAGGTCGTGCGCGCCATGGTCCGCGACCGCACCAGCGACCAGCGGTGGGTCACCCCCGGCGACATCCGCGCCGCCGCCCGCCAGCAGCGCCGCCAGAACCTCGCCAGCATGGCCAGCCCGCAGCCGCCCCAGGCCCTCGACGGCGACCCCACCCGCGAAGTCGCCTGGCAGCGCGAGTACCGGACCGCCTACGGCGACACCGGCGACCCCGAGCAGGCCATGACGGCCGCCTGCGCCGCGCTCAACGTGCAGCCCGAGCCGCCCGTCATCGAAGCCGCCCGCCGGCCCCCCGAGCTCCACCAGCTCGGCCACGACGTCTGCTGCATCGAGCACCCCCTGCGCGAAAGGACGGCCCGATAAMNNTDAAQLVAYLNRAGLIGAMEGQAAVWADALADVPAVTAQQVVRAMVRDRTSDQRWVTPGDIRAAARQQRRQNLASMASPQPPQALDGDPTREVAWQREYRTAYGDTGDPEQAMTAACAALNVQPEPPVIEAARRPPELHQLGHDVCCIEHPLRERTARNANANANANA
AK018_00343255hypothetical proteinATGGTCGTGATGTTACTGATGACTGGAATGGCCTTTATCGTGTTGGCGGCCATTCTTGCTCCCTTCATTTTCGATCCCGCGCGCGAGGTGGACAACGTCTTTTCCTTCCGGGTTCTTAGTGGCGCATACGGTGTCTATATTGCCGTGTTCATCATGTACTTCTTTTCTAGGCGTGCAGCTCGTATCGAGAAATCGGTGCGGGAGAAGATTGTGGGCGGGGCCGAGCAGTCCGCGGAATCCGGGGCATCGGAGTAGMVVMLLMTGMAFIVLAAILAPFIFDPAREVDNVFSFRVLSGAYGVYIAVFIMYFFSRRAARIEKSVREKIVGGAEQSAESGASENANANANANA
AK018_00344231hypothetical proteinATGGATCAGCGCGTCGCCGCCGAACGCCAGCGCCTGGCCGACGAGTACGCGACCGCGGCGCCGTTGCGGTCGTTCCTGTGGCCGGCGCTGGTGGCGCTGATGGGTGTGGGGATCGGGGTGTCGTTCACGCTCGTAGTCCAGGACGTGACCGGTGCCGGCGCCGAGGTTGTGGTGGCCCCGGAACAGTGCACGGTCGAGGCGGCATCCCCCGGGGTGGGTGTGCGGCGATGAMDQRVAAERQRLADEYATAAPLRSFLWPALVALMGVGIGVSFTLVVQDVTGAGAEVVVAPEQCTVEAASPGVGVRRNANANANANA
AK018_00345255hypothetical proteinATGAGCGCCACGGCTATCAAGCCCCAGACTGCTCCGGACGTCGACCTCGACACTTCGGTCGCCTGCGAGTGGCAGGACTGCCAGGCCGAAGCCACCTGGTGGTCCTACATGGCCTGCTGCAAGGAAGGCGTCGCCCTGTGCGGCGAGCACGAGGCCGCCACGACGGCCGAGACGCGCCGGGCGCAGGACTGGGGCGGCATGGCCTGCACGTCCTGCGGCCGCTACCCGACCGGCGTGAACCGGAGGAAGCTGTGAMSATAIKPQTAPDVDLDTSVACEWQDCQAEATWWSYMACCKEGVALCGEHEAATTAETRRAQDWGGMACTSCGRYPTGVNRRKLNANANANANA
AK018_00346639hypothetical proteinATGGCCTCGCAGGCGACCGACGGGACCTGTCCGGCCTGCGGTCAGGTGCACGAGCGGTGTGCCGCGCACTCCAAGCGCACCGGTGGGCCGTGTGGCGCCCGGCCGCCTGCTGGCGCCCATGTGTGCAAGTGGCACGGCGGCGGCACACCCCAGGCCCGGGCTGCGGCGGAGCGGCGCCGCGAGCAGGCCGCCGCGGAGGCCGCCGTCGCCACCCTCGGCCTGCCCGTCGACATCTCCCCCACCGATGCCCTCCTCGAGGAAGTGCGCTGGACCGCCGGCCACGTGCAGTGGCTGCGCCGCAAGGTCCAGGACCTCGAGCATGACGACCTGGTCTGGGGCACGACACGCGTCAAGGAAGGCGGCGACGACCGAGGCACTACCGAAGAGGCCAAGCCCAACGTGTGGCTCGAGCTCTACGACCGCGAACGCAAGCACCTCGTCACCGTCGCCTCTGCCGCCCTCAAGGCTGGCGTCGAAGAACGCAAGGTCCGCCTCGCCGAATCCCAGGGCGATCTCCTCGCGCTCGTCATCCGCCGCATCCTCAACGACCTCCAGCTCACCCCCGACCAGCAGCAGCTCGTCGGAGACGTCGTCCCCCGCCACCTGCGCGCCATCGCCACCGAAGGAGCCACCGCATGAMASQATDGTCPACGQVHERCAAHSKRTGGPCGARPPAGAHVCKWHGGGTPQARAAAERRREQAAAEAAVATLGLPVDISPTDALLEEVRWTAGHVQWLRRKVQDLEHDDLVWGTTRVKEGGDDRGTTEEAKPNVWLELYDRERKHLVTVASAALKAGVEERKVRLAESQGDLLALVIRRILNDLQLTPDQQQLVGDVVPRHLRAIATEGATANANANANANA
AK018_00347912hypothetical proteinATGACCCGCACCTTCCAGGACTGCACCGTCGACGACTGCCCCCGCCAGGTTCCCGACACCGGCTACGTTTGCACCGACTGCTCGGCCCGCCTCACCAGGAACCTCGCACTCCTTCTCGACGAGCAGGCGGAGCGCGCCGTCGTCGTCATCGACCGCAACGACCCCGACCGTGGCACCCGCACCACCGGCCTCCCCCGCCACGAGCTCGGCCTCGACCACGATCTCGTCGACCGGATGGCACGACCACAGACCATCACCGCCACCCTCCCCGACGGCGACCGCGGCCCTACCCGGCTCCCGTACACGTACCGGACCGCCGAAGCCCGCCGCGACCTCCTCAACACGCTGCGGTCCAACGCCGACCACATCGCCCACCTGCGTGGACTGGCCCGGCCCCTCGACACCCCGCACGCCCTCGCCTACTGGCTCACCCACCAGACCACCTGGCTACGCCACCAGCCCGACGGCGGCGACATCATCGCCGAACTCCTCGACGCCACCCGCCGCGCCATCCAAGCGGTCGACAACCCACCAGACCGCAAGTACGCCGGCCCCTGCACCGCCACGGTGCCCGACGACGACGGCCTCGCCGCCGACTGCCCCGGTGAGCTCTACGCCCTCCCCGGACACCCGCGCATCGAGTGCCCCGACTGCGGCGCCCAATACGACGTCACCGACCGGCGCGCCTGGCTCCTCGACCAAGCCGACGACATGCTCCTCCCAGCCACCGAACTCGCCCGCGCGATCGACGGCCTCGGCGTCCTCGTCACCGGATCCCAGATCCGCGGCTGGCGACGCCGCGGCCTGCTGGCGAACAAGGGCACGGAGACGCGGCCGCTGTACCGGGTCGGGGACGTGCGCATGCTGGTGGTCGACCGTGCGGTGAGGGTAGGCGCTACAGTACGAGCGTGAMTRTFQDCTVDDCPRQVPDTGYVCTDCSARLTRNLALLLDEQAERAVVVIDRNDPDRGTRTTGLPRHELGLDHDLVDRMARPQTITATLPDGDRGPTRLPYTYRTAEARRDLLNTLRSNADHIAHLRGLARPLDTPHALAYWLTHQTTWLRHQPDGGDIIAELLDATRRAIQAVDNPPDRKYAGPCTATVPDDDGLAADCPGELYALPGHPRIECPDCGAQYDVTDRRAWLLDQADDMLLPATELARAIDGLGVLVTGSQIRGWRRRGLLANKGTETRPLYRVGDVRMLVVDRAVRVGATVRANANANANANA
AK018_00348159hypothetical proteinGTGATCTTCTGGACCCTGTCGGGGGTTTGCCTATTACTCGCGCTGATCTTGGGCACAGTATTCGGTAGCAACGCGGGCGACTTCGTCGGCGGGCTGATCCGTGTGCTGTTCACGTCGTGCCTGCTGTTGGCATGGGTAGCTATCGGGGTGTCGCAATAGMIFWTLSGVCLLLALILGTVFGSNAGDFVGGLIRVLFTSCLLLAWVAIGVSQNANANANANA
AK018_003491494hypothetical proteinGTGACGCTCACCGCCTTCGAACACGCCGCCCGCCAATTCGAAACCCCCACCGGCCCCCGCTGGAACTCCCCGGCAGCCGCCGGCAACACCCTCGATCCGCGCTTCCTCCGCACGCCCGCCCTCGACCTCATCGACGACGAGCTCACCCACGCACTCACCACCCCCGACGCCCGCCTCATCGTCTCCATGCCCCCACAGGAGGGGAAGTCCACGCTGGCGACGAAGTGGGCGCCCGCCTGGCTCCTCTCCCACCGGCCCGACACCCGCGTCGTCATCGCCTCCTACAGCGCCGCCGTCGCACGCCGCATGGGCCGGCTCATCCGCAACGAGATCGTCACCCACACCGACGCCCTCAACCTGCGCCTCCGCGACGACGTCGCCGCCCAGAACGAGTTCGAGATCGCCGGCCACGAAGGCGGCGTCTACGCCGTCGGCGTCGGCGGCTCCCTCACCTCGAGACCTGCGGACGTCATGATCATCGACGACCCGCTCAAGGACCGCGAACAGGCTGACAGCCCCGTCTACCGGGAACGCGTCTGGGACTGGTGGACCTCCACCGCGTCCTCGCGTCTCGCACCCGGCGCCCCGGTCGTGCTGATCCTGACCAGGTGGCATCACGACGACCTCGCCGGCCGACTCCTCGCCGCCGAAGACGGGCACCTGTGGCGCGTCGTCAACCTGCCCGCCCAGGCCGACCACAGGCCCGAGCAAGACCAGACCGACCCCCTCGGCCGGCAGCCCGGCGAGTACATGATCTCCGCCCGCGGCCGCACCACAGCCCAGTGGGAGGCCCGCAAGATCCAGGCCGGCCCCCGCGACTGGAACGCCCTCTACCAGGGCCGCCCCTCCCCAGAGTCGGGCGACCTGTTCCCCTCAGACTGGCCGCGCTACACCGACGTGCCGTGGGTCGAGCGGGCCGACGGATCCCGCTGGGTCCCCGGCCAGGACGTCGAGCTCATCCAGTCCTGGGACCTGGCCTTCAAGGACACCAAGGGCTCCGACTTCGTCGTCGGCCAGGTCTGGCTGCGCGTCGGAGTCACCGCCTACCTCCTCGACCAGACCCGGGCGCGGATGAACATCACCGCCACCCTCGAAGCGATCCGGGCGACGACCGCACGCTGGCCGCAGGCCGTCGCGAAGCTCATCGAGGACAAGGCCAACGGCCCCGCCGTCATCTCGCTCCTGACCGGCAGCGTGCCCGGAATCATCCCGGTCGAGCCCCGCGGCTCGAAGTACTCCCGCGCCGCCGCCGTCTCCCCGTTCACCCACGCCCGCAACGTGCACCTACCCGACGCCGAAGTGCTGCCGAACGTCGAAGACCTCATCGAGGAGTGCAAGACCTTCCCCAACGGCGCCCACGACGACACCATCGACGCCATGTCCCAAGCCCTCGACCAGCTCCTGCTCGAACCCATCCTCAACGAGGACGACGACATGGTCACCGGCACCGACATGCTCGACGACGACCCCCACGCCTACCTCGGCGGCTACTAGMTLTAFEHAARQFETPTGPRWNSPAAAGNTLDPRFLRTPALDLIDDELTHALTTPDARLIVSMPPQEGKSTLATKWAPAWLLSHRPDTRVVIASYSAAVARRMGRLIRNEIVTHTDALNLRLRDDVAAQNEFEIAGHEGGVYAVGVGGSLTSRPADVMIIDDPLKDREQADSPVYRERVWDWWTSTASSRLAPGAPVVLILTRWHHDDLAGRLLAAEDGHLWRVVNLPAQADHRPEQDQTDPLGRQPGEYMISARGRTTAQWEARKIQAGPRDWNALYQGRPSPESGDLFPSDWPRYTDVPWVERADGSRWVPGQDVELIQSWDLAFKDTKGSDFVVGQVWLRVGVTAYLLDQTRARMNITATLEAIRATTARWPQAVAKLIEDKANGPAVISLLTGSVPGIIPVEPRGSKYSRAAAVSPFTHARNVHLPDAEVLPNVEDLIEECKTFPNGAHDDTIDAMSQALDQLLLEPILNEDDDMVTGTDMLDDDPHAYLGGYNANANANANA
AK018_003501593hypothetical proteinATGGGGCGCATCCGCCAGCTACTCGGCCTCGAAGAGTCCCCCGTCACCGCCCAGGCCCTGCAGCGGGCCACCGCCGCCGAGGACTCGCTCGAGGTCGTCGCCGAAGGCCTCGCCGACCTCGAACTCGCCCTCGAGGACACCGGCTGGGAACGCCTCACCACACAGATGCAGCAGGAGCTGTCCCGCGACGGCCTGCAGCGCGCCGCCGAGGTCGCCCGCGTCATGAACGTCGCGAACCCCCTGATCAAGCGGGGCCTCGCGGTACGCCAGTCCTACGTGTGGGGCCAGGGCGTCCAGATCCAGGCGCGCGCCACCGGCGAAGACGGCCAGCAGGACGTCAACGCCGTCGTCCAGGCCTTCCTCGACGATGCCGGCAACCGACGCGCATTCACCGGCGACCAGGCGCGCGAGCAGCTGGAGACCGCGCTCGGCACCGACGGGAACGTGTTCCTGGCGTGCTTCACGAACCCGCGCACCGGCCGCGTCCAGGTGCGCACGCTGCCGTTCGACGAGATCACCGACGTCATCACGAACCCGGGCGACCGCAACGAGCCGTGGTTCTACCGGCGGCAGTGGAACGAGACCGTCATCAGCCCGGCCGGGCAGATGACGACCGTGCAGCGGGTGGCCTACTACCCGGCGCTCGGCCACCGGCCGACGTCCCGTCCCCGGCGCCTCAACGGCGACGAGGTCATGTGGGACGCGCCGGTCTACCAGGTGGCCGTGAACCAGCAGTCCGGCTGGAACTTCGGCATCGGCGACGCCTACGCCGCCCTGCCCTGGGCCCGCTCCTACCGCGACTTCCTCGCCGACTGGGCCACCCTGGTCAAGGCGCTGTCGCAGTTCGCGTGGAAGGCCTCGTCGAAGAACGGGTCGAAGGCGGCCAAGCTGCGCCAGTCCCTCGCCCGCCGCCCCGCCAGCCCCGCCCCTGCAGGGAACGAGAACAATGTCGGCGCCACCGCCGTCACCGGACCCGACGTCACCCTCGAAGCGATCCCGAAGACCGGCGCCACCATCGACTCCGACTCCGGCCGGCCCCTGGCCGCCATGGTCGCCGCCGCACTCGGCATCCCCGTCACGATCCTGCTGTCCGACCCCGGCCAGACCGGCGCCCGCGCCGTCGCCGAGACCCTCGACGCTCCGACCCGCAACGAGATGAACCAGCGGCGCGCCGTCTGGTCCGAGGCGTACCGCGCCATCCTCGCCCACGTCATCCTCGCCGCGGTCAAGGCCCCCGCCGGCCCCCTGACCGGCACCGTGGGACGCGACGAGCTCGGCGGCGAGATCATCACGCTCGCCGGCGACACCGAACCGACCGTCGAGATCGTGTGGCCGTCCCTGGACGACACCCCGGTCGAGACGATCGTCGAGGCCATCGTGAAGGCCGACTCGACCAAGACCCTCCCGCCGCTGGTCATCGTGAAGCTGCTGCTGCAGGCCCTCGGCGTGGACGACGTCGACGAGATCATCGAGCAGGTCACCGACGACAACGGCGACTGGCTCGACCCCTACGCCACCGTCGGCAACACGGTCGCGCAGGCCGCGATCGACGCCTACCGGCGCGGCGCCGACCCCGCCGCCGCCGTCCGATAGMGRIRQLLGLEESPVTAQALQRATAAEDSLEVVAEGLADLELALEDTGWERLTTQMQQELSRDGLQRAAEVARVMNVANPLIKRGLAVRQSYVWGQGVQIQARATGEDGQQDVNAVVQAFLDDAGNRRAFTGDQAREQLETALGTDGNVFLACFTNPRTGRVQVRTLPFDEITDVITNPGDRNEPWFYRRQWNETVISPAGQMTTVQRVAYYPALGHRPTSRPRRLNGDEVMWDAPVYQVAVNQQSGWNFGIGDAYAALPWARSYRDFLADWATLVKALSQFAWKASSKNGSKAAKLRQSLARRPASPAPAGNENNVGATAVTGPDVTLEAIPKTGATIDSDSGRPLAAMVAAALGIPVTILLSDPGQTGARAVAETLDAPTRNEMNQRRAVWSEAYRAILAHVILAAVKAPAGPLTGTVGRDELGGEIITLAGDTEPTVEIVWPSLDDTPVETIVEAIVKADSTKTLPPLVIVKLLLQALGVDDVDEIIEQVTDDNGDWLDPYATVGNTVAQAAIDAYRRGADPAAAVRNANANANANA
AK018_003511062hypothetical proteinGTGGCGTACAACGACGACACGTACCGGCTCGCCCGCGCCCTCAAGCTGCGCGTCAGCGAGGACACCGACCAGGCCGTCCGCCTCCTGGTGCAGGCTTGGGCGCGCGCCTGGGACGAGCTGCACACCACGTGGGCGGACGCCGCCATGGACGTCGCCGCCGCGTCGACCGACGCACCCGTACCGGGCTGGCGCCTCGAGCGCATGCGACGCGTCCAGCAGGCCCTGGCCCTGTCGACCGACGCGATCTACGAGCTGTCCGAGTTCACCGAGATCACCGTCGTCGACGGCGTCGGCCGCGTCGTCGAGTACACGCCCCCCGCGGAGGCCGAGATCATCGGCTCACAGCTCCCCGCGGGGACCGAGCTGCGGGCCGAGTTCGACGCCGGCGCCTTCGGACGGCTCGACGAGGCGCAGCTGCGGTCGATCGTGGAGCGCACCAGCGAGCAGATCCACGCCACCACCGTCCCGCTGCCGGCCGTCGCGCAGGAAGCGATGCGCCGCGCGCTCGTGCAGGCCGTCGCCGTCGGCGACAACCCGCGCACCACGGCCCGCCACATGCTCGATCGGGCGGAGGGCGCGTTCAACGGTGGCCTGGCGCGGGCGATGACGATCGCGCGCACCGAGATGCTCGACGCTCACCGCGCCGCCGCGCAGGCGATGCAGCTCGCCTCCACGGACGTGCTCACGGCGTGGATCTGGGAAGCGACCCTGGACCGGCGCACCTGCCCGTCGTGCTGGGCCAAGCACGGCACCCGCTTCGACCTCACCGAACCAGGCCCGAACGATCACCAGCAGGGCCGCTGCGCACGAACACCGGTGACGAAGACGTGGCGCGAACTCGGCTTCGACATCGACGAGCCGTCGCCCACGTTCCGCGACGCCCGCACCGCGTTCGACGCGCTGCCGCGGGACGAGCAGTTGCAGGTCATGGGCCGCCGTCGTCTCGCTGCGCTGGATGCCGGGGAGATCGCGTGGGGCGACCTTGCCCAGCAGCGCAGCAACGGCGGCTGGCGGGACTCGTGGGTGCCGACTCCGCTGCGGGACCTCGGCCTAACCGGTTAGMAYNDDTYRLARALKLRVSEDTDQAVRLLVQAWARAWDELHTTWADAAMDVAAASTDAPVPGWRLERMRRVQQALALSTDAIYELSEFTEITVVDGVGRVVEYTPPAEAEIIGSQLPAGTELRAEFDAGAFGRLDEAQLRSIVERTSEQIHATTVPLPAVAQEAMRRALVQAVAVGDNPRTTARHMLDRAEGAFNGGLARAMTIARTEMLDAHRAAAQAMQLASTDVLTAWIWEATLDRRTCPSCWAKHGTRFDLTEPGPNDHQQGRCARTPVTKTWRELGFDIDEPSPTFRDARTAFDALPRDEQLQVMGRRRLAALDAGEIAWGDLAQQRSNGGWRDSWVPTPLRDLGLTGNANANANANA
AK018_00352150hypothetical proteinATGGACGGTGAGGTCGCCGACTGCGTTGAGCACGTGTGGCGGATGGTCACGCTGACCCTGTCGGGCGGGACCTGGACCGAGTACGCCTGCGACCGGTGCGAGAGCGTCCTGCTGGTCGGGCCAGGCGAGGACCACCCCGAGACCGCCTAAMDGEVADCVEHVWRMVTLTLSGGTWTEYACDRCESVLLVGPGEDHPETANANANANANA
AK018_003531260hypothetical proteinATGCCCACCAGCGCACTCCTGCGGGAGACCCGCACGCTGGCCGAGTCCGCCACGCCCGCCGACGGGCCCGGCCGACTCCTCATCCAGATCATGACGCCCGGCTGGGGCGCCTCCGGCTACTACTCCCCCGAGGCGCTCGAGCAGGCCGCCACCGACCGCATCTTCGCGGCCGGCACCCACCAGTTCCTCGACCACCCCACCCCGACCGAGGACTTCGAGCGGCCCGTCCGCTCCGTGCGCGACCTGGCCGCCGTGCTCGCCGAGGACGCCCGCTGGGACCCGACCGTCGGCCAGCGGGGCGCACTCGTGGCCGAGGCCCGTGTCTTCTCCCGGTGGCGGCAGCCCATCGCTGACATGGCCGACGCCATCGGCGTCTCGATCCGTGCGGACGCCGAGGTCGAGCTCGGCGAGGCCGAGGGCCGGCAGGGCCGCATCATCACCCGCCTCACCGAGGCCAAGTCCGTCGACTTCGTGACCCGGGCAGGCCGGGACGGCAAGGTCCTCGAGGTCCTGGAGCACGCCGGCGAGGCAGTCCAGGAGGCTCGGAACGTCGGCCAGTGGGTCGAGTCCCGCATCCACCGCGACTTCACCGTGCTCGCGGACGAGATGTTCGGCGACGGGCGCCTCACCCGCGACGAGCGCATCGGCCTCTCCGGGGCGATCGGCGACGCCCTGGCGGCGTTCGTCTCCCGCGTCGAGTCCGACGCCCCCGACCTGTACCAGCGCGACCTGTGGGACGAGCCGCCCGAGTCCCCGCAGGTCACCGAGAACGTCCCCGTCACCCCGGCGGGGCAGTCCACCACCAACCAGGAGTCCGAGGAGGACGCCATGCCCACGATCGAGGAGGCGCGACTGCGCCAGCTCGAGGCGGACGCCGGCCGGGTGACCGCGGTCGAGTCCGAGCGAGACGCCGCCATCAAGCGCGCCGAGGAGGCCGAGGCGAAGGTCGCCGAGGCCCGCAAGACCAGCAACCAGGCCACCGCGCACCGCATCGTCGCCGAGGCCTTCGGCGAGCTGAACGCCCCGAAGACCATCGCCCGGCTCGCCGAGAATGCCCCGCTGACCGACGACGGCACCGTCGACGAGGCCGCGCTCAAGAGGGCCGCCGAGGAGTCCGCCGCCGAGCTGGCCGAGGCCACCGGCGCCGGCACCGTCCGCGGCCTCGGCGGCACCACCCACCCGTCCGGCACCACCGTGTCGGAGTCCGACGTCGACGCCGCGATCGCGCGTGCGTTCGGCCGCACCGTGAAGGAGGCCTGAMPTSALLRETRTLAESATPADGPGRLLIQIMTPGWGASGYYSPEALEQAATDRIFAAGTHQFLDHPTPTEDFERPVRSVRDLAAVLAEDARWDPTVGQRGALVAEARVFSRWRQPIADMADAIGVSIRADAEVELGEAEGRQGRIITRLTEAKSVDFVTRAGRDGKVLEVLEHAGEAVQEARNVGQWVESRIHRDFTVLADEMFGDGRLTRDERIGLSGAIGDALAAFVSRVESDAPDLYQRDLWDEPPESPQVTENVPVTPAGQSTTNQESEEDAMPTIEEARLRQLEADAGRVTAVESERDAAIKRAEEAEAKVAEARKTSNQATAHRIVAEAFGELNAPKTIARLAENAPLTDDGTVDEAALKRAAEESAAELAEATGAGTVRGLGGTTHPSGTTVSESDVDAAIARAFGRTVKEANANANANANA
AK018_00354339hypothetical proteinATGGCCACGAACGAGGTCTTCCGCAACGCCGAGCACCTCACCCTGCCCGTCCCGACCGGCACGCTGTCGGGGGACCCGGTGATCGTCGGCTCGATGCCCGGCGTCGCCATCACCGACCGCGACACCGACGGCACCGCCACCGTCTGGATGAAGGGCGCCTTCGACCTCACCGTCAACGGCGCGGTCACCGCGGTCGGCGCGCCGCTGTACATCGACGACAGCGGCACGCGCCAGACGCAGCTCACCACCACCGCCACGGACAACGCCCTGTTCGGGTACGCCCTGGCCACCAAGACCGCCGCCGCAGCGGTCGCCACCGTCCGCATCGCGCAGGTCTGAMATNEVFRNAEHLTLPVPTGTLSGDPVIVGSMPGVAITDRDTDGTATVWMKGAFDLTVNGAVTAVGAPLYIDDSGTRQTQLTTTATDNALFGYALATKTAAAAVATVRIAQVNANANANANA
AK018_003551149hypothetical proteinATGGAGAACATCGAGATCCTCACCGGCGCGGCCGCGGTCGCCGAGGGTGAGAAGAACCTGAGCGAGGGCGGCTACCGCGCCCCCGCACGCGGCGCCGAGCACCGCGCCCGCCTCGTCGAGGCCGCGGACATCTGGCACGACGCCCTGCACCAGGGCGGCATCGCCGGCATGCGCGCCCGCACGAAGCTGGTCGAGTCGCTGTCCACCAGCGACTTCCCGGTCCTGCTCGGCGGGGTCTTCGACCGCGAGCTCATGTCGCAGTACCAGGCCGCCCCGTCGGTCTGGCAGCAGATCGCCAAGCGCGTCACCGTGCGGGACTTCCGCCCGAAGTCCCTCATCGACCTGCTCGGCGGGCGCGGCATCCTCGACAAGGTCAAGGAGGGCGTCGAGTACCCGGCCCGGAAGGTGTCCGAGGCGAAGTACGAGCTGACCGTCGCCAAGCGGGGTGCCCGCATCCCGCTGACGTGGGAGATGGTCGTCAACGACGACCTCGACGCGTTCCGCGACCTGCCGAACCGGCTCGCGATCGGTGCCCGGGAGACCGAGGACTACATCGCCGCGAACCTGCTCGTCACCTCCGGCGGCATCAACACCCAGTTCTTCAAGACCGCCAACGGCAACGCGAAGACGACCCTGCCGCTGACCGAGGCCAACCTGGCCGCGGCCGTGCAGGCGATCTCCACGCGCAAGGACTCCGAGAAGCGGCCGGTCACCGTGACCGGGCTGCGGCTCGTGGTGCCGCCCGCGCTGGAGATCCAGGCGCGCAAGATCATCGAGGCGACCGAGATCCGCACCACGGACGGGAACACGACCACGATCCAGTCGAACTACCTGCGCAGCATGGTGACGCTGGTGGTCGACCCGTGGCTGACCGTCATCGACGAGTCCGCCACAGCGAACACGTCGTGGTTCCTCGTGCCGGACCCGTCCACGGCGCGTCCGGCGCTGGCGGTCGGGTTCCTGCGCGGCCACGAGAGCCCGGACCTGCGGGTCAAGGCCGACACCGGCCAGCGTGCCGGCGGCGGCGCGATCGCCCCGGAGGACGGCTCGTTCGACGACGACACGATCCAGTACCGGGTGCGGCACGTGCCCGGCGCGTCGCACGTCGACCCGCTCGTGACGTACGCGTCCGACGGCTCCGGTTCCTGAMENIEILTGAAAVAEGEKNLSEGGYRAPARGAEHRARLVEAADIWHDALHQGGIAGMRARTKLVESLSTSDFPVLLGGVFDRELMSQYQAAPSVWQQIAKRVTVRDFRPKSLIDLLGGRGILDKVKEGVEYPARKVSEAKYELTVAKRGARIPLTWEMVVNDDLDAFRDLPNRLAIGARETEDYIAANLLVTSGGINTQFFKTANGNAKTTLPLTEANLAAAVQAISTRKDSEKRPVTVTGLRLVVPPALEIQARKIIEATEIRTTDGNTTTIQSNYLRSMVTLVVDPWLTVIDESATANTSWFLVPDPSTARPALAVGFLRGHESPDLRVKADTGQRAGGGAIAPEDGSFDDDTIQYRVRHVPGASHVDPLVTYASDGSGSNANANANANA
AK018_00356408hypothetical proteinATGGCCATCACCTACACGCAGGCGACCGGCCAGGTGCGCCTCCTCATCGCCGACGTCAACGCGTCAGCCCTCGTCCTGTCCGACGATCAGATCGCCGGCTACCTCGCCCGCTACGGCGTGGACGCCGCCGGCCCGGTCACCCCGCGGGCACCGATCAGCCGCGCGGCCGCCGACGCCCTGGACGCGATCGCCACGTCCGAGGCGCTCGTCTCGAAGGTCATCCAGTCGCAGGACCTGCGCACCGACGGCGCGAAGGTCGCCGACGCCCTGCGCAAGCAGGCAGCGAGCCTCCGCGGCCAGGCGGACCGAGACGACGAGCTCGACGACACCAACGACGACACGTACTTCGGTGTCGCCGAGTTCTCCCCCTACCCCGGCAGCGGCCGCGAGGCCACCGAAGGACGGTGAMAITYTQATGQVRLLIADVNASALVLSDDQIAGYLARYGVDAAGPVTPRAPISRAAADALDAIATSEALVSKVIQSQDLRTDGAKVADALRKQAASLRGQADRDDELDDTNDDTYFGVAEFSPYPGSGREATEGRNANANANANA
AK018_00357465hypothetical proteinATGCCGTTCACGACCACCCAGGTCATCCCCGACGACTGGGCCGCCCGACACCAGCCCGTCACCGAGGGCGCCATGGGCGCCACCTGCACCATCACGGTCCCCGACCCGAACCAGCCCGGCGGCTGGGACCCCGACACCGGCCCCACCCCCGCTGGCACCATCACGCTCTACGACGGGCCCTGCCGCGTGCAGCCCTACCAGCACCGCTCCACCGGCGTGGACGACGCGGCCGGCCAGCTCGTCATCGACCGTGCCGTCCTCGTCGCCATCGAGCACTCGGCGCCCGAGATCCCCGCCGGTGACGACGGGGCGACTGTCACCATCACGGCCGTGGACGCCAACGGCGACCCCGAGCTCGTCGGCCGGCATCTGCGTGTCGCGTCGGTCGGGTACTCGTCGCTGCACTGGGAGCGGGACCTGGTGTGCGTCGACGACCTCACCAACCAGCCCGACCAGGAGGCGTGAMPFTTTQVIPDDWAARHQPVTEGAMGATCTITVPDPNQPGGWDPDTGPTPAGTITLYDGPCRVQPYQHRSTGVDDAAGQLVIDRAVLVAIEHSAPEIPAGDDGATVTITAVDANGDPELVGRHLRVASVGYSSLHWERDLVCVDDLTNQPDQEANANANANANA
AK018_00358357hypothetical proteinATGGCGCGCGTGACCAGCAACGCCCTCCAGGTCGCCGCCGACGTCGAGGCGGCGTCCGAGCGCACCGGCCCGCTGCTCGAGATCGTCGTTGGCAAGTCCCTCGCCGACGTCGAGCGCGACAGTAAGCGGTTCGCTCCCGTCGACACCGGCAACCTGCGCAGCTCGATCAGCCACGACCGTGCCGTCGACGACGGTCGCACCGTGCGCGGCGAGGTCGGCCCCACCGCGAACTACGGCGCCTACGTCGAGTTCGGTACCTCGCGGATGGCGCCACAGCCGTACATGGCGCCCGCCGTCGAACGGCACGAACCCGCCTTCACCAAGGCTGTCGAGCAGATCGTGGACCAGGCGCTGTGAMARVTSNALQVAADVEAASERTGPLLEIVVGKSLADVERDSKRFAPVDTGNLRSSISHDRAVDDGRTVRGEVGPTANYGAYVEFGTSRMAPQPYMAPAVERHEPAFTKAVEQIVDQALNANANANANA
AK018_00359417hypothetical proteinGTGACTGCCCCCGACGTTCTCCTCGCCGGCGTCATCGCCGCCCTGGAGACCATGACCCAGATCCCGGCGCACAAGGCGCGCGTGCCGAGCGACCTGCCTGCCGACGCATGCGGCCGCGTCTACCCCTACACCGTCGTCTGGCCCGGCGCCGGAGCGCCCCCGACCGTCGGCGAGCAGGACGTCGCCGCCACCAGCACAGGCCTCGCCTGGCGCTGCCAGGTCACCGTCGCTTCCGGCGACGTCGACTGGACCCTGCAGGCCACCAGCGAAGTCCGGGCCCGGCTCCACCACGCCACGATCGCGACCGGCGTGCTCCTCGCCCAGGAAACCCTGGCCGACCTGCGGATCCTGCCCGACGAGTCCACGAGGCCGACGCGCTGGTACACGCCGATGCCGTTCTACGCCCTCGCCCCCTGAMTAPDVLLAGVIAALETMTQIPAHKARVPSDLPADACGRVYPYTVVWPGAGAPPTVGEQDVAATSTGLAWRCQVTVASGDVDWTLQATSEVRARLHHATIATGVLLAQETLADLRILPDESTRPTRWYTPMPFYALAPNANANANANA
AK018_00360237hypothetical proteinATGGCGTCCACCCAGCGCCCCGCCCCGGCCGGGACGGCTCCCATCGAGGTCACCAAGCGTGACGAGACCGCCCGGCCCGGCTTCAAGCCCATCGAGGTCACCTCACGTGCCGGCCGCACGCCGGCCCGCCAGCGGGTCACGGAGCCCGCCGAACGCCCCGCCGCCGAGTCGGCGAAGACCACCCGCAAGACCAAGACCAACAGCGCCGCCCAGTCGGCGAACACCGAGGAGGCCTGAMASTQRPAPAGTAPIEVTKRDETARPGFKPIEVTSRAGRTPARQRVTEPAERPAAESAKTTRKTKTNSAAQSANTEEANANANANANA
AK018_00361516hypothetical proteinATGGCACGCATCGTCGACCTGGGCGTCACCCAGTACCTGTGGATCCCCGGCGAGGACGGCATCACCGACGAGACCGCCCCGACCGTCACCGAGCTCACCGACCCCGCCGCGGTGAACATCTCCATCCAGGTCGTGACCACGACCACGCTGGACACCGCGGCGTCGGACACGATCAACGAACGCTCCATCACGGACGTCTCCAACGCCGTCGTGCCCACGGTCGGGAACTTCGACGGCCAGCTGGTCCTCTTCCGCGACTACGACGCCGGCGCGCCGACCGCCAACGACCCGCTGACTGTCATCGGCTCCGAGGTCGGCACCGTCGGCTGGATCGCGAAGCGTGTCGGCGCGCCCGCCGCTCAGGCCGCGGCGGCCTCCGACCTGTACGACCTGTACCTCGTCATGATCGACAACCCGCAGACGACCGGCGGGCAGGGCGACGGCTACCTCAAGGCCACGTTCCCGCTGCTGCAGCAGGGCCGCTTCAAGAAGGCCGCCGAGGTCGTCTCGCCCTGAMARIVDLGVTQYLWIPGEDGITDETAPTVTELTDPAAVNISIQVVTTTTLDTAASDTINERSITDVSNAVVPTVGNFDGQLVLFRDYDAGAPTANDPLTVIGSEVGTVGWIAKRVGAPAAQAAAASDLYDLYLVMIDNPQTTGGQGDGYLKATFPLLQQGRFKKAAEVVSPNANANANANA
AK018_00362717hypothetical proteinGTGCCCACCACCGACAGCACCCCCGACACGACCGAGACGGCACCCGAGACACCGGACGCCACGGCCTTCAACCTCACCGACTGGATCCAGGGCATGAGCCCCACCCTCCGCTCGGTCACCATCTACGGCCGCACCGACATCTTCGGCCGCTACGAGCACCTCCTGCGCGAGCTCGAGGTCGCCGAGAAGGTCGCCGCCCACCCCGAGGCGTCGATCACCGACGGCGACCGCGTCGCCGAGATCACCGCCGAGATCGAAGACCTCTACCGGGTCCAGCAGGAGTCCAAGACCACCTGGTACGTCCAGGCCCTCGACTCCGACGTCATCCGGGCGATCAACGACGAGCACGACGTGCCCACGCTGCCCGAGAAACCGAAGGAGCCGCAGGACAACGCCCCACAGTCCGTCAAGGACAAGTACCGGGCGGCGAAGAAGAAGTACGACCGCGAGCACGCGAAGAAGCTCCCCGCACTGCAGGAGGCCGTCAACGAGCGGAACCTGCACTACATCGCGGCCGCCGTCGTGCGCATCGAGGACCACCAGGGCCGCACCGTCGCCACCAGCGTCACCGTGGAGCAGATCCGCGCCCTGGAGGCGACCACGCACGGCGCGATGCAGACCGGGCGGCTCCTGACCGCGGCGTCGGAGGCGAAGACGGCTGAGCCGGTGATCCCGGCCCCTTTCTCGCGCAGCAGCTCGAAGGGCACCCCGGGCTGAMPTTDSTPDTTETAPETPDATAFNLTDWIQGMSPTLRSVTIYGRTDIFGRYEHLLRELEVAEKVAAHPEASITDGDRVAEITAEIEDLYRVQQESKTTWYVQALDSDVIRAINDEHDVPTLPEKPKEPQDNAPQSVKDKYRAAKKKYDREHAKKLPALQEAVNERNLHYIAAAVVRIEDHQGRTVATSVTVEQIRALEATTHGAMQTGRLLTAASEAKTAEPVIPAPFSRSSSKGTPGNANANANANA
AK018_00363180hypothetical proteinATGCACGAGGACAGCCTGTGCCCGGGCTGCAACCAGCCGCGCGAGCACGCCTGGGATCCCCGCTCTGAGGGCGAGTACGACGTCACGACCGTCACCTGCCAGGCGTGCGCCGCCCGTGACAGCGGCAGCGACGACAAGAAGAAGCCCGGCCAGTACCGGCTCGTCCACCGCGCCACCTGAMHEDSLCPGCNQPREHAWDPRSEGEYDVTTVTCQACAARDSGSDDKKKPGQYRLVHRATNANANANANA
AK018_003642961hypothetical proteinATGGACCGCACCGTCAGAGTCGCGTTCGAGGCCGACTACGCGAACTTCGTGCGCGGCACCGACCGGGTCTCGACCGGTCTGCGGAAGGTCGGCGAGGAGTCCGACCGGGCCTCGAAGAAGGTCAGCGACGGTGCGGTCAAGCAGGAGCGGGCCGTCGACCGGCTCTCCAAACACGCTGCCCGGAACGAGGAGGCCTGGAACCGGTCCGGCCAGGCCCTGACCGCCTTCGGCGCCATCACCACCGCCACGGTCGGCGCGACCGTCAAGGCCGCGGTCGACTGGGAGTCCGCCTGGACCGGCGTGCTCAAGACCGTCGACGGCACCCCGGAGCAGCTCGCCGAGGTCGAAGATGGCCTCCGTGAGCTCGCGCGCAGCCTGCCAGCGACGCACACGGAGATCGCCGCCGTCGCCGAGGCCGCCGGCCAGCTCGGAATCTCCACCGGCGGAGTCGTCGACTTCACCCAGACGATGGTCAACCTCGGCGAGACCACCAACCTCTCCGCCGATGAAGCCGCCACGTCCCTCGCTCGCCTGTCCAACATCATGGGCACCTCCGAGAGCGACATCGACAACATCGGCGCCTCCGTCGTCGGCCTGGGGAACAACTTCGCCACCACGGAGTCCGAGATCGTCGCCATGTCGCTGCGACTCGCGGGTGCCGGCCGCCAAGCCGGAATGACCGAAGGTGACGTCCTGGGCCTGGCGACGGCCATGTCCTCGGTGGGCATCGAGGCTGAGGCCGGCGGCACCGCCATGTCGCAGACCATGACGCAGATCGGCCGCGAGGTCGACACCCAGGGCCCGAAGCTCGAGACGTTCGCAGCCGTGGCCGGCATGACCGCCGAGGAGTTCACGACCGCCTGGGGCCAGGACGCCTCTGGTGCACTGGCCGCGTTCATCACCGGCCTCGACGACACGTCCTCGCTGGGCATGTCGACCAACGAGGTCCTCGAGCAGCTCGGCATCACCGGGATCCGTCAGGCCGACACGCTGCGGCGGCTGTCGGCGGCGCAGGACCTGGTCAACGAGGCCCTGGCGACCGGGAACGAGGAGTACTCCGCGAACAACGCTCTGGTCGAGGAGGCCGCGAAGCGGTACGAGACGACCGAGGCCCAGTTGGAGATCGCCAAGGGCGCCATCTCGGATGCTGCGATCACGGTCGGCGAGACGTTCCTGCCCATGCTCGCCTCCGGGGCCGAGGCGGTCGCCGACCTGGCCTCCGGCTTCGCCTCGTTGCCCGAGCCTGCGCAGCAGACCGTCGGAGTGCTCGGCGGTGTCGCGGGTGCGGCGTCGCTCGTGGCCGGTGGGTTCCTGCTGGTCGCGCCTCGTGTCTTCGACACTGTGGACGGGTTCCGCAAGCTGCGGGCTAGTGCACCGCGCACGTCCCGGGCCATCGGGAGGGTCGGCAGGGCCGCCGGCGTCGCCGGGGCGGCACTGGCGGCTCTGCAGGTGTCCTCGGCGCTGGTCGACATCGACACCACATCGGCGTCCGAGTGGACCGAGGCGCTGCTGGGCATGAGCGACGCGAGCGACGCAGCGAACCTATCCCTGCAGGGCGTGTCCGACTTCGACTACAGCGACCAGCTGTACTCGATCGGCGACGCGATCGACCGCATCGACAACCCGACCGGCTGGCAGTCCTTCGTAGACGGCTTCAACTCGCTCACCGGGTTCGAGTCGAATGCCGAACTCCTCAAGGGAGAGCTCGAGGGCATCGGTCAGGCGCTGGCCACCATGTACGACTCCAGCCCCGACCTGGCGGCCGAGAACTTCGCCGCCATCCTGGCGCAGACCGACCTCACCGCGGACGAGCTGCTCGAGAAGATGCCGGCCTACCGGGACGTGCTCCTCGACACCGACAACGCACACCAGCTCGCCGCTCAGGGTGCCGAGGGCGTCGCCGAGGGGCTGGGTGAGATCGACCCGGCGGCCGAGGAGGCCGCGGCCGCGGCTGAGGAGTTCGTCGAGCGGGCCACGGACGCCTTCACGGCCTTCATCGACCCGGGCGGCGCCTACCAGGCGGCGATCGACAAGAGCCGCGAGCTCGCCGAGAAGACGGCCGAGGACACCGAGGACGCAGAGGACTCCTGGGAGGACTACTACGACGGGCACTCGGTGTCTTCGAAGGAGTACATCGCTCAGTTGCAGGAGCAGGTGGAGGCGCAGGAGAACTGGCGCACCAACATGATCACGCTGTCCGAGCGTGTCAACGAGGGCATGACGGGCGAGATGCGCGATGCCGGGAACAACATGATCGAGGAGCTGATGGACCTCGGCCCCGAGGGAGCTGCTCAGGTCGCACTCCTCGAGAGCATGTCGGACGAGGAGCTCGCGAAGGTCGTCGAGCTCTACCAGCGCAAGGGCGAGGACGCCGCGCAGGAGTTGGCCGACGAGATCGCGAACACCAACCCGCCGGCGATCGCCGTCACCGTCGAGACCCGGTCGGCGCTGTCTGCGATCAGCAGCGTCCACGCCGCCCTGAACACGCTCAACGGGCGGGAGGTCTCGGCCTACGTCGAGACGAAGGTGTACGGGCAGGGTCGGCTCGCGGCCGGTGGCCTGGTCGGCTTCGCGTCCGGCGGCCGGGTGCCGGGCACACCGCCGGCAGACCCGATGGCGGACAACGTCTACGCCGAGACCCAGAACGGCACGCCGTACCTGATCCGGTCCGGGGAGTGGATCCACAACCAGGCCGCCGTGGAGTACTACGGCACGGACGTCATGTCTGCGCTGAACCAGCGCCGCGTCCCGAAGGACGTCCTGGTCGGCTTCGCGGCAGGTGGCCAGGTGCCGGGTCTGGCATCGGGTGGACCGGTGTCCGCCCCGGTGGCGACGGCTCCGTCGGTCACGATGCCGACGCCGAACATCGCCGTCTACCTGGGCGACCGGCAGATCACCGACATCGTCAGCGTCGAGGTCCGCAACCAGCAGCTCGACGGTGCCGGGGAGGTGGTCCTGTGAMDRTVRVAFEADYANFVRGTDRVSTGLRKVGEESDRASKKVSDGAVKQERAVDRLSKHAARNEEAWNRSGQALTAFGAITTATVGATVKAAVDWESAWTGVLKTVDGTPEQLAEVEDGLRELARSLPATHTEIAAVAEAAGQLGISTGGVVDFTQTMVNLGETTNLSADEAATSLARLSNIMGTSESDIDNIGASVVGLGNNFATTESEIVAMSLRLAGAGRQAGMTEGDVLGLATAMSSVGIEAEAGGTAMSQTMTQIGREVDTQGPKLETFAAVAGMTAEEFTTAWGQDASGALAAFITGLDDTSSLGMSTNEVLEQLGITGIRQADTLRRLSAAQDLVNEALATGNEEYSANNALVEEAAKRYETTEAQLEIAKGAISDAAITVGETFLPMLASGAEAVADLASGFASLPEPAQQTVGVLGGVAGAASLVAGGFLLVAPRVFDTVDGFRKLRASAPRTSRAIGRVGRAAGVAGAALAALQVSSALVDIDTTSASEWTEALLGMSDASDAANLSLQGVSDFDYSDQLYSIGDAIDRIDNPTGWQSFVDGFNSLTGFESNAELLKGELEGIGQALATMYDSSPDLAAENFAAILAQTDLTADELLEKMPAYRDVLLDTDNAHQLAAQGAEGVAEGLGEIDPAAEEAAAAAEEFVERATDAFTAFIDPGGAYQAAIDKSRELAEKTAEDTEDAEDSWEDYYDGHSVSSKEYIAQLQEQVEAQENWRTNMITLSERVNEGMTGEMRDAGNNMIEELMDLGPEGAAQVALLESMSDEELAKVVELYQRKGEDAAQELADEIANTNPPAIAVTVETRSALSAISSVHAALNTLNGREVSAYVETKVYGQGRLAAGGLVGFASGGRVPGTPPADPMADNVYAETQNGTPYLIRSGEWIHNQAAVEYYGTDVMSALNQRRVPKDVLVGFAAGGQVPGLASGGPVSAPVATAPSVTMPTPNIAVYLGDRQITDIVSVEVRNQQLDGAGEVVLPGPT0022155_1759DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_V_SECRETION_SYSTEMSCE-T5c_TRIMERIC_AUTOTRANSPORTER_ADHESINS-SECRETION,PGPT0022155-ata|sadA|emaA-K21449NANA
AK018_00365750hypothetical proteinGTGACCGCCACGGTGGTCCACCTGGACGGCATCACGTTCAACACGAAGACCCGCGACGGCGACGGGGTGCGCTGGTCGATGAGCACTCTGGACGGGTGGGAGCCGCCGCCGGCGGACTCGTCTCTGCAGGGGTTCGTCGCACGTCCTGGCGCTGCGGTCGGGGAGGCTCGCTACGCAGACCGGCCGATCACGGTCGGTGGCCTGGCCGTCACCCCGCCCTCGGCGTACTACCTGGCGCGCGAGAAGCTCGCAGCCGCGTTGTCGAACCTGGCCGAGCCGCGGTGGCTGCAGGTCGACGAGCCCACGCCGAAGCGTGTCGGCTACGTCCGCGACAGGCAGCGTCCGCTGATGACGCACGGTGCCGGCCGCCGCTACTTCCAGTGGCAGGCCCGTCTCGTCTGCCCGGACCCGTTGAAGTACGCGCTGGCCGAGAGCTCGTGGACGGTGCCGGCCGGGGACAGCCTGCTCGTCTCGGGTGTGGGTACGGCGGTCACGCCGGTCACGGTCTCGGCGCCGTCGGGTGGCGTCGTGGACGTCACGAACGAGACCACGGACCAGCGGCTGCTCACGTCGGGCGCGGTGCCCGCGGGTGCCGAGCTGGGTGCCGGGTTCACGGTCCCGTTCGGCGACCCGCTCTGGACGCTGCTGACGCCCCCGATCACGTTCCTGGACCTGGTGCCCGGCGACCAGGTCATCCGCAACGACGGCCCCACGGACGTCGACATCACGTACACGACCGCTTGGCTCTAGMTATVVHLDGITFNTKTRDGDGVRWSMSTLDGWEPPPADSSLQGFVARPGAAVGEARYADRPITVGGLAVTPPSAYYLAREKLAAALSNLAEPRWLQVDEPTPKRVGYVRDRQRPLMTHGAGRRYFQWQARLVCPDPLKYALAESSWTVPAGDSLLVSGVGTAVTPVTVSAPSGGVVDVTNETTDQRLLTSGAVPAGAELGAGFTVPFGDPLWTLLTPPITFLDLVPGDQVIRNDGPTDVDITYTTAWLNANANANANA
AK018_00366753hypothetical proteinATGGCTACCACCGTCTCCCTGTCCGACACCCTCGAGGACGCGCTGCTCGACCACGTGCTGTCCGGCACGGTCTACACCCCGCCGGCCACGGTGTATGCGGCGCTGTTCACCGCGTCGCCGGGCGACGACGACACCGGCACCGAGGCCACGGGCGGCAGCTACGCGCGGCAGGCGGCCGGGTTCGCCGCCGCGGCCTCGCGCGCCGCCGCCACGTCCGGGGCGATCACCTTCCCCGCGCTGGCCGCCGCCACCTACACCCACCTCGGCCTCTACGACGCCTCCACCGGTGGCACGCTGCTCGCCTGGGGCGAGCTCGACTCCCCGGTCGTGCAGTCCTCGGGTGACGACCTCGAGATCCCCGCCGGCGACCTCACGGTCACGTTCCTGGCGGGCGCGGTGACGAACTACCTCGCGGCCGAGCTGCTGGACCACGTGCTGCGCTCGGAGTCCTACACGCCGCCCACCACAGTGGAGCTGGCGCTGTACGACGAGACGGACACCGAGTGGTCGGGCGGCTCCTACGCGCGCCAGACGGTCGCGTTCGGCGCGGCGTCCGGCGGCAGCGCGTCCAACTCGGCGGCGGTCGACTTCACCAACGCGCCGGGGTCGACGCTCGAGTACGGGGTGCTGCACGAGGACGCCGGCGCGGGCGGCAACGGCCTGTGGCGGACGACGCCGGGTGCTCCGGTGTCGGTCGGTGCCGGGTCGGACGTGTCGGTCGCCATCGGTGACGTCGTCTGCACGCTCGACTGAMATTVSLSDTLEDALLDHVLSGTVYTPPATVYAALFTASPGDDDTGTEATGGSYARQAAGFAAAASRAAATSGAITFPALAAATYTHLGLYDASTGGTLLAWGELDSPVVQSSGDDLEIPAGDLTVTFLAGAVTNYLAAELLDHVLRSESYTPPTTVELALYDETDTEWSGGSYARQTVAFGAASGGSASNSAAVDFTNAPGSTLEYGVLHEDAGAGGNGLWRTTPGAPVSVGAGSDVSVAIGDVVCTLDNANANANANA
AK018_003673177hypothetical proteinGTGGCTAGCATCTTCGTGCTGACCGAGGACGACACGCACTACGCCTACGAGCGCACCGCAGACGTACTGACCGGGGCGGGCCACACGGTCACCGCCACCGAGGCCACGACCACTTCGGGCCTTGACACCGACTGGGGTGCCGGGCACGACCTGATTGTGACCGTTCGCAGCGCGAACGACCTGGCCGCGCACGCCGAGTGGCTTCGCGACCAGTGGAACACGGGCGTCCCGCTCCTACTCGGCGGCGACCTCGGCGGAGCGCTCAATGGTGACACCACCAGCGTCCTTGAGCAGCTCGGATTCATCGAGACACCACTTGTCAACAGCGACAGCTCCACCTATGCGGCTGATGAGCTGCTGGTATCCACTGCGGGCGAGGCGCACCCGATCACGTCCGGGTACAGCGGAACTGTAGCCGTCCTGTACGGTCGCAACTACTCGCTTGTCGACAGGGGGACGAGCGCCGGAACCGTGCTCGGCGACCGCAACGGAACCCTCCCAGGCGCCTACATGGCCGCCATCGAAGCCGGCGATAGCCTGCTCGCAGCCACCTACAGCCTGGGCGCCGCCCCCGGGCGCGCCGTGTGGATTGGGTGGCTCTACGCAGGCCAGGACGACTACACCGACGACGGCGCGACGATCGTCGAGAACGCGGTCAACTGGGTCACCACCGTGTCTGTGCCGTCCGCGTCGGCCGCGCTGGGCGTCACCTCCACTGGGTCGCTCGCGGTGTCGCTCACCGTGCCCGCCGGCGCGGACCTCGGGATCACCTCGACCGGTTCGCTCGCGGTCACCTTGACGGTCCCGGCATCGGCTGCGCTCGGCATCACGTCGTCGGGTAGCCTCACGGCCACGGTCGAGACTGCCGGGCAGACCGCCGCCGACCTCGGCATCACGAGCACCGGCAGCCTCGCGGTGTCCGTCACGGCGCACGCCTCCGCAGCTCTGGGCATCACCAGCATCGGCACGCTCACCATCGCGGGCGCCGGCGGACCCTCGGCCGACCTCGGCATCACGAGCACCGGTGCGCTCACGGTGACCGTCACCGCCGGGCACTACACCCGCGCCGACCTCGGCCTCGGCTCCACCGGTGCGCTCACCGTCACCGTCACCGCGCAGGCCGCCGCCACCCTCGGCATCCGCTCGACCGGCACCCTGTCCGTCACCCGCCAGTGGCTCCACCACCACGAGACCGGCCGCGCCGTCACCCAGCTGCGCGTCGTCGACGTCGACGGCACCGGCCTCGGCGTCCTGGACCGCGCCCGCATCGCCGGCGCCCCCACCAGCCAGGGCCTCGGCATCGGCGACTACGGCCACCTGACGTTCACTCTCCCCGCCGGCGACGCCTACGCCGGCAGCTTGCGCCGCTTCCGCCACCGCATCCAGCTTTGGCGCGGCGGCCACATCGAAGAGACCTACGTCATCACCGCGGCCCGCGACATCGACGACACCGGCACCCTGCACTACACGTGCCGCACCGTGCCGTGGCTGCTCGGCCACCGGCTCATCGGCCCGGCCGTGCGCCCCAACCTGCTCAGCAACGGCGGATTCGAGCAGGGCCTGACCGGCTGGCGCGCCGGCTACCGCAAGGGCTCCATCCCCGCCCAGCGGCCCGAGCACGCCATCACCCGCGACCCCGCCGTCGTCGTCACCGGCGACCAGGCGCTGCGCATCGCAGGCAGCACCGACGTGCAGGTCACCAAGACCGTCTTCGACACCGACGTGACCTTCGCGACCGGGTCGGCCGTCCTGACCGGCGAGGGCCGCGCCGCCGTCAAGGCGTTCGTGCGTGACGAGGTGCTCGGCCAGGAGCTCGAGGACAACGAAGAGGCCGCGCCCATCGAGATCAGCGTGGACGGCCACACCGACAACGTCCCCTACACGAGCCACCCCGGCGGGAATCAGTGGCTGTCCGAGCAGCGCGCCGAGGCCGTGGCCGACGAGATCCGCCCCATGCTCCCCGAGGGCTCCACCGTCACCACGACCGGGCACGCCGACCGGCTCCCTGTCGCCTCCAACGCGACCAACGAAGGGCGGGCACAGAACCGGCGCGTGGAGGTCGACTACCCGTACACGGTCACCGCGCGCGGGCACCGCCAGTTCGTCCGCCAGACCATCGAGTACACCAACCCGTCGACCGAGATGGAGCGGACCCTGACGCTGGTGGCGTTCGCCCACCTCGAGGACTACCAGTGGCCGTCCGCCGACGGGTACGCGGTCTGGCTCGGCCGGCCCGCCACCGACCCCGACACCGGCGACAGCCTGTACGAGGTCGCCGGGGACCGCGAGGGCATGGACGGCGAGACGCCGCTCGACCGGCTGCTGTCGTTCACCGCGGAGGTCACGGTCCCGGCCGGCTGGTCGGGCGACATCGACGCGAACCTCGTGCCCCCGGGCGGCAGCATGGTGTTCGACCAGGTGCTGCTGCAGGCCGACGACGCGCTCGAGTGCTGGGGCACCGACCAGGCCGACATCGTCGCCCAGCTCGTCGCGCACGCCCAGGATGCCGCGTTCGACAAGGACGACCTGCACCTCGCCGCCATCACCCCAGCCTCCGGCGTGAAGCGGGACCGGGTGTGGTTCTGGCACGACCGCATGCGCGTCTCCGAGGCGCTGGCCGAGGTCGAGTCCCTGTCCCGCGGTCCCGAGATCGGGGCCGTGTCCCTGCCCGACCGCGTAGAGATCCGCACATGGACCCGCCGCGGCCGCGACACCGGCATCGTGCTCGTCACCCGCGAGCACGGCGCCCACGCGCCCGTGCTGTACAGCGAGGACGCCGCCTCGACCGTGATCGTGCAGGCCAGCGGCTACGGGTCGGCCCGCCTCGAGGAAGCCCGCACCGGCGGCGACCTCGGCATCGTCATGGAGTCCGTGTACAGCGCGGAGCCCGAGACGACCCCGGGCGACCTCGGTGAGCAGGCCGACCGGCAGCACGCCCTCGTCTCCGCCGACCGGCCCGGTGTGGAGTGGATCGACGTTCCCTGCCAGACCATGCGCCCCGGCTACACCACCTCGGACTGGCTCATGGACCACCTGCAGGTCGGCGACACGTTCTACCTCGACCACCACTCCACCCTCGGCAACCCGTCGGGCCGTGTCCGTGTCGTGCGGCGCCGCCGCGACGTCGCCGCCGACATCGTCGGCCTGCAGGTCGCGCCCGAACCCCAGGAGGCATGAMASIFVLTEDDTHYAYERTADVLTGAGHTVTATEATTTSGLDTDWGAGHDLIVTVRSANDLAAHAEWLRDQWNTGVPLLLGGDLGGALNGDTTSVLEQLGFIETPLVNSDSSTYAADELLVSTAGEAHPITSGYSGTVAVLYGRNYSLVDRGTSAGTVLGDRNGTLPGAYMAAIEAGDSLLAATYSLGAAPGRAVWIGWLYAGQDDYTDDGATIVENAVNWVTTVSVPSASAALGVTSTGSLAVSLTVPAGADLGITSTGSLAVTLTVPASAALGITSSGSLTATVETAGQTAADLGITSTGSLAVSVTAHASAALGITSIGTLTIAGAGGPSADLGITSTGALTVTVTAGHYTRADLGLGSTGALTVTVTAQAAATLGIRSTGTLSVTRQWLHHHETGRAVTQLRVVDVDGTGLGVLDRARIAGAPTSQGLGIGDYGHLTFTLPAGDAYAGSLRRFRHRIQLWRGGHIEETYVITAARDIDDTGTLHYTCRTVPWLLGHRLIGPAVRPNLLSNGGFEQGLTGWRAGYRKGSIPAQRPEHAITRDPAVVVTGDQALRIAGSTDVQVTKTVFDTDVTFATGSAVLTGEGRAAVKAFVRDEVLGQELEDNEEAAPIEISVDGHTDNVPYTSHPGGNQWLSEQRAEAVADEIRPMLPEGSTVTTTGHADRLPVASNATNEGRAQNRRVEVDYPYTVTARGHRQFVRQTIEYTNPSTEMERTLTLVAFAHLEDYQWPSADGYAVWLGRPATDPDTGDSLYEVAGDREGMDGETPLDRLLSFTAEVTVPAGWSGDIDANLVPPGGSMVFDQVLLQADDALECWGTDQADIVAQLVAHAQDAAFDKDDLHLAAITPASGVKRDRVWFWHDRMRVSEALAEVESLSRGPEIGAVSLPDRVEIRTWTRRGRDTGIVLVTREHGAHAPVLYSEDAASTVIVQASGYGSARLEEARTGGDLGIVMESVYSAEPETTPGDLGEQADRQHALVSADRPGVEWIDVPCQTMRPGYTTSDWLMDHLQVGDTFYLDHHSTLGNPSGRVRVVRRRRDVAADIVGLQVAPEPQEANANANANANA
AK018_00368210hypothetical proteinATGCCCGGACCGACTCGTGGCGCACCCCGCGGCGCCCCGAACGCGCAGGGCGAGGTCGCGGCGCTGCGCCGTGAGGTCGAGCAGTTGCGCCGCGAACTGCGCGGCCGCGGCCCCGAGCCGGTCGTCGTGCCCGTGCAGCCCGACTCACCGCCCCGGCTGCAGGGGCGGCTCTGGGTCGAGCCTCGCCCGCCCGAGGGGTGGGTGGATTGAMPGPTRGAPRGAPNAQGEVAALRREVEQLRRELRGRGPEPVVVPVQPDSPPRLQGRLWVEPRPPEGWVDNANANANANA
AK018_003691611hypothetical proteinTTGACGGGCTTCTACCCCACCCCCGGCGACGGCTTCTACCCTGGTGACAGGCTGGAGCAGGCAGACTCGCTGCTGGTGGGGCACCCCGAAGACTGGTCGATCTACTACGCGCTTTGGGAAGCCGGCGACGGCGACACCCGTGCATTGACCACGGGCGACTCGGTGGTCATCTCGTCGTCGATCGGGCCGCTGGACCTCCGGCCGTCAGGGGTCGCGATCGCTGGGGGCACGTGGCGGCTGCGGGCGCGCGGGTCGGGGACCCTCAGGGTCTTCTCGTCCGTCGATCCGGGAGGATCGTGGGACTGGTATGACGACCCGGAGTCGTACACCTGGACGCCCCGGCCGGCTGTTCAGGTGGACTCTGAGGACTTCGTCGACGTCCCCATCGTCGCCGACCCCGACACGCTCACGCTCGATGCTGGCGACTACCCGCTGCTGCGCTTCACGGTGGAGGGCGACATCGAGGTCGACTACGTCACGCTCACGGCGTTCGGCCCCGACGGCGAGTACGTGCAGACCGGCAACGGCCGGTGGTCGGACTGGTTCCCCGAGTACACCATCGTGGACGACAGCACCGGGTACATGGACAGCACGTTTGTCCGGATCACCGGCGACTACCTCCCCGACGAGAACTACGGCACGTTGACTGATCCGCCGCTGGGCGACATCAACGACACCATCGAGGCGGCGTACACCGGCTCGATGTACGGGCGCACCGACTACGACGTCACCTACGGGGCGACCGTCGGGTCCAGGCACTCCGAGCCGAACTGGTTCTTCTCGGACTACGTGCCTGATGGGGGCATCCTCCAGCCCGAGCAGGACGCATACGCGAGCTACACGTTCCAGCCGAAGCTGTTCGGCACCCATCTCCGCAGCCGACGAGGCGCACCGTGGCTCACTCCCGAGATGTACGACGACGTCCAGTCCAAGGACATGGTCGAGGGCGTCCACTACGACATCGCTCCCGGCGAAGAGACCCCGGTGTCCTACGAGACAGCGCCGCGCGTCATCGCCTGGAAGACCGACACCGGAGACCAGCTCAAGGTCGAGGTGTCCCAGGTCAACGGCAGCGACAATGGCGACCCCCTCCACCAGTCCCAGCTGGTGGAGGTCGAGTTCTTCCCCGACTGGGAGGTGGGCGACCCGCTACCCGAGCCGGGCGGGGCCATCGTGGCCTCAGCATCGTTCGCAGGCTCCACAGAGACCGACGAGCTGGCGTTCGACCTGCCATACGACAGCGGCCTGCTCATGGTGTACCGGCACTCGCCGTTCGGGTATCAGGAAGCGATCGTCAGCAGTGCGCTGTCGTCCACGACACTGATTCCCCGCGGCCGGTACTGGATCCCCGAGTGGGAGCCGTACTCCCCCGAACAGACCGTCGACGGGATCCTGCACGTCGACACCCAGGACCACGCCCACTTCGTGCTCGGCACGCTGGCCGCGGACCCGCCGTACCGGCTCCGGCTCGAGACCGCGACCGGCTCGCACCGCGAGGCCCGCGCCGGCGACGACCTGACCCAGGCTTCCCACCGTGTGTGGGTGACCGACTATGCCGGCGATCGCCACGCCGTGTGGATGATGCCCATGACCTCGGAGGAGACTGCGTGAMTGFYPTPGDGFYPGDRLEQADSLLVGHPEDWSIYYALWEAGDGDTRALTTGDSVVISSSIGPLDLRPSGVAIAGGTWRLRARGSGTLRVFSSVDPGGSWDWYDDPESYTWTPRPAVQVDSEDFVDVPIVADPDTLTLDAGDYPLLRFTVEGDIEVDYVTLTAFGPDGEYVQTGNGRWSDWFPEYTIVDDSTGYMDSTFVRITGDYLPDENYGTLTDPPLGDINDTIEAAYTGSMYGRTDYDVTYGATVGSRHSEPNWFFSDYVPDGGILQPEQDAYASYTFQPKLFGTHLRSRRGAPWLTPEMYDDVQSKDMVEGVHYDIAPGEETPVSYETAPRVIAWKTDTGDQLKVEVSQVNGSDNGDPLHQSQLVEVEFFPDWEVGDPLPEPGGAIVASASFAGSTETDELAFDLPYDSGLLMVYRHSPFGYQEAIVSSALSSTTLIPRGRYWIPEWEPYSPEQTVDGILHVDTQDHAHFVLGTLAADPPYRLRLETATGSHREARAGDDLTQASHRVWVTDYAGDRHAVWMMPMTSEETANANANANANA
AK018_00370363hypothetical proteinGTGACCGACTCGCCCCACGACTACACCTCCAGCCTCACCCATCGAGCCAGTGACCCGGCGGTTCTGATGCTCGAGGTCGTGCTGGGCGAGATCCGGCACGTCCGCTCCGACATGGTCACCCGCGCCGAGCACATCGAGGCCCAGAACGGGCACAAGGCCGAGCACGCCGCGATCCGCGCCGAGATCGCCGCCGGGGACACCGCCGTGCGCGGCGAGGTCGGCACCGTGCGCGACGAGGTCGACGAGATCAAGGCCGCCAGCCACCGGGTGCCGCGCTGGCTGCGCGTGCTCGGCACCGTCGCGGCGATCGTCGGCGTCGTGTGCTCCGCCACGCTCGGCGTCGCCGCCCTCATCGTCACCTGAMTDSPHDYTSSLTHRASDPAVLMLEVVLGEIRHVRSDMVTRAEHIEAQNGHKAEHAAIRAEIAAGDTAVRGEVGTVRDEVDEIKAASHRVPRWLRVLGTVAAIVGVVCSATLGVAALIVTNANANANANA
AK018_003711029hypothetical proteinATGGCTGAGTCGTTCTACGGGCTCGAGCACCCGAACCCGAACAAGTCCCAGATCGGGGACCCGCGCCGGGGCGGCAACGAGCCGTCCGGTGTGCACGTCATCCACACCGCGGAGTGCCTGGCCGACCTCAAGGGCGCCGACACCGCGGCCGAGGGCGTCGCCGGCTACATCTCGCGCCGCGACTCCTACGGCTCCTACCACCGCATCTTCGACTCCGACTCGATCGTGAAGTACGCGCCGTTCGGGCTCGAGACGTGGCACTGCATCTACACCAACCCCTGGTCGGTCGGGCTGTCCTTCGCGGTCCAGGCCCACAAGTGGGACGACTACCCGCGCTGGTTCGTCGACGAGATCATCGCCCAGGGCGCCAAGGCCGCCGCGGAGTCGATCCGCGACCACAAGAAGTACTGGGGCGTCGACGTGCCGCTGCGGCGCATCACCCGCGCCCAGGCGCTGCGCAAGGTGCCCGGCTTCCTCGGCCACGGCGAGACCGACCCCTGGCGCCGCTCCGACCCGGGCGACGACTTCCCCTGGACGAAGTTCTTCAACGCGATCCGCCGCGAGCTCGGCCAGGCCGAGGTCGACGACGACGCCGACGAGGGTGCGAAGAAGCCCAAGCCGACCCCCGACGACGACTTCGACCGCATCGCCGAAGACGGCAAGTGGGGCTCGGACACCACCCGCCGCAAGCAGCAGGAGCTCAAGGAGGCCGGCTGGTACGACGGCCCGGTCGACGGGGAGATCTGGTACCAGAACCCCCGCTGGAAGGACGACAACCCCGGCTGCACCCTCGGCTGGGACTGGGACCGCAACTACCGCCGGCACAACGGGTCCAAGACGATCCGCGCCGACCAGAAGCGCCTACGCCAGCTCGGGCTCTACCACGACGACATCGACGGCCTCGCCGGCCCGAACTACTTCTCCGCGCTGCAGCTCGAGCAGGGCACGACCGTCGACGGCGAGATCTGGAAGCCGTCCGCCTGCGTCGAGGCGATGCAGCGCGACTACAACAACGGAAGGATCGCCTGAMAESFYGLEHPNPNKSQIGDPRRGGNEPSGVHVIHTAECLADLKGADTAAEGVAGYISRRDSYGSYHRIFDSDSIVKYAPFGLETWHCIYTNPWSVGLSFAVQAHKWDDYPRWFVDEIIAQGAKAAAESIRDHKKYWGVDVPLRRITRAQALRKVPGFLGHGETDPWRRSDPGDDFPWTKFFNAIRRELGQAEVDDDADEGAKKPKPTPDDDFDRIAEDGKWGSDTTRRKQQELKEAGWYDGPVDGEIWYQNPRWKDDNPGCTLGWDWDRNYRRHNGSKTIRADQKRLRQLGLYHDDIDGLAGPNYFSALQLEQGTTVDGEIWKPSACVEAMQRDYNNGRIANANANANANA
AK018_00372588hypothetical proteinATGAAGCTCATCACCCGCGCGTTCTGGCGCACCGCCGGCCTGCGCGCCCTGCAGACCGTGCTCGTCAGCCTCATCCCGTTCCTCGCGCCGCTCATGCTCGAGCCGACCGTCGAGCTCGCCGTCCAGGCCGGCCTCGCCCTCGTCCTCGCGGCCGCCCTGTCCGTCGCGACGTCCCTCGCCAGCCTCCCCGAGGCCGACGGCGGCACCCGGCCCCGCTGGCGAGCCATCCTGTCCCGCACCGTCCGATCCTTCGCCCAGGTCTTCGCCGCGGCGCTCGCGGCCGCTGCGACGTTCGACGAGGTCGCCTGGGGAGCCGTCGCCGGACAAGCCGGCGTCGCCGCCGCGACCACACTGGTGCGGACGCTGCTGGCGTCCCTGCCTGAAGTACCGGACGCCGCCACGGTGTCCGCGAACATCACGTCCATGTCTGCGGACATCCCCGAGGGCTACGAGCTCGCCGCGGTGTCCGACGCCAAAACCGAGGTGGTCGACCTCCTCCACCAGCTCGAGGGCGAGGAGCGGCTCACGATCGGGGACCGTCAGGTCGAGCGACTCCTCGAGCTCGGCTGGCGACCGCCCGCCCGCTGAMKLITRAFWRTAGLRALQTVLVSLIPFLAPLMLEPTVELAVQAGLALVLAAALSVATSLASLPEADGGTRPRWRAILSRTVRSFAQVFAAALAAAATFDEVAWGAVAGQAGVAAATTLVRTLLASLPEVPDAATVSANITSMSADIPEGYELAAVSDAKTEVVDLLHQLEGEERLTIGDRQVERLLELGWRPPARNANANANANA
AK018_00373495hypothetical proteinATGGCTGGGCAGGAGCCTGAGGACGGGGGCTCCGCTCAGTTCGAGGAGGGATCGGCGGAGCTCTACGAGGCGCGGCTGCAGGAACTCCTGGGACTGGACGAAGCCTGGCTGAGCCAGGGGGCGTCGGAGTACTCGGGGGCTCGGCTCGAGCTCTACGACGATGTGCGCCAGGACGCCCTCGACGAGCAAGCTGCCGAGGATGCTAGCGACCAGGCCGTGGAGCGCGACCTCGCACACGCTGACGTCGACGAGGCCTATCAGGCGAACGATCTCCGCAAGTCATTCTTCTGGTTCGTTGTGGTTGCAGTGGCAGGCGTGCTCGTCGCGAGCGCCGTGCTCATGGCCGCCTACATGCGCTCGGAGTGGACCGAGATCGAACCCGGCGTGATGATCGCCTGGTACAGCGCGAACGTGGTTCAGGTCATCGGCCTGGCCTACATCGTCGCCCGGTACCTCTTTGCGCCGAAGTCGCGACCACAGGTAGCGGCCAAGTAGMAGQEPEDGGSAQFEEGSAELYEARLQELLGLDEAWLSQGASEYSGARLELYDDVRQDALDEQAAEDASDQAVERDLAHADVDEAYQANDLRKSFFWFVVVAVAGVLVASAVLMAAYMRSEWTEIEPGVMIAWYSANVVQVIGLAYIVARYLFAPKSRPQVAAKNANANANANA
AK018_00374501hypothetical proteinTTGGTCCTACTCAAGGACAAGGCGAAGCAGGACGCTGAGGTGATCCTCGACCAGTACTGGGCGGCTGGCTTCCCCGTCGACCCTGAGCGCATTGCGCAGGCGATGGGCATGACGGTTGAGCGCCGGAAGCTCCGCGACGGCACCTCGGGCATCTTGCGCGTCGAGCCCTACATCGCACCGGAGATCTTCGTCGACGCCGCCGATGTGCCGCAGCGCCAGCAGTTCACCATCGCCCACGAGATCGGACACTTCTACGAGCGGACCGAGCGGGGCGCCGAGGACTTCAACTTCATCGACCGCCGTGGTGGTGAGTACGACGCTCACGAGTTCTACGCGGACGAGTTCGCGGCGAACCTGCTCATGCCTGAGTTCGAAGTGCGACGCATGGTCGAGCATGGCGCCAACCTCGCGTCGCTCGCGCGGCACTTCGGTGTCTCTCTACCGGCTATGAGGGTGCGTCTGCGCCGTCTGGCGCAGCAGCATGGCTGGGCAGGAGCCTGAMVLLKDKAKQDAEVILDQYWAAGFPVDPERIAQAMGMTVERRKLRDGTSGILRVEPYIAPEIFVDAADVPQRQQFTIAHEIGHFYERTERGAEDFNFIDRRGGEYDAHEFYADEFAANLLMPEFEVRRMVEHGANLASLARHFGVSLPAMRVRLRRLAQQHGWAGANANANANANA
AK018_003751077hypothetical proteinATGCGCAGTCGCCACACAGTGCCCTCGTCCGTTCGATCGCGGAGGGGGCCGGCGGCGGCGTTGACCGCCCTGCTGGCGGCGGGCCTCGTCGGCTGCGCGCCCACCGAGGCCGAGACCCCTGCGGACGAGCCGACCACGGCGGCAGTGGAGACCACGCAGGCGGCTCCCGAGCCAAGCGACGAAGAGACCACGGAGCCCGCCGAGGACGAGAGCGAGCCCGAGGAAGAGCCGTCGCCTGAGCCTGAGGCAGCAGACGACAACGCCGACGCGGGCACCATCGTGAAGGCCGGCAAGGGCACCGCTCTGGCGGCGCTCGGCGACCTCAAGATCAAGGGACGCGCCCCGAAGACGGGCTACGACCGCGACCAGTTCGGGCCCTCGTGGGCCGACGTCGACCGGAACGGCTGCGACACCCGCAACGACATCCTCACCCGGGACCTGACCGACGAGACCTACGAGTCGAACGGCTGCGTCGTGCTGACCGGCACGCTCGCCGATCCGTACACCGCGACGGTGATCGACTTCGAGCGCGGGCAGGACACCTCGATCGAGGTCCAGATCGACCACGTCGTCGCGCTCTCGGACGCGTGGCAGAAGGGCGCCCAGCAGATCAGCGCCGCAGCGCGGAAGAAGCTGGCGAACGACCCGCTGAACTTGTACGCCGTCGACGGCCCGACCAACGGTGCCAAGGGCGACGGGGACGCGGCGACCTGGCTGCCGCCGAACAAGGCGTTCCGCTGCCAGTACGTCGCCCGCCAGGTCGCGGTGAAGAAGACGTACAAGCTGTGGGTGACCCAGGCCGAGCACGATGCGATCGAGCGTGTGCTGACGAAGCCGAAGTGCGACGGCGAGCCGCTGCCCAAGGGCGGCCTGGCGCCGAAGGTGAAGGTGACCAAGCCGACGCCGTCGCCGGAGCCGGAGCCCAAGCCCGAGCCGGAACCCGAGCCTGAACCGGAGTCGGTGTACTACGAGAACTGCACCGCTGCCCGTGACGCCGGCGCCGCTCCCGTCCGCAAGGGCGACCCGGGGTACGCCAGCCACCTGGACCGTGACGGCGACGGCGTCGGCTGCGAGTAAMRSRHTVPSSVRSRRGPAAALTALLAAGLVGCAPTEAETPADEPTTAAVETTQAAPEPSDEETTEPAEDESEPEEEPSPEPEAADDNADAGTIVKAGKGTALAALGDLKIKGRAPKTGYDRDQFGPSWADVDRNGCDTRNDILTRDLTDETYESNGCVVLTGTLADPYTATVIDFERGQDTSIEVQIDHVVALSDAWQKGAQQISAAARKKLANDPLNLYAVDGPTNGAKGDGDAATWLPPNKAFRCQYVARQVAVKKTYKLWVTQAEHDAIERVLTKPKCDGEPLPKGGLAPKVKVTKPTPSPEPEPKPEPEPEPEPESVYYENCTAARDAGAAPVRKGDPGYASHLDRDGDGVGCENANANANANA
AK018_00376234hypothetical proteinATGCGCGACTTCGCCACCGAGGTCCCGCCGGAAGCTCGACGCGAGACCCCCACGCGGCCGACCGAACCGCTGCCCGTGACAGCGTGGATCACCGATGGCCGCGGCCGCACCTTCGAGGCGAACGGCGAAGCCCTCGCGTGGACCCCACGTGCCGTGTACGTGCGGTACATCGACCCCGCGGGCCGCGAGGGCTTCGCCTGGCTCTGGGCGTCCGCTGTCAGCCGACGCCAGTAGMRDFATEVPPEARRETPTRPTEPLPVTAWITDGRGRTFEANGEALAWTPRAVYVRYIDPAGREGFAWLWASAVSRRQNANANANANA
AK018_00377255hypothetical proteinATGCCGTACCCCTCTCGACCCGTGCTCGACGTGCTGCCGCAGTTCCGCAGAGACCTCAAGAACGGGTACAACTCGTTCCAACTGCACCGGTTCGACGCCTTTGTCGCAGAGCAGTACACCGCCGGCCGGTCGCTGCGCGAGATCGGCGAGCTCACTGGCCGCACCCAGACGGCCGTCCGTCGCAGCCTCGACCGTTCCGGCGTGCCGAGACGTGAGTGTGGGGCGGCTCCGGCGTCTGACGTAGCGGGTCGCTGAMPYPSRPVLDVLPQFRRDLKNGYNSFQLHRFDAFVAEQYTAGRSLREIGELTGRTQTAVRRSLDRSGVPRRECGAAPASDVAGRNANANANANA
AK018_00378243hypothetical proteinGTGACCGACAAGCCGCCACCCCGCTTCCTGTCCGTCAAGGACGTCGCCGACGAGCTCGCCGTCACCCAACACGCGGTCTACACGATCCTGAAGAACGGCGACCTGCCCGCCATCCAGGTCGGGCCCAAGGGCGTGTGGCGCATCGAGCGCGTCAAGCTCGAGGAGTACATCGAGCGCCAGTACGCGGCCGTGCAGGAGGCCGTCGCGGCCGGCAACGTCACCGAGGGCGACGACGAAGACTGAMTDKPPPRFLSVKDVADELAVTQHAVYTILKNGDLPAIQVGPKGVWRIERVKLEEYIERQYAAVQEAVAAGNVTEGDDEDNANANANANA
AK018_003801506caeA_1Carboxylesterase AGTGGTGGGTCTCGGACTGGTCCTGGCCGGGTGCACGGCGGACACGCCCGGCAAGACCGCGACGCCCGTGGACGAGGCCACGACGGCGGCGCCGATGACGCCGTCGGCGGCCGGTGCCCCCGAGGGGTTCGAGGACTTCTACGCCCAGGACCTGGAGTGGACCGACTGTCGCGGCGGCTACGAGTGCGCCACCGCGACGGCCCCGCTGTCCTGGGACGACGCGGAGGCGGGCAGCATCGAGCTCGCCTTGGTGCGGACGCGCGCCACCGGGCAGAAGGTCGGCTCGCTGCTGATCAACCCCGGCGGGCCCGGCGGCTCGGGGGCGGACTTCGTCGAGAACGGGTCCTTCGGCGAGCCGCTGCGCGAGTCCTTCGACATCGTCGGCTTCGACCCGCGCGGGGTGCAGGACTCGACCGCCGTCGAGTGCTACGACGACGAGGCCAAGGACGAGTACCTCAGCGAGGACGTCGACCTGTCCACCGACGACGGTCTCGAGGCCGCGCGCGCGTCGGCCGCGGCCTGGGCGGAGGCGTGCGCGGCGAACACCGGCGAGCTGCTCGGCGAGGTCGACACCCAGAGCGCCGCGAAGGACATGGACATGCTGCGCGCCGTGCTCGGCGACGAGCAGCTGCACTACCTCGGGTTCTCCTACGGCACGAGCCTGGGGGCGACGTACGCGGGTCTGTTCCCCGAGCGTGCGGGCCGGCTGGTGCTCGACGGCGCGATCGACCCGACGTTGGACGCGGACGAGATCTCGGCCGGCCAGGCCGTCGGGTTCGAGAACGCGCTGCGCGCCTACGTCACCGACTGCCAGGCCGGGGCCGACTGCCCGCTGACCGGGTCCGTCGACGCCGGCATGCAGCAGGTGCGCGACGTCCTGGACCGGGCCTACGACCGTCCCTACCCGACCAGCGGCGACCGGGACGTCACCCAGACGCTGGCCTTCTACGGGGTCGCGGTGACGCTGTACGCCGAGCAGAGCTGGCCGGTGCTCACCCAGGCGCTCGACGAGGCCATCAACGTCGGCACGGGGGACACGCTGCTGTACCTGGCGGACTTCTACAACGACCGCAACGCCGACGGCTCGTTCGCGACCAACTCCACCGAGGCGTTCACGGCGATCAACTGCCTGGACAGCGCCGGCGCCACGGACGTCGAGACGATGCGGGCGGAGGCCGCCGAGATCGAGGAGGCGGCGCCCACGATGGGGTCGTTCTTCGGCTACGGCGGGCTGTCGTGCGCCGACTGGCCGTACCCGGCCGTCGAGCAGGAGTACGGCGTCGCGGCGTCCGGCGCGGACCCGATCGTCGTCATCGGCACCACCAACGACCCGGCCACGCCGTACGTCTGGTCCGAGGGCATGGCCGACGCGCTCGACTCCGGGGTCCTGGTGACCTACGAGGGGGAGGGGCACACCGCCTACGGCCGGTCGAACGACTGCATCGCCGACGCCGTGGAGGGGTACCTCGTCGAGGGCACGGTGCCCGAGGACGGCCTCACCTGCTGAMVGLGLVLAGCTADTPGKTATPVDEATTAAPMTPSAAGAPEGFEDFYAQDLEWTDCRGGYECATATAPLSWDDAEAGSIELALVRTRATGQKVGSLLINPGGPGGSGADFVENGSFGEPLRESFDIVGFDPRGVQDSTAVECYDDEAKDEYLSEDVDLSTDDGLEAARASAAAWAEACAANTGELLGEVDTQSAAKDMDMLRAVLGDEQLHYLGFSYGTSLGATYAGLFPERAGRLVLDGAIDPTLDADEISAGQAVGFENALRAYVTDCQAGADCPLTGSVDAGMQQVRDVLDRAYDRPYPTSGDRDVTQTLAFYGVAVTLYAEQSWPVLTQALDEAINVGTGDTLLYLADFYNDRNADGSFATNSTEAFTAINCLDSAGATDVETMRAEAAEIEEAAPTMGSFFGYGGLSCADWPYPAVEQEYGVAASGADPIVVIGTTNDPATPYVWSEGMADALDSGVLVTYEGEGHTAYGRSNDCIADAVEGYLVEGTVPEDGLTCNANANANANA
AK018_003811137hypothetical proteinGTGACCGTGTGGGACGACGTCGTCGGCCAGCCGGAGGCGGTGGGCGTGCTGCGGCGCGCCGCGACCGACCCGGCCGCGATGACCCACGCCTGGTTGCTGACGGGTCCGCCCGGCTCGGGACGGTCCGTCGCCGCGCGGGCGTTCGCCGCGGCGCTGCAGTGCCCCGAGGGCGGCTGCGGGCACTGCCGCGAGTGCACCACCACGCTCGCCGGGACGCACCCGGACCTGACGGTCGTGGCCACGGACAAGGTCGTGATCGCCATCGACGAGGTGCGCGACCTCATCACCACCGCCTCGCGCACGCCCTCGGTGGGGCGGTACCGCGTCATCGTCGTCGAGGACGCCGACCGCATGGTCGAGCGCACCACCAACGTGCTGCTGAAGTCGATCGAGGAGCCGCCGGCGCACACCGTGTGGGTGCTGTGCGCGCCGAGCAGCCAGGACGTCCTGCCGACGATCCGCTCGCGGTGCCGCGGCGTCGTGCTGCGGGTCCCGCCGGCCCGCGACGTCGCCGAGCTGCTGGTGCGGCGCGACGGCACCGAACCCGCCGTCGCGCTGCAGGCGGCCCAGGCCGCGCAGTCCCACGTCGGGATGGCCCGCCGCCTGGCCCGCGACCCCGAGGCGCGGCGCCGTCGGGCGGACGTGCTCGAGATCGCCCGCCGGATCCGCGGGGTCCCCGACGCGGTGCTGGCCGCCGCCGACCTCGTCGAGGTCGCCAAGGCCGAGGCGACCGCCGCGACGACCGAGCGGGACGCCGCCGAGCGGGCCGAGCTGCTGCGGGCCCTCGGCGTCGCCGAGGGCGAGACCGTCCCGCCGAAGCTGCGGTCCCAGGTCAAGCAGCTCGAGGACGACCAGAAGCGCCGGGCGACCCGCAGCCAGCGCGACGTCCTGGACCGGGCGATGGTCGACCTGCTGTCGCTGTACCGGGACGTGCTGGTCGTGCAGCTCGGCGCGGACGTCGACCTCGTCAACGCCGAGCAGGCCGCCACCGTGCGCGGGCTGGCCCGCGACTCGACCCCGGAGCAGACGGTGCGCCGCATGGACGCGATCGGCCAGGCGCGCGAGCGGCTGGCGGGCAACGTGGCGCCCCTGCTCGCCGTCGAGGCGATGGCGGTCGCGCTGCGTCCGCAGGGCTGAMTVWDDVVGQPEAVGVLRRAATDPAAMTHAWLLTGPPGSGRSVAARAFAAALQCPEGGCGHCRECTTTLAGTHPDLTVVATDKVVIAIDEVRDLITTASRTPSVGRYRVIVVEDADRMVERTTNVLLKSIEEPPAHTVWVLCAPSSQDVLPTIRSRCRGVVLRVPPARDVAELLVRRDGTEPAVALQAAQAAQSHVGMARRLARDPEARRRRADVLEIARRIRGVPDAVLAAADLVEVAKAEATAATTERDAAERAELLRALGVAEGETVPPKLRSQVKQLEDDQKRRATRSQRDVLDRAMVDLLSLYRDVLVVQLGADVDLVNAEQAATVRGLARDSTPEQTVRRMDAIGQARERLAGNVAPLLAVEAMAVALRPQGNANANANANA
AK018_00382723tmk_1COG0125Thymidylate kinaseGTGAGCAGCGCACCCGGGTACTTCGTGTCGTTCGAGGGCGGCGACGGCGCCGGCAAGTCGACGCAGGCCCGCCTGCTCGCCGAGTGGCTCGGCGCGGTCACGGGCCGCGAGGTCGTGCTGACGCGCGAACCCGGCGGCACCCCTCTGGGGGCGGAGCTGCGACGGGCCGTCCTGCACGGCGACGACGTCGACCCGCGCACCGAGGCGCTGCTCTACGCCACCGACCGGGCGCACCACGTGGCCACCGTGGTCCGGCCCGCCCTGGAGCGCGGCGCCGTCGTGGTGACCGACCGGTACCTCGACTCCTCGGTCGCCTACCAGTCCGGCGGCCGCGAGCTCTCCCAGGACGAGGTCGAGAACCTCTCGCTGTGGGCCACCGACGGGCTGCTGCCCGCCGTGACCGTGCTGCTCGACGTCGACCCCGCCACCGCCGCAGCCCGTCGCGCGGGACGCCCGGACCGCCTCGAGCGTGCCGGCCTCGACTTCCACCGGCGCACCCGGGACGCGTTCCTGCGCCGCGCCGTCGCCGACCCGGCCCGCTGGCTCGTCATCGACGCCACCGGCACCGTCGACGACATCCAGGCCCAGATCCGGGTCGACGTCGCCTCCCGCCTCGACCTGACGCCCGTGGTCGAGGAGGCAGCGCGCCTGTCGGACCCCGAGGTGTCCGCGGTGCGGGCCCCCGCCGACCCGTCCGGCGCGGACCCGGAGGACGTCTCGTGAMSSAPGYFVSFEGGDGAGKSTQARLLAEWLGAVTGREVVLTREPGGTPLGAELRRAVLHGDDVDPRTEALLYATDRAHHVATVVRPALERGAVVVTDRYLDSSVAYQSGGRELSQDEVENLSLWATDGLLPAVTVLLDVDPATAAARRAGRPDRLERAGLDFHRRTRDAFLRRAVADPARWLVIDATGTVDDIQAQIRVDVASRLDLTPVVEEAARLSDPEVSAVRAPADPSGADPEDVSPGPT0021395_569DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021395-tmk-K00943NANA
AK018_00383399hypothetical proteinATGACCGACGACGGAACGACCACGACGCTCACGGACGACGAGTGCTGGGCCGTGCTCGCCGACCAGCCGATCGGCCGCCTGGCGACGGCCGTCGCCGGTGAGCCGGAGATCTTCCCGGTCTCCCACGCCGTCGCGGACGGGCGCATCTACTTCCTCACCCGACCGGGCAGCAAGCTCGTCGAGGTGACGGTCAACAACCGCGTGGCGTTCGAGGCCGACGAGTGGCGGTTCGACACGGCCTCCAGCGTCGTGCTCAAGGGCACCGCGGAGGTGCTGGAGACGGACGAGGACATCGCCGCCGCCGAGGCGACCGAGCTGGTGCCGTACCTCGACGACGGCAAGAACGTCTGGGTGCGGATCACGCCGACCGAGATCAGCGGCCGCCGGCTGACCCGCTGAMTDDGTTTTLTDDECWAVLADQPIGRLATAVAGEPEIFPVSHAVADGRIYFLTRPGSKLVEVTVNNRVAFEADEWRFDTASSVVLKGTAEVLETDEDIAAAEATELVPYLDDGKNVWVRITPTEISGRRLTRPGPT0028780_2540DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-5-NITROIMIDAZOLE_ANTIBIOTIC_RESISTANCE-AZOMYZIN,PGPT0028780-nimD-K07005NANA
AK018_003841074iolU_1COG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolUATGACCGACCTCAGCGCCGCCGTCGACCCGTCCGCCTACGCCGCCCGCCTGACCGCCGACGACCTGCTCGGCACCGTGCCCGACCTGATGGACGCTCCGGCGATCCGCTGGGGCGTGATCGGCGCCGGAAACATCGCCGGGTCCTTCTCCGACGGCGTCCGGGACCGGACGGCGTCCCGGGTGACCGCCGTCGGCTCCCGCTCCGTGGACAAGGCCCAGGCGTTCGCCGACGCGCACGCCCCCGGCGCGCGGGCGCACGGCTCGTACGAGGAGCTCGTGGCCGACGACGAGGTCGACGTCGTCTACGTCGCCACCCCGCACTCGCACCACCTGGAGCACGCGCGGCTCGCGATCACCGCCGGCAAGCACGTGCTCGTGGAGAAGCCGCTCACCCGGTCGGTGGCCGAGTCGCGCGAGCTTCTCGACGCCGCGCGCGAGGCCGGGGTGTTCCTGCTGGAGGCGGTGTGGACCCGCTACCTGCCGCACGTCGCGGCGATCCGTGCGGCGATCGCCCGCGGGGAGATCGGCGAGGTGCGCACGGTGCTCGCCGACTTCGACGTCTACCGCGACTACGACCCCACGCACCGGCTGTTCGCCCCGGAGCTGGCCGGCGGCGCGCTGCTCGACCTCGGGATCTACCCGATCACGCTGGCCCACGACCTGCTGGGGGTGCCCGCCGAGACCGTGTCCCGCGGGACGCTCGCCGAGACCGGCGTCGACGACCACGTCAGCATGATCCTGTCCTACGACTCGGGGGCGCAGGCGGTGCTGCACACGTCCTCGACCGCCCGCGGAGCGGCCGGCGCCCGCATCATCGGCACCCGCGGCCGCATCGAGATCCCCGAGAGGTTCTTCACCCCGGCCGACTTCACCGTCGTGCGCGACGACGGGACGAGCTGGTCGTTCACGTCCCCGGCCGGCGAGGGCAAGGCCTACGAGGCGGCCGAGGTGGCTCGCTGCCTCGCGGAGGGGCGGACCGAGAGCGCCCGGATGCCGTGGGGCCACACCCTCGAGGTGATGGGCATCCTCGACGACGTGCGGGCGCAGCTCGGGGTCACGTACCCGGGGGAGTGAMTDLSAAVDPSAYAARLTADDLLGTVPDLMDAPAIRWGVIGAGNIAGSFSDGVRDRTASRVTAVGSRSVDKAQAFADAHAPGARAHGSYEELVADDEVDVVYVATPHSHHLEHARLAITAGKHVLVEKPLTRSVAESRELLDAAREAGVFLLEAVWTRYLPHVAAIRAAIARGEIGEVRTVLADFDVYRDYDPTHRLFAPELAGGALLDLGIYPITLAHDLLGVPAETVSRGTLAETGVDDHVSMILSYDSGAQAVLHTSSTARGAAGARIIGTRGRIEIPERFFTPADFTVVRDDGTSWSFTSPAGEGKAYEAAEVARCLAEGRTESARMPWGHTLEVMGILDDVRAQLGVTYPGENANANANANA
AK018_00385474ohrR_1Organic hydroperoxide resistance transcriptional regulatorATGGCCCGACCGGACGACCCCCTGGCGCTCGAGACGCAGGTCTGCTTCGCGCTGTCGGCGGCCTCGCGCGCGATGGTGGCGCTGTACCGCCCGGTGCTCGAGCCGCTCGGGCTGACCCATCCCCAGTACCTCGTGCTGCTCGGGCTCTGGGAGGACGACGGCGCCGGACGCACCACCACGGCGACCGGCCTCGCCGACCGGCTCTACCTCGACCCGGGCACGCTGTCGCCGCTGCTCAAGCGGCTGGAGACGCAGGGGCTGCTCACGCGGCGGCGGTCCGCGGCCGACGGCCGGGTCGTCGAGGTGCACCTGACCGCCGCCGGGCGTGCCCTGCGGTCGGAGGCCGTCGAGGTCCCCGGCCGTGTGGTGGCGGCGTCGGGACTGAGCCTCGACGAGCTCGAGCGGGTGCGTGCCGCCTCGGACGCGGTCATCGCCGCCGCGCACGGCGAGCGCGCCGATACGGTGGGGCCATGAMARPDDPLALETQVCFALSAASRAMVALYRPVLEPLGLTHPQYLVLLGLWEDDGAGRTTTATGLADRLYLDPGTLSPLLKRLETQGLLTRRRSAADGRVVEVHLTAAGRALRSEAVEVPGRVVAASGLSLDELERVRAASDAVIAAAHGERADTVGPPGPT0013155_166DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
AK018_00386219hypothetical proteinGTGGGACTGTTCCGCCGCCGCCCCGACGACGACCGCACCTGGGGCATGCGGTTCACCGAGTCGTTCCTGCCGGTCTTCGGCCCGGCATCGATCCGCAGGACGCCGCCCGTCCCGCCGAGCGCCGAGGACCGGGCCCGCGAGGCCCGGCTGCGCAACACCTACGAACGCATCACCGGGCCGGACGGCCACACCTACGTCGTCGAGCGCCGCCCCGACTGAMGLFRRRPDDDRTWGMRFTESFLPVFGPASIRRTPPVPPSAEDRAREARLRNTYERITGPDGHTYVVERRPDNANANANANA
AK018_003871176macBCOG0577Macrolide export ATP-binding/permease protein MacBATGGCGCGACTGAGCGTCCGCGACGCGCTGGCCACCGCGGCGCTGGGGCCCCGGGCACGTCCGTCGCGCTCCCTGCTGTCCATGCTCGGCGTCGCCCTCGGGATCGCTACGCTGGTGGCCGTCCTGGGGATCACCGCCACCAACGAGGACAGGTTGCGTCTGGAGCTCGAAGCACTCGGTTCCAACGTGCTCGAGGTGCGTCCCGGCGTCGGCCCGGACCTGACCACCGTCCCGCTGCCCGCCGAGGCGCCAGGCATGGTTCGGCGAATCGGGCCCGTTCTCGACGCCGCCCGCGTCTCGCCGGTGGCCGGCGTCGGCGTCTACCGGACCGATCTGGTGCCGGAGACGATGGGCGGAGCCCTGGCTGTGGTGGCGGTGCAGGCGGAGCTGGCCGACACCATGGACCTGAGGATGGCCGAGGGCCAGTGGTTCGACCGTTCGTCGACGGCGCTGCCCACCACTGTGTTGGGGTCGGTCGCCGCGTCCGAGCTCGGCATCGTCGAGATCGGGCAGCGTGTGTGGGTCGACGACGACTGGTACGCCGTCGTCGGGATCCTCGAACCAGCGCGTCTCGCCCCGACTCTCGACCGTGCGGCGCTCATCGGCGAGGACTGGTCCAGCCGGACGACTCCCGCCGAGGAAGACACCGTGCTGTACGTACGAGTTCGCACCGGGGCGGTCGACCGTGTGCGCGACGTCCTGGCGGCCACCGTCAACCCGGCGATGCCTCGTGCGGTCACGGTCTCTCAGCCTTCCGTGCTCGCGCACGCCCAAAGGGCCGTCGATTCGACCTTTGCCAGCCTGGCACTGGGTCTGGCCGCTGTAGCTCTGCTCGTCGGTGCCATCGGGATCGTCAACACGATGGTGATCGCCGTGCTGGAGCGGCGCGGCGAGATCGCTCTGCGCCGGGCGGTCGGAGCACGGGCTGGGCAGATCCGTGCGCAGTTCGTCCTGGAGGCGGGGTTCTTGGGGCTGGGCGGAGGCGTTGCCGGCGCGACCCTCGGTGTGCTGGTCACTTCCGTGTACGCACTCACCCACGGCATGGCGCCTTCTGTGGACATGGTGCCGTCGGGCGTCGGTGTCGCACTGTCGGTCGTGGTCGGCGTCGTCGCGGGGGTCTACCCGGCGACACGGGCCGCGAGACTGCCGCCGATGGCCGGTCTGCGCGGGGATTGAMARLSVRDALATAALGPRARPSRSLLSMLGVALGIATLVAVLGITATNEDRLRLELEALGSNVLEVRPGVGPDLTTVPLPAEAPGMVRRIGPVLDAARVSPVAGVGVYRTDLVPETMGGALAVVAVQAELADTMDLRMAEGQWFDRSSTALPTTVLGSVAASELGIVEIGQRVWVDDDWYAVVGILEPARLAPTLDRAALIGEDWSSRTTPAEEDTVLYVRVRTGAVDRVRDVLAATVNPAMPRAVTVSQPSVLAHAQRAVDSTFASLALGLAAVALLVGAIGIVNTMVIAVLERRGEIALRRAVGARAGQIRAQFVLEAGFLGLGGGVAGATLGVLVTSVYALTHGMAPSVDMVPSGVGVALSVVVGVVAGVYPATRAARLPPMAGLRGDPGPT0013350_19306DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
AK018_00388729yknY_1COG1136putative ABC transporter ATP-binding protein YknYGTGACAGCGCCGGAGGTCCCGCCCGTCGAACCGGTGGTCGCACTGCGTGGGGTGTCCAAGTCGTACGCTACCGGCGCCGGAGACCTGACGGTGCTGCGCGACGTCGACCTCACGATCCGTGACGGTGAGCGAGTGGCGATCGTCGGACCGTCCGGGTCGGGCAAGTCGACGATGCTCAGCATCATGGGCACCCTGGACGCTCCCAGTGCCGGGGACGTGGTGCTCCGCGGTCGCTCGACCGCCACGATGGGCGACGCCGAGCGGTCCGATCTTCGATCGCGCACCCTCGGCTTCGTGTTCCAGCAGTTCCATCTCCTCCCGCACGCGGACGCCGTCGAGAACGTTGCGCTGGGCATGCTCTACTCGGGTTTCGTTCGTGCCGAACGACGACGTCGCGCGGTGGAGGCGCTACGGCGGGTCGGCCTGGGAGGGCGCCTCGATCACCGGCCCACGCAGCTGTCCGGGGGTGAGCAGCAGCGCGTCGCCGTGGCGCGTGCCATCGCGCACGAACCTGCGCTGCTGCTCGCCGACGAGCCCACCGGTTCCTTGGACGAGGCCACCGGTGAGTCGATCATCGACCTGCTGTGCCGCCTCGACGGCGTGTCCGTCGTCGTCATCACCCACGACCCGGCGGTCGCGGCCCGCTTCCCGCGGCAGGTCCGGATCCGGGACGGGCGCATCGTCGCCGACGGCGTCGGACCAGTGGCGTCCGACGGGGAGGGGCGCTGAMTAPEVPPVEPVVALRGVSKSYATGAGDLTVLRDVDLTIRDGERVAIVGPSGSGKSTMLSIMGTLDAPSAGDVVLRGRSTATMGDAERSDLRSRTLGFVFQQFHLLPHADAVENVALGMLYSGFVRAERRRRAVEALRRVGLGGRLDHRPTQLSGGEQQRVAVARAIAHEPALLLADEPTGSLDEATGESIIDLLCRLDGVSVVVITHDPAVAARFPRQVRIRDGRIVADGVGPVASDGEGRPGPT0013345_7539DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_003891107hypothetical proteinTTGTCCTATGACGTGTCCGAGGCACTGACCTTTTCCGGCGACGGCATCATCACCTGGTTGCCGGAACCGGGCGATCTCGTCAGACCGGGCGAACCGCTGCTGGAGGTCAACGGACGACCCGTCTTCTTCTTGTCGGGTGACGTGCCGCTGTGGCGAGAGCTCAGCCTCGGCGACCGTGGCAAGGACGTGCTCAGCCTCAACGAGGCCTTGCACGATGCCGGTCATCTGAGCGCGGCCCGCGTCGACGAGATCTTCGGCGAGGGTGCTTCGGGCGCTGTCGGGTCCCTTCACGCCGCGGCCGGCTACGTCGAGCCGTCCGGCAGCGAGGTCGGCCGGGAGCGGATCGCGACGGCCGAGGGCGTGCACGCCGACGCTGTCGCCGCGCTGCAGGAGGCCCGCGACGCGCTCGCTGCGCGGCAGGACACCGGCGGCGAGCAGGATGCTGCTGACGCTGCCACCAGCTCCGCCGGCGCACACCGGGAGGTCTCGCGTGCGCAGGAACAGGTGGACACGGCAGCGCGCGAGCTGGCTCGAGCCCGTGCGGAGTGGGTGGCGCCGTCCGACGCCGTGATCCTCGACGTCGACGAACTTCAGGTCGACGAGGTGGTGGCCAGGGTCGGCGATCCCGCCGGCGGCGAGGTGCAGCGCTGGACTGTTCCCGAGGTGCACGTCCTGACCGATGTCACGCCGTCGCAGCGCACGGCGCTCGCTGCCGGAGACGAGGTCGAGGTCGTCCTCCCCAGCGCCGCGACCATTCCCGGCGTCATCGGCCGGATCGGCGCGCGACGTGCTCCGGGGGGTGAGGAGAGCGCCATGAGTGCCGCGGCCGACTCGACGCCGGTCCGGGTAGACCTCGAGGACCAGGATGTGGCGGCGGAGCTCGTCGGGTCCCCGGTGCGCGTCGAAGTCGTGACCGATGAGGTCGAGTCCGCGCTCGTCGTTCCTGTCACCGCGTTGGTCGCGTTGGCCGAGGGCGGCTACGCGGTCGAGAAGCTCGACGACACGAGAGTGGCTCTGGTGCCCGTGGACGTCCAGCTCGTCGCTGAGGCCAGGGCCGCGATCAGCAGTCGACACCTGGTCGAGGGCGACGAGGTCGTCGTGCCGTGAMSYDVSEALTFSGDGIITWLPEPGDLVRPGEPLLEVNGRPVFFLSGDVPLWRELSLGDRGKDVLSLNEALHDAGHLSAARVDEIFGEGASGAVGSLHAAAGYVEPSGSEVGRERIATAEGVHADAVAALQEARDALAARQDTGGEQDAADAATSSAGAHREVSRAQEQVDTAARELARARAEWVAPSDAVILDVDELQVDEVVARVGDPAGGEVQRWTVPEVHVLTDVTPSQRTALAAGDEVEVVLPSAATIPGVIGRIGARRAPGGEESAMSAAADSTPVRVDLEDQDVAAELVGSPVRVEVVTDEVESALVVPVTALVALAEGGYAVEKLDDTRVALVPVDVQLVAEARAAISSRHLVEGDEVVVPNANANANANA
AK018_00390744hypothetical proteinGTGAGAAGACGAATACTTGTGCCGCTGGTGGTGCTTACCTCGCTGGTGACCGGGTGCAGTGGTGATGACGCGCCGGGTGTGGCGGGCCAGGCCGATCTCGCGGTCGACGCGGACGTCGGCTCCACAGGCGCGACCGTCGCAACGGGTTCCTATGTCAACGAGGCGACGGCTCGGTACGCCGCCTGTCTCGGTGACCTGGGCATCGACGTGGCGCCGGAAGTCGGCGAGGTGGATGACCAGCTCGACGGGTACGCCAGCATCGTCGACGGAACCTTCGTCCCGGACCAGGACGGGCTGCTGACCGACGACGCGGAGAGCCAGCCGATCGGCGTGGCGGGCGAGAACCGCGACGAGGAGATCCGCGAGTGCTACGCGGGGAGTCCCGGGGCCAAGGACGTGCTGATCGACATGCACGACCGCACGCCCGCGGAGAACTCCTGGACGATGCCCGAGAGCCAGGTCGAGGCCGGTCGACAGTGGGCACAGTGTGCGCGTGATGCGGGGGTGGCCGCTGTCGAGGACCCCGCTGACGACGGCTACGTCTACATCACCGACGACGTCTCGATCGAACAGGCGGAGATGCTCGGTGAGGAGTGCACACGGCCGATCGCCGAGTCGGAGTACTGGCCGAACTTCCAGTTCTTGGTGGCGGACATGATCGCGTACTCGGAGGCGATCGACGGGCCGATCTTCGAGTCCGACCGGTGGGCGCAGAACTGCGAGGACGATCCTGACGACTGCTGAMRRRILVPLVVLTSLVTGCSGDDAPGVAGQADLAVDADVGSTGATVATGSYVNEATARYAACLGDLGIDVAPEVGEVDDQLDGYASIVDGTFVPDQDGLLTDDAESQPIGVAGENRDEEIRECYAGSPGAKDVLIDMHDRTPAENSWTMPESQVEAGRQWAQCARDAGVAAVEDPADDGYVYITDDVSIEQAEMLGEECTRPIAESEYWPNFQFLVADMIAYSEAIDGPIFESDRWAQNCEDDPDDCNANANANANA
AK018_00391282hypothetical proteinGTGTACAACGGTGAGGACTATCAGATCCTCAGTTCGAAGTGGGTGCTCTTCGAGTACGGGATCAGCGACTTCGGGCAGTTCGGGATGAACAACCAGTCTCGGTCCGCGTACAACAACGGCACGAAGTGCTGGGCGGTGTTCTACAACGGAACCGGCTACTCCGGCGCGAGTTTCACGCTGACCCTGAACAACCGGGGTATTCCCGATCTTTCTCTCCTTCGACTCGGTACGGGGACCTGGAACAACAAGATCTCGTCGGGGCGATTCACGTACTGCCCGTGAMYNGEDYQILSSKWVLFEYGISDFGQFGMNNQSRSAYNNGTKCWAVFYNGTGYSGASFTLTLNNRGIPDLSLLRLGTGTWNNKISSGRFTYCPNANANANANA
AK018_003922775topA_1COG0550DNA topoisomerase 1ATGCCTCAGGCCCGCAAGCTCGTGATCGTCGAGTCCCCGACCAAGGCTCGCAAGATCCAGGGCTACCTCGGCGACGACTACGTCGTGGAGGCGAGCGTCGGCCACATCCGGGACCTCCCGCAGCCCTCGGAGCTGCCCGCGGAGATGAAGAAGGGGCCGTACAAGAAGTTCGCCGTGGACGTGGACAACGGCTTCGACCCCTACTACGTGGTGCACGCCGACAAGAAGTCCAAGGTGCGCGAGCTCAAGGCGGAGCTGAAGAACGCCGACGAGCTGTTCCTCGCCACCGACGAGGACCGCGAGGGCGAGGCCATCGCCTGGCACCTCATCGAGGAGCTCAAGCCCAAGGTGCCGGTCAAGCGGATGGTCTTCCACGAGATCACCCGGGAGGCCATCACCCGGGCGCTGGAGAACACCCGCGACCTCGACCAGGACCTCGTCGACGCCCAGGAGACCCGCCGCATCCTGGACCGCCTGTACGGGTACGAGGTCTCCCCGGTGCTGTGGCGCAAGGTCCGCCAGGGGCTGTCCGCGGGCCGGGTGCAGTCGGTCGCGACGCGGCTGGTCGTGGAGCGCGAGCGGGACCGCATGGCGTTCGTGACCGCGGACTACTGGGACGTGACGGGTTCGTTCGCCCCCGAGTCCGGGGACGACGCCGGTCAGCTCTTCCGCGCCCGTCTGACCGGTCTGGACGGGGACAGGGTCGCCGCGGGCCGCGACTTCGACGACCTGGGCCGTCTCAAGGTGCGCACCGGCGTCGCCCACCTCGACGAGGCGGCGGCGCACGCCGTCGTGGCCGGGCTCGAGGACGCGGCGTTCGCCGTGCGCTCCCTGGAGACCAAGCCGTACTCCCGCAAGCCGGCCGCGCCGTTCACCACCTCCACGCTGCAGCAGGAGGCCTCGCGCAAGCTGCGCATGGCCTCGCGGGCGACGATGCGCACCGCGCAGGCGCTGTACGAGAACGGCTACATCACCTACATGCGGACCGACTCGCCCGCGCTGTCCGCCGAGGCGACCGACGCCGCCCGGCGCCAGGCCGCCGAGCTGTACGGGGCCGAGTACGTGCCCGGTGCGCCGCGGCTCTACGCCTCGAAGAACAAGGGCGCCCAGGAGGCGCACGAGGCGATCCGTCCCGCCGGCGACTCGTTCCGGACGCCGGCCCAGGTGGCCGGCGAGATCTCCGGCGACCAGTTCAAGCTCTACGAGCTCATCTGGAAGCGCACCGTGGCCTCGCAGATGGCCGACGCCAAGGGGTCGACGGCGTCCGTGCGGCTGGCCGCGACGCTCGGCTCCGGGGCGGGCGACCGTGCCGGGTCGGACGCCGTGTTCTCGGCCTCCGGCACGGTGATCACGTTCCGCGGGTTCCTCGCGGCCTACGAGGAGTCCAAGGACGTCGAGACCCCCGAGGGTGGCGGCGCCGCGCCGTCGGGGCCGAAGGAGACGCGCCTGCCGCGGATGGCCGAGGGCGACGCTCTCGCGGGCACCGAGCTCGTCGCCGAGGGGCACTCCACGAGCCCGCCCGCGCGCTACACCGAGGCCTCCCTGGTCAAGGCGCTCGAGGAGCTGGGCATCGGGCGCCCCTCGACGTACGCCGCGACGATCTCGACGATCCAGGACCGCGGCTACGTGCGCACCAAGGGCCAGGCCATGGTGCCCACCTGGCTGGCGTTCGCCGTCGTGCGCCTGCTCGAGGAGCACTTCGCCCGGCTCATCGACTACGACTTCACCGCCGAGATGGAGGCCGACCTCGACCAGATCGCGGCCGGCGACCGCGAGCGCCTGGCCTGGCTGACCCGGTTCTACTTCGGCGAGGGCTCCGGAGACGGGCAGGGCGGCCTGCGCGACCTCGTGGAGAACCTCGGCGAGATCGACCCGGTGGCGATCAACTCGGTGCAGATCGGCGAGGGCATCCGGGTGCGCGTGGGCCGGTACGGCCCGTACCTGGAGGACCTGGGGGCCGAGCCGGGCAAGGACGGCAAGGCGCCGCGGGCTTCGGTGCCCGACGACGTCGCCCCGGACGAGCTGACGGTGGCCAAGGCGCGCGAGCTGCTGAAGGCGGGGGCCGACGACGGCCGCGTGCTCGGTGTCGACCCGGAGTCGGGGAACGAGATCGTGGCCAAGAACGGCCGTTTCGGCCCGTTCGTCACCGAGAAGCTCGACCTGCCCGAGATCGACCCGAACCTGTCCCAGGCGGCCCAGAAGAAGGCGAAGGCCGCCCAGCCGAAGCCGCGCACGGGGTCGCTGCTGAAGTCGATGTCCCTGGACACGGTGACGCTCGAGGACGCCCTGAAGGTCCTGTCGCTGCCGCGCGTGGTCGGGACCGACCCGGAGTCCGGCGAGGAGATCACTGCGCAGAACGGTCGGTACGGGCCCTACCTGAAGAAGGACAAGGACTCCCGCTCGATCGAGTCCGAGGAGCAGCTCTTCACGATCACCCTGGACGAGGCGCTGACGATCTTCGCCCAGCCCAAGCGCCGCGGCCGGGCGGCGGCCGCGCCGCCGCTGAAGGAGCTCGGCGACGACCCGACGTCGGGCAAGCCGATCGTGGTCAAGGACGGCCGGTTCGGTCCGTACGTGACCGACGGAGAGACGAACCGGACGCTGCCGCGGGACGCCACGCCGGAGTCGATCACCGCCGAGCGGGCGATCGAGCTGCTGGCCGAGAAGCGGGCCCAGGGGCCGAAGAAGCGCAGCACGTCGGCCAAGAAGTCGACGACCAAGAAGACGCCGGCGAAGAAGGCTCCCGCGAAGAAATCGTCGACGGCGAAGAAGTAGMPQARKLVIVESPTKARKIQGYLGDDYVVEASVGHIRDLPQPSELPAEMKKGPYKKFAVDVDNGFDPYYVVHADKKSKVRELKAELKNADELFLATDEDREGEAIAWHLIEELKPKVPVKRMVFHEITREAITRALENTRDLDQDLVDAQETRRILDRLYGYEVSPVLWRKVRQGLSAGRVQSVATRLVVERERDRMAFVTADYWDVTGSFAPESGDDAGQLFRARLTGLDGDRVAAGRDFDDLGRLKVRTGVAHLDEAAAHAVVAGLEDAAFAVRSLETKPYSRKPAAPFTTSTLQQEASRKLRMASRATMRTAQALYENGYITYMRTDSPALSAEATDAARRQAAELYGAEYVPGAPRLYASKNKGAQEAHEAIRPAGDSFRTPAQVAGEISGDQFKLYELIWKRTVASQMADAKGSTASVRLAATLGSGAGDRAGSDAVFSASGTVITFRGFLAAYEESKDVETPEGGGAAPSGPKETRLPRMAEGDALAGTELVAEGHSTSPPARYTEASLVKALEELGIGRPSTYAATISTIQDRGYVRTKGQAMVPTWLAFAVVRLLEEHFARLIDYDFTAEMEADLDQIAAGDRERLAWLTRFYFGEGSGDGQGGLRDLVENLGEIDPVAINSVQIGEGIRVRVGRYGPYLEDLGAEPGKDGKAPRASVPDDVAPDELTVAKARELLKAGADDGRVLGVDPESGNEIVAKNGRFGPFVTEKLDLPEIDPNLSQAAQKKAKAAQPKPRTGSLLKSMSLDTVTLEDALKVLSLPRVVGTDPESGEEITAQNGRYGPYLKKDKDSRSIESEEQLFTITLDEALTIFAQPKRRGRAAAAPPLKELGDDPTSGKPIVVKDGRFGPYVTDGETNRTLPRDATPESITAERAIELLAEKRAQGPKKRSTSAKKSTTKKTPAKKAPAKKSSTAKKNANANANANA
AK018_00393996hypothetical proteinATGAACGGCGACACCCGTGAGGTCCCTGTCGCGGCACCGGCTCCGGCCGCCGCGTGGGTCGCGCCACCGTCGGTCCCGGTGGCGCGCGTGACCGCACCCCCGCGACCCGAGGTGCGGGTCGGTGCCCAGGTGTCGGCGGCGCTCGTCGCGCTCGTCGCCGTGCTCGCCGTGTGGCTGACCTACCGGGTGTTCGTCACGACCCTGCCGGGCCAGCAGCTGGACGACCTGGCCCGCGACGGGGCGCTGTACGGGCAGGACAGCCTGTGGCGCGTCGCCGAACCCGTGCTCGACGTCGTCTCGGTGGCCTTCGTGGTCGCGGGGATCGGCGCGGCGATGCTGGTCGCCGTCGTCCGCCGCCGGTGGATCCTCGCGCTGCAGGTCGCCGTCCTGGTGGGCGGGGCCAACCTGACCACCCAGGTCCTCAAGCACTCGGTGCTGACCCGCCCCGACCTGCTGCCGGGCTGGTACAGCGGTAACACGCTGCCCAGCGGGCACACCACGGTGGCGGCCTCCGTCTCCGTCGCGCTGCTGCTCGCCACGCCGCGCGCCTGGCGGCCGGTCGTGGCGCTGCTGGGCGCCTCGTACACCGCGGTCACCGGTGTCTCGACGCTCGTGGGGCAGTGGCACCGGCCGTCCGACGTCGTCGCCGCCCTGTTCGTCGTGCTCGCCTGGGGTGCCCTCGTGTGCGCCCTGACGCCGTCGTCGTCCCTCGACGTCGCACCGCGTCGACGTCGGCTGCCCTCCGGGGAGCCGGAGCCGCACGCCTTCTCGTCCCCCGGGTCCTCCGCCGTGGCGGGCCTGATGCTGCTCGGCGCCCTGGTGACCGGGATCCTCGCCTTCGCCGGGGGAGTCCGTCTCGTCGACGCCGCCAGCGTGCCGATCGGCGAGGACGTCACCGCCTACGCGGTCGGCGTGCTCGGGGTGCTGGCCGCGACCGCGGTGACGTTCGCGCTGCTGCTGCTCGTGCGGCAGGCCACGGCGCGTCCGCAGGACTGAMNGDTREVPVAAPAPAAAWVAPPSVPVARVTAPPRPEVRVGAQVSAALVALVAVLAVWLTYRVFVTTLPGQQLDDLARDGALYGQDSLWRVAEPVLDVVSVAFVVAGIGAAMLVAVVRRRWILALQVAVLVGGANLTTQVLKHSVLTRPDLLPGWYSGNTLPSGHTTVAASVSVALLLATPRAWRPVVALLGASYTAVTGVSTLVGQWHRPSDVVAALFVVLAWGALVCALTPSSSLDVAPRRRRLPSGEPEPHAFSSPGSSAVAGLMLLGALVTGILAFAGGVRLVDAASVPIGEDVTAYAVGVLGVLAATAVTFALLLLVRQATARPQDNANANANANA
AK018_003941020ampH_1COG1680D-alanyl-D-alanine-carboxypeptidase/endopeptidase AmpHGTGTCCGACGTCGCCGCCCCCCTCGACCGGTTCGCCGACCGCCTCGCGCGCCGGCGGGCGGGTGTGGTCGTCGGGCACCTCGCGAGGGACGGGACGACGACGGTACGCGGCTCGGGGTGCGTCGCCCTGCCCGACGGCGCGCGGCCCGACGACGGCACCCGGTTCGAGATCGGGTCGGTCACCAAGACGTTCACCGGGCTGGCGCTGGCCCGTGCCGTCGTGTCCGGTGAGGTCGAGCTGGAGACCCCGGTGGGCGACCTGGTCCCCGATGTCGCCGGTCTCGGACGCGACGGTGTCCCGGTCACGCTGCGGCACCTGGCCACGCACACCTCGGGTCTACCGCGGGTCCACCTCTCCGCGCTGCGCGGCACCGTCGAGATGCTGCGCGGCCTCGACCCGTACCGCGACCACACCGAGGCGGTGCTGCTCGCCGCCGTCGCCGACGGCCGGCTGAAGCGCACGCCGGGCACGGGCCGACCCGCCTACTCCAACAGCGGCTTCGGTCTGCTCGGCATCGCGCTGGCCCGCCGGGCCGGGACCTCGTTCGCCGAACTCGTCCGCACCCGCGTCACCGCGCCGCTCGGCCTCGCCGACACCGGGACCCGCGCCGAGGCGACGGCCGACCAGGCCGCGCGGACCGCCGTCGGGCACTTCCGGCGTCGCACCCCGGCACCCGAGTGGCACCTGGACGCCCTCCCGGGGGCCGGTGCGCTGCTCTCCACCGCGACCGACCAGCTCTCCTGGGCGGACGCCCAGCTCCGCCCGCCCGCCGGTGAGCTGGGCGCCGCGATCCGCCTGTCCCTGGCCGAGCACGCACCCGGCATCGGGTTGGGGTGGCAGCGGCCGTTCGCCGACGGCGACACCCGGCGGGGCGACCGCCTGGTGTGGCACAGCGGGGGAACGGGCGGTCACCGCTCCCTGGTGGCGCTGCGGCTCGACACCGGGGACGCCGTCGTCGTCCTCACCAACCACGACCGCGGTGTGGCGCTCAGCGGGATCCGGCTGCTCGCCCGGCTGTGAMSDVAAPLDRFADRLARRRAGVVVGHLARDGTTTVRGSGCVALPDGARPDDGTRFEIGSVTKTFTGLALARAVVSGEVELETPVGDLVPDVAGLGRDGVPVTLRHLATHTSGLPRVHLSALRGTVEMLRGLDPYRDHTEAVLLAAVADGRLKRTPGTGRPAYSNSGFGLLGIALARRAGTSFAELVRTRVTAPLGLADTGTRAEATADQAARTAVGHFRRRTPAPEWHLDALPGAGALLSTATDQLSWADAQLRPPAGELGAAIRLSLAEHAPGIGLGWQRPFADGDTRRGDRLVWHSGGTGGHRSLVALRLDTGDAVVVLTNHDRGVALSGIRLLARLPGPT0024060_462DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024060-ampH-K18988NANA
AK018_00395828hypothetical proteinGTGACCAGTCCCCGGCGAGCCCCGACCTGGTGGCGCCAGCTCGCGGCGCTCGCGTCGGCCTTCGCCGTCGGCGCCGGGCTGCTGGCGTTGCTGGTGCTCGTCGTGCCCGACGCGCTGCGGCTGGCGCCGCACCACGCCGCCTCCGATGCCGCGACCGCCACGCCGGCCGACGGACGCGCCGACCTGCCGGCCCTCGGTGCGGCCCTGTCCGCGGGAGCCTCGACGGTGGCGCCCGCGCCACCGGCAGCCACCGAGAGCCCGGAGCAGGGGATCGTCGTCGACGGCGAACGGTCGCGGACCGACGCCGACCGCGCGATCGAGGTCCAGCCGGCCGCGCCGCCGTCGGCGCAGGACGAGGCGCCGCGGGACACCGGGCCGACCCCGGCCGACCGGCCCGACGCGGGTTCCGGCGACGGGCCCGACGACGGAGCCGCCGGTGGCTCCGGTACCGGGACCGCGGCGGCCGTCCAGGTGCTCGAGCTCGTCAACGCCGAGCGGGCGGCGGCCGGCTGCGGTGCGCTCGCCGCGGACCCCGCGCTGGACGACCTCGCCGCCGTGCACTCGCGGGACATGGCGGACCGCGACTACTTCGACCACACCGACCCGGACGGCCGCACCCCGTGGGACCGGGCGGACGCGGCCGGTGTGGACGGGCTCGCTGCCGAGAACATCGCCCGCGGGCAGCAGGACGCCGCAGCCGTGGTCACCGCGTGGATGAACAGTCCCGGTCACCGGGCGAACATCCTGGAGTGCTCCCACACCCGGCACGGCCTGGGCCGCGTCGACGGGGCGGGCGGCCCCTGGTGGACGCAGGTCTTCGGACGGTGAMTSPRRAPTWWRQLAALASAFAVGAGLLALLVLVVPDALRLAPHHAASDAATATPADGRADLPALGAALSAGASTVAPAPPAATESPEQGIVVDGERSRTDADRAIEVQPAAPPSAQDEAPRDTGPTPADRPDAGSGDGPDDGAAGGSGTGTAAAVQVLELVNAERAAAGCGALAADPALDDLAAVHSRDMADRDYFDHTDPDGRTPWDRADAAGVDGLAAENIARGQQDAAAVVTAWMNSPGHRANILECSHTRHGLGRVDGAGGPWWTQVFGRNANANANANA
AK018_00396951hypothetical proteinATGGAGATCGACCTCCGCCACCTGCGGCTGGTGACCGTCGTCGCGGAGCACGGCAGCGTGACCCGGGCGGCCGCCGCCCTGGGGATGGCGCAACCCGCGCTGACGGCGCAGCTCAACCGCATCGACGACGCCCTCGGCGGCTCGGTGTTCGTCCGCGACCGCCGGGGCGCCCGCCCGACCCCGCTCGGCGACCTCGTGCTGCGGCACGCCCGCGTCCTGCTGCCCGCGATGGACGCGTTCGGCGAGGACGTGCGTCGCCACGTCAGCGGCCGGACCGACGTCGTGACCTCGCTCCGGGTCGGCACCGTCGCGACGGTGCTCGGGGGCATCTTCCTCAACCGGCTACGGGCCGACCTGACCGGGATCGCGCTGACGTCCTTCACGGCCTGGTCGGCGCAGGAGGCCAACCGGCGGCTGGCCGCCGGCGACCTCGACCTGGCGCTCGTCGGCGCCTGCGGGAACGAGGTGCTCCCCACCGAGGGCGACGTCGTGTGGACACGTCTGTTCACCGACCCCGTGTTCGTGCTGCTCTCCGACGAGCACCGGCTCGCCGGGAACACCGTCGTCCCGCTCGGTGAGCTGGCGAGCGAGTACTGGCTGTCCGCGCCGGGCGAGGGCTGCTTCGAGCGCTGCTTCGTCGCGGCGTGCGTGCGGTCCGGCTTCACCCCGTGGGAGGTCAGCGAGACCGAGCGGGCCTCGGCCATCGAGCAGGTGCGGGGCAACCACGCCGTCGGGCTCGTGCAGCCGCTGCTGCTCGACCAGCCCGGAGTGACGCCGGTGGCCCTGGAGGGGGAGCCGCTGGCCTGGACGCAGTACGTCGGCTGGCGCCGGGACGCCGCGTCCCGGTTCGACGTCGACGTCGTGCAGGCCGCCGCCCACGAGGCGCACCGGCAAGCCGTGGAACGCACGCCGGCCTACGCGCGCTACCTCGCCGAGCGCGTCGCGGACTGAMEIDLRHLRLVTVVAEHGSVTRAAAALGMAQPALTAQLNRIDDALGGSVFVRDRRGARPTPLGDLVLRHARVLLPAMDAFGEDVRRHVSGRTDVVTSLRVGTVATVLGGIFLNRLRADLTGIALTSFTAWSAQEANRRLAAGDLDLALVGACGNEVLPTEGDVVWTRLFTDPVFVLLSDEHRLAGNTVVPLGELASEYWLSAPGEGCFERCFVAACVRSGFTPWEVSETERASAIEQVRGNHAVGLVQPLLLDQPGVTPVALEGEPLAWTQYVGWRRDAASRFDVDVVQAAAHEAHRQAVERTPAYARYLAERVADNANANANANA
AK018_00397762hypothetical proteinATGGCAGAACGCGTGACGTTCGCGAGCAGCACCGGACCGGGGCTGGCCGGCATCATCGACGAGCCCGAGGGGGAGGTCCGCGGCTGGGGCGTGTTCGTCCACGGCTTCACGCTCGGCAAGGACTCCCCCGCGGCGGCCCGCATCTCCAAGCAGCTCGCGGCCGAGGGCATCGGCATGCTCCGTTTCGACAACCTCGGCCTCGGCGACTCCGAGGGCGACTGGGGTGACGGCTCGTTCACCATCAAGGTGGCCGACGTCGTCAGGGCGGCCGAGTTCATGGCCTCCCGCGGGACGCCGGCCGACCTGCTGGTGGGCCACTCCTGGGGCGGCGCGGCCGCCATCGCCGCGGCCCCCGAGCTGCCCGCGGTGCGTGCGGTGGCCACGGTCTGCGCTCCGTTCGACCCGAGCCACGCCGAGAACCACTACGACGACCTCGTCGACCAGGTGCTCGAGGAGGGCAACGCCGTGTGGCAGGTGGGGGGCAAGCGGCTCAACCTCAAGCGCGGCATGGTCGAGGACGTGCGCGAGGCGGACCTGGAGCACCGGATCGCCGAGCTGGACACCCCGCTGATGATCATGCACTCCCCCACGGACCAGACCGTCGGGATCGAGAACGCCAGCCGGATCTTCGCTGCGGCCCGCCACCCGCGCAGCTTCGTCTCCCTGGAGGGCTCCGACCACCTGCTCACCCGGCCCGGCCAGGCGCAGCGGGCGGCGCGGATCATCAGCGCCTGGGCCAACCAGTACCTGCAGCAGGACTGAMAERVTFASSTGPGLAGIIDEPEGEVRGWGVFVHGFTLGKDSPAAARISKQLAAEGIGMLRFDNLGLGDSEGDWGDGSFTIKVADVVRAAEFMASRGTPADLLVGHSWGGAAAIAAAPELPAVRAVATVCAPFDPSHAENHYDDLVDQVLEEGNAVWQVGGKRLNLKRGMVEDVREADLEHRIAELDTPLMIMHSPTDQTVGIENASRIFAAARHPRSFVSLEGSDHLLTRPGQAQRAARIISAWANQYLQQDNANANANANA
AK018_003981428ktrB_1COG0168Ktr system potassium uptake protein BGTGCGGTCACGAACCCTGCGGCGTCTCGTCGGACGCCGCCGCCCCTCGTCCGGTACGTCACCGGCGAGCCTGCGGCGTCGGCCCGCCCAGGTCGTCGCGGCCGGGTTCCTCGGCGCCATCGCCGTCGGCACGCTGCTGCTGAGCCTGCCCGTGGCCACGACCGGGCGGACGGCCACGCTGGTCGAGGCGTTCTTCACCGCGACCTCGGCCGCCTGCGTGACCGGGCTCGTCGTCGTCGACACCGAGACCTTCTGGTCGCCGTTCGGCCAGGTCGTGATCCTCGCGCTGATCCAGGTCGGCGGCTTCGGCGTCATGACCGTCGCCACCCTGCTGGGGCTGCTGCTGTGGCGGCGGATGGGGCTGCGCACCCGGCTCGTGGCGGCGGAGTCGACGCACACGATCGGGCTCGGCGAGGTCCGGCGGGTGATGCTCGGGGCGCTGCGGCTCACGCTCGTCGCCGAGGCGTCGCTGGCGGCCGTCCTCGCCGTGCGGCTGGTGATCGGGTACGGCGAGCCGGTGGGGCACGCCGCCTGGTCGGGCGTCTTCCACGCGGTGTCCGCCTTCAACAACGCCGGCTTCTCGCTGTACGCCGACTCGCTGGTGCGGTTCGTCAGCGACCCGTGGGTCTGCCTGCCGATCAGCGCCGCCGTCGTCGTCGGAGGGATCGGCTTCCCCGTCCTGGTGGAGCTGACCCGCCGCATCCGGATCGGGGACCGGACCCGACCGCTGGTGCTGCATCCCCGACGGTGGAGCGTGCACACCCGGCTCACCCTGCTCATGACCGCGAGCCTGCTGGGGGTGGGCACGGCGTTCTTCCTGGCCGTCGAGTGGGCCAACCCGCGCACGCTCGGGGCGCTGGACGTGCCCGGCAGGTTCATGGCCGCCGCGACGCAGTCCGTCATGGCACGCACCGCCGGGTTCAACAGCATCGACACCACCGCCATGGACCACGGGTCGTGGTTCTTCACCGACGTGCTGATGTTCGTCGGCGGTGGCAGCGGCGGCACCGCCGGCGGGATCAAGGTCGGCACGATGGCGGTGCTCGCGGTCGTGGTGTGGGCCGAGCTGCGCGGCGACCCGGACGTGACCGCGTTCGACCGGCGCGTCGCGCAGGTCGTCCAGCGGCAGGCCGTGACCGTCACGCTGGTGGCGGCCGCCGCCGTCGCGGTCGTCACCCTGCTCATCACGACGTCGGTCCCGGCGTCCGCCGTGTCCCTCGACCGGATCCTGTTCGAGGTCGTCTCGGCCCTGAGCACCACGGGGCTGTCCACGGGTATCACGGCCGACCTGGAGCCCTGGCACCAGTGCCTGCTGGCGGCCCTGATGTTCCTGGGCCGGCTCGGCCCCATCACGCTCGGGACGGGGCTGGCGCTCCGCCAGCGCCGGCGGCTCTACCGGCTGCCCGAGTCCGCCGTCGTCATCGGCTGAMRSRTLRRLVGRRRPSSGTSPASLRRRPAQVVAAGFLGAIAVGTLLLSLPVATTGRTATLVEAFFTATSAACVTGLVVVDTETFWSPFGQVVILALIQVGGFGVMTVATLLGLLLWRRMGLRTRLVAAESTHTIGLGEVRRVMLGALRLTLVAEASLAAVLAVRLVIGYGEPVGHAAWSGVFHAVSAFNNAGFSLYADSLVRFVSDPWVCLPISAAVVVGGIGFPVLVELTRRIRIGDRTRPLVLHPRRWSVHTRLTLLMTASLLGVGTAFFLAVEWANPRTLGALDVPGRFMAAATQSVMARTAGFNSIDTTAMDHGSWFFTDVLMFVGGGSGGTAGGIKVGTMAVLAVVVWAELRGDPDVTAFDRRVAQVVQRQAVTVTLVAAAAVAVVTLLITTSVPASAVSLDRILFEVVSALSTTGLSTGITADLEPWHQCLLAALMFLGRLGPITLGTGLALRQRRRLYRLPESAVVIGPGPT0002735_3072DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498NANA
AK018_003991569prmC_1Release factor glutamine methyltransferaseGTGACCCTCCCGGCGCCGTCCGGCGACGTGACCGCGCTGCGGTCCGCGCTGGCCGCGGCGGAGTACACCGTCGACGGTGTCGAGGACCTGCTGGGTCCGCTGGCCTCCGCCGCGCTGCACCGCGAGCAGACCGTCCCCGCCGAGCGGGTGCTGGCCCGTCGGGCCGACGACCCCCGGGCGACCCTGGCACGACTGTTCCTGCTCGGGCAGGAGACCACCCGCGGCGCGCTCGACGCCGCGCTGCCCGACGTCGGCGCCGCCGGTGCGCGGCGGCTCGGGCTGGTGGAGACCGCCGGGGCGGGTTCCGCGGACGCCGTCCGGGCGACCTGCGACCTGCGTCCGTACGCCGCGACCGACGCGGGCGGCCCCGTGCAGTGGTGGCTGGCCAGCGACCTGGGCGAGCTCGCGACGGGGCGTCGCCTCGCCGCCGACCACGTCCTCGGCGCGGGCGGTGCCTCGACGACGCTCGCGCAGGTCACGGTGCGCACCCCGGTCTCGCGGGTGCTCGACCTGGGCACCGGCTGCGGCATCCAGGCGCTCCATGCCGCCCGGCACGCGGAGACGGTCGTCGCCACCGACGTCTCGACGCGCGCGCTGGACTACACGCGCTTCAACGCCGCGCTGAACGCGGCCGACGCCGCCCTCGACCTGCGTGCCGGCTCGATGCTCGACCCCGTGCGCGACGACCGGTTCGACCTCGTCGTGTCGAACCCGCCCTTCGTCATCACGCCGCGGTCGGGCGCCGCCGGTGCCGCCGTGGACGCGGCCATCGGCGCGTTCGAGTATCGCGACGGCGGGCGGTCCGCCGACGACCTCGTGCGCGACCTCGTCACCGGCGTCGGCGCCGTGCTGGCCCCGGGCGGGGTGGCCCAGATGCTCGTCAACTGGGAGCACCGGCGCGGCGAGCCGTGGACCGAGCGGGTCGGCGCCTGGCTGGACGCCTCCGGTCTGGACGGCTGGGTGATCGAGCGCGAGCTGCTCGACCCGGCCGAGTACGCCGAGACCTGGATCCGCGACGGCGGCACGACCCCCGACCGCGAACCCGAGGCCTGGGCCGCCGCCTACGGTGCATGGCTGGACGACTTCGCCGCGCGGGACGTCGAGGCCGTCGGCTTCGGCCTCGTCACGCTGCACCGACCCGTCGCCGGCGAGCCGACCCTGCGTCGGCTCGAGGAGCACCACGGCACGCTGCGTCAGCCCCTGGGCGGGCACGTCGCGGCGTCGCTGGCCGCGCACGACTGGCTCGAGCAGCGCACGGACGCCGAGCTGGCCGCCGAGCGACTCGTCGTCGCCGGCGACGTCACCGAGGAGCGCTACCTCACTCCGGGGGCGAGCGACCCGAACGTCGTCGTCGTGCGCCAGGGTGACGGGCTCGGACGCGGGATCCAGGCCTCCACGGGGCTCGCGGCGTTCGTCGGGGTCTGCGACGGCGAGCTGACCGTCGGCCAGATCGTCGGCGCGCTCGGCGCCCTGCTCGAGGTGTCCGCGGACGACCTCGCCGCGGAGCTGGTGCCCGCGGTGCGCGGCCTCGTGCGCGACGGGTTCCTCGCGCCGGCCGACGCGTCCTGAMTLPAPSGDVTALRSALAAAEYTVDGVEDLLGPLASAALHREQTVPAERVLARRADDPRATLARLFLLGQETTRGALDAALPDVGAAGARRLGLVETAGAGSADAVRATCDLRPYAATDAGGPVQWWLASDLGELATGRRLAADHVLGAGGASTTLAQVTVRTPVSRVLDLGTGCGIQALHAARHAETVVATDVSTRALDYTRFNAALNAADAALDLRAGSMLDPVRDDRFDLVVSNPPFVITPRSGAAGAAVDAAIGAFEYRDGGRSADDLVRDLVTGVGAVLAPGGVAQMLVNWEHRRGEPWTERVGAWLDASGLDGWVIERELLDPAEYAETWIRDGGTTPDREPEAWAAAYGAWLDDFAARDVEAVGFGLVTLHRPVAGEPTLRRLEEHHGTLRQPLGGHVAASLAAHDWLEQRTDAELAAERLVVAGDVTEERYLTPGASDPNVVVVRQGDGLGRGIQASTGLAAFVGVCDGELTVGQIVGALGALLEVSADDLAAELVPAVRGLVRDGFLAPADASNANANANANA
AK018_00400486hypothetical proteinGTGCTGACCGTCGGTGCCTGCAGCAGCGGGGACCCGAGCTCCGAGGGCTCCGGCGCGCCGGCGTCGGCCGAGCCGATGCCGGCCATCTCGATCGGGTCGGACCTGACGATGAGCGGCGACGGTGACGGGGGCGGATCCGCCCCCTCGCCCTCCGTGAGCGAGGAGTGCCTCGAGCTGCAGCAGGTCTGGGCCGACACCAACCGCGCCCTGGCCGGCATCGACGAGGAGCACCCGCGAGCGCTCGTCTCCGGTTTCCGCGAGGCGCACCGCGCGATCACCTCGATCGACGCCCCCGACGTCGAGGGCTGGTCCGGCATGACCGTGTACCTGGACAGCGCCGTGAGCGCCCTGGCCGACGTCGACACCGACGACGCCGACGAGGTCGCCTCGGTCATGACCCTGACCTTCTCCGAGGCCGACACCGCCCGTGCCGCGACCGCGCACGGCCAGGTCACCGAGTACCTCGGCGGCGGGTGCCGCGAGTGAMLTVGACSSGDPSSEGSGAPASAEPMPAISIGSDLTMSGDGDGGGSAPSPSVSEECLELQQVWADTNRALAGIDEEHPRALVSGFREAHRAITSIDAPDVEGWSGMTVYLDSAVSALADVDTDDADEVASVMTLTFSEADTARAATAHGQVTEYLGGGCRENANANANANA
AK018_00401795hypothetical proteinGTGCACGACGACGTCCCCGCCCCGGACGGTGTCGACGCAGGTCAGCCTGGTGCGGTGGGACCGCCCGCCGGCCTTCCGTGGGTGCCCACGGCGGTGGCCACCGACGTGCCGCCGCTCGACGACGTGCTGACCGGTGCGGCCGCACCTTCGGCGGCCGCGAGTCCTGGCGACGGCGCGAGCCGCCGTCGTCGCAGCCGGTCGGCCGGCGTGCCGGGCCGCGCCGCCGGTGCCGGTCGTGACGCCGCCGGCCACGTGGTGCACCGCGCCGCGGGGCTGCGGCGACGCGGCGTCGCGTTCGCCCGGACCCGTCCCTCCGGCCGGTTCGCCCGCCGCAGCTCCCTGCTCGTCGCGACGGCCCTCGCGCTCGTCGCGGGCGTGGGTGCCGGTGCCGGGCTCGACGTCGTCGGCGGGGCGGGCGACAGCGTGCCCGCCCCGACCGCCGCCCTGCTGACCACGGAGCCGGAGACCTGCGCGACCGCGCAGGTGGCGTGGTCACGGGCGGCGGCCGCCCAGGTGCAGATGGACCTGGAGTCGCCGAGGTCGCTGCGCACGGGGTTCGTCACCGCGCGCGACGCGCTGACCGGGTTGACGCCGCCGGCCGAGGTGGCGGCGGACTGGTCCACCGTGGCCACCTACGTGACCGTCGTGGCCGATGCCGCCGAGGAGGCGAAGAACTCCGAGGTCGAGGCCGCGGTGGCCGAGGCGATGTCGGGTCTGGACACCGCGGCCATGACGACGGCCTCCGAGCGGGTCACGACGCACCTCGCCGCCGACTGCGCCACGCCGGCGCAGTGAMHDDVPAPDGVDAGQPGAVGPPAGLPWVPTAVATDVPPLDDVLTGAAAPSAAASPGDGASRRRRSRSAGVPGRAAGAGRDAAGHVVHRAAGLRRRGVAFARTRPSGRFARRSSLLVATALALVAGVGAGAGLDVVGGAGDSVPAPTAALLTTEPETCATAQVAWSRAAAAQVQMDLESPRSLRTGFVTARDALTGLTPPAEVAADWSTVATYVTVVADAAEEAKNSEVEAAVAEAMSGLDTAAMTTASERVTTHLAADCATPAQNANANANANA
AK018_00402522hypothetical proteinATGTGGGTAGCACCCGAGAAGGATCCGCGCACCACCGGGATCGACCCGGTCGGAGAGAAGGAGACCCTCTGGGAGTACCTCTGCCGGTACCGGATGACCCTCGTGATGAAGTGCGAGGGTCTCGACGCCGACCAGATGGCGCGACGCAGCGTGTACCCGTCGTCCCTGTCCCTGCTCGGCCTCGTGCGTCACCTCGCCAACGGCGAGCACCACTGGTTCTCCCGCGTCCTGGGCGGTTCGACCGCCGACGGACCCTTCGAGCGCCCCGGTGTCGAGGACGTCGAGTTCGACGAGGCCGTCGGCACCCCCGAGGCCGTGACCGAGGCATGGGAGGCCTGGCACCGAGCGGTCGACGCCGCCGACGAGCTCATGGTCGACGAGAGCCTCGACCGGGAGGTCCCGTTCGACGACGCGACCGTCGAGGTGCGCGACGTCGTCATCCACATGGTCGAGGAGTACGCCCGCCACATGGGCCACGCGGACCTGCTGCGCGAGTGCATCGACGGTCGCGTGGGGCTCTGAMWVAPEKDPRTTGIDPVGEKETLWEYLCRYRMTLVMKCEGLDADQMARRSVYPSSLSLLGLVRHLANGEHHWFSRVLGGSTADGPFERPGVEDVEFDEAVGTPEAVTEAWEAWHRAVDAADELMVDESLDREVPFDDATVEVRDVVIHMVEEYARHMGHADLLRECIDGRVGLPGPT0031940_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-POLYENE_AMPHOTERICIN_B_METABOLISM,PGPT0031940-amphORF1-NANANA
AK018_00403414hypothetical proteinATGGCAAAGGCTCGCTGGAAAATTCCGCTCAAGATCCTGCCGTACTGGGGGCTGATCACCCTGACCTTCGGAATTGCCGGCTGGTTGACGGGCGACATGGAGCTCGGTGTGATCGCATCGCTGTTCGCGGTCAGCCTGCTCTGGTTCCTCTTCCGAGCCCCCAACCCGTGTGGCGCATCGGTCCGGGCTGCGGGGAGGACCTGCCGAAACAATGCCCGCGGCGTTCTTCGTGGCTGCCATCTCCAGCAGCACAAGTGGCAACGCGCGCGCACGTACTTCATCCACCCTCGAGTGCGGGAGTGCTTCGCACAGCTCTTCGCCAGCCCGGTGACCGGACTGGCGAGCCTCGGGGCGATGGTCACTCTTGTCTCGACGGTGATCAGCACCAGCCTGGCACTGGCGGCAGCGCAGTAGMAKARWKIPLKILPYWGLITLTFGIAGWLTGDMELGVIASLFAVSLLWFLFRAPNPCGASVRAAGRTCRNNARGVLRGCHLQQHKWQRARTYFIHPRVRECFAQLFASPVTGLASLGAMVTLVSTVISTSLALAAAQNANANANANA
AK018_00404975ccpA_1COG1609Catabolite control protein AGTGCCCGCCGCCTCGCCCCGACCCCGACCGACGCTGCGCGACGTCGCCGCGACCGCCGGGGTGTCGAAGTCGCTGGCGTCACTGGCGCTGCGCGGCGACCCGGGCGTCTCCGAGAGCACCCGCGACCGCATCCTCGCCGTCGCCGAGCAGGTCGGCTACCGCCCCTCGCTCAGCGCCCGCACCCTCAAGCAGGGCCGGTCGATGCTGCTCGGCGTGGTCATCTCCAGCCTCGAGAACCCGTACCACACCGAGATCGTCGCCTCCGTCGAGGACGCCGCCGAGCAGGTGGGGCTGTCCGTCGTCCTCGCCCACGGGTCCCGCGACCGCGGACGGCTCGCCGACCGGGTGCAGCAGCTCGGCGACCTCGGCGTCGACGGGCTCGTGGTGGTGTCGTCCTGGGTCCCCGACGAGGTGCTGACCGCCGCCGCGCGCCGCCTGCCGGTGGTCATGGTCGGGCGCACGGCGGACCCGGTGGCCGGCGTCGACTCCGTGACCAACGACGACGAGCAGGGCGCCGCCCTGGTGGTCGACCACCTCGTCGGCCGGGGGCACGAGCGGATCGCCCACGTGACGTCGTCGACCCGCCCCGCGGGCCTGGCCCGCCGTCGCGGGTACGAGGACGCGATGCGCCGCGCGGGGCTGGGCGGCCACGTGCGTGTCGCGGCGCCGGACGCCGTCGACGGCCTGCTCGACGACGGCTACCGGGCGGTCTTCGCCCGCAACGACGTCGAGGCCTGCGACGTGCTCGACCGGGCGCTGGACCGGGGGCTGCGCGTCCCGGACGACGTCGCCGTCGTCGGGTACGACGACACCCTGCTCGCGCGCCGGGTACGGCCCGCCCTCACCACGGTCCAGCAGCAGCGCGAGGTGATGGGCTCACGGGCCGTCGCGCTGCTCACCGGACGGCTCGGCGGGCGGTCCGACGACGTGCACGAGGTGCTCGAGCCCCGGCTGGTAGTGCGCGCCTCGGGCTGAMPAASPRPRPTLRDVAATAGVSKSLASLALRGDPGVSESTRDRILAVAEQVGYRPSLSARTLKQGRSMLLGVVISSLENPYHTEIVASVEDAAEQVGLSVVLAHGSRDRGRLADRVQQLGDLGVDGLVVVSSWVPDEVLTAAARRLPVVMVGRTADPVAGVDSVTNDDEQGAALVVDHLVGRGHERIAHVTSSTRPAGLARRRGYEDAMRRAGLGGHVRVAAPDAVDGLLDDGYRAVFARNDVEACDVLDRALDRGLRVPDDVAVVGYDDTLLARRVRPALTTVQQQREVMGSRAVALLTGRLGGRSDDVHEVLEPRLVVRASGPGPT0014791_439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_004051743gph_1Phosphoglycolate phosphataseGTGACCATCGCCCCCAGCCCCGAGACCACGTCCCTCGACACCCGCGCCGCCGCCCTGCGCACCCGACCCGCCGCGCTGCTGCTCGACTTCGGCGGGGTGGTGCTGACGACCCGCAAGCGGCCCGGCGGCAGCGAGGAGATGGCCCGCCACCTGAAGGCGGTCCTCGCCCGGGCAGGTCACCACCGCAGCCACGCCGAGCTGGTCGAGCTGCTGCGCGGCGGCCGGACGGCGCTGAAGGACTGGAAGAACGCCTCCTCGCGCCGTCTGGCTCCCACCGAGCTCGACCACCGCACGATCTGGCGCGAGTTCTACGGCTCCCCGCTGACCGCCGCAGAGCGCGAGGTCCTGGCCGGGTCGGCCGGCTTCCTCCAGGAACGCCTGACACGGACGCTGACCGACCACACCGTCCGGCCCGGCGTGCGCGAGCTGCTCACCACGGCCCAGGAGCTGCAGGTCCCGGTGGGCATCGTCTCCAACGCGCACTCCGGCCGGGCGCACCGGGCGATCCTCGCCGAGCAGGGGCTCACCGGCGCGTTCGCCGTGCAGGTCTACTCCGACGAGGTCGGCATCCGGAAACCCCACCCGGGCATGATCGAGCTCGCGGCAGCGGCTCTCGGCACCTCGGCGGAGGCGTGCTGGTACGTCGGGGACACCTACGACCGCGACGTCGTCGCCGGACGGCGCGCCGGCGTCGGGGCCGTGCTGCTCACCCGCGACCACCACACCGCCCACCCCCCGTTCGCGGTCGCCGACCGGCCCGACGTCGAGCTGCCCGACCCGGTCGGGCTGACCGAGCTGCTGCGCGCCGCCGAGCCCGCCGGCCCCTCCGACGCGTCGCGGACGGCGTACGGCACGGACCGCGCGGGCCTCGACACCCCGGCCGAGACGCCGGGGCGGGGAAGCGGGGTCAGCGCCCTCCTGCTCGATCACGGCGGCGTCATCTCCGTCTCGCACCGGGACGAGGAGACTCGCCGCAACTTCGCCGCCGACTTCGCGGAGCGCCTGTGCCGCGCCGGGTACCCGACCACGACGGACGAGGCCCTCAGCGTCCTCGAGCAGGCCCGCGCCGCGCACAAGGCGTGGAAGGCCGACCACGAGGCGGCCCGCCCCACGCCGGGCGACCCGTCCGGGCTCGTCACGGCCGAGATCGACGCCCCGACGTTCTGGGTCGACCTCGTCGGCCCGGGCCTCGACCGGCACGGCCCCGGGGTGCGGCACTGGCTGCGTGCCGAGGCGCACGCCCTCATGGTCGGCTACGCCCGCACCAAGTCGGTGCCCACCCTGCGGCCGGGTGTGCGCGAGCTGCTCGGCACCGCCCGTGCCGCCGGGGTGCCCGTCGCCGTCGTCTCCAACACCGTCTGCGGCCGCGCCGTGCGCGAGGAGCTGGTCGAGGCGGGGCTGGACGACCTCGTCGGCGCGCACGTCTACTCCGACGAGCTGGGCGTGCGCAAACCCGACCCGACCACCGTGCGGACGGCCCTGACGGCGCTGGACGCCGACCCGGCCCGCGCCGTCTTCGTCGGGGACAAGCCGCACCGCGACGTCGTCGCCGCCCGGGCCGCCGGCGTCGGCACGACGGTGATCGTGCGGGGCGGCACCACCGACGACGCCGCGCTGGACGCCCTGCCGCACGGCGACCCGCGCACCCCCGACCACCTGGTCGCCTCGATGGAGGACGTCGACGCCCTGCTGGGCCGCGCCGTCCGAGGCGACCGGGACACCGACGCCGGCATCCGCCGGTAGMTIAPSPETTSLDTRAAALRTRPAALLLDFGGVVLTTRKRPGGSEEMARHLKAVLARAGHHRSHAELVELLRGGRTALKDWKNASSRRLAPTELDHRTIWREFYGSPLTAAEREVLAGSAGFLQERLTRTLTDHTVRPGVRELLTTAQELQVPVGIVSNAHSGRAHRAILAEQGLTGAFAVQVYSDEVGIRKPHPGMIELAAAALGTSAEACWYVGDTYDRDVVAGRRAGVGAVLLTRDHHTAHPPFAVADRPDVELPDPVGLTELLRAAEPAGPSDASRTAYGTDRAGLDTPAETPGRGSGVSALLLDHGGVISVSHRDEETRRNFAADFAERLCRAGYPTTTDEALSVLEQARAAHKAWKADHEAARPTPGDPSGLVTAEIDAPTFWVDLVGPGLDRHGPGVRHWLRAEAHALMVGYARTKSVPTLRPGVRELLGTARAAGVPVAVVSNTVCGRAVREELVEAGLDDLVGAHVYSDELGVRKPDPTTVRTALTALDADPARAVFVGDKPHRDVVAARAAGVGTTVIVRGGTTDDAALDALPHGDPRTPDHLVASMEDVDALLGRAVRGDRDTDAGIRRNANANANANA
AK018_00406969hypothetical proteinATGTCCAGCGACGTCACCGCGGCGGGCACGGCCCGCGCCCGGCTCGCCGATCCCCGCACGCTGTCCGGTTCCCAGAAGCTCATGATCCTCGTGCTGTCCATGACCCTGTACGGCGTGGGCGACATCGTCGCCAGCGTCGTGCCGGAGTTCCAGGTCGGACCGCTCGAGCTCGGCGTCTCCTACTTCTCGTTCATCGCCGTCGTGCTCGCGGCCCTGCTGTCGCCGTTCTGGGTCGCCGTCGGCGCCCCGCTCGGCGAGCTCGTGTTCTCCGACATGCTGCTCGGGGACTTCTCCGGGTTCGGTGAGCTGGAAGGCTTCCTGCAGACCGCCCTGGCGATCTACGTCGCCGGCTGCCTGGTGCGCAACCCGCTCAACCGCGTCCAGGTCGCCCTGGCACCGGTCGTCATGGTGCTGATCGACAAGATCTCGGGTGGCCTCGTCGACATCACCAAGGTCCTCATCGGCATCGACCCCGAGACCCTCGAGGAGGCCGACGGCCTCGTCGGCGCGTTCCTCCTCGCCGAGGGGCTGGACATCGTCGTCACCGTGGTGTTCTCGGGCATCCTCTTCGGCGCGCTGCCCGCCCTATGGCTCACCCCGCGCCTGTACGGGAAGCTCGAGCCGATCATGGGGCTGCGGCCCCGCGACCCCGAGCACCCGCCGCACCTGTCCGGCCCGCGCGGAACGCGGTTCTGGCCCGTCGCCGTGCTGGCCTTGGTCGCCGCCGGGGCCCTCGCCCTGCTGGCCCAGTGGGAGGAGTTCGTCGGCCGGGAGGGCGGCATCTCCACCATCGGCGCCTTCGAGCCCGACTACGTCGACCAGTACGGCGACGTGTGGCTCTGGATCGCCGCCGGCGTCGCGCTCGTCGTCGGCCTCGTCCTCTTCGTCCTGGTCGCCGCGCTGCGGCGCCGCCGCTCGCCCGGCACCGCCGACGTCCGCAGCTCCGACGACGACGAGGCGTCCTTCTGAMSSDVTAAGTARARLADPRTLSGSQKLMILVLSMTLYGVGDIVASVVPEFQVGPLELGVSYFSFIAVVLAALLSPFWVAVGAPLGELVFSDMLLGDFSGFGELEGFLQTALAIYVAGCLVRNPLNRVQVALAPVVMVLIDKISGGLVDITKVLIGIDPETLEEADGLVGAFLLAEGLDIVVTVVFSGILFGALPALWLTPRLYGKLEPIMGLRPRDPEHPPHLSGPRGTRFWPVAVLALVAAGALALLAQWEEFVGREGGISTIGAFEPDYVDQYGDVWLWIAAGVALVVGLVLFVLVAALRRRRSPGTADVRSSDDDEASFNANANANANA
AK018_004071785ykoD_1COG1122Putative HMP/thiamine import ATP-binding protein YkoDATGGCCGACGACCGCGACGCAGCACCGGCCGTGGAGGTCCGCGACCTGACGTTCCGGTACCCCGGAGCCGCGCAGGACTCCCTGCACGGGGTGGACCTGACGATCGAGGCCGGTGACTTCGTCGCGGTCGTCGGCGGCAACGGGTCCGGCAAGACGACGCTGTGCAAGACGTTCAACGGACTCGTCCCGCACTTCTGGAACGGCGACATCTCCGGCCGGGTCAAGGTGGCGGGCCGCAGCACGGCGCGACGCACCGTCGGCGAGATCGCCCACGACGTCGGCTACGTCTTCCAGGACTTCGGCAACCAGCTCGTGCGGCCCACCGTGCGCGACGACGTCGCCTTCGGCCCGCTGAACTTCGGGCTGGCGGACTGGGAGGCGCGGACCGATGCGGCGCTGCGCGCCCTGGAGATCGCCGACGTCGCCGGCACCCACACCTGGCAGCTCTCGGGCGGGCAGCAGCACCTGACGGCGCTGGCCGGTGCGCTCGCCCTGGCCCCGTCGATCCTCGTCGTGGACGAACCCGCGGCGGAGGTCGACCCGCGGCGGGCCGCCGCGGTGTACGAGCACCTGACCCGCCTGAACGAGCAGGGCGTCACGGTGGTCGTCATCGAGCACCACGCCGAGCTCATCGCCCGCTACGCGCGCAGCGTCGTGCTCATGGACGCCGGGCGGGTGCGCTGGCACCTCCCGGTCGACGAGGCCCTGGCCCGCACGGCCGACCTCGCCGAGGCCCACATCCCGGCGCCGCAGGTCGTCGCGCTGGCGCAGGAGCTCGTGCCCGACGTGGCCGCCGGCCGGCGACGACCGCCGCTGACGATCGAGGCGTGCGCCGAGATGCTGCGGGACGCGGGGCGGTCCGAGCAACCGGGTGCAGCGCTGCTGCGTGCTCCGGACCACCCCGGGGCCGTCGGGTCCCCCGCACCCGGGTCGGCCTCCGGTCCTCCCGCCGGGTCCGACGTCGTCGCCCGTCTGGACGACGTGCGGTACGGCTACCGCACGATCTCGGGCGGCAAGCACACCGTGCTGGACGGCTTCGACCTCACGCTGCGGGCCGAGGAGCGCATCGCCCTGGTCGGCTCGAACGGGGCCGGAAAGTCCACGCTGCTGTCCCTGCTGTCGGGGCTCGCCGTCCCCGAGGCGGGCGCCGTCGAGGTGGCCGGCCGCGACACCCGCAGCGTGTCCGCCGCACAGCTCTCCTCCCAGGTCTGCTACCTCCTGCAGCGGCCGGAGGAGATGTTCCTGACCGACTCCGTCCGCGCCGACGTCGCGATGCACCCGTCCGGGCGGCAGGTCCCGGACGCCCGGGAGCTGGTCGACCAGGTCCTGGACCGCACCCGGCTGACGGAGCTCGCCGACCGGGACGGCCGGCTGCTGTCCGGAGGCCAGCAGCGCCGGGCGACCCTCGCCGTCGGACTCGCGATGCGGCCGCGGCTGCTCCTGCTGGACGAGCCGACGTCGAGCCTGGACCTGCGCTCGCGCGACGACGTGATCGACATGCTCTCCGCCCTCGCCGAGCACATCCGCTGCACGGTCGTGGCGACGCACGACATGCACCTCGTCGCCGAGTGGGCGGACCGCGTCGTGGTGCTCGACCAGGGCCGCGTGGTCGCCGACACCGACCCCGCGACGTTGTTCGCCTCTCCCGACGTGCTGCGCCGGGCCCGGCTCGTGCCACCGCAGGTGACCCAGATCGGCCACGCCCTCGGGATGGACCCGCTGCCGCTGTCCGTCGCCGAGACGACCCGGAGACTCGCCCCGCTGCCCACCGAGGAGCTCGTATGAMADDRDAAPAVEVRDLTFRYPGAAQDSLHGVDLTIEAGDFVAVVGGNGSGKTTLCKTFNGLVPHFWNGDISGRVKVAGRSTARRTVGEIAHDVGYVFQDFGNQLVRPTVRDDVAFGPLNFGLADWEARTDAALRALEIADVAGTHTWQLSGGQQHLTALAGALALAPSILVVDEPAAEVDPRRAAAVYEHLTRLNEQGVTVVVIEHHAELIARYARSVVLMDAGRVRWHLPVDEALARTADLAEAHIPAPQVVALAQELVPDVAAGRRRPPLTIEACAEMLRDAGRSEQPGAALLRAPDHPGAVGSPAPGSASGPPAGSDVVARLDDVRYGYRTISGGKHTVLDGFDLTLRAEERIALVGSNGAGKSTLLSLLSGLAVPEAGAVEVAGRDTRSVSAAQLSSQVCYLLQRPEEMFLTDSVRADVAMHPSGRQVPDARELVDQVLDRTRLTELADRDGRLLSGGQQRRATLAVGLAMRPRLLLLDEPTSSLDLRSRDDVIDMLSALAEHIRCTVVATHDMHLVAEWADRVVVLDQGRVVADTDPATLFASPDVLRRARLVPPQVTQIGHALGMDPLPLSVAETTRRLAPLPTEELVNANANANANA
AK018_00408882ecfT_1Energy-coupling factor transporter transmembrane protein EcfTATGACCACCGCCGACGTCGCCGCACCGCACGGCACCTCCCCCGAGGTCGCGCCGGGCCCGACCGGGACCCGGCACCGGACCGGTCTCGACCGGGTGTCGGTCGAGTGGGTCAAGCTCGAGCTGATGCGCGTCGCCTACGCCACGCGCGGCGGGTTCCTCGCCCGTCGCGACCCGCGGGCCGTCCTGGGCTGGTACGCGCTGTGCGCGCTGGCCCCCTGGTTCACCTACTCCACGCCGATCCTGGTCGTCCTCTTCGTCCTCGCGCTCGGCTGCGCCCTGGCGGCACGGATCGGCCCGCTGCTGCTGGGCCTGTTCACGCTCGGGCTCGTGGGGCAGGCCGCCTACGTCCTGGTGCTCGTGCTCGTCCTCGGCGGCGACACGACGGCGCTCGACGGCCTGCTGCAGATCTCCCTGAAGCTCGGGGCGGTGTCGCTGGCCAGCATGGCGGCGTTCGTGTCGCTCGACCCCGAGAAGCTGTCCGACGGGCTGCAGGCGATGCGGGCGCCCGCCGTGCTCGGCTTCGCCATCAGCTACGGCTACCGCATGGTGCCGCTGCTGATCGACGAGTTCCACGACATCGTCGACGGCCACCGGTTGCGCGGGGCCCCGCACCAGGGGCACGGGTTCCTCGGGTGGCGGACCATCGCGCGGATCGGCCGCATCGCCGTGCAGGCCTTCTACCCGCTGTTCCTCAACACCGCGCAGCGCACGCGGACCACGGTCGAAGCGATGGAGACCCGCGGGTTCACCAGCGCCGGCCCGTCGCCGGCCGGACGTCGGCTGCGGCTGGCGTACCTGCGCTGGCGCGTGGGCGACACGCTGCTGCTCGTCGTCAGCGTCGCCGTCGTCGTCGCGGTCTACACGGTCCTGCCGACCCCCTGAMTTADVAAPHGTSPEVAPGPTGTRHRTGLDRVSVEWVKLELMRVAYATRGGFLARRDPRAVLGWYALCALAPWFTYSTPILVVLFVLALGCALAARIGPLLLGLFTLGLVGQAAYVLVLVLVLGGDTTALDGLLQISLKLGAVSLASMAAFVSLDPEKLSDGLQAMRAPAVLGFAISYGYRMVPLLIDEFHDIVDGHRLRGAPHQGHGFLGWRTIARIGRIAVQAFYPLFLNTAQRTRTTVEAMETRGFTSAGPSPAGRRLRLAYLRWRVGDTLLLVVSVAVVVAVYTVLPTPPGPT0004015_799DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0004015-fmnA|ecfT-K16785NANA
AK018_004092643hypothetical proteinATGTCTCTGCAGCGCACCATCGCCGGGCTCAGCGGCGCCGCCGTCGCCCTGTCCGTGCTCGCCGTCCCGGCGGCCGTCGCGGACGAGCCCGACGCCTCGCCGGCGGACGGCGGCCGCGGCCCGGAGGGGACCCCGGCCACCACGGGGAAGTCCTTCGCCGAGCTCGTCCAGGCCGCCAAGACCGGCCCCGCGGCCAAGGCGACCGACGGCTCCCTGGAGATGCCGACGTCGTACCCGTACCAGCCCGAGCTGACGGTCTACGACCCGGTCGAGGGCGACGTCACCGAGCGCAACGAGACGATCGCCTACTCGGACATCGCGCCCCGCCTGGCCGAGCTCATGGCCGCCAGCGACCGGGTGTCCACGCAGGTGGTCGGGCAGTCGACCGCCGGCCGCGACCTCTACCTCGTCACCGTGACGGCGCCCGAGACGCGTGGCGAGACCAACCGGCAGACCCGGTGGCGCGAGGAGATCCGCCAGGACCCGGAGCGCGCCGCCGCCGACGCGCAGCTCGCGGCGGGGTACAAGACGCCGCTGTGGATCAGCGCGAACATCCACGGCAACGAGTGGGAGGGCACCGACGCGGCGATGCAGGTCATCGCCGACCTCGCGAGCTCCGAGGACCCGGCCACGGCCGAGCTGCTCGAGAGCCACCGGCTCTACTTCTCGGTGTCGCTCAACCCCGACGGCCGCACGATCGGGACCCGGGCCACCGAGCTCGGGTTCGACGCCAACCGCGACATGGTCACCGGCGCTACGCCGGAGGCGCGCTCGTTCGTGGCGACCGCCCAGACGCTCCAGCCGCTCTACGCCGCCGACTTCCACGGCTACACCGGCGTGCTCCAGGTCGAGCCCTGCGGGCCGCCGCACGGCGACAACTACGAGTACGACCTGTTCATCCCGCACGGCTACGCGCTGGCCCAGCAGGTCGAGGCCGACGTCGTGGACGCCGACATCGAGGGCAACACCTACTTCGACACCGAGACGGGTCGGTCGACCGACGAGAAGACCGGCCACATCAAGATCCCGTACCGCGACACCCCGAGCGGGTGGGACGACTACCCGCCGATCTTCACCGCGCAGTACGCGGCCTACCACGGCGCCGTGACCAGCACCGTCGAGCTGCCGCACGGCCGCTCCTGGTCGCTCGGGACGACCACCCCCGAGGACGCCGCGATCAACACCGAGGTCGCCCGCGTCACGATGGTCTCGATGCTCGACTACGTCGCCGCGCACAGCGACGAGATGCTCGCCAACCAGATCGAGACCTTCCGTCGCGGCGTCGAGGGCGCGCCCAAGGAGTCGCTGACCACCGAGACGATCGCCGACGTCGAGGGCCCCGACGCCTGGAAGGAGCTGTGGGACGTCACCGACGACCAGGAGCCGGTGGACCTGCCGCGCGCCTACGTCATCCCGGTCGGCGACGGCCAGCGCTCGGCGTCCGACGCCGAGGCCCTGGTCGACGCCCTGCTCTACCACGGGGTCGAGGTCGGGACGCTGCAGCGGTCCAGCGAGGTCGGCGGCGAGACGTTCCCCGCCGGTTCCCTCGTGGTCGACATGCACCAGCCGCGCCGCGGTCTGGCGAACATGCTCCTCGCCACCGGGTCGGACATCTCCGAGAAGCTGCCCACGATGTACGACATCTCGGCGTGGAGCCTCGCCGACCTGTGGGGCGCCACCGTCGTCGCGGTCGGCGACACGACCGACGCCGCGCTCGGCGGCACGACGTCGCTGCACCGCGTCCCGCAGGACGGCGTGCTGCCGAAGAAGGCCGACCACGTCGTCTTCGACCTCGCCGGCATCGAGGACTTCCGGGCCCTCAACGCGATCCTCTCCGAGGACGCCCCGGCGTGGCTGCTCGACGACGGTCGTGCCGTCGTCGGACCCGAGGGCCTGCCGGCCGCCGCCGACGCCGTGGTCACGTTCGACATCCCGTTCGAGGCCGCCACGGCCGCGGAGGTCGCGTCCCTGGACGAGGCTGCCGTGCTCGAGGACCTCACGGTCGCGTACACCGGCGGGTCCGACGACGTCGTGGCGCTGACGGACCTCGGGTTCGACGACCTCGTCCCGGTCTCCTCCTCCGGCGTCTCGGCCGGTGCGGCCGACGGCACCACGGGGCTCGAGGACGCCGACGTGCTGTGGGTCGGGTCGTCGTTCAACCCCGACGCGGCGGGCGACGCCGCCGTGCAGGAGTGGCTCGACGCCGGCGGGGCGATCGTCGGCGAGTCGACGTCCGGGTTCGCGGCGGCCGAGGCGTACGGCCTCGTCGAGGGCGACGCGGTGCGCGGGAACGGGCGTGGCAACGGGATCGTGGCGGTGGACACGCCGACCGGGTCGATCTTCGCCCCGCACCCGCAGGACACCTCGTTCGTCTACCCGGCGGTCTGGTTCACGGGCCTCGGGGAGGGCACGACGGTCGAGCTGGCCTACGACGCCGGGTCGCCGTTCCTGGCCGGGCACTGGAACGGCCTGTACGGGCCGGGCCAGGACGCGGCCGCCGGCCAGGCGGCCGTCGTCTCCGGCGAGACGGCCACGGGTGCCCGTGCCGTGGTCTTCGGTACGACGCCGTTCTTCCGGACCCACCCCAAGGGCGGGATGAGCCAGGTCGCCACGGCGATCTTCTGGGCCGCCTCGGGCGACTGAMSLQRTIAGLSGAAVALSVLAVPAAVADEPDASPADGGRGPEGTPATTGKSFAELVQAAKTGPAAKATDGSLEMPTSYPYQPELTVYDPVEGDVTERNETIAYSDIAPRLAELMAASDRVSTQVVGQSTAGRDLYLVTVTAPETRGETNRQTRWREEIRQDPERAAADAQLAAGYKTPLWISANIHGNEWEGTDAAMQVIADLASSEDPATAELLESHRLYFSVSLNPDGRTIGTRATELGFDANRDMVTGATPEARSFVATAQTLQPLYAADFHGYTGVLQVEPCGPPHGDNYEYDLFIPHGYALAQQVEADVVDADIEGNTYFDTETGRSTDEKTGHIKIPYRDTPSGWDDYPPIFTAQYAAYHGAVTSTVELPHGRSWSLGTTTPEDAAINTEVARVTMVSMLDYVAAHSDEMLANQIETFRRGVEGAPKESLTTETIADVEGPDAWKELWDVTDDQEPVDLPRAYVIPVGDGQRSASDAEALVDALLYHGVEVGTLQRSSEVGGETFPAGSLVVDMHQPRRGLANMLLATGSDISEKLPTMYDISAWSLADLWGATVVAVGDTTDAALGGTTSLHRVPQDGVLPKKADHVVFDLAGIEDFRALNAILSEDAPAWLLDDGRAVVGPEGLPAAADAVVTFDIPFEAATAAEVASLDEAAVLEDLTVAYTGGSDDVVALTDLGFDDLVPVSSSGVSAGAADGTTGLEDADVLWVGSSFNPDAAGDAAVQEWLDAGGAIVGESTSGFAAAEAYGLVEGDAVRGNGRGNGIVAVDTPTGSIFAPHPQDTSFVYPAVWFTGLGEGTTVELAYDAGSPFLAGHWNGLYGPGQDAAAGQAAVVSGETATGARAVVFGTTPFFRTHPKGGMSQVATAIFWAASGDNANANANANA
AK018_004102298hppA_1COG3808K(+)-insensitive pyrophosphate-energized proton pumpATGCTCACACTCGGGTCCGACAGTCTGACGATCGTCGCCGTCATCGCGGTGATCGCCCTGGCCGCCCTGGTCTGCGCGGGGACCCTGCGTCGCCAGGTCCTCGCCGCCGACGAGGGGTCCAGCGCGATGCAGGACATCGCCCAGGGGGTCCAGGAGGGGGCCTCGGCCTACCTCAACCGGCAGTTCCGCACCCTGGCGATCTTCGCCGTCGTCGTGTTCGGGCTGCTGTTCCTCCTGCCGGGCGACGGCGGGGTCCGGATCGGCCGGTCGGTCGCCTTCCTCGTCGGGGCCGGGTTCTCCGCCGCGATCGGCTACCTCGGGATGTGGCTGGCGGTCCGGGCCAACGTCCGCGTCGCCGCGGCCGCGACCGTGGCCGGTGGCCGGGCGCTCGGGGCCCGGATCGCGTTCCGCACCGGCGGCGTGGTCGGCATGTCCGTCGTCGGTCTCGGTCTGCTCGGCGCGGCCGGCGTGGTGCTGGTCTACCGCGGGGACGCGCCCGCCGTGCTCGAGGGCTTCGGGTTCGGCGCCGCGCTGCTCGCGATGTTCATGCGGGTCGGGGGCGGCATCTTCACCAAGGCGGCCGACGTCGGCGCGGACCTGGTCGGCAAGGTCGAGCAGCACATCCCCGAGGACGACCCGCGCAACGCCGCCACCATCGCCGACAACGTCGGGGACAACGTGGGCGACTGCGCCGGGATGGCCGCCGACCTGTTCGAGTCCTACGCCGTGACCCTCGTGGCCGCGCTCATCCTCGGCAAGGCCGTCATGGGCGAGCAGGGTCTCGTCTTCCCGCTGATCGTCACCGCCGTCGGGGCCTTCGTCGCCCTGCTGGGCGTCCTCATCACCCGCGTGCGGGGCAGCGAGTCGGGGCTGACCGCGATCAACCGCGGCTTCTACGTCTCGGCCGTCGTCGGCGCCGCGCTGGCCGCCGTGGCGGCGTTCGTCTACCTGCCGAGCAGCTTCGAGAGCATGGGCGGCACCGCCGACCTCGCGGGCGTCACGTCCGACCCGCGCGTGGTGGCCTCCCTGGCGGTGCTGATCGGCATCGTCCTGGCCGGTGTCATCCTGTGGACCACCGGGTACTTCACCGGCACCGAGTCCAAGCCCACCAAGCACGTCGCGGCCACCTCGCGCACCGGGGCCGCGACCGTGATCCTGTCGGGGATCGGCGTCGGCTTCGAGTCGGCCGTGTACACCGCGGGCATCATCGCCGCCGCCATCTGCGGCGTGTTCCTGCTGGCCGGGGGATCGATCTGGCTGTCGCTCTTCCTCGTGGCGCTCGCGGGCTGCGGCCTGCTCACCACGGTCGGCGTCATCGTCGCGATGGACACCTTCGGGCCGGTGAGCGACAACGCCCAGGGGATCGCCGAGATGTCCGGCGACGTCGACGAGGAGGGCGCGCAGACGCTCACCGACCTCGACGCCGTGGGCAACACCACCAAGGCCATCACCAAGGGCATCGCCATCGCGACGGCGGTCCTGGCCGCCACGGCCCTGTTCGGCTCCTACGCCGACGCGGTCGAGACGGCGCTGGGCGACGTCGCCGTGGCGGCGGACGGGCTGGTCGCCTCGATGCTCAGCTACGAGATCATCTCCCCGGTGACGCTCGTGGGCGTGATCCTCGGGGCCGCGACGGTGTTCCTGTTCTCCGGTCTGGCCATCGACGCCGTGACCCGGGCCGCCGGGGCGATCGTGTACGAGGTGCGGCGCCAGTTCCGCGAGCACCCGGGGATCATGACCTACGAGGAGCGCCCCGAGTACGGCCGGGTCGTGGACATCTGCACCAAGGACTCCCTGCGCGAGCTCGCGACGCCGGGTCTGCTCGCCGCGTTCGCGCCCATCGCCGTCGGGTTCGGCCTCGGGGTGGGTCCCCTGGCCGGCTTCCTCGCCGGGACGATCGGGGCCGGCGTGCTCATGGCGATCTTCCTGGCCAACTCGGGCGGCGCGTGGGACAACGCGAAGAAGATCGTCGAGGACGGCGCCTACGGCGGCAAGGGCTCGGAGGCGCACGAGGCGACGATCATCGGCGACACGGTCGGCGACCCGTTCAAGGACACCGCCGGACCGGCGATCAACCCGCTGATCAAGGTCATGAACCTGGTGTCGCTGCTCATCGCACCGGCGGTGGTCATGCTGTCCGTCGGCGGGGACGCCAACCACGTGGTGCGCATCGCCATCGCGTGCGTCGCCGCCGCCATCGCGCTCGGTGCCGTGGTGCTGTCCCGCCTCCGGGCGGCGCGCGTCGACCGCGAGACCGCGGCGGTCGAGGACCAGCCGGCACCGCTCTCGTCGCGCTGAMLTLGSDSLTIVAVIAVIALAALVCAGTLRRQVLAADEGSSAMQDIAQGVQEGASAYLNRQFRTLAIFAVVVFGLLFLLPGDGGVRIGRSVAFLVGAGFSAAIGYLGMWLAVRANVRVAAAATVAGGRALGARIAFRTGGVVGMSVVGLGLLGAAGVVLVYRGDAPAVLEGFGFGAALLAMFMRVGGGIFTKAADVGADLVGKVEQHIPEDDPRNAATIADNVGDNVGDCAGMAADLFESYAVTLVAALILGKAVMGEQGLVFPLIVTAVGAFVALLGVLITRVRGSESGLTAINRGFYVSAVVGAALAAVAAFVYLPSSFESMGGTADLAGVTSDPRVVASLAVLIGIVLAGVILWTTGYFTGTESKPTKHVAATSRTGAATVILSGIGVGFESAVYTAGIIAAAICGVFLLAGGSIWLSLFLVALAGCGLLTTVGVIVAMDTFGPVSDNAQGIAEMSGDVDEEGAQTLTDLDAVGNTTKAITKGIAIATAVLAATALFGSYADAVETALGDVAVAADGLVASMLSYEIISPVTLVGVILGAATVFLFSGLAIDAVTRAAGAIVYEVRRQFREHPGIMTYEERPEYGRVVDICTKDSLRELATPGLLAAFAPIAVGFGLGVGPLAGFLAGTIGAGVLMAIFLANSGGAWDNAKKIVEDGAYGGKGSEAHEATIIGDTVGDPFKDTAGPAINPLIKVMNLVSLLIAPAVVMLSVGGDANHVVRIAIACVAAAIALGAVVLSRLRAARVDRETAAVEDQPAPLSSRNANANANANA
AK018_004111308apeB_1COG1362putative M18 family aminopeptidase 2ATGGCTCCGAACGACACCTCCGTGCCCGACGCCGCCCGCGAGCATGCCGAAGACCTCGGCCGGTTCGTGACCGCGTCCCCGTCCTCGTACCACGCCGCCGCCGAGCTGGCCCGCCGCGCCGAGGACGCCGGGTTCGCCCGGCTGACCGAGACGGACGCGTGGGAGGTGGCCCCCGGCGGGCGCTACGTCGTCGTGCGCGACGGGTCCGCCATCGCGTTCACGGTCCCGCCGTCGGCCGGCCCGACGACGCCGTTCAGCATCCTGGGCACGCACACCGACTCCCCGGGCTTCAAGCTCAAGCCGCGCCCGACGACGGGCCGCAGCGGGTGGGTGCAGGCCGGCGTCGAGGTGTACGGCGGGCCGCTGCTCAACTCCTGGCTGGACCGTGAGCTCGAGCTGGCCGGCCGCGTCGTGACCCGCGACGGCGCCGAGCACCTGGTGCGCACGGGTCCGTTCGCCCGCATCCCGCAGCTCGCGATCCACCTGGACCGCAGCGTCAACGACGGCCTCGCGCTCGACAAGCAGCGCCACACCCAGCCCGTGCTCGGGCTCGGCGAGGTCAGCGAGCACGACGTGCTCGGCGAGCTCGCCGCCCGGGTCGACGGCGGGGCGGTCGACCCGGCCGACGTCCTCGGCTACGACGTCGTGGCCGCCGACTCCCAGGAGCCGCGTGCGTTCGGCGCCCGCGGCGACCTGTGGGCCTCGGGCCGTCTGGACAACCTGCTCTCGACGCACGCCGCGCTCACCGCGCTGCTCGGGGCGGACCCGGAGGACCTCACGGGCGTCGCCGTGGTCGCGGCCTTCGACCACGAGGAGATCGGGTCGGAGTCCCGTTCCGGCGCGGCCGGCCCGTTCCTCGCCGACGTGCTGGGCCGCGTCTCCCGCGCCCTGGGCGCGGGTGGTGAGGACCGCCGGCGGGCGCTGGCCGCCTCGTGGTGCGTGTCCTCCGACGTCGGCCACGCCGTGCACCCGAACTACCCCGAGCGCCACGACCCGTCGAACCACCCGGTCGCGTGCGGCGGGCCGATCCTCAAGATCAACGCCAACCAGCGGTACACGACCGACGCCCACGGGGCCGCGCTGTGGCAGTCCGCCTGCGCGGCGGCCGGGGTGCCCAGCCAGGAGTTCGTCTCCAACAACACCATCCCGTGCGGGTCGACCATCGGCCCGATCACGGCGACACGGCTGGGGATCCGGGTCGTGGACGTCGGCGTGCCGATCCTGTCGATGCACTCCGCCCGCGAGCTCACCGCCGTCGTCGACCCCTGGTACCTGGCGCGGGCGATGGGCGCGGTGCTGGTGCGCTGAMAPNDTSVPDAAREHAEDLGRFVTASPSSYHAAAELARRAEDAGFARLTETDAWEVAPGGRYVVVRDGSAIAFTVPPSAGPTTPFSILGTHTDSPGFKLKPRPTTGRSGWVQAGVEVYGGPLLNSWLDRELELAGRVVTRDGAEHLVRTGPFARIPQLAIHLDRSVNDGLALDKQRHTQPVLGLGEVSEHDVLGELAARVDGGAVDPADVLGYDVVAADSQEPRAFGARGDLWASGRLDNLLSTHAALTALLGADPEDLTGVAVVAAFDHEEIGSESRSGAAGPFLADVLGRVSRALGAGGEDRRRALAASWCVSSDVGHAVHPNYPERHDPSNHPVACGGPILKINANQRYTTDAHGAALWQSACAAAGVPSQEFVSNNTIPCGSTIGPITATRLGIRVVDVGVPILSMHSARELTAVVDPWYLARAMGAVLVRNANANANANA
AK018_00412831hypothetical proteinATGACCTCACCTCTCCGGCGGCTCGGTGCGACCGTGGCCGCGGCGACCGCCGTCGCCCTCGTCCCCGTCGCCGGGCTCCCGGCGACGGCCGCACCGGCCGCACCGGCCGCACCGGCCGCCCCGGCCGCCGCGGCGCCGCCGACCGTCGCCGCCGCGGGCACCGCCGCCGTCGGCCCCCTGCCGGCCGCCACCACGAGCACCGTCCGCTGGGTCAAGGCCGACCGCGCCCGCACGACGGCGAAGCGCAGCCCGAGCAGCCGGACGATCGCCCGTCCTGACGACGGCACGCGGCTCGTCGTGCTCGACCGGGCCCCGAATCGGCTGAAGGTCCGGCTCCCCAGCGGCAAGATCGGCTGGCTCAGCAAGAAGCGGGTCACGACCGTCCCGCTGCGGGACATCACCGGGGTGCGCTACACCGCCAAGCGGCTGCGCGTGACGAAGCACATCCGTGCGACGTCCCGGACGATCGGCTACGCCGACCTCGGGACCAAGGTCGTCAAGCGCGCCCGCACGACGCAGCGCGACGTGGACCGCATCAAGGTGCGGCTCCCCGGCGGACGAACCGGCTGGGTGCGCGAGGGGCGGTTCACCCGCCGCGACGTGTGGGGCGAGCTCGCGCAGTGCGAGTCCGGCGGCCGGGTGCGCATCAACACCGGCAACGGGTACTACGGGATGTACCAGTTCACGGCCAGCACGTGGCGTGCCGTCGGAGGCTCCGGGCTGCCGCACTACCACGGTGCGAGGGAGCAGACGAAGCGGGCGCAGATCCTCCAGCGGCGCGCCGGTTGGGGGCAGTGGCCGCACTGCACCAGCAAGCTCGGCCTGCGCTGAMTSPLRRLGATVAAATAVALVPVAGLPATAAPAAPAAPAAPAAAAPPTVAAAGTAAVGPLPAATTSTVRWVKADRARTTAKRSPSSRTIARPDDGTRLVVLDRAPNRLKVRLPSGKIGWLSKKRVTTVPLRDITGVRYTAKRLRVTKHIRATSRTIGYADLGTKVVKRARTTQRDVDRIKVRLPGGRTGWVREGRFTRRDVWGELAQCESGGRVRINTGNGYYGMYQFTASTWRAVGGSGLPHYHGAREQTKRAQILQRRAGWGQWPHCTSKLGLRNANANANANA
AK018_004132547hypothetical proteinGTGCCGTCCCGCGAACCCGCCGCCCCGCCCGGGGACAACCACCCCCTGGTGGACGTGCTGACCGCGCACGGGGCCCGGGCCGACCGCCTGACGCACCTGCGCACGCTCCCGGCCCGCGACGCCGAGCACGCCGACTGGCCGGGATGGGCCGATCCCGCCCTGGTCGCCGGCTGCCGCGCCCAGGGCGTCGAGCGGCCCTGGACCCACCAGGTGACCGCGGCCGAGGCGACGTGGCGCGGTCAGCACGTGGCGCTGGCCACGTCGACCGGGTCGGGCAAGTCCCTCGCGTTCTGGCTGCCCGCCCTGACCGCCGTGCGCGCCGCGCGGCACGCCAAGGCGGCGGACGCCGGCCGGATCGAGGCCCGGACGCGCGGCGCGACCGTGCTCTACCTCTCCCCCACCAAGGCCCTGGCCGCGGACCAGCTGACCGGGCTGACGGGTCTGCTCGACGCCGCCGGGATCCGGGACGTGCGTACCGCCACCTGCGACGGCGACACCCCGCGCGAGGAGCGACGCTGGGTCGTCGACCACGCCGACGTGGTGCTGACGAACCCCGACTTCCTGCACTTCGCCCTGCTGCCCCAGCACCGCCGGTGGACCCGGCTGCTGCGCGGGCTGCGCTACGTCGTGGTGGACGAGGGACACACCTACCGCGGGGTCTTCGGCGCGCACGTCGCGCTGGTGCTGCGGCGGCTGGCCCGGCTGGTCGAGCACCTGGGCGGCCGGGCGCCGACGGTCGTCGTGGCGAGCGCGACGACGGCGGACCCCGCCGGCAGCGCCGCCCGGCTCATCGGCGTCCCGCCCGAGGACGTCACCGCCGTCACCGCGGACTCCTCGCCCGCGGGGCGTCGCACCGTCGCCCTGTGGCGGCCGCCGGAGATCGCCGGGTACGGCGTCGAGCGGGCCGGCGCGTCGGACCTGGACCCCGGTGCGGACGCCTGGGCGCTGCCCGACCCCCTGGACCCGCAGGCGCACGAGACCGACACCGTGCTCACCCGCACGGGAGAGGCCGACCACCCACGGCGCTCCGCCACCGCCGAGGTCGCCGACCTGCTCGCGGACCTCGCCGCCCACGGGGCCCGGACGCTGGCCTTCACCCGCTCCCGGCGCGGCGCCGAGTCCGTGGCGCAGCAGACCCGCGACCACCTGCGACCGGTCTCGCCGGAGCTGGCCGGCCGGGTCGCCGCCTACCGTGGGGGCTACCTGCCCGAGGAGCGTCGCGAGCTGGAGGAGGCGCTGCGCTCCGGCGCCCTGCTCGGTCTCGCGACGACGAACGCGCTGGAGCTCGGGGTGGACATCTCCGGGCTGGACGCGGTCCTGGTGGCCGGCTGGCCCGGCACCCGCATGTCGCTGTGGCAGCAGGCCGGCCGGGCCGGGCGCGCCGGCGCCGACGGGCTGGTGGCGTTCGTGGCGCGGGAGGACCCGCTGGACACCTACCTCGTCACGCACCCCGAGGCGGTGTTCGACGCCCCGCTGGAGGCCTGCGTGTTCGACCCCGCCAACCCCTACGTGCTCGCCCCGCAGCTGTGCGCCGCAGCGCAGGAGCTGCCCCTGCGCGCGGACGGGCTGGCCCGGTTCGGCGACCCCGGCCAGATCCGCGAGATCCTCGACGTGCTGGTGGCCCGCGGCGCGCTGCGCCGTCGGCCGTCGGGCTGGTACTGGACGCACGCCCAGCCCGCCGCCGACCTGGCCGACCTGCGCGGCAGCGGTGGCCGTCCGGTCCGGGTCGTGGAGGCCGCCACGGGCCGGCTGCTCGGCACCGTCGACGCCGGCTCGGCCGACGGACAGGTGCACGACGGCGCCGTCTACACCCACCAGGGCGTCACGTTCGTGGTGGACCACCTCGACCTGGCCGACCACGTCGCGCTCGTGGTGCGGCGGGACGTCGACCACGCGACCTGGTCGCGCGAGCTGATGGAGATCAGCATCGCCGAGCCCGGCGACGCCGAGCACCCGGCACCGGAGGGCGCTCCGCCGGCACGACGCCGCGAGTGGGGCCCGGTGACGTGGGGGCTCGGTCCCGTCGAGGTCACCAGCCAGGTCGTCAGCTTCCAGCGCCGCCGCGTCCCGGACATGCAGGTCCTGGACACCGAGGCCCTCGACCTGCCGCAGCGCACGCTCGGGACCACCGCCGTGTGGTGGTCGGTGCCGGACTTCGTGCTCCGGGCGGCGGGGGTGGACGACGACGTCGCACCGGGCGCCCTGCACGCGGCCGAGCACGCGGCGATCGGCCTGCTGCCCCTGCTGGCGACGTGCGACCGCTGGGACCTCGGCGGGGTCTCCACCGCGCAGCACCCCGACACCGGGGAGGCCACGGTGTTCGTCTACGACGCCTACCCGGGCGGCGCCGGCTTCGCCGAACGGGGCTACGAGCTCGGGGCGCGGTGGCTGCGCGCCGTGCGCGACGCCGTCGACGCCTGCCCGTGCGCCGACGGCTGCCCGGCCTGCGTGCAGTCCCCCAAGTGCGGCAACGAGAACTCCCCGCTCGACAAGGCGGCCGCCGTGCGGCTCCTCGACGCCGTGCTCTCCCACGCGCCGTCGTCGTGAMPSREPAAPPGDNHPLVDVLTAHGARADRLTHLRTLPARDAEHADWPGWADPALVAGCRAQGVERPWTHQVTAAEATWRGQHVALATSTGSGKSLAFWLPALTAVRAARHAKAADAGRIEARTRGATVLYLSPTKALAADQLTGLTGLLDAAGIRDVRTATCDGDTPREERRWVVDHADVVLTNPDFLHFALLPQHRRWTRLLRGLRYVVVDEGHTYRGVFGAHVALVLRRLARLVEHLGGRAPTVVVASATTADPAGSAARLIGVPPEDVTAVTADSSPAGRRTVALWRPPEIAGYGVERAGASDLDPGADAWALPDPLDPQAHETDTVLTRTGEADHPRRSATAEVADLLADLAAHGARTLAFTRSRRGAESVAQQTRDHLRPVSPELAGRVAAYRGGYLPEERRELEEALRSGALLGLATTNALELGVDISGLDAVLVAGWPGTRMSLWQQAGRAGRAGADGLVAFVAREDPLDTYLVTHPEAVFDAPLEACVFDPANPYVLAPQLCAAAQELPLRADGLARFGDPGQIREILDVLVARGALRRRPSGWYWTHAQPAADLADLRGSGGRPVRVVEAATGRLLGTVDAGSADGQVHDGAVYTHQGVTFVVDHLDLADHVALVVRRDVDHATWSRELMEISIAEPGDAEHPAPEGAPPARRREWGPVTWGLGPVEVTSQVVSFQRRRVPDMQVLDTEALDLPQRTLGTTAVWWSVPDFVLRAAGVDDDVAPGALHAAEHAAIGLLPLLATCDRWDLGGVSTAQHPDTGEATVFVYDAYPGGAGFAERGYELGARWLRAVRDAVDACPCADGCPACVQSPKCGNENSPLDKAAAVRLLDAVLSHAPSSNANANANANA
AK018_00414870hypothetical proteinGTGACTGACCAGGACGATCTCACCGCGCGCCGCGAACGGCGCGAGACCACCCGTGTCGACCCGAGCAACTCCCGCTCGTGGCTGTTGCTGTCCGCGCTGCGGTCCGAGGACTTCGACGCCGCCGAGCTCTCGCGGGCCGACCAGCTCGTGCTGGACTGCGAGGACGCGGTGGACGACTCGCGCAAGGACGAGGCGCGCGACCGCGTCCTGGGCTGGTTCCGCACCGGCGGCCGCGCGTGGGTGCGGGTCAACGAGCGGGGCGCGGACTCGTGGGCGCACGACATGAGCGCCTTCCGCGACGCCGACGGGCTGCGCGGCGTCATGCTCGCCAAGTGCGAGAGCCCCGACCAGGTCGTCGACACCGTGCAGCGCCTCGGCGGCGACGTGCCGGTGATCCCGCTGGTGGAGTCGGCGCTCGGGATCGAGGACGCCGTCGGGATCGCGCGCGCCCCCGGTGCCTTCCGGCTCGCCTTCGGCTCCGGGGACTACCGCCGCGACACCGGCGCCGCGAACGAGCCGCTGGCGATGGCCTACCCGCGCTCCCGCCTCGTGACGGCGTCGCGGATCGGTGAGCTGCCCGGGCCGATCGACGGCCCGACGGTGGGCTCCAGCCACCCGCTGCTGCGCGAGCAGTCCGGCGACGCCGTCGCGATGGGCATGACGGGACGCATCTGCCTGGACCTCGAGCAGCCCGCGGTCATCAACGAGACCCTCTCGCCCGCCCCGGCGGACGTGGCCTGGGCCCTGGACTTCCTCACGGAGTTCGAGGGCGCGGGGTCCGTGATCCGCGACGGCTCGGACAAGCCGCGTCTCGCCCGCGCCCGCCTCATCGCCGAGCGCTCGCGACTGTTCGGCATCGACCCGAGCTGAMTDQDDLTARRERRETTRVDPSNSRSWLLLSALRSEDFDAAELSRADQLVLDCEDAVDDSRKDEARDRVLGWFRTGGRAWVRVNERGADSWAHDMSAFRDADGLRGVMLAKCESPDQVVDTVQRLGGDVPVIPLVESALGIEDAVGIARAPGAFRLAFGSGDYRRDTGAANEPLAMAYPRSRLVTASRIGELPGPIDGPTVGSSHPLLREQSGDAVAMGMTGRICLDLEQPAVINETLSPAPADVAWALDFLTEFEGAGSVIRDGSDKPRLARARLIAERSRLFGIDPSPGPT0019480_2102DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0019480-citE-K01644NANA
AK018_00415351hypothetical proteinATGAGGCCGCGCGACCGGTCCGAGCGCGGCGCGGTGACGGCCGAGCTGGCGGTCGGTCTTCCCGTCGTCGTGCTGCTGCTGGTCGCGGTGCTCACGCTCGTGGCCGCGTCCGCCGCACAGCTGCGTGCGGCGGACGCGGCCCGGGCGGGCGCCCGCATGGTCGCGGTCGGGGAGGACGAGACGCGGGTCCGGGCGGCCGTGGCCCGCGTCGGCGGCCCCGACGCCGCGGCGACCGTCGTGCCCGAGGGCGACTGGGTGCGCGTGGTCGTCACCTGCCCGGTCGGCGCCGGCGTCCTCGCCGGGCTCCCGCTGGAGGCCACGGGCCAGGCGCTGGCCTGGGTCGAGCCGTGAMRPRDRSERGAVTAELAVGLPVVVLLLVAVLTLVAASAAQLRAADAARAGARMVAVGEDETRVRAAVARVGGPDAAATVVPEGDWVRVVVTCPVGAGVLAGLPLEATGQALAWVEPNANANANANA
AK018_00416237hypothetical proteinATGACCGTCGACACCACCCCGCACGACCCGTCGGAGACCCCGGAGACCCCGGAGACCCCGGAGACCCGAGAGACTCGGGCGCCCGACCTCGACCCGGAGGCCGGGCTGGCCACCGCCGAGTACGCCATCGCCACCATCGCGGCGGCCGGCTTCGCGGGGCTGCTGATCCTGGTGCTGCAGAGCGAGACCGTGCGCGGGATGCTCGAGTCGATCATCAGCTCGGCCCTGACCGTATGAMTVDTTPHDPSETPETPETPETRETRAPDLDPEAGLATAEYAIATIAAAGFAGLLILVLQSETVRGMLESIISSALTVNANANANANA
AK018_00417654hypothetical proteinGTGATCGCGGTGGTGGTCGGGGCGCTCGTGCTCGCCGGGCTGGCGCCCTGGTGGTGGACGGCCGCCGCCGCGCGCCGTCGCCGGCGGCAGGTCGTCGCCCGGACGGCCGCGGTGCCCACCCGGCCGTCGGAGGTGCAGCACGACGACCGGTGGCCCGAGCGCGACGTCGGGCCCCGGCCGGGCCCGGTCGACGTCGCCGTGCTGCTCGAGCTGGTGGCCACGGCCGTGCGTGCCGGGGTCGGGGTGCCTCGTGCGCTGCAGGTGGTGGGTGCCGCCGTCGGAGGTGCCGACGGCCGGACCCTGCGTACCGTCGCGGTGGCCCTGCGCCTCGGCGGGGACTGGCAGAGCGCCTGGGACACCGCGCACGCGACCGCGCGGGTCGCACCGGTCGCGGGTGGCGGGCGTCCCCGCTCCCTCGACCCGCTCCGTGACGCCCTGCGCGGAGCCTGGACCGACGGCGTCGCTCCGGGCGACGCGCTGCGGGCCGCCGCGGGCGAGCTGCGGCAGCGACGACGGGCCGCGGCGCGCTCCGCGGCAGGCCGTCTGGCGGTGCGTCTCGTCCTGCCCCTGGGGCTGTGCTTCCTGCCGGCCTTCGTCCTGCTCGGGCTGGTGCCCGTGCTGTTCTCGCTCGGTGCGGACCTCGTGTCCGGCTGAMIAVVVGALVLAGLAPWWWTAAAARRRRRQVVARTAAVPTRPSEVQHDDRWPERDVGPRPGPVDVAVLLELVATAVRAGVGVPRALQVVGAAVGGADGRTLRTVAVALRLGGDWQSAWDTAHATARVAPVAGGGRPRSLDPLRDALRGAWTDGVAPGDALRAAAGELRQRRRAAARSAAGRLAVRLVLPLGLCFLPAFVLLGLVPVLFSLGADLVSGPGPT0022290_48DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
AK018_00418486hypothetical proteinGTGGCGCTGGCCCAGGTGGTCGCGCTCCTGCGGGCCGGCGCCTCGCCGACCACGGCCTGGGCTCGCGGCCTGGGCGTCCCCACCGGCGCCGACGGCGTACCGGACGCGGGACGGCTCGCCGAGGTGCTCACCGAGACGCGTCCGACGGCCGCCGTGCTGGCCGGCGCCCGGCTGTCCCGGGACGTCGGGGCGCCGCTCGGGCAGGTGCTGGAGGCGGTGGCGGACGCCCTGGTGGCCGAGGACGAGGCCGCGGGCGAGCGTGACGCCGCCCTGGCGGGTCCGCAGACCACGGCACGGGTCCTGGCCTGGCTGCCCGTGCTGGGGGTGCTGCTCGGCGCGGTGCTCGGCGCCGACCCGGTCGGCACCGCCACCGACGGCGGGTTCGGGACCGCCGCCGTCGTCGCCGGGGCGGTGTCGCTGGCCGTCGGCCGGTGGTGGACCGCGCGCCTGGTGGGCGAGGCCCGGCGGGCCGGGGCGGAACCGTGAMALAQVVALLRAGASPTTAWARGLGVPTGADGVPDAGRLAEVLTETRPTAAVLAGARLSRDVGAPLGQVLEAVADALVAEDEAAGERDAALAGPQTTARVLAWLPVLGVLLGAVLGADPVGTATDGGFGTAAVVAGAVSLAVGRWWTARLVGEARRAGAEPPGPT0022290_2989DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
AK018_004191164COG4962Putative conjugal transfer proteinATGACGACGCTCGACGGCCGCCTCCTGCACGACGTCCGCGCCCGCCTCGGCGACGCCGGCCGCACGGCGCCGCCCGGGGAGGCCGACGTCGCCGCCGCGCTGCGCTCCACCGGACGCGTCCTCGGGTCCGACGCGCTGACCGACCTCGCCCGCGCGGCCCGTGCCGAGCTCGTCGGCGCCGGACCGCTGCAGGCGCTGCTCGACGGCCCGGGTGTCACCGACGTCCTCGTCAACGGGCCCGAAGAGGTCTGGGTCGACCGCGGCGACGGACTCGAACGGGCCGACCTGGCGTTCCCCTCGCCCGACGCCGTGCGCGAGCTGGCGGTCCGGATGGCCGCCGTCGCGGGCCAGCGGCTCGACGACGCCAGTCCCGTCGTCGACGCCCGCCTGCCCGACGGCACCCGGCTGCACGCCACGGTCGCCCCCGTGGCGCCGGCCGGCGCGGCCATCGCCCTGCGGGTGCTGCGGCAGGCCACGTTCGACCTCGAGACCCTGGCCGCGCACGGCACCGTCCCGGAGCCCTGGGTGCCCGTGCTGCACGGCCTCGTCCGGCGCCGGGCCAACCTGCTCGTCACCGGTGGCACCGGGACGGGCAAGACGACGCTGCTCGCCGCGCTGCTGGGCCTGGTGCCGCACGACGAACGCCTGCTCACCGTCGAGGAGGCGCGCGAGCTCGCCCCCGTCCACCCCCACGTGCTGGCGCTCGCGGCACGCCGGCCCAACGTCGAGGGGGTCGGCGAGATCACCCTCGCCGACCTCGTGCGCGGCGCCCTGCGCATGCGTCCGGACCGGATCGTGCTCGGCGAGTGCCGCGGGGCCGAGGTACGCGAGCTGCTCCTGGCCCTGAACACCGGGCACGACGGCGGCATGGCCACCGTGCACGCCAACGCCGCCGAGCACGTGCCCGCGCGGCTCGAGGCCCTCGCCGCGCTGGCCGGCATGTCGCGCGCCGCGGTCGCCGCGCAGGCCTCCGCCGCGCTCGACGTGGTGCTGCACCTGCGGCGGCACCGCGGTCGGCGCCACGTCGCCCAGATCGCCACCGTCAGCCGCTCCGAGCGCGGCGACCTGCAGGTGGCGCCCGTGGCGTCCTGGCACGGACCCGGCGCCGAGACCCCCGGGACCGGCACCGGGTGGGGCGCGCTGCGGGAGCGGTGGGCGTCGTGAMTTLDGRLLHDVRARLGDAGRTAPPGEADVAAALRSTGRVLGSDALTDLARAARAELVGAGPLQALLDGPGVTDVLVNGPEEVWVDRGDGLERADLAFPSPDAVRELAVRMAAVAGQRLDDASPVVDARLPDGTRLHATVAPVAPAGAAIALRVLRQATFDLETLAAHGTVPEPWVPVLHGLVRRRANLLVTGGTGTGKTTLLAALLGLVPHDERLLTVEEARELAPVHPHVLALAARRPNVEGVGEITLADLVRGALRMRPDRIVLGECRGAEVRELLLALNTGHDGGMATVHANAAEHVPARLEALAALAGMSRAAVAAQASAALDVVLHLRRHRGRRHVAQIATVSRSERGDLQVAPVASWHGPGAETPGTGTGWGALRERWASPGPT0016025_2991DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
AK018_00420816putative proteinATGGAGACAGCCACCGCACCCGTCGCCGCCGGCGTGCCGTCGGGCCCCGTTCCCGGAGGGACGTCGGCCGGACCGCCGTCGCACGGTCGGCTGATCGGCGTCGTCGGAGCCTGCGGGGGTGCCGGCACCAGCGTGCTCGCGGCCGCACTTGCCCGCGCCCTGCGTCGCCGGGTCGGGGCGACCGCCCTCGTCGACCTCGACGTCCCCGGCCCCGGACTGGACGTGCTCCTGGGCGTCGACGCCGCGCCGGGCGCCCGCTGGGCCGATCTCGCCGACGCCCGCGGCACGGTCGACGGCGGCTCGCTCGTCGCGGCGCTGCCGCGCTGGGGAGCCGTCCCCGTGCTCTCCGGCGCGCACCGTGACCCCGCGGCCCCGGCCGACCCGGTCGTGCTGGACACGACCACGGCGCTGCTGCGCACCGGGCACCGCGTGGTCCTCGACCTGCCGCGTCCCGTCGGCCGGACGGCCTCGGCGCTGTCGCTGGCCGGTGCGGCCGACGTCGTCGTGCTCGTGACCCCGCTGCGCACCGCAGGGGCGGCCGGGGCCCTGGCGACGGCACGCCGGCTCGCCGACGCCGGGACCGCGCGCGTGGTGCCCGTCGCGTGCCGCCCCGCCCCCGGACGGGTCGACGAGCGCGAGCTCGGCCGGCTCCTCGGGCTCGCCGTCGCCGCCACCGTCGGGTGGGACCCCCGGCTGGCCGCCCAGGTCGAACGCGGCCACGGACCGCGCACCGGGCGCCGCACGCCGCTGGGCCGCGCCGCGGACCGCCTCGTCGAGCTCCTGCCGCAGCCGTCGGACCACCGGGGGGCGGCATGAMETATAPVAAGVPSGPVPGGTSAGPPSHGRLIGVVGACGGAGTSVLAAALARALRRRVGATALVDLDVPGPGLDVLLGVDAAPGARWADLADARGTVDGGSLVAALPRWGAVPVLSGAHRDPAAPADPVVLDTTTALLRTGHRVVLDLPRPVGRTASALSLAGAADVVVLVTPLRTAGAAGALATARRLADAGTARVVPVACRPAPGRVDERELGRLLGLAVAATVGWDPRLAAQVERGHGPRTGRRTPLGRAADRLVELLPQPSDHRGAANANANANANA
AK018_00421834COG0560putative phosphataseATGAGCACCTCGCCGCTGGATCCACGGCAGCACGGGGGCAGGGCGTCGGCCGGTCGACGGGTGGCCGCGTTCTTCGATCTGGACAAGACGATCATCGCCACCAGCTCCACCGCGGCCTTCTCCACGTCGTTCCTCGCCGGCGGCCTGCTGACGCGCGGGGACGTGCTGCGCAGCGCGTACGCGCACTTCCTGTTCCTGGTCGGCAGCGCCGACGCCGACCAGACCGAACGGATGCGCCAGCACCTCTCCGAGCTCGCCACCGGGTGGGAGGTGGCCAAGGTGAAGCAGATCGTCGCCGAGACGGTGCACGAGCACATCGACCCGTACGTGTACGCCGAGGCCGTCGAGCTGATGGCCGAGCACCACGAGGCAGGGCACGACGTCGTGGTGGTCTCGGCGTCGGGCACCGAGCTGGTCGAGCCGATCGCGGCGATGCTCGGTGCCGACCACGTCATCGCCACCCGGCTGGCCGTCGCGGACGGCCGATTCACCGGGGAGATCGACTTCTACGCCTACGGGGACAACAAGGCGACGGCGATCCGCGACCTGGCCGCCAAGCGCGGCTACGACCTGGAGCGCTGCTACGCCTACTCCGACTCGATCACCGACGCGCCGATGCTGTCGGCGGTCGGTCACGGGCACGCGGTCAACCCCGACCGGGTCCTGCGCCGTCTCGCCACGGAGAACGGGTGGGGGATGCTGACCTTCACCCGTCCCGTCGCGCTGCGACCGCGGGTGCGCGTCGGCCCGGTCCTGGCGGTGGCCGGGCTGCTGGGTGCCGCGGGTCTGGCCTGGTGGTGGCTCCGCCGCCTCGGCAGGCGCGCGGCGACCTGAMSTSPLDPRQHGGRASAGRRVAAFFDLDKTIIATSSTAAFSTSFLAGGLLTRGDVLRSAYAHFLFLVGSADADQTERMRQHLSELATGWEVAKVKQIVAETVHEHIDPYVYAEAVELMAEHHEAGHDVVVVSASGTELVEPIAAMLGADHVIATRLAVADGRFTGEIDFYAYGDNKATAIRDLAAKRGYDLERCYAYSDSITDAPMLSAVGHGHAVNPDRVLRRLATENGWGMLTFTRPVALRPRVRVGPVLAVAGLLGAAGLAWWWLRRLGRRAATNANANANANA
AK018_004221998acsA_1COG0365Acetyl-coenzyme A synthetaseGTGACCGACACCCAGTCCAGCAGCCCGAGCCTGGAGAACCTGCTCCACGAGACCCGCACCTTCCCGCCGAGTCCGGAGTTCGCCGTCCAGGCCAACGCCCAGCCCTCCCTCTACGAGGACGCCGCGGCCGACCGCCTCGAGTTCTGGGCCCGGCAGGCCCGCGAGCTCGTCTCGTGGAGGACGCCGTTCACCGAGACCCTCGACTGGTCCGGCGCCCCGGTGGCCCGGTGGTTCGCCGACGGCACCCTCAACGCCGCCTACAACGCGGTCGACCGGCACGTCGAGGCCGGGAACGGCGACCGGGTCGCGATCCACTTCGAGGGCGAGCCCGGCGACACCCGCACCGTCACCTACGCCGACCTCCAGCGCGAGGTCTCCCGCGCCGCGAACGCGCTCGCGGCCCTCGGGGTCGAGTCCGGCGACCGCGTCGTCATCTACATGCCGATGCTGGTCGAGTCCGTCGTGGCGATGCTCGCCTGCGCCCGGATCGGCGCCGCGCACTCCGTCGTCTTCGGCGGGTTCAGCGCCGACGCGCTGCGCAGCCGCATCGCCGACGCCGAGGCCAAGCTCGTCATCACCGCCGACGGCGGGTATCGGCGCGGTGCGCCGAGCTCGCTCAAGCCGGCCGTGGACGAGGCGCTGACCGGCGAGGGCGCCGAGAGCGTCCAGCACGTGCTCGTCGTGCGCCGGACCGAGCAGGACGTCGAGTGGACCGAGGGCCGCGACGTCTGGTGGCACGACGCCGTCGAGGCCGCCGACACGTACCACGAGCCGGTGTGGGTCGAGGCCGAGCACCCGCTCTTCATCCTGTACACCTCCGGCACCACCGGAAAGCCCAAGGGCATCCTGCACACCACCGGCGGCTACCTCACCCAGGCCGCCTACACGCACCGGAACGTCTTCGACCTCAAGGCCGAGAGCGACGTCTACTGGTGCTCGGCCGACATCGGCTGGGTCACCGGGCACACCTACATCGTCTACGGGCCGATGCTCAACGGTGCCACCCAGGTGCTCTACGAGGGCACGCCGGACACCCCGCACAAGGGTCGCTGGTGGGAGATCGTCGAGAAGTACAAGGTGTCGCTGTTCTACACGGCCCCGACGGCGATCCGCGCCTGCATGAAGTGGGGCGAGGAGATCCCCGCGGAGTTCGACCTGTCCTCCCTGCGCCTGCTCGGCTCCGTCGGCGAGCCGATCAACCCCGAGGCGTGGATGTGGTACCGCCGCGTCATCGGCGGCGACACCGCCCCGATCGTCGACACGTGGTGGCAGACCGAGACCGGCGCCATCATGATCAGCCCGCTGCCCGGCGTGACCGCGGCCAAGCCCGGCTCGGCGCAGGTGCCGCTGCCCGGCATCAGCGCCGACGTCGTCGACGACGAGGCCCGGCCCGTGCCCGACGGCGGGGGCGGCTACCTCGTGCTGTCGGAGCCGTGGCCCTCGATGCTGCGCGGCATCTGGGGCGACCTGCAGCGCTTCAAGGACACGTACTGGTCGCGGTTCCCGGGGCTGTACTTCGCCGGCGACGGGGCCAAGAAGGACGAGGACGGCGACATCTGGCTGCTCGGCCGCGTCGACGACGTCATGAACGTCTCCGGCCACCGGCTGTCCACCACCGAGATCGAGTCGGCCCTGGTCTCCAACGACCTGGTGGCCGAGGCCGCCGTGGTCGGGGCGTCCGACGAGCTCTCGGGGCAGGCCGTGGTCGCGTTCGTCATCCTGCGCGGCGAGCACGCGGACGAGGCGTCGACCGACGAGGGCTCGGCCCGCATCGAGAAGACCCTGCGCGACCACGTCGCCAAGGAGATCGGCCCGATCGCCAAGCCGCGCAAGATCCTCGTCGTGCCCGAGCTGCCCAAGACGCGGTCCGGCAAGATCATGCGGCGCCTGCTGCGCGACGTCGCCGAGAACCGCGAGGTCGGCGACGCCACGACGCTGGCGGACTCGTCGGTCATGAACCTCATCCAGGCCGGCCTCGCCAAGCCCTCGGAGGACTGAMTDTQSSSPSLENLLHETRTFPPSPEFAVQANAQPSLYEDAAADRLEFWARQARELVSWRTPFTETLDWSGAPVARWFADGTLNAAYNAVDRHVEAGNGDRVAIHFEGEPGDTRTVTYADLQREVSRAANALAALGVESGDRVVIYMPMLVESVVAMLACARIGAAHSVVFGGFSADALRSRIADAEAKLVITADGGYRRGAPSSLKPAVDEALTGEGAESVQHVLVVRRTEQDVEWTEGRDVWWHDAVEAADTYHEPVWVEAEHPLFILYTSGTTGKPKGILHTTGGYLTQAAYTHRNVFDLKAESDVYWCSADIGWVTGHTYIVYGPMLNGATQVLYEGTPDTPHKGRWWEIVEKYKVSLFYTAPTAIRACMKWGEEIPAEFDLSSLRLLGSVGEPINPEAWMWYRRVIGGDTAPIVDTWWQTETGAIMISPLPGVTAAKPGSAQVPLPGISADVVDDEARPVPDGGGGYLVLSEPWPSMLRGIWGDLQRFKDTYWSRFPGLYFAGDGAKKDEDGDIWLLGRVDDVMNVSGHRLSTTEIESALVSNDLVAEAAVVGASDELSGQAVVAFVILRGEHADEASTDEGSARIEKTLRDHVAKEIGPIAKPRKILVVPELPKTRSGKIMRRLLRDVAENREVGDATTLADSSVMNLIQAGLAKPSEDPGPT0002265_830DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
AK018_00423765rhaR_1HTH-type transcriptional activator RhaRATGGCGATCGGCGCACCCGTGGAGCTCTGGCCGGAGGCGCGCCGGCTCGTGGAGGCGTTGTCCCCCGAGCTCGTCGACCTGCTCGACGAGATGACCGGCACCATGTTCTGCGCGAAGGACGTCACCGGCCGCTACGTCCTGGTCGACCGGACCTTCGTCGACCGGGCGAACCGGCGCTCGCCGCGCGACGTCGTCGGACGCACCCCGGCCGAGCTGTTCGCCCCCGAGCTCGCCGCGCGGTACGAGGAGCAGGACGACCGGGTGCTGCGCGAGGTCTGGCCGCTGCGCAACGAGCTGGAGCTGATCCGCCGGCCCGGCGGGGTGCCGGGGTGGTACCTCACGACGAAGCTGCCGGTGCAGCGCGACGGCGTCGTGCTCGGGCTCGTGTCGACCTCGCGCGACCTGGGCACCCGCGACGTGCACGACCAGGTGATCGGGTCGATGGCGCGGGTCGTGGAGGTGGTCGAGGAGCGCCTCGGGGTGGGGGTGACGCAGGCCGAGCTCGCGCAGGTCGCCGGCTGCACGTCCGGGGCGCTGGAGCGGCGGATGCGCCGCGTGTTCGGGCTGACGCCGAAGCAGTTCGTGCTGCGGGCGCGGGTCGACCACGCCACCACGCTGCTCACCCGGACCGACCTGGCCCTCGCGGACGTCGCGGTGCGCGCCGGCTTCTACGACCAGCCGTCGTTCACCCGGACGTTCGTCCGGCTGACGGGGGAGACGCCGTCGGTGTACCGCCGCACCAGCCGGGCGCTCGCCGCGGAGTAGMAIGAPVELWPEARRLVEALSPELVDLLDEMTGTMFCAKDVTGRYVLVDRTFVDRANRRSPRDVVGRTPAELFAPELAARYEEQDDRVLREVWPLRNELELIRRPGGVPGWYLTTKLPVQRDGVVLGLVSTSRDLGTRDVHDQVIGSMARVVEVVEERLGVGVTQAELAQVAGCTSGALERRMRRVFGLTPKQFVLRARVDHATTLLTRTDLALADVAVRAGFYDQPSFTRTFVRLTGETPSVYRRTSRALAAENANANANANA
AK018_00424939mshD_1COG0456Mycothiol acetyltransferaseGTGCGACTCCCCGTCCCGATCGAGATCGGCCCCCTGTCCCCGTCCGAGCAGGACGCCGTGCGCGCCCTGGCCGCGCAGGCCGCCGCCCACGACGGCGTCGACCCGCTGTCCGAGCAGCCGCTGCTGCGGCTGGGTGACGACGGCCCCGACCTGACCCACGCCGTCGTGCACGCGCGGTCCGGCGGCACCGTCGGCTACCTGCAGGTCGACCGCGGCGGCGACGTGGCCAGCGCGGAGCTGGTCGTCCACCCCGAGCACCGCCGCGGCGGGGTGGGCACGCTGCTGCTGCGGACCGCGGAGCGCGACGCACGGCTCCCGGAGCGTTCCGGCACCCCGGACCAGCGCGGCAAGCCGCTGCGGGTGTGGGCGCACGGCGACGTGCCGGCCGCCCGCGCCTTCGCCGAGGCCCGCGGGTACGACGTCGTGCGCGAGCTGTTGTTCCTGGCCCGGCCCCTCGAGGGGACGGGCGACGCTCCCGAGGTGCCCGACGGCTACACGCTGCGCCCCTTCCGGGCCGGGGAGGACGACGGCGCCTGGGTCTCGCTCAACGCGCTCGCCTTCGCCGACCACCCCGAGCAGGGACGACTGGGGCTGGACGACCTGCACGCCCGCACGGCCGAGCCGTGGTTCGACGCCGAGGGCTTCCTGCTGCTGGACCGCCCCGACGGGGGCCTGGCCGGGTTCGTGTGGACGAAGGTGCCCACCGACCAGCCCGCGGGGCAGGCCGACGGCGAGATCTACGCCCTCGGGATCGACCCGGCGACGCAGGGCCACGGGCTGGGCCGGCTCCTGACGCAGGCGGGCCTGCACCACCTCGCCGCGGTGGGCTGCACCCGGGCGGTGCTGTACGTCGAGGGGGACAACACTCCCGCGCTGCGCACCTACGAGCGGGCCGGCTTCACCCGGGCCGCCGTCGACGTGCAGTACGCCCGGCCCTGAMRLPVPIEIGPLSPSEQDAVRALAAQAAAHDGVDPLSEQPLLRLGDDGPDLTHAVVHARSGGTVGYLQVDRGGDVASAELVVHPEHRRGGVGTLLLRTAERDARLPERSGTPDQRGKPLRVWAHGDVPAARAFAEARGYDVVRELLFLARPLEGTGDAPEVPDGYTLRPFRAGEDDGAWVSLNALAFADHPEQGRLGLDDLHARTAEPWFDAEGFLLLDRPDGGLAGFVWTKVPTDQPAGQADGEIYALGIDPATQGHGLGRLLTQAGLHHLAAVGCTRAVLYVEGDNTPALRTYERAGFTRAAVDVQYARPPGPT0002685_9DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937NANA
AK018_004252337ppk_1COG0855Polyphosphate kinaseATGTCCTCGGCGCGTCCGCGCGACGCGCGCGGCCGGTTCGTCGCTGCCGCGACCACGACCTCGTCCGAGACCCGCACGACCGCGAAGGCAGGACCCCGACGGATGGATCCCGAGCTCGCCGCCCACATCGCGGAGCACATCGCCGAGGAGCCCGACCACGACCAGGTCGTGGAGGAGTCGCTGGCCCAGCCGGAGCTCCCCGAGGACCGGTTCGCGGACCGCGAGCTGAGCTGGCTCGCATTCAACGAGCGCGTGCTGGAGCTGGCCGAGGACGAGTCGCTGCCGCTGCTGGAGCGGGTGCGGTTCCTGGCGATCTTCGCCTCGAACCTGGACGAGTTCTTCATGGTCCGGGTGGCCGGCCTCAAGCGCCGCATCGCCACCGGCATCGCCGTGACGGCCGCCTCGGGCCTCAGCCCGCGCGAGGTGCTCGAGGGCATCGGGCTGCGGGCCCACGAGCTGATGGACCGGCACGCCCGTGTGTTCCGCGACGACGTGGCGCCGGTGCTGCACGACGAGGGCATCACGCTGGTGCACTGGGACGAGCTGCTCGAGAAGGAGCAGCACCGGCTCAACAAGTTCTTCCGCAAGCACATCTTCCCGGTGCTGACCCCGCTCGCGGTGGACCCGGCGCACCCGTTCCCGTACATCTCCGGGCTGTCGTTGAACCTGGCCGTCGTGGTGGCGAACCCGCTGACCGGCAAGGAGCACTTCGCGCGGGTCAAGGTGCCGCCGCTGCTGCCCCGGTTCATCGCCGTGGACGACCGCGGCCGCCCGAGCGCGCCGACGCCGACCCAGAAGGGCGGGACGCAGAAGTCGTTCGTCCCGCTGGAGGAGGTCATCGCCCAGCACCTGGACTACCTGTTCCCCGGGATGGAGATCCGGGAGCACCACACCTTCCGCGTCACCCGCAACGAGGACGTGGAGGTCGAGGAGGACGACGCCGAGAACCTCCTGCAGGCGATGGAGAAGGAGCTGCTGCGGCGCCGGTTCGGCCCGCCGGTGCGCCTCGAGCTGCACGAGGAGATCTCGCCGCGGATCCGCGAGCTGCTGGTGCGCGAGCTCGGCGTGGTCGAGGAGGAGGTCTACGAGCTGCCCGGGCCGCTCGACCTGACCGGCCTGAACGTGCTGGCCGACATCGACCGCGCGGAGCTGCACTACCCGCCGTTCGTCCCCACCACGCACCGCCAGCTCGCCGAGGTGGAGTCGGCCACGCCCGGCAACGTCTTCGCCGCGATCCGCGAGCGGGACGTTCTCCTGCACCACCCCTACGACTCGTTCTCGACGTCGGTGCAGACCTTCCTCGAGCAGGCCGCGGCCGACCCCAAGGTGCTGGCGATCAAGCAGACGCTGTACCGCACCTCGGGCGACTCCCCCATCGTGGACGCCCTCATCGACGCCGCCGAGGCGGGCAAGCAGGTGCTGGCCCTGGTGGAGATCAAGGCCCGGTTCGACGAGCAGGCCAACATCTCCTGGGCGCGCAAGCTCGAGGAGGCCGGCGTCCACGTCGTCTACGGCATCGTGGGCCTCAAGACCCACTGCAAGCTGTCCCTGGTGGTCCGCCAGGAGTCCGACGGGCTGCGCCGCTACTGCCACGTCGGCACCGGCAACTACCATCCCAAGACGGCCCGGCTGTACACCGACCACGGCGTGCTCACCTGCGACTCCGACGTGGGCCAGGACCTGACCCGGCTGTTCAACCAGCTCTCGGGCTACGCGCCGCACTCGAAGTTCCACCGCCTGCTCGTGGCGCCGCGCACGGTGCGCAGCGGGCTGATCGAGCGGATCGACCGCGAGGCCGAGGCGGCCCGGGCGGGGCACGAGGCCTGGGTCAAGATCAAGGTGAACTCCGCCGTCGACGAGGCCACGATCGACGCCCTGTACCGCGCCTCGCAGGCCGGGGTGAAGGTGGACCTGGTGGTGCGCGGCATCTGCGCCCTGCGCCCCGGCGTCCCCGGCCTGAGCGAGAACATCCGCGTCCGGTCGATCCTCGGCCGCTTCCTGGAGCACTCGCGGATCTTCGCGTTCGCGAACTCGGCGGGCCCCGCGATCGGCGAGGGACCGGACAGCGGCCCGGAGGTCTTCATCGGCTCGGCCGACCTCATGCACCGCAACCTGGACCGCCGCGTCGAGGCCCTCATCCGCGTGTCGGACCCGGGCCAGATCCTCGAGCTGCTGGAGCTGATGAACGACTCCATGTCGTCCGGCACCGCCTCGTGGCACCTGCTGCCGGACGGCACCTGGCGTCGTCAGGTCGCGGACGAGGACGGCCAGCCCACGGTGGACCTGCAGTCCGTGCTCGTCGACCGGCACCGCCGTCGTCCGCCGAGCTCGCGGTGAMSSARPRDARGRFVAAATTTSSETRTTAKAGPRRMDPELAAHIAEHIAEEPDHDQVVEESLAQPELPEDRFADRELSWLAFNERVLELAEDESLPLLERVRFLAIFASNLDEFFMVRVAGLKRRIATGIAVTAASGLSPREVLEGIGLRAHELMDRHARVFRDDVAPVLHDEGITLVHWDELLEKEQHRLNKFFRKHIFPVLTPLAVDPAHPFPYISGLSLNLAVVVANPLTGKEHFARVKVPPLLPRFIAVDDRGRPSAPTPTQKGGTQKSFVPLEEVIAQHLDYLFPGMEIREHHTFRVTRNEDVEVEEDDAENLLQAMEKELLRRRFGPPVRLELHEEISPRIRELLVRELGVVEEEVYELPGPLDLTGLNVLADIDRAELHYPPFVPTTHRQLAEVESATPGNVFAAIRERDVLLHHPYDSFSTSVQTFLEQAAADPKVLAIKQTLYRTSGDSPIVDALIDAAEAGKQVLALVEIKARFDEQANISWARKLEEAGVHVVYGIVGLKTHCKLSLVVRQESDGLRRYCHVGTGNYHPKTARLYTDHGVLTCDSDVGQDLTRLFNQLSGYAPHSKFHRLLVAPRTVRSGLIERIDREAEAARAGHEAWVKIKVNSAVDEATIDALYRASQAGVKVDLVVRGICALRPGVPGLSENIRVRSILGRFLEHSRIFAFANSAGPAIGEGPDSGPEVFIGSADLMHRNLDRRVEALIRVSDPGQILELLELMNDSMSSGTASWHLLPDGTWRRQVADEDGQPTVDLQSVLVDRHRRRPPSSRPGPT0002685_155DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937NANA
AK018_004261047hypothetical proteinATGAGCACCACGTCGCACTCCGCTCGTGCGCTGCGCACGGCGACCCCCTTCGTCGACCCCCTGGGGGCGACGTCGGTCCAGCACGCCCCGGTGATCCAGACCGCCGGCGCGGTGGTGTGGCGGGTCCGCCACGACCGCCTGCAGGTCCAGCTCGTGCACCGGCCGCGGTACGACGACTGGTCGTGGCCCAAGGGCAAGCACGAGGAGGGCGAGTCCCTGGCGACCACCGCGGTCCGCGAGGTCACCGAGGAGACCGGCAAGCCCGTCGTGCTGGGTCTGCCGCTGCCCGGCCTGCAGTACCTGACCCCGGAGGGCCGGGTGAAGCGGGTGCACTACTGGGCCGCGCGCCGCGCCTCGGCCAAGAGCGACTCGCGCGCCCTGGCGGCGCGGACCCCGATCGCCCCGGCGTCCAAGCGGGAGATCGACAAGGCGGAGTGGCTCGACGCCGAGGACGCCGCCGAGCGACTCACCCGCCCCACGGACCGCGCGCCGCTGGACGCCGTGGTCGAGGCGTTCCGCGACCGGCACCTGGCCACGCACGCCGTCGTCATCGTCCGGCACGGCCGGGCCCTGCCGCGGACGAACTGGTACGGCGTCGAGCAGGACCGTCCGCTGACCCCGCTGGGGCACGGCCAGGCCGCCGCGCTCGTGCCGGTGCTGGCCTCCTACGGCGTGGACGCGGTGATCTCGAGCCGCTGGGAGCGGTGCGCGACGACGATCGACCCGTACGTGCGCGCGGCGAACCTGCGCCCGGAGTACAGCGACAACCTCGGCGAGGCCCAGCACGAACGGTCCCCGGCGCGCGTGGCCGCGGCCGTGCGCGACCTGCTCGAGGCGGACCGGGCCTCGGTGCTGTGCACCCACCGGCCGGTGCTGCCGACCGTGCTGGACGTGCTGGGTCAGCACTCGAGCCGGGCGGTGGCGGCGACGCTTCCCCGGCGCGACCCGTACCTGGAGCCCGGCGAGGCGCTGGTCGCGCACGTGGCGCGCACGCCGAAGGGCCCCCGGGTGGTCGCGGCCGAGCGGGTGGCTCCGCAGGTCTTCTGAMSTTSHSARALRTATPFVDPLGATSVQHAPVIQTAGAVVWRVRHDRLQVQLVHRPRYDDWSWPKGKHEEGESLATTAVREVTEETGKPVVLGLPLPGLQYLTPEGRVKRVHYWAARRASAKSDSRALAARTPIAPASKREIDKAEWLDAEDAAERLTRPTDRAPLDAVVEAFRDRHLATHAVVIVRHGRALPRTNWYGVEQDRPLTPLGHGQAAALVPVLASYGVDAVISSRWERCATTIDPYVRAANLRPEYSDNLGEAQHERSPARVAAAVRDLLEADRASVLCTHRPVLPTVLDVLGQHSSRAVAATLPRRDPYLEPGEALVAHVARTPKGPRVVAAERVAPQVFNANANANANA
AK018_004271191hutI_1COG1228ImidazolonepropionaseATGACGGAACCCACCGAGGACCGCACGCTGCTCGTCACGGGCATCGGCGAGCTCGTCACGCACGACCCGTCGCACGGCGCGTCCGGGGTCCTGACCGACGCCGCGCTGGTGGTCTCCGGCGGGCGGGTCGTCTGGACCGGCCCCGCCGCGCAGGCCCCGGCCGCGGACGACCGGCTCGACGTCGAGGGACGCTGCGTGATCCCCGGGTTCGTGGACTCGCACTCGCACGTCGTCTTCGCCGGGGACCGGTCCGCGGAGTTCGCCGCCCGGATGGCCGGCGAGCCGTACACCGGCGGCGGCATCGCCACCACCGTGGCGGCCACCCGGGCCGCCTCCGACGACGTCCTGCGCGACGGTGCCCGACGCCTCGTGGCGGAGATGCTCGCCCAGGGGACCACGACCGTCGAGATCAAGAGCGGGTACGGCCAGGACGTCGCCACCGAGGAACGCATGCTGCGCCTGGCGCGCGAGCTCACCGACGAGACGACGTTCCTCGGCGCCCACACCGTGCCGGCCGAGCTCGCGCACGACCGTCGCGCCTACCTCGACCTCGTCACCGGGCCGATGCTCGCCGCCTGCGCTCCGCACGCCCGGTGGGTCGACGTGTTCTGCGAGCCCGCCGCACCCGCCGCGTTCGACGCCGACGAGTCCCGGGAGGTCCTGGAGGCCGGGATCCGCGCCGGGCTGCTGCCCCGTGTGCACGGCAACCAGCTCGGGCCCGGTCCCGGCGTCCGGCTCGCCGTCGAGGTCGGCGCCGCCAGCGTCGACCACTGCACCCACCTCACCGGGGACGACGTCGCGGCCCTGGCCGGCTCCAGCACGGTCGCGACGCTGCTGCCCGCCGTGGAGTTCTCCACCCGCTCGCCCTACCCCGACGCGCGGGCCCTGCTCGACGCGGGCGTCGCCGTCGCGCTGGCCACGGACTGCAACCCCGGCAGCTGCTACTCCTCGTCGATGCCGTTCGTCGTGGCGCTCGCGGTGCGGGAGATGGGCCTGACACCGCTGGAGGCCGTGCGCGCCGCCACCGCCGGCGGAGCCGCGGCCCTGCGGCGCGACGACGTCGGGACGCTGGAGCCCGGGGCGCGGGCCGACCTCGTCGTGCTCGACGCGCCCTCGCACGTGCACCTGGCCTACCGCCCGGGCGTGCCGGTCGTGCGCACCGTCCTGCGGGGCGGGCGCCCCGTCGTCTGAMTEPTEDRTLLVTGIGELVTHDPSHGASGVLTDAALVVSGGRVVWTGPAAQAPAADDRLDVEGRCVIPGFVDSHSHVVFAGDRSAEFAARMAGEPYTGGGIATTVAATRAASDDVLRDGARRLVAEMLAQGTTTVEIKSGYGQDVATEERMLRLARELTDETTFLGAHTVPAELAHDRRAYLDLVTGPMLAACAPHARWVDVFCEPAAPAAFDADESREVLEAGIRAGLLPRVHGNQLGPGPGVRLAVEVGAASVDHCTHLTGDDVAALAGSSTVATLLPAVEFSTRSPYPDARALLDAGVAVALATDCNPGSCYSSSMPFVVALAVREMGLTPLEAVRAATAGGAAALRRDDVGTLEPGARADLVVLDAPSHVHLAYRPGVPVVRTVLRGGRPVVPGPT0020235_2633DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020235-hutI-K01468NANA
AK018_004291209amaB_2N-carbamoyl-L-amino acid hydrolaseGTGAGCGGTGTCGCGGGCCTCCTGGGGGACCTCGCCGACGTCGGACGGGCCCCGAGCGGCGGGTACGCCCGCTTCGCCTGGACGACGGCGGACCTCGCCCTGCGCGAGTGGTTCGTCGCCGAGGCCGCGGGCCGCGGTCTCGACGTCACCGTGGACCGCGCCGGGAACCAGTGGGCGTGGTGGGGCGATCCCGACGCCGACGGTCCCGGTGTCGTCACGGGCAGCCATCTCGACTCGGTGCCCGGGGGTGGCGCGTTCGACGGCCCGCTGGGCGTCGCGAGCGCCTTCGCGGCCGTCGACGTGCTGCGGGCCCGCGGCCTGCGCCCCGCCCGGCCCCTCGGCGTCGTGAACTTCTCCGACGAGGAGGGCGCCCGGTTCGGGCTGGCCTGTCTCGGGTCGCGGGCCGTGACGGGTACGGTCGGCGCCGACCGCCTGCTGGGTCTGCGCGACGACGCCGGGGACACGCTCGCCGACGTCCTGGCCGGAGCGGGTCTGGACCCGACCGCGTACGGGCGCGACGACGAGGCGCTGGCCCGGGTCGGCACCTTCGTCGAGCTGCACGTGGAGCAGGGCCGATACCTCGTCGACCTGCACGGCGACGACGCGGCGCCCGTCGCCGTGGCGTCGGCGATCTGGCCGCACGGCCGCTGGCGGGTCGACCTGCACGGCGAGGCGAACCACGCCGGCACCACGCCGCTGGCCCACCGGCACGACCCGATGCTGGACCTGGCCGGGCTGATCCAGGAGGTGCGGGCCGCCGCCGGGTCGGCCGACGCGCTCGCCACCGTCGCGAAGGTCTCCGTCGAGCCGAACGGCGTCAACGCGATCCCGTCGCGGGTCCGGGCCTGGATCGACTCGCGGGCCCCCCGGGAGGACGCCGTGCACCGGGTCCTGGCGGACCTGTCGGGTTACGGCCCCGTCGAGGAGTCCTGGTCCCCGGCCACCGTGTTCGACCCGGCCCTGGCCGCCCGCCTGGCCGACGTCGTCGGACGCCCCGCCGGCACGGCGCCCGCGCCGGTGATCGGGACCGGCGCCGGGCACGACGCCGGCATCCTGGCCGCCACCGGCGTACCGACCGCGATGCTGTTCGTCCGCAACCCCACGGGGGCCTCCCACACGCCCGCCGAGCACGCCGAGGAGGCGGACTGCGAGGCCGGGGTCACGGCGCTCGCGGACGTCCTGACCGACCTGCTGGAGGAGGCCGCGTGAMSGVAGLLGDLADVGRAPSGGYARFAWTTADLALREWFVAEAAGRGLDVTVDRAGNQWAWWGDPDADGPGVVTGSHLDSVPGGGAFDGPLGVASAFAAVDVLRARGLRPARPLGVVNFSDEEGARFGLACLGSRAVTGTVGADRLLGLRDDAGDTLADVLAGAGLDPTAYGRDDEALARVGTFVELHVEQGRYLVDLHGDDAAPVAVASAIWPHGRWRVDLHGEANHAGTTPLAHRHDPMLDLAGLIQEVRAAAGSADALATVAKVSVEPNGVNAIPSRVRAWIDSRAPREDAVHRVLADLSGYGPVEESWSPATVFDPALAARLADVVGRPAGTAPAPVIGTGAGHDAGILAATGVPTAMLFVRNPTGASHTPAEHAEEADCEAGVTALADVLTDLLEEAAPGPT0021095_2121DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0021095-pydC-K06016NANA
AK018_004301674hutUCOG2987Urocanate hydrataseATGACGAGCTACGACCGCGGCACCCCGGTGCCGGTCCGTGCCCCGCGCGGCACCACCCTGACCGCCCGGAGCTGGCAGACCGAGGCGCCGCTGCGCATGCTGCAGAACAACCTCGACCCGGAGGTCGCCGAGCGCCCGGACGACCTCGTCGTCTACGGCGGCACGGGTCGTGCCGCCCGGGACTGGCCGAGCTTCCACGCCATGGTCCGCACGCTGACCGACCTGCGCGCGGACGAGACGATGCTCGTGCAGTCCGGCAAGCCGGTGGGCGTGCTGCGGACCCACGAGTGGGCACCGCGGGTGCTCCTCGCCAACTCCCACCTCGTGGGGGACTGGGCGACCTGGCCGGAGTTCCGCCGTCTCGAACAGCTCGGGCTGACGATGTACGGCCAGATGACCGCCGGGTCGTGGATCTACATCGGCGCGCAGGGCATCCTGCAGGGCACCTACGAGACGCTCGCCGCGGTGGCCGCCAAGCGCTTCGGGGGCACGCTCGCCGGGACGCTGACGGTCACGGGCGGCTGCGGCGGCATGGGCGGCGCGCAGCCGCTCGCCGTCACCCTCAACGGGGGCGTCTGCCTCGTCGTCGACGTCGACCGGGCACGCCTCGACCGGCGCGTGCGCGAGCGCTACCTCGACGTCGTCGCCGACTCCCTCGACGACGCCGTGCGCCAGGTGCAGGAGGCGAAGGCAGCGTCGCGGCCGCTGTCGGTCGGCCTGACCGGCAACAGCGCGGAGGTCCTGCCCGAGCTGCTGCGCCGCGGGGTCGACGTGGACGTCGTCACCGACCAGACCTCCGCGCACGACCCGCTGTCCTACCTGCCCCTCGGCGTCGACGTCGCCGACTGGGCCGAGTACGCCGCCGCGAAGCCCGAGGAGTTCACCGACCGGGCGCGGGAGTCGATGGCCCGGCACGTCGAGGCCATGGTCGGCTTCCAGGACGCCGGTGCCGAGGTCTTCGACTACGGCAACTCGATCCGCGACGAGGCCCGCCACGGCGGGTACGAGCGGGCCTTCGAGTTCCCGGGCTTCGTGCCCGCCTACATCCGCCCGCTGTTCGCCCAGGGCAAGGGGCCCTTCCGGTGGGCGGCGCTGTCCGGGGACCCGCGCGACATCGCCGCCACCGACCGGGCCGTGCTCGACCTCTTCGGAGAGGACGACCACCTGCACCGGTGGATCCGCGCCGCCCAGGACAAGGTCGCCTTCCAGGGTCTGCCCGCGCGCATCTGCTGGCTGGGTCACGGCGAGCGCGACCGCGCCGGCCTGCGGTTCAACGAGCTGGTCCAGTCCGGGGAGATCAGCGCGCCGATCGTCATCGGGCGCGACCACCTGGACTCCGGCTCGGTGGCCTCGCCGTACCGCGAGACCGAGGCGATGGCGGACGGCTCGGACGCGATCGCGGACTGGCCGCTGCTCAACGCCCTGGTCAACACCGCCTCCGGCGCCACCTGGGTGTCGCTGCACCACGGCGGCGGCGTCGGCATGGGCCGGTCGATCCACGCCGGCCAGGTGACGGTCGCCGACGGCACCGAGCTCGCCGCGCAGAAGCTGGAGCGGGTGCTGTCCAACGACCCGGCCACGGGGGTGCTGCGGCACGCCGACGCCGGGTACGACGACGCCGTCGCCGCGGCCGGGCGCGGCGGCGTCGTGCTGCCGATGCGGGGTGACGCGTGAMTSYDRGTPVPVRAPRGTTLTARSWQTEAPLRMLQNNLDPEVAERPDDLVVYGGTGRAARDWPSFHAMVRTLTDLRADETMLVQSGKPVGVLRTHEWAPRVLLANSHLVGDWATWPEFRRLEQLGLTMYGQMTAGSWIYIGAQGILQGTYETLAAVAAKRFGGTLAGTLTVTGGCGGMGGAQPLAVTLNGGVCLVVDVDRARLDRRVRERYLDVVADSLDDAVRQVQEAKAASRPLSVGLTGNSAEVLPELLRRGVDVDVVTDQTSAHDPLSYLPLGVDVADWAEYAAAKPEEFTDRARESMARHVEAMVGFQDAGAEVFDYGNSIRDEARHGGYERAFEFPGFVPAYIRPLFAQGKGPFRWAALSGDPRDIAATDRAVLDLFGEDDHLHRWIRAAQDKVAFQGLPARICWLGHGERDRAGLRFNELVQSGEISAPIVIGRDHLDSGSVASPYRETEAMADGSDAIADWPLLNALVNTASGATWVSLHHGGGVGMGRSIHAGQVTVADGTELAAQKLERVLSNDPATGVLRHADAGYDDAVAAAGRGGVVLPMRGDAPGPT0020250_1826DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020250-hutU-K01712NANA
AK018_004311620hutHCOG2986Histidine ammonia-lyaseATGAGCACGACGCACCCCTCGCCGCCGTCCCCCGTCACCGACGGCCGGGCGACCACACCGGTCCTGCTGGACGGGTCCCCCCTGCGGATCGACCAGGTCGTCGCCGTCGCCCGCCACGGCGCCCCGGTCTCCGTGGGAGCCCCGGCCCGGGACGCGATGGCGCGCTCCCGGTCCGTGATCGACGCGCTGGCGGACGACGTCGTCCCCCACTACGGCGTGTCCACCGGGTTCGGGGCCCTCGCCCGCCGCCACATCCCCGTCGGGTCGCGGGCCCGGCTCCAGCTCTCCCTGGTGCGCTCCCACGCCGCGGGCTCCGGACCGGAGGTGGAGACCGAGGTGGTGCGCGCCCTGCAGCTGCTGCGCCTGGCCACGCTGTGCACCGGCCGGACCGGGGTGCGTCCCGTGGTCGCCGAGACCTACGCGGCGATGCTGAACGCGGGGCTCACCCCCGTCGTCCACGAGTACGGCTCCCTCGGCTGCTCCGGCGACCTGGCCCCGCTCGCCCACGTCGCGCTCGCCGCGCTGGGCGAGGGCGAGGTCCGCGACGCCGCGGGCGCCCGGCGCCCGGCCGGGGAGGCGCTGGCGGCGGCAGGGATCGAGCCGCTGGCGCTGCAGGAGAAGGAGGGGCTCGCGCTCATCAACGGCACCGACGGGATGCTCGGCCAGCTCTGCCTGGCCCTGGACGACCTGCAGCGTCTGCTCGCCACCGCCGACGTCGCGGCCGCGCAGAGCGTCGAGGCGCTGCTCGGCTCCGACGCCCCGTACGCGGCCGACCTCGTGGCGATGCGCCCCCACCCCGGGCAGGCGGCGTCGGCGGCGAATCTGCGCGCGATGCTGGCGGGATCGCCCCTCATGGCGAGCCACCGCGAGCTCGCACCCGACGGGACGCCGGCCTGCACCCGCGTCCAGGACGCCTACTCGTTGCGCTGCGCCCCCCAGGTGCACGGCGCCGCCCGCGACACCCTCGACCACGCGCGGCTCGTCGCCGACCGCGAGCTCGCCGCGGCCGTCGACAACCCCGTGGTGACGGTGGACGGCCGGGTCGAGTCCAACGGCAACTTCCACGGCGCCCCGGTGGCCTACGTCCTGGACTTCGTGGCGATCGCGGTGGCCGACGTCGCCAGCATCAGCGAGCGCCGCACCGACCGGTTCCTCGACGTCGCGCGCAACGAGGGCCTGCCGCCGTTCCTGGCCGACGACCCCGGCGTGGACTCGGGGCTGATGATCGCCCAGTACACGGCCGCGGGGATCGTCTCCGAGCTCAAGCGGCTCGCGGCGCCCGCCGGCGTGGACTCGATCCCGTCCTCGGCCATGCAGGAGGACCACGTCTCCATGGGCTGGGCCGGTGCCCGCAAGCTGCGCCGCGCCGTGGACGGGCTGGCCCGCGTCCTGGCGATCGAGCTGCTCACCGCCGCCCGCGCCCTCGACCTGCGCGCCGCCGCGGACCCGGCCCACGGGCCGGCCGCGGGCACCGGCGCCGTCCGCGACCTGCTGCGCACCCGGGTCGAGGGCCCGGGGCCCGACCGGTTCCTGACGCCCGAGATCGACGCCGTCGTCGACCTCGTGGTCGACGGGGCCGTGCTGGACGCCGCGACCGCCGCCGTCGGCGAGCTCGCCTGAMSTTHPSPPSPVTDGRATTPVLLDGSPLRIDQVVAVARHGAPVSVGAPARDAMARSRSVIDALADDVVPHYGVSTGFGALARRHIPVGSRARLQLSLVRSHAAGSGPEVETEVVRALQLLRLATLCTGRTGVRPVVAETYAAMLNAGLTPVVHEYGSLGCSGDLAPLAHVALAALGEGEVRDAAGARRPAGEALAAAGIEPLALQEKEGLALINGTDGMLGQLCLALDDLQRLLATADVAAAQSVEALLGSDAPYAADLVAMRPHPGQAASAANLRAMLAGSPLMASHRELAPDGTPACTRVQDAYSLRCAPQVHGAARDTLDHARLVADRELAAAVDNPVVTVDGRVESNGNFHGAPVAYVLDFVAIAVADVASISERRTDRFLDVARNEGLPPFLADDPGVDSGLMIAQYTAAGIVSELKRLAAPAGVDSIPSSAMQEDHVSMGWAGARKLRRAVDGLARVLAIELLTAARALDLRAAADPAHGPAAGTGAVRDLLRTRVEGPGPDRFLTPEIDAVVDLVVDGAVLDAATAAVGELAPGPT0020230_499DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745NANA
AK018_00432756xynR_1COG1414HTH-type transcriptional regulator XynRGTGCCCGCAGCGCGTGCGACGGCGCGCCTGCTCGCGCACCTGGCCGCCCAGCCCGGCCCGGTCCCCGCGTCGTCCGTGGCCGCGAGCCTCGACCTGCCCCGCTCGTCCGTCTACCACCTGCTGTCCGTCCTGGCCGACGAGGGCTTCGTGACCCACTACCCGGAGGAGCGCCGCTACGGCCTCGGGGTCGCCACCCTCGGGCTCGGCACCGCCTACACGCGTCAGGCACCCGTGACCCGGCTGGCCCGGCCCGTGGTCTCCCGGCTCGTGGAGTCCACGGGTGAGAACGGCCACCTCGCGCTCCTCAACGGACGCGAGGTGCTCTACCTCGTCGAGCAGCGGGCACCGGGCCGCCCGCCGCTCGTGTCCGACGTCGACGTCCGCCTGCCCGCCCACCTCACGGCGTCGGGGCGGTCCGTCCTCGCCCACCTGCCCGCGGCCCAGGTCCGGGCCGCCTACCCGACCGCCGGGGCGTTCAGCGACCGCACGGGCCGGGGGCCGCGCACGCTCAGCGAGCTGCGGACGGTGCTGCGCGAGGTCCGCCGGCGGGGGTACGCGGTCGAGGACGGCGAGGTGACCGACGGCTTCGCCTCGGTGGCGGACGTCGTCGTCGACCACCTCGACCGGCCGGTGGCCGGGCTCGCCCTGACGTTCCGCTCCGCCGACCGCGGCCCCGAGGACCGCGAGCGGCTGGCCCAGCAGGTGTCCCGGGCGGCCGCCGCGATCAGCGCACGGCTGGGCGCCCGGCAGCAGTGAMPAARATARLLAHLAAQPGPVPASSVAASLDLPRSSVYHLLSVLADEGFVTHYPEERRYGLGVATLGLGTAYTRQAPVTRLARPVVSRLVESTGENGHLALLNGREVLYLVEQRAPGRPPLVSDVDVRLPAHLTASGRSVLAHLPAAQVRAAYPTAGAFSDRTGRGPRTLSELRTVLREVRRRGYAVEDGEVTDGFASVADVVVDHLDRPVAGLALTFRSADRGPEDRERLAQQVSRAAAAISARLGARQQNANANANANA
AK018_004331008hypothetical proteinGTGGAGCTGGCGCTCGTCGTCGTCATCGTCGCCGTCGCGCTCGGGTTCGCGTACACCAACGGGTTCCTCGACGCGGCGAACGCCGTCGCGACCTCGGTGTCGACGCGGGCGCTGACCCCGCGCATCGCGGTGACCATGGCGGCGGGCATGAACTTCGTCGGTGCGCTGCTGGGGACGTCGGTGGCCGAGACCATCGCCACCTCGATCGTCGAGCTCGACGACGGCACCGCCGTGCAGTCCCTCGTCGTCGTGCTCAGCGCACTGCTCGGGGCGATCGCCTGGAACCTCTTCGCCTGGTGGTACGGGATGCCGACGTCGTCGACGCACTCCCTCATCGGCGGCCTGCTGGGAGCCGGCATCGCCGGCGGGATGACGGTGTACGGCGCCGAGGTGGTCGACAAGGTCGTGCTGCCGACGCTCTTCTCCCCGCTGATCGGCTTCGTCGGCGCCTACGTGCTCATGGTCGCCCTGATGTGGATGCTGCGGAACGTCGCCCCGGCACGGGTGAACCGCCGCTTCCGGGTGGCGCAGACGGCCTCGGCCGCCGCGATGGCGCTCGGCCACGGTCTGCAGTCCGCGCAGAAGACGATGGGTGTCATCTGGCTCGCCCTGCTCACCGTCGGGTCCACCGCCGCGCGCGAGGGCATCCCGCTGTGGGTCAAGATCGCCGCGGCCACCGCGATGGCGGTCGGCACCTACGCGGGCGGGTGGCGCATCATGCGCACCCTGGGCCGCCGCATCATCGAGCTCGACCCGGCACGTGGCTTCGTCGCGGAGCTGGTGTCGGCCGTCGTGCTCTACGCCAACGCCATCGTGCTGCACGCACCGGTGTCGACGACGCACACCATCACCTCGGCCATCATGGGCGCGGGCGCGACCCGCCGGTGGACCGCGGTGCGCTGGGGCGTGGTCCGCACCATCGCGATCTACTGGGTGCTCACGGCACCCGTGGCCGGGCTGCTGGCGGCGGGGGCGACGCTCGCGCTGCTGCCCCTGGCCGGCGGTTGAMELALVVVIVAVALGFAYTNGFLDAANAVATSVSTRALTPRIAVTMAAGMNFVGALLGTSVAETIATSIVELDDGTAVQSLVVVLSALLGAIAWNLFAWWYGMPTSSTHSLIGGLLGAGIAGGMTVYGAEVVDKVVLPTLFSPLIGFVGAYVLMVALMWMLRNVAPARVNRRFRVAQTASAAAMALGHGLQSAQKTMGVIWLALLTVGSTAAREGIPLWVKIAAATAMAVGTYAGGWRIMRTLGRRIIELDPARGFVAELVSAVVLYANAIVLHAPVSTTHTITSAIMGAGATRRWTAVRWGVVRTIAIYWVLTAPVAGLLAAGATLALLPLAGGPGPT0002655_3180DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPHATE_TRANSPORT,PGPT0002655-TC_PIT-K03306NANA
AK018_00434621hypothetical proteinGTGCGCCTGCGCCTCACACCGCGCGACTCGACCTACTACGACCTGCTGGCTGCGCTGGCGCGGCACACCGTCACGGGGGCGTCCCTCCTGGCGGAGCTGCTGGGGGCGTCGAGGCCGGAGCGTGAGCGCATCGTGGCCCAGCTCGCCGAGGCCGAGCACCAGGCCGACGACGTCACCCACTCGATCAAGCGGCGGCTCAACCAGACCTTCGTCACCCCCTTCGACCGGGACGACCTCTACCACCTGGCGTCGGCCCTGGACGACTGCATGGACGCCATGGACGAGGCCGGCCACCTCATCGTGCTGTACAAGGTCGCCGAGCTGCCGATGGCCGTCTCGGAGCAGGTGCAGGTGCTGCAGCGCTGCGCCGAGCTGACCGCCGACGCGATGCCCCGGCTGCGCAAGCTCGACCAGCTGCCCGAGTACTGCGTCGAGATCAACCGCCTGGAGAACCAGGGCGACACGCTCCACCGGTCGCTCCTCGGCCACCTCTTCGACAAGGTCACCGACCCGATCCTGCTCATCAAGCTCAAGGAGATCGTCGACAACCTCGAGGAGGCCACCGACGCCTTCGAGCGCGTGGCCCACCTCGTCGAGTCCATCAGCGTCAAGGAGTCCTGAMRLRLTPRDSTYYDLLAALARHTVTGASLLAELLGASRPERERIVAQLAEAEHQADDVTHSIKRRLNQTFVTPFDRDDLYHLASALDDCMDAMDEAGHLIVLYKVAELPMAVSEQVQVLQRCAELTADAMPRLRKLDQLPEYCVEINRLENQGDTLHRSLLGHLFDKVTDPILLIKLKEIVDNLEEATDAFERVAHLVESISVKESNANANANANA
AK018_00435600hypothetical proteinATGCTCGACCCGCTCGAGGCCGAGAACCTGCCCGGCGAGCTCGACCCCGCGCTGCGCGACGAGGTCGCGCACACGACCGCCCGCGCCGTCGTGCACACCGCACGGGCCACCGAGGACCCGGAGGTCGTGGCGCGCCTCGTCCGGCTGGTCGAGCGCGAGGGGCTCGACGTCGTGGCCGAGCTGTGGTCCGACGCCGCCCCGGCGACCCTGCCCGGCGCCCTGTGGCGGTTGTACGCCCTGCGCGAGTGGGTCCGGCGCGACCCCCGCACGATCGGGCTGCGCTACCGGCTCGGCGTCGACGTCGCGCCCGTCCACGAGGTCGTCGCCGGGGTGCCCCGGCCGCCGACCCCGGAGGACCTGCGGGTGCTGGCCGACACCGTGCTCTCCGGGGTCTACGCCGGTGACCTCGCCGTCGCGCTCGAGCGGGCCGCCGCCTTCGGCCGCATCCTCGCCACCGGCGCCGCCTACGACGCCGACGCCCGCGAGACCGCCGACCCGGAGGCCGCGACCCGCATGACCCGCGGGGCGGCCGACCTGACCCGCACGGCCGAGGAGCTGGAGCATGCCGCAGCCCTGTGGCGTGCGGGTTCGCTGGACTGAMLDPLEAENLPGELDPALRDEVAHTTARAVVHTARATEDPEVVARLVRLVEREGLDVVAELWSDAAPATLPGALWRLYALREWVRRDPRTIGLRYRLGVDVAPVHEVVAGVPRPPTPEDLRVLADTVLSGVYAGDLAVALERAAAFGRILATGAAYDADARETADPEAATRMTRGAADLTRTAEELEHAAALWRAGSLDNANANANANA
AK018_004362082hypothetical proteinATGTCGACCCCTGCCCGCCCGAGCGTGCGCAGCACGCACCGCAAGGCGATCGCGCTGTCGTTCGCCGCGGCAGTCGGCGGCTTCCTGTTCGGCTTCGACTCGTCGGTGATCAACGGTGCGGTCTCCGCGATCGAGGGCGAGTTCGCCCTCAGCTCGACGGTGACGGGGCTCGTGGTCGCGGTGGCGCTCCTGGGGTGCGCCCTCGGCGCCTGGGGTGCCGGCCGGCTCGCCGACCGCTGGGGACGCGTGCGCGTCATGCTGCTCGGCGCGGGACTCTTCCTCGTCTCCGCGGTGCTCTCCGCGGCGGCCTTCTCGGCCCTGGACCTGTCGCTGTGGCGGTTCGTCGGGGGCATCGGCATCGGGATCGCCTCGGTGATCGCGCCGGCCTACATCGCCGAGATCGCCCCGGCACGGATCCGCGGCAGCCTCGGGTCCCTGCAGCAGCTGGCGATCACGGTCGGCATCTTCGGAGCCCTGCTGAGCGACCAGATCCTGGCCGAGACCGCCGGCGGGGCGGCCGAGCAGCTCTGGTTCGGCTGGGAGGCCTGGCGCTGGATGTTCCTCGTCGAGGCGGTGCCGGCCGCGGTCTACGGGCTGCTCGCCCTGCGGATGCCGGAGTCGCCCCGCTTCCTGGTGGCCCGAGGCCGCCGCGACGACGCCCGGCGGGTCCTGGAGTCGGTGCTCGGTCCGGACGAGGGCGTCGACGAGCGGATCGGCGAGATCGAGCGGTCGATCGCGGTCGACGAGGAGAACGCCGAGCGCGGGTCGCTGCGCGGGTCGGGCTTCCTGGGGCTCAAGCCGATCGTGTGGGTCGGCATCCTGCTGGCCGTCTTCCAGCAGTTCGTCGGGATCAACGTGATCTTCTACTACTCGACGACACTGTGGCAGACCGTCGGGTTCGACGAGTCGCAGGCGTTCCTGGTCTCCACCATCACCTCGGTGACGAACATCGCGGTGACGTTCGTCGCGATCGCGCTGATCGACAAGGTGGGCCGCCGGCCCATGCTGCTGGTGGGCTCGGCGGGCATGGCCGTCTCCCTGCTGCTGATGGCGGCCGCCTTCACCCAGGGCACCGCCGTCGTCGACGAGGCCACGGGCGACTCGACGCTGTCGCTGACCGGCGCCTGGGCGACCGTGGCCCTGGTGGCGGCGAACGCGTTCGTCGTCTTCTTCGGCGCGACCTGGGGCCCGCTGATGTGGGTGATGCTGGGCGAGATGTTCCCGAACCGGATCCGCGCGGCGGCGCTCGGGGTCGGCGCGGCGGCCAACTGGATCGCCAACTTCGCCATCACCCTGACCTTCCCGCCGCTGCTGGCGACGTTCGGCCCGGCGATCCCCTACGGCATGTACGGGTTCTTCGCGGTGCTGTCGTTCGTCTTCATCTGGTTCAAGGTCTCCGAGACCAAGGGCAAGGAGCTCGAGGACATGAGCGAGGAGGTGCGCACCGGCCCCCGCCCCTCCCGGCCCCCCCGCCGGCCTTGGGGGGCCCGCCACCCCGGGCCCCCGCCCGGGGGCGGCCCGTCGCCCCGGGAGGCGGGCCGCCGTCGTGCGTGCGGGTTCCGCCACCAGGATGTTTGCATGCTGCAAGCATCTGTCCTACTGTTTCTCGGAGCAACGGAAGGAGTCGCCGTGCCTGACGAGGCCACCACCGCGCTTGTCACCGCGCTCGAGCAGCTCGGCCGCGCCCAGCGCGAGGCCGCCGCCCGCATCGCCCGCGAGCTGGGCCGGCCGCGGGCCGCCCTCGGCGTCGTGCGCCTGCTGCGGGCCCGCGGCCCGGTCCAGCTCTGCGAGGTCGCCGAGGCACTCCGCGTGGACTCCTCGGTCGCCAGCCGCCAGGTGGGCGCGCTCGTCGAGAACGGGTACGTCCGGCGCACGGTCGACGAGAACGACCGGCGGGCCCGCACGCTCGAGCTCACCGAGGCCGGCCGGCGGCTGGCCGACGACAGCGACGAGCAGTTCGAGGCGTTCGTCGGCGAGGCGTTCACCGACTGGACCCCGCACGACCTCTCCGTCGCCGTCGACCACATCCGCAGCGTCGCGACCGCCATCAGCTCCGTCAGCCAGGAGGCACCCCTCAGATGAMSTPARPSVRSTHRKAIALSFAAAVGGFLFGFDSSVINGAVSAIEGEFALSSTVTGLVVAVALLGCALGAWGAGRLADRWGRVRVMLLGAGLFLVSAVLSAAAFSALDLSLWRFVGGIGIGIASVIAPAYIAEIAPARIRGSLGSLQQLAITVGIFGALLSDQILAETAGGAAEQLWFGWEAWRWMFLVEAVPAAVYGLLALRMPESPRFLVARGRRDDARRVLESVLGPDEGVDERIGEIERSIAVDEENAERGSLRGSGFLGLKPIVWVGILLAVFQQFVGINVIFYYSTTLWQTVGFDESQAFLVSTITSVTNIAVTFVAIALIDKVGRRPMLLVGSAGMAVSLLLMAAAFTQGTAVVDEATGDSTLSLTGAWATVALVAANAFVVFFGATWGPLMWVMLGEMFPNRIRAAALGVGAAANWIANFAITLTFPPLLATFGPAIPYGMYGFFAVLSFVFIWFKVSETKGKELEDMSEEVRTGPRPSRPPRRPWGARHPGPPPGGGPSPREAGRRRACGFRHQDVCMLQASVLLFLGATEGVAVPDEATTALVTALEQLGRAQREAAARIARELGRPRAALGVVRLLRARGPVQLCEVAEALRVDSSVASRQVGALVENGYVRRTVDENDRRARTLELTEAGRRLADDSDEQFEAFVGEAFTDWTPHDLSVAVDHIRSVATAISSVSQEAPLRNANANANANA
AK018_004371659bmr3_2Multidrug resistance protein 3ATGACCGACACCACCGCCGGCCGCACCCCGGCCATGACCCGTCGCGAGACGCTGGAGGCCCTCTCGGGCATCCTGCTCGGAGTCTTCGTCTCCCTGCTCGCGACGACCATCGTCTCGACGGCGCTGCCGCGCATCGTCGCGGACCTCGACGGCTCCCAGCACGCCTACACCTGGGTCGTCACCGCGATGCTGCTGACGATGACGATCTCGACCCCGCTGTGGGGCAAGCTCGCCGACCTGACGAACCGCAAGACCCTGATCCAGATCGCCCTGGTGATCACGGTCGTGTCCGCCGCCTCGGCCGGGTTCGCGCAGAACATGGAGATGCTCATCACCTCGCGCGCCCTGCAGGGCATCGGCGCCGGCGGTCTGATGTCGCTGGCGACCGTCCTGATGTCGGACATCATCAGCCCCCGCGAACGCGGCAAGTACATGGGCCTGATGGGCGGCGTGATGGCCGTGGCCCAGATCGGCGGCCCGCTGCTCGGCGGCCTCATCACCGACTCCGTCGGCTGGCGGTACACGTTCTTCGTCGGCGTCCCGTTCGCCGTCGTCGCCCTGGTCGTGCTCCAGAAGACCCTGCACCTGCCGGCCCGCCCCCCGCGCGCGGTCCGCATCGACTACGTCGGGGCCGGCCTCATCGCCGTCGGCGTCGCCCTGCTGCTGCTGTGGGTCACCTTCGCCGGCGACCAGTTCGCCTGGGCCTCCTGGCAGACCGCCGCGATGGTCGGCGCCGCCGCCGTCGCCCTGCTCGGCGCCGTCCTCGCCGAGCGTCGCGCGCCGGAACCGATCATCCCGCTGCACCTCTTCCGCAACCGCACGTTCGTGCTCTCGATCGTCGCGTCGGCGGCCGTGGGCGTCGCGATGTTCGGCACCGCGGTGTTCCTCGCCCAGTACCTGCAGCTCGCCCGCGGCATGACGCCCACCCAGTCCGGCCTGCAGACCGTCCCCATGGTCGTCGGCACGATGCTCGGCGGCATCGTGCTCGGCCGGATCATCTCGCGCACCGGCCGGTACAAGGCGATCATGATCGGCGGCGCCGTCGTGCTGACCGCTTCGCTGTTCGGGATGTCCACGATCGGGACCGGCACCAGCCTCGTCGTGCTCTCGATCTTCCTGTTCGGCCTCGGCCTGTCGGTCGGTGCCCTCATGCAGAACCTCGTGCTCGCCACGCAGAACACGCTGGACCTGCGGGACATGGGTGCCGGGACCGCCACGGTGGCGTTCTTCCGCTCCCTCGGGGGCGCGATCGGGGTCTCGGCGCTCGGTGCCGTGCTGGCGAGCGACGTCCGGGACGAGCTGGCCCGGGGGCTGGCCGAGCTCGGCGTCCCCACCTCGGCGATCGGCGGGTCCACCGGCGCGGTGCCGGACATGTCCGCGCTGCCGGGACCGGTGGCCGACGTCGTCGCCTCCGCCTACACCGAGGGGATCACCGGGATCTTCCTCGTCGCGGTCCCCCTGGCCGTCGTCGCCCTGGTGGCCATCTGCTTCATCGTCGAGATCCCGCTCGGCGAGCGGTCCGGCATCGAGCAGACGCGCGACCTCGCGGCGCAGCAGGATGCCGCCGAGCCGGCCACGGGGAGCGGCACCGACGGAGCCGACACTGTCGCCGCGCCGTCGACCACTGCGGCGACCGCGCCGGTGGCCGCCCGCGACTGAMTDTTAGRTPAMTRRETLEALSGILLGVFVSLLATTIVSTALPRIVADLDGSQHAYTWVVTAMLLTMTISTPLWGKLADLTNRKTLIQIALVITVVSAASAGFAQNMEMLITSRALQGIGAGGLMSLATVLMSDIISPRERGKYMGLMGGVMAVAQIGGPLLGGLITDSVGWRYTFFVGVPFAVVALVVLQKTLHLPARPPRAVRIDYVGAGLIAVGVALLLLWVTFAGDQFAWASWQTAAMVGAAAVALLGAVLAERRAPEPIIPLHLFRNRTFVLSIVASAAVGVAMFGTAVFLAQYLQLARGMTPTQSGLQTVPMVVGTMLGGIVLGRIISRTGRYKAIMIGGAVVLTASLFGMSTIGTGTSLVVLSIFLFGLGLSVGALMQNLVLATQNTLDLRDMGAGTATVAFFRSLGGAIGVSALGAVLASDVRDELARGLAELGVPTSAIGGSTGAVPDMSALPGPVADVVASAYTEGITGIFLVAVPLAVVALVAICFIVEIPLGERSGIEQTRDLAAQQDAAEPATGSGTDGADTVAAPSTTAATAPVAARDNANANANANA
AK018_00438543hypothetical proteinATGATGGGGCACATGCAGGACAGCGCCACGCCCACGACCCCGCCGGACCCGGAGACGGACCCGTTCGGAGCCCTGGAACGCGAGCTCCGGGTACTGATCCGGCGTGCGCAGTCCACGGCCGCCCAGATGGCCCGGATCATCCACCCCGAGCTCGACGCCTCGGCGTACCCTCTGCTGGCGCACATCGCCCAGTACCCGAACAGCCGCGGGTCCGACCTCGCGGCGCACTTCGGCGTGGGGCGCGCCACCGTCTCGCGCCAGCTCAGCCGGATGGTCGAGCTCGGCCTCGTGCACCGCGAGACCGACCCGGAGGACACCCGGGGGCAGTGCATCACGCTCACCGACGACGGGGCCGCCCGGTTCGAGCACGCCCGGGACTCGAGGGTCGTCATGCTCGAGGCGGCGCTGACGGACTGGGAGAAGGACGACATCTCCCAGCTCGCCCGGCTGCTGCGCCGCTACTCGGCCGACGTCGTCAGCTGGCTGGAGTCGCGCCAGGAGCCGGCGCCGACCGACGCAGCATCCTCGCCCGCAGCGAGCTGAMMGHMQDSATPTTPPDPETDPFGALERELRVLIRRAQSTAAQMARIIHPELDASAYPLLAHIAQYPNSRGSDLAAHFGVGRATVSRQLSRMVELGLVHRETDPEDTRGQCITLTDDGAARFEHARDSRVVMLEAALTDWEKDDISQLARLLRRYSADVVSWLESRQEPAPTDAASSPAASNANANANANA
AK018_00439897hypothetical proteinATGAGCATCGAGACCGGGACGGTCCCGGACCGCCTCGTGAACCTGCGCGACGTCGCGACGTCGTCCGACGCCGTGCGCCCCGGCGTGCTGCTGCGGGCCGACGCCCCGCGCGCCGGCGACGTGCCGCCGTCGGACGTGGTCTGGCCGCCCCGCACCGTCCTCGACCTGCGCGACCCCGGCGAGCAGCGCGAACCGCACCCGCTGGCGGACGTCGCCGGCGTGCTCTCCCTGCCGGGGGGGGCCGGGGGGGCGCGCCGCGCCCCCCCCCCCCCCCCCCGGCCCGTCGACAACCGGCGCCAACGAAAAGAGAAGGGGAACGCGGCGGGCCGCCCGCCCCCGCGGGCGGCCGTCGCCGGGGTGCGCGCCCGGCGGGGGCGCGCGGGGGCGCCGCGCGGCGCACCCGCCGAGCACCCCGGTCCGTTCGACCTCGGACGCCTCTATCTCGAGATGCTCGACGGCGCGGGCGGCCGGCACCTGGCGGCCGGCGTGGCCGCGCTCGCCACGAGCGACGCGCCGGTGCTGGTCCACTGCACCGCCGGCAAGGACCGCACCGGGGTCTTCGTCGCGGCGGTGCTCGCCCTGCTCGGGGTGGAGCGGTCCGAGATCGTGGCCGACTACGTGCGCACCGGGCCCAACATGCCGCGGGTCCTCGCCCGGGCCCGGCACACCTCCCGGGCGCCGGACCGGCGGAGCCACGTCGTCGCCGCGCTCCCGCCGGAGCTCCTCACGGCTCCTGCGCACGCGATCTCGACGGTGCTCGACGCCCTGGCGGCGCGGGACGGCGGTCCTGGCGGCTGGTTCGCCGCCCAGGGAGGGGCGGCGTCGACGGTCAGCTCGCTGCGGGCGAGGATGCTGCGTCGGTCGGCGCCGGCTCCTGGCGCGACTCCAGCCAGCTGAMSIETGTVPDRLVNLRDVATSSDAVRPGVLLRADAPRAGDVPPSDVVWPPRTVLDLRDPGEQREPHPLADVAGVLSLPGGAGGARRAPPPPPRPVDNRRQRKEKGNAAGRPPPRAAVAGVRARRGRAGAPRGAPAEHPGPFDLGRLYLEMLDGAGGRHLAAGVAALATSDAPVLVHCTAGKDRTGVFVAAVLALLGVERSEIVADYVRTGPNMPRVLARARHTSRAPDRRSHVVAALPPELLTAPAHAISTVLDALAARDGGPGGWFAAQGGAASTVSSLRARMLRRSAPAPGATPASPGPT0014530_3087DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
AK018_00440405msrB_1COG0229Peptide methionine sulfoxide reductase MsrBATGACCTACGACGTGACCAAGAACGACGACCAGTGGCGTGCCGAGCTGTCACCGCAGGAGTTCTCGGTGCTGCGACAGGCCGGGACCGAGCGGCCGTGGACCGGTGAGCTGCTGGACGAGCAGCGCGAGGGCGTCTACCGGTGCCGGGGGTGCGCGGGCGAGCTCTTCCGCAGCGAGCACAAGTTCGACTCCCACTGCGGGTGGCCGTCCTTCTACACACCGCTGGCCGGCGACCGGGTCGAGCTCGTCGAGGACCGTTCGCTCGGCATGGTGCGCATCGAGGTGCGCTGCTCCCGGTGCGGCTCGCACCTGGGCCACGTGTTCGACGACGCGCCCCAGACGCCGACCGGCGACCGGTACTGCATGAACTCGGTCAGCCTGACCTTCGAGCCCGCCGAGGGCTGAMTYDVTKNDDQWRAELSPQEFSVLRQAGTERPWTGELLDEQREGVYRCRGCAGELFRSEHKFDSHCGWPSFYTPLAGDRVELVEDRSLGMVRIEVRCSRCGSHLGHVFDDAPQTPTGDRYCMNSVSLTFEPAEGPGPT0013070_4630DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013070-msrB-K07305NANA
AK018_004411563rhlE_3COG0513ATP-dependent RNA helicase RhlEATGTCTGCCGAGGGCGCCAGCGACCACCGCGCGCCCCGCGTCGTGGAGATCCCCCCGGATTGCGTGCGGCGGACCCCGACCGTGGACGTCGTCGACGTCCGGAGAGGCTTCTCGTTGACTTCATTCGCCGACTTCGGCCTGCCCACGCCTGTGGTGCAGCACCTGACCGACGCGGGCATCACCAGCCCGTTCCCCATCCAGGCGGCCTCGCTGCCGGACACCCTCGCCGGGGCGGACGTCCTCGGCCGCGGGCGGACCGGCTCGGGCAAGACCCTGGCGTTCTCGCTGCCGGTCGTGACCCGGCTCGCGCACCGCGCCGCGGCCGAGCGTGCCGCGGGTCGCCCCCGCCGCGTGGCGAACCGCCCCACGGCGCTCGTGCTGTGCCCCACCCGCGAGCTCGCGAACCAGATCGACGCCACGATGAAGCCGCTGGCCGAGGCGCTCGGGCTGCGCACGACCACGATCTTCGGCGGCGTGGCCCAGTCCCGCCAGGTCACCGCGCTGGGCCAGGGCGTCGACGTCGTCATCGCCTGCCCGGGCCGCCTCGAGGACCTGCTGAACCAGAAGGCGCTGACGCTGGACGACGTCGCGATCACCGTGCTGGACGAGGCCGACCACATGGCCGACCTCGGGTTCCTGCCCGGGGTGAAGCGGATCATGGACCGCACCCCGCGCTCGGGCCAGCGCCTGCTCTTCTCCGCCACGCTGGACAACGGCGTGGACGTGCTGGTCAAGCGCTACCTGAAGAACCCGGTCACGCACTCGGTCGACGAGGCCGCGGCCCCGCCGCCGAAGATGACGCACCACATCCTCGCCGTGGCGGACAAGGAGTCCAAGAAGCAGGTCGTGCACCAGCTCGCCGGCGGCACGGGCCGCCGGGTGCTCTTCACGCGCACCAAGCACCAGGCGAAGAAGCTCGCGCGCCAGCTCACGGCCGCGGGCGTCCCCGCGGTGGACCTGCACGGCAACCTGGGCCAGGGGGCGCGGGAGCGGAACCTTGCGGCGTTCTCCACCGGGGACGTCAAGGTGATGGTCGCCACGGACATCGCGGCACGCGGGATCCACGTCGACGAGATCGAGCTCGTCGTGCACGTCGACCCCCCGGCCGAGCACAAGGCGTACCTGCACCGGTCCGGCCGCACGGCGCGCGCCGGGTCGGGCGGCGACGTCGTCACGCTCATGCTCCCCGAGGAGCGCGGGGACGTGCGCGACCTCACCCGCAAGGCGCGGATCACGGCACGGCCCCAGCCGGCCGAGCCCGGGGACGCCACGCTGACGGCGCTCGTGGGCGAGGTCGCCCCGTACGTCGCCCCGCCGGCTCCGCAGCAGCAGGGGTCCTCCCCGAAGTCGGGGCAGCGGGGCGCCGGGTCGCAGCAGCCGACGGGCGGCGCGGGCTCCGCACGCTCGGGCGGGGGACGTCGCCGCCGCCGCGGACGGGGCGGTCAGGGCGCGAGCCAGGGCGGAGGCCAGGGCGGCGGTGCGTCGCAGCGCCAGGGCGGCCAGCAGAACCGGCGGCAGCGGGGCGCCCAGGGTGCGGAGCGACAGGGCCAGCGGCGGCGCTGAMSAEGASDHRAPRVVEIPPDCVRRTPTVDVVDVRRGFSLTSFADFGLPTPVVQHLTDAGITSPFPIQAASLPDTLAGADVLGRGRTGSGKTLAFSLPVVTRLAHRAAAERAAGRPRRVANRPTALVLCPTRELANQIDATMKPLAEALGLRTTTIFGGVAQSRQVTALGQGVDVVIACPGRLEDLLNQKALTLDDVAITVLDEADHMADLGFLPGVKRIMDRTPRSGQRLLFSATLDNGVDVLVKRYLKNPVTHSVDEAAAPPPKMTHHILAVADKESKKQVVHQLAGGTGRRVLFTRTKHQAKKLARQLTAAGVPAVDLHGNLGQGARERNLAAFSTGDVKVMVATDIAARGIHVDEIELVVHVDPPAEHKAYLHRSGRTARAGSGGDVVTLMLPEERGDVRDLTRKARITARPQPAEPGDATLTALVGEVAPYVAPPAPQQQGSSPKSGQRGAGSQQPTGGAGSARSGGGRRRRRGRGGQGASQGGGQGGGASQRQGGQQNRRQRGAQGAERQGQRRRPGPT0013740_1093DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
AK018_00442753hypothetical proteinATGGCGGCCGTGGACGACTTCCTCACGACCGCCGGCGACGTGCTCGCGCAGATCTGGACCGCCGCCACGACCGCCGTGGCACCCCCCGACCGCACGGTGGTGATCGCCGCGGGACTGGCCGCGCTCGCCGTCGTGCTGGTGTCCCCGGTGTGGCGCGTCGCACGCCACGTCATCACCATCGCGCACGAGGGCGCGCACGCCGTGGTGGCGATGGTCACCGGGCGACGGCTCGACGGCATCCGCCTGCACTCGGACACCTCGGGGCTGACGGTGACGGCAGGACGGCCCCGCGGTCTCGGCATGATCCTCACCGCGTTCGCCGGCTACGTCGGGCCGGGCCTCGTCGGACTCGGCGCGGCGTGGCTGCTGCGGGCCGGGTACGCCGTCGGCCTGCTGTGGCTGCTCGTCCTCCTGCTGGCCCTGCTGCTGCTGAAGATCCGCAACTGGTTCGGCCTGTGGTCGGTGCTCGTCAGCGGTGCGCTGCTCGTCGGGGTGTCCTGGTGGCTCGAGCCCGCCGTGCAGTCGGCCGTCGCATACGCCGTGACCTGGTTCCTGCTGCTGGGCGCGGTGCGGCCGGTGGTCGAGCTGCAGTCGCAGCGTGCCCGGGGCCGGGCCCGGACGTCGGACGCGGATCAGCTCGGCCGGCTCACGGGCGTGCCCGGCATCGTGTGGGTCCTCGTCTTCGGCGCCGTCACCGTCGGCGCGCTGGTGCTCGGCGGGTCCTGGATCGTGGGTCCCGTCACGCCGTCCTGAMAAVDDFLTTAGDVLAQIWTAATTAVAPPDRTVVIAAGLAALAVVLVSPVWRVARHVITIAHEGAHAVVAMVTGRRLDGIRLHSDTSGLTVTAGRPRGLGMILTAFAGYVGPGLVGLGAAWLLRAGYAVGLLWLLVLLLALLLLKIRNWFGLWSVLVSGALLVGVSWWLEPAVQSAVAYAVTWFLLLGAVRPVVELQSQRARGRARTSDADQLGRLTGVPGIVWVLVFGAVTVGALVLGGSWIVGPVTPSNANANANANA
AK018_00443156hypothetical proteinGTGACCCACGACGCCGACCGGGCCGGCGGGCTCGACGAGGCGCTGCAGACGATCCGCCAGCAGCCCTTCGGCTCCGGGCTGCTCATCGTCATCGGGATCGGGATCGGGGCCTACGGCGTCTACTCGTTCACCCGGGCGCGCTACGCGAAGCTGTGAMTHDADRAGGLDEALQTIRQQPFGSGLLIVIGIGIGAYGVYSFTRARYAKLNANANANANA
AK018_00444285hypothetical proteinGTGCTCACCGTGACGGACAACGCCCGCACCGCCGTCGACTCTCTGGCCGAGCAGGCCGGTGTACCTGCCGAGGGTGGTCTGCGCATCGCGCAGTCCGCCGAGCAGCCTGGCAACTTCGAGCTCGCGCTCGTCCCCGCGCCCCAGCCCGAGGACCAGGTGGTGGACGAAGCCGGACAGACCAACGTCTACGTCGACGCCAGCGCGGCGACCGCGCTCGCCTCGCTGCAGCTCGACGCGGAACCCTCCACCGAGGGCCCCGGGTTCGTGCTCACGCCCCAGGGCTGAMLTVTDNARTAVDSLAEQAGVPAEGGLRIAQSAEQPGNFELALVPAPQPEDQVVDEAGQTNVYVDASAATALASLQLDAEPSTEGPGFVLTPQGNANANANANA
AK018_00446798glpQCOG0584Glycerophosphodiester phosphodiesteraseGTGACCACGCTCCTGCCCGACCGTCCGGACCCCGACCGTCCCGTCGTCGTCGCGCACCGCGGCTGCTCGGCGGTGGCGCCCCAGAACACGTTCGCCGCGTTCGAGGCGGCCTGGCGCTCCGGCGCCCCCGCGCTCGAGCTCGACGTGCGCCTCACCGCCGACGCCGTGCCCGTCGTCATCCACGACCCGGTCGTGGACCAGGTGACCGACGGCACGGGTGCCGTCGCCGACCTGGACGCGGACGCCGTCGAGCGGCTCGACGCCGGGGCACGCTTCGCGCCCGCCTTCGCCGGCCAGCGCATCCCCCGGCTGGACGACGTGCTGGCTTTCCTCGCCGCCCGCCCGGGGATGGACCTGCTCTGCGAGTACAAGGGCGTCTGGACGGCCGAGCAGGTCGCGCCGACGACCGCGGCGATCGACGCCGCCGGTCTGGCCGGCCGCTGCATCGTCCAGGGCTTCCGCCGGGAGACGGTCGCGTCGCTGCGCGCGGCGGCACCGCACCTGCCGCGCGGACTGCTGTGCGAGCAGGTCCCGTCCGACCTGCTGGACGCCGCCGCCGACCTCGACGTGGTGACCGTCAACCCGGCGGTGGCCGCGGTCCTGGCCGACCCCGCGCTCGTCCGACGCGCCCACTCCGCGGGGCGCCGGGTCATGCCGTGGACGGCGAACGCGCCCGCGGAGTGGGACCTCCTGCTCCGGGCCGGGGTCGACGGGGTCGTCACCGACCGCCCGGGTGAGCTGCGGGGATGGCTCGCCGGACGGGCCACCCGCCGCGCGGCGGAGGCCGGGAGCGGTTAGMTTLLPDRPDPDRPVVVAHRGCSAVAPQNTFAAFEAAWRSGAPALELDVRLTADAVPVVIHDPVVDQVTDGTGAVADLDADAVERLDAGARFAPAFAGQRIPRLDDVLAFLAARPGMDLLCEYKGVWTAEQVAPTTAAIDAAGLAGRCIVQGFRRETVASLRAAAPHLPRGLLCEQVPSDLLDAAADLDVVTVNPAVAAVLADPALVRRAHSAGRRVMPWTANAPAEWDLLLRAGVDGVVTDRPGELRGWLAGRATRRAAEAGSGPGPT0018470_5847DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
AK018_004471695hypothetical proteinATGCTCTGGGACGTGGACGGCGGCGGCATCGACGAACAGACGGTCGACGAGACGGTGGAGGCGACCGTCTCCCTGACCGTGACGCTGATCTGGGCCGGGGCCGCCATCGTGGTGGCCTACATCCTGGTGACCGTGGTGTCCGCCCTCATCCGGCGCCTGGCCCGGCGGCGCCCGCTCCTGCGGGACATGGCGACACGGCTGCGCAAGCCGCTGCGCGCCCTGCTCATGACCATCGCGGTCTGGGTCGCGGTCACGCTGTCCGCGCACCAGGACCAGGCCTGGTACGGGTTCGTCCAGCACTCGCTGCTCATCGCCACCATCCTCGCCGGGTCGTGGCTCCTGGGAGCGATGGCGTTCGTCGTCGAGGACCGCACCCTCGCCCGGATCGCCGGTAGCCACGACGACCGGCACAAGCGCCGGGTGGAGACGCAGATCTCCGTCATCCGACGGTTCACGGTCGCGGTCGTCGTGGTCCTGGCCATCGCCGCCGTCCTGCTCACCTTCCCGCAGATGCGTGCGGCCGGTGCCTCCATCCTGGCCTCGGCCGGTCTGCTCTCCCTGGTCGCCGGCCTCGCCGCCCAGTCGAGCCTCGCCAACACCTTCGCCGGGATGCAGATCGCCTTCACCGACGCGATCCGGGTCGACGACGTCGTGGTCCTGGAGGGGGAGTTCGGCCGGATCGAGGAGATCACCCTGACCTACGTCGTCGTCCACGTCTGGGACGACCGGCGGATCATCCTGCCCAGCACCTACTTCACGACCACGCCGTTCGAGAACTGGACCCGCCGCGCGGCCGACCTGCTCGGCACCGTCGAGCTGGACGTCGACTTCCGCGCCCCGCTGCCGGCGATGCGTGCCGAGCTCGACCGGATCCTGCACGCGTCGTCGCTGTGGGACCGACGGCTCGGCATCCTCGAGGTCACGTCGGCCACCGAGGGGTACGTCCGGGTCCGCGCGCTGGTCAGCGCGCAGGACTCGCCGACCCTGTGGGACCTGCGGTGCACGGTGCGCGAGGGGCTCGTCTCCTGGCTGCAGCGAGAGGCTCCCTACGCCATCCCGCGCTCGCGGTTCGAGGAGGCCGACAACGCGCTGCCGCCGGCCGACGCGGCGGAGACGGACCGCGCGGCCGCGGACCAGCCGGAGCCCGCGCCGCGGACCGACTCCGACGCCGAGCAGTCCAGCACCGACGAGCCCGCGGCGGAGGACGAGGGCGTCATCGTCGTCGAGGGACGGTCCGCGACCTCCGGGCCGCGCCGGCCGTCGGTCCGTGACCGCGGGCTGCTGCGGCGGATCCGGCGGCACCACGGTGACAGCGGCACCGTGCCCGCCGCGCCGGTCCCGGAGCGCGCCGAGCAGACCGTCGTCCTGGAGAGCATCGACCGTCCCGGGCTGTACAGCGGCAGCGAGTCGGCCGAGGAACGGTCACGGACGTTCAACGGGCCCGGTCAGGACGTCATCGAGGAGCGCGAGGAGAACGCGGAGCGTCGTCTGACCGGTGAGATCCCGATCGACGAGCCCGGCGCCGCGACCCCGGACGACCCGGACGCACCGCTGGACGACCGGGCCCGGGAGCGGCACGCCGGGCAGGATCCCGAGCACCCGGAGGACGACGACCCGCACCGCCGGATGCGCCGGACCGGCCTCTCCCGGGACTCCGGGGAGGGTGGGCCCGTCGACGGCGGGGACGGGGGCTAAMLWDVDGGGIDEQTVDETVEATVSLTVTLIWAGAAIVVAYILVTVVSALIRRLARRRPLLRDMATRLRKPLRALLMTIAVWVAVTLSAHQDQAWYGFVQHSLLIATILAGSWLLGAMAFVVEDRTLARIAGSHDDRHKRRVETQISVIRRFTVAVVVVLAIAAVLLTFPQMRAAGASILASAGLLSLVAGLAAQSSLANTFAGMQIAFTDAIRVDDVVVLEGEFGRIEEITLTYVVVHVWDDRRIILPSTYFTTTPFENWTRRAADLLGTVELDVDFRAPLPAMRAELDRILHASSLWDRRLGILEVTSATEGYVRVRALVSAQDSPTLWDLRCTVREGLVSWLQREAPYAIPRSRFEEADNALPPADAAETDRAAADQPEPAPRTDSDAEQSSTDEPAAEDEGVIVVEGRSATSGPRRPSVRDRGLLRRIRRHHGDSGTVPAAPVPERAEQTVVLESIDRPGLYSGSESAEERSRTFNGPGQDVIEEREENAERRLTGEIPIDEPGAATPDDPDAPLDDRARERHAGQDPEHPEDDDPHRRMRRTGLSRDSGEGGPVDGGDGGNANANANANA
AK018_00448600hypothetical proteinATGACGCCCACACCCGTGACCGTGTCGATCCACCGTATCGTCAGTCCCGAGAAGGTGCCCGAGGTCACGGCCTGGGTGCAGTCCGGGGTCCGGCTCGCCAACCGGTGGCCCGGCTTCCTCGGCTCCGGCTGGATCCGTGCCGCCGAGGGATCCACGGACTGGGTGATGCTCTACCGCTTCGCGGACGCCGACCGGCTGCAGGCCTGGGAGACGTCCGACGAGCGTCGTGAGTGGCTCGCCCGCGGCGAGGGCCTCGTGACGGAGCAGGCGGTCACCCGGCGGACCGGCATCGAGGGCTGGTTCGACCCGCCCGTGCGCCAGGACGAGCCGTCCGGGCCCCCGCTGCTGCCGGCGCCGCCGCGGTGGAAGCAGTCGATCGCGATCTGGCTCGGCTTCTTCCCGGTCAACCTGGCGTTCACGGCGCTGGTGGCGTGGCTGCTGCCCGCCTTCGACGGGCTGCCGCTCGTGCTCCGGGTGCTGATCTCCACCTTGGTGCTCACCCCGATCATGTCGTTCTGGGTGCTGCCCTGGGTGACCGGGCGGCTGCGCGTCTGGCTGCACCGGCCGCCACGGCGGCGGTTCGCCCCGACGCCGTCCTGAMTPTPVTVSIHRIVSPEKVPEVTAWVQSGVRLANRWPGFLGSGWIRAAEGSTDWVMLYRFADADRLQAWETSDERREWLARGEGLVTEQAVTRRTGIEGWFDPPVRQDEPSGPPLLPAPPRWKQSIAIWLGFFPVNLAFTALVAWLLPAFDGLPLVLRVLISTLVLTPIMSFWVLPWVTGRLRVWLHRPPRRRFAPTPSNANANANANA
AK018_004491044hypothetical proteinGTGACCGCACCCCGCTTCCCCCTGCCCCGGCGCCGCACCGGCCGGCACGGCGAGACCCGCCGTCGCTCCGGCGCCACCGGCACGCCCCGCACCGCCGTCGGCGGTGCCATGGCCGGGCTCGCGCTGACCGCCGCCGTCGCGACTGCCGTGGTCCCCGGCACGGCCGGCGCCGAGACGGCGACGACCGCCACGCCGACCGGCGCCGCGAGCACCGCACCGTCCCCCGGCCCGTCCGCGTCCGTCGTCACGTCCTCCGACAGCGCGACCGTCACCGCGACCGCGGCGCTGCAGCGCGCCGCGACCGTCACCCAGCAGACGGCGTCCCTGCCCCGCAAGCAGGAGCGCCGGATCGAGGCCCGTGCGGAACGCCTCGCCGAGCTCCTGGAGAGCCGTGGGCAGACAGGTGCCTCGCGTGCCTCCGAGCGCGCCCCGCTGCCGGAGTCCGGTGGGCGGGAGGCCCCCGCCGACAGCGCGACGCTGGCCGAGGCGACGACGAAGCTCACGAAGCTGCTGGACGACGCCGAGTCCACGGCGATCGAGGTCCGGGCCGCCCCGCCGACGCCCGCCGAGATCGCCGACGTGCAGGCCGACCGGGCGAAGAAGGCGGCGAAGAAGATCGCCCGCCACGCCGACTCCCTGGACGGCTTCGCCAACGGCCGGGTCCCCGCCGGCAAGCTGACGAAGCTCTCCTTCGCGAAGGGCGAGACGCTGCGGGCCGACGCCGCGGCCCAGCTCGAACGGCTCGACGTCGCCTACCACGCCCGGTTCGGCAAGCACCTGTCGGTCACCGACTCCTACCGCTCGTACGAGTCCCAGGTGGCCACCCGGGCCAGCAAGGGCCACATGGCCGCGGTGCCCGGGCACTCCAACCACGGGTGGGGTGTGGCCGTCGACCTCGGGGACGGGGTCGAGTCCTTCGGCACGCCTCAGTACGAGTGGATGCGCGAGCACGCCCCCGAGTTCGGCTGGGACAACCCCGCCTGGGCCCGGGCCGACGGCCGCAAGCCGGAGGCCTGGCACTGGGAGTACAGCCCGCTCGACTGAMTAPRFPLPRRRTGRHGETRRRSGATGTPRTAVGGAMAGLALTAAVATAVVPGTAGAETATTATPTGAASTAPSPGPSASVVTSSDSATVTATAALQRAATVTQQTASLPRKQERRIEARAERLAELLESRGQTGASRASERAPLPESGGREAPADSATLAEATTKLTKLLDDAESTAIEVRAAPPTPAEIADVQADRAKKAAKKIARHADSLDGFANGRVPAGKLTKLSFAKGETLRADAAAQLERLDVAYHARFGKHLSVTDSYRSYESQVATRASKGHMAAVPGHSNHGWGVAVDLGDGVESFGTPQYEWMREHAPEFGWDNPAWARADGRKPEAWHWEYSPLDPGPT0024055_123DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_00450354hypothetical proteinGTGGTGGAGATGTCGCGCGAGGAGTTCGAGGCCGCCGTCTCGGACGGGCTCGACCAAGTGCCGGAGCAGCTGACCCGGCTGATGGACAACGTCGTGGTGCTCGTCGAGGACGACGCGCCGCCCGAGGACCCCGAGCTCCTCGGGCTGTACGAGGGGGTGCCGCTCACGGAACGCGACCAGGGGTGGGCCGCCGGGTCGCTGCCCGACCGCATCACGATCTACCGGCACCCGACCCTGTCCATCTGCTCGTCGGCGGACGAGGTCGCCGAGGAGGTCGCCGTCACGGTGGTGCACGAGATCGCCCACCACTTCGGCATCGACGACGACCGGCTGCACGAGCTCGGCTGGGGCTGAMVEMSREEFEAAVSDGLDQVPEQLTRLMDNVVVLVEDDAPPEDPELLGLYEGVPLTERDQGWAAGSLPDRITIYRHPTLSICSSADEVAEEVAVTVVHEIAHHFGIDDDRLHELGWGNANANANANA
AK018_00454582mtcA1COG0288Beta-carbonic anhydrase 1ATGTCTGTGCTCGACGAGATCCTCGACGCGAACCGGGCCTACGCCGCCGAGTTCGGCGCGCGGTCCGAGCTGGCGCTGCCGCCCGCACGCGGCTTCACGATCCTCACCTGTATGGACGCTCGGCTCGATCCGGCCAAGTACGCCGGCCTCGCCGAGGGGGACGCGCACGTCATCCGCAACGCCGGCGGGCGGGCGTCCGACGACGCCATCCGCTCCCTGGTGATCTCGTACAAGCTCCTCGGCACGCGCGAGTTCTTCGTGATCCATCACACCGACTGCGGCATGGAGTTCTTCACCGACGAGGTGATGAGCGGGCTGCTGGCGCAGAGCCTCGAGACCGCCGAGCTCGGACCCGACGGCTTCCGCGACGTCGGGGAGGGTCCCGGCTCGAGCGCCGGCGCAGACGTGGACTGGCTCACGATCTCCGACCGGACCCAGGCCGTCGTCGACGACGTCGAGCGCATCAGGAACAGCCCGCTCGTACCGGGCCGGATCCCCGTCCACGGGTTCCTGTACGACGTCCGCACCGGCCGACTGATCGAGGTCGACGCCGCCACCGAGGCCGGCCGCGCTACCGGCTGAMSVLDEILDANRAYAAEFGARSELALPPARGFTILTCMDARLDPAKYAGLAEGDAHVIRNAGGRASDDAIRSLVISYKLLGTREFFVIHHTDCGMEFFTDEVMSGLLAQSLETAELGPDGFRDVGEGPGSSAGADVDWLTISDRTQAVVDDVERIRNSPLVPGRIPVHGFLYDVRTGRLIEVDAATEAGRATGPGPT0002415_6382DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673NANA
AK018_00455417hypothetical proteinATGACGGACTGGGACGACGGGCAGGCACCGCCCGCCGAGCGGCCCCCCAGCGTGGGCAAGCTCGTGGAACAGATCTCGGAGCAGGCCACCCGCCTGGTGCGCGCCGAGATCGCGCTGGCGAAGGCGGAGGCGGCCGAGAAGGCGAAGCGGTCGGGCATCGGCGTCGGCCTGATCGTCGGCGCCCTGGTCGTCGTGCTCTATGCGCTCGGCGTCTTCGTCGCGACCGCCATCATCAGCCTCGACCTCGTCTGGCCGCTGTGGCTCTCCGCCCTCGTGGTCGGCCTGGCGCTCGTGCTGCTCGCCGGGGCGTTCGCGGGGATCGCCGTCGCCCAGCTCAAGCAGGCGAGCCGCCGGCCCGAGACGATCGACCGGGTCAAGGAGGACGTCAGCACCGTCAAGGAGGGGATGAAGCGGTGAMTDWDDGQAPPAERPPSVGKLVEQISEQATRLVRAEIALAKAEAAEKAKRSGIGVGLIVGALVVVLYALGVFVATAIISLDLVWPLWLSALVVGLALVLLAGAFAGIAVAQLKQASRRPETIDRVKEDVSTVKEGMKRNANANANANA
AK018_00456330hypothetical proteinGTGAGCCAGCAGTCCACCACCGACCCGGCCCTGCCGAACGGGGCGCCCGCCCCGACCCGCAAGGAGCTCGAGTCCGAGGTCCAGGAGGCCCGTCGCGAGCTCGGTGACGCCCTCGACCAGCTCACCACGCGGCTCTCGCCCGCCTACCAGGCTTCCCAGCTGGCCCGCGGCACCCGCCAGGCCGCCGACGACGCCAAGGGGCTGTTCACCGGCGCCGGCCTGCCCGAGGACGCGCCGCGGTCGCGCAACGTCAAGATCCTCCTGGGCGCCGCCGCCGTCGGGGCGGCCGCGCTCGCCGCCCTCGTGGTCAAGGCGGTCGCTCGACGCTGAMSQQSTTDPALPNGAPAPTRKELESEVQEARRELGDALDQLTTRLSPAYQASQLARGTRQAADDAKGLFTGAGLPEDAPRSRNVKILLGAAAVGAAALAALVVKAVARRNANANANANA
AK018_00457255hypothetical proteinATGTCGTTCCACGGTGACTCCGAGGTCCTGTTGACGCCCGCCGAGGTAGCGAGCCTCTTCCGCGTCGACCCGAAGACCGTGACGCGGTGGGCCAAGGCGGGCAAGCTCTCGTCGATCCGGACCTTGGGCGGGCACCGCCGCTACAAGGAGTCCGAGGTCCGTGCGCTGCTCGGCGCCGCGTCGGACGCGGCCGAGGCCGAGGCCGCGGCGAACGCGGGCGGGACGCCCGACAGCGCGGCGGACCACAGCAAGTAGMSFHGDSEVLLTPAEVASLFRVDPKTVTRWAKAGKLSSIRTLGGHRRYKESEVRALLGAASDAAEAEAAANAGGTPDSAADHSKNANANANANA
AK018_00458198hypothetical proteinATGGGCCGCGGCCGTCAGAAGGCTAAGCAGACCAAGGTCGCTCGCGCGCTGAAGTACTACAGCCCTGAGACGAACTATCACGCTCTGGAGCAAGAGCTGAAGGAGTCCCAGACCGACGTCGTCACCGAGGACCGCTGGGCAAGTGCCGCGGACTCCGCGTACGACAACGACGCGGACTGGGACGACCGGCGCTACTGAMGRGRQKAKQTKVARALKYYSPETNYHALEQELKESQTDVVTEDRWASAADSAYDNDADWDDRRYNANANANANA
AK018_004591104purM_1COG0150Phosphoribosylformylglycinamidine cyclo-ligaseGTGACCGAACGTCTCACCTATGCCGCCGCCGGCGTCGACACCGACGCCGGGGACCGCGCCGTCGAGCTGATGAAGGACGCGGTGCGCCGCACGCAGGGGCCCGAGGTCCTCGGTGGTGTCGGCGGGTTCGCCGGCCTCTACGACGCCTCGGCGCTGACGCGGTACCGCGCGCCGCTGCTGGCCACCTCGACCGACGGCGTCGGCACGAAGGTCGCGATCGCCCAGGCGATGGACGTCCACGACACCATCGGCTTCGACCTGGTGGGCATGGTCGTCGACGACATCGTCGTCGTCGGTGCCGAGCCGCTGTTCATGACCGACTACATCGCCACGGGCAAGGTCGTCCCGGAGCGGGTGGCGGACATCGTGCGGGGGATCGCCCAGGCCTGCGAGGTCGCGGGGACGGCGCTCGTCGGCGGCGAGACGGCGGAGCACCCGGGTCTGCTGGCGCCCGACGAGTACGACGTCGCGGGCGCGGCCACGGGTGTCGTCGAGGCCGACGGCGTGCTCGGGCCCGAGCGGGTGCGGGCCGGCGACGTGCTGATCGGCATGGCGGCCAGCGGTATCCACTCCAACGGCTACTCGCTGGTGCGCGCCGTGATCAAGCACGCCGGCTGGTCGCTGGACCGGCACGTCGAGGACTTCGGCCGGACCCTCGGGGAGGAGCTGCTCGAGCCGACGCGCGTCTACGCCGCCGACTGCCTGGCGCTCGCCCGCGAGGAGTCCGCGCAGGTGCACGCCTTCACGCACGTCACCGGCGGCGGGCTGGCGGCGAACCTGGCCCGCGTGCTGCCGGCCGGGACGGTCGCGACCGTCGACCGCGCGAGCTGGGAGGTGCCGGCGGTCTTCCGCACGGTGCGCGACCTCGGCGACGTCCCGCGCGGCGACCTGGAGAACACGCTCAACCTGGGTGTCGGCATGGTCGCGATCGTGGGTGCCGAGGGCGCCGACGCGGCGCTCGCGACGCTGCGGGACCGCGGCGTGCCGGCCTGGACGCTGGGCACGGTCGCCGACCTGACGCCCTCGGACGCCGACGAGGAGCTCGTCGCGGGGACGAAGGGCGTGCAGGCGGGCGCCGTCCGGCTGGTGGGCGACTACCGCTGAMTERLTYAAAGVDTDAGDRAVELMKDAVRRTQGPEVLGGVGGFAGLYDASALTRYRAPLLATSTDGVGTKVAIAQAMDVHDTIGFDLVGMVVDDIVVVGAEPLFMTDYIATGKVVPERVADIVRGIAQACEVAGTALVGGETAEHPGLLAPDEYDVAGAATGVVEADGVLGPERVRAGDVLIGMAASGIHSNGYSLVRAVIKHAGWSLDRHVEDFGRTLGEELLEPTRVYAADCLALAREESAQVHAFTHVTGGGLAANLARVLPAGTVATVDRASWEVPAVFRTVRDLGDVPRGDLENTLNLGVGMVAIVGAEGADAALATLRDRGVPAWTLGTVADLTPSDADEELVAGTKGVQAGAVRLVGDYRPGPT0021570_855DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021570-purM-K01933NANA
AK018_004601548purF_1COG0034AmidophosphoribosyltransferaseATGCCCTTGCGCCCCGACGGCCGCCTGAACCACGACCTCATGCCCGGCGAGAAGGGCCCCCAGGACGCCTGCGGCGTCTTCGGAGTCTGGGCGCCCGGCGAGGAGGTCGCGAAGCTCACGTACTTCGGCCTGTACGCCCTGCAGCACCGCGGACAGGAGTCCGCCGGGATCGCCACCAGCAACGGTGAGCAGATCCTCGTCTACAAGGACATGGGCCTGGTCTCCCAGGTCTTCGACGAGACCGCGCTGAACGCCCTGACCGGCCACATCGCCGTCGGGCACTGCCGCTACTCGACGACCGGAGGCGTCACCTGGGAGAACGCCCAGCCCACGCTCGGCGCGACGTCGTCGGGCACCGTGGCCCTCGGGCACAACGGCAACCTGACGAACTCCGCCGAGCTGGTCGACCTCGTGGCCGAGCGGTACGGCGCCCAGCGCCGCGGCGAGCTCGCCCGCGGCAACACGACCGACACCGCGCTGATCACCGCGCTGTTCGCGGGCGACGAGGACCACACCCTGGAGCAGACGGCCCTCGAGGTCCTGCCCCGCCTGCGCGGCGCCTTCTCGCTGGTCTTCATGGACGAGCACGCGCTGTACGCGGCACGCGACCCGCAGGGTGTGCGCCCGCTCGTCCTGGGCCGCACCCAGCGCGGCTGGGTGGTCGCCTCGGAGACCCCGGCGCTGGACATCGTCGGCGCCTCCTACGTGCGGGAGGTCGAGCCCGGCGAGCTCATCTGCATCGACGACGACGGGCTGCGGTCCACCCGGTTCGCCCCGGTGGACCGGGCCGGCTGCGTGTTCGAGTACGTCTACCTGGCCCGCCCGGACACCAGCATCCAGGGCCGCCCGGTGCACGCCGCCCGGGTGGAGATGGGCCGCGTGCTGGCCCGCGAGCACCCCGTGGACGCCGACCTGGTCATGCCCGTGCCGGAGTCCGGCACGCCGGCGGCGACCGGGTACGCCGCCGAGTCCGGGATCCCGTTCGGGCAGGGCCTGATGAAGAACGCCTACGTCGGCCGGACCTTCATCCAGCCGTCGGACACGCTGCGCCAGCTCGGCATCCGGCTGAAGCTCAACCCGCTGCGCGAGGTCATCCGCGGCAAGCGGCTGGTCGTCGTGGACGACTCCATCGTGCGGGGCAACACCCAGCGCGCCCTGATCCGGATGCTGCGCGAGGCCGGTGCCGCCGAGGTGCACGTGCGGATCTCGTCGCCGCCGGTGAAGTGGCCGTGCTACTACGGCATCGACTTCGCGTCCCGCGCCGAGCTCATCGCCAACGGCCTGACGCCGCACGAGATCGGCCAGTCGCTCGGCGCCGACTCGCTGGGCTACATCTCCACCGAGGGGATGATCGCCGCGACCGAGCAGCCCGCGTCGCGCCTGTGCGCCGCCTGCTTCACCGGCGAGTACCCCATCGAGCTGCCCGAGGAGGAGCGGCTCGGCAAGCACCTGCTCGAGCAGCCCGCGCTGCCGCTCGGTGCGCCGGAGGACGGGCTGTCGCAGCTCTCCGTCGGCGTCGGCGGGCAGTCCGCGCTCGAGCACCCGTGAMPLRPDGRLNHDLMPGEKGPQDACGVFGVWAPGEEVAKLTYFGLYALQHRGQESAGIATSNGEQILVYKDMGLVSQVFDETALNALTGHIAVGHCRYSTTGGVTWENAQPTLGATSSGTVALGHNGNLTNSAELVDLVAERYGAQRRGELARGNTTDTALITALFAGDEDHTLEQTALEVLPRLRGAFSLVFMDEHALYAARDPQGVRPLVLGRTQRGWVVASETPALDIVGASYVREVEPGELICIDDDGLRSTRFAPVDRAGCVFEYVYLARPDTSIQGRPVHAARVEMGRVLAREHPVDADLVMPVPESGTPAATGYAAESGIPFGQGLMKNAYVGRTFIQPSDTLRQLGIRLKLNPLREVIRGKRLVVVDDSIVRGNTQRALIRMLREAGAAEVHVRISSPPVKWPCYYGIDFASRAELIANGLTPHEIGQSLGADSLGYISTEGMIAATEQPASRLCAACFTGEYPIELPEEERLGKHLLEQPALPLGAPEDGLSQLSVGVGGQSALEHPPGPT0020225_1129DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020225-purF-K00764NANA
AK018_00461363hypothetical proteinGTGAGCAGCACCTCTCCCGAGCAGCCCGCCGAGACCCCCGACGCCGTCGAGGAGACGCCGTCGGGACCCGTCGGGGAACCGGCGAGCACGGCGGCCGACGACGAGCACCTGCTCGTGGACCCGGCACGCGTGCGGCGTGCCCCGCGCTATCGGGCCTTCTTCACCGTCGGGGCCGTCGTCGGACTGGTGGTCGGGCTCGTCGTCGGGACCTGGCTGACCGGGATCGCGGCGGACGACGAGGTCCTCCTGCTCAAGCCGGGCGTCTTCGTCTCGGTCGTCACGCTGGCCACGACGACCTTCTTCGTGCTGCTCGCCGGAGGCCTCGCGATCCTCGCCGACCGGCGCAGCCTGCGACGTCGCTGAMSSTSPEQPAETPDAVEETPSGPVGEPASTAADDEHLLVDPARVRRAPRYRAFFTVGAVVGLVVGLVVGTWLTGIAADDEVLLLKPGVFVSVVTLATTTFFVLLAGGLAILADRRSLRRRNANANANANA
AK018_004622583hypothetical proteinGTGACCCGTAACCCCACCCCACGGCACCGCCGTCGTACCGCGTACGGAGCGGTGCTGGCGACCGCTCTCGCCGTCCCGTCCGTCGCTGCGGCCGTCGTCCCGGCCGCCGCCGAGCCCTCGCTCGACGCCCCCGTCCTCATCGACGAGGTCTACGGCGGCGGCGGCAACAACGGCGGCGTCTACGACCGCGACTTCGTCGAGCTGTACAACCCCGGTGACGAGCCCGTCTCGCTGGACGGCTGGTCCGTCCAGTACGGCTCGGCCGGCGGGACCACGTGGTCCTCCCAGACGGACCTGACCGGACAGGTCCCGGCCGGCGGGTCGTTCCTCGTCGCGCAGGCGGCCGGCAACGACGACACCCAGCCCGACCTGCCCACCCCCGACGTCGAGGGCGGCATCTTCATGTCCGGCTCGGGCGCCGAGGTCGCGCTGGTCTCCTCGACCGACCGCCTGGACTGCTCCGGTGCCGCCTGCGCCGAGGTCGCGGACCTCGTCGACCTGGTCGGTTGGGGCTCGGCGAACACCTTCCTCGGGTCGGCCCCCGCCCCGGGGACCAGCAACTCCGTCTCGGTGGCGCGCGTCGACCACGCGCACACCGTGGACAACGCGGCCGACTTCGTCACCGGGACCCCGACGCCGGAGAACAGCGGGTCGACCGGGGAGCCGACGCCGACGCCGTCGCCGTCGCAGGACCCCGCCCCCGAGCTCGTGGCGATCGCCGAGATCCAGGGCACCGGCGACGCCTCGCCGCTCGACGGGCAGGACGTCACCACCCGGGGCGTCGTGACCGCGGCGTACCCGACCGGCGGGTTCAACGGCTTCACGCTGCAGACGGCCGGCACCGGCGGCGACCCGGCGGACGACGAGACGCCGGGCGCCTCGGACGCCGTGTTCGTCTACTCGTGGGCGGCCGCCCAGGAGGTCGAGGTCGGCGACCACGTCGAGGTCACCGGGGAGGCCACCGAGTACTACGACCTGACCCAGGTCGCCGCGGAGTCGTGGACGGTGCTGGACGAGCCCGCCGAGCCCGTCGAGCCGACCGTCACCGGCTGGCCCGCCACCGAGGCCGAGCGCGAGGCGCTGGAGAACATGCTGCTCGCGCCGGCCGGCGAGTTCACCGTCACGGACAACTACTCGACCAACTACTACGGCACCGTCGGCCTGGCCGCCGGTGACGGCCCGCTCGTGCAGCCGACGACGGCGGGTCGCCCGGGGTCGGACGAGGCCGCCGCGCAGGTGGCCGAGAGCGCCGCCCTGGCCGTGCAGCTGGACGACGGGTCGTCGTGGAACTACTCCAGCGCCTCGCGCGCCGACACCCCGCTGCCCTGGCTGAACGGCACCGACCCGGTGCGCGTCGGTGCCGCGGTGACGTTCACGGGTCCCGTCGTGCTCGACTACCGCTACAGCGCCTGGTCCTTCCAGCCGCAGCAGCAGCTCACCGGGGCCAGCCCCGACGACGTGCAGCCGGCGACGTTCGAGAACACCCGGGAGTCCTCGCCGCAGGACGTGGGTGGTGACGTCCGGGTCGCGACGTTCAACGTGCTGAACTACTTCACCACCACCGGCGACCAGCTCGAGGGCTGCTCCTACTACACCGACCGCGCCGGCGACCCGATCAGCGTGCGTGGCGGCTGCCTGGCCCGCGGCGCGGCCGACGCCGAGAACCTGCAGCGGCAGGAGACCAAGATCGTCGCGGCGATCAGCGACCTGGGGGCCGACGTCGTGGCGCTGGAGGAGATCGAGAACTCGGCCGCGTTCGGCAAGGACCGCGACCAGGCGCTGTCCGACCTCGTCGACGCGCTCAACACGGCCGACGGCGCCGGCACCTGGGCGTTCGTCCCCTCGCCGGCCGAGGTGCCCGCGGACGAGGACGTCATCCGCAACGCCTTCGTCTACCGGACGGCCGGCGCCGAGCCGGTCGGGGAGTCGCGGATCCTCACCGACGCCCCGGAGGCGTTCCAGAACGCCCGCGAGCCGCTGGCCCAGGTCTTCCAGCCGGCGGGGGGCAAGACCGCCGCGCCGGTGGACGACGTCGTGGTCATCACCAACCACTTCAAGTCCAAGGGGTCGCTCGGGCCGTGGCCCGGCGACGTCGACGCCGGTGACGGGCAGGGCCGCAACAACGAGTCCCGCGTCCGGCAGGCGACCGCGCTGGTGGAGTTCGCCGACGAGGTGGCCTCCGACGCCCGCACCGACCGCGTGCTGCTGGTGGGCGACTTCAACGCCTACGAGCAGGAGGACCCGATCGTCGTGCTCGCCGAGGCCGGCTACACCGACCTCGGGCCGACCACGGGCGAGTACACGTACAGCTACGACGGCCAGGTCGGGTCGCTGGACCACGTGCTCGCCTCCGCGGGGGCGATGGAGGACGTGACCGGCGCGGACATCTGGAACATCAACGCCTACGAGCCCGTCGCGAACGAGTACAGCCGGTACAACTACAACGCGACGATCCTGTACGACACCTCGCCGTTCCGGTCCTCGGACCACGACCCGTTGCTGGTCGGGCTCGACCTGGCGCCGGGCGCCCCGTCCTGGGCGAACGGCCACGGGCCGGGCGGGAACCCGAAGCACGACGACTGAMTRNPTPRHRRRTAYGAVLATALAVPSVAAAVVPAAAEPSLDAPVLIDEVYGGGGNNGGVYDRDFVELYNPGDEPVSLDGWSVQYGSAGGTTWSSQTDLTGQVPAGGSFLVAQAAGNDDTQPDLPTPDVEGGIFMSGSGAEVALVSSTDRLDCSGAACAEVADLVDLVGWGSANTFLGSAPAPGTSNSVSVARVDHAHTVDNAADFVTGTPTPENSGSTGEPTPTPSPSQDPAPELVAIAEIQGTGDASPLDGQDVTTRGVVTAAYPTGGFNGFTLQTAGTGGDPADDETPGASDAVFVYSWAAAQEVEVGDHVEVTGEATEYYDLTQVAAESWTVLDEPAEPVEPTVTGWPATEAEREALENMLLAPAGEFTVTDNYSTNYYGTVGLAAGDGPLVQPTTAGRPGSDEAAAQVAESAALAVQLDDGSSWNYSSASRADTPLPWLNGTDPVRVGAAVTFTGPVVLDYRYSAWSFQPQQQLTGASPDDVQPATFENTRESSPQDVGGDVRVATFNVLNYFTTTGDQLEGCSYYTDRAGDPISVRGGCLARGAADAENLQRQETKIVAAISDLGADVVALEEIENSAAFGKDRDQALSDLVDALNTADGAGTWAFVPSPAEVPADEDVIRNAFVYRTAGAEPVGESRILTDAPEAFQNAREPLAQVFQPAGGKTAAPVDDVVVITNHFKSKGSLGPWPGDVDAGDGQGRNNESRVRQATALVEFADEVASDARTDRVLLVGDFNAYEQEDPIVVLAEAGYTDLGPTTGEYTYSYDGQVGSLDHVLASAGAMEDVTGADIWNINAYEPVANEYSRYNYNATILYDTSPFRSSDHDPLLVGLDLAPGAPSWANGHGPGGNPKHDDPGPT0013395_132DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013395-nucA|ushA|yhcR|yfkN-K01081NANA
AK018_00463174hypothetical proteinATGCAGTGGTTCGGGGGAGCGCTGGTCGTCGGTGGTGTGCTGCTCGCGGCACGGGCGACATGGGCGGCACGGCGAGGTTGTGCCACGGGGACGCACGGCCTGCTGATCGCGGTCGGGGCGGGGAGCGCCGTCTGGGGCGCGGTGTTCCTGGGCGTCGCCGCGAGCTCCTCCTAGMQWFGGALVVGGVLLAARATWAARRGCATGTHGLLIAVGAGSAVWGAVFLGVAASSSNANANANANA
AK018_00464345hypothetical proteinGTGGTGGGTCGTGCGGCGGTGGCCGCGTGGCTCGCCGGGGACGCCGACCGCCGCACCACGACGACGGCCGTGCGGTTCACGCTCGAGGAGCTGGCCGCCGTCGCTCCCGGGAACGCCGTGGAGGTCCGGGTGCCGCCGGCCGGGGCCGTGCAGGCCGTCCCCGGTCCCCGGCACACCCGCGGCACACCGCCGAACGTCGTGGAGACCGACGTCGAGACCTGGCTGGGACTGGCCACCGGCCGGCGCACCTGGGCCGACGTGGCCGACGAGGGACGGGTCCGCGCCTCGGGGGAACGGGCCGACCTCAGCGCGTGGCTGCCGCTGCAGGCGGCGCGACCGCGATGAMVGRAAVAAWLAGDADRRTTTTAVRFTLEELAAVAPGNAVEVRVPPAGAVQAVPGPRHTRGTPPNVVETDVETWLGLATGRRTWADVADEGRVRASGERADLSAWLPLQAARPRNANANANANA
AK018_004651476rnr_1COG0557Ribonuclease RGTGCCCATCCGACAGCTGCGGATCGCCTCCGCCACCCCCGAGGACGTCGGTGGCGCGCTGGCGTCGCTGCGTGCGGAGGTCGGGCTGCCCGCGCTGTACCCGGCCGAGGCCCGGGCGGAGGCGGAGGTCGCCGCGCAGGGCGACCTGAAGGACTTCCGCCAGGACCGCCGGGACATCGACTTCGTGACGATCGACCCCGCCGGTGCGAAGGACCTCGACCAGGCGGTCCACGTGGCGAGCTCCGGGCACGGCTACATCGTGCGGTACGCGGTCGCCGACACGGCGGCGTTCGTGTCGCCGGGCGGTGCCCTCGACACCGAGGTGCACCGGCGTGGGGTGACGTACTACGGCCCGGACACCCGCTCCCTGCTCTACCCGGCCGTGCTCTCCGAGGGCGCCGCGAGCCTGCTGCCGGACCAGGACCGCCCGGCGGTGCTGTGGACGATCTCCCTGGACTCCCGCGGCGAGATCGGCAGCGTCGCCGTGACCCGGGCCGTGGTCCGCTCTCGGGCGCGCCTGACCTACGGCGAGGCGCAGACCGCGCTCGACTCCGGCACGGCGCCGGAGCCGCTGGTCCACCTCGCCGACGTCGGGCGGCTGCGCCAGCAGCGCGAGCGCGAGCGGGGCGCCGTCTCCCTGCCGGTGCCCGAGCAGGAGGTCGTGCAGCGTGCGGACGGGTCGTTCGACCTGGAGCTGCGCCGGACGCTGCCGGTGGAGTCGTGGAACGCGCAGATCTCGTTGCTGACCGGCATCTCGGCCGCCCGGCTCATGCGTGACGCCGGCGTGGGGCTGCTGCGCACGCTGCCCCCGGCGCGGGTCGAGGACGTCGTGCGGCTGCGCCGGACCGCCGCCGCGCTGGGTATCGACTGGCCGGACGAGGTGCCGTACGGCGAGCTGCTGTCGCGCGTCGAGTCGCGCCGGGCCGCCCACGCGGCGTTCCTGACCGAGGCGACGACCCTGTTCCGCGGTGCCGGCTACCTGGCGTTCGGGGTGCCCGGTCCGCAGGGTGGCGCCCGGGTGGGGCTGCCGGACGACGCGCGGCACGCCGCCGTCGGCGCCGAGTACGCCCACGTGACCGCACCGCTGCGGCGGGTGGCCGACCGGTACGCGACCGAGATCTGCCTGGCCCAGTCGGCCGGCCGCGACGTGCCCGGCTGGGTGCTCGAGGCGCTGCCGCGGCTGCCCGCCACGATGGCGGCGGCCACGGCGCGCGAGGCGGCCTTCGAGCGCTCGTGCATCGACATCGTCGAGGCGGCGCTGCTCGCGGCACGGGTCGGCCGCCGGTTCGAGGCCGTGGTCGTCGACGACGGCGACGCGCCCGACGACGACGGCCTGCGCCACGGTGAGGTCATGCTGCGCGAACCGCCCGTGCGTGCCCGGGTCCGCGGCACGTCGCTGCCGCTGGGCGAGCGGATCAAGGTGACGCTCGCCGAGGCGTCCGTGGCGGACCGCCGGGTGCTCTTCACCGCGCCCTGAMPIRQLRIASATPEDVGGALASLRAEVGLPALYPAEARAEAEVAAQGDLKDFRQDRRDIDFVTIDPAGAKDLDQAVHVASSGHGYIVRYAVADTAAFVSPGGALDTEVHRRGVTYYGPDTRSLLYPAVLSEGAASLLPDQDRPAVLWTISLDSRGEIGSVAVTRAVVRSRARLTYGEAQTALDSGTAPEPLVHLADVGRLRQQRERERGAVSLPVPEQEVVQRADGSFDLELRRTLPVESWNAQISLLTGISAARLMRDAGVGLLRTLPPARVEDVVRLRRTAAALGIDWPDEVPYGELLSRVESRRAAHAAFLTEATTLFRGAGYLAFGVPGPQGGARVGLPDDARHAAVGAEYAHVTAPLRRVADRYATEICLAQSAGRDVPGWVLEALPRLPATMAAATAREAAFERSCIDIVEAALLAARVGRRFEAVVVDDGDAPDDDGLRHGEVMLREPPVRARVRGTSLPLGERIKVTLAEASVADRRVLFTAPNANANANANA
AK018_004662241icd_1COG2838Isocitrate dehydrogenase [NADP]ATGAACACCGAGTCCCGGCCGGCGGCCGGCACCATCATCTACACCTTCACCGACGAGGCGCCCCTGCTGGCCACCTACTCGTTCCTGCCGATCGTGCAGGCGTACGCCGCCAAGGCCGGCGTCGCGGTCGAGACCCGCGACATCTCCCTGGCCGGCCGCATCCTCGCCCAGTTCCCCGAGACGCTCGGAGAGGACCAGCAGGTCGAGGACGCCCTGGCCGAGCTGGGCCAGATGGCCACCACGCCCGAGGCGAACATCATCAAGCTGCCGAACATCTCGGCCTCGGTCCCCCAGCTCAAGGCCGCGATCGCCGAGCTGCAGGCCGCGGGCTACGCCATCCCGGACTACCCCGAGGAGCCGACCACCGACGCCGAGCGCACGGCCCGCGCCGCGTACGACAAGGTCAAGGGCTCGGCCGTGAACCCGGTGCTGCGCGAGGGCAACTCCGACCGCCGCGCACCCTCGGCCGTCAAGAACTACGCCAAGGCGCACCCGCACCGCATGGGCGAGTGGAGCGCGGACTCGAAGACCGAGGTCGCCACGATGGGCGCCGACGACTTCCGCTCCAACGAGCAGTCCGTCGTCGTCCCGGCGGCCGACACGCTGACGATCCGTCTGCGCACCGCCGACGGCACCCAGGTCCTCAAGGACGGCCTCGCGGTCGAGGCCGGCGAGGTCGTGGACTCGACGTTCCTGTCCGTCGAGGCGCTGCACGCCTTCCTCGCCGAGCAGATCCAGCGTGCCAAGGACACCGGCGTGCTCTTCTCGGCGCACCTCAAGGCCACGATGATGAAGGTCTCGGACCCGATCATCTTCGGCCACATCGTCGAGGCGTTCCTGCCCGAGGTGTTCGAGCAGTACGGCGCCGAGCTCAAGGCCGCGGGCCTGTCCTCGCGCGACGGCCTCGGCGGCATCCTCACCGGCCTGGACTCCCTGGAGCACGGGGCCGACGTCAAGGCCGCCATCGAGAAGGGGCTCGCCGACGGGCCGGCGCTGGCCATGGTCGACTCCGACCGGGGCATCTCCAACCTGCACGTGCCCTCCGACGTCATCATCGACGCCTCCATGCCGGCCATGATCCGCATCGGCGGCCACATGTGGGGCCCCGACGGCGCCGAGCACGACACGCTCGCCGTCATCCCCGACTCCTCCTACGCCGGCGTCTACCAGGCCGTCATCGACGACTGCAAGGCCAAGGGCGCGCTGGACCCCGCCACCATGGGTTCCGTGCCGAACGTCGGCCTCATGGCGAAGAAGGCCGAGGAGTACGGCTCGCACGACAAGACGTTCGAGATCCCCGCCGACGGCACCGTCGAGATCGTGAACAGCGCCGGCGACGTGCTCACGTCCCACGACGTCGCGGCCGGGGACATCTGGCGCGCGTGCCAGACCAAGGACGCCCCGATCCGCGACTGGGTGGGGCTGGCCGTGCGCCGCGCCCGCGAGTCCGGCGTCCCGGCCGTGTTCTGGCTGGACGAGACCCGGGCGCACGACACCAACCTCATCGCCAAGGTCGAGAAGTATCTCGGAGAGCTCGACGCAGAGCAGCTGACCGGCCTCGAGATCCTCGTGATGAACCCGGCCGAGGCCACGCGGTACTCGCTGGACCGCATGCGCGAGGGCCTGGACACGATCTCCGTGACCGGCAACGTGCTGCGCGACTACAACACCGACCTCTTCCCGATCCTCGAGGTCGGCACCTCGGCCAAGATGCTCTCGATCGTGCCGCTGATGAACGGGGGCGGCCTGTTCGAGACCGGCGCCGGCGGCTCGGCCCCCAAGCACGTCCAGCAGCTCCTCGCCGAGAACTACCTGCGCTGGGACTCCCTGGGCGAGTTCTTCGCGCTGGCCGCCTCGTTCGAGCACCTGGCCAAGGTCGACGACAACGCCCGCGCCCGCGTGCTGGCCGACACCCTCGACCGCGCCACCGAGACGTTCCTCAACGAGGACAAGGGCCCGACGCGCCGCATCGGCGGGATCGACAACCGCGGCTCGCACTTCTACCTCGGCCTGTACTGGGCCCAGGAGCTGGCGAAGCAGACCGAGGACGCCGAGCTGGCCGAGGTCTTCGGGCCGCTCGCCGAGCGGCTCACCGCGGCCGAGGCCACGATCGTCGACGAGATGCTGGCGGTCCAGGGCAACCCGGCCGACGTCGGCGGCTACTACTGGCCGGACGGCGACAAGGCCGCGAAGGTCATGCGCCCGTCCAAGACGCTCAACGAGGCCATCGACACGTTCTGAMNTESRPAAGTIIYTFTDEAPLLATYSFLPIVQAYAAKAGVAVETRDISLAGRILAQFPETLGEDQQVEDALAELGQMATTPEANIIKLPNISASVPQLKAAIAELQAAGYAIPDYPEEPTTDAERTARAAYDKVKGSAVNPVLREGNSDRRAPSAVKNYAKAHPHRMGEWSADSKTEVATMGADDFRSNEQSVVVPAADTLTIRLRTADGTQVLKDGLAVEAGEVVDSTFLSVEALHAFLAEQIQRAKDTGVLFSAHLKATMMKVSDPIIFGHIVEAFLPEVFEQYGAELKAAGLSSRDGLGGILTGLDSLEHGADVKAAIEKGLADGPALAMVDSDRGISNLHVPSDVIIDASMPAMIRIGGHMWGPDGAEHDTLAVIPDSSYAGVYQAVIDDCKAKGALDPATMGSVPNVGLMAKKAEEYGSHDKTFEIPADGTVEIVNSAGDVLTSHDVAAGDIWRACQTKDAPIRDWVGLAVRRARESGVPAVFWLDETRAHDTNLIAKVEKYLGELDAEQLTGLEILVMNPAEATRYSLDRMREGLDTISVTGNVLRDYNTDLFPILEVGTSAKMLSIVPLMNGGGLFETGAGGSAPKHVQQLLAENYLRWDSLGEFFALAASFEHLAKVDDNARARVLADTLDRATETFLNEDKGPTRRIGGIDNRGSHFYLGLYWAQELAKQTEDAELAEVFGPLAERLTAAEATIVDEMLAVQGNPADVGGYYWPDGDKAAKVMRPSKTLNEAIDTFPGPT0001170_504DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001170-icd-K00031NANA
AK018_00467393hypothetical proteinATGACGTGGCTCGCGATGGCCCTGGTGGCGACCGGCGTGCTGGTCGCCGGACTCGCCGTGCGGTCGTGGCTGGGCTCGGACGCCCGCCGCGACGGCGTGCTGCGACGTCGTCGTCGCCGGTCGGGTCCCGACCCGATGGTCACGCTGACGATCCAGGTGCGGCTGGGCGAGCTCGCCGCCGAGCTGCGGACCGTCAGCGAGGACCCCGGTCTCTACGCACGGGCCCACCACTACCGGGCCGTCCAGGACGCCTACGACGCCATGCTGCGCGACGCCTGCCGGATCGCGGGCCTCGCCGTCGTCGACGTGCCGCTGCGACCCCACGAGCGGCTCTCCGAGGACGAGCGGCTGCGCGAGGAGCTGGAGCTCAGCTCCCGCGGCTGGTCCTGGTGAMTWLAMALVATGVLVAGLAVRSWLGSDARRDGVLRRRRRRSGPDPMVTLTIQVRLGELAAELRTVSEDPGLYARAHHYRAVQDAYDAMLRDACRIAGLAVVDVPLRPHERLSEDERLREELELSSRGWSWNANANANANA
AK018_00468486dps_1COG0783DNA protection during starvation proteinATGTCCACGCCCGCCATCCATCGCACCACGGACCGCGCCGAGGCCTCCGAGACCCTGACCAAGCACCTGCAGCGCGTGCTCGTGGCCCTCGTCGACCTGCACGTCCAGGGCAAGCAGGCGCACTGGAACGTCACGGGACGCGGTTTCCGCGACCTGCACCTGCAGCTCGACGAGCTCGTCGACGTCGCCCGCGAGCACAGCGACACGGTCGCCGAGCGGCTCCGGGCCCTGCAGGCCGTACCGGACGGACGCAGCGAGACGGTGGCCACGTCGACCGACCTCTCGCCCTACCCCGCCGGCCTGGTGTCGGTGACGGACACCGTCGACGCGGTCGTCGAGCGCGTCGCGCAGGTCGCCGAGGTCGTGCGCGAGGTGCACGACGACGTCGACGCCGCCGACCCGACGTCGGCCGACCTGCTGCACGAGATCATCCACGACCTGGAGAAGCAGGCCTGGATGATGTCCTCGGAGAACCACGAGGTCTGAMSTPAIHRTTDRAEASETLTKHLQRVLVALVDLHVQGKQAHWNVTGRGFRDLHLQLDELVDVAREHSDTVAERLRALQAVPDGRSETVATSTDLSPYPAGLVSVTDTVDAVVERVAQVAEVVREVHDDVDAADPTSADLLHEIIHDLEKQAWMMSSENHEVPGPT0004055_2202DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047NANA
AK018_004692334purL_1COG0046Phosphoribosylformylglycinamidine synthase subunit PurLATGACCGCCGCTGCCCAGGCTGCCGCCCCCCGTCCGACGCTCGACACCGTCGACAACGCTGCCGCCACCCCCGACGAGTCCTTGCCGTTCGGCGAGCTCGGCCTCAAGCCCGACGAGTACCAGCGCATCCGCGACATCCTCGGGCGCCGTCCGACGGCCGCGGAGCTGGCCATGTACTCGGTGATGTGGTCCGAGCACTGCTCGTACAAGTCGTCCAAGGTGCACCTCAAGAAGTTCGGCGACCGCGTCACCGAGGAGATGAAGCAGCACCTGCTCGTCGGTATCGGCGAGAACGCCGGCGTCGTCGACATCGGCGACGGCTGGGCCGTGACCTTCAAGGTCGAGTCGCACAACCACCCCTCGTTCGTCGAGCCCTACCAGGGCGCGGCCACGGGCGTCGGCGGCATCGTGCGCGACATCATCTCGATGGGCGCCCGCCCGGTCGCGGTGATGGACCAGCTCCGGTTCGGCGCGGTCGACCACCCCGACACGGCGCGCGTCGTGCACGGCGTCGTCTCCGGCGTCGGCGGCTACGGCAACTCCCTCGGCCTGCCGAACATCGGCGGCGAGCTCGTCTTCGACTCGTCCTACCAGGGCAACCCGCTGGTCAACGCCCTGTGCCTCGGGGTGCTGCGGCACGAGGACATCCACCTGGCCAACGCCTCCGGCGCGGGCAACAAGGTGATCCTCTTCGGTGCGCGCACCGGCGGCGACGGCATCGGCGGGGCCTCCATCCTGGCCTCGGAGACGTTCGAGGACGGTGTCCCGGCCAAGCGGCCCAGCGTCCAGGTCGGCGACCCCTTCATGGAGAAGGTGCTCATCGAGTGCTGCCTGGACCTGTACGCGGCGCACGTCGTCGAGGGCATCCAGGACCTCGGTGCCGCGGGCATCTCCTGCGCCACCTCCGAGCTCGCGTCCAACGGTGACGGCGGCATGCACGTCGACCTGGACGACGTGCTGCTGCGCGACCCCACGCTGAACGCCGGCGAGATCCTCATGTCGGAGTCGCAGGAGCGGATGATGGCCGTCGTGCGGCCGGAGAAGCTCGAGGAGTTCCTCGCGATCACCGACCGCTGGGACGTGGAGACCTCCGTCATCGGCGAGGTCAACGACTCCGGCCGGCTGACCATCGACCACCACGGTCAGCGCATCGTCGACGTCGACCCGACCACCGTCGCGCACGAGGGCCCCGTCTACGAGCGCCCCTACGCCCGGCCGGCCTGGCAGGACGACCTGCAGGCGGCCTCCGTCGCCGGTCTCGGCCTGGAGCGGCCGTCGACGGGGACCGAGCTGCGCGCCTCGGCGCTGCGGCTCCTGGCCTCGCCGAACCTCGCCTCGCCGGCGTGGGTGACGGACCAGTACGACCGGTTCGTGCAGGGCAACACCGCGCTCGCCCAGCCCGACGACGGCGGTGTCGTCCGCGTGGACGAGGGCACCGGGCTGGGGGTCGCCCTGGCCACGGACGCCAACGGTCGGTACGGCAAGCTCGACCCGCGCACCGGTGCGCAGCTCGCCCTGGCCGAGGCGTACCGCAACGTCGCGACCACGGGCGCGACGCCGCTCGCGGTCACGGACTGCCTGAACTTCGGCTCCCCGGAGCACCCGGACTCCATGTGGCAGCTCGTCGAGGCGATCGAGGGGCTGGCCGACGCCTGCCAGGAGCTCGGCGTGCCCGTGACCGGCGGCAACGTGTCGCTGTACAACGGCACCGGTGAGCCCGGCCAGATCGACTCCGCGATCCACCCGACCCCCGTCGTCGGCGTGCTCGGTGTCCTGGACGACGTGCGCTCGGCGCTGCCGTCGGGCTGGCGGGAGGCCGGCCAGTCGGTGCTGCTGCTCGGCGCCACCGCGGACGAGCTGGACGGCTCCGCATGGGCCGAGGTGGAGCACCAGCACCTCGGCGGTCTGCCGCCGCGGGTGGACCTGGCCGCCGAGCGTTCCCTCGCCGAGGTCCTGGTGGCCGCCCGGCGCACCGGCGCCGCGGCCGCGGCCCACGACCTGTCCGAGGGCGGCCTGGTCCAGTCCCTGCTCGAGGCGTCGCTGCGCTACGGCGTCGGCGTCTCGGTCTCGCTCGACGAGCTCGGTGCGCGGGACGGCGTGACGCCGTTCGAGGCGCTGTTCAGCGAGTCCACCGCCCGGGCGCTCGTCGCGGTCGCCCCGGAGCGCGAGGCCGAGGTGCTCGCCCTGGCCGAGGAGGCAGGCGTGCCGGTGCTCCGTCTCGGCCGCACCGGGGGTGACGGCGTCGCCGTCACGTTCGGCGAGGACTCCTTCGCGATCGCGCTGGACGAGGCCCGCGAGGCCCACGAGGGGACGCTCCCGCGCCTCTTCGGCTGAMTAAAQAAAPRPTLDTVDNAAATPDESLPFGELGLKPDEYQRIRDILGRRPTAAELAMYSVMWSEHCSYKSSKVHLKKFGDRVTEEMKQHLLVGIGENAGVVDIGDGWAVTFKVESHNHPSFVEPYQGAATGVGGIVRDIISMGARPVAVMDQLRFGAVDHPDTARVVHGVVSGVGGYGNSLGLPNIGGELVFDSSYQGNPLVNALCLGVLRHEDIHLANASGAGNKVILFGARTGGDGIGGASILASETFEDGVPAKRPSVQVGDPFMEKVLIECCLDLYAAHVVEGIQDLGAAGISCATSELASNGDGGMHVDLDDVLLRDPTLNAGEILMSESQERMMAVVRPEKLEEFLAITDRWDVETSVIGEVNDSGRLTIDHHGQRIVDVDPTTVAHEGPVYERPYARPAWQDDLQAASVAGLGLERPSTGTELRASALRLLASPNLASPAWVTDQYDRFVQGNTALAQPDDGGVVRVDEGTGLGVALATDANGRYGKLDPRTGAQLALAEAYRNVATTGATPLAVTDCLNFGSPEHPDSMWQLVEAIEGLADACQELGVPVTGGNVSLYNGTGEPGQIDSAIHPTPVVGVLGVLDDVRSALPSGWREAGQSVLLLGATADELDGSAWAEVEHQHLGGLPPRVDLAAERSLAEVLVAARRTGAAAAAHDLSEGGLVQSLLEASLRYGVGVSVSLDELGARDGVTPFEALFSESTARALVAVAPEREAEVLALAEEAGVPVLRLGRTGGDGVAVTFGEDSFAIALDEAREAHEGTLPRLFGPGPT0021730_209DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021730-purL-K23269NANA
AK018_00470570hypothetical proteinGTGACCCGCCCACCCGAGCCCCCCTCCTCCGCGTACTGGTACGGCGGCGACGACGACGCGGCGCGCCAGCTCCTGGAGGCCGTCCGGGTCTTCCGCCGCTCCGACGAGGTGATGCGCCAGCGGGCCAGCCGCGAGATGGACATGAACGTCACCGACCTGCGCGCCCTGCGGTACGTCATCGCGGCCCAGCTGCGGGCCGAGCCGGTCACCCCGCGCGACCTGACCGAGTACCTCGAGATCTCCACGGCGTCGACGACCAAGCTGCTCGACCGGCTCGAGGCGACCGGGCGCCTGCACCGGCGGCCGCACCCGCACGACCGCCGGTCCGTGGTCGTCGAGGCCACCGACGAGGCGCACCGCGAGGTCCGCGACCGGCTCACGCGGGTGCACCACGAGATGTTCGAGGTCGCCCGGCGCGTGCCGGAGCACTGCCGCGGCGCGGTCCGTGACTTCCTCCTCGGGCTCGCGGCGCAGGTCGACGAGCCGGACGGCAGCGCCGCCGCCGTGGCGACGGGCGATGCCCGCTCGCTCGACGAGGACGGGGCCGGAGGGCCGCCGGCGCGCCGGTAGMTRPPEPPSSAYWYGGDDDAARQLLEAVRVFRRSDEVMRQRASREMDMNVTDLRALRYVIAAQLRAEPVTPRDLTEYLEISTASTTKLLDRLEATGRLHRRPHPHDRRSVVVEATDEAHREVRDRLTRVHHEMFEVARRVPEHCRGAVRDFLLGLAAQVDEPDGSAAAVATGDARSLDEDGAGGPPARRNANANANANA
AK018_00471921hypothetical proteinATGACCGAGCACCGGGCGGACGTCGCCGAGGACGCCGACGACGCCACCACCTCCCCGCCGCCTGCCCCGGTGGACTCCGCCTACGACGACGTCGCCTACCGCAGCGCGGGCGTCGTCATCGAGCGCTACTCCACCTCCTTCGGCTGGGCCTGCCGGCTCCTGGGCCCGGACGTGCGCGAGCACGTGCGCGCCGTGTACGCCCTGGTGCGGGTCGCGGACGAGATCGTCGACGACATGGCCGCCCCGCTGACCGTCGACGAGCGGGCCGCCCTGCTCGACGACCTGGAGCGCGAGGTCGACGCCGCCGTGCGTCGCGGGCGCAGCACGAACCTGGTGGTGCACGCCTTCGCGGTCACCGCGCGGCGCTACGGGATCGGCGCGGACCTGACCGCCCCCTTCTTCGCCTCGATGCGCACCGACCTCACCGTGACCGAGCACGACCCGGACAGCTTCGCGCGGTACGTGCACGGCTCGGCCGAGGTGGTCGGGCTGATGTGCCTGCGCGTCTTCACCGGGGGCGACGACGCCGCCTACGCGCGCCTGGCCCCCGGCGCCGCCCGGCTCGGCGCCGCGTTCCAGAAGGTGAACTTCCTGCGCGACCTCGCCGACGACCTCGACGGCCGCGGACGGGCGTACTTCCCCGGCTACGACGACGGCTTCGACGACGCGGTCCGCGACCGCCTGCTCGACGACATCGACGCCGACCTCGCCACGGCGTCGGCGGCGATCGCCGAGCTGCCGCGGTCCAGCCGGGTCGCCGTGCGCGTGGCCCACGACCTCTTCGCCGAGCTCTCCAGCCGCCTGCGGGCGACCCCCGCGGAGGAGCTGCGCACCCGTCGCGTCCGGGTCCCCGACGCCGTCAAGGGTCGTCTGGTGCTCGCCGCCATGGTCCGCGAGCGCCGGAAGGCGGCCGCCGCGTGAMTEHRADVAEDADDATTSPPPAPVDSAYDDVAYRSAGVVIERYSTSFGWACRLLGPDVREHVRAVYALVRVADEIVDDMAAPLTVDERAALLDDLEREVDAAVRRGRSTNLVVHAFAVTARRYGIGADLTAPFFASMRTDLTVTEHDPDSFARYVHGSAEVVGLMCLRVFTGGDDAAYARLAPGAARLGAAFQKVNFLRDLADDLDGRGRAYFPGYDDGFDDAVRDRLLDDIDADLATASAAIAELPRSSRVAVRVAHDLFAELSSRLRATPAEELRTRRVRVPDAVKGRLVLAAMVRERRKAAAAPGPT0007375_1536DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007375-crtB-K02291NANA
AK018_004721620crtN_14,4'-diapophytoene desaturase (4,4'-diaponeurosporene-forming)GTGAGGGTCGTCGTAGTCGGGGGCGGGATCGCCGGGCTCGCCACCGCCGGGCTGCTCGCCCGGGACGGGCACGAGGTCGAGCTGCTGGAGCAGCACGACACGCTCGGCGGCCGGGCCGGGTCGTGGGCCCGGGACGGGTTCCGCTTCGACACCGGGCCGTCCTGGTACCTGATGCCCGAGGTGTTCGACCACTGGTTCGGGCTCATGGGGTCCTCCACCGACGCCGAGCTCGACCTGCGGTCGCTGGAGCCCGCCTACCGGGTGTTCTTCGAGGGGCACGACGACCCCCTGGACGTGCGGCGCGACCGCGCGGCCAACGTCGCCGCGTTCGACGCCGTCGAGCCGGGTGCCGGCGCCCGGCTGGACCGGTACCTGGACGAGGCCCACGAGGCCTACGACATGGCGCTGGACCACTTCCTGTACACGACGTTCGAGTCCTGGCGCTCGCTGGGCGACCGCCGGGTCCTGGCCCGGGCGCACCGGCTGCTGCCGCTGCTGACCCGGTCGCTGGAGTCGCACGTGGGTCGCCGCTTCGACGACGTGCGCCTGCGGCAGGTCCTCGGCTACCCGGCGGTGTTCCTGGGCTCGGCCCCGGACCGCACCCCGGCGCTGTACCACCTGATGAGCGCCCTGGACCTCGACGGCGGCGTCCGCTACCCGTCCGGCGGGTTCACCCGGCTGATCGAGGCGATCGCCGACCTGTCCCGCCGCGCCGGCGTGACCGTGCGCACCGCGGCCCGCGCGACGGCGATCACCACGGGCATCGGCGGACGGCCCGACGCGGGCGACGAGCAGCCGCCCGTGCCCGGCCCGCGGCGCCCCCGCGCCCACGTCACGGGGGTGCGCTGGCGCGACGGCGCCGGGCTGGAGCACCACAGCACCGCGGACGTCGTCGTGACGGCCGCGGACCTGCACCACGTCGAGCACGAGCTGCTGCCCGCCCGGCTGCGCTCCCAGCCCGCCCGCCGGTGGGAGAAGGGCGACCCGGGACCGGGCGGCGTGCTGGTCATGCTCGGCGTGCGCGGCCGGATCCCCGAGCTGGAGCACCACTCGCTGTTCTTCACGGCGGACTGGCGCGAGAACTTCGGCGCGATCGCGCAGGGTCGGGTGCCCGACCCGGCCTCGCTGTACGTGTGCACGCCCTCGCGTACCGACGACACGGTCTCCCCGGCCGGCGACGAGAACCTGTTCCTCCTCGTGCCCGTGCCCGCGGACCCGGCGATCGGACGGGGCGGGGAGGACGGCGCCGGCGATCCGCAGGTCGAGGCGATCGCCGACGCCGCGATCGACCGGATCGCCGACTGGGCCGGGATCCCGGACCTGCGGGACCGCATCGCGGTGCGCCGCACCGTCGGTCCCGGCGACTTCGCGGCGGACCTCGCCTCCTGGTCGGGCAGCATGCTCGGCCCGGCGCACACGCTGTCCCAGAGCGCCGTGCTGCGACCGGGCAACCAGTCGCGCCGGGTGACGGGCCTGCTGCACGCCGGGGGGACGACGATCCCCGGCATCGGCCTGCCGATGTGCCTGATCAGCGCCGAGCTGGTGGTCAAGCGCCTCCGTGGCGACACCTCGGCCCGACCGCTGCCGGCGCCGCTGGAGGCGCTCCGGTCGACGCCCTGAMRVVVVGGGIAGLATAGLLARDGHEVELLEQHDTLGGRAGSWARDGFRFDTGPSWYLMPEVFDHWFGLMGSSTDAELDLRSLEPAYRVFFEGHDDPLDVRRDRAANVAAFDAVEPGAGARLDRYLDEAHEAYDMALDHFLYTTFESWRSLGDRRVLARAHRLLPLLTRSLESHVGRRFDDVRLRQVLGYPAVFLGSAPDRTPALYHLMSALDLDGGVRYPSGGFTRLIEAIADLSRRAGVTVRTAARATAITTGIGGRPDAGDEQPPVPGPRRPRAHVTGVRWRDGAGLEHHSTADVVVTAADLHHVEHELLPARLRSQPARRWEKGDPGPGGVLVMLGVRGRIPELEHHSLFFTADWRENFGAIAQGRVPDPASLYVCTPSRTDDTVSPAGDENLFLLVPVPADPAIGRGGEDGAGDPQVEAIADAAIDRIADWAGIPDLRDRIAVRRTVGPGDFAADLASWSGSMLGPAHTLSQSAVLRPGNQSRRVTGLLHAGGTTIPGIGLPMCLISAELVVKRLRGDTSARPLPAPLEALRSTPPGPT0007390_74DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007390-crtD-K20611NANA
AK018_00473435hypothetical proteinGTGCCGGGCCGCGGCCGGCGGGCCCTCGTCAAGACCGCCGTGCTGCTGACGGGGATCACGCTCGGGGTGGCCGTGACCCGCGAGGGCCGGCAGGCGCGCTCGGGCCTGCGGGCCGCGCAGCGGGACGTCCCGGCGCCCGGTCGCGACGTCGACGCACCGGCCGGCGTGCCGGACGAGGCGACGGACGTGCCGACGGACGACGCCACGGCGGTCCCGCCGTCGGTCGCGGTGGCCGTCCTGGGCACCGGGCTGGTGCTCACCGGCGTGCTGACCGTGGCGGGGGAGCGGTGGCTCTACCGCCGGGCCGAGGCGCTGCGCGCCCGCGGCGTGCGCGCCCCGCACACCCGGGTGGGGCTCGTCGTGGGCGGTGTCGCCGCCGCGCTGGCCGCCCTCGACCCGCCGCTCGCGCAGAGCCCGGCCGCGCCGGCGCGCTGAMPGRGRRALVKTAVLLTGITLGVAVTREGRQARSGLRAAQRDVPAPGRDVDAPAGVPDEATDVPTDDATAVPPSVAVAVLGTGLVLTGVLTVAGERWLYRRAEALRARGVRAPHTRVGLVVGGVAAALAALDPPLAQSPAAPARNANANANANA
AK018_00474459hypothetical proteinTTGGCGGCGTGGTCGTGGCTTGACCTGCCCGGCAAGAACGCGCGGTTCGCCACCGTGTTCGGCGACGTGCTGCTGGAGTCGCTCGAGGGCTGGTGGTTCCTCGACACCGTCGAGGGCACCCTCGAGCTGCGCTGGCCGACGGCGGTCGAGCTCTCCGCCGAGCTCGACTCCCCGGAGGGTCGCCAGGACCTCCTGCTGGAGGACCTCGTGATGGAGGCGGCGCAGCGCGGCGTCGTGCCCGAGGCCGACGAGGTCCTGACGTTCATGCCGCACCCCGCCCTCGGCGGGCGGCTGAGCGCCGAGTACGCCGTGCCCGTGCGCCTCGAGCTGGCCCTGCGCATGTGCGGCGAGGTGCACCGACAGGTCCGTCGTCGGGCCGCCCCGGAGCCGTCGCCGCTGCTGCTCGGCCACAGCCTCGGCGCCCACGCCGACGGGGGGACGGCCTTGAGCCGTCCCTGAMAAWSWLDLPGKNARFATVFGDVLLESLEGWWFLDTVEGTLELRWPTAVELSAELDSPEGRQDLLLEDLVMEAAQRGVVPEADEVLTFMPHPALGGRLSAEYAVPVRLELALRMCGEVHRQVRRRAAPEPSPLLLGHSLGAHADGGTALSRPNANANANANA
AK018_00475339hypothetical proteinATGAGGCGGACCGTGGAGAAGGGTCGGAAACTGATGAAGAAGGTGCTCCTCGCGGGTGGAGCCGTCGCCCTGGGCGACGGCCTGCTGCTCGGCACGACGATCGCGCTCGGCTGGACCGTGGTGGCGATCCTCCTCGTGGGCGTCGGCGTCGCCGGCGCCACGATGGTCGCGGTGGCGACCCCGGCGCCGCGGGCTCCTGCCCGCGCGGCGACCGTCACCCTCGGCCTCCCGCTGCGTGACGCCGCCGCGGAGAGCGCCGACGAACCCGTACCGACGATCGAGCAGGGCGACGGGACGACCGAGCCGCACGTCGGCGACGCGGCCCCGGTCGCGGCCTGAMRRTVEKGRKLMKKVLLAGGAVALGDGLLLGTTIALGWTVVAILLVGVGVAGATMVAVATPAPRAPARAATVTLGLPLRDAAAESADEPVPTIEQGDGTTEPHVGDAAPVAANANANANANA
AK018_004762112hypothetical proteinATGACGACGACGTCCGACCAGCACCCGGCCACCACCACCGACCGCGACAGCGCCGCCTCGGCGCCCCGTGACCAGGACGTGCGCCTCGACGTCGAGTCGGTGTCCGAGCTGCTCCTGGGACGCTGGCCCGAGTACCGCCGTGCGGCCCGTGAGCGCGCCGGCGACACCCGGTTCCACAAGGACGAGTCCCTCACGCCGGCCGAGCACCGCGAGCGCGTGCTGGAGCAGATGCGCCTGATGGTGGACGACGGCACGAAGCTGTCCTGGCTCGCGTTCCCCGAGCGGATGGGCGGCCTCGACCAGCCCGGCGCGAACCTGGCCTGCTTCTCCGAGCTGGTGGCCGCCGACCCGTCCCTGCAGATCAAGTCGGGCGTGCAGTGGGGCCTGTTCTCCGCCGCCATCCTGCACCTGGGCACCCCCGAGCAGCAGGACCGGCTGCTGCCGGCGGCGATGGACCTGTCCGTCCCCGGGGCCTTCGCGATGACCGAGACCGGCCACGGCTCGGACGTCGCCGCCATCGGCACGACGGCCACGTACGACCCGGAGACCGAGGAGTTCGTCCTGGACACCCCGTTCCGCGGGGCCTGGAAGGACTACCTCGGCAACGCCGCCCTGCACGCCACGGCGGCGACCGTCTTCGCGCAGCTCGTCACGAACGGCGTCAACCACGGCGTGCACTGCTTCTACGTCCCGATCAGGGAGACGGGTCCGGACGGACGTGCCGGTGCGTTCCTGCCCGGTGTCGGCGGCGAGGACGACGGCCTCAAGGGCGGGCTGCGCGGCATCGACAACGGCCGCCTGCACTTCACCGGTGTCCGGGTGCCGCGGACGGACCTGCTCGCCCGCTACGGCACGGTCGCCGCCGACGGCACCTACAGCTCGCCGATCGAGAGCCCGGGCCGCCGCTTCTTCACCATGCTGGGCTCGCTGGTCCAGGGGCGCGTCTCGCTGGACGGCTCCGCGGTCAACGCCGCCAAGATCGGCCTGGCCATCGCCGTGCGGTACGCCGCCGAGCGGCGCCAGTTCGCCGGCGGAGGCGCCGAGGAGACCGTGCTGCTGGACTACGCGACGCACCGGCGTCGGCTCTTCCCGGCAATCGCCGAGGCGTACGCGGGCCACTTCGCCAACGAGCGGCTGCTGGACCTGTTCGACGACGTCTTCTCCGGCGAGCACGACACCCCGGAGCGGCGCGAGGACCTCGAGACGACGGCGGCCGCCCTGAAGTCGACCTCCACGCGGTTCGCGCTCGACACGCTCCAGGAGTGCCGCGAGGCCTGCGGCGGCGCCGGGTTCCTCACCGAGAACCGCATCACGTCGCTGCACGCGGACCTCGACGTCTACGCGACCTTCGAGGGCGACAACACCGTCCTGCAGCAGCTCGTCGCCCGTCGGCTGGTGGCCGACTACGGCCGCGAGGTCAAGGGCGCGACGAAGACCCCCGCCGGCATGGCACGGTTCGTCGTCGAGCGGGCCACCGGCGCGGCCCTGGACCGCACCGGGCTGCGGCGTGTCTCCCAGGCCATCGCCGACGTCGGCGACCCGCGCCGGGCCGCCGGGCACCTGCGCGACCCGGAGACGCAGCGCGAGCTCCTCGCGGACCGCGTGGCCACGATGGTCGAGGACGTGGCCATGGCGCTGCGGCCCGCCCAGAAGGCGGAGCCGGCCGAGGCCGCCCGGATCGTCGACGAGAACCAGACGGCGCTCGTCGAGGCGGCGAAGGCGCACGCCGACCTGCTGCGTTGGGAGGCCTTCACCGCGGCGCTGCCGACGTTCGAGGACCCGGGCACCCGTCGGATCATGACCTGGGTGCGGGACGTCTTCGGCCTGACCGTCATCGAGCGCCACCTGACCTGGTACCTGCTCAACGGGCGGCTGTCCGACCAGCGGGCGCGCACCGTGACCGGGTACGTCGACCGACTGTTGCGCCGGCTGCGTCCGCACGCGGTCGACCTGGTCGACGGCTTCGGCTACGGCCAGGAGCACCTGCGGGCCGCGATCTCCTCGGGCGCCGAGGCGGAGCGCCAGGCGGAGGCCCGTGCCTACTACGCCGCGCTGCGGGCGAGCGGCGAGGCCCCCGTCAGCGAGAAGGCCCTGCGCAAGTCCTCGCGCTGAMTTTSDQHPATTTDRDSAASAPRDQDVRLDVESVSELLLGRWPEYRRAARERAGDTRFHKDESLTPAEHRERVLEQMRLMVDDGTKLSWLAFPERMGGLDQPGANLACFSELVAADPSLQIKSGVQWGLFSAAILHLGTPEQQDRLLPAAMDLSVPGAFAMTETGHGSDVAAIGTTATYDPETEEFVLDTPFRGAWKDYLGNAALHATAATVFAQLVTNGVNHGVHCFYVPIRETGPDGRAGAFLPGVGGEDDGLKGGLRGIDNGRLHFTGVRVPRTDLLARYGTVAADGTYSSPIESPGRRFFTMLGSLVQGRVSLDGSAVNAAKIGLAIAVRYAAERRQFAGGGAEETVLLDYATHRRRLFPAIAEAYAGHFANERLLDLFDDVFSGEHDTPERREDLETTAAALKSTSTRFALDTLQECREACGGAGFLTENRITSLHADLDVYATFEGDNTVLQQLVARRLVADYGREVKGATKTPAGMARFVVERATGAALDRTGLRRVSQAIADVGDPRRAAGHLRDPETQRELLADRVATMVEDVAMALRPAQKAEPAEAARIVDENQTALVEAAKAHADLLRWEAFTAALPTFEDPGTRRIMTWVRDVFGLTVIERHLTWYLLNGRLSDQRARTVTGYVDRLLRRLRPHAVDLVDGFGYGQEHLRAAISSGAEAERQAEARAYYAALRASGEAPVSEKALRKSSRPGPT0002290_382DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002290-aco|acx-K00232NANA
AK018_00477717putative HTH-type transcriptional regulatorATGACGGCCGCAGCACACGGGACGAACCGGGCCGCCCGCACGCGGCCCGACGGACGCTCGACCCGGTGGGACGACCACCGTGCCCAGCGGCGTGCCTCGCTCGTGCGCGACGCCCGGCGGGCGATCCACGAGATCGGTCCGGGGGCGTCGATGGACGAGATCGCCGCCATGGCCGGGACGTCGAAGTCGATCTACTACCGCTACTTCGACGACAAGGCCGGACTGCGGCTGGCCGTGGCCGAGTCGGTGGTCCGCGGCATGCACCGCCGGCTGGCGGAGGCCGCCGAGGAGGCGCCGACGCCGCACTCCGCCCTGCGCGCCATGGTCCGCACCTACTTGCAGACCATCGAGAGCTCGCCCCCGGTCTACTGGTTCGTCACCCGCACGGCGCTCGGCGGCAACGAGCCGGACGACGGCACCGGCCGGGTCGAGGCGCTCGGCGCCTACCTGGACTCGGTGATCACCCTGGTCGCCGAGCCGTTCGCCCGTGCCGTCCACGTCCCGCCGACGACAGCGGCCGCCTGGGCCGCCGGTGCCGTCGGCTTCGTCCGCGGCGCGGGGGAGTGGTGGCTCGGCCGCACCCGCGCCGAGGGCCTGACCCGCGACGACCTCACCGACCAGGTGACCACCTGGCTCTGGAACGGGCCCGTCGGTGTGCTCCACCACGACGCACCGGACGGGTCCGCGCCGTCCCGCCCCACCGAGAAGCAGGAGTGAMTAAAHGTNRAARTRPDGRSTRWDDHRAQRRASLVRDARRAIHEIGPGASMDEIAAMAGTSKSIYYRYFDDKAGLRLAVAESVVRGMHRRLAEAAEEAPTPHSALRAMVRTYLQTIESSPPVYWFVTRTALGGNEPDDGTGRVEALGAYLDSVITLVAEPFARAVHVPPTTAAAWAAGAVGFVRGAGEWWLGRTRAEGLTRDDLTDQVTTWLWNGPVGVLHHDAPDGSAPSRPTEKQENANANANANA
AK018_004781344fadI_1COG01833-ketoacyl-CoA thiolase FadIGTGGCCACTCGCCAGACCTCCCGTGCCCAGACCGCCGGCGCGGCACAGGGCCCGCGCGACGCCGTCGTCGTCGGCGGCAACCGCATCCCCTTCGCCCGCGCCGGGAAGAAGTACGCCGACGCCTCCAACCAGGAGATGTTCACCGCCGCCCTCGAGGGCCTCGTCGCCCGGTACGGGCTGCAGGGCGAGCGCCTCGGCGAGATCGTCGGCGGTGCCGTGCTGAAGCACTCGCGCGACTTCAACCTCGTGCGCGAGTCCGTGCTGGGCTCGTCGCTGTCGCCGCAGACCCCCGCGTTCGACCTCCAGCAGGCCTGCGCCACCGGCCTCGAGGCCACCATCACCATCGCCAACAAGATCCGCCTCGGCCAGATCGAGTCCGGTGTCTCCGGCGGCACCGACACCGTCTCCGACGCGCCGATCGCCGTCAGCGAGGGCATGCGCCGCGCGCTGCTGGACGCCGGTCACGCCAAGACCTGGCAGGACCGCGCCAAGGCGCTCGCCCGGATCCGCCCCGCGGACCTCAAGCCGCTCAGCCCCGCCACCGACGAGCCGCGCACCGGCCTGTCGATGGGCGAGCACCAGGCCGTCACCACCGCCCGGTGGGGCATCACCCGCGAGGCGCAGGACGAGGTCGCCCTCGCCAGCCACCAGCACCTCGCCGAGGCCTGGGAGTCGGGCTTCTTCGACGACCTCGTCACCCCGTTCCGCGGCCTGACCCGGGACGACAACATGCGCCCCGACACCTCGGCGGAGAAGCTCGCCGGGCTCAAGCCGGTCTTCGGCCGGTCGCTCGAGGCGCCGGCGACCATGACCGCCGGCAACTCCACGCCGCTGACCGACGGAGCCTCCACGGTGCTGCTCGGGTCGCGCGAGTGGGCCGAGGCACACGACCTGCCCGTGCTGGCCCGGTTCGTCGACGCCGAGACCGCCGCCGTGGACTTCGTGCACGGCCGCGAGGGCCTGCTCATGGCCCCGGTGCACGCCGTGCCGCGGCTGCTGGCCCGCAACGGCCTGAGCCTGGAGGACTTCGACTTCTTCGAGATCCACGAGGCGTTCGCCTCCACGGTCCTCACGACGCTGGCCGCCTGGGAGGACGCCGACTACGGCAAGAACGAGCTCGGCCTGCCCGGCGCGTTCGGCTCCGTGGACCGCAGCAGGATCAACGTCCACGGCTCCTCGCTCGCCGCGGGGCACCCCTTCGCCGCGACCGGCGGGCGAATCGTCGCCACCGCCGCGAAACTGGTGGCGACGAAGGCCGCCGAGACCGGCAAGCCGGCCCGCGCGCTGGTCTCCGTGTGCGCCGCCGGCGGCCTCGGTGCCACCGCCGTCCTCGAGTCCGTCTGAMATRQTSRAQTAGAAQGPRDAVVVGGNRIPFARAGKKYADASNQEMFTAALEGLVARYGLQGERLGEIVGGAVLKHSRDFNLVRESVLGSSLSPQTPAFDLQQACATGLEATITIANKIRLGQIESGVSGGTDTVSDAPIAVSEGMRRALLDAGHAKTWQDRAKALARIRPADLKPLSPATDEPRTGLSMGEHQAVTTARWGITREAQDEVALASHQHLAEAWESGFFDDLVTPFRGLTRDDNMRPDTSAEKLAGLKPVFGRSLEAPATMTAGNSTPLTDGASTVLLGSREWAEAHDLPVLARFVDAETAAVDFVHGREGLLMAPVHAVPRLLARNGLSLEDFDFFEIHEAFASTVLTTLAAWEDADYGKNELGLPGAFGSVDRSRINVHGSSLAAGHPFAATGGRIVATAAKLVATKAAETGKPARALVSVCAAGGLGATAVLESVPGPT0008320_641DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
AK018_004791344hypothetical proteinATGACCGACCGCTACACGAAGGCCGTCAACTCCGGGTTCACGAAGACCCTCGCGACGAGGCTCGGCCTGCCCCGCCCCGCGATCCTGCGCCGCTACCGCGCCGGCGACCCGCTGACCGTGGGCCCCGTCCTGGTGGTGTCCGACGGCGCCTCCAAGGCCGACGCCGACGCCGTCGCCCAGACGCTGCTCGGCTGGGACCTCGACGTGCGCCGCGACCCGACCGACGACGTCCGCTGGGGCGCCGTCGTCCTCGTGCTGACCGAGACCGCCCGGCCCGCCGACGCCTCCGAGGCGGTGCTGTCCGTCGGGTCCGTGCTGCGACGGCTGGCGGGCAACGGCCGCGTCGTCACCGTCTCGCGCGCTCCCGCCGACGGCGACGCCCCGGAGCTCGCCGCGGCCCGGAACGCCGTCGACGGGTTCCTGCGCTCGCTCGCCAAGGAGCTGCGCGGCGGTGCCACCGGCAACGGGATCGTCCTGACCGGCGGCGCGGCCGTCGACCAGACCTCCGTGCGGGCCACGCTGCGGTTCTTCCTGTCCGCGAAGAGCGCCTACGTCGACGGACAGCTCCTGCAGGTCGGCCCGGCCGATGCGGCGCTCCCGGAGGAGTGGGACCGCCCGCTGGACGGGAAGGTCGCCGTCGTCACCGGCGCGGCCCGTGGCATCGGCGCGGCCATCGCCCGCACGCTGGCCCGCGACGGTGCCACCGTGGTGTGCGTCGACGTGCCCGCCGCCGGGGAGGGACTGGCCCGGACCGCCAACGCGGTCGGCGGGACGGCCCTGCAGCTCGACGTCACGGCCGAGGACGCCGGGCAGCGCATCCTGCAGCACGCCCGCGAGCGCCACGGGAGCCTCGACGTCGTCGTGCACAACGCGGGCATCCTGCGCGACAAGCTGCTCGCCAACATGAAGCCCGCCCAGTGGGACGCCGTGATCGCGGTGAACCTCGCCGCCCAGCTGCGGATCAACGAGGCGCTCCTCGACGCCGGCCTGGACGGGCTGCACGTGGTCTCGCTGGCCTCGACCTCCGGCATCGCCGGGAACAAGGGGCAGACCAACTACGCCTTCTCCAAGGCGGGCGTCATCGGGCACACGCGGGCCACGGCCCCGCTGCTCGGCGCCCGCGGCGGGACGGCCAACGCGGTCGCCCCGGGGTTCATCGAGACGGACATGACGGCGTCGATCCCGTTCGCCACCCGGTCGGTGGCACGGCTGCTGCCGACCCTCTCCCAGGGCGGCGAGCCGGTCGACGTCGCCGAGGCCATCGCGTTCCTCGCCACGCCGGCTGCGGCCGGCGTCAACGGCCAGGTGCTGCGCGTGTGCGGTCAGCACATGGTGGGCCAGTGAMTDRYTKAVNSGFTKTLATRLGLPRPAILRRYRAGDPLTVGPVLVVSDGASKADADAVAQTLLGWDLDVRRDPTDDVRWGAVVLVLTETARPADASEAVLSVGSVLRRLAGNGRVVTVSRAPADGDAPELAAARNAVDGFLRSLAKELRGGATGNGIVLTGGAAVDQTSVRATLRFFLSAKSAYVDGQLLQVGPADAALPEEWDRPLDGKVAVVTGAARGIGAAIARTLARDGATVVCVDVPAAGEGLARTANAVGGTALQLDVTAEDAGQRILQHARERHGSLDVVVHNAGILRDKLLANMKPAQWDAVIAVNLAAQLRINEALLDAGLDGLHVVSLASTSGIAGNKGQTNYAFSKAGVIGHTRATAPLLGARGGTANAVAPGFIETDMTASIPFATRSVARLLPTLSQGGEPVDVAEAIAFLATPAAAGVNGQVLRVCGQHMVGQPGPT0003180_562DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_004801230hypothetical proteinGTGACGGCGGCGCCGCCGCGCACGGCCGACGGCCGCGAGCTGCGCGTGGAGACCCAGCCCGGGCTGCCCGGACTGGGCGGCCTCTACGCCCGCGGTGCAGCGGCGTCGGGCCGGATCGCCGCAGGCCGCGCCCTGCCGTCCCTGCCGGTCGTCGGCGAAGGCCGGTCGCCGGACGGGCCGCCGGGGAGCGCCGGGTCCGACCTGTCGCTGCCCGACGTCGCCTACCGGGTCTCCGGGGTGGGCACCGACGACCTGGAGCGGCACCTGCACGACTACCAGCGGCTGCTGCACGAGCCGGTCAGCAGCACGCTGCCCGCCGGGTACCTGCACGTGCTGGCCTTCCCGCTGGGCACCGCGGTCATGGTGCGCGGCGACTTCCCGCTGCCGCTGCTCGGCATGGTCCACGTGGCCAACCGGGTCGACGTACGGGGGCCGGTCGTCCTGGGCGACGTCCTCGACGTGCGGGCGTGGGCGGAGAACCTCCGTCCGCACCGGCGCGGGGTGCAGCTCGACCTGGTGGCCGAGGTGCGCCACGACGGCGCGGACGCCGCCGCGCCGCCGGTGTGGCGCGGGGTGTCGACCTACCTCGCCAAGGGGTTCGAGCTGCCCGCGGAGAGCCCGTCCGGGTCGTCCGGTTCCGGGGCCGGCTCCGGGTCGTCCGGCTCCGGGTCCGCCGACGAGTGGACCCCGCCGCTGCCCACCGGCCGGTGGACGCTGGGGCCGGAGACAGGTCGTGCGTACGCGGCCCTGTCCGGGGACCGCAATCCCATCCACATGTCGGCGCTCTCGGCCAAGGCCTTCGGGTTCCCGCGGGCCATCGCGCACGGGATGTACACCGCCGCGCGGGCGCTGGCCGACGTCGGCCCCGGACGCGGGGACGCCTACCGGTGGACGGTGGAGTTCGGCAAGCCCGTGCTGCTGCCCGGCACGGTGGACGTGGCGATCACGCCCGGCGAGGAGGACGGCTCCGGGTACTCCTACGTGGGCTGGAACGCCCGCAAGGGGCGGCGGCACGCCGCCGGCGGGGGCGGCCGGCGCTGCGGGGGGGGGTTCGCCGCCGTTTGGGCCCGCGGGAACGGGTTCGGTCGACACGCTGACCGAACCCGTTCCGTCGGACCGAACCCACGAGGGCCCGGGCGTAGGGTCGAGCCATGGACGCCCTGCACGAGCAGACCGCCCTGGAGCTCCGTGACCGGCTGCGTGCCGGTGACCTCACCCCGGGCGAGGTGAMTAAPPRTADGRELRVETQPGLPGLGGLYARGAAASGRIAAGRALPSLPVVGEGRSPDGPPGSAGSDLSLPDVAYRVSGVGTDDLERHLHDYQRLLHEPVSSTLPAGYLHVLAFPLGTAVMVRGDFPLPLLGMVHVANRVDVRGPVVLGDVLDVRAWAENLRPHRRGVQLDLVAEVRHDGADAAAPPVWRGVSTYLAKGFELPAESPSGSSGSGAGSGSSGSGSADEWTPPLPTGRWTLGPETGRAYAALSGDRNPIHMSALSAKAFGFPRAIAHGMYTAARALADVGPGRGDAYRWTVEFGKPVLLPGTVDVAITPGEEDGSGYSYVGWNARKGRRHAAGGGGRRCGGGFAAVWARGNGFGRHADRTRSVGPNPRGPGRRVEPWTPCTSRPPWSSVTGCVPVTSPRARNANANANANA
AK018_004811386amiB2_1COG0154Putative amidase AmiB2GTGACCGACCACTTCCTGGACCGCATCGCGGCACGCAACGACGAGCTCGGTGCGTTCGCCCACGTCACCCCGGACGCCGCCCGCGAGCGTGCGGAGGAGCTCGCGTCGGACGCGGCGCCGCCGTCGGGCACCCTGTGGGGCCTGCCCACGGGCGACAAGGACCTGTGGAACCGGGCGGGGGTCCCGAGCGGGTTCGGGTCGCGCGCGATGTCCGGCTTCGTCCCCGAGGAGTCCGACGACGTCGTGCGCGACCTCGACGCCGCCGGGATCGTCAGCCTGGGCAAGACCGCCACCCCCGAGCTCGGCTTCCCGGCGTACACCGAACCGGTGGCCGGCCCCGTGGCGCGCAACCCGTGGGACCTGACGCGGGGTGCCGGCGGTTCCAGCGGCGGGGCGGCCGTCGCGGTGGCGGCCGGTCTGCTGCCGTTCGCGCCCGGGTCCGACGGCGGGGGGTCCGTCCGGATCCCGGCCGCGGCGTGCGGCGTGGTCGGGCTGAAGCCCTCGCGCGGCCTGCTGCCGGCGGGGTCCGGCATCGAGGGACTCGGCGGGCTCGTGGTCAACGGGCCGATCGCCCGCACGACGGCGGACACGGCGCTGCTGCTGGAGGGGATGCTGCGCCGCACCCCCGACGGGCACGTCGACCACCGGTTCACGCTGCGCACCCCGGCGGCGCACGCCGGCGCGTACCTGGCGGCCGCGCAGGCCGGCGAGGTGCCCGGACGGGACGAGGACGGTGGCCGGTTCCGCGTGGGGGTCACCACCTGGAACGCCTGGCAGTACTCCTACGACGTCACCGTCGACCCGGAGGCGCGCGCCGCGTTGGACGCCGGGGTCGACGCGCTGGCGGATCTGGGTCATGGCGTCGAGGAGCACACCTGGGACCCGGTGCCCGAGTTCGGCGACGCCTTCCGCAGCCTGTGGATGGGCGGCGCGTCGGCGGTGCCGATCGACGACGACGCCGTCCTCGACTCGCTGGAACCGCTGACGTCGTGGCTCATCCGCCGTGGACGGCAGGTGGGTGCCCGCGAGCTCGCCGAGGCGCTGGCGACGCTGACGCAGTTCGAGCGTCGGCTCATCGCGGGCCTGGGCGAGCTGGACGCCGTGATCACCCCGGCACTGGCGATGACGCCACGGCAGATCGGCTGGTTCGACGCCGAGGACTCGGACCGCAACTTCGTCCAGCAGTGCCAGTACACGCCGTTCACGTCGTGGCTGAACGTGGCCGGGCTGCCCGCGATCACCGTGCCGACGCACTGGACGGACGACGGGCTGCCCATGGGCGTGCAGATCATCGGCCGCCCGGGCGGGGAGCTGACGCTGCTCGCGCTGGCCGGTCAGCTCGAGGACGTGCTGCGCTGGCCGGAGAGGCACCCGCCGGTCTGGTGAMTDHFLDRIAARNDELGAFAHVTPDAARERAEELASDAAPPSGTLWGLPTGDKDLWNRAGVPSGFGSRAMSGFVPEESDDVVRDLDAAGIVSLGKTATPELGFPAYTEPVAGPVARNPWDLTRGAGGSSGGAAVAVAAGLLPFAPGSDGGGSVRIPAAACGVVGLKPSRGLLPAGSGIEGLGGLVVNGPIARTTADTALLLEGMLRRTPDGHVDHRFTLRTPAAHAGAYLAAAQAGEVPGRDEDGGRFRVGVTTWNAWQYSYDVTVDPEARAALDAGVDALADLGHGVEEHTWDPVPEFGDAFRSLWMGGASAVPIDDDAVLDSLEPLTSWLIRRGRQVGARELAEALATLTQFERRLIAGLGELDAVITPALAMTPRQIGWFDAEDSDRNFVQQCQYTPFTSWLNVAGLPAITVPTHWTDDGLPMGVQIIGRPGGELTLLALAGQLEDVLRWPERHPPVWPGPT0006115_4157DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426NANA
AK018_004821434sufS_1COG0520Cysteine desulfuraseATGACCGCGATCGCCGAGACACCCGCCTGTCCGGGGACCCCCACCGTGGGCGACCTGGCCCCGGTGCTGCCCGTCGTCGGGCACGACACCCCCGCACCGCTGGTGGACGGCCGCCAGGTGCCCTACGCCAACCTCGACGTCGCCGCGTCCGCCCCGGCGCTGCAGGACGTCGCCGACCGCATCACGCAGACGCTGCCGCTCTACGCCTCCGTGCACCGCGGTGCCGGATACCTCTCCCAGGTGTCCACCACCCTGTACGAGCAGTCCCGGCGCGTGATCGGCGAGTTCGTCGGCGCGCGGGACGACGACGTCACGCTGCTCGTGCGCAACACGACCGACGCGCTCAACCTGCTCGCCGGGTGCGTGCCCGCGTCCGACGACGGCACGCCGGGCCGGGTGCTCGTCCTCGACGTCGAGCACCACGCGAACTTCCTGCCCTGGCAGCGCTCCGCCGACGCCACCGTGCTGACCGGTCGCGACACCGTCGCCGGGACCGTGGCGGCGATCCGCGACGAGCTCGCCGCGGCGCACTCCGCCGGTCGCGGCTACGCCCTGCTCGCGGTCACCGGTGCCTCCAACGTCACCGGGGAGACGCTGCCCGTGGCCGACGTCGCCGCCACCGCCCACGCGGCCGGCGCGCGGGTGCTGCTCGACGGCGCCCAGCTCGTCCCGCACCGCCGGTTCTCCCTGGCCGCCACCGGCGTCGACTACCTCGCCTTCTCCGGGCACAAGACCTACGCCCCGTTCGGCGCCGGCGCCCTGGTCGGCCGCCGGGACTGGCTCGACGCCGGCACTCCGTACCTCGCCGGCGGCGGGGCCGTGCGCAGCGTCCGCGTCGCCGAGACCGAGTGGCACGACGGGCCCGCCCGGCACGAGGCCGGCTCGCCCAACGTGCTCGGCGCCGTCGCGCTCGCGGCCGCGTGCGAGTCGCTGGCCGCCCTCGACGCCGACGCGCTGCGCGCCCACGAGGACTCGCTGCGGGCCCGGCTCGTCGACGGGCTCGAGGCGATCGACGGCGTCGAGGTGGTCCGGCTGTGGTCCGACGCCCCCGACACCGTCGGCGTCGTGACCTTCACGGTCGCCGGGTACGAGCCCGGCCAGGTCGCCGCCTACCTCTCGGCCGAGCACGGCATCGGCGTGCGCGACGGCCGGTTCTGCGCGCACCCGCTGCTGTCCCGGCTCGGCTATGGGGCGGGCGCCGTGCGGTCCTCGGTGGGCGTCGGCACCGCCGGCGAGGAGGTGGAGCGGCTCGTCGCCGCCGTCGCCGCCCTCGTGGCCGACGGCCCGCAGGCCCGCTACGACGTCGTCGACGGCCTGTGGATCGTCGTCGACGACCCGCGTCCCGTGCCCGAGGGGTCGGGGCTGACCGGGCTGCTCGCCACCGCCGGTCCCGGCCAGGACGAGGCGTTCGGCTGCCTGCCCGAGGACGTCTGAMTAIAETPACPGTPTVGDLAPVLPVVGHDTPAPLVDGRQVPYANLDVAASAPALQDVADRITQTLPLYASVHRGAGYLSQVSTTLYEQSRRVIGEFVGARDDDVTLLVRNTTDALNLLAGCVPASDDGTPGRVLVLDVEHHANFLPWQRSADATVLTGRDTVAGTVAAIRDELAAAHSAGRGYALLAVTGASNVTGETLPVADVAATAHAAGARVLLDGAQLVPHRRFSLAATGVDYLAFSGHKTYAPFGAGALVGRRDWLDAGTPYLAGGGAVRSVRVAETEWHDGPARHEAGSPNVLGAVALAAACESLAALDADALRAHEDSLRARLVDGLEAIDGVEVVRLWSDAPDTVGVVTFTVAGYEPGQVAAYLSAEHGIGVRDGRFCAHPLLSRLGYGAGAVRSSVGVGTAGEEVERLVAAVAALVADGPQARYDVVDGLWIVVDDPRPVPEGSGLTGLLATAGPGQDEAFGCLPEDVNANANANANA
AK018_00484456hypothetical proteinATGAACGCACCGATCGAACCCCGACCCGCCGAGGGCTACGCCGGGGACCTGACCCCGCAGCAGGCGTGGGACCTGCTCGCCGACGACCCCGGCGCCGTCCTGGTGGACGTGCGCACCGAGGGCGAGTGGCGCCTGATCGGGGTGCCCGACGTCGGCTCCCTGGACAAGGAGGTCGTGTTCAGCCAGTGGGTCACCGGCGACGGCCGGCCCAACCCCGCCTTCCTGGCCGAGCTCGACACCGCCGGCGTGACGACCGACCAGGCCGTGGTGTTCCTGTGCCGCTCCGGCCAGCGCTCCATCGGCGCGGCCCGCCTGGTGACGTCGGCCGGGTACGGCCCCGCCTACAACGTGCTGGAGGGCTTCGAGGGGCCCGTCGGCCCGCTCGGCGCCCGCGACCAGGCCGGCTGGAAGGTCCGCGAGCTGCCGCACACCACCTTCGCGGGGCAGAGCCGGTGAMNAPIEPRPAEGYAGDLTPQQAWDLLADDPGAVLVDVRTEGEWRLIGVPDVGSLDKEVVFSQWVTGDGRPNPAFLAELDTAGVTTDQAVVFLCRSGQRSIGAARLVTSAGYGPAYNVLEGFEGPVGPLGARDQAGWKVRELPHTTFAGQSRNANANANANA
AK018_004851272metZ_1COG0626O-succinylhomoserine sulfhydrylaseGTGAGCCGCGCCGAGATCCCCACCGGCCCCGGTGCCAACCCGGTCGCCCACGGCGGCTCGGGCCGCGGCGCCCTGCCCGACGGCGTCCGCCCGGCCACGCTCGCCGTCCGCGGCGGGCACCGGCGCAGCGAGTTCGAGGAGATGTCCGAGGGGCTCTTCCTCACCCAGGGGTACACCTACGGCTCCGCCGCCGAGGCCGAGGCCGCGTTCGCCGGGGAGACCTCGCGGTTCATGTACTCGCGCTACGGCAACCCGACCGTGCACACCTTCGAGGAGCGGCTGCGCCTCGTCGAGGGCGCCGAGGCCTGCTACGCCACCGCGACCGGCATGTCGGCGGTGTTCACCACGCTCGCCGCGCTGGTCTCGTCGGGGTCCCGCATCGTCTCGGCGCGTGCCCTGTTCGGCTCCACCAACGTCATCTACGACGAGATCCTCGCCAAGTGGGACGTCCAGGTGGATCTCGTGGACGGCCACGAGATCGACCAGTGGGCCGAGGCGCTGGCCACGCCCGCCGACGTCGTGTTCTTCGAGACGCCGTCGAACCCCATGCAGGACCTCGTCGACGTGCGTCGGGTCTGCGAGCTCGCCCACGCCGCGGGTGCGACCGTCGTCGTCGACAACGTGTTCGCCACCCCGATCCTGCAGAAGCCGCTCGAGCTCGGCGCCGACGTCGTGGTGTACTCCGCGACCAAGCACATCGACGGCCAGGGCCGGGTGCTCGGCGGGGCGATCCTCGGCTCGGAGGAGTTCCTGTCCGGGCCGGTCCAGACGTTCCTGCGCCACACCGGGCCGTCCCTGAGCCCGTTCAACGCCTGGGTGCTGCTCAAGGGTCTGGAGACCCTCGACGTCCGCGTGCGGGCGCAGAACGCGGCCGCCCTGCAGGTCGCCACGGCGCTCGACGGTCTCGACGGCATCAGCCGGGTGCTCTACCCTTTCCTGCCGTCCCACCCCCAGCACGCCCTCGCGCTGGAGCAGCAGACCGGCGGCGGCACCGTGGTCACCTTCGAGCTGGCGACCGACGACGGCGCGGACCCGGACGAGGCCAAGCGACGCACGTTCCGGTTCCTGGACGCGCTGCGGATCGTCGACCTGTCCAACAACCTGGGCGACGCCAAGTCGATCATGACCCACCCGGCCACCACGACGCACCGCAAGCTCGGCGTCGCGGGGCGGGCCGCCGTCGGGATCACCCCCACGACGGTGCGCCTGTCGGTCGGCCTCGAGGACCCGCTGGACATCGTCGAGGACGTCACCCAGGCGCTGCGGGCCTGAMSRAEIPTGPGANPVAHGGSGRGALPDGVRPATLAVRGGHRRSEFEEMSEGLFLTQGYTYGSAAEAEAAFAGETSRFMYSRYGNPTVHTFEERLRLVEGAEACYATATGMSAVFTTLAALVSSGSRIVSARALFGSTNVIYDEILAKWDVQVDLVDGHEIDQWAEALATPADVVFFETPSNPMQDLVDVRRVCELAHAAGATVVVDNVFATPILQKPLELGADVVVYSATKHIDGQGRVLGGAILGSEEFLSGPVQTFLRHTGPSLSPFNAWVLLKGLETLDVRVRAQNAAALQVATALDGLDGISRVLYPFLPSHPQHALALEQQTGGGTVVTFELATDDGADPDEAKRRTFRFLDALRIVDLSNNLGDAKSIMTHPATTTHRKLGVAGRAAVGITPTTVRLSVGLEDPLDIVEDVTQALRAPGPT0020020_1157DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020020-mdeA-K01761NANA
AK018_00486579hypothetical proteinGTGAGCCTGACGATCCGCACCGCCACCCCCGACGACGTCCCCGCGATCCTGCGGCTGGTCCATGCGCTGGCCACCTACGAGCGCGAACCCGACGCCGTCGAGGCCACCGAGGACGACTTCTCGGCGGCACTGTTCCCGACGTCGGGCACCCCGACCACGCACGGGCTCGTCGCCGAGGTCGACGGCGAGGTCGTCGGCATCGCGATCTGGTTCACCACGTTCTCGACCTGGACCGGCAAGAACGGGATCTGGCTCGAGGACCTGTTCGTCGACCCCGCCCACCGGGGTGCCGGCGCCGGACGGGCCCTGCTGACCCGCCTGGCCGAGATCTGCGTCGAGCGCGGCTGGCGCCGGCTCGAGTGGTGCGTCCTGAACTGGAACGAGCCGGCGATCGCCTTCTACCGGTCGCTCGGGTCCACCCCGCAGGACGAGTGGACCACGCACCGCGTCGACGGGTCGGCCCTGACCGCGCTGGCCTCCGGCGCGGCGACCACGACGGCCGCGACCGATCCCGCCACCAGCCCCTCACCGGGCGGGTTGTCCAGCTCCAGCAGCCGAGCCCGGTGCGCGCGGACCTGAMSLTIRTATPDDVPAILRLVHALATYEREPDAVEATEDDFSAALFPTSGTPTTHGLVAEVDGEVVGIAIWFTTFSTWTGKNGIWLEDLFVDPAHRGAGAGRALLTRLAEICVERGWRRLEWCVLNWNEPAIAFYRSLGSTPQDEWTTHRVDGSALTALASGAATTTAATDPATSPSPGGLSSSSSRARCARTPGPT0007790_1296DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007790-speG-K00657NANA
AK018_00487483hypothetical proteinGTGGCCCGTGCCCTGTACAGCGCCTGGCTGCGCTGTCCGCGGCTGTCGATGGCGGTCCGCGGCGGCGTCGCGGCCGGGCTGGCACGGCTCGTGGGGATCTACGTGCCCCACCCGCTGGGGGACTTCCCCTCCTACGCCCCGCTCGGGGCGCCGAGGACCCCGAGAGCCGCCGTGCCGCGCTGCAGCCGGTGCTGGAGAGGGCGCGGGATTCGGTGCGTCACAGCCGCGAGGCCGCCCGCGTGGGCGCTGCACGCCGGCGCCTGGGGTGAGGACCGGGACGAGCTCGTCGACTCGCTGCAGAGTCAGGTCCGCGCGCACCGGGCTCGGCTGCTGGAGCTGGACAACCCGCCCGGTGAGGGGCTGGTGGCGGGATCGGTCGCGGCCGTCGTGGTCGCCGCGCCGGAGGCCAGCGCGGTCAGGGCCGACCCGTCGACGCGGTGCGTGGTCCACTCGTCCTGCGGGGTGGACCCGAGCGACCGGTAGMARALYSAWLRCPRLSMAVRGGVAAGLARLVGIYVPHPLGDFPSYAPLGAPRTPRAAVPRCSRCWRGRGIRCVTAARPPAWALHAGAWGEDRDELVDSLQSQVRAHRARLLELDNPPGEGLVAGSVAAVVVAAPEASAVRADPSTRCVVHSSCGVDPSDRNANANANANA
AK018_004881053hypothetical proteinATGAACGACACCGGCCTGACCTCCTCCCCCGCCCTCTCGGTCCTCGACCTCGTCCCCGTCCGCTCCGGCCAGTCCAGCGCCGAGGCCCTCGCCTCCTCCATGGCTCTGGTCCGGCGCGCCGACGAGCTCGGGTTCGCCCGCTACTGGTTCGCCGAGCACCACAACATGCCGGCCGTCGCCGCCTCGACGCCCCCGGTGATGATCGCGGCCGCGGCCGCGCGGACCGAGCGGATCCGGGTGGGCTCCGGCGGTGTCATGCTGCCCAACCACGCCCCGCTGGTGGTGGCCGAGCAGTTCGCCGCCCTCGAGGCCCTCGCCCCGGGCCGGATCGACCTCGGCATCGGGCGCGCCCCCGGGAGCGACCCCGTGGTGACAGCGCTGCTGCGCTCCTCCGGGCCGACGTCGGACGTCGACCGGTTCCCCGAGCACGTGCGCAACATCCTGGCCCTCATGGAGCCCGACGGCGCCCAGCTGCGGCTCACCGACGGCAAGACCTACGACGTGCACGCCACGCCGGCCGCGACCGCGGCCCCGACCCTGTGGCTGCTCGGGTCGAGCGACTACTCGGCGCGCCTGGCCGCCGAGCTCGGGCTGCCGTACGTGTTCGCCAACCACTTCTCCGGCGCCGGGATCGACCAGGTGCTCGCCCTGTACCGGGACGGCTACCGCCCCAGCGAGGCGCACCCGGAGCCGCAGACCTTCCTCACGCTGAACGCCGTCGTGGCCCCGACCGCCGAGGAGGCCCACGAGCGCGCGCTGCCGCAGCTGCGGGCGATGGCCCGGCTGCGCACCGGCAAGCCGATGGGCACCGCCGAGACCGTCGAGGAGGCGCTGGCCACCCCGCTGGACGGCCTGGGCCAGCAGATGGTGGAGGACATGCGCGCCCGGTGGCTCATCGGCACGCCGGACGAGGCCCGTGCCGAGGTGGCCCGGCTGGCCGAGCGCCACGGCGCCGACGAGGTGATGATCGTCCCGGTGGCCGGCACCTACGCGTCCGAGCCGCTGGACGCCACGCCCGGGCGGGTGCAGACGCTGGAGCTGCTGGCCGGCTGAMNDTGLTSSPALSVLDLVPVRSGQSSAEALASSMALVRRADELGFARYWFAEHHNMPAVAASTPPVMIAAAAARTERIRVGSGGVMLPNHAPLVVAEQFAALEALAPGRIDLGIGRAPGSDPVVTALLRSSGPTSDVDRFPEHVRNILALMEPDGAQLRLTDGKTYDVHATPAATAAPTLWLLGSSDYSARLAAELGLPYVFANHFSGAGIDQVLALYRDGYRPSEAHPEPQTFLTLNAVVAPTAEEAHERALPQLRAMARLRTGKPMGTAETVEEALATPLDGLGQQMVEDMRARWLIGTPDEARAEVARLAERHGADEVMIVPVAGTYASEPLDATPGRVQTLELLAGNANANANANA
AK018_00489768gloB_1Hydroxyacylglutathione hydrolaseGTGGTGCGATCCCTGACCCCGTCGATCTCGGTGCTGCGCGCGGACAACCCCGGCCCGATGACTCTGGACGGCACCCGCTCGGTCGTCCTGCGGGCGCCGGGTGCGCCGTCGTGCGTGGTGGTGGACCCGGGCCCCGACGACGCCGCGCACCTGGACGCGCTGGCCGCAGCCGGGCCGGTGGACCTGGTGCTCGTCACCCACCGGCACGCCGACCACACGGCGGGCGCTCCACGGCTGCGCGAGCTCACCGGCGCCCCGGTCCGCGCCGCGGATCCGGAGCACTGCCACGGGGGCGACCCGCTGGCCGACGGCGCGGTGATCGAGGCCGCGGGACTGCGCATCGAGGTCCTGGCGACGCCCGGCCACACGGGCGACTCGGTGTCGTTCGTGGTCACCGGTCCCGGCGAGGAGCCGGTGGTCCTCACCGGGGACACGGTGCTCGGCCGCGGCACCACCGTCATCACCGAACCCGACGGGTCCCTGGGCGACTACCTCGCCAGCCTCGACGCGCTGGAGCGCGTGGGCGACGGCCGGCTCGGCGTCCCGGCCCACGGACCGGAGCTGCCCGATCTCGGCGAGGCCGTCCGCGCCTACCGGAGCCACCGCCTCGAACGGCTCGACCAGATCCGTGCCGCCCTGGCGACCCTCGGGCCGGACGCCGGCGTCGACGACGTCGTCGCCCACGTCTACGCCGACGTCGACCCGTCGGTCCGTGGCGCGGCCCGCCAGTCGGTGGCCGCCCAGCTCGCCTACCTGCACGGCGCCTGAMVRSLTPSISVLRADNPGPMTLDGTRSVVLRAPGAPSCVVVDPGPDDAAHLDALAAAGPVDLVLVTHRHADHTAGAPRLRELTGAPVRAADPEHCHGGDPLADGAVIEAAGLRIEVLATPGHTGDSVSFVVTGPGEEPVVLTGDTVLGRGTTVITEPDGSLGDYLASLDALERVGDGRLGVPAHGPELPDLGEAVRAYRSHRLERLDQIRAALATLGPDAGVDDVVAHVYADVDPSVRGAARQSVAAQLAYLHGANANANANANA
AK018_00490876fgd_3F420-dependent glucose-6-phosphate dehydrogenaseATGACCGTCCGCCTCGGCATCGCCCACGTCCCCACCCACGCCCCCGAGACGCTGCGAACCCTGGCCACCGCGGCCGAGGAGGCCGGGCTCGACGACCTGTGGGTCTGGGAGGACTGCTTCAAGCAGAGCGGGCTCGCCTCGGCGGCCACCGCGCTGGCCTGGACGGACCGGATCCGCGTCGGTCTCGGGCTGATGCCCGCCCCGCTGCGCAGCACGGCACTCACCGCGATGGAGATCGCCACGCTGGCCCGCATGTTCCCCGGACGGTTCGTGCCCGCCGTCGGGCACGGCGTGCAGTCGTGGATGGGGCAGTCGGGCGTCCGCGTCGACTCGCCGCTGACGCTGCTGCGCGAGCACCTCGGCGCCCTGCGGAGCCTGCTCGACGGCGAGGAGGTGACGACGTCGGGCCGGTACGTGCACCTCGACGCGGTGCGCCTGGACTGGCCGCCGAGCGACCCGCCACCGCTGTGGGTCGGCGGCGTCGGCCCACGGACGGTGGCGATGGCCGGGGAGCTCGGCGACGGTCTGATCCTGGCCAACGCCCTGACGCCCGACGACGTGCACGACGCCGTCACCACCGCCCGGGAAGCGGCTGCGGACGCCGGGCGTGAGCTGGCCGACGTGCACGCCAACCTCATCGTGGCGACGGGACCGCGGGCTCAGGAACGGCTGGCCGCGGAGCTGCCGCAGTGGGGCGCGGACCCGGAGCGTGGGATCGGGGCTGCCGGCGGGGCCGACGAGATCGCCGCGGGGGTGCAGGCCCTGGTCGACGCCGGAGCGACGGCCGTGGCGATCCAACCCACCGCCGACGAACCGGACCTCGCCGGGCTGGCGGCGTTCCTCGGCCGCGAGGTCAGGCCCCGGCTCGCCGGCTGAMTVRLGIAHVPTHAPETLRTLATAAEEAGLDDLWVWEDCFKQSGLASAATALAWTDRIRVGLGLMPAPLRSTALTAMEIATLARMFPGRFVPAVGHGVQSWMGQSGVRVDSPLTLLREHLGALRSLLDGEEVTTSGRYVHLDAVRLDWPPSDPPPLWVGGVGPRTVAMAGELGDGLILANALTPDDVHDAVTTAREAAADAGRELADVHANLIVATGPRAQERLAAELPQWGADPERGIGAAGGADEIAAGVQALVDAGATAVAIQPTADEPDLAGLAAFLGREVRPRLAGNANANANANA
AK018_00491510hypothetical proteinATGACCACCGGGGTCTGCTCCGGCACCGTCGAGGTCGTCGCGGTCGACTGGGACGACGTGGACGCCGTCGCCTTGCGTGCCGAGGCCGTGGCCGAGCTCGGCCGCCGCTACGGCGGTGACGACGACGCCCACGAGATCATCGACCCCGCCGCCGTCGTGGCGAGCTACCTCGTGCGGGTCGACGGCGTCGCCGCCGCCTGCGGCAGCGTCCGGGACGTCTCCGGCACGGACGACGGCCGCGGACGCGGGACGGACCACCCCGCCGCGACCGGTGAGCTCAAGCGGGTCTTCGTGCTGCCCGAGCACCGGGGGCGTGGTCTGGCCCGCACGCTGATGGCGGAGCTGGAGGGCGCGGCCCGCCGGGCCGGGTTCCGTCGGCTGGTGCTGGAGACCGGCACCGCCCAGCCCGAGGCCATCGCCCTGTACACCGCGCTCGGGTACGCCCCGATCGAGTCCTACGGCACGTACGCCGGCGAGGACGACCAGCGCTGCTACGGCAAGCGGCTCTGAMTTGVCSGTVEVVAVDWDDVDAVALRAEAVAELGRRYGGDDDAHEIIDPAAVVASYLVRVDGVAAACGSVRDVSGTDDGRGRGTDHPAATGELKRVFVLPEHRGRGLARTLMAELEGAARRAGFRRLVLETGTAQPEAIALYTALGYAPIESYGTYAGEDDQRCYGKRLPGPT0007180_758DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007180-iaaT|yedL|ysnE-K03829NANA
AK018_00492732purQ_1COG0047Phosphoribosylformylglycinamidine synthase subunit PurQATGAGCGCGGGGACCCTCGACACGACGCTGGCCGACGCACGCATCGGTGTCGTCACCTTCCCCGGCACGCTCGACGACCGGGACGCCGCCCGCGCCGTGCGTCTGGCCGGCGGCGAGCCGGTGTCGCTGTTCCACGCCGACGGGGACCTGCAGGGCGTCGACGCCGTCGTGCTGCCCGGCGGGTTCTCCTACGGCGACTACCTGCGCGCCGGGGCGATCAGCCGCTTCGCGCCCGCCATGGACGCGCTCGTGGACGCCGCGAAGGGCGGGATGCCGGTGCTCGGCATCTGCAACGGCTTCCAGGTCCTCACCGAGGCGCACCTGCTGCCCGGCTCGATGATCAAGAACGAGCACCTGCACTTCATCTGCCGCGAGCAGGTGCTGTCGGTGGAGAACGCCGGCACCGCCTGGACCAACCGGTACGAGCAGGGTCAGCACATCACGATCCCGCTGAAGAACCAGGACGGCCAGTTCGTCGCCGACGAGCACACCCTCGACGAGCTCGAGGGCGAGGGACGTGTCGCGTTCCGCTACGTGGGCTGGAACCCGAACGGGTCGCGTCGCGACATCGCCGGCATCACCAACGCGGCGGGGAACGTCGTGGGCCTCATGCCGCACCCCGAGCACGCCGTGGAGGCCGGCTTCGGTCCCGACGGCCCGGAGGGTCCGCGGTCGGGCACCGACGGGCTGGGTTTCTTCACCTCGGTGCTGGCCTCCCTCGTCCACTCATGAMSAGTLDTTLADARIGVVTFPGTLDDRDAARAVRLAGGEPVSLFHADGDLQGVDAVVLPGGFSYGDYLRAGAISRFAPAMDALVDAAKGGMPVLGICNGFQVLTEAHLLPGSMIKNEHLHFICREQVLSVENAGTAWTNRYEQGQHITIPLKNQDGQFVADEHTLDELEGEGRVAFRYVGWNPNGSRRDIAGITNAAGNVVGLMPHPEHAVEAGFGPDGPEGPRSGTDGLGFFTSVLASLVHSPGPT0020220_379DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020220-purQ-K23265NANA
AK018_00493273purS_1Phosphoribosylformylglycinamidine synthase subunit PurSGTGGGACGCGTCGTCGTCGAGGTCATGCCCAAGCCCGAGATCCTGGACCCCCAGGGCAAGGCCGTCGTCGGGGCGCTGCCGCGCCTCGGCTTCACCCAGTTCACCGGCGCCCGCCAGGGCAAGCGGTTCGAGCTCGAGGTCGACGGCGAGGTGACGGCCGAGATCCTGGCGGACGCCCGCAAGGCCGCCGAGACGCTGCTGTCGAACCCGGTCATCGAGGACGTCGTGCGCGTCGCGGACGCCTCGTCCGAGACCGCCGAGGTCCCGGCCTGAMGRVVVEVMPKPEILDPQGKAVVGALPRLGFTQFTGARQGKRFELEVDGEVTAEILADARKAAETLLSNPVIEDVVRVADASSETAEVPAPGPT0021725_210DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021725-purS-K23264NANA
AK018_00494777hypothetical proteinGTGACCACGCCACCGCAGGACCCCTCGAACGTCGCCGACCCGTTCTCCGCCCCCACGCCACCCGGCGGTGCCGGGCAGCAGCCGTCCGACGGTGCGGCTCCGCCCCCCGGGCCGCCCGCTGCGGGTCCGCAGCCCCCGTACGCAGCGCCGTCGGGCCCCCGGACCGACGGGGTGTCGATCGCCGCGCTGGTCACGGGGATCCTCGGTCTGGCGCTGATCCCGCTCGGTCTCGGCATCGCCGCACTGGTGCGGATCAAGAGGTCCGGCGCGGCGGGCAAGGGGCTGGCGATCGCCGGCATCGTCCTGGGCGCGCTGTCGACGGTGGGCTGGACGGTCCTGGTCGCGCTGTTCGCCGCCTTCGTCGGCACCGGTCTCCAGGAGGCCGTCGACGAGGGACTGACCGAGGGGTTCCAGGAGGTCACCGGCACGCACCTGGTCGTCGGCGACTGCTTCGAGCCACCGGCGGACCTCACGAGCGGCGACCCGCTGCAGGCCGTCGACTGCGGCGTCCCGCACACGGCCGAGGTCTTCGGCGTGGACGACGTCGCCGCCGACGCGTTCCCGGGGGTCGAGACCATGCAGGTCCAGGCCGAGGACTTCTGCCTGGACGCCTTCGGCGACTACGTCGGCGTCGACTACATGGACTCCGCGCTCCAGGTGATCTACTTCCACCCCTCGGAGCTCACGTGGTCCGTCGGTGATCGCCGGATCGTCTGCGGTGCCACAACCATGGACGGCAGCCCGCTGCACGACAGCGTGGCCGGGGCGGGGGTCTGAMTTPPQDPSNVADPFSAPTPPGGAGQQPSDGAAPPPGPPAAGPQPPYAAPSGPRTDGVSIAALVTGILGLALIPLGLGIAALVRIKRSGAAGKGLAIAGIVLGALSTVGWTVLVALFAAFVGTGLQEAVDEGLTEGFQEVTGTHLVVGDCFEPPADLTSGDPLQAVDCGVPHTAEVFGVDDVAADAFPGVETMQVQAEDFCLDAFGDYVGVDYMDSALQVIYFHPSELTWSVGDRRIVCGATTMDGSPLHDSVAGAGVNANANANANA
AK018_00495999purC_1COG0152Phosphoribosylaminoimidazole-succinocarboxamide synthaseGTGAGCGACGCACCCCAGACCACCACGCCCGACGACGCCGTGCCTGACGACGCCACGGATGCCTTCGCCAGCGGACCCCTGGACCTGCCCGGCTGGCGGCACGTCTACTCCGGCAAGGTCCGCGACCTGTACGCCCCCGACCTGCCGGCGCTCGGCGGCGTCCACCCGCTGGGCGACGTCGTGCTCGTCGTGGCCTCGGACCGGGTGTCCGCCTACGACCACGTGCTGACCCCGGGCATCCCCGACAAGGGCGTGGTGCTGACCCAGCTCAGCCTGTGGTGGTTCGACCAGCTCGCCGACCTCGTGGACAACCACGTGGTCTCGACCGAGGCGAGCGCGGAGCCCGGCGACGGGTTCGTGCCCGACGTCGTCGCGGGCCGGGCGATGATCTGCCGGCGCCTCGACATGTTTCCCGTCGAGTGCGTCGCCCGCGGCTACCTCACCGGCTCCGGGCTGGCCGAGTACCGCGCGTCCGGGGAGGTCACCGGCATCCCGCTGCCGGACGGGCTCGTGGACGGCTCGCGGCTGCCCGAGCCGATCTTCACCCCCGCCACGAAGGCGGAGGTCGGCGAGCACGACGAGAACGTCAGCCTCGCCGAGGTCGCCCGCCGGATCGGGGACGACGACGCTGGCCGGCTGCGCGAGCTCACGCTCGCCGTCTACGGCCGTGCCGAGGAGATCGCCCGCGAGCGCGGCGTCATCCTCGCGGACACCAAGCTGGAGTTCGGCCGGGTGCCCGACGGCGGACCGATCGTCCTCGGCGACGAGGTGCTCACGCCGGACTCCTCGCGGTTCTGGCCCGCCGACGACTGGGAGCCGGGCCGCGCCCAGCCCAGCTTCGACAAGCAGTTCGTCCGCGACTGGCTGACCTCGGACGCCTCCGGTTGGGACCGCGCGAGCGACGCCCCGCCGCCCGCGCTGCCGGACGACGTCGTCCGCCGCACGCGGGACCGCTACCTCGAGGCGTACGAGCGGATCACGGGCTCGCCGCTGCGTTGAMSDAPQTTTPDDAVPDDATDAFASGPLDLPGWRHVYSGKVRDLYAPDLPALGGVHPLGDVVLVVASDRVSAYDHVLTPGIPDKGVVLTQLSLWWFDQLADLVDNHVVSTEASAEPGDGFVPDVVAGRAMICRRLDMFPVECVARGYLTGSGLAEYRASGEVTGIPLPDGLVDGSRLPEPIFTPATKAEVGEHDENVSLAEVARRIGDDDAGRLRELTLAVYGRAEEIARERGVILADTKLEFGRVPDGGPIVLGDEVLTPDSSRFWPADDWEPGRAQPSFDKQFVRDWLTSDASGWDRASDAPPPALPDDVVRRTRDRYLEAYERITGSPLRPGPT0021565_602DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021565-purC-K01923NANA
AK018_004961302purD_1COG0151Phosphoribosylamine--glycine ligaseGTGCCCGTGAAGATCCTCGTCGTCGGGAACGGTGCTCGCGAGCACGCCATCGTCCACGCCCTCGCCGCGGAGTCCGCCGCCGGGGGTGAGCCGCACGACCTGCACGCCGCACCGGGGAACCCGGGGATGGCCCGGCAGGCCACGCTGCACGCGGTCGACGCGCTCGACGGCGAGGCGGTCGCCGCGCTGGCGACCGCTCTCGGCGCCGACCTGGTCGTCGTCGGCCCCGAGGCCCCGCTCGTGGCCGGGGTGGCCGACGTCGTGCGCGGCGCCGGGATCCCCGTCTTCGGCCCGTCCGGCGAGGCCGCCCGGCTCGAGGGGTCGAAGTCGTTCGCCAAGGAGGTCATGGCGGCCGCGAACGTCCCCACCGCCATGGCGCACGTGTGCACCTCGACCGACGAGGTCGCCGCGGCGCTGGACGCGTTCGGCCCTCCCTACGTCGTCAAGGACGACGGCCTGGCGGCCGGCAAGGGCGTCGTCGTCACCTCCGACCGGGACGAGGCGATGGCGCACGCCGGGGCCGCGCTCGCGGGGCGCGGTGCCGAGGGACGCGTCGTCGTCGAGGAGTACCTGGACGGACCCGAGGTCTCGGTCTTCTGCGTGTGCGACGGCACCTCCGTGGTGCCGATGGTCCCCGCGCAGGACTTCAAGCGGGTCTTCGACGGCGGCGAGGGCCCGAACACCGGCGGCATGGGGGCCTACACCCCGCTGGACTGGGCGCCGTCCGGGCTCGTCGGCGAGGTCGTCGACCGGATCGCGCAGCCGACGGTCGACGAGATGGCCCACCGTGGGACGCCCTTCGTCGGCGTGCTCTACGTGGGGCTGGCGCTGACCTCGCGCGGCACCCGGGTCGTGGAGTTCAACGCCCGGTTCGGCGACCCCGAGATCCAGGCCGTGCTGACCCGCCTGGTGACCCCCCTGTCATCCGTCCTGCTGGCCGCCGCCCGCGGCGAGCTCGAGCAGCACGAGCCGCTGCACTGGTCGCCGGACGCCGTGGTCAACGTCGTCGTCGCGGCGACGGGGTACCCGGCAGATCCGCGCAAGGGCGACGCGATCACGGGGATCGAGGCGGCCGAGGCCCTCGAGGGCGTGCACGTCCTGCACGCCGGGACCGCGACGACCGACGACGGCACGCTGGTCTCCGCCGGCGGCCGGGTGCTGTCGGTGGTCGGGCGGGGCGCCGACCTCACCACCGCGCGGTCTGCCGCCTACGCCGGTGTCGCGGAGATCGGTCTGGCCGACTCCCACCACCGCACCGACATCGCGCTGGCCGCCGAGCGGGGCGAGGTCGCGGTGCCCTGAMPVKILVVGNGAREHAIVHALAAESAAGGEPHDLHAAPGNPGMARQATLHAVDALDGEAVAALATALGADLVVVGPEAPLVAGVADVVRGAGIPVFGPSGEAARLEGSKSFAKEVMAAANVPTAMAHVCTSTDEVAAALDAFGPPYVVKDDGLAAGKGVVVTSDRDEAMAHAGAALAGRGAEGRVVVEEYLDGPEVSVFCVCDGTSVVPMVPAQDFKRVFDGGEGPNTGGMGAYTPLDWAPSGLVGEVVDRIAQPTVDEMAHRGTPFVGVLYVGLALTSRGTRVVEFNARFGDPEIQAVLTRLVTPLSSVLLAAARGELEQHEPLHWSPDAVVNVVVAATGYPADPRKGDAITGIEAAEALEGVHVLHAGTATTDDGTLVSAGGRVLSVVGRGADLTTARSAAYAGVAEIGLADSHHRTDIALAAERGEVAVPPGPT0021575_976DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021575-purD-K01945NANA
AK018_00497984hypothetical proteinGTGCCACGACCCCCGGCGGCACTCCCGCCGTCCCTGATCGCCCTCGCCCGCCGCCAGGCAGGTCTGGTGTCTCTGCGGCAGTGCGTCGCCCGCGGCGTGCCCGCCGACCGGGTCACGCGGGCCGCCCGGAGCGGACGCCTCCCCCGCGTCGCCCGCGGCGTCTACGACGTCGGCGCCGGGCTCCCGCCGTCGCGCGCCGACCCGCAGGACGTGCATCGTCGTCGGGCCGCCGTCCTGGGCGTGCTCGCCCACCCCGGCGCCGTGGCGACGGGTGTGTGCGCCCTCGTGCTGCGCGGGGTGCAGGGCGCCCCGACGGTGGTGCGGCCCGAGGTGGCGTTCCCCGACGGGTCCGCGCGGGAGGCGGTGACGCCGGTGCGCGTCCGTCGGGTCCCGGTGCGTCGCTGGGAGGTGGTGGGCGGGCTGCGGTGCGCCGCGGTCGCCGACGCGCTGGCGCAGGCCGTGCCCGAGCTCGACCGGCGCCATGCCGTGGCCCTCATGGACTCCGCCCTGCAGCAGGGGCTGCTGACCGGGGCAGAGCTCGCCGCGGCCCACGACGACGCCCGCGGTCGCCCCGGCGTCGAGCGGACGCACCGGTGGTGGGGTGAGGCCGACGGACGGGCCGAGTCGCCCGCCGAGACCTGGGCACGGCTGTCGTGCCTCCGCGCCGGGGTCCCGCCGGACGCGCTCCAGCAGGTCGTGGTGAGCGCGGACGGCGGCTTCCTGGCGCGGGTCGACCTCGCCTGGTCGCTCCCGGACGGGCGGGTGCTGCTGGTCGAGATCGACGGCGCCGACGCTCACTCGTCCCCGCGGGCCGTCTACCGCGACCGAGTGCGCCAGAACGACCTCGTCACCGCACGTTCCCTGGTCCGGCGCTACACCGGGACCGACGCCTGGCGCGGCGCCGTCGGACCCGCGGTGCGTCGGCTGCTGGAACCGACCGGGTGGCGGCCCGGACGGCCCGCGCCGCGCACCGTGACGGTCTGAMPRPPAALPPSLIALARRQAGLVSLRQCVARGVPADRVTRAARSGRLPRVARGVYDVGAGLPPSRADPQDVHRRRAAVLGVLAHPGAVATGVCALVLRGVQGAPTVVRPEVAFPDGSAREAVTPVRVRRVPVRRWEVVGGLRCAAVADALAQAVPELDRRHAVALMDSALQQGLLTGAELAAAHDDARGRPGVERTHRWWGEADGRAESPAETWARLSCLRAGVPPDALQQVVVSADGGFLARVDLAWSLPDGRVLLVEIDGADAHSSPRAVYRDRVRQNDLVTARSLVRRYTGTDAWRGAVGPAVRRLLEPTGWRPGRPAPRTVTVNANANANANA
AK018_004981296purA_1COG0104Adenylosuccinate synthetaseATGCCAGCCGTGGTGCTCGTCGGCGCCCAGTGGGGCGATGAGGGCAAGGGGAAGGCGACGGACCTCCTCGGTGACCGCGTCGACTACGTGGTCAAGTTCAACGGGGGCAACAACGCCGGGCACACGGTGGTGATCGGCGACGAGAAGTACGCGCTGCACCTGCTGCCCTCCGGCATCCTGTCCCCGGGTGTCACGCCGGTCATCGCCAACGGCGTCGTGGTGGACATCGACGTGCTCTTCGAGGAGCTCGACGCGCTGGAGGCCCGCGGTGTGGACACGTCGAAGCTGATGGTGTCCTCCGGCGCGCACGTCATCGCCTCGTACCACCGCACGGTGGACAAGGTCACGGAGCGGTTCCTCGGCAAGCGGCGTATCGGGACGACCGGGCGGGGGATCGGGCCGGCGTACGCCGACAAGATCAACCGCGTCGGGATCCGCGTCGCCGACCTGTTCGACCCGAAGATCCTGCGGGAGAAGGTCGAGGGCGCGCTCGACCAGAAGAACCACCTGCTGGTCAAGGTCTACAACCGCCGCGCCGTCGAGGTCGACGAGGTCGTCGACGAGCTGCTCGGCCACGCCGAGCGCCTCAAGCCCATGGTCGCGGACACCGGCCTGGCGCTGAACCAGGCCCTGGACGCCGGTCACAACGTCCTGTTCGAGGGCGGCCAGGCGACCATGCTCGACGTCGACCACGGCACCTATCCCTTCGTGACGTCGTCGAACGCCACCGCGGGCGGTGCGGTGACCGGGTCCGGCGTCGGGCCGACGCGCATCGACTCGATCATCGGCGTCATCAAGGCCTACACCACGCGTGTCGGCGAGGGCCCGTTCCCCACCGAGCTGTTCGACGCCGACGGCGAGTACCTGCTCAAGACCGGCGGCGAGTACGGCGTGACCACCGGCCGCGCGCGGCGCTGCGGCTGGTACGACGCCGTGATCGCCCGGTACTCCGCGCGCGTCAACGGCCTGACCGACCTGGTGGTGACCAAGCTCGACGTGCTCACCGGCATGGAGAAGGTCCCGGTCTGCGTGGCCTACGACGTCGACGGCGTCCGCTACGACGAGATGCCCGACGACCAGTCGGCGTTCCACCATGCGAAGCCGATCTACGAGGAGCTGCCCGGCTGGTGGGAGGACATCTCGCAGTGCCGGTCGTTCGACGAGCTCCCGGCCAACGCCCAGGCCTACGTCCGGGCCCTGGAGGAGATGTCCGGCTGCCGCATCTCGGCGGTCGGTGTCGGCCCGCGCCGCGACGAGATCATCCCGATCCACGACCTCATCCACGCCCGGGCGTGAMPAVVLVGAQWGDEGKGKATDLLGDRVDYVVKFNGGNNAGHTVVIGDEKYALHLLPSGILSPGVTPVIANGVVVDIDVLFEELDALEARGVDTSKLMVSSGAHVIASYHRTVDKVTERFLGKRRIGTTGRGIGPAYADKINRVGIRVADLFDPKILREKVEGALDQKNHLLVKVYNRRAVEVDEVVDELLGHAERLKPMVADTGLALNQALDAGHNVLFEGGQATMLDVDHGTYPFVTSSNATAGGAVTGSGVGPTRIDSIIGVIKAYTTRVGEGPFPTELFDADGEYLLKTGGEYGVTTGRARRCGWYDAVIARYSARVNGLTDLVVTKLDVLTGMEKVPVCVAYDVDGVRYDEMPDDQSAFHHAKPIYEELPGWWEDISQCRSFDELPANAQAYVRALEEMSGCRISAVGVGPRRDEIIPIHDLIHARAPGPT0020140_2375DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020140-purA-K01939NANA
AK018_00499378hypothetical proteinATGATCGAGATCGCGACGTCCTCGACGACGACGACGCTCGTGGTCGCCGGCGACCTCGACCTCGCCGAGCGGGACCAGTTCCCCGAGATCGCGGCGCGCGTCGTCGGGCTCCGCCGTCAGCTGCTCGTCATCGACATGTGCCGCGTGACCTTCATGGACTCCACCGGCGCGGCGTTCCTCATCTCCCTCGCCGACTCGGGCCGCAAGCGCGGCGGGGCGACCGTGCTGCGCGGGGCGGACGACCGCGACCTGTTCGTGCTCGAGGTGTGCGGCGCTCTCGACCTGTTCCGGATCGACACCGACCACCAGTGCGAGCAGTCCGACCCGACGACCGGGGCGACGCCCGTCCAGCTGCCGCAGCGGCCCCGACCCGCCTGAMIEIATSSTTTTLVVAGDLDLAERDQFPEIAARVVGLRRQLLVIDMCRVTFMDSTGAAFLISLADSGRKRGGATVLRGADDRDLFVLEVCGALDLFRIDTDHQCEQSDPTTGATPVQLPQRPRPAPGPT0014350_1918DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
AK018_00500429hypothetical proteinATGAGCCACAACCTGCTGTCCGGACCCGACCCGACCCGCCTGCCCGACGACCACGCCGTGGCGCGCGAGGGCCTCGAGACCGGCGAGGACCCGGCCGCCCTGGCGGCCGCCCACCCCTCGGCGAGCATCACGTGGGCCGTGCTCGCCGAGCAGACCCTCGACGGCGGCGAGGACGTCACGCACTCCGTGACGGCGTACGCCTACGCGCGCACCGGGTACCACCGCGGGCTGGACGCGCTGCGTCGCGCCGGCTGGCGGGGCCAGGGGCCGGTCCCGGCCGACCACGTCCCGAACCAGGGCTTCCTGCGGGCCCTCCTGGCGCTGTCGGAGGCGGCCGCCCGCATCGGCGAGACCGACGAGGCGGAACGGTGCGCCCAGTTCCTCGCGGACTCCGGCGTCCCCGTCGACGAGGTCCGCGCGCTGCGCTGAMSHNLLSGPDPTRLPDDHAVAREGLETGEDPAALAAAHPSASITWAVLAEQTLDGGEDVTHSVTAYAYARTGYHRGLDALRRAGWRGQGPVPADHVPNQGFLRALLALSEAAARIGETDEAERCAQFLADSGVPVDEVRALRNANANANANA
AK018_005012202hypothetical proteinATGGGTCGAATGCCTGGTTCGTCCACCGGCATCCTGCCGGTTTCTGGAGCCCAGCTCGCCTCGGCCCTGTCCGTCACGACCATGCCCGCGTTCATCACGGGCTCGTGGTCCACCGGCATGCCGGTGCTCTGGGTCAACCAGGCGTTCGAGGAGCTCGGCGGCGTGGGCATCGACGAGCTGGCGCTCCTCGGGCCGCACTCGCTGCTCGCCCTCGTGCAGGACGACCCGAACCGGGCCGCCGCCCAGGCCGACCTCAAGGCGGGGCGGGCGATGCGGCGGATCGTCAGCGCCCGCCGTCAGGACGGCGGCACGACCTGGCTGCAGGTCGACGTCACCCCGCTGCCGAACGGCGACGACCTCCCGGAGTACTGGGTCGGCGTCACCACGGACGTCTCGGAGTACGTCGACCAGCAGGCCGAGCAGCTCGCCTCCCTGGAGGTCGAGCGCCGCCAGCGCGCCGACCTCGACCTCATCGCCCAGACCACGGAGCTGCTCGGGGACCTGGAGTACCCCTTCGCCCTGCGCGACATCGCCGACCTGCTCCGCTCCCTGGTGCCGTGGTCCGGGTTCTACCTCAACGACGACGGTCTGCTGTTCGCCGAGGGGGTCGACGTCGCCTCGCCGCCCTCCGGCCGCGGCCGACGGCACACGCGCTACGTGCCCGAGGACCGGCCGCTCGACCGGCTCGAGCCGGTCCCGTCCGAAGCCGACGGCGGGGCACCGGCGCCGAACCCGGTCGTCGACGACGTGCAGGACCTGCTCGACGGCGTCGTCGACGGACCCGTGCGGCTGAGCCTCGAGGGTCGGTTCGACCCGACGTCGGCCTCGGGCTGGCTGCGACGGGACCTGATGCACCGCGTGGTCGAGGAGACGGGGGCGGTCCCGCACGCCGTCGTCGTGCACGCCGTGGCCGGCCGGCGCCGGGTGCTCGGGCTCCTGGTGACCTGGCACGGCGGTGCCGAGGCCGACGTCCACCCCGGGCGCCCCGAGCCGGACCACGTGTCCACCGTCGTCGAGGTGGTGGCGCGTCGAGCCGGCACCGCGGTCGACAACGCCCGGCTGTACGCCCGCGAGCACCGGCTGGCCGAGGCGCTGCAGCGCGCGATGCTGCCCGAGCAGGCCGACGTCACCGGGCTGGACGTGTGGACCTACTACGCCCCGAACGCCGAGCACGCGCAGGTCGGCGGCGACTGGTACGACGTGCTGCAGATCGCCGACGGCACCGTGGGGCTCGTGATCGGCGACGTGGTCGGGCACGACGTCGAGGCCGCGGCCGCGATGGGCCAGCTCCGCTCCGTGGTGCGTGCCTACGCCTACGAGCTGACGACACCCGGGACGGTGCTGGACCGGGTCGACCAGCTCGTGGCGGGGATGCGGGTGCCGCGTCCGGCGTCGATGGTCTACGCCGCGCTGGAGCACCTCACCGAGGACGACACGTGGGCGCTGGAGTACACCCGTGCCGGCCACCTGCCGCCGCTGCTGCTCCGCGACGGCACCACCCAGCTGCTCTCCGAGGCCGGCGGCATGCTCGTGGGCTTCGGCAACGAGACACGGGCCACCGGCCGCGAGGTGCTGCGGCGCGGCGACGTGCTGATCTTCTACACCGACGGGCTCATCGAGCGGCGCGACCGGTCGCTCAAGCGTGGTCTGGAGACCCTCACCGAGATGTCGGGGCGCATCACCGCGCGGGACGCCGCCGGAGTGGGGGAGGAGCTGCTGTCACGGCTGGCCGACTCGCCCGAGGACGACGTCGCCATCGTCGTCGTGCGCGTCCCCGACCCGGAGGCGGACCGCCGGGTCACCGCGCTGAGCCCCCGCTCGCGGCGCTGGCTGCTGCCGAGCGAGCCGGGCTCCATCGGCCGGGCACGGCACGCGGTGCTGCGCACCTCGCAGGCGTGGGGGCTGCCGGACTCCGCGGCCGCCGAGCTCGTCGTGAGCGAGCTCGTGGCCAACGGGGTGCTGCACGGCTGGGGCAACATCGCGCTGCGGCTGTTCGACACCGGGGACGGGCTGCGCATCGAGGTCGAGGACTCCAACCCGGCACCGCCGGTGGCCACCGACGGGCACCCGAACCGGCTCGGCGGTTTCGGGATGCAGATCGTCGAGCGGCTCGCCGACTGGGGCTGGCGGCCCAGCACGTCCGGCAAGCTCGTGTGGGCCAAGCTGCGGCCCGACCTGACCGGTGGTGCGGGGCAGGAGTAGMGRMPGSSTGILPVSGAQLASALSVTTMPAFITGSWSTGMPVLWVNQAFEELGGVGIDELALLGPHSLLALVQDDPNRAAAQADLKAGRAMRRIVSARRQDGGTTWLQVDVTPLPNGDDLPEYWVGVTTDVSEYVDQQAEQLASLEVERRQRADLDLIAQTTELLGDLEYPFALRDIADLLRSLVPWSGFYLNDDGLLFAEGVDVASPPSGRGRRHTRYVPEDRPLDRLEPVPSEADGGAPAPNPVVDDVQDLLDGVVDGPVRLSLEGRFDPTSASGWLRRDLMHRVVEETGAVPHAVVVHAVAGRRRVLGLLVTWHGGAEADVHPGRPEPDHVSTVVEVVARRAGTAVDNARLYAREHRLAEALQRAMLPEQADVTGLDVWTYYAPNAEHAQVGGDWYDVLQIADGTVGLVIGDVVGHDVEAAAAMGQLRSVVRAYAYELTTPGTVLDRVDQLVAGMRVPRPASMVYAALEHLTEDDTWALEYTRAGHLPPLLLRDGTTQLLSEAGGMLVGFGNETRATGREVLRRGDVLIFYTDGLIERRDRSLKRGLETLTEMSGRITARDAAGVGEELLSRLADSPEDDVAIVVVRVPDPEADRRVTALSPRSRRWLLPSEPGSIGRARHAVLRTSQAWGLPDSAAAELVVSELVANGVLHGWGNIALRLFDTGDGLRIEVEDSNPAPPVATDGHPNRLGGFGMQIVERLADWGWRPSTSGKLVWAKLRPDLTGGAGQENANANANANA
AK018_00502420hypothetical proteinGTGCAGGACGCATCCAACGCGGCGTCGCACTCCGCCGATGGTGGGGACGCCGACGAGAACACGGCGCCCCAGATCGGCGACCCTGCGAGCATCCACGTCATCGTGGGCACCTCGCGGGCGCGCGTCGTCCTCTCGGGCGAGATCGACGCCGAGGTCAGCTCCGAGCTGGGCGACGCCATCTCCGACGCCGAGGCCTCCGGGCTGCCCGTCGAGATCGACGCCCACCACGTGACGTTCATGGACTCCTCCGGCGTCGCCTTCCTGGCGCGGCTCGCCTCGCGCAGCCCGCACACCGTCCGCATCCTGCGCGCGCCCCCGACGGTGCGTTTCCTGCTCGAGGTCACCCGGATCGGCGAGCTCCTCGAGATCGTCGACGACGACCCGGGCGTCGACCTCGACATCACCTCGGCCCAGCGCTGAMQDASNAASHSADGGDADENTAPQIGDPASIHVIVGTSRARVVLSGEIDAEVSSELGDAISDAEASGLPVEIDAHHVTFMDSSGVAFLARLASRSPHTVRILRAPPTVRFLLEVTRIGELLEIVDDDPGVDLDITSAQRPGPT0014350_218DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
AK018_005031020fba_1Fructose-bisphosphate aldolaseATGCCTATCGCAACCCCCGAGGTCTACGCCGAGATGATCGACCGGGCGAAGGCCGGCAAGTTCGCCTACCCCGCCGTCAACATCACGTCCTCGCAGACCGTCACCGCCGCCCTGCAGGGCTTCGCCGAGGCGGAGTCGGACGGCATCATCCAGGTCTCCGTGGGCGGCAGCGAGTACGCCTCGGGCGCGACGATCAAGGACCGCGTCGCCGGCTCCCTGGCTCTGGCCGCGTACGCCACCGAGGTCGCCAAGAACTACTCCGTCAACATCGCGATCCACACCGACCACTGCGTCAAGAAGAACCTGGACTCCTGGGTCCGCCCGCTGCTGGCGCTCGAGGCCGAGCAGGTCAAGGCCGGCAAGAACCCGACCTTCCAGTCGCACATGTTCGACGGCTCGGACATCCCGCTGGAGGAGAACCTCGTCATCGCCGAGGAGCTGCTCGAGCTCTCGCAGGCCGCGCGCACCCTCCTCGAGGTCGAGATCGGCGTCGTCGGTGGCGAGGAGGACGGCCACGTCGCGGAGATCAACGAGAAGCTGTACACGACCCCCGAGGACGGTCTGAAGACCGTCAAGGCGCTCGGCGCCGGTGAGAAGGGCCGCTACCTGACGGCGCTCACCTTCGGCAACGTGCACGGCGTCTACAAGCCCGGTGCGGTCAAGCTGCGCCCGGCGATCCTCGGCGAGATCCAGAAGGCCGTCGGGGACGAGATCGGCAAGGAGAACCCGTTCGACCTCGTGTTCCACGGCGGTTCGGGCTCGACCGCCGAGGAGGTCGCCGAGGCCGTCGACAACGGCGTCATCAAGATGAACATCGACACCGACACCCAGTACGCCTTCACGCGTCCGGTCGTCGACCACATGTTCACCAACTACGACGGCGTGCTGAAGATCGACGGCGAGGTCGGCAACAAGAAGGCCTACGACCCGCGCGCCTGGGGCAAGAAGGCCGAGGCCGGCATGGCGGACCGCATCGTCGAGGCCTGCCAGTGGCTGCGCTCGGCCGGCCACAAGATGTGAMPIATPEVYAEMIDRAKAGKFAYPAVNITSSQTVTAALQGFAEAESDGIIQVSVGGSEYASGATIKDRVAGSLALAAYATEVAKNYSVNIAIHTDHCVKKNLDSWVRPLLALEAEQVKAGKNPTFQSHMFDGSDIPLEENLVIAEELLELSQAARTLLEVEIGVVGGEEDGHVAEINEKLYTTPEDGLKTVKALGAGEKGRYLTALTFGNVHGVYKPGAVKLRPAILGEIQKAVGDEIGKENPFDLVFHGGSGSTAEEVAEAVDNGVIKMNIDTDTQYAFTRPVVDHMFTNYDGVLKIDGEVGNKKAYDPRAWGKKAEAGMADRIVEACQWLRSAGHKMPGPT0017615_2960DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017615-fbaA|cbbA-K01624NANA
AK018_00504639trmH_1tRNA (guanosine(18)-2'-O)-methyltransferaseATGAGTGACGAGCCGGTCGGTGTCGGCCCCTGGCCCGGCGGCCCGGAGGCCTGGCCGCGCGCGGCCGACGGCGGTCTCGACCCGCGCTACGACCCCGAGCTGCTGGAGCACGGGGACCGGCGCAACGTCGCCGACCCGTACCGCTACCTGACCGTGGAGGCGATCGTCGCCGACATGGATCACCGTCGCGACGCCGACGCCTTTCTGCACGTGGCGATCGAGAACTGGGCGCACGACCTGAACATCGGGTCGGTGGTGCGCACGGCCAACGCCTTCAACGCGGCAGGCGTGCACATCGTGGGCCGACGGCGGTGGAACCGCCGGGGCGCGATGGTCACCGACCGCTACCTGCACGTCCACCACCACCCGGACGTCGAGACGCTGGTCGCCTGGGCCGCGGACGAGGGCCTGCCGATCGTCGGTGTCGACAACGTGCCCGGGTCGGTGCCGCTGGAGCACCGTGCCCTGCCGGCGCGGTGCGTGCTGCTCCTCGGCCAGGAGTCCAGCGGGCTGACCCCGGAGGCGCAGGCCGCGTGCGACGTCGTCGTCCACATCACCCAGCACGGGTCGACGCGCTCGCTCAACGCCGGCGCGGCGGCCGCCGTCGCCATGCACTCCTGGGCCCTGCAGCACCTGTGAMSDEPVGVGPWPGGPEAWPRAADGGLDPRYDPELLEHGDRRNVADPYRYLTVEAIVADMDHRRDADAFLHVAIENWAHDLNIGSVVRTANAFNAAGVHIVGRRRWNRRGAMVTDRYLHVHHHPDVETLVAWAADEGLPIVGVDNVPGSVPLEHRALPARCVLLLGQESSGLTPEAQAACDVVVHITQHGSTRSLNAGAAAAVAMHSWALQHLNANANANANA
AK018_00505972hypothetical proteinGTGACCGACGAGTCCTCCGAGCCCCCCACGCACACCGGCGCCGTCCGCCGGCACGCCGCGGTCCCGACCGGTACGTCCTGGCGCTCCGCCCCCGGGCTGGCCGTCCGCGGCGGGCTGGTCGGCATGGCCGAGTCCGTCCCGGGGATCTCCGGCGGGACCATCGCCCTGATCACCGGTCTGTACGACCGGCTCCTGGCCGCGGCGAGCCAGGTCGTGCACGCCGGTCGCGAGCTGGTCCAGGGGGTGGCGCAGGGGCACGGGCTGCGACCGGCCGGACGGGCGCTGCGGGCCGTCGACTGGCGGTTCCTCGCCCCCGTCGTGGGCGGCATGGTGGTGGTGCTGTTCGCCTCGTTGAGCACGATCGCGCCGCTGCTGGAGGAGCACCCGGTCCCGGTGCGGTCGGTGTTCTTCGGCATGATCGCCGTCTCGGTCCTGGTCCCGCTGAGCATGATGCCGCACCGGTTCCGCGGGCTGGACGCGGTGCTCCTGGTCGCGGCGGCCGTGGCGGGCTTCTTCCTCGTCGGCCTGCCGCCGTCGGAGGTCTCCGACCCCTCCCTCTGGTACGTGGCCCTCGCCGCGGCGATCGCGATCAACGCCCTCGTGCTGCCGGGGGTGTCGGGGTCGACCCTGCTGGTGATCATGGGGCTGTACATCCCGGTCCAGCAGGCGATCGAGGACCGCGACCTGGCGTTCGTCGGTGCCTTCGCCGTCGGAGCGGCCGTCGGTCTGGCCTCGTTCGTCAAGTTGCTGCACTGGCTGCTCGGGCACCGGCGGCAGGGCACGATGGCGGTGCTGGCGGGGCTGATGGTCGGCTCGCTGCGGGCACTGTGGCCCTGGCAGGACGCCGACGGCGGGCTGCTCGCCCCGGCGGGCGCGGGCGCCGTCGTCGGCCCGCTGCTGCTCGCCGTGGCGGGCGCCGCGCTCGTGGGCGCCGTCTTGTGGTGGGAGAGCTCGCGGGTCGTCGATGAGTGAMTDESSEPPTHTGAVRRHAAVPTGTSWRSAPGLAVRGGLVGMAESVPGISGGTIALITGLYDRLLAAASQVVHAGRELVQGVAQGHGLRPAGRALRAVDWRFLAPVVGGMVVVLFASLSTIAPLLEEHPVPVRSVFFGMIAVSVLVPLSMMPHRFRGLDAVLLVAAAVAGFFLVGLPPSEVSDPSLWYVALAAAIAINALVLPGVSGSTLLVIMGLYIPVQQAIEDRDLAFVGAFAVGAAVGLASFVKLLHWLLGHRRQGTMAVLAGLMVGSLRALWPWQDADGGLLAPAGAGAVVGPLLLAVAGAALVGAVLWWESSRVVDENANANANANA
AK018_00506777hdpA_1Dihydroxyacetone phosphataseATGACCGAGCGGACCATCGAGTGCTGGCTGACCGACATGGACGGCGTGCTCGTGCACGAGGGGCAGGCCATCGACGGCGCGGCGGAGTTCGTCGACGCCCTGCGCGCGAAGGACCGCCCCTTCCTGGTGCTGACCAACAACTCGATCTTCACGGCGCGCGACCTGGCCGCGCGCCTCGCGCACTCGGGCGTCGACGTGCCCGAGGAGTCGATCTGGACCTCCGCGCTCGCCACCGCCACGTTCCTGGCCGAGCAGGTGCCGGGCGGGTCGGCGTACGTGATCGGCGAGGCGGGGCTGACGACAGCCATGCACGAGGCGGGGTACACCCTCACCGAGTCCGAACCGGACTACGTGGTCCTCGGCGAGACGCGCACCTACTCCTTCGAGGCGATCACCAAGGCCGTCCGGCTGATCAAGGACGGGGCGCGCTTCATCGCGACGAACCCGGACACCACCGGCCCCTCGGCCGAAGGGCCGCTGCCGGCCACCGGCTCCGTCGCGGCGATGATCACCGCCGCGACCGGGCGCTCCCCGTACTACGTGGGCAAGCCGAACCCGATGATGTTCCGCTCGGCCCTGAACCGGATCGTCGCGCACTCGGAGACCACGGCGATGATCGGCGACCGGATGGACACCGACATCGTCGCCGGCATCGAGGCGGGTCTGGAGACGTTCCTGGTGCTGAGCGGCTCCACGACGCCGGACGAGGTCGACCACCACCCGTTCCGCCCGTCGCACGTCGTCGACTCGATCGCGGACCTCGTCGACCGCGTCTGAMTERTIECWLTDMDGVLVHEGQAIDGAAEFVDALRAKDRPFLVLTNNSIFTARDLAARLAHSGVDVPEESIWTSALATATFLAEQVPGGSAYVIGEAGLTTAMHEAGYTLTESEPDYVVLGETRTYSFEAITKAVRLIKDGARFIATNPDTTGPSAEGPLPATGSVAAMITAATGRSPYYVGKPNPMMFRSALNRIVAHSETTAMIGDRMDTDIVAGIEAGLETFLVLSGSTTPDEVDHHPFRPSHVVDSIADLVDRVPGPT0021435_568DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021435-nagD-K02566NANA
AK018_00507579pyrE_1COG0461Orotate phosphoribosyltransferaseGTGACTTCCGCCGACTTCTCCCCGACCCCTCGCGAGCAGCTGCTCGAGCTCGTCAAGGAGCTCGCCGTCGTGCACGGCAGGGTGACGCTCTCCTCCGGCAAGGAGGCCGACTACTACGTCGACCTGCGCCGCATCACGCTGCACCACCGCGCCGCGCCGCTGGTCGGGCACGTGCTGCTGGACCACCTGGAGGAGGTCGGGCTCGGCACGGCCGAGGTCGACGCCGTCGGCGGGCTCACGCTCGGCGCGGACCCCATCGCCGACGCCCTGCTGCACGCCGCGGCGTCCCGCGGGCAGGACCTGGACGCCTTCGTGGTGCGCAAGTCCGCCAAGACGCACGGGATGCAGCGCCAGATCGAGGGGCCGGACGTCACCGGTCGCCGGGTCGTCGTGCTGGAGGACACCACCACGACCGGCGGGTCGCCGATCACCGCCATCGAGGCGCTGCGCGAGGCCGGCGCCGAGGTGCTCGGCTGCGCGACGATCGTCGACCGGGCGACCGGCGCGGGCGAGAAGATCGAGGCGCTCGGCGTGCCGTACCACTACCTCTTCGACCTGGACGACCTCGGCCTCGCCTGAMTSADFSPTPREQLLELVKELAVVHGRVTLSSGKEADYYVDLRRITLHHRAAPLVGHVLLDHLEEVGLGTAEVDAVGGLTLGADPIADALLHAAASRGQDLDAFVVRKSAKTHGMQRQIEGPDVTGRRVVVLEDTTTTGGSPITAIEALREAGAEVLGCATIVDRATGAGEKIEALGVPYHYLFDLDDLGLAPGPT0021200_3942DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021200-pyrE-K00762NANA
AK018_00508774hypothetical proteinATGGGTACTGCGCTCGTCACCGGCGCCACCGCCGGTCTGGGACTGGAGCTCGCCTGGCAGCTCGCCACCGCTCGTCACGACCTCGTGCTCGTGGCCCGGGACGGCGACCGGCTCGACCAGGTCGCCGGACAGGTCCGCGCCGCCGCCGGCGTCCGCGTCGAGGTGATCGCCGCCGACCTGTCGCGGCACGAGGACGTCGCGCGCGTCGCCGAACGGCTGTCCGTGACCGGCGCCGAGGACGGCGACGACCGTCGCCCGGTCGGGCTGCTCGTCAACAACGCCGGTTTCGCCCCGGCCCAGCACTTCGTCGGCGGGGACCTGGAGGTCGAGACCGCCGCCGTCGACGTCATGGTGCGCGCTGTCATGGTGCTCTCGCACGCCGCCGCGGAGCAGATGGTCTCCCGCGGTCGCGGTGCCGTGCTCAACGTCGCCTCCGTGGCGGCGCTGACCGCCGGGGGCAGCTACGCGGCCGCCAAGGCCTACGTCCGCACCTTCACCGAGGGGCTCGCCGTGGAGCTGGCAGGCACCGGCGTCACGGCCACGGTGCTGTGCCCGGGCTTCACCCGGACCGAATTCCACGACCGGGCCGGGCTGGACACCGATGTCCTGCCCGACGGCGCGTGGCTGCACGCGCCCGACGTGGCGGCCCACGCGCTCGCGGACGTGCGCCGCGGCGTCGTCATCTCCACGCCGTCGGTCCGCTACAAGGCGGCGTCCGCGGTGCTGCGGGCCATGCCGCGCTGGGCGGTGCGCGCCGTCGGGCACTACCGCTGAMGTALVTGATAGLGLELAWQLATARHDLVLVARDGDRLDQVAGQVRAAAGVRVEVIAADLSRHEDVARVAERLSVTGAEDGDDRRPVGLLVNNAGFAPAQHFVGGDLEVETAAVDVMVRAVMVLSHAAAEQMVSRGRGAVLNVASVAALTAGGSYAAAKAYVRTFTEGLAVELAGTGVTATVLCPGFTRTEFHDRAGLDTDVLPDGAWLHAPDVAAHALADVRRGVVISTPSVRYKAASAVLRAMPRWAVRAVGHYRPGPT0030485_3473PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-OXIDOREDUCTASE_ACTIVITYPUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
AK018_00509798exoA_1COG0708ExodeoxyribonucleaseGTGCGTATCGCCACGTGGAACGTCAACTCGATCCGTACCCGGCTGGACCGCGTGCTGGCCTTCCTGGAGCGGTCGGGCACGGACGTGCTGGCGGTCCAGGAGACCAAGTGCCGCGACGACCAGTTCCCGCACCTGCCCTTCGAGGAGGCCGGCTACGAGGTCGCCCACACCGGGTACCACCAGTGGAACGGCGTCGCGATCGTCTCCCGCGTGGGCCTGGCCGACGTGGCGACGTCGTTCCCGCACCAGCCGTCGTTCGCCAAGCCCGACCAGGAACCGCGCGTCGAGGCCCGCGCCCTGGGGGCGACGTGCGGGGGCGTGCGGGTCTGGTCGCTGTACGTGCCGCACGGCCGGACCCTGGAGGACCCGCACTACGCCTACAAGCTCGCGTGGCTGGAGGGCCTGCGCGCCGACGCCGCGCGGTGGCTGACGGCGGACCCGGCGGTCGAGCTCGCCCTGCTCGGCGACTGGAACGTGATCCCCCGCGACACCGACGTGTGGGACGTGACCGCGTTCGCGGGCAGGACCCACGTGTCCACGCCCGAGCGGGAGGCGTTCGCGGCGTTCGAGCAGGCGGGCTTCACCGAGGTCACCCGCGAGCACGTGCCCGCGGCCGGCACGTACACCTACTGGGACTACCAGCAGCTCGCGTTCCCGCGGGACAAGGGCCTGCGCATCGACTTCGCGTACGCCTCCCCCGCGCTGCGCGACCGGGTCACGGGTGTCTCGATCGACCGGGACGAGCGCCGCGGCAAGGGCGCGAGCGACCACGTCCCGGTGGTGCTCGACCTGGCCTGAMRIATWNVNSIRTRLDRVLAFLERSGTDVLAVQETKCRDDQFPHLPFEEAGYEVAHTGYHQWNGVAIVSRVGLADVATSFPHQPSFAKPDQEPRVEARALGATCGGVRVWSLYVPHGRTLEDPHYAYKLAWLEGLRADAARWLTADPAVELALLGDWNVIPRDTDVWDVTAFAGRTHVSTPEREAFAAFEQAGFTEVTREHVPAAGTYTYWDYQQLAFPRDKGLRIDFAYASPALRDRVTGVSIDRDERRGKGASDHVPVVLDLANANANANANA
AK018_005101800nrdDCOG1328Anaerobic ribonucleoside-triphosphate reductaseATGGGTACGCAGATCGATGCCTCCGCCGCCGTCAGCGAGTACGTGGCCCGGGCCGACTGGCGGGTGCGCGCCAACGCCAACCAGGGCTACTCGCTGGGCGGGCTCGTCCTCAACGTCGCCGGCAAGACGATCGCGAACTACTGGCTCGACGAGGTGTTCTCCCCCGGGCTCGCCACCGCCCACCGCGACGGCGACCTGCACGTCCACGACCTCGACGTCCTCGGCGGCTACTGCGCCGGGTGGTCGCTGCGCCAGCTGCTGTCCGAGGGGTTCGGCGGCGTGCCCGGCGCGGTCTCCTCGCGCTCGCCGCGGCACCTGGGGTCCGCGCTGGGCCAGATCGTCAACTTCTTCGGCACCCTGCAGAACGAGTGGGCGGGCGCCCAGGCGTTCAGCTCCTTCGACACGCTGCTCGCGCCGTACGTGCACGTCGACCGCCTCAGCCAGGACGAGGTCACCCAGGCCCTGCAGGAGTTCGTGCACAACCTCAACGTGCCCTCCCGATGGGGCACCCAGACGCCCTTCACCAACCTCACCTTCGACCTGACCTGCCCGGAGGACCTCGCCGAGGAGCACCCCGTCGTGGGCGAGGACGTCCTGGACGTCACCTACGGGGACCTCCAGCAGGAGTCCGACATGATCAACCGGGCGTTCGTCGCGGTCATGTCCGCCGGCGACGCGGCCGGCCGGGTCTTCACGTTCCCCATCCCGACGTACAACATCACGCCGGACTTCGACTGGGACTCGGAGATCTCCGAGGAGATCTTCACCATGACGGCGCGGTACGGCACGCCGTACTTCCAGAACTTCGTCAGCTCCGACCTCAACCCGGGCGACGTGCGGTCGATGTGCTGCCGTCTCCAGCTCGACCTGCGCGAGCTGCTGGCCCGCGGCAACGGGCTGTTCGGGTCCGGCGAGCAGACCGGCTCGATCGGCGTGGTCACCGTCAACTGCGCCCGGCTCGGGCACGTCCACGGCCCGGACCGGGACGCGCTGTACGCCGCCCTGGACCGGCTGATCGACCTGGCGGCCGACGGCCTCGAGGCGCGGCGGGCGACGGTCCAGCAGCTCATGGACGGGGGCCTGTACCCGTGGACGCAGCGCTACCTCGGCACCCTCGACGCCCACTTCTCCACCATCGGTGTCAACGGCGTCAACGAGATGATCCGCAACGCCACGGGCGACACCCACGACATCACCACCCCGACCGGGCACGCCATGGCCCTGGAGCTGCTCGACCACGTGCGCGGCCGGCTCGTGGAGATCCAGGAGCGCACCGGGCACCTGTTCAACCTGGAGGCGACCCCGGCCGAGGGCACCACCTACCGGTTCGCCCGGGAGGACCGTTCCCGGTTCCCCGGCATCCTCCAGGCGGGCAGCGACGAGCAGCCCTACTACACCAACTCCACCCAGCTCCCGGTCGGGTTCACCGACGACCCGTTCGAGGCGCTGGCCCGCCAGGACGAGCTGCAGCGGCGCTACACCGGCGGCACGGTGCTCCACCTGTACCTCGGCGAGCAGGTCTCCAGCGCCGAGTCCTGCCGCCGGCTCGTGCGACGGGCCCTGGAGAACCACCGGCTGCCCTACCTGACGGTCACGCCGACGTTCTCGATCTGCGCCACGCACGGCTACCTGGCCGGCGACGTGCGCGAGTGCCCCACCTGTTCCGCACCCACCGAGGTCTGGACCCGCGTGATGGGCTACTTCCGGCCCGTGGCCTCGTTCAACACCGGCAAGCAGGGCGAGTACGCCGAGCGCGTGACCTTCCGGGAGCCGACGGCGGTGGGTGTCGATGTCGCCTGAMGTQIDASAAVSEYVARADWRVRANANQGYSLGGLVLNVAGKTIANYWLDEVFSPGLATAHRDGDLHVHDLDVLGGYCAGWSLRQLLSEGFGGVPGAVSSRSPRHLGSALGQIVNFFGTLQNEWAGAQAFSSFDTLLAPYVHVDRLSQDEVTQALQEFVHNLNVPSRWGTQTPFTNLTFDLTCPEDLAEEHPVVGEDVLDVTYGDLQQESDMINRAFVAVMSAGDAAGRVFTFPIPTYNITPDFDWDSEISEEIFTMTARYGTPYFQNFVSSDLNPGDVRSMCCRLQLDLRELLARGNGLFGSGEQTGSIGVVTVNCARLGHVHGPDRDALYAALDRLIDLAADGLEARRATVQQLMDGGLYPWTQRYLGTLDAHFSTIGVNGVNEMIRNATGDTHDITTPTGHAMALELLDHVRGRLVEIQERTGHLFNLEATPAEGTTYRFAREDRSRFPGILQAGSDEQPYYTNSTQLPVGFTDDPFEALARQDELQRRYTGGTVLHLYLGEQVSSAESCRRLVRRALENHRLPYLTVTPTFSICATHGYLAGDVRECPTCSAPTEVWTRVMGYFRPVASFNTGKQGEYAERVTFREPTAVGVDVAPGPT0021330_2193DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-ANAEROBIC_SIGNALLING,PGPT0021330-nrdD-K21636NANA
AK018_00511711queE7-carboxy-7-deazaguanine synthaseATGTCGCCTGACGCGCCGACCCGCGCCCCGCTGCGGCTGGCCGGGTTCGTGCCGTTCTCCACCGTGGACCGGCCGGGGCACCTCGTCGCGACCGCCTTCACCCAGGGCTGCCCCTGGCGCTGCACCTACTGCCACAACCCGGCCCTCATCGACCCCCGCCGTCGTCCCGGCGCGACCTGGTCGGAGCTCCTCGACCTGCTGGAGCGGCGACGCCGGATGCTCGACGGTCTGGTGATCTCCGGCGGCGAGCCGACGCTGCACCCGGGCCTCGCGGACGCCTGCCGGGACGTCCGCGACCTCGGGCTCGAGGTGGGGCTGCACTCCGGCGGCGCGTGGCCCGCCCGTCTGGCGCACGTGCTGCCGCTCGTCGACTGGGTCGGGCTGGACGTCAAGGCGCTCCCGGGCCGCTACGAGGAGGTCACCGGCGCGGCTCCGTCCGGCCGGGCCGCCTGGGAGTCGGTCCGGCTGCTGGTCGAGTCCGGGGTCGACCACGAGGTGCGCACCACCGTCGACCCGACGCTGCACACCCGCGACGAGGTCCTCGCGATCGGTGCCCGCCTCACCGCGATCGGCGTCCGTCGCTGGGTCGTGCAGGAGGCGCGGCCCGACGGCGCCCGGGCGGGCTGGGTGCGCCGGCTCGACCGGCGGCGGCTCTCCGACGTCCTGCACGACGACGACCTGCCCGGCGTCGAGCGGCGTGTGGGCGTCTGAMSPDAPTRAPLRLAGFVPFSTVDRPGHLVATAFTQGCPWRCTYCHNPALIDPRRRPGATWSELLDLLERRRRMLDGLVISGGEPTLHPGLADACRDVRDLGLEVGLHSGGAWPARLAHVLPLVDWVGLDVKALPGRYEEVTGAAPSGRAAWESVRLLVESGVDHEVRTTVDPTLHTRDEVLAIGARLTAIGVRRWVVQEARPDGARAGWVRRLDRRRLSDVLHDDDLPGVERRVGVNANANANANA
AK018_00512729hypothetical proteinATGACCGAGCGACCCGAGGACGACCTCTCCTTCGCCTCGCCCGGTCCGGCGACGCCCGCGGCCGGGCCGGACGGGACGCCGCAGGTCGCCGGGACGCCACCGGCCGCCGGGACGCCGGGCGCGACCGCCGCCGCACCGCCGGGAGCGACGGCCCCCGCCCCGGCGGCCCGGTCGGGCGACGGCACCCGCTGGGGAGCCCCGGGCGGGCCGACACCGGCCGAACGTGCCGCGGCACGCCGCACCGCGCGGATCTGGGTGCTGTCGGTGGTCGGACTGATCGTGCTCGTCGTGGCCGGGGCGACCGGGATCTCCGCCCTGACCTCCAGCGCGCGCGAGCAGGCGTGGGAGCCGGTCGCCGCGGACGTCACCGCCCCCACGACGGTCAACGCCGTCCAGCTCGTCCTGGGCTCGTGCCTGTCGGGCGCGTCGACGGAGGGCAGCGTCGGCGAGGTGGAGGTCGTGCCCTGCGCGGACCCGCACGTCGCCGAGGTGGTGGGGCGCACCGACGCCGCGAGCGACGCGATCTGGCCGGGCGAGGACGCGGTGGCCGCCCGCACGGCGCGCGGCTGCACCGCCGACCTGCTCGGACCGCAGGCCCGCGCCGAGGCGGCACCGTCGGTCGCCTTCGTGGTGTGGACCCCGACGGAGGACTCGTGGGCGGCCGGTGACCGGACCGGGCTGTGCGTCGCCGTGCTGGACGAGGAGCGCACCGGGTCGCTGCTTGACTGAMTERPEDDLSFASPGPATPAAGPDGTPQVAGTPPAAGTPGATAAAPPGATAPAPAARSGDGTRWGAPGGPTPAERAAARRTARIWVLSVVGLIVLVVAGATGISALTSSAREQAWEPVAADVTAPTTVNAVQLVLGSCLSGASTEGSVGEVEVVPCADPHVAEVVGRTDAASDAIWPGEDAVAARTARGCTADLLGPQARAEAAPSVAFVVWTPTEDSWAAGDRTGLCVAVLDEERTGSLLDNANANANANA
AK018_00513126hypothetical proteinGTGAAGGAATCCGGCGGCGGGAACGTGCCCGTCATGACCGACGAGTCCGGACAGAACCGGACCGAACGCACCGGGATCGCCGGCCCGGATCGGACGATCGCCGCATCCGGGGTGCCGGGTCGGTGAMKESGGGNVPVMTDESGQNRTERTGIAGPDRTIAASGVPGRNANANANANA
AK018_005151248hypothetical proteinATGTCCACCACCTCCCTGGATGCTGCGCGCCCGCGGGGCGCGGTGCGCCCGCCGCGGACACGGCACGCTGCCGTCGCCATGACCCTCACGGCCGCCCTCGCCGGCGGCACCCTCGTGGCCGGCGCCCAGTCCGCCGTCGCCGACGAGGCGACGACCACGTCCGACGAGTCGACCGCCACCGAGACGGCCACCCCCGAGCCCACCGCCACCGAGACGGCCACCCCCGAGCCCACCGCCACCGAGACGGCCACCCCCGAGCCCACCGCCACCGAGGAGCCCGTCGTGGTGAGCACGACGCCGGACGTCTCGATGTCGAAGTCGCGCAAGACCGGCCGCAAGGGCCAGGGGCACACCCGTCCGAAGTACACCGTGAGCGCCACGACGGCCGACGGCGAGGCGTTCGCCGGCCGTGTCCGGCTCTACATCAAGGGCACGAAGGTCGCCGTCAAGCGGCTCGACGCCGACGGCACCATCCACTTCCGTCCCGGCCTCGGCAAGTACGACGTCGGCCGCAACGGCGTCCGCGCCGTCGTCGCCCCGGCCGCGGCCACGGGCCTCGAGGATGTCGCGAAGAAGCGCAGCGTGCGGATCAAGCCGAAGGCGACGACGAACCTGTACGTCTCCAAGAGCCGACACAAGGCCACCAAGGGCAAGGCGCACACCCGCCCGAAGTACACCGTGAAGGTCCGCAAGTGGGGCGAGCCCGTCCAGGGCCGCGTCCGCCTGTTCGTCTCGGGCGACAAGGTCGCCGTGAAGAAGATCAACAAGCACGGCGTCGTCCGGTTCCGTCCCGGCCTGGGCAAGTACGACCTGGGCAAGAACCGGATCCGCGTCGTCGCCGTCCCGGCCCGGAGCGAGGGCCTGAAGAAGGCCAAGAAGCACCGTGTCGTCCGGGTGGCCCCGAAGGTGACCCGCGGCGACAAGGTCGTCCGCGTGGCGAACAGCTACGTCGGCCACCGCTACTCCTACGGCGGCACCTCGCCGGCTACCGGGTTCGACTGCTCGGGCTTCACTTCGTACGTCTACAAGAAGGCGACCGGCAAGACCCTGCCGCGCTCGTCGTCGGCACAGCGGTATGCGGGCAAGCGCGTCTCGCGGAGCAGCGCCAAGAAGGGCGACCTCGTCTACTCGCCGGGGCACATCGCGATCTACGCCGGCAACGGCCGGATCATCGAGGCGGCGCGTCCGGGCGTCGGCGTCGTGAAGCGCACGATCTGGCAGTCCAACCCCCAGTTCATCCGCGTCTGAMSTTSLDAARPRGAVRPPRTRHAAVAMTLTAALAGGTLVAGAQSAVADEATTTSDESTATETATPEPTATETATPEPTATETATPEPTATEEPVVVSTTPDVSMSKSRKTGRKGQGHTRPKYTVSATTADGEAFAGRVRLYIKGTKVAVKRLDADGTIHFRPGLGKYDVGRNGVRAVVAPAAATGLEDVAKKRSVRIKPKATTNLYVSKSRHKATKGKAHTRPKYTVKVRKWGEPVQGRVRLFVSGDKVAVKKINKHGVVRFRPGLGKYDLGKNRIRVVAVPARSEGLKKAKKHRVVRVAPKVTRGDKVVRVANSYVGHRYSYGGTSPATGFDCSGFTSYVYKKATGKTLPRSSSAQRYAGKRVSRSSAKKGDLVYSPGHIAIYAGNGRIIEAARPGVGVVKRTIWQSNPQFIRVNANANANANA
AK018_005162610clpB_1COG0542Chaperone protein ClpBATGGACACCAAGTTCACGACGATGTCGCAGCAGGCCATCGGTGACGCCGTGCAGTCGGCGTCCGCCGCCGGCAACCCCCAGCTCGAGCCCGCCCACCTGCTGTCCGCGCTGCTGCAGCAGACCGGTGGTGTCGCCGTCGGGCTGCTCGAGGCCGTCGGGGCCGGCCCCCAGCAGATCGGGCAGAAGACCCGCGCCGCGCTCGTCGCGCTGCCGACCGTGAGCGGCGAGGGCGTCGCCCAGCCGTCGCCGTCGCGCGCCATGCAGAGCGTGCTGACCACCGCCACCCAGGAGGCCGAGGCGCTCGGCGACGAGTACGTCTCCACCGAGCACCTGCTCATCGCCGTGGCCGCCGGCCAGTCCGCCGCCGCCCAGGCGCTGAACGCCGCCGGCGCCACCGCGGACGCGCTGCGCGCCGCGCTGCCCGCCGTCCGCGGCAACGGCCGGGTCACCAGCCCGAACCCCGAGGGCACCTACAAGGCCCTGGAGCAGTACGGCAGCGACCTCACCCAGCGGGCCCGGGACGGCAGGCTCGACCCCGTCATCGGCCGCGACGCCGAGATCCGCCGGGTCGTGCAGGTGCTGTCGCGCCGCACCAAGAACAACCCCGTGCTCATCGGCGACCCCGGCGTCGGCAAGACCGCCGTCGTGGAGGGCCTCGCCCAGCGCATCGTGGCCGGCGACGTGCCCACCTCGCTGCAGGGCAAGCGGCTCGTCGCCCTCGACCTCGCCGGCATGGTCGCCGGTGCCAAGTACCGCGGCGAGTTCGAGGAGCGGCTCCAGGCCGTCCTGGAGGAGATCACCGCCTCCGACGGCGAGGTCATCACCTTCATCGACGAGCTGCACACCGTCGTGGGTGCGGGCGCCGGCTCCGAAGGAGCCATGGACGCGGGCAACATGCTCAAGCCCATGCTCGCCCGCGGCGAGCTGCGCATGGTCGGCGCCACCACCCTCGACGAGTTCCGCGAGAACATCGAGAAGGACCCGGCCCTGGAGCGCCGCTTCCAGCAGGTGTTCGTCGGCGAGCCGTCGGTGGAGGACACCGTCGCGATCCTGCGCGGGCTCAAGGAGCGCTACGAGGCCCACCACAAGGTGACCATCGCCGACTCGGCGCTGGTGGCCGCCGCCGCGCTCTCCGACCGGTACATCACCGGCCGCCAGCTGCCCGACAAGGCCATCGACCTCGTCGACGAGGCCGCCTCCCGCCTGCGCATGGAGATGGACTCCTCGCCGGTGGAGATCGACGAGCTGCAGCGCGCCGTGACCCGGCTGGAGATGGAGGAGGTCGTCCTCAAGGACGCCGAGGGCTCGGCCGACGCGGCCGCGCGCGAGCGGCTCGAGAAGCTGCGCGCCGACCTGGCCGACCGGCGCGAGGAGCTCGCCGCTCTCACCGCCCGCTGGGAGGCGGAGAAGGCCGGCCACAACCGCGTCGGCGACCTGCGCGCCCGCATCGACGAGCTGCGCACCGAGGCCGACCGGCTGCAACGCGAGGGCGACCTCGAGGCCGCCGCGCGCCTGCTGTACGGGGAGATCCCGTCCGTCGAGCGCGAGCTCGCCGAGGCCGAGCAGGCCGAGGCCTCCGAGGCGGCGGCCGAGGAGGCCGCCCAGGAGACGCCGATGATCGCCGACAAGGTCGGGGCCGACGAGGTCGCCGAGGTCGTCTCGGCCTGGACCGGCATCCCCGCCGGCCGGATGCTGCAGGGCGAGACCGAGAAGCTGCTCGGCATGGAGGACGTCCTCGGCGAACGGCTCATCGGCCAGCAGGCCGCCGTCCGCTCCGTCTCGGACGCCGTGCGGCGCTCGCGGGCCGGGGTCGCCGACCCCGACCGGCCGACCGGGTCGTTCCTGTTCCTCGGGCCGACGGGTGTCGGCAAGACCGAGCTCGCCAAGTCCCTGGCGGACTTCCTCTTCGACGACGAGCGCGCCATGGTGCGCATCGACATGTCGGAGTACTCCGAGAAGCACTCGGTGGCGCGGCTCGTCGGGGCCCCTCCGGGGTACGTCGGCTACGAGGAGGGCGGTCAGCTCACCGAGGCGGTCCGCCGTCGGCCCTACTCCGTGGTCCTGCTGGACGAGGTGGAGAAGGCCCACCCCGAGGTGTTCGACATCCTGCTGCAGGTGCTCGACGACGGCCGGCTCACGGACGGCCAGGGCCGCACCGTGGACTTCCGCAACACCATCCTGGTGCTCACCTCGAACCTGGGCTCGCAGTTCCTCGTGGACCCGACGCTGGACGAGGCGGCCAAGCGTGAGAGCGTGATGACCGCGGTGCGTGCGGCCTTCAAGCCGGAGTTCCTCAACCGGCTCGACGACGTCGTGCTGTTCGACGCGCTCACCCTCGGCGAGCTGGGCCGGATCGTCGAGCTGCAGGTCACGGCGCTGGCGGACCGTCTCGCCGACCGTCGGATCACGCTCGACGTCACGCCGCCGGCCCGCGAGTGGCTGGCGCTGGAGGGCTACGACCCGGCGTACGGGGCGCGGCCGCTGCGCCGGCTGGTGCAGCGCGAGATCGGTGACCGGCTGGCGCGCCGGCTGCTGGCCGGCGAGACGTCGGACGGCGACACCGTCGTCGTCGACCGGGCCGAGGGCGACGGAGGTCTGACCCTGCGCTGAMDTKFTTMSQQAIGDAVQSASAAGNPQLEPAHLLSALLQQTGGVAVGLLEAVGAGPQQIGQKTRAALVALPTVSGEGVAQPSPSRAMQSVLTTATQEAEALGDEYVSTEHLLIAVAAGQSAAAQALNAAGATADALRAALPAVRGNGRVTSPNPEGTYKALEQYGSDLTQRARDGRLDPVIGRDAEIRRVVQVLSRRTKNNPVLIGDPGVGKTAVVEGLAQRIVAGDVPTSLQGKRLVALDLAGMVAGAKYRGEFEERLQAVLEEITASDGEVITFIDELHTVVGAGAGSEGAMDAGNMLKPMLARGELRMVGATTLDEFRENIEKDPALERRFQQVFVGEPSVEDTVAILRGLKERYEAHHKVTIADSALVAAAALSDRYITGRQLPDKAIDLVDEAASRLRMEMDSSPVEIDELQRAVTRLEMEEVVLKDAEGSADAAARERLEKLRADLADRREELAALTARWEAEKAGHNRVGDLRARIDELRTEADRLQREGDLEAAARLLYGEIPSVERELAEAEQAEASEAAAEEAAQETPMIADKVGADEVAEVVSAWTGIPAGRMLQGETEKLLGMEDVLGERLIGQQAAVRSVSDAVRRSRAGVADPDRPTGSFLFLGPTGVGKTELAKSLADFLFDDERAMVRIDMSEYSEKHSVARLVGAPPGYVGYEEGGQLTEAVRRRPYSVVLLDEVEKAHPEVFDILLQVLDDGRLTDGQGRTVDFRNTILVLTSNLGSQFLVDPTLDEAAKRESVMTAVRAAFKPEFLNRLDDVVLFDALTLGELGRIVELQVTALADRLADRRITLDVTPPAREWLALEGYDPAYGARPLRRLVQREIGDRLARRLLAGETSDGDTVVVDRAEGDGGLTLRPGPT0014580_1036DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014580-clpB-K03695NANA
AK018_00517996hypothetical proteinGTGCTCGCCGCCGTCGGCCTCCTCGCGCTCTCCGGGTGCATGAAGGTCGACTGGGACATGACCCTCAACGAGGACGACACGGCCTCCGGCACCGTCATCATGGGGATCTCCGACGAGTTCGCCGAGTCCCTGGGGATGGACCCGCAGGAGCTGTGGGACATGTCGAACGAGGGCGAGGACCCCCTCACCGAGGACCTGCCGGAGGGCGCGACGGAGCAGCCCTGGTCCGACGGCGAGTACACGGGCGTCGAGGTCGGCTTCGTCGACCAGCCGATCTCGGAGATGAGCGGCGAGGGCAGCGACGACCTGTCCATCACCCGCGACGGCGACGAGTACGTCGTCGACGGCGTCTTCGACCTGAGCCAGGACGCCCAGGACATGGAGGACCTGGGCGGCGAGCTCCCCGCGGGCCTGCTCGACAGCTTCGACATGCGCATCGCCGTGACCTTCCCCGGCGCGATCAGCGAGACCACCGGCGAGGTCGACGGCAACACCGTCGTGTGGACGCCGTCCGTCGGGGAGGTCACCGAGGTGTACGCCCGCGGCTCGGCCGTCTCCGGCGGGGCAGCCGCGCCGGAGGACGAGGCCACGACCTCCGAGGAGGAGGCGACCGACGAGCCGACCGCGGAGGCCACCGACGAGGAGTCCGCGGCCGCCGACGACATGGCCGACACCGCGGCCGAGGACGACGCCGGCGGCTTCCCCTGGTGGATCGTGGGCCTCGTGCTCGGGCTGGCCGTCCTCGGTGTCGTCGTCGCGCTCGTCGTGCGCAACAACCGCACCCCCGGCCCGCCCGGGGCCGGCGCGCCCGGCAGCGGCCCCGCGCCCTACGGCGGCGGCGCCGTGCCCCCGAGCTACGCCCAGCCGCAGCAGCAGGCCCCGCCCGTCGTGCCGCCCCAGCAGCCGTACCAGGACCCGTACGGGCAGCCGCCCGCCGGCCCGCCGCAGCAGCCGCCCCAGGACCCGGACGGCACCCCGCCGACGCCGCCCCGCTGAMLAAVGLLALSGCMKVDWDMTLNEDDTASGTVIMGISDEFAESLGMDPQELWDMSNEGEDPLTEDLPEGATEQPWSDGEYTGVEVGFVDQPISEMSGEGSDDLSITRDGDEYVVDGVFDLSQDAQDMEDLGGELPAGLLDSFDMRIAVTFPGAISETTGEVDGNTVVWTPSVGEVTEVYARGSAVSGGAAAPEDEATTSEEEATDEPTAEATDEESAAADDMADTAAEDDAGGFPWWIVGLVLGLAVLGVVVALVVRNNRTPGPPGAGAPGSGPAPYGGGAVPPSYAQPQQQAPPVVPPQQPYQDPYGQPPAGPPQQPPQDPDGTPPTPPRNANANANANA
AK018_00518945COG2267Monoacylglycerol lipaseATGACGGCGACCGACTGGCACCCCGACCTGCTCGGCGAGGGCTTCGAGGCCCGGACCCTGGACCTGCCGGAGGGCGCGAGCGCCACCCTGGTCCGCCACGTGCCGTCGGTCGCGCCGCACGGCCACCCGGCCCGGGTGGCCGTGCTGTCCGTGCACGGCCTGGCGGACTACTACTTCCACCCCCACGTCGCCCGCGCCCTGGCCGACGCCGGGTTCGCGTCCTACGCCGTGGACCTGCGCGGCCACGGCCGCTCGTGGGAGTCGTACGAGGCGGCCGGCGGCGACCCGAACCAGGTCCCCGACCTGGCGCTGCACGCCCAGGACCTGGACGCCGCCGCGGACGCGGTGCGGGCCGCCGGCCACGAACGCCTCGTGGTGCTCGCCCACTCCACCGGCGGGCTGGTCGTCCCGCTGTGGGCGGACGCCCGCCCGGGCCGCGCGGACGCGCTGGTGCTGAACAGCCCGTGGTTCGAGCACAACGCTCCCCGCCCGCTCCGGTGGGCGGGGGTAGCGCTCGCCGAGGCCGTCGCCCCGCTGGCGCCGCGCGCCGTCCTCAGCCACCTCGACGACGCCTACGCCCGGGCGCTGCACCGCGCGCACGGCGGCGAGTGGGACTTCGACCCGGCCTGGAAGCCGCACGAGCCGTTCCCGGTGCGTGCGGCCTGGTTCCGCTCGGTCCGCCGGTCCCAGCGGCGGCTGGCCCACGGTCTCGACCTCGAGATCCCCGTGCTGGTCCTGACCTCGGACCGGTCCACGCACGCCGAGCATCTGACCAGCGACTCGGTGCTCGACGTCGCGCACATGCGCGCCCTCGCCCCGCGGCTCGGCGACGACGTCAGCCTCGCCACGATCCGCGGCGGCACGCACGACCTGGCGCTGTCGCCGTCACCCGCGCGCGAGGAGTACCTGCAGGTCGTGACGGACTGGATCGCCGCCGCCGTCTGAMTATDWHPDLLGEGFEARTLDLPEGASATLVRHVPSVAPHGHPARVAVLSVHGLADYYFHPHVARALADAGFASYAVDLRGHGRSWESYEAAGGDPNQVPDLALHAQDLDAAADAVRAAGHERLVVLAHSTGGLVVPLWADARPGRADALVLNSPWFEHNAPRPLRWAGVALAEAVAPLAPRAVLSHLDDAYARALHRAHGGEWDFDPAWKPHEPFPVRAAWFRSVRRSQRRLAHGLDLEIPVLVLTSDRSTHAEHLTSDSVLDVAHMRALAPRLGDDVSLATIRGGTHDLALSPSPAREEYLQVVTDWIAAAVNANANANANA
AK018_005191548alkA_1COG0122putative bifunctional transcriptional activator/DNA repair enzyme AlkAGTGCCCGCCACGACCGACACCCGCTGGACCGAGCGCTACCGCGCCATCGCCGCGCGCGACGCCCGGTTCGACGGCCAGTTCGTCACCGCCGTGCGCAGCACCGGGATCTACTGCCGCCCCTCGTGTCCCGCCCGCACGCCCAAGCCGGAGAACGTGACGTTCTACCTGACCTCGGCGGCCGCGCACCACGCCGGCTACCGCGCCTGCAAGCGCTGCCTGCCCGAGGCGACCCCGGGCACCCCCGCCTGGGACCTGCGCGGCGACGCCACCGGCCGGGCCATGCGGCTCGTGGCCGACGGCGTGGTGGACCGCGAGGGCGTGGCCGGCCTGGCCGCCCGGCTCGGCTACAGCACGCGCCACCTGCACCGACTGCTGCGTGCCGAGCTCGGCGCCGGACCGCTCACGCTCGCCCGCGCCCAGCGCGCGCAGACGGCGCGCACCCTGCTGACGGGCACGGACCTGCCGGTGGCCGACGTCGCGTTCGCCGCGGGGTTCGGCAGCATCCGGCAGCTCAACGACACCGTGCGCGCCGTGTTCGCGACCACCCCGACCGCCCTACGTCGCCGTCGACCCCACACCACCGTCACCTCCCCCGTCAGCGGACCCGGAGCCGACGCCGGCACCGAGGGCGACCGCGTCCATCTCGACCTGACGCTGCCCGTGCGGGAGCCCTTCAACGCGGTCGGGACGATCGCCTACCTCGCCGGGCGGGCGGTCGACGGGGTGGAGTCCGCGACCGTGCAGGACGACGCAGCCCGCTACGCGCGCACCCTGCACCTGCCGCACGGGCCCGGCGCCGTCGCCGTCACCGCCGGACCCGCCGTCGGACCGGGACGCCTCGCCGCCCACCTCGAGCTGGCCTCCCTGCAGGACGTCGCCACGGCCGTGGCGCGGGTACGCCGGCTGCTCGACCTGGACGCCGACCCCGTCGCCGTCGACACCGCGCTGGCCACCGACCCCGCGCTCGCCCCGTCCGTCGCCGCGACCCCGGGCATCCGGATGCCGGGGGCTGCGGACCCGCACGAGATCGTCGTCCGCGCCGTCGTGGGTCAGCAGATCTCGGTGGCCGCCGCGCGGACGCACCTGAACCGGCTCGCGGCGGCGGCCGGCTCGCCCTACCGGTCGACCGTCGCCGGACTCACCCGGCTGTTCCCCACCGCCGCGCAGGTCGCGGCCGACGACGGCGCCAGCCTGGCGCTCCCGGCCCGGCAGCGTCGCACCGTGGTCGCCACCGCCGACGCGCTGGCCGACGGCACCCTGGCGGTCGACCTCGGCGCGGACGCCGACGAGCTGCGCGCCGCGCTCGAGGCGCGGCACGGCATCGGACCGTGGACGTCCGGGTACGTGACGCTGCGTGTCCTGGGCCGTCCCGACGTCTGGCTCGACGGGGACGCCGCCCTGCGGACCGGCGCCCGCCGGCTCGGACTTCCCGACGACCGGGCCGCGCTCGCCGCCCGGGCCCACCGCTGGGCCCCCTGGCGCTCCTACGCCGCCCGGCACGTGTGGCGGGCCGCCGCCGCACCCGTGGACGAAAGGACCACCGCATGAMPATTDTRWTERYRAIAARDARFDGQFVTAVRSTGIYCRPSCPARTPKPENVTFYLTSAAAHHAGYRACKRCLPEATPGTPAWDLRGDATGRAMRLVADGVVDREGVAGLAARLGYSTRHLHRLLRAELGAGPLTLARAQRAQTARTLLTGTDLPVADVAFAAGFGSIRQLNDTVRAVFATTPTALRRRRPHTTVTSPVSGPGADAGTEGDRVHLDLTLPVREPFNAVGTIAYLAGRAVDGVESATVQDDAARYARTLHLPHGPGAVAVTAGPAVGPGRLAAHLELASLQDVATAVARVRRLLDLDADPVAVDTALATDPALAPSVAATPGIRMPGAADPHEIVVRAVVGQQISVAAARTHLNRLAAAAGSPYRSTVAGLTRLFPTAAQVAADDGASLALPARQRRTVVATADALADGTLAVDLGADADELRAALEARHGIGPWTSGYVTLRVLGRPDVWLDGDAALRTGARRLGLPDDRAALAARAHRWAPWRSYAARHVWRAAAAPVDERTTANANANANANA
AK018_00520516ogt_1Methylated-DNA--protein-cysteine methyltransferaseATGATCGCCGCGACCACCCTCGACACCCCGGACGGACCGTTCAGCCTCGTCGCCGACGACGGCGCCGTGCTCGCCTCGGGCTGGACCGCGGACGTCCCCGCCCTGGTCGGGCTCGTCCACCGGGACCTGCGCCCGGCGGCCGTGCCCGTCGTCGACACCACCGACCCCGCCGTCGCCGCCCCGGCCGCGGCGGTCCGGGCGTACTACGCGGGCGACCTGGACGCCGTGGCCCGGGTCGACGTCGTCCAGCGCTCCGGCCCGTTCCGCGAGCACGCCTGGGACGTGCTGCGCGAGGTCGCACCCGGCGAGCCCGTCACCTACACCGAGTACGCCCGCCGTGCGGGGCGGCCCGCAGCGGTGCGCGCAGCGGCGGGGGCGTGCGCGCACAACGCGGCCGCCCTGTTCGTGCCGTGCCACCGTGTGCTGCGCACCGACGGCACGCTCGGCGGGTTCCGGTACGGGACCGCGGTCAAGGAGTCGCTGCTGGCGCGCGAGCGGGCCGAGGCGGCTGCCTGAMIAATTLDTPDGPFSLVADDGAVLASGWTADVPALVGLVHRDLRPAAVPVVDTTDPAVAAPAAAVRAYYAGDLDAVARVDVVQRSGPFREHAWDVLREVAPGEPVTYTEYARRAGRPAAVRAAAGACAHNAAALFVPCHRVLRTDGTLGGFRYGTAVKESLLARERAEAAANANANANANA
AK018_005211128hypothetical proteinATGGCCCAGACCTCGTCCCCGTCCCTGCCACCGCTCCCGCGCGCGTCCACGCAGGGGCACCAGGCGCGGCACCTGCTCGCCGTGCCGGACGACGTGACGGTCGACGAGGTGGAGGTGCTGGCCCTGTCGCGGTTCGGCGGCACCCGCTGGGACGTCGCCCCGTCGGACCTGCCGGGCGCGGACCTGCCCGCGGGCCGGATCGCCGGACCCGGTGAGCCCGGCGTGCTGCGCCTGACCCGGCACAGCCACGTGCACGGGCCCTACGCGCCGGGGGGCGACGGGTTCGAGCCCGGCCTGCCGGCGCGCACCGCCCTGGTCTTCGACGTCGTCTGCCCGCGTGAGCGCTGGGACGACCCGCCGTTCCCCGGGGGCGGCGACCGCGACGGCCTCGCCCGGGCGTTCCCGGCGGGGCTGCCGAACCGCGAGGAGGAACGCGTCGTGCAGTGGCTGATCGCCGCCGCCCGACGCCTCGGCGGCTCGGTGCGCCTGGACGTGGCGGGTCTGTGGGACCCGGCCGAGACCCAGCGGCGCGCTGCCGGCGCAGGGGTCGTGCTGACCCCGGACCCGGGGGCGTCGGTCGACCTGACGGTGTGGTCCGACGTCTGGCTCGACCCGCAGGCCGCCCACCGGGTGCTGCAGGAGGTCCACCCGCGCGTGGTCCTGGCCACCCAGGGCGCCGACTACCAGGGGCCGCCGGAGGGCATCGCGGAGAAGCCGCTCTACCCGGGCGAGAAGCTCGACCCGGAGCTGCGGCGCGAGCTGCACGCCCGGGCCGACGACTTCGACATCGCCGCCCTGCAGGCACCGGTCGTGCTGGACGGCTACGGGCTGACGATCGACCTGGGTCACGACGGCTGGGTGACCGTGGAGGTCATGGGCGACGAGGTGCTGCCGCTGCTCGTCAAGGAGCTGCCCTGGGCCGCGAGCGGGGCGATCTGCTACCGCGTCGTGTGGGACCCGCCGGACCAGTTCGAGGCGCAGATGGAGTTCCCCCAGCCCGGTCTGGTGGTGGCCCGCAAGCGGGCGGCCGACCTGGTGGGCAGGGTCGCCGCCGCGATCCACGCCGCCGTCGGCGGGGAGATCGCCGACGAGTCGGAATTCTTGCTGGCGCCGGAGGACCTGGCCTGAMAQTSSPSLPPLPRASTQGHQARHLLAVPDDVTVDEVEVLALSRFGGTRWDVAPSDLPGADLPAGRIAGPGEPGVLRLTRHSHVHGPYAPGGDGFEPGLPARTALVFDVVCPRERWDDPPFPGGGDRDGLARAFPAGLPNREEERVVQWLIAAARRLGGSVRLDVAGLWDPAETQRRAAGAGVVLTPDPGASVDLTVWSDVWLDPQAAHRVLQEVHPRVVLATQGADYQGPPEGIAEKPLYPGEKLDPELRRELHARADDFDIAALQAPVVLDGYGLTIDLGHDGWVTVEVMGDEVLPLLVKELPWAASGAICYRVVWDPPDQFEAQMEFPQPGLVVARKRAADLVGRVAAAIHAAVGGEIADESEFLLAPEDLANANANANANA
AK018_00522663dcd_1COG0717dCTP deaminase, dUMP-formingGTGTCCCGAATCCGCTCCGGCACCGCGCGGCGGACCACGGCGCGGACCGCGCGGCGGGGCGCCGTCGGCCCGGCTACCGTGTGCAGCGTGCTGCTCTCCGACCGCGACATCCGGGCCGAGCTGGACGCGGGACGCGTCGCCCTGGACCCGTACGACCCGGCGATGGTCCAGCCGTCGAGCATCGACGTGCGCCTGGACCGGTTCTTCCGCCTGTTCGACAACCACCGGTACCCGTTCATCGACCCTTCGCAGGAGCAGCCGGAGCTGACCCGGCTGGTCGAGGTCGAGTCCGGCGAGCCGCTGGTGCTGCACCCGGGGGAGTTCGTCCTCGGGTCCACGTACGAGACGGTCACCCTGCCCGACGACGTCGCCGCCCGGCTGGAGGGCAAGTCGTCCCTCGGCCGGCTCGGCCTGCTGACGCACAGCACGGCCGGGTTCATCGACCCGGGCTTCTCGGGGCACGTCACCCTCGAGCTGAGCAACGTCGCCACCTTGCCGATCACGCTCTGGCCGGGCATGAAGATCGGCCAGCTCTGCTTCTTCCGGCTCTCCTCGCCGGCCGAGCACCCCTACGGCTCGGAGCGGTACGGCTCGCGCTACCAGGGCCAGCGTGGCCCGACGGCGAGCCGCTCCTGGCAGTCCTTCCACCGCACCGACGTATGAMSRIRSGTARRTTARTARRGAVGPATVCSVLLSDRDIRAELDAGRVALDPYDPAMVQPSSIDVRLDRFFRLFDNHRYPFIDPSQEQPELTRLVEVESGEPLVLHPGEFVLGSTYETVTLPDDVAARLEGKSSLGRLGLLTHSTAGFIDPGFSGHVTLELSNVATLPITLWPGMKIGQLCFFRLSSPAEHPYGSERYGSRYQGQRGPTASRSWQSFHRTDVPGPT0021225_1610DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021225-dcd-K01494NANA
AK018_00524114hypothetical proteinATGAGCAGCAAGAAGAAGACGAATCACATCTTGCACGCCATCCTCACCCTGCTGACTGGCGGACTGTGGGCGATCGTCTGGCTGGTTCAGGTCCTCCGGCACAACAACGTCTAGMSSKKKTNHILHAILTLLTGGLWAIVWLVQVLRHNNVNANANANANA
AK018_005251047hypothetical proteinATGAGCAACCTGGAGCTGCGTCCCGCCGAACAGGTCTGCACCGTCGGCGACGCCCCTGCCGCCGTCGAGATCCTCACGGCGCGCGAGGTCCCGCTGGGCGGCCCCCGGGCGATGACGGTCCGCCGGACCATCCCGCAGCGCCGCCGGTCCCTCATCGGCGCATGGTGCTTCTGCGACCACTACGGGCCCGACGACGTCTCCTCCTCGGCCGGGATGCAGGTGCCGCCGCACCCCCACGTCGGGCTGCAGACGGTGTCCTGGCTCTTCGCCGGCGAGATCATGCACCGCGACTCGGTGGGCTCCCAGCAGCTCGTGCGGCCCGGGGAGCTGAACCTCATGACCGCGGGGCACGGGATCTCCCACTCGGAGGAGTCCCCGGCCTCGACCCCCGACCACCCGCGGCCGCCGACGCTGCACGGCGTGCAGCTGTGGACGGCGCTGCCCTCGGGCGACGCCGCGACCGCACCGCAGTTCGACCACCACGCCGACCTGCCCGTCGCCGACGTCGACGGCGCGCGGGTGCGGGTGTTCCTCGGCGCGCTGCAGGTCGGCGGTCGCGAGCTGCGTTCGCCCGCACGCACGTACTCCCCGCTCGTGGGGGCCCAGCTCGACGTGCCGGCCGGCACGCGCCTGGAGCTGGACGTCGACGTCGCCTTCGAGCACGGGCTCCTGGTGGACGCGGGGGAGGCGACCTTCGAGGGCACCCCGGTGCCGCCCGCCGACCTCGCCTACGTCGCACCCGGCCGCGACCGCCTCGTCGTGGACGCGGGGCCGACCCCGGTGCGCGCGGTCCTCCTCGGCGGCGAGCCCTTCACCGAGGACGTCGTCATGTGGTGGAACTTCGTCGGCCGTACCCACGAGGACGTCGCGGCGGCGCGGGCCGACTGGACGGCTCAGCTCGCCGATCGCCCCGACGGGGACACCGGCTACGTCGAGGGTGCGGCCGGGCGCCGGTTCGGTCGGGTGGACGGGTACGACGGCGGGCCCCTGCGTGCTCCGACGCTTCCCGACGTCCGGCTCAAGCCGCGTCGGCAGCCGCCGCGCTGAMSNLELRPAEQVCTVGDAPAAVEILTAREVPLGGPRAMTVRRTIPQRRRSLIGAWCFCDHYGPDDVSSSAGMQVPPHPHVGLQTVSWLFAGEIMHRDSVGSQQLVRPGELNLMTAGHGISHSEESPASTPDHPRPPTLHGVQLWTALPSGDAATAPQFDHHADLPVADVDGARVRVFLGALQVGGRELRSPARTYSPLVGAQLDVPAGTRLELDVDVAFEHGLLVDAGEATFEGTPVPPADLAYVAPGRDRLVVDAGPTPVRAVLLGGEPFTEDVVMWWNFVGRTHEDVAAARADWTAQLADRPDGDTGYVEGAAGRRFGRVDGYDGGPLRAPTLPDVRLKPRRQPPRPGPT0019980_138DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911NANA
AK018_005261011hypothetical proteinATGTCGTACGTCCAGGCCCTCGTCCCCCCGGAGCACGCGTCGAACCACCTGCTCGTCCTGCCCGGCACGACCGACGTCGCCGTCGTGCGTCGCCTGGCGGAGGCATGGTTCGCGGACGTCCGCTGGCTCAAGGAGCCGGAGGCCCGGTCCGGGGCGCAACCGATGACCGGTGCCCGCTTCCGCGGGATGACGGCGGCGCCGGCCGACCCCCAGGACGTCGGGCCCGGCGTCCTGGGCATCGGGGCCGACCACGGCGCGGCCGGACCCTTCACCGGGTCGCAGGACGCGGCGGCCCAGCTCGGGATGCCGGAGGGGGTCCGCGTCTTCGCCCTCGGCCGGGTCGACGGGATGTTCGACCGGCGTGGCGGCCGGCCCGCCTCGCTCGACGACCGGGACGGCATCGCCCGGGCGTTCGCCGCCGGTCTGCCGGAGGGCGAGGAGCTCCGCCTGGTCCAGTGGGGGGTGGCGGTGGCCCGCAAGCTCGGTGGCCTCGTCCTGGCCGACGGTCGGCAGCTCCTGCGGCCGGACCCGGGCGGCTCGGTGGACCTGCGGCTGTTCTCGGCGCACCCGATCGCCTCGGCCGACCTGCTCGCCCTGCTGCGGTCCGTGGTGGCGACGGCGGAGCTCGACGCGGAGTCGGTGGGTCCTGACGGCTCGGCCACCTTCCGGCTGGTGGCGCGGACGCCGTACGACGGCACCCTGACCCTGGACGCCCAGCGCGTGGACCGCGTGCCCCGGGCGCTGGTCGACATCGACCCTGCCGAGTACGGGCCGTTCGCGGTGACGGTCCGCTGGGTCCCCCAGGACCCCTACGAGCTCCGGCTCGAGCAGCCCTCCGGGCTCCACGTCATCGCGCGGACGCGCATGCGGGCCATGGCCGCCCGGCTGGCCCTGCTGACGCACGCCCGGACCGGGGGCGTGCTGGTCGACGACGGTGCGTTCGTCGCCACGACGGCCGAGATCGAGCGGCGTCTGGACGACCAGCAGTCCTCGACGCGGGCGTGGGTCTGAMSYVQALVPPEHASNHLLVLPGTTDVAVVRRLAEAWFADVRWLKEPEARSGAQPMTGARFRGMTAAPADPQDVGPGVLGIGADHGAAGPFTGSQDAAAQLGMPEGVRVFALGRVDGMFDRRGGRPASLDDRDGIARAFAAGLPEGEELRLVQWGVAVARKLGGLVLADGRQLLRPDPGGSVDLRLFSAHPIASADLLALLRSVVATAELDAESVGPDGSATFRLVARTPYDGTLTLDAQRVDRVPRALVDIDPAEYGPFAVTVRWVPQDPYELRLEQPSGLHVIARTRMRAMAARLALLTHARTGGVLVDDGAFVATTAEIERRLDDQQSSTRAWVNANANANANA
AK018_00527570hypothetical proteinGTGCCCGGTATCGTGCCGGCTGTGAGCGACGACACTTCGCCGGTCGGACCCGACGAGATCGAGCCGGACACCAAGGACTGGACCTGGGTGGTCGAGCAGCCGTGCCCCGCGTGCGGGTTCGACCCGGCCGACGTCGACCCCCTCGCCGTGGGGGACGCCGTGCGGGACCTCGTGCCGCGTTGGCGGGCCGTCCTCGCCCGGCCCGGCGTGCGCCGTCGTCCCGCCCCGCAGGTGTGGTCCCCGCTCGAGTACGGCGCCCACGTACGGGACGTCTTCGGGGTCTTCGACGAGCGGCTCGCGCTCATGCTGGCCACCGACGGGGCGGCCTTCGCGAACTGGGACCAGGACGCCGCGGCGCTCGCGGGCGGGTACGCCGCCCTGGACCCGGCCCGGGTCGTCGACGAGCTCGCCGTCGCGGGTGCCGCGGTCGCGGACCGGTTCGACACCGTGGCGGAGGAGGACCTGGAGCGCGTCGGGCGGCGCTCGAACGGCTCGGTGTTCACGGTCCGCACGTTCGGGCGGTACTTCCTGCACGACGTCGTCCACCACCTGGACGACGTCGACGGCTGAMPGIVPAVSDDTSPVGPDEIEPDTKDWTWVVEQPCPACGFDPADVDPLAVGDAVRDLVPRWRAVLARPGVRRRPAPQVWSPLEYGAHVRDVFGVFDERLALMLATDGAAFANWDQDAAALAGGYAALDPARVVDELAVAGAAVADRFDTVAEEDLERVGRRSNGSVFTVRTFGRYFLHDVVHHLDDVDGPGPT0030468_7623DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
AK018_00528606hypothetical proteinATGCCCAAGATCATCGGCAAGAGTCTTCACGAGCACCGCCAGATGACCCGGCACAAGCTGTTCGCGGCGCTGTCCACGCTCATGGCCGAGCGGGGGTTCGACACGATCACGCTGGCCGACATCGCGCAGGCCGCCGGCGTGGGGCGCACCGCCGTGTACAACCACTTCGCGGACAAGGAAGCCCTGCTGCTGGGCTTCATCACCCACGAGACCGAGCAGTACGCCCACACCCTGGAGCGCGCGCTGACCGAGGTCGACGACCCCGTCATGCAGCTGCGCACCTACATCCGCCAGCAGGCGCAGCTGACGACGGTCTTCCACCTCGCGCCGGGTCCGGACCTTCGCACCGTGCTGTCGCGGACCACCCAGGCCCGGCTGCGCGAGCACGCCGAGATCGTCGAGTCGATCCTCAAGCGCATCCTGCGCGAGGGCGTCGAGACGGGCGCCTTCCCGCCCCAGGACATCGAGCCCACCGTGCAGCTCGTCAACGCCTGCCTGTCGGGGCGGCTCATCCCCAGCGACCCCGAGGGGCGCGAGCGCACCATCCGGGCGACCGAGACGTTCGTGCTGCGCGCGGTGGGCGCGCGGCCCCAGATGGCGGCCTGAMPKIIGKSLHEHRQMTRHKLFAALSTLMAERGFDTITLADIAQAAGVGRTAVYNHFADKEALLLGFITHETEQYAHTLERALTEVDDPVMQLRTYIRQQAQLTTVFHLAPGPDLRTVLSRTTQARLREHAEIVESILKRILREGVETGAFPPQDIEPTVQLVNACLSGRLIPSDPEGRERTIRATETFVLRAVGARPQMAANANANANANA
AK018_00529861COG1082putative proteinATGGCCGAGACGCCGATTCCCGTGACACTCTCCACCGCGTCGGTGTACCCGCGCCGTGCGGCCTTCGCCTTCGAGGCGGCCGCCGAGATCGGGTACGACGGCGTCGAGGTCATGGTCTGGTCGGACCCCGCGACGCAGGACCCGGCCGCGCTCTCCCGGCTGGCCGAGAGGTCCGGGGTGCCGATCCGGTCCATCCACGCCCCGACGCTGCTCATCAGCCAGCGGGTGTGGGGGCGGTCCCCGGCGGACAAACTGGCCCGCACGGTGGACATGGCCGCCGAGCTCGGCGCCGGCACCGTCGTCGTGCACCCCCCGTTCCGCTGGCAGTACAAGTACGCCCGCGGGTTCGAGGAGCAGGTGCGCGAGCTCAACGCCTCCGGCCCGGTCACCGTGGCGGTGGAGAACATGTACCCGTGGCGGCCGCACTCCCGCCTCGACCGGGAGCTCAAGGCGTACCTGCCGGGCTGGGACCCGTCCGAGCACGACTACGACGCCGTCACGCTCGACCTGTCGCACGCCGCCATCGCCCAGCAGGACGGCCTGGACCTCGTCCGCGAGTTCGGGGACCGCCTGCGGCACCTGCACCTGGCCGACGGCACGTTCAACATCCGTGACGAGCACCTGGTCCCGGGCCGCGGCGACATGCACTGCGACAAGGTCCTCACCGAGCTGGCCCACAACGGCTTCGACGGCGACGTCGTGCTGGAGATCTCCACCCGCAAGGCCCGCGACGCCCACGAGCGGCACACCGACCTGGTGGCGGCCCTGGAGTTCGCCCGTGCCTACCTCGCTCCGGTCCCGGTGCCGTACACGCCGCCGGAGCCCGAGCACCGCCACCGGCCGTCCGACGCCTGGTGGTGAMAETPIPVTLSTASVYPRRAAFAFEAAAEIGYDGVEVMVWSDPATQDPAALSRLAERSGVPIRSIHAPTLLISQRVWGRSPADKLARTVDMAAELGAGTVVVHPPFRWQYKYARGFEEQVRELNASGPVTVAVENMYPWRPHSRLDRELKAYLPGWDPSEHDYDAVTLDLSHAAIAQQDGLDLVREFGDRLRHLHLADGTFNIRDEHLVPGRGDMHCDKVLTELAHNGFDGDVVLEISTRKARDAHERHTDLVAALEFARAYLAPVPVPYTPPEPEHRHRPSDAWWNANANANANA
AK018_00530645gph_2Phosphoglycolate phosphataseATGGTGCGCGCGGTGGTGTTCGACGTCGGCGAGACGTTGATCGACGAGACCCGGATCTTCTCGCGGTGGGCCGACCGGCTCGACGTGCCGCGCGGCACGTTCCTCGGGCTGGTCGGGGCCTGCGCGGCGACCGACCGACCGCTGGCGGATGCCTTCTCGCTCGCCCGACCCGGCCTCGACCTGCACGCCGAGATGGCCCGGTGGGCGCTGGAGGATCCCGAGGGGCTGCGGGAGAACTTCGACGCCGACGACCTCTACGCCGACGTCCGGCCGGCGCTGGCCGCACTGCGCGAGGCCGGTCTCGCCGTCGTCGTCGCCGGGAACCAGCCACCCCAGGCCCGGGCGGCGCTCGAGGCGATGGACCTGCCCGTGGACAGCATCCGCACCTCCGACGAGTGGGGGGTGGAGAAGCCCGCGCCCGAGTTCTTCGCGCGGGTCGCGGACCTCGCCGGCCACCCGGCGTCCCAGATCGCCTACGTGGGCGACCGGCTGGACAACGACGTGCTCCCCGCCGCCGACGCCGGGATGCGGCCCGTGCTGATCCGCCGCGGCCCGTGGGGCTACTGGCACGCGACCCGCCCCGAGGCCGCGCGGGTCGACGTCGTCGACTCCCTGCACGAGCTCCGGGCCCTGCTGACCCGCTAGMVRAVVFDVGETLIDETRIFSRWADRLDVPRGTFLGLVGACAATDRPLADAFSLARPGLDLHAEMARWALEDPEGLRENFDADDLYADVRPALAALREAGLAVVVAGNQPPQARAALEAMDLPVDSIRTSDEWGVEKPAPEFFARVADLAGHPASQIAYVGDRLDNDVLPAADAGMRPVLIRRGPWGYWHATRPEAARVDVVDSLHELRALLTRPGPT0008585_1028DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008585-yigB-K20862NANA
AK018_00531366hypothetical proteinATGACCGAGGTCGAACCGGGCTTCTGGACGACCGTCGCCGACGTGGTCGCCGCCGTGAGCCTGCTCGCCGGGGCGTTCCTGACCCTCGCGGCGGCGGTCGGCGCGCTGCGCTTCGACTCGTTGCTGGCGCGCATGCACGCGATCACCAAGCCGCAGGTGCTCGGGCTCATCCTGCTGCTGCTCGGGCTCGCGCTCCGGGTCCGCAGCTGGTCGGCGGTGGCGATGCTCGTCCTGGTCGTCGTCTTCCAGCTCGCGACGGCGCCGGTGTCCGCCCACCTGGTCAGCCGTGCCGGCTTCCGCACCGGCAAGGTCGACCCGGACACGCTGGTGCCCAACGAGATGGACCCCGGGGCGCGCCGGGACTAGMTEVEPGFWTTVADVVAAVSLLAGAFLTLAAAVGALRFDSLLARMHAITKPQVLGLILLLLGLALRVRSWSAVAMLVLVVVFQLATAPVSAHLVSRAGFRTGKVDPDTLVPNEMDPGARRDPGPT0013925_259DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013925-mnhG-K05571NANA
AK018_00532351hypothetical proteinATGACCGGCGTCGTCGTGGTGGCCGCGGTGATGGTGGCCGTGGCCGCGCTGCTGGCCCTGGTGCGCATCGAACGCGGGCCGTCGATGCTCGACCGCGCGCTCGGGCTGGACCTGCTCGCGGCGACCCTCGTCGGCGCGATCGCGATCGAGGCGGCCTGGAACCGGCGGACCGAGACCATCCCGATCCTCGTCGCCCTGTCCCTCGTGGGCTTCGTCGGCTCGGTGGCCATCGCGTGCTTCGCCGCCCGGGAGCCGTCGCGCACGGAGCGCCGGGCCGTGGACGACCGGGCTGCAGAAGATCGGGCTGCGGACGACCGGACCGCGGACGACCGGGCGGAGGAGGACCGATGAMTGVVVVAAVMVAVAALLALVRIERGPSMLDRALGLDLLAATLVGAIAIEAAWNRRTETIPILVALSLVGFVGSVAIACFAAREPSRTERRAVDDRAAEDRAADDRTADDRAEEDRPGPT0013920_230DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013920-mnhF-K05570NANA
AK018_00533582hypothetical proteinATGACCGGCGCCGAGTCGGAGCACGCGCGGGGCGGCCTCGGCCGTGTCCTGGCCCAGTGGCCCGCCCTGGTCGGGCTCACCCTGGTCTGGGTGCTGCTGTGGGGGCAGCTCTCGTGGGGGAACGTCGTGGGCGGGCTGCTGCTGGCGGTGCTCGTCGTCGTCGCCTTCCCGCTGCCGCCGATCCCGTCGCGGGGGACGTTCCGCCCGGTGCCGTTCGCCGGTCTGCTCGGCCGGTTCGTCACCGACCTCGTGGTGGCCTCGTTCCAGGTCGCGTGGGTCGCGGTCCGGCCCGGACCCCAGCCCCAGGGCGCCGTCGTGCAGGTGCGGATGCGCAACCCGGACGACGTCTACCTCACGACCACGGCCGTGCTGTCCACGCTGGTGCCCGGCTCGATGGTCGTGGAGGCCGAGCGGGACACCGGGATGCTGTCCGTGCACGTGCTGGACATCGAGGGTTCCGGCGGCCCGGACGGGGTACGGCAGTACCTGCTGGACCTGGAGGACCGGGTGCTGCGCAGCTTCGCGCCGCGGGACGTGCTCGCGCGCTGCGCGGCGCAGGACGGGACGGAGGGGACCGGATGAMTGAESEHARGGLGRVLAQWPALVGLTLVWVLLWGQLSWGNVVGGLLLAVLVVVAFPLPPIPSRGTFRPVPFAGLLGRFVTDLVVASFQVAWVAVRPGPQPQGAVVQVRMRNPDDVYLTTTAVLSTLVPGSMVVEAERDTGMLSVHVLDIEGSGGPDGVRQYLLDLEDRVLRSFAPRDVLARCAAQDGTEGTGPGPT0013915_162DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013915-mnhE-K05569NANA
AK018_005341620mrpD_1COG0651Na(+)/H(+) antiporter subunit DATGATCCCCGCCGCCTGGGGTCCCGAGACCCTCGTCCCGCTGCCGGTGCTCGTGCCGCTGTTCGCCGCGGGCCTGACGCTGGCGCTGCACCGGTACGCCAACGTCCAGCGCACCATCTCCGTCGTCGCGCTCGTCGCGGCGACCGCGGCCTCCGTGGGACTCGTGTTCGCGGCCGACGGCGGTCCCGTCGTCGTCGACGTCGGCGGCTGGGCCGCACCGGTCGGCATCGCGCTGGTCGCCGACCGGCTGGCCGCCCTGATGCTCACCGTCAGCGGCGTCATGCTGCTGTGCGTGCTGCTGTACTCGCTGGGTCAGGGCGTGCCCGAGAGCGAGGCGGAGACCGTCGACGAGGCGCGGGTCGGCGGTGCGATCCCGGTGGCGATCTTCCACCCGACCTACCTGGTGCTGGCCGCCGGCGTCTCCAACGCGTTCCTCACCGGGGACCTGTTCAACCTCTACGTCGGGTTCGAGATCCTGCTCGCCGCGTCGGCCGTGCTGCTGACGCTCGGCGGCACCGCCGAACGGGTCCGGGCCGGGTCGGTGTACCTCATCGTGGCGCTGGCGTCCTCGGTGCTCTTCCTCGCGGCGATCGCCCTGATCTACGCGGCCACCGGCACGATCAACATGGCCCAGCTCGCCGTGCGCCTGCCCGAGATCGACGACACCGTCCGCGTGGCCCTGCAGCTCCTGCTGCTGCTGGCGTTCGGCATCAAGGCGGCCGTCTTCCCGCTGTCCTTCTGGCTGCCGGACTCCTACCCGACGGCACCCGCGCCGGTCACCGCGGTGTTCGCCGGCCTGCTCACCAAGGTCGGCGTGTACTCGATCCTGCGCACCCAGACGCTGATCTTCCCGGACAGCCCGGTCGTGGACCAGATCCTGCTCGTCGTCGCGCTGGCCACCATGGTGATCGGCATCCTCGGCGCCGTGGCCCAGAACGACGTCAAACGGCTCCTGTCCTTCACGCTGGTCAGCCACATCGGGTTCATGATCTTCGGCGTCGCGCTGGCCTCGGAGGCCGGGACCGCCGCCGCGATCTTCTACGTCGTGCACCACATCTCGGTGCAGACGGCGCTGTTCCTCGTGGTGGGGCTGGTCGAGTGGCGCGGCGGGTCCACGTCGCTGGACCGGCTCGGCGGGCTGGCCAAGCTCGCCCCGCTGCTGGCGGTGCTGTTCTTCGTCCCGGCGCTGAACCTGGCGGGCATCCCGCCGCTGTCGGGGTTCCTCGGCAAGGTCGGGCTGCTCACCGAGGGCGTGCGCGACGGCACCCCGCTGGCGTGGGCTCTCGTGGTGGGCTCCGTGGCGACCTCCCTGCTGACCCTCTACGCGGTGGTCAAGGCGTGGAACAAGGCGTTCTGGCAGACGGCGCCCGCCGAGGTCCCCGAGCACGCCCCGATGCCGCGCAGCATGGTCTGGCCGGCCGCGGCCCTGGTGACCTTCGGCGTCTCGCTGACCGTCGTCGCGGGTCCGCTGTACGGGTACGCCGACCGCTCCGCGGCGACGACGATGGACGGGTACACCTACATCGAGGCCGTGTACCCGGGCGGGTCCGACCGGGGCACGGGGCAGTCCGTGGACGTCACGGACGCGCAGATCGACAGCTCGGACGGGGGTGACGGATGAMIPAAWGPETLVPLPVLVPLFAAGLTLALHRYANVQRTISVVALVAATAASVGLVFAADGGPVVVDVGGWAAPVGIALVADRLAALMLTVSGVMLLCVLLYSLGQGVPESEAETVDEARVGGAIPVAIFHPTYLVLAAGVSNAFLTGDLFNLYVGFEILLAASAVLLTLGGTAERVRAGSVYLIVALASSVLFLAAIALIYAATGTINMAQLAVRLPEIDDTVRVALQLLLLLAFGIKAAVFPLSFWLPDSYPTAPAPVTAVFAGLLTKVGVYSILRTQTLIFPDSPVVDQILLVVALATMVIGILGAVAQNDVKRLLSFTLVSHIGFMIFGVALASEAGTAAAIFYVVHHISVQTALFLVVGLVEWRGGSTSLDRLGGLAKLAPLLAVLFFVPALNLAGIPPLSGFLGKVGLLTEGVRDGTPLAWALVVGSVATSLLTLYAVVKAWNKAFWQTAPAEVPEHAPMPRSMVWPAAALVTFGVSLTVVAGPLYGYADRSAATTMDGYTYIEAVYPGGSDRGTGQSVDVTDAQIDSSDGGDGPGPT0013910_594DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013910-mnhD-K05568NANA
AK018_00535495hypothetical proteinATGATCGTCCTGGAGAACACCCCGTCCGCGGTGCTCGTGCTCGCCGTCGGCGTGCTGTGCGGCGCCGGCGTGTACCTCCTGCTGGAGCGCCCGCTGACGCGGGTCCTGCTCGGGTTCATCCTGCTCAGCAACGGGGTGAACCTCATGCTGCTCGTCGCGGGCGGCCGGGCCGGCGCGTCGCCGATCGTCGGCAACGCGGGCGACGAGCCGATGAGCGACCCGCTGGCGCAGGCCATGACCCTCACCGCGATCGTCATCACCCTCGGGCTGTCGGCGTTCATCCTGGCGCTCGCGTACCGGTCCTGGCAGCTGCACGGCCACGACGAGGTCGCCGACGACGTCGAGGACCGCCGCGTCGCCCGGCAGGCGGCGCTCAACGCCCCCGCCTACCAGGACGCGGACGCCGCCGAGACCGGCGAGACGCTCGACGAGGAGGCCGCCACGGTGCACGACGAGGTCGCGGGCGACGACGCCGGGACGGAGGCGGACCGATGAMIVLENTPSAVLVLAVGVLCGAGVYLLLERPLTRVLLGFILLSNGVNLMLLVAGGRAGASPIVGNAGDEPMSDPLAQAMTLTAIVITLGLSAFILALAYRSWQLHGHDEVADDVEDRRVARQAALNAPAYQDADAAETGETLDEEAATVHDEVAGDDAGTEADRPGPT0013905_229DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013905-mnhC-K05567NANA
AK018_005362904ndhB_1NAD(P)H-quinone oxidoreductase subunit 2, chloroplasticGTGCTGCCAGTCCTGCTGCTGACGTTCGCACTGGCCCTGGCGGCGCCCGTCCTCGTGGCCCGGCTCGGCCGGCGTGCGTTCTGGATCCTCGCCCTGGGTCCTGCCGCCGCCGCGGGCTACGCGCTGGCGAGCACGACGGCGGTGCTGGACGGCCGGTACCCGGTCACCAGCATCCCGTGGGTGCCGGGGCTGGACCTGTCCCTGGACCTGCGCCTCGACGCGCTGTCCTGGCTCATGCTGCTCGTCGTCGGCGGGGTCGGCGCCCTGGTGCTGGTGTACTGCTCGGCCTACTTCGCCCGGGACGCGTTCGGCACCGGGCGGTTCGCCGCGACGCTGACCGCGTTCTCGGGAGCGATGATCGGCCTGGTGGTCGCCGACGACCTGCTGCTGCTCTTCGTCTTCTGGGAGCTGACCACGGTCTTCTCCTACCTGCTGATCGGCCACTACGCCGACCGCAAGGCGTCGCGGCGGGCCGCGATGCAGGCCATCGTCGTCACCACGGCCGGCGGGCTGGTCATGCTGGTCGGGCTCATCGTGCTCGGCGTCTCGACCGGCACCTGGCGGCTCTCCGAGGTCGTGGCCGCGCCGCCCACGGGAACCGCCGCCGTCGTGGCGTCGCTGTGCCTGGTCGCCGGCGCCGCGACCAAGTCGGCGCTCGTGCCGTTCCACTTCTGGCTGCCCGCCGCGATGGCGGCGCCCACGCCGGTGTCGGCCTACCTGCACGCCGCGGCGATGGTCAAGGCCGGCGTCTACCTGGTGGCGCGGTTCGCGCCCGGCCTGTCCGGGGAGCCGGCATGGCGCTGGTCGGTCGTCGCCCTCGGCGGGGCGACCCTGCTCGTCGGCGGCTACCGGGCGCTGCGCCAGCACGACCTCAAGCTCGTGCTGGCCTTCGGCACGGTCTCCCAGCTCGGTCTGCTCGTGCTGCTGCTCGGGCTGGGGACGCGGGCGGCCGCGCTCGCGGGGCTGGCCCTGCTCGGCGCGCACGCCATGTTCAAGGCGACCATGTTCCTCGTGGTCGGGGCCGTCGACGTCGCGACCGGCACGCGTGACCTGCGCCGGCTGTCCGGGCTGTGGCGGGCCATGCCGGTCACGGCCGCCGCCGGGCTGCTGGCCACCGCCTCCATGATCGGGGTGCCGCCGACGGCGGGCTACGTCGCCAAGGAGGCCGCCCTGGAGGGGCTCTGGCACGACGTGACCCACGGGGCGGACGCCCTGGAGGTGGCCGCGCTGGCCGGCGTCGTCGTCGGCTCGATCCTCACCGTGACCTACGGTCTGCGGTTCTGGTGGGGCGCGTTCGGCACCAAGGCGTCGCCGGCCGACGGCGGCGCGCCCGACGGCGGCACCCCGGCCGTGCCGCACCGCCGCCAGCCCGTGCTCCTGGTCGCGCCGCCCGCGGTGCTCGCCCTCGGCGGCCTGCTCGTCGCGCTCGTGCCGTCGGTCGGGGAGCGCGTGCTGTCCCCCTACGCCGACACCTACCCGGCGGGGGACCCGGGCCACCTGGTGCTGTGGGGCGGCCTGACGCCCGCGCTGGCGACCTCCGCCGTCGTGCTCGCGGCCGGCGCCGTGCTGTTCTGGCAGCGCGTGCGCGTGGAGCGCTGGCAGGCCGCGATGCCGTCCCCGCGCGGCGCCGACGTCGTCTACCGGCGGTCGATGCGCCGCCTGGACGACCTCGCCGCCGACGTCACCGGCGCCACCCAGCGCGGCTCCCTGCCGTTCTACCTCGGCATCGTGCTGGTCGTCCTCGCCGTGGCTCCCGGCGCGGTCATCCTGTCGGGGCTGCTCTCGGGCAGCACGGTCGCCGTCGACGTCGTGCCGTGGGACCGGCCGGCGCAGGCCGCGGTCGTGGGGATCGTCGTCGTGGCGGCCGTGCTCGCGACGCGCGCCCGGCGGCGGCTCAAGGCCGTCGTCCTGGTCGGGGTGGCCGGCTACGCCAACGCCGCGCTGTTCCTGCTGCACGGTGCGCCGGACCTGGCGCTCACCCAGGTCCTCGTCGAGACGGTGACGCTCGTGGTGCTGGTCCTCGTGCTGCGCCGCCTGCCGCCCTACTTCACCGACCGGCCGCTCGCCGCCAGCCGGTGGGTGCGCCTCGCCCTGGGCGTGACGACGGGGGTGGTCATGATGGCGCTCACCCTCGCGGCTCCGCTGGCGCGCGTGCAGCAGCCCATCAGCGTCGACTTCCCCGCGGAGTCCGTCGAGTACGGCAGCGGGCGCAACATCGTCAACGTCACGCTCGTCGACATCCGCGCCTGGGACACCGTGGGCGAGCTGTCGGTGCTGCTCGTCGCCGCCACGGGCGTCGCGTCCCTGGTCTTCCTGCGCCAGCGCAGCGGAGCGGTGCTGCGGCTGTCCCGGGCACCCGGCGCCGACCGCGACGACGGCGGCCCGCGCCGCGGCGTGTGGCTCGCCGCCGGCCGCACCCTGACGCCCGAGCGACGGTCGGTGATGTTCGAGGTCGTCACGCGACTGGTCTTCCACGCGATGGTCGTGTTCGCGCTGTTCCTGCTGTTCAGCGGCCACAACTCCACCGGCGGCGGGTTCGCGGCCGGCATGGTGGTGGGGATCGCCCTGGCGGTGCGCTACCTCGCCGGCGGCCGGTACGAGCTCGGCGAGGCGATGCCCGTGCCGCCGGGCCTGCTGCTCGGCACCGGCCTGTTCCTGTCGGCGGGCGTGGGGCTCGTCGCCCTGCTGGGCGGCAACGAGGTGCTGGAGAGCTTCACCTACGACGTCCACGTCCCCCTGCTGGGCGACGTCCACCTGGTGACGTCGCTGTTCTTCGACGTCGGGGTGATGCTCCTGGTGGTCGGCCTCGTCCTGGACCTGCTGCGCACGCTCGGCGCCGAGATCGACCGGCAGGGCGAGCTGCCGGAGAACGTCGTGGCCGTCGTGGGGGAGGGGTCGCGATGAMLPVLLLTFALALAAPVLVARLGRRAFWILALGPAAAAGYALASTTAVLDGRYPVTSIPWVPGLDLSLDLRLDALSWLMLLVVGGVGALVLVYCSAYFARDAFGTGRFAATLTAFSGAMIGLVVADDLLLLFVFWELTTVFSYLLIGHYADRKASRRAAMQAIVVTTAGGLVMLVGLIVLGVSTGTWRLSEVVAAPPTGTAAVVASLCLVAGAATKSALVPFHFWLPAAMAAPTPVSAYLHAAAMVKAGVYLVARFAPGLSGEPAWRWSVVALGGATLLVGGYRALRQHDLKLVLAFGTVSQLGLLVLLLGLGTRAAALAGLALLGAHAMFKATMFLVVGAVDVATGTRDLRRLSGLWRAMPVTAAAGLLATASMIGVPPTAGYVAKEAALEGLWHDVTHGADALEVAALAGVVVGSILTVTYGLRFWWGAFGTKASPADGGAPDGGTPAVPHRRQPVLLVAPPAVLALGGLLVALVPSVGERVLSPYADTYPAGDPGHLVLWGGLTPALATSAVVLAAGAVLFWQRVRVERWQAAMPSPRGADVVYRRSMRRLDDLAADVTGATQRGSLPFYLGIVLVVLAVAPGAVILSGLLSGSTVAVDVVPWDRPAQAAVVGIVVVAAVLATRARRRLKAVVLVGVAGYANAALFLLHGAPDLALTQVLVETVTLVVLVLVLRRLPPYFTDRPLAASRWVRLALGVTTGVVMMALTLAAPLARVQQPISVDFPAESVEYGSGRNIVNVTLVDIRAWDTVGELSVLLVAATGVASLVFLRQRSGAVLRLSRAPGADRDDGGPRRGVWLAAGRTLTPERRSVMFEVVTRLVFHAMVVFALFLLFSGHNSTGGGFAAGMVVGIALAVRYLAGGRYELGEAMPVPPGLLLGTGLFLSAGVGLVALLGGNEVLESFTYDVHVPLLGDVHLVTSLFFDVGVMLLVVGLVLDLLRTLGAEIDRQGELPENVVAVVGEGSRPGPT0013895_434DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013895-mnhA-K05565NANA
AK018_005372037resA_1Thiol-disulfide oxidoreductase ResAGTGAGCACCACCCCCGCCCTGCCCAAGGTCCGCGCGTCCGAGCTCGTCGGCCGCGGCTGGTTGAACACCGGCGGCCGCGACCTGGACCTGGCCGCCCTGCGCGGCAAGATCGTCGTGCTGGACTTCTGGACCTTCTGCTGCCTGAACTGCCTGCACGTCCTGGACGAGCTGCGCGAGCTCGAGGAGGCGCACCGCGACGTCCTGGTGATCGTCGGTGTGCACTCGCCGAAGTTCGCCCACGAGGCCGACCCGGACGCCCTGGCCGCCGCGGTCGAGCGCTACGACGTGCGCCACCCCGTCCTGGACGACCCGGAGCTCGTGACCTGGGACGCCTACACCGCGCGGGCGTGGCCCACGCTGGTCGTCATCGACCCGGAGGGGTACGTCGTGGCCCAGATGGCCGGGGAGGGGCACGCCTCGGCGGTGGAGGCGCTGGTGCGCGACCTCGTGGCCGAGCACGACGCGAAGGGGACCCTGCACCGCGGCGACGGCCCCTATGTGCCGCCGACGCCGGAGCCGACCACGCTGCGGTTCCCCGCGGCGGCGCTGACCCTGCCGGGCGGCACCCTGCTGGTGGCCGACGCCGGGCACCACGCGCTGGCCGAGCTCGCGCCCGACGGCGAGACCCTGGTGCGGCGCCTCGGCTCCGGCGAGCGCGGACTGGCCGACGGCGGCCCCGGCCCCGACGGCACCCATGCCGCCCGGTTCAGCGAGCCGAACGGGTTGTGCCCCGTGCCCGAGCACCTGCGCCCGGAGCTCGGCTACGACGTCCTGGTGGCCGACACCGTCAACCACGTCCTGCGCGGTGTACACCTGGAGTCCGGCCAGGTGTACACCGTTGCCGGGACCGGTCACCAGTACATGGTCGGCGGTCAGGAGAACGTCGAGCTGCCGGGCCGGGCGCTCCGCGGGCACGCCGCCGACGAGGAGCTGCCCGCGACGTCGGTCCGGCTGTCCTCCCCGTGGGACGTGGCCTGGTCCGGACCGCTGGGCGCGTTCGTGGTCGCGACGGCCGGGAACCACACCCTGTGGGCGTTCGACCCGGTGGCGTCCGACGGGTACGGCAGCCTGCGCCTCCTGGCGGGCACGATGAACGAGGGCCTCGAGGACGGGCCCGGCGAGCAGGCGTGGTTCGCCCAGCCCTCCCGGCTCGCGCCGACCCTCGACGACGACCGCCGGCCCGACGGCGGGTTCTGGCTCGCCGACGCCGAGACCTCGGCGCTGCGCCGGGTCGTGCCTGCCGACGACGGGTCCGACGACCCGGCCGACGACCCGGCCGACACCGCCGGCGGCAGCCGCGCCGTCGTGGTGCGGACCGCCGTCGGGCAGGGGCTGTACGACTTCGGGCACCGGGACGGAGCCGCCGACCAGGCGCTGCTGCAGCACCCCCTCGGGGTCGCCACGCTGCCGGACGGGTCCGCCGTCGTCGCCGACACCTACAACGGCGCGCTGCGCCGGTACGACCCGCGCAGCGGGCAGGTCACCACCCTGGCGACCGGGCTGGCCGAACCGAGCGACGTCGTCGTGCAGGCCGACGACACCGCCGTGCACCTGCTCGTCGTCGAGTCCGCCGCGCACCGGCTGACCCGCGTGGCGCTGCCCGCGGACCTCGCCGGCGAGGTGCTGGACGCGGGCGCGCACCGCGTCGCCCGGGAGGCGACCGCGATCAGCGGCGGAGCGGTGCACCTCGAGGTGCCGTTCACCCCGGCGCCCGGCCAGAAGCTCGACGACCGCTTCGGACCGTCGACCGAGCTGCGGGTCAGCGCCACCCCGCCCGAGCTGCTGCTCGACGGCGCCGGCGACGGCACGGACCTGCGGCGCGTCCTGCGCATCGACCCCGCCGTCGGTGAGGGCGTCCTGCACGTCACCGCCAAGGCGGCCTCCTGCGACCTGCCCCCGGACGACGTGGTGCTCGGCCCGGACGGCGAGCCGGAGGACTTCTTCCCGGCCTGCCACCTCGCCCAGCAGGACTGGGGAGTGCCGGTGACGGTCGCGGCCGACGGCGCCGCGACGCTCACCCTGCCCCTGCGCGGCTGAMSTTPALPKVRASELVGRGWLNTGGRDLDLAALRGKIVVLDFWTFCCLNCLHVLDELRELEEAHRDVLVIVGVHSPKFAHEADPDALAAAVERYDVRHPVLDDPELVTWDAYTARAWPTLVVIDPEGYVVAQMAGEGHASAVEALVRDLVAEHDAKGTLHRGDGPYVPPTPEPTTLRFPAAALTLPGGTLLVADAGHHALAELAPDGETLVRRLGSGERGLADGGPGPDGTHAARFSEPNGLCPVPEHLRPELGYDVLVADTVNHVLRGVHLESGQVYTVAGTGHQYMVGGQENVELPGRALRGHAADEELPATSVRLSSPWDVAWSGPLGAFVVATAGNHTLWAFDPVASDGYGSLRLLAGTMNEGLEDGPGEQAWFAQPSRLAPTLDDDRRPDGGFWLADAETSALRRVVPADDGSDDPADDPADTAGGSRAVVVRTAVGQGLYDFGHRDGAADQALLQHPLGVATLPDGSAVVADTYNGALRRYDPRSGQVTTLATGLAEPSDVVVQADDTAVHLLVVESAAHRLTRVALPADLAGEVLDAGAHRVAREATAISGGAVHLEVPFTPAPGQKLDDRFGPSTELRVSATPPELLLDGAGDGTDLRRVLRIDPAVGEGVLHVTAKAASCDLPPDDVVLGPDGEPEDFFPACHLAQQDWGVPVTVAADGAATLTLPLRGNANANANANA
AK018_00538222hypothetical proteinATGGCCACGATCGACCAGGCCCGTGCCGCCAAGCGGTCGCTGCGGGAGCGCATCGCGCAGGTCGACGGAGTCTGCGGAGTCGGGCTCGCCCAGCGCGGCGACGCCCACGACTGGGTGCTGCAGGTGAACGTCACCACGGTCGGGGCGCGCAAGGACGTCCCGCCGGCGGTCGAGGGCGTGCCGGTGCGGGTGCACGTGGTGGGGGCCGTCCAGGCGCTGTGAMATIDQARAAKRSLRERIAQVDGVCGVGLAQRGDAHDWVLQVNVTTVGARKDVPPAVEGVPVRVHVVGAVQALNANANANANA
AK018_00539837COG0656putative oxidoreductase/MSMEI_2347GTGACGACGATTCCCACCGTGACCCTGAACAACGGCGTCCCGATCCCCCAGCTCGGCTTCGGGACCTACAAGATCGGCGACGACGAGACCCGCGACGCCGTGCTCAGCGCCCTCGAGGCGGGGTACCGGCACATCGACACCGCGCAGATGTACCGCAACGAGCGCGGCGTCGGCGACGCCATCGCGGCCTCCGGCCTGCCGCGTGGCGAGGTCTTCGTGACGAGCAAGCTGAACAACGGCCACCACGCCTACGACGACGCCCTCGCCTCCTTCGACCGGACCCTGTCGGAGCTGCAGCTCGAGTTCGTGGACCTGTTCCTCATCCACTGGCCGCTGCCCGCCGTCGGGCGGTACCTCGAGGCGTGGCGGGCGCTGGAGGAGATCCTGCGCTCCGGCCGCGCCCGCGCCATCGGGGTGTCCAACTTCCAGCCCGCCCACCTGCGCAGCCTCCTGGACGAGTCCACCGTCGTGCCCGCGGTGAACCAGATCGAGATGCACCCGTGGTTCACCAACGCCGACGTGCGCTACTTCGACGAGAGCCACGGCATCACCACCGAGGCCTGGTCGCCGCTCGGTCGCGGCGCCGTGCTCGAGGACCCGGTGATCACCGGCATCGCGGAGGACCACGGCGCGACGCCGGCCCAGGTCGTGCTCGCCTGGCACCTGGCCCGCGGCGTCGTCGTCATCCCCAAGTCCGTGACGCCGTCGCGCATCGCCTCGAACCTGCGGGCCGTGGACGTCGAGCTGAGCGAGGACGAGGTCGCGGCGATCACCGCCCTGGACCGCGGCGAGCGGCAGGGTTCCCACCCCGACACCGAGAACCGGACAGACCGCTGAMTTIPTVTLNNGVPIPQLGFGTYKIGDDETRDAVLSALEAGYRHIDTAQMYRNERGVGDAIAASGLPRGEVFVTSKLNNGHHAYDDALASFDRTLSELQLEFVDLFLIHWPLPAVGRYLEAWRALEEILRSGRARAIGVSNFQPAHLRSLLDESTVVPAVNQIEMHPWFTNADVRYFDESHGITTEAWSPLGRGAVLEDPVITGIAEDHGATPAQVVLAWHLARGVVVIPKSVTPSRIASNLRAVDVELSEDEVAAITALDRGERQGSHPDTENRTDRPGPT0001320_1413DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
AK018_00540285ptsHPhosphocarrier protein HPrATGGAGCGCCACACCGTCGTCGCGATCCGCGAGGGACTGCACGCCCGCCCGGCGGCCCTGTTCACCCGCCTCGCGGCGTCCCAGCCCGTCCCCGTCCGGATCGCCCGGGACGGCGGCGACCCCGTCGACGCCGCGAGCATCCTCGCGGTGATGACCCTCGGGGCCGACGCCGGCACCTCGGTCACGCTGTCGGTCGACGACGGCGCACCGGGGTCCGACGAGGACACGGCCGCCGCCGTGCTGGACCGGCTCGAGGAGTTCCTCCGCGACCCTGAGCCGTCCTGAMERHTVVAIREGLHARPAALFTRLAASQPVPVRIARDGGDPVDAASILAVMTLGADAGTSVTLSVDDGAPGSDEDTAAAVLDRLEEFLRDPEPSPGPT0016875_472DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0016875-ptsH-K02784NANA
AK018_005411674ptsI_1COG1080Phosphoenolpyruvate-protein phosphotransferaseATGAGCACCACTCTCTCAGGAGCGCCGGTCAGCCCCGGCCGGACCGCCGGCCCGGCCGCGACCATGCCCCCGCCCGTGCCCGAGCCCCGCACCACGCGGCTCGGCAGCGAGGACGTGGAGGCCGCCGTCGGGCACCTCACCGCGGCCGCCCGCGCCGTGCGGGACGAGCTCACCGACCGGGCAGGACGGGCGACCGGCACCGCGGCCGACCTGCTCGCCGTCACCGCGGCGATGGCGGCGGACCCGGCCCTGGTGGCGGACGCCGAGCGGCGCATCCGGAACGACCACCTCACCCCGGAGCGCGCGATCTGGGACGCGGCGCGCGGCCTGATCAAGCAGTTCGAGAGGCTCGGCCCGCCGCTCGCCGAGCGCGCCCGCGACGTGCGGGACGTCCGCGACCGCATCGTCGCCGAGCTCATCGGCGTCCGCCCGCCCGGCGTCCCCCGCCTGGACCACCCGTTCGTGCTCGTCGGGCACGACCTCGCCCCGGCCGACACCGCCACGCTCGACCCCGAGGTCGTGCTCGGCGTGGTCACCAGCGGCGGCGGGCCGACCTCGCACACCGCCATCCTCGCCCGGGCGCTGGGGATCCCCGCCGTCGTGGCGGTCCGCGGCTCCGAGGAGATCGCCGACGGCGACACGGTGCTGCTCGACGGGTCCGCGGGGGTCGTGGTCCTCGACCCCGACCCCGACACCGTCGCGGCCGCGCAGCAGCACGAGGCGGAGCGGCGGGTGTTCGACGGCACCGGGCGCACCGCCGACGGCACGCGCGTCGAGCTGCTCGCCAACGTCGCCGACCCGGCCGGGGCGCAGGCCGCGCTCGAGGCGTCGGCCGAGGGCGTCGGGCTGTTCCGCACGGAGTTCTGCTTCCTCGGCCGCAGCACCGAGCCGGGCGTCTCCGAGCAGGTGGCCGCCTACCGCCAGGTGCTCTCCGCCTTCCCGCGGCGCAAGGTCGTGGTGCGCACCCTCGACGCGGGGGCCGACAAGCCGCTGCCCTTCGTCACCGCCGACGGCGAGCCGAACCCGGCGCTCGGGGTCCGCGGCCTGCGCACCGCGGCCACGCGGCCCGGGGTGCTCGACCGGCAGCTGCAGGCGATCGCCGTGGCGGCCGAGGCCGAGAACGCCGAGGTGTGGGTGATGGCCCCGATGGTCGCCACCGCCGGCGAGGCCGCCGACTTCGTCGCCGCGTGCGAGGCGCACGGGCTGCGGACCGCCGGGGTGATGGTCGAGGTGCCCGCCGCGGCGCTGCGGTCCGCCGACGTGTTCGCGCACGCCGCCTTCGGCTCGATCGGCACCAACGACCTCATCCAGTACACGATGGCGGCCGACCGCATGCTCGGCGAGCTCGCCGCCCTGTCCACGCCGTGGCAGCCCGCGGTGCTGGAGCTGATCCGCGCGACCTGCACCGGTGCCGCCCGGCACGACCGTCCCGTCGGGGTGTGCGGCGAGGCGGCGGCGGACGCCACCCTCGCGCCCGTGCTCGTCGGCCTCGGCGTGCGGTCGCTGTCGATGACGCCGCGGGCGCTCGCCGACGTCGCGGCGGTCCTCGAGCGGGTCACGTTCGACGAGTGCGTCGACCTCGCGCGGCTGGCCCTGGCCGAGTCCGACCCGATGGTGGCGCGGCACGCGGTGCGGGACGCGATCCGGCCGGTGCTCACCGACCTCGGGCTCTGAMSTTLSGAPVSPGRTAGPAATMPPPVPEPRTTRLGSEDVEAAVGHLTAAARAVRDELTDRAGRATGTAADLLAVTAAMAADPALVADAERRIRNDHLTPERAIWDAARGLIKQFERLGPPLAERARDVRDVRDRIVAELIGVRPPGVPRLDHPFVLVGHDLAPADTATLDPEVVLGVVTSGGGPTSHTAILARALGIPAVVAVRGSEEIADGDTVLLDGSAGVVVLDPDPDTVAAAQQHEAERRVFDGTGRTADGTRVELLANVADPAGAQAALEASAEGVGLFRTEFCFLGRSTEPGVSEQVAAYRQVLSAFPRRKVVVRTLDAGADKPLPFVTADGEPNPALGVRGLRTAATRPGVLDRQLQAIAVAAEAENAEVWVMAPMVATAGEAADFVAACEAHGLRTAGVMVEVPAAALRSADVFAHAAFGSIGTNDLIQYTMAADRMLGELAALSTPWQPAVLELIRATCTGAARHDRPVGVCGEAAADATLAPVLVGLGVRSLSMTPRALADVAAVLERVTFDECVDLARLALAESDPMVARHAVRDAIRPVLTDLGLPGPT0002025_3088DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0002025-ptsI-K08483NANA
AK018_00542450hypothetical proteinATGACCCTGCTCGTCAGCTCGCCCGTCGCCGGGACCGTCGTCGAGGTCGGCGAGGTCCCGGACCCGGTCTTCTCCGCCGGGATGGTCGGCCCCGGCACCGCCGTCGAGCCCGCGGGGTCGCAGGTCCTGGCACCGGTCGACGGGCGGGTGGTCAAGCTGCACCCGCACGCCTTCGTGGTGCAGCCGCCGTCCGGTCCGGCGGTGCTGGTGCACCTGGGGATCGACACCGTCCAGCTCGGCGGGGCGGGGTTCACGGTCCACGTCGCCGAGGGCGACGCGGTGGTCACGGGTCAGCTCCTGGTCGAGTGGGACCCGGCGGAGGTGCGTGCCGGCGGGCGCTCGGCGGTGTGCCCGGTGGTGCTGCTGGAGGCGTCCCCGGAGCAGGTGGAGCTGCGCGCCGCGCCCGGGGCGGCGGTCGAGCCCGGGGACCCCCTGCTCGCCGTGCCGTGAMTLLVSSPVAGTVVEVGEVPDPVFSAGMVGPGTAVEPAGSQVLAPVDGRVVKLHPHAFVVQPPSGPAVLVHLGIDTVQLGGAGFTVHVAEGDAVVTGQLLVEWDPAEVRAGGRSAVCPVVLLEASPEQVELRAAPGAAVEPGDPLLAVPPGPT0014090_1512DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0014090-crr-K02777NANA
AK018_00543747nagRCOG2188HTH-type transcriptional repressor NagRATGGCGACGCGCCCCGCCGGCCGGCACGGGACCGGTCAGAAGTACCGCGTGGTCCGCGCCTACCTGGCCGAGCTCGTGGACCAGCTCGCCGTGGGCGACGCGATCCCGTCCGAGCGCGCCCTGGGGGAACGCTTCGACGTCTCGCGCATGACGGTCCGGCAGGCGATCGACGCCCTCGTCGCCGACGGGCTGCTGGAGCGGGCGCAGGGCCGCGGCACGTTCGTGGCACCCCCGCCGGCCGACCTCGAGATGCGCCTGACGACCTTCGGCGAGGAGGTGCGGCGCCGCGGCATGACACCCGGCTCGCAGGTGCTCGAGGCCGCGACACGCCCCTGCCCGGCCGCGGTGGCGGACGTCCTGGCGCTGCGACCCGGCGACGACGCGCACCGGGTGCTGCGGGTCCGCACCGCCGACGGCGAGCCCTGGGCGGTCGAGGACGCCTGGATCCCGGCCGCTCTCGCGCCCGACCTGCTCGACGACGGGGTGCCGGAGAGCCTCGACGCCGAGCTGCGGCGCCGCGGCCACGTCCCGACCGGGGGCGACGAGACGATCACGGCCGCCGACGCCACCGACACCGAGTGCCGGCTCCTGAGCATGACGGGGACCCACGCCGTGATGCGGATCGAGCGGCGCACGTACGCCGCGCAGACGCCCCTCATCCACTCGCGGTTCTCCTACCGGGGCGACCGCTACAGCGTGTTCGTCCCGCTCGGCGAGGCCCGCTCGCCCGTCCCCGTGTGGTCCTGAMATRPAGRHGTGQKYRVVRAYLAELVDQLAVGDAIPSERALGERFDVSRMTVRQAIDALVADGLLERAQGRGTFVAPPPADLEMRLTTFGEEVRRRGMTPGSQVLEAATRPCPAAVADVLALRPGDDAHRVLRVRTADGEPWAVEDAWIPAALAPDLLDDGVPESLDAELRRRGHVPTGGDETITAADATDTECRLLSMTGTHAVMRIERRTYAAQTPLIHSRFSYRGDRYSVFVPLGEARSPVPVWSNANANANANA
AK018_005441167hypothetical proteinATGGATCTGACCCAGGCGCGCGAGATCAAGGCCCAGCTCACCGGCTACGCCCGTGACCTGGCGGAACGCTACGGGGTCGCCGTCGGCCCGCAGTCCGCGGCCACGACGGCCCCCGACCCGGTGCGTGCCCCCACGCTCGCGATCGGCCTGGCCCCCGCCGGACGGTCCGGCGAGTTCGAGATCGCCGTGCGCTACCGGCTCGGCCTGCCGGCGGCCCGCGCCGTCGTCCGCCGGATCGCCGCCGAGGCGGGGCCGTCGCCCGACGTGCGGCGCACCGGCCGCATCCGCCGGCTCGGGCCCGGACGACGGGGGGCCACCCGCGACCCCGGTCTCGACCCGCAGCCGCCGGTCGCCACCGCCCTCGCCGTCGGCGAGACGGGCCGCGTGCGACCGCTGCGCCCCGGGGTGTCGCTCGCGCACGTCGACGTCACCGCCGGCACGCTCGGCGCGTTCGTGGTGGCCGACCCGGCGTGCCCGGCCGGCGGGCACCTGCCCGGCGGCCCGGGCTCCGTCTACGCGCTGTCGAACCGCCACGTGCTCGACGGCGTCCCCGGCGACGGGGTGCTCCAGCCCGGGCCCGCGGACGGCGGTCGCGACCCCGTCGACCGCGTCGGCGCCGTCGCGGCCGTGGTGCCGCTGGCCGCGGGGGAGCGCGCGGCGGTCGACGCCGCCGTCGCCCTGCTGGACTCCGCGGAGGTGGACCCGACCTACCCGGTGGGTCCCGTGACGACGACGGCGGAGGCGGTGCCCGGCGACACGGTCGAGAAGATCGGACGGACCACCGGCCACACGCACGGGCGGGTCAGCGCCGTGGAGATGGACGAGGTGCTGGTCGGGTACGGGCCCGAGCTCGGCGTCCTGGCGTTCGACGGCCAGATCGAGGTGGAGTCGACCGGCACCGGGCCGTTCTCCCGGGGCGGGGACTCCGGGTCGCTCGTGTACCGCCGCGACGCCACCGCCCTGGGGCTGCTGTTCGCCGGCTCGGAGACCGGAGGGCCCCACGGGACCGGGCTGACGTACGTGAACCCGATCAACGCCGTCGTCGGTGCCCTGGGCGTGCGCCTCCTCGGAGCGGCCGGCCCGGAACACACGGGTCAGGACCGTACGGGTCAGGACCACACGGGGACGGGCGAGCGGGCCTCGCCGAGCGGGACGAACACGCTGTAGMDLTQAREIKAQLTGYARDLAERYGVAVGPQSAATTAPDPVRAPTLAIGLAPAGRSGEFEIAVRYRLGLPAARAVVRRIAAEAGPSPDVRRTGRIRRLGPGRRGATRDPGLDPQPPVATALAVGETGRVRPLRPGVSLAHVDVTAGTLGAFVVADPACPAGGHLPGGPGSVYALSNRHVLDGVPGDGVLQPGPADGGRDPVDRVGAVAAVVPLAAGERAAVDAAVALLDSAEVDPTYPVGPVTTTAEAVPGDTVEKIGRTTGHTHGRVSAVEMDEVLVGYGPELGVLAFDGQIEVESTGTGPFSRGGDSGSLVYRRDATALGLLFAGSETGGPHGTGLTYVNPINAVVGALGVRLLGAAGPEHTGQDRTGQDHTGTGERASPSGTNTLNANANANANA
AK018_00545255hypothetical proteinATGGATCCCGTCCTGGACCCTCTCTCGGGTGTGATGAGGAATCCGACGGTCACCGACGTGCGCGCCGCTGTCCGCTGGGCTCTGAGCCACGACCTCGCCGCGCTGAGGGACTACCGCGAGGTCGCCCTGCTCGAGCCGAGCGCCCGGTGGCAGGCCGACGCGACCCTGGTCGCCCGCTGGCAGCAGGCCACGGGCAACGCCGTGACGTTCGCCTGGACGCGTGACCCGGTGCCGCTGCCACGGGTCACGCGCTGAMDPVLDPLSGVMRNPTVTDVRAAVRWALSHDLAALRDYREVALLEPSARWQADATLVARWQQATGNAVTFAWTRDPVPLPRVTRNANANANANA
AK018_005462610hypothetical proteinATGAACCGCGTCAGGCAGAACCCGTGGGCGGTCGCAGCGGTCGCCCTCCTCCCCGTCCTCGTGCTGGGCATCCTGCTGGCGTCCCTGTGGAACCCGGTCGACCGCCTCGACACGGTCCCCGCCGCGATCGTCAACGACGACGAACCCGTCGAGATGGACGGCCAGACCGTCCCGCTCGGCCGCCAGCTCGCCGCCGGGCTGGTCGGCGGTGCCGAGGACTCGGACGTGAACTACGACTGGACCCTCACCGACACCGAGCAGGCGGCCGAGGGGCTCGACGACGGCACCTTCGCCGCCGTGGTGACGATCCCCGAGGACTTCTCGGCCGCCGCGACGTCGTTCGGGTCCGAGGACCCGACCGAGGCGCGCCAGGCGACGATCGACGTGTCCACGCCCGCCGGCGGCCGCGTGGTCGACGACGCGCTGGCCCGCATCGTCGCCACCACGGCCACGACGGTGCTCGGGTCCTCCCTGACCGAGACGTACGTGGACAACGTGCTGATCGGCTTCAACGACCTCTCCGACGGGATCGGGGAGGCCGCCGACGGGGCGAACCAGCTCGCGGACGGTGTCGACGAGACCGCCTCCGGGGCCGACGACCTGGCCGACGGCGCCCGGCAGTACGCCGACGGTGTCGGCCAGTTCGCCTCCGGTGTGGGCGAGGCGGCGGACGGTGGCTACGCGCTGGCCGACGGCGCGAGCCAGTTCGCTTCCGGCGTCGGGCAGGCGGCCGACGGTGGCTACGCGCTGGCCGACGGCGCGGACCAGTTCGCCTCCGGCGTCGGGCAGGCCGCGGACGGTGGCTACGCGCTGGCCGACGGCGCCCGGCAGTACGCCGCCGGTGTCGGCGAGGCCGCCTCCGGGGCGGACGAGCTCGCGACCGGTGCCGACCAGTACGCGGCCGGCGTCGGGTCGGCGGCGACGGGAGCCGAGGAGCTGGCCGCCGGTGCCGGGCAGGTCGCCGACGGCGTCGACGGCATCACCGGGGGCATCGTGGAGAGCGCCGACGGGGCCGACGACCTGGCCGCCGGGGGCTACGAGGTGGCCGACGGCGCGGACCAGGTGGCCACCGGGGTGCGCCAGCTCGCCGACCAGGCCGGCCAGATCGACGCGCAGGTGCCCACCGAGGACCAGATCCAGGCAGGGCTCGACGAGATCGCCGCCGGTTACGAGGCCAACGCCGCCGAGATCGCCGCTGCCCTGGACGACGCCGAGGCGGCCCTGGGCTGCGCGACGACGCCGGAGAGCGACGCCTGCCGGCAGCTCGAGACGATCCGGGCCGTCCTGGCCAGCCTGGACAGCGGGGTCACGGGCGAGTTCGACGAGCTCGCCGACCAGCTGCTCGGTGCCCGCGGACAGCTCACCGACCTCGCCGAGGGGACCGACCAGCTCGCCACGGGGGCCGAGGGTGTCGCGACCGGTTCCCGCGGGATCGCCGACGGGACGGCCGAGCTCGGCGACGGGCTGCGGGACCTGGCCGACGGCAACCGACAGGTCGCCGCCGGTGCCGACGGCGTGGCCGCCGGCGCCTCCGAGCTCGCCGTCGGGGTGAACCAGCTCGACTCCGGGGCCCAGCAGCTCGCGGGTGGCGTGGACGACCTGGCCGACGGCGTCGGGCAGCTCGACGCGGGCGCCCAGGAGCTGGCGACCGGGGTGACCGGCTTCGCCTCGGGTGTGGGTCAGCTGGACTCCGGTGCGCAGGAGCTGGCGACCGGGGTCAGCGACTTCGCCTCCGGTGTGGGTCAGCTGGACTCCGGTGCGCAGGAGCTGGCGACCGGGGTCAGCGACTTCGCCTCCGGTGTGGGTCAGCTCGACTCCGGTGCGCAGCAGCTCGTGACCGGTGCCGACGGCGTGGCCGACGGCTCGGGGCAGCTCGCGGACGGCGTCGACCAGCTCGCGGCCGGCGCCGACGAGCTCGCCGTCGGGCTGGACGAGGCCGCCGCGGGGATCCCGACCTACTCCGAGGACGAGCGGGAGAACCTCTCGGGCGTCGTCGCGAACCCGGTCTCGGCACCGGGGGTCGACGACCTGTCCACCGGCGCCACGGGGCCGCTGTTCGCCGTCGTGGCCCTCTGGCTCGGGGCCCTCGGGCTGCTGACCGTGTACCCGCCGGTGGCGGCGCATGCGCTCGGCTCGACGCGGTCCTCGGCGCGGCTCACCCTCGAGGCTCTCGCCCTCCCGGCCGCGATCGGCGCCGGCACGGGTGCGCTCGTGGGCGGGATCCTCGCCGCGGTCGAGGGAGCGTCGCTCCTGGGCTGGGTCGGCGCGATCGGCATCGGCGTCCTGGTCTCGGTGTGCTTCGTCGCGGCGCACCTCGGCTTCCTCGGCTGGCTCGGCCACGTCGGGCGCGGCATCAGCCTGCTGATGGCGGTGCTGCTCATCGGCACCGGCGTCGTGGCCACCGTGCCGGACGCCCTGGTCTCGCTCGTGGAGTTCCTGCCCACCGGTGCCGGTCGGGACGCCTTCGCCGCGGTGCTGCTGCCCGCGGTGGGCGGACTGGGGCCGGCCCTGACCGCCCTGGTGCTGTGGACCGGCGTCGGGCTCGTGCTCGGGATCGCCGCCGCGGCACGCGCGCGGCGCACGCGGGTGGCGGCTCTGCTGCGCGCCTAGMNRVRQNPWAVAAVALLPVLVLGILLASLWNPVDRLDTVPAAIVNDDEPVEMDGQTVPLGRQLAAGLVGGAEDSDVNYDWTLTDTEQAAEGLDDGTFAAVVTIPEDFSAAATSFGSEDPTEARQATIDVSTPAGGRVVDDALARIVATTATTVLGSSLTETYVDNVLIGFNDLSDGIGEAADGANQLADGVDETASGADDLADGARQYADGVGQFASGVGEAADGGYALADGASQFASGVGQAADGGYALADGADQFASGVGQAADGGYALADGARQYAAGVGEAASGADELATGADQYAAGVGSAATGAEELAAGAGQVADGVDGITGGIVESADGADDLAAGGYEVADGADQVATGVRQLADQAGQIDAQVPTEDQIQAGLDEIAAGYEANAAEIAAALDDAEAALGCATTPESDACRQLETIRAVLASLDSGVTGEFDELADQLLGARGQLTDLAEGTDQLATGAEGVATGSRGIADGTAELGDGLRDLADGNRQVAAGADGVAAGASELAVGVNQLDSGAQQLAGGVDDLADGVGQLDAGAQELATGVTGFASGVGQLDSGAQELATGVSDFASGVGQLDSGAQELATGVSDFASGVGQLDSGAQQLVTGADGVADGSGQLADGVDQLAAGADELAVGLDEAAAGIPTYSEDERENLSGVVANPVSAPGVDDLSTGATGPLFAVVALWLGALGLLTVYPPVAAHALGSTRSSARLTLEALALPAAIGAGTGALVGGILAAVEGASLLGWVGAIGIGVLVSVCFVAAHLGFLGWLGHVGRGISLLMAVLLIGTGVVATVPDALVSLVEFLPTGAGRDAFAAVLLPAVGGLGPALTALVLWTGVGLVLGIAAAARARRTRVAALLRANANANANANA
AK018_005472868hypothetical proteinGTGTCCTCCGTCCTGTACTCGCTCGGCCGCTGGGCCGCCGGCGCGCGTCGGCTCGTCGTCGTCGCCTGGCTCGGGATCCTCGTCCTCACCGGGGCGGCCGGCGGCCTGCTCTACCAGGGCTTCGACAACTCGATCACCATCCCGGGCACGGAGGCGCAGGAGGCGCTCGACCAGCTCTCGGCCACGTTCCCCGAGGTCAGCGGGTCCTCGGCGCAGATCATCGTCGTGGCGCCGGACGGCGAGACCGTCGAGTCCGACGACGTGCGCGGGCCGGTCGAGGACGCCGCCGAGGAGATCGGCGAGCTCGACGAGGTCCGGGTCGTCACCACGCCGTACGACGAGCAGCTCTCGGCCACCGTCAGCGACGACGAGCAGGCCACGATCCTGCAGGTCCAGCTCGACGGCGACGCGTTCTCGATCGGCGACGCCACCAAGGACGCCCTGCACGAGACCACCGACGAGCTGTCCGCCGCGCTCCCGGCCGGTGCGCAGGCCTCCCTGGGCGGGGAGCTGTTCTCCACCGAGCTGCCCGCGCTGAGCATCATCGAGGCCGTCGGCCTGGTGATCGCGCTGGTGGTGCTCGTGCTCACCCTCGGTTCCTTCGTCGCCGCCGGGCTGCCGCTGGTCAACGCCCTGGTCGGGGTGGGCGTGTCGATGCTGCTGCTCCTGGCCACGACGGTGCTCGGCCCGATCAACTCCACCACCCCGATGCTCGGGCTGATGCTCGGTCTCGCCGTCGGCATCGACTACGCGCTGTTCATCGTCTCCCGCCACCAGGAGCTGCTGCGCGACGGCGTCGACGTGCACGAGTCCGTCGCACGCTCGACCGCCACGGCCGGGTCCGCCGTCGTCTTCGCGGGGCTGACCGTGATGATCGCGCTGGTCGGCCTGAGCGTCGCCGGGATCCCGTTCCTGTCGATCATGGGTGTCGCCGCGGCCGTCGCCGTCGGGTTCGCCGTCCTGGTCTCCCTCACCCTGCTCCCGGCGCTGCTCGCGATGGCGGGCGACCGGCTCCGCCCGAAGCCGCGCCGGAAGGCCCGTCGCGGGAAGGCGGTCGCCCCGGCCGCCGACGCGACGGGCCACGAGAACCGCTTCTTCGCCGGCTGGGTCGCGGCCGTGACGAAGAAGCCGATCGTCACCATCGTGCTCGTCGTCGTCGCGCTCGGGGCCCTCGCGTTCCCGGCCACGAACCTGCGCCTGGCGCTGCCCGACGCCGGCTACCTGCCCGAGGGCAACGAGGCCCGGCAGACCTACGAGCTGGTCGGGGAGAACTTCGGCGACGGGTTCAACGGACCGCTGATCGTCACGGGCACGATCATCGAGTCGACCGACCCCCTCGGCCTCATGGACGACCTCGCCACCGAGATCGAGGCGCTGCCCGGCGTCGCCGACGTCCCGATGGCCACGCCCAACCAGAGCGCGGACACCGGCATCATCCAGGTGGTCCCCGAGGGGGCGCCGGACTCCGAGGCGACCAAGGCGCTCGTCAACGAGATCCGCTCGATGCACGACTACTGGATCGACGAGTACGGCGTCGACCTGTCCGTCACCGGGTTCACCGCCGTCGGCATCGACGTGTCCGACAAGCTCGGCCAGGCGCTGCTGCCGTTCGGCATCGTCGTCGTCGGCCTGTCGCTGCTGCTGCTCATGATGGTGTTCCGGTCCATCTGGGTACCGGTCAAGGCGACCGTCGGGTACCTGCTGAGCGTCGGCGCGGCGTTCGGCGCGGTCACCCTCGTCTTCGAGAACGGGCTGTTCGCCGACGCGCTGCACGTGACCAAGCTCGGTCCCGTCATCAGCTTCATGCCGATCATCCTCATGGGCGTGCTCTTCGGCCTGGCGATGGACTACGAGGTGTTCCTCGTGTCCCGGATCCGCGAGGACTTCGTCCACAACGGACGTCGCGCCCGGCGGGCCGTGCACACCGGCTTCCAGGGGGCCGCCAAGGTGGTCACCGCGGCCGCCGTCATCATGTTCAGCGTCTTCGTCGCGTTCGTGCCCGAGGGCGACATGTCCCTCAAACCGATCGCGCTCGGCCTGGCGGTCGGCGTCGCCGTCGACGCGTTCGTGGTGCGGATGGTCCTGGTCCCCGCCGTGCTCGCCCTCCTGGGCGACCGGGCCTGGTGGATCCCGCGCTGGCTCGACCGCGCCCTGCCGACGTTCGACGTCGAGGGCGAGGGCATCGCCCGCGAGCTGCGCCTGGCCGACTGGCCCGGTCCGCGGCCCGACGGCCGCGAGGACGCCGTCGCCGCGCACGAGGTCACCGTCGCCGGGCCGCACGCCCGTCCCGGCGACGCGCCGCTCGTCGGCCCGGTGAGCGTCCGGGTCCCCGCGGGCGGGGCGCTCGCCGTGCACGGGGACTCCACCGCGGCCGTCAACGCCCTGCTGCTGGCCGTCGCCGGCCGCATCCACCCGGACGACGGCGTGGTCAAGACCGCCGGGTACGTCCTGCCCGAACGGGCCCCGGCCGTCCGGTCCCGCGTCGCCGTCGTCGACGCCGCCGCCCCCGACGCGCCGGCCGCAGGTGCCGTGACGCAGGCCGTGCGCGAGGGCGCGCGCGTCGTCGTCGTCGACCGGACCGACGTCGTCGCCGACCGTGCCGACCGCGAGGCGCTCGCCCACGCGCTCTCGGCCGCCGCCGACGCCGGGACGACGCTGCTCGTCGGGTCCACCGGGGTCGCCGCGACCGACCTGCTGCCGACCGGGACGCCCGTCCTCGACGTCGGCTCCGGCTGGGGCTCCCCCGGCACGTTGCACGGCGGGGAGACGCCGCCACCGCCGCCGGCCGAGGAGCACGGCGCGGACGACGAGCACGCCGGGCACCCCGAGCACGACCAGAACTCCACCACCCAGGAGGTGCGGGCATGAMSSVLYSLGRWAAGARRLVVVAWLGILVLTGAAGGLLYQGFDNSITIPGTEAQEALDQLSATFPEVSGSSAQIIVVAPDGETVESDDVRGPVEDAAEEIGELDEVRVVTTPYDEQLSATVSDDEQATILQVQLDGDAFSIGDATKDALHETTDELSAALPAGAQASLGGELFSTELPALSIIEAVGLVIALVVLVLTLGSFVAAGLPLVNALVGVGVSMLLLLATTVLGPINSTTPMLGLMLGLAVGIDYALFIVSRHQELLRDGVDVHESVARSTATAGSAVVFAGLTVMIALVGLSVAGIPFLSIMGVAAAVAVGFAVLVSLTLLPALLAMAGDRLRPKPRRKARRGKAVAPAADATGHENRFFAGWVAAVTKKPIVTIVLVVVALGALAFPATNLRLALPDAGYLPEGNEARQTYELVGENFGDGFNGPLIVTGTIIESTDPLGLMDDLATEIEALPGVADVPMATPNQSADTGIIQVVPEGAPDSEATKALVNEIRSMHDYWIDEYGVDLSVTGFTAVGIDVSDKLGQALLPFGIVVVGLSLLLLMMVFRSIWVPVKATVGYLLSVGAAFGAVTLVFENGLFADALHVTKLGPVISFMPIILMGVLFGLAMDYEVFLVSRIREDFVHNGRRARRAVHTGFQGAAKVVTAAAVIMFSVFVAFVPEGDMSLKPIALGLAVGVAVDAFVVRMVLVPAVLALLGDRAWWIPRWLDRALPTFDVEGEGIARELRLADWPGPRPDGREDAVAAHEVTVAGPHARPGDAPLVGPVSVRVPAGGALAVHGDSTAAVNALLLAVAGRIHPDDGVVKTAGYVLPERAPAVRSRVAVVDAAAPDAPAAGAVTQAVREGARVVVVDRTDVVADRADREALAHALSAAADAGTTLLVGSTGVAATDLLPTGTPVLDVGSGWGSPGTLHGGETPPPPPAEEHGADDEHAGHPEHDQNSTTQEVRAPGPT0028595_11DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-TOXINES_NEUTRALIZATION_YDF_SYSTEM,PGPT0028595-ydfJ-K11625NANA
AK018_00548639hypothetical proteinGTGACGACCGAGCACGCCACCAGCGTGCGCTCCGCGCGCCGCGAGCGCACCCGTGAGCGCCTGCTCGACGCGGCCTTCGCGCTCTTCTCCGAGCACGGCGTGGCCGCCACCCCGATCGAGGCGATCTGCGAGGCCGCCGGGTTCACCCGCGGCGCGTTCTACTCGAACTTCGGCTCGCGCGAGGAGCTGTTCCACGCCCTCGTGGAACGCAAGGCCCGCGAGCACCTGCGGTCGCTCGAGCAGCTCGGTCCCCAGCTCGCCGCCGCCCGCGCCGCGACCCCCGAGGGGTTCCGCGACGCCGTCCGGCAGGTCCTCGTCGCGTTCGAGCTCGACGAGGAGGAGCACCGGCTGTGGTGCCTGATGAACGCCGAGTTCGAGCTGATGGCCATGCGCGACCCCGAGGTCGCGCAGCAGTACGTCGGCGCGCAGAACCGCCTGCGCGGCGAGGTCGCCGCGGTGATCGACAGGCTGCTGGAGCAGTTCGACATGCGGTTCATCGTGGACACGCCGACCGCCGTCGACCTGCTGATGTGCATCGAGGACGCCGGCTCGCGGGCCGCGGTGCTCGGCGCCCCGGCCGACCAGCAGGCCATCGCCCGTCTGGAGCGGCTGGTCGACCTCCTCGTGACGCCCCGGTAGMTTEHATSVRSARRERTRERLLDAAFALFSEHGVAATPIEAICEAAGFTRGAFYSNFGSREELFHALVERKAREHLRSLEQLGPQLAAARAATPEGFRDAVRQVLVAFELDEEEHRLWCLMNAEFELMAMRDPEVAQQYVGAQNRLRGEVAAVIDRLLEQFDMRFIVDTPTAVDLLMCIEDAGSRAAVLGAPADQQAIARLERLVDLLVTPRNANANANANA
AK018_005492130dpp5_1COG1506Dipeptidyl-peptidase 5GTGACTCAGGACACCTCCGCGGAGACCCCGCGCACCCCCTTCGACGACCTCGACGACTACCTCGCCCTCGGCCGCCTCGGCGGCCTCGCCCTCAGCGCGGACGGGCGGCGGCTCGTCACGACCGTGCAGACCCTCGACCCGGAGCGCACCGGCTCCGTCTCGGCGCTGTGGGAGATCGACCCGACCGGCGCCCGGCCGGCGCGACGCCTGACCCGCAGCGCGGCCGGCGAGTCCGCCGCCGTCTTCACCGCCGGCGGCGACCTGCTCTTCACCTCCGCCCGACCCGACCCCGAGAGCACGGGGTCCGACGACGAGAAGAAGGCGGCCCTGTGGGCGCTGCCCGCGGACGGCGGCGAGGCGCGCGTGGTGGCGACGACGCCGGGCGGCGTCGGCGAGGTCCTCGCCGCCCGCGACGCCGACGTCGTCTCCCTGGCGACGGCCGTGCTGCCCTCGGCCGACGACCTCGAGGCGGACGCCGAGCTCCGCTCGACCCGTCGTGACACGAAGGTGAACGCGATCTGGCACACCGGCTACCCGGTGCGCCACTGGGACCACGACCTGGGCCCGGACGCGCCGCGCCGGTACGCGTTCGCCCTCGGCGACGTGGCCGAGGGGGAGCGGGCCGAGCCGCGTCAGCTCACGGGGGCCGGCCGCCAGCTCGAGGAGCACGACGCGGCCCTGAGTCCGGACGGCGGCACGCTGGTCACGACCTGGGCGGTCGCCGACCCGGGCGCCGCGCGCCGCACGATCCTCGTCGCGATCGACACCGCCACCGGCGAGCGCCGCACCCTCGTCGACGACCCCGACGCCGAGATCGGCGCGCCGACCGTCTCCCCGGACGGCCGGTGGGTCGCCTACGTGACCTCGACGATCACGACGCCGACGGACCCGCCGGTGGTCCGTGCCGCCCTCGTGGCGCTGGACGGCAGCGGCGAGCCCGAGGTGCTCGCCGACGACTGGGACCGCTGGCCGTCGTCGCTGGCCTGGCTGCCGGACGCCGGCGGGCTGGTCGTGACCGCGGACGACGACGGGCGCGGCCCGGTCTTCCTGCTCACGTTCGACGGTGCGCCCGGCGCGGGGCCGGTGACCGTCGAGCGGGTGACCGCGGACGACGCCGTGCTCACCGACGTCCGTGTCGCGCCGGACGGGTCGGCGCTGTACGCGCTGCGCACCTCCTACGCCGCGCCGTCGGAGCCGGTGCGGGTCGACCTGGCGGCGTTCGTCGCCTCCGGGGAGCCGGGGGAGCGCGCGCCGGTCGACGCCGTCGCCCTGCCGTCCCCGGTGCCCGCCCCGGAGCTCCCGGGCTCGCTGACCGAGGTGGTCTCGACGGCGGCCGACGGGACCCGCGTCCGGGCCTGGCTGGCGCTGCCCGCCGGGGCGTCGTCGTCGGACCCGGCGCCGCTGCTGCTGTGGATCCACGGCGGCCCGCTCGGCTCGTGGAACGCCTGGTCGTGGCGCTGGAACCCGTGGCTGATGGTGGCGCGCGGGTACGCGGTGCTGCTGCCGGACCCGGCCCTGTCCACGGGGTACGGCCAGGAGTTCGTCGCCCGCGGGTGGGGTGCGTGGGGCGACGCCCCGTTCACCGACCTCATGGCGGTGCAGGACGCCGCCGAGGCCCGCGACGACGTCGACGCGTCCCGGACGGCCGCGATGGGCGGCTCGTTCGGCGGGTACATGGCGAACTGGGTGGCCGGGCACACCGACCGGTTCCGCGCCGTCGTCACCCACGCCTCGCTGTGGGCGCTGGACGGGTTCGGCCCGACGACGGACCACGCCTACTACTGGGCGCGCGAGATGACCCCCGAGATGCGCGACGCGCACAGCCCGCACCGGTTCGTCGGGGACATCACCACGCCGGTGCTGGTGATCCACGGCGACAAGGACTACCGGGTGCCGATCGGCGAGGGCCTGCGGCTGTGGCGCGAGCTGCTCGCCGACTCGGGCCTGCCCGCGGCCGACGACGGCTCGACCGTGCACCGCTTCCTGTACTTCCCGGACGAGAACCACTGGATCCTGACCCCGCAGCACGCGAAGGTCTGGTACCAGGGCGTGCTGGCCTTCCTGGCCGAGCACGTGCTCGACGTGCCGGCCGGTGAGGGCGACACGGTCCTGCCGACGACCCTCGGCTGAMTQDTSAETPRTPFDDLDDYLALGRLGGLALSADGRRLVTTVQTLDPERTGSVSALWEIDPTGARPARRLTRSAAGESAAVFTAGGDLLFTSARPDPESTGSDDEKKAALWALPADGGEARVVATTPGGVGEVLAARDADVVSLATAVLPSADDLEADAELRSTRRDTKVNAIWHTGYPVRHWDHDLGPDAPRRYAFALGDVAEGERAEPRQLTGAGRQLEEHDAALSPDGGTLVTTWAVADPGAARRTILVAIDTATGERRTLVDDPDAEIGAPTVSPDGRWVAYVTSTITTPTDPPVVRAALVALDGSGEPEVLADDWDRWPSSLAWLPDAGGLVVTADDDGRGPVFLLTFDGAPGAGPVTVERVTADDAVLTDVRVAPDGSALYALRTSYAAPSEPVRVDLAAFVASGEPGERAPVDAVALPSPVPAPELPGSLTEVVSTAADGTRVRAWLALPAGASSSDPAPLLLWIHGGPLGSWNAWSWRWNPWLMVARGYAVLLPDPALSTGYGQEFVARGWGAWGDAPFTDLMAVQDAAEARDDVDASRTAAMGGSFGGYMANWVAGHTDRFRAVVTHASLWALDGFGPTTDHAYYWAREMTPEMRDAHSPHRFVGDITTPVLVIHGDKDYRVPIGEGLRLWRELLADSGLPAADDGSTVHRFLYFPDENHWILTPQHAKVWYQGVLAFLAEHVLDVPAGEGDTVLPTTLGNANANANANA
AK018_005501173mnmC_1tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmCGTGAGTCACGACAGCGCCCCGCCTCCCCTGCCCGCCAAGGTCGACCTCGTCGTCGTCGGTGCGGGCATCGTGGGGCTGGCGCACGCCGTCGAGGCCCACGCCCGGGGCCACTCGGTGCTCGTCCTGGACGGCGCCGCCCGGCCCGACGGGTCCACCGCCCGGCGCAGCGGGCACGTGGCCGTCACCACCCAGGACTCGACCGCGCTCGCCTGCGCCCTGGCCTCCCGGGAGCGCTGGCTGAAGCTCGGCCGCGACGCCGGCTTCGGGGTGCGCGAGAGCGGCGCGGTCGTCGTCGCCCAGCACGCCGACGAGCTCGCCGTGCTCGACGACCTCGTCGCCGCGCGGGCCGGTGACGCCGAGCTCCTCGACCACCGCAGCGTGGCCGACCGGAGCCCGGTCGCGCACGCCGTCGGGGGCGTCTGGCTCCCTCTCGACCTGCGGCTGGACCCCTACGCCGCGCTGCTGGCGATCTGCGACTGGCTCTCCTCGCGCCCCCAGGTGGACGTCGCCTGGCGGACCGCCGCCCAGACCTTCGACGCCGGCAGCGGCTGCACGCTGGTGCGCACCTCGCGGGGCGAGGTCGTGGCCAAGCGGGTCGTGGTCGCCGCCGGGCAGGCGGTCGGCTCCCTCTTCTGGTCCGCGGGGGCCGACCTGGCCCCGGTGCGCCGCCAGCTCCTGCGCGTCGCACCGCCCACGCCCGACGACGTCGCCGCGCAGGCCCGGCTCGCCTCCGGGCCCGTCGTGCTCGGCGGCACGACCGTGCTGCGCGACGCCGCCTACCTGCACTCGCGGGCCCTCGGCGAGGTGCGCGACCGGTGGCGCCGGCACCGGCCGGACCTGCTCGCCGCGGAGATCCACCTGTCGCTGCACTCCCAGGCCGACGGCTCCGTCGTCGTCGGCGACGGGCGGGCGCCCGCCGACGTGCCGGGCCGTTCCGAGGCGGTGGACGGGCTGCTGCTCGACGCGACCGCCGAGCTGCTCGGCACCGGTCCGCTCACGGTGCTCGGCCGCTGGACCGCGACCGAGCCGGTGCGCGCCCGCACCACGTCGGCGGCCGACCCGTTCGTCGTCACCGAGCCGCTGCCCGGCGTGCGGACGGTCAACGTCACCGACGGGCTGGCCACGACGACGGCGCTGGGGCTGGCCCCGCGGGTGCTCGACGAGCTCTTCTGAMSHDSAPPPLPAKVDLVVVGAGIVGLAHAVEAHARGHSVLVLDGAARPDGSTARRSGHVAVTTQDSTALACALASRERWLKLGRDAGFGVRESGAVVVAQHADELAVLDDLVAARAGDAELLDHRSVADRSPVAHAVGGVWLPLDLRLDPYAALLAICDWLSSRPQVDVAWRTAAQTFDAGSGCTLVRTSRGEVVAKRVVVAAGQAVGSLFWSAGADLAPVRRQLLRVAPPTPDDVAAQARLASGPVVLGGTTVLRDAAYLHSRALGEVRDRWRRHRPDLLAAEIHLSLHSQADGSVVVGDGRAPADVPGRSEAVDGLLLDATAELLGTGPLTVLGRWTATEPVRARTTSAADPFVVTEPLPGVRTVNVTDGLATTTALGLAPRVLDELFPGPT0020390_135DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020390-lhpB2-K21061NANA
AK018_005511281putative sugar-binding periplasmic proteinGTGTCAGCGACGGCGGGTGCCGCCGTCCTCGCCCTGGGCCTGGCGGCCTGCGGCGGATCCGGAGACACCGGCGACACCTCCGACGGGAGCACCGGCGGCGAGGACATGGCCGGTGGCGAGGTCGAGGTGTTCACCTGGTGGGCCGCCGGCTCGGAGAAGGCCGGGCTCGACGCCCTGGTGGGGGTGTTCGAGGAGCAGCACCCCGACTTCACCTTCGTCAACGGCGCCGTGGCGGGCGGCGCGGGCTCCGCGGCGAAGGACCTGCTGCAGTCGCGGCTGCAGGCGGGCGACCCGCCGGACACGTTCCAGGCGCACGCCGGAGCGGAGCTGCAGGACTACATCGACGCCGCGCAGATCGAGGACGTCTCGGCCCTGTACGACGAGTTCGGCCTGACCGACGCGTTCCCGCCCGACCTCGTCGACCGGCTGACCACCGAGGACGGGGCGATCTACTCCGTCCCGTCGAACATCCACCGCGCGAACGTGGTGTGGGCCAACCCCACCGTGCTCGAGGAGGCGGGACTGGACCCCGCCGCCGAGTACGCCGACCTCGACGCCTGGTACGAGGCGCTCGACGCCGTGCAGGAGTCCGGCGCGACCGCGCTGTCGATCGCGACGACGTGGACGCAGGTCCACCTGCTGGAGACGGTGCTGCTGTCCACGCTCGGTCCCGAGGCCTACACCGGGCTGTGGGACGGGTCGACCGACTGGGAGGGCCCCGAGGTGACGGCGGCGCTCGAGCACTTCGAGAGGCTGATGGGCTACACCAACGGCGACCGGGACGGCCTCGACTGGCCCGACGCGACCCAGCAGGTCATCGACGGCGACGCCGGCTTCAACGTGATGGGCGACTGGGCCGAGGCGGCGTTCCAGGAGGCGGGCTCGATGGCGCCCGACGACTACGTCTACTTCCCGGTCCCGGGGACCGACGGGGAGTTCGACTTCCTCGCGGACTCGTTCACCCTGCCGGTCGGTGCCCCGAACCCCGACGGGACGCGCGCCTGGCTGGACACCGCCGGGTCGACCGAGGGCCAGGAGGCGTTCAACAAGGCCAAGGGGTCCATCCCGGCCCGCACGGACGCCGACACCTCGGACTTCTCCGAGTACCAGCAGACCGCCGTCGAGGCGTTCGCCAGCGACACCATCGTGTCCTCGCTCGCGCACGGCGCCGCGACACCGGTCGCCACGCTCAACGCGATCTCGGACGCCACGAGCAAGTTCACCACCGGCGCCTCGGACCTGGCCACGTTCCAGTCCGAGCTGGCCGCGGCGACCATGTGAMSATAGAAVLALGLAACGGSGDTGDTSDGSTGGEDMAGGEVEVFTWWAAGSEKAGLDALVGVFEEQHPDFTFVNGAVAGGAGSAAKDLLQSRLQAGDPPDTFQAHAGAELQDYIDAAQIEDVSALYDEFGLTDAFPPDLVDRLTTEDGAIYSVPSNIHRANVVWANPTVLEEAGLDPAAEYADLDAWYEALDAVQESGATALSIATTWTQVHLLETVLLSTLGPEAYTGLWDGSTDWEGPEVTAALEHFERLMGYTNGDRDGLDWPDATQQVIDGDAGFNVMGDWAEAAFQEAGSMAPDDYVYFPVPGTDGEFDFLADSFTLPVGAPNPDGTRAWLDTAGSTEGQEAFNKAKGSIPARTDADTSDFSEYQQTAVEAFASDTIVSSLAHGAATPVATLNAISDATSKFTTGASDLATFQSELAAATMPGPT0016570_117DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016570-gtsA|glcE-K17315NANA
AK018_00552903hypothetical proteinATGAGACACCGTCTGCGGCGGTTCGGAGCACCGCTCCTGCTGCTCGCCCCGTCGCTGATCCTGCTGGCCGTGTTCGTCTACGGTCTCATCGCCGCGAACTTCCGGACCTCGATCACGGACAACCACACCGCGGCCCAGGCCACCGGGCAGCAGCCCGTGACCACGATCTGGTTCGAGAACTACGTCGACCTGCTGGGCAGCGACGACTTCCAGCACTCGCTGACGAACCTCGTGCTGTTCACGGTCGCGTTCCTCGTCGGCACCATGGTGATGGGGTTCGGGTGGGCCTGGATGCTCGACAAGCCGGACCGCGGCGAGGGGTTCTTCCGCTCGATCTACCTGTTCCCCATGGCGGTGTCGTTCGTGGCCTCCGGCGTCGTGTGGCGGTGGCTGCTGAACTCCAACCAGGGCGAGGGCGCCAGCGGCCTCAACCGCCTGTTCCAGATGGTCGGGCTGGACTTCCTGCAGAACAACTGGTGGAACAACATCACGTTCGGCATCCTGGCGATCGCCCTGCCGGCGATCTGGCAGCTCTCGGGGTACGTGATGGCGCTGTTCCTCGCGGGCTTCCGCGGCATCCCCGACGAGCTGCGGGAGGCCGCCCGCGTGGACGGGGCCCGCGAGTGGCAGCTCTACCGGCTGGTGCTCTTCCCGCAGCTGTCGCCGATCGCCCTGTCCGCGCTGATCATCATCGGTCACATGTCGCTGAAGTCGTTCGACCTCATCATGTCGATCTCGAAGCCCGCGAACTACCAGACCAAGGTGCCGGCGGTCGACATGTACGTGTTCAAGTCGAGCTTCAACTACGCCGACGCGGCCGCCGTCGGGACGATCCTGCTGGTCATCGTCGCGCTGGTCGTCGTGCCCTACCTCGTCCGGACCCACAAGGCGGAGAAGCGATGAMRHRLRRFGAPLLLLAPSLILLAVFVYGLIAANFRTSITDNHTAAQATGQQPVTTIWFENYVDLLGSDDFQHSLTNLVLFTVAFLVGTMVMGFGWAWMLDKPDRGEGFFRSIYLFPMAVSFVASGVVWRWLLNSNQGEGASGLNRLFQMVGLDFLQNNWWNNITFGILAIALPAIWQLSGYVMALFLAGFRGIPDELREAARVDGAREWQLYRLVLFPQLSPIALSALIIIGHMSLKSFDLIMSISKPANYQTKVPAVDMYVFKSSFNYADAAAVGTILLVIVALVVVPYLVRTHKAEKRPGPT0016575_565DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016575-gtsB|glcF-K17316NANA
AK018_00553894ycjPCOG0395Inner membrane ABC transporter permease protein YcjPATGAGCACCCACGTCTCCACGCCACCGGGCGTCACGGGCGAACCCGTCGAGCTCCGGGACGACAGCGCGCGCCCCCGGTTCACCGTCGGCCGCACCGCCAAGTACGCGGCGATGATCCTGTTCGTCCTCATCGTGCTGATCCCCGTCTACGTGCTGTTCGTGACGAGCTTCAAGGGGGCCGGCGACGCCTCACCGGCCCGCGCGTGGAACCTGCCGACCGACTGGACCCTCGACAACTGGGTCGGCGCCTGGAACGCCCTGTCCCCCGCCATCGGGCGCACCTTCCAGATGGTCGTCCCGGCCGCGATCATCTCGGCGATGCTCGGGTCGATGAACGGGTTCGTGCTGTCGCGCTGGTCGTTCCGGGGGGCCGACGTCGTCTTCACGCTGATCCTGTTCGGCATGTTCATCCCGTACCAGGCGGTGATGATCCCGCTGCTGGAGCTGATGCTCGGGGCGGGGGTCCCCAGCGGCGTCCCGTCGCTGATCATCCTGCACGTCATCTACGGCATCCCGATCACGACGCTGATCTTCCGCAACTACTACCAGACCGTCCCGCACGAGCTGGTCGAGGCCGGACGGGTCGACGGCGCGGGGATGCTGCGCACCTACTGGTCGATCATCCTGCCGATCTCGGTGCCGAGCTTCGTCGTCGTGCTCATCTGGCAGTTCACGAACGCGTGGAACGACTTCCTGTTCGCGGTGTTCTTCTCCTCGAGCCAGAACGGCCCGGTCACCCTGGCCCTGAACAACCTGGCCAACGGCGCGCTGCTGCAGGACTACGGCGTCTCGATGGCCGGGGCGCTGCTCGCGTCGCTGCCGCCGCTGCTGGTGTACGTCCTGCTCGGCAAGTACTTCGTCGGGGGGCTGATGTCGGGGTCGGTCAAGGGCTGAMSTHVSTPPGVTGEPVELRDDSARPRFTVGRTAKYAAMILFVLIVLIPVYVLFVTSFKGAGDASPARAWNLPTDWTLDNWVGAWNALSPAIGRTFQMVVPAAIISAMLGSMNGFVLSRWSFRGADVVFTLILFGMFIPYQAVMIPLLELMLGAGVPSGVPSLIILHVIYGIPITTLIFRNYYQTVPHELVEAGRVDGAGMLRTYWSIILPISVPSFVVVLIWQFTNAWNDFLFAVFFSSSQNGPVTLALNNLANGALLQDYGVSMAGALLASLPPLLVYVLLGKYFVGGLMSGSVKGPGPT0016580_249DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016580-gtsC|glcG-K17317NANA
AK018_005542040hypothetical proteinGTGACCGCGCCCGCCGCCCCGACGACCCGCCCCGCCCCGGCGCCCACGTCGGCGCGCCCCTGGTGGCTGATCGCCGCCGGGCCGGGCGCCGTCGTCGTCGCCCTGCTCGCCCTGCTGGCCGCCGGCTCCTACTCGGGCGCCTTCGACCCGCTGGGGACGTTCAGCGACCCGGGGCCGGCGGTGCGCTGGGGGCTGCCGGCCGCGACGGTGCTGTCCGAGCTCGCGCTCGCCGTGACCGTGGGCGGCCTGTTCGCGGTCGCGTTCCTGCTGCCGCGCGGACGGCACACCGACCGCGTCCTGCTCGTGGCAGGCTGGGCGTCGAGCCTGTGGGCGGTCGCCGCCGTCGTCCAGCTCGTCCTCCGCTACTCCTACGTGTCGACGATCTCCCTCGCCGCGGAGACCTTCGGGCAGGGGCTGTGGCAGTTCGTGCTCGACGTCGAGCTCGGGCAGATCGGGCTGTGGACGATCCTGCTGGCCGCCGTCACCTCGGCGCTCGCCCTCGGGGTGCGGGGTCCGGTCGGAGCCCTGTGGACGGCCGTGCTGCCCGGGGCGGCGCTCGCCCTGCAGTCCACGACCGGGCACGCCGCCGGGGCCGTCAACCACGACCTGGCCGTCGGGGCGATGCTGCTGCACCTGGTCGGCGCGGCGCTGTGGGTCGGCGGGCTCGCGGCGCTGCTCGTCGTGGTGCTCACCCGCACCGGGAGGCGCCGGGACGACGACCTCCTCGCCGCGAGCGCGGTCGCCCGGTTCTCCCCGGTCGCGGCCTGGTGCTTCGCCCTGGTCGCCCTGTCCGGCCTGATGAGTGCCCTGATCCGCATGCAGCACCTGGACGACCTCGTCACCCGGTGGGGCATCCTGCTGCAGACCAAGGTGCTCCTGCTGCTCGCGCTCGGTGCGTTCGGCTGGGCCCACCGGCGCTGGGTCGTCGGTCGGCTCGCCACCGACCCCGGCCGCGTGCGACGGCTGTTCTGGCAGCTCCTCGCCGCCGAGCTCGTCACCATCGGGGCGGTCTCCGGCGTGGCGGTGGCGCTCGGGTCGACGGCGCCGCCGGTGCCGGACGAGGAGCTCGTCGACGCCTCGCCCGCCTTCCAGCTCACCGGCTACGCTCTGCCGCCCGAGAACACGCTGGGCAACTACTTCACGCAGTGGAGCGTCGACCCCCTGTTCGCCGTCGCCAGCGTCGCCGGGGCGTTGGTCTACGTCACCTGGGCGCTGCGGCTGCGCCGCCGCGGCGACCGCTGGCCCCTCGGTCGCACGATCTCCTGGTGCGCCGGCATGGCGATCATGGTCTGGGTGACGAACGGCGGCCCCTCGGTGTACGGCCACGTGATCTTCTCCGGGCACATGACCCAGCACATGATCCTGGCGATGGTCGTCCCGCTGCTGCTGGTCCTCGCGGCCCCCGTGACGCTGCTGCTGCGGGCGGTCCCGGCCCGCAAGGACGGCTCCCGCGGGCCCCGGGAGTGGGTGCTGGCGATCGTGCACTCCCGTGTCGGCAGCTTCGTGGCGAAGCCGGTCGTGGCGGCGGTGATCTTCGCGGGCGGCATGATCGCCTTCTACTTCACGCCGGTGTTCGGGTGGGCGCTGTCCAACCACGCCGGGCACGTGTGGATGATCATCCACTTCACGCTCGCCGGGTACCTGTTCGCCAACGCTCTCGTCGGCATCGACCCCGGTCCGCAGCGCCCGCCGTACCCGCAGCGGCTGCTCCTGCTGTTCGCCACCATGGTGTTCCACGCCTTCTTCGGGGTGGTGCTCACCACCGGCACGTCGCTGCTCGTGGCCGACTGGTTCGGGAACATGGGACGGCCGTGGGGTCTGCCCGCGATCGACGACCAGCAGCTCGGCGGCGCCATCGCCTGGGGCATCGGCGAGCTGCCCACGCTGGTGCTCGCCGTCGTCGTGGGCGTGCAGTGGGCCCGGTCCGACGAGCGCGAGGCCCGGCGCAGCGACCGCCGGGCGGAGCGGGACGACGACGCCGAGCTGCGGGCCTACAACCGGATGCTCGCCGACATGGCCGAGCGCGACGGGCGGGACTGAMTAPAAPTTRPAPAPTSARPWWLIAAGPGAVVVALLALLAAGSYSGAFDPLGTFSDPGPAVRWGLPAATVLSELALAVTVGGLFAVAFLLPRGRHTDRVLLVAGWASSLWAVAAVVQLVLRYSYVSTISLAAETFGQGLWQFVLDVELGQIGLWTILLAAVTSALALGVRGPVGALWTAVLPGAALALQSTTGHAAGAVNHDLAVGAMLLHLVGAALWVGGLAALLVVVLTRTGRRRDDDLLAASAVARFSPVAAWCFALVALSGLMSALIRMQHLDDLVTRWGILLQTKVLLLLALGAFGWAHRRWVVGRLATDPGRVRRLFWQLLAAELVTIGAVSGVAVALGSTAPPVPDEELVDASPAFQLTGYALPPENTLGNYFTQWSVDPLFAVASVAGALVYVTWALRLRRRGDRWPLGRTISWCAGMAIMVWVTNGGPSVYGHVIFSGHMTQHMILAMVVPLLLVLAAPVTLLLRAVPARKDGSRGPREWVLAIVHSRVGSFVAKPVVAAVIFAGGMIAFYFTPVFGWALSNHAGHVWMIIHFTLAGYLFANALVGIDPGPQRPPYPQRLLLLFATMVFHAFFGVVLTTGTSLLVADWFGNMGRPWGLPAIDDQQLGGAIAWGIGELPTLVLAVVVGVQWARSDEREARRSDRRAERDDDAELRAYNRMLADMAERDGRDNANANANANA
AK018_005551518pdhC_1COG0508Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complexATGAGCACCCAGCGTTTCCCCCTGCCGGACGTCGGTGAGGGGCTGACCGAGGCCGAGATCGTCGAGTGGAAGGTCGCCGTCGGCGACACCGTCGAGGTCAACCAGGTCGTCGTCGAGATCGAGACCGCCAAGTCCCTCGTGGAGCTGCCCAGCCCGTGGGCCGGCACCGTGACCGCGCTGCTGGCCGAGGAGGGCACCACGGTCGACGTGGGCGCGCCGATCCTCGAGATCGGCGACGGCGCGGCACCGGCCGCCGAGCCCGCGGCACCGGCCGCGCCCGTCGAGGAGACCGCCGCGCCGCAGAGCCCGCCGAACGGGGAGTCCTCCGGGTCGGTGCTCGTCGGGTACGGCACCGCCGACGCCGCTGCGGGCGGACGGCGCCGGCGTCGGCGCGGGGGGACTCCTGCGCCGACGGCCGAGGCCGCCGCGACAGCGCCCCCGGCTGCTCCGGCCCCGCCGGCCCCGAAGGCTCCGACTGCCGAGGCGGCGCAGGCTCCGGCCCCGGTGGCCCCGACGCCGGAGCCCCCCGCGCCGTCCGGCCCCTCGATCGACCGCGCGATGGTGAGCGTGCCGGCGGCCTCGTCCCCGGCCGACGCACCGTCGTCGACCCGGGTGCGGGTGCTGGCCAAGCCGCCGGTACGCAAGCTGGCCCGCGATCTGGGGGTCGACCTGGCCTCGGTGCACCCCACCGGCCCCGGCGGGATCGTCACCCGTGAGGACGTCACCGCCCACGCGGCGGCGGCCGAACCGCGGGCTCTGGCGACCTACCCCGGTGACGACCAGCCCTGGATGGCCTCGGGCGGCGTCTCCGACGACGGCCGCACCACCCGCGTCCCGGTCAAGTCCGTGCGCCGGCGGACCGCGGAGGCGATGGTGGCCAGCGCGTTCACCGCCCCGCACGTGACGGTCTTCCACACCGTCGACGTCACGAAGACGATGAAGCTCGTCGAGCGGCTCAAGAGCGACCGTGACTTCGCCGACGTGCGGGTGACGCCGCTGCTCATCGCGGCCAAGGCGGCGCTGCTGGCCATCCAGCGGCACCCGGAGATCAACGCGAGCTGGGACGACGAGGCGCAGGAGATCGTCTACCAGCACTACGTGAACCTCGGGATCGCCGCGGCGACCCCACGGGGCCTCGTCGTGCCCAACGTCAAGGACGCCCACCGCCTCGAGCTGCTCGGGCTCGCCCAGGCGCTCGGCGAGCTGACGGCGACCGCGCGGGCCGGACGGACGACCCCGGCGGACATGTCCGGAGGCACGTTCACCATCACCAACGTGGGCGTGTTCGGCATCGACACCGGGACGCCGATCCTCAACCCGGGGGAGTCGGGCATCCTCGCGTTCGGCGCGATCCGCCAGCAGCCGTGGGTGCACAAGGGCAAGATCAAGCCGCGCTGGGTCACCCAGCTCGCGCTGAGCTTCGACCACCGGCTGGTCGACGGCGGGCTGGGCTCGCGCTTCCTGTCCGACGTCGCGAAGGTGCTGGAGGACCCCGCGCAGGGGCTCGTCTGGGGCTGAMSTQRFPLPDVGEGLTEAEIVEWKVAVGDTVEVNQVVVEIETAKSLVELPSPWAGTVTALLAEEGTTVDVGAPILEIGDGAAPAAEPAAPAAPVEETAAPQSPPNGESSGSVLVGYGTADAAAGGRRRRRRGGTPAPTAEAAATAPPAAPAPPAPKAPTAEAAQAPAPVAPTPEPPAPSGPSIDRAMVSVPAASSPADAPSSTRVRVLAKPPVRKLARDLGVDLASVHPTGPGGIVTREDVTAHAAAAEPRALATYPGDDQPWMASGGVSDDGRTTRVPVKSVRRRTAEAMVASAFTAPHVTVFHTVDVTKTMKLVERLKSDRDFADVRVTPLLIAAKAALLAIQRHPEINASWDDEAQEIVYQHYVNLGIAAATPRGLVVPNVKDAHRLELLGLAQALGELTATARAGRTTPADMSGGTFTITNVGVFGIDTGTPILNPGESGILAFGAIRQQPWVHKGKIKPRWVTQLALSFDHRLVDGGLGSRFLSDVAKVLEDPAQGLVWGNANANANANA
AK018_005561008bkdB_1COG00223-methyl-2-oxobutanoate dehydrogenase subunit betaATGAGCACCCAGACCATGCCGCTCGCCAAGGCCGTCACCGCCGGCCTGCGTGCCGCCCTCGAGGCCGACCCGTCGGTGATGCTCATGGGCGAGGACATCGGCCGGCTCGGCGGCGTCTTCCGCGTCACCGACGGGCTCCAGAAGGACTTCGGCGAGCACCGGGTCGTCGACACCCCGCTGGCGGAGTCCGGCATCGTCGGCACCGCCATCGGGCTGGCGATGCGCGGCTACCGGCCCGTGTGCGAGATCCAGTTCGACGGGTTCGTCTTCCCCGCCTACGACCAGATCACCACCCAGCTCGCCAAGATCCACAACCGCTCCCGCGGGCGGATCCAGGTGCCCGTCGTGATCCGGATCCCGTACGGCGGCGGGATCGGTGCCGTCGAGCACCACTCGGAGTCGCCGGAGGCGCTGTTCGCGCACACGGCCGGGCTGCGGGTCGTCTCCCCGGCCACGCCGCAGGACGCCTACGACATGATGCGCGCCGCCGTCGCCTCCCCGGACCCGGTGATCTTCCTCGAGCCCAAGGGCCGCTACTGGTCCAAGGGGGACGTCGACCTGGACAGCCCCGTGCCGTCCCTGGACGACGCCGCCGGCCCGGACCCGCTCGGGACGGCCCGGGTCGCCCGGTCCGGGACCGACGTCACGCTGGTCGCCTACGGACCGACGGTCGCCACGGCGTTGTCCGCCGCCGAGGCGCTCGCGGCCGAGGGCACCAGCGCCGAGGTCGTCGACCTGCGGTCGGTGTCCCCGCTGGACGTGCCCACCGTCGCGGAGTCGGTGCGCCGCACCGGGCGCTGCGTCGTCGTGCACGAGGCGCCGTCGTTCTTCGGCTCGGGGGCGGAGCTCGCCGCACGCCTGACCGAGGAGTGCTTCTACTCCCTCGAGGCGCCCGTGCTGCGGGTCGGCGGGTACCACGCGCCGTACCCGGTGGCGAAGCTCGAGCACGAGTACCTGCCGAGCGTCGACCGCGTCCTGGACGCCGTCGACCGCACCCTGGCCCACTGAMSTQTMPLAKAVTAGLRAALEADPSVMLMGEDIGRLGGVFRVTDGLQKDFGEHRVVDTPLAESGIVGTAIGLAMRGYRPVCEIQFDGFVFPAYDQITTQLAKIHNRSRGRIQVPVVIRIPYGGGIGAVEHHSESPEALFAHTAGLRVVSPATPQDAYDMMRAAVASPDPVIFLEPKGRYWSKGDVDLDSPVPSLDDAAGPDPLGTARVARSGTDVTLVAYGPTVATALSAAEALAAEGTSAEVVDLRSVSPLDVPTVAESVRRTGRCVVVHEAPSFFGSGAELAARLTEECFYSLEAPVLRVGGYHAPYPVAKLEHEYLPSVDRVLDAVDRTLAHPGPT0008862_1569DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167NANA
AK018_005571197bkdA_1COG10713-methyl-2-oxobutanoate dehydrogenase subunit alphaGTGCCGCACCAGGTCATCGACGGGTCCGACGTCGGGTCCGCCGACGTCACCCCGCTCGTCCAGCTCGTCGCTCCCACCGGGGAGCGCGTCCACGAACCCGACAACGACGGTGACCATCCCGGTTATGCGGCTCGGGTCGCCCACCTGACCGGAGACGACCTGCGCGCGATGTACCGCGACATGGTCCTGACGCGCCGGTTCGACGACGAGGCCACGGCGCTGCAGCGCCAGGGCGAGCTCGCCCTGTACGCCCAGGCGACCGGTCAGGAGGCCGCGCAGGTGGGTCCCGCCCACGCGCTGGCCGCCCCGGACATGGTGTTCCCCTCCTACCGCGAGCACGGCATCCTGCACGTCCGCGGCGTCGACCCGGTGGACCGGCTGCGGCTGTACCGCGGCCAGGACCACGGCGGCTGGGACCCCGCGGAGCACAACGTCGCGCTGTACACGCTCGTCATCGGCTCCCACGTGCTGCACGCCACGGGGTACGCCATGGGCGTCCAGCGCGACGGCGCCGTCGGGACCGGCGACCCGGAGCGGGACACCGCCGTCGTCGCCTGCTTCGGCGACGGCGCGACGAGCCAGGGCGACGTCAGCGAGGCGCTCGTGTTCGCCGCCGTCAACGACGCCCCGGTCGTGTTCTGGTGCCAGAACAACCAGTGGGCCATCTCCGAGCCGACCACCCGCCAGTCCAGCGTCCCTCTCCACCGCCGCGGCGAGGGCTTCGGCGTGCCGAGCGTGCGCGTGGACGGCAACGACGTGCTCGCCTGCTACGCCGTGATGGCCGAGGCGCTGGAACGGGCCCACGCCGGTCACGGACCCACGTTCGTCGAGGCGTACACCTACCGGATGGGTGCCCACACCACCTCCGACGACCCCACGCGGTACCGCGAGCGCGCCGAGGAGGAGTACTGGCGCCAGCGCGACCCCATCGACCGGCTCGCCGCCCTGCTGCGCGCCGAGGGCCACTGGGACGACGACTGGGCCGAGGACGTCGGGGCCGAGGCCGACGCGCTCGGCGAGACCCTGCGGGCCGGCGTCCGCGCCCTGGACGCCCCGGAGAAGACGTCGATGTTCGACCACGTGTACGCCACGCCGCACGCGCAGGTCACCGCCGAGCGCGCGTGGTTCGAGCAGTACGAGGCCGAGACGGCCGAGCAGACGGCGCAGGACGCCGCGACCGCGGAGGTGGCCCGATGAMPHQVIDGSDVGSADVTPLVQLVAPTGERVHEPDNDGDHPGYAARVAHLTGDDLRAMYRDMVLTRRFDDEATALQRQGELALYAQATGQEAAQVGPAHALAAPDMVFPSYREHGILHVRGVDPVDRLRLYRGQDHGGWDPAEHNVALYTLVIGSHVLHATGYAMGVQRDGAVGTGDPERDTAVVACFGDGATSQGDVSEALVFAAVNDAPVVFWCQNNQWAISEPTTRQSSVPLHRRGEGFGVPSVRVDGNDVLACYAVMAEALERAHAGHGPTFVEAYTYRMGAHTTSDDPTRYRERAEEEYWRQRDPIDRLAALLRAEGHWDDDWAEDVGAEADALGETLRAGVRALDAPEKTSMFDHVYATPHAQVTAERAWFEQYEAETAEQTAQDAATAEVARPGPT0008861_1204DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166NANA
AK018_005582067betSGlycine betaine/proline betaine transporter BetSGTGACCACGACACCGCCGACCCAGGGCTCAACCGCGTCGTCGGAGCACGACCCGGACGCCGAGCGCCGTCGCTCCAGGATCCTGCGGCCGGTCTTCGTCCCGGCCTCCGTCGTCATCATCGGGCTGATCGTCGCCACGATCGTCTTCGCCAACGTGGCCGGCGACGCGCTCGAGGAGGCCACGACACAGCTCAACACCTGGATCACCGACGGCGTCGGCTGGTGGTACGTCATCGCCGTCAACGTCTTCCTGGTGTTCGCGCTCTACTGCGCCTTCTCCAAGATCGGGCTCGTCCGGCTCGGCCGGGACGGCGAGGGCCCCGAGTTCGGGGTCGTCTCCTGGTTCCTCATGCTCTTCAGCGCCGGCATGGGCATCGGGCTCGTCTTCTTCGGCGTCGCCGAGCCGCTGTGGCACTACGTGGCCCCGCCCGAGGCCTTCGGCAACGCCCCGGAGTCGGACGCCGCCGCGCGCGAGTCGGTCGGCCTGATGATGCTGCAGTGGGGTTTCCACCCCTGGGCCATCTACGCCGTCGTCGGCCTCGGCCTGGCGTACATGTCCTTCCGGCGCGGACGACCGCTGGCCGTGCGCTGGCTGCTCGAGCCGCTCATCGGCCGCCAGCGCGTCGAGGGCTGGATGGGCCACACCGTGGACACCGTCGCCATCGTGGGCACCCTGTTCGGCGTCGCGACCTCGTTCGGGTTCGGCATCAGCCAGATCCTCGGCGGCCTGGAGTTCCTCGGCTGGGCCGAGACGTCCGACCCGCTCATCATCGGACTGATCACGGGCATCACGGCCGTCGCGGTGTGGTCCGTGGTCTCCGGCGTCCACAAGGGCCTGAAGTGGCTGTCGAACTTCAACATGTCCGTGGCCGCGCTGCTGGCCCTGGTGGTCTTCCTGCTCGGCCCGACGATCTTCCTGCTGAAGTCGATCCCGGAGAACGCCGGCGTCTACCTCTCGCTGCTGCCCGAGACGATGTTCCACGCCGGCCCGTTCTCCAGCGACGGCTGGGAGGCCGCCTGGACCATCGCCTACTGGGGCTGGTGGACCAGCTGGGCGCCCTTCGTCGGCATGTTCATCGCCCGCATCTCCCGCGGTCGCACCATCCGCGAGTTCGTCGTCGGCGTGCTCCTCGCGCCGACCATGGCCTCCCTGCTGTGGTTCACGATCTTCGGCGACTCGGGGATCCTGCAGCAGCGCGAGCAGGGCACGATGCTGGTCGAGGACCCCGAGACGGGCGACATGGTGGTCAACAGCACCACGGCGCTGTTCCAGCTCTTCGAGTCGTTCCCCGGCGGTCTGCCCGTCCTGCTGTCCGTGGTCGCGATGGTCGTGGTCGTGCTGTTCTTCGTCACGTCCTCCGACTCCGGCTCGCTGGTCATCGACATGCTCGCCTCCGGCGGCAGCACCCAGACCTCCGCCACGACCCGCGTCTACTGGGCCGTGCTGGAGGGCGTGGCAGCCGCGGTGCTGCTCGTGGTCGGCGGCAACGTCGCCCTGACGGCGTTGCAGACGTTGTCGATCTCGACCGCCGCACCGTTCTCGATCATCCTCGTCCTGGCGTGCATCTCCCTGATCAAGGCGTTCCGCCACGAGGTGGCCACGATGCCGAGCTACATCCAGGTCCTGCCGCAGTCCGAGGAGGCCGAGCCCGAGCCACCACCGCTGGCCTCCGCGCTGCGCCACCGTCCGCAGCTGGGCGACGTCTCGATGACGCTCGACGGGCTGACGCCGACGCGCACGAACGGACGGACGGCGGCCGCACCGGAACCGGAGCCCGAGGCGGAACCGGAGCCGCAGATCATCACCTATCGGACGCTGCACCCGAGCGACGTCGTGCTCGACCCGGAGACGGGCGACCCCGTCGAGGTCGAGCAGGTCGAGGACCCGCTGGCCGGCGAGGTGTTCGACACCCCGGAGTTCGAGTCCTCCCAGGAGTTCCTCGACCAGGGCGGCCAGCTCGACGAGGAGGGGATCCCGATCCCGCTGGACACCGACGAGGACGGCACCGCGGAGGACGGGGACCCGGCGGACCGGTCGGAGGAGCCGGAACCGCGCTCGACGTCCTGAMTTTPPTQGSTASSEHDPDAERRRSRILRPVFVPASVVIIGLIVATIVFANVAGDALEEATTQLNTWITDGVGWWYVIAVNVFLVFALYCAFSKIGLVRLGRDGEGPEFGVVSWFLMLFSAGMGIGLVFFGVAEPLWHYVAPPEAFGNAPESDAAARESVGLMMLQWGFHPWAIYAVVGLGLAYMSFRRGRPLAVRWLLEPLIGRQRVEGWMGHTVDTVAIVGTLFGVATSFGFGISQILGGLEFLGWAETSDPLIIGLITGITAVAVWSVVSGVHKGLKWLSNFNMSVAALLALVVFLLGPTIFLLKSIPENAGVYLSLLPETMFHAGPFSSDGWEAAWTIAYWGWWTSWAPFVGMFIARISRGRTIREFVVGVLLAPTMASLLWFTIFGDSGILQQREQGTMLVEDPETGDMVVNSTTALFQLFESFPGGLPVLLSVVAMVVVVLFFVTSSDSGSLVIDMLASGGSTQTSATTRVYWAVLEGVAAAVLLVVGGNVALTALQTLSISTAAPFSIILVLACISLIKAFRHEVATMPSYIQVLPQSEEAEPEPPPLASALRHRPQLGDVSMTLDGLTPTRTNGRTAAAPEPEPEAEPEPQIITYRTLHPSDVVLDPETGDPVEVEQVEDPLAGEVFDTPEFESSQEFLDQGGQLDEEGIPIPLDTDEDGTAEDGDPADRSEEPEPRSTSPGPT0013600_828DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020NANA
AK018_00559474soxR_1COG0789Redox-sensitive transcriptional activator SoxRGTGGTGGTCGAGCGCTACCTGACGATCGGGGACGTCGCGCGCCGCAGCGGCGTCGCGCCGTCGGCCCTGCGCTTCTACGAAGACCGAGGCCTGATCGCGGCCCGTCGCACGGGCGGGAACCAACGCCGCTACGAGCGCACGACGCTCCGCCGCGTGGCCTTCATCCGCACGGCGTCGCGGCTGGGCCTGACGCTCGAGCAGATCGGGGACGCCCTGGCGACGCTGCCCGACGGGCGCACCCCCACCGCCGCGGACTGGCGGCGACTGTCGCAGTCCTGGCGCAGCCTGCTCGACGAACGGATCGCCGTCCTCGAACGGCTGCGCGACGACCTCGACTCCTGCGTCGGCTGCGGCTGCCTGTCCCTGGACCGGTGCGCGCTGCAGAACCCCGACGACCGCGCCGCGGCCCTGGGCCCCGGGCCGCGCTACCTCGCGGGCGACTCGCCCTCCGACGTGACGGGCCCGACGCACTGAMVVERYLTIGDVARRSGVAPSALRFYEDRGLIAARRTGGNQRRYERTTLRRVAFIRTASRLGLTLEQIGDALATLPDGRTPTAADWRRLSQSWRSLLDERIAVLERLRDDLDSCVGCGCLSLDRCALQNPDDRAAALGPGPRYLAGDSPSDVTGPTHPGPT0012955_129DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGNITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012955-soxR-K13639NANA
AK018_005601209norWNitric oxide reductase FlRd-NAD(+) reductaseATGAGACCCACACCGCAGACACCGAGCACACACGTCCTGATCGTCGGCGCCGGGTTCGCCGGTGCCCTGGCGGCGGTGCGGCTCGCGGGACGGTCCCGCGGCCGCGTGCAGGTCACCGTCGTCAACCCCCGTGCGCAGTTCGTCAACCGACTCCGGCTGCACCAGCAGTCCGTGGGGCGCGAGACGCCGGCGCCGAGCCTGCGCGACCTCCTCGGACCGGACGTCACGATCCGGCAGGGCACCGTCACGGGACTCGACCCCGACGACGGCCGCGCCACCGTGTCCGGACCCGACGGCACGGACACCCTCGGGTTCGACCGCGTGGTGCTGGCGACCGGCAGCGTCACGCAGCCGGTCCCCGTCCCGGGCGGTGAGCACACCCACGCGGTCGCGTCGCTCGAGGCCGCGCAACGGCTGCGCGCAGGCCTCGGCGACCTGCCCGCGGGAGCCGACGTCGGCGTCGTCGGCGGCGGGTTCACGGGCCTCGAGACCGTCGGTGAGATCGCCGAGGCCCGTCCCGACCTGGCGGTCCGCCTGGTCACCTCCGGGGAGGTGGGCGGCTGGTTCGCACCGCACGGCGCCGCGTACGTCCGGTCGGCCCTGGACGGACTCGGCATCGAGTCCGTCGGCGGGTCGCGGGTGCGCGCCGTCGAGCACGACCGCCTGCACCTGGCCGACGGGGCCGAGGTGCCGTCGGACCTCACCGTGTGGTGCGGAGGGTTCGCCGCGCCACCTCTCGCCCGCGAGGCGGGCCTCGCCGTCGACGACGCCGGGGCGGTCCGCACCGACGCCGCGCTCCGCTCGGTGTCGCACCCGCAGGTGCTCGCCGTCGGCGACGCCGGGCACACCGAGGCGCCGACGGGCGGGCGGTACAGCATGTCCTGCCAGTTCGCCATGCCGTCCGGGGCGCACGCCGCCGACGTGCTGCGCGCCGAGGCGCTGGGCTCGGGCGGCGCCGCCCCCTTCGACCTCGGTTTCCTGGCACGCAGCGTCAGCCTCGGCCCCCGGGCCGCGGTGCTCCAGCGCACCACCCGCGACGACGTCGCGACCGGCCGCGCACTGACCGGTCCGGCGGCTCGCACGGCGAAGCGGTTCCAGGTGCGTGGCGTCGTCTCGGCGATCGGGCTGGCCCGCCGCGTCCCGGGGGCGGTCCGCTGGAGCGGTTCCGGTCGGGCCCCTGACCCGGCCGGCGCCGCCGTGGCAGGCTGAMRPTPQTPSTHVLIVGAGFAGALAAVRLAGRSRGRVQVTVVNPRAQFVNRLRLHQQSVGRETPAPSLRDLLGPDVTIRQGTVTGLDPDDGRATVSGPDGTDTLGFDRVVLATGSVTQPVPVPGGEHTHAVASLEAAQRLRAGLGDLPAGADVGVVGGGFTGLETVGEIAEARPDLAVRLVTSGEVGGWFAPHGAAYVRSALDGLGIESVGGSRVRAVEHDRLHLADGAEVPSDLTVWCGGFAAPPLAREAGLAVDDAGAVRTDAALRSVSHPQVLAVGDAGHTEAPTGGRYSMSCQFAMPSGAHAADVLRAEALGSGGAAPFDLGFLARSVSLGPRAAVLQRTTRDDVATGRALTGPAARTAKRFQVRGVVSAIGLARRVPGAVRWSGSGRAPDPAGAAVAGPGPT0004020_4818DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885NANA
AK018_00561924sigJECF RNA polymerase sigma factor SigJATGTCCCGCACCGAGGACTTCACCGCGCTGCGACCCCTGCTGTTCGCGATCGCGTACCGGATCCTGGGCAGCGTCGGCGAGGCCGAGGACGCCGTGCAGGAGACCTGGCTGCGGTTCGAGCGCACGACGACGGCGCCGACGTCGGTCCGGTCGTTCCTGTCCGCGGTGGTCACCCGGATCTCGATCGACGTGCTGCGCTCGGCCCGTGTCCGTCGCGAGGAGTACACGGGCACCTGGTTCCCCGAGCCGCTGCTCGACGACCCGTACGAGGATCCGGAGCGGTCCGCCGAGCTCGCCGACTCGGTCTCGATGGCCGCCCTGGTCCTGCTCGAGCGGCTCAGCCCGGCCGAACGCGCGGTGTTCGTGCTGCGCGAGGTGTTCGGGTTCGACTTCGCCGCGATCGCCGACGCCGTCGACCGCTCCGAGGCGGCGTGCCGGCAGCTCGCGGTCCGCGCCCGCCGTCACGTGGCCGAGGGACGGCCCCGGTTCGACGCCGACCGTCGCGAGCGCGACGAGCTCGCGGCCCGGTTCGTCGAGGCGTTCCGGGCCGGCGACGTCGACGGGCTGACCGAGCTGCTGGCCGCCGACGTGCAGGTGATCGGCGACGGTGGCGGCAGGGCACCGGCCTTCCCCCGGCCGGTCTCCGGCGTGGAGAAGGTGCTGCGGGCGTTCGCGGCCTTCACGCAGATGATGTCGTCCGTCGGGCTGCGCATCGAGCAGCACTCCGTGAACCGGCAGCCCGGCATGGTGATCCGCACCGCCGACGGGCAGCTCCTCGCCGTCATGGCGTTCGACGTGCTGGACGGCCGCATCCAGACCGTCCGCGGGGTGCTGAACCCCGACAAGCTGCGTCACCTGGGACCGGTGGCGGACGCCTGGTCGGTGCAGGCCGAGGCCGTGCAGGCTCGGCGGCGCCGGACGTGAMSRTEDFTALRPLLFAIAYRILGSVGEAEDAVQETWLRFERTTTAPTSVRSFLSAVVTRISIDVLRSARVRREEYTGTWFPEPLLDDPYEDPERSAELADSVSMAALVLLERLSPAERAVFVLREVFGFDFAAIADAVDRSEAACRQLAVRARRHVAEGRPRFDADRRERDELAARFVEAFRAGDVDGLTELLAADVQVIGDGGGRAPAFPRPVSGVEKVLRAFAAFTQMMSSVGLRIEQHSVNRQPGMVIRTADGQLLAVMAFDVLDGRIQTVRGVLNPDKLRHLGPVADAWSVQAEAVQARRRRTPGPT0014960_1298DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_00562681yhfK_1COG0702putative sugar epimerase YhfKATGAAGGTCGTCGTCATCGGCGCGCTCGGCAAGGTCGCCCGCCAGCTGGTCCCCCTCCTGGCCGACGGCGGGTCCGGCCCCGCGGTCGACGTCGTCGGGGTCGTGCGCCGGGAGGAGCAGATCGACCGGGTCGCCGACATCGGCGGCGAGCCGCTGCTCCTCGACGTCGAGCACGCGAGCACCGAGGAGATGGCCCGCGCGTTCGACGGCGCCGACGCCGTGATCTGGTCCGCCGGCGCGGGCGGCGGCAACCCCGACCGCACCTACGCCGTCGACCGCGACGCCGCGATCCGCTCCATGGACGCCGCCGCCGACGCGGGCGTGCGCCGCTACGTGATGGTGTCGTGGGTAGGGTCCGTGGCGGACCACGGCGTCCCGTCCGACTCGAGCTTCTTCCCCTACGCGGACGCCAAGCTCGCCGCCGACGACCACCTGCGGACCACCGACCTGGACTGGACGATCCTGGGTCCGGGCAGCCTGACCGACGACCCGCCCACCGGACGTATCCGGGTCCTGGGGGCCGACGAGCGGGTCGAGCGCGGGGAGCCCTCGCAGGTGCCGCGGGCCGACGTCGCGCAGGTGGCGGCCGCGACGCTGCGCATCGACACCACGATCGGGAAGTTCGTGCGGTTCACGACCGGTGACGAGACGATCCCGGCGGCGCTGCGTCGACACGGTTGAMKVVVIGALGKVARQLVPLLADGGSGPAVDVVGVVRREEQIDRVADIGGEPLLLDVEHASTEEMARAFDGADAVIWSAGAGGGNPDRTYAVDRDAAIRSMDAAADAGVRRYVMVSWVGSVADHGVPSDSSFFPYADAKLAADDHLRTTDLDWTILGPGSLTDDPPTGRIRVLGADERVERGEPSQVPRADVAQVAAATLRIDTTIGKFVRFTTGDETIPAALRRHGNANANANANA
AK018_005631293hypothetical proteinATGGCGCAACGCTGGTGTGACACTCACCGGCGATTGAGTCACACATTCCCTCAAAGTGTTATTAGTGTGGCGGGTGTGGTCACAGTTCCGGTGAACGTGCCTGAGATGGGCTACGAGGAGCACGTCTGGGAGGCCGAGCCCGACGGGCTGCACGGTCGCGCCCGCCTGGCGGCTGCCAGCGGGCCGTACCGGTCAACGCTGACGCCGTCCATCGCCGGCTACGTGCCGAACGTCCCGACAGACCTCGCCGCTGACACGGAAGAGGCGACCGCGGCCCTCGCGCGGTTCGACACCTATGCCCGTTCGTCGCTCGGCAGAGACAGTCCGGCGCTAGGGCCGATCTCCTCGATCCTGTTGCGCACCGAGTCGACGTCGTCCTCACAGATCGAGAACCTGACGGTCGGCGCACGCCAACTTGCTCTCGCCGAGATCGACCAGTCGACGTCACAGAACGCGAAGGTCGTCGTGGCCAACGTGCGCGCCATGGAAGCGGCACTTGAACTCGCCGATCGTCTTGACGTCGACGCGATCCTCACGATGCAGCGTGAGTTGTTGGAGGCTCAGGCCGGCTGGGAGAAGCACGCCGGTCGGTACCGCGACGGGTTGGTGTGGATCGGTTCCAGCGGACTCACCCCGATCGGTGCCAGCCATGTCGCCCCGCAGGCAGAGCATGTGCCCGCCGCGATGGACGACCTCGTGACCTTCATGCGCCGCGACGACATCCCCGTCCTCGTACAGGCCGCGATCGCGCACGCTCAGTTCGAGACGATCCACCCGTTCGCCGACGGCAACGGGCGAACGGGCCGCGCCATCGTGCACGCGTTGCTGAAGTCGAAAGGGGTGCTGACCAGTACGACGGCACCTGTCTCGGCCGGGCTGCTGCGCGATACCGAGGGCTACTTCGACGCGTTGCGTTCCTTCCGCGACGGTGATGCCCGTCCCATCATCGAAGGCTTCGGGAATGCGAGCCGCTTCGCTGCTTCGTCAGGTGCCCGGCTGGTCGATGACCTCGCAGCGCAGCTGGAGTGGTCCCGTGAGCAGATGTCCGGCGTGCGCCGCAGTGCCGGAGCCTGGAAGGTGCTTCCGCACCTGGTTGCTCATCCTGTGGTCAACGCGAACCTCTTGGTCGAGCAAGTCGGCCTGAACGGCATGGGCGCCCAGCGCGCGCTGGGACAGCTGGTCGACGCCGGGGTGTTGACCGAGCGCACGGGGAAGCAACGCCACCGGGTCTACCAGCACACCGGGATCATCGGAGTGCTCGACGTGTACGCGCAGCGGCTCAGCCGCGGCTGAMAQRWCDTHRRLSHTFPQSVISVAGVVTVPVNVPEMGYEEHVWEAEPDGLHGRARLAAASGPYRSTLTPSIAGYVPNVPTDLAADTEEATAALARFDTYARSSLGRDSPALGPISSILLRTESTSSSQIENLTVGARQLALAEIDQSTSQNAKVVVANVRAMEAALELADRLDVDAILTMQRELLEAQAGWEKHAGRYRDGLVWIGSSGLTPIGASHVAPQAEHVPAAMDDLVTFMRRDDIPVLVQAAIAHAQFETIHPFADGNGRTGRAIVHALLKSKGVLTSTTAPVSAGLLRDTEGYFDALRSFRDGDARPIIEGFGNASRFAASSGARLVDDLAAQLEWSREQMSGVRRSAGAWKVLPHLVAHPVVNANLLVEQVGLNGMGAQRALGQLVDAGVLTERTGKQRHRVYQHTGIIGVLDVYAQRLSRGNANANANANA
AK018_005641740poxB_1COG0028Pyruvate dehydrogenase [ubiquinone]ATGGCTCGCACCGTCGCCGAACACCTCGTCGACCAGCTCGTCGCCGCCGGCGTGGAACGCGTCTACGGCATCGTCGGGGACTCCCTCAACCCCGTCGTGGACGCCGTCCGCCGCACCGACGGCATCGACTGGGTGCACGTGCGCCACGAGGAGGCCGCCGCCTTCGCCGCGGCCGCCGAGGCCGAGGTCACCGGGAAGCTCGCCGTGTGCGCCGGCTCCTGCGGCCCCGGCAACCTGCACCTCATCAACGGGCTGTACGACGCGAACCGGTCCGGCGTTCCGGTCCTGGCGATCGCCTCGCACATCCCCAGCGCGCAGATCGGCACGAGGTTCTTCCAGGAGACCCATCCGGACCGGCTGTTCACCGAGGCGTCGGTGTTCTCCGAGATGATCTCGACGGCCGCCCAGCTCCCCCGGGTCACGCGCTCGGCGATCCAGCACGCCCTGGCCGAGCCGGGCGTCGCGGTCCTCACCCTGCCGGGCGACGTCGCCGACGAGGAGGTCCCCGACGACGACGCACCCATCCTCATCCCCGGGGCATGCCCCGCGCGCGTGGTCCCGCACGACGCCGACGTCGCGGCGCTCGCCGAGGCGATCGACGCCGCCCGCAAGGTGACGCTGTTCGTCGGTGCCGGTGCGCGCGACGCCCGCGCAGAGGTCCTCGAGCTCGCCGACCTCACCGCGGCCCCGGTGGGGCACTCGCTGCGCGGCAAGGAGATCATCCAGTACGACAACCCGCACGACGTCGGGATGTCCGGCCTGCTCGGCTACGGGTCCTGCCACGAGGCGGTCCACGACGCCGACCTGCTGATCCTCGTCGGCACCGACTTCCCGTACGACTCGTTCCTGCCCGACGACGTCCCCACCGCGCAGATCGACATCGACGCCTCGCACCTGGGCCGGCGCACCCGACTGGATCTGCCCGTGCACGGCGACGTCGGCGAGACGCTGCGGCTGCTCAACCCGCGGATCGAGCGCAAGAGCGACCGGAGGTTCCTCGAGGCGATGGTCGACCGCCACGCCACGGTCATGACCAAGGTGGTCGGCGCGTACACCCGCAAGGTGGAGAAGCACACGCCGATCCACCCGGAGTACGCCGCCGTGCAGCTCGACGAGGCCGCCGCCGACGACGCCGTGTTCACCGTGGACACCGGCATGAACAACGTCTGGGCCGCCCGGTACATCACGCCGAACGGCCGCCGCCGCGTCATCGGTTCGTTCATCCACGGGTCGATGGCGAACGCTCTGCCGCACGCCATCGGGGTGTCGATGTCCCAGCCCGACCGCCAGGTCGTGGCGCTCGCCGGGGACGGCGGGCTGTCCATGCTGCTCGGCGAGCTGATCACCGTGCGGGCGTACGACCTGCCGGTGACCGTCGTCGTGTTCAACAACGCCTCGCTCGGCATGGTGAAGCTGGAGATGCTCGTCGAGGGGCTGCCCTCGCACGGCACCGACTCGCCCGAGGTGGACTACAGCGCGATCGGCACCGCCGTCGGCATCCCCTCGCAGCGCGTGACGAAGCCGAAGGAGCTCACCAAGGCCTTCTCGAGCGCGCTGGACTCCGACGGCCCCGCCCTGGTCGAGGTCATGACCGACCCGCGGGCGCTGTCCATCCCGCCGTCGATCACCTCCGGTCAGATCCGCGGGTTCACGACCGCCATGACGAAGGAGATCTTCGGCGGCGGCATGGGCGAGGTCATGTCGATGGCGCGCTCGAACCTGCGCAACCTGCCCCGCTGAMARTVAEHLVDQLVAAGVERVYGIVGDSLNPVVDAVRRTDGIDWVHVRHEEAAAFAAAAEAEVTGKLAVCAGSCGPGNLHLINGLYDANRSGVPVLAIASHIPSAQIGTRFFQETHPDRLFTEASVFSEMISTAAQLPRVTRSAIQHALAEPGVAVLTLPGDVADEEVPDDDAPILIPGACPARVVPHDADVAALAEAIDAARKVTLFVGAGARDARAEVLELADLTAAPVGHSLRGKEIIQYDNPHDVGMSGLLGYGSCHEAVHDADLLILVGTDFPYDSFLPDDVPTAQIDIDASHLGRRTRLDLPVHGDVGETLRLLNPRIERKSDRRFLEAMVDRHATVMTKVVGAYTRKVEKHTPIHPEYAAVQLDEAAADDAVFTVDTGMNNVWAARYITPNGRRRVIGSFIHGSMANALPHAIGVSMSQPDRQVVALAGDGGLSMLLGELITVRAYDLPVTVVVFNNASLGMVKLEMLVEGLPSHGTDSPEVDYSAIGTAVGIPSQRVTKPKELTKAFSSALDSDGPALVEVMTDPRALSIPPSITSGQIRGFTTAMTKEIFGGGMGEVMSMARSNLRNLPRPGPT0001371_912DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001371-poxB-K00156NANA
AK018_005651272hypothetical proteinTTGTCGAACTACACCCGCCGGATCGCCGACGATCTGCTCGACGAGCTGCATCCCCATGTCGAGGCGTTGTCGCTCTACGGCCCCAAGGGCGTCGGGAAGACCGAGTCCGCACGTCGCCGAGCGCGGTCGATACTGGCCCTCGACCTCGACGACGACGTCACCCGACTGCGTGCCGACCCCGGACTGCTGACATCCCTTCCCGGACCGCTCCTGGTCGACGAGTGGCAACGGTGGCCCGAGTCCTGGGATCGCGTCCGCCGCGCCGTCGACGCCGGTGCCGAGCCCAGCCGCTTCCTCCTGACCGGTAGTACCGCGCCGCGCGGGACCGCAGTCCACTCCGGGGCAGGGCGCATCATCGGTCTCCGGATGCGACCGATGAGCCTCGCCGAACGAGGGGTCGAGTCCCCGACCGTCAGCCTGGGCGCGCTGCTCGAGGGTCGGGCGGAGATCGGTGGCCAGACCGAGGTCGTCCTGGACGACTACGTCGAGGAGATCGTGACCTCCGGCATACCGGCCGTCCGACGCGCACGGACGGCTCGTCTCCGCCGGGCCGCCCTGGACACCTACCTGGCGAACATCGTCGAGCGAGAGTTCCCGGAGCAGGGGTACCCCGTCCGTCGGCCCGAGGCGCTGCGCGCCTGGCTGGCGGCCTACGCCGCAGCCAGCTCCTCCGTCGCCAAGTACAGCGAGATCCTCGACGCCGCGACGCCGAACCACGGCGACAAGCCCGCGAAGAAGACGACCGAGGTCTATCGCGAAGCACTCTCGGGGCTCTGGCTGCTCGACCCGACACCGGCCTGGTCGCCCACAGGTTCGCACCTGTCCCGCCTGAGCCGCGCCTCGAAGCACCAGCTGGCCGACCCTGCACTCGCTGCTCGGCTCCTCAACCTCGACGCACAGACACTGTCCGCCGGGCACGCCGGCACCAGGCCGCTCCGCGACGGCTCGCTGCTCGCTGCCCTCTTCGAGTCACTGGTCACGCTCGACGTGCAGGTCTATGCCCCACTCCACGAGGCACAGGTCGGCCACCTGCGGGACTGGAACGGCCGCCGGGAGATCGACCTGATCGTCTCCGGGCTCGGTGGGCGCCTCGTCGCACTGGAGGTCAAGCTTGCGGCCACACCCGGGGATCGCGACGTCGAACACCTGCTCTGGCTCAAGGAGCAGCTCGGCGATCAGGTGGCCGACCTGGTGATCGTCACCACAGGACGGCATGCCTACCGCCGCCAGGACGGCGTCGCGGTCGTCCCTGCCGCGCTCCTCGGTCCGTGAMSNYTRRIADDLLDELHPHVEALSLYGPKGVGKTESARRRARSILALDLDDDVTRLRADPGLLTSLPGPLLVDEWQRWPESWDRVRRAVDAGAEPSRFLLTGSTAPRGTAVHSGAGRIIGLRMRPMSLAERGVESPTVSLGALLEGRAEIGGQTEVVLDDYVEEIVTSGIPAVRRARTARLRRAALDTYLANIVEREFPEQGYPVRRPEALRAWLAAYAAASSSVAKYSEILDAATPNHGDKPAKKTTEVYREALSGLWLLDPTPAWSPTGSHLSRLSRASKHQLADPALAARLLNLDAQTLSAGHAGTRPLRDGSLLAALFESLVTLDVQVYAPLHEAQVGHLRDWNGRREIDLIVSGLGGRLVALEVKLAATPGDRDVEHLLWLKEQLGDQVADLVIVTTGRHAYRRQDGVAVVPAALLGPNANANANANA
AK018_005661134pat_1COG0079Putative phenylalanine aminotransferaseGTGACACCCCTGCCGGGCGTCGTCGGGCCGCCGGAGGTGGCATCCTGGACCGCTGTGAGCTCACCGGCATCCGACCAGACCGTCCCCCTGCGCGCCGCCGTCGCGGCCCTGCCCGCCTACGTCCCCGGCGCCCGTCCGTCGGGGCAGGCGTGGAAGCTGTCCTCCAACGAGAACCCGTACCCGCCGCCGTCGGCCGTCGTCGCGGCGATCACGGAGGCCGCCACGGAGGTGAACCGGTACCCGGACATGTTCGCCACCGAGCTGGTCGAGGCGCTCGCCGCGCACGTCGGCGTCGAGCCCGAGCAGGTCGTGGTCGGCAACGGCTCGGTGGCGGTGCTGCAGCACGTGCTGGAGGCCGTCCTGGAGCCGGGCGACGAGGTCGTCTACCCGTGGCGGTCCTTCGAGGCGTACCCGATCATCACCACGATCGCCGGGGGCACCTCGGTCACCGTGCCCGTCGCGGCCGACGGGCGGCTCGACCTGCCCGCCATGGCCGCCGCCGTCGGGCCGCGGACCCGCGCGGTGCTCGTGTGCACGCCCAACAACCCCACCGGCCCCGTGGTGCACGCCGACGAGCTGGAGACGTTCCTGGCCACGGTGCCGCGGGACGTGCTCGTCGTCGTGGACGAGGCCTACCTCGAGTTCATCCGCGACCCCGAGGCCCCGGTCGGCATCGACCTGCTGCGCCGGCACCCGAACGTCGTGCTCGTGCGCACGATGTCCAAGGCATCCGGGCTGGCCGGTCTGCGCGTCGGGTACGCCGTCGCCGAGCCGCGCCTCGCCACGGCGGTCCGCTCGACGTCGACGCCGTTCGGCGTCAACCACATCGCCCAGCGCGCCGCGCTCGCCACCCTGCAGCCCGCCGTGCAGGCCGAGCTCGCCGAACGCGTCGAGCACCTCGTCACCGAACGCACCCGCGTGTGGGACGCGCTGCGCGCGCAGGGCTGGGACGTGCCGGCCACCCACGCGAACTTCGTCTGGCTCGCCACGGGGGAGCGGACGGCGGAGCTCGCGGCCGAGGCCGCGGCGGCCGGGGTGCTCGTGCGCCCGTTCGCCGGCGAGGGCATGCGGGTGAGCATCGGTGAGGTCGAGGCGAACGACGCGTTCCTGGAGCTCGCGGCCGGCTGGCGCTGAMTPLPGVVGPPEVASWTAVSSPASDQTVPLRAAVAALPAYVPGARPSGQAWKLSSNENPYPPPSAVVAAITEAATEVNRYPDMFATELVEALAAHVGVEPEQVVVGNGSVAVLQHVLEAVLEPGDEVVYPWRSFEAYPIITTIAGGTSVTVPVAADGRLDLPAMAAAVGPRTRAVLVCTPNNPTGPVVHADELETFLATVPRDVLVVVDEAYLEFIRDPEAPVGIDLLRRHPNVVLVRTMSKASGLAGLRVGYAVAEPRLATAVRSTSTPFGVNHIAQRAALATLQPAVQAELAERVEHLVTERTRVWDALRAQGWDVPATHANFVWLATGERTAELAAEAAAAGVLVRPFAGEGMRVSIGEVEANDAFLELAAGWRPGPT0020305_3809DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
AK018_00567402hypothetical proteinATGACCGCCATGAACTTCATCGCACGTCTCGTCGTGACGTCGCTGGCCCTGTGGATCTGCGACCTGATCTTCGACAGCTTCGAGATCTTCGGTGGTGACGACGCGCTCGGGCGCGTCCTCGCCATCGTCGGCGTGGGGCTGATCTTCACGCTGGTGAGCTCGATCGTGAAGCCGATCGTCAGCATCGTGTCGATCCCGCTGCTGATCCTCACCCTCGGGTTGTTCTACCTGATCATCAACGCCGGGATGCTGTGGCTCACGGAGTGGCTGACCAGCCAGAACTGGCTCGGCAACTGGGGCCTGGAGATCGAGGGCGGCTTCTGGTGGTACCTGTGGATCGCGCTGATCCTGGCGATCCTGCAGACCGTCATCGGCTGGGTCGTCCCCGGCGACAAGAGCTGAMTAMNFIARLVVTSLALWICDLIFDSFEIFGGDDALGRVLAIVGVGLIFTLVSSIVKPIVSIVSIPLLILTLGLFYLIINAGMLWLTEWLTSQNWLGNWGLEIEGGFWWYLWIALILAILQTVIGWVVPGDKSNANANANANA
AK018_005681563hypothetical proteinGTGAGCCGCGACCCCCGGGACACGCTGCGCATCGTCGGCGGCGCCGTCGTCACCCGCGTCGACACCGGGTCCGTGCGCGCCGCGGCGGGCCGGCTGGCCGACGCGACCGCCTCGTTGCGTGCGGCCGCCGGCGACTGCGTCCGCGCGGGCCGGGCGCTGGAGCGCGCACGGTGGGCGCCGGCGCCGCTCGGGGAGACGGACCCCGGCCGCCCCGCCCGGCTGGCCCGGGCCGGTGCGCTCGCCGACGACGCGGCGGCAGCGCTCGGGGTGCGGGCCGACGAGTGCGCACTGCTCGGTGAGCGGCTGCTGCGTGCCGCCGGGCTGTACGAGCACACCGAGTCGCTGGCCGAACGGGTCCTCGGTGCGGGTGTGACCGGTGCGGCCGGTCTGCTGGGGCTCGGCGTGACCGGGTTCCTGCGGACGCCCGCCGGGCGGCCGCTCCTGCTGTCCGGGGCGGCGGGTCTGGTCGGACTGTCCGCCCTCGCGCCCGACCCGGACGCCCCGCGTCCGGCGCCGCAGGTCGTGCCGCACGGTGCGCCCGCCGCGCCGGCCGGGGACGGCGACGGGCCGGGAGGTTCCGTGCTGCGCACCGTCGCGCCGGTCGTCGACGAGGCGCTGACCGGCCTGGGCGTCGGTGTGGCGCTCGGTGCACCGGGGCTGTCCGGCGGCGACTTCTCGGTCACCGGGGGAGCGGGCGTGCTGTCGAGGGCCGTCGAGGCCGTGCTCGGGACCCGTGCGGTGCTCGTCGACGCCGTCGACCCGGCCACGTTCCCCGGGGGCCCGCCGGACCGCGACGACCGCCCCGCCGGGAGCGTCGCGGAGGCGCTGGCCCGCACGGCGGACCTCTACCCGCACGGCAGCGGGATCCCGGGACGGCCGGCCCCCGGGCCGCCGCCCGGCACGATCGCGGTCGAGCGGGTCACCCACGCCGACGGCAGCACCTCCTGGACGGTGCTGATCCCGGGCACCCAGGCGCTGCTGTCCCCGCGCAACCCTTTCGACGTCGACACCGACCTCGACCTCGTGGCACGACGGGCGGCCGATGTCGCCGAGGGCGTCGAGCAGGCGCTCGCGGACGCCGGGGCCCAGGGCGACGAGCCCGTCGTGCTGGTCGGGCACTCGCTCGGCGGGATCGCGGCGGTGTCGCTCGCCGCGTCCCCGACGTTCCGACGGCGGCACCCGGTGGGCGGCGTCGTCACCGCCGGCGCCCCGACGGCGACCTTCCGCACGCCGCCGGGGGTGCCGGTGCTGCACCTGGAGAACACCGAGGAGCTCGTCTCGCCGCTGGACGGTCGCTCCAGCACCGAGAACCCGGCCACGGCCCACCGGGTCACCGTCGGGCGCGACCTGGCGGACTCCCGGGACCCGGCCGACCGGGCGGCGTCGGGCAGCGTCGCCACGGCGCACTCCGTCGGCACGCACCTGCGCACGCTGGCGCACGCGCGGGACGCGGGCAGCGTCCAGGTCGCCTCGGTCACCGGCCGCCTCGACCGTCTCCTGGACGGCGAGCGCGCCGAGACCCGCTACTACCGTCTCCGGCGCGCCCGCGCCGGGGACGGGTGAMSRDPRDTLRIVGGAVVTRVDTGSVRAAAGRLADATASLRAAAGDCVRAGRALERARWAPAPLGETDPGRPARLARAGALADDAAAALGVRADECALLGERLLRAAGLYEHTESLAERVLGAGVTGAAGLLGLGVTGFLRTPAGRPLLLSGAAGLVGLSALAPDPDAPRPAPQVVPHGAPAAPAGDGDGPGGSVLRTVAPVVDEALTGLGVGVALGAPGLSGGDFSVTGGAGVLSRAVEAVLGTRAVLVDAVDPATFPGGPPDRDDRPAGSVAEALARTADLYPHGSGIPGRPAPGPPPGTIAVERVTHADGSTSWTVLIPGTQALLSPRNPFDVDTDLDLVARRAADVAEGVEQALADAGAQGDEPVVLVGHSLGGIAAVSLAASPTFRRRHPVGGVVTAGAPTATFRTPPGVPVLHLENTEELVSPLDGRSSTENPATAHRVTVGRDLADSRDPADRAASGSVATAHSVGTHLRTLAHARDAGSVQVASVTGRLDRLLDGERAETRYYRLRRARAGDGNANANANANA
AK018_00569231hypothetical proteinATGCCCCTGCACAGCTCCGACGTGGCCGACGCCGCGGCCCGGCTCCGTGACGCCCGTCGTCGTCTCGCCGACGCCGTGGCGACCCTGCACGTGGCCCGGGACCCGGGCTGGGACTCGCCCGCGGCGGACGCGTGCCGGGAGGCCGTGGCCGCACGGCTCGCCGCGCTCGACACCGACCGCGGGACCGTGGACCAGGCCGTGCACCTCGTCGACGGGTGCCTCGGCCCGTGAMPLHSSDVADAAARLRDARRRLADAVATLHVARDPGWDSPAADACREAVAARLAALDTDRGTVDQAVHLVDGCLGPNANANANANA
AK018_005701476purB_1COG0015Adenylosuccinate lyaseGTGACCTCCACTGCGCAGCCCACCCGTGTGTCCCTGGCCGACGTCACCCCGCCGATCGCCCTCGGCCCTCTCGACGGCCGCTACCGCTCCGCCGTCGGCCCGCTGGTCGACCACCTCAGCGAGGCGGCCCTGAACCGCGAGCGCCTGCACGTCGAGGTCGAGTGGCTCATCACGCTGTGCAACGGCACCGAGTCCGCCCAGGGTGTCGTCCCCGGCCCCGTGGTGCCGGGCGCCCCGACGCTGACCGACACCGAGATCACCTACCTGCGCGCGATCCCCGCGACGTTCGGCGCCACGGAGATCGCCGAGCTCGGCGCCATCGAGCGCGAGACGGTGCACGACGTCAAGGCGGTCGAGTACTTCATCAAGCGCCGCATCGCCGACGCCCCCGAGGTCCTCGGCGAGACGAACCTGCCCGCCGTGAGCGAGCTGGTGCACTTCGCCTGCACCTCCGAGGACGTCAACAACCTGTCCTACGCGCTCATGGTGCGGGACGCCGTCACCGAGGTGTGGCTGCCGGCCGCCACCGCGCTGGCCGACCAGCTCGCCGACATGGCCCGCGAGCACGCCTCCGTGCCGATGCTGAGCCGCACCCACGGCCAGCCGGCCACCCCGACGACGATGGGCAAGGAGCTCGCGGTGCTCACGCACCGCCTGCGCCGCCAGCTGCGCCGCATCGAGGGGGCCGAGTTCCTCGGCAAGCTGAACGGCGCCACCGGCACCTTCGGTGCGCACACGGTCGCCGTCCCGGACGCCGACTGGCCGGCGGTCTCGCGCGGGTTCGTCGAGCACCTCGGCCTGACCTGGAACCCGCTGACGACGCAGATCGAGTCGCACGACTGGCAGGCCGAGGTCTACGCGGACGTCGCGCGGTTCAACCGGATCCTGCACAACCTGGCCACCGACGTGTGGACGTACATCTCGATGGGCTTCTTCACCCAGATCCCCGTCGCGGGCGCTACGGGTTCCTCGACGATGCCGCACAAGGTCAACCCGATCCGGTTCGAGAACGCCGAGGCCAACCTCGAGATCTCCTGCTCGCTCCTGGACACGCTCAGCGCCACGCTCGTGACGAGCCGCCTGCAGCGCGACCTGACGGACTCCACGACGCAGCGCAACATCGGCCCGGCGTTCGGCCACTCGCTGCTCGCGATCGACAACGTGCGCCGCGGTCTGCAGGCGCTCGCCGTCAACGCGGACCTCATGGCCGCCGACCTCGACGAGAACTGGGAGGTCCTGGGCGAGCCGGTGCAGTCGGCGATGCGCGCGGCGTCCGTGGCCGGCGTCGAGGGCATGGAGAACCCCTACGAGCGCCTCAAGGAGCTCACCCGCGGGAACCGGGTCGACCAGGCGCGGATGCGCGAGTTCGTCGGTGGCCTCGGCCTGCCCGACGACGTCGCGGCGCGGCTGGCCGAGCTCACCCCGGCGTCGTACACCGGCATCGCGGCGCGGCTGGTCGACGACTACCTGGACTGAMTSTAQPTRVSLADVTPPIALGPLDGRYRSAVGPLVDHLSEAALNRERLHVEVEWLITLCNGTESAQGVVPGPVVPGAPTLTDTEITYLRAIPATFGATEIAELGAIERETVHDVKAVEYFIKRRIADAPEVLGETNLPAVSELVHFACTSEDVNNLSYALMVRDAVTEVWLPAATALADQLADMAREHASVPMLSRTHGQPATPTTMGKELAVLTHRLRRQLRRIEGAEFLGKLNGATGTFGAHTVAVPDADWPAVSRGFVEHLGLTWNPLTTQIESHDWQAEVYADVARFNRILHNLATDVWTYISMGFFTQIPVAGATGSSTMPHKVNPIRFENAEANLEISCSLLDTLSATLVTSRLQRDLTDSTTQRNIGPAFGHSLLAIDNVRRGLQALAVNADLMAADLDENWEVLGEPVQSAMRAASVAGVEGMENPYERLKELTRGNRVDQARMREFVGGLGLPDDVAARLAELTPASYTGIAARLVDDYLDPGPT0021555_292DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021555-purB-K01756NANA
AK018_005711221hypothetical proteinATGGTCCGGACGGTCCTTCTCCCGAGACGGGTGGTCGCGATCCTGCTCGCCGCCGCCGTCGTGCTGGCGCCCGCCGCGGCAGACGTCGCGGTGGCACCTCCCGCCGACGCCGCCGCGAGACCGGTCGCGCCACCGCTGAAGAACGACACCTACGTGCTGTCCTCGTACTACGGCCCGCGGTGCATGCCGGTGCGTTCGGCCTCGGCGTTCCACCGGGGCCAGGACCTCGGGGCCGCCCGCGGCACCGACGTCCGGGCCGTGGCCCGGGGCACGGTGCGGCACGCCGGCGCCGTGCGTGGCTTCGGTCAGTGGGTCGTCGTCGACCACACGATCGACGGCGTCCGGTTCTCCTCCCTGTACGCGCACCTGATCGACGGCGACCGGCGCGTGACGGCAGGTCAGCGGGTCAGCAAGGGACAGCACATCGGCGACGTCGGCTCGACGGGCACGTCGACCAGCCCCCACCTGCACCTGGAGATCTGGCGCGGGGGCTACGGCACGGGCCGGACCGTCGACCCGCTGCGGTTCCTCGAGAGACGGGGCATCGACCTGACGACGAGGTCGATCCGCAACTACTCCCGGTCGGTGCCCTCGTCCTGCCGGTACTACACCGCCGCCAAGGTCAACTTCCGCACCGGCCCCGGGACGGGGTACCGGGTGATCCGCGAGCTGCAGTCCAACGTGACCCTCGGCGCGCTGCCCGGTGACGAGTCGGGCGTCTGGCGCAAGATCACCCGCTCCGGGCGCACCGGGTGGATCCACCGGGACTACGTCTCGCCGGGCTACACGTCGCAGGGGACCCGCTACGTGCTGGCAGGGTCGCTCAACCTGCGCTCGGGGCCCTCGACGTCGCACCGGGTCAAGCGTGCTCTGCCCCGCGACGCGAAGGTCGCCCTGCTGCGCACCGGATACCGCAACGGCGTGTGGCAGCGGGTCCGCCACGGCGGCACCAACGGCTGGGTGTCGGCACGCTACCTGGCCCTGAACCGCGACGGGGCCCGCATCGTGCCGAAGTCGTCGGGACGGACGTACGCCTGGGTCGACACCAGCACGCTCAACCTGCGGTCCGGCCCCTCGGCCTCCGACCGGGTGCGGCTGCGGCTCCGTCGCGACGAACGCGTGCGCCAGCTCGAGCGGGTCACGGACGGCTGGGTGAAGGTGCGCCACGACGGCAGGACGGGCTACGTGGCAGCGCGCTACCTGACCTCGTCCCGGCCCTGAMVRTVLLPRRVVAILLAAAVVLAPAAADVAVAPPADAAARPVAPPLKNDTYVLSSYYGPRCMPVRSASAFHRGQDLGAARGTDVRAVARGTVRHAGAVRGFGQWVVVDHTIDGVRFSSLYAHLIDGDRRVTAGQRVSKGQHIGDVGSTGTSTSPHLHLEIWRGGYGTGRTVDPLRFLERRGIDLTTRSIRNYSRSVPSSCRYYTAAKVNFRTGPGTGYRVIRELQSNVTLGALPGDESGVWRKITRSGRTGWIHRDYVSPGYTSQGTRYVLAGSLNLRSGPSTSHRVKRALPRDAKVALLRTGYRNGVWQRVRHGGTNGWVSARYLALNRDGARIVPKSSGRTYAWVDTSTLNLRSGPSASDRVRLRLRRDERVRQLERVTDGWVKVRHDGRTGYVAARYLTSSRPNANANANANA
AK018_00572192hypothetical proteinATGACGACCCACGCGCCGGAGCAGGAGCCCCGTCACGACCGGCCCGCCCGACAGATCCCGCCCAACGCGTTCGCACGGCTGCTGCTGGCCCACGACCCGGCGGTGACCGACCCCCGGTTCAAGGGTGAGGCGATCGACGCCGACGCGGGCTACGAGGAGACCGACGAGCACGACCGGTTCGACGCCGGCTGAMTTHAPEQEPRHDRPARQIPPNAFARLLLAHDPAVTDPRFKGEAIDADAGYEETDEHDRFDAGNANANANANA
AK018_005731602hypothetical proteinGTGCTCGAGAACTACCCGATCCTGACGCTCGTCCCACCGGTGCTGGCCATCGCCCTGGTGATCCTCACCAAGAGAGTGCTGCTGAGCCTCGGCGCCGGCGTCCTGGCGGCCGCCCTGCTGGTGGCCGACCTGAACCCGCTGGAGACGCTGCGGCTGGTCGGGGAGTCCTTCGCCGTCATCTTCTGGGTCGACGGCGCGGTGAACACCTGGTACGTCTACATCCTGGTGTTCACGCTGGTCCTCGGCGTGATCGCGGCCCTGATCATGATGTCGGGCGGGACCAAGGCCTTCGCCGACTGGGCCGTCGTACGCATCCGGACCCGACGAGGCGCCCAGCTGCTCCCGGCGATCATGGGCATCGTCATCTTCATCGACGACTACTTCAACGCGCTCGCCGTGGGGCAGGCCTCGCGCCCGGTCACGGACCGCCACCGCGTCTCGCGGGCCAAGCTGGCGTACATCATCGACTCGACGTCGGCGCCGGTCGCGGTGCTCGCGCCGTTCTCGAGCTGGGGCGCCTACATCATGGGGATCCTCGCCCCGATCGTCGCGGCCTCGGCGATCACGGCCTCCAGCGTGCAGGCGTTCCTCGGCGCGGCCGCCGCGAACTACTACGCGATCGCCGCAGCGGTGACCGTGTGGCTCGCCGTCCTGCTGCGGCTCGACGTCGGCCCCATGCGCCGCGAGGAGCACCGCGCCGTCCACGAGGACCAGCCGTTCGACCCCGACGACGACATCCCCGGCCGGCTCGCCGAGGACCTGCCCGTCCACCACCCCGGTGCCAAGCGGGCGCTCGTGGTCCCGTTCGTGCTGCTGGTCGTCGGTGTCTTCGCCGGCATCGTGTGGACCGGGTACGCGGCGGCCGGCACCTGGGACCCCGTGGAGATCCTCGCCGCGACGGACACGAGCGCGGCGCTGCTCGTCGGCGGCGTGCTCGGTCTGGCCGCCGCCGTCTTCTACTACCTGCGCTACACGGGCCCGAACCCGGCGTTCGCGGCCCGGCACTTCGGCCGGGGCTGGGTCGAGGGACTGCGCTCCATGTGGCCGGCCGTGAGCATCCTCGTCCTGGCCTGGATGCTCACCGGCCTCATCGACCAGCTCGGCACCGGCGCCTACCTGGGCGGCCTCGTCGAGGACGCGAACCTGGCGGCCTCCTGGCTGGTGCCGGTCGTGTTCGTGCTGGCGGCGGCGATGGCTTTCGCCACCGGCACCTCGTGGGGCTCGTTCGCCCTCCTGCTGCCGCTGGTCGGGGGCATCATGAACAGTCTGGGCGAGCCGGACCTGCTGCTGCCGGCCCTCGGCGCCGTGCTGGCGGGAGCCGTCCTCGGCGACCACAGCTCGCCGATCTCCGACACGACCATCCTGTCCTCCACCGGCGCCGGGGCGAACGTCATCACGCACGTGCTGACCCAGCTCCCGTACGCCGGCGGCGCGGCCGTGGCGGCGCTGTGCGGCTACGTCGCGATCGCCCTCGGGGCCGGGACCGCCGTCGGGCTCCTCGTGACGCTCGTGGTGCTCCTCGCGCTGGTACTGGTCACCCGGGCGGTGCGGCGGCCCGTCGAGTCGGACGCACCGGCCCGTGGCCGCGTCGAGGAGTCCTGAMLENYPILTLVPPVLAIALVILTKRVLLSLGAGVLAAALLVADLNPLETLRLVGESFAVIFWVDGAVNTWYVYILVFTLVLGVIAALIMMSGGTKAFADWAVVRIRTRRGAQLLPAIMGIVIFIDDYFNALAVGQASRPVTDRHRVSRAKLAYIIDSTSAPVAVLAPFSSWGAYIMGILAPIVAASAITASSVQAFLGAAAANYYAIAAAVTVWLAVLLRLDVGPMRREEHRAVHEDQPFDPDDDIPGRLAEDLPVHHPGAKRALVVPFVLLVVGVFAGIVWTGYAAAGTWDPVEILAATDTSAALLVGGVLGLAAAVFYYLRYTGPNPAFAARHFGRGWVEGLRSMWPAVSILVLAWMLTGLIDQLGTGAYLGGLVEDANLAASWLVPVVFVLAAAMAFATGTSWGSFALLLPLVGGIMNSLGEPDLLLPALGAVLAGAVLGDHSSPISDTTILSSTGAGANVITHVLTQLPYAGGAAVAALCGYVAIALGAGTAVGLLVTLVVLLALVLVTRAVRRPVESDAPARGRVEESPGPT0027895_149DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-TETRACYCLINE_RESISTANCE,PGPT0027895-tet35-K18218NANA
AK018_005741686pgm_1COG0033PhosphoglucomutaseATGGATCCCCGCGCCGGCCAGGTGGCCCAGCCCGACGACCTCATCGACGTCGACCAGGTGGTCGGCGCGTACTACGACATCAGGCCCGACGTGGAGGACCCGGCCCAGCAGGTCGCGTTCGGCACGTCCGGGCACCGGGGGTCCTCCCTGGACGGCGCCTTCAACGAGGCCCACATCGCCACGATCACGCAGGCGATCGTCGAGTACCGCGCGCTCGAGGGCATCGACGGGCCCCTGTTCCTCGGCCGGGACACGCACGCGCTGTCCCTGCCGGCGTGGCAGACCGCCATGGAGGTGCTCGCGGGGGCCGGCGTCACGGTGATGATCGACGCGCGCGACGCGTACACCCCGACCCCGGCGGTGTCGCAGTCGATCCTCATCCACAACGGTGCGGCCGCCGAGGGAGGGGTGCGGACCTCGGGTCCGGGGCAGGCGGACGGCATCGTCGTGACGCCGTCGCACAACCCGCCGCGCGACGGCGGCTTCAAGTACAACCCGCCGCACGGCGGTCCCGCGGACTCCGGGGCGACCCGCTGGATCGCCGACCGCGCCAACGACCTGCTGCGGGCCGGCGGCCTCTCCCGGGTCCACCGGGTGTCCCTCGACGTCGCGGTGGCCGCCTCGACGACGCACCGGCACGACTACCTGTCGACCTACGTCGACGACCTCGCCAACGTGCTCGACCTGGACGCCATCCGTGAGTCCGGCGTCCGTATCGGCGCCGACCCGCTGGGCGGAGCCTCGGTGGACTACTGGGGCGAGATCGGCGAACGGTACGGCCTGGACCTGACGGTCGTGAACCCGCAGGTCGACCCGCGCTGGGCGTTCATGACCCTGGACTGGGACGGCAAGATCCGCATGGACTGCTCGTCCCCGCACGCGATGGCCTCGCTCGTGCAGGCCATGCGCCCGGACGACGGCGGCAGCGCGCCGTACGACGTCGCGACGGGCAACGACGCGGACGCGGACCGCCACGGCATCGTCACCCCGGACGCCGGGCTGATGAACCCGAACCACTACCTCGCGGTCGCGATCCAGTACCTGTACGGCGGGGCGCGGCCGGACTGGCCGACGACGGCCGCCATCGGCAAGACCCTCGTGTCCAGCGCACTGATCGACCGGGTGGCGGCCGGCCTGGACCGTCGCCTCGTCGAGGTGCCCGTCGGGTTCAAGTGGTTCGTGCCCGGGCTGCTGACCGGCGCGGTCGGTTTCGGCGGCGAGGAGTCGGCCGGCGCGTCGTTCCTGCGCCGCGACGGCCGCGTCTGGTCGACGGACAAGGACGGCATCCTGCTGGCGCTGCTGGCCTCGGAGATCATCGCCACGACCGGCAGGACGCCGTCGCAGCACCACGCCGACCTCGTCGCACGCTACGGGGAGTCCTGGTACGCCCGGGTCGACGCCCCCGCGTCCCGCGAGGAGAAGGCCCGGCTCGACGCGCTCTCCCCCGACCAGGTCGCCTCGACCAGCCTCGCCGGCCAGGACATCACCGCCAAGCTCACCGAGGCCCCCGGCAACGGGGCGGCGATCGGCGGGCTGAAGGTCACGACGTCGGACGCCTGGTTCGCGGCCCGCCCCTCGGGCACGGAGGACGTCTACAAGATCTACGCCGAGTCGTTCGTGTCCGCCGACCACCTGGCCGAGGTGCAGGCCGAGGCGAAGCAGGTCGTCTCCGACGCGCTGGCCTGAMDPRAGQVAQPDDLIDVDQVVGAYYDIRPDVEDPAQQVAFGTSGHRGSSLDGAFNEAHIATITQAIVEYRALEGIDGPLFLGRDTHALSLPAWQTAMEVLAGAGVTVMIDARDAYTPTPAVSQSILIHNGAAAEGGVRTSGPGQADGIVVTPSHNPPRDGGFKYNPPHGGPADSGATRWIADRANDLLRAGGLSRVHRVSLDVAVAASTTHRHDYLSTYVDDLANVLDLDAIRESGVRIGADPLGGASVDYWGEIGERYGLDLTVVNPQVDPRWAFMTLDWDGKIRMDCSSPHAMASLVQAMRPDDGGSAPYDVATGNDADADRHGIVTPDAGLMNPNHYLAVAIQYLYGGARPDWPTTAAIGKTLVSSALIDRVAAGLDRRLVEVPVGFKWFVPGLLTGAVGFGGEESAGASFLRRDGRVWSTDKDGILLALLASEIIATTGRTPSQHHADLVARYGESWYARVDAPASREEKARLDALSPDQVASTSLAGQDITAKLTEAPGNGAAIGGLKVTTSDAWFAARPSGTEDVYKIYAESFVSADHLAEVQAEAKQVVSDALAPGPT0017710_2135DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835NANA
AK018_00575297hypothetical proteinATGACCGACACCCCTGCCGTGACCGTCCGCGACGACCCGGAGCGTGGTGTCTTCCTCGCCGTGCTCGACGACGGCACCGAGGCCGGCGGGGCGTACTACCGCCACGCCGACGGCGTCGTGACCTTCACGCACACCGAGGTGCCCTCCGACTACGAGGGCCAGGGCGTCGGGTCCACGCTCGCCCGCGGTGCCCTGGACGCCGTGCGCGAGCGCGGAGAACGAGTCGTCGCGGAGTGTCCGTTCATCAAGGCCTACGTCGAACGCCACCCCGAGTACCAGGACCTGCTCGCCGGGTAGMTDTPAVTVRDDPERGVFLAVLDDGTEAGGAYYRHADGVVTFTHTEVPSDYEGQGVGSTLARGALDAVRERGERVVAECPFIKAYVERHPEYQDLLAGPGPT0014881_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ADAPTIVE_MUTATIONCE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014881-dinB-K02346NANA
AK018_00576333hypothetical proteinGTGGACATCCAGCACGACCCCGAGCACGGACGGTACGAGGCACGGGTCACCGGTCCCCCGGGTTCGGCCGCGGAGGACGCGCACGCGATCGGCGTCCTGCGCTACCACCGCGAGGGCGACGTCGTGGTGATCCCCGGGACCGTCGTCGTCCCCGAGCACCGCGGTCACGGGGTCGCCGACGCCCTGGTCCGGCGCGCGCTGGACGACGTCGCCGCCGCGGGAGCGACGGTGCGACCGGACTGCTGGTTCGTCGAGACGTGGCTGCGGCACCACCCCGACTACCAGCACCTGCGGTGGCCGCAGGACTCGTCCGGCGGCAGCATGGACGCATGAMDIQHDPEHGRYEARVTGPPGSAAEDAHAIGVLRYHREGDVVVIPGTVVVPEHRGHGVADALVRRALDDVAAAGATVRPDCWFVETWLRHHPDYQHLRWPQDSSGGSMDANANANANANA
AK018_005771089hypothetical proteinATGGACGCGACCACGCCTGCCCGCACGCCGGCCGAGATCCGCCGGTGGCGACGCTACCTCGCCGCCGAGCGCGCCGAGGCCGCCGTCTACCGCGACCTCGCCTCGCGGCGCACCGGCGAGGAGCGCGAGATCCTGCTCGCCCTCGCGGCGGCCGAGAAGCGGCACGAGCAGCACTGGCTGGACCTGCTCGGCGACGACGTCGGCATGCCGCTCCAGGGCGACCTGCGCACCCGCCTGCTGGCCTTCCTGGCGCGCCGTCTGGGCGGCGTCTTCGTCCTGGCGCTCGTGCAGCGCGCCGAGTCGCGGTCCAGCTACGCCGACGACGACCACGCCACCGCGCAGATGGCCGCCGACGAGCAGATCCACGAGGAGGTCGTGCGCAGCCTGGCGACCCGCGGCCGCAACCGGCTCTCCGGCTCCTTCCGCGCCGCCGTCTTCGGGGCGAACGACGGCCTCGTGTCCAACCTCGCGCTCGTGCTCGGCATCGGCGCCGCCGGCGTGACGACCGGGACCGTGCTGCTGACCGGCCTGGCCGGACTGCTCGCCGGCGCCCTGTCCATGGGCGCCGGCGAGTACGTGTCGGTGCGCTCCCAGCGCGAGCTGCTGCAGGCCTCGACGCCGGACCCCTCGGCGACCGACGCGCTGCCGGACCTGGACGTCGACGCCAACGAGCTGGCGCTCGTCTACCGCGCGCGCGGGATGGAGGCGACCGAGGCCGAGGCGCGGGCCGACCGCGTGCTCGCCCGGCTGGAGGCCACCGGCGTCGTCGAGGGGATCGCGGACGACGAGGAGCCCGACGACCACGAGACGCACGGCACCGCCTGGGGCGCGGCCGTGTCCAGCTTCCTCTTCTTCGCCTCCGGCGCGATCGTCCCCGTCGTGCCGTACCTGGTCGGGCTCGAGGGGACCGTCGCCGTCGTGGCCGCCAGCGTGCTCGTCGGCGTGTGCCTGATCGTCACCGGTGCGGTGACGGGCCTGCTGTCGGGGACGTCGCCGATCACCCGGGCGGTGCGTCAGCTGCTCATCGGCTTCGGCGCCGCCGGCGCCACCTACCTGCTCGGCCTGGCGTTCGGCACGAGCGTCGCCTGAMDATTPARTPAEIRRWRRYLAAERAEAAVYRDLASRRTGEEREILLALAAAEKRHEQHWLDLLGDDVGMPLQGDLRTRLLAFLARRLGGVFVLALVQRAESRSSYADDDHATAQMAADEQIHEEVVRSLATRGRNRLSGSFRAAVFGANDGLVSNLALVLGIGAAGVTTGTVLLTGLAGLLAGALSMGAGEYVSVRSQRELLQASTPDPSATDALPDLDVDANELALVYRARGMEATEAEARADRVLARLEATGVVEGIADDEEPDDHETHGTAWGAAVSSFLFFASGAIVPVVPYLVGLEGTVAVVAASVLVGVCLIVTGAVTGLLSGTSPITRAVRQLLIGFGAAGATYLLGLAFGTSVANANANANANA
AK018_00578591rnhA_1Ribonuclease HGTGATCATTGTCAGCACCGACGGCTCCTGCCCGACCGACGGCGACGCGATCGGCTGGGCATGGGTCGCCCATGGCTCCGGCCGCTTCGACTCCGGCGGTGCCGCCGACGGGACGGCGCAGGTCGCCGAGCTGACCGCGCTGCGCCACGCCGTCGAGGCCCACCCGGGCGACGAGCCCCTGTTCGTCGAGTCGGGGTCGCAGTGGGCGATCCGGTGCGCCTCGGAGTGGCTGGAGGGCTGGAAGGCGCACGCGTGGCGGACGGCCTCCGGCGAGGAGGTCCCGCACCGCGACGCCGTCCAGGCGCTCGACGAGGCGATCTCCGCACGCCCGGGGCCGGTCCGGTTCCGCTGGGTCCGGGGCCACGTCGACAGCCCCTTCACCACCCGTGCGCGCGAGCTCGCCGAGCTGGCGGCCCAGGACTGGGCCGCGGGACGCGGCGGTCTCGACGGGCTGCTCCTGGACGACTCCGCGGCCCGCGAGACGTCGCACGGTCCCGTGGACGGCCCTGAACCCGAGCCCGTCGGCGCGCGACGTGCGTCGTCGACGCCGACGAGCGGCCCGGGCTGGGAGCTCGGCACCCTGTTCGACTGAMIIVSTDGSCPTDGDAIGWAWVAHGSGRFDSGGAADGTAQVAELTALRHAVEAHPGDEPLFVESGSQWAIRCASEWLEGWKAHAWRTASGEEVPHRDAVQALDEAISARPGPVRFRWVRGHVDSPFTTRARELAELAAQDWAAGRGGLDGLLLDDSAARETSHGPVDGPEPEPVGARRASSTPTSGPGWELGTLFDNANANANANA
AK018_005791458yqiK_1COG2268Inner membrane protein YqiKATGGACAGCTCCACCAGCTTCGTGACCACGATCGCCGTGGCCGCCGTCGTCGTCGCCTTCCTGGCGATCGGCGTCTTCGTGGCCCAGCGGATCCGCCGCGTCCCGCCGAACCAGGCCCTCGTCATCGTCGGCCGAGGCGCCGGACGCAAGGACATGGCCGGCCAGAAGGTCGTCATCGGCGGACGCACGTTCGTCTGGCCGATCCTCCAGCAGGGCTTCGCCATCTCGCTCGAGCAGCGCCAGATCGGGATCACCGTCGAGGGCGTCGACTCGAACCGCATCAAGATCGCCATCAAGGCGTCCATCAACTTCAAGGTGCGCGGTGACGACGAGGGCGTGCGCCGTGCCGCGCAGCGCTTCCTGTCCCAGCAGGAGCTCCTCACCGAGATCATCGCCGAGTCCCTCGAGGGCTCGCTCCGCTCGATCGTCGGCGACATGTCGATCGAGGAGATCATCTCCGACCGCAAGGGGCTCTCGGACCGCGTCGTGGAGTCCACCAAGCGGGACCTGGCGGAACAGGGTCTGCAGGTCGACATCCTCAACATCTCCGACATCTCCACGCCCGGCTCGGACTACCTGGAGAACCTCGGTCGCGCCGAGTCGGCCCGCGCCCTGCAGGTGGCCGAGGTGTCCGAGGCCGAGGCGCGTCGCGCCTCCGAGTTCGCGTCCATCGAGGCGGCCGAGCAGATCGCCGAGCGGCAGAAGGCGCTGGACCTGAAGAAGGCCGCCATCCAGGCCGACACGGACAAGGCCCAGGCGGAGGCCGAGGCGGCCGGACAGCTCGCCCGGGCCGAGCAGGACCGCATCGTCGCCCTCCAGGAGCGTGAGGCGCTGTCGGAGAAGGCCCGCGTCGAGCAGGAGCGCCTCGACATCGAGGTGCGCAAGCCGGCCGAGGCCCAGGCCTACGCCGAGGTCCAGGAGGCGACCGCGCGGCGCGACTCGCAGAACGCCGCCACGGAGGCCGAGGCGTTCAAGCGGACCACCATCGCCGAGGCGAACAAGTCCGCCGCGATCCAGGACGCCGAGGCGGCAGCGGAGGCCGTGCGCCGTGCCGGTGAGGCCGACCGCGACAAGCAGGTCGCGCTCGCCGCGGGTATCCGCGCGGAGGGCGAGGCTCGCGCCGCCGCGACCGAGGCCGAGGGTCGTGCGGAGGCGTCCGCCACCGACGCCAAGGCCGAGGCGCTCAAGAAGTACGGCGAGGCCGCGCTGGTGCAGGAGCTCATCGAGCGACTGCCGGAGATCGTGCGGGCCGCAGCGGAGCCGGTGGCCTCGATCCAGGGGATGACGGTCGTGTCCACCGACGGGGCGTCCGCGGTGACCAAGAACGTCAGCAGCGTGCTCGGCGAGGGCCAGGCGGTCGTCAAGGAGCTGACCGGCATCGACCTCAACCAGCTCCTCAGCGGGCTGGCCGACCAGCAGGAGCGGGGCCCGTCGGTCACCGCGTCCAACGGCGGCTGAMDSSTSFVTTIAVAAVVVAFLAIGVFVAQRIRRVPPNQALVIVGRGAGRKDMAGQKVVIGGRTFVWPILQQGFAISLEQRQIGITVEGVDSNRIKIAIKASINFKVRGDDEGVRRAAQRFLSQQELLTEIIAESLEGSLRSIVGDMSIEEIISDRKGLSDRVVESTKRDLAEQGLQVDILNISDISTPGSDYLENLGRAESARALQVAEVSEAEARRASEFASIEAAEQIAERQKALDLKKAAIQADTDKAQAEAEAAGQLARAEQDRIVALQEREALSEKARVEQERLDIEVRKPAEAQAYAEVQEATARRDSQNAATEAEAFKRTTIAEANKSAAIQDAEAAAEAVRRAGEADRDKQVALAAGIRAEGEARAAATEAEGRAEASATDAKAEALKKYGEAALVQELIERLPEIVRAAAEPVASIQGMTVVSTDGASAVTKNVSSVLGEGQAVVKELTGIDLNQLLSGLADQQERGPSVTASNGGNANANANANA
AK018_00580471hypothetical proteinGTGCTCGTCTTCGCTCTGATCGGTGCCGCCGGTCTCGTCCTGCTCCTGCTGTCGCTCGTCGTCGGGGAGATCCTCGACGTCGGGGACGGTGCCCTGTCCGGGACCTCCCTGGGCGTGGGTGCCGTCGTCTTCGGGGCGGTGGGCTCCGTCGTCACCGTCAACGGGTGGGCCCCGTGGATCGCCTACGTGGCCTCGGCCGTCGTGGGCCTGCTGGCCGTGCTCGTGGCCCAGCTGCTGATCCGGCGTCTCAGCGCCACCGAGGACAACGCTCGCGTCGACCTGGTCGGGGTGCAGGGCACGGCCACGACGGACATCTCCCAGTCCTCGGGCGAGGTCGCCCTCGATGCGGTGAGCGAGCTCGAACGTCGTCTGGCGTGGTCGATGGAGCCCATCGCCTCCGGGACCCGCGTCGTCGTCCTCGAGCACCAGCCCAACAGCGTGCGCGTCGGGCCGTACCGCCCCGAGGACTGAMLVFALIGAAGLVLLLLSLVVGEILDVGDGALSGTSLGVGAVVFGAVGSVVTVNGWAPWIAYVASAVVGLLAVLVAQLLIRRLSATEDNARVDLVGVQGTATTDISQSSGEVALDAVSELERRLAWSMEPIASGTRVVVLEHQPNSVRVGPYRPEDNANANANANA
AK018_00581663gpm2_1COG0406Acid phosphataseATGATCCTCCCCGCGACGGACTCGCCCCGGCTCGTCCTCCTCCGGCACGGCGACACCGAGTGGGCGCTCGCCGGGCGTCATACCGGACGGACGGACGTCCCCCTCACGCGGGACGGTGAGGAGCAGGCACGTGCCGCGGGACGGCGCCTGGCCGGGCTGGCGCCGGTAGCCGTGTTCTGCTCGCCCCTGACCCGTGCGCGCCGCACGGCCGAGCTGGCGGGCTTCACCGACGGCGTCGTCGACCCCGACCTGGCCGAGTGGGACTACGGACCGGTGGAGGGACGCACGTCCGCCGAGGTGGGCGAGGCCCTGGGGCACCCGTACGAGATCTTCCGCGACGGGGTGGACGTCCCCGGGCCGGTCGACCCGGGCACGGGCGACCCCCGCACGACCGGACCGCGCGGGGAGACGCTGGCCGAGGTCCGAGCGCGCACCGACCGGTTCCTGGCGCGCGCCCGCCCGGTGCTCGCCGGGGGCGGCAGCGTGCTCGTCGTCGCCCACGGTCACCTGCTCCGGGTGCTGGCCACGAGCTGGCTCGACGTCGACGCCTCGTTCGGTGTCCACCTCGAGCTCGGCTGCGCGGCGATCTGCGCGCTCGGCAGCGCGCACGGCCGCCCCACGATCGAGGCGTGGAACCTCGTCGGGGACGACCACGCGGCGTAGMILPATDSPRLVLLRHGDTEWALAGRHTGRTDVPLTRDGEEQARAAGRRLAGLAPVAVFCSPLTRARRTAELAGFTDGVVDPDLAEWDYGPVEGRTSAEVGEALGHPYEIFRDGVDVPGPVDPGTGDPRTTGPRGETLAEVRARTDRFLARARPVLAGGGSVLVVAHGHLLRVLATSWLDVDASFGVHLELGCAAICALGSAHGRPTIEAWNLVGDDHAANANANANANA
AK018_005821710hypothetical proteinATGTTCGAGAGCGACGCTTCCCACCCGGCGCGGCACGCCGTCGGGCCTCGTCGACCTCGGACCTCGGGGTCCGCTGCGGCCTGTGCCCCGGCCGCAGCGGACCCGTTGCCCGACGCCGGCACCCGCGTCGAGCGTGCCCTCGTGTCGCTCATGGCCCGGTCCGTCGGCGCCGTCGCCGGCGTGATCGGTCCGGTCCGCGGGTCCGCGCGGCGCCCCGGACGTGCCCCCGAGCTGTGGTGGGAACCGGCGGCGGTGAGCACGGCACCGGCCGCGGGTACGCCGTCTGCGCCGGGCGCGACACCTCCCTCGCTGCCTGCCCCGGGGCCGACGCCGGTCGCCGGGCCGGACGTCGCACCCGGCCCGCCGTACGGCGCCCCGCTGCACGCCCTGCTCGACGCGCCGCCCGGGCCGGAGGCCGCCCGCGGACTCGCCGCTCTCGATCCTGCCGACCTCGACGACCTGTCCCTGGTGGAAGCCCTGGCCGCGTGGGAGCGTCTCGCGGCCTGGGCCCAGGCGGGGTCGGCACGGATGCTCGCCGAGTCCCTGGAGCGGACGAGGGGATCGTCCCGGCACGAGTTCGTCGTCGACGAGGTCGCGGCCCGGCTCGGTCTCAGCCGCGCGGCCGCCGAGCAGCACGTCACGGTCGCCCACGGGGCGCACACCCTGCCCGAGGTGGCCGACGCCCTGGCCGAGGGCGCCGTGGACCGGCGCAAGGCCGAGGCGCTCGTGGCGACGGGTCGGCTCCCCGACGACCGGCGTCGCGAGGTCGTGCGGGAGCTGCGTCCCGAGCTCGAGCACCTCACCGTCCGGCAGATCCGCGACCGGATCCGCCGTGCGGAGATCGCCGCGGATCCCGGGGGTGCCGCCGAGCGCCACGAGTCCGCCCGGCGCGCCCGGCACGTGACGCTCGAACCGGTCGACGACGCCATGGCCTACCTCACCGCGTACCTGCCTGCGGACGACGCCGCCCGGGCGTACGCCGCGATCGACGGCAGTGCCCGACTCGCGGCCCGCGGGGTGGGGGAGGCGCGCAGCCTCGGCGAGTGTCGTGCCGACGCGATGGTCGCCCTGCTCACCGGATCGTCCGGCAGTACGGACGGCACCGACGTCCCGGGTGACGCCCGCGGCCGGGCCGTGCCCTCGAGCCCGGGCGTGCCCGGCGGCGCGCCCGGCACTGCTCGCGTGCACGTGACCGTCGCCGCGTCCACGCTGCTCGGCACCGACGACCTGCCCGCCATCCTCGCCGGCCACGGTCCGATCCCGGCGGCGATGGCTCGCACCCTCGCCACCGATCCGGACGCCGTCTGGCAGCGGATCCTCACCGACCCGGTCACCGGGGTGCTCACCGACACCTCGTCCCGGAGCTACCGACCGGGACGGGCGCTGCGCGCGGCCGTCGTCGCGCGGGACGCCACGTGCCGGTTCCCCGGCTGCCAGGTGCCGGCCCGCTACGGCGACCTCGACCACATCGAGCCGTTCGACCCGGCCGACGACCGTGCGCAGACGACCGGGGACAACCTGCACGCGCTGTGCCGCACGCACCACCGCGCCAAGACGGTCGGCGGGTGGGACGTCGTGCGTGACCCGCACTCCGGGGTCACGACCTGGACGGCCCCGAGCGGCCGGCGCTACCGGCGGGCCCCGCATCCGGCCGATCCTGCTGCCGGGTGGCGCGCGGATCCTGGCGGGGGACCACCCGCTCCCGGCTGAMFESDASHPARHAVGPRRPRTSGSAAACAPAAADPLPDAGTRVERALVSLMARSVGAVAGVIGPVRGSARRPGRAPELWWEPAAVSTAPAAGTPSAPGATPPSLPAPGPTPVAGPDVAPGPPYGAPLHALLDAPPGPEAARGLAALDPADLDDLSLVEALAAWERLAAWAQAGSARMLAESLERTRGSSRHEFVVDEVAARLGLSRAAAEQHVTVAHGAHTLPEVADALAEGAVDRRKAEALVATGRLPDDRRREVVRELRPELEHLTVRQIRDRIRRAEIAADPGGAAERHESARRARHVTLEPVDDAMAYLTAYLPADDAARAYAAIDGSARLAARGVGEARSLGECRADAMVALLTGSSGSTDGTDVPGDARGRAVPSSPGVPGGAPGTARVHVTVAASTLLGTDDLPAILAGHGPIPAAMARTLATDPDAVWQRILTDPVTGVLTDTSSRSYRPGRALRAAVVARDATCRFPGCQVPARYGDLDHIEPFDPADDRAQTTGDNLHALCRTHHRAKTVGGWDVVRDPHSGVTTWTAPSGRRYRRAPHPADPAAGWRADPGGGPPAPGNANANANANA
AK018_00583597idi_1COG1443Isopentenyl-diphosphate Delta-isomeraseATGAGTGCCACGCACGCCCCCACCACGGCCGACCACGTCGTCCTCTGCGACGACGCCGGCCACCGGACCGGCACGTTCCCGCGGGCCGAGGTCCACACCACGGACACGCCGCTGCACCTGGCGTTCTCCTGCTACCTGCTCGACGCCGCGGACAACCTGCTGATCACCCGCCGGGCGCTCGTCAAGCGCACCTGGCCCGGGGTGTGGACGAACTCGTTCTGCGGCCACCTGCGGTGGACCGAGGAGATCGAGGACTCGATCGCGCGGCACGCGGAGCACGAGCTGGGCGGGGCCGTCACCGACGTCGCCGTGGTGCTGCCCGACTTCCGCTACCGCGCCGTGGACGCCTCGGGCGTCGTGGAGAACGAGATCTGCCCGGTGTACGTCGCGCGCGTCGACGGCGGGCTGACGCCGAACGCGGACGAGGTCTCCGAGCACGTGTGGGCGCCGGCGGCGCAGGTGCGGTCCGCCGTGGCCTCGGCGCCGTGGGCGTTCAGCCCGTGGATCGGGTGGCAGCTCCAGGCGCTCGCGGCGGTCCCGGCCGCGGAGCGGACCCCCGGTGCGCAGGTGCTGGCCGGAGCGCTCGGGCTCGACTGAMSATHAPTTADHVVLCDDAGHRTGTFPRAEVHTTDTPLHLAFSCYLLDAADNLLITRRALVKRTWPGVWTNSFCGHLRWTEEIEDSIARHAEHELGGAVTDVAVVLPDFRYRAVDASGVVENEICPVYVARVDGGLTPNADEVSEHVWAPAAQVRSAVASAPWAFSPWIGWQLQALAAVPAAERTPGAQVLAGALGLDPGPT0007530_2240DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007530-idi-K01823NANA
AK018_00584666hypothetical proteinATGGCTGAACTCCTCGCCGTGTGCCGCGTGCACGAGCTGCACCCCGACCCCGGCACCGTGGGCGTGACGGCGATCGACAAGCGACCGGTCGACGGGCGCGTGCGTGCCGGACGGTTCGGCCTGTACGCGGACGTGCAGGCGGACCGGGCGAACCACGGTGGTGTGGACCAGGCGGTGTACGCCTACGCCGAGGAGGACGCCGGCTACTGGGCCGAGGAGCTGGGCCGCGAAGTGACCCCGGGGCTGTTCGGGGAGAACCTGCGCACCCGTGGCCTCGACGTCTGCGGCGCCCTGATCGGCGAGCGGTGGCGGATCGGCTCCGCGGTGCTCGAGGTGACGCAGCCGCGCACCCCCTGCGCCACGTTCGCGCGGCGGCTCGGGTCGCCCGAGCGGTGGGTGCGGCGCTTCACCGAGGCCAACCGCACCGGCGCCTACCTGCGGGTGGTGGAGGCCGGCGAGCTCGGCGCGGGTGACGCGGTGGAGGTGGTGCGGCGGCCGTCGCACGGTGTCTCCGTCGCCGGCTGGTTCGGCGCCTGGAACGCCGGTCCCTCGGGGTTCGCCGAGACGGCGCGCCTGGCGACCGCGCTGCGACGCTCCGCGGACGACGACGAGCTGCGACTGAGCGAGGACATGGACACCCGGACGACGAAGGCGATGACCCGATGAMAELLAVCRVHELHPDPGTVGVTAIDKRPVDGRVRAGRFGLYADVQADRANHGGVDQAVYAYAEEDAGYWAEELGREVTPGLFGENLRTRGLDVCGALIGERWRIGSAVLEVTQPRTPCATFARRLGSPERWVRRFTEANRTGAYLRVVEAGELGAGDAVEVVRRPSHGVSVAGWFGAWNAGPSGFAETARLATALRRSADDDELRLSEDMDTRTTKAMTRNANANANANA
AK018_005851452gabP_1COG1113GABA permeaseGTGACCACGACCCCCGACGGCGGTCCCGACGAGGCCGTCGCGCCGCTGCACGAGCCGCTGGCGCACGGGCTGCGGCCCCGGCACCTGACGATGATGGGGCTCGGCTCCGCGATCGGCGCCGGCCTGTTCCTGGGGTCCGGCGAGGCGATCGCGACCGCCGGCCCGGCGGTGCTGATCAGCTACGCCGTCGCCGGGGCGATCGTCGTGGCCGTCATGCGCATGCTCGCCGAGATGGCCTCCGCGCTGCCCGCCTCCGGGTCGTTCTCCGTGTACGCCGAGGTGGCGCTCGGCCGGTGGGCCGGGTTCCTGCTCGGGTGGCTCTACTGGTTCATGCTCATCATGGTCCTCGGCGTGGAGGTCACCGGCGTCGCCGAGATCGTCACCGCCTGGTGGCCGGCCGTCCCGCAGTGGGTGGTCGCCGGCGTCGTCGTCGCCGTCTTCGGCGGCATCAACCTGGTCGGGGTGCGGCAGTTCGGCGAGGCCGAGTTCTGGTTCGCGCTGGTCAAGGTCGCCGCCATCGTGGCCTTCCTCGCCGTCGGCCTGCTCGTCGTCCTCGGGGTGGTCCCCGTGGCGGGCAGCGTCCTGGGCGACTGGGCGGCGCACGGCGGCTTCGCGCCGGCCGGTGTGCCGGGGATCGCCGCCGGTCTGCTCGCCGTCGCCTTCGCGTTCGGCGGGATCGAGATCGTGGCGATCGCCGCGGCCGAGGCCCGCGACCCGCGCGACGCCGTCGCCCGCGCCACCCGCACGATCCTGTGGCGCATCCTGGTCTTCTACCTCGGGTCCGTCGCGATCATCGTGGCGCTGGTGCCGTGGGACGACGCCGACGCCCTGACCTCGCCCTTCGTGGCGGTCCTGGAGCTCGCCGGGTTCGACGGCGCCGCGCGGCTCATGGAGGTCGTCGTCGTCCTGGCGCTGCTCAGCGCCTTCAACGCCCAGATCTACGGGACCTCGCGGATGCTCTTCTCCCTCGCCGAGCGCCGCGACGCGCCGGCCGCGGCGACGAAGGTGTCGGCGCGCGACGTGCCGTGGGTGGCGGTGCTGGTGTCGGTGTTCTTCGGCGTCGTGGCCGTCCTGCTCAACTGGCTGCTGCCGGAGGTGCTGCTGTCCGTCCTGCTCAACGCCGTCGGCTCCGCCCTGTTCGTGGTCTGGCTGCTCATCACCGTCTCCCAGCTGCGGCTGCGGCCGCGCCTGGAGGCCGAGGCGCGGCGCACCGGGGTGCCGCTGCGCCTGCGGATGTGGGGGTTCCCGTGGCTGACCTGGCTCACCCTGGCGTCGCTCGTCGGCCTGGCCGCCCTCATGCTGTCCGACGACGCGGCGCGCGCCCAGCTCGTCGCCACGGCCGGGCTCGTGGCCGTCGTCCTGGCGGCGTACGGACTGCTCGCCCGGCGGCGGCGGGGCCGTCCGGGTGCCCCGACGCCGCCGGAACAGTGGGAGCATGACGTCCATGGCTGAMTTTPDGGPDEAVAPLHEPLAHGLRPRHLTMMGLGSAIGAGLFLGSGEAIATAGPAVLISYAVAGAIVVAVMRMLAEMASALPASGSFSVYAEVALGRWAGFLLGWLYWFMLIMVLGVEVTGVAEIVTAWWPAVPQWVVAGVVVAVFGGINLVGVRQFGEAEFWFALVKVAAIVAFLAVGLLVVLGVVPVAGSVLGDWAAHGGFAPAGVPGIAAGLLAVAFAFGGIEIVAIAAAEARDPRDAVARATRTILWRILVFYLGSVAIIVALVPWDDADALTSPFVAVLELAGFDGAARLMEVVVVLALLSAFNAQIYGTSRMLFSLAERRDAPAAATKVSARDVPWVAVLVSVFFGVVAVLLNWLLPEVLLSVLLNAVGSALFVVWLLITVSQLRLRPRLEAEARRTGVPLRLRMWGFPWLTWLTLASLVGLAALMLSDDAARAQLVATAGLVAVVLAAYGLLARRRRGRPGAPTPPEQWEHDVHGPGPT0020806_44DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020806-ycgH-K16237NANA
AK018_00586657hypothetical proteinGTGACCGGCACCTACCACCACGGCAACCTGCGCGCCGCCCTGCTCGACCGCGCGGAGGAGGTGCTGGCCGACGACGGCGTCGACGGGCTCTCGCTGCGCGGGCTGGCCCGCGACCTCGGCGTCAGCCACGGCGCCCCGGCCCGGCACTTCCGCGACCGGCAGACGCTCCTGGACGCCCTGGCGCTGCGCGGGTTCGAGCGGCTCGACGCGGCGCTGGCCGCCACCGGCGGCACCTGGCAGGAGCGGCTGCGCGGGCTGGCGCGCACCTACGTCGACTTCGCCACCGCGAACCCCGCCCTGCTCGCCGTGATGTACGACGTGAAGCACGACCCCGACGCCACCGCGGCGCTCCGGGCCGAGGCCGGCCGCGGCCAGGAGCTGCTGCGTGACACCCTGCGCGCCGGTCAGCGGGCCGGCGAGGTGGTCGAGGGCGACGCCGAGGAGCTCGGTGTCGTGCTCTTCGCCGCCGTGCACGGGGTCGTCCAGCTCGCCGCCGGCGACCTCCTCGGCGGCGCTGACGTCGACGACGTGCTCGAGGCCACGGTCGCGGTGTGCCTGCGCGGGATCGCGCCGTGTCCGGGGTCCGTCCCGCCTGCCGGGTCCGTCCCGCCCGGGGCCGTCCCGCCCGTCGGGGCGCCGTCGTCGGACGCGGGCTAGMTGTYHHGNLRAALLDRAEEVLADDGVDGLSLRGLARDLGVSHGAPARHFRDRQTLLDALALRGFERLDAALAATGGTWQERLRGLARTYVDFATANPALLAVMYDVKHDPDATAALRAEAGRGQELLRDTLRAGQRAGEVVEGDAEELGVVLFAAVHGVVQLAAGDLLGGADVDDVLEATVAVCLRGIAPCPGSVPPAGSVPPGAVPPVGAPSSDAGNANANANANA
AK018_00587789hypothetical proteinATGACCCTCGACCTGCACGGCTCGTCCGCCGTGGTGACCGGCGCCAGCTCCGGCATCGGCGCCGTCGTCGCGGCCCGCCTCGCCGCCCGGGGCGCCGACCTCGTGCTCGTGGCCCGCCGGACCGACCGCCTCGAGGAGCTCGCGGCCCGGGTGCGCGCCGAGCACGGCGTCGAGGCCGACGTCGTCCCGGCCGACCTCCGCACGTCCGACGGCGTCACCGCAGTCGTCAAGGCCGCCCGGGCGGCCACGAAGCCGGTCGGCACCCTCGTGAACAACGCGGGGTTCGGCACCCACGGAGCCCTCCTGGAGGAGGACCCGGAGCGCATCGAGGACGAGGTCGCCCTCAACGTGGCGGCCCTGACCGACCTGACCCGCGCGCTGCTGCCCGACCTGGTCGCCCACGGCTCCGGGGCGGTGGTCAACGTGGCCAGCACGGCGGCGTTCCAGCCCGTCCCGCGCATGGCCGTCTACGGCGCGACCAAGGCCTACGTCCTCAGCTTCACCGAGGCGCTGTCGGTCGAGCTGCGCGGGACCGGCGTGCACGCGATCACGCTCTGCCCGGGCGCGACGCGCACGGAGTTCTTCGACGTCGTCGGGACCGAGGACGCCGCCGTCGGTCGCTTCCAGACCCCCGAGCAGGTCGCCGACACGCTCTTCCGCGCGCTGGACCGCCGTCGGCCGCCGGCCACGGTCGTGTCCGGCCGCGCCAACGCCCTGGCCAGTGCCGCGGTGGGCGCGCTGCCCCGCCGGGTGGTGCTCGCCGCGGCGGCCCGCCTCACGGCCGGCTGAMTLDLHGSSAVVTGASSGIGAVVAARLAARGADLVLVARRTDRLEELAARVRAEHGVEADVVPADLRTSDGVTAVVKAARAATKPVGTLVNNAGFGTHGALLEEDPERIEDEVALNVAALTDLTRALLPDLVAHGSGAVVNVASTAAFQPVPRMAVYGATKAYVLSFTEALSVELRGTGVHAITLCPGATRTEFFDVVGTEDAAVGRFQTPEQVADTLFRALDRRRPPATVVSGRANALASAAVGALPRRVVLAAAARLTAGPGPT0030485_2781PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-OXIDOREDUCTASE_ACTIVITYPUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
AK018_005881665COG3559Multidrug efflux system permease proteinATGAGCACCGCCGTCGCCCCGCCCGCCGTCCGGACCGCCGAGCCCACCCGGGGGGCCACCCTGACCGGCACCGGGGCCCTCGTCCGCTTCATGCTGCGTCAGGACCGGGTGCGCCTGACCGTGTGGGCCGTCTCGGTCGTGTTCTTCTACACCTACTTCACGTTCGCGCTGAACCTGTTCTTCGACGACACCGCCGCGATGCAGGGGCGCGCGGCTCTCATGGAGACACCCGTCGGGATCGTCATGGGCGGGCCGGGCTACGGCCTCGACGACTACTCGACCGGCGTGGCGATGTCGAACGAGGGCATCACCTGGATGGTCCTGGCGCTCGCGATCCTGTCGATCCTGCACGTCGTGCGCCACACCCGCGCCGAGGAGGAGTCGAACCGCTCGGAGCTCGTCCGGGCCGCCGTCGTCGGGCGCCACGCGCCGGCAGTGGCGGCCCTCGTCACGCTCGTGCTCGCGCAGGCCGTCATCGCCGTGCTGTCCGCCGGGGCTCTCGTCGCGGTCGGCGACCTGGCCGTGGCCGACTCGTTCGCGCTCACCGTCGGGTCCGGGCTCAGCGCGATGGTGTTCGGAGCGGTCGCTCTCGTCGTGTGCCAGGTGGTCGGCCACGCCCGCACCGCGACCGGCGCGAGCCTGGCGGTGTTCGCCGTCGCCTTCGTCGTCCGGGCCGTGGGGGACATCCGCGAGCTCGGCGGGTCGACGCTGTCCTGGTTCTCGCCGATCGCGTGGGCCCAGCAGATGCGCGCCTTCGTCGACCTGCGCTGGTGGCCGATCACCCTGAGCGTCGTCGCGATCGCCGTCCTGCTGGTCGTCGCCGCCCTCCTCGCCTCGCGGCGGGACTTCGGCGGGAGCCTCGTCGAGACCCGTGCCGGTCGGGCGGACGCCGGGCCCGCGCTGCGCGGCCCGCTCGCCATGGCGTGGCTGCAGCAACGCTGGGCGCTGCTGTGGAGCTGCCTGGGCCTCGGGCTGATGTGGTTCGCCTCGGGCACGATGCTCCCGGGCATCGGCGACATGATCGGCGACATGATCCTCGACAACCCGATGCTCGCCCAGCTCTTCGGGGCCGACCCGTCCCAGCTCGCCGTCGGGTTCATCAGCGTGCTGGTGCTGTACGGCGCGGTCTGCTGCGCGGCCTACGCCGTCGTCATGGCGCAGCGGCCCAAGGCCGAGGAGTCCTCGGGGCGCGCGGAGGTCGTGTTCTCCCACCCGGTCTCCCGGCACCGCTGGCTCGGTGCCCAGGCCGCGGTCGCGGGGGTGGGCACGGCGGTGCTGCTCGCCGTCAGCGTCTACGCGCTGTGGGGCGGCGCCGTGATCGCCGGCTGGGGCGATCAGACCTTCACCGACTACTCCGTCGTGGTGTGGACCTACCTGCCGGCGCTCGCCGTCTTCCTCGGGCTGGTCCTGGCGCTGTACGGCTGGGCACCGCGCCTGACCGGCATCGGGTGGGCCCTGGTGGCCTACACCTTCGTCGTCGGGATGTTCGGCCAGGTCTTCGACCTGCCGGACTGGGTCTACCGCGTCTCGCCGTTCGACTGGGTGCCCGAGGTGTTCTCCGGCGAGCCGTACGCCGGTGACGTCGCGGTCCTGTGGGCGGTCGCCGTCGGGCTCGGGGTCCTCGGGTTCGTCGGGTTCCGCCGCCGCGACCTCGCCACGGGGTAGMSTAVAPPAVRTAEPTRGATLTGTGALVRFMLRQDRVRLTVWAVSVVFFYTYFTFALNLFFDDTAAMQGRAALMETPVGIVMGGPGYGLDDYSTGVAMSNEGITWMVLALAILSILHVVRHTRAEEESNRSELVRAAVVGRHAPAVAALVTLVLAQAVIAVLSAGALVAVGDLAVADSFALTVGSGLSAMVFGAVALVVCQVVGHARTATGASLAVFAVAFVVRAVGDIRELGGSTLSWFSPIAWAQQMRAFVDLRWWPITLSVVAIAVLLVVAALLASRRDFGGSLVETRAGRADAGPALRGPLAMAWLQQRWALLWSCLGLGLMWFASGTMLPGIGDMIGDMILDNPMLAQLFGADPSQLAVGFISVLVLYGAVCCAAYAVVMAQRPKAEESSGRAEVVFSHPVSRHRWLGAQAAVAGVGTAVLLAVSVYALWGGAVIAGWGDQTFTDYSVVVWTYLPALAVFLGLVLALYGWAPRLTGIGWALVAYTFVVGMFGQVFDLPDWVYRVSPFDWVPEVFSGEPYAGDVAVLWAVAVGLGVLGFVGFRRRDLATGNANANANANA
AK018_005891059COG1131Multidrug efflux system ATP-binding proteinATGACCAGCACCGCACCGACCGGCACCCGGAGCGCCGACGCGCCCCCGATCGAGATCCACGACCTGCACAAGCACTTCGGCCCCACACGCGCCCTGGACGGCCTCGACCTGACCGTGGCCGAGGGCGAGGTCGCCGGCTTCCTCGGCCCCAACGGCTCCGGGAAGTCCACCACCATCCGGGTGCTGCTCGGGCTGCTGCGCGCCACGGCCGGCGACGCGCGGCTGTTCGGCGCCGACCCGTGGCGCGACGCGGTCGACCTGCACCGCCGGCTGGCCTACGTCCCTGGTGACGTGACGCTGTGGCCGCACCTCACCGGGGGCGAGGCCATCGACTTCCTCTCCCGCCTGCGCGGGAAGTCCGACCCGCGCCGGAAGGCCGAGCTCCTGGAGGCCTTCGAGCTCGACCCGACGAAGAAGGCCCGCACCTACTCCAAGGGCAACCGGCAGAAGGTCGCTCTCGTGGCCGCCTTCGCCACCGAGGTGCCGCTGCTCATCCTCGACGAGCCCACCGCCGGACTGGACCCCCTGATGGAGGCCGTCTTCACCGAGCACGTGCGCCAGGCCGCCGCGCAGGGCACCTCGGTGCTGCTGAGCAGCCACATCCTGTCCGAGGTCGAGAAGGTCTGCGACACCGTGACGATCATCCGGGCCGGTCGCGCCGTCGAGTCCGGCACCCTCGACGAGCTCCGGCACCTGACGCGGTCGAGCGTCACCGCCGTCGTCGAGGGCGACCCGGCGGCGGTGGCCCGGATCGACGGGGTGCACGACGCCGTCACCGCCGGTGACCCCGAGGGCACCCGGCTCACCTTCGACGTCGACAACTCCGCGATGGGTGCCGTGCTCACGACGCTGTCGGGTCTCGGGGTGCGCTCGTTCACCGCAGCGCCGCCGTCGCTGGAGGAGCTGTTCCTGCGCCACTACGGCGACGACGTGTCCGACGGCGGCGCGTCCGGCGACGGCGACGCCGCGGACGGGGCAGGCTCCCGGTCCGGTACGGGCGCGGGGCCCGGCGCCGGTCGGCACGCCGCGGCCACGACGAGCGAGGCGGGTGCGCGATGAMTSTAPTGTRSADAPPIEIHDLHKHFGPTRALDGLDLTVAEGEVAGFLGPNGSGKSTTIRVLLGLLRATAGDARLFGADPWRDAVDLHRRLAYVPGDVTLWPHLTGGEAIDFLSRLRGKSDPRRKAELLEAFELDPTKKARTYSKGNRQKVALVAAFATEVPLLILDEPTAGLDPLMEAVFTEHVRQAAAQGTSVLLSSHILSEVEKVCDTVTIIRAGRAVESGTLDELRHLTRSSVTAVVEGDPAAVARIDGVHDAVTAGDPEGTRLTFDVDNSAMGAVLTTLSGLGVRSFTAAPPSLEELFLRHYGDDVSDGGASGDGDAADGAGSRSGTGAGPGAGRHAAATTSEAGARPGPT0006725_12174DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_00590756hypothetical proteinGTGTTTAGTCTGGTGAGCATGAGTTCGACGACGGCTCCCCACGGATCGACGGACGGTCTGCGCCCGGCGTCGGACGACGCGACCGCCCCGACCCGCGACCGCATCCGCGACGCCGCGGTGCTGCGGTTCGCGCGGTCCGGGTTCACGACCTCCGTGCGCACCATCGCCGCCGACGCGGGTGTCAGCCCGGCCCTGGTGATCCACCACTTCGGGTCCAAGGACGCCCTGCACCGCGCGTGCGACGAGCACGTGCTCGCCTGGATCGTGGAGTCGAAGCGGCAGAACATGGGCCGCGCCACCGACGGTCAGCTGTTGCAGGTGCTCGCCGAGTCCGACGAGTACGCCCCGCTGCTCGGCTACGTGATGCGGTCCCTGCAGGCCGGCGGCGACGTCGCCCGGGCGTTCGTGCAGCACATGGTCGACGACGCCCGGGTCTACACCCGCGAGGCCGTCGCGGACGGGATCGCCAAGCCGAGCGTCGACGAGGACGCCCGCGCCCGCTACCTGGTGCTGTCCGCGCTCGGCACGCTGTCCCTGGCCCTGACGCTCCACCCGCCCGAGGACTCCGAGAACCTCGGCTCCACGTTGCGGACGTTCATGGCGGAGCACTACCTGCCGATGATCGAGATGTTCGCCCAGGGGTTCCTCACCAGCCGCCGCATGCTCGACGACTACCTGCTCTACCTCTCCGACCCCCCGGCGGACGGCGAGTCCGACGACGCACCCGCCACCGAGACCCCGAGCGAGGAACCATGAMFSLVSMSSTTAPHGSTDGLRPASDDATAPTRDRIRDAAVLRFARSGFTTSVRTIAADAGVSPALVIHHFGSKDALHRACDEHVLAWIVESKRQNMGRATDGQLLQVLAESDEYAPLLGYVMRSLQAGGDVARAFVQHMVDDARVYTREAVADGIAKPSVDEDARARYLVLSALGTLSLALTLHPPEDSENLGSTLRTFMAEHYLPMIEMFAQGFLTSRRMLDDYLLYLSDPPADGESDDAPATETPSEEPPGPT0029255_634DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029255-cecR|ybiH-K23777NANA
AK018_005911119acr3_1COG0798Arsenical-resistance protein Acr3ATGTCGATCGAATCAGCGACGAGGGAGAGCACGTTGACCACCACCGCCGAGGCGCCCGTCCGCGCCCGCCTGTCCACCCTCGACCGCTGGCTGCCGCTGTGGATCGGCCTGGCGATGGTCGTCGGCCTGCTGCTCGGACGGTTCGTCCCCGTGCTCGGCGACGCCCTCGATGCGATGGAGGTCGGCGGCATCTCGGTGCCGATCGCGCTCGGGCTGCTGGTGATGATGTACCCGGTGCTCGCCAAGGTCCGCTACGACCGGGTCGCCGCGGTCACCGGAGACAAGCGACTCCTCGTCAGCTCGCTCGTGCTCAACTGGCTCGTCGGGCCGGCCCTGATGTTCTCCCTCGCCTGGGTCTTCCTGCCCGACCTGCCCGAGTACCGCACCGGTCTGATCATCGTCGGACTGGCCCGCTGCATCGCCATGGTCGTCATCTGGAACGACCTCGCCTGCGGCGACCGGGAGGCCGCCGCCGTGCTGGTGGCGATCAACTCGCTGTTCCAGGTCGTGATGTTCTCGGTGCTGGGGTACTTCTACCTGACCGTCCTGCCCGGCTGGCTCGGCCTCGACACCGCGGGGCTGGACGTCTCCGTCGGGCAGATCGCCCTCAACGTGCTCGTCTTCCTCGGCATCCCGCTCGCCGCCGGCTTCGCCTCCCGGGCGATCGGCGAGCGCACCCGGGGCCGCGACTGGTACGAGGAGCGGTTCGTCCCCCGCGTCGGGCCCTGGGCGCTGTACGGCCTGCTGTTCACCATCGTGCTGCTGTTCGCCCTGCAGGGTGAGCAGGTCTCCGAGAATCCGGGCGACGTCGCCCGGATCGCCCTGCCGCTGCTCGCCTACTTCGCGATCATGTGGGGCCTCGGCATCGTCGTCGGCAAGGCACTCGGCCTGGGCTACGCCCGCACGGCCACGCTCGCGTTCACCGCGGCGGGCAACAACTTCGAGCTCGCCATCGCCGTCGCCGTCGCGACCTTCGGCGTCACCTCCGGCGAGGCGCTCGCCGGCGTCGTCGGGCCGCTCATCGAGGTCCCCGTGCTCGTGGGCCTCGTGTACGTCACCCTGTGGGTCGGACGCCGGTGGTTCGGCACCCTGCCCTCGGACGAGGAGGTCCGCTCATGAMSIESATRESTLTTTAEAPVRARLSTLDRWLPLWIGLAMVVGLLLGRFVPVLGDALDAMEVGGISVPIALGLLVMMYPVLAKVRYDRVAAVTGDKRLLVSSLVLNWLVGPALMFSLAWVFLPDLPEYRTGLIIVGLARCIAMVVIWNDLACGDREAAAVLVAINSLFQVVMFSVLGYFYLTVLPGWLGLDTAGLDVSVGQIALNVLVFLGIPLAAGFASRAIGERTRGRDWYEERFVPRVGPWALYGLLFTIVLLFALQGEQVSENPGDVARIALPLLAYFAIMWGLGIVVGKALGLGYARTATLAFTAAGNNFELAIAVAVATFGVTSGEALAGVVGPLIEVPVLVGLVYVTLWVGRRWFGTLPSDEEVRSPGPT0004705_531DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325NANA
AK018_005921023arsC_1Arsenate reductaseATGACCGTCGCAACGTCACCCGTCCCCGCCGACGGCCGCGCCCTCGGCCCCGACGTGGCCGTCGCGGTCGCCGGGGTGCTCAAGGCGCTCGCCGACCCCCTGCGCCTGCGCATGCTGTCCGCGATCGCCACCGCCCCGGGCGGCGAGGCCCACGTCGGCGACCTCGCCGAGCTGGCCGAGGTCTCCCAGCCCACGGTCTCCCACCACCTCAAGGTGCTGCGGGACGTCGGCGTGCTGAGCGCCGAGCGGCGGGGCACCTCGGTGTTCTACCGGGTCGCCCCCGTGTACCGCACGGCCGTGACCACGCTGCTGGACCGGTTCGCCCCGGCCGTCGCGGACTCCGGACGGCTGGCCACGGCCGACGACCCGGGCGCCGGGCGGTGGACCGAGCTCCACGGCCTGGCCGACGTCGACCGCGAGCTCGGTCGGCTCGCCGAGTCCCTGGCCGAGCGCATCCCGGGTACCACCCAGGACGAGGCGCTGCGGGTCGTGCGCGAGTCGTACACCGCTCTGGCCCGCCGCGGCGGCATCCCCGTCCACCTCGTCGCGCTCACCGAGCACTTCGCCCGCCAGCGCCTGGCCGACGCCGCCAAGAACCGCACGATCGAGGCTCCCGGTTCCGACGCCGACCACCCGCCCCAGGTGCTGTTCGTCTGCGTCGGCAACGCCGGCCGCTCCCAGCTCGCCGCCGCGCTGCTGGCCCGGAGCGCCGGGGACCGCGTCGTGGTGCGCTCGGCCGGCTCCACGCCCGCGGGCGACGTGCACGACGTGGTCCGCCCGGCCCTCGAGGAGCTCGGCGCTCCTAACGACGTCTTCTTCCCCAAGCCGCTGACCGACGACGCCGTGCGCGCCGCCGACGTCGTCGTCACCATGGGCTGCGGGGACTCCGTGCCCGTGCTGCCCGGCACGCGGTACGAGGACTGGGTCGTGGGCGACCCGGCGCTGGCCTCACGGGCCGGCGTCCGGGCCATCCGCGCCGAGCTCGACGCCCGCGTCCACCGCCTGCTCGACGAGATTCTCTGAMTVATSPVPADGRALGPDVAVAVAGVLKALADPLRLRMLSAIATAPGGEAHVGDLAELAEVSQPTVSHHLKVLRDVGVLSAERRGTSVFYRVAPVYRTAVTTLLDRFAPAVADSGRLATADDPGAGRWTELHGLADVDRELGRLAESLAERIPGTTQDEALRVVRESYTALARRGGIPVHLVALTEHFARQRLADAAKNRTIEAPGSDADHPPQVLFVCVGNAGRSQLAAALLARSAGDRVVVRSAGSTPAGDVHDVVRPALEELGAPNDVFFPKPLTDDAVRAADVVVTMGCGDSVPVLPGTRYEDWVVGDPALASRAGVRAIRAELDARVHRLLDEILPGPT0004705_1938DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325NANA
AK018_00593411arsC2_1COG0394Arsenate-mycothiol transferase ArsC2ATGACCACCCCCTCCGTGCTGTTCGTCTGCGTCCACAACGCCGGCCGCTCCCAGATGGCCGCCGGGTTCCTGCGCGCACTCGGCGGCGACGGCGTCGAGGTCCGGTCCGCCGGGTCCGCCCCGAAGGACTCGATCAACCCCGTCGCCGTCGAGGCGATGGCCGAGCAGGGCGTCGACATCCGCGCCGAGCAGCCCAAGGTGCTCACCGACGACGCCGTGCAGGCCTCCGACGTCGTCATCACCATGGGCTGCGGCGACGCCTGCCCGATCTACCCCGGCAAGCGCTACGAGGACTGGGAGCTCGACGACCCGGCCGGCCAGGGCATCGAGGCCGTCCGACCGATCCGGGACGAGATCGAGCGGCGCGTGCGCGCCCTGCTCGCCTCGCTCGACGTGCGGGTCGCCGGATGAMTTPSVLFVCVHNAGRSQMAAGFLRALGGDGVEVRSAGSAPKDSINPVAVEAMAEQGVDIRAEQPKVLTDDAVQASDVVITMGCGDACPIYPGKRYEDWELDDPAGQGIEAVRPIRDEIERRVRALLASLDVRVAGPGPT0004715_1927DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004715-arsC-K03741NANA
AK018_005941698cdr_1Coenzyme A disulfide reductaseATGAACGCCGCACCGAAGATCGTCGTCGTCGGCTCGGTCGCGGCCGGCACCTCCGCGGCGGCCAAGGCCCGCCGCGGGTCCGAGGACGCCGAGATCGTGGTCTACGACCGCGACGCCGACATCTCCTACTCCGGCTGCGGGCTGCCGTACTACCTCGGCGGCGAGGTCGAGTCGATGGACGATCTCACCCCGCGCGACGCCGCGTGGTTCGCGAAGCGCTACGGCATCGACGTGCGCACCGGCCACGAGGTCACCGACGTCGACACCGCGGCGCGCACCGTCACCGTCCGCGACCTGGCCACCGGGACCACGTCCACCGACGACTACGACGAGCTCGTGCTCGCCACCGGCGTCTCCCCCGTCGTGCCGCCGCTGCCTGGGACGGACGCCGACGGCGTCTTCACGCTGCGCAACCCGTCGGACGCCCGCTCGATCCGTGCGTGGATCGAGTCGCGCGGCGTGGAGCGGGCGGTCGTCGTCGGCGCCGGGTACATCGGCCTGGAGACCGCCGAGCAGCTCACCGAGCGCGGCCTCGACGTCACCGTGGTCGAGATGGAGGCGCACTCCATGCCGCGGCTGGACGCCGACGTCGCCGACCGGGTCGACGACGAGCTGGCCGAGCACGGCGTCGAGCTGCTGACCGGCGCCGAGGTCACCGCGATCGAGCCGGCCGACGACGGCGCGGCACGCGCCGTGCGGGTCGTCGGGCGCGACGGTGCCGAGCACCTCGTGGAGGCCGGCCTCGTCGTGGTCGCCGTGGGCGTCCGGCCGAACCTGGACCTCGCCCGCGCCTCCGGCGTGCGCGTCGGGGACACCGGGGCGATCGCCGTCGACCGGGTCGGCCGCACCTCGGTGGAGCACGTGTGGGCCGTCGGGGACGTCGCCGAGAGCTTCGACCTGATCACCGGCGAGCCGACCTGGGTACCCCTCGGCTCGACCGCCAACAAGACGGGGCGGATCACCGGGGACGCGCTGACCGGCGGGGACCTGGAGCACCGCGGCATCCTCGGCACCTCGATCGTGCGGGTGTTCGACCTCGCCGTGGCCCAGACCGGGCTCACCGAGGACCGTGCCCGCGCGGCCGGGTTCGACCCCGTCGTCGTGCACAACATCAAGCCGGACCGCCCCGCCTACCTCGGCGGGCAGGAGATGCTGATCAAGGCCGTCGCCGACCGTGGCACCGGGCGCTTGCTCGGTGCGCAGATCGTCGGCCCGTCGGGTGTGGACAAGCGGGTCGACGTGCTTGCCACCGCGATCACCTTCGGGGCGAAGGCCGCCGACCTGTTCCACCTCGACCTCGCCTACGCCCCCACCTACGCGACCACCAAGGACCCGGTGCACTACACGGGCATGGCGCTCGACGGCGCGATCGACGGCCGGGCCCCCCTGATGTCCGCGACCGAGCTGGACCGACGCCGTTCCGACGGCGAGAAGATCCAGGTCGTCGACGTCCGGTCGGCCAAGGACCGCGCGAAGTCGGCCGTCGACGACTCCGTGCACCTCCCGCTCGCCGAGCTGCGGGCACGGGCCGGCGAGCTGGATACCGCGCTGCCGACGGTGACCTACTGCAACAAGGGCGTCACCGGCAACGCCGGGCAGAACGTGCTGCGCAACCTCGGGTTCGGCGACGTCGCGAACCTGTCCGGTGGCAACACGACCTACCAGCGCCACGTCCGGGGCCGCAGCCTGTCAGGATGAMNAAPKIVVVGSVAAGTSAAAKARRGSEDAEIVVYDRDADISYSGCGLPYYLGGEVESMDDLTPRDAAWFAKRYGIDVRTGHEVTDVDTAARTVTVRDLATGTTSTDDYDELVLATGVSPVVPPLPGTDADGVFTLRNPSDARSIRAWIESRGVERAVVVGAGYIGLETAEQLTERGLDVTVVEMEAHSMPRLDADVADRVDDELAEHGVELLTGAEVTAIEPADDGAARAVRVVGRDGAEHLVEAGLVVVAVGVRPNLDLARASGVRVGDTGAIAVDRVGRTSVEHVWAVGDVAESFDLITGEPTWVPLGSTANKTGRITGDALTGGDLEHRGILGTSIVRVFDLAVAQTGLTEDRARAAGFDPVVVHNIKPDRPAYLGGQEMLIKAVADRGTGRLLGAQIVGPSGVDKRVDVLATAITFGAKAADLFHLDLAYAPTYATTKDPVHYTGMALDGAIDGRAPLMSATELDRRRSDGEKIQVVDVRSAKDRAKSAVDDSVHLPLAELRARAGELDTALPTVTYCNKGVTGNAGQNVLRNLGFGDVANLSGGNTTYQRHVRGRSLSGNANANANANA
AK018_005951266COG0531putative transporterGTGACCCAGCTCGCCCGCCGCCTCGGCACGAAGGACGCCGTCGCGATCGGCCTCGGCTCGATGATCGGCGCCGGCGTCTTCGCCGCCTTCGCCCCGGCCGCGCGGGCGGTCCTGCCGGCCGGGACGGGGTGGGCGCTGCTGGGTGCACTGGCGCTGGCGGCCCTGGTGGCCTACGCGAACGCCACCAGCTCCGCCCAGCTGGCCGCGCAGTACCCCGTGGCCGGCGGCACCTACGTCTACGGCCGCGAGCGCCTCGGCGACTGGTGGGGCTACCTCGCCGGCTGGGGGTTCGTCATCGGCAAGACGGCGAGCTGCGCGGCGATGGCGCTGACCTTCGCCGCCTATGCCGCCCCGCCCGGCTGGGAGCAGCCGGTGGCGGCGGCCGCCGTCGTCGCGCTGGCGGCGGTGAACTACCGGGGCGTGACCCGCACGGCCCGGCTGACCCGGTGGATCGTCGCCGTGGTGCTGCTGGTGCTGGCCACGTGGACGGCGGTGGTGTGGGCCGGGGTGTCCGGCCCGGCAGGTTCGCCGCTGTCCGACGGCGGCGCGGCGTCCGACGGCGGCTGGGCCGTGGCGTACGGCGTGCTGCAGGCGGCGGGCCTGCTGTTCTTCGCCTTCGCCGGGTACGCGCGCATCGCCACCATGGGCGAGGAGGTGCGCGACCCGCGTCGCACGATCCCCCGGGCGGTGCTGCTGGCGCTCGCCGGCGCCGTGGTCGTGTACGCGGTCGTGGCCGTGACCCTGCTGGGTTCGCTGGGCCTCGAGGGGATCGCGGGGACGACGGCGCCGCTCGCGGCGGCGGTGGAGGGGTCGCCGTGGGCCGGGGTCGTCGTGCGGGTCGGCGCGGCCGCGGCGTCGCTCGGGGCGCTGCTCGCCCTGGTGGCCGGGATCGGCCGGACCTCGCTCGCGATGGCGCGCGGGGGCGACCTGCCGGGATGGCTGGCGGCCGTGCACCCCCGGTTCGCGGTGCCGCACCGTGCGGAGGTCACGCTGGCCGCCGTCGTCGTGGTGCTCGTGCTGACGGTCGACCTGCGCGGTGCCATCGGGTTCTCCAGCGTCGGCGTGCTGCTCTACTACGCGGTCGCGAACGCCGCGGCGTGGACGCAGACCGGCGAGCACCGGCTCTACCCCCGTCTGCTGCAGGGGTTCGGCCTGCTGGCGTGCCTCGTGCTCGTGGTGACGCTGCCCGTGACGGCGGTGGTCGCCGGGGCGGGCGTGGTCGCCGTCGGGATCCTGGTGCGCCTGGTCCGGCGCGGACGCCGATAGMTQLARRLGTKDAVAIGLGSMIGAGVFAAFAPAARAVLPAGTGWALLGALALAALVAYANATSSAQLAAQYPVAGGTYVYGRERLGDWWGYLAGWGFVIGKTASCAAMALTFAAYAAPPGWEQPVAAAAVVALAAVNYRGVTRTARLTRWIVAVVLLVLATWTAVVWAGVSGPAGSPLSDGGAASDGGWAVAYGVLQAAGLLFFAFAGYARIATMGEEVRDPRRTIPRAVLLALAGAVVVYAVVAVTLLGSLGLEGIAGTTAPLAAAVEGSPWAGVVVRVGAAAASLGALLALVAGIGRTSLAMARGGDLPGWLAAVHPRFAVPHRAEVTLAAVVVVLVLTVDLRGAIGFSSVGVLLYYAVANAAAWTQTGEHRLYPRLLQGFGLLACLVLVVTLPVTAVVAGAGVVAVGILVRLVRRGRRPGPT0020810_6223DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
AK018_00596723hypothetical proteinATGACCTCCGTCGGCTCAGGCCCCCGCCCGCTCACCGCGGCGCGCCGGGCGGTGCTCGAGCGCCGGGTGCGCTGGATCGTCACGGCGACGATCGCCTACAACGTCGTCGAGGCGGTGATCGCCCTCACGGCCGGACGTCTCGCCTCGTCCGCGGCCCTGGTCGGGTTCGGGCTCGACTCCGTCGTCGAGGTGCTCTCCGCCGCCGCGGTGGCCTGGCAGTTCGCCGCTCCCGACCCGCACCGGCGCGAACGGGTGGCGCTGCGCGTCATCGCCTTCTCGTTCTTCGGCCTGGCCGCGTTCGTCACCGTCGACGCCGTGCGCACCCTGCTCGGAGCCGCCGAGCCCGACCACTCCACCGTCGGCATCGTGCTCGCCGCCGTGAGCCTCGCCGTCATGCCGCTGCTGTCCTGGTTCGAGCGCCGCACCGGGCGGGAGCTCGGCTCCGCCTCGGCGGTCTCCGACTCCAAGCAGACCCTGATCTGCACCTACCTGTCCGCCGTGCTGCTCGTCGGGCTGGTGCTCAGCTCGACGCTCGGCTGGACCTGGGCCGACCCGCTCGCGGCGCTCGTCATCGCCGCCTTCGCGGTGCGCGAAGGACTCGAGGCGTGGCGGGGCGACGCCTGCTGCACCCCGGTCGCGGCGATGATCGGGACCGAGAGATCGGAGGGGCCCGACGGCGGCACCTGCGGCTGCGGCGACGACTGCTGCTCGGCGGACCGCTGAMTSVGSGPRPLTAARRAVLERRVRWIVTATIAYNVVEAVIALTAGRLASSAALVGFGLDSVVEVLSAAAVAWQFAAPDPHRRERVALRVIAFSFFGLAAFVTVDAVRTLLGAAEPDHSTVGIVLAAVSLAVMPLLSWFERRTGRELGSASAVSDSKQTLICTYLSAVLLVGLVLSSTLGWTWADPLAALVIAAFAVREGLEAWRGDACCTPVAAMIGTERSEGPDGGTCGCGDDCCSADRNANANANANA
AK018_005971020acdS_11-aminocyclopropane-1-carboxylate deaminaseGTGACGCTCGACGACTTCCCCCGCTACCCGCTCACCTTCGGCCCGAGCCCCCTGCAGCACCTGAAGCGGCTGTCCCAGCACCTCGGAGGCGCCCAGGTCTGGGCCAAGCGCGAGGACGTCAACAGCGGTCTCGCGTTCGGCGGCAACAAGGTCCGCAAGCTCGAGTACATCGTGCCGGACGTGCTCGCCTCGGGCGCCGACACCCTGGTGTCCATCGGCGGGTACCAGTCCAACCACACCCGCCAGGTCGCCGCCGTCGCCGCCCACCTGGGCCTGAAGGCCCGGCTGGTGCAGGAGAAGTGGGTCCCGTGGGACGACCCGACCAACGACAAGGTCGGCAACATCCTGCTGTCGCGCATGATGGGCGCCGACTCCCGGCTCGACGACGCCGGGTTCGACATCGGCATCCGCGACTCCTGGAAGTCCGCGCTGCGCGAGGTCGAGGAGGCCGGCGGCACCCCGTACCCGATCCCCGCCGGCGCCTCCGAGCACCGTCTCGGCGGACTCGGCTTCGCGAACTGGGCGTTCGAGGTCGCCCAGCAGGAGAAGGAGCAGGGCGTCTTCTTCGACACGATCGTGGTGTGCACCGTGACCGGGTCCACCCACGCGGGCATGATCGCCGGGTTCGCCGCCCTCGAGGAGCTCACCGGCGTGCGCCGCCGCGTGCTCGGGATCGACGCCTCGGCCACCCTCGACAAGACCCGCGACCAGGTCGGCCGGATCGCCCGGCACACCGCCGAGCTCGTCGAGCTGGGCCGGGACCTGCGGGACGACGAGATCCAGGTCCTCGACGGCTGGGCCGGCGACCTCTACGGCATCCCCGTGGAGTCCACCGAGAACGCCATGCGGCTCGGGGCCGAGCTGGAGGCGATGATCACCGACCCCGTCTACGAGGGGAAGTCCCTCGCCGGGCTGATCGACCTCGTCGGCAGCGGCGACGTCCCGCGGGACTCCACGGTCCTCTACGCCCACCTCGGCGGGCAGCCGGCGCTCAACGCCTACCACTCGCTCTGGTCGTAGMTLDDFPRYPLTFGPSPLQHLKRLSQHLGGAQVWAKREDVNSGLAFGGNKVRKLEYIVPDVLASGADTLVSIGGYQSNHTRQVAAVAAHLGLKARLVQEKWVPWDDPTNDKVGNILLSRMMGADSRLDDAGFDIGIRDSWKSALREVEEAGGTPYPIPAGASEHRLGGLGFANWAFEVAQQEKEQGVFFDTIVVCTVTGSTHAGMIAGFAALEELTGVRRRVLGIDASATLDKTRDQVGRIARHTAELVELGRDLRDDEIQVLDGWAGDLYGIPVESTENAMRLGAELEAMITDPVYEGKSLAGLIDLVGSGDVPRDSTVLYAHLGGQPALNAYHSLWSPGPT0002000_176DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002000-cuyA-K17950NANA
AK018_00598684hypothetical proteinATGCCGGTTCCCGCCGAGACGCTCCCGCACCGTCCGCTCCTGCGCGACGAGGTCTACGCGCGGCTGCGGGACGCCATCGTCGACGGCACGCTCGCGCCGGACGAGCAGCTGCGGGACGCCGAGCTCGCGGCCTGGCTCGGCGTGAGCCGCACACCGGTGCGCGAGGCGATCCTCGAGCTCGCCCGGGCGGGGCTGGTGCGTGCCGTGCCCGGCCGGTCGACCGTCGTCGCACCCCTGGACGAGACGAGCGTGCGGGACGCCCAGTCGGTCGTCGCGGCGATGCACCGGGTGGCCGTCGAGCAGGCCGTGCCCCGGATGACCGCCGACGACCTGGACCGCATGCGCGCGGCGAACGCAGCGTTCGCCGCGGCGCAGCGGAGCGGCGACCCGGACGCCGCGATGGTCGCCGACGAGGAGTTCCACGCCGTCGCGCTCGACGTCTGCGGCAACGCCGCCGTCCGGGACGTGATCGCCCGCTACGAACCCGTGCTGCACCGCGCCGAGCGGCTGCGGTTCGCCTCCCACGAGGGCCGCGACTCCGCGGCCCGCCACGACCGGCTCGTCGCCCTGTGCGCCGCGGGCGACACCGCCGGCGCCGCGGCCGTGGCGGAGCAGACCTGGCTCAGCCTCACCGTCCCCGGACGGCCGGAGACCGTACGACCAGAAACCGAGGAGACACCGTGAMPVPAETLPHRPLLRDEVYARLRDAIVDGTLAPDEQLRDAELAAWLGVSRTPVREAILELARAGLVRAVPGRSTVVAPLDETSVRDAQSVVAAMHRVAVEQAVPRMTADDLDRMRAANAAFAAAQRSGDPDAAMVADEEFHAVALDVCGNAAVRDVIARYEPVLHRAERLRFASHEGRDSAARHDRLVALCAAGDTAGAAAVAEQTWLSLTVPGRPETVRPETEETPNANANANANA
AK018_00599318hypothetical proteinATGACCTCGCGCCCCGCGGTCCGCCGCGCCGCTGCCGCCGTCCTCGCCGTCGTCGTCCTCGCCGTGGTCGCCGCCTGCGCCGCGGGCCCGAACCCCGGCCTCGACACCGCCCCGCCGGGCGCCGAGGACCCGGCGGGGTTCTGGTACGGGCTCTGGCAGGGGATGATCCTGCCGGTCACCTTCGTCGTGTCGCTGTTCACGGACACCGTGTCGATCTACGAGGTCCACAACAGCGGCAACTGGTACGACTTCGGGTACGTGCTGGGCATCTCGTTCGTCTTCGGCGGACCGTTCGGCGCGAGCCGCGCGCGCCGCTGAMTSRPAVRRAAAAVLAVVVLAVVAACAAGPNPGLDTAPPGAEDPAGFWYGLWQGMILPVTFVVSLFTDTVSIYEVHNSGNWYDFGYVLGISFVFGGPFGASRARRNANANANANA
AK018_006001380hypothetical proteinATGGGGACGACGACGGAGCATCCGGTGGTGGTGATCGGCGCCGGCCCGACCGGTCTCGCCGCCGCGGCGCACCTGCTCGAGCGGGGCCTGGACCCGCTCGTCCTCGAGGCCGGCGACGGCCCCGGGGCCACGATCGCGCAGTGGGGGCACGTCCGGCTGTTCTCGCCGTGGCGGTACTGCCTGGACGCGGCCTCCCGGCGCCTGCTCGACGGCGCCGGCGGGTGGGAGGCGCCGGACCTGGACGCGCTGCCGACCGGCGCCGACCTGGTCCACGACTACCTGGAGCCGCTCGCGGCCACCCCTGCCCTGCGCGACCGGATCCGCTACGGCGTCCGCGTCACCGCCGTCGTCCGCGACGGTGCCGACCGCACGCGCTCGCTCGGGCGCGAGCGGCGCGCCTACCGCGTGCGCACCCGGACGTCGGACGGCGGCACCCACGACGTGCTCGCCCGTGCCGTGGTCGACGCCTCGGGGACCTGGACGCGTCCCAACCCGGTCGGCGCGCACGGGATCCCCGCCGTGGGGGAGTCCGACGCCGGGGCCTACCTCGCCGGGCCGCTGCCCGACGTCCTGGGTGCCGAGCGCGACCGGTTCGCCGGCCGGCACACGCTGGTCGTGGGGATGGGCCACTCCGCCGCCAACACGCTGCTCGCGCTCGTCACCCTCGCCGGCCAGGTGCCCGGCACCCGCGTCACGTGGGCCGTCCGCGGCGGGTCGGCCCGCCGCCTGTTCGGCGGCGGCACCGACGACGCGCTGCCCGCCCGCGGGCTCCTGGGCAGCCGGCTGCGCGAGGCGGTCGACGCGGGGCGCCTCGCACTGGTCACCCGGGCCGCGGTCGACGAGCTCGTCCCGGACGGCGACGTCGTGCACGTGCGGGGGAGCGGTCGTCGCGACGGCGTCGACGGGCCGCTCGACCTCGCGGTGCACCAGGTCGTCGGCGCCACCGGGTTCCGTCCGGACCTGGACATGCTGCGCGAGATCCGGCTCGACCTCGACCCCGTGGTCGAGGCGCCCGTCCGGCTGGCCCCCCTGATCGACCCGAACCTGCACTCCTGCGGGACCGTCGAACCGCACGGGGAGTCGGTGCTCCGCCACCCCGATGCCGGCTTCTATCTCGCCGGCATGAAGTCCTACGGCCGCGCGCCCACGTTTCTGCTCGCGACCGGCTACGAGCAGGTCCGTTCGATCGCCGCCGCGCTCGCCGGGGACCGGGCGGCCGCCGACGCCGTGCGGCTCGAGCTGCCCGCCACCGGCGTCTGCTCGACCGACCTCGGTGGAGAGGGCGGCGACGGTGCCGACGGTGCCGACGTGGCAGCGTGCTGCGGGACGACGGCGGAACCGGGCCCGCAGCCCGTGGAGCTGACGCTCGCGCCCCGCTAGMGTTTEHPVVVIGAGPTGLAAAAHLLERGLDPLVLEAGDGPGATIAQWGHVRLFSPWRYCLDAASRRLLDGAGGWEAPDLDALPTGADLVHDYLEPLAATPALRDRIRYGVRVTAVVRDGADRTRSLGRERRAYRVRTRTSDGGTHDVLARAVVDASGTWTRPNPVGAHGIPAVGESDAGAYLAGPLPDVLGAERDRFAGRHTLVVGMGHSAANTLLALVTLAGQVPGTRVTWAVRGGSARRLFGGGTDDALPARGLLGSRLREAVDAGRLALVTRAAVDELVPDGDVVHVRGSGRRDGVDGPLDLAVHQVVGATGFRPDLDMLREIRLDLDPVVEAPVRLAPLIDPNLHSCGTVEPHGESVLRHPDAGFYLAGMKSYGRAPTFLLATGYEQVRSIAAALAGDRAAADAVRLELPATGVCSTDLGGEGGDGADGADVAACCGTTAEPGPQPVELTLAPRNANANANANA
AK018_00601411hypothetical proteinATGTGTTGCCGGGTCGACAACATATCCATACTTGTCGATACGTGGCAAGATGAGGCCATGACGACGACCGGAGCGCCCGCCCCCGAGGCCGCACCGCCCGCGTGCTGCACCGCACCGGCCGCGGACGGGCTCGACGACGACCGCGCCGCGACGCTCGCCCGGGTCTTCAGGGCCCTCGGCGAGCCCGCGCGGGTCCGGCTGCTCTCCCTCGTGGCCGCCCAGGAGGGGCACGAGGCGTGCGTCTGCGACCTCACCGCACCGGTCGGGCTGAGCCAGCCGACCGTCAGCCACCACCTCAAGGTGCTCGTCGAGGCAGGGTTGCTCACCCGCAGCCAGCGCGGGCGGTGGGCCTACTACGCGCTCACGCCCGGCGCCCTCGACCAGGTGTCCGAGGACCTGCGCTCCCTCTGAMCCRVDNISILVDTWQDEAMTTTGAPAPEAAPPACCTAPAADGLDDDRAATLARVFRALGEPARVRLLSLVAAQEGHEACVCDLTAPVGLSQPTVSHHLKVLVEAGLLTRSQRGRWAYYALTPGALDQVSEDLRSLPGPT0004735_1059DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
AK018_006021398pcaB_1COG00153-carboxy-cis,cis-muconate cycloisomeraseATGATCGTCGCGCCGTTCGGGCGTTTCACCGAGGGTCGGGTCCCCGACCCCGGCATCGCCGCGCTGTTCACCCGGGAGAACCGGTGGCAGGCGCGGCTCGACGTCGAGGCCGCGCTGGCCCTCGCCGAGGCCGACGCCGGGGTCATCCCCAAGGAGTCCGCGCGCGCGATCGCGCTCACCGCCCGCATCGAGAAGCTGGACATCAAGCGCGTCCTCGCCGCGACGGCCGAGGCCAGCCACCCGCTGGTGCCGCTCATCGAGGAGTTCGCCCGCGCCGTCGGCTCCAAGCACGGCGGCTGGGTGCACTGGGGCGCCACCACGCAGAACATCACCCAGACGGCCGACGTGCTGGTGCTGCGCGACGCGCACCGCGTGCTGCTGCGTCAGCTCGGCGGCGTGCTGCGCGCGGCCGCGGCGCTGGCCGAGGGGGCCGCCGACCTGCCCATGGCGGGGCGCACGCACTCCCAGCACGCGGTGCCGGTCACCTTCGGCTTCAAGGTGGCGGTGTGGATCGACCAGCTCGTGTCGCACACCGAACGGCTCGAACGCCTGGACGACCGGCTGTTCTGCGTCCTGATGGGCGGAGCGGCCGGCACCTTCGCCTCCTTCGGGGACGCCGGGCGCGTCATCGAGGCGGGCGTCGCCCAGCGGCTGACGCTGCACCCGATGCGCGTGCCGTCCCGGTCGGTCAACGACGGCATCGTCGAGCTCGTCCTGGTCCTCGCCCAGCTCGCGGGCACGATCGGCAAGATCGGCAAGGACGTCTACGCGCTGATGCAGCCGGAGTTCGCCGAGGCGTTCGAGCCGGTCCCGGACGGGACCGTCGGGTCCTCGACCATGCCGCACAAGCGCAACCCGCAGCTCGCCCTGGACCTGCTGACGATGTCCGCCGAGCTGCGCGCCCTGGCGACACCGGCGCTGGAGTCGATGCTGCACGACCAGGAGGCCAACGGGGCGATGACGGCGCTGCTCGAGGACGTCTCGGCGTCCGCGGCGGTGCTCGCGGGCGACATGCTGGCCCGGCTGCAGGTCATCATGGCCGGTCTCGAGCTCGACCCGGCCCGGATGCGGGCCAACATCAAGCTGTCCGAGGGCATGATCGGCTCCGAGGCTCTGATGCTCGCCCTGGGGGAGAAGATCGGTCGGCAGAAGGCGCACGACGTCGTCTTCGAGGTCGCCCAGGCGGCGGCCACGCAGGACCGCCCGTTCCTGGAGCTGCTGCAGGCGGACCCGCTCGTGGGTGGTGCCTTCGACCCCGACGAGCTGCGCGAGCTCATCGATCCCGCGAGCTACCTGGGCCTGTCCTCGCAGATCGCGGCGGACCTGGCCGAGTGCGCGATCCTCACGGCCGACCGCCTCGACCGGCTGCCCGAGCGCGCCCCCGTGATCACGCGCTGAMIVAPFGRFTEGRVPDPGIAALFTRENRWQARLDVEAALALAEADAGVIPKESARAIALTARIEKLDIKRVLAATAEASHPLVPLIEEFARAVGSKHGGWVHWGATTQNITQTADVLVLRDAHRVLLRQLGGVLRAAAALAEGAADLPMAGRTHSQHAVPVTFGFKVAVWIDQLVSHTERLERLDDRLFCVLMGGAAGTFASFGDAGRVIEAGVAQRLTLHPMRVPSRSVNDGIVELVLVLAQLAGTIGKIGKDVYALMQPEFAEAFEPVPDGTVGSSTMPHKRNPQLALDLLTMSAELRALATPALESMLHDQEANGAMTALLEDVSASAAVLAGDMLARLQVIMAGLELDPARMRANIKLSEGMIGSEALMLALGEKIGRQKAHDVVFEVAQAAATQDRPFLELLQADPLVGGAFDPDELRELIDPASYLGLSSQIAADLAECAILTADRLDRLPERAPVITRPGPT0005000_157DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005000-pcaB-K01857NANA
AK018_00603621hypothetical proteinGTGCGTGCCGAGCCCCTGACCGTCGACGGCGTGGTGAGCCACGTCGTGGACCGGGTGCTGTCCCGTGGCGCGGACCGTCCGGTGCGTCTCCTGGTCGACGGCCATCCCTCCACGCGGCCCGAGGACCTCGCCGACGCGCTGGTCCCGCCGCTGCAGGTCGCCGGACGCCCCGTGGCACGGGTCCGGGTCCGGGACTTCTGGCGCCCAGCCTCCCTGCGGCTCGAGCAGGGCCGGCGGGACCCGGACGCGCTGCTCGACGACTGGATCGACGTCGACGGCCTCAACCGGGAGGTACTGACCTCCGTCGCGCGGCGCGGCCGCTGGCTGCCGTCCCTGCGCGACCCGGACGTCGACCGCCCGACCCGCGCGGCGTACGTCGAGGCGGCGCCGGGCACGGTGGTCGTGCTCGACGGGTCGCTCGCCCTCGGCCGGGGGCTCGACGTCGACCTCGCCGTCCACCTCGCGCTGCGCCCGGCCACCGAGACGCGTCGCACCCCGCTGGACGAGGCGTGGACGCTCGCCGCGTACACCCGGTACCGGCGCGAGGCGGCGCCCGAACGGCGGGCCGACGTCGTCGTCCGGTTCGACCACCCGGACCGGCCCGCGCTCCTGGGCCGTTGAMRAEPLTVDGVVSHVVDRVLSRGADRPVRLLVDGHPSTRPEDLADALVPPLQVAGRPVARVRVRDFWRPASLRLEQGRRDPDALLDDWIDVDGLNREVLTSVARRGRWLPSLRDPDVDRPTRAAYVEAAPGTVVVLDGSLALGRGLDVDLAVHLALRPATETRRTPLDEAWTLAAYTRYRREAAPERRADVVVRFDHPDRPALLGRNANANANANA
AK018_00604360dksA_2RNA polymerase-binding transcription factor DksAATGTCCGACGGCGGTGGTCCGGACCCGGTCGGGACGTTGCGCGCCCGCCTGGCCGCGGCCGAGGAGCGCATCGGCCGGCAGCGGGCCGTCGTGGACGGCATCGTCGCCTCGGTGCGGGGCGAGAACGTCGACGACGAGCACGACCCGGAGGGCGCCACGCTCGCCTGGGAGCGCCAGCAGGCCGCCGCGCTGCTCGCCGAGGCGGAGCGCGAGCGCGACGCCCTGCGGGCCGCCCTCGGCCGGGTGGAGGCCGGGACGTACGGCGTGTGCGAGGTGTGCGGGCGGGCCATCCCGGAGGGGCGGCTCGAGGCGCGGCCGGCGGCGACGCGGTGCGTGGAGCACGCCGCCGGCCGGCGCTAGMSDGGGPDPVGTLRARLAAAEERIGRQRAVVDGIVASVRGENVDDEHDPEGATLAWERQQAAALLAEAERERDALRAALGRVEAGTYGVCEVCGRAIPEGRLEARPAATRCVEHAAGRRPGPT0014560_3680DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204NANA
AK018_006051554nfdA_1N-substituted formamide deformylaseGTGACCGTCCTGCACCTCGCGAACGCCCGTCTGGCCGGGCATCCCGACCGCCCCGTGGACGTGCTGCTCACCGACGGGCGGGTCGCCGCCGTCGTGCCCACGGGCGCTCCGCTGCCCGGCGCGCTCGGCCTCCGGCGAGGTGCCGCGGAACGCGTCGACACCGGCGGTCGCACGGTGGTCCCCGGGCTGTGGGACGCCCACACCCACCTGACGCAGTGGGCGATGGTGCGCCGCCGCCTCGACGTCTCGACCGCCACGGGCCCGGCGCACGCCGCCGCCCTGGTCGGCGCCGCGCTCACGGACGCCCGCCGGCACCCGGCGCCCGGCCGCCCCTTCGTCGGCTTCGGGTTCCGCTGGGCCACCTGGGACGACGAACCCACCTCCGACGTCCTGGACGCCGTCGCCGGCGAGATCCCCGTCATCCTGCTCTCCGGCGACCTGCACTCCGCCTGGGCCTCGACCGCCGGGCTGCGCTACCTCGGCATCGCGCACCACCCCACCGGGCTGCTGCGCGAGGAGGAGTGGATGCCGGCGTCGCCGGCGATCGTCACCGTGTCCGACACCGACGCCGACGAGCTGGTCGCCGACGCCGCCCGCGCCGCCGCCGAGCGCGGGGTCGTGGGGGTGGTCGACTTCGAGGTCGACGACAACCTCACCGCCTGGCGGCGCCGGGCCGCAGCCGGCTGGGACCGGCTGCGGGTGCGTGCCGCCGTGTGGGAGCAGCACCTCGACGCCGTCCTCGAGGCCGGGCTGCGCCACGGCGACGCCCTCGTCCCGGACGGCGGGCCGACGGTGGAGCTCGTCACCCAGGGCCCGCTCAAGGTGATCTCCGACGGGTCGCTCAACACCCTCACCGCCTTCTGCTTCGACGACTACGTCGGGTTCGCCGGGCCCGACGCGCACGGCATCCTCAACGTCGCGACCGACCATCTCGTCCCGCTCATGTCCCGCGCGCACGAGGCCGGGCTGCGCTGCGCGATCCACGCCATCGGCGACCACGCCAACGCCCTGGCGCTGGACGCCTTCGCGGCCTCCGGCGCCCGCGGCTCCGTGGAGCACGCGCAGCTGCTGCACCCCGACGACGTCGCCCGCTTCGCCGCGCTCGGCGTCGTCGCCAGCGTGCAGCCCGAGCACGCCATGGACGACCGCGACGCCTCGGACGAGCTGTGGGCGGGCCGCACCGACCGCGCCTTCCGGCTGGCCGACCTGCACGCGGCCGGGGTGCCGCTCACCCTCGGCTCCGACGCGCCGGTCGCCCCGCTGGACCCGTGGTTCGCCGTCGCCTCGGCCGTCACCCGGTCCCGCGACGGCCGCGACCCGTGGCACCCCGAGCAGCGCATCGACCTGGCCACGGCGCTCGCGGCCTCGACCGACGGTCGCGGGGTGCGGGTGCGGCCGGGCGACCCGGCCGACCTGGCCGTGCTCGAGCTGGACCCGCTGACGCTGTCCGACGACGGCACCCGGACCGGTGCGGCGACGCTCGCCGAGGCGCTGCGCGACCTCCCGGTCGCCGGCACGCTCGTGGCCGGCCGGTGGACCTACCGGGGCTTCTGAMTVLHLANARLAGHPDRPVDVLLTDGRVAAVVPTGAPLPGALGLRRGAAERVDTGGRTVVPGLWDAHTHLTQWAMVRRRLDVSTATGPAHAAALVGAALTDARRHPAPGRPFVGFGFRWATWDDEPTSDVLDAVAGEIPVILLSGDLHSAWASTAGLRYLGIAHHPTGLLREEEWMPASPAIVTVSDTDADELVADAARAAAERGVVGVVDFEVDDNLTAWRRRAAAGWDRLRVRAAVWEQHLDAVLEAGLRHGDALVPDGGPTVELVTQGPLKVISDGSLNTLTAFCFDDYVGFAGPDAHGILNVATDHLVPLMSRAHEAGLRCAIHAIGDHANALALDAFAASGARGSVEHAQLLHPDDVARFAALGVVASVQPEHAMDDRDASDELWAGRTDRAFRLADLHAAGVPLTLGSDAPVAPLDPWFAVASAVTRSRDGRDPWHPEQRIDLATALAASTDGRGVRVRPGDPADLAVLELDPLTLSDDGTRTGAATLAEALRDLPVAGTLVAGRWTYRGFNANANANANA
AK018_00606408hypothetical proteinATGAGCGCTCCGACGCCGTATCTCGCTCTCCCCGGCACCGCCCGGGAGGCGCTGACCTTCTACGCACGAGTCTTCGGGGGCAGCACCCAGCTGCACACCTTCGCCGAGTTCGGCCGGACCGACGGACCCGCGGACGCCATCGCCCACGGCTACCTGACGGGCGGGCCGGTGGATCTGTTCGCCGCCGACGCGGCCGAGGGGGAGACGCCCCTGCACTGCGACGGCATGATGCTGTCGCTCCTGGGAACGGCTGCCCCGTCCACCCTGCGGGACTGGTTCGCCGGGTTGTCCGTGGGAGGTCGGGTCGTCGAGGACCTGCAGACCCGCCCGTGGGGAGCGTCCGACGGGCAGGTCGTCGACCGGTTCGGCCTGCACTGGCTGATCGGGTTCGAGGGCGACGAGGACTGAMSAPTPYLALPGTAREALTFYARVFGGSTQLHTFAEFGRTDGPADAIAHGYLTGGPVDLFAADAAEGETPLHCDGMMLSLLGTAAPSTLRDWFAGLSVGGRVVEDLQTRPWGASDGQVVDRFGLHWLIGFEGDEDPGPT0030505_3307PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK018_00607861mltFMembrane-bound lytic murein transglycosylase FATGCCATCCATCAACATCTTCGATCATTTCCGGGAGACCCCCATGCGACGCTCGTCCGCCCTCATCGCCACCGCCACGGCCACCCTGACCGCGCTGGCGCTCGCGGCGTGCGGCGCGGCCGACGACGGCGCGTCGGGCGGCAGCACCGCCGCCGAGGGCTCCGGCGACCTGAACCTCGTGGCGGACGGCACCCTGACCGTCGCCACCGAGGGCACCTACCGGCCGTTCACGTTCCACGACGCCTCCGGCGAGCTCGTCGGGTACGACGTCGAGGTGGCCGAGGCCGTCGCCGAGGAGCTCGGTCTGGAGATCGAGTTCGCCGAGACCCAGTGGGACGCGATCTTCGCCGGGCTGGACGCCGGCCGGTTCGACACCATCGCCAACCAGGTGTCCATGACCCCGGAGCGCCTCGAGGACTACGCGTTCTCCCAGCCGTACACCGTCTCCCGCGGCGCCGTCGTCGTGCCCGAGGGCGACACCTCGATCACGAGCTTCGACGACCTGGACGGCCTGACCGCCGCGCAGTCGCTGACCAGCAACTGGCGGGCGCTCGCCGAGGAGTCCGGCGCCGAGATCGAGGCCGTCGAGGGCTGGGCCCAGTCCGTCGAGCTGCTCGGCACCGGCCGCGTCGACGCCACGATCAACGACTCGCTGACCGTGCTGGACTACCAGGCCGAGAACCCGGAGGCACCGATCCAGATCGCCGCCGAGACCGAGGAGACCTCCGAGATGGGGTTCGTCGTCACCCCGGAGCGGGCGGCGCTGGCCGAGGCGATCGACGGCGCGCTGGACAGCCTGCGTGAGGACGGGACGCTCACGGAGCTCTCGGAGAAGTACTTCGGGGCCGACGTCACGAGCTGAMPSINIFDHFRETPMRRSSALIATATATLTALALAACGAADDGASGGSTAAEGSGDLNLVADGTLTVATEGTYRPFTFHDASGELVGYDVEVAEAVAEELGLEIEFAETQWDAIFAGLDAGRFDTIANQVSMTPERLEDYAFSQPYTVSRGAVVVPEGDTSITSFDDLDGLTAAQSLTSNWRALAEESGAEIEAVEGWAQSVELLGTGRVDATINDSLTVLDYQAENPEAPIQIAAETEETSEMGFVVTPERAALAEAIDGALDSLREDGTLTELSEKYFGADVTSPGPT0015635_721DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0015635-fliY|tcyA|yckK-K02424NANA
AK018_00608654tcyB_1COG0765L-cystine transport system permease protein TcyBATGGACCTCCAGCTCTTCACCGACTCGTTCTGGCCGCTCGTCCTGGGTGGCCTGACCGGGACGATCCCGCTCGCGCTCTCCTCGTTCGCGATCGGGCTCGTCCTCGCCCTCGGCGTCGCGATGCTGCGCCTCTCGGCCCACCCGGCGCTCGCCGGGGTGGGCCGGGCGTACGTCTCGGCGATCCGCGGCACCCCGCTGCTCGTGCAGCTCTTCGTCATCTTCTACGGGCTGCCGTCGATCGGGCTGACCATCGACCCCTGGCCCAGCGCCGTCGTCGCGTTCTCCCTCAACGTCGGCGGGTACGCCGCCGAGGTGATCCGCGCCGCGATCCTGTCGGTGCCGACCGGCCAGTGGGAGGCCGGCTACGTCGTCGGGATGTCCCGCCGTCGGACGCTGCGGCGCATCGTCCTGCCGCAGGCTGCCCGCGTGTCCGTGCCGCCGCTGTCGAACACGTTCATCTCCCTGGTCAAGGACACCTCGCTCGCGTCGCTGATCCTGGTGACCGAGCTGTTCCGCGAGGCGCAGGAGATCGCCGCGTTCACCAACGACTTCCTGCTGATCTACACCGAGGCGGCGATCGTGTACTGGATCTTCTGCACGGTGCTGTCGTTCGGGCAGTCCCGCCTCGAGAGGAAGCTGGAGCAGTATGTCTGAMDLQLFTDSFWPLVLGGLTGTIPLALSSFAIGLVLALGVAMLRLSAHPALAGVGRAYVSAIRGTPLLVQLFVIFYGLPSIGLTIDPWPSAVVAFSLNVGGYAAEVIRAAILSVPTGQWEAGYVVGMSRRRTLRRIVLPQAARVSVPPLSNTFISLVKDTSLASLILVTELFREAQEIAAFTNDFLLIYTEAAIVYWIFCTVLSFGQSRLERKLEQYVPGPT0020715_1370DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0020715-tcyB|yecS-K10009NANA
AK018_00609807tcyC_1COG1126L-cystine import ATP-binding protein TcyCATGTCTGAGGCACCCCTGCTGTCCGCCACCGGGATCCACCTGTCCTTCGGCGAGAACCACGTGCTGCGCGGCGTCGACCTCACGGTGCGCCGTGGCGAGGTCGTCGCCCTGATCGGCCCGTCCGGGTCCGGCAAGACCACGCTGCTGCGCTCGCTCAACGGTCTGGCCACGCCCGACGCCGGGCGCATCGTGATCGACGGCGGACCCGGCGAGCAGGTCGACCTGACCTTCGACGGCGCGCCGCGGCGCGCCTGGGGACGGGCGGGACGCCGGGCACGCGCCGCGCGGGAGTCCCTGCGCGACCGGTCGGCGATGGTGTTCCAGCACCACCAGCTGTTCCCGCACCTGACCGTGCTGCAGAACGTCGTCGAGGGACCGGTGCAGACCCGCGGCGTGCCGCGCGCCGAGGCCGAGGACCGGGCGCTGGCCCTGCTGGACCGGGTGGGGCTCGCGGACAAGCGCGACGCCTACCCCCGCGAGCTGTCCGGCGGGCAGCAGCAGCGCGTCGGCATCGTGCGGGCGCTGGCCCTGCAGCCCGACCTGCTGCTGTTCGACGAGCCGACGTCGTCGCTGGACCCGGAGCTCGTCGGCGAGGTGCTGGGCGTGATGAAGGAGCTCGCCGAGGAGGGCTGGACGATGGTCGTGGTCACCCACGAGCTGGAGTTCGCCCGAGCCGTCGCCGACGAGGTGCTGTTCCTCGACGACGGCGTCGTGGTCGAGCGGGGGGCGCCGGCGGCGCTGTTCTCCGCGCCGCGCCGGGCGCGGACGCGGGAGTTCCTGCACCGGATCCTGCATCCGCTCGACTAGMSEAPLLSATGIHLSFGENHVLRGVDLTVRRGEVVALIGPSGSGKTTLLRSLNGLATPDAGRIVIDGGPGEQVDLTFDGAPRRAWGRAGRRARAARESLRDRSAMVFQHHQLFPHLTVLQNVVEGPVQTRGVPRAEAEDRALALLDRVGLADKRDAYPRELSGGQQQRVGIVRALALQPDLLLFDEPTSSLDPELVGEVLGVMKELAEEGWTMVVVTHELEFARAVADEVLFLDDGVVVERGAPAALFSAPRRARTREFLHRILHPLDPGPT0020720_36DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0020720-tcyC|yecC-K10010NANA
AK018_006101182COG1373putative proteinGTGGTGCAAGGCGCGCGTCAGGTGGGCAAGACCACTCTCGTCCGGGACCTCGTCCAGACACAGGATGGTCGGCTGGTCACCCTGGACGACGAGCTCACCCGGCTCGCAGCGCGCACTGATCCGACAGCATTCCTGCACCAGGCACCGGGCCGGCTCCTCGCGATTGACGAGGTCCAACGCTCCCCGGAACTCGTCCTCGCACTCAAGTCCGTGGTGGACGACGATCCACGACCGGGACGATTCCTGCTGACCGGGTCCGCAGACCTCCTGCGACTTCCCGCTGCCGAGGACAGCCTGGCCGGCCGGGCCGAGAGCATCGAGCTCCTGGGCTTCAGCCAGGGCGAACTCGTGGGGCATCGAGAGCGGTTCGTCGACCGCCTCCTGTCCGGCGAGCTCTTTGTCGGTCACGACAGCGGGCAGGCACGCCACGACTATCTGGAGCGTGCTGTCGCCGGCGCCTACCCCGAGGCTCTCGCGCGGGCCACGACCAGGCGGCGGAACCAATGGATGGACAACTACCTCGCACGCATCGTCGAACGCGACGCACGAGACGTCTCGGCGATGCAGACGCTGGACCGGCTCCCGGACGTCCTGAGGATCCTGGCGGCACGCAACGCTGAAGAGCTGAACGTGAGCGGCCTGGCGAACGTCCTGGACGTCCCCGCGACCACCCTGACGCGCCAGCTCGACCTGCTCGAGACCCTCTATCTCGTGCACCGCGTCCCGGCGTGGTCCACGAACCTGTCCAAGCGTGTCGTGGCCCGGCCCAAGGCGTTGCTCCTGGACTCCGGACTGGCAGCCCGGCTCGTCAACGTCACGGCCGACGGCCTGGCTCCGGGTGTCAATGGCGAGGTGGCAGGACACCTCCTCGAGGGGTTCGTGTCCTCCGAGCTGCGGCGGCACCAGGGTTGGTCGAGCGAGTCCTTCCGGATCAGCCACTATCGCGACCGCGCCGGCGGCGAGGTCGACCTCATCCTCGAGACGGGTGACGGCCGGGTCGCGGCCCTCGAGGTCAAGGCCAGCTCGCGAGTCACCGGTCGCGACGCCCGATGGCTCGCGCAGCTGCGAGATCGGCTGGGAAGGCGGTTCGTCGCAGGCATCGTGCTCCACACGGGCCCGACCAGCGCACCGCTGGGGGACCGCCTCGCAGCCGTGCCCCTCGACATCCTCTGGCGGGCCTAGMVQGARQVGKTTLVRDLVQTQDGRLVTLDDELTRLAARTDPTAFLHQAPGRLLAIDEVQRSPELVLALKSVVDDDPRPGRFLLTGSADLLRLPAAEDSLAGRAESIELLGFSQGELVGHRERFVDRLLSGELFVGHDSGQARHDYLERAVAGAYPEALARATTRRRNQWMDNYLARIVERDARDVSAMQTLDRLPDVLRILAARNAEELNVSGLANVLDVPATTLTRQLDLLETLYLVHRVPAWSTNLSKRVVARPKALLLDSGLAARLVNVTADGLAPGVNGEVAGHLLEGFVSSELRRHQGWSSESFRISHYRDRAGGEVDLILETGDGRVAALEVKASSRVTGRDARWLAQLRDRLGRRFVAGIVLHTGPTSAPLGDRLAAVPLDILWRANANANANANA
AK018_00611360hypothetical proteinATGGAGTTCCGTGAGGCCACCGGCGACGATCTCGAACTGCTCTATGACCTGATGCTCGAGGCGTTCAACTGGGACGGCACACGTCGGTTCACGCGGAGCGAGGTTGTTGCGGACACCCACACCGCGCGCTACCTCGGAGGCTGGATCAGCCCGGGCGACTTCGGACTCGTTGCCGTGGACGAGGGCAAGCCGGTCGGCGCCGTGTGGGCACGTGCACTCCCGGCCGCAACACCTGGGTACGGATATGTCGACGACGACATCCCCGAGATCGGCATGGCTGTCACCAGCGAAGTTCGCGGGCGTGGCGTGGGAGCGGCCCTGCTGACCCGGTGCATCGACCAAGCACGCGCGCGGGGGTGAMEFREATGDDLELLYDLMLEAFNWDGTRRFTRSEVVADTHTARYLGGWISPGDFGLVAVDEGKPVGAVWARALPAATPGYGYVDDDIPEIGMAVTSEVRGRGVGAALLTRCIDQARARGNANANANANA
AK018_00612933aao_1COG0665putative D-amino-acid oxidaseATGACGGACGTAACGGTGGTCGGGGCCGGGGTCCTGGGGCTGACCTGCGCGGTCAGGCTCCTCGAGGCCGGGCATCGGGTCGAGGTGCTCGCCCGCGAGCTGCCACAGGACACCACCTCTGCGGTCTCCGCAGCACTCTGGTACCCGTACCTCGCGTTCTCCCCGGACGGCGCCGCCCGCGCCCAGGACCGGGTCACGGCCTGGTCGGCCCGGACGTTCGAGACCTTCGCCGGCCTCGTTGCCGAGGACCCCGGTTCCGGCGTCCGGATGCGCGTCGGCACCGAGGTCTTCACCGAGCGCCCGGCCGACCCCTGGTGGCGCGACGCCGTCGGTGAGCTGACCCGCACGGCCGACGTGCCGCCGTCGTACACCGACGGCTGGACCTTCACCTCCCCCGTGATCGACATGCCCGTCTTCCTGGACTGGCTCGCAGCACGCGTCACGGCGCTCGGCGGAACGATCGCCCGGCGCGACCTGACCGCGCTGCCCGACGGCGACGTCGTGGTCAACACGACCGGGCTCGGCGCGCGCGACCTGGTCGGCGACGACACCCTGCACCCGGTGCGCGGGCAGGTCGTGGTGCTCGAGCAGTGGGGGCTGGACCGCTGGTGGCTGGACGCGTCCGGGCCGACCTACGTGGTGCCACGCCTGGGTGAGGTGGTGGTCGGCGGCACGGACGACGACGGCGCGTGGGACCGCGAGCCCTCGGCGGCCATGGCCGCGGACATCCTCGAGCGCGCCGCCCGGCTCGTGCCCGCCGTGCGCGAGGCGCGGGTGCTCCGGCACGCCGTCGGGCTGCGACCGGCACGGCCGACGGTCCGGCTCGAGCGCGAGGGTCGGGTGGTGCACTGCTACGGGCACGGCGGCGCCGGCGTCACCCTGAGCTGGGGCTGCGCCGACGAGGTACGCGCCCTGGTCGGAGGCGCCGCATGAMTDVTVVGAGVLGLTCAVRLLEAGHRVEVLARELPQDTTSAVSAALWYPYLAFSPDGAARAQDRVTAWSARTFETFAGLVAEDPGSGVRMRVGTEVFTERPADPWWRDAVGELTRTADVPPSYTDGWTFTSPVIDMPVFLDWLAARVTALGGTIARRDLTALPDGDVVVNTTGLGARDLVGDDTLHPVRGQVVVLEQWGLDRWWLDASGPTYVVPRLGEVVVGGTDDDGAWDREPSAAMAADILERAARLVPAVREARVLRHAVGLRPARPTVRLEREGRVVHCYGHGGAGVTLSWGCADEVRALVGGAAPGPT0020475_857DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020475-aao-K00273NANA
AK018_00613906hypothetical proteinATGACCCGCCTCGTCCTGCTACCCGGCCGGGACACCGGCGGCCTCGACCCTGAACGGCTCGAGGCCGAGTGGCTCGCCGCGCTGAACACCGGCCTCGCCCGCGCGGACTCGTCGCTGCGCCTCTCCGACGACGACGCCACGTTCGTGTTCTACGGCGACGCGCTCGACGCCGTGGTCGGCGGGGACGAACCACCACCGATCACCACCCACGGCCTGCCGGGGCTGAGCGAGGACGCCGCGCGGTTCGCGCTCGGCGTGGCGCGGGAGGTGCTCGCGACGACCGAGACCGTGACGGCCGAACCCGCCGTCGCGCCCGCAGCACTCAGCGGCGGGTCGCTGTGGGCGGCGCTGTCCGCGGCGCTCGCCGCGATCGACCGCTGGGTTCCCGGACTCAGCAGCGCGGTGCTGCTCCTCTTCGTGCGCGACGTGTACGTCTACCTGACCGACGCCGAGGCACGGACCACGATCGACGTCGGCGTGGCCGCAGCGTTCCGCGGCGACGGACCCGCCGTGATCGTCGCCCACTCGCTGGGGTCCGTGATCGCCTACGACGTGCTGCGGTCCACGGACCCCGGGGCCGACGACGTGCCGCTGCTGGTCACGCTCGGCTCCCCGCTGGCCATCACGGCGGTCCGCGACGCGGTCGAGGCGATCGCACCCTTGACGTGGCCGGCACCGGTCGAGCGCTGGGTGGCGCTGCGGGACCCCCGCGACCTGCTCACCCTGCGCGACCTCGACGCCGACGGGTTCCCGCTGCCCGGCCCGCTGGCCATCGAGAACGCGCACGTGGACAACCCGGTGCCGGGGCACCACGCCGCGGCGACGGTGCTGGACGGCCGCCCTGCGGGCTACGCCGCCGTCGTCGAGGTCGGCCGACTGCTCGACGAGGCACTGGGCCCCTGCTGAMTRLVLLPGRDTGGLDPERLEAEWLAALNTGLARADSSLRLSDDDATFVFYGDALDAVVGGDEPPPITTHGLPGLSEDAARFALGVAREVLATTETVTAEPAVAPAALSGGSLWAALSAALAAIDRWVPGLSSAVLLLFVRDVYVYLTDAEARTTIDVGVAAAFRGDGPAVIVAHSLGSVIAYDVLRSTDPGADDVPLLVTLGSPLAITAVRDAVEAIAPLTWPAPVERWVALRDPRDLLTLRDLDADGFPLPGPLAIENAHVDNPVPGHHAAATVLDGRPAGYAAVVEVGRLLDEALGPCNANANANANA
AK018_00614426hypothetical proteinGTGAGTGACGACTGGGCCCGACAACGCACCGAGGCCGCCCACGAGCACGCCGCCCGGCTGGCTGCCCGGCAGGACGCCGAGCACCGGCAGGCCGAGGAGCTGCTCGCGCGGTTCGTCGAGGCGGCCCGCGCAGCGGACCTGCCGGCCGAGGCTCTCCAGGTCAAGGGTTACGGCGGGCGCGGGACCGCCCGGACGCCGCTGCACGGCTGGTACCTGCGCGCCGACCGGACGGCCGCCATCGCGACCGACGGCGCCTTCTACGTGCTCACCGCCCCGCTGACCCTGCTCGACCGGGTCCGCGGCCTGCGTCCGGAGCCGAAGCGTCCGCCGCTGGTGCTCGGCGCCGGAGGCAAGGACGGCGACTCCATCGACCTCGTCGACGCCCTCGAGCGGCTGCTGCCCGGCTGGCAGGACCGCACGACGTAGMSDDWARQRTEAAHEHAARLAARQDAEHRQAEELLARFVEAARAADLPAEALQVKGYGGRGTARTPLHGWYLRADRTAAIATDGAFYVLTAPLTLLDRVRGLRPEPKRPPLVLGAGGKDGDSIDLVDALERLLPGWQDRTTNANANANANA
AK018_00615759tipA_1HTH-type transcriptional activator TipAATGAGCCGTTCCATCCAGGACGTCGCCCGCCTCGCGGGTGTCTCGAGCCGCACCCTGCGGCACTACGACCGCATCGGCCTCCTGCCGCCGTCGGGCACGGGGCACGGCGGGTTGCGCTACTACGACGACGGAGCGATCCGCCGTCTGCAGCGCATCCTGCTGCTGCGGGACCTCGGGCTGCCGCTGGCCGAGATCGCCGACGTCCTGGACGCCCAGACCGACGAGACCACCGCACTGCGCGGACATCTCGACGTGCTGCACGACGAGCGCCGCCGGATCGACCGGCAGATCGCCTCGGTGGAACGCACGCTCACCGCACTGACCGAGAGGAGGCCCATCGTGGCCGAGGAGATGCTGGACGGGTTCGACCACACGCAGTACCGCGACGAGGTCACCGAGCGCTGGGGCGCCGACGCCTACGCCGAGTCCGACGCCTGGTGGCGCGGGCTGGGCGTCGACGGGCAGGCCGACTTCCGCGAGAAGGCGGAGGCCCTGGGCCGGGCGTGGACCGACGCGGCCGGGCGCGGCGTCGACCCGACGTCCGACGAGGCGCAGGTGCTCGCCGCACGGCACGCCGAGTGGCTGGGGTCGATCCCCGGGACGCCCGGGTCCGGCGTCGGGCGCCCGCCGAAGGAGTACGTCGTCGGGCTGGCCGAGATGTACGTCGCCGACGAGCGGTTCGCCGCGAACTACGGCGGCGTGGAGGGGGCGACGTTCGTGCGCGACGCGCTGCTGGCCTGGGCCGAGCGCGAGCTCTGAMSRSIQDVARLAGVSSRTLRHYDRIGLLPPSGTGHGGLRYYDDGAIRRLQRILLLRDLGLPLAEIADVLDAQTDETTALRGHLDVLHDERRRIDRQIASVERTLTALTERRPIVAEEMLDGFDHTQYRDEVTERWGADAYAESDAWWRGLGVDGQADFREKAEALGRAWTDAAGRGVDPTSDEAQVLAARHAEWLGSIPGTPGSGVGRPPKEYVVGLAEMYVADERFAANYGGVEGATFVRDALLAWAERELPGPT0003175_15DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003175-mta|ywnD-K21743NANA
AK018_006161146COG0628Putative transport proteinATGGACGACTCCTCTCCGCCGCGCACGGTCGCGGCCCTGTGGAACGACCGCCTCGGGCGCCCGGCGATCCGCGCAGCGCAGGTGCTCCTGCTGCTCGCGCTGGCCGCCTGCGTGGTCTTCGCCCTGACCCGGCTGTCGCTGCTGGTGATCCCCGTGCTCATCGCGATGGTCGTGGCTGCGGCCCTGGCCCCGCTGGTCGGCATCCTGCGCCGGCGGGGGTGGCCGGCGATGCTCGCGACGTGGACCACGCTCCTGACCGGGCTGCTCCTGCTGGCGCTGGTGGTGTGGTTGGTGACCCTGGCCTTCCAGGACGAGTGGCCGCGCCTCGTCGACGAGGCCGGTCGCGGGATCGAGGAGCTCGAGCGGTTCGTCACCGACGGCCCGCTGGGGATCAGCCCGGACCAGATCGAGTCCGTGCGGCAGTCGGCCATGGACGCGCTGTCCAGCGACCAGGTGCAGTCCGGGGCGATCCGTGGCGCGACCGCCGCCGTGGAGGCGGTCGCCGGACTGCTGCTCGGCGTCGTCGTGCTGTTCTTCCTGCTCAAGGACGGGCGGCGGATGTTCACCTTCCTCATCACGCCGCTGCGCGCGGCGACCCGGCGGCGGGCGCTCCAGGTCGGGGAGCGCTCGGTCGAGGTGCTCGGCGGGTACCTGCGCGGCACGGCGATCGTCGCGGCCGTCGACGCCGTCTTCATCGGGGTCGGCCTGATGATCGTCGGCGTCCCGCTCGCGCTGCCGCTGGCCGCGGTGGTGTTCCTCGGCGCCTTCATCCCCCTCATCGGCGCGGTGCTCGCGGGAGCCCTGGCCGCGCTGGTGGCCCTGGTGACCAACGGCCCGATCGCGGCGCTGATCGTCGTCGCGATCGTCATCGCGGTGAACCAGCTCGAGGGTGATCTGCTGGCCCCCGTGGTCATGGGCAAGGTGCTGTCGCTGCACCCGCTGGTCGTGCTGTCGGCCCTGACGGCGGGCACGGTCCTCGCCGGGATCGTCGGCGCGCTGCTGGCCGTGCCCCTCACGGCCGTCGCCTGGGCGGCCGCCAAGGAGTGGAACGCCACGGCGCCGCCGGGTCAGCAGATCGTGGCGGAGCCGACGGGCTCCGGGGCCGCGGACGACTCCGACGCCGGCTCCGATTCCGCGAGCGCGTAGMDDSSPPRTVAALWNDRLGRPAIRAAQVLLLLALAACVVFALTRLSLLVIPVLIAMVVAAALAPLVGILRRRGWPAMLATWTTLLTGLLLLALVVWLVTLAFQDEWPRLVDEAGRGIEELERFVTDGPLGISPDQIESVRQSAMDALSSDQVQSGAIRGATAAVEAVAGLLLGVVVLFFLLKDGRRMFTFLITPLRAATRRRALQVGERSVEVLGGYLRGTAIVAAVDAVFIGVGLMIVGVPLALPLAAVVFLGAFIPLIGAVLAGALAALVALVTNGPIAALIVVAIVIAVNQLEGDLLAPVVMGKVLSLHPLVVLSALTAGTVLAGIVGALLAVPLTAVAWAAAKEWNATAPPGQQIVAEPTGSGAADDSDAGSDSASANANANANANA
AK018_00617900rhaR_2HTH-type transcriptional activator RhaRATGGCACGCATGGACGAAACGACGGCGTCGGAGGTCGAGGCGCTGCGCGAGGGGTTCGCGGGGCAGCGGATGGTCGTCGTCCCCCGCCCCGCGGTGCGCGCGGCCCGCCGACGGCCGGTCACCGACCGGCTGCTCGTGACCGACGCTGGTGTGTTCCCGCACGCCGCACGGCACGCCCGCACCCGGCCCGGTGGCGCCGCCGAGCACGTCCTGCTCGTGTGCACCGGCGGGGCCGGCTGGTGCCGCACCCCGGATGGACGTTCCGCCGTCGGGCGCGGCGACGTCGTGCTGCTGCCCGCTCGGGTGGCGCACGAGTACGGTGCCGCGGCCGACGACCCCTGGTCCCTGTGGTGGCTGCACGTCCTCGGCCCGGACGCCGACGAGCTCGTCGCCGCCGCCCGCGACCTCGCCGGCGGCCCCGTGGTCCACCTGCGCGACCCCGCCCCGGTGGCCAGCCTCGTCGGGCAGGCCGTCGACGCCCTGGACACCGCCACCGCCGGCGGTCTGGTGCAGGCAGCCGGCTGCGCCTGGCACGCCCTGGCCCAGGTGGTCGCCGCCGGTCGGCGCCCGCCCGGACCCGCCCCCGACCCCGTCGAGCGCGCCCTGGCGCACCTGCGGGCCACCACGCCGCGACGCACGTCGGTGGCGGCGCTCGCGGCGCTCGTCGGCCTCAGCACGTCCCAGCTCGGGGCCGCGTTCCGCGCCCGCGTCGGCACCTCGCCGCTGCGCTACCAGACCGACCTGCGCATGGCCCGCGCCCGCGAGCTGCTGGACGCGACCGCGCTGCCCGTCTCCGCCGTCGGGCAGGCCGTGGGGTACGCGGACCCGCTGTACTTCTCGCGGCAGTTCTCGCGGGTGCACGGACAGTCCCCGACGGCGTACCGCGACCGGGTGCGGTGAMARMDETTASEVEALREGFAGQRMVVVPRPAVRAARRRPVTDRLLVTDAGVFPHAARHARTRPGGAAEHVLLVCTGGAGWCRTPDGRSAVGRGDVVLLPARVAHEYGAAADDPWSLWWLHVLGPDADELVAAARDLAGGPVVHLRDPAPVASLVGQAVDALDTATAGGLVQAAGCAWHALAQVVAAGRRPPGPAPDPVERALAHLRATTPRRTSVAALAALVGLSTSQLGAAFRARVGTSPLRYQTDLRMARARELLDATALPVSAVGQAVGYADPLYFSRQFSRVHGQSPTAYRDRVRPGPT0017485_371DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017485-araC-K02099NANA
AK018_006183357hypothetical proteinGTGCCGTCCGAACCCTCCACCCCGCCGTCCCGCCTCGTCCTGCCGCCCGCCCCGGAACACCTCGCCGACCGGCCGGTCCGCGTCTGGCGCGAGGCCGTGCCGATCGACACCTACGACGTCGCCGAGCCGGACCGGTTCCCCGCCTACCTGGACCAGCGCGTCTACCAGGGGTCCTCGGGCGCGGTGTACCCGATGCCGTTCGTGGACCGGGTCGCCGAGACCAAGGCTCCCCGCCGCTGGCAGGCCGTGCACCTGGAGAACGCCTTCGTGCGGCTGATGATCCTGCCCGAGCTGGGCGGGCGGATCCACGTGGGCCTCGACCGCACCCGCGGCTACGACTTCTTCTACCGCAACGACGTGATCAAACCCGCCCTGGTGGGGCTGACCGGCCCGTGGGTCTCCGGCGGCGTGGAGCTGAACTGGCCGCAGCACCACCGTCCGGCCACGGCCCTGCCGGTCGAGACGCACCTCGAGACCGGCGACGACGGCGCGGTGACGGTCTGGTGCTCCGACCACGACCCGCTGCGCCGCATGCAGGGCATGCACGGCATCCGACTCGCCCCGGACAGCGCGCTGATCGAGCTGCGCGGGCGGTTGGTCAACCGCACCGACGACGTGCAGACGTTCCTGTGGTGGGCGAACGTCGCCGCCGCGGCGGGCGACGACTACCAGGCGTTCTTCCCCACCGACGTCACCGTGGTGGCCGACCACGCCAAGCGCGCGGTCACCACGTTCCCCGCCGCCTCGGGCCGCTACTACGGGGTCGACTACCCGGCACGGCGCACGCCGGAGCGTCCGGACGGCGACCGGCTGGACCGGTACCGCAACATCCCGGTGCCGACGTCGTACATGTGCCTGGGGACGCAGGACGACTTCTTCGGCGGCTACGACCACGGTGCGCGGGCCGGGTTCGTGCACTGGGCCGACCACCGCGTGGCACCGGGCAAGAAGATGTGGACGTGGGGCGACGCCCCGTTCGGGTGGGCGTGGGACCGCCACCTGACGGACACCAACGGTCCGTACGTCGAGCTCATGGCCGGGGTGTTCACCGACAACCAGCCGGACTTCGCCTTCCTGGCGCCCGGGGAGACCAAGACCTTCTCCCAGTACTGGTACCCGATCCAGGACATCGGCCCGGCCCACCAGGCCACCCGGGAGGCCGCCGTCAGCCTGACCGTGCCCACCGACGGTCCGGACGATCCGGACGGTTCGGACGGGGTGCGGGTCGGGGTCGCGGTGACCGCGCCGCGACCCGGCGCCCGGATCGTGCTGCGCGCCGAGGACCGGGTGCTCCTGGACGAGACGGCCGACGTCGCGCCCGGCGCGCCGCTCGTGCGCGAGCTGCCGGCCGTGCCCGGAGTGCCGGCGACCGCCCACGAGCTCACCGTCACCCACGGCGAGGAGGTCATGGTGCGCTGGCGACCGCGGGCCGCCGAGCCCCCGGCGGACGTCGAGGCCGCCGTCGACGGGCTCGTGGCGACCGAGCCCCCGCCGCCCGAGGAGATCGGCTCGACCGACGAGCTGTACCTGACAGGCCGGCACCTGGAGCAGTACCGGCACGCCACCCGTTCGCCGGAGCCGTACTGGCTCGAGGCGCTGCAGCGCGACCCGGGTGACGCCCGCTGCGCCACGGCGCTGGCGGCACGTCGCCTGCACGCCGGCCGTCTCGACGAGGCGGAGGAGCTGCTGCGCCGTGCCGTGGCCCGGCTGACAAGCCGCAACCCCAATCCGCGCGACGGCGAGACCCACTACCGGCTCGGCGTCGTGCTGAGGCGGCAGGGACGCCCCGCCGAGGCCCGCGAGGCGTTCGGCACCGCCCTGTGGGACCAGGCCTGGCGCGACGCCGCGACCGTGGCCACGGCCCGGATCGACCTGGCCGCGGGGCGGGACACCGAGGCCGACGCCGCGCTCCGCGAGCTGCTGGCCCGCAGCCCGCAGCACACCGCGGCGCGCAACCTGGCCACGATCGCCGCGCGGCGGCTCGGCGACGACGCCCGGGCCCACGACCTGGTCCGGGGCACCCTGGCGACCAACCCGCTGGACGCCTGGGCCCGAGACCTCGCGGCGCGTCTGGGCCAGGACGTCGTGCGCACCGACGACCCGACGATCGCCCTCGACGTCGCCCGGGAGCACGCCTCGGCGGGCGAGACCGACGCCGCCCGCGACCTGCTCGAGGAGGTCGCGGGCGCCGGGACGCTGCCCGGCCGGCGCAACGTCGCCCCGCTGGCCCTGCTGCACCGGGCGGACCTCGACCTCGCCACCGGTGCCGCGGCGTCGGCCCGCGCGAGCATCGACGCGGCCGCGCACCGCGAGAGGCGGTGGTGCTTCCCCGACGCCGGGGACCTGGACGTGCTCGCCCGGCTGCGGTCGGCGTGGCCGCGCGACCCCTTCCTGGCCGCGCTGGCCGGGCACGCGCTGTACGCCGTCGGACGGCGGCACGAGGCGGTCGCGGCGTGGGAGGTGGCGGCGAGCCAGGACGGCACCGACCCCGTCGTGCTGCGCAACCTCGGCGTCGCGGCGGTCAACGTCCTCGACGACGTCGACCGCGCGGCGGAGCACTACGACGCCGCCCGCGCGCTGGCCCCCGACGACGCCCGGCTGCTGTACGAGGCGGACCAGCTCGCCGGCCGTCGCGGCCGCGGTGCCGACGAGCGGCTCGCGACGCTCCTCGCCCGGCGCGACCTGGTCGACGCGCGGGACGACCTGTCGGTCCAGCTCGCCGAGCTGCTCACCGCCGTCGGGCGCCCCGCCGAGGCCGTCGCGGTGCTGGCCGGCCGGTCGTTCCAGCCGTGGGAAGGCGGCGAGGGCCGCGTGCTCGCCGCCTGGGAGGAGGCCCACCGGACCCTGGGCCGCGCGGCGCTGGCCGACGGCGACGCGACCGCCGCCGGAGGTCACGCCGAGGCCGCGCTGGACCCGCCGGTGTCCCTCGGCGAGGCACGCCACCCGCTGGCCAACACCGCCGACCTGCACCTGCTGCTCGGGGACGCTCGCGCGGCGGCCGGCCGGGACGCCGACGCCCGCGCGGCGTGGACCACGGCGGCCGACCAGCAGGGAGACTTCCAGGTGATGCAGGTCCAGGAGCACTCCGAGGCCACGGCCGCGTCGGTGCGGGCGCTGCGCCGGCTCGGGCGGCACGCGCAGGCCGCCGCGCTGCGCGACGGGCTGGCCCGGTACGTCGAGGCCGAGGCCGGACGCACCGCGACCGTCGACTACTTCGCCACGTCGCTGCCGACGATGCTGCTGTTCACCCAGGACGTCCAGGCCGACCACGACGCCCGCGTGACGGTGCTGCGCGACCGGCTCGCGGCCCTCGACGCGGAGCACGACGCGGAGCAGGACGCCGAGGCCGTGCGATGAMPSEPSTPPSRLVLPPAPEHLADRPVRVWREAVPIDTYDVAEPDRFPAYLDQRVYQGSSGAVYPMPFVDRVAETKAPRRWQAVHLENAFVRLMILPELGGRIHVGLDRTRGYDFFYRNDVIKPALVGLTGPWVSGGVELNWPQHHRPATALPVETHLETGDDGAVTVWCSDHDPLRRMQGMHGIRLAPDSALIELRGRLVNRTDDVQTFLWWANVAAAAGDDYQAFFPTDVTVVADHAKRAVTTFPAASGRYYGVDYPARRTPERPDGDRLDRYRNIPVPTSYMCLGTQDDFFGGYDHGARAGFVHWADHRVAPGKKMWTWGDAPFGWAWDRHLTDTNGPYVELMAGVFTDNQPDFAFLAPGETKTFSQYWYPIQDIGPAHQATREAAVSLTVPTDGPDDPDGSDGVRVGVAVTAPRPGARIVLRAEDRVLLDETADVAPGAPLVRELPAVPGVPATAHELTVTHGEEVMVRWRPRAAEPPADVEAAVDGLVATEPPPPEEIGSTDELYLTGRHLEQYRHATRSPEPYWLEALQRDPGDARCATALAARRLHAGRLDEAEELLRRAVARLTSRNPNPRDGETHYRLGVVLRRQGRPAEAREAFGTALWDQAWRDAATVATARIDLAAGRDTEADAALRELLARSPQHTAARNLATIAARRLGDDARAHDLVRGTLATNPLDAWARDLAARLGQDVVRTDDPTIALDVAREHASAGETDAARDLLEEVAGAGTLPGRRNVAPLALLHRADLDLATGAAASARASIDAAAHRERRWCFPDAGDLDVLARLRSAWPRDPFLAALAGHALYAVGRRHEAVAAWEVAASQDGTDPVVLRNLGVAAVNVLDDVDRAAEHYDAARALAPDDARLLYEADQLAGRRGRGADERLATLLARRDLVDARDDLSVQLAELLTAVGRPAEAVAVLAGRSFQPWEGGEGRVLAAWEEAHRTLGRAALADGDATAAGGHAEAALDPPVSLGEARHPLANTADLHLLLGDARAAAGRDADARAAWTTAADQQGDFQVMQVQEHSEATAASVRALRRLGRHAQAAALRDGLARYVEAEAGRTATVDYFATSLPTMLLFTQDVQADHDARVTVLRDRLAALDAEHDAEQDAEAVRNANANANANA
AK018_006192304hypothetical proteinATGAGCGCGCCGATCCGCGTCACCGACCGCTGGCTCGAGCGCGACGGCCGGCCCTGGTTCCCCGTCACCGGGGAGATCCACTACGGCCGGATCCCGCGCGAGCGGTGGTCCGAGGTGCTGGGGCACGCCCGCGCCGGCGGGCTGGACTCCGTGGCGAGCTACGTGTTCTGGCAGGCGCACGAACCGGCCCCCGGCGACTTCCGCTGGGACGGGAACATCGACCTGCGGGCCTTCGTCGAGCTCGCCGGCGCGCACGGGCTGGAGGTCGTGGTGCGGATCGGGCCGTGGTCGCACGCCGAGGCCCGCTACGGCGGCTTTCCCGACTGGCTGGTCCAGCGCGACCTCGCGCTGCGCACCGACGACCCGGGCTACCTCGCCCTCGTGCGGCGGCTGTACGGCGAGATCGCCGCGCAGCTGCGCGGGCTGCTGCACGCCGACGGAGGCCCCGTGATCGGGGTGCAGGTGGAGAACGAGCTGGCCGACGACCCCGACCACCTAGCGACACTGCGCGCGCTCGCCGAGCAGGCCGGAATCCACGTCCCGGTGTGGACGGCGACCGGCTGGGGCGGCGCCCGGCTCCCCGAGAACCTGCTCGACGTGTACAGCGGGTACGCGGACGGCTTCTGGGCCGAGTCCGACGACGGCTGGCCGGACTGGGCCGCGCAGCACTTCCGGTACTCGACGGTGCGCGACGACCTCGGGGTCGGAGCAGACGTGCGCGCGGCGCTGGCCGACGACGGCACGGTGGAAGGGACCGGGGACGCGGGGACCGCGCCCGCACGGCCCGCCACCCCGTTCGCGACCTGCGAGCTCGGCGGCGGCATGCACGTCGCCTACCACCGCCGTCCGCTGGTGACCCCGCGGGACGTGGCCGCCCTGGCGCTGGCCACGATCGGCAGCGGGTCGGTCTGGCAGGGCTACTACGTCTATGCGGGCGGCACCCAGCGCACCGGGCCGCACGGGACCGAGCAGGAGTCCCAGGCCACCGGCTACCCGAACGACGTCCCGACGCTCAGCTACGACTTCGGCGCCCCGGTCGGCGAGCACGGCCAGATCCGTGCCCACCACCACCTGCTGCGCCGCCAGCACCTGTGGCTGGCCGCCGACGGCGCGGCGCTCGCGACGATGCCGGCCACCGTGGGCGGCGGCTCGGCGGACCCGGACGAGCTGCGCTGGGCGGTGCGCTCCGACGGGCGGCGCGGGTACGTGTTCGCCACGACCTACCAGCCCGCGCACTCCCCGCTGCCCGCGCAGCGCGACGTGCAGCTCACGGTGGAGCTCGACGACGGCCCCGTCACGGTGCCCTCGCGGCCGGTCGACCTGCCCGCCGGGGTGTCCGTCGTCTGGCCCGTGCGCTACCCCCTGACGGAGGCCCTCGTGCTGCGCAGCGCGACGGCCGCGCTGCTGACCCGTCTCGAGGAGGGCGGCCCTGACGGGACGCCGCTGGTCGTCCTGACCGCGACCGACGGCGTGCCGGTCGAGCTCGTGCTCGAGGGCGAGGTGCCCGTCGCCGGACCGGTCGCGGCCGGGACCCTGGACGGCGGCACCGTCGTCACGCTCACCACGGCACCCGGTCCCGGCACCACGGTCGACCTGCCGGGCGTCCGCCTGCTCGTGCTCGACGAGGCGAGCGCCGACCAGCTCTACCGGTTCGAGCTCGGCGGCCGCCCGCGGCTGCTGCTGTCGGACGTCCCGCTGTCGGTGTCCCCCGACGCCCGGCACCTGGTGGCGCAGACCGAACGTCCCGACGTCCGGATCGCGTGCTGGCGCCCCGCGCAGGGGTGGGTGTCGCGCACCGGGGCCGCCCCGCGCGCCGGTCGGCACCGCCTGGCCGTCGACCCGGCGCCGCACGCCCCGGCACCGCCGGCCCCGCGGCGCGGAGGCCCCGCGCACCGGCTCGCGGCACCGACCGACTTCTCCGGGGCGGCCCGGGTCCGCCTGGACGTCCCCGCCGACCTCCTCGACGCCCCGCCGGGTGACCGGGTCCTGCTGCGGGTCGCCTGGTCCGGCGACGTGGGCCGGGCCGTGGTCGGCGACCCGCTCGCCGACGGCACCGTGATCGGCGACCACTTCTGGCACGGACGCGACTGGGACGTCGACCTGACCCCCTGGCGCGACGAGGTCGCCCGCGACGGGCTCACCCTCGAGCTGCTGCCCTGGCGCCGCGGGACCGGCGTGCGGGTCGACCCCGCGGTGCGCGACGTCCCCGACGGCGCGCGGATCCGCTCGGTCGACGTGGTGCACGTGGCCCGGGTCGGGCTCGCCGTGCCCCCACCCTCCGACGACGAGCAGGAGACCCGATGAMSAPIRVTDRWLERDGRPWFPVTGEIHYGRIPRERWSEVLGHARAGGLDSVASYVFWQAHEPAPGDFRWDGNIDLRAFVELAGAHGLEVVVRIGPWSHAEARYGGFPDWLVQRDLALRTDDPGYLALVRRLYGEIAAQLRGLLHADGGPVIGVQVENELADDPDHLATLRALAEQAGIHVPVWTATGWGGARLPENLLDVYSGYADGFWAESDDGWPDWAAQHFRYSTVRDDLGVGADVRAALADDGTVEGTGDAGTAPARPATPFATCELGGGMHVAYHRRPLVTPRDVAALALATIGSGSVWQGYYVYAGGTQRTGPHGTEQESQATGYPNDVPTLSYDFGAPVGEHGQIRAHHHLLRRQHLWLAADGAALATMPATVGGGSADPDELRWAVRSDGRRGYVFATTYQPAHSPLPAQRDVQLTVELDDGPVTVPSRPVDLPAGVSVVWPVRYPLTEALVLRSATAALLTRLEEGGPDGTPLVVLTATDGVPVELVLEGEVPVAGPVAAGTLDGGTVVTLTTAPGPGTTVDLPGVRLLVLDEASADQLYRFELGGRPRLLLSDVPLSVSPDARHLVAQTERPDVRIACWRPAQGWVSRTGAAPRAGRHRLAVDPAPHAPAPPAPRRGGPAHRLAAPTDFSGAARVRLDVPADLLDAPPGDRVLLRVAWSGDVGRAVVGDPLADGTVIGDHFWHGRDWDVDLTPWRDEVARDGLTLELLPWRRGTGVRVDPAVRDVPDGARIRSVDVVHVARVGLAVPPPSDDEQETRPGPT0017815_60DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_006201329hypothetical proteinATGACATCCACGACGAGGACCACGATGGTCACCGGCAACGACGTCCCCCGCACCCGGTCCGCGGGCCGGGTGCCCGACCACCTGCCCGACCGGCTGGCGATCACCCTGTGGGACTTCTCCTGGTACGTGCGCACCGGCCCCGGCGAGCCGTTCGAGGACCTCGACGCCGCCTTCACCGCCGCGGCCGAGCGCGGCTACAACGCCGTACGGATCTGCGCCATGCCGTTCCTGCTGTTCCGCAGCGGGCTGGACACCTCGGCGCTGCGGCTCGGTCCGATCGGCGGCGGGTACGCCTCCCGGGTGCGGTGGTACGACGTCGCCCGGCCGACGACGATCGACGCCCGCGCCCACCTGCTCGCGTTCTTCCGTGCCGCCGACCGGCACGGGTTCGCCGTCGTCGTCTCCTCCTGGGAGTACCAGCAGAGCCCGGCGTTCGCCGCCGAGCGGGACTGGTACGACGCGCTGACCGCTGTGCCCCCCGCCGACCGGGCGGTGGTGCTCGCCGAGGCGCTCGCCGACCTGGTCGACCTGCTGGTGGCCGAGGGGCTGGACCACACCGTGGCGCTGGTCGAGCCGCACAACGAGGTCCAGGCCGGTCACCTCACCGCCGGCCTGCCCGGCGTGGAGGACCCGGTGGTCGAGCTGCGCGACCGCCTCGAGGCCGCGATCGACGCGTTCGCCGCGCGGCACCCGGCGGTGCTGTGCGGGCCGAACTACGCCGCGGTGCCGGTCACCGCCATGCGCGGCGTGCCCCGCAACGCCCAGGTACTGGGCGTCCACCCGTACGTCTACGGCGTCCTCGACCAGCTCGTCGACGAGTTCGCCCTGCGCGGCGACCCCGCCGACTTCCCCCAGGAGCGGGCCGACGCCGAGCTGCTGCGCCCCGACGCGCCTCGGCTGGCCTCGTGGGCCCCGCCCGCGGACGAGGAGTGGAAGCGGCGGGCCTCGATCGTCGGGCACGCCGAGATCTATGTGCACGACTGGTGCGACCCCGAGGCGGTGGACCGCTGGCTGTACGACCGCTACGGCGCGCACCGCATCGCGATGGCGAACCGGCTGCGCGAGTGGATCGGCGTCGCGGCGGACACCGCGGCCCGGATGGGTGTCCCGCTCGTCCTCGGCGAGGGATGGGTCGGCTACACCCCGCGCGACGGTCGGTTCGAGGAGGGCCCGGTCGGTGCCCAGATCTGCCGCGACGCGGTCCGGCTGGCCGACGCCGTCGATGCCTGGGGATCGGTCGTGTGCTCCAACGCCGCGCCGCACCACACGATGTGGCAGGACGTCGCGCTGCAGCGCGAGTGCACGGACGTCATCCGCGGCCGGACGTGAMTSTTRTTMVTGNDVPRTRSAGRVPDHLPDRLAITLWDFSWYVRTGPGEPFEDLDAAFTAAAERGYNAVRICAMPFLLFRSGLDTSALRLGPIGGGYASRVRWYDVARPTTIDARAHLLAFFRAADRHGFAVVVSSWEYQQSPAFAAERDWYDALTAVPPADRAVVLAEALADLVDLLVAEGLDHTVALVEPHNEVQAGHLTAGLPGVEDPVVELRDRLEAAIDAFAARHPAVLCGPNYAAVPVTAMRGVPRNAQVLGVHPYVYGVLDQLVDEFALRGDPADFPQERADAELLRPDAPRLASWAPPADEEWKRRASIVGHAEIYVHDWCDPEAVDRWLYDRYGAHRIAMANRLREWIGVAADTAARMGVPLVLGEGWVGYTPRDGRFEEGPVGAQICRDAVRLADAVDAWGSVVCSNAAPHHTMWQDVALQRECTDVIRGRTNANANANANA
AK018_00621600hypothetical proteinGTGGACACCCCGGGCATCCTCGACGTCGTGCTGCGGCTCGCCGTCCTCGTCCTGGTGCTCGGCGGGACGGTGGCTCACGCCCTGCATTCGCGCCGTCGGCGGCTGCGTGCCGGCGCCCGGTACGCCACGACGCTCGCCCGGCCGCTCGCCCCGGCCCCGACCGTGGTCCGTGCGCTGCTGGCCTTCGTGGCGCTGGGACTGCTCGGGTACGGGCTGCAGTCCTTCACCGGCTCGGGGGACGGGCTGTGGACCCCGGTGCTGGTGGGAGTCCTCGCGCTCGGGCTGCTGTGGGTCACGGTCGTGCCGCTGCTGCGGGACGTCGCCGACGCCGTGCGGCCCGCCGTCGTGGTCGGGACCGTGACCGGCCGGCGCCGGCACGTGTACCGCGCGTTCGGGCACGACGGTCCGTACGAGCTGGCGTCGTTCTTCGTCACGGTCGTGGACGACGTCGGGACGATCCGCGAGTTCCAGATCCACCAGCACGCCTACCGGCGCTTCGCGCCGGGCGACCAGGTGCGCCTGGCCGTGGCGGCGGCCAGCGGCTACGTGCACTCGATCGCGCCCGCGCCGGTGGGGACGGTCACGTCCGGCCGCGGATGAMDTPGILDVVLRLAVLVLVLGGTVAHALHSRRRRLRAGARYATTLARPLAPAPTVVRALLAFVALGLLGYGLQSFTGSGDGLWTPVLVGVLALGLLWVTVVPLLRDVADAVRPAVVVGTVTGRRRHVYRAFGHDGPYELASFFVTVVDDVGTIREFQIHQHAYRRFAPGDQVRLAVAAASGYVHSIAPAPVGTVTSGRGNANANANANA
AK018_00622465hypothetical proteinATGGCCGCGATCCGGATCGAGAAGCGCAAGCCCTGCGGGACGGTGCGCCGCGTCTGGCGCGCCGAGATCCTGGGCTTCGACGAGTGGGGCGACTGGTTCTCCGTGCCCGACGGCGCCGGTGTGCTCCTGCTGCCCGTGGCGGACCCCTGGGCTGCGTGGTTCCGCCACGACGGCTCGGTGCGGGTCGACATCGCCACCGAGGTGATCGCCGCCGCGCCGGTCAGCTCGTTCGTCGACCTCGACCTCGACGTCGTGCGGGACGCCGACGGCGCCGTGCACGCGCTGGACCGCGACGACTTCGTCCGCCGCTCGCCGTCGTACCCCTCGGCGTGGGTCGACCTGGCCTGGGAGGCGTGGGAGGACGTCCAGCACGACATCGCCCGCTTCGCCGAGCCGTTCGGCACCGCGGCGGACCGCTGGCTCGAGCGCGCGCCGCGCGCCGCGGTCCGCCGCCTGTCCGCCTGAMAAIRIEKRKPCGTVRRVWRAEILGFDEWGDWFSVPDGAGVLLLPVADPWAAWFRHDGSVRVDIATEVIAAAPVSSFVDLDLDVVRDADGAVHALDRDDFVRRSPSYPSAWVDLAWEAWEDVQHDIARFAEPFGTAADRWLERAPRAAVRRLSANANANANANA
AK018_00623756linC_1COG10282,5-dichloro-2,5-cyclohexadiene-1,4-diol dehydrogenaseATGACGTTCGACGGCAAGGTCGCCCTGGTGACCGGGGGCGGCTCGGGACTGGGGGCCGCGATCAGCAAGCAGCTCGCCGCCCGCGGTGCGCGGATCGTGAACACCGACATCAACCTCGAGGCGGCGCAGCGCGTCGTCGACGAGATCACGGCCGACGGGGGCGAGGCGACGGCCGTCCAGCAGGACACGGCGAACGCCGACGACGCGGCCAAGGTCGTCCAGGCCGCCCAGGAGGCCTACGGCGGGCTGCACTACGCCGTGAACAACGCGGGGATCGGCGGCAACCAGGCGCCCGCGGGCGAGCTCGACGTCGAGGACTGGAACCGGGTCATCGACATCAACCTCAACGGCGTGCTCTACGGCATGCGCGCGCAGATCCCGGCGATGCTCGAGCAGGACCCGACCGCCTGCGCCGTCGTCAACATGGCGTCCATCCACGGCACGGTGGCCGCGATCGGCAACGGGGCGTACACGGCGGCCAAGCACGGCGTGGTGGGCATCACGAAGAACGCCGCCGCCGAGTACGGGCCGGCGGGGCTGCGGATCAACTGCGTCGGGCCGGGCTACATCCGCACGCCCCTGCTGGAGGGCCTGCTGACCCCGGAGATCGAGGAGGTGCTCGTCTCCAAGCACGTGCTCGGCCGGCTGGGCCGTCCCGACGAGGTCGCCTCCGTGGTCCGGTTCCTGCTGTCCGACGAGGCGTCGTTCGTCACCGGTGCCTACTGGCTCGTCGACGGCGGGTACACGACCGTCTGAMTFDGKVALVTGGGSGLGAAISKQLAARGARIVNTDINLEAAQRVVDEITADGGEATAVQQDTANADDAAKVVQAAQEAYGGLHYAVNNAGIGGNQAPAGELDVEDWNRVIDINLNGVLYGMRAQIPAMLEQDPTACAVVNMASIHGTVAAIGNGAYTAAKHGVVGITKNAAAEYGPAGLRINCVGPGYIRTPLLEGLLTPEIEEVLVSKHVLGRLGRPDEVASVVRFLLSDEASFVTGAYWLVDGGYTTVNANANANANA
AK018_006241377putative proteinATGGGCCAGCCCCTCGAGACCGACTACCTCGTCGTCGGCGCGGGCGCCACGGGAATGGCGTTCGCGGACGCGCTGCTGGACCACGAGGACGTGCACGTCACGCTCGTCGACCGCCGGGTCGCGCCGGGCGGCCACTGGCGCGACGCCTACCCGTTCGTGCGGCTGCACCAGGCCTCCTCCTTCTACGGGGTGGCGTCGACGTCGCTCGACGGCGGCGTGCAGACCTCTGGCCCCGAGGCCGGCCTGCACGTCCGCGCCACGGGCGCCGAGGTGTGCGCCTACTACGACCGCGTGCTGGCCGAGCGGTTCGTGGCGAGCGGACGGGTGACGTTCCTCGGCGGGTACGACGCGGCCGACGACGGCACTCTCGTCGAGCGCGCCACGGGCGCCGTGCGGCCGGTGCGGGTCCGCCGTCGGGTCGTCGACGCGCGCTACCTCGCTCCGACGATCCCGGCACGGACGCCGCCGCCGTTCGTCGTGGACGAGCAGGTGCGGTGCGTGCCGGTGGGCGAGCTCCCGACGGTGGCCGACGACGCCCGGTCGTTCGTGGTCGTCGGTTCCGGCAAGACGGCCACGGACGCCGTCGTGTGGCTGCTCGAGCGCGGCACCCACCCGGACCAGATCACGTGGGTGCGGCCGCGCGACCCGTGGATGCTGGACCGCGCCGTCGTCCAGCCCGACGCCGCCGTGTTCCGGACCATGGTGGCCGAGCTCCTGGAGGCGGCGGCCGAGGCTCCGACCGTGGACGCGTTCTTCGCGCGCCTCGAAGACGTCGGCGTGATGCTGCGCCTGGACCCCGGGGTGCGGCCGACCATGGCCCGGGTCCCCACGCTCGCCCGCTGGGAGCTGGAGCTGCTGCGCTCGGTGGAACGGGTCGTGCGCCGTGGTCACCTGCGCCGGGCGTCACCGGGCGTGCTCCACCTGGACGCGGGGGACGTGGCGGTACCGCGGGACGCCGTCGTCGTGCACTGCGCCGCCGAGGGGCTCCGGGTCCGGCCCGTCGTGCCGATCTGGTCGCCCGGCCGGATCGTCGTGCAGCCGGTACGCGCCGGGTTCCCCTGCTTCGGCGCCGCGCTGATCGGCCACGTGGAGGCCGGCCGGGGCGACCGGTCGGACGCCGAGCTCAACGCGCTGTGCCCGTCGACGGGATACTTCTCCACACCGCGCGAGTGGGTCGCCGGCCAGGCCGCCGGGGCGCTGTCGACCGCGGCGTTCATGGCCGACCACGACCTCGCCCGCTGGTCGCACGGGACGACCCTCAACCCGAGCCGGATCTCGCCCGAGGACCGCGAGCGCCCCGAGGTGCAAGCGGTCCAGGACCGGCTGCGCGCGGCGACCGAGCCCGGCGTGCGCGGCCTGCAGCGGCTCGCGGCCTGAMGQPLETDYLVVGAGATGMAFADALLDHEDVHVTLVDRRVAPGGHWRDAYPFVRLHQASSFYGVASTSLDGGVQTSGPEAGLHVRATGAEVCAYYDRVLAERFVASGRVTFLGGYDAADDGTLVERATGAVRPVRVRRRVVDARYLAPTIPARTPPPFVVDEQVRCVPVGELPTVADDARSFVVVGSGKTATDAVVWLLERGTHPDQITWVRPRDPWMLDRAVVQPDAAVFRTMVAELLEAAAEAPTVDAFFARLEDVGVMLRLDPGVRPTMARVPTLARWELELLRSVERVVRRGHLRRASPGVLHLDAGDVAVPRDAVVVHCAAEGLRVRPVVPIWSPGRIVVQPVRAGFPCFGAALIGHVEAGRGDRSDAELNALCPSTGYFSTPREWVAGQAAGALSTAAFMADHDLARWSHGTTLNPSRISPEDRERPEVQAVQDRLRAATEPGVRGLQRLAANANANANANA
AK018_00625918rbsK_1RibokinaseATGACCTCGATCGTGGTCGTCGGCTCCGTCAACGCCGATCTCGTCGCCCGCGTCCCGAACCTGCCCGTCCCCGGGGAGACGGTGCTCGCCGACTCGATGACGGTGATCCCGGGGGGCAAGGGCGCCAACCAGGCGGTCGTGGCGGCCCGGCTCGGCGGCGAGGTGGCGCTGATCGGCGCCATCGGCTCGGACGCCTTCGCCGACAGCGCGCTCGTGGGCCTGCGTGACGCCGGGGTCCGGCTCGACGGCGTCGAGACCGTCGACGGACCCACGGGCGTGGCCCAGATCTGGGTCGACGACCACGGCGAGAACTCGATCGTCGTGGTCCCCGGGGCCAACCGCGCGGTCGACGCCGGCGTCGTGGCCCGCCACGTGGACCTGGTCGCCGGGGCCGACCTCGTCGTCCTGCAGGGCGAGATCCCGCTGCGCGGCACCGAGGCCGCCGCGCGCGCCTGCGGGGGACGGATCCTGCTCAACCTCGCCCCGGTCGTGCCGGTCGTCGCCGACGTGCTCGCCCTGGCCGACCCTCTCGTGGTGAACCACGGGGAGGCCGAGCGGCTGCTGGAGGAGTCGGAGCGCCCCGTCCCCGAGTCCCCGTTCGCGGTCATCACCGAGCTGCTCGCGCTCGGACCGCGGTCCGTCGTGCTCACCCTCGGCCCCGCCGGCGCCGTCGTGCTCGAGCCCGCCGCCGGTGACGAGGGGCCGGTCGTGGTGCCCACCCCGCACGTCGAGGCGGTCGACACCACCGGTGCCGGCGACGCCTTCGTGGGAGCCCTCGCGTATCGCATCAGCCAGGGCGACACCCTCGTCGACGCCGCCCGCACCGCGGTGCGCGTCGGGGCGTTCTCCGTCGCGACTCCGGGCGCCCAGCCGTCCTTCCCCACGGTCGACGACGTGCTGCCCTCCCTGCGGGGCTGAMTSIVVVGSVNADLVARVPNLPVPGETVLADSMTVIPGGKGANQAVVAARLGGEVALIGAIGSDAFADSALVGLRDAGVRLDGVETVDGPTGVAQIWVDDHGENSIVVVPGANRAVDAGVVARHVDLVAGADLVVLQGEIPLRGTEAAARACGGRILLNLAPVVPVVADVLALADPLVVNHGEAERLLEESERPVPESPFAVITELLALGPRSVVLTLGPAGAVVLEPAAGDEGPVVVPTPHVEAVDTTGAGDAFVGALAYRISQGDTLVDAARTAVRVGAFSVATPGAQPSFPTVDDVLPSLRGPGPT0017405_3459DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
AK018_00626882hypothetical proteinATGACGACCACCACCCGAACTCTCGACGTGCCCGGGGCCGTGCTGACCTTCGACGTCCACGCACCGCGCCGTGAGGCCGGCTGCCCGCCGCTCCTCGTGATCGGCAACCCGATGGCGGCCGACGGGTTCGCCGAGCTCGTCGCCGAGCTCGACGACCGCACGGTGATCACGTACGACCCGCGCGGCACGGCCCGTTCCCCGCGCGAGCGGCCGACCGACGAGGTCACGGTCGACGACCACGCCGCCGACCTGCACGCCGTCGCCCGAGCCGTCGACCGGGGCCCGCTGGACGTCCTCGGCTCCTCCGGCGGCGGCGTGACGGCGCTGTCCTGGACGGCCGCGCACCCCGGCGAGGTCCGGCGGCTCGTCGCCCACGAGCCGCCGCTGACGGCACTGCTGTCCGACCGGGACGTGGCGGTGCGCGCCCAGCAGGACGTCGTCGACACCTACCACCGCTCCGGGACCGGTCCCGCGACCGCCAAGTTCCTGCGCCTGGTGTCCGCCACCGAGCCCCTGACGCCGGACTACCTCGACCAGCCCGACCCGGACCCCGCCGCGTTCGGGCTGCCGACCGAGGACGACGGCCGGCGCGACGACCTGATGCTCGGCACGTCCCTGGCCACGATGCCCCGGTGGGAGCCACCGCTGGACGACCTGCGCGCGGGCGTCCGCAGCACCGACCTGCGGGTACTGCCCGCTGTCGGGGCCGCCTCGCCGCCGGGCGGACTGGCCTACCGCGGCGCGGTGGCCCTGGCCGAGGCGCTCGCGGTGCGTCCCGTCGTCTTCCCCGGGGACCACGGCGGGTTCGCCCGGCAGGCGTGGGCCACGGACAACGATCCGGCCGCGTTCGCGGCCAGGCTGCGTGACCTGTTGGCCTGCTGAMTTTTRTLDVPGAVLTFDVHAPRREAGCPPLLVIGNPMAADGFAELVAELDDRTVITYDPRGTARSPRERPTDEVTVDDHAADLHAVARAVDRGPLDVLGSSGGGVTALSWTAAHPGEVRRLVAHEPPLTALLSDRDVAVRAQQDVVDTYHRSGTGPATAKFLRLVSATEPLTPDYLDQPDPDPAAFGLPTEDDGRRDDLMLGTSLATMPRWEPPLDDLRAGVRSTDLRVLPAVGAASPPGGLAYRGAVALAEALAVRPVVFPGDHGGFARQAWATDNDPAAFAARLRDLLACNANANANANA
AK018_00627456hypothetical proteinATGCCGCGCACCTACCCGCCGACGCCCACCAGCGAACCGGTCAGCGACGAGCTTCTCGTGGTCCACCTCAAGGGTCGAGACACCGAGTACTTCCGGCGTCCCGAGCTGGTCGAGCACGAGGTCGCGGACGGCGTGCTGACGGTCACCCTCGCCGGCGACGACGCGAGGCCGCGCCGCACCCGCCACTTCCCCCTGGGGGAGGTCGCCGAGTACGTCGTCGAGGCCCCCAGCCCCGCCTACGAGACGGCCTTCGACGCCTGGACGCGGAACGAGTTCGGCGTCGACGCCGAGACGTACCGCTCCATGCGGGACACCTCCCAGGGCGTGGCCATGGCCGAGAAGATGCGGCTGCAGATCGCCCAGGGTCTCGGCGTCGACCCCGACCAGGTGCACTTCGGCGGCTCCTTCACGATCGACGAGGACGACGACTGGGACTCCTCGGCCGACGACGAGTAGMPRTYPPTPTSEPVSDELLVVHLKGRDTEYFRRPELVEHEVADGVLTVTLAGDDARPRRTRHFPLGEVAEYVVEAPSPAYETAFDAWTRNEFGVDAETYRSMRDTSQGVAMAEKMRLQIAQGLGVDPDQVHFGGSFTIDEDDDWDSSADDENANANANANA
AK018_00628621hypothetical proteinATGCCGACACCGACCCTGCCCGCCCGCCGGTTCACCCACCCCGAGCCGGTCGACCTGACGACCGCCTGGCGGGCCGAGGAGCGGCTCGCCGCCGACCCGGACGCGAGGCACCACTGGTGCGCCGACCGGCACGGCTGGCTGCTGCGTCGCGGGCTCGACGAGGTGCTGGGCCCGGTGCTGATGCCGGACGCCTGGGGCGCGGCGTCGTTCTACCGGTTCGTCGACCTCGACGCCTCGGTCGCCACCGCCCTGCTCGACCGGCTCGACCCGCCGTACCTCGCCGCCGAGCGCCAGAACGACGGTCCGAGCCTGGGCACGGTGCTGCGCGCCGTGGTGGTGCACCCGGACCGGCTGCGCGCGCACGGCTACGTGGTGGGCCCGGGCCGGTGCGACGAACGCGTCACGGTCGAGGGAGTGCTGGTGCGCACGGACGACGCGTTCGTCCTCGGGGACCATCACGGTCCCGGCTGCCAGTGCGACGAGCTCGAGCGGGTCGTCGCCGCGCTGGGCGTGGACGACGCGCGCGTGCCGCCGCACGAGGTGACGCGGTGGTGGGGACGACCCGGCGACCTGTCCCCGCAGGAGTCCGGCGAGCACTGGTACCGGCTGTGGTGGGACTGAMPTPTLPARRFTHPEPVDLTTAWRAEERLAADPDARHHWCADRHGWLLRRGLDEVLGPVLMPDAWGAASFYRFVDLDASVATALLDRLDPPYLAAERQNDGPSLGTVLRAVVVHPDRLRAHGYVVGPGRCDERVTVEGVLVRTDDAFVLGDHHGPGCQCDELERVVAALGVDDARVPPHEVTRWWGRPGDLSPQESGEHWYRLWWDNANANANANA
AK018_00629336hypothetical proteinATGGCGCACCTCGACCTCGACACCGACGACCTGGCGACGACCGCACGCCACGCGCACGCCGCCGCCGAGCTGCTCGACGCGACCGTGGGCACCGGGCTCACCGGGACCGTCGACGCCACCCGGGCGGCCGGCGAGAGAACGCTGGCGGCCGCGATCGACGACCTCGCCGCGGCCTGGGCGCCGACGTCCCGGTCTCTCGCCACGACACTGACCGGGCTGGGCGACCGGCTCGCGACCACCGCGGCGACGTTCGACACCGCCGAGGGCGCCGTCGCGCGGCGGGTGGCCGCGGCGGTGCTGGGCGGCCCCGGGCGACCGGTGGGCGAGGGCGGGTGAMAHLDLDTDDLATTARHAHAAAELLDATVGTGLTGTVDATRAAGERTLAAAIDDLAAAWAPTSRSLATTLTGLGDRLATTAATFDTAEGAVARRVAAAVLGGPGRPVGEGGNANANANANA
AK018_006302169hypothetical proteinGTGACGACCGACCGGCCGTTCGAGCCCTTGTCCGGGTCGCCGGCGTCGCTGGAGGAGCTCGCGGGCGCCGCGGCACGCGCCGCCTCGGCGCTGTCGGCGCTGCGCGCCGACCTGATCGTGCTGGACAGGTCGATGATGCGGCACCGGTCCGGAGCGGTCGACGCCGCGCGGGAGGCCGTCACCGCACTGATCGGCCGCGGGAGCCTGTGCTACCAGGTGCTGCGCGAGTCCGCGCGGGTGCTGACCGGGCGGGCCGCCGCGCTGGAGGACGAGCAGCGCGACACCCTCGACGCGATCGAGCGCCGGCACGCAGCGACGGAGCGGGTGCGGCGGGCCGAGGCCGACGAGGACGCCGCCTGGCTGCTGGCCCTCGATCCCGTCGACCCGCGGCACGTCGAGGCGGGCCGGCTCGCCGCCGAGGCCCGGGCACGCCGGGACGCCGCGCTCGGTGACGTCGCCGACGCCGAGGCGCAGTGGCACCGCGCCCGCGACGCCAAGGAGGCGGGCTCACGCCGCGCCGCCCGTCGGCTGGACGGGCTCGGGCACGTCGAGGCGGTGCGCTGGGCGGTCTCCGCAGGAGTCGGCCTCACCGCCTTCCGGGACCGCTGGGCCGACGGCGCTCGGCTGGCCGCGCGGACGGGCACCGCGGCGGGCGCGGCCCGGTCGGGCACCGCGAGCAGGGACGACCGGGAGGAGCTGCTCGCGGCGCTGCGGGCGACGGGCGACGACCCGGTGCGGTGGACGGCGTTCTGGGACGGCGTGACCCCGGCCGACCTCTACGCCGTGCTCGGGGTGGGGACGACCGACCCCGAGGTCGTCGACCTCCTGGCCGCGGGGCTGGCCGCCTGGGCCGAGCACGCCGACCCGGTCGAGCAGCGCGCGCTGGGCCACGCCCTCGTGGCCGACCTCCCCCGGGCCGTCGTGGAGCTGGGCGGCCGGGCGGACGTCGTGGCCGGCCTGCTGGCGCCCGCTGCTCCGCCGGCCGCGGCGTCGGCCACGGTGCTGGCCACCGTGCCGGCCACGGTGCCGGCCGCCGTGCACGCCGGGGCCGCGGAGGCCCTGGTGGAGCGCCGCACCACGAGCCGCGACTCCCACGCCGACACGACGGCCACGGGCGCTCTCACCGTCGCGGTCGCCCAGGGCCTGGCCGCCGACCCGCCGGCGGCCCTGGACCACCTGGTGCCGCCGGACGCCACCGGCGACACGGCCGTGCACCGCGCTCGCGCCTGGTTCGGCGTCGCCCCGCCCGACGGCTGGCCGGACGGCGGGACCGCCGTCGCGGGGCTGCTCGCCACTGCCGTCGTCGCCGGGGTCCACGCCGAGGGTCGCGAGGGCCGACACTGGGCCGCGTTCCTGTCCTCCGCCGCGACCGGGCAGCTCGTCGCTCCCGGCGGGCTGCTGGCCGGCCGCTACCCCGTGGCCGACGCGGCCGGGGCGCGCCTCGTCGCGGCCTACGCGCCCTTCCTGGTCTCGGCGAGCGACGCCGCGGAGGGGCAGGCCGGTGTCCTGCCGCCGCGGGAACCGGGAGTGCGGGACCGCCCCGAGCTGTCGGAGGGCACCGGCCGGTTCGCCGCCGTCGTGCAGCCGGACCTGGACGTCCTCGCCCTGCGGGACGTCGTCGCCGCCACCTCCACCACGGAGACCTCCGCGGGGTACTGGCTGTCCGCGGTGGACCACTACGTGGCCGGGGCCGCCACCACCCTGGCCGACCCCGCCGTCGACGACGCCGACGCGGAGGCGCTCGCGCGGGCCGCGGCGCGGGACGCCGGCGTGGTCGTCGGTGCGATCCGCTCCCGGGAGATCGCCGTCGCGCGGCAGCAGGACGCCTCGGACGGCCTGGCCGTCGCCCTCGGGCTCGACGCCCTGACGGCGACCACCCGCCTCGCGCCGACGATGGTCACCACCGGAATGCGCGGTCTGCTGCCACCGCCGCCCGGCGCCCTGCCCGACGCGCGCGAGCGGGTCCTGGCGGAGGAGGACGTGCTGTGCGAGCGCTTCACGACGCCGTTCGTCCGGGAGCGACGACGACACCTGACCGCGGCAGGACGGTCCCCCGCGGAGGTCGAGGACGCCGTCGCGCGACTGCGTCCGGAGTCGGCCGACATGTCCGCCGCGTTCGGCACCGGCTACGCCCTCGCCGCGGGGGTCGGCCGGCGGCTGGGCGAGTAGMTTDRPFEPLSGSPASLEELAGAAARAASALSALRADLIVLDRSMMRHRSGAVDAAREAVTALIGRGSLCYQVLRESARVLTGRAAALEDEQRDTLDAIERRHAATERVRRAEADEDAAWLLALDPVDPRHVEAGRLAAEARARRDAALGDVADAEAQWHRARDAKEAGSRRAARRLDGLGHVEAVRWAVSAGVGLTAFRDRWADGARLAARTGTAAGAARSGTASRDDREELLAALRATGDDPVRWTAFWDGVTPADLYAVLGVGTTDPEVVDLLAAGLAAWAEHADPVEQRALGHALVADLPRAVVELGGRADVVAGLLAPAAPPAAASATVLATVPATVPAAVHAGAAEALVERRTTSRDSHADTTATGALTVAVAQGLAADPPAALDHLVPPDATGDTAVHRARAWFGVAPPDGWPDGGTAVAGLLATAVVAGVHAEGREGRHWAAFLSSAATGQLVAPGGLLAGRYPVADAAGARLVAAYAPFLVSASDAAEGQAGVLPPREPGVRDRPELSEGTGRFAAVVQPDLDVLALRDVVAATSTTETSAGYWLSAVDHYVAGAATTLADPAVDDADAEALARAAARDAGVVVGAIRSREIAVARQQDASDGLAVALGLDALTATTRLAPTMVTTGMRGLLPPPPGALPDARERVLAEEDVLCERFTTPFVRERRRHLTAAGRSPAEVEDAVARLRPESADMSAAFGTGYALAAGVGRRLGENANANANANA
AK018_00631477hypothetical proteinATGGACCTCGCCACCCGGCTGCTGCACACCCGCTGGCTCGTCCGCGCGCCGATCTGGCTGTTCCGGATCGGCGGTGGCGTCCTGTTCGGCGGTCGTCTGCTCCTGCTCCAGCACCGGGGCCGCACCACCGGCGCGCGTCGCTTCGTGGTCCTGGAGGTCTCGGGCCGACCGGCACCGGACCGCCTGGTCGTCGTCGCCGGGCTGAACGCCCGCCCGCAGTGGTACCGCAACGTCCTCGTCGAGCCGCGGGTGCTGGTCTCCGTGGGTCGGCGCCGGGACGCCCGTGCCCTCGCCGAGCCGCTGGACCCCGACGCCGCCGCGGCACGGCTGCGCGAGTACGCCGACCAGCACCCCGCGGCCTGGGCGCGGTTGGAGCAGGTCGTGACCGCGTGGGCCGTCCCGCTGGCCGCCGCGCAGGGCGAGCAGGACTGGCGGCGCGTCGTGCCCGTGGTCGAGCTCCGGCTCCTGGACGGCTGAMDLATRLLHTRWLVRAPIWLFRIGGGVLFGGRLLLLQHRGRTTGARRFVVLEVSGRPAPDRLVVVAGLNARPQWYRNVLVEPRVLVSVGRRRDARALAEPLDPDAAAARLREYADQHPAAWARLEQVVTAWAVPLAAAQGEQDWRRVVPVVELRLLDGNANANANANA
AK018_006321911cadACOG2217Cadmium, zinc and cobalt-transporting ATPaseATGGCGGGGCAGCTCGTGCGCCGCTACCCGTGGGTGGCGTCCTCCCTGGTGGTGCTGGCGGTCGTGCTCGGCCTCCTGGCCGGCGGCGAGCCGGACGTCGCGCGCTGGGTCGGTTCCGGGTGGGCGCTCCTGGTGGGTGTGCGCGTCGCCGTGGGCATGGTGCGCGACCTGATCGCGGGTCACTGGGGCGTGGACCTGCTCGCGCTGACCGCGATCGTGGCGACCGTCGTCGTCGGCGAGTACGTCGCGTCGCTGGTCGTGGTGCTCATGCTGACCGGCGGGCAGGCGCTGGAGGACTTCGCGGCACACCGCGCCCGGCACGAGCTGCGCGCACTGCTGGAGCGGGCGCCGACACGTGCCCACCGCCTGGACCCCGGCGGCGGCGTCGTCGACGTCGACGTGGCGGACGTCCGGCCCGGTGACCTGCTGCTCGTCCGGCCCGCCGAGGTGGTGCCCGTCGACGCCGAGCTCGTGGACCCGGAGACCGACTTCGACGAGTCGTCGCTGACCGGCGAGAGCCTGCCGGTCACGCGCGGCGTCGGCGACCCGGTGCTGTCCGGCGTGCTGAACACCGAGCAGGCGGTCACCCTGCGTGCCACGGCCGCCGCGGCCGACAGCCAGTACGCGCGGATCGTGGCGATGGTTCGCGAGGCCGCCGAGTCCCGGGCACCCGTGGTCCGGCTGGCCGACCGCTACGCCGTGCCGTTCACGCTCTTCGCCTTCCTCGTGGCCGGCGCCGCCTTCGCCTACCACCGCGACCCCACCGTCGTGGCCGAGGTGCTCGTCGTGGCCACCCCCTGCCCGCTCCTCCTCGCCGCCCCCGTGGCGTTCCTCGGCGGCATGAGCCGGGCCGCGCGCCACGGGCTCATCGTCAAGGACGCCGGCACGCTCGAGCGCCTGGCCGCGGTGCGCACGGCGGCCTTCGACAAGACCGGCACGATCACCGTCGGCCGGCCCGCCCTGCTGGCGGTCCGGGCGCGCCCCCCGTGGCGGAGCGACGAGCTGCTGCGGCTCGCGGCGTCCGCCGAGCAGTACTCCTCGCACGTGCTCGCCACGACCGTCCGGGAGGCAGCCGTCGAGCGCGGGCTGGCGCTCGACAGCGCACAGACCGCCCGGGAGGAGGCGACCCACGGCGTCGCGGCGCGCGTCGGCGGGCACGACGTCGTCGTGGGCAAGCTCCGGCGGGTCGCCCGATCCGCGCCGGACGCCGTCGAGGAGCCCCTGGAGCAGGGGGAGCTGGCCGTGTACGTCGCGGTCGACGGCCGGTTCGCCGGCACGCTGGTCATGAGCGACCCCGCGCGGCCGGACGCCCGCGAGACGATGGAGGAGCTCGCCCGGCTGGGGATCACCGAGACGCTCATGCTCAGCGGCGACTCCACGGCCACCGCCGAGCACGTCGCCGCCGCCGTCGGCATCGCCCGCGTGCACGCCGAGTGCCTGCCCGCCGACAAGGTCCGCCTCGTGCAGGAGCTCCCGGACCGGCCCGTCCTCATGGTCGGGGACGGCGTCAACGACGCGCCCGTCCTGGCCGCCGCCGACGTCGGGGTGGCCATGGGCGCTCGCGGGTCGACGGCGGCCAGCGAGTCCGCCGACGTCGTCATCCTCACCGAGGACCTCCGGCGGACGGTCACGGCGGTGCGCGTCGGACGGCGGACCATGACCGTGGCGCTGCAGAGCATCTGGCTCGGCATCGCGCTGTCGGTGGTGCTCATGGGTGTGGCGGCCACCGGCGTGATCCCCGCCGTCGTCGGCGCGCTGAGCCAGGAGGTCGTGGACCTGCTGGCCATCCTCAACGCGCTGCGGGCGCTGCAGGACGACCGGCCCGAGCGCCTCGACGTGCCGGGACGTGCCGCCGAGCGGGCGGAGGGCGCCGCCCGGGCAGGTGGGACCTTGCGGCCACGGCTACGGTGAMAGQLVRRYPWVASSLVVLAVVLGLLAGGEPDVARWVGSGWALLVGVRVAVGMVRDLIAGHWGVDLLALTAIVATVVVGEYVASLVVVLMLTGGQALEDFAAHRARHELRALLERAPTRAHRLDPGGGVVDVDVADVRPGDLLLVRPAEVVPVDAELVDPETDFDESSLTGESLPVTRGVGDPVLSGVLNTEQAVTLRATAAAADSQYARIVAMVREAAESRAPVVRLADRYAVPFTLFAFLVAGAAFAYHRDPTVVAEVLVVATPCPLLLAAPVAFLGGMSRAARHGLIVKDAGTLERLAAVRTAAFDKTGTITVGRPALLAVRARPPWRSDELLRLAASAEQYSSHVLATTVREAAVERGLALDSAQTAREEATHGVAARVGGHDVVVGKLRRVARSAPDAVEEPLEQGELAVYVAVDGRFAGTLVMSDPARPDARETMEELARLGITETLMLSGDSTATAEHVAAAVGIARVHAECLPADKVRLVQELPDRPVLMVGDGVNDAPVLAAADVGVAMGARGSTAASESADVVILTEDLRRTVTAVRVGRRTMTVALQSIWLGIALSVVLMGVAATGVIPAVVGALSQEVVDLLAILNALRALQDDRPERLDVPGRAAERAEGAARAGGTLRPRLRPGPT0004090_7490DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004090-copA|ctpA-K17686NANA
AK018_006331263hypothetical proteinGTGCCCGCCCCGCCGGCCCCCGACGGTGTCGCCGACGTCGACGACGCCGTCCGCACCCGTGTCCCGAGGCGGGGCGCCTGGTGGGTCGACGTCGCGGTCGCGGCCGCGACGGCGCTCGGGCTGTCGGGGCTGCTCGTCCTGGACCCCACGACGCCGCCGGTCGGGTACGCGGCGGCGGCCGGGTTCGGGGCGCTGGTGCTGCTGCGCCGCCGGGCACCGGTCCCGATGCTCGTGCTCACCCTGGTCGGCGCCGCGGTGTGCGCGGTGGCGGACCTCGGCGTCCTCGGCACGCCGCTGGTGGCGGTGCCGGCGCTGTGCGCCGCCGCGGCACAGGGCCGCCCGGGGTGGGCGTCGGCGGCCGGTGGTGCCCTGGTCCTGGTGGTCGCGACGCTGCGTCCCGCCCGTCCGGGTGCGGGCGCGGACGTCGTCGCCCGGCTGCTCGGCGACGTGGCCGTCGTGGTCGCGGCCGTCTGCGTGGGCGTCCTGGTGCGGTCGCGCCGGCAGGACCGCCCCGACCGGGTCGCGCCCGGCCCACGGCCCCCGTCGTCCGCCCCGGCCCCTCCGGACCGCCCCGGCCCGGTCGAGCCCGGCCCGGGGGCCGAGCGTCTCCGGGTCGCCCTGGACCTCCAGGACGTCGTCGGGCACCACCTCTCGCTCGTGGCCCTGCACACCGAGGTGGCCGCGGGCGCCGTGGGTCGCGACGACGACGCGGCCCGCACCGCCCTGCGGCACGTCCGGGAGGCGACGTCGACCACCGTGCACGAGCTGCGCGCCACCGCTCTGCTGCTGCGCCCCGCGGAACAGGGCACGGAGCAGAGCACGGACGCCTCGGCGGCGGTCCCCGGGACGCGCGACCACCTGCCGGCGGTGACCGGTCCGGCCGGGCTGGCCGCCCTGGTCCAGCCGGTGCGTGCGGCCGGGATCCGCGTGACCACCCGGGTCGACGTCCCGCGGGGCTCGCTGGACGCGACGGTCGACGCCGCGGCCTACCGCATCGTCCAGGGCGCCCTGGCGCGCGTGGGTGCGGACGCCGCGGCGTCGACCGTCCGTGTCGAGCTGGGCGTCTCCGCAGGGCGCCTGCGGGTCGTCGTGGCCGACGACGGACCCGGTCCCGCGCCGGACGGGGCCGACGGCGCGCGCCTGGCCGCGATGCGCGACCGGGCGACGCTGCTCGGCGGCCACCTCGACGTCGTCGACGGCGCGGACGGCGGGCTCGTCGTCACGGCCGACCTGCCGGCCCGCCTGGCCGAGTCCGTCCCGTAGMPAPPAPDGVADVDDAVRTRVPRRGAWWVDVAVAAATALGLSGLLVLDPTTPPVGYAAAAGFGALVLLRRRAPVPMLVLTLVGAAVCAVADLGVLGTPLVAVPALCAAAAQGRPGWASAAGGALVLVVATLRPARPGAGADVVARLLGDVAVVVAAVCVGVLVRSRRQDRPDRVAPGPRPPSSAPAPPDRPGPVEPGPGAERLRVALDLQDVVGHHLSLVALHTEVAAGAVGRDDDAARTALRHVREATSTTVHELRATALLLRPAEQGTEQSTDASAAVPGTRDHLPAVTGPAGLAALVQPVRAAGIRVTTRVDVPRGSLDATVDAAAYRIVQGALARVGADAAASTVRVELGVSAGRLRVVVADDGPGPAPDGADGARLAAMRDRATLLGGHLDVVDGADGGLVVTADLPARLAESVPNANANANANA
AK018_00634903czcD_1Metal cation efflux system protein CzcDATGGCGCACGACCACGGCACGCACGAGACCCACCGCGGCCGGCTGGGCGCGGCCTTCGGCATCACCGCCGGCATCGTCGTCGCCCAGGTGGTCGGCGCCGTCGTGACCGGCAGCCTCGCCCTGCTCGTGGACACCGCGCACCTGCTCACCGACGCCGCCGGGCTGGGGATGGCGCTGTTCGCGGCGCACGCCTCGCTGCGCCCGCCGACGGCGCGGCGCACGTGGGGGCTGCGGCGCGCGGAGGTGCTCGCCGCGATGGCCCAGGCCGCGCTGCTGCTCGCCGTCGGGGTCTTCGTGCTGGTCGAGGCCGTGCAGCGGCTGCAGGACCCGCCCGAGATCCCGGGGACCGAGCTCGTGGTGTTCGGCGTCGTCGGCCTGGTCGGCAACCTCGCGGCCCTGGCGGTGCTGGCCGGACGCCGTGGCGCCAGCCTCAACCTGCGGGCCGCGTTCCTCGAGGTGCTCAACGACGCGCTCGGGTCGCTGGCCGTCGTCGTCGCCGCCGTCGTCATCACCACGACGGGGTGGCAGCAGGCCGACTCGGTCGCGGCGCTGCTCATCGGTGCGCTGATCCTGCCGCGCGCGCTGGTGCTGCTGCGCGACACCACCGCCGTGCTCCTCGAGTCGACGCCGCCCGGTCTCGACCTGGACGACGTCCGCGCCCACCTGCTGCGCGTGGAGCACGTCCACGCGATCCACGACGTGCACGCCTCGCTCATCGCGACGGGGCTGCCGCAGCTCTCGGCGCACGTCGTCGTCGACGCCGCGTGCTTCCGCGACGGGCACGCCGGGGAGATCCTCGACGAGCTGCAGGAGTGCGTCCGCGACCACTTCGGCGTCGAGCACTCGACCTTCCAGGTCGAGCCGGAGACCCACCCCGCCCACGAGCACCCGACGCACGACTGAMAHDHGTHETHRGRLGAAFGITAGIVVAQVVGAVVTGSLALLVDTAHLLTDAAGLGMALFAAHASLRPPTARRTWGLRRAEVLAAMAQAALLLAVGVFVLVEAVQRLQDPPEIPGTELVVFGVVGLVGNLAALAVLAGRRGASLNLRAAFLEVLNDALGSLAVVVAAVVITTTGWQQADSVAALLIGALILPRALVLLRDTTAVLLESTPPGLDLDDVRAHLLRVEHVHAIHDVHASLIATGLPQLSAHVVVDAACFRDGHAGEILDELQECVRDHFGVEHSTFQVEPETHPAHEHPTHDPGPT0004255_2252DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COBALT_RESISTANCECOBALT_RESISTANCE-COBALT_TRANSPORT,PGPT0004255-czcD|zitB|yrdO-K16264NANA
AK018_006351008degA_1COG1609HTH-type transcriptional regulator DegAATGGTTGAGTCGACGGTGACGATCCACGACGTCGCCCGGCACGCCGGTGTCTCGGCGGCGACGGTGTCGAACTACTTCAACTGGCCGGACAAGCTGTCCGACCGGATGAAGAAGCGTGTCGCCACGGCGGTGACCGACCTGGGGTTCGTCCCCAGCATGCCGGCGCGGCAGCTGCGGCGGCAGCGCAGCGGCATCGTCGGGCTCAGCGTGGTCAACGCCTCCAACCCGTTCTTCGGCGGCATCGCGACCGCCGTCGAGCAGGTGGCCGAGGACGCCGGGCTGTCGGTCGTGGTCGGGTCGTCCCACGAGTCGCCCGTCCAGCAGGAGAAGTTCCTGACCCTGTTCGAGCAGCTCCGCTTCGACGGCGTGGTCGTGGCGCCGTCGGACGACCAGCTCGAGCCGCTGCGCAAGCGCCACGACCGCGGGACGCCCGTGGTGCTCGTCGACCACGAGGACCCGGACGGCCGGTTGTCGTCGGTGTCGTTGGACCATCGCGAGGGCGGCCGGATCGCGGCCGGCCACCTGGTGGACTCCGGCCGCCGCCGGCTGCTGTTCGCCGCCGGTCCGGAGGGTGTGCGGCAGGTGGCACGCCGCCTGGAGGGGGCTCGTGAAGCCGTCGCCGAGCGCGACGACGTCCGCCTGGACGTGGTGCGCTCCTCCGACCTCGACATCACCGTCGGGGAGGAGACGGGCCGGTGGATCGCCGCGCTCGACCCTCCCGAGCGCCCCGACGCGGTGTTCGCCGGCAACGACCTGCACGCCATCGGTCTCGTGGACGCCCTGGTCAAGGCGGGGATCCGGGTGCCCGAGGACATCGCCGTGGTCGGGTACGACGACATCCCGTTCGCCCGGCGGGCTGCCGTCCCCCTGACCACCGTGCGCCAGCCCATCGCCGAGATGGGCCGGGCCGCGGCCCGGTTGCTGCTGGACGAGATCGCCGAGCCGGGACGTCCGCCGCGGGACGTCGTCTACCCGCCCGAGCTCGTGGTGCGCGCCTCGGCTCCCTGAMVESTVTIHDVARHAGVSAATVSNYFNWPDKLSDRMKKRVATAVTDLGFVPSMPARQLRRQRSGIVGLSVVNASNPFFGGIATAVEQVAEDAGLSVVVGSSHESPVQQEKFLTLFEQLRFDGVVVAPSDDQLEPLRKRHDRGTPVVLVDHEDPDGRLSSVSLDHREGGRIAAGHLVDSGRRRLLFAAGPEGVRQVARRLEGAREAVAERDDVRLDVVRSSDLDITVGEETGRWIAALDPPERPDAVFAGNDLHAIGLVDALVKAGIRVPEDIAVVGYDDIPFARRAAVPLTTVRQPIAEMGRAAARLLLDEIAEPGRPPRDVVYPPELVVRASAPPGPT0017992_12478DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_00636735hypothetical proteinATGACCGACGACCCCGAGGTCCGCACCGCGCACTCCGACGAACCGCACGCCGTGACCGGGCTCGCCCAGCGGCTGAACTGGCTGCGCGCGGGCGTGCTCGGCGCCAACGACGGCATCGTCTCCGTGGCGGCCGTCGTCGTCGGCGTGGCCGCGGCGACGACCTCGCAGGCCGCGATCCTCACCGCGGGTCTGGCGGCCCTCGTCGGCGGCGCGATCTCGATGGCGCTGGGCGAGTACGTCTCGGTCTCCTCGCAGTCGGACACCGAGAAGGCACTCATCGCCAAGGAGAAGCACGAGCTCGCCACGATGCCCGAGGAGGAGCTCGCCGAGCTCGCCGGCTTCTACCGGGACCGCGGGCTCTCCGACGAGACCGCGCGGCAGGTGGCCGTGGAGCTGACCGAGCACGACGCCCTGGGTGCGCACCTGTCCGCGGAGCTCCACATCGACGCGGACGACGTCGTCTCAGCGTGGCACGCGGCCGTCGCCTCGTTCGTCGCGTTCACGATCGGCGGCCTGCTGCCCTTCGCGACGGTGCTGCTGGTGCCCGAGCCCGCCAAGATCGCGGCCACGTTCGTGGCCGTGCTCGTCGCGCTGGCCCTGACCGGCGGCGTCGCCGCGTGGATCGGCGGCGCCCGGATCGACCGGGCCGTGCTGCGGGTCGTCGTCGGCGGCGCGCTCGCCCTGGGGGCGACGTTCGCGGTCGGCTCGCTGCTGGGCACCACCGGCGTCGCCTGAMTDDPEVRTAHSDEPHAVTGLAQRLNWLRAGVLGANDGIVSVAAVVVGVAAATTSQAAILTAGLAALVGGAISMALGEYVSVSSQSDTEKALIAKEKHELATMPEEELAELAGFYRDRGLSDETARQVAVELTEHDALGAHLSAELHIDADDVVSAWHAAVASFVAFTIGGLLPFATVLLVPEPAKIAATFVAVLVALALTGGVAAWIGGARIDRAVLRVVVGGALALGATFAVGSLLGTTGVANANANANANA
AK018_006371356dapE_1COG0624Succinyl-diaminopimelate desuccinylaseATGAACCGACCTGAGGTGGCGTCCGTCACACCGCGCCCGGACGCCGCCGAGCGCCTGGCGCGCCTGATCCGGATCCCCACCGTCTCCGCCGAGATCGACAGCCGGGGGCACGAGCCGTTCGAGAGCCTCGTCGACCTCCTGGCCGAGCTGTACCCCCTCGTGCACGAGCACCTGAGCAGGGAACGGCTCGGCGACCTCGGCCTCCTCTTCCGCTGGCGCGGACGCGGGGACGCCGACGACGGACCGCTCGTGCTCATGGCGCACTTCGACGTCGTGCCCGTGGACGAGACCGACGGCTGGACCCACCCGCCGTTCGCCGGCCGGATCGCCGACGGCTGGGTCCACGGCCGCGGCGCGCTCGACGACAAGGGGCCGCTCGTCGTCCTGCTGGAGGCCGTCGAGAACCTGCTGGCGGCCGGGTTCGTCCCGGCCCGCGACGTCTACCTCTCCCTCGGCGGGGACGAGGAGTGCCACGGCCCGTCGGCCGAGACGATCGCCGCGACGTTCGAGGCCCGCGGGATCGTGCCCTGGATGGTCCTCGACGAGGGCGGCGCCGTCGTCGACTCCCCGCTGCCCATGGTGACCGGCACCGCCGCGATGGTCGGCGTCGGGGAGAAGGGGGTGCTCACCGCCCGGCTCTCCACGCGCGGAGAGGGCGGCCACGCCTCCATGCCCCCGACCCTCACGGCGGTGCGGCGGATCGCCCGGGCCGTCGACCGGCTCGGGCCGCGCACGTTCCCCGCACGCACGCCCCGGGCGATCAGCGAGCTGCTGCGGCGGTTCGCCGAGCGCGCGAGCGGGGCGAGCCGCACCGCGCTGCGCGCGCTGGCCGCGTCCCCGCGGGCGACCGCGCAGGCGTTCGTGGCCCGCGGCGGCGAGACCGCGGCCCTGGTGCGCACCACCGTGGCGGCGACCATGCTCGACGGCGGCACCGCCGCGAACGTGCTGCCCTCGCAGGCGTCCGCGACGCTCAACCTGCGCATCGCGCTCGGCGAGACCGCCGACGGCACCATCGAACGGATCCGACGCCGGATCGCCGACGACCAGGTCGACGTCGAGGTGCTCGAGGCCAGCGAGCCGTCCCCCGAGTCGCCGACCGACGACGAGCGGTTCGCCCGGATCGCCGACGCCGTCGCGGTCTCCCACCCCGGTGCCGCCACGGTGCCCTACGTCGTGTTCGCCGCCACGGACTCGCGGTACTTCCACCGCTTCGCGCCGGCCGTCTACCGGTTCGCGCCGCTGACGATGTCGACGGCCCAGCGCGCGTCGATCCACGGCGTCGACGAACGGGTCGAGATCAGCGAGCTGGAGCGCGGCGAGCTCTTCCACCGCACGCTGCTGGAGCGGCTCGGATGAMNRPEVASVTPRPDAAERLARLIRIPTVSAEIDSRGHEPFESLVDLLAELYPLVHEHLSRERLGDLGLLFRWRGRGDADDGPLVLMAHFDVVPVDETDGWTHPPFAGRIADGWVHGRGALDDKGPLVVLLEAVENLLAAGFVPARDVYLSLGGDEECHGPSAETIAATFEARGIVPWMVLDEGGAVVDSPLPMVTGTAAMVGVGEKGVLTARLSTRGEGGHASMPPTLTAVRRIARAVDRLGPRTFPARTPRAISELLRRFAERASGASRTALRALAASPRATAQAFVARGGETAALVRTTVAATMLDGGTAANVLPSQASATLNLRIALGETADGTIERIRRRIADDQVDVEVLEASEPSPESPTDDERFARIADAVAVSHPGAATVPYVVFAATDSRYFHRFAPAVYRFAPLTMSTAQRASIHGVDERVEISELERGELFHRTLLERLGNANANANANA
AK018_006381470jefADrug efflux pump JefAATGAGCGCCGGGGCCGCCGCGCGCCGGCCGACGACCCGCGCGTCGATGACCGTCGTCGTCGGCTTCCTCGCCTTCGTCGAGCTGACGAGCGGCGTGATCCAGGGGTACTACACGCCGCTGCTCACCGACGTCGCCCGCCATCTCGGCGTGCACGACGCCGACGTCAACTGGCTCGAGGGCAGCCAGCTCATGCTGTCGGCGCTGGTGGTGCCCGCCCTGGCCAAGCTCGGCGACATGGTCGGCCACCGGCGCATCCTGCTGTGGTCCACCGCCGTGACGGCCGCGGCCTCGCTGGTGCTGCCCTTCACCGACTCGTTCGCCGTCTTCCTCGTCGCGTGGGCGCTGCAGGGCTTCTACGTCGTGTGGCTGCCGCTGGAGATCGCGCTCGTCTGGCTGCGCACCCGGGACCTGCCGAACCGCTCCGCCGTCACCGCCAAGGCCGCCGGGATCCTCGTGGCCGCGCTGCAGGCCGGCGCGATCGCCGGTGCGCTGGCCGGCGGGGCGCTCGTGGACTCGTTCCCCCTGTGGGTCGTGCTCCTCGTGCCCGCGCTCCTGGTCTGCGCGTGCTTCGTCGTCGTCTGGCTGGGCGTCGCCGAGACCCCGGACCCGGTGGGCGGCCGCCTCGACACCCGCGGGCTGGTGCTGGTCTCCCTGGCCCTGCTCGCCTTCACCGGCGGGCTGAGCCTGCTGCGGCTGGAGGGCGTCGCCTCGCCGGTCGCCTGGGGCGCCGTCGCCGCCGGGCTGCTCCTGCTCTGGCCCTTCGTGCGTTGGGAGCTGCGCCACGACGACCCGCTGATCGACGTGCGGATGTTCCGCTCCCCCGCCCTGGCCCCCGTGTTCCTCACCGCGGGGCTGTTCGGCGTCTCCGTGCTCGGCGCGCAGGCACCGCTGTCCACGTTCGCCCGCACCGACCCCGCGGTGTACGGCTACGGGCTGGGCACCTCCGGGTTCCAGACGTCGCTGCTCATCGGCGTGTACCTGATCGCCATGATCGTCGGGGCGCTGTCGTTCCCGCGCGTGGCCGGGCTGGTCTCGCCGCGGCTCACCCTGTTCGTGGCCGCCCTGGCCGTCGCCGTCGGCTTCGGGCTGTTCCTGCCGCTGCACGACACCTACGTCCAGGTGGCCACCAACATGGTGATCGTGGGGCTGGGATCCGGCACGCTGGTGGCCGCACTGCCCGCCGCGGCCGCGGCCGCGGCGCCACCGACGCAGACGGGCGTGGCCACCGGCCTGACCAACTCGGTCAAGACCGTCGGCGGGGCGATCGCCTCGTGCGTGTTCGGCATCGCCCTGCTCGGCGCGGCCGGCGCGAACGCCGCCGAGTCGGTCACCGGCACCGCCGGCACGCTGACCGGCTACATGACGGTCTGGGTCGTGTGCGGCGGGACCGCCCTCGTGGCGGCCGTGCTGCTGCTCGTCGTGCCGAAGGAGGCGTTCACCGACCGCGGGGCCCACGCACCCGCCGCCTGAMSAGAAARRPTTRASMTVVVGFLAFVELTSGVIQGYYTPLLTDVARHLGVHDADVNWLEGSQLMLSALVVPALAKLGDMVGHRRILLWSTAVTAAASLVLPFTDSFAVFLVAWALQGFYVVWLPLEIALVWLRTRDLPNRSAVTAKAAGILVAALQAGAIAGALAGGALVDSFPLWVVLLVPALLVCACFVVVWLGVAETPDPVGGRLDTRGLVLVSLALLAFTGGLSLLRLEGVASPVAWGAVAAGLLLLWPFVRWELRHDDPLIDVRMFRSPALAPVFLTAGLFGVSVLGAQAPLSTFARTDPAVYGYGLGTSGFQTSLLIGVYLIAMIVGALSFPRVAGLVSPRLTLFVAALAVAVGFGLFLPLHDTYVQVATNMVIVGLGSGTLVAALPAAAAAAAPPTQTGVATGLTNSVKTVGGAIASCVFGIALLGAAGANAAESVTGTAGTLTGYMTVWVVCGGTALVAAVLLLVVPKEAFTDRGAHAPAANANANANANA
AK018_006391269lhgDCOG0579L-2-hydroxyglutarate dehydrogenaseGTGGGGACGACGCAGGACGGTGCGGTCGGCGTGGTCGGCGGCGGGATCGTCGGGCTCGCCGTCGCGCGCGAGATCGTGCGACGACGACCGGGGACCCCGGTGACGGTGCTCGAGGCGGAGGACCGCCTGGGCGCCCACCAGACCGGGCACAACTCCGGCGTCGTGCACGCGGGGATCTACTACCGGCCCGGCAGCCTCAAGGCGACGCTGTGCACGCGCGGCCGGAGCCTGCTGCAGGAGTACTGCGCCGAGCACGACCTCCCGTTCGACGAGGTGGGCAAGCTCGTGGTCGCGGTCGACGAGTCCGAGCAGGGCCGCTTCGACGCGCTGGAGGCCACGGCGCGCGAGAACGGGGTCCCGGGGCTGCGCCGGCTCGACGCGGGCGCGATCGCCGACGTCGAGCCGCGCGCCGTCGGCCGGGCGGCGCTGCACTCGCCGCGCACCGCGATCACCGACTTCGGCGCGGTCGCGCGACGGCTCGGGGCCGACATCGAGGCCGCCGGCGGTCGAGTCCTGCTGGACACCGCCGTCACCGGGATCCGGCAGGGTGCCGGCGGCGTCACGGTGTCGACGCGGCACGGGGCCCGGTCCGGCACCTCGGGCGCCGCGGGCACGGGCGGCGCCGAGCGCGACCGGCACACCGTGAGCAGGCTGGTGGTGTGCGGGGGCCTGCAGTCCGACCGGCTCGCCGGCCTCGTCGGGGGAGGCCGGAACCCCGCCATCGTCCCGTTCCGGGGCGAGTACATGGCGGTGCGGCCCGAGAAGCAGGACCTGGTCCGGGGCATGGTCTACCCGGTCCCGGACCCGCGGTACCCGTTCCTCGGCGTGCACTTCACCCGGACGGTCGACGGCGGGCTGGAGGTCGGGCCCAACGACGTCCTCGCGCTGCACCGCAGCTCCTACCGGCGTCTCGCCGTCGGGCCCCGCGACCTCGCCGCGACGCTCACCTGGCCCGGTTTCTGGCGGATGGCCGCGGAGCACTGGGTCACGGGCGTCCGGGAGATGTACGGGTCGGCCGTGCCGTCCGCGTTCCTGCGCGCCGCGCAGCGCTACGTCCCCGCGATCGGCGCGGCCGACGTCGTGCGCGGGCGCTGCGGCCTACGTGCCCAGGCGGTGGCGCGGGACGGGTCCCTCGTCGACGACTTCGTCGTCGAGTCCTCGGACCTCGTCACCGTGGTGCGCAACGCCCCGTCGCCGGCGGCCACCTCCGGGCTGGCGATCGCCGAGCACGTCGTGGACCGTCTCGGGGGATTCGACGCCTCCGGGTGAMGTTQDGAVGVVGGGIVGLAVAREIVRRRPGTPVTVLEAEDRLGAHQTGHNSGVVHAGIYYRPGSLKATLCTRGRSLLQEYCAEHDLPFDEVGKLVVAVDESEQGRFDALEATARENGVPGLRRLDAGAIADVEPRAVGRAALHSPRTAITDFGAVARRLGADIEAAGGRVLLDTAVTGIRQGAGGVTVSTRHGARSGTSGAAGTGGAERDRHTVSRLVVCGGLQSDRLAGLVGGGRNPAIVPFRGEYMAVRPEKQDLVRGMVYPVPDPRYPFLGVHFTRTVDGGLEVGPNDVLALHRSSYRRLAVGPRDLAATLTWPGFWRMAAEHWVTGVREMYGSAVPSAFLRAAQRYVPAIGAADVVRGRCGLRAQAVARDGSLVDDFVVESSDLVTVVRNAPSPAATSGLAIAEHVVDRLGGFDASGPGPT0013225_818DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUTARATE_UTILIZATION,PGPT0013225-lhgO|ygaF-K15736NANA
AK018_00640417hypothetical proteinATGATCCGACTCCTCGCGCGCACCGCCGTCTTCCTCCTCGCCGCGGCGATCGGTGTCGTCCTCACCGACGTCCTCTTCGACGCCTTCGGCTGGGAGACCTTCGACGTCGTCTGGAGCGACCCGCTGGGCTTCGTCCTGGCGGTGGTGATCTTCGCGCTGGCACAGGCCGTGCTGTCGCCGTTCTTCGCCCAGCTCGCCCGCCGCAACGCCCCGACCCTCGTCGGTGCGGTCGGGCTCATCACGACCTACGTCGCGCTGCTGGTGGCCTCCCTGGCCTCCGACGGCCTGACGATCTCCGGGTGGCAGGGCTGGGTGATCGGCCCGATCGTCGTCTGGCTCGTCACGATGCTCGCCACGTTCCTGCTGCCGGCCTTCATCCTCAAGCAGGCCGTCGAGGAGCGCCGCGACCGCGACTGAMIRLLARTAVFLLAAAIGVVLTDVLFDAFGWETFDVVWSDPLGFVLAVVIFALAQAVLSPFFAQLARRNAPTLVGAVGLITTYVALLVASLASDGLTISGWQGWVIGPIVVWLVTMLATFLLPAFILKQAVEERRDRDNANANANANA
AK018_006411152lnpDUDP-glucose 4-epimeraseATGCGGGTCCTGGTCACAGGTGGGGCCGGCTACCTGGGTTCCCACGTCGTGCTGGCCCTGCTCCAGGCAGGGCACGCGGTCGACGTCGTCGACGACTTCAGCGCGGGCAGCCCCGCCGCGCTCACCCGCGCCGAGGGAGTCTCCGGCCGGCAGGTGACGACGCACGCCGCCGACGTCGCCGACATCGACGCGATGGAACGCGTCTTCGCCACGGCCCGCTTCGACGCCGTCGTGCACCTGGCGGGTCTGCGGTCCGCGCGACTGAGCGACAGCCGCGTGCTGGACACCTACGAGACGAACCTGTCGACGCTCTTCACCCTGCTGCGCTGCATGACCTGGTACGCGGTGCACCGCCTCGTGCTGTCCTCGTCCGCCGCCGTCTACGGCCCGCCCGACGACGGCGGTCGGCTCGCGGAGTCGGCAGCCCTCGCGCCGGTCTCGCCGCTGGGTCGCAGCCTGGCCACGAACGAGCACCTGCTCACCGACCTCGTCGGCCAGGACCCGGCCCTGCGGGTGGCGGTGCTGCGCTGCTTCACCACGGCGGGCGCCCACCCCTCGGGCCGGCTCGGCGAGGACGGCGCCTCCTCGGCGACGGGGCTGCTGACCCGTGTCGGGCAGGTCGCGGCCGGACGCCGGGACGCCGTCGAGGTGTTCGGCGGACGGCACCCCACCGCGGACGGCACGCCGGTGCGCGACGTCGTGCACGTCGCCGACGTCGCCGACGGGCACGTCGCCGCGCTGGAGGGCCTGGACACGGCCGCCCGGCCGATGACCACCTGGAACCTCGGGACCGGACGCGCCGCGAGCGTCCTCGACGTGATCCGCACGTTCGAGCGGGTCACGGGACGGACGGTGCCGTACCGCGTCGTCGCCGCCGGGCCCCCGACGGCGGCCTCGGCGGTGGCGGACCCGGAGCGCGCCGCGACGGAGCTCGGGTGGCGGGCCCGCCGCGGGCTCGAGGAGATCTGCCGGGACCACTGGCGCTGGCAGCGCACGAACCCGGACGGCTACCCGCCCACGGTGACGCCGGAGACGCCCTGGCGCGGCGGGGTCGGGCACCGGCTCCGGACGGTGCCCCCGCTGCCCGAGGCCGCGCCCGCCGGGTCCCTGGCCCGCCGCGCGGTCGGTCAGTCCTTGACCTCGCGGAAGTAGMRVLVTGGAGYLGSHVVLALLQAGHAVDVVDDFSAGSPAALTRAEGVSGRQVTTHAADVADIDAMERVFATARFDAVVHLAGLRSARLSDSRVLDTYETNLSTLFTLLRCMTWYAVHRLVLSSSAAVYGPPDDGGRLAESAALAPVSPLGRSLATNEHLLTDLVGQDPALRVAVLRCFTTAGAHPSGRLGEDGASSATGLLTRVGQVAAGRRDAVEVFGGRHPTADGTPVRDVVHVADVADGHVAALEGLDTAARPMTTWNLGTGRAASVLDVIRTFERVTGRTVPYRVVAAGPPTAASAVADPERAATELGWRARRGLEEICRDHWRWQRTNPDGYPPTVTPETPWRGGVGHRLRTVPPLPEAAPAGSLARRAVGQSLTSRKNANANANANA
AK018_00642963hypothetical proteinATGAGGCGCACGATCGGTGCCGTGACCGCTGCCCTGCTGGCCCTCGGCACGCTGGCCGGGTGCTTCGGCGGCGAGGACAGCTCCTGGTCCGGCCGCCTGCCCGACCGCCTCACGATCGCGACCGGCGGCACCACGGGCATCTACCACGGCTACGGCCAGGCGCTGGCCGACGTGCTGGCCGAGCAGCACGGCGTCGAGGCCGAGGTGCTGTCGACCGGCGGGTCGGTGGAGAACCTCGCGCTGCTGGCGGACGGCGAGGCGCAGCTCGCGTTCAGCGCGGCCGACGCCGTGGCCGACGCCGTGCACGGCACGGGGGCCTTCGACGCGCCGGTGGACCTGCGTGCGCTGGGCCGCGTCTACGACGACTTCGCCCACCTGGTGGTCCCTGCCGACTCACCGGTCGAGGAGCTGGCGGACCTGCGGGGACGTCGCGTGTCGGTCGGTGCCACCGGGTCGGGCACGTCGCTCATCGCCCGCCGGGTGCTCGCCGCCGGCCCTCTGCCGGAGTCCGACCTGCGGGTGGTCGAGCTGGGCATCACCGAGTCGCTCGACGCGCTGAGCACCGGCCGCGTCGACGCGTTCTTCTGGTCCGGCGGGCTGCGGACCCCGGGCCTGGTCGAGCTCGCCGAGGAGACCCCGATCCGGCTGGTCCCGCTCGACGGCGTCGTCGACGAGCTCCGCGACCGGTACGGTCAGGGCTACCGGCACGGCACGGTCCCCGAGGGCATCTACGGGCTCGAGGCCGACGTCGAGACGCTCGCCGTACCGAACATCCTGGTGGTGCCGACCGACCTGCCGGACGACGCCGCCCACGGGCTCGTGGCGACGCTCTTCGGTGCGCGCACCGCCCTCGCCGAGCGGGCCGCCGCCGCCCAGCTGCTCGACCGGACCCGTGTGATCTACACCGAGCCGGCCCCGCTGCACGACGGGGCGCTGCGCTACTTCCGCGAGGTCAAGGACTGAMRRTIGAVTAALLALGTLAGCFGGEDSSWSGRLPDRLTIATGGTTGIYHGYGQALADVLAEQHGVEAEVLSTGGSVENLALLADGEAQLAFSAADAVADAVHGTGAFDAPVDLRALGRVYDDFAHLVVPADSPVEELADLRGRRVSVGATGSGTSLIARRVLAAGPLPESDLRVVELGITESLDALSTGRVDAFFWSGGLRTPGLVELAEETPIRLVPLDGVVDELRDRYGQGYRHGTVPEGIYGLEADVETLAVPNILVVPTDLPDDAAHGLVATLFGARTALAERAAAAQLLDRTRVIYTEPAPLHDGALRYFREVKDNANANANANA
AK018_006431374sasA_2Adaptive-response sensory-kinase SasAGTGAGGGCGCGGCTGACGGCGCTCGTCTACGTGCCGGTCGCCCTGGTGCTGGTCCTCGTCGGTCTGCTGTACGCCGCGAGCGTCACCCGCGCCCAGCAGCAGGACGTCTTCTTCGACCGGGTGCGGGACGCCTCGTACCTGACCATCACCGCACGCCAGGCGATCCTCGCCGACGACCCCGGGATCGTCGCCGTCGACCTCGAGCGCTACCGGCAGGTCTACGGCATCCGGTCCGCCGTCGTCGACCAGGCCGGGGTGACCCTGGCCGCCGCCGGCCTCGAGGTCGAGGACTACCCGCAGCGGCACACGGCGATCGCCGGACGGCCCAGCGAGATGACGACGAGCTTCTGGCCGTGGGACGTCGACCAGGTCGTCGTGGCCGAACCCGTCCACGACGGCGAGGACGTCGTCGGGGCGCTGGTGACCGTCTCGGACACGCAGGCCCTGGAGCGCAACATCTGGCTGAGCTGGGGGCTGCTCACCGCCGGTGGCGTCGCCGTCGCGCTGCTGGCCGTGCTCATCGCGGACCGCACCGCCGGCTGGGTGCTGCGCCCCGTGCGCGTGGTGGACGCCGCGATGGAGCGGATGGGTTCGGGCCGCCTCGACGAGCGCATCCCGCCGTCGACCGGGCCGCCCGAGCTGCGGGAGGTCGTCACCCGGTTCAACGAGATGGCCGAACGCGTCGAGCAGCTGATGCGGCGCCAGCAGGAGTTCGTCGCCAACGCCTCCCACGAGCTGCGCAACCCGCTCAACGCCCTGATGCTGCGCATCGAGGGACTCGCGCTGACCGTGCCGCCCGACCAGGTCGACGAGGTCGAGCACGTGCGTGCCGAGGCCGAGCGCATGGCGCAGATCCTCGACGCCCTGCTGCTGCTCGCCGACGACGCCGGCACGGGCCCCGCCCAGCCGGTGGACCTGGTCGAGCTCGCGGAGCGGCGCATCGAGGGCTGGCGGCTCGTGGAGCGCGGTCGCGAGGTGCGGCTCACCGCCCCCGACCGGCCGGTGTGGGCCGGCGTCGACCCGACCGCGCTCGGCACCGCCCTGGACACCATCGTGGACAACGCCCTGAAGTTCTCCCCGCCCGAGGAGCCGCTGGAGATCGTCGTGCACGACGAGCCCGGGCGGCTCGAGATCGTGGTGCGGGACCACGGGCCCGGCGTCGCCCCGGACCACCTGGCCCGGCTCACCGAACGGTTCTGGCGCAGCCCGGGCCACAGCAACGTGCGCGGGTCCGGCCTCGGGCTCGCGATCGCCTCCGAGCTGCTGTCCTCCGCCGGCGGCAGGCTCCGGCTCGAGCTGCCCGACGACGGCGGGCTGCGGGCCCACCTGCAGGTGCCGGCCTGGGACGACGAGCGCGAGGAGGAGTCCGCATGAMRARLTALVYVPVALVLVLVGLLYAASVTRAQQQDVFFDRVRDASYLTITARQAILADDPGIVAVDLERYRQVYGIRSAVVDQAGVTLAAAGLEVEDYPQRHTAIAGRPSEMTTSFWPWDVDQVVVAEPVHDGEDVVGALVTVSDTQALERNIWLSWGLLTAGGVAVALLAVLIADRTAGWVLRPVRVVDAAMERMGSGRLDERIPPSTGPPELREVVTRFNEMAERVEQLMRRQQEFVANASHELRNPLNALMLRIEGLALTVPPDQVDEVEHVRAEAERMAQILDALLLLADDAGTGPAQPVDLVELAERRIEGWRLVERGREVRLTAPDRPVWAGVDPTALGTALDTIVDNALKFSPPEEPLEIVVHDEPGRLEIVVRDHGPGVAPDHLARLTERFWRSPGHSNVRGSGLGLAIASELLSSAGGRLRLELPDDGGLRAHLQVPAWDDEREEESANANANANANA
AK018_00644681regX3_1COG0745Sensory transduction protein regX3GTGCAGCTGTTGGTCGTGGAGGACAACGAGCACGTCGCCGGCGCGCTCGTCTCCGTCCTGGGGAAACACGGGTACGACGTCATCCGTGCCGGGGACGGGTCGACGGCGCTCGACGAGCTGAGCCAGCACACCGACCTGGTGCTGCTGGACCTCGCGCTGCCGGACATGGACGGCTTCGAGGTCTGCCGCCGCATCCGCAAGGTGTCCGACACCCCGATCATCATGGTCACGGCCCGCACGCAGCTCGACGCCCGGATCCGCGGGCTGGAGCTCGGGGCGGACGACTACGTCACCAAGCCCTACGACATCCGCGAGGTGCTGGCCCGCATCGACGCCGTGCTGCGCCGCGGCCGCGCCCGCGAGTGGGACGGCCGCCAGGAGGCCGCTCGGGTCGAGGTCGCCGGCCTGCACATCGACCTCGCGGCCCGCGAGGTGCGTCGTCCGGACGACTCCACCGTCTCGCTCACCCGCAAGGAGTACGACCTGCTCGCCCTGCTCGTGCGGCACCGCGGCACGGCGCTGGCCCGGGAGCGGATCCTGCGGGAGGTCTGGGGGTCGAGCTGGAAGGGGCTCGGCCGCACCCTGGAGGTGCACGTCGCCTCGCTGCGCCGCAAGCTCGGTGACCCGACCGTCGTCGAGACGGTGCGGGGCGTCGGCTACCGCGTCGCCGGGTCCGCGTGAMQLLVVEDNEHVAGALVSVLGKHGYDVIRAGDGSTALDELSQHTDLVLLDLALPDMDGFEVCRRIRKVSDTPIIMVTARTQLDARIRGLELGADDYVTKPYDIREVLARIDAVLRRGRAREWDGRQEAARVEVAGLHIDLAAREVRRPDDSTVSLTRKEYDLLALLVRHRGTALARERILREVWGSSWKGLGRTLEVHVASLRRKLGDPTVVETVRGVGYRVAGSAPGPT0002675_406DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
AK018_00645993hypothetical proteinGTGAGCGAGGGGCCGACGGCGGACGGCGCCGTCGACGCCGCCCCCGAGCGCCGCCGGGCGACCTGGCCCGTCCGGGTCGGGCAGGCCGTCGCCGTCGGGGGCCTGGCCGTCGTGGCCTGGGCCCTCGCGACGGCGTGGGGAGCCGTCGTGCACGGACATCCCGCCTACGCCGTCCTGCTGGCCGGGACCGTGCTGGTCTGCGTCGCCGTGCTGTGGCGCAGCACCCGGCGCACGACCACGGCGCGCTCGCGGGCCCGCCGGGTGCTCGGGATCGTGCTGACGGTCGGCGCGGTCGGCTGGCTGGCTGCGGTCGCGTGGCTGCGCCCGTTCGTGGCCGTCGAGCCCGCCCTGGACGCGATGGAGTCCGACGACGTCGTCACGGTGACGCAGACCCCGACCCGGGTCGAGCTCGCGCCGACCGGCGAGCCCAGCGGCACGGCCGTCCTGTTCCAGCCGGGCGCCAAGGTCGAGGCCCGCGCCTACGCCGCCGTGCTGCGCCCGGTGGCGGAGGCCGGCCACACCGTGGTGATCGTCAAGCAGCCCCTGAGCATCGGTTTCCTGGCCACCGGTGCGCTCGACGCCGCACGGGCGGACCTGCCCGACGTCGAGCGCTGGGTCGTGGGCGGGCACTCGCTCGGCGGGGTGGTGGCGGCCATGGAGGCCGACGCGGCCGACACCGACGCCACGGCCCCCGCCGTCGGGCTCCTGCTCTACGCCTCCTACCCGGCCGGTGACGTCAGCGACACCCTGACCGCGGCGGTCGAGTCCGTCTCCGGCACCGAGGACGGCCTGTCCACCCCGGAGGCGATCGAGGCCTCCCGGGCGGACCTGCCCGCGGGCAGCTCGTTCACCGTGGTCGACGGCGCCGTGCACGCCTTCTTCGGCGACTACGGCCCGCAGCCCGGGGACGGGACCCCGACCATCTCCCACGACGACGCGCGGCAGCAGATCGCCGCCGCGAGCAGGACGTTCGTCGACGGGCTCAGCGGCTGAMSEGPTADGAVDAAPERRRATWPVRVGQAVAVGGLAVVAWALATAWGAVVHGHPAYAVLLAGTVLVCVAVLWRSTRRTTTARSRARRVLGIVLTVGAVGWLAAVAWLRPFVAVEPALDAMESDDVVTVTQTPTRVELAPTGEPSGTAVLFQPGAKVEARAYAAVLRPVAEAGHTVVIVKQPLSIGFLATGALDAARADLPDVERWVVGGHSLGGVVAAMEADAADTDATAPAVGLLLYASYPAGDVSDTLTAAVESVSGTEDGLSTPEAIEASRADLPAGSSFTVVDGAVHAFFGDYGPQPGDGTPTISHDDARQQIAAASRTFVDGLSGNANANANANA
AK018_00646669hypothetical proteinGTGCCGTCACCGTCGCAGAAGCAGCCCGCCCCGCCCGTCGTCGACCCGGTCGTGCTGACCGACCTCGACCCCGGTGAGGCGGCCGAGCTCGCCCCCGGTGCCGACCTCGAGGGCCGCGTCCACACCGGGATCGACGTCGACCGCCTCGAGCTCCGCGGCGCGCAGGCCCACACCTCCCGGCTCGACGGCCTGCGGGCCGGCGAGGCCGACCTGCGGAACCTGACGCTCACGGAGGTCGTCATGACCCAGGTCGACGTCCCGGTCGTCGCGGGCATCCGCGGCCGGTGGCGGGACGTCGAGGTGCGCGACGCCCGGGTCGGGTCCGCCGAGCTGTACGAGTCCACCTGGCAGTCCGTGCGGTTCGTCGGCTGCAAGCTGGGCTACGTCAACCTGCGCGGGGCCACCCTGCAGGACGTCGTGTTCGCCGACTGCCAGATCGACGAGCTCGACCTCGTCCAGGTCCGGGCGACCCGGGTCGCGTTCGAGGGCACGAGCGTCCGCCGGCTCGACGTGCAGGCGTCCACGCTGCACGACGTCGACCTGCGCGGCGCCGACCTCACCGAGCTGGTCGGGACCGACGCGCTGCGCGGCACCACGGTCACGAGCGAGCAGCTCGCGCAGATCGCCCCGGTGCTCGCGGCCAACCTCGGCATCACGGTGACGGAGTGAMPSPSQKQPAPPVVDPVVLTDLDPGEAAELAPGADLEGRVHTGIDVDRLELRGAQAHTSRLDGLRAGEADLRNLTLTEVVMTQVDVPVVAGIRGRWRDVEVRDARVGSAELYESTWQSVRFVGCKLGYVNLRGATLQDVVFADCQIDELDLVQVRATRVAFEGTSVRRLDVQASTLHDVDLRGADLTELVGTDALRGTTVTSEQLAQIAPVLAANLGITVTENANANANANA
AK018_00647648hypothetical proteinATGATTTCACACATCCGGCGCGGCTACTATGGCCGCATGGCATCCCGTGGCCCCTACGCGAAGGGTCTCGCCAAGCGCGAGGAGATCCTCGACGTCGCCCTCGACGAGTTCGCGCGCCGTGGGTACGACCGGACCTCGATGCGGGAGATCGCCCGGCAGTCCGGACTGAGCCAGGCGGGCCTGCTGCACTACTTCAGCGCCAAGGAGGAGCTCTTCCTCGCCGTGCTGCGCCGGCGGGACGACCGGACCACCGCACCGGACGAGTACAGCCACTCCCACTCGGTCAGCGAGCTGCTCGGGGCCGTCGAGCGGAACGCCGGCGAGCCGGGCCTCGTGCGGCTGTTCGTCTCGATGTCGGCCGAGAGCGCCGTCGGGGACGGCAGCGTCGCCCACGACTTCTTCGTGGAACGGTACCGGTGGCTGACCGAGGAGATCGCGACCGACATCCGGGCCCAGCAGGAGGCCGGCGAGTTCTCCACCGCCGTCGACCCCGAGGACGCGGCGTCGATCCTCGTCGCCGTCGCCGACGGCCTGCAGCTCCAGTGGCTGCTCCGTCCCGAGAGCGTCGACATGGGTGCGCGGATCAGCATGTTCTGGTCGCTCCTGAAGGCCGGGGCGTCGGTCCGTCAGGACGAGTTCCTAGACTGAMISHIRRGYYGRMASRGPYAKGLAKREEILDVALDEFARRGYDRTSMREIARQSGLSQAGLLHYFSAKEELFLAVLRRRDDRTTAPDEYSHSHSVSELLGAVERNAGEPGLVRLFVSMSAESAVGDGSVAHDFFVERYRWLTEEIATDIRAQQEAGEFSTAVDPEDAASILVAVADGLQLQWLLRPESVDMGARISMFWSLLKAGASVRQDEFLDNANANANANA
AK018_006482454hypothetical proteinATGGACGACGAGACCAGGACACACCTGCGCACGCTGCGCGAGTCGTTGTCGTTGGACGAGAAGGTGCGGCTGCTGACGGGGCAGGACTCCTGGTCCACGGCCCCGCTGCCCTCCGTCGGACTGCGCTCCATGGTGCTCTCCGACGGCCCCGCGGGCGTCCGCGGGCAGCTGTGGGACGAGCGCTCGCCGTCGGTCAACTTCCCGTCGCCCACCGCGGTCGCGGCCTCGTGGGACCGGGACATGGTCGAGCGCGTCGGCCGCGGGCTCGGCGGGGAGGCGGTGCGCAAGGGCGCCGACGTCGTGCTCGCCCCGACGATCAACATCCAGCGCACCCCGTACGGCGGCCGCCACTTCGAGGCCTTCAGCGAGGACCCGCTGCTGACCAGCGAGCTGGCGACCTGCTACGTGCGCGGCATCCAGGCGTTCGGCGTCGGCGCGACGGTGAAGCACTACGTGGCCAACGACTCCGAGACGGAGCGGTTCACGGTCGACGTCCGCGTCGCGGACCGCACGCTGCGCGAGGTCTACCTCGCGGCGTTCGAGGGTCCCGTCGTGGACGGTGGCTGCCGGCTCGTCATGAGCGCCTACAACTCGGTCAACGGCCGCACCGCCTCGGAGAACGACCTCCTGACGACCCCGCTGAACGACGAGTGGGGGTTCGACGGCGTCGTGGTCAGCGACTGGACGGCGGTGCGGACGCTCGAGAGCGCACGGCACCCCCAGGACCTCGTCATGCCGGGCCCCGACGGGCCGTGGGGTGCGGAGCTGGTCCGCGCCGTCGACGACGGGCGCATCCCGGTCGAGGCCGTGGACCGGAAGGTCGACCGGCTGCTGGCCCTCGCCGCCCGGGTGGGCGCGCTCGAGAGCCTGCCCTCCCCGACGCGGCCGGCGGCCGACGACGCCCACGCGACGGCGCACGCCGCCTCGGTCGCCGGGACCGTCCTGCTGCACAACGACGGGCTCCTGCCCCTGGCGTCGCCCCGCTCGATCGCGCTCGTCGGCGAGGGCGCGCGCGTCGCCCGCACCCAGGGCGGCGGGAGCGCGACGGTGATCCCGCCGTCGGTCAGCACACCGGTCGACGGCCTCGCGCGGCGCTGGCCGGACGCCGACGTCACCTGGTCGCTGGGCGCCGTCGTGCAGCGCGGCGTCGCGGACCTGCCGGACGAGGACGTCACGACCCCCGACGGGGACCCGGGCATGACGGTGCGGTACCTCGACGCCGACGGCACGGTGACGCTGGAGGAGAACCGCCGGGCGTCCCGCGTGGTCGGCTTCGCGTGGGACTCGCCGGTGGTCCAGGCCGACCGGGTGGAGATGAGCTTCCGCCGGCGCACGGACGACGCCGTGACGCGGCTCGGGATCGTGGGCGTCGCCGGCTACACCGTGACGGTGGACGGCGTCGAGGTCGCCACCGGCGAGCAGCACCTCCGGCCCGACGACGACCCGGCGGCGACGGTCCTGCACCCCCCGAGCGAGTCGGTCGAGATCCCCACACCGGCCCCGCACACGCTGGTGACCGTCACGTTCCGACCCTTCGCCGAAGGCATCCCCGACGCCCTCACGCTGGGGGTCGGCGTGCCGCCCACCACACGCGACGCGGACGCCCTGATCGCCGAGGCGGCGGACGCCGCGGCCGCCGCCGAGGTCGCCGTCGTCGTCGTCTCGACCTCCGGCGAGGTCGAGTCCGAGGGGTTCGACCGCGCCTCGCTGTCCCTCCCCGGACGGCAGGACGACCTCGTGCGGGCCGTGGCCGCCGCGAACCCGCGGACCGTCGTCGTGGTGAACTCCGGCGCGCCCGTGCTGCTGCCCTGGCGCGACGACGTGGCCGCGGTCCTGGTCAGCTGGTTCCCGGGCCAGGCGTTCGGCGACGCCCTGGCGGAGGTCCTCGGCGGCGACGCCGAGCCGGGCGGCCGCCTGCCGGTGACGTGGCCGGACGTCGAGGACGAGGTGCCGGTGTCGGACACCCGCCCCGTGGACGGTGTCCTCGAGTACGCCGAGGGCGTGCACGTGGGCAGCCGCGCCTGGCTGCGGGCCGGCGTCGCGCCGGCGTACCCGTTCGGTCACGGGCTGGGTTACACGTCCTGGAGGCTCGACCACGTCGACGCACCCGCCACGCTGACGGCCGGCGACGACGCCGTGCTGCGCGTCGGGCTCACCAACCAGGGCGACCGCGCCGGCAAGACCGTGGCGCAGGTGTACCTCGAGCGCGCGACGCCGTCCGAGGTGGACCGGCCCGTGCGCTGGCTGGGCGGCTTCGCCACGGCGACGGCGGCTCCGGGCGAGACCGTCGTGGTCGACGTCCCGGTCGCCGCCCGGGCCTTCCAGCACTGGGACGACGGATGGCGCACCGAGCCCGGCACCTACGTGGTGCGTGCCGGGTTCTCGGTCGAGGACCTGCCGGCCGAGGTCGACCTGTCCGTCGAGGCGCCGGCGGCGATCGAGACGGCGCGATGAMDDETRTHLRTLRESLSLDEKVRLLTGQDSWSTAPLPSVGLRSMVLSDGPAGVRGQLWDERSPSVNFPSPTAVAASWDRDMVERVGRGLGGEAVRKGADVVLAPTINIQRTPYGGRHFEAFSEDPLLTSELATCYVRGIQAFGVGATVKHYVANDSETERFTVDVRVADRTLREVYLAAFEGPVVDGGCRLVMSAYNSVNGRTASENDLLTTPLNDEWGFDGVVVSDWTAVRTLESARHPQDLVMPGPDGPWGAELVRAVDDGRIPVEAVDRKVDRLLALAARVGALESLPSPTRPAADDAHATAHAASVAGTVLLHNDGLLPLASPRSIALVGEGARVARTQGGGSATVIPPSVSTPVDGLARRWPDADVTWSLGAVVQRGVADLPDEDVTTPDGDPGMTVRYLDADGTVTLEENRRASRVVGFAWDSPVVQADRVEMSFRRRTDDAVTRLGIVGVAGYTVTVDGVEVATGEQHLRPDDDPAATVLHPPSESVEIPTPAPHTLVTVTFRPFAEGIPDALTLGVGVPPTTRDADALIAEAADAAAAAEVAVVVVSTSGEVESEGFDRASLSLPGRQDDLVRAVAAANPRTVVVVNSGAPVLLPWRDDVAAVLVSWFPGQAFGDALAEVLGGDAEPGGRLPVTWPDVEDEVPVSDTRPVDGVLEYAEGVHVGSRAWLRAGVAPAYPFGHGLGYTSWRLDHVDAPATLTAGDDAVLRVGLTNQGDRAGKTVAQVYLERATPSEVDRPVRWLGGFATATAAPGETVVVDVPVAARAFQHWDDGWRTEPGTYVVRAGFSVEDLPAEVDLSVEAPAAIETARPGPT0019110_1993DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_006491149hypothetical proteinATGAGCCACGACGTGCTCCACGGCGGGTGCGACCCGGCCTTCCGGCCCGTCGCCGACCGCTTCGCCGCCCTGGTCGAGGCGGACCCGAGCCTCAGCGCCCAGCTGAGCGTGCGGGTCCGCGGCGAGCCCGTCCTGGACCTCGCCGGCGGTCCGCACCTGACCGTCGACGCGGTCACAGGGGTCTACTCGGCCACCAAGGGGGTCGCCGCGCTCGTCGTCGCCCACCTCCTCGACCGCGGCCTGCTCGACCCCGACCGGGTCGTCGCGGACTACTGGCCCGAGTTCGGCGCGGCGGGCAAGGACCAGGTCACCGTCCGGCAGCTGCTCTCGCACCAGGCGGGACTCCCGCTCGTGGAGCGTCCCCTGGGCGTGGCGGACGTCGTCGACTCCCGGGCCGCCGCCGCGGTCCTCGCCGCACAGCGGCCGCTGTGGCGTCCCGGGTCGGCGTTCGGCTATCACGCGCTGACCATCGGCATCCTCGTCGAGGAGCTCGTGCGGCGGGTCACGGGGCGCACCCTGCAGACGGTGTACGAGACGTCGGTCCGCGGTCCGCTCGACGCGGACTTCCACCTCGGCCTGCCCGAGGCACTGGACGGCCGCTACGTCCCGGTCCAGGACCCGGAGCTCACCGCGGAGCAGGCGGCCGAGGTCGCCGCCCGACCGCCGGCCGACGCGATCGCCGAGGCGGTGTTCTCGAACTTCTCCGTGCCGGACGACCGCTCGCAGGAGGGCGCCAGCACGAACAACCCCGCGGTGCGCCGGGCCGGCTTCGCGGCGATCGGCGGCGTCGGCTCGGCGAGAGGCCTCGCGCAGGTCTACGCGGCCGCGCTCCCGGGCGGCGGGGTGCACGTCGCCGCCCCCGAGGTCTTCGCCGAGATGGCGCAGCAGCACGCGTGGGGCACCGACCGCGTGCTCGGCGTCCCGAACTGCTTCGGCATGATGTTCATGCTGCCGCAGCCGCGGCAGCCGTTCGCCGGCCTCGGCGCGTTCGGCCACGACGGCGCCGGCGGCGCGCTCGCGTTCGCCGATCCCCGCACGGGAGTCGCCTTCGGCTACGTCCCCTCCCCCATGCAGCATCCCGGCGGCGCCGACCACCGCGCGGTGGAGCTCGCGCGGCTCGCCGTCGCCGTGGCGCGAGCCGCCGGCTGAMSHDVLHGGCDPAFRPVADRFAALVEADPSLSAQLSVRVRGEPVLDLAGGPHLTVDAVTGVYSATKGVAALVVAHLLDRGLLDPDRVVADYWPEFGAAGKDQVTVRQLLSHQAGLPLVERPLGVADVVDSRAAAAVLAAQRPLWRPGSAFGYHALTIGILVEELVRRVTGRTLQTVYETSVRGPLDADFHLGLPEALDGRYVPVQDPELTAEQAAEVAARPPADAIAEAVFSNFSVPDDRSQEGASTNNPAVRRAGFAAIGGVGSARGLAQVYAAALPGGGVHVAAPEVFAEMAQQHAWGTDRVLGVPNCFGMMFMLPQPRQPFAGLGAFGHDGAGGALAFADPRTGVAFGYVPSPMQHPGGADHRAVELARLAVAVARAAGNANANANANA
AK018_006502247Alpha-L-rhamnosidaseATGACGACCGATCCCCTCGACGGCGCGCGCTTCCTCGGCTCGGACGCCGACCGCGAGGCGGCGGCCCGCTTCTGGGTCGAGCGCGAGCTCGACCAGCCCCGCACCGAGATCACCGGCGCGGTGCTGCGCGCCACCGCCCACGGCGTCTACGAGGCCCGCGTCGACGGCTCGCCCGTGTCGGACTCGGTGCTGGACCCGGGCTGGACCTCGTACGAGTGGCGGCTGGCGTACCAGGAGCACGACGTGCGCGCGCTGGTCGCCGACGGCGACGGACCGCTGCGCCTCGACCTCCTGCTGGGCAACGGCTGGTACCGGGGCGACCTCGGCTTCGCCGACGCGCGGGCGAACTACGGCGAGGAGATCGCCGTCGCGGCGGTCCTGGACCTCACCTACCGGGACGGCTCCACGCAGCGTGTCGCGACCGGGGACGGCTGGTCGGCCGAGACGACGGAGGTCCCGCGCAACTCCCTCTACGACGGCCAGACGATCGACGCGCGCCTGCGCGGGCGTCCGTCGCCGCTGACGGTGCACGAGGTGGACGTCGACCGCTCGACCCTCGTCGCCCCGGTGGGCCCGCCCGTGCGGCGCCAAGAGACGCTCCGTCCGGTCGAGATCTGGCCGGCACCGGGCGGAGGCACGCTCGTGGACTTCGGCCAGAACCTCGTCGGCTGGCTCCGGTGCACGGTGCAGGGTCCCGCCGGCACCGAGATCGAGATCCGCCACGCCGAGGTGCTGGAGCACGGCGAGCTCGGCACCCGACCGCTGCGGGGCGCCGCCGCCCGCGACCTGTTCGTCCTCTCGGGCGGCGTGGACACGTTCGAGCCGACGCTCACCTTCCACGGGTTCCGCTACGCCCTGGTGACCGGATGGCCCGGCGAGCTGACCACCGACAGCCTCGAGGCGGTCGTCGTGCACTCCGAGATGGCCCGCACCGGGACCTTCGCCTGCTCCGACCCCGACGTGAACCAGCTCGTCCACAACTCGGTGTGGGGCCAGAAGGGCAACTTCCTCTCCGTCCCGACCGACTGCCCGCAGCGCGACGAACGGCTGGGCTGGACCGGCGACATCGCCGCCTACGCGGCGTCCGCGGCCTTCCAGTTCGACTCGGCCGACTTCCTGCACGACTGGCTCGCCGACCTGCGCGTCGAGACCGAGCACTCGGCCGATCGCGGCGTGCCGCTCGTCGTGCCCGACGTGCTCAAGTACGAGCGCTGGCCCGAGGACTTCAGCCTGCCCCCGTGGGCCGCCACGGCGATCTGGGGCGACGCGGCCGTCTGGGTCCCCCAGGCGCTGTGGACGGCCTACGGCGACGCCGGACGCCTGGCCGAGCACTACCCGGCCATGAAGATGCACCTCGAGTCCGTCGAGCCCTACCTCTCGCCCACGGGCCTGTGGGACCTGGGCAACCAGCTCGGCGACTGGCTGGACCCCGACGCCCCGCCGGAGGACCCGGGCGCCGGCAAGGCCGACCCGTCGGTCGTGGCCACGGCGTGCCTCGTCCGGACGGCGCGGTTCGCCGCCGAGGCGGCCGCCGTCGCCGGCGAGACGGCCGACGCCGAGCGGTGGGCGCGGCTGGCGGCCCGCACGCGCGCGGCGTTCAACGAGCACTACGTCGAGAACGGCGTCGTGCGGTCGGACTGCACCACCGTGTACGCCCTCGCGATCGCGTTCGACGTCCTCGACGACGCCGACCGGGCCGTCGCGGGCGACCGCCTCGCCGAGCTGGTGCGGGCGGCGGGCTACACGGTGACGACAGGGTTCGCGGGCACGCCCTTCATCACGTGGGCCCTGTCGGAGACCGGGCACGTCGACGACGCGTACGCCCTCCTGCTGGAGAAGTCGTGCCCGTCGTGGCTGTACCCGGTCACGATGGGCGCGACCACGGTGTGGGAACGCTGGGACTCGATGCTGCCCGACGGGTCGATCAACCCGGGCGAGATGACGAGCTTCAACCACTACGCGCTCGGTGCCGTGGCCGACTGGATCTACCAGGTCGTCGGCGGCCTCCGTCCCGCCGCTCCCGGCTACGACCGCGTCCGGGTCGAGCCGGTGCCCGGCCCGGGGATCGACTGGGCCGAGACCGCGTACGAGACCCGGCACGGTCGGGTCTCGGTCGCGTGGCGGCGCGACGACGACGGCTTCACCCTCGAGGTGGCGCTGCCCGACGGGCTCCCCGCCGAGATCGTCCTGCCGGACGGCCGCGTCGAGGAGGTCGTGGGCGGCACCCACCACCTGACCGCGGCCTGAMTTDPLDGARFLGSDADREAAARFWVERELDQPRTEITGAVLRATAHGVYEARVDGSPVSDSVLDPGWTSYEWRLAYQEHDVRALVADGDGPLRLDLLLGNGWYRGDLGFADARANYGEEIAVAAVLDLTYRDGSTQRVATGDGWSAETTEVPRNSLYDGQTIDARLRGRPSPLTVHEVDVDRSTLVAPVGPPVRRQETLRPVEIWPAPGGGTLVDFGQNLVGWLRCTVQGPAGTEIEIRHAEVLEHGELGTRPLRGAAARDLFVLSGGVDTFEPTLTFHGFRYALVTGWPGELTTDSLEAVVVHSEMARTGTFACSDPDVNQLVHNSVWGQKGNFLSVPTDCPQRDERLGWTGDIAAYAASAAFQFDSADFLHDWLADLRVETEHSADRGVPLVVPDVLKYERWPEDFSLPPWAATAIWGDAAVWVPQALWTAYGDAGRLAEHYPAMKMHLESVEPYLSPTGLWDLGNQLGDWLDPDAPPEDPGAGKADPSVVATACLVRTARFAAEAAAVAGETADAERWARLAARTRAAFNEHYVENGVVRSDCTTVYALAIAFDVLDDADRAVAGDRLAELVRAAGYTVTTGFAGTPFITWALSETGHVDDAYALLLEKSCPSWLYPVTMGATTVWERWDSMLPDGSINPGEMTSFNHYALGAVADWIYQVVGGLRPAAPGYDRVRVEPVPGPGIDWAETAYETRHGRVSVAWRRDDDGFTLEVALPDGLPAEIVLPDGRVEEVVGGTHHLTAAPGPT0019195_1336DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-RHAMNOSIDASE,PGPT0019195-ramA-K05989NANA
AK018_006511002gpr_1COG0667L-glyceraldehyde 3-phosphate reductaseATGGAACATCGATATCTCGGCAGCTCCGGTCTCCAGATCTCGGAGATCACGCTCGGCAACTGGCTGACGCACGCGTCCCAGGTGGAGGACGAGGCGGCCGCCGCGTGCGTGCATGCGGCGCTGGACGCCGGCATCACCACCTTCGACACCGCCGACATGTACGCCGACACGGAGGCCGAGCGGGTGCTCGGCGACGCCCTGCGCGGGCAGCGCCGGGAGTCGCTCGAGATCTTCACCAAGGCCTACTACCCGGTCGGTCCCCAGGGGCCGAACGACGCCGGGCTGTCCCGCAAGCACCTGATGGAGTCCATCGACGGGTCGTTGCGGCGACTCGGCACCGACTACGTCGACCTCTACCAGGCGCACCGGTGGGACAACGCGACGCCCCTGGAGGAGACGATGGTGGCCTTCGCCGACATCGTCCGTTCGGGCAAGGCGCTCTACATCGGCGTGAGCGAGTGGACCGCCGACCAGCTGCGCGCCGGGGCCGCGCTCGCCCGCGAGCTGCGCATCCCGTTCGTCTCGAACCAGCCGCAGTACTCGGCCCTCTGGCGCATCATCGAGGCGGAGGTCGTCCCCGCCTCGCGAGAGCTCGGCATCTCGCAGATCGTCTGGTCACCCGTGGCCCAGGGCGTCCTCACCGGCAAGTACCGGCCCGGCCGGCGACCGCCGTCGGGCAGCCGGGCCACGGACGGCAACGGCGGGGCCCAGATGATCACCCGCTTCCTGCGGGACGAGGTCCTGGAGCGTGTCGAGAAGCTGCGGCCCGTGGCCGACGAGCTCTCGCTCACCATGGCCCAGCTCGCCGTGGCCTGGGTGCTCCAGAACGACAACGTCTCCGCGGCGCTCATCGGGGCCTCGCGTCCCGAGCAGGTCGCCGAGAACGTCGCGGCGTCCGGCGTCGTCATCCCCGCCGAGCTCATGGCACGGATCGACGAGGCGCTCGGCGACGTCGTCGAGCGCGACCCGGCGAAGACCGCCGCGGAGTCCCCCGTGCGCTGAMEHRYLGSSGLQISEITLGNWLTHASQVEDEAAAACVHAALDAGITTFDTADMYADTEAERVLGDALRGQRRESLEIFTKAYYPVGPQGPNDAGLSRKHLMESIDGSLRRLGTDYVDLYQAHRWDNATPLEETMVAFADIVRSGKALYIGVSEWTADQLRAGAALARELRIPFVSNQPQYSALWRIIEAEVVPASRELGISQIVWSPVAQGVLTGKYRPGRRPPSGSRATDGNGGAQMITRFLRDEVLERVEKLRPVADELSLTMAQLAVAWVLQNDNVSAALIGASRPEQVAENVAASGVVIPAELMARIDEALGDVVERDPAKTAAESPVRPGPT0010570_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSTUMORICIDAL_COMPOUNDSTUMORICIDAL-TYPE_II_POLYKETIDE-MITHRAMYCIN_METABOLISM,PGPT0010570-mtmW-K15967NANA
AK018_00652831melC_1COG0395Melibiose/raffinose/stachyose import permease protein MelCGTGAGCCGCACCGTCTCGCGCCACGTCTACGGCGCCGTCGCCGTGCTGTTGTCGGCGGCCATCTTCCTCGTCCCGTTCGCCTTCATCGTCGTGCAGTCCCTCAAGACGGGCCAGGACTCCGCGAGCCTGCAGTTCTCCTGGCCGGTCGACATCGTGTTCTGGGAGAACGTGGTCGCCGTCTTCCAGGCACGCGACTACATGCTCATCACGGCGTTCATCAACAGCACGATCCTGACGGTGCTGTCGGTGTCCATCATGGTGGTGCTCGCGGCGATGATCGGCTGGGTGCTCGCCCGGCGGCCATCGCGCTGGAACGGCGTCATCACGTTCTTCGTGCTGGCAGGACTGATCGTGCCGCCGGCGATCGTCCCCACCGCCCGGCTCATGCAGTCCCTCGGCATCTTCAACACGCTCGGTGGTCTCGTCCTGATCGAGGTCGCCTTCGGGATGTCGTTCTGCGTCCTGCTCTTCCGGGCGTTCGTGTCGAACGTCCCGCGGGAGCTCGACGAGGCGGCCACGATCGACGGTGCGGGCCCGATCCGCCTGTTCTTCCAGATCGGCTTCCCGCTGATGAAGAGCGTCATCGTGACGGCCGTCGTCGTGCAGTCGGTGACGGTGTTCAACGACTTCGCGAACCCGCTGTACTTCGCTCCGGGCGAGGAGAACGCCACCGTGCAGCTGACGCTGTTCAACTTCCAGAGCCAGTTCCAGACGACCTGGAACCTGCTGTTCACCGACATTCTGCTCATCACGATCCCGCCGCTGGTGATGTACATCTTCTTCAACCGTCAGATCGTGGCCGGGATGACCTCCGGCGCCGTCAAGGGGTGAMSRTVSRHVYGAVAVLLSAAIFLVPFAFIVVQSLKTGQDSASLQFSWPVDIVFWENVVAVFQARDYMLITAFINSTILTVLSVSIMVVLAAMIGWVLARRPSRWNGVITFFVLAGLIVPPAIVPTARLMQSLGIFNTLGGLVLIEVAFGMSFCVLLFRAFVSNVPRELDEAATIDGAGPIRLFFQIGFPLMKSVIVTAVVVQSVTVFNDFANPLYFAPGEENATVQLTLFNFQSQFQTTWNLLFTDILLITIPPLVMYIFFNRQIVAGMTSGAVKGPGPT0016340_1861DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_00653933melD_1COG1175Melibiose/raffinose/stachyose import permease protein MelDATGGCGACACTCGCCCCTCCTGACGCCTCGAACACCGCGGCACGCCCGTCCGGGCGCCGCACGTCCTCGCGCAGGTACGCGCACCGGATGTATCCGCACTGGTTCCTCCTTCCCGGGGCCGCGGTCTTCGTCGTGCTGTTCGTCGTGCCGACGTTCGCGTCGTTCTACTACGCGTTCACCCGTTGGACGCTGTTCGACGTCGAGTTCATCGGGTTCGACAACTTCGTCACGTTCTTCAGCGACCCGCAGCTCAGCAAGGGATTCACGAACACCCTCATCTTCGGCAGCCTGACGTCCGGCCTGAAGATCGTGCTGGGACTGCTCATCGGCGTGCTGCTCACCTCCAACATCTGGGGGCGGGGGTACCTGCGCGCCGTCATCTTCTTCCCCGTGCTGGTGAGCACGGTCGGCGTGGGGATCACGTTCCAGGCGCTGATGGACCCGTACGACGGCGTCATCAACCAGTTCCTCGGGCTCTTCGGCATCGAGGGGCCGGGATGGCTGACGAATCCCGACCTCGCCCTCTACTCGATCATCCTCGTCGACGTGTGGCGCGGTGTCGGGCTGGCAGCGCTCATCTACATGGCGGGACTGGTCGCCATCCCGCAGGAGTACTACGAGGCGGCGCGGGTGGACGGCGCGGGTGCCTGGCACCGGTTCCGCAACATCACCGTCCCCCTCGTCCGCCCGGCGACCACCACGGTCATCATCCTGTCGCTGATCGGTGGGCTCCGAGAGTTCCAGCTGATCTGGGTCATGACCGGTGGCGGCCCCGGGTTCGCGAGCGACGTCCTCGCCTCGGTCATCTACAAGCAGTACGCCTACGGCTTCTTCGGACTGTCCACCGCGGGCAACGTGGTGCTCTTCGTCGTCGTCAGCGCCGTCATCCTGCCGCTCTTCTGGTGGCTCAACCGAAAGCAGACAGAACTGTGAMATLAPPDASNTAARPSGRRTSSRRYAHRMYPHWFLLPGAAVFVVLFVVPTFASFYYAFTRWTLFDVEFIGFDNFVTFFSDPQLSKGFTNTLIFGSLTSGLKIVLGLLIGVLLTSNIWGRGYLRAVIFFPVLVSTVGVGITFQALMDPYDGVINQFLGLFGIEGPGWLTNPDLALYSIILVDVWRGVGLAALIYMAGLVAIPQEYYEAARVDGAGAWHRFRNITVPLVRPATTTVIILSLIGGLREFQLIWVMTGGGPGFASDVLASVIYKQYAYGFFGLSTAGNVVLFVVVSAVILPLFWWLNRKQTELPGPT0016335_588DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_006541335msmE_1COG1653Multiple sugar-binding proteinATGTCTGCACACACGCATCGAGCAGGCCGGCTCGCGTTCGCCGGGCTGGCGACCACGAGCCTCGTGCTGGCCGGGTGCTCCGGCGGCGGGGAGTCCGGCGACGCCGAGGCTCCGGCCGAGGGGCCCGTGACCCTGGAGTGGTTCCAGGGGTCGGGGGTCGAGACCAACATCGCTACCGCCGAGGCGCTCGCGGAGACGTTCAACGCGTCGCAGGAGGACATCGTCGTCGAGGTCGACGCGTCCGGGCCGAGCGACTCCGCCGAGCTGGACAACCTCATGAAGACCCGCCTGGCGACCGGCGAGATGCCCGACATGTTCTGGTACAACAGCGGCTCGCTGCTGCAGGCGCTCAACCCCGACCAGACGATGCTGAACATCGCCGACGAGGAGTTCGTCGGGGACCTCGACGACTCGTGGACCTCGGCGGTGTCCACGGACGGGGGCGTCTTCGGCGTCCCGGTCCAGACGGCCGGCGGTGGCGGCATCTTCTACAGCATCCCCATCTACGAGGAGCTGGGGCTGGAGGTCCCGACCACGTGGGACGAGTTCCTGGAGAACTCCGACGCGATCCGGGACGCCGGCTACGTCGCGGTCCAGCAGACGCACGGTGACGCCTGGACGGCCCAGATCATGATCCTCGCCGACTTCTACAACGTGTGGGCCCACGACCCGGAGTGGGCGACCAAGTACACGGCCAACGAGGTGAACTTCGCCGACGACCCCGTCGCGGTCCAGGGCTTCACCAAGCTCCAGGACATCTACGAGCGGGACTACCTCAACGAGGACTACGCGTCGGCGCTGCTGAACGACGGGCTCGAGGCCGTGGCGACCGGCGAGGCCGCGCACTACCCGATGCTCGGGTTCGCGCAGGCGACGATCGCCACGAACTGGCCCGACCAGGCCGAGGACGTCGGATTCTTCGGCGTGCCCGGCGAGGCCGACACGGAGCCCGGCACGACGATCTGGATGCCGCCGGCGCTCTACGCACCGGCGAACACGGAGCACCCGGACGCCGTCAAGGAGTTCATGGCCTTCGTCGCGAGCCCGGCCGGCTGCGACGCCATCAGCGAGGCGCTCGGCGCGACCGGCGAGTACCTGGTCGACGGGTGCACGGTGCCGGACGAGGCGCCGCGCATCGTGGCGGACTTCGGGCCGTACTTCGAGGCGGGAACCGTCGCACCCGCGCTGGAGTTCCTCTCACCCGTCAAGGGGCCGAACCTCATGCAGATCTCCGTCGAGGTGGGCTCGGGGGTCCGTGACGGCCAGAGCGGTGCCGAGCTGTACGACGCGGACGCCGCCAAGCAGGCGCAGCAGCTCGGCCTGCCGGGCTGGTAAMSAHTHRAGRLAFAGLATTSLVLAGCSGGGESGDAEAPAEGPVTLEWFQGSGVETNIATAEALAETFNASQEDIVVEVDASGPSDSAELDNLMKTRLATGEMPDMFWYNSGSLLQALNPDQTMLNIADEEFVGDLDDSWTSAVSTDGGVFGVPVQTAGGGGIFYSIPIYEELGLEVPTTWDEFLENSDAIRDAGYVAVQQTHGDAWTAQIMILADFYNVWAHDPEWATKYTANEVNFADDPVAVQGFTKLQDIYERDYLNEDYASALLNDGLEAVATGEAAHYPMLGFAQATIATNWPDQAEDVGFFGVPGEADTEPGTTIWMPPALYAPANTEHPDAVKEFMAFVASPAGCDAISEALGATGEYLVDGCTVPDEAPRIVADFGPYFEAGTVAPALEFLSPVKGPNLMQISVEVGSGVRDGQSGAELYDADAAKQAQQLGLPGWPGPT0016330_1403DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
AK018_006551803hypothetical proteinGTGGAGGACGTCCAGGAGTTCGGTCCCGACGACGGCCCGCACTTCAGCGCGGGGACGATCGGGCTGGCCGCCGTCGTGCGGCAGCTGACCGACAACGGCCACGGCGAGGTGCTCTTCGACGCTCTCCAGACGGACACCGAGCCCGGCTACGGCTACTTCATGGAGCCGACGACGGCGAACCCGGACGGGTTCACCACCATCGGTGAGCGGTGGTCGCGTGGCAGCTCGAAGAACCACGTGATTCTCGCGCAGATCGTGGAGTGGTTCCAGACGGGTCTGGTCGGCATCGACCGGACGGCCGGGTCGGTCGGGTACGACGAGCTCGTCTTCAAGCCGCAGCCCGCGGGCGACCTGACGTGGGTCGAGGGCAGCTTCGAGACGCCGCGAGGCGTGGCGAGCAGCCGCTGGGACAAGACCGACGAGCACTTCACGCTCACGGTCGAGGTGCCCGCGAACACCACGGCCGAGGTCTGGGTGCCCACGGACGGGGACCAGACGGTCCTGACGCCGAAGCGGGCCACGTTCGAGCGTGTCGACGGCGACTTCGCGGTGTACTCCGTGGGTGCCGGCGAGTACACGTTCGTCGCGCCGGCCGAGGGGTACGACGACCTCGACGGTGCGATCCAGGACGCCGGGCTGGACGGCGATCTCACGGCGGACCTGCGTGCCGACGTCGAGACCGCTCGGATCGAGTCGGCCGACGGCGACGCGGCGGCCACGGTCGCGGCGCTCGAGGAGCTCGCGGAGACGCTCCGCGGTGCCCAGGACGTCCCGGACGGCGTGCGGTCCGACCTGCTGCGGCAGGCCGGCTGGCTCGCCTACGAGGTGCGTGACTACGCGGGCATCTCGCAACCACGGCCGGGTGTTGCACTCGTCGCACCGTCCTCGGGCGGACCGTTCGGCGCGCTGGACCTGCAGGTGGACGCCGACGCCGACATCGGCATCGACCGGATCGTCGCCAACGTCTACCAGGGAGGCACGCTCGTCGAGAGCACCCAGTCGCGGTTCGACGCGGAGCAGGCGGCGAGCCACACCGCGTCGGTCGACCTGCCGGAGGGCACGTACCAGCTGCGGTACAACGCCCGCGACGCCGGCGGTCGCATCTCGGCGACCGGCAACCACACGTTCCGCATCGACGCCACGGCACCGACCGTGACCGTCAAGAACGGCAACAGGTTCACGGTCGGCAGGGACGGGACGTACTCGTTGGTGAGCTTCAAGCTCCATGACCCGGGCAAGATCGACAAGGTCGTGCTCAACGGCAAGGAGAAGGATCTCAGCGACAACAGGTGGTCGGATCTCAACTTCGTCGAGCCGGGCAGGTTCGGCGCGGTCGAGGGCGAGAACACCCTGGTGGTGCACGACGTGGCGGGCAACACCCGGACCGTCGAGTTCACGCTCGACACCGGTGCGCCGGAAGTCACGGTCAAGTCGGGGGAGCGGTTCACGGTCGGCGAGGACGGGACGTACTCGTTGGTGAGCTTCAAGCTCCATGACCCGGGCAAGATCGACAAGGTCGTGCTCAACGGCAAGGAGAAGGACCTCAGCGACAACAGGTGGTCGGATCTCAACTTCGTCGAGCCGGGCAGGTTCGGCGCGGTCGAGGGCGAGAACACCCTGGTGGTGCACGACGTGGCGGGCAACACCCGGACCGTCGAGCTCACGATTGTGAAAAANNNNNNNNNNGGGCCCACCCCGCGCCCGGCGTGCGTGGGGGGGGGCCCCCCCCCCCCCCCCCCCGGGGGGCGCGGGGGGGGGGGGGCGGGGGGGGGGGCCGGCCCCCCGACCGTCGTCTTCCGGTGAMEDVQEFGPDDGPHFSAGTIGLAAVVRQLTDNGHGEVLFDALQTDTEPGYGYFMEPTTANPDGFTTIGERWSRGSSKNHVILAQIVEWFQTGLVGIDRTAGSVGYDELVFKPQPAGDLTWVEGSFETPRGVASSRWDKTDEHFTLTVEVPANTTAEVWVPTDGDQTVLTPKRATFERVDGDFAVYSVGAGEYTFVAPAEGYDDLDGAIQDAGLDGDLTADLRADVETARIESADGDAAATVAALEELAETLRGAQDVPDGVRSDLLRQAGWLAYEVRDYAGISQPRPGVALVAPSSGGPFGALDLQVDADADIGIDRIVANVYQGGTLVESTQSRFDAEQAASHTASVDLPEGTYQLRYNARDAGGRISATGNHTFRIDATAPTVTVKNGNRFTVGRDGTYSLVSFKLHDPGKIDKVVLNGKEKDLSDNRWSDLNFVEPGRFGAVEGENTLVVHDVAGNTRTVEFTLDTGAPEVTVKSGERFTVGEDGTYSLVSFKLHDPGKIDKVVLNGKEKDLSDNRWSDLNFVEPGRFGAVEGENTLVVHDVAGNTRTVELTIVKXXXXGPTPRPACVGGGPPPPPPGGRGGGGAGGGAGPPTVVFRNANANANANA
AK018_00656741hypothetical proteinATGGCGGCGCAGCGGCGGCACTCGGACGAGCAGCTCGAGCACGCCGTCTCTGCGGGGACGTCGTGGCGCGGGACGCTGCGCCTCCTCGGCCTCAGCGCGACTTCGGCGTCGGCGATCCGCTCGGTCCGCGCGCACGCCGATCGTCTGGGACTGGACTACGGCCACTTCACCGGGTCTCGCCGCTGGTCCGACGCCGACCTGCAAGAAGCCCTCGTCGGGGCCACCGACTGGGAGGACGCTGCCCGTCGGCTGGGACTGCGGGGAGGCTCCCGCGTCGCGGTGGTCAAGCGCCATGCGGCGCGCCTCGGCCTCGACGGCGGCTCGTCGTCGTCCCAGAGGCACGTACCGGCACCGCCCCCGGCAGCGCCGGACCTGGCGAACCTGCACCGCGCCGGACCGCAGCTCGCCGCGGCCTGGTACACCCTGTGCGGGAGGGACGTGTGCTGGCCCCTGGAGCCCTGTCGCTACGACCTCGTCGTCGACGTCGCCGGGCGTACCAGGCGCATCCAGGTCAAGACGACCGTCACCCGGGCCGGCTCGACGTGGCAGGTGTTCCTGTCGTCCGGCGGGAGCGACCGGAAGGTCTACTCACCCGACGAGATCGACGACTTCTTCCTCATCGACGGCGACCTGCAGTACTACCTGGTGCCGATAGAAGCTGTCCGAGGCATGCACGCGATCCATCTCAGCGCCTACGAGAACTATCGGCTCCCGCAGCTTCCGGCGCCTGATGCGACGTGAMAAQRRHSDEQLEHAVSAGTSWRGTLRLLGLSATSASAIRSVRAHADRLGLDYGHFTGSRRWSDADLQEALVGATDWEDAARRLGLRGGSRVAVVKRHAARLGLDGGSSSSQRHVPAPPPAAPDLANLHRAGPQLAAAWYTLCGRDVCWPLEPCRYDLVVDVAGRTRRIQVKTTVTRAGSTWQVFLSSGGSDRKVYSPDEIDDFFLIDGDLQYYLVPIEAVRGMHAIHLSAYENYRLPQLPAPDATNANANANANA
AK018_00657675ucpA_1Oxidoreductase UcpAATGCCGACCCTGGCCATCATCGGAGCCGGTCCGAACCTGGGAGCCGCCGTCGCGCGACGGTTCGCCCGCGAGGGGTACGCCGTCGCGCTGATCTCCCGCGACCAGGCCAAGTTGGACGCGCTGGCCGACGAGCTCGCCGACACCGGCGTGAGCGCGCGCGGCTACGCCGCCGACGTCCGCGACGGCGCCGCCCTCGAGCAGGCGCTCGCGCGCGCGGCCGACGACCTCGGCCCGATCACGGCGCTGCAGTACAGCCCGCTGCCCGCCCGCGAGTACCTGAAGCCGGTGCTGGACCTGACCCCCGAGCTCGCCCTCGACGCCTTGCGCTTCTCGGCGCTCGGCCTCGTGACCGCCGTGCGGGCGGTCCTGCCCGGCATGCGTGCCGCGGGTGAGGGCCGCATCGTGCTGATCAACGGGGGCACGTCCGTCCGGGCCCGCGCCGGGTTCGCCGGCACCTCCGTGGCCTTCCCCGCCGAGAGCGCCTACGGCGAGATGCTGCACGAGGCGCTCGCGGACGAGGGGATCCGTGTCGCTCAGCTCGTCATCCCCGGTGCCATCCCGAAGCTGCAGCTCGAGAACGGCGTCGAGGATGTCGCCGAACGCGTCTGGGAGCTGGCCAGCACTCCCGGGGACTTCCGCACCCTGCTGATCCCGCTCGACGAGGGCCGCGAGTAGMPTLAIIGAGPNLGAAVARRFAREGYAVALISRDQAKLDALADELADTGVSARGYAADVRDGAALEQALARAADDLGPITALQYSPLPAREYLKPVLDLTPELALDALRFSALGLVTAVRAVLPGMRAAGEGRIVLINGGTSVRARAGFAGTSVAFPAESAYGEMLHEALADEGIRVAQLVIPGAIPKLQLENGVEDVAERVWELASTPGDFRTLLIPLDEGRENANANANANA
AK018_006581737hypothetical proteinATGACAACAGGATCTCGTGCGGCAGGACGGGCACTCGCCTCCTGCTGCGCCGTCGCGGTCGCCGCGACCGGCCTGGTGGCCGTGGCGCCGCCGGCCACCTCCCAGCCGACGGCGGACTGCGCCGTCGCCCACCCCGTGTCCGACCTGGTCGGCGGTGCGCCGGTGCACGGCCTGACGGTCAGCAGAGGAACGACGCCGCAGCCCTTCACCGGAGAGGTGCTCGGCGTGCTGTCGAACGGGATCGCCCCGGGCCTCGACATGGTCGTGGCCGAGCTGTCCTCGCCGGCGATCGATGCCGCGGGCGGCATCTGGCAGGGCATGTCCGGCTCCCCGGTGTACGCCGAGGACGGCCGGCTGATCGGCGCGGTCGCGTACGGGCTGGCGTGGGGCAGCTCGCCGGTGGCCGGGATCACCCCGTTCGAGGACATGGACGACTTCCTCGGGGCCGCCGTCGCGGCGCCGCGGGTGGAGGTGGGACCGCGGATGGCCGCGCGGATCGCCGCCGAGACCGACCTGACGCGCGCGCAGGCCGGCCGCGGGCTGGAGCAGCTGCCGATGCCGGTCGGCGTCGGCGGGGTGGGGCTGGCTCGTGCCGAGAAGGCGGCCCGCGCCCGCGGCAGCACCCTGGTCGACGCCTCCTCCACCAGGATCGGCCGCTCGGGCGGCGCGAGCGCCGCCGGCATCGACACGGTGACGGCCGGCGGCAACGTGGCGGCCGTGCTGGCGCACGGGGACGTGACGCTGGCCGGCGTGGGTTCCGTGACCTCGGTGTGCGGCGACCGTGTGGTGGCGTTCGGGCACCCGATGGGCTTCACGGGACGCACTCGCCTGGGACTGGCCGCCGCCGACGCCGTGTACGTCCAGCCCGACCCGCTCGGCGTGCCGTTCAAGGTGGCGAACCTGGGCGAGCTGGGCGGCACGGTCACCGACGACCGGCTGGCCGGTATCGCCGGGACGTTCGGCCCGGTTCCCGCGCCGACGACATTCACCTCGCGCGTGGCCTACGCGGGAGCGGCCCGTACCGGGACCACCGAGATCCTGCACCGTTCCGCGGCCGCCGACGTCGCCCTGTTCGGCGTGCTCGGCAACCACGACCGGGTGGTGGACGGCGTGGTCGGCGGGTCCCAGACCCAGACCTGGACGATCACGGGGACCCACGGCGGTGAGTCGTTCCGCCTGCGGTACGCGGATCGGTACCGGTCCGGTTCCGACATCGGGTGGACGGGCGCCTTCGACCTGGCGTCGGTCGTGGCGACGCTGTCCTCGTCGTCGAGGACCCGTCTGGACTCGGTGCGCAGCGAGATCACCGTCCGTGACGACCGGCGCACCTTCAAGGTCGCGAAGGTCCGCCAGCGCACCGGCGGGAAGTGGGTCGACGTCACCGGCGGCACCGCCAAGGTCCGGGCGGGGGGCACCCTGAAGCTGCAGGCGGTGCTCAGCGGGTCCGACGGCATTACGCGCACGGTCCGGCGCGACGTGCGGGTCCCGAAGCGGCTGCAGGGCGAGCGCGGCGTGGTGTCGGTGGTGGGCGGCAACGTCTACCAGGACGACTTCTGGTCCGTGCGCTCCTTCGACGCCGTCCGCACGGCTCTGCGGAAGAACCTGCGCAACGACGAGGTGGAGCTGACCGTCAGCCTCGGGGGAGGCAAGGACTCGCTGGAGCGGGTGCGCCGGTCCGACCCGCTGCCGCGGGTCGTCGGCGGGCAGAAGCACGTGCGGGTGAAGGTGACGCGCTGAMTTGSRAAGRALASCCAVAVAATGLVAVAPPATSQPTADCAVAHPVSDLVGGAPVHGLTVSRGTTPQPFTGEVLGVLSNGIAPGLDMVVAELSSPAIDAAGGIWQGMSGSPVYAEDGRLIGAVAYGLAWGSSPVAGITPFEDMDDFLGAAVAAPRVEVGPRMAARIAAETDLTRAQAGRGLEQLPMPVGVGGVGLARAEKAARARGSTLVDASSTRIGRSGGASAAGIDTVTAGGNVAAVLAHGDVTLAGVGSVTSVCGDRVVAFGHPMGFTGRTRLGLAAADAVYVQPDPLGVPFKVANLGELGGTVTDDRLAGIAGTFGPVPAPTTFTSRVAYAGAARTGTTEILHRSAAADVALFGVLGNHDRVVDGVVGGSQTQTWTITGTHGGESFRLRYADRYRSGSDIGWTGAFDLASVVATLSSSSRTRLDSVRSEITVRDDRRTFKVAKVRQRTGGKWVDVTGGTAKVRAGGTLKLQAVLSGSDGITRTVRRDVRVPKRLQGERGVVSVVGGNVYQDDFWSVRSFDAVRTALRKNLRNDEVELTVSLGGGKDSLERVRRSDPLPRVVGGQKHVRVKVTRNANANANANA
AK018_00659564hypothetical proteinATGGCCGAGATCGTGCTCTTCCACCACGCCTGCGGGCTCACCGACGGCGTCCGCGAGTTCGCCGGGACGCTGGACGACGCCGGTCACCGCGTGCACCTGCCCGACCTGTACGACGGCGTGACGTTCGCGGACGTCGACGCCGGCGTGGCGCACGCCGTGTCGCTCGGTGAGGGCGAGATCGCACGGCGCGCCGCCGCGGCCGTCGCGGACCTGCCGACCGACGTCGTCTACGGCGGCATGTCGATGGGCACCGCGCGCGCGGCCGAGGCCGTCCTGCAGCGGCCCGGCGCCCGCGCCGCGTTCTTCCTCTACGGCGCGGTCGCGCCGTCGTGGTGGGACGCGACCTGGCCGGCCGGGGTGCCCTCGCAGGCCCACGTGACCACCGACGACCCGTGGCGCGAGCCGGAGGCGGAGCAGGAGTACGCCGCCGCGGCGCCGGGCGGCGAGCTCTTCGTCTATCCCGGCGCCGGACACCTGTTCGCCGAGCCGGGGCACCCCGACCACGACGCCGACAGCGCCGCGCTGGCCACCCGGCGCGTGCTCGAGCTCCTCGCCGCGCTGTAGMAEIVLFHHACGLTDGVREFAGTLDDAGHRVHLPDLYDGVTFADVDAGVAHAVSLGEGEIARRAAAAVADLPTDVVYGGMSMGTARAAEAVLQRPGARAAFFLYGAVAPSWWDATWPAGVPSQAHVTTDDPWREPEAEQEYAAAAPGGELFVYPGAGHLFAEPGHPDHDADSAALATRRVLELLAALNANANANANA
AK018_00660366hypothetical proteinATGGCGCACCGCATCTTCACCACGAGCTTCGCGAGCATCTACCCGCACTACGTGACCAAGGTCGAGCGCAAGGGCCGCACGGTCGCGGAGCTGCACCATGTCATCACCTGGCTCACGGGCTACGACGACGCGGGGCTGCAGCGGGTGCTCGACGACGAGGTCGACATGGCGACGTTCTTCGACCGGGCGCCGCGCATGAACCGCGATGCCGCACTGATCACCGGGGTGATCTGCGGCCACCGCGTCGAGGACATTGAGGACCCCCTCATGCAGCAGATCCGCTACCTGGATAAGCTCGTCGACGAGGTCGCGCGCGGCAAGAAGATGTCGTCGATCCTGCGCGGGACGCCGGCCTCCGCCTCCTGAMAHRIFTTSFASIYPHYVTKVERKGRTVAELHHVITWLTGYDDAGLQRVLDDEVDMATFFDRAPRMNRDAALITGVICGHRVEDIEDPLMQQIRYLDKLVDEVARGKKMSSILRGTPASASPGPT0003760_123DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_006611200COG1063putative zinc-binding alcohol dehydrogenaseATGCGTGCACTGACCTGGCAGGGCAACGAGAGCGTCGCCGTCGAGGACGTTCCGGATCCCCGCATCGAGCAACCGACCGACGCGGTGATCCGTGTGACGTCGACCGCCGTCTGCGGCTCGGACCTGCACCTGTACAGCGTGCTGGGGATGTTCATCGACCCGGGGGACGTCCTGGGCCACGAGGCGATGGGTGTCGTCGAGGAGGTCGGGACCGAGACCGGAGACCTCGCGGTCGGAGACCGGGTGGTCGTGCCCTTCACCATCTCCTGCGGTCACTGCTGGATGTGCCGTCGAGGTCTGCAGAGCCAGTGCGAGACCACCCAGGTGCGGTCCCAGGGCATGGGAGCCGCACTGTTCGGCTACACGCGGCTGTACGGTCAGGTCCCGGGCGGGCAGGCACAGTACCTCCGCGTGCCGCAGGCGCACTACGGACCGGTGCGGGTACCGGACGACGGCCGGCCGGACGAGAGGTACCTGTATCTGTCCGACATCCTGCCCACGGCATGGCAGGGCGTCCGGTACGCGGACGTTCCGGAAGGCGGGAGCGTCGTGGTCCTCGGCCTGGGGCCGGTGGGACAGCTCGCCGCCCGGATCGCTCGATACCGGGGTGCCGGGCTCGTCGTGGGTGTCGACCCCGTCGAGGAGCGACGTGCCATGGCCGAACGGCACGGTGTGCGAACCGTCGATCCCACCACGGCGGATCTCACGGGGGTGGTCGCAGATCTCACGTCGGGCCGCGGGCCCGACTCGGTGATCGACGCCGTCGGCATGGAGGCGCACGGTTCGGGGGGCGCCGAGCTGGTCCAGAAGCTGGTCGCGCGCCTGCCGGACGCGGTGGCCGCGCCCCTGACGCAACATGCCGGCACCGACAGGCTCGCCGCCCTGTACACGGCCTTCGATCTGGTGCGTCGAGGTGGGACGGTCTCGCTCTCCGGCGTCTACGGCGGAGCGCTCGACCCGCTGCCCATGATGCAGCTCTTCGACAAGCAGGTGACGCTGCGGATGGGGCAGGCGAACGTCCGGCGGTGGACCGACGAGCTGCTGCCTCTGGTCGAGGACGCTGCCGATCCGTTGGGAGTCCTGGACCTGCGGACGCACCGTCTCCCCCTCGAGCACGCGGCCGAGGCGTACCGCACGTTCCAGCGCAAGGAGGACGGCTGCATCAAGGTCGTGCTCGACCCCTGGCGGGATGCCGGCTGAMRALTWQGNESVAVEDVPDPRIEQPTDAVIRVTSTAVCGSDLHLYSVLGMFIDPGDVLGHEAMGVVEEVGTETGDLAVGDRVVVPFTISCGHCWMCRRGLQSQCETTQVRSQGMGAALFGYTRLYGQVPGGQAQYLRVPQAHYGPVRVPDDGRPDERYLYLSDILPTAWQGVRYADVPEGGSVVVLGLGPVGQLAARIARYRGAGLVVGVDPVEERRAMAERHGVRTVDPTTADLTGVVADLTSGRGPDSVIDAVGMEAHGSGGAELVQKLVARLPDAVAAPLTQHAGTDRLAALYTAFDLVRRGGTVSLSGVYGGALDPLPMMQLFDKQVTLRMGQANVRRWTDELLPLVEDAADPLGVLDLRTHRLPLEHAAEAYRTFQRKEDGCIKVVLDPWRDAGPGPT0006355_1115DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121NANA
AK018_00662417hypothetical proteinATGGCCACCTTCTCCTCCGTCACGCGCCCGCACGTGCTGTCCGCGATCGCCGAGCACGACCACCGCGGGCAGGGCGCGTTCCTCAAGCTGTACGGGTTCACGCCGACGCCGGGGGTCACCCTGACGCACGAGGGTCGCACCTACGACGCGACGGCGCTCCTCGCCGTCGCGCACCGTTACGCCACCGGTCGGGCGGCTCTGCCGGAGGAGATGACCGGGGGCAAGGTCGCCGTCGGGGCCCTGCTGGCCAAGCGCGGCTTCGAGGTCTCGGGCGGGCGCGTGGCGACGGCCGGCCGCAGCGCTCCGAAGGCCCCGCGCGCCACCCGCCGGGCTCCGGAGCCGGAGCGCCCGACCCCGGTGTGCCCGTCCTGCTTCATGGCGCTGCCCGCCACAGGGGTCTGCGACAGCTGCGGCTGAMATFSSVTRPHVLSAIAEHDHRGQGAFLKLYGFTPTPGVTLTHEGRTYDATALLAVAHRYATGRAALPEEMTGGKVAVGALLAKRGFEVSGGRVATAGRSAPKAPRATRRAPEPERPTPVCPSCFMALPATGVCDSCGNANANANANA
AK018_00663606hypothetical proteinATGCACCGGTCCTCCGCTCTCGTCGTGCTGGTACTGCTCGGCGCGAGCGCCGTCTGCCTGGCCCTGGCACCCCTCGCCCTGCCCGACAGCTACGACGTCGTGCGCCTCGCCCTGACACGGGCCGGAGCCCAGGGCGTCCCCGGCGCCTGGGTGGCCCGCACCGGGTACGCGCTGCTGGGCGTCGCCGTCCTGCTGGAGGCCGCCCGTGCCGGGGACGCCTGGGGTCCGGTCGGTCGCGGCGGCCACGCCGTCTTCGGCACCGCCATGGTCGCCCTCGCCGTGTTCTCCGCGAGCCCCTGGTACGGCGGCGCCGGCGACCGGGTCGAGGCCGGCCTGCACACCTGGGCCGCCACGACCGCCGTGCTGGCGTTCTTCGTCGGCGTGCTGGGCGTCCGCATCCGACGCGGGACCCGGCCCGGCCGGATCGCGGTGATCGACGTCGTGGCGCTCGCGGGCGTGCCGGTGCTGGCGCTGGCCGCGGAGACGATGCCGGGGGGCGCCGGCGTGACCGAGCGGCTCCTGTTCGCGATCGGGCTCGCCTGGTACGCCACGGAGGCGGTGCGGCTCGCCCGCCCTGACGGCCCGGGACGGGTGCGCGAGCTGTGAMHRSSALVVLVLLGASAVCLALAPLALPDSYDVVRLALTRAGAQGVPGAWVARTGYALLGVAVLLEAARAGDAWGPVGRGGHAVFGTAMVALAVFSASPWYGGAGDRVEAGLHTWAATTAVLAFFVGVLGVRIRRGTRPGRIAVIDVVALAGVPVLALAAETMPGGAGVTERLLFAIGLAWYATEAVRLARPDGPGRVRELNANANANANA
AK018_00664924Formate dehydrogenase, mitochondrialATGAGCGCCCGTCCGGCGATCAGCGCCGCCCCGTCCACCCCCGCCTGGGTGCCCGGGGCCGTCGAGGCGTCGGGTGCCCGCCTCGTCCCGCTCGGCGCCGAGACCGAGGGCCTGCTCTGGTTCGGCCCGCTCGGCGTCGACGGGCTGGGGCCCGCACTCGCCTCGGCGCCCCAGGTCCGCTGGGTGCAGCTTCCGTCGGCCGGCGTCGACGCCGCGCTCGACGCCGGGCTGATCGACTCCGACCGCACCTGGACGTCGGCCAAGGGCGCCTTCGCGGAACCCGTCGCGGAGCACGCCCTGGCGCTGACGCTCGCGGCGCTGCGGCAGCTCCCGGCACGGGCCAGGACGCGCACCTGGGGCACCGAGGCCGGCCGGTCCCTGTACGACGCACGCGTGCTGGTCCTCGGGGCCGGCGGCATCGCCCGCTCGTTCCTCGAGCTGCTCGCACCGTTCCGGACCCGCAACGTCGTGGTCCGGCGTCGGACCGCGCCCGTACCCGGAGCGGAGCGGGTCGTCACGGGCGCCGACCTGCACACCGAGCTCGCCGAGGCGGACGTCGTGGTGCTCGCCGCGGCACTCACCGAGCAGACCCGCGCCCTGGTCGGCCCGCAGGAGCTGGCGGCGATGCGGCCCGGTGCGACGCTCGTGAACATCGCGCGCGGCGGTCTGGTCGACACCGCCGCCCTGGTGGCCGCCCTGCGGTCCGGGCAGGTCGGGGCGGCCGCGCTGGACGTCACCGACCCCGAGCCCCTGCCGGACGGCCACCCGCTGTGGGAGCTGCCGAACGCGCTCGTCACGCCGCACACCGCGGACACCCCCGAGATGGTCGAGCCGTTGCTGCGCCGTCGCGTGGTGGAGAACCTGGACCGGTTCGTCGCCGGCGAGGAGCTGGACGGCGTCGTCGACCCCGCCACGGGCTACTGAMSARPAISAAPSTPAWVPGAVEASGARLVPLGAETEGLLWFGPLGVDGLGPALASAPQVRWVQLPSAGVDAALDAGLIDSDRTWTSAKGAFAEPVAEHALALTLAALRQLPARARTRTWGTEAGRSLYDARVLVLGAGGIARSFLELLAPFRTRNVVVRRRTAPVPGAERVVTGADLHTELAEADVVVLAAALTEQTRALVGPQELAAMRPGATLVNIARGGLVDTAALVAALRSGQVGAAALDVTDPEPLPDGHPLWELPNALVTPHTADTPEMVEPLLRRRVVENLDRFVAGEELDGVVDPATGYPGPT0019780_588DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_OXALIC_ACID_DERIVATE_UTILIZATION,PGPT0019780-gyaR-K00015NANA
AK018_006652319yicI_1COG1501Alpha-xylosidaseATGAAGTTCACCGACGGTTTCTGGCACGCCCGCCGAGGGGTCGCCATCCACTACGCCCGCGAGGTCGACCGGCTCACGGCCGCCGACGGCGCGCTGCACGCGATCGCGCCCACGAAGGTCGTGCGTCACCGCGGTGACACCCTCAACCTCCCGGTCGTCACCACGTCGGTCTCGGCCCCCATGGAGAACGTCGTCCGGGTGCGCCACACCCACCACAAGGGCGCGGGTGAACCCTTCCGGTTCCCCGTGAACACCGGCGGCGACGTCGGCGAGGCCGTCGTGACGGGCGACGAGGGCACCGTCACCTCCGGCGCGCTGAGCGCCCACCTGTCCGTCGGGAAGACCTGGTCGCTCGACTTCCGCGCGGACGGCCGGACGCTGACCCGGTCCGGCGGCAAATCCGCCGCCTGGGTCGACGTCTCCCCCGGTGCCGCCGTCGACCACGGGTCCCCCCAGCTCGAGCGCGACGGCCGCACGAGCTACATGTTCGACCAGCTCGACCTCGGCGTCGGCGAGCTCGTCTACGGCCTGGGCGAGCGGTTCGGACCGGTGGTCAAGAACGGCCAGAGCGTCGACATCTGGAACGAGGACGGCGGGACGTCCAGCGAGCAGGCCTACAAGAACGTGCCCTTCTACCTGACGAACGCCGGCTACGGGGTGTTCGTCGACGACCCCGGGCACGTGTCCTACGAGGTCGGCTCCGAGGCCGTCGAGCGGGTGCAGTTCTCCGTGCCCGGCGAGACGCTGGACTACTACGTGATCTACGGCCCCGACCCGAAGTCGATCCTCGAGCGGTATACGGCTCTGACCGGCCGGCCCGCCCGGGTGCCCGCGTGGTCCTACGGCCTGTGGCTGTCGACGTCGTTCACCACCGACTACGACGAGCAGACGGTGAGCTCGTTCATCGACGGGATGGCCGAGCGGGAGATCCCGCTCAGCCTGTTCCACTTCGACTGCTTCTGGATGCGCGAGTTCACCTGGTGCGACTTCGAGTGGGACCCGCGGGTGTTCCCCGACCCGGAGGGCATGCTCGCCCGCCTGCACGACCGCGGCCTGCGCGTCTGCGTGTGGATCAACCCCTACATCGCTCAGCAGTCGCCGCTGTTCGACGAGGGCATGGCCGCGGGCTACCTGGTGAGAAACCGCGACGGCAGCGTCTGGCAGTGGGACCGCTGGCAGGCCGGCATGGCCCTGGTGGACTTCACCAACCCCGACGCCACGGCCTGGTACCAGGACAAGCTGCGCCGGCTGGTGCGCCAGGGGGTGGACGCCTTCAAGACCGACTTCGGCGAGCGCATCCCGACCGACGTGCAGTACTTCGACGGCTCCGACCCCGAGCGGATGCACAACTACTACACCCACCTGTACAACCAGGCGGTGCACGAGGTCCTCGCCTCCGAGCGCGGCGCCGACGACGCCGTGCTGTTCGCCCGCTCCGCCACCGCCGGCGGCCAGCAGTTCCCCGTCCACTGGGGCGGCGACAACACCGCCTCGTACGTGTCGATGGCCGAGTCGCTGCGGGGCGGGCTCTCCCTGGCCTACAGCGGGTTCGGCTACTGGAGCCACGACATCGGCGGCTTCGAGATGACGCCGGACGCCGGGGTCTTCAAGCGCTGGACGGCGTTCGGCCTGTTCTCGAGCCACTCGCGGATGCACGGCAGCGGGTCCTACCGGGTGCCGTGGATGTTCGGCGAGGACGAGTCCGACCCGACCGGCGCCGTCGCCGTGACCCGGAAGTTCGCGCGGCTGAAGAACCGGCTCGCGCCGTACCTAGTCGCCACGGGCGAGGAGGCGCACCGGCGTGGCACACCGATGATGCGGCCGATGCTGCTGGAGTTCCCCGAGGACCTCACCGTGGCGCACCTCGACCGCCAGTACATGCTCGGCGGCGACCTCCTCGTCGCCCCGGTCTTCAGCGCCAAGGGTCAGGTGGACCTCTACCTGCCCGCGGGCGAGTGGGCCGGGCTGCTCACCGGCGAGCGCATCACGGGCGGCCGGTGGGTCCGCGAGCAGCACGACTTCGACTCGCTGCCGGTCTACCTGCGTCCCGGCGCCGTCGTGCCGCTCGCCCGCCACGAGAACCGGCCCGACGCGGACCACCTCGACGGGCTCACCCTGCTGGTGCACCCCGACCCGGACCCCGACTGGACGCGCACCGTCCAGGTCGCCGGTACCGACGGCTCCGCGGTCTCCTTCACGGTCCGGCGTCGCGGCGACGTGGTGGAGGCCGAGTCCGACCAGCAGGACGGGTGGTCCCTGCAGGTCGCCGGCGGCGACGTCGCACCGGCCGCAGAGGGCCGCACGGAGGTGCGCGCATGAMKFTDGFWHARRGVAIHYAREVDRLTAADGALHAIAPTKVVRHRGDTLNLPVVTTSVSAPMENVVRVRHTHHKGAGEPFRFPVNTGGDVGEAVVTGDEGTVTSGALSAHLSVGKTWSLDFRADGRTLTRSGGKSAAWVDVSPGAAVDHGSPQLERDGRTSYMFDQLDLGVGELVYGLGERFGPVVKNGQSVDIWNEDGGTSSEQAYKNVPFYLTNAGYGVFVDDPGHVSYEVGSEAVERVQFSVPGETLDYYVIYGPDPKSILERYTALTGRPARVPAWSYGLWLSTSFTTDYDEQTVSSFIDGMAEREIPLSLFHFDCFWMREFTWCDFEWDPRVFPDPEGMLARLHDRGLRVCVWINPYIAQQSPLFDEGMAAGYLVRNRDGSVWQWDRWQAGMALVDFTNPDATAWYQDKLRRLVRQGVDAFKTDFGERIPTDVQYFDGSDPERMHNYYTHLYNQAVHEVLASERGADDAVLFARSATAGGQQFPVHWGGDNTASYVSMAESLRGGLSLAYSGFGYWSHDIGGFEMTPDAGVFKRWTAFGLFSSHSRMHGSGSYRVPWMFGEDESDPTGAVAVTRKFARLKNRLAPYLVATGEEAHRRGTPMMRPMLLEFPEDLTVAHLDRQYMLGGDLLVAPVFSAKGQVDLYLPAGEWAGLLTGERITGGRWVREQHDFDSLPVYLRPGAVVPLARHENRPDADHLDGLTLLVHPDPDPDWTRTVQVAGTDGSAVSFTVRRRGDVVEAESDQQDGWSLQVAGGDVAPAAEGRTEVRAPGPT0019340_667DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0019340-xylS|yicI-K01811NANA
AK018_006661011purR_1COG1609HTH-type transcriptional repressor PurRGTGGTGACCATGCAGGACGTGGCCGACCGGGCCGGCGTCTCCCTGACGACGGTCTCGTTCGTCGTCAACGGCACCAAGCCCGTGGCCGAACGGACGCGGCAGCGCGTGCAGACCGCGATGGCCGACCTCGGCTACCGCCGCAACGTCGTCGCCCGTGCGCTGGCCAGCCGACACAGCCGCATCGTCGCGCTCGTCTTCCCCGCGCTGGAGCACCGCCTCAGCGCGACGGCGCTGAGCATCGTGACCGCGGCCGCCTCGGCGGCCACCGGACGCGGGTTCAACGTGGTGCTGTGGCCCGTCGCCGGAGCCGACCAGCTCGAGGACTACGTGTCCGGCGGCCTCGTCGACGGCGTGCTGCTCATGGAGGTGACGGCCGACGACCCGCGCATCGCGGTGCTGCAGCGACGCGGCGTCCCGTTCGGCCTGATCGGACGCACCCGGGAGCCCGACGACCTGTCCTACGTCGACATGGACTTCGACGCGATGGTCACCACCGGTCTGGACCACCTCCAGGACCTGGGCCACCGGAGGATCGGGCTCCTCATCGGTGACCTGGACTCGCCCTCCTGGGCCGGCTACGGCCCGATCACCCGCACCGAGGCCGCCTACCGCGCCGAGGCCGATCGGCGTGACCTGGACGCCGTCGTCGTGCGCGCGGCCCAGGACCCGCGCTCCGGGCACCGCGCGGCCGACGAGCTCCTCGCCGACCACCCCGACGTCACCGCCGTCCTGGCGCTCAACGAGGCCGCGCTGCCCGGGTTCGTCAACGGCCTCCTCGCCGCGGGCCGGGGCGTCCCGGACGACGTGTCCGTGCTCGGGATCGCTTCCTCCGTCGAGGCGATCTCCACCGCGGACCCGCCCGTCAGCGCCGTCGTGGCGCCCGGCCCCGAGCTGGGCCGACGCAGCCTCGAGGCGCTCGTGGACCGGCTGACGGACCCGACGACGCCGCCGCTGCAGCTCCTGCTCGGCGGAGAGCTGCGCCCCGCCGGGTCCACCGCCGCCCCGCGCTGAMVTMQDVADRAGVSLTTVSFVVNGTKPVAERTRQRVQTAMADLGYRRNVVARALASRHSRIVALVFPALEHRLSATALSIVTAAASAATGRGFNVVLWPVAGADQLEDYVSGGLVDGVLLMEVTADDPRIAVLQRRGVPFGLIGRTREPDDLSYVDMDFDAMVTTGLDHLQDLGHRRIGLLIGDLDSPSWAGYGPITRTEAAYRAEADRRDLDAVVVRAAQDPRSGHRAADELLADHPDVTAVLALNEAALPGFVNGLLAAGRGVPDDVSVLGIASSVEAISTADPPVSAVVAPGPELGRRSLEALVDRLTDPTTPPLQLLLGGELRPAGSTAAPRPGPT0014791_184DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_006671209malX_1COG2182Maltose/maltodextrin-binding proteinGTGCGACGAACCCCCACCGCCGTCGGTGCGGCGACGGCCGCCGGCGTCGCGCTGAGCCTGTCCGCGTGCAGCGGTCAGACCGGCGCGGACGACGGCACGCTGGTCGTCACCGACACGATGTCGGCCACGAGCGCGCCCGTCTACGAGGAGATCTACGACGCGTGCGCGGCGGACCTGGGCCTGGACGTCCGGGCGAACCACGTCGCGGGGTCGGGGCTCATCGCCACCGTGCTCCAGCAGGCGTCGTCGCAGACCCTGCCCGACGTGCTGATGCTCGACAACCCGGACGTGCAGCAGATCGCCTCCTCCGGCGCGTTGAGCCCGCTGGGCGACTACGGCATCTCCGGCGCGGGGCTGCCGCAGGGCGTGCTCGACGCCGGCACCTACGACGGCGCGCTGTACGGGATCACCCCCGTGGTGAACTCGATCGGACTGTTCTACGACGCACGAGCCCTGGCCGAGGCGGGCGTCGAGCCTCCGACCACCTGGGACGAGCTGCGGACCGCGGCCGCGGAGCTGACCACCGAGGACCGGTACGGGATCGCGTTCAGCGCGACCAACAGCTTCGAGGGCACCTGGCAGTTCCTGCCGTTCCTGTGGAGCAACGGCGCCGAGGAGGACGACCTGGCCTCGCCCGAGGCCGTCGAGGCGCTGGAGCTCGTCGACGCGCTGGTCGAGGACGGCTCGGCCTCGGCGAGCGTCGTGAACTGGTCGCAGAACGACGTCAACGACCAGTTCATCGCCGGCAACGCGGCGATGATGGTGAACGGTCCGTGGAACATGCCCAGCCTGGAGGCCGCCGAGGGCCTCGAGTACGCCTCGGTGCCGCTGCCGGTCCCGGCCGCGGGCGACACCCTCGAGGCCCCGCTGGGCGGGGAGGCCTTCACCGTCCCGGACACCGGGAACCCGGAGAAGATGGCCGCCGCCGGCGCGTTCGTCGACTGCGTGACCGCCGGGGAGAACCAGCTGACGATGGCCACGGGTCGGGGCGCCGTCCCCGCGGACAGCGCGGTCGCCGCGGAGGCCGCCCGTCAGAACCCCACGATCGCCACCTTCGTCGACACGGTGCAGACCGCCCGCGCCCGCACCGCGCTGCTCGGCCCCGACTGGCCGCAGGCCGCCACCCAGATCTACACCGCGGAACAGCTCGCCCTGACCGACACCGAGTCCCCGGCCGAGGCGCTCGAGCGCGTGGCGGCGCAGGACTGAMRRTPTAVGAATAAGVALSLSACSGQTGADDGTLVVTDTMSATSAPVYEEIYDACAADLGLDVRANHVAGSGLIATVLQQASSQTLPDVLMLDNPDVQQIASSGALSPLGDYGISGAGLPQGVLDAGTYDGALYGITPVVNSIGLFYDARALAEAGVEPPTTWDELRTAAAELTTEDRYGIAFSATNSFEGTWQFLPFLWSNGAEEDDLASPEAVEALELVDALVEDGSASASVVNWSQNDVNDQFIAGNAAMMVNGPWNMPSLEAAEGLEYASVPLPVPAAGDTLEAPLGGEAFTVPDTGNPEKMAAAGAFVDCVTAGENQLTMATGRGAVPADSAVAAEAARQNPTIATFVDTVQTARARTALLGPDWPQAATQIYTAEQLALTDTESPAEALERVAAQDPGPT0016545_10889DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_00668960melD_2COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACCACCACCCTCGCCGCAGGACCACGGGGCGCCGCAGCGCCGCCGTCGTCCCCGCCCCCGACGCGGCGCCGTGCCCGACGCCGCGAGCTGACCGCCCAGTGGTTGTTCCTGGTGCCGGCGATCGCCTACGTGCTGATCTTCTTCGGCTACCCGATCGTGAAGAACCTCGTGATGGGGTTCCAGGACTACTCGGTGCGCACCTTCGTCACCGGCGAGGCCCCCTGGGTCGGACTCGCGAACTACGCCGAGGTCGTGAGCAGCGGGATCTTCCGGACGACGGTCGTCAACACCGCGCTCTTCACGCTCGGGTCGATCGCCGGGCAGTTCGTGATCGGCCTGCTGTTCGCGCTGTTCTTCAAGCGGCGCTTCCCGCTCAACAGCGTCCTTCGGTCGTTGCTGCTGCTGCCGTGGCTGCTGCCGATGATCGCCGGGAGCGCCGTGTGGCGCTGGATCCTCGACCAGGACGGCGGCATCCTCAACGAGACGTTGCAGGGCATCGGGCTCATCGACGACCCGATCCGCTGGCTGACCAGCCCGGACATCGCCCTGGTCGCCGTGATCCTCGTCAACGTCTGGGTCGGCATCCCGTTCAACATGACCCTGCTGTACAGCGGGCTGCAGAACATCCCCGACGAGCTCTACGAGGCCGGGGCGCTCGACGGCGCCACCGGGTGGAAGGCCTTCTGGTACATCACCTGGCCGAACCTGCGCTCGGTGGTCAACGTCGTGCTGGTGCTCGGCGTGATCTACACGCTCAAGGTGCTCGACATCATCCTGGGGCTGACCGGCGGCGGACCGGCCAACGCGACCCAGACGCTCGCCACGGACTCCTACCGCCGCTCGTTCCAGGAGTTCTCCTTCGGCACCGGTGCCGCCGTGAGCAACGTGCTCATCGTCGTCTCGCTGGTGTTCGCCGTCGTCTACCTGCGCGCGAACCGACGCGCCGAGGAGGAGTGAMTTTLAAGPRGAAAPPSSPPPTRRRARRRELTAQWLFLVPAIAYVLIFFGYPIVKNLVMGFQDYSVRTFVTGEAPWVGLANYAEVVSSGIFRTTVVNTALFTLGSIAGQFVIGLLFALFFKRRFPLNSVLRSLLLLPWLLPMIAGSAVWRWILDQDGGILNETLQGIGLIDDPIRWLTSPDIALVAVILVNVWVGIPFNMTLLYSGLQNIPDELYEAGALDGATGWKAFWYITWPNLRSVVNVVLVLGVIYTLKVLDIILGLTGGGPANATQTLATDSYRRSFQEFSFGTGAAVSNVLIVVSLVFAVVYLRANRRAEEEPGPT0016535_2117DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_00669819sugBCOG0395Trehalose transport system permease protein SugBATGTCGCCGACGACCACACCACGCACGCTGCTCAGCACCGCGCTCGGGATCGCGTTGCTGGCCTTCATGCTGTTCCCCGTGTACTGGATGGTGAACGTCTCCCTCCAGGGCGGCAGCACCGCGGCCAGCAGCACGTTCTTCCCGACCGACATCACTCTCGACGGCTACCGCACCGCGATCCAGGACCAGACCGGCAACCTGCTCACCAGCATCGTCGTCGCCCTCGGCGCCGTCGTCGTCTCCCTCGCGGTCGCCACCCCGGCGGCGTACGCGCTGTCCCGGTTCCGGCTGCGAGGGATGGGCATCTTCCTGTTCGCGCTGCTGCTGGCGCAGATGATCCCCGGCATCGTCATCGCCAACTCGCTGTACACGCTGTTCAACGACCTGGGACTCCTGAACTCCTACCCCGGGCTGATCCTGGCCAACGCCACCCACGGCATCCCGTTCGCGATCCTCATCATGAGCGCCTTCATGCGGTCCATCCCGCCGGCGCTGACCGAGGCGGCTCGCGTCGACGGCGCGAGCCACTTCCGGGCCTTCTGGTCGATCATCGTGCCGGTGAGCAAGAACTCGCTCATCACGGCCGGGCTGTTCTGCTTCCTGTTCGCGTGGAGCGACTTCATGTTCGGCCTGACGCTCACCACGGGCGCGGACATCAAGCCGGTCACGCTCGGCATCTACGACTACCTGCAGGGCAACGTGCAGAGCTGGGGTCCCGTCATGGCGACCGCCGTGCTGTCGTCGGTCCCGGCGATCGTGCTGCTCGTGCTCGCCCAGCGCTACATCGCCGCCGGCGCGCTGGGCGGCGCCGTCAAGTAGMSPTTTPRTLLSTALGIALLAFMLFPVYWMVNVSLQGGSTAASSTFFPTDITLDGYRTAIQDQTGNLLTSIVVALGAVVVSLAVATPAAYALSRFRLRGMGIFLFALLLAQMIPGIVIANSLYTLFNDLGLLNSYPGLILANATHGIPFAILIMSAFMRSIPPALTEAARVDGASHFRAFWSIIVPVSKNSLITAGLFCFLFAWSDFMFGLTLTTGADIKPVTLGIYDYLQGNVQSWGPVMATAVLSSVPAIVLLVLAQRYIAAGALGGAVKPGPT0016540_8989DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_00670765hypothetical proteinATGGACATCACCCGCAGCACCGTCTTCATCCCCGGCGCCACGAGCGGCATCGGCCTCGCCCTGGCCGTCGCGCTCCACGAGCAGGGCAGCACCGTCGTCGTCGGCGGGCGCCGCACCGACCGGCTCGCGCAGATCGCGGCCGACCACCCCGGGATCGACACCGTTCCGATCGACACCACGGACCCGGCGAGCATCGACGACGCCGCCCGCACCGTCCTGGGACGGCATCCGGACCTCGACGCGATCGTCGCGATGGCCGGGATCATGCAGGTCGAGGACTGGCACCGCCGCGAGAGCTTCCTGGCCAGCGCCGAACGCACCGTCATCACGAACGTGCTCGGACCGATCCGGCTGATCGGCGCGTTCGTCGAGCACCTGCAACGCCGCCCCCACGCGACGATCGTGACCGTCTCCTCAGGCCTGGCGTTCGTCCCGCTGGCGGCGACACCCTCCTACGACGCGTCCAAGGCGGCCGTCCACCGGCTCAGCGAGGCGCTGCGACTGCAGCTCGCGGACACGGGCGTCGACGTCGTCGAGATCGTGCCGCCGGCGGTCGCCACGGACCTGATGCCGGGTCAGCGCGACAACCCGATCGCGATGCCGCTCGAGGAGTTCGTCTCCGAGGTCGTCGACCTGCTGCGCTCGCAGCCGGGCGCCCCGGAGGTCCTCGTCGAGCGGGTCGGGTTCCTGCGCCACGCCGAGGCACGTGGCACCTACGACGAGGTGGTGGCGGCGCTGAACGCCGGCGACCCGCACGGACGGTGAMDITRSTVFIPGATSGIGLALAVALHEQGSTVVVGGRRTDRLAQIAADHPGIDTVPIDTTDPASIDDAARTVLGRHPDLDAIVAMAGIMQVEDWHRRESFLASAERTVITNVLGPIRLIGAFVEHLQRRPHATIVTVSSGLAFVPLAATPSYDASKAAVHRLSEALRLQLADTGVDVVEIVPPAVATDLMPGQRDNPIAMPLEEFVSEVVDLLRSQPGAPEVLVERVGFLRHAEARGTYDEVVAALNAGDPHGRPGPT0013220_210DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0013220-dltE-K14189NANA
AK018_00671864hypothetical proteinATGGACCGTCGCGCCCTCGCCGAGTTCCTCCGACGTCGCCGCGAGGCGCTGCAGCCGGCCGCCGTCGGTCTGCCGCCGGGACTGCGGCGGCGCGCTCCCGGGCTGCGGCGCGAGGAGGTGGCCCTGCTGGCGACCATGTCGACCGACTACTACACACGCCTGGAGCAGCAGCGGGGCCCGCAGCCCAGCACCGACATCCTGGCCGCACTGGCTCGCGCCCTGCGCCTGACCGACGACGAGCGCGACTACCTGTTCCGCACGGCAGGCCAGCCCGCCCCGCCGCGGGCCGTCGACGCCGGTCGGGTGGCGCCGGCGCTGCAACGGGTGCTGGACCGGCTCGACGACACCCCGGCGCTGATCCTCGGGCCGCTGGGGGAGACGCTCGCCCAGAACGACCTCGCCCGCGCCCTGTACGGCGACACCGACACTCTGCGCGGGTGGGAGCGCAGCGAGATCTACCGTTGGTTCGCCCACCCCGCCACGGCGCGCGCCGTCTACCCGGCCGACGACCGTGACCGCCAGGGCAGGTCGCTCGTCGCGAGCCTGCGGGCCGCGCTCGGACTGCTGGGGCCGCGCTCGCGGGCCGCGGCGCTGGTGGACGTGCTGACGGACCTGAGCGGGGAGTTCTGCGCCCTGTGGGATCGCCAGGAGGTGGCGCAGCGGTTCGTCGACCACAAGGTGCTGATCCACCCGGTGGTCGGCGAGATCGAGGTGGACTGCCAGGTCCTGCTGACCGAGGACCGACTTCAGGCGCTCCTGGTGCTCACCGCGGCCCCGGGCAGCGATGCCGCCGAACGGCTCCGGCTGCTGGGTGTGGTCGGCACCCAGGACCTGGGTGCCTCGGCTCAGCGACCGGGTCGGTGAMDRRALAEFLRRRREALQPAAVGLPPGLRRRAPGLRREEVALLATMSTDYYTRLEQQRGPQPSTDILAALARALRLTDDERDYLFRTAGQPAPPRAVDAGRVAPALQRVLDRLDDTPALILGPLGETLAQNDLARALYGDTDTLRGWERSEIYRWFAHPATARAVYPADDRDRQGRSLVASLRAALGLLGPRSRAAALVDVLTDLSGEFCALWDRQEVAQRFVDHKVLIHPVVGEIEVDCQVLLTEDRLQALLVLTAAPGSDAAERLRLLGVVGTQDLGASAQRPGRNANANANANA
AK018_00672462hypothetical proteinGTGCATCCGGACACCGGCCCCCTGCGCACACCCGACCAGCACGCGCACCCCGACGGCGGCGCGTGCGGCCACCACGTCCTCGTCGCGGGCCTGGCCGACGACACCGCCACGGTCCGGTCGCTCCTCGGGGCGCTGCCGGCGTGCACCGTCGGCCAGGTCCTCCTCGAGGCGGAACCGGACCGGGCGCCCGACGTCGCGGGCTGGGACGTCCCCGGCCGCGTCGCCGTCCACGTGCTGCGGCGGGACACCACCCCGGTGGCACGCCGGCGCCGAGGACGACGCCTCGCGACGGCGCTCGACGCGTGGGTGACCGAGTGGCTCGACCCCGAGGGCTGCGCGTGCGCCGGACCCTTCACCCTCTGGGTCGGTGGCGCCGGCAACGCCGAGGTCGAGGTGCTGTGCCGCCGTCTCGAGCGAGGCCTGGACCCCGCGTCCGCCCACCTTCACCGACCCGGTCGCTGAMHPDTGPLRTPDQHAHPDGGACGHHVLVAGLADDTATVRSLLGALPACTVGQVLLEAEPDRAPDVAGWDVPGRVAVHVLRRDTTPVARRRRGRRLATALDAWVTEWLDPEGCACAGPFTLWVGGAGNAEVEVLCRRLERGLDPASAHLHRPGRNANANANANA
AK018_006731767COG1132Putative multidrug export ATP-binding/permease proteinGTGTCCGACGTCGAACGCATCGACGGTGCCCATCCCGTCCGGTCGATCCTGCGGTTGCTGACCGCCCAGCCGCGCCGCCTCGCGCTGGCCCTGTACGCGTTCACGCTCAAGGAGATCCCGCTGTGGTTCCTGCCGGTCATCACCGGCGCGGTGATCGACATCGTGGCCGAGGACGGCGACGTGAGCTCGGTGCTGATCTGGTTCGGTGTCGCCGCGGTGCTGCTGGCGCAGAACTACCCCCACCACATCCTGTACACGCGCAACTTCATGACGGTGGTCCGTGACACCGGCGTCCGGCTGCGCAACGCGCTCGTCGAGCGCCTGCAGACGCTCTCCATCGGCTACTACGCGCGCTCCAGCGCAGCCCTCGTGCAGTCCAAGGTGGTCCGCGACGTCGAGAACGTCGAGATGATGCTGCAGCAGGTCACCCACCCGCTGCTGTCCGCGATCATGGTGCTCGTCGGCGCGATCTCGATGACCGCGATCCGCGTCCCGGAGTTCCTGCCCGTGTACGCGCTGGTCATCCCCACCGCGCTGCTCATCCGCCGCACGATGGCCCGTCGGTCCCAGGCCCGCAACGAGCAGTTCCGTCGCGAGATGGAGGGGTTCGCGTCCCGGGTGGGGGAGATGGCCTCCCTCATCCCCGTCACCCGCGCCCACGGTCTCGAGCAGACGGCCGCCACCCGGGTGGCCACCGGCGCGGACTACGTGCGCCGCGCGGGACTCAACCTGGACATGCTCAACGGCCGCATGCAGTCCATGTCCTGGGTGTCCATGCAGTTCCTCGGGGTGTTCTGCCTGGTGCTCGCGGCCACGGTGTCGCTGTCCGGGATCATCCCCATCACCCCCGGCGAGGTGGTGCTGCTCTCGACCTACTTCAGCCTGCTGACCCAGGGGCTGACCCAGGTGCTCAACCTGGTGCCGGTCACCGCGCGCGGCGTCGAGTCCATGCGGTCCATCGCCGAGGTGCTGGCCGAGCCCGACCTCGAGGAGAACGAGGGGCGCCGCCCCGTCGAGCAGGTCACCGGACACCTCCGGCTCGAGCACGTCCACCACCGGTACCCCGAGGCCGAGTCGGACGCGCTCGCCGGCATCGACCTCGAGATCCGTCCCGGCGAGACCGTCGCGTTCGTGGGACCCTCGGGCTCCGGCAAGTCGACCCTGCTCAACCTCGTGCTCGGGTTCGTGCGCCCCACCGGCGGCCGGATCCTGCTCGACGGCCAGGACATGGCCGACCTCGACCTGCGGACCGTGCGCCGGCACGTCTCCGTCGTGCCCCAGGAGTCGGTGCTGTTCGAAGGGTCCATCCGCGACAACGTCGCGTACGGCCTGGACGACGAGGCCGACGACGAGCGGATCCGTGCGGCCCTGCGGGACGCCAACGCGCTGGGGTTCGTCGACGTGCTGCCCGAGGGGTGGGACACCGTGGTCGGTCAGCGCGGGGCCCGCATCTCCGGCGGTCAGCGCCAGCGGCTCGCCATCGCCCGGGCCATCGTCCGCAACCCGGACATCCTGTTCCTCGACGAGGCCACCAGCGCGCTCGACCCCGAGTCCGAGGTCGCCGTCCGTGACGCCCTCGACCGTCTCATGGCCGACCGCACGACCCTCGTCGTCGCGCACCGGCTGTCCACGGTGCGGCAGGCCGACCGGATCGTCGTGCTCGACCACGGCCGGATCGTCGAGGTCGGGCCGCACGCCGAGCTGCTCGCGCGAGGGGGACGCTACGCGGCCCTGCACGCCGCCCAGGAGGGCGGCCTGAGCGCATGAMSDVERIDGAHPVRSILRLLTAQPRRLALALYAFTLKEIPLWFLPVITGAVIDIVAEDGDVSSVLIWFGVAAVLLAQNYPHHILYTRNFMTVVRDTGVRLRNALVERLQTLSIGYYARSSAALVQSKVVRDVENVEMMLQQVTHPLLSAIMVLVGAISMTAIRVPEFLPVYALVIPTALLIRRTMARRSQARNEQFRREMEGFASRVGEMASLIPVTRAHGLEQTAATRVATGADYVRRAGLNLDMLNGRMQSMSWVSMQFLGVFCLVLAATVSLSGIIPITPGEVVLLSTYFSLLTQGLTQVLNLVPVTARGVESMRSIAEVLAEPDLEENEGRRPVEQVTGHLRLEHVHHRYPEAESDALAGIDLEIRPGETVAFVGPSGSGKSTLLNLVLGFVRPTGGRILLDGQDMADLDLRTVRRHVSVVPQESVLFEGSIRDNVAYGLDDEADDERIRAALRDANALGFVDVLPEGWDTVVGQRGARISGGQRQRLAIARAIVRNPDILFLDEATSALDPESEVAVRDALDRLMADRTTLVVAHRLSTVRQADRIVVLDHGRIVEVGPHAELLARGGRYAALHAAQEGGLSANANANANANA
AK018_00674270acyPCOG1254AcylphosphataseATGACACGCCGCTTCCACGCCGTCGTGCACGGCCGGGTCCAGGGTGTCGGCTTCCGTGCGACGGCGGCCGCCGCGGCCGAGCGGGCGGGTGCCGCCGGGCACGTGCGCAACCTGCCGGACGGCACCGTCGAGGCCGAGGTCGAGGGTGACGACGACGCCGTCCGGGCGGTGCTGGAGGTGCTGCGGACCGGGCCGAGCGCGGCCCGGGTGACCCGGGTCGACAGCCGTGAGGTACCGGTGCGCGGCGAGCGCGGGTTCACCGTGCGCTGAMTRRFHAVVHGRVQGVGFRATAAAAAERAGAAGHVRNLPDGTVEAEVEGDDDAVRAVLEVLRTGPSAARVTRVDSREVPVRGERGFTVRPGPT0001372_3351DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001372-acyP|yccX-K01512NANA
AK018_006751389hypothetical proteinGTGCTGACCACCGTGGCGACCCTGCTGCTCGGGTTCGTCGTGATCGGCGTCGTCATCGCGTTCAACGGCTACTTCGTGGCCCAGGAGTTCGCCTACATGTCGGTGGACCGTTCGCGCCTCGGCGCCCGGGCGGAGGCGGGCGACAAGGCCGCGGCGCGTGCGCTGTCGGTCACGCGCCGCACGTCCTTCATGCTCTCGGGGGCCCAGCTCGGCATCACCGTGACCGGTCTCCTCGTGGGTTACGTGGCCGAACCCCTCGTCGGCACCAGCCTGGGCGAGATCCTGGGCGTGGCCGGGATCCCGGCGGGGGTCAGCGTCGCCGTGGGAACCGTCGGGGCCCTGCTGGTCTCGACGGTGCTGCAGATGATCTTCGGCGAGCTCTTCCCGAAGAACCTGGCGCTCGCCGCCCCGGAGCCGCTGGCCCGGTGGCTGGCGCGCTCGACGCAGATCTATCTGGCGGCCTTCGGGTGGCTGATCACGGTGTTCGACCACGCGGCGAACGCGTTGCTGCGGCTGTGCCGGATCGAGCCCGTGGAGGACGTCGACTCCAGCGCGACGGCCCGCGACCTCGAGCACATCGTCGCCGACTCGCGCGAGAGCGGCGACCTGCCCGAGGACCTGTCGATGATGCTCGACCGGATCCTCGACTTCCCGCAGCGCGACGTCGAGCACGCGATGGTGCCGCGCTCGCGGGTCGACACGGTCCACTCCCGCACCACCGTGGGCGAGGTGCGCAGCGCCATGGCCGCGGCGCACACCCGCTACCCGGTCGTCTCGGACGACGACGAGCCGCTCGGCGTGGTCCACCTCCTCGACGTCCTCGACGCCGCGGACGACGCACCGGTGTCGCAGATCATGCGGCCGGCCACGGTCCTGCCCACCCTGATGCTGCTGCCGGACGCGTTCGGTGAGCTCACGACCGAGCGCGACGAGCTGGCGTGCGTCATCGACGAGTACGGGGGCTTCGCCGGGATCCTGACCGTCGAGGACCTGGCGGAGGAGGTCGTCGGGGAGATCACCGACGAGCACGACGTCGAGCAGGCCGAGGTCGTCGAGCCGGAGGGTGCCACCACGTGGCGCATGGGCGGCGACGTCCACCTCGACGAGGTCGAGCGCGTCATCGGCCACGACCTGCCGCGCGGGGACTACGAGACGCTGTCCGGACTGCTGATCGCGCAGTGCGGCGAGCTGCCCGAGGTCGGTGCCGTCGTGGTCGTCGAGCTGCCCGTCGAACCGGCCGACCTCGCCCTGCACGAGCCGGTGCGCCGGCGGCTGTCCGCCGAGGTGCTGGAGGTGGCGCGCCGGGTGCCCGCCACGGTGCGGGTCGGCCTGCTGGACGAGGAACCCGCGGACGGCGAGCACGACGACGTCGAGGGGACGGTGCGATGAMLTTVATLLLGFVVIGVVIAFNGYFVAQEFAYMSVDRSRLGARAEAGDKAAARALSVTRRTSFMLSGAQLGITVTGLLVGYVAEPLVGTSLGEILGVAGIPAGVSVAVGTVGALLVSTVLQMIFGELFPKNLALAAPEPLARWLARSTQIYLAAFGWLITVFDHAANALLRLCRIEPVEDVDSSATARDLEHIVADSRESGDLPEDLSMMLDRILDFPQRDVEHAMVPRSRVDTVHSRTTVGEVRSAMAAAHTRYPVVSDDDEPLGVVHLLDVLDAADDAPVSQIMRPATVLPTLMLLPDAFGELTTERDELACVIDEYGGFAGILTVEDLAEEVVGEITDEHDVEQAEVVEPEGATTWRMGGDVHLDEVERVIGHDLPRGDYETLSGLLIAQCGELPEVGAVVVVELPVEPADLALHEPVRRRLSAEVLEVARRVPATVRVGLLDEEPADGEHDDVEGTVRNANANANANA
AK018_006761014COG1253putative proteinATGACGAACCCGTGGGTGGTCGTGGCGGCCACGGTGGGCCTGCTGGCGCTGAGCGCCTTCTTCGTGGTCATCGAGTTCGCGCTGCTCGGCGCGCGCCGGCACCGGCTCGAGGAGCGCGCCGCGACGAGCCGCGGTGCCCGGGCGGCGCTGCGCGGGGTGAACGAGCTGACGGTGATGCTCGCCGGGGCGCAGCTCGGCATCACCGCCTGCACGTTCGCGCTCGGCGCCGTCACCAAGCCGGCGGTCGACTCCTGGCTGGGCCCGCTGCTGGCGTCCTGGGGGCTGCCGCACTGGCTCGCCGACGGCGGGTCCTTCGTGCTCTCGCTGCTGCTCGTGACGTTCCTGCACCTCGTGGTGGGCGAGATGGCGCCGAAGTCGTGGGCGATCGCGAACCCCGAGCGGTCCGCGATCCTGGTCTCCCCGCCGGCCCGGGCCTTCATCGCGGTCTTCCGCCCGCTGCTGAGCTGGATCAACAGCGTGGCCAACCGCCTGGTCCTCGCCACCGGCGTCGAGCCCGTCGACCGCGCCGCGGTGGGCGGCCAGGACGCCGAGACCATCCGGCACCTGGTCGAGCACTCCGCACGGGTGGGTGTGCTGGACGACACCGTCCACTCGCCGTTGGCGAGCGCCCTGGAGATGACGGGCCAGAGCGTCGAGGAGCTCCTGCGCCGGGACGTCCCTCCGATGTCCGTGCCCGCCGACGCGGACGTCGCCGCCGTACGGGCCGCCGCCCGTGCCAGCGGCCACCTGAGGATCCTGGTCGACGTCGACGGCGCGCACGGGGACGTCCCACGCATCCTGCACGTGCGCGACACGCTGCTGGAGCCGGGGGAGCGGCCGGCTCGGGAGCTGGCGCGACCCGCCTTCGTGGTGAGGCCCCGGACCCCGGTCCACGAGGCGCTGGCGGGGATGCGGCACGCCAGCGAGCAGCTGGCCGTCGTCGTGGACGACGGCGTGCCGGTCGGTGTCGTCACGCTCGAGGACGCCCTCGGCCGGGTGATCCCGCGGAGCTGAMTNPWVVVAATVGLLALSAFFVVIEFALLGARRHRLEERAATSRGARAALRGVNELTVMLAGAQLGITACTFALGAVTKPAVDSWLGPLLASWGLPHWLADGGSFVLSLLLVTFLHLVVGEMAPKSWAIANPERSAILVSPPARAFIAVFRPLLSWINSVANRLVLATGVEPVDRAAVGGQDAETIRHLVEHSARVGVLDDTVHSPLASALEMTGQSVEELLRRDVPPMSVPADADVAAVRAAARASGHLRILVDVDGAHGDVPRILHVRDTLLEPGERPARELARPAFVVRPRTPVHEALAGMRHASEQLAVVVDDGVPVGVVTLEDALGRVIPRSNANANANANA
AK018_00677447ohrR_2Organic hydroperoxide resistance transcriptional regulatorATGCCAGACGTCGGAGCATCCCGAGCGCTCGACCCGCTGCTGTGCTTCGCGGTGTACTCGCTCGAACGGCGCATCGGCCGGGTCTACGCCGAGCTGCTGGCCCCCTGGGGCCTGAGCTACACCCAGTACCTCGTGCTGACGCTGCTCGGCGCGAACCACGGCGTGCCGCTCACCCTCGGTGAGCTGGGCCGCATGCTCGACCTCGACTCCGGGACGCTCTCGCCGCTGGTCAAGCGGCTCGAGCGACGCGGGCTGGTCCGGCGTGACCGCGACCGCGACGACGAACGCGTCGTCGTCGTCGCCCTGACCGACGACGGCCGCGACCTGCACGCCGAGCTCGCCGACGTCCAGCGCTGCCTCGCCGAGCGGCTCCCCGACGACCGGGCTGCCGCCGCCGACCTCATGGCGCGGCTGCGCGAGGCCAACGACTTCCTGGCACGCACCTGAMPDVGASRALDPLLCFAVYSLERRIGRVYAELLAPWGLSYTQYLVLTLLGANHGVPLTLGELGRMLDLDSGTLSPLVKRLERRGLVRRDRDRDDERVVVVALTDDGRDLHAELADVQRCLAERLPDDRAAAADLMARLREANDFLARTPGPT0013155_595DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
AK018_00678429ohrBCOG1764Organic hydroperoxide resistance protein OhrBATGATCGAGAACGTCGCCTACACCGCCGAGGCCCTGTCCACCGGCGCCGGCCGCGACGGCCGCGTGCGCAGCGACGACGGCCGCGTCGACCTGGACATGGCGATCCCGCAGCAGATGGGCGGGTCCGGGGCGGGGTCGAACCCCGAGCAGCTCTTCGCCGCGGGGTACGCCGCCTGCTTCCACTCGGCGCTGCAGAACGTCGCCCGGGTGCAGAAGGTCTCGCCGGGGGAGACGTCCGTCGGCTCGCGGGTCTCGATCGGCGCCAACGGCGCAGGCGGCTTCGAGCTGGCCGTCGAGCTCGAGGTCGTGGTGCCGGACCTGCCGCGCGAGCAGGCCGAGCAGCTCGTCGAGGCGGCGGAGAAGGTGTGCCCGTACTCGAACGCGACGCGCGGCAACATCGACCTGCGGCTGAGCGTCGTCGAGGGCTGAMIENVAYTAEALSTGAGRDGRVRSDDGRVDLDMAIPQQMGGSGAGSNPEQLFAAGYAACFHSALQNVARVQKVSPGETSVGSRVSIGANGAGGFELAVELEVVVPDLPREQAEQLVEAAEKVCPYSNATRGNIDLRLSVVEGPGPT0013160_1338DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
AK018_006792442hypothetical proteinGTGTTCCGCGTGAGTGAACGAGGTGCAGGGATCGGTGACGTCACCAGCGCGGACCAGCTCGCCCAGGGGCGCGTCCGGCTGCGGTCGAGCGACACGTGGATCCCCGAGGCAATGGGTGAGGTCTGCCGTCGCGCGGCGGCGGAGGGCGTCGTGCTGCTGAAGAACGAGAACGCGGCGCTCCCGCTGGATGGGAGCGCTACCATCGCGGTGTTCGGCCGGGTCCAGCAGGACTACTTCGCGGTCGGGTACGGATCCGGTGGGGACGTGCGGCCCCCCTACCAGTGGAACCTGATCGACGCGCTGCGCGACCGGGACGGCCTGCAGGTCGACGCCGAGCTCGCCGACCGCTACGCCGCGTGGTGCGCCGAGCACCCCGTGGACCCCGAGCCGGAGTGGGGCACGTGGCCCCGGTCCCACCCCGAGATGCCCCTGGGTGCCGAGGAGATCGCCGCCGTCGCCGAGCGTGCCGGGACCGCGCTCGTCGTCGTCGGGCGCGCCGCGGGCGAGGCCCGCGAGCAGGCGCTGGAACCGGGCAGCTTCTACCTCACCGAGGACGAGCGCTCGCTGCTGGCGCACGTCTCCGAGGCGTTCGAGCGCACGGTCGTGGTCGTCGACACCGGCAACGTGATCGACCTGGCCTGGACGCGCGAGCACGACCTCGACGCCGTCCTCGTGGCCTGGCAGGGCGGCATGGAGTCCGGCCGCGCCGTCGTCGACGTCCTGACCGGCGCCGTCCCCGCGCAGGGGCGGCTGACCGCGACGATCGCGGAGTCCTACGAGCGCTACCCGAGCGCCGGGCACTTCGGCGACGCGGACGCCAACGAGTACGTCGAGGACGTCTACGTCGGCTACCGGTACTTCGAGACCTTCGCCCCCGAGCACGTGCTGTTCCCGTTCGGCTTCGGGCTGTCCTACACGACGTTCGCGGTGGACGACGTGACCGTCGTCACCGACGCCACCACCGCCGTCGTGCACGCCACGGTGACCAACGTGGGCTCCGAGCACGCCGGCGCCGAGGTGCTGCAGGCCTACGTGCGCGCACCGCACGGGGTGCTCGGACGGCCCGCCCGACAGCTGGCCGCCTTTGCCAAGACCCGCGAGCTGGCACCCGGCGAGTCCCAGCGGCTGGTCCTGCGCGTCGCCCTCGAGGACGTCGCCGCCTACGACGACGCCGGTGCGACCGGTCACCGGTCGGCTTCCGTGCTGGAGGCGGGACGCTACGAGATCCTGCTCGGCACCGACGTCCGCGCGGCCTCGGTGGTCGGCGCCGTCGAGATCGAGAGCCTGCAGGTCGTCCGCCGGCTGAGCGAGGCCGCCGCCGTGCGCCCGGAGCACGCGTTCGAGCGCCTGGTGGCCCGCACGGGCGACGACGGCACCACCGTGGCGGACAGGGCCGCCGTGCCCACGGCCACGGTCCCGCGGCGCGAGCGCGTCCTGGCCGGTCTGCCGGCCGCGATCGCGCGCACCGGCGACGTCGGCATCACGCTGGGGGACGTCGCCGGCGGGCGGGCCGAGCTCGACGCCTTCGTCGCCCAGCTCGACGACGACGAGCTCGAGGCCCTCACGCGCGGCGACTTCACGATGGACTCGGCGCTCGGCGCCGCCGGCAACGCCGGAGCGCTCGGGGGGACTAGCCGCAGCCTGCGGGACAAGGGCGTGCGCGCCCTGACCACGACGGACGGTCCCGCCGGGATCCGGCTGGCTACCCACACCGCCCTGCTGCCGTGCGGGACGGCGCTGGCCTCGACCTGGAACCCGGAGCTGGTCGAGCGGCTGAACGCCCTGCTGGCCGACGAGATGGCCGCCAAGGGCTCCGACGTCCTGCTCTCGCCGGGCATGAACATCCAGCGCGACCCGCTGTGCGGGCGCAACTTCGAGTACTTCTCGGAGGACCCGCTGCTGACGGGGCGGATGGCCGCGGCGACCGTGCGCGGGATCCAGCACGGCGGGCTGGCCGCCTGCCCGAAGCACTTCGCGGCCAACAACCAGGAGACGAACCGCGAGTACAACGACTCGCGCGTCTCCGAGCGGGCGCTGCGCGAGATCTACCTGCGCGGGTTCGAGATCTGCGTGGCGGAGGCGGCCCCGCGCACCGTCATGACCTCGTACAACAAGATCAACGGGGTCTGGGGCCACTACCACCACGACCTGGTCACGACGGTGCTGCGCGGGGAGTGGGGCTTCACCGGCGCGGTGATGACCGACTGGTGGCTGCGCGAGGCCGTCGACCCCGACTTCCCGGCGCTGACGAACGACGCCTACCGGGTCCGGGCGGGGGTCGACGTGAACATGCCCGGTGCGTGGCGGCGCGAGGACCGGCACGGGGACGGCTCGCTGCTGGCCTCGCTGGCGGCGCCCGAGGGGATCACCCTCGGCGAGCTGCAGCGCACCGCGCGTCACGTGCTGCGGCTGGTGCTGTCCCGCGTGCCGGCGGACGGCTGAMFRVSERGAGIGDVTSADQLAQGRVRLRSSDTWIPEAMGEVCRRAAAEGVVLLKNENAALPLDGSATIAVFGRVQQDYFAVGYGSGGDVRPPYQWNLIDALRDRDGLQVDAELADRYAAWCAEHPVDPEPEWGTWPRSHPEMPLGAEEIAAVAERAGTALVVVGRAAGEAREQALEPGSFYLTEDERSLLAHVSEAFERTVVVVDTGNVIDLAWTREHDLDAVLVAWQGGMESGRAVVDVLTGAVPAQGRLTATIAESYERYPSAGHFGDADANEYVEDVYVGYRYFETFAPEHVLFPFGFGLSYTTFAVDDVTVVTDATTAVVHATVTNVGSEHAGAEVLQAYVRAPHGVLGRPARQLAAFAKTRELAPGESQRLVLRVALEDVAAYDDAGATGHRSASVLEAGRYEILLGTDVRAASVVGAVEIESLQVVRRLSEAAAVRPEHAFERLVARTGDDGTTVADRAAVPTATVPRRERVLAGLPAAIARTGDVGITLGDVAGGRAELDAFVAQLDDDELEALTRGDFTMDSALGAAGNAGALGGTSRSLRDKGVRALTTTDGPAGIRLATHTALLPCGTALASTWNPELVERLNALLADEMAAKGSDVLLSPGMNIQRDPLCGRNFEYFSEDPLLTGRMAAATVRGIQHGGLAACPKHFAANNQETNREYNDSRVSERALREIYLRGFEICVAEAAPRTVMTSYNKINGVWGHYHHDLVTTVLRGEWGFTGAVMTDWWLREAVDPDFPALTNDAYRVRAGVDVNMPGAWRREDRHGDGSLLASLAAPEGITLGELQRTARHVLRLVLSRVPADGPGPT0019110_2048DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_00680768hypothetical proteinATGCCCCACGCCGTCGCCGCACCGCCGCGCCCCGCACCCTCCGGACCGGCGCCCGGCCACCGCACTCCCCTGTCGCGCCACCTGCTCGTCGCGTCCCTGCTCGACGGCTCGTGCCGCACCGCCGACGTGCGCATCGTGGCGGCACGGCTCGGCCTGCCCCTGCGCGCCACCTACCGCGTGGTGGCCCTGGGCGGCGGACGCGACGGGTCGCTCGCCGCGACACGCGCCGCGATCAGCGGGCGCGTCGAGCGGGTCCACTGGCACATGTCCCGCCCGGTCGCCTACGGCCTGGTGCTCACCCGCGCGTCCGCGGAGCAGCCCCTGCTGCCCGGGGCCGTCCCGGCCGGTGTCCGCCTCGGCGTCGGCCTGCCCGTGGACACGCTCGTCGAGGTCCCCGAGGCGCGCCGCCAGGCGGACCTCGCCCGCCGGTACACGCCCGCGGCCGGCGGGGCCGCCGGCCTGGAGGACCACCTGACCTCGGCGCTCGTCGGCAGCGACGCCGCGCTGGCGACGTGCTTCGCCGACCGCGTGCTCGGCGCGCTGCTGGCGTGCGAGGACTCCGACACGCTGCTGGCCACCCTGGAGGCCTGGGTGGCGGCGGGCGGCTCGACGCCCCGCACCGCCACGGCCCTCGGGTGCCACCGCAACACCGTGACCAACCGGCTGCGACGCCTCGGCCGCCTCACCGGACGGCGCACGGACCGGCCGGCCGAGCTGGTCGACCTCGTCCTGGCCGTCCGGGCCCACCGCCTCGGCGGGCCCGACTGAMPHAVAAPPRPAPSGPAPGHRTPLSRHLLVASLLDGSCRTADVRIVAARLGLPLRATYRVVALGGGRDGSLAATRAAISGRVERVHWHMSRPVAYGLVLTRASAEQPLLPGAVPAGVRLGVGLPVDTLVEVPEARRQADLARRYTPAAGGAAGLEDHLTSALVGSDAALATCFADRVLGALLACEDSDTLLATLEAWVAAGGSTPRTATALGCHRNTVTNRLRRLGRLTGRRTDRPAELVDLVLAVRAHRLGGPDNANANANANA
AK018_006811470hypothetical proteinATGACCACGACGACCACGTCACCGCGAGCCGACCTGACCCGCGGGCTGACGCTGCTGGCCGACGGACCGGCCGGCGACGCGCACGCCACGCTCTGCCTCGCCAGGGACGTCCCGGAGGCCGACCCGCAGGAGTCCCGCGCCGCCGCGCTCGCCGCGGTGCAGGCCGCGTGGGCGGCGGGCGAACCCGACGCGTGCGTGGCCGCCCTGGCCGCGGCCCGCCTCGTGCTGGCACGGTCCGCGGTGGGACGGCGGCCCGACCCGGCGGTCGACTACGTCGACGGCATGCTGGCGCTGCTGACCGGGGACCCCGGGTCGGCCGCCCCGGCGTTGGGTCGCGCGGTGTCGACCTGCCGGGGCGGCGACGACGGCGACCTGCTGCTCCTCGCAGCGGCTGCCGCGCTGCTGCTCGGGGACGTCGAGGCCGCCTGCGAGGTCGGCGCGCGAGCGCTGGCGGCGGCGCGTTCCGCCGGCGACGAGACCCGGGTGGCCCGCGCCACCGAGTACACCGCGTACGCCGAGCTGCGCGCCGGTCGGCACGCGCTGGCGCGCGAGCACGCCCTCGTCGGGCGACGGGCCGCCGTGCGCACCGGCCGGTCCAGCACCGCCGCGCACCTGGACGCCGTGCTGGCCCTCGCCGCCGCGGTGCAGGGGCCGCGCGCCGACGTCGGCCGCTACGCCGGCCGGGCGCTGTCCACCGCCCGCCGGCACGGGCTCGCCCAGCCCGTCACGCTGGCCGAGTGGGCATCGGCCCGGGCGGAGCTGGCGGACGGCAGGCCCGCCGAGGCGGCGGCACGGCTGTCGTCGCTGCTCGCTCCGGCGGGTGGGGCGCACTTCGCCCTGCGGGGCCTGGTGCTGCCGACCCTGGTCGAGGCCGCCGTCGCGGCGGGCGACGACGCCGCGGGGCACGACGTCGTGACCGAGCTGGCGGACTGGTCGCGGTCCGCGGCCGACCCGCAGGGTCCGGCGCTGCTGCTGCGTTGCCGCGCCCTGCTGGCCCGCGGCGAGGTGACCGACGACCTCTTCGAGCGCGCTCACGCGGCGCACCGGGAGTGCGCCGGCGACTTCGAGCGGGCACGCACCCTGGACCTGCACGGCGCCTGGCTGCGCCGCCGACGTCGCCCGGTGGACGCCCGGGCCCGGTTGCGCGACGCCGTCCAGCTGTACGAGCGGTGCGGTGCCGAGCCCTGGTCCCGCGCGGTGCGCGCCGAGCTGCGGGCGGCCGGGGCGGCGCCGGACCGGGCCCCGGGAGGCGGCGCACCACCGACGTCGCTGGCCGGTCTGACCCCGCACCAGGAGCGCATCGCCCGGTGCGTGGCAGCGGGCGACACGAACCGCGAGGTGGCCGCGCGACTCTCGGTCAGCGTGCGCACCGTCGACTTCCACCTGCGCAACGTGTTCGTCGCCCTCGGTGTGCGTTCACGCGTCGAGCTCGCCCGTCGCGTGGCGGAGGCCGACGCACCGCCCCCGTAGMTTTTTSPRADLTRGLTLLADGPAGDAHATLCLARDVPEADPQESRAAALAAVQAAWAAGEPDACVAALAAARLVLARSAVGRRPDPAVDYVDGMLALLTGDPGSAAPALGRAVSTCRGGDDGDLLLLAAAAALLLGDVEAACEVGARALAAARSAGDETRVARATEYTAYAELRAGRHALAREHALVGRRAAVRTGRSSTAAHLDAVLALAAAVQGPRADVGRYAGRALSTARRHGLAQPVTLAEWASARAELADGRPAEAAARLSSLLAPAGGAHFALRGLVLPTLVEAAVAAGDDAAGHDVVTELADWSRSAADPQGPALLLRCRALLARGEVTDDLFERAHAAHRECAGDFERARTLDLHGAWLRRRRRPVDARARLRDAVQLYERCGAEPWSRAVRAELRAAGAAPDRAPGGGAPPTSLAGLTPHQERIARCVAAGDTNREVAARLSVSVRTVDFHLRNVFVALGVRSRVELARRVAEADAPPPNANANANANA
AK018_00682894Poly(ethylene terephthalate) hydrolaseGTGCAGCACTCCACCACCGGCGGCACGCGCCGCCGCATCACCGGGCTCCTGGCCTCCGTCACCGTCGCCCTGAGCCTCGGTGTGGCGGCCGGGCCCGCCGCCGTCGCCGCCGACAACCCGTTCGAGCGCGGACCGGACCCCAGCGAGTCCAGCATCGAGGCCTACCGCGGGGCGTACTCGGTCTCCGAGCAGTCCGTGTCGCGCTGGGTCTCCGGGTTCGGGGGCGGCACCATCCACTACCCGACCACCCGCAGCGACGGCACCTTCGGCGCCGTGGTGGTCTCCCCCGGCTACACGGGCACCGAGAGCTCGATCTCGTGGCTCGGCCCGCGCCTGGCGTCCCAGGGCTTCGTGGTCCTGACCATGGCCACGAACTCCGTCTACGACTACCCGGACTCGCGTGCCCGCCAGCTCCAGGCCGCCCTGGACTACCTGACCAGCAGCTCCAGCGGGGTCGCGGACCGCATCGACCCCGACCGCCTCGCGCTGATGGGCCACTCGATGGGCGGCGGCGGCACGCTGCGCGCCGTGTCGGAGAACCCCGACATGAAGGCGGCCATCCCGATGACCCCGTGGCACACCGACAAGACGTGGCGCGAGGTGACCACGCCGACGCTGATCTTCGGCGCCGAGAACGACACGATCGCCCCGCACTACTCGCACGCGGAACCGTTCTACGACTCCCTGCCGTCGAGCCTGGAGAAGGTCTACCTGGAGCTCGACGGCGCGAGCCACTTCGCACCGAACTACAGCAACACCACGATCGCGAAGTACTCGATCTCCTGGCTCAAGCGGTTCGTGGACGACGACACCCGGTACAGCCAGTTCCTGTGCCCGGGACCGTCGTTCTGGGACGGCGACGTCCAGACCTACGAGAGCACCTGCGACTTCTGAMQHSTTGGTRRRITGLLASVTVALSLGVAAGPAAVAADNPFERGPDPSESSIEAYRGAYSVSEQSVSRWVSGFGGGTIHYPTTRSDGTFGAVVVSPGYTGTESSISWLGPRLASQGFVVLTMATNSVYDYPDSRARQLQAALDYLTSSSSGVADRIDPDRLALMGHSMGGGGTLRAVSENPDMKAAIPMTPWHTDKTWREVTTPTLIFGAENDTIAPHYSHAEPFYDSLPSSLEKVYLELDGASHFAPNYSNTTIAKYSISWLKRFVDDDTRYSQFLCPGPSFWDGDVQTYESTCDFPGPT0006525_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_PHTHALATE_UTILIZATION,PGPT0006525-EC_3_1_1_101-K21104NANA
AK018_00684882thiD_1COG0351Hydroxymethylpyrimidine/phosphomethylpyrimidine kinaseATGGCGCACCGACCCGCCCCCAAGACCGCGGCGGAGGGCCCGCCGTCGTGCGCGTCGCCCGTGCCGCGGGTCCTCGCCGTCGCCGGGTCGGACCCCTCGGGTGGCGCCGGCATCCAGGCGGACCTGAAGTCGATCGCCGCCGCCGACGGGTACGGCATGGCGGCGATCACCGCCCTGACGGCCCAGAACACCCGGGGCGTCGCCGCGGTCCACGTCCCGCCGCCGGAGTTCCTCGCCCGTCAGCTCGACACCCTCAGCGAGGACATCACCCTGGACGCCGTCAAGATCGGGATGCTCGCCACCGCGGACGTGGCCGCCGTGGTGGGGGCCTGGCTCGCGCGGGCGGCCCCGGTGCCGGTCGTGCTCGACCCCGTCATGGTCGCGACCTCCGGCGACCGGCTCCTGGCGCGCGAGGCCGAACGTGCGGTCCTGTCCCTGCTGGACCGGGCCGACGTCGTCACCCCGAACGTCCCCGAGCTGGCCGTGCTGCTCGACGAGCCCGTCGCGACCACCTGGGGCGCCGTCCTCGACCAGGCCGCACGCCTCGCGGCCCGGCACGGCGTGCGGGTCGTGGCCAAGGGCGGCCACCTGCCCGGCGACGACGTCCCGGACGCCCTGGTCGACCCCGGCGGGGACGTCGTCGAGACCCGCGCACAGCGGGTGCGCACGCGCAACACCCACGGCACCGGCTGCTCGCTGTCGAGCGGGCTCGCCACCCGCTACGCCGGCCACCGGGACTGGGGGGCAGCCCTGGCCGGGACCAAGCGGTGGCTCACCGCCGCCCTGGCGCACGGCGAGGACCTGCGCGTCGGGGGCGGGCACGGTCCCGTGGACCACCACGTGTGGCAGCGCGGCACGGCCGTCGCACCCGCGTCCCACTGAMAHRPAPKTAAEGPPSCASPVPRVLAVAGSDPSGGAGIQADLKSIAAADGYGMAAITALTAQNTRGVAAVHVPPPEFLARQLDTLSEDITLDAVKIGMLATADVAAVVGAWLARAAPVPVVLDPVMVATSGDRLLAREAERAVLSLLDRADVVTPNVPELAVLLDEPVATTWGAVLDQAARLAARHGVRVVAKGGHLPGDDVPDALVDPGGDVVETRAQRVRTRNTHGTGCSLSSGLATRYAGHRDWGAALAGTKRWLTAALAHGEDLRVGGGHGPVDHHVWQRGTAVAPASHPGPT0008915_346DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008915-thiD-K00941NANA
AK018_006851413hypothetical proteinATGGATGGTGCGTTGATCGTCGGGGTCGTCACGGGTGCGCTGCTGGTGGTGGTCGCCGCCGTGGCCGTGGTCGCCTGGGCCGTGCGACGCCGTCGGACCCGTCGCGAGCGTGCCACCGAGGCCGAGCTGGAGCGCCTCGGCACCGCGGCCGGCTCGGCGCTGGTCCGCGTGGACGAACGCGCGCGCCTGGCCGAGGACGAGGTGGCATTCGCCGAGGCCGAGCTCGGCGCGCAGGCCGCCGCGGACGTCACGCCCCGGCTGCGCCGGGCGCGCGAGCACCTGCGCGAGGCGTTCCACCTGAACCAGCTCCTGCACGACTCCGTGCCGGACACCGAGGCCGAGCGTCGCACGTGGTCGGACCGCATCCTCGAGCAGTGCCGAGCGGCCGAGACCCTGCTGGACGAGGCCGACGAGGCGCTGCGCGCCCGGCGCCGCAGCGCCCGCGAGACGCCCGCGCTCGTGGACGGGGTCGAGGCACGCGCCACCGAGGTCGCCGCCCGGATCGCGCCGGCGCGCGAGCTGCTGACCGAGCTCGGCGAGCGCTACGCACCCCAGGCGCTGCGTCCCGTCGCCGACAACCCCGACCAGGCCGAGCGGCTGCTCGAGTTCGCGCGGCGCAGTGCCCGCGCCGCCCGTCGCCGACTCGACGCCCAGCAGGTCGGCGAGGCCGGTGCGACGGCGCACGCCGCCGAGGAGTCGGTGCGGCGCGCGGAGGGCCTGCTGGCCGCGGTCGGGGACTTCGAGGCGGAGGCGCTGCGCGCCGAGGCCGCGCTCGGCGACATGATCGCGGAGTCGCGCGCCGAGCTCGCCGAGGCCCGTGCACTGCCCGCCGCCCGGCGCGCCGGTGCGGTCGACGACGCCGTGGCGGCCCTGCAGGAGGCGCTCGACGCCCTGCCCGCACCCGGGGCGCCCGGCGACCCGGTCGGATCCCTGTCCCGCGTGCGGCAGGCCAACACCGCCCTCGACGACGCCGTCCGCGAGCGCACCGAGGCCGACGCCCGGCGGCGTCGCGCCTCCGCCCAGCTCGCCCCGGCGCTGGACGACGCCGAGCGACAGGTGGCTGCGGCGCGCTCCGTGGTCGACGACTACCGGGCTCCCGTCGGTCCCGACGCCCGCACCCGGCTGGCCGAGGCCGAGCGCGAGCTGTCCGCGGCCAGGACCACCGAGGACCCGGAGCGCGCGGTCGACACGGCACGGCGTGCCGCCTCGCTCGCGGCCGAGGCCGCGACGCTGGCGCACCGCGACGTGGTGCGCTCCCACCCGGGCCAGCACTGGGGTGCGCGCCACGGCGGGCCCCGACCGGGCCCGGGCGGTGGCATGGGCGGCTCGGGGGCGTTCGGTGCGGTGCTCGGCGGCATGGTGCTGGGCGGCATCCTCGACGACATCGGCGACCTCGGGGACATGTTCGACTGAMDGALIVGVVTGALLVVVAAVAVVAWAVRRRRTRRERATEAELERLGTAAGSALVRVDERARLAEDEVAFAEAELGAQAAADVTPRLRRAREHLREAFHLNQLLHDSVPDTEAERRTWSDRILEQCRAAETLLDEADEALRARRRSARETPALVDGVEARATEVAARIAPARELLTELGERYAPQALRPVADNPDQAERLLEFARRSARAARRRLDAQQVGEAGATAHAAEESVRRAEGLLAAVGDFEAEALRAEAALGDMIAESRAELAEARALPAARRAGAVDDAVAALQEALDALPAPGAPGDPVGSLSRVRQANTALDDAVRERTEADARRRRASAQLAPALDDAERQVAAARSVVDDYRAPVGPDARTRLAEAERELSAARTTEDPERAVDTARRAASLAAEAATLAHRDVVRSHPGQHWGARHGGPRPGPGGGMGGSGAFGAVLGGMVLGGILDDIGDLGDMFDNANANANANA
AK018_00686327hypothetical proteinGTGCACGCGTCCTTCGCGCTGCCGTTCGTGCCGCCGGACCGGTTCGCGGCCGCGTGGGCCGGCGTGCGCGACGCGCTGCGCCCCGGCGGGTGGCTCGCCGCGACGTTCCTGGGCCCTCACGACTCGTGGGCGGGCGACGCCGACCTGTCGGCGCGGCTGACCTTCACCGACGAGCGGGACCTGGACCGCCTCCTGGGCGGACTCGAGGTCCTCGACCACCGCGAGCGCTGCGCGGACGGGTCGTCGTTCGGCGGGCCGAAGCACTGGCACACGCACGAGGTGGTGGCGCGGCGTGCGCGCGGGCATGAGGGTGCCGGACGGCGCTGAMHASFALPFVPPDRFAAAWAGVRDALRPGGWLAATFLGPHDSWAGDADLSARLTFTDERDLDRLLGGLEVLDHRERCADGSSFGGPKHWHTHEVVARRARGHEGAGRRNANANANANA
AK018_006871890COG1132Putative multidrug export ATP-binding/permease proteinATGGAGTCGATGCCAGCGACCTCGACACCACCCTCCCGCACGCCCGCAGACGCCGGCCCGCGTCGCCCGGACCCCGGACCCGTCGGTGCCCACCTGAGCACCCTCGCCTCGGTGCGCCGCCTGCTGCCCGCCGTCCGCCCGGCCCTGCCGCGCCTCGTCGCCGGGCTGTTCGCCGCCCTGGGCGCCAGCCTCGCCGCGCTCGCCATCCCGCGCGTGCTGCAGGTCCTGGTCGAGGGACCGCTGGCCGCCGGCGTCGCCGAGCACGACCTCACCGCCCTGGTCTGGCCCACGCTCGCCGTCCTCGGCCTCGGCCTGCTGGAGGCCGGCCTCATCCTGGTACGCCGCAACCTCGTCATGTACCCCGGCACGCGCGTCGAGGCCGCCCTGCGCATGGACCTGTTCCGCCACCTGCTGCAGCTGCCTGCCGCCTTCCACGACCGCTGGCCCGGCGGCCAGCTCCTCAGCCGGTCCATGGCCGACCTCGGCCTCCTGCGCCGCTGGCTCGTCTTCGGTCTGCTGCAGCTCGTCGTCTCCGTCATCACCGTCGTCGTCGGCGTGGGCATCCTGCTGGCCACCGCCGGCTGGCTGGGCCTCGTCTACCTCGCCGGCGCCGTCCCCGTCGCCGTCATCGCCTACCGCTTCTCCCGCCGCTACCGCGTCATCGCCCGCCTCTCCCAGGACCAGAACGGCGACCTCGCCAACACCGTCGAGGAGTCCGTGCACGGCATCCGCGTCCTGAAGGCCTTCGGCCGCGGCGGCGACGCCCTGGCCGCGTTCACCGGCCAGGCCGAACAGCTCCGGCGCACCGAGATCCGCAAGGCCGGCAACCAGGCCACCGTCACCACCGCCCTGCACCTCATCCCCGAGCTCACCCTCGCCGTGTGCCTCGTCCTCGGCGTCTGGCTCACCGCCGACGGACAGATCACCGTCGGAGCGCTGGCCGCCTTCTTCCTGACCGCGGCCATCGTCAACGGCCCCGTCGTCGACCTCGGCATGACCCTGTCCATGACCCTCAACGCCCGCACCGCCGTCGACCGCTACTTCCAGGTCCTCGAGACACCCAACCCCCTGACCGACCCCACCGACCCCGTCGACCCCACCGACGTCCACGGCCACGTCACCCTCCGCGACGTCACCTTCCGCCACGACGACGAACCACCCGTGCTCGAGCACCTCGACCTCGACCTGCCCGCCGGCACGACCACCGCCCTCGTCGGCCTCACCGGCTCCGGCAAGTCCACGCTCGCCATGCTGCTGCCCCGCATCCACGACGTCACCGCCGGCACCGTCGAGCTCGACGGCGTCGACGTGCGCCGCCTGCGCCGCGCCGACCTGCGCCGGGCCGTGGCCGTCGCCTTCGAGGACCCCACCCTCTTCTCCGCCTCCGTGCGCGACAACGTGCTCCTCGGCGTCGACGACACCCTGCCCGCCACCGAGCGCGAGGCCCGCCTCGCCGAGGCGCTCGACGTCGCCCAGGCCGGGTTCGTCCACGACCTGCCCCACGGCCTCGACACCCGCATCGGTGAGGAAGGCCTCTCCCTGTCCGGAGGCCAACGCCAACGACTCGCCCTCGCCCGCGCCATCGCCGCGCGGCCCCAGGTCCTCGTCCTCGACGACCCGCTGTCCGCCCTCGACGTCGCCACCGAGGAAGCCGTCACCGCCCGGCTGCACGACGTCCTCGCCGGGTCCACCAACCTCGTCATCGCCCACCGCCCCTCCACCGTGGCGCTCGCGGACCGGGTCGCGGTGCTCGACGGGGGCCGGATCACGGCCCTCGGCACGCACGCCGAGCTGCTGGCCACCGACGCCCACTACCGCTACGTGATCGCCTCGCTGGAGTCCGACTGGGCCGCGGGCGAGCACGGAGCCGACCAGGAGGTCGCCCGATGAMESMPATSTPPSRTPADAGPRRPDPGPVGAHLSTLASVRRLLPAVRPALPRLVAGLFAALGASLAALAIPRVLQVLVEGPLAAGVAEHDLTALVWPTLAVLGLGLLEAGLILVRRNLVMYPGTRVEAALRMDLFRHLLQLPAAFHDRWPGGQLLSRSMADLGLLRRWLVFGLLQLVVSVITVVVGVGILLATAGWLGLVYLAGAVPVAVIAYRFSRRYRVIARLSQDQNGDLANTVEESVHGIRVLKAFGRGGDALAAFTGQAEQLRRTEIRKAGNQATVTTALHLIPELTLAVCLVLGVWLTADGQITVGALAAFFLTAAIVNGPVVDLGMTLSMTLNARTAVDRYFQVLETPNPLTDPTDPVDPTDVHGHVTLRDVTFRHDDEPPVLEHLDLDLPAGTTTALVGLTGSGKSTLAMLLPRIHDVTAGTVELDGVDVRRLRRADLRRAVAVAFEDPTLFSASVRDNVLLGVDDTLPATEREARLAEALDVAQAGFVHDLPHGLDTRIGEEGLSLSGGQRQRLALARAIAARPQVLVLDDPLSALDVATEEAVTARLHDVLAGSTNLVIAHRPSTVALADRVAVLDGGRITALGTHAELLATDAHYRYVIASLESDWAAGEHGADQEVARNANANANANA
AK018_006881824COG1132Putative multidrug export ATP-binding/permease proteinATGAGCGCCCCGGCACGACGCCGTCCCACCGACGCGCTGTCCGACGACGTCACGCACCTCGACGCTGACTCCTCGCGGGCGGTGCGCCGCAGGTCGCTGAGCCTGCTGGGCGGTCTGTTGCGACCCCGCGCGCGCATGCTCGCGTGGGCCGGTCTCCTCGTCGTGGTCAGCACCGCGGGGCAGGTGGCGGGTCCGTTGCTGGTGCAGGCCGCCATCGACACCGCGCTGCCGGCGCTGCGCGACGGCGACCCGACGCGCCTGCTCGTCGTCGGCGGCGCCTACCTGCTGGCCGCCGTGCTCGGGGGGATCTGCGCCGGCGCCTACGTGCGCGCCGCCGCCCGGGTCGCCCAGAGCGTGCTGCTCGAGCTGCGGCGCCGGGTGTTCCGGCACACGCAGCGGCTCTCGCTGGAGTTCCACGAGTCCTACACCTCGGGGCGCGTCATCAGCCGGCAGACCTCCGACCTGGAGGCGCTGCGCGAGCTGTTCGACGGCGGGCTCACCGGCGTCGTCTCCTCGTTGATGCTGATGCTCTTCACTGCCGGCGCCCTGTTCTGGGTCGACTGGCGGTCGGGCCTGGTGCTGGCGGTGGCCCTCGTGCCGGCCTGGCTGCTGACCCGCTGGTTCCAGAGGAAGTCCCAGGAGTACTACCGCGAGCAGCGCACCGCCTCGGCCCGGCTGATCGTGAAGTTCGTGGAGACCATGACCGGGATGCGGGCCGTCCAGGCGTTCCGCCGCGAGCCCACGGTCGAGGCGGACTACGACCGGCTGGGCGAGCAGTACCGCGACGCCAACCTGCGCATCTTCGGCGTCAACGGCCGCTACCAGCCCGGTCTGGTGCTGATCGGCAACGTCACGGTGGCCGCCGCGCTCGCCTACGGGGGCTGGCGCGTCATCGCCGGGGAGCTCGACGTGGGGGCGCTGGTGGCCGTGCTGCTCTACGTCAAGCGGTTCTTCCAGCCGATCCAGCAGCTGGGCATGTTCTACAACGCGCTGCAGTCCGCCGTGGCCGCCCTGGAGAAGGTCTCGGGGCTGCTCGCCGAGGAGCCCACCGTGGTCGAGCCCGCGGACCCGACGCCGCTGCCGCGTGCCCGCGGGGAGGTCCGCCTGGACCACGTCGGGTTCCGGTACGGCGAGGGACCGGTCGTGCTGCCCGACCTGGACCTGGAGATCCCCGCCGGGCAGACGGTCGCGCTGCTCGGCTCGACCGGGGCCGGCAAGTCCACGGTGGCCAAGCTCGTGACCCGCTTCTACGACGCGACCGAGGGGCGCGTCCTGCTGGACGGCGTCGACGTGCGCGACCTGGCGGGCACCGACCTGCGCCGCGCCGTCGTCATGGTCACCCAGGAGGCCTACCTGTTCTCGGGGTCGGTGCGCGAGAACATCGCCCTCGGGCGGCCCGACGCCACGGACGCGGAGATCGAGGCGGCGGCGCGCGCCGTCGGCGTGCACGACTTCGTGCTCTCGCTGCCGGAGGGCTACGACACCGACGTGAACAAGCGCGGCGGGCGCGTCTCGGCGGGGCAGCGCCAGCTGCTCAGCTTCGCCCGCGCCTTCCTGGCCGACCCGGCCGTCCTGGTGCTCGACGAGGCGACGAGCTCGCTGGACATCCCTGGTGAGCGGCTGGTCCAGCGCGGTCTGCAGACCCTGCTCGCGGACCGGACGGCGCTCATCATCGCCCACCGGCTGTCCACGGTGGAGATCGCGGACCGCGTCCTGGTGATGGAGGACGGGCGGGTCGTCGAGGACGGCGCGCCGGCCGAGCTGGCGGCGGGCACGGGGCGGTTCGCCGCGCTGAACGCGGCGTGGCAGGACGCGTTGGCCTGAMSAPARRRPTDALSDDVTHLDADSSRAVRRRSLSLLGGLLRPRARMLAWAGLLVVVSTAGQVAGPLLVQAAIDTALPALRDGDPTRLLVVGGAYLLAAVLGGICAGAYVRAAARVAQSVLLELRRRVFRHTQRLSLEFHESYTSGRVISRQTSDLEALRELFDGGLTGVVSSLMLMLFTAGALFWVDWRSGLVLAVALVPAWLLTRWFQRKSQEYYREQRTASARLIVKFVETMTGMRAVQAFRREPTVEADYDRLGEQYRDANLRIFGVNGRYQPGLVLIGNVTVAAALAYGGWRVIAGELDVGALVAVLLYVKRFFQPIQQLGMFYNALQSAVAALEKVSGLLAEEPTVVEPADPTPLPRARGEVRLDHVGFRYGEGPVVLPDLDLEIPAGQTVALLGSTGAGKSTVAKLVTRFYDATEGRVLLDGVDVRDLAGTDLRRAVVMVTQEAYLFSGSVRENIALGRPDATDAEIEAAARAVGVHDFVLSLPEGYDTDVNKRGGRVSAGQRQLLSFARAFLADPAVLVLDEATSSLDIPGERLVQRGLQTLLADRTALIIAHRLSTVEIADRVLVMEDGRVVEDGAPAELAAGTGRFAALNAAWQDALAPGPT0029045_865DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029045-mdlB|smdB-K18890NANA
AK018_00689603hypothetical proteinGTGGTCGACGACCGAGGAACCAGCACCGCCACGCGCAGCCGGGTGATCGCCTATCCGGCGGCGCTGCGCGCGGCCCGCCACCGCTTCGTGGTCTCCGGTGGCCTGGCGATGGAGCAGCTCACCGAGGACCTCTGGGTCAGTCGCGCCACGCTGTACCGGGTCGTGGGCAGTCGGGACCGGCTGCTCGGCGACGTGCTGTGGCAGCTGGCCGCCCGGACGCTCGAGCTGGCCGACCGGGACGCGGAGAACTCCGGGCTCGTCGGTGTCGACCGGCTGCTGGCCGTCGCCCGCGGGTTCGATCGCCAGGTCAGCGCCTTCGAGCCGTTGCAGAAGTACCTCGCGGTCGACCCGGCCGACGCCACACGGATCCTGTTCGGGGCGACGGCGCGGGTCCACGTCCGCAACGTCGAGGCGTGGGGCGTGCTCCTGCAGCGCGAGCTCGAGCGCGGCACCGTCGACTCCCTGCCGTTCTCGGTGCCGGAGACCGCCTTCGCGCTCGTGCGCATCGGGGAGTCGATCGTCTACGGCTCGATGCTCGCCGGCATCGACCCCGACCCTCGACTCGGCGAGGACCTGCGGCGCACCGTGCTGCTGCGCCGCTGAMVDDRGTSTATRSRVIAYPAALRAARHRFVVSGGLAMEQLTEDLWVSRATLYRVVGSRDRLLGDVLWQLAARTLELADRDAENSGLVGVDRLLAVARGFDRQVSAFEPLQKYLAVDPADATRILFGATARVHVRNVEAWGVLLQRELERGTVDSLPFSVPETAFALVRIGESIVYGSMLAGIDPDPRLGEDLRRTVLLRRNANANANANA
AK018_00690939gltC_1HTH-type transcriptional regulator GltCGTGACCGACACCCCGCCCCCCGCCGCACAGCTCGACCTGACCCGCCTGCGCGTCCTGGCCGCCGTCGCCCGCACGGGCTCGGTGACCGCGGCCGCCCGGGAGCTGCACTACGCCCAGCCCTCGGTAAGCCACCACCTCGCCCGTCTCGAGGCCGAGGCGGGCCTGCCGCTGCTCGAGCGGGTGGGCCGGGGGGTGCGCCTCACTGAGGCGGGTCGCCTGCTGGCCGATCGTGCCGAGGAGATCATCGGCCGGGTCGAGGGCGTCCAGCGCGAGCTCGACGCGCTGGCCGGCCTGCGCGCGGGCCGCGCGCGGCTGGCGGCCTTCCCCTCGGCGCTGGCCACGCTCGTGCCGGCCGCCGTGACCCGGCTGCGCTCCGCCCACCCGGGCCTCGGCGTCGGCCTGGTGGAGGCCGAGCCGCCCGAGGCACTGGCGGCGCTGCGGGCCGGCGAGGTCGACGTCGCGCTGGTGTTCGAGCACGACGCTCCCGACCGCACCGAGCGGCGCGCCGACGAGCTGGCCGGGTTCGAGGTCACCGAGGTGCTCGACGACGTCGTCCATCTCGTGACACCTGCCGACGGCGCCCCCGAGGTGGCCGCGACGGCACGGCCGGCGACCGTCCTGCGGGCGGTCCGCTCCCAGACCTGGATCGCCGGCTGCGAGCGCTGCCGGGCCGATCTCGTGGGGCGGTGCGCGACGGCCGGGTTCGCGCCGCGGATCGCCTACGAGACGGACGACTACGTGGCGGTGCAGGCGCTCGTCGCGGCCGGTGCCGGCGTGAGCCTGCTGCCCGGGCTGGCGCTGCGCGCGCACCGTCATCCCGACGTCAGGGCCACCCCGTTGCCGGGGGCGGTCCGGCGCGTCCTCGCGCTGACCGTCGGGGCGCCCGCTCCCCCGGCGCGGGCGCTGGTGTCGCACCTCGCCGCCGCCGGGGCCGCCTGAMTDTPPPAAQLDLTRLRVLAAVARTGSVTAAARELHYAQPSVSHHLARLEAEAGLPLLERVGRGVRLTEAGRLLADRAEEIIGRVEGVQRELDALAGLRAGRARLAAFPSALATLVPAAVTRLRSAHPGLGVGLVEAEPPEALAALRAGEVDVALVFEHDAPDRTERRADELAGFEVTEVLDDVVHLVTPADGAPEVAATARPATVLRAVRSQTWIAGCERCRADLVGRCATAGFAPRIAYETDDYVAVQALVAAGAGVSLLPGLALRAHRHPDVRATPLPGAVRRVLALTVGAPAPPARALVSHLAAAGAANANANANANA
AK018_00691993tdcB_1COG1171L-threonine ammonia-lyaseATGACACTCGCACCGCCCACCGTCGGCGACGTGCTCGCGGCCCAGCACCGGCTGGCGGGACACGTGGTCCGCACCCCGGCGTCCCGGTACGCCGAGCTCGACCGGCTCGTGGCGACCGCCGGCGCCGCCGAGACGCGCCTGGTCGTCAAGCACGAGAACCTCCAGCACACCGGCGCGTTCAAGGTCCGCGGCGCGCTGAACCTCCTCGCCACGCGCACGACCACGCCGGCCGGCGTGGTCGGCTACTCCACCGGCAACCACGCCCAGGCGCTGGCCTACGCCGCGCGCCGGGCCGGGGTGCCGTGCACCATCGTCATGCCGAGCGCGCCCAACCCCCTCAAGGAACGCGCCGTGCGCGCCCTGGACGCCGAGGTGGTGCTGCACGGCGAACGGCTCGAGAACGCCTGCGAGGAGGCGACCCGGATCGCGTCGACCACCGGCGCCGACCTCGTCAGCGCGGCCGACGAGCCCGCCCTCGTCGCCGGCGCGGCCACCGCCACGCTCGAGCTGCTCCAGCAGGAGCCCGACCTCGACGACCTCGTGGTCCCGGTCGGCGGCGGCTCGGGCGCCGCCGCCGCCTGTCTCGTGGCCGCCGCCCTGGCCCCGCACGTGCGGGTCGTCGGTGTGCAGTCCGCCGCCTCGCCGGCCGCCCACGACTCGTGGCGCACCGGGGAGCTGTGCGCGCGACCGAACCGCACCCGCGCCGAAGGGCTCGCCGTCGGGCGCGGCTTCACCCTGACCCAGGGCGTGCTGCGCAAGCACCTGCACGACTTCCTGCTGGTCACCGACGACCAGATCTCCCGCGCCCAGCAGATGTACCTGACCGCGGCCAGGACCGTGGCCGAGGGCGCCGGGGCGGCGTCGCTCGCCGCCGTCGCGGCGCACCCCGAGCGGTTCTCCGGGCGCACGGTCGGCGTGATGTGCTCCGGCGGGAACGCCGGTGCGGGGGAGCTCCGCCGGGCGTTGGACCACGCCTGCGCGACGGCGACCTGAMTLAPPTVGDVLAAQHRLAGHVVRTPASRYAELDRLVATAGAAETRLVVKHENLQHTGAFKVRGALNLLATRTTTPAGVVGYSTGNHAQALAYAARRAGVPCTIVMPSAPNPLKERAVRALDAEVVLHGERLENACEEATRIASTTGADLVSAADEPALVAGAATATLELLQQEPDLDDLVVPVGGGSGAAAACLVAAALAPHVRVVGVQSAASPAAHDSWRTGELCARPNRTRAEGLAVGRGFTLTQGVLRKHLHDFLLVTDDQISRAQQMYLTAARTVAEGAGAASLAAVAAHPERFSGRTVGVMCSGGNAGAGELRRALDHACATATPGPT0001960_5528DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
AK018_00692621yciO_1COG0009putative protein YciOATGGCACGCGTCGTGGACATCCATCCCGTCGACCCGCAGCCCCGCCTGGTGTCCCAGGTGGCCGACGTGCTGCGGGAGGGCGGCCTGATCGCCTACCCGACGGACTCGGGGTACGCCCTGGGGTGCCGCTGCGGCCAGCGGGACGGCACGGAGCGCATCCGCCAGATACGCCGTCTCGACGCCAAGCACCACTTCACCCTGGTCTGCGCGAGCTTCGCCCAGATGGGTCAGCTCGTCCGCATCGACAACTCGGCGTTCCGGGCGATCAAGGCGGCCACACCCGGCCCGTACACGTTCATTCTGCCGGCGACCGAGGAGGTGCCGCGGCGCCTGGCGCACCCGAAGAAGAAGACGGTGGGCGTCCGGATCCCGGAGTCGCGGACGGTGCACGCGATCCTCGACGAGCTCGGCGAGCCGCTGCTCAGCTCGACGCTGATCCTGCCCGGCGACGACGGACCGCTGACGCAGGGGTGGCAGGTCGACGAGGCGGTCGGCCACGCGGTGGACCTCGTCGTGGACGCCGAGGACGTCCCGGCCGAACCCACCACGGTGGTCGACTTCTCGGCCGGGTACCCGGAGGTCGCGCGCGTCGGCGCCGGCGACCCCGAGCCGTTCTCCTGAMARVVDIHPVDPQPRLVSQVADVLREGGLIAYPTDSGYALGCRCGQRDGTERIRQIRRLDAKHHFTLVCASFAQMGQLVRIDNSAFRAIKAATPGPYTFILPATEEVPRRLAHPKKKTVGVRIPESRTVHAILDELGEPLLSSTLILPGDDGPLTQGWQVDEAVGHAVDLVVDAEDVPAEPTTVVDFSAGYPEVARVGAGDPEPFSNANANANANA
AK018_006931407hypothetical proteinATGAGCGATCGCGGACTCGAGCTGGCACGGGACAAGATGCAGGACGCGGGGGTGGCCCCGGCGGCGGTGGACGTCTTCAGCCGCTTCTACCGGTTGCTGGAGGAGGGCGCCTCCGGGCTGGTGCGGGAGGACGACGTCGACCCGCTGACGGACCTGCCGCGCCACGCCGACCTCGACGTCGAGCCCGAGCGTGCGGCCGAGGCGCTGAGCAGGACCGCCATCATCAAGCTCAACGGCGGCCTCGGGACCTCCATGGGCATGGACAGGGCCAAGTCGTTGCTCGAGGTCCGTCGCACGGCCGACGGCGAGGCGCTGAGCTTCCTCGACGTGATCGTGCGGCAGGTGCGTGCGGCGCGCGAGCGGACCGGGGCGCGGTTGCCGCTGGTGCTCATGAACTCCTTCCGCACGCAGGACGACACGCTGGCCGCGCTGGCCGGCTACGACGACCTGGCCGTGGACGGCCTCCCGCTGGACTTCCTGCAGAACCGCGAGCCGAAGCTGCGCGCCGACACCCTCGAACCGGTCGAGTGGCCCGCGGACCCCTCGATGGAGTGGTGCCCGCCCGGCCACGGCGACCTGTACCCGGCGCTGCACGCCGGCGGCGTCGTGCGCGCGCTCCTCGACGCGGGCTTCCGGTACGCGTGCGTGTCGAACTCGGACAACCTCGGTGCCGCGCCCGACGCCGACCTGGCGGCGTGGTTCGCGGACTCGGGCGCGCCCTACGCGGCCGAGATGTGCCTCAAGACGCCGGCGGACGTCAAGGGCGGTCAGCTCGTGGTGCGCCGGTCCGACGGCCGGATCATCCAGCGCGAGACGGCCCAGACGCACCCCGACGACATGGACGTCTCGCTCGACCCGACGCGCCACCGCTACTTCCACACGAACAACCTGTGGTTCGACCTCGAGGCGCTGGCCGCGGAGCTGGAGCGCACCGGCGGCGTCCTCGAGCTGCCGTTGATCCGCAACACCAAGACGGTCGACCCCACGGACCCGGAGTCGCCGGAGGTGGTCCAGATCGAGTCCGCGATGGGCGCCGCGGTGGCGGTCTTCGAGGGTGCGACGGCGATCGAGGTCGGTCGCGAGCGCTTCCTGCCGGTCAAGAAGACCAGCGACCTGCTCCTGCTGCGCTCGGACGTGTACGAGCTGACCGACGACTTCCGGCTGGTGGCGCGCACGGACGCACCGCTCGTCCAGCTGTCGGGCACGTACAAGACCATCTCGGCGTTCGACGCCCGGTTCCCCTCCGGTCCGCCGTCGCTGCGCGGGGCGAGCGGCCTGCGGGTCGACGGCGACTGGACCTTCGGCGCCGACGTGACGGCCCGTGGCGACGCGGCGCTGCCGGAGCCCGACGGGGGAGCGGGCACCGTCCCGGACGGCGCGACGATCACGGGTTCGGGCCTCGAGTGAMSDRGLELARDKMQDAGVAPAAVDVFSRFYRLLEEGASGLVREDDVDPLTDLPRHADLDVEPERAAEALSRTAIIKLNGGLGTSMGMDRAKSLLEVRRTADGEALSFLDVIVRQVRAARERTGARLPLVLMNSFRTQDDTLAALAGYDDLAVDGLPLDFLQNREPKLRADTLEPVEWPADPSMEWCPPGHGDLYPALHAGGVVRALLDAGFRYACVSNSDNLGAAPDADLAAWFADSGAPYAAEMCLKTPADVKGGQLVVRRSDGRIIQRETAQTHPDDMDVSLDPTRHRYFHTNNLWFDLEALAAELERTGGVLELPLIRNTKTVDPTDPESPEVVQIESAMGAAVAVFEGATAIEVGRERFLPVKKTSDLLLLRSDVYELTDDFRLVARTDAPLVQLSGTYKTISAFDARFPSGPPSLRGASGLRVDGDWTFGADVTARGDAALPEPDGGAGTVPDGATITGSGLEPGPT0014875_715DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0014875-gtaB|UGP2|galU|galF-K00963NANA
AK018_00694651yigZ_1COG1739IMPACT family member YigZATGCCCTCCCTGCCGAGCACGCTGGCCGCCCCCGTCGAGCACGAGCTGGTGGTCAAGAAGTCACGGTTCCTCGCACTGCTCGCTCCCGTGGGTTCGGCGTCCGAGGCCGACGCCGTGATCGCCGCCCGCCGCAAGGACCACTGGAACGCCCGCCACCACTGCGTTGCTGTCGTCCTCGGACCGCATGCCGACACGCACCGCTCCTCCGACGACGGCGAACCCTCCGGTACCGCCGGCGTCCCCATGCTCGAGGTGCTGCACCAGCGCCGCACCACCGACGTGGTCGCCGTCGTCAGCCGGTACTTCGGCGGGGTGCTGCTCGGCGCCGGCGGACTCGTGCGCGCCTACGGCAGTGCCGTCGCAGCCGCGCTCGACGACGCGGCGTCGAGCGGCCTCGTCCTCGGCCGCCGCACCATGGTGCCCGTCGCGCTCGACGTGTCCCACGCCGACGCCGGACGCCTCGAGCACGTCCTGCGGGAATGGGCGGCGACGCACGACGCCGTCGTCGGCGCCACCGAGTACGCGCAGCAGGCACGTCTGCAGCTCCTCGTGCCACCGGCGCAGGTCGACCGCCTGCACGACGACGTCGCCGCGGCCAGCGCAGGCCGGCTCACCCTCCAGGTCGGCAGCGCCCGCGTCGTCGACGGCTGAMPSLPSTLAAPVEHELVVKKSRFLALLAPVGSASEADAVIAARRKDHWNARHHCVAVVLGPHADTHRSSDDGEPSGTAGVPMLEVLHQRRTTDVVAVVSRYFGGVLLGAGGLVRAYGSAVAAALDDAASSGLVLGRRTMVPVALDVSHADAGRLEHVLREWAATHDAVVGATEYAQQARLQLLVPPAQVDRLHDDVAAASAGRLTLQVGSARVVDGNANANANANA
AK018_00695657hypothetical proteinATGACGGCACAGCAGCAGGAGACCGGCACGGACGGCCGCTACCCCCGCCCCCCGGTCTCGTTCGACGAGGCCGAGTGGGTCTGGCGGGAGCTCTCGGTCGAGGCGCTGCGGCCCGAGGGCAAGCCGGAGGTGGTGCGGCTCGCCGTCGTCGCCGGCCTGACGAGGGCGACCGGCGCCCGGTACGGCGACCTGCTGCGTGTGCGTGCCGAGGACCTGGAGCTCGGCACCCCCGCTGCGCCCCGAGGGCGCGTGGGCGGCGACCGGCCCGCGGGGGAGGGGAGCGTCCTGGTCCGGCACGGCAAGCACCGCACGCTGCGCCGGCACCGGGTCCCCGCGGAGGTGGTGGTGGTGCTGCGCCACTGGATGGCGGTGCGCACGGAGCTGGCCGCGGAGCTGGAGGGTTCGGTGCCGCGGGCCCTGCTGCTCACGGTGCACCACACGCACGACAACGGCACCACGGTCTCGAGCGGGCTCCCGATCACCCGGCAGGGCCTCGTGCTGTCGTGGCGCCGGTTCGTGCACCGGACGAACGCCAGGAACGGCGCGGCGCGCCCGCCGCTGCCCACCCGGTTCGAGCAGGTTCGCCGGGCCTGGACGACGGCCGGCGTGCACGACCCGGGCCGCGAGGTCGTCGCTTCGGGCGACGAGGCGACCTGAMTAQQQETGTDGRYPRPPVSFDEAEWVWRELSVEALRPEGKPEVVRLAVVAGLTRATGARYGDLLRVRAEDLELGTPAAPRGRVGGDRPAGEGSVLVRHGKHRTLRRHRVPAEVVVVLRHWMAVRTELAAELEGSVPRALLLTVHHTHDNGTTVSSGLPITRQGLVLSWRRFVHRTNARNGAARPPLPTRFEQVRRAWTTAGVHDPGREVVASGDEATNANANANANA
AK018_00696675COG0454Putative acetyltransferase OgpATGTGACCGACATCCAGATCCGCCCCTTCCGTCCGACCGACCGTGCCGCCGTGGCGGAGATCTGCGTCCGCACGGCCGCCGGTGGCGGCGACGCGCGGGGCGTGTACTCCGACGACATGCTCATGCCCGACGTCTACGCGCTGCCCTACGTGGAGCACTCCCCCGAGCTGGCGTTCGTCGTCGTCGACCACGACGCCGGCACCCCGGGCGACGATCCGCTGACGGTCACCGACGGCCGGCTCCTGGGCTACGTGCTCGCCGTGGCCGACACGGCCGCGTTCGCGAGCTGGTGGGACCGGGAGTGGACCCCGGAGTTCGTCCGCCGGCACCCGGCTCCCGGGCCGACGACGCCCGCGGAACCGGGCTACACGGAGGAGGCGCTGCTGCGTGACGGCGCCGACCCGCAGCGCATGCTGCGCAGCCTGGTCCACGGCGAGCTGGCCACGCACCCCGCGCACCTGCACATCGACCTCGTCCCCGAGGCGCAGGGCCACGGGCTCGGACGACGACTCATCACGACGATCCGCGCGGCCCTGGCCGAGCGTGGCGTGCCCGGGGTGCACCTCGGCTACGACCCCGCCAACACCGGCGCCCGCTCCTTCTACGACCGCCTGGGCTTCGAGGAGCTGGCCTCCCACGCCCCGGACCGGCCGCTCCTCGGGATCGCGACCGACTGAMTDIQIRPFRPTDRAAVAEICVRTAAGGGDARGVYSDDMLMPDVYALPYVEHSPELAFVVVDHDAGTPGDDPLTVTDGRLLGYVLAVADTAAFASWWDREWTPEFVRRHPAPGPTTPAEPGYTEEALLRDGADPQRMLRSLVHGELATHPAHLHIDLVPEAQGHGLGRRLITTIRAALAERGVPGVHLGYDPANTGARSFYDRLGFEELASHAPDRPLLGIATDNANANANANA
AK018_00697558hypothetical proteinATGACGATGCTGGCCGAGCTGCAGGACCTGAGCCGACGTCGTCACGAGCGGCCCCTGCCCCGGGTCTCGGTGGTTCACGGCCCGTCGGTGCCGGGCGGCGTGCTGCGTGTGCTCGCCGTGCTCGCCGCCGGCGGACTCGTGCTGCTCACGACAGCGCGCACGTCGCTGCTGCCCGACCTGGCGCTGTCGGCCGCGCTTGTCCTCGCGGTGTGGACGGCGGTCCGTCCAGGACGGGTCCCGAGCCACCTCGCGGTGGTCCTGTCGGCGGCGGTGCTGCTCGGCGCGCAGACCCCGCCGTTCGACCCCGCCGTGCTGTGGCTCGCGCCGCTCGGCTTCCTCACCGTCCGGCTGGGCTGGTGGGCCGAGCACACGTCGTGGACCGGCCGGGTCGAGTGGGCCGCGCTCCGCGCCACCGCAGGCCGGGACCTGACGGTCTGCGGCGCGACCGTGGTGCTGGGTGCGGCGGCCTGGGCGGCCGCCGCCGCGTCCGTCGGAGTCCTGGTGGTGCTCGGTGGGATCGCTGTCGTGGCGATCGGCTGGGCCTTCCTGCCACGATGAMTMLAELQDLSRRRHERPLPRVSVVHGPSVPGGVLRVLAVLAAGGLVLLTTARTSLLPDLALSAALVLAVWTAVRPGRVPSHLAVVLSAAVLLGAQTPPFDPAVLWLAPLGFLTVRLGWWAEHTSWTGRVEWAALRATAGRDLTVCGATVVLGAAAWAAAAASVGVLVVLGGIAVVAIGWAFLPRNANANANANA
AK018_006981389hypothetical proteinGTGAGCTTCGGGACACCCGCACGCTCGGCCGCCGAGGACAGGGGTCTGCGCCGCCCGGACGAGCCGGTGTGGCGTCGGACGCCGCACGGTGTCCTGGGCGTGGTGGCCGGTGTGGTGGTGCTGGCGCTCGGGCTGCTCGCCGGGCGCGCGGACGTGGCGCTGCTCGGTGTCCCGGTGGTGCTCGGTGTGATGTGGCGCACTCGGTCGGCCCGCAGCGAGGACGCGGAGGCGACGGCCACGGAGATCCGGCTGGCCGCGCAAGACGGTCCCACCCGTCCGGGCGAGCTGGGCGCGTCCCTGACGCTGGAGCCACCGCGGGTGGCCGAGCTCGTCCAGGTCCGCGTCACCGCTCCCGGCCACCGACCGGTCGAGGTGACCGTCCCCGGTGGCCACCGCGTCCTCGACCTGCGCCTGGCGACGGTGCGCACGGGCGCGCAGCCGACGTTCGTCGTCGACGTGCGCGGCTACGGCGACGGGGGTGCCGTCGCGGAAGACCCGGTCCGTGCGGCGGCCCCCGACCGGATCGTCCTGCCGACAGCCATGCCCCTGGGCCGGATCCCCCTGCCGTACCGGCTGCGGGGTCTCACGGGCCCGCACACCTCGCGGCGTCTCGGCGATGGCGACGAGCTGCGGGACGTGCACCCGTTCGTGCCCGGTGACCGCCTGCGTCGTATCGACTGGCGCGCCACGGCGCGACGCTCGCCCGAGCTGGACGAGCTGTACGTCCGGCGCACCTACGCGACCGCGGAGGCGACCACGATGCTCGTCGTGGACTCGCGCGACGACGTCGGCCCCGACCTGCGCACATGGCGCGGCAGCGGTGAGCAGCGCGTCGACGAACCGACGTCGCTGGACCTGGCCCGGCACGCCGCCGCCTCGGTCGCCACGGCCGTCGTGGAGGCCGGTGACCGCGTCGGCCTGGAGGACCTCGGGCGCCGGCGACGGCCGGTACCGCCCTCCGGCGGACGCCGGCAGCTGCGTCGGCTGCTGTACGGCCTGGCGCTGAGCAGCCCGGTGGGCACACCGCCGCGACGGCTGCGCGCGCCGCAGCTGCCCGCCGACGCCGTCGTCTACCTGTTCACCACCGCGCTCGACGACGAGTCCGCGCGGCTCGCGCGCACCTGGAAGGACCACGGCCACCGCGTGGTCGTGGTGGACACGCTGCCGGTGGTGCGGCCGGCGTACGGCGAGCACCTGCGGATCGCGTGGCGCATCACCGCGATGGAGCGCGAGGACCGGCTGCGCGCGCTGGTGGCCGAGGGGGTGCCCGTCGTGCCGTGGTCGGGCGCGGCACGCTCCGCCGCCCCGGCCCGTCTGGAGACCTTGGTCCGCGCGGCGGAACGGCACCACTCGGTGCCGGTGCGCCTGACGTCGGGAGGGACGCGATGAMSFGTPARSAAEDRGLRRPDEPVWRRTPHGVLGVVAGVVVLALGLLAGRADVALLGVPVVLGVMWRTRSARSEDAEATATEIRLAAQDGPTRPGELGASLTLEPPRVAELVQVRVTAPGHRPVEVTVPGGHRVLDLRLATVRTGAQPTFVVDVRGYGDGGAVAEDPVRAAAPDRIVLPTAMPLGRIPLPYRLRGLTGPHTSRRLGDGDELRDVHPFVPGDRLRRIDWRATARRSPELDELYVRRTYATAEATTMLVVDSRDDVGPDLRTWRGSGEQRVDEPTSLDLARHAAASVATAVVEAGDRVGLEDLGRRRRPVPPSGGRRQLRRLLYGLALSSPVGTPPRRLRAPQLPADAVVYLFTTALDDESARLARTWKDHGHRVVVVDTLPVVRPAYGEHLRIAWRITAMEREDRLRALVAEGVPVVPWSGAARSAAPARLETLVRAAERHHSVPVRLTSGGTRNANANANANA
AK018_00699984hypothetical proteinATGACCCCCACGCCCACCCCCCTGCCCGTCACCGACGTCGCCCACCACGCCCGCGCCGTCCTCGACGAGGTCGGCACCGCCGTCGTCGGCATGCACGAAGCCCTCGAGACGGCGCTCGCGGCGGTGCTCGCGGGTGGGCACGTCCTGTTCGAGGACGTGCCCGGTCTGGGCAAGACCCTCGCCGCCCGGTCCCTGGCGACGGCGCTGGGCCTCGACTTCGCCCGCCTGCAGTGCACCCCCGACCTGCTGCCGAGCGACGTCACCGGATCCAGCGTCTTCGACCCGGCGACCCGCGAGTTCGTGTTCCGCCCGGGACCGGTCTTCACCGGCCTGTTCCTGGCCGACGAGATCAACCGCACCGCCCCGAAGACCCAGTCGGCCCTGCTCGAGGCCATGGCCGAGCGACAGGTCTCCGCCGAGGGCGAGACCCGTCCGCTGCCCCGCCCGTTCCACGTGGTCGCCACGTCGAACCCCGTCGAGTACGAGGGCACCTACCCGCTGCCCGAGGCGCAGCTCGACCGATTCATGGTCCGACTCGCCGTCGGCTACCCCGACCGCTCGCAGGAGCACGACGTCCTGATGCGCCGCGTCGCACGCCGCACGGAGGAGGCCCCCGTCCGGCAGGTCGTCGACGCCGACACCGTCCGGGCGATGCAGGCCGGCGTGGAGGCCACCGAGGTCGACCCCGACGTGGCGGCCTACTGCGTGGACCTGGCGGCCGCGACACGCCGGCACCCGTCGCTCGAGGTGGGGGCCTCCCCGCGCGGTTCGCAGAACCTGCTGCTGCTGGCGCGGGCGATCGCGGTGCTCGACGGCCGCGACTTCGTGGTGCCGGAGGACGTCAAGCGCATCGCGGTGCCGGTGCTCGCGCACCGCCTGACGCTGACACCGACGGCGTGGGCGTCGGCAGTCCGTCCCGAGGACCTCGTCCGCGAGATCCTGGCGTCGGTGGCGGGCCCCGCGACGGTGCGGGACGCGCCGTGAMTPTPTPLPVTDVAHHARAVLDEVGTAVVGMHEALETALAAVLAGGHVLFEDVPGLGKTLAARSLATALGLDFARLQCTPDLLPSDVTGSSVFDPATREFVFRPGPVFTGLFLADEINRTAPKTQSALLEAMAERQVSAEGETRPLPRPFHVVATSNPVEYEGTYPLPEAQLDRFMVRLAVGYPDRSQEHDVLMRRVARRTEEAPVRQVVDADTVRAMQAGVEATEVDPDVAAYCVDLAAATRRHPSLEVGASPRGSQNLLLLARAIAVLDGRDFVVPEDVKRIAVPVLAHRLTLTPTAWASAVRPEDLVREILASVAGPATVRDAPNANANANANA
AK018_00700477hypothetical proteinATGACCCGACGCCACCTGCCCTGGATCCTCGCCACCGGCGCCGCCCTCCTCCTCGCCGCCACCCGCACCCTCGACCCCGCCCACGCCCTCCTGCTGCCCGCCGCGCTCCTCGCCACCTGGTACGCCTGGCGCGCCCTCGACCACGGCGACGAAGCCCGCTGGCCCCAACCCCCCGACCAGACCCGCGACGGCGCCCGCCACGACGTCTCCGACCTCGGCTGGGCCGCCTTCACCCGCGACGGCCGCGTCGCAGCCCGCGTCACCCGCCGCGTCCACGCCCTCGCCACCCACCGCCTCGCCCAGCACGGCATCGACCTCGACGACCCCACCCACCACACCGCCGCCGCACACCTCCTCGGCGACGACGTCCTCACCGGCATCCGGTCCCGCCGACCACCCACCCCCCGCACCCTGCACCACTGGCTCGACACCCTCGACCGCCTCCCCGACCACCACCCACCCGGAAGGCCCAGATGAMTRRHLPWILATGAALLLAATRTLDPAHALLLPAALLATWYAWRALDHGDEARWPQPPDQTRDGARHDVSDLGWAAFTRDGRVAARVTRRVHALATHRLAQHGIDLDDPTHHTAAAHLLGDDVLTGIRSRRPPTPRTLHHWLDTLDRLPDHHPPGRPRNANANANANA
AK018_00701717hypothetical proteinATGAACCCCCGCACCGCCCGCCACCCCGCCGCCCTGATCACCCTCGTCGCCCTCGTCCTCCTCGGCGCCGCCACCGCCACCCCCTGGCACGTCACCGTCCCCGCACCCCTCCTGCAGCTCGGCGACGTCCCCCTGCCCCAGCAGGAGCTGCCCACCGCCAGCGCACCACCCGCCCCCGACGAACAACCCCCGCCCGACGACGACGACACCCTGCTCACCGTGCTCCTCGCCCTCGCCGCCGCCGTCGCCCTCCTGCTCTGGTACGTCGGCCGCAAGGTCCTCGACGCCCTGCGCGACGACATCGAACCACCACACCCGCCCGACCACCTCGACACCGGCGACACCCTGCCCGGCACTGACGCCCCCACCGTCCCCCTGCCCCAGATCGCCGACGCCGTCACCCGCGCCCTCGACCGCCTCGACGCCGCACCCACCACCCACGACGCCGTCATCGCCGCCTGGCTCGCCCTCGAGGACGCCGCCGCCGACCACGGCACCCGCCGCCACCCCGCCCAGACACCCACCGAGTTCACCCAGACCGTCCTCGACGACACCCCCGCACCACCCCACGACGTCGCCACCCTGCGCCGCCTCTACACCCACGCTCGCTTCACCGACCGCCCCACCCCCACCCACGACGTCGACGAAGCACGCCACGCCCTGACCGCCATCGCCCACGCCCTCGCCACCCACGACACCATCCGCCCCACGCCATGAMNPRTARHPAALITLVALVLLGAATATPWHVTVPAPLLQLGDVPLPQQELPTASAPPAPDEQPPPDDDDTLLTVLLALAAAVALLLWYVGRKVLDALRDDIEPPHPPDHLDTGDTLPGTDAPTVPLPQIADAVTRALDRLDAAPTTHDAVIAAWLALEDAAADHGTRRHPAQTPTEFTQTVLDDTPAPPHDVATLRRLYTHARFTDRPTPTHDVDEARHALTAIAHALATHDTIRPTPNANANANANA
AK018_007021113hypothetical proteinGTGACCCGCCGCGGGCACCACCACCCGGGAGCGCGCGAGCTGACGGTCCGCCTCGACGTCCCGCTGCCCGGCACCGACGTCGTCGACGTGCGGGCCCTGGCCTACACCGACCTCGTCGGCGACCCCGACACCGGCGACCGGCTGGCCCTGAACGTCTCCGCCCTGGCCCGCGGGCTCGGCACCGGCGGGTACGCCCTGGTCGCCGCACCCCTCGACACCGTGCCCGCCGACCCCGCGCCCGGCCCCGGCCACCTCGTCAAGGCCCGCTACACCCCCCTGCAGACCATGGTCCTCGGCGTCGACGAGCAGGAGTCGCCCCACCACGAGCTGCTGCGCGACGCCGACGACCTGGCCGGACTGCCCGTCGTCGTCGCCGACCTGCACTCCGCGCTGCCCGCCGTCGTCGCCGGCGCCCGGCACGCCGCCGCGACCGCCGGCCGGCCCGCCCCCCGCGTCGTCTACGTCATGACCGACGGCGGCGCCCTGCCGGCCACGTTCTCCCGCACCGTACACACCCTGCGCGAGTCCGGCTGGCTCGACGCCACCGTCACCGTCGGACAGGCCTGGGGAGGCGACCTCGAGGCCGTCACCGTCCACACCGGCCTGCTCGCCGCCCGGCACGTCGCCGACGCCGACCTCGTCGTCGTCACCCAGGGCCCCGGCAACCTCGGCACCGGCACCCGCTGGGGCTTCTCCGGCGTCGCCGCCGGCGAAGCCCTCAACGCCGCCGCCACCCTCGGCGGGCGCCCCGTCGCCTCCCTGCGCGTCTCCGGCGCCGACCCCCGCGACCGCCACCGCGGCATCTCCCACCACTCCCTGACCGCCTACGGCCGTGTCGCCCTGCAACCCGCCGACGTCGTCGTCCCCCACCCCGCACCCGCCCTGCAGGACCGGCCCGGCTGGGGAACCGAGCTCACCGCACGCGTCCACGACCAGGCCCGCACCCTCACCCCACCCCACCGGCTCGTCGACGTCGACGCCGGCACCGACCTGCTCGACACGCTGCGCACCAGCCCCGCCCGCCTGTCCACCATGGGCCGCGACCTCGACGCCGACCCCGCCGCCTTCGTCACCGCCGCCGTCGCCGGGCAGCACGCCACCCAGCTCCCATGAMTRRGHHHPGARELTVRLDVPLPGTDVVDVRALAYTDLVGDPDTGDRLALNVSALARGLGTGGYALVAAPLDTVPADPAPGPGHLVKARYTPLQTMVLGVDEQESPHHELLRDADDLAGLPVVVADLHSALPAVVAGARHAAATAGRPAPRVVYVMTDGGALPATFSRTVHTLRESGWLDATVTVGQAWGGDLEAVTVHTGLLAARHVADADLVVVTQGPGNLGTGTRWGFSGVAAGEALNAAATLGGRPVASLRVSGADPRDRHRGISHHSLTAYGRVALQPADVVVPHPAPALQDRPGWGTELTARVHDQARTLTPPHRLVDVDAGTDLLDTLRTSPARLSTMGRDLDADPAAFVTAAVAGQHATQLPNANANANANA
AK018_007031035pafB_1COG2378Protein PafBATGAGTGCTGGGAGCGAGTCGGGTCCGGCGACCCGGCCGGACGAACGCCTGCTGAACCTCGTGATCGCGCTGGTGAACACCTCCGCGGCGATGACCAAGCAGCAGGTGCGCGCCAACGTGCACGGCTACGGTGCGGCGGCGTCGACGGACGCGTTCGAGCGGATGTTCGAGCGCGACAAGGACACGCTGCGCGCCCTGGGCGTGCCGATCGTGACGGTGGAGGGCAGCGGGCACAGCGACGAGGTCGGCTACCGCATCGACAACGAGGCGTACGCGCTGGGACCGGTGGACCTGACCCCGGCCGAGCTGGGCGTGGTGGCCCTCGCCGCCCAGCTGTGGTCGGACAAGCTGCTGCGCACCGACATGTCGCGCGCGATGACGAAGCTCGCGGCGGCCGGCGCGGGCGACGCCGCCGAGGACGTCGTGGCGGGACTGACGCCGCGGGTGCGGGCGGCGGGCGACGGGTACGGCCCGCTGCTGGAGGCGATCTCCGAACGGCGGGTCGTGACCTTCCGCTACCGCGCCGCCAGCACCGGGCAGGTGCGCGCCCGCCGCGTCGAGCCCTGGCGCATCGCCGCGCGCGGCGGCGGCTGGTACGTCGTGGGGCACGACCTCGACCGGGACGCGGTCCGGGTGTTCCGCCTGTCCCGCATCGACGGACGGGTGCGCGTCGGTCCGCACCCCGACGCCTACCGGATCCCCGCGGACGTCGACGTCGACGCCGCGCTCGGCGCCCGGGTCGGGGCGGAGCGCACCGCCCGCCTGGCCGTGGCACCGGAACGGGCCACCGCGCTGCGTGCCCGCGCCGTGAACGCACCGGGACCCGACGCCGGCCCGCCTGTCCCCGCGGGCCGCGACCTCGTCGTCGTCCCGTTCCGGACGCTGACGCCGCTGGCCGACGAGATCGCCGGCCACGGCGCCGCCGTCGTCGTCCTCGAGCCCGCCGACCTGCGCAGCGAGGTGCTGCGGCGGCTGCGCGCCGCCGCCGCGCTGCCCCGGACCACCGAGGAGGACCCTGATGGCCGAACGCGCTGAMSAGSESGPATRPDERLLNLVIALVNTSAAMTKQQVRANVHGYGAAASTDAFERMFERDKDTLRALGVPIVTVEGSGHSDEVGYRIDNEAYALGPVDLTPAELGVVALAAQLWSDKLLRTDMSRAMTKLAAAGAGDAAEDVVAGLTPRVRAAGDGYGPLLEAISERRVVTFRYRAASTGQVRARRVEPWRIAARGGGWYVVGHDLDRDAVRVFRLSRIDGRVRVGPHPDAYRIPADVDVDAALGARVGAERTARLAVAPERATALRARAVNAPGPDAGPPVPAGRDLVVVPFRTLTPLADEIAGHGAAVVVLEPADLRSEVLRRLRAAAALPRTTEEDPDGRTRNANANANANA
AK018_00704978pafC_1COG2378Protein PafCATGGCCGAACGCGCTGACGACCGCCTCGTGCGTCTGCTGGGCATCGTCGCCTACCTCGACGGCGCCGGCCCGGTGCCCGTCGAGGAGCTCGCCCAACGCTTCGGCGTCACCCCCGCACGCATCCGCGAGGACATCGACGCGCTGTGGGTCAGCGGCACACCCGGCTACATGCCCGACGACCTCATCGACTTCGACGCCTTCTCCCTGGAGAACGGCATGGTCACGCTCACCCAGTCGCGCGGCCTGACCCGCCCGCTGCGGCTCGGCACCCGCGAGGCCGTCGCGCTCGTCGCCGCCCTGCGGGCCATGCGCTCCACCCCGGCCGTGCAGGCCGCACCCGGACGCGCCGACGTCGTCGACTCCGCCCTGGCCAAGCTCACCGCCGCCACCGGCGAGGCCGCGAGCGCCGTGGACGTGCGTCTCGGTGGGGACGAGGACGCGGCGGCGCTGGGTGCGTTGACGCGGGCGTTGAGCGCCGGGCGGCGGGTGCGGCTGCGGTACGTGGACGCGGCGGACGTGGTCAGCGTGCGGGACGTGGATCCGTGGCGGCTGCTGACGCAGGACCGGGCGACGTACCTGGTGGCGTGGTGCCACCGGGCCGGGGGGCGGCGCACGTTCCGGGTGGACCGGATGCTGTCGGTGCAGGTGCTTGACGTGGCCGTGGGCGAGGTGCCGCCGGAGCGGGTGGACGTGGATCCGGTGGTGCAGGTCGTCTCGGACGCGGGGGAGTCGGCGCCGGTGGCGGTGCTGCGGTTGGCGTCGCCGGCGCGGTGGGTGGCCGAGGAGGTGCCGGTGGAGCAGGTGACGGATCTGGCGGACGGGTCGTTCGAGGTGCGGTTGCGGGTGACGAACCCGGCGTGGTTGCGGCGTCTGGTGCTGACGAACGCCCCGGACGTGCTGGGGGTGTGGCCGCCGCAGATGGCGGCCGAGGTGGTCGAGGCGGCGTCGGCGGCGTTGTCGGCGTACGGCGAGGCCTAGMAERADDRLVRLLGIVAYLDGAGPVPVEELAQRFGVTPARIREDIDALWVSGTPGYMPDDLIDFDAFSLENGMVTLTQSRGLTRPLRLGTREAVALVAALRAMRSTPAVQAAPGRADVVDSALAKLTAATGEAASAVDVRLGGDEDAAALGALTRALSAGRRVRLRYVDAADVVSVRDVDPWRLLTQDRATYLVAWCHRAGGRRTFRVDRMLSVQVLDVAVGEVPPERVDVDPVVQVVSDAGESAPVAVLRLASPARWVAEEVPVEQVTDLADGSFEVRLRVTNPAWLRRLVLTNAPDVLGVWPPQMAAEVVEAASAALSAYGEANANANANANA
AK018_00706300tatA_1Sec-independent protein translocase protein TatAGTGGGTATCTTCCGAAACCCCGCCGTCCTGATCACGTTGATCCTGCTGGTCGTGCTGCTGTTCGGGGCCAAGCGGCTGCCGGACGTGGCGCGCAGCGTGGGTTCGTCGCTGAAGATCTTCAAGAAGGAGATCAAGGACCTGGGCGACGACGACTCCGCGTCGACCTCCGAGCGTCCGACGTCGAACGCGAATGCCGAGCCCAAGGACGAGTCGCGGGCCGCGGAGCCGCAGGGAGCCTCCGGGCCGGGTGCGGGCACCGAGCCGCCGCAGTCGGGTCCGGCGGACCCCAAGCACACCTGAMGIFRNPAVLITLILLVVLLFGAKRLPDVARSVGSSLKIFKKEIKDLGDDDSASTSERPTSNANAEPKDESRAAEPQGASGPGAGTEPPQSGPADPKHTNANANANANA
AK018_00707777tatC_1COG0805Sec-independent protein translocase protein TatCATGCCGCGTACCCCCCGGGACCCCGAGGGGCGGATGCCGCTGCGCGAGCACCTGGTCGAGATCCGCAAGCGGGTGGTGCGCATCGCGTTGGGCCTGCTGGTCGGCGCCGTCCTGGGCTGGATCCTGTACGACCCGCTGCTGGACGCGCTCATGCATCCCCTGGAGCAGGCCGCCGAGCGCCGTGACGCGCTGATCGGCCTCAACTTCGACGGGGTCGCCACCGCGATCGACATGCGGGTCAAGGTCTCGTTGTTCCTCGGGGTGATCGTGTCCAGCCCGTGGTGGCTGTACCAGGTGTTCGCGTTCGTCAACCCGGGCCTGACCGGCACGGAGCGCCGGTACGTTTACGGGTTCCTGTGCGCGGCGGTGCCGATGTTCCTGGCCGGGGCGTGGCTGGCCTGGTCGGTGCTGCCCTACGTGGTGGAGGTCCTCAACGACTTCGTGCCCGAGGGGGGCGCGAACCTCGTGGGCGCCCAGATGTACCTGAGCTTCGTGATGCGGCTGATCCTGGCGTGCGGGATCGCGTTCCTGGTGCCGGTGTTCATGGTGGTGCTGAACCTGATGGGCACGGTGCGGGCGCGGACGTGGCTGGCGGGGTGGCGCTGGGCGGTGCTGATCTCGTTCCTGTTCGCGGCGATCGTGACTCCGACGATGGACGTGCTGAGCATGTTCGGCATCGCGGGACCGATCTGCGCGCTGTACTTCGTGGCCACGGGGATCTGCTTCCTGCACGACCGTCGGGCGGATCGACGGCGCGTGGCCGCTCCCGTCGAATGAMPRTPRDPEGRMPLREHLVEIRKRVVRIALGLLVGAVLGWILYDPLLDALMHPLEQAAERRDALIGLNFDGVATAIDMRVKVSLFLGVIVSSPWWLYQVFAFVNPGLTGTERRYVYGFLCAAVPMFLAGAWLAWSVLPYVVEVLNDFVPEGGANLVGAQMYLSFVMRLILACGIAFLVPVFMVVLNLMGTVRARTWLAGWRWAVLISFLFAAIVTPTMDVLSMFGIAGPICALYFVATGICFLHDRRADRRRVAAPVEPGPT0029295_2966DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0029295-tatC-K03118NANA
AK018_007081086dagK_1COG1597Diacylglycerol kinaseATGACGCGACCTGCCGCCGACGGGCCCGGCGGGCCCGGTTCCGGGGGACGTGTCGGGGTGCTGGTCAACCCGGTGGCGGGCGCCGGTCGGGGACGGCGCGTGGGCGCAGCGCTGCGCGAGCGGCTGGGCGCCGCGGGCCACGACGTCGTGGACGTCTCCGGCGACGACGCGGTCGCCGCGGCCGCCCGGCTGGGCGCCGCGGGCCTGCTCGACGCCCTGGTCGTGGTCGGCGGGGACGGGATGGTCCACCTCGGGCTGCAGGCGGTGGCCGGCACCGGCACACCGCTGGGGGTGGTGCCGGTCGGCACCGGCAACGACTTCGCGGCCTGCCTGGGCCTGGTGCGTCGGAGCACGGGCGCCGAGGTCGCTGACGTGTGCGCGGCGCTGGCCGCCGGCAGCTTCCGCCGCGTCGACGCCGTCGAGGTCCGCACGGACGGGCGCTCCCGCTGGGTGGCGGGCGCCGTCTCGGCAGGCCTGGACGCCGCCGTCAATGCCCGCGCCAACGCCATGCGCCGCCCGCGGGGCGCCGCCCGGTACACGCTCGCGGTCCTGGCCGAGATCGCCGCGTTCCGCGCCTGGGCGTACCGGCTGCAGTTCGACGGGGTCGTCGACGACGGCGGCCTGCCACTGACCGCCGCCGGTGACGGCCCCGCCGCGTCGACGGCCCGCTGGGCGGGGCGCGCGGCCGTGGTCACCGCGGCCAACACCGACCGCATCGGCGGCGGCATCCGCGTGGCACCCGCCGCCGTCGTCGACGACGGGCTGCTCGACGTGCTGGTCGCACCCGTGCTGACCCGCCGCGGGGCGGCCACCATCTTCCCGAGCATGTTCACCGGCAGGCACGTGCGCCGCCGCGACGTGCACGTGGTGCGCGCCGCCGCCGTGCGGATCACCGCCGGCCCGCACGACACCGCCAGCGGCGGGCACCCGCTCGCCCACGGCGACGGCGAACCCCTGGCACCCCTGCCGGTGCAGGTGCGGGCCGTGCCCGGGGCGCTGGGCGTGCTCGTCCCACCGCACACCCACGGCCCGTCCGGCGCGCCCGGCGTGCACCTCGGCCCGCCGGGCAGCGGCACCGTAGGCTGAMTRPAADGPGGPGSGGRVGVLVNPVAGAGRGRRVGAALRERLGAAGHDVVDVSGDDAVAAAARLGAAGLLDALVVVGGDGMVHLGLQAVAGTGTPLGVVPVGTGNDFAACLGLVRRSTGAEVADVCAALAAGSFRRVDAVEVRTDGRSRWVAGAVSAGLDAAVNARANAMRRPRGAARYTLAVLAEIAAFRAWAYRLQFDGVVDDGGLPLTAAGDGPAASTARWAGRAAVVTAANTDRIGGGIRVAPAAVVDDGLLDVLVAPVLTRRGAATIFPSMFTGRHVRRRDVHVVRAAAVRITAGPHDTASGGHPLAHGDGEPLAPLPVQVRAVPGALGVLVPPHTHGPSGAPGVHLGPPGSGTVGPGPT0024345_331DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029NANA
AK018_007092847helY_1COG4581putative helicase HelYATGACGGCCGACCTGAGCCCGGCCGAGCGGTACGCCGCGGCCCGGGCCCGCTCCGCACGTGACCAGGCCGACGCGACCGGCGAGCTCGGCCGGTTCCGGCGCCTGCTGGACTTCGAGCTCGACGACTTCCAGGCCGATGCCTGCGTCGCCCTGGAGACGGGACGGGGCGTCCTGGTGGCCGCACCCACCGGAGCCGGCAAGACCGTCGTCGGCGAGTTCGCGGTCCACCTGGCCCTCGCCCAGGGCGGCAAGACGTTCTACACCACGCCCATCAAGGCGCTGAGCAACCAGAAGTACTCCGACCTGGTGCGCCGCCACGGCGCGCAGTCCGTGGGCCTGCTCACCGGCGACTCCTCCGTCAACGCCGACGCCCCCGTGGTGGTGATGACCACCGAGGTGCTGCGCAACATGCTCTACTCCGGCTCCACCGCGCTGGAAGGGCTGGCCTACGTCGTCATGGACGAGGTGCACTACCTCGCCGACCGGTTCCGCGGCCCGGTGTGGGAGGAGGTCATCATCCACCTGCCCGAGCACGTCCAGCTCGTGTCGCTGTCCGCGACCGTGTCCAACGCCGAGGAGTTCGGCGACTGGCTGGGCACCGTGCGCGGCGACACCGCCGTCGTCGTCTCCGAGCGTCGTCCCGTGCCGCTGTGGCAGCACGTCATCACCGCGCCGCCCGAACCCCGCGGCACCCCGCGCCTGTTCGACCTGTACGCCGGGCACGTCGACCCCACCGACCCGGGCACCAACCCGCCCATCGACCCCGACCTGGCCCGCCTGTTCCGCACCCACGGACGCACCGGCGGGCCCGGGCCGCGCCGCGGACGCGGCGACCGCGGGTACCGGGGGCGCGGCGGCCAGCGACCCGGCGGACCCCAGCACCCCACCCGGCGCACCCCGCGCCGGTACGCCGTCGTCGAGGCGCTCGACGCCGACGCCCTGCTGCCCGCCATCTACTTCATCTTCTCCCGCGCGGGCTGCGCCGGCGCCGTCGAGCAGTGCCTGCGCGCCGGGCTGCGCCTGACCGACGCCGAGGAGGAGGCCGAGATCCGCCGCGTCGTCGAGCAGCGCACCATGACCATCCCGCCCGAGGACCTCGACGTGCTCGGGTTCTGGTCGTGGCAGCACGCGCTGTGCCGCGGCATCGCCGCCCACCACGCCGGCATGCTGCCGGTCTTCAAGGAGACCGTCGAGGAGCTGTTCGCCCGCGGACTGGTCAAGGTCGTGTTCGCCACCGAGACCCTCGCGCTCGGCATCAACATGCCCGCCCGGTCCGTCGTGCTGGAGAAGCTCGTCAAGTTCGACGGCACCGCCCACCAGCCCGTCACGCCGGGGGAGTACACCCAGCTCACCGGCCGCGCCGGCCGTCGCGGCATCGACGTCGAGGGGCACGCCGTCGTCGTCGACCACGAGGGCCTCGACCCGGTGGCCCTTGCCGGCCTGGCCTCCCGCCGCCTGTACCCGCTGCGCTCCAGCTTCCGACCCACCTACAACATGGCCGTCAACCTCGTCGAGCAGGTCGGTGCCGAACGGGCCCGCGAGGTCCTGGAGACGTCGTTCGCCCAGTTCCAGGCCGACCGCGGCGTCGTCGACCTCGCCAAGCAGGCCCGCGCGCACGCCGAGGCCCTCGAGGGCTACCGGGGCGCCATGACCTGCTCGCGCGGCGACGTCGAGGCCTACGTGGACCTGCAGCGGGCCATCGGCGACCGGGAGAAGGAGCTGACGCGCGCCGCCCGCGGCGAGCGCCGCGCCGACGCCGTGGCGTCCCTGGAGAAGCTGCGCCGCGGCGACGTCGTCGAGGTCCCCACCGGACGACGGCGCGGGTACGCCGTGGTGCTCGACCCGGGCCTCGGCGACGGCGGGTTCGACGGCCCGCGCCCGACCGTGCTCACCCAGGAGAAGCAGGTCAAGCGCCTCACCCTCGCCGACACGCCCGACGGGGTGCGTCGCGTCACGCGGGTGCGTATCGCCAAGAGCTTCAACCCACGCCGCCCGGACGCGCGCCGCGACCTGGCCGCCAGCATGCGCAACGCCCTGGGAGCCTTCGCCGACGACGGCGGTCGCGAACCCAGCGCCGCCCGGCGACGGCGCACCGACGCCGCCTCCGACGACCGCCTGGCCGCGCTGCGCACCGACCTGCGCGCCCACCCGGTCCACGGCTGCCCCGACCGGGAGGACCACCTGCGCTGGGCGCGCCGTGCGGCCACGCTGCAGCGCGAGCACGACACCCTGGTGCGCCGCATCGAGGGACGCACCGGTTCCATCGCGCGCACCTTCGACCGCACCTGCGAGGTGCTGCGCGAGCTCGGCTACCTGCGCGAGGACGACGGTGTCGTCACCGTCTCCGAGCCGGGCCGGCGTCTGGGCCGGCTGTACGCCGAGGACGACCTGCTGCTCGCCGAGTGCCTGCGCCAGGGCGTGTGGGACGAGCTGACCGCCGCCGAGCTCGCCGCCGCCGTGTCGACCGTGGTGTACTCGGCGCGCCGCGAGGAGTCCGAACCGCTGAGCACCGTCGGGCACGGCACCCGCCTGCCGGCCGCCCTGCTCGAGACCGAACGCGTCTGGTCCGAGGTCACCGCGCTCGAGGCGGCGCACCGCCTCGAGGTCACCGGCCCGCTCGACGGCGGGCTGGTCGACGCCGTGCACCGGTGGGCCTCGGGACGCAGCCTCGAGACGGTGCTGCGCGGCACGGACGTCGCCGCCGGCGACTTCGTGCGCTGGTGCAAGCAGATCATCGACGTCCTCGACCAGCTCGCCGCGGCGGCCCCCGGACCCGAGCTGCGCCGTCGTGCCCGAGCCGCGCAGGACGGGGTGCTGCGCGGCGTCGTGGCCTACTCCAGCCTGTGAMTADLSPAERYAAARARSARDQADATGELGRFRRLLDFELDDFQADACVALETGRGVLVAAPTGAGKTVVGEFAVHLALAQGGKTFYTTPIKALSNQKYSDLVRRHGAQSVGLLTGDSSVNADAPVVVMTTEVLRNMLYSGSTALEGLAYVVMDEVHYLADRFRGPVWEEVIIHLPEHVQLVSLSATVSNAEEFGDWLGTVRGDTAVVVSERRPVPLWQHVITAPPEPRGTPRLFDLYAGHVDPTDPGTNPPIDPDLARLFRTHGRTGGPGPRRGRGDRGYRGRGGQRPGGPQHPTRRTPRRYAVVEALDADALLPAIYFIFSRAGCAGAVEQCLRAGLRLTDAEEEAEIRRVVEQRTMTIPPEDLDVLGFWSWQHALCRGIAAHHAGMLPVFKETVEELFARGLVKVVFATETLALGINMPARSVVLEKLVKFDGTAHQPVTPGEYTQLTGRAGRRGIDVEGHAVVVDHEGLDPVALAGLASRRLYPLRSSFRPTYNMAVNLVEQVGAERAREVLETSFAQFQADRGVVDLAKQARAHAEALEGYRGAMTCSRGDVEAYVDLQRAIGDREKELTRAARGERRADAVASLEKLRRGDVVEVPTGRRRGYAVVLDPGLGDGGFDGPRPTVLTQEKQVKRLTLADTPDGVRRVTRVRIAKSFNPRRPDARRDLAASMRNALGAFADDGGREPSAARRRRTDAASDDRLAALRTDLRAHPVHGCPDREDHLRWARRAATLQREHDTLVRRIEGRTGSIARTFDRTCEVLRELGYLREDDGVVTVSEPGRRLGRLYAEDDLLLAECLRQGVWDELTAAELAAAVSTVVYSARREESEPLSTVGHGTRLPAALLETERVWSEVTALEAAHRLEVTGPLDGGLVDAVHRWASGRSLETVLRGTDVAAGDFVRWCKQIIDVLDQLAAAAPGPELRRRARAAQDGVLRGVVAYSSLNANANANANA
AK018_007101665nfdA_2N-substituted formamide deformylaseGTGACCTCCACCCTGTACCGCAACGGAGTCGTCCACACCCCCGCGGACCCGTTCGCCGAGGCGATCCTCGTCGACGACGGGGTCGTGGCCTGGATCGGCGCCGAGGACACCGCCGCCGGGCTGGCCGCACGTGCCGACCACGTCGTCGACCTCGACGGCGCGCTGGTCACCCCCGGGTTCGTCGACGCGCACGTGCACACCCTCGAGACGGGGCTCGTGGCCGAGGCGGTGGACCTGTCGGCCCCGACCGTGACCGACCTGCCCGGCGCCCTGTCGGCCCTGGCGTCCGCGGCCACCGCCCTCGACGCGTCCGACCCGGCCGGCGGGCAGGTGCTGCTCGCCCACGGCTGGGACGAGCACGCCTGGCCGCAACGGCGCGCACCGTTCCTCGACGAGCTCGACGCGGCCACCGGGGGACGGCCCGTGCTGGCGGTGCGCGTCGACGGGCACACCGCCCTGGTGTCCAGCTCGTTCGCGGCCCGCACCGGGCTGGACCGCAGCCCGGCCTGGGACGGCAGCGGCCTCGTGGCCGACGAGGCCTACGGGCAGGCCCGCGCCGCCGCCCACGACCTCGACCCCGCCCGACGCGACCGCGCCTACCGCACCGCGCTGCAGACCGCGGCCGCCCGCGGCATCGTCGCCGTGCACGAGATGAGCGCACCCCACCTCGACACCCGGCAGGGACTCGCGCGCCTCGCCGAGCTCACCGCCGACGCCGCCGCGGGCCTGCCGCACGTGACCGCCTACCGCGCCGAGCTGTGCGCGGGTCACGACGACGCGCGCACCCTGCTCGACGAGCTGCCGTTCCTGGCCGGCATCGGCGGGGACCTGACCGTCGACGGCACCCTCGGGTCGCGCACCGCCGCGCTGCGCTCGCCCTACACCCCGCAGCCCGGCGCACGCACGGAGAACCCCGGCAGCGGCCGGCTCTACCTCGACGCCGACCAGATCGCCGCCCACCTGCTGGCCTGCTCGGCCGCGGGTGTCCAGGGCGCGCTGCACGCCGTCGGCGACCGCGCCATGGACGAGCTCACCGCCGCCCTGGAGCTCGCCGCCGCCCAGACCGACCCCGGCACGCTGCGCAGCGCCCACCACCGGGTCGAGCACGCCCTCATGGTCGACGCCGCCGCCCTGGCCTCCCTGCTGCTGTACGGCGTCGGGATGTCCATCCAGCCCGCCTACGACACCACGTGGGGCGGACCCGACGGCATGTACACCGCCCGGCTCGGCGGGCCGCGGGCCGCGAACCTGTCACCGTTCGCCGACCTGGCCGGCGCCGGCGTCCCGCTCGCCTTCGGCTCGGACAGCCCCGTGACCCCGCTGGACCCGTGGCAGGCGGTCCGTGCCGCCGTCGGGCACGCCGACCCCGCCCAGCGCATCAGCGCACGCGCCGCGTTCCGCGCGCACTCGCGCGGCGGCTGGCGCCTGGCCGGCCTCGACCACACGGGAGCCGGCGAGCTGCGGGTCGGGGCGCCCGCCCACCTGGCCGTCTGGCGCGCCGAGCACCTCGCCGTGCAGTCCGCCCCCGGACGGCTGTCGCAGTGGAACCCCGAGGCCCGGGCCGGGCAGCCGCTGCTGCCCGAGCTGGGCGACGACGTCCCGGCGCCCGAGTGCGTGCGCACCGTGCGCGACGGCGTCGTGCTGTTCGACGCGCTCGACGGATGAMTSTLYRNGVVHTPADPFAEAILVDDGVVAWIGAEDTAAGLAARADHVVDLDGALVTPGFVDAHVHTLETGLVAEAVDLSAPTVTDLPGALSALASAATALDASDPAGGQVLLAHGWDEHAWPQRRAPFLDELDAATGGRPVLAVRVDGHTALVSSSFAARTGLDRSPAWDGSGLVADEAYGQARAAAHDLDPARRDRAYRTALQTAAARGIVAVHEMSAPHLDTRQGLARLAELTADAAAGLPHVTAYRAELCAGHDDARTLLDELPFLAGIGGDLTVDGTLGSRTAALRSPYTPQPGARTENPGSGRLYLDADQIAAHLLACSAAGVQGALHAVGDRAMDELTAALELAAAQTDPGTLRSAHHRVEHALMVDAAALASLLLYGVGMSIQPAYDTTWGGPDGMYTARLGGPRAANLSPFADLAGAGVPLAFGSDSPVTPLDPWQAVRAAVGHADPAQRISARAAFRAHSRGGWRLAGLDHTGAGELRVGAPAHLAVWRAEHLAVQSAPGRLSQWNPEARAGQPLLPELGDDVPAPECVRTVRDGVVLFDALDGNANANANANA
AK018_007111737lnt_1COG0815Apolipoprotein N-acyltransferaseATGAGCGGCGTGCCCGCACCGGCCGGCCCCGCCACCGCCCCTCGCGTCGACCGGCGCCGCGGCGTGCTGACGTCGCGCCCCGCGACCCTGCTGCTGGCCGTCGCCGCCGGCGTCTGCCTGTGGGCGTCTTTCCCCGACGCCGCGCTGTGGCCGCTGGCGTTCGTCGCCGTCGGGCTGCTGCACCTGGCGTTGCGCCGCGACGGCCGCCGGGCCGCCGGCTGGAACGCCCTGGTCGGGTTCGTGGCGATGCTGACGTTCTGGCTGCCGCACATCTGGTGGGCCAACTTCGCCACCGACACGGTGCCGTGGCTGGCCCTGGCCGTCCTCGAGTCGCTGTTCGGCGCGCTGTTCGGCGCGCTGTGGACCTGGGCCCGCCAGGCGCCCTGGGCGCGGCTCGACGCCGCGGGCTCCGCGTCGGTGGCCCGCTCGCTCGGCCACGCCGCCACCTTCGCCGTGGTCTTCGTCGCGGTGGAGCAGTGGCGTGCCGAGATCCCCTTCGGCGGGTTCCCGTGGGGCCGGCTGGCCTGGACCATGGTCGACGCCCCGACCGGGCGCGCCGCGTGGCTGGGCGGGACCGTCCTGGTCTCCCTGCTCGTCGCGCTCGTCGGCGTCCTCGCCGTGCTGGTCGCCGGCCGGGCCGTGGCGGTGCGGCGCGCCGCAGGTGACGGCGCCGCCGCCGGTCCGCCGCTGGCAGGCGCCGTCGTGCTGACCGGCGTGGCCGGCCTCCTCGTCCTGGCACCGGCCGCGCTGCCGCTGCCGGCCGCCGACGCCGACCCCGTCGCGACGCAGGACCTGGACGAGCAGGTCGTGGACGCGGGCACGGCCACGCACGAGACCGCCGGACCGGTCCTGACCGTCGGGGCCGTCCAGGGCAACGTGCCGGACCCGGGCCGGGACGCGTTCGCGAACCGGTCCGCGGTGCTGGACAACCACCTGGCGGGCACGGCGGCGCTGGCCGAGCGGGGCGTCGCGCTCGACGTGGTGCTGTGGCCGGAGGACGCCTCCGGCTACGACCCGCAGGAGGCACCGGAGGTCGCCGCGGCCCTCGACGACGCCGCGAGCGCCGTGGGTGCGCCGCTGCTGGTGGGTGCGCAGGAGTATCCGGAGACCGGGGGGCGGTACAACGTGTCGTTGCTGTGGGGGTCGGGGCAGGGGGTGCTGGACCGGTACGCGAAGCAGCATCCGGCGCCGTTCGGGGAGTACATCCCGCTGCGAGGCTTCGTGCGGTTGTTCTCGGCGGAGGTGGACCGGGTCTCGACGGACATGCTGGCGGGCACGGAGCCGGCGGTGGTCGACCTGCCGCGCGGTGACGGCGTGGTCCCGCTGGCGACGGTGATCTGCTTCGAGGTGGCCTACGACGAGATCGTGCGGGACGCGGTGGACCGGGGTGCGCAGGTGCTGGTGGTGCCGACGAACAACGCGTCGTTCGGGGACACGGCGGAGTCGACGCAGCAGCTGGCGATGACGCGGATGCAGGCGATGTCGACGGGGCGTGCGGCGGTGCAGATCTCGACGGTGGGTGTCTCCGGTGTGGTCGCCCCGGACGGGACGCTGGTGGCCCGCACGGATCTGTTCACGGCGGACCAGGTGGTGGCGGAGCTGCCGTTGCGCACGACGCTGACGCCGGCGACGCGGGCGGGCTACTGGCCGGGCTGGGTCGCGGGTGTGCTGGCGCTGGGGTGCGTGGTGGCCGGGCTGGTGGGCCGGGTGCGTCGCGGTCGTGAGGTGGTGGCATGAMSGVPAPAGPATAPRVDRRRGVLTSRPATLLLAVAAGVCLWASFPDAALWPLAFVAVGLLHLALRRDGRRAAGWNALVGFVAMLTFWLPHIWWANFATDTVPWLALAVLESLFGALFGALWTWARQAPWARLDAAGSASVARSLGHAATFAVVFVAVEQWRAEIPFGGFPWGRLAWTMVDAPTGRAAWLGGTVLVSLLVALVGVLAVLVAGRAVAVRRAAGDGAAAGPPLAGAVVLTGVAGLLVLAPAALPLPAADADPVATQDLDEQVVDAGTATHETAGPVLTVGAVQGNVPDPGRDAFANRSAVLDNHLAGTAALAERGVALDVVLWPEDASGYDPQEAPEVAAALDDAASAVGAPLLVGAQEYPETGGRYNVSLLWGSGQGVLDRYAKQHPAPFGEYIPLRGFVRLFSAEVDRVSTDMLAGTEPAVVDLPRGDGVVPLATVICFEVAYDEIVRDAVDRGAQVLVVPTNNASFGDTAESTQQLAMTRMQAMSTGRAAVQISTVGVSGVVAPDGTLVARTDLFTADQVVAELPLRTTLTPATRAGYWPGWVAGVLALGCVVAGLVGRVRRGREVVAPGPT0024470_161DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024470-lnt-K03820NANA
AK018_00712753Undecaprenyl-phosphate mannosyltransferaseATGAGCACGCTGGTGGTGGTCCCGACGTACGACGAGCGCGAGTCGTTGCCGGTGACGTTGGAGCGGTTGCGCGCGGCGCAGCCGGACGTGGACGTGCTGGTGGTCGACGACGCGTCGCCGGACGGGACGGGACGGTGGGCGCAGGAGGTGGCGGAGCGGGACGTGCGGGTGCACGTGCTGCACCGTGCCGGCAAGGGTGGTCTGGGTGCGGCGTACGTGGCGGGTTTCGGCTGGGGGCTGGAGCGCGGCTACGACGTGCTGTGCGAGATGGACGCGGACGGTTCGCACCGGCCCGAGGAGCTGGGGCGGCTGCTGGGACGTGTGGCGGCCGACGACGCCCCGGACCTGGTGATCGGGTCGCGGTGGGTGCCGGGCGGCAGGGTGGTGAACTGGCCGTGGCACCGTAGCGTGCTGTCGCGCGGCGGCAACACCTACGTGCGCATGGCGCTCGGGATCGCGGTGCGGGACGCGACGGGGGGCTTTCGCGCGTTCCGGGCCGAGGCGTTGCGGGCGCTGGATCTGGCGGCGGTGGAGTCGCACGGGTATTGCTTCCAGGTGGACATGACCTGGCGGGTGCTGCGCGGCGGGGGATCCGTGGCGGAGGTGCCGATCACGTTCGTGGAGCGGGTGGCGGGCAGCTCGAAGATGTCGCGGGCGATCGTGGCCGAGGCGTTGGTCAAGACGACGCGGTGGGGGTTGCGGTACCGCGCCGAGCAGCTGGGCGGCCTCGTGCGGCGTCCCGGTCGCGGCTGAMSTLVVVPTYDERESLPVTLERLRAAQPDVDVLVVDDASPDGTGRWAQEVAERDVRVHVLHRAGKGGLGAAYVAGFGWGLERGYDVLCEMDADGSHRPEELGRLLGRVAADDAPDLVIGSRWVPGGRVVNWPWHRSVLSRGGNTYVRMALGIAVRDATGGFRAFRAEALRALDLAAVESHGYCFQVDMTWRVLRGGGSVAEVPITFVERVAGSSKMSRAIVAEALVKTTRWGLRYRAEQLGGLVRRPGRGPGPT0017834_1853DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0017834-DPM1_like|arnC|ppm1|wcaA-K00721NANA
AK018_00713345rbpA_1RNA polymerase-binding protein RbpAATGCCCGACCGCTCCCTGCGCGGCATGAGCATCGGCAGCAAGAGCATGGAGTCCGACGAGGGCGTCGACTTCGCCCCGCGGTTCCAGGCCCACTACGACTGCCCCAACGGTCACACGATCATCCTGCCGTTCTCCACCGACGCCGAGGTCCCCCCGATCTGGGAGTGCCAGTGCGGTGGCGAGGCGCTGCTGCGCGACGCCGAGCGCCCCGAGGCCAAGCCCACCAAGCCGCAGCGCACCCACTGGGACATGCTCCTCGAGCGCCGCACCGTCTCCGAGCTCGAGGAGCTCCTCGACGAGCGCCTCGAGCTGCTGCGCTCCGGCAAGCTGCGCCGCTCCGCCTGAMPDRSLRGMSIGSKSMESDEGVDFAPRFQAHYDCPNGHTIILPFSTDAEVPPIWECQCGGEALLRDAERPEAKPTKPQRTHWDMLLERRTVSELEELLDERLELLRSGKLRRSANANANANANA
AK018_007141158hypothetical proteinGTGCAGTTCGGCATCTTCTCCGTCTCCGACGTGACCACCGACCCCACGACGGGCCGGACCCCGGACGACACCGAGCGCGTGCGCTCGATGCTCACCATCGCCCAGCACGCCGACGCCGCCGGCCTCGACGTGTTCGCCACCGGCGAGCACCACAACCCGCCGTTCGTGGCCTCCAGCCCGACCACCCTGCTCGGGTACCTGGCCGGCGTCACCCGGAACATCACGCTGTCCACGGCGACCACCCTGATCACCACCAACGACCCGGTGCGCCTCGCCGAGGAGTACGCGATGCTCCAGGTCGTCTCCGGCGGCCGGATGGACCTGATGATGGGCCGCGGCAACACCGGACCCGTCTACCCGTGGTTCGGCCAGGACATCCGCAACGGCATCCCGCTGGCCGTGGAGAACTACGCGCTGCTGCGCCGGCTGTGGACCGAGGACGTCGTCGACTGGGAGGGCAGGTTCCGCACCCCGCTGCAAGGCTTCACCTCCACCCCCCGCCCACTGGACGGCGTGCCGCCGTTCGTGTGGCACGGGTCCATCCGCTCCCCGGAGATCGCCGAGCAGGCGGCCTACTACGGCGACGGGTTCCTGCACAACAACATCTTCTGGCCCATGCGCCACACCAAGCAGATGGTGCGCTTCTACCGCCAGCGCTACGAGCACCACGGCCACGGCCGCGCCGACCAGGCGATCGTGGGCCTCGGCGGGCAGGTGTTCGTGCGCAAGAACTCCCAGGACGCCGTGCGGGAGTTCCGCCCCTACTTCGACGTCGCCCCCGTCTACGGCCACGGACCGAGCCTGGAGGACTTCTCCGCCCAGACGCCCCTGACCGTCGGGTCCCCGCAGCAGGTCATCGACCGCTACGGCGCGTTCGTCGACGACGTCGGCTACTACCAGCGCCAGATGTTCCTCATCGACCACGCCGGCCTGCCACTGAAGACCGTCCTGGAGCAGATCGACCTGCTCGCCGAGGAGATCGTGCCCGAGCTGCGCAGGATCGTCGAGGCCAAGCGGCCCGCCGACGACGTCCCCCTGAACCCGCCCACCCACGCCGAGCGCGCCGCCGCCCGTGCCGCGAGCGCCGCCGGTGCCACGCACGTCGGCGACGGGTCCGACGACGTCACCGGCACCCGGGCCGAGGAGGTCGCGCGATGAMQFGIFSVSDVTTDPTTGRTPDDTERVRSMLTIAQHADAAGLDVFATGEHHNPPFVASSPTTLLGYLAGVTRNITLSTATTLITTNDPVRLAEEYAMLQVVSGGRMDLMMGRGNTGPVYPWFGQDIRNGIPLAVENYALLRRLWTEDVVDWEGRFRTPLQGFTSTPRPLDGVPPFVWHGSIRSPEIAEQAAYYGDGFLHNNIFWPMRHTKQMVRFYRQRYEHHGHGRADQAIVGLGGQVFVRKNSQDAVREFRPYFDVAPVYGHGPSLEDFSAQTPLTVGSPQQVIDRYGAFVDDVGYYQRQMFLIDHAGLPLKTVLEQIDLLAEEIVPELRRIVEAKRPADDVPLNPPTHAERAAARAASAAGATHVGDGSDDVTGTRAEEVARNANANANANA
AK018_00715618hypothetical proteinATGAGCACCACCACCCGCACCCTGGTCGTGGTCACGGCCGGCCTGTCGCAGCCGTCCTCGACGCGGCTGCTGGCCGACCGGCTGGCCGCGGCGAGCGCCGACGCCCTGCTGGAGGCCGGTCAGGAGACCCGTGTCGAGGTGGTCGAGCTGCGCGAGCACGCGCACGCGATCATGGACGCGATGCTGACGGGTTTCGCCTCGGGCGACCTGGCGGAGGTCCTCGAGAAGGTCACCGGGGCGGACGGGCTGATCCTCGTCTCGCCGCTGTTCACCACGACGTACTCGGGGCTGTTCAAGTCGTTCGTGGACATCGTCGACCCGGACTCGCTGTCCGGGATGCCGGTGCTGCTGGGCGCGACGGGCGGTACCCAGCGGCACTCGCTGGCGCTGGACTACTCGATGCGCCCCCTGCTGACCTACCTGCGTACCCAGGTGGTCCCGACGGCGGTGTTCGCGGCGACGGACGACTGGGCGAGCCAGGACGAGGCGCTGCAGCGCCGGGTGGCCCGGGCGGGCCGTGAGCTGGCCGAGGCGGTCGCGGCGCGACCCGCACCGCAGGGTCCGGACGACCCGTTCGGCGACACCCCGGACTTCGCGAACCTGCTCGGCGGGGCCTGAMSTTTRTLVVVTAGLSQPSSTRLLADRLAAASADALLEAGQETRVEVVELREHAHAIMDAMLTGFASGDLAEVLEKVTGADGLILVSPLFTTTYSGLFKSFVDIVDPDSLSGMPVLLGATGGTQRHSLALDYSMRPLLTYLRTQVVPTAVFAATDDWASQDEALQRRVARAGRELAEAVAARPAPQGPDDPFGDTPDFANLLGGAPGPT0003045_529DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0003045-ssuE-K00299NANA
AK018_007161023galE_1COG1087UDP-glucose 4-epimeraseATGCGCGTCCTGGTCTCCGGCGGTGCCGGCTACATCGGTTCCCACACGGTCCTGTCCCTGCTGGCCTCCGGTCACGACGTGGTCGTGGTCGACGACTTCTCCAACGCCAAGCCGAGCGTGATCGGTCGGTTGGAGGCGTTGTCCGGCAAGCACGTGCCGGTGCACGCGATCGACCTGACGGACGCGGAGAAGACCGAGCGCCTCTTCGAGCACGAGCGGTTCGATGCCGTGGTGCACTTCGCCGGGTTCAAGGCGGTGGGGGAGTCGGTGGCGAAGCCGCTGGCGTACTACCGCAACAACCTGGACTCGACGCTGTCGCTGCTGGAGGCGATGCGCCGCCACGACGTGCAGCGGCTGGTGTTCTCCTCCTCGGCGACGGTCTACGGCGAGCACGCCCCGGTGCCGTACTCCGAGGACTACGAGCACCTGTCCTCGTCCTCGCCGTACGGGCAGACGAAGGTCATGATCGAACGCATCATGTCCGACGTCGCCGCCGCCACCGAGGGGCTGCGGGTGGCGCTGCTGCGCTACTTCAACCCGGTCGGGGCGCACCCGTCAGGGCAGATCGGGGAGGACCCGCAGGGCATCCCGAACAACCTCATGCCGTTCATCGCCCAGGTGGCGGTGGGCCGGCGAGAGAAGCTGACGGTGTTCGGCGACGACTACGACACCGCCGACGGCACGTGCGAGCGCGACTACCTGCACGTGGAGGACCTCGCGGCCGGGCACGTGGCGGCCCTGGAGCACCTGGACTCCATGGTCACGCCGGTGCGCGCCTTCAACCTCGGCACCGGCACCGGCACGTCGGTGCTGGCGATGCTGCACGCCTTCGAGCGGGCCGTGGGGCGCGAGCTGGCCTACGAGGTCGGGCCGCGGCGCGCGGGGGACCTGCCCGCGTTCTGGGCGGACCCCACGCGCGCCAACACCGAGCTGGGGTGGCGTGCCGAGAAGTCCATCGACGACATGTGCGCCGACACGTGGCGCTGGCAGCAGGCCAACCCGCAGGGCTTCCCGGACGCCTGAMRVLVSGGAGYIGSHTVLSLLASGHDVVVVDDFSNAKPSVIGRLEALSGKHVPVHAIDLTDAEKTERLFEHERFDAVVHFAGFKAVGESVAKPLAYYRNNLDSTLSLLEAMRRHDVQRLVFSSSATVYGEHAPVPYSEDYEHLSSSSPYGQTKVMIERIMSDVAAATEGLRVALLRYFNPVGAHPSGQIGEDPQGIPNNLMPFIAQVAVGRREKLTVFGDDYDTADGTCERDYLHVEDLAAGHVAALEHLDSMVTPVRAFNLGTGTGTSVLAMLHAFERAVGRELAYEVGPRRAGDLPAFWADPTRANTELGWRAEKSIDDMCADTWRWQQANPQGFPDAPGPT0017825_29DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
AK018_00717300hypothetical proteinATGGGGGGCATGGCCGACCCCGTGCGCACCACCCGATGGGATCCCGGCGCGCGCTACCGGGCGTCGCTGCTGGCACCGGCCGCACGTCGCCGCGCCGACGAGGTCACCCCGGCCCGTGCGACCGGCCGACTGCACCGCGGTCCGGCCCGGCGCACCGCGGTGTTCGACCGCGACGTGTGGCGCGCCGACCTCGGTGACGGTGGCTCCGTCGTCGCGCTCGGCGCGGCCGTGGCCGCCTACCGGCGCGGTGCCGTCGGGACCTCCGGGCTGCTGCGCGCGGTCGGGCGTGCCCTGGGCTGAMGGMADPVRTTRWDPGARYRASLLAPAARRRADEVTPARATGRLHRGPARRTAVFDRDVWRADLGDGGSVVALGAAVAAYRRGAVGTSGLLRAVGRALGNANANANANA
AK018_00718414hypothetical proteinATGACCCTGCGTCCGCTCGCGGTCCTCGCCGTCGCCGTGCTGGCCGGGTGCCAGGCGACGGACGCCGACGACCCGGCAGGTGCGACGTCGGCTGCGGTGGACGAACAGCGCTTCCCCGACGTGCTGGAGGCAACGGTCGAGTGCGAGGGCACGACCTGCGACCTGGAGGTGACGATCAGCTCGCCGTACGACACCCCGGCGCGGTACGCCGACGGCTGGCGCGTGCTCACCACCGACGGCACCGAGCTCGGGGTGCACGCCCTGGCCCACGACCACGCCGGCGAGCAGCCGTTCACCCGTACCCAGAGTGGCCTCAAGATCCCGTCCGACGTCGAGGTGGTCGTCGTCGAGGCTCGGGACCTCGAGCACGGCTACGGTGGCGGGACCGTCACCGTGACGCTGCCCGACCGGTGAMTLRPLAVLAVAVLAGCQATDADDPAGATSAAVDEQRFPDVLEATVECEGTTCDLEVTISSPYDTPARYADGWRVLTTDGTELGVHALAHDHAGEQPFTRTQSGLKIPSDVEVVVVEARDLEHGYGGGTVTVTLPDRNANANANANA
AK018_007191113ald_1COG0686Alanine dehydrogenaseATGGACGTCGCCGTCCCGAAAGAAGTCAAGAACCACGAGGACCGGGTGGCGATCACCCCCGCCGGTGTCCACGAGCTGACGAGCCGCGGCCACCGCGTGCACGTCCAGGCCGGCGCGGGTCTCGGCGCCGGCATCACCGACGACCAGTACGCCACCGAGGGCGCCCGCATCGTCGACGGCGCCGCCGCGACGTGGGCGGCCGGCGAGATGGTGCTCAAGGTCAAAGAACCTGTGGCCTCCGAGTACGAGCTGATGCGCTCCGACCTGCTGCTGTTCACCTACCTGCACCTGGCCGCGGACAAGACGCTCACCGAGGAGCTCCTCGCCCGCCGCGTCACCGCCGTGGCCTACGAGACGGTCCAGCACGCCGACGGTTTCCTGCCCCTGCTCGCGCCGATGTCCGAGGTCGCGGGCCGCCTCGCGACCCAGGTCGGCGCCGCCACGCTGCAGAACGCGGCCGGCGGACGCGGCGTCCTGCTCGGCGGCGTGCCCGGCGTGCCCGCGGCGAACGTGGTGATCATCGGCGCCGGCACCTCGGGCATGAACGCCGCCCGCATCGCCGTCGGCATGGGAGCCCACGTCACCCTTCTGGACACCAACGTCGACGTGCTGCGCGCCGCCGACCGCGAGCTCGGCGGCCGCGTGCACACCCTGACGTCCAACCGCCTGTCGCTGCGTCAGGCCGTCCTCGAGGCGGACCTGGTGATCGGCGCGGTGCTGCTGCCCGGCGCCAAGGCCCCCGTGCTCGTGCCGAACGAGCTTGTCGCGAAGATGCGGCCCGGTGCGGTGCTCGTCGACATCGCCATCGACCAGGGCGGCTGCTTCGCCGACTCCCGGCCCACCACCCACGACCAGCCCACCTACCCGGTGCACGACACGGTCTTCTACTGCGTCGCCAACATGCCCGGTGCGGTCTCGCGCACCTCCACCTACGCCCTGACAAACGTCACCCTGCCCTACGCCGTGGCGCTCGCCGACGGCGGCTGGCGCGAGGCTCTCGGCACCGACGCCGCACTGGCCCGCGGTCTGAACACCTACGACGGCCACGTCACGCACGCGGGTGTCGCCGAGGCGCACGGGCTGGACCACCGTGAGGTGGCGGGGGTGCTGTGAMDVAVPKEVKNHEDRVAITPAGVHELTSRGHRVHVQAGAGLGAGITDDQYATEGARIVDGAAATWAAGEMVLKVKEPVASEYELMRSDLLLFTYLHLAADKTLTEELLARRVTAVAYETVQHADGFLPLLAPMSEVAGRLATQVGAATLQNAAGGRGVLLGGVPGVPAANVVIIGAGTSGMNAARIAVGMGAHVTLLDTNVDVLRAADRELGGRVHTLTSNRLSLRQAVLEADLVIGAVLLPGAKAPVLVPNELVAKMRPGAVLVDIAIDQGGCFADSRPTTHDQPTYPVHDTVFYCVANMPGAVSRTSTYALTNVTLPYAVALADGGWREALGTDAALARGLNTYDGHVTHAGVAEAHGLDHREVAGVLPGPT0020070_2525DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ALANINE_DEGRADATION,PGPT0020070-ald-K00259NANA
AK018_00720450lrp_1COG1522Leucine-responsive regulatory proteinGTGCACCTGGACGGGATCGACCACCGCCTCCTCGCCGCGCTGGCCGAGGACGCCCGCATACCCAACAACGCGCTGGCGGCGCGGGTGGGGATCGCGCCCTCGACGTGCCTGACCCGGGTGCGGCGCCTGCGCGACGAAGGCGTGATCCGCGGCTTCCATGCCGACGTCGACCCCGCGCTGGCCGGCCGGCCCCTGCAGGCGATCATCGCCGTGCGGATGCAGGGCACCGCCCGCTCGCACCTGCCGGCGTTCGCCCGCGAGCTGGCGCGGCTGCCGGGCGTGCTGGACGTCTACCTCATCGGCGGGGCGCACGACTTCTTCGTGCACGTCACCGCACCCGACTCGGACGTGCTCAACGACTTCGTCATCGAGAACCTCTCGGCCAACCCGGGAGTCGCGCTGACCGAGACGAACCTGATCTTCCAGCACACCCGCGGCGGTTGGTACTGAMHLDGIDHRLLAALAEDARIPNNALAARVGIAPSTCLTRVRRLRDEGVIRGFHADVDPALAGRPLQAIIAVRMQGTARSHLPAFARELARLPGVLDVYLIGGAHDFFVHVTAPDSDVLNDFVIENLSANPGVALTETNLIFQHTRGGWYNANANANANA
AK018_00721849dhmA2Haloalkane dehalogenase 2ATGGCGGCACCGCTGCTGGAGCGCTCGTTCTCGTGGCGCGGCCGAGAGGTCGCCTGGACCTCGTTCGGTCAGGGACCGCCCCTGGTGTTCTGTCACGGCACGCCGTGGTCGTCGTGGCTCTGGGCGCCGTACGCCCGTGCCCTGGCGGAGGACTTCACCGTCCACCTGTGGGACATGCCGGGCTACGGCGCCTCCTCGCAGCACCGGGAGCACGACGTCCACCTGGGGGTCCAGGGCGAGGTCTTCGCGGACCTGCTGCAGCACTGGGCAGACCTGCGGGGCGGGGCCGGGAGCTGGCAGCCGCACGTGGTCGCCCACGACTACGGCGGAGCAGTCTCGCTGCGCGCGGCGCTGCTGCACGGTGCGCGGTACCGGTCGCTGTGCCTGGTCGACGTCGTGGCGCTACGACCGTGGGGGTCACCGTTCTTCACGCTGGTCGGTGAGCACGCCGAGGTGTTCGCCGACCTGCCCGCGGCGGTGCACCGGGGTGCGCTGGAGGCGTACGTGCGAGGAGCCGCACACCGACCGCTGCGCGCGGAGGACCTGGAGGCGCTGGTGGCACCGTGGCTCGGCGAGCAGGGCCGGGCCGCCTTCTACCGGCAGGTCGCCCAGGCCGACGAGCGGTGGACCGCGCAGGTCGAGCCGCTGCTCGGCGACCTGGCGATGCCCGTGCACGTCGTGTGGGGCGCCGAGGATGCCTGGGTCCCCGTCGACCGCGCACGACGTCTGACCGAGGCGATACCGGGCAGCCGCCTGACGGTGGTGCCCGACGCCGGCCACCTCGTCCAGCTCGACGCCCCCGTCGCCCTGGCCACGGTGCTGGCACGCTGGCTCGCCTCGGTGCGCTGAMAAPLLERSFSWRGREVAWTSFGQGPPLVFCHGTPWSSWLWAPYARALAEDFTVHLWDMPGYGASSQHREHDVHLGVQGEVFADLLQHWADLRGGAGSWQPHVVAHDYGGAVSLRAALLHGARYRSLCLVDVVALRPWGSPFFTLVGEHAEVFADLPAAVHRGALEAYVRGAAHRPLRAEDLEALVAPWLGEQGRAAFYRQVAQADERWTAQVEPLLGDLAMPVHVVWGAEDAWVPVDRARRLTEAIPGSRLTVVPDAGHLVQLDAPVALATVLARWLASVRNANANANANA
AK018_00722954hypothetical proteinGTGTCGGCGCTGATCGCCGAGCACGAACCACAGGACGCCGCCGGGCCGGCCACCGCGCGCGAGCGGGTGTTCGCCGCGGCCGACGCCCTGCTCGCCGAGGACGAGCCCGTCACCGTCACGACCGTGCGCGAGCGCGCCGGTTGCTCGAACGCCACCGCCACCAGCCACCTGCGGGCCTGGCGTGCGGCGCGGGCCGAGGCCGAGGCAGAGGCCGCCCGGCTGCCGGACCTGCCGCGCTCGGTCGAGCTGCTCGTGCAGCGTGGAGTGACCGGGCTGTGGGCGGAGGCCGTCCGGCGCGCCCGGCAGGAGCACGCCGAGGAGTCGACCCGCCTCCGGGCCGACCGGGAGTCCGCCCGCGAGGACGCCGGCCGGCTGGCCCGGGAGGTCGACGACGCCGTCGCCGCGCACGAGGCCGACCGCGATCGTCTGGCGGAGGCGAAGCGGCAGGTGCAGCTGCTGACCGGGCGCCTGGAGCAGGCCGAGGCCGAGCATGACCGCGCAGACGGTCTGGCGCGCCGGTCCGCCGGCCAGGCCGACGAGCTGCGCGAAGCCCTGCAACAGGTGCGCGCCGAGGTCGACGCGCTGCGTCGTGATCTCGCGGTCACCACGCAGTCGCGGGCCGAGGTGTCCGAGCAGCGTGCCGCCGCTCGCGCCGACGCCGAGGCCCGGCAGGTGGCCCTGGACGAGGCGCGCTCCGCGCTGGAGGCGCTGCGCACCGAGCTGCGCGGCTGCCAGGACGAGCGCGCGGCCGCTGTCGCCGAGCTGGCCGGCGCCCGTGCCGCGGCCGAACGCCGCGACCAGGAGCTGGTCACGCTGCGCGACGAACGGGACGAGGCCCGCACCCGTGCGGCGGAGACGGCGCACGAGGCCGCGGCGCAGGCTGCGGCGCGGGCCCGCGCCGAGGGCGAGCTGGCCGGGCTGCGCTCCACGCTCTCGAGCACGCCGGAGCCGTGAMSALIAEHEPQDAAGPATARERVFAAADALLAEDEPVTVTTVRERAGCSNATATSHLRAWRAARAEAEAEAARLPDLPRSVELLVQRGVTGLWAEAVRRARQEHAEESTRLRADRESAREDAGRLAREVDDAVAAHEADRDRLAEAKRQVQLLTGRLEQAEAEHDRADGLARRSAGQADELREALQQVRAEVDALRRDLAVTTQSRAEVSEQRAAARADAEARQVALDEARSALEALRTELRGCQDERAAAVAELAGARAAAERRDQELVTLRDERDEARTRAAETAHEAAAQAAARARAEGELAGLRSTLSSTPEPNANANANANA
AK018_007231458xerC_2Tyrosine recombinase XerCATGGCCTACACGGAGAAGCGCGCCTCGGCCGCAGGGACGATGTCGTACGTGGGGCGGTTCCGCGTGGACGGTCGGCTGCGCAGCACCCGGGCGTTCCGCGCCCGTCGCGACGCGCTGGCCGAGGCGCGCCGGGCGGAGGAGGCAGGCAAGCGCGGCGAGTGGGTCGACCCGCGTGCCGGCGAGATCACGGTGGCCGCATGGTTCGACGCCTGGCAGTCCGCGCGCGCCGACCGGGCGCCGCGGACCCTGGAGTCCGAGCGCGAACGGTTCCGCTCGCTGGTGGCCCCGACGTTCGGTGGGACCCCGCTGCGGCGCGTCGCCCACGACGACGTCACCCGCTGGGCGGTCGAGATGCGCCCGCCGGGTGGCACGGGAGCCGCCTCGCCGGCGCGGCGCCGTGACGCCGTCCGCCTGCTGGTGGCACTGCTCGACGCCGCCGTGGACGCCCGGCGGCTGACCGCGAACCCGGCGCGCACGCCCTCGGGACGCGTGCCCTCGATGCCCCGGGCTCCGAAGACCAAGCCCCACCGCTACCTGTCCCACGAACAGCTGCGCCGGGTGACGGACGCGACCTCGTCCGCCCGGACCGCCACCCTGGTGCTGCTGGCCGGTCTCACCGGGCTGCGCTGGGGCGAGGTGTCGGCCCTGCGGGTCGGCGACGTCGACCTGCTGCGGCGCCGCATCACGGTCGCGCGGGCCTACACCCGGCTCGACGACGGCCGGCTGCTGCTCGGGGACACCAAGACCCACGCCCGCCGCGAGGTCCCGCTGCCGCGCGTGCTCGAACCCGGGCTCACCGCACTCCTCACCGGCAACGACGCCGCGGCGTTGCTGTTCACGGGGCGCGACGGCGGTCCGTTGCGTCGCGAGTCGTTCGATCGGTACGCCTTCCGCCCCGCGGTGCTGGCGGCCGGCACCGCGGTGGCCACCCTGCAGGACCTGCTCGGCGTCCCCGTGACCGGGGTCCTCGACACCACGACCCTGTCCGCGGTGCGCCGGGTCCAGGCCGAGCACGGCCTGGACCCCGCCGGGGTGGTCGACGCGGCCACCTGGGACGTGCTGGTGAGCGCCGACCGCACGCGCCGCGAGGCGATGACCCGCGGGCAGAAGACCGCGCGCACCCGACGCCTGGCGGCCGTGGCCCGTGTGACGCTGCGAGCCGGAGCCGAGGACTTCGCCACGCTGACCCTGCACGACCTGCGCCACACCGCCGCGTCGCTGGCCATCGCCGGTGGCGCCACGGTCAAGGCCGTCCAGCGCATGCTCGGGCACGAGTCGCCGCTGCTGACCCTGCGGACCTACGCCGGACTGTTCGAGGACGACCTCGACCGGCTGGGCGAGTCGATGTCCGCGCAGTTCACCGCGCAGGACCCGACAGGCGCTGCTCACGATGTGCTCACCGGGGGCGCGCACGCGCCGGCCGGCGTCGCCGTCCTGAGCGCTCGTGCATCTCGCTGAMAYTEKRASAAGTMSYVGRFRVDGRLRSTRAFRARRDALAEARRAEEAGKRGEWVDPRAGEITVAAWFDAWQSARADRAPRTLESERERFRSLVAPTFGGTPLRRVAHDDVTRWAVEMRPPGGTGAASPARRRDAVRLLVALLDAAVDARRLTANPARTPSGRVPSMPRAPKTKPHRYLSHEQLRRVTDATSSARTATLVLLAGLTGLRWGEVSALRVGDVDLLRRRITVARAYTRLDDGRLLLGDTKTHARREVPLPRVLEPGLTALLTGNDAAALLFTGRDGGPLRRESFDRYAFRPAVLAAGTAVATLQDLLGVPVTGVLDTTTLSAVRRVQAEHGLDPAGVVDAATWDVLVSADRTRREAMTRGQKTARTRRLAAVARVTLRAGAEDFATLTLHDLRHTAASLAIAGGATVKAVQRMLGHESPLLTLRTYAGLFEDDLDRLGESMSAQFTAQDPTGAAHDVLTGGAHAPAGVAVLSARASRNANANANANA
AK018_00724528hypothetical proteinATGATCACCGACCCCGCGACCCGGACCCGCACCCCGCAGGTCGCGGACGAGCGGGAGACGCTGCTGAGCATGCTCGCCTTCCAGCGCGACACGTTGCGGTGGGAGTGCTCCGGGCTGAGCGCCGCACAGCTCGCCCAGCGGCACGCCCCGAGCGCGCTGACCCTCGCCGGTCCGCTCAAGCACCTGGCCGTCGTCGAGGCCGGCTGGGTCAACCTGACCTTCGCCGGCGGCGTCGAGGCGCCGACCTGGCTCGAGCAGTGGCAGCGCGAGAACGAGGGCTGGACGTTCACCACCGCCGCGGCGGACTCCCCGGCGCAGCTGTTCGCCTGGCTCGACGAGTCGCAGCGGGTCACCGAGCAGATCGTGGCCGGCGCGGCAGGGCTCGACACCCTCGCCGTGAGCCCGCCCGAGGGCGAGGGGCCGTACGCGCTGCGATGGATCCTGGTGCACCTGGTCCAGGAGTACGCCCGCCACCTCGGGCACGCCGACCTGATCCGCGAGGCGATCGACGGCTCGGTCGGCGTCTAGMITDPATRTRTPQVADERETLLSMLAFQRDTLRWECSGLSAAQLAQRHAPSALTLAGPLKHLAVVEAGWVNLTFAGGVEAPTWLEQWQRENEGWTFTTAAADSPAQLFAWLDESQRVTEQIVAGAAGLDTLAVSPPEGEGPYALRWILVHLVQEYARHLGHADLIREAIDGSVGVNANANANANA
AK018_00725495ysnE_1putative N-acetyltransferase YsnEGTGGACATCCTGACCGACTCCCCCACCCGCGCCGACGTGCGCGCCCTGCTCGAGGAACACCTGGCCGAGATGCACGCCACCTCGCCGCCGGAGTCCGTGCACGCCCTCGACCCGGCGGCGCTCGCGGCCGAGCACATCACGTTCGTGACGGCCCGGGACGACGACGGCACGCTGCTCGGGTGCGGTGCGCTCAGCGAGCTCGACCCGGGCCCGGACGGGCACGGGGAGATCAAGTCGATGCGCACCGCCCGCGGGGCGCGAGGGCTCGGGGTCGCCACCCGCCTGCTGGGCGAGCTGATGACCCTGGCCGCCGAGCGCGGGTACACCCGCGTGAGCCTGGAGACCGGCGCCGAGGACTTCTTCGCCCCGGCCCGGCGCATCTACGCCCGGCACGGGTTCGTCGAGTGCGAGCCGTTCGCCGCCTACCTGCCCGACCCGAACAGCGTTTTCATGACGTTCGGCTTGTCCGTCCCGCCTCCTGAGGCCGGTCGCTGAMDILTDSPTRADVRALLEEHLAEMHATSPPESVHALDPAALAAEHITFVTARDDDGTLLGCGALSELDPGPDGHGEIKSMRTARGARGLGVATRLLGELMTLAAERGYTRVSLETGAEDFFAPARRIYARHGFVECEPFAAYLPDPNSVFMTFGLSVPPPEAGRPGPT0007180_28DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007180-iaaT|yedL|ysnE-K03829NANA
AK018_00726729rsbQSigma factor SigB regulation protein RsbQATGTGGCACCGGGTGGTGCCGTTGCTGGTGGACCGGTACCGGGTGGTGCTGTTCGACCATGCGGGGTCGGGGTCGGCGCACCCGGGGGCGTTCGACCCGTCGCGGCACGCGGCCCTGGAGGGGTACGCGCAGGACGTGGTCGAGCTGCTCGAGGACCTGGCGCTGGGGCCGGTGGTGCTGGTGGGTCACTCGGTCAGCGCGACGATCGTGCTGCTGGTGGCGGCCGAGCGGCCGGACCTGGTCGACCGGCTGGTGCTGGTGGGGCCGAGTCCGCGGTACGTCGACACCGACGACTACGTCGGCGGGTTCAGTGCGGCGGAGATCGACGAGCTGCTGGCCACGATGGAGTCGAACCATCTGGGCTGGTCGAGGGCGATGGCTCCGGTGATCGTGGGCAACCCGGAGCGTCCCGAGCTGGGTGAGGAGCTGACGGCGTCGTTCGTGCGCACCGATCCGCGGGCGATGCGGGCGTTCGCGCGGGCGACGTTCCTGTCGGACAACCGGGCGGACCTGGCGCGGGTGCGCACGCCGAGCCTGGTGGTGCAGTGCCGCGAGGACGCGATCGCGCCGGTGGCGGTGGGCCGGTACGTGCACGCCCACCTGGCGGGTTCGTCGTTCGTGCTGATCGACGCGGTGGGGCATTGTCCGCAGCTGAGCGCGCCGGCGGCGCTGGTGGCGGCGGTCGACGACTTCCTCAGTCCGGCACGGTTGTCGCCGGCGGGTTCGTGAMWHRVVPLLVDRYRVVLFDHAGSGSAHPGAFDPSRHAALEGYAQDVVELLEDLALGPVVLVGHSVSATIVLLVAAERPDLVDRLVLVGPSPRYVDTDDYVGGFSAAEIDELLATMESNHLGWSRAMAPVIVGNPERPELGEELTASFVRTDPRAMRAFARATFLSDNRADLARVRTPSLVVQCREDAIAPVAVGRYVHAHLAGSSFVLIDAVGHCPQLSAPAALVAAVDDFLSPARLSPAGSNANANANANA
AK018_007271449hypothetical proteinGTGAGCGGGGACGCTTGGGAGCGAGCCCCGTTGGGGTTGCTGCGCCTCGACGTGGACGGGTACGTCGTGGCGGCCAACGAGACGTTCGTGGGGTGGCAGCCGCGGTGCGCCGGGTCGCCGGCGCCCGCAGAGGTACCGGGACGGCGCATCGGTGACCTGCTGACGGTGGGCGGGCGGATCTACTGGGACACGCACGTGGCACCGGCCCTGGCGATGGCCGGGTCGGTGGAGGCGGTGGCGCTCGAGGTGCGTACGGTGGACGGCCCGCTGCCGGTGCTGCTGACCGCCGCCACCGACACTGCGGACCCCGCGGCGGCGGGCACCGTGCACGTGGCGCTGCTCGCGGTGCGCGAGCGCGCCGAGTTCCACCAGGAGCTGGTGCGGGCACGGCTGGCGGCCGAACGGTGGGCGGACCGGCTGCACTGGCTGCAGGACGCCACGGCGGGGTTGTCCCGCGCGGCCGGCACGGCGCAGGTGCGCCGAACGCTGGTCGACGCGGTGAGCCGCCATCCGGCGGTCGCCGAGGTGCGGTTGTCACACCCGGTGGACACGGCCCGCGCGACGGTGCGGCGCACGGGCGCGAGCACGTTCGAAGTGGGCGTGGCCGGCGCCGCGGGATCTCACGGCGTGCTGAGGGTGCGGGTGCACGACCGTCCCGGCGACCTGCCGGTGGACGTCGACGCCCTGGACGTCATCGCCCAGCAGGGTGGGGTCGCCCTGGACCGCGCCCGGATGCACGAGCAGAGCGCCTCGGTCGCCCACGAGCTGCAGCACGCGATGCTCACCGTGGACCTGCCGCGCCACCCCGGGTTGCGGCTCACGGCGCACTACCGGCCCGCGGAGCAGGGCCTGGAGGTCGGTGGCGACTGGTACGACGCGTTCTGGCTGGAACCCACCCGACTGGCCGTCGTCGTCGGGGACGTGGTGGGCCACGGGCTGCAGGCCGCGACCGCCATGGGCCAGCTGCGCACGGCCGTGCGGGCGCTCGCCGTGCCGGGACGTGGCCCCGCGGCGGTGGTCGACCTGGTCCACGGGTTCGTCGTGGACCGGCACGTCGGCTTCGGCTCGACGCTCGTCTACGGCGAGCTCGATCTGGCGACGTCCCGGTTCTCGTTCGCGTGCGCCGGGCACCTGCCGCCGCTGCACGTGCAGGCCCTCGGCGGCTGCGCCTACCGCTGGCAGGGCCGCTCGACGCCCCTGGGGGTCCCCGCGCCGGTGGCGCGGGCGCAGGGGACGATCGACCTGGACGCGGGGGACACGGTCGTGCTGTTCACCGACGGGGTGGTCGAGCGGCGCGACCAGTCGCTGCCCGAGGGTCTCAACGTGCTCGCGTCGGCCGCCGTGGCGCACACGGCCTCGCCGTCCCGGGGGGCGAGGCTGGTGGCGTCCGACGGTGACGCCCGTGACGACGCCTGCGTCCTGGCCCTCACGTGGCGTCCGATCCGGTGAMSGDAWERAPLGLLRLDVDGYVVAANETFVGWQPRCAGSPAPAEVPGRRIGDLLTVGGRIYWDTHVAPALAMAGSVEAVALEVRTVDGPLPVLLTAATDTADPAAAGTVHVALLAVRERAEFHQELVRARLAAERWADRLHWLQDATAGLSRAAGTAQVRRTLVDAVSRHPAVAEVRLSHPVDTARATVRRTGASTFEVGVAGAAGSHGVLRVRVHDRPGDLPVDVDALDVIAQQGGVALDRARMHEQSASVAHELQHAMLTVDLPRHPGLRLTAHYRPAEQGLEVGGDWYDAFWLEPTRLAVVVGDVVGHGLQAATAMGQLRTAVRALAVPGRGPAAVVDLVHGFVVDRHVGFGSTLVYGELDLATSRFSFACAGHLPPLHVQALGGCAYRWQGRSTPLGVPAPVARAQGTIDLDAGDTVVLFTDGVVERRDQSLPEGLNVLASAAVAHTASPSRGARLVASDGDARDDACVLALTWRPIRNANANANANA
AK018_00728789rutD_1Putative aminoacrylate hydrolase RutDATGATCCTCGCCCACGACGTGACCGGATCCGGGCCCGCCGTCGTCCTGCTGCACGCCGGCGTCGCCGACCGGCGCATGTGGGACCCGATCATGGCCGGCCTGACCCAGACGTTCCGGGTGCTGCGCGCCGACCTGCGCGGGTACGGGCAGTCCCCGCTGCCGGCCGAGGAGTACGTCGACGCTGACGACGTCGCCGAGACGATGGACGCCGCCCGGTTCACCGACGCCGTCGTGGTGGGCAACAGCCTGGGCGCGCGCGTCGCCTGCGAGCTGACGGCTCGGCATCCGGGGCGTGTGCGCGAGCTCGTGCTCATCTCACCCGACGTCGCCGCCACGCCGGGTGAGGACCTGCGCGCCTTCGCGGCCCGCGAGGAGGCGCTGCTCGCCGCCGGCGACGTCGAGGCAGCGGTCGCGCTGAACGTCGCCACGTGGCTGGGACCCGCCGCCGACGACGCCACCCGCGGCCTCGTCGCCGACATGCAGCGCGAGATCCTGCACATCCAGCTCGCCGCCGAGGCGGACGCCACCACCCGTGGCGCCCCTCCCGCGACACCCCGGCCCGTCCCCGTCGACCCGAGCGCCGTCCACGTGCCCACGCTCGTGGTCAGCGGTGCTCACGACCTCGCCCACTTCCGGGCCGCCGCCGACGACCTCGTCGCCGCCGTGCCCGGGGCAGAACGCCTCGACCTGGACTGGGCCGGTCACCTGCCCACCCTGGAGAACCCGGACGCCATCGAGCCGCTGCTGCTGGATGTGCTGCGCGACGACCCCACCGTGCACGCCCCCTGAMILAHDVTGSGPAVVLLHAGVADRRMWDPIMAGLTQTFRVLRADLRGYGQSPLPAEEYVDADDVAETMDAARFTDAVVVGNSLGARVACELTARHPGRVRELVLISPDVAATPGEDLRAFAAREEALLAAGDVEAAVALNVATWLGPAADDATRGLVADMQREILHIQLAAEADATTRGAPPATPRPVPVDPSAVHVPTLVVSGAHDLAHFRAAADDLVAAVPGAERLDLDWAGHLPTLENPDAIEPLLLDVLRDDPTVHAPPGPT0004995_2081DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
AK018_00729246hypothetical proteinGTGGCGAACCTCGACCCGGTCAACGCCCTGGCCGACGCCGCGGACGGGTTCGTGTGGCGGCTGCAGTCCGCGTACGCGGCCTGCTGGTGGGTGCCGGCCGGGCACCTGCCCGACGTCGCCGAGGCCGACGACCGGATGCTGCATGTGCGGACCCACGGCCCGAGCTCGCACGCGTTCACGCTGCAGCGTCCGTTCACGGCCGCCGGTGAACCGGCCGGGCCGGCCCGTGCCGGGGCCCGCTCGTAGMANLDPVNALADAADGFVWRLQSAYAACWWVPAGHLPDVAEADDRMLHVRTHGPSSHAFTLQRPFTAAGEPAGPARAGARSNANANANANA
AK018_00730372hypothetical proteinATGGCGACCTCCATCGAGTCCTACCTGGAGCAGTTCGACTCTCCGGCCCGCGCCCGGCTCGCCGAACTGGTGACTCTGGCGCGTCGGGTGGCGCCGGACGCCGTCGAGGCGATCCGGTGGCGTGCGCCGGCGTTCGTGCACCCCGACGGAGTGATCCTGTTCATGCTCTCGGGTCATGCCCGGCACGCGAACGTCGTGTTCACCCCGAGCACGAAGGAGTCGTTCGCTGCCGAGCTGGCCGGCGCCGGTCTGGCCACGGGCAAGGGGTCGGTCAGGCTGCCCTACGACGTCGAGGTCCCCGCCGCCCTGCTCGAACGGATGGTCGCGCACCGCGTGCGCGAGCACGAGGTCGACGGCGTCGGCTGGATGTAGMATSIESYLEQFDSPARARLAELVTLARRVAPDAVEAIRWRAPAFVHPDGVILFMLSGHARHANVVFTPSTKESFAAELAGAGLATGKGSVRLPYDVEVPAALLERMVAHRVREHEVDGVGWMNANANANANA
AK018_007311020hypothetical proteinATGAAGCACATCGGTTTCCTGTCGTTCGGTCACTGGACCGACCATCCGTCGTCGGCCACCCGCAGCGCGGCCGACGTGCTGACCCAGTCGGTCGAGCTGGCCGAGGCCGCCGAGGAGCTGGGCGCCGACGGCGCCTACTTCCGGGTGCACCACTTCGCCCGCCAGCTGGCCAGCCCGTTCCCGCTGCTGGCGGCGGTCGGCGCGCGCACCCGGCGTATCGAGATCGGCACCGGCGTGATCGACATGCGCTACGAGAATCCCGCGTACATGACCGAGGACGCCGGCGCGGCCGACCTCATCTCCGGTGGGCGGCTGCAGCTGGGCATCTCGCGCGGCAGCCCCGAGCAGGTCATCGAGGGCTACCGCCACTTCGACCACGTGCCCGCACCGGGCGAGTCGGACGCCGACATGGCGCGCCGGCACACCGCCAGGTTCCTCGAGCTGCTCGACGGCGAGGGGTTCGCCGAGCCGAACCCGCGCCCCATGTTCCCCAACCCGCCCGGGCTGCTGCGGCTCGAACCGCACTCGCCCGGTCTGCGCCGACGTGTCTGGTGGGGTGCCGGCTCCCGGGCGACCGCCGAGTGGACGGCGGCGCAGGGCATGAACCTGATGAGCTCGACGCTGCTCACCGAGGACACCGGCGTGCCGTTCCACGCGCTGCAGGCCGAGCAGATCCAGCGGTTCCAGGATGCCTGGGCGGCTGCCGGGCACCCCTGGCAGCCGCGGGTGTCGGTGTCCCGGTCGATCTTCCCGATCACCGATGACCGCGACCGCGCCTACTTCGGTCTCGAGACGCAGTCCACCGACCAGGTCGGCGTCCTCGACGGCGGGCGGGCCCGCTTCGGCAAGACCTACGCCGGCGAGATCGACGAGATCGTCGACGCCCTGGCCGGCGACACCGCGATCGCGGCCGCCGACACGCTGCTGCTGACGGTGCCCAACCAGCTCGGGGTGGACTACAACGCCCACGTCATCGACAACGTGGTGCGCCACGTCGCCCCGGCGCTCGGCTGGCGCTAGMKHIGFLSFGHWTDHPSSATRSAADVLTQSVELAEAAEELGADGAYFRVHHFARQLASPFPLLAAVGARTRRIEIGTGVIDMRYENPAYMTEDAGAADLISGGRLQLGISRGSPEQVIEGYRHFDHVPAPGESDADMARRHTARFLELLDGEGFAEPNPRPMFPNPPGLLRLEPHSPGLRRRVWWGAGSRATAEWTAAQGMNLMSSTLLTEDTGVPFHALQAEQIQRFQDAWAAAGHPWQPRVSVSRSIFPITDDRDRAYFGLETQSTDQVGVLDGGRARFGKTYAGEIDEIVDALAGDTAIAAADTLLLTVPNQLGVDYNAHVIDNVVRHVAPALGWRNANANANANA
AK018_00732672hypothetical proteinGTGACGAGGCCTGAGCCCGGGATCCGGCTACCCACCTGGAAGGGCGAGCGCGTCGACCCCGACGACCCGGTCGCGTTGGTCGACGTGCTCGACGAGGCGCTGGACGTGCTCAAGGACTGTCTGGACGTCGGCGGATCGCCTCCGACCGAGCCCGCTGATCCGCTGCACGGTGTGGAGGCGGCGTCCCTGCTGCGGTTCGTCGCCGAGGCCGGCCAGCGGTACCTGGTCCCGATCGCTCGGACCGACGGCGCCGGCTGGGGCGACCTCGGACGGGCGATGGGGATCTGCGCGGACACGGCGCTCTCGCGCCACGAGGACGACGTGGCACAGCGCGAGGAGCGGCTGCGTGCCGCACGTCGGCCCGAACCGCCGGCGGGGTTCACACCGTCCGACGACGACGTCGTGCGCGACGCCGACCACGCCGCCTGGCGCTGGGACGGCGACCTCGACCTCGCGATCCGGTACGCGCGATCGCTGCCGGACCGCTTCCTCCTCGCCTTCCGCGAGACCGACGACGCCGGGTCGGCCGGTGCCTGGCCCGAGGAGGAGGACCTCGACGAGGCCACCTGGCGTCTGCTGATCGGGTCGATGCTCGCGGACCGCCGGGCCGGCCCGGCCGACGCCCGCCCCGGCGAGTCCTTGGCCGAGCTCACCGCCCGCCGGGATTCCTAGMTRPEPGIRLPTWKGERVDPDDPVALVDVLDEALDVLKDCLDVGGSPPTEPADPLHGVEAASLLRFVAEAGQRYLVPIARTDGAGWGDLGRAMGICADTALSRHEDDVAQREERLRAARRPEPPAGFTPSDDDVVRDADHAAWRWDGDLDLAIRYARSLPDRFLLAFRETDDAGSAGAWPEEEDLDEATWRLLIGSMLADRRAGPADARPGESLAELTARRDSNANANANANA
AK018_00733102hypothetical proteinATGACGACGGAACGAGCGATCTGGTTCACCGGAGTCGCCGTCCTGACGTTCCCGATCCTGCTGGCGGCCTTCCAGGGCGACGACGAGCTAAGGACCCTGTGAMTTERAIWFTGVAVLTFPILLAAFQGDDELRTLNANANANANA
AK018_00734882hypothetical proteinGTGCCCTCGTCGCCCGTCTCGCCCGCCGCCGCGCTGCCCGGCCTGTGCGCGGACCGCAGCGAGGTCGTGACCTCGTGGTTCGGTCACCTCGAGGTGGTCGCTGACCACTCGTGGGGACTGACGGGCACGCGGGTGCTGCAGCTACGGCTCGACGACGGCACCCAGGTGGCGCTGAAGGCTTACGGGCCGGCCGATCACCACTTCGCCCGCGAGCTGGCCGCGCACGAGCAGCTCCTGGAGCGCCCGAATGGCGGGCGTCTGCCGCGTCTGCTGCACGCCGACCCCGAGCGCCGCCTCCTGGCGACGGCGTGGCTGCCAGGGGTGCTGGTCGAGGGTCATCGCGCCGAGCGTGCCGCGGACACCTACGCCCAAGCCGGCGGGCTGCTCGCACGGCTGCACGAGGGCGCCTCACGGGTCGACGGCGATCACGAGGCCGCGGCCGACGCCCGGGCCCTGGCATGGCTGGACGGCGAGCACCGCATCGCCGCCGACGTCGTGGCGCGGCTGCGGGCGGTGATCGCCACGCACGAGCACCCGCCGGTCCGGGTCGTTCCGACGCACGGCGACTTCCAGCCGCGCAACTGGGTGATCGACGACGACGGCGTGGTGCGCGTCATCGACTTCGGCCGGTTCGCGTGGCGACCCCCGGCCACGGATCTGGTGCGCCTGGCCGCCCAGCACTGGATCGGCCGCCCGGACCTGGCGGCGGCGTTCGTCGACGGCTACGGCGCCGACCCGCGCGGCGGAGCGGCATGGCGGCGCATCCTCGTGCGCGAGGCGATCGGCACCGCGGTGTGGGCCCACCGCGTCGGGGACCGGGCGTTCGAGGCCCAGGGGCACCGCATGATCGCCGCGGCGCTCGCGGACGCCGAGGCACCCTGAMPSSPVSPAAALPGLCADRSEVVTSWFGHLEVVADHSWGLTGTRVLQLRLDDGTQVALKAYGPADHHFARELAAHEQLLERPNGGRLPRLLHADPERRLLATAWLPGVLVEGHRAERAADTYAQAGGLLARLHEGASRVDGDHEAAADARALAWLDGEHRIAADVVARLRAVIATHEHPPVRVVPTHGDFQPRNWVIDDDGVVRVIDFGRFAWRPPATDLVRLAAQHWIGRPDLAAAFVDGYGADPRGGAAWRRILVREAIGTAVWAHRVGDRAFEAQGHRMIAAALADAEAPNANANANANA
AK018_007351389NAD-dependent malic enzymeGTGGCACTTCCCAGCCCCAGCTACACCATCACCCTGCGCGTGCAGGTCCCCGCCTCCCAGCAGGCCACCAGCACCGTGGTCACCGCCGTGGCCGACACCGGTGCCGCCGTCACCGGCGTCGACGTCGCCCACTCCACCCCCGAGGGCTTGGTCGTCGACCTGACCTGCGACACCGTCGACACCCAGCACTCCCAGCGCGTCGTGGACCGGCTCGAGGCCCTCGAGGGCGTGCACGTGCTCAAGTGGTCCGACTCGACGTTCCTGCTGCACCTCGGCGGCAAGATCGAGATCGCCCTGAAGACCCCCATCAAGACCCGCCGCGACCTGTCGCGCGCCTACACCCCTGGCGTGGCACGCGTGTGCACCGCCATCGCCGACAACCCCGACGACGCCCGCCGCCTGACCATCAAGCGCAACACCGTCGCCGTGGTCACCGACGGCACCGCCGTGCTCGGCCTCGGCGACATCGGTCCCGCCGCCGCACTGCCCGTCATGGAGGGCAAGGCCGCCCTGTTCAAGCAGTTCGCCGACGTCGACGCCTGGCCCGTGTGCCTCGACACCACCGACACCGAGCAGATCATCTCGATCGTCAAGGCCATCGCCCCCGTCTACGGGGGAGTGAACCTCGAGGACATCTCCGCACCCCGCTGCTTCGAGATCGAGGCCCGCCTGCGCGCCGAGCTCGACATCCCCGTCTTCCACGACGACCAGCACGGCACCGCCATCGTCGTGCTCGCCGCCCTGGTCAACGCCCTGAAGGTCACCCACAAGAAGATCGGCGACGTGCGCGTCGTCGTCTCCGGCGTCGGCGCCGCCGGCAACGCCATCATCCGCCTGCTGCGCGCCCAGGGCGCCGAGCACATCATCGCCTACGGCCGCACCGGCGCCCTGCACCCCGGCACCCTCGACGACGACCCCCACCGCAACTGGATCGCCGAGCACACCAACCCCGCACGGTTCGACGGCACCCTCACCGAGGCCCTCGCGGGCGCGGACGTGTTCATCGGCGTCTCGGCCGGCGACATCCTGACCGGCGCGGACGTGGCCACGATGGCCGACGACGCCATCGTGTTCGCGCTGGCGAACCCGACACCGGAGGTCGACCCGGTCGCCGCCGCCGAGCACGCCGCCGTGGTGGCCACCGGGCGCAGCGACCACCCCAACCAGATCAACAACGTGCTCGCCTTCCCGGGCCTGTTCCGCGGCCTGCTGGACGCCGGTGCCACCGAGATCACCGACGAGCTGATGCGCGTGGCGGCGCTCGCGATCGCGGGCGTGGTGGCCGACGACGAGCTGAACAGCGCGTTCATCATCCCCGGGGTGTTCGACCACCGCGTCGCCGAGGCGGTGGCCGGTGCCGTGCGCGCCGTGGCCGAGGCCGACCGGTGAMALPSPSYTITLRVQVPASQQATSTVVTAVADTGAAVTGVDVAHSTPEGLVVDLTCDTVDTQHSQRVVDRLEALEGVHVLKWSDSTFLLHLGGKIEIALKTPIKTRRDLSRAYTPGVARVCTAIADNPDDARRLTIKRNTVAVVTDGTAVLGLGDIGPAAALPVMEGKAALFKQFADVDAWPVCLDTTDTEQIISIVKAIAPVYGGVNLEDISAPRCFEIEARLRAELDIPVFHDDQHGTAIVVLAALVNALKVTHKKIGDVRVVVSGVGAAGNAIIRLLRAQGAEHIIAYGRTGALHPGTLDDDPHRNWIAEHTNPARFDGTLTEALAGADVFIGVSAGDILTGADVATMADDAIVFALANPTPEVDPVAAAEHAAVVATGRSDHPNQINNVLAFPGLFRGLLDAGATEITDELMRVAALAIAGVVADDELNSAFIIPGVFDHRVAEAVAGAVRAVAEADRPGPT0001350_1776DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001350-maeA|sfcA|ywkA-K00027NANA
AK018_00736429hypothetical proteinGTGCCCTCGCCCCTGCGCCGACCCGGCCCGTCACGGCCCCCGCTCGTCCTGGCCGTCCTGGCGCTCGCGGGGATGCTGACCGGTTGCGCCGGTGACGCCGACCCGGCCGGGACCACGTACGGCGTCGTGCAGGTCACCGGGCACGAGCTGGCGACCGGCTCGGACGTGGTGCTGGCGTTCACCGAGGACTCCGTGGGCACCCAGCCCGGCTGCAACGCCTTCACGGCGCCGGCACGCTGGGACGACGGCACCCTGGAGCTGGAGGGCGAGCCGGCCGGCACCCGGATGGCGTGCTCGCCGGACCTGATGGCCCAGGACCAGTGGTTCACGGCGTTCCTGGGTTCGTCGCCGACGCTGACGTTCGAGGGGGAGGAGCTCGTCCTCGCCGCCGGCGAGGTCACCGTGCGCCTGGCACCCCGGGCAGACTGAMPSPLRRPGPSRPPLVLAVLALAGMLTGCAGDADPAGTTYGVVQVTGHELATGSDVVLAFTEDSVGTQPGCNAFTAPARWDDGTLELEGEPAGTRMACSPDLMAQDQWFTAFLGSSPTLTFEGEELVLAAGEVTVRLAPRADPGPT0014615_814DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014615-hslJ-K03668NANA
AK018_00737927hypothetical proteinATGGCCGCGTTCGTCCCGCCGTCGGACACCCGACGCCCGCTGCTGCTGTTCGCGCTGACCCCGCCCAAGCGCGCCACCAGCGAGGCCGACGCCCAGCGCGTGGCCGACCGCACCTGCGAGCGCCTGCGCGGCCTGGACCTGGACGCGCTGGTGCTGTACGACATCGACGACGAGTCGGACCGCAACCCGCACGAGCGACCCTTCCCGTACCTGCCGACGATCGACCCGGACGAGTTCCGCACCCGGTACCTGACGGGCTGGGACCGCCCGGTGGTGGTGTACCGGTCGGTGGGCAAGTACGACCCGGACGAGCTCAGCGGATGGCTGGCGGCGCAGGACCCGGCGCGGGTCTCGACGGTGCTGGTGGGTGCCTCGGCCTCGGACGCGCCGGTGCGCACGAGCCTGTCGCGCGCCCAGCGGCTGTGCGCGGCCCACGCGCCGGGGCTGCACCTGGGGGCGGTGGCGATCCCGGAGCGGCACGGCTCGCGCGGTGACGAGCACGAGCGCATGCGCGCCAAGCAGGCGGCCGGGGTGGACTACTTCGTGACGCAGGTGGTCTACGACGTCGGCGCCGCCAAGACGATGGTCTCGGACTACCACTACGCGTGCCGCGACGTCGGCGAACGGCCGGCGCCGGTGGTGTTCACCCTGTCGGTGTGCGGCTCGGACCGCACCCTGGCGTTCCTGGAGTGGCTGGGGGTGCACGTGCCCGGCTGGATGCGCAACGACCTGCGCCACACCGGCGACCCGCTGGCGGTCAGCTACGACCAGTGCGTCACGATCGCCGCCGAGCTGGCCCGGTTCTGCCGCCGGCACGCCATCCCGTACGGGTTCAACGTCGAGTCGGTCTCGATCCGCCGGGCCGAGATCGAGGCGTCGGTGCGCCTGGCGGCCCACCTCGACGCCCACCTGGGCACGGACCTGTAGMAAFVPPSDTRRPLLLFALTPPKRATSEADAQRVADRTCERLRGLDLDALVLYDIDDESDRNPHERPFPYLPTIDPDEFRTRYLTGWDRPVVVYRSVGKYDPDELSGWLAAQDPARVSTVLVGASASDAPVRTSLSRAQRLCAAHAPGLHLGAVAIPERHGSRGDEHERMRAKQAAGVDYFVTQVVYDVGAAKTMVSDYHYACRDVGERPAPVVFTLSVCGSDRTLAFLEWLGVHVPGWMRNDLRHTGDPLAVSYDQCVTIAAELARFCRRHAIPYGFNVESVSIRRAEIEASVRLAAHLDAHLGTDLNANANANANA
AK018_007381029adh_1Alcohol dehydrogenaseATGAGCATGAAGGCAGCCGTCGTCACCGAGTTCCGCGCCCCGCTGAGCATCGACGAGGTCCCCCTGCCCGAACCCGGCCCCGGCCAGGCGCTCGTCGAGGTGCTCTACTCCGGGGTCTGCCACACCGACCTGCACGCCGCCCACGGCGACTGGCCCGTCAAGCCCACCCCGCCCTTCATCCCCGGCCACGAGGGCGTCGGCGAGGTCGTCGCCGTCGGCGACGGCGTCACCCGCCTGACCGTCGGCGACACCGTCGGCAACGCCTGGCTGTGGAGCGCCTGCGGCGAGTGCGAGTTCTGCGAGACCGGTCGCGAGACCCTCTGCCCGAACCAGGCCAACGGCGGCTACAGCGTCGACGGCTCCTTCGGCCAGTACATGCTCGTCGACGCCGCCTACGCCCCGATCATCCCCGAGGGCGTCGACCTCGCCGCCGCCGCCCCCATCCTGTGCGCCGGCGTCACCGTCTACAAGGGCCTCAAGGAGTCCGAGGTCAAGCCCGGCCAGTGGGTCCTCATCTCCGGCATCGGCGGACTCGGCCACATCGCCGTGCAGTACGCCCGCGCCATGGGCATGCGCGTCCTGGCCGTCGACGTCGCCGAGGACAAGCTCGCCCTGGCCCGCAAGCACGGCGCCGAAGCCACCGTCAACGCCGCCACCACCGACGACGTCGTCGCCCGCATCGCCGAGCTCACCGGTGGGGGAGCGCACGGCGGCCTCGTCACCGCCGTCAACGGCAAGGCCTTCCCCCAGGCCGTCGGCGGCCTGCGCCGCGGCGGCACCGTCGCGCTCGTGGGCCTGCCCCCCGAGCAGTTCGGGCTCGACATCTTCTCCACCGTCCTGTTCGGGCTCACCGTGCGCGGCTCCATCGTCGGCACCCGCAAGGACATGGCCGAGGCCCTCGACTTCTTCGCCCGCGGCCTCATCGACCCCACCTACGCCGTGCGCCCCCTGGCCGAGATCAACGACATCTTCACCGAGATGCTCGACGGCGCCATCGACGGCCGCATCGTGATGGACATGCGCGGCTGAMSMKAAVVTEFRAPLSIDEVPLPEPGPGQALVEVLYSGVCHTDLHAAHGDWPVKPTPPFIPGHEGVGEVVAVGDGVTRLTVGDTVGNAWLWSACGECEFCETGRETLCPNQANGGYSVDGSFGQYMLVDAAYAPIIPEGVDLAAAAPILCAGVTVYKGLKESEVKPGQWVLISGIGGLGHIAVQYARAMGMRVLAVDVAEDKLALARKHGAEATVNAATTDDVVARIAELTGGGAHGGLVTAVNGKAFPQAVGGLRRGGTVALVGLPPEQFGLDIFSTVLFGLTVRGSIVGTRKDMAEALDFFARGLIDPTYAVRPLAEINDIFTEMLDGAIDGRIVMDMRGPGPT0006365_1649DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953NANA
AK018_00739636hypothetical proteinATGAGCTCCACCCCACCCGCGCCCACCCAGCCCGAGGCCACCAGCGTCAAGCACACCCGGTTCGAAGACGCCCTCGGCATCCTGACCGGCACCTTCGTCGTCTCCCTCGGCCTGTACCTGCTCGAGTCCGTCTCCGCCGTCACCGGCGGCACCGCCGGACTCTCCCTGCTGGTCAGCTACGTCGCCCCGCTGCCCTTCGCCGCGCTCTTCGCCCTGGTCAACCTGCCGTTCTTCCTGCTGGCCATCACCAAGAAGGGCTGGAGCTTCACTCTGCGCACCGGCGCCGCCATCGCCCTCGTGTCTGCCTTCTCCGTCCTGCACCCCACCGTCTTCGGCACCATCGACCTGCCACCGCTGTACGGCGTCCTCGCCGGCAACACCCTCGCCGGCGTCGGCCTGCTCATCCTCTTCCGCCACCGCTCCAGCCTCGGCGGGTTCAACATCCTCGCCCTCATCGCCCAGGAACGCCTCGGCTGGCGCGCCGGCTACGTCCAGATGGCCCTCGACACCACCGTCGTCCTGGTCGCCCTCACCGTCGTACCCGTCACCACCGTGCTGCTGTCCGCCCTCGGCGCCGTCCTGCTCAACCTCGTCCTCGCCATGAACCACCGCCCCGGGCGCTACACCGGCTACTGAMSSTPPAPTQPEATSVKHTRFEDALGILTGTFVVSLGLYLLESVSAVTGGTAGLSLLVSYVAPLPFAALFALVNLPFFLLAITKKGWSFTLRTGAAIALVSAFSVLHPTVFGTIDLPPLYGVLAGNTLAGVGLLILFRHRSSLGGFNILALIAQERLGWRAGYVQMALDTTVVLVALTVVPVTTVLLSALGAVLLNLVLAMNHRPGRYTGYNANANANANA
AK018_00740444hypothetical proteinATGACCCGCACCGCCCACGACGAGCACCTGCGCGACCTCGCGCTGCTGCGCCGCGTGCGCGACCGCATCGACCGCGACCACGCCCGACCCCTCGACGTCCCGGCGCTCGCGGCCGGGGTAGGCATGTCCGCGGGTCACCTGAGCCGGCGGTTCAAGGCCGTCTACGGCGAGTCCCCGTACAGCTATCTCATGACCCGGCGGGTCGAGCGGGCGATGGCGCTGCTGCGCCGCGGCGACCTGAGCGTGACCGAGGTGTGCTTCGCCGTCGGCTCGTCGTCGCTGGGGACGTTCACGACCCGCTTCACCGAGCTCGTGGGCATGCCGCCGGGGGAGTACCGCCGCCGCGCCCGCTCGGCCCAGGCTGCCGAGCTGCCCTCCTGCGTCACCAAGCAGGTCGACCGACCGATCAGGAATCGAGAAGCGCCCACGCCACCGCCTGCCTAGMTRTAHDEHLRDLALLRRVRDRIDRDHARPLDVPALAAGVGMSAGHLSRRFKAVYGESPYSYLMTRRVERAMALLRRGDLSVTEVCFAVGSSSLGTFTTRFTELVGMPPGEYRRRARSAQAAELPSCVTKQVDRPIRNREAPTPPPAPGPT0016790_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375NANA
AK018_00741411hypothetical proteinATGAACATCGCCATCCACACCACGTTCCTGCCGCACACCGACCCCGAGGCATCCCTGGCCTTCTACCGCGACCTGCTCGGCTTCGAGCTGACCATGGACGTCGGCGAGGGTGCCATGCGCTGGCTGACCCTCGTCGCCCCCGACCAGCGCGACGTGCGCCTCGTGCTCACCCCGCCCGCCGCCGACCCGGGCGTCACCGAGGACGAGCGCCGCACCGTCACCGAGCTGATGGCCAAGGGCAGCTACCAGTCGATCATCCTGGCCACCACCGACCTGGACGGGACGTTCGACCGCCTGCAGGCCGCGGACGCCGAGGTGGTCTCCGAGCCGGCCGAGCAGCCCTGGGGGGTGCGCGACTGCGCCTTTCGCGACCCCGCGGGCAACATGGTGCGCATCGACGAGGTCCGCTGAMNIAIHTTFLPHTDPEASLAFYRDLLGFELTMDVGEGAMRWLTLVAPDQRDVRLVLTPPAADPGVTEDERRTVTELMAKGSYQSIILATTDLDGTFDRLQAADAEVVSEPAEQPWGVRDCAFRDPAGNMVRIDEVRNANANANANA
AK018_007422391uvrA_1UvrABC system protein AATGGCCACGACCAGCCCGTCTGCATCCACCCACCCGGCCGACGCCCACGACGTGATCGCCGTGGCCGGCGCCCGGGAGAACAACCTGCGCGACGTCAGCGTCGAGATCCCCAAGCGCCGCCTGACCGTGTTCACCGGGGTCTCCGGGTCGGGCAAGAGCTCGCTGGTGTTCGCCACGATCGCCGCGGAGTCCCGCCGGCTCATCGACGAGACCTACTCCACGTTCCTGCAGGGGTTCATGCCCTCCCTGCCGCGCCCCGACGTCGACCACCTGTCCGGCATCACCACGGCCATCCTGGTCGACCAGGAGCGGCTGGGCGCCAACGTGCGGTCCACCGTGGGCACCGTCACCGACGCCCACGCGATGCTGCGCCACCTGTTCAGCCGCATCGGCGAACCGTACGTCGGTCCGCCCACGGCGTTCAGCTTCAACGTGCCCACGTCCAAGGCCTCCGGGGTGATGAGCACCGAGAAGGCCGGGGGAGGCACGGAGAAGAAGGTCGTGCGAGAGCAGGTCTACCTCGGCGGCATGTGCCCCGAGTGCGAGGGGCGCGGCACCGTCTCCGACCTGGACCTGACGGTGATCGTCGACGAGTCGAGGTCGCTGAACGACGGCGCCATCCTGGTGCCCGGCTACAAGGCCGACGGCTGGATGGTCAAGGGGTTCGCCGAGTCCGGCTTCGTCGACGCGGACAAGCCCGTGGCCGAGTACACGGAGACCGAGCGGCACGACTTCCTGTACCGCGACAAGGGCAAGATCAAGGCCCTGGGCATGAACATGACGTATCAAGGCCTCATCCCGAAGCTGCGCGAGTCCGTGTTCTCCAAGGACCCCGAGTCGCTGCAGCCGCACGTGCGCCGCTTCGTCGAGCGCGCCGCCGTGTTCGGGCCCTGCCCGGCGTGCGACGGCACCCGTCTCAACCACTCCGCACGGTCCGCGACGGTGGCCGGGCAGAACATCGCCGACGTGTGCCGCCTGCAGATCACCGACGCCGCCACCTGGGTGCGCGGCATCGACGACCCGCACGTCGCACCCCTGGTGAGCACCCTGTCGGCGCTGCTGGACTCCTTCGTCCAGATCGGCCTCGGCTACCTCTCCCTGGACCGGCCGGCCGGCACCCTGTCCGGGGGAGAGGCGCAGCGCGTCAAGATGATCCGCCACCTCGGCTCGGCACTGACGGACGTCACCTACGTGTTCGACGAACCCACCATCGGCCTGCACCCGCACGACATCGCCCGCATGAACGACCTGCTCGTCGACCTGCGCGACAAGGGCAACACCGTGCTCGTCGTCGAGCACAAGCCCGAGGCGATCGCCGTCGCCGACCACGTCGTCGACCTCGGCCCCGGCGCCGGGTCCGACGGCGGCACCATCTGCTACGAGGGCACCGTCGACGGGCTGCGCACCAGCGACACCCTCACCGGCCGCCACCTCGACGACCGCGCCCGCCTCAAGGAGACCGTGCGCCAGCCCACCGGTGCCCTCGAGATCCGCGGCGCGAACCAGAACAACCTGCAGGCGGTCGACGTCGACATCCCCACCGGCGTGCTCACCGTCGTCACCGGCGTCGCCGGCTCCGGCAAGAGCTCGCTCATCCACGGCAACCTCGCCGACCGCGACGGCGTCGTCGTCGTCGACCAGGGCGCCATCAAGGGCTCCCGGCGCTCCAACCCCGCCACCTACACCGGCATGCTCGAACCCATCCGCAAGGCCTTCGCCAAGGCCAACGGCGTCAAACCCGCCCTGTTCAGCGCCAACTCCGAGGGCGCCTGCCCCACCTGCAAGGGCAACGGCCGCATCTACACCGAGCTCGGCTTCATGGAGACCGTCGAGGCCCCCTGCGAGGACTGCGGCGGCAAGCGGTTCATGGCCGAAGTGCTCGAGTACACCCTCGGCGGCAAGAACATCGCCGAGGTCCTCGACCTCTCCGTCGCCCACGCCCACGACTTCTTCTCCACCGGCGACGCCAAGGTCCCCGCCGTCGCCACCACCCTTGCGCACCTGCGCGACGTCGGACTCGGCTACCTGCACCTCGGCCAGCCGCTCAACACCCTGTCCGGGGGAGAGCGCCAACGCCTCAAGCTCGCCATGCACATGGGCGACCCCGGCGGCACCTACGTCCTCGACGAACCCACCACCGGCCTGCACCTCGCCGACGTCGAACGACTCCTCGCCCTGCTCGACCAGCTCGTCGACGCCGGCAGGACCGTCATCGTCATCGAGCACCACCAGGCCGTCATGGCCCACGCCGACCACCTCGTCGACCTCGGCCCCGGCGCCGGGCACGACGGCGGACGCATCGTCTTCGAGGGCACCCCCACCGACCTCGTCGCCGACCGGTCCACCCTGACCGGGCAACACCTGGCCGACTACGTCGGCGCCGACGCATGAMATTSPSASTHPADAHDVIAVAGARENNLRDVSVEIPKRRLTVFTGVSGSGKSSLVFATIAAESRRLIDETYSTFLQGFMPSLPRPDVDHLSGITTAILVDQERLGANVRSTVGTVTDAHAMLRHLFSRIGEPYVGPPTAFSFNVPTSKASGVMSTEKAGGGTEKKVVREQVYLGGMCPECEGRGTVSDLDLTVIVDESRSLNDGAILVPGYKADGWMVKGFAESGFVDADKPVAEYTETERHDFLYRDKGKIKALGMNMTYQGLIPKLRESVFSKDPESLQPHVRRFVERAAVFGPCPACDGTRLNHSARSATVAGQNIADVCRLQITDAATWVRGIDDPHVAPLVSTLSALLDSFVQIGLGYLSLDRPAGTLSGGEAQRVKMIRHLGSALTDVTYVFDEPTIGLHPHDIARMNDLLVDLRDKGNTVLVVEHKPEAIAVADHVVDLGPGAGSDGGTICYEGTVDGLRTSDTLTGRHLDDRARLKETVRQPTGALEIRGANQNNLQAVDVDIPTGVLTVVTGVAGSGKSSLIHGNLADRDGVVVVDQGAIKGSRRSNPATYTGMLEPIRKAFAKANGVKPALFSANSEGACPTCKGNGRIYTELGFMETVEAPCEDCGGKRFMAEVLEYTLGGKNIAEVLDLSVAHAHDFFSTGDAKVPAVATTLAHLRDVGLGYLHLGQPLNTLSGGERQRLKLAMHMGDPGGTYVLDEPTTGLHLADVERLLALLDQLVDAGRTVIVIEHHQAVMAHADHLVDLGPGAGHDGGRIVFEGTPTDLVADRSTLTGQHLADYVGADAPGPT0014915_6963DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701NANA
AK018_00743501hypothetical proteinATGAACCCACCCCAGGTCCGCGCCCCCGTCCTCGACGACGTACCCGCCATCGCACGCCTGCACGTGCGCTGCTGGCAGCAGACCTACCGCGGACTCATGCCCGACGCCGTCCTCGACGACCCCGGATTCGTCGACGCCCGCGAGAAGCAGTGGCGCCGAGGCCTCGACGACCCCGCGCCCCACACCCGCCGCGCCGCCTTCGCCGTCATCGACCACGACATCGTCGGCCTCGCGATGTCCGGCCCACCCCTGGACGACGACGCCACCTGGTCGCGGCAGCTCTTCAACCTCTACGTCGACGCCGCCCACCACGGCAGCGGCGCCGGGCACGACCTGCTGCAGGCCGTCATCGAACCCGGAGAGTCCGCGGCACTCTGGGTCGCCGACCCCAACCCCCGAGCCCAAGCCTTCTACCGCAAGCACGGCTTCACCCCCGACGGCACCACCACCGTCCAGGACGGTGTCACCGAGCTCCGCATGGTGCACACCCCGACCGGCTGAMNPPQVRAPVLDDVPAIARLHVRCWQQTYRGLMPDAVLDDPGFVDAREKQWRRGLDDPAPHTRRAAFAVIDHDIVGLAMSGPPLDDDATWSRQLFNLYVDAAHHGSGAGHDLLQAVIEPGESAALWVADPNPRAQAFYRKHGFTPDGTTTVQDGVTELRMVHTPTGNANANANANA
AK018_00744195hypothetical proteinGTGGCCACGTCGTTCGGCCTCTGGTCGACCGCCGGGGCGCTCGCGGACCCGGACACCGTGCGCCGCGCCCGCGGGTTCGCCGGCACCATCCCGCTCCAGATCGTCGCGTTCGCCGTGCTCCAGGAGCGACCGGACCACGAGCTCGCCCGGACCATCGCGCGGGCGCAGCGCACCTTGCGCCGCAGCATGGCTTGAMATSFGLWSTAGALADPDTVRRARGFAGTIPLQIVAFAVLQERPDHELARTIARAQRTLRRSMANANANANANA
AK018_00745303sdpRCOG0640Transcriptional repressor SdpRGTGAAAATCGTGACCGACGACCTCTTCAAGGCGCTCGCGGACCCCACCCGGCGGTCGATCCTCGACGACCTGACCGAACAGTCCGAGCAGACACTCTTCGAGATCTGCACCCGGCTGAGCGTGCGGCACGACGTGTCCATGTCACGCCAGGCCGTGTCCCAGCACCTGGCCGTCCTGGAGGCAGCCGGGCTGGTCAGGACGCGACGGGAGGGTCGCTACAAGTTCCACGGCCTCGACACCTCACCGCTACGGCAGATCGTCGAGCGGTGGCCGATTCCCCACACCCCGGAGGACCACTCATGAMKIVTDDLFKALADPTRRSILDDLTEQSEQTLFEICTRLSVRHDVSMSRQAVSQHLAVLEAAGLVRTRREGRYKFHGLDTSPLRQIVERWPIPHTPEDHSPGPT0004735_1461DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
AK018_00746390hypothetical proteinATGAAGATCCACCTGACGAGCATCTTCGTCGACGACCAGGAGCATGCCCGCGCCTTCTACACCGACACGCTCGGATTCGTGGTCAAGCACGACATCCCGATGGGGGAGCACCGGTGGCTGACCGTGGTGTCCGCGCACGACCCGGAGGGACCTGAACTGTTGCTGGAACCGTCCGATCACCCCGCGGTCGCGCCGTTCAAGGACGCGCTGGTGGCCGACGGTATCCCGGCCGCGCAGTTCGCCGTCGAGAACGTCCGTGTCGAGCATGAACGACTGCGAGCCCTCGGCGTGCGATTCACCCAGGAGCCCGTCGCCATGGGGCCGGTGACGACGGCGGTGCTGGACGACACGTGCGGCAACCTGGTCCAGATCGCCGCCATGAACGCCTGAMKIHLTSIFVDDQEHARAFYTDTLGFVVKHDIPMGEHRWLTVVSAHDPEGPELLLEPSDHPAVAPFKDALVADGIPAAQFAVENVRVEHERLRALGVRFTQEPVAMGPVTTAVLDDTCGNLVQIAAMNANANANANANA
AK018_00747168hypothetical proteinATGTACCACTCGACTGTTGCCCAGACCGCTCCCGTGCTGGCTGCCACCGGCGTCTCCGCCGCGTTCCACGTGGTGGCGGCCTGGACGTTGCTCGTGGCGGGACTGGCCCTGATCACCACCGCCCGTGTGCTCCGTCGGCGCCGTCGCGGTGCGTCGTCATCGTCGTGAMYHSTVAQTAPVLAATGVSAAFHVVAAWTLLVAGLALITTARVLRRRRRGASSSSNANANANANA
AK018_007481104hypothetical proteinATGCACTCCTCGCAGACCAGCGACACCCGGCTCGACCACCCTCGGTCGGTCGCCTCTCACGTCGTCGTGATCGTTCCCGCCCATGACGAGGAGGCCGCTCTTCCCGACACGATCGCTTCGTTGTGGGCGCAGACGTGCCGCCCGGGCCGCGTGTTGGTTGTTTCGGACAACAGCACGGACCAGACCGTCGCTGTGGCCCGCGCCGCTGGCGCTGACGTCATGGAGAGCTCCGGTAACACCGACCGGAAGGCTGGCGCCCTGAACCAGGCCATCGAGACCATCACCGATGAAGAGGTCGTCATGGTCCTGGACGCCGACACCTCCATCGCTCCCACCTTCATCGAGGAAGGGCTGGCGATCCTCGACGCCGAGCCCTCCGTCGCCGCCGTCGGCGGGGTCTTCGAAGGACGCGACCCTGGCGGGTTCCTGGAGCGCTGCCAGGCCAACGAGTATGCCCGCTACGGGGTCCAGATCGAGGTCACCGGTCGGACCGCTGTACTCACGGGAACCGCGGCGATGGTGCGTCGCGAAGCCCTCGAGGCGGTCGCCTCGGCACGCGGCACGACGCTGCCCGGACGGTGCGGCGACATCTACGACCGTCACGCCATCACCGAGGACTCCGAGCTGACTCTCGCGCTGCGTACCCTCGGCCACGAGCTGCGCTCCCCCGCCTCGATGACCTGCACCACGGAGCTCATGCCCACCTGGGGCGACCTCCACCGGCAGCGCGTGCGCTGGTACAAGGGGATGCTCGACAACCTGCTGACTTACGGCCTGACCCGCACCACCGCTCGATACGTGGGTCAGCAGGTCATGCTCGTCCTCGGGACGCTGATGATGGCCTCCTACCTGCTGCTGACCGCACTGACGCTGGTGGCCGGCACCTTCACGATCTCGGGTCCGTGGGCTGCCGTGGCCCTCGTGTTCCTCGTCGAGCGGCTCGTCACGGTCTGGCCCGCCGGGACACGGGCCCGTCTCCTTGCGGCACCCGTGCTGCCCGAGCTGCTCTACGACCTGGCGCTGCAGCGCGCCTTCGTGCACGCCGTGTGTCTGACCGTGGCGCGTCGTCAGACGACCTGGAACCACGTCGCCGCGACCGCCTGAMHSSQTSDTRLDHPRSVASHVVVIVPAHDEEAALPDTIASLWAQTCRPGRVLVVSDNSTDQTVAVARAAGADVMESSGNTDRKAGALNQAIETITDEEVVMVLDADTSIAPTFIEEGLAILDAEPSVAAVGGVFEGRDPGGFLERCQANEYARYGVQIEVTGRTAVLTGTAAMVRREALEAVASARGTTLPGRCGDIYDRHAITEDSELTLALRTLGHELRSPASMTCTTELMPTWGDLHRQRVRWYKGMLDNLLTYGLTRTTARYVGQQVMLVLGTLMMASYLLLTALTLVAGTFTISGPWAAVALVFLVERLVTVWPAGTRARLLAAPVLPELLYDLALQRAFVHAVCLTVARRQTTWNHVAATAPGPT0023485_214DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISMCE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023485-pgaC|icaA-K11936NANA
AK018_007491098xerD_1Tyrosine recombinase XerDATGGTCGCACCCCCTCGTCCCGACCGGATCACCGTCGCTCAGGCCGTCGAGCGCTACCTGTCCGCCGTGCGCGTCGAGACCGTGCGGGCAGTCCTCTCCCCCGCCACCGAACGGTCCTACGCGCGCGACGTCGCCGAGCTCGCCGACCTGCTCGGCCCCGACCGTGTCCTGGACGACGTCACCGGCGAGGAGATCGACGACGCGCTGGTGCGCTACCAGGCCGGCCCGGACGGCCGCTACGCCGACCCCACCGCGAAGCGTGGCCCCGGCCGCAGCACCGCGACCGTCAACCGGTTCCGGCAGTCCGTCACCCGGTTCTTCGCCCACGCCACGCGCCACTGCTGGGTCCAGGCCGACCCCATGCAGTGGGCGGCCCCGCCGGCCAAGGTCCGTGAGGCGCTGCGCACCGAGCGCACGGCGTTGTCCGCCGCCGCCGCCGAAGCCCTCCTCGACACCCTCCACGACGCCGGCACCACGCCGACCCGGACGCCGACCCGGCACGACCAACGGCTCGCCGCCCGCGACCGCCTCGTCGTCGCCCTGCTCGTCGTGCTCGGCCCCCGCGTCTCGGAGCTCGTACGGACCGACGTCGCCGACCTGCTGCGCGAACCCGACCGGACCCGGTGGCGCATCACCGGCAAGGGCGGCACCACACGCACCGTCGCACTCAGCCCGCCGCTGGCCGCCGCCGTCGACCACTACCTGACCACGCTGCGGCCCCAGCTCGCCGCGCGGCGCCCCGACGACCCCGACACGCGCCGCGCCCTGCTGCTGTCCTGGCGGGGACGACGCCTGGACACCCAGGCCGTGCGTGCCCTGCTGGCCCGAGCCGTGGCGCGCATGCCCGAGCCGTACCGGCGCCCCACCACCCCCCACGCCCTGCGCCACACCACCGCCACCCTCCTCGTCGCCGACGGCTGGGACGTCAAGGTCGTCGCCGAGCTGCTCGGCCACACCTCCATCGCCACCACCGGCGTCTACCTCGACCGCATCGACGGAGAGCTCGCCGCAGCGATCCGCACCCACCCGCTCAGCGGCTCCCTGAGAGCGGAATCACCCGCGCCGCCAGGCGCGACGCCCTCGACGTCGCTACGGTGAMVAPPRPDRITVAQAVERYLSAVRVETVRAVLSPATERSYARDVAELADLLGPDRVLDDVTGEEIDDALVRYQAGPDGRYADPTAKRGPGRSTATVNRFRQSVTRFFAHATRHCWVQADPMQWAAPPAKVREALRTERTALSAAAAEALLDTLHDAGTTPTRTPTRHDQRLAARDRLVVALLVVLGPRVSELVRTDVADLLREPDRTRWRITGKGGTTRTVALSPPLAAAVDHYLTTLRPQLAARRPDDPDTRRALLLSWRGRRLDTQAVRALLARAVARMPEPYRRPTTPHALRHTTATLLVADGWDVKVVAELLGHTSIATTGVYLDRIDGELAAAIRTHPLSGSLRAESPAPPGATPSTSLRNANANANANA
AK018_007501281clsA_1COG1502Major cardiolipin synthase ClsAGTGCCCGCGCGACGACGAACCTCCACCATCCCCGTCTCCGTCCAGGTCGACTGGCGCCGGGTCCGGCGCTTCGTCGGCCGCGCTGCCGCGATCGCGGCCGCCGTCCCCCTCACGGCCGGCGCGGCCGTGATGATCACCGACAAGGTCCGCGGCCAGCGCCACCCGCTCAACGCGACCTTCCCCACCGCGCGTCCCTCGACCACCGAGGTCGACGAGACCCGCGCCACCGTCTACACCTTCGGCGCGGACCTGTACGAGGACATGCTCGCCGCCATCGACGGGGCCCAGCACACCGTCTTCCTCGAGTCCTACATCTGGAAGGCCGACGAGACCGGGGAACGGTTCAAGCAGGCCGTCGCCGACGCCGCCGCCCGCGGCGTGGACGTCTACGTCATCTACGACGGGTTCGCCAACCTCGTCGTCCCCCCGGCCTTCTACGTGTTCCCGCCGCAGGTACGGGTCCTGCGCTTCCCCGCGTTCCGTGCCGGCCTGCTCACCCTCAGGGTCCGCCACTCCGGCCGCGACCACCGCAAGATCCTCGTCGTCGACGACGAGATCGCGTTCGTCGGCGGCTACAACATCGGCGCCCTGTACGCCACGCAGTGGCGCGACACCCACCTGCGGCTCGAGGGGCCGGCGGCGTGGGAGCTGCGTAACGCGTTCGTCGACTTCTGGAACCGCTGGCGCAACCCGCAGCTGCCCGTCCTGCAGGACGTCGGTGCCGAGCACTGGCAGCCCAGCCTGCGCGCCGCACGCAACGCCCCCAGCGACCTGGTGTTCCCCATCCGCGGCATCTACCTCGACGCCATCGACCGGGCCACCAGCCACATCTACATCACCCAGGCGTACTTCATCCCCGACCGCGACATCCTCAACGGGCTGCTCGCCGCCGCCGCCCGCGGCGTCGACGTCCGCGTCCTGGTCCCCGAACGCTCCAACCACTCCCTGGCCGACTGGCTCGCCCGCGGCCGCTACACCAAGCTCCTGCGCGGCGGCGTGCGGATCATGCTCTACCAGGGCGCCATGGTGCACGCCAAGACCGCCACCATCGACGGACGCTGGTCCACGGTCGGCACCGCCAACATCGACCGCCTCAGCCTCACCGGCAACTACGAGATCAACCTCGAGATCGTCGACCCCGGACTGGCCGCCGAGCTCGAGGACGTCTTCCGCATGGACGAGTCCAACGCCCGCGAGCTCACCTACCAGGAGTGGCAGGGACGCTCCCGGCTCAACAAGATCGCCGAGCGCGTCCTCGAACCCCTCGAGCCCCTGCTCTGAMPARRRTSTIPVSVQVDWRRVRRFVGRAAAIAAAVPLTAGAAVMITDKVRGQRHPLNATFPTARPSTTEVDETRATVYTFGADLYEDMLAAIDGAQHTVFLESYIWKADETGERFKQAVADAAARGVDVYVIYDGFANLVVPPAFYVFPPQVRVLRFPAFRAGLLTLRVRHSGRDHRKILVVDDEIAFVGGYNIGALYATQWRDTHLRLEGPAAWELRNAFVDFWNRWRNPQLPVLQDVGAEHWQPSLRAARNAPSDLVFPIRGIYLDAIDRATSHIYITQAYFIPDRDILNGLLAAAARGVDVRVLVPERSNHSLADWLARGRYTKLLRGGVRIMLYQGAMVHAKTATIDGRWSTVGTANIDRLSLTGNYEINLEIVDPGLAAELEDVFRMDESNARELTYQEWQGRSRLNKIAERVLEPLEPLLPGPT0007725_3944DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-CARDIOLIPIN_SYNTHESIS,PGPT0007725-clsA_B|ybhO|ywiE-K06131NANA
AK018_00751654hypothetical proteinGTGCGGCTGACGTCCCACGGGCACGCCTGCGTCCGGCTCGACAGCACCACGACACGCGTCGTCGTCGACCCCGGGGGCTTCTCCGACGTCGCGTCGGCCCTCCACGGCGCCACGGCCGTTCTCCTCACCCATCAGCATCCCGACCACCTCGACGTCGAGCACGTCACCGCGGCGCTGCACGCCGACCCCGACCTCGACGTCTGGGGTCCGGCCGGGGCCCTGGACCTCCTCGACGACGTCGACGCACACCGCAAGCACGCCGTCGAACCCGGCGACGTCCTGCGGCTCGGCGCCGCCCGCGTCGAGGTCGGCGGCGGCCGGCACGCGGTGATCCACCCCGACGTCCCCGTCATTGCCAACCGGACCTACACCGTGGAGCTGGACGGCACGACCGTCCACCACCCCGGCGACAGCCTCGACGTCCCCGGCCGGGACCTCGAAGTGCTGCTCCTGCCCGTCGCCGCGCCGTGGCTGCGGCTCGCCGACGCCATGGACGCCGCCCGGGCCGCGAGCGCCCGGTCCGTGGTCCCGGTGCACGACGCGATCCTCAGCGCCGCGGGTCAGGGGCTGGTGGACCGGCTCCTGGACACGGCACGGGTGGGTGGCGAGTACGTGTACCGCCGCCCGCGCGTGGGGGAGGCGTGGACCCCGTAGMRLTSHGHACVRLDSTTTRVVVDPGGFSDVASALHGATAVLLTHQHPDHLDVEHVTAALHADPDLDVWGPAGALDLLDDVDAHRKHAVEPGDVLRLGAARVEVGGGRHAVIHPDVPVIANRTYTVELDGTTVHHPGDSLDVPGRDLEVLLLPVAAPWLRLADAMDAARAASARSVVPVHDAILSAAGQGLVDRLLDTARVGGEYVYRRPRVGEAWTPNANANANANA
AK018_00752594COG0789putative HTH-type transcriptional regulatorGTGGACAGCAGGGGCGAGGCAAGCGCCCAGGCCGGGCCGGCACCCGTCGGCGCGCAAGGGCTCCTCTTCGGTGAGGACCTCACCGAGCAGGACTCCGGGACCGGCTACCGCGGGACGACGGCGTGCCGCGTCGTCGGCATCACCTACCGCCAGCTCGACTACTGGGCCCGCACCGGCCTGGTCGAACCGTCCATCCGTGCCGCCACCGGGTCCGGGACGCACCGGCTGTACAGCTTCCGCGACGTGCTCGTGCTCAAGATCGTCAAGCGCCTGCTCGACACCGGCGTCTCGTTGCAGCAGATCCGCAGCGCCGTCACCCACCTGCGCGAGCGTGGCGTCGACGACCTCGCGCAGATCACCCTCATGAGCGACGGCGCGTCCGTCTACGAGTGCACCTCGCCCGACGAGGTCGTCGACCTCGTCCAGGGCGGCCAGGGCGTCTTCGGCATCGCCGTGGGCCGCGTCTGGCGCGAGATCGAGGGCACCCTATCGCAGATGCCCACCGAGTCCCTCGACGACGAGGACGACGAGACGGACACGCTGCGCGCCGGTGACGAGCTCGCGGCCCGTCGCCGCGCACGTCACGCCGGCTGAMDSRGEASAQAGPAPVGAQGLLFGEDLTEQDSGTGYRGTTACRVVGITYRQLDYWARTGLVEPSIRAATGSGTHRLYSFRDVLVLKIVKRLLDTGVSLQQIRSAVTHLRERGVDDLAQITLMSDGASVYECTSPDEVVDLVQGGQGVFGIAVGRVWREIEGTLSQMPTESLDDEDDETDTLRAGDELAARRRARHAGNANANANANA
AK018_00753540COG1259putative proteinGTGGGAGCCGAGGAGGGGGCGGACGCCCCGATGGTGCCGGTCGACGTCGTCGGGGTGCGCCAGCAACAGCAGGACCAGGAGATCGTGGTCCTGCTGCTCGACGCCGCCGCCGAGCTCGCCGTCCCGATCGTGATCGGGGCTCGCGAGGCCTCCGCCATCGCCATGGCCCAGGCGGGGGTCGCCACCCCGCGCCCCATGACGCACGACCTCCTGCGCGACCTGCTCGAGGCCGTCGGTGTCGGTCTGGACCGCGTCGAGATCGTCGCCCTGGACGGTGGGGTGTTCTTCGCCGAGCTGGTGCTGTCCACCGGCGTGCGGCTCGACTCGCGCGCCTCGGACGCCATCGCCCTGGCCGTCCGGACCGGCAGCCCGGTGCTGTGCTCGGCGGAGATCGTGGCCGCCGCAGGGGTCGAGGTCGTCGACAACACCCAGCAACGCGAGATGGAACGGTTCCGCGACTTCCTCGACCACGCCACCGCCGAGGACTTCACCGCTCCAGGGGGACCGCACGAGCCCGACGTCGACGACACACCGCCGTGAMGAEEGADAPMVPVDVVGVRQQQQDQEIVVLLLDAAAELAVPIVIGAREASAIAMAQAGVATPRPMTHDLLRDLLEAVGVGLDRVEIVALDGGVFFAELVLSTGVRLDSRASDAIALAVRTGSPVLCSAEIVAAAGVEVVDNTQQREMERFRDFLDHATAEDFTAPGGPHEPDVDDTPPPGPT0013260_2DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013260-rnfA|rsxA-K03617NANA
AK018_00754750COG0789putative HTH-type transcriptional regulatorGTGACCGCCGCATCCGGGGCGGCGCCCGCTCCCGGGCCGGGCGAGACGGCCGAGCCGTGGCCCCGGGGCATCTCCCGGCACCCGTCGATGCGGATCTCCGAGGTGCTGGCCCGTCTGCGGGACGACTTCCCCGCGGTGTCGCACTCCAAGCTGCGCTTCCTCGAGGAGCAGGGGCTGATCACTCCGGTCCGGACCGCCGCCGGCTACCGCCAGTACAGCGCCTCCGACCTGGAGCGGCTCCGGTTCGTCCTGGCCGAGCAGCGCGACTCCTACCTGCCTTTGAAGGTCATCAAGGAACGCCTCGCCGCGATGGACGCCGGAGAGGCCGCCCCCGGGCCCTCGCCGCGCCTCGCCGGAACCGCTGCCGGCCACCCCGGGGTCGGTGAACGACGCCGGTGGACCGTGGACTCCGTGGCCGAGGCGACCTCGACGTCCACCGACCTGGTGCGCGACCTCGTCGCCGCCGGGGTGCTGCGCCCCGTCGACGGCTTCCTCGACGCGTCCGCACCCGACGTCGTCCGCCTCGTCGTGCGCCTGGCCGAGCACGGCATCGAACCGCGGCACCTGCGCCCGCTGCGGTCCGCCGCCGACCGCCACGTCGGGCTGGTCGACCAGGTCGTGGCGCCCTACCGCAGCCAGCAGACCGCCGCCGGCCGGGCGCAGGCCGCCGAGATCGCCGACGACCTGGGAGACCTGCTCGCCCGCCTGCACAGCACCTGGATCCGGCAGGGCACCTCCGAGCTCGGCTGAMTAASGAAPAPGPGETAEPWPRGISRHPSMRISEVLARLRDDFPAVSHSKLRFLEEQGLITPVRTAAGYRQYSASDLERLRFVLAEQRDSYLPLKVIKERLAAMDAGEAAPGPSPRLAGTAAGHPGVGERRRWTVDSVAEATSTSTDLVRDLVAAGVLRPVDGFLDASAPDVVRLVVRLAEHGIEPRHLRPLRSAADRHVGLVDQVVAPYRSQQTAAGRAQAAEIADDLGDLLARLHSTWIRQGTSELGNANANANANA
AK018_00755477hypothetical proteinATGACGGACCCCCGCGCACTCCCGCCGCGCGAGGCAGGAGTCGACACGACGGCGCACCTGGGCAGGGTCGCTGCCTCCGGGGAGGAGCAGACGCCGCGCATCCCGCTGACCGCCGAGGAAGCCGCTGCGGTCTCGGCGCTGCCGCGCCACTCGGCCCTGCTCGTCGTCCAGTACGGATCGGGCGCCGTCGGCGAACGCTTCCTGCTCGACCAGGACCGGACCGTGGCCGGCCGCAGCGAACGGGCCGACATCTTCCTGGACGACGTCACCGTCTCGCGCAAGCACGCCGAGTTCCAGCGCGACGGCGACCGGTTCGTCGTGCGGGACATCGGCTCGCTCAACGGCACCTACGTCAACCGCGACCGCATCGACGCCGTGGTGCTGCACACCGGTGACGAGGTGCAGATCGGCAAGTTCCGCATGTCGTTCCACGCGAGTCCCCAGGCGCCGCAGGACCCGCAGGCACCGGCGTCGTGAMTDPRALPPREAGVDTTAHLGRVAASGEEQTPRIPLTAEEAAAVSALPRHSALLVVQYGSGAVGERFLLDQDRTVAGRSERADIFLDDVTVSRKHAEFQRDGDRFVVRDIGSLNGTYVNRDRIDAVVLHTGDEVQIGKFRMSFHASPQAPQDPQAPASNANANANANA
AK018_007561071hypothetical proteinATGGCTGACGAGAAGGACGGTCCCGTGGGCCCGGAGTCCGAGGACGGAGAGCAGCGGCGTCCGGCGGACGAGCAGGCCGGGTCCGGGGGCGGGCAGGACTCGCCGGTCGACCCGCTGGACCTGTCGGTGCCGGTGACCGAGCTGTCGGACCCGGCGACCGGTGCGAGCCCAGGCACGGACGCCGGCGAGGACACCGGTCAGGACGACGGGTCGACGCCGGAGCCGGTCGACGTCGCCGGGTCGACCACCGTGGACGAGTCGGAGTCCGGGGCGACGCCCGAGGCCGAGGCGTCGGACGCGCCGCCTGCCGACGGCGCGGACGAGCGGGAGCCGGAAGCCCCGGCCCCGCCCGCCACGGGATGGCGTGCGCTTGGCCGGACCATGCGCCCGCGGCTGAACCGGTCGCAGCTGCTGGCGGCCCTGCTGTGCGCCGCGCTCGGGTTCGCCCTGGTCGTGCAGGTGCAGCAGTCCGCGCAGGACCCGCTGACGTCGGCGCGCCAGGACGACCTGGTCCGGCTGCTGGACGAGGTCACCCAGCGCGCCGAGCAGCTCGAGGACGAGGTCGCCGAGCTGTCCCGCACGCGCGACGAGCTGCAGTCGGGCAGCGGGCAGGCCCAGGCCGCCGTCGACCTCGCGGAGGAACGGGCGTCGGCCGAGGGGATCCTGTCCGGCCGGCTGCCCGCCGTCGGACCGGGGCTGGAGATCACGATCCGGGACCCGGACGGGTTGCTGGACGCCGCCAAGCTGTTCAACGTGCTCGAGGAGCTGCGCAACGCGGGCGCGGAGGTGGTCGAGCTCAACGGCGTCCGGCTGGTGACCTCGACCTGGTTCCTCGACTCCGAGCAGGGCGTGACCGTGGACGGTCAGGTGCTGGACTCGCCGTACCGGTGGACCGTCATCGGGGACCCTGACACGCTCAACCCGGCGCTGGAGATTCCCGGCGGCGCGCTGGCCACGGTGCGGACCGCCGGCGCCCAGGCGACCACGACGGACCACGAGCAGGTCGAGGTGACGGCCGTGCGCGAGCCCGCCGAACCGCAGTACGCGACGCCGCAGCCCCCGGAGGGATGAMADEKDGPVGPESEDGEQRRPADEQAGSGGGQDSPVDPLDLSVPVTELSDPATGASPGTDAGEDTGQDDGSTPEPVDVAGSTTVDESESGATPEAEASDAPPADGADEREPEAPAPPATGWRALGRTMRPRLNRSQLLAALLCAALGFALVVQVQQSAQDPLTSARQDDLVRLLDEVTQRAEQLEDEVAELSRTRDELQSGSGQAQAAVDLAEERASAEGILSGRLPAVGPGLEITIRDPDGLLDAAKLFNVLEELRNAGAEVVELNGVRLVTSTWFLDSEQGVTVDGQVLDSPYRWTVIGDPDTLNPALEIPGGALATVRTAGAQATTTDHEQVEVTAVREPAEPQYATPQPPEGNANANANANA
AK018_00757333hypothetical proteinATGATCGCCGTCGTCGGGCTCGTGATCGGCGTGGTCGCCGGTCTGGTGCTGCAGCCCACCGTGCCGGTGGCGTTGCAGCCGTACCTGCCGATCGCGGTGGTGGCCGCGCTGGACGCCTTGTTCGGGGGGTTGCGGGCGAAGCTGGACGGTCTGTTCGACGACAAGGTGTTCGTCGTGTCGTTCCTGTCGAACGTGCTGGTGGCGGCGTTCATCGTGTTCCTCGGCGACCAACTGGGTGTCGGTTCGCAGCTGTCGACCGCCGTGGTGGTGGTGCTCGGCATCCGGATCTTCTCGAACGCCGCCGCGATCCGTCGACACCTGTTCAAGGCGTGAMIAVVGLVIGVVAGLVLQPTVPVALQPYLPIAVVAALDALFGGLRAKLDGLFDDKVFVVSFLSNVLVAAFIVFLGDQLGVGSQLSTAVVVVLGIRIFSNAAAIRRHLFKANANANANANA
AK018_00758861hypothetical proteinGTGACCGCCCCGACGAAGCGGCGACCGGACGAGTCGATGACCCTGCTGGTCGAGGTCATGGAACGGCCCCTGGACCCGGGGTACGCGGAAGCGGCCCGACAGCGGGCCGCGGGCGAGGGGGACCGTCGGGGCGCGGGGTTCGTCCTGCTGGCTCTCGTCGCGGTGCTGCTCGGGCTGATGACCGTCACGGCCGCGCAGCAGCTGCGAGCGCCGGCGGAGGGTGTGTCGGCGCGGACGTTGCTGGAGACGCAGATCGAGGACCGCCAGGCCGAGGTGGACGCGTTGCGGGCGGAGTCGGCGGCGTTGAGCGAGGAGGTCGCGGCGCTGCAGGAACGCGCCCTGGGTGCGGGTGACTCGGAGCTGGTCGAGCAGGTGCGCCTCGACGCGGTGGTGACGGGGGCGGTGCCGGTGTCGGGCCCGGGTCTGGTGGTGACGATGAGTGACGCCACGGAGGTGGCCGAGGGGGTGGCGCCGTCGGACGTGCGGGTGCAGGCCACGGACCTGCAGACGGTGGTCAACGCGTTGTGGGCCTCGGGCGCCGAGGCGATCAGCGTCGGGGGGCAGCGGTTGACGTCGTTGTCCGCCATCCGGCACGCGGGTGCTGCGATCATGGTCGACCTGGTGCCGTTGCCGGGGCCGTCCTACGAGGTCGCGGCGATCGGTGACCCGGAGCAGATGCAGACCGAATACGCTCGCACGGGCGTCCCGGCGGACGTGCGCCTGCTGGCGGACCTGTGGGGTATCGAGACCACGATGGAGACGGCGGACGAACTGGTGCTGCCGAGCGTCGGCAACCAGCTGCGGTACGCCGAACCCGCGGAGGGGGACGAGGAGAACGTGAGCCAGGAGGAGAACCCATGAMTAPTKRRPDESMTLLVEVMERPLDPGYAEAARQRAAGEGDRRGAGFVLLALVAVLLGLMTVTAAQQLRAPAEGVSARTLLETQIEDRQAEVDALRAESAALSEEVAALQERALGAGDSELVEQVRLDAVVTGAVPVSGPGLVVTMSDATEVAEGVAPSDVRVQATDLQTVVNALWASGAEAISVGGQRLTSLSAIRHAGAAIMVDLVPLPGPSYEVAAIGDPEQMQTEYARTGVPADVRLLADLWGIETTMETADELVLPSVGNQLRYAEPAEGDEENVSQEENPNANANANANA
AK018_00759609pgsA2_1COG0558Putative cardiolipin synthaseGTGGTGGACGTGCAGGCAGGTCGGCAGGTGCGCTCGGCCGTGTGGACGGTCCCGAACGTGCTGAGCATGGCGCGGCTGGCGCTGGTGCCGGTGTTCGCGGTGCTGATCACCACCGGGCAGGACGTGTGGGCGCTGGTGGTGCTGGCGGTCTCGGGTGTCTCGGACTGGTTGGACGGGTATCTGGCGCGTCGCCTGGACCAGGTCACGAAGCTGGGTCAGCTCCTGGACCCGGCGGCGGACCGGTTGTTCATCGTGGTGACGCTGGTCGGGCTGACGTGGCGGGGCGTGGTGCCGCTGTGGGTGCTGGTGGTCGTGGTGGCGCGGGACGTGATGCTGGCGTGCCTGGTGCCCTACCTGGCACGGCGCGGGTACGGTCCGCTGCAGGTCGGCTTCGTGGGCAAGGCGGGGACCTTCGCTCTGCTGTACGCGTTCCCGCTGCTGCTGCTCGCGCAGATGCCGGGCGCCGTGGGTCCGGTGGCGCAGGTCGTGGGCTGGGCGTTCACGTGGTGGGGTGTGGGGCTGTACTGGCTGGCCGGCCTGCAGTACGTCGCGCAGGCGCGGCGGCTGGTGCGTGCTGAACCGAGCGAGGACGAAGGGGGTGCAGGGTGAMVDVQAGRQVRSAVWTVPNVLSMARLALVPVFAVLITTGQDVWALVVLAVSGVSDWLDGYLARRLDQVTKLGQLLDPAADRLFIVVTLVGLTWRGVVPLWVLVVVVARDVMLACLVPYLARRGYGPLQVGFVGKAGTFALLYAFPLLLLAQMPGAVGPVAQVVGWAFTWWGVGLYWLAGLQYVAQARRLVRAEPSEDEGGAGPGPT0007735_1689DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CARDIOLIPIN_SYNTHASE_ACTIVITY,PGPT0007735-pgsA-K08744NANA
AK018_007601824deaD_1COG0513ATP-dependent RNA helicase DeaDATGAGCACCCCTGACTCCACGCTGCCCACCGACGCCCCCGCCGCCGAGCAGCCCACCTTCACCGAGCTGAACCTGCCGACACCGCTGCAGCAGGCCGTCGACAGCCTCGGCTTCACCACCCCCTCCCCCATCCAGGCCCAGGCCATCCCCGCCCTGCTCGCCGGCCGCGACATCACCGGCGTCGCCCAGACCGGCACCGGCAAGACCGCCGCCTTCGGCCTCCCCCTGCTCGCCGCCGTCGACCCCGACGCCGACGTCTCCCGCGGGCACGTCCAGGCCCTCGTCCTCGCCCCCACCCGCGAGCTCGCCATGCAGGTCGCCGACGCCGTCGAGTCCTTCGCCGCACACCTGCCCGGCGTGCGCGTCCTGCCCGTCTACGGCGGCGCCCCCTACCAGCCGCAGCAGCGTGCCCTGCGCGACGGCGTCCACGTCGTCGTCGGCACCCCCGGCCGCGTCATGGACCACATGGACCGCTCCGCCCTGCGCCTCGACGGCGTCAAGTTCCTCGTCCTCGACGAGGCCGACGAGATGCTGCGCATGGGCTTCGCCGAGGACGTCGAGAAAATCTTCGGCCAGGCGCCCACCCATCGCCAGGTCGCCCTCTTCTCCGCGACCATGCCCCCCGCCATCCGCACCGTCGCCGACACCCACCTCAACGACCCCGTGCAGATCGCCGTCGCCCGGCAGTCCAGCACCGTCACCACCGTCGAGCAGACATACGCCGTCGTGCCCTTCCGTCACAAGGTCGGCTCCCTCGTGCGCGTCCTGGCCACCTCCGACGCCGACGCCACCATCGTCTTCACCCGCACCCGCGCCGCCGCCGAAGAGGTCGGGGTCGCCCTCGTCGAACGCGGCGTCTCCGCCGCCACCATCTCCGGCGACGTCGCCCAGAAGGAACGCGAGAAGATCGTCGAACGCCTCCGCAACGGCTCCCTCGACGTGCTCGTCGCCACCGACGTCGCCGCCCGCGGCCTCGACGTCGAACGCATCGGCCTCGTCGTCAACTTCGACCTCCCCCGCGAGGCCGAGGCCTACGTCCACCGCATCGGACGCACCGGCCGCGCCGGCCGCACCGGCAAGGCCCTCTCCTTCGTCACCCCCTCCGAGCGCGGCAAGCTCAAGCACATCGAGCGCACCATCCGCACCCGCCTCACCGAGGCGGAGATCCCCTCCCCCCGCGACGTCTCCGCCCACCGGGCCCGCACCATCCTCGGCACCGTCCCCGCACGCCTCGAGGCCGGCCGCCTCGAGCTCTACACCGAGCTGCTCACCCAGCACCTCACCCCCGCCGAGGACGGCACCACCCCCGACCCCACCCAGGTCGCCGCAGCGCTCCTGGCGCTCGCGGTCGGCGACGACGGCCCGCAGCACCGTGCGGCGCAGGCGGAGCACGAGCGCGAGCGCGCCGAGGCGCACGGTGGACGCAACCGCGAGACGTACCGGGCCGAGCGCGGGGAGCGCGACGGGGACCGCACCCGTCGTCACCCGCGGGCGGACCGCGACGACCGTCCGCGGGGCATCCGCCGTGCGGCGGAGGGCACGCGCTACCGCGTGTCGGTGGGTCACACGCACGGCGCGCAGCCGCGCGGCATCGTCGGCGCCCTGACGAACGAGGGCGGTCTGCGCGGTGCCGACATCGGCAAGATCGACATCTTCGGCAACTTCTCCCTGGTGGACATCACCAAGCCGCTCGACGACGCGACCATGTCGAAGATCGGGCGGGCGAACGTCGCCGGCCGGCAGCTGCGCATCTCGGTGGACAAGGGGGCCCCGGAGCGGCGTGCGCCGCGCACGGAGCGTCGCCCGGCCCACAGCGGGCGCTGAMSTPDSTLPTDAPAAEQPTFTELNLPTPLQQAVDSLGFTTPSPIQAQAIPALLAGRDITGVAQTGTGKTAAFGLPLLAAVDPDADVSRGHVQALVLAPTRELAMQVADAVESFAAHLPGVRVLPVYGGAPYQPQQRALRDGVHVVVGTPGRVMDHMDRSALRLDGVKFLVLDEADEMLRMGFAEDVEKIFGQAPTHRQVALFSATMPPAIRTVADTHLNDPVQIAVARQSSTVTTVEQTYAVVPFRHKVGSLVRVLATSDADATIVFTRTRAAAEEVGVALVERGVSAATISGDVAQKEREKIVERLRNGSLDVLVATDVAARGLDVERIGLVVNFDLPREAEAYVHRIGRTGRAGRTGKALSFVTPSERGKLKHIERTIRTRLTEAEIPSPRDVSAHRARTILGTVPARLEAGRLELYTELLTQHLTPAEDGTTPDPTQVAAALLALAVGDDGPQHRAAQAEHERERAEAHGGRNRETYRAERGERDGDRTRRHPRADRDDRPRGIRRAAEGTRYRVSVGHTHGAQPRGIVGALTNEGGLRGADIGKIDIFGNFSLVDITKPLDDATMSKIGRANVAGRQLRISVDKGAPERRAPRTERRPAHSGRNANANANANA
AK018_00761462hypothetical proteinGTGACGCACGACGACGGTCCCGGTGCCGCGCTGCGGCCCTTCCGCCCGCTGTGGGCGAGGGTCGCGGTCGCGGTCACCGGGGCCGTCGCCGTCGGGGGGAGCCTGGTGGTCGGGCTCGGCGCTCCGGGCGGGGTGCTGCTCGACGCCGGCACCCGCGTGACGTTCGTGGCCTTCGCGGTCGCTGCCGCCTGGTTGCTCTGGCGGCTCGGCGGGGTGCACGCGCGCCCCGACCACGACGGCCTGACGGTGCGCAACGTGATCCGCACCCGACGCGTGGCCTGGCCCGAGATCGTGGCCGTCCGACTGACCCCGAACGACCCGTGGGTGCTCCTCGACCTCGCCGACGGCGGCACTCTGGCCGTCATGGGCGTCCAGCGTGCCGACGGCGAGCGGGGCATGGCCGAGGCCCGTCGCCTCCAGGAGCTGGTGCGTCAGCTCGGTGAGGCGCCGGACCCCGGCTGAMTHDDGPGAALRPFRPLWARVAVAVTGAVAVGGSLVVGLGAPGGVLLDAGTRVTFVAFAVAAAWLLWRLGGVHARPDHDGLTVRNVIRTRRVAWPEIVAVRLTPNDPWVLLDLADGGTLAVMGVQRADGERGMAEARRLQELVRQLGEAPDPGNANANANANA
AK018_00762849hisG_1COG0040ATP phosphoribosyltransferaseTTGCTCCGCATCGCCGTCCCCAACAAGGGATCGCTGTCCACGCCCGCCACCGACATGCTCCGCGAGGCCGGCTACCGCCAGCGTCGCGACACCCGTGAGCTCGTGCTCACCGACGTCGACAACGACGTCGAGTTCTTCTTCCTGCGCCCGCGCGACGTCGCCGTGTACGTCGGGTCCGGCACCGTCGACGTCGGCATCACCGGACGCGACCTGCTGCTCGACTCCGGAGCGCACGCCGTCGAGCACCTGCCGCTCGGGTTCGCCGGCTCGACCTTCCGCTTCGCGGCACCGGCGGGCACCGTGACCACCGTCGAGGAGATCGCGGGCAAGCGGGTCGCGTCGTCCTACACCACGCTGGTCGCCGCGCACCTCGCCGACAAGGGCGTCGAGCCCGCCGCCATCGTGCACCTGGACGGCGCCGTCGAGAGCTCGGTGCGCCTCGGCGTCGCCGACGTCATCGCCGACGTCGTCGAGACGGGCACGACGCTCCGTGCCGCCGGGCTCGACGTCTTCGGCGACCCGATCCTGCGCTCCGAGGCCGTGCTGATCCGCCGTGCGGACACCGACGCCCCGGCAGGCATCGACGTGCTGACCCGGCGCCTGCAGGGCGTCATCACCGCGCGCGAGTACGTGCTGCTCGACTACGACGTGCCGATGGGCCTGCTCGACGCGGCCGTCGCCGTCACGCCCGGCTTCGAGTCGCCGACCGTCTCCCCGTTGCACAACGGCCAGTCCGCCGCCGTGCGGTCGATGGTGCGCCGTGCGGACACCAACCGGGTCATGGACGCGCTCTACGAGGTCGGTGCCCGCGGCATCCTCGTGACCCAGATCCTCGCCAGCCGGTTGTGAMLRIAVPNKGSLSTPATDMLREAGYRQRRDTRELVLTDVDNDVEFFFLRPRDVAVYVGSGTVDVGITGRDLLLDSGAHAVEHLPLGFAGSTFRFAAPAGTVTTVEEIAGKRVASSYTTLVAAHLADKGVEPAAIVHLDGAVESSVRLGVADVIADVVETGTTLRAAGLDVFGDPILRSEAVLIRRADTDAPAGIDVLTRRLQGVITAREYVLLDYDVPMGLLDAAVAVTPGFESPTVSPLHNGQSAAVRSMVRRADTNRVMDALYEVGARGILVTQILASRLPGPT0017400_2096DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017400-hisG-K00765NANA
AK018_00763264hisE_1COG0140Phosphoribosyl-ATP pyrophosphataseGTGAAGACGTTCGAGTCCCTGTTCGCCGAGCTGACCGAGAAGGCCCGTACCCGCCCCGCCGGGTCGGGGACCGTGACCCAGCTGGACGCCGGCGTCCATGCGATCGGCAAGAAGATCGTGGAGGAGGCCGCCGAGGTCTGGATGGCCGCCGAGCACGAGTCCGACGAGGCCGCCGCGGAGGAGATCTCCCAGCTGCTGTACCACCTGCAGGTGCTGATGGTCGCCAAGGGGTTCACCCTGGAGGACGTGTACGCGCATCTGTGAMKTFESLFAELTEKARTRPAGSGTVTQLDAGVHAIGKKIVEEAAEVWMAAEHESDEAAAEEISQLLYHLQVLMVAKGFTLEDVYAHLNANANANANA
AK018_00764663rpe_1COG0036Ribulose-phosphate 3-epimeraseATGCCTGCGCTGATCAACCCCAGCATCCTGTCGGCCGACTTCGCGAACCTCGAGCGCGACCTGCACGCGATCTCGACGGCGGACGCCGCGCACGTCGACGTCATGGACTACCACTTCGTGCCGAACCTGACCCTCGGCCTGCCGGTGTTCGAGCGGCTCGTGGAGGTCTCCCCGGTGCCCGTGGACGGTCACCTGATGATCGCCGACCCGGACCGCTGGGCGCCGGCGTACGCCGAGGCGGGGGCTGCCTCGGTGACTTTCCATGCGGAGGCCGCCCAGGCCCCGGTCCGGCTCGCCCGCGAGCTGCGGCGCCTCGGGGCGCGCGCCGGGCTGGCGCTGCGCCCGGCGACGCCCGTGGAGCCGTACCTCGACCTGCTGGCCGAGATCGACATGATCCTCGTCATGACGGTCGAGCCCGGCTTCGGCGGGCAGTCGTTCATCGACGGCACGCTGCCGAAGATCCGCCGTGCCCGGGCCGCGATCAGCGAGCAGGACCTCGACGTGCACATCCAGGTCGACGGCGGTGTCTCGCGCGACACGATCGAGCGCGCGGCCGACGCCGGGGCGAACGTCTTCGTGGCCGGGTCCGCCGTGTACGGCGCCGATGACGTACCGGCCGAGATCGAGACGCTCAGGGAGCTGGCGAGCAGGCACGTGCACTGAMPALINPSILSADFANLERDLHAISTADAAHVDVMDYHFVPNLTLGLPVFERLVEVSPVPVDGHLMIADPDRWAPAYAEAGAASVTFHAEAAQAPVRLARELRRLGARAGLALRPATPVEPYLDLLAEIDMILVMTVEPGFGGQSFIDGTLPKIRRARAAISEQDLDVHIQVDGGVSRDTIERAADAGANVFVAGSAVYGADDVPAEIETLRELASRHVHPGPT0017425_4248DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017425-rpe|cbbE-K01783NANA
AK018_00765492pat_2COG1247Phosphinothricin N-acetyltransferaseGTGCGTCGGGCCGTCGTCGCGGACCTCGGAGCCGTCGCGGCGATCCTCGAGCCCTACGTCACCGGCACCTGCGTCACGTTCGACGAGGTCCCGCCGTCGTCCGCGGACTGGGAGCGACGCCTCGACGACGCGGACGCGCGCGGGCTGCCGTTCCTCGTGGCCGAGCTCGAGGGTGCGGTGGTCGGCTACGCCTACGCCGCCCCGTGGCGTCCCAAGGCGGCCTACCGGCACACCGTCGAGGACACGATCTACCTCGCTCCCGAGGCCCAGGGACGCGGCGTCGGGACCCGGCTGCTGTCGGCGCTGCTGGACGCCTGCACGGTCGCGGGCGTGCGCCAGGTGGTCGCCGTGATCGCGGACGACCCGGCCGCCGCGGGATCCGTGCCGCTGCACCGGCGGCTCGGCTTCGAGGTCGTCGGCGTGCTGCGTGACGTCGGCGTCAAGCACGGTCGCCCGGTGAGCACGATGCTGATGCAGCGCACGCTGCACTGAMRRAVVADLGAVAAILEPYVTGTCVTFDEVPPSSADWERRLDDADARGLPFLVAELEGAVVGYAYAAPWRPKAAYRHTVEDTIYLAPEAQGRGVGTRLLSALLDACTVAGVRQVVAVIADDPAAAGSVPLHRRLGFEVVGVLRDVGVKHGRPVSTMLMQRTLHNANANANANA
AK018_007661281hipA_1COG3550Serine/threonine-protein kinase toxin HipAATGATCGCGCCTGAGCTGGACGCCTGGCTCTACGGCAGCCGCGTCGCCCGGTTCTCCGCGCGGGACACCGGGCGCGGGACCCGCCGCGTGGAGCTCGAGTGGGATCCGGGCGCCGTCGACCGCTGGGGGTACGGCTCGCGGGTCCTGTCCCACCTGCTGCCGATGGACCCCGACGTCACGCCTGCCCCGGCCCGTGTGAACGCCTGGCTCGACGGGTTGATGCCCGAGGGGCGGGTCCGTGACCACATGGCCATGGACGCCGGCGTCGACCCGGACGACCCGGTCGGCTTCTTCGGCGCCTACGGCGGGGACACCGTCGGTGCGCTGCAGTTCGTCGCGGTGGGTGCCGAGCCGCAGGCCCATGGCCGCGCGGCGGTGCGCCTCGACGACGCCGGCGTCGCCGACCTGCTGCGGGCGAGCATCGCCCGTGCCGGGGGACAGGCCCGCAGCCAGCGGCTCACGAGCTCGTTGCCCGGCATGGAGCCGAAGATCGGGCTCGTGCGGGACGACGACGCCTGGTGGCGTGCGGCGCCCGACGAGGCGACCACGCACATCCTCAAGGTCGCCCGCGACGCCGACTCGCCGACGGCCGACCTCGTGGACACCGAGGCGGCAGCGATCGACCTCGCGCGCCGGATCGGCCTGACCACCATCCGGGCGCACGTCGAGACGTTCGAGGACGTGCGCTGCCTGGTGGTGTCCCGCTACGACCGCGTCCCCGACGCCGCCGCCCCCGGCGGACTGCGTCGCATCCACCAGGAGGACGCCGCCCAGGCGCTCGGCATCAACACGCGTGACCCCGAGCGCAAGTTCCAGCACGGCCGGTCGATCCCTTCGCTGCGGGCGATCGCCCAGGTGCTGCGCGACGACGGCACCCGCCCGGACCGCCTGCTCGCCCTGACGACGCTGAACCTGGCCCTCGGCAACACCGACGCCCACGCCAAGAACGTCTCGATGCTGCGGCGGGCCGACGGGACCGTGTCGCTCGCACCGGCGTACGACATCTCCATGCACCTGCACCACGACCACGCCTCGCGGATCTTCGCCATGGACGTGGCCGGTCTGCGCGACATGGATGCGATCGCCGGGGGCGACCTCGTGGCCGAGGGCGTCTCGTGGGGCTTGCCGCGACGTCGGGCGACGCGGGTCGTCTCGACCGCGCTGGACGACCTGCGCGCGGCGCTCGGCGAGATCGACCGGGACGTGCACCCGGGCGTGGGAGCGGCCGCGTGGCGCACCGTGGAGGCGCGCACCGATGCGCTGCGCCACGACCTGACCTGAMIAPELDAWLYGSRVARFSARDTGRGTRRVELEWDPGAVDRWGYGSRVLSHLLPMDPDVTPAPARVNAWLDGLMPEGRVRDHMAMDAGVDPDDPVGFFGAYGGDTVGALQFVAVGAEPQAHGRAAVRLDDAGVADLLRASIARAGGQARSQRLTSSLPGMEPKIGLVRDDDAWWRAAPDEATTHILKVARDADSPTADLVDTEAAAIDLARRIGLTTIRAHVETFEDVRCLVVSRYDRVPDAAAPGGLRRIHQEDAAQALGINTRDPERKFQHGRSIPSLRAIAQVLRDDGTRPDRLLALTTLNLALGNTDAHAKNVSMLRRADGTVSLAPAYDISMHLHHDHASRIFAMDVAGLRDMDAIAGGDLVAEGVSWGLPRRRATRVVSTALDDLRAALGEIDRDVHPGVGAAAWRTVEARTDALRHDLTPGPT0027480_1440DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027480-toxin_hipA-K07154NANA
AK018_00767249hypothetical proteinATGACCACCACCGACCGCTGGACCCACGCCCGCGGCCCCCGCGACCTCGGCCGCTTCGTCCAACAAACCCGCAAGCACCACGGACTCAGCCAGGCGGCGCTCGCGGACGAGCTCGGCCTGACGCGCCAGTACGTCTCCGAGGTCGAGTCCGGCGTCGGCAATCTCTACATCACGCGGCTCTTCGAGATGTTCGACGAGCTGGGGATCGAGGTCCGTCTCGAGCAGCGGGGCAGCGATGATCGCGCCTGAMTTTDRWTHARGPRDLGRFVQQTRKHHGLSQAALADELGLTRQYVSEVESGVGNLYITRLFEMFDELGIEVRLEQRGSDDRAPGPT0027485_781DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027485-REGULATION_hipB-K15773NANA
AK018_007681548COG0144Putative methyltransferaseATGAGCGCCGACCGCCCGGGACGCGACCAGCCCCGCGACGACCGCCGCAACGACCGCGGCCGCCAGCGCGGCGCCGCCCGCAGCCGCGGGCAGGGCCACCGCAGCAACCGGGCGCCCTCCCAGCGGCGCAGGAACACCGACCCCGCCCGCACCGCCGCCTACGACGTGCTGCGCGAGGTGGACGGCTCGGACGCGTACGCCAACCTCGTGCTGCCACCGCTGCTGCGCGAGCGCGGACTGAGCGGCCGCGACGCCGGCTTCGCCACCGAGCTCGCCTACGGCACCCTGCGCCTGCGCGGCCGCTACGACGCGATCCTCGCGCGCTGCGTCAGCCGCCCCCTCGACCAGCTCGACCCCGAGGTGCTCGACGTGCTGCGCCTCGGCGCCCACCAGCTCCTCGGCATGCGGGTCCCCGCCCACGCCGCGGTGTCCGAGACCGTGGGGCTGTGCCGCGACCGCGTCGGCGCCGGACCGGCCCAGATGGTCAACGCCGTCCTGCGCGCCGTCGGACGTCGCCCCCTCGAGGACTGGCTCGACGACCTGCGCGCCGACGCCCCCGACGCCGTCACCGGGCTCGCCCGCGCGGGCTCCCACCCCGTGTGGATCACCCGCGCACTGCGCGAGGCCCTGCACGGCCACGGCCGCGACCCCGGCGAGATCGCCGACCTGCTCGAGGCCGACAACACCCCACCCCGGGTCACGCTCGTCGCCCGGCCCGGCCTCGTCTCCGCGGACACGCTCGACGACGGCGCACCGGACGACACGCGCCTCGAGCCCGGCGCCTGGGCACCCACCGCCCGCGTGCTCGCCGCCGGCACCGACCCCGCCGACCTGCCCGCCGTCGCCGACGGACGCGCCGGCGTCCAGGACGAGGGCTCCCAGCTCGTCACCCTCGCCCTGGCCGCCGCACCCCTCGACGGACCCGACGCACGCTGGCTCGACCTGTGCGCCGGCCCCGGGGGCAAGGCCGCCCTCCTCGCGGCGCTCGCGGGCGAGCGGGACGCCCGCCTCGTGGCCAACGAGCTGCAGCCGCACCGGGCCCGGCTCGTGCGCCGCGGGCTGCGTGCCCTCCCCGAGGGAGTCGTGGAGCAGGTACGCACCTCCGACGGGCGCGAGATCGGCACCGACGAACCCGGCGGCTACGACCGCGTCCTCGTCGACGCCCCCTGCACGGGCCTGGGCGCGCTGCGCCGTCGTCCCGAGTCCCGCTGGCGGCGCTCCCCCTCCGACCTCGGCACGCTCACCCGCCTGCAGGGCGAGCTGCTGGGCTCGGCCCTCGACGCCGTCCGGCCCGGGGGAGTGGTCGCCTACGTCACCTGCTCGCCCCACCTGGCCGAGACCCGGCTCGTCGTCGACGACGTGCTGCGCCGCCGCGACGACGCCGAGCGCCTCGACGCTCGCGCGGCCGTGCGCGACGTCCTCGTCCCCGGTGCGGACCTCGACCTCGGGACCGACGACGGCGGAGCGGAAGGTCTCGACGTCCAGCTCTGGCCGCACGTCCACGGCACCGACGCGATGCACCTGACGCTGCTGCGACGCACAGCCTGAMSADRPGRDQPRDDRRNDRGRQRGAARSRGQGHRSNRAPSQRRRNTDPARTAAYDVLREVDGSDAYANLVLPPLLRERGLSGRDAGFATELAYGTLRLRGRYDAILARCVSRPLDQLDPEVLDVLRLGAHQLLGMRVPAHAAVSETVGLCRDRVGAGPAQMVNAVLRAVGRRPLEDWLDDLRADAPDAVTGLARAGSHPVWITRALREALHGHGRDPGEIADLLEADNTPPRVTLVARPGLVSADTLDDGAPDDTRLEPGAWAPTARVLAAGTDPADLPAVADGRAGVQDEGSQLVTLALAAAPLDGPDARWLDLCAGPGGKAALLAALAGERDARLVANELQPHRARLVRRGLRALPEGVVEQVRTSDGREIGTDEPGGYDRVLVDAPCTGLGALRRRPESRWRRSPSDLGTLTRLQGELLGSALDAVRPGGVVAYVTCSPHLAETRLVVDDVLRRRDDAERLDARAAVRDVLVPGADLDLGTDDGGAEGLDVQLWPHVHGTDAMHLTLLRRTANANANANANA
AK018_00769963fmt_1COG0223Methionyl-tRNA formyltransferaseGTGCGTCTGCTGTTTGCCGGAACCCCCGAACCCGCCGTGCCCGCCCTGAAGGCACTGATCGACTCCGACCACGAGGTCGTCGCCGTGCTGACCCGCGCCGACGCCCGCGCCGGACGCGGGCGCCGGCTGGTGCCCAGCCCGGTGCGCGTCGCCGCCGAGGAGGCCGGCATCGAGGTGATCACCGACGTCCCGCGCGGCGAGGAGTTCGTGTCCCGGCTGCGCGACCTCGACGTCGACGCCGCCCCCGTGGTCGCCTACGGTCATCTGCTGCGCCCCGACGTCCTCGCCGTGCCCCGTCTCGGCTGGGTCAACCTGCACTTCTCGGTGCTGCCCGCCTGGCGCGGCGCCGCCCCCGTCCAGCACGCGGTCCTCGCCGGCGACGAGGTCACCGGCGCCACCACGTTCCTGCTCGACGACGGCATGGACACCGGCCCCGTGCTCGGCACCGCCACCGAGACCGTCCGGCCCCGCGACACCTCCGGCGACCTGCTCGACCGGCTCGCCACCTCCGGCGCCGGGCTGCTCGTGGCCACGCTGGACGCCCTGGAGGCCGGCACCCTGTCCCCGCAGCCCCAGAGCCCCGACGGCGCCTCCTACGCCCCGAAGATCACCTCCCAGGACGCCCTGGTGCGCTGGGACGACCCGGCGCTCGCGGTCGACCGGCGCGTCCGGGCGGTCACCCCGGCCCCCGGGGCGTGGACGACCCTGCCCGACGCCGACGACGGTACCCCGGGGGCGCGGCTCGGCCTCGGCCCGGTGCGCCCGCGCGGCGACGTCGCCGACCTGTCCCCGGGGCAGGTGCGCGCCACCAAGTCCGAGGTGCTGGTGGGCACCGCCACGCACGCCGTCGAGCTCGGCGAGGTACGCCCCGTGGGCAAGAAGCCCATGGCGGCGGCCGACTGGGCCCGCGGCGCCGGACGCGCCGCCGTCGAGACCGGTGCCCCGCTGGGCGGCATCCGATGAMRLLFAGTPEPAVPALKALIDSDHEVVAVLTRADARAGRGRRLVPSPVRVAAEEAGIEVITDVPRGEEFVSRLRDLDVDAAPVVAYGHLLRPDVLAVPRLGWVNLHFSVLPAWRGAAPVQHAVLAGDEVTGATTFLLDDGMDTGPVLGTATETVRPRDTSGDLLDRLATSGAGLLVATLDALEAGTLSPQPQSPDGASYAPKITSQDALVRWDDPALAVDRRVRAVTPAPGAWTTLPDADDGTPGARLGLGPVRPRGDVADLSPGQVRATKSEVLVGTATHAVELGEVRPVGKKPMAAADWARGAGRAAVETGAPLGGIRPGPT0008125_3543DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604NANA
AK018_00770717hypothetical proteinATGCGAGAGGTGGACCGCTGCGAGGGCGCGACGCGAACGACCCGGTCGGTACGGGCCGGGGCCGGGTGGACGGCGGTCCTGCTCCTGGCGGGTGGGTGCGCCGGCCCCGAGGGAGCGTTCGCCGAGCCGATGGCGCAGCACGCCCTGTCCGGCGACGTCGCGTTCTCGCCGGCGTCCCTCACCGCCACCCTCCCCCACGTGACCTCCGTCGACGGGGCCTACGAGATGGCGTACTCGGACCTCGTCGTGGCCGGCGCGATCACCGGATGGCAGCGCGGCGAGGCCACCGACTGGTCCACCGACGCCGGGCGCGAGGTCGCCTGGTCCGGCGACGCCGACACCCGCCAGGTCGTCCTGGCCGTCGACGTCGACGAGGTCGTGGCGGCCGGGGAAGGCGTCGACGTCGCGTCCGGGGACACGATCGACGTGGTGGCCACGCTGGGCGGGGACGCCGACGCCGACGCCGCGGGCGACGCGCTGGCCGCGCTCGGTGACGTCGTCGTGCTCGCCTCACGCGGTCCTGGCCAGCACGAGGACGAGTGGTGGATCGCCCAGCACGGGGTGCTGCTCGGCGACCTCGACGACGGCGACCTCACCTGGCCCGCGCTCGAGGCCGCCGGTCGCGACCTCGACCTGCGCGACGACGTCGCCGACCTGGACGCGCTGCGCCGTGCAGCCGCGGCCGGACCGCGGACGATCACCGTCGGCGAGTCCTGAMREVDRCEGATRTTRSVRAGAGWTAVLLLAGGCAGPEGAFAEPMAQHALSGDVAFSPASLTATLPHVTSVDGAYEMAYSDLVVAGAITGWQRGEATDWSTDAGREVAWSGDADTRQVVLAVDVDEVVAAGEGVDVASGDTIDVVATLGGDADADAAGDALAALGDVVVLASRGPGQHEDEWWIAQHGVLLGDLDDGDLTWPALEAAGRDLDLRDDVADLDALRRAAAAGPRTITVGESNANANANANA
AK018_00771639gph_3Phosphoglycolate phosphataseATGCCCACGACGCCCGACCCAGCCGTGGAACCTGCCGTGGACGCCGTCGTCTACGACTTCGGCAACGTGCTCGTCGGCTGGGACCCCTACGGCGCCTTCGCCGGACTCGATCGCGCCGAGGTCGACCGATGGATGGACGCCGTCGACTTCGGCGCGTTCAACCTCGCCCAGGACGCCGGGCGCACCTGGGCCGACGCCGTCGCCCACCTGGAGGCCACCCGACCCGAGCTCGCCCCGCTGGCCGCACGCTACGCCCGCGACTACGCCGGCACGCTCACCGGCGAGGTCCCGGGCTCGGCCGCCCTGGTGCGCGAGCTGCACGCCGCCGGCGTGCCCCTGTACGGGCTGACCAACTGGGCCGCCGACACCTTCCACGCCGCTCAGCCCGCCGCCCCCGTCATCGGGCTGCTGCGCGACGTGATCGTCTCCGGACGTGTCGGGCTCGCCAAGCCCGACCCCGCCGTCTTCCGCCTCGCCGCGCAGCGCTTCGACGTCGACCCCGCGCGCACCGTGTTCGTCGACGACACCGTCCGCAACGTCGAGGCCGCCCGCGCGGAGGGTTTCCACGCCGTGCACTTCACCGGCACGCCCGCGCTGCGGGCGGCGCTCGCGGACCTCGGGCTGCCCGTCGCGCGCTGAMPTTPDPAVEPAVDAVVYDFGNVLVGWDPYGAFAGLDRAEVDRWMDAVDFGAFNLAQDAGRTWADAVAHLEATRPELAPLAARYARDYAGTLTGEVPGSAALVRELHAAGVPLYGLTNWAADTFHAAQPAAPVIGLLRDVIVSGRVGLAKPDPAVFRLAAQRFDVDPARTVFVDDTVRNVEAARAEGFHAVHFTGTPALRAALADLGLPVARPGPT0006885_2698DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
AK018_007722166priA_1COG1198putative primosomal protein N'GTGACCTCCCGTGACGAGCCCGAGCAGGGCGCCCTGCTCGGGCTCGACGACGTCGGCGGGCGGCGCCGTGCACCACGCAGCTCCGCGGTGGAGGTCGCCGACGTCGACCCGGTGGCCCGGGTGGTGCTCGACCTGCAGCCGGCGCACCTGGACCGTGAGTACGACTACCTGGTGCCCGCCGCGATGGCGGACGACGCCGTGCCCGGGGCCCGGGTGCGGGCCCGGTTCGGCCCGCAGGACGTGGCGGGGTACGTGGTGGCACGCGCGGCCAGCTCGGACCATGACGGGCGGCTGCAGCCGCTGCGCCGGGTCGTCTCGTCCGACCCGGTGCTGACGCCGGCGGTGCTGGACCTGGCCCGGCAGGTGGCCGCGCGCTACGCCGGCACCGTCGCGGACGTCCTGCGCCTGGCGGTGCCCCCGCGGCACGCCCGCGTCGAGGCCGAGGTGCTCGCCCGGCTCGCCGAGCGGGCCGAGGCCGACGGAGCTGCCCACCCGGCTGCTGACGCCTCCGCGGACCGTGCAGCGCCGGGTGCGGGACCTCGTCCGGCGGCTCCCGGCGGGGACGGCTGGCCTGAGGTGTGGACCCCGTACGGCACCGGGGAGGCCTTCTGCCGCCATCTGCTGGCCGGGCAGGCGCCGCGCGGGGTGTGGAGCCCGCTGCCGGGCCTGCAGGCTGCCGCGGACGGCGCGCCCGCGCGGGTGCCGCACTGGGCGGCGGCGATCGCGCAGGCCGCGCGAGCGACGCTGGCCGGTGGACGGCGAGCCCTGGTGGTCGTCCCGGACGCCCGGGACGTGGACCGGGTGTGCACGGCGCTGGGCGTGGCCGGCGTCGAGGAGGTGGTGCGGCTCCAGGCGGACGACGGCCCGGCGCCGCGCTACCGGGCGTTCCTGCACGCCCGCCACGGTCTGGCGTCGGTGGTGGTCGGTACCCGGGCGGCGATGTTCGCTCCCGTGCCGGACCTGGGCCTGGTGGTCCTGTGGGGGGACGGCGAGGAGACCCTCGACGAGCCGCACGCCCCCTACCCGGCGGCGCGCGAGGTTCTGGCGATGCGTTCCGAGGCGGAGGGCGCCGGGTTCCTGCTGGGCTCTCCTGGCCGGACCGTGCAGGCCCAGGCGATGCTGGCGCGCGGCTGGGCGGCCGAGATCGCCGCCGCCCGCGCCGTGGTGCGCGCCCGGGCACCGCGGGTGCGTGCCCTGACGTCCGTCGAGCTCGCCCACGAAGGGCCGGGTGCGGCCGCCCGGCTGCCCACGGCGGCGTGGCGCACCGCGCGGACCGCCCTGGACCGGGGGCCGGTGCTGGTCCAGGTGCCGCGCACGGGGTACCTGCCCGTCGTGGCGTGCGCCGCCTGCCGCACCGCGGCGCGCTGCACCCACTGCCACGGCCCGCTCGGGCTCGGCGGGGCGCGGGCGACCCCGCAGTGCACCTGGTGCGGTCGGCTGGCCGGCACCTGGCGCTGCGAGGAGTGCGGTCACGACCGGGTGCGGGCCGTGCGGGTGGGCTCCGAACGCACGGCCGAGGAGCTCGGACGCGCGTTCACGGGGGTGCCCGTGCGGGTCTCGGCGTCCTCCGCCCCGGGCGGGATCCTCGCGAGCGTCGCCGCCGACCCGGCCCTCGTGGTGGCCACCCCGGGCGCCGAGCCCGTGGCCGAGGGCGGGTACGCCGCCGCGCTGCTGCTGGACGCCGCGACCGCCACGGCGGGCACGGACCTGGCGATGGCGACCCGTGCCCTGCACCGGTGGATCGCGGCGGCCGCGCTCGTGCGTCCGGGCCCGGACGGCCAGGTGCTGCTGGTGGGCGACGCCGCCCCGGCACCCACGGGCGCGCTGGTGCGGTTCGACCCGGCCGGGCTGGCCGAGCGCGAGCTGGACGAGCGCCGCGAGCTCGACCTGCCGCCCGCGGTGCGCGTCGCCGCCGTGACCGGCGACCCCGACGCCGTGCGCGCCGTCGTCGACCGTGTCGAGCTGGCCACGCCCGAGACGGTCCTCGGCCCCGTCGACCTGCCCGGCGACGACCGGCTCGAGGCACGCGTGCGGACGGTGCTGCGCGTACCCCTGAGCGACGGCGCCGAGCTCGCCAACCAGCTGCGCGCCTCGCTGGCCGTGCGTTCGGCCCGCCGCGAGGGCGGCACCGCCCGAGTCCAGATCGACCCCCAGGAGATGCTCTGAMTSRDEPEQGALLGLDDVGGRRRAPRSSAVEVADVDPVARVVLDLQPAHLDREYDYLVPAAMADDAVPGARVRARFGPQDVAGYVVARAASSDHDGRLQPLRRVVSSDPVLTPAVLDLARQVAARYAGTVADVLRLAVPPRHARVEAEVLARLAERAEADGAAHPAADASADRAAPGAGPRPAAPGGDGWPEVWTPYGTGEAFCRHLLAGQAPRGVWSPLPGLQAAADGAPARVPHWAAAIAQAARATLAGGRRALVVVPDARDVDRVCTALGVAGVEEVVRLQADDGPAPRYRAFLHARHGLASVVVGTRAAMFAPVPDLGLVVLWGDGEETLDEPHAPYPAAREVLAMRSEAEGAGFLLGSPGRTVQAQAMLARGWAAEIAAARAVVRARAPRVRALTSVELAHEGPGAAARLPTAAWRTARTALDRGPVLVQVPRTGYLPVVACAACRTAARCTHCHGPLGLGGARATPQCTWCGRLAGTWRCEECGHDRVRAVRVGSERTAEELGRAFTGVPVRVSASSAPGGILASVAADPALVVATPGAEPVAEGGYAAALLLDAATATAGTDLAMATRALHRWIAAAALVRPGPDGQVLLVGDAAPAPTGALVRFDPAGLAERELDERRELDLPPAVRVAAVTGDPDAVRAVVDRVELATPETVLGPVDLPGDDRLEARVRTVLRVPLSDGAELANQLRASLAVRSARREGGTARVQIDPQEMLNANANANANA
AK018_007731206metK_1COG0192S-adenosylmethionine synthaseATGACCGATGCGCTGCGCCTGTTCACGTCCGAGTCCGTGACCGAGGGCCACCCGGACAAGGTGTGCGACCAGATCTCCGACGCGATCCTGGACGCCCTGCTCGCCCAGGACCCGCACTCGCGCGTGGCGGTGGAGACCATGGTGACCACGGGCCTGGTGCACGTCGCGGGCGAGGTCACCACCGAGGCGTACGTGGAGATCCCGCAGATCGTGCGCGAGGTCGTGCGGGGCATCGGGTACACGTCCTCGGCGATCGGCTTCGACGGCGACTCGTGCGGGGTGTCGGTCTCGATCGGGCAGCAGTCCCCGGACATCGCCCAGGGGGTGGACACCGCCCTGGAGCGCCGCACGCGCGCCGACGACGTCGACCCGCTGGACGTCCAGGGCGCCGGCGACCAGGGGCTGATGTTCGGCTACGCCACCGACGAGACGCCGACGCTGATGCCGCTGCCGGTGTTCCTGGCCCACCGGCTGGCCGAGCGCCTGTCGCTGGTGCGCCGCTCGGGCGAGATCGTCGGGCTGCGCCCGGACGGCAAGACCCAGGTGACCGTGGGCTACGACGGCGACCGCCCGGTCTGGCTGGACACGGTGGTGCTCTCCACCCAGCACGACGCCGACCTGGACCAGGACAAGCTGGCCCGCCAGGTGGCCGACCACGTCGTGGACCCCGTGGTCGAGCGGCTCGCGGCGGACAGCGGCCTGGACGTGGCCGGGCGCGAGCTGATCGTCAACCCGACCGGCAAGTTCGTGGTCGGCGGTCCGCAGGGCGACGCCGGGCTGACGGGCCGCAAGATCATCGTGGACACCTACGGCGGGATGTCACGGCACGGCGGTGGGGCGTTCTCCGGCAAGGACCCCTCGAAGGTGGACCGTTCGGCCGCGTACGCGATGCGCTGGGTCGCCAAGAACGTGGTCGCGGCGGGTCTGGCGCGACGCTGCGAGGTCCAGGTCGCCTACGCCATCGGTCGCGCCCATCCGGTGGGCCTGTACGTGGAGACGTTCGGCACGGCGACGGTCGACCCGGCGCGCATCGAGGCCGCCATCCGGGAGGTGTTCGACCTGCGCCCGGCCGCGATCATCCGCGACCTGGACCTGCTGCGCCCGGTCTACGCCGCCACGGCCGCCTACGGGCACTTCGGGCGCGAGCTGGAGGCGTTCACCTGGGAGCGCACGGACCGCGTCGAGGCGCTGCGTGCCGCGGTGTGAMTDALRLFTSESVTEGHPDKVCDQISDAILDALLAQDPHSRVAVETMVTTGLVHVAGEVTTEAYVEIPQIVREVVRGIGYTSSAIGFDGDSCGVSVSIGQQSPDIAQGVDTALERRTRADDVDPLDVQGAGDQGLMFGYATDETPTLMPLPVFLAHRLAERLSLVRRSGEIVGLRPDGKTQVTVGYDGDRPVWLDTVVLSTQHDADLDQDKLARQVADHVVDPVVERLAADSGLDVAGRELIVNPTGKFVVGGPQGDAGLTGRKIIVDTYGGMSRHGGGAFSGKDPSKVDRSAAYAMRWVAKNVVAAGLARRCEVQVAYAIGRAHPVGLYVETFGTATVDPARIEAAIREVFDLRPAAIIRDLDLLRPVYAATAAYGHFGRELEAFTWERTDRVEALRAAVPGPT0020000_1931DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-AI-2_BIOSYNTHESIS,PGPT0020000-metK-K00789NANA
AK018_007741284coaBC_1COG0452Coenzyme A biosynthesis bifunctional protein CoaBCATGAGGATCCTGCTGGGGGTCAGCGGCGGCATCGCCGCGTACAAGGCCGTCCTGGTGCTGCGCCTCCTGCGTGAGCAGGGCCACGCGGTGCGCGTCGTGCCCACGGCGGCCGCGCTGCGGTTCGTCGGTGCGCCGACGTTCGAGGCGCTCTCCGGCGAGCCGGTGTCGGCGGAGGTGTTCGACGACGTCCCCGGCGTGGCGCACGTGGCCCTCGGCCAGGGCGCCGACCTGGTCGTGGTGGCCCCCGCGACGGCGGACCTGCTGGCCCGCGCGGCGACGGGCCGCGCCGACGACCTGCTCACCTCGACGCTGCTGACGGCGCGCTGCCCGGTGGTGATGGCCCCGGCGATGCACACCGAGATGTGGGAGCACCCGGCCACCCGCCACAACGTCGCCACGCTGCGCGGGCGCGGCGTGCACGTCGTCGAGCCGGCGAGCGGGCGCCTCACCGGTGCCGACACCGGTCCGGGGCGCCTGCCCGAGCCCGAGGAGATCGTGCGGGCGGCGCTGGCGGCCCTCGGCGACGGGACGGTCGGCGACGCGGAGGCCGAGGACACGACGGCCGAGATGGCGGCCGGCGGGCGGCGGCCGTCCCCCGACCTCGCGGGGCGGCGCGTGGTCGTCTCGGCCGGGGGCACGCGCGAGCCGGTGGACCCGGTGCGCTTCCTCGGCAACCGGTCCAGCGGCCGCCAGGGCGTCGCGCTGGCCGAGGCCGCGGCCGCCCGCGGTGCCCAGGTGACCTTGGTGGCCGCGAACCTGGAGCCTGCCCTGACCGGGCCGCCGGCGGAGGCCGGCGTGCGCGTGGTGGACGTGGGCAGCACCGCCGAGCTGCGGACGGCGGTGCGCGAGGCCGCCACCGCGGCGGACGTCGTCGTGATGGCCGCGGCCGTCGCGGACTTCCGGCCGTCGCGGACCCCCGGGGCGAAGATCAAGAAGACGCAGGGCGAGCCCCCGCCGGTCATCGAGCTGGTGGAGAACCCGGACGTGCTGGCCGAGCTGGCCCGCGACCGGCTGTCGCCGGGGCAGGTGGTGGTGGGCTTCGCCGCCGAGACCGGTGACGCGGCGGGCTCGGTGCTGGAGCACGGCCGGGCGAAGGCGCGCCGCAAGGGCGCCGACCTGCTGGCGGTCAATGCCGTCGGGGACGGGCGAGGTTTCGGCGCCGTGGACAACGAGGTGACGGTGCTGGACGCCGCGGGCGACGTGGTCGCCGAGGTCGCGGGGTCGAAGCGCCAGGTGGCGGACGGCCTGTGGGACGCCGTGACGAAGCACCTGTCCGTCATGTGAMRILLGVSGGIAAYKAVLVLRLLREQGHAVRVVPTAAALRFVGAPTFEALSGEPVSAEVFDDVPGVAHVALGQGADLVVVAPATADLLARAATGRADDLLTSTLLTARCPVVMAPAMHTEMWEHPATRHNVATLRGRGVHVVEPASGRLTGADTGPGRLPEPEEIVRAALAALGDGTVGDAEAEDTTAEMAAGGRRPSPDLAGRRVVVSAGGTREPVDPVRFLGNRSSGRQGVALAEAAAARGAQVTLVAANLEPALTGPPAEAGVRVVDVGSTAELRTAVREAATAADVVVMAAAVADFRPSRTPGAKIKKTQGEPPPVIELVENPDVLAELARDRLSPGQVVVGFAAETGDAAGSVLEHGRAKARRKGADLLAVNAVGDGRGFGAVDNEVTVLDAAGDVVAEVAGSKRQVADGLWDAVTKHLSVMPGPT0008815_1299DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008815-coaBC|dfp-K13038NANA
AK018_00775354rpoZ_1DNA-directed RNA polymerase subunit omegaATGGCCGGAACCACGCCCCAGCCGATCGGGATCACCGACCCGCCCATCGACGACCTGCTGACGCGCAGCGAGTCGAAGTACGGCCTGGTGCTCTACGCGGCCAAGCGTGCCCGTCAGATCAACGCCTACTACGCCCAGCTCAACGAGGGCCTCCTGGAGAACGTCGGCCCGCTGGTCGAGACGCGCAACCAGGAGAAGCCCCTGTCGATCGCGATGCGCGAGATCAACGAAGGCCTGCTGACCGCCGAGCCCGCCGCGGAGCCGGTGGACGTCCCGGCGCGCCTGTCGGCCGACGAGGCCGCGGGTGAGGAGCCCTCGGCCCAGGCGCACGTCGCGGGCGACGAGATCGTCTGAMAGTTPQPIGITDPPIDDLLTRSESKYGLVLYAAKRARQINAYYAQLNEGLLENVGPLVETRNQEKPLSIAMREINEGLLTAEPAAEPVDVPARLSADEAAGEEPSAQAHVAGDEIVNANANANANA
AK018_00776651gmk_1COG0194Guanylate kinaseGTGCCGGCACCGCAGGAGAACGTCACCGGCGGACCGGCACGCCTGACCGTGCTGGCCGGGCCCACCGCGGTGGGCAAGGGCACGGTCTCGGCCGACATCCGCACCCGCTACCCGCACGTGTGGCTGTCGGTGTCGGCCACCACCCGGCCGCCGCGACCGGGTGAGGTGCACGGCGTGCACTACCTGTTCGTCCAGCCCGAGGAGTTCGACCGCATGGTCGCGGACGGCGAGATGCTGGAGTGGGCGGTCGTGCACGGCCGGCACCGCTACGGCACGCCCCGGGGGCCCGTCGTCGAGCACCTGGCGGCCGGGTGTCCCACGTTGCTGGAGATCGACCTGCAGGGCGCACGCCAGGTGCGCGACGCCGTCCGGGCCAGCGGGCTGGACGCGCAGTTCGTCTTCCTGGCGCCGCCGAGCTTCGACGAGCTCGTGCGCCGGTTGGTGGGACGCGGCACCGAGGACGCCGAGGAGCGTGAGCGCCGGCTGCGCACCGCCCGCGTGGAGATGGCGGCCGAGGCGGAGTTCGACGTGACGATCGTCAACGACGACGTCACCCGCGCCACCGACGAGCTCGCCCGGCTGCTGGAGGCCGGCCAGGCCGGGGCCGCGGCGCCGGCTTCCCCACCGGCGTCGTCCGGGCGGGTAGAATGAMPAPQENVTGGPARLTVLAGPTAVGKGTVSADIRTRYPHVWLSVSATTRPPRPGEVHGVHYLFVQPEEFDRMVADGEMLEWAVVHGRHRYGTPRGPVVEHLAAGCPTLLEIDLQGARQVRDAVRASGLDAQFVFLAPPSFDELVRRLVGRGTEDAEERERRLRTARVEMAAEAEFDVTIVNDDVTRATDELARLLEAGQAGAAAPASPPASSGRVEPGPT0021475_5118DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942NANA
AK018_00777312hypothetical proteinGTGGCTCTTCCTCCCCTCACCCCGGAACAGCGAGCGGCGGCCCTCGAGAAGGCTGCCGAGGCGCGGCGCGTCCGGGCAGAGATCAAGAACCGGTTGAAGTACTCCCAGGGTTCGCTGCAGGAAGTGATCGAGCAGGGCCAGACGGACGACGTCGTGGGCAAGCTCAAGGTCGTCTCCCTGCTCGAGTCCCTCCCCGGTGTCGGTAAGGTGAAGGCCCGGGCGATCATGAAAGAGATCGGGATCGCCGAGACCCGCCGGGTCCGCGGGCTCGGTCCGCACCAGGCCCAGGCGCTGATCGAGAGGTTTGGCTGAMALPPLTPEQRAAALEKAAEARRVRAEIKNRLKYSQGSLQEVIEQGQTDDVVGKLKVVSLLESLPGVGKVKARAIMKEIGIAETRRVRGLGPHQAQALIERFGPGPT0021475_392DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942NANA
AK018_00778861pyrF_1COG0284Orotidine 5'-phosphate decarboxylaseGTGAGCGCCCCGGCGCCGTTCGGGGCGCGGCTGGCCGCGGCGATGGACGCCGCGGGCCCGCTGTGCGTCGGGATCGACCCCCACGCCGCTCTGCTGGCGGCGTGGGGCCTGCCGGACGACGTCGGGGGCCTGCGGGAGTTCTCCCTGCGGGTCGTCGACGCGCTGGGCGGCGCCGTGGCCGCGCTCAAGCCGCAGGCCGCGTTCTTCGAGCGGCACGGCTCGCGCGGGCTCGCCGTCCTGGAGGAGGTCCTCGCGGCCTCGCGCGCGGCCGGCACGCTGACGATCGTGGACGCCAAGCGCGGCGACATCGGGTCGACGATGGCCGGCTACGGCGACGCGTTCCTCGCGGACGGCTCCCCGCTGGCGGGCGACGCCGTGACGGTGTCGCCGTACCTGGGGTTCGGTTCGCTCGCGCCGGCCCTGGAGCGGGCGAGCGCCTCGGGGCGCGGCGTGTTCGTGCTGTGCCTGACGTCGAACCCGGAGGGTCGCCAGGTGCAGCACGCGGTGGGCGCCGACGGCGTGAGCGTGGCTGCCTCGGTCGCCGCGCAGGCCGCGGCGCTCAACGAGGGTGCCGCACCGATGGGCTCGGTGGGTCTCGTGGTGGGTGCGACGGTGGGGGACGCGGTGCGGGACACCGGCACCGACCTGGACGCGGTCAACGGTCCGCTGCTGGCTCCCGGCGTGGGCGCCCAGGGCGCCGGACCCGCGGAGCTCGCGCAGGTCTTCGGCGCCGCCCGCGGCACGGTGCTGGCCTCGAGCTCGCGCGGCGTGCTCGGCGCGGGCCCGGACGCCGCCGACCTGCGGCGGGCCGCCGCGGCCGCCGCCGGGGAGGCCCGTGCGGCCCTGCGCCCCGGGGCCTGAMSAPAPFGARLAAAMDAAGPLCVGIDPHAALLAAWGLPDDVGGLREFSLRVVDALGGAVAALKPQAAFFERHGSRGLAVLEEVLAASRAAGTLTIVDAKRGDIGSTMAGYGDAFLADGSPLAGDAVTVSPYLGFGSLAPALERASASGRGVFVLCLTSNPEGRQVQHAVGADGVSVAASVAAQAAALNEGAAPMGSVGLVVGATVGDAVRDTGTDLDAVNGPLLAPGVGAQGAGPAELAQVFGAARGTVLASSSRGVLGAGPDAADLRRAAAAAAGEARAALRPGAPGPT0014965_410DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0014965-pyrF-K01591NANA
AK018_007793369carB_1COG0458Carbamoyl-phosphate synthase large chainATGCCCCGCCGTTCCGACCTCTCCTCCGTCCTGGTCATCGGGTCCGGCCCGATCGTCATCGGCCAGGCCTGCGAGTTCGACTACTCGGGCACCCAGGCGTGCCGGGTGCTCAAGGAGGAGGGCCTGCGCGTGGTGCTGGTCAACTCCAACCCGGCCACCATCATGACCGACCCGGAGTTCGCCGACGCCACCTACGTCGAGCCCATCACCCGCGAGGTGCTGACCTCGATCATCGCCAAGGAGCGGCCCGACGCGCTGCTGCCCACCCTGGGCGGCCAGACGGCGCTGAACGCCGCCATCGAGCTGCACGAGGCCGGCGTCCTGGACGAGTACGGCGTCGAGCTCATCGGCGCCAACATCCCTGCCATCCGCAAGGGCGAGGACCGCGAGCAGTTCAAGGAGGTCGTCGACGTCTGCGGCGGCGAGTCCGCCCGCTCGCGCATCATCCACTCGATCGACGGCGCCCTCGAGGCGGCCGACGACCTGGGCTACCCGATGGTGGTCCGCCCCTCGTTCACCATGGGCGGTCTGGGTTCCGGGCTCGCCTACGACGAGACGGACCTGCGGCGCATCGTCGGCCAGGGCCTGCACTACTCGCCGGTCACGGAGGTGCTCCTGGAGGAGTCCATCCTGGGCTGGAAGGAGTACGAGCTCGAGCTCATGCGCGACAAGGACGACAACGTCGTGGTCGTGTGCTCCATCGAGAACGTCGACCCGGTCGGCGTGCACACCGGTGACTCGGTGACCGTGGCGCCGGCGATGACGCTGACCGACCGCGAGTACCAGACGCTGCGCGACATCGGCATCGCCGTCATCCGGGAGGTCGGTGTCGACACCGGCGGCTGCAACATCCAGTTCGCCGTCGAGCCGGACACCGGCCGCGTGGTCGTCATCGAGATGAACCCGCGCGTGTCCCGGTCCTCGGCGCTGGCCTCGAAGGCCACGGGCTTCCCGATCGCGAAGATCGCCGCCAAGCTCGCCGTGGGCTACACCCTGGACGAGATCCCCAACGACATCACCCAGGTGACGCCCGCCAGCTTCGAGCCGACGCTCGACTACGTCGTGGTCAAGGTCCCGCGGTTCGCGTTCGAGAAGTTCCCCGCCGCCGACGACACGCTCACGACCACGATGAAGTCCGTCGGGGAGGCGATGGCCCTGGGCCGCAACTTCACCGAGGCGCTCGGCAAGGCCCTGCGCAGCATCGACAAGGGCGGCGTCGACTTCCACTGGGCCGGCGAGGCCCCGGCGGGCGAGGAGCTGACCGCCCTGCTCGAGTCGCTGCGGCGGCCCACCGAGCAGCGGCTCGTGGGGGTGCAGCAGGCGCTGCGCTCCGTCGTCGCCGGCCACGCGACCCTCGAGCAGGTCTTCGACGCCACGAAGATCGACCCCTGGTTCCTGGACCAGATCCTGCTGATGAACGAGGTGGCCGCCGAGGTGGAGGCGTCCGAGACGCTCACCGCCGAGGTGCTGCGCCGCGCCAAGCGGCACGGGCTGTCCGACGCCGAGGTGGCCGCGCTGCGCGGCATGGGACCCGGCGGGGAGTCGGCGGTGCGCGAGGCACGGCACGCGCTCGGTGTGCGCCCGGTCTACAAGACGGTCGACACCTGCGCCGCGGAGTTCGCCGCCCGCACGCCGTACCACTACTCGTCCTACGACACGGAGACCGAGGTGGCCCCGCGCGAGCGCGAGGCGGTCATCATCCTGGGCTCGGGGCCGAACCGCATCGGGCAGGGCATCGAGTTCGACTACTCGTGTGTGCACGCGGCGCTGACGCTCAAGGACCGGTTCGAGACGGTCATGGTCAACTGCAACCCGGAGACGGTCTCGACCGACTACGACACGTCCGACCGGCTCTACTTCGAGCCGCTGACGTTCGAGGACGTGCTCGAGGTCTACCAGGCCGAGCTCGCGGCCGGGCCGGTCAAGGGCATCATCGTCCAGCTCGGCGGCCAGACGCCGCTGTCGCTGGCGCAGCGTCTCGCCGACGCCGGGCTGCCGATCCTGGGCACGCCGCCCGAGGCGATCGACGCCGCCGAGGACCGCGGCCTGTTCGGCCAGGTGCTCGCCGACGCCGGGCTGCCGGCGCCCGCCTTCGGCACCGCCCGCTCGCTGGGGGAGGCGCGCGACATCGCCGAGCGCATCGGCTACCCGGTGCTCGTGCGGCCCTCGTACGTCCTCGGCGGGCGCGGCATGGAGATCGTCTACTCCGCCGACCAGCTCACCGGGTACGTCGAGCGCGCCCTGGAGGCGGCCGCGGCCCATGCGGTGACGTCGCGGGCGCCCGGAGTGCTGCCGGCGCCGCTGCTGATCGACCGGTTCCTGGACGACGCGATGGAGATCGACGTCGACGCCCTCTTCGACGGTGACGAGCTGTTCCTGGGCGGGGTCATGGAGCACATCGAGGAGGCCGGGATCCACTCCGGCGACTCGGCGTGCGTGCTGCCGCCGGTCTCGCTGAGCCAGGCCGAGATCGAGCGGATCCGCCGCTCCACCGAGGCCATCGCGCGCGGCGTGGGAGTGCGCGGTCTGCTGAACGTGCAGTACGCGCTCGTCTCGGACGTGCTGTACGTGCTGGAGGCCAACCCGCGCGCCTCGCGCACGGTGCCGTTCGTGTCCAAGGCGACCGGCGCCTCGCTGGCCAAGGCCGCGGCGCGCGTCATGGTGGGCGAGTCGATCGCCGACCTGCGCGGCACCGGGATCCTGCCCGCCGAGGGCGACGGCGGCACGCTCGACCTGGGTGCGCCCCTGGCCGTCAAGGAGGCCGTGCTGCCGTTCAAGCGGTTCCGCACGGCCGAGGGCCACGTCGTGGACACCGTGCTGGGTCCGGAGATGCGGTCCACCGGTGAGGTCATGGGCTTCGACAAGGACTTCCCGCACGCCTTCGCCAAGTCGCAGGCCGCGGCGTTCGGCGGGCTGCCGACGTCGGGCACGGTGTTCGTCTCGGTCGCGGACCGCGACAAGCGCTCGATCGTGTTCCCGGTCAAGCGCCTGGCGGACATCGGGTTCGAGATCCTGGCGACGTCGGGCACGGCGCAGGTCCTGGCCCGCAACGGCATCGCGGCCACGACGGTGCGCAAATACTCGGACGGTGCGGGTGCGGCCGGCGAGCCGACCGTCGTCGACCTCATCAGCGCCGGCGAGGTGGACCTCGTGGTCAACTCCCCGTCGGGTCAGGGGGCGCGCGCCGACGGCTACGAGATCCGGGCGGCGACGACCGCGGCGGACAAGCCGATGGTGACCACCGTGGACCAGCTCGCGGCCGCCGTGCAGGCGATCGAGGCGGTCCGCGGCGGACCGTTCGCCGTCGGCAGCCTGCAGGAGCACACGGCGGCGACCGTGGCCCGGCGCGAGGCGCAGGTGGGCGTGTGAMPRRSDLSSVLVIGSGPIVIGQACEFDYSGTQACRVLKEEGLRVVLVNSNPATIMTDPEFADATYVEPITREVLTSIIAKERPDALLPTLGGQTALNAAIELHEAGVLDEYGVELIGANIPAIRKGEDREQFKEVVDVCGGESARSRIIHSIDGALEAADDLGYPMVVRPSFTMGGLGSGLAYDETDLRRIVGQGLHYSPVTEVLLEESILGWKEYELELMRDKDDNVVVVCSIENVDPVGVHTGDSVTVAPAMTLTDREYQTLRDIGIAVIREVGVDTGGCNIQFAVEPDTGRVVVIEMNPRVSRSSALASKATGFPIAKIAAKLAVGYTLDEIPNDITQVTPASFEPTLDYVVVKVPRFAFEKFPAADDTLTTTMKSVGEAMALGRNFTEALGKALRSIDKGGVDFHWAGEAPAGEELTALLESLRRPTEQRLVGVQQALRSVVAGHATLEQVFDATKIDPWFLDQILLMNEVAAEVEASETLTAEVLRRAKRHGLSDAEVAALRGMGPGGESAVREARHALGVRPVYKTVDTCAAEFAARTPYHYSSYDTETEVAPREREAVIILGSGPNRIGQGIEFDYSCVHAALTLKDRFETVMVNCNPETVSTDYDTSDRLYFEPLTFEDVLEVYQAELAAGPVKGIIVQLGGQTPLSLAQRLADAGLPILGTPPEAIDAAEDRGLFGQVLADAGLPAPAFGTARSLGEARDIAERIGYPVLVRPSYVLGGRGMEIVYSADQLTGYVERALEAAAAHAVTSRAPGVLPAPLLIDRFLDDAMEIDVDALFDGDELFLGGVMEHIEEAGIHSGDSACVLPPVSLSQAEIERIRRSTEAIARGVGVRGLLNVQYALVSDVLYVLEANPRASRTVPFVSKATGASLAKAAARVMVGESIADLRGTGILPAEGDGGTLDLGAPLAVKEAVLPFKRFRTAEGHVVDTVLGPEMRSTGEVMGFDKDFPHAFAKSQAAAFGGLPTSGTVFVSVADRDKRSIVFPVKRLADIGFEILATSGTAQVLARNGIAATTVRKYSDGAGAAGEPTVVDLISAGEVDLVVNSPSGQGARADGYEIRAATTAADKPMVTTVDQLAAAVQAIEAVRGGPFAVGSLQEHTAATVARREAQVGVPGPT0021150_585DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021150-carB-K01955NANA
AK018_007801269carA_1COG0505Carbamoyl-phosphate synthase small chainGTGAGCACACCCACCAGCACCGAACCGGCGATCCTCGTCCTCGAGGACGGCACCGTCGCCCGTGGCACCGCCTACGGCGCCCGCGGCGCCACCCTCGGCGAGATCGTCTTCTCCACCGGCATGACCGGCTACCAGGAGACCCTGACCGACCCGTCCTACCACCGCCAGATCGTGGTCATGACGGCCCCGCACGTGGGCAACACCGGCGTCAACACCGACGACCCGGAGTCCGGGCGCATCTGGGTCGCCGGCTACGTCCTGCGCGACCCGGCGCGCCGCTCGTCCAACTGGCGTGCCACCGGCGACCTGGGCGACGAGCTCGCCGCGCACGACGTCGTCGGCATCGCCGGGGTCGACACGCGCTTCCTCACGCGCCACCTGCGCGAGCTCGGCGTGATGCGCGCCGGCATCTTCTCGGGCGAGGCGCTCGCCCCCGACGGCGTCGAGCGCAGCGTCGAGGACCTGGTGGCCGAGGTCAAGGGCGCCCCGCCGATGGCCGGCGCCGACCTGGCCCGCGAGGTCTCCACGACCGAGGCCTACACCGTCGAGCCGGCCGGCGAGCACGCGGGTGCCGAGCCCGTCGCCACGGTCGTCGCCGTCGACCTGGGCATCAAGGCCATGACCCCGGCCCGCCTGGCCGAGCGCGGCGTGCGCGTGCACGTGGTGCCCCAGTCCGCCACCTTCGAGGAGGTCGCCGCGCTGCTGCCCGCCGAGGGCCCCGCCGGGGTGTTCTTCTCCAACGGTCCCGGCGACCCGTCGGCGGCCACCGCGGAGGTCGACCTCCTGCGCCGCGTGCTGGACGCCCGCATCCCGTTCTTCGGGATCTGCTTCGGCAACCAGCTCCTGGGCCGCGCCCTCGGCTACGGCACCTACAAGCTCGGCTACGGTCACCGCGGCATCAATCAGCCCGTCATGGACCGCACGACGAGCAAGGTCGAGGTCACCGCGCACAACCACGGGTTCGCCGTCGACGCCCCCGTCGACGCCGTCAGCACGGCGCCCCACGACGACGCCCGCGACGACGACGTGCGCTACGGCCGCGTCATCGTGTCCCACCTGGGCCTCAACGACCGCGTCGTCGAGGGCCTCACCGCCCTCGACCTGCCGGCGTTCTCGGTGCAGTACCACCCCGAGGCGGCCGCCGGCCCGCACGACAGCGCCTACCTGTTCGACCGCTTCGTCGAGCTCATGACCACCCGCCAGCCCGTGACCGTCCCCGACAGCGCCCTCGCCGCGCTCGGCGGCACCACCGGCGAGAAGGAGAACTGAMSTPTSTEPAILVLEDGTVARGTAYGARGATLGEIVFSTGMTGYQETLTDPSYHRQIVVMTAPHVGNTGVNTDDPESGRIWVAGYVLRDPARRSSNWRATGDLGDELAAHDVVGIAGVDTRFLTRHLRELGVMRAGIFSGEALAPDGVERSVEDLVAEVKGAPPMAGADLAREVSTTEAYTVEPAGEHAGAEPVATVVAVDLGIKAMTPARLAERGVRVHVVPQSATFEEVAALLPAEGPAGVFFSNGPGDPSAATAEVDLLRRVLDARIPFFGICFGNQLLGRALGYGTYKLGYGHRGINQPVMDRTTSKVEVTAHNHGFAVDAPVDAVSTAPHDDARDDDVRYGRVIVSHLGLNDRVVEGLTALDLPAFSVQYHPEAAAGPHDSAYLFDRFVELMTTRQPVTVPDSALAALGGTTGEKENPGPT0021155_311DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021155-carA-K01956NANA
AK018_00781564hypothetical proteinGTGAACCTGCCGCTGCCCGTGGCTGTCGGCATCTGGATCGTCGTCGGGGTCGCCCTGCTGCTGCTCGTGCTGTGGGGCCGGCGCCGGCTGGCCACCCGCTCGCGCGACGTCGTGCCGGTGCCGCCCGCCGTGCCCGTCGAGGACGGCGCCCTGGGCGAGAGCCTCCTGGGGCCGCTCGAGGCCACCTACGTCTCGACCACGGCGTCGGGCGACTGGCTCGCCCGCATCGGTGCCCACAGCCTGGGCGACCGCGCCCGCGCCGAGGTGACCGTCTACCGCGGGGGAGTCGTCGTCGACCGCGACGGCACCGCCGCGGTCCTCGTGCCCGCCACCTGCCTGCGCGGCGTCGGCACGGCCCCGGGGATGGCCGGCAAGTTCGTCGGTCGCGACGGCCTGGTCGTGCTGACCTGGGAGATCCCCACCGACGGCGCCGTCGACGCGGTGACGGTCGACACCGGCCTGCGCCTGCGCCACCAGGCCGACAACGCCCGCCTCCTGACGGTTGCGGGCGCCCTGATCACCCCCTCGTCCCCCTCCACGCCGAGCGCGAAGGACCCGCAGTGAMNLPLPVAVGIWIVVGVALLLLVLWGRRRLATRSRDVVPVPPAVPVEDGALGESLLGPLEATYVSTTASGDWLARIGAHSLGDRARAEVTVYRGGVVVDRDGTAAVLVPATCLRGVGTAPGMAGKFVGRDGLVVLTWEIPTDGAVDAVTVDTGLRLRHQADNARLLTVAGALITPSSPSTPSAKDPQNANANANANA
AK018_007821326pyrC_1COG0044DihydroorotaseGTGAGCACCGAGACCTACCTCCTGCGCGCCGCGCGACCGCTGGGGGGCGACCCCGTCGACGTCGTGCTGCGTGGCGGCGTCGTCGCCGAGATCACCGCCCCGGGGGCCGCCGACGCCGCCGACGCCACCGTCGTGGAGGCCGCCGACCACGTCCTGCTGCCCGGGTTGGTCGACCTGCACACCCACCTGCGCGAGCCGGGACGCGAGGACGCCGAGACCGTCGCGTCCGGGACGCGCGCCGCCGCGGCCGGCGGCTTCACCGCGGTGCACGCCATGGCCAACACCTCGCCCGTGGCGGACACCGCCGGCGTCGTCGAGCAGGTGTACCGGCTCGGCGAGCAGGCCGGGTGGGTCGACGTGCACCCGGTCGGCGCCGTCACGGTGGGACTGGCCGGGGAACGGCTCGCCGAGCTGGGCGCGATGGCCGACTCGGCCGCCCGGGTGCGGGTGTTCTCCGACGACGGCAAGTGCGTGTCCGACCCCGTGCTGATGCGCCGCGCCCTGGAGTACGTCAAGGCGTTCGACGGCGTTGTGGCCCAGCACGCCCAGGAGCCGCGCCTGACCGAGGGCGCGCAGATGAACGAGGGCGTCGTCTCGGCCGAGGTCGGGCTGACCGGCTGGCCCGCCGTCGCCGAGGAGGCGATCATCGCCCGCGACGTGCTGCTCGCCGAGCACGTGGGCTCGCGGCTGCACGTCTGCCACCTGTCCACGGCGGGGTCCGTCGAGATCGTGCGCTGGGCGAAGTCGCGCGGCATCGACGTCACCGCCGAGGTCACCCCGCACCACCTGGTCCTGACCGACGAGCTGGCCCGCACCTACGACCCGGCCTTCAAGGTCAACCCGCCGCTGCGGACCGCGGCCGACGTCGAGGCCGTGCGCGAGGGACTCGCCGACGGCACGATCGACATCGTCGCCACCGACCACGCGCCCCACACCCGCGAGGACAAGGACTGCGAGTGGGGTGCGGCCGCGTTCGGCATGACGGGCCTGGAGACCGCGCTGAGCGTCGTGCAGCAGACCATGGTCGACACCGGCCGGCTCAGCTGGTCCGACGTCGCGCGCGTGCTGTCCTCGGCCCCGGCCCGCATCGGGCGCGTCGACGCCGGTCCGCACGCCCAGGGCCGTCCCGTCGCGGTGGGGGAGCCCGCCAACCTGACGCTGGTCGACCCGGCCGCTGTGCGGTCCGTCGACGGCACCCGGCAGGTCACGGCCAGCGGCAACACCCCGTTCGCCGGCGTCGAGCTGCCGGGCCGCGTCGTGGCGACGTTCCTGCGCGGGCGCGCCACCGTGCTGGACGGCGCCCCCGTCGGGGAGGTGGTCCGGTGAMSTETYLLRAARPLGGDPVDVVLRGGVVAEITAPGAADAADATVVEAADHVLLPGLVDLHTHLREPGREDAETVASGTRAAAAGGFTAVHAMANTSPVADTAGVVEQVYRLGEQAGWVDVHPVGAVTVGLAGERLAELGAMADSAARVRVFSDDGKCVSDPVLMRRALEYVKAFDGVVAQHAQEPRLTEGAQMNEGVVSAEVGLTGWPAVAEEAIIARDVLLAEHVGSRLHVCHLSTAGSVEIVRWAKSRGIDVTAEVTPHHLVLTDELARTYDPAFKVNPPLRTAADVEAVREGLADGTIDIVATDHAPHTREDKDCEWGAAAFGMTGLETALSVVQQTMVDTGRLSWSDVARVLSSAPARIGRVDAGPHAQGRPVAVGEPANLTLVDPAAVRSVDGTRQVTASGNTPFAGVELPGRVVATFLRGRATVLDGAPVGEVVRPGPT0021145_1776DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021145-pyrC-K01465NANA
AK018_007831002pyrB_1COG0540Aspartate carbamoyltransferaseATGAGGCACCTGCTGTCCACGGCGGACCTGAGCAAGGACGAGGCGGTGCTCCTGCTGGACACCGCCGCCCAGATGGCCGCCACGCAGTCGCGCGAGATCAAGAAGCTGCCCACGCTGCGCGGCCGGACCGTGGTCAACCTTTTCTTCGAGGACTCCACGCGCACGCGCATCTCGTTCGAGACGGCGGCCAAGCGCCTGTCCGCGGACGTCATCAACTTCTCCGCGAAGGGCTCCAGCGTCTCCAAGGGCGAGTCCCTCAAGGACACCGCGCTGACCCTGCACGCCATGGGGGCCGACGCCGTCGTCGTGCGGCACTGGGCGTCCGGAGCCGCCTACCAGCTGGCCAACGCCGGCTGGCTGGATGCCGCCGTGCTCAACGCCGGCGACGGCACCCACCAGCACCCCACCCAGGCCCTGCTGGACGCCTACACGATCCGCCGCCACCTGGCCGCGCGGTCCGACCGGCTGCCCGACGGCGCGGTCGACGGCGCCGGTGCCGACCTGGCCGGGCTGAAGGTCGCGATCGTCGGCGACGTGCTGCACTCGCGGGTGGCGCGCGCGAACGTCGCGCTGCTGCACACCCTCGGCGCGCAGGTGACGCTCGTCGCCCCGCCCACGCTGGTCCCGGTCGGGGTGGGGGCATGGCCGTGTGAGGTCTCCTACGACCTGGACGCCACGCTCGACGGGTGGCGGCCCGACGCGGTGATGATGCTGCGCGTCCAGCGCGAGCGCATGTCCGGCGGCGCGGGGGCGTTCTTCCCCAGCACGCTGGAGTACACCCGCTACTACGGGCTGGACGCCCGGCGCCTGGCCCTGCTGGACGACCACGCCATCGTCCTGCACCCGGGACCCATGAACCGCGGGCTGGAGATCTCCGCCGAGGCCGCCGACTCCGAGCGCGCCGTCATCGTCGAGCAGGTCGCCAACGGCGTGGCCGTGCGGATGGCCGCCCTCTACCTGCTGATGGCCGGGGAGGACTCGGCAGAAGGGAACGACCTGTGAMRHLLSTADLSKDEAVLLLDTAAQMAATQSREIKKLPTLRGRTVVNLFFEDSTRTRISFETAAKRLSADVINFSAKGSSVSKGESLKDTALTLHAMGADAVVVRHWASGAAYQLANAGWLDAAVLNAGDGTHQHPTQALLDAYTIRRHLAARSDRLPDGAVDGAGADLAGLKVAIVGDVLHSRVARANVALLHTLGAQVTLVAPPTLVPVGVGAWPCEVSYDLDATLDGWRPDAVMMLRVQRERMSGGAGAFFPSTLEYTRYYGLDARRLALLDDHAIVLHPGPMNRGLEISAEAADSERAVIVEQVANGVAVRMAALYLLMAGEDSAEGNDLPGPT0021160_1079DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021160-pyrB-K00609NANA
AK018_00784606pyrR_1Bifunctional protein pyrRTTGAGCACTGGACCTGCCCTGCCCGCAGACGGTGGCACCACCGTGCTGGGCGCCGGCGACGTCGCCCGCGCCCTGACCCGCATCGCCCACGAGATCGTCGAACGGTCCAAGGGGGCCGACGACGTCGTCCTGCTGGGCATCCAGACCCGGGGTGTGCCGCTCGCCCGCCGGCTCGCCGAGCGTCTGGCCCAGATCGAGTCCGGCTTCGACCCCGAGGCGGCCACCGGCGAGCTCGACGTCACGATGTACCGCGACGACCTGCACCGGCACCCCACCCGCGCCGTGGGCGTCACCCGCCTGCCCGACGCCGGGATCACCGGACGCACCGTGGTGCTCGTCGACGACGTGCTGTTCTCCGGGCGCACGATCCGCGCCGCGCTGGACGCCCTGGGCGACCTCGGCCGCCCCCGCGCCGTCCGGCTCGCCTGCCTCGTCGACCGCGGCCACCGCGAGCTGCCGATCCGTCCGGACTTCGTGGGCAAGAACCTGCCCACCGCGCAGGCTGAGCGCGTGCGGGTGCTGCTGACCGAGGTCGACGGCGGTCCGGACGCCGTCGTGATCGCGGGCCGGGACGCGCCCGACGACGCCGCGGGGGGTGCGCGATGAMSTGPALPADGGTTVLGAGDVARALTRIAHEIVERSKGADDVVLLGIQTRGVPLARRLAERLAQIESGFDPEAATGELDVTMYRDDLHRHPTRAVGVTRLPDAGITGRTVVLVDDVLFSGRTIRAALDALGDLGRPRAVRLACLVDRGHRELPIRPDFVGKNLPTAQAERVRVLLTEVDGGPDAVVIAGRDAPDDAAGGARPGPT0021245_183DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021245-pyrR-K02825NANA
AK018_00785417nusB_1COG0781Transcription antitermination protein NusBGTGGGCGCACGCACCAAGGCGCGCAAGCGCGCCGCGGACATCCTCTTCGAGTCCGAGCAGCGCACGGTCGACCCGCTCGTCCTGCTGCAGGACCGGGTGATCGAGCCGCACACCGAGGCGTCCGTGCCGCAGTACGCCGTCGACCTGGTCGAGGGGGTGGTGGCGCACCGCGAGCGCATCGACGAGCTGCTCGAGACGTACTCGCGCGACTGGACCCTGGCCCGCATGCCCGCCGTCGACCGGGCGCTGCTGCGCATCGGCGTCTTCGAGATCCTCTACTGCGCCGACGTGCCGGACGCGGTCGCCGTCGACGAGGCGGTCGACCTCGCACGCCGGCTGTCCACCGACGAGTCCCCGGGGTTCGTCAACGGGCTGCTCGGCCGCGTGCTGGAGATCAAGCCGACGCTGCTCGACTGAMGARTKARKRAADILFESEQRTVDPLVLLQDRVIEPHTEASVPQYAVDLVEGVVAHRERIDELLETYSRDWTLARMPAVDRALLRIGVFEILYCADVPDAVAVDEAVDLARRLSTDESPGFVNGLLGRVLEIKPTLLDNANANANANA
AK018_00786564efp_1COG0231Elongation factor PGTGGCTACCTCCAATGACATCAAGAACGGCACCGTGCTGCGCATCGACGGGCAGCTGTGGTCGATCCTCGAGTTCCAGCACGTCAAGCCGGGCAAGGGTGGCGCGTTCGTCCGGACCAAGATGAAGAACGTGCTCTCGGGCAAGGTCGTCGACAAGACGTTCAACGCCGGCGCCAAGGTCGAGACGGCGAACGTCGACCGCCGTGACTACCAGTACCTGTACATGGACGGCGAGGACTTCGTCTTCATGGACACCGACACCTACGACCAGATCCCGGTCTCCACGGCCGTCGTCGGCGACGCGAAGGACTACATGCTCGAGGGCATGAGCGTCATGGTCGCGATGAACGAGGGCGTGCCGCTCTACGTCGAGCTGCCGTCGTCGGTCGTCCTCGAGATCGCCTATGCCGAGCCCGGCCTGCAGGGCGACCGCTCCACCGGCGGCACCAAGCCCGCCACGCTGGAGACCGGTGCTCAGATCCAGGTCCCGCTGTTCCTCGAGCAGGGCACCAAGGTCAAGGTGGACACCCGCGACGGCTCCTACCTGGGCCGTGTGAACGACTGAMATSNDIKNGTVLRIDGQLWSILEFQHVKPGKGGAFVRTKMKNVLSGKVVDKTFNAGAKVETANVDRRDYQYLYMDGEDFVFMDTDTYDQIPVSTAVVGDAKDYMLEGMSVMVAMNEGVPLYVELPSSVVLEIAYAEPGLQGDRSTGGTKPATLETGAQIQVPLFLEQGTKVKVDTRDGSYLGRVNDPGPT0016205_2963DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-SWARMING_REGULATOR,PGPT0016205-efp-K02356NANA
AK018_00787375hypothetical proteinGTGTCCGAACCGTGGGTGGTCGTGCTGGTCGCCGTCGGAGCGCTGGCCGTGAGCGTGGCCGCCGGCTCGTGGCTGGTCCCGCTGGTGCTGCGGCACGCCGAGTCCACCGAGGTCTCGGCGCGGGCCGAGGCGCTGGCCGTGCTCGGCAACGGCACCTGGATCGGTCTGCTCGAACGCTTCGCGATCACCGGCACCATCCTCGTGGGCTACCCCGAGGGTGTCGCGGTCGTCGTCGCCGTCAAGGCGCTGGGTCGGTTGCCCGAGCTGCGGGAGCACCCCGTGGCCGGCGAGCGGTTCGTCGTCGGCAGCCTGGCCTCGCTGGTCTGGTCGGCCGGGGTGGGCCTCGCGGGCCGGGCGCTGCTGGGCGGCCTGTAGMSEPWVVVLVAVGALAVSVAAGSWLVPLVLRHAESTEVSARAEALAVLGNGTWIGLLERFAITGTILVGYPEGVAVVVAVKALGRLPELREHPVAGERFVVGSLASLVWSAGVGLAGRALLGGLNANANANANA
AK018_00788696hypothetical proteinATGATCGTCCTGACGGTGGACCAGCGAGCGAGCACCACCCGCGGTGACCTCGTGCCTGCGGTGCTCGCCGTCCTGCACGCCCGCACCCACGGCCCGGACGGGCCAGTCGACGGCCTCGTGCTCCCGTTCGAGCGCACGGTGGGGGACGAGGTGCAGGGGGTGCTGGCGGCGGACCGGGACGGGGCCGAGCTCGCCGTCGGGCTCGTCGAAGAGCTGGTGCGCGACGGCGGCTGGTCCGTCGGCGTGGGGGTGGGTGCGGTCGACGAGCCGCTGCCCGACGCCTCCCGGGCCGCCTCGGGTCCGGCGTTCGTCCGAGCCCGCGCCGCGGTCGAGCAGGCCAAGCGCAAGGGTCTGTCCGTCCCCCTGGCGCTCAGCGGCGCCGAGGGTGAGCCCGCCGCGACGGTCGCCGCCGACGCCGAGGCGCTGCTGCGGCTGTGCGGCGCGGTCACGGCGCGTCGGTCCGTCGCGGGGTGGGAGGCCGTCGATACGCTCGGCGAGCACCCGACGTCGGACGGTCCGCAGCGGGCCGCCGCCGAGGCGCTCGGCATCAGCGAGCAGGCGGTCAGCCAGCGGCTGCGCACGGCGCTGTGGCACGAGACCGAGGCGGTGCGCCCGCTGGTGGTCCGCCTGGTGGCCGCCGCCGACACCGCGGCGACCGCCGCGGACGTCGGGGCGGACGTCGACGACGAAGGGTGAMIVLTVDQRASTTRGDLVPAVLAVLHARTHGPDGPVDGLVLPFERTVGDEVQGVLAADRDGAELAVGLVEELVRDGGWSVGVGVGAVDEPLPDASRAASGPAFVRARAAVEQAKRKGLSVPLALSGAEGEPAATVAADAEALLRLCGAVTARRSVAGWEAVDTLGEHPTSDGPQRAAAEALGISEQAVSQRLRTALWHETEAVRPLVVRLVAAADTAATAADVGADVDDEGNANANANANA
AK018_00789453aroQCOG07573-dehydroquinate dehydrataseATGGCTGACACGCGCGTCCTCGTCCTGAACGGTCCCAACCTCGGACGGCTCGGCGTCCGCGAGCCCGAGATCTACGGCCACGCCTCCATGGCCGATCTGGAGGTGCAGGCGGGAGCGTGGGGGAGCGGGCTCGGGATGAGCGTGGAGGTCCGCCAGACCGACGACGAGTCGGAGCTGGTGGGGTGGCTGCACGAGGCGGTGGACACCCGGGCGCACGTGGTCCTCAACCCGGCAGCCTTCACCCACTACAGCTACGCGCTGCGGGACGCGGCGGCGCAGGTGACGACGGCGGGCCTGCTGCTGGTCGAGGTGCACCTGTCCAACCCGGCGGCGCGGGAGTCCTTCCGCCATTACTCGGTCGTGGCCGGGATCGCCACGGGCACGGTCGCCGGGTTCGGCTTCGACTCGTACCGGCTGGCGCTGCAGGCGTTGGCGGGCAAGCTCAAGGGCTAGMADTRVLVLNGPNLGRLGVREPEIYGHASMADLEVQAGAWGSGLGMSVEVRQTDDESELVGWLHEAVDTRAHVVLNPAAFTHYSYALRDAAAQVTTAGLLLVEVHLSNPAARESFRHYSVVAGIATGTVAGFGFDSYRLALQALAGKLKGPGPT0012905_2245DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_QUINATE_CATABOLISM,PGPT0012905-aroQ|qutE-K03786NANA
AK018_00790438hypothetical proteinGTGCCGCGGCTCGACCCGGACGAGTGCCGCCGCCGCTTCGCCGCCGCGCGGCACGCCTACCTGGCCACGGCCGACCTCGCCGCCGTCCCGCACCTGGTGCCGATCACCTTCGCGGTGCTTGACACCGCCGACGGCGACGCCGTGGTCTGGGCCGTCGACCACAAGCCCAAGGCGACCCACGCCCTGCGCAGGCTGCGCAACGTGACCGCCAACCCGCGCGTCGCGCTGCTCGCCGACGCCTATGACGACGATTGGGACCGCCTGTGGTGGGTGCGGGCGGACGGCACGGCCACGATCGACGACGGCGGCACGCAGCGCTGCGAGGCCCTCGAGGCGCTGGCCGCCCGCTACGGGCCCTACCGGGACCGTCCACCGGCGGGACCGGTGGTGCGCGTCCGGGTGAGCCGGTGGAGCGGCTGGGCGGCCCGGTCCGTCTAGMPRLDPDECRRRFAAARHAYLATADLAAVPHLVPITFAVLDTADGDAVVWAVDHKPKATHALRRLRNVTANPRVALLADAYDDDWDRLWWVRADGTATIDDGGTQRCEALEALAARYGPYRDRPPAGPVVRVRVSRWSGWAARSVNANANANANA
AK018_00791354hypothetical proteinGTGGGTGAGGTGAGCGACTACGTCGCGTCGTTGCACGAGCCGGCACGCAGCGCGGTCGGGCGCGTGGTCGACCGCGCCCGCGCCGTCGTGCCCGACGCCGAGGAGGGCGCCAGCTACGGGATGCCGGCCCTGCGCTACCGCGGCAGCCCGCTGATCAGCGTGGTCCGCACCGCGAAGCACGTCGGCGTCTACCCGTTCAGCCCGGCGGTGGTGACGGCCGTGGCCGCCGACCTCGCGGGTTTCCGCGTGACCAAGGGTTCGATCGGCTTCCGCCACGATCACCCCCTGCCCGACGACGTGATCGACCGTCTCGTGGCGCTGCGGCGCGACGAGATCGACGCCGCGGCACGCTGAMGEVSDYVASLHEPARSAVGRVVDRARAVVPDAEEGASYGMPALRYRGSPLISVVRTAKHVGVYPFSPAVVTAVAADLAGFRVTKGSIGFRHDHPLPDDVIDRLVALRRDEIDAAARNANANANANA
AK018_007921374hypothetical proteinATGAGCGACACCACCCCGACGACGCCGTCCGGTGCCGAGTCCGTACCGTTCGACTCCCTGCCCGCTGCCGAACGACGTCGCCGGGTGCGGTCGTGGGCGCTGTGGGACTGGGCCACCCAGCCGTACAACACCGTGATCCTGACGTTCGTCTTCACGGCGCTGTACCTCAACAGCGACGCCTTCCTGGACCCGGCCGTGGCGGCCCTGGGGGAGAACGACCCCGTGCGCGAGCGGGCCCTGGCGGACCTGTCCAGCGGTCTGGGTGCCTGGATCACCGTCGGCGGCGTCCTGGTGGCGCTGCTCGCACCGGTGCTCGGGCGCCGCGCCGACGTGGCCGGCCGGCGCAAGGCGTGGCTCGCCGCGGGCACCGTCGTGCTGGTCGTGGCGATGTTCGGTCTCGGGTTCGTCCGGGCTGACCCGGCGTACTTCGCGCTCGGTGCCGCGCTGGTGTCCCTCGGCAGCGTGGCCTCGGAGATCGCGGGCGTGAACTACAACGCGATGCTGACCCAGGTCTCGACGCCGCGCACGGTCGGTCGCGTCTCGGGCCTGGGGTGGGGCCTGGGGTACGTCGGGGGCATCGTCGCCCTCCTGGCGGTCGTCGTGGCGACCGAGCTCGACTTCTTCGGCATGGACACCTCCGACGGCATGGGCTATCGCGTGATCGCGGTCGGGTGCGGGCTGTGGGCGCTCGCGTTCGCCTGGCCGCTGTTCCGCCACGTGCCCGAGGCCCCGCCCGCCGCCGACCGGCCCCGTGTGGGCTTCTTCGCCGGGTACGCCCAGCTGTGGCGCGACGTCGTCGCGCTGTGGCGGGACGCCCGCACGACGTTCTGGTTCCTGCTCGCCAGCGCCGTCTACCGCGACGGGCTCGCGGGCGTCTTCACCTTCGGGGCGATCGTCGCCGCCGTGTCGTACCGGTTCACCGACCAGGAGGTCCTGATCTTCGGCGTGCTCGCCAACCTGCTGGCCGGCGTGACCACGATCCTGGCCGGCCGCCTGGACGACCGTCTCGGGCCGCGGTCGGTCATCCTGTGGTCCCTGGTGGCACTGATCACGTGCATCGTCGTGGTCGTCGCGCTCCTCCCGGCGGGCAAGACGGCCTTCTGGGTCGCCGGCCTGACCCTGACCCTGTTCGTCGGTCCCGCGCAGGCGGCGTCCCGGTCCTTCCTTGCCCGCGTGACCCCGGCCGGTCACGAGTCGGAGATCTTCGGCCTGTACGCCACCACCGGGCGGGCAGTGTCGTTCCTGACCCCGGCGCTGTGGACCGCGATCATCGCGCTGACGGGCGCGACGATCTGGGGTGCGCTCGGCATCGCCGCGGTGCTCCTGGCCGGGCTGGTCCTCATGCTGGCCGTCACCGACCCGCTCGAACGCTGAMSDTTPTTPSGAESVPFDSLPAAERRRRVRSWALWDWATQPYNTVILTFVFTALYLNSDAFLDPAVAALGENDPVRERALADLSSGLGAWITVGGVLVALLAPVLGRRADVAGRRKAWLAAGTVVLVVAMFGLGFVRADPAYFALGAALVSLGSVASEIAGVNYNAMLTQVSTPRTVGRVSGLGWGLGYVGGIVALLAVVVATELDFFGMDTSDGMGYRVIAVGCGLWALAFAWPLFRHVPEAPPAADRPRVGFFAGYAQLWRDVVALWRDARTTFWFLLASAVYRDGLAGVFTFGAIVAAVSYRFTDQEVLIFGVLANLLAGVTTILAGRLDDRLGPRSVILWSLVALITCIVVVVALLPAGKTAFWVAGLTLTLFVGPAQAASRSFLARVTPAGHESEIFGLYATTGRAVSFLTPALWTAIIALTGATIWGALGIAAVLLAGLVLMLAVTDPLERNANANANANA
AK018_00793900hypothetical proteinATGCCGCACCCCGTGCGAAGCCTCCAGCGACGCGCCGGACGAACCCTCTTCGAGAAGGTCTCCGGCGGCGCCGCCGGACGCGTCGAACGCGAACGCATCCACACCAGCCCCGGGCCCCGCTGGTTCGACGACGACTCCGCCGTCGCCCGCGTCCACGGCGACGCCTCCATGTTCCCCGGCGGGCTGCGCGCGCTGCTGCTGCAGTCCCTGCACCCCGCCGCGATGGCCGCCGTCGCCTCCCACTCCGGCTACCGCGGCGACCCCTGGGGCCGCCTGGGCCGCACCTCCACGTTCCTCGCCCGCACCACCTTCGCGACCGCCACCGACGCCCAGGAAGCCGTCGACGTCGTCCGCGCCGTGCACGCCCGCATCCGCGGCACCACCCCCGAGGGCCTCGCCTACGCCGCCGACGACCCCTGGCTGCTGCGCTGGGTCCACACCGCCGAGGTCGACAGCTTCCTCACCGCGCACCAACGCTTCGGCGCCCGGCCGCTCGACGCCGCCCGCTGCGACGCCTACCTCGCCCAGGCCGCCACCGTCGCCGACCGGCTCGGCGCCGCCGACCCGCCCCGCACCGTCGCCGCGCTGCACGCCGCCCTCGAGGAGTTCCGGCCCGAGCTCGCCGCCACCCCCGCCTCCGACGACGTCGCCCGGTTCCTGCTCGGCGAACCACCGCTGCCCCGGATCGCCCGCGCCCCCTACGCCCTCCTCGCCGCCGGCGCCTACGGCACCCTGCCCCCCTGGGCGCAGGACCTGCTCCCCGCCCCCTGGCCCCTGCACGGCGACCCCGCCCCCGTCCGCGCCGGCGGACGACTGGCCACCCGGGCCATCCGCTGGGCGCTCGCGGGCGACCCCCCGCCCGTGCGCGACCCGGACGCGGACCCCGACCGGGTGCGCTGAMPHPVRSLQRRAGRTLFEKVSGGAAGRVERERIHTSPGPRWFDDDSAVARVHGDASMFPGGLRALLLQSLHPAAMAAVASHSGYRGDPWGRLGRTSTFLARTTFATATDAQEAVDVVRAVHARIRGTTPEGLAYAADDPWLLRWVHTAEVDSFLTAHQRFGARPLDAARCDAYLAQAATVADRLGAADPPRTVAALHAALEEFRPELAATPASDDVARFLLGEPPLPRIARAPYALLAAGAYGTLPPWAQDLLPAPWPLHGDPAPVRAGGRLATRAIRWALAGDPPPVRDPDADPDRVRNANANANANA
AK018_00794915hypothetical proteinGTGTCGGCGCCGGTGGGCCCGGCGACCCTGGTGCGGCGCGCAGACGGGCTGTCGGCGCCGCGCGGCTACGTGCTGCACGTGCACGGGTACAACGACTACTTCTTCCAGACCCAGCTGGTCGACGCCCTCGCGCAGGTGGGCCTGGAGTGCTGGGCGGTGGACCTGCGCCGCGCCGGCCGGTCGCTGCTGCGCGACGACGGCGGTCCGGCCGCGGGGGCCCCGCCGCACTTCGCGGCGTCGCTGCGGGAGTTCGGCGCGGACCTGGACGCCGCGCTGGCGGTGCTGCGGGCGCGGGCGGAGGGCGCACCCGTCGCGGTGCACGCGCACTCCACCGGCGGGCTGACGGCGGCGATGTGGACGCACGCGCGCGGCGTCCGCGGGCCGGACGCCCTGGTGCTGGACTCGCCGTTCCTGGACCTGACCGGGTCGTGGCTGTCGCGGCAGGTCAGCTCCGGCGTGCTGGGCGTGCTCGGCCGGATGCGCCCGCTGGCGGTGCTGAGCACGCATCCGTCGGTGTACGCCACGTACCAGCACGTCGATGCGGGCGGGCGCTGGGAGTTCGACACCCGGCTGAAGAAGCCCGAGGGTCAGCCGGTGCGGGCGGCCTGGCTGCGGGCCGTGCGGCGCGCCCAGCTGCGGCTGGCCCGCGGGCTGGCGATCGCCTGCCCGGTGCTCGTGGGACGCTCGGCCGCCAGCGGGGTGGACAGCCCCGCCAACCCCCGCCTGGACGCTCAGGACACCGTGCTGGACACCCGCCGCATCGCGGCGCTGGTGCCGCGCCTCGGTCCCGACGTGGCCGAGACGGTCGTCGACGGCGCGGTGCACGACCTGCTGCTGTCGGCGCCACCCGCGCGGGAGGCGTACCTGACGGCGGTCACGGAGTTCCTGTCGGCACGACTCGGAGGAGACACATGAMSAPVGPATLVRRADGLSAPRGYVLHVHGYNDYFFQTQLVDALAQVGLECWAVDLRRAGRSLLRDDGGPAAGAPPHFAASLREFGADLDAALAVLRARAEGAPVAVHAHSTGGLTAAMWTHARGVRGPDALVLDSPFLDLTGSWLSRQVSSGVLGVLGRMRPLAVLSTHPSVYATYQHVDAGGRWEFDTRLKKPEGQPVRAAWLRAVRRAQLRLARGLAIACPVLVGRSAASGVDSPANPRLDAQDTVLDTRRIAALVPRLGPDVAETVVDGAVHDLLLSAPPAREAYLTAVTEFLSARLGGDTNANANANANA
AK018_00795783ugpQ_1COG0584Glycerophosphodiester phosphodiesterase, cytoplasmicATGACGGACGGGCACCCGTACTTCGGCGCTCGCGGCGAGGTGGCGGCGCTGGCGCACCGCGGGTTCTCCCACAACGCGGAGAACCTGGAGAACTCCATGGCGGCGTTCGCCGCCGCGGTGGACCTGGGGTACCGGTACGTCGAGACCGATTCGCACGGGACGCGCGACGGCGTGGCGGTCGCCCTGCACGACTCCGACCTGGACCGGACGACCGACGGTCACGGTGCCGTGGCCGACCTGTCCTGGGCGGAGGTGTCCCGGGCTCGGATCGGTGGCACGGAACCGGTGCCGCGACTGGACGAGCTCCTCGACGCCTGGCCCGACCTGCGGGTCAACATCGACGTCAAGGGTGACTCCGGCGTCGATCCGACCGCGGCGGCGATCGAGCGCACGGCCAGCCACGACCGGGTGTGCGTCACGTCGTTCTCCCCGCGCCGACGCCGGGCGACGCTGGCCCGGTTGTCCCGCCAAACGGCGACGAGCGCCGGGATCGGCGAGGTGGTCGGGTTCCTCGCCGGTGCCCGGCTGCGGGTGCCGGGGCTGGTGCGGCGCGCGCTGCGCGACGTCGACGCGCTGCAGGTCCCCCGTTCCCAGGGTGTGCTGACCGTGGTCGACGCGGCGACGGTGGCCGCGGCGCACCGGGCAGGTCGCCACGTGCACGTGTGGACCGTCGACGAGCCGGACGAGATGCGCCGGCTGCTCGACCTCGGCGTCGACGGGATCGTCACCGACCGCGCCGACCTGCTGCGCGACGTGCTGCGCGAGCGCGGACTCTGGCACTGAMTDGHPYFGARGEVAALAHRGFSHNAENLENSMAAFAAAVDLGYRYVETDSHGTRDGVAVALHDSDLDRTTDGHGAVADLSWAEVSRARIGGTEPVPRLDELLDAWPDLRVNIDVKGDSGVDPTAAAIERTASHDRVCVTSFSPRRRRATLARLSRQTATSAGIGEVVGFLAGARLRVPGLVRRALRDVDALQVPRSQGVLTVVDAATVAAAHRAGRHVHVWTVDEPDEMRRLLDLGVDGIVTDRADLLRDVLRERGLWHPGPT0018470_5377DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
AK018_007961143aroB_1COG03373-dehydroquinate synthaseATGACGGTCCGCGTGACCGTGTCCGGTGACACGCCCTACGACGTCGTGATCGGCCGCCATCTGCTCGGCGAGATCCCCTCGCTGCTGGGCGAGGGGGTGCGGCGCGTGCTGGTCATGCACCCGGCGCCCCTGCAGGCGACCGGTGACGCCGTGCGCGAGGACCTCGCCGCCCAGGGCTTCGAGGCGTTCGCCGCCGAGCTGCCCGACGCCGAGGAGCAGAAGACCGCCCAGGTCGCGGCGTTCTGCTGGCAGGTCATGGGGCAGGCCGACTTCACGCGGTCCGACGCGATCGTGGCCGTCGGCGGCGGCGCGACGACGGACCTGGCCGGGTTCGTCGCCGCCACCTGGCTGCGCGGCATCCGGGTCGTGCACGTGCCGACCACGCTGCTGGCGATGGTCGACGCCGCCGTGGGTGGCAAGACGGGCATCAACACCGCCGAGGGCAAGAACCTGGTGGGCGCGTTCCACCCTCCGGCGGGGGTGCTGTGCGACCTGGCGGCCCTGGAGTCGCTGGAGCGCTGGGACCTCGTGGCGGGGATGGCCGAGGTGATCAAGACGGGCTTCATCGCGGACGAACGCATCCTGGAGCTGGTCGAGGCCCATGCGGAGCAGATCCGCGAGTGGGCGGGCGCGGACGCCACCGAGGACACCTGGGCCGTGCTGACCGAGCTCATCGAACGGTCGGTGCGCGTCAAGGCGCGCGTGGTGGGGGAGGACCTCACCGAGCAGGGTGTGCGCGAGATCCTCAACTACGGCCACACCCTCGGCCACGCCGTCGAGCTCGTCGAGCGCTACCAGCTGCGCCACGGCGCGGCGGTCGCCGTGGGCATGGTGTTCGCCGCGGAGCTCGGCCGGCTCGGCGGGAAGCTGGACGACGCCGTCGTGGACCGGCACCGCGAGATCCTGACGGCCGTCGGCCTGCCGACCACCTACCGCGGCGACCGGTGGGACCAGCTGCTGGCCGCGATGCGCCGCGACAAGAAGGCCCGCGGCGACCTGCTGCGCTTCGTCGTCCTGGACGACGTCGCCAAGCCGGTGCGGCTCGAGGGCCCCGACCCGACCGTGCTCGCCGCGGCGTACGCGGAGATCTCCAAGGAGCCGCCGTCGGGCAGCCCGGGCGTCACCGTCCAGCTCACCCCCTGAMTVRVTVSGDTPYDVVIGRHLLGEIPSLLGEGVRRVLVMHPAPLQATGDAVREDLAAQGFEAFAAELPDAEEQKTAQVAAFCWQVMGQADFTRSDAIVAVGGGATTDLAGFVAATWLRGIRVVHVPTTLLAMVDAAVGGKTGINTAEGKNLVGAFHPPAGVLCDLAALESLERWDLVAGMAEVIKTGFIADERILELVEAHAEQIREWAGADATEDTWAVLTELIERSVRVKARVVGEDLTEQGVREILNYGHTLGHAVELVERYQLRHGAAVAVGMVFAAELGRLGGKLDDAVVDRHREILTAVGLPTTYRGDRWDQLLAAMRRDKKARGDLLRFVVLDDVAKPVRLEGPDPTVLAAAYAEISKEPPSGSPGVTVQLTPPGPT0012865_482DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012865-aroA-K01735NANA
AK018_00797528aroK_1COG0703Shikimate kinaseATGAGCGCGACGCGTCCCCGGGCGGTCCTGACGGGCCCGCCCGGCAGCGGCAAGACGACGGTGGGCCGGCTGCTGGCCGAGCACCTCGGGGTCGCGTTCCGCGACACGGACGCCGACGTCGAGGAGCTCGCCGGCAAGGCGGTGCCCGACATCTTCGTCGAGGACGGCGAACCGCACTTCCGCGACCTGGAGCGCGAGGCCGTCACCACCGCCCTGGCCACCCACGACGGGATCCTCGCGCTCGGCGGCGGAGCCGTGATGGACGCCCACACCCAGCGCGCGCTGACCGGGTACGCGGCCGACGGCGGCACCGTGGTCTTCCTCGACGTCTCCCTGGCCCACGCCGCACCCCGGGTCGGGTTCAACCAGTCCCGCCCGCTGCTGGTCGGCAACCCGCGGGCGCGCTGGGCCGAGCTCATGCAGGCCCGCCGCCCCACGTACGAACGACTGGCGACGCTGCTGGTGCACTCCGACGAACGCACCGCCGCGCAGGTCGCCGCCCAGATCCTCGAGGAGGTCCGCCCATGAMSATRPRAVLTGPPGSGKTTVGRLLAEHLGVAFRDTDADVEELAGKAVPDIFVEDGEPHFRDLEREAVTTALATHDGILALGGGAVMDAHTQRALTGYAADGGTVVFLDVSLAHAAPRVGFNQSRPLLVGNPRARWAELMQARRPTYERLATLLVHSDERTAAQVAAQILEEVRPPGPT0012900_2225DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012900-aroL|aroK-K00891NANA
AK018_007981218aroC_1Chorismate synthaseATGCTGCGCTGGTTGACCTCGGGAGAGTCGCACGGTCAGGCCCTGGTGGGCCTCATGGAGGGGCTGCCCGCGGGCGTCGAGCTCGTCACCTCCGACATCCAGGACGCCCTGGCCCGTCGTCGCCTCGGCTACGGTCGCGGCGCGCGGATGAAGTTCGAGAAGGACGAGGTGCGGGTCCTGGGCGGGCTGCGCCACGGCGTCACCCAGGGCGGGCCGCTGGCCATCGAGATCGGCAACACCGAGTGGCCGAAGTGGACCGACGTCATGTCGGCGGACCCGGTGGATCCGGAGGCGCTGCTGGTCGACGCCGGCACCGGTGACGAGCGCGAGATCGCCCGCAACCGTCCGCTGACGCGACCGCGGCCGGGGCACGCCGACCTGGTGGGCATGCGCAAGTACGGCTTCGACGACGCCCGGCCGGTCCTGGAGCGTGCGAGCGCCCGCGAGACGGCGACTCGTGTGGCGCTCGGGACGGCGGCGGCGAAGTTCCTGGAGCAGGCGCTCGGGATCCGGCTGGTCAGCCACGTGACGGCGATCGGCACGGTCGAGGTGCCGCAGGACGCCGACCTGCCGGCACCCGAGGACCTCGCCGCGCTGGACGCGGACCCGGTGCGGTGCTTCCACGGGCCCACGAGCGAGGCGATGGTCGCCGAGATCGACGCGTGCCGCAAGGACGGCGACACCCTCGGTGGTGTCGTGGAGGTGCTCGCCTACGACGTGCCGACGGGCCTGGGGACCTACGCCCACTCCGACCGGCGCCTCGACGCCCGGCTCGCCGGCGCCCTGATGGGCATCCAGGCGATCAAGGGCGTCGGCGTCGGCGACGGGTTCCGCACGGCGCAGCGACGTGGCTCGGCCGCGCACGACGAGATCGCCCGGGACGCCGACGGGCGCATCGTGCGCCGCTCCAACCGGGCCGGCGGCATCGAGGGCGGCATGACCAACGGCGAGGTGCTGCGCGTCTCGGCGGCGATGAAGCCCATCTCCACGGTGCCGCGTGCCCTGGCGACCGTCGACGTCGCCACGGGCGAGGAGGTCACCGCCCACCACCAGCGTTCCGACGTGTGCGCGGTGCCGCCCGCGGCCGTCGTCGCGGAGGCGATGGTCGCCCTCGAGCTCGCGCAGGCCGTCCTGGAGAAGTTCGGCGGCGACTCGGTCGCGGAGGTGCGGCGCAACGCCGAGGCGTACCTGGCCTCGATCCCCGAGCTGCTGCGATGAMLRWLTSGESHGQALVGLMEGLPAGVELVTSDIQDALARRRLGYGRGARMKFEKDEVRVLGGLRHGVTQGGPLAIEIGNTEWPKWTDVMSADPVDPEALLVDAGTGDEREIARNRPLTRPRPGHADLVGMRKYGFDDARPVLERASARETATRVALGTAAAKFLEQALGIRLVSHVTAIGTVEVPQDADLPAPEDLAALDADPVRCFHGPTSEAMVAEIDACRKDGDTLGGVVEVLAYDVPTGLGTYAHSDRRLDARLAGALMGIQAIKGVGVGDGFRTAQRRGSAAHDEIARDADGRIVRRSNRAGGIEGGMTNGEVLRVSAAMKPISTVPRALATVDVATGEEVTAHHQRSDVCAVPPAAVVAEAMVALELAQAVLEKFGGDSVAEVRRNAEAYLASIPELLRPGPT0012875_476DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012875-aroB-K01736NANA
AK018_00799882aroE_1COG0169Shikimate dehydrogenase (NADP(+))ATGGGCGCTCCTCGTCGCGCGGCCGTCCTCGGACACCCGGTCGCGCACTCGCTGTCGCCCACGCTGCACGGCGCCGCCTACGAGGCCCTGGGCCTGGAGGGCTGGCGGTACACGGCGATCGACACGACGGTCGAGCAGCTGCCCGACGTGGTCCGTGACCTGGACCTCGGCTGGGCAGGGCTCAGCGTCACGATGCCGCTCAAGCACGCCGTGATGGAGCTCGTCGACCACGTCGACCCGCTCGCGGTCGCGGTGGGCGCCGTGAACACGGTCCTGGTCTCCCCGTCGCGGTGCGGGGTGACCCTGACGGGCACCAACACCGACGTCTACGGCCTGGTCACGGCGATCCGGGAGGGCCTGGCGCAGCGGCACGGCACGCATGACGTCGAGGTGGGCCGCGCCGTCGTCCTCGGTGGGGGAGCGACGGCTGCTTCCACGCTGGCCGCGCTCGGGGAGCTCGGCTGCACGACGCCGCGGGTGCTGGCGCGCAACCTCGCCCGGACGGCTCCGCTGCAGGAGGCGGCCACCCGGATGGGGGTCACGCCCCGCTTCGACGTGCTGGACGTCGCGGCGACGCCCGAGGTGCTGGCCGGGGCCGACGTGGTGGTGTCCACGATGCCGGCGTACGCCGCCGACCCGATCGCCGACGCCCTGCGGGGCCGGGGTGCCGGCACCGCGGGCGTGCTGCTGGACGCGGTCTACGACCCCCGTCCGACCGCGCTGTCGCGGGCCTGGGCCGACACGGGAGGGACCGTCGTCGGCGGTGAGCGGATGCTGCTGCACCAGGCGGTCGAGCAGGTGCGGCTGATGACGGGCCGGACGGCGCCGGTGGCGGCGATGGACGCCGCCCTGCAGGCGGCACTGGTGACCGAGGCCGCCTGAMGAPRRAAVLGHPVAHSLSPTLHGAAYEALGLEGWRYTAIDTTVEQLPDVVRDLDLGWAGLSVTMPLKHAVMELVDHVDPLAVAVGAVNTVLVSPSRCGVTLTGTNTDVYGLVTAIREGLAQRHGTHDVEVGRAVVLGGGATAASTLAALGELGCTTPRVLARNLARTAPLQEAATRMGVTPRFDVLDVAATPEVLAGADVVVSTMPAYAADPIADALRGRGAGTAGVLLDAVYDPRPTALSRAWADTGGTVVGGERMLLHQAVEQVRLMTGRTAPVAAMDAALQAALVTEAAPGPT0012890_764DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014NANA
AK018_008001158mltG_1Endolytic murein transglycosylaseGTGACGGACCTCTTCGAGCCCTCCACGGCACACCGCCCGGCGGCCCCGCCGCCGTCGCGGGGCCGCTCGGCGGCGAGCAAGCGAGCCGCTCGCAAGCGCAAGCGGCGTCGCCAGCAGCGCACGGCGTTCATCCTGATCGTCCTGCTCGGCGTGCTGGGCGTGGGCGGCTACTTCCTGTTCGACCGGGTCGGTGACGTCGTCGCCGGCTTCGAGAACCCCTTCGACTCCGCGCCGGAGGACTACGCCGGCCCCGGGGTCGACCCGGTGCAGGTGGAGATCCCCGAGGGCGCGACCGGCGCGATGATGGGCGAGGAGCTCGTCGAGGCCGACGTCGTGGCGTCGGTGGGTGCCTTCAACGCGGCGTTCGAGGCGACGCCGGGTGCCGCCGGCATCCAGCCGGGCACGTACGAGCTGCTCACCCAGATGAACGCCGCCGACGCCGTCGAGGCCCTGGTGGCGAACGAGAAGGTGGAGATCTCGGTGACCATCCCCGAGGGGTTCACCGTCGAGCAGGTCGTCGACAAGGTCGCCTCGGTCACCTCGATCACCCGGGAGGACATGGAGGCGGCGCTGGAGTCGCCGAAGAAGATCGGGCTGCCCGGGGCGGCGGACGGGAACGCCGAGGGCTGGCTCTTCCCGAAGACGTACGCCGTCCAGCCGGGCGACACCGCCGAGGACCTCCTGAAGACGATGGTCGACCAGACGAAGGCCGAGCTGGACTCGCTCGGCGTGTCGGGCGGCGACCGCCAGGACGTGCTGAACAAGGCCTCGATGGTTGAGCGTGAGGCCCAGAACGACGAGGACCGCGGCAAGGTGGCCCGCGTCCTGGAGAACCGCCTCGAGGTCGGCGACGCCCTCGGGATCGACGCCACGCTGGCCTACGGCCTGGGCAAGCCCGCGCACGAGATCACCGTCTCGGAGTGGGAGGACGCCAGCCTGCCGTACAACACGCGCGCCAACGTCGGTCTGCCGCCGACCCCGATCGCGAACCCGGGTGCGGCGTCCGTCGAGGCGGTCGCGAACCCGCCGGAGGGTGACTGGCTCTGGTACGTGACGGTGAACCTGGAGACCGGGGAGACGAAGTTCACGGACAACTACCAGGAGTTCCTCGGTTTCCGGAACGAGTACCAGGAGTGGGCCGCGGAGAACGGCTACTGAMTDLFEPSTAHRPAAPPPSRGRSAASKRAARKRKRRRQQRTAFILIVLLGVLGVGGYFLFDRVGDVVAGFENPFDSAPEDYAGPGVDPVQVEIPEGATGAMMGEELVEADVVASVGAFNAAFEATPGAAGIQPGTYELLTQMNAADAVEALVANEKVEISVTIPEGFTVEQVVDKVASVTSITREDMEAALESPKKIGLPGAADGNAEGWLFPKTYAVQPGDTAEDLLKTMVDQTKAELDSLGVSGGDRQDVLNKASMVEREAQNDEDRGKVARVLENRLEVGDALGIDATLAYGLGKPAHEITVSEWEDASLPYNTRANVGLPPTPIANPGAASVEAVANPPEGDWLWYVTVNLETGETKFTDNYQEFLGFRNEYQEWAAENGYNANANANANA
AK018_00801504COG0816Putative pre-16S rRNA nucleaseGTGAGTGATGCTCTGCCGCGGGGCGCTCGCCTCGGGGTCGACGTCGGCAAGGCCCGGATCGGGCTGGCCGGCTCGGACCCCGACGGGCTGGTCGCCACGCCGGTCGAGACGGTCGCGCGTGTCCTGTCCGTGCCGAGGACGACGGACGGCACGCCGGCGGTCACGGCTGACGTTGCGCGGATCGCGGCGGAGGCTGCCGACCGGTCCGCCGCCGTCGTCTACATGGGCCTGCCGCGCCACCTGTCGGGCAACGAGGGTGCGGCCACGGCGGACGCCCGGGAGTTCGCCGGCAGGCTGGCCCGGGAGATCGATCCGGTGCCGGTCCACCTGGTCGACGAGCGGATGACAACGGTCACGGCGCACGCCCAACTCCGCTCCGCCGGTCGCAAGACCGTCAAGCACAGACCTGTCATCGACCAGGCGGCAGCCGTTATCATCTTGCAACATGCACTCGATGCGGAGCGGGCCTCGGGCACGAGGGCCGGCGAACGCCTCGAGTCGTGAMSDALPRGARLGVDVGKARIGLAGSDPDGLVATPVETVARVLSVPRTTDGTPAVTADVARIAAEAADRSAAVVYMGLPRHLSGNEGAATADAREFAGRLAREIDPVPVHLVDERMTTVTAHAQLRSAGRKTVKHRPVIDQAAAVIILQHALDAERASGTRAGERLESNANANANANA
AK018_008022697alaS_1COG0013Alanine--tRNA ligaseATGCGCACCGCCGACATCCGCCAGCGCTGGCTCGACTACTTCCGGTCCAAGGACCACGAGATCGTGCCCAGCGTGCCCCTGGTCTCGCCGGACCCGTCGATCCTGTTCACGATCGCCGGCATGGTGCCCTTCATCCCGTACATCCTCGGCACGGAGACGGCGCCGTGGCCGCGGGCCGCGAGCGTGCAGAAGTGCATCCGCACCAACGACATCGAGAACGTCGGGCGCACCACCCGGCACGGCACGTTCTTCCAGATGAACGGCAACTTCTCGTTCGGCGACTACTTCAAGCGCGAGGCCATCGACTTCGCGTGGGAGCTGCTGACCACCGCGCAGGCCGACGGCGGGTACGGCCTGGACGGCGACCGGCTGTGGGTGACGCTGTGGGAGCAGGACGCCGAGGCCTACGACGCGCTGACGCAGGGCATCGGCCTCGACCCGAAGCACATCGTGCGCCTGCCGCGCGAGGAGAACTTCTGGGACACCGGTCAGCCCGGTCCGGCCGGCCCGTGCGCCGAGTGGCACTACGACCGCGGCCCGGCCTACGGACCGGAGGCCGAGGGCGGCACGGTCGACCCGGGCGGCGACCGGTACCTGGAGATCTGGAACCTCGTCTTCGACCAGTTCGTGCGCGGCGAGGGGCAGGGCAAGAACTACCCGCTGCTGGGCGAGCTCGACCACAAGAGCATCGACACCGGCGCCGGCCTGGAGCGGATCGCGTACCTGCTGCAGGGCAAGGAGAACCTCTACGAGATCGACGAGGTCTACCCGGTCATCGCCACGGTGGAGGAGATGACGGGCAAGCGGTACGGCGCGAACGGCGAGGACGACGTGCGCATGCGCGTGGTCGCCGACCACGTGCGCTCGGCGATGATGGTCATCGGCGACGGCGTGCGCCCGGCCAACGAGGGGCGCGGCTACGTGCTGCGCCGCCTCATCCGCCGCGCGGTGCGTGCGGTGCGTCTGCTCGGCGTCGACGACGTCGCGCTGCCCTCCCTGCTGCCGGTGTCCAAGGACGCCATGAAGGCCTCCTACCCGGAGCTCGAGACCGACTTCGCGCGCATCAGCGACGTGGCCTACGGCGAGGAGGACGCCTTCCGGCGCACCCTGGCCGCCGGCACCACCATCCTGGACACCGCCGTCGCGCGGGCGAAGGACCAGGCCCACGGCGGTGCGGTCGTCCTGGGCGGGGACGAGGCGTTCGCGCTGCACGACACCTACGGGTTCCCGATCGACCTGACCCTGGAGATGGCGGCCGAGCAGGGCGTCCAGGTCGACGAGAAGGCGTTCCGCGACCTGATGACGGCGCAGAAGGAGCGGGCGCGCGCCGACGCGCTGGCGAAGAAGACCGGTCACGCGGACCTGCGCGCCTACGAGAGCCTGTCCAAGGACCTGACGGCGCCGGTCGAGTTCCTCGGCTACACGGACGCCCAGGCGGCGGTGAACGTGGTCGGGCTGCTGGTCGACGGCGTCTCCGCGCCGGCGGCGACGGCTCCCGCGGACGTCGAGATCGTCCTGGACCGGACCCCGTTCTACGCGGAGGCCGGCGGCCAGCTCGCCGACCAGGGCACGATCGCCCTGGACTCCGGCGCGGTCGTGGAGGTCGACGACGTGCAGCGTCCGGTCGCGGGGCTGTCGGTGCACCGGGGTCGGTTGACCGAGGGCACGGTGAGCCTCGGCGACCCGGGCACGGCGTCGATCGACACCGGACGGCGCGTGGCGATCAGCCGGGCGCACTCCGCGACGCACATGATCCACAAGGCGTTGCACGAGCTCGTCGGGTCGGACCGGACGCAGGCGGGGTCGGAGAACGCCCCGAGCCGCATCCGCTTCGACTTCCGCTCGCCGGCCGCGGTGCCGGCGTCGGCGTTGTCCGAGATCGAGGAGCGCGTCAACACGCGGCTGACGGAGAACCTCGAGGTCACCGACGCGACGATGCCGCTCGCGGACGCCAAGGCGATGGGTGCGATGGCGCTCTTCGGGGAGAAGTACGGCGAGAACGTCCGTGTCGTCTCCATCGGCGGGGAGTGGTCCCGCGAGCTGTGCGGCGGCACCCACGTCCGGGCGACCGGAGAGCTGGGCCGCGTGGCGCTGCTGGGCGAGTCGTCGATCGGGTCCGGGGTGCGCCGCGTCGACGCCCTCGTCGGGGACGGTGCCTACGGGTTCCACGCCAAGGAGCACGCGCTGGTCGGCCAGCTCACGGGCATGCTGAACGCGCGCCCGGAGGAGCTCACGGACCGCGTGGGGTCGCTCATGAGCCGGTTGAAGGACACCGAGAAGGAGCTCGCCACCCTGCGTCAGGGCCAGCTGCTGGCGACCGCCGGCAACCTGGCCGCCGAGGCGCAGACGGTCGGCACGGTGCGCGTCGTGACGCACGACGCCGGGGAAGTCGCCTCGGCGGACGACCTGCGTGCGCTCGTCCTCGACGTGCGCGGGCGGCTCGGCGAGGCCGACCCGGCGGTGGTGGCCGTGGCGGGCGTGGCGAACGGTCGTCCGCTCGTGGTGGTCGCCACGAACGCGGGGGCCCGCGACGCAGGCCTGCGCGCCGGCGACTTCGTCAAGGCCGCCGCCAAGACGCTGGGCGGCGGTGGCGGCGGCAAGCCGGACCTGGCCCAGGGCGGCGGCTCCGACGCGACCGCCGTTCCGATGGCGCTGCAGGGCGTGACGAACGGGGTGCGGGGGTCCGTCGGTGAGTGAMRTADIRQRWLDYFRSKDHEIVPSVPLVSPDPSILFTIAGMVPFIPYILGTETAPWPRAASVQKCIRTNDIENVGRTTRHGTFFQMNGNFSFGDYFKREAIDFAWELLTTAQADGGYGLDGDRLWVTLWEQDAEAYDALTQGIGLDPKHIVRLPREENFWDTGQPGPAGPCAEWHYDRGPAYGPEAEGGTVDPGGDRYLEIWNLVFDQFVRGEGQGKNYPLLGELDHKSIDTGAGLERIAYLLQGKENLYEIDEVYPVIATVEEMTGKRYGANGEDDVRMRVVADHVRSAMMVIGDGVRPANEGRGYVLRRLIRRAVRAVRLLGVDDVALPSLLPVSKDAMKASYPELETDFARISDVAYGEEDAFRRTLAAGTTILDTAVARAKDQAHGGAVVLGGDEAFALHDTYGFPIDLTLEMAAEQGVQVDEKAFRDLMTAQKERARADALAKKTGHADLRAYESLSKDLTAPVEFLGYTDAQAAVNVVGLLVDGVSAPAATAPADVEIVLDRTPFYAEAGGQLADQGTIALDSGAVVEVDDVQRPVAGLSVHRGRLTEGTVSLGDPGTASIDTGRRVAISRAHSATHMIHKALHELVGSDRTQAGSENAPSRIRFDFRSPAAVPASALSEIEERVNTRLTENLEVTDATMPLADAKAMGAMALFGEKYGENVRVVSIGGEWSRELCGGTHVRATGELGRVALLGESSIGSGVRRVDALVGDGAYGFHAKEHALVGQLTGMLNARPEELTDRVGSLMSRLKDTEKELATLRQGQLLATAGNLAAEAQTVGTVRVVTHDAGEVASADDLRALVLDVRGRLGEADPAVVAVAGVANGRPLVVVATNAGARDAGLRAGDFVKAAAKTLGGGGGGKPDLAQGGGSDATAVPMALQGVTNGVRGSVGENANANANANA
AK018_00803363hypothetical proteinATGATCCGCCGACTGTTCTGGGTGGGCGTCGGCGTCACGATCACCGTGGTGGTCATCCGTCGCGGGCGTCGGGTCGTGGCGCGGTACACCCCCGAGGCGATGGCGCAGCGCGCCGAGGACCTGGGCCGTGACGTCTCGCGCCGGTCGGCCACGTTCGTGGCGACGTTCCGCGAGGAGTTCGGGGCCGCCCGCGCCGCGCGGGAGGCCGAGCTGGTCGCCGCCCTGCTCGCCGAGGGCCAGACGCACCCCGACGACGTCGAGCCGCGCCCCCGTCACGGCCGGCACGCCGCCGCGGGGAGCGCCGGTGCCGCCGCCGAGGCGGCGACCCGTGCCGACGAGGACGAGCTCGGCTACTCGTTCTGAMIRRLFWVGVGVTITVVVIRRGRRVVARYTPEAMAQRAEDLGRDVSRRSATFVATFREEFGAARAAREAELVAALLAEGQTHPDDVEPRPRHGRHAAAGSAGAAAEAATRADEDELGYSFNANANANANA
AK018_00804384hypothetical proteinATGTCCGTTGGCGACGTGGCCGGCCTGGTGGCCGCCATCGCGTTCGTGCTGCTCGTGGGCCTCCTGGCCGTCCCGCTGGTGAAGCTGGGACGCACCCTGGACGAGACCTCGCGCAGCATCCGGGAGCTGACGGAGCACTCGGTGCCGATCCTCGACGAGGCCGCCACCACGGTGGCCTCCACGAACGACCAGCTCGTCAAGGTGGACACGATCACGACCTCGGCCGCCCAGGTCAGCGAGAACGTCTCGGCGCTGGCCGGGCTGTACGCCTCGACGTTCGGGCGCCCCCTGATCAAGGTCGCGTCGTTCTCCTACGGCGTGCGCCAGGGTCTGGCGAAGGCCTGGCGCCGCTCTGGCTCGGACGACGCCGGTGGCTCCCGATGAMSVGDVAGLVAAIAFVLLVGLLAVPLVKLGRTLDETSRSIRELTEHSVPILDEAATTVASTNDQLVKVDTITTSAAQVSENVSALAGLYASTFGRPLIKVASFSYGVRQGLAKAWRRSGSDDAGGSRNANANANANA
AK018_00805627rpsD_130S ribosomal protein S4GTGACTGCAGTCCGCAAGTCGCGCCGCCAGGTGCGCCTGAGCCGCAAGCTCGGTCTGGCCCTCACCCCGAAGGCCGTCCGCCACTTCGAGAAGCGTCCTTACCCCCCGGGTGAGCACGGCCGTGCCCGCCGCCGCACCGAGTCGGACTACGCGGTCCGTCTGCGCGAGAAGCAGCGTCTGCGCGCCCAGTACGCCCTGCGCGAGAAGCAGCTCCTCAAGGTCTACGAGGACGCCCGCAAGCACCCGGGCCTGACCGGTGAGGTCATGGTCGAGGACCTGGAGACCCGCCTGGACGCGCTCGTCCTGCGCGCCGGCTTCGGTCGCACCATCCTGCAGGCCCGCCAGGCCGTGACCCACCGTCACATCCTGGTCGACGGCAAGATCGTGGACCGCCCGTCGTTCCGCGTGAAGCCCGGCCAGACCATCCAGGTCAAGGCCAAGTCGCAGGCCACCACGCCGTTCCAGGTCGCCGCCGCCGGTGCGCACCGCGACGTGCTCCCCGAGGTCCCGGGCTACCTGGACGTCCAGCTCGAGAAGCTGTCGGCCACGCTGACCCGCGCGCCCAAGCGCGCCGAGGTCCCCGTGACCTGCGACGTCCAGATGGTCGTCGAGTACTACGCCCGCTGAMTAVRKSRRQVRLSRKLGLALTPKAVRHFEKRPYPPGEHGRARRRTESDYAVRLREKQRLRAQYALREKQLLKVYEDARKHPGLTGEVMVEDLETRLDALVLRAGFGRTILQARQAVTHRHILVDGKIVDRPSFRVKPGQTIQVKAKSQATTPFQVAAAGAHRDVLPEVPGYLDVQLEKLSATLTRAPKRAEVPVTCDVQMVVEYYARNANANANANA
AK018_008061014hypothetical proteinATGAGCATCTCCGCACCTCCGGGCCGCCCCGGTGGCGACCGTCCGCCCCGCCGATCGCTGCCCACCGTGTACCGGGCCAGCCGGGCCCGTGAGAACGAGACGCGTCGGCGACGACGGCGGGGTGAGCTGGTCCGGGTCCGGCCCGGCGTCTACGCCGCACCCGCCGACGGCGGGGCCGGGTCGCCCGCCCGGCGTGCTGAGAGCGAGCACCTGACCCGGTTGGCCGCCGCGCTGGCCGGTCTGCGCACGCCCGTCTGGGCCAGCCACACCAGCGCGGCCCTGCTGTGGGGGTGCTGGACCTACCGGGTGGGCACGATGGCGCACCTGACCCAGCTCGACCCGCCGGACGTGCGGCGCCCCACCGGTGGCGTCTCGCGGCACTGGACCGACCTGCCGGTCCGCGACCGCACGACGATCGACGGCGTCCCGGCGACCACGCTGGAGCGCACCGCGGTCGACTGCGCCAGGCTGCTGCCCGCCGAGTCGGCCGTCGTGGTCGCCGACTCGGCGCTGCGGCTCGGCGCCGACCGAGCCCTCGTGGCGCGCATCGTCGCGGAGTCGGTCGGCAAGCGCGGGATCCGGTCGGCGCGGCGCGTGCTGGCGGTCGCCGACGGCCGGGTGGAGTCGCCCGGCGAGTCGCGGCTGCGGTGGATCCTGGCGGACGAGGGACTCGACGCTCCGCAGGCCGCCGTCCCCGTCGACACGTGGGTGGGCCGGCGCTGGATCGACCTGGGCTGGCCGGACCTGAAGGTGGGGTTCGAGTTCGACGGCGAGGTCAAGTACACCGGGCTCTCGCCGTCGCAGGCGCGGCGGGTGCTGTCCGAGGAGAAGCGGCGCCACGACGCGCTGCGCGAGGCCGGGTGGACGGTGCTGCGGATCTCGTGGTCCGACCTCGCGGACCGGGAGATGCTGCTCGAGCGGGTGCGACGCGTGCTCGCGCTCGCCGGACACCATCCGCCGAGATACCGGCCGGTCGTCGACGTACCGGTCCGTCGAGCCCGGTCGGTGCGATGAMSISAPPGRPGGDRPPRRSLPTVYRASRARENETRRRRRRGELVRVRPGVYAAPADGGAGSPARRAESEHLTRLAAALAGLRTPVWASHTSAALLWGCWTYRVGTMAHLTQLDPPDVRRPTGGVSRHWTDLPVRDRTTIDGVPATTLERTAVDCARLLPAESAVVVADSALRLGADRALVARIVAESVGKRGIRSARRVLAVADGRVESPGESRLRWILADEGLDAPQAAVPVDTWVGRRWIDLGWPDLKVGFEFDGEVKYTGLSPSQARRVLSEEKRRHDALREAGWTVLRISWSDLADREMLLERVRRVLALAGHHPPRYRPVVDVPVRRARSVRNANANANANA
AK018_008071392COG2256putative AAA domain-containing proteinATGGACCTGTTCAACGCCGCCACCACCGGCGAGCACGGCACCCCGGTCACCCGGCGGACCGGCGCCGGCGCCCCGCTGGCCGTGCGGATGCGCCCCGCGACCCTCGACGAGGTCACCGGGCAGGCCCACCTCCTCGTGCCCGGATCACCGCTGCGACGCCTCGTCGAACCCGCCGACGCCGCCGCCCGGCGCGCCGCCCCCGGCTCCGTCATCCTCTGGGGGCCACCGGGCGTGGGCAAGACCACCCTCGCCTACCTCGTGGCCACCACCTCCGGCCGCCGGTTCGTCGAGCTCTCCGCCGTCACCGCCGGCGTCAAGGACGTCCGCCAGGTCATCGAGGACGCCCGCCGCCGCCTCGCCACCGGGGGCGAGGAGACCGTGCTCTTCATCGACGAGGTGCACCGGTTCTCCAAGACCCAGCAGGACGCCCTGCTGCCCAGCGTCGAGAACCGCTGGGTCACCCTCGTCGCGGCCACCACCGAGAACCCCTCGTTCTCCGTCAACTCCCCGCTGCTGTCCCGCTCCCTGCTGCTCACCCTGCGACCCCTCGGCGCCGACGACGTGCGCGACCTCGTCCACCGCGCCGTCACCGACCCCCGCGGCCTCGACGGCGCCGTGGCGCTCGCGGACGACGCCGAGGACCAGCTGGTCCGGATGGCGGGCGGGGACGCCCGCAAGGCGCTCACGGTGCTCGAGGCCGCCGCCGGTGCCGCCCTCAGCGACGCCCGCGACGAGATCGCCCCCGAGGGCCGGGTCACCGTCGACCTGGACACCGTCGAGCGCGCCGTGGACGTCGCCGCCGTGCGCTACGACCGCGACGGCGACCAGCACTACGACGTCGTCTCGGCGTTCATCAAGTCGATCCGCGGGTCCGACGTCGACGCCGCCCTGCACTACCTGGCGCGGATGGTCGCCGCGGGGGAGGACCCCCGGTTCATCGCCCGGCGCCTCGTGATCTCCGCCGCCGAGGACGTCGGGATGGCCGACCCGTCCGCCCTGCAGACCGCCGTGGCCGCCGCGCAGGCCGTGCAGCTCATCGGGATGCCGGAGGGGCGGATCGTCCTGGCCGAGGCGGTCGTCCACCTGGCCACGGCCCCGAAGTCCAACCGGGCCTACGCCGGGATCGGCGCGGCGCTGGCGGACGTCTCCGCCGGGCGTGCCGGCGTCGTCCCGGCCCATCTGCGCGACGCGCACTACTCCGGGGCGGAGAAGCTCGGGCACGGGTCCGGGTATCTGTACGCCCACGACGAGCCGCACGGCGTGGCGGCCCAGCGCTACCTGCCCGACGAGCTCGCGGGGCGGCGGTACTACGAGCCGAGCGACCGGGGGTACGAGCGGCAGGTCTCCGAACGGCTGGAGCGGATCCGGCAGATCCTGGACTCGGCCCCCTGAMDLFNAATTGEHGTPVTRRTGAGAPLAVRMRPATLDEVTGQAHLLVPGSPLRRLVEPADAAARRAAPGSVILWGPPGVGKTTLAYLVATTSGRRFVELSAVTAGVKDVRQVIEDARRRLATGGEETVLFIDEVHRFSKTQQDALLPSVENRWVTLVAATTENPSFSVNSPLLSRSLLLTLRPLGADDVRDLVHRAVTDPRGLDGAVALADDAEDQLVRMAGGDARKALTVLEAAAGAALSDARDEIAPEGRVTVDLDTVERAVDVAAVRYDRDGDQHYDVVSAFIKSIRGSDVDAALHYLARMVAAGEDPRFIARRLVISAAEDVGMADPSALQTAVAAAQAVQLIGMPEGRIVLAEAVVHLATAPKSNRAYAGIGAALADVSAGRAGVVPAHLRDAHYSGAEKLGHGSGYLYAHDEPHGVAAQRYLPDELAGRRYYEPSDRGYERQVSERLERIRQILDSAPNANANANANA
AK018_008081776hypothetical proteinGTGACGCTCGACGCTTGGCTGACGCTCGCCGTGGTCCTGGGGGTCCTGGCGACGCTGGTGCGCGGGCGGGTCTCCCCCGCGGTGACGGTGTTCTCCGGGGCGGTCGCGGTGATGATCCTGGGTGTGGTGCCCGCGGAGGACGCGTTCTCCGGGTTCTCCAACGCGGCGCCGCTGACGGTGGCGGCGCTGTACGTCCTGGCGGCGGGGATCGAGAAGACGGGTGCGCTGACCCCGGTGATGCAGCGCACGCTGGGCGAGAACGGCTCGTACCGGCGTCCGCTGCTGCGGACGCTGACGCCGACGATGGCGGCCTCGGCGTTCCTGAACAACACCCCGATCGTGGCGATGCTGGTGCCGCAGGTGACGGCGTGGGCGAACCGGCGTCGGCTCGCGGTCTCGAAGATCCTCATGCCGGTGTCGTTCGCGGCGGTCCTCGGTGGTCTGCTGACGGTGATCGGCACGTCGACGAACCTGGTCGTCTCGGGGCAGATGGCGACGCTGGGGCTGGAGGAGATCGGGTTCTTCGAGATCGGCAAGGTGGGTCTGCCGATCGCGTTGCTGGGTTTCGTGGCGCTGGTGGCGCTGGCTCCGGTGCTGCTGCCGGACCGCCGGTCGGCGCGGGCGGAGATGGAGGAGGAGGGTCGCCGGTTCTCGTTCGAGATGGTGGTCGAGCCCGGGGGCCCGGTGGACGGGCGGACGGTCGAGGAGGCGCGCCTGCGTGACCTGTCGGGACTGTTCCTGGCGTCGGTGGACCGCGGCGACACGACGATCGCGCCGGTGCGCCCCGAGACGGTGCTGCGCGGCGGCAACCGGCTGCACTTCGTCGGCCCCCTGGACCGGGTGGTCAAGCTCCAGGAGATGCGGGGGCTGCGGTCGGCGGAGATGGATCACGTGCTGGACCTCGACGAGCCGTCGGTGCGGTACTACGAGGCCGTGGTCGGTTCACGCTCCCCGCTGGTGGGCCGCACGCTCAAGGACGTGGGTTTCCGGGCCACGTACCAGGCGGCCGTGCTGGCCATCCACCGTTCGGGTCAGCTCGTCGAGAGCCGGCTCGGCACGGAACGCGTCCGGCTGGGCGACACCCTGATCCTCGTCAGCGACCCGGACTTCCGGGAGCGGTGGCGCGACCGGGCGGACTTCCTGCTCGTGGCCGAGCTCGACGGCACGCCCCCGAGCGCCACGACGCGCGGCTGGATCCCGGTGGGGCTGCTGGCGGCCGTGGTCGTGCTGGCGGCCACGGGGCTGGTGCCGATCCTGCACGGGGCGCTGGTGGGCGCGATCGTCCTGGTGGCGACGAAGGTGCTCTCACCGCTGGAGGCGCGGCGCGCCATCGACCTGGAGGTGATCGTCGTCATCGCCTCCGCCTTCGGCCTGGCGGCCGCGATGGACGCCTCGGCGCTCGCCCAGATCGTCGCCGACGGGCTCGTGGGCCTGTTCGGCGGGTTCGCGCCCTACGGCGTGCTGCTCGGGCTGGTGCTGGCGACGGTCGTGCTGACCGAGCTCGTCACCAACAACGCCGCCGCCCTGCTGATGCTGCCCGTGGCGGTGAGCACCGCGGGGGCCGCAGGGCTCGACCCGCGAGGGGCGGCGATCGCGGTGGCCGTGGCGGCCTCGGCGTCGTTCCTGTCCCCCATCGGCTACCAGACCAACATGATGGTCTACGGCCCCGGCGGCTACCGCTTCACCGACTACGCCCGACTGGGCTGGATCCTGACGCTGCTGACGGTCGTCCTGACCGTCGTGCTGGTCCCCGTCCTGTGGCCCGCCACCGGCTGAMTLDAWLTLAVVLGVLATLVRGRVSPAVTVFSGAVAVMILGVVPAEDAFSGFSNAAPLTVAALYVLAAGIEKTGALTPVMQRTLGENGSYRRPLLRTLTPTMAASAFLNNTPIVAMLVPQVTAWANRRRLAVSKILMPVSFAAVLGGLLTVIGTSTNLVVSGQMATLGLEEIGFFEIGKVGLPIALLGFVALVALAPVLLPDRRSARAEMEEEGRRFSFEMVVEPGGPVDGRTVEEARLRDLSGLFLASVDRGDTTIAPVRPETVLRGGNRLHFVGPLDRVVKLQEMRGLRSAEMDHVLDLDEPSVRYYEAVVGSRSPLVGRTLKDVGFRATYQAAVLAIHRSGQLVESRLGTERVRLGDTLILVSDPDFRERWRDRADFLLVAELDGTPPSATTRGWIPVGLLAAVVVLAATGLVPILHGALVGAIVLVATKVLSPLEARRAIDLEVIVVIASAFGLAAAMDASALAQIVADGLVGLFGGFAPYGVLLGLVLATVVLTELVTNNAAALLMLPVAVSTAGAAGLDPRGAAIAVAVAASASFLSPIGYQTNMMVYGPGGYRFTDYARLGWILTLLTVVLTVVLVPVLWPATGNANANANANA
AK018_008091857aspS_1COG0173Aspartate--tRNA(Asp/Asn) ligaseGTGCGCCCCGTCGCCGGGCCGCCCGACGACGACACCCCCGACATCGTGCGAAAGGAACCTCCCGTGCTCCGCACCCACACGGCCGGCTCATTGCGGGCCGAGCACATCGACCAGACCGTCACCCTCACGGGCTGGGTCGATCGTCGCCGGGACCACGGAGGAGTGGCCTTCATCGACCTGCGCGACGCCTCCGGCATCGCCCAGGTCGTCATCCGCGACGAGGAGGTCGCCCACCCGCTGCGCTCGGAGTTCGTGCTGCGCGTGGTCGGCGAGGTCTCCCGCCGCCCCGAGGGCAACGCCAACGCCAACCTCGCCACCGGCGACATCGAGGTCATCGCCACCGACGTCGAGGTCCTCAACACCTCCGAGGCGCTGCCCTTCCAGGTCTCCACGGCGCTCGCGGACACCGAGACCATCGGCGAGGAGGCGCGCCTCAAGCACCGCTACCTCGACCTGCGCCGCCCGGCGCCGGCGCACGCCATGCGGCTGCGCGCCAAGGTCAACGCCGCGGCCCGCCGCGTGCTCGACTCGCACGAGTTCGTCGAGGTCGAGACCCCGACGCTGACGCGCTCGACGCCGGAGGGCGCCCGCGACTTCCTGGTCCCGGCCCGCCTGTCGCCCGGCTCCTGGTACGCGCTGCCGCAGTCGCCGCAGCTGTTCAAGCAGCTCCTCATGGTCGGCGGCCTGGAGCGCTACTACCAGATCGCGCGCTGCTACCGCGACGAGGACTTCCGCGCCGACCGCCAGCCCGAGTTCACCCAGCTCGACGTCGAGATGAGCTTCGTCGACCAGGACGACGTGATCGCCCTGACCGAGGAGCTCCTCGCCGAGATCTGGGGCCTGATCGACGTCGAGGTGCCGCGCCCGGTCGAGCGGATCACCTACGCCGACGCCATGCGCCTGTACGGCACGGACAAGCCGGACCTGCGGTTCGCCAACCCGCTCGTCGAGCTCACCGAGTACTTCGCCGACACCCCGTTCCGGGTCTTCCAGAACGAGTACGTCGGTGCCGTGGTGATGCCGGGCGGCGCGGACCAGCCGCGTCGCCAGTTCGACGCCTGGCAGGAGTGGGCCAAGCAGCGCGGCGCCAAGGGCCTCGCCTACGTGACCGTGGCCGAGGACGGCACGCTCGGCGGGCCCGTCGCGAAGAACCTGTCCGAGACGGAGCGCGCCGGCCTCGCCGAGGCCACCGGCGCCCGGCCGGGCGACGCGGTGTTCTTCGCGGCGGGTGCCACGGCGGACTCGCGGGCGCTGCTCGGTGCGGCACGCGTGGAGATCGCCCACCGCACCGGCCAGATCGAGCAGGCGGTGGCCGAGGGCCGCTGGTCCTTCGTGTGGGTCGTCGACGCCCCGCTGTTCAAGCCGGCCGGGGAGGCCGCGCAGGAGGGCGACGTGGCGCTCGGCAGCTCCGCCTGGACGGCCGTGCACCACGCGTTCACGTCCCCGAAGCCGGAGTGGATCGACTCGTTCGAGGCCGACCCGGAGCACGCGCTGGCCTACGCCTACGACATCGTGTGCAACGGCAACGAGATCGGCGGCGGGTCCATCCGTATCCACCGCCGCGACGTCCAGGAGCGCGTCTTCGACGTCATGGGCATCGGTCACGACGAGGCCCAGGAGAAGTTCGGGTTCCTGCTCGACGCCTTCAAGTTCGGTGCGCCGCCGCACGGCGGCATCGCGTTCGGCTGGGACCGGATCGTCGCGCTGCTGACCAAGGCGCCGTCCATCCGCGACGTCATCGCCTTCCCGAAGTCGGGCGGCGGCTACGACCCGCTGACCGACGCCCCGGCCCCGATCACGGCCGAGCAGCGCAAGGAGGCCGGCGTCGACGCCGAGCCCGAGTCCGACCAGGGCTGAMRPVAGPPDDDTPDIVRKEPPVLRTHTAGSLRAEHIDQTVTLTGWVDRRRDHGGVAFIDLRDASGIAQVVIRDEEVAHPLRSEFVLRVVGEVSRRPEGNANANLATGDIEVIATDVEVLNTSEALPFQVSTALADTETIGEEARLKHRYLDLRRPAPAHAMRLRAKVNAAARRVLDSHEFVEVETPTLTRSTPEGARDFLVPARLSPGSWYALPQSPQLFKQLLMVGGLERYYQIARCYRDEDFRADRQPEFTQLDVEMSFVDQDDVIALTEELLAEIWGLIDVEVPRPVERITYADAMRLYGTDKPDLRFANPLVELTEYFADTPFRVFQNEYVGAVVMPGGADQPRRQFDAWQEWAKQRGAKGLAYVTVAEDGTLGGPVAKNLSETERAGLAEATGARPGDAVFFAAGATADSRALLGAARVEIAHRTGQIEQAVAEGRWSFVWVVDAPLFKPAGEAAQEGDVALGSSAWTAVHHAFTSPKPEWIDSFEADPEHALAYAYDIVCNGNEIGGGSIRIHRRDVQERVFDVMGIGHDEAQEKFGFLLDAFKFGAPPHGGIAFGWDRIVALLTKAPSIRDVIAFPKSGGGYDPLTDAPAPITAEQRKEAGVDAEPESDQGNANANANANA
AK018_00810468F420H(2)-dependent reductaseATGGCCCGCCAGATTGCGACGAACACCACCGTGACCCGCGACGAGCTGGTCGAGTTCCTGCGCTCGCGGCGCAACGGCGTGCTGGTCACGACGCGCGACGACGGCCGCCCCCAGCTCAGCCCGGTCACCTACGGGGTCGACGGCGCGGGCCGCGTCCTGGTCTCCACCTACCCCGAGCGCGCCAAGGCGGTGAACCTGCGCAAGCGCCCGCAGGTGTCGTTCATGGCCCAGGGTGACGACTTCGGTGACGCGTGGGTGCAGGTCGACGGCACCGCCGAGGTGCTGGACATGCCCGACGCCCTGGAGCCGCTGGTGGAGTACTTCCGCGCGGCGGCCGGCAAGGAGCACCCCGACTGGGACGAGTACCGCGAGGCGATGGCGAAGCAGGACAAGTCCGTGGTGCGGATCACGGTCGAGCGCTGGGGGCCGGTGGCCACGGGCGGATTCCCGGCGCGGCTCGCGGACTGAMARQIATNTTVTRDELVEFLRSRRNGVLVTTRDDGRPQLSPVTYGVDGAGRVLVSTYPERAKAVNLRKRPQVSFMAQGDDFGDAWVQVDGTAEVLDMPDALEPLVEYFRAAAGKEHPDWDEYREAMAKQDKSVVRITVERWGPVATGGFPARLADNANANANANA
AK018_008111065hypothetical proteinATGGACCGACGCCTCTACGTGCACGTCGGCGCGCCGAAGTCCGGGACCACCTACCTGCAGTCCCGGCTGCTCGCGAACCGTCGCGCCCTGCAGCAGCACGGCCTGACCTACCCGCTCGGCCCGGGCCGCGACCCGCGCGTGCACTACCGGGCCGCTCTCGACGTCGTCGGACGCGACCACGGCCTGGACGGGCGGGTCGTGGACGGCGCGTGGCGACGGTTGCTGCGGCTCGTGCGCCGCTGCCGGGGCGACGTCGTGCTGGGGCACGAGGTCCTGTCCTCGGCCGACGCGGAGCAGGCGGAGCGCGTCCTGGCCGACCTCGCCGCCACGGGTTCCGAGGTCCACGTCGTCATGACCGTCCGCGACCTGGCCCGCGAGCTCGCCGGCGGGTGGCAGGAGATGGTCAAGTTCGGCAGCCGACGGTCCTTCGCCGCGTACCTCGAGCGCGCCCGTGACGGCCGCCTCGACTTCCAGCGGTCCTTCGACCCCACCCGGGTCCTGTCGAACTGGGGTGGCGACCTGCCGTCGTCGCGCCGCCACCTGGTCACCGCTCCGCCGCAGGGCCCGGCGGACGTCCTGTGGCAGCGGTACCTGCAGGCGCTCGGCGCCGACGCGTCCCGGGCGCCGGCACCGGCCGCGCAGGCCAACGCCTCGATCGGGGTGCCGCAGGCCCGGCTCCTGCGGCGGCTCAACAAGCGCCTCGGCGCCGAGACCCGCCGCGGCGGTGCCTACGCCCCGCTCGTCGAGGACATCCTCGTGCCCGCGCTGGCCGACCGCGACGCGCCGCGCATCTCCCTCGGCCCCGACCACTACGACTGGGTCGCCCGGCGCACCGAGGACTGGGTGCGGTGGCTGACCGACAGCGGCGTCACCGTCCACGGCGACCTCGAGGACCTGCGTCCGGCGCCGCCCGACCCGGACCGGCTCGACCCCGACGGCCGGATGCCCGACCTCGTGGCGACCGCGGCCCTCGACGCCGTCGAGGCGCTGCTCTACGAGCTGCGCACCCGGCCCCGGCCGCTGACCTCCCGCGTCCGCAGCGCGGTCGGGCGGCTGCGGCGCTGAMDRRLYVHVGAPKSGTTYLQSRLLANRRALQQHGLTYPLGPGRDPRVHYRAALDVVGRDHGLDGRVVDGAWRRLLRLVRRCRGDVVLGHEVLSSADAEQAERVLADLAATGSEVHVVMTVRDLARELAGGWQEMVKFGSRRSFAAYLERARDGRLDFQRSFDPTRVLSNWGGDLPSSRRHLVTAPPQGPADVLWQRYLQALGADASRAPAPAAQANASIGVPQARLLRRLNKRLGAETRRGGAYAPLVEDILVPALADRDAPRISLGPDHYDWVARRTEDWVRWLTDSGVTVHGDLEDLRPAPPDPDRLDPDGRMPDLVATAALDAVEALLYELRTRPRPLTSRVRSAVGRLRRNANANANANA
AK018_008121101hypothetical proteinGTGCGATGGGACGGACAGGCCACGAACGCCGACGACGGGGCGCTGCCGGGGCTGGAGCGGCCCGGCTTGGCGCGGCTCGGCCTGGTCCGCAGCGTGCGTACCCCGGAGTTCGCCGGCGTCACCTTCCACGAGGTGCTCGCCAGGACCGCCCTGTCGAAGGTGCCCGAGGCGTCGCGCATGCCGTTCCGCTGGACCGTGAACCCCTACCGCGGGTGCTCGCACGCCTGCGCCTACTGCTTCGCGCGGCCGACGCACGAGTACCTCGACCTGGACGCCGGGGCGGACTTCGACTCCCAGGTCGTGGTCAAGACGAACGTCGACCAGGTGCTGCGCGCCGAGCTGGCACGGTCCTCGTGGCGCCGCGAACCCGTGGCGCTGGGCACCAACACCGACCCTTACCAGCGCGCCGAGGGCCGCTACCGGCTCATGCCGGGCATCATCGCGGCACTCGCGGACTCCGGGACGCCGTTCTCGATCCTGACCAAGGGCACCCTGCTGCGCCGTGACCTGCCGCGGATCGCCGAGGCCGCCGGCCGGGTCGAGGTCGGGCTCGGGGTCTCGCTGTCGTTCGCCGACGCCGCGCTGCAGCAGTCCGTCGAACCCGGCACGCCCACGCCGAAGGCGCGCCTGGACCTGGTCCGCGCCGTGCGCGCCGCCGGGCTGCCGTGCGGCGTCATGGTCGCCCCGGTGCTGCCCTGGCTCACCGACTCCACCGACCACCTGACGCGCCTGCTCGACGCGATCGCCGACGCCGGCGCCACCGGCGTGACGGTGATCCCGCTGCGCCTCAAGCCGGGCACCCGCGAGTGGTACCTGCGCTGGCTGCGCCGTGAGCACCCGGACCGCGTGGCCGGGTACGAGCGGGTGTTCGCCCGCGGGGCCGCCGCCCACGCCGGCTACCGCGACTGGCTGTGGCGGCGGGTCCGACCGCTGCTCGTCGAGCGAGGCTTCGCGGGGTCGGGGCATCGCGGCGGGTCCGGTGCCACCGGCCGGCACGACGACGCGCTGCGTCCCCACGACGACGCCGACTATCCGGCCGGCTCGATGGTCGCCCCGACCGGGGCCGGCGCCACGGTGCCGGCGTCGCCGACGTTGTTCTGAMRWDGQATNADDGALPGLERPGLARLGLVRSVRTPEFAGVTFHEVLARTALSKVPEASRMPFRWTVNPYRGCSHACAYCFARPTHEYLDLDAGADFDSQVVVKTNVDQVLRAELARSSWRREPVALGTNTDPYQRAEGRYRLMPGIIAALADSGTPFSILTKGTLLRRDLPRIAEAAGRVEVGLGVSLSFADAALQQSVEPGTPTPKARLDLVRAVRAAGLPCGVMVAPVLPWLTDSTDHLTRLLDAIADAGATGVTVIPLRLKPGTREWYLRWLRREHPDRVAGYERVFARGAAAHAGYRDWLWRRVRPLLVERGFAGSGHRGGSGATGRHDDALRPHDDADYPAGSMVAPTGAGATVPASPTLFNANANANANA
AK018_00813384hypothetical proteinATGGTCACCGTGCAGCACGCCTTCAGCAGCTTCTCCGTGGACGACCTCGACGCGGCCGAGGCGTTCTACCGCGACGGGCTCGGCCTGACGGTCGCCCGCACACCGATGGGCCTCGAGCTGGACGTCACCGGTGGCTCGCCGGTGTTCGTCTACCCCAAGGGCGAGGCGCACGCCCCGGCGAGCCACACCGCGCTCAACCTGCTCGTGGCGGACATCGACGCGGCGGTGGCCGAGCTGGCCGACGCCGGGGTGGGCCTGGTCACGTACCCGCAGTTCGACCACGACGCCACCGGCGTGGTGCGCTCCGCCGATCCCGAGGAGGGCCCGACGGTGGCCTGGTTCCGCGACCCGGCCGGCAACACGGTCGGCCTGATCGAGCAGTAGMVTVQHAFSSFSVDDLDAAEAFYRDGLGLTVARTPMGLELDVTGGSPVFVYPKGEAHAPASHTALNLLVADIDAAVAELADAGVGLVTYPQFDHDATGVVRSADPEEGPTVAWFRDPAGNTVGLIEQNANANANANA
AK018_008141380hisS_1COG0124Histidine--tRNA ligaseATGGCTCGCGTGACCCCCTTGTCCGGATTCCCCGAATGGCTGCCCGACGCCCGCGTGGTGGAGCAGCACGTGCTCGACGTCCTGCGCCGGACCTTCGAGCTGCACGGGTTCGCGGGCATCGAGACGCGGGCCGTCGAACCGTTGGACCAGCTCCTGCGCAAGGGCGAGACCTCCAAGGAGGTCTACGTGCTGCGCCGGCTGCAGGAGGACGACGCCGCGGCGGACGGCGCGGCGTCGCACGACGGCGGCCGGTCGGGCGAGAAGCAGCTCGGCCTGCACTTCGACCTGACCGTGCCGTTCGCCCGCTACGTGCTGGAGAACGCCGGCCGCCTCGCCTTCCCGTTCAAGCGCTACCAGATCCAGAAGGTGTGGCGCGGGGAGCGGCCCCAGGAGGGCCGGTTCCGCGAGTTCGCGCAGGCCGACATCGACGTGGTCGGCGCCGGGGAGCTGCCGTACCACTTCGAGGTCGAGCTGCCGCTGGTCATGGCCGAGGCGCTCGGCGCCCTGCGCGAGGTGGGCGTGCCGCCGGTGCGCATCCTGGTGAACAACCGCAAGGTGGCCGAGGGCTTCTACCGGGGCCTGGGGCTCGAGGACGTCGAGGGCGTCCTGCGCCAGATCGACAAGCTCGACAAGATCGGCACCGAGCAGGTCGCCGCGCTGCTCGTCGCCGAGCAGGGCGCCAGCGCCGAGCAGGCCGCGGCCTGCCTCGAGCTCGCGGCGGTCCACGGCGCCGACGTCTCCGTCGTCGACCGCGTCCGGGCGATCGCCGTGCAGCACGACGCCGTCACCGACCTGCTCGAGGAGGGGCTGGCCGAGCTCGGCGCCCTCGTCGCCGCGGCCGGCGAGCGCGCCCCCGGCGTGGTGGTCGCCGACCTGAAGATCGCCCGCGGGCTGGACTACTACACCGGGTCGGTCTACGAGACGGTCCTGGTGGGCCACGAGCAGCTCGGCTCGATCTGCTCCGGCGGCCGGTACGACATGCTCGCCTCGGACGGCAAGAACACCTACCCGGGCGTCGGGCTGTCGGTCGGCGTGTCGCGGCTGGTCTCCCGGCTGCTGTCCGCGGGTCTGGTGACGGCCACGCGGGGGGTGCCCACCGCCGTCCTGGTCGCCGTGACCGACGAGGAGCACCGCGGTGCCTCCGACGACGTGGCCGCCGCCCTGCGCGCCCGGGGCGTGCCCACCGACGTGGCGCCCTCCGCGGCCAAGTTCGGCAAGCAGATCAAGTTCGCCGACCGCCGCGGCATCCCGTTCGTGTGGTTCCCCGGCGAGGAGCACCAGGTCAAGGACATCCGCTCCGGCGAGCAGGTCGCCGCCGACCCGCAGACCTGGCAGCCCCCCGCCGACGACGTGCGCCCGCGCGTCGTGGCCGCCTCCTGAMARVTPLSGFPEWLPDARVVEQHVLDVLRRTFELHGFAGIETRAVEPLDQLLRKGETSKEVYVLRRLQEDDAAADGAASHDGGRSGEKQLGLHFDLTVPFARYVLENAGRLAFPFKRYQIQKVWRGERPQEGRFREFAQADIDVVGAGELPYHFEVELPLVMAEALGALREVGVPPVRILVNNRKVAEGFYRGLGLEDVEGVLRQIDKLDKIGTEQVAALLVAEQGASAEQAAACLELAAVHGADVSVVDRVRAIAVQHDAVTDLLEEGLAELGALVAAAGERAPGVVVADLKIARGLDYYTGSVYETVLVGHEQLGSICSGGRYDMLASDGKNTYPGVGLSVGVSRLVSRLLSAGLVTATRGVPTAVLVAVTDEEHRGASDDVAAALRARGVPTDVAPSAAKFGKQIKFADRRGIPFVWFPGEEHQVKDIRSGEQVAADPQTWQPPADDVRPRVVAASNANANANANA
AK018_00815720putative proteinATGGATGTGCACGTCGTCGTCGCCCCGGTCTTCGCCACCAACTGCTGCGTGGTCGTCGCCGACCGGCGGGCGGACGACGGGCGGCGCGACTGCGTGGTGGTCGACCCCGGCGCCGGCACCGCCGACGCGGTCTCCCGCCTCGTCGAGGTCGAGTCGCTGCGGGTGCGGGCCGTGCTCGCCACCCACGGGCACGTCGACCACACCTGGGACGCCGCCGAGCTCTGCGCCCGGCACGATGCGCCGCTGCGCCTGCACGCCCGGGACGTGTACCGGGTCAGCGACCCCTTCGGCACGATCGGGCTCGGCAACGGGCGGCTCGGCGCCCAGGCCGCGGCCGTCAGCGACGCGCTGACCCAGGCGCTCGCGGACTTCGGGCGCACCCCGCGCGAGTACACGGCGCCCGCACGGGTCGAGCCCTTCGACGGCGACGGGGACCTGGTCTGCGGCGACGTGACGCTCCGGGCGCGTCACGCCCCGGGGCACACCGAGGGCTCCACGCTGTACCTCCTCGAGGCCGAGGGCGTGGTGCTCAGCGGCGACGTGCTGTTCGCCGGGTCGGTGGGTCGCACCGACCTGCCCGGCGCGGACCTGGAGGCGATGCTCGCCACGCTGCGCGACGTCGTCGGACGCCTGGACCCCGCCTGGCAGGTGGTGCCCGGGCACGGTCCCACGACGACGGTGGGCCGCGAGCTCGCGTCGAACCCCTTCCTGCCCCGCTGAMDVHVVVAPVFATNCCVVVADRRADDGRRDCVVVDPGAGTADAVSRLVEVESLRVRAVLATHGHVDHTWDAAELCARHDAPLRLHARDVYRVSDPFGTIGLGNGRLGAQAAAVSDALTQALADFGRTPREYTAPARVEPFDGDGDLVCGDVTLRARHAPGHTEGSTLYLLEAEGVVLSGDVLFAGSVGRTDLPGADLEAMLATLRDVVGRLDPAWQVVPGHGPTTTVGRELASNPFLPRPGPT0001770_4404DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
AK018_00816795hypothetical proteinGTGGCGCCCAGCAAGCGCGAGCGCGAGTACGCGGCCAAGCGCCAGGCCAAGTGGGACGAGCGGCGCCGGGCCCGCAAGGACCGCCAGCGGCGCATCGGCGTGACCGTCGCGATCGCGGCGATCCTCGCCCTCGTCGCCGGTGGTGCCCTGGTCGCCGGGCTGGCGTCGTCGGACCCGGGTCCGGACACCGCGCAACCGGGCACGGAGCCGGCGGCCGGCGCGTGCCCGCCGGGGTCCACGCAGGCCCGCGACGGCGGGGACCTGCCCGCGCCGGCGGCCGCCGAGGACCGCACGTGGCAGGCGTCGGTCGACCTGTGCGTCGACGGCGTGACCGAGACGGTCGCCCTGGAGCTCGACGGCGGCGCCGCCCCGCAGGCCGTCGCCTCGTTCGTGTCCCTGGCCGAGCAGGGCTACTTCGACGGCACCACCTGCCACCGCCTGACCACGCAGGGCATCTACGTCCTGCAGTGCGGCGACCCCACGGCCACCGGTACGGGCGGGCCCGGCTACTCGTTCGGCCCGGTGGAGAACGCGCCCGCCGACGACGTCTACCCCGCAGGGACCCTCGCGATGGCGCGCCGTGGCGGCGACGCCGAGTCGATGGGCTCGCAGTTCTTCCTCGTCTACGAGGACTCGACCATCCCGTCCGACGCAGCAGGCGGGTACACGGTGTTCGGCACCGTGACGTCCGGCCTGGACACGGTCCAGGCAGTCGCTGACGCGGGCACGGCCGACGGGGCCGGCGACGGCTCCCCGGTCAGCCCCGTCATCATCGAAGGAGTGGAGACCCAGTGAMAPSKREREYAAKRQAKWDERRRARKDRQRRIGVTVAIAAILALVAGGALVAGLASSDPGPDTAQPGTEPAAGACPPGSTQARDGGDLPAPAAAEDRTWQASVDLCVDGVTETVALELDGGAAPQAVASFVSLAEQGYFDGTTCHRLTTQGIYVLQCGDPTATGTGGPGYSFGPVENAPADDVYPAGTLAMARRGGDAESMGSQFFLVYEDSTIPSDAAGGYTVFGTVTSGLDTVQAVADAGTADGAGDGSPVSPVIIEGVETQPGPT0015111_939DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015111-ppiB-K03768NANA
AK018_008171521hypothetical proteinGTGACCGAGAGCACCCCCGGCTCGACCGGCCCCGAGCACGTCGAGGCGGCAGAGCAGGCGCAGGCCGACGCTCCCCCCACCGAGACCGCCCAGCCGGCCGCACCCGCGGCCGACGCCGAGCCCGCCCGCCCCGCGCCGCCCAAGCCGCGCCCTCCGCGACCCGGCGCCCCGAAGCCGTCGGCCGTGGCCCCCCGGGCCGCCACGCCCCGCACGGCTCCCAAGCCGGCCGCCCCCGTGGCCCCAGTGGTCCACGACGCCGAGGAGTCGGCGGCGGCCGCGCGCTTCGGGCGGGTGGACGACGACGGCACCGTCTACGTGCGCGAGGAGGCCGGCGAACGGTCCGTGGGCCAGTACCCCGGCGTCTCCGGCGACGAGGCGCTCACCCTCTACGTGCGCCGCTACCTCGACCTGGTCGCCAAGGTGGCCCTCTTCGAGACGCGACTCGACAGCGCGGACCTGTCGGTGCGCGAGATCGACCAGACCCTGGCGAAGCTGGGCGAGGAGACCGACGCGCCCGCCGCCGTCGGGGACCTGGACGCCCTGCGGGTGCGGGTGGAGCGTCTGCGCGAGCGTGCCGCCGAGCGGCGTGCCGCGCTCGAGCAGGAGCGCGCCGAGGCGAAGGACCGGGCCGTGGCGGCACGCACCGAGATCGTCGAGGCGGCCGAGCGGATCGCCGGCACCGACCCCGCCAAGATGCAGTGGCGCCCGGCGGGCGAGGAGCTGCGGGGCCTGCTCGAACGGTGGAAGGAGGCCCAGCGCAGCGGACCGCGCATCGACCGGCCCACCGAGGAGGGCCTGTGGAAGCGGTTCAGCCACGCCCGCACCGCGTTCGACCGCGAGCGTCGGCACTTCTTCGCCGAGCTCGAGCAGCGCAACGCGACGGCCAAGGCCGCCAAGGAGAAGATCGTCGCCGAGGCGGAGGCCGTCCAGCACTCGACCGACTGGGGGCCGACGTCGGGCGTGTACCGCGACCTGATGGCGCGCTGGAAGGCGGCCGGGCGCGCGAACCGCAAGGACGACGACGCCCTGTGGGCGCGGTTCCGGGCGGCGCAGGACACGTTCTTCGGCGCGCGGGACGAGGCGAACGCGCAGATCGACGCCGAGTACGGCGAGAACCTCAAGGTCAAGGAGGCGCTGCTCACGGAGGCCGAGGCGCTGCTGCCGGTGAAGGATCTCGCGGCCGCCAAGGCGGCGCTGCGCGGCATCCAGGAGCGCTGGGAGGACGCCGGCAAGGTGCCGCGCGGCGACCTGCAGCGTGTCGAGGGCCGCATGCGGGCGGTGGAGAACGCCGTCCGCGACGCCGAGGACGCGAAGTGGAAGCGCACCAACCCCGAGACCCGCGCGCGGGCCGAGGGCGCCGCGGCGCAGCTCGAGGACGCGATCGCGGGCATGCAGGCGGACCTGGACGCCGCTCAGGAGGCCGGTGACGACCGCACGGTGCGCGAGCTCACCACGGCCATCGAGGCCCGGCGCGCCTGGCTCGAGCAGGTCGTCAAGGCCGCGGAGGACTCGCGCGGCTGAMTESTPGSTGPEHVEAAEQAQADAPPTETAQPAAPAADAEPARPAPPKPRPPRPGAPKPSAVAPRAATPRTAPKPAAPVAPVVHDAEESAAAARFGRVDDDGTVYVREEAGERSVGQYPGVSGDEALTLYVRRYLDLVAKVALFETRLDSADLSVREIDQTLAKLGEETDAPAAVGDLDALRVRVERLRERAAERRAALEQERAEAKDRAVAARTEIVEAAERIAGTDPAKMQWRPAGEELRGLLERWKEAQRSGPRIDRPTEEGLWKRFSHARTAFDRERRHFFAELEQRNATAKAAKEKIVAEAEAVQHSTDWGPTSGVYRDLMARWKAAGRANRKDDDALWARFRAAQDTFFGARDEANAQIDAEYGENLKVKEALLTEAEALLPVKDLAAAKAALRGIQERWEDAGKVPRGDLQRVEGRMRAVENAVRDAEDAKWKRTNPETRARAEGAAAQLEDAIAGMQADLDAAQEAGDDRTVRELTTAIEARRAWLEQVVKAAEDSRGNANANANANA
AK018_00818528hypothetical proteinGTGGCATGGCAGGTGCTGGTGCGCGAGGGGGCCGTGACGGTGGTGCGCGGCGACGCGGGCTGCGCTCCCGGCACCCGGGTGGACGCCGCGCTGCGGGCGGGTCTGGTCGGCCCGGAGGTCCCCACCGGTGCGGTGGTGACCGGCAGGACCGCCGCCTGGATCCACACCGGTGCGGGTGACGGCAGCGGGCTCGACCTGACCTACCCGGCCGGCCGGCACCAGCCGGACCGCCCCGCCGGCGCCCGGCTGTGGCAGAGCCCGCTGCTCACCGCGGACGTCGTGCGCCTCGCCGGGGTGCCCGTGACGTCCCCGGAGCGCACGGTCGTCGAGCTGGTGCTGCGCGACGGGGACCCGGTCGACCTGGTGGCCGCGCTCGCCGGTGCCGGCGTGGACCTGGGCCGGGCGCGGCTGCGGCTCGAACGGCGCCCGCGCGCCCAGGGCAGGCCGCGGGCGCGGAGGCTGCTGCGCGAGGCCGAGGACCTGGTCCGCGCCCGGACGGGCACCGGGCGGTGTCCCGGCGTAGCGTGAMAWQVLVREGAVTVVRGDAGCAPGTRVDAALRAGLVGPEVPTGAVVTGRTAAWIHTGAGDGSGLDLTYPAGRHQPDRPAGARLWQSPLLTADVVRLAGVPVTSPERTVVELVLRDGDPVDLVAALAGAGVDLGRARLRLERRPRAQGRPRARRLLREAEDLVRARTGTGRCPGVANANANANANA
AK018_008191083ligD_1COG1793Multifunctional non-homologous end joining protein LigDATGGCCTCCTCGAACGCCGTCGAGCTCGACGCCGGCGGCCGGACCGTCCGTGTGTCCAGCCCGGACCGCGTCGTGTTCCCCGACGTCGGCGCGACCAAGCGCGACGTCGTGGAGTACTTCCTCGCCGTCGGCGACGGGATCCTCGGTGCGCTGCTGGACCGGCCCACGACGCTGGAGCGCTGGCCCAAGGGGGTCTTCGAGGGGGCCGTGATGGCTACCCGCAGCGACTCCCACGGCGACGCGTTCTACCAGAAGCGCGTCCCCAAGGGTGCGCCGGACTACGTGCGCACCGCGCGTATCGCGTTCCCGTCGGGTCGTACGGCGGACGAGGTCGCCCCCCACGAGATCGCGGTGGTCGCCTGGGCGGCTCAGCTCGGCACCCTCACCTTCCATCCCTGGCCGGTGCGCAGCGACGACGTCGAGGCCGTCGACCAGCTCCGCATCGACCTCGACCCCCAGCCCGGCACCGACTACGGCGACGCCGCCGAGGTGTCCGGGACGTTGCGCGAGGTGCTCGGCGAGCTGGACCTGACCGGCTACCCCAAGACGTCCGGCGGGCGGGGGCTGCACGTGTTCGTCCCGCTGGCGCCGCGGTGGAGCTTCCAGCAGGCCCGGCGCGCCACCATCGCGATCGGCCGCGAGCTGGAGCGTCGTCTGCCCGACCGCGTCACGACACGGTGGTGGAAGGAGGAGCGGGGGCGGCGGATCTTCGTCGACTACAACCAGATGGCGCGCGACCGCACCATCGCCTCGGCCTACTCGCTGCGCCCCAACCGGCGGGCCACCGTCTCGACGCCGCTGGACTGGGACGAGGTGGGCGACGTCCACCCCGACGACTTCACGATCGCCACCGTGCCGGAACGCTTCGCCGAGCGCGGCGACCTGTTCGCCCCGCTGCGCGCCGACCGCGACCCGGGGCTCGACTGCTCGTTGGACGCCGCGCTGGACCTGGCCCGCACCGACGAGGAGGAGCACGGTCTGGGCGACCTGCCCTACCCGCCCGAGTACCCCAAGCAGCCCGGCGAGCCCAAGCGGGTGCAGCCGTCGCGCGACGCCGACCGCCACCGGGACCAGGCGGACTGAMASSNAVELDAGGRTVRVSSPDRVVFPDVGATKRDVVEYFLAVGDGILGALLDRPTTLERWPKGVFEGAVMATRSDSHGDAFYQKRVPKGAPDYVRTARIAFPSGRTADEVAPHEIAVVAWAAQLGTLTFHPWPVRSDDVEAVDQLRIDLDPQPGTDYGDAAEVSGTLREVLGELDLTGYPKTSGGRGLHVFVPLAPRWSFQQARRATIAIGRELERRLPDRVTTRWWKEERGRRIFVDYNQMARDRTIASAYSLRPNRRATVSTPLDWDEVGDVHPDDFTIATVPERFAERGDLFAPLRADRDPGLDCSLDAALDLARTDEEEHGLGDLPYPPEYPKQPGEPKRVQPSRDADRHRDQADPGPT0014910_1126DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
AK018_00820558hypothetical proteinATGGGAACACTGCTGTACTCCACGACCTGCTCGATCGACGGCTTCGTGGCCGACGCCGACGGCGGCATCGGCTGGACGACGCCGAGCGAGGAGCTGCACGCCTTCTTCAACGACAGCCTCCGCGACGTGGGGACCTACGTCATGGGTCACGACATGTACACCACGATGCGGGTGTGGGACACGTGGCCCGCCGGCCGGAGCGCGGTCGAGGACGACTACGCCGCGATCTGGGCCGCCGCGGACAAGATCGTCTGCTCCGACCGCCTGACCGCCACGGGCGTCGACGCGCCCCGGACCACGGTCGAACCCCGGCTGACGACCCGCCGGCTGGCCGAGATCGTGGCCGCGGCCGACGGCGCGGTCGAGGTCTCCGGCCCGACGACGGCCGCCGAGGCGCTGCGGACCGGCATGGTCGACGTGCTGCAGCTGTTCGTCGCCCCCCGCGCCCTCGGCGCCGGGCTGCGCGCCCTGCCCGCCGGCATGGACCTGGCCCTGGAGCTCACGGAAACGCGCCGCTTCGACAACGGCACGGTGCTGCTGCGGTACGAGCGGCCCTGAMGTLLYSTTCSIDGFVADADGGIGWTTPSEELHAFFNDSLRDVGTYVMGHDMYTTMRVWDTWPAGRSAVEDDYAAIWAAADKIVCSDRLTATGVDAPRTTVEPRLTTRRLAEIVAAADGAVEVSGPTTAAEALRTGMVDVLQLFVAPRALGAGLRALPAGMDLALELTETRRFDNGTVLLRYERPNANANANANA
AK018_008211164ligC_1COG1793DNA ligase CATGAGGCTGCCGATCGAACCTCCGGTCCGCCCGATGCTGGCCCGGTCCGTGGCGCAGGTGCCCGAGCAGCCCGACGGCCCCGAGGCCGGCTGGGTGTACGAGCCGAAGTGGGACGGGTTCCGCGCCGTCGTCTACCGGGACGGCGACGAGGTGCGCATCGACTCGCGCAGCGCGCGGCCCATGCAGCGCTACTTCCCCGAGGTGGTCGCGGCGGTGCTCGACGCGCTGCCGCGACGGTGCGTGGTGGACGCGGAGATCGTCGTCGCCCGCCCGGCGGGGCCGGGCAGCACCTCGGCGCATCTGGACTTCGACACGCTGAGCCAGCGCATTCATCCGGCCGAGTCCCGCGTCCGGCTGCTGGCCGAGCAGGTCCCGGCCAGCCTCGTCGTGTTCGACCTGCTCGCCCTCGACGACGAGAATCTGACCGCGCTGCCGCTGACCGAACGTCTCGCGCGCCTGGATGCCCTTGGCCTGGACGGACCGCAGGTGCACCGCACGCCGCGCACCACCGATGCGGACCGGGCCCGGCAGTGGTTCGACACGTTCGAGGGCGCGGGGCTGGACGGCGTCGTCGCCAAGCCGGCCGACGGCAGCTACCAGCCCAACAAGCGCGGCTGGTCGAAGATCAAGCACGCCCGCACCGCCGACGTCGTGCTGGCCGGCCTGCGGGAGCACAAGACGTCCACGGCGCAGCGCCCGCTCGTCGGGTCGTTGCTGCTCGGGCTGTACCGGGACGGCACCGACGGCGCCTCGTTGCAGTTCGTGGGGGTGGCGGCGTCGTTCCCGGCGGCGCGGCGCGCCGAGCTGTACGACGAGCTGGCCCCGCTGGCCGTGCCGCCCGGGGATGCGGACCACCCGTGGGCCGACCGGCAGGACCCGGCCACGTCGGACGGCGGCGCGGGGGAGCGCCGCCCCGGTGCCCAGTCCCGTTGGAGCGCCGGAAAGGACCTGTCGTTCACGCCGCTGCGGGTCGAGCGTGTCCTCGAGGTCGGCTACGACCACATGGAGGGCAGCAGGTTCCGCCACACGGCGCAGTTCAAGCGGTGGCGCCCGGACCGCGAACCGGCGTCGTGCACGTACGACCAGCTCGTCGAACCCGTCGGCTACGACCTCGCCGAGATCCTGCCCGGGGCACCGGGGCTCGACCTGGTCGACGACCGATGAMRLPIEPPVRPMLARSVAQVPEQPDGPEAGWVYEPKWDGFRAVVYRDGDEVRIDSRSARPMQRYFPEVVAAVLDALPRRCVVDAEIVVARPAGPGSTSAHLDFDTLSQRIHPAESRVRLLAEQVPASLVVFDLLALDDENLTALPLTERLARLDALGLDGPQVHRTPRTTDADRARQWFDTFEGAGLDGVVAKPADGSYQPNKRGWSKIKHARTADVVLAGLREHKTSTAQRPLVGSLLLGLYRDGTDGASLQFVGVAASFPAARRAELYDELAPLAVPPGDADHPWADRQDPATSDGGAGERRPGAQSRWSAGKDLSFTPLRVERVLEVGYDHMEGSRFRHTAQFKRWRPDREPASCTYDQLVEPVGYDLAEILPGAPGLDLVDDRPGPT0014910_1126DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
AK018_008222343relA_1COG0317Bifunctional (p)ppGpp synthase/hydrolase RelAGTGAGCGACGACACCCAGGTCGATCGCGCCCCGGACGTGTCCCGACCGTCCGGTGCGGGCACCCGTGTGCGCAACCGGCTGGTCCGCCTCGGCGTGCGCGGCGCGCCGGCGAACACCCCGGCCCTGGAGCCGCTGCTGCAGGCCGTGCGCACCAACCACCCCAAGAGCGACCTGAGCGTCCTGGAGCGCGCGTACGCGACCGCCGAGAAGGCGCACCGGGGCCAGCAGCGCAAGTCGGGCGACCCGTACATCACCCACCCGGTCGCCGTGGCCACGATCCTGGCCGAGCTCGGGTTCGACGGCGCCACGCTCGCGGCCGCGCTGCTGCACGACACGGTGGAGGACACCTCCTACTCCCTGCAGGACCTGACCGGCGAGTACGGCGCCGAGATCGCGATGCTCGTCGACGGCGTGACCAAGCTGGACAAGGTGACCTACGGCGACGCCGCGCAGGCCGAGACCGTGCGCAAGATGGTCGTCGCCATGGCCAAGGACATCCGTGTGCTGGTCATCAAGCTCGCCGACCGGCTGCACAACGCGCGCACGTGGAAGTACGTGTCCGGGGCCTCGGCGTCGCGCAAGGCGCGCGAGACGCTGGAGATCTACGCGCCGCTGGCCCACCGCCTCGGCATGAACACGATCAAGTGGGAGCTGGAGGACCTGTCCTTCCAGACGCTGTACCCCAAGGTCTACGACGAGATCGTCCACCTGGTCGCCGAGCGTGCGCCGGCGCGCGAGGAGTACCTGGGCGTGGTGCGCGAGCAGATCTCCGCCGACCTGCGCGGGGCGAAGATCCGCGCGACCGTGACGGGCCGCCCCAAGCACTACTACTCGATCTACCAGAAGATGATCGTGCGCGGGCACGACTTCGCGGAGATCTACGACCTGGTCGGCACCCGCGTCCTGGTGGACTCGGTGCGCGACTGCTACGCGGCGCTCGGCGCGCTGCACGCGCGGTGGAACCCGGTCCCGGGCCGGTTCAAGGACTACATCGCGATGCCGAAGTTCAACATGTACCAGTCGTTGCACACGACGGTCGTGGGCCCGGGCGGCAAGCCCGTCGAGATCCAGATCCGCACCCACGACATGCACCGACGTGCCGAGTACGGCGTGGCGGCCCACTGGAAGTACAAGGAGACCGCCCGCGCCGGCAAGGGCGGCAAGGACCCGCGGGCCAACGACATGACGTGGCTGCGCCAGCTCGTCGACTGGCAGCGCGAGACCGCCGACCCCGGCGAGTTCCTCGACTCGCTGCGCTACGAGATCGGCGCCGCCGAGGTCTACGTCTTCACGCCCAAGGGTGAGGTCATGGCGCTGCCCGCGGGGGCCACGCCGGTGGACTTCGCCTACTCGGTGCACACCGAGGTCGGGCACCGCACCATGGGCGCCCGTGTCAACGGTCGCCTCGTCCCGCTGGACTCGCCCCTGCAGAACGGCGACGTCGTCGAGGTGCTGACCTCCAAGGCGGACACCGCGGGCCCTTCGCAGGACTGGCTGAACTTCGTCAAGTCCGGGCGGGCACGCAACAAGATCCGCCAGTGGTTCACCAAGGAGCGCCGCGAGGAGGCCATCGAGCGCGGCAAGGACGCGATCAGCAAGGCGATGCGCAAGCAGAACCTGCCGATCCAGCGGCTGCTGAGCCACGAGGCGCTCGTGGGGCTGGCCAACGAGCTGCGCTACGACGACGTCTCCGCCCTGTACGCGGCGGTGGGGGAGAACAACGTCTCGGCCCAGCACGTGGTCGAGTCCCTCGTGAAGTCGCTCGGTGGCGAGGACGGCACGGCCGAGGACACCGCGGAGGTCGCGCGGCCCGGGCACCCGAACCGGCGGTCCCGGTCCACCGGCGACCCGGGCGTCATGGTCAAGGGTGTCGAGGACATCTGGGTCAAGCTCGCCAAGTGCTGCACCCCGGTGCCCGGCGACGACATCGTCGGTTTCGTCACCCGCGGGGCGGGCGTGAGCGTGCACCGGGAGGACTGCGCCAACATCGCCCAGCTGCGCTCCCAGCCGGAGCGGATCGTGGACGTGTCCTGGACCACCGGGGCCAACACGATGTTCCTGGTCCAGATCCAGGTCGAGGCGCTGGACCGTTCCCGGCTGCTCTCCGACGTCACCCGCGTGCTGTCCGACCACCACGTCAACATCCTGTCGGCGACGGTGTCGACGACGTCGGACCGCATCGCGATCTCCCGGTTCGTGTTCGAGATGGCCGAGCCGGCGCACCTGCAGCAGGTGCTCGCCGCGGCACGCAAGATCGACGGGGTGTTCGACGTCTACCGCATCACCGGCACCAAGGCCGCCGACGTCGGGTCGACCGCCCCCGAGGCACCCGCAGACGCCTGAMSDDTQVDRAPDVSRPSGAGTRVRNRLVRLGVRGAPANTPALEPLLQAVRTNHPKSDLSVLERAYATAEKAHRGQQRKSGDPYITHPVAVATILAELGFDGATLAAALLHDTVEDTSYSLQDLTGEYGAEIAMLVDGVTKLDKVTYGDAAQAETVRKMVVAMAKDIRVLVIKLADRLHNARTWKYVSGASASRKARETLEIYAPLAHRLGMNTIKWELEDLSFQTLYPKVYDEIVHLVAERAPAREEYLGVVREQISADLRGAKIRATVTGRPKHYYSIYQKMIVRGHDFAEIYDLVGTRVLVDSVRDCYAALGALHARWNPVPGRFKDYIAMPKFNMYQSLHTTVVGPGGKPVEIQIRTHDMHRRAEYGVAAHWKYKETARAGKGGKDPRANDMTWLRQLVDWQRETADPGEFLDSLRYEIGAAEVYVFTPKGEVMALPAGATPVDFAYSVHTEVGHRTMGARVNGRLVPLDSPLQNGDVVEVLTSKADTAGPSQDWLNFVKSGRARNKIRQWFTKERREEAIERGKDAISKAMRKQNLPIQRLLSHEALVGLANELRYDDVSALYAAVGENNVSAQHVVESLVKSLGGEDGTAEDTAEVARPGHPNRRSRSTGDPGVMVKGVEDIWVKLAKCCTPVPGDDIVGFVTRGAGVSVHREDCANIAQLRSQPERIVDVSWTTGANTMFLVQIQVEALDRSRLLSDVTRVLSDHHVNILSATVSTTSDRIAISRFVFEMAEPAHLQQVLAAARKIDGVFDVYRITGTKAADVGSTAPEAPADAPGPT0014310_513DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014310-spoT-K01139NANA
AK018_00823591apt_1COG0503Adenine phosphoribosyltransferaseATGACCGACCCCGTGCCGGACGACATCGCGGTGGTGGCGCTGGACGGTCTCGGGGCCGTCCGCGCGGCCGAGATCCGCGCCCTGATCCGTGACGTCCCCGACTACCCGCACCGGCCGGTGGTCTTCCGGGACATCACGCCGCTGCTGGCGGACGGGCGGGCGCTGGCCGACGTGGTCGACGCCTTCGCCCGGCTCGTCGAGGCGGACGCGGACGGCGTCGACGTCGTCGTCGGGATGGAGGCGCGCGGGTTCCTGCTGGGCGCGCCGCTCGCGACGCGCCTGGGCGTCGGGTTCGTGCCGCTGCGCAAGGCGGGCAAGCTGCCGCCGCCGGTCGAGCGCGAGGACTACGAGCTCGAGTACGGCGCCGCCGCGATCGAGCTCGCCGCGGGAACACTGGCACCGGGTGCGCGCGTTCTCGTGGTGGACGACGTGCTGGCCACCGGAGGCACCGCGCAGGCCGCGGTCCGTCTGGTGGAACGCTGCGGGGGTCGCGTGTCGGCGCTGGCGTTCCTGCTCGAGCTGGACGGGCTCGGGGGCCGGGACCGGCTCGCCGGGCAGACGGTCGAGACGCTGCTGCGCGTGGAGTCGTAGMTDPVPDDIAVVALDGLGAVRAAEIRALIRDVPDYPHRPVVFRDITPLLADGRALADVVDAFARLVEADADGVDVVVGMEARGFLLGAPLATRLGVGFVPLRKAGKLPPPVEREDYELEYGAAAIELAAGTLAPGARVLVVDDVLATGGTAQAAVRLVERCGGRVSALAFLLELDGLGGRDRLAGQTVETLLRVESPGPT0021455_673DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021455-apt-K00759NANA
AK018_008241095secF_1COG0341Protein translocase subunit SecFATGGCCGGCAGCATGACCTTCGCCCAGTGGGGCAACGACCTGTACACGGGTCGCCGCTCCTACCCGATCGTGGCCAAGCGCCGCCTGTGGTTCTCGATCGTCGCGGCCCTGGGGCTCGCCTCGATCCTGATCCTGGTGGTCAAGCCCCTCACGCTGGGCATCGACTTCCGCGGCGGCTCGGAGTTCACCGTCGAGAACGTGAGCTCGACCGAGCAGTCCGTCGCGGTGGACGCCGTGCACGAGGTCCTGCCGGAGGACGAGCCGCGCGTGGCCGTCGTCGGCCAGACGGCGGTGCGCGTGCAGACCGCGCAGGTCGAGGGCGCGGACGAGACCGCGATCGTGGAGGCGCTGGCCGAGGGCTACGGCGTGGACGCCTCCGACGTCGAGGCGTCCTTCGTGGGCCCGACCTGGGGCGCGGCCGTCTCCGAGCGTGCCCTGTGGGGCGTGGTCGTGTTCGTGCTGCTCGCCGCGGCGTTCATGGCGATCTACTTCCGGGCCTGGCGCATGTCCGTGGCCGGGATCCTCGCCATGCTCTCCGACCTGCTCGTCTCCGCCGGCGTCTACGCGCTGGTGGGCTGGGAGGTCACGCCGTCGACGATCATCGGCTTCCTGACGATCCTCGGCTTCTCGCTGTACGACAAGATGGTCGTGTTCGACAAGGTCCGGGAGAACACCACGGGTGTGCTCGACCAGTCGCGCAGCACCTACGCCGAGCGTGCCAACCTGGCCGTCAACCAGACGCTGGTGCGGTCGATCAACACCTCGGTCGTCGCGCTGCTGCCGGTGGCGGGCATCCTGTTCCTCGGAGCCCTGTGGCTCGGCGCGGGCACGCTGCGCGACCTGGCCCTGTCGTTGTTCGTCGGCATCGCCGTCGGTGCGGCGTCGTCGATCTTCCTGGCCACGCCGCTGGACGTCGCCCTGCGCGAGCGCGAGCCGAAGTACCGCGACCACACCCGGTCCGTGCTGGCCGAGCGCGAGCGCCTGGCCACCGAGGGCGGGCACGACGCCGAGCTCGCGGCCGCCGCGGCCGGCAAGGCGCAGCTCATCCCCGGGCACCACCAGGGCAACGCGGCACAGCCGCGTCGCAAGCGATGAMAGSMTFAQWGNDLYTGRRSYPIVAKRRLWFSIVAALGLASILILVVKPLTLGIDFRGGSEFTVENVSSTEQSVAVDAVHEVLPEDEPRVAVVGQTAVRVQTAQVEGADETAIVEALAEGYGVDASDVEASFVGPTWGAAVSERALWGVVVFVLLAAAFMAIYFRAWRMSVAGILAMLSDLLVSAGVYALVGWEVTPSTIIGFLTILGFSLYDKMVVFDKVRENTTGVLDQSRSTYAERANLAVNQTLVRSINTSVVALLPVAGILFLGALWLGAGTLRDLALSLFVGIAVGAASSIFLATPLDVALREREPKYRDHTRSVLAERERLATEGGHDAELAAAAAGKAQLIPGHHQGNAAQPRRKRPGPT0029265_559DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0029265-secF-K03074NANA
AK018_008251974secD_1COG0342Protein translocase subunit SecDGTGGCCAACTCCAGCACGCGGCGCTCGCGTCCGGTACGCACGCTCGTGGTCTTCGCACTGCTGTCGATGGTGGTGCCCTTCGTGGCGCTCCTCGTCGGCACGTACCTCGACCCGAAGAGCGACGACAACCCGGGAGGGGCGAGCCTCGCGCCCGGACTGGCGCTCGACCTGCAGGGCGGGACGCAGATCATCCTGACCCCCACGTCGACCGACGGCTCGGAGATCACCCCCGAGGCGATCGACGAGTCGATCAACGTCATCCGACAGCGCATCGACTCCTCCGGCGTCGTCGAGGCCGAGATCGTCAACCAGGGCGGCGAGAACATCGTCGTGTCCATCCCCGGCGAGGTCGACCAGGCGACGATCGACCTGGTCTCGCAGCCGGCGCAGATGCGCTTCCGTCCCGTGCTGACCTACGACGTCGGCATCCCGTCCGTGCAGCCCAGCACCGAGCCCAGCGCCGAGGCGTCGGACGCCGCGGAGGGCGAGGGCACCGAGGAGGGCGCCGAGGGCGAGGATTCCGCTGATGCGCCCGCGGAGGCCGACACCGGGGCCACCCAGGAGGAGCTCGAGGCCCTCGACGAGCAGATCGCCACCGAGGCCGCCGACGTCGAGCCGACCGACCCGTCGGACCTCGCCCAGATCACCCCGGCCGTGCAGGAGAAGTTCGACGCGCTGGACTGCACCGACCCGGCCAACCTCGTGGGCGGCGGCGGTGCCGACCCGGACCAGGTGCTCGTCACGTGCGCCAACGACGGCAGCATGCTCAAGTACGTCCTCGGCCCGGTCGAGGTCGACGGCACCCACCTGGACAACGCGAGCTCGGGCCTGGGCACCGGCCCGAACGGCACGTCCACCAACGAGTGGGTCGTCAACATCGAGTTCGACGCCGAGGGCACGACCGAGTTCCGCGAGGTGACCCAGCGCCTGCAGGGCCTGGAGTCGCCGCGCAACCAGTTCGCGATGGTGCTCGACGGGCTCGTGATCTCCGCGCCGTCGCTCGACGCCGGCACGATCATCACCGACGGCCGGGCCCAGATCTCGGGCACGTTCACCCGCGACTCGGCGGCCACGCTGGCCAACCAGCTCAGCTTCGGGTCCCTGCCGATCGCGTACGAGGTGCAGAGCCAGGAGACGATCTCCGCGACGCTCGGGTCCGAGCAGCTGCGCAACGGTCTGATCGCCGGCCTGATCGGTATGGCGCTGGTCGTGGTCTACTCGCTGTTCCAGTACCGCACCCTCGGCCTCGTGACCGTCGGCTCCCTGCTCATCGCCGCGGTCATCACCTACGTCTCGATCGCGTTGCTGTCGTGGACGATCGACTACCGGCTCTCGCTCGCCGGCGTCGCCGGTCTGATCGTGGCCATCGGGTTCACGGCCGACTCGTTCATCGTCTACTTCGAACGCATCCGTGACGAGGTGCGTGACGGCCGGTCCATGTCGATGGCGGTCGAACGCGGCTGGCGACGCGCCAAGCGCACGGTGCTCGCCGCCAAGTCGGTCACGCTGATCTCGGCGGTCGTGCTGTACTTCCTCGCCGTCGGCGGCGTGCAGGGCTTCGCCTTCACGCTGGGTCTGACGACGATCATCGACATCGCCGTGGTCTTCTGGTTCACCCACCCGATGCTGCAGCTGCTGACCAAGGTGCCGTTCTTCCGCGACGGGCACCGCTGGTCGGGGCTGTCGCCCGAGCGCCTGCGGGCCGCCGGCGGCGTGCGGTACAAGGGCGCCGGCCGTGTCGAGACCCCGGTGCCCACCGCCTCGGAGCCCGAGCCGGAGCCCGCCCTCGCGGGCGCCGTGAGCGCGCGCCCGGCACCGGCCACCGATGACTCCGGTCGCCGGATGACCATCGCCGAGCGCCGCGCCGCCGAGCGCCGGGCCGCGTCGACGTCCGACGACGGACCACCGGACGCTCCGGGTGGCGCGGGCCGCACCGACGACGCCGTTCCCGGCGAGAACGAGGAGAGCCGCTGAMANSSTRRSRPVRTLVVFALLSMVVPFVALLVGTYLDPKSDDNPGGASLAPGLALDLQGGTQIILTPTSTDGSEITPEAIDESINVIRQRIDSSGVVEAEIVNQGGENIVVSIPGEVDQATIDLVSQPAQMRFRPVLTYDVGIPSVQPSTEPSAEASDAAEGEGTEEGAEGEDSADAPAEADTGATQEELEALDEQIATEAADVEPTDPSDLAQITPAVQEKFDALDCTDPANLVGGGGADPDQVLVTCANDGSMLKYVLGPVEVDGTHLDNASSGLGTGPNGTSTNEWVVNIEFDAEGTTEFREVTQRLQGLESPRNQFAMVLDGLVISAPSLDAGTIITDGRAQISGTFTRDSAATLANQLSFGSLPIAYEVQSQETISATLGSEQLRNGLIAGLIGMALVVVYSLFQYRTLGLVTVGSLLIAAVITYVSIALLSWTIDYRLSLAGVAGLIVAIGFTADSFIVYFERIRDEVRDGRSMSMAVERGWRRAKRTVLAAKSVTLISAVVLYFLAVGGVQGFAFTLGLTTIIDIAVVFWFTHPMLQLLTKVPFFRDGHRWSGLSPERLRAAGGVRYKGAGRVETPVPTASEPEPEPALAGAVSARPAPATDDSGRRMTIAERRAAERRAASTSDDGPPDAPGGAGRTDDAVPGENEESRPGPT0029260_145DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0029260-secD-K03072NANA
AK018_00826423hypothetical proteinGTGGAACTCATCATCCTCTTCGGCGTGCTCGCCGCGCTCATGCTGTTCATGAGCTCGCGCACCCGCAAGCAGCAGAAGCAGCAGGCGGAGTTCCGCTCCTCGCTGGAGCCCGGCCAGGAGGTCATGACCGGTTCCGGGATGGTCGGCACGGTCGTGGACGTCGACGACGCCGCGGACGTCATCACCCTCGAGTCGGCGCCGGGCACCCGCACGCGCTGGCTGCGTGCCGCCATCGTCAAGAAGATGGACGCCCCGGTCGTCGGCGAGGACGCCGACGAGGCCGAGGAGTCCTCGGATGCAGGTAGCATCACCTCCGCAGACGGTGACGTCGACGTCCCGGACGACCTGTCCGGCCTGGACACCGCCCAGCGGGAGTACCAGGAGAACAAGCGTCGGGAGAACGGCGACACCGAGGACAAGTGAMELIILFGVLAALMLFMSSRTRKQQKQQAEFRSSLEPGQEVMTGSGMVGTVVDVDDAADVITLESAPGTRTRWLRAAIVKKMDAPVVGEDADEAEESSDAGSITSADGDVDVPDDLSGLDTAQREYQENKRRENGDTEDKPGPT0025730_380DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025730-yajC-K03210NANA
AK018_008271098ruvB_1COG2255Holliday junction ATP-dependent DNA helicase RuvBGTGGCTGAGGGCGCGATCGATCCCCAGGACCTGGGCGAACGGCTCGTCGGGGCCGGTGCCGACGAGGTCGAGCGGGCCGCGGAGGCGGCGCTGCGGCCCAAGAAGCTCGACGACTTCGTCGGTCAGCGCGTCGTGCGCGACCAGCTCTCCCTGGTCCTGCAGGCCAGCCTGCGACGGGACGCCGCTCCCGACCACGTCCTGCTGTCCGGCCCGCCGGGACTGGGCAAGACGACGCTGGCGATGATCATCGCCGCCGAGCTGGGCACCGCCCTGCGGGTCACCAGCGGCCCCGCCATCCAGCACGCCGGCGACCTGGCCGCCGTGCTGTCCTCCCTGGAGGAGGGCGAGGTGCTGTTCATCGACGAGATCCACCGGCTCGCCCGGCCCGCCGAGGAGCTGCTCTACGTGGCGATGGAGGACTTCCGGGTCGACGTCGTCGTCGGCAAGGGCGCCGGCGCCAGCGCCATCCCGCTGGCGCTGCCGCCCTTCACCGTCGTCGGCGCCACGACGCGGTCCGGTCTGCTGCCGGCGCCGCTGCGGGACCGGTTCGGCTTCACGGGGCACCTCGACTTCTACGAGGCCGACGAGCTCGAGCGCGTCATCCTGCGCTCGGCGGGCCTGCTCGGCGTCGAGATCCGGCACGAGGCGGCCCACGAGATCGCCGGCCGCTCCCGCGGCACGCCCCGCATCGCCAACCGGCTGCTGCGCCGGGTGCGGGACTGGGCGCAGGTGCGCGGCGACGGGACCCTGGACCTGCGCGCGGCGCGGGCGGCCCTGGAGGTCTACGAGGTCGATCCCATCGGCCTGGACCGCCTCGACCGCGCCGTGCTCGAGGCGCTGTGCCGACGGTTCGGCGGCGGTCCGGTCGGGCTGACCACGCTGGCGATGACGGTGGGCGAGGAGTCCGACACGGTCGAGACGGTCGCCGAGCCGTACCTGGTCCGCGAGGGCCTGGTGGCCCGCACGGCACGCGGGCGGGTCGCCACCGCCTCGGCGTGGGAGCACCTCGGGCTGGAGCCGCCGGAGGGCGCCTGGGCACCCGGTGGGCCGTCGTCGGGAACCGGGAGCGCGTCGCGGACGTTGTTCGACGAGGTCTGAMAEGAIDPQDLGERLVGAGADEVERAAEAALRPKKLDDFVGQRVVRDQLSLVLQASLRRDAAPDHVLLSGPPGLGKTTLAMIIAAELGTALRVTSGPAIQHAGDLAAVLSSLEEGEVLFIDEIHRLARPAEELLYVAMEDFRVDVVVGKGAGASAIPLALPPFTVVGATTRSGLLPAPLRDRFGFTGHLDFYEADELERVILRSAGLLGVEIRHEAAHEIAGRSRGTPRIANRLLRRVRDWAQVRGDGTLDLRAARAALEVYEVDPIGLDRLDRAVLEALCRRFGGGPVGLTTLAMTVGEESDTVETVAEPYLVREGLVARTARGRVATASAWEHLGLEPPEGAWAPGGPSSGTGSASRTLFDEVNANANANANA
AK018_00828618ruvA_1COG0632Holliday junction ATP-dependent DNA helicase RuvAATGATCGCCACGCTGCGCGGCACCGTCGCCCAGGTCTCCCTCGACCGCGCCGTCCTCGACGTCGGCGGGGTCGGGTACCTGGTCCTCGCCACGCCCGCCACCCTCGCGGGCCTGCGCGTCGGCGACGCGGCGCACCTGCACACGACGCTCGTGGTGCGGGAGGACTCGATGACGCTGTACGGGTTCGCCGAGGACGCCGAGCGGGAGGTCTTCGAGACGGCCCAGTCGGTCTCCGGCGTGGGCCCGCGCATCGCCCTGGCGATGCTCGCGGTCCTCACGCCGTCCGCCCTGCGCCGGGCCGTCGCCGACGAGGACACCGCGGCCCTGCGGCGCGTCCCCGGCATCGGGGCCAAGAGCGCGCAGCGCATCGTCCTCGAGCTGTCCGGCCGGCTCGGCGAGCCCGGGCACGACGACGGCGCACCGGCCGGCAGCGGTGCACCGGCCGACGAGCGGGGCCAGGTGGTCGAGGCGCTCGTCGGGCTGGGATGGCCGGCGAAGGTCGCCGAGGGTGCCGTGGACAAGGCCCTCGCGGAGACCGGTGCCGAGGTCGTCACGGCCGCCGCGGTGCCGACGACGCTGCGCGCCGCCCTGCGGCAGCTGGGACCCCAGCGTGGCTGAMIATLRGTVAQVSLDRAVLDVGGVGYLVLATPATLAGLRVGDAAHLHTTLVVREDSMTLYGFAEDAEREVFETAQSVSGVGPRIALAMLAVLTPSALRRAVADEDTAALRRVPGIGAKSAQRIVLELSGRLGEPGHDDGAPAGSGAPADERGQVVEALVGLGWPAKVAEGAVDKALAETGAEVVTAAAVPTTLRAALRQLGPQRGNANANANANA
AK018_00829594ruvC_1Crossover junction endodeoxyribonuclease RuvCGTGCGTGTGCTGGGAGTGGATCCGGGACTGACCCGGTGCGGTGTGGGCGTCGTCGACTCCCTGCCGGGCCGTCGGGCCGAGCTGGTCGGGGTCGGGGTGCTGACCTCGGCCCCGTCGACCAGCACGGACCTACGCCTGCTCGAGATCTCCGCCGGGCTGGACGGCTGGCTCGACGAGCACGTCCCCGACGTCGTCGCCGTCGAGCGGGTCTTCGCGCAGAACAACCGCGGCACCGTGATGGGCACGGCCCAGGTCGCCGGCCTGGCGATGGTGGCGGCCGCCCGGCGCGGCGTGCCCGTCGCGCTGCACACCCCCAGCGAGGTCAAGGCCGCCGTCACCGGCTCGGGCCGGGCCGAGAAGGCCCAGGTCCAGCGGATGGTCGCCTCCATCCTGCGGCTGGGCAGCCCGCCACGGCCCGCCGACGCCGCCGACGCGCTCGCGCTGGCCATCACCCACCTGTGGCGGCCCGCCGGCGCGCTGCAGGGCGGCGACCGTCACGAGGTGACCCCCGCGCAGCGCGCCTGGGCGGCCGCCGAGCAGCAGGCACGGTCCCGCCGTGCCGCCCGAGCACCACGGAAGGAGCCGGTCCGATGAMRVLGVDPGLTRCGVGVVDSLPGRRAELVGVGVLTSAPSTSTDLRLLEISAGLDGWLDEHVPDVVAVERVFAQNNRGTVMGTAQVAGLAMVAAARRGVPVALHTPSEVKAAVTGSGRAEKAQVQRMVASILRLGSPPRPADAADALALAITHLWRPAGALQGGDRHEVTPAQRAWAAAEQQARSRRAARAPRKEPVRNANANANANA
AK018_00830756COG0217putative transcriptional regulatory protein/MSMEI_2866ATGTCCGGTCACTCGAAATGGGCCACGACCAAGCACAAGAAGGCCGCGATCGATGCCAAGCGTGGCAAGCTCTTCGCGAAGCTGATCAAGAACATCGAGGTCGCGGCCCGCACCGGCGGGGGAGACCCGGCCGGCAACCCGACCCTCTTCGACGCCATCCAGAAGGCGAAGAAGTCGTCGGTGCCGAACGACAACATCGACCGCGCCGTCAAGCGCGGCTCCGGCGAGGGCGCGGACGCCGTCGAGTACCAGACAATCATGTACGAGGGGTACGGCAACAACGGCATCGCCGTCCTGGTCGAGTGCCTCACGGACAACAAGAACCGCGCCGCGGCCGAGGTGCGTACCGCCTTCACCCGCAACGGCGGCAACCTGGCCGACCCGGGGTCGGTGTCGTACCTGTTCTCCCGCAAGGGGCAGGTCATCGTGCCGAAGGCCGACGGGGTCACGGAGGACGACGTGATGCTCGCGGCCCTGGACGCCGGGGCCGAGGACGTCACCGACCAGGGCGACTACATCGAGGTGCTCTCGGAGGCCACCGACCTCGTCGACGTGCGCTCCGCCATCGTCGACGCCGGCATGGAGTACGACTCGGCCGACTCGATCTGGCACCCGTCGATGCAGGTCGAGGTGGACGTCGAGGGGGCCCGCAAGATCGTGCGCCTCATCGACGCCCTCGAGGACAGCGACGACGTGCAGAACGTCTACGCGAACTTCGACGCCCCCGACGAGGTCATGGCGGCGCTCGACGAGTGAMSGHSKWATTKHKKAAIDAKRGKLFAKLIKNIEVAARTGGGDPAGNPTLFDAIQKAKKSSVPNDNIDRAVKRGSGEGADAVEYQTIMYEGYGNNGIAVLVECLTDNKNRAAAEVRTAFTRNGGNLADPGSVSYLFSRKGQVIVPKADGVTEDDVMLAALDAGAEDVTDQGDYIEVLSEATDLVDVRSAIVDAGMEYDSADSIWHPSMQVEVDVEGARKIVRLIDALEDSDDVQNVYANFDAPDEVMAALDENANANANANA
AK018_00831591pdxT_1COG0311Pyridoxal 5'-phosphate synthase subunit PdxTGTGCGTGAGCACGTCGCCGCCCTGGAGTCCACCGGCGCGCGTGCCGTGCCGGTGCGCCGCCGGTCCGAGCTGGAGTCGGTCGACGGGCTCGTGCTGCCCGGCGGGGAGTCGACCACCATCGACAAGCTGCTGCGGGTCTTCGAGCTGCGCGAGCCGCTGCGGGCGGTGATCGTCGAAGGACTGCCGGTCTACGGTTCGTGCGCCGGGATGATCCTGCTCGCCGACCGCATCACCGGCGGGATCGACGGCCAGCAGACGCTCGGCGGGCTGGACGTCACCGTGCGGCGCAACGCGTTCGGACGGCAGGTCGACTCGTTCGAGGCCGACCTGGCGATCGAGGGTCTCGACGCCCCGCTGCGCTCGGTGTTCATCCGTGCGCCGTGGGTCGACGAGGTCGGTCCGGACGTGGAGGTGCTGGCCCGCATCCCGGAGCGGGCTACCGACGGCACGGGGCTCGGCGAGGCCGCCGGTAAGATCGTGGCAGTACGTTCCGGACGGCTGCTCGCCACCGCGTTCCACCCGGAGGTCACCGGGGACACTCGGGTGCACGCGCTGTTCGTCCGTCTTGTCACCGCATCGCGAAGGAGTTAGMREHVAALESTGARAVPVRRRSELESVDGLVLPGGESTTIDKLLRVFELREPLRAVIVEGLPVYGSCAGMILLADRITGGIDGQQTLGGLDVTVRRNAFGRQVDSFEADLAIEGLDAPLRSVFIRAPWVDEVGPDVEVLARIPERATDGTGLGEAAGKIVAVRSGRLLATAFHPEVTGDTRVHALFVRLVTASRRSPGPT0009185_344DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009185-pdxT|pdx2|yaaE-K08681NANA
AK018_00832858hypothetical proteinATGGCTGAACGGTCAGGCCCGTTTCGGCGAGGGGCTCGGACCACCGCCACCCTTCTGCTCGCCCTGGCGTTGTCGGTCGTCCTTGCAGGCCTGGCCTGGGCACAGTGGTCTGCGGCTGAGCGGGTGGAGGTGCCTGGGGTCATCACCACGGCGAACGTCGACGTCCAGGTGGTGGGGATCGGGGACGGTCTCGCCGGCCCGGGCGGAACGGTCCAGCTCACATCGTTCCGAGTGACGCGTGCCTTCCCGGGAGAGGGATACGCGGAGGTCGTGACCGTGCGCAACGGGAGCAGTCGAGAGGCGATGATCACAGCTGACGTCCTCGCTGGCGAGCTGGATCCCGCGCTCGTGACCACCGCGACGTTCGGCGGAGCCGTGACGGGCTCGTCGTGCTCGTCCGGTGCAGGGCCCTCGGTCGAGGTCCCCGCGGGCGGTACCGCCGAGCTCTGTCTGGCTACCGTGGTGTCCGACGCGGCGCCGTCGGACGCTCAAGGAATCACCGGCAGGCTGGCCGTCACGCTCTCGGCGACGCTGGCCGGCACCGGCTGGACGGACGAGGGAACGATCCAGGGCGGGCCCTCGACGCTGGGAGAGCTGGGCGCCCCGCGGCTCTCGTGCGGGGAACTCGGTGTCCTGTCCGTGGCCCTCACCTGGACCGAGGTGCCCGAGGCGACCGGGTACATCGTGCACTACGGCGTGGACGGTTCCCGGACCTTCGGGGCGTCGGGCCAGAGTGCGCTCATCCCAGGAGTGGTCGAGAGCGGGACAGCCTGGGTCCGGTCGAAACGTGGTGAATGGACCTCGCCGGCATCGAACCTGCGGACCTACACCATCGCGGCTGTCTCGCGATGTCGCTGAMAERSGPFRRGARTTATLLLALALSVVLAGLAWAQWSAAERVEVPGVITTANVDVQVVGIGDGLAGPGGTVQLTSFRVTRAFPGEGYAEVVTVRNGSSREAMITADVLAGELDPALVTTATFGGAVTGSSCSSGAGPSVEVPAGGTAELCLATVVSDAAPSDAQGITGRLAVTLSATLAGTGWTDEGTIQGGPSTLGELGAPRLSCGELGVLSVALTWTEVPEATGYIVHYGVDGSRTFGASGQSALIPGVVESGTAWVRSKRGEWTSPASNLRTYTIAAVSRCRNANANANANA
AK018_00833639hypothetical proteinATGACGAGGCGTTCCGGGAGCATCAGGGTGCTCGCGGCGGCGGCCGCCGCGGTGTGGCTGACGCTCGTCGCCCCGGCGACGTCCGCCGCACCGGACGAACACGGTGAAGCGGACCGGGCGGTCGTGCTGCTGAGCGCCGACGGCGAGACCTGGTCCGAGAGTCTGACGACGCCGCTGCTCGACGACATTCGTCGCTGGGTGCCGGGTGACGTCGGGCGCACCTCGCTCCTGATCCGCCACACCGCCGAAGGCGGGGCTCGAGGGAGGGTCGCCGTGGGTGTCGACGGGGACGCGGAACTCGTCGAGGCGATCGATCTGCGGGTCCGGATCGACGGTGCGCCGTGGTCCGAGGATCCGAGCACTCCGGTCTCCATCGCCGAGGACGAGGTGCTGCCGCTCGACATCGAGGCGGCGTTCGCCGAGGGAGCAGGCAACCTCACGCAGCGGTCGACGGCGTGGCTCGTCGTCTCGGTGGGGCTCTCCGCGAGCGACGTCGGCGACCCGCCCGGGCGGCAGTCGGACGCTGCTGTTCTGCCGCGCACCGGGTCGGGGGTGGCGGCGTTGCTGGCGGTGGCCGGCGCCTTGATCCTGGTCGGCTTCGGCGTGCGCGCGGCCGTGCGGGGCAGCGCTCATGGCTGAMTRRSGSIRVLAAAAAAVWLTLVAPATSAAPDEHGEADRAVVLLSADGETWSESLTTPLLDDIRRWVPGDVGRTSLLIRHTAEGGARGRVAVGVDGDAELVEAIDLRVRIDGAPWSEDPSTPVSIAEDEVLPLDIEAAFAEGAGNLTQRSTAWLVVSVGLSASDVGDPPGRQSDAAVLPRTGSGVAALLAVAGALILVGFGVRAAVRGSAHGNANANANANA
AK018_00834483sipWCOG0681Signal peptidase I WGTGGCGGGTGGGGGCGCGCTCCTGCTCGGCGTCGTCGTGCCACGGCTCGCCGGTGCGACGCCGTACGTGGTGATGACCGACTCCATGACGCCGGCGCTCAGCGTGGGGACGCTTGTCGTCGTGCGGCCCACGGAGCCGGAGGACATCGGGACCGGCGACGTCATCACGTATCAGCTGCAGTCCGGTGAACGGGCCGTGGTGACGCACCGGGTCGTCGGCGTGGGTACGAGTGTGGGTGGGGAACCGTCGTTCGTCACCCGCGGCGATGCCAACGAAGCGGCCGATCCCCACCCGGTCCGCGCAGTCCAGGTCCATGGCACGCTCTGGTACGCGGTGCCTTGGCTGGGGCACCTTTCAAGCATTGTCTCGGGGCAGCAGCGGGAGTCGGTCGGAACAGTGCTGGCTGTGGCGCTCATCGGCTACGCAGGGTTTCTCGTCGTCGCGGAGTATCGGGCGCGGCGCACCAAAGATGAGGGTTCATGAMAGGGALLLGVVVPRLAGATPYVVMTDSMTPALSVGTLVVVRPTEPEDIGTGDVITYQLQSGERAVVTHRVVGVGTSVGGEPSFVTRGDANEAADPHPVRAVQVHGTLWYAVPWLGHLSSIVSGQQRESVGTVLAVALIGYAGFLVVAEYRARRTKDEGSPGPT0026405_961DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-SPORULATION_RELATED_FUNCTION,PGPT0026405-sipW-K13280NANA
AK018_00835531hypothetical proteinATGAACCGTTTGACGAAGGCAGCCGTCGCCACCGGCGCGGCTGCGCTGCTGTTGGTCGGGGGAGCGCAGACCCTCGCCTTCTGGACGGCGGAGGGCACTGCCACGGGGACGGACGTGACCTCCGGAACCCTTTCCATGACCGATGGAGCGTGCGAGGAGTGGTTGCTCGACGACGGTCTTCCGGTGTCCGTGGGCGTCGTGCCCGGCGACACGCTCACCTCGGAGTGCACCCTCACCGTCGGCGGCACCGGGGATCATCTCGCCCTCGGTGAGATCACGGTCAGCGACCCCGCCTGGGCCACGAGCAACGAGCTCACCGCGGCTCTCGACCTGTCGTTGACCAGTGCGACTCTCGCTGGATCAGAACTGACGCTGCCACTCACGGATCCGATCCCGGTAGGGACCGCGGACGAACTGGTCGTCACCATCGAAGCGGTCTTCGACGAGGCGGCAGGCAACGACACTCAGGCGCTCGCGGCCTCGCTCGAGGCAGTGACCGTCCAGGTGACCCAGGCGCACCTCGTGCCGTGAMNRLTKAAVATGAAALLLVGGAQTLAFWTAEGTATGTDVTSGTLSMTDGACEEWLLDDGLPVSVGVVPGDTLTSECTLTVGGTGDHLALGEITVSDPAWATSNELTAALDLSLTSATLAGSELTLPLTDPIPVGTADELVVTIEAVFDEAAGNDTQALAASLEAVTVQVTQAHLVPNANANANANA
AK018_00836582hypothetical proteinATGCGCGAACCCCAGCCCGCGAGCGCCACGGCCGCGTCCCCGTCGTCCGCCTCGCTGGGGCCCGACTGGGTCCGTGGCGACGACGGCCTGCGGCATCGGCGTGCTGCTCGGGTGATCGTGCTCGACGACGCCGGGCGGGTGCTGCTGGTGCGCGGTCACGACGCCGACGACCCGGACCGTTCGTGGTGGTTCACGATCGGCGGCGGGATCGACGCCGGCGAGTCCGAGGAGCAGGCGGCGCTGCGCGAGCTGGGCGAGGAGGCCGGGCTCGTGCTCGGCGCCGGCGACCTCGAGGGGCCGGTGATGACCCGGGCCGGGATCTTCCGCTTCCTCGCCGAGACGTGCCGCCAGGACGAGGTCTTCTTCGTCGCCCGGCTCGACGGCGGCCACGAACCGACCGACCACGGGTGGACCGACGTCGAGCGGGACGTGCTCGACGAGATGCGCTGGCTGACGGTCGCCGAGCTGCGCGCCGAGGCGCGCGAGGTGTTCCCGCGGGTCCTGCCCGACGTCGTCGAGCAGCTCGCCGGCGGGTGGGACGGCGTCGTGCGCCACCTCGGCACCGAGGACGACGACTCGTGAMREPQPASATAASPSSASLGPDWVRGDDGLRHRRAARVIVLDDAGRVLLVRGHDADDPDRSWWFTIGGGIDAGESEEQAALRELGEEAGLVLGAGDLEGPVMTRAGIFRFLAETCRQDEVFFVARLDGGHEPTDHGWTDVERDVLDEMRWLTVAELRAEAREVFPRVLPDVVEQLAGGWDGVVRHLGTEDDDSNANANANANA
AK018_008372538hrpB_1COG1643ATP-dependent RNA helicase HrpBGTGCTCCTGCCTGACGTCTCCGTGCCCGGTGCGGACCTCCCGGTCCGGACGGTGCTGCCCGCCACGGTCGACGCGGTGCGGTCCCACGGTGCGGCGGTGCTGGTGGCTCCGCCCGGGTCCGGGAAGACCTCGCTGCTCCCGCTCGCCCTGGCCGACGCGCTCAAGGGGACGGTCGTCGTCGCCGAGCCGCGACGGATGGCGACCCGCGCGGCCGCGACGCGGCTGGCGGCCCTGGTGGGCGAACCCGTCGGGGAGCGCGTCGGCTACGCGATGCGCGGGGAACGCCGGGGCGGCGAGGGCCTGCGCGTGGAGGTCGTCACCACGGGGCTCCTCGTGCGGCGCCTGCAGCAGGACCCGGAGCTGCCGGGCGTCGCGGCGGTCGTCATCGACGAGTGCCACGAGCGGCATCTCGACGCCGACCTGCTCCTGGCGTTCTGCGCCGACGTCCGGGCGAACCTGCGCGACGACCTGGCGGTCGTCGCGACGTCGGCCACCGCGGACACGGTCAGGTTGAGCCGGGCGCTGGGCGCCGACGCCCCGGCACCCGTGCTCACCGCGACCGCCACCGCGTTCGACGTCGCGGTCGAGTGGGTCCCGCCGCCCGTCGCCACGCCGCTGCTTCCCGGCGGGCGGGTCGACCCCCGGCTGCTGGACCACGTCGCCGCGGTCGTGGAGCGTGCACTGAGCGAGAACGACGGCGACGTCCTGGTGTTCGTCCCCGGGGAGGCCGAGATCGCCGGGGTGACCCGCCGGCTGCCGGGACGGCACGTGCTGCCTCTGTACGGCCGCCAGTCGCGGGCCGAGCAGGACCGCGCGCTGGCCCCGGCCGAGGCGCGGCGGGTCGTGGTCACGACGTCGGTCGCCGAGAGCTCCCTGACCGTGCCGGGCGTGCGGGTCGTGGTCGACGCCGGTCTGTCCCGGGAGCCGAGGACCGACCAGTCCCGCGGCCTCGGCGCCCTGGTCACGTGCCGCGTGTCGCGGTCCTCGGCGGAGCAGCGCGCCGGTCGCGCGGGGCGCGAGGCACCCGGACGGGTCTACCGGTGCTGGTCGAGGACCGACCACGCACGGCTCGACGACCACGCGGCACCCGAGGTCGCCGTCGCCGACCTGGCGTCCTTCTCCCTCGATCTCGCGGCCTGGGGCGCGCCCGGCGGAGAAGGGCTCGCCCTGCTCGACCCGCCGCCGGCACCGGCGATGTCCGCGGCCACCTCGCTGCTGCGCAGCTTCGGAGCGGTGGACGACGGCGGCCGGATCACCGCGCGCGGCCGCCGGATGGCCCGCGTCGGGGTGCACCCGCGGCTGGCGCGCGCCCTGCTCGACGGGACGTCGCGGGTCGGTGCCGACCGGGCACGCGAGGTCGTCGCCCTGCTCTCGGACGACGCGGGACGCGGCGTCGGCGACGACCTGCCGGCGCGGTGGCGTGCCCTGCGGCGGGGTGACGACCGGGCGGCCACCGCACGCTGGCGCGGCGAGGTGCGGCGCCTGGGCCGGGGTGACGGCGCAGGGGCCTCGCGCGACGGACGGACCGACCCGGGCAGGACCGCCCCGGGCGCCGGGGTGCCGGACGATCTCGCGGCGGGGATCGTGGTGGGTCTGGCGTACCCGGACCGCATCGCGCGGGCCCGGGGGAGCGGATCGGTGTCCTACCAGATGTCCGGTGGCACGGGTGCAGCGCTGGACGCGACGTCGCCGCTGCGGTCCGCGTCCTGGCTGGCGATCGCCGTCGCCGACCGGGCCCCGGGCCGCGCCGACGCCAGGATCCGCTCGGCGGCACCGATCGACGAGGCGACGGCCCGCGACGTCGCCGCCGACCTGGTGCAGACCGCCGACCAGATCCGGTGGGAGGACGACCGGATCGTGACCCGACGCGTGGAGTCGCTCGGCGCGATCGTGCTGACCGACGTGCCGTTGGCGCAGCCGGACCCGTCGCGCGTGCAGGCCGCCGCCCGCGACGGGCTACGGCGCAGCGGTCTGTCCGTGCTGAGCTGGTCGCAGTCCGCGGTCGCCCTGCGTGAGCGCCTCGCGTTCTGCCACGCCCACCTCGGTGCTCCGTGGCCCGCGGTCGACGACGACGCGTTGCTGGCCGGCCTCGACGACTGGCTCGGTCCCGAGCTCGCCGACGTGCGCGACGGGCGGGACCTCGCCCGCATCGACATGGCCACGGCGTTGCGGCGCCTGCTGCCCTGGCCGGCCGCGGCCCGGTTGGACGAGCTCGCGCCCGAGCGGCTCGCCGTCCCGTCGGGTGCTCTGGTCCGCCTCGCCTACGACGGGGTCGAGCCACCGGTCCTGGCCGTGAAGCTACAGGAGGTCTTCGGCTGGACGGCCGCACCGGTGGTCGCGGACGGGCGGGTCCCCGTCGTGCTGCACCTGCTGTCGCCCGCACGGCGACCGGTCGCCGTCACCAGCGACCTCGCCTCGTTCTGGCGGCAGGGATACCCGCAGGTCCGGGCTGACCTGCGCGGCCGCTACCCGCGGCATCCCTGGCCGGAGAACCCGCTCGCCGCCGTGGCGACGGCACGGGCGAAGCCGCGCCGATGAMLLPDVSVPGADLPVRTVLPATVDAVRSHGAAVLVAPPGSGKTSLLPLALADALKGTVVVAEPRRMATRAAATRLAALVGEPVGERVGYAMRGERRGGEGLRVEVVTTGLLVRRLQQDPELPGVAAVVIDECHERHLDADLLLAFCADVRANLRDDLAVVATSATADTVRLSRALGADAPAPVLTATATAFDVAVEWVPPPVATPLLPGGRVDPRLLDHVAAVVERALSENDGDVLVFVPGEAEIAGVTRRLPGRHVLPLYGRQSRAEQDRALAPAEARRVVVTTSVAESSLTVPGVRVVVDAGLSREPRTDQSRGLGALVTCRVSRSSAEQRAGRAGREAPGRVYRCWSRTDHARLDDHAAPEVAVADLASFSLDLAAWGAPGGEGLALLDPPPAPAMSAATSLLRSFGAVDDGGRITARGRRMARVGVHPRLARALLDGTSRVGADRAREVVALLSDDAGRGVGDDLPARWRALRRGDDRAATARWRGEVRRLGRGDGAGASRDGRTDPGRTAPGAGVPDDLAAGIVVGLAYPDRIARARGSGSVSYQMSGGTGAALDATSPLRSASWLAIAVADRAPGRADARIRSAAPIDEATARDVAADLVQTADQIRWEDDRIVTRRVESLGAIVLTDVPLAQPDPSRVQAAARDGLRRSGLSVLSWSQSAVALRERLAFCHAHLGAPWPAVDDDALLAGLDDWLGPELADVRDGRDLARIDMATALRRLLPWPAAARLDELAPERLAVPSGALVRLAYDGVEPPVLAVKLQEVFGWTAAPVVADGRVPVVLHLLSPARRPVAVTSDLASFWRQGYPQVRADLRGRYPRHPWPENPLAAVATARAKPRRNANANANANA
AK018_00838993pdxS_1COG0214Pyridoxal 5'-phosphate synthase subunit PdxSGTGGGAACCCACGTCGGCGGTCGGCGCGGACGCGCCGGCACGCACCAGGACACACTCTGTGAGGTTGCGTTGAGCGAGACCACCGGCACCCCTGCCCCCTCGACGGGCGTCGGCGAGGTGGGCACCGCCCGCGTCAAGCGTGGCATGGCCGAGATGCTCAAGGGCGGCGTCATCATGGACGTCGTCACGCCGGAGCAGGCGAAGATCGCCGAGGACGCCGGCGCGGTCGCCGTCATGGCCCTCGAGCGCGTCCCGGCGGACATCCGGGCCCAGGGCGGTCTGGCGCGCATGAGCGACCCGGACATGATCGAGGGCATCATCGACGCCGTCTCCGTGCCGGTGATGGCCAAGGCGCGCATCGGGCACTTCGTCGAGGCGCAGGTGCTGCAGTCCCTCGGTGTCGACTACGTCGACGAGTCCGAGGTGCTGAGCCCTGCCGACTACGCCAACCACATCGACAAGTGGGCGTACACCGTGCCGTTCGTCTGCGGAGCCACCAACCTCGGCGAGGCACTGCGCCGCATCACCGAGGGCGCGGCGATGATCCGCTCCAAGGGAGAGGCCGGCACCGGTGACGTCTCGAACGCCACCACCCACATGCGCCAGATCCGCCAGCAGATCCGCAGGCTGACGTCGCTGCCGACGGACGAGCTGTTCGTCGCGGCCAAGGAGCTCCAGGCTCCCTACGAGCTGGTCGCGGAGGTGGCGCGCACCGGCAAGCTGCCCGTCGTGCTGTTCACCGCGGGCGGCATCGCCACCCCGGCGGACGCCGCGATGATGATGCAGCTGGGCGCCGAGGGCGTTTTCGTCGGCTCGGGCATCTTCAAGTCGGGCGACCCGGCCGCCCGCGCCAAGGCGATCGTCCAGGCCACGACGTTCCACGACGACCCCGACGTGATCGCGAAGGTCTCCCGCGGGCTGGGTGAGGCCATGGTCGGCATCAACGTCGAGGAGGACCCGGAGCCGGTGCGCCTCGCCGAGCGCGGCTGGTGAMGTHVGGRRGRAGTHQDTLCEVALSETTGTPAPSTGVGEVGTARVKRGMAEMLKGGVIMDVVTPEQAKIAEDAGAVAVMALERVPADIRAQGGLARMSDPDMIEGIIDAVSVPVMAKARIGHFVEAQVLQSLGVDYVDESEVLSPADYANHIDKWAYTVPFVCGATNLGEALRRITEGAAMIRSKGEAGTGDVSNATTHMRQIRQQIRRLTSLPTDELFVAAKELQAPYELVAEVARTGKLPVVLFTAGGIATPADAAMMMQLGAEGVFVGSGIFKSGDPAARAKAIVQATTFHDDPDVIAKVSRGLGEAMVGINVEEDPEPVRLAERGWPGPT0009180_540DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009180-pdxS|pdx1|yaaD-K06215NANA
AK018_00839600hypothetical proteinGTGAGCTGGTCGGAGATCGCCCTGGTCGCCGTCGTCCTGCTCGGCCTCGCGCTGTGGTCGGTGTGGGTGACCGCCTCGCGCCTGGACCGCCTGCACCACAAGGTCGTGGCCTCCCGCATCGCGCTGCAGGCCCAGCTCGACCGGCGCTCGCGGGCCGCCGTCGACCTCGCCTCGGCCGGGCTGCTCGACCCGGCGAGCGCCGTGCTCGTGGCCGACGCGGCACTCGCGGCCCCGGGGGCCGGGGACCTGGCGGCGCCGGCCGACCGCCCCTCGACGGCGGAGACCTTCGCGCTGACCGGGCTGCCGGCGGAGCGGGCCCGGGGCGAGTCCGCGCTGTCGGTCACGCTGCGGTCGGTGCTCGACGACGGCACGTGCCGCGCGCTGCAGGAGGATCCGGCGGGCGAGGCGTTGCTGGGCGACCTGGCGGCCGCGTGGTACCGCGCCCAGCTCGCGCGCCGGTTCCACAACGAGGCCGTGGCGCAGGCCCAGCGCGCCCGGGGTCCGCGTGCGGTGCGCCTGCTGCGGCTGGCCGGCCGGGCGCCCCTGCCGCGCACCGTCGAGCTCGACGACCAGATGCCGGCGGGGCTCGAGCGGCCCTGAMSWSEIALVAVVLLGLALWSVWVTASRLDRLHHKVVASRIALQAQLDRRSRAAVDLASAGLLDPASAVLVADAALAAPGAGDLAAPADRPSTAETFALTGLPAERARGESALSVTLRSVLDDGTCRALQEDPAGEALLGDLAAAWYRAQLARRFHNEAVAQAQRARGPRAVRLLRLAGRAPLPRTVELDDQMPAGLERPNANANANANA
AK018_008401221pimA_1COG0438Phosphatidyl-myo-inositol mannosyltransferaseATGCGGCCGCTGCGGGTGGGCATCGTGTGCCCCTACTCCTTCGACGCCCCCGGCGGCGTGCAGTTCCACGTGCGCGACCTGGCCGAGGCGCTGCGCGACCAGGGGCACGAGGTCTCGGTGCTGGCCCCCGCGGGGGAGGGCACCGAGCTGCCCGACGTCGTCACCTCCGCCGGGCGGGCCGTCCCCGTGCGCTACAACGGGTCCGTCGCGCGGCTCGCGTTCGGGCCGCGCACGGCCGCACGCGTGCGTCGGTGGATCGACGCCGGCGACTTCGACGTGCTGCACCTGCACGAACCCATGACGCCGTCGCTGTCCATGCTGGCGCTGTGGGTGGCCGAGGGACCCGTGGTCGCGACGTTCCACACCTCCCAGGTGCGCTCGCGCGCCCTGCAGATCGCCCACCCCCTGCTGCGTCAGTCCCTCGAGAAGATCTCCGCGCGCATCGCTGTCTCGGAGGACGCCCGACGCACCCTCGTGGACCACCTCGGCGGGGACGCCGTCGTCGTGCCCAACGGCGTCTACGTCGACGCGTTCGACGTCGCGCCCGAGCCCCGGTGGCAGGGCACCGCGCAGGCGCCGACCATCGTGTTCCTCGGACGCCTGGACGAACCCCGCAAGGGGCTGCAGGTGCTCGCGCAGGCCGCGCCGGGGATCCTGCGCCAGGTGCCGGGAGCACGGTTCCTCGTCGCCGGCCGCGGCGACACCGGGCGGGCCGACGCCGAGGCTCTGCTGGGCCCCGACGCCGCCTCGTTCGAGTGGCTCGGCGGCGTCAGCGACGCCGACAAGGCCGCGCTCCTGGCCTCCGCCGACCTGTACGTCGCCCCCCAGACCGGCGGCGAGAGCTTCGGCATCGTCCTGGTCGAGGCGATGAGCGCCGGCGCCGGCGTCGTCGCCAGCGACCTCGGAGCGTTCCAGCGCGTGCTCGACGACGGTGCGGCGGGCCGCCTGTTCACCACCGGCGACCCCGCGGCCCTGACCCGGGCCGTCCTCGGGGCGCTCGCGGACCCGCAGGACACCGCCGAGCGGCGTCGACGCGCGAGCGAGTTCGTGCGGCACTTCGACTGGTCGACCGTCACGGGCCAGGTGCTGGCCGTCTACGAGATGGCGGTCGCGGCGGCCGAGGCGCTCGGCGACGGGCGGGTGCGCCAGGACCTCGCCGCCGAGCGGCCCGCCTGGCTCCTGGGTCGCCGGACCCGCACGGAAGCCGGAGGTGACCGGTGAMRPLRVGIVCPYSFDAPGGVQFHVRDLAEALRDQGHEVSVLAPAGEGTELPDVVTSAGRAVPVRYNGSVARLAFGPRTAARVRRWIDAGDFDVLHLHEPMTPSLSMLALWVAEGPVVATFHTSQVRSRALQIAHPLLRQSLEKISARIAVSEDARRTLVDHLGGDAVVVPNGVYVDAFDVAPEPRWQGTAQAPTIVFLGRLDEPRKGLQVLAQAAPGILRQVPGARFLVAGRGDTGRADAEALLGPDAASFEWLGGVSDADKAALLASADLYVAPQTGGESFGIVLVEAMSAGAGVVASDLGAFQRVLDDGAAGRLFTTGDPAALTRAVLGALADPQDTAERRRRASEFVRHFDWSTVTGQVLAVYEMAVAAAEALGDGRVRQDLAAERPAWLLGRRTRTEAGGDRPGPT0024295_28DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024295-pimA-K08256NANA
AK018_00841951COG1560Phosphatidylinositol mannoside acyltransferaseATGAGCGTCGCCGACCTGTACACGTTCGCCTGGCGCCACGCCGCCAAGGTGCCCGAACCGGTGCTGCGCGCGGCCGGCACGCTGGCCGCCGACGCCGTGTGGCTGCGCCGGGGTGCCGGCGTGCGCCGGCTGGAGTCCAACTACGCCCGCGTGCGCCCCGACCTGGACGCGCGCGCCGTGCGACGGCTGGCGCGCGAGGGGATGCGTCGCTACCTGCGCTACTTCCGCGAGGCGTTCACCCTGCAGGCGCTGAGCCCCGAGCAGGTCACCGCCCGGGTGCGTGCCGAGGGCATCGAGCACGTGCGGCCCACGACGCAGGCCGGCGGCGCCGTCGTCCTCGCCCTCGGGCACCTGGGCAACTGGGACCTCGCGGGAGCCTGGGCCACGCCGCACCTCGCCCCCGTCCTGACGGTGGCCGAGCGGCTCGAGCCCCCGCAGCTCTACGCCGAGTTCGTCGCCTTCCGCCGCGCGATCGGCATCGACGTGCTCGGCCTCGGTGACGACGGCGTCTTCCGCGACCTGGTGCGCGGTGCGGCCGACGGGCCCCGGCTGCTACCGCTGCTGTCCGACCGCGACCTGACCACCACGGGCATCGAGGTCGACCTGTGCGGGCACCGCGCCCGGGTCGCCGCCGGGCCCGCCGCGCTCGCCCTCGCCGCCGACGCGCCCCTGGTGCCCGTCGGGATCCGCCACGAGCGGCTGCGCGGCGAGCGGCGGCGGCGGGCGGGCAGCGCCTGGGGGATCGTCATCCGGTTCCACGAACCCGTGCCCTGCCCCGACGGCGTCGACCGGCGCGAGCAGATCGCGACCATGACCCAGAGCTGGGTGGACGCCCTGGGCGCGTTCCTGCGCACCCACACCGCCGACTGGCACATGCTGCAGAAGGTGTTCGTCGCCGACCTCGACCCGGAGCGGTACGCCCGCACCCGCGCCGAGGCGGGGGAGGTCTGAMSVADLYTFAWRHAAKVPEPVLRAAGTLAADAVWLRRGAGVRRLESNYARVRPDLDARAVRRLAREGMRRYLRYFREAFTLQALSPEQVTARVRAEGIEHVRPTTQAGGAVVLALGHLGNWDLAGAWATPHLAPVLTVAERLEPPQLYAEFVAFRRAIGIDVLGLGDDGVFRDLVRGAADGPRLLPLLSDRDLTTTGIEVDLCGHRARVAAGPAALALAADAPLVPVGIRHERLRGERRRRAGSAWGIVIRFHEPVPCPDGVDRREQIATMTQSWVDALGAFLRTHTADWHMLQKVFVADLDPERYARTRAEAGEVPGPT0024265_242DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_PIM_ANCHOR,PGPT0024265-ptfP1-K22311NANA
AK018_00842636pgsA2_2COG0558Phosphatidylinositol phosphate synthaseATGTTCGGCCGTCTGCGGGCCACCATGCAGCGACTGTTCACCCCGCTGGCGGACCTGCTGCTGCGACGGGGCGTCTCGCCGGACGCGGTGACGATCACCGGCACCGTCGTCGTGACCGCGGTGGCCCTCACCCTCCTGCCCACCGGGCACCTGCTGCTGGGCGGGGTGCTGATCGGGCTGTTCGCGCTGACCGACTCCCTCGACGGTGTGATGGCCCGCCGCAGCGGTCGCACCGGGCCGTGGGGAGCGTTCCTCGACTCGACCCTCGACCGGGTCTCCGACGGTGCGGTGTTCGCCGGCATCACGCTGTGGTTCGTGCTGCACCCGGACGAGCCGCTGGCCACGGCGGGGACCGTCGCCGCGCTGGCGTGCCTGGTGCTCGGCTCCGTGGTGTCCTACGCGCGGGCCCGGGCCGAGTCGGTGGGCGCCTCGGCCACCGTCGGCATTGCCGAGCGGACCGACCGCCTCGTGATCGCGCTGGTACCCACCGGGTTCGTGCAGGTCGGGCTGCCCGTCGCCGTCCTCGTGGGCGCGCTCGCCCTGCTCGCCGTCGCGAGCCTCGTGACGGTCGTGCAGCGCGTCGGCACGGTGCGCCGCCAGCTCGCCGTCGCGGGCCCCGGGACGGCGGACGCATGAMFGRLRATMQRLFTPLADLLLRRGVSPDAVTITGTVVVTAVALTLLPTGHLLLGGVLIGLFALTDSLDGVMARRSGRTGPWGAFLDSTLDRVSDGAVFAGITLWFVLHPDEPLATAGTVAALACLVLGSVVSYARARAESVGASATVGIAERTDRLVIALVPTGFVQVGLPVAVLVGALALLAVASLVTVVQRVGTVRRQLAVAGPGTADAPGPT0007705_1678DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995NANA
AK018_00843564COG0537AP-4-A phosphorylaseATGCCCGACGACGCGACCGGCCCCGAGCTGGTGCCGGCGGACCGGTTCGGCCCGCCCGAGGACGACATGGACCGCCTGTGGACGCCGCACCGCATGGTCTACATCGGCGGGCAGGACAAGCCCGCTGACTCCTCGGTGGCGCAGTGCCCGTTCTGCCGGATCCCGGGCGGCGACGACGCCGACGGCCTCGTGGTCGCCCGGGGTGCGGAGTGCTACGTGGTGCTCAACCTGTACCCGTACAACAGCGCGCACCTGATGGTCCTGCCCTACCGCCACGTCTCGGACTACCCGGACCTGACGCCGTCGGAGACGACGGAGCTGGCCACCCTCACCCAGACCGCCATGCGGGTGGTGCGGCAGGTCTACGCGCCGGCCGGGTTCAACCTCGGGATGAACCAGGGCGAGGTGGCCGGCGCCGGCATCGCCGCGCACCTGCACCAGCACGTCGTGCCGCGCTGGCTCGGGGACGCCAACTTCCTGCCCGTCGTCGGACGGACGAAGTCCCTGCCGGAGCTGCTGGCCGACACCCGGGCACGCCTCGCGGCGGCGTGGCCCGCCGCCTGAMPDDATGPELVPADRFGPPEDDMDRLWTPHRMVYIGGQDKPADSSVAQCPFCRIPGGDDADGLVVARGAECYVVLNLYPYNSAHLMVLPYRHVSDYPDLTPSETTELATLTQTAMRVVRQVYAPAGFNLGMNQGEVAGAGIAAHLHQHVVPRWLGDANFLPVVGRTKSLPELLADTRARLAAAWPAAPGPT0021690_498DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021690-hit-K19710NANA
AK018_008442025thrS_1COG0441Threonine--tRNA ligaseGTGTCCGACGTCATGAACACCACCGAACCCACGACCGCGGTGACGGTGGCGACCACGACGACGGGCACCGACCTCTTCGCGGACCGGCGCGACGTCGTCGTCATGCGGGTCGACGGCGAGCTGCTGGACCTGGCGCGCGAGCTCGAGCCGGGCATCGTCGTCGAGCCCGTGACCATCGACTCGCCCGACGGCCTCGCCGTGCTGCGCCACAGCGCCGCCCACGTCCTGGCCCAGGCGGTCCAGCAGGTGAACCCGGACGCGAAGCTGGGCATCGGCCCGCCCGTCACCGACGGCTTCTACTACGACTTCGACGTCGCCGAGCCGTTCACCCCCGACGACCTCAAGAAGCTCGACAAGGCGATGGCGCGCATCGTCAAGGAGGGCCAGACGTTCCGGCGCCGCGTCGTCACCGAGGACGAGGCCCGCGCCGAGCTCGCCGCCGAGCCCTACAAGCTCGAGCTCATCGGGCTCAAGGGCGCCTCGGGGTCGTCCGAGGCCGACGACTCGGGTGTCTCCGTCGAGGTCGGCGGCGGCGAGCTGACCATCTACGACAACGTGCGCGGAGCCGGGCGCGAGAGCGAGCAGGTGGTCTGGTCGGACCTCTGCCGCGGCCCGCACCTGCCCTCCACGAAGCTCATCGGCAACGGCGTCCAGCTCATGCGCTCGGCCGCCGCGTACTGGCGCGGCAGCGAGAAGAACCCCCAGCTGCAGCGCGTCTACGGCACCGCCTGGCCGAGCAAGGACGAGCTCAAGGCCTACCTCGAGCGCCTGGCGGAGGCCGAGCGCCGCGACCACCGACGACTCGGCAGCGAGCTGGACCTGTTCAGCTTCCCCGACCAGATCGGCTCCGGCCTCGCGGTGTTCCACCCCAAGGGCGGCATCGTGCGCACCGAGATGGAGGACTACTCGCGGCGCAAGCACATCGAGGGCGGCTACTCGTTCGTCGCGAGCCCGCACATCACCAAGGGCCGGCTCTTCGAGACCTCGGGCCACCTGGACTGGTACGCCGACGGCATGTACCCGCCCATGCACCTGGACGCCGAGCTCGACGACGACGGCACCGTGCGCAAGCCCGGCCAGGACTACTACCTGAAGCCGATGAACTGCCCGATGCACAACCTGATCTTCGACTCGCGCGGACGCTCCTACCGGGAGCTGCCGCTGCGGCTGTTCGAGTTCGGCACCGTGTACCGGTACGAGAAGTCCGGCGTCGTGCACGGCCTGACCCGCGCCCGCGGCTTCACCCAGGACGACGCGCACATCTACTGCACCCGCGAGCAGATGCGCGACGAGCTGAGCACGACGCTGACGTTCGTGCTCGACCTGCTCAAGGACTACGGCCTGGACGACTTCTACCTGGAGCTGTCGACTCGCGACCCGGAGAAGTCGGTCGGCGAGGACGCGGCCTGGGAGGAGGCGACCCGCACCCTGGAGGAGGTCGCCACGGCCTCCGGGCTGGACCTCGTGCCCGACCCGGGCGGCGCCGCGTTCTACGGGCCGAAGATCTCGGTGCAGGCCAAGGACGCGATCGGGCGGACCTGGCAGATGTCGACCATCCAGCTCGACTTCAACCTGCCCGAGAAGTTCGACCTGGAGTACACCGCCGCGGACGGCTCGCGGCAGCGTCCGGTCATGATCCACCGCGCCCTGTTCGGCTCCATCGAGCGGTTCTTCGCCGTGCTGCTGGAGCACTACGCGGGCGCGTTCCCGGCCTGGCTCGCGCCCGTCCAGGTGCTCGCGGTTCCGGTGGCGGACGCGTTCGACGACTACCTCGGCGACGTCGTCGCCCGGTTGCGCGCCCGGGGCATCCGCGCCGAGCTCGACGTCTCCGACGACCGCTTCGGCAAGAAGATCCGCAACGCCGCCAAGCAGAAGGTGCCGTTCGTGCTCATCGCCGGGGGAGAGGACGCCGAGGCCGGCGCCGTGTCCTTCCGCTACCGCGACGGCACGCAGGAGAACGGCGTGCCCGTGGCCGACGCCGTCGAGCGCGTCGTGGCGGCCGTCCGCGACCGCGAGCAGGTCTGAMSDVMNTTEPTTAVTVATTTTGTDLFADRRDVVVMRVDGELLDLARELEPGIVVEPVTIDSPDGLAVLRHSAAHVLAQAVQQVNPDAKLGIGPPVTDGFYYDFDVAEPFTPDDLKKLDKAMARIVKEGQTFRRRVVTEDEARAELAAEPYKLELIGLKGASGSSEADDSGVSVEVGGGELTIYDNVRGAGRESEQVVWSDLCRGPHLPSTKLIGNGVQLMRSAAAYWRGSEKNPQLQRVYGTAWPSKDELKAYLERLAEAERRDHRRLGSELDLFSFPDQIGSGLAVFHPKGGIVRTEMEDYSRRKHIEGGYSFVASPHITKGRLFETSGHLDWYADGMYPPMHLDAELDDDGTVRKPGQDYYLKPMNCPMHNLIFDSRGRSYRELPLRLFEFGTVYRYEKSGVVHGLTRARGFTQDDAHIYCTREQMRDELSTTLTFVLDLLKDYGLDDFYLELSTRDPEKSVGEDAAWEEATRTLEEVATASGLDLVPDPGGAAFYGPKISVQAKDAIGRTWQMSTIQLDFNLPEKFDLEYTAADGSRQRPVMIHRALFGSIERFFAVLLEHYAGAFPAWLAPVQVLAVPVADAFDDYLGDVVARLRARGIRAELDVSDDRFGKKIRNAAKQKVPFVLIAGGEDAEAGAVSFRYRDGTQENGVPVADAVERVVAAVRDREQVNANANANANA
AK018_00845486hypothetical proteinATGACCACCACCGCCCGCACCACCACCGACCGGACCGGAACCCGCGGCGTGCGGGTCGTCGGGCTGATCGCCCTGATCGCCGGCGTCCTGATGATCGTCGCCGGCGCGGTCACCTGGGCCACCGTGAGCTCGCAGCTCGACGCGCAGAACATCACCGTGTCCGAGGACGCCGCGTTCCTCGCCGGCGACACCGTCGACGGCCCCTTCTCCGCCTACGCCCAGGCGCAGGTCATCGACGAGCACGCGCTCGCCGCCACCGGCGGGCTCACCTACGCCGAGCTGGACCGCGAGGACCCCCTGCGCGACACGGCGATGAACGCCTCGTTCCTGCGGGCGTCCCTGTTCACCTCGGTGGTCGCGTACGGCGTCAGCGCCCTGGTCGTCGGCCTCGGCGTCCTGTTCGGGCTCGTCGGATGGTCGCTGCGGTCCCTCGCGAGCCGCCCGGGGCCCGCCGTCGAGGCCGGCGCACCGCGCGCGACGGTCTGAMTTTARTTTDRTGTRGVRVVGLIALIAGVLMIVAGAVTWATVSSQLDAQNITVSEDAAFLAGDTVDGPFSAYAQAQVIDEHALAATGGLTYAELDREDPLRDTAMNASFLRASLFTSVVAYGVSALVVGLGVLFGLVGWSLRSLASRPGPAVEAGAPRATVNANANANANA
AK018_00846789udgB_1COG1573Type-5 uracil-DNA glycosylaseGTGCCGGTACCGAGCGGGCACGATGGCACGGTGGAGCACAGCGAGCGCCCGACCACCGACCCGGCCACGACGGCGGGTGCGGCGCACAGCCTGGCCGAGCTCGACGACCGCGTGACCGGCTGTCGCGCCTGCCCCCGCCTCGTCGCGTGGCGGGAGAGCGTCGCCGCCGACCCCCGCGCGGCGTTCCGGGGACAGGACTACTGGGCCCGGCCGGTGCCCGGGTTCGGGGACCCGCGGGCCGCCGTCGCGGTCGTGGGGCTCGCGCCGGCCGCCCACGGCGCCAACCGCACGGGCAGGATGTTCACCGGGGACCGCAGCGGCGACTTCCTGTTCGCCGCCCTGCACCGCACCGGGTACGCCGACAGCCCCACCTCGACGGACCGGGACGACGGGACCACCCTCACCGGGATCCGGCTCACCGCGCCCGTGCGGTGCGCTCCCCCGCAGAACCGACCCACGCCCGCCGAACGCGCCCGGTGCGCGCCCTACCTGGCCCGCGAGCTCGAGCTCCTGGCCCCGACGCTGCGGGTGGTGGTGACGCTCGGTGCGATCGGCTGGAACGCCACGCTGTCGTTCCTCGCCACGTCCGGCCGTGCCGTCCCACGACCGCGACCGCCCTTCGCCCACGGCGCCGAGCTGTTCCTGCCCCGCGACACGGGCCGTCCGCCGCTGACCGTGCTGGGCTGCTATCACGTGTCGCCGCACAACACGTTCACCGGTCGCCTCACCGAGGAGATGCTCGACGACGTGCTGCGACGCGCGGGCGAGGTGGCTGCCACGGGCGGCTAGMPVPSGHDGTVEHSERPTTDPATTAGAAHSLAELDDRVTGCRACPRLVAWRESVAADPRAAFRGQDYWARPVPGFGDPRAAVAVVGLAPAAHGANRTGRMFTGDRSGDFLFAALHRTGYADSPTSTDRDDGTTLTGIRLTAPVRCAPPQNRPTPAERARCAPYLARELELLAPTLRVVVTLGAIGWNATLSFLATSGRAVPRPRPPFAHGAELFLPRDTGRPPLTVLGCYHVSPHNTFTGRLTEEMLDDVLRRAGEVAATGGNANANANANA
AK018_00847537hypothetical proteinGTGACCAGCTCCCCCGGACGGACCGAACCGCCGCTGCGCGCCGACGAGGCCACCACCCTGCGGGCCTTCCTCGACTACCACCGCGACACGCTGCGCTGGAAGACGTCCGGCCTGTCGGCAGCCCAGCTCGACACACCGCTGGCACCGTCGACGATGACCCTCGGCGGGCTGGTCAAGCACCTCGCCTACGTCGAGTCGAATTGGTGCAGCGTGGTGCTGGCGGGGCACGACCCCCTGCCGCCGTTCGACACGGCGGACTGGGGACAGGACCGCGACTGGGACTGGCACTCGGCGGCCGCGGACTCCCCCGAGGAGCTGCGCGGCACCTACGACCGGACGGTCGCCGCGGCGGACCGCCTGCTCGACGCCGCCCTGGCCCGCGACGGGCTCGAGACCCTCTCGGCCCGCGAGGACCGCCACGGCGGCGGTCGCTTCACGGTGCGCTGGATCCTGACCCAACTGGTCGAGGAGTACGCCCGGCACAACGGGCACGCCGACCTGCTGCGGGAGTCGATCGACGGTTCGACCGGCGAGTAGMTSSPGRTEPPLRADEATTLRAFLDYHRDTLRWKTSGLSAAQLDTPLAPSTMTLGGLVKHLAYVESNWCSVVLAGHDPLPPFDTADWGQDRDWDWHSAAADSPEELRGTYDRTVAAADRLLDAALARDGLETLSAREDRHGGGRFTVRWILTQLVEEYARHNGHADLLRESIDGSTGENANANANANA
AK018_008481335yfeO_1Putative ion-transport protein YfeOGTGACCACGGACGACGCCGGCGCGCCCGCCGCGCCCGAGGAAGAGCGCCTGTCCGACGAGCAGCGCGCTGCCCGCAACCGGGGCTACGTCGGCGTCCTGGGCCTCTCGGCCGCCATCGGCATCCCCGTCTCGCTCGTCGCGTTCGGGTTCCTGGCACTGCTGCACGCCATCGAGCACGGCGTGTGGGAGTCGCTGCCGGACTCGCTCGGGTACGCCGAGGTGCCGTGGTGGTGGACCCTGCCGTGGCTCGGCGTCGGGGGAGTCCTGGTCGGCGTCGCCATCCGGTGGATGCCCGGGCACGGTGGGCACGTCCCGATCGACGGGCTCGGGATCGAGCCGGTGCCGGCGCGGATGGTGCCGGGGATCCTGCTCGCCGCGCTCGCCGGGCTGCCGCTCGGCGCCGTGCTCGGGCCGGAGGCGCCGCTGCTCGCGCTCGGCTCGGCGTGCGCGCTGCTCTTCGTGCGCCCGCTCGCCTCCCTCGACGATCCCGGCGCCCGGGCCCTGATCACCGTGGCCGGCGCGTCGGCGGCGCTGGCGGCGATCTTCGGCAACCCGCTGATCGGCGCGGTGTTCGTGCTCGAGGCTGCGGGCCTGGCGGGACCCAAGTTGGCCCGCGTGGTGCTGCCCAGCCTGCTCTCGTCGGGCGTGGGCTTCCTCGTCTTCACCGGGATGGGGGCGTGGACCGGCCTGGAGATCTCCTCGCTGTCGCTGCCGCCCCTGGACGGTCCGGTCCGCCCGGACATTGGCGACGTGCTGTGGACCGTCCCGGTCGCCGTCGTCATCGCGTTCGCCGTGCGCCAGGTGCACCACCTGGGCCGGTGGACCCGGGACCGGGCGGTCCGGCGACCGTTCGAGTACGCCGTCGGCGCGGCGCTGGTGGTCGGGCTGTGCGCCGGCGCCTACTCGCTGCTGACCGGGCGGTCCCCCGAGGAGGTCGCGCTGAGCGGCCAGGGCATGCTCGAGCCGCTGGCGTCCGACCCGGCCGCGTGGCCCCTGTGGGTGCTGGTCGCGTTGATCGTGTTCAAGGCCATCGGGTACGGCGTGTCGCTGGGTGCTCTGCGGGGCGGTGCGATCTTCCCGGCCATCCTGCTCGGTGCGGCCGCGGGGGTCCTGGTGTCCGGCCTGCCCGGCTACGGCGCCATCCCGGCCATGGCTGCCGGGATGGCGGCGGCCACCGCCGCGGTGCTGCCCTTTCCCGTGGCCTCGGCCGTCCTGGTCGTGCTGCTGCTCGGACCGAGCGCCACGGCGATGGCGCCGGTCGTGCTGATCGCCGTCGTCGTCGCCTTCGTCTCGGAGCAGATCGTCGCCACGCAGCGGGGCAAGCGGCCGGCCTGAMTTDDAGAPAAPEEERLSDEQRAARNRGYVGVLGLSAAIGIPVSLVAFGFLALLHAIEHGVWESLPDSLGYAEVPWWWTLPWLGVGGVLVGVAIRWMPGHGGHVPIDGLGIEPVPARMVPGILLAALAGLPLGAVLGPEAPLLALGSACALLFVRPLASLDDPGARALITVAGASAALAAIFGNPLIGAVFVLEAAGLAGPKLARVVLPSLLSSGVGFLVFTGMGAWTGLEISSLSLPPLDGPVRPDIGDVLWTVPVAVVIAFAVRQVHHLGRWTRDRAVRRPFEYAVGAALVVGLCAGAYSLLTGRSPEEVALSGQGMLEPLASDPAAWPLWVLVALIVFKAIGYGVSLGALRGGAIFPAILLGAAAGVLVSGLPGYGAIPAMAAGMAAATAAVLPFPVASAVLVVLLLGPSATAMAPVVLIAVVVAFVSEQIVATQRGKRPANANANANANA
AK018_00849360hypothetical proteinATGCCCAGACGAGTCGGACGACCGGGCCTGATCGGAACGATGGCCCGCACCGCGGTCATCACCGGGACGGCCAACGCGGTGAGCCGCGGCATGAACAACCGGGCGGCCGGCCGGGCCGACCAGCGCGCGTCGGCCGACGCCTACAACGCCCAGCAGCAGCAGCTCGCCCAGCAGCAGCAGATGCAGCAGATGCTGGCCCAGCAGCAGGCGCAGCAGGCGCAGCTCGCCCAGGCCCCCGCGGCCTCCTCCGCGGGCACGGGCGACACCATGGCCCAGCTGCAGAAGCTCGGCGACATGAAGAACGCCGGGCTGCTCACGGACGCGGAGTTCTCGGCGGCCAAGGCCAAGATCCTGGGGTGAMPRRVGRPGLIGTMARTAVITGTANAVSRGMNNRAAGRADQRASADAYNAQQQQLAQQQQMQQMLAQQQAQQAQLAQAPAASSAGTGDTMAQLQKLGDMKNAGLLTDAEFSAAKAKILGNANANANANA
AK018_00850420hypothetical proteinATGACATCCACCGCACCCGTGGAGCTCGTGCTCATCGAGTTCCCGCAGAGCGACTTCACCGGGGAGATCCTCGCCGAGCTGGCCCGCCTGCAGTCGGCGGGCACCATCTCGGTGCTGGACGCCCTGGCGATCCGCAAGGACACCGACGGCGACGTGGAGTGGCTCGAGGCCACCGACGCCGGCACCGAGCTCGCCGACCTGGTCGGTGAGCCGAGCGGGCTGCTCGCCGAGGACGACGTCGACGCCATCGCCGAGGAGCTCGTGCCCGGTTCGGCCGTGGGTATGGTCGTCTTCGAGCACACGTGGGCCACCGGGCTCACGTCGGCCATCCGCGACGCTGGCGGACGCCTGATCGACATGACCACGGTCCCGCCAGCCGCGCTCGAGGAACTGGCCGCCGCGATCAGCGAGGAGGACTGAMTSTAPVELVLIEFPQSDFTGEILAELARLQSAGTISVLDALAIRKDTDGDVEWLEATDAGTELADLVGEPSGLLAEDDVDAIAEELVPGSAVGMVVFEHTWATGLTSAIRDAGGRLIDMTTVPPAALEELAAAISEEDNANANANANA
AK018_00851204hypothetical proteinGTGCGCAGCAACGACACCCCGATCTTCGACGCCCTCGCCCGCGAGTTCGAGACCCGCCGCCCCCTGGCGCAGGTGGCGCACGCGCTGGGCGGGGACGCCCTCGGCGACCCGCTGACCCGCACGCACGCCACCGACGTCTCCTTCACCACGTCGTCCAGCGGCCGGACGCTGCCCCGCCGGGCCCGCGGCGACCGGTCCCGGTGAMRSNDTPIFDALAREFETRRPLAQVAHALGGDALGDPLTRTHATDVSFTTSSSGRTLPRRARGDRSRNANANANANA
AK018_00852846hypothetical proteinATGCGCACCCACCGACTCGCCACCGCGCTCGGCGCCACGGCGCTCGCCGCGGCGACCGGCACCGCGTTCGCCCTGCCGGCCGCGGCCGCCGACGGCGACGCGATGCTCTCCGTCCTGCACGGCGTCCCGGACACGACGGTCGACGTGTACGTCGACGGCGAGCTCACGCTGGACGACTTCGAGCCCGGCGACCTCGCCGGTCCCCTGGAGCTGGCCCCGGGGACGTACTCCGTGGCCATCACCGCCGCGGACGCCGAGGACGACTCCGAGCCCGTCATCGGCCCGGTCGACCTCCCGCTCGAGGCGGACATGAGCTACACGGCCGCCGCGCACCTGGACGCCGAGGGCTCGCCCACCGCCACCCTGTTCACCAACGACACGTCGCAGATCGCGGCCGGCGAGGGTCGGCTCACCGTCCGGCACGTCGCCGCGGCCCCGGCCGTCGACGTGCTCGCCGGCGGCGACCCGGTGATCGAGGGGCTGGAGAACCCGGACGAGCAGGTCCTCGACCTGCCGGCCGGCACGGTCTCAGCGGCGGTGGCCGCCGCGGGGACCACCGAGCCGGTGCTCGGACCGGCCGACGTCGACGTGGCCGAGGGCGTGAACACCATCGTGTACGCCTGGGGCTCGCTCGACGACGACTCCCTCGCGCTGGCGACGCAGACCGTCGAGGGCATGCACTCCGCCCCGGGCGGCGTCGACGCCGGCACCACCGGTGAGGCCGCTGCCGCCTCGCACGGGTTCTTCAGCCCTGCCGTGATCATCGCCGCCATGACCGCTCTGGTCGCCCTGGTGACGGTCGTCGGCGTGCGCACCGCGGTGCGGGTGGGCCGCGAGAACCGGTGAMRTHRLATALGATALAAATGTAFALPAAAADGDAMLSVLHGVPDTTVDVYVDGELTLDDFEPGDLAGPLELAPGTYSVAITAADAEDDSEPVIGPVDLPLEADMSYTAAAHLDAEGSPTATLFTNDTSQIAAGEGRLTVRHVAAAPAVDVLAGGDPVIEGLENPDEQVLDLPAGTVSAAVAAAGTTEPVLGPADVDVAEGVNTIVYAWGSLDDDSLALATQTVEGMHSAPGGVDAGTTGEAAAASHGFFSPAVIIAAMTALVALVTVVGVRTAVRVGRENRNANANANANA
AK018_00853738hypothetical proteinATGTCCTCCACCGCGGCGGGCCGGGCACGTCGTCCGGTCCGCCGCGGTGCCGTCCTGGTCGCCGGCCCCGCCCTGGCGCTCGCCCTGGCGGGGACGGTGGCCGTCGCGTTCGAGCAGGAGGAGTCCGTCGGCGGGCGGGTTCCGCTGAGCGAGCCGGCAGCCGCACCGTCGGCGAGCGTGGCGCAGACCCCTGGGCCGACGCCGTCGTCCGGACCGGCGCCGTCGTCCGAGCCGGCGGCGCCCGCCGAGCCCGTGACGCGGGTCCCGGTCCGCGACGCCGCGCCGCCGCAGGCGGCCGACGTCGCCGCTCCGGTCCGGGTGCAGGTGGCGGACACGGTGGACGTCGACGTGCGTCCCGTGGGCGTCGACCCGGACGGCACCATGGAGCTGCCGGGCTCCGGTGACGTCGCGGGGTGGTACCGCTTCGGTGCCGCACCCGCCGACGAGGCCGGGACCACCGTCCTCGCCTCCCACGTCGACACCTCGGAGGGCGTCGGGGCGTTCGCGGCACTCGCCGACGTCGAGCCGGGCGACCGGGTCCGGGTGACCGACGCCGACGGCGCGGTCCACGACTACACGGTCCGGACCGTCGAGCGGTTCCACAAGTCGGGGACGCCGCTCGAGACGATCTTCGACCGGACCGGTGAGCCCCGGCTGGCCCTGGTCACGTGCGGGGGACGCTGGGACGCGGACGCCGGCCACTACGAGGACAACCTGGTCGTCACGGCGGTGCCATGAMSSTAAGRARRPVRRGAVLVAGPALALALAGTVAVAFEQEESVGGRVPLSEPAAAPSASVAQTPGPTPSSGPAPSSEPAAPAEPVTRVPVRDAAPPQAADVAAPVRVQVADTVDVDVRPVGVDPDGTMELPGSGDVAGWYRFGAAPADEAGTTVLASHVDTSEGVGAFAALADVEPGDRVRVTDADGAVHDYTVRTVERFHKSGTPLETIFDRTGEPRLALVTCGGRWDADAGHYEDNLVVTAVPNANANANANA
AK018_00854588rpoE_1COG1595ECF RNA polymerase sigma factor RpoEGTGACGACAGTGGCCGAGGGCGCCACGCCCCCGACCGGCGACCCCGACGCCGAGGTCGCCGCCGCGTTCGCCTCGGGCAGCGAGGACGGGCTGGCGGCCGCGTACCGCCGCTGGTCACCGCTGGTGCACACGGTGGCCCTTCGCTCCCTGGGCGAGGCCTCGGACGCCGAGGACGTGACCCAGCAGGTCTTCGTCGCGGCGTGGCGGGGACGGGAGGGCTACGATCCGGCGCGTGCGAAGCTCTCGACCTGGCTCCTGGGCATCGCACGCCACAAGATCGCCGACGTCCACGCCGCACGTGAACGGGTCCGACGCCAACGCCAAGCCGCGGAGGCGTTCGCTCCGAACCCTGTCGGAGAGATGGACCCGGTCGGAGCCCCCGTCGTGGACCGTGCCCTGGTGGCCGACGAGCTCGCACAGCTCGGCGACCCGGCGGGCACGATCCTGCGACTGGTGTTCTACCGCGACATGACCCACAGTCAGGTCGCCGAGGAGCTGGCTCTGCCCCTCGGTACCGTCAAGAGCCACGTCCGACGAAGCCTGTCCAGGCTGCGCACCCGATGGGAGGTGGATGGTGCAGCACGTTGAMTTVAEGATPPTGDPDAEVAAAFASGSEDGLAAAYRRWSPLVHTVALRSLGEASDAEDVTQQVFVAAWRGREGYDPARAKLSTWLLGIARHKIADVHAARERVRRQRQAAEAFAPNPVGEMDPVGAPVVDRALVADELAQLGDPAGTILRLVFYRDMTHSQVAEELALPLGTVKSHVRRSLSRLRTRWEVDGAARPGPT0014960_3907DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_00855774hypothetical proteinGTGCAGCACGTTGATCCCGAGGTCCTCGCGCTCCTCGCGCTCGGGGAGCAGGACGCCGCGTCCGAGGCCGAGCACGTCCACCTGCGCTCCTGCCCGCAGTGCCGGGCCGAGGCCGACGAGCTGGCCGTGGTGGCGTCCCGGGCGCGCGCGGCCGGCGAGGAGACCCTGGTCGCTCCCCCGGACCACGTCTGGGACCGCATCACCGCCGAGCTGGCGCCGGAGGCGTCCGCCGCGGGCCGCGGACCGGTCGACGGCGGCACACCCGCCACGGGCACGGACCGCGGTGCCGAGGTGGTCGACCTGGCCTCCCGCCGTCGTCGTCCCGTGCTGTGGGGCGCGGTCGCCGCGGGCGTCGCGCTCCTGGCGGGCGTCGGCGGCGGCGTCGCCTGGGAGCGGGCGCAGTCGCCGCTGCCCTCCCCCGCGCCGACGCCGGTGGCCGTCGCGGAGGCCGACCTGGAGGCGCTGCCGGACTGGACCGGGTCCACGGGCCGCGCCGTCGTCGAGGAGCTGCCCGACGGCGAGCGGGAGATCCAGGTGTCGCTGGGCGGGACCGACACGTCCGCCGACGGCTACCGGGAGGTCTGGCTCATCGCCGAGGACCTCAGCGGCATGGTGAGCCTGGGCATGCTGGAGGGTGACGACGGAGCGTTCCCCGTGCCCGAGGGCCTGGACCTGGAGCGCTACTCCCTGGTGGACGTCTCCGAGGAGCCGTTCGACGGCGACCCGACGCACTCGGGCGACTCGATCGTGCGCGGGGGCCTGCAGCAGGCGTGAMQHVDPEVLALLALGEQDAASEAEHVHLRSCPQCRAEADELAVVASRARAAGEETLVAPPDHVWDRITAELAPEASAAGRGPVDGGTPATGTDRGAEVVDLASRRRRPVLWGAVAAGVALLAGVGGGVAWERAQSPLPSPAPTPVAVAEADLEALPDWTGSTGRAVVEELPDGEREIQVSLGGTDTSADGYREVWLIAEDLSGMVSLGMLEGDDGAFPVPEGLDLERYSLVDVSEEPFDGDPTHSGDSIVRGGLQQANANANANANA
AK018_00856669hypothetical proteinATGGGAGTAGCGATCGGCCAGGCCCTCCCGGTCGCGGTCGGGATCGCCATCAGCCCGCTGCCGGTGGTCGCGGTGGCGCTGATGCTGGTGAGTAGCCGGCCCCGGGCCAACGCGCTGACGTTCCTGGCCGCCTGGTCCGTCACGGTCGCCGCGGTGGTCCTCGTCGTGGCGCTGGCCGCCGGGCAGACCTCCGCGCCCGGCCACGACCCGGCACGGTGGACCGGATGGTTGCGCATCGCTCTCGGGGCGGCCCTGCTCCTGCTCGCGCTGCGACGCTGGCGTGCCCGGCCCCGCGGGGACGGCGCGCCGGACCAGCCCCGCTGGATGTCCGCCGTCGAGTCGTTCACCCCGGTGCGCTCCGCCGGGCTCGCCGCGCTGCTGGCCGGGGTCAACCCGAAGAACCTGCTCCTGGCGGTCTCGGCCGGCGTGAGCGTCGCCGGCGCGACGGCGGACACGACGGCGACGCTGGTGGCCGCCGTCGTGCTCGCCGCGGTGGCGAGCCTGGGCGTGGCCGCACCCGTCGTGGTCTACCTCGCGGCCGGCGACAGGGCCGGACCTCGCCTCGAGGAGATCAGGACCTGGCTGGTCCGGCACGACGCGGTGATCATGGCCGTCCTGCTGGTGGTGCTCGGCGCCAAGCTGATGGGCGACGGCATCAGCGTCCTGTGAMGVAIGQALPVAVGIAISPLPVVAVALMLVSSRPRANALTFLAAWSVTVAAVVLVVALAAGQTSAPGHDPARWTGWLRIALGAALLLLALRRWRARPRGDGAPDQPRWMSAVESFTPVRSAGLAALLAGVNPKNLLLAVSAGVSVAGATADTTATLVAAVVLAAVASLGVAAPVVVYLAAGDRAGPRLEEIRTWLVRHDAVIMAVLLVVLGAKLMGDGISVLNANANANANA
AK018_00857870hypothetical proteinATGAGCAACGCATCGATAGTCCGCAGCGGGAGCGGCCGGTCCGCGACCGTGACCGGGTGGATGACGGCGACATGGGTCGGCCTCCTGGTGGGCCTGATCGAGCTGCCGGCCGGCCACGCCGCCCTGATCCTGGCCTGGAGCGGTGGCCTCCCGATGGGCCTGCTCGTCATGGCGGGTGTCCTGGTCGGCCTCGTCATCGCCTCCGCGCTGACCATACGCCGGGCCGGAGAGACATCCTTCCTGGGACCCTTCGCCGTGCTCGTCGGAACCGTTCCGCCTCTCGTCCTCCTGAGCCATGGAGGGCTGGAGGGTGGACGCTGGGCGTTGTCGATGGCGATCAGCAGCCTGCTCGCCACGACGGTCGCCGCCCTCGCGTTCCCCGCGACCCGCCGCCTGGCTGCCCTGGGCTCCGCAGTGTTGCTCGGCATCCCGGCGGTCGTGGCCGGCGTGGCAGCGGTCGTCGGCGTTCTCGACGACTATGCCGAGCGTGCAGCCGTCCTGGCGCGCCCCTACGAGCTATCGGGTGACTACACCGAGTCCTATCTGTCCACCGGGCCCGACGGCTCGTCGATCGCGGTCTACGAGCTCGCGGACGGCGGCGAGATCCACGTCGCTTCCACCGCCTCGATCGACGACGATCTGCCGACGAGCGATCTCAGCACCGGTCCGTGCCACACGAAGACCTCGGACAACACGCAGAACCGGTGGGTCGAGTGTGAGGTCGTGGACGCCCCGTGGCTCGTTCTCAGCGCACATGACGGCGCGACGTCAGAAGACCTCGTCGCCTGCGCCGAACACCTCGAGCCGATGTCAAAGTTCAGCTTCTACCGCTCTTTCGCGCGCAGCTACATCGAGGTGATCCCGGGCTAGMSNASIVRSGSGRSATVTGWMTATWVGLLVGLIELPAGHAALILAWSGGLPMGLLVMAGVLVGLVIASALTIRRAGETSFLGPFAVLVGTVPPLVLLSHGGLEGGRWALSMAISSLLATTVAALAFPATRRLAALGSAVLLGIPAVVAGVAAVVGVLDDYAERAAVLARPYELSGDYTESYLSTGPDGSSIAVYELADGGEIHVASTASIDDDLPTSDLSTGPCHTKTSDNTQNRWVECEVVDAPWLVLSAHDGATSEDLVACAEHLEPMSKFSFYRSFARSYIEVIPGNANANANANA
AK018_00858825hypothetical proteinATGGGTGATCTGCGCGCGCAGACGCACGCTGCGGCGTGCGCCGTCGTCCGCAGCGGGGTATCGCTGGACTCGCTGCTGAGCCGCGCAGAGCAGCGACGCCTGGTACGCGAGGCCCGCGACTGGTACCTGGACACCCACACCGGGAGTGTCACGCGCCGCGGCAGCTGTGTGGTCGCCACGGCCGGCCCACCTGGGGCGGGCAAGTCCTCGATCCTCCCCGCCGCGGTCCCCGATCTCGACTCCCGGTTGGTGGTCGACCCGGACACGGTCAAGGACTACCTCGCCCGCTGGTGTACCGAGCACACGGCGTTCTACGACGACCTGTTGTCCACGGCTCTGCCCGACGGCGGCACTCTGCGTGCGCTGGAGCTGTCACCGCTGCTGCAGACCACGTCCACCGAAGTGGCCAACGCGGTGCGCCGCGACGCCCTCGCCCAGCGCATAGACATCGTCGTCGAGGCCACCATGGCGTCACCCGCGTACGGGGAGCGGCTCCTGCTGTCCCTCGCGAAGGCCGACTACCAGTCGCTGCTCATCGTGTCCGCCGAGACGGACCAACGGACCGCGCGCGCCCGCGCAGTCGAGCGGTGGTGGACCGGCCGCCAGGCTGAGCCCGAACTCGGCGGACGCTTGGTCTTGCCAGAGACCATCGATGCCGCCTACCCCGGCGTCAGATCAGCCAGCGTCTGCCGCACCAACGTCCGCAACCTCGCCGAGACGATCCGCGCCGGCGGCACCGTGATCGAGCACGTCACTATCGCCGAGTACGACGACGGTGCCCTCGCCCGACTCGACGTCGACCCGCCACGCGCACTCGACGCCTGAMGDLRAQTHAAACAVVRSGVSLDSLLSRAEQRRLVREARDWYLDTHTGSVTRRGSCVVATAGPPGAGKSSILPAAVPDLDSRLVVDPDTVKDYLARWCTEHTAFYDDLLSTALPDGGTLRALELSPLLQTTSTEVANAVRRDALAQRIDIVVEATMASPAYGERLLLSLAKADYQSLLIVSAETDQRTARARAVERWWTGRQAEPELGGRLVLPETIDAAYPGVRSASVCRTNVRNLAETIRAGGTVIEHVTIAEYDDGALARLDVDPPRALDANANANANANA
AK018_00859426hypothetical proteinATGTCTGCCGCTACTGTCGCCGCGCACGAGCCGAGCCTGCGGCTGTCCTACGCCCGCGCTCGCCTGGCGGAGATCGAGCGGATGCGACAGGTGTACCTGGCGTCGCTGGACGGGTTGCCGCAGCGAGACATCGCTGCCGCTGTGCACCTGTCCCAGGCCAGCGTGCACCGGATGATCGTCCGGGCACGCGCGCTGGGTATCGAGCGTGAGTCGGTCGAGGAGATCGTGCTGCAGCGGTTCGTCGGGCAGATCTCTACCGCGCAGATGCTGGAACGACTGGCCTCGATCGAGTCATGGGTGCCGCGCGTGGTCGATCCGGTGGACGGTGTCCTGCCCGGCGACTCCCAAGCTGACCTGGACGAGCTGTGCGAGGACGGGCTGATCAGCGAGGACGAGGTCGACCAGGTTCTCGACGCGCATGGGTGAMSAATVAAHEPSLRLSYARARLAEIERMRQVYLASLDGLPQRDIAAAVHLSQASVHRMIVRARALGIERESVEEIVLQRFVGQISTAQMLERLASIESWVPRVVDPVDGVLPGDSQADLDELCEDGLISEDEVDQVLDAHGNANANANANA
AK018_00860231higA2Putative antitoxin HigA2ATGTCCTCCGAGGTGCGCGCGTACCGGTTGCGCGAGCTGCGTGAGGCTCTGGGTCTGACCCAGCTCGAGCTGGCCCAGTGCATCGGGGGGGGGCAGCGTCAGGTCTCTAAGAACGAGCGCCGCGACATCGACAACGCGAAGGTCGGGACCATGGGCAAGTACCTCGAAGTGGTAGGCGGCGACCACGCTATTGAGCAAGTCACGACGGACCGGCGAGTCCACGTCGCCTGAMSSEVRAYRLRELREALGLTQLELAQCIGGGQRQVSKNERRDIDNAKVGTMGKYLEVVGGDHAIEQVTTDRRVHVANANANANANA
AK018_00861105hypothetical proteinATGCGACCAACGTCGACCCCGAAGTCTGAGGGCGAGGTGCTCGAGGTCGAGGACATCGTCGGAAGCGACGTCGCCGACCAGTTGCGCGCCGACCTCACGGGGTAAMRPTSTPKSEGEVLEVEDIVGSDVADQLRADLTGNANANANANA
AK018_00862864dhaA_1Haloalkane dehalogenaseATGGCGAACACCTACCACCGCTTCGTGGACATCGAGGGGCTGCGAGTCTTCTACCGGGAGGCGGGCGACCCCGAGGCTCCGACCGTCGTGCTGCTGCACGGCTACCCCACCAGCTCGTTCATGTTCCGCCACCTCATCCCCGAGCTGGCGGGCGACTTCCACGTGGTCGCGCCCGACCACATCGGTTTCGGGCTGTCCGACGCGCCGTCGGCGGACGAGTTCGGGTACACCTTCGACGCGTTGGCCGCGCACACCGCGAAGTTCCTCGACGCGCTCGGCGTCGATACCTTCGCGATCTACGTCCAGGACTACGGGGCCCCGATCGGCTGGCGGCTCGCGCTGGATGACCCCGACAGGGTGTGGGCCGTCGTCAGCCAGAACGGCAACGCGTACGAGGAGGGCTTCGTCGAGGGGTTCTGGTCGGATGTGTGGGCCTACGCCGCCGAGCCGAACGCCGAGACCGAGGCCGCGTTGCGGCCGGCGCTGGGTGAGGAGGCCATCCGGTGGCAGTACACCCACGGTGTGCCCGACCCGGCCGTGGTCAGCCCGGACACCTGGCGACACGACGCCGCGCTGGTCGCCCGGCCCGGAAACGACCGGGCCCAGCTCGCGCTCTTCCGCGACTACATCACCAACGTCAGGCTCTACCCGGCCCTGCACGAGTACCTGCGCGACTCCCGCGTCCCGGTCCTCGCGGTCTGGGGCGCGAACGACGAGATCTTCGGGCCCGCGGGCGCCGAGGCGTTCCGCCGCCACGCCCACGACCCGGAGATCCACCTGCTCGACGGCGGGCACTTCCTGCTCGAGAGCGCGCTCGACGAGGTGGCCCCTGTGATGCGTCGGTTCCTCGCCCGGCACTCCTGAMANTYHRFVDIEGLRVFYREAGDPEAPTVVLLHGYPTSSFMFRHLIPELAGDFHVVAPDHIGFGLSDAPSADEFGYTFDALAAHTAKFLDALGVDTFAIYVQDYGAPIGWRLALDDPDRVWAVVSQNGNAYEEGFVEGFWSDVWAYAAEPNAETEAALRPALGEEAIRWQYTHGVPDPAVVSPDTWRHDAALVARPGNDRAQLALFRDYITNVRLYPALHEYLRDSRVPVLAVWGANDEIFGPAGAEAFRRHAHDPEIHLLDGGHFLLESALDEVAPVMRRFLARHSPGPT0013255_10DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_00863309hypothetical proteinGTGTTCGGCCCAGCGGCGACCATCGCCTATCTGCCGGCCCGCGACGACCTGCCTGAGGCCACGTCGGGATTCGGCTCGCTGTTCTACTCCGCAGTCTCCGACGAACCGGCCGGGAAGGTCCTGGTGCTCTCTTCAGGCGGCCACCCCGACGCCTCGCACGGGGGCGGGACCAAGCTGTCTCGGTTGCAGCACCACCACGTCGCCGGGGTGCTCGCCGGCAGCCGGTTGCGGGACTTCGGCGAGCTCAGGAAGTACCGGTTCGCGACGTGGTGCCTCGGCGAGGCGACCCGATGGGGCGGCGACGCGTGAMFGPAATIAYLPARDDLPEATSGFGSLFYSAVSDEPAGKVLVLSSGGHPDASHGGGTKLSRLQHHHVAGVLAGSRLRDFGELRKYRFATWCLGEATRWGGDAPGPT0002085_1178DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0002085-ligK|galC-K10218NANA
AK018_00864960hypothetical proteinATGACGACGAAACCTGGCTCGCCGCGGGGTTGGCCGCGCCTTCGGGTCGACGACTGGGGCGACACTCGAGACACCCTGCACCTTCTGACCCAGATCGTGGGCAAGATCCGGCTCTCGCAGGCACCTCTGATCAATCATTGGTGGCAGGTGACTCTCTATGTCAGTCCTCGAGGGCTGACCACCGGAGCGATCCCGTATCGATCCGGCTCTTTCGACATGGAGTTCGACTTCATCGAGCATCAGTTGCAGATCCGCACCAGTGATGGAGGTGGACGTCGCGTCGGACTGTCGGCGAGGCCGGTGGCCGACTTCTACGGCGAGACGATGAAGGCGCTCGTGGCGCTGGGTGTCGAGGCGACGATCGACCCCCGACCCAATGAGGTGGACCCGTCGATCCCGTTCGCGCACGACGACACGCACTGCTCCTACGACTCCGAGGCCGTCGAGCTCTTCTGGCGCCAGCTGTTGCAGGCCAACCGGGTGATCGGCGAGTTCCGATCTCACTTCGTCGGCAAGGTCAGCCCCGTGCACTTCTTCTGGGGTTCCATGGACCTGGCGTGCACCCGGTTCTCGGGCCGCGAAGCGCCTGCACACCCTGGTGGGGCACCCAACGTCGGGGACTGGGTGATGGTCGAGGGCTACTCGCACGAGCTGAGCAGCTGTGGATTCTGGCCGGGTGGGGGAGAGGAGGGTGCGTTCTACGCCTACGCGTACCCCGAGCCGGTCGGCTTCGCCGACTACCCCGTGAAGCCTGACGAGGCGTTCTACAGCTCCGAGCTCGGCCAGTTCCTGCTGCCCTACGAGGCGGTGGCCGACGCCGAGGATCCGGATCGGCAGGTGGCGCAGTTCTTGCACACCAGCTATCGCGCCGCCGCCGAGCTCAGCAAGTGGGACCGGGGCGATCTCGAGGACGACCCGGCCCGATGGCCGCAGCACAGAGCTGGAAGCAGGACGCCATGAMTTKPGSPRGWPRLRVDDWGDTRDTLHLLTQIVGKIRLSQAPLINHWWQVTLYVSPRGLTTGAIPYRSGSFDMEFDFIEHQLQIRTSDGGGRRVGLSARPVADFYGETMKALVALGVEATIDPRPNEVDPSIPFAHDDTHCSYDSEAVELFWRQLLQANRVIGEFRSHFVGKVSPVHFFWGSMDLACTRFSGREAPAHPGGAPNVGDWVMVEGYSHELSSCGFWPGGGEEGAFYAYAYPEPVGFADYPVKPDEAFYSSELGQFLLPYEAVADAEDPDRQVAQFLHTSYRAAAELSKWDRGDLEDDPARWPQHRAGSRTPNANANANANA
AK018_00865735rosB8-demethyl-8-aminoriboflavin-5'-phosphate synthaseATGACGTCCACCATCGCTGAAGGCTCGTCCTCGACAGGCTTCGACGGACTGCGCGCACTGTTCGTCAATGCGACGTTGAAACGTTCTCCCGAGCCGAGCAACACCGATGGACTGGTTCAGGTCAGCGCACGCATCATGCGCAAGCACGGTGTCGACGTCGAGGAGATCCGTGCGGCTGATCACGACATTGCGACCGGTGTGTGGCCGGACATGACCGAACACGGCGAGGATGTCGACGAGTGGCCGGCAATCTTCGAGGCCGTCCTGGGCGCGGACATCTTGGTGCTCGCCGGGCCGATCTGGCTCGGGGACAACAGCTCCGTGATGAAGCGGGTGATCGAGAGGCTCTACTCCTGCTCCAGCCTGCTCAACGATGTCGGGCAGTACGCCTACTACGGCCGGGTCGGCGGGTGTCTCATCACGGGCAACGAGGACGGGGTCAAGCACTGCGCGATGAACGTTCTCTACAGCCTGCAGCACCTGGGCTACACGATCCCGCCTCAGGCCGATGCCGGCTGGGTCGGACCGGCCGGGCCCGGGCCGTCCTACCTCGAACCCGGGTCGGGCGGTCCCGAGAACGACTTCACCAACCGCAACACGACGTTCATGACCTACAACCTCATGCACCTCGCGGCGATGTTGCGTTCCGCGGGTGGCTTTCCGGCCTACGGGAACCGGCGCAGCGAGTGGGACGCCGGCTGCGCACCCGACCAGGAGAACCCCGAGCACCGGTAGMTSTIAEGSSSTGFDGLRALFVNATLKRSPEPSNTDGLVQVSARIMRKHGVDVEEIRAADHDIATGVWPDMTEHGEDVDEWPAIFEAVLGADILVLAGPIWLGDNSSVMKRVIERLYSCSSLLNDVGQYAYYGRVGGCLITGNEDGVKHCAMNVLYSLQHLGYTIPPQADAGWVGPAGPGPSYLEPGSGGPENDFTNRNTTFMTYNLMHLAAMLRSAGGFPAYGNRRSEWDAGCAPDQENPEHRPGPT0004370_3DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT_TRANSPORT_SYSTEM,PGPT0004370-mntH-K03322NANA
AK018_008661056hypothetical proteinATGACAGCGCCTTCGCCCGAGGCTGGGCGGGCACCCGCCCGCCGGCGCCGCTGGCCGTGGGGCCTCGGCATCGTCGTCGGACTGCTGGCCACGGCGGTGGCCGTGCTCACTCTGGTGTTCCAGCTCGGTCTGCCGTGGTGGAGCGGCGAGGGGGACCACCACCAGGTGCACGTCGGGGCGGACGGCACCCGCCAGCGCTACCAGGTGCACGTGCCACCGCAGTACGACGGCGAGACGGCACTACCGGTGATGATGGCGATCCACGGGTGCGGGATGACCGGGTACGGGTGGAACTCGATGAAGGGATCCACCCAGTTCGACCACCTGGCCGACCGGGAGGGGTTCATCGTCGTCTATCCGACCCAGCGCGTGTTCGCCGACCGGATCAACTGCTGGAACTCCGACGACCCGCGCAACCAGGTCCGCGGCAGCGGTGAAGCGGCGCTGCTGGCCGGCGTGGCCCGCGACGTCGTCGAACGCTACGGCGCCGATCCCGAGCGCATCCATGTCGCCGGTGCCTCCTCCGGTGCGGGCACCGCCGTGATCCTCGGCGTCACCTACCCGGACGTGTTCGCCACCGTCACCTCGGTGGCCGGTGGCGAGTACGGACTCGACCAGGTCGACCGGGACGACCCGGACGCGACACCACCGTCGGTCACGGGACGGCAGGCGTGGGCGCAGATGGGCGAGCAGGCCCGCGCCGTGCCGCTGCTGATCGTGCAGGGCGGCAGCGACGACGTCGTGCCGAGTGTCGTCGGTGAGCGGCTGGTGGAGCACTGGAGGACGGTCGTCGACCTCGTCGTCGACGACGCGCTCGACGGCAGCCCGGACCTCGTCACCGACACCGTCGTCCACCCGGCGGCCGGTGACCGCTACGCGTACGAGCGGACCACCTACCGCGACCCCGACGGGAAGGTGCTGATCGAGTACGTGCACGCCGACGAGCTCGCCCACGCCTGGTCCACCCCCGGCGCGGTCGGCATCTTCACCGACACCGCCGGACCCGACGTCACCGCCATCGCCTGGCAGTTCGCCCAGCTCCACGACGCCCGCTGAMTAPSPEAGRAPARRRRWPWGLGIVVGLLATAVAVLTLVFQLGLPWWSGEGDHHQVHVGADGTRQRYQVHVPPQYDGETALPVMMAIHGCGMTGYGWNSMKGSTQFDHLADREGFIVVYPTQRVFADRINCWNSDDPRNQVRGSGEAALLAGVARDVVERYGADPERIHVAGASSGAGTAVILGVTYPDVFATVTSVAGGEYGLDQVDRDDPDATPPSVTGRQAWAQMGEQARAVPLLIVQGGSDDVVPSVVGERLVEHWRTVVDLVVDDALDGSPDLVTDTVVHPAAGDRYAYERTTYRDPDGKVLIEYVHADELAHAWSTPGAVGIFTDTAGPDVTAIAWQFAQLHDARNANANANANA
AK018_00867822hypothetical proteinATGAGCGCCGTCGTCGTCTCCGAGTGGATCAAGCTGCGCAGCCTGCGCTCGACCTGGTGGGCGCTGGGTGCGCTGGCGGCGGTCACGGTCGGTGTCGCAGCGCAGGTCTCCGCGTCGCTGAGCTTTGACGGCGTTGCAGGCGTCGTGTCCCAGGACGCGATGCAGGACATGGGTGTCTATGCGGTGACGGTGAGCACCGACTTCGGTGCACTCGTGGTCGCCGTGCTCGGGGTGCTGGTGATCGCCGGAGAGTATGGCTCCGGCACGATCCGCGCGAGCCTGACGGCGGTGCCGAGCCGGCTGCCGGTGCTCGGCGCCAAGGCACTGGTCCTGGCCGGTGTCACATGCGTGGTGGCCGCCGCGTCGTTCGCCGTCGCCGTGCCGATCTCGTCCGCGCTCCTGTCGGGCAACGACGTCGACATCCACCTCGACGACCCGCAGTACTGGTCTGCCGTGCTCGGCGGTGTCGCCTACCTGGTGCTCGTGGCCCTGATCGCGTTCGCGATCGGTGCGCTGGTGCGCAGCACCACCGGCGGCATCGCGATCTCGCTCGGCCTGCTGCTCGCCGCGCCGGTCGCGCTGAGTCTGCTGCTCGGGGTCGAGCCCCCTGCCTGGGCGGAGAACCTCGTCGTCCTGCTGCCGACGATCGCGGTCAAGCTGCTCTTCACCTACCCGTCCGCACAGCGCTGGGTGGACCTGTCCGCACCCTCCGTCGACGGTGCCTGGGCCAGCGAACCGTGGCACGGCGCCCTTGTCCTTGTCGGCTGGGTGATGGTGCTGCTCGCCGTCGCGGGGCCGCTGCTGCGTCGCCGGGACGCATGAMSAVVVSEWIKLRSLRSTWWALGALAAVTVGVAAQVSASLSFDGVAGVVSQDAMQDMGVYAVTVSTDFGALVVAVLGVLVIAGEYGSGTIRASLTAVPSRLPVLGAKALVLAGVTCVVAAASFAVAVPISSALLSGNDVDIHLDDPQYWSAVLGGVAYLVLVALIAFAIGALVRSTTGGIAISLGLLLAAPVALSLLLGVEPPAWAENLVVLLPTIAVKLLFTYPSAQRWVDLSAPSVDGAWASEPWHGALVLVGWVMVLLAVAGPLLRRRDAPGPT0006730_10375DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_00868936btuD_2Vitamin B12 import ATP-binding protein BtuDATGATCGTGGCGCAGTCCCTGACCAAGCGCTACGGCGCCACGACGGCGGTCGACGGCGTCGACTTCACCGTCCGTCCCGGTGTCGTCACCGGGTTCCTCGGCCCGAACGGCGCCGGCAAGTCGACGACGATGCGGATGATCGTGGGGCTCGACCGTCCCTCGGGCGGCCGTGTGACGGTGGACGGCACGTCGTACGCACGCCTCCCTTTGCCGCTGCACCGCGTCGGCGCGCTGCTGGACGCCTCGGCGGTCCACCCGCGCCGGAGCGCCCGCAACCATCTGCTCGCGCTCGCCGCCACGCACCGGATCGGTGCGCGGAGGGTCGACGAGGTGATCGAGGCCATGGGGCTCGACGCGGTGGCGCGCAAGAAGGTCGGCGGGTTCTCCCTGGGCATGCGCCAGCGGCTGGGACTCGCCGGGGCGTTGCTCGGCGACCCGGACACCCTGATCCTCGACGAACCGGTCAACGGGCTCGACCCCGACGGCGTCGTGTGGATGCGCGGGCTGCTGCGCGCCATGGCAGCCGAGGGTCGCACCGTGTTCCTCTCCTCGCACCTCATGACGGAGATGGCCCTCACGGCCGATCACGTGATCATCCTCGGGCGGGGCCGGGTGGTGGCCGACGCCCCGACGAGCGAGCTGATCGCCGACGTCGGTGCAGACACGGTCCAGGTGCGCACCCCGCAGGCCGCCACCCTCACGCCGCTGCTGTGGGCGGAGGGGGCGACCGTCACCCGCACCCGACCCGACCTGATGTCGGTGGCCGGGCTCGGCGCGCCGCGCATCGCGCAGGTCGCCGCCGGTGCCGGGGTGGTGGTCAACGAGCTCACCCCGGTGACCGGTTCACTGGAGGACGCCTATCTGCAGCTCACGCGCGACGACGTCGAGTACCGTTCCGCCGGCACCTTTCACACCGCGAAGGGGGTTCGCCGATGAMIVAQSLTKRYGATTAVDGVDFTVRPGVVTGFLGPNGAGKSTTMRMIVGLDRPSGGRVTVDGTSYARLPLPLHRVGALLDASAVHPRRSARNHLLALAATHRIGARRVDEVIEAMGLDAVARKKVGGFSLGMRQRLGLAGALLGDPDTLILDEPVNGLDPDGVVWMRGLLRAMAAEGRTVFLSSHLMTEMALTADHVIILGRGRVVADAPTSELIADVGADTVQVRTPQAATLTPLLWAEGATVTRTRPDLMSVAGLGAPRIAQVAAGAGVVVNELTPVTGSLEDAYLQLTRDDVEYRSAGTFHTAKGVRRPGPT0006725_10516DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_00869486hypothetical proteinGTGACGGGTGCGTCCCGGGGGATCGGGCGCGCGACCGCGGTGGCCCTCGCCGGCCGTGGCGACCTGGTCGCTGTCCACTACGGCTCCGACCGAGCGGCGGCCGAGGAGACGCTCGGCCTGCTGAACGGCACGGGGCACACGGTGGTGGGCGGGGATCTGAGGGGAGCGTTTCGCGGTGAGCCGGAGTTCCCCGCGTACGGGGCGGCCAAGGCCGCGCTGCACGCCTTCGGGCAGTCCATGGCCGTCGCCCTCGCTCCGCACGACATCTCGGTCGCTTCGGTCGCTCCGGGATTCGTCAGCTCCGAGCGGAAGGCGGCGAAGCTGGCGAGCCCGACGGGGGACGCCGTGCGGTCGGAAAGCCCGTTCGGGCGAGTGGGGACGCCGGAGGAGGTCGCGCACGCCGTGCTGTACCTGACGTCCCCCGGGGCGGTCTGGGCCTCAGGAGCGATCCTCGACCTCAACGGCGCCTCCCACCTACGCACCTGAMTGASRGIGRATAVALAGRGDLVAVHYGSDRAAAEETLGLLNGTGHTVVGGDLRGAFRGEPEFPAYGAAKAALHAFGQSMAVALAPHDISVASVAPGFVSSERKAAKLASPTGDAVRSESPFGRVGTPEEVAHAVLYLTSPGAVWASGAILDLNGASHLRTPGPT0003180_6320DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_008702769hypothetical proteinGTGGGGATCGTGGGGCGGCGCACCGAGGAGGCGGTGATCGATCGGCTGCTCGCCGACGCACGCGCGGGACGCAGCGCGCCCCTGGTCGTGCGGGGCGAGGCCGGCATCGGCAAGACGGCACTGCTGGAGTCCGCCGGAGACAAGGCGGCGGCCGAGGGTTTCAGGGTGGACCGAGCGACAGCCGTGCCGTCGGAGATGCAGTTCGCCTTCGCCGGCCTGCACCAGATCTGCGCGACGGCTCTGGAGCGTGTCGGCGCGCTGCCCGAGCCGCAGCGCAAGGCGCTGGGGGTGGCGTTCGGGCAGACGGCGGGCCCCGCGCCGGACCGATTCCTGGTGGGACTGGCCGTGCTCAACCTGCTGGCCGAGGTCGCCGAGGAACAACCGTTGCTCTGTCTCGTGGACGACGTGCAGTGGCTGGACGAGGCGTCTGCCCAGGTGCTCGGGTTCGTCGCCCGCCGAGTAGGCGCAGAACGGCTCGCCCTGGTGTTCGCGGTCCGCGACAGCGACGGCATGGGCGTGCCGAGCGCGATGGTCGGGCTGCCAGAGCTCCGGCTGGAGGGGCTGGCGGATCCCGAGGCTCACGAGCTGCTGGCCCTGGCCGCACCTGCGGTGCTCGACGAACGCGTCCGCGAACGGTTCGTCGCCGAGGCGCACGGGAACCCGCTGGCTCTGCTGGAGGCGCCAGGCAGCGGGCAGCCCCCGTACTTCGCCGGCGGGTTCGCGCGACCCGACGCGCTGGACGTGCCGCGCCGGGTCGAGGAGAACTTCCGACAGCGTGCGCACGGCCTTCCGAAGCACACCCAGCTGCTGCTCCTGGTCGCCGCGGCTGAGCCGACGGGGCAGGCGACCCTCCTGTGGCAGGCCGCCTCCCGGCTCGGTATCGCGCGCGAAGCCGCAACCCCCGCGCAGGACTCCGGGCTCGTGGAGATCGACACCAGAGTTCGCTTCCGCCACCCGTTGGTGCGCTCGGCCGTCTACCAGGCCGCCACGGGCGAGGACCGTCGACGGGCACATCAGGCTCTTGCGGAGGTGACCGACCCCGACGACGACCCTGACCGGCGGGCCTGGCACCGAGCGCAGGCTGTCCACGGCACCGACGAGGACGTCGCCCGAGACCTGGTCCGTTCCGCGGACAGGGCGCAGGCCCGCGGTGGGGTGGCCGCTGCAGCGGCGTTGCTGGAGTGCGCGGCCGCCCTGACGCCCGAGCCGTCCGTCCGCGCTGCCCGGGCGCTGGAGGCCGCGTGGGCAAAGCACGAGGCGGGGGCTTCGGAGGCCGCCACCGAGCTGCTTGCCGTCGCCTCGGCGGGCCCGCTGGATACGCTGGGTCGCGGCCGCCTCGAGCTGCTCCGAGCTCAGGTGGCGTTCTACACCACGCGGGGCGGCGACGGCGCGGGGATGCTGCTGGACGCTGCCAGGAGGCTGGCCCCGGTCGACCCGCAGCTCGCACGCGACGCCTACCTCCAGGCGCTCGAGGCGTCGTTCCACGCCGGGCGCCTCGGGGGAGTCGGGACGATGGCGGCGGTCGCAGGCGCCGCTCGGGCGGCGCCTGCGTGCTCGCTACCCCTGCGACCGGTGGATCACCTGCTGGACGGCCTGACCGCCATGTTCACCGACGGCTACGAGGCGAGCGTGCCCGCGCTGCGTCGTGCGCTCGACTCCTTGCGCGGTGACGTCGATGGCGTGGCGCCGGGTGCGGGCGCGGGTCTGGACGAGGACAGTCGTCGTCGGCTGTGGCTGGCCTGCCAGGTCGCGGCCACACTGTGGGACGACGAGGCCGTGCACCGGCTCGCCGAGCTCGACGTGCGCCTCGCCCGCGAGGCCGGGGCGCTGTCGCGGCTCCCCGCGGCCCTCAACGCCCTCTCCTCTGTCCTCGTGCTCACCGGCGACTTACGGCGCGCTGCCGAGCTGGAGGCCGAGGAGAGATCGATCCGACAGGCGACCGGCGCCCCACCGTTGCCGAACGCCCGGCTCATCCTCGCCGCCTGGCAGGGACGCCAGGAGGAGACGACCTCGCTGCACACCACCATGGTGGCCGAGGCGACGGAGCGCGGGGAGGGGGCGACGCTCGGACTGGCCGACGTCGCCATGGCCGCGCTGCACAACGGTCTGGGCAACTACGACAAGGCTCTCGTCGCGGCGAGAGCCCCGGTGGAGCGTGACGAGCTGACCTTCGCCAGCATCGCCCTCCCGGAGCTCGTCGAGGCCGGCGTCCGCGCCGGCGAGCACGGACGGGCCCGCGCGGCGCTGGAGCTGCTCGGGGAGCGGGCACAGGCCAGCGGCACCGCGTGGGCGTCGGGGTTGCACGCCCGGTCGCGGGCGTTGTTGAGCACCGGGCCGGACGCCGAGGAGCACTATCGGGAGGCGGTCGACCAGCTGGCCCGCACTCGGATGGCCACCCACCTGGCCCGTGCACACCTTGTCTACGGCGAGTGGCTGCGCCGCGAGGGACGCCGGCAGGACGCACGCGAGCAGCTGCGTACCGCCCACGAGATGCTGATGCGGATGGGGGTGGACGCCTTCGCGGCCCGGGCAGCCCGCGAGCTGGGTGCCACCGGCGAGCATCCGCGCAGGCGCACGGAGAAGCCCACCGACGACCTCACCGCCCAGGAGCTGCACGTGGCCCGGCTGGTCGCCACCGGCGCGACCTCCCGCGAGGTCGCCGCACAGCTCTTCCTGAGCCCCCGGACCGTCGAGGCCCACCTGCGGGCCATCTTCCGCAAGCTCGCGATCACCTCCCGCCGTGAGCTGCGCGACCTGCCCCTGGCGTGAMGIVGRRTEEAVIDRLLADARAGRSAPLVVRGEAGIGKTALLESAGDKAAAEGFRVDRATAVPSEMQFAFAGLHQICATALERVGALPEPQRKALGVAFGQTAGPAPDRFLVGLAVLNLLAEVAEEQPLLCLVDDVQWLDEASAQVLGFVARRVGAERLALVFAVRDSDGMGVPSAMVGLPELRLEGLADPEAHELLALAAPAVLDERVRERFVAEAHGNPLALLEAPGSGQPPYFAGGFARPDALDVPRRVEENFRQRAHGLPKHTQLLLLVAAAEPTGQATLLWQAASRLGIAREAATPAQDSGLVEIDTRVRFRHPLVRSAVYQAATGEDRRRAHQALAEVTDPDDDPDRRAWHRAQAVHGTDEDVARDLVRSADRAQARGGVAAAAALLECAAALTPEPSVRAARALEAAWAKHEAGASEAATELLAVASAGPLDTLGRGRLELLRAQVAFYTTRGGDGAGMLLDAARRLAPVDPQLARDAYLQALEASFHAGRLGGVGTMAAVAGAARAAPACSLPLRPVDHLLDGLTAMFTDGYEASVPALRRALDSLRGDVDGVAPGAGAGLDEDSRRRLWLACQVAATLWDDEAVHRLAELDVRLAREAGALSRLPAALNALSSVLVLTGDLRRAAELEAEERSIRQATGAPPLPNARLILAAWQGRQEETTSLHTTMVAEATERGEGATLGLADVAMAALHNGLGNYDKALVAARAPVERDELTFASIALPELVEAGVRAGEHGRARAALELLGERAQASGTAWASGLHARSRALLSTGPDAEEHYREAVDQLARTRMATHLARAHLVYGEWLRREGRRQDAREQLRTAHEMLMRMGVDAFAARAARELGATGEHPRRRTEKPTDDLTAQELHVARLVATGATSREVAAQLFLSPRTVEAHLRAIFRKLAITSRRELRDLPLANANANANANA
AK018_00871651yhfK_2COG0702putative sugar epimerase YhfKATGAGGGTCTTCATCATCGGTGTCAGCGGCGCCGTCGGAGGGTTGTTGGCCGAGTCCCTGGTCGCCCGGCACGACGAGGTGACGGGTCTGGTGCGCCGCGACGTCCAGCAGGTCGCCCTCGCCGCCCGGGGCATCAGCAGTCACGTGGCCGAGCTCACGGAGCTGACACCCGACCACCTCGCCGAGCTGCTCGACGCGTCGGACGCCGTCGTCTACACGGCCGGTTCGAACGGTGGTGCGCGCCAGGAGGCGGCCGCCGTCGACGGCGACGGCGTGCTCACCGCGCTCGAGGCCTCCCGCCTCGCCCTCGTGCCCCGGTTCGTGCTGCTGTCGGTGATGCCCGAGGCGCAGCGCGCATGGCGGCTGAGCGACGACGAGGAGCACTACTTCGCCGTCAAGAAGCTCACCGAGGTCGACGTCGCCTCCAGCGACCTGGACTGGCTGATCCTTCGCCCGTCCCTGCTCGTGGACCGTGACGGGACGGGCGCGGTCGCGCTCGGCCCTGCCCAGCCCCACGACGAGATACCTCGCCAGGACGTGGCCGCCACACTGGCCGAGCTGCTGCACGAGCCCCGGGTCCGCCGTCGCATCCTGGAGCTCACCGAGGGCATCACTCCGATCAGGTTCGCCGTGCGGGCGAACGTGATCTGAMRVFIIGVSGAVGGLLAESLVARHDEVTGLVRRDVQQVALAARGISSHVAELTELTPDHLAELLDASDAVVYTAGSNGGARQEAAAVDGDGVLTALEASRLALVPRFVLLSVMPEAQRAWRLSDDEEHYFAVKKLTEVDVASSDLDWLILRPSLLVDRDGTGAVALGPAQPHDEIPRQDVAATLAELLHEPRVRRRILELTEGITPIRFAVRANVINANANANANA
AK018_00872498hypothetical proteinGTGGCCATCACCGACGCGGATCCGCGCGTGCCCGGCGACGATGGCCACATGAGTGACAAGCACCTGAGCAGTATCACCGACAGCCCCGCGCGCGGCGGCCTGCAGCCGACGACGATCGAACGGATCGAGAACGGGTTGGTGGTCGTGGTGGCCGTCGCCGGGACGCTCGCGATCGAGCCCGGGCTGTGGTGGTTCCCCCTCGCCGTCTTCCTGGCGTTCGACCTGTCGATGGTCGGGTACCTGCGGTCACCCGCCGCCGGCGCCGCCACCTACAACGCGATCCACACCTATCTCTGGCCGCTGGGCCTGGCCGTCGCGGCGCTCGCAGCCGGCGCGGACGCTCCGACCCTGTCCCGGTGGCTGGCGTTGGTCGCGCTCGCCTGGGCGTTCCACGTCGGCTTCGACCGGGCGCTCGGGTACGGCCTGAAGCTGCCGGACGCGTTCGCCCACACCCACCTGGGCTGGATCGGCAAGAGCGTCGGCGCGAACGCTCGGTGAMAITDADPRVPGDDGHMSDKHLSSITDSPARGGLQPTTIERIENGLVVVVAVAGTLAIEPGLWWFPLAVFLAFDLSMVGYLRSPAAGAATYNAIHTYLWPLGLAVAALAAGADAPTLSRWLALVALAWAFHVGFDRALGYGLKLPDAFAHTHLGWIGKSVGANARNANANANANA
AK018_00873996hypothetical proteinATGACCAACCTCGACAGCCACCCCGCGCTCGAGCTCCTCGAGCCTCGTCGGCCGTCCACCGCCGTCCAGGTCCTCGAGTCGCGTCCCGTCGCGCTCGGCGGGCCGCGCGCCATGAACGTCCATCGCACGCTGCCTCAGCGGCAGCGGTCGTTGGTGGGTGCCTGGTGCTTCCTGGACCACTACGGCCCCGACGACGTCGCGGACTCCGGCGGCATGTTGGTGCGACGACACCCGCACACCGGGCTGGCCACGGTGTCCTGGCTGTTCACCGGAAGCGTGGACCATCTCGACTCCGGGGGACACGCAGCGACGGTCGTCCCGGGATCGCTCAACCTGATGATCGCGGGTCGCGGCATCACCCACCAGGAGATCAGCGACCCGGCGACCAGCGTGCTGCACGGTGTGCAGCTCTGGTACGCGCTGCCCGAGGAGACCCGTCACGGCGAGAATGCGTTCGTGCGCTACACGCCGGAAACCGTCTCGCTGCCCGGCGCGACGGCACGGGTGTTCATCGGAGAGCTGCTGGGCTCGGCGTCGCCGGTCGAGACGCGCACGCCCCCGCTGCTCGGCGCCGAGCTGATGATCGATCCCGGCGCCTCCGTGGCACTGGACGTCCGAGCCGACTTCGAGCACGCCGTGCTCGCCGAGAGCGACGACGTCGTGGTCGACTCCACGACCGTCCCGCACCGGTCCCTGGCCTACCTGCCCCCAGGGACGGAGTCGTTGGCCATCGCAGCGGGAGCCGCGGGCGGCCGGGTCATCCTCCTGGGTGGTGTGCCTCTGGATGAGCAGATCGTGATGTGGTGGAACTTCGTCGGGCGCGATCATGACGAGATCGTCGAGCTCCGCCGCCGCTACCAGGCGGAACTCGGGTTCGAGCCGGCCGATCCCCGGGACGCGGAGGCGCCGGACCTGTTCGGTCCTTTCCCGCCGGACCAACCGCGAGCGCTGCCCGCACCACCGTTGCCGAACGTCAGGCTGCGCCCGCGCGAGTGAMTNLDSHPALELLEPRRPSTAVQVLESRPVALGGPRAMNVHRTLPQRQRSLVGAWCFLDHYGPDDVADSGGMLVRRHPHTGLATVSWLFTGSVDHLDSGGHAATVVPGSLNLMIAGRGITHQEISDPATSVLHGVQLWYALPEETRHGENAFVRYTPETVSLPGATARVFIGELLGSASPVETRTPPLLGAELMIDPGASVALDVRADFEHAVLAESDDVVVDSTTVPHRSLAYLPPGTESLAIAAGAAGGRVILLGGVPLDEQIVMWWNFVGRDHDEIVELRRRYQAELGFEPADPRDAEAPDLFGPFPPDQPRALPAPPLPNVRLRPREPGPT0019980_574DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911NANA
AK018_00874474hypothetical proteinATGCGTCCGTTCCTGGACAAGACCATGCCGGAGGCGTGGCGCGCCCTGGTGGAGTTCTCGGTGGTGACGTGCACGTCGGCTGCGCAGCGAGGACTCCTCGCGCACGAGTCCGAGCTGATCAAGATGCGCGCGTCACAGCTCAACGGCTGCACCTTCTGCCTCGACCTGCACGGGCGAGAGGCGCGGCAGGCGGGCGTCCCGCAGCAGAAGCTGGACGTGCTGCCGGCCTGGCGTGAGGCGGGCGTGTTCGACGAGCGGGAACGGGCGGTGCTCGCCGTGGCCGAGGCCGCGACGGTCCTCCCGCTGGACGACGGGACCGCCGCCGAGCTGTCCGCCGCCCGGGAGGTCCTCGGTGACGCGACGTTCGCGGCCGCCGAGTGGGTTGCCGTCGCCATCAACGCTTTCAACAGGATCTCCATCCTCAGTGGGCACCCTGTGCGCCCTCGCGACCACGAAGGAAGTCTCGTCCGATGAMRPFLDKTMPEAWRALVEFSVVTCTSAAQRGLLAHESELIKMRASQLNGCTFCLDLHGREARQAGVPQQKLDVLPAWREAGVFDERERAVLAVAEAATVLPLDDGTAAELSAAREVLGDATFAAAEWVAVAINAFNRISILSGHPVRPRDHEGSLVRNANANANANA
AK018_00875843bpoA2_1Non-haem bromoperoxidase BPO-A2ATGGGCTACATCACCGTAGGGAACGAGAACAGCACGCCCGTCGAGCTGTACTACGAGGACCAGGGATCCGGGCAGCCGGTCGTGCTGATCCACGGCTACCCCCTCAACGGTCACAGCTGGGCACGTCAGACCAAGGAGCTGCTCGACCAGGGATACCGGGTGATCACCTACGACCGGCGCGGTTTCGGCCAGTCCTCCAAGGTGCACCACGGCTACGACTACGACACCTTCGCCGCCGACCTCAACACCGTGCTCGAGTCCCTCGACCTGCGCGACGTCGTGCTCGTCGGCTTCTCGATGGGCACCGGTGAGCTGGCCCGCTACGTCGCCCTGTACGGGCACGAGCGCATCGACAAGCTGGCGTTCCTCGCCTCGCTCGAGCCGTTCCTCGTCCAGCGTGACGACAACCCCGAGGGCGTGCCGCAGGAGGTCTTCGACGGCATCGCCGAGGCGGCCGAGGGGGACCGGTACGCCTGGTACACCGAGTTCTTCAAGAACTTCTACAACCTCGACGAGACCCTCGGCTCGCTCATCAGCCCCGAGGCCGTCCAGGCGAGCTGGAACGTCGCGGTCGGCAGCGCCCCGGTCGCCGCCTACGCCGTCGTCCCGGCCTGGATCGAGGACTTCCGGGCCGACGTCGACGCCGTGCGTGCCACCGGCAAGCCGACGATGATCCTGCACGGCACCAAGGACAACATCCTGCCGATCGACGCCACCGCTCGTCGGTTCCGCCAGGCGTTGCCGGACGCGACCTACGTCGAGATCGAGGACGCGCCGCACGGCCTGCTGTGGACGCACGGCGACCACGTCAACGACGCCCTGAAGTCCTTCCTGGGCGGGTGAMGYITVGNENSTPVELYYEDQGSGQPVVLIHGYPLNGHSWARQTKELLDQGYRVITYDRRGFGQSSKVHHGYDYDTFAADLNTVLESLDLRDVVLVGFSMGTGELARYVALYGHERIDKLAFLASLEPFLVQRDDNPEGVPQEVFDGIAEAAEGDRYAWYTEFFKNFYNLDETLGSLISPEAVQASWNVAVGSAPVAAYAVVPAWIEDFRADVDAVRATGKPTMILHGTKDNILPIDATARRFRQALPDATYVEIEDAPHGLLWTHGDHVNDALKSFLGGPGPT0013125_709DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433NANA
AK018_008761386hypothetical proteinATGAGCGCAGAGGCACAGCCGCAGCCGCGGGCGCGTTCCTCGGACCGTGTCAGCGCGACGGTGCAGGACGGCCGTGACGCACGCAAGCGGGCGCCGCGTCGGCAGGCGGCCGACTGGGACCCCCGGGTGCGGGACCGGCGGCCCCTCGACCGGCTGCGCGCGCAGGAGGCGGTCCGCGACCCGGAGCTGCTGCCGCTGCGGTACGCGCGGATGGCGTCGTCCCCGTGGGCCTACCTGCGCGGTGCCGCTGCCGTGATGGCTGCCGACCTTGCGGCCGCTCCTCGCTCGGGGCTCGACGTCCAGATGTGCGGTGACGCGCACGTCCTGAACTTCGGCTTCTGGGCGTCGCCGGAGCGGCAGCTGCTGTTCGACGCGCGCGATTTCGACGAGACCCTCCCGGGCCCGTTCGAGTGGGACCTCAAGCGCCTCGTGACCAGCGTTCACGTCCTCGCGGCGTCTGAACGGCTCGCCGCGGGGTGCGGGGAGAGCTCGGCGGCCGCCGCCGTGGAGGGGTACCGCACGGCGATGCGTCGGTATGCGCGGATGGGGGAGCTGGACGTCTGGTACGACAGGATCCCGCCCGACGTGCCGCTCGAGCACCTGTCGTCGCAGCACGCCGAGGCCGCCGTGCGCCTCATCGAGAAGCAGTCCAGGAAGCGGACCCATCACGGCGCGGCCAAGCAGCTCGTGACCGACGAGGGCGGGCAGCGCCGGATCATCCGCGACCCGATGAAGCGGATGGACGACGGACTGAGCCGGGAGCGGCAGGTCGCCGCCTACGAGCAGGTCTACGACACGTATCTCGCCTCCATCCCGCTCCACCTGCGCCACCTCGTCAGCCGCTTCACGCGCGTCGACTCCGTGCGTCAGGTCGTCGGCGTGGGGAGCGTCGGGATGCGGGTCTGGCTGCACCTGCTCGAGGGTGACAGCGGTCGTCAGCCGCTGTTCTCCCAGGTGAAGCAGGCCACGGCGTCGGTGTACGAGGAGTTCCTCGGGCCGAGCGAGCTCTCGAACCACGGCGAACGCGTGGTGGTCGGCCAACGTCTCATGCAGACCGCCAGCGACATCTTCCTCGGCCACCTGCACGTCGACGGCTTCGACTACTACGTGCGGCAGTTCCGCGACATGAAGGTCATCCCGCGCGGGAACCAGATCTCCGGCTACCTGCCCCAGTTCGCCTACGCCTGCGGGCACGCCCTGGCCAAGTCCCACGCCCGCAGCGGCGACCCGGCGGCCATCGCGGCGTACATGGGGCGAGGTGCCGCCTTCGCCGACGGGATGCTCGGGTTCGGGCGGGCGTACGCCGAGCAGACGCACGACGACCACGCCGAGCTCGTGTCCGCCATCGGCGCGGGCGAGGTGCGTGCCGCCGAACGGGGATGGTGAMSAEAQPQPRARSSDRVSATVQDGRDARKRAPRRQAADWDPRVRDRRPLDRLRAQEAVRDPELLPLRYARMASSPWAYLRGAAAVMAADLAAAPRSGLDVQMCGDAHVLNFGFWASPERQLLFDARDFDETLPGPFEWDLKRLVTSVHVLAASERLAAGCGESSAAAAVEGYRTAMRRYARMGELDVWYDRIPPDVPLEHLSSQHAEAAVRLIEKQSRKRTHHGAAKQLVTDEGGQRRIIRDPMKRMDDGLSRERQVAAYEQVYDTYLASIPLHLRHLVSRFTRVDSVRQVVGVGSVGMRVWLHLLEGDSGRQPLFSQVKQATASVYEEFLGPSELSNHGERVVVGQRLMQTASDIFLGHLHVDGFDYYVRQFRDMKVIPRGNQISGYLPQFAYACGHALAKSHARSGDPAAIAAYMGRGAAFADGMLGFGRAYAEQTHDDHAELVSAIGAGEVRAAERGWNANANANANA
AK018_008771326glsAGlutaminaseATGAGGTCGATGATCCCCGACTACCTGGACGGGGCTCTGTCCGACGTCGCGGCGGACGACTCCGGTGCGACAGCGGGCTACATCCCCGAGCTCGCGGCGGCAGACCCCGAGCGGCTGGGCGCGGTCTTCGCGACGATCGACGGTCAGGTCTACGGTGCGGGTGACGTTGCGGTGGAGTTCACGATCCAGTCGATCTCGAAGCCGTTCGCCTACGCGTTGGCCCTGTCCGACCGTGGGTTCGAGCCCGTCCTCGCCAAGGTCGGGGTGGAGCCTTCCGGCGAGGCTTTCAACGAGATCTCCCTGGAGGACCGGACCGGACGACCGCTCAACCCCATGATCAACGCCGGTGCCATGACGACGCACGCCCTCACCGGCCCGGAGGGGGCCGACCCCGCCCGACGGGTGGAGCGCGTGATCGACGGTCTCTCGGCATTCGCGGGTCGGCGGTTGCGGGTCGACGAGGCGACGTGTGCCTCCGAGATGCAGCATGCGCACCGCAACCTCGCGATCGCGCACCTGCTGCGCAGCCACGAGATCTTCACGGAGGACCCCCAAGTTGTGGTGGAGGGCTACCTGCGCCAGTGCTCGGTGCTGGTCACGGCGCGGGACCTGGCCATGATGGCTGCGACGTTGGCCAACCGCGGTGTCAACCCGGTCTCGGGTCGGCGCGTGGTCGGCGACCGGGTGGTCCGGCAGGTGCTGAGCGTCATGGCGACCTGCGGGATGTACGACGCCGCCGGTGACTGGGCGACGCAGGTCGGCATCCCCGCCAAGAGCGGCGTCGCCGGCGGGATCATCGGTGCCCTCCCCGGCCAGCTCGGGATCGCGACCTTCTCCCCCCGGTTGGACCTCCACGGCAACAGCGTCCGAGGGGTGTCGCTGTTCGAGCGGTTCTCCTCCGACATGGGGCTGCACGTGATGGAGGTGCCGCCCGCCGCGCGCGCGGTCGTGCGGTCCCACCGCGTACGCGGCACCGCGGGCGACGCCGTCCGCGTCATGCGGCTGCAGGGCGGGATCCGGTTCGCCGGGGCGGAGCGGTTCGTCCGGGAGGTCATGGACCACCCGCCGGGCGAGCCGCGGGTCGCCGTCGACGTCTCCGCGGTCTACTCCATCGACGACGTCTCGCGCCGGATGCTCCTCGAGCTCGTGCGCCGGCTCACCCTGGACGGTCGGGACGTCTACCTGGTCGACCCGGAGGTGATCGTCCCCGACCCGGACCCTGGCGAAGGCGGGCGGCTGACGGTCGTGGGCACCGTCGAGGAGGTCGTCGTCTCTCCCGAAGGCGAGGTTGGCGTCCTGTCAGCGAGGCAGGAGGCCGACGCATGAMRSMIPDYLDGALSDVAADDSGATAGYIPELAAADPERLGAVFATIDGQVYGAGDVAVEFTIQSISKPFAYALALSDRGFEPVLAKVGVEPSGEAFNEISLEDRTGRPLNPMINAGAMTTHALTGPEGADPARRVERVIDGLSAFAGRRLRVDEATCASEMQHAHRNLAIAHLLRSHEIFTEDPQVVVEGYLRQCSVLVTARDLAMMAATLANRGVNPVSGRRVVGDRVVRQVLSVMATCGMYDAAGDWATQVGIPAKSGVAGGIIGALPGQLGIATFSPRLDLHGNSVRGVSLFERFSSDMGLHVMEVPPAARAVVRSHRVRGTAGDAVRVMRLQGGIRFAGAERFVREVMDHPPGEPRVAVDVSAVYSIDDVSRRMLLELVRRLTLDGRDVYLVDPEVIVPDPDPGEGGRLTVVGTVEEVVVSPEGEVGVLSARQEADAPGPT0020215_629DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0020215-glsA-K01425NANA
AK018_00878393hypothetical proteinATGACTGAAGCACGGACGGACACCACCGGCGCCCGGGTCGCCGTCAGGGTCGAGATCGCCGACCCCGTCAGCGCCTACACGATCGCGGTCGACGACGGGCCCGTCGCCGGCAGGGCGGAGTTCGTCGACAGTCCGACGGTCGACGGTGAGCGCATCATCTTCCACACCGAGGTCGACCAGGGCTTCTCCGGACGAGGCCTGGCCAAGATCCTGGTGGCGGAGGCGCTCGCGGACAGCATCCGCCGCGGCCTCACGGTCGTGCCCGTGTGTCCGCTGTTCAGCCGCCACCTGGCCCGGCACGGCGACGAGTTCGTCGCTGCCGGCGGAGCGTTCCGTGAGCCGACGCGCGCGGATCTGTCCGCGGTGACCCTCGCCGTCCGGCACCGGCCGTGAMTEARTDTTGARVAVRVEIADPVSAYTIAVDDGPVAGRAEFVDSPTVDGERIIFHTEVDQGFSGRGLAKILVAEALADSIRRGLTVVPVCPLFSRHLARHGDEFVAAGGAFREPTRADLSAVTLAVRHRPNANANANANA
AK018_00879699hypothetical proteinATGAGTCCCGCCAGCACGACGATCGGGATCCTGGGTGCCGGCAAGCTGGGAACCGTCCTGGCCCGGCTGGCCGTGGCCGCGGGCTACCCCGTCCTGATCTCCGGCTCCGGTGCGCCGGAGAAGATCGCACTGACCACGGAAGTCCTCACCCCGGGTGCCCGGCCCGTCTGGACCACCGAGGCCACCGAGGCCGCGGACCTGGTGGTGCTCGCCCTGCCGCTCAGCAAGCACCGCGACGTCCCGGTCGACGCGCTGGAGGGCAAGCTGGTCGTCGACGCGATGAACCACTGGTGGGAGATCGACGGGCCCCGCGAGGCGATCGTCCCGCGCGACCTCTCCTCGAGCGAGCTCGTGCAGAGGTTCCTCACGGGGGCGCGGGTCGTCAAGGCCTTCAACCACATGGGCTACCACGACCTCGAGAGCGAGGCCCGACCCGCCGGCCCGGCCCGCAAGGCGATCGCCGTCGCCGGCGACGTGCCGGACGACGTGACCGCCGTGTCGGAGCTGGTCGACGTTCTCGGGTTCGACGCGCTCACCATCGGCGACCTCGCGGCGGGGGCCCGGCTCGAACCCGGCACGCCCGCATTCGGCGCGAACGTCGACGTCGAGAGCCTCCGTGCCCTCACCAGCAGCCCGGTGCCCGTCGCTCCGCACGACGAGCACCGAGTGCGGGCACCCGAGGTCTCGAGGCCTGGTTGAMSPASTTIGILGAGKLGTVLARLAVAAGYPVLISGSGAPEKIALTTEVLTPGARPVWTTEATEAADLVVLALPLSKHRDVPVDALEGKLVVDAMNHWWEIDGPREAIVPRDLSSSELVQRFLTGARVVKAFNHMGYHDLESEARPAGPARKAIAVAGDVPDDVTAVSELVDVLGFDALTIGDLAAGARLEPGTPAFGANVDVESLRALTSSPVPVAPHDEHRVRAPEVSRPGNANANANANA
AK018_008801071luxAAlkanal monooxygenase alpha chainATGGACGTCTCGCGGATCGAGTTCGGCATCGACAGCTTCGGGGACCGGCCACGGGACGATCGTGGCGAGGTCGTCTCGCACGCGGAAGCGATCCGCGCCGCCGTGGCGGAGGCAGTCCTGGCCGACCAGGTAGGCATCGACGTGATCGCGCTCGGGGAGCACCACCGGCCCGAGTATGCGATCTCCAGCCCGGAGACCGTGCTCGCCGGTATCGCGACCGCCACGCAGCGCATCCGGTTGGCCTCGGGGGTGACGGTGCTGTCCTCGGACGACCCGGTGCGCGTCTTCCAGCGGTTCGCCACCGTGGACGCGCTTTCCCGTGGACGTGCCGAGGTGATCCTCGGCCGAGGCTCGTTCACCGAGTCCTTCCCGCTCTTCGGGTACGACCTGAAGGACTACGACCTGTTGTTCGAGGAGAAGATCAACCTCTTCCACCAGCTCCTGGACGAACAACCCGTCACCTGGGAGGGCACCACGCGGTCCCCTCTGCACGCGGCCGACGTCTTCCCGAAGACCGAAGGAGGCCGGCTCGGGACATGGGTGGGTGTGGGCGGCACGCCGCAGTCGGTGCTCCGCACCGCCCACTACGGGTTCCGCCTCATGCTCGCGATCATCGGTGGCGCCCCCGACCGGTTCGCGCCCTACGTGGACCTGTATCGGCGCGCGCACGAGCAGCTCGGGACCGACCCTCAGCCCGTCGGGATGCACTCGCCGGGCTTCGTCGCCGCCACGGACGAGGAGGCCAAGGAGTTGTTCTACCCGGGCTACCGGGAGATCCGTGATCGGATCGGCGCGCTGCGCGGCTGGCCCCCGCTGCGCAGGTCGGAGTTCGACGCCGAGGTGGACAGCGGGTCGCTGTACGTCGGGTCGGTCGAGACGGTCGCCGCCAAGATCGCCCACGCGGCCCGGGTGCTCGGCGTGGGCCGGTTCGACATGATCTACTCCGCCGCCGGCACGGTCTCCGCCACCGCGCGGCTGCGTTCGGTCGAGCTCTACGGCACGCAGGTCATCCCTCGAGTGCGTGAGCTCCTGGCCGAGGCGCCGACCGTCGCGACGGGAGCGGCACGATGAMDVSRIEFGIDSFGDRPRDDRGEVVSHAEAIRAAVAEAVLADQVGIDVIALGEHHRPEYAISSPETVLAGIATATQRIRLASGVTVLSSDDPVRVFQRFATVDALSRGRAEVILGRGSFTESFPLFGYDLKDYDLLFEEKINLFHQLLDEQPVTWEGTTRSPLHAADVFPKTEGGRLGTWVGVGGTPQSVLRTAHYGFRLMLAIIGGAPDRFAPYVDLYRRAHEQLGTDPQPVGMHSPGFVAATDEEAKELFYPGYREIRDRIGALRGWPPLRRSEFDAEVDSGSLYVGSVETVAAKIAHAARVLGVGRFDMIYSAAGTVSATARLRSVELYGTQVIPRVRELLAEAPTVATGAARNANANANANA
AK018_00881477hypothetical proteinGTGGTCCATTCCCGGAGGCGACAGGTCCCCACGCATGACGAGCTCGAGGCCTGGCGGGCGTACATCGAGACCTCCGAGATCGTCCGCGCGCGCATCGAGTCCCGTCTGCACGAGGACTCTCGGCTCTCCGGCGGGGACTACCGGGTGCTCCTCGCACTGAGCGAGTCGGGCGGCCGGGCGATGCGATCCTCCGAGCTCGCCGCACACATCGGATGGGAGCGCAGCCGCCTGTCCGGACACCTCGGACGCATGGAACGACGGGGGTTGATCCGTCGCGAGCCGTGCGCGGAGGACGCCCGCGGCTCGCGCGTCGTGCTGACCGATCACGGCGACCGCACCTTCCACGCCAGTACCCGGCCGCACCTTCGCGCGATCACCGAGACCTTCGTCGACGCGCTGACGGCCGAGCAGCTCGACCAGCTGCGTGACATCGCGGCCGCCGTCCGACGCCACCTGCACCTCGACGGTCCGCGCTGAMVHSRRRQVPTHDELEAWRAYIETSEIVRARIESRLHEDSRLSGGDYRVLLALSESGGRAMRSSELAAHIGWERSRLSGHLGRMERRGLIRREPCAEDARGSRVVLTDHGDRTFHASTRPHLRAITETFVDALTAEQLDQLRDIAAAVRRHLHLDGPRNANANANANA
AK018_00882759fabG_13-oxoacyl-[acyl-carrier-protein] reductase FabGATGACACTGCCCCGTCAGGCCACTGCCATCATCACCGGTGCAGGGAGCGAGCACGGCATCGGCTTCGCTGCGGCGCGTCTGCTCAGCACTGCAGGAATGCGTGTCGTCGTCACCTCGACGACGGACCGCATCTTCGACCGCGTCGACGAGCTGCGAGCGCGGGGCGGCACGGCGGAGGGCGTGGTCGCCGATCTCAGGGACCAGACCGGCGTGGACGCCGTCGTCGCACGGGCGAAGGCCGCCTACGGCCATGTCGACGTGCTGGTCAACAACGCCGGCATGACGTCGATCTCCGACCGGGACCCCGCCGGCAGCCTCGCCCGCTGGCACGCCTCGCTGGAACGCAACCTGACCACGACGTTCCTCATGATCCGCGCGGTGGTCGGCGAGATGCAGTCTGCCGGATACGGCCGGATCGTCAACGTCTCGTCGGTGTCGGGACCCGTCGCTGCCTTTCGTGGGAATGTCGCGTACCACGCGGCGAAAGCAGGGATCGTCGGGCTCACGCGAGCGGTGGCGATCGAGACCGCCTCGAGCGGTGTCGTGGTGAACGCCGTCGCGCCGGGCTGGATCGACACGGCGTCCGCGTACGACCACGAGCGCGCCATTGGCGCTGCGACACCCGTCGGGCGCTCCGGCACACCCGAGGAGGTGGCGCACGCGATCGCCTTCCTGGCCGCGGAGGGCGCGTCCTACATCAGCGGCCAGCTCGTCACGGTCGACGGGGCCAACTCGGTCAGCGAGGAGCGCGGCCTCTGAMTLPRQATAIITGAGSEHGIGFAAARLLSTAGMRVVVTSTTDRIFDRVDELRARGGTAEGVVADLRDQTGVDAVVARAKAAYGHVDVLVNNAGMTSISDRDPAGSLARWHASLERNLTTTFLMIRAVVGEMQSAGYGRIVNVSSVSGPVAAFRGNVAYHAAKAGIVGLTRAVAIETASSGVVVNAVAPGWIDTASAYDHERAIGAATPVGRSGTPEEVAHAIAFLAAEGASYISGQLVTVDGANSVSEERGLPGPT0003180_6708DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_00883945hypothetical proteinATGAACTCGTCGCTCGTCGACTCGCTCGAAACCGTCGTCGGCCCTGGCGCCCCGGTCGTCTCCGTCGCCCCCGTCGAGGTGCCCGCCCCGGGCCGGCCCGTCCCGCTGGAGGTGCGCGTGTCCGCCCCGGCGAGCGGCACGGACCTTCCCGTCGTGCTGTTCTCCCACGGTAACGGGTGGAACCTGGACGGGTACGCGCCGCTGACGGCCTTCTGGGCCTCGCGCGGTTTCGTCGTGGTCCAGCCCACTCACCTGGACTCCCGCCGGAACGGTTTCGGGTTCGACCACCCGGTGTTCCCCAGTATCTGGACCGAGCGGATCGCGGACCTCACCCGCGTCCTCGACCAGATCGACACCGTCGTGGCCGCTGTTCCCGGCCTCGACGGTCGCATCGACACCAGCCGGATCGCTGTCGCCGGGCACTCCTGGGGCGCTCAGACGGCGCAGTCGCTCCTGGGAGCACGCATCCTCGACCCGGCGGGTCACGTCGGCGGGGACATGTCGGACGCGCGGGTCTCAGCGGGCATCCTGCTCGCCGCGACCGGTCTCGCCGGCGACCACCTCGCTCCCTTCGCGCAGGAGAACTTCCCGTTCATGCGCCCCTCGTTCCGGGAGCTGACGACACCGACGCTCGTCGTCGCGGGTGACCGCGACCAGTCCAAGATGTCCCGTCGCGGACCTGACTGGTTCACCGACCCGTACACGTACAGTCCCGGTGCCACCGACCTCCTGACGCTCTACGGTGCCGAACACTCTCTGGGCGGGATCGTCGGGTACGAAGTCGCCGAGACCACCGACGAGGACCCGGATCGGGTCGCGGTCGTCCAGCGGATGACCACTGCCTACCTGCGCACGGCTCTGCGGGGCGACGACGACGGCTGGGACGCCGCTCGCGACGTGCTGCGTGGAGGCGCCGACAGTATCGGCCGCGTCGTCAGCAAGTGAMNSSLVDSLETVVGPGAPVVSVAPVEVPAPGRPVPLEVRVSAPASGTDLPVVLFSHGNGWNLDGYAPLTAFWASRGFVVVQPTHLDSRRNGFGFDHPVFPSIWTERIADLTRVLDQIDTVVAAVPGLDGRIDTSRIAVAGHSWGAQTAQSLLGARILDPAGHVGGDMSDARVSAGILLAATGLAGDHLAPFAQENFPFMRPSFRELTTPTLVVAGDRDQSKMSRRGPDWFTDPYTYSPGATDLLTLYGAEHSLGGIVGYEVAETTDEDPDRVAVVQRMTTAYLRTALRGDDDGWDAARDVLRGGADSIGRVVSKNANANANANA
AK018_00884606hypothetical proteinTTGGCCACCACACAGGACAAGCAGTCGCACGGTCCGCGGTCCAGGAAGGTGGGTCGCCCGCGCCGAAGCGGGGAAGCGCTGCTCGACGCTGCGGCCACCGTGTTCGTCCGCTCCGGAGTCGACGCGCCGGTTCGGGAGATCGCGGCGCAGGCGGAGGTCGGCATCGGCACGGTCTACCGTCACTACCCGACACGCGCGGACCTGGTGGTCGCGGTCTTCCGCCACCAGATCGAGTCGTGTGCAGACGCCGGCCCACGGCTGCTGGCGGAGGCCGCGACGCCTGAGGCAGCTCTGCGAGCATGGGTGACCTTGTTCGTGGAGCTCCTGGTCACCAAGCACGGGCTCGCCGACGCGCTGCACGGGGACTCCGCCGGATCCGACGCTCTGCACACCTACTTCGTCGACCGTCTCGTCCCTGTCTGCGCGTCGCTCCTCGACGCTGCGCTCGAGCCCACTGGCTCGGCACCGCCGGTGGACGCGTACAACGTGCTCAAGGGCATCGGAAACCTCTGCATCGGCGCGACGGCCGATGACCGGTACGAGGCCGAGGACGTCGTGCAGCTCCTCGTCTCCGGCGTGCTGGCGCCGCGACCGGAGCTTCCCTGAMATTQDKQSHGPRSRKVGRPRRSGEALLDAAATVFVRSGVDAPVREIAAQAEVGIGTVYRHYPTRADLVVAVFRHQIESCADAGPRLLAEAATPEAALRAWVTLFVELLVTKHGLADALHGDSAGSDALHTYFVDRLVPVCASLLDAALEPTGSAPPVDAYNVLKGIGNLCIGATADDRYEAEDVVQLLVSGVLAPRPELPNANANANANA
AK018_00885714hypothetical proteinATGACGTGGAGCACACGTGAGCTCGCGGACCTCGCGGGCACGACAGTCAACACCGTTCGGCACTACCACGCGCTGGGCCTCCTCAGTGAACCCACCCGCAGGTCCAACGGCTACAAGCAGTACCGCGTCCCGCATCTGGTCCGACTGCTGAGGCTCCGGCGTCTCGCCGACCTTGGCGTCCCGCTCGCGCAGATCGGCACCGCTGAGGGGCGAGGCCTAACGGATGTGCTGCGCTGCCTCGATGCCGCACTGCAAGAAGAGATCGAGCGGTCCCAGCGCGCGCGAGCCGACATCGCGGCCATCCTGCGCGCCGGCGCACCGGTCGACACGCCCCACGGTTTCGAGTCTCTCGCGGCGCGACTGTCCGAGGCCGACCGCTCCCTGATCCACGTCTGCACACAGCTCTACGACCGTGACGCGATGTCGCGCCTCCGCAGGATGGTCACGGCCGAGCCCCCCGCCGTGAGCGCGCAGCTCGCCGCCCTGCCCCCCGATGCGAGCGAGACGGTCCGGGAGCGCCTGGCAGAAGAGGTAGCCCGCAGCGGCGCGAACTGGCGCTCCACCGCCTGGCCCTGGCTCCACACTGCTGCCAAGGAGACCCTGGCCGAGGCGCTGGCCGAGCTGTACAACCCTGCACAGCGAGACGTGCTTCGCCGAGCCACGGCCGCGATGCACGAGCTGCCGGACGCGGCGGAACAGCCAAGAGCGAGCTAGMTWSTRELADLAGTTVNTVRHYHALGLLSEPTRRSNGYKQYRVPHLVRLLRLRRLADLGVPLAQIGTAEGRGLTDVLRCLDAALQEEIERSQRARADIAAILRAGAPVDTPHGFESLAARLSEADRSLIHVCTQLYDRDAMSRLRRMVTAEPPAVSAQLAALPPDASETVRERLAEEVARSGANWRSTAWPWLHTAAKETLAEALAELYNPAQRDVLRRATAAMHELPDAAEQPRASNANANANANA
AK018_0088610082-haloacrylate reductaseATGTCTGATCAGATGAAGGCCGTTGTGCTCGCTCGTTTCGGAGGGGTCGATGCTCTCGAGCTGCGTGACGTCCCCGTACCGCACGTCGGACCCCGCCAGGTGCGGGTGCGGGTCCATGCGACCGCCGTCAACCCGCTCGACGTGCAGATCCGCCGCGGAGACTATCCGGATCATGTCCCGCTACCGGCCATCATCGGGCACGACATCTCCGGGGTGATCGAGGACGTCGGATCCCACGTGACCGAGTTCCGCGTCGGCGACGCCGTCTACTACACGCCCCAGATCTTCGGGGGGCCCGGATCCTACGCCGAGCAGCACGTGGCCGACGTCGATCTCGTCGGACGTCGACCGCGAAACATCAGCCATCTGGAGGCGGCAAGCCTGACGCTCGTCGGCGGAACGGTGTGGGAAGCCCTGGTGACGCGAGCTCGGCTCACGGTGGGGGAGACCGTCCTCGTCCACGGAGGCACGGGCGGCGTCGGGTCGATCGCGATTCAGGTCGCGAAGGCGATGGGCGCGCGAGTGATCACCACGGCAAAGGCCCGCGACGACGAGTTCGTGCGGTCGCTCGGGGCGGACGCGGCCATCGACTACACCTCGGAGGACTATGTCGATGCCGTCGCCGAGATGACGCACGGCCACGGTGTCGACGTCGTCCTCGACACGATCGGCGGCGACACTCTGACCCGGAGCCCGCTGACACTCGCCGATTCCGGACGCGTCGTCACCGTCGTCGACATCGCACAGCCGCAGAACCTCATCGAGGCGTGGGGAGTCAACGCCGCGTACCACTTCGTGTTCACGCGACAGAACCGAGGGAAGCTGGACTCGCTGACCACGCTGGTCGAACGCGGCCTGGTCACGCCGGTGATCGGCGCGACCCTTCCCCTTGATCGGATGGGGGAGGCTCACGAGCTTCTGGAGGACAGGCAGTCCTACGTGCTCCACGGCAAGGTCGCGATCGATGTGGCGGGCGACTCCGTCGCCCTTCCTCCTCGCAGCTCGTAGMSDQMKAVVLARFGGVDALELRDVPVPHVGPRQVRVRVHATAVNPLDVQIRRGDYPDHVPLPAIIGHDISGVIEDVGSHVTEFRVGDAVYYTPQIFGGPGSYAEQHVADVDLVGRRPRNISHLEAASLTLVGGTVWEALVTRARLTVGETVLVHGGTGGVGSIAIQVAKAMGARVITTAKARDDEFVRSLGADAAIDYTSEDYVDAVAEMTHGHGVDVVLDTIGGDTLTRSPLTLADSGRVVTVVDIAQPQNLIEAWGVNAAYHFVFTRQNRGKLDSLTTLVERGLVTPVIGATLPLDRMGEAHELLEDRQSYVLHGKVAIDVAGDSVALPPRSSPGPT0013255_616DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_00887135hypothetical proteinGTGCTGCAGTTCCCCGACGCGGCGGCGGCGAAGGACTGGTACCTCGGCGAGCGATACCAGGAAGTCGTGGTGCACCGCTTCCAGGGTGCGACCTACCGGGCCGTGCTCGTCGACGGTACGGACGCAGAAGCGTGAMLQFPDAAAAKDWYLGERYQEVVVHRFQGATYRAVLVDGTDAEANANANANANA
AK018_00888513hypothetical proteinGTGCAGGTTCCCGAGCTCGTCCAGCCGCTCGTCGTCATGCTCGCCGCCGCGGTTCCGTTCATCGAGGGCGAGGTCGCGTCACTGATCGGCGTGGTGGGCGGTATCCCGCCCGTCGTCGCTGGCCTCGCCGCTGCCGCCGGCAACTTCTTGTGCGTGCTCGTCGTGGTGCTCCTCACGTCGCGAGCGCGCGCCGCCGTGATCGAGAGCCGGTCACCTGCGAACGCCGCCACCGTCGCCGGAACGGGCAACCAGGTGGCCGTCGACGAGCTCCCGGACAAGCCGGAGTCGAAGGGACGCCGGCGCTTCAGGAAGTGGCTCGTGCGATACGGCGTCCCCGGTGCGAGCATCCTCGGACCGCTCGCGATCCCGACGCAGATCACGTCGGCGCTGTTGGTCTCCGGCGGGACCTCGCGCGGCTGGGTGCTGCTGTGGCAGGCCGTCGCGATCGTGCTCTGGACCACGCTCGCGACGTTCTCCGCCTGGGCCGCGATGACGTTCCTCGTCGACGTGTAGMQVPELVQPLVVMLAAAVPFIEGEVASLIGVVGGIPPVVAGLAAAAGNFLCVLVVVLLTSRARAAVIESRSPANAATVAGTGNQVAVDELPDKPESKGRRRFRKWLVRYGVPGASILGPLAIPTQITSALLVSGGTSRGWVLLWQAVAIVLWTTLATFSAWAAMTFLVDVNANANANANA
AK018_008892760hypothetical proteinGTGGGAGCGAGCCTGACCGACCTCACGGGCCGACGCGCGGAGCGCGGGGCCATCGACGACGTGTTTGCTCAGGTGAAGGCCGGTCGCAGCGGGACGCTGGTAGTGCGTGGAGAAGCGGGCATCGGCAAGTCTGCGATCCTGGAGCATGCACACCACACCGCGAGTGCTTCGGGATTCCGCGTGGAGTGCTCGGCCGGAGCGGAGTCCGAGACGCAGTTTGCGTTCGCTGGCCTGCACCACTTGTGCATGCCGTTGCTCGACCGGGCGAAGGCGCTGCCCGAGCCGCAGCAGGCCGCCCTGGGGGTCGCGTTCGGCACGCGCGGCGGTGCGGCGCCCGACCGGTTCCTGCTTGGACTGGCCACCATGAACCTGCTGACCGAGATTGCCGAGGACGGTCCTCTGCTGTGCCTGGTCGACGATGCGCAATGGCTGGACCACGCGTCAGCACAGGTGCTGGCGTTCGTTGCGCGGCGGATGGCTGCCGAGCAGATGGCGCTGGTGTTCGCGTTGCGTGACGGCGACGGCGGCGAAGGTGACGTCGACACGTTCGCCGGGGTGCCTGAGCTGAGGCTGAGTGGGCTCGACGATGTCGACGCGCGGGAGCTGCTGGCTGCTGCCGTTCGTGTGCCGCTGGATGTCGGAGTCCGCGACCGGGTCGTCGCCGAGGCGCGGGGGAATCCTCTGGCGCTGCTGGAGTTGCCCCGAAGCACTCCGCTGACTCGGTTGGCAGGCGGGTTCGAGCCGGACGCGCTGAACGTGCCGAGCCGTGTCGAGGACAGCTTCCGACACCGTTCGAGCAGTCTGCCGGCCGACACGCAGTTGCTGCTGCTGGTCGCGGCTGCCGAGCCGACCGGCGATGTCGGGTTGTTGTGGCGGGCGGTCGACCAGCTGGGGATCGCTCCCGAGACGGCCATACCCGCGGAAGCGGCCGGGTTGCTGGAGATCGGCACGCGGGCGCGGTTTCGCCATCCCCTCGTGCGTTCGGCGGTCTACCGGGCTGCTACACGGCCGGACCGGCGCCGCGCACATCGCGCACTGGCCGCTGCCACCGACCCCCGGCTCGACCCCGACAGGCGGGCCTGGCATCGGGCACACGGAGTGCTGGGCACGGACGAGGACGCCGCCGCAGAGCTCGAGCGATCGGCCAACCGTGCACGCGCCCGGGGCGGGCTGGCGGCCGCAGCCGCGTTCCTCCAGCAGGCAGCCGAGCTGACCCCCAACCGCGACCACCGTACGAGACGGGCCTTGGATGCCGCATACGCCAAGCATGAGGCCGGCGCACCGGAGGACGCCTTGGCGCTGCTGGCAATGGCTGCGGCAGGGTCGCTGAACACGCTGGAGCGCGCCCGCCTCGAGCTCCTGCGAGCCCAGATAGCATTCCACACAACGCGGGGGAGCGAGGCTTCGGGGATGCTGCTGGACGCCGCCAGGACCCTCGCACCACTGGACGCTGCGATGTCGCGCGATACCTACCTTCACGCGCTGCAGGCGTCCTTCCACGCTGGTCGACTCGGCCACGGGCGAGGGTTGCTGGATACGGCCGAGGCCGCAGGAAGCGCACCTGCAGCGCCGACGCCGCCACGACCGGCCGACCTGCTGCTGGACGGACTGGCCACGAGGATCACACAAGGGTATGAACCCAGCGTTCCCACCCTGCAGCGAGCCTTGGAGGCTTTGCGCAACCACGAGTCCCGACCGAGCGACGACAACGGCCGCTGGTTGTGGCTGGCCTGCCATGTCGGGGCGATGCTGTGGGACGACGAGTCGATCTACGTGCTGGCCAGCAGCGCCGTCCGCGCCGCGCGAGACGCCGGCGCTCTGGCAACGCTTCCCGGCGCTCTCAACGCTCTGGCCTCGGTGCTCGTACTCACGGGTGAGCTCGTCCGTGCGGCTGAACTGTTCGCAGAGGAGGACGCGATCATCCGGGCCACCGGCGCCCCGCCGCTCCCCAACTCGAGGCTCGTGCTGGCTGCTTGGCGGGGGAAGCAAGATCGGGACACCGATCTCTTCGCCACAACGATCGCGGCGGCGACAGGACGAGGCGAAGGTCTCGCCATCAGCAGCGCTGAGATCTCACTCGCCTACTTGCACAACGGGCTCGGCAACTACGACAGCGCGCTGGAAGCCGCGACGCCGTTGCTCGAGCTCGACGAGTTGGCGCACAGCAGCGTTGCACTCCCCGAACTGATCGAGGCGGCCGTCCGAGCGGGCCAACCGAAGCGCGCCGCCACCGCCTTGGAGAAGCTCAGCTCGCGAGCCAGCGCCAGCGGAACCCAGTGGGCGCTCGGGCTGGCGGCTCGTTCGCGAGCGCTGACCAGCACTGGTCCTGCCGCCGAGGAGCACTATCGCGAGGCCATCGACCGGCTGCGAGACTGCCGGATGGCCACCCACCTCGCGCGCGCTCACCTGCTGTACGGCGAGTGGCTACGCCGCGAAGGCCGTCGCAAAGACGCCCGCGGACAACTCCGCACCGCCCACGAGATGCTTTCGGGGATGGGTGCGGAAGCGTTCGCCGAACGCGCTGCTCGTGAGCTGCGCGCCACCGGTGAGCACCCACGCAGACGCACCAGCCAACCGACGGACACGCTGACCGCGCGGGAACTGCACATCGCCCGACTCGTCGCCACAGGAGCGACCTCTCGCGAGGTCGGCGCACAGCTCTTCCTCAGTCCCCGTACGGTCGAAGCCCATCTGCGCAGCATCTTTCGTAAGCTCGACATCACCTCACGAAGACAGCTGAGCAGACTGCGGCTCCCGTGAMGASLTDLTGRRAERGAIDDVFAQVKAGRSGTLVVRGEAGIGKSAILEHAHHTASASGFRVECSAGAESETQFAFAGLHHLCMPLLDRAKALPEPQQAALGVAFGTRGGAAPDRFLLGLATMNLLTEIAEDGPLLCLVDDAQWLDHASAQVLAFVARRMAAEQMALVFALRDGDGGEGDVDTFAGVPELRLSGLDDVDARELLAAAVRVPLDVGVRDRVVAEARGNPLALLELPRSTPLTRLAGGFEPDALNVPSRVEDSFRHRSSSLPADTQLLLLVAAAEPTGDVGLLWRAVDQLGIAPETAIPAEAAGLLEIGTRARFRHPLVRSAVYRAATRPDRRRAHRALAAATDPRLDPDRRAWHRAHGVLGTDEDAAAELERSANRARARGGLAAAAAFLQQAAELTPNRDHRTRRALDAAYAKHEAGAPEDALALLAMAAAGSLNTLERARLELLRAQIAFHTTRGSEASGMLLDAARTLAPLDAAMSRDTYLHALQASFHAGRLGHGRGLLDTAEAAGSAPAAPTPPRPADLLLDGLATRITQGYEPSVPTLQRALEALRNHESRPSDDNGRWLWLACHVGAMLWDDESIYVLASSAVRAARDAGALATLPGALNALASVLVLTGELVRAAELFAEEDAIIRATGAPPLPNSRLVLAAWRGKQDRDTDLFATTIAAATGRGEGLAISSAEISLAYLHNGLGNYDSALEAATPLLELDELAHSSVALPELIEAAVRAGQPKRAATALEKLSSRASASGTQWALGLAARSRALTSTGPAAEEHYREAIDRLRDCRMATHLARAHLLYGEWLRREGRRKDARGQLRTAHEMLSGMGAEAFAERAARELRATGEHPRRRTSQPTDTLTARELHIARLVATGATSREVGAQLFLSPRTVEAHLRSIFRKLDITSRRQLSRLRLPNANANANANA
AK018_008901155IS256 family transposase ISMlu1GTGATCACCGCCCTGCTGTCCGCGGACGCTGACGCGGTGGTCGGCGCGGAGTGGGGCCAGCGCTCGCCGGGCAGGACGACGCAGCGCAACGGCTACCGTCACCGCGACCTGGATACTCGGGCCGGCACGATCGACGTCGCGGTCCCGAAGCTGCGCTCGGGGACCTACTTCCCGGACTGGCTCCTCGAGCGCCGCAAGCGTGCGGAGTCCGCGCTGATCACGGTGGTCGCGGACTGCTACCTCGCGGGCGTGAGCACCCGGCGGATGGACAAGCTCGTCAAGACCCTCGGCATCAACAGCCTTTCGAAGTCGCAGGTGTCGCGGATGGCCGCCGACCTCGATGAGCAGGTCGAGGCGTTCCGCCGTCGGCCCCTGGACACCGCGGGCCCGTTCACGTTCGTCGCTGCGGACGCCCTGACGATGAAGGTCCGCGAAGCGGGCCGCGTGATCAACGCCGTCGTCCTCGTGGCCACGGGCGTGAACGCCGATGGTCACCGCGAGGTCCTGGGCATGCGGGTGGCCACCGCCGAGACCAAGACCGCGTGGAACGAGTTCTTCGCCGACCTCGTCGCCCGCGGCCTGGCCGGAGTCCGGCTCGTCACCAGTGATGCGCACGCCGGCCTCGTCGAGGCAGTCGCGGCGAACCTCCCCGGCACCATCTGGCAGCGCTGCAGGACGCACTACGCCGCGAACCTGATGGCCATCACCCCGAAGAGCCTGTGGCCCGCGGTGAAGGCGATGCTGCACTCGGTCTACGACCAGCCCGACGCCGCCGCGGTGCAGGCCCAGTTCGACCGGCTGCTCGACTACGTCGCGGGCAAACTGCCCGCCGTTGGCGAGCACCTCGATGCCGCGCGCGCCGACATCCTGGCGTTCACCGGCTTCCCGAAGGACGTGTGGACTCAGATCTGGTCGAACAACCCCGCCGAGCGGCTGAACAAGGAGATCCGCCGCCGCACCGACTCGGTCGGCATCTTTCCCAACCGCGACGCGATCGTGCGCCTCGTGGGAGCCGTGCTGGCCGAGCACACCGACGAATGGGCCGAAGGCCGCCGCTACCTCGGCCTCGACCTCCTCGCCCGCTGCCGCCTCGCCCCGGTCAGCGATCCCGGAGTGGAGGTCGACACCGACACCCTCCTCGAACTCAGCGCCTGAMITALLSADADAVVGAEWGQRSPGRTTQRNGYRHRDLDTRAGTIDVAVPKLRSGTYFPDWLLERRKRAESALITVVADCYLAGVSTRRMDKLVKTLGINSLSKSQVSRMAADLDEQVEAFRRRPLDTAGPFTFVAADALTMKVREAGRVINAVVLVATGVNADGHREVLGMRVATAETKTAWNEFFADLVARGLAGVRLVTSDAHAGLVEAVAANLPGTIWQRCRTHYAANLMAITPKSLWPAVKAMLHSVYDQPDAAAVQAQFDRLLDYVAGKLPAVGEHLDAARADILAFTGFPKDVWTQIWSNNPAERLNKEIRRRTDSVGIFPNRDAIVRLVGAVLAEHTDEWAEGRRYLGLDLLARCRLAPVSDPGVEVDTDTLLELSAPGPT0030665_965DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493NANA
AK018_008911263hypothetical proteinGTGAACACCAGCGAGCAGCACAGGTCCGGACATGTCGTCGTCGGGGTCGACACGCACAAGCACGTGCACGTCGCCGCGGTCAAGGACACGATCGGCGGGATCGCCGCCACGCTCACGATCCCGACGGACACCGGCGGGTTCCAGCAACTGCTGGACTGGGCGACCTCGCACGGGCGGATCCTGGCCTTCGGGATCGAGGGCACCGGCTCATACGGTTCAACCCTGGCCTCGTTCCTGCGCCGGGCCGGGCACAAGGTCGTCGAGGCCGGACGCCCGGACCGACGCCTGCGGCGGATGAATGGCAAGTCGGACACCCTGGACGCGGAGAACGCCGCCCGCGCGGTCCTGGCCGGGTTCGCGACCGCGACGCCCAAGAGCGCCGACGGTGAGGCCGAGATGATCCGTCAGCTCAAGGTCGCCCACGACCAGGCCGTCGAACAGCGCTCGGCCGCGATGGTCACGATCAAAGCGATGCTCGTCCACGGCAGCGACTCGCTGCGTCGTGAGACCGCGGGCAAGAGCCAGATCGCCCTCGCCCGGCACCTGGCCGCGCTGCGCCCCCGCGAGCTGCAGGACCCCGACGACTCGCTGCGGCACGCGCTGCGCGCGCTCGCCAAGCGGTGGCAGTACCTGAACACCGAAGCCGCCGAGCTGACGAAGATGATCGCCGAGCTCGTCAACCGGGCCGCGCCGCAGTTGCTCGAGCCGTTCGGCATCGGCGTGGACACCGCCGCCGAGATCCTCGTCGTTGCCGGCGACAACCCCGAGCGCATCAGGTCCGAGGCTGCCCTGGCCAAACTCGCCGGCATCGCGCCGGTCCCCACGGGCTCGGGGATGACAGCGGGCCGGCACCGCATCAACCACGGGGGACACCGCCAGCTCAACGCCGCGATCTACCGCACCGTCATCGTCCGCATGCGCTTCCATCAACCGACGATCGACTACGTTGCCCGCCGCACCGCCGAGGGCAAGACCAAACGAGAGATCATCCGCTGCCTCAAGCGATACGTCATACGCGAGGTCTACCACCTGCTCCGGCCAGCCCCCGCGAGCGGTCATAGCGACGAGTTGACAACTATAGGAGCGTCAACGCCCTCATGGAGACGATCAACGGTCTGTTCAAGACCGAGTGCATCCGCACCACCGTCTTCCATCCCGGCCCCTACCGCACCCTCGCCGACGTCGAGTACGCGACCGCCGGATGGGTCGACTGGTACAACAACCGCCGTCTCCACGGCTCTCTCGGGATGCTCACCCCGATAGMNTSEQHRSGHVVVGVDTHKHVHVAAVKDTIGGIAATLTIPTDTGGFQQLLDWATSHGRILAFGIEGTGSYGSTLASFLRRAGHKVVEAGRPDRRLRRMNGKSDTLDAENAARAVLAGFATATPKSADGEAEMIRQLKVAHDQAVEQRSAAMVTIKAMLVHGSDSLRRETAGKSQIALARHLAALRPRELQDPDDSLRHALRALAKRWQYLNTEAAELTKMIAELVNRAAPQLLEPFGIGVDTAAEILVVAGDNPERIRSEAALAKLAGIAPVPTGSGMTAGRHRINHGGHRQLNAAIYRTVIVRMRFHQPTIDYVARRTAEGKTKREIIRCLKRYVIREVYHLLRPAPASGHSDELTTIGASTPSWRRSTVCSRPSASAPPSSIPAPTAPSPTSSTRPPDGSTGTTTAVSTALSGCSPRPGPT0030635_2294DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
AK018_00892957hypothetical proteinATGAGGGCCGAGGGCTATGCAGTCGAGTCGATCGTTCGCGTCCTGCGTCAGCAGGGCCTGCAGATCGCTGCACGGACCTACCGGGCGTGGAAGCGCCCCGCCCCGATCGCGGCCCGCACCGTCACCGACGCCCTGGTCGAGGACAAGGTCCGCGCCCTGGCCTGGACTTTCAACGAGGTCACCGGACGGATGCAGATGACGCCTGAGGGCCTGTACGGACGGCGCAAGTGGGTCGCCCTGCTCCGCCGCCAGCACGACCTGGCCGGCACGTCTCGCGGCGCGGTGGACCGGGCGATGCGAAGCCTCGGGCTCGAGGGTGTGCGGCGGGCGAAGAAACTGCGCACCACCATTGCCGACCCGAGCGGGAAACGAGCCGGTGACCTGCTGAACCGTGACTTCACAGCACCGGCCCCGAACCTGACGTGGGTCACCGACTTCACCTACGTGCGCACCTGGGCGGGGTTCGTCTACGTCGCGTTCATCGTGGACGTCTTCGCCCAGCGGATCATCGGCTGGCACGCCAGCTCCAGCAAGAAGGTCGACCTGGTCATGACCCCACTGCGGATCGCGCTCTGGCAACGCGAGCGCGACGGAAACCCTGTCTCACCAGGGGATTTGATCCACCACAGCGACGCCGGGTCGCAGTACACGGCGATTCGCCTGACCGAGCACCTCGCCCTCGAAGGCATCGCGCCTTCGATCGGGACTGTCGGCGATGCCTACGACTGTCAGTCTCTTCCTTGCCGGATCCCGCAAGGATCAGGTAGTCCCGGCCGCGGCGGTCTGACTCTTGCGTACGACCGACCCTGCGGGTGTCCTGGCGTTGATCTGTCGACCGCCCGGCCGGGCACGCAGCAAGCGCTGCCGCCGGGCGGGCGTGACCTGATAGGAGCCTGGAGCCGACCTCGTCAAAGCGTCCCCGTGACAGTCCTGTCCGTCCGACCGGCGACAGCGTGAMRAEGYAVESIVRVLRQQGLQIAARTYRAWKRPAPIAARTVTDALVEDKVRALAWTFNEVTGRMQMTPEGLYGRRKWVALLRRQHDLAGTSRGAVDRAMRSLGLEGVRRAKKLRTTIADPSGKRAGDLLNRDFTAPAPNLTWVTDFTYVRTWAGFVYVAFIVDVFAQRIIGWHASSSKKVDLVMTPLRIALWQRERDGNPVSPGDLIHHSDAGSQYTAIRLTEHLALEGIAPSIGTVGDAYDCQSLPCRIPQGSGSPGRGGLTLAYDRPCGCPGVDLSTARPGTQQALPPGGRDLIGAWSRPRQSVPVTVLSVRPATANANANANANA
AK018_00893312IS3 family transposase ISPfr13ATGCCGAAGAAGATCGATCCCGAGCTGCGCGCGAGGTGCGTGCGGTTGGTGCGCGAGCACCTGCAGGAGTACCCCACGCTGACAGCGGCCGTCACGGCGGTGGCGCGCCAGGAGGGTGTATCGCGCGAGTCGGTGCGGCGCTGGCTGGCCCAGGCCGAGGTCGACGACGGCACCCGGCCGGGCGTGACGAGCGAGGAGTCTGCCGAGGTCAAGCGCCTCAAGGCCGAGAACAGGCGCCTGCGGGAGGACAACGAGATCCTGCGCCGGGCGTCGATTTTCTTCGCGGGGGAGCTCGACCCCCGAAACCGCTGAMPKKIDPELRARCVRLVREHLQEYPTLTAAVTAVARQEGVSRESVRRWLAQAEVDDGTRPGVTSEESAEVKRLKAENRRLREDNEILRRASIFFAGELDPRNRNANANANANA
AK018_00894798hypothetical proteinGTGCGGTTGCGCACTGATTCGGACCCCGCCCCGGACGAGTCGGGCGTTGGGGGGTTCTTCGGCAGTACCGACCCGGGTGGGGGCCAGGGTGGGGGTGGTTCGGCGACCAATGCCGGTTCGACGGGTGCGGCGACGTCGGCTCCGGCCGAGACCGAGACGGACCGGGCCCAGCGGGTGTTGGACAAGTCCGTCGCGGACGTCGCTCTCGAGCTGGGTTGGGAGGCGTTGAAGGACTTCGTGGGGTGGGACGACCTGGTCGGCTGCCTGGAGTCGGATCTGGGCTCGTGCGGGATGCTCGCGGTCGGGATCGCCCCGTGGGGCAAGGGCCTCACAGCGATCAAGGCCCTGTACCGGGTGATCGACGGGGCGATCGACTTCTACAAGGAGGTCAAGTGGGCTCGCGGCGTGGTCTCGCGGGCGAGGTCGACGTCCACCGTCGGCGGGGCGTGCGTGTCCAACAGCTTCATCCGAGGAACCTTCGTTCTGCTCGCCGACGGCACGTCGAAACCGATCGAGGACATCCGGCTCGGTGACCAGGTCCTGGCGACCGACGAGACCACCGGCCAGAGCGGGCCCCAGGACGTGGTTGCGCTCATCACCGGCGAAGGCGACAAGAACCTCGTCACCCTGACCGTGACCGACGACAACGGTCAGACCGGCACGGTCACAGCGACCGACGGACACCCCTTCTGGGTCCCCGCCCTGCACGAATGGGTAGACGCCGGCGACCTCCACCCCGGACAATGGCTCCAGACCGGCGCCGGCACCCAAGTCCAACTTGAAACGTCCCAGGTTTGAMRLRTDSDPAPDESGVGGFFGSTDPGGGQGGGGSATNAGSTGAATSAPAETETDRAQRVLDKSVADVALELGWEALKDFVGWDDLVGCLESDLGSCGMLAVGIAPWGKGLTAIKALYRVIDGAIDFYKEVKWARGVVSRARSTSTVGGACVSNSFIRGTFVLLADGTSKPIEDIRLGDQVLATDETTGQSGPQDVVALITGEGDKNLVTLTVTDDNGQTGTVTATDGHPFWVPALHEWVDAGDLHPGQWLQTGAGTQVQLETSQVNANANANANA
AK018_00895318hypothetical proteinGTGCCCAGGCCCCACCCGAAGGAGTTCCGCGACGACATCGTGGCGAGCGCCCGCCAGGGCGAGACTCCGATCAAGCAGATCGCGAAGGACTTCGGCATCTCCGAGTCGTGCCTGCGCAACGGGCTCCACCAGGCCGACGTCGAAGACGCCGACTACCCCGGCGCCAGAACAGCCAGCGCCTGCCGCACCAACGTCCGCAACCTCGCCGTGACGATCCGCGCCGGCGGCACCGCCATCGAGCACGTCACCATGGCCGAGTACGACGACGGCGCGCTCGCCCGACTCGACGCCGACCCGCCGCGCGCACTCGACGCCTGAMPRPHPKEFRDDIVASARQGETPIKQIAKDFGISESCLRNGLHQADVEDADYPGARTASACRTNVRNLAVTIRAGGTAIEHVTMAEYDDGALARLDADPPRALDANANANANANA
AK018_00896213hypothetical proteinTTGACCGTCTCGGTCGTCATCGCCGATGCGAACGTCCTGTTCTCCCGAACGCTGCGCGACTACGTGCTCTACGGCGACGATGCCGGCGGCTTCGAGGTGCGCTGGAGCCCGGCGATCCTGGCCGAGATGTCGAAGAACCTGCGGGCCAAGCGAGGGTTGTCGCAGGAGCAGACGGAACGGCTCGAGGAACTGATGGGACTGCTGCACGGATAGMTVSVVIADANVLFSRTLRDYVLYGDDAGGFEVRWSPAILAEMSKNLRAKRGLSQEQTERLEELMGLLHGNANANANANA
AK018_00897387hypothetical proteinGTGACTGATGTTCTGGAAGGTGACGTGCAGACCCTGCGCGCTGCGCTGGCGCGCACGACCGACGAGGTCCGTGTGACGTTGAACCTTCCGCGGGAGGCCGCGCGCAAGGTGCTTGCGCTGCTCGATGCCGAGCGCACGTCGGGCGCCGTCGTCGTGCCGACGGGGGAACTCCTGACGACGACCGAGGCCGCGGCTGTGATCGGCGTGTCTCGTCCGACGCTGATGAAGCACGTGAGCTCCGGGGAGATCGACCACGTCATGGTCGGCAGCCATCACCGGATCAGCGCCGCGTCTCTCGCGGCATTCGAGCAGGCTCGCCGTAAGCGTCGGCAGAAGGCCGCTGCCGACCTTGCGGCGTTCTCCAACGAGATCGGGCTCGACGATTGAMTDVLEGDVQTLRAALARTTDEVRVTLNLPREAARKVLALLDAERTSGAVVVPTGELLTTTEAAAVIGVSRPTLMKHVSSGEIDHVMVGSHHRISAASLAAFEQARRKRRQKAAADLAAFSNEIGLDDNANANANANA
AK018_008982139katECOG0753Catalase HPIIATGTCGAACTCTCACGACCGTACCCCTCGTGCCGAGGCAGACCTGCCGACGACCCGGACCGCTCCCCCGGCGCCCCGGAGCGCCACCGGATGTCCGTTCCACATCCCGGACGACGACCCGCGGGCGCAGCAGGGTGAGCATCTCACCACCGCGCAGGGGCTGCGCGTGGACGATACGGACCACTCGCTGACCGCCGGCTCGCGGGGCCCGGTGCTGCTCCAGGACCACCATCTGCGCGAGAAGATCACGCATTTCGACCACGAGCGCATCCCTGAGCGGGTGGTGCACGCGCGAGGCGCCGGTGCGCACGGCACGTTCCGTGCCGACGGCAGTGCCGCCACCGTGACGCGCGCCGCATTCCTGGCCGAGGAGGGCAAGGAGACCGATGTCTTCGTCCGGTTCTCGACGGTTCTCGGCTCACGCGGCTCGGCCGACACGGTGCGAGACGTGCGAGGGTTCGCGACGAAGTTCTACACCGACGAAGGCACGTTCGATCTGGTCGGCAACAACTTTCCCGTGTTCTTCATCCAGGATGCGATCAAGTTCCCCGACATCATCCACGCAGGCAAACCGCACCCGGATCGGGAGATCCCCCAGGCCCAAAGTGCCCACGACACCTTCTGGGACTTCATCTCCTCGCACACCGAGTCGACGCACATGGCGATGTGGGCGATGTCGGACCGTGCCATTCCCCGCAGCTATCGCACGATGGAGGGTTTCGGAGTCCACACGTTCCGGCTCGAGGCTCCTGACGGCACCACCTCGCTGGTGAAGTTCCACTGGAAGCCGCTGCTGGGTGTGCACTCCCTCGTCTGGGAAGAAGCGCAGATCACCCAGGGAGCGGATCCGGACTTCCACCGTCGCGACCTCGCCGACTCCATCGACGCCGGCCTGTTCCCCCAGTGGGAGCTGGGGATCCAGGTCATGCCGGACACACCGGAGGAGACCTTCGAAGGCATCGATCTGCTCGATCCCACCAAGATCGTCCCGGAGGAGCTCTGCCCGGTCCAGCGGGTGGGTGTGATGACGTTGCACGCGAATCCGGAGAACTACTTCGCCGAGACCGAGCAGGTCGCCTTCCACGTGGACCACCTCGTCCCCGGAATCCACGTGACCAACGATCCGCTGATGCAGGGGCGACTCTTCTCCTACCTCGACACCCAGCTCTCCAGGCTGGGTGGACCGAACTTCGCTCAGCTGCCGATCAATCGACCCCACGCCCCGGTCAACGACATGCAGCGCGACGCGATGCACCAGACCGCGGTGCATCGCGGAATCGTCGCCTACAAGCCCAACCACCTCGATCACGACCTGCCGACGGCCACACCGGAGAGCGGCTACGTCACCGTGCCCACATCGGTGGAGGGCACCGTCGCCCGGCATCACCCTGTCTCGTTCACCGATCACTTCACCCAGGCACGCCTCTTCTGGCTGTCGATGTCCCCGGTGGAGCAGGCGCACATCGTCCAGGCGTTCACCTTCGAGCTCGGCAAGTGCGCCGGTCACGAGGTCCGGGAACGCATGCTGCACAGCTTGGCGCGTGTCGACGACGAGCTTGCGACCCAGGTCGCCGAAGGCCTCGGACTTACCGCACCCGAGGCCGACCTCCCACCGGAGGTCGCCCCCTCCCCGGCGTTGTCCCAGGTCCCGCAGACCCCTGGACCCGTCGACGGCCGGGTCGTCGGGGTGCTGGTCTGCGACCACGCCGACCTCGGGGCGGTGGACGTCGCCCGCTCGACCCTCGGACAGGACGGGGTCGTTGTCCGGGTCGTCGCCGATCACGGCGGCACCGTCTCTGAAGGGTCGACCTCCGAACAGGTTCACCGGACACTGCTCACGACCCGGTCCGTCGAGTACGACGCGCTCATCCTGGCCGACGGCACCGCCGGCTCCGCCGTGGGCACAGACCCTCGGGCTACCGTCCTGCTCGCCGAGGCGTACCGGCACGGCAAGGCGCTGCTCGCGCTCGGAGACGGAGCAGAACTACTGGAACGCGCCGGTATCCCGCACGACGCCGAGGGAGTCCATCTCGCCCCGAGCGCCGACGACACCACCATGCGCGAGCTGCGCGACGACCTCGGTATGCACCGCGCCTGGCGACGACTGGCCGCACTGCTGCCGACCACTCCGGAGGGATGAMSNSHDRTPRAEADLPTTRTAPPAPRSATGCPFHIPDDDPRAQQGEHLTTAQGLRVDDTDHSLTAGSRGPVLLQDHHLREKITHFDHERIPERVVHARGAGAHGTFRADGSAATVTRAAFLAEEGKETDVFVRFSTVLGSRGSADTVRDVRGFATKFYTDEGTFDLVGNNFPVFFIQDAIKFPDIIHAGKPHPDREIPQAQSAHDTFWDFISSHTESTHMAMWAMSDRAIPRSYRTMEGFGVHTFRLEAPDGTTSLVKFHWKPLLGVHSLVWEEAQITQGADPDFHRRDLADSIDAGLFPQWELGIQVMPDTPEETFEGIDLLDPTKIVPEELCPVQRVGVMTLHANPENYFAETEQVAFHVDHLVPGIHVTNDPLMQGRLFSYLDTQLSRLGGPNFAQLPINRPHAPVNDMQRDAMHQTAVHRGIVAYKPNHLDHDLPTATPESGYVTVPTSVEGTVARHHPVSFTDHFTQARLFWLSMSPVEQAHIVQAFTFELGKCAGHEVRERMLHSLARVDDELATQVAEGLGLTAPEADLPPEVAPSPALSQVPQTPGPVDGRVVGVLVCDHADLGAVDVARSTLGQDGVVVRVVADHGGTVSEGSTSEQVHRTLLTTRSVEYDALILADGTAGSAVGTDPRATVLLAEAYRHGKALLALGDGAELLERAGIPHDAEGVHLAPSADDTTMRELRDDLGMHRAWRRLAALLPTTPEGPGPT0014380_1327DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
AK018_008991203COG1063putative zinc-binding alcohol dehydrogenaseGTGCGAGCACTCACCTGGCAGTCGAACGAGGAAGTCTCCGTCGAGGAGGTCCCTGACCCGCGGATCGAGCAGCCGACAGACGCTGTGATCCGGGTGACGTCGACCGCGATCTGCGGCTCCGACCTACATCTCTACAGCGTGCTGGGCATGTTCCTCGACCCCGGCGACATCCTGGGCCACGAGGCGATGGGAATCGTGGAGGACGTGGGTGCGGACGTCGACCGACTATCGGTGGGCGATCGCGTCGTCGTGCCCTTCACCATCTCCTGCGGTCACTGCTGGATGTGCGTGCGGGGTCTGCAGAGCCAGTGCGAGACGACGCAGGTGCGGTCCCAGGCCAAGGGCGCCGCCCTGTTCGGGTACACCCGCCTCTACGGACAGGTGCCGGGCGGACAGGCTCAGTACCTCAGGGTGCCGCAGGCGCACTACGGACCGATACAGGTGCCCGACGACGGCACCCCGGACGAGCAGTACCTCTACCTGTCGGACATCCTGCCCACAGCCTGGCAGGGCGTACGTTATGCGGACGTGCCGGACGGGGGCAGCGTGGTGGTCCTCGGCCTCGGCCCCGTCGGGCAGTTCGCCGCCCGCATCGCCCGGCACCAGGGCGCGGGCCTGGTCGTGGGCGTCGACCCCGTCGCGGAACGACGCGCCATGGCCGAGCGCCACGACATCCGGGTCGTCGATCCCACGACGGAGGACCTGACGGCGGCCGTCCAGGACCTGACGGCGGGCCGCGGCCCCGACTCGGTCATCGACGCCGTCGGGATGGAGGCTCACGGCTCGCACGGCACCGAACTGATGCAGAAGGTGGTGGGTCGTCTGCCCGACGCGCTGGCAGCACCCCTGACGGAGCGGGCGGGCACCGACCGGCTCGCCGCCTTGTACACCGCGTTCGACCTGGTACGCCGGGGAGGCACCGTCTCGCTGTCCGGGGTGTACGGGGGCGCTGTCGACCCGTTGCCGATGATGCAGCTCTTCGACAAGCAGCTCACGTTACGCATGGGACAGGCGAACGTCCGGCGCTGGACGGACGACCTGCTCCCCCTGGTCCAGGATGCCGGCGACCCTTTGGGCGTCCTGGACCTGCGCACGCACCGCGTCCCCCTCGAACAGGCACCCGACACGTACCGCACGTTCCAACGGAAGGAGGACGGCTGCATCAAGGTCGTGCTCGACCCCTGGGACGCCGGCCCAGGCTGAMRALTWQSNEEVSVEEVPDPRIEQPTDAVIRVTSTAICGSDLHLYSVLGMFLDPGDILGHEAMGIVEDVGADVDRLSVGDRVVVPFTISCGHCWMCVRGLQSQCETTQVRSQAKGAALFGYTRLYGQVPGGQAQYLRVPQAHYGPIQVPDDGTPDEQYLYLSDILPTAWQGVRYADVPDGGSVVVLGLGPVGQFAARIARHQGAGLVVGVDPVAERRAMAERHDIRVVDPTTEDLTAAVQDLTAGRGPDSVIDAVGMEAHGSHGTELMQKVVGRLPDALAAPLTERAGTDRLAALYTAFDLVRRGGTVSLSGVYGGAVDPLPMMQLFDKQLTLRMGQANVRRWTDDLLPLVQDAGDPLGVLDLRTHRVPLEQAPDTYRTFQRKEDGCIKVVLDPWDAGPGPGPT0006355_1007DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121NANA
AK018_009001587sglT_1Sodium/glucose cotransporterATGCCGGAGTTCGAGCTGGCGACCATCGACCTGGTCGTCATCGGTCTGTACGTCGTGGGGATCCTGCTGATCGGCTGGTGGGCGGGCCGCCGGTCGAAGTCCTCCGACGACTTCTTCCTGGCCGGTCGCGGGATGCTGTGGCCGTTGGTCGGGTTCTCCCTGATCGTCACCAACTTCTCCGGGACACAGTTCCTCGGACTGGCCGGGGCCGGGTACTCCACCGGCATCTCGGTGTGGAACTTCGAGTGGATCGCGACGATCGTCCTGCTGTTCTTCGCCGTGCTCATCCTGCCGATCTACCTGCAGTCGAAGGTCTCGACGGTCCCCGAGTTCCTCGGCAGACGGTACGACCAGCGATCCCGCTACGCGTTCTCCGGGTTCACCGTCCTGACCGGGATGCTCATCGACTCGGCGGGCGGCATGATCGCCGGAGCGCTGGTGCTCAACCTCATGTTCCCGAACGTGCCGATCCTGGTGCACGTGGTCATCATCGCGGTGCTCGGGGGCGTGTACGTGATCCTCGGCGGCCTGCGCGCGGTGATGATCACGGACACGATCCAGGGCATCATGCTCTTCCTAGCGGCCGGCGTCATCCTCGCGCTCGTCTTCGCCCAGTTCGACTTCGACTGGTCCGTCTTTCCCGAGCTCGCCCCCGAGGACGGATTCACCGTCGCCCCGCCGGCGGACGACGACTTCCTGCCCTGGCCGGGCATCTTCACCGGGGCGATCTGGCTGGGCGTCTACGTGTGGATCTCCAACCACATCATCGTCCAGCGGGTGCTGGCGGCGAAGAACCTCGACCACGGCCGCTGGGGCGTGCTGTTCGCGGGCCTGATGCAGCTGCCCCTGCTGGTACTGCTGATCTTCCCCGGCATCCTCGCCCGCGACGTCTTCCCCGACCTCGACAACCCCGACCTCGCCTGGCCGTCGCTGGTCTTCGAGTTCATCCCGGTGGGGCTGCGCGGCCTCGTGGTCGCCGCGCTCATCGCGGCGCTGATGTCGACACTCGACTCGGTGCTCAACGGGGCGGCCAGCCTGGTGATCAACGACTTCGTCAAGACACGCCGACGCGAGTTCAGCGAAAAACAGCTGCTGCTGATGAGCCGGGGACTCATCGCGGTGTTCATGCTCCTCGCGATCGCCTGGGCCCCGATCATCCTGCAGTTCGACACCATCGTCGAGTACTTCCAGTCGTTCCTCGGCTACGTGACCATGCCGATCGTCGTCGTGCTCCTCGGCGGCATCTTCTGGCGGCGTCCGGGACCTCCAGCAGCGTTCTGGACACTGATCGTCATGGTGCCCCTGGGCCTGGTCGGCTTCGTGACCGGAGAAGTGTTCTCGCTGCACTCGGTCCAGTTCCTCTATGCCACGGGCATCATGCTGGTCCTGAGCGTGATCGCCTTCGTCACCATCTCGCTGCGCACCGCTGCGCCGTCGCCCGAGGCGATCTCCGAGGTCGTCTTCGACCGCGACAACTGGCGCCGTGAGACCGAAGAGCTGCGCGACAAGCCCTGGTACGCCAATCACCGCCTCCTCGCCCTCGGGCTGGCCGTCCTCACGACGGCGGTGGTGGTCCCGTTCGTCTGAMPEFELATIDLVVIGLYVVGILLIGWWAGRRSKSSDDFFLAGRGMLWPLVGFSLIVTNFSGTQFLGLAGAGYSTGISVWNFEWIATIVLLFFAVLILPIYLQSKVSTVPEFLGRRYDQRSRYAFSGFTVLTGMLIDSAGGMIAGALVLNLMFPNVPILVHVVIIAVLGGVYVILGGLRAVMITDTIQGIMLFLAAGVILALVFAQFDFDWSVFPELAPEDGFTVAPPADDDFLPWPGIFTGAIWLGVYVWISNHIIVQRVLAAKNLDHGRWGVLFAGLMQLPLLVLLIFPGILARDVFPDLDNPDLAWPSLVFEFIPVGLRGLVVAALIAALMSTLDSVLNGAASLVINDFVKTRRREFSEKQLLLMSRGLIAVFMLLAIAWAPIILQFDTIVEYFQSFLGYVTMPIVVVLLGGIFWRRPGPPAAFWTLIVMVPLGLVGFVTGEVFSLHSVQFLYATGIMLVLSVIAFVTISLRTAAPSPEAISEVVFDRDNWRRETEELRDKPWYANHRLLALGLAVLTTAVVVPFVPGPT0013955_2343DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013955-TC_SSS|yerK|opuE-K03307NANA
AK018_009011074hypothetical proteinATGAGGAAGAGGATCGGCCCCCTGCAGGGCAAGCCAACGGTGCCTTCCTGGCGACGCTCCTGGGCGCGACACCCGCGGTGGTCGCTGGCCCTGCGGGCGGCCATCGCTGCAACGGTGGCGTGGTTCGTGGGAGTACTGGCCCCGCCCCCCTTCGGCGAGTTCCCCTACTACGCGCCGCTTGGAGCCGTGATCGCCACGACGGGCGCCCTGGCCCGGTCGATTCGTGACTCGGCACAGGCGGTGGGTGCCGTGCTGCTCGGCGTTGCCATCGCCTGGCCCGTGGATCTTCTGCCTCTGCCGAGCCCGGCCGCGATCTTCGTCGTGGTCGCGGTGTCCGTTCTCGTCTCGGGCTGGCACCGGCTCGGGGCGATGGCGTCGTGGGTCGTCATGTCCGCGATCTTCGTGCTGGTCCTCGGCCAGTCCGGGGACGCGGGGTTCCCCTTGGCGTTCGTCGGCCTGGTGCTGGTCGGTGCCGCAATTGGCGTCGGAGTGAATCTGCTCTTTCCGCCGCTCCCGCTGACCAGGACTGACGACGCCCTCGGCAGGTTGCGGGAGGTGCTCAGTGCGAACCTCAGGCTGGTGGCCGAGCGTGTCGAGACCGGCGAACCGGCGACGTCCGGCGACGGCAAGCACTTGGGCGCGGTGCGTTCGATGAGGGAACGTGCCCGTGGCGCGGTTGCCGAGGTCGACGAGGCCGCGCGGGTAAACCCCCGAGCCTTGCACTACCGCATCTGGCGCAACTCGCAGGACTATCGCGCGCGGGCGCTTCTCGACACCGCCGGTACCGTGGATCAGATCGTCCGACTCCTCATGGATCGCGATGCGGCGGAACGGGACGAGCCGGCGGTAGGGGCGGACGTACGGTCGGCGGTCGCAGCCGCCCTACGCGCCTACGCGGACGCGATCGATGCCGTGGGTGACCGGGTGAACCCCGGTTTACCCACCTTCGTCGAGATCACCCGGGACTTGCGCACGATCCTGCAGGCGTCCGCCGGTCGACTGGAGGGCGACCCTCTCGTGGTCGCGGCGACCGTCGTCCTGCTGGAGCGGGGCGTCGCGGGGCTGCGATCGTGAMRKRIGPLQGKPTVPSWRRSWARHPRWSLALRAAIAATVAWFVGVLAPPPFGEFPYYAPLGAVIATTGALARSIRDSAQAVGAVLLGVAIAWPVDLLPLPSPAAIFVVVAVSVLVSGWHRLGAMASWVVMSAIFVLVLGQSGDAGFPLAFVGLVLVGAAIGVGVNLLFPPLPLTRTDDALGRLREVLSANLRLVAERVETGEPATSGDGKHLGAVRSMRERARGAVAEVDEAARVNPRALHYRIWRNSQDYRARALLDTAGTVDQIVRLLMDRDAAERDEPAVGADVRSAVAAALRAYADAIDAVGDRVNPGLPTFVEITRDLRTILQASAGRLEGDPLVVAATVVLLERGVAGLRSNANANANANA
AK018_00902861yghA_1putative oxidoreductase YghAATGGCCGAGCAGGACGCCTTCCCGCCGCAGCAGCAGGACCCGCCGGGGTGGACCGGACAGATGGAACCGGTACCCGACCACGGCGAGCAGAGCTACCGGGGCAGCGGGAAGCTGGAGGGCAAGAACGCCCTGGTCACCGGTGGCGACTCTGGCATCGGGCGGGCGGTGGCGATCGCTTTCGCCCGCGAGGGTGCCGACGTCGCGATCGGCTACCTGCCCGAGGAGCAGGAGGACGCCGAGGAGACGGCGCGCTGGGTGCTAGAGGCCGGGCGCACGGCGGTGCTGCTGCCGGGTGACCTGACCGAGGAGTCGGTGGCGCGTGCGCTGCCGGGGCGGGCGGCCGGTGAGCTCGGGGGTCTGGACGTGCTGGTGAACAACGCGGGCTTCCAGATGGCGCGGCGCGAGTCGTTCGAGGACGTGACCACCGACGAGATCGACCGGATTCTGAAGACCAACCTGTACGCGCTGATGTGGGTGACGCAGGCGGCGCTCGAGCACCTCAGCGAGGGTGCGAGCATCATCAACAACTCCTCGATCCAGGCCTATCAGCCGTCCACGTCGTTGCTGGACTACGCCTCGACCAAGGCGGCGATCAACAACCTGACCGTGAACCTCGCCGCCGAGCTGGGCCCGCGGGGCATCCGGGTGAACGCGGTGGCTCCCGGGCCGATCTGGACGCCCCTGCAGCCGTCCACGCAGCCGGAGGCGAAACTCACCTCCTTCGGGCAGGACACCCCGCTGGGGCGGGCCGGGCAGCCGGGAGAGGTCGCCCCGGCGTTCGTGTTCCTCGCCTCGCCCGCCGACTCGAGCTACGTGTCGGCCACGGTGCTGGGGGTGACCGGCGGCAAGCCCGTCTTCTGAMAEQDAFPPQQQDPPGWTGQMEPVPDHGEQSYRGSGKLEGKNALVTGGDSGIGRAVAIAFAREGADVAIGYLPEEQEDAEETARWVLEAGRTAVLLPGDLTEESVARALPGRAAGELGGLDVLVNNAGFQMARRESFEDVTTDEIDRILKTNLYALMWVTQAALEHLSEGASIINNSSIQAYQPSTSLLDYASTKAAINNLTVNLAAELGPRGIRVNAVAPGPIWTPLQPSTQPEAKLTSFGQDTPLGRAGQPGEVAPAFVFLASPADSSYVSATVLGVTGGKPVFPGPT0003180_8024DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_00903579hypothetical proteinATGCACGGCTACTCGGCGGGCAGCGTAACGCCGAGCCTTGAGGTTCTGCGTCAGCATCAGCACTCGGCCGAACGTGGTCGTCTCGTGCGTGAGGCACTAGCAGCGCTGCGCTCCGGCATGCCGTTTGCCTGCGCGCACCGGATCGTAGACGCCCAGGGAAGGAACCACAGCCTGGTGGTCACGGGACAGGCGCGCCGGGGCCGCCTGGGGCCGGCGGGCGAGATCGTCGGCTACGTGATCGACCTGACCCCCGTGGAGCAGGAAGCCGTTGAGCGGAAGGTTCGGCGTGCGATCGACGCGGCCTACGTCTCGGCCGCTGCTGTCGAACGGGCCCGAGGCGTCCTGATGGCCGTCTACGGTGTCGGGGAGGAGGAGGCTCACGCGATGCTGTTAAAGGGAGCAGGCGGGTCCGGGGCAGGCTTGCGGGGCACCGCAGAGCAGGTGATGGCCAGCCTGCGTGAGGGTGGGGGGATGAGCGCAGCGTCACGGTCGCATGTCGAAGCAGCTTTCGGGGCCGTCGTGCCACACGGCCGTCCCCATGCGCGCGAGGCACATCTGGCCCGCAGGCACACGAACTGAMHGYSAGSVTPSLEVLRQHQHSAERGRLVREALAALRSGMPFACAHRIVDAQGRNHSLVVTGQARRGRLGPAGEIVGYVIDLTPVEQEAVERKVRRAIDAAYVSAAAVERARGVLMAVYGVGEEEAHAMLLKGAGGSGAGLRGTAEQVMASLREGGGMSAASRSHVEAAFGAVVPHGRPHAREAHLARRHTNNANANANANA
AK018_00904312hypothetical proteinGTGGGCCAGCGGTTGAGCGTCGAGTACCAGAAGAACGCCTCGGGCGATGGAGCCATCGCCGTAGGTGAGGGACGCGGGCCGCTCGGGGAGGCCCGTGATCCAGGTCTTGAATTGTTGCGCGATCTGCGCACCATCTTCCTCCAGGCTTCGGGTGTTTCCACGGACTGGGAGATGATCGCCCAGGCTGCGCAAGGGGTGAAGGACCCGGAACTGCTCGCTGTGGCGCAGCGCTGTCACCCCGACACGTTGCGTCAGGCACGTTGGGCGAACGCCAAGCTCAAGGAGTCCTCTACCCAGGTGCTGATCACATGAMGQRLSVEYQKNASGDGAIAVGEGRGPLGEARDPGLELLRDLRTIFLQASGVSTDWEMIAQAAQGVKDPELLAVAQRCHPDTLRQARWANAKLKESSTQVLITNANANANANA
AK018_009052457narBCOG0243Nitrate reductaseGTGCCGTCTACCGACCGCATCGCAGAACCGTGGGGTACGCGGACGCCGTACGCAAGGGGCGAGAGTTGGCCGACTCGGGTCGACACCTTTCTGGCCGAGGGCGTCGAACCCCAGGACGTAGACCGCTGGGTCCAGTCCGCGACCATCCTGCACTCCAATGGCGACGGACTCGACATCGCTGTGAAGGACGAGCGGATGGTCGGTGTGCGAGGACGGGCGCAGGACCGGGTCAATCACGGCCGCCTTGGGCCCAAAGATCTGTACGGCTGGCAGGCGAACGCCTCGACCGATCGCCTCACGGTCCCGCTCGTGCGGCGAGGGGAGGAGCTCGTGGAGGCCACATGGGACGAGGCGATGGACGCGGTGGTTGGCCGTTGCCGACAGCTGATGGACGACCAGGGCCCGAGCGCGGTCGGGTTCTACACGACAGGGCAGCTGTTCCTCGAGGAGTACTACACGTTGGGCGTCCTCGCGCACGGCGGTCTGGGTACGAACCATGTGGACGGCAACACCCGCTTGTGCACCGCCACGGCCGCGGCGGCACTGAAGGAGTCCTTCGGCTGTGACGGTCAACCCGGTTCCTACACCGACATCGACCACGCGGATGTGATCGCGCTCTTCGGTCACAACATGGCCGAGACGCAGACGGTTCTGTGGACGCGAGTTCTCGACCGGCTCGCCGGCCCCCGCCCGCCGGCCGTCGTCTGCGTCGACCCGCGCCGGACACCTGTTGCGCGGGCCGCCACGGTCCACCTGGCGCCCCGCCCAGGAACCAACGCGGCTCTCATGAACGGCCTGCTGCACGAGATCATCGCCTCCGGCCACGTGGATCACGACTATGTCGCCCGACATACTGTCGGATTCGAGGAGCTGGCCGACCGGGTGGCTACCTATCCCGCCGACCGCGTCGCGGAGATCTGCGACGTGCCCGTCGACGACCTGCGTCGGGCGGCCCACCTGCTCGGCACCACTGATCGGCTGGTCTCCACGGTTCTTCAGGGCTTCTATCAGTCCCACCAGGCCACGGCGTCCGCGGTTCAGGTGAACAACCTCCATCTCGTGCGTGGCATGCTTGGTCGTCCTGGCTGCGGACTGCTGCAGATGAACGGACAACCGACCGCGCAGAACACGCGCGAGTGCGGCGCGGACGGTGACTTGGCAGGTTTCCGGAACTGGTCCAACGACGCCCACGTCCAGGACCTCGCGCGAGTGTGGAACGTCGAGCCGTTGCAGATTCCGCACTACGCACCGCCGACCCACGTCATGCAGATGATGCGGTATGCCGAGCAAGGATCGATCAAGATGCTGTGGGTGCAGGCCACCAACCCGGCGGTATCCCTGCCCGAGCTGGCCCGGGTGCGTTCGATCCTTGCCAGCCACGGCCTGTTCCTCGTGGTGCAGGACATCTTCATGTCCGAGACCGCGGAGCTGGCCGACGTGGTGCTGCCTGCCGCCACCTGGGGCGAGAAGACCGGTACGTTCACGAACGTCGACCGGACGGTGCACCTATCGGAGCGGGCCGTTCGTCCCCCCGGGCAGGCACGGCCCGACCTCGAGATCTTTCTCGACTTCGCCGGACGCATGGACCTTCGTGACAAGGACGGCGGACCGCTGCTGTGGTGGGATGGTCCGGAGTCAGCGTTCGACGCCTGGAAGGAGTGCACCCGCGGACGTCCGTGCGACTACACCGGGTTGACCTACGACAGGTTGCGCGGCGGTAGCGGCATCCAATGGCCCTGCAACGACGAACACCCGGACGGCACCGAACGTCTCTACGAGGACGGCCAGTTCTGGAGCGCACCGGACTACTGCGAGAGCTATGGTCGCGACATGGTGACCGGCGCGCCGCTCGAGCCCACGGAGTATGCGGCGATGAACCCCGACGGGCGCGCCGTCATCAAAGCAGTGGACTACATACCTGCGCACGAGCTCCCGAGTCGGGAGTTCCCGTTCCATCTGATCACCGGCAGGACGATCTACCAGTTCCACACCCGGACCAAGACGGGTAGGTCGCCACAACTTCAGAAGGCAGCGCCGGAGGTCTGGGTGGAACTGTCCGCGGTCGACGCGCGGGCGTTGCAGCTCACCGAAGGCGACTTGGCGGAAGTCACCACACCCCGAGGGCGCGTCGAAGCCGCGGTCCGGGTCGCAGAGATTCGACCAGGTGTGGTCTTCTTGCCGTTTCACTACGGCTACTGGGACACGCATGCGGGGTCCGACGGCAACACCCGAGCCGCCAACGAGCTGACGATGACGGACTGGGACCCGGCGTCCAAACAACCCTTGTTCAAGACGGCAGCAGCGGGCGTGCGCAAGATCCGCCGCGGTGACGGAGCGCCCTCGGCTGCTCCGACGACGGGGGGTTCGGCGCCGGTGTCCCTTGACGTGTCGGCCACCCGGGGCGGTGGGGCGGCGGTCGTCGCCGAGGACGTCGTGACGTCTGGGGGAGATGCCTGAMPSTDRIAEPWGTRTPYARGESWPTRVDTFLAEGVEPQDVDRWVQSATILHSNGDGLDIAVKDERMVGVRGRAQDRVNHGRLGPKDLYGWQANASTDRLTVPLVRRGEELVEATWDEAMDAVVGRCRQLMDDQGPSAVGFYTTGQLFLEEYYTLGVLAHGGLGTNHVDGNTRLCTATAAAALKESFGCDGQPGSYTDIDHADVIALFGHNMAETQTVLWTRVLDRLAGPRPPAVVCVDPRRTPVARAATVHLAPRPGTNAALMNGLLHEIIASGHVDHDYVARHTVGFEELADRVATYPADRVAEICDVPVDDLRRAAHLLGTTDRLVSTVLQGFYQSHQATASAVQVNNLHLVRGMLGRPGCGLLQMNGQPTAQNTRECGADGDLAGFRNWSNDAHVQDLARVWNVEPLQIPHYAPPTHVMQMMRYAEQGSIKMLWVQATNPAVSLPELARVRSILASHGLFLVVQDIFMSETAELADVVLPAATWGEKTGTFTNVDRTVHLSERAVRPPGQARPDLEIFLDFAGRMDLRDKDGGPLLWWDGPESAFDAWKECTRGRPCDYTGLTYDRLRGGSGIQWPCNDEHPDGTERLYEDGQFWSAPDYCESYGRDMVTGAPLEPTEYAAMNPDGRAVIKAVDYIPAHELPSREFPFHLITGRTIYQFHTRTKTGRSPQLQKAAPEVWVELSAVDARALQLTEGDLAEVTTPRGRVEAAVRVAEIRPGVVFLPFHYGYWDTHAGSDGNTRAANELTMTDWDPASKQPLFKTAAAGVRKIRRGDGAPSAAPTTGGSAPVSLDVSATRGGGAAVVAEDVVTSGGDAPGPT0000280_101DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000280-narB-K00367NANA
AK018_00906279hypothetical proteinATGACTGAGGAAGCAGGCCACGACGAAGACCCGCGGTACGAAGCCAAGGCGCCTGCGGCCAACCCCGAGGCCGGGCCTGACGACCGCACCCAGCCGCCGAGCGGCGACGTCCCGCCCGGCGAGACTCCACCAGCTTCCGACCAGGTCGGTGCCCCACAGGGGCACGAGGAGCATGGCCCGGGCCGCGCCACGCCCTGGCTGTGGATCGCGCTGATCGTGCTCATCGTCGGACTGATGGCCATGATGTTCCTCGCTCAGGGGATCAGCCTGATGAGTTGAMTEEAGHDEDPRYEAKAPAANPEAGPDDRTQPPSGDVPPGETPPASDQVGAPQGHEEHGPGRATPWLWIALIVLIVGLMAMMFLAQGISLMSNANANANANA
AK018_00907207hypothetical proteinGTGCCCGCCTTCGCCGAAACCGGTGACCTGGGTGGCGGCAGGCCGGTGCCCGCCATCGTGTTCCCGGAAGGGTCCAGCAGCGCCGAGTCCGTCGAGGTCACTTGGACCGAATGGTTCGACGTCTTCGAAGCCAGCGGGTTGGAGTTCGTGCATCCCGAAGGCGACCCGGCGACGTCGCCCCCGAAGTTCGAGCTGAGGAATCGTTGAMPAFAETGDLGGGRPVPAIVFPEGSSSAESVEVTWTEWFDVFEASGLEFVHPEGDPATSPPKFELRNRNANANANANA
AK018_009081632ctaD_1COG0843putative cytochrome c oxidase subunit 1GTGGTGCAATGGCTGACCACGACCGATCACAAGCGCATCGGGGCGCTGTACCTGACGACCTCGTTCGGGTTCTTCCTGCTGGCAGGGCTGCTCGCACTCGTTCTGCGAGCTGAGTTGTTCAGCCCGGGTCTCCAGGTGGTGCAGAGTCGCGAACAGTACAACGAGCTGTTCACGATGCACGGCACCGTCATGCTGCTGCTGTTCGCGACCCCATTGTTCGCGGGGTTCGCCAACGTGCTCGTGCCTCTCCAGATCGGTGCCGCCGACGTGGCCTTGCCACGGCTGAACGCCCTGTCGTACTGGTTCTTCCTCCTGGGCGGCCTGCTGGTGGTATCCGGACTTCTCACGCCCGACGGCGCGGCCTCCTTCGGGTGGTTCGCCTACGCCCCGTTGTCCACCGAGACCTACTCGCCAGGGGTCGGTGGCGATCTGTGGGTCTCGGGACTCATCCTCTCTGGGTTTGGCACTATTCTCACGGCCGTGAACATCGTTACCACGGTCATCACGCTGAGGGCCCCGGGAATGACGATGTTCCGGATGCCGATCTTCGTGTGGAACAGCCTGGTGACGAGTCTGCTCGTCCTCATGGCTTTTCCCGTACTCGCATCTGCACTCTTCGCCCTCGCCGCGCAGCGACGACTCGGAGCCCAGGTGTTCGACGCCGACAGTGGTGGGGCGCTCTTGTGGCAGCATCTGTTCTGGTTCTTTGGCCACCCAGAGGTCTATATCATCGCGCTGCCGTTCTTCGGCATCATCTCCGAGATCCTGCCGGTGTTCGCCCGCAAACCGATCTTCGGTTACAAGGGTCTCGTCCTGGCGACGATCGCGATCGCCGCCCTGTCCATGACTGTGTGGGCCCATCACATGTACGCCACGAGCGCGGTACTGCTGCCGTTCTTCGCCATCATGTCCATGCTCATCGCCGTACCCACCGGCGTGAAGTTCTTCAACTGGATCGGCACGATGTGGCGTGGAAGGCTCACGTTCGAGACACCGATGCTGTGGTCGATCGGCTTCCTCGTCACATTCCTGTTCGGTGGCCTCACGGGCGTCGTGCTAGCGAGCCCGGCAGTCGACTTCCACGCGACGGACTCCTACTTCGTGGTGGCGCACTTCCACTACGTGGTGTTCGGCACCGTGGTCTTCGCCATGTTTGCCGGTTTCTACTTCTGGTGGCCTAAGCTGACAGGACGTCGATTGGACGAGCGGCTCGGCAGGGTCCAGTTCTGGATGCTCTTCGTAGGGTTCCACCTGACGTTCCTCGTCCACCATTGGCTTGGCGTCATGGGGATGCCGCGCCGCTATGCGGACTACATGCCAGTTGACGGCTTCACCACGCTCAACCAACTGTCCACGATAGGATCGATGATCCTCGGGGTGTCCACGTTGCCGTTCCTGTGGAACGTCTACGTTTCCTGGCGCAGGGCGCCACAGGTGGACGTCGATGACCCTTGGAGTTTTGGACGCTCGCTCGAATGGGCAACGACCTGCCCGCCTCCGCGGCACAACTTCGCCGCGCTTCCGCGGATCCGATCGGAATCGCCGGCTTTCGATCTCCACCATCCCGAAGTGGCGGCGATGGCGCATCGCCCACCGACCCAGCCAACGCCACAGGAGCCACACCCCAGCTGAMVQWLTTTDHKRIGALYLTTSFGFFLLAGLLALVLRAELFSPGLQVVQSREQYNELFTMHGTVMLLLFATPLFAGFANVLVPLQIGAADVALPRLNALSYWFFLLGGLLVVSGLLTPDGAASFGWFAYAPLSTETYSPGVGGDLWVSGLILSGFGTILTAVNIVTTVITLRAPGMTMFRMPIFVWNSLVTSLLVLMAFPVLASALFALAAQRRLGAQVFDADSGGALLWQHLFWFFGHPEVYIIALPFFGIISEILPVFARKPIFGYKGLVLATIAIAALSMTVWAHHMYATSAVLLPFFAIMSMLIAVPTGVKFFNWIGTMWRGRLTFETPMLWSIGFLVTFLFGGLTGVVLASPAVDFHATDSYFVVAHFHYVVFGTVVFAMFAGFYFWWPKLTGRRLDERLGRVQFWMLFVGFHLTFLVHHWLGVMGMPRRYADYMPVDGFTTLNQLSTIGSMILGVSTLPFLWNVYVSWRRAPQVDVDDPWSFGRSLEWATTCPPPRHNFAALPRIRSESPAFDLHHPEVAAMAHRPPTQPTPQEPHPSPGPT0004025_516DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
AK018_00909900hypothetical proteinATGGCACTCCCTGAGCCGAAGGTCAGGCGCTCACGACTTGACGCCACTGCTCCCGACGACGGTACCGCCCAAGCGGCGGCACGCATCTGTTCCTTTCGCGCCGCAGGAGACCGCACAAGTCGACGGCCGCACTGCGGAAGTCGTGCGTTCACCCCAACACGTTGCTGGCGTCCTGCCATAGACGTAGCGTCGGGACCACGTCGGGCAAGTTGCGGTACGCACCACGCGAAACGAGGCGAAACGATGCGCACGAGGCAAACCCGTGGCCGCCCTGCCCGCACTTGTCGAGTGTCCAGCCCGTCGGCGCGCGAGCTGCTCAGGATCGATCACCATGCCAGTCTGGAGGAACCGGTGCCACATTCCCCTCGCTCCCTGCGGGACGTGCTCCCGAGCACAGCGATCCGGCTCGAGCGCTCGGCGCGTCTCGATGCTCTCTCGGAGGCCGTGGCGAGAGTCCGTGATGGAACGGTGCCCCCTGGTCGGACGCGCGCCGAACTGCAGGGCCGTTCTCTCGGACACCCACTCCACGGCGTCCTGACCGACGCACCGCTCGGTCTGTGGCTCAGCGCCGTCGCGCTCGACTTCGCACGTCCAGCGGGTTATGAACCCGCGGCCCAGCGACTCGTCGCGCTGGGCATACTTGCTGGTCTGCCCACTGCATGGAGCGGCCTGGCGGACTTCGCAGAACTGTCCCGACCGGCTCGCCGCGTCGCCTCGGTGCACGCGTCGTGCAACGGCGCCGCCTCAACGCTCATGGCCATCTCGGGGTGGAGTCGCCGCAGCGGGCGCCACCACCGTGGCATGGCATTCGCCGTCGCCGGAATGACCGTGGCAGGCGCAGGAGCGTTCCTGGGTGGCCATGTCGCGCTAGCCATGCAGGAGCCAACGCGCGAGGCCTGAMALPEPKVRRSRLDATAPDDGTAQAAARICSFRAAGDRTSRRPHCGSRAFTPTRCWRPAIDVASGPRRASCGTHHAKRGETMRTRQTRGRPARTCRVSSPSARELLRIDHHASLEEPVPHSPRSLRDVLPSTAIRLERSARLDALSEAVARVRDGTVPPGRTRAELQGRSLGHPLHGVLTDAPLGLWLSAVALDFARPAGYEPAAQRLVALGILAGLPTAWSGLADFAELSRPARRVASVHASCNGAASTLMAISGWSRRSGRHHRGMAFAVAGMTVAGAGAFLGGHVALAMQEPTREANANANANANA
AK018_00910243hypothetical proteinATGCCGACCTGTGACATGTGTGGCAACGACTACGAGCGCAGTTTCACCGTCACCAGCGCCGACGGCGTGAGCAGCGTCTTCGACTCGTTCGAGTGTGCAGTGCACGCCATGGCGCCACGGTGCGCCCACTGTGGATGCACGGTGCTTGGGCACGGCGTGACGGTCGAGGCGGAAACGTTCTGCTGCAGCCACTGCGCGCGGCAGACCACGGGCGCCGAGATCACCGACAGCGTCGCATCGTGAMPTCDMCGNDYERSFTVTSADGVSSVFDSFECAVHAMAPRCAHCGCTVLGHGVTVEAETFCCSHCARQTTGAEITDSVASNANANANANA
AK018_00911255hypothetical proteinATGGCCACCGGAGAAACCGGATTCGACGACGTGACGTTCGATCTCATCTCGGTGCAGTACCACTCGCTCAAGGCCGGCCACGACTACGGGCAGTACGTGCGGGACGCCCGCAACGCGGGCCAGGAAGAGATCGCAGTGTTCTTCGAGCAGGTGATGCAGGAGGACTCCGCTCGAGCAGCTCGCTGCCACGAGTTCCTGAGCGAGCTGGCCGCGAACGGCACCGCGGCGACGTCGCCCAGCGGCTCTGAGGGCTGAMATGETGFDDVTFDLISVQYHSLKAGHDYGQYVRDARNAGQEEIAVFFEQVMQEDSARAARCHEFLSELAANGTAATSPSGSEGNANANANANA
AK018_00912252hypothetical proteinATGTCCGTGGACCCCGGTGCGCGCACCGTCGTCGGCGCGCCGGGCGAGGTGCTCGACGACCTGAACGCCCGGCTGGCCGAGCACGGAGACGACGTGCGCGCCCGCTTCCCGGACATCCCGCGCCGCGTCTCCGGCTACAACCTGGGCTCGCTGCTGCCCGAGCATGGCTTCGACGTGGCCCGCGCGCTCGTCGGGTCGGAGGGCACCCCCGTGACGATCCTGCGGGCGAGCTCTCGCTCGTGCCCGTCGTGAMSVDPGARTVVGAPGEVLDDLNARLAEHGDDVRARFPDIPRRVSGYNLGSLLPEHGFDVARALVGSEGTPVTILRASSRSCPSNANANANANA
AK018_009131815ydaPCOG0028Putative thiamine pyrophosphate-containing protein YdaPATGAACGGCACGGTCAGTGACTTTGTCATCGACCGCCTCATCGAATGGGACCTGCACACCTGGTTCGGGTATCCGGGCGACGGTATCGGGGGCTTCGACGGCGCGCTAGAGCGCGCCGAGTCCGACGACAAGGACTTCCGCTACCTGCGCCCCACCCACGAGGAGGTGGCCGCCTTCATGGCGACCGCTCACGCCAAGTTCACCGGGGAGGTCGGTGTCTGCGTCGCCACGTCCGGGCCGGGCGCGATCCATCTGCTCAACGGCCTGTACGACGCGAAGATGGACCACCAGCCGGTGGTCGCCGTCGTGGGCCAGCAGGGCCGAGTCGCGCTGGGCAGTGACGGACAGCAGGTGCTGAACCTCGAGCGGGCGTTCGACGACGTTGCCGGGTACGTGCAGACCGTCAACACCCCCATGCAGGCACAGCTCGTCGTGGACCGGGCCGTCCGGGTCGCGCACGCCGAGCGCTGCCCCGTCGCCGTGATCCTGCCGGCCGACGTACAGGACCTGGAAATGGAGGAGCCCGCCGTCGAGCACTGGGTGTCGCGTACCGGCGTCGGCCACTCCTCGATCGCGCTGACGCCCCCGGAGGACGAGCTCCGGCGGGCCGCGGAGGTGCTCAACGCCGGTTCGAAGGTGGCCATGCTCGTCGGCGAGGGCGCCCGCGGCGCCACCGAGGAGGTGCTCGAGGTGGCGGACCGGCTCGGCGCCGGCATCACGACCGCGCTGCTCGGCAAGGACGTGGTGCCCGGGGACGTGCCGCACCACGTGCAGCAGCTCGGCCTGCTGGGCTCGAAGCCGGCGTACGACATGATGCAGGACTGCGACACCCTGCTCGTCGTCGGAAGCAACTACCCCTACTCCGAGTTCCTCCCCGAGACGGGGCAGGCCCGTGGCGTGCAGATCGACCTCGTCCCCCGCAACCTCAGCCTGCGGTACCCGATGGAGGTCAACCTCGCGGGGGACGCGCGCGCCACGCTCGCGGCGCTACTGCCATACCTTGCGCACCACGACGACCGCACCTGGCAGGAGGGCGTCGTCGAAGGCATGCGCGTCTGGGACGACGTCATCGAGAAGCAGGCCCTGGCGGAGGCGGACCCGGTCAACCCACGCCTGGTGTACCACCGACTCAACGAACGCCTGCCCCGGAATTGCATCGTCACAGCCGACGCCGGCTCGACGGCAGACTGGTACGGCCACCACCTCCGGCTGGGGCGCGACATGCGCGGGAACCTCTCCGGAATGCTCGCGTCGATGCTGGCAGCGATGCCGTACGCGCTGTCGGCCAAGTTCGCCTTCTCCGACCGGCCGGTGGTGTGCACCATCGGGGACGGCGCGTTCCAGATGCTCGGCATGAACGAACTGCTCACCGTGAAGCGGCACTGGCAGGAGTGGACCGACCCGCGGTTCGTCGTGCTGGTGCTGCACAACGACGACCTGACGCAGGTCTCCTGGGAGATGCGCGAGGCCGGCGACCCCCGGTACGACACCTCGCAGCTCCTGGAGGACATGGACTACGCAGGCTACGCCGAGCTGCTCGGTCTGCGCGGCCTCCGCGTCGACCGTCCGGAGCAGGTGGGCGCTGCCTGGGACCAGGCGTTCGCCGCGGATCGGCCCGTCGTGCTCGACGTGCGCACCGACCCGAACGTGCCGCCGTTGCCGGCGCACGTCTCGCGGGAAGAAGTGACGGCGTTCCTCGAGACGCTCGCCAAGGGCGACCCGGCCCAGGGGTCGGTGATCCGGAACTCCGCGCGGGCGGTCGCGGCCCAGCTGTTCGCGCAGGCCAAGCATGCCCTCGGCCGTGGCGACTCCTGAMNGTVSDFVIDRLIEWDLHTWFGYPGDGIGGFDGALERAESDDKDFRYLRPTHEEVAAFMATAHAKFTGEVGVCVATSGPGAIHLLNGLYDAKMDHQPVVAVVGQQGRVALGSDGQQVLNLERAFDDVAGYVQTVNTPMQAQLVVDRAVRVAHAERCPVAVILPADVQDLEMEEPAVEHWVSRTGVGHSSIALTPPEDELRRAAEVLNAGSKVAMLVGEGARGATEEVLEVADRLGAGITTALLGKDVVPGDVPHHVQQLGLLGSKPAYDMMQDCDTLLVVGSNYPYSEFLPETGQARGVQIDLVPRNLSLRYPMEVNLAGDARATLAALLPYLAHHDDRTWQEGVVEGMRVWDDVIEKQALAEADPVNPRLVYHRLNERLPRNCIVTADAGSTADWYGHHLRLGRDMRGNLSGMLASMLAAMPYALSAKFAFSDRPVVCTIGDGAFQMLGMNELLTVKRHWQEWTDPRFVVLVLHNDDLTQVSWEMREAGDPRYDTSQLLEDMDYAGYAELLGLRGLRVDRPEQVGAAWDQAFAADRPVVLDVRTDPNVPPLPAHVSREEVTAFLETLAKGDPAQGSVIRNSARAVAAQLFAQAKHALGRGDSPGPT0001371_102DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001371-poxB-K00156NANA
AK018_009141008fgd1_2COG2141F420-dependent glucose-6-phosphate dehydrogenase 1ATGACTCGCTTCGGATACACGCTCATGACCGAGCAATCGGGCCCGCGCGAGTTGGTGGGCTACGCTCGCGCCGCCGAGGAAGTTGGGTTCGATTTCGAGGTGTCGAGCGACCACTACTTCCCGTGGCTCGCGTCCCAGGGACACTCCCCGTACGCCTGGTCGACGCTCGGTGCGGTCACCCAGGTGACCGACCGGGTCGAACTGATGACCTACGTCACGTGCCCGACGCTCCGGTACCACCCCGCACTGATCGCCCAGAAGGCCGCGACTCTCGGCCTGCTCTCCGGCGGGCGATTCACCCTGGGGCTCGGCGCCGGGGAGAACCTCAACGAGCACGTCGTCGGCCACAGGTGGCCGGCCGTCGACGAACGGCACGACATGCTCGAGGAGGCCGTGGGGATCATCCGTACGCTGCTGCGCGGGGACGGATACACCAGCGCCGAAGGAGATCACTTCCGCATCGACTCCGCGCGCATCTGGGACCTGCCGCCCGACGGCGTGGACCTCGCCGTCGCCGTCTCCGGCGCCGCTTCAGTCTCCCGCTTCGCCGCTCTCGCAGACCACCTCGTTGCGGTGGAACCCGACCCCGAACTACTCAGCCGGTGGCATGCGGAGCGTCAGACAGCGGACCTCGGACCGTCACGCGCGATCGCGCAGGTTCCCATCTCCTGGGACCCCGACCGGGACACCGCGATCGAGCGCGCCCACGACCAGTTCCGCTGGTTCGGCCTGGGCTGGCCCGTCAACTCGAACCTGCCCACGACCGAAGCGTTCGAGGCGGCGACCCAGTTCGTGCGGCCGGAGGATGTGGCTGCCGCCATACCCTGCGGACCCGACATCGACGCCATCGTGCAGGCCGTGGCCCCGTACTGGCAGGCCGGGTTCACCGACGTCGCGTTGGTGCAGATCGGCGACCAGAGACAGCAGGAGTACCTCGACGTCGCGGCCGAGCCACTCCTGGAAGCGCTCCGCGACGCGGCCCCTCCGGCGGGTGGGCCGCACCCGTAAMTRFGYTLMTEQSGPRELVGYARAAEEVGFDFEVSSDHYFPWLASQGHSPYAWSTLGAVTQVTDRVELMTYVTCPTLRYHPALIAQKAATLGLLSGGRFTLGLGAGENLNEHVVGHRWPAVDERHDMLEEAVGIIRTLLRGDGYTSAEGDHFRIDSARIWDLPPDGVDLAVAVSGAASVSRFAALADHLVAVEPDPELLSRWHAERQTADLGPSRAIAQVPISWDPDRDTAIERAHDQFRWFGLGWPVNSNLPTTEAFEAATQFVRPEDVAAAIPCGPDIDAIVQAVAPYWQAGFTDVALVQIGDQRQQEYLDVAAEPLLEALRDAAPPAGGPHPNANANANANA
AK018_00915789COG1028putative NAD-dependent oxidoreductaseATGACGGTCAACGAGCTGGACGGCAGAGTCGCGCTGGTCACGGGCGCGGGATCGGGCATCGGACGCGCGACGGCGGTGCTCCTGGCCCGCCGGGGCGCGTCGGTGGTGGCGCTCGGGCACCGGCAGGAGAGCGCCGACGACGTCGCCGCCGAGATCCGCGGTGCGGGCGGCACCGCGCTGCCGGTGGCGGGCGACGTCGGGGACGCCAGCACCGTGCGCGAGATTCTCGACGGCGTCGAACGGGAGCTGGGCCGCCTCGACGCCGTCGTCGCCAACGCGGGCGTGAACGGAGTTTGGGCGCCGCTGGAGGAGCTGGCTCCCGAAGAGTGGAGCAGCACGATCGCCACCAACCTCACCGGCACGTTCCACACGGTGCGGTTCTCCGTTCCTTTGCTCGTGCGCCAGGGTGGTGCGGTCGTGGTCGTGTCGTCGATCAACGGCACGCGCACGTTCAGCAACTCGGGCGCCTCCGCCTACGCCACCACCAAGGCGGGCCAGGTGGCGTTCGCCCGCATGGCGGCCGTCGAGCTCGGCCCGCGCGGGGTGCGGGTCAACTCCGTGTGCCCGGGAGCGATCGACACCGAGATCGACGACAACACCGAGCAGCGCCAGACCGACGGCCTGGGCGTGCCCGCCGATTTCCCCGAGGGCCAGATCCCGCTCACGAGCCGGGAACCCGGAACCGCCGCGCAGGTCGCCGAGGCCATCGCCTACCTCGTCTCCGACGCCGCGAGCCACGTCACCGGCACCGAGGTGTTCGTCGACGGAGGTCAGTCGCTCGTCGCGTGAMTVNELDGRVALVTGAGSGIGRATAVLLARRGASVVALGHRQESADDVAAEIRGAGGTALPVAGDVGDASTVREILDGVERELGRLDAVVANAGVNGVWAPLEELAPEEWSSTIATNLTGTFHTVRFSVPLLVRQGGAVVVVSSINGTRTFSNSGASAYATTKAGQVAFARMAAVELGPRGVRVNSVCPGAIDTEIDDNTEQRQTDGLGVPADFPEGQIPLTSREPGTAAQVAEAIAYLVSDAASHVTGTEVFVDGGQSLVANANANANANA
AK018_00917867ilvE_1COG0115Branched-chain-amino-acid aminotransferaseATGAGTCTCGTGATCTGGGCCGAGGGCAGGCTGGTCGGAGCCGAGGAGGCCGCGCTGAGCGCCGTCGACCACGGCATCACCGTGGGCGACGGCGTCTTCGAGACGTGCACCGTCCTCGACGGACAGGTGTTCGCGCTGACGCGGCACCTCGCCCGGCTGCGGCGGTCCGCGCTCGGGCTCGGCCTCGAGGCACCCGACGAGCAGAAGGTGCGCGACGGCGTCACCGCCGTGCTCGACGCCGCCGTCGCCGCGTCCGGCCCCTTCGACGGCCGCCTGCGCCTGACCGTCACCGCCGGCGTCGGACCGCTCGGATCCATGCGGGTGCCCGGCGCGCAGAGCGTCGTCGTCGCGGCGCAGGACTCGGTCATGGCGCCCGAGTCCCGCTCGGCCCGCTCACCCTGGCCCCGCAACGAGCGGTCACCGATCGCCGGGCTCAAGACGACCTCCTACGCGGAGAACGTCGTGGCGCTCGCGAACGCCAAGGCTAAGGGCGCCGACGAGTCGATCCTGCCCAACACGGTCGGTGAGCTGTGCGAGGGCACCGGCTCCAACGTATTCGTCGAGCGCGGTGGCGAGCTCGTGACGCCGCGGCTGGACTCCGGGTGCCTCGCGGGGATCACGCGTGCCCTGGTCCTGGAATGGGGCGCCGAGGCGGGACTCCCGGTGCGCGAGGCGCACGAGGGCGAGCTCGGCTTCGACGTCCTGGACGAGGTGTCCGCCGGACGGGCCGCCCTTGCGCTGACGTCCTCGGGCCGCAACGTCCAGCCGGTCACGTGGCTGGACGGCGTCGACGTCGCCGCTGGCGAGGTCACCCTCGCCGCGCGGGAGGTCTTCGAGAAGCTGTGCCGCGAGCGCGTCGAGCCGTGAMSLVIWAEGRLVGAEEAALSAVDHGITVGDGVFETCTVLDGQVFALTRHLARLRRSALGLGLEAPDEQKVRDGVTAVLDAAVAASGPFDGRLRLTVTAGVGPLGSMRVPGAQSVVVAAQDSVMAPESRSARSPWPRNERSPIAGLKTTSYAENVVALANAKAKGADESILPNTVGELCEGTGSNVFVERGGELVTPRLDSGCLAGITRALVLEWGAEAGLPVREAHEGELGFDVLDEVSAGRAALALTSSGRNVQPVTWLDGVDVAAGEVTLAAREVFEKLCRERVEPPGPT0008860_6899DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826NANA
AK018_00918612hypothetical proteinATGACACCGATCACCTGCGACCTGTCCGTGTCCCTCGACGGCTTCACCGCCGGTCCGCACCCCAGCCGCGAACGCCCCTTCGGCGACGTCGTCGGCACCGGCGAGGTGCTGCACTCGTGGATGTTCGACCACGCCGACGACCACCGCGACGAGATCGACGGGATCCTCGACGCTGGCGCCTACGTCATGGGGCGCGGCATGTTCTCGCCCGACACCGGACCCTGGGACCCGGACTGGCAGGGGTGGTGGGGCGACGAGCCCCCGTACGGGGCTCCCGTGTTCGTGCTGACCCACCACCCGCGCGAGCCCCTGGTGCTCGGCGCCACGACCTTCCGGTTCGTGACCACCGGTCTCGAGGACGCTCTGGCCGCCGCCCGCCGAGCGGCCGGCGCAGGGTCCGTGTCGATCGCCGGCGGGGTGCGCACCGTCAACGCGTGCCTGAAGGCCGGCGCGATCGACGAGCTGCGGCTGCACGTCGCACCCGTGCTGCTCGACATCGACGGGGGAGTGCGGCTGTTCGACGGGGTCGGCCGGCACGACCTCGACGCCGTCTCCGCCCGGCACACGCCGGAGGTGACGCACCTGGTCTACCGCCGCCGTCGGGCAGACTGAMTPITCDLSVSLDGFTAGPHPSRERPFGDVVGTGEVLHSWMFDHADDHRDEIDGILDAGAYVMGRGMFSPDTGPWDPDWQGWWGDEPPYGAPVFVLTHHPREPLVLGATTFRFVTTGLEDALAAARRAAGAGSVSIAGGVRTVNACLKAGAIDELRLHVAPVLLDIDGGVRLFDGVGRHDLDAVSARHTPEVTHLVYRRRRADNANANANANA
AK018_00919378hypothetical proteinATGACCGCGCTGTGGGTGACCCTGCGCTACCGCGACGCCGACGCCGCCCTGACCTGGCTGCGCGCCGTCGGCTTCACCGAGGACGTCGTCCACCGCGACCCCGACGACCGCAGCGTCGTCCAGCACGCCCAGCTCTCCTGGCCCGGCGGTGGCGGACTCATGCTGGGCACGCACCGCGAGAGCCCTGGCTGGCCCGTCGAACCCGGGCACGGGGCCACCTACGCGGTCACCGACGACGTCGACCGCGTCTTCGAGGCCGCGGTCGTGGCGGGCGGTCGGGCCGTCATGGAACCCGCCGACCAGGACTACGGAGGGCGCTCGGCGACCGTCGCCGACCCCGAGGGCAACCTGTGGAGCTTCGGCAGCTACCGGCCGTGAMTALWVTLRYRDADAALTWLRAVGFTEDVVHRDPDDRSVVQHAQLSWPGGGGLMLGTHRESPGWPVEPGHGATYAVTDDVDRVFEAAVVAGGRAVMEPADQDYGGRSATVADPEGNLWSFGSYRPNANANANANA
AK018_009201122menF_1Isochorismate synthase MenFGTGCTGCCCGTGCAGCAGCCGACATCGTGGGCCCGGTTCGCGGGCCGCACCGCCACCGACGTCGTCGAGTGCGTCGACCTGGAGCGCGCACCGGAGCGGCTCGAGCACGACGGTCCCTGGTTCGTGGTGGTCGACTTCGAGGCGTTCGGTCGCGGCGGGCGGGCGCGCGCCTGGCGGTTCGCCGAGGTCCGGGACGACGGGCCCGACGTCGGCGCCGCTGGCCCGGGGTGTCTCGGGACGTCCGACGGCGGCTGGACCGGTCCGGACGCGAGCTCCTGGCACAGCTCGATGGACCGTGCCGCCTACGAGGCGGCCGTCGCACGGGTGCGCGACCACGTGCGCGACGGGACCGTGTACCAGGCCAACGTCTGCCGCATGCTGTCCGCGCCCCTGCACGTCGACGGCGGCGAGCCGGACGCGGCAGCGCTCGCCGAGCGACTGGCGACGGGCAACCCGGCGCCGTACGCCGCCGCGGTGCACGTGCCGGTCGGCAGCGGCGTCGACCCCGTCTGGGTCGTGTCGGCCTCACCCGAGCTTTTCCTCTCGCTGGAGGCCGGGATGCTCGGTTCGGGTCCGATCAAGGGCACCGCACGCACCCCGGCCGGGCTGACCGGCAAGGACCGTGCCGAGAACGTCATGATCACCGACCTGGTGCGCAACGACCTGCAGCGGGTGTGCGCACCCGGCACCGTCGCCGTGACCGATCTGCTCGGCGTGGAGGAGCATCCCGGGCTGGTGCACCTGGTCTCCCGGGTGCAGGGCACGCTCGCCGGGACCGTGCGGGCCGCGCCGGACCGTTGGCGCCAGGTGCTCGGCTCGACGTTCCCCCCGGGGTCGGTCTCCGGTGCGCCCAAGTCCTCCGCCCTGCGGATCATCGAGGAGCTCGAGCCGGTGCCCCGCGGGCCCTACTGCGGCGCCGTGGGCTGGGTCGACGGCGACCGGGCCGAGCTCGCCGTCGGCATCCGCACCTTCTGGTGGTCCGACGGCGTGCTGCGGTTCGGCACCGGCGCCGGCATCACCTGGGGCTCGGACCCGCACGCCGAGTGGCGCGAGACCGAGCTCAAGGCGGCACGGCTCGTCGGGCTCGCCTCCGGGACGGCGAGCAGGCCGCCGCGCCCCTAGMLPVQQPTSWARFAGRTATDVVECVDLERAPERLEHDGPWFVVVDFEAFGRGGRARAWRFAEVRDDGPDVGAAGPGCLGTSDGGWTGPDASSWHSSMDRAAYEAAVARVRDHVRDGTVYQANVCRMLSAPLHVDGGEPDAAALAERLATGNPAPYAAAVHVPVGSGVDPVWVVSASPELFLSLEAGMLGSGPIKGTARTPAGLTGKDRAENVMITDLVRNDLQRVCAPGTVAVTDLLGVEEHPGLVHLVSRVQGTLAGTVRAAPDRWRQVLGSTFPPGSVSGAPKSSALRIIEELEPVPRGPYCGAVGWVDGDRAELAVGIRTFWWSDGVLRFGTGAGITWGSDPHAEWRETELKAARLVGLASGTASRPPRPPGPT0008005_2428DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008005-pabB-K01665NANA
AK018_00924285hypothetical proteinATGTGCCGCAACATCACCACCCTGCGCGGCCTCAAGCCGCCCGCCACCGCCGAGGAGATCGAGGCGGCCGCCGCCCAGTTCGTGCGCAAGGTCACGGGAGTGGCGTCGAACGCGGCGCCGGCCTCGCGCGAGCCCTGCGAGGCCGCGTCCGCCGAGATCGCCGCCGTCCTGACACGCCTCCTGGACGAGCTTCCGGCACGACGCCGACCCCCGACGACCGTGCCTCCGCTGCGTCGCGAGGAGGTCCGGGCCCGGATCGCCGCCCGCGAGGCGGCCTCGGCCTGAMCRNITTLRGLKPPATAEEIEAAAAQFVRKVTGVASNAAPASREPCEAASAEIAAVLTRLLDELPARRRPPTTVPPLRREEVRARIAAREAASANANANANANA
AK018_00927294hypothetical proteinGTGGAAGCCGACCGCAGCGCCGACAGCCCGCCCGCCGTGTCCGCCACGATGCACCGCGCCAAGACCGGCGCGCGGGCCGCGCACGTGACCGTCGGCAAGGTGCGCGACCGGGCGGACGGCACGGTCGAGATCGACTGCTCGTGCGGGATGGTGCTCACCAACGGCCCGCACTGGTCCCTCGACGAGCACATCCGCCTGCACCGCGCCGAGGCGCGCTACCTCGCGCTGAGCGAGGTCGCACCCGCCGGCATGCCGCGCCTGATCCCCGTGGCGGCCGACCGCTTCCCGCGGTAAMEADRSADSPPAVSATMHRAKTGARAAHVTVGKVRDRADGTVEIDCSCGMVLTNGPHWSLDEHIRLHRAEARYLALSEVAPAGMPRLIPVAADRFPRNANANANANA
AK018_00928234hypothetical proteinATGAGCAAGGACACGGAGGACCCGGACGAGCGCCGCTGGCGCGCCCTCCTCGACGAGTCGATCGCCTCCCAGGCGCGGATCGCGCCGAAGCGGCGGTCAGCCAGCGACCCGCACGGCGACCCCCGGACCGGGGGAGACGCCACAAAGGCCCCGAACTCGCTGTCGCAGTCGGAGCGCCGCCCGATGGAGGGCGCCTCCAGCGGGCACTCCTGGGACGACCCCGACGAGCTCTGAMSKDTEDPDERRWRALLDESIASQARIAPKRRSASDPHGDPRTGGDATKAPNSLSQSERRPMEGASSGHSWDDPDELNANANANANA
AK018_009291566glgB_11,4-alpha-glucan branching enzyme GlgBGTGTGGGCGCCCCGTGCCCGCACCGTCGAGGTCGTGCTCCCCCGCACCGACGGACCCGACGAACGCCGCCCGCTGCGCCTGGTGGGCGCGCACGAGCCGGGCTACTGGCGCGCCGACGACGAGCTCGCCCCCGGTACCGAGTACGCCTTCAGCATCGACGCCGGCCCCGCCCTGCCCGACCCGTGCAGCACCTCGATGCCCCACGGCCCCTACCGGCCCGGCCGCGTGCTGGACGAGTCCTACGCGTGGCACGACGAGACCTGGCACGGCGCGGACCTGCGGCGGGGCGCCCTGCTGCACCTCGACGTGGCCGACGCGACCCCCGAGGGCACCCTGGACGCGGCCGCCGGCCTGCTGCCCCGCGTCGCGGCTCTCGGCGTCGACGCGGTCGAGCTGGGCCCCGTCGCCGCCCACCATCCTGCCCACGGCCTCAGCGGCGGAGCCCGGCTCTTCGCGGTCCACGAGCCCTACGGCGGCGCACCCGCCCTGGCCCGGTTCGTCGACGCCGCCCACCGGGCCGGGCTCGCCGTCGTCCTGGACCTGCCCCACCGGTGGGCCGTCGCCGACCGGCTCGACCTGCACGCCTTCGCGCCGTACTCGGTCGGGGCCCGCCTTCCTCCGCGCGCCGGATCCGGCGTCACCTCCGACACGCCGCGCGTCAACCTCGACGGGTCCGGCAGCCGCGGCACCCGGGACTTCCTCGTCGCCGACGCCCGCCGGTGGCTCGAGGACTACCACGTCGACGGGCTCCTGCTGGACGTCGAGGTCCTCACCGACCGGTCCGCCGTACCGTTCCTCGCCGAGCTCGCCGAGACCGCGCAGGACGTCGGCGCCCGCACCGGCGTCCCGCGCACGTTCCTCACGGACGGCGTCGGTCGCAGCGACCGGCTGACCACCGCGGTCGCGACGATGCTCGACGGCAACATCGCCGCTGCGATCGACTCGATGCAGCGGATCTGGGCCGAGTTCATCGGGGACGGCAGCGCCGTGCCCGGCATGGCGGGCCTCCCCGGCCGGCGTTCCCGCGGGCCACGCTCCGGCACCCTGGTCGACGACATCACGCGGCTACCCGCCGCCGCCCGCCAGGTCTCCTGGTCGCCCGACCGGGACGCCGGACCCTCCGCACCGTCGCCCGACGACGTCGCCGTGCTGCTGACCCTCGCCACCCTGGCCGGCACGCCGCTCGTGCTCGACACCGAGCACGTGCCGCTCGTCGGCGACACCCTCGCCGCACGCCGCCTGCGGGACTGGGCACGCACGCTGCTGCGCCTGCGTCCCCCCGTCCTCGCCGACCTGCACGCCGGTGTCGACCTGCACACCGACGGCCGCACCCTCGTCGCACGTCGCGGCGAGAGCGCGATCCTCGTCAACGTCGACGACCGGGCCACCGACGTCGACCTGGAGCAGCACCTGCCCGACCCCGCCACGTGGCAGGTCGCCGCCTCCTGGCGCCTCGACGAGACCCACCTCGTGGCCGGGCGCCTGAAGATCCCGGCCCGCACCCCGGTCGTGCTGCGCACCGACCGGGCCGACCCGACCCCCGACGCCCCAGGAGCCGCACCGTGAMWAPRARTVEVVLPRTDGPDERRPLRLVGAHEPGYWRADDELAPGTEYAFSIDAGPALPDPCSTSMPHGPYRPGRVLDESYAWHDETWHGADLRRGALLHLDVADATPEGTLDAAAGLLPRVAALGVDAVELGPVAAHHPAHGLSGGARLFAVHEPYGGAPALARFVDAAHRAGLAVVLDLPHRWAVADRLDLHAFAPYSVGARLPPRAGSGVTSDTPRVNLDGSGSRGTRDFLVADARRWLEDYHVDGLLLDVEVLTDRSAVPFLAELAETAQDVGARTGVPRTFLTDGVGRSDRLTTAVATMLDGNIAAAIDSMQRIWAEFIGDGSAVPGMAGLPGRRSRGPRSGTLVDDITRLPAAARQVSWSPDRDAGPSAPSPDDVAVLLTLATLAGTPLVLDTEHVPLVGDTLAARRLRDWARTLLRLRPPVLADLHAGVDLHTDGRTLVARRGESAILVNVDDRATDVDLEQHLPDPATWQVAASWRLDETHLVAGRLKIPARTPVVLRTDRADPTPDAPGAAPPGPT0014130_1474DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_GLYCOSIDE_UTILIZATIONPLANT_DERIVED_GLYCOSIDE-GLYCOSIDASES|GLYCOSYLHYDROLASES,PGPT0014130-treZ|glgZ-K01236NANA
AK018_00930852COG2326Polyphosphate:AMP/ADP phosphotransferaseGTGACCGCACCCCGCTGGACCGCCGACCCTGCCCAGGCGCTGCGCTGGACGCCGGGGACCCGGCTCGACGCCGTCGACCCGCGCTCCACCCCCGGGTTCGACGGCGGCAAGGGGGACGGCCGCGAGCTGCTCGGCGACCACCGCGACGAGCTCTCCGACCTGCAGGAACGGCTCTTCGCGCACGGCCGCACCGGCGGGGACCGCACCGTGCTGCTCGTGCTGCAGGGCATGGACACGGCCGGCAAGGGCGGCGTCGTGCGCCACGTCGTCGGCATGGTCGACCCCCAGGGCGTGCGCTGCCGAGGGTTCGGGCGGCCCACCGCCGAGGAACGGGCCCGCGGCTACCTGTGGCGCATCCGGCGCGCCCTGCCCGAACCCGGCATGATCGGCGTGTTCGACCGCTCCCACTACGAGCAGGTCCTCGTGGTCCGCGTCGACGACCTGGAGCCGGAGGCCACCTGGCGGGCCCACTACGACGAGATCAACGAGTTCGAGGCCGGGCTCGCCGCCGGCGGCACCGCGATCGTCAAGGTGATGCTGACCATCTCCCCCGACGAACAGCTCGAACGCCTCACCTCCCGGCTCGACCGTCCGGACAAGCACTGGAAGTTCGACCCCGCCGACCTGCGCGCCCGCGCACAGTGGGCGCAGTACGAGGCCGCGTACACCGAGATGCTGGACCGCACGAGCACGACGGCGGCACCCTGGTACGTGGTCCCCGCCGACCGCAAGTGGTACGCACGCCTCGCCGTCGGCCAGCTCCTGCTGCAGACGCTGCGCGGCATGGACCTGACGTGGCCGCCCGCCGACTTCGACGTGGCCGAGCAGCGCCGCCGGCTGACGGGCGGCTGAMTAPRWTADPAQALRWTPGTRLDAVDPRSTPGFDGGKGDGRELLGDHRDELSDLQERLFAHGRTGGDRTVLLVLQGMDTAGKGGVVRHVVGMVDPQGVRCRGFGRPTAEERARGYLWRIRRALPEPGMIGVFDRSHYEQVLVVRVDDLEPEATWRAHYDEINEFEAGLAAGGTAIVKVMLTISPDEQLERLTSRLDRPDKHWKFDPADLRARAQWAQYEAAYTEMLDRTSTTAAPWYVVPADRKWYARLAVGQLLLQTLRGMDLTWPPADFDVAEQRRRLTGGPGPT0002695_541DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002695-ppk2-K23753NANA
AK018_009311080zapE_1Cell division protein ZapEATGCCCGTGACAGCCGTGCAGTCCCAGGACCCGACCGCGACGACCTCCCTGGCCGCGGTGCGCCCCGCCGTCACCCCCGAGCGCCTGCTGGCGGACCTGGTCCCGCCGCGGCACTTCGCCGAGGCGCGGTTCGCGTCCTACCGGGCGAACCCGGAGCACCCGAGCCAGGCCGCCACGCTGGAACGGCTGCAGGAGGTCGCCGCCGAGATCGCCGCCCCCGCGCCGTCCGGCCTGCGGGCGCTGCTCGGTCGACGGCGCACGCCGCCGGCCGTGTACATGGACGGCGGGTTCGGCGTGGGCAAGACGCACCTGCTGACGTCGCTGGCGCACGCCGTCACCGAGGCGTGCGGGCCGGGCACCGCCGCCTACGGCACGTTCGTGGAGTACACGAACCTGGTGGGCGCCCTGGGATTCCTGCCCACCGTCGAGGCGCTGTCGGCCAAGAGGCTGGTGTGCATCGACGAGTTCGAGCTCGACGACCCGGGCGACACCGTGCTGATGTCGCGTCTGCTGCGCGAGCTCGCCGACCGCGGGGTGGCCCTGGCCGCGACGTCCAACACGTTGCCGGACGCCCTGGGCGAGGGCCGCTTCGCCGCCGAGGAGTTCCTGCGCGAGATCCAGGCGCTGGCCGACCGGTTCGAGGTGCTGCGCGTCGACGGCGAGGACTACCGGCACCGCGCGGTCGTGACCGACGCGGCCCCGCTGGCCGCGGACGAGGTCCGTGCGGCCGTGGCGGACCGGCCGGGCGCCGTCCTGGACGACTTCGCCGACCTGCTGGCCCACCTGGCCACCGTGCACCCGTCGCGCTACGGCGCGCTCCTGGACGGCGTCGAGCTGGTCGGACTGACGGGGGTGCGTCCGGTGACGCGCCAGGAGGTGGCCCTGCGGGTGGTCGTCCTGGTCGACCGCCTGTACGACCGGGACGTGCCGGTGCTCCTTTCCGGCGTCGACGGCACGACGCACCGGCAGCTCTTCTCCGACGAGATGCTGCGCGGCGGGTACCGCAAGAAGTACTACCGGGCCCTGTCGCGCCTGGGTGCGCTGGCCGAGGAGGGTCGCCGCCTGGCGGACCCCGCCTGAMPVTAVQSQDPTATTSLAAVRPAVTPERLLADLVPPRHFAEARFASYRANPEHPSQAATLERLQEVAAEIAAPAPSGLRALLGRRRTPPAVYMDGGFGVGKTHLLTSLAHAVTEACGPGTAAYGTFVEYTNLVGALGFLPTVEALSAKRLVCIDEFELDDPGDTVLMSRLLRELADRGVALAATSNTLPDALGEGRFAAEEFLREIQALADRFEVLRVDGEDYRHRAVVTDAAPLAADEVRAAVADRPGAVLDDFADLLAHLATVHPSRYGALLDGVELVGLTGVRPVTRQEVALRVVVLVDRLYDRDVPVLLSGVDGTTHRQLFSDEMLRGGYRKKYYRALSRLGALAEEGRRLADPANANANANANA
AK018_00932795hypothetical proteinGTGAGTTCCGACACGCCGGCCCTGCGCCTGCTCGCCCCCTCGACCGCCGACCTGCCGCCCGACCCGGCCGAGGAGACCCTGGCCGCGCTCTACCGCCCCGCCGCGGCGCGCCACCTGCGCGTGAACATGGTCGCCACCGCCGACGGCGGCGCCTGGGGCGCGGACGGACGGTCCGGGACCATCAACGACGCCACCGACGCCCGGGTGTTCCGCGTGCTGCGCGCCCTGGCCGACGTCGTGCTGGTCGGGGCGGGTACGGCACGCGACGAGGGCTACACGGCGCTGGAGAGGCCGGCCGGACTCGAGCACCTCGCGGCCTCGCCGCTCGAGCTGGCCCTGGTGACCCGCTCCGGCGAGGTGCCCGACCGGGTGCGCCACGGCGCACGGGCCCCGTGGGTCGTGACCGGGCGGGCCGGCGGCGACCGGGCACGCTCCGCCGTCGGCGACGACCGCGTCCTGGTCTGCCCGGCAGGAGCCGACGGCGTGGACCTGCGCACCGCCGTCGACCGGCTGGCAGAGCTCGGCCTGCGGCACGTCCTGAGCGAGGGCGGGCCGCACCTGCTCGGGGCGCTGCTCGCGGCCGGCGCCGTCGACGAGCTCTGCGTCACCACCACACCCGTCGTGGTCGGTCCCGGACCCGGCAGGATCGTGGCCGGTGACGCGGGACCGGGAACGTCCGCCGCCCGGTCCGACGCCCGCCTGGGGCACCTCCTGCTCGGCCCCGCCGGCACCCTGGTGGCCCGGTGGGAGCTGCGCGGCGGGCCCGGCTCGCAGCACGACGCGCCCGTGCCGTAGMSSDTPALRLLAPSTADLPPDPAEETLAALYRPAAARHLRVNMVATADGGAWGADGRSGTINDATDARVFRVLRALADVVLVGAGTARDEGYTALERPAGLEHLAASPLELALVTRSGEVPDRVRHGARAPWVVTGRAGGDRARSAVGDDRVLVCPAGADGVDLRTAVDRLAELGLRHVLSEGGPHLLGALLAAGAVDELCVTTTPVVVGPGPGRIVAGDAGPGTSAARSDARLGHLLLGPAGTLVARWELRGGPGSQHDAPVPNANANANANA
AK018_00933495hypothetical proteinATGGCTGCAGACTCCTGGACCGTCGTCGTCCTGACCGAGGACGCCCTGACGTCCGCCGACGTCGACCACATCACCTCGCTGCACCCGGACGAGGAGATCGTCTACCGCGTCCTGGTCCCGGCGGACACCGAGCACAACGTGGTCGCCTCCGTGCTCGACCACCTCGGGATGCTCCAGCTCCGCGAGGCGTGGGACGACCTCGTCGGCAAGGAGCCCACCCCCGAGCAGGCCTCGCAGACCGCCTCCGAGCAGGTCGTGACCTCGGTCGAGCTGCTGCGCGCCACCGGGGCCGCCGCGAGCGGCGAGGTGACGCAGGACGACCCGCTGCCGGCGCTGCAGGCCGCCGTGGCCTCCGGCGGCGACGAGATCGTCGTCGTCACCTACCCGCACGCGGTCGAGGACACGTTCCACACCGACTGGGCCTCGCGCGCCCGCGAGGAGCTCCAGGTCCCGGTGCTGCACCTGTACGCGGGCACCAGCGCCCTCGGCGACTGAMAADSWTVVVLTEDALTSADVDHITSLHPDEEIVYRVLVPADTEHNVVASVLDHLGMLQLREAWDDLVGKEPTPEQASQTASEQVVTSVELLRATGAAASGEVTQDDPLPALQAAVASGGDEIVVVTYPHAVEDTFHTDWASRAREELQVPVLHLYAGTSALGDNANANANANA
AK018_00934747Aspartate racemaseGTGAGCGACCCGGTCGCGCCGGCGGGCCGGAGCGAGGGCCCGACGCCGCCGGTCGGGGTGATCGGCGGCGTCGGCCCCCTGGCGACGGCGTACTTCCTGCAGCGGGTCGTCCAGCTCACCGACGCCGAGCGCGACCAGGAGCACGTGGACCTGATCGTGCTCAACCACGCGACGATCCCCGACCGGACCGAGTTCGTGCTGGGCCGGTCCACCGACGACCCCGGCCCGGTGCTCGCCCGGGACGCACGCCGGCTCGAGGCGTTCGGGGTGCGGTTCCTGGTGATGCCGTGCAACACGGCGCACTACTTCACCCAGCAGGTGCTCGACGCGATCACGGTGCCGTTCCTGTCGATCGTCGACGTGACGGTCTCGGCGGCGCGTCGCCGGGCGCCCGACGCGCGGGCCGTGGGCCTGCTCGCCACCGCCGGGACGGTGGCATCGCGGGTCTACCACGAGGCGTTCGCCCGGCAGGGGCTCGACGTCGTCACGCCTGACGCGGACGACCAGCGTCTGGTCAACGAGGTCATCTACGACCAGGTCAAGGCCGGCCGGCCCTCCGACCCCGACACGTTGCGGGCGGTGGCGGGCCGACTCGGGGACCGGGGTGCCGGCGTCGTCGTGCTGGGCTGCACGGAGCTGTCCGTCGCGGCCGTCGACCACGACCTGCTGGACGAGCCACCGTTCTGCGACTCGATGGACGAGCTGGTGCGCGCCACGATCGTGCGCGCCGGGCACCGGGTGCGCTGAMSDPVAPAGRSEGPTPPVGVIGGVGPLATAYFLQRVVQLTDAERDQEHVDLIVLNHATIPDRTEFVLGRSTDDPGPVLARDARRLEAFGVRFLVMPCNTAHYFTQQVLDAITVPFLSIVDVTVSAARRRAPDARAVGLLATAGTVASRVYHEAFARQGLDVVTPDADDQRLVNEVIYDQVKAGRPSDPDTLRAVAGRLGDRGAGVVVLGCTELSVAAVDHDLLDEPPFCDSMDELVRATIVRAGHRVRNANANANANA
AK018_009351281D-aspartate ligaseATGAGGCGTCTGCAACCCGTCGTCCTGGGCGGCGACATCGGGGCCTACTCCCTGGCGCGGTCCTTCCACGAGGCGTACGGCGTGCGGCCCGTGGTCGTGTCCGGCATGTCCACGGGGCTGGTGCGGCACTCGCGCATCCTCACCCACGTCGTCGAGCCGCGCATCGACGACCCCGACGCGATCGTGGCGCGCCTGCGTGCCGTCGCCGCCGAGCACACCGCCGCCGACCTCGTCGTGGTCGGGTCCGCCGACTGGCTCGTGCGCACGCTGGTGGAGCAGCGCGACCGGATCGAGGACCTCTACACGGTCCCGTACGTCGGCGAGGAGCTGCTGCTGCGGCTCACGGACAAGGAGGGTTTCGGCGAGCTGTGCGCCGAGCTCGGTATCGCCCACCCCACCACCGTCGTCCACGACGTGGCGGCCGGCGGCGAGCCCGACACGTCCGGCCTGACGTTCCCCGTCATCGCCAAGGCGGCGAGCACCGCGGCCTACCACGACGTCGAGTTCGCCGGGAAGAAGAAGGTCTTCCTGGTCGACACGCGCGACGACCTGGTGGACCTGATGGGGCGCGTGCACGCCGCGGGCTACACCGGGTCGTTCGTGATCCAGGACTACATCCCGGGCGACGACTCCGGGATGCGGATCCTGACCTGCTACTCGGACGCCGACGGCAAGGTGCGGTTCTCCGCGTTCGGGCACGTGCTGCTCGAGGAGCACACCCCTGGGGCGCTCGGGAACCCGGCCGGCATCATCACCCAGCTCGAGCACGACGTCGTCGAGCAGGCGACCCGCTTGCTGGAGCACGTCGGGTGGACGGGGTTCGCGAACTTCGACCTCAAGTACGACCCGCGCGACGGTCGGTACGTGTTCTTCGAGCTGAACCCGCGTCTGGGACGGTCCAACTTCTATATCGCGGCGGCCGGCGCCAACCCGGTGCGGTTCTACGTCCACGAGCACCTGCGCGGGCTCGACCCCGACGCGCGGTCGGTGCTCGGGCCCGACGTCCCGCTCACCCCTACCGGTGAGCTGGACACGAGGCACCTGTACACGGTGCTGCCCGGTGCGCTGCTGCGGCGCTACGTGCTCGACGACGCCGTGCGTGCCGAGGCGCGCCGGCTGGCCCGTCGTGGCCGGTCCACCAACCCGCTGTGGTACCGCGCCGAGACGGACCCGCGGCGGATCGCCTACCTGTGCGTGGCCCAGCTCAACCAGTGGCGCAAGTACGCGCGGCACTACCCGGTGGCCGAGGCGCGGCGCCTCGCCTGGCAGGGCGCGCGGTGAMRRLQPVVLGGDIGAYSLARSFHEAYGVRPVVVSGMSTGLVRHSRILTHVVEPRIDDPDAIVARLRAVAAEHTAADLVVVGSADWLVRTLVEQRDRIEDLYTVPYVGEELLLRLTDKEGFGELCAELGIAHPTTVVHDVAAGGEPDTSGLTFPVIAKAASTAAYHDVEFAGKKKVFLVDTRDDLVDLMGRVHAAGYTGSFVIQDYIPGDDSGMRILTCYSDADGKVRFSAFGHVLLEEHTPGALGNPAGIITQLEHDVVEQATRLLEHVGWTGFANFDLKYDPRDGRYVFFELNPRLGRSNFYIAAAGANPVRFYVHEHLRGLDPDARSVLGPDVPLTPTGELDTRHLYTVLPGALLRRYVLDDAVRAEARRLARRGRSTNPLWYRAETDPRRIAYLCVAQLNQWRKYARHYPVAEARRLAWQGARNANANANANA
AK018_009361332D-aspartate ligaseGTGACCACGCCCCACACGGGACCCGGGGCCGAGGGCCCCGGGTTCCACCCCGTGATCGTCGGGTCGGACATCGGCGTGTACGCGCTGACCCGGTCCTTCCACGAGGCCTACGGGCTGCGCACCACCGTCGTGGCGTTCGCCGAGCCCGGCCCGATCGCGCACTCGCAGCTCATCGACGCGGTGCTCTCGGGCACCGCCCCGGACCAGATCGTCGCGACGCTGCAGCGGGTCGCCGCCGGGCGCCGTGCGGCCGGGCACGGCGAGCCGCTGCTGCTGCAGTCCAACATGGACTGGGTGGTGCGGGTGCTGGTGCACCACCGCGGCGAGCTCGAGGCCGCCGGGTACGTGCTGCCCTACGCCGGCACCGAGCTCATCGACCGGATCTGCGACAAGGCGGAGTTCTCCGCCGTGTGCGCCGAGCTGGGCATCCCGACGCCCGCGACCGTGATCCAGGACTTCGCGGACGCGGCGGACGGCGACTGGACGCCCGCGCCGGTCGACTTCGACTACCCGGTCATCGCCAAGCCCGCCTCCAGCGCGGACTACCACGACGTGACGTTCGCCGGGAAGAAGAAGATCTACGAGATCGCCTCGCCCGAGGAGCTCGCGCGCCTGTGGGACTCCCTGCGCGGCGCCGGGTTCCGCGGGCGGTTCCTGGTCCAGGACATGATCCCCGGCGACGACACGCAGATGCGGTCGGTGACTACCTACTCGGACACCTCCGGGCGGGTCACGCTGCGCTGCTCGGCCCACGTGCTGCTCGAGGAGCGCACGCCGGCGGCCCGCGGCAACCCGTCGGCGATGATCGTCGAGCCGGTCGAGGAGATCCTCGACGCCGCGCAGCGGCTGTGCGAGCACGTCGGGTGGCACGGGTTCGCGAACTTCGACGTCAAGCTCGACCCGCGCGACGGCGTGTTCAAGTTCTTCGAGCAGAACCCCCGCATCGGGCGCAACAACTATTACCTGACCGCGGGCGGGCAGAACCCGACGGAGGTGCTCGTCGACGACGTGATCCACGGCAAGCGGCGCGACCTGGTCACCGCGCGCCGCGAGGTGCTGTACTGCGTCGTCCCGCACCGGCTCCTGCGCCACTACGTCCTCGACGACGGCCTGCGGGCCCGGGTCGTGGGCCTGATGCGTACCGGCCGCACCGTGCACCCGCTGCGTTACGCGGCCGACGCCTCGCCCCGCCGTCGTCTGTACGTGCTGACGGCGCTGGTCAACCACGTGCGCAAGTACCGGCGCTACTACCCGACGGCGGCGCTGCGGGCGAACTTCGAGGCCGCCCGCGCCGCGGCGACCCGCTCGACCGCGGGGAAGGGGGAACGATGAMTTPHTGPGAEGPGFHPVIVGSDIGVYALTRSFHEAYGLRTTVVAFAEPGPIAHSQLIDAVLSGTAPDQIVATLQRVAAGRRAAGHGEPLLLQSNMDWVVRVLVHHRGELEAAGYVLPYAGTELIDRICDKAEFSAVCAELGIPTPATVIQDFADAADGDWTPAPVDFDYPVIAKPASSADYHDVTFAGKKKIYEIASPEELARLWDSLRGAGFRGRFLVQDMIPGDDTQMRSVTTYSDTSGRVTLRCSAHVLLEERTPAARGNPSAMIVEPVEEILDAAQRLCEHVGWHGFANFDVKLDPRDGVFKFFEQNPRIGRNNYYLTAGGQNPTEVLVDDVIHGKRRDLVTARREVLYCVVPHRLLRHYVLDDGLRARVVGLMRTGRTVHPLRYAADASPRRRLYVLTALVNHVRKYRRYYPTAALRANFEAARAAATRSTAGKGERNANANANANA
AK018_009371437gndA_1COG03626-phosphogluconate dehydrogenase, NADP(+)-dependent, decarboxylatingATGACAGCACGTGCCCAGATCGGCGTCACCGGCCTTGCGGTGATGGGCCGCAACCTCGCGCGCAACTTCGCGCGCCACGGCTACACCGTGGCGGTCCACAACCGCAGCTACGGCAAGACGCAGTCCCTGATCGAGGAGGCGGGCGACGAGGGCGACTTCGTGCCGTCGGAGTCGATGGCGGACTTCGTGGCCTCGCTGGAGCGGCCCCGCAAGGTCGTCGTCATGGTCAAGGCGGGCGCCGCGACCGACGCGGTCATCGACGAGCTGCTGCCGCTGCTCGAGGACGGCGACATCGTCGTCGACGCGGGCAACGCGCACTTCCCCGACACGATCCGGCGCGAGGAGGCCCTGCGCGAGCGCGGCCTGCACTTCGTCGGTACCGGCGTCTCCGGCGGCGAGGAGGGCGCGCTGCTCGGTCCGTCGATCATGCCCGGCGGCACCCGCGAGTCCTACGAGTCGCTGGGCCCGATCCTCGAGGCGATCTCCGCCAAGGTGGACGGCACGCCCTGCTGCACCTACGTGGGCCCTGGCGGCGCCGGCCACTTCGTCAAGATGGTGCACAACGGCATCGAGTACGCCGACATGCAGCTCATCGCCGAGGCCTACGACCTGCTCAAGCGCGGTCTGGGTGCCACGGCGGCGGAGATCGGGCAGATCTTCGCCGAGTGGAACACCGGCGACCTCGAGTCGTTCCTCATCGAGATCACCGCGGACGTGCTCCAGCACGTCGACGCCGAGACCGGGTCGGCGTTCGTCGACATCGTCCTGGACCAGGCCGAGCAGAAGGGCACCGGCCGCTGGACCGTGCAGAACGGCCTGGACCTGGGCGTGCCGATCACCGGCATCGCCGAGGCCACGTTCGCCCGGGCGCTCTCCGGCGGCGTGCCCCAGCGCGAGGCCGCCCGCGGCACGCTGCCCGCGCACGCTACCGACCTGCAGGTCACCGACCGGGCCGCGTTCATCGAGGACGTGCGCCAGGCTCTGTACGCCTCCAAGGTGGTCGCCTACTCCCAGGGCTTCGACCAGATCGCCGCGGCGTCGGCCGAGCACGGGTGGGACGTGGACCGGGGCGCGATGGCCCGCATCTGGCGCGGCGGCTGCATCATCCGCGCGCGGTTCCTCAACCGCATCACCGAGGCCTACGAGCGCGACCAGGAGCTGCCGCTGCTGCTGGCCGACGAGTACTTCACCGACGCCGTCGGGAACGGCCTGCCGGCCTGGCGCCGCGTCGTCGCGCAGGCGGCCGCCGCCGGCATCCCGGCCCCGGCGTTCTCCTCGTCGCTGGCCTACTACGACGGCGTGCGGGCCGACCGCCTGCCCGCCGCGCTGATCCAGGCGCAGCGCGACTTCTTCGGTGCGCACACCTACCGGCGCACCGACCGCGAGGGCACCTTCCACACCCTGTGGTCCGGCGACCGCACCGAGCAGGAGGCCTGAMTARAQIGVTGLAVMGRNLARNFARHGYTVAVHNRSYGKTQSLIEEAGDEGDFVPSESMADFVASLERPRKVVVMVKAGAATDAVIDELLPLLEDGDIVVDAGNAHFPDTIRREEALRERGLHFVGTGVSGGEEGALLGPSIMPGGTRESYESLGPILEAISAKVDGTPCCTYVGPGGAGHFVKMVHNGIEYADMQLIAEAYDLLKRGLGATAAEIGQIFAEWNTGDLESFLIEITADVLQHVDAETGSAFVDIVLDQAEQKGTGRWTVQNGLDLGVPITGIAEATFARALSGGVPQREAARGTLPAHATDLQVTDRAAFIEDVRQALYASKVVAYSQGFDQIAAASAEHGWDVDRGAMARIWRGGCIIRARFLNRITEAYERDQELPLLLADEYFTDAVGNGLPAWRRVVAQAAAAGIPAPAFSSSLAYYDGVRADRLPAALIQAQRDFFGAHTYRRTDREGTFHTLWSGDRTEQEAPGPT0017385_1887DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033NANA
AK018_00938582hypothetical proteinGTGACGGGCGAGGAGACCGAGGTACCGCAGCGGTTCGCGGCCGCGCTGGGGTCGCTGCGCGGGCGCCGGACCCGACCGGAGGTGCGGCTCGTCGAGATCCCGGGCCCGCGGCGCGTGGCGCCGTTCTCGCTCGCGCTGGAGGGCGAGGTGGTCGCGGACGCCGAGGAGATCGCCACCGGCCGGTTCGTGGTGCTGCACGACCCGGCGGGCCAGGACACCTGGCGCGGGGACTTCCGGGTGGTGACGCTGGTGCGCGCCCAGCTCGAGGCCGAGCTCGCGGCCGACGAGATGCTCGGGGACGTCGCCTGGACCTGGGTGACGGAAAACCTGGAGCGCTCCGGGGTCGGCGCGGTGGCGGCGGGCGGCACGGTCACGCGCGTGCTGTCGTCGAGCTACGGCGCCCTGGCGGGCACGCCGGACGCGGTGGACCTGGAGATCCGGGCCTCGTGGACGCCGACGAGCACGGACCTGGGTGCGCACCTGGAGGTGTGGGCGGACCTGATGTCGACGGTGGGCGGCCTGCCGCCGCTGCCCGACGGCGTCACGGCGCTGGACGTACGACGCCGTACGGTGGGCCCATGAMTGEETEVPQRFAAALGSLRGRRTRPEVRLVEIPGPRRVAPFSLALEGEVVADAEEIATGRFVVLHDPAGQDTWRGDFRVVTLVRAQLEAELAADEMLGDVAWTWVTENLERSGVGAVAAGGTVTRVLSSSYGALAGTPDAVDLEIRASWTPTSTDLGAHLEVWADLMSTVGGLPPLPDGVTALDVRRRTVGPNANANANANA
AK018_009391227rnd_1COG0349Ribonuclease DATGAGCTCCGGCGTACCTGCGACCACGACCGACGTCGTCCCCCTGTCCGAGCCGGCCGAGGGTGTCGGCCGGGTGATCACGACGGCGGCCGCGCTGGCTGACGTGGTCCAGGCGTTCGGGGCGGGGTCCGGTCCGGTGGCCGCGGACGCGGAGCGTGCGTCGGGGTACCGGTACGGGCAGGCCACCTACCTGGTCCAGCTGCGCCGGGCCGGTGCCGGCACGGCGCTCGTGGACCCGACGGAGCTGCCGGACCTGTCCGCGCTGGGCACCGCCGTCGGCGACGCGGAGTGGGTGCTGCACGCCGCCTCGCAGGACCTGCCGGGACTGGCCGAGCACGGCCTGCGACCGGCGTCCCTGTTCGACACCGAGCTGGCGGCGCGGCTGCTGGGGATGCCGCGGGTGGGTCTGGCGGCGGTGGTCGCCGACACGCTGGGGCTCGGCCTGGCCAAGGAGCACTCGGCGGTGGACTGGTCGACGCGGCCGCTGCCCCAGGACTGGTTGCGGTACGCCGCCCTCGACGTCGAGGTGCTGGTCGAGGTGCGCGACGTGCTGGCCGAGCGGCTGGCCGAGGTGGGCAAGTCGGAGTGGGCGGCGCAGGAGTTCGAGCACGTGCGCACCCTGCCGCCGCCGGCGCCGCGACCCGAGCCGTGGCGCCGGGTCTCGGGCACGCACACGGTCAAGGGGCGGCGGCGCCTGGCCGTCGTGCGCAGCCTGTGGCAGGCGCGCGAGGAGAACGCCCGCCGTCGGGACGTCTCGCCCGGTCGGGTGCTGCCGGACCGCGCGATCGTGGCGGCGGCGAAGGCGCTGCCGACGTCGGTGCCGCAGCTGGTGGCGCTGCCGGAGTTCGCGACCAAGGGGGCACGACGGCGGGCCCCGGCGTGGCAGGAGGCGATCGACCGGGCGCTGGCCCTGGACGAGGCGGACCTGCCGTCCACGCGCGGACCGCGGACCGACGGGCCGCCGCAGCCGCGCACCTGGGCGGACCGAGACCCGGTCGCAGCACGGCGGCTGGCCGGGGCTCGCGACGTGGTGTCCGCGTTGAGCGAGGAGTTGTCGGTCCCCGCCGAGAACCTGCTGCAGCCCGACGCGCTGCGCCGGGTGTGCTGGACGCCGCCGGAGCCGGCGAACGCCGAGGAGATCGGCGAGTTCCTGCGGGGCCGGGCGGCACGCGAGTGGCAGATCGAGCTGCTCGCCCCCCGGCTGGCCACCGTCTTCGCCGCGGCCTGAMSSGVPATTTDVVPLSEPAEGVGRVITTAAALADVVQAFGAGSGPVAADAERASGYRYGQATYLVQLRRAGAGTALVDPTELPDLSALGTAVGDAEWVLHAASQDLPGLAEHGLRPASLFDTELAARLLGMPRVGLAAVVADTLGLGLAKEHSAVDWSTRPLPQDWLRYAALDVEVLVEVRDVLAERLAEVGKSEWAAQEFEHVRTLPPPAPRPEPWRRVSGTHTVKGRRRLAVVRSLWQAREENARRRDVSPGRVLPDRAIVAAAKALPTSVPQLVALPEFATKGARRRAPAWQEAIDRALALDEADLPSTRGPRTDGPPQPRTWADRDPVAARRLAGARDVVSALSEELSVPAENLLQPDALRRVCWTPPEPANAEEIGEFLRGRAAREWQIELLAPRLATVFAAANANANANANA
AK018_009401272paaJCOG01833-oxoadipyl-CoA/3-oxo-5,6-dehydrosuberyl-CoA thiolaseATGACCGAGGCCACCCAGGCCCCCGGCACCACCCGCGACCCGGCGCGCCCAGCACTGCGCGACGTCGTCTTCGTCGAGGGTGTGCGCACCCCCTTCGGCAAGGCGAAGGCCGACGGCCTCCTCGCCGAGACCCGCGCCGACGACCTCGTCGTCAAGGCGCTGCGCGAGCTGCTGCGCCGCCACCCCGAACTGCCCGCCGACCGCATCGACGAGGTCGCCATCGCCGCCACCACCCAGCAGGGCGACCAGGGCCTCACCCTCGGCCGCACCGCCGCGCTGCTGGCCGGGCTCCCCCACACGGTCCCCGGGTACGCCATCGACCGCATGTGCGCCGGCGCCATGACCGCCGTGACGAGCACGGCCTCGAGCATCGCCGTGGGCGCCGCCGACGTCGTCGTCGCCGGCGGCGTCGAGCACATGGGGCGCCACCCCATGGGCCTCGACGCCGACCCCAACCCGCGCTTCCTGTCCGAGAAGCTCGTCGACCCCGAGGCGCTCAACATGGGCGTCACCGCCGAGAACCTCCACGACAAGTTCCCGCACCTGACCAAGGAGCGCGCGGACGCCTACGCCGTGGACACCCAGTCCAAGTACGCCAAGGCGCTCGCCAACGGCGACATCGGCCCGGAGATCGTGCCCGTCGCCGTCCGCTCCGCCGAGAAGGGCTGGGGCCTGGCCACCGCCGACGAGCTGCCCCGCCCCGGCACCACCGTCGAGGGCATCGCCGACCTCAAGACGCCGTTCCGCCCCGGCGGCCGCGTCACCGCCGGCAACGCCTCGCCGCTGACCGACGGCGCCACCGTCTCGCTGCTCGCGAGCGGCGAGACCGCCGAGGAGCTCGGGCTGCCCGCCGCCATGCGGATGGTGTCCTACGCCTTCGCCGGCGTCCCGGCCGAGATCATGGGCTACGGCCCGGTTCCGGCCACCGACAAGGCGCTCGCCAAGGCCGGCCTGAGCATCGACGACATCGGCCTGTTCGAGATCAACGAGGCCTTCGCCGTCCAGGTCCTCAGCTTCCTGGACCACTACGGCATCGCCGACGACGACCCGCGCGTCAACTCCTACGGCGGCGCCATCGCCGTCGGTCACCCGCTGGCCAGCTCCGGCGTGCGTCTGATGACCCAGCTCGCGCGCCAGTTCGCCCAGCACCCCGAGGTCCGCTACGGCATCACCACCATGTGCGTCGGACTCGGCCAGGGCGGCACCGTCATCTGGGAGAACCCGCACCACGCCGACTACTCGGGCCACGTCCCGTCGACCCAGGAGGGCTGAMTEATQAPGTTRDPARPALRDVVFVEGVRTPFGKAKADGLLAETRADDLVVKALRELLRRHPELPADRIDEVAIAATTQQGDQGLTLGRTAALLAGLPHTVPGYAIDRMCAGAMTAVTSTASSIAVGAADVVVAGGVEHMGRHPMGLDADPNPRFLSEKLVDPEALNMGVTAENLHDKFPHLTKERADAYAVDTQSKYAKALANGDIGPEIVPVAVRSAEKGWGLATADELPRPGTTVEGIADLKTPFRPGGRVTAGNASPLTDGATVSLLASGETAEELGLPAAMRMVSYAFAGVPAEIMGYGPVPATDKALAKAGLSIDDIGLFEINEAFAVQVLSFLDHYGIADDDPRVNSYGGAIAVGHPLASSGVRLMTQLARQFAQHPEVRYGITTMCVGLGQGGTVIWENPHHADYSGHVPSTQEGPGPT0001565_590DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
AK018_009412145fadJ_1COG1024Fatty acid oxidation complex subunit alphaATGACGGAGACCACCGCACAGCCGCGTGCCGAACGCGTCACCCACTCCCTCGTGCGCGACGTCGAGCTCCCCGGCGGCCAGGGCACCCTGGCGCTCGTCACCCTCGACAACGGCCTCGACCACACCAAGCCCAGCACCCTCGGGCCCGAGGGCCTCGCCGAGCTCACCGCCGCGCTGCAGACCCTGCAGCGGCGCGCCGCCGCCGGCGAGATCGTCGCCGTGGGCGTCACCGGCAAGCCGTACTTCCTCGCCGCCGGCGCCGACCTCCTCGGCGTCAGCGCCGTCACCTCCCGGGAGCAGGCCCTCGAGCTGGGCCGGGCCGGCCACGCCGCCTACGAGCTGCTGCACACCATGGGCGTGCCGACGTTTGCGTTCGTCAACGGCCTCGCGCTCGGCGGCGGCCTCGAGGTGGCGCTCAACTGCGACTACCGCACCGTCGCCTCCGACGCCGCGGCCCTCGGGCTGCCGGAGACCGGCCTCGGCCTCGTGCCCGGCTGGGGCGGCGCCTACCTCGTGCCGCGCCTCGTCGGCATCGAGAAGGCCGTGGACGTCATCCTGACGCGCCCCGCCGCGAACAAGCCGTTCAAGCCCGCCGAGGCCCTCGAGATCGGTCTCGTCGACGAGCTGTTCGAGGCCGCCGACTTCCTCGAGCGCTCCATCGACTGGGCCGCCCGGGTCCTTGCGGGCGAGGTGACCCCGGCGCGGCGCGAGCTCGACCCGCCCCAGGTGTGGGACGCCGTCGTGCAGGCCACCCGCGAGCGCCTGGACGCCGTCATCAACGCCTCGCGGCCCGCGCCGTACCGGGCGCTGGACCTGCTGGCCGGTGCGCGCGACGCCTCCCGCGAGGAGGCCTTCGCGGCCGAGGACGAGGCGCTGGCCGACCTGATCATGACCGACGAGATGCGCTCCAGCGTGTACGCGTTCGGCCTGACCTCGTCGGGCAAGAAGCCGAAGGGCGCCCCGGACAGGTCGCTGGCGAAGCCGGTCACCCGGGTCGGCATCGTCGGTGCCGGGCTCATGGCCGCCCAGATCGCCCTGCTCGTCTCGCAGCGGCTCGGCGTGCCGGTCGTCATGCGCGACCTGGACACCGAGCGCGTCGAGAAGGGGCTCGGCTACGTCCGGTCCACCGTCGAGAAGCTCGTCGGCCGCGGCCGTATGAAGCCCGAGGTGGGCGACCGCATCGTCGCGAGCATCTCCGGCACCACCGAGATCGGCGAGTTCGCCTCCTGCGACGTCGTCGTCGAGGCCGTCACCGAGGTGATGGGCCTGAAGAAGAAGGTGTTCGCCGAGCTCGAGGACATCGTGAGCTCCGACACCGTCCTGGCGACGAACACCTCGGCGCTGTCGGTCACGGAGATGGCCTCCGACCTGCGCCACCCCGAGCGCGTGGTCGGCATCCACTTCTTCAACCCGGTCGCCCAGATGCCGCTGGTCGAGGTCGTCAACGCCGAGCGCACCTCGGACGAGGCGCTCGCCACGGCGTTCGCGATCACGAAGAAGCTGCGCAAGACGGCCGTGCTCGTCGCGGACCGTCCGGGCTTCGTGGTCAACCGTCTGCTCGTGCTCGTCATGGGCAAGGTCGTCGAGGCCGTCGAGAACGGCACCTCCGTCGAGGTCGCCGACACCGCGCTGTCGCCCCTCGGGTTCCCGATGCCCACCTTCGAGCTGTTCGACCTGGTGGGCCCCGCCGTCGGCCTCCACGTGCTGACCTCGCTGCGCGAGGACCTGGGCGAGCGGTTCCCCCGCTCCCCCGGCCTGGAGAAGCTCGTCGCCGACGGCACCCGCGTGGTGGCCGACGCGCCGGGCCGCGGGCTGCCGAAGCCCGTCGACCCGGCGATCCAGACGGTGTTCGGCGAGGCGCTGCCTGCCGGGTCCGAGGGCCGCGCCGGCACGCCGGTGCTCGACGCCGCCGGCGTCCTGGACTCGGTGCTGACGGCGCTCACCGTCGAGATCGGCCACATGCTCGACGAGCAGGTCGTGGCCGACCCGAGCCAGATCGACCTGTGCATGATCCTGGGTGCCGGGTGGGGCTTCCACACCGGCGGGATCACGCCGTACCTGGACCGCACCGGGTACAGCGAGCAGGTGCTGGGCCGTCGGCTGCTGCCCGACGGCGTCGCGAACGTCCCCGGGGGCTCCGCCTGAMTETTAQPRAERVTHSLVRDVELPGGQGTLALVTLDNGLDHTKPSTLGPEGLAELTAALQTLQRRAAAGEIVAVGVTGKPYFLAAGADLLGVSAVTSREQALELGRAGHAAYELLHTMGVPTFAFVNGLALGGGLEVALNCDYRTVASDAAALGLPETGLGLVPGWGGAYLVPRLVGIEKAVDVILTRPAANKPFKPAEALEIGLVDELFEAADFLERSIDWAARVLAGEVTPARRELDPPQVWDAVVQATRERLDAVINASRPAPYRALDLLAGARDASREEAFAAEDEALADLIMTDEMRSSVYAFGLTSSGKKPKGAPDRSLAKPVTRVGIVGAGLMAAQIALLVSQRLGVPVVMRDLDTERVEKGLGYVRSTVEKLVGRGRMKPEVGDRIVASISGTTEIGEFASCDVVVEAVTEVMGLKKKVFAELEDIVSSDTVLATNTSALSVTEMASDLRHPERVVGIHFFNPVAQMPLVEVVNAERTSDEALATAFAITKKLRKTAVLVADRPGFVVNRLLVLVMGKVVEAVENGTSVEVADTALSPLGFPMPTFELFDLVGPAVGLHVLTSLREDLGERFPRSPGLEKLVADGTRVVADAPGRGLPKPVDPAIQTVFGEALPAGSEGRAGTPVLDAAGVLDSVLTALTVEIGHMLDEQVVADPSQIDLCMILGAGWGFHTGGITPYLDRTGYSEQVLGRRLLPDGVANVPGGSANANANANANA
AK018_009421503putPCOG0591High-affinity proline transporter PutPATGAGCGACCAGACCTGGACGACGATCGCGATCGTCGTGTACTTCGCCGTGATGCTGGGCATCGGCTATGCGGCCTTCCGGAGCACCGACGACCTCGACGACTACATGCTGGGTGGTCGCCGCCTGCCGCCGGCCGTCGCCGCCCTGAGCGCGGGTGCCTCCGACATGTCCGGATGGCTGCTGCTGGGGCTGCCGGGCGCGATCTACGCCGCCGGGCTCGTCGAGGCGTGGATCGCCGTCGGGCTCACCGTCGGCGCCTGGTTGAACTGGAAGTTCGTCGCTCCGCGGCTGCGTGCGTACACCGAGCTGTCGAACAACTCGATCACCGTCCCGAGCTTCTTCGAGAACCGGTTGCGGGACACCTCTCGCCTGCTCCGGGTCGCGGCCGGCCTCATCGTGCTGGTCTTCTTCACGTTCTACGTCTCGTCCGGCATGGTCGCGGGCGGGACGTTCTTCGAGAGCTCTTTCGACCTGTCCTACCTGACGGGCCTGCTGGTGGTCGGCGGGGTCACCCTGGCCTACACGCTGTTCGGAGGGTTCCTCGGCGCCACGTGGACCGACGTCGCCCAGGGACTGCTCATGCTGCTCGCGTTGATCGTGGTCCCGATCGTCGCGGTCGTGGAGATGGGTGGTTGGGGGGTCGTCCGGGAGGGCATCCTCGCCGCGGACACCTCTGCGGCAGCCGACCACCTCTCGTTCGTCGCCGGCGCCTCGGCGACCGGACTGATCTCCGCGGTCGCCTGGGGGCTGGGCTACTTCGGGCAGCCGCACATCATCGTGCGCTTCATGGCGATGCGCTCCCCGCAGGACGCGACGGCGGGCCGCCGCATCGGGATCACGTGGATGATCCTGACCGGCGTCGGGGCGGTGCTGACCGGCCTCATCGGCGTGGCCTACGTCAACGTGAACGGCCTGGCGCTCGACAACCCCGAGACGATCTTCCTCGTCCTGACGCAGGCGCTCTTCCACCCGGTGGTCGCCGGGATCGTCCTGGCAGCGGTCCTCGCGGCGATCATGTCGACCATCTCCTCCCAGCTGATCGTCTCCTCGTCGGCGCTGGTCGAGGACCTCGTCAAGATGACCACCCGGCGCGAGCTGTCCGCTCGGGCGCAGGTCATGCTCGGTCGCGGCGGTGTGCTCGTCGTCGCGCTGATCGCGATCGTCATCGCCCTGGACCGCACGACGACGATCCTCGACCTCGTGGGGTTCGCCTGGGCCGGGTTCGGCGCCGCGTTCGGTCCGATCGTGCTCCTGAGCCTGTACTGGCGTCGGCTCACCCGGTGGGGCGCCCTTGCCGGCATGGTGGCCGGTGCCGTGGTCGCGTTCACCTGGGGCCGCAGCGGCCTCGCCGACACCCTCTACGAGATCGTGCCGGGCTTCGTCACGGGCCTCGTGGTGGCCGTCGTCGTCAGCCTGCTGACCCGCGACGTGCCCGAGGAGGTGCGCGCAGAGTTCGACGAGGCGCGCCGCCGTGCTGCAGCGGCGCCGGAACCCGCTGCCTGAMSDQTWTTIAIVVYFAVMLGIGYAAFRSTDDLDDYMLGGRRLPPAVAALSAGASDMSGWLLLGLPGAIYAAGLVEAWIAVGLTVGAWLNWKFVAPRLRAYTELSNNSITVPSFFENRLRDTSRLLRVAAGLIVLVFFTFYVSSGMVAGGTFFESSFDLSYLTGLLVVGGVTLAYTLFGGFLGATWTDVAQGLLMLLALIVVPIVAVVEMGGWGVVREGILAADTSAAADHLSFVAGASATGLISAVAWGLGYFGQPHIIVRFMAMRSPQDATAGRRIGITWMILTGVGAVLTGLIGVAYVNVNGLALDNPETIFLVLTQALFHPVVAGIVLAAVLAAIMSTISSQLIVSSSALVEDLVKMTTRRELSARAQVMLGRGGVLVVALIAIVIALDRTTTILDLVGFAWAGFGAAFGPIVLLSLYWRRLTRWGALAGMVAGAVVAFTWGRSGLADTLYEIVPGFVTGLVVAVVVSLLTRDVPEEVRAEFDEARRRAAAAPEPAAPGPT0013970_565DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013970-putP|ycgO-K11928NANA
AK018_009451800choD_1COG2303Cholesterol oxidaseATGCCGGTCGTGGAGCCGTCCGAGGATCGCTCGTCGCCCCTGCCCGCTCCCGCCGACGGGGACCCGGGAGGCTCCGACGAGCCGACCGGCCTCGACGTCGTCGTCGTCGGTTCCGGCTTCGGCGGGAGCGTCGCAGCGCTGCGGCTGACGGAGAAGGGGTACCGCGTCGCCGTGCTCGAGGCGGGCCGACGCTTCGGCGACGACGAGCTCCCCCGCACCTCGTGGGACCTGCGTCGATTCCTGTGGGCACCAGCCCTCGGCTGCCTCGGGATCCAGCGGATCCACCGACTGCGGGACGTCGTGGTCCTCGCCGGCGCCGGCGTCGGTGGCGGTTCCCTCGTGTACGCCAACACGCTCTACCGCCCGACCGGCGCGTTCTGGTCGGATCCGGCGTGGGCGCCGGTCACCGACTGGGAGGCCGAGCTGGCGCCCTATTACGACCAGGCGGAACGCATGCTCGGCGTCACCGAGTACCGCGGCGGCACCCCGGCGGACGACGTCCTGCGCGATGTGGCCCGGGAGATGGGCGCGGGCTCGACGTTCCACCGCGCGCGTGTCGGCGTGCACCTCGGCGACCCGCGCACAGGACCCGGGGACCCAGCGCTGCCCACCTCGGCGGTTCCGGACCCGTACTTCGGGGGTGCCGGGCCGGCCCGGCACCGGTGCCTGCACTGCGGGGAGTGCATGACCGGCTGCCGGCACGACGCCAAGAACACCCTGGTCAAGAACTACCTCTACCTGGCCGAGGCTGCCGGGGCCCGCGTCCACGCGCTGACCACGGTGGACGCGATCGTTCCGTGCGAGGACGGCGGCTACGAGGTCCGAACGCACCGGTCGGGACGCCCGTGGTCGGGTCGCCGGACGTTCCGCGCCGCGCAGGTGGTCCTGGCTGCCGGCACGCTCGGCACGCAACGACTGCTGCACGCCATGCGTGACGACGGCGCCCTGCCCCACCTGTCGCCGCGGCTCGGTCACCTGACCCGGACCAACTCGGAGGCGCTCCTGGGCGCCGTCGCCCCACGACGTCCGGACAGCCCCGGGCCGGACTACACCCGCGGGGTGGCGATCACGTCGTCGTTCCACCCCGACGAGCACACGCATGTCGAAGCCGTGCGCTACGGCCGGGGGTCGAACGCGATGGGGCTGCTGCAGACGGTCCTCGTCGACGGCGGCCCCGGACGACGTCGGCGCTGGCTCGGCGAGCTGTGGCGCCGGCGCAAGGAGCTGCCGACGCTGCTCGACCTGCGGGGCTGGTCCGAGCGGACCCTCATCGCGCTGGTGATGCAGACCGAGGACAACTCCCTGACCACGGTCACGCGCCGCGGGCTCCTCGGCCGCCGGATGACCTCCGTGCAGGGCGGCGGGGAGCCGAACCCCTCGTGGATCCCGCTGGGCCACCGGGTGGTGCGGGCGATGGCCGACCGCATGGGCGGGACGGCGGGCGGCAGCCTGGCCGACCCGTTCGACGTGCCGATGACGGCGCACATCCTGGGAGGGTGCACGATCGGCGGGACGCCGGAGACCGGGGTGATCGACCCGTACCACCGGGTGCACGGCTACCCGGACCTGCACGTCGTGGACGGTTCCGCGGTGACCGCCAACCTGGGCGTGAACCCGTCCCTCACCATCACGGCGCTGGCCGAGCGCGCCTTCGCGCTGTGGCCCAACCGCGACGACCCTGACCTGCGACCGAGGCCCGGGGACCCGTACGTCGCGGTGCCGACGACGCGACCCCGACGGCCCGCGGTCCCGGCGTCGGCACCCGGCGCGCTGCGCCTGCCGATCGTCGAGATCCGCTGAMPVVEPSEDRSSPLPAPADGDPGGSDEPTGLDVVVVGSGFGGSVAALRLTEKGYRVAVLEAGRRFGDDELPRTSWDLRRFLWAPALGCLGIQRIHRLRDVVVLAGAGVGGGSLVYANTLYRPTGAFWSDPAWAPVTDWEAELAPYYDQAERMLGVTEYRGGTPADDVLRDVAREMGAGSTFHRARVGVHLGDPRTGPGDPALPTSAVPDPYFGGAGPARHRCLHCGECMTGCRHDAKNTLVKNYLYLAEAAGARVHALTTVDAIVPCEDGGYEVRTHRSGRPWSGRRTFRAAQVVLAAGTLGTQRLLHAMRDDGALPHLSPRLGHLTRTNSEALLGAVAPRRPDSPGPDYTRGVAITSSFHPDEHTHVEAVRYGRGSNAMGLLQTVLVDGGPGRRRRWLGELWRRRKELPTLLDLRGWSERTLIALVMQTEDNSLTTVTRRGLLGRRMTSVQGGGEPNPSWIPLGHRVVRAMADRMGGTAGGSLADPFDVPMTAHILGGCTIGGTPETGVIDPYHRVHGYPDLHVVDGSAVTANLGVNPSLTITALAERAFALWPNRDDPDLRPRPGDPYVAVPTTRPRRPAVPASAPGALRLPIVEIRPGPT0006645_217DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_CHOLESTEROL_DEGRADATION_,PGPT0006645-choD-K03333NANA
AK018_00947861hypothetical proteinATGTCCTCGTCCCTCGACGGTGCCTCGGCGCCGGCCCGGCAGAGCGTGCTGGGCGGCTCGTCCGCCGTCGCGCCGCAGACCACTGCCCCGCAGGCCCCTGCCCCGCAGGCCTCGAACGTCTCGGGCCACGCGCCGTCGGCCGACACCGAGCAGGCGACCTCGGCGCAGGCGCCCACGAGCGCCGGGCCGGACGGCCACGAGGCCCGGTCCGCCGGTGCGAGCGCGCAGACGGCCGTCGCCGGAGGCGGCGCGGCGGCCGCGGCGGCACCGGCCACGGCCGCGCAGGGCGGCAGCTCGGCCCCGACGGTGACGAAGATCGTCGTGGCCGGCGGGTTCGCCGTGGGCAAGACGACCTTCATCGGGTCGATCTCCGACGTCGAGCCCCTGAACACCGAGGCGGCCATGACGGAGCACTCCGTCGGGGTCGACGACGCCGGTGGCGTGACCGACCGCAAGACCACGACGACCGTGGCCATGGACTTCGGCCGGGTATCCCTGCCCGGGAACCTGTGGCTGTACCTCTTCGGCACCCCCGGGCAGGACCGCTTTCTGTTCATGTGGGACGACCTGGTCCGTGGTGCCATCGGCGCCGTCGTCCTGGTCGACACGGACCGGCTCGAGCAGTGCTTCCCCGCGATCGACTACTTCGAGTCCCGGGGCGTGCCGTTCGTGGTGGGCGTGAACTGCTTCGACGGTGTCGCCAAGCACCGCCTCGAGGACGTCCGCGAGGCGCTGCAGATCCCGGCCCACGTGCCGATGCTGTACACCGACGCGCGGTCGCGGGCCGCGACCAAGCAGACCCTGATCTCCTTGGTCCAGCTGGCGATGCGTCAGCTGCGGGCCGGCAGCGCCCAGGGCTGAMSSSLDGASAPARQSVLGGSSAVAPQTTAPQAPAPQASNVSGHAPSADTEQATSAQAPTSAGPDGHEARSAGASAQTAVAGGGAAAAAAPATAAQGGSSAPTVTKIVVAGGFAVGKTTFIGSISDVEPLNTEAAMTEHSVGVDDAGGVTDRKTTTTVAMDFGRVSLPGNLWLYLFGTPGQDRFLFMWDDLVRGAIGAVVLVDTDRLEQCFPAIDYFESRGVPFVVGVNCFDGVAKHRLEDVREALQIPAHVPMLYTDARSRAATKQTLISLVQLAMRQLRAGSAQGNANANANANA
AK018_00948417hypothetical proteinATGGCGCACGCACCGTTCGGTACCCACGGCTCGCAGTCCGCGGATGTCTACGAGGCTTCCACGGTGCGGCCCTACGCAGTCACGGGTGGCCGTGTCCGCTCCTCGATGTCCGACCTGCCCCTGGAGGCGCTGGTCGAGGTGATGCCGGGAGCGGTCAACAGCTTCGGCCTGACACCCGAGAAGCGCGCCATCCTGCAGCACGCGGCACACACCTACGTGTCCGTCGCGGAGCTCTCGGCGCTGCTCAAGCTCCCCCTCGGCGTCGTCCGCATCCTGGTGGCGGACATGCAGGAGGAGGGCCACATCACCGTGCACACCTCGGCCCCGGTGAACGTCCACACGGGCCACGGCAGCAACCACTCGGGACTTTCCCTGAGCGTCTTGGAGAGTGTTCTCAATGGCATTTCCGCCCTCTGAMAHAPFGTHGSQSADVYEASTVRPYAVTGGRVRSSMSDLPLEALVEVMPGAVNSFGLTPEKRAILQHAAHTYVSVAELSALLKLPLGVVRILVADMQEEGHITVHTSAPVNVHTGHGSNHSGLSLSVLESVLNGISALNANANANANA
AK018_00949450hypothetical proteinGTGACCCTCAGTACTGAAGCGACCAACTTCGGGTGGCTTCTCGACAACTTCGTCCGGACCGTCCCGGGCAGCCGCCACACCCTGGTGGTCTCGGCGGACGGTCTGCTCATGGCGATGTCGGACCAGCTCGACCGCACCAGCGGTGACCAGCTGGCCGCGATCGTGTCGGGCATGTCGAGCCTCACCCGTGGTGCCTCCCGCCAGCTCAACGGCGGCAACGTGCGGCAGGCCATCATCGAGATGGACAACGGGTACCTGTTCCTGATGAACGTCTCGAACGGGTCGGTCCTCGCCGTGGTCGCCGAGGCGAGCTGCGACATCGGGCTCATCGGCTACGAGATGGCGCTGCTGGTCTCGCGCACGGAGGCGACCCTGACACCGCAGCTCATCTCGGAGATGCGGGGCAATCTTCCGGTCGACGGCGCGACACGGTCCGCGCAGGTGGGATGAMTLSTEATNFGWLLDNFVRTVPGSRHTLVVSADGLLMAMSDQLDRTSGDQLAAIVSGMSSLTRGASRQLNGGNVRQAIIEMDNGYLFLMNVSNGSVLAVVAEASCDIGLIGYEMALLVSRTEATLTPQLISEMRGNLPVDGATRSAQVGNANANANANA
AK018_009503987hypothetical proteinATGCTCCGCAGGTTGGGCGTTCGCGGGAAGATCCTTGCGACACTCGCCGTGCCGATCTTCGTCCTTCTCGCGGCGGCCACCTACATCTCGTGGGGTGCCTGGCAGGACGCCGTGCGAGCGGGTCAGTCCTCGGACCTCGTGGACAGCCTCGATCTGCAGGACCGCGCCGGGACCGCCGTGGCGACCGAGCGCGCGCTGGCGATGCTCGCCCTCAACGACGTCCCCGGGGCGATGGACCAGCTCGTCGACGCGCAGGAGGCGAGCGACGAGGCGGTGGACGCCCGTGACGAGGCGCTGCTGGACCTCGACGTCAGCGCGCTGAGCGTCGGTGTCCAGGACGCCATCGAGGCCACGGTCGACGACCGCACGGCGTTGGACGAGCTCCAGCGCCAGGTCATCTCCGGGCAGGTCAGCGAGAGCAGCGCGATCACCCGGTACACCGACATCATCGAACGTGCGATGGACGTGCCCCGGGCCGTGGCAGCGGCGGAGCCCGACGCCGGTCTGGCCGAGCGCCTCAACGCCTACGTGGCGCTGGACGAGGTCATGCTCGCCAACACCTACGAGCGTCCTCTGGTCGCCCTGGCCCTGAGCAACGCTGCGGCGGCGCGCGAGGAGGACCCCGACGACCCGCAGTACAACGCCCAGCTCATGCAGCAGATGGTCGCCGCGCTGCAGGAGACCAACGAGCTCCAGCAGGACGCGGCGGAGCAGCTCGGCCGGCTCGGTGGCGACTACGTGCTGCCGGGCTACGACGAGCGCCTGTCGACGCTGCGCACCCAGCTACGGTGGCTGACGTTCTCCGGCTTCAACCAGTCCGACGCCGCGCAGTGGAGCGACCTCTCGCAGGCGTGGGTCGAGGAGACCCGTCCGGTGCGTGACGATGTCCGCGCCGACACGGTCACGTACGCGTCCGACCTGGCGACGGACGCCCGGCTCCGTGCCGGTGGTACGGCCCTCGCCACGTTCGGCATCGTGCTCCTGTCGCTCGTGTTCGCCCTCGTCATCGCCCGCCGCATCGTGAACCCGCTGCGACGGCTGACGACCGCCACCGCCGACGTCCGCGACCGTCTGCCCCAGATGGTCGAGCAGATGGCCGTGCCGGGCCAGGCTCCCGCCGTCGACCTGGTGCAGATCCCGGTCGAGTCCTCCGACGAGATCGGACGCCTGGCCAACGCGTTCAACGAGGTCAACGCGACCACGGTCGAGGTGGCGCGGGAGCAGGCCGCGCTGCGCGGGTCCATCGCCGAGATGTTCGTCAACGTCGCCCGCCGCGACCAGGTGCTCCTCAATCGTCAGCTCGCGTTCCTCGACGAGCTCGAGCGGTCGGAGGAAGACCCGAGCACGCTGTCGAACCTCTTCCGTCTCGACCACCTCGCGACGCGGATGCGGCGCAACGCCGAGTCCCTCCTGGTGCTCGCCGGCATCGACTCCGGCCGCCGCGTGCGCAACCCGATGCCGGTCTCGGACGTGATCCGTACGGCGTCGTCCGAGATCGAGCTGTACGACCGGGTCCGCCTGGAGCTGCACGCCGACCCGCACATGCTCGGTCACAACGCGCTCAACGCGGCGCACCTGCTGGCGGAGCTCCTGGAGAACGCCACGATGTTCTCCGAGCCGCACACGCCGGTCGAGGTCTCGACCGTGACCGACGCCCGCGGCGTGGTCGTCACCGTGCGGGACCACGGCCTCGGCATGTCGACCGAGGAGATCGCCGAGGCGAACGCGAAGGTCGCCTCGACGGCCGCCTCGGACGCCGTCGGCGCCCAGCGCCTCGGACTCTTCGTGGTCGGCCGGCTGGCCGCACGGCTCGGTGCGACCGTCGAGTTCGCGTCCGGGACCGAGGGCAAGGGCACCGTCGTCACGGTGTCGTTCCCCGCCGCGCTGTTCCTGGCCGACGAGGCCATGCCGCTGCCGCAGCCCACCGACCCGCTGGAGGCCGCCACCCAGCGCTCGGCGTCCCAGCTCGGTGCGTCGCGCGGGGCGTCGGAGCTCACCGGTGCGGCCCCGGCGACGGTCCCGGCCGGACCGGAGCCCTCGGCGGCCGACGCCCCGGACCCGGAGCCCGCGGTCCTGCGGTCCGAGTCCTCGACGGTGGCGACGCCCGAGCCGGCGCCCTACGAGCCGGCGCCCGAGCCGCACCGACCGCAGGTGTCCGAGCCGCGCCCCGAGACCGCGCCGGCCCCGGCGCTGTACGAGCCCGAGCCGCCCAAAGCGGAACCGGTCGACATCGACGCGCTGACGGACGGGACCACGGCTACCGGCATGCCGCGCCGTCGCCGTGGCGACTCCGGCTCGCCGACCGAGTCGATCGTGCTGCCGCCGCTCGAGACGCCGACACTGGACACCTCCGAGGAGGTCCCCGAGGAGGGCTCCTGGAGCCCGCCCAGCGAGGTCGCGGGCAGCGCGGCCGCGGCCCTGCCGAGCCGTCGGCGCGGGAATGGCGAACCGGCCCCGATGTCCGGCGCGCTCCCGCTGCCCGCGGCCGAGGAGCCGACCGCGAAGCCGATCGAGGTGGAGCAGCGCACCGGCCTGTTCTCCAGCTTCCGTTCGATGGAACGGCTCGAGGAGGGCTCGACCGAGAGCACGCTGCAGCTCGACGCCGTCTCGGGCGACCCCGCCGACGTGCCCGAGAGCTTCGGTGCCGAGCCCGCGACGCCGGAGCAGTCCTCCGCGGCCGCCGCCGAGGAGCGCCCGGCACCTGCCGCGGAGCACCCGACGCCGAGCCCGGCTCCGGCCGATGCTCCGGCACCGGCCCGGTCGGCGTCGTGGGCCGAGGCCCCCTCGCCGGCCACCGCGCCGACGCCCGTAGGAGAGTCCGCACTGGACTCGTACACGCCCGACTCGTACACGCCGGACTCTTACGCCGCGGACTCGTCCGCGGTGGAGTCGCCGTCGTCGTCCGGGAACGGCCGTGCCGAGCCCGAGGACTCCCCGCAGGAGCTCGAGTCGCTGCCGGCGTTCGAGGAGCTGATGTCGAACCTGCCGACGCGGCGCGGGGAGCAGCAGCCCTCCGGCCGCAAGCGGGGCCTCTTCGGGCGCAAGCCGGCCGTCCAGAGCACGGAGTCGGCCGCTGCCGCGGCGGCGGAGTCCGTCACCGGCGCGCGGGCGTCCTCGGACCGCCCCGACGGCGCACGACCCGAGGCGTGGTCCGCGCCGGCCGAGCCGGCCCGACCCGACCCCGTGCACCGCACCACCGACCAGCTCGCTGGCCACCGGCACCCTGCCGTGGTGGACCCGTTCGCCTCGGACGCGGTCCCGCCCGCCACGGCTGCGACGCCCGCCCCGGCCCGGCCCGCTCCGGCGACGCCGGTTCCCGCCGACCGCCGTGCCGAGCCGCTCCGGCCCGCGGCACCCACGCAGTCCGCGGCGTCCTCGGCGACTCCCTCGCCGGCGGTCCCGGCCCCGGTCGCCTTCGGGCAGCCGGCGGTCGAGGAGGTGCCCTACCAGCCGCGCTCGGTCGAACCGGAGGGCGAGCGTCGGCCGTGGGCCGGCGAGGACCGACCGGCCACCGCCGAGGCGGCGGCCCCGAGCGGCACCGCCCCGAGCGGCACCGCGCCGACCGCGAACGGCGCCCGGGCGGCGTCGTACGGCGACTCGGTGCTGCCCCTGCGGTCGACCGTGAGCTCGGACTCCGACCCGCTCGACCCGCACTACGTGCCCGACACGATCGAGGCGCGGTCCGAATGGATGGCCTCGGCCGTCCTGTACGAGGAGATGTCGACGCTCATGCAGCGCGGTGTCTTCCAGGAAGAGAACGTGACGACCAGCAACGAGGAGCAGACGTACCGACCGGCCACGGCCGCGCCGACCGCCGCACCCGGTCTCACCCGACGTGCCCGTCCCGCGGAGCCGGCGGCCCCGGCCGACCGGTTCACGGCCTCGATCGAGCGGGACCCGGAGCAGCTGCGCGCGCGCCTCTCGGCCTTCCAGTCGGCGACGGCGCGCGGGCGCTCCGAGGCGAGCGACGACGGGGGGCTCGACTAAMLRRLGVRGKILATLAVPIFVLLAAATYISWGAWQDAVRAGQSSDLVDSLDLQDRAGTAVATERALAMLALNDVPGAMDQLVDAQEASDEAVDARDEALLDLDVSALSVGVQDAIEATVDDRTALDELQRQVISGQVSESSAITRYTDIIERAMDVPRAVAAAEPDAGLAERLNAYVALDEVMLANTYERPLVALALSNAAAAREEDPDDPQYNAQLMQQMVAALQETNELQQDAAEQLGRLGGDYVLPGYDERLSTLRTQLRWLTFSGFNQSDAAQWSDLSQAWVEETRPVRDDVRADTVTYASDLATDARLRAGGTALATFGIVLLSLVFALVIARRIVNPLRRLTTATADVRDRLPQMVEQMAVPGQAPAVDLVQIPVESSDEIGRLANAFNEVNATTVEVAREQAALRGSIAEMFVNVARRDQVLLNRQLAFLDELERSEEDPSTLSNLFRLDHLATRMRRNAESLLVLAGIDSGRRVRNPMPVSDVIRTASSEIELYDRVRLELHADPHMLGHNALNAAHLLAELLENATMFSEPHTPVEVSTVTDARGVVVTVRDHGLGMSTEEIAEANAKVASTAASDAVGAQRLGLFVVGRLAARLGATVEFASGTEGKGTVVTVSFPAALFLADEAMPLPQPTDPLEAATQRSASQLGASRGASELTGAAPATVPAGPEPSAADAPDPEPAVLRSESSTVATPEPAPYEPAPEPHRPQVSEPRPETAPAPALYEPEPPKAEPVDIDALTDGTTATGMPRRRRGDSGSPTESIVLPPLETPTLDTSEEVPEEGSWSPPSEVAGSAAAALPSRRRGNGEPAPMSGALPLPAAEEPTAKPIEVEQRTGLFSSFRSMERLEEGSTESTLQLDAVSGDPADVPESFGAEPATPEQSSAAAAEERPAPAAEHPTPSPAPADAPAPARSASWAEAPSPATAPTPVGESALDSYTPDSYTPDSYAADSSAVESPSSSGNGRAEPEDSPQELESLPAFEELMSNLPTRRGEQQPSGRKRGLFGRKPAVQSTESAAAAAAESVTGARASSDRPDGARPEAWSAPAEPARPDPVHRTTDQLAGHRHPAVVDPFASDAVPPATAATPAPARPAPATPVPADRRAEPLRPAAPTQSAASSATPSPAVPAPVAFGQPAVEEVPYQPRSVEPEGERRPWAGEDRPATAEAAAPSGTAPSGTAPTANGARAASYGDSVLPLRSTVSSDSDPLDPHYVPDTIEARSEWMASAVLYEEMSTLMQRGVFQEENVTTSNEEQTYRPATAAPTAAPGLTRRARPAEPAAPADRFTASIERDPEQLRARLSAFQSATARGRSEASDDGGLDNANANANANA
AK018_00951879ppsC_1Phthiocerol synthesis polyketide synthase type I PpsCGTGCTCTCCAGTGGCGTGAACAGGGCTGACCTGCTACAACGCGCCGGACTCTACCCTCCGCCGCCCGGCGCTCCCGACTGGCCGGGACTGGAGATATCCGGTACCGTCCGCGCGCTCGGCCCCGGCGTGTCGTGGCCGCGTGTCGGCGACCACGTGGTCGCCCTGCTCGACGGCGGAGGGTACGCGGAGCAGGCGATCGCACCCGCCGGGCAGGTCCTGCCCCTGCCCGCAGGCATCGACCCCGTCGACGCCGCCGCGCTGCCCGAGGCGGTGTGCACGGCCTGGACGAACCTCGTCGACGCCGGACGGCTCGACGACGGCGAGACACTCCTCGTCCAGGGCGGCTCCGGCGGGGTCGGCAGCATCGCCGTCCAGCTCGGCAAGGCCCTGGGCGCCCGCGTCGTCACCACCGCCGGCGGCCCCGAGCGCACCGCGCGCTGCCGCGACCTGGGCGCGGACGTCGTCGTCGACCACCGCGCCGAGGACGTGGTCGCCGCCGTCCGGGCCGCCACCGACGGCCGGGGTGCCGACGTCGTGCTCGACGTCCTCGGCGCCGGCGCGCTCCAGGACAACGTCCGGCTCCTGGCGCCGTCGGGCCGGCTCGTCGTGATCGGCCTCCAGCAGGGCCGCACCGGCGAGCTCGACCTGGCGCGCCTCATGGCCCGGCGGGCCACCGTCACCGGGACCACGCTGCGCTCGCGCAGCGCCGTCGAGAAGGCCGCGATCGTCGCCGCCGTCGCCGAGCACGTGTGGCCGATGGTCGCCGACGGGCAGGTCCGACCCGTCGTGCACGCCCGGCTCCCGCTGGAGGAGGCCGAGGCCGCCCACGCGATGCTGGAGTCCGGCGAGGCGTTCGGCAAGGTGCTCCTGCTGCCGTGAMLSSGVNRADLLQRAGLYPPPPGAPDWPGLEISGTVRALGPGVSWPRVGDHVVALLDGGGYAEQAIAPAGQVLPLPAGIDPVDAAALPEAVCTAWTNLVDAGRLDDGETLLVQGGSGGVGSIAVQLGKALGARVVTTAGGPERTARCRDLGADVVVDHRAEDVVAAVRAATDGRGADVVLDVLGAGALQDNVRLLAPSGRLVVIGLQQGRTGELDLARLMARRATVTGTTLRSRSAVEKAAIVAAVAEHVWPMVADGQVRPVVHARLPLEEAEAAHAMLESGEAFGKVLLLPPGPT0013255_1725DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_00952522bpa_1Bacterial proteasome activatorATGGTCGACGAGCACCGCACCGTGACCCCCGAGGGCGACGGCGTCCCCGCCGCGCCGGACGAGGCGGGGCAGGACGAGCAGGCAGAGAGCCCCAGCATCTCCGAACCCGCCAAGGTCATGCGCATCGGCAGCATGGTCAAGAAGTTGCTGGACGAGGTGCGCGACGCCCCGCTCGACGACGCCGCCCGCACCCGGCTCGCCGAGATCCACGAACGCTCGATCAGCGAGCTCGAGGACGGCCTCTCCGAGGACCTGGTCGACGAGCTGCACCGCATCACGCTGCCGTTCACCGCCGACGCCACGCCGTCGGACGCCGAGCTACGCATCGCCCAGGCCCAGCTCGTCGGCTGGCTCGAGGGGCTGTTCCACGGCATCCAGACGGCCCTGGTCGCCCAGCAGATGGCCGCCCAGCAGCAGCTCAGCCAGATGCGGCGCGGCCTGCCGCCCGGGGCGCACCCGCCGTTCGGCCCGGGCGGCCCGAACGGCCCGGGGGACGAACGCTCCCCCGGCCAGTACCTCTAGMVDEHRTVTPEGDGVPAAPDEAGQDEQAESPSISEPAKVMRIGSMVKKLLDEVRDAPLDDAARTRLAEIHERSISELEDGLSEDLVDELHRITLPFTADATPSDAELRIAQAQLVGWLEGLFHGIQTALVAQQMAAQQQLSQMRRGLPPGAHPPFGPGGPNGPGDERSPGQYLNANANANANA
AK018_00953903rhtACOG5006Threonine/homoserine exporter RhtAGTGCCCGCCGCAGACCCGACCTCGTCCGGACCGCCGTCGTCCCTGCGAAGCGGACGGCTGGACCGGGTCCCCGCGCCGGCCCTGTTCCTGGTCTCGGGCCTGACCCTGTACCTGGGCGCCGCGGTCGCCGTCGGTCTGTTCGAGACGCTCGGCGCACCCACCGTGAGCTGGTGGCGCATCGTGCTCGCCGCCGTCGTGCTGCTGGCGTGGCGTCGGCCGTGGCGCCGGCGCTGGACGCGCGCGGACCTGGGGCACGCGGCGCTGTTCGGCATCGCGCTGTCGGCGATGAACATCGTGTTCTACGTGGCGATCGACCACCTGCCGCTCGGGGTCGCCGTCGCGCTGGAGTTCACGGGGCCGGTCGCCGTCGCGGCGATCACCGGCCGTGGCTGGCGCGAGCGTGGGGCGATCCTCGTGGCCGCCGTGGGCGTCGTGCTGCTGGCCGGGATCACGCTCGACGGCGACGTGCCGCGCGACGATGTCGTCGTCGGCCTTGTGGCGGTCTTCTGCGCCGCCGCGTGCTGGGCGGGTTACATCGTGCTCGGCAAGCGGGTGGCCGGGGGAGTGTCGGGCTTCGACGGACTGGCCGTCGGCATGGCGGCGGGTGCGCTGGTGTTCGCGCCGTTCTATGGCGGTTCGGTCGTGACGGTGGTGCCCGACGTCGGTCTGCTCGCTTTCCTGCTGGTGGTCGCGATCTGCTCGTCGGTGGTGCCGTACGTGCTGGACCAGGTGGTGCTGCGGCGGGTCGGCACGGCGACGTTCGCGGTGCTGCTGGCGTTGCTGCCGGCGACTGCTACGGCGGTCGGCGCCGTCGTGCTGGCGCAGGTGCCGTCCTGGCCGGAGCTGGTGGGGCTCGCGTTCGTCTCGGGCGCGATCGCGATGACGGCGACCGGCCGGGACTAGMPAADPTSSGPPSSLRSGRLDRVPAPALFLVSGLTLYLGAAVAVGLFETLGAPTVSWWRIVLAAVVLLAWRRPWRRRWTRADLGHAALFGIALSAMNIVFYVAIDHLPLGVAVALEFTGPVAVAAITGRGWRERGAILVAAVGVVLLAGITLDGDVPRDDVVVGLVAVFCAAACWAGYIVLGKRVAGGVSGFDGLAVGMAAGALVFAPFYGGSVVTVVPDVGLLAFLLVVAICSSVVPYVLDQVVLRRVGTATFAVLLALLPATATAVGAVVLAQVPSWPELVGLAFVSGAIAMTATGRDNANANANANA
AK018_00954417yhaI_1COG3152Inner membrane protein YhaIATGGGGTTCGGCGAGGCAGTCAGGACCGTCTTCAGCAAGTACGCGACGTTCTCCGGCCGGGCGCGGCGCTCCGAGTACTGGTGGTGGTATCTCTTCGTGCTGCTCGTCAGCATCGCGCTCAGCGTGCTGGTCGCCGTGTTCGGCGGCTACAGCATCGACGCCGACACCGGGATGCCCGTGTTCGAGTTCGGGTCCGCGCTGCTGATTTTCGCCGCGTGGCTGCTGTTCGTGGTCCCGAACATCGCGGTCACCGTGCGCCGTCTGCACGACACCGACCGCTCGGGGTTCTGGTGGTTCATCGGGTTCGTGCCCCTGGTCGGCTGGATCATCCTGCTCGTCCTCATGATGCTGGAGGGCACCCAGGGGCCCAACCGCTTCGGCCCGGACCCCGCCTACCGGTCGGGTCTGGGCGGCTGAMGFGEAVRTVFSKYATFSGRARRSEYWWWYLFVLLVSIALSVLVAVFGGYSIDADTGMPVFEFGSALLIFAAWLLFVVPNIAVTVRRLHDTDRSGFWWFIGFVPLVGWIILLVLMMLEGTQGPNRFGPDPAYRSGLGGNANANANANA
AK018_00955435yhaI_2COG3152Inner membrane protein YhaIATGTCCTTCGGCGACGCCGTCACCTCCGTCCGCACCAACCTCACGAACTTCTCCGGCCGCGCCCGGCGCTCCGAGTTCTGGTGGTGGTACCTCGCCGTCGCCCTGCTCGGCCTCGCCGTCGGCATCATCTCCGCGATCGTGGCCGCTGTCCTCGTCGCCGTGGACGCGCCGGTCCTCACCACGATCGTCGGCATCGTGCTCGGCCTCGCGCTGTTCGCCCTGTGGCTCTACGTGTTCGTCGGCACGCTCGCCGTGGCCGTCCGCCGGCTGCACGACACCGACAAGTCGGGCTGGTTCTACCTGCTCGCCTTCGTCCCCGTCGCCAACATCGTCCTGATCGTCTTCTGGGCGCTCGAGGGCACGCGCGGCCCGAACCAGTACGGCGCCGACCCCCGACTCGGCGCCGTCGCCCCGGCCGCCGCGCCGCAGGTCTGAMSFGDAVTSVRTNLTNFSGRARRSEFWWWYLAVALLGLAVGIISAIVAAVLVAVDAPVLTTIVGIVLGLALFALWLYVFVGTLAVAVRRLHDTDKSGWFYLLAFVPVANIVLIVFWALEGTRGPNQYGADPRLGAVAPAAAPQVNANANANANA
AK018_00956951melC_2COG0395Melibiose/raffinose/stachyose import permease protein MelCATGAGCACCACCCCGGCCGTCCCGGCCTCGACCCCGCAGACCGAGGACACCGCACCGACCAAGCCCCGCAAGCTGAGCCGGCTCGAGAAGCGTGCCATCGCCACCAAGGGGCGGCTGACGTCCCCGTGGGCGTCGCTGACGGCGGTGATCCTCGCGACGTTGTGGACCATCCCCACCATCGGGCTGCTGGTCACGTCGTTCCGTCCGGAGATCGACATCCGGCGCAGCGGCTGGTGGACGGTGATCCCCGGCATCTTCACCGGGGAGACCGAGTTCACCCTGGACAACTACGAGCAGGCGCTCTACGGCAGCGACAACCTGGCGGGCGTGTTCATCAACACCTTCGTCATCACCATCCCGGCGGTGGTCATCCCGATCACGGTGGCGCTCCTGGCGGCCTACGGGTTCGCCTGGATCGAGTTCCCGGGGCGGAACCTGCTGTTCGTCGCCGTCTTCGCGCTGCAGGTCGTGCCCATCCAGGTCGCGCTCGTCCCGCTGCTGACCAACTACAACCAGTGGGGGATGGCGGGGTCGTTCTGGACGGTGTGGCTCTCGCACTCGATCTTCGCGCTGCCATTGGCGGTGTTCCTGCTGCACAACTTCATGAAGGACATCCCCCGGTCGTTGATCGAGGCTGCCCGCGTGGACGGGGCAGGGCACGTGAAGATCTTCTTCCGTGTGCTGTTCCCCCTGCTGGTGCCCGCGATCGCGGCCTTCGGGATCTTCCAGTTCCTCTGGGTCTGGAACGACCTGCTGGTCGGCCTGACCTTCGCGGCGCCGGAGTACCGGCCGCTGACGGTGGCGATCGCCGAGATGGCCGGCTCGCGCGGCGGTGACTGGCACATCCTGACGGCCGGTGCGTTCATCGCGATGATCGTGCCGCTGATCGTGTTCCTGCTGCTGCAGCGCTACTTCGTGCGCGGGATGCTCGCGGGCGCGGTCAAGGGCTGAMSTTPAVPASTPQTEDTAPTKPRKLSRLEKRAIATKGRLTSPWASLTAVILATLWTIPTIGLLVTSFRPEIDIRRSGWWTVIPGIFTGETEFTLDNYEQALYGSDNLAGVFINTFVITIPAVVIPITVALLAAYGFAWIEFPGRNLLFVAVFALQVVPIQVALVPLLTNYNQWGMAGSFWTVWLSHSIFALPLAVFLLHNFMKDIPRSLIEAARVDGAGHVKIFFRVLFPLLVPAIAAFGIFQFLWVWNDLLVGLTFAAPEYRPLTVAIAEMAGSRGGDWHILTAGAFIAMIVPLIVFLLLQRYFVRGMLAGAVKGPGPT0016405_298DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016405-aglG|ggtD-K10234NANA
AK018_00957990melD_3COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGGACTGGTTGCTGTACCCGGACTCGCCCGGGATGAAGCTCGTCGTCATGGTGATCGGCATCGGCGTGTTCGTGCTGGTGATGAGTCTGATCCTCTTCCTGGTCGACCGGCCGAAGCGCATCCCGTCGTGGGTGGTGGCGATCGGGTTCGTCGGCCCCGCCCTGCTGCTCATCGCCTACGGCCTGCTGCGGCCCGGCTTCGAGACGCTCTACAACTCGTTCTTCAACCGCAACATCACGGAGTTCGTCGGGTTCGACAACTACGAGCAGATGCTGACGGTCGGCGCCTTCCAGAAGGTGCTGCTGGTCACTGCCGCCTGGGTCATCCTGGCCCCGCTGTTGAGCACGCTCATCGGGCTGGTCTACGCGGTGCTCGTGGACCGGGCTCGGTTCGAGCGGATCGCCAAGACGCTGATCTTCATCCCGATGGCGATCTCGATGGTCGGTGCCTCCATCATCTGGGGGTTCGTCTACGAGTTCCGCCCCGACCAGCCGGGCGTGAACCAGATCGGGCTGCTCAACCAGGTGCTCGTCTGGCTCGGCCTGCCGCCGCAGCAATTCCTCATCGGTGAGCCGTGGAACACCGGTTTCCTCATCGCCGTGATGATCTGGATCCAGACCGGTTTCGCCATGACCGTCCTGGCCGCAGCCATCAAGGCCATCCCGGACGACATCGTCGAGGCGGCCCGGCTCGACGGGCTGCACGGCCTCGGGATGTTCCGCTACATCACGGTGCCGAGCATCCGCCCGGCGCTCGTCGTCGTGCTGACCACGATTGCCATGACCACGCTCAAGGCGTTCGACATCGTCCGCACCATGACCGGCGGGCAGTTCGGCACGCAGGTCGTCGCGAACGAGTTCTACACGCAGGCGTTCCGGCAGAACAACCAGGGGCTGGCCGCGGCGTTCGCCGTGGTGCTGTTCATCCTGGTGATCCCGATCGTCGCCTACAACGTCCGCCAGATGCGCAGGTCGGAGGAGATCCGATGAMDWLLYPDSPGMKLVVMVIGIGVFVLVMSLILFLVDRPKRIPSWVVAIGFVGPALLLIAYGLLRPGFETLYNSFFNRNITEFVGFDNYEQMLTVGAFQKVLLVTAAWVILAPLLSTLIGLVYAVLVDRARFERIAKTLIFIPMAISMVGASIIWGFVYEFRPDQPGVNQIGLLNQVLVWLGLPPQQFLIGEPWNTGFLIAVMIWIQTGFAMTVLAAAIKAIPDDIVEAARLDGLHGLGMFRYITVPSIRPALVVVLTTIAMTTLKAFDIVRTMTGGQFGTQVVANEFYTQAFRQNNQGLAAAFAVVLFILVIPIVAYNVRQMRRSEEIRPGPT0016400_442DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016400-aglF|ggtC-K10233NANA
AK018_009581401hypothetical proteinATGACCAGGACCACGACGGCGCGCCGACGCCGTCTGACAACGGTCGCCGCCGGCGCGAGCCTGGCGCTCGTCCTCGCCGCTTGTGGCGGGAACGGCGACAGCGACGGTGGCGGCGGCGACGACATGGACGACGGCGGCGGGGGCACGGCCGAGGACATCGACTGCGCCGCCTACGACGAGTTCGGCGACCTCGAGGGCACGTCGGTGAGCATCTACACCTCGATCGTCGAACCGGAGCAGTCCCAGCAGGAGCTGTCCTACGACGCCTTCGAGGAGTGCACCGGTGTCACGGTGAACTACGAGGGCTCGCGCGAGTTCGAGGCACAGCTGCTGGTGCGCATTCAGGCCGGCAACACCCCGGACATCGCCTACCTGCCCCAGCCCGGCCTGCTGAACACGATCGTCAACGACTACCCGGACCAGATCGTGGAGGCCCCGGAGCCGACGGTCGCGAACGTCGACGAGTTCTTCAGCGAGGAGTGGAAGGAGTACGGCTCGGTCGACGGGACGTTCTACGCCGCCCCGCTGGGCGCCAACGCCAAGTCCTTCGTCTGGTACAACCCGACGATGTTCGCGGACGCCGGCTACGAGGTCCCGGAGACGTGGACCGAGCTGATGGAGCTCACGGAGACCATCGCCTCCGAGCAGGAAGTCCTGCCTTGGTGCGCCGGCGTGGAGTCCGGCGACGCGACCGGCTGGGCCGGCACCGACTGGATCGAGGACGTCGTGCTCCGCACGGCCGGCCCCGACGTGTACGACCAGTGGTACATGCACGAGATCCCGTTCAACGACCCGCAGATCGTCGAGGCGTTCGACACGGCCGGGGAGATCCTCAAGAACCCGGACTACGTGAACGCCGGTCTCGGCGGGGTCGACTCGATCGCCACCACGCCGTGGGACCAGGCGGGCGTCGGGGTGCTGGACGGCACCTGCTGGATGTACCGCATGGCCAGCTTCTACGCCACGCAGTGGCCGGAGGGCACCGAGGTCGGGTCTGACGGCGACGTGTACGCGTTCTACCTGCCCACCGATCAGACGGACATGCAGCCCGTCCTCGGCGGCGGGGAGTTCGTGGCGGCGTTCGACGACCGGCCCGAGGTCCAGGCGTTCCAGACCTACCTGGCCAGCGCGGACTGGGCGAACCAGAAGGCCATCGCCACGCCGGAGGGCGGCTGGTTCAGCGCCAACAACGGCCTGGACATCAACAACCTCGCCTCGGAGTTCGACCAGGACGCCGCCGCCCTGGTCTCGGACGAGGAGACGGTGTTCCGGTTCGACGCCTCGGACCTCATGCCCGGTGAGGTCGGTGCCGGCACCTTCTGGAACGGCATCGTGAACTGGCTGACCGGTGACTCCAGCCAGGAGGTGACGGACCAGATCGAGAGCAGCTGGCCGATGTGAMTRTTTARRRRLTTVAAGASLALVLAACGGNGDSDGGGGDDMDDGGGGTAEDIDCAAYDEFGDLEGTSVSIYTSIVEPEQSQQELSYDAFEECTGVTVNYEGSREFEAQLLVRIQAGNTPDIAYLPQPGLLNTIVNDYPDQIVEAPEPTVANVDEFFSEEWKEYGSVDGTFYAAPLGANAKSFVWYNPTMFADAGYEVPETWTELMELTETIASEQEVLPWCAGVESGDATGWAGTDWIEDVVLRTAGPDVYDQWYMHEIPFNDPQIVEAFDTAGEILKNPDYVNAGLGGVDSIATTPWDQAGVGVLDGTCWMYRMASFYATQWPEGTEVGSDGDVYAFYLPTDQTDMQPVLGGGEFVAAFDDRPEVQAFQTYLASADWANQKAIATPEGGWFSANNGLDINNLASEFDQDAAALVSDEETVFRFDASDLMPGEVGAGTFWNGIVNWLTGDSSQEVTDQIESSWPMPGPT0016395_94DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016395-aglE|ggtB-K10232NANA
AK018_00959783map_1COG0024Methionine aminopeptidase 1ATGATCGAGCTGAGGACCCCGCGCGAGATCGAGGAGATGCGTCCCGCAGGCCGCTTCGTCGCGGAGACGCTGCAGGCCGTGCGTGAGGCCGCCCGCCCCGGTGTCAACCTGCTCGAGCTGGATGCGTTGGCGCACCGCCGGATCAAGGAGCGCGGCGCGGAGTCCTGCTACATCGACTACCACCCGTCCTTCGGTGCGAGCCCGTTCGGCAAGGTCATCTGCACGTCGGTCAACGACGCCGTGCTGCACGGCCTGCCGCACGACTACACGCTGGCCGACGGCGACCTGCTGAGCATCGACTTCGCCGTCGCCGTCGACGGGTGGGTCTCCGACTCGGCGATCTCGTTCGTGGTCGGCGAGTCGTCCTCGTCCGAGCGCGCCGAGGCCGACGCGAAGCTCATCCGGACCACGGAGATCGCCCTCGACGCGGGCATCGCCGCCGCCCAGCCCGGCAAGAAGATCGGCGACATCTCCGCCGCGATCGCCGCCGTCGCCCGCGAGGCCGGCTACTCGATCAACACCGACTTCGGCGGCCACGGCGTCGGGCGCACCATGCACGGCGACCCGCACGTGCCGAACGACGGCCGCGCCGGGCGCGGGTTCCCGCTGCGCCCCGGTCTGGTCATCGCGATCGAGCCGTGGTTCCTCGAGACCACGGACGAGATCTACACCGACGACGACGGCTGGACGCTGCGCTCGACCGACGGCTCCCGCGGTGCGCACAGCGAGCACACCATCGCGATCACCGCCGACGGCCCGATCGTCCTCACGGCCCGCGACTGAMIELRTPREIEEMRPAGRFVAETLQAVREAARPGVNLLELDALAHRRIKERGAESCYIDYHPSFGASPFGKVICTSVNDAVLHGLPHDYTLADGDLLSIDFAVAVDGWVSDSAISFVVGESSSSERAEADAKLIRTTEIALDAGIAAAQPGKKIGDISAAIAAVAREAGYSINTDFGGHGVGRTMHGDPHVPNDGRAGRGFPLRPGLVIAIEPWFLETTDEIYTDDDGWTLRSTDGSRGAHSEHTIAITADGPIVLTARDPGPT0020010_6524DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
AK018_00960813ywpJCOG0561Phosphatase YwpJGTGGCGCGGGTGACGCCGTCGGACGGTCGCGCGCTCGTGGCGCTGGACCTCGACGGCACGCTGCTGTCCTACGCGGGGGACATGGCGAGTGCGGTGCACGACGCCGTCACCGCCGTCCGCGACGCGGGGCACGAGGTGGTGCTCGCCTCGGGGCGGTCGCTCATCTCGATGCTGCCGGTCGCCGAGCACCTCGGCATCGAGACGGGCTGGATGGTCTGCTCGAACGGAGCCGTCACCGTCCGCCTCGACCCGGACCTGCCGGAGGGGTGGGTGGCCGACGACGTCGTGACGTTCGACCCGGAGCCTGCCCTGAGCCTGCTGCGCCACGAGCTGCCCGACGCCCGGTACGCCGTCGAGGACCTCGGTGTCGGCTTCCGCATGACCGAGCGATTCCCGGAGGGCGAGCTGGAGGGCGTGCACGTCGTCGTGCCGCTCGAGGAGCTGTGGGCCACCGAGGTCACGCGCGTCATCGTGCGCAGCCCCGAGTCCACGTCCGAGCGGTTCCACGAGCTGGTCGAGCACCTGGGGCTCGAGGACGTGACCTATGCGGTGGGATGGAGCGCCTGGATGGATCTGGCGCCCCTCGGGGTGTCCAAGGCGACCGCGCTGGAGCAGGTCCGACGGCGTACCCACGTCCAGCCGCACCGCACGATCGCGATCGGCGACGGCCGCAACGACGTCGAGATGCTGCGCTGGGCGTCCCGGGGTGTGGCGATGGGGCACGCCGACGAGGTGGTGCGCGGGGCCGCCGACGAGGTGACCGGGACCGTGGAGGACGACGGTGCCGCCGTCGTCCTGCGCTCCTTGCTCTGAMARVTPSDGRALVALDLDGTLLSYAGDMASAVHDAVTAVRDAGHEVVLASGRSLISMLPVAEHLGIETGWMVCSNGAVTVRLDPDLPEGWVADDVVTFDPEPALSLLRHELPDARYAVEDLGVGFRMTERFPEGELEGVHVVVPLEELWATEVTRVIVRSPESTSERFHELVEHLGLEDVTYAVGWSAWMDLAPLGVSKATALEQVRRRTHVQPHRTIAIGDGRNDVEMLRWASRGVAMGHADEVVRGAADEVTGTVEDDGAAVVLRSLLPGPT0008595_672DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008595-ycsE|yitU|ywtE-K21064NANA
AK018_009611269serS_1COG0172Serine--tRNA ligaseGTGATCGACATCCGTCTCCTGCGCGACAACCCCGACGCCGTCCGAGCGAGCCAGACGGCCCGCGGCGAGGACACCTCCGTGGTGGACGCCGCCCTGGCGGCCGAGGCCCGACGGCGCAGCTCCCTGGCGGACTTCGAGTCCCTGCGCGCCGAGCAGAAGGCGATGGGCAAGCAGGTCGCGCAGGCGACCGGCGAGGAGAAGGCCGCGCTCATCGGCCAGACCAAGGAGCTCGCCGACCAGGTCAAGGCGCACCAGGCCACCGCCAACGAGGCCGAGGCCGAGCTCGACGATCTGCTCTACCGGATCCCGAACATCGTCGAGGGCGCCCCGGCCGGCGGCGAGGACGACTTCATCACGCTCAAGACCGTCGGCACCCCGCGCGACTTCGCCGCCGAGGGCCTCACACCCCGCGACCACCTGGACCTCGGCGAGGCGCTCGGCGCGATCGACACCCAGCGCGGCGCCAAGGTCTCCGGCTCGCGGTTCTACTTCCTCACCGGCGTCGGCGCACGCCTCGAGCTCGCGCTGCTCAACGCGGCCGTCGACCTCGCCACCGCCGCCGGTTTCACCCCGATGATCACGCCCACGCTCGTCACCCCGGACACGATGCGCGGCACCGGGTTCCTCGGCGAGCACGCCGACGAGGTCTACCACCTCGAACGTGACGACCTGTACCTGGTCGGCACCTCGGAGGTGGCGCTCGCCGGCTACCACGGCGCCGAGATCATCGACCTGTCCGCCGGTCCGAAGCGGTACGCCGGCTGGAGCGCCTGCTACCGCCGCGAGGCAGGGTCGCACGGCAAGGACGTGCGCGGCATCATCCGCGTCCACCAGTTCCACAAGGTGGAGATGTTCTCCTACTGCCGGCCGGAGGACGCCGAGGCCGAGCACCAGCGCCTGCTGGACTGGGAGGAACAGATGCTCGCCGCCGTCGACCTCCCCTACCGGGTGATCGACACCGCCGCCGGCGACCTGGGCACCAGCGCCGCCCGCAAGTTCGACTGCGAGGCGTGGCTGCCCAGCCAGGAGCGGTACCTCGAGCTCACCTCGACGTCGAACTGCACCACGTTCCAGGCCCGGCGGCTCAACGTGCGGGCGCGCACCGAGAACGGCACGCAGACGGTGGCGACCCTCAACGGGACCCTCGGCACCACCCGCTGGCTGGTGGCGATCCTGGAGAACCACCAGCAGGCCGACGGGTCGGTGCGGGTGCCGGAGGGTCTGCGGCCCTACCTGGGCGGGCTCGAGGTCCTCGAGCCGGTGCGCTGAMIDIRLLRDNPDAVRASQTARGEDTSVVDAALAAEARRRSSLADFESLRAEQKAMGKQVAQATGEEKAALIGQTKELADQVKAHQATANEAEAELDDLLYRIPNIVEGAPAGGEDDFITLKTVGTPRDFAAEGLTPRDHLDLGEALGAIDTQRGAKVSGSRFYFLTGVGARLELALLNAAVDLATAAGFTPMITPTLVTPDTMRGTGFLGEHADEVYHLERDDLYLVGTSEVALAGYHGAEIIDLSAGPKRYAGWSACYRREAGSHGKDVRGIIRVHQFHKVEMFSYCRPEDAEAEHQRLLDWEEQMLAAVDLPYRVIDTAAGDLGTSAARKFDCEAWLPSQERYLELTSTSNCTTFQARRLNVRARTENGTQTVATLNGTLGTTRWLVAILENHQQADGSVRVPEGLRPYLGGLEVLEPVRNANANANANA
AK018_009621101dagK_2COG1597Diacylglycerol kinaseATGCCGTGGGAGCTCACCGTGGGCGTCAGCGCCCTGATCATCGGGGTCACCGCCCTCGTCGCCGCGTTCCTCGTGCTGCGCCGCAGCAGAGCACGCGAGCGGTCCGAAGGCACCGGCGTCGCGCCGCAGGAGAAGACGCAGCGCCCGCAGCTGGCGCTCGTGGTCAACCCGTCGAAGGAGCACACGGCGCACGTCGTGAGCACCGTGCGCCGGCTGGCCGCGGAGGCCGCCCTGCCCGAGCCGCGGTTCTACGACACGACCAAGGAGGACCCGGGCACCGGGCAGTCGCGGCAGGCGTTGGCCGACGGCGCCGACGTCGTGGTCGCGGCCGGCGGTGACGGCACCGTGCGCGCGGTCGCCGAGGGCATGGTGGGCAGCGGGGTGCCGATGGGCATCATCCCGGCGGGCACCGGCAACCTGCTGGCCCGCAACCTCGACCTGCCGCTCACCGACGTCGCCGAGGCGCTGACGATCGTGCTCGGCGGCGTGGACCGCACCATCGACGTGGGCCGGGCCCGCATCACGGAACGCCCGCCCGGCGAGGAGCCGCCGTCCGACGTCGACGACGACACGGCGCACATCTTCCTGGTGATCGGCGGGCTCGGGTTCGACGCCGCGATGGTGGCGGACGCCGACGACCAGCTCAAGGCGCGCATGGGCTGGGTGGCCTACTTCCTGGCCGGCGCCCGGCACCTGCACGGGCGCCGGATGCGCGCCACGATCACGATCGACGACACCGACCCCGTCGAGGCGCGGCTGCGCAGCGTCATGGTCGGCAACTGCGGACGGCTGCCCGGCGGCATCACCCTGCTGCCCGACGCGGTCATCGACGACGGCGTCCTGGACGTCGCGGCGATCGACACGCGCGGTGGGCTGGCCGGCTGGGCGCAGCTCTTCGGCGAGGTGGTCGCCCAGGGCATGGGCGTGCACAACGAGGCGCGCATCAAGATCGGTCGGATCGACCACACCCGCGCCCGCCGCGTGCAGATCCGCGTCGACGGCGGCGAGCAGGCCCAGGTCGACGGCGACGTGCTCGGCAAGGCCGTCGCGATGGAGACCTGGGTGGAGCCGGGCGTGCTCGTCGTGCGCACCGCGGCGTGAMPWELTVGVSALIIGVTALVAAFLVLRRSRARERSEGTGVAPQEKTQRPQLALVVNPSKEHTAHVVSTVRRLAAEAALPEPRFYDTTKEDPGTGQSRQALADGADVVVAAGGDGTVRAVAEGMVGSGVPMGIIPAGTGNLLARNLDLPLTDVAEALTIVLGGVDRTIDVGRARITERPPGEEPPSDVDDDTAHIFLVIGGLGFDAAMVADADDQLKARMGWVAYFLAGARHLHGRRMRATITIDDTDPVEARLRSVMVGNCGRLPGGITLLPDAVIDDGVLDVAAIDTRGGLAGWAQLFGEVVAQGMGVHNEARIKIGRIDHTRARRVQIRVDGGEQAQVDGDVLGKAVAMETWVEPGVLVVRTAAPGPT0024345_188DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029NANA
AK018_009634698hypothetical proteinGTGCGTCCCGTCCTGCGAGCCCTCGCTCTCGTCGTCAGCGTGGCGGCGCTGTGCGGGCTCACGCTCGCGCCGTCCGCCGCGGACACCGACGACGGCGCGTCCCCGCCCGACAGCCCCCTGGTCCTGGCCGGGGTGTCGGGACTGCAGTGGTCCGACGTCGACCCGTCGCGCACGCCGCACCTGTGGCAGCTGATCGGCGGCGGGTCCGTGGCGTCGGTCGCCGTGCGCACCCTCACCCCGACGTGCCCGCTGGACGCCTGGCTCACCATGTCGGCGGGCAGCCGCGTCCGCACGGGACCGACGGTCTCCGCGGACACGCCGGAAGCCACCGACGACACCCCGGCTCCCGGGGCCGACGACCGGGGCAGCACGGGCACCGGGTGCACGGACGTGCCCGTGCCCCGCACCGACGGCACGACGACGGACGGCGCGGCTCCGGACGGCGTCCCCCCGACGGCGACCGTCCCCGGCTGGGACGGGCTCTTCCCGGACGACGGGCTGGTCCCCACCGGCACCACGCCGGGCGCGCTCGGCGACCTCGTCGACGTCGCGGACACGTGCGCGACCGCCGTCGGGCCCGGGGGCGCGGTCGCCCTCGCCCGGGACGACGGCTCGGTCGCCCGCTACGTGGCCGACGTCGACGCCGTCGACGCCGCCCTGGTGGCCGCCTGCCCGGCCACCGTGGTCGACCTGGGCATGCTGCCCGACGACGCCACCGAGCGCGGCGCCGCCGTCCGCGCCGTCGACCGGCAGGTCGGCGCCCTCGTCGACACGCTGCCCGCCGGGGGTCGGCTCGTGGTCGCCGGCATCTCCGACACCCCGCAGGGCCCGTCCGACCTGCAGGTCGCCGTCGACTGGACCGCTCCGGGCGGTGAGGCCACCTGGCTCACCTCGACGTCGTCGCGCTGGGCGGGCGTCGTCGTGCTCGCCGACCTGGGAGCGACCGTCGCGGACACCGTCACCGGCGGTGCCCTGTCCGGCACCGCGGCGAGCACCGGGCCGGACGGCAGCGGGTCCGAGAGGTCCGCAGGGCCCGACGGCGGCACCGCCGAGGACGAGGACGACCCGCTGACGCAGGCGCTCCTGCCCTTCACCGGCTCACCGCTGGAGCGCGGCGACGAACGCCGCATCCCCGTGTCCACCACGGTGGAGAACCGCCAGTACCTCAGCGTCCTGTCCGAGACGGTCCCCCGCCTCGCCCCGGCGCTGCTGGGCCTCGTGGCGCTGACCGGGCTGGTCGTCGCCGCCGCGCTCGTCGTCGGACGGCGTCGCCGCGCCACCGGGGACGACGCCGGGCACGACGGCGCCACCCGGAACGACGACGCGCCCCGGAACGACGACGTCCCTGCCGCCCCGCCGTGGCCGTGGCGCCGCGTGGCGCTCGCCGCCCTGACGGTGGCCGCGAGCCTCCCGGTCGCGGCCTCGCTCGCGACGCTGACCCGCTGGTGGGCGTGGCCGTCCCCCGTGATGACGCTCCTGCTCGGTCTGACGGTCGCCGCCCTGTCCACCGCGCTGGTGGCCTGGTGGGCGCGTCGGCTGCTGCCGCCGTCCCCGTGGCGGCTCACCACCTGCCTGGCCGCGGTCACGTGGGTGGTGCTCACCGTGGACGGGCTGACGGGCACCACGCTGCAGCAGGGGTCGCTGCTCGGCCCGTCCCCCTCTCTCGGGGCACGTTTCTACGGGTTCTCCAACACGGTCTTCGCCGTGTACGCCGTCGCCGGGCTGCTGCTGGCCGCGGGCCTGGCGGCCGCCGCGCGGGCCCGGGGCGCGTCGGCCACCCGGGCCGCCGCCGTCGCCGGGGTGATCGGCGTCGTCACCATCCTCGTCGACGGCCTGCCCCCGTTCGGCGCCGACCTCGGTGGCATCCTCGCGCTGGTGCCCGGGTTCGCGGTGCTGGTCCTGGGCGTCGCCGGCGTGCGGGTGACGTGGCGGCGCGCCGTGCTGCTCGCCGCCGTCACCGTCGGGGTCGTCGTCGTGGTGGCGATGGCGGACTGGCTGTTCGGCGGCCCGAGCCACCTGGGTGCGTTCGTGCAGTCCGTGCTGGACGGGCAGGCCCTGGGCATCGTGGCCGGCAAGGCCGCCGGCGCGTGGGCGACGATCGCCAACCCGGCCGGCGCCGCGGCCCTGGTGCTGTGCACGGTCGCGGCCTGGGCCGCCCTGCGTCCGGACATGTTCCGGCTCCCCGGCCTCGCGGAGGCCTACCGCGACGAGCCGCTGCTGCGCCGGCTCGTCGTCGCGCTCGTGGTGACGGCGGTCGTCGGCACCGCGCTCAACGACTCGGGCATCGTGGTCGCGTTCCTGCTGCTGACCCTGTCGGTGCCGGCGCTGCTCGCCGGGCACCTGGAGCACACCGGGTCGGGGTCCGCCGCCGCCGAGGCCGCCGACGCCTCGACCGGGACCGGCCCGGGGATCCGCCGGCTGCCCACGATGCTGGCCGTGCTCAGCGGCGCGGCGCTCGTGCTGCTGCTGCTCGCCTCCACCGCCCTGAGCTCGGCCGGGCTGCGGTCCGGCACCGACGCGGCGGCCGCCGGCACCCAGGTGGCCCCCAGCAGCGCGGACGCCGTCGTCGACGACGGTCCCCTCGTCGTCGTCGGCACCACCGGAGTGCGCTGGGACGACGTCGCCGAGGGCCGCGCCCCCACCCTGAACGGGTTGCTCGCCGACGGCGCGGGGGCCGGCGGCGTCGCCCAGCCCACCGGGGCGGCGAGCCGGTGCGTCGTCGGCGGCTGGCTCGCGCTGTCCGCCGGGACGCTGGCCGAGGCTGCCACCGCGCGGAACGACGACGGGACGTGGCGGTGCGCGGACCCCCGGCCCGAGCCGACCGACGACGGCGGCGCGGCCGTCACCGGCTGGGACGGGCTCGTCGAGCTGCAGCGGGACTCGGCCTACCAGGCCCGGCTCGGCGCCCTCGGCACGCAGCTCGCCGGCGCCGACTGCGCGACCGCCGTCGGCCCGCGGGCCGCGCTCGCCCTGGCCGACACCGACGGCACGGTGGCCCGCTACCGCACCCTGGACGCGGCGACCACGTTCGGCGGCGACGCCTACACCTGCCCCGTGACCGTCGTCGACGCCGGCGACGCCACCGCGCCGGCCGCCGACCCCGACGCCACCGCCGCGGAGCGCTCCGCAGCCCGCGAGGCCGAGCACGCGGCCGCGGTCGCCGACGTGGACGCCACCGTCCGGCAGGTGCTGGCCACCGCCCCGGTGACCGCCACGGTGCTGGTCGTGGACCTCGCGGGCCAGCCCGGCACCCGTCCGGTGCTCGGGACCGCGCTCGTGCGCGCCGGGACGGACGGACCGGCCCAGCCCTGCTTCCTGACCAGCTCCGCCACGCGGACCGACGGCGTCGCCCGCGTCCTCGACGTCCCCGCCACCGTCCTCGGGGCCGCCGGGCTCACCCCGGCCGCACCCGTGTCCGACACGCCCGTGGCGTGGGGGTCGCCGCGCCCCCAGGACAGCACCGCCACCGCCGACGAGCTGGCCGACCTGACGACCCTCGACCACGCCCGACGCGGCATCTACTCGGCGTTCGTCGACGCCCCGCTCTACGCGGCGCTGGCGCTGGCGGCCGGGTGCCTGCTGCTGGGCCCCCGGCTGGCGCGGGCCGTGGGCGCCCGGGCCGCGTCCCGCCGTCGGACCGCGTGGGCCTGGGCGCGTGGTGCCGCCCTGGTGCTCGCCGCCCTCCCGACCGGAGCGTTCCTCAGCTCGCTGACGGGCTGGTGGCGGTTCGAGCAGCCGACGCTCGCCCTGGTCGTCTCCGCGCTCGGCACCACGGCGGTGGTGGCGTCGGTCGGTGCGCTCGCGCCGCGGCGTCCCGCCTGGCTCGCCCCGGGGATCATCGCCGGGATCACGTTCGCGGTGCTCACGCTGGACGCGCTCGTCGGCACGCCGCTGAACCGGGCGAGCCCGCTGGGGTCCGCGCCGACGTTCGGTGCGCGCTTCTACGGGTTCGGGAACCCGGCGTTCTCCGTGTACGCCGTCGCCGCCCTGGTGGCAGCCGGCGCGCTGGCGCAGCTCTTCGTGAACCAGGGGCGGCGGCTCGTCGCGGCCGCCGCGGTCGCGGGCGTCGGGGTCGTCGCGATGCTGGTGGACGTGTGGCCGACCCTCGGCGCCGACCTCGGGGGTGGCCTGGTGATCGCTCCCGCCTTCGCGGTGCTGGTGCTGGCGGCCACCGGTGCCCGGCTGACGTTCCGGCGGTTCGTGGCCGTCGCGGCGGCCGGCGTCGGCGTCGTCGCGGCCGTGGGTGTCCTCGACTGGTTGCGGCCGCCGGACGAGCGGTCGCACCTGGGCAACTTCGTGGCGCAGGTGATCGACGGCGAGGCCTGGGAGACGCTGCTGCGCAAGGCCGGCTATGCGCTGCGGTCGGTCCTCGGCGGTGCGCCGGTGTGGCTGACGCTCGCGGTGCTGGTGGCGGCGGCGCTGCTGCTGTTCGCGCCGCGGCGGTTCACCCCGGGCTGGTTCGCCCGCACGGAGGAGGACTGGCCGATGCTGCGGTCGACGGTGCTGGCGATCTGGATCGTCTGCGTCGCCGGATCCGTCGTCAACGACTTCGGGGTGCGGATCGCGGCGATCGCCCTGGTGCCCGCGGTCCCCCTGCTGACGGTGGCGGTGCTGCACGCGCTGTGGCCGGCGTCGGACGCGGACGGGTTTGCCCCGGCCGGGAGGCGTGACGATACGCTCCGCCGGGGCGGGTCCTGAMRPVLRALALVVSVAALCGLTLAPSAADTDDGASPPDSPLVLAGVSGLQWSDVDPSRTPHLWQLIGGGSVASVAVRTLTPTCPLDAWLTMSAGSRVRTGPTVSADTPEATDDTPAPGADDRGSTGTGCTDVPVPRTDGTTTDGAAPDGVPPTATVPGWDGLFPDDGLVPTGTTPGALGDLVDVADTCATAVGPGGAVALARDDGSVARYVADVDAVDAALVAACPATVVDLGMLPDDATERGAAVRAVDRQVGALVDTLPAGGRLVVAGISDTPQGPSDLQVAVDWTAPGGEATWLTSTSSRWAGVVVLADLGATVADTVTGGALSGTAASTGPDGSGSERSAGPDGGTAEDEDDPLTQALLPFTGSPLERGDERRIPVSTTVENRQYLSVLSETVPRLAPALLGLVALTGLVVAAALVVGRRRRATGDDAGHDGATRNDDAPRNDDVPAAPPWPWRRVALAALTVAASLPVAASLATLTRWWAWPSPVMTLLLGLTVAALSTALVAWWARRLLPPSPWRLTTCLAAVTWVVLTVDGLTGTTLQQGSLLGPSPSLGARFYGFSNTVFAVYAVAGLLLAAGLAAAARARGASATRAAAVAGVIGVVTILVDGLPPFGADLGGILALVPGFAVLVLGVAGVRVTWRRAVLLAAVTVGVVVVVAMADWLFGGPSHLGAFVQSVLDGQALGIVAGKAAGAWATIANPAGAAALVLCTVAAWAALRPDMFRLPGLAEAYRDEPLLRRLVVALVVTAVVGTALNDSGIVVAFLLLTLSVPALLAGHLEHTGSGSAAAEAADASTGTGPGIRRLPTMLAVLSGAALVLLLLASTALSSAGLRSGTDAAAAGTQVAPSSADAVVDDGPLVVVGTTGVRWDDVAEGRAPTLNGLLADGAGAGGVAQPTGAASRCVVGGWLALSAGTLAEAATARNDDGTWRCADPRPEPTDDGGAAVTGWDGLVELQRDSAYQARLGALGTQLAGADCATAVGPRAALALADTDGTVARYRTLDAATTFGGDAYTCPVTVVDAGDATAPAADPDATAAERSAAREAEHAAAVADVDATVRQVLATAPVTATVLVVDLAGQPGTRPVLGTALVRAGTDGPAQPCFLTSSATRTDGVARVLDVPATVLGAAGLTPAAPVSDTPVAWGSPRPQDSTATADELADLTTLDHARRGIYSAFVDAPLYAALALAAGCLLLGPRLARAVGARAASRRRTAWAWARGAALVLAALPTGAFLSSLTGWWRFEQPTLALVVSALGTTAVVASVGALAPRRPAWLAPGIIAGITFAVLTLDALVGTPLNRASPLGSAPTFGARFYGFGNPAFSVYAVAALVAAGALAQLFVNQGRRLVAAAAVAGVGVVAMLVDVWPTLGADLGGGLVIAPAFAVLVLAATGARLTFRRFVAVAAAGVGVVAAVGVLDWLRPPDERSHLGNFVAQVIDGEAWETLLRKAGYALRSVLGGAPVWLTLAVLVAAALLLFAPRRFTPGWFARTEEDWPMLRSTVLAIWIVCVAGSVVNDFGVRIAAIALVPAVPLLTVAVLHALWPASDADGFAPAGRRDDTLRRGGSNANANANANA
AK018_00964420lpxD_1UDP-3-O-(3-hydroxymyristoyl)glucosamine N-acyltransferaseGTGCGACGCATTCCCCGGAAGGTCGAGATCGAGGACGACGCCGGCAACGTCACGCGCTACGTGCGGCACGACAACGGGCAGGGATACGTGTCCCCGCGGGCGTCGGTGCACCGTGACGCCACCGTCGAGGTCGGCGCCTACGTCGAGGCAGGCGCCCAGGTCGGCGCGCTCGCGCGCATCGGCCGGTACAGCTGGGTCGACGTCGACGCCGTCGTGCAGACCGGCGCGCGGATCGACGACGGCGTGCACGTCGGCATCGGCGGCGTCGTCGGCGACGGTGCCCGCGTCGGCGCGCACGCACGCCTCGGGGCGGAGACCCGCGTCGAGGCCGGCGCCGTGGTGCTGCCCGACGAGATCGTGCCCGAGGGTTCCTCGGTGCGCGCCGAACGGCGCCGGCGGGACTTCACCGCCGCGGCCTGAMRRIPRKVEIEDDAGNVTRYVRHDNGQGYVSPRASVHRDATVEVGAYVEAGAQVGALARIGRYSWVDVDAVVQTGARIDDGVHVGIGGVVGDGARVGAHARLGAETRVEAGAVVLPDEIVPEGSSVRAERRRRDFTAAANANANANANA
AK018_009659075hypothetical proteinATGCTGGGACGCCGGACGGCGGGGCAGTCACGACGTCATCCGAAGCGGCGCGGGGGGCGCCGGTACTCGCGGGGCTGGTCGCTGCTGGGAGTGTTCGCGCTGACGCTCCCGCTGGTCGCCGTGCCGGCGACGACGGCGTCGGCGGCGTCGTGGCAGGTCGGCAAGGCCGAGCTCACCTCGGGGCCCTACCAGCCCGGCGAGACCATCACCTGGGCCGTGACGATCTCCTGCTCCGACCCGAACGCGGACCCGTGCGTCCCCACCACGTTGACGGACACGTTGCCGGAGTACGTCGATCTGGTGAGCGCGTCGATCCAGAACGAGGCCGGGGCGACCGGAGGGTCGCTGGCGATCGACGAGGACAGTGACACGGTCACCTACTCGGCGGACAGTGTGAACAACGGTGGCCAGGTCCAGATTCTCGTCACCGCGCAGATCACCGACGACATCCCGTACGCGATGAGCGGCGAGACGATCACGAACACCGCGACCGTCGTGTCCGACAACGCGCCCGAGCAGTCGGCCTCGGACGACATCGTCCCCGAGGTGCCGCTCAGCCTCGACTCCACCACGACGAAGACGATCGACCCCGACGGTGCGATCGCCGCACCCGGTACGCCCGCCACGGTGACCCTCGGCAGCACCAACGCGTCCAACGACCCGGTCGACTCTCTCGTGATCACCGAACCGACGGCCGGGACCGACCCCAACCCGTTCACCTACCTCGGCTTCACCGGCTGGGGCGCGGTGTCCTGGCCGGACGGCGCCACGGGAGCCGAGGTCACGTTCACCTGCGCCGGCGGGACGACCGAGAACGCGAGCACGACCGACGTCGACACGCTCCCGGATCCGCCGGCCGGTTGCGAGGTCGAAGGCTTCACGATCGAGTTCACCGGGGCCATCGAGATCGGCGCCTCGGCGTCGATCCCGTTCGACGTCGAGCAGACCGACGCCGTCACCACGCTCGAGGACGCCACCACGGTGACGGACGAGACGTCCTCGTACGTGACGCACGGTGACGACCAGTCGGACCCGGAGCCGGCGAGCGACACCTACGTCATCACACCGCCGAACAACTCCGTCGTGCCGAGCAAGTCGTTCGACCCGGCCGTGGTGAGCGCCGGAGACCCGACCACGGTGACCCTCGGCGCCGTCAACGAGGGCGACCCCACCACGTCGCTGTCGATCACGGAGCCCTCACCCGGTACGGACAGCCCGTTCGAGGGCGACGACCCGCTGACCTTCACCGGCTGGGGCGCCGACACCGACGGCGACGGCATCGGCGACGGCGCCGTGCAGTGGCCGGCGAACGCCGACGCCGCCAGCGTCACCTACACCTGCGCCGACGCCTCGACTCCGACGGTCGACGCCACGGCCGTAGGCACGTTGCCAGATCCCCCGGCCGGCTGCGACGTCGTCGGATTCACCGTCGAGTTCACCGGAGACATCGTCACCGGGGCCGAGGCATCCGTGCCGTTCACCGCGGACACCGACCCGGACCAGGAGACGGACGACGTCGTCCACTCCAACGAGATCACGGCGACCATCCCGAACGACTCCGAGACGGCGTCCGACGACCTGACGACCCTGACCGACCGCCTCGCGACCGAGACGACCAAGTCGATCTCGCCGTCGACCATCCCGGCATTGCCCGGTCAGACCGTCGTCGTCGGGTTGCCGACGCAGCTCTTGCCGTTCGGGCCGGACGGCTCGACGACCAACGCCGACCAGATCGTGGTGCAGGACCCGACGGACACGGGGGACGCCGGCGAGTTCTGGGACAACTTCTCGGCGTCGTCGGTGCGGTCCACCGACGTACCCGCCGGCACGGAGCTGACGATCAACTACTGGAACGGCAGCGAGTGGGTCGAGGCCCCCGACTGCGGCAGCCCCGTCCAGGGCGCGGCGACGGTGAACTGCGCGCTGCCGGACGACGCGCAGGGCGTCCAGTTCGTCTACGACGACACGACCGGCAACGGGATCCCGCCGGGGACGTCGGTGTCTCCGAACTTTGTCGCGTCCTACGACGGTCCTCAGGACCGCGACGACCCGATCGCGAACTGCGGTGCGTCGAGCGCCGAGAGCGGTACGGTCGCCCCGACCGACCCGGCGGAGGCCTGCACGTCCGTCGACCCGTTCCCCGTGCCGACGAACCCCGGTGACCTCGACTTCATCGACAAGCAGTTCCTCGCGCCCGAGGGGCAGGACGGGACGCCGTACTCGGTGCGGGCTCGCACCCAGGACGAGATCACCGCGCAGATCACCTGGTCGACCAACGGGTTCGAGGGCGTGGACCCGATGGTGATCAGCGACATCGCCGACCCGATCGCCGCGGACGACCCGGCCATCGAGGGCTCCTTCTACGACGCGTTCGACCTGGTGGAGATCACGGTCGACGACCCGCTGCTGCAGTACGACCAGGTCGAGAGCGTCGAGCTGTTCATCGACGGGGCCTGGGTGGAGGCGTCCGGGGACCCCTGTCCCTGCGACGGGTCGTTCCCGGGCTACACCCTGACGGACGCCGAGAGCGCCGCGGCGACCTCGGCGCGGCTGACGTACACCGAGTCACCGACCCGCGCCGAGTTCCCCGCCGACCCGACGATCCCGGCCGCGGGAGAGGGAGTGGCCCGTTCGACGCAGGGTGACGGACGCCACGTCGACCTGACGTTCCGGCTGCGCGACGACCGCCGCAGCGGCGGCCCGGCGCTGGGCCGCGAGCAGGGCGAGATCTACAACACCGCCGACCCCGGACTGGTGAACGACACCGCCCGTGGCACGGCCACCTTCCAGGGGATCGAGCGCACCGACGTCGACGACGACGACGTGCTGATCCTCGACCAGCCCATCAACGTCGGGATCACCAAGAACTGGGCGGGCGGCCCGCTCTCCGTCCCGCCCGAGGGCACCCCGTACGACGACTTCCCGACCACCGTGGTCACGGTGACCGCGTCGAACAACTCCGTCGCCAGGGTGGACGAGCTGCGGATCGCCGAACCGTCGACGGCCAACGCGGGGAACGTCGTCGAGCCGGAGACCGCCGAGGGGACGAACCCCTTCGACGCCTTCACGCTGACGGACATCATCGCCGTCGACCCGCCGGACGGCACGGAGGAGACGGTCGTGGCGCTGACCCGGTGGGACGGCGCCGCCTGGACCACGGTGGAGTATACGGAGGCCGAGGCCGAGGGGCTCGGTGCCGCGGACCTGACGGACGTCGTGGGGGTCGAGGTGACCTTCGACGGTCGCATCGCGTCCAGCGAGCTCGGCGACAACGAAGGCGTCCTCGAGATGCGGCTCAAGCTGCGCGAGCTCGACCGGTACACGGGCGACCGGGTCGAGGTGGACCACGACCCCAACCCGGTGCCGAACAGCGCCGGCGCCGAGGTCTCCGACCCGGGCGGCACCACCGACCAGACACCGCAGGCCTGGGACACCGACGACATGGAGCTCCAGGACGCCGAGATCTCCATGGTCCAGACCAAGTCGTTCACCCCGGCCTCCGTGGTGGAGCCCGGGTCGGACGCCGAGGACAACCCCACGTCGGTGCTGGAGGTCACTGGCCAGCCCACCGGACCGTCCCGCGCCGTGCAGATGGTGCTCACCGACGTCGACGGCAGCTTCTGGAACCAGTACGACCTGGTCGACCTCGCCGACACCACGTTCCGCGCACCCATCGACCAGGTGCAGATCGACGCCTGCACCGGCGGCACCTACGACGCGGCGAGCGACACGTTCGCCGACTGCACGTGGACCGAGGGGACGCCGTCGGACGCCTTCGCCCTGCCCGCAGGGGTAGACCCGGCCGACGTGGTGGGCCTGCGGTTCACGTTCACCAAGGCGGACGGCACGATCTGGGAGAACCCCTCCAACCCGACCCAGGTGGTGCACCTGACCGTGCAGGTGCGGGACACTTTGCGGTCCGACCCGGGCACCCTGGTGCCGACGGACCTCGAGGCCAACGACCCTGCGCCCGGTGAGGAAGCCCCCGGCGTCGCGACCAACGACGTCGCCGCCACCGTGACCGGGGCGGACCTCGTGTTCAACCCGGACGACCCGCAGAACCCGATCCCCGTGTCGAGCGAGGCGGACGCCACCGGGACCATCACCTATGAGCACGCCGAGAACGGCGTCCAGGTCGTCAAGGACTTCGACACCGACATCAGCGGTGGGACCAAGCCGCCGGGCGTCCCGTTCCCGATGAACATCACCGTCACCAACGTCGGCAACCGGCCGATCGTCGACCCGGTGATCACCGACCCGATGCCCACGCAGGCCGACGGGCCGGACCTGAGGCTCGCGGACGTCGCCGAGCCGTACAGCTATGCGCTCACCGAGCCTGCAGAGCCTCCGCCCGGGCAGCCCAACGGGCCGCAGATGCCGACCGACCCGTCCGAGGTGACGGTGGATCGCAGCGGGAACATCACGAACCTCGAGTGGACGTTCCCCGAGGGCACCGTGCTCGAGGTCGGCCAGACGTACACGATCACCGTGCAGGTGATCTTCCGGACCACCCTCGAGGCCAACACTCTCGTGGAGAACACGGCCGGGGTCACCGGAGACAGGCCCTGGGACGTCTGTCAGACGCTGTCCGGTCAGGACGGAAGTGTCGTCGACGGCCGGCTCGACGAGCAGACCGGCGCCTGCGAGGCCGACGCCGACGTCACGCCCATCCCCTCCGGTGTGCTCGCCGAGTCCAAGCTTGTCCGGGCGACGAGCAACGAGTACCCGCTCGGTCTCATCGTCGACCCCGACCAGCCGGGCAGCGTGACACCCGAGGAGTGCTCGCCGAACGCCGCCGGGTTCTACGCCTACCCGTGCACGCCGGTGGTCCCGCCGGGAGAGAACGAGACCTGGCGGATCCGGGTCGACAACGTCGGTAACCTCCCGATGGACAAGGTCGTCATCTACGACCGCCTGCCCACCCCGGGGGACACGGCGTCGGATCCCACGAGCAGCTCGGAGCGTGGTTCGCAGTGGTCGCCGGTCCTCACCAACGACCCGCCGCCGACCGTCGTCAACGCTCCGGCGGGCAGCACGACGACGTTCTACTACACGACGACGGACGACTACTGCCCGGACGACCTCACCGACCCGCTCAACGAGCCGACGTGCTCCGACGACCCGGCGGCCGGCGGCTGGGCCGAGCTCACCGCTGACACCACGGACGAGGTCTACGAGCAGATCGTGGCGCTGAAGGCCGTCATCGAGATGGCGGACGGCAACCTCTTCCAGCCCGGTGCCTACCTTGCCCTGGAGGGCACGTCGACCACGCCGCCCGAGGCTCCGGAGGCGGGCGACGAGGCGATCGCCTTCAACTCGGCGGCGACCTCCGGCGTCGTCGTCACCCCGGCCGGGAGTCGGATCAGCTCGCTGTCCACCGAGGGCACCAAGGTGGGCGTCGCGACGGCCACGGGCCCCCTCGAGGTGAACAAGCTGGTCGCCGGCCCGGCCGCGGACCTGGCTCCCGACTCGTTCGAGATGACGGTCACGTGCACGGCCGCGGTCGGCTCGTGGCTGGAGACGGAGCTCGACCCCATCACCATCACCGTCACCCAGGGCACGCCCACCCTCGTGGAGAACCTGCCTTTCGGTTCGGAGTGCACCCTCACCGAGGACGCCTCGGGTGGTCAGAGCGAGCTGGTGGTCGACACGGTGACGATCGACAGCCAGGACCCGGATGACCCCACCACGATCCTCGCGACCAACTATTACAACGTGTCCACGATCGAGCTGTCGAAGGAGGTCGTCACGGACGCCGTCGACCAGGACGGCGAGCCGATCGGATTCGGTCCCTTCGAGGTCGAGGTGGAGTGCACGTTCCTGGGCGAGACCGTCCTGGCGGACGGCTACACCGAGAGCCCCATGGTCGTCGAGATCGTCGACGGCGAGACGGTCGAGCTGACCGACCTGCCCGTCAACTCCGAGTGCACCGTCACGGAGACCGAGACCGGCAACGCGTCGTCGACCACCATTACGGTGCGGCACGGCCTGCAGACGCCCGAGGTGTTCGAGGGCACCGTGGGGGTCATGGACCTGCTCGGGGACTTCGTCAGCATCCCGCGCAACGCGGTCACGGTCACGAACTACTTCGACGTCGGCTCGCTGCAGCTGCTCAAGGAGGTGACGGGCAGCGGCGCCGACGACTTCGGTGACGGGCCGTTCGTCTTCGACGTCACGTGCACCTATGACGACGACGGTGACGGCGGTGCCGACGCGCGTACGGTCTGGGCCGACACGGTCAGCCTGGGCGGGGGTAACCCGCTGGAGGTGACGATCGAGAACATCCCGACAGGTGCGGTATGCGAGGTCGTCGAGACCGACGACGGCGGTGCGACGGACAGCAGCCTCGACCCCGTCGACGGCGTCGTCACCATCGGCTCGGACGACATCGTCGAGGTCACGGCGACCAACGAGTTCGACCTCGGTACCGTCCAGGTCGACAAGGAGCTCGCCGGACTGGGTGCGCTGTACGGCCCTGGACCGTTCGAGGTCTCGATCGAGTGCACCTACCAGGGCGATCCGCTTGAGATCCCGGGGGGCGCCGTGCGGACGCTGAACCCCGGTGACCCGGTGCTGTACGAGGGGCTGCCCGTGGGGTCGGAGTGCACGGTCACCGAGACCGGCACCTTCGGGGCCACCTCGACGTCGATGAGCGTCGACGGCGGTGATGCCGTGGACGGCACGTCGGTGGACGTCGTCGTCCCGCCGGCCACGGACGGTGGGCCGACGGCGGTCGAGGTGCTGGCGACCAACACGTTCACGACCGCTCCGCTGGCGATCACCAAGGTGGTCGACGGCGAGGGCGCGGCCTTCGCTCCCGCCATGCCGGACCTGCCGGAACGCCCGGCCGTGCCCGACCCGCCGTACACCCCCGAGGTGGTCGAGGCCTTCCTCGACGAGCTCGAGGCCTACCTGGCCGAGGTCCCGTTCGAGGAGTTCCCTTACGAGGCCTCGCTGGCCTGCACGTTCGACGAGGACGGCGACCCGGGAACACCGGCGCTCGACGTGCCGATCCCGGGTGGCGAGACCCGCCGCTTCGGTCCGGGCTTCCCGGCGCTGTACTTCGGGCTGCCGCTCGGGGCCGAGTGCACGGTCACCGAGACGGACATCGGCGGCGCCACGGAGGTGACGATCGAGCCGGTGCCGGTCGAGATCGTCGAGACGCAGGGCCCGCTGACGCCGATCGAGGCGACCGTCACCAACACCTACGACGTGGGCCAGTTCACGGTGGAGAAGGTCGTGGACGGCGACGGCGCCGAGCTGTGGGGTGCGGGACCGTTCGAGGTCAGCGCCGCGTGCACGTTCCTCGGGGAGGAGATCGACGTCCCCGGAGGTGCGACCCGTCCGGTGGCTCCCGGTGAGCCGGCCGTCTTCGACGGTCTGCCCGTGGGGGCCGTGTGCACCGTGAGCGAGTCGGACGACGGCAGCGCCACCGACGTGACGATCTCCTCGGCGGTCGAGGACGGCACGCCGGGGCAGCTGGTCGTCCCCGAGGCCGGGGACACGAGCGTCGGCCTCACGGTGACGAACACGTTCGACCTCGGCGAGGTCGTCGTGGAGAAGGCCGTGGACGGCGACGGCGGTGAGGCCTGGGGCGCCGGGCCGTTCGACGTCGAGCTGGCCTGTACGTTCAACGGCTCGGACATCGAGATCCCCGGTGGTGCCGTGCAGACCGTCGAGCGCGGCGGGTCGGTCACCTACACGGACCTGCCGGTGGGGGCCGAGTGCTCCGTGAACGAGCCCGACGACGGCAGAGCGACCTCGACGTCGATCAGCCCGGAGTCGGTGACGGTCGGGCCGCTCGACGAGGACCCGGTGACGTTCACCGTGACGAACACGTTCGATCTCGGCTCGGTCGAGGTCGACAAGGAGCTCGCGGGCCTGGGCGCGCTGTACGGTCCGGGACCGTTCGAGATGACCCTCGAGTGCACCTTCAACGGCGAGCAGATCGAGATCCCCGGTGGCGCGGTCCGCGTGCTCGTCCCGGACGAGACGGTCGTCTACGCCGGACTGCCGGTCGGCGCCGAGTGCACGGTGTCGGAGACCGACACCTTCGGCGCCTCGTCCGTGGAGGTCGCGGTGGACGGCGGCGACCCGGTGGAGTTCGGCGACGGCGAGACCCCGTCGGCGGACGTCGTGGTCCCCGGAAACGACGGCGACGGTCCGACGTCGGTGCAGGTGTCGGTGACGAACGTCTTCGACACCGCGCCGCTGGTGATCCGCAAGACGGTCGACGGCGACGCGGCCCAGTTCGCGCCGGCCATGCCGGAGCTGCCGGGCCTGCCCGAGCTCCCGGCGGGCCCGATCGGCGTCGACGAGCTGGAGGAGCTCCTCGCCGAGGTCGAGGGGTTCCTGGCGCAGGTGCCGTTCGAGGAGTTCCCCTACCAGGTGTCGCTCGCCTGCACCTACGACACGGGCACCTCCGTGGTCGACGTGCCGATCCCGGGCGGCGCGACCCGCGCGTTCGGTCCGGGCTTCCCCGGCCTGTTTTTCGGGCTGCCGGACGGTGCCGAGTGCACCGTGACGGAGCCGGAGGCCGGCGGCGCCACGTCGGTGGCCTTCGACCCGGAGACGGTCGTCGTGGACGGGCAGGCCTCGGTGCTTGAGCCGATCGAGGCGGTCGTGACGAACACCTACGACGCCGGCGCGATCATCGTGGACAAGGAGGTCGTGTTCACCGGCGCGTCCACCGACGTCGGGCCGTTCGAGGTGACGCTGGCCTGCACCTTCCAGGGGGAGCAGATCGACATCCCGGACGGCGCGGTCCGTGAGCTGTCCCCGGGCGACCCCGTCACCTACGACGGTCTGCCGGCGGGCGCCGACTGCGTCGTCACGGAGTCCGACGACGGCGGCGCGGTCTCCTCGGAGGTCTCGAGCGTGGACGGTGGCGAACCGGGCGCGGTGACGATCGCCGCGGGCGGGCTCGCCTCGGTCACGGTGACCAACACGTTCGACGCGCCGCCGCCGGGTCCGCTGCCGCGCACGGGTGCCGACGTCGCCGCGTGGATCGGCGTGGCGTTGCTGCTGCTGGTCTCGGGCGCCGCGCTGCTGGCCGTCCGCCGTCGGACCGCCTGAMLGRRTAGQSRRHPKRRGGRRYSRGWSLLGVFALTLPLVAVPATTASAASWQVGKAELTSGPYQPGETITWAVTISCSDPNADPCVPTTLTDTLPEYVDLVSASIQNEAGATGGSLAIDEDSDTVTYSADSVNNGGQVQILVTAQITDDIPYAMSGETITNTATVVSDNAPEQSASDDIVPEVPLSLDSTTTKTIDPDGAIAAPGTPATVTLGSTNASNDPVDSLVITEPTAGTDPNPFTYLGFTGWGAVSWPDGATGAEVTFTCAGGTTENASTTDVDTLPDPPAGCEVEGFTIEFTGAIEIGASASIPFDVEQTDAVTTLEDATTVTDETSSYVTHGDDQSDPEPASDTYVITPPNNSVVPSKSFDPAVVSAGDPTTVTLGAVNEGDPTTSLSITEPSPGTDSPFEGDDPLTFTGWGADTDGDGIGDGAVQWPANADAASVTYTCADASTPTVDATAVGTLPDPPAGCDVVGFTVEFTGDIVTGAEASVPFTADTDPDQETDDVVHSNEITATIPNDSETASDDLTTLTDRLATETTKSISPSTIPALPGQTVVVGLPTQLLPFGPDGSTTNADQIVVQDPTDTGDAGEFWDNFSASSVRSTDVPAGTELTINYWNGSEWVEAPDCGSPVQGAATVNCALPDDAQGVQFVYDDTTGNGIPPGTSVSPNFVASYDGPQDRDDPIANCGASSAESGTVAPTDPAEACTSVDPFPVPTNPGDLDFIDKQFLAPEGQDGTPYSVRARTQDEITAQITWSTNGFEGVDPMVISDIADPIAADDPAIEGSFYDAFDLVEITVDDPLLQYDQVESVELFIDGAWVEASGDPCPCDGSFPGYTLTDAESAAATSARLTYTESPTRAEFPADPTIPAAGEGVARSTQGDGRHVDLTFRLRDDRRSGGPALGREQGEIYNTADPGLVNDTARGTATFQGIERTDVDDDDVLILDQPINVGITKNWAGGPLSVPPEGTPYDDFPTTVVTVTASNNSVARVDELRIAEPSTANAGNVVEPETAEGTNPFDAFTLTDIIAVDPPDGTEETVVALTRWDGAAWTTVEYTEAEAEGLGAADLTDVVGVEVTFDGRIASSELGDNEGVLEMRLKLRELDRYTGDRVEVDHDPNPVPNSAGAEVSDPGGTTDQTPQAWDTDDMELQDAEISMVQTKSFTPASVVEPGSDAEDNPTSVLEVTGQPTGPSRAVQMVLTDVDGSFWNQYDLVDLADTTFRAPIDQVQIDACTGGTYDAASDTFADCTWTEGTPSDAFALPAGVDPADVVGLRFTFTKADGTIWENPSNPTQVVHLTVQVRDTLRSDPGTLVPTDLEANDPAPGEEAPGVATNDVAATVTGADLVFNPDDPQNPIPVSSEADATGTITYEHAENGVQVVKDFDTDISGGTKPPGVPFPMNITVTNVGNRPIVDPVITDPMPTQADGPDLRLADVAEPYSYALTEPAEPPPGQPNGPQMPTDPSEVTVDRSGNITNLEWTFPEGTVLEVGQTYTITVQVIFRTTLEANTLVENTAGVTGDRPWDVCQTLSGQDGSVVDGRLDEQTGACEADADVTPIPSGVLAESKLVRATSNEYPLGLIVDPDQPGSVTPEECSPNAAGFYAYPCTPVVPPGENETWRIRVDNVGNLPMDKVVIYDRLPTPGDTASDPTSSSERGSQWSPVLTNDPPPTVVNAPAGSTTTFYYTTTDDYCPDDLTDPLNEPTCSDDPAAGGWAELTADTTDEVYEQIVALKAVIEMADGNLFQPGAYLALEGTSTTPPEAPEAGDEAIAFNSAATSGVVVTPAGSRISSLSTEGTKVGVATATGPLEVNKLVAGPAADLAPDSFEMTVTCTAAVGSWLETELDPITITVTQGTPTLVENLPFGSECTLTEDASGGQSELVVDTVTIDSQDPDDPTTILATNYYNVSTIELSKEVVTDAVDQDGEPIGFGPFEVEVECTFLGETVLADGYTESPMVVEIVDGETVELTDLPVNSECTVTETETGNASSTTITVRHGLQTPEVFEGTVGVMDLLGDFVSIPRNAVTVTNYFDVGSLQLLKEVTGSGADDFGDGPFVFDVTCTYDDDGDGGADARTVWADTVSLGGGNPLEVTIENIPTGAVCEVVETDDGGATDSSLDPVDGVVTIGSDDIVEVTATNEFDLGTVQVDKELAGLGALYGPGPFEVSIECTYQGDPLEIPGGAVRTLNPGDPVLYEGLPVGSECTVTETGTFGATSTSMSVDGGDAVDGTSVDVVVPPATDGGPTAVEVLATNTFTTAPLAITKVVDGEGAAFAPAMPDLPERPAVPDPPYTPEVVEAFLDELEAYLAEVPFEEFPYEASLACTFDEDGDPGTPALDVPIPGGETRRFGPGFPALYFGLPLGAECTVTETDIGGATEVTIEPVPVEIVETQGPLTPIEATVTNTYDVGQFTVEKVVDGDGAELWGAGPFEVSAACTFLGEEIDVPGGATRPVAPGEPAVFDGLPVGAVCTVSESDDGSATDVTISSAVEDGTPGQLVVPEAGDTSVGLTVTNTFDLGEVVVEKAVDGDGGEAWGAGPFDVELACTFNGSDIEIPGGAVQTVERGGSVTYTDLPVGAECSVNEPDDGRATSTSISPESVTVGPLDEDPVTFTVTNTFDLGSVEVDKELAGLGALYGPGPFEMTLECTFNGEQIEIPGGAVRVLVPDETVVYAGLPVGAECTVSETDTFGASSVEVAVDGGDPVEFGDGETPSADVVVPGNDGDGPTSVQVSVTNVFDTAPLVIRKTVDGDAAQFAPAMPELPGLPELPAGPIGVDELEELLAEVEGFLAQVPFEEFPYQVSLACTYDTGTSVVDVPIPGGATRAFGPGFPGLFFGLPDGAECTVTEPEAGGATSVAFDPETVVVDGQASVLEPIEAVVTNTYDAGAIIVDKEVVFTGASTDVGPFEVTLACTFQGEQIDIPDGAVRELSPGDPVTYDGLPAGADCVVTESDDGGAVSSEVSSVDGGEPGAVTIAAGGLASVTVTNTFDAPPPGPLPRTGADVAAWIGVALLLLVSGAALLAVRRRTANANANANANA
AK018_00966642hypothetical proteinATGGACCCCCGCCAGGACCGCGTCGCGCGTCTCGCACGCCTCGTCCTGCTGGCCTCGACCTCGTTCGGGTTCGCCGCGGGCGCGCACGTCGTCGGTGGGGGTGCCCTGCCGTCGGGGCCCGGCCTCCTCGTGGTCCTCGCGGTCACGCTGGCGGCCACGAGCGTCGCTGCCCGGTTCCGGGCCCGCGCCTGGTGGCTGGTCCCGTTCCTCGCCGGGCTGCACGCCGTCCTGCACCACGGGTTCATGCTGCTGGCACCCGGGGCGCACGGGACAGCAGCGACGTCCCACGCGGGTCACCACGCGCTCGACGCCCGCGGCCTGGCGGAGGCCGCCGCGCACGGCACGACGGCGGTCGCCGACGTCGCGCACGCGGGCCACGGCCTGGGCGCCGGGATGCTCGCCGCGCACGCGGCCGCCGTCGTCGTCACCGCCGTGCTGCTCAGCGCCGGGGAGCGCGCCGGACGCCTCGCGCACACCGTGTGGACGTGGCTGCTGCCCGCGGTGGCGGGCGTCTTCCGTCCCGCACCTCCAGCACGCACGGCGCCGGTACCGGCCGCCGCCCCCGCGCTGCCCCGCTGGGTCCTCCTGACCGCCGTGGCACCGCGGCGCGGTCCGCCCGTGCCCGCCGCGGCCCTCGCCTGAMDPRQDRVARLARLVLLASTSFGFAAGAHVVGGGALPSGPGLLVVLAVTLAATSVAARFRARAWWLVPFLAGLHAVLHHGFMLLAPGAHGTAATSHAGHHALDARGLAEAAAHGTTAVADVAHAGHGLGAGMLAAHAAAVVVTAVLLSAGERAGRLAHTVWTWLLPAVAGVFRPAPPARTAPVPAAAPALPRWVLLTAVAPRRGPPVPAAALANANANANANA
AK018_00967612hypothetical proteinGTGCACACCGTCCGCACGCGCACCGCGCGCACCCTCGCCCCCCTGACCGTCCTCGCCCTGACGGCCGCGCTCGCCGGCTGCGCCTCCGACGTCGAGGCCGGTGCCGACGACGCCGGCACCGAGCAGGCTGAAAAGGCCGAGCAGGCCGACGCCCTGTCCGTCACCGACCCGTGGGTCAAGGCCGTCGACGAGGGGATGACCGCCGCGTTCGGCACCCTCGTCAACGACTCCGACACCGACGTGGTCGTCACGTCGGCGCAGACCGACGTCGCCGGGATGGTCGAGCTGCACGAGGTCGTCACCGACGACAGCGGCTCGATGACCATGCAGGAGAAGGACGGCGGGTTCGTGGTCCCGGCCGGCGGGGAGCACGAGCTCGCGCCCGGCGGCGACCACGTGATGCTCATGGACATCACCGGCCCGATCGAGCCCGGCGTCGACGTCTCGGTCACGCTCGTCACCGAGGACGGCTCCGAGCTGGAGGTCACCGCCCCAGCCCGCTCCTTCTCCGGTGCGCAGGAGGAGTACGACCCCGAGTCCGAGATGGACGAGATGGACCACGACCACTCCGAGGACATGGACCACGACCACGAGGAGGACTCCGACTCGTGAMHTVRTRTARTLAPLTVLALTAALAGCASDVEAGADDAGTEQAEKAEQADALSVTDPWVKAVDEGMTAAFGTLVNDSDTDVVVTSAQTDVAGMVELHEVVTDDSGSMTMQEKDGGFVVPAGGEHELAPGGDHVMLMDITGPIEPGVDVSVTLVTEDGSELEVTAPARSFSGAQEEYDPESEMDEMDHDHSEDMDHDHEEDSDSNANANANANA
AK018_009681254efeN_1COG2837putative deferrochelatase/peroxidase EfeNGTGAGCGCCGACGACGAGCGGGACGTCCGGCCCGCAACGTCGTCCGGGTCGTCGCGCCGGTCGTTCCTGCGGGGCGGTGCCGCCGCGCTCGGCGGCGCCGCCCTGGCCCTCGGTGGTCGGTCGGCGTGGGACGCGGCCCAGGCGACCGAGGCTCCGGCAGCACCCCCGGCGGACGCCGACGGTCGGGCGACCGTCCCCTTCCGTGGCCCGCGTCAGGCCGGCGTCGACACCCCGCCGCAGTCGTTCGCGGCGTTCGTCGCGCTCGACCTGGCTGACGGCGTCGACCGGGACGCGCTGATCCGGCTCATGGGCATCTGGACCGACGACGTCGACCGGCTCGCGGCCGGGAGGGCCGGCCTGACCGACACCGAACCCGAGCTGGCCCAGGTGCCGGCCCGCCTCACGGTGACCCTCGGGTACGGCCCGGCGGTGTTCACCGCGGCCGGGCTGGAGGACCGCCGACCGTCCTGGCTGCGGCCGCTGCCCGCGTTCGAGGTCGACCGCCTCGAGGACCGGTGGAACGACGGCGACCTGATCCTGCAGGTGTGCGCCGACGACGAGGTGACCGTCTCCCACGCGGTGCGGCTGCTCGTCAAGGAGGCCCGCACGTTCACCACCGTCCGCTGGGTGCAGCGCGGGTTCCGCCGGGCGCCCGGCACCACGAAGCCCGGCACGACGATGCGCAACCTCATGGGCCAGGTGGACGGCACCCGCAACGTGGACACCGGCGTCGACCCGGACCTGGTGTGGCACGCCGACGCCACCGGCGGCTGGCTCGCCGGCGGCACGTCCATGGTGGTGCGCCGCATCGCCATGAACCTCGACACGTGGGACGAGCTGGACCGGGCCGGACGGGAGCAGGCCGTGGGCCGGCGCCTCGCCGACGGGTCCCCGCTGACCGGCACGGCCGAGCACGACGAGCCGGACCTGGAGGCCAAGGGCCCGAACGGGCTGGACGTGATCAACCCGATCGCGCACATCCGCCGCGCCCGTACCGAGAACGCGGCGGAACGGTTCCTGCGCCGGGCCTACAACTACGACGACGCGCCCGGCCCGGGTGAGCTGTCGGCGTCGGGCCTGGTGTTCGTTACGTTCCAGGCGGACGTGGACCGGCAGTTCGTGCCGGTCCAGCGCAAGCTCGACGAGGCGGACCTGCTGAGTATCTGGACGACGCCGATCGGGTCGGCGGTGTTCGCCGTCCCGCCCGGCGCCCGTGACGGGGAGTACCTGGGCCAGGCGCTGTTCGAGGCCTGAMSADDERDVRPATSSGSSRRSFLRGGAAALGGAALALGGRSAWDAAQATEAPAAPPADADGRATVPFRGPRQAGVDTPPQSFAAFVALDLADGVDRDALIRLMGIWTDDVDRLAAGRAGLTDTEPELAQVPARLTVTLGYGPAVFTAAGLEDRRPSWLRPLPAFEVDRLEDRWNDGDLILQVCADDEVTVSHAVRLLVKEARTFTTVRWVQRGFRRAPGTTKPGTTMRNLMGQVDGTRNVDTGVDPDLVWHADATGGWLAGGTSMVVRRIAMNLDTWDELDRAGREQAVGRRLADGSPLTGTAEHDEPDLEAKGPNGLDVINPIAHIRRARTENAAERFLRRAYNYDDAPGPGELSASGLVFVTFQADVDRQFVPVQRKLDEADLLSIWTTPIGSAVFAVPPGARDGEYLGQALFEANANANANANA
AK018_009691890yjcSCOG2015Putative alkyl/aryl-sulfatase YjcSATGTCGACTCCCCGCCCCGCATCGCCCACCGTCGCGCGCCAGCAGCAGGAGATCCGCGAGCGCCTCCCCTTCGACGACACCCAGGACTTCGACGACGCCTCGCGCGGTCTGATCGCCCGTCGCACGCCCGGCACGGTCACCGCCGACGACGGTCGGGTCGTGTGGGACGCCGACTCGTACGCGTTCCTCGACGGTGACGCCCCGGACACCGTGAACCCGAGCCTGTGGCGGCAGTCGCGGCTGGTCGTCGAGCAGGGGCTGTTCGAGGTGGTGCCGGGGATCTACCAGGTGCGCGGGTTCGACCTCTCCAACGTCACGTTCGTCGAGGGCGACACGGGCGTGGTGGTCATCGACCCGCTGATCTCCACCGAGACCGCCGCAGCGGCTCTGGAGCTCTACCGCGAGCACCGCGGTGACCGGCCGGTCACCGGCGTGATCTACACCCACTCCCACGTCGACCACTTCGGTGGCGTCAAGGGCGTGACCACGCAGGAGGACGTCGACGCCGGACGTGTCGCCGTCCTCGCGCCCGCCGGCTTCACCGAGCACGCCGTGTCGGAGAACGTGTACGCCGGCACGGCGATGTCGCGTCGGGCGGGCTTCATGTACGGGGCGGCGCTCGCCCGCGGGCCGCAGGGCCAGGTCGGCGCCGGCCTGGGCCAGACGACGTCCACCGGGACCGTCACCCTGATCCGCCCCACGCTCGACATCACGACGACGGGCCAGGAGGAGACCGTCGACGGCGTCCGCATCGTCTTCCAGTTGGCCCCGGACACCGAGGCACCGGCGGAGATGCTGTTCTACTTCCCGGACCACCGCGCCCTGTGCGCCGCGGAGGACGCCACCCACACCCAGCACAACCTGTTGACGCTGCGCGGTGCCGTGGTCCGCGACCCGAACTCGTGGTCGAGGTACCTCACCGAGACGATCGACATGTTCGGGCAGGAGCTCGAGGTGGTGTTCTCCTCGCACCACTGGCCCACGTGGGGTCGGGAACGCGCGGTGACCTTCCTCGAGAACCAGCGCGACCTGTACGCCTACCTGCACGACCAGACGTTGCGGATGCTCAACCAGGGCCTGACGGGGCCGGAGATCGCCGAGCAGATCCAGCTGCCGCCGGTGCTGGAGAACGCGTGGAACGCGCGCGGCTACTACGGCTCGGTCAGCCACAACGTCAAGGCGATCTACCAGCGGTACATGGGCTGGTTCGACGGCAACCCCGCGCACCTGTGGGAGCACCCACCCGTGGAGCGGGCGCGGCGGTACGTCGCCCTCGGCGGCGGCGCCGCCGCCGTCGTCGCCGGTGCCCGCGAGGCGTTCGACGGCGGCGACTTCCGGTGGGCGGCAGAGCTCGCGAACCACGTCGTCTTCGCTCAGCCGGATCATGCGGCGGCACGGGAGCTCCTGGCGGACACCTACGAACAGCTCGGGTACGGGTCGGAGAACGGCACGTGGCGCAACTTCTACCTGTCAGGGGCGACGGAGCTGCGGGAGGGACAGTTCGGGACGCCGACGACGACGGCGGCGCCGGACATCATCTCGAACCTCACGCCGCAGATGCTGTTCGACGCCCTCGCCGTCCGCATCGACGGGCCGCGGTGTTGGGACGAGTCGCTGACGATCGACGTGGTCCTCACCGACGTCGGCTCCCGGTATCGCCTCCGACTCCGGCACGGGGCGCTCACCTACAGCACCTCGGCACAACGCGGCGCGGCAGACGCCACCCTGACGGGGACGCAGGGAGCGCTGCCGGTGCTGGCCGGCGGGACCGTGACGTCGGAGGCGCTGGCTGCCGCCGGGATGGAGGTCACCGGCGACGGGAGCGTGATCGGACGACTTGCCGCGGTACTGGACGACGGCGACCCGGACTTCGCGATCGTCACCCCCTGAMSTPRPASPTVARQQQEIRERLPFDDTQDFDDASRGLIARRTPGTVTADDGRVVWDADSYAFLDGDAPDTVNPSLWRQSRLVVEQGLFEVVPGIYQVRGFDLSNVTFVEGDTGVVVIDPLISTETAAAALELYREHRGDRPVTGVIYTHSHVDHFGGVKGVTTQEDVDAGRVAVLAPAGFTEHAVSENVYAGTAMSRRAGFMYGAALARGPQGQVGAGLGQTTSTGTVTLIRPTLDITTTGQEETVDGVRIVFQLAPDTEAPAEMLFYFPDHRALCAAEDATHTQHNLLTLRGAVVRDPNSWSRYLTETIDMFGQELEVVFSSHHWPTWGRERAVTFLENQRDLYAYLHDQTLRMLNQGLTGPEIAEQIQLPPVLENAWNARGYYGSVSHNVKAIYQRYMGWFDGNPAHLWEHPPVERARRYVALGGGAAAVVAGAREAFDGGDFRWAAELANHVVFAQPDHAAARELLADTYEQLGYGSENGTWRNFYLSGATELREGQFGTPTTTAAPDIISNLTPQMLFDALAVRIDGPRCWDESLTIDVVLTDVGSRYRLRLRHGALTYSTSAQRGAADATLTGTQGALPVLAGGTVTSEALAAAGMEVTGDGSVIGRLAAVLDDGDPDFAIVTPNANANANANA
AK018_00970594yedY1COG2041Putative protein-methionine-sulfoxide reductase subunit YedZ1ATGGCTGTCTTCACCAGAGGCTTCGGCGGACGCCGGCCCGACAGCGAGCGTCCCGTGCCGCCCGGTCAGTACCTGACCGACGACTTCCCCGTCCTGTCGATCGGGCCGACGCCGAGCGTCGACACCTCGACCTGGCAGCTGACGATCCGCACCGAGGAGGGCGCCGAGCACCACTGGGACTGGGCGGCGCTGCAGGCTCTGCCGGCCGAGGACGTCACGGTCGACATCCATTGCGTCACCCGGTGGTCCAAGCAGGACACGCACTGGCGGGGCGTGCCCGTGGACGCGTTCTTCGCCGACGTGGAGACCGCGGCCGAGTACGTGGTCGCCCACTCGTTCGGCGGATACACCACGAACCTGCCGCTGGACGACCTGCTCGACGGGCGAGCCTGGGTCGTCACCGAGTACGAGGGCGAGCCGCTCGAGCCGCTGCACGGCGGCCCGGTGCGGCTGCTCGTCCCGCACCTGTACCTGTGGAAGTCCGCCAAGTGGCTGCGCGCCCTGACGCTGCACCTCGACGACGAGCCGGGGTTCTGGGAGCAGAACGGCTACCACCTGTACGGCGACCCGTGGGCCGAGCAGCGGTACGCGTGAMAVFTRGFGGRRPDSERPVPPGQYLTDDFPVLSIGPTPSVDTSTWQLTIRTEEGAEHHWDWAALQALPAEDVTVDIHCVTRWSKQDTHWRGVPVDAFFADVETAAEYVVAHSFGGYTTNLPLDDLLDGRAWVVTEYEGEPLEPLHGGPVRLLVPHLYLWKSAKWLRALTLHLDDEPGFWEQNGYHLYGDPWAEQRYANANANANANA
AK018_00971714hmpCOG1017FlavohemoproteinGTGAGTTCCTGGCACGCGGCCCAGGTGGTCCGTACCGAGCCCCTCGCCGCGAGCGCCCGCGTGCTGACGCTCGCGGTGCCGGGGTTCGCCGGAGCCGTCGCGGGGCAGCACGTGGACGTGCGGCTGACGGCGCCCGACGGCTATCAGGCGGTGCGGTCGTACTCGCTGGCGCGCGTCGGGCGGGACGAGGTGGTCGAGCTCGCCGTGGACGAGGTGCGCGGCGGCGAGGTCTCGCCCTACCTGGTGCACGAGGCCCGGCCCGGGGACCGCATGGAGGTGCGCGGACCGCTCGGCGGCTACTTCGTGTGGCGCCCGCACGACGGCGGTGCGGTGCAGCTCGTCGCGGGCGGGTCCGGCATCGTGCCGCTGGCGGCGATGGCACGCGCCCGGGCGGCGGCTCCGACGTCGGACGCCACGTTCCGGCTGCTGGCCGCCGTCCGCACGCCCGCGGACGCGTTCTTCGCCGACGAGCTCGACAGCACCGAGGGCCTGACGACGACATGGTTGTACAGCCGGGAGGCGCCGCCGTCGTCGACGAGACCGCCGGGACGTCTGACGCTCGACGACGTCACGGGTCATGCGTTCGCCCCGGACGTCGGTGCCCGCGTGTACGTGTGCGGCCCCACCGGGTTCGTCGAGGCCGCGGCCGCGCTGCTGGTCGACGCCGGCCACGACGCCGCACGCATCCGCACCGAACGTTTCGGAGGCGCCTGAMSSWHAAQVVRTEPLAASARVLTLAVPGFAGAVAGQHVDVRLTAPDGYQAVRSYSLARVGRDEVVELAVDEVRGGEVSPYLVHEARPGDRMEVRGPLGGYFVWRPHDGGAVQLVAGGSGIVPLAAMARARAAAPTSDATFRLLAAVRTPADAFFADELDSTEGLTTTWLYSREAPPSSTRPPGRLTLDDVTGHAFAPDVGARVYVCGPTGFVEAAAALLVDAGHDAARIRTERFGGAPGPT0013685_569DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013685-gbcB-K21832NANA
AK018_00972291hypothetical proteinATGGATCCTGCACCCCTCGACGGCAACAGCCTGGCCGGCCCGCTGGCCGGGCTCTTCGCCACCGACGTCACCGTCGTCACCGGCTGCTGCGCGCACTGCGGCGACGTGTCCGTCCTGGCTGCGTGCGTCGTCTACCGGCACCCGATGGGCGCGGTCGCCCGCTGCCGGGCGTGCACGGCGGTGCTGCTCGTCGTCGTCGAGCATCCGGCCGGGACCCGGGTCGGCATGCCCGGGCTGGCGTGGTGGCAGGGCTCGGCCGGGAGCACGACGACGGGCGCCGCCGGGGACTGAMDPAPLDGNSLAGPLAGLFATDVTVVTGCCAHCGDVSVLAACVVYRHPMGAVARCRACTAVLLVVVEHPAGTRVGMPGLAWWQGSAGSTTTGAAGDNANANANANA
AK018_00973885hypothetical proteinGTGAACGCCGACCCAGGTGGCACCCGCACGGGTGACGACGTCGCACGAGAGGGCACGACGGCGGGCCCGGCGCCCGCGCGCCGCCCCGGCGGGATGCCGGTGGCGAAGACGCCGCGCCCGCCGACCGCGTCCGACGGCCGCAACCGGCAGCGCGTCGCCGTGGTCATCCCCGCCAAGGACGAGCAGGAGCGGATCGCGGCGACGGTGCGCTCGGCACGCGCGATACCGCACGTCGACCTGGTCCTGGTCGTCGACGACGGGTCCGACGACGACACCCAGCACGTCGCGCGGGACGCCGGCGCCGTCGTCGTGCGCCACTCCCACAACCGTGGCAAGGCGGCGGCGATGGAGACCGGCGCCGCCGTCGTCGCGATGCGCGACGCCGACGGCCGTGCCCCGCGACTGCTCCTGTTCATCGACGGCGACCTCGGTGATACGGCGGTCAACACCGCACCACTGGTGCGTCCGGTCCGCGAGGGCGTCGCCGACGTGGCGATCGCGCTGCTCCCCAAGCAGAAGGGCGCGGGTGGCCGGGGCATCGTCGTCGGAGCCGCCCGTCGCTCGATCCACCGGCTCACCGGGTGGAGCCCCACGCAGCCGCTGTCCGGGATGCGCTGCCTGACCCGCGAGGCCTTCGACGCCGCGACGCCGCTGGCCCGTGGCTGGGGTGTCGAGACGGGAATGACGATCGACCTGCTGCGCGCCGGTTACGTCGCCGTCGAGGTGCCGTGCGACCTGCGGCACCGGCCCTCGTCGAACGACCTCGCCGGTCAGCTGCACCGCGCCGGGCAGTACCGCGACGTCATGGCCGCCGTGGGCGCCCGCCAGGTGCGACGCGTGGCCGACAAGGTCGGGCGGATCGGCAGGTCGGGCATCCGGCGCTGAMNADPGGTRTGDDVAREGTTAGPAPARRPGGMPVAKTPRPPTASDGRNRQRVAVVIPAKDEQERIAATVRSARAIPHVDLVLVVDDGSDDDTQHVARDAGAVVVRHSHNRGKAAAMETGAAVVAMRDADGRAPRLLLFIDGDLGDTAVNTAPLVRPVREGVADVAIALLPKQKGAGGRGIVVGAARRSIHRLTGWSPTQPLSGMRCLTREAFDAATPLARGWGVETGMTIDLLRAGYVAVEVPCDLRHRPSSNDLAGQLHRAGQYRDVMAAVGARQVRRVADKVGRIGRSGIRRPGPT0022460_839DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022460-gpgS-K13693NANA
AK018_00974828hypothetical proteinATGGCCAAGACCTCCGGTGAGTTCGTGCTGCGTCCGTTCGAGGGTCTGCCCGGTGAGGCGGACTGGGTGTCGATGCGGGAGATCGTGCCGTCGGCGACCGCGCCGGCGCGCACCACCGCCGAGCACGGCGCCCGGGAGGTGACGGTCGCGACGGTGCTGCCCGGTGGATGGGCGGCGCTGCACCGCGAGGACGGCACCGTGCTGCTCGCCGTGCAGGGCATCCTCAACTCGGACGACCTCAGCCGCGACCTGGCGGCCGCCCTCCTGGTGGCGCTGGACGCCGAGCCGGGGACCGGCGTCGGCCCCGAGCAGCTCGAGGTCGCCGCGGACGGACCGCGCCTGCAGGACGTGCTGGACACCTCCGTCCCGTTCGAGGTGACCGTCCACGACGGGTACGACTACTGGATCGACTCGTCCGCCGAGGTCACCGAGGACATCCGCGCGGGCCTGGACGAGGCCGCCGGCCAGTCGGTGCCCACCGTGAAGGTCGACGGCGTCGAGGCCGCCTACTGGTGCCGCATGAGCCGCGAGTTCGTGCGGTGGGCCCGCACCGAGGACGAGGACCGCGTCGTGGACGCGATCGCCCGCCTGCACGCGAAGCGCGACTCCGGGCTGGCCGGCGGCAAGTTCCTTGGCATGTTCCGGGCCTGCGGGCTCGTGGTCCCCGTGTGGGAGCTGCCGCGCGGCACCGAGGCGGACGAGCTGGGCGAGCCGATGCAGGACCTGGCCGAGCGGTTCGAGGCGGCCCTCGCCGTCGACGAGCCGCTGGACGCTACGCAGCGCCGCGCGCGGGCCGGGATTGTCTCCCGCCAGGTCACGCTGCGCTGAMAKTSGEFVLRPFEGLPGEADWVSMREIVPSATAPARTTAEHGAREVTVATVLPGGWAALHREDGTVLLAVQGILNSDDLSRDLAAALLVALDAEPGTGVGPEQLEVAADGPRLQDVLDTSVPFEVTVHDGYDYWIDSSAEVTEDIRAGLDEAAGQSVPTVKVDGVEAAYWCRMSREFVRWARTEDEDRVVDAIARLHAKRDSGLAGGKFLGMFRACGLVVPVWELPRGTEADELGEPMQDLAERFEAALAVDEPLDATQRRARAGIVSRQVTLRNANANANANA
AK018_00975411hypothetical proteinATGGTCGATGTCCAGCGAGGGTTCGCGAGCTTCTCCGTCGACGACGTCGACGCGGCGCAGCGGTTCTACTCCGAGGTGCTCGGGCTGCAGGTGAGGGCCGAACGGGGGTCGCTGATCCTGCACCTGCCCGGTGGGACGGTGATCTTCGTGTACCCCAAGGGCGAGGACCACACCCCGGCCTCGTTCACGGTCTTCCACCTGGCCGTCGACGACGTGGACGCCGTGGTCGAGGAGCTGGCCGCCCACGGGGTGGAGCCGGTCCGCTACGAGGCGTTCGAGCACGACGACAGCGGGATCGTGCGGGGGTTCATGGAGGGCGGTGACGGTGTCTGGTTCGCCGACCCGGCCGGGAACGTCATCGGGTTCATGGACGGCGAGGGGGCACGGTTGTTCGCCGAGGCGGTCGGCTGAMVDVQRGFASFSVDDVDAAQRFYSEVLGLQVRAERGSLILHLPGGTVIFVYPKGEDHTPASFTVFHLAVDDVDAVVEELAAHGVEPVRYEAFEHDDSGIVRGFMEGGDGVWFADPAGNVIGFMDGEGARLFAEAVGNANANANANA
AK018_009761275frc_1Formyl-CoA:oxalate CoA-transferaseATGTGGCTCGCCGCGACCCTGCCCGTGCCGGCTCTCGCCGACCGCGCCCTGAGCGCGGTGCGCGACGCCGCCCGCCGCGCGGGCACGACCGGCCCGCTCGTGGACGCCCCGCCCGACCCGGCGCGGGTGGCGGCAGCGTTCGGCTCCGACCGTCTGCTGCGGGTCGGCGGGGAACCCTGGGCCGGGTTCGCTCCCCACTCCGGGTTCTTCCCCGCCGCGGATGGCTGGGTGCGCACCCACGCCAACTATCCGCACCACCGCGAGCGGCTGCTCGAGGTGCTGGGGCTGCCCGCCGACGCCGACCGGGAGCAGCTCGCCGCCCGGCTCGCGACGGCGAGCGCCCAGCGGGTGGAGGACGACGCCGCGGCCGCGGGGGCGGTCGCGGTCCGGGTCCGCACCGAGGACGAGTGGCGCCGCTCCGCACCCGGCCGGGCGGCCGCCGTCGGACCGCTCGTCGCCACCTCCGCCCGCGCCGACGGCTACGAAACGTTGCAGTACGGCCGCCGGAGTGCAACAGTTCAGAGCCGTCGGCGCCTGCGGGACGGTGGGCGGGTGCTGGCCGGCATGCGGGTGCTGGACCTGACCCGGGTCATCGCCGGGCCCGTCGGGACCCGCACCCTCGCGCTGCTGGGGGCCGACGTGCTGCGCGTCGACCCGCCGCACCCGGCGGAGATCGCCGAGCAGCACCTCGACACCGGGCAGGGCAAGCGCACCACCGTGCTCGACCTGCGCGACCGCGCCGACCTCGCCCGCGCCCAGGAGCTGCTCGACTCCGCCGACGTCCTGGTCACCGGCTACCGGCCGGGCGCGATCGAGTCACTGGGTCTGCGGGTGCCGGACGACGTGGTGCGCGCGCGGGTCTCGGCGTGGGGCGACGCCGGTCCGTGGGCCGGACGTCGCGGGTTCGACTCGATCGTGCAGGCAGCCTGCGGGATCGCCCTGATCGAGTCCGTCGACGGCGTCACCCCCGGCGCGCTGCCCGCGCAGGCGCTCGACCACGCGACGGGGTACCTGCTGGCCGCCGGGGTGGTGGACGCCCTGACGGCACGGTCCGACGACGGCGCCGGGCGGGACGTCACCGTGTCCCTGGCGCGCACGGCCACCTGGCTGCTCGGAGCCCCCGGCCGCGAGCCGGGCCACCCGCCCGCCACGGTGCCGCCGTCGTCGGCCACCGTGACGCACGGGGACGTCACGACGGCGCGCCCGGCGCTGCCGGTGGACGACTACCCGTTCCCGGCCCGCCCCTGGGGCGGCGACCCGCCGCACTGGCCCTGAMWLAATLPVPALADRALSAVRDAARRAGTTGPLVDAPPDPARVAAAFGSDRLLRVGGEPWAGFAPHSGFFPAADGWVRTHANYPHHRERLLEVLGLPADADREQLAARLATASAQRVEDDAAAAGAVAVRVRTEDEWRRSAPGRAAAVGPLVATSARADGYETLQYGRRSATVQSRRRLRDGGRVLAGMRVLDLTRVIAGPVGTRTLALLGADVLRVDPPHPAEIAEQHLDTGQGKRTTVLDLRDRADLARAQELLDSADVLVTGYRPGAIESLGLRVPDDVVRARVSAWGDAGPWAGRRGFDSIVQAACGIALIESVDGVTPGALPAQALDHATGYLLAAGVVDALTARSDDGAGRDVTVSLARTATWLLGAPGREPGHPPATVPPSSATVTHGDVTTARPALPVDDYPFPARPWGGDPPHWPNANANANANA
AK018_00977927ppx1_1COG0248Exopolyphosphatase 1ATGCGACTCGGCGTGATCGACATCGGCTCCAACACCGTCCACCTGCTCGTCATGGAGGCCCGTCCGGGTGCTCGCCCGGTGCCCCAGGCGAGCCAGAAGACGACGGTGCGGCTCATGCAGTACCTGGAACCGGACGGCGGCATCTCGAAGGCCGGGGTCAAGGCGCTGCGCCGCGCGGTGGAGGCTGCGGCGGCCGTGGGCCGGGAGCACCGCATCGAGAGCGTCATGGCGCTGGCGACGTCGGCGCTGCGCGACGCGCGCAACGGGCGCGAGCTGATCGCTGACCTGTCGGAGCGCATCGGCGCCCCGATCGACGTGCTCGCCGGGCCGGAGGAGGCGCGGCTGACGTTCCTGGCGGCACGCCGCTGGTACGGCTGGGGCGCGGGGCGGTTGCTGCTGCTGGACATCGGCGGCGGGTCGCTGGAGATCGCGACGGGGGTCGACGAGTCGCCGGACGTGGCGCTGTCGGTGCCGCTCGGGGCGGGTCGGATGACGCGGGAGTACCTCTTCGAGGACGACCCGCCGAAGCCCGGCGACGTGGAGCGCCTGCGCAAGCACGCCCGCAAGGTGCTCAAGGACGCGGTGGGTCCGGTGCGCAAGGCCCCGACGCCGGACCACGCGGTGGCGACGTCGAAGACGTTCCGGTCGCTGGCCCGGCTCGCGGGGATGCCGCGGCAGGTGCTGGGCACGGGGGACCGGTGGCGGATGCGTCAGGAGCACCTGGCGGACTGGCAGCCGCGGCTGGCGAAGCTGTCGTCGGCGGACCGCACGGTGCTTCCGGGCATCGGGCCCGGGCGGGCGCTGCAGGTCGTGGCGGGGGCCGTCGTCGCCGAGGAGGCGATGCGGGCCCTCGGGGTCGACGAGGTGGAGATCTGTCCGTGGGCCCTGCGCGAGGGCGCGATCCTGCAGCGCCTCGACCGCCTCTGAMRLGVIDIGSNTVHLLVMEARPGARPVPQASQKTTVRLMQYLEPDGGISKAGVKALRRAVEAAAAVGREHRIESVMALATSALRDARNGRELIADLSERIGAPIDVLAGPEEARLTFLAARRWYGWGAGRLLLLDIGGGSLEIATGVDESPDVALSVPLGAGRMTREYLFEDDPPKPGDVERLRKHARKVLKDAVGPVRKAPTPDHAVATSKTFRSLARLAGMPRQVLGTGDRWRMRQEHLADWQPRLAKLSSADRTVLPGIGPGRALQVVAGAVVAEEAMRALGVDEVEICPWALREGAILQRLDRLPGPT0002595_5442DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
AK018_00978381hypothetical proteinATGGACAGCTTCTGGGACTACATCTGGTTCCTGCTCTGGATCTTCCTGTTCATGGCCTACCTCATCGTCCTGTTCCAGATCCTCACGGACCTGTTCCGGGACCACCAGCTCTCCGGCTGGTGGAAGGCGCTGTGGGTCGTCTTCCTGATCTTCATCCCGCTGGTCACCGCCCTGATCTACCTGATCGCCCGCGGGCGCGGGATGGCGGAGCGCAACCTCGCCGCGGCGAAGGACGCCAAGACCGCCACGGACGACTACATCAAGTCGGTGGCCACGCCGCACTCGCCGGCCGACCAGATCGCCTCGGCCAAGAAGCTGCTCGACGAGGGCACCATCTCCGCCGAGGAGTTCGAGTCGCTGAAGGCCAAGGCGCTGTCCTGAMDSFWDYIWFLLWIFLFMAYLIVLFQILTDLFRDHQLSGWWKALWVVFLIFIPLVTALIYLIARGRGMAERNLAAAKDAKTATDDYIKSVATPHSPADQIASAKKLLDEGTISAEEFESLKAKALSNANANANANA
AK018_009791383hemA_1COG0373Glutamyl-tRNA reductaseGTGGTTCTGATCTCCCTCACCGCATCCCACCGCGAGCTGGACCTCGACGCGCTGGAGCGCCTGTCGACCGGCTCGGAGTCCGTGGGCCGCACCGTCGTGGGCTCCTGCCGCCCCGTGCAGGGTGCCGTCGTCATCTCCACGTGCAACCGGTTCGAGCTGTATCTCGACGTCGACGCACCGCTCGACGGCGACGTGGTGCGGCACGCCACCCGGCATGTCGCGGCCCTGGTCGCCGAGGCGTCCGGTGTCAGCACGGAGACCGCCGCCGCCTCGTTCGCGGTGCGCACCGGCTCGGACGTCGCCGCGCACCTGTTCGCCGTCGCGTCCGGCCTCGACTCGATGGTCGTGGGCGAGCGGGAGATCGCCGGCCAGGTGAAGCGGTCGCTGGTCGTGGCGCGGGACCAGGACACCACCTCCAAGACGCTCGAGCTGCTCTTCCAGACCGCCTCGCGCACGTCCAAGCAGGTCGGGCACCACACCGCGCTCGGGGGGACCGGCCGGTCGCTCGTCGCGCTCGGCCTCGACCTCGCCGGGGCGGTGCTGCGGCCCTACCCCGCGGCCCGGGCCGTCATCGTCGGCACCGGCGCCTACGCCGGGGCGTCCGTGGCGGCGCTGCGCGCCCGCGGGTGCGCCGACGTGCGGGTGTACTCCCGCTCCGGTCGCGCCGCGGAGTTCGCCGCCTCGCACGACGTCGTCGCGGTGGGCGCGGACACCGAGTCGCTCGTGTCCGCCCTGGCCGAGGCCGACCTGGTGGTCTCCTGCTCGGGGGCACGCGGTCGCGGTGGCGCGGCTCCGGCACCGGGTGCCGAGGCGTCGCTGGAGTACGTGCTCGACGTCGCGGCCGTGGCCCGCGCCCGGGAGCGGGCCGCGGACCGGGCGGGCGACGAGCCGGAGTCGGACGCGCTGGTGATCCTCGACCTGGCGCTGCACCGCGACGTCGACCCGCAGGTTGCCGACGTCGAGGGCGTGCTGCTCTACGACCTGTCCACCCTCAAGGCGAACGCCCCGGCCACCGAGCACGCCGTCGTCGAGCACGCCCGCCGGATCGTCGCCGACGCCGCGACGCGCTTCGAGGAGACCCGGCTCGGCCGGGCTGCGGACGCCGCCGTCGTCGCGCTGTTCGACGAGGCCGAGCGGACGGTCGCCGCGGAGGCCGCCGACGCCACCGCCCGGCTCGCCGCCGAGCTCGCGCCGCTGGGCACAGAACCCTCCGAGGACGACCTGGAGAAGATCGCCCGGGACGCCCGACGGCGCGCGCACAGCGCCTTGCACCACCGCATCGTCGAGGTGCGCGCCGCGGCGCTGGCCGAGGCGCGGGCGGCCGAGGCCGCCGTCGTCGCCGGCGCCGAACGGAGCCTGCGGGTGACCGAACCGGTCGACTGAMVLISLTASHRELDLDALERLSTGSESVGRTVVGSCRPVQGAVVISTCNRFELYLDVDAPLDGDVVRHATRHVAALVAEASGVSTETAAASFAVRTGSDVAAHLFAVASGLDSMVVGEREIAGQVKRSLVVARDQDTTSKTLELLFQTASRTSKQVGHHTALGGTGRSLVALGLDLAGAVLRPYPAARAVIVGTGAYAGASVAALRARGCADVRVYSRSGRAAEFAASHDVVAVGADTESLVSALAEADLVVSCSGARGRGGAAPAPGAEASLEYVLDVAAVARARERAADRAGDEPESDALVILDLALHRDVDPQVADVEGVLLYDLSTLKANAPATEHAVVEHARRIVADAATRFEETRLGRAADAAVVALFDEAERTVAAEAADATARLAAELAPLGTEPSEDDLEKIARDARRRAHSALHHRIVEVRAAALAEARAAEAAVVAGAERSLRVTEPVDPGPT0003650_621DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003650-hemA-K02492NANA
AK018_009801143hemE_1COG0407Uroporphyrinogen decarboxylaseGTGACATCCCCCACGGCGAACGTCAGCAACCTTCCCGGCTCCCACCCCCTGGTCGACGGGCGGACGACGACGTCCCCGCTGGTCAGCGCCCTGCGCGGCGACCGGCCCGACCGCACCCCGGTCTGGTTCATGCGGCAGGCGGGCCGCAGCCTGCCCGAGTACCGCGAGGTGCGACAGGGTGTCGGGATGCTCGAGTCCTGCCTGCGTCCCGAGCTCGCCGCGGAGATCACGCTGCAGCCCGTGCGCCGCCACGGCGTCGACGCGGCGATCTTCTTCAGCGACATCGTCGTGCCCCTGAAGCTGGCCGGCGTCGGCGTGGAGATCGTCTCCGGCGTCGGCCCGGTGATGGACCGCCCGTACCGCACGGCGGCCGACGTCGACGAGCTGGTCTCGCGGGACGTGGACGACGCGGCGCTGGCCCCGATCGCCGAGGCCGTCGCCCGGACCGTCGCCGGCCTGGCCGAGGAGACGGACGGGACGCCGCTGATCGGGTTCGGCGGGGCGCCCTTCACGCTCGCCGCCTACCTCGTCGAGGGCCGGCCGTCGCGCGACCACCTCGCCGCGCGCACCCTCATGCACGCCGACCCCGAGTCGTGGCGGCGCCTGACCGAGTGGACCGCGGACCTGACCGGACGGTTCCTGCGCACCCAGGTGCTCGCCGGCGCCAGCGCCGTCCAGCTCTTCGACTCCTGGGCCGGCTCGCTGTCGCTGGCCGACTACACGACGCACGTGGCGCCGTCGTCCACCCGCGCGCTGCGGCACGTGGCGGACCTGCGGGTGCCCGACGCCGACGGCCCGCTCGGCGTGCCCGGCATCCACTTCGGGACCGGCACCGGCCACCTGCTCGCGGCGCTGCGCGACGTGCTCACGGACGCCGGCCTGACGCACCGCACCGTCGGCATCGACTACCGCACGCCCCTGGACGAGGCCGCCGCGCTGCTCGGGGCCGGGGTCCCGGTGCAGGGCAACCTCGACCCGGCGCTGCTCGGCGCCCCGCGGGAAGCGCTGGAGGCCCACGTGCGCGACGTCGTCGACCGAGGCCGCGCCGCCCCCGCGCACGTCGTCAACCTCGGCCACGGCGTGCCGCCGTCCACGGACCCGGACGTGCTCACCCGCGTCGTCGAGCTCGTGCACTCGCTGTGAMTSPTANVSNLPGSHPLVDGRTTTSPLVSALRGDRPDRTPVWFMRQAGRSLPEYREVRQGVGMLESCLRPELAAEITLQPVRRHGVDAAIFFSDIVVPLKLAGVGVEIVSGVGPVMDRPYRTAADVDELVSRDVDDAALAPIAEAVARTVAGLAEETDGTPLIGFGGAPFTLAAYLVEGRPSRDHLAARTLMHADPESWRRLTEWTADLTGRFLRTQVLAGASAVQLFDSWAGSLSLADYTTHVAPSSTRALRHVADLRVPDADGPLGVPGIHFGTGTGHLLAALRDVLTDAGLTHRTVGIDYRTPLDEAAALLGAGVPVQGNLDPALLGAPREALEAHVRDVVDRGRAAPAHVVNLGHGVPPSTDPDVLTRVVELVHSLPGPT0008465_513DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008465-hemE-K01599NANA
AK018_009811455hemY_1COG1232Protoporphyrinogen oxidaseGTGAGCCAGCGCGTCGACGCCGTCGTCGTCGGGGGCGGGATCGGCGGGCTCGTCGCGGCCCGCACGCTCATCGACCGCGGCCTGCAGACCGTCGTGCTGGAGGCCTCCACGCGGCTGGGCGGGCCGGTCCGGGGCGGGTCCTTCGAGTCGCTGCCGCGCGTGCCGCTCGATCTGGGCGCCGAGTCGTTCGCCGCGCGGGGCGGCGCCGTCGCCGAGCTCGCGGACGAGCTGGGGCTCGACGTCGTCGCACCCGCCGGCCTGCCCGCCTGGGGGTACGCGGCCGGGCAGGCCTTCCCGCTGCCGGCCGCCGGGGTGCTGGGCATCCCGGCCGTGCCCTGGGCGCCGGACGTGCGCCGGGCGATCGGCTGGCCCGGGGTCGCCCGGGCGGCGCTGGACCGGGTCCTGCCCCGCCAGGTGGGCGCCCGGGCCGAGGACCTCGGCTCGCTGGTGCGCGCCCGCCTCGGCGCCCGGGTCACCGACCGGCTCGTCGCCCCGGTCGCCGCGGGCGTGCACTCCGCCCCGCTGGAGCGGCTCGCCGTCTCCGCCGTCGCCCCCGGGCTGCTGGACCGGTTCGCCGTCGAGGGCTCGCTGACGCGGGCCGTCGGCGCCCTGCGCGCCGCGGCCCCGGCCGGGTCCGCGGTGCGCGGCATCGACGGCGGCATCCACACCCTCGTCGAGGCCCTCGCCGGCGAGATCGCCGCGAGCGCCGAGGACTGGACGGACTCGCCCACCACGGACGCCACGGGCCCCATCCACACGGCGTTGCGGCTCGGGCACGAGGTGGTCGAGATCGAGCGGTCCGACGACGGCGACTGGGTCGTGCGCACGCGGGCCACGTCGGCGGGGGTGCGGGGCGGTCGCGGGTCGGTGCACACCTCGGTGGCTCCCCGGCTGGTGGTGACCACACCGGCGGTGGCGCCGCTGCTGGAGCCGTGGACCGGCGTCGTCCCGCGCCCGGAGGCCGGCGCGGACGTGCACCTGGTGACGCTGCTGCTGGAGGCTCCGGAGCTCGACGCGGCGCCGCGCGGGTCGGGGATGCTGGTGGCTCCCGCGGCCGACTCGTCCCAGGTGCGGGCCAAGGCGCTGACGCACGCGACGGCGAAGTGGCCGTGGCTGGCCGACCGGGTGCGCGCGGCGGCCGGCGAGGGATTCCACGTGGTGCGGCTGAGCTACGGGCGGCTCGGGGAGCCCACCGTGGCCCCGGACGCCGACGAGGCGGCCCGGGACGCCTCCGGGTTGCTGGGGGCGCCGCTGACCGACCGGGTCGTGGACCACCTGGTCCAGCGGTGGGACGGCGCCCTGCCTCCCCCGACGCCCGTCTACCGGGCCGACGTCGCCGCGCTGAGCGCCGCCGTCGGGCGCACCCCGGGCCTGGCGACGACGGGCGGCTGGGTGGCCGGCACCGGGCTGGCCGCGATCGTGGGGCACGCCCAGGCGGCGGTCGAGGGGCTGTAGMSQRVDAVVVGGGIGGLVAARTLIDRGLQTVVLEASTRLGGPVRGGSFESLPRVPLDLGAESFAARGGAVAELADELGLDVVAPAGLPAWGYAAGQAFPLPAAGVLGIPAVPWAPDVRRAIGWPGVARAALDRVLPRQVGARAEDLGSLVRARLGARVTDRLVAPVAAGVHSAPLERLAVSAVAPGLLDRFAVEGSLTRAVGALRAAAPAGSAVRGIDGGIHTLVEALAGEIAASAEDWTDSPTTDATGPIHTALRLGHEVVEIERSDDGDWVVRTRATSAGVRGGRGSVHTSVAPRLVVTTPAVAPLLEPWTGVVPRPEAGADVHLVTLLLEAPELDAAPRGSGMLVAPAADSSQVRAKALTHATAKWPWLADRVRAAAGEGFHVVRLSYGRLGEPTVAPDADEAARDASGLLGAPLTDRVVDHLVQRWDGALPPPTPVYRADVAALSAAVGRTPGLATTGGWVAGTGLAAIVGHAQAAVEGLPGPT0008475_747DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008475-hemY-K00231NANA
AK018_00982711hypothetical proteinATGGCCCTGCGCTTCGAGAAGCTCGACTTCCAGCCCACCCCCATGGGCGAGATCAGCCTCCGCCGCCGGCACGACCCCGCCGCACGCCAGGACGTCTACGAGGTCCGGCTCGGCGACGAGTACCTCATGTCGAGCCTCTTCACAGTGGCGGAGCGGGCGCTCGCCACCCTCGCCCTCGACCTCCTCGACGCCCCGGCCGACGCGGCCCTGCAGGTGCTGGTCGGCGGGCTGGGCCTCGGCTACACCGCGCACGCGGCGCTCGCGGACCCGCGGGTCGCCGACCTCACGGTGGTCGAGTACTCCGGTCCCGTCCTGGACTGGCACCGGCGCGAGCTACTCCCCGAGACGGCCGGGCTCGCCACCGACCCGCGCTGCCGGCTCGTGCAGGACGACTTCTTCGTCCGCACGGGTGCGGCGCCGCAGGAACGCTACGACGCGATCCTGCTCGACATCGACCACACGCCGCAGCACGTGCTGCACCCGAGCCACGCGGACTTCTACACCGCGGCGGGGTTGCGCGCGATGGCCCTGCACCTCGAGCCGGGCGGAGTCTTCGCGCTCTGGTCCGACGACCCGCCGGACCAGGGGTTCGAGGCGACGCTCGGGGAGGTGTTCGCCGAGCAGCGGGCGCACGTGGTGCCGTTCGACAACCCGGTCACCGGCGGGACCTCCACCAACACGGTCTACCTGGCCCGCGGCGTCGTCCGATAGMALRFEKLDFQPTPMGEISLRRRHDPAARQDVYEVRLGDEYLMSSLFTVAERALATLALDLLDAPADAALQVLVGGLGLGYTAHAALADPRVADLTVVEYSGPVLDWHRRELLPETAGLATDPRCRLVQDDFFVRTGAAPQERYDAILLDIDHTPQHVLHPSHADFYTAAGLRAMALHLEPGGVFALWSDDPPDQGFEATLGEVFAEQRAHVVPFDNPVTGGTSTNTVYLARGVVRNANANANANA
AK018_00983450mgsA_1COG1803Methylglyoxal synthaseATGGACGCCGTCCGGCACAGCATCGCCCTGGTGGCGCACGACAACAAGAAGGTCGAGCTGCTGCGCTGGGCCGAGTTCAACCGCGGCACGCTGTCCGGGCACCACCTGTGGGCCACCGGCACCACCGGCACCATGCTCGAGTTCGAGCTGGGCCTGCCGGTCCACCGGCTGCTGTCGGGGCCGGTCGGCGGGGACCAGCAGATCGGCGCCAAGATCGCCGAGGGCGCCATCGACATGCTGATCTTCTTCTGGGACCCGCTCGAGGCCCAGCCCCACGACCCCGACGTCAAGGCGCTGCTGCGGCTCGCCGCCGTGTGGAACGTGCCGATGGCCTGCAACGTCGCCACGGCCGACATGATGATCTCCTCGCCCATGCTGCACGAGGACTACGCGCACAACCGGCCCGTGATCGACCAGCGCGGCTGGGTCGGCGGGGAGCCGGTCGAGTGAMDAVRHSIALVAHDNKKVELLRWAEFNRGTLSGHHLWATGTTGTMLEFELGLPVHRLLSGPVGGDQQIGAKIAEGAIDMLIFFWDPLEAQPHDPDVKALLRLAAVWNVPMACNVATADMMISSPMLHEDYAHNRPVIDQRGWVGGEPVEPGPT0001780_667DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001780-mgsA-K01734NANA
AK018_00984693hypothetical proteinGTGCTCAAGAACCGCATCCTCGGAACCTTCACCGCGCTGGCCCTGGCGGTGGCGAGCGTCGGCGTGGGCGCGAACGCCGCGCACGCGGACGACGACGACCGCGTCACCTGCTCGGGCTACGGCACCAAGAACGCCCAGTACCGCCTCACGCTCGCCGAGCGCGACGACGACCGCATGCGCACCCGCCTGGCGATCGACACGAACGTCAAGAACAAGAAGTGGACCGTCAAGGTCTACCGGGACGGCACCAAGGTCCACCAGGCCTCGAAGAAGACCGGGAAGAAGGGCAACGTCACCTTCGCCAAGACGGTGCGTGGCGACGACGACGACCGCTACCGCGTCGTCGCCACCACCAAGGGGCAGAAGATCGTCCGCACGATCGAGCTGGACGACGACCTCGAGTGCCGCAGCGGCAAGGGGTTGAAGGGCAGCCGGTACGGCTACTCCGTGACCGAGCGCGACGACGACCGCGCCACCGCCCAGCTGCGCGTCAACGGTCCGAAGAAGAACGCCCGGTGGACCGTGTCGTACTACCGGGACGGCAAGAAGGTCGCCTCGGCCACCAAGCGGGCCAACAAGTACGGCAACGTCACCGTCACCAGGACGTTCCGCGCCGACGACCACCGGATCAAGGTCGTCGCGAAGTCCGGGTACGGCGAGCGGATCACCCGCACGATCGACCTCGACGACTGAMLKNRILGTFTALALAVASVGVGANAAHADDDDRVTCSGYGTKNAQYRLTLAERDDDRMRTRLAIDTNVKNKKWTVKVYRDGTKVHQASKKTGKKGNVTFAKTVRGDDDDRYRVVATTKGQKIVRTIELDDDLECRSGKGLKGSRYGYSVTERDDDRATAQLRVNGPKKNARWTVSYYRDGKKVASATKRANKYGNVTVTRTFRADDHRIKVVAKSGYGERITRTIDLDDNANANANANA
AK018_009851137hemC_1COG0181Porphobilinogen deaminaseATGAGAGTGCTCTCACGGAGCGTTCACGTCCCGTTCGCTGTGACGTCCGTCCGACGGCGGCACCCGGGTTGTCCCGCCCCCACCGGTCTGCGAGAGACTGGCCGGGTGAGCACCCCACCCCTGCGCCTCGGTACGCGTGCCAGCGCGCTGGCCACCACCCAGTCCGGGACCGTCGCGCGGCGCCTCGAGGAGCTGCTGGACCGGCCCGTCGAGCTCGTGCACATCACCTCCCAGGGCGACGCCGACCGCACCACCCCGCTCGCCTCCCTCGGCGGCGCCGGAGTGTTCGTCGCCGCGCTGCGCGAGGCGCTGCTCGACGATCGCTGCGACATCGCCGTGCACTCCCTCAAGGACCTGCCCACCGCGCAGCCCGACGAGCTGCGCATCGTCTCCCCCGAGCGCGAGGACCCCCGCGACGCGCTGTGCGCCCGCGACGGCCGCACCCTCGACACGCTGCCCCGCGGTGGCCGCGTCGGCACCGGGTCGCCGCGCCGCGCCGCCCAGCTGCGCGCCGCCCGCCCCGACCTCGACGTCGTCGACATCCGCGGCAACGTCGGCACCCGCCTCGCCCGGGCGCTCGGCGACGACGCCGACCTCGACGCCGTCGTCCTCGCCTTCGCGGGCCTGGCGCGCCTGGAGCGCACCGACGTCGTCTCCGAGCTGCTCGACCCCCTCGTCGTCGCACCCGCCCCCGGCCAGGGCGCCCTCGCCGTCGAGGCGCGGACCGCCGACCTGACCGCCGACGCCGAGCTCGCCCGCGCGTTCGCTGCCCTCGACCACCGGCCCACCCGCCTGGCCGTCACCGCCGAACGCGCCGTCCTCGCCCGCCTCGAGGCCGGCTGCTCCGCCCCGATCGGCGCCTACGCCCGCCTCGAGGACGGAGCGCTGGCGCTCGCCGCCGTCGTCTCCCGCGTGGACGGCACCGAACAGCTCTCGCACACCGCCCGCGTCGAGATCGCCTCCCACGTGGCCGACGACGACGCCGACCCGGCCGCGTACGACCTCGGCGTGCGCGTCGCCGAACGGCTGCTCGCCGACGGTGCCGCGCGGCTCGCCTCGCTGACGGCCGCCCCGGCCCCCACGACCGCCGGGGCCGACCGCGTCCCCACGGGGACGGACGACCCGGAGGGTCCGTGAMRVLSRSVHVPFAVTSVRRRHPGCPAPTGLRETGRVSTPPLRLGTRASALATTQSGTVARRLEELLDRPVELVHITSQGDADRTTPLASLGGAGVFVAALREALLDDRCDIAVHSLKDLPTAQPDELRIVSPEREDPRDALCARDGRTLDTLPRGGRVGTGSPRRAAQLRAARPDLDVVDIRGNVGTRLARALGDDADLDAVVLAFAGLARLERTDVVSELLDPLVVAPAPGQGALAVEARTADLTADAELARAFAALDHRPTRLAVTAERAVLARLEAGCSAPIGAYARLEDGALALAAVVSRVDGTEQLSHTARVEIASHVADDDADPAAYDLGVRVAERLLADGAARLASLTAAPAPTTAGADRVPTGTDDPEGPPGPT0003660_857DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003660-hemC-K01749NANA
AK018_00986753hypothetical proteinGTGACGGCGCTCGCCGGCACGTCCGTCCTGCTGCCTCGCGCACCTGAGCGTGCCGCGGGTCTGGCCGCGCTGCTGCGCGACGCCGGCGCTCGGGTGACGGTCGCGCCCGTCATCGAGCGGGCACCGGCCACCGACCAGGACGCGCTGGCCGACGCCGTCGCGCGGCTCCGCGCCGGGGAGTACGCCTGGACCGTGATCACGAGCGTCAACGCCGTGGACGCACTGGTCGGGCCACCCGACGCCGGTACCTCGCCGCCCCTCGCCGACGTCCCCACCCGGTGGGCCGCCGTCGGACCGGCGACGGTCCGCTCCCTGCACGCCGTGGGCGTCGAGCCCGAGCTGGTGCCCGACGACGCCTCCGCGGCCGGGCTGGTCGCCGCGTTCGGCCGCCTGCCCGGGCCCGACGGCGAGAGGGTGCTGCTGCCGCTCGGCGACCTCGCCGGGCCCACCCTGCGCGACGGGCTCGCGGGGCTCGGCCGACGCCCCGACGTCGTCACCGCCTACCGCACGGTCCGCTCCGCGCTGCCCGCCGACGTCGTCGCCCGCCGCTACGATCTGGTGGTCGTCACCTCCGGTTCCGTGGCCCGCGAGATCGCCGACCAGCTCGGCACCGCGGCACCCGTCGTCGCCATCGGACGGCCGTCCGCACAGGCCGCCCACGAGGCCGGACTGACCGTCGCCGCGGTCGCCACCACCCCGACCGACGACGGCCTGGCCACCGCCGTCACCACCGCCCTGGAGCAGAACCCATGAMTALAGTSVLLPRAPERAAGLAALLRDAGARVTVAPVIERAPATDQDALADAVARLRAGEYAWTVITSVNAVDALVGPPDAGTSPPLADVPTRWAAVGPATVRSLHAVGVEPELVPDDASAAGLVAAFGRLPGPDGERVLLPLGDLAGPTLRDGLAGLGRRPDVVTAYRTVRSALPADVVARRYDLVVVTSGSVAREIADQLGTAAPVVAIGRPSAQAAHEAGLTVAAVATTPTDDGLATAVTTALEQNPPGPT0003665_983DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003665-hemD-K01719NANA
AK018_009871005hemB_1COG0113Delta-aminolevulinic acid dehydrataseATGAGCATCACCGGTCCCGTCCACCGGCCGCGCCGGCTGCGCACGACGCCCCGCATGCGCCGCCTCGTCGCCGAGACCCGCCTGCACGCCGCCGACCTCGTGGTGCCGCTGTTCGTCAAGGAGGGCATCGACGAGCCCGTGCCGATCTCCTCGATGCCCGGCCAGGTGCAGCACACCGAGGCCACCCTCGCCGACGCCGTGACGGCGGCCGGACGGGCCGGCGTCGGGGGCGTCATGCTGTTCGGCATCCCCGCGGTGCGCGACGCCGAGGGCTCGGCCGGGACGGACCCCGACGGCATCCTGCAGCGCGGGCTGCGCACCGCGCGCGAGGCCGTTGCCGCCGTCGAGCGCGAGACCGGACGGCCCGGACCCGTCGTCATGGCCGACACCTGCCTCGACGAGTTCACCGACCACGGGCACTGCGGCGTCCTCGCCGCCGACGGCACCGTGGACAACGACGCCACGCTTGAGCGCTACGCCGCCATGGCCGTCGTCCAGGCCCGCGCAGGAGCCGAGGTGGTGGCGCCGTCCGGGATGATGGACGGTCAGGTCGCCGTGATCCGCGAAGCCCTCGACGGCGCCGGGTTCACCGACGTGTCGATCCTGGCCTACAGCGCCAAGTACGCCTCGGCGTTCTACGGCCCGTTCCGCGAGGCCGTCGACTCGGCGCTGTCCGGCGACCGACGCACCTACCAGATGGACGCCGCGAACTCCCGCGAGGGACTGCGCGAGGCCGACCTGGACCTGGCCGAGGGCGCCGACGTCGTCATGGTCAAGCCGGCCGGCACCTCGCTGGACGTGCTGCGCGACGTCGCCGACCGCTCCGACGTGCCGGTCGCCGCCTACCAGGTCTCCGGCGAGTACGCGATGATCGAGGCCGCGGCCGCGAACGGCTGGATCGACCGCCGCGGCGCCGTCCTCGAGTCCGTGCTGGCGATCAAGCGCGCCGGCGCCGACCTGATCCTGACCTACTGGGCGCTCGAGATCGCCGACTGGCTCGGCTGAMSITGPVHRPRRLRTTPRMRRLVAETRLHAADLVVPLFVKEGIDEPVPISSMPGQVQHTEATLADAVTAAGRAGVGGVMLFGIPAVRDAEGSAGTDPDGILQRGLRTAREAVAAVERETGRPGPVVMADTCLDEFTDHGHCGVLAADGTVDNDATLERYAAMAVVQARAGAEVVAPSGMMDGQVAVIREALDGAGFTDVSILAYSAKYASAFYGPFREAVDSALSGDRRTYQMDAANSREGLREADLDLAEGADVVMVKPAGTSLDVLRDVADRSDVPVAAYQVSGEYAMIEAAAANGWIDRRGAVLESVLAIKRAGADLILTYWALEIADWLGPGPT0003655_1775DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698NANA
AK018_009881377hemL_1COG0001Glutamate-1-semialdehyde 2,1-aminomutaseATGACGGACACCGCAGGCTTCGGCCAGGTCGAGACCGCGCTGGTCGGGGCGACGCCCCCGGCCGACAACCACACCGCGTTCCTGCGCGCCCAGGACGCCATCCCCGGCGGGGTGAACTCGCCGGTGCGCGCCTACGGGTCCGTCGGCGGCGACCCACGGTTCCTCACCTCCGCCCGCGGCCCGTACGTCACCGACGTGGCCGGGCGCGAGTACGTGGACCTGGTCGGGTCCTGGGGACCGGCGCTGCTCGGCCACGCCCACCCCGAGGTGGTGGCGGCCGTGCAGGAGGCGGCCGCACGGGGTCTGTCCTTCGGGGCGCCGACGGTGGGCGAGGTCGAGCTCGCCGAGGAGGTCCGACGGCGCGTCCCGGCCGCCGAGCACGTGCGGCTCGTGTCCACGGGCACCGAGGCGACGATGACGGCCGTGCGGCTCGCCCGCGGCGTCACCGGTCGGCCGCTGGTCGTGAAGTTCGCCGGCTGCTACCACGGGCACGTCGACGGGCTGCTCGCCGAGGCCGGGTCCGGCGTCGCGACCCTGTCGATGCCCGGCTCCGCCGGCGTCACCGAGGCCTCCGCCGCCGAGACGCTCGTGCTGCCCTACAACGACCTGGCCGCCGTGGAGGCAGCGTTCGCGGAGCACGGCGACCGGATCGCGGCCGTGATCACCGAGGCCGCACCCGCCAACATGGGCGTCGTGCCGCCGTCGGACGGCTTCAACGCGGGGCTGCGGCGGCTGACGTCGCAGCACGGGGCGCTGCTGATCCTCGACGAGGTGCTCACCGGGTTCCGCGTCTCGGAGGCCGGGTACTGGGGCCTGGCGCGGAACGACGGCGAGGACTGGACACCGGACCTGTTCACGTTCGGCAAGGTGATCGGCGGCGGGATGCCCGTCGCCGCGCTCGGCGGTGCCGCCACCGTGATGGACCACCTCGCGCCGTCCGGCCCCGTCTACCAGGCGGGCACCCTGTCCGGGAACCCGGTGGCCGTGGCCGCCGGGCTGGCGACGCTGCGGCTGGCCGACGAGATGGTCTACGACCACGTCGCCGCGGTCGCCACGACGGTGTCCGACGCGCTCGGGTCCGCGCTCGACGCCGCCGGCGTGCCGCACCGGGTGCAGCGCGTCGGGTCACTGTTCTCCGTGTTCTTCGGCGAGGCCGCCGCCCGCGACGGCGTGCGCTCCTACGCCGACGCGCAGGCGCAGGACGTCTACCGCCACAAGCCGTTCTTCCACGCCATGCTCGACGCCGGCGTCAACCTCCCGCCGTCGCTGTTCGAGGCCTGGTTCTGCTCCGCAGCCCACGACGAGGACACCGTCGGACGGATCCTCGAGGCGCTGCCCGCCGCCGCGCGGGCCGCCGCGGAGGCGACGCCGGACTGAMTDTAGFGQVETALVGATPPADNHTAFLRAQDAIPGGVNSPVRAYGSVGGDPRFLTSARGPYVTDVAGREYVDLVGSWGPALLGHAHPEVVAAVQEAAARGLSFGAPTVGEVELAEEVRRRVPAAEHVRLVSTGTEATMTAVRLARGVTGRPLVVKFAGCYHGHVDGLLAEAGSGVATLSMPGSAGVTEASAAETLVLPYNDLAAVEAAFAEHGDRIAAVITEAAPANMGVVPPSDGFNAGLRRLTSQHGALLILDEVLTGFRVSEAGYWGLARNDGEDWTPDLFTFGKVIGGGMPVAALGGAATVMDHLAPSGPVYQAGTLSGNPVAVAAGLATLRLADEMVYDHVAAVATTVSDALGSALDAAGVPHRVQRVGSLFSVFFGEAAARDGVRSYADAQAQDVYRHKPFFHAMLDAGVNLPPSLFEAWFCSAAHDEDTVGRILEALPAAARAAAEATPDPGPT0003680_659DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003680-hemL-K01845NANA
AK018_00989447ihfB_1Integration host factor subunit betaATGAACAAGACCCAGCTCGCGGCCGACGTCGCGGCCCGCACAGGCAGCACGCCGACCGAGGCACGCCGGCACGTCGACGCCGTCCTGAGCTCGATCGTCGAGAGCGTCGCCGACGGCGACCGCGTCTCGCTGGTCGGTTTCGGCACGTTCACGGGCGCCGAGCGACCCGCCCGCACCGCGCGCAACCCGCAGACCGGCGCCTCGGTGGAGGTCCCCGCCGCCGTCGTGCCGCGCTTCCGTGCCGGGACCGGCTTCCGGACGCGGGTGTCCGAGTCGGGCAACGCCACCCCGGCCGCCGCGTCCCCCTCGCCGGCCACGCGGTCGACGTCGAAGGCTGCCGCGAAGTCGGCCTCGAAGGCGAAGGACGAGAAGTCCGGCAAGAAGAAGGACTCCAAGAAGGACTCGAAGAAGAAGTCCAAGAAGGGCAAGAAGTCCAAGAAGAAGTGAMNKTQLAADVAARTGSTPTEARRHVDAVLSSIVESVADGDRVSLVGFGTFTGAERPARTARNPQTGASVEVPAAVVPRFRAGTGFRTRVSESGNATPAAASPSPATRSTSKAAAKSASKAKDEKSGKKKDSKKDSKKKSKKGKKSKKKNANANANANA
AK018_00990333ricRCOG1937Copper-sensing transcriptional repressor RicRATGACCGACACCGCAGCACCCGAGTACGCAGCCGCCGGCGAGCACGACGGCCCGCACGGCTACGCCTCGGACAAGGCCGCCTACCTCAAGCGGATGCGCCGCATCGAGGGGCAGGTGCGCGGCATCGCCCGCATGATCGACGAGGACGTGTACTGCATCGACGTCCTCACCCAGGTCTCCGCGGTCACGAAGGCATTGCAGTCGGTCAGCCTCGCCCTCGTCGAGGACCACCTGGGCCACTGCGTCGTCGACGCCGCCCGCGAGTCCGACGAGGCCGGCGCCGCCAAGGTCAAGGAGGCAACCGCCGCCATCGGTCGCCTCGTCCGCAGCTGAMTDTAAPEYAAAGEHDGPHGYASDKAAYLKRMRRIEGQVRGIARMIDEDVYCIDVLTQVSAVTKALQSVSLALVEDHLGHCVVDAARESDEAGAAKVKEATAAIGRLVRSPGPT0004175_580DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600NANA
AK018_00991321hypothetical proteinATGAGCACCGTCACCACCCTGGGCGTCACCGGCATGACCTGCGCCAACTGCGTCGCCCACGTCACCGAGGAGCTCGAGTCGGTGGACGGCGTGGAGCACGTCAGCACCGTCCTGAACGAGGGCGGGGAGTCGGAGGTCACCGTGTTCTCCGACGAGCCGGTCGCCGAGGACGCCCTGCGTGCCGCCGTCGACGAGGCCGGTGATTACGCCGTCGCCTCCGTCGACGTCCAGACCGACGCCCTCGCCGCGCAGCAGGCCGAGCAGGCACCCGGCAAGCAGGACGCGCACGACGCCGCTGCCCGCACCTACGGCCAGCACTGAMSTVTTLGVTGMTCANCVAHVTEELESVDGVEHVSTVLNEGGESEVTVFSDEPVAEDALRAAVDEAGDYAVASVDVQTDALAAQQAEQAPGKQDAHDAAARTYGQHPGPT0004125_54DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213NANA
AK018_009922649actP_3Copper-transporting P-type ATPaseATGACACAGACACCCGAATCGCTCACCACGACCCCCGACGCGCAGGCCCCGATCGCAGAGGTCGACCTCGCCGTCACCGGCATGACCTGCGCCTCCTGCGTCGCCCGCGTCGAGAAGCGGATCGGCCGCCTCGAGGGCGCCACCGCCACGGTCAACCTCCCCCTCGAGACCGCCCGCGTCACCCTGACCGCCCCCGTCAGCGAGGACGCCCTGCTCGACGCCGTCGCCGGCGCCGGGTACAGCGCCCACGTCACCGGCCGCCGCGACCTGGCGCCCCACCCCGCCGGGGACGACGACGGCACGCCGGGACCGTCGTCGTCCCGCGCCCCGCACGACGACCGGGGTGACGGGGTGCCGTCGGCGCACGAGACCCCCGCACACGAGCACACCGAGTACCGCGGCGACGACCTGCGCCGCCGCCTGCGCGTCGCCGCCGTGCTGACCGTGCCCGTGGTGGCGCTGTCGATGCTTCCCGCCTGGCAGTTCCCCGGCTGGCAGTGGGTGGTCGCCGCGCTCGCCCTGCCGGTGGTCACCTGGGGCGCCTGGCCCTTCCACCAGGCTGCCGCCCGCGCGGCCCGGCACGGCTCCTCGACCATGGACACGCTCGTCTCGATCGGCGTCGCGGCCGCGACGCTGTGGTCGCTGTGGGCCCTGCTGCTCGGCGGGGCCGGCGAGCTCGGCATGACCATGGACGCCTCGCTGCTGCCCTCGCGCGAGCACACCGGACTGCCGGAGCTGTACTTCGAGGTCGCGGCCGTGGTCACCACGTTCCTGCTGGCCGGCCGCTACGCCGAGCACCGGTCCAGGCGACGCGCCGGCGACGCCCTGCGGTCCCTGCTGCAGATGGGCGCCAAGGACGCCGAACGGGTGGTCGTGGACGACGGCGGCACCCCGGTCGGCGGGCCCGACCGCCCGGTCACCGAGCGGGTCGCCGTGGCCGCCCTGCGCGTCGGCGACCTGTTCACCGTGCGGCCCGGGGAGAAGGTCGCCACCGACGGCGAGGTCGTCGACGGCGCCTCAGCGATCGACACCTCGCTGCTCACCGGGGAGCCGGTACCGGTGGACGTCTCCCCCGGCGACACCGTCACGGGAGCGACCGTCAACACCTCCGGGCACCTCGTGGTCCGCGCGTCCCGGGTCGGCGAGGAGACCACCCTCGCCCAGATGGGACGGCTGGTCGCCGAGGCCCAGACCGGCAAGGCGCCCGTCCAGCGGCTCGCGGACCGGATCTCCGCCGTGTTCGTGCCGATCGTGCTCGTGCTCGCCGTCCTGACGCTGGCCGGCTGGCTCGTGGCGGGCGCGGACCTGCAGTTCGCGTTCACCGCGGCCGTCGCGGTGCTCATCATCGCCTGCCCGTGCGCACTGGGGCTCGCGACCCCGACCGCGCTGCTCGTCGGCACCGGCCGCGGCGCCCAGCTCGGCGTGCTCATCAAGGGCCCGGAGATCCTGGAGTCCACGCGCCGCGTCGACACGGTGGTGCTGGACAAGACCGGGACCGTCACGGCCGGCGCGATGGCGCTGGAGCAGGTGGTGCCGGCGTCGGACGTCGACGCCGACGAGGCGCTGCGGTACGCGGCCGCCGTCGAGGCCCGCAGCGAGCACCCGGTCGCCCGCGCGATCGCCGCGGCCGCCGGCCGCCACCGCGTCGACCTCCAGCCCGCCGACCTCCAGCCCGCCGACCTCCAGCCCGCCGATGGCTACGATCCGTTGCAGTACGAGGCTGGGAGTGCAACAGATCGTAGCCGTCGGCCCGCCGGGGCGGCCGGCGCCGGGGCGGAGGCTGCCGGGGCGGGGGCTGCCGGGGTGGGGGCCGACGGCGTCACGATCGGCGCACTGCAGGTGTTCGACTTCCGCTCGACGCCGGGTGGCGGCGTCGAGGCCGTGGTCCGGGCCGCGCACTCGGGGCTCGGGAGCACCGAGGCCGGCGTACGCGGCGCGGTGGGGCTGGGCGGGCTCGGCAGCCGTCGGGTCGTCGTCGGCCGCACGGGCTGGCTCGACGAGGCCGGGGTGCGGGTTCCGGACGAGGTGCGTACCGCCGTCGAGCGGGCCGAGGACGACGGGGCGACCGCCGTCGTCGTCGCCTGGGACGGCACGGCACGGGCCGCGCTCGTGCTGCGCGACCCGGTGAAGCCGACGTCGGCCACGGCGGTGCGCGAGCTGCGGGACCTCGGACTGGAGCCGGTGCTGCTCACCGGGGACGCCGAGGGAGCGGCGCGCGCCGCGGCGCGGGAGGTCGGGGTCGACCGCGTGATCGCCCGCGTGCTGCCGCAGGACAAGGCGGCCGTGATCTCCGGGCTGCAGTCGCAGGGGCGCACCGTGGCGATGGTGGGCGACGGCGTGAACGACGCCGCGGCGCTGGCCACCGCCGACCTGGGGCTGGCGATGGGCACGGGCACCGACGTGGCGATCGAGGCGAGCGACATCACGCTCGTGCGGGGCGACCTGCGGGCGGCCGCGACCGCCGTGCGGCTGTCCCGCCGCACCCTGCGGATCATCAAGCAGAACCTGTTCTGGGCGTTCGCCTACAACGTCGCCGCGATCCCGCTGGCGGCGGCGGGGCTGCTGAACCCGATGATCGCGGGTGCGGCGATGGCGGCGTCGTCGGTCATCGTGGTGGGCAACTCGCTGCGGCTGCGCCGCGCCGCCTGAMTQTPESLTTTPDAQAPIAEVDLAVTGMTCASCVARVEKRIGRLEGATATVNLPLETARVTLTAPVSEDALLDAVAGAGYSAHVTGRRDLAPHPAGDDDGTPGPSSSRAPHDDRGDGVPSAHETPAHEHTEYRGDDLRRRLRVAAVLTVPVVALSMLPAWQFPGWQWVVAALALPVVTWGAWPFHQAAARAARHGSSTMDTLVSIGVAAATLWSLWALLLGGAGELGMTMDASLLPSREHTGLPELYFEVAAVVTTFLLAGRYAEHRSRRRAGDALRSLLQMGAKDAERVVVDDGGTPVGGPDRPVTERVAVAALRVGDLFTVRPGEKVATDGEVVDGASAIDTSLLTGEPVPVDVSPGDTVTGATVNTSGHLVVRASRVGEETTLAQMGRLVAEAQTGKAPVQRLADRISAVFVPIVLVLAVLTLAGWLVAGADLQFAFTAAVAVLIIACPCALGLATPTALLVGTGRGAQLGVLIKGPEILESTRRVDTVVLDKTGTVTAGAMALEQVVPASDVDADEALRYAAAVEARSEHPVARAIAAAAGRHRVDLQPADLQPADLQPADGYDPLQYEAGSATDRSRRPAGAAGAGAEAAGAGAAGVGADGVTIGALQVFDFRSTPGGGVEAVVRAAHSGLGSTEAGVRGAVGLGGLGSRRVVVGRTGWLDEAGVRVPDEVRTAVERAEDDGATAVVVAWDGTARAALVLRDPVKPTSATAVRELRDLGLEPVLLTGDAEGAARAAAREVGVDRVIARVLPQDKAAVISGLQSQGRTVAMVGDGVNDAAALATADLGLAMGTGTDVAIEASDITLVRGDLRAAATAVRLSRRTLRIIKQNLFWAFAYNVAAIPLAAAGLLNPMIAGAAMAASSVIVVGNSLRLRRAAPGPT0004090_2232DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004090-copA|ctpA-K17686NANA
AK018_00993801hypothetical proteinATGACCACCGCGCCCGCCGCACCCACGCAGGCACCGCCGTCGGGCACCCTCAACCCGGTGGTGCTGACCTGGCTGCACCTGAAGTTCCAGTTCCTCGAGACGGTGCGGATCCCGATCGCCGTGCTCGGGAACATGCTCTTCCCCTCGCTGGCGATGTTCTTCTTCGTGGTGCCCCAGAGCCAGGTCGCCCAGAACCCCCTCGCGGCCACGATGGCGGTGGCCGGGCTGTCGCTGTTCGCGGTGTGCTCGGCGAGCCTGTTCACCTACGGGCTCGGCGTGGCCGAGGACCGCCAGCTCCCGTTCGACCCGTTCGTGCGCTCGCTGCCGGCCGGGCCGGCGCCCCGCATGATCGCGCGCATCCTCAACGGGGCGATCTTCGCGCTGTTCGGGCTGGTGCCGCTGATCGTCATCGGGTGGCTGTTCACGGCCGCCTCGGTGACGCTGCTGGAGCTGCTCACCGGCATCGGCGTGATCCTGGCGGCGTCGGTGCCGTTCGTGCTGCTGGGCATGGCGGTCGGCTGCTCGCTGTCGGCGAAGGCGGCGCTGCCGGTGGTGCAGGTCGTGCTGTTCCCGCTGGCGTTCGCCGGCGGGCTGTTCCTGCCGCCGATGATGTTCCCGTCCTGGCTGGACACCCTGTCGCAGGTGACGCCGACCCGCGCCGGTCGTGACCTGCTGGTGCAGGCGTTGACCGGCGCGGACGCCTACGCCTGGGCGTGGCCGGTGCTGCTCGGCTGGACGGCGGTGTTCGCGACGCTGGCCGTGGTGGCCTACCGCCGCGACGAGGGGCGCCGCTTCCGCTGAMTTAPAAPTQAPPSGTLNPVVLTWLHLKFQFLETVRIPIAVLGNMLFPSLAMFFFVVPQSQVAQNPLAATMAVAGLSLFAVCSASLFTYGLGVAEDRQLPFDPFVRSLPAGPAPRMIARILNGAIFALFGLVPLIVIGWLFTAASVTLLELLTGIGVILAASVPFVLLGMAVGCSLSAKAALPVVQVVLFPLAFAGGLFLPPMMFPSWLDTLSQVTPTRAGRDLLVQALTGADAYAWAWPVLLGWTAVFATLAVVAYRRDEGRRFRPGPT0006730_15345DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_00994897drrA_1COG1131Doxorubicin resistance ATP-binding protein DrrAATGACCGTCATCACCGTCGACGGCGTCACGCGCCGGTTCGGCGACGTCACGGCCCTCGACGACGTCAGCCTCGACGTCGCCCCGGGCGAGCTCGTGGGGATGCTCGGCCCGAACGGCGCCGGCAAGACCACCCTGCTGTCGCTGATCAGCGGGCAGCGCCGGCCCGACGTCGGCACCGTCCGGCTCCTCGGCGGCGACCCGCGCGACGCCGCCACCCGGGTCGGGCTCGGCATCACCCCGCAGGAGACCGGCCTGCCCCCGACGCTGCGGGTCGGCGAGGTCGTCGACTTCGTCGGCGGTCACTTCCCCGACCCGGTACCCAGCGCCGAGCTGCTCGAGCAGTTCGGGCTCACCGACAAGACGCGCAAGCAGACCGGGTCGTTGTCCGGCGGGCAGAAGCGTCGCCTCGCCGTCGCGCTGTCCCTGGTCGGCCGGCCGCGGGTGGTCCTGCTCGACGAACCCACCACGGGCCTCGACGTCACCGCCCGCCAGGCGCTCTGGGACGCGATCCGGCAGTACCACGCCGGCGGCGGGACGGTGCTGCTGACGAGCCACTACCTGGAGGAGGTGCAGGCGCTGGCTGAACGCGTCGTCGTCATCGACCACGGCGTCGTGCGCGCCGACGACTCCCTGGACGGCATCCTCAGCCGCGTCGGGCTGCGGCGGGTGTCCGTGCGCACGACGGCGGACCTCACGTCCTGGTCCGGCGTCTCCCGCGGCGAGCACCGCGGCGACGGCGTCCAGGAGCTCTACACCCCGGACGCGGACGCGCTCGTCCGCGCACTGGTGACCTCCGGCGTCGAGTTCTCCGACCTGCAGATCCGCGGCGCCAGCCTCGAGGAGGCGTTCGCCGAGATGGTCGCCGACGACAACCCCCTGGAAGGAGCGGGACGATGAMTVITVDGVTRRFGDVTALDDVSLDVAPGELVGMLGPNGAGKTTLLSLISGQRRPDVGTVRLLGGDPRDAATRVGLGITPQETGLPPTLRVGEVVDFVGGHFPDPVPSAELLEQFGLTDKTRKQTGSLSGGQKRRLAVALSLVGRPRVVLLDEPTTGLDVTARQALWDAIRQYHAGGGTVLLTSHYLEEVQALAERVVVIDHGVVRADDSLDGILSRVGLRRVSVRTTADLTSWSGVSRGEHRGDGVQELYTPDADALVRALVTSGVEFSDLQIRGASLEEAFAEMVADDNPLEGAGRPGPT0006725_16395DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_00995300hypothetical proteinATGAGCGACCTCGACCCCGTCATCCACGCACCGGCGCGGCTCCGCGTCGTCGCGGCGCTCGCGGCGCTGCCCCCGGACGAGGAGATCACCTTCCCCAAGCTGCAGAAGCTGCTCGACATGACCGCCGGGAACCTCTCGACCCACGTGCGCCGGCTGGACGACGCCGGCTACGTGCAGGTCACCAAGACGCACGCCGGCCGCCGGCCGGCCACCTACCTGACGTTGACCACCGCCGGTCGACGAGCGTTCGAGGACTACACCACCACCCTGAACGACCTGCTGAGAGGAGCGGGAGCATGAMSDLDPVIHAPARLRVVAALAALPPDEEITFPKLQKLLDMTAGNLSTHVRRLDDAGYVQVTKTHAGRRPATYLTLTTAGRRAFEDYTTTLNDLLRGAGANANANANANA
AK018_00996699hypothetical proteinATGAACGCTCGCGTCGACCGCACGCCGACCGGCGACGACCCCCGCCTCGGCGTCGCGGAGTCCCAGCGCCTCATCGCCGCCTCCCAGGAGCGTGCCCGCCGAGGCCTCGAACCCGACGGCCGCCTGCTCTTCGGGACCTGGGCCGTGGCCTGGGGAGTCGGCTACACGATCCTGTGGGTGAGTGCCCGCGACACCGGCGCCAGCCCCGGCGGTGTCGCCTTCGCCGTCTACTTCGCGCTGCTCGCCGCAGCCGTCGCGATCACCATCGTCCACATCGTGCGACGCACCGCCGGCACCCGCGGACCGAGCGCCCGCGCCGGCGCCCTGTGGGGATGGGGTTGGCCCGTCGGGTTCTCCGTCTACGGGCTGATCCTCGGCGGGATCGCCGACGCCGGAGCCTCCGACGCCGTCATCGGCCTGGTCGCCAACGCGCTGGCCTGCGTGATCGTGGGCCTGATGTACCTCGGTGGCGCCGCCTGCTTCGGCGAGGCCCGGCTCTACGGGCTCGGGGTGTGGATCATCCTCGTGGCCGGTGCCGCGACGTTCGCCGGCATGCCCACCACCTACCTCGTGATGGCGGCGGCCGGCGGCGGAGGATTCCTCGTCATGGCGGTCGTCGAGGTCGCCCTGGCCGCGCGACGGCGCCGCACCGGCACTCCGGCCCCAGCGAGCACCGCCGTCGGGCGGGACGCCGCATGAMNARVDRTPTGDDPRLGVAESQRLIAASQERARRGLEPDGRLLFGTWAVAWGVGYTILWVSARDTGASPGGVAFAVYFALLAAAVAITIVHIVRRTAGTRGPSARAGALWGWGWPVGFSVYGLILGGIADAGASDAVIGLVANALACVIVGLMYLGGAACFGEARLYGLGVWIILVAGAATFAGMPTTYLVMAAAGGGGFLVMAVVEVALAARRRRTGTPAPASTAVGRDAANANANANANA
AK018_00997945hypothetical proteinATGACCGACCCCGCCCCCACCCGCGACCTCGGCGCGCCCGCCCCGACCGGCACGCCCGTCGGCCACGCCGGCACCCGCGTCGACATCGCCGAACGGGACGCCTGGTCCCTCGGGGCCGGTGGGACCGTGCTCGCGATCGTGCTCGCCGCCGCCCTCCTCCTGCTCGGCATCGCCACGATGCTCGCGGCCGGCCCGGTCGGCATCGTGCCCGGCATCCTGCTCGCCGTCGTCGGCGTCCTGCCGCTGACCGGCATCGCCGTCGTCAGCCCCGGCCAGGCCCTCGTCGTCCAGTTCTTCGGGCGGTACGTCGGCACCGTGCGGCGCACCGGTCTCGTGCTGACGGTCCCGCTCTCCACCCGTTCCAAGGTGTCGGTGCGCGTGCGCAACTTCGAGACCAGCGAGCTCAAGGTCAACGACGCCGACGGCAACCCGATCAACATCGCCACGATCGTCGTGTGGCAGGTCGCCGACACCGCGCGGGCCAGCTTCGCCGTCGAGGACTACGACGACTTCGTCGTGGTGCAGTCCGAGTCCGCGCTGCGGCACGTGGCCATGTCCCACCCGTACGACGGCGGCAACGGCACCGAGTCGCTGCGGGGCGCCACCGAGCTCGTGTCGGACGAGATCGCCGCCGAGGTGGCCGAACGCGTCGCCGTCGCCGGCGTCGAGGTCATCGAGGCACGCATCTCCCACCTCGCCTACGCGCCAGAGATCGCCCAGGCGATGCTGCAGCGCCAGCAGGCCGGCGCCATCATCGCGGCCCGCGAGCGCATCGTGGACGGCGCGGTCTCCATGGTCGAGACGGCGCTGCACCGCCTCGAGGCCGAGGACGTCGTGGCCCTCGACGACGAGCGCCGCGCCACGATGGTCTCCAACCTGCTCGTCGTGCTGTGCGGGGAGAGCAGGGCCACCCCGGTCGTCAACGCGGGGTCGCTCTACCAGTGAMTDPAPTRDLGAPAPTGTPVGHAGTRVDIAERDAWSLGAGGTVLAIVLAAALLLLGIATMLAAGPVGIVPGILLAVVGVLPLTGIAVVSPGQALVVQFFGRYVGTVRRTGLVLTVPLSTRSKVSVRVRNFETSELKVNDADGNPINIATIVVWQVADTARASFAVEDYDDFVVVQSESALRHVAMSHPYDGGNGTESLRGATELVSDEIAAEVAERVAVAGVEVIEARISHLAYAPEIAQAMLQRQQAGAIIAARERIVDGAVSMVETALHRLEAEDVVALDDERRATMVSNLLVVLCGESRATPVVNAGSLYQNANANANANA
AK018_00998306hypothetical proteinGTGACGACCCAGGCGGCAACGTCCGGGGACGACGACGGCACCCCGGCGGGCGACGACGCACCGGAGGGTGCCGGGCCCGCCGCGGGGACGCCGTCGTCGACCGGCCGCCGGCCCGCCCGCAAGCAGGTGCCGCTCCGGCTGGACCCCGCCGTCCACGAGGCGCTGGCGCGATGGGCCGCCGACGACCTGCGCAGCGTCAACGCGCAGATCGAGATGCTGCTGCGCCGGGCGCTGCGCGACGCGGGTCGAATGCCCCGCGACGCCCGTCCGCCCCGCCGACCGGGCCGGCCGCCGTCGGCCCCCTGAMTTQAATSGDDDGTPAGDDAPEGAGPAAGTPSSTGRRPARKQVPLRLDPAVHEALARWAADDLRSVNAQIEMLLRRALRDAGRMPRDARPPRRPGRPPSAPNANANANANA
AK018_00999837hypothetical proteinGTGACCGCACCGCAGACCGCCCCCGCGGCGCCGTGGACCCCGCCCGCACCCGCAGCACCCGTCCGCAGCGCCCGCGACCGCCGTCGGACCGGCGCCGAGATCTGGCTCGTCCTCGGCCTCAGCCTCGGCCAGAGCGCCGTTTACGCGATCGTCAACATCGTCGCCCGGCTCACCTCCGGCACGGCGCTCGCCGAGCAGTCGGCCACGCTCAACGCCTCCCGCTCGGCCCGCCCCTACCTCGACCTGACCTACCAGCTGCTCGGCATCGCGTTCGCCGTCCTGCCCGTCGCGCTCGCGCTCTACCTGCTGTCCGCGCGCGGACCCGGGACGCTGCGCCGGATCGGGTTCGACGCCGCCCGGCCCGGCCGCGACACCGCCTGGGGGGTCGCGCTCGCCGCGGCCATCGGCATCCCCGGCCTGGCGTTCTACGCGCTCGGCCGGGCGCTCGGCATCACCGTCGAGATCCAGGCCAGCGCCCTGAGCGAGTACTGGTGGACCGTGCCCGTCCTGATCCTCGCCGCCCTGCAGAACGGGCTGCTCGAGGAGGTCATCGCCGTCGCCTACCTGCACGAACGCACCGCCGACCTCGGCTGGCACCGGCTCACGTTCATCGTCACCAGCTCGCTGCTGCGCGGCTCCTACCACCTCTACCAGGGCATCGGGCCGTTCCTCGGCAACGTCGTCATGGGCGTCGTCTTCTCCTGGTTCTACACCTCACGGTGGGGGCGCCACCGGGTGCTGCCCCTCGTCGTCGCGCACACCCTGCTCGACGTCGTCGCGTTCGTCGGCTACGCGTTCGTGCCCGACGCGTGGCTCGCGGCGCTCGGCGTGGGCTGAMTAPQTAPAAPWTPPAPAAPVRSARDRRRTGAEIWLVLGLSLGQSAVYAIVNIVARLTSGTALAEQSATLNASRSARPYLDLTYQLLGIAFAVLPVALALYLLSARGPGTLRRIGFDAARPGRDTAWGVALAAAIGIPGLAFYALGRALGITVEIQASALSEYWWTVPVLILAALQNGLLEEVIAVAYLHERTADLGWHRLTFIVTSSLLRGSYHLYQGIGPFLGNVVMGVVFSWFYTSRWGRHRVLPLVVAHTLLDVVAFVGYAFVPDAWLAALGVGNANANANANA
AK018_010001671gsiA_1COG1123Glutathione import ATP-binding protein GsiAATGAGCACGCCCGTCGCGCGGATCGACGACCTCGCCGTCTCGTTCGCCACCGACGCCGGCCCGGTGCGGGCCGTCGACGGCGTCAGCCTCGACGTCGCACCCGGCGAGGTGCTCGCCATCGTGGGCGAGTCCGGGTCCGGCAAGACGGTGACGGCCAAGACCGTCCTCGGGCTGCTGCCGGCGACGGCGACGGCGAGCGGCGCCGTCGTGCTCAGCGGGCGCGACGGGACGGAGACCGACGTCGTGCACGTGTCCGCGGGCGAGCTGCGTCAGGTGCGCGGCCGGGACGTGGCGATGGTGTTCCAGGAGCCGTCCACCGCCCTGAACCCCGTGTACACGGTGGGCTGGCAGATCACCGAAGGTCTGCGCGCCCACGGCAGGGTCTCGGCGAAGGAGGCCCGACGGCGCGCCGTCGAGGTGCTGCGGACGGTCGGCATCCCCGACCCGGAGCAGCGGGTGGACCACTACCCGCACCAGTTCTCCGGCGGGCAGAAGCAGCGCGTGGTGATCGCGATGGCGCTGGTGCTGAACCCCGGGCTGATCGTCGCGGACGAACCGACGACCGCGCTGGACGTGACCGTCCAGGCGGAGATCCTGGACCTGCTGCGCAGCCTGCGGGACTCCACGGGCACCGCGATCGTGCTCATCACGCACAACATGGGTGTGGTCGCGGACCTCGCCGACCGGGTCGCGGTGATGTTCCACGGCAAGGTGGTCGAGGAGGCTCCCGTGGCGGACCTCTTCGCCGCGCCGCAGGCCGAGTACACGCGGTCGCTGCTCGGTGCGGTGCCTCGCGTCGGCGAGGGGACGGCGCGCGCCGAGGCGCGGGCCGCGGCCCGTCCGGAGGGCTGGGCGGACGCCGAACCCGTCGTCGCGGCCGAGCACCTGACCATCACTTACCCGGGCCGGTTCCGCCGGCCGGGCTTCACCGCCGTCGACGACGTGTCCCTGGCGATCCGCCCCGGCGAGGTGCTGGGGCTGGTCGGGGAGTCGGGGTCGGGCAAGACCACGATCGCGCGCGCGGTGGCGGGCCTGCAGACGGTCACGGACGGTTCCCTGCGGGTGCTGGGCACGCAGATGCGCGGTGCGCGGGGACGAGCGCTGGCCGACATGCGTCCTCGCCTGGGCTTCGTGTTCCAGGACCCGGCGACGTCGTTCAACCCGCTGCTGACGATCGCCGAGTGCGTGGCCGAGCCGCTGGTGGTGCACGGGCGGGCGTCGTCCCCGGACGCGGCGCGCGGACGGGTCGACGAGCTGCTGGAGGCCGTCCAGCTCCCGCGCTCCTACGGCGACCGGTACCCGCACGAGCTCTCCGGCGGGCAGCGGCAGCGGGCGTCGTTGGCGCGGGCCCTGGCCCTCGAGCCGGAGCTGCTGGTCGCGGACGAGCCGACGTCGGCCCTGGACGTCTCGGTGCAGGCCCGCGTGCTGGAACTGTTCGCCGAGCTGCAGGACGAGCTGGGGTTCGCGTGCCTGTTCGTCTCCCACGACCTGGCGGTCGTGGACCGGCTCGCCGACCGGATCGCGGTGCTCTACCGCGGCCGCCTCGTCGAGGAGGGCACGGGGGCCGAGGTGCTGGGCTCGCCGCGGGAGGAGTACACGCGCCGGCTGCTCGCGTCGTTGCCGGTGCCCGACCCGGTCGAGCAGGCCCGGCGGCGCCTCGCCCCGGCGTGAMSTPVARIDDLAVSFATDAGPVRAVDGVSLDVAPGEVLAIVGESGSGKTVTAKTVLGLLPATATASGAVVLSGRDGTETDVVHVSAGELRQVRGRDVAMVFQEPSTALNPVYTVGWQITEGLRAHGRVSAKEARRRAVEVLRTVGIPDPEQRVDHYPHQFSGGQKQRVVIAMALVLNPGLIVADEPTTALDVTVQAEILDLLRSLRDSTGTAIVLITHNMGVVADLADRVAVMFHGKVVEEAPVADLFAAPQAEYTRSLLGAVPRVGEGTARAEARAAARPEGWADAEPVVAAEHLTITYPGRFRRPGFTAVDDVSLAIRPGEVLGLVGESGSGKTTIARAVAGLQTVTDGSLRVLGTQMRGARGRALADMRPRLGFVFQDPATSFNPLLTIAECVAEPLVVHGRASSPDAARGRVDELLEAVQLPRSYGDRYPHELSGGQRQRASLARALALEPELLVADEPTSALDVSVQARVLELFAELQDELGFACLFVSHDLAVVDRLADRIAVLYRGRLVEEGTGAEVLGSPREEYTRRLLASLPVPDPVEQARRRLAPAPGPT0004435_3570DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
AK018_010011080gsiDCOG1173Glutathione transport system permease protein GsiDATGACCGCTCCGGAGATCGCCGGGGGGCCCGGCGCCGCACCCGCCACCCCCGAGCACCTGGACGGCCGCGGTGCCTGGTGGCGTCGGCTGCCCGTGGTCCGTCAGGTGCGCCAGAGCGTGGGCCTGCAGCGGGGCATGCTCGTCGCCGGGCTGGTGCTGTGCGCCGTGTTCGTGGTCACGGCCGTGGGGGCGCGCTGGATCGCACCGTACGGCTGGTCGCAGCTGCGCACGCCGGACGGGACGTTCGGCGCCCAGCAGCCGCCGAGCGCCGAGCACTGGTTCGGCACCACCGTCGGCGGCTACGACGTGCTGTCCCGCGTCGTGTGGGGCGCCCAGACGGCGTTGCTGGTGGTGATCGTCGCCGTGCTGGCCTCGATCGTCGTCGGCGTGCTGCTCGGGCTGGTGTCGGGCTACTTCGGCGGCTGGGCGGACCGCATCCTGGTGCTCGTCGCCGACGCCGTCTACGCCTTCCCGTCCCTGCTGCTCGCGATCTTGCTCGCCATCGTCATCTCGGGCGGACAGTCGAGCATGTGGGGCGGGGTGCTGGCCGCGGCGCTGTCCATCACGGTGGTGTTCGTGCCGCAGTACTTCCGCGTGGTGCGGGCCGAGGTGGTCCGCATCAAGTCCGAGGCGTTCGTCGACGCCGCGCGCGTGCTGGGCACGCCGCACCGGCGCATCATGACCCGCCACGTGCTGCGCAACTCGGTGCGCACCCTGCCGCTCATCGTCACGCTGAACGCCTCGGAGGCGATCCTGACCCTGGCGGGCCTCGGCTTCCTCGGGTTCGGCATCGAGCCGACGGCGGCGGCCGAGTGGGGGTACGACCTGCAGCGGGCGGTCGCGGACGTCACGTCCGGCATCTGGTGGACCGCGCTGTTCCCGGGCCTGGCGATCGTGCTGGCCGCGATGGGCATGACGCTCGTCGGCGAGTCGCTCAACGACCTGGCCGACCCGCGGCTGCGGGTCCGTGCCCGGAACCGGAAGGTCGCCGGATCGGTCGCCGCCACCTCGGTGGCCGGCACGTCGACCGCGCCGGCGGGGGAGTCGTCGGCCGCCGCCGACCCGAAGGAGGACTCATGAMTAPEIAGGPGAAPATPEHLDGRGAWWRRLPVVRQVRQSVGLQRGMLVAGLVLCAVFVVTAVGARWIAPYGWSQLRTPDGTFGAQQPPSAEHWFGTTVGGYDVLSRVVWGAQTALLVVIVAVLASIVVGVLLGLVSGYFGGWADRILVLVADAVYAFPSLLLAILLAIVISGGQSSMWGGVLAAALSITVVFVPQYFRVVRAEVVRIKSEAFVDAARVLGTPHRRIMTRHVLRNSVRTLPLIVTLNASEAILTLAGLGFLGFGIEPTAAAEWGYDLQRAVADVTSGIWWTALFPGLAIVLAAMGMTLVGESLNDLADPRLRVRARNRKVAGSVAATSVAGTSTAPAGESSAAADPKEDSPGPT0004450_2517DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
AK018_010021044dppB_1COG0601Dipeptide transport system permease protein DppBGTGGCTGCAGCACCGACGGCAGGAAGCGCACTGGGACGGTACGTCCTGGTGCGCTTCCTGCTCATCATCCCGACCGTCCTCATCCTGGTCACGACCGTGTTCGTGCTCATGCGCGCCACGGGTGACCCGATCACGGCCGCGCTCGGCGGCCGCCTCACCCCCGACCAGCTCGCCGAACGCATCTCCGCCGCCGGCTACGACCGGCCGATCCTCGTGCAGTACTGGGAGTACCTGACGGGCATCCTCACCGGCGACTTCGGGACCACCATCAGCGACAACCGTCCCGTCACCGAGGTGCTGGCCACGTACGGCGCCGCCACGCTCGAGCTCAGCGCCTACGCGGTGCTCGTCGCGCTCGTCCTCGGCGTCCCGTTCGGCATGATCGCGGCCTACCGCCGCGACCTGCTGCCCGACGCCGTGCTGCGGGTGCTCGCGATCCTCGCCTACGCGACGCCGGTGTTCTTCGCCGGCCTGCTGCTCAAGCTGATCTTCTCGGTGTGGCTGGGCTGGTTCCCCGTCGCGGGCCGGGTCTCGACCGGCGGCGAGATCGCGATGCGTCAGGCCGGCGCCGACTCGGGCTTCATGCTGGTCGACGCGTTCGCCACCGGGGACCCCGCCGTCGTGCTCGACGTGCTGTCCCACGCGTTCCTGCCCGCCCTGACCCTGGGGCTGCTCACCGCGGGCGTCTTCCTGCGGCTGGTGCGCACCAACATGATCGGCACGCTGGGCACCGAGTACGTCGACGCCGCCCGCTCCCGCGGCGTGCGCGAGCGGAGGCTCGTCACCGCGCACGCCTGGCGGCCGGCCCTCATCCCGATCATCACGGTGGCCGGCATGCAGATCGCCATGCTGCTGGTCGGCGCGGTGCTGACCGAGACCACGTTCGAGTGGCGGGGGCTGGGCTTCCAGCTCTCGGAGTACCTGCAGGCGCGCGACTTCGTGGCCGTCCAGGGCATCGTCGTCGTCATGGCCGTCGTGGTCGCGGTGACCAACTTCCTGGTGGACGTCATCGCCGCGCTCGTCGACCCGAGAGTGAGGTTCTGAMAAAPTAGSALGRYVLVRFLLIIPTVLILVTTVFVLMRATGDPITAALGGRLTPDQLAERISAAGYDRPILVQYWEYLTGILTGDFGTTISDNRPVTEVLATYGAATLELSAYAVLVALVLGVPFGMIAAYRRDLLPDAVLRVLAILAYATPVFFAGLLLKLIFSVWLGWFPVAGRVSTGGEIAMRQAGADSGFMLVDAFATGDPAVVLDVLSHAFLPALTLGLLTAGVFLRLVRTNMIGTLGTEYVDAARSRGVRERRLVTAHAWRPALIPIITVAGMQIAMLLVGAVLTETTFEWRGLGFQLSEYLQARDFVAVQGIVVVMAVVVAVTNFLVDVIAALVDPRVRFPGPT0004445_1756DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
AK018_010031650dppACOG0747Periplasmic dipeptide transport proteinATGAGGACGATCCGAAGGGCCCGGCGCTCGGCCGCGGCCGCGGCCGGCACCACGGCGGTCCTGCTGGCGCTGACGGCGTGCGGCGGCAGCGGCACCGACGAGGGGTCGGAGGGCACGGACGGCGGCGGCGCCGCCGAGTCGCTGGTCATCGGCACGACCGACAAGATCACGACCATCGACCCCGCCGGGTCGTACGACAACGGCTCCTTCGCCGTGATGAACCAGGTCTACCCGTTCCTGATGAACACCCCCTACGGCAGCCCGGACGTGGAGCCGGACATCGCCGAGTCGGCGGAGTTCACCTCGCCCACCGAGTACACCGTCACCCTCAAGTCCGGCCTGACGTGGGCCAACGGCAACGACCTGACGGCCTCCGACGTGAAGTTCAGCTTCGACCGCCAGCTCGCCATCGCGCACGAGAACGGCCCGTCGTCGCTGCTGTACAACCTGGACAGCACGGAGGTCGTCGACGACACCACCGTCGTCTTCCACCTCAAGGAGGCGAACGACCAGGTCTTCCCGTCGATCCTGTCCTCGCCGGCCGGCCCGATCGTCGACGAGGACGTGTTCTCCGCCGACGCCCTCACCCCGGACGCGGAGATCGTGGACGGCCAGGCCTTCGCAGGCCAGTACGTCATCACGAGCTACACCCAGAACGAGCTGGTCACCTACGCGGCGTTCGACGGCTACCAGGGACTGCTCGGCGAGGCCGAGACCCCCGAGATCAACGTCTCCTACTTCGCCGACGCCTCCAACCTCAAGCTCGAGGTCCAGCAGGGCTCGGTGGACGTCGCCTTCCGCTCGCTGTCCTCGACCGACATCGAGGACCTGCAGGGCGACGACGCCGTCAAGGTCGTCGAGGGCCCGGGCGGCGAGATCCGCTACGTCGTCTTCAACTTCGACACCCAGCCCCACGGCGCCGCGCAGGACGACGCCGACGAGGACATGGCGCTGGCCGTCCGGCAGGCCGTGGCGCACCTCATCGACCGCGAGGCCATCTCCGAGCAGGTCTACAAGGGCACCTACACCCCGCTGTACTCCTACGTCCCCGCCGGCCTGACCGGCGCGACGGAGTCCCTCAAGGAGCTGTACGGCGACGGCGAGGGCGGCCCGGACGCCGACGCCGCCGCGACCGTCCTGGAGGACGCCGGTGTCGAGACGCCGGTCGAGCTCAGCCTGCAGTACTCCAACGACCACTACGGCCCCTCCTCGGGCGACGAGTACGCCCTGATCAAGGACCAGCTCGAGTCGTCCGGCCTGTTCAGCGTGGACCTGCAGACCACCGAGTGGGTGCAGTACAGCGAGGACCGCACCGCCGACGTCTACCCGGCCTACCAGCTCGGCTGGTTCCCGGACTACTCCGACGCGGACAACTACCTCACGCCGTTCTTCCTGGACGGCGGGTTCCTCGGCAACCACTACTCGAACCCGACCGTCGACGAGCTGATCGTCGAGCAGGGCGTCACCGAGGACCCGGACGAGCGCGCGGCCGTCATCGAGGAGATCCAGGACACCGTGGCGCAGGACCTGTCCACGGTGCCGTACCTGCAGGGCGCGCAGGTCGCCGTCGTCGGCGCCGACGTGACCGGCGCCGAGGACACCCTCGACGCCTCCTTCAAGTTCCGCTACGCGGCACTGAGCAAGGGCTGAMRTIRRARRSAAAAAGTTAVLLALTACGGSGTDEGSEGTDGGGAAESLVIGTTDKITTIDPAGSYDNGSFAVMNQVYPFLMNTPYGSPDVEPDIAESAEFTSPTEYTVTLKSGLTWANGNDLTASDVKFSFDRQLAIAHENGPSSLLYNLDSTEVVDDTTVVFHLKEANDQVFPSILSSPAGPIVDEDVFSADALTPDAEIVDGQAFAGQYVITSYTQNELVTYAAFDGYQGLLGEAETPEINVSYFADASNLKLEVQQGSVDVAFRSLSSTDIEDLQGDDAVKVVEGPGGEIRYVVFNFDTQPHGAAQDDADEDMALAVRQAVAHLIDREAISEQVYKGTYTPLYSYVPAGLTGATESLKELYGDGEGGPDADAAATVLEDAGVETPVELSLQYSNDHYGPSSGDEYALIKDQLESSGLFSVDLQTTEWVQYSEDRTADVYPAYQLGWFPDYSDADNYLTPFFLDGGFLGNHYSNPTVDELIVEQGVTEDPDERAAVIEEIQDTVAQDLSTVPYLQGAQVAVVGADVTGAEDTLDASFKFRYAALSKGPGPT0004430_5921DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
AK018_010042799hypothetical proteinATGTCCCGAGCCAGCGGCGAGGTGCCCGCGGGCCGCGGTGCCGCGGGCACCTCGGTGCACGACATGGGCTCGTTCGTCGGTGACGAGCCGGCCCCGGCGACCGGGGCCCTGCGCGCCCTGTTCCTGGGCGAGGGCGTCACGGACTCCGGCGCCGGTCTGGTGCGGGTGGTCGACACCCCCGAGCAGCGCGTGCGCCACCCCTCCGACCTGCTCGGCATCATCGGCAGCACGCTCGGGATCGCGCTCGTGCTGGTCCTGTCCGTCGTCGCGCACGGCACCACCGAGGGCGTCACGGCCGACGTGCGGGCGTTCAACACGTTCCTCGGCGAGCTGCTGTTCCTGCCGGTCGCCGTCCTGGAGGCGCTGGTCACCCTGTTCGTCCCGGTGGCGGTGCTCGTCGAGCTGGGCCTGCGCCGGCTCGGCCGCCAGGTCGTCGAGTCGATCGTCGCCGCCACGCTGGGCCTCGTCCTCGGCGTGCTCACGGTCCTGCTGCTGGACTGGCTGGGCAGCGACGAGCTGATCCGGGCGTTCTCCGTGTTCGCCGACGGCGCGTGGCGGCTCACCCTGCCCGGCTACGTCGCGGGCATCGCCGCCCTGCTGACCGCGGCGGGCCCCCGCACCCGACGCCGGACCGTGCGGTGGTCCTGGAACGTGCTGTACCTGGCACTGATCATCGCGCTCATCACCGGCCAGGCGCCGCTGCCCAGCGTGCTCGTCGCCCTGCTCGTCGGCCGCCTGGCGGGCCAGACGGTGCAGTACGCCTCCGGGGTGCGCTCCGAGCGCGCCTACGGCGGCGAGCTCGTCACCGCCGTCCGCCGTGCCGGGTTCCGTCCCCACGCCCTGGTCCGGGTCCGCGGCGTCTCCGCCAGCGTCGACGACGGCGGTACCGAGGCGTCCGCCGACCCGGACGCCGGTGGCACGGCGGCGGAGCGCACCGACCCCGTGGACCGCATCCCCGACGACACCGTCACCCACGTCGACTCCGCCGGCGAGGTCACCGGGCGCACCACCCTGCGAGCGCTGCTGCGCAACCGCCCCCGCTACGGCGAGCGCGGACGCGACGCCGCCGCGGTGCCGACGTCGGGCGCCCTGACGGACCCGGCGACCGTCGCCCTCACCCGGGCCAACGACACCCGCGTGTACGCGATGTTCACCCCGGACGGGACCCGCCGCGACGTCGTCGTGCTGGACGGCGACCGCCACGTCGTCGGCATGCTCACCCGCATGTGGCGCGCCCTGCGGCTGCGCGGGCTGGAGGGCCGCGCGCAGGTCTCCCTCAAGGCCGTCGCCGAGCGCAACGCGCTGCTCGCCTACGCCGCGTCCGCCGCCGGGGTCCGCACCCCGCGGCTGCTCGGCGTCGGCGAGGCGGCCGATTCCATCGTGCTCGTCACCGAGCACACCCCGGACGCCGTCGCCTGGCGCGACCTGCCGGACGACGCCCTCGACGGCCCGCAGGGCGACGCGGTCCTCGCCGCCGCGTGGGCCCAGCTGCGCCGCGCCCACGCCGCCGGGCTGACGCACCACGCGCTCACCCCGGACGTGCTGCTCGTCGCCCGGGACGACGGCGGTGGCGAGCCCCGCGTGTGGCTCACCGGCTGGGAGCAGGGCGAGATCGCCTCGACGACCCTCGGACGGCGGCTCGACCTCACCCAGCTCCTCGCGCTGCTGGCCCTGCGCGTCGGCGCCGACCGCGCGGTCGCCTCCGCCGTGCAGGCGCTGCCCGCCGCGGACGTCGCCGCCGTCGGGCCGCTGCTGCAGTCCGTCGCCCTGCCGGCCGCGACCCGGGTCGAGGTCCGCCAGCGCAAGGGCCTGCTCGACGCGCTGCGCGACGCCCTTGTCGAGCGCCTCCCCCAGGTCGACGTCCAGCCCCAGAACATCACCCGGTTCGGGGCCCGGACCGTCGTCATGCTGGCGCTGTTCATCGTGGTGATCACGGCGCTGGTCACCACCATGAACCTCGACGAGATCACCGACGCCGTCTCCCGCGCGAACCCGTGGTGGATCGTGGCGGCTTTCGCACTCGGGGCGATCACCTGGTTCGGCGCGGCGCTGACGTTCTCCGCCTTCTCCCCGAAGAAGCTGCCGCTGTGGCGCGCGACGCTGACCCAGATGGCCGGCTCCTTCGTGGCCCTCGCAGCACCGGCCGGCATCGGACCGGCCGCACTGAACCTGCGGATGCTGACCCGGCGCGGCGTCGAGACACCGATGGCCGTCGCGACCGTCGCGCTGGTCCAGGTCTCGCAGTTCGTGGTGACCGTGGTGCTGCTGGTGGTCCTGTCGATCGTCACCGGGTCCGGCGGGCTCATCGAGCTGCCGTCCATCACGGTGCTGCTGGCGATCGCCGGCGTCGCTGTCGCGGTCGTGGCCACGCTGCTCGTGCCGGCCGTGCGGCGCTGGGTGTGGGAGAAGATCCGCCCCACGCTCGAGCAGGTCTGGCCCCGGCTGTCGCAGATGCTCGGACAGCCGACCCGCCTGGCCCTGGGCATCGGCGGCAACGTCATCATGTCGCTCGGGTACGTGCTGGCCTTCGACGCCGCGCTGGCCGCGTTCGGGCAGTCCCTCAACCTGGTCGACGTCGCCGTCATCTACCTGGTGGGCAACGCCCTCGGTGCCCTGGTCCCGACGCCGGGCGGTCTAGGTGGTGTCGAGGCGGCCCTGACCGCGGGCCTCACGGCGGCCGGTGTGCCGGCGTCGATCGCCCTGTCCACCACCATCCTGTTCCGGCTGGTGACCTACTGGGGCCGGGTGCCGTTCGGGTGGGTCGCGATGCGCTACCTGGAGCGCAAGGGCGACCTCTGAMSRASGEVPAGRGAAGTSVHDMGSFVGDEPAPATGALRALFLGEGVTDSGAGLVRVVDTPEQRVRHPSDLLGIIGSTLGIALVLVLSVVAHGTTEGVTADVRAFNTFLGELLFLPVAVLEALVTLFVPVAVLVELGLRRLGRQVVESIVAATLGLVLGVLTVLLLDWLGSDELIRAFSVFADGAWRLTLPGYVAGIAALLTAAGPRTRRRTVRWSWNVLYLALIIALITGQAPLPSVLVALLVGRLAGQTVQYASGVRSERAYGGELVTAVRRAGFRPHALVRVRGVSASVDDGGTEASADPDAGGTAAERTDPVDRIPDDTVTHVDSAGEVTGRTTLRALLRNRPRYGERGRDAAAVPTSGALTDPATVALTRANDTRVYAMFTPDGTRRDVVVLDGDRHVVGMLTRMWRALRLRGLEGRAQVSLKAVAERNALLAYAASAAGVRTPRLLGVGEAADSIVLVTEHTPDAVAWRDLPDDALDGPQGDAVLAAAWAQLRRAHAAGLTHHALTPDVLLVARDDGGGEPRVWLTGWEQGEIASTTLGRRLDLTQLLALLALRVGADRAVASAVQALPAADVAAVGPLLQSVALPAATRVEVRQRKGLLDALRDALVERLPQVDVQPQNITRFGARTVVMLALFIVVITALVTTMNLDEITDAVSRANPWWIVAAFALGAITWFGAALTFSAFSPKKLPLWRATLTQMAGSFVALAAPAGIGPAALNLRMLTRRGVETPMAVATVALVQVSQFVVTVVLLVVLSIVTGSGGLIELPSITVLLAIAGVAVAVVATLLVPAVRRWVWEKIRPTLEQVWPRLSQMLGQPTRLALGIGGNVIMSLGYVLAFDAALAAFGQSLNLVDVAVIYLVGNALGALVPTPGGLGGVEAALTAGLTAAGVPASIALSTTILFRLVTYWGRVPFGWVAMRYLERKGDLNANANANANA
AK018_01005288hup_1COG0776DNA-binding protein HB1ATGCACATGTCGCTCAACAAGTCCGAGCTCGCCTCGGCCATCGCTGCTAAGGCCGACCTGACCAAGTCGGACGCCGAGGCCGCCCTCAACGCCTTCCAGGAGGTGCTCATCGAGTCGCTCGGCAAGGGCGAGGCCGTCAAGGTCACCGGTCTGCTCTCGGTCGAGCGTGTCGAGCGCGCCGCCCGCACCGGTCGCAACCCGCGCACCGGTGAGGAGATCCAGATCCCGGCCGGCTACGGCGTGAAGATCAGCGCCGGCTCGCTGCTGAAGAAGGCCGTCGCCAAGTGAMHMSLNKSELASAIAAKADLTKSDAEAALNAFQEVLIESLGKGEAVKVTGLLSVERVERAARTGRNPRTGEEIQIPAGYGVKISAGSLLKKAVAKNANANANANA
AK018_01006774hypothetical proteinGTGGCGCAGAATCCTGCGGGCCGAGCGCCCGCTCCCCAGAAGCCGGCGGCGCCGGAGTCCGACGACGGTTGGGCACCCGTGCGGGGTCGCAAGCGGATGCGCGTGGTCGCGACCATCGTGGCGATCGCCATGCTGCTGACCGTCGTCGGCGGCACCGCCGTCAGCGTGCTCACCGCGGCGTCGGCGAGCGCCCACGACCAGCTCCTGTCCTCCGACCCGGAGGACGGTGCGGAGCTCGACGAGCCGGTCGAGGAGGTCTCGCTGACGTTCAGCGCGGATGTCATCGCCGAGGGCACCCAGGTGCTCCTGACGACGCCGTCCGGTGACGTCGAGGCCGACGTCACCGTCGAGGGCGCGGTCGTCACGGCGGGCTTCGGCGAGCAGACGGCTGGCGGGGACTACGCCGTGACCTGGCGTGTCGTGTCCTCCGACGGCCATCCGATCACCGGCGAGTTCGCGTACACGGTGGCCGGGCAGGCCGGTGACGAGGCGTCGGCGGAGGTGTCCGCGTCCCCGGCCGAGGAGCCGGTCCCGGCGGCCTCGGCGGAGTCCGAGCTCGAGGAGTCCGGCGAGGCCGACGGTCTCGGCGCCACCGAGCCCACGCCGTCGTCCACCACGGACGCCGAGGAGACCGCCGGCGCCGGCTCGATGCCGCTGTTGTACGGTGCCGCGCTGATCGCCGCGATCGGTGTCGCCGTCGCGCTGCTGATGCGGTCGCGCCGGCGTCTGCACGAGTCCGTCGGCCAGGACCCGCGGGACCGCGACCAGGACTGAMAQNPAGRAPAPQKPAAPESDDGWAPVRGRKRMRVVATIVAIAMLLTVVGGTAVSVLTAASASAHDQLLSSDPEDGAELDEPVEEVSLTFSADVIAEGTQVLLTTPSGDVEADVTVEGAVVTAGFGEQTAGGDYAVTWRVVSSDGHPITGEFAYTVAGQAGDEASAEVSASPAEEPVPAASAESELEESGEADGLGATEPTPSSTTDAEETAGAGSMPLLYGAALIAAIGVAVALLMRSRRRLHESVGQDPRDRDQDPGPT0004115_36DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004115-pcoC|copC-K07156NANA
AK018_010072049nadE_1COG0171Glutamine-dependent NAD(+) synthetaseGTGGACTTCCGCAACGCCTACGCCCACGGGTTCGCCCGGATCGCCTCGTGCACGGTGCCCGTCACGCTCGCCGACCCGGCCGCGAACGCCGCCGCCGTGCTCGACCAGGCGCGCGCCTGCCACGACGACGGGGCGGCCGTCGCGCTGTTCCCCGAGCTGTCCGTGTCCGGGTACGCCCTCGACGACCTGCACCTGGCCGACACGCTGCTCGAGGCCGTCACCGACGCCCTGGAGCAGATCGTGGAGGCCAGCGCCGACCTGCGTCCGCTGCTCGTCGTGGGCGCTCCGCTCGAGATCGAGGGCAGGGTCTACAACTGCGCCGTCGTGATCCAGGGCGGGCGGGTGCTCGGCGTCGCACCCAAGACGTACCTGCCGACCTACCGCGAGTTCTACGAGAAGCGCTGGTTCGCCTCGGGCGAGGCGCTGCGGGGCGCGCGCGTGCGGTTGCCGTTCGCCGACGACGACGTCCCCTGCGGTCCGGACCTGCTCTTCCGCGCCTCCGACGTCGCCGGCCTGACCGTGCACGTCGAGGTGTGCGAGGACATGTGGGTGCCCGTGCCGCCGTCGGCCGAGGCCGCGCTGGCCGGCGCGACCGTGCTGCTCAACCCGTCCGCCAGCCCGATCACGATCGCCCGCGCCGAGGACCGCCGCCTGCTGGTGCGCTCGGCGTCGGCGCGCTGCAACGCCGCCTACGCGTACGCCGCCGCGTCGCAGGGCGAGTCGTCCACCGACCTGTCCTGGGACGGGCAGACGCTGGTCTACGAGGCCGGCGACCTGCTGGCCGAGACGGACCGGTTCCCCGACGGACCGCGCCGCGCGGTCGCCGACGTCGACCTCGACCGGCTGCGCCAGGACCGGATGCGCCAGGGCACGTTCGACGACAACCGGCGGGCGCTGCGGGACCGCACCTCCGGCTTCCGGGTCGTCGAGTGGGAGGTGGGTCCGCCGTCGGGCGACCTCGGCCTGCGCCGGCACGTGGACCGGTTCCCGTTCGTGCCCGACGACGCCACGCGGCTCGCCCAGGACTGCTACGAGGCGTACAACATCCAGGTCACCGGCCTGGAGCGGCGGCTCGCCGCGATCGGGCAGCCCAAGGTCGTCGTCGGCGTCTCCGGCGGGCTGGACTCCACGCAGGCGCTGGTCGTGGCCGCGAAGGCGATGGACCGGCTCGGGCGACCCCGCACCGACGTGCACGCCGTCACGATGCCGGGCTTCGCGACGTCGTCCGAGACGAAGGACCGGGCCACGCGGCTGGCTCGCGCGCTGGGAGTGCGCTTCGAGGAGCTGGACATCCGGCCCGCCGCCGAGCAGATGCTGCGCGACCTGGACCACCCGTACGGCGCCGGCGAGCCGGTGTACGACGTGACCTTCGAGAACGTCCAGGCCGGGCTGCGCACCGACTACCTGTTCCGGATCGCCAACCATCGCGGCGGCATCGTGCTGGGCACGGGCGACCTGTCCGAGCTGGCGCTGGGATGGTGCACCTACGGCGTCGGCGACCAGATGTCGCACTACGCGGTGAACACCGGGGTGCCGAAGACGCTGATCCAGCACCTCATCCGCTGGGTGGCCGACTCCGGCGACTTCCCCGGGGAGGTCGGCGACGTGCTGCGCGAGATCGTCGTGCAGGAGATCTCGCCCGAGCTGGTGCCCGCCGGCGAGGGCGAAGCGCCGCAGTCCACCGAGGCGATGGTGGGCCCCTACGCGCTGCAGGACTTCACGCTGTACTGGACGCTGCGGTTCGGGATGCGGCCGTCGAAGATCGCGTTCCTCGCCTGGCACGCCTGGCGGGACGCGTCCGTCGGCGACTGGCCGCCGAGCTACCCGCACGACGAGCGCTCCGCCTACGACCTCGCGACGATCCGACGGTGGATGCTGGTGTTCTACCGGCGGTTCTTCTCCTCGCAGTTCAAGCGCTCGGCGCTGCCGAACGGGCCCAAGGTGTCGGCCGGGGGGACCATGTCGCCGCGGGGGGACTGGCGGATGCCGTCGGACGCCTCGGCGGCGGCGTGGCTGCGCGAGGTCGAGGAGAACGTCCCGGAGGGCTGAMDFRNAYAHGFARIASCTVPVTLADPAANAAAVLDQARACHDDGAAVALFPELSVSGYALDDLHLADTLLEAVTDALEQIVEASADLRPLLVVGAPLEIEGRVYNCAVVIQGGRVLGVAPKTYLPTYREFYEKRWFASGEALRGARVRLPFADDDVPCGPDLLFRASDVAGLTVHVEVCEDMWVPVPPSAEAALAGATVLLNPSASPITIARAEDRRLLVRSASARCNAAYAYAAASQGESSTDLSWDGQTLVYEAGDLLAETDRFPDGPRRAVADVDLDRLRQDRMRQGTFDDNRRALRDRTSGFRVVEWEVGPPSGDLGLRRHVDRFPFVPDDATRLAQDCYEAYNIQVTGLERRLAAIGQPKVVVGVSGGLDSTQALVVAAKAMDRLGRPRTDVHAVTMPGFATSSETKDRATRLARALGVRFEELDIRPAAEQMLRDLDHPYGAGEPVYDVTFENVQAGLRTDYLFRIANHRGGIVLGTGDLSELALGWCTYGVGDQMSHYAVNTGVPKTLIQHLIRWVADSGDFPGEVGDVLREIVVQEISPELVPAGEGEAPQSTEAMVGPYALQDFTLYWTLRFGMRPSKIAFLAWHAWRDASVGDWPPSYPHDERSAYDLATIRRWMLVFYRRFFSSQFKRSALPNGPKVSAGGTMSPRGDWRMPSDASAAAWLREVEENVPEGPGPT0013450_854DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013450-nadE2-K01950NANA
AK018_010081266hutI_2ImidazolonepropionaseATGACCTCCTCCACGCAGCCCACCACCCCGGGCACCACCCGCAGCTCTGTCGCCGTCACGAACGGCTACGTCGTCCCCGTCGTCGGCGAGCCGGTCGAGCACGGCACCGTCCTGATCACCGACGGCGTCATCACGGCCGTCGGCGCCGACGTCGAGGTCCCCGACGGCGTCCGCACCGTCGACGCGGGCGGCCGGTGGGTGCTGCCCGGGTTCGTCGAGTCGCACGGGCACGTCGGCGTGCACGAGGAGGCCGAGGGCTGGGCCGGGGACGACACCAACGAGAAGACCGCCGCGAACGGCGCCGCGTTCCGGGCGCTGGACGGCATCAACATCGAGGAGGAGGGGTTCCGCGACGCGCTCGCCGGCGGCGTGACCTCCGTCGTCGTCAAGCCCGGCTCGGCCAACCCGATCGGCGGGCAGACCGTCGCGATCAAGACCTGGGGCGGGCGCACGGTGGACGAGCAGATCATCCGCGAGGCCGTCTCGGTCAAGAGCGCGCTGGGCGAGAACCCCAAGCGGGTGTACGGCGAGCAGAAGAAGACGCCGGCGACCCGGCTCGGGGTGGCCTCGGTGATCCGGCAGGCGTTCCTCGACGCCCAGCACTACGCGGCCGCCCGCGACGCGGCGGAGGCCGAGGGGAAGCCGTTCGCGCGGGACCTGACCAAGGAGGCGCTGGCGCGGGTGCTCGACGGCGAGCTCGCCTGGGACCAGCACACCCACCGCGCCGACGACATCGCCACGGCGCTGCGCCTGGCCGACGAGTTCGGCTACCGCCTGGTGATCAACCACGGCACCGACGGCGCGGCGGTCGCCGACGTGCTGGCGGAGCGGGACGTGCCGGTGATCTTCGGGCCGATGTTCACGACCCGGTCCAAGGTGGAGCTGCGGAACCGGTCGATCGCGGCGCTGGGCCGGCTCGCCGAGGCCGGGGTGCGCGTCGCGATCACCACGGACCACCCGGTGGTGCCGATCAATTTCCTGGTGCACCAGGCCTCGTTGGCGGTGAAGGAGGGCCTCGACCGCCGGGTCGCCCTGGAGGCCCTGACGGTGAACCCGGCGACGTTCCTCGACCTGGACGACCGCGTGGGCGCGCTGCGTCCGGGGCTGGACGGCGACGTCGTCATCTGGTCGGGCGACCCGCTGGACGTCAACGCCCGTGCCGAGCACGTGTTCGTCACCGGCACCGAGGTGTACACGTGGGACGCCGAGGCCGACGGCGGCCGGGGCGCGGGGCAGGTCGTCGAACGGTCCGCACGGTTCGCCTGAMTSSTQPTTPGTTRSSVAVTNGYVVPVVGEPVEHGTVLITDGVITAVGADVEVPDGVRTVDAGGRWVLPGFVESHGHVGVHEEAEGWAGDDTNEKTAANGAAFRALDGINIEEEGFRDALAGGVTSVVVKPGSANPIGGQTVAIKTWGGRTVDEQIIREAVSVKSALGENPKRVYGEQKKTPATRLGVASVIRQAFLDAQHYAAARDAAEAEGKPFARDLTKEALARVLDGELAWDQHTHRADDIATALRLADEFGYRLVINHGTDGAAVADVLAERDVPVIFGPMFTTRSKVELRNRSIAALGRLAEAGVRVAITTDHPVVPINFLVHQASLAVKEGLDRRVALEALTVNPATFLDLDDRVGALRPGLDGDVVIWSGDPLDVNARAEHVFVTGTEVYTWDAEADGGRGAGQVVERSARFANANANANANA
AK018_01009450hypothetical proteinATGCGCTCCCTCCTCGCCGCCACCGCGGCCGTCTCCACCGCCTTCCTGCTCGCCGCCTGCGCCGGACCGGACGACGCCGAGCCGGCGGCGGAGACCTCCCCCACCCCGGAGGCCTCCACGGAGACGGAGGGCGGCGCAGACACCGTCACGACGTGCAGCGGCTACTACGACGGGGGTGAGCTCTCGATCCACCACCGGGTCACCACCTGGACACCCGAGGTCGCCGAGCCCGCCACCGAGGAGAACACCGGCGAGCTGACGATCGTGCGCGACCGTCTCGACGCCCAGATCCGCTACGCCGACACCGAGGCGGCCGCGCTGCTCGAGACCATCCAGGCGCCGTTCGACACCTCGCTCGAGGGCGGCTCCGCCGACCCGGCCGACGTCGAGGAGTCCGTGGCGGCGTTCGCGTCATTCTGCGCCGACGCCGGGTTCGTCGTCCCGGAGTGAMRSLLAATAAVSTAFLLAACAGPDDAEPAAETSPTPEASTETEGGADTVTTCSGYYDGGELSIHHRVTTWTPEVAEPATEENTGELTIVRDRLDAQIRYADTEAAALLETIQAPFDTSLEGGSADPADVEESVAAFASFCADAGFVVPENANANANANA
AK018_010102046mrdA_1Peptidoglycan D,D-transpeptidase MrdAGTGCGCCGCCGGACAACCCTGCCCCTGACCGTCCTGATCGCCCCCGCCGTGCTGGTCACGCTGACCGCCTGCACCGGGCCGGACCGGCCGCCCGCGGCCGACACCGCCGCCGCGCTCGCCGACGGGCTCGCGTCCGGCGACCTGGCCGCACTGACCGTCACCGCGACGACGTCCGCGATCCCCCAGCAGGTCCTCGACGAGGTCACCGAACCCCTGCGGGCCGCGGCCGAGGAGGCCGGCGCCGCCCCCGCCGTCGAGGTCGCCGAGGTGACGGAGCGCCCCGAGGCCGAGGGCGAGGAACCCGCCGCCGACGTGACCCTCGCGTGGAGCTGGCCGCTGGACGCCGAGCGCACCTGGGAGTACACCACCAGCACCGAGCTCGGCTGGGTGCCCGCCGGTGAGGACGCCGGACCGGACGACGTCGGCACCTGGGAGGTGCACTGGGAGCCCGACCTGCTCGTCCCCGAGCTCGTCGCCACCGACCGGCTCGAGATCGAGACCGTCGCCCCGGACCGCGGCGACTTCCTCGACGTCGACGGCGAGCCGCTGGTCACCGAGCGCGACGTGTGGCGCATCGGCATCGACAAGACCCGCCTGGACCCGCCCGCGTACGACGAGCAGTCGCGGGCGCTCGCCGAGCTGGTCGGCCTCGACCCCGACGACTACGCGGCACGCGTCGAGGCCGCGGGGGACAAGGCCTACGTCGAGGCGATCACCATCCGCAAGGACCGCGAGACGTCCGGCGTCGACTTCACCGCCGGCGACGCCCGCACCATCCGCGGCGTCAACGTGCTCGCCGACACCATGGAGCTCGCGCCGACGTCGACGTTCGCGCGGCCCGTCCTCGGCCGGTCCGGTGACGCCACCGCCGAGATCATCGAGGACTCCGACGGCGCGATTCAGGCCGGGGACACCGTCGGGCTGTCCGGCCTGCAGGCCGCCTACGACGCCGAGCTGCGGGGCGCACCCGGCCTCGTGGTGAACGTCGTCGACACCGACGGCGAGGTGCTGCGCGAGGCCTACCGGGCCGAGGCGGTGCACGGCGCCGACGTCGCCACCGCGTTCGACCCCGCGCTGCAGACGCTCGCCGAGGACGTGCTCTCCGACGTCGAGCCCGCCAGCGCCCTCGTGGCGATCCGCCCGTCCACCGGCGACGTGCTCGCCGCCGCCAGCGGCCCCGGGAGCGAGGGCTGGTCGACGGCGACCCTCGGCCAGTACGCCCCGGGCTCCACGTTCAAGGTGGCCGGGGCGCTCGCCCTGATGCGCGCCGGCGTCTTCCCCGAGGACACGGTCAGCTGCCCCGAGACCCGGACCGTGGACGGGCGCACCTACTCCAACGTGCCCGGCTACCCGGCGTCCGCCACCGGCGAGGTGCCGTTCTCCACCGCGTTCGCCCACTCGTGCAACACGGCGTTCATCGGGGCGGGGGACGCCCTCGAGACCAGGGCGCTCGCCGACGCCGCGGCGGACCTCGGGCTCGTCGCCGAACCGTCGGTCGGGGCCGCCGCGTTCCTCGGCGAGATCCCGACCTCCGACGGCGGCGCCACCGCGCGGGCCGAGGCGATGATCGGCCAGGGGCAGGTGCTGGCCTCCCCGCTCGGCATGGCGACGGTCGCCGCGAGCGTCGCGGCCGGGGAGCAGGTGGAGCCGCGCATCGTGCGCGAGGTCGTGGCGGCGGACGGGGACTCGGCGCCGTCCACGTCGCCGTCGGGACCTGCGTCGCCGTCCGCGTCGCCGTCCGCGTCGCCGTCGTCGGCGGGGGAGCCGGCGGGCACGGCCGACGGGCTGACCGAGACGGAGGCGGCCGACCTGCGCGACCTCATGGCCGGCGTCGTGACCGACGGCAGCGCCTCGGCCCTGGCCGACGTCCCCGCGGTGGTGGGCGCCAAGACCGGTACAGCACAGTACGGGGACGGGTCGCGCCAGCACGCGTGGATGCTCGCGATCACGGACGACGACCTGGCGGTCGCGGTGTTCGTCGAGGACGGCGAGTACGGGTCGACGACGGCGGGCCCGCTGATGGGGTCGTTCCTCACCGGGCGCTGAMRRRTTLPLTVLIAPAVLVTLTACTGPDRPPAADTAAALADGLASGDLAALTVTATTSAIPQQVLDEVTEPLRAAAEEAGAAPAVEVAEVTERPEAEGEEPAADVTLAWSWPLDAERTWEYTTSTELGWVPAGEDAGPDDVGTWEVHWEPDLLVPELVATDRLEIETVAPDRGDFLDVDGEPLVTERDVWRIGIDKTRLDPPAYDEQSRALAELVGLDPDDYAARVEAAGDKAYVEAITIRKDRETSGVDFTAGDARTIRGVNVLADTMELAPTSTFARPVLGRSGDATAEIIEDSDGAIQAGDTVGLSGLQAAYDAELRGAPGLVVNVVDTDGEVLREAYRAEAVHGADVATAFDPALQTLAEDVLSDVEPASALVAIRPSTGDVLAAASGPGSEGWSTATLGQYAPGSTFKVAGALALMRAGVFPEDTVSCPETRTVDGRTYSNVPGYPASATGEVPFSTAFAHSCNTAFIGAGDALETRALADAAADLGLVAEPSVGAAAFLGEIPTSDGGATARAEAMIGQGQVLASPLGMATVAASVAAGEQVEPRIVREVVAADGDSAPSTSPSGPASPSASPSASPSSAGEPAGTADGLTETEAADLRDLMAGVVTDGSASALADVPAVVGAKTGTAQYGDGSRQHAWMLAITDDDLAVAVFVEDGEYGSTTAGPLMGSFLTGRNANANANANA
AK018_010111014hypothetical proteinGTGCTCCCCCCGCCCTTCCGCCGTCGTGCGCGCCGTGTGGTGACCGCAGCAGCCGTCACCGCGGTGGTCGCCTGCCCGACGACGGCGGGTGCGGTGGCGCCGCACGGTCCGGTGGCGCCCGACCCGGCGGCACACGAGCCGCTCGGCCGGTACACGGCCGTGGTGGGCTGGGCGCCGACGGAGGAGCGGACGGTCGGCACGCCCTGGACGGACGGCGTCGCGATCTCTCCGGGGCTCGGGCGCGACGTCGAGCTGCAGCAGCTCGTGGACGGAGCGTGGTTGACCCGGCGGTCCTTCCCGACGGGCGCGGGCACCTGGGCCGCGGCGGTGGGGCTGACGGACCATTGGACGCAGGCTCCGGTGACCCGCTGGCGGCTGTTCGTGGCGGGCACGGCCGACGCCGCACCGGCCACCAGCGGCGTCAAGGTGGTCCACGCCTCCTGGGAGGCGGGCACGGACCCCGCCGACCCGACGGTCCTGGTCACCAAGGACCGGGCGATCTCACCGCAGGGGTACCGTCCCGGACGCCTCGTCGAACCCGACATGGCGACACAGGGCGCGTGGACCGAGCTGCGGCCGGCGGCGGCGAAGGCGCTGGGCGAGCTCGCGGCCGACGCGCAGGACGCCACGGGCGAGCGCCTGGTGCTGGTCTCCGGTTTCCGGCCGGCCGGCTACCAGGAGCGACTGTTCGACCGGTACGCCGCACGCCACGGCGAGCGGGCGGCGTCCCGGTTCTCGGCGCGGTCCGGCCACTCGGAGCACCAGACGGGGTGGGCGGCCGACGTCACGCAGGCCGGGGTGCCGTTCACGGACTTCGGGGGCACGGCGTCGTCGGACTGGGTGGACCGGCACGCGTGGCGCTACGGCTACGTGGTCCGCTACCCCCGCGGCGCCGAGGACGTCACCGGCTACCGGGGCGAACCGTGGCACCTGCGCTACGTCGGCACGGACCTGGCGGCCTACCTGCACCACGGCGGCGGCACCCTGGAGGAGGCGTTCGGCCTCAGCGGTTGAMLPPPFRRRARRVVTAAAVTAVVACPTTAGAVAPHGPVAPDPAAHEPLGRYTAVVGWAPTEERTVGTPWTDGVAISPGLGRDVELQQLVDGAWLTRRSFPTGAGTWAAAVGLTDHWTQAPVTRWRLFVAGTADAAPATSGVKVVHASWEAGTDPADPTVLVTKDRAISPQGYRPGRLVEPDMATQGAWTELRPAAAKALGELAADAQDATGERLVLVSGFRPAGYQERLFDRYAARHGERAASRFSARSGHSEHQTGWAADVTQAGVPFTDFGGTASSDWVDRHAWRYGYVVRYPRGAEDVTGYRGEPWHLRYVGTDLAAYLHHGGGTLEEAFGLSGPGPT0024055_164DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_010121197COG1168Putative cystathionine beta-lyaseGTGACCGACTCCCCGCTGGACCAGCTCTCCCTCGCCGACCTGCGCCGCCGGACGTCCGTGAAGTGGACCGCCTACCCCGACGACGTGCTGCCGCTGTTCGTCGCCGAGATGGACGTGCCGCAGGCCCCGTTCGTCGTGGCGGCGATCGACCGCGCGCTCGCGGCCGGCGACACCGGGTACGACCGCGGCACGGGGTACGCCGCGGCGCTCGCGCCGTTCGCGCGGCGCCGGTGGGGGTGGGACCCCGACGTGCGCTCCAGCCGCACGACGGCGGACGTCATGGTCGCGATCGTCGAGATCCTGCGGGTGCTGACCGCACCCGGGGACGCCGTCGTCGTCACCCCGCCCGTCTACCCGCCGTTCTACGGCTACACCCGCAACGAGGGGCGCCGAGTCGTCGAGGCGCCCCTCGACGCCGACGGCCGGCTCGACCCGGACACCCTGGAGGCCGCGTTCCGGACCGCCACCGGTGCGGCCGCGCACGGCACCGGCGCGGGATCGGGCCGTCGGGCGGTGCTGCTGCTGTGCAACCCCCACAACCCGACCGGCACCGTCCACACCCGCGCCGAGCTCGAGCAGGTGCTCGCCCTGGCCGGGCGGTACGGCGTGCGGGTGGTCGCGGACGAGATCCACGCACCGTTCACCGCCGAGGGGCTGGCATCGGAGGCGACCGCGTTCACCCCGCTGCTGGACGTCGCCGGCAGCGACGACGCGATCGCCGTGCACTCGGCGTCCAAGGCGTTCAACCTGGCCGGGCTGCGCGCCGCCACCGCCCTCGCCGGCCCCGACGCCGCCGCCGACCTGCGCCGCATCCCCGAGGAGGCCGGGCACGCCGTCAACCACCTCGCCGTCCTCGCGCACGCCGCCGCCTACACCGAGGGGGACGACTGGCTGGACGCGCTGCGCGAGGGGATCGTGCGTCGCCGCGAGCTCGCGACGAAGCTCCTCGCCGAGCACGCTCCCGCGGTGCGCGTCCACCCCGGCGAGGGCACCTACCTGATGTGGCTGGACGTGCGCGACGCCGTGCCCGCCGGCGTGGACCCCCACCAGCACGTGCTGCGCACCGCGAAGGTCGCGCTCGGCGACGGGCGGCACTTCGGGACCGGCGGGGACGGCCGGCTGCGACTCAACCTGGCCACGACGCCGGAGATCCTGACCGAGGCGGTCGAACGGCTGGGAGCGGCGCTCAACCGCTGAMTDSPLDQLSLADLRRRTSVKWTAYPDDVLPLFVAEMDVPQAPFVVAAIDRALAAGDTGYDRGTGYAAALAPFARRRWGWDPDVRSSRTTADVMVAIVEILRVLTAPGDAVVVTPPVYPPFYGYTRNEGRRVVEAPLDADGRLDPDTLEAAFRTATGAAAHGTGAGSGRRAVLLLCNPHNPTGTVHTRAELEQVLALAGRYGVRVVADEIHAPFTAEGLASEATAFTPLLDVAGSDDAIAVHSASKAFNLAGLRAATALAGPDAAADLRRIPEEAGHAVNHLAVLAHAAAYTEGDDWLDALREGIVRRRELATKLLAEHAPAVRVHPGEGTYLMWLDVRDAVPAGVDPHQHVLRTAKVALGDGRHFGTGGDGRLRLNLATTPEILTEAVERLGAALNRPGPT0001990_425DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001990-patB|malY-K14155NANA
AK018_01013693hypothetical proteinGTGGTGGGAACCGCTGGAACGTTCGACGCCCTGCCCATGCTGGGCCGGGGAAAGCACCGTAACCCGAAGAAGGGCGCCTGCTTCATGGAGCTGGCGTCGTTCCTCGCGGGTGAGCGCTGGAGCGACCATCCGCAGTGCACGCACCCGCTGCTGGCGATGATGGCGCGCGCCGTCAACGACCTCACGTCCGACGACGCGCGGCCGCGCCTGGCGCCGCTGATCCCGTCGGTCATCGGGCTGACCAGCGACGACCCGCGCTGGGACGTGCACATCGCCCTGCGCGCGGCGCAGACGGCGCTGCCGGTGGCGCCGGAGGACCGTCAGCAGACCCTCGCGGTGGCGATCTACGGCGCCGAGCGCATGCTCGACGTCCTGGACGGCCGGCCGGAGGGGACGATGTCGGCCGCCAGCGTCGAGGCCCTCGCCACGACGCCGCGGACCGCCGAGTGGGCGCGGCGCTTCTGCGCGGGCACGCACGTCAAGCCCAAGCGGTTCGTCCGCGACGCGGCGCCGTCGGTGGTCTCCACGGCGGTGCAGGGCATCAGCGAGTCGTACCGGCCCGACATCGACGCCCGGCTGCGCGAGCTGCTCGAGGCGACGGTCGCCGACGCGCGACGCTGGGCGGGCGCGGAGGACGCCGAGGTGCTGCGGGAGGACCAGTGGGTCGACGTGGTGCGGCCCGCGGGCGTGTGAMVGTAGTFDALPMLGRGKHRNPKKGACFMELASFLAGERWSDHPQCTHPLLAMMARAVNDLTSDDARPRLAPLIPSVIGLTSDDPRWDVHIALRAAQTALPVAPEDRQQTLAVAIYGAERMLDVLDGRPEGTMSAASVEALATTPRTAEWARRFCAGTHVKPKRFVRDAAPSVVSTAVQGISESYRPDIDARLRELLEATVADARRWAGAEDAEVLREDQWVDVVRPAGVNANANANANA
AK018_010142343hypothetical proteinGTGCCCGAGACCCAGGTCCTGGGTTCGCTGCCCCACGGCGCCCCGGAGCAAGCCACGGCCGACGAGGTGTTCGACCGCATCGTGCGGATCGCCCACCGGGTGCTCGGCGTGCCCGCAGCCACGCTCGTCCTGCTCTCCGACGACCCGTCCGTACAGCTCTTGCCCGGCGCGCTCGGGCTGCCGGGCGACGTCCAGCGCGCCCGTGTCTACCGCATGGACCACCCTGTCACCGGTGACATCGTCGAGAACCGTCGACCGGTGATCATCGGCGACGTCGACGACGTCCCCTCCGTCGCCGACCGTGGGCTCGTCAAGGCTCTCGGCACGCGATCCCTCGCCGGCTACCCCGTCGAGGACTCCCGCGGGCACGTCGTCGGCGCGCTGTGGGCCCTGCACGACACCCCCCGCACCTGGTCCGAGGAGGACCTCGCCACGCTCGCCGACCTCGCCGCGGCCTGCACCAGCGAGCTGCGGCTGCGCGCCGAGCGGGAACGGGCGCGCCGCGCCGAGCAGGTCGCGTTCCGCGCCCACCAGCGGGCCCAGTTCCTGCTCGGGCTGTCGGAACGGTTCGCCGGCGTGACCACCATCGAGGAGGTCGAGGAGACCATCGCCCAGGTGGTCGGCTCCGGCATGGGCGCCCGCTGGTGCTCGCTCGCGCTCGTCGACGCCGACCGCCGCCACCTGCGCTACATCACCGTCGGGCACCAGGAACCCGGCTTCCCCGACGACATGCGCTCGGCCCGCCTCGACGCGCCCCGCCCGGACACCGCCGTCGTCCGCACCCGCAAGACGCTGTTCTACCGGGACCACGAGGAGATGATCGAGGTGTTCCCCGCGATGGCGGGGATCGGGCTGGTCTCCAGCGGCGCACGGTCGTTCCTGCCCATCGTCACCGACGACGACGTCATCGGCGTCGTCATCTGCGTCTGGGAGGAGAAGCGCGACCACGACGCCGGCACCGCCGCCCTGGAGGCCACGGTCAGCCGGTACGTGGCCATGTCGCTGGAGCGGGTCGCCCTGCTCGAGGCACGACGCCGCGTCGCCACCACGCTGCAGGAGTCCCTGCTGACCGACCCGCCCGAGGTCGCCCACCTCGACCTCGCCACCACCTACGCCCCGGCGGCACGCACCGACCAGGTCGGCGGGGACTGGTACGACGCCGTCGTGCGCGACGAACGCACCGCCGTGCTCATGATCGGCGACGTCGCGGGGCACGACGTCGGCGCCGCCGCCCAGATGGGTCAGCTCCGTTCCATGCTGCGCGCCGTGGCCTGGAGCCACGACGAGTCCCCCGCCGAGCTCCTCGGCCGCCTGGACCGGGCCAACGCCGAGCTGGGCCCGCACGCCATGGCGACGGCCGTCGTCGTGCGGCTCGACCAGGACGAACGCCCCTGCGGGGACACGGGACCCGACGGCGCACCCGAGCGCGGCTACACGCTGACCTGGTCGAACGCCGGCCACCCGCCGCCGCTCGTGCTGCGCCGCGACGGCAGCGTCGAACAGCTCGACGCACGACCCGACATGCTGCTCGGCATCCACCCCGCCACCCCGCGCCACGACCACGTGACCCGCCTGCTGCCCGGCGACACCCTCCTGCTGTACACCGACGGGCTCGTCGAACGGCGCGGGGTCCCCGTGCCGGAGCGCACCGCGGCGCTCGAGCAGGCGCTCGCCGACACCCTCGGCGAGGCGACGGCGTCGCTGCCGCGCTCGCTCGTGCGCCGGCTCGTCGGGCGGGCGCAGCGCGACGACGTCGCCGTGCTGGCGGCCCGGGCCCGCGTCCCGGCGCCGTCGGGTCCGCCGTCGGACGACGGTCCCGCCACCGCGGAACGCAAGGTCGCCGACGACCTGAGCGACCTCGGTCCGGCCCGGCGCTGGGTCGACGACGTGCTCGAGTCCTGCAGCGTGGACGCCGAGCAGCGCCGCACCGCGATGCTGCTGTCCAGCGAGATCCTCACGAACGCGCTCGAGCACGGTGCCAGCCCCATCGTGGCGACCGTCGAGGTCGACGACCGGCGGCTGCGCGTGGCCGTGCGCGACGGCTGCACCCGGCCGCCGGTGCTGCGCGCACCCGAGCCGCAGGACCTGTCGGGGCGCGGCGTGCAGTTCCTGGAGCGGCTCGCCTCCCGGTGGGGCGTCGACCAGCACCTGGGCGAAGGGGTCGGACGCCACGCCGACGGCGGCGAGGGTAAGACGGTGTGGTTCGAGATCGACCGGGAGGCGCGGCCGCTGACCGGCGTGGTGCCGGCGATCCCGCGCCCGTCGCCGACCACGAGCTCGATCCCGCTGGTCGAGCGCGTGCTGCCCTGGACGCGGGACGAGGCGCGACGCCGCAAGACCTGAMPETQVLGSLPHGAPEQATADEVFDRIVRIAHRVLGVPAATLVLLSDDPSVQLLPGALGLPGDVQRARVYRMDHPVTGDIVENRRPVIIGDVDDVPSVADRGLVKALGTRSLAGYPVEDSRGHVVGALWALHDTPRTWSEEDLATLADLAAACTSELRLRAERERARRAEQVAFRAHQRAQFLLGLSERFAGVTTIEEVEETIAQVVGSGMGARWCSLALVDADRRHLRYITVGHQEPGFPDDMRSARLDAPRPDTAVVRTRKTLFYRDHEEMIEVFPAMAGIGLVSSGARSFLPIVTDDDVIGVVICVWEEKRDHDAGTAALEATVSRYVAMSLERVALLEARRRVATTLQESLLTDPPEVAHLDLATTYAPAARTDQVGGDWYDAVVRDERTAVLMIGDVAGHDVGAAAQMGQLRSMLRAVAWSHDESPAELLGRLDRANAELGPHAMATAVVVRLDQDERPCGDTGPDGAPERGYTLTWSNAGHPPPLVLRRDGSVEQLDARPDMLLGIHPATPRHDHVTRLLPGDTLLLYTDGLVERRGVPVPERTAALEQALADTLGEATASLPRSLVRRLVGRAQRDDVAVLAARARVPAPSGPPSDDGPATAERKVADDLSDLGPARRWVDDVLESCSVDAEQRRTAMLLSSEILTNALEHGASPIVATVEVDDRRLRVAVRDGCTRPPVLRAPEPQDLSGRGVQFLERLASRWGVDQHLGEGVGRHADGGEGKTVWFEIDREARPLTGVVPAIPRPSPTTSSIPLVERVLPWTRDEARRRKTNANANANANA
AK018_010151032sigG_1COG1595ECF RNA polymerase sigma factor SigGATGACACAGGCCATCTCGTCCCCGGCCACCACGGGACCGGCCGCCGGTGCGCCGGCCGCCGGGGTCGACGCCCCCGACGTCGGCGTGCTGCTCGAGAGGTACCGGCGCGAGCTCACCGGGTACTGCTACCGCATGCTCGGCGGCGCCGCCCACGCCGACGACGCCGTGCAGGAGACGATGCTGCGCGCCTGGCGGGCCTACGACCGGTTCGAGGGCCGGTCGTCGGTGCGCTCGTGGTTGTACCGCATCGCGACGAACGTGTGCTTCGACGCCCTGGGCTCGGCCAAGCGGCGCGAGCGCCCGATGGGGATCGGCGCCGCGCAGCCGGCCGAGATCGAGAACTTCGGCGAGACGCTCGCCGAGGAGCGCTGGGTCGAACCCGTCCCCGACGACGCCGTCCTGCCCCGCGAGGGCGATCCCGCCGACATGGCGATCGGCCGCGAGTCCGTACGGCTGGCGTTCGTCGCGGCGCTGCAGCACCTGCCGCCCCGCCAGCGCGCGGTCCTGGTGCTGCGCGAGGTGCTGCGCTGGTCCGCGGCGGAGACCGCCGCCCTGCTGGACACCACCGTCGCGTCCGTGAACAGCGCGCTGCAGCGGGCGCGCGCCACTCTCGGCTCGAAGAACCTCTCGCGCGACACCGAGCGCTGGGGCGATGTGGACGAGGAGCTGCTGGGTCGGTATCTCGACGCGTTCGAGCGGTACGACCTCGAGGCGCTCGTGCGCCTGCTGCACGACGACGCCGTGCTCAACATGCCGCCGTACACCTTGTGGGTCTCCGGCCCGCGCGAGATCGCCCGCTGGATGGCGGGCCCGGGCAAGGGGTGCCTCGGGTCGCGGTGCCTGCGGGTGCACGCCAACGGGTCGATGGCGTTCGGGCAGTACCGGGTCGACGCCGACGGCGGCTGGACGCCCTGGGGACTGGTGGTGCTCGAGGACGACGGCGCCGGCCGCGTCACCGGCATCACCACGTTCCTCGACACCGCCACCTGGTTCCCCCGGTTCGGCCTGCCGGACCACCTGCCCGCGAGGTAGMTQAISSPATTGPAAGAPAAGVDAPDVGVLLERYRRELTGYCYRMLGGAAHADDAVQETMLRAWRAYDRFEGRSSVRSWLYRIATNVCFDALGSAKRRERPMGIGAAQPAEIENFGETLAEERWVEPVPDDAVLPREGDPADMAIGRESVRLAFVAALQHLPPRQRAVLVLREVLRWSAAETAALLDTTVASVNSALQRARATLGSKNLSRDTERWGDVDEELLGRYLDAFERYDLEALVRLLHDDAVLNMPPYTLWVSGPREIARWMAGPGKGCLGSRCLRVHANGSMAFGQYRVDADGGWTPWGLVVLEDDGAGRVTGITTFLDTATWFPRFGLPDHLPARPGPT0014960_961DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_01016459crcB_1Putative fluoride ion transporter CrcBGTGACGACACCCGGCAGGCCACCGCACCAGGACCTGCGGCTCGTCACGCTCGTCGCCGCCGGCGGCGCCGTCGGCTCCGTCGCCCGCTACCTCGTGAGCCTCGTGCTCCCCCACGAGTCGGGCGAGTGGCCGTGGTCGACGTTCGCCGTCAACCTGGCCGGCGCCTTCCTGCTCGGCTGGCTGCTCGAGGCCGTCGCGCGCCGCGGTCCCGAGACGCCCCGGCTGCGCCGCGTCCGGCTGTTCTTCGGCACCGGCATGCTGGGCGGGTTCACCACCTACTCCTCGCTGGCGCTGGACATCACCCAGCTCACCGGCGACGGCACCTGGCCCGCCGCCCTGGGCTACGCCGGTGCCACGCTCCTGCTCGGCACCCTGGCGGCCCTGCTGGGCGTGCTCCTGGGAGCGAGGACGCCCCCGAGCACGTTCGGCCGCCTGCTGCGCGGGAGGGACGACCGATGAMTTPGRPPHQDLRLVTLVAAGGAVGSVARYLVSLVLPHESGEWPWSTFAVNLAGAFLLGWLLEAVARRGPETPRLRRVRLFFGTGMLGGFTTYSSLALDITQLTGDGTWPAALGYAGATLLLGTLAALLGVLLGARTPPSTFGRLLRGRDDRPGPT0004985_676DIRECT EFFECTBIO-REMEDIATIONFLUORIDE_DETOXIFICATIONFLUORIDE_RESISTANCEFLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199NANA
AK018_01017387crcB_2COG0239Putative fluoride ion transporter CrcBATGACCGGACTCCTCGCGGCCGTGCTGGTCGGGGTCGGCGGCGGGCTGGGCGCCGCCGCCCGCTTCTGGGCGGCGGACACCATCAAGGCGCGGCGCCCCGACGGCTTCCCCTGGGGCACCTGGATCGTCAACGCCCTCGGCGCGCTGCTCATCGGCCTCGTCACGGGCTGGCTCGCCTTCTCCGACGCCGGAGAGCACTGGCACCTGTTCCTCGCGATCGGGGTGTGCGGCGGGTTCACGACGTTCTCGACGGCGATCGTGGAGACCGTGACGATGATGCGCGGCGGGCGGCACGCCGCCGCCGTCGGGCACGCGCTGAGCACCCTCGCGGTGTCCTGGGCCGCCGTCGTCGCCGGGTTCGCCCTCATGGCGGCGCTGCTGGGCTGAMTGLLAAVLVGVGGGLGAAARFWAADTIKARRPDGFPWGTWIVNALGALLIGLVTGWLAFSDAGEHWHLFLAIGVCGGFTTFSTAIVETVTMMRGGRHAAAVGHALSTLAVSWAAVVAGFALMAALLGPGPT0004985_2005DIRECT EFFECTBIO-REMEDIATIONFLUORIDE_DETOXIFICATIONFLUORIDE_RESISTANCEFLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199NANA
AK018_01018963COG02585'-3' exonucleaseATGCGTCTGCTGCTGCTCGACACCGCGTCGCTCTACTTCCGTGCGTTCTTCGGCATGCCGGACTCGTTGCGCTCGCCGCAGGGCGAACCCGTCAACGCCGTGCGCGGGCTGCTCGACATGATCGCGTTCCTGGTCACCGAGCACCGCCCGGACCGTCTCGTGGCCTGCTGGGACGACGACTGGCGGCCCGCCTTCCGGGTGGAGGCCATCGGCTCGTACAAGGAGCACCGTGTCGCCGAGCTGCGCACCGACGGCCCGGACGTCGAGGAGATGCCCGAGGACCTGCGGGCCCAGGTGCCGGTGATCGTCGAGGTGCTCGCCGCGCTGGGGCTCGCGCGGGTGGGCTCGCCGGGGTACGAGGCGGACGACGTGATCGGCACGCTCGTCGCGCGGGAGGTCGCCGGGCACGACGGCGGCACCCCGGCAGGGAAGGGCGGCCCCGGTCCGCAGGTCGGGATCGTCACGGGCGACCGGGACCTGTTCCAGCTCGTCGACGACGCCGCGGGGGTCGCCGTCCTCTACCCGGCCCGCGGGGTGCGGGACCCGGACGTCGTGAACCAGGCGCGCCTGGCCGAGAAGTACGGCGTGCCCACGGGGTCCGCGTACGCCGAGATGGCGGTGCTGCGCGGCGACCCGTCGGACGGCCTGCCCGGCGTGGCCGGCATCGGGGAGAAGACCGCGGCCAAGCTGCTGGCGGTGTTCGGGACGCTCGACCGGGTGCTCGAGGCCGCGGCCGCCGAGGAGAAGGGCGTCACCCCGTCGCAGCGGACCCGGATCGCCGCGGCGGCCGACTACCTCGCGGTGGCTCCCGCCGTCGTGCGCGTGGCCGACGACGCACCGATCGCCCCGTTCGACGACGCGCTGCCGTCCGCGCCGGCGGACCCGCAGGCGCTGGAGGCGCTGGTCGAGCGCTGGGGCATCCGCTCCAGCGTCGACCGGGTGCTGAAGGCCCTGGCCGGCTGAMRLLLLDTASLYFRAFFGMPDSLRSPQGEPVNAVRGLLDMIAFLVTEHRPDRLVACWDDDWRPAFRVEAIGSYKEHRVAELRTDGPDVEEMPEDLRAQVPVIVEVLAALGLARVGSPGYEADDVIGTLVAREVAGHDGGTPAGKGGPGPQVGIVTGDRDLFQLVDDAAGVAVLYPARGVRDPDVVNQARLAEKYGVPTGSAYAEMAVLRGDPSDGLPGVAGIGEKTAAKLLAVFGTLDRVLEAAAAEEKGVTPSQRTRIAAAADYLAVAPAVVRVADDAPIAPFDDALPSAPADPQALEALVERWGIRSSVDRVLKALAGNANANANANA
AK018_01019846cutC_1Copper homeostasis protein CutCATGGTCGACGACGTGACGCCCGTCGGTGCTGCGGCACCGGCGGGCGGCGCCGTGTCCGGGGCCGCCGGTTCGCGGGTGCCCGCGCTGGAGCTCGCCGTGCAGGACGTCGCGGGCGTGGATGTGGCGGCGTCGGTGGGTGCCCGCCGGGTCGAGCTGTGCGCGGCGCTCGGGGCGACGGGCGGGATGACGCCGGGTCCGGGTCTGCTGGCCGCGGCCGTCGAGCGTGCTGCGGCCATCGAGCGTGCCGGTGTGCCGTCGTCGGACGGGGTCGAGGTGCACGTGCTGGTGCGCCCGCGTCCGGGCGGGTTCGTGCTCGTCGACGGCGAGCTGGACGTGCAGGTCCGGGAGGTGGCGGCGGCGCGCGCCGCGGGGGCGCACGGTGTCGTCGTCGGTGCGTCGCGTCCGGACGGCACGGTCGACGCGGCCGCGCTGCGCGAGCTGGTCGCGGCGGCCGACGGCCTGGAGGTGACGTTCCACCGGGCGTTCGACCAGCTCGCCGACCCGTTCGCGGCGCTCGACGTGCTGGCAGGGCTCGGGGTGGCTCGTGTGCTGACCTCCGGCGGGGCGGCGCGCTGTGCCGACGGCGTCGAGAGGCTCGCGGCCTGCGTCGCGCACACGCGGGACGCGCTCGGCGGGGCGGTGCAGGTCATGGCCGGCGGCGGCGTGCGGGTCGCCCACGTGCCGGGGCTGGTCGCGGCCGGCGTCGACGCGGTGCACCTGTCGGCCAAGCGCGTGGTGGCCGACGACGGCGGTCCCGGTGGTGGGGGCGACTCCGGCTACGAGGTGACGGACCCCGAGGTCGCGGCCGCCGCGGCCGAGGCCCTCCGCTCAGCGTTGTGGGCGTAGMVDDVTPVGAAAPAGGAVSGAAGSRVPALELAVQDVAGVDVAASVGARRVELCAALGATGGMTPGPGLLAAAVERAAAIERAGVPSSDGVEVHVLVRPRPGGFVLVDGELDVQVREVAAARAAGAHGVVVGASRPDGTVDAAALRELVAAADGLEVTFHRAFDQLADPFAALDVLAGLGVARVLTSGGAARCADGVERLAACVAHTRDALGGAVQVMAGGGVRVAHVPGLVAAGVDAVHLSAKRVVADDGGPGGGGDSGYEVTDPEVAAAAAEALRSALWAPGPT0004085_47DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004085-cutC-K06201NANA
AK018_010202736ppc_1COG2352Phosphoenolpyruvate carboxylaseGTGAGCGACAACTACGGACACCAGAGCCCGAGCACGGGCGCGATCGAGCGTGTGGTCGCCCGGCACGAGATGCCCGACCCGTTGCGCGACGACATCCGCCTCCTCGGCGGGCTGCTCGGCAGCGTGCTGCGCGAGGCGGGCGGGCAGGACCTGCTCGACGACGTCGAGCGGCTGCGCGAGCTGACGATCCGCGCCTACGGGGTGGACGACGGCGGAGCGGCGCTGGCCGAGGCGGCCGACGTCGTCGCCGGCTACAGCCTCGAGCGCGCCGAACAGGTCGCCCGTGCCTTCACCTGCTACTTCCACCTGGCGAACCTCGCCGAGGAGTACCACCGGGTCCGCGTGCTGCGGATCCGCGAGTCCGAGGCCGGCGCCGCGATCGAGGAGTCGCTGCCCGCCGCCTTCACCCAGCTGGCCGAGGAGGTCGGCCGCGAGGAGGCGCTGCGACGCCTGGGCGAGCTGGAGTTCCGCCCGGTCCTGACGGCCCACCCGACCGAGGCCCGCCGTCGTGCCGTCTCCGGCGCCGTGCGCCGCATCTCCGACCTGCTGTCCGAGCGCGACACCCTGCACCCGGGCGGCACGTCCCGCACGGAGAACGAGCGCCGCCTGCTCGCCGAGATCGACACGATGTGGCGCACGTCGCCCATCCGCGCGGCCAAGCCGACCGTGATCGACGAGGTCAAGACCGCCATGGGCGTCTTCGACGCCACCATGTTCGACACGTTCCCCGAGGTGTACCGCCGCCTGGACGACTGGATCCTCGACGGGGAGGCCGGGCGCACCCCGCCGGTCGCCAAGCCGTTCGTGTTCCTCGGCTCCTGGATCGGCGGCGACCGGGACGGCAACCCGAACGTCACCGCCGACGTGACCCGGCAGGCCGCCACCCTGGCCGCCGAGCACGCCCTGACCGCGCTCGAGAACGCCGCGGTCGCCACCGGCCGCAAGCTCACCCTCGAGGAGGCGAGCACCCCGGCGTCGGCCGAGCTCAAGGCCCTGTGGCAGCAGCTGCGCCAGCTGTCGGACGAGCTGACGGCCAAGGCCGCGGCGGACTCCCCGAACGAGCCGCACCGCGCCGCCGTGCTGGCCATCGCCGGCCGGATCCGCGCGACCCGGACCCGCGACGCCGACCTGGCCTACCAGGTCCCCGAGGAGCTCGAGGCCGAGCTGCGCGTCGTGCAGGAGTCGCTCGTGGCGGCCGGTGCCAACCGTGCGGCCTACGGCGACCTGCAGCGGCTCGTGTGGCAGGTGCAGACCTTCGGGTTCCACCTGGCCGAGCTCGAGGTGCGCCAGCACTCCCAGGTGCACGCCGCGGCGCTCGACGAGATCGCCGAGAAGGGCGTCCACGGCGAGCTGTCCGACCGCACCCGCGAGGTGCTGGACACGTACCGCGCCCTCGGCGCCGTGCAGAAGCGGTTCGGCGAGCGCGCCGCCCGCCGGTACATCGTGTCCTTCACGCAGGCCCCCGAGCACCTGGCGGCCGTCTACCAGCTCGCCGAGCTGGCGTTCGACGGCACGGACGACGCCCCGGTGGTCGACGCGATCCCGCTGTTCGAGACCTTCGCCGACCTGGAGAACTCGGTCGACATCCTCGAGGCGATGCTGGAGATGCCGCAGGTCCAGAAGCGGCTGGAGCAGAACGGCCGCCGCGTGGAGGTCATGCTCGGCTACTCCGACTCCTCGAAGGACGTCGGCCCCGTCGCCGCGACCCTCGCGCTGCACAAGGCGCAGTCGCGCATCGCGCAGTGGGCGCAGAAGCACGACATCACGCTGACCCAGTTCCACGGCCGCGGCGGTGCCCTCGGCCGCGGCGGCGGCCCCGCGAACCGTGCGGTGCTGGCCCAGCCGCCGCACTCGGTGGACGGGCGGTTCAAGCTCACCGAGCAGGGCGAGGTCATCCTGGCCCGCTACGGCAACCCGACGATCGCCGCCCGGCACATCGAGCAGGTGGCCGCCGCGACGCTGCTGGCCTCGGCGCCGTCGACGGAGGAGCGCAACGCCAGCACGGCCGAGCGGTTCTCCGGCGTCGCCTCCGCGCTGGACGCCTCCTCGCGGGCCCGGTTCCACGAGCTGGTGCAGTCCGAGGGCTTCCCGCAGTGGTTCTCGCAGGTGACGCCGCTGGAGGAGGTCGGCCTGCTGCCGATCGGCTCCCGGCCGGCCAAGCGCGGCCTCTCGGTCAACTCGCTGGACGACCTGCGAGCCATCCCGTGGGTGTTCTCCTGGTCGCAGGCCCGCATCAACCTGGCCGGCTGGTTCGGTCTGGGCACGGCGCTGAAGTCGTTCGCGGAGGGCGAGGGCAGCCTGGACGAGCTCAAGGCCGCCTACACCGAGTGGCCGCTGTTCGGCACGCTGCTCGACAACATCGAGATGTCGCTGGCCAAGACGGACGAGCGCATCGCCGAGCAGTACCTGGCCCTGGGCGACCGCGACGACCTGGCCGACATGGTCCTCACCGAGCTGCGCCTGACCCGCGAGTGGGTCCTCAAGATCACCGGGAACGAGTGGCCGCTGGCCAGCCGCCGGGTGCTCGGTCGGGCCGTCCAGCTGCGGTCGCCCTACGTTGACGCCCTGTCGCTGCTGCAGGTGCGCGCGCTGCGGGCCCTGCGCACCCAGGGTGCGAGCGAGGGCCTGACGGTGGACGACGGCGAGTGGGTCGACGGCGGCTACAAGGACCGCTGGCAGCACCTGCTGCTCCTGACCGTGAACGGCGTGTCCGCCGGTCTGCAGAACACCGGCTGAMSDNYGHQSPSTGAIERVVARHEMPDPLRDDIRLLGGLLGSVLREAGGQDLLDDVERLRELTIRAYGVDDGGAALAEAADVVAGYSLERAEQVARAFTCYFHLANLAEEYHRVRVLRIRESEAGAAIEESLPAAFTQLAEEVGREEALRRLGELEFRPVLTAHPTEARRRAVSGAVRRISDLLSERDTLHPGGTSRTENERRLLAEIDTMWRTSPIRAAKPTVIDEVKTAMGVFDATMFDTFPEVYRRLDDWILDGEAGRTPPVAKPFVFLGSWIGGDRDGNPNVTADVTRQAATLAAEHALTALENAAVATGRKLTLEEASTPASAELKALWQQLRQLSDELTAKAAADSPNEPHRAAVLAIAGRIRATRTRDADLAYQVPEELEAELRVVQESLVAAGANRAAYGDLQRLVWQVQTFGFHLAELEVRQHSQVHAAALDEIAEKGVHGELSDRTREVLDTYRALGAVQKRFGERAARRYIVSFTQAPEHLAAVYQLAELAFDGTDDAPVVDAIPLFETFADLENSVDILEAMLEMPQVQKRLEQNGRRVEVMLGYSDSSKDVGPVAATLALHKAQSRIAQWAQKHDITLTQFHGRGGALGRGGGPANRAVLAQPPHSVDGRFKLTEQGEVILARYGNPTIAARHIEQVAAATLLASAPSTEERNASTAERFSGVASALDASSRARFHELVQSEGFPQWFSQVTPLEEVGLLPIGSRPAKRGLSVNSLDDLRAIPWVFSWSQARINLAGWFGLGTALKSFAEGEGSLDELKAAYTEWPLFGTLLDNIEMSLAKTDERIAEQYLALGDRDDLADMVLTELRLTREWVLKITGNEWPLASRRVLGRAVQLRSPYVDALSLLQVRALRALRTQGASEGLTVDDGEWVDGGYKDRWQHLLLLTVNGVSAGLQNTGPGPT0001165_2017DIRECT EFFECTBIO-FERTILIZATIONCARBON_DIOXID_FIXATIONCO2_FIXATION-ALTERNATIVE_PAHTWAYSCO2_FIXATION-PHOSPHOENOLPYRUVATE_CARBOXYLASE_BIOSYNTHESIS,PGPT0001165-ppc-K01595NANA
AK018_01021834pdxK_1COG0351Pyridoxine kinaseATGCCCAGCACTCCTCCGCTCGCCCACGTCGTCGCCGGGTCCGAGGCGACCGGCGGCGCCGGCATCCAGGCCGACCTCAAGACGTTCCAGCAGCTCGGTGTCTACGGAATCGGCACGTTGACCTGCATCGTCTCGTTCGACCCGCAGGCCGACTGGGCCCACCGCTTCGTGCCCGTCGACCCGCAGGTGATCGCCGACCAGTTCGAGGCCGCGACCGCCACCCACGACCTCGACACCGTCAAGATCGGCATGCTCGGCACCCCCGACACCGTCGACGTGGTCGCCGAGGCGCTCGCGGCGAAGTCCTGGCGTCACGTCGTGCTCGACCCGGTGCTGATCTGCAAGGGTCAGGAGCCGGGCGCCGCCCTGGACACCGACACCGCGCTGCGGGAGAAGGTGCTGCCGCTCGCCACCGTGGTCACCCCCAACCTCTTCGAGGCGGCCACCCTGGCCGGCACCGAACCGATCGAGGATGTCGACGGACTGGTCGACGCCGCGCGCCGGATCCACGCCCGGCTCGACACGTCGGCCGGCCCGCGCTACGTCGTCGCCAAGGGTGGCGCGGAGCTGCCCGGCCCCGACGCCGTGGACGTGCTGTTCGACGGCACGGACGTCACCGTGCTGAGCGCACCGAAGATCGGCGAGGAGCGGGTCTCCGGCGCCGGGTGCACCTTCGCCGCGGCGATCACCGCGGAGCTCGCCAAGGGTGCCGACGTGCGCGCCGCCGCGCAGGTCGCGAAGGACGTGGTCACCGCCGGGATCGAGGCGCGGGTGGCCGCACGCACGCCGTTCGACACGGTGTGGCAGGGCGCGTACGCACCCGCGGCGAGATGAMPSTPPLAHVVAGSEATGGAGIQADLKTFQQLGVYGIGTLTCIVSFDPQADWAHRFVPVDPQVIADQFEAATATHDLDTVKIGMLGTPDTVDVVAEALAAKSWRHVVLDPVLICKGQEPGAALDTDTALREKVLPLATVVTPNLFEAATLAGTEPIEDVDGLVDAARRIHARLDTSAGPRYVVAKGGAELPGPDAVDVLFDGTDVTVLSAPKIGEERVSGAGCTFAAAITAELAKGADVRAAAQVAKDVVTAGIEARVAARTPFDTVWQGAYAPAARPGPT0009125_2501DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009125-pdxK|pdxY-K00868NANA
AK018_01022315hypothetical proteinGTGAACCGGGTCGAGGTGTCCGACGTCTTGCGTCCTCCCCGCGTCGAGCCGTTCGCGGACGAGGGCGTCGACCTGTTCGTCCCGGCGACCTACGACGTCGTGTGGTCGGTCGTCGTGGCGGTGGTCGTTCTGCTGACACTGACGGCGGTCGTCGCGATCGTGGTGCTCGTCCGGCGTCGTCCTGCCCGACCCGAGCGTGTCGGCACAGGAACGGTCGAGTCGCGGCTGGCCGAGGTCGACCGGTTGCACGCCACCGGCGCCCTCGACGACGACGAACGTCAGGCAGCTCGGACCCGCATCCTCGGCACGCTCTAGMNRVEVSDVLRPPRVEPFADEGVDLFVPATYDVVWSVVVAVVVLLTLTAVVAIVVLVRRRPARPERVGTGTVESRLAEVDRLHATGALDDDERQAARTRILGTLNANANANANA
AK018_01023276hypothetical proteinGTGACCGACGCCGACGAAGGGACGCACGTGTTCTCGATGAGCTGGACCGCCCTGACGATGATGATGCTGCAGGCGGCCGTGCCGGTCGTCACGATGGTGGCTGTCCTGGTGATCGCCGTGACGGTGCGGCGCGACAACCCCCTCCGGGTCGCCCCGACCGACCGGCCGGGGATCCTGGAGCAGCGGCTCGAGCACCTTGACCGCCTGCTGGCGGCGGGGCGCATCACCGAGCCGGAGCACCGCGATGCCCGGGCCCGGCTCCTGGGCACGCTGTGAMTDADEGTHVFSMSWTALTMMMLQAAVPVVTMVAVLVIAVTVRRDNPLRVAPTDRPGILEQRLEHLDRLLAAGRITEPEHRDARARLLGTLNANANANANA
AK018_01024786end_1COG0648putative endonuclease 4ATGACCCTGCAGATCGGTGCCCACGTGTCCCTCGCCGACGCCGTCGCGGACGCCCGCGAGATGGGTGCCGACGTCGTGCAGGTGTTCCTTTCCGACCCGCAGGCGTGGAAGGTGCCGCCGCTGGAGTACCCGGGGGGCGCGGAGGCGTTCCGCGGCGCGACGGCGGAGGCCCGCATCGACGTGTTCGTGCACGCGCCGTACGTCATCAACGTGGCCTCGACGAACAACCGCATCCGCATCCCGAGCCGCAAGCTGCTGCAGCAGATCATGACGCGGGCCTCGGAGGTCGGCGCGAAGGGTGTCGTCGTGCACGGCGGGCACGTGACCGCGAAAGACGACCCGGCGAAGGGGTTCGACAACTGGCGCAAGGCGATCGAGTCGCTGGACACCGACGTGCCGGTCCTCGTCGAGAACACCGCGGGCGGTGACCACTCGATGGCGCGTCGCCTGGACCGCATCGCCGAGCTGTGGGCGGCCGTGCAGCAGGCCGAGAGCGACGTCGAGGTCGGCTTCACGCTCGACACCTGCCACGCCTGGGCGGGCGGCCTGGACCTGACCTCGGTGGTGGACGACGTCCGGGCGATCACCGGCCGCATCGACCTGGTGCACGCGAACGACTCGCGTGACGCCGCCGGGTCGGGGGCGGACCGGCACACCAACTTCGGAGCGGGCGAGATCCCCGAGGAGCTGCTGCTCGGCGTGGTCCGCGACGCCGGCGCCCCGGTGGTCTGCGAGACCAAGGGCGACATGGGCACCGACATCTCCTGGCTGCGCGAGCGACTCTGAMTLQIGAHVSLADAVADAREMGADVVQVFLSDPQAWKVPPLEYPGGAEAFRGATAEARIDVFVHAPYVINVASTNNRIRIPSRKLLQQIMTRASEVGAKGVVVHGGHVTAKDDPAKGFDNWRKAIESLDTDVPVLVENTAGGDHSMARRLDRIAELWAAVQQAESDVEVGFTLDTCHAWAGGLDLTSVVDDVRAITGRIDLVHANDSRDAAGSGADRHTNFGAGEIPEELLLGVVRDAGAPVVCETKGDMGTDISWLRERLNANANANANA
AK018_01025369hypothetical proteinATGAGACGCAGAAGTCCGTTCGTCCAGCCCTTGGAGCCCGTGCTCGACATCGACGACGCCGAGAGCGGTCCGGACGGGATCGCCGAGCTCGCCGATCCCCCGCGCCGTCGGCCCGCTCCTCGGTTGTCCTCCGACGGCCTGGCCCTGGTGGTGGCGGGCGCGGTCCGGCTTGAGGCTGCACGACGCGGACTCTCGCAGCAACAGCTCGCCACGGAGCTCGGCCTGTCACGCACGGCCGTCTCGGCACGGTTCCGGGGACGGGTCGCGTGGTCGCTCGACGAGGTGGGCCTGCTGGCGCAGCTCTTCGGATGCCGGGTTGTGGAGCTGGTGACCGAGGCTCCGACGCCGGCCGGCAGGTCGGTCTGGTAGMRRRSPFVQPLEPVLDIDDAESGPDGIAELADPPRRRPAPRLSSDGLALVVAGAVRLEAARRGLSQQQLATELGLSRTAVSARFRGRVAWSLDEVGLLAQLFGCRVVELVTEAPTPAGRSVWNANANANANA
AK018_01026690liaR_1COG2197Transcriptional regulatory protein LiaRATGACCGAGTCGATCTCCGTCGTCGTCGTGGACGACGACCCGCTGGTCCGGGCCGGGCTGGGACTGATCCTGGGCGGAGCGCCGGAGGTCCGCGTGGTCGGCGACGCCGCGGACGGGGACGACGCCGTCGCCCTCGTGCGCGCCGAGCGTCCCGACGTCGTGCTCATGGACATCCGCATGCCCCGCGTGGACGGCATCGAGGCCACCCGCCGGATCGTCGCCCTCGACCACGGCGGGCCGCGCGTGCTCGTGCTCACCACCTTCGACACCGACGACATGGTGCTGCAGGCGCTGCGTGCCGGGGCGGCCGGGTTCCTGCTCAAGGACACGCCCCCGGACCGGCTGGTCGCTGCCGTGCGGGCCGCTGCCGCCGGGGAGCCGACGTTCTCGCCGTCGGTGATGGCCCAGCTCGTGGCGCAGGTCTCGGGGACAGGAGGTCGGGGGGCGCCGGGTGCGGCGGGAGACGTGGACCGGAGGGCCGCCGAGCGGCGCGTCGGGTCACTGACCGAGCGGGAGCGCGAGGTGGCGGTGGTGCTGGCGCGCGGACTGTCCAACGCGGAGATCGCCGGCGAGCTGTACATGAGCGTGCCGACCGTGAAGACGCACGTGTCGCGCATCCTCGACAAGCTGGATGCCGCCAACCGGGTCCAGGCGGCGATCGCGATCCACGACGCCGGGCTCGCGAGGTAGMTESISVVVVDDDPLVRAGLGLILGGAPEVRVVGDAADGDDAVALVRAERPDVVLMDIRMPRVDGIEATRRIVALDHGGPRVLVLTTFDTDDMVLQALRAGAAGFLLKDTPPDRLVAAVRAAAAGEPTFSPSVMAQLVAQVSGTGGRGAPGAAGDVDRRAAERRVGSLTEREREVAVVLARGLSNAEIAGELYMSVPTVKTHVSRILDKLDAANRVQAAIAIHDAGLARPGPT0014870_135DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
AK018_010271263hypothetical proteinGTGGTCACCCCGTCCGCCGGCACCTCCCGGCTCGCCCGCCTCTGGTCCGAGGTGTGGCGTCTCGGCGTGGCGTTCACGGCCAGCATGGTCGTGACCGGGTTCGTGGTGGTCGAGGCGGAGTCCGGGCAGCGCGCCATCGAGGACGGGCAGATCGCCCTGGACATCCTGGTGGGGCTGGCGTGCTTCGGCGTGGTGCTGCTGCGCCGGCGCTGGCCGACGACGGTGGCGCTGCTGCTCAGCGTCGCGGCGACGGTGTCGGTCTTCGCGGCCGGACCGTTGGCGCTGGCCGTGGTCTCCCTCGCGACGCACCGGCGCTGGTGGCGCATCGTCGCGGTGGGGGTCGTGTTCGTCGTGTCCGGGTGGGCGTACGGCGTGCTGTACCCCGTCGACGACGGGATGACGTGGCTGTTCGACGTGGTCGGCGGCCTGGTCCTGTACTCGCTGCTGGTGTGGATCGGCGCCTACATCGGGCTGCGGCGCGAGCACCTGGCCTCCCTGCACGAGCGGTTGGCGACGGCGGAGCGGGAGCAGGCGAGCCGGGTCGCGCAGGCGCGTGCCAACGAGCGGGCGCGGATCGCCCGCGAGATGCACGACGTGCTCGCGCACCGCATGTCGCTCGTGGCGATGCACGCCGGCGCGCTGGCCTACCGCACGGACCTGCCGCCCGAGAAGGTCGCCGAGTCCGCCGCCCTGGTGCGCGACAGCGCCCACGAGGCCCTCGGTGAGCTGCGCGAGGTGCTCGGCGTGCTGAGGGGCCTCGACGGGCCGGCGGCCCCGGGGGACGACGGCGGCACCGTGGCCGACCCGTCGGCAGGGTCGGGCGGGTCGGCCGGCCGGCCGGAGAAGCCGCAGCCGACCCTCGCCGACCTCGACGAGCTGGTGCGCTCGACGAGCTGGTCGGGACAGGCCGCGCGGCTGATGGACCGGACCACCGAGCCGGAGCGGCTGCCGACCGCGACCTCGCGGACCGCGTACCGGATCGTGCAGGAGGCGTTGACGAATGTGCGCAAGCACGCCCCGGACCTGCCGGCGTCGGTGGTGCTGCGGGGTGCGCCGGGACAGGGCCTGTGGATCACGGTGACGAACCCGACGCCGGACGCGGGCGAACGACCCGCGACGGGCGACCCGGGAGCCGCCGTGCCGCCGTCGGGCCTGGGCCTGCTCGGCCTGGTCGAGCGGGCCGAGCTGGCGGGCGGGACCCTCACGGCGCGTGGGACCGACGGACGCTTCGTGCTGCGGGCCTGGCTACCGTGGGCCTCATGAMVTPSAGTSRLARLWSEVWRLGVAFTASMVVTGFVVVEAESGQRAIEDGQIALDILVGLACFGVVLLRRRWPTTVALLLSVAATVSVFAAGPLALAVVSLATHRRWWRIVAVGVVFVVSGWAYGVLYPVDDGMTWLFDVVGGLVLYSLLVWIGAYIGLRREHLASLHERLATAEREQASRVAQARANERARIAREMHDVLAHRMSLVAMHAGALAYRTDLPPEKVAESAALVRDSAHEALGELREVLGVLRGLDGPAAPGDDGGTVADPSAGSGGSAGRPEKPQPTLADLDELVRSTSWSGQAARLMDRTTEPERLPTATSRTAYRIVQEALTNVRKHAPDLPASVVLRGAPGQGLWITVTNPTPDAGERPATGDPGAAVPPSGLGLLGLVERAELAGGTLTARGTDGRFVLRAWLPWASNANANANANA
AK018_01028900bcrA_1Bacitracin transport ATP-binding protein BcrAATGATCACCGTGGAGCACCTGACCAAGCGGTACGGGCCGGTCCAGGCCGTGAGCGACGTGACGTTCACGGCCGAACCGGGTCTCGTGACCGGATTCCTCGGCCCGAACGGTGCCGGGAAGTCCACCGCCATGCGCATGATGACGGGCCTGACCCCGCCCACGAGCGGGACGGCTCGCGTCCTCGGCAAGCCGTACGCGGCCCTCGCCAACCCCGGACGGCGCGTCGGCGTCCTGCTCGACGCCTCCGCCCAGCACGCGGGACGCACCGGCCGCGAGACGCTCGCCCTCGGCGCCCTGCTCATGGGTGTCGAGCGGCGTCGCGTCGACGAGGTCCTGGACCTCGTGGGACTCACCCCGTCGGAGGCGGGGCGCCGCGTGCGCACCTACTCCCTGGGGATGCGGCAGCGGCTGGGGCTCGCGAGCGCCCTGCTCGGCGACCCGGACGTGCTGATCCTCGACGAGCCCGCCAACGGCCTCGACCCCGCCGGCATCCGCTGGATGCGGGACCTGCTGCGCGACTTCGCGCAGCGGGGCGGCACCGTGCTGCTGTCCAGCCACCTGCTGTCCGAGATCGAGCAGGTCGCCGACCGCCTCGTGGTGATCGGTCGCGGCCGGGTCGTGGCGGAGGGCACCAAGGACGAGCTGCTGCGCGCGGCCGGCATGGTGGTCCGCTCGCTGGACGACCACGCGCTGGCCGCCGAGCTGCGCCGTGCCGGCGTCGACGTCGAGGCGGGTGCGCACGGCGGGCTGTCCGTCGCGGCGGACGCCGAGACCGTCGCCCGGACCGCCGTCGGCGCCGGTGTGCTCGTGACCGAGCTGCGCCCCGCCGACTCCCGAGGGCTGGAGGAGTTGTTCCTCGAGCTCACCGCCGCCGACGCCCGCGAGGAGGTGTCCGCATGAMITVEHLTKRYGPVQAVSDVTFTAEPGLVTGFLGPNGAGKSTAMRMMTGLTPPTSGTARVLGKPYAALANPGRRVGVLLDASAQHAGRTGRETLALGALLMGVERRRVDEVLDLVGLTPSEAGRRVRTYSLGMRQRLGLASALLGDPDVLILDEPANGLDPAGIRWMRDLLRDFAQRGGTVLLSSHLLSEIEQVADRLVVIGRGRVVAEGTKDELLRAAGMVVRSLDDHALAAELRRAGVDVEAGAHGGLSVAADAETVARTAVGAGVLVTELRPADSRGLEELFLELTAADAREEVSAPGPT0006725_15734DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_01029804hypothetical proteinATGACCGCCGTCGACCAGGCCCGGACCCGCAGCCGCACGAGCGCACCTTCCGCGGCCGACGTCCGCACCGTCCCGTTCTCCCGCCTGACCCTGTTCGAGTGGCGCAAGCAGCTCGACACCCGGGCCGTGCGCTGGCTGTTCGTCGTCATCGCGCTGCTGACCGCCGGGGTCGTGACCGTCACCGCGCTCGTCGGCGACGGCCAGGTGTCGTTCGAGATGTTCGTCTCCAACACGTCCACGCCGCTGGCCATGCTGCTGCCGGTCGTCGCCATCCTGGCCACCACCGCCGAGTGGTCCCAGCGCACGGCGCTGACCACGTTCACCCTGGAACCCCGCCGGCAGCGCGTCGTCGGCGCCAAGGTGCTGACCGCCGTCGGCTCCGGCCTGGCGTTCTTCGCCGTCGCGGTGGGGATCGCCGCGGTCGCCCACCTCGCCGTGATCACCTTCCGCGACGCGTCGCCCGACTGGGCGCTCGGCGCGATGACGGCCGGCATGGCCCTGATGATCGTGCTGTGGATGGTCCAGGGCGTCGCGTTCGGCCTGGCCCTGCAGAGCACCCCGGCCGCGATCGTGGTCTACCTGGCCGTCCCGACGATCGTCGGGGCGATCACGATGCTGGTGACCGCCTGGGCCGACGTGTGGCCGTGGGTGGACCTGAACACGTCCTCGACGCCCCTGATCATGGGTGAGTCGATGGACGGGACCGCCTGGGCGCAGCTCGCGACGTCGGCCGCGATCTGGGTCGGGCTGCCGCTCGCGGTCGGCATCTGGCGCGTCCAGCGCGGGGAGATCAAGACCTCCTGAMTAVDQARTRSRTSAPSAADVRTVPFSRLTLFEWRKQLDTRAVRWLFVVIALLTAGVVTVTALVGDGQVSFEMFVSNTSTPLAMLLPVVAILATTAEWSQRTALTTFTLEPRRQRVVGAKVLTAVGSGLAFFAVAVGIAAVAHLAVITFRDASPDWALGAMTAGMALMIVLWMVQGVAFGLALQSTPAAIVVYLAVPTIVGAITMLVTAWADVWPWVDLNTSSTPLIMGESMDGTAWAQLATSAAIWVGLPLAVGIWRVQRGEIKTSPGPT0006730_13134DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_010301896hypothetical proteinATGGACGTCATGCTCGTCGCCGTCGCCTCCGCCGTCGTCGTCGCGGTCACGGCGCTCGCCCCGCGGGCCGGTGTCGCCGCGCCGCTGCTGCTCGTGCTCGTCGGTGTCGCGGTCAGCTTCGTCCCCGCGGTCCCGGCGATCGACGTCGACCCCGAGCTGATCCTGGCCGGCGTGCTGCCGGCGCTGCTCTACGCCGCGGCCGCCTCCTTCCCGACGATGGACTTCCGGCGCGACCTCACCGCGATCAGCGGGATGTCGGTGCTCCTGGTGGTGTTCTCGGCCGTGCTGCTCGGGTTCGTCTTCGCCTGGGTGGTCCCGGGGCTCGACGTCGCCGCGGGCATCGCGCTCGGAGCGATCGTCAGCCCCACCGACGCCGTCGCCACGTCCATCGTCAAGAAGCTCGGGGCGCCGCGCCGGGTCGTCGTCGTCCTCGACGGCGAGGGACTCCTCAACGACGCCACCTCGCTGGTGCTGCTGCGCTCCGCGGTGGCCGCCGCGGCCGTCAGCGTGTCCCTGTGGTCGGTGATCGGGGACTTCCTCCTCGCGGTCGCGATCGCCGTCGTCCTCGGCGTCGTCGTCGGACGCCTCGGCCTGTGGGTCCGGACCCGGCTGAAGCACGCGGCGCTGTCGACGGCCGTGTCGTTCGTCGTGCCCTTCGCCGCCTACCTGCCGACCGAGGTGCTCGACGCCTCCGGCATCGTGGCGGCGGTCGCGGCGGGACTCGTCACCAGCACGCTCGCGCCGAAGTACCTGCGCCCCACGGACCGGGTCGCCGAGCGGATGAACTGGCAGACCGTCGAGACGCTGCTGGAGGGTGCGCTCTTCCTGGTCATGGGCCTGCAGGTGTACGGCCTGGTCGAGGACGTCCGCGCCGAGCACGGCTCGCTGTGGATCGCGTGGGGCGTCGCCACCCTCGGTGCGGTCGGCATCGTCGCGGTCCGGGCGGCGTTCGTGCTCCCGCTGCTGCAGTACCTGGCACGACGTCGTCGGCGGGGCGAGCAGATGCGCGGGATGCTCGCGACCCTGCAGGAGCGCTTGGACGCCAAGATCGCCGCGCACCGGGACGGTGACGTCGAGACGCTGTCGACGCAGGCCGCCCGCGAGGCGCTCGAACGTTCGTGGCCCGAGCAGCTCCCGGACCGCCGCCGCGCCCACGAGCGCCGGCGGCTGGAACGCCACGCCCGCCGGTACGCCGAGATGCGCCGACGCACCCGCCCCGGCACGAGCGAGGAGCACGAGGCCGCCCGGGCCGGCGTGGTCGAGCGGATCAACCGGTTCAGCCGCCGGCTGACCCGCAAGGTCGCCGACATCGACTACTCGTCGGCGGCACCGCTCGGACCGAAGGAGGGGGTCGTGCTGGTGTGGGCCGGGATGCGCGGCGCGGTCACGCTCGCCGCCGCCCAGACGCTGCCCGCCGACTTCCCGCAGCGCTCCCTCGTGGTGCTCGTCGCCTTCGGCGTCGCCGCCGGCACGCTCCTGGTCCAGGGCGGCACCCTGCCGTGGGTGGTGCGGCGGCTCGGGCTCGCGGGGGCGACGTCGCCGCGGCGTGCGGCCGACCAGGCCGGTCTGCGCGACGTCGTGGACGGCGCCGCCCGGACCCTGCTCACCGATCCCGGCCTGCGCCGGCCCGACGGCGGCACCTACGCGCCGCGGATCGTCGACCGGGTGCGTGACGTCGTCGTGCGCGAGCAGCACGACCAGGACGAGGAGGAGGCCACCCCGGCCGAGCAGCACGAGCAGTTCTTCGAGCTCCGCCTCGCGACGATCGAGGCCCAGCGCAGCGCCCTGCTCGACGCCCGCCGGCTGGGCACCTACGACGCCGACCTGCTGAACCAGGCCCTGGAGCTGCTCGACGCCGACCAGATCGCCGTCGAGATGCGGTCGCGCGCCGACTGAMDVMLVAVASAVVVAVTALAPRAGVAAPLLLVLVGVAVSFVPAVPAIDVDPELILAGVLPALLYAAAASFPTMDFRRDLTAISGMSVLLVVFSAVLLGFVFAWVVPGLDVAAGIALGAIVSPTDAVATSIVKKLGAPRRVVVVLDGEGLLNDATSLVLLRSAVAAAAVSVSLWSVIGDFLLAVAIAVVLGVVVGRLGLWVRTRLKHAALSTAVSFVVPFAAYLPTEVLDASGIVAAVAAGLVTSTLAPKYLRPTDRVAERMNWQTVETLLEGALFLVMGLQVYGLVEDVRAEHGSLWIAWGVATLGAVGIVAVRAAFVLPLLQYLARRRRRGEQMRGMLATLQERLDAKIAAHRDGDVETLSTQAAREALERSWPEQLPDRRRAHERRRLERHARRYAEMRRRTRPGTSEEHEAARAGVVERINRFSRRLTRKVADIDYSSAAPLGPKEGVVLVWAGMRGAVTLAAAQTLPADFPQRSLVVLVAFGVAAGTLLVQGGTLPWVVRRLGLAGATSPRRAADQAGLRDVVDGAARTLLTDPGLRRPDGGTYAPRIVDRVRDVVVREQHDQDEEEATPAEQHEQFFELRLATIEAQRSALLDARRLGTYDADLLNQALELLDADQIAVEMRSRADNANANANANA
AK018_01031951hypothetical proteinATGACCGGTTACGACCCGCGCTTCCTCGGACCCGACGACGCGCTCGAGGTCCCCCTGCCCGTCCCCGTCGACGACGACGGCCCGCCCCGCGCGCTGCGCCGGCTCGACCACCCCCGCTTCAGCATCCTGCTCGACCCCGACCGCCGCCTCGCCGCCGCCACCGCCTGCACCGTCGACGGCGAGAGCCTCCAGCGGCTGCCCCGCACCGGCAGCTGGCGGCTCGACGACCAGGCGCTGCCCGACGAGCAGGCCGGCAACGAGCTCTACCGCCACAACCCGCTCGACCGCGGACACCTCGTGCGCCGCCTCGACCCCATGTGGGGCGGCGTCGACGAGGCCCGCCAGGCCGGCGAGGCCACCTTCGTCTACACCAACGCCGCCCCCCAGATCGACGCCTTCAACCAGTCCAAGGAGCTGTGGAACGGCCTCGAGGACCACGTCCTGGCGTTCGCCGACGCCCACCGCCACCGGATCGTCGTGCACACCGGGTGCGTGTTCGACCCCGCCGACCCCGTCTACCGCGGCATCGCCCTGCCGCGCCGGTTCTGGAAGGTCGCCGCCTGGGCCACGTCGGGCACCGGCCAGGGAGCCGACGACGGCGGCACACGGCCGGACGTCCTGCGCGCGGCGGCGTTCGTGCTCGACCAGACGCCGCAGCTCACCGACGCCGAGCTGTCCACCGCCACCGGTCGGGCGCTCGCGGCCGGGAACATCCCCCCGCTGGGGCCCTACCGGACCTTCGCCGTCCCCGTCGCCGACCTCGAGGTGCTGACCGGGCTCGACCTCGGGCCCCTCGTCGCGGCCGACGTGCTGGCGCCCGAGCGACGCACCGCCGTCGGCCCCGGACCGGCCGCCGCGCCCGCCGAGCCGATGCGCGCCGGCGGGCCGCCGCCGTCGGGCTGGACCGAGCTCACCACCCCCGCCGAGGTAGGCCAGCTCCTCGCGGGGTAGMTGYDPRFLGPDDALEVPLPVPVDDDGPPRALRRLDHPRFSILLDPDRRLAAATACTVDGESLQRLPRTGSWRLDDQALPDEQAGNELYRHNPLDRGHLVRRLDPMWGGVDEARQAGEATFVYTNAAPQIDAFNQSKELWNGLEDHVLAFADAHRHRIVVHTGCVFDPADPVYRGIALPRRFWKVAAWATSGTGQGADDGGTRPDVLRAAAFVLDQTPQLTDAELSTATGRALAAGNIPPLGPYRTFAVPVADLEVLTGLDLGPLVAADVLAPERRTAVGPGPAAAPAEPMRAGGPPPSGWTELTTPAEVGQLLAGNANANANANA
AK018_010321683hypothetical proteinGTGGGGCGCCGACGCCGCCCCGAGGGGGCGTTCACGTTCGACCTGGTGCCCGACGACGGGACCCAGGCCGGGGACCGGCCTGCGGCGTCGCCCGTCGATGCGGGGCCCCCCGCCGACCTGCCCGCGGATGTCCCGCCGTCGGACAGCGACCGCGAGTCGGGACCGGTGCGCCGGACGTGGCAGCGGTTCTCGCGTCGTACCCGGCTGGCCGCCCTGGTGACGGTGACCGCGGTGGCCGGCGTGGTCCTCGTCGTCGACGGGATGCTCGACCAGGGCCGGCACGAGGAGCTGCGGACCGCGGCGGGCGGCGTCGTCGACCTGTCCGCACCGCCGGCCGAGGCGTGGCGCGTGGGGGACGCCGGGGACGCGCCGCCGCAGGAGGTCTCGCTCGCGGCCGTGACCGACGGGGTGGCCATGGTGCAGCGCGAGGACGAGCTGCGCGGCGTCGACCTGGTCACCGGCCAGGAACGGTGGGTGATCGACCTGCTCGACTCGCGGGCGCGCTGCGGGCCGGGGATCACCCTGTGGTCGGACGTCGCCGAGATCACTCCGGCCTCGCGGGTGGTGTGCGTCGCGGACGGGCAGGCCGGCGCCGCGACGGCGACGGTGGTCACGGCCGACGGGACGGTGCTGGCCCGCCGTCAGCTCGAGGGCGAGCAGGACCTGGTCGCGCCCGGACCGGACGGCACGCTGCTCACCGCGTCCTGGGTGGGTGAACCCGACGACGTGGACGTGGAGCTGCACGGCGACCCGATGACGGACCTGACGGTGATCGGCGAGATCGACGACGGCTACGACCTGCTGGTGCGGCTCAGCGACGCCGTGACCGGTGAGGAGCGCTGGGAGCGCCGGGTGGCGTTCGACGAGGTGCGCGACGAGCGCCAGTGCGTCCGGTGGACCACCGGGGGCCGGGACATGGAGCTGGCCCGCGACGGCGACGTCGACCACCTGACGAGCGGTCGGCTGCTCGCGGTCTCCGCGTGCGGCGTGCTCGCCTACTTCACGCCGTCGGGCGAGCAGCTCGACCTGAGCTCCGCGCAGGCCGCCGGCGACGACGTCGCGCGCCGCGTGCAACCCCTGGCCGACGGCGGGTACGCCGTGTTCGCGGCGGTGTGGGGCCAGCAGGCGTGGACGTACGGCGTGCTGGACGCCGCCGGTCAGGAGCGGCTGCGGGTCGAGGGGCGGCTGCTGGACCCGTGGGCGACCGACGGCCCCGCCGACGGCGGGCTGCTGCTCGCCACCGAGGCGGGGCTGACGGCGGTGGACGCCGAGGGCGCCGAGCGGTGGACGGCCGACGTCGAGGCCGACGAGCAGCTGGCGCGCGCCGGCGGGGTGACGGTCGTGCTCGACCAGCGCGACCGCGTCCTCGGCCTCGACCGCGCCACCGGCGACGTGCTGTGGGTGCGCGAGGACCTGACGGACCTGTCGTCCGTCGAAGGTGCCACCGGACGCGGCGGCGAGGTCGAGTCGGTGTTCACCGACGGGTCCGTCGTGGCGCTGGTGGTGCCGGACTACGGCGACACGGGGGTGGTCTCGCGCTGGCTCGCGGTCGACGCGACCACCGGGGAGGACCTGTGGTCCGCCGCGGTGCCGCACGAGGGCTGGGGCGTCGACCTGGCCGTGGAGGGCCAGATCGTGCGGTGGTGGCCCCGCGGGCTCGCGGGGTTCACCACCACGTCCTGAMGRRRRPEGAFTFDLVPDDGTQAGDRPAASPVDAGPPADLPADVPPSDSDRESGPVRRTWQRFSRRTRLAALVTVTAVAGVVLVVDGMLDQGRHEELRTAAGGVVDLSAPPAEAWRVGDAGDAPPQEVSLAAVTDGVAMVQREDELRGVDLVTGQERWVIDLLDSRARCGPGITLWSDVAEITPASRVVCVADGQAGAATATVVTADGTVLARRQLEGEQDLVAPGPDGTLLTASWVGEPDDVDVELHGDPMTDLTVIGEIDDGYDLLVRLSDAVTGEERWERRVAFDEVRDERQCVRWTTGGRDMELARDGDVDHLTSGRLLAVSACGVLAYFTPSGEQLDLSSAQAAGDDVARRVQPLADGGYAVFAAVWGQQAWTYGVLDAAGQERLRVEGRLLDPWATDGPADGGLLLATEAGLTAVDAEGAERWTADVEADEQLARAGGVTVVLDQRDRVLGLDRATGDVLWVREDLTDLSSVEGATGRGGEVESVFTDGSVVALVVPDYGDTGVVSRWLAVDATTGEDLWSAAVPHEGWGVDLAVEGQIVRWWPRGLAGFTTTSNANANANANA
AK018_010331707hypothetical proteinGTGGCACGACGACGCGACACCGACCTCGTCTCCTTCGACGTCTCCTACGACGCCGGGCTCGAGGGCGGGTTCGACGCGTCCGGCGGCGCCGGGGACGGCCCCGGCGGGCCCGAGCGGGGCCCGACCTGGCGGGACCGGTGGCGTGCGGCCTCCCCGCGGCGGCGACGGCGGATCGTCGGCTCGGCCGGTGCCGCACTCGTCGTGGCGGTCGGCGGGGTGGGTGTCGCCGGGGCGGTGCAGGCGCACGTCGACGCCGAGCGGCTGCGGGAGTCCCCGGGCGGGGTCGTCTCGCTCGACGGTGACCTGACCGAGGTCTGGAGCACCGGCGGAGGCGTGGCCGCGGTGCTGGCCGGGGGCGGGCTCGTCGGGATCGACGGTCAGGACGTGGTGGCGCGGCAGGTGGCCGACGGGGCCGAGCGGTGGCGGGCCGAGCTCGGCGAGGCGCCGGAGTGCGGCCCGTCGCCACGGCTCGGCAGCAGTGTGGAGTGGACGCTGACCGCCGACGTCGTCACGTGCCTGCACGGTCCGGACGGCGAGCGCACGGTGACCGTCCTCGACGCCGACGGGGCCGTCGTCGGGCAGCGGGACCTGGACCCCGAGCGCTACGGCGCGGACGTCGAGGTGGTGCCCGCCGCCGACGGTGCGCTGGCCGTGGCCGCGCTCGAGGCACCGGCGTGGGTGGGCCGGGAGTTCGACTCCCAGCAGGCCGCGGACGAGGCGCTCGCCCGGTCGCGCGACAGCATGGTCGAGGCGGCGGTGCACGTCGAGGACGCCCTCACCGGCGACGTGCGGTCCGAGCTCGACCTGGACGACGGCGGCCTGACCTGGTCCGACTGCGCCGGGGTCGCGATGTCCGGCGAACCCGGTGAGCCCGAGCGCGCCTGGATCCTGTTCGACGGATCGACCCGGCCCACGGCCACGCCGGCCGTCGTGGGTTACCGGCTCTGCGGCACGGCCGGTGCCGTGACGGCCGCCGGGACGGCGCTCGACCTCAAAGACGCCATCTACGTCGGGTTCGACAGTCTCGGGACCGGCGGCGACGTCTCCCCGTTCCCCGGCGGAGGGATCGTGGTGCCCCGTGGCGGTGCCGGGTCGGCCGTGGTGGCCGAGGACGGGTCTGAACGGCTCGCCGACCTGACGCGGCGAGTGCTGGTGCCGAGCGCGCAGGTCGGTGACCCCGAGCCCGAGCCCGAGGCGCTGGCGGTGCCCGACGGCCGCTACGGGCTCGTCGGTGTCGACGGCACCGAGGTCCGGTGGGAGCGGGAGCTGCCGGGCGACGTCCAGGTCCTGGCCCGGACCGACGGCACGAGCGTCCTGTCCGTGACGGACTACGGGAACGACGGGTCGGGGCTCGGGGCGCTCGTCGGTCTCGACGACGCCGACGGCACCGAGCGGTGGCGGGTCGAGCTGGGCGAACCGGACGGCGATGACGGCGCGCAGCGCTGGGTCCAGGTCACCTCGGCCGTCACCGACGGCGAACAGGTCACCGTCGCGGTGACCGCCGCGACGGGCGCCACCTGGGAGGCCTACCTGGTCACCGTCGACCTGGCCACGGGCGACGAGCGCCGCCACGACCTGGGTGCCGAGGTGTTCCCGTACCTCGCCGCGGTGGACGGTCACCTGATGCTGCACGAGTTGGACCCGTACGGCGAGCCGTTCGACGACGGCCCGGTCGTCGAGACGGTGAGGGTGCTCGAACCGCGTTAGMARRRDTDLVSFDVSYDAGLEGGFDASGGAGDGPGGPERGPTWRDRWRAASPRRRRRIVGSAGAALVVAVGGVGVAGAVQAHVDAERLRESPGGVVSLDGDLTEVWSTGGGVAAVLAGGGLVGIDGQDVVARQVADGAERWRAELGEAPECGPSPRLGSSVEWTLTADVVTCLHGPDGERTVTVLDADGAVVGQRDLDPERYGADVEVVPAADGALAVAALEAPAWVGREFDSQQAADEALARSRDSMVEAAVHVEDALTGDVRSELDLDDGGLTWSDCAGVAMSGEPGEPERAWILFDGSTRPTATPAVVGYRLCGTAGAVTAAGTALDLKDAIYVGFDSLGTGGDVSPFPGGGIVVPRGGAGSAVVAEDGSERLADLTRRVLVPSAQVGDPEPEPEALAVPDGRYGLVGVDGTEVRWERELPGDVQVLARTDGTSVLSVTDYGNDGSGLGALVGLDDADGTERWRVELGEPDGDDGAQRWVQVTSAVTDGEQVTVAVTAATGATWEAYLVTVDLATGDERRHDLGAEVFPYLAAVDGHLMLHELDPYGEPFDDGPVVETVRVLEPRNANANANANA
AK018_010341617hypothetical proteinATGGGCGGCTCGCAGAGCGGCGCGGTCGAGTTCGATGTCTCGCACGACGCCGGCCGGGACGACGACGCCGCCGCTGCCGGGAGCCCGAGCGGGTGGCGTGCCCGCTGGCGTGCGGCGAGCCGGGGTCAACGGCAAGTCGTCGCCGGGATCGCGGCCGCGTCCGTGCTCGTCCTGGCGGGTGGCGCCGCGGTCGCCGGGTTGCTGGCCGACCGCGTCGAGGCCGACCGGCTGCGCACCACCCCCGGAGCGGTCCGCTCCCTGGACGGCCCGCTGACCGACGTGTGGCGCGCGGACGTCGACGCGCTCGCCGCGGTGCTGCCCGACGGCGGGCTCGCCACGACGGACGGCAGCCGCCTGGTGGTCCGCGAGGCCGGCGACGGGACCGAACGGTGGAGCGCGGAGCTGACGGGCGACCCGGTGTGCGGTCCCGCGCCGCGACCGGGCAGCCCGCTGGAGTGGGCGGTCCCCGTGGATACGGTCACCTGCGTGCACGGCTCGGCCGCCGCCCGCGTCGTCACGGTGCTGGACGCCGGTGGCGCCGTCGTCGGGCAGCGGGAGCTGGACCCGGACCGGTACGGCGGGGCGACCCGCGCCGTGGCGCCCGCGGCCGACGGCGGTCTGCTGGTCGCCGAGCACGCGTCCGACCTGCCGGCACAGCTCACCTTCGCGACGCCGGACCAGATGTTCTCGCGGCTGAGCCGCCTGGAGGTGCAGGCCGGTCCCGCCGACGTGCGGCTGGAGGACGCGCTCACCGGCGAGCGCCGCGCGACCCTCGAGGTCACGACCGTGCCCGACGCCGACGGGCTCGACTGCTACGACATGACCGAGACCGTCGTGGACGCCTCGGGGCTGGGCACCTCGGGCCGGGCCGTGCTGGACCTCGGCACGCCGCAGGGCACCCCGACGATGGTGCTGTTCGACGGCTGCGCGACCGACGGCGCCGCGACGTACGGCGGGGTCGCGCTCGGGACCCAGCCGACAGGTGCCGGGCCGTGGCCGCCGCAGGAGCGTCGGCAGCCGTACCCCGGCGACCGGTTCGTGGTCCCCGAGGGCGGCGGGTCGGCGCTCCTCGCCGCCGACGGCACCCCGGTGCTCGACGCCCGCGGGTGGCGCCTCCAGGTGCCCGCGACCGACGGGACGGCCGGCGACGGGCACGTGGCCGTCGCGTCCGACCGGGTGCTCGCGCTGACCGAGGACGGTGCCGAGCGGTGGGAGGCGCCGCAGGCCGACGCCCGGGTGCTGGTGCGGACCGCCGACGTCGCGGTGGCCGGCGGGTGGAACCGCCTGACGGGGTACGACCCGGCCGACGGCACCGAGCTGTGGACGCTCGAGCCGGACGCCGGGCCGAACCGGTACGTGCTCTCCGCCGTCACCGACGGTCCCCGGATGGCCGGCGTGCTCCTGGAGACCTCGACCGTGGGGCGCGCCGAGCTGTCGCTGTTCGTCCTCGACCTGGCCACCGGGCAGGAGGTCGCGCCGCGTGTCGAGGTCGACGCGCGCCACGTCGTCGCCGTGGACGGGCACCTGCTCGTGCTGGAGCCCGCCGAGGACGAGGTGCTGACCGGGGACGTCGCCCCACGGATCGCGGGTCTGCGGGTGCTCGCCCCGGCGGGGTGAMGGSQSGAVEFDVSHDAGRDDDAAAAGSPSGWRARWRAASRGQRQVVAGIAAASVLVLAGGAAVAGLLADRVEADRLRTTPGAVRSLDGPLTDVWRADVDALAAVLPDGGLATTDGSRLVVREAGDGTERWSAELTGDPVCGPAPRPGSPLEWAVPVDTVTCVHGSAAARVVTVLDAGGAVVGQRELDPDRYGGATRAVAPAADGGLLVAEHASDLPAQLTFATPDQMFSRLSRLEVQAGPADVRLEDALTGERRATLEVTTVPDADGLDCYDMTETVVDASGLGTSGRAVLDLGTPQGTPTMVLFDGCATDGAATYGGVALGTQPTGAGPWPPQERRQPYPGDRFVVPEGGGSALLAADGTPVLDARGWRLQVPATDGTAGDGHVAVASDRVLALTEDGAERWEAPQADARVLVRTADVAVAGGWNRLTGYDPADGTELWTLEPDAGPNRYVLSAVTDGPRMAGVLLETSTVGRAELSLFVLDLATGQEVAPRVEVDARHVVAVDGHLLVLEPAEDEVLTGDVAPRIAGLRVLAPAGNANANANANA
AK018_01035342hypothetical proteinATGGTGCGACGACATTCCTCGGCCCGCGGCCCCGTGCAGATCGACCTCAGCGCGGACATCGCCGAGACGTCCGACGGCGGCACGGGCGCGGGCGGCGACGTACCCGGTGCCGCCGGAGCGGACGGCGGGCCGGTGACGCCCGGCTGGTTCGCGCGGCGGGTCGCCCGCCCGCTGGCGGCCCGCTGGCGGGGCCTGACCCCGCAGCTGCCCGGCTCGGTGACCCTGCTCGCCGTCGACGGCGCCCCGTTCCTGGCGGATCGGTTCCGCGAGTCGTACGCCGAGCAGGACGAGGACAGAATGGTGCAGACCTTGGACAGCGCGCTCGTCGGCCTGACCGGGTAGMVRRHSSARGPVQIDLSADIAETSDGGTGAGGDVPGAAGADGGPVTPGWFARRVARPLAARWRGLTPQLPGSVTLLAVDGAPFLADRFRESYAEQDEDRMVQTLDSALVGLTGNANANANANA
AK018_010361239hypothetical proteinATGACCGCCCCGACGCAGGACCCGACCCGCACGACGTCCGCACCCCAGCCTCCCGACGACGGGGCCCGGGGCGCCTGGCGCCTGGTGATGCAGCGCGAGATCGTCACGAAGGCGATGAACAAGGCGTTCGTCATCGGGCTGCTGGTGTCGTTGGGCGTCATCGCGGCGCTGGCGGCGTTCTTCACCTGGCAGGGCAACCGCGTGGACACCTCGACGGTGGCCGTGAGCGGCGGGGACACCGCGGCGGTGGCGGCGGTGACGTCCGCGGCAGACCTGGCGCAGGCCGAGGGTGGCAACGACGAGATCGAGGTCCTCGAGGTGGGCGACGACGACGCGGCGCGGGCCGCGCTCGAGGACGGCGAGGCGGACGCCTGGCTGCACCCGGGCGACGACGGCGGCTGGGTGCTGTCCGGTCAGGGAGAGCCCGACGGGACGCTGACCCGCTTCGTGGGGACCGCCGTCGAGCAGCAGACCGTGGCGGCGAACGCGGAGGCCGCGGGCACGTCGGTGGCAGAGCTGTCGGCCGGTGCCGAGCTGTCCACCGAGGCGCTCGACGCGGACGCGATGGGGGAGCAGGCGATGTTCTTCGCCACGTTCGCGCTGTCGTTCCTGTTCTTCGCGGGGGCGCTGACGTCCGGCAACATGATCGCGAGCTCCGTGGTGGAGGAGAAGCAGTCCCGGCTGGTGGAGATCATCGCGACGGCCGTGCCGCTGCGACAGCTCCTGGCGGGCAAGATCCTCGGCAGCTCGGTGATCGCCATCGGCCAGAACCTGCTGTTCGCGGGGGTCGGGTTGATCGCGGTCGCGGCGAGCCCGATCTCGATCGCGCTGCCGGCCCTGTCGACCTCGCTGATCTGGTTCGTGGTGTTCTTCGCGATCGGGTTCCTGGCGCTCGCGGCGCTGTACGCGGTGGCCGGCGCGCTGGCCAGCCGGGCGGAGGACCTGCAGTACACCTCGACGCCGATGACGTTCCTGGTGATGGGCGTGTACTTCCTGACCTTCACGGCCTCGGGGACGTTCCTGACGGTGCTGTCCTACGTGCCGATCGCGAACGTGGTGGCGATGCCGGCCCGGGTGCTGTCCGGGGACGCGACGTGGTGGGAGCCGGCGGTCTCGCTGCTGATCCTCGCCGGGTTCGCGGCGGTGGCGCTGCTGGTCTCGGAGCGGGCGTTCCGCGGGTCGCTGCTGCAGACCGGCGGGCGGATCTCCTGGCGGCAGGCGCTGCGGTCGCCGAGCTGAMTAPTQDPTRTTSAPQPPDDGARGAWRLVMQREIVTKAMNKAFVIGLLVSLGVIAALAAFFTWQGNRVDTSTVAVSGGDTAAVAAVTSAADLAQAEGGNDEIEVLEVGDDDAARAALEDGEADAWLHPGDDGGWVLSGQGEPDGTLTRFVGTAVEQQTVAANAEAAGTSVAELSAGAELSTEALDADAMGEQAMFFATFALSFLFFAGALTSGNMIASSVVEEKQSRLVEIIATAVPLRQLLAGKILGSSVIAIGQNLLFAGVGLIAVAASPISIALPALSTSLIWFVVFFAIGFLALAALYAVAGALASRAEDLQYTSTPMTFLVMGVYFLTFTASGTFLTVLSYVPIANVVAMPARVLSGDATWWEPAVSLLILAGFAAVALLVSERAFRGSLLQTGGRISWRQALRSPSPGPT0006730_3703DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_01037999lnrL_1COG1131Linearmycin resistance ATP-binding protein LnrLGTGGCGGGCTCGGACCTCGTCTCCGGCGGCCGCCTCCGCCGGGAGGCGGACCCCGCCGGTTCCGCCCTCCGGGGGATCCGCCCGAGGCCTGCGCTGCCTAGGTTGGGTGCCATGTCCACACTCGAGGTCAGGGACCTGACCAGAACCTTCGGCGACCTGCGCGCCGTCGACGGCGTCTCCTTCGCCGCTCGCGACGGCATGCTGACCGGCTTCGTCGGCTCCAACGGCGCCGGCAAGACGTCCACGATGCGCATGATGATGGGTGTCCTCGCGATCACCTCCGGCGAGGTGCTGCTCGACGGCGCCCCGGTGACCCGCGCGGACCGGCGCACCTTCGGCTACATGCCCGAGGAGCGCGGCCTCTACCCCAAGCAGCCCGCGCTCGACCAGCTCGTCTACCTCGCCCGACTGCGGGGCATCCCGGCCGCGCAGGCCCGCACCGAGGCGATGGACCACCTCGAGCGTCTCGGGCTGGGCGAGCGCGCCAAGGACCACGTCGAGAAGCTCAGCCTCGGCAACCAGCAGCGCGTCCAGATCACGGCCGCGCTCATGGGCCGCCCCCGCGCGCTCATCCTCGACGAGCCGTTCTCGGGCCTGGACCCGTCGGCCGTCGACGACATGGTCGACCTGCTGCGCGAGCACACCGCCCGCGGCGTCCCCGTGCTGTTCAGCTCGCACCAGCTCGACCTGGTGGAGCGGCTCTGCGAGCGCCTCGTCATCCTGCGCGGCGGCCGGGTGGTCGCTGACGGCACCCCGGCCGACCTGCAGTCCACCGGCACGGTCCGGCACCGGCTGGTGCTCGGCGGCGACGCCGGCTGGGTGCGTGGGGTGCCCGGCGTGCACGCGGTGGACGTCGACGGCACGACGGCGCTGGTCGAGCTGGTCGACGACGCCGCGGCCCAGCGGCTGCTCGCGTCCGCGCTCGAGCGCGGCACCGTGCACGAGCTGTCCCCGGTCCGGCCCTCCCTGGCCCAGATCTACCGTGAGGTGACGTCATGAMAGSDLVSGGRLRREADPAGSALRGIRPRPALPRLGAMSTLEVRDLTRTFGDLRAVDGVSFAARDGMLTGFVGSNGAGKTSTMRMMMGVLAITSGEVLLDGAPVTRADRRTFGYMPEERGLYPKQPALDQLVYLARLRGIPAAQARTEAMDHLERLGLGERAKDHVEKLSLGNQQRVQITAALMGRPRALILDEPFSGLDPSAVDDMVDLLREHTARGVPVLFSSHQLDLVERLCERLVILRGGRVVADGTPADLQSTGTVRHRLVLGGDAGWVRGVPGVHAVDVDGTTALVELVDDAAAQRLLASALERGTVHELSPVRPSLAQIYREVTSPGPT0006725_17050DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_01038696hypothetical proteinATGCAGAATCTGATCAGGCAGAATGGGCACGTGCCCGTACCTGACCACGGCCCCGTCGCCGGCCGGACCCTGCTGCGCGACGACGTCTACGGCCGGTTGCGCGACGCCATTATCGACGGCACGTTCGAACCCGGCGAGCAGCTGCGCGACGGCGAGCTCGCCGCCTGGCTGGGCGTCAGCCGCACCCCGGTCCGCGAGGCGCTGCTGCGGCTGGCCCGCGGCGGCCTGGTGGTCGCCCGGCCCGGCCGGTCCACCGTCGTCAGCCCGCTCGACGCCCGCTCCCTGCTCGAGGCCCGCGACGTGGTCGCCGCGATGCACCGGCTCGCCGTGCACGACGCCGTGCCGCACCTGACCGAGGACGACCTCGAGACGATGCGGGACGCGGCCCGCCGCTTCGCCGCCGCCGTCGAGGCGGGTGACGTCGAGGCCGCCGTCGCCGCCGACGACGACCTGCACGACGTCGCGGTCGCCGTCGCCGGGAACCGTGCCGCCGCCGCCGTGATCGAGCAGTTCACGCCCGTCCTGCGCCGTGCCGAGCGGCTGCGCTTCGCGGCACCCGACGCGCAGGGGTCGCTCGACCGGCACGACGAGCTGATCCGCCGGTGCGCGGCCCGCGACGCCGAGGGCGCCGCCGACGTGGCCGCCGGCCTGTGGTCGAGCCTGTGCGACGCCGAGGGGGACGCGCTCGGCGCCTGAMQNLIRQNGHVPVPDHGPVAGRTLLRDDVYGRLRDAIIDGTFEPGEQLRDGELAAWLGVSRTPVREALLRLARGGLVVARPGRSTVVSPLDARSLLEARDVVAAMHRLAVHDAVPHLTEDDLETMRDAARRFAAAVEAGDVEAAVAADDDLHDVAVAVAGNRAAAAVIEQFTPVLRRAERLRFAAPDAQGSLDRHDELIRRCAARDAEGAADVAAGLWSSLCDAEGDALGANANANANANA
AK018_010391050hypothetical proteinATGAGCACCACCGGCACCACCCAGCAGACCATCGTCCTCGTGCACGGCGCGTTCGCCGACTCCTCGAGCTGGAACGGCTCGATCCCCGCCCTGCAGGCCGCCGGCCACCGCGTCGTCGCCGTCGCCAACCCGCTGCGGGGCCTGGCGTACGACGCCGCGTACCTGCGCAGCGTCCTCGACGGCATCGACGGACCCGTCGTCGTCGCCGGCCACTCCTACGGCGGCACCGTCATGTCGGTCGCCGCCGACGGCGACCCCGACGTCACCGCCCTCGTGTACGTCGCGAGCTTCCTGCCCGAGATCGGCGAGAGCACCGGCGAGCTCGCCGCCAAGTTCCCCGGCGCCCGGCTCGGCGACGCCCTCGAGGCGGTCCCCGCACCCCTGCCCGACGGCGGGACGGGCGACGACCTCTCCATCCGCCAGGAGGAGTTCCGCACCGTGTTCGCCGCCGACGTCCCCGAGCAGACCGCCGCGCTCATGGCGGCCACCCAGCGCCCGATCATCGCCCAGGCGCTGGCCGACCCGCTCACCGCCGCGGCCTGGCGGTCGATCCCGTCGTGGAGCCTCGTCGCCCGGCAGGACCTCGCGATCCCGCTGGAGTCCGAGCGGTTCATGGCCGAGCGCGCCGACGCCCGCGCCATCGAGGTCGACGCCTCCCACGCCGTCACCGTCTCCCGGCCCGACGCGGTGACCGACATCATCCTCGACGCCGCCCGCACCACGGCCCCCGTGGCGCTCCCGGACCCGGTCCGCCGCTACTTCGAGCTGGCCCCCACGGACGACCACGCGGCCTTCCTCGCCCTGTTCGCCGACTCCGCCGTCGTGGAGGACGAGTCCAGGACGCACACCGGGATCGACGCCGTCCGCGCGTGGCGCACCGGCAGCATCCCCGTCCGGTACGAGGTCACCGACGTCGCCCGGAACGACGGCAGCCTCGTCGTGACCGCGACCATCACCGGTGACTTCCCCGGCAGCCCGTTCGCCGGGCTCCGGTTCGAGTTCGACGACCTCACCGACGACCGCATCCACGTGCTGCGCATCCGGGCGTAGMSTTGTTQQTIVLVHGAFADSSSWNGSIPALQAAGHRVVAVANPLRGLAYDAAYLRSVLDGIDGPVVVAGHSYGGTVMSVAADGDPDVTALVYVASFLPEIGESTGELAAKFPGARLGDALEAVPAPLPDGGTGDDLSIRQEEFRTVFAADVPEQTAALMAATQRPIIAQALADPLTAAAWRSIPSWSLVARQDLAIPLESERFMAERADARAIEVDASHAVTVSRPDAVTDIILDAARTTAPVALPDPVRRYFELAPTDDHAAFLALFADSAVVEDESRTHTGIDAVRAWRTGSIPVRYEVTDVARNDGSLVVTATITGDFPGSPFAGLRFEFDDLTDDRIHVLRIRANANANANANA
AK018_01040666liaR_2COG2197Transcriptional regulatory protein LiaRATGACGTCGGTGCTGCTCGTGGACGACCAACAGCTCGTCCGGTCCGGGTTCCGCCTCATCCTCACGGTGGAGGACGACCTCGAGGTGGTCGGCGAGGCCGCCGACGGCGTCGCGGCGGTGAGCGCCGCGCGCGGGCTGCGGCCGGACGTGGTCCTCATGGACGTGCAGATGCCCGGCATGGACGGGATCGAGGCCACCCGCCGGATCGTCGCCGAGGACCTGTCCCGGGTGCTGGTGCTGACCACGTTCGACGACGACGCCTACGTGTTCGACGCCCTGGCTGCCGGCGCCTCGGGGTTCCTGCTCAAGAACGCCGACGCCGACCACCTGGTCGAGGCGGTGCGGACGGTGGCCGCCGGCCAGGCGCTGCTGTCCCCGCAGGTCACCCGCCGCGTCGTGGAGCGCATGGTCGGGTCGGGCGAGGGGCCGGCCGCGCCGGGGCCGCCGGCGTCGGCCCCCGGTCTGGAGCTGCTCACCGCCCGCGAGCACGAGGTGCTGGTGCTGGTGGGTCGCGGGCTGTCCAACGCGGAGATCGCCGCCGAGCTGTACCTCGGCGAGGCGACCGTCAAGACGCACGTGTCGAACGTGCTGGCCAAGCTGCACCTGCGCGACCGGGTGCAGGCTGTGGTCTACGTGCACCGGCACGGCGTGCCGGGGCCCGGGTGAMTSVLLVDDQQLVRSGFRLILTVEDDLEVVGEAADGVAAVSAARGLRPDVVLMDVQMPGMDGIEATRRIVAEDLSRVLVLTTFDDDAYVFDALAAGASGFLLKNADADHLVEAVRTVAAGQALLSPQVTRRVVERMVGSGEGPAAPGPPASAPGLELLTAREHEVLVLVGRGLSNAEIAAELYLGEATVKTHVSNVLAKLHLRDRVQAVVYVHRHGVPGPGPGPT0014870_75DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
AK018_010411374hypothetical proteinATGCCGCGCCTGCGCCCCGACGTGATCGCCGACCGGTTCGGCGTCGACTCGGCGTTCGAACGCACCCCGGTCGATCCTGCGACCTCCTACCGTCGCGACGTCTGGCTGGGGCTCGCCCTGACCGCCCTCGCGGTGGTGGGCGTGGAGGTGAACCGCTCCAGCGGGTTCTTCGCCGACGAGGGGCAACCCACCTGGCTGCTCTACACGCTCGCGGCCGCCGGTGCGCTGCCCCTGGTGGTCCGACGCCGGTACCCCCTGACGGTGCTCGCCGTCGTCTACACGCACTTCCTGCTGGTGGGGCTGACCGTGCCGTCGGTGCCGATGTCGCCGGTGCTGCAGGTCGTGTACTTCATGACGCTGTACACGGCGGTGGCCTGGGCCCGCGACCGCCGCGCCATGATCATCGTGGTGGTCGCCTGCCTGGTGGCGATGTTCGGCTGGCTGTTCTGGCAGCTCGCGATCAGCTCGGCGCTGGCGGAGTACGTCGAGGACGAAGGGCTGCTGGACGCCCCGCCCGGCCTGATCCCGCCGTTGACGGCGATCGTGGTGCAGAACTGGCTCACCAACTTCGCCTACTTCTTCGGGGCGATCGCCGTCGGCCAGGTCGGCTGGAACAGCGCTCGACGCCGTCGCCAGCTCACCGAGCAGGCCGAGACCATCGAGCGGCAGTCCGCCGAGCTCCAGCGCCGTGCCGTCACCGCCGACCGGCTGCGCATCGCCCGCGAGCTGCACGACGTCGTCGCGCACCACGTCTCGGTCATTGGGATCCAGGCCGCGGCGGCCCGGCGGCTGCTGGACAAGGGGGACGCCGCGGCGCAGGACCCCCGGGTGCCGCTGGCCACGATCGAGTCCGCCTCCCGCGAGGCCGTGGCCCAGATGCGCGGTCTGGTCGGCACCCTGCGGGACACCGGGGACGACGACGGTCCTGGCGTCGGGACGGGTCGCTCGCCCGAACCCGGCCTCGCCGACATCGCCGCGCTGACCGACGGCGTCGGCGGGCTGGACGTCACGTCCGCGCTGGTCGTCGAGCCGCCCGGGGCGGAGTCCGTGGTCCCGGCCTCCGTCGGGCTGAGCCTGTACCGCACGGTCCAGGAGGCGCTGGCCAACGTGCGCAAGCACTCCACCGCACGGAGCGCGTCCGTCACGGTGCGGGTGGACCGGCGTCCCGGCGACGACCGCCGGTTCGCCGCCGGGTTCGCGGAGGTCGAGGTGCTCGACGACGGTCGGACCGTCCCGGGCTCGCAGGGCTCGGGACTCGGTCTGGTCGGACTGCGCGAACGGGTCGCCGCGCACCACGGGGTGGCGGAGATCGGCCCGCGGGTGACCGGTGGGTACCGTGTGCGGGTCCGCCTGCCGCTGCCCGAGGAGTCGTGAMPRLRPDVIADRFGVDSAFERTPVDPATSYRRDVWLGLALTALAVVGVEVNRSSGFFADEGQPTWLLYTLAAAGALPLVVRRRYPLTVLAVVYTHFLLVGLTVPSVPMSPVLQVVYFMTLYTAVAWARDRRAMIIVVVACLVAMFGWLFWQLAISSALAEYVEDEGLLDAPPGLIPPLTAIVVQNWLTNFAYFFGAIAVGQVGWNSARRRRQLTEQAETIERQSAELQRRAVTADRLRIARELHDVVAHHVSVIGIQAAAARRLLDKGDAAAQDPRVPLATIESASREAVAQMRGLVGTLRDTGDDDGPGVGTGRSPEPGLADIAALTDGVGGLDVTSALVVEPPGAESVVPASVGLSLYRTVQEALANVRKHSTARSASVTVRVDRRPGDDRRFAAGFAEVEVLDDGRTVPGSQGSGLGLVGLRERVAAHHGVAEIGPRVTGGYRVRVRLPLPEESNANANANANA
AK018_010421392hypothetical proteinATGAACACCCGCTCCCGCGCTGCCAGCGCGCTCGCGCTCGCCCTCCCGCTCGGCCTCCTGGCCGCTTGCGGCACGGAGTCCGAGCCCGCCACCGAGACCACCCCCGAGGCGACCGAGGCCGCCACCGAGGAGGCCGCACCGACCGAGGTGCAGTCCCGCACCGCCCGCGTCGCCGTGACCTACGACGGCGGCATCAAGGTGCTCGACGCCCAGACGCTCGAGGAGGTCGGCGATGTCGAGCTCGAGGGCTTCAACCGCCTCAACCCCGCCGGTGACGGCCAGCACCTGTCGGTCTCCACCACCGGCGGCTTCCAGCTGCTCGACCTGGGCACCTGGGGCGAGGGCCACGGGGACCACTTCCACTACTACACCGCCGACCCGGCGCTGACCGACGTCGCCTACGAGGCCGAGAAGCCCGGCCACGTCGTCCTGCACCACGGCGAGACGGCGTTCTTCGACGACGGCACCGGGCACGTGCAGCTCGTCGCCTCCCTCGACGTGGCCGCGGCCGACGCCGAGATCGAGACCGTCGAGCTCCCGGACGCCCACCACGGCGTGGCCGTCCCGCTCAGCGACGGGACCCTGCTGGTCACCGTCGGTACCGAGGACGAGCGCACCGGCGTCGCCGTCCTGGACGCCGACGGTGAGCAGGTCGCCGCCTACGACGACTGCCCGGGCGTGCACGGCGAGGCCGTCGCCCAGGGCGAGGCCGTCGTCGTCGGCTGCGAGAACGGCGCCGTGGTGTACTCCGGCGGCGAGTTCACCGCCGTCGAGACCTCGGACGACTACTCGCGCATCGGCAACCAGGCCGGCACCGAGGACTCGCCGATCGTGCTCGGCGACTACAAGACCGACCCCGACGCCGAGCTCGAGCGTCCGACGCGCGTCAGCCTGATCGACACCCGGGACGCGAGCCACCAGCTCGTCGACCTGCCGGCGTCGTACAGCTTCCGCTCCATCGCCCGCGGCGACGACGGTGAGGCCCTCGTGCTCACCACCGACGGCGACCTGCAGGTGATCGACCCCGAGTCCGGCGAGATCACCGCCTCCATCCCGGTCGTGGACGAGTGGGAGGAGCCGACGGAGTGGCAGCAGCCGCGCCCGGCGGTGCTGACCCTCGACGGCTCGGTCTACGTCACCGACCCGGCGAACCAGCAGATCCACGCCGTCGACCTCGTCGAGCAGGAGGTCTGGGCCTCGGCCGACCTCGGCGTCGAGGCGAACGAGATCTCCGGCGTCTACGGCGAGCCGCCGGTGTCCTCCGAGGAGGCCGAGGAGCACTCCGAGGAGGAGCACTCGGACGAGGAGCACGCGGACGAGGAGCACTCGGACGAGGACCACGACCACGAGGACGAGCACTCGGACGAGGACCACGAGGACCACGACCACTGAMNTRSRAASALALALPLGLLAACGTESEPATETTPEATEAATEEAAPTEVQSRTARVAVTYDGGIKVLDAQTLEEVGDVELEGFNRLNPAGDGQHLSVSTTGGFQLLDLGTWGEGHGDHFHYYTADPALTDVAYEAEKPGHVVLHHGETAFFDDGTGHVQLVASLDVAAADAEIETVELPDAHHGVAVPLSDGTLLVTVGTEDERTGVAVLDADGEQVAAYDDCPGVHGEAVAQGEAVVVGCENGAVVYSGGEFTAVETSDDYSRIGNQAGTEDSPIVLGDYKTDPDAELERPTRVSLIDTRDASHQLVDLPASYSFRSIARGDDGEALVLTTDGDLQVIDPESGEITASIPVVDEWEEPTEWQQPRPAVLTLDGSVYVTDPANQQIHAVDLVEQEVWASADLGVEANEISGVYGEPPVSSEEAEEHSEEEHSDEEHADEEHSDEDHDHEDEHSDEDHEDHDHNANANANANA
AK018_01043846hypothetical proteinGTGACCAGCACGGAGCCGTTCTGGATCTGCCGCACCTGCGCCGTCGAGCACGCCGAGCGCCCCGCCGTCTGCGCGATCTGCGCCGACGAGCGCCAGTGGGTGCCGCCGTCGGGCCAGGCCTGGACCACCCTGGCCGAGCTCGCCCCCGGCCGGCACGTCGAGGTCGCCGCGCTGGAACCTGACCTGTACGCCCTGACCGCCGTGCCCGGCGTCGGCATCGGGCAGCAGGCCAAGCTGCTGCGCACCGCCGCCGGCTCCCTGCTGTGGGACCCGCTCGGCTTCCTCGACGACGACGCCGTCACCGCCGTGCGCGACCTCGCCGGCCCGCCCGGCGTCGTCGCCGTCGTCGCCAGCCACCCGCACATGTACGGCGTCCAGGTCGAGTGGAGCCGGCGGCTCTCCGGCCCGGAGCGCACCGTCCCCGTGCTGGTCAGCGCCGCCGACGCCGGCTGGGTCGCCCGCGCCGACCCCGCCGTCGAGGCCTGGGACGGCGAGCGCGAGATCCTCCCCCGTGTCGTGCTGAGCCAGCCCGGAGGCCACTTCCCGGGGTCCGCCGTCGTGCACTGGGACGCCGGCGCGGACGGCCGCGGCGTGCTGCTCGCCGGGGACACCGTCATGGCCAACCCCGACCGCACCACGGTCAGCTTCATGCGCAGCTACCCCAACCGGCTGCCGCTGTCCGGAGCCGTGGCCGAACGCATCGCCGCGCACGTCGCACGCCGACCCTTCGACCGGCTCTACAGCAACTTCGACGGCGTGGTCCCCCGCGATGCCCGCGACGTCGTCCTGCGCTCGGCCGCGCGGCACGCCGCCTGGGTGCGCGGCGACCACGACGACCTCACGTGAMTSTEPFWICRTCAVEHAERPAVCAICADERQWVPPSGQAWTTLAELAPGRHVEVAALEPDLYALTAVPGVGIGQQAKLLRTAAGSLLWDPLGFLDDDAVTAVRDLAGPPGVVAVVASHPHMYGVQVEWSRRLSGPERTVPVLVSAADAGWVARADPAVEAWDGEREILPRVVLSQPGGHFPGSAVVHWDAGADGRGVLLAGDTVMANPDRTTVSFMRSYPNRLPLSGAVAERIAAHVARRPFDRLYSNFDGVVPRDARDVVLRSAARHAAWVRGDHDDLTNANANANANA
AK018_01044783hypothetical proteinGTGACGGCGACGCCCGAACGACCCGACGAGGCGCCCTACGGCTCGGGCCCGCACGGGTTCTTCTCCCGTCGGCGCCAGCCGATGGCGGACGACGACCCGCGCATCGACCCGGGGTCGCGCTGGATCGACCGGTTCGGGGTGCTGCTCGCCCTGACCGCCGTGACGGTGGCGCTGCTGTCCCTGGTGGACCTGCGGTCGTCGGCGGTGGGTCCGAGCGCCGAGCTCGCGGGGTTGTCGACGACGTTGGCCGTGGGTGCGACCCTCGCCCTGGCGCTGCGGGCCTCGGGGCTGCGCGCCCGGTGGCGGCGGTGGGCGTACGTGCTGGTGGGCGTGCTGGTGGCGGCCTCCCTGGTCGTGGTGCTGATCGTCGACACGTCGGACTCGGTGACCGCCGCGCCGCCCCTGCTGCTGGTGCTCGCCGCGCTCGCGCCCGTCGTCGTCGCGCGGCGGCTGGTGCACCATCGGGTGGTGACGCTGGCGACGCTGCTCGGGGCGGTCGCCGCCTACCTGCTGATCGGCCTGGCGTACTACTACGCGTTCCTCACGGTGGAGAACTACTCCGGCGAGCCGTTCTTCGGGAGCGAGGAGCCGACGACGGCGTTCATGTACTTCTCGCTGACGACGATCACGACGCTGGGCTACGGGGACCTGTCGGCGGTGTCGCCGCTGGGCCGGCTGCTGGCAACGAGCGAGGCGATCATCGGCCAGGTCTACCTGGTGGTGTTCGTCGCCCTGATCGTGTCGCTCGCGGCCGGCCGGTACCAGCGCGAGCGCGAGGTGTAGMTATPERPDEAPYGSGPHGFFSRRRQPMADDDPRIDPGSRWIDRFGVLLALTAVTVALLSLVDLRSSAVGPSAELAGLSTTLAVGATLALALRASGLRARWRRWAYVLVGVLVAASLVVVLIVDTSDSVTAAPPLLLVLAALAPVVVARRLVHHRVVTLATLLGAVAAYLLIGLAYYYAFLTVENYSGEPFFGSEEPTTAFMYFSLTTITTLGYGDLSAVSPLGRLLATSEAIIGQVYLVVFVALIVSLAAGRYQREREVNANANANANA
AK018_010451323hypothetical proteinATGCGTGGCGTGACGACCGACGTCGACCCGCGACGGGCCGCCCGCCACGCGCGCGCCGCCACGTCCGAGATCCCCGAGGCGGCCGGGCACGCGCACGCCCACGGCGGTCCGGTCCCGCCGGCCCCGTGGCGCACCCGGCTGGTCCTGGCCGTCCTCGTCCTCCCGGCGATCGTCGCCACCGGGCTCGGCCTGTGGCAGCTGTGGCCCTCCGGCGGCGAGGTGCCCGAGCGGATCCCCGTGGTGGTGGAGGGCAGCGAGCTCGTCGAGGCGACCGTGGTGCGGGTGCTCGAGGGCGAGGAGGCCGGGGACGCCTCCTGGCCGACCATCGAGGACGCCACGGTCGGCAACGTGGAGATCCGGCTCGACGACGGCAGCACCGCGGGGATGCAGGCCGAGCCGCGGTTCGAGCTCGGCCCGGGCGACGAGGTGGTGGCCCTGTACATCGGCGACTTCGCCGAGACCGAGACGCCGTACGTGTTCATGGAGTACCAGCGCGACGTGCCCTTCGCGCTGCTGGCGGCGGCCTACGTGCTGGTGGTGCTGCTGGTGGCGCGATGGCGGGGCCTCGCGGCGCTGGTGGGGCTGGCGGTCGCGTTCGCCGTGTTCATCGGGTTCACGTTCCCGGCCCTGCTGTCCGGGCAGGACGCGATGGCGGTGGCGCTGGTGACGTCGTCGGCGGTGATGCTCGCCGTGCTGTACCTGGCGCACGGGCTGACGGCACGGACCACGGTAGCGCTGCTGGGCACGCTCGCCGGGCTGGCGCTGACCGCGGGGATCGGCGCGTGGGCGACGGGCGCGGCGCACATCACCGGCACCTCGGAGGAGATCGCGACCAACCTGCCCACCATCGCCCCGGCGGTGGACCTGCAGGGCATCGCGCTGTGCGGGCTGGTCCTGGCGGGGATGGGCGTGCTCAACGACGTGACGATCACGCAGGCGTCGGCGGTCTGGGAGCTGCGGGCGCTGGCCCCGCTGGCCCCGCGGCGGGTGCTGTTCGCCCGGGCCATGCGCATCGGGCGGGACCACATCGCCTCGACGGTGTACACGATCGCTTTCGCCTACGTGGGTGCGGCGCTGCCGCTGCTGCTGACGGTGTGGCTGCTGGACCAGACGCCCCTGATGACGCTCACCTCGGGCGAGATCGCCGAGGAGATCGTGCGCACGCTCGTCGGGTCGATCGGTCTGGTGCTGGCCATCCCGATCACGACGGCGATCGCGGCCGTGACCGTTCCGAGGGCACCGGCCGCCGAGCGCGCGGCGCGCGCGTCGACCAGCATGGGGTCGGGACCATCCGAGGAGGACACCGTGCAGGAGCGGCCGTGAMRGVTTDVDPRRAARHARAATSEIPEAAGHAHAHGGPVPPAPWRTRLVLAVLVLPAIVATGLGLWQLWPSGGEVPERIPVVVEGSELVEATVVRVLEGEEAGDASWPTIEDATVGNVEIRLDDGSTAGMQAEPRFELGPGDEVVALYIGDFAETETPYVFMEYQRDVPFALLAAAYVLVVLLVARWRGLAALVGLAVAFAVFIGFTFPALLSGQDAMAVALVTSSAVMLAVLYLAHGLTARTTVALLGTLAGLALTAGIGAWATGAAHITGTSEEIATNLPTIAPAVDLQGIALCGLVLAGMGVLNDVTITQASAVWELRALAPLAPRRVLFARAMRIGRDHIASTVYTIAFAYVGAALPLLLTVWLLDQTPLMTLTSGEIAEEIVRTLVGSIGLVLAIPITTAIAAVTVPRAPAAERAARASTSMGSGPSEEDTVQERPNANANANANA
AK018_01046975hypothetical proteinGTGCTCGGCGTCGCCGCCGCCGTCGTCGGCGGGCTCGCCGCCGCGGGGCAGTCCCGCGTCAACGGCACGCTCGCCGAGCAGGTGGGGTCCGGGTTCGCGGCGGCAGTCGTCTCCTTCGGGTCGGGTCTGCTGTGGCTCGGAGTCACCCTGCTGTGCTGGCCGGCGGCTCGGGCCGCCGTCGGGCACGTCCGTACCGGGCTCCGCACCGGCGGGCTGCGCCCCTGGGAGGCGCTCGGCGGGCTGGGCGGCGGCTTCTACGTCGCGGCTCAGGGGCTGACCGTGCCCTCGCTCGGCGTCGCCCTGTTCATGGTGGCGATCGTCGCGGGGCAGTCCGTGAGCTCCCTGATGGTGGACCGGCTCGGCCTCGCACCCGGGGGCGTCCGGCTGGTCACGGTGGGTCGCGCGGTCGGTCCGGCGCTGACCGTGGTGGCCGTGGCGATCGCGGTCTCCGGGTCGGTCGGCCGCGTCGACGGCGTGTGGCTCGCCGTGATCCCGCTGCTGGCGGGCGGGTTCCAGGCCTGGCAGCAGGCGATGAACGGGCGCGTCCGAGCGGTGGCCGTACCGCCGCCCACCGGGGCTCCGTCGTCGTCCACGTTCCCGGGCGTCGCCGCGGCGACCTTCGTCAACTTCCTGGTGGGGACGGTCGTGCTGGTGCTGGCCTTCGCCGTCTCGGTCGCCGTGTCCGGGTGGCCCGGCGGGACGCTCCCCAAGGACTGGCCCGTGGACCTGGTGCTGTACTCCGGCGGGCTGCTGGGCATCGTGTTCATCGGCATCCAGGCCGCCGTCGTGCACCGGATCGGCGTGCTGCTGCTCGGGCTGGGACTGATCGCCGGGCAGATCCTCGGCGCGCTCGTGCTCGACGTCGTCGCCCCCGGAGCCGCGGCGCCGGGGGCCGCGATGTACGTTGGGGCGGGCCTGACGCTCGTGGCGGTCGCGGTGCCGCTGCTCGAGGCCCGGCTGCGCCGTCGGCCCTGAMLGVAAAVVGGLAAAGQSRVNGTLAEQVGSGFAAAVVSFGSGLLWLGVTLLCWPAARAAVGHVRTGLRTGGLRPWEALGGLGGGFYVAAQGLTVPSLGVALFMVAIVAGQSVSSLMVDRLGLAPGGVRLVTVGRAVGPALTVVAVAIAVSGSVGRVDGVWLAVIPLLAGGFQAWQQAMNGRVRAVAVPPPTGAPSSSTFPGVAAATFVNFLVGTVVLVLAFAVSVAVSGWPGGTLPKDWPVDLVLYSGGLLGIVFIGIQAAVVHRIGVLLLGLGLIAGQILGALVLDVVAPGAAAPGAAMYVGAGLTLVAVAVPLLEARLRRRPPGPT0009795_37DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-TOXOFLAVIN_METABOLISM,PGPT0009795-toxF-K09936NANA
AK018_010471548hypothetical proteinGTGCGTCCTTCGACAACGACCGGGCGACGACGCGCGCTGGGTGCCGGAGCGCTGACCGCGGCTCTGGCGTTCGGCACGTTCGCCGTCGCCGCTCCCGGCTTCGCCGAACCCGGCGGCGACGCGCCCGACGACGGCAGCGAGCTGCCCGCCCAGGGCATCGTGGCCCTGGACGACTCCGCGACGCCGGCGTCGCTGACCGAGCCCGGGACGTCGGACTCGTTCAAGATGGATCTGCTCGCCAACATCCCCAAGAACGGGGCCTTCGCGGCCGAGGGCTCCTACAGCTCGGACCTGGCGTTCCAGGGCGACTACGCGTTCGCGGGCAACTACGACGGGTTCACGGTCTACGACATCAGCGACCCCGAGGAGCCGGAGCAGGCCGCGCAGGTCGTGTGCCCGGGCTCCCAGAACGACGTCTCCGTCTACGGCGACCTGCTCGTGCTGTCCACGGACTCGTGGCGCACCGACGACTCCTGCTCCAGCAGCTCGATCTACCCGGTGGGGGTCGACTACTGGGAGGGCCTGAAGATCTTCGACATCTCCGAGCCCACCGAGCCGGAGTACGTCGCCGCCGTCGAGACCGCCTGCGGGTCGCACACCCACTCGCTCGCGCCGTCCAAGAACGGCAAGACGCTGTACGTGTACGTCTCCTCGTACTCCCCGCACGCGCTGCTGTCCGGCTGCCAGCCGCCGCACGACAAGATCTCCGTGGTGAAGATCCCGACCAAGGCACCGGCGCAGGCCGCCGTCGTCTCGGAGCCGGTGCTCTTCCCCGAGGGCGGGTACACCAACACCTCCGGCTGCCACGACATCACCACCTACGTGAAGCTCGACCTCGCCGCCGGTGCCTGCATGGGTGACGGCATCCTCATGGACATCTCCGACCGGGAGAACCCCGAGGTGATCTCGAACGTCCGCGACACCGAGAACTTCGCGTTCTGGCACTCGGCGACGTTCAACAACGACGGCACCAAGGTGGTGTTCACCGACGAGCTCGGCGGTGGCGGCGCCGCGACCTGCAACCCCGACGTCGGCGAGACGCGTGGTGCCAACGGCATCTACGACATCGTCGACACCGGGTCGAAGCACGGCAAGGGCAAGGCGAAGGGCCACGGGAAGGGCCACGGGAAGGGTCACGGGAAGCCCGACCTCGACGACCTCGAGCTCGAGTTCCGCAGCTACTACAAGATCCCGCGGACCAACACCAACACCGAGAACTGCGTGGCCCACAACGGCTCGCTGATCCCGGTGAAGAACAAGGACATCATGGTCCAGGCCTGGTACCAGGGCGGGATCTCGGTGTTCGACTTCACGGACTCGTCGAACCCGACCGAGCTCGCCTGGTTCGACCGCGGTCCGCTGTCCTCGGAGCGTCTCGTCCTCGGTGGCTCGTGGTCGGCGTACTACTACAACGGGTACGTCTTCTCGAACGACATCCAGCAGGGCTTCGACGTCCTCGAGATCGACCGGTCGGCCGGGGTCGGCAAGCAGAAGTCGAACACCTACCGCGAGCTGAACCCGCAGGGGCAGGTCCGCTTCCACGGCTGAMRPSTTTGRRRALGAGALTAALAFGTFAVAAPGFAEPGGDAPDDGSELPAQGIVALDDSATPASLTEPGTSDSFKMDLLANIPKNGAFAAEGSYSSDLAFQGDYAFAGNYDGFTVYDISDPEEPEQAAQVVCPGSQNDVSVYGDLLVLSTDSWRTDDSCSSSSIYPVGVDYWEGLKIFDISEPTEPEYVAAVETACGSHTHSLAPSKNGKTLYVYVSSYSPHALLSGCQPPHDKISVVKIPTKAPAQAAVVSEPVLFPEGGYTNTSGCHDITTYVKLDLAAGACMGDGILMDISDRENPEVISNVRDTENFAFWHSATFNNDGTKVVFTDELGGGGAATCNPDVGETRGANGIYDIVDTGSKHGKGKAKGHGKGHGKGHGKPDLDDLELEFRSYYKIPRTNTNTENCVAHNGSLIPVKNKDIMVQAWYQGGISVFDFTDSSNPTELAWFDRGPLSSERLVLGGSWSAYYYNGYVFSNDIQQGFDVLEIDRSAGVGKQKSNTYRELNPQGQVRFHGNANANANANA
AK018_01048651hypothetical proteinGTGCTCGCCACGACCCTGGGCGCGTGCACGCCGGACGAGCCGGAGCCCACGGCCGTGCCGCCGTCGAGCGTCGTGGTGCAGCCCGGCCGTCCGGGTGAGGCGGCCACGACGATCGCGCCGGAGGACTACGAGGCGCCGGTACCGTCGTCGGACTGGAACCAGGCGGACGTCGACTTCTTCGCCGACATGATCCACCACCACCTGCAGGCCCTGGAGATGTCAGAGCTGGCACCCGACCGGGCCGCGAGCGCCGACGTGGTCGCGCTCGCCGACCGCATCCACGACGTGCAGGCCTCCGAGATCCACGGGCTGGCCGCCTGGCTGCAGGAGCGCGACCTGCCGGTGCCCGTGGTCGTGGACCCGGGCGACGGGTCCGGGCCGCGGGTGGCCGGCGGGCACGACCACGACGTCGAGGACATGCCGGGCATGCTCTCCGACGCACAGATGACCGAGCTCGCCGCGGCGTCGGGGGCGGAGTTCGACCGGCTGTACCTGACGGGCATGATCCAGCACCACGAGGGTGCGGTGCAGATGGCGGTGGACGTGCAGGTGGAGGGTGTGGACGAGCGCGCGAACGAGCTGGCGGACGACATCGGGGCGGGGCAACAGGCGGAGATCGGGCGGATGCAGGACCTGCTCGCCGACCTCTGAMLATTLGACTPDEPEPTAVPPSSVVVQPGRPGEAATTIAPEDYEAPVPSSDWNQADVDFFADMIHHHLQALEMSELAPDRAASADVVALADRIHDVQASEIHGLAAWLQERDLPVPVVVDPGDGSGPRVAGGHDHDVEDMPGMLSDAQMTELAAASGAEFDRLYLTGMIQHHEGAVQMAVDVQVEGVDERANELADDIGAGQQAEIGRMQDLLADLNANANANANA
AK018_010492304hypothetical proteinGTGCCACTCCAGTTCCAGCGGCCACCTGCCCGGACCGGCGCCATCGCCGCCCTGACCGGCCTGCTGACCGTCGGCGTGCTCGCCACGGGCGCCCCGGCGGCGACCGCGGCGGGGACGACAGCAGCGGCCGACGACGACCACGCCTCGCGGTTCACGTTCGCCGTCCTGCCGGACACCCAGTTCTACTCCCGCTACGCCGCCGACCAGTTCCAACCACGCCATGGCGACGACCCGTTCCACACGCAGACCACCTGGCTGGCCGAGCACCAGCAAGACCTGAACATCCCCTTCGTCGCGCACCTGGGCGACGTCGTCGACCGAGCCGGAGTCACCGGCGAGTGGGAGGTCGCCGACCGGGCGATGTCAGCGCTCGAGGACGGCGGCCTGCCCTACTCCGTGCTGCCCGGCAACCACGACGTGCTGAACTCGAACGACCAGCTCACCGACGTCGACTACGACCTCGACGCCGAACCGTTCCTGGACTGGTTCGGACCCGAGCGCGCGTCGGGGAACGCCACGTACGGCGGCTCCGACCCCACAGGGATGAACCAGTACCACGTCTTCGAGGCCGAAGGGCAGCAGTTCATGGTCCTCGCGCTGAGCTGGCGCGCCTCGGACCAGACGCTCGACTGGGCCGACCAGGTCATGGCCGAGCACCCCGACGTGCCCGTCATCCTGACGACGCACTCGCTGCTCGCCATCGGCAGCGACGCGACGTCGCCGCAGAACACCACCTACGGCGAGAAGCTGTGGAACAACCTCATCCGGTCGAACGACCAGATCTTCCTCACCCTCAACGGGCACTTCCACGGCGCCACGAAGCAGACCCGCACCAACGATGCCGGGCACGCCGTCACCCAGGTCCTCATCGACTACCAGATGGCCTACGACGGCGGGAACGGGTATCTCGGGCTTTTCGAGTTCGACCTGACGAACGACCGCATCGAGGTCCAGACGGCGTCGCCGTGGGTCGTGGCCAAGGACTCCGAGGTCCTCACGCCCTACGATCAGCCGCTGCTGACCGGCGAGCACCAGGCGTACACGATCGACATCGAGTTCGCCGACCGGTTCGGCGGGTTCGCCCCGGGGTTCAGCGCCGGGTCCGCCGACGAGCCGTCGCTGTCCCAGCGCGCCCGGGACATCCTGCTGGACGGCTTCGAAGGCCCTGACCCGATCACCACCGAGCCGCCCACCTCCCGTGACGACTACCCGAGGGTGGCCGGCACCCTGGCCCACTGGCGCTTCGGCGGCCAGGAGGGTGTGGTCGACGCCGAGACCGTCGTCCCCGACGTCGTCGGCGGCGCGGACCTGTACCGCGCGACCAACGCCGAGAGCGGGTCGAGCACGGCCGAACCCTCCGACGTCGTCATCACCGACGACTCCGCACCGCTCTCCGCGGACGGCGCCGCGGTCTGCTTCGCGAACGCCGACCGGAGCACCGGGCGGCTCAGCTACCTGGCCACCGACGCCGGTGCCGCCGTGAACGACGCCACCCTCGCCGAGGGTTACACGATCGAGACGTTCCTCAAGATCGACCCGAGCTTCACGGAGGACGCCAACGCCTGGATGAAGGCGATCGTGCGGTCCGGCAACCGGTCCGGCCTCGAGGGGATGCCCTGGTCGCGCTGGGACTACACGGCTTCACCGGTGGCGCTCGGGCTGTCCAACCTCAAGGAGTTCCAGTGGACCGAGGTGCCGATCGAGACCACCAAGGGTGACCGGACCTCCTGGTCCGGGGAGATCATCCTCGACCGTTGGGTGCACGTCGCACTCGTCAACGACCCGGCCGACGAGTCCACCACGATGTACGTCGACGGCGCGCCGGTGCTGCGCAACGCCACCGACACGCTCGGGCACAGCCTCAACGGGGGCATGCCGTGGCTGTTCGGCACCGACTGGGTCGACGACCACGCGACGAACGGGTGGAACGGCTGCATCGGCGAGACCCGCGTCGTCGACCACCCGACCGGTCCGGAGCAGTGGCTAACCGCACGCGCCGCCGAGCCGGCCCCGGCCGACTGGGACGCGGGAACCGTCTACGACGAGGGCGACCGGGTCAGCTTCGACGGCGGCGTGTTCGAGGCCACCTGGTGGACGACGAACCAGACGCCCGGCGCCACGGCTTCCGGCCCGTGGCAGGAGATCGCGACCGCCGAGGACGGCACCGCGGTGTGGACGCCGTCGCGCATCTTCGACGCCGGGGACGTCGTCGTGCACGACGGCGCCACGTACACCGCGCAGTGGTGGACCCGGAACCAGGAGCCTGGTGCCTCCGCGTGGGGTCCGTGGGAGCGGACCGACTGAMPLQFQRPPARTGAIAALTGLLTVGVLATGAPAATAAGTTAAADDDHASRFTFAVLPDTQFYSRYAADQFQPRHGDDPFHTQTTWLAEHQQDLNIPFVAHLGDVVDRAGVTGEWEVADRAMSALEDGGLPYSVLPGNHDVLNSNDQLTDVDYDLDAEPFLDWFGPERASGNATYGGSDPTGMNQYHVFEAEGQQFMVLALSWRASDQTLDWADQVMAEHPDVPVILTTHSLLAIGSDATSPQNTTYGEKLWNNLIRSNDQIFLTLNGHFHGATKQTRTNDAGHAVTQVLIDYQMAYDGGNGYLGLFEFDLTNDRIEVQTASPWVVAKDSEVLTPYDQPLLTGEHQAYTIDIEFADRFGGFAPGFSAGSADEPSLSQRARDILLDGFEGPDPITTEPPTSRDDYPRVAGTLAHWRFGGQEGVVDAETVVPDVVGGADLYRATNAESGSSTAEPSDVVITDDSAPLSADGAAVCFANADRSTGRLSYLATDAGAAVNDATLAEGYTIETFLKIDPSFTEDANAWMKAIVRSGNRSGLEGMPWSRWDYTASPVALGLSNLKEFQWTEVPIETTKGDRTSWSGEIILDRWVHVALVNDPADESTTMYVDGAPVLRNATDTLGHSLNGGMPWLFGTDWVDDHATNGWNGCIGETRVVDHPTGPEQWLTARAAEPAPADWDAGTVYDEGDRVSFDGGVFEATWWTTNQTPGATASGPWQEIATAEDGTAVWTPSRIFDAGDVVVHDGATYTAQWWTRNQEPGASAWGPWERTDNANANANANA
AK018_01050810hypothetical proteinATGCCTCTCGTGGTCGCCCGGTACGCCGCCGCCGTCCTCGTCTGCGGTGCGGCCGTCCTGCTGTTCGCCGTGCACGAGCGTCCGCTCGGCTACGTGCCGCTGGTGGTCGGCGTCGTCCTCGGGATGCTGGTCGACCGGGACCTCGGCAAGGACCTGGGCCTCATCGCGCTGGGCATGACGATCGTCTCGACGATCTCGCTGGAGGCCGACCTGTCGAACGCCGGCATGGCGCGCTTCACGGTCGCCCTGTCTCTGGCGGTGCTGGTGCCGTGGGCGCTGTCGAGGTACTGGTTCCGCGACGACGACGGCGCGGGAGCGGTGACGTTCCCGGCGTTCACGGGGCGGCGCTGGACGCGCGGGCAGTGGATCTACCTGGGCGTCGTGGTCGTGGTCGGCTACCTGGTGCTGCCCGCCTACTTCCTCGGCTCGGGAGCGTACCTGAACTGGCCCACGCTGGAGACCGACGGCGAGATCGCGCGGCTGTTCGTCGGCGTCAACGCGGTGGGCATCTGGGACGAGCTGTTCTTCATCTGCACGGTGTTCGCGCTGCTGCGCCGGCACTTCGGGCTGCAGGTCGCGAACGTGCTGCAGGCCGTGGTGTTCGTGTCGTTCCTGTGGGAGCTCGGCTACCGCGAGTGGGGGCCGGTGCTGACCATCCCGTTCGCGCTGGTGCAGGGCTGGATCTTCGCCCGCTACAAGTCGCTGCCGTACGTGGTGGCGGTGCACCTGCTGTTCGACGCCGTCGTCTTCGGGGTGCTGGTGCACGGGCACCGGCCCGAGCTGCTCGACGTCTTCGTCACGGCCCCCTGAMPLVVARYAAAVLVCGAAVLLFAVHERPLGYVPLVVGVVLGMLVDRDLGKDLGLIALGMTIVSTISLEADLSNAGMARFTVALSLAVLVPWALSRYWFRDDDGAGAVTFPAFTGRRWTRGQWIYLGVVVVVGYLVLPAYFLGSGAYLNWPTLETDGEIARLFVGVNAVGIWDELFFICTVFALLRRHFGLQVANVLQAVVFVSFLWELGYREWGPVLTIPFALVQGWIFARYKSLPYVVAVHLLFDAVVFGVLVHGHRPELLDVFVTAPNANANANANA
AK018_01051684hmuO_1Heme oxygenaseATGAACATGCTCGACCGGGAGGTCACCATGTCCGCCGCCGTCGCCCTCGACGCCCCCCTGTCCGCCCTGCTGCGCGAGGGCACCCGTGCCGAGCACGAGCAGGCCGAGAACGAGGGCTTCGTCTCCCGGCTGATGTCCGGCGGGCTCGACGTCGCCGCCTACGCCGACCTCGCCGCCCAGCAGCACGCGGTGTACACGGCGCTGGAGGAGGCGAGCGCCGTCGTCCGCGCCGACGAGCGCGGCGCCGGCCTGGTGTTCGACGAGCTGACGCGCGTGCCCGCCATCGAGCGTGACCTGGCGTACCTGTTCGGCGACGGCTGGCGCACGGAGATCCGCGTCCTGCCGGCCACCGAGACGTACGTGGCGCGGTTGCGCGAGGTCGGTGGCGACCTGCCCCGCTACGCCGCGCACGCCTACACCCGGTACCTCGGCGACCTGTCCGGCGGGCAGATCGTCCAGCGCATGATGCAGCGCCACTACGGCATGGGGGTCGCCGGGCTGGAGTTCTACGACTTCCCCGAGATCGTCAAGGTCAAGCCCTTCAAGGACCTGTACCGCGAGCGTCTCGACGACCTCGCGCTCTCGGCCGAGGAGACCGACGTCGCGGTGGCCGAGGCGCAGGAGGCCTTCCGGCTCAACCGTGCCGTATTCGTCGAGCTGGGGGAGCGGCACCCGGGCTCCTGAMNMLDREVTMSAAVALDAPLSALLREGTRAEHEQAENEGFVSRLMSGGLDVAAYADLAAQQHAVYTALEEASAVVRADERGAGLVFDELTRVPAIERDLAYLFGDGWRTEIRVLPATETYVARLREVGGDLPRYAAHAYTRYLGDLSGGQIVQRMMQRHYGMGVAGLEFYDFPEIVKVKPFKDLYRERLDDLALSAEETDVAVAEAQEAFRLNRAVFVELGERHPGSPGPT0003625_699DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_UTILISATION,PGPT0003625-pbsA1|hmuO-K21480NANA
AK018_010521182hypothetical proteinGTGGGCGCCGAGGGCGTGGCCGGGGACCGGCTGGGCGAGCTCCTGCGCGAGCTCGGCCCGCCGGTCCTCGGCATCCTCGTGCGCCGCGGCGCCGACTTCGCCACGGCCGAGGACTGCGTGCAGGAGGCGCTGCTCGAGGCGTCCTGGCGGTGGCCCACCGACCTGCCCGCCGAGCCGCGCGGCTGGCTCGTCACCGTCGCCTGGCGACGGTTCCTCGACGTGCGGCGCGCCGAGACCGCACGCCGGGGACGGGAGGACCGGGCGGCCCTCGAACCGGACCCCGGGCCCGTCGAGCAGGCCGACGACACCCTGCTGCTGCTCAGCCGGTGCTGCCACGAGGCCCTCAGCCCGGCGTCGGCCGTGGCCCTCGCGCTGCGGGCGGTCGGCGGGCTGACGACGGCGCAGGTCGCCGCCGCCTACATGGTCCCCGAGGCGACGATGGCGCAACGCATCAGCCGCGCCAAGCGCACGCTCGCCGGCCGCCGCCTCGACCGACCCGGCGACGTCCGCGCCGTGCTGCGGGTGCTCTACGTGATGTTCTCCGCGGGGCACACCGGCGAGGTGGACCTGGCCCGCGAGGCGATCCGGCTCACCCGCCAGCTCGAGGCCGCCACCGACGACCCCGAGGTGACCGGGCTCCTGGCGCTGATGCTGCTCACCGACGCCCGGCGTGCCGCCCGCTGGACGGCGGGCGCCGAGCTCGTGGCGCTCGCCGACCAGGACCGCGGCCGGTGGGACACCGCGCAGGTCGTCGAGGGGGTCCGGATCCTGCAGGGGGCGCTGGCGCGCGACCGGCTCGGCGAGTACCAGGCCCAGGCCGCGATCCAGGCCCTGCACGACGACGCCGCCACGGCCGCCGAGACCGACTGGGTGCAGATCCTGGGCTGGTACGACGAGCTGGTGGCGCTCGCGGACTCGCCGGTGGTGCGCCTGAACCGGGCGGTCGCCGTCGGGCACGCGGACGGGGCGCTCGCGGGGCTGCGCGCGCTCGATGAGGTCGACCCCGACGTCCCGCGGTACGAGGGCGTCGCCGCCTACCTGCACGAGCTGGCCGGCGACCACGAGGAGGCGGCGCGGCAGTACGTGCGGGCCGCGGAGGCCGCCACGACCGTCCCGGAGCGCGACCACCTGGTCCGCCAGGCAGCCCGGCTGCGTGCCGGGGCTGACGATGGTCCGGCGTGAMGAEGVAGDRLGELLRELGPPVLGILVRRGADFATAEDCVQEALLEASWRWPTDLPAEPRGWLVTVAWRRFLDVRRAETARRGREDRAALEPDPGPVEQADDTLLLLSRCCHEALSPASAVALALRAVGGLTTAQVAAAYMVPEATMAQRISRAKRTLAGRRLDRPGDVRAVLRVLYVMFSAGHTGEVDLAREAIRLTRQLEAATDDPEVTGLLALMLLTDARRAARWTAGAELVALADQDRGRWDTAQVVEGVRILQGALARDRLGEYQAQAAIQALHDDAATAAETDWVQILGWYDELVALADSPVVRLNRAVAVGHADGALAGLRALDEVDPDVPRYEGVAAYLHELAGDHEEAARQYVRAAEAATTVPERDHLVRQAARLRAGADDGPAPGPT0014960_522DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_01053411hypothetical proteinATGGCCAGGTACCTGCTGCTCAAGCACTACCGCGGCGGCCCGGAGCAGCGCCCGAACGCCCGTGAACCGATGGACCGCTGGACGCCCCAGGAGGTCTCGGACCACATCGCGTTCATGCAGCACGTCGCCGACACGCTCACCGAGCGCGGCGAGTTCGTCGACGCCCAGGCGCTCTCCCCGGACGGCACGTTCGTCCGGTACGACGGCGAGGGACGCCCGCCGGTCACGGACGGCCCGTTCGCCGAGACCAAGGACGTCATCGCCGGCTGGATGATCATCGACGTCGACTCGGTCGAGCGGGCGCACGAGGCGGCGGCGTTCCTGTCGTCCGCACCGGGCCAGGGCGGCAAGCCCCTCGAGGAGTGGATCGAGGTGCGCCCGTTCCTGTCCGACGTCCCCGCCGAGGCGTAGMARYLLLKHYRGGPEQRPNAREPMDRWTPQEVSDHIAFMQHVADTLTERGEFVDAQALSPDGTFVRYDGEGRPPVTDGPFAETKDVIAGWMIIDVDSVERAHEAAAFLSSAPGQGGKPLEEWIEVRPFLSDVPAEANANANANANA
AK018_01054258hypothetical proteinATGAACCAGCAGCTGTTCGGCCCCGCGATGGAGGCCGAGCTCGCCTACCGTCGCGAGCGCGCCGCCCTGGCCTACGGTCGCCCGCTCCTCGGCGGGCATGCCTGGCGGGCGGTGCTGCGCCGCGTGCGGCAGAGCCTGCGCGTGCGGGAGACGATGTCCGCCGTCGTCGCCGAGCCGTCGGCCCCGCCGGTACGCCGTCCCCACCACCGCGCCCCGCACCGCCCCGTGTCGGGGGCCGGTGGGACCATGGCGGGGTGAMNQQLFGPAMEAELAYRRERAALAYGRPLLGGHAWRAVLRRVRQSLRVRETMSAVVAEPSAPPVRRPHHRAPHRPVSGAGGTMAGNANANANANA
AK018_010552967malT_1HTH-type transcriptional regulator MalTGTGAGACGCTCGTCACAGATCCCCCTCGTCGCGCGCGAGCCACAGGTCGAGGGCTTCGGCCGTGCGCTCGAGCGCGCCGCGCACGGCGACCCGGGCGTGCTGGTGATCGGTGGCGACGCCGGCGTGGGCAAGACCCGCCTGGTCAAGCACCTGGCGGCGCGCGCCGAGGAGTCCGGCGGACGGGCCGTCGTCGCGCACTGCGTCGACCTCGGCGACGTCGGCATCCCCTACCTGCCGTTCAGCGAGGCGCTGCGTCTCCTCGCCGACGGGCACGACGCCGTCGCCGACGTCCTGGCCACGCGCCCCGCGCTCGCCCGCCTGCTCGGACCGACCGATGCCCCGACGGCGGAAGGCGCGACGGGCGCGTCCGTCGACCGCCTGCCCCTGCTGGACGGCATCGCGACCACGCTCGCCGCCGCCGGCGCACCCGGGGCGCCGCTCGTCCTCGTCGTGGAGGACCTGCACTGGGCCGACCCCTCCACCCGCGACGTGCTGCGGTTCCTGGTCACGCGGCTGCGGGCCGAGCACCTGCTGCTCGTGCTCACCTACCGCGCCGACGACGTCGACCGCCGCCACCCGCTGCGTCCCCTGCTCGCCGAGCTGCACCGCCTCGACCGCGTCGAGCACGTCGAGCTCGCCCCGTTCACGCCCGACGAGCTGCGCCGGTTCACCACCGCGCTGCAGGGCGGACCGCTGCCCGAGCACCACCTCGCGGACATCCAGCGCCGCAGCGACGGCAACGCCTTCTTCGCCGAGGAGCTGCTGGCCGCCGACAGCATCGGCGGACCGCTGCCCTGGTCCCTCGCCGACGTCCTGCACGCCCGCCTGCAGGACCTGCCCGCACCGGTGCACCACCTCGTCCGGCTCGCGTCCGTGGGCGGACGCCGGGTCGCCGAGGACCTGCTGCTCGCCGTCGCCGCCCGCACACCCGGGCTCGACGGCGACGGTGCCGCCGTCACCGCGGTGCACGGCGCCGTCGCGCACCAGGTGCTCACCCTGGAGGAAGACCACCTCGCGTTCCGGCACGCGCTCGTCGCCGAGGCCCTCTACACGGACCTGCTGCCCGGGGAGCGCGCGGCCACGCACCGCACGTTCCTCGCGGCGCTCCTCGAGGACCCGGACCTCGGCTCGGCCGCCGAACGCGCCCACCACGCGCTGCAGGGCCACGACCTGACCACCGCGCTGACGTCCTCGTGGGCGGCGGCGCAGCGGGCCCGCGAGCTGCTCGCGCCGGCCGAGCAGCGCCGGCACCTGGAAGAGGTGCTGTCGCTGTGGGAGTCCGTGCCCGACGCCGCCGACCTGATCGGGCACGACCGCGTGCACGTCGCGCTCGCCGCCGCGGGTGCGGCCGCCCGCCACGGCCAGACCGTCCGCGCGGTCCAGCTCGCGCGCCGGGCGATCGAGGCCCTCGACGACGACCCGGTCCGGCAGGCCGGCGCACGCCACACGCTGGCCCAGTTCCTCCTGGACGTCGACGACCTGACCGGCGCCGTCGAGCAGACCGACCTGGCGCTGGAGGCCCTGGGCGACGCGCCCACGCGCGAGCTGGCGGCCACGCTCGCCGTGCGCGGGCGGATCGAGCTCAACCGTGACGAGGACGCCGCGGCCCGCGGCTACCTGCGCCGCGCCATGCAGGTCGCCGAGCAGGTCGACGCCCCCGTCGTGGAGATCGAGGCCCTCGCCTCCGCCGCGGCCCTGGAGAGCGCCGACCCGGCGGAGGCCGTGCGGCTCGGCGAGGTGGCCGTGCGCCGCGCCCGCGAGGTGGGTGCCGTGATGACCGAGGCACGGTGCTGGCAGAACCTCGCCGTCGCGCACTACGAGGCCGGCCACCTCGACGAGGCCGAGCACGTCCTGGCCCGCGGGATCGCCCGCACGCGGGAGACCGCCACGTCCCGCAGCCCCTTCGGCGTGTGGATGCGGCTGCTCACCGAGGTGCTGCGCTACGTGCGCGGCGACCTGTCCGACGGCGGGGCGCCGTCGGACGTGCCGGCACCCGAGGCGGCGATGTTCGCCGGCGTGCGCGCGCAGGCCGCCGTGGCGCGCGGCGACACGGACGCGCTCGAGCAGGTCGACGCGCTGCGCGACCTGTGGGACGTCGACGGGTTCGTCGCGCTGTGCGGCGGGAGCGCCGGCGTCGACGCGCTGACCTGGGCCGGCCGGTACGACGACGCGGCGCGGCTGGCCACCGACGTCACCGACCACCTCGCCCGGGTGTGGAGCCCGCACTTCCTCGGCGGGATCCGGCTCGCGGCGCTCGCGCTCGGCGCACTGGCCGCCGGTGCCGAGGACCCGGGCGCCCGGTACGACGACGGCACCCGCGACACGCTGCGGGCGCGCGCCGACGCCCTGGTCGCCGCGGCCCACGACACCGCCCGCACGGGCCGGACCCGCAATGGCGAGCTCGGCCCCGAGGGCAGCGCCTGGCTGACGCGCGCCGACGCCGAGCACGCCCGCGCCGTCACCGCGCTGACCGACGACCCCGCCGACCCCGGCCGGTGGGAGGTCACCGTGGACGCGTTCGACTACGGCCACCGCTACGAGCGGGCGCGCAGCCGGCTGCGCTGGGCCCAGGCGCTGCGCGCCGCCGGCGAACCCGACCGCGCGGCCCGCGAGGCCGCCGAGACGCTGGCCGAGGCGGAGGCGATGGGCGCCCGACCGCTGGCCGCGGCGACCCGGACCTGGGCGCGCCGGGCCCGCATCGCGCTGCCCGGATCCCGACGCGCCGCCTCCCCGCTCACCGACCGCGAGGACGAGGTGCTCGCCCTCGTCGCGCAGGGGCTGTCCAACCGGCAGATCGGCGAGGAGCTCTACATCACCGCCAAGACCGTCAGCGTGCACGTGTCCAACCTGCTGGCCAAGCTGGACGTCTCCGGCCGCGCCGAGGCGGTGGCCGTCGCGGCCCGCCGCGGGCTGCTCCCCCTCGACGGCCCGGCCGTCCCGGCGGGCCCGAGGAAGGAGCGACGATGAMRRSSQIPLVAREPQVEGFGRALERAAHGDPGVLVIGGDAGVGKTRLVKHLAARAEESGGRAVVAHCVDLGDVGIPYLPFSEALRLLADGHDAVADVLATRPALARLLGPTDAPTAEGATGASVDRLPLLDGIATTLAAAGAPGAPLVLVVEDLHWADPSTRDVLRFLVTRLRAEHLLLVLTYRADDVDRRHPLRPLLAELHRLDRVEHVELAPFTPDELRRFTTALQGGPLPEHHLADIQRRSDGNAFFAEELLAADSIGGPLPWSLADVLHARLQDLPAPVHHLVRLASVGGRRVAEDLLLAVAARTPGLDGDGAAVTAVHGAVAHQVLTLEEDHLAFRHALVAEALYTDLLPGERAATHRTFLAALLEDPDLGSAAERAHHALQGHDLTTALTSSWAAAQRARELLAPAEQRRHLEEVLSLWESVPDAADLIGHDRVHVALAAAGAAARHGQTVRAVQLARRAIEALDDDPVRQAGARHTLAQFLLDVDDLTGAVEQTDLALEALGDAPTRELAATLAVRGRIELNRDEDAAARGYLRRAMQVAEQVDAPVVEIEALASAAALESADPAEAVRLGEVAVRRAREVGAVMTEARCWQNLAVAHYEAGHLDEAEHVLARGIARTRETATSRSPFGVWMRLLTEVLRYVRGDLSDGGAPSDVPAPEAAMFAGVRAQAAVARGDTDALEQVDALRDLWDVDGFVALCGGSAGVDALTWAGRYDDAARLATDVTDHLARVWSPHFLGGIRLAALALGALAAGAEDPGARYDDGTRDTLRARADALVAAAHDTARTGRTRNGELGPEGSAWLTRADAEHARAVTALTDDPADPGRWEVTVDAFDYGHRYERARSRLRWAQALRAAGEPDRAAREAAETLAEAEAMGARPLAAATRTWARRARIALPGSRRAASPLTDREDEVLALVAQGLSNRQIGEELYITAKTVSVHVSNLLAKLDVSGRAEAVAVAARRGLLPLDGPAVPAGPRKERRNANANANANA
AK018_01056636hypothetical proteinATGACGGACCCGACCCACGAACCACCCGCGGACCCCACCGACCCCGCGAAGGCGACACTGCTGCGGTACCTGCGCGGCACCCGCGAGGCGCTGCTGTGGAAGACGGAGGGCCTGTCGGAGCGGGCGCTGCGCACCCCGCGGACCGGCGCCGGCACCAACCTGCTCGGCCTGGTCAAGCACGCCGCCAGCGTCGAGGTCGGCTACTTCGGCGAGACGTTCGGCCGGGACTGGCCCACCCCGCAGGAGCTGTCCTGGACCGACCGCTGGGACGAGGAGCCGAACGCCGACTTCTACGCCGAGCCCCACGAGTCCGCCGACGACCTGCGCGACCTGTACCGGCGGGTCGCCGCGTTCGCGGACGAGACCATCGAGGCGCTGCCCCTCGACGCACCCGGCCGGGTGCCCTGGTGGGGCGAGCGCGGCGAGGTCACCCTCCACCAGGTGTGCGTGCACGTGCTCGCCGACCTGCAGCGGCACGCCGGCCACGCCGACATCCTGCGCGAGCAGATCGACGGCGCGGTGGGGCTGCAGGAGGGCAACACCAACATCTGGCCGGTCGACTGGCCGGCCTACCTGGCCCGGCTGCACGCCATCGCCGACACGTTCCCCGGACCGGACGAGGAGGACCGGACATGAMTDPTHEPPADPTDPAKATLLRYLRGTREALLWKTEGLSERALRTPRTGAGTNLLGLVKHAASVEVGYFGETFGRDWPTPQELSWTDRWDEEPNADFYAEPHESADDLRDLYRRVAAFADETIEALPLDAPGRVPWWGERGEVTLHQVCVHVLADLQRHAGHADILREQIDGAVGLQEGNTNIWPVDWPAYLARLHAIADTFPGPDEEDRTNANANANANA
AK018_01057432hypothetical proteinATGACCACACCGACCGCCGATACCTTCCCGCGCATCCGCCAGGTCGTGCTCGACACCACTGACGCACGCTTCCTGGCCGAGTTCTACCGCCGCCTCTTCGGACTGCACTACCGGCCCGGCGACGAACCCCCGGTCGACGGCGGACCCGACCCCCGCGGCGCCGACTGGCTGGTCCTGGCCGGTACCGGCGGGTTCAGCCTCGCGTTCCAGCAGGTCGACGGCATCGCACCACCCACCTGGCCGGACCCGGCCGTGCCCCAGCAGCTCCACCTCGACACCACGGTCCCCGACGCGGCAGAGCTCGACCGGCAGCACGAACGGGCCCTCGCCCTCGGTGCCCGGCTGCTGTTCGACCGGTCCGACGACCCGCAGGAACCGCTGCGCGTCTACGCCGACCCGCAGGGGCACCCGTTCTGCCTGTTCGTCGCCTGAMTTPTADTFPRIRQVVLDTTDARFLAEFYRRLFGLHYRPGDEPPVDGGPDPRGADWLVLAGTGGFSLAFQQVDGIAPPTWPDPAVPQQLHLDTTVPDAAELDRQHERALALGARLLFDRSDDPQEPLRVYADPQGHPFCLFVANANANANANA
AK018_010581239rlmC_1COG226523S rRNA (uracil(747)-C(5))-methyltransferase RlmCGTGCAGTGCCCCCACTACGACGCCGGCCGGTGCCGCTCGTGCACCCTCCTCGACATCGCGCGCCCCCAGCAGGTCCGCGACAAGCAGGCGCACGTGGCCGAGCTGCTCGCGGCGTACGACGACGTCACCTGGCTGCCGCCCGTCGTCGGACCGGAGAGCGGGTTCCGCAACAAGGCCAAGATGGTCGTCACCGGCACCGTCGACGACCCGGTCCTGGGCATCGTCGGACCGCCCGGACCCTACGCCGGGCAGAGCGTCGACCTCACCGACTGCGGCCTCTACCCCCCGGCGCTGCAGGAGGCGTTCGCACCGCTCGCCGAACTGGTCACCCGCGCCACGATCCAGCCCTACGACCTGACCCCCGAGCACGACGGACGCCGCGTCACCCCGCGCGGCGCCGCCCGCCGCGGCGAGCTCAAGCACGTCCTGGTCACGCTCTCCGCCGACGGCGAGCTCATGGTGCGGCTCGTCCTGCGCTCCACCGAGGCCGTCGCCCGCATCCGCAAGCACCTGCCCTGGCTGCACGCCCGCCTCCCGGCGCTCGCGGTGCTCAGCGTCAACGTCCAGCCCGCCCACGCCGCCGTCCTGGAGGGTGACGAGGAGATCGTGCTCACCGAGCGCGACACGCTGCCCATGCGGGTCGACGGCATCACGCTGCACCTGCGCCCGCAGAGCTTCTTCCAGACCAACACCGGCGTCGCCGCGGCGCTGTACCGGCAGGCGCGCGACTGGGTGGACGAGATCGACCCGGCGTCGTTGTGGGACCTGTACTGCGGCGTCGGCGGGTTCGCGCTGCACTGCGCCGCGCCCGGCCGGTCCGTGACGGGCATCGAGATCTCCGCCGAGGCCGTCGCCTCGGCGACCACGACGGCGGCCGAGCTCGCCGCCCTGCCGGCCGGCGCCGTCGTCGGCGACCACGACGCCGCGTGGTGGCGGGATGCCGTGGCGGGCGTCCGGTTCGACGCCGGCGACGCGGCCGGGTTCGCGCTCGGCACCGACGACGACCCCGAGCTCGTGATCGTCAACCCGCCGCGGCGCGGGATCGGCCCGGATCTCGCCGGGCGCCTGGAGGCGTCCCGGGTCCGCCACGTCCTCTACTCCAGCTGCCGGGCCCAGACGCTCGCCAGCGATCTCGAGCACATGCCGTCGCTGCGTCCGCAGCGGGCCGTGCTGCTCGACATGTTCCCGCAGACCGGCCACTACGAGGTGCTGACCCTGCTGGAGCGAGTCCCCGCCTGAMQCPHYDAGRCRSCTLLDIARPQQVRDKQAHVAELLAAYDDVTWLPPVVGPESGFRNKAKMVVTGTVDDPVLGIVGPPGPYAGQSVDLTDCGLYPPALQEAFAPLAELVTRATIQPYDLTPEHDGRRVTPRGAARRGELKHVLVTLSADGELMVRLVLRSTEAVARIRKHLPWLHARLPALAVLSVNVQPAHAAVLEGDEEIVLTERDTLPMRVDGITLHLRPQSFFQTNTGVAAALYRQARDWVDEIDPASLWDLYCGVGGFALHCAAPGRSVTGIEISAEAVASATTTAAELAALPAGAVVGDHDAAWWRDAVAGVRFDAGDAAGFALGTDDDPELVIVNPPRRGIGPDLAGRLEASRVRHVLYSSCRAQTLASDLEHMPSLRPQRAVLLDMFPQTGHYEVLTLLERVPANANANANANA
AK018_010591443hypothetical proteinATGACGGCGACGGATCCCGGCAGGGCCGGGTCGGTGGCTGCGGACGACGTCGCCCGCACGCTCCGGGAGACTGCCGCCGCGGCGGGGCACGACGACGGTCCGGGCGCGCCGGGCACGGCCGACCCGGACGTGGTGCGCACCGCGCTGGCGAGCCTGCCCCACGACGAGCAGCAGCTGCTGTGGGACCTGCACGTGGTCGAGCGCCGGGTCGAGGTGGTGGCCCGGGAGATGGGGATGCACGTGCGTGCGGTGCTGCGGCGTCTGCGTGTCGCGGAGCAGCGCCTCACCGGTGCCCTCTCGGCGGCGCACGCCCGGGGCGCCGTGCCGCAGCCGTGCCTGGAGACGCGCACCTCGCTGCCCGAGTACGTCCGCCACGACCTGCCCGCGGCGCGTCGCCGGTCGTTCGAGGAGCACCTGTTCGGCTGCTCGGGCTGCATGCGCGCGTTCGTGGACGTGCGGCAGGCCGGTTGGGCGTTGCGCGACGTCGCTCCCGTGCTGCTGGCCGGTACGGCGGGCAGCGGCGTTGCGGTGCCGGTGGTGGTCGGGGCGCTGGGCGCTCCGACGACGACGGCGGGCCTGCTGGCGTGGCCCGCTGCGGCGGGTGGTGCGCTCGTGGGCGCGTGGGAGTGGCTGGTGCGCGGTCTGCGGGAGGTCTTCGGGCGGCCGGTGGCCGTGGTGGGTGCCGTGGGCGCCACGGTGGTGGCGGTGGCGGCTGCCGCGATGCTCGGCGGTCTCGGCGGGCCCGCGGCGGACGAGCCGCCGGCGGCGGCGGTCGGTTCGGCCGTGCCCGACGAGGGTCCGGCCGCGGTGGCGTCGTCGAGCCCGTCTCCCGCGGCGAGCGCGACGCCGGAGCCCAGCCCGAGCGCGACGCCGGAGGCCACGCCGTCGGCGTCGCCCACGCCGGAGGCCACCCCGTCGCCGGGGACCGCCGAGGGCACGGGCGCGCTCGTCCCGGCCGTGCCGCCGGAGCCCGACCCGACGCCGACGCCCGACGCGACCGGTGGCGACGACGACCCCGCGGAACCGGCGGACCCCGCCGATCCGGCCGACCCCGCTGACCCGGGAGATGCGGCGGGCTCCGGCGGTCCCGACCCCGCGCCGTCGTCAGACCCGGACGCGACGCCAGCGCCCGACCCCACGCCGACGCCCACCCGGACGAGCGAGCCCACGCCCGAACCGCCCCCGCCGCCCCCGGAGCCGGAGCTCGTGTCCGTCACGGTCGGCCTCGACGTGCCGCGGCACGGGTACTACCTGGTCGACCCCACGGGGGACGCGCAGGTCGTGGCCGTCTCCGCCCGGCGCGGCAACGTCCGTGTCGAGCAGCGGCACGGCGGCTGGTGGGTGTGGACGCGGGGCGCGTCGCGCGGCACGGTCTCGGTCGAGCTGGAGGTCACCGAGGGGGCCCGGCATGGGGCGCGCCTGTCGTTCCTCGGCCTGGACTGAMTATDPGRAGSVAADDVARTLRETAAAAGHDDGPGAPGTADPDVVRTALASLPHDEQQLLWDLHVVERRVEVVAREMGMHVRAVLRRLRVAEQRLTGALSAAHARGAVPQPCLETRTSLPEYVRHDLPAARRRSFEEHLFGCSGCMRAFVDVRQAGWALRDVAPVLLAGTAGSGVAVPVVVGALGAPTTTAGLLAWPAAAGGALVGAWEWLVRGLREVFGRPVAVVGAVGATVVAVAAAAMLGGLGGPAADEPPAAAVGSAVPDEGPAAVASSSPSPAASATPEPSPSATPEATPSASPTPEATPSPGTAEGTGALVPAVPPEPDPTPTPDATGGDDDPAEPADPADPADPADPGDAAGSGGPDPAPSSDPDATPAPDPTPTPTRTSEPTPEPPPPPPEPELVSVTVGLDVPRHGYYLVDPTGDAQVVAVSARRGNVRVEQRHGGWWVWTRGASRGTVSVELEVTEGARHGARLSFLGLDNANANANANA
AK018_010601086hypothetical proteinATGCTCATGGTCGAACGGGTCTGGTCACGAGCACGCGACTGGTTCGCCTCCCCCGCGAACCAGACCGACGCGCTGCAGATGTTCAAGGCCGCCCTCGCGGCGACCGCCGCCTGGGCGCTGGCCGAGATGGTGCTCGGGCTCGAGCAGGCGTTCCTCGCCCCCTGGGTCGCGCTGCTCACGGTCCATGCCACCGTCCACCGCACGCTCTGGCGCGGAGTGCAGACCGTGCTCGCCGTCGGCGCCGGCATCCTGCTCTCCCTCGTGGTGGTCTCCGCCTTCGAGGCGACCGTGTGGTCGTTCGGGCTGGCGCTGCTGGTCGGGCTGATCCTCGGACGCCTGCCCTGGCTGCGCGAAGAGGGCGTCACCGTCGCCACCACCGCCCTGTTCGTCATCACCACCGGCTACAACCTGTCCGAGCAGCGCGCCATCGACCTGCTGCCCGACCGCCTCCTCGACACGGCCGTCGGCGTCGGTGTGGCCGTGCTGGTCAACCTGCTCGTCTTCCCGCCGCTCAACGACCGCAGCGCCCAGCAGCAGATCGACGACGTCGACGCCAAGCTCGGCTCACTGCTCAGCGACATGGCCACCCAGATGGAGCGGCCCTGGGACTCCCAGGAGGAGGACGACTGGATCGAACGCACCCGGGAGATCTCCCGCGACGTCGACCACGCCTGGTCGCTGGTCAACACCGCCCGCGAGGCCGGCCGCTGGAACCCCCGCCGCCGGCGACACCCCGGCGAGGAGATCCAGGGCTATCCCCAGATCCTGCTGCGTCTCGAGGAGGGCGTCGTGCAGACGCAGAGCATCGCCCGGCAGGTGCGCGAGTCCAGCCGGGAGGCCGACGCGTGGGACGAGCGGTTCCGCGACCGGTACATCGCGCTGCTCGCCGAGACCGGCCGGCGCGTCGCCGACCCCGACCAGGACGTCGCACCGCTGCGCGACGACCTGCGCGAGCTCGCCGACGACCTGTCCGACGAGGACCTCGGCGCCCGCTACTGGCCGCTGTACGGGGCCCTCATCGCGAACCTGCAGGCCATCGTCGACGTGGTCGACGACGTCGCCACCGCCCGGCCCGTACGGACCTGAMLMVERVWSRARDWFASPANQTDALQMFKAALAATAAWALAEMVLGLEQAFLAPWVALLTVHATVHRTLWRGVQTVLAVGAGILLSLVVVSAFEATVWSFGLALLVGLILGRLPWLREEGVTVATTALFVITTGYNLSEQRAIDLLPDRLLDTAVGVGVAVLVNLLVFPPLNDRSAQQQIDDVDAKLGSLLSDMATQMERPWDSQEEDDWIERTREISRDVDHAWSLVNTAREAGRWNPRRRRHPGEEIQGYPQILLRLEEGVVQTQSIARQVRESSREADAWDERFRDRYIALLAETGRRVADPDQDVAPLRDDLRELADDLSDEDLGARYWPLYGALIANLQAIVDVVDDVATARPVRTNANANANANA
AK018_010611080ocd_1Ornithine cyclodeaminaseATGACCACCGTCGACCTGCTGGACGTCGCCGCCACCGCCCGCTGGGTCGCCGACCGCGGCGCCGAGCGCATCATCGCCGAGCTGATCGACGCCCTCGCCGCCGACTTCCGGCGCTGGCCCGAGCTCGACAAGCGGCCCCGCGTCGCCTCGCACTCCGCGGAGGGCGTCATCGAGCTCATGCCCACGTCCGACGGCGTCACCTACGGGTTCAAGTACGTCAACGGCCACCCGGTGAACCCGGCGCGAGGCTTCCAGACCGTCACCGCGTTCGGCGTGCTCGCCGACGTCCACAACGGCTACCCGACGTTCCTCGCGGAGATGACCCTGCTCACCGCGCTGCGCACGGCCGCGACGTCGGCGCTCGCGGCGCGCCTGCTGGCTCGCCCGGACAGCCGCACGCTCGCGCTGATCGGCACCGGCACCCAGGCGGAGTTCCAGGCGCTCGGGATGCGCGCCGCCCTCGGGATCACGCACCTGCGGGCCTGGGACGTCGACCCGGCGGCCCGCGAGAAGCTCGCGCGCAACGCCCGCGCGCTCGGGTTCGACGTCCACGAGGCCACCAGCGCCGCCGACGCCGTCCGCGGCGCCGACGTCGTGACCACCTGCACCGCGGACAAGCGCGACGCGACCGTGCTGACGGCGGACATGCTGGCCGACGCCGCCCCCGGGGTGCACGTCAACGCGATCGGCGGTGACTGCCCGGGAAAGACCGAGCTGGAGGCCCGGATCCTCACGGCCCCCGGCCGCGCCGGAGCGCCCGACCCGGCCGTCGTCGTGGAGTACACGCCGCAGACGCGCATCGAGGGCGAGATCCAGCAGCTCGACCCGGACTTCCCGGTGACCGAGCTGTGGGAGATCCTCGTCGGCGACGCCGTCGGGCGGGCCGCCCCCGACCAGGTGACCGTCTTCGACTCGGTTGGGTTCGCCGTCGAGGACTGGACGGCCCTGCGCTACGTGCACGAGGCCGTGCGCCGCGACGCACCCGCGCTGCTGCAGCAGGTTGACCTGATCGCCGAACCGGCCGACCCGAAGGACCTGTGGTCGCTCGTCGCGGCGGAGGCCTTGGCCGCCCAGCGGTGAMTTVDLLDVAATARWVADRGAERIIAELIDALAADFRRWPELDKRPRVASHSAEGVIELMPTSDGVTYGFKYVNGHPVNPARGFQTVTAFGVLADVHNGYPTFLAEMTLLTALRTAATSALAARLLARPDSRTLALIGTGTQAEFQALGMRAALGITHLRAWDVDPAAREKLARNARALGFDVHEATSAADAVRGADVVTTCTADKRDATVLTADMLADAAPGVHVNAIGGDCPGKTELEARILTAPGRAGAPDPAVVVEYTPQTRIEGEIQQLDPDFPVTELWEILVGDAVGRAAPDQVTVFDSVGFAVEDWTALRYVHEAVRRDAPALLQQVDLIAEPADPKDLWSLVAAEALAAQRPGPT0014250_163DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014250-ocd-K01750NANA
AK018_01062966COG1834N(G),N(G)-dimethylarginine dimethylaminohydrolaseATGACGCTGCTCACACCGCCCCTGCCCGGGCCCGGGACGCTGCCGGCGACGTCGGCGACGCCGTCCGACCGGGCCGCCACCCCGCGCCACTACCTCATGTGCCCGCCGGTCCACTTTGACGTCGTCTACGCGATCAACCCCTGGATGGACGTCAGCGTCCCGGTCGACGCCGGGCACGCCGTCGTGCAGTGGCAGGCCCTCAAGGCGGCCTACGAGTCCCGCGGCCACCGGGTCGACGTCATCCGCCCCGAGCCGGGACTGCCGGACATGGTCTACGCGGCCAACGGCGGCGTCGTCGTCGGCGGCCGTGCCCTCGCCGCGCGCTTCACCCACCCCGAGCGTCAGCCCGAGGGCGCCGCCTACGAGGCGTGGCTGCGCACCACCGGCGCCGACCACGGCCTGCAGAGCCTCGGCCAGGCCGCCGAGCTCAACGAGGGCGAGGGCGACCTGCTGTGGGACGGCGAGGTCCTGCTGGCCGGCACCGGCTTCCGCACCAGCCGCGCCGCGCACGCCGAGGCCTCCGTCCGGCTCGACGTCGACGTCGTCACCCTCGAGCTCGTCGACCCGCGCTTCTACCACCTCGACACGGCGCTGGCCGTGCTGAGCACCGGCACCCGGGGCGACGGCGGCACGCACGACGGCGGCACGCGGCCCGAGGTCGCGTACTTCCCGGAGGCCTTCACCCCGGCGTCGCGCGCCGTGCTGCGCGAGCGGTACCCCGACGCGATCCAGGCCACCGAGGACGACGCCGCAGTGCTCGGCCTCAACGCCGTCAGCGACGGCCGCCACGTGTTCCTGTCCGACCGCGCCACCGGCATGCACGCCGCGCTGCGCGAGCGCGGGTTCGACCCCGTCGGCGTCGACCTGTCCGAGCTGCTCAAGGGCGGCGGGTCCGTCAAGTGCTGCACCCTGGAGCTGCGTCCCGCGCAGCCGTCGTCCACCGCGCCGAAGGAGGCCCGCGCATGAMTLLTPPLPGPGTLPATSATPSDRAATPRHYLMCPPVHFDVVYAINPWMDVSVPVDAGHAVVQWQALKAAYESRGHRVDVIRPEPGLPDMVYAANGGVVVGGRALAARFTHPERQPEGAAYEAWLRTTGADHGLQSLGQAAELNEGEGDLLWDGEVLLAGTGFRTSRAAHAEASVRLDVDVVTLELVDPRFYHLDTALAVLSTGTRGDGGTHDGGTRPEVAYFPEAFTPASRAVLRERYPDAIQATEDDAAVLGLNAVSDGRHVFLSDRATGMHAALRERGFDPVGVDLSELLKGGGSVKCCTLELRPAQPSSTAPKEARANANANANANA
AK018_01063444lrp_2COG1522Leucine-responsive regulatory proteinGTGGACGAGATCAACCGGAAGATCGTGGGGCACCTGCTGCGCGACGGGCGGGCGTCGTTCGCCGAGATCGGCGAGTCCGTGGGCCTGTCCGCGCCCGCGGTGAAGCGGCGCGTCGACCGGATGCAGGCGCGCGGGGAGATCTCGGGGTTCACCGTGCAGGTCTCCCCCGAGCAGCTCGGGTGGCGGATCGTCGCCTACGTCGAGATCTTCTGCCGCGGCAACATCTCGCCGGCGACGCTGGAGCGGGACTTCGGCCCGATCCCCGAGGTGGTGCGCGTCGACACCGTTACCGGCGAGGCGGACGCGCTCGTGCAGATCATGGCCGACTCGATGTCCGACGTGGAACGGATCGTCGAGTCGTTCCGCGTGGGTGCGCGCGTCGACAAGACGCGCACGTCGATCGTGATGTCCCGGGTGATCGACCGGCCGACACGCCTCGACTGAMDEINRKIVGHLLRDGRASFAEIGESVGLSAPAVKRRVDRMQARGEISGFTVQVSPEQLGWRIVAYVEIFCRGNISPATLERDFGPIPEVVRVDTVTGEADALVQIMADSMSDVERIVESFRVGARVDKTRTSIVMSRVIDRPTRLDNANANANANA
AK018_01064399hypothetical proteinATGCCCGCCACCTCGACGAAGCCGCCGCTGACCGGCCTCGGCCGCCTCTTCGCCGTCGTCGCCTGGATCGAGGCGTTCACCTGGGCGGGCCTCCTGGTCGGGATGTTCCTCAAGTACGTCACCGAGACCACCGAGGCCGGGGTCTGGCTGTTCGGGCGGCTGCACGGCGGGGCGTTCGTCGCCTACGGGATCGTCGCCCTGGTCGTCGCCGTGAAGTACCGGTGGGGGATCTGGCGCACGCTCGTGGCGCTCGCGGCGGCCGTCCCGCCGCTGACGACGCTGCTCGCCGAGTGGTGGCTGCGCCGCACCGGCCACCTGACGGCACCGGACGCGCGGACCGCACCGGACGCGCCGGACGTGCCGACCGCGTCGGACGAATGGTCGGTGCCGACCGCCTGAMPATSTKPPLTGLGRLFAVVAWIEAFTWAGLLVGMFLKYVTETTEAGVWLFGRLHGGAFVAYGIVALVVAVKYRWGIWRTLVALAAAVPPLTTLLAEWWLRRTGHLTAPDARTAPDAPDVPTASDEWSVPTANANANANANA
AK018_01065759hypothetical proteinATGGGTGCACAGCGGGTGGGACGACGACGGTGGCTGCGGTGGACGGCAGCGGCTCTCGCCGCGTCGGTGCTGGTGGTGGGGGCGCTCGCCCTGCTGGTGTGGAACGGGGTGCTCTGGCCCAACCGGTTCCTGGCGAGCGGCTACGACGTACGCGGTGTCGACGTCTCGAGCTACCAGGGCGACATCGACTGGCCCGTGCTGGCCGACGAGGACATCGACTTCGCGTTCATCAAGGCGACCGAGGGGTCGAGCCACGTCGACGAGCGCTTCGCCGCCAACTGGGACGGTGCCCTGGCGACGGACCTGGTGGTGGGCGCCTACCACTTCCTGTCCTTCGAGAGCCCCGGCGAGACGCAGGCGGCGAACATGATCGAGCAGGTCCCCGCCACCCCGGGCACCCTGCCGCCGGTGGTCGACGCCGAGTACTACGCCGGGTTCGCGGCCGACCCGCCGAGCGTCGCAGAGCTGCGGGCCATCCTCGACCCGCTGCTCGCCGACCTGGAGGAGCACTACGGCGCGCCGCCGATCCTCTACACCACCCAGGAGTTCCGCGAACGGTTCCTGGGTGACGACTACGACGACCACCCGCTGTGGATCCGCGCGGTGGCACTCACCCCGGACGTGCCGCGGCACGAGTGGGAGTTCTGGCAGTACTCCGACCGCGACGTGCTGGACGGCTACTCCGGCGAGGAGACCCACATCGACATGAACGTGTTCGACGGGTCGCTCGAGGAGCTGCAGGCGCTGACGCTCGACTGAMGAQRVGRRRWLRWTAAALAASVLVVGALALLVWNGVLWPNRFLASGYDVRGVDVSSYQGDIDWPVLADEDIDFAFIKATEGSSHVDERFAANWDGALATDLVVGAYHFLSFESPGETQAANMIEQVPATPGTLPPVVDAEYYAGFAADPPSVAELRAILDPLLADLEEHYGAPPILYTTQEFRERFLGDDYDDHPLWIRAVALTPDVPRHEWEFWQYSDRDVLDGYSGEETHIDMNVFDGSLEELQALTLDPGPT0019160_1334DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-LYSOZYME,PGPT0019160-acm-K07273NANA
AK018_010662073hypothetical proteinATGGCCGACCGACTCCGCTCCGCCACGTCCCCCTACCTGCGGCAGCACGCCGACAACCCGGTCGACTGGTGGCCGTGGAGCGAGGCTGCCTTCGCCGAGGCCCGCCGACGCGACGTGCCCGTCCTGCTGTCCGTCGGGTACGCCGCCTGCCACTGGTGTCACGTCATGGCCCACGAGTCCTTCGAGGACACCGAGGTCGCCGAGGTGATCAACGCGGGCTTCGTGCCGATCAAGGTCGACCGCGAGGAACGGCCCGACGTCGACGCCGTCTACATGGCCGCCACCACGGCGATGACCGGCCAGGGCGGCTGGCCGATGACGGCGTTCCTCACCCCGGACGGCGACGCCTTCCACACCGGCACCTACTTCCCGCGCGAGCCGTTCCTCGAGGTGCTCGGCGCCGTCCGGGACGCCTGGACCGACGCCCGCGACGCCGTCGGCGAGCGGGCCGACGCCGTCACCGCGGCGATCGCGCAGACCACCACCGGGATGCCGCCCGCGCCGATCGAGGCCGCCGAGCTCGACGCCGCCGTCGACGCCCTGCTCGCCGATGCCGACACCACCCACGGCGGGTTCGGCGGCGCGCCCAAGTTCCCGCCGTCGATGACCCTCGACCACCTGCTGCGTCACCACGCCCGCACCGGCAACCCCGCCGCCCTGGAGCACGTGGCGCGCACGTGCACCGCGATGGCGCGCGGCGGCATCTATGACCAGCTCGGCGGCGGGTTCGCGCGGTACTCCGTCGACGAGGCCTGGGTGGTGCCGCACTTCGAGAAGATGCTGTACGACAACGCCCAGCTCCTCGGCGTCTACGCGCGCTGGTGGCGGGCCACCGGGTCGCCGCTGGCCGAGCGCGTCGTCCGCGAGACGGCCGGGTTCATCCTGCGGGACCTGAGTACGTCCTCCGGCGGGTTCGCCTCCGCGCTCGACGCGGACACCGACGTCGACGGCCGCAGCGTCGAGGGTTACACGTACGCGTGGACCCCCGCCCAGCTGCGGGAGGTGCTCGGGGACGACGACGGCGCCCGCGCCGCCCGCGTCCTCGGCGTCACCGAGGCGGGCACCTTCGAGGGCGGGACCTCCACCCTGCAGCTCGTCGAGGACCCCGACCCCGAGTGGTGGGCCGGCGTGCGGAGCCGGCTCCTCGTGGCACGGCTCGAGCGCCCCCAGCCCGCCCGCGACGACAAGGTCGTCACCGCCTGGAACGGCATCGCGATCGCCACGCTCGCCGACGCCGGCGCCATGCTCGACGAACCCCTCTGGGTCGCCGCCGCTCGCAAGGCCGCGTCGTTCCTGCTCAGCGAGCACGTCGTCGAGGGCCGGCTGCGGCGCGCCTCCCGCGGCGGGATCGTCGGGGACGCGCTCGGCGTCGCCGCCGACCACGGCGGCCTCGTGCGCGGGCTCCTCTGCCTGCACCAGGCCACCGGCGAGGCGCAGTGGCTCGACTCCGCCGTGCAGATCCTCGACGCCGCCGTCGACCTGTTCGGCGCGGAGGAGGACGGCGGGTTCTACGACGTCGGCTCCGACGCCGAACGCCTCGTGGTCCGGCCCCGCGACCCCAGCGACGGGCCCGAGCCGTCCGGCCAGTCGGCGCTCGCCGAGGCCCTCATGACCGCCGCGGCGCTCACCGGCTCGCCCCGGTACCGCGAGCTCGCCGAAGCCGCCGTGAGTGCCTCCGGGACGCTCGCGCGGCGGGCGCCCCGGTTCGCGGGCGGCGTGCTCACGGCTGCCGAGGCGCTCGCCGACGGCCCGCGGCAGGTCGCCGTGGTCGGGGCGTCGGCCGGCGGGGACGGCGGCGTGCTGCTGGAGACCGCCCGCACCGGCGGGGCAGCGCACCACCTGGACGACGGCGGAGCCCGGCTGGCGGGCGCGATGCTACGCACCGCACGCCGCGCGCACACCGCGGGGGCCGTCGTCGTCCCCGGTGCTCCGGACGCTCCTGGGGTGCCGCTGCTGGCCGGACGGCCGCTCGTGGACAACGGGCCGGCGGCCTACGTGTGCCGCGGGTTCGTGTGCGACCGGCCGGTGACCACCGCCGAGGAGCTGGCGGACCTCCTCCTCCCCGCGAGGTAGMADRLRSATSPYLRQHADNPVDWWPWSEAAFAEARRRDVPVLLSVGYAACHWCHVMAHESFEDTEVAEVINAGFVPIKVDREERPDVDAVYMAATTAMTGQGGWPMTAFLTPDGDAFHTGTYFPREPFLEVLGAVRDAWTDARDAVGERADAVTAAIAQTTTGMPPAPIEAAELDAAVDALLADADTTHGGFGGAPKFPPSMTLDHLLRHHARTGNPAALEHVARTCTAMARGGIYDQLGGGFARYSVDEAWVVPHFEKMLYDNAQLLGVYARWWRATGSPLAERVVRETAGFILRDLSTSSGGFASALDADTDVDGRSVEGYTYAWTPAQLREVLGDDDGARAARVLGVTEAGTFEGGTSTLQLVEDPDPEWWAGVRSRLLVARLERPQPARDDKVVTAWNGIAIATLADAGAMLDEPLWVAAARKAASFLLSEHVVEGRLRRASRGGIVGDALGVAADHGGLVRGLLCLHQATGEAQWLDSAVQILDAAVDLFGAEEDGGFYDVGSDAERLVVRPRDPSDGPEPSGQSALAEALMTAAALTGSPRYRELAEAAVSASGTLARRAPRFAGGVLTAAEALADGPRQVAVVGASAGGDGGVLLETARTGGAAHHLDDGGARLAGAMLRTARRAHTAGAVVVPGAPDAPGVPLLAGRPLVDNGPAAYVCRGFVCDRPVTTAEELADLLLPARNANANANANA
AK018_010671110COG1373putative proteinTTGCGCCGAGCCCCTGTCGTCCTGCTGGTCGGCGCCCGTCAGGTCGGGAAGACGACCCTCGCCCGCACGTTCGTCGCCCCGGGCGACGTGAACTACTTCGATCTTGAGGACCCGGTCGATCTCGCCCGCCTCGACGAGCCGATGACCGCGCTCGCCCCCCTGACCGGAACTGTCGTCATCGACGAGGTCCAACGACGCCCGGACCTCTTCCCGGTCCTCCGGGTCCTCGCCGACCGCGACGACCACCCCGCGACCTTCCTCGTGCTGGGCAGCGCGTCCCCGGGCGCTCTCCGGCAGTCCTCCGAGTCCCTGGCAGGTCGTGTAGAGGTCATCGAGCTGCACGGGATCGGCCCTCGCGAGTCCGACCTCGACCTCGACACCGTGTGGCTCCGCGGCGGCTACCCGCGTTCGCAGCTCGCCCCGGACGACGCGGCGTCGGCGCAGTGGCGGACGCAGTACATCCGTGCGCTCGCCAACCGTGACCTCGCGGAGTTCGGCGTGGCCCAGCCGGCAGCGACCATCGAGAGGTTCCTCGGCATCGTCGCCCACCACCACGGGAACATGTGGAACGCGGCCTCCGCCGCCAGGACGCTCGGCATCTCGGAGGCCTCGGCACGTCGCTACGTCGACGCGCTGGCGGATGCGCTCCTGGTCAGGATGCTGTCCCCTTGGCACTCGAACCATGGCAAGCGCCTGGTGAGGCGGCCGAAGGTCTACTTCCGCGACACCGGACTGCTGCACACGCTGCTCGGCATCGACAGCCAGGCCGGTCTGCTACGCCACGCACAGGTCGGCGCGTCGTGGGAGTCGCTGGTCATCGAGGAGATCCTGCGCCGAGCGCCCAGTCACCGCCCCTACTTCTGGCGCACGTCGAACGGCGCAGAGCTCGATCTGCTGCTCAAGGGGCCCGGCGGTTCCTGGGGGTTCGAGATCAAGAGGTCCGACGCCCCCCGCGCTACGCCCTCCCTCCGTTCCGCCGCCTCGGACCTCCCGCTCCGCCGGACGTTCGTCGTCTACCCGGGTCGGCGGAGGTACGCGATCGCGGACATCGCCGAGACCCTCCCGTTCGACGACGTCATCGCAGCGGAGAGCCTCGACGACCTGATGTGAMRRAPVVLLVGARQVGKTTLARTFVAPGDVNYFDLEDPVDLARLDEPMTALAPLTGTVVIDEVQRRPDLFPVLRVLADRDDHPATFLVLGSASPGALRQSSESLAGRVEVIELHGIGPRESDLDLDTVWLRGGYPRSQLAPDDAASAQWRTQYIRALANRDLAEFGVAQPAATIERFLGIVAHHHGNMWNAASAARTLGISEASARRYVDALADALLVRMLSPWHSNHGKRLVRRPKVYFRDTGLLHTLLGIDSQAGLLRHAQVGASWESLVIEEILRRAPSHRPYFWRTSNGAELDLLLKGPGGSWGFEIKRSDAPRATPSLRSAASDLPLRRTFVVYPGRRRYAIADIAETLPFDDVIAAESLDDLMNANANANANA
AK018_010681206hypothetical proteinATGCAGTGGCGCATCCTCGAGGCCCCGCACGGTGACCCCGACCACCCCGACGGCTGGGCCTACCGCGGCATCGCGGAGGTCGAGCGGCAGGTCGCGCTCGCCGACCGCGGCACTGACGACGGCGCACCCACCGCCCGCGAGCTCGCCGTGAGCATGACCGACCAGACCTACCGCCGGCGTCGTCGGCTCGTCGCTGTGGTCGACGGCGGTACCCCGGCCGACGGCGGTACCCCGGCCGACGGCGGCGCCCCGGCCGACGGCGGCACCCCGGCGGGCGGGCCGCTCGTGGTCGGGCACGGGTTCCTCGGCTGCAACCTGCGTGACAACCTGCACCGCGCCGACGTGTACGTCGCCGTCGCCCCGCCCTACCGGCGCCACGGGATCGGCGCGGCGCTCGTGGACGCCGTCGTCGCGCTCGCGCGGGCCGAGCCCGGCCGGACCACCGCGCTGTCCGAGGTCGAGTTCGCTGCCGAACCCGCGGCCGACGCCCCCGACGCCCTTGTCGCCCCCACCGGCAACGGCCGCATCAGCGCCGACCTGCCCGGCCTGCGGTTCGCGCGCCGCGCCGGCATCGGGCTGACGATGATCTCCCGGCGTTCGGTGCTGCGGCTGCCGGTGTCCGACGACGTGGCGCGGCTCGAGGAGCAGGCTCGCACGGCCGCGGGTCCGGACTACCGGCTGCACGTGTGGCGCGACGACATCCCCGAACGGTGGCTCGCCGGGTACGCCGCGCTGGAGGAGCGCCTGACGATCGACGAGCCGAACCCCGGCCTGGACGTCGAGCCCGAGCACTGGGACGCCGAGCGGATGCGGCACGAGATGCGCGAGCTGCGCGAGGCCGGCCGCGGCTGGCTGCTGACCGCCGCGGAGCACGTCCCCACCGGCGAGCTGGTCGCGGCGTCCATGCTGCTGTACTTCCCCGACCGGCAGGCGTACAGCGAGCAGGAGACCACCGTCGTCGTGCCCGAGCACCGGGGACGCCGCCTCGGGATGCTGGTCAAGTGCGTCAACCTGCGCGAGCACACCCGGGTGCGGCCCGCGACCGAGCGGATCTGGACGTGGAACAACGAGGACAACCCGCACATGCTCGCGATCAACGTCGCGATGGGTTTCCGGCCGGCGGGCGGCTCGGCGATGCTGCAGGCGCCGCTCGCGGACCTGCGGACGATGGTCACATCAGGTCGTCGAGGCTCTCCGCTGCGATGAMQWRILEAPHGDPDHPDGWAYRGIAEVERQVALADRGTDDGAPTARELAVSMTDQTYRRRRRLVAVVDGGTPADGGTPADGGAPADGGTPAGGPLVVGHGFLGCNLRDNLHRADVYVAVAPPYRRHGIGAALVDAVVALARAEPGRTTALSEVEFAAEPAADAPDALVAPTGNGRISADLPGLRFARRAGIGLTMISRRSVLRLPVSDDVARLEEQARTAAGPDYRLHVWRDDIPERWLAGYAALEERLTIDEPNPGLDVEPEHWDAERMRHEMRELREAGRGWLLTAAEHVPTGELVAASMLLYFPDRQAYSEQETTVVVPEHRGRRLGMLVKCVNLREHTRVRPATERIWTWNNEDNPHMLAINVAMGFRPAGGSAMLQAPLADLRTMVTSGRRGSPLRNANANANANA
AK018_01069513ydaFCOG1670Putative ribosomal N-acetyltransferase YdaFGTGCTGCGCACGTACCGGGAGGACGACCTCGAGCCGCTGCTGGAGTACTACGGCGACCCGGACGTGACGCGGTTCCTGCTGGAGGAGCCGTGGACGCCCGACGCCGCGGAGATGCAGCTGGCGCGGCGCATGCAGCGCACCGGCATCGACGAGCCGGGGTCCGCGCTGGCGCTGGTCGCCGAGTTCGAGGGCCGGGTGGTCGGCGACGTCGCCCTGTGGACGACGGGGGACACGACGTCGCGCGGGGAGGTCGGCTGGGCGTTCCACCCGGGCGCGACCGGTCGCGGGTTCGCGACCGAGGCGATGCGCACCGTGCTGCAGATCGCGTTCGACCACTACCGGATGCACCGCGTCGTGGCGCAGCTCGACGCCCGCAACGACCGGTCGGCGAAGCTGTGCGAGCGCATCGGGCTGAAGGCCGAGGGGCGGCTGCGCGAGGACTGGTGGTCCAAGGGCGAGTGGACCGACACCCTCGTCTACGGGATGCTCGAGCGGGAGTGGAAGACGCCCTGAMLRTYREDDLEPLLEYYGDPDVTRFLLEEPWTPDAAEMQLARRMQRTGIDEPGSALALVAEFEGRVVGDVALWTTGDTTSRGEVGWAFHPGATGRGFATEAMRTVLQIAFDHYRMHRVVAQLDARNDRSAKLCERIGLKAEGRLREDWWSKGEWTDTLVYGMLEREWKTPPGPT0028650_24DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028650-aacA-K00663NANA
AK018_010701140ccpA_2COG1609Catabolite control protein AATGGAAGGCCCGACCAGCAGCGACGCGGACGTCGCCACCAGCCCCGCCGTGCCGCCGTCGTCGGGCGCCACCCCCGCCGTCCGCGGCGCCAGCGCGACGACGCGAGCCGGCGCGACCCCGAGCGCCGCCCGCACCCGCAAGACCCCCAAGCGCCCCACCATCCGGGACGTGGCCGCGGCGGCGGGCGTCAGCCGCGGCACGGTCTCGCGGTTCCTCAACGGCGGCCACTGGGTCTCGCCGGAGGCGCGCACGGCCGTCGAGGACGCCATCAAGCGCACCGGCTACCGCGCCAACGAGCACGCCCGGTCGCTGGTCACGGGCCGGTCGAACTCGGTGGCGTTCCTGCTCACCGAGCCGCAGCACCTGCTGTTCGAGGATCCGAACTTCTCCCTGCTGCTGCGCGGCGCCACCCAGGCGGCCGCCACCCGGGAGATGCCGATGGTCCTGCTCGTGGCGGGCACCGCAGAGGAGCGGCGCCGCGTCGCGGGCTACGTCGAGGCCGGTCACGTCGACGGCGTGCTGCTCATCAGCTCCCACGAGGGCAACCCGATGCTCACCGAGCTGCTGCGGCTCGGCATCCCGACGGTCGCGTGCGGCGTGCCGCTCGGCTACGAGGACAAGATCGCCTACGTCACCGCCGACGACCACTCGGGCGGCAGGGCCATGACCCAGCACCTGCTGGACTCGGGCCGGCGCCGCATCGCCACGATCACCGGCCCCATGGACACCCCCGGCGGCGTGCTGCGGCTGCAGGGGTACCGCGAGGTGCTCGGGGACGCGTTCGACCCCGACCTGGTGGTCGAGGGCGACTACTCGCGCGGGTCCGGCCGGCTCGGCATGACGCGGCTCCTCGCCGAGCATCCCGACGTCGACGCCGTGTTCGTCCACAGCGACCTCATGGCCGCCGGCGCGCTGACCGCCGCGCAGGCCGCCGGCCGCCGGGTCCCGGAGGACGTCGCCGTGGCGGGGTTCGACGACAACGGCGTGGCCGCCCAGCTCCACCCCGCGCTGACCACGATGCGTCAGCCCTACGAGCGGATCAGCGCCGAGATGGTGCGCCTGCTGCTCGACGTCGTCGACGGCGCCGAACCCTCCGCGGTCACGCTGCCCACGTCCCTGGTGGTGCGGGACTCGGCCTGAMEGPTSSDADVATSPAVPPSSGATPAVRGASATTRAGATPSAARTRKTPKRPTIRDVAAAAGVSRGTVSRFLNGGHWVSPEARTAVEDAIKRTGYRANEHARSLVTGRSNSVAFLLTEPQHLLFEDPNFSLLLRGATQAAATREMPMVLLVAGTAEERRRVAGYVEAGHVDGVLLISSHEGNPMLTELLRLGIPTVACGVPLGYEDKIAYVTADDHSGGRAMTQHLLDSGRRRIATITGPMDTPGGVLRLQGYREVLGDAFDPDLVVEGDYSRGSGRLGMTRLLAEHPDVDAVFVHSDLMAAGALTAAQAAGRRVPEDVAVAGFDDNGVAAQLHPALTTMRQPYERISAEMVRLLLDVVDGAEPSAVTLPTSLVVRDSAPGPT0021075_1353DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
AK018_010711236sotB_2Sugar efflux transporter BATGACCTCCTCCGGCCCCACCGTCGACACCCGCCGCGCCACCGTCGTCCTGCTGGCGCTGGCGTCGTCGACGTTCCTGTTCGTGACGGTCGAACAGCTCCCCGCCGGGCTGCTGACCCTCATGGCGCCGGACCTCGACCGCACCACCGCCGCGATCGGCCTGCTGGTCACCGTGTACGCGCTGGTGGTGCTCTTCTCCTCCGTGCCGCTGGCGCACGTGACGCGGAACCTGCAACGGCGGTGGGTGCTCGCCGGGTGCGCGGGCGTCGCCGCGCTGGCGACCCTGTGGGCCGCGCTGACGCCGTCGTACGAGCAGCTCATGGCCGCCCGCGTGGTCACCGCGCTGGCCCAGGCCCTGTTCTGGGTAGCCGTGGTGCCCGCGACGGCGGGCCTCTTCCCGCCCGGGGTGCGCGGCAAGGCGATGGCGCGGCTCGCGATCGGCAACTCGCTCGGCCCGGTGCTCGGCGTGCCCGCCGGGACGTGGCTGGGCGAGGCGACGTCGTGGCGCTGGTCGTTCGCCGCCGTCGCGCTGCTGTCCACGGTGATCATGGTGATCGTCGCCGTGCTGTTCCCGTCCGTCCCCGCGCGCTCCGGCGGCGCCAACGAGGCGCCGTTCGCCTCGATGCGGCGGTTCGTGTCCCTCATGGTCGTCACCGTGCTGGCCGTGACCGGGGCGTTCGGCGTCATCACGTTCGTCACGCAGTACCTCATCGACGTCGCCGGGTTCTCCCAGTCCGACCTGCCCGGGCTCCTGCTGCTGCAGGGCGGTGCCGGCGTCGTCGGCGCCCTCGTGGTGGGACGGTTCCTGGACCGGCGGCCGATCGGCGCATTCCTCGTCGGGGCCGCGGTGCTGATCGTGGCGATGGTGGGGCTGTGGGCCTTCGGGTCGTGGCCCGTGGCAGCCGTGGCGTTCCTGGCGCTGTTCGGGTTCTCGTTCTCCACCGTGCCGCCCGTGCTGGCCCACCGGGTGCTGCTCGTCTCCCCGCGCGGAACCAACATGGGTCAGGCGATCTCGTCGTCGCTGTTCAACCTGGGGATCGCCGGCGGATCCGCGCTCGGGGCGCTGCTCGTGTCCCTGGTCGGGGTGCAGGCGGTGCCGCTGGTCGGGGCCGCCATCGTGCTGCTCGCGCTCCTGGTGGCGCTGTGGGAGGAGCGGACCAACCCGCCGCTCGGGTCGCTCGTGGAGCACGGCGTCGGGGAGGCGCTGGGGGCCGACGGCGGCGGCGGTTCACGCTAAMTSSGPTVDTRRATVVLLALASSTFLFVTVEQLPAGLLTLMAPDLDRTTAAIGLLVTVYALVVLFSSVPLAHVTRNLQRRWVLAGCAGVAALATLWAALTPSYEQLMAARVVTALAQALFWVAVVPATAGLFPPGVRGKAMARLAIGNSLGPVLGVPAGTWLGEATSWRWSFAAVALLSTVIMVIVAVLFPSVPARSGGANEAPFASMRRFVSLMVVTVLAVTGAFGVITFVTQYLIDVAGFSQSDLPGLLLLQGGAGVVGALVVGRFLDRRPIGAFLVGAAVLIVAMVGLWAFGSWPVAAVAFLALFGFSFSTVPPVLAHRVLLVSPRGTNMGQAISSSLFNLGIAGGSALGALLVSLVGVQAVPLVGAAIVLLALLVALWEERTNPPLGSLVEHGVGEALGADGGGGSRPGPT0016620_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOSE_TRANSPORT_II,PGPT0016620-sotB-K08159NANA
AK018_010721452hypothetical proteinATGATCGATCGGTACGACTGGCCGCGTATCGACCAGTTCCGCAACCGCACCGCCGAGCTCCGCCGGATCGAGGCCTGGTGGGCAGCCGACAGCCCCGAACCCCTGGCCGTCTCCGGACGGCGCCGCGTCGGCAAGTCCTGGTTGCTGCACCGCGCCGCCCACGGCAAGCCCGCCATCGTGCTCGTCGCCGACCGGATCGCCCCCGGCATGCAGCTCGACCGGCTCGCCGCCCAGCTCGCCCCACATCTCGGCGTGACACCACGGCTGCAGAGCGCCGCCGACCTGCTGCGGACGCTGTTCCGGCTGGGCCGCGACCAGAAGGTCCTCGCCGTGGTGGACGAGTTCCCCTACCTCCTGGGCACGACGGCGGCCGAGCAGGACCGTCAGCTCACCGAGGTCCAGGCCGTCCTGGAGGAGGAACGCGACCGGTCGCGACTGCAGCTCGTCCTCGCCGGATCGACCCTCTCGGTCATGGAGTCGCTGCAGGCCGAGAAGAACCCGTTGCACGGGCGGACCGTGCCGCTGCGGCTGCGGCCCCTGCGGTTCACCCACGCTGCGGAGTTCATGCCCGACGACGATCCCGAGACGCGCCTGCAGCGTTACGCCGTCGCCGGGGGCATGCCGCGGTACCTGGCAGCCCTCACCGGCCGCCCCCTGCTGGAGGCCGTGACCGACCAGATCGTCGACCCCTACGGCCCGCTGTTCAACGAGCCGTTCGCACTGCTCTCGGCGGAGCTCCGCGAGCCCACCACCTACCTGTCGATCCTCGCCGCGCTCGCTGCCCGGCCGCAGAACGTCGGGGACGTCGCCAACGCGCTGCACGTCCCGGCGCAGCGACTGACCGAGTACCTCGTCACTCTGGAGGAGCTCCACCTGGTCTCACGCCACCGGCCCGTCGGCGCCTCCTCGCGGAGCCGCAACACACAGTGGCGCTGCGACGACGACTTCCTGCGGTTCTGGTTCCGATTCGTGCACCCCCGCCGGGGAGACCTCGAGGCCGGGTTGGACCCCCGGGACTACGTCGAGTCGCAGGTGGCGGCATCGATGGCCGACCACGTGGCCCCGACCTTCGAGCGGGTGCTCCGCGACTGGATCCGTGCCCGGTGGGGAGCGGCCGCCCCCGAGGTCGGGGGCTGGTGGGGGCCCGCGCTCCACCCACTACGACGCGCCCGGACACGGTTCACCGAGGAGATCGACGGCGTCGCGCTTGACGGCTCGTCCGTGCGGGTCGTCGCCGAAGCGAAGTGGACGTCCGCGCCGATGGACGTCGACGCGCTGCGCGCCCTGCGCGAGCACAAGGTCCCCGCGCTGGTACAGGCCGGCCTCGAGGTCGGTGAGGCGGCGATCGTGCTGGCCGCGCGGTCGGGATTCACCGAGCGGCTGGAGGCGGCGGCCGCCTCGGACCCGTCCGTGCGGCTCGTCCCGGCCGCCGAGGTGCTGGCCGCCGGTTGAMIDRYDWPRIDQFRNRTAELRRIEAWWAADSPEPLAVSGRRRVGKSWLLHRAAHGKPAIVLVADRIAPGMQLDRLAAQLAPHLGVTPRLQSAADLLRTLFRLGRDQKVLAVVDEFPYLLGTTAAEQDRQLTEVQAVLEEERDRSRLQLVLAGSTLSVMESLQAEKNPLHGRTVPLRLRPLRFTHAAEFMPDDDPETRLQRYAVAGGMPRYLAALTGRPLLEAVTDQIVDPYGPLFNEPFALLSAELREPTTYLSILAALAARPQNVGDVANALHVPAQRLTEYLVTLEELHLVSRHRPVGASSRSRNTQWRCDDDFLRFWFRFVHPRRGDLEAGLDPRDYVESQVAASMADHVAPTFERVLRDWIRARWGAAAPEVGGWWGPALHPLRRARTRFTEEIDGVALDGSSVRVVAEAKWTSAPMDVDALRALREHKVPALVQAGLEVGEAAIVLAARSGFTERLEAAAASDPSVRLVPAAEVLAAGNANANANANA
AK018_01073558hypothetical proteinATGGTCTGGACTGGCCTCGCCACCGAGGCAGGGATCCCCCGCCGGACGCTCGATCCCTATGTCCAGCTGTTGGAGTCGCTGTATCTCGTCCACACCCTGCCGGCCTGGTCGACGAACCTCACCGCGCGTGTGACCAAGCGGCCGAAGGTGCACCTCGTCGACACGGGCCTGGCGGCCACCCTGCTCGGCGTCTCGGCGGACGCACTGCAGCCGACGGCACCGGGCAACCAAGCGGGAAGCCTGCTCGAGAGCTTCGTGGTCGGCGAACTCGTCCGTCAGGCCGGGTGGAGCGCGGAGGAAGTGTCCATCGGGCATCTCCGCACCAACACCGGCAAGGTCGACGTGATCCTCGAGACCCCGGACGGCCGTGTCGTCGGCGTCGAGGTCAAGGCGGCCGCGACGGTCTCCCGCCGCGACACGCGGCACCTGTCCGCGCTCCGCGACCAACTGGGCGACCGGTTCGTCGCCGGGGTCGTGCTCCACACCGGAAGCGACGCCGTCGCCGTCGGGGACCGGCTGCTCGCGCTCCCGGTCGACTCCCTCTGGCGCTGGCGGTGAMVWTGLATEAGIPRRTLDPYVQLLESLYLVHTLPAWSTNLTARVTKRPKVHLVDTGLAATLLGVSADALQPTAPGNQAGSLLESFVVGELVRQAGWSAEEVSIGHLRTNTGKVDVILETPDGRVVGVEVKAAATVSRRDTRHLSALRDQLGDRFVAGVVLHTGSDAVAVGDRLLALPVDSLWRWRNANANANANA
AK018_010741503uacT_1COG2233Uric acid transporter UacTATGACCGACGCGCCACCCGCCCCAGAAGCCACGGAACCGCAGCAACCCGCCGCTCCGCCCACCAAGCACCCGGTGGACGAGATCCCGCGTCTCGCCCGGCTCTTCCCGCTCGGCCTGCAGCACGTGCTCGCCATGTACGCGGGCGCGGTCGCTGTCCCGCTGATCGTGGGCGGCGCCCTGGGCTACTCGGCCGAGGACCTCGCCTTCCTCATCAGCGCCGACCTGTTCGTCGCGGGCATCGCATCGATCATCCAGTCGGTCGGGTTCTGGCGGTTCGGCGTCCGGTTGCCGCTGATGCAGGGCGTCACGTTCGCCGCCGTCGGCCCGATGATCAGCATCGGCACCACCTACGACATCACCGCGGTCTTCGGCGCCACCATCGCCTGCGGGTTGTTCATGATGCTGATCGCGCCGTTCTTCTCCCAGCTCCTGCGGTTCTTCCCGCCCCTGGTCACGGGCACCGTCATCCTCATCATCGGCGTCTCGCTCATGGACGTCGCCGCCGGCTGGATCACCAACCAGAACGAGTCCGCCGCGCCGTCGGACCTGGGCCTCGCCGCCGCGACGCTCGCGTTCATCGTGCTCGTCGAACGCTTCGCCCCCGCGGCGATCGCGCGCTGCTCGGTGCTGATCGGCCTCGCGCTGGGCACGCTCGCCGCGCTGCCGATGGGCAAGGTCGACTGGTCCGGCGTCGGCGAGGCCGACTGGTTCGCCGTCGTCACGCCGCTGCACTTCGGGGTGCCGACGTTCCCGGTCGCCGCCGTGCTGTCCATGCTGGTGGTGGGCCTGGTGATCATGGTCGAGACCACCGGCGACATGATCGCCGTCGGCGAGATCATCGACAAGAAGGTCACCAAGAAGCGTCTCGCGGACGGCCTGCGCGCCGACGGCCTGTCCACCGTGCTCGGCGGCTTCTTCAACACCTTCCCGTACACGGCGTTCGCGCAGAACGTCGGCCTGGTCAGCCTCACCGGCGTCGCCTCGCGGTTCGTCGCGACGATGGCGGGCGTCATCCTGGTGGTGCTCGGCCTCGTGCCCAAGGTGGGGGCGATCGTCGAGGGCGTGCCCAGCGCGGTGCTCGGCGGCGCAGGGATCGCGCTGTTCGGCATGGTGGCGGCGTCGGGCATCCGCTCGCTGTCCAAGGTGCACTTCACCAGCAAGAACATCCTGGTGGTGGCCGTCTCGCTCGGCGTCGCGATGCTCCCGACGGTCCGTCCCGAGATCTACGCCGACTTCCCGACCTGGTTCCAGCTCATCTTCGACTCCGGCATCAGCGCGGGCGCGATCACCGCGATCCTGCTCAACCTGCTCCTCAACGGCGACCAGCTCAGCGCCCAGGACACGCAGGACGTCTCCCCGCACGACGCGCTGCGCGCCGTGCAGCCGGCCGTGCTCACCTACGACGCCGCGACCGGTACGGGCAAGAAGATCGAGATCCCGGCGCCCGGCGCGACGACCGTGCCCGACGCGCCGGACGGCGGGGACTCGCGCGAGCGCTCCTGAMTDAPPAPEATEPQQPAAPPTKHPVDEIPRLARLFPLGLQHVLAMYAGAVAVPLIVGGALGYSAEDLAFLISADLFVAGIASIIQSVGFWRFGVRLPLMQGVTFAAVGPMISIGTTYDITAVFGATIACGLFMMLIAPFFSQLLRFFPPLVTGTVILIIGVSLMDVAAGWITNQNESAAPSDLGLAAATLAFIVLVERFAPAAIARCSVLIGLALGTLAALPMGKVDWSGVGEADWFAVVTPLHFGVPTFPVAAVLSMLVVGLVIMVETTGDMIAVGEIIDKKVTKKRLADGLRADGLSTVLGGFFNTFPYTAFAQNVGLVSLTGVASRFVATMAGVILVVLGLVPKVGAIVEGVPSAVLGGAGIALFGMVAASGIRSLSKVHFTSKNILVVAVSLGVAMLPTVRPEIYADFPTWFQLIFDSGISAGAITAILLNLLLNGDQLSAQDTQDVSPHDALRAVQPAVLTYDAATGTGKKIEIPAPGATTVPDAPDGGDSRERSPGPT0007330_273DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007330-pubX-K16169NANA
AK018_01076882hypothetical proteinGTGGGTACCGCAGTGGAGAAGGAGCTTCGCCGGCAGATCATGGCGTGGGTCGGGGAGCGCGCTGAGGCCAACGGGGGCTACCTCCACCGGGCCGAGCTTCTCGACTGTCGGATCGGTGACAGAAAGCTGCCTGTCATCGACTACTCCCGAGGGATCCGTAACCCCGCCACCTTCACATCGACACTATCGATCGTGAGCGCTGCCGACGGACCCTACGACGACACCGAGTCCGACGACGGCCTCCTTCACTACGCCTACCGCAAGGGCGACCCGTGGAGCGGTGACAACACGAAGCTCCGTCATGCCATGACGACAGGCATGCCGCTCATCCTCTTCCGCAAGGAAGTCAAGAACATCTACACGCCCGTCTTCCCGGTCTACGTGGTGGATGACGAGCCCGAGAACCGCCAGTTCCTCATCGCTCTCGACGAGGCGTTCCGCTTCATTCCCGACCCCAAGCATCTCAGCGAGCCACAGCGTGAGTACGCGGTGCGCCTCGCCAAACAGCGGCTCCACCAGCCGGCGTTCCGCACCCGGGTCCTGGTCGCCTACGAGACGCGCTGCGCGATCTGCGAGCTCAGGCACGGGGCACTGCTCGACGCCGCTCACATCGTCCCTGATGGACATGAACTGGGCGTCCCGACCGTCAACAACGGGCTCGCACTCTGCAAGATCCACCACGTCGCCTACGACCAGAACATGCTCGGCGTGACGCCCGACTACGAGGTGCGCATCGCGCTCGACCTCCTCAAGGAGATCGACGGGCCGATGCTCAAGCACGGGCTCCAGGAGATGCACGGTCGGCGACTCTCGCTGCCTCGGCGCCCGGCGGACCGTCCGGACCGTGATCACTTGGCTTGGCGCTTTGACCAGTTCAGCTAAMGTAVEKELRRQIMAWVGERAEANGGYLHRAELLDCRIGDRKLPVIDYSRGIRNPATFTSTLSIVSAADGPYDDTESDDGLLHYAYRKGDPWSGDNTKLRHAMTTGMPLILFRKEVKNIYTPVFPVYVVDDEPENRQFLIALDEAFRFIPDPKHLSEPQREYAVRLAKQRLHQPAFRTRVLVAYETRCAICELRHGALLDAAHIVPDGHELGVPTVNNGLALCKIHHVAYDQNMLGVTPDYEVRIALDLLKEIDGPMLKHGLQEMHGRRLSLPRRPADRPDRDHLAWRFDQFSNANANANANA
AK018_010773033rapARNA polymerase-associated protein RapAATGCAGTCGGTCGAGGAGGACCACTACGGGCGTGAGCTCTCGGTGATCTGGGAAATTGAGCCCGGACGCAGCGTCATTCACGAGCAAGGCCTACCAACGGATCTGCGCCCAGACCAGTTCGACGACCCCACCACATTCGCCGCCTACGTTGACGCCCTTCGCTGGGGAGCCCTCACCAGCGCCGACCCCAAGACACTGCAGGCGCCATTCCGCAGCAGCGCATCCGTCGAGGCCTACCAGCTTGAGCCGCTCCGCCGCGCGATCGACTCCCCCCGCGCCAACATGTTGCTTGCTGACGACGTCGGCCTCGGCAAGACCATCGAGGCAGGCCTCGTCATCCAGGAGCTCCTCCTCCGCCATCGCGCCCGCTCGGTGATCGTCGTCTGTCCTGCGGGTCTCGTCATCAAGTGGCAGGAGGAGCTGCGGGACAAGTTCGGCCTCCAGTTCGAGATCGTCAACTCGGAGACGATGAAGACGTTCCGCCGTACCTTCGGTGTGCACGCCAACCCCTTCCGCGTGTACCCGCGGGTGATCGTCTCCATGTCCTGGCTCCCCTCGCCCCGCGCCGAGCGCATGCTTGAGGAGGTCTACGCGAGCGTGAACGATGCTCGGACGGCCGATCGTCGTGCGTTCGACATCCTCGTGGTCGACGAGGCGCATCACGCCGCGCCGGCGACGCCGAGCCGTGCGAGCGCCGAGAAGGCGCGCTACGCCGTCGACAGCAAGCGCACCGTCGCGGTCCGGCGCCTCGCCGAGCTGTGCGAGCATCGCCTGTTCCTGAGCGCCACCCCACACAACGGCTACACCGAATCCTTCACCGCACTGTTGGAGATGATCGACCCGCAGCGATTCGCCCGGGGAGCAGACCTCGACGAGCAGGCGCTCAAGCAAGTGGCGGTACGCCGCCTCAAGCGCGATCTTCCCGACGAGGGCTTCAGGCTCCGCGAGGTCAAGCCGCTCTGGTTCGACCCGTCCACCGACGAGTCAAACGCATACGAGCAGCTGATCGCGTTCACGCGCCGGCGCAACAGCGCGGTCCAGAAGGAACGAGGCAAGCGCGCGTTGGACTTGGCGACGGTGATCCTCAAGAAGCGCTTCTTCTCCTCCCCCGTGGCCTTCGCCGCGACTGCACAGGCGTACCTGGACGCCCGGGGGGACGAGGACGTCAACCTTCCCGACTACGAGGACGTCCTGGGCGACGAAGCGTCCGACGAAGAGGAAGGTCGCGCCGAACAGCCCGAGCTTGAGGCGCTCCGGACTACCAGGCGCGCGCAGGTCGCGCTGACCGACGATGATGTCTCGGACCTTGAGGCGCTCATCGCTTGGGGTATCGGCTACGACGGCCAGCCCGACTCGAAGCTCGAATCGCTGCTCAGGCTGATCGAAGGCGAACTACACGTCCCGGGCCTCGGTTGGGGCGACGAGAGGCTCGTCGTCTTCACCGAGTACGTCTCGACCCTTGAGTGGTTGCGCGACGTTCTTGAGTCCCGGGGTCTTGGCGGCGATCGCCTCGCGGTCATCGACGGTTCCACGAAGGCCGAGACGCGGGAGGAGATCCGCGCACGGTTCACGGCTCCGCCGCGCGACGAGCCCGTCCGCATCCTTCTGGCCACTGACGCCGCGGGCGAAGGCATCGACCTTCAGACCTACTGCCACCGCCTTGTCAGCTTCGACATCCCGTTCAACCCGAACCGACTTGAGCAGCGCATCGGCCGCATCGACCGGTACGGGCAGGAGCACACCCCGCTGGTGTGGCACCCGCGCGCCAGCAAACAGAACACCACCGACTACGCGAAAGACAACGATCTGCTCGCGCGTCTCGCGAGCAAGATCACCAATTCCAAGCACGACGGCATCTCCGCGAACGAGATCATCGCTCCGGACCTCCAGCGCGAACTCGGGTTCGGAGACGCGCCTCCGCGTCGGTCGCAGACCGATGCGGGCGGACAGGTCATCAACCGCGTGCTCCAGGCTGAGCACACACTGGGCCGCAACCTCACCCGTCTCGCGGAGCGCCTTGAGGACTCACGCGACAAGATGCATCTCCACGAGGGCAACCTCCTGCGCGTGTTCGAGGAGGGGCTGCGCGTCTCCGGACAACCTCAACTCCTTGAGGTCTACGACCCCCGCGAGGAAGCCCGCCTGTTCGAGGTGCCGTCCGGGTTGTCGCGCACGTGGGTACCCGCGCTCGCGGGGCTCGCCACGCGCCTCGCACCAGGAGTTCTGCGCCCGCTGACCTTCGACGAGGAGCGTGCTCGCCACCAGACAGATGTCGTGTACGCGCACCTGGGCCATCCTCTGATCCAGCGCGCAGCGCGAGAACTTCGCGGCAAGATCTGGACGCGCACCGGAAACATTCGTGGTGTGAGCGCCGTAGTCGTCGACGGCCTCGACCAGTCCTTCGCTGCCGGAGTCGCGCGCCTGGTTCTCGTCGGCGAGGGCGGCACCCGTCTGCATGAGGAAGTCTTCCTCGCGGGCACCCGCCTGTCCCGTCGCCAGGAGCTCGGGATGGAGAGGGCCGAGGATCTGCTCGTTTCGGCCCTCGACGGGGCCCGGCTCACACAGCCCGCACCCCATGTCCTCTCAAGCCTCGCGACAGACTGGACCGCACAGGCCGGCGACACGGGCGGTCTCCGCAGCCGTGTCATTGCCGCGATAAACCGGCGCGCGGAGCGCCTAAAGTCCGATGTCGAGGCGGACCTTCAGGAACGCCGTGACGCGGACCTCGCCGCCGTCGAGGCGATCTTCGCACGCTTCCGCGAGACGCTTGAGGGCACGCTCGCCGCCGCGGAGCAAGCGCGCGAGACGCGCGAGGAACTGCTGTTTCAGCTGCCGGAGGAAAAGCAGCAGCGCGACCGTGATCTCAACCGCGTCCGCACACGCCTGTCACATCTCTCTGGTGAGCTTCACGCCGAGCGCGACGCGATCGAGCGCCGATACCGGGATGTCCAGCCGCATACTTTCGTCGCCGCGCTCGTGTTCGCCTTGACTCCCGAAGACGCCCAGAAGTTGGAGGCCGATGGTGCCCGTTGAMQSVEEDHYGRELSVIWEIEPGRSVIHEQGLPTDLRPDQFDDPTTFAAYVDALRWGALTSADPKTLQAPFRSSASVEAYQLEPLRRAIDSPRANMLLADDVGLGKTIEAGLVIQELLLRHRARSVIVVCPAGLVIKWQEELRDKFGLQFEIVNSETMKTFRRTFGVHANPFRVYPRVIVSMSWLPSPRAERMLEEVYASVNDARTADRRAFDILVVDEAHHAAPATPSRASAEKARYAVDSKRTVAVRRLAELCEHRLFLSATPHNGYTESFTALLEMIDPQRFARGADLDEQALKQVAVRRLKRDLPDEGFRLREVKPLWFDPSTDESNAYEQLIAFTRRRNSAVQKERGKRALDLATVILKKRFFSSPVAFAATAQAYLDARGDEDVNLPDYEDVLGDEASDEEEGRAEQPELEALRTTRRAQVALTDDDVSDLEALIAWGIGYDGQPDSKLESLLRLIEGELHVPGLGWGDERLVVFTEYVSTLEWLRDVLESRGLGGDRLAVIDGSTKAETREEIRARFTAPPRDEPVRILLATDAAGEGIDLQTYCHRLVSFDIPFNPNRLEQRIGRIDRYGQEHTPLVWHPRASKQNTTDYAKDNDLLARLASKITNSKHDGISANEIIAPDLQRELGFGDAPPRRSQTDAGGQVINRVLQAEHTLGRNLTRLAERLEDSRDKMHLHEGNLLRVFEEGLRVSGQPQLLEVYDPREEARLFEVPSGLSRTWVPALAGLATRLAPGVLRPLTFDEERARHQTDVVYAHLGHPLIQRAARELRGKIWTRTGNIRGVSAVVVDGLDQSFAAGVARLVLVGEGGTRLHEEVFLAGTRLSRRQELGMERAEDLLVSALDGARLTQPAPHVLSSLATDWTAQAGDTGGLRSRVIAAINRRAERLKSDVEADLQERRDADLAAVEAIFARFRETLEGTLAAAEQARETREELLFQLPEEKQQRDRDLNRVRTRLSHLSGELHAERDAIERRYRDVQPHTFVAALVFALTPEDAQKLEADGARNANANANANA
AK018_010784005hypothetical proteinGTGCCCGTTGACCCGTGGGAATGGCTGTCACTGATCGACAGCGACGGCCCCTTCTTGTCGAAGGCCGCGCTCAAGTCCTTTTACCCGTCGGGGCTCCCCAAGCCGGATTCGGACGCCGATGATGTCAACGCCGTCTTCGTCGAGGAGTTCACCCGGTGGGCTTCCGCGTGGGGCGCCGATGGGGACATCTACGAGGCCGCCCGGGGCCGGTGGATCGAGGCGGTCCTGCGGGTGCTTCTCGACTGGTCGGACGATCTCACCCCTGAACCGAGCGGACTGTCGGCGGAGTCACCGAACGGCGCAGTGACAGTGAGCCCGTGGGCCTCCTTGTCGGGCGAGAACGGCCCCGCAGCCCTTGCGACCGTGGTCCCCCGCACCGCGGACCTTCGGGCACCGGGCACCGACGGCTGGTCCGCGAACGCGATCGATCGCATGGCGGTGCTCCTCCGCGAGACCGGCGTGACCGTCGGTATCGTCACCGACGGTCGGTGGTGGGCGCTGGTGTCCGCAGCCAAGGACGTCACTACCGCAAGCGGAGTGTGGGATGCGCTGCTGTGGCGCGAGGAGCGTCCCAGCCGCGACGCTTTCCTCGCACTCGCGAACTACACGTCGATCGCCGGGGGCGCCGCGGAGAAGCGGCTTCCGCTTCTGTTCGCGAAGAGCGTCGCCAGCGCCGAGGAGATCACCGAGGCGCTCGGCGACCAGGTTCGGAGCGCGGTGGAGCTCGTGCTGCAGTCGATGTCCGACACGCACCTGCGCGCGCTAATTGGGGGAGAGGCCTCACCGCTTCCCGCCGACCCGAAGTTGGCGTATGAAGGCGCAGTGACGGTCCTCATGCGCATCGTGTTTCTCCTTTTCGCCGAGGAACGGGGACTCCTTCCCGAGCACGAGCTGTACCGCTCTTCCTATGCGATCTCCCACGTGCGCGAAAAGCTCCAGCAGGAGGCGACCGCCACCTCGGTCGAGGCGCTTGATCACTCCTGGGAGACTTGGCATCGGCTGCTCGCTGCGAGCAACGCCGTCTCCGGCGGAGCTTCGTTCCAGGACATGCGCATGCCTGCGTACGGCGGATCGCTGTTCGACCCAGCGCGATTCCCCTGGCTGCACGCGACTGATGCGCAGGGTCGCCTTCGGGTGCGCCTCACCGACCGCGCCATGCTCGCAGTACTCCGAGCCGTGCAGACTATCGAGGACGGCGCGATGCAACTGTCGTTCCGCGACCTTGACGTCGAGCAGATCGGCTATGTATACGAGGGCCTGCTCGGTTACTCCGCCGAATACGTCCCGACCCTGACGGTGGGGCTTCAGGGCAAGGCAGGATTCGAGCCCGAGATCGCCCTCACGAAACTGGAAGAACTCGCGGAGGGAGCGCCGGCACCCATCGAGTTCGCCAGGGGCCTCGTCGCACACTTGAAGAACAAGCAGGAGCAGTCCAAGCCCAGGACGGCGAACCAGATTGCGAAGGCGTTCGCAGCGGACGATGCGGAGGCCGCAGCCGATGCGCACACGCGCCTGAGGCACGCCCTCCTGGGGGACGACGAGCTCGCGGGAAGGCTGCAGCCCTTCCACGGCCTCATCCGCAACGACCTGCGCGGATTCCCCTACGTAGTTCCCGCTGGCGGTCTCGTGATGACCGAGTCACCGCAGCGAGCGAACACCGGCACCCACTACACACCCCGCTCGTTGGCAGAAAAGGTCGTGCTGCACGCACTGCAGCCCCTCGTCTACTCTCCCGGTCCGCTCGACACCGAGAACAGCAGCAAGTGGCGACTCAAGTCCTCGGCCGAGATACTCGACCTCAAGATCGCCGACATCGCGGCCGGCTCTGGCGCGTTTCTCGTCGCCGCGGCGCGCTACCTCGCGGATCGGCTGATCGAGGCCCGCGCCAACGAAGGCCTCGACGTCGGCAGCGAGTCGGACCTCAAGCGGTGGGCGGTGCGCGAAGTGGTCGCACGATGCCTCTACGGCGCGGATATCAATGGCATGGCCGTCGAGATGTGCAAGCTGTCGCTCTGGCTCATCTCGATGGATCCGGGCAAGCCGTTCTCGTTCGTCGACGATCGCGTGTTCCACGGCAACTCGCTCCTCGGCGTCAGCACCGAGGAACAGTTGCGGGCTCAGCACATCTACCCCGAACGACGCCGCCAGGGCGAACTTCTGAGGCTCGACGTGGACAAGGACTTGGATGATGCGGCGCGCATCCGCCGGGAACTCGCATCGGGCCAGGTGGACGACGCGGACCGGATGCGCTCCACTAAGGCAAAGAAGGCGCTCCTCACGCAGGCCGAGGCGGTGACCGCGAAGCTCCATGATGTCGCCGACGGCATCATCGCCGCCGGGCTGCTGGAGGGCGGCAAGCCCGGTGCGAAGCTCGACGACAAGTACATGCTGCTGGCCGATGCGCTACGCGCTGCCTACCCCGAACCCGATGGCCTTGAGCCCGATCGCTCGAAGCTCGACGCGATCATTGGCCGTGGCCTAGCGCCAACCGTCTGCACCGGCGAGGCGCGATGGAAGCCACTGCATTGGATCCTTGAGGCTCCGGACGTGATTCACACACACGGTGGCTTCGACGCTGTTATTGGAAATCCGCCATTTGTCGCCGGCTCCGATGTCAGCGGAGCTGTCGGTGGCAATGTGCGCGAATGGGTCGTCAACACCATAGGGGCTGGACGTCGTGGGATCGCGGATCTCGTCGCGTACTTCTTCCTGCGCGCGACCGATCTGGGTAGCAATCGGGGTTCGACTATCGGGCTCATCGCGACCAACACGATCGCCCAAGGTGACACACGAGAAGTGGGTCTCGACCAGATGCTTGGCCGCGGCTATCGAATCGTGCGCGCGATCCAGAGCGCTCCCTGGCCCGCGCGCGCCGCCACTCTTGAGTTCGCCGCGGTGTGGGCGACCAACGTCGCGGGAGGTCCGGACGTTCACAGTATCGCGAGCGGCGAGCGGTGCGCTGGCATCTCGTCGCTACTTGAGCCAGCGAGCCGCGTGGCGGGTGATCCTGCCAGACTCGCAGAGAACAAGGCGATCGCCTTCATTGGGACATACATGCATGGCGGGGGCTTCGCCGTGGCGCCAGTCACCGCGCACGACTGGATCACACAGCAGGCAGCGTCGTCACGGGTACTACGCCCTTTCCTAAACGGCGAAGACCTGAACTCCTCTCCAACAATGGTCGCCAGCCGCTGGGCGATTGACTTCACGGGCATGTCTCAACTGGAGGCCCAGGCATACGAACTCCCATACGCACATGCGCTCGCGCACGTACGACCTGAGCGCATGAAGCGGTCTGGCAAGCTCCGAGAGGAGTGGTGGCTATACAAGAGGCCAGCGCCGGCGATGCGGGCCGCGATAGCCCACCTAAGCGAGGCGATCGTCATCACAAGGGTCAGTCGCACGGTGATGCCTGCGATCGTGCCGACCAATCAGGTACTCAGCGACTCACTCACGGTCTTTGCGATGGATTCACCGGCCCACCTGGCGCTATTGTCCTCATCACCGCACCAAGCCTGGGCCATTAAGTACGGCTCCGGTATGCGCAGCGATCCCCGCTATACGCCATCCGATGTTTTCGAAACACTTCCCCGACCGACAACATCCGCTCGCCTAGGCGAATTGGGCACCAAGCTCGACTCTAATCGGCGTGACATAATGCTGCGGCGCGAGCTCGGCCTCACTGCCATCTACAACCTCGTTAATTCCCCGGCTGTTCGCGGGGATGGAGACATCGATCTGATCCGGTCAATACACGTTCAGGTCGACGAGGCCGTTATGGAGGCCTACGGCTGGACCGACATCTCGCTAGGCCACGGCTTCCACACTTACCGCCAGATGGAGCGCTGGACCGTCAGCCCAGCGGCTCGCGTCGAGATCCTCGATCGGCTTCTTGAGGAGAACCACCGTCGCGCGAAACTCGAAGCCGAATCCGCGCCCGCCACGAAGTCGAAGCGCGGCAAGAGCCTCGGCGAGACCGTGAAGCCCGAAGGAGCGATGTTCTAGMPVDPWEWLSLIDSDGPFLSKAALKSFYPSGLPKPDSDADDVNAVFVEEFTRWASAWGADGDIYEAARGRWIEAVLRVLLDWSDDLTPEPSGLSAESPNGAVTVSPWASLSGENGPAALATVVPRTADLRAPGTDGWSANAIDRMAVLLRETGVTVGIVTDGRWWALVSAAKDVTTASGVWDALLWREERPSRDAFLALANYTSIAGGAAEKRLPLLFAKSVASAEEITEALGDQVRSAVELVLQSMSDTHLRALIGGEASPLPADPKLAYEGAVTVLMRIVFLLFAEERGLLPEHELYRSSYAISHVREKLQQEATATSVEALDHSWETWHRLLAASNAVSGGASFQDMRMPAYGGSLFDPARFPWLHATDAQGRLRVRLTDRAMLAVLRAVQTIEDGAMQLSFRDLDVEQIGYVYEGLLGYSAEYVPTLTVGLQGKAGFEPEIALTKLEELAEGAPAPIEFARGLVAHLKNKQEQSKPRTANQIAKAFAADDAEAAADAHTRLRHALLGDDELAGRLQPFHGLIRNDLRGFPYVVPAGGLVMTESPQRANTGTHYTPRSLAEKVVLHALQPLVYSPGPLDTENSSKWRLKSSAEILDLKIADIAAGSGAFLVAAARYLADRLIEARANEGLDVGSESDLKRWAVREVVARCLYGADINGMAVEMCKLSLWLISMDPGKPFSFVDDRVFHGNSLLGVSTEEQLRAQHIYPERRRQGELLRLDVDKDLDDAARIRRELASGQVDDADRMRSTKAKKALLTQAEAVTAKLHDVADGIIAAGLLEGGKPGAKLDDKYMLLADALRAAYPEPDGLEPDRSKLDAIIGRGLAPTVCTGEARWKPLHWILEAPDVIHTHGGFDAVIGNPPFVAGSDVSGAVGGNVREWVVNTIGAGRRGIADLVAYFFLRATDLGSNRGSTIGLIATNTIAQGDTREVGLDQMLGRGYRIVRAIQSAPWPARAATLEFAAVWATNVAGGPDVHSIASGERCAGISSLLEPASRVAGDPARLAENKAIAFIGTYMHGGGFAVAPVTAHDWITQQAASSRVLRPFLNGEDLNSSPTMVASRWAIDFTGMSQLEAQAYELPYAHALAHVRPERMKRSGKLREEWWLYKRPAPAMRAAIAHLSEAIVITRVSRTVMPAIVPTNQVLSDSLTVFAMDSPAHLALLSSSPHQAWAIKYGSGMRSDPRYTPSDVFETLPRPTTSARLGELGTKLDSNRRDIMLRRELGLTAIYNLVNSPAVRGDGDIDLIRSIHVQVDEAVMEAYGWTDISLGHGFHTYRQMERWTVSPAARVEILDRLLEENHRRAKLEAESAPATKSKRGKSLGETVKPEGAMFNANANANANA
AK018_010793702hypothetical proteinGTGGCCACCTCCCTCCCGACCAGGTCCGCGCAAGTGCGCGACGAGCTCGGTGACCTGATCGCCCGAGATCTCGTCGGTCCGTGGGACGGGCCCGACGAGACCATCATCGGCACGCCTCGCGCTCGATATCTCGCGGGCGCGCTCGCCCCGATCTCGCTTCTCGACGGCGGCGCGACGCCCGTATCGCCCCCTTCCGAAAGCACCTCGGCGGGGCTTGAGGACGTCCGGTCGGACGAGTCGCTCGCCGTCACGGACCTCACGGAAGCTCACGAAGTCCATGGGGTCCCTTCCGACGAGGATGAGTCCATCGGCGAGGCCTTGCCGAGCGAGCCCGATGAGGACCGCGGGCCCGAGTCGAAGATCATCGCGCCCTCGTCGATGGGGCTGCGCTTCCAGGTGCCGACGGATACGGGCGTTCTTCGCTTCACGGCACGCTGGGGCCGGTACGCGTCGCGACGCGAGGCGGATGAACAGGGAAGAGTCCGGACTTACTACGACCGCACGGCCTTCGAGAAGGCCGCCGAGATCGATCTCTGCCTGATCGCCGACGGCGGTTCCGCACGCCACGAAGTGTCCGACGATGTCGCAATCGACATTGAAGTCTTCGACTATGAGGGCCGTCGCGTCGTCGAGGCAGCGCTGCTCAACATCGCTGTCACCGGTCACGAGCTCCCGCCCCGCCTGTGGCTGTTCCAAGCCGAGCTTGAGGTTACGGCTCCGGCCGGCAGCGACGTCTTCTTGCCAACCCGCGACGCGATGGTCTCCGACCGAGCCTCCCGGGACCCCGAAGTACGTCGCCTCGACCTCCTCTACCGCGACCACCTTGAGTTTGCCGTCGGTCGCACTGCATCCGCGGACTGGGACGTATCGGCGTCCGACCCACGCCGTGCTATCACGGTGAGGACCACGTGGCTGCCCACCGCCGAGTTACCACAGACCCGGGCACCCATAGTTCCCGGTGCGGTGCTCAGCATGCACGCTCTCATGGATGCGACGCCCGCCGAGCTTGAAGCGAGCCTGACGCCTCTCATCGACGGCTACGGCACCTGGCTCGGAGACCGCGGGACCGAGAACACCAAGCTCCCCGAATGGCTCCAGGAGCAGGGACGTATTGGACTCGAGGACGGAGAGGCCGCGCTGACCCGCCTCCGCGCCGGGCTTGAGCTGCTGACCTCCAACACCCAAGCTCAGCGCGCGTTCCGGTTCATGAACAGAACGATGCGCGACCAACGCATGAGGTCGGAGGTCGCTGCCGAGCGCATCAAGCTAAAGGACTTGTCCCTCGCCGATGCCGTTGCCGCCGTGGACGCGCAAGGCGACAAGGTCGCTTCGTGGCGCGCCTTCCAGCTCGCGTTCATCCTCATGCAGCTGCCTTCGGTGGTCGACCCGACCCATGTGCGCCGCTCGACGGACTTCGCGCGCGCGGAGCTGTTGTTCTTCCCCACTGGTGGTGGCAAGACCGAAGCCTATCTCGGACTGGCGGCGTTCACCTTCGGCATCCGTCGTCTCCAGGGGAAAGTCGACACCCCCGACGGCCAACTCGACGGCGGTGACGGCGTCGCCGTGCTCATGCGGTACACGCTGCGCCTGCTGACCTCGCAGCAGTTCCTGCGCGCGACGACGCTCATGTGCGCAGCCGAGCTGGTGCGCCGCGAGGACCCGGCCACGTGGGGCGAGGCGCCGTTCAGTATCGGCCTGTGGGTCGGTTCGGGCGTCAGTCCGAAGCGGTACTCCGAGGCGGCCAAGCAGGTGAAGGACGTCCGTGAAGGCGACGGCAGCTCCGCCTTCGGCCTCTCAGTCCTGCAGTTCGACCACTGCCCGTGGTGTGGCACCGCCATCAACCCGAAGTCGAACGTCGAGGCCGACGGCGTCGCCAAGCGCATCCGCGTCTTCTGTGGCGACCGCCGACGCCGTTGTCCCTTTGCGGCCGGAGGATCCGCCGAGGTCGGGCTCCCCGTCCTCACCGTTGACGACGAGATCTACCGCCACCCGCCGACCTTCCTACTCGCCACTGTCGACAAGTTCGCCCGCCTCGCCCGCGAGGGCGAGGCCGCCAGCCTGTTCGGCTACGTCGCGAAGCAGTGCCCGCGACATGGCTACAAGCACCTCGACACTGACGGCACCGTCTGCGGCGCAGACTCGCACAACACGACGAGGGCCAACGGGCGCACCTACCCGCCGACACAGGTCAAGCCGGTCGGGCGCCTGCGTCCGCCAGACCTCATCATCCAGGACGAGCTCCACCTCATCACGGGTGCGCTCGGCACCGCGGTCGGTCTGTTCGAGGGCGCGATCGACGTCCTGTCGAGCTGGGAGCTCGGCGCCCCCGGCGAATCGAAGCCCGTCAAGCCGCTGGTGATCGCCTCAACGGCCACCGTGCGCAAGGCCGGCGAGCAAGTGCAGCGCCTATACGCGCGTGAGGTCGAGGTATTCCCCCCGCAGGTGCTCAGCGTAAGCGACACGTTCTTCTCCAAGGAGGTATCGCTGGACGACGCGCCCGGGCGCCGCTATCTGGGCGTCTGCCTTCACGGGGCACGGCTCACTCTGGCGGAGATCCGCCTCAGCGAGATCCTTCTGCTGGCCGGGCAGAAGCTGTTCGACGAGCACGGCGCGGCGGCAGAGCCGTATCTCACGCTCGTTGACTACTTCTCGGCCACGCGCGAGCTCGCGGGCATGCGTCGCTACCTTGAGGACGACGTCACCACCCGCGTCAGTAACCCCGACAAGGCAAGTGGCTATCCGCGACGCCCGACGCCGCTCAGGCTCGGCGAACTGACGTCGCGCATCTCGTCCTCGAAGATCGGTAAGACGCTCACCCACCTCGCCTCGCCGTTCGAGGTGGACTCAGACACGACGGTGGGCCGCGCCGCGATCGGAGCGAAGCTCAAGGCTGGCGAGAAGCTGCCCGATCGGGAGCTGCCCTACGACGTCGTGCTCGCCACCTCGATGCTCCAGGTAGGTGTCGATGTGCCGCGCCTCGGGCTGATGATGATTGTCGGGCAGCCGAAGAACACGGCGGAGTACATCCAGGCCTCGTCGCGCGTCGGCCGTGACGGGGCGAAGCCCGGGCTGGTGGTGACTCTCGCGAACCGCGCACGTCCCCGCGACATGGCGCACTACGAGCAGTTCGAGCACTACCACGACACTTTCTACGCGAACGTGGAGGCGCTGTCGGTGACGCCGTTCTCTGAGGCGGCGCTTGAGCGCGGACTGACCGGGCTCCTCGTGTCCGCCGCGCGCGTGGTCGAGTCGACCCAGGAGGCTGCGATATCGCTCTCCCCCGACGTGGTTGCCGGTGCCGGGCGCATCGTCGCCCGCCGCGCGGCGATCGACACGCTCGTCGACAAACTGGTCGCCCGTACTGCCGTGGCCGCCGGCGACGAGGACGCACACTCCCCGTCAAGCATGAAAAGCAAGCTGGTGCTTCGCCTCGACAAGTGGACGGACCAGGCGACGGCCGTGTCTGGGGCTCTCACATACGCGAAGAAGTCGCTGCCAAACCAGTTGGTGACTCCCTTGCTCGTGAGCCCTGAGGACTCCATCAGTGACGAGGGCGACCGGCTCTTTCAGGTGGCCAACTCGATGCGCGAGGTGCAGCCCGAGATCGACCTCCTCGTCTCGCCGTTCCCCGACAAGCTTGCCGAGCCGCTGAGCGCGGCCACGCCGCAGTGGACCTTCACCGCCAAGAAGGATGCGAAGTGAMATSLPTRSAQVRDELGDLIARDLVGPWDGPDETIIGTPRARYLAGALAPISLLDGGATPVSPPSESTSAGLEDVRSDESLAVTDLTEAHEVHGVPSDEDESIGEALPSEPDEDRGPESKIIAPSSMGLRFQVPTDTGVLRFTARWGRYASRREADEQGRVRTYYDRTAFEKAAEIDLCLIADGGSARHEVSDDVAIDIEVFDYEGRRVVEAALLNIAVTGHELPPRLWLFQAELEVTAPAGSDVFLPTRDAMVSDRASRDPEVRRLDLLYRDHLEFAVGRTASADWDVSASDPRRAITVRTTWLPTAELPQTRAPIVPGAVLSMHALMDATPAELEASLTPLIDGYGTWLGDRGTENTKLPEWLQEQGRIGLEDGEAALTRLRAGLELLTSNTQAQRAFRFMNRTMRDQRMRSEVAAERIKLKDLSLADAVAAVDAQGDKVASWRAFQLAFILMQLPSVVDPTHVRRSTDFARAELLFFPTGGGKTEAYLGLAAFTFGIRRLQGKVDTPDGQLDGGDGVAVLMRYTLRLLTSQQFLRATTLMCAAELVRREDPATWGEAPFSIGLWVGSGVSPKRYSEAAKQVKDVREGDGSSAFGLSVLQFDHCPWCGTAINPKSNVEADGVAKRIRVFCGDRRRRCPFAAGGSAEVGLPVLTVDDEIYRHPPTFLLATVDKFARLAREGEAASLFGYVAKQCPRHGYKHLDTDGTVCGADSHNTTRANGRTYPPTQVKPVGRLRPPDLIIQDELHLITGALGTAVGLFEGAIDVLSSWELGAPGESKPVKPLVIASTATVRKAGEQVQRLYAREVEVFPPQVLSVSDTFFSKEVSLDDAPGRRYLGVCLHGARLTLAEIRLSEILLLAGQKLFDEHGAAAEPYLTLVDYFSATRELAGMRRYLEDDVTTRVSNPDKASGYPRRPTPLRLGELTSRISSSKIGKTLTHLASPFEVDSDTTVGRAAIGAKLKAGEKLPDRELPYDVVLATSMLQVGVDVPRLGLMMIVGQPKNTAEYIQASSRVGRDGAKPGLVVTLANRARPRDMAHYEQFEHYHDTFYANVEALSVTPFSEAALERGLTGLLVSAARVVESTQEAAISLSPDVVAGAGRIVARRAAIDTLVDKLVARTAVAAGDEDAHSPSSMKSKLVLRLDKWTDQATAVSGALTYAKKSLPNQLVTPLLVSPEDSISDEGDRLFQVANSMREVQPEIDLLVSPFPDKLAEPLSAATPQWTFTAKKDAKNANANANANA
AK018_010802097hypothetical proteinGTGACCGAAGAGAACACGACCGCCGCAGCGCCGTCTGGCACCGTCGACGAGCCCGGCGTGGGCATCGCGGGCGACGTCGCAGATCCATACTCCGGCGCCGGAGAGCCAAAGAATCGTGCGCGGGTCGGCTCGATCCGACCCAACGCGATGCTGTTTACCTCCGGCATCGGCGCCACCGTCGACCTTCCCCAGATCGCTGTGATGCCTCAGGGCATCGACGCGTGGGACAAGGCGTACGCGCGGATGGGCGGCGAGCCGCCACTCGTACTCGTGCCGCGGCTCTTGGAGGCCGTTCGCCGACAGCTCGGCCACCAGGTCGGCGAGCTGCGGCAGCCGCCGTGGCTTCCGGACGAGCTAGGTGGCGACACCACACCGATCGGCATCCCGACCCGCGTCTTCCCGCAGTGGCTCCGGTGCACCGGATGCGATCTGCTCGCGCCGATATCCACTAGGGCTTTCGAGTTCGAGAACACGCGGAAGCATCGCCCAGACCTCGCTCGCTTCATCCACCGAGACTGCAAGGGGCGGAGCGGGAAGCAGGGAAAGTCGACGCAGAAGGCGCGAACGCGTGTCGCTGTGCCTGCGCGCTACCTGATCGCATGCACCAACGGACACCTGGATGAGTTCCCCTACGTCGACTGGGTGCACGGCGCCGACAAACACCGCCAGGAGTGCGTCGCACAGCCGAAGATGCGGATGCTTGAATGGCGCTCAAACCTCGGGCCGCAGGTCTCGATCGAGTGCGTCAACTGCAAGGCGAGGCGCAACGTCGCAGAGTTGACCCGAGCCGGAGGCGAAGGCGCGCTGCCCAATTGCCGCGGGCGTCACCCGCACCTGCCCTCTTACGCGTCGATGGATGACCCGTGCAAGGGTGAGGTGCGGCTGATGCTGCTCGGTGCCGCCAACCAGTGGTTCCCTGCGACGGTGAGCGTGCTGGTGTTGCCCTCAAGGAAGGTGCCTCAGCCCGCAGATGTGGTCACTGAGGTCTTGGGCCTGCCGCCAGCACAATTGGCAGATCTTCAGTCGCCCGACGACGTCAAGGCCTGGATCAAGTTCGGCCCCAAGGTGATGACGGGCAAGTTCGACGGGATTTCGGCCGAGGGCGTGTGGAACGCGGTGCGGATCGCTCGAGGCGAGATCCCGCCAGTCGCACCCGCCCCTGCTGGGCCTGCCGGCTACGACCCGAACTACCTTCTCGCCCCTGAGTGGGAGACCCTGACCCATGCCACGGAGTTCCTCGCCGAGGATCGCCGCAACGGATTCAAGGTGCACCCGGTACCTGTTGCAACCTCCCTGGGACGCGTCGTTAGCGAGGTGGTCGCCGTGGACAGCATCCGCAAGGCGAACGCCTTCACCGGATTCACGCGCATCGATGCCCTCGATCGCGTCGGTGACGATGCAGCGCGCATCGCGCCGATTGCGCTGTCAGGGAAGCCTGCGTGGGTACCCGCCACCGAGGACCGCGGCGAGGGCGTGTTCCTCCGGTTCGACGAGGGGCGCGTCGAGGCGTGGGAGGAGGGTGTCCTCAAGACCGATGTGTGGACATCCCACCGTGCGGCGCACGAGAGGAACCTCGCCCGGCGCCAGAGCCGGACCGCCTCAGAGCTCGATCCGCAAGAGCGGTTGCCCCCGCCCCGATACTGGGCCCTGCACACCCTGTCGCACCTGTTGATCCGCGAGATGGCGATGTCGAGCGGCTACGGGTCGGCGTCGCTCTCGGAGCGCCTGTATGCATGGCGCGCGTCCGAAGGCCGCGACCCTGCCGCGGGCATCCTCATCACAACGACCTCGCCCGACAGCGAGGGCACCCTCGGCGGGCTCGTCGACCTGGCACGCACGGAACGGCTTGAGGCGGTGATGCACGATGCGCTACACCGCGCGCAGCGGTGCTCTTCGGATCCGATCTGCGCCCACCGCGTGCCGAAGGGTCAAGAGGACTTCCTCCACGGCGCGGCATGCCACTTCTGCGGCTTCCTATCGGAAACGTCGTGCGAGCGCGCTAACCGCTTCTTGGACCGGCGGTTCGTCCTCCGACTTCGTGGCGGGTCCGTCGACGTAACTCCCCTGCTCTCGGACGTGACGGTGAGCGGCCGCTGAMTEENTTAAAPSGTVDEPGVGIAGDVADPYSGAGEPKNRARVGSIRPNAMLFTSGIGATVDLPQIAVMPQGIDAWDKAYARMGGEPPLVLVPRLLEAVRRQLGHQVGELRQPPWLPDELGGDTTPIGIPTRVFPQWLRCTGCDLLAPISTRAFEFENTRKHRPDLARFIHRDCKGRSGKQGKSTQKARTRVAVPARYLIACTNGHLDEFPYVDWVHGADKHRQECVAQPKMRMLEWRSNLGPQVSIECVNCKARRNVAELTRAGGEGALPNCRGRHPHLPSYASMDDPCKGEVRLMLLGAANQWFPATVSVLVLPSRKVPQPADVVTEVLGLPPAQLADLQSPDDVKAWIKFGPKVMTGKFDGISAEGVWNAVRIARGEIPPVAPAPAGPAGYDPNYLLAPEWETLTHATEFLAEDRRNGFKVHPVPVATSLGRVVSEVVAVDSIRKANAFTGFTRIDALDRVGDDAARIAPIALSGKPAWVPATEDRGEGVFLRFDEGRVEAWEEGVLKTDVWTSHRAAHERNLARRQSRTASELDPQERLPPPRYWALHTLSHLLIREMAMSSGYGSASLSERLYAWRASEGRDPAAGILITTTSPDSEGTLGGLVDLARTERLEAVMHDALHRAQRCSSDPICAHRVPKGQEDFLHGAACHFCGFLSETSCERANRFLDRRFVLRLRGGSVDVTPLLSDVTVSGRNANANANANA
AK018_01081702clsA_2Cardiolipin synthase AATGGCAGATCCATTCATCGAGCTCGCGTCCTCGCTGACGCCGGCGCTGGCGCTCAAGATCGCATCGGGTCTTGAGATCGACGGCCGGCTTGCGAAGGCTGTCGAAAAGCTGCCGGCCGATTCGCCCGCGCGTGGGGCACTGCGGGCCGCTCACGAGGCTGTCGGCACGGCCGCTCTCACTGGCGTGCTGCGTGGGTTCGCGGTCGCTGCAGATGCTCAAGGGAATTACATCAGGGCCGTTTGGAGCGGACCCACATTCGACGGCGACGGCGACCACACCACGTCGGCGCTTGCGCACCTGATCGACGACGCGAAAGAGGACGTCTTCGCCTCCACCTACTCGGCGACGCACGACTCCGCGTTCGTCGACGCGCTGTGGCGCGCCATCGCTCGGGGAGTTCAGACAACGCTGCTCGTCGATTCATCGATCAACGGGGGCGAGACGGTCACAATGCTGAGGGACAGGCTTGAGGGGGCTCGGTTCTGGACATACCTCCCCCCGGGCGGGAAGTACGGCGTTCAGCACTCCAAGGTAGTCATCGTCGATTCACGCAGGGCATTCATTACGAGCGCCAACCTCTCGAAGGCTGGCGCCGAGCGCAACCTTGAAGCCGGGGTGCTCATACACGAAGCCACGTTCGCATCACAGATGCGGCAACGTTTCGCCAAACTGAAGACATCAGGATCAATCGAGGAATTCTGAMADPFIELASSLTPALALKIASGLEIDGRLAKAVEKLPADSPARGALRAAHEAVGTAALTGVLRGFAVAADAQGNYIRAVWSGPTFDGDGDHTTSALAHLIDDAKEDVFASTYSATHDSAFVDALWRAIARGVQTTLLVDSSINGGETVTMLRDRLEGARFWTYLPPGGKYGVQHSKVVIVDSRRAFITSANLSKAGAERNLEAGVLIHEATFASQMRQRFAKLKTSGSIEEFNANANANANA
AK018_010822085hypothetical proteinATGACGGAAGAGCAAGAACCATTCACCTTTAGCTGGCTCGCACTGAAACTGCTCGGCCGGAATCTCTATTCGAACCCCTGGTCAGCGTTGTCTGAGCTTGCCGCAAATGGACTCGACGCGGGTGCACAAACCGTGTACGTGTATGTCGACGCGCGACATAAGTCCTCGACAACCATCGAAGTGATCGACGACGGCTCTGGCATGAGTCGAGAAGACATCAGAACCTACGTTAAGGTGGGGTTCAACAAGAGGGAGCACCAAGGGGTCACCGCAACGGCACCCGCCCCCAAGGTGAAGGGCCGCAAGGGGATCGGCAAGCTTGCAGCGCTCTACCTCTCGAAGCGCTTCTTCCTCGCAACGAAGCACGCCGAGGGAGCCTCCGAATGGGAACTTGACGCGCGAGACAACGCGATCGCGGATGACGACTTCCCCGCACTTGAGGGTACAAGCAGCATTCCCTCAACCCCGAACGACGGGCTGTGGTCCGAACTTGACTCTGGCACACGGCTCACCCTCGTCCAGGTGGACCTGACAGGATACGGTCCGCAAGCGATCAATGCACTCGGATCGCGCCTCGCCAACCAGTTCCTCCTCCCGGAAAGCGCCGCACCACAGATCAAATTATGGGTTCAGACTGGGAACGACCAGGAGCCAGACTTTAAATCAGTGCACAAGCAAGTGGCATACGGCAATCTGGTGGAGATCGTCACGAACTTCAGCGAACCCGACCTTGTTCCCGCACACTTCAGTATGGAGTTGCCGGAAGTGCGGCTCCCGGCGAAGGGTCTTCCCACTGGCGAGTACAGGCTCGGGCAACGCGTCACTCGCTTTACCGCAGACAGGATCCAAGACGAGGCGCTGCAGGAGCTTGGGGAATCAGTAGACCAAGAGAGCCACAAGTATCTCGGACGCCCATACGTGCTGACGGGCTGGATTGGCGTCCATGCCACGATCCTAAGCAAAGAAGCACAGAAGAATGATCCCAGCTTCGAGAGAAACAAGTTCTACAACCCAGCGCAATTGCGGGTCTACGTACGCGACAAGCTCGCAAGCGAGCACCTTCTCGGCCAGCTCGGCATCACCGGCACCTACATTAACTACATAGAAGGCGAGATTTCATTTGACCTGCTCGACGACGACAACTTTGACGACATCGCGACCTCCAACCGACAAGACTTTGATCAGACCGATCTCCGCGTAACGCTCTTGCGAGGGCTTGTCCGCCCGATCGTGCTTGATCTCATCAACAAGCGAGACCAGATCGCCACCAATATATCCGAGATGGTGGTCGCAGAGAAGGAACGAGTCGACAGCGCTGCCAAGCAACAATTTTCAGAGCAATTGGAAGCCGACCTCGCACGCCACCAGGAGCTTTCTGTTGAGGCCCGCGCTGAGCTCCAAACAGTGATCGTCAACAAGGTCGAAGGCGAGTTGACCGTCAAGCGTGACTACAGAATCTTCATCTCGCACTCACGTGACGACTTGCCGTTTGCTCGTCTCATCGATGAAGCACTCCGAGCGCAAGGCGCCTCCACGGACGAGATTTTCTTCACCTCCAGACCGGGAGAGACTGCGCAAGTCCTCGACGAGCGCGCTCTTGCCACCGTGATCAAAGAATGCATCACAAGTGCCAACACGCTGGTCTTTTACCTAACCAGCAAGAACTTCCTAAGTAGCCAATTCTGCTTGTTCGAGGGTGGAGCGGGCTGGGCTACCCGGGCTGTAAGCGATTATTTGAAGCTAAACATGGAATTCGAGTCGATTCCAGCGTTCCTTACGAATGGCAAATCTGAGCTCTCGCTGATTGCTAACAGCAAAATTGAGCTAACGCCTACGCTCCACAACTACATCGCGGCCGGGCTACTCAATCCCATGATCGCCCACCTCAACCGCGGCCGACGTATCGCAGACGAGAGCTTGATTCCGCTTTTCTCCACTGCGGATATTCCGACGGAGATCGAAATGAAGGCAGCGGACAAGACTCCGGAAGACTACTTGGATCCGGCTATCGTTAATCAGTGGAAGCTGCTCGTTGAACCAGCACTCGCCGATTACCTTGAGTCGTACTCAGACCCTGGGGCCTAAMTEEQEPFTFSWLALKLLGRNLYSNPWSALSELAANGLDAGAQTVYVYVDARHKSSTTIEVIDDGSGMSREDIRTYVKVGFNKREHQGVTATAPAPKVKGRKGIGKLAALYLSKRFFLATKHAEGASEWELDARDNAIADDDFPALEGTSSIPSTPNDGLWSELDSGTRLTLVQVDLTGYGPQAINALGSRLANQFLLPESAAPQIKLWVQTGNDQEPDFKSVHKQVAYGNLVEIVTNFSEPDLVPAHFSMELPEVRLPAKGLPTGEYRLGQRVTRFTADRIQDEALQELGESVDQESHKYLGRPYVLTGWIGVHATILSKEAQKNDPSFERNKFYNPAQLRVYVRDKLASEHLLGQLGITGTYINYIEGEISFDLLDDDNFDDIATSNRQDFDQTDLRVTLLRGLVRPIVLDLINKRDQIATNISEMVVAEKERVDSAAKQQFSEQLEADLARHQELSVEARAELQTVIVNKVEGELTVKRDYRIFISHSRDDLPFARLIDEALRAQGASTDEIFFTSRPGETAQVLDERALATVIKECITSANTLVFYLTSKNFLSSQFCLFEGGAGWATRAVSDYLKLNMEFESIPAFLTNGKSELSLIANSKIELTPTLHNYIAAGLLNPMIAHLNRGRRIADESLIPLFSTADIPTEIEMKAADKTPEDYLDPAIVNQWKLLVEPALADYLESYSDPGANANANANANA
AK018_010831269ydiOCOG0270putative BsuMI modification methylase subunit YdiOATGTGTCGTGAGGCGTTCTCCCGCGCGACAGGGCCTACCAAGTATAGCGGCGCACATCAAGTAGGATGGCGCTTCGATCGAAGCGAGCCCACAGCTCGCGGAAGGGCATGGATGGCCAGCAAGCACCCCCTTCGCGGTCGACGCAGGCCTGCGTTCGAGTGTGGCGAACAACACGTGTCCGTGGTGGACCTCTTCGCAGGATGCGGAGGCTTGACGCTCGGCGTGGCCCAAGCGGCACAGGACAGTGGTCTCGCTCTCAGCGTGCCACTAGCCGTGGACTTCGAACAGGCTCCCGCAACGGTGTTCAGGGAGAACTTCCCGAAGGCAAATATTCAAGTCGCATCGGTTGAGAGCTACTTCGACGGTATGCTTGGTGCCGAACCGACGCCCACCGAACTCAAGACACGCAAGCAGGTCGGTGACGTCGACCTGCTCATCGGCGGCCCACCGTGCCAGGGACACTCGAACCTCAACAACCACACTCGAAGGGACGACCCCAAGAACCGGCTTTATCTGCGGATGGCGCGGGCAGCCGAGATCCTGCGCCCTAAAGTGATGGTGGTCGAGAACGTGCCCGCGGTCGTACACGACTCCCAGCAGGTCGTTGCCCGGACTCAATCCCATCTCGAGGCTATCGGATACCACGTCGCCGCGAAGCTTGTTGAACTTGTTCGACTTGGGATTCCGCAGACGCGTCGACGCCATGTCCTGATTGCGGTGCGACCGGAAGCTCTTGTCGATGACCTATCGGTTGCGGATCTCCTGGAGTTCGAACCCCAGCCGACCCACGACCTCCGATGGGCAATCGGCGATCTGGAGAATGTCCGCTCGGAGCGATGGATCGATGCGCCATCGAAAATGAGCCCTGAGAACCGGTCGCGGATCCAGTGGCTTATCGACGAGGATGCGGTAAACCTGCCGAACGACCTGCGCCCCGCGTGCCATCGCGGAATTCATTCGTACATCTCGATGTACGGCCGCCTCACCTGGAACCAGCCAGCACAGACGATCACCAGTGGCTTTGGAAGCATGGGGCAGGGACGTTACGGGCATCCCTCGCAGCCGCGAACGCTGACGCCTCATGAGGCCGCTCGCATTCAGGGGTTCCCCGACTACTTCCAGTTCGACGTGACTGTGACTCGCACGCAGCTCGCCATGATCGTCGGCAATGCGGTTCCACCGGCACTCTCCCGTGTCTTGACGGCGCGTCTATTGGATTCCGGCATCCTCGGCCACAATGCCATCGAGGAGTTGGAAGAGCCCGCCTAAMCREAFSRATGPTKYSGAHQVGWRFDRSEPTARGRAWMASKHPLRGRRRPAFECGEQHVSVVDLFAGCGGLTLGVAQAAQDSGLALSVPLAVDFEQAPATVFRENFPKANIQVASVESYFDGMLGAEPTPTELKTRKQVGDVDLLIGGPPCQGHSNLNNHTRRDDPKNRLYLRMARAAEILRPKVMVVENVPAVVHDSQQVVARTQSHLEAIGYHVAAKLVELVRLGIPQTRRRHVLIAVRPEALVDDLSVADLLEFEPQPTHDLRWAIGDLENVRSERWIDAPSKMSPENRSRIQWLIDEDAVNLPNDLRPACHRGIHSYISMYGRLTWNQPAQTITSGFGSMGQGRYGHPSQPRTLTPHEAARIQGFPDYFQFDVTVTRTQLAMIVGNAVPPALSRVLTARLLDSGILGHNAIEELEEPAPGPT0020015_4259DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0020015-dcm-K00558NANA
AK018_01084174hypothetical proteinGTGTCGTTCATGCGTGACTTGGACACTGAGTTCCGGTCCCACTCGGGCTTGGCGGATCGGCGCTACTACAAGATCTTTTGCTTCTCGATCCATCCGTTTCCCGTGCTCGTCCTCGGGCTCAACCCAGGAGGCGGAACCGACAGGACCGACCTCAATGCCTCCGACGGCTTCTAGMSFMRDLDTEFRSHSGLADRRYYKIFCFSIHPFPVLVLGLNPGGGTDRTDLNASDGFNANANANANA
AK018_01085168hypothetical proteinATGCTTGAACTCCTCAAGCAGGAGTACCGAGGCCTCAGTGCCGCCGAGCTGGAGGCCATGCGGGTCGACCTCAGCGCACCCAAGGTCGAGTTCAGCTCGGCCAGCGTCGTCGGGGGACTGCGGGCTGAGAAGGCAGTTCAAGCAAAGCATGAGACGCCGGAGGCGTAGMLELLKQEYRGLSAAELEAMRVDLSAPKVEFSSASVVGGLRAEKAVQAKHETPEANANANANANA
AK018_010861671hypothetical proteinATGCCCCGCACCTACCCCGACACGCCCGACTTCCCGGACGACGGCGGAGCGGAGCGCGCGGTGTTCGAGGCGCTGCGCGAGCAGCTCCCGGACGAGGCGGTGCTGCTGCACGGCGTGCACCTGCAGGAGTACGAGCAGGAGTACGAGATCGACCTGCTCGTCGCCTGGCCGGACGTCGGGCTGGCCGTCATCGAGGTCAAGGCCGGGCACATCGAACGGTCCGGCGGGTCCTGGTATCAGGGCAGCGGGTCGGCGCAGCGCCAGATCAGTCCCGTGGCGCAGGTGCAGGGTGCCCGGCACGCGCTGCAGACGCTGCTGCGACAGCGCGGGCTGCTCGCGGCGTCGGCCCGCACCGCCCACCTGGTGGCGTTCCCGCACCGGTACGTCTCCGGCGGGTGGGACTCCCTCGACCTGCCGCGGGACATGCTGATCGGGCGGGACGACGTCGAGGCGCCGGGAGCCGTCGCCGAGCGGGTCAAGCACGCCGTCGAACGCCACGGCCAGGGGCACGCCCCGCTCGACCACGGGGCCGTCGAGGGGCTGGTCCTCGCTGTCGCGGGCGGATTCCCGAGCCAGTCGGAACACCTGACCCGCGCCGTCGAGCACGAGACCCGCCTGGAGCAGATGACCCGCGACCAGGCCCGCATCCTCGACGCGCTGTCCCAGGTGCGGCGCATGCGGGTCGTCGGCGGGGCGGGGTCCGGCAAGACGTATCTCGCCCTGGAGCAGGCCCGACGGCGGACCCGGGCGGGCGAGCGCGTCGCCCTGCTGTGCTACTCGCGCGGCCTGGGCCGGTACTTCCAACGCATCACCGCGACCTGGCCCCGGCGTGACCGGCCCGCCTACGTCGGGCTGTTCCACGACCTGCCGATCTCGTGGGGCGCGTCCGGCGGGCGCGACGACCACCCCGACTACTGGGAGCACCACCTGCCGACGGAGCTCGGCCGACTCGCCGAGGAACAGGCGCCCGAGGAGCTGTTCGACGCCGTCGTCGTCGACGAGGCGCAGGACTTCGGCGACCTGTGGTGGCCCTCGCTGCTGCAGTGCCTGCGAGACGTGGACGACGGCGGCGTGTACGTGTTCCTCGACGACGCCCAGCGAGTCTTCCCCCGCGACGGGCAGGTGCCGCTGGAGCTCGTGCCCGTGACCCTGGCGGAGAACCTGCGGTCGACCAAGCAGATCGCGCAGGTCTTCGGGGCGTTGACGTCCGAGGTCGTCAAACCCCGAGGGCTCGACGGGCCACCGGTACGGGTCGTCGACGTGCCGGTGTCGTCGGCGTTGGCTGCCGCCGACGATGCTGTGGAGGCCTTGCTCGACGAGGGTTGGGCACCCGGCGAGGTCGTGCTGCTCGCGACCGGCGGCCGGCACCCCGAACAGGTCAACGAGGTCCAGCTCGGCGGGTATGCCGAGTACTGGGACGCCTTCTTCGCCGCCGAGGACGTGTTCTACGGGCACGTGCTCGGGTTCAAGGGGCTCGAGCGGCCCGTGGTCGTGGTCGCCGTCAACGGCGTGCGGGACCTCAAGCGGGCGCGAGAGATGCTGTACACCGGGCTGTCGCGGGCGCGGACCCTGCTCGTCGTCGTCGGGGACCGGAGCTGGATCGAGGCCGTCGGGGGAGAGGGCGTGCGGCGGCGGTTGGAGAAGGCCGAGGCGTGGTCACCGGCGGTGTGAMPRTYPDTPDFPDDGGAERAVFEALREQLPDEAVLLHGVHLQEYEQEYEIDLLVAWPDVGLAVIEVKAGHIERSGGSWYQGSGSAQRQISPVAQVQGARHALQTLLRQRGLLAASARTAHLVAFPHRYVSGGWDSLDLPRDMLIGRDDVEAPGAVAERVKHAVERHGQGHAPLDHGAVEGLVLAVAGGFPSQSEHLTRAVEHETRLEQMTRDQARILDALSQVRRMRVVGGAGSGKTYLALEQARRRTRAGERVALLCYSRGLGRYFQRITATWPRRDRPAYVGLFHDLPISWGASGGRDDHPDYWEHHLPTELGRLAEEQAPEELFDAVVVDEAQDFGDLWWPSLLQCLRDVDDGGVYVFLDDAQRVFPRDGQVPLELVPVTLAENLRSTKQIAQVFGALTSEVVKPRGLDGPPVRVVDVPVSSALAAADDAVEALLDEGWAPGEVVLLATGGRHPEQVNEVQLGGYAEYWDAFFAAEDVFYGHVLGFKGLERPVVVVAVNGVRDLKRAREMLYTGLSRARTLLVVVGDRSWIEAVGGEGVRRRLEKAEAWSPAVNANANANANA
AK018_01087294hypothetical proteinATGGACGAGGTCGACCGCCAGGTCTTGGAGCAGCTGCCGTGGGAGGTCCACGACGCGCACCGGCATGGCTATCACCTGATGATCCTGGCCCTGGCGATCCGGGATGCCGACGGAGCTGCGCTCCAGGAGCACCAGTACAGGCAGCTGGCGGCGTGGCGACGGGAGCTTGCAGAGCTCAACGCCGTGGTCGTGTACGACTGGAAGACACCGGACGGCTTCTACCTGGTACCTCGACTCGAGGACGACGGCGACCTCACCCGCCCGCCGCTCGTGGGAGAGGGTGAAATCAGCTGAMDEVDRQVLEQLPWEVHDAHRHGYHLMILALAIRDADGAALQEHQYRQLAAWRRELAELNAVVVYDWKTPDGFYLVPRLEDDGDLTRPPLVGEGEISNANANANANA
AK018_010891422hypothetical proteinATGCGCACCTTCGTCGGCCGCAGCGCGGAGCTTGGCACGCTCGAACGACTCCTGGCCCGGACGTCCGAGGACGCCGACCGTCCGGGCCGCTCGATCCTCATCCGCGGACGCCGTCGGGTCGGCAAGTCCCGGCTCGTCGAAGAGTTCGTCGACCGCGCCGCCGTCCCTACCCTCTTCTTCACGGCGGCCGGCGGCCCTCCCGCCACCGACCTCGCAGACTTCACCGCAGAGCTCGAAGCCTCCGACCTCCCCGACGCCTCGACAGCCACCCCGGCACAACCTCCGACGACCTGGACCAGCGCCTTCCAGATGCTGGCAGCCGCACTGCCGACAGACCGGGCCAGCGTCGTCGTCCTCGACGAGATGCCCTACCTCGTCCGGGCCGACCCCACGTTCGAGGGAGCCCTGCAGCGAGCCTTCGACCGGCAGTTCTCACGCCTGCCGGTGCTCCTGATCCTCGTCGGATCCGACCTCGCGACCATGGAGCAGGTCAACACCTACGGTCGGCCCTTCTACCAGCGAGCAACGGAGATGGTCGTCCCTCCGCTCAACCCGGCCGACGTCGCATCCCTGCTCTCGCTCCAGCCCGCCGACGCGTTCGACGCCTACCTCGTCACCGGCGGACTGCCCCTCCTCCTCGACACCTGGCCGACCGAGGCAGACCTGTGGGCCTACCTCGCGGACTCGCTGACGGATCCGACGTCTCCGCTGATCGTCAGCGGCGAACGCAGTCTGGCCGCCGAGCTCCCGACCGAAGCGCAAGCACGGACGGTGCTCCGCGCCGTCGGGCACGGTGAGCGGACCTTCACCACCATCGGGCGCGCCTCCGGACTGCCACAAGCCTCCCTCCAACGCGCCTTGGAACTGCTGATCGAGCGACGGATCGTCGCCGCCGACACGCCGCTGTCCACACGCCCCAGCAAAGAGACGCGCTACCGGGTCGACGACCCCTACCTACGGTTCTGGCTGCACTTCGTCAGGCCGGGGTTGCCCCTGATCGAACGCGGACGCGGCGACCAGCTGCTCACCCGCGTGCGCGACGGCTGGACCTCGTGGCGGGGGCGGGCCGTCGAACCTGTGATCCGTGAGGCCCTGTGGAGGCTCGCCGGGTCCGGACCGTTCCCGGACACCAGCGCCGTGGGCGGATACTGGACGCGCACCAACGACCCGGAGATCGACCTCGTCGGCGCCGACCGGGAAGGCGTCGCACAGGCCCTGACCTTCGTCGGCTCCGTCAAGTGGCTGGAGCACCGCGCGTTCGACCACCGCGATCTGGCACGGCTCCACCAGCACCGGGACAGGCTGCCCGGGGCCACCGAGGAGACTCCGCTCGTCGCCGTCTCACGTAGTGGTGTCGATGTCGCCGACGTGACTGCCGTCGGACCCGCCGACCTGGTTGAGGCGTGGACGGCGTCCGTGTGAMRTFVGRSAELGTLERLLARTSEDADRPGRSILIRGRRRVGKSRLVEEFVDRAAVPTLFFTAAGGPPATDLADFTAELEASDLPDASTATPAQPPTTWTSAFQMLAAALPTDRASVVVLDEMPYLVRADPTFEGALQRAFDRQFSRLPVLLILVGSDLATMEQVNTYGRPFYQRATEMVVPPLNPADVASLLSLQPADAFDAYLVTGGLPLLLDTWPTEADLWAYLADSLTDPTSPLIVSGERSLAAELPTEAQARTVLRAVGHGERTFTTIGRASGLPQASLQRALELLIERRIVAADTPLSTRPSKETRYRVDDPYLRFWLHFVRPGLPLIERGRGDQLLTRVRDGWTSWRGRAVEPVIREALWRLAGSGPFPDTSAVGGYWTRTNDPEIDLVGADREGVAQALTFVGSVKWLEHRAFDHRDLARLHQHRDRLPGATEETPLVAVSRSGVDVADVTAVGPADLVEAWTASVNANANANANA
AK018_01090411hypothetical proteinGTGCCGCACCATGGACCTGTGGACGACGCGACCCGCTGCCCCTGCCTGACCGGCCTGCCCTACGGCGAGTGCTGCGGCCCGCTGCACCGCGGCGAGCGCACCGCCCCGACCGCCGAGGCGCTCATGCGCTCGCGCTACAGCGCTTTCGCCACCGGGGAGGCGGACTACCTGCGCGCCACCTGGCACGCGAGCACGCGGCCGACGTCGGTGGAGCTCGACCCGGGGCGGCGGTGGCACCGCCTCGACATCCTCGGCACGCGGGCGGGCGGGCCGTTTGACGACGCCGGCGAGGTCGAGTTCGTGGCACTCTTCGCCGACGACGACGGCACGCGCGGGCGGTTGGCCGAGCGCAGCCGGTTCGTGCGCAACGGCGGCACGTGGTTCTACGTGGACGGTGACGTGCGGCCCTGAMPHHGPVDDATRCPCLTGLPYGECCGPLHRGERTAPTAEALMRSRYSAFATGEADYLRATWHASTRPTSVELDPGRRWHRLDILGTRAGGPFDDAGEVEFVALFADDDGTRGRLAERSRFVRNGGTWFYVDGDVRPNANANANANA
AK018_01091327hypothetical proteinGTGGCCGCCGTTACCGTCACCACCATGACCTTCGCCAACGTCGGCACCCTGGGTGCCGCCCCCGGGAAGCGGGACGAGCTCGTCGCCCACCTCACGGCCCGCAGCGACGAGCTCGCCGACGCCGGGTGCCTGCTCTACGAGGTCGGTGTCGACGACGACCAGCCCGACACGGTGTTCGTCGTCGAGCTGTGGACGTCGGCCGCGGCGCACCAGGCCTCGCTGGAGCTGCCGGGCGTCCAGGCGTCCATCGCCGCCGCGCGGCCGCTGCTGTCCGGGGAGTTCGGCGGCTTCCGGTTCGACGTCGTGGGCTCACCGCTGCGCGACTGAMAAVTVTTMTFANVGTLGAAPGKRDELVAHLTARSDELADAGCLLYEVGVDDDQPDTVFVVELWTSAAAHQASLELPGVQASIAAARPLLSGEFGGFRFDVVGSPLRDNANANANANA
AK018_01092420hypothetical proteinATGACCACCCTGACCCGCATCCCCTTCTCCGACGCCTGGCTGCGCGACGTCCTGACCCCGCGCACCGCCGTCGAACCGCAGTACGCCCGCCCCGCGGCGGACGTCTACCGCGACGGCGAGGACCTCGTCGCCCGCCTCGACCTGCCGGGCGTCGACCCGGCCGAGGACGTCACCGTCGAGGTCGAGGGCCGCCGGCTCGTCGTCCGCGGCGAGCGTCGCGACCAGCGCAGCGAGGAGTCCGAGGGCCGCCGCGTCTCGGAGGTCCGCTTCGGCGGCTTCCGCCGCGTCGTCAACCTGCCGAAGGCCGTCGAGGCCGACGCGGTGACGGCGTCCTACGACGCCGGCGTCTTGGCCGTGACCGTCGCCGGTGTGTTCGCCGGCACGACGCCTCAGCGCATCGAGGTGACCACCGCGGCCTGAMTTLTRIPFSDAWLRDVLTPRTAVEPQYARPAADVYRDGEDLVARLDLPGVDPAEDVTVEVEGRRLVVRGERRDQRSEESEGRRVSEVRFGGFRRVVNLPKAVEADAVTASYDAGVLAVTVAGVFAGTTPQRIEVTTAAPGPT0014635_7792DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014635-hsp20-K13993NANA
AK018_010931293yesO_1COG1653Putative ABC transporter substrate-binding protein YesOATGCAGCATGTCCGACCGATCGCCGCCGCGGCGACCGCCACCGCCGTGGCACTCAGCCTGACCGCGTGCAGCAGCGACGAGACCGCTGAGGGATCGGACGACCCGGTCACCCTGACCGTGGCGTGGTGGGGCAACGACGACCGCGCCGCCCGCTATCAGGAGGCCCTGGACCTCTTCAACGAGCAGCACCCGGACATCACCATCCAGAGCTCCTTCACGTCGTTCGACGACTACTGGACCGCTCGCAACACCGAGGCCGCCGCCGGCGCGCTCCCCGACGTCATGCAGTTCGACTCGTCGTTCCTGCGCCAGTACGCACGGACCGGTCAGCTCCTGGACGTCAGCGCCTACCTCGGCGAGGAGATCGACACCAGCGATCTCAGCGACCAGCTCATCGACTCCGGCCGGATCGGCGACGCCGTGTACGCCGTCCCGACCGCGACCAACACCCTCGCGATGTTCTACAACCCGTCGGTGGTGGAGCAGGTCGGCATGGACGCCCCCTCCGAGGACTTCACCTGGGACGACTTCGCCTCCTGGGTCGCCGAGTACAGCGCGGCGGGCGCCGGGCAGGACCCCCGCCTGTACGGGTCGAACGACTACACCGGCGTGTTCTGGGCGTTCCTCCAGCACCTCGTGCAGGAGGGCGTCACGCCGTTCACCGAGGACGGCGAGATCGCGTTCACGCCGGAGGACATGGCCACCTGGCTGCACTCCGGGGACCAGCTGCGCGCCGACCAGGCCGTCTTCCCGATCGAGCGCAACGAGCAGCTCGCTCCGGAGGGCGGGTTCACCGTCAACGAGCAGGCCACCGAGATGAGCTGGGACAACTTCCTGGCGGGATACGTCGCCGGCTCCGGCCAGGACGACATCTCGATGCTGCCCATCCCCTCGGGGTCGGACGGCGAGAAGCACATGTTCTCGCGCACCTTCCAGATGACGGCCGCCGCCACCACCGACCACCCCGAGGAGGTCGCGATGCTGCTCGACTTCTTCGTCAACGAGCCCGAGGTGGGTCGCATCTTCGGCACGTCCAAGGGCGTGCCCGCGGTGTCGGCCCAGCGTGACGCCATGGACCTGGAGCCCGGCTCGGTGGACGAGCGGGTCGTCGCCTACGAGGAGTCCGTCGCGGACCAGATCACCGAGCCCGCACCCCTGCCCGTGGAGGGCTTCGGGTCGATCGAGGCGGAGTACAAGCGGCTCAGCGACGAGCTGGCCTACGGCACGGTTACCGTCGACGAGTTCGTCGACCAGTGGTTCTCCTTCGCCGAGGAGACGGTCGGCGAGATGTGAMQHVRPIAAAATATAVALSLTACSSDETAEGSDDPVTLTVAWWGNDDRAARYQEALDLFNEQHPDITIQSSFTSFDDYWTARNTEAAAGALPDVMQFDSSFLRQYARTGQLLDVSAYLGEEIDTSDLSDQLIDSGRIGDAVYAVPTATNTLAMFYNPSVVEQVGMDAPSEDFTWDDFASWVAEYSAAGAGQDPRLYGSNDYTGVFWAFLQHLVQEGVTPFTEDGEIAFTPEDMATWLHSGDQLRADQAVFPIERNEQLAPEGGFTVNEQATEMSWDNFLAGYVAGSGQDDISMLPIPSGSDGEKHMFSRTFQMTAAATTDHPEEVAMLLDFFVNEPEVGRIFGTSKGVPAVSAQRDAMDLEPGSVDERVVAYEESVADQITEPAPLPVEGFGSIEAEYKRLSDELAYGTVTVDEFVDQWFSFAEETVGEMPGPT0016545_4676DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_01094828rutD_2Putative aminoacrylate hydrolase RutDGTGAGTCCCGCCGGCCGGGGCATGGACCTGGTCGGGGTCGGAGAGACGACCCTCGCCGTCGAGGACGGTGGCGCCGGGGAGCCCGTGGTGCTGGTCCAGACCGCCCTCACCGGGGACGAGCTGCTCCCGCTGGGGCTCGCGCTACGGCGGCGCGGGTACCGCGTGCTCCGCTACCACCGCCGCGGCTACGGCTCGAGCGGCCCGGCGCGGGGTCCCGGGTCGATCGCCGCGGACGCGCGGGACTGCGCAGACCTGATGTCCGCCGTCGGGCTGGGACGGGCGCACCTCGTGTCCGTGTCGTACGGGGCGGCCGTCGCTCTGGAGCTCGCCGCGCGGCGACCGGATCTCGTGGCCACGACGACGGCGATCGAGCCGCCGCCGACGCTGCTGGACGACACGGGCGGGTTCGTGGCCGCCAACGAGGCGCTGCTCACGCGCTACCGGTCCGCGGGGTCCGCGGCGGCGCTGGACTCGTTCCTGACGCGACTCGTCGGGACCGGCTGGCGCGCGGAGATGGAGCGGCTGCTGCCCGGGTCGGTGGCCCGGATGGAGCGGGACGCGGCGACGTTCTTCGGCAGCGACGTGTCGGCGCTGCTCGGTTGGACGTTCGGCGACGCCGACGCCGCAGCGGTCGGGAGTCCGCTGCTGTACCTCGGCGGGACCGACAGTGGCCCGTGGTTCGCCGCGGTCCGACGTCGGATGCTCGCGTGGTTCCCGGACGCCGCCGACGTCATGGTCGACGGCGCCGACCACAACCTGGTCCTGACGCACGCCGAGGACGTGGCCGAGGCGGTCGACGGGTTCCTGCAGCGGCATCCCTGCCCGTGAMSPAGRGMDLVGVGETTLAVEDGGAGEPVVLVQTALTGDELLPLGLALRRRGYRVLRYHRRGYGSSGPARGPGSIAADARDCADLMSAVGLGRAHLVSVSYGAAVALELAARRPDLVATTTAIEPPPTLLDDTGGFVAANEALLTRYRSAGSAAALDSFLTRLVGTGWRAEMERLLPGSVARMERDAATFFGSDVSALLGWTFGDADAAAVGSPLLYLGGTDSGPWFAAVRRRMLAWFPDAADVMVDGADHNLVLTHAEDVAEAVDGFLQRHPCPNANANANANA
AK018_01095495hypothetical proteinATGACGACGGTCGGGCAGCTGCGCAAGGCGGCCCTCGGGCTGCCCGGGGTGGAGGAGGTCGACGGCGCATTCACCGTCGAGGGCGCCACGTTCGCGGTCGGGCTGCCGGGCGGTGCCGTCGAACTGGCGCTCACGGGCGCCGACGCCGAGCGGGTGCTGGACGAGCATCCGACGGCGGAGCGTGTCGTCGGCAGACCGCGGGTGCAGGTGCCGCTCGCGGACCTCGACGGTCAGCAGCTCAACCACTGGGTGCGGCGGGCCTGGTTCGGCCGGGCGCCGGGCGAGCTGATCGAGGCGATCTCGGCGGCGGACACCGTCGAGCCGGGGGCCGTGGGTGACCTGCCGGCGTCGATCGGTCGCCCGGCGACGCGAGGGCTGGCCGGTGCGGGGATCGTGTCCCTGGCCGACGTCGCGACGCGCTCGGACGCGGAGCTGCTGGCGATCCACGGTGTCGGGCCGAAGGCGGTGCGGCTGCTGCGCGAGGCAATCGGGTGAMTTVGQLRKAALGLPGVEEVDGAFTVEGATFAVGLPGGAVELALTGADAERVLDEHPTAERVVGRPRVQVPLADLDGQQLNHWVRRAWFGRAPGELIEAISAADTVEPGAVGDLPASIGRPATRGLAGAGIVSLADVATRSDAELLAIHGVGPKAVRLLREAIGNANANANANA
AK018_010961347abgB_1COG1473p-aminobenzoyl-glutamate hydrolase subunit BATGCCCGCGGACGGTCCCCCTCAGCCCAGCACCGCCTACCTCGACCACCTCGCCGACGAGACCGAGCAGCGCCGCCGCGCCGCCGCCGTCGTGCAGCCCGCCCCGGAAGCACCCGAGGGCGGGGCGCCGCGGGCGCTCGCGGACGTCGTCGACGCCGCCGCCTCCGCCCTGGAGACCGAGCTCGCCCACGTGGTGCGCACCCTGCACGCCCACCCCGAGACGGCGTGGGAGGAGCACGACAGCGCCCGCCTGCTGGTCGGCCTCCTCGCCGAGCACGGCATCGAGGCCGAGATGGGCGCCCACGGCGCCGAGACCGCGTTCCGGGCCGAGCTCGGCAGCGGCGACGGGCCGACGCTCGTCATCTGCGCGGAGTACGACGCGCTGCCGGGCATCGGGCACGCGTGCGGGCACAACGTCATCGCGGCCGCCGGCGTCGGCGCCTTCCTGGCGCTGCGCGACGTGCTGCGGGCCGCCGACGCCCCCGCCGGCCGGGTGGTGCTGCTCGGCACGCCGGCCGAGGAGGGGCACTCCGGCAAGGAGGTCCTCGCCCGCCACGGGGCGTTCGACGGCGTGGACGCCGCCATCATGCTGCACCCCTACGGCGTGGACCTCGCCGACCAGGTGTGGCTCGGCCGGCGCCTGCTGAGCTGGACGTTCACCGGCCGCAGCGCGCACGCCAGCGCCCAGCCGTTCATGGGACGCAACGCCCTCGACGCCGCCAACCTCGCCTACACCGGGATCGCGCTGCTGCGTCAGCAGATGCCGCCCGTGGACCGGGTGCACGCCATCATGGTCGACGGCGGCACCCGGCCGAGCATCATCACCGAGCGCGCCCAGATGCGCCTCTACGCCCGGTCCAAGTACCCGGACACGCTGCGGGACCTGTCGCGGCGGCTCGACGACGTCGCCCGCGGCGCCGCGCTCATGACCGGCACCGAGGTGGAGATCACCTGGGACGACGGCGCCCACCCGTCCCTGCCCGTGCGGACCAACCAGGCGCTCACGGCCCGCTGGGTCGCCGCCGAGCAGCGGCGCGGACGGGACGTGCTGCCCGGGGGAGTCGTGTCCGAGACGATCGCGGCCTCCACCGACTTCGGCAACGTCAGCTTCCGGGTGCCGGGCATCCACCCGCTCATCCAGGTCTCCGACCCGTCCGTCGCGCTGCACACCGAGGCGTTCGCGGCGGCCGCCGGGTCGGACCGTGCGGTGGCTGCCGCCGTCGACGGTGCCGCCGGGCTGGCCGTGACCGCGCTCGACTACCTGTGCGACCCGGCGCTGCAGGCCGCGGTGCGCGAGGAGTTCGAGGCGGCCGGCGGGGCGATCGACGTGCCGCGGTACTTCGACTGAMPADGPPQPSTAYLDHLADETEQRRRAAAVVQPAPEAPEGGAPRALADVVDAAASALETELAHVVRTLHAHPETAWEEHDSARLLVGLLAEHGIEAEMGAHGAETAFRAELGSGDGPTLVICAEYDALPGIGHACGHNVIAAAGVGAFLALRDVLRAADAPAGRVVLLGTPAEEGHSGKEVLARHGAFDGVDAAIMLHPYGVDLADQVWLGRRLLSWTFTGRSAHASAQPFMGRNALDAANLAYTGIALLRQQMPPVDRVHAIMVDGGTRPSIITERAQMRLYARSKYPDTLRDLSRRLDDVARGAALMTGTEVEITWDDGAHPSLPVRTNQALTARWVAAEQRRGRDVLPGGVVSETIAASTDFGNVSFRVPGIHPLIQVSDPSVALHTEAFAAAAGSDRAVAAAVDGAAGLAVTALDYLCDPALQAAVREEFEAAGGAIDVPRYFDNANANANANA
AK018_01097336hypothetical proteinGTGAGACGGACCGACGGCGACCACGCACGCGAGGCTCTCGAGCACCTGCAGGTTCTGAGCGACTACGTGGCACGGGGCTCGTGGGAGGACCAGGTGATGGTCGACGCCGTGTGCCTGCGGCTCGCCGCCGCCATCGATGCCGTCGGACGCGTCCGTGAGAACACGCGCGACGACGTGTTCGGCCGGTCGTGGGATGCCATCCGCGCCACACGCAACCGCATCGTTCACGGATACCTCACCGTCGACAAGGACATCGTGCGCGCCACCGTCGAGCACGACCTCGACACCTTCCGGGCATCGGTACGACAGATCGCCTCTCCGGGCGACGCGCCGTAGMRRTDGDHAREALEHLQVLSDYVARGSWEDQVMVDAVCLRLAAAIDAVGRVRENTRDDVFGRSWDAIRATRNRIVHGYLTVDKDIVRATVEHDLDTFRASVRQIASPGDAPNANANANANA
AK018_01098552hypothetical proteinATGGAGAGCGACGACGGATCTGCGGTCGAGCAGGCCTTCGAGCAGTACCTCGCCGGTCTCGGCCTCGAGGCGGACGCCCTGCGCCGGCAGGCCGGAAGGACGCTCGAGCAGGGAGCCCGCCAAGCGCGCGACCTCGGCTGGAGCCAGCGCAGGATCGCTCGGGCGCTCCGACGGAGCCAGCCGGAGGTCAAACGGCTCCTCGACCGTGCCGGGGTCGAGACCGACCATCAGGCCGGCGCGGACGTCGCGACGGCCGTGCGGGAGGTCTCGATGCTCGACGAGGTCCTGCGGCATCGACGAGACGCGATCGTCGACGCGGCCGCACGGTACGGGGTGCATCACGTCCGAGTCTTCGGATCGGTCGCGGCAGCGGCGGACGGACCGAGTTCGGACGTCGACCTCCTGGTCGACGTCGACGACGATGTCGGACTGTTCGCCCTGGGTGCCCTGGAGGCGGAGCTCCGGGAGATCCTGGGCCGCCCCGTCGACGTGGTCCCCGCGAGGTCGCTGCGCCCGGTCGTCCGCGAAGCCGTCGTGGCGATCCCGTTGTGAMESDDGSAVEQAFEQYLAGLGLEADALRRQAGRTLEQGARQARDLGWSQRRIARALRRSQPEVKRLLDRAGVETDHQAGADVATAVREVSMLDEVLRHRRDAIVDAAARYGVHHVRVFGSVAAAADGPSSDVDLLVDVDDDVGLFALGALEAELREILGRPVDVVPARSLRPVVREAVVAIPLNANANANANA
AK018_010991230hypothetical proteinGTGACCGAGAGGCTGGACACCGTGCTGCGCAGCACCGACCGCATCGAGACCACCCACGCCGGCTCCCTGCCGCGCACCCCCGAGCTGCTCGCCGCCAACGCGGCCCGCGAGGGCGGGGCCGCCGCCGGCGACTTCGACGCGCTGCTGCGCGACGCGGTGTCCGACGTCGTGCGCCGCCAGCAGGACGCCGGGATCTCCGTGGTCGGCGACGGCGAGTACGGCAAGTCGATGTCCTCGCCGAACGACTTCGGCGCCTGGTGGTCCTACTCGTTCGAGCGCGCCGCCGGGCTCGAGCTCGACACCGACGCGCAGTGGGTGCTGGCGGACGTGCAGTCCGCGCCCGGGGACGTGCGCCTGACCGGGTTCGGCAACCGCCGCGACCAGGCGCGGTTCCGCGAGGCGTACACCGACCCGACGTCGGGCATCTTCGGAGGCGAGGGGCCGGGGCAGTTCCCGAAGGTCACCGGGCCGCTGACGTACACCGGGCAGGCCGCCGTCGCGCAGGACGCCGCCAACCTCAAGGCCGCCGCCGACGCCGCCGGGGTGAGCGACGCGTTCGTCACCGCCATCGCACCCGGCTCCGCGACCCGTATCCACAACGAGCACTACGCCACGCACGAGGAGTACGCGTACGCGTGGGCCGACGTCCTGCGCGAGGAGTACCTCGCGATCGTCGACGCCGGACTCATCCTGCAGATCGACGACCCCGGCCTGGCCGAGTCGTGGGACCAGATCACCCCCGAGCCGACCGTCGCCGACTACCTCGACTTCTCCCGCATCCACGTCGAGGCGCTCAACCACGCGCTGCGCGGCATCCCCGCCGAGAAGGTGCGGTACCACCTGTGCTGGGGCTCGTGGCACGGCCCGCACTCCACCGACCTGCCGATGCGCGACGTCGTCGAGCTGATGCTCCAGATCGACGCCGGCGCCTACTCGTTCGAGGCCGCGAACGTCCGCCACGAGCACGAGTACCGCGTCTGGGACGACGTCACGCTGCCCGACGGCAAGCTGATCCTGCCCGGCGTCGTCTCGCACGCCACCAACGTGCTGGAGCACCCCGAACTCGTCGCCGACCGGATCGAACGGTTCGCGCGGCGGGTCGGCCGGGAGAACGTGCTGGCCTCCACCGACTGCGGGCTCGGCGGGCGCGTGCACCCGCAGATCGCGTGGGCCAAGCTCGAGTCGCTCGCCGAGGGGGCGCGGATCGCCACCCGGCGGCTCTGGAGCTGAMTERLDTVLRSTDRIETTHAGSLPRTPELLAANAAREGGAAAGDFDALLRDAVSDVVRRQQDAGISVVGDGEYGKSMSSPNDFGAWWSYSFERAAGLELDTDAQWVLADVQSAPGDVRLTGFGNRRDQARFREAYTDPTSGIFGGEGPGQFPKVTGPLTYTGQAAVAQDAANLKAAADAAGVSDAFVTAIAPGSATRIHNEHYATHEEYAYAWADVLREEYLAIVDAGLILQIDDPGLAESWDQITPEPTVADYLDFSRIHVEALNHALRGIPAEKVRYHLCWGSWHGPHSTDLPMRDVVELMLQIDAGAYSFEAANVRHEHEYRVWDDVTLPDGKLILPGVVSHATNVLEHPELVADRIERFARRVGRENVLASTDCGLGGRVHPQIAWAKLESLAEGARIATRRLWSNANANANANA
AK018_01100780COQ5_32-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialATGACCGTGAGGATGCTCGACGACGTCCGCCCGGAGGAGTCCGACCACGACTTCCTGCCCGGCATGCGCCGCGCCTGGATGATGCCCTGGTACGACCTGGTGGCACGGACCCGCGGCCTGGGACGGCTGTACCGGCGTACGGTCGAGCTCGCCGGCATCGCTGCCGGGCAGCACGTGCTGGACGTCGGCTGCGGCACCGGCAACCAGAGCCGCGAGGTGCTGCGCGCCGTCCCCGACGCCCTCGTCACGGGCCTGGACCCCGACGGCGACGCGCTGCGCCGCGCGGCACGCAAGCTCCGCCGTCGTTCCCGGACCGAGGTGACCCTGGTGCGCGGGTTCGCCCACCGCCTCCCGGTGGACGACGCGAGCCAGGACCACGTGATCTCCTCGCTCGCGCTGCACCACGTGCCGCGGGCGGAGAAGGAGCGGCTCGCGGCGGAGGTCGCGCGGGTGCTGCGGCCGGGCGGTCGCGTGACGATCGCGGACTTCGCGGGCGACCACGCGAGCGAGCACGGGCACGGACACGGGCACGGGGCGCACGCCGGCGCCACACCGGCCGCGCAGCATGGCTCCGGCCACGCGCACGGTCCCCGGCAGCGCGGCCGTCGGCACCACGGCAACCGACCGGGCCACGGGCCGGGCAGGGCCACCCACGACGCCGACAACGCCGACGGCGGCATCGAGAAGCTGCTCACCGCTGCCGGCCTGACCGACGCCCGGGCGCTCGAGCGGATGACGGTGCTGGGCGACTCCGTGGTGTTCGTCCGTGCCGAGCGTTGAMTVRMLDDVRPEESDHDFLPGMRRAWMMPWYDLVARTRGLGRLYRRTVELAGIAAGQHVLDVGCGTGNQSREVLRAVPDALVTGLDPDGDALRRAARKLRRRSRTEVTLVRGFAHRLPVDDASQDHVISSLALHHVPRAEKERLAAEVARVLRPGGRVTIADFAGDHASEHGHGHGHGAHAGATPAAQHGSGHAHGPRQRGRRHHGNRPGHGPGRATHDADNADGGIEKLLTAAGLTDARALERMTVLGDSVVFVRAERNANANANANA
AK018_011011251hypothetical proteinATGACGATGCGACGCCGCACCCTGTCCGCCACCGCAGCCTTGGCCGTGGCCCTGTCCGCCGTGGCCGTGCCGGTCACCGCGAGCGCCCACGGCCGCAGCGACGACCGCGGTCACCACCACGGCCGCGACTCGCTGCGGGTGGCGACGTACAACCTGTCGCTGAACCGCGGCAGCGAGGGCGCGCTGGTTGCCGACCTCTCGACGCCGGGGAACGAGCAGGCCCGCACGGTCGCGGAGGTCGTCCAGCGCGCGGACCCGGACGTGGTGCTCCTCAACGAGTTCGACTTCGACGCCGCCGGCGAGGCCGTGGACCTGTTCCGGGAGAACTACCTGGAGGTCGGTCAGGGCGGCGCCGACCCGGTGGAGTACCGGTACGCGTACACCGCGCCGTCGAACACGGGCGTCCCGAGCGGGTTCGACCTCAACAACGACGGCACGGTCGGTGGCGGCGACGACGCGTTCGGGTTCGGGCTGTTCCCGGGCCAGTACGGCATGGCGGTGCTGTCGAAGTACCCGATCGAGACCGACGAGGTCCGCACCTTCCAGCACTTCCTGTGGAAGGACATGCCGGGCGCGCTGCTGCCGGACGACCCGGCCACCGACGCACCGGCCGACTGGTTCACGCCCGAGGAGCTCGAGGTGGTCCGCCTGTCGAGCAAGTCGCACTGGGACGTGCCCGTGCGGGTGGGCCGCAAGACCGTGCACGTGCTGGCCTCGCACCCCACGCCGCCCACGTTCGACGGCCCCGAGGACCGCAACGGCCGCCGCAACCACGACGAGATCCGGTTCTGGGCGGACTACGTCACGCCCGGCAAGGCCTCGCGCTACATCTACGACGACGACGGCGGACGCGGCGGCCTGCACCCGGGCGCCCGGTTCGTGGTGCTCGGCGACCAGAACGCCGACCCGGCCGACGGCGACTCGTACGACGTCGCGATCGACCAGCTCCTGGAGCACCCGCGGATCGCCGACCCGGCCCCGACGTCGCAGGGGGCCGTCGAGGCGGCGGCGCTGCAGGGTGGCGCCAACGACACCCACAACGGTGATCCCGCCCTGGACACCGCCGACTTCGCGGACGGCGCACCGGGCAACCTGCGCGCCGACTACGTGCTGCCCTCGAAGCACGGGCTGCGGGTGCGCGACGCGGGCGTGTTCTGGCCGGTGCAGGCCGACCCGCTCTCGGCGTTGACCGGCACCTACCCGTTCCCGAGCAGCGACCACCGGCTGGTGTGGGTGGACCTGAAGGTCTGAMTMRRRTLSATAALAVALSAVAVPVTASAHGRSDDRGHHHGRDSLRVATYNLSLNRGSEGALVADLSTPGNEQARTVAEVVQRADPDVVLLNEFDFDAAGEAVDLFRENYLEVGQGGADPVEYRYAYTAPSNTGVPSGFDLNNDGTVGGGDDAFGFGLFPGQYGMAVLSKYPIETDEVRTFQHFLWKDMPGALLPDDPATDAPADWFTPEELEVVRLSSKSHWDVPVRVGRKTVHVLASHPTPPTFDGPEDRNGRRNHDEIRFWADYVTPGKASRYIYDDDGGRGGLHPGARFVVLGDQNADPADGDSYDVAIDQLLEHPRIADPAPTSQGAVEAAALQGGANDTHNGDPALDTADFADGAPGNLRADYVLPSKHGLRVRDAGVFWPVQADPLSALTGTYPFPSSDHRLVWVDLKVPGPT0002580_13DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATASE_ACTIVITYP-SOLUBILISATION-PHYTASE_PRODUCTION,PGPT0002580-phy|phyA|phyB|phyC-K01083NANA
AK018_011021011oleD_1COG04512-alkyl-3-oxoalkanoate reductaseGTGACGGTGCTGGTCACCGGGGCGTCGGGGCTGCTGGGCGGGGCGGTGGCGCGGCTGCTGGTCGCGCGCGGGGAGCCGGTGCGGACGCTGCAGCGCAGCCCGTCGGGGGTGGCGGGCGTCGAGGACGTCGCGGGTTCGTTGACCGACCCCGCCGCCGTGGCCGCTGCCGTCGACGGGGTGTCCGCCGTCGTGCACCTGGCCGCCAAGGTGTCGCTGGCCGGTGATCCGGCAGAGTTCGAGGCGGTCAACGTCGGCGGGACGTGCACGCTGCTGGACGCGGCCGAGCGGGCCGGGGTGCAGCGGTTCGTGCAGGTGTCCTCACCGTCGGTGGCGCACGCGGGGGCGTCGTTGGTCGGTGTCGGGGCGGGTGTCGCGGACCCCGCCGCGGCGCGGGGCGAGTACGCCCGGACCAAGGCCGCCTCGGAGCTGGCGGCGCTGTCGCGCGACGCGGGCCCGGGCCGCTCGGCGGACGAGGGGCTGCGCGTCGTGGCGGTGCGGCCGCACATCGTGTGGGGGCCGGGGGACACCCAGCTCGTGGAGCGGGTCGTGGACCGGGCGTCGTCCGGGCGGCTGCCGCTGCTCGGCCACGGGGCCGCGCTCATCGACACCACCTACCTGGACAACGCCGCCGACGGCATCGTGGCCGCGCTCGACCGGCTCGCCGACGCGCCCGAGGCGGTGCGCGGGCGAGCCTATGTGCTGACCAACGGCGAGCCGCGCACCGTCGCCGACCTGCTGGGCGGCATCTGCCGGGCCGCCGGGGTGGAGCCGCCGCGGTGGCGGGTCCCGGCCGGGCTCGCCCGGGTGGCAGGCGGCGCGGTCGAGGCCGTGTGGCGGGTGCGGCCCGGGGCCGACGAGCCGCCGATGACGCGGTTCCTCGCCGAACAGCTCTCCACCGCCCACTGGTTCGACCAGCGCGCGACGTGGGCCGAGCTGCGGTGGCGGCCCGCCGTGAGCATCGACGAGGGGTTCCGCCGGCTGGCCGCCCACTACGGCGGCACCGCGCGCTGAMTVLVTGASGLLGGAVARLLVARGEPVRTLQRSPSGVAGVEDVAGSLTDPAAVAAAVDGVSAVVHLAAKVSLAGDPAEFEAVNVGGTCTLLDAAERAGVQRFVQVSSPSVAHAGASLVGVGAGVADPAAARGEYARTKAASELAALSRDAGPGRSADEGLRVVAVRPHIVWGPGDTQLVERVVDRASSGRLPLLGHGAALIDTTYLDNAADGIVAALDRLADAPEAVRGRAYVLTNGEPRTVADLLGGICRAAGVEPPRWRVPAGLARVAGGAVEAVWRVRPGADEPPMTRFLAEQLSTAHWFDQRATWAELRWRPAVSIDEGFRRLAAHYGGTARNANANANANA
AK018_011032664dhmA_1Haloalkane dehalogenaseGTGACGGACCGCTCGGCCGGCGCGCAGCGGCCGGCCGGCACCCTCCCGCCGGACCTGCCCGGCGTCGAGCAGCGGTTCAGCCACGTGCGCGGCGACTGGCACTACCTCGACAACGGCGCCGAGCTGTCCGCGCACGGCATCGTCCCGGTCGGCACCGTGCTGGCCGTGCACGGCAACCCCACCTGGTCCTACCTGTGGCGGGACCTGGTCACCGCCGCCACGGACCGAGCCGTCGAGGCCGCGGCCGCCGCCGGCGAGCACCCGGACGGCGTCCGCGACGCCTGGCGGGTCGTCGCCGTCGACCAGCTCGAGATGGGCCTGTCCGCCCGCACGGGACGACGGCGGAACCTCGCGGACCGGGTCGCGGACCTGTCGGCGTTCACCGACGGTCTCGGACTGACGGGCCCGGTCGTGACGCTCGGGCACGACTGGGGCGGCGTCGTCTCCCTCGGCTGGGCCGTGGACCACCCCGACCTGCTGGCCGGCGTCGCGCTGCTCAACACCGCCGTGCACCAGCCCGACGACGTGCCGATCCCTGCGCCGCTGCGCCTCGCGCTGGCCCGCGGCGTGCACCGCCTGGGCACGCGCACGACGCGCGCCTTCCTGGACACGACGCTCGCGCTGGCCCGCCCCGGCCTGCCGCGCGACGTCGCCGACGCCTACCGGCTGCCGTACCGCACCGCCGCCGACCGGGCGGGCATCGAGCAGTTCGTCGCCGACATCCCCGCCGACGCCGACCACGCGAGCCGCCCCGAGCTGGACCGGATCGCCGAGGGGGTGCGCGGGCTCGACGTGCCGGCGCTGCTGCTGTGGGGGCCGAAGGACCCGATCTTCTCCGACCGGTACCTCGATGACCTGCTGCACCGGCTGCCGCAGGCGCGGGTGCACCGGTTCGAGGACGCCGGTCACCTGGTGGCCGAGGACGTCGACTACGCCGGGCCCGTGCTGGACTGGCTGGGTGCCGCGGCACCCGAGCCGTCGGCCGCGCCGCCGGAGGGGTTCCGGCCGATCTGGGCCGGGCTCGACGAGCGCGCCGCCGACGCGGCCTCGCGCACCGAGCAGGCCGTGCTGGACCTGACCGCGACCGGCGCCGGACGGGTCGTGAGCTGGCAGGCCCTCGACCGTCAAGTCCGCCGCATCGCCGCGGGGCTGCACGGGATCGGGGTGCGGCGCGGCGACCGCGTGTCGCTGCTCGTCTCGCCCGGTCCGACGCTGACGGCGCTGGTCTACGCCTGCCTGCGCATCGGCGCGGTCGTGGTGGTGGCCGACGCCGGGCTCGGTCTGCGCGGGCTGACCCGCGCGCAGCGGGGCGCCTGGCCGCAGTACCTGGTCGGGCAGACGAGGGCGCTCGCCGCCGCCCGCGCCGCCGGCTGGCCGGGGGTGCGGATCGCTGCGGACCCCCTCGACCCGGTCACGCGTCGCGCCCTGGGGGTGGACCACGAGCTCATCGACGTCGCCCGCGCCGGCGAGGGCCACGCGCTCCCGCCCGAGCCGGGTCCCGACGACGCCGCCGCCGTGCTGTTCACCTCGGGGTCGACCGGCCCGGCCAAGGGTGTGCTGTACACGCACGCCCGGCTGGCGGCGCTGCGTGACGCCCTGGCCGAGCACTTCGCCGTCGGCCCGGACACGGGCCTGGTCACCGGGTTCGCGCCGTTCGCGCTGCTCGGACCCGCGCTCGGCACCCGATCGGTGACCCCGGACATGGACGTCTCGGCGCCGCGGACGCTCACCGCCCGAGCCGTTGCCGACGCCGTGCGGGCCACCGGCGCCCGCATGGTGTTCCTCTCCCCGGCGGCCATCCTCAACGTCGTGGACACCGCGGGCGCGCTCACGGAGTACGACCGCGAGGCGCTCGGTCGGGTCGAGACGTTCCTGTCCACCGGCGCCCCGATCAGCGCCGACATGCTCGCCTCCGCGCAGTCCCTCATGCCCGCCGCCGAGCCGCACACCCCCTACGGCATGACCGAGTGCCTGCTCGTCACCGACATCACGCTGGACGGCATCCGCGACGCCGCGAGCGCCCCCGACGACGGCGTGTGCGTGGGCCGGCCGGTGGGCGCCGGGCAGGTGCTGATCAGTCCGCTGGACGACGACGGCGCGGCGACGGGTGCACCGGTGTCGGGCCCGGAGGTGGTGGGCGTGCTGGGCGAGGTACTGGTCAGCGCCCCGCACCTGAAGGAGCGGTACGACCGGCGCTGGCTGACGGACGTGGCCGCCGAGCGGGACACCCCGGCGGGGCACTGGCACCGCACCGGGGACGTCGGGCACCTCGACGCCGAGGGTCGGCTGTGGATCGAGGGTCGGCTCGCGCACGTGCTGACCACGGTGGACGGTCCGCTGGCGCCGGTGGGTCCGGAGCAGGCGGTCGAGTCCGTCGCCGCGGTGCGGCGCGCCGCCGTCGTGGGTGTCGGGCCGGCCGGGGTGCAGCAGGCGGTCGCCGTGGTAGAGCCGCTCGCGGGGGTGGAGGGTGCGCCCCGCCGTCCAGGGCTCGCCCCGCAGGAGCTGGACGCCGCGGTGCGGGCGGCGTCGTCGGTGCCGCTGGCGGCGGTGCTGGTGGTGCCCGAGCTGCCGACCGACGTGCGGCACAACTCGAAGATCGACCGGGCGCGGCTGGCGGCCTGGGCGTCGGGGGTGCTCGCCGGCGGCCGGGTGGGTGCGCCGTGAMTDRSAGAQRPAGTLPPDLPGVEQRFSHVRGDWHYLDNGAELSAHGIVPVGTVLAVHGNPTWSYLWRDLVTAATDRAVEAAAAAGEHPDGVRDAWRVVAVDQLEMGLSARTGRRRNLADRVADLSAFTDGLGLTGPVVTLGHDWGGVVSLGWAVDHPDLLAGVALLNTAVHQPDDVPIPAPLRLALARGVHRLGTRTTRAFLDTTLALARPGLPRDVADAYRLPYRTAADRAGIEQFVADIPADADHASRPELDRIAEGVRGLDVPALLLWGPKDPIFSDRYLDDLLHRLPQARVHRFEDAGHLVAEDVDYAGPVLDWLGAAAPEPSAAPPEGFRPIWAGLDERAADAASRTEQAVLDLTATGAGRVVSWQALDRQVRRIAAGLHGIGVRRGDRVSLLVSPGPTLTALVYACLRIGAVVVVADAGLGLRGLTRAQRGAWPQYLVGQTRALAAARAAGWPGVRIAADPLDPVTRRALGVDHELIDVARAGEGHALPPEPGPDDAAAVLFTSGSTGPAKGVLYTHARLAALRDALAEHFAVGPDTGLVTGFAPFALLGPALGTRSVTPDMDVSAPRTLTARAVADAVRATGARMVFLSPAAILNVVDTAGALTEYDREALGRVETFLSTGAPISADMLASAQSLMPAAEPHTPYGMTECLLVTDITLDGIRDAASAPDDGVCVGRPVGAGQVLISPLDDDGAATGAPVSGPEVVGVLGEVLVSAPHLKERYDRRWLTDVAAERDTPAGHWHRTGDVGHLDAEGRLWIEGRLAHVLTTVDGPLAPVGPEQAVESVAAVRRAAVVGVGPAGVQQAVAVVEPLAGVEGAPRRPGLAPQELDAAVRAASSVPLAAVLVVPELPTDVRHNSKIDRARLAAWASGVLAGGRVGAPNANANANANA
AK018_011041023oleA_1COG0332Acyl-CoA:acyl-CoA alkyltransferaseGTGTCTGGGAACGCCACCACCAGGTTCAGCAACGTGTCGCTGCTGTCCGTGACCCGGCGCCTGCCGTCACGGGTCACGCCGTCGGCCGACATCCAACGACGCCTCGCCCCCGCCCTGAAGCGGCTGCGGCTGCCGACGACGCTGCTCGAGCGGGTCGCCGGCGTCGAGGCGCGGCGCAACTGGGGGCCGGGGGAGGACGCCGACACCGCGACCGTCGCCGCCGGGGCGGAGGCGCTCGCCGCGGCCGGCGTAGAGCCGGACGAGGTGGGTCTGCTGATCAACACCTCGGTGACCCGCAAGCACCTGGAGCCCTCGGTGGCGGTGGGCCTGCACCACGGGCTCGGGCTGCCGAGCTCGGCGGTGAACTTCGACATCGCCAACGCGTGCCTCGGGTTCATCAACGGGATGACCCTCGCCGCGGGCATGATCGAGTCCGGCCAGATCCGCTACGCGGTGATCGTCAACGGCGAGGACGCCGACGAGATCCAGGACAACACCGTCGAGCGGCTGCTGCGCGAGGACGTCGGCCGCGAGGACTTCATGGCGGAGTTCGCGTCCCTGACCCTCGGGTCCGGGTCGGCGGCCGCCGTCCTCGGCCCGGCCGACGCCCACCCCGAGGGGCACCGGATCCTCGGCGGCGTCACCCGCGCGGCCACGCAGCACCACGGCCTGTGCGTGGGCAGCCCGGACGGCATGTTCACCGACGCCGAGGCGTTGCTCGAGGGCGGCCTGGAGCTGGTGGTCGAGGCGTGGAAGGACGCCATCCCCGAGTGGGACTGGGAGGCGATGGACCGCTACCTCACCCACCAGGTCTCGCGCGTGCACACCAACGCGATCGTCGAGGCCGTCGGCCTGGACCGCGCCAAGGTGCCGACCACGTATCCCACGCTCGGCAACGTCGGACCCGCCTCGGTGCCGATCACGCTGGTCCAGGAGGCCGAGACCCTGGAGGCGGGCGACCGGGTGCTGCTCATGGGTGTCGGCTCCGGGATCAACACGGCGATGCTGGAGCTGGCCTGGTGAMSGNATTRFSNVSLLSVTRRLPSRVTPSADIQRRLAPALKRLRLPTTLLERVAGVEARRNWGPGEDADTATVAAGAEALAAAGVEPDEVGLLINTSVTRKHLEPSVAVGLHHGLGLPSSAVNFDIANACLGFINGMTLAAGMIESGQIRYAVIVNGEDADEIQDNTVERLLREDVGREDFMAEFASLTLGSGSAAAVLGPADAHPEGHRILGGVTRAATQHHGLCVGSPDGMFTDAEALLEGGLELVVEAWKDAIPEWDWEAMDRYLTHQVSRVHTNAIVEAVGLDRAKVPTTYPTLGNVGPASVPITLVQEAETLEAGDRVLLMGVGSGINTAMLELAWNANANANANA
AK018_011051179ltaE_1Low specificity L-threonine aldolaseGTGCCCACCACACCTGCCGCGCTGCCCCCGTTCGCCTCCGACAACTACGCCGGCGCCCACCCCGAGGTGCTCGCCGCCGTCGCCGCGACCAACGACGGGTTCGCCGTCGCCTACGGGGACGACCCGTGGACGGCGCGCCTCGAGGAGCGCGTCGCCGAGGTGTTCGGCGCGGGCGCCCGGGCGTTCCCCGTGCTCAACGGCACCGGCGCGAACGTCGTGTCGCTCATGGCGCTGTCGGAACGCTGGGGCGGCGTGGTGACCTCCGACGTCGCGCACGTCGACACGGACGAGAACGGCGCCCCGGAACGGGTGGGCGGGCTCAAGATGCTGCCCTGCCCCGCCGAGCACGGGCGGATCACGCCGTTCCACGTGGAACGGTGGGCCGGTCAGCGCCACGACGTGCACCGCGCCCACCCCGGCGTGCTGTCCCTGACGCAGTCCACCGAGCTGGGCACCGTCTACTCCGTCACGGACCTGTGCGCCCTGGCCGAGACCGCCCACGGGCTCGGCATGGCCGTGCACGTCGACGGCTCCCGGCTCGCCAACGCCGCCGTCGCGCTCGGCTGCTCCCTGCGGGCGCTCACCACGGACCTGGGGGTCGACGTCGTCTCCCTGGGTGCGGCCAAGATCGGCGGCATGCTCGGCGAGGCGGTGGTGGTGCTCGGTCCGGACGACGCCCCCGTGGCACCCGGGTCCGGGTACGACGGCGGCCGGGTACGCCGGCAGGCCGCCGCCGCGGTGCCGTACCTGCGCAAGTCCACCATGCAGCTCGCCTCCAAGACGCGGTACGTCTCGGCCCAGCTCCTGGCCCTGCTCGGCGAGCCCGGGGAGCCCGAGCCCCTGTGGGAGCGGACCGCCGGGCACGCCAACGCCATGGCGGCCCGCCTGGCGGCCGGCCTGGAGTCCGCCGGGGTGCTCGACACCGCACCCGACGATCCCGAGGCGAGCGACGTCGTCGTCCCGCGCGGCGTGCTGGTCAACCGACCGGTCGAGGCCAACGCCGTCTTCGCGACCCTGCCGCGCGCCGCCGCCGACCGGCTGCGTGAGCGGGCCCGGTTCTACGACTGGGCGCCCGGCGAGACCCCCGACCGGGTCGAGGTGCGCTGGATGTGCTCCTGGGACACGCCCGCCGAGGCCGTCGACGCGTTCGTCGCCGCCGTCGCCGAGTCCCTCGGCTGAMPTTPAALPPFASDNYAGAHPEVLAAVAATNDGFAVAYGDDPWTARLEERVAEVFGAGARAFPVLNGTGANVVSLMALSERWGGVVTSDVAHVDTDENGAPERVGGLKMLPCPAEHGRITPFHVERWAGQRHDVHRAHPGVLSLTQSTELGTVYSVTDLCALAETAHGLGMAVHVDGSRLANAAVALGCSLRALTTDLGVDVVSLGAAKIGGMLGEAVVVLGPDDAPVAPGSGYDGGRVRRQAAAAVPYLRKSTMQLASKTRYVSAQLLALLGEPGEPEPLWERTAGHANAMAARLAAGLESAGVLDTAPDDPEASDVVVPRGVLVNRPVEANAVFATLPRAAADRLRERARFYDWAPGETPDRVEVRWMCSWDTPAEAVDAFVAAVAESLGPGPT0020465_180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620NANA
AK018_01106957hypothetical proteinATGCCCGTGACCGAGAAGATCCTGATCGCGAGAGAGAACGATCGCGGAGTGTTGAAGGCGGCCCTCTGCGACGGGTCCATCGAGCGGCTGCGTCGTGGCGCCTACCGCATCGTCGAGGAGCGGCCGGCGGGAGGTGTGACACCCGCGACACCCGGGCCGGTCGCGCGACGGGCGACGGCCCTGGACCGCGTCCGTGCTGTCGACCGGCAGCTGCGCGCCGACCATGTCTTCAGCCACGACAGCGCGGCGCTGATCCGTGGGATGCGTCTCTGGTCGGTCCCGGACCGTGTCCACGTGCTCCAGCGGTACCGCGCCAGCGGTGCCGCGGCTGCCGACATCGTGCGGCGTCGACCGATGCCGCTCCGGACGGAGCACGTCTCGGGTCTGCCGGTGACGACCCTCGTCGAGACGGTGGTGGACTGCCTGCGCACGATGCACCCGCTCGACGGCCTCGTGCTGCTCGACGGTGCGATGGCGGACGGGCTCGACACGACCGCGGTGGGTAAGCGTCTCGGCGTCGTCGGCAAGCAGCGGGGGAGGGCGCGTGCGCGGCTGCTGCTGGACCTCGCCGACCAGGGAGCCGAGTCCCCGTGGGAGACGTGGGTGCGATATCTCGCGCGGCGTGCCGGGCTCCCGCGGCCGGTCACCCAGTTTCCGGTGGAATGCGGTGGGACGGTTCATCGGGTCGACGTCGCGTGGCCGGAGTACCGGGTGCTCGTCGAGTTCGACGGGAAGGTCAAGTACGTCTCGGGAGCTCTCGGCGCCGATCACGACCCGGACGAGCAGCGGTTCTCGGACAAGGTCCGCGAGGACGCGATCACGGCGGCGACCGGGGTGCGACCGCTGCGGCTGACGCAGCGCGACAGCGCGCCTCGAGCCACCTCGAGGCTGCTCGCGCAGTTCCCGGCCGAGGTGCGTCGAGATCTCCGGGTCGACCCGCGGCTGCCCTGGCCGTGAMPVTEKILIARENDRGVLKAALCDGSIERLRRGAYRIVEERPAGGVTPATPGPVARRATALDRVRAVDRQLRADHVFSHDSAALIRGMRLWSVPDRVHVLQRYRASGAAAADIVRRRPMPLRTEHVSGLPVTTLVETVVDCLRTMHPLDGLVLLDGAMADGLDTTAVGKRLGVVGKQRGRARARLLLDLADQGAESPWETWVRYLARRAGLPRPVTQFPVECGGTVHRVDVAWPEYRVLVEFDGKVKYVSGALGADHDPDEQRFSDKVREDAITAATGVRPLRLTQRDSAPRATSRLLAQFPAEVRRDLRVDPRLPWPNANANANANA
AK018_01107435hypothetical proteinATGACCGGGCACACCGCCACCGCGTCCACCCACGTCGCCGAACCGCCCGAGCGGGTCTGGGCCGAGCTCGTGCATCCCGGCGCCCGCTGGATGCTGGGCGCCAACATCGAGACCGACTTCCGGCCGGGCAGCCCCATCACCTTCGAGGGCCACTTCTTCGGCCGCGTGTTCGCCGACAAGGGCCAGGTCATCGCCGTCGAAAGGCCCCGCCTGCTGCACTTCACGCACTACTCGCCGCTCAGCGAGCTCCCCGACGTGCCCGAGAGCTACCACGAGATCCGCATCGACCTCACGCCCGACGACGGCGGCACCCGCGTGGCCGTACAGCAGTCCAACATCGACACCGCGGAGCACGCCGCCCGCAGCGAGCAGCACTGGTGCCAGGCCCTCGCCACCCTCGCGCACCGCGACACCTCCCCCACGGCCGGGTCGTGAMTGHTATASTHVAEPPERVWAELVHPGARWMLGANIETDFRPGSPITFEGHFFGRVFADKGQVIAVERPRLLHFTHYSPLSELPDVPESYHEIRIDLTPDDGGTRVAVQQSNIDTAEHAARSEQHWCQALATLAHRDTSPTAGSNANANANANA
AK018_011081227nagZ_1Beta-hexosaminidaseGTGAGGGTCCGCACGACGGCGGTGCTCGTCCTCGCGCTCGGCGCGCTCGCGGCGTGCAGCCCCGGCGGCACGACCGCGGACTCGGGCGCCGCATCCAGCCCTCCGGCGCCCACGCCGACCGCCACGTCGCCGAGCGCGAGCCCCACCGGAGAGCCGTCGTCGCCCGGCCCGAGCCCCGAGGACGGCGACACCACCCCGGACGCCCAGGACCCTGCCGACTGGAGCCTGGAGCGCAAGGTGGGCCAGCTGATCATGGCCGGCGGTCCCGTCGCCGAGGGTGGCGTGCACGACGCGACCCGGACCGCCGTCGTCGACCACCACGTCGGCAACGTGTTCCTGCACGGCCGCAGCGAGGCCGGGCTCGACGCGACCCGCGAGCTGGTCGAGGAGTACACGGCGCTCGCCGACGGCGACGGCCCGCCGATGCTCGTCGCGACGGACCAGGAGGGCGGGAACGTCCAGGTGCTGCGCGGTCCCGGGTTCTCCGACATCCCGGCGGCCACCGAGCAGGCGACGTGGCCGCGGGACCGCCTCGAGCGGCGCGCCGAGCGGTGGGGCGGCGAGCTCGCCGACGCGGGCATCAACCTCAACCTGGCGCCGGTGATGGACCTGGTGCCCGCGGACAACCAGGCCGCCAACGCCCCGATCGGCTACTACTCGCGCAACTACGGCAACACGGCGGCGTCCGTGGTCGACTCCGCGACGGCGTTCTCGGCGGGCATGCAGGCGGCCGGGGTGGAGCCGGTGATCAAGCACTTCCCGGGCCTGGGACGGGTCAGCGAGAACACCGACACCTCAGCCGACGTCGTCGACGACACGGTCGGCCCGGGCTCGAAGGACGTCGAGGTGTTCGCCGCGGGGATCGACGCCGGTGCCCGGTTCGTCATGCTGTCGAACGCCGTCTACACGAAGATCGACCCGGACCGGCCCGCGACGTTCTCGCCCGCCGTCGTGGACCTGCTGCGCGACGACCTCGGGTTCGACGGCGTCATCGTCACCGACGACGTCTCGGCGGCGAGCGCGGTGCTGGACCGCACCCCGGCCGAGCGGGCCGTCGACGCGGTGGCGGCCGGCGTGGACCTGGTGCTGGCCTCCGCGGACCCGACGGTGGTCCCGGCGATGACCGACGCGGTGGTCGAGCGAGCCCGGGACGACCCGGACTTCGCCGCGCAGGTGGACGCCGCCGTCGATCGGGTGCTGGCCGCCAAGGCCGACCTGGACCGCTGAMRVRTTAVLVLALGALAACSPGGTTADSGAASSPPAPTPTATSPSASPTGEPSSPGPSPEDGDTTPDAQDPADWSLERKVGQLIMAGGPVAEGGVHDATRTAVVDHHVGNVFLHGRSEAGLDATRELVEEYTALADGDGPPMLVATDQEGGNVQVLRGPGFSDIPAATEQATWPRDRLERRAERWGGELADAGINLNLAPVMDLVPADNQAANAPIGYYSRNYGNTAASVVDSATAFSAGMQAAGVEPVIKHFPGLGRVSENTDTSADVVDDTVGPGSKDVEVFAAGIDAGARFVMLSNAVYTKIDPDRPATFSPAVVDLLRDDLGFDGVIVTDDVSAASAVLDRTPAERAVDAVAAGVDLVLASADPTVVPAMTDAVVERARDDPDFAAQVDAAVDRVLAAKADLDRPGPT0012175_2165DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSAMINIDASE,PGPT0012175-nagZ-K01207NANA
AK018_01109294hypothetical proteinATGAACGGGATCGTCGAGTGGGGCGCCCTGGGCCAGGTGGTCGTCGCAGGGCTGCTGGTGGGAGCCGGCATCCCGGCGCTCTTCGCGCTCGGGCTGCGGCTGCTCGCCGGCACGACGGCGGCACCCCGGCGGGCGACAGCGGCTGCGGACCGCACGTCGCCGGAGCGTGGCGGACCCGTGGTGATCCCGCGCCCGCCCGTCTGGCGGCTGGTCGCGGCCGTCCTGTGCTTCGGCACCGTCGTCGGCGCCGTCGCGACCGGCATCGTGTTCCTCGCCGCCGGCGGGCACTCCTAGMNGIVEWGALGQVVVAGLLVGAGIPALFALGLRLLAGTTAAPRRATAAADRTSPERGGPVVIPRPPVWRLVAAVLCFGTVVGAVATGIVFLAAGGHSNANANANANA
AK018_011101290hypothetical proteinATGTCCCGTGTGACCGAGACGCTCCTCCTCGTGCTCGTCGTCGTGACCGCACTGGCCTTCGACTTCACGAACGGCTTCCACGACACGGGCAACGCGATGGCCACGTCCATCGCCACCCGCGCGCTCAAGCCCCGCACCGCCGTCCTGCTGTCCGCCGTGCTCAACATGGCGGGCGCCTTCCTGTCGCTGGCGGTCGCCGCGACCATCGCCAAGGGACTGGTGGACGCCGGGGCGATCAGCCTCGAGGTCGTGTTCGCCGGCCTCGTGGGCGGCATCGTGTGGAACCTCGTCACCTGGCTGTTCGGGTTGCCGTCGAGCTCCTCGCACGCCCTCGTCGGCGGGGTCGTCGGCTCGGTGCTCGCCGCCGTCGGCTCCTCCGGGGTGCTGTGGTCCGGCGTCGTCGCCAAGGTGCTGGTGCCCGCGCTGCTCGCCCCCGTCATCGCGATCGGCGTCGCCGCCGTCGGCACGTTCCTCGTGGCGCGCCTGACCCGCGGGATGGCCGAGGACGTCACCAGCCGCGGCTTCCGCTGGGGCCAGGTCGGCTCCGCCTCCCTGGTCTCCCTCGCCCACGGCACCAACGACGCCCAGAAGTCGATGGGCATCATCCTGCTGGCCCTCATCACCGCGGGCGCCGTCCCGGGGGACGCCGGCGTGCCGTTCTGGGTGATCTTCTCCTGCGCGTTCTTCATGGCGCTCGGCACGTACCTCGGCGGGTGGCGCATCATCCGCACGCTCGGCAAGGGTCTCGTCGAGATCGACAGCCGCCAGGGCATGGCCGCCGAGACGTCGTCGGCCGCCGTCATCCTGCTGTCCAGCCACTTCGGCTTCTCGCTGTCCACGACGCACGTCGCCACCGGTTCGATCATGGGTTCCGGCGTCGGCATGCCCGGCGCGAAGGTCCGCTGGGGCGTCGCCGGCCGCATGCTCGTCGCGTGGGGGCTGACGCTCCCGGCCGCGGGCATCGTGGGGGCGCTCTGCTACGGGATCCAGCACGGCGTCGGCGGCCTCGCGGGCACGTTCCTCGTGTTCCTGCTGCTGGTCGGCACCTCGGCCGCCATCTGGATCGCCTCGCGGCGCAAGCCCGTCGACCACACCAACGTCAACGAGCAGTGGGACGAGGAGTCCGGCGGCAGCCTGCGCGCCGCGGTGTCCGCCTCCGGCGTCGTGCCGGCCGCGGACGCCCACCGCTCCGAGCTCGCCGAGGCGGAGATCCACGAGCGCCGCGCGTCGGCACTGGCCGCGAGCCGGTCCGAGCGCGCGGCCGCCGACCGGACGGAGGAGCAGCGATGAMSRVTETLLLVLVVVTALAFDFTNGFHDTGNAMATSIATRALKPRTAVLLSAVLNMAGAFLSLAVAATIAKGLVDAGAISLEVVFAGLVGGIVWNLVTWLFGLPSSSSHALVGGVVGSVLAAVGSSGVLWSGVVAKVLVPALLAPVIAIGVAAVGTFLVARLTRGMAEDVTSRGFRWGQVGSASLVSLAHGTNDAQKSMGIILLALITAGAVPGDAGVPFWVIFSCAFFMALGTYLGGWRIIRTLGKGLVEIDSRQGMAAETSSAAVILLSSHFGFSLSTTHVATGSIMGSGVGMPGAKVRWGVAGRMLVAWGLTLPAAGIVGALCYGIQHGVGGLAGTFLVFLLLVGTSAAIWIASRRKPVDHTNVNEQWDEESGGSLRAAVSASGVVPAADAHRSELAEAEIHERRASALAASRSERAAADRTEEQRPGPT0002655_1105DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPHATE_TRANSPORT,PGPT0002655-TC_PIT-K03306NANA
AK018_011112328dapb1_1Dipeptidyl aminopeptidase BIGTGCGCGACAGTATCCACAGGCTGTCCGACGGCGGTACGCGGGGCGGGTGCAGCCCGTACGCTGGCGGGGTGCACGACGACGCCACCCCGGCCCGCTCCGGGTCCACCGCACCGCTGTCCACCCCCGCGTCGGGCACGCCCGACCTGCCCGCCCCGCCCGGGCACCCCCCGGTCGCGGACCGGCGTCCGACCCGGCGTACCCATCACGGCCACACGTTCGTCGACGACTACGAGTGGCTGCGCGCCAAGGACGACCCGGAGGTGCTGGCACACCTGGCGGCCGAGAACGCCTGGACGCAGTCCCGGCTCGCCCACCTGCAGCCGCTGCGCGAGCAGGTCTTCACGGAGATCAAGGACCGCACCCTGGAGACGGACCTGTCGGTGCCGGCCCGGCAGGGCGGCTACTGGTACTACGTCCGCACGGTCGAGGGACAGCAGTACCCGGTGCACGGCCGCGTGCCGGTGACCGACCCGGACGACTGGACGCCGCCCGCCCTGGAGCCGGGGGAGGTCCCGGACGGCGAGGAGCTCGTCCTGGACCAGAACGCCGAGGCCGCCGGGCACGACTTCTTCTCGTTGGGCTCGTTCTCGCTGTCGGCCGACGGCGGCCGGCTCGCCTACGCGGTGGACACCACCGGTGACGAGCGCTTCACGCTGCGGATCCGTGACCTGACCATGGGGACGGACCTGCCCGACGAGGTCGTCGGGACGTTCCCGGGGGCGACCCTCACCCCGGACGGCCGGTTCGTCTTCTACCCGACGGTGGACGACGCCTGGCGTCCCCACCGCATCTGGCGGCACGAGGTGGGCGCGCCGACCGCCGCGGACGTGCTGGTCCTCGAGGAGCCGGACGACCGGTTCTGGATCGGGGTGGGGCTGTCCCGTTCGGAGCGGTACCTGCAGATCGAGCTCGGCTCGAAGATGACCAGCGAGTCGTGGCTGCTGGAGGCCGACGACCCGACGGGCGACTTCCGCTGCGTGTTTACCCGCCGTGAGGGCGTCGAGTACACGGTGGAGCCCGCGCGGCTGCCCGGCGCGTCGGGCGTCGACGAGGACGTGCTGCTGGTGCTGCACAACGACGGCGCCCAGAACTTCGAGCTGGTCACGACCCCGGTACCTGCACCCGGCGCAGGCCCGGCGGACCCGGCGGGTGCCGCCGTCGTCGTGCCGCACGACCCGCAGGTGCGCCTGGAGGGTGTGGACGCGTTCGCCGGCCACGTGGTGCTCGGCGTGCGCCGTGGTGCCACCCCGCGGGTCGCCGTCGTCCCGCTCGCCGCGACCCGGCCGGGCGAGCCGTGGACGCCGCGCGAGCTGGAGTTCGACGAGCCGCTGTACTCGGCGGTCGTCGCCGACAACCCGGAGTTCGCCGCGCCGACGCTGCGGGTGCACGGCACGTCCTACGTCACGCCGCCCACGGTGCTCGACGTCGAGGTGGCCACGGGCGAGCGGCACGTGCGCCGCCGCCAGCCCGTGCTCGGCGGCTACGACCCGGACGACTACGTCCAGCAGCGCGAGTGGGCCACCGCCGCCGACGGCACCCGCATCCCGATCTCCCTGGTGTGGAAGCGCGACGCCGTCACCCTGGACGCCTCCGGCACCGGCGCCGACCCGGCCCCGCTCGTGCTGTACGGGTACGGCGCCTACGAGATCAGCATGGACCCGTACTTCAGCGTGCCGCGCCTGTCGCTGCTGGACCGCGGCGTCGTGTTCGCCGTCGCGCACGTGCGCGGCGGCGGCGAGATGGGGCGGGCCTGGTACGAGGGCGGCCGCCTGGAGCACAAACGCAACACCTTCACCGACTTCGTGGCGTGCGCCGGGCACCTGGTCGATGCCGGGTGGACCTCGCCGCAGCGCATGGTGGCCGACGGCGGCAGCGCCGGCGGGCTGCTGATGGGCGCGGTGACGAACCTGGCCCCGGAGATGTTCGCCGGCGTGCTGGCGGGGGTGCCGTTCGTGGACGCGCTGACCTCGATCCTGGACCCGTCGCTGCCGCTGACGGTCGTGGAGTGGGAGGAGTGGGGCAACCCGCTGTCCGACCCGGCCGTGTACGAGTACATGCGCTCCTACAGCCCGTACGAGAACGTGCCCGACGACGCCTCGCACTACCCGCAGATCCTGGCGGTGACCTCGCTGCACGACACGCGCGTGCTGTACGTCGAACCCGCCAAGTGGGTGGCGCGGCTGCGGGCCGCGGGCGCTCCGGCGCTGCTGAAGATCGAGATGTCTGCGGGGCACGGCGGTGTCTCGGGCCGGTACGCCCGCTGGGAGGAGATCGCGTTCGAGCACGCGTGGACCCTGGACGTGCTGGGCCTGGCCGCCGGCGACTGAMRDSIHRLSDGGTRGGCSPYAGGVHDDATPARSGSTAPLSTPASGTPDLPAPPGHPPVADRRPTRRTHHGHTFVDDYEWLRAKDDPEVLAHLAAENAWTQSRLAHLQPLREQVFTEIKDRTLETDLSVPARQGGYWYYVRTVEGQQYPVHGRVPVTDPDDWTPPALEPGEVPDGEELVLDQNAEAAGHDFFSLGSFSLSADGGRLAYAVDTTGDERFTLRIRDLTMGTDLPDEVVGTFPGATLTPDGRFVFYPTVDDAWRPHRIWRHEVGAPTAADVLVLEEPDDRFWIGVGLSRSERYLQIELGSKMTSESWLLEADDPTGDFRCVFTRREGVEYTVEPARLPGASGVDEDVLLVLHNDGAQNFELVTTPVPAPGAGPADPAGAAVVVPHDPQVRLEGVDAFAGHVVLGVRRGATPRVAVVPLAATRPGEPWTPRELEFDEPLYSAVVADNPEFAAPTLRVHGTSYVTPPTVLDVEVATGERHVRRRQPVLGGYDPDDYVQQREWATAADGTRIPISLVWKRDAVTLDASGTGADPAPLVLYGYGAYEISMDPYFSVPRLSLLDRGVVFAVAHVRGGGEMGRAWYEGGRLEHKRNTFTDFVACAGHLVDAGWTSPQRMVADGGSAGGLLMGAVTNLAPEMFAGVLAGVPFVDALTSILDPSLPLTVVEWEEWGNPLSDPAVYEYMRSYSPYENVPDDASHYPQILAVTSLHDTRVLYVEPAKWVARLRAAGAPALLKIEMSAGHGGVSGRYARWEEIAFEHAWTLDVLGLAAGDPGPT0020980_257DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020980-ptrB-K01354NANA
AK018_011121449hypothetical proteinATGACAGCGGACCGACCCGCCATCGCGAGCCGCGCACGCCGCATCCTTGCGGTACTCGCCCTCGCGCTGCTGCCCGCGCTGCTCGCCGCCCCACCCGCGGCCGCGAGCGCCGACACCACCTGCCAACCCGACGACGACACCGCGTGCGTCGCCGTGCTCGTCCTGACCGCGGACAACGACCGCGTCGGCGACGTCGCCGTCACCATCACCGGTGCCGACTTCGACGCCGAGCTCACCACGGTCGTCGACGGGCTGCCATCCGTCGAGGTCCCGAGCGTCGGGACGTACACCGTGGCGCTCGACCCGGCGACCCTCCCGGCCGACCAGCAGCTCCCCGAGGGCGCCGAGGCCGAGGTCGACGTCGTCGCCCAGACCGGCGCCACCGCACGGGCCGCGTTCCGCGTCGGCGCCGGGGCCGAGGCCCCGGAGTCGCCCTCCGCGACCGCCGAGTCCGACACCGCCGCCGACCCGGGCACCGACACCGGTACCGACACCGGCGCCGGGACCGAGGCCGACAGCGAGGGCGTCGGCGCCGCCCCCGAGGGCGACGCCTCCCAGCGGGACTTCTCCTGGGCGCAGGTCTGGCAGCAGATGGGCTCCGGGCTCCGCTTCGGACTCCTCCTGGCGCTGGCCTCCATCGGGCTGAACCTCGTGTTCGGCACCACCGGGCTGTCGAACTTCGCCCACGGCGAGCAGTTCGCGCTCGGCGCCGCACTCGGGTTCATCACCATCAACCAGATGGGGATGCCGATCTGGCTCGGCGGCATCGCCACCATCGCGGTCTGCGCCATGACCGGATGGGCGCAGGACGCCGGCATCTGGCAGCCGCTGCGCAAGCGCAACGTGCCGGTCATGCAGCTCATGATCGTGTCCATCGGTCTGTCGATCACCCTGCAGTACGTCATCCAGCTGCTCATCGGCGGCGGGTCCGAGCGGATCCTGTCCCAGAACCCGCGGCCCATCGAGATCGCCGGCATCACCCTCAGCGCCGCGTCGTGGCTGTCCATGGTCGTCGCGCTGGTGTGCGTGCTCGGCATCGCCTGGTTCCTGACCCGCACCCGCATCGGCCGGGCCACCCGCGCCGTGTCCGACAACCCGGCGCTCGCGTCCGCGACCGGCATCGACCCCGACAAGATCATCCGCATCGTGTGGGTCATGGCCACCGGGTTCGCCGCGCTGGCCGGCCTCATGTGGGGCATCTCGTTCGGGTCGTTCAACTGGCAGCTCGGCGTGCAGCTCCTGCTGCTGATGTTCGCCGCCGTCACCCTCGGCGGCCTGGGCACCGCGCTTGGCGCGTTCGTCGGGTCGCTGCTCATCGGGCAGGTCGTCGAGCTGTCCAACCTCGTGATCCCCAGCGACCTGCGCTACGCGTCGGCGCTGGTGATCCTCATCCTCGTGCTCCTGTTCAGGCCGCAGGGCATCCTCGGCCGCCGCGAGCGGATCGGCTGAMTADRPAIASRARRILAVLALALLPALLAAPPAAASADTTCQPDDDTACVAVLVLTADNDRVGDVAVTITGADFDAELTTVVDGLPSVEVPSVGTYTVALDPATLPADQQLPEGAEAEVDVVAQTGATARAAFRVGAGAEAPESPSATAESDTAADPGTDTGTDTGAGTEADSEGVGAAPEGDASQRDFSWAQVWQQMGSGLRFGLLLALASIGLNLVFGTTGLSNFAHGEQFALGAALGFITINQMGMPIWLGGIATIAVCAMTGWAQDAGIWQPLRKRNVPVMQLMIVSIGLSITLQYVIQLLIGGGSERILSQNPRPIEIAGITLSAASWLSMVVALVCVLGIAWFLTRTRIGRATRAVSDNPALASATGIDPDKIIRIVWVMATGFAALAGLMWGISFGSFNWQLGVQLLLLMFAAVTLGGLGTALGAFVGSLLIGQVVELSNLVIPSDLRYASALVILILVLLFRPQGILGRRERIGPGPT0020770_402DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
AK018_011131002hypothetical proteinATGGAAGAGTTCCTCCGCATCCTGACCCTGTCCGTGGGAGAGATCCTCGCTCCCACCACGGCCGCGTACGCCATGGCCGCCATCGGACTGAACCTGCACTTCGGGTACACCGGCCTGCTGAACATGGGCCAGGCCGGCTTCATGCTGCTCGGCGCCTACGGGTTCGGCATCACGCTGACGCTCGGCGGCCCCATCTGGCTGGCGATGCTCATCGCGATCGCCGCCGGCGTCGTCTTCGCCCTCATCCTCGGCATGCCGACGCTGCAGCTGCGCGGCGACTACCTCGCCATCGTCACGATCTCCGCCGCGGAGATCGTGCGCTGGTTCGGCCGCTCCACCCTCTGGCAGGAGTGGACCGGCGGCGCCTCCGGCCTGCAGGGCCGCTACTACAAGGACCCGTTCCACGCCCTGTCCCCGCTGCCCGAGGGCCGCTGGGCGCTCGGACCGCTGGAGTACATCAACACCGGGTCCGACTCCTGGTTCACGCGCATCTTCGCCTGGGGCCTGGTCGCCCTGGTCCTGCTGTTCGTCTGGCTGATCACGCGCAGCCCGTGGGGCCGCGTGCTCAAGGGCATCCGTGAGGACGAGGACGCCGTGCGCGCCCTCGGCAAGAACGTCTACAGCTACAAGCTGCAGGCGCTGGTCATCGGTGGCGCCATCGGTGCCCTCGGCGGTGTCATCTACGCGATCCCCCTGGCGATCTCCCCGGACGCCATGGGCCGCACCATGACGTTCTTCGTCTGGACCGTGCTGCTGCTCGGTGGCGCCGCCACCGTGTTCGGTCCGGTGCTCGGGGCGGTCGTGTTCTTCACCGCCTACATGTTCATGCGCACCGGGATGCGCGCCGTCTCGGAGAACACCGGTGTCGGCGAGTTCATCTCCTCGACCAACGTGGAGCAGATCGGCGGCATGCTGGTCGGTATCACGTTGATGTGTCTGGTGATCTTCCGACCACAGGGCATCCTCGGGAACAAGAAGGAGCTGGCGTTCAATGTCCGCTGAMEEFLRILTLSVGEILAPTTAAYAMAAIGLNLHFGYTGLLNMGQAGFMLLGAYGFGITLTLGGPIWLAMLIAIAAGVVFALILGMPTLQLRGDYLAIVTISAAEIVRWFGRSTLWQEWTGGASGLQGRYYKDPFHALSPLPEGRWALGPLEYINTGSDSWFTRIFAWGLVALVLLFVWLITRSPWGRVLKGIREDEDAVRALGKNVYSYKLQALVIGGAIGALGGVIYAIPLAISPDAMGRTMTFFVWTVLLLGGAATVFGPVLGAVVFFTAYMFMRTGMRAVSENTGVGEFISSTNVEQIGGMLVGITLMCLVIFRPQGILGNKKELAFNVRPGPT0020570_100DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020570-natC-K11955NANA
AK018_01114915lptB_1COG1137Lipopolysaccharide export system ATP-binding protein LptBATGTCCGCTGAGCACACCGCGACGGTCTCCACGCCGTCCGACCTCGAGACGGTCGCCGCCACGCCCGGGGCCGCCAAGCCGAACCCGATCCTCGTCGCCGACCACGTGGTGCGCCGCTTCGGCGGCATGACCGCTGTGGACGTCGACCACCTGGAGGTCCAGGAGGGCGTCATCACGGCGCTCATCGGGCCCAACGGTGCCGGCAAGACGACGTTCTTCAACCTGCTGACCGGGTTCGACACCCCGAACACCGGCCAGTGGAGCTTCCAGGGCCGGTCGCTGACCGGCAAGGGGGGCGCCGCCGTCGCCAAGGCGGGCGTGGTCCGCACCTTCCAGCTCACCAAGGCGCTCAGCCGGCTGACGGTGCTGCAGAACATGCTGCTCGCCTCCCCGACCAACCCCGGCGAGAAGCTCGGGCTGTCGTGGCTGCCGTTCGTGTGGAAGAAGCACGAGGCCGAGGCCACCGAGAAGGCCATGGAGATCCTGTCCCGTTTCAAGCTCGACGCGAAGGCGTCGGACTACGCGGGGTCGCTCTCCGGCGGGCAGCGCAAGCTGCTCGAGATGGCCCGCGCCCTGATGACCGACCCGACGATGATCATGCTCGACGAGCCCATGGCGGGCGTGAACCCCGCCCTGGTGCAGTCGCTGCTCGGGCACGTCCAGGCGCTGCGCGACGAGGGCATGACCGTGCTGTTCGTCGAGCACGACATGCACGCCGTGCGGCACATCTCCGACTGGGTCGTGGTCATGGCCGAGGGCCGCATCGTGGCCGAGGGGCCGCCCAGCACCGTCATGAAGGACCAGGCCGTGGTCGACGCCTACCTCGGCGCCCACCACGACACCGACCTCGGGGACGACTCCCTGCTCGACCCCGAGGTCCTCGCCCGGCTCGAGGCCGAGGAGGAGAACCGATGAMSAEHTATVSTPSDLETVAATPGAAKPNPILVADHVVRRFGGMTAVDVDHLEVQEGVITALIGPNGAGKTTFFNLLTGFDTPNTGQWSFQGRSLTGKGGAAVAKAGVVRTFQLTKALSRLTVLQNMLLASPTNPGEKLGLSWLPFVWKKHEAEATEKAMEILSRFKLDAKASDYAGSLSGGQRKLLEMARALMTDPTMIMLDEPMAGVNPALVQSLLGHVQALRDEGMTVLFVEHDMHAVRHISDWVVVMAEGRIVAEGPPSTVMKDQAVVDAYLGAHHDTDLGDDSLLDPEVLARLEAEEENRPGPT0020580_145DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020580-natA-K11957NANA
AK018_01115933btuD_3Vitamin B12 import ATP-binding protein BtuDATGAGCACCACCGCGACCGCACCCGGCGAGACCATGTCGGCCGCCGGGTTGCCCCAGAAGGACCTGCTGCTGCACGCCGACAACCTCGTGGCCGGGTACCTGCCGGGGGTGAACATCCTCAACGGATGCTCCCTCGAGGTCGCCAAGGGCGAGCTCGTCGGCATCATCGGGCCCAACGGCGCCGGCAAGTCGACCCTGCTCAAGGCGCTGTTCGGGCTGGTGAAGATCCACTCCGGCACGGTCACGCTGGAGGGCAAGGACATCACCGGCAAGAAGGCCAACAAGCTGGTCGCCCAGGGCGTCGGGTTCGTGCCGCAGAACAACAACGTGTTCCCCTCGCTGACCGTCGAGGAGAACATGCGGATGGGCACGTTCCTCAAGCCGAAGATCTTCGCCGAGCGGTGGCAGTTCATCGGGGACCTGTTCCCCGTGCTGCACGAGCGCCGCTCGCAGCGGGCGGGAGCGATGTCCGGCGGTGAGCGGCAGATGGTCGCCATGGCCCGGGCGCTCATGATGAACCCGTCCGTGCTGCTGCTCGACGAGCCGTCCGCCGGCCTGTCCCCGGTGCGTCAGGACGAGACGTTCCTGCGCACCCGCATGATCAACAAGGCCGGCGTCTCGGTGATTATGGTCGAGCAGAACGCGCGCCGCTGCCTGCAGATCTGCGACCGGGGATACGTGCTCGACCAGGGCAAGGACGCGTACACCGGCACGGGGCGCGAGCTCCAGGCCGACCCGAAGGTCATCTCGCTCTACCTCGGCACCCTGGCCGAGGACGTCGACGAGGCGGACGCCGCCGCGGAGGCGGACGCGCAGCCGGACGCGCAGGCCGAGGCGCCCGACGAGCAGTCGGATGTGCAGCCGGGTGTGCAGCCGGATGTGCAGGTCGACGTCGACGGTTCTCCCGAGGTAGGCAACGACCCCGCGAAGTAGMSTTATAPGETMSAAGLPQKDLLLHADNLVAGYLPGVNILNGCSLEVAKGELVGIIGPNGAGKSTLLKALFGLVKIHSGTVTLEGKDITGKKANKLVAQGVGFVPQNNNVFPSLTVEENMRMGTFLKPKIFAERWQFIGDLFPVLHERRSQRAGAMSGGERQMVAMARALMMNPSVLLLDEPSAGLSPVRQDETFLRTRMINKAGVSVIMVEQNARRCLQICDRGYVLDQGKDAYTGTGRELQADPKVISLYLGTLAEDVDEADAAAEADAQPDAQAEAPDEQSDVQPGVQPDVQVDVDGSPEVGNDPAKPGPT0020785_868DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
AK018_011161038hypothetical proteinATGGCCCAGACCGAACCGCTGCACGCGCCCGCCGTGCGCCGCCTGACCGGGATCCTCGAGACGATGAACACGCCGGGATCCCGGTTGCGCTCGATGCTGTCCGCGGACCGCGATCCTCCGCTCGTGCCGCCGTCCGTGGACGCCCGCCTCGCCGACCCCGAGCTCATGACGCGAGGCCTCGCGGCAGGCCGGTACACGGCGGTGCGCAGGTCGCTCCTGTCCGCCCCTCCGGACATCGAGGCCTACGAGGCGTGGATCCTCGGGCAGGTGCGTGCGCTGGTGGAGTCCGCCCGCGGCCCCCTCTGCTTCAGCCACTCGACGGCGGTGCTGCTGCACGGTGCCTGGTCGTACGCCACGCCGCGCCTCGTCCACGTGACGCATCCCGCGAACCCGCACGTCCGGCGTCGTGCCGAACCCGATGTCCGCAGACATCACACGCGGCTTTCCGGTCGTGACTGCTCCACGGTCGCCGGCATCCGCGTCACGTCGAAGGAACGCACCCTGGTGGACTGCTTGCGGACGCTGCAGCCTGCCGCCGCTCTCGTCGCCGCCGACTCGCTGTTCCGCCTCGGGGCTGTGCCCGCAGAGGTCGGCCGTGTGATGACCGCCTCGTGGGGCAAGCGCGGCATGGTGCAGGCACGGCGCCTCCTCGACGTCTGCGACCCGCGTTCCGCGTCACCCGGGGAGACGGTGGCGCGGTTGGCCGCGATCGACGCCGGACTGCCTCGACCCGAGTGCCAGATGCTGGTCAGCACCCGGTCGGGGGACCGGTTCGTCGACCTCGGGTGGCCGGAGGTCGGGGCCGGGGTGGAGTTCGACGGCGAGGTCAAGTACTCGGGAGGAGAGTTCGGGCTGCCGGCCGACGTCCTGCGCCGGCAGCAGGAACGCCACGAGGACATCGTGGCGGCCGGCGTCGACCTGCTCCGTGTCGGGTGGGCCGAGCTCTCCGATCCCCAGCAGCTGGGCTTCGACGTGCGTGAGGTGTACGAGGCGGCACTGCGGCGCTCGTCCCGGGAGATCCGCCGTCGGGCAGCCTGAMAQTEPLHAPAVRRLTGILETMNTPGSRLRSMLSADRDPPLVPPSVDARLADPELMTRGLAAGRYTAVRRSLLSAPPDIEAYEAWILGQVRALVESARGPLCFSHSTAVLLHGAWSYATPRLVHVTHPANPHVRRRAEPDVRRHHTRLSGRDCSTVAGIRVTSKERTLVDCLRTLQPAAALVAADSLFRLGAVPAEVGRVMTASWGKRGMVQARRLLDVCDPRSASPGETVARLAAIDAGLPRPECQMLVSTRSGDRFVDLGWPEVGAGVEFDGEVKYSGGEFGLPADVLRRQQERHEDIVAAGVDLLRVGWAELSDPQQLGFDVREVYEAALRRSSREIRRRAANANANANANA
AK018_011171299hypothetical proteinATGAATCGACGCATGACCGCTGCGAAGGGCGTCGCCCTCGCAGCAGCCCTGAGCCTGGGCCTCGCCGCCTGCGGGTCCTCGGAGGAGCCCACCGACGAGAGCACCGCGGACGAGATGGCCGAGGGCGAGAGCTCCGCCGACCCCCTTGTCATCGGGACGACCCTGCCGGTGACCGGCACCCTGTCCTTCCTCGGGCCGCCCGAGATCGCGGGTGTCGGCCTGGCCGTCTCGGACATCAACGAGGCGGGCGGCGTCCTCGGCAACGAGGTCACCGTCGAGTGGGGTGACTCGGGTGACAACACCGACGCCACCGTCGCGAACTCGACCGCGACCGACCACATCAGCCAGGGTGTCGACGCCGTCATCGGCGCGGCCTCGTCCTCCGTGACGCTGGGTGTCGTCGACACCTACGTCGAGGCGGGCATCATGATGATCTCGCCGGCCAACACCTCGGCCGAGCTGTCCGACTACAGCGAGCTCTACACGCGCACCGCTCCGCCGGACACCGTCCAGGGCGCGGCGCTCGGTTCGCTGATCCTCGAGGGCGGGCACACGGACGTCGCGATGATCGTGCTGAACGACTCGTACGGCACCGGCCTGCGCGACCACACGCAGTCGGCCATCGAGGCCGGCGGCGGCACGGTCGTCTACGGCGCCTCCGGCGAGGGCCAGGAGTTCCCCCCGGGTGAGACGAACTTCGGCTCGCAGGTCTCCGCCGCGCTGGCGACCGACCCCGACGCCCTCGTGCTCATCGCCTTCGAGGAGACCACCGCCGCGGTCAACGAGCTCGTGGCCCAGGGCTGGGACTTCGACGGCACCACGTACTTCACGGACGGCAACCTGTCGAACGGCTACGAGTTCGACGAGGGCACCCTCGCCGGTGTCCAGGGCACCCTGCCGGGCGCCCAGGCCGACGACGACCTCCGTGAGCGCCTGAACACCTGGTACTCGGAGAACGAGGGTGGCGAGCTCGACGGCTACTCCTACTCCGCCGAGTCCTACGACGCCACGATCCTGGCCGCGCTCGCCGCGGTCCGTGGTGGGGACACCAGCGGTCAGGCCATCGCCGACAACATCAAGGCGGTCTCGGGCGCCGAGGGTGGCACCGAGGTGACCACCTTCGCCGAGGGCGTCGAGGCGCTGGAGGCGGGTGACGAGATCAACTACACCGGTCCGTCCGGCACCGGCCCGCTCAACGAGATGAACGACCCGTCCTCGGCCTTCATCGGCATCTACGAGTACGGCGACGACAACCAGTACGAGTACGTGCGCCAGATCGAGGGCACGACGGCCGAGTGAMNRRMTAAKGVALAAALSLGLAACGSSEEPTDESTADEMAEGESSADPLVIGTTLPVTGTLSFLGPPEIAGVGLAVSDINEAGGVLGNEVTVEWGDSGDNTDATVANSTATDHISQGVDAVIGAASSSVTLGVVDTYVEAGIMMISPANTSAELSDYSELYTRTAPPDTVQGAALGSLILEGGHTDVAMIVLNDSYGTGLRDHTQSAIEAGGGTVVYGASGEGQEFPPGETNFGSQVSAALATDPDALVLIAFEETTAAVNELVAQGWDFDGTTYFTDGNLSNGYEFDEGTLAGVQGTLPGAQADDDLRERLNTWYSENEGGELDGYSYSAESYDATILAALAAVRGGDTSGQAIADNIKAVSGAEGGTEVTTFAEGVEALEAGDEINYTGPSGTGPLNEMNDPSSAFIGIYEYGDDNQYEYVRQIEGTTAEPGPT0020565_75DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020565-natB-K11954NANA
AK018_01118816hypothetical proteinATGCGCCACATCAGCCGGATCGTGACGAACCTGTTATGCGTCTCACTCCGACCTTCACATCGTGAGACGAGGTCCACGGTCGGGCCCGGATCCGGAGGTGGGACCGGCGCGGTTCGGTTCCGGCGTGCTGCTCGGCGCGGGCGCCGGGGGGCGGCGGGCAGGTGCGTCCGCGCGTCGGCAGCCGGGGCGGTCGCGGCGGGTGCGGGGAGCACTCGGCGCCAGCGGCGAGCGTCGCCGGGTCCCGCGGCACGGCGGCGGTCGTGGCGGCCCGCACCGGTCCCCGGCGCGAACCCGGCCACCACGGGCGCGCGGCGCACGGCGCGGGCGGACTCGGCGCCGGCCGCGCGCAGACGCGGTCCATCCACCACAAGGGTCGCGCTGACCAGGCGGTTCGGGTGCCTCTGCGCGGCTCGCGGGCCACGGTGGCGCGTACGGCAGCCCGTCACGACATCCCCGTCGCCGCGACTGCTCCAGCTCGGATCGGGACGGCGGACGAGGCCCGGGGCGGAGCGCTCGAGCCGGCGCTCGGGCGAGGGCCCCGTCCGCCGGGGGCGGGATCCGCGGCTCACTCCTCGCGCGGCAGCCCGGCCCGTCCCGCACGCGGGGTCCCGTCGTCGTCGGCGGCATGCCGGGGTCGCGGCCGCTCCACCGGCCGGGCGCTACGCGTCGCCGTGCGTGCCGTCGTCCGACACCGGGAGCACGCCCGGAGCGACCTGCCCGTTCTCGACATCGTTGTTGAGGGTGAGACACCGGCAACTCGCCGACCACATTTCGGTTCTTGTACTGGTGCGACGCCGTCCGCTCGCGTACCGTTGAMRHISRIVTNLLCVSLRPSHRETRSTVGPGSGGGTGAVRFRRAARRGRRGAAGRCVRASAAGAVAAGAGSTRRQRRASPGPAARRRSWRPAPVPGANPATTGARRTARADSAPAARRRGPSTTRVALTRRFGCLCAARGPRWRVRQPVTTSPSPRLLQLGSGRRTRPGAERSSRRSGEGPVRRGRDPRLTPRAAARPVPHAGSRRRRRHAGVAAAPPAGRYASPCVPSSDTGSTPGATCPFSTSLLRVRHRQLADHISVLVLVRRRPLAYRNANANANANA
AK018_01119204cspA_1COG1278putative cold shock protein AATGGCCACCGGAACCGTGAAGTGGTTCAACAGCGAGAAGGGCTACGGCTTCATCGCCCCCGAGGACGGCACCGCCGACGTGTTCGTCCACTTCTCCGCCATCCAGTCGCAGGGCTACCGCACCCTCGACGAGGAGCAGAAGGTCGAGTTCGACGTCACGCAGGGCCCCAAGGGCCCGCAGGCGGAGAACGTTCGCCCGCTCTGAMATGTVKWFNSEKGYGFIAPEDGTADVFVHFSAIQSQGYRTLDEEQKVEFDVTQGPKGPQAENVRPLPGPT0014675_7748DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_01120771hypothetical proteinATGGGTTTCCTCGACAAGCTCCTCGGCCGGTCCCGCGACGACCGCTCCATCCCCGGCATGACCGGGGGCGGTGTGCCGCGGGGATACGAGTCCCCGGCCTCCGCGTACCAGTCCCGCCCGACGGGGGCACCGGCGTCGCCCGGCGGCGGCACCGCGCGCTCCGAGGACGAGGTCGCCATCGACCGCTACCGCTACCTGCTGCGCACCGCGCCGCCTGACGGCGTCGAGCAGGCGCACGCCGAGGCGTTCGCCCAGCTCACCCCCGAGCAACGACGGCAGGTGCTCGCCGAGGTCGGCGCGTCGGTGCCGGAGAACGAGCGGGCCACCTCCGACGACCCGCAGTCGCTGGCTCGCATGGCGACGCGTGCCGAGATGCGCAACCCGGGCACGCTGGAGAACACCTTCCGCGGGGGCGGGGCTCCCGGGTTCGGTTCGATGGTGGGGTCCAGCCTGCTCGGCACCGTGGCCGGCGTGGTGATCGGTTCCGCCGTCGCGAACGCGATGTTCGGGCCCGCCTTCGGCGATCCCGGGACGCCGGTCGCCGAGGACGCGGCCGCCGAGGCAGGCGGCGGCGAGGCGGGCGGCGGCGAGGACGCCGGAGCCGATGGAGCAGACGCCGCGGGCGCCGACGGCGGGATGACCGAGGCTGCCGGTGACCCCGGTGCGGACGCCGGCGGCGACGACGGCTTGTTCGGCGGCCTCTTCGGGGGCGACGGCGGCGGGTTCGGTGACTTCTTCGGCGGTGACGGCGGTGGCGGGTTCGAGATCTGAMGFLDKLLGRSRDDRSIPGMTGGGVPRGYESPASAYQSRPTGAPASPGGGTARSEDEVAIDRYRYLLRTAPPDGVEQAHAEAFAQLTPEQRRQVLAEVGASVPENERATSDDPQSLARMATRAEMRNPGTLENTFRGGGAPGFGSMVGSSLLGTVAGVVIGSAVANAMFGPAFGDPGTPVAEDAAAEAGGGEAGGGEDAGADGADAAGADGGMTEAAGDPGADAGGDDGLFGGLFGGDGGGFGDFFGGDGGGGFEINANANANANA
AK018_011213675hypothetical proteinATGTTCCTTCTCGGTGGCGACGGGGCTCGCGGCGGGGCGACGCTCGTCCACTCGGCGAGCGACCTGGTCGTGGCCGCGGAGTGCGAGCACGCGTTGCTGCGCCGGCTGGACGAGGTGCTCGGTCGGGTGCCGGCGCGGCCGCGCGAGCGCGACGAGATGCTGGAGCGCACGGTCGCCCTCGGGGAGTCCCACGAGCAGGCCGTCCTGGGCGAGCTGCTCGACCGCTACGGGGAGGCGCCGTCCGACGGTCCGGGCGGCGTGGCCGAGATCGCCGCACCGCGCCGCATGACGGTCGAGGACCTGACGGCCGCCCACTCGGCGACGCTGGCGGCCCTGGAGGGCGGTGCCGACGTGGTCTACCAGGCCGCGTTCTTCGACGGCCGGTTCCACGGCCGGGCCGACTTCCTGGTCCGGGACGGCTCCGGGCCCGGGCCGCGGTACTCCGTGTGGGACACCAAGCTGGCGCGCCGCGAGAAGGTCCGCGCCGTGCTGCAGCTCGCCGCGTACGCGGACCAGCTCCTCGCGGCGGGCATCGACCCGACCGAGACCGCCCACCTGGTGCTCGGCACCGGCGAACGCACCGACCATCTGCTGGAAGAGGTGCTGCCCGTCTACCGCGCGCGCCGCGACCGGATGCTCGACGTCGTCGCGCGGCACGTCGACGCGGGCGAGCCGGTGGCCTGGGACGATCCCGGGCACGGCGCCTGCCGCCGGCTCGGCGCCTGCCCGGACTGCGCGGCCGCGGCCGAGGCCCACCAGGACGTGCTGCTGGTCGCCGGGGTCCACGCCCCGCAGCGGGCGCGGTTCGCCGAGGCCGGGATCACCACGATGGCCGGGCTCGCCGGCGCGACGGCGGCGCCCGCGGGCATGAACCCGGACCGGTTCGCGGGGCTGCGGCGGCAGGCCGCGCTGCAGCTCGGCACCGACCCCGGCCACGGGTCCGTCAAGGTCGAGACCGACGACGGCCCCGGCGAGCTGCGCTGGGCGCTCACCGACCCGACCGCCGTCGAGCGGCTGCCCGAACCCAGCGACGGCGACGTGTTCTTCGACTTCGAGGGCGACCCGTTGTGGACGCCGCCCGACGACGTCACGGCACCGGCGGCGTCGGGCATCGACTACCTGTTCGGCTGGGTGACGCGCGACCTCGACGCCGAGGGCCGCCCCGCCTTCCACGCGCTGTGGGCGGACTCGTTCGCCGGCGAGGCCGAAGCGCTGCGGCGCTTCGTCGACGAGATGGCCGAGCGACGTCGTCGCTGGCCGGACATGCACGTCTACCACTACGCCGCCTACGAGCGCACCCACCTGCTGTCCATCGCCGCACGGCACGGGGTCTACGAGGAGGAGGTCGACGACCTGCTGCGCTCCGGCGTCCTGGTCGACCTATATGCGACGGTGCGCTCCGGGCTGCGGATCTCCCACCGGTCGCGCTCCATCAAGAAGCTCGAGCCGCTGTACATGGGGGACGAGGCGGCGCGGTCCGGGGTCACCGACGCCGCGACGTCCGTGGTCGAGTACGCCGAGTACTGCGACCTGCTCGCCGCCGGTGACACCGCCGAGGCCGCGCGCCTGCGCTCCGAGATCCTGGACTACAACCGCTACGACTGCCTGTCGACGCTGCGGCTGCTGGACTGGCTGCGGTGGGCGCACGACGAGGTGGTCGGCCCGGTGGACCGCCCCGTCGCGGCGCCCCTGGACGTGGAGGAGCCGCGGGAGACGACGCCGGAACGCCAGGAGCGCGAGGCGTTGGAGGCCGACGTGCGGGCCGCCGTCGAGCACGCCCACCCGCACGAGCCGGACGACCGCGCCGCCGTGCGCGCCCTGAGCCTGCTCGGCGCCGCCGTCGGATACCACCGGCGCGAGTCCAAGCAGTTCTGGCAGGCGCACTTCTCGCGGATGCAGCTCCCGCCCGACGAGTGGCCCGGGCGCCGCTCCGCCTCCGTCGTCGAGAGCTGCCGCGTGCTCAGCGACTGGGAGACCGAACCCGGCAAGCGCGCCCCGTCGCGGGTGCTCGCACTGACCTGCCAGGCCGTCGAGGGCAGCGAGCTGCGCGCCGGGGCGAGCGCGTTCCTGCTCTACGACGTGCCGTGCCCGCCGGTGATCGGGGCCGTGGAGGCCCTCGCGCAGCGGTGGTTCCACGCCAAGATGGCCATCCAGGACGTGCAGCGGGTGGTCGACGGCGACCGCGATCTCGACGTGTTCGTCGTGCGTGAGCACGTGGGGCCCGGGCAGGAGACGCACGACGACGTCCCCTGCGCCCTGAGCATCAACAGCCACGTGCCCGCCGGCCCGCTGGAGACGGCGACGGCCGAGGCCGGCCGGGCGGCGCTCGAGGCCTGGCAGGCGGGCGAGTCCGCCGGCGCCGCGATGGCCGACCGGCTGCCCGCGGGACCCATGACGGACCTGCTGCAGCGCCGCCCCTCGCGGGTCACGGGCGGTCTGCCGGTGGCGCCGCCCGGGCCGGACGGGGAGCCCGACGTCGTGACCGCCGTCGAGCAGGCCGTGCGTCGCCTGGACCGTTCCTACCTGGCCGTCCAGGGCCCGCCCGGGACCGGCAAGACCTACCTGGCCTCGCACGTGATCGCCGCGCTGGTCGCCGACGGGTGGCGCATCGGGGTCGTCGCGCAGTCGCACGCCGTCGTGGCGAACCTGCTCGGTGGGGTGCTCGGGGCCGGAGTCCCCGCCGAGCAGGTCGCGAAGAAGCTGCCCTCGGGCGTGAAGCCCGCCGAGTCGGGGACACCGTGGCAGGACGTGAACGCGGACGGGCTGGCCACGTTCGCCGCCGAGGCGCTGGACGCGGGCCGTGGTTGCGTCGTCGGCGGGACGGCGTGGGACTTCGCGCACGAGCGCTGGGAGCCCGACGGGCTCGACCTGCTCGTCATCGACGAGGCGGGACAGTTCGCGATCGCCAACACCGTCGCCGTCGCGCGGGCCGCGTCCCGGCTGCTGCTGCTCGGCGATCCCCAGCAGCTCCCGCAGGTCTCCCAGGGCACCCACCCCGATCCCGGGGTGGCGGGCTCGGCGCTCGGGTGGCTCGCCGACGGCCACGAGACGCTGCCCGGCGAGTTCGGGTACTTCCTGCCCGCCTCGCGCCGGATGCATCCCGCGCTGTGCGCACGGGTCTCCGACCTGGCCTACTCCGGGCGGCTGCACGCGCACTCGACCGCCTCTGGACGTGCCATGGACGGGGTGGAGCCGGGGGTGCGGCAGGTGCTCGTCGACCACGTCGGGCGCGCCGTGTCCTCCGTCGAGGAGGCCGACGAGGTGGTGCGGCAGGTGCGGGCCGTGCAGGGACGCGCGTGGGTGTCCGCCCCGGGGGAGGCACCGCGCCCCCTCGGTCCCGAGGACGTCATCGTCGTGGCCGCCTACAACGCGCAGGTGTGGGCGGTGCGGCACGCCCTCGACGCGGCCGGGCTGGAGGACGTACCCGTGGGGACGGTCGACAAGTTCCAGGGCCAGGAGGCGCCCGTCGCCATCGTGTCGATGGCGGCGTCCTCGCCGGAGGAGGTGCCCCGCGGGATGCGGTTCCTGCTCAGCCGCAACCGGATGAACGTCGCGGTGTCGCGCGGCAAGTGGTGCGCGATCGTGGTCCGCTCACCCCGGCTGACCGACTACCTGCCGACCTCCGTGGAGGACCTGGAACAGCTCGGCGCGTTCCTCCGCCTCACCGCGAGGTAGMFLLGGDGARGGATLVHSASDLVVAAECEHALLRRLDEVLGRVPARPRERDEMLERTVALGESHEQAVLGELLDRYGEAPSDGPGGVAEIAAPRRMTVEDLTAAHSATLAALEGGADVVYQAAFFDGRFHGRADFLVRDGSGPGPRYSVWDTKLARREKVRAVLQLAAYADQLLAAGIDPTETAHLVLGTGERTDHLLEEVLPVYRARRDRMLDVVARHVDAGEPVAWDDPGHGACRRLGACPDCAAAAEAHQDVLLVAGVHAPQRARFAEAGITTMAGLAGATAAPAGMNPDRFAGLRRQAALQLGTDPGHGSVKVETDDGPGELRWALTDPTAVERLPEPSDGDVFFDFEGDPLWTPPDDVTAPAASGIDYLFGWVTRDLDAEGRPAFHALWADSFAGEAEALRRFVDEMAERRRRWPDMHVYHYAAYERTHLLSIAARHGVYEEEVDDLLRSGVLVDLYATVRSGLRISHRSRSIKKLEPLYMGDEAARSGVTDAATSVVEYAEYCDLLAAGDTAEAARLRSEILDYNRYDCLSTLRLLDWLRWAHDEVVGPVDRPVAAPLDVEEPRETTPERQEREALEADVRAAVEHAHPHEPDDRAAVRALSLLGAAVGYHRRESKQFWQAHFSRMQLPPDEWPGRRSASVVESCRVLSDWETEPGKRAPSRVLALTCQAVEGSELRAGASAFLLYDVPCPPVIGAVEALAQRWFHAKMAIQDVQRVVDGDRDLDVFVVREHVGPGQETHDDVPCALSINSHVPAGPLETATAEAGRAALEAWQAGESAGAAMADRLPAGPMTDLLQRRPSRVTGGLPVAPPGPDGEPDVVTAVEQAVRRLDRSYLAVQGPPGTGKTYLASHVIAALVADGWRIGVVAQSHAVVANLLGGVLGAGVPAEQVAKKLPSGVKPAESGTPWQDVNADGLATFAAEALDAGRGCVVGGTAWDFAHERWEPDGLDLLVIDEAGQFAIANTVAVARAASRLLLLGDPQQLPQVSQGTHPDPGVAGSALGWLADGHETLPGEFGYFLPASRRMHPALCARVSDLAYSGRLHAHSTASGRAMDGVEPGVRQVLVDHVGRAVSSVEEADEVVRQVRAVQGRAWVSAPGEAPRPLGPEDVIVVAAYNAQVWAVRHALDAAGLEDVPVGTVDKFQGQEAPVAIVSMAASSPEEVPRGMRFLLSRNRMNVAVSRGKWCAIVVRSPRLTDYLPTSVEDLEQLGAFLRLTARNANANANANA
AK018_01122966hypothetical proteinATGACCGTGCGATTCAACCCCCCTCCCGGCTGGCAGGTCCCCCCGGGCTTCCGGCCCGAGGCCGGCTGGTCGCCCGACCCGTCCTGGCCGCCCGCCCCCGCCGGGTGGGAGTACTGGGTGGACGACGACGCACCCGCCACCGCGTCGCCCGCCACCGCCCAGGACCCCGGCGCGACGGCGGTCATGACGCCGGTCAGCGCCTTCGACCCGGCCCCGGCGTCCCCGGCCTCGGCCCCGACGACGGCGGCACCCGGCCCCGCAGCACCCGGCCACGCGCCCGGCGCGGGAGCCAACCCGCCGGGCCCTCCGGCGTCGGCGGCACGACCGCCGTCGGACCCGCACCCGACCCAGCGGGCCACGGCACCGGTGCCGCCGCTCGGTCAGCCCTCCGCCGCGGAGCGCGTCGACCCCCGCGTGGCCGCCCAGCAGGCCGCGGCCGCGGAGGCCCAGCGCGAGGCGCAGCGCCCGCGTCGTCGCGGCCCCTCCCCCCTCGTGCTCGCCGGCGGCGGGGTCGCGTGCCTCGCGCTCGGCATCATCGTGGGCGTCATGTTCTCCATGGTGCAGACCTCCGACGCCCGCCAGGCCGTGGCCGACGCCGAACGCCAGGTCGCGGCCGCCGAGGAGCTCGAGGCCGAGGTCGCCGACGAGCGCGCCCAGATGGAGGAGCGCTCCACCACGCTGCAGGAGCGGGAGGACGCCCTCACGGAGCGGGAGAACGAGATCGCCGAGAAGGAGTCCGAGCTCACAAGCCGCCAGAACGAGCTCGACGAGCAGGCCGCCCAGCGCGAGGAGGAGCAGCAGGAGCAGGAGCAGCAGGACCGGGGCGGTGGCGGCGACCAGTGGTGGTACTGGAGCTGTGACGACGCCCGCGAGTCCGGCGCTGCGCCGATCCAGCAGGGGCAGCCCGGCTACCGCGGCGGCCTCGACGCCAACGGCAACGGCATCGCCTGCGAGGGCGGGGAGTAGMTVRFNPPPGWQVPPGFRPEAGWSPDPSWPPAPAGWEYWVDDDAPATASPATAQDPGATAVMTPVSAFDPAPASPASAPTTAAPGPAAPGHAPGAGANPPGPPASAARPPSDPHPTQRATAPVPPLGQPSAAERVDPRVAAQQAAAAEAQREAQRPRRRGPSPLVLAGGGVACLALGIIVGVMFSMVQTSDARQAVADAERQVAAAEELEAEVADERAQMEERSTTLQEREDALTERENEIAEKESELTSRQNELDEQAAQREEEQQEQEQQDRGGGGDQWWYWSCDDARESGAAPIQQGQPGYRGGLDANGNGIACEGGENANANANANA
AK018_01123477hypothetical proteinGTGATCCAGGCCCTGCAGGAGTTCACCGAGTCCCTGTCCCCGATGCTGCAGTGGCTCGGCGTGATGCTCGCCGGGGCGATCCCGTTCGTGGAGTCCTACGCCGGCTCCGTGCTCGGCATCCTCGCCGGCGTCAACCCGGTGGTCGCGGTCGTCGCCGCCGTCGTCGGCAACGTCGTCTCCATGATCGTGTTCGTGCTGGTCGCCGGGCGGCTGCGGCGCGCCGCCACCGCCGGGCGCAGCAAGCCGGAGACCCCGCGCCGCGTCAAGCTGCGCCGACGCTTCGACAGGTACGGCGTCGCCGGCGTGAGCCTCCTCGGCCAGACGGTGCTGCCCAGCCAGATCACCTCGGCGATCATGGTCTCGTTCGGGGCCTCGCTGCGCGCCGTCATCGGCTGGCAGATCGTCTCGATCATCCTGTGGGGTGTCGCGTTCGGGATCCTCGCAGTCCTCGGCGTGGACGCGCTCGCCGCCGTCTGAMIQALQEFTESLSPMLQWLGVMLAGAIPFVESYAGSVLGILAGVNPVVAVVAAVVGNVVSMIVFVLVAGRLRRAATAGRSKPETPRRVKLRRRFDRYGVAGVSLLGQTVLPSQITSAIMVSFGASLRAVIGWQIVSIILWGVAFGILAVLGVDALAAVNANANANANA
AK018_01124774walR_1COG0745Transcriptional regulatory protein WalRATGGTCCGGGTCCTCGTGGTCGACGACGACACCACCGTCGCCGACGTGGTGGTCGCCTACCTGGAGCGCGCCGGTATCACGGCCGAGCACGCCGCCGACGGCCCGGACGCCCTGACCGCCGCCCGCGAGCGCCCGCCGGACGCCGTGGTGCTGGACCTGATGCTGCCCGGCATCGACGGGATCGAGGTGTGCCGCCGGCTGCGTGCGGACCGCCCGGACCTGCCGGTGCTGATGCTGACGGCGCGCGGTGAGGAGGACGACCGCATCACGGGCCTCGAGGTGGGCGCCGACGACTACGTGACCAAGCCGTTCAGCCCGCGCGAGCTCACGCTGCGGGTGCGGTCGGTGCTGCGCAGGGCGGGCACGCGGCTGCCCGACGGCGGAGGGCGGCCCGCACACGCGGCCGCGGTGCCGCCGTCGGACACCGTGCCGCCGTCGGACGCCCCGCCGTCGGGCACCCTGCGCGACGGCGACCTCACCGTGGATCTGCCGGGTCACCGGGTGCTGCGCGGCGGGTCGGAGCTGGCGCTGACGGCGCGGGAGTTCGACCTGCTGGCCTGGTTCCTCACGCACCCCGGGCAGGTGCACGACCGCGAGGCGCTGCTGCGCGAGGTGTGGGGCTGGGAGTACGGCGACCGCTCCACGGTGACGGTGCACGTGCGGCGGCTGCGGGAGAAGGTCGAGGCGGACCCGTCCGCGCCGACGCGCCTGGTGACGGTGTTCGGCGTCGGCTACCGGTGGGACGCCTCCGTCCCCGAGGGGGCCATCCCGTGAMVRVLVVDDDTTVADVVVAYLERAGITAEHAADGPDALTAARERPPDAVVLDLMLPGIDGIEVCRRLRADRPDLPVLMLTARGEEDDRITGLEVGADDYVTKPFSPRELTLRVRSVLRRAGTRLPDGGGRPAHAAAVPPSDTVPPSDAPPSGTLRDGDLTVDLPGHRVLRGGSELALTAREFDLLAWFLTHPGQVHDREALLREVWGWEYGDRSTVTVHVRRLREKVEADPSAPTRLVTVFGVGYRWDASVPEGAIPPGPT0013765_39DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0013765-vicR|walR|yycF|micA-K07668NANA
AK018_011251077sasA_3Adaptive-response sensory-kinase SasAGTGACGCCGCTGGCGGGCGTGGCGCTGTCCGCCGGGGTGGCCGCCGTCGTCGGGCTGGGTGGTGCGGTGGGCGTGCTGGCGCTGGGTCGACGGCGGCCCACGGCCGCCGCGGTGCTGGCCCCGCTGGTGGTGGTCGCGTCGGTCGCGGCCGGTGTCTACGCGAGCGCGCGGGCGATGTTCCTGTCGGAGCAGGACTCGACGACGGTGCTGTGGCTGCTCCTCGCGACGGTGCCGGTGGCGCTGGTGATCGGGCTGGCGCTGGCGCTGCGCACACACCGGCTGGCCACCGAGCGGGCGGCGGCCGTGGCGGCCCGCGACCGGGACCGGGAGGTCGAGGAGCGACGCCGCGAGCTGGTGGCCTGGGTGTCCCACGACCTGCGCACCCCGCTGGCGGCGGTGCGGGCGCTGACCGAGGCGATGGAGGACGGCGTGACCCGCCCGGCGGACGCGGCGGCCGGGATCCTGGCGGAGAACCGTCGCATGAGCGAGATGGTCGACGACCTGCTGGCGCTGTCCCGGCTGCAGTCGACGGGGTTCGAGCTGTCCCGGGAGCCGACCGACGTGGGCGACCTCGCCTCCGACGCGCTGGCGGCGATGTCCCCCGCGGCCGAGACCCGCGGCGTGCGGCTCACCGGGGAGGTCGCGGCACCGGTGGTCGTCGCGGTGGACCCCCGGGAGGTGTCCCGCGCCCTGGGGAACCTGCTGTCGAACGCCGTGCGGCACACCCCGGCCGGCGGGACGGTGTGCGTGCGAGTGGCCCCGGGTGCGCCGGGGTCGGCGGGGTCGGCGGGCGCGCCGGGGCACCGCGCGGCCGGGGGTGGTCCGGTCGGCGCGGGGACCGCCGTCGTACAGGTGACGGACGGCTGCGGCGGCATCCCGGACGGCGACCTGCCGCGCGTCTTCGAGGCGGGATGGCGCGGCACGGCGGCCCGCACGCCCGGGCCCGGGGGTGCGGGGATCGGGCTGTCGATCGTGCGGTCGGTCGCCGAGGCGCACGGCGGGGCCGTCGAGGTCGCCAACGTCGCGCTGCCCGACGGCGGGCACGGCTGCCGCTTCACGCTCACGCTGCCCGGCTGAMTPLAGVALSAGVAAVVGLGGAVGVLALGRRRPTAAAVLAPLVVVASVAAGVYASARAMFLSEQDSTTVLWLLLATVPVALVIGLALALRTHRLATERAAAVAARDRDREVEERRRELVAWVSHDLRTPLAAVRALTEAMEDGVTRPADAAAGILAENRRMSEMVDDLLALSRLQSTGFELSREPTDVGDLASDALAAMSPAAETRGVRLTGEVAAPVVVAVDPREVSRALGNLLSNAVRHTPAGGTVCVRVAPGAPGSAGSAGAPGHRAAGGGPVGAGTAVVQVTDGCGGIPDGDLPRVFEAGWRGTAARTPGPGGAGIGLSIVRSVAEAHGGAVEVANVALPDGGHGCRFTLTLPGNANANANANA
AK018_01126786hypothetical proteinGTGAGATCCCCGTTGATGGACGAGCTCTCGCGCCTCGACCCGGCCCGCGGGCTGCGGGCTCCCGGCAGCCCGCACGACCCGGAGCTCGCGGACGTCCTCGCCGCGGACCGCCGCGCGCCGGCCGCGTACCGACCCGTGCGTCGTCCCGCCCACCCGGCCGCGATCGCCGGGACGGTGGCGGGCGGTGTCGCGGCGGTCGCGGTCGGGGTCACGCTGACGACGACGCTCGGCGCGCCCACCGCGTACGCCACGTGGACGGCCGTGCCGGTCGCGGTCGACGCCGCCGACGCCGTCGAGCGGGCGGGCGCGTGCCCGACGGCGGCGCACGACATCGCCGGGGACGGTGCGGAGGCGCAGATCACCGAGGTCCCCCTGGAACCCGTGCTCGCCGAGTCGCGCGGCGACTACACCTACGTGGTGCTCGCGGGGGACGGTGCGGTCGGCGACTGCTTCGTCACCTCCGGCGGGGAGGCGCCGGAGGTGTACTCCTCGGACGCGGTCGGGGTGGAGGTCGCCGACCCGGACGCGCGGGGCCTGACGGTGGCGGGCAGCGGCACGGCCTCCTGGTCCGCCGGGGACGCCGCGGAGGGCGCGGTGACGTCGGTGTTCGGCCGTGTCGGGGACGAGGTCGCGGCGGTGACGGTGGCTCGCACGGACGGCGAGCTCGTCGAGGCGACCGTCGAGGACGGCTGGTTCGCGTTGTGGGCGCCGGGGGAGTCGGCGTTCGCGACGTCGGCGCAGGTCACCTACACCGACGGCACGGTCGCCGACGTCCCCCTCGACTGAMRSPLMDELSRLDPARGLRAPGSPHDPELADVLAADRRAPAAYRPVRRPAHPAAIAGTVAGGVAAVAVGVTLTTTLGAPTAYATWTAVPVAVDAADAVERAGACPTAAHDIAGDGAEAQITEVPLEPVLAESRGDYTYVVLAGDGAVGDCFVTSGGEAPEVYSSDAVGVEVADPDARGLTVAGSGTASWSAGDAAEGAVTSVFGRVGDEVAAVTVARTDGELVEATVEDGWFALWAPGESAFATSAQVTYTDGTVADVPLDNANANANANA
AK018_01127537hypothetical proteinGTGGACGACGCCGAGGCGCGGACGGTGCTGACCCGGCTGTGGGTCGACCATCGCGAGGAGGTCGTGCGGTTCGTGGCCCGGCGGGCTGAGCCGGAGCACGTCGACGACGTCGTCTCGGAGACGTTCCTGGTGGCCTGGCGAAGGGTGGACGAGGTGCCGACGGAGGCCCGCCCCTGGTTGTACGGCGTCGCCCGCAACGTGCTCGCGACGCAGGGGCGCACGCACGGGCGGTGGCGTGCGCTCGGGGTGCGGCTCGGGCAGGAGCCGGCGACGGCGTCGGAGGGCGTCGACGAGGTGGTCACCGAACGCACCGACCTGCGGCGCGCCTGGGAGCTGCTCGGGGACGCCGACCGGGAGGTCATCGCCCTGGTGGCCTGGGACGGGCTGACCAACATCGAGGCCGCGCAGGTGCTGGGCTGCCGCGCGTCGACGTTCGCCGTGCGGCTCAACCGGGCCCGCAAGCGGCTGCTGGCGTTCTCCGAGGTCCCCAGCGGGACGGCCGACAAGCTCCGCCGGCTGCAGCAGGAGACGCCGTGAMDDAEARTVLTRLWVDHREEVVRFVARRAEPEHVDDVVSETFLVAWRRVDEVPTEARPWLYGVARNVLATQGRTHGRWRALGVRLGQEPATASEGVDEVVTERTDLRRAWELLGDADREVIALVAWDGLTNIEAAQVLGCRASTFAVRLNRARKRLLAFSEVPSGTADKLRRLQQETPPGPT0014960_10167DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_01128783hypothetical proteinATGCGTACGAACCTCGTCAGGAACCTCGTCGCCGGGCTGGGCGCGAGCGCGCTCGCCCTCGGCGTCGGACTCGTGGCGGTGCCCGCGGCCCAGGCCGACGTCGGCACCCCGATCGGCCCGGTGGGCGGGTCCGACGGCGGCACCGTCACCGACGGCGAACCCGCCGGGAACCTGCCCGGTGTGCCGGAGCCGGGGAGCGCGGAGCGGGTCTGGGTCGAGTGGGCCGCCGCCGAGCGCGCCGAGGCCGAGGCCACCGACTGGGAGGCGGATGCCGCCGCCCGCGGGTGCGAGCTGCAGGAGGTGACGATCACCGACGAGGTGGACGTCGCCTACAACCGTGCCATGGGGGCACCGGACGACCTGGCCACGCACCGGGTCGAGATGGTCGAGAGCTGTGACGGGCCGGCCGCCTCCGGCGGCATGTCGCTCGAGACGGACCGCGGAGCGACCACGACGGCGATCGGCTCGGGTTCGGACTGCGACAGCACCAGCGGGCCCGGCACGATCTGCGTCTACAAGTCCAGCGGACGGATCTACGGCTCGTGGAAGTACCGCGGGTCGGGCAGCGTGGCCGGGTTCCTGCGGATCTACCAGATCCCGACGTCGTCCTCGGGCTGCTACCGGGGCACCACGTGGCTCACGGGCCCGTCACGCACCTGGTCCAGCGGCATGACGCGCAGCATCTCCAAGTCGCGCACGTCCTACTCCGGGTACTCGGCCCACATCTGGAAGAGCGTCTGGCACGGCCACACCGACTGGGGCAGCACCTGCTCGAAGCTCTGAMRTNLVRNLVAGLGASALALGVGLVAVPAAQADVGTPIGPVGGSDGGTVTDGEPAGNLPGVPEPGSAERVWVEWAAAERAEAEATDWEADAAARGCELQEVTITDEVDVAYNRAMGAPDDLATHRVEMVESCDGPAASGGMSLETDRGATTTAIGSGSDCDSTSGPGTICVYKSSGRIYGSWKYRGSGSVAGFLRIYQIPTSSSGCYRGTTWLTGPSRTWSSGMTRSISKSRTSYSGYSAHIWKSVWHGHTDWGSTCSKLNANANANANA
AK018_01129822glnQ_2COG1126Glutamine transport ATP-binding protein GlnQATGAGCGCGACGACCGCTCCGACGTCGGACGCGACCCCGGCGGCCGAGGCGCCGATGGTCGAGGCGCGCGGCGTCCACAAGGTGTTCGGGCACGGTGCCGGCGCCCTGCACGTGCTGCGCGGCGTCGACCTGGTGGTGCCGCAGGGTTCGGTGACGGTGATCCTCGGGCCGTCGGGGTCCGGCAAGTCGACCCTGCTGCGCTGCCTCAACGAGCTGGAGGAGATCACCGCCGGCTCGGTGCACGTCGACGGCGAGCTGCTCGGCTACCGCCACGACGCGAAGGGTGTGCTGCACCGTCTGCACCCGCAGCGGATCGCCGCGCAGCGGTCGCGCATCGGCATGGTGTTCCAGCGGTTCCACCTGTTCGGGCACATGACGGCGCTCGAGAACGTCGCCGAGGCCCCGGTGCAGGTGCGCGGGCTGTCGAAGGCGGCGGCGCGGCGGCGGGCGGCCGAGCTGCTGGAACGGGTCGGGCTCGCCGACCGCGCCGACCACTACCCGGCCCAGCTCTCCGGCGGGCAGCAGCAGCGCGTCGCCATCGCGCGGGCCCTGGCGATGGACCCGGAGCTGATGCTGTTCGACGAGCCGACGTCCGCCCTGGACCCCGAGCTCGTCGGCGAGGTGCTCACCGTCATGCAGGACCTGGCGCGGTCCGGGATGACGATGGTGGTGGTCACCCACGAGATCGGGTTCGCCCGTGAGGTCGCCGACCACGTCGTGTTCATGGACGACGGCGTCGTCGTCGAGCAGGGGCCGCCCGGCGCCGTGCTGGAGAACCCCTCCGAGCCGCGGCTGCAGGAGTTCCTCTCCCACGTGCTGTGAMSATTAPTSDATPAAEAPMVEARGVHKVFGHGAGALHVLRGVDLVVPQGSVTVILGPSGSGKSTLLRCLNELEEITAGSVHVDGELLGYRHDAKGVLHRLHPQRIAAQRSRIGMVFQRFHLFGHMTALENVAEAPVQVRGLSKAAARRRAAELLERVGLADRADHYPAQLSGGQQQRVAIARALAMDPELMLFDEPTSALDPELVGEVLTVMQDLARSGMTMVVVTHEIGFAREVADHVVFMDDGVVVEQGPPGAVLENPSEPRLQEFLSHVLPGPT0020790_934DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
AK018_011301050hypothetical proteinATGACCAGCCACGTCACGGACACCTCGCGGGCCGGGGCGCCGTCGTCGGACCTGCCCGAACCGCTGCACGCCCGGCCGGTGCCCCGGCCCGGCCGGTGGGTCTCCGCCGTCGTCGTGCTCGTGCTCGCCGCGATGGTGCTCCACGCGCTGGTCACGAACCCGAACTTCCGCTGGGACACCGTCTGGCTGTACCTGCGCGACGTGAACGTGGTGCGCGGCGTCGGCTGGACGCTCGTGCTGACCTTCGGGTCGATGGCGATCGCCGTCGTGCTCGCGGTGCTGCTCGCGATCATGCGGCGCAGCGACAACCCCGTGATGCGCTCGGTGAGCTGGGCGTACATCTGGTTCTTCCGCGGCACCCCGATCTACACCCAGCTCGTGTTCTGGGGCCTGATCTCGGTGCTGTACCCGCGTCTGAGCCTCGGCGTCCCGTTCGGGCCGGAGTTCTTCGTGTTCGATACCCGCGACGTCATCACGGCGTTCTGGGCGGCGCTGCTGGGGCTCGCGCTCAACGAGGCCGCCTACCTCGCGGAGATCGTGCGGGCCGGGCTGGGGTCGGTCGACCCGGGGCAGGCCGAGGCCGCGCGGGCCCTGGGCATGAAGGAGTCGCGGATCCTGCGCCGCATCGTGCTGCCGCAGGCGATGCGCGTCATCGTGCCGCCCACCGGCAACGAGACGATCTCCATGCTCAAGACGACCTCCCTGGTGGTCGCCGTGCCGTTCACCCTCGAGATCACCTACGCGACGTCCGCGATCGGGACCCGCACCTTCCAGCCGATCCCGCTGCTCATCGTCGCGGCGCTGTGGTACCTGCTCATCACGTCGGTGCTCATGGTCGGCCAGTACTACATCGAGCGGTACTACGGGCGCGGGTTCGACGGCGGTGCCACCGGACCGCGGCGCGGTGCCGGACGGCGCGGCCCCGGCGGCTCCGGCAGCGCCGCCGGCCCCGACAGCTCCGGCCGGCGTGCCGGACGACTGAGCCGGCAGGCCGCGATCCGCGGCGCCGGCACCACGAAGGACGACCCGTTCGCGGAGGTGACCCCATGAMTSHVTDTSRAGAPSSDLPEPLHARPVPRPGRWVSAVVVLVLAAMVLHALVTNPNFRWDTVWLYLRDVNVVRGVGWTLVLTFGSMAIAVVLAVLLAIMRRSDNPVMRSVSWAYIWFFRGTPIYTQLVFWGLISVLYPRLSLGVPFGPEFFVFDTRDVITAFWAALLGLALNEAAYLAEIVRAGLGSVDPGQAEAARALGMKESRILRRIVLPQAMRVIVPPTGNETISMLKTTSLVVAVPFTLEITYATSAIGTRTFQPIPLLIVAALWYLLITSVLMVGQYYIERYYGRGFDGGATGPRRGAGRRGPGGSGSAAGPDSSGRRAGRLSRQAAIRGAGTTKDDPFAEVTPPGPT0020795_780DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
AK018_01131939hypothetical proteinATGCGCACCCGCACCGCACTGCCCGTGTCCGCCCTCGCCGTCGTCGCCCTGCTGACCGGCTGCACCACCGCCTCGCAGGACCTCGGGTCCGGCGCCGGCTCCGGCGAGGACACCACCGGTAGCGCGGCGCCGACCGCCGCCGCGTTCGACCCCGCCGCGATCGAGACCGACCCGGAGCTGGCCGCGCTGGTGCCCGCCGAGGTCGCCGAGGACGGCGTGCTCACCGTCGGCGCCGAGCTGTCCTACGCGCCCGCCGAGTTCGTGGCCGCCGACGGCGTCACCCCGGTCGGGTTCGACGTCGACATCGCCGCCGCGATCGCCGCGACCCTGGGGCTCGAGGCGCGGGTGGAGCCGTCCACGTTCGACGCGATCATCCCCGCCGTCGGCACCAAGTACGAGGTCGGGATCTCCGGGTTCACCATCGACGCCGAGCGCCTCGAGGTGGCCCACATGGTCAGCTACTTCGACGCCGGCTCCCAGCTCGCCGTCGCCACCGGGAACCCGGACGGGATCGACGCCGCGAACCTGTGCGGCGTCACCGTCGGCGTGCAGACCGGTACCGTCCAGCAGGGCGCCCTCGAGGACGCCTCGGCCGCGTGCGAGGCCGACGGCGCCGAGCCCGTCGAGGTGCTGCCCTACGACTCCCAGGCCGACGTCACCACGAACCTCGCCGGCGGCAAGGTGCAGGCCATGTACGCCGACTCCCCGGTGACGGCCTACGCCGTCGAGCAGGCCGACGGCGCCGTCGAGACCCTCGGCGAGATCACCGACGCCGCGCCCTACGGCATCGTCGTCGCCCAGGGCGACGACGCGCTCGCCGGGGCCGTCCAGGCCGCGCTGCAGCAGCTCATGGATGACGGCACGCTGACCGAGATCCTCGACGGCTGGGGCAACGCCGAGGGCGCGCTCGCCACCGCCGAGCTCGACCCCGGCGTCTGAMRTRTALPVSALAVVALLTGCTTASQDLGSGAGSGEDTTGSAAPTAAAFDPAAIETDPELAALVPAEVAEDGVLTVGAELSYAPAEFVAADGVTPVGFDVDIAAAIAATLGLEARVEPSTFDAIIPAVGTKYEVGISGFTIDAERLEVAHMVSYFDAGSQLAVATGNPDGIDAANLCGVTVGVQTGTVQQGALEDASAACEADGAEPVEVLPYDSQADVTTNLAGGKVQAMYADSPVTAYAVEQADGAVETLGEITDAAPYGIVVAQGDDALAGAVQAALQQLMDDGTLTEILDGWGNAEGALATAELDPGVPGPT0020800_2581DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
AK018_01132168hypothetical proteinATGAGCACCACCGCGATCATCATGATGGTCGTCGCCCTGGTCGTGGTCTGGGGCGGTCTGATCCTGGCGATCGTCGCCCTGCGTTCCCGGCCGGAGCGCACCGAGTTCCCGCCGGGCGGTGAGGACGACCACCGCGAGGACCAGGCCGTCATCGAGCACGACACGTAGMSTTAIIMMVVALVVVWGGLILAIVALRSRPERTEFPPGGEDDHREDQAVIEHDTNANANANANA
AK018_011331575hypothetical proteinGTGAGTGCTCAACATCAAGCCCCCCCGCGCGAGCAGTTCACCGGACAGGTCGGGTTCATCCTGTCGGCGATCGGTTCGGCCGTGGGGCTCGGCAACATCTGGCGTTTTCCCGGTGTCGCGTACGAGAACGGTGGCGGCGCCTTCCTGGTGCCCTACCTCATCGCCCTGCTGACGGCCGGCATCCCGATCCTGTTCCTCGACTACGCGCTGGGCCACCGGTTCCGCGGCGGTGCCCCGCAGGCGTTCCGCCGCGTCAAGGGCTGGCTGGAGACCCTGGGCTGGTTCCAGGTGATGATCTGCATCGTCATCGCGATCTACTACGCGGCGGTCGTGGCCTGGGCGGCCAGCTTCTTCGTGTACTCGTTCGGGCTGGACTGGGGTGACGACCCGGAGGCCTTCTTCTTCGGCGAGCACCTGCAGCTCGCCGACGTCGGGGGCGCCGACCCGTGGTTGACGTTCGACTTCGTGGGCGCCGTGCTGATCCCGCTGGTGCTGGTGTGGCTCGTGGTGATCGCGGTGCTCGCCGCCGGCGTGGTCAAGGGCGTGCAGCGTGCCAACGTCATCTTCATCCCGCTGCTGCTCATCGCGTTCGGCGCGCTGGTGGTGCGGGCGCTGTTCCTCGACGGGGCGGCGGACGGCCTGAACGCGCTGTTCACACCGCAGTGGGACGCGCTGGCCGACCCGGACGTGTGGATCGCGGCCTACGGTCAGGTCTTCTTCTCGCTGTCCGTGGCGTTCGGCATCATGATCACGTACTCGTCCTACCGCAAGCGTCGGTCGAACATGACCGGCCCGGGGCTCGTGGTGGCGTTCTCGAACTCCGGGTTCGAGATGCTGGCGGGTCTCGGCGTGTTCTCGGCCCTGGGGTTCCTGGCCCTCGAGTCCGGCACCACGGTGGACGAGCTGGGGATCGCCGGCGTCGGGCTGGCGTTCGTGACGTTCCCGGCGATCGTGTCCGAGATGCCGGCGGGCGCCCTGTTCGGGGCGTTGTTCTTCGGGTCGCTGGTGATGGCCGGCTTCACGTCGCTGGTCTCGATCCTGCAGGTGGTCTCGGCGGCGCTGCAGGAGAAGTTCGCCCTGAGCCGGACGACGGCGGTGCTGTGGCTGGGCGGCGTGCTCGGCGCGGTCTCGGTGCTGGGCTTCAGCACCACCACGGGGCTGATCCTGCTCGACACCGTCGACTACTGGGTCAACAACATGGGCATCGTGCTCTCCGCGATCCTCATGTGCGTGCTGGTCGTGTGGGTCTACCGCAAGGCACCCGAGCTGCGGTACCACCTCAACGCCGTCTCGACGGCGCAGATCGGGGCGTGGTGGTACGCGTGCGTCGGGGCGATCGTGCCGGTGATGCTGGTGGTGATGCTGGTGCAGACCGTCATGATCCGCATCGACGAACCGTACGGCGACTACGATGAGACGTATCTGCTGTATGCGGGCTGGGGCACCGTGGCGCTGCTGGTGGTCGGTGCTCTCGTCTTCTGGGCGTTCCGCTGGCGCGGGCCCCGGGAGTACCGGGCCTGGCCGCCGTACCCGCCGGTCGAGGACCCCGCCGTGCGGAAGGAGGCCTCGCGATGAMSAQHQAPPREQFTGQVGFILSAIGSAVGLGNIWRFPGVAYENGGGAFLVPYLIALLTAGIPILFLDYALGHRFRGGAPQAFRRVKGWLETLGWFQVMICIVIAIYYAAVVAWAASFFVYSFGLDWGDDPEAFFFGEHLQLADVGGADPWLTFDFVGAVLIPLVLVWLVVIAVLAAGVVKGVQRANVIFIPLLLIAFGALVVRALFLDGAADGLNALFTPQWDALADPDVWIAAYGQVFFSLSVAFGIMITYSSYRKRRSNMTGPGLVVAFSNSGFEMLAGLGVFSALGFLALESGTTVDELGIAGVGLAFVTFPAIVSEMPAGALFGALFFGSLVMAGFTSLVSILQVVSAALQEKFALSRTTAVLWLGGVLGAVSVLGFSTTTGLILLDTVDYWVNNMGIVLSAILMCVLVVWVYRKAPELRYHLNAVSTAQIGAWWYACVGAIVPVMLVVMLVQTVMIRIDEPYGDYDETYLLYAGWGTVALLVVGALVFWAFRWRGPREYRAWPPYPPVEDPAVRKEASRPGPT0013950_245DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013950-TC_NSS-K03308NANA
AK018_011341260xyoA_1COG0277putative xylitol oxidaseATGCGGAACTGGGCCGGCAACCTCCTCTACTCGGCGCGCGGGCTCGTGCGCCCCACGTCCCTCGACGAGCTCGCGGACGTGCTGGACACGCCCGGCCCGGTGCGGGCGCTGGGGTCACGGCACTCGTTCAACGACCTCGCCGACACCCCCGGCGTGCACGTGCAGGTGGACCGGCTCGACGACGGCCGTCCCGCCGTCGACCTCGACGCGGCGACCGGCGTGGTCTCCGTCAACGCGGCCATCCGCTACGGCGACCTGTCCCGGGCGCTGCAGCTCCAGGGTCGCGCCCTGGGCAACCTGGCCTCGCTGCCGCACATCACCGTCGCCGGGGCGGTCGCCACCGCCACCCACGGCTCCGGCGACGCGAACCCCTCGCTCGCGAGCGCCGTCGTCGGCCTCGAGATCATGACGACCGGCGGCGAGCTGCGCCGCATCACGCGCGACGGCGACCCCGAGCTGTTCGGGGGGACCGTCGTGTCCCTCGGGGCGCTCGGGATCGTCACGCGGGTCGAGCTGGCCACCGAGCCCTCCTTCTCGGTGCGTCAGGACGTCGCGCTCGACGTGCCGTGGGAGACGGTCCTCGACCGGTTCGACGACGTGACCGGGGCGGCCTACTCCGTGAGCCTGTTCACCGGCTGGGACGAGCCCGCCGTCCGGCAGGTCTGGTTCAAGTCCGTCGTCGAGGGCGCCGACGACGGCGGGACGCGACCCGACCCCGTGCCCGACCTGCGTTGGGCCACCAGCGACGTCCACCCGGTGCCCGGCGTCGACACCGCGGCCAGCTCCCCGCAGCTCGGCGTCCCCGGCCCCTGGAACGAGCGCCTGAGCCACTTCCGGCTCGAGTTCACGCCGTCGGCCGGTGCCGAGCTGCAGAGCGAATACCTCGTGCCCCGCCACCGCGCCGTCGAGGCGATCGAGGCGGTCCGCGCGCTGGCTCCGCGGGTCGCACCGCTGCTGCAGACCTCCGAGATCCGCACCGTGGCCGCCGACGAGCTGTGGATGAGCCCCTTCGGGGACCCCGCCGTGGGCCTGCACTTCACCTGGCACCCGGACGGGCCCGGCGTCGCCGGCGTCCTGCCCGACCTCGAGGAGCCGCTGCTCGCCCTCGGGGCGCGCCCGCACTGGGGCAAGGTGTTCGCCCTCGACCCCGCCGAGGCGGGGGCGCTGTACGCCCGGTTCGCCGACTTCCGGGCGCTCGCCGAGCGGTTCGACCCGGACGGTCGTCTGCACGGCGGGTATCTCGGGCGCCTGCTCGGGTGAMRNWAGNLLYSARGLVRPTSLDELADVLDTPGPVRALGSRHSFNDLADTPGVHVQVDRLDDGRPAVDLDAATGVVSVNAAIRYGDLSRALQLQGRALGNLASLPHITVAGAVATATHGSGDANPSLASAVVGLEIMTTGGELRRITRDGDPELFGGTVVSLGALGIVTRVELATEPSFSVRQDVALDVPWETVLDRFDDVTGAAYSVSLFTGWDEPAVRQVWFKSVVEGADDGGTRPDPVPDLRWATSDVHPVPGVDTAASSPQLGVPGPWNERLSHFRLEFTPSAGAELQSEYLVPRHRAVEAIEAVRALAPRVAPLLQTSEIRTVAADELWMSPFGDPAVGLHFTWHPDGPGVAGVLPDLEEPLLALGARPHWGKVFALDPAEAGALYARFADFRALAERFDPDGRLHGGYLGRLLGNANANANANA
AK018_01135720hypothetical proteinATGCACGCCGAGCTGCAGCGGTTGCTGATCAGCGGCCCGACGCCGGACGGCCGGCACACGTACGTCGCCTTCGACGCGCGCGTCCCGGCCGGGTACGGGCCGCTGAGAGGCCGGTTCGACCACGAGGCCGCGGTCGTCGAGCTGTGGCGGCGCTGGCTGCCGGCGCGCGGCCACGCCACGGTCAAGGACCTCGCGCAGTGGTGCGGGCTGACGCTGACCGACCTGCGGGCCGGGCTCGCCGTGCTGGTCGACCTCGGCGAGGTGGTCGAGGTGCCCGGCGCCGACGACCTCGACGGCCTCACCCTGGTCGCGACTCCCGCCGTGGCGGACGGGCCGCCGGACCTGGCGTCACCGCGGGACGACGGCGTCACGCCGGCAGCGCCGTCGTCCCCGGACCCGCAGGGCGCCCGCACCGCGGACCTGCTGTGCGCCTACGACGAGCTGGTGACCTCGTACGGCGAGACGCGCCACGTGCTGGCCGACCCCGACGCGCCGGAACCCGGCCGGCAGCGGGCCGCCATCCACCCGGTGCTGATCGACGGACGACGCGCCGCCCGCTGGCGCTGGCCGCGCCACCCGCCCGGCCCCGGGGAGCTCGAGCTGCAGTGGCAGCGCACCCCGACCCCGGCCGACCTCGCCGCCGTCGCGCACGCCACCGATGACCTGCGCCGACACCTGACCGGTCCGCCGCACACGGCGCCGGACGCCGTGGCAGGCTAGMHAELQRLLISGPTPDGRHTYVAFDARVPAGYGPLRGRFDHEAAVVELWRRWLPARGHATVKDLAQWCGLTLTDLRAGLAVLVDLGEVVEVPGADDLDGLTLVATPAVADGPPDLASPRDDGVTPAAPSSPDPQGARTADLLCAYDELVTSYGETRHVLADPDAPEPGRQRAAIHPVLIDGRRAARWRWPRHPPGPGELELQWQRTPTPADLAAVAHATDDLRRHLTGPPHTAPDAVAGNANANANANA
AK018_01136474hypothetical proteinATGACGGTCGACGGCGCCACGGTCCGCACCGCACGCCTGCGCGCCCAGCGGCTGCGCGAGCCGGACCTGCCGGACGTGCCCGCCGTCGTCGGGCACCTCCTGGCGGTGCAGGGCCAGGAGGTGCGGCCCACGCTGCACGGGCTCGCCCGCCGGGTCGCGTCCCCGGTGCGGCCCGACGAGGCCGGCGCGTGGCGGTCGCTCGACGACGGCGCCGTCCTGCGCACCCACGTCCTGCGTCCCACGTGGCACCTGGTCCGGCCGGAGGACGCGCGCTGGCTGCTCGAGCTGACCGCACCGCGCGTGGCAAGAGTGATGGCCTCGACGGAGAAGGCGTGGGGGCTGGGCGACCCGTCCGCCGGGATCGAGGTGGCGAGCTCACCGCGGCCCTCGTCGCCGCCGGTGCGGTCGCGGCGGACGCGCCCGGCATCGCCGTCAGCCACGTCCTCATGCACGCCGAGCTGCAGCGGTTGCTGAMTVDGATVRTARLRAQRLREPDLPDVPAVVGHLLAVQGQEVRPTLHGLARRVASPVRPDEAGAWRSLDDGAVLRTHVLRPTWHLVRPEDARWLLELTAPRVARVMASTEKAWGLGDPSAGIEVASSPRPSSPPVRSRRTRPASPSATSSCTPSCSGCNANANANANA
AK018_011371530abf2_1COG3534Intracellular exo-alpha-L-arabinofuranosidase 2ATGGATCAGACAACGGCTGTCATCGACCTCGACCTTCCCGGCCCGCGCATCTCGCGGCACGTCTACGGCCACTTCGCCGAGCACCTCGGGCGCTGCATCTACGGCGGGTTCTACGTCGGGGAGGACTCGGACGTCCCGAACGAGCGGGGCATCCGCACCGACGTCGTCGAGGCGCTGCGGGCGCTGCAGATCCCCAACCTGCGCTGGCCCGGGGGCTGCTTCGCGGACGACTACCACTGGCGCGACGGCATCGGCCCGCGCGACCAGCGCCCCCGCATGGTCAACTCGCACTGGGGCGACGTGGTCGAGGACAACGCGTTCGGCACCCACGAGTTCATGGACCTGTGCGAGATGCTCGGCGCCGACGCCTACATCAGCGGCAACGTGGGTTCCGGCACCGTCGCCGAGATGAGCGAGTGGATCGAGTACCTGACCCGTGCCGACGACTCCCCGATGGCGGCGCTGCGCCGCGAGAACGGCCGCGACGAGCCGTGGAAGGTGCCGTTCTTCGGCATCGGCAACGAGGCGTGGGGCTGCGGCGGCAACCTGCGGGTGGAGCAGTTCGCCTCGCTGGCCCGCCAGTACTCCACCTACGTGCGCGACCACGCCGGCAACGAGGTGTACCGGATCGCCGCCGGCGCCTCCGACGACGACCTGCACTGGACCGAGGTGCTCATGCAGTCGTTCGGCCCGCTCGACGCCCCGGCCGACGCTGCCGCCCCGTCCGCGCCGTTCCAGGGCATCTCGCTGCACTACTACACGATGACCGGCACCTGGCAGGACAAGGGCGCCGCCACCGAGTTCAGCGAGGACGAGTGGTACCTGGCCCTGCAGAAGGCCGGGTTCATGGAGCACCTGCTCACGCGCCACGGTCAGGTCATGGACCGCTACGACCCGCACCGGCGCGTGGGGCTGGTCGTCGACGAGTGGGGCACCTGGTGGAACGTGGAGCCCGGCACCAACCCGGGCTTCCTGTACCAGCAGAACACCCTGCGCGACGCGCTCGTGGCGAGCGTGCACCTCGACGCCTTCCACCGGCACGCCGACCGGGTGGTCATGGCCAACATCGCCCAGACGGTCAACGTGCTGCAGGCGATGCTGCTCACCGACCCCGAGTCGGGCGCGCTGGTCCGCACGCCCAGCTATCACGTGTTCGAGATGAACACCGGCCACCACGACGCCGACTCGCTCGCCGTGCACCTCGACGGCGTGCCCACGCGGACGACGGACGGCGCCGAGCTGCCGCTGGTCTCGGCGTCGGCCTCGGTCCGGGACGGCGCCGCGCTGGTCTCGCTGAGCAACCTCGACGCGGCGGCCGAGCGCACCGTGGTGCTGGACCTGCGCGGCCGCGAGGTGACGGGGCACAGCGGCCGGGTGCTGACCGCGCCGGAGCTGGCCACCCACAACACGCCCGAGGCGCCCGACGCCGTCGCCCCGGTCGAGCTCACGGCGATCCGACCGCACGAGCGCGGCCTCGAGGTCACCCTCCCGGCCCACTCCTACGCGACGGTCAGCCTGACGCTCGCCTGAMDQTTAVIDLDLPGPRISRHVYGHFAEHLGRCIYGGFYVGEDSDVPNERGIRTDVVEALRALQIPNLRWPGGCFADDYHWRDGIGPRDQRPRMVNSHWGDVVEDNAFGTHEFMDLCEMLGADAYISGNVGSGTVAEMSEWIEYLTRADDSPMAALRRENGRDEPWKVPFFGIGNEAWGCGGNLRVEQFASLARQYSTYVRDHAGNEVYRIAAGASDDDLHWTEVLMQSFGPLDAPADAAAPSAPFQGISLHYYTMTGTWQDKGAATEFSEDEWYLALQKAGFMEHLLTRHGQVMDRYDPHRRVGLVVDEWGTWWNVEPGTNPGFLYQQNTLRDALVASVHLDAFHRHADRVVMANIAQTVNVLQAMLLTDPESGALVRTPSYHVFEMNTGHHDADSLAVHLDGVPTRTTDGAELPLVSASASVRDGAALVSLSNLDAAAERTVVLDLRGREVTGHSGRVLTAPELATHNTPEAPDAVAPVELTAIRPHERGLEVTLPAHSYATVSLTLAPGPT0018655_1126DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
AK018_011381038degA_2COG1609HTH-type transcriptional regulator DegAGTGACGCGCGTGAAGCCGACCATGAGCGACGTCGCCCGCGCCGCCGGCGTCTCCGCGATGACCGTCTCCAACGTGCTCACCGGCCGGCGCCGCGTCGGCGCTTCCACCCGCGCCCGCGTCGAGGCAGCCGCGACCGAGCTCGGCTACGAGCTCAACCTCACCGCCCGGCACCTGCGCGCCGGACGCACCGACACCGTCGCCCTCGTGGTCCCCCACTTCGACCACCCCTACTTCGGCGAGCTCGCCGCCCGGCTCGCTCGGCGACTCGACGACGCCGGCCGCCACCTCGTCGTCGAGCAGACCGACGCCCGGCGCGAGATCGAGATCGCCGCCGCCTCCCAGGCCCGATGGCAGCTCTACGACGGCGTGCTGCTGTCCGTGGTCGGGATGTCCGCCGCAGACCTCGACGGGCTGCGCAGCTCGATGCCCCTGGTCCTGCTCGGCGAGCAGCAGGTCCCCGAACGCTACGACCACGTCCGCATGGACAACGTAGCCGGCGGGCGGCTCGCGACCGCACACCTCCTCGCGGCCGGCGCGCGACGGGTCGCGGTCGTCGGCGGAGCCGACCCGGACGCCCACGGAGGCATGATGCCGGCCCGCACGGCCGGCTGGGCCGACGCGCACGCCCGCGCGGGCCGGGAGGTACCCCCGGACCTGCTCGTGCGCGCCGGCGCAGACCTCGCCTCGGGCCGGGAGGCGATCCGCCGTCTCGTGCACGAGGGCACCTCGTTCGACGCGGTCTTCGCCGTCACCGACACCGTCGCCGTCGGCGTGCTCGCCGGGCTCGCCGAGGCCGGCCTGAGGGTGCCCGACGACGTCCAGGTGGTCGGGTTCGACAACCTCGACTCCGCAGAGTTCACCGTGCCGGGGCTGACCACCGTCGATCCCGGCCACGACCGGATGGCCGACGCCGCGCTCCGGCTCCTGGACGCCAGGATCTCCCGGGACGACGGCGGCGCGGCCGGCGCCGAGCACGTCACCGCGCCGGTGCAGCTGGTCGAGCGGGCCTCCACCCGGCCCCTCGCCGGCGCGCGATGAMTRVKPTMSDVARAAGVSAMTVSNVLTGRRRVGASTRARVEAAATELGYELNLTARHLRAGRTDTVALVVPHFDHPYFGELAARLARRLDDAGRHLVVEQTDARREIEIAAASQARWQLYDGVLLSVVGMSAADLDGLRSSMPLVLLGEQQVPERYDHVRMDNVAGGRLATAHLLAAGARRVAVVGGADPDAHGGMMPARTAGWADAHARAGREVPPDLLVRAGADLASGREAIRRLVHEGTSFDAVFAVTDTVAVGVLAGLAEAGLRVPDDVQVVGFDNLDSAEFTVPGLTTVDPGHDRMADAALRLLDARISRDDGGAAGAEHVTAPVQLVERASTRPLAGARPGPT0021075_1238DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
AK018_01139372hypothetical proteinATGCACACCGACCTGAGCACGGAGCCCGACCCGGACACGGGATCGGGGATCTCCTGCCAGCATCAGGACGACGGCACCTACCTCACGCTGTGGGGCGAGGTCGACGCCGCGCTGCGTGAGTCGGCGAGCGACGCCATGGCGTCGGTGGTCGCCCGGACGCAGTCGACGCCGATCGTGCTCGACGTGCGGGACGTGACCTTTATCGACTCCTCAGGGATCGCGTTCATCCTGCAGATCTACATGCTGGGCCAGGAGACGGGCGCTGCCGTGCGTCTGCTGGAGCCGTCCCAGGCGGTCACCGAGGTCCTGGAGATGGTCGGGATGGGTGGCCGGATCGAGATCGTCCGCGAGGAGCAGCCCGCCGGGACGTGAMHTDLSTEPDPDTGSGISCQHQDDGTYLTLWGEVDAALRESASDAMASVVARTQSTPIVLDVRDVTFIDSSGIAFILQIYMLGQETGAAVRLLEPSQAVTEVLEMVGMGGRIEIVREEQPAGTPGPT0024655_110DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-STAGE_II_SPORULATION,PGPT0024655-spoIIAA-K06378NANA
AK018_01140390hypothetical proteinGTGGACGGACGTCTGGAGCGCAACCCGCGCCGGTGGCGCGACAAGGTGGCGGTGACCCGGTTCCTGGCCACGGTCGCCATGCCGCAGCTGCTCGAGCCGCTGACGGAGCGGGAGCTGACGAGCCGGCTGGCGGAGCTCGCCGTGGACCCCGTCGGCCTGCGTCGCGCGATGGTGGATCTGGGACTGGTGGCCCGCACGCGCGACGGCGCCGAGTACTGGCGCACGGAGCGCACCGAGCACGATCCGGAACCTGGTGCCGCCGAGGCGATCGCGGCGGCGGACCGTACACTGGGTGAGTCGTCGGGAGGGGCCGTGGGGCGAGTCGACGGGCCCCGTGAACGTCCGGCGTCGGCCGACCGGTTGGGGTGGACGAATCCGCCGGACGGGTGAMDGRLERNPRRWRDKVAVTRFLATVAMPQLLEPLTERELTSRLAELAVDPVGLRRAMVDLGLVARTRDGAEYWRTERTEHDPEPGAAEAIAAADRTLGESSGGAVGRVDGPRERPASADRLGWTNPPDGNANANANANA
AK018_011412283hypothetical proteinGTGAGGGTCCAGCGGAGTGACGGGCGCGACGGCGAGGCCGCCGCGACGCCCTCCCGCACGCGGGCCCGTCAGGCCTGGCACGTCCTCGGCGCCGGGACGGCGTCGTTCGTGCTCGCCGCCGGCTTCCTGGCGGGGTCGGCCGCGGACCTGCCCTGGAACTCGTTCGCCCACCACGCCGAGTTCCAGGCGCCCGCGCCCGAGGTCCCTGAGCCGGTCGAGATCGTGGGCACCGCCACCACCGCCGGCCCGCAGACCGTCGACGAGGTGCTGGTGGCCGTGCAGGACGCCGAGCAGGTCGCCCTCGAGTCGGGCCGAGAGCTCGGTCCCGAGATCCACCAGGCGGCCGCCGAGCTCGGGTCGGTGCTGCTGACCTACGTCGCCCAGCGCGAGGCGCTCGTCGACCCGCAGGTCGGTGCGGTCGGACCCGCGGTCCCCGCGGAGCCCGCGCCGGAGGGCGAGGAAGCGGCCGTTCCCGACGTGCCGATCGCCGTCGAGGACCTCGACCGGAACGACCTCGACGCCCAGACCCTGGAGCCGCTGGTGCCCGTCGAGCCGGCGCAGGCCGAGCCGGCGGACGGGGCGCCGGGCACGCAGGCCGCGCCGTCGGGAGGCGCCGGCGCCGAGGGTCCGACGGGAGCCGGCCTCGAGGCCGACCAGGACGAGGACGCCGAGGGCTCCGCGGAGACCGCCCCGGAGGACCTGCCCGCGCTGGACGGCCCCGGGCTGGACGTCCCGACGTTCGACGAGCTGCTGGCCGGGGAGACGGCCTTCACCGTCGCGAACTCCGTCGAGCACGACGGCGACGCCGCGACCGCGAGCGGGTCGCCGGTCTCCGAGACGATCGACGGGGCCTTCGACGGAGCCGCCCACGGGAACGCCGACGGAGCCGCGGCCGAGGTCGGGCACGAGAGCGACACGGCGGAGGGTTACGAGCACGCGCACGACGCCGTCACCTTCGACGACGTCGTCGTCGCCGCGACGCACCTGGTCACGTTGCTCGACCCCGCGTCCGCGGCCTACGTCGTCGACGTCCAGCCCGCCGTGACGCTGATGCCGGACGGCACCTACCTCTCCGACGACGGCGTGCAGGTCACGGCCGACGGGATCCCGCTCGACGGGGCGTCCACCCTGTCTGCCGCGCTGGCCGCCGTCGTCGCCGAGCACGGCGCCTCCACGGCGGGATACCTGAACGGGCGCATCCCCGCCTCCGTGCTGTGCGCTGTTGAGTCGGCACCCGGGCACCTGCTGCGGTGCGACGCCGCGGAGCAGTTCGCCGCGCTGAACGCCGCCTACCGCGACCGGTTCGGCGTCGACATCCCGATCACCGACTCCTACCGCTCCTACGACGCGCAGGTCGCGGTCCGGATCGCCAAGCCGCACCTCGCCGCTGTCCCCGGGACGTCGAACCACGGGTGGGGGCTCGCCCTCGACCTGTCCACGCCGATCTCCGGCGGCGCGTCCGCCGAGTACACCTGGCTGCGCGTCCACGGCCCCGACTACGGCTGGGACAACCCGTCGTGGGCGCGTCCCGGCGGGGTCAAGCCCGAGCCGTGGCACTTCGAGTTCTTCGCCGCCGGCCCCGTGCCCGACCGCGCGTCGAGCGCCGCCGACGTCACGACCGCCGCCGGCGGGAGCTCGTCGGGCGGCGACGGCGTGGGTGCGGGCGCCGGGAGCGGGTCCGGGACCGGTGGCTCGTCCGACATCGCCGAGGACCGGAAGGGCTCCTCCGGCACCTCGGGCAAGGGCGGGTCCGGCTCGAAGGGCGGCTCGAAGGATGCGTCCAAGGACACCTCGAAGGACGCCTCCAAGGACACCTCGAAGGGCGGCGGCAAGAAGCCCCAGCCGTCGCCCTCGCCGAGCGTCTCGCCGAAGCCGAAGCCCTCGCCCGAGCCGTCGGGCGAGCCCACGGGCAAGCCGTCCCCGTCACCCTCCCCGTCCCCGAGCGCCTCGCCGAAGCCGCCGAAGCCGACGCCCTCCCCGGAGCCGAGCGCTCCGGCCACCCCGGAGCCGACGCCGAGCGAGACGAGCGCCCCGGAGCCGACGGAGCCGGAGCCGACGGAGCCGGAGCCGACCCCGAGCGAGTCCGTCCCGCCGTCGGACGGGTCCGGGAGCGGCGAGCAGGACGAGGGCACTGCCGGCGACGGGACGGCTGGTCGCGCGGACGGCACGTCCGAGAAGAGCACCGTGAATCGTCAGGACGAGGACGCCGATGGTCCGGAGGCGGACCCGGAGGACGACGAGGCCGGGGACGCGGTCGACGCCACCGCCGAGACGGACGAGTGAMRVQRSDGRDGEAAATPSRTRARQAWHVLGAGTASFVLAAGFLAGSAADLPWNSFAHHAEFQAPAPEVPEPVEIVGTATTAGPQTVDEVLVAVQDAEQVALESGRELGPEIHQAAAELGSVLLTYVAQREALVDPQVGAVGPAVPAEPAPEGEEAAVPDVPIAVEDLDRNDLDAQTLEPLVPVEPAQAEPADGAPGTQAAPSGGAGAEGPTGAGLEADQDEDAEGSAETAPEDLPALDGPGLDVPTFDELLAGETAFTVANSVEHDGDAATASGSPVSETIDGAFDGAAHGNADGAAAEVGHESDTAEGYEHAHDAVTFDDVVVAATHLVTLLDPASAAYVVDVQPAVTLMPDGTYLSDDGVQVTADGIPLDGASTLSAALAAVVAEHGASTAGYLNGRIPASVLCAVESAPGHLLRCDAAEQFAALNAAYRDRFGVDIPITDSYRSYDAQVAVRIAKPHLAAVPGTSNHGWGLALDLSTPISGGASAEYTWLRVHGPDYGWDNPSWARPGGVKPEPWHFEFFAAGPVPDRASSAADVTTAAGGSSSGGDGVGAGAGSGSGTGGSSDIAEDRKGSSGTSGKGGSGSKGGSKDASKDTSKDASKDTSKGGGKKPQPSPSPSVSPKPKPSPEPSGEPTGKPSPSPSPSPSASPKPPKPTPSPEPSAPATPEPTPSETSAPEPTEPEPTEPEPTPSESVPPSDGSGSGEQDEGTAGDGTAGRADGTSEKSTVNRQDEDADGPEADPEDDEAGDAVDATAETDENANANANANA
AK018_01142864pxpA_1COG15405-oxoprolinase subunit AGTGCCAGCCGAGGAGGACTGCTCCGGGGGAATCACCCGGCACATCACCCGGCCCTGGACGGCCGGGCAGACTGGTGCCATGACGGCACCCGCGACGCAGCCCGTGATCGACCTCAACAGCGACCTGGGCGAGGGCTACGGGCGGTGGCGGCTCGGCGACGACGAGGCGATGCTCGCCGTGGTGACGAGCGCCAACGTGGCCTGCGGCTTCCACGCCGGGGACCCGGCGACGATGCGGCGCACGGTGCGTGCCGCCGTCGAGCGGGGTGTCGCGGTGGGTGCTCAGGTCTCCTACCCGGACCTCGCGGGGTTCGGGCGGCGCGCGATGGACGTGCCGAGCGAGGAGCTGCGGGCGGACGTCGTCTACCAGCTGGGGGCGCTGCGCGGGATCGCGGTCGCCGAGGGTGGCGAGGTGCGGTACGTGAAGCCGCACGGCGCCCTGTACCACGCCGCCGCCGGCGACGAGCGGGTCGCGACCGACGTCGCCGCGGCCGCCCGCGCCGTCGACCCGTCCCTGACGGTGCTCGGTCAGCCCGGGTCGGCGGCGCTGGCCGCCGCGGAGTCGCTCGGGCTGGCCACGGCCGCCGAGGCGTTCGCCGACCGCGCGTACACCCCCGAGGGCCGGCTCGTCCCGCGCGGGGAGCCGGGCGCGGTGCTCGACGACCCTCGCGAGGTCGCGGCCCGGATGCTGCGCCTGGTGCGCGAGGGGCTCGTCACGGCGATGGACGGGACGGACGTGGCCGTGCGGGCGCACTCGATCTGCGTGCACGGCGACACCCCGGACGCGGTCCGCATGGCGGCCGAGGTCCGTGCCGTCCTGACCCGGGCGGGCGTACGGGTCCGCGCGTTCGTGCCGGGGTCATGAMPAEEDCSGGITRHITRPWTAGQTGAMTAPATQPVIDLNSDLGEGYGRWRLGDDEAMLAVVTSANVACGFHAGDPATMRRTVRAAVERGVAVGAQVSYPDLAGFGRRAMDVPSEELRADVVYQLGALRGIAVAEGGEVRYVKPHGALYHAAAGDERVATDVAAAARAVDPSLTVLGQPGSAALAAAESLGLATAAEAFADRAYTPEGRLVPRGEPGAVLDDPREVAARMLRLVREGLVTAMDGTDVAVRAHSICVHGDTPDAVRMAAEVRAVLTRAGVRVRAFVPGSNANANANANA
AK018_011431629hypothetical proteinATGACGGTCCGGGTCCTGCCCGTGGGGGACGCGGCGCTGCTCGTGGAGCTCGACGACGGCGCGCGGGCCGTTGCGCTGCACGCGGACCTGGGTGCCGATCCCGTGCCCGGCGTCGGCGAGCCGGTGCCCGGTGCCCGCACGCTGCTGGTGCCGTTCCGTCCCGGTCGGATCGGGGCGGGCGACCTGGAGCGTGAGCTGCGCCGTCGTGCCGTCGCCGGTCGCGCGGCGCCGGACGGGTCCGCGGCGCGCACGGTCGAGGTGCCGGTCGTCTACGACGGGGCGGACCTGCCCGAGGTCGCGGCGCACCTGGGCTGGTCGGTCGGGGAGCTGGTGCGCCGCCACGCGGCGGCGACGTGGACGGTGGCCTTCCTGGGGTTCGCGCCCGGTTTCGGCTACCTGACCAGCGACGACCCCGACCTGGTGGTCCCGCGCCGGGCCACCCCGCGCACGCGGGTGCCGGCCGGGTCGGTGGCGCTGGCGGGCCCGTTCGGTGGCGTCTACCCGCGCGACAACCCGGGCGGGTGGCAGCTCGTGGGCCGCACGGACGCGGTGCTGTGGGACGTCGACCGCCCCGAGCCGGCGCTGTGGGCGCCGGGTGACACGGTGCGGTTCGTGCCCGCCGATGCCGATCGGGTCGGTACTCCGCGGCCGGGTCGGCACGCGGGCCTGCCGACCCGGCCGCGGAGTACCGACCCGGAGCCGGCCGACCCTGGACCGGCCGGCCACCGCCTCGAGGTGGTCGCCGCGGGCCCCCAGGCACTCGTGCAGGACCTCGGCCGCACGGGCGCCGCCCGGTGGGGCGTCTCCGGATCCGGGGCCGCGGACCCGCGCAGCCACCGTGCCGCCCAGCGGGCCGTCGGCAACCCGCCCGGCACCGCCGCGATCGAGGCCCTCGGGGGCGGGCTGCGGCTGCGCGCCCGGGGGCGGGTCGTCGTGGCGACGGCGGGGGCGAGCACCGCCACCGTGCACCCGGCCGACGGCGCTGCACCCCGCGAGGTGCCGCCGTCGTCCCCCGTGCTCCTGACGGACGGTGACGAGCTCGCCCTCGCGGTGCCCCGGCGCGGGCTGCGCACCAGCGTGGCCGTGCGCGGCGGCGTCGACCTGCCGCCGGTGCTCGGTTCGCTCAGCACGGACCTGCTCGCCGGGCTCGGCCCGGCACCGCTCGCCCCCGGCACGGTGCTGCCCGTCGGTCCGGCGCCCGGGGACGCCGTCGGCCTGCACGACGCCGGAGCCCCGGACCCGCACGGCCTCCCCGCACCCGGGACGACGACGGAGCTCCCCGTGGTGCCGGGACCCCGGGACGACTGGTTCACGCCCGAGGCGCTCGCGGTCCTCACCGCCCAGGAGTGGGAGGTGACCGACGCCGCGGACCGTGTCGGGCTGCGGCTGCACGGCGCCGCACCGCTGACCCGCACGAGGGACGCCCGCGACGCCGAGCTGCCCAGCGAGGCCTGCGTGACCGGTGCGCTGCAGGTGCCGCCCGACGGGCAGCCCGTGCTGTTCGGCCCCGACCACCCGCTGACGGGCGGCTACCCCGTGGTGGCCACCGTGCCCACCACGCACACCTGGCTGCTCGGCCAGCTGCCACCCGGTGCACGCCTGCGGTTCACCGTCCGTCCACCCAGGTAGMTVRVLPVGDAALLVELDDGARAVALHADLGADPVPGVGEPVPGARTLLVPFRPGRIGAGDLERELRRRAVAGRAAPDGSAARTVEVPVVYDGADLPEVAAHLGWSVGELVRRHAAATWTVAFLGFAPGFGYLTSDDPDLVVPRRATPRTRVPAGSVALAGPFGGVYPRDNPGGWQLVGRTDAVLWDVDRPEPALWAPGDTVRFVPADADRVGTPRPGRHAGLPTRPRSTDPEPADPGPAGHRLEVVAAGPQALVQDLGRTGAARWGVSGSGAADPRSHRAAQRAVGNPPGTAAIEALGGGLRLRARGRVVVATAGASTATVHPADGAAPREVPPSSPVLLTDGDELALAVPRRGLRTSVAVRGGVDLPPVLGSLSTDLLAGLGPAPLAPGTVLPVGPAPGDAVGLHDAGAPDPHGLPAPGTTTELPVVPGPRDDWFTPEALAVLTAQEWEVTDAADRVGLRLHGAAPLTRTRDARDAELPSEACVTGALQVPPDGQPVLFGPDHPLTGGYPVVATVPTTHTWLLGQLPPGARLRFTVRPPRPGPT0001010_841DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_ATRAZINE|DERIVATE_DEGRADATIONXENOBIOTIC_CYANURIC_ACID_DEGRADATION,PGPT0001010-atzF-K01457NANA
AK018_01144480hypothetical proteinATGACGTCGACGACGACCTCGCCCCAGACCCCGCGGCACAGCACCTCCCGGTTCGCCGCCGCCGGCCTGCTCGCCCTGGCGATGATGCTCGGGGCCTGCTCCGCACCCGCCGACGTCCAGCAGTTCATCGACGACGCCCAGAGCCGCGCCGAGGCCATCGAGGGCGACCTGCGCGAGATCGAGGAGCAGGTCACCGGCGTACCCGACCAGCTGCAGGGCTCCGTCTCCGACGCCGTCGCCTCCGCCCAGGCCGCCACCGACGAGGCGCGGGCCGCTCTCGAGCAGGCCGCCGAGTCCGAGGACGGGGCCGTCGTCGCCCTCGAGGACGCCCAGGTCGCCCTCGAGGCCGCGTCCGCCGAGGTCCGGCACGTCACCGAGCAGGCGCGCGAGCAGGGCGCCGACGACGTGGCCGCCCTGCTGTCCCAGCTCCAGGAGCAGATCGACGGGCTCCGCGGCGAGACCGAGGACGCCGCCGCCTGAMTSTTTSPQTPRHSTSRFAAAGLLALAMMLGACSAPADVQQFIDDAQSRAEAIEGDLREIEEQVTGVPDQLQGSVSDAVASAQAATDEARAALEQAAESEDGAVVALEDAQVALEAASAEVRHVTEQAREQGADDVAALLSQLQEQIDGLRGETEDAAANANANANANA
AK018_011451275hipO_1COG1473Hippurate hydrolaseATGAGCACGCTGACCTCCGCCGAGCTGACGACCGTCTACACGGACCTGCACGCCCACCCGGAGCTCGCGTTCGCCGAGCACCGCACCGCCGGGATCGTCGCCGACCGGCTGCGCAGCGGCGAGTACGAGGTGCACACCGGCCTCGGCGGCACCGGCGTCGTCGGCGTCCTGGCGAACGGCGACGGGCCGACCGTCCTGCTGCGCGCCGACATGGACGGCCTGCCGCTCACCGAGCGCACCGGCCTGGACCACGCCTCGACGGACACCGCCACGACGCCGGACGGCCACGAGACCGGCACCATGCACGCCTGCGGCCACGACCTGCACGTCACCTGCCTGCTCGGCGCCGCCGCCGAGCTGGCCGCCCGCCGCGCCGAGTGGTCCGGGACCCTGCAGGTGCTGTTCCAGCCCGCCGAGGAGGTCGGGGCCGGCGCGCGGGCCATGGTCGCCGACGGCCTCTACGACCGGATCGGCGTGCCCGACGTCGTGCTCGGCCAACACGTCATGCCCTTCCCCGTCGGCACCGTCAACCTCACGCCCGGCACCTCCATGGCCGCCGCCGACTCCCTGCGCATCACCCTGCACGGCACCGGCGGTCACGGCTCCAGCCCGGAGGCGACCGTCGACCCCGTCCTCATGGCCGCCGCGACCGTCCAGCGCCTGCAGGGGATCGTGGCCCGCGAGGTCGGGATGGGCGAGCAGGCCGTGCTCACCGTCGGATCCGTCCGCGCCGGCACGCAGGCCAACATCATCCCCGACCGTGCCGAGCTCCTGGTCAACGTGCGCAGCTTCGACCAGGGAGTCCGCGACCGGGTGCTCGCCGCCATCCACCGCGTCGTCGACGCCGAGGCCGCGGCCTCCGGAGCACCCCGACCGCCCGAGTACGAGCAGATCGCCCTGTTCAACCCCACCGTCAACGACCCAGACGCCGCCGACCGGACCCGGACGGCGCTCGCGGCGGTCCTGGACGAGCACGAGGACGCGATCCGGGAGGCCGGCAGCCGACCGACCGTCGTCGCGATGCCGCCCCTGTCCGGGTCGGAGGACGTGGGTGATCTCGCCACGGCCGCCGGCGCGCCGCTCGTGTACTGGAACGTGGGCGGCGCCGACCCCGCGGCGTTCGCGGGGGTCGACGTCTCGGCCGTCACCGGGATGGGGAGCCTGCAGGACGGCGTCGCGCCGAACCACTCGCCGTTCTTCGCGCCGGTGCCGCAGCCCACCCTCGACCTGGGGGTGGCCCTGCTGGTCGGCGCGGCCCGGGAGTGGCTCGCCTGAMSTLTSAELTTVYTDLHAHPELAFAEHRTAGIVADRLRSGEYEVHTGLGGTGVVGVLANGDGPTVLLRADMDGLPLTERTGLDHASTDTATTPDGHETGTMHACGHDLHVTCLLGAAAELAARRAEWSGTLQVLFQPAEEVGAGARAMVADGLYDRIGVPDVVLGQHVMPFPVGTVNLTPGTSMAAADSLRITLHGTGGHGSSPEATVDPVLMAAATVQRLQGIVAREVGMGEQAVLTVGSVRAGTQANIIPDRAELLVNVRSFDQGVRDRVLAAIHRVVDAEAAASGAPRPPEYEQIALFNPTVNDPDAADRTRTALAAVLDEHEDAIREAGSRPTVVAMPPLSGSEDVGDLATAAGAPLVYWNVGGADPAAFAGVDVSAVTGMGSLQDGVAPNHSPFFAPVPQPTLDLGVALLVGAAREWLAPGPT0019000_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSAMINIDASE,PGPT0019000-csxA-K15855NANA
AK018_01146228hypothetical proteinGTGCGGCAGCGCTACGAGACGCTGAGCATCGCCAACGACATCCTCATCGGCCTGTGGTTCGTGGTCGGCTCGGTGCTGTTCTTCTCCGAGTCCACCGCGACCGCCGGCACCTGGCTCTTCCTGGTGGGCAGCGTCCAGATGCTGCTGCGCCCCGGCATCCGGTTGCGTCGACGCGTGCACCTGAAGCGGCTCGGGTCGGCGCACGCCGAGACCGCCCGGGACTTCTGAMRQRYETLSIANDILIGLWFVVGSVLFFSESTATAGTWLFLVGSVQMLLRPGIRLRRRVHLKRLGSAHAETARDFNANANANANA
AK018_01147768yqjHCOG2375NADPH-dependent ferric-chelate reductaseATGGTGCGCACCACCCTGCGCGACGTCGACGGCGCCGACCCGGCCGCGCCGTCGTCCCTCGCGGCACTGCCGGCACCCGGCCCGGAGGACCACGTCAAGGTGTTCCTGCCGGACCCTTCCAACGGGGAGCTGCACGCGCCCACGGTCGCGCCCGACGGCGGGCTGCAGCGGCCCACCGGCGTGGTGTCCGTCTCGCGCGAGATGACGGTGCGCGCCACCCGCAGCGTCGACGGCGTCGCGGAGGTCGACATCGACTGGGTGCTGCACGACGGCGGCGGGCCCGCCGCCGACTGGGCCGCCCGGGCCGCCGCGGGCGACGAGCTGGTGCTCGCCGGGCCGCGGGTCTCCCGAGGCGTCCCGGACGGCATCGAGCGCCTCACCGTGGCCGTGGACGAGACCGGGCTGCCCGCCGCCGCCCGGTGGGTGGCCGCCGTCGGACCCGACGTGCGCGTCACCGCGATCGTGGAGATCGGCGACGACACCGACGAGGACCACGTCGAGTCCGAGCTCGCCCACGCCGATGTCGAGATCCTCTACCGCAACGACGGGCCGGGACAGCTCGCCGAGGCCGTCCGGTCCCTCGGTCCGCTGGACGACGGCGAGCACGTGGTCGCGCTCGGCGAGGCCGGCGACCTGACGCCGGTGCGCCGCCACCTGCGCCACGAGCTCGGTCTCGGCCCGGAGCGCGTGACGGTCGCGGGGTACTGGCGGCGCGGCACCGTCAACCTCGACCCCGACCAGCCCCTGGACCCGACCGACCCGGACTGAMVRTTLRDVDGADPAAPSSLAALPAPGPEDHVKVFLPDPSNGELHAPTVAPDGGLQRPTGVVSVSREMTVRATRSVDGVAEVDIDWVLHDGGGPAADWAARAAAGDELVLAGPRVSRGVPDGIERLTVAVDETGLPAAARWVAAVGPDVRVTAIVEIGDDTDEDHVESELAHADVEILYRNDGPGQLAEAVRSLGPLDDGEHVVALGEAGDLTPVRRHLRHELGLGPERVTVAGYWRRGTVNLDPDQPLDPTDPDNANANANANA
AK018_01148495hypothetical proteinGTGAGCGACCCGCAGCAGCCGTACGAGGGCTACCGTCCCGCCGACCGACCTGACCCGTCCGGGCCCGACGATCCCGGCGGTCCCGCCGATCCTGGCGCCGGGGACCGCCCCGACCAGGGCGCGCCCCCACCGGGATACGGGCCGCCGCCCGGCTACGGACCCCCGCCGCCCGGCTACGGGGCGTACCCCGGGTACGGCTACGGGCAGCCCGGCTACCCGCCCCCGGGCTATGCCCCGGACCCGCCCGGCAAGGTGATGGGCATCGTCGGCTTCGTGCTGGCGTTCGTCTTCGCGCCCGCGGGCATCGTGGTCTCCGCGATCGCGCTCTCGGACTCCAAGAAGGTCGGCTACGACAATGCCCTTGGTAAGTGGGGCCTGTGGCTGTCGATCGCGTTCACGGCGGTCGCGTTCCTCACGGTGATCGCCTACTTCGGCTTCATCGTGGCCATGATGGGGATGGTCGCCACCACGTCGGAGCTCGCCACGACCGTGTGAMSDPQQPYEGYRPADRPDPSGPDDPGGPADPGAGDRPDQGAPPPGYGPPPGYGPPPPGYGAYPGYGYGQPGYPPPGYAPDPPGKVMGIVGFVLAFVFAPAGIVVSAIALSDSKKVGYDNALGKWGLWLSIAFTAVAFLTVIAYFGFIVAMMGMVATTSELATTVNANANANANA
AK018_011494494hypothetical proteinGTGAGCCGTGCGGAGCTGGACCGCGCCGCGGCCGCGCGTGCCGCCGTCGTCGTCCCGGACATCACCTACCCGGAGCAGCTGCCCGTCTCGGCTCGGCGCGAGGACATCGCCGCGGCGATCCGGGAGAACCAGGTCGTGATCGTGGCCGGCGAGACCGGCTCCGGCAAGACGACGCAGCTGCCGAAGATCCTGCTCGAGCTCGGCCGGGGCCGTGCCGGGCAGATCGGGCACACGCAGCCCCGCCGGATCGCGGCGCGCTCCGTGGCCGATCGCGTCGCCGACGAGCTCGGCGCGGAGCTGGGTGGCGTCGTCGGGTACCAGGTGCGGTTCACCGACACGTCCAGCGAGGACACGCTGGTCAAGGTCATGACGGACGGCATCCTGCTCGCCCAGATCCAGCGGGACCCCGACCTGCTCGCCTACGACACGATCGTCATCGACGAGGCGCACGAACGCTCGCTCAACATCGACTTCCTGCTCGGGTACCTGTCCCGGCTGCTGCCGCGCCGGCCGGACCTCAAGCTCGTCATCACGTCGGCGACGATCGACTCGGAGCGCTTCGCGGCGCACTTCTCCCCCGCCGCCCTGGCCCGGGAGGGCGGGGCCCCCGAGGCGGTCGTCGACGTGCTGCCCGACGCCGCCCCCGTCGTCGAGGTCTCCGGACGCACCTTCCCCGTCGAGATCCGCTACCGACCCCTGAGCCCGGACGGCGACGCCTCGGGGGGCGGGAAGAAGAAGGGTGAGGAGAAGGACCTCGTCACCGGGATCGTCGAGGCCTGCGACGAGCTGATGCGCGAAGGGTCCGGCGACATCCTCGTGTTCCTGTCCGGCGAGCGCGAGATCCACGACGCCGCGGACGCCCTCGAGGGCCACCTCAAGGAGCGCGTCCGCGACCCGAAGCGGCCCGACCACGTCGAGATCCTGCCGCTGTACTCGCGGCTGTCCGCCGCCGAGCAGCACCGCGTGTTCCAGTCGCACCCGGGCCGGCGCATCGTGCTGTCCACGAACGTGGCCGAGACGTCCCTGACCGTGCCGGGCATCCACTACGTCGTCGACCCCGGCACCGCCCGCATCTCCCGGTACTCGAAGGCCACCAAGGTCCAGCGGCTGCCGATCGAGCCGATCAGCCAGGCGTCGGCCAACCAGCGGTCCGGTCGGTCCGGACGCGTCGCCGACGGCATCGCGATCCGGCTGTACTCCGCCGAGGACTTCGAGGGGCGGCCGGAGTTCACCGAGCCCGAGATCCTGCGCACGTCGCTCGCCTCGGTGCTGCTGCAGATGATCTCCGTGGGCGTGGTCGGCTCCCCCGACGACGTCGCGAGGTTCCCGTTCGTCGAACCCCCGGACACGCGGGCCGTGCGCGACGGCGTCAACCTCCTGGCCGAGCTCGGCGCGCTCGCCCGCCGCCGCGGGCGCGACGGCACGGCGTCGAACGACGTCCACCTGACCGACGTCGGCCGCACCCTGGCGCGCCTGCCCATGGACCCCCGACTGGCCCGCATGGTCATCGAGGGCTCCCGCCTCGGCGTCGCCCGCGAGGTCGCGATCATCGCCGCCGCCCTGTCCATCCAGGACCCCCGCGAACGCCCCGCCGAGTCCCGCGAGCAGGCCGACCAGGCGCACGCCCGCTTCACCGACCCGACGTCGGACTTCCTCAGCTACCTCAACCTGTGGGAGTACCTGCGCGAGCAGCAGCACCAGATGGGCTCCTCGGCGTTCCGCCGGCTGTGCAAGAGCGAGTACGTCAACTTCCTGCGCGTGCGCGAGTGGCAGGACGTCGTCGCCCAGCTGCGGCAGATGGCCAAGCAGCTCGACATCGACATGTCGTTCCGCCCCTCCACCACGGGCCCCTCGGTCGAGGCGGGCGGCGACGGCGACGGCGGGACGAGCTGGAAGCGGTCCTGGGACGGTGACACCGTCCACCGCGCCCTGCTGTCCGGGATGCTCTCCCAGATCGGGATGCAGGACACCGGCGAGGTGAAGGCGTCCTCCGTGGCGCACCTGCGCGGCGAGGCCCGGGCTCGGGCGCTGCGCCAGGCCGCCAAGCGGGCCCGCAACGAGTACCTCGGCGCGCGCGGGGCCCGGTTCGCGATCTTCCCCGGCTCCCCGCTGTCCAAGAAGCCGCCGGCGTGGATCATGGCCGGCGAGCTCGTCGAGACGTCCCGCCTGTGGGCGCGGGACGTCGCGAAGATCCAGCCCGAGTGGGCCGAGGAGCTGGCGGGCGACCTGGCCAGGCGCACCTATTCCGAGCCGCACTGGTCCACCAAGCAGGGTGCCGCGATGGCCACCGAGAAGGTGCTGCTCTACGGGGTGCCGATCGTCGCCGACCGCCCCGTGCTCTTCGGCAGGATCGACCCCGAGGGCGCCCGCGACCTGTTCATCCGGCACGCGCTCGTCGAGGGGCAGTGGACCACCCACCACGCGTTCTTCGCCGAGAACCGCCGTCTGCTCGCCGAGGCCGAGGAGCTGGAGGCCCGGTCGCGGCAGCGCGGGCTCGTCGCCTCCGAGGACGACCTGTTCGCCTTCTACGACGAGCGGGTCCCCGCGCACGTCGTCAGCGCCCGGCACTTCGACTCCTGGTGGAAGAAGGCCCGCCGCGACGACCCCGACCTGCTCACCTTCACTCTCGACCAGCTCGTCGACGCCGAGGCCGTCGACACATCCGAGTTCCCCGAGACGTGGACCCAGGGCGAGGTCACCCTGCCGCTGACGTACCAGTTCCAGCCCGGGTCCGACGCCGACGGCGTCACCGTCCACATCCCGGTGTCGATCCTCAACCGGGTCTCCCCCGACGGGTTCGACTGGATGGTGCCCGGCCTGCTCGACGAGCTGTGCGTCGCCACCATCCGGTCCCTGCCCAAGGCGGTGCGCCGCGAGCTGGTCCCCGCACCCGACGTCGGTGCCGCCGTCGCCGCCTGGATGCGGGACAACGTCCCGGCCTGGGAGGACCTCACACGGGCCGGAGACATGGCCACGCCGTTCCACGTCGAGTTCACCCGCGCCGTGCGCGCGCTGCGCGACGTGATCATCCCCGACGAGGTGTGGGATGCCGAACGCGTCGAACGGCTGCCCGCGCACCTGCGGATGACCTTCCGCATCGAGAGCACCGGGGACGCCACGGGCGCCGGGTCGCGCGACGGCGGCCCCGCCGGGGGTGGACGACGGCGCGGGTCCGGCGGCAAGAAGGGTCGCGGCCGCGGGGCGGCGCAGCCGTCGGGGCCCGTGGTGCTCGACGAGTCCAAGGACCTGCTGTCCCTGCAGAAGAAGCTCGCGCCCCAGGCGGAGGCCGCCGTGCGGTCGGCCGTCAAGGGAGCCGTGGGGGTGGCGCTGGAGGAAGCCGCGCAGGCTGCTTCGGGTCGCTCGAGAACGCCCGGGGACGGCGCATCGGAGGCGCCGCCTCGCTCACGGGCCCCGGGGGGCCCTCCGCTACGGCTCGACGGCGGCGCCTCCGACACCCCGACCCCGGGCTCCGCGGATTCGTCCGGGTCCGGGCGGTCCGACGGCGGCACCACCGCAGGGTCGTCGGCTGCAGGGGCCGTCGTGGCCGAGCAGGAGGGACTCTCGACGTGGCCCGGGGGGCTCGCGGACGGGGTGCTGCCCGACGTCGTGTCGACCGATCTCGGTGGGGGCGTCGTCGTGCAGGGGTACCCGGCGCTCGTCGAGGAGGCTGGCGGCAAGGGCTCCGGGCCGTCGGTGGCGCTGCGGACCCTGGCCGATTCCTCCGGGCGGGACGCCGCGCACGCGGCCGGGGTGCGGCGGCTGCTGCTGTCGGAGACGGCGCTGCAGACCGGCCGGATCACCTCGCGCTGGTCGGCGAAGCAGTCGCTGACGCTGGCGGCCGCGCCGTACCGGAACACCGACGCGCTGGTCGCCGACCTGCAGCTCGCCGCCGTCATCGCCTTGACCAGCACTGACGCCGACAAGGCCCCGGGGACGCCGACCGGCGGACCGGTCGCTGTACAGATCCGCAACGCCGAGATGTACCAGGAGGCGGTCGCGTTCGTGCGCCGGCACCTGGAGGACGAGGTGCACCGGGTCGTCGGGCACGTCGTCGCCGCGCTGACCGCGTGGCGGACCGTCGAGACGGAGGTCAAGGCGTCGTCGTCGCTGGCCCTGCTCAACACGCTGCAGGACATCCGCGAGCACGTCGCCGGCCTGGTCTTCGACGGGTTCGTCTCCGCGACCCCGCCCCGGCGGGTGCCGCACCTCGTGCGCTACCTGCGGGCGGCGTCGTACCGGCTGGAGAAGGCCGAGTCGAACCCGCACCGTGACGCCGAGCTCGCCTGGAAGATCCACGACGTCACCGGCGTCCACGACCAGGCACGGGAGGCCTACGCCGCCGGACCGCCCGACCCGGCGCGGGCGGCCGAGCTCGCCGACGTCCGGTGGCTGCTCGAGGAGCTGCGGGTGTCGCTGTTCGCCCAGCAGCTCGGCACGGACGGGTCGGTCAGCGAGAAGCGGATCCGCAAGATCCTCAACCCGGGCGGCTGGTAGMSRAELDRAAAARAAVVVPDITYPEQLPVSARREDIAAAIRENQVVIVAGETGSGKTTQLPKILLELGRGRAGQIGHTQPRRIAARSVADRVADELGAELGGVVGYQVRFTDTSSEDTLVKVMTDGILLAQIQRDPDLLAYDTIVIDEAHERSLNIDFLLGYLSRLLPRRPDLKLVITSATIDSERFAAHFSPAALAREGGAPEAVVDVLPDAAPVVEVSGRTFPVEIRYRPLSPDGDASGGGKKKGEEKDLVTGIVEACDELMREGSGDILVFLSGEREIHDAADALEGHLKERVRDPKRPDHVEILPLYSRLSAAEQHRVFQSHPGRRIVLSTNVAETSLTVPGIHYVVDPGTARISRYSKATKVQRLPIEPISQASANQRSGRSGRVADGIAIRLYSAEDFEGRPEFTEPEILRTSLASVLLQMISVGVVGSPDDVARFPFVEPPDTRAVRDGVNLLAELGALARRRGRDGTASNDVHLTDVGRTLARLPMDPRLARMVIEGSRLGVAREVAIIAAALSIQDPRERPAESREQADQAHARFTDPTSDFLSYLNLWEYLREQQHQMGSSAFRRLCKSEYVNFLRVREWQDVVAQLRQMAKQLDIDMSFRPSTTGPSVEAGGDGDGGTSWKRSWDGDTVHRALLSGMLSQIGMQDTGEVKASSVAHLRGEARARALRQAAKRARNEYLGARGARFAIFPGSPLSKKPPAWIMAGELVETSRLWARDVAKIQPEWAEELAGDLARRTYSEPHWSTKQGAAMATEKVLLYGVPIVADRPVLFGRIDPEGARDLFIRHALVEGQWTTHHAFFAENRRLLAEAEELEARSRQRGLVASEDDLFAFYDERVPAHVVSARHFDSWWKKARRDDPDLLTFTLDQLVDAEAVDTSEFPETWTQGEVTLPLTYQFQPGSDADGVTVHIPVSILNRVSPDGFDWMVPGLLDELCVATIRSLPKAVRRELVPAPDVGAAVAAWMRDNVPAWEDLTRAGDMATPFHVEFTRAVRALRDVIIPDEVWDAERVERLPAHLRMTFRIESTGDATGAGSRDGGPAGGGRRRGSGGKKGRGRGAAQPSGPVVLDESKDLLSLQKKLAPQAEAAVRSAVKGAVGVALEEAAQAASGRSRTPGDGASEAPPRSRAPGGPPLRLDGGASDTPTPGSADSSGSGRSDGGTTAGSSAAGAVVAEQEGLSTWPGGLADGVLPDVVSTDLGGGVVVQGYPALVEEAGGKGSGPSVALRTLADSSGRDAAHAAGVRRLLLSETALQTGRITSRWSAKQSLTLAAAPYRNTDALVADLQLAAVIALTSTDADKAPGTPTGGPVAVQIRNAEMYQEAVAFVRRHLEDEVHRVVGHVVAALTAWRTVETEVKASSSLALLNTLQDIREHVAGLVFDGFVSATPPRRVPHLVRYLRAASYRLEKAESNPHRDAELAWKIHDVTGVHDQAREAYAAGPPDPARAAELADVRWLLEELRVSLFAQQLGTDGSVSEKRIRKILNPGGWNANANANANA
AK018_01150663hypothetical proteinGTGCGTCGTCCGGCGACGCTACGGGCCTGGCTCCGTGCCTACGCCGCGGCGACATCGACCACCACGAGCTACAACGACATCCTCGACGCCGCGACGGCGGGGGAGAACGACAAACCGAGTCGGACGACGACGACGGTGTACCGCGATGTGCTCGCTCAGCTGTGGCAGCTCGATCCGGTCGAGGCGTGGCTGCCGAGCCGAAACCATCTTGATCGCCTCACCCAGGCGCCGAAGCATCACCTCGCGGACCCGGCGTTGGCGGCTGTGCTCCTTGGACTGGACGCCGAACAGCTGATGCGTGGCACTGCCTCCGCCGCAGGTCTGCGCGACGGAGCCGTTCTGGGGCAGCTGTTCGAACACCTGGTGACCCTCAGTGTCCTGGTGTATGCGGAGGCAGCGGAGGCCCACGTCCGGCACCTGAGGACCAAGGGAGGTGACCACGAGGTCGACCTCATCGTCGAACGGCGCGACGGGCGTGTCCTGGCGTTGGACGTCAAGCTCAAGGCGACGCCCGCCGAGAAGGACTTCCGGCATCTGCGGTGGCTGAAGGAACAGCTCGGCCACGATCTCGTCGATGCGGCCGTCGTCACGACCGGACGGCATGCCTACCGGCGCGGCCAGGACGGAATCGCCGTCGTCCCCCTGGCGTTGCTGGGCCCGTGAMRRPATLRAWLRAYAAATSTTTSYNDILDAATAGENDKPSRTTTTVYRDVLAQLWQLDPVEAWLPSRNHLDRLTQAPKHHLADPALAAVLLGLDAEQLMRGTASAAGLRDGAVLGQLFEHLVTLSVLVYAEAAEAHVRHLRTKGGDHEVDLIVERRDGRVLALDVKLKATPAEKDFRHLRWLKEQLGHDLVDAAVVTTGRHAYRRGQDGIAVVPLALLGPNANANANANA
AK018_01151996rmlB_1COG1088dTDP-glucose 4,6-dehydrataseATGCGTGTACTCATCACCGGCGGCGCCGGGTTCATCGGCGCGAACTTCGTCTACCAGACCGTCCGTGATCGTCCGGGCGCCCGGGTCACGGTGCTCGACTCCTTGTCCTACGCCGGTGACCGTGCGTCGCTTGCGCCCGTACAGGACCAGATCGAGTTCGTTCACGGCTCCATCGCCGATGCGGAACTGGTCGACAGGCTCGTCAGCGCTACGGACCTCGTCGTCCACTTCGCGGCCGAGTCGCACAACGACAACTCGCTGCACGACCCGTCGCCGTTCGTCTCAACGAACCTGGTAGGCACCTTCACGCTGCTCGAGGCCGTACGCAAGCACGGTGTCAGGTTCCATCACGTCTCGACCGACGAGGTCTACGGCGACCTGGAGCTCGACGACCCGGCGAAGTTCACGCCCGAGACGCCCTACAACCCGTCGAGCCCCTACTCGGCGACCAAGGCCGGTTCGGACCTCCTGGTGCGGGCGTGGGTCCGGTCGTTCGGCGTCGATGCCACCATCTCCAACTGCTCGAACAACTACGGGCCGTACCAGCACGTCGAGAAGTTCATCCCCCGGCAGATCACCAACCTGATCGACGGCGCACGACCCAAGTTGTACGGCGCGGGCCTCAACGTCCGCGACTGGATCCACGTCGAGGACCACAACAGTGCGGTCTGGACGATCATCGACCACGGCCGCATCGGCGAGACCTACCTGATCGGCGCCGACGGGGAGAAGAACAACCTCGAGGTGGTCCAGACGCTGCTGGAAGTGTTCGGCCGCGACGCCGACGACTTCGACCACGTCACCGATCGGCCGGGGCACGACCTGCGCTACGCCATCGACGCCACCAGGCTCCGTGAGGAGCTCGGGTGGGAGCCACGCTTCACCGACTTCCGCAGCGGCCTGCAGGCCACCGTCGACTGGTACCGCGAGCACGAGGCGTGGTGGCGCCCGCGGAAGGCTGCCGTCGAGGCGAAGTACGCCGCCACGGGCCAGTAGMRVLITGGAGFIGANFVYQTVRDRPGARVTVLDSLSYAGDRASLAPVQDQIEFVHGSIADAELVDRLVSATDLVVHFAAESHNDNSLHDPSPFVSTNLVGTFTLLEAVRKHGVRFHHVSTDEVYGDLELDDPAKFTPETPYNPSSPYSATKAGSDLLVRAWVRSFGVDATISNCSNNYGPYQHVEKFIPRQITNLIDGARPKLYGAGLNVRDWIHVEDHNSAVWTIIDHGRIGETYLIGADGEKNNLEVVQTLLEVFGRDADDFDHVTDRPGHDLRYAIDATRLREELGWEPRFTDFRSGLQATVDWYREHEAWWRPRKAAVEAKYAATGQPGPT0022625_4287DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022625-rfbB|rmlB|rffG-K01710NANA
AK018_01152618rmlC_1COG1898dTDP-4-dehydrorhamnose 3,5-epimeraseGTGCAGTTCCGCGAGCTCGCCGTGCCCGGCGCCTACGAGATCACCCCGAAGCAGCACGGCGACCCGCGCGGGGTGTTCCTCGAGTGGTTCAAGGCACCGGCGTTCGCCGAGCACCTGGGCCACGACCTCGACCTGCAGCAGGCCAACCTCTCCGTGTCCGCCGCCGGCGTACTGCGGGGCATCCACTTCGCCGATGTCCCGCCCGGGCAGGCGAAGTACGTGACCTGCCCGAAGGGCGCGGTGCTGGACGTCGTGGTCGACGTCCGCGTCGGGACGCCGACGTTCGGCCGGTGGGACTCGGTGGTGCTCGACGACGTGGACCGGCGCGCCATCTACCTCGGCGAAGGGCTCGGGCACGCCTTCCTGTCACTGGAGGACGACTCGACCGTGATGTACCTCTGCTCGACGGGCTACAACCCGACGGCCGAACACGGCGTGCACCCGCTCGACCCGGCGATCGGGATCGAGTGGCCGACGACGGCACGTGACGGGACCCCGTTGGCCCCGCAGCTCTCCGAGAAGGACGCCGCGGCACCCACGCTCGCCGATGCCCAGGAGCAGGGCCTGCTCCCGACCCTCGACACCGTCGAGGAGCACGTGGCGTCCCTGCGCCGCTGAMQFRELAVPGAYEITPKQHGDPRGVFLEWFKAPAFAEHLGHDLDLQQANLSVSAAGVLRGIHFADVPPGQAKYVTCPKGAVLDVVVDVRVGTPTFGRWDSVVLDDVDRRAIYLGEGLGHAFLSLEDDSTVMYLCSTGYNPTAEHGVHPLDPAIGIEWPTTARDGTPLAPQLSEKDAAAPTLADAQEQGLLPTLDTVEEHVASLRRPGPT0014300_113DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0014300-rfbC|rmlC-K01790NANA
AK018_01153876rmlDCOG1091dTDP-4-dehydrorhamnose reductaseGTGACGACTTCGACGCCTCCGGACGCCACCGCCTCCCGCTGGCTCGTCGTGGGAGCCCGCGGCATGCTGGGCCGCGACCTCCTCGACGTGCTCAGGACGGCCGGTCGCGACGTCGTCGGTCTGGGCCGGGCCGAGCTCGACCTCACCGCCGCGGAGGCGGCCCGCGCGGCCGTGGCCGGTTTCGACGTGGTCGTCAACACTGCCGCCTGGACCGCCGTCGACGACGCCGAGACGCACGAGGCCGAGGCCTTCGACGTCAACGCCACGGGTGCGGCGAACCTCGCATGTGCCGCCGCGGCAGCGGGCGCCAGGCTGGTCCATGTCTCGACGGACTACGTGTTCGACGGAACGGCGACCGAGCCGTATGCCGAGGACGCCCCGATCGCGCCGCGCTCGGCGTACGGGCGCACCAAGGGCGCGGGGGAGTGGGCCGTGCGAGCCGAGGCGCCTGACCATCTCATCGTGCGCACCGCGTGGCTCTACGGCGCCCACGGGGGGTGCTTCCCGAAGACGATGGCGCGGCTCGGTGCCGAGAAGGACCGGCTCGCCGTCGTCGACGACCAGGTCGGCCAGCCCACCTGGACCCGTGACCTGGCCGATCTGATCCTGCGGCTCGTCGACGCCGGGGCCCCCGCCGGGATCTACCACGGGACGTCGTCGGGCCAGACGTCCTGGTACGGCTTCACGCAGTGGATCCTCGCCGAGGCCGGCCTGTCGACGCCGCTGGAGCCGACCACCAGCGACAGGTTCCCCCGCCCGGCGCCCCGACCGGCCTACTCCGTGCTGGGGCACGAGGCACTGCGTCGTGCAGGGGTGGAGCCCATCGGCGACTGGGCCCAGCGCTGGCAGGCGGCGGCGTCGTCGGTCCTGGCGTGAMTTSTPPDATASRWLVVGARGMLGRDLLDVLRTAGRDVVGLGRAELDLTAAEAARAAVAGFDVVVNTAAWTAVDDAETHEAEAFDVNATGAANLACAAAAAGARLVHVSTDYVFDGTATEPYAEDAPIAPRSAYGRTKGAGEWAVRAEAPDHLIVRTAWLYGAHGGCFPKTMARLGAEKDRLAVVDDQVGQPTWTRDLADLILRLVDAGAPAGIYHGTSSGQTSWYGFTQWILAEAGLSTPLEPTTSDRFPRPAPRPAYSVLGHEALRRAGVEPIGDWAQRWQAAASSVLAPGPT0022630_2286DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0022630-rfbD|rmlD-K00067NANA
AK018_01154864rmlA_1COG1209Glucose-1-phosphate thymidylyltransferaseATGCGCGGCATCATCCTGGCCGGCGGATCCGGCACCCGACTGCACCCGATCACGCTCGGCGTGAGCAAGCAGCTCGTGCCGGTCTACGACAAGCCGATGATCTACTACCCGCTGTCGACGCTGCTGCTCGCGGGCATCCGGGACGTCCTGGTCATCACCACCCCGCACGACTCCGAGCAGTTCCGCCGCCTGCTGGGTGACGGCTCGCAGTTCGGCATCTCGATCGAGTACGCGGTTCAGGCGGAGCCGAACGGCCTGGCGCAGGCGTTCGTGCTCGGCGAGGAGTTCCTCCAGGGCGGGCCAGCGGCACTCGTCCTGGGCGACAACATCTTCTACGGCCAGGGGCTGGGTGATCAGCTGCAGCGGTTCACCACCGTCGACGGCGGGTCGGTCTTCGCCTACCGCGTGGCGGACCCGACGGCGTACGGCGTCATCGAGTTCGGCGACGACGGCGTGGCGCGGTCGATCGAGGAGAAGCCGGCACACCCCCGCTCGAACTACGCCGTCCCGGGTCTGTACTTCTACGACCGCGACGTCACCGAGATCGCCAAGGGCCTCACCCCGTCGGCCCGCGGCGAGTACGAGATCACCGACATCAACCGGCACTACCTGGACCAGGGCAGGTTGCAGGTGGAGGTGCTGCCTCGGGGCACGGCCTGGCTGGACACCGGGACGTTCGACTCCCTCATCGACGCCAGCGACTTCGTGCGGACCGTGGAGCACCGGCAGGGCCTCAAGGTCGGCGCCCCGGAGGAGGTGGCCTGGCGTCGCGGGTTCCTGACGGACGACGAGCTGCGCCTCCGCGCGGAGCCGCTGGTGAAGTCGGGCTACGGCCGCTACCTGCTCGGCCTGCTGGACGACTGAMRGIILAGGSGTRLHPITLGVSKQLVPVYDKPMIYYPLSTLLLAGIRDVLVITTPHDSEQFRRLLGDGSQFGISIEYAVQAEPNGLAQAFVLGEEFLQGGPAALVLGDNIFYGQGLGDQLQRFTTVDGGSVFAYRVADPTAYGVIEFGDDGVARSIEEKPAHPRSNYAVPGLYFYDRDVTEIAKGLTPSARGEYEITDINRHYLDQGRLQVEVLPRGTAWLDTGTFDSLIDASDFVRTVEHRQGLKVGAPEEVAWRRGFLTDDELRLRAEPLVKSGYGRYLLGLLDDPGPT0022600_4402DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022600-rfbA|rmlA|rffH-K00973NANA
AK018_01155966hypothetical proteinATGGTCCGGCGGTCGCCAGGGCATTTTGGCGTGAGGTGGGAGGCCTCATCGGGTCGTAGCCTGGCGGAAGCGCTGGGCTCGAGGAGCAGGTGTGGGATCTACCGCCTGCATTTCGCCGACGGAACCGCGTATGTCGGTCAGGCGATCGACGTTGTCCAGCGGTACAAGCGGCATGTCAGGGACTGGCATCCGCTGGAGATCGTGGGCCTCGACTTCCGGATAGAGAAGCGTGAGGACCTGAGCCAGCGAGAACTGGAGACGGTCTGGTACTTCGAGGGTGCCGGCAATCTCCGCAACAAGTTGCTGGTGACGCTTTCCAATGCTGAGGAGTGCGCGTTGAATGACGTCGTTCCTCCGGAGGACCAGGATGCCTGGGTGCGAGGAGGTCAAGTGCTCTCAGCCGAGGCGCGCAACACCGACACGGATCTGGTTCAGGGGACCTCCGCGAAGTTGCGACGGCTGCTGGAGCGGGATGACTGGCCGGAGATCAAGGCACTGCTGACGACCTTCGTTCAGTCGGCGATGATCGCCCCACAGGTAACGGCCGGTCGGTTCTGGAGCGTCGAGGCGTTACCGCGACCTCGGCGCAACAACACCCTCGGGCGCGAACTGGCTCGGGTGTATGTCTACGGGCTCGACGTCATGTCCGTCTTCGAGGTCCGATCCCGAGCAGGCGAACGTGTTCTTGCGAACGCCATCGTGGCCGAACCGGAGCTGAACGGCTGGGGTGAACGGTGGAAGTGGCTCGTGACCGGGTTCAAGCTCTCGGCCTATGCCGGCGCGGGCAAGGGCCTGGGCTACTACCAGGACGTCAACTTCAAGACCCACCGATCGATGACCGAGTTCTTCGACGAGACCCAGCTGCTGCGCGCGGCACGTGTCATGACACTTGCTCGGATGCGCCGGGGTGCCGTTCAGATCAAGGGGCACTCGCCGGAACTGGTACGCCAGCTCCTCGAAGACTGAMVRRSPGHFGVRWEASSGRSLAEALGSRSRCGIYRLHFADGTAYVGQAIDVVQRYKRHVRDWHPLEIVGLDFRIEKREDLSQRELETVWYFEGAGNLRNKLLVTLSNAEECALNDVVPPEDQDAWVRGGQVLSAEARNTDTDLVQGTSAKLRRLLERDDWPEIKALLTTFVQSAMIAPQVTAGRFWSVEALPRPRRNNTLGRELARVYVYGLDVMSVFEVRSRAGERVLANAIVAEPELNGWGERWKWLVTGFKLSAYAGAGKGLGYYQDVNFKTHRSMTEFFDETQLLRAARVMTLARMRRGAVQIKGHSPELVRQLLEDNANANANANA
AK018_011561176hypothetical proteinATGCCCGCGAACACCGGCGATCCGGTGGTGCTCATCAGCGACGATCCTGCACGGCTTCGTCGGACCGCGGTGTCGGAGGACGAGATCCAAGGACTCGTGTTCGCTCATCCTGAGGTCCTGCCTGTCGCGGAGCTCGACGACGACTTCGCACCGCTGCTGCCGATCGGACGTGAGATCGGCACGTCCGCCGGGCCGATCGATGCGCTGTTCGTGTCCCCGCACGGTGGCCTGACTCTGGTCGAGGCCAAGCTGTGGCGCAACCCGGAAGCCCGCCGCGAGGTCGTGGGACAGATCGTCGACTACGCGCGCACAGTGGCGACGTGGTCCTACAGCGACCTCGACGCCGCGTGCCGCCGGTCCTGCGGTCGCTCGCTGTGGGATCTCGCGCACGACGCCGGAGCGGACGACGAGCGCCGGTTCGTCGACGCGGTCTCCGCGAACCTCCGGGCCGGGCGGCTGCTGCTGCTCGTAGTCGGCGACGGCATCCGTGAGGACGTCGCGGCCATGGCCGCCTACCTGCAGGACACTCCCCAGCTGCACTACCGCCTCGGCCTGGTCGAGCTGGCGATCTACGAGGACCCCGAACGTGGGGTTCGCGTCGCCGTGCCGTCCGTCGTGGCACGCACGCGAGAGGTCGTGCGTGCCGTGGTGCGTGTCGACGTCGCGCCCGAGGCCAAGGTGGACGTCTCGGTGGCGGTCCCGCAGGACGACTCCCCCGCGGCCCGCGGCCGTCTGAGTAGGGACGACGTGTTGACCGCGATGGCACGCCGCGTGCCGGCAGCGACCCTCGACGCCGTGCGCAGCATCCTGCTGCGGTACGACGACGACCCGCGCTTCGTGGTGCAGGACCGGCTCAGCTCGAGTGTGGTCATCAAGGTCAGGAACCCGCGCGGTGGTAGCCCGTTCACCGCTCTCGTCATGGACACAGCAGGCACGGCGTATCCCGGCTGGCTGAACCAGCAGGCTGAGCGTGCGGGCATCCCGCCCGAGCAGCTCCTGGCCTTTCCTCGACGGCTCGCGGAGATCTTCGACGTGCCGATCAAAGACGGCTACGTCGACACCCTCGCGGAACGTCTCCCGCTGGCGACCGTGGTCGAGCGATGGCCGGAGGTCGCCGCGGCGATCTCTGATCTTGCCGAGGAGATCCAGCGCGACACGACGGGTGTCCATCCGTGAMPANTGDPVVLISDDPARLRRTAVSEDEIQGLVFAHPEVLPVAELDDDFAPLLPIGREIGTSAGPIDALFVSPHGGLTLVEAKLWRNPEARREVVGQIVDYARTVATWSYSDLDAACRRSCGRSLWDLAHDAGADDERRFVDAVSANLRAGRLLLLVVGDGIREDVAAMAAYLQDTPQLHYRLGLVELAIYEDPERGVRVAVPSVVARTREVVRAVVRVDVAPEAKVDVSVAVPQDDSPAARGRLSRDDVLTAMARRVPAATLDAVRSILLRYDDDPRFVVQDRLSSSVVIKVRNPRGGSPFTALVMDTAGTAYPGWLNQQAERAGIPPEQLLAFPRRLAEIFDVPIKDGYVDTLAERLPLATVVERWPEVAAAISDLAEEIQRDTTGVHPNANANANANA
AK018_011571776hypothetical proteinATGGCACAGGGGTATCCTCGGGCCATGACCATAATTTTCGGTCGTGGCCCAGTAGCCGGCGCAGTGTCCGAAGCGCTCGAAGCCCTGGAGGCAGGGCAGCCAGTCGCCGAGCGCAGAGAGATCGACCTCAAGGAAGAGGCGGGCCGACGCGGCCCCGGCGGAGAGATCCGACCTGGGGCTTCTCAGAACGAACGCGCAGCACAGGCCCTCGCCGGCGAGTGCGCCTGCATGGCCAACACGCCGGGAGGCGGTGCTCTGATCGTCGGAGTCGCGGATGACGGAGAACTGATCGGCACGGCCCTCGATCCTGAATGGCTGCGAGCCAGGATCTATGAGTTGACGCATCGGCTGCTGACGGTCGACGCCCGAGCCGTCACGGTCCGGGGGGAACGGCTCCTCGTCCTCATGATGGTCGAAGCGATCGAACCCGTCCGCTGGAAGGGCAAGATCACCTGGCGCGTCGCCGACCGCTGCGTCGAGATGGATCCGTCGAGCTGGCACGCCCACCGCATGACGTCGATGCGGGTCGACTGGTCCGCGCAGGCAAGCGATCTTCCCGCCGAAGCCGCACGCGCGGACGCGATCGAGATCGCCCGGGACTTCCTCCGCGACTCGCTGGACACCTCTGCGAACGAGTTGGCGCGGGCCAGCACGCCCGACCTCCTGCGACGCCTGAACGCCGTGACCGGGTCGGGTCACCTCACGAACGCCGCCGCGCTCTTGTTCGTCGGCCGAGAGTTCCCGGGGCTCGACTACATCCGCCGTAGCACGGCCGGTGGCGACAGTGTCGAGCGAGTTCGCCGAAGCGGCCAGCCGCTGATCCGAGAACTCAGCGACGTGTTCACCGTCGCCCGCGCCCACAACCCGACGATCCACATGAGGTCCGGGCTCGTGATCGGGCAGGAACGCCGCATTCCCGACAGGACGCTCCGAGAGGCGATCGTCAACGCCGTGGCACACCGGGAATGGGCCATCCCAGAGCCGAGCCTGATCGAGCACGTCGGCGATCAGCTGCGCGTGACCAGCCCAGGCGGATTTTTCGGAGGCGTCACACCGTCGAACATCATCAACCACCCCTCGGAGTCGCGGAACGCGGCGCTGACGACACTTCTTGCCGACCTCCGCATCGCCGAGCGCGAGGGCATCGGTGTCGACCGCATGGTCGCCGACATGATTCGCCTCGGATACCCGCTCCCCGACATCCGCGAGACGCCATCGCCGAACGTCGTCCTGACACTGGTCGCCGATGACGTCGACATCGGTTGGATGTCCTGGCTCGCGCGGTTCGACGACGGGAGCGCGCAGACCGACCTCCGATGGCTCATGGCACTCCATCTGCTCACCCGGCGCGGATGGTTCGACACGACGTCGCTCGCACAGTATCTCCAGGTGTCAGAGCCCGAGAGTGACGCCGTGATAGGTCAGCTCGCCTCGGCCACCGTCAGCGCGAAGCCAGTCGTGCAGAAGGTGGACGGCGTGCCAGAGTCAGCCGCACCTGCGTGGGCATTGACCCACGCCGCTCGGGCGACGCTCGACTCCGAGAGCGCGGACGACGAGCGGCGCAGCAAGCCACCCTCACGCGCCACGATCGCAACGACCTACGCACGGGCGCGGGGCCGTATCAGCTCGACCGAACTCGGGTCGCTCGTCGGCGCGGCACCGAGCAACGTCGGCCAGGTGCTCCGCAGCCTGGAGGCCGAGGGCGTCCTCGAACCTTCTCGCCCCAACCGCCGGGGCGCAGGGTTCTACTACCGGCCGACGTCGACGCACCCGTAGMAQGYPRAMTIIFGRGPVAGAVSEALEALEAGQPVAERREIDLKEEAGRRGPGGEIRPGASQNERAAQALAGECACMANTPGGGALIVGVADDGELIGTALDPEWLRARIYELTHRLLTVDARAVTVRGERLLVLMMVEAIEPVRWKGKITWRVADRCVEMDPSSWHAHRMTSMRVDWSAQASDLPAEAARADAIEIARDFLRDSLDTSANELARASTPDLLRRLNAVTGSGHLTNAAALLFVGREFPGLDYIRRSTAGGDSVERVRRSGQPLIRELSDVFTVARAHNPTIHMRSGLVIGQERRIPDRTLREAIVNAVAHREWAIPEPSLIEHVGDQLRVTSPGGFFGGVTPSNIINHPSESRNAALTTLLADLRIAEREGIGVDRMVADMIRLGYPLPDIRETPSPNVVLTLVADDVDIGWMSWLARFDDGSAQTDLRWLMALHLLTRRGWFDTTSLAQYLQVSEPESDAVIGQLASATVSAKPVVQKVDGVPESAAPAWALTHAARATLDSESADDERRSKPPSRATIATTYARARGRISSTELGSLVGAAPSNVGQVLRSLEAEGVLEPSRPNRRGAGFYYRPTSTHPNANANANANA
AK018_01158639hypothetical proteinGTGCGCCTCAACGCCCATGCGCCCCTGTGGCGCCTGATCGACGCCCTCGCCGCCGCCGGCTGGGGCGACCTGCGCGACGCCCCGCAGAGCGTGCGCAGCTACCTCCTCGCGCTGGCCCGCCTCGCCGACGCGCGCTCGGCCGTCGTCGAGACCACCGACGCCCAGGCCGCCGAACGCGCCGGGGTCTCCGTGCGCACGGTGATGCGAGCACGCGTCTGGCTGCAGAACCGCGGCGTCGTCGTGATGCTGCGTCGCGGTGCCCGGCAGGGGCTGCGCGGGGTGCCGTCCCTGCTGCGGGTCACCAAGCGGGCCCTGGTCGCGCTGCTGCCCGCCGCGCGCCGCGCCAAGGACGCCCGGGCCCGACGGCGCTCCGCCCGGCCGGGTGGAGCGCCCACGCTGCGCGTTCCCAACCTGACACCGTGGCACCCCTTCCCCTCCTGGCGGAGGAAGGCGGCGACGCCCGCCGCGCCGCCGTCGTCCGGCGCCGCGCGGGAACGACGGCGGCCGTCGCCGGTCCAGGAAAGCCTGCGTGCCGAAGTTGCGGCGGCCTCGGCCGACCCGCCGCGCGCCGAGACGATCGCGGCCGCCCGGGCGGCGGTGCGCTCGGTGTCGGTGGGTGCCGGGAGGGTGAGCGGGTGAMRLNAHAPLWRLIDALAAAGWGDLRDAPQSVRSYLLALARLADARSAVVETTDAQAAERAGVSVRTVMRARVWLQNRGVVVMLRRGARQGLRGVPSLLRVTKRALVALLPAARRAKDARARRRSARPGGAPTLRVPNLTPWHPFPSWRRKAATPAAPPSSGAARERRRPSPVQESLRAEVAAASADPPRAETIAAARAAVRSVSVGAGRVSGNANANANANA
AK018_01159960yhcG_1COG4804Putative nuclease YhcGGTGACCGGAACTGAGATGGACAACGACCCACCGGGATACGTGGACCTGCTCGCCGACCTCAAGGCGCGGGTGCGCGGGACACGTTTTCGAGCGGCGCGCGCCGCCAACACGGAGGTCCTGAGGCTGCACTGGTCGATCGGTCGCGACATCCTGCAGCGTCAGCGGGAATCCGGGTGGGGGAGCAAGGTCGTCGATCGCCTGGCCACCGACCTCAAGCGCGAGTTCCCCGAGCAGCGCGGCTGGTCACGCCGCAACCTGCTCTACATGCGCAAGGCCGCAGAGGTGTGGCCGACCGAGACCGAATTCGTGCACCACGTTGGTGCACGATTGCCCTGGCGACATGTGACCGTGCTGCTGGACCGCCTCGCCACACGTGAGGAGCGCGACTGGTATGCCGAGAGAGCGGGCGCCGAGGGATGGTCCCGCGCCGTCCTCGAGCACCAGATCGCGATGGGCCTGCGCGGCGCCCTCGGAGCAGCGCCGTCCAACTTCGCGGGCGCCCTCGACGGGGCGGACTCGGAGCTCGCCCAGCAGCTCGTCAAGGACCCGTACGTGTTCGAGCACCTCGCCTACGCCTCGTCACAGCGGGAGCGGGACATCGAACAGGCCCTGATGGACCGTCTGCAGGACACGCTGCTGGAGTTCGGGCGCCACATGACCCTCGTCGGCAGGCAGTACCGGCTGTTGCTGGACGACGACGCCGAGTTCGTCATGGACCTCGTACTGTTCCACACCCGGCAGCTCCGCTACGGCCAGATCCACGCGCCGACTGTCGGCATCCTGTTGTGCACCGGCAAGAGCGGTGCCACCGTCCAGTACTCGCTGGCGTCCACGGCGGTGCCGGTCGCCGTCGCCGACTACCGCGGGTTGCCGGCCGATGCCCGGGAGGCGCTGCCCAGCGAGGTCGAGCTCGAGGCGATCGTCGATGCCGAGCTGCGGGAGAGACATCACGACACGTAGMTGTEMDNDPPGYVDLLADLKARVRGTRFRAARAANTEVLRLHWSIGRDILQRQRESGWGSKVVDRLATDLKREFPEQRGWSRRNLLYMRKAAEVWPTETEFVHHVGARLPWRHVTVLLDRLATREERDWYAERAGAEGWSRAVLEHQIAMGLRGALGAAPSNFAGALDGADSELAQQLVKDPYVFEHLAYASSQRERDIEQALMDRLQDTLLEFGRHMTLVGRQYRLLLDDDAEFVMDLVLFHTRQLRYGQIHAPTVGILLCTGKSGATVQYSLASTAVPVAVADYRGLPADAREALPSEVELEAIVDAELRERHHDTNANANANANA
AK018_011601317agaA_1Alpha-galactosidase AATGCGCGGACCGATCGCCCGTCCCCCGATGGGCTGGAACTCCTGGGACTGCTACGGCACCACCGTCACCGAGGCGGAGGTGCTGGCCAACGCGCGGTTCCTCGCCGAGCACCTGCTGCCGTTCGGGTGGGACACGGTGGTCATCGACATCGACTGGTCCGACCCGACGGCCCGCTCGCACGGGTACAACGCGGACGCGCCGCTGGCGATGGACGACCACGGCCGCCTGCTGCCCGACCCGGGACGGTTCCCCAGCGCTGCGGGCGGCCGCGGGTTCGCGCCGCTGGCCGAGCAGGTCCACGGGCTGGGTCTACGGTTCGGCATCCACACGATGCGTGGCATTCCGCGCCGGGCGGTGGACCGCGCGACGCCGGTCCTGGGCAGCGACGCCACCGCGGCCGACGTCGCGGACCCGGGCAACGCCTGCGAGTGGAACCCGGACATGGTCGGCCTGGACCACACCCACCCGGGCGCGCAGGCCTACTACGACTCCACGCTCGCGCTGTACGCGTCGTGGGGCGTCGACTTCCTCAAGACCGACGACATGCTCTGGCCCTACCAGGCGGCGGACATCGAGGCCTACGCCCGGGCGATCGCACGCACCGGCCGGCCGATCGAGCTCAGCCTCTCCCCCGGCCGCGACCTGTCGACGACGCACGCCGCCCACCTGCGCGAGCACGCCACGATGTGGCGCGTCAGCGACGACCTGTGGGACCGGTGGGAGGACGTCGAGGCGAACTTCGCGCGGCTGGCCCGGTGGGCGCCGCTGTCGGGCGACGGCGGGTGGGCGGATGCCGACATGCTGCCGCTGGGGCGCATCGGCCTGCGCGCCGAACGCGGCGAGCCGCGCGACGACGGTCTGACGCCGGCCGAGCGGGGCAGCCTGCTGACGCTGTGGGTGATCGCGCGCTCACCGCTGATGATCGGCGGCGACCTGCCGTCGTCGGACCCGGCCACCGTGGCCCTGTTCCGCAACCCCGACGTGCTGGCCGTGCACCGGGACGGTCGGAACCAGCGCGAGGTGTTCCGCGAGGGTCCGCTGGTGATGTGGGCTGCCGACGGGCCGGACGGCACGGCGTACGCGGCGCTGTTCAACCTGAGCGACGAGCCGCTGTCGCTGGCCCAGGACGTGGCGCGGATCGGGTTCGCCGCCCGCGGCGGCCCGGAGGTGCGCGAGCTGTGGACCGGGGCGACCGTGCCGCGCCAGGAGGTCACGGTGCAGAGCGACGCCGCCCGTGGCGTGGCGCCGGGCAGCGCGGCGCTGGACCTGGAGCTGGCCCCGCACGGGGCGGTGCTGCTCGCCGGGCCGGCGGCGTGAMRGPIARPPMGWNSWDCYGTTVTEAEVLANARFLAEHLLPFGWDTVVIDIDWSDPTARSHGYNADAPLAMDDHGRLLPDPGRFPSAAGGRGFAPLAEQVHGLGLRFGIHTMRGIPRRAVDRATPVLGSDATAADVADPGNACEWNPDMVGLDHTHPGAQAYYDSTLALYASWGVDFLKTDDMLWPYQAADIEAYARAIARTGRPIELSLSPGRDLSTTHAAHLREHATMWRVSDDLWDRWEDVEANFARLARWAPLSGDGGWADADMLPLGRIGLRAERGEPRDDGLTPAERGSLLTLWVIARSPLMIGGDLPSSDPATVALFRNPDVLAVHRDGRNQREVFREGPLVMWAADGPDGTAYAALFNLSDEPLSLAQDVARIGFAARGGPEVRELWTGATVPRQEVTVQSDAARGVAPGSAALDLELAPHGAVLLAGPAAPGPT0018835_2685DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
AK018_011611290hypothetical proteinATGTACCGACCGCGCGTCGTCGACGAGGAGATCTCCGACGGCCTGCAGACCGCCGGAGCCGTGCTCGTCGAGGGGCCGAAGGCCTGCGGCAAGACGTCGTCGGCCCACCAGGTCTCCGGAACGCGCGTCCATCTCGACGACGTGGCCGATCCGCGGATCGCCGCCGCCCTCGAGGTGGATCCGTCGCTGCTGCTGCGGGGCGAGGCCCCCGTCCTCCTCGACGAGTGGCAGCTGGCGCCCGACCTGTGGAACCTGGTCCGCCGTGAGGTCGACCAGCGGGAGCACCCGGGGCAGTTCATCCTCACCGGGTCCTCGACGCCCGACGACGACGTCCGACGCCACAGCGGCGCCGGACGCTTCACGATCATCGAGATGCGGCCGATGGCGCTCGCCGAGAGTGGCCACTCCACCGGCGAGGTGTCGCTGGCGAGCCTGTTCGACGGTACGGATGCCGACGGTTTCGACACCACCTGGAACCCGACCGACGCCGTCCACCAGATTGCCGAGCGGGTCGTGGTCGGCGGATGGCCCACCAACGTCGACAAGCCTGTTCGTGCCGCAGCACGCGCGAATCGCGACTACCTGGACATCATCCGCCACTACGACATCTCGCAGGTGTCGCACGCCCGCCGTGACCCGGACAAGGCATGGCGTGTCATGCGATCCCTCGCTCGGAACGTGGCCACACTGGCCGGGGACGCCACGATCGCCAGAGACGTCCGCGAAGGTGACCCGGACTCTGGTGCCGACGCGACCAACCGAGCGACCGCCACCGAGCACCTCGACGCCATGCGGCGGCTCAGGATCGTCGAGGACCAGCCCGCATGGTCCCCGCACCTCCGGTCGCGCACTCGCGTCGCCTCGCGGCAGAAGCGGCACTTCGTCGACCCCGCCCTGGCAGCAGCCGCCCTGGGTATCCATGCCGGGCCGCTGACGGAAGACCTGCAGACCCTGGGGTTCCTCTTCGAGTCTCTGGTCACTCGGGACCTGCGTGTCTACGCACAGCGGCTCGGTGGACGCGTGCTGCACTATCGCGACGAGCGCGGCCTCGAGGCCGACGTCGTCATCGAGCTCCCGGACGGTCGGTGGGCGGCCCTCGAGGTCAAGCTCGGGTCCCGCCCGGAGACGATCGACCGAGCCGCTCACGGCCTCACGACGTTGCGCAGCAAGGTCGACACCTCCCGCAGCGGTGAGCCGGCCTTCGTCGCCGTCATCACGAACGGCGGCATCGCCTACCGTCGCCGCGAGGACGGGGTGCACGTGATCCCCGTCAAGATGCTCGGCCCCTGAMYRPRVVDEEISDGLQTAGAVLVEGPKACGKTSSAHQVSGTRVHLDDVADPRIAAALEVDPSLLLRGEAPVLLDEWQLAPDLWNLVRREVDQREHPGQFILTGSSTPDDDVRRHSGAGRFTIIEMRPMALAESGHSTGEVSLASLFDGTDADGFDTTWNPTDAVHQIAERVVVGGWPTNVDKPVRAAARANRDYLDIIRHYDISQVSHARRDPDKAWRVMRSLARNVATLAGDATIARDVREGDPDSGADATNRATATEHLDAMRRLRIVEDQPAWSPHLRSRTRVASRQKRHFVDPALAAAALGIHAGPLTEDLQTLGFLFESLVTRDLRVYAQRLGGRVLHYRDERGLEADVVIELPDGRWAALEVKLGSRPETIDRAAHGLTTLRSKVDTSRSGEPAFVAVITNGGIAYRRREDGVHVIPVKMLGPNANANANANA
AK018_011621599hypothetical proteinGTGACGCGAGACACGCCGCCGGCCGAGCGTGCCTACCGCCGCACCCTCGCCCTGCTGACCCTCGTCGTCGCGCTGTGGTCCGTGGCGTGGGCGGTGCTCACCCCCGGGTTCCGGTCGCCCGACGAGCAGAACCACCTCAACAGCGTCGTCCGGATCGCCTACGGCGGCGGATGGCCGGCCCCCGGTGACGCCCACTTCGCGCCCGTCATCGACCAGGCGGTCGCCGAGGCCGCCTACCCGGCCGACCTGCCCGGCCGCTGGCGCCACCGCCCCGACGAGACGCAGTTCGTCGACCTCACGCCCGTCCCCGCCGCCGAGCGCATCGCCATCGGCCCCGACAACGCGCTGCCCGCGCCGGGCACCAGCGCCACCGTCGACCAGATGACCCAGCACCCGCCCGCCTACTACGCGCTCGGCGCCGCCGTCCTGCACGCCACCGGCACCGCCGACGCACGGTGGGACGTCGCCCTGCTGACCCTGCGACTGCTCGACGTCGCCCTGTTCGCCGCCACGGTGCCGCTCGCCGCCGCGACCACCCGCCGGCTGACCGGCTCGCGCGCCGCCGCCCTCGTCGCCGCCCCGTTCCCGCTGCTCATCCCGCAGGTCGGGCACATCATGGGTGCCGCCAACAACGACGCCCTAGTGGTGCTGACCGGCGCCGGCGTCACGTACCTGGCCGCCCGGGTGGTCACCGGCGACCTGCGCTGGCGGGTGGTGGCCGCCGTCGGCCTCGTGCTCGGTGTGGGCCTGCTGACCAAGGTCATGCTCGCGTTCGCGATCCCCACCGTGGTCGCCGCCTACCTGCTCGCTCCTGGGCCGCGCTCGAGACCCCGCGCCGGTCCGACGGCGGTCTCCCGGATCTGGCGCGGGTTCGTCGCCCTGGCGATCGCGTTCGTCGTCGGGGGCTGGTGGTGGGCCCGCAACTGGATCGTCGACGGCGCCGTGCAGCCCGTCGGGCTGCCGCGCGACTACTCCGGCATGACGCAGGTGCCGGCCGACCAGGTGCTCTCCGAGGCGGTCGGGCGCACCGCGCAGGCGTTCTTCGGCAACCTGTCCTGGCTGGAGATCCGCCTGCCCGGCACGTTCGTCGTGGTCGGCTCGACGATCCTCATCGCCGCCGTCCTGACCGCCGTCGTGGTGCCCGGCGCCCGACGCGGGTCCCTCGCCCTCGCCCTGCTGCCCGTCGGTCTCGCCGCCGCCGTGGTCGTCAACGCGGCTAGGAGCTGGACCGACACCGGTGTCCTCGTCGCCCTGCAGGGCCGCTACGTCTTCGGCGGGCTGACGGCGCTCGCGGCCCTGCTGGCGATCGCGCTGTGGCACGCGTGCCTCCGGCGCGAGCGGTGGGCCGCCGTCGTCGTGCCGGTGTTCACCACCCTCGCCGTGGCGGCCAGCGTCGCCGGACTCGTGTGGGCGTTCGGCGCCATGTACCACGGGCCGGGGGAGTCGGCGGCGCAGGCGTGGGAACGCTGGGCCGCGTGGAGCCCGCTGAGCGGCACCGCCATCGCCGCGGTGCTGGTGGTCGTGGCGCTCGGGTTCGTCGCCGGGCTGGTCGCCGCCTGGCGGTGGCCCCACCGGTCCCGGATCGCGGCGCGTGGCTAGMTRDTPPAERAYRRTLALLTLVVALWSVAWAVLTPGFRSPDEQNHLNSVVRIAYGGGWPAPGDAHFAPVIDQAVAEAAYPADLPGRWRHRPDETQFVDLTPVPAAERIAIGPDNALPAPGTSATVDQMTQHPPAYYALGAAVLHATGTADARWDVALLTLRLLDVALFAATVPLAAATTRRLTGSRAAALVAAPFPLLIPQVGHIMGAANNDALVVLTGAGVTYLAARVVTGDLRWRVVAAVGLVLGVGLLTKVMLAFAIPTVVAAYLLAPGPRSRPRAGPTAVSRIWRGFVALAIAFVVGGWWWARNWIVDGAVQPVGLPRDYSGMTQVPADQVLSEAVGRTAQAFFGNLSWLEIRLPGTFVVVGSTILIAAVLTAVVVPGARRGSLALALLPVGLAAAVVVNAARSWTDTGVLVALQGRYVFGGLTALAALLAIALWHACLRRERWAAVVVPVFTTLAVAASVAGLVWAFGAMYHGPGESAAQAWERWAAWSPLSGTAIAAVLVVVALGFVAGLVAAWRWPHRSRIAARGNANANANANA
AK018_01163948hypothetical proteinATGAAGCTCGTCGTGCAGATCCCGTGCCTCAACGAGGCCGAGACCCTTCCGCTCGTCCTGGCCACCCTGCCGCGTCAGGTCGACGGGTTCGACGAGGTCGAGTGGCTCGTCATCGACGACGGCTCCACCGACGGCACCGCCGACGTCGCCCGCAACCTCGGCGTCGACCACGTGCTGCGCCACACCGCCACCATGGGGCTGGCGCGCTCCTTCCGCGACGGCGTCGACCTCGCCCTCGCGCTGGGAGCGGACGTGGTGGTCAACACCGACGGCGACAACCAGTACCCCTCCGAGCGGGTCGGGGACCTGTGCGCACCCGTGCTCGCCGGCGAGGCCGACGTCGTCGTCGCCGACCGGCAGACCGCCACCATCGAGCACTTCAGCCCGTTCAAGAAGCGGATGCAGCGCCTCGGGTCCCGCGTCGTCAGCGCCGCCGCGAACACGCCCCTGCCCGACGCCGCCAGCGGGTTCCGCGCCTACTCCCGGGCCGCGCTGCTGCGCCTCAACGTCATCACGCAGTTCAGCTACACCATGGAGACGATCATCCAGGCGGGCAACAAGCACCTGCGGATCGTCTCCGTGCCCGTGGTCACCAACCCCAAGACCCGCGAGTCGCGGCTGTTCCGCAACATCTGGCAGCACATGGGTCGCTCGGGCCGGGCGATCGCGCGCTCGTGGATCATGTTCCGCCCGCACCTGGTGTTCCTGTCCCTGGCGGTGCTGTTCTTCCTCGCCTCGGCGGTGCCGGCCGTGCGGTTCCTCGTGTTCTTCGTCCAGGGCGAGGGCGGCGGGCACGTGCAGTCCCTCATCTTCGCCGCCGCGATGCTCGTGGGGTCGCTGCTGTGCCTGGCGCTGCTGGTCATCGCCGACCTGCAGCGCACCAACCGGACGTTGATCGAGGACACCCTCGAGCGGGTCAAGCACCTGCAGTACGGGCGGGACGAGTGAMKLVVQIPCLNEAETLPLVLATLPRQVDGFDEVEWLVIDDGSTDGTADVARNLGVDHVLRHTATMGLARSFRDGVDLALALGADVVVNTDGDNQYPSERVGDLCAPVLAGEADVVVADRQTATIEHFSPFKKRMQRLGSRVVSAAANTPLPDAASGFRAYSRAALLRLNVITQFSYTMETIIQAGNKHLRIVSVPVVTNPKTRESRLFRNIWQHMGRSGRAIARSWIMFRPHLVFLSLAVLFFLASAVPAVRFLVFFVQGEGGGHVQSLIFAAAMLVGSLLCLALLVIADLQRTNRTLIEDTLERVKHLQYGRDENANANANANA
AK018_011641182hypothetical proteinGTGATCGTCGCGTTCGGCACCTACGACGCCGCCCGGCACCCGCGCGTCGGCGTCCTGGTCGCCGGGCTGCGCGACCACGGCTACCGCGTCGACGAGCTGAACCGGCCCCTCGGGTTCTCCACCGCCGAGCGGGTGCGGATGCTGCGTCAGCCCTGGCGGCTGCCGCTGCTGGTGCTGCGCCTGCTGACCTGCTGGCTCGCCCTGGTGCGCGACGACGTCGGACACCGCCGCGCGCACGGCGCCCCGGACGCGGTGCTGGTCGGCTACCTCGGCCACTTCGACGTCGTCCTGGCCCGGCTGCTGCACCCGCGCACGCCCGTGGTGCTCGACCACCTCGTCTTCGCCGCCGACACCGCCACCGACCGCGGCGCCAGCGGGCTGCGCGTCCGGCTGCTGCACGGGCTGGACCGCCTCGCGCTGGCGTGCGCCGACGTCGTCGTCCTCGACACCGCCGAGCACCGGGCGCTGCTGCCGCCCTCCCCCCGTCGTCGAGCGTCTCTGTTCCTCAGGAATCGGCCCCGGAATCCTGAGGAACAGAGACGCTCGACCGGCCAGGGGGCCGTGGTGGTGCCCGTCGGCGCACCGGACGCCTGGTTCTCCGGTCCTCGGCGGGACGGCAGCCCGGACCCGCTGCGGGTCGTGTTCTTCGGCCTCTTCACCCCGCTGCAGGGAGCCGTCACGATCGCCGAGGCGCTGGCCGACGCGCTGCCCCGGGCCGCCGCGACGGGCCGGCCGATCGAGGCGACCCTGGCCGGTCATGGTCAGGACCACGCCGCCGCCCGGGCCGCGCTCGCCGGGACACCCGGCGTCACCTGGCTCGACTGGGTCGAACCCGCCGAGCTGCCCGCGCTCGTCGCCGACCACGACGTCTGCCTCGGCATCCACGGCACCACCCCCAAGGCGCTGCGCGTGGTCCCCACCAAGGTGTTCCAGGGACTGGCGGCCGGCTGCGTCGTCGTCACCTCCGACACGCCGCCGCAGCGCCGACTCCTCGGCGACCACCTCGAGCTCGTCCCTCCCGGGGGCGCCGCGGCGCTCGCCGACCGGCTCGTGGAGCTCACCGATCCGGCCGAGCTGGCCGCCGCCCGGAGGCGTGCGCACGCCGGACGCGACGCCGTCCGGCCCGCCGCCGTCGTCGGCCCGCTCGTGGACGCCCTCGCCGCCCGCGGGGTGCGGCCGTGAMIVAFGTYDAARHPRVGVLVAGLRDHGYRVDELNRPLGFSTAERVRMLRQPWRLPLLVLRLLTCWLALVRDDVGHRRAHGAPDAVLVGYLGHFDVVLARLLHPRTPVVLDHLVFAADTATDRGASGLRVRLLHGLDRLALACADVVVLDTAEHRALLPPSPRRRASLFLRNRPRNPEEQRRSTGQGAVVVPVGAPDAWFSGPRRDGSPDPLRVVFFGLFTPLQGAVTIAEALADALPRAAATGRPIEATLAGHGQDHAAARAALAGTPGVTWLDWVEPAELPALVADHDVCLGIHGTTPKALRVVPTKVFQGLAAGCVVVTSDTPPQRRLLGDHLELVPPGGAAALADRLVELTDPAELAAARRRAHAGRDAVRPAAVVGPLVDALAARGVRPNANANANANA
AK018_011651848COQ3_1Ubiquinone biosynthesis O-methyltransferase, mitochondrialGTGACCGGCACCCGGAGCGATCCCGCCACCACCCGTCCCGGTGCCACGGCCCGCCTGCTCGCCGTGCTGCGCTCGCCCTGGGTGCGCTGGGGGTTCCTCGTCCTGGCCCTCGCGCTGGCGGTCTACGCCGTCGTCGCCGTGCGCGAGGACCTCGCCGACGCGGCCGAGGCGCTGCCCGCCGGCCGTCTCGCCCTCGCCGCCGTCCTGGCGGTGCTGTTCGTCGGTTGCACCTGGCTGTCCTGGCGGGCCGTGCTGACCGACCTCGGCTCCCGGCTCGGGCCGCGCGCCGCCGTCGCCGTGTTCGGCATCAGTCAGCTCGGCAAGTACGTGCCCGGCGGCGTGTGGAACGTGGTGGCCGCCGCCGAGGTCGGGGCCGACCACGGCGTCCCGCGCCGCCGCACCATGACCGCCACCGCCGTCGCCACCGGGGTCGGCGTCGTCTCCGGGGCGGTCGTCGGGCTCGTGGCGCTGCCGTTCGTCGCGCTCGACTCGCTGCAGAGCTGGAGCTGGGTGCTCTGGCTGCTGCCCGCCGTCGTCGTCCTGCTGCTGCCGCCCGTGCTCAACCGGCTGCTCGCCGCCGCGCTGCGGTGGGCGCGGCGACCCGCCCTCGAGCACCCGCTGTCCTGGCGCGGCCTCGGTGCGGCCGCCGGGTGGGCCGTCGCCGGCTGGCTGCTCGCCGGCGTGCAGGTGTGGCTGCTCGCCACCGGTCTCGGGATGGCGAGCGACGTGCGCACGCTGGCGCTCGCCGTCGGCGGGTACGCGCTGGCCTGGATGGTCGGGTTCCTCGTCGTCGTGGTGCCGGCCGGCGCCGGGGCGCGCGAGCTCGTGCTGCTCGCCGTGCTGACCGGGGCGCTGCCGCACGCCGAGGTGCTGCTCGTCGTGCTGGTCAGCAGGGTCCTCATCACCCTCGCCGACCTGCTGTTCGCGGGGATCGGCGCGCTGTGCCGCCGGCCCGCCGGGGTGCGGTTCGCCCCGCTGGCCCCACGGGCCTGGCTGCGCTGGGACGTCGTGCACCGGAGGCTGCCGACCCGGCGCTCGGCGGTGCTGGAGATCGGCTGCGGCCAGGGTGGTTTCGGGATGCGCATCGCCGCCCGGCACGACTACACCGCCGTCGAGCTCGACGCCGGCTCGTGGCAGGTGGCGGCCGCGCGCGTCGGGGCCGTCGACCCCGCGGCCCGCGTGCTGCACGGTGACCTGTCGGTCCTGCCGGCGCAGGAGCGGTTCGACGTCGTGTGCGCCTTCGAGGTCGTCGAGCACATCGAGGACGACGCCGCGGCGCTGGTCGAGTGGGCCGCCCGCGTCCGCCCCGGGGGGACACTGCTGCTGTCCACCCCGGCCGAACCCGACCGGTACGGGCCGTGGGACGCCATGGCCGGGCACTACCGCCGCTACGAGCCGTCCCACCTCGCACGGCTGCTCGCGGACGCCGGGCTGACCGACGTCGTGGTGCGGCACTACGACGCCCCGCTCGGCTTCGTCCTGGAACCGATCCGCGACCGGGTCGCCCGGCGCCGGCCCGAGCACGCGGAGGTGTCCGCCGGCGGTGCGGCGCCTGCCGGTGCCGTGCCGTCGGCGGGTGCTGCGGCCTCGGCCGGCGCGCCGTCGTCGGACCCGGACCTGGCCGCCCGCACCGCCGACTCCGGCCGCCGCCTCCAGCCGCGCCGCCGCCTCACCGGTGTGCTGACGGCGGTCGGCACCTGGCCGTTCCGGCTGCTGCAGCGGGCCCTGCCGCACGCCGGGACCGGGCTCGTCGCCCTCGGGACGCGCCCGCAGACCGACGACCCGCCCGACGACCCGCCCGGCGGACGCCCCGCCGCGCACCCGGACACCCGTCCCCCGGAGGACTGAMTGTRSDPATTRPGATARLLAVLRSPWVRWGFLVLALALAVYAVVAVREDLADAAEALPAGRLALAAVLAVLFVGCTWLSWRAVLTDLGSRLGPRAAVAVFGISQLGKYVPGGVWNVVAAAEVGADHGVPRRRTMTATAVATGVGVVSGAVVGLVALPFVALDSLQSWSWVLWLLPAVVVLLLPPVLNRLLAAALRWARRPALEHPLSWRGLGAAAGWAVAGWLLAGVQVWLLATGLGMASDVRTLALAVGGYALAWMVGFLVVVVPAGAGARELVLLAVLTGALPHAEVLLVVLVSRVLITLADLLFAGIGALCRRPAGVRFAPLAPRAWLRWDVVHRRLPTRRSAVLEIGCGQGGFGMRIAARHDYTAVELDAGSWQVAAARVGAVDPAARVLHGDLSVLPAQERFDVVCAFEVVEHIEDDAAALVEWAARVRPGGTLLLSTPAEPDRYGPWDAMAGHYRRYEPSHLARLLADAGLTDVVVRHYDAPLGFVLEPIRDRVARRRPEHAEVSAGGAAPAGAVPSAGAAASAGAPSSDPDLAARTADSGRRLQPRRRLTGVLTAVGTWPFRLLQRALPHAGTGLVALGTRPQTDDPPDDPPGGRPAAHPDTRPPEDNANANANANA
AK018_01166744COQ3_2Ubiquinone biosynthesis O-methyltransferase, mitochondrialGTGAGCACGAGCATCTCGCCCCTGACCCTGTTCGGCGCCCTGCGCTGGGACGTCGTGCGGCGCCACCTGCCCGAGCCTGGTGCGCGCGTCCTCGAGATCGGGTGCGGGCAGGGCGCCGTCGCCGTCCGTCTGGCCGCCGCGGGCTACGACTACACCGGCGTGGAGCTCGACCGCGCCAGCGCCGAGGTCGCCGACGCCCGACTCGCCGCGGCCGGGCTGCCCGGCCGGGTCGTGCACGGGGCGGTGGAGTCCGCCGACCTCGACGGCGGGTTCGACGTGCTGTGCGCCTTCGAGGTGCTCGAGCACCTCGAGGACGACGCCGGGACGCTGGCCGGCTGGGTGCGGCTGCTGCGCCCGGGCGGGCTCGTGCTCGTCTCGACCCCCGCGTGGCAGGACCGGTTCGGGCCCATGGACACCGCCGTCGGCCACCACCGGCGCTACGACCCGCCGCACCTGCGCGAGCTCCTGCGCGGTGCCGGACTGGCCGACGTCGGCGGGCAGCTCTACGGGATGCCGCTCGCCTACGCCCTGGAGACCGTGCGCAACCGGGTCGCGCAGCGCCGGCTGACGGGTGACGGCACCACGACCGCGGAGCGGACGGCGCGCTCCGGGCGGCTGTTCCAGCCGTCCTCGGGTGCCACGGGCGCCGCGATCACGGCCGCCACCTGGCCGTTCCGCCTCGCCCAGCGGGCGTTCCCGAGGACGGGCCCGGCCCTGGTCGCCTGGGGGACCGTCCGGTCCTAGMSTSISPLTLFGALRWDVVRRHLPEPGARVLEIGCGQGAVAVRLAAAGYDYTGVELDRASAEVADARLAAAGLPGRVVHGAVESADLDGGFDVLCAFEVLEHLEDDAGTLAGWVRLLRPGGLVLVSTPAWQDRFGPMDTAVGHHRRYDPPHLRELLRGAGLADVGGQLYGMPLAYALETVRNRVAQRRLTGDGTTTAERTARSGRLFQPSSGATGAAITAATWPFRLAQRAFPRTGPALVAWGTVRSNANANANANA
AK018_01167999tagU_1Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUATGACTCCCCGACCGCGCCTGGCGCGTCTGACCGCCCTGGTGACCGCGGGGGTGCTCGCGCTGGCGGGCTGCACCGACCCGGCGTCGACGCCCGCGGCGGCACCCACGGCGACGGTCAGCGCGGTGCCGACCCCGGCGACCAAGCAGTCGGTGCCGGCACCGCCGACGGGCACGGACGACCCGCTGGGTGAGGGCGCGCAGAACGTGATGCTCATCGGCACGGACTCGCGGGACGAGTCCTCGCTGTCGGGCAACGCCGACACGATGATGCTGATGCACGTGCCGGCCGACCGGTCGGCGCTGTACCTGGTGTCGTTCACCCGGGACATGTGGGTGGACATCCCGGGGATCGGCGAGGGGAAGATGAACTCGGCGTTCGCCCGTGGCGGCACCCAGACGCTGATGGACACGGCGTCCGAGCTGCTCGGCGGCGGCATCGAGTTCGACTACGCGATGCAGACCAACTTCAACGGGTTCATCAACCTCACGCGGGCCCTGGAGGGGTTCGAGGTCGACAACAAGCACCACTCGACGGTCGAGGTGATCTCGACGGGGCGGGTCGTGGACTTCCCCGAGGGCCGGATCACGCTGGAGAACACCGACGGCCTCATCTACGTGCGCGAGCGCAAGCGGCTCCCGCTGGGCGACCTGGACCGCACGGAGCGGCAGCGCGCGGCCGTGATCGGGATGATGGACCGCATCGCCGAGCAGGCGGACGACCCGGCGTTCCTGGCCGAGCTGGTGGCCCTGATGTTCAACAACGTCAAGGTGACCGGAGACCTGGGCGTCGAGGACTTCGTCGACCTCGTGCCGCTGGCCGGGGAGCTGACCCGGGACGACGTCGTGAGCCTCATGGTGCCGATCACCGGGTTCGGGACGGTGAACGGCGCGTCGGTGAACCTCGTGGACGAGGCGCAGACGGCGGCGCTGGGCGAGGCGATCCGCACCGACACGATGGACGACTACGTCGCGGAGCACGGCACCGACTACGCGCCGTGAMTPRPRLARLTALVTAGVLALAGCTDPASTPAAAPTATVSAVPTPATKQSVPAPPTGTDDPLGEGAQNVMLIGTDSRDESSLSGNADTMMLMHVPADRSALYLVSFTRDMWVDIPGIGEGKMNSAFARGGTQTLMDTASELLGGGIEFDYAMQTNFNGFINLTRALEGFEVDNKHHSTVEVISTGRVVDFPEGRITLENTDGLIYVRERKRLPLGDLDRTERQRAAVIGMMDRIAEQADDPAFLAELVALMFNNVKVTGDLGVEDFVDLVPLAGELTRDDVVSLMVPITGFGTVNGASVNLVDEAQTAALGEAIRTDTMDDYVAEHGTDYAPPGPT0023440_2546DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023440-tagT|tagU|tagV-K01005NANA
AK018_011681638mshA_1D-inositol-3-phosphate glycosyltransferaseGTGAGCCGCGCGGCCGAGCTCGCGCGCAACCTGCGGTTCACGGCCTCCTTCGCCTTCGGCGCCCTGGTGACCGACCCGGCCTGGCTGGTGCTGCAGGCGAGCCGCCGGCTGCCCGCCCGCGTCAGCGCCGTCGTCGTCCCCCGGGTGGAGAAGGTCGTGGGCGACGGCACCTCCGGTCCGGCCGGCCGGCTGCGCGCGGCGTGGGCGGCCGGCGACGTCGCCGCGCTCCGGGACGCCGAGCCCCGCGGGAGCACCGAACGTCGGGTGCGGCGGTCGCTGCTCGGGCAGGTCGCCGCGCTCGACCTCGAGGAGGACGCCGAGCACCCGGCCGCCGGGGCCACCGCGACGGCCGCGTCCGGGTCGCCGGAGCGGCCCGTCGCCGTGCACCACCACCTGACGAACTCGCTGCCGCACACGCAGAGCGGCTACACGCTGCGCACGCACGCGATCCTCACCACCCAGCGCGCGGCCGGCCTCGACGTCACCGCGACCACCCGCGCCGGCTACCCGCTGACGATCGGCGCCCTGGGAGCCCGCGCGACCGACGTCGTCGACGGCGTGCCCTACACCCGGCTGGTCCCGCGCTCGCTGCCGTCCGACCCGGCGCGACGCACCGCGGACGCGACCGACCTGCTGGTCGACGCCGTGCGGACCTCGGACCCCGACGTCGTGCACGCCACGACGCCGTGGACCACCGGGGCGGCGGCACGCGCGGCCGCCCGCCGGCTCGGCCTGCCGTGGGTGTACGAGGTGCGGGGTCTGCCGGAGGAGACCTGGGCGGCGTCCCACCCGACGACGGAGGCGCGCGAGGCGGCGACGGCGTCCGAGCGCTACGCGCTGATCCGGGCCAAGGAGACCGAGCTGGCCCGCACCGCGGACCACGTCGTCACGCTCAGCGCCACGATGCGCGACGAGCTGGCCGCCCGCGGCGTCCCGGCCGACCGGATCACCGTGGTGCCGAACGCCGTCGACGCGGCGCTGCTCGACGCGGACACGCCCGACCCGGCCGCCGCCCGCGAGCGCCGCGGGCTGTCAGGACCGCGGTACCTGCTGGGCACGGTGACCTCGGTGGTGGGCTACGAGGGCCTCGACACGATCCTGCGCACGGTGGCCCGGCTGCGGGCCGGCGGTCTCGACGTCGGCGCCCTCGTGGTCGGCGACGGCGTGGCCCGGCCGGGCCTGCTGCGGCTGGCCGCGGAGCTGGGGATCGCCGAGCACACCACCATGCCGGGCCGCGTGCCGCGGGACGTCGCGCACACCTACCTGGCGGCGCTGGACGCCGTGCTGGTGCCGCGGCGGCCGGACCGCGTCACCCGGCTGGTCACCCCGCTCAAGCCGGTGGAGGCGATGGCCCTGGGCCGCCCGGTGGTGGCGAGCGACCTGCCCGCGCTGCGGGAGGTCTGCTCCCCGGTGGACGGCGGCGACCCGGCGGCCCTGCTGGTCGCGCCCGACGACGAGGCGGCGTGGGCGGACGCCGTGGAGCACCTGCTGTCCGACGACGCCGCCCGGGCGACCCAGGTCGCGGCCGGTCGCGCGGTGGCCGCCCAGCGCACCTGGACCCGGCTCGTGGCACGGTACGACCTGGCCTACGCGGCGGCGACGGGTGCCGCGACCTCGACACGGAAGGATCCCCGATGAMSRAAELARNLRFTASFAFGALVTDPAWLVLQASRRLPARVSAVVVPRVEKVVGDGTSGPAGRLRAAWAAGDVAALRDAEPRGSTERRVRRSLLGQVAALDLEEDAEHPAAGATATAASGSPERPVAVHHHLTNSLPHTQSGYTLRTHAILTTQRAAGLDVTATTRAGYPLTIGALGARATDVVDGVPYTRLVPRSLPSDPARRTADATDLLVDAVRTSDPDVVHATTPWTTGAAARAAARRLGLPWVYEVRGLPEETWAASHPTTEAREAATASERYALIRAKETELARTADHVVTLSATMRDELAARGVPADRITVVPNAVDAALLDADTPDPAAARERRGLSGPRYLLGTVTSVVGYEGLDTILRTVARLRAGGLDVGALVVGDGVARPGLLRLAAELGIAEHTTMPGRVPRDVAHTYLAALDAVLVPRRPDRVTRLVTPLKPVEAMALGRPVVASDLPALREVCSPVDGGDPAALLVAPDDEAAWADAVEHLLSDDAARATQVAAGRAVAAQRTWTRLVARYDLAYAAATGAATSTRKDPRPGPT0024580_41DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_GLYCOSYLTRANSFERASE_ACTIVITY,PGPT0024580-mshA-K15521NANA
AK018_011691521hypothetical proteinATGCGCTCCACGACGCGACGGTCGGCGCGGCGGCATCTGCTGCTCGTCACCCATCACTACGCGCCGGAGCACGGAGCGCCGCAGCGCCGCTGGGGCTCCCTGGCCCCGCGCCTCATCGGGGCCGGTGTCGACGTGTCGGTGCTGACGCCACCCCCGCACTACCCTAGCGGCCGTCTCTTCGCCGACCTGCCCGAGTACGCACCCGGCCGGATCAGCCGGGGCCGGCACGGCGAGCGCGTGGTGCGCACCCGCTTCCGCGAGCACACGAGCCGTCTGCGGTCCCGCTCGGTGGACCAGGCCGTCGCGGCGTGGAGCACGATCGTGCTCGGCCTGCGCATCTTCCGCCACCCGGACCTGCGCCCGGACGTCGTGGTCGGCACGGTGCCGGGCATCCCGTCGATGTTCGCGGCCTGGATCGTCGCGCGCGGCCTGCGGGCGAAGTTCGTCGTCGAGATGCGCGACGCCTGGCCGGACCTCATCGAGCCCGCCGGCCTGTTCCGCTCACGCCGCTCGCTCAAGGCCCGCGTGCTGGGGACGCTCCGCACGCTCGTGCACCGCACCGTCAGCCGTCTGCAGAGCCACGCGGACGCCGTCGTGACCACCACGGAGACCTTCGCCGACGTCCTCAGGTCACGAGGGGTCCGCCGCGTCGCCGTGGTCCGCAACGGCACCTCGTTCGAGCACATCGCTCCCGACGCCGGCGCCGGCACCGACGCCCCGGCCGACGGCCACCCGCTGCACCGCCGCCCGCTGCGCGCCGCCTACGCGGGGACGATCGGCCGCGCCCAGGACCTCGCGACCGTCGTGCGTGCCGCGGCCCGCCTGCGGGACCGGGGCCGGGCGGTCGAGGTGCGGATCATCGGCACGGGCGCCGAGGTCGAGAGCCTGCGTCGGCTGATCCGCGAGCTCGACGCCCCCGTCTCCCTCGGCGAGCCCGTCCCGCACGACGAGGTCCGCGACCTGTACGCGTGGGCCGACACGGTGCTGGTCTCCCTGCGCGACTGGGAGCCCCTGGAGTGGACGGTCCCGTCGAAGCTCTACGAGGTGATGGCCTCGGGACGCCTCGCGACGGCGTGCGTCGCCGGGGAGGCCGCCGACCTCGTCGCCACCACCGGTGCCGGCGCGGTGGTGATGCCCGGGGACGTCGAGGGCCTCGCCGACCTGTGGTCCACCTGGGTCGACGACGGCGCGGCACCGGCCGCGTCGGCCGCCGCGGCCCGCTGGGTCCGCGCGAACGCCGACGACGACGTGCTGGGCGAGCACTACGTCCAGCTCGTCGACCACCTCATGGACTCCCGCGGCCATGCCACCGCACGCCGGAGCACCCCGGCCGCCGACGCGACCGCCGGGGCCGCGGCCGGACGCAGCTCGGCCCGTGAGTGCCAGGCCTGCAGCCGGCTCGATACCCTGCCCGACCCCCGCGAGATGCTCTCGACCCGGTCGGTCTTCCCGCGCGTCGCCACGGTCTCCTCCCCCGCGCCGGCCCCCGAGACGGAGCTCCGGCCGAGGACGGCCCGGTGAMRSTTRRSARRHLLLVTHHYAPEHGAPQRRWGSLAPRLIGAGVDVSVLTPPPHYPSGRLFADLPEYAPGRISRGRHGERVVRTRFREHTSRLRSRSVDQAVAAWSTIVLGLRIFRHPDLRPDVVVGTVPGIPSMFAAWIVARGLRAKFVVEMRDAWPDLIEPAGLFRSRRSLKARVLGTLRTLVHRTVSRLQSHADAVVTTTETFADVLRSRGVRRVAVVRNGTSFEHIAPDAGAGTDAPADGHPLHRRPLRAAYAGTIGRAQDLATVVRAAARLRDRGRAVEVRIIGTGAEVESLRRLIRELDAPVSLGEPVPHDEVRDLYAWADTVLVSLRDWEPLEWTVPSKLYEVMASGRLATACVAGEAADLVATTGAGAVVMPGDVEGLADLWSTWVDDGAAPAASAAAARWVRANADDDVLGEHYVQLVDHLMDSRGHATARRSTPAADATAGAAAGRSSARECQACSRLDTLPDPREMLSTRSVFPRVATVSSPAPAPETELRPRTARPGPT0023340_32DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_BIOSYNTHESIS,PGPT0023340-wcaI-K03208NANA
AK018_011701020tagU_2Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUATGAGCACCACGTCGCGGGCGCTGGTCGTCGTCGGCGTGCTGGTCGCCGTCCTGGCGGGTACGGCGTTCGGCGGGATGTGGTGGTTCCAGCAGCGTCTGGACGAGAACGTCGAGAGGCTCGGCGACCCGTTCGCCGAGATCAGCGAGCGGCCGGAGCCGGCGCAGCCCTCGCCGACGGCCGAGGACGAGCTGACCGACATCAACTTCCTGGTGCTCGGGTCGGACTCGCGGATCTCGGCCGGCGACCCGTCGCAGTGGGAGGCCGGAGCCCAGCGCACCGACGCCATCATGCTCGTGCACCTGCCGGCGGACCGGGAGAACGCCGTGGTGATCTCCATCCCTCGCGACTCGTGGGTCGAGATTCCCGGCCACGGTCACGCGAAGGTCAACGCCGCGTTCTCGTACGGCGGTCCGTCGTTGATGATCCAGACGGTCGAGCAGCTCACCGACGTCCGGATCGACCACTTCGTGGTGACGGACTTCGACTCGTTCGTGAACATGACCGACGCCCTGGACGGCGTCCGGATCCGTGTGCCCGAGGACATCGGCGACGGCGACGACGTGTTCTTCTCCGCGGGCGTGCACATGATGAGCGGCGAGGAGGCCCTCGCCTACACCCGCCAGCGGTACGGCCTGTCGAACGGGGACTTCGGCCGTGTGCAGCGTCAGCAGAACTGGATGCGCGCGATCCTGGGCAAGGTCAACAACAACCGGCGCGACCCGGTGAAGATGACCCGGTTCTTCGAGACGGTGAGCGAGTCGGTCGCGGCCGACGACGAGCTGACGATCGACCGCATGCAGGAGCTGTTCGACCAGGCCTCGGAGGTCTCCACCAACGACGTGGTGTTCATGACGGCGCCGTACGAGGGGACGGGTCGCTCCGCCGACGGCCAGTCCATCGTGGTGCTGGACGAGGACCCGCTGACGAGGCTGATGACGGCGATCGGCGACGGCGACGCGATCTCCTTCATCGAGGAGCACGGCGAGGAGCTCGAGCTGCTGCCCGCGACCGTCAGCTAGMSTTSRALVVVGVLVAVLAGTAFGGMWWFQQRLDENVERLGDPFAEISERPEPAQPSPTAEDELTDINFLVLGSDSRISAGDPSQWEAGAQRTDAIMLVHLPADRENAVVISIPRDSWVEIPGHGHAKVNAAFSYGGPSLMIQTVEQLTDVRIDHFVVTDFDSFVNMTDALDGVRIRVPEDIGDGDDVFFSAGVHMMSGEEALAYTRQRYGLSNGDFGRVQRQQNWMRAILGKVNNNRRDPVKMTRFFETVSESVAADDELTIDRMQELFDQASEVSTNDVVFMTAPYEGTGRSADGQSIVVLDEDPLTRLMTAIGDGDAISFIEEHGEELELLPATVSNANANANANA
AK018_01171456hypothetical proteinATGACTCTTGCAGACACCCTTCACACCCTCGGCCTGCTCGGCGGCGCGACGCTGCCCCGCTTCGTCACCGACGTCACCGGGCAGGGTGACGTCCTCGAGGTCGTCGCCGACGCCCGTGCCGTCAACGGCCTCCCCGGCCCCCTGAAGATGGCGACCCGCCTCGTCCCGGCGGTGCGGTCCACGCTCCGCGTCGAGGAGTTCGACGGCGGGGTCGCGCTGCTGAGCGTCGACGCCTCCGCGGGCGGACTGCCGGCGCACAAGCTGCTGGGTCTGGCCAAGAGCCGGATCGAGTCGGTCCTGGCCGCCAAGGGTCTCCCGGCCGGCTCGGTCGAGATCCGCCCCGACGCCCGGATCGCGCTGGACGTGCAGCGGCTCGTCGAGAACCGGCACCCGGGCACCACGGTCACCAACCTGGCCTTCACGGACGGGCGGGTGGCCTTCGACACGGCGGCCTGAMTLADTLHTLGLLGGATLPRFVTDVTGQGDVLEVVADARAVNGLPGPLKMATRLVPAVRSTLRVEEFDGGVALLSVDASAGGLPAHKLLGLAKSRIESVLAAKGLPAGSVEIRPDARIALDVQRLVENRHPGTTVTNLAFTDGRVAFDTAANANANANANA
AK018_011721368entS_1Enterobactin exporter EntSATGAGTGCCACCTTCACCTCCCTCCGCTACCCGAACTACCGCCTGTGGTTCGGCGCTGCGCTCGTCGCCAACGTCGGCACGTGGATGCAGCGCATCGCCCAGGACTGGCTCGTGCTGACCGTGCTGACGGACGAGTCCGGCGTCGCCGTCGGCATCACCACGGCCCTGCAGTTCCTGCCGTTCCTGCTCATCGGGCCCTGGACGGGGCTCCTCGCGGACCGGCTGCCCCGCCGCGGTCTCCTCATGGCCACGCAGGGCTCGATGGGGGTGCTGGCCCTCGGCCTCGGCGTGCTCGTGCTGTCCGGCTCCGCCGAGCTGTGGCACGTCTACGCCTTCGCCCTCGGTCTCGGTGTCGCCACCGCCTTCGACAACCCCGCGCGCCAGACGTTCGTCGCCGAGCTCGTGCCCCCCGAGCGCTTGTCCAACGCCGTGGGTCTCAACAGCGCCTCCTTCAACGCCGCCCGGCTGATCGGGCCGGGAGCCGCCGGGCTGCTCATCGCCGCCGTCGGTCCCGGGTGGGTGTTCGTCGTCAACGGGCTCACCTTCGCCGCCACGATCGCGGCCGTCGCGCTGATGCGCCCCGCCGCGATGTGGGTCCGGGACCGCGCCCCGCGCGGCAAGGGGCAGATCGTGGAGGGCCTGCGCTACGTGCGCGGGCGCTCGGACATCATGGTGATCATGGTCGTCATGGCCGTCGTGTCCACGTTCGGCCTCAACTTCCAGCTGACGAGCGCGATGATGGCGCGGATCGAGTTCGACCGGGGCGCCGGCGAGTTCGGGCTGCTCGGCTCCGTGCTGGCGATCGGGTCCCTGGCCGGAGCGCTGCTGGCGGCCCGCCGCGAGCGACCGCGGGTCCGCCTCGTGATCGGTGCGGCCTTCGCCTTCGCGATCGCCACGGCCGTCAACGCCCTCATGCCGACCTACTGGCTGTTCGCCGTGACGACCATCCCGGTCGGCCTGTCCGCGCTGACGATGATGACCGCCGCGAACTCCACCATCCAGACCTCCATCGACCCGGTGATGCGCGGACGCGTCATGGCGCTCTACATGATGGTGTTCCTCGGCTCGACGCCGATCGGCTCGCCGATCGTCGGCTGGATCGGCGAGGCCTTCGGGCCCCGCTGGTCGATCCTCGTCGGCTCGATCACGACGTTCGCCGTCGCGCTGGCGGCGACCGCCTGGGCCCGCCGGTCGTGGCGGGTCAGCGTGCGGTACCGGCTGCGCCGTCGTCCGCACCTGGAGGTCGTCTACCTCGACGCTCCGTCGGGCACGACGCCGGAGCCACCGCCGCCGGAGCACCCGCCCACGGACGCCCCGCCGACGGACGCCCCGCCGACACCGACGCCGGAGCGCGCCCGGGCCGCCTGAMSATFTSLRYPNYRLWFGAALVANVGTWMQRIAQDWLVLTVLTDESGVAVGITTALQFLPFLLIGPWTGLLADRLPRRGLLMATQGSMGVLALGLGVLVLSGSAELWHVYAFALGLGVATAFDNPARQTFVAELVPPERLSNAVGLNSASFNAARLIGPGAAGLLIAAVGPGWVFVVNGLTFAATIAAVALMRPAAMWVRDRAPRGKGQIVEGLRYVRGRSDIMVIMVVMAVVSTFGLNFQLTSAMMARIEFDRGAGEFGLLGSVLAIGSLAGALLAARRERPRVRLVIGAAFAFAIATAVNALMPTYWLFAVTTIPVGLSALTMMTAANSTIQTSIDPVMRGRVMALYMMVFLGSTPIGSPIVGWIGEAFGPRWSILVGSITTFAVALAATAWARRSWRVSVRYRLRRRPHLEVVYLDAPSGTTPEPPPPEHPPTDAPPTDAPPTPTPERARAANANANANANA
AK018_011731125serC_1COG1932Phosphoserine aminotransferaseATGACCCTCCAGATCCCTGCGTCGATGCTGCCCGCGGACGGCCGCTTCGGCGCCGGCCCGTCCAAGGTCCGCACCGGCCAGGTCGACGCCCTCGTCGCGGCCGGCGACCCCGCGCGGCCGGTGCTGGGCACCTCGCACCGCCAGGCCCCGGTCAAGGACCTCGTGCGCCGGGTGCGCACGGGCCTGACCGAGCTCTTCGCCCTGCCCGACGGCTACGAGGTCGCCCTCGGCAACGGCGGGTCGACCGCCTTCTGGGAGGTCGCGACGGCCTCGCTGGTGCGGCACCGGGCCCAGCACGCGGTGTTCGGCGAGTTCGGCGGCAAGTTCGCCGCGGCCACGGCGCGGGCCCCGTTCCTCGGCGACCCCGAGGTCGTCGAGGCCGCGCCCGGCGGCGTCGCGTACCTCACGCCGTCGGACGCCGTGGACGTCTACGCCACCCCGCACAACGAGACGTCGACGGGCGCGATGGCGCCGGTGCGGCGCCCGGCGGGCGACGCGCTCGTCCTCACCGACGCCACCTCGGGCGCCGGCGCCCTGCCGGTCGACCTGCACGAGACCGACGTCTACTACTTCGGGCCGCAGAAGGCGTTCGCGGCCGACGGCGGCCTGTGGCTCGCGCTGGTCTCCCCGGCGGCGGTCGCGCGCGCCGCCGAGGTCGAGGCGGCCGGCGACGGCCGGTGGGTGCCCGAGTTCCTGTCGCTGACGACGGCGCTGGACAACTCGCGCAAGGACCAGACGCTGAACACGCCGGCGGTCGGCACGCTCGTGATGCTCGCCGACCAGGTCGAGTGGCTGCTGGAGCACGGCGGCCTGGACTGGTCGGTGCGCCGCTGCGAGCGCTCGGCCGAGCACCTCTACGGCTGGGCCGCCGACCGCGACTGGGCGACGCCCTTCGTGGCCGACCCGGCGGAGCGCTCCACGGTGGTGGGCACGATCGACCTGGACGAGACGATCGACGCCTCGGCCGTCGTCGGCCACCTGCGCGCGAACGGGGTCTACGACGTCTTCCCCTACCGCAAGCTGGGGCGCAACCAGCTGCGCGTCGGCATGTTCCCCGCGGTCGACCCCGACGACGTCGCGGCACTGACGGCGTGCGTCGACCACGTCGTCGACCGGCTCGCCTGAMTLQIPASMLPADGRFGAGPSKVRTGQVDALVAAGDPARPVLGTSHRQAPVKDLVRRVRTGLTELFALPDGYEVALGNGGSTAFWEVATASLVRHRAQHAVFGEFGGKFAAATARAPFLGDPEVVEAAPGGVAYLTPSDAVDVYATPHNETSTGAMAPVRRPAGDALVLTDATSGAGALPVDLHETDVYYFGPQKAFAADGGLWLALVSPAAVARAAEVEAAGDGRWVPEFLSLTTALDNSRKDQTLNTPAVGTLVMLADQVEWLLEHGGLDWSVRRCERSAEHLYGWAADRDWATPFVADPAERSTVVGTIDLDETIDASAVVGHLRANGVYDVFPYRKLGRNQLRVGMFPAVDPDDVAALTACVDHVVDRLAPGPT0009160_1343DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009160-serC|pdxF-K00831NANA
AK018_01174702ideR_1COG1321Iron-dependent repressor IdeRGTGACGGACCTGATCGACACCACCGAGATGTATCTCAAGACGATCTACGAGCTGGGTGAGGAAGGCATCACGCCGCTGCGCGCCCGGATCGCGGAGCGTCTGGGCCACTCGGGACCGACCGTCTCCCAGACGGTCGCGCGGATGGAGCGGGACGGTCTCGTCGTCGTCACGGGCGACCGCCACCTCGAGCTCACCGCGGACGGTCAGGAGAAGGCGGTGCGGGTCATGCGCAAGCACCGGCTCGCCGAGCGCCTGCTGACCGACGTGATCAAGCTCGACTGGCCGCAGGTGCACAACGAGGCCTGCCGCTGGGAGCACGTCATGAGCGACCTGGTCGAGCGTCGTCTCGTGACGCTGCTCGACCACCCGCACCACGACCCGTACGGGAACCCGATCCCCGGCCTGTCCGAGCTCGGGGAGCAGTACGAGGAGATGCCGTTCCTGGAGGGCGTGCAGTCCCTGCCGCTCTTCCTGCAGACGGTCCCCGACGACGGCGCCGCGGTCGTGCTGCAGCGCATCGCCGAGCCGGTACAGGTCGACGACGAGTTCCTCGAGCGGCTCTCCGACGCGGGCCTGCTGCCCGGGGTGAGCATCGAGGTCGAGCGGGCGGGGGACGACTACGTCGTGCGCACCGCCGACGGCGACGGTGCGCTCGAGCTGCCCGAGGACCTGGCCAAGCACCTGTTCGTCGCGGCGCGCTGAMTDLIDTTEMYLKTIYELGEEGITPLRARIAERLGHSGPTVSQTVARMERDGLVVVTGDRHLELTADGQEKAVRVMRKHRLAERLLTDVIKLDWPQVHNEACRWEHVMSDLVERRLVTLLDHPHHDPYGNPIPGLSELGEQYEEMPFLEGVQSLPLFLQTVPDDGAAVVLQRIAEPVQVDDEFLERLSDAGLLPGVSIEVERAGDDYVVRTADGDGALELPEDLAKHLFVAARPGPT0003890_476DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003890-troR-K03709NANA
AK018_01176813hypothetical proteinGTGACTGCTCGCAGCATGCGCGGTAAGCACCGCGCCGCCCGCCGCCCGATGATGGCGGCCCCCTCCGCGGCCGCCGGCCGTCGGGCTGCTGTGGTGGCGACCGCCGGTGGTCTGCTCGTGTCGACGATCGGCGGGGCGACCGCCGCGCACGCGGCACCGGTGGACTCGGACGCGGCCAAGAAGCTGAGCACCGTGGACCTGGGTGCGCTGACCGACCAGGCCAAGCAGGCTCTCGAGAGCGCGCCGGTGGTCACGGTCGACGCCGAGGCCAAGGTCACCGTCGAGCGCGTGACCCCCAAGATCGCCGAGAAGGCCGACATCAAGGCCGCGCCGGAGCCCGAGCCGGAGCCCGTGCGCGAGACCACGCCGTCCCGCTCCGGCGAGCGGGAGTCGGTCTCGACGTCCTCCTCGTCGTCCTCGACCTCCTCGTCGAGCACGAGCGAGTCCTCGAGCTCCGCCTCCTCGGTCCCGGCGTCCGCTGTCGGTTCCTCGGTCATCTCCGTCGCCTCGCGCTACGTGGGCGTCCCGTACGTCTCCGGCGGCACGACGCCGTCCGGCTTCGACTGCTCCGGGTTCACCCAGTACGTCTTCGCGCAGGTCGGCGTCTCGCTGCCGCGCTCGTCCTCGGACCAGCGCTACGCCGGCACCGTCGTCTCCCGTGCCGCCGCGCAGCCGGGCGACCTCATCTGGTCCCCGGGCCACATCGCGATCTACGCGGGCGGCAACACCCAGATCGACGCCCCGCGTCCGGGCAAGACCGTCCAGTTCCGCAACATCTGGCAGTCCAACCCGACCTTCATCCGGGTCGGCTGAMTARSMRGKHRAARRPMMAAPSAAAGRRAAVVATAGGLLVSTIGGATAAHAAPVDSDAAKKLSTVDLGALTDQAKQALESAPVVTVDAEAKVTVERVTPKIAEKADIKAAPEPEPEPVRETTPSRSGERESVSTSSSSSSTSSSSTSESSSSASSVPASAVGSSVISVASRYVGVPYVSGGTTPSGFDCSGFTQYVFAQVGVSLPRSSSDQRYAGTVVSRAAAQPGDLIWSPGHIAIYAGGNTQIDAPRPGKTVQFRNIWQSNPTFIRVGPGPT0023995_3500DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
AK018_01178831hypothetical proteinGTGAACGCACGCAACACCACGCGCGGCCGGCACCGGGCCGCCCGCCGCCCCATCACCGCACCGCCGGCCGCAGCCAGCCGTCGCGCCGCCGTGATGGCCACGGCCGGTGGTCTGCTCGTGTCGACGATCGGCGGGGCGACCGCCGCGCACGCGGCACCGGTGGACTCGGACGCGGCCAAGAAGCTGAGCACCGTGGACCTGGGTGCGCTGACCGACCAGGCCAAGCAGGCTCTCGAGAGCGCGCCGGTGGTCACGGTCGACGCCGAGGCCAAGGTCACCGTCGAGCGCGTGACCCCCAAGATCGCCGAGAAGGCCGACATCAAGGCTGCGCCGGAGCCCGAGCCGGAGCCCGTGCGCGAGACCACGCCGTCCCGCTCCGCAGAGCGCGAGCCGGTCTCCACCTCGTCCTCCTCCTCGTCGTCGTCGACCTCGTCGTCGAGCACGAGCGGGTCCTCGACCTCCTCGGCCCCCGCGGCCAGCAGCTCGCGCGGTTCGCAGGTCGTGTCCATCGCGGCCCGCTACCTCGGTACGCCGTACGTCGTCGGCGGCGCTTCGCCGTCCGGCTTCGACTGCTCGGGCCTGGTGACCTACGTCTACGCCCAGGTCGGCGTCTCGCTGCCGCACTCCTCGAGCGCGATCCTCAGCGCCTCGAACACGACGCAGATCTCCTCCTCCGAGGCGCAGCCGGGCGACCTCATCTGGTCCCCGGGGCACATCTCGATCTACATCGGCAACGGCCAGCAGATCGAGGCGACCCGCCCCGGTGGTTGGACCGTCCGTCAGTCCAGCCTGTGGCAGTCCAGCCCGACCTTCCTGCGGGTCACCGGCTGAMNARNTTRGRHRAARRPITAPPAAASRRAAVMATAGGLLVSTIGGATAAHAAPVDSDAAKKLSTVDLGALTDQAKQALESAPVVTVDAEAKVTVERVTPKIAEKADIKAAPEPEPEPVRETTPSRSAEREPVSTSSSSSSSSTSSSSTSGSSTSSAPAASSSRGSQVVSIAARYLGTPYVVGGASPSGFDCSGLVTYVYAQVGVSLPHSSSAILSASNTTQISSSEAQPGDLIWSPGHISIYIGNGQQIEATRPGGWTVRQSSLWQSSPTFLRVTGPGPT0023995_3595DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
AK018_01179951COG0589Universal stress proteinATGACACGTCCTGAGGTCGTCCTGGTGGGGGTCGACGGCTCCGAGCCGAGCCTGCACGCCCTGGACTGGGCAGCGGCATATGCCGAACGGGTCGGCTGGCGCCTGCACGTGGTGTGCACCTACTCGCTGCCGTCGTTCACGGCCGCGTCGCTGGACGGCGGGTACGCGGCGCTGGACGACACGGCGATCGCCGAGGGCGCGAAGGCGGTGCTCGCCGAAGCCACGGCCCGTGTCGAGGGCATCGGCGTCCCGGTCCAGGGGACCGTCGCCACCGGTGACGCCGCCGGGGTGCTGGTCGAGATGTCGTCCGACGCGTGCCTGGCGGTCGTCGGGACGCGCGGCCGGGGCGGTTTCACCGAGCGTCTGCTCGGCACGGTCTCGTCGGCGCTGCCCGCGCACGCCCACTGCCCGACCGTCGTCGTGCCGTACCGCTCGGACCCGGAGGACGGCGACGGCCCGGACCGCCGGGACGGTGCCGTCGTGCACGCCGTGCGGCGCATCGTCGTCGGTGTCGACGGTTCGCCGACCGCCGAGGTCGCGCTGCGGCACGCCGTCGAGCAGGCCGAGACCTGGGGCGCCGAGCTCGTGGCCGTGGCCGGCGTGCCGCTGGGCAGCGGCGCGGGGGTCCTCGCCTGGTTGCCGTCGCAGATCGACCACGAGCAGATCCTCGACGACGTCCGCGCGGGGCTGGACGTCATCGTCGATCGGGTCGCGGCGGAGCATCCCGGGCTGACCATCAAGCGGCACGTGCTGGACGGGTCCGGGGCCGAGCTGCTCACGGAGTTCTCCGGCGCCGCGGACCTCGTGGTCGTGGGGTCGCGCGGCCGTGGAGGGTTCCGCGGCCTGCTGCTCGGGTCGACGAGCCAGGCGGTGCTGCACCACTCCAAGTGCCCGGTCCTCGTGGTGACGCGCAAGTGCGACGAGGAGCTGCAGGCCGACTCCGCCGCCTGAMTRPEVVLVGVDGSEPSLHALDWAAAYAERVGWRLHVVCTYSLPSFTAASLDGGYAALDDTAIAEGAKAVLAEATARVEGIGVPVQGTVATGDAAGVLVEMSSDACLAVVGTRGRGGFTERLLGTVSSALPAHAHCPTVVVPYRSDPEDGDGPDRRDGAVVHAVRRIVVGVDGSPTAEVALRHAVEQAETWGAELVAVAGVPLGSGAGVLAWLPSQIDHEQILDDVRAGLDVIVDRVAAEHPGLTIKRHVLDGSGAELLTEFSGAADLVVVGSRGRGGFRGLLLGSTSQAVLHHSKCPVLVVTRKCDEELQADSAANANANANANA
AK018_01180990hypothetical proteinGTGCCGCGATCACTGCCTGACGACGACGACCTTCCGGAGCGGCCCTTTCGTGTCGCCGATGCCCTCGCGCAGGGCGTGGAGCCGACGACGCTGCGTCGGGTCCGGTTCGACAGCCCCTTCCACGGCGTGCGCGTCGCTTCCGGGGCGACGGCCGGGCTCGAGGCGCGATGTCGCGCCTTGCTCCCGGTCCTGGACGACGGGGTGGTCTTCAGTCACGTCACGGCCTTGCGGCTGTTCGGCGTCGACGTCCCGTGGACGATGGAGGACCTGGCGGCCGACGGCGCCGCACCGCAGGTGGTCACCGCCGCCGCGGCCGACCGTCCCCAGCGTCAGGACGTGATCGCGCACCGGACCCGGCAGGAGGTCCTCGACACGACGACGATTCGCGGGTTGCCTGTGACGACGCCTGCCCAGACGTTCGTCCATGTCGCCGTGGGTCTGCGGTCGCCGGACGACATCGTGGTGCTGGGTGACGCGATGATGCGGCACGCCCGCGAGCTCACGAGCCCCGCGGAGCTGGCACGGCTCGCCGCACGCACCCGAAAGGTCAAGGGGATCGCTCAGGTCCGTGCCCAGATCCCGCGCTTGCGTCCCGGCACCGACTCGGTGACGGAGACCCGGACACGACTGCAGCTGACGGACGCCAACCTGCCGTGCCCGCTGGTCAACGCGACCATCCGGCTCGCCGACGGCACCTACGTCAAGCGGTGCGACCTGCTCTACCCGGAGCATCGGGTCGTCATCGAGTACGACGGCGACCAGCATCGCACCGACCGCGGGCAGTGGCGGGAGGACGTGCGTCGGCGCCGATGGGTCCAGGAGCTCGGGTACCAGGTGGTCGTCGTGGTCGGCGACGACCTGGCGCGGAACGGTGGTGTGCGTCCTGGCGGCGTCGTGGGACGGGTCCGTCCGCTGCTCGATCGCGCTCCGACACCGCTGTCGGCCGGTACGCCGGAGACCGTCGTCGTGCCCTACCGCGCCACGATCTGAMPRSLPDDDDLPERPFRVADALAQGVEPTTLRRVRFDSPFHGVRVASGATAGLEARCRALLPVLDDGVVFSHVTALRLFGVDVPWTMEDLAADGAAPQVVTAAAADRPQRQDVIAHRTRQEVLDTTTIRGLPVTTPAQTFVHVAVGLRSPDDIVVLGDAMMRHARELTSPAELARLAARTRKVKGIAQVRAQIPRLRPGTDSVTETRTRLQLTDANLPCPLVNATIRLADGTYVKRCDLLYPEHRVVIEYDGDQHRTDRGQWREDVRRRRWVQELGYQVVVVVGDDLARNGGVRPGGVVGRVRPLLDRAPTPLSAGTPETVVVPYRATINANANANANA
AK018_01181825drrB_1Daunorubicin/doxorubicin resistance ABC transporter permease protein DrrBATGACCGCCGTCGACATCAGCACGACCACGCTGCGCGAGGCCGTCGCGCTGGAGGAACGGCCGGCGCGCCCGTCGGCCGTCTCGACGTCGCTGACGTTCGGGTGGCGGGCGCTGCTCAAGATCAAGCACGTGCCGGAACAGCTCTTCGACGTGCTCGTCTCCCCCGTCGTCTTCACGCTGATGTTCACGTACCTGTTCGGAGGGGCCCTGGCCGGGTCGACGACGGCGTACATCCAGTTCCTGCTGCCCGGGATCCTGGTGCAGACGATCATCATCGTCACCGTCTACACCGGCTACACGCTGAACTCCGACATCACCAAGGGCGTCTTCGACCGCTTCCGCTCCCTGCCGGTCTGGCGGCCGGCCCCGATCGTGGGCGCACTGCTCGGGGACCAGGTGCGGTACACGATCGCGTCGGTGATGTGCATCGGGCTCGGGCTCGTCATCGGCTTCCGGCCGGACGGCGGTGTCCTCGGGGTGGTCGCGGGCGTCGCGTTGCTGCTGGTCTTCGCCTTCGCGCTGAGCTGGATCTTCACGATCCTCGGTCTGCTGCTGCGCACCCCGAACGCCGTGATGGGCGTGTCGATGATGGTGCTCATGCCGTTGACGTTCGCGTCGAACATCTTCGTCGACCCCGCGACGATGCCGTCCGGGCTGCAGGCGTTCGTGGACGTCAACCCGGTCACGCACCTGGTCACGGCGGTCCGCGGCCTGATGGGCGGGGTCGTCGACGCCGGCGACATCGTCACCGTGCTCGTCTCGGCGGTGGTGATGACCGCGGTGTTCGCGCCGATCACGATGTACCTCTACCGCAACCGCCACTGAMTAVDISTTTLREAVALEERPARPSAVSTSLTFGWRALLKIKHVPEQLFDVLVSPVVFTLMFTYLFGGALAGSTTAYIQFLLPGILVQTIIIVTVYTGYTLNSDITKGVFDRFRSLPVWRPAPIVGALLGDQVRYTIASVMCIGLGLVIGFRPDGGVLGVVAGVALLLVFAFALSWIFTILGLLLRTPNAVMGVSMMVLMPLTFASNIFVDPATMPSGLQAFVDVNPVTHLVTAVRGLMGGVVDAGDIVTVLVSAVVMTAVFAPITMYLYRNRHPGPT0006730_14418DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_011821020drrA_2Daunorubicin/doxorubicin resistance ATP-binding protein DrrAATGCGCGACGGGCCACAGCACGCGGTCGAGGCCACCGGCCTCGTCAAGCACTTCACCTCCGGCAAGAAGACGACGAAGGCCGTCGACGGTGTCGACCTGGCCATCCCCACCGGCAGCGTGTACGGCCTGCTGGGGCCGAACGGTGCCGGCAAGACGACGGTCGTGCGGATGCTCGCCACGCTGCTGCGCCCGGATGCCGGGGCCGCGAAGGTCCTCGGCCACGATGTCGTGGCCGAGGCCGACGCCGTCCGCGCAGCCGTCGGGCTCACCGGCCAGTACGCCTCGGTGGACGAGGACCTCACGGGGACCGAGAACCTGCTGATGCTGGCCCGGCTGTACGGGTTCCGCGGGCCCGCGGCACGGCGGCGGGTCGCCGACCTGCTCGCGGCGTTCAGCCTGACCGACGCCGGTGGACGACAGGTCAAGACGTACTCCGGCGGCATGCGGCGGCGCATCGACCTCGCCGCCTCGCTGGTGCTGTCCCCGCGCGTGCTGTTCCTCGACGAGCCCACCACCGGGCTGGACCCGCGTTCGCGCAACCAGGTGTGGGACATCGTGCGCGTGCTGGTCCAGGACGGCGCGACGGTGCTGCTGACCACGCAGTACCTGGAGGAGGCCGACCAGCTCGCCGACCGCATCGGGGTGATCAACCACGGCCGGCTCATCGCCGAGGGCTCGCCCAGCGAGCTCAAGCACTCCGTCGGCCAGGGCGCGGTGACGCTGCGGCTCGCCGACGCGGCGCGGCGGGCCGAGGCGGCCGCCGTCGTGCAGCGTGTGCTCGGGACCGAGCCGACGCTGCCCACCGACCCGTACGGCCTGACCGCCCGGGTGCCCGACGACGGCACGCACCGGGTGGCGCAGGTCCTCCCCGCGCTCGAGGAGGCGGGGATCGCCGTTCCGGAGTTCTCTCTCGGCCAGCCCAGCCTGGACGAGGTGTTCCTGACGCTGACCGGCGAGCCGTTGCCGGAGGACGAGCAGGGCTCGGACGAGCCGGCCCTCGAGCAGGAGGTGACCCGATGAMRDGPQHAVEATGLVKHFTSGKKTTKAVDGVDLAIPTGSVYGLLGPNGAGKTTVVRMLATLLRPDAGAAKVLGHDVVAEADAVRAAVGLTGQYASVDEDLTGTENLLMLARLYGFRGPAARRRVADLLAAFSLTDAGGRQVKTYSGGMRRRIDLAASLVLSPRVLFLDEPTTGLDPRSRNQVWDIVRVLVQDGATVLLTTQYLEEADQLADRIGVINHGRLIAEGSPSELKHSVGQGAVTLRLADAARRAEAAAVVQRVLGTEPTLPTDPYGLTARVPDDGTHRVAQVLPALEEAGIAVPEFSLGQPSLDEVFLTLTGEPLPEDEQGSDEPALEQEVTRPGPT0006725_2349DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_011831596dap_1D-aminopeptidaseATGACCCCCCGCACCGCGCAGCCCGTGCACCACCCGGGCGCCACCGCCGACCGCCTGAACACCGCCTACCTGGCCGACTGGGTGGCCACGCAGGCCGGTCTGGCCCGGCTGCCCGGCGTGCAGTACGCGGTGAGCATCGACGGCGAGCTGGTCCTCGACGGCGCGTGGGGCGTCACGGACCTGACCTCCGGTACGCCGCTGCGCACCGACCACGTCTTCCGGGTCGCCTCGCACTCCAAGACGTTCACCGCGACGGCGGTCGCCCGGCTCGTCGACGCCGGCCGGCTGCGTCTCGACGACCCGCTGTCCCGGCACGTCGCCGAGCTCGACGGCTCCGACGTCGGGCGGGTGACGGTACGCGAGGCGCTCGGGCACACCGGTGGCGTGCTGCGCGACGGCCGCGACGCCGACTACTGGCAGCTCGCGACCCCGTTCCCGGACCGTGCCACGCTGCTCGACGAGGTCCTCAGCCACGGGGAGGTCTTCGGTCGCGGGGAGCACTTCAAGTACTCCAACCTCGCCTACGGCCTGCTCGGCATGGTCATCGAGGAGATCACCGGCACCCGGTTCAGCGAGCACGTGCGCACCGAGCTGATCGAGCCGCTGGGGCTGGCCGACACGGCGCCGGAGCTGGACGACGACGTCGCCCGACGCGCCGTCGTCGGGCACAGCGCACGAGCGCTCGCCGCGCCGGGGCTGGCGACGATGTTCGCGGACGGCCGGCTGCCGGTGGCGGCGGTGACCACGGGTGCGTTGTCGGCCGCGACCGGCTTCTGCTCGACGGCGCGCGACCTGGTGCGCTGGGCGGACGCGCACGCGGACGGCTCGACCCTGGTGCGGCCCGAGACGCGTCGCCTGCTGCAGCGCGACGAGTCGGTGATCGACCGTCCGCACAGCCCGCGGCGGGCCTACGGGCTCGGGTTCGAGACCCGCGAGGTCGGCGGCCGCCGGCTGGTCGGGCACTCGGGCGGGTTCCCGGGGCAGATCACGCGGACGTGGTTCGACCCGTCCGAGCGCATCGCCGTCGCCGTCCTGACGAACGCGATCGACGGGCCGGCGGACGCCCTCGCGCTCGGGATGTTCGGGCTGGTCACGGCGGCTCTGGACAGTGTCGAGGCCCAGCCTGTGGCCGAGTCCGCCGTCGGTGCCGGGACCGGGGCCGGGGGTGAGACCGGTGTCGGGAGCCAGACCGGGGCCGACGGCGGTCGCCCGGCCGGGCCGGACGCCGCGGCAGAGGAGTCTCCGGATGCTCTCGAGGAGTCACCGGACGACGGCGGCACGGCGGCCACGCACCCGCTGGACCGCTGGACCGGCCGGTTCGCCAACCTGTGGGGCATGACCGACGTCGCGCGGCTGGGCGACCGGCTGTGGGCCGTCGACCCGCGCCGGGCGGACCCGTTGGACGGCGCCGAGCGGCTGGAGGTCGACGGCGACGTGCTGCGGCCGGAGCCGCACGCCGGGTTCGGTCCGGTCGGTGAGCCGATCCAGGTGCTGCGGGGGGCCGACGGCCGGCCGAGCGCCGCCGTCGTCGGCGGGATGACCTCGTGGCGTGCGGACGACTTCGAGCGTCAGCGCCGGGCGCACGCCGCCCGCTAGMTPRTAQPVHHPGATADRLNTAYLADWVATQAGLARLPGVQYAVSIDGELVLDGAWGVTDLTSGTPLRTDHVFRVASHSKTFTATAVARLVDAGRLRLDDPLSRHVAELDGSDVGRVTVREALGHTGGVLRDGRDADYWQLATPFPDRATLLDEVLSHGEVFGRGEHFKYSNLAYGLLGMVIEEITGTRFSEHVRTELIEPLGLADTAPELDDDVARRAVVGHSARALAAPGLATMFADGRLPVAAVTTGALSAATGFCSTARDLVRWADAHADGSTLVRPETRRLLQRDESVIDRPHSPRRAYGLGFETREVGGRRLVGHSGGFPGQITRTWFDPSERIAVAVLTNAIDGPADALALGMFGLVTAALDSVEAQPVAESAVGAGTGAGGETGVGSQTGADGGRPAGPDAAAEESPDALEESPDDGGTAATHPLDRWTGRFANLWGMTDVARLGDRLWAVDPRRADPLDGAERLEVDGDVLRPEPHAGFGPVGEPIQVLRGADGRPSAAVVGGMTSWRADDFERQRRAHAARNANANANANA
AK018_01184756hypothetical proteinATGCCCCCGCCCCACCGGCCCGCACCCGGTGCCGCCCCGGCCCTCTCCCGCGTCACCCGACCCTCCACGGTGGACCTCATCACCGTGGAGCTGCGCAACGCGATCTACACCGGTGCCCTGCGCGTCGGAGCGCCGATCCGTGAGATCGAGGTGGCCCGGCAGCTCGGCGTCAGCCGCGGCCCCTTCCGCGAGGCGGCGCAACGACTCGTCGCCGAAGGGCTCGTCGTCGCGACCCCGGGACGCGGCCTGTCCGTGCGGACCATCGGCAAGGACAGGATCCGTCCGCTGTACGCCGCGCGGACGATGGTGGAGACGACGGCGGCGCGCGCCGCGGTCGACACGGCGACGGCGGACCAGGTGGCTGCGGTGCGCTCGGCCCACGACGAGCTGGTGCGCGCCGACGCGACCCACGACGCCCTGCGAGTCGGCGCCGCGGACCTCAACGTGCACTGGCAGCTCGTGGCCGCGAGCAGCAACCCGTGGCTCCTGCACTGGATGAGCACGCTGATCGTCGAGGTGCGCATCGCCAGCTTCACGGTCAGCGAGGAGTACGTCGTGCGCAAGGACGCCGCCGAGGCGCACGCCGACATCGTCGAACGGCTCGAGGCGCGGGACGCCGACGGCCTGGAGGCCGCGATCCGCGCGAACCTGGACGACGCGGTGATGCGCCTGCTCTCCCCGGAACGGTTCGGCTCGGAGTCCCTGGAGGAGCCGCGGCCGCTGCCGCCGCCGCGGCTCGACCCCCTCCACCTCTGAMPPPHRPAPGAAPALSRVTRPSTVDLITVELRNAIYTGALRVGAPIREIEVARQLGVSRGPFREAAQRLVAEGLVVATPGRGLSVRTIGKDRIRPLYAARTMVETTAARAAVDTATADQVAAVRSAHDELVRADATHDALRVGAADLNVHWQLVAASSNPWLLHWMSTLIVEVRIASFTVSEEYVVRKDAAEAHADIVERLEARDADGLEAAIRANLDDAVMRLLSPERFGSESLEEPRPLPPPRLDPLHLNANANANANA
AK018_01185963hypothetical proteinGTGCGATCCATCAGGACCACGAACCGCCGCCGGGCACTCGCCGCGGCCGGATCCGCCCTTGCCCTGACCGCGCTGGCCGCCTGCTCGAGCACCGACGGCGGCTCGGAGAGCACCGACAGCGGTGACAGCGGCGACAGCGGCGACGGCGAGTCCATGTCGACCCTCGCCGACCTGCAGGACGCCGGCTCGATCAACGTCGGCTTCTTCGGCGAGGTGCCGTACTCCTACGAGGAGGACGGCGAGCTCACCGGTGCCACCATCGAGCTCGGCCGCCAGATCTACGGCGATCTCGGTATCGACGAGGTCACCGGCACCCAGGTCGAGTGGGGCGCCCTCATCCCGGGCGTCAACGCCGACCGGTTCGACGCCGTCAGCGCCGGCATGTCCATCCTCCCGGAGCGCTGCGAGCAGGTGGCCTTCGCCGAGCCCACGATCATGTACACCACGGCGTTCCTCGTGCCGGAGGGCAACCCGGAGGGGCTGTCCGACTGGCAGTCGATCGAGGGCAGCGGGCTGACGCTCGCCGTCACCTCGGGTGCCATCGAGGCCGGCTACGCCGACGAGACCGACGTCGAGGCCATGGAGGTCCCGGACCGCCAGGCCGGCCTGGACGCCGTGGTGTCCGGCCGCGCCGACGCCTACGCGCTGACCGGCATCTCGCTGCGTGCGCTGGCCGAGGAGACCGACCAGCCCGTCGAGGCGACCGAGGCGTTCACCGCCACGATCAACGGCGTGTCCCAGATCGGTGCCGGCGCCGAGGTCTTCCGCCAGGGGGACACCGAGCTGCTCGACGCCTACAACGAGGGCCTCGCCCCGATCCTCGCGGACGAGGCCGCCTGGCTCGAGATCATGGAGCCGTTCGGCTTCAGCGCGGCGGAGTTCCCGCCGGAGGGCCTGACCGCTGAGATGCTGTGCGAAGGCGACCTCGAGGCCATCACCGAAGAGCTGGGGATGGGCTCCTGAMRSIRTTNRRRALAAAGSALALTALAACSSTDGGSESTDSGDSGDSGDGESMSTLADLQDAGSINVGFFGEVPYSYEEDGELTGATIELGRQIYGDLGIDEVTGTQVEWGALIPGVNADRFDAVSAGMSILPERCEQVAFAEPTIMYTTAFLVPEGNPEGLSDWQSIEGSGLTLAVTSGAIEAGYADETDVEAMEVPDRQAGLDAVVSGRADAYALTGISLRALAEETDQPVEATEAFTATINGVSQIGAGAEVFRQGDTELLDAYNEGLAPILADEAAWLEIMEPFGFSAAEFPPEGLTAEMLCEGDLEAITEELGMGSPGPT0020800_2153DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
AK018_01186762yecS_1COG0765L-cystine transport system permease protein YecSATGACCGATGACATCCAGGACCTCGTCGAGAGGCTCCCGCTCCTCGGGGACGCGGTTCTTGTCACGCTGCAGATGACCGTGGGCGGGGCTCTCCTCGCCGTCGTCATCGCTGTGCTGCTCGGGTTCGGCTCGCGCACCCAGACTCTCTGGGTGCGCGGGCCGTCCCGCGTCGTCGTCGAGTTCTTCCGTGGCACGTCGCTGGTGGTCCAGCTCTTCTGGCTCTTCTACGTGCTGCCCGTGTTCGGCTTCAAGATGGAAGCGCTCGCGGTGGCGGTCGTGGCACTCGGACTCAACTACGGCGCCTACGCCTCCGAGGTGGTCCGCGGGTCGATCGCGTCGGTCCCGCAGGGACAGTGGGAAGCGGCGACCGCGCTGAACATGACGTGGTTCCACAAGGTGCGGCGCGTCATCTTCCCGCAGGCGTGGGCACTGATGATCCCCATGCTGGCCAACCTGCTGATCCAGCTCCTCAAGGGGTCGGCGCTGGCGTACTACATCACGCTGCAGGACGTGAACTTCTGGACCGTCGAGCTGCGGCGGGCCACGGCCGACACGTTCTTCAGCTACACGGCCGGTCTGATCGTGTACTTCATCATCGCCTACCTGCTGACCTGGGGGATGAACATCCTGGAGGAGCGCGCCAAGCGGCGGCTCGGCCGCGGCACGCGGCCCACCCTGCGTGAGACGTTCGGCCTGAAGCCGGCCACCAACCCGAGGCTGGCCAACATCGCGGGAGCCCCGGCCGGGGGTGGCGGCGCATGAMTDDIQDLVERLPLLGDAVLVTLQMTVGGALLAVVIAVLLGFGSRTQTLWVRGPSRVVVEFFRGTSLVVQLFWLFYVLPVFGFKMEALAVAVVALGLNYGAYASEVVRGSIASVPQGQWEAATALNMTWFHKVRRVIFPQAWALMIPMLANLLIQLLKGSALAYYITLQDVNFWTVELRRATADTFFSYTAGLIVYFIIAYLLTWGMNILEERAKRRLGRGTRPTLRETFGLKPATNPRLANIAGAPAGGGGAPGPT0020795_3787DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
AK018_01187648artQCOG0765Arginine transport system permease protein ArtQATGAACAACGACAGCATCTGGAACTGGGATCGCGCCTGGGAGGTGCTCCCCGATCTACTCCGGGGCCTCTCGGTCACGATCCAGATGACCGTGCTCGGCATGATCATCGCATCGGTCCTGGGCCTCTTCATCGCGCTGGCGATGCGGACCCCCACCCGCTGGGTGACCACTCCGCTGAAGTTCGTCGTGGACTTCATCCGCATGACGCCTCTGCTGGTGCAGCTCGTGTTCGTCTACCTGCTGCTGACCTGGGTCCCCGGGTACGTCGTCGGCTTCGTCGTGCTCGGCGTGCACTACGCGACCTACATGTCCGAGGTCTACCGCGCGGGCATCGAAGCGGTGCCGAAGGGGCAGTGGGAGGCTGCTACGGCCCTGAACATGGCCAAGGGGCGCACCTGGCGTGCCGTGATCCTGCCGCAGGCGATCAAGAACACGTTGCCCGGCCTGGGGAACTACGCGATCTCCATGTTCAAGGAGACGCCGTTCCTCTTCGCCATCTCCGTCACGGAGATGTACAAGGCGGGACAGGACTACGGTGCCAACACCTTCTCGTACATCGAGGCGCTGACGATGGTCGGTCTGCTCTTCCTCGCGGTGAGCTACCCGACGTCGCTGCTGGTGCGCAGGATGGAGATCCGCCTTGCCTGAMNNDSIWNWDRAWEVLPDLLRGLSVTIQMTVLGMIIASVLGLFIALAMRTPTRWVTTPLKFVVDFIRMTPLLVQLVFVYLLLTWVPGYVVGFVVLGVHYATYMSEVYRAGIEAVPKGQWEAATALNMAKGRTWRAVILPQAIKNTLPGLGNYAISMFKETPFLFAISVTEMYKAGQDYGANTFSYIEALTMVGLLFLAVSYPTSLLVRRMEIRLAPGPT0020795_11264DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
AK018_01188789artM_1COG1126Arginine transport ATP-binding protein ArtMATGACCAACACCTCGGGCGACGTGCCCGCCATCGAGTTCCGGGACGTCACCAAGCGTTTCGGTGACAACGTCGTCCTGGACGGGCTGAACTTCTCGGTCCCGCAGGGGCAACGCATCACGCTGATCGGGCCGTCCGGATCGGGCAAGACGACGATCCTGCGGTTGCTCATGACGCTCGAGGAGCTCAGCGGCGGTCTCATCCTCATCGACGGCGACCCGTACACCCACGAGTACAAGGGCGAGAAGTGGGTCGCCGTCCCCGAGAAGCGTCGCCGCGTGGTGCGCAACCGGGTGGGGATGGTGTTCCAGCAGTTCAACCTCTTCCCGAACATGACGGTGCTCGAGAACATCATCGAGTCGCCGGTGCACGTCCTGGGCAAGTCCAAGGCCGACGCGATCGCGGACGCCGAGCGGCTGCTCGAGAAGGTCGGCATGTCCGAGAAGCGGGACTTCAACACCAACCAGCTCTCCGGTGGTCAGCAGCAGCGCGTGGCGATCGCCCGCGCGCTGGCGATGGACCCGGAGATCCTGCTGCTCGACGAGGTCACGTCGGCGCTCGACCCCGAGATCGTCGCCGACGTCCTGGACGTCCTCCGTGAGATCGCGGAGACGACGGACATCACGATGCTGCTCGTGACGCACGAGATGCAGTTCGCCCGCGAGGTGTCGGACCGCGTGCTGATGTTCGACAAGGGGCAGATCGTCGAGGAGGCGGACCCCGAGACGATGTTCACGAACCCGTCGCACGAGCGGACCAAGGAGTTCCTCAAGGCCGTGCTCGGCGGCTGAMTNTSGDVPAIEFRDVTKRFGDNVVLDGLNFSVPQGQRITLIGPSGSGKTTILRLLMTLEELSGGLILIDGDPYTHEYKGEKWVAVPEKRRRVVRNRVGMVFQQFNLFPNMTVLENIIESPVHVLGKSKADAIADAERLLEKVGMSEKRDFNTNQLSGGQQQRVAIARALAMDPEILLLDEVTSALDPEIVADVLDVLREIAETTDITMLLVTHEMQFAREVSDRVLMFDKGQIVEEADPETMFTNPSHERTKEFLKAVLGGPGPT0020790_2770DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
AK018_01189939hypothetical proteinGTGACCGCCGCGACCAGCCCTCCCCCGACCGACGAGCAGACTGCGCGCGTCCCCGCCGACGAGAAGGCTCCCGAGCCCACCACGCTCTCGGTCACCCAGATCGTCGCGAGCGCGCTCGCCGCCGTCAGCACCACCGTCATGCTGTCGTTCTTCGGCATCGCCGGCACCATCATCGGCGCCGGTGTCGCCAGCGTCCTGACGGTCGTGGCGAACTTCCTCTACACCCGCTCGATCGAGAAGACGCACGCCCAGCTCAAGCCCGTCGTCGGCCAGATGGTGCGGCCACGGCCCGGCGCACGTGTGGTGCCCGACGGCGGTACGACCGGCGCGATCCGCGCGGCCGCTGCCGTGCAGGCCGGGGCCGCGGACGGCGAGACCGTCGGCACGGCCGGTGAGCCCGGCTCCGACCGCACGGCTCCCCCGCGCAACACCTGGCTGCGGATGATCGACCGCCACGGCCGGGTCCGCGTCCTCGGCGCCTCGGCGGCCGTGGTGTTCGTGCTGGTGATGGGGGTCGTGCTCGTCGCCGAGCTGGTCCTCGGCAAGCCGCTCGCCGACGCGGTCCAGGGTGTCGACGGGTCCGGGACGAGCCTGAGCCGCACGGTCGAGCGCGACTCCGCCGACGTCGTGGGCTCCGGGAACCGCATCGTGGAGGACGGCGGCTCCGGCAGGACGACCGGCACCGGCGGGTCGTCAGCGGGGACCGGCGACGAGGCCGTCGACTCGACCGACGAGTCCGGCACCGTGCCGGACGAAGGCACCGGCACGACCCCGGAGCCGAGCCCCGTGCCGACGGATCCCACCGAACCGACGGATCCCACCGAGCCGACGGATCCCGCCGAGCCGACCGCTCCGGCGACGCCCGGCGGCGATGAGCCGTCCGTCGGGACCGCCACGGGTTCCGGGGCCCCCGGGTCCTCGGACGACGGCACGAACTAGMTAATSPPPTDEQTARVPADEKAPEPTTLSVTQIVASALAAVSTTVMLSFFGIAGTIIGAGVASVLTVVANFLYTRSIEKTHAQLKPVVGQMVRPRPGARVVPDGGTTGAIRAAAAVQAGAADGETVGTAGEPGSDRTAPPRNTWLRMIDRHGRVRVLGASAAVVFVLVMGVVLVAELVLGKPLADAVQGVDGSGTSLSRTVERDSADVVGSGNRIVEDGGSGRTTGTGGSSAGTGDEAVDSTDESGTVPDEGTGTTPEPSPVPTDPTEPTDPTEPTDPAEPTAPATPGGDEPSVGTATGSGAPGSSDDGTNNANANANANA
AK018_011901287COG1167Putative aminotransferase/MSMEI_6121GTGAGTACCTCACCAGCCGACCATGCCGCCGTCGACCCTGCGCTCGCCGCCCGACTGCCGGAGCTGCGCGAGCAGTACGCCGCCCTGCAGGACCGGGACCTCTCCCTGGACCTGACGCGGGGCAAGCCCTCCGCCGAACAGCTCGATCTGTCCGAGCCGCTGCTGTCGCTGCCCGGAGAGGGCCACCACACCGCGGCCAACGGCACGGACGTGCGCAACTACGGCGGGCTGGACGGCCTGCCCGAGCTGCGCGAGATCTTCGCGGAGCTGCTCGGCGTCCCCACGGACCAGCTGCTCGCCCAGGACAACGCCTCGCTGCGCCTCATGTACGACTGCGTCGTGCAGGCGATGCTGTTCGGCACCCCGGGGGGCGAGGGCCCGTGGTCGCAGCAGGGCGAGATCACCTTCGTCTGCCCCGTGCCCGGCTACGACCGCCACTTCGCGATCTGCGAGGAGCTCGGCATCCGGATGGTGACGGTGCCGATGACGCCGGACGGCCCGGACGCCGAGGCCGTCGCCGAGCTCGTCGCGCACGACCCGACCGTCAAGGGCCTGTGGTGCGTGCCGACCTACGCCAACCCGGACGGCTCGGTGATCTCCGAGGCCGTGGCCCGCCGCCTGGTCTCGATGCCGACCGCCGCGCCGGACTTCCGCATCTTCTGGGACAACGCCTACGCGGTGCACCACCTCACCGAGCACGAGACGAAGTCGGCGAACGCGATCGACCTGGCCGCCGAGGCCGGGAACCCGGACCGTGTGCTGATGTTCGCCTCGACCTCGAAGGTCACGTTCGCCGGCGCCGGGGTGTCGTTCCTGGCGTCCTCGCCGGCCAACATCTCCTGGTTCACGAAGCACCTGTCGTTCCGCGCCATCGGCCCGGACAAGGTCAACCAGCTCCGGCACGCGATGTTCTTCGGCGACGCGGCCGGGGTGCGGGCCCACATGGCCAAGCACCGCGAGATCCTGGCACCGAAGTTCCGTGCGGTCGTCGAGATCCTCGGCGACCGGCTCGCCGACACCGGGGTCGCGACCTGGACCGACCCGGCCGGCGGCTACTTCGTGTCGGTCGACGTCGTGCCGGGGACCGCCTCGCGCGTCGTCCAGCTCGCGGGCGAGGCGGGCATCAAGCTGACCCCGGCCGGGGCGACCTTCCCGTACGGCAAGGACCCGCAGAACGCCAACATCCGGCTGGCGCCGTCCATGCCTCCGCTGGACGAGGTCCGCGTGGCGATGGACGGCGTGGCGACCTGCATCCTGCTCGCCGCCGCGGAGTCCGCCTCCGCCTGAMSTSPADHAAVDPALAARLPELREQYAALQDRDLSLDLTRGKPSAEQLDLSEPLLSLPGEGHHTAANGTDVRNYGGLDGLPELREIFAELLGVPTDQLLAQDNASLRLMYDCVVQAMLFGTPGGEGPWSQQGEITFVCPVPGYDRHFAICEELGIRMVTVPMTPDGPDAEAVAELVAHDPTVKGLWCVPTYANPDGSVISEAVARRLVSMPTAAPDFRIFWDNAYAVHHLTEHETKSANAIDLAAEAGNPDRVLMFASTSKVTFAGAGVSFLASSPANISWFTKHLSFRAIGPDKVNQLRHAMFFGDAAGVRAHMAKHREILAPKFRAVVEILGDRLADTGVATWTDPAGGYFVSVDVVPGTASRVVQLAGEAGIKLTPAGATFPYGKDPQNANIRLAPSMPPLDEVRVAMDGVATCILLAAAESASANANANANANA
AK018_01191828hypothetical proteinGTGACCACGCCGCACGACCCGCAGCCCGCCCGGGAGCTGGAGTCCTGGACCCGGTACCGGCCGACGCCGGTGCTGGACGCGCTGCTGACCAAGGCGGTCACGCTCCCCTCGGCCGCGATCCACCGGCACGTCGCCTCGGTGCGACGGCGCAACCCGGAGGCCGACCCCGCCGGCGTGATCCGGATCCTCGAGAAGGAGTACATCGCACTGGTGTCGACGGCGGGCGGCGCGGTCGGCGCGGCCGCGGCGGCCCCGGCGGTCGGCACGACGGCGGCGGCGGCACTGACCACGAGCGACATCGCGACGTTCTTCGCGTCCTCGGCCGCGTTCTCCCTGGGCGTGGCGAGCGTGCACGGCATCGCGATCGAGGACGTCGCCCGGCGCCGGGCCCTGCTGCTGGCCAGCGTGCTCGGCGAGGCCGGTGCCCGCGACGTCGAGAAGGCGGCGGCCGGGTCCCAGATGGCCTGGGGCAAGGTGCTGCTGACCTCGATGCCGCAGTCCACGCTCCAGCGCGTCAACCGGGTCCTGACGCACCGGTTCCTGCGCCGGCAGGTCGCCAAGCAGGGCTCGCTGGCCCTGGGACGCATGATCCCGTTCGGCGTCGGCGCGGTGGTCGGGTTCGCCGGCGGCCGTGCGCTCGGCCACGGGGTCGTGGCGCAGTCGCGCAGCGCCTTCGGCGTCCCGCCCGGGCACTTCCCGCACCTGATCGAGCAGCCCCCGGCGCCGCTCGTCGAGGAGGCGCAGCCTGCGTCAGGTGGCCGCCGCCGCAGATTTCGGCGCCGGAATCTGGGCGGTCCCGACGACGACGGCGGCAGCCCGGCCGCGTAGMTTPHDPQPARELESWTRYRPTPVLDALLTKAVTLPSAAIHRHVASVRRRNPEADPAGVIRILEKEYIALVSTAGGAVGAAAAAPAVGTTAAAALTTSDIATFFASSAAFSLGVASVHGIAIEDVARRRALLLASVLGEAGARDVEKAAAGSQMAWGKVLLTSMPQSTLQRVNRVLTHRFLRRQVAKQGSLALGRMIPFGVGAVVGFAGGRALGHGVVAQSRSAFGVPPGHFPHLIEQPPAPLVEEAQPASGGRRRRFRRRNLGGPDDDGGSPAANANANANANA
AK018_01192486hypothetical proteinGTGAGCGCGTACCGCGTCGAGGTCGCCCGCATCGTCCCGGTGCCGGCGAGCGTCGCGTTCGCCTGGGTCGCCGACCCGCGCACGCACCCGCGGTTCATCCCCTTGACGCATCTGCGCCCGGAGCCGACGGCGCCCCTCGGCGTCGGCGACGAGTTCACCATGGTCAGCGGCCCCGGCGTCGGGCGGGGCCGGTCCGGCTTCCCGGACCGCATGGTCATCACCGCCGAGGAGCCGCCGTCGTCGCGCGCCGGCACCGTCGGCCGGAGTGCTGTACAGAAGAAGGGCCCGTACCTGTACGGCGACGCGGGCTTCGACGTCGTCCCCGTGGACGCCGACCGCACCCGGATCGTCTGGTGGGAGGAGGCCCGCCTCGCCGGCCCCTGGCCGCGACGGGCGAACGAGATGCTGGTGGGGATCTTCCTGCGCGGGATGATGCACGTCTCCCTGTACCGGCTCGCCCGCGAGCTCTCGCGGCACGGCCGGTAGMSAYRVEVARIVPVPASVAFAWVADPRTHPRFIPLTHLRPEPTAPLGVGDEFTMVSGPGVGRGRSGFPDRMVITAEEPPSSRAGTVGRSAVQKKGPYLYGDAGFDVVPVDADRTRIVWWEEARLAGPWPRRANEMLVGIFLRGMMHVSLYRLARELSRHGRNANANANANA
AK018_01193483hypothetical proteinATGACCGATCAGACTGTCGAGGACGCCCCCGCCGCCGTGACCCCGTCGCCGACCGACCCGCTGTGGGTCGAGCGCACCGGCACCCGCACCTACCGCGGGTTCAGCGCGCGCGGCGCGACCGTGGAGGTCGGCCCGGCGTCCGAGGGCGCCGTGTTCACCCCCGGCGAGCTGCTGAAGATCGCGCTGGCCGCCTGCGCCGGCATGTCGAGCGACACCAAGTTCGCCCGGGTCCTCGGCGACGACTACGAGACCACGATCCGGGTCGAGGACCCCAAGGACATGGACGACGACCGCTACCCGGTGCTGTCCGAGACCTTCGAGATCGACCTGTCCGGTCTCGACGAGAAGACCCGCGCCAAGACGCTGCTGCTCGCCCAGCGCTCCATCGACCGGGCCTGCACCGTGGGCCGCACCCTCAAGGTCGGCGCCGAGGTGCCGGACGCGGAGTTCGTCCCGCCCCGGGACCGGTCCGAGGACTCGTGAMTDQTVEDAPAAVTPSPTDPLWVERTGTRTYRGFSARGATVEVGPASEGAVFTPGELLKIALAACAGMSSDTKFARVLGDDYETTIRVEDPKDMDDDRYPVLSETFEIDLSGLDEKTRAKTLLLAQRSIDRACTVGRTLKVGAEVPDAEFVPPRDRSEDSNANANANANA
AK018_01194603hypothetical proteinATGCCGCGTCGCACGCTGCCCGGCCGGGGCCTGGCCACGGGCGGGCTGGCCGGGCTGGTCTCGGTGCTGATCGTGCTGCTGGTCCTGGCGCGGATCGGGCGTCGGCTGGACGAGCCGCGCGTGTGGCTGTGGCTCGCCGTGTTCGCCGTCGTCGCGGTGCTGGGCGTGCTGGCCTGGTTCGGGTTCGTCGCGGCGCGCGTGCGGGGTCAGGTGCGGCACGTCGCGCGGCACCGGCCCGGTGCACCGCTGGTCGTGGGGCGTCCGACGACGGCGCTGACGGCCGAGGCGCGGTCGTTGCGGGCGGGCACGCGCGGCCTGCCGCCCGACTGTCCGGACCGCGAGCACGTCGTCTACGCGTTCCTGCCGGACCGCGTCGAGCTGTGGGTGCGCGGGGACGACTCACCGCGCTGGTGGGTGACGCTGCCGGCGCCGGTCGCCACCGGCACCGTCCGGCCCGGGCGGCGCGAGCTGGCCACCCTGACCGTGCGCGACGCCGCCGCCCGGCTGCAGCTGGTGCCGACGTCGCACGAGGCGCGGGCGTGGCCGACGGCGGCGCACCGTGAGGCCGCCGTCGTGCGCACGCAGGAGCTGCTCGCGCGCTGAMPRRTLPGRGLATGGLAGLVSVLIVLLVLARIGRRLDEPRVWLWLAVFAVVAVLGVLAWFGFVAARVRGQVRHVARHRPGAPLVVGRPTTALTAEARSLRAGTRGLPPDCPDREHVVYAFLPDRVELWVRGDDSPRWWVTLPAPVATGTVRPGRRELATLTVRDAAARLQLVPTSHEARAWPTAAHREAAVVRTQELLARNANANANANA
AK018_01195816thyA_1COG0207Thymidylate synthase ThyAATGAGCGCAGCACCGGCGTCGATCCCCACCCCCTACGAGGACCTCCTGCGCGACGTCCTCGCGACCGGCACACCCAAGGGCGACCGCACCGGGACCGGGACCCGCAGCGTGTTCGGGCGTCAGCTCCGCTACGACCTGTCCGCCGGGTTCCCGCTGATCACCACCAAGCGGGTGCACCTGCGCTCGATCGCCTACGAGCTGCTGTGGTTCCTGCGGGGCGAGAGCAACGTGCGCTGGCTGCAGGAGCGCGGCGTGACCATCTGGGACGAGTGGGCCGACGCCGACGGCGAGCTCGGTCCCGTCTACGGCGTGCAGTGGCGCTCCTGGCCGACGCCGGACGGGCGCCATCTCGACCAGATCGCGGCCGTCGTCGAGCAGATCCGCACGAACCCGGACTCGCGCCGGCACCTCGTCACCGCGTGGAACCCGGCCGAGGTCGACCAGATGGCGCTGCCGCCGTGCCACGTGATGTTCCAGTTCTACGTCGCCGACGGGCGGCTGAGCTGCCAGCTCTACCAGCGCTCGGCGGACCTGTTCCTCGGGGTCCCGTTCAACATCGCCTCGTACGCGCTGCTGACCCACATGGTCGCCGCGCAGACCGGTCTCGAGGTCGGCGACTTCGTGTGGACCGGCGGCGACTGCCACATCTACGACAACCACGTCGAGCAGGTCGAGCGCCAGCTCGCCCGGGACCCGTACCCGTACCCGACGCTGCGGCTCGCACCGCGTGACTCGATCTTCGACTACACCTTCGAGGACATCGAGGTCCTCGGGTACGAGCACCACCCGGGCATCAAGGCGCCCGTCGCGGTCTGAMSAAPASIPTPYEDLLRDVLATGTPKGDRTGTGTRSVFGRQLRYDLSAGFPLITTKRVHLRSIAYELLWFLRGESNVRWLQERGVTIWDEWADADGELGPVYGVQWRSWPTPDGRHLDQIAAVVEQIRTNPDSRRHLVTAWNPAEVDQMALPPCHVMFQFYVADGRLSCQLYQRSADLFLGVPFNIASYALLTHMVAAQTGLEVGDFVWTGGDCHIYDNHVEQVERQLARDPYPYPTLRLAPRDSIFDYTFEDIEVLGYEHHPGIKAPVAVPGPT0008145_2443DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0008145-thyA-K00560NANA
AK018_01196555folA_1COG0262Dihydrofolate reductaseATGATCGGACTGATCTGGGCCCAGGCCCGTGACGCCGCCGGCCGGGCCGTCATCGGGGCCGACGGCGGCATCCCGTGGCACGTGCCCGAGGACTTCGCGCACTTCCAGCGCACGACGGCGGGTCATCCCGTCGTCATGGGCCGGCGCACCTGGGAGTCGCTGCCGGGGCGGGTGCGGCCCCTGCCGCGCCGGACCAACGTCGTCGTCACCCGCGGGCCGGCCGACGACGTCCGGGCGCTCGCCGTCGCCGAGCGGCGCGAGAGCCTCCGCGTGGCCGGCTCGGTCGCGACGGCGCTCGCCGCGGCGGCCGAGGCTCCCGGCGGGGACGAGGTGTGGGTGATGGGCGGGTCGCGCGTCTACGCCGACGCGCTGCCGCTGGCCGACCGGCTCGTCGTCACCGAGATCGACCTGGAGGTCGCCGGGGACGCGTTCGCGCCCGCCGTCGACGCCGCGGAGTGGCAGCCGGCCGGAGCCGACGACGGCGGTTGGGTGCCGTCGTCGGGCCCGGACGGCCTGCGCTTCCGCATCCGGACGTACCGGCGCCGCCCCGTCTGAMIGLIWAQARDAAGRAVIGADGGIPWHVPEDFAHFQRTTAGHPVVMGRRTWESLPGRVRPLPRRTNVVVTRGPADDVRALAVAERRESLRVAGSVATALAAAAEAPGGDEVWVMGGSRVYADALPLADRLVVTEIDLEVAGDAFAPAVDAAEWQPAGADDGGWVPSSGPDGLRFRIRTYRRRPVPGPT0007945_919DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287NANA
AK018_011971314hypothetical proteinGTGCAGATCACCGACACCGATCCCGCCGTCGCCGACGGTGCGCACGAGACCGCGACGCTCGAGACCGCGACGCTCCAGGGCGCGATCGACGCGGCCGCGCAGGCCGGCGGCGGCACCGTCGTCGTCACCGCCGGCGTGCACCGCACCGGTGCGCTGCGCCTGCGCTCGCACGTCGAGCTGCACCTCGAGGCCGGCGCGCGGCTCCGGTTCGTCCCGGACCCGGCGCTCTACCCGCCGGTGGAGGCCCGCTGGGAGGGCGCGCCGGCGACGATCCACCAGCCGTGCCTGTACGCGGTCGACGAGACCGACGTCGCCGTCACGGGCTTCGGCACGATCGAGGGGCAGGGCGGGCCGTGGTGGGACGTCTTCCGCCACCGGCGCGACGAGCTGGCGCACCCACGTCCCACCCTGATCGGCCTGCACCGGTGCGAACGGGTGACGCTGCGGGACGTCACCCTGCGGGACTCGCCGTCCTGGACGGTGCACCCGCTGCTGTGCGACGGGGTCACCGTCAGCAACGTCCGGATCGTCAACCCGCCGGACTCGCCGAACACCGACGGGATCGACCCCGAGTCCAGCCGCAACGTGCACATCAGCGACTGCCACATCGACGTCGGCGACGACTGCATCGCCGTCAAGGCGGGGACCGAACGCTCCCCGGACCGCGTGCCGTGCGAGAACATCACCATCACCAACTGCACGATGGTGCACGGGCACGGTGGCGTGGTCCTCGGCTCGGAGATGAGCGGGGGTGTCCGCGACGTCGTCATCAGCAACTGCGTCTTCGAGGGTACCGACCGGGGGATCCGGCTCAAGGCGCGCCGCGGACGCGGTGGCGTGGTGGAGGACGTCCGGGTGTCCAACGTCGTGATGCGCGGCGTCATGTGCCCCGTCGTGATCAACCCCTTCTACTTCTGCGGCCCGGGTGGTGCGGCACCGCAGGTCGCCGACCGGTCGCCGCACCCGGTCGACGCGACGACGCCGGTCTTCCGGCGCATCCACATCGCCCACGTCACGGCCCGGGACGTCCACGGTGCGGCCGGCTTCCTGTACGGGCTGCCGGAGCAGCCGTTGGCCGAGCTCACCCTCGACGACGTGTCCGTGTCCTTCGCGGCCGACGCCGTGGGCGGGGTCCCGGCCATGGCCGACGGTGTCGAGCCGATGACCCGTGCCGGGTTCCACGTCGGTTTCCTCGCCGACAGCGACTTCACCCGCGTCCGGGTGACCGGGTGCGACGGGCCGGCGGTGCGGGCCGAGTCCTGCGACGCGCCCCCGGTGCGGGAGATGACCGAGCAGGGCCACGGCCGCGACTGAMQITDTDPAVADGAHETATLETATLQGAIDAAAQAGGGTVVVTAGVHRTGALRLRSHVELHLEAGARLRFVPDPALYPPVEARWEGAPATIHQPCLYAVDETDVAVTGFGTIEGQGGPWWDVFRHRRDELAHPRPTLIGLHRCERVTLRDVTLRDSPSWTVHPLLCDGVTVSNVRIVNPPDSPNTDGIDPESSRNVHISDCHIDVGDDCIAVKAGTERSPDRVPCENITITNCTMVHGHGGVVLGSEMSGGVRDVVISNCVFEGTDRGIRLKARRGRGGVVEDVRVSNVVMRGVMCPVVINPFYFCGPGGAAPQVADRSPHPVDATTPVFRRIHIAHVTARDVHGAAGFLYGLPEQPLAELTLDDVSVSFAADAVGGVPAMADGVEPMTRAGFHVGFLADSDFTRVRVTGCDGPAVRAESCDAPPVREMTEQGHGRDNANANANANA
AK018_011981356hypothetical proteinATGAGCGGCACCGGTCTGTACCGCGAGGCGGCGGCCCGGGACATCGCGCTGCACACCGTCCAGGCGCTGCGGGGGGACGACCTCGCCGTCGACCTCGCCTGCGCGCCGGTGACCGTCGACACCCCGCGGCGGATGTACTCGGTGGCCAAGACGGTCACCGGGCTCGCGGTCGGCCTCCTCGCGGCCGAGGGTCGCCTCGACCTCGACGACGCGGTGCTGCGGCACTTCCCGGAGATGGCGCCCGTGCACCCCTGGGTCGAGGAGACGACGCTGCGCGACGTGCTGGCGATGCGCGGACCCCACCGCGCCACCACGTACCAGCGGTCCGCGGGGCCCTGGGTCGAGTCGTACTTCCGGGTGCCGCCGACCCACCGGCCCGGCACGGTGTTCACCTACGACACCAGCGGGTCGCACGTCCTGGCCGCCCTCGTCGAACGGACCGCGGGGACGTCCCTGGTCGAGTACCTGCGACCGCGGCTGCTCGACCCCCTCCGCGTGAGCGGTGCGTTCCGGTTCCTCACCGACCCGCAGGGCGTCGCCCAGGGCGGGTCCGGGCTCGTGTGCACCGCGGCGGACCTGCTGCGCCTGGCGCGGCTGCTGCGCGACGGCGGCACGCACGCCGGGACGGAGATCCTGCCCCCGGAGCTCCTGCGGCAGGCGACCACCTGGCACACCGACACGACCGTCCAGCCGTGGGGCGACCAGCTGCGCGGCGGCTACGGGCTGCAGCTGTGGCTGCCCCGGGCCGGAGGCGCGCTGATGTTCGGCATGGGCGGCCAGCTCGCCCTGGCCGACCCGGCGCGCGACCTGGCGATGGTCGTCACCGCCGACTCCCAGGCGTGCCCCGACGGGGACCGGTGGTTGATCGACCGGGTCCTCGGGTCACTCGACCACCTCGGCGACCTCGGCGACCTCGACGCGTCCGGGGCCGGCCCGCTGTCGTGGCCCGCTCCGCGGCACGAGGACGCGCACGCCCGGGCGGTCTCCGGCTGCTGGGAGATCGAGCCGCCGGAGGCGCCTCCCGTGCGGCTCGAGCTGGACGTCGACGCCGCCGGCGGCCGGCTGCGCTGGGTGACCGCCACCGCGGACACCGAGCTGTCCCTCCGCTGCGACGGCCCGGTCACCTCGGGACCGCGGCACCCCGCGCGCACCGGCCTGTCCGCGGCGACGGCGGGCTGGTCGGCACCCGGGACGCTCGACGTCCGCCTCGCCGTCGTCGGCGACGAGGTGGCGACCGTGGCTCTCCGGGTCGTCGTCGCCGACGACGGGACGCCGACCGTGCAGTCCCAGGGCTTCGGCGAGGCGGTCGACCCGTCCTGGACGGTGGTCGCGACCGGACGCCCGGTCAGCGCCTGAMSGTGLYREAAARDIALHTVQALRGDDLAVDLACAPVTVDTPRRMYSVAKTVTGLAVGLLAAEGRLDLDDAVLRHFPEMAPVHPWVEETTLRDVLAMRGPHRATTYQRSAGPWVESYFRVPPTHRPGTVFTYDTSGSHVLAALVERTAGTSLVEYLRPRLLDPLRVSGAFRFLTDPQGVAQGGSGLVCTAADLLRLARLLRDGGTHAGTEILPPELLRQATTWHTDTTVQPWGDQLRGGYGLQLWLPRAGGALMFGMGGQLALADPARDLAMVVTADSQACPDGDRWLIDRVLGSLDHLGDLGDLDASGAGPLSWPAPRHEDAHARAVSGCWEIEPPEAPPVRLELDVDAAGGRLRWVTATADTELSLRCDGPVTSGPRHPARTGLSAATAGWSAPGTLDVRLAVVGDEVATVALRVVVADDGTPTVQSQGFGEAVDPSWTVVATGRPVSANANANANANA
AK018_011992406hypothetical proteinATGGCTCTCAACGTCGAGAACATCACGCCCGGCCGGCGGGACAGCGCTTCCCCGTCCTCGGGAGCGACCTACCGCAACCCCGTGCTCGCCGAGGACTGGCCCGACCCCGACGTGATCCGGGTCGGCGAGGACTACTACCTGGTCGCCTCGAGCTTCCACCGCAGCCCAGGGCTGCCGGTGCTGCACTCGCGCGACCTGCTCAGCTGGCACCTGCTGACCCACGCGCTGCCTCGCGTCGCCCCGGACTCCTCCGGCGAGCTGCCGCGGCACGGGGCCGGCGTGTGGGCGCCGTCGGTCCGCCACCACGACGGGCGGTTCCACATCGTCTACCCGGACCCGGACCGCGGGATCTTCGTCACCAGCGCGACCGACCCGGCCGGACCCTGGTCGCCGCCCCGCCTGCTGCTGGGCGGACTGGGCCTCGTCGACCCGTGCCCCCTGTGGGCGGCCGACGGCCGCACCTGGCTCGTGCACGGCTGGGCGCGCAGCCGCGCCGGCGTGCAGAACCGGCTGACGATGATCGAGGTCGACGCCGCGTTGACGCGGCCGCTCGGCCCGGGGACCGTCGTCGTCGACGCCGAGGAGATCGACGGCTGGGAGGACCTCGAGGGCCCCGCGCTCTACGAGCGCGACGGCTGGTACTGGATCTTCGCCCCGGCCGCGGGCGCCGCCGGCGGTGTCCGGACCGTGCTGCGCGCCCGCGACCCGCTCGGTCCCTACGAGCACCGGGTCGTGCTCGCCCCGGGCGACACCCCCGTCCACGGTCCGCACCGGGGCGTCTGGGTCGACACCCCCGACGGTGACGACTTCTTCGTGCACGCCGCCGACGCCGACGCCTTCGGCCAGGTCCTGCACGTGCAGCCGATGACCTGGCGCGACGGCTGGCCCGTCCTGGGCGACCCCGTGCCGGGCCAGACGTGGGGGCAGCCGGTGGCCGAGCACCCCACGCCGCACGGCACCGCGGCGGGTGCCCGGTCGCTGCTGGCCGCGGACGACTTCCGCGGACCGCTCGACCCCCGCTGGCGCTGGCAGGCCGACGCCGGGTCGTGGGCCGAGGCCTCCGGGGGCCGGCTGCGGATGCTGGGTCCGGCGGCCGACGCCGGCAACCTGCGGACCCTGCCCAGCGTCCTCGGCCAGCCGCTGCCCGCGCTGGGCGTGCACCTGTCCACGACGGTGCGCCTCGACGGGCCGACGGCGTCCCGCGCCGGGCTCGGGGTGCTCGGCCTGGACTACGGCTGGATCGGGCTGGTGCGCACCGAGGCCGGGTGCGACCTCGTCGTGGCCACCCGCGGCGAGGGCGATCGCGACGAGCGTCGGGTCGTGCTCGACCGGCTGCCGGCGCAGGGCGAGGTCGCGGTCGGCCTCGACGTGGACTCGGCCGCCCGGGTGCGGTTCCGGGTCCGCCGCGACGCCGGGTGGGAGCACGTCGGACCGGAGACGACCGCGACCCGCGGCCGCGGGGTCGGGGCCGAGCTGGTGGTCTTCGCCGGTGCCCCGCTCGGCGCCGTGCCCGCGACCGGTCGCTTCGGCGCGCTCGAGGCCCGCCTCGACCAGGGCGTGCCGATGCTCGCGACCGGGCGGACCCCGGGGACAGCATTGCGGCTGCGCGCGGGAGCCGAGCCCGTCGCGACGCTCGACGACGGGCGCTCGATGCGCACCGTGGACGCCCCGCGGCCGTTCCTGCACCCGGTGCGCACCACGGCGGGCGTGCCGGTCACCGAGGTGGCGCCCACCGACCACCTGCACCATCACGGCGTCTCGATGGCGCCCGCCGACGTCGACGGGGTCACCTTCTGGGGTGGTCGCACCTACGTGCGCGACCAGGGGTCGACGATGCTGGCCAACCAGGGCCGCCAGACGGTGCTCGACCAGGTCGCGGACGACGACCGGTGGTCCGGCACGATCGCCTGGACGGATCCCGCGGGGCGGGAGATGGCCTGCGAGCAGCGCCTCGTCGTCGCCGAACCGCTCCCCGGCCACGACGACGCCTGGCGGCTGCGCTGGCGCTCGACCCTGACGCCCACCGAGCGGGTCAGCATCGGTAGCCCGGCCACCAACGGGCGCCCCGGGGCCTTCTACGGGGGCTGGTTCTGGCGCACCCCGTTCGGCGATCCGCAGGTGCTCGTCGCGGACGGCGAGGGCCTGGACGCCGCGCACGGGGGCGCCTCGCCCTGGCTCGCGCTGTGCGACGACACGGCGAGCCTGGTGGCCGTCCAGCGCGGGCCGGTGCTGCCGTGGTTCGTGCGCACCGGCAAGTACACCGGGTTCGGCCCGGCGCTCGCGGTGGACCGCCGCCTCGAGATCACCCCGGAGCGGCCCCTGGAGGTCGCCGTCGACGTGGTCGTGCTGGACGGCCCGGCCGACCGCGCGCGCGTGCTCGCCCTGGTCGACGCGATCGGCGACTGAMALNVENITPGRRDSASPSSGATYRNPVLAEDWPDPDVIRVGEDYYLVASSFHRSPGLPVLHSRDLLSWHLLTHALPRVAPDSSGELPRHGAGVWAPSVRHHDGRFHIVYPDPDRGIFVTSATDPAGPWSPPRLLLGGLGLVDPCPLWAADGRTWLVHGWARSRAGVQNRLTMIEVDAALTRPLGPGTVVVDAEEIDGWEDLEGPALYERDGWYWIFAPAAGAAGGVRTVLRARDPLGPYEHRVVLAPGDTPVHGPHRGVWVDTPDGDDFFVHAADADAFGQVLHVQPMTWRDGWPVLGDPVPGQTWGQPVAEHPTPHGTAAGARSLLAADDFRGPLDPRWRWQADAGSWAEASGGRLRMLGPAADAGNLRTLPSVLGQPLPALGVHLSTTVRLDGPTASRAGLGVLGLDYGWIGLVRTEAGCDLVVATRGEGDRDERRVVLDRLPAQGEVAVGLDVDSAARVRFRVRRDAGWEHVGPETTATRGRGVGAELVVFAGAPLGAVPATGRFGALEARLDQGVPMLATGRTPGTALRLRAGAEPVATLDDGRSMRTVDAPRPFLHPVRTTAGVPVTEVAPTDHLHHHGVSMAPADVDGVTFWGGRTYVRDQGSTMLANQGRQTVLDQVADDDRWSGTIAWTDPAGREMACEQRLVVAEPLPGHDDAWRLRWRSTLTPTERVSIGSPATNGRPGAFYGGWFWRTPFGDPQVLVADGEGLDAAHGGASPWLALCDDTASLVAVQRGPVLPWFVRTGKYTGFGPALAVDRRLEITPERPLEVAVDVVVLDGPADRARVLALVDAIGDNANANANANA
AK018_012001509xylB_1COG1070Xylulose kinaseATGCCCCTCGTGGCCGGCGTGGACACCTCCACGCAGTCCTGCAAGATCGTCGTGCGCGACGCCGACACCGGCGCCCTGGTGCGCAGCGGCTCCGCCAAGCACCCCGACGGCACCGCGATCCACCCCGACCACTGGTGGGACGCCTTCCGCGCTGCCGCTCGCGAGGCCGGCGGGCTCGACGACGTCGCCGCGCTCGCCGTCGGCGGCCAGCAGCACGGTCTGGTCGCCCTCGACGCCGAGGGGCGCGTGATCCGCGACGCGATCCTGTGGAACGACACCCGCTCCGCCCAGGCCGCCGAGGACCTGATCCACGAGCTCGGCGACGGCGACCGCGAGACAGGTGCCCAGCGCTGGGCCGACGTCACCGGTTCCGTCCTCGTCGCCTCCCTGACGATCACCAAGCTGCGCTGGCTGCGCGACGCCGAGCCCGACCACGCCGCCCGCGTCGCCGCCGTCGCGCTCCCCCACGACTGGCTGAGCTGGCGCATCGCCGGCTACGGCCCCGCCGACGAGTCCGCGCTCGGGCCGGACCTCGACGCCCTGGTCACCGACCGCTCCGACGCGTCGGGCACCGGGTACTACGACGCCGAGGCGCCCGGGGACGACGGCGGTCGCGTCTCCGGAGCCACCGGCGCCTACCGCCGCGACCTGCTGCGGCTCGGTCTCGGCCGCGACGACGTCACGCTCCCCCGTGTCCTCGCCCCGGCGGAGCCCGGCGGCGTCGCCCACCCGTCGGTCGCCGGGGGCGCCGTGGACGGCGGCGCGCTGCTCGGCCCCGGCACGGGCGACAACGCGGGTGCCGCCCTGGGCCTGGGGATGCAGCCGGGCGACATCGCGATCTCGCTCGGCACCTCCGGCGTCGTCTCCGCCGTCGCTCCGCGGCGCACCGCGGACGGCTCCGGCGCGATCAACGGCTTCGCCGACGCCACCGGCAACGCCCTCATGCTGGCCGTGACGCTCAACGCGGCGCGCGTGCTCGACGCCGCCCGCAGCGTGCTGGGAGCGAGCTTCGACGAGCTCGCGGACCTGGCGCTCGCCGCGCCGCCCGGGTCGGACGGCCTGGTGCTGGTGCCCTACCTCGAGGGCGAGCGCACCCCCAACCGCCCCGACGCCACCGGGACGCTGCACGGCATCCGCCTGGCGACCTCCACGCGCGAGCACCTCGCCCGCGCCTACACCGAGGGCATGCTGTGCGGGCTCGCCGACGGCCTGGACGCGCTCCGCGCCCAGGAGGTGCCGGTCGAGCGGGTGCTGCTCATCGGCGGGGCCGCCCAGTCCCCCGCCGTCCAGCAGGTCGCGACGCAGGTCTTCGGCCTGCCGATCTCGGTCCCGGAACCCGGCGAGTACGTGGCCGACGGCGCGGCTCGCCAGGCCGCCTGGGTGCTGGCGGCCGCGGCCTCACCGGGCGCCGAGGCCCCGGCGTGGTCCGCCGCCGTGTCCCTGACGCTGGACGCCGACCCGCGCCCGGTCGTCCGCGAGCAGTACGCCGCGGTCCGCGACCTGGCCTGAMPLVAGVDTSTQSCKIVVRDADTGALVRSGSAKHPDGTAIHPDHWWDAFRAAAREAGGLDDVAALAVGGQQHGLVALDAEGRVIRDAILWNDTRSAQAAEDLIHELGDGDRETGAQRWADVTGSVLVASLTITKLRWLRDAEPDHAARVAAVALPHDWLSWRIAGYGPADESALGPDLDALVTDRSDASGTGYYDAEAPGDDGGRVSGATGAYRRDLLRLGLGRDDVTLPRVLAPAEPGGVAHPSVAGGAVDGGALLGPGTGDNAGAALGLGMQPGDIAISLGTSGVVSAVAPRRTADGSGAINGFADATGNALMLAVTLNAARVLDAARSVLGASFDELADLALAAPPGSDGLVLVPYLEGERTPNRPDATGTLHGIRLATSTREHLARAYTEGMLCGLADGLDALRAQEVPVERVLLIGGAAQSPAVQQVATQVFGLPISVPEPGEYVADGAARQAAWVLAAAASPGAEAPAWSAAVSLTLDADPRPVVREQYAAVRDLAPGPT0017535_1630DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017535-xylB-K00854NANA
AK018_012011164xylA_1Xylose isomeraseGTGAGCGACATCAAGTACTCCTTCGGCCTGTGGACCGTCGGCTGGCCCGCGAACGACCCGTTCGGCAGCGCGACCCGCCCGGACCTGGACCCGGCCGAGTCGGTCCGCAAGCTCGCCGACCTCGGCGCCTGGGGCTTCACCTACCACGACAACGACGTGTTCCCCTTCGGCGCCTCGGAGTCCGAGCGCCAGGCCGGCATCGACGCCGTCAAGAAGGCGGCCCAGGAGTCGGGCCTCGTCTGCGAGATGGTCACCACCAACACGTTCGGCCACCCGATCTTCAAGGACGGCGCGTTCACGTCGAACAACCGCGACGTGCGCCGCTTCGGCCTGAAGAAGGTGCTGCACAGCGTCGACAACGCCGCCGAGATGGGCGCGTCCACGTTCGTCATGTGGGGCGGCCGCGAGGGCACCGAGTACGACAACTCCAAGGATCTGCACGCCGCGCACGCCCGGTACGCCGAGGGCATCGACACCGTCGCCGCGTACATCAAGGCGAAGGGCTACGACCTGCGCATCGGCCTCGAGCCGAAGCCGAACGAGCCCCGCGGCGACATCTTCCTGCCGACCATCGGCCACGCCATCGCGCTGATCGACACGCTCGACAACGGCGACATCGTGGGCCTCAACCCGGAGACCGGGCACGAGCAGATGGCGGGCCTCAACTACACGCACGGCCTGGCGCTGGCGCTGTACTGCGGCAAGCTGTTCCACATCGACCTCAACGGTCAGCACGGCCCCAAGTACGACCAGGACCTCGTGTTCGGCCACGGCGACCTGCTCAACGCGTTCTTCACCGTGGACCTGCTGGAGAACGGGTTCCCGAACGGCGGGCCGCGCTACGAGGGCCCCCGCCACTTCGACTACAAGCCCTCGCGCACCGAGTACCTCGACGGCGTGTGGGAGTCGGCGAAGGCGAACATGGAGACCTACGACATGCTCGCCGCCAAGGCGAAGGCCTACCGCGGGGACCCGGAGGTCCAGGCGGCGTTCGAGCACGCCGGGATCTTCGACCTCGGCGCGTCCACGCTGGCCGAGGGCGAGTCGTTCGACGCGTTCATGGCCGACGCCTCGGTCGAGGGGATCGACGTCGACGCCACCGCCGAGAAGGACTACGGGCTGGTCAAGCTGCACCAGCTCGCGCTGAAGCACCTCATCGGCTGAMSDIKYSFGLWTVGWPANDPFGSATRPDLDPAESVRKLADLGAWGFTYHDNDVFPFGASESERQAGIDAVKKAAQESGLVCEMVTTNTFGHPIFKDGAFTSNNRDVRRFGLKKVLHSVDNAAEMGASTFVMWGGREGTEYDNSKDLHAAHARYAEGIDTVAAYIKAKGYDLRIGLEPKPNEPRGDIFLPTIGHAIALIDTLDNGDIVGLNPETGHEQMAGLNYTHGLALALYCGKLFHIDLNGQHGPKYDQDLVFGHGDLLNAFFTVDLLENGFPNGGPRYEGPRHFDYKPSRTEYLDGVWESAKANMETYDMLAAKAKAYRGDPEVQAAFEHAGIFDLGASTLAEGESFDAFMADASVEGIDVDATAEKDYGLVKLHQLALKHLIGPGPT0017550_1762DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017550-xylA-K01805NANA
AK018_012021275mlc_1COG1940Protein mlcGTGGGCTACAGTCAAGGCGTGACCGCCGAACCGACGACGACGCAGCGCACCACCGGCGTGTCCGCGGGCGCCGGGGGACGAGCGTCGCGCCAGCACACCCTGCGCGAACGCAACCTGCGCCTCGTCGCGCGGGCGGTCTACGACGCCGCGGCCGCCTCCGGGGAGCGTCCCGACGCCGTCCCACCGTCCCGCGCGGACGTCGCCGCCGCCACCGGGCTGACCCGGGCGACGGTGTCCACGCTGGTCGACCGGCTCATCGCCGCACGCCTCGTCGCCGAGCTGCCGCCCGTCCCCGCCCAGCGCGCCGGCCGCCCGGCAGTGCCGCTGGTCCCCGCCCCGCGGACCGTCGTCGGCCTCGGGCTCGAGGTCAACGTCGACTACCTCGGCGTGCGCGGCCTCGACCTCGCGGGCGACGTCGTCGTCGAGCACGTCGAGGCCGGCAGCTTCCACGACTCCGACCCCTCCGCCGTGCTGGCCCGGCTCGGAGCGCTCGCGTCCGACGTCGTCGCCCGCCTGGACGCCGACGGCATGCGGGTCGCCGGCGCCCGGCTCGCCCTGCCCGGACTCGTCGACGCCCGCACCGGTGAGCTGGAGGTCGCGCCCAACCTGGGCTGGTCGTCCCTCGACCCCGTCGCGCTGCTCGGGCTGACCGGCGTCGCGGTCCAGGTCGCCAACGAGGCCAAGCTCGCGGCGCTGGCCGAGCTCGCCGGCGACACCCCCGACTCCTTCCTCTACGTCTCCGGGGACGTCGGCATCGGCGCCGGCATCGTCGTCGACCGGGCCCTGTTCCTCGCCGAGCGCGGGTGGAACGGCGAGGTCGGGCACGTCGTCGTCGACCCCGCCGGGCCGCGCTGCACCTGCGGCGCGCACGGCTGCCTCGAGCAGTACGCGGGCAAGGAGGCGATCCTGCGGGCCGCCGGGTTGGCGGGCGACGCGCCGCTGGGCGAGCTCGTCGGGCTGCTGCGGTCCGACGACGGTGCACCGGCCGAGCAGGCATGTGCCGCCGTCGTGCGGGCCGGGCAGGCGCTCGGCTCGGCGCTCGCGGACTTCGTGAACCTCACCGGCGTCTCGACCGTGGTGCTCGGCGGCGTGTACACGGACCTGGAGCCCTGGCTGCGGGAGCCGGTCGAGGCGGGACTGGCCGAGCGCGTGCTCGCGGCGCCGTTCGCGCGGGTCTCGGTCATGTCCGCTCGGGCCGGCGTCCATGCGGCGCTGACCGGGGGAGCGCGCGAGGTGCTGCGCGAGGTCGTGGCCGACCCGGCCGCGTGGAGCTGAMGYSQGVTAEPTTTQRTTGVSAGAGGRASRQHTLRERNLRLVARAVYDAAAASGERPDAVPPSRADVAAATGLTRATVSTLVDRLIAARLVAELPPVPAQRAGRPAVPLVPAPRTVVGLGLEVNVDYLGVRGLDLAGDVVVEHVEAGSFHDSDPSAVLARLGALASDVVARLDADGMRVAGARLALPGLVDARTGELEVAPNLGWSSLDPVALLGLTGVAVQVANEAKLAALAELAGDTPDSFLYVSGDVGIGAGIVVDRALFLAERGWNGEVGHVVVDPAGPRCTCGAHGCLEQYAGKEAILRAAGLAGDAPLGELVGLLRSDDGAPAEQACAAVVRAGQALGSALADFVNLTGVSTVVLGGVYTDLEPWLREPVEAGLAERVLAAPFARVSVMSARAGVHAALTGGAREVLREVVADPAAWSNANANANANA
AK018_012041440hypothetical proteinATGACCCGGCACACCACCTTCCGCTTCAGCCTCGACCCGACGGTCGAGCAGCGAGGTGTGCTCGAACGGCACGCCGGGGCGTCGCGGTTCGCGTTCAACCAGTGCCTGCGGTTCGTGTTCGACGCTCGCCGCGCCCGGGAGCGTGGCGAGGATGTCACGGTCCCCCGCACCGGCTACGACCTCATCACCACGTTCAACGCGTGGAAGAAGTCCGCAGCGGCGGGGCGCGTGTTCAGCGTCGCCCCGGACGGGACCACGCAGGTCACCGACACGGGCCTCGTGTGGCGACGGGAGGTCTACCAGCAGGTCTTCGAGGAGGCCGCCGTGGACCTCGGGCGGGGACTGGCCGCATGGTCGGCCTCCCGGCGGGGCGAACGCGCGGGCCAGAAGGTCGGGCACCCGGGCTTCCGGAAGAAGGCGACGAGCCGGGTGTCCTTCCGCATCCGCAACCAGTTCCCGCGGCGCGGCAAGCCCGCGATCCGGATCGGGGAGACCGCGCCGCGATCGGTCCGCCTGCCCGGAGCCGGGACGCTGCGGGTCCGCGAGGACACGCGTCGCCTGCGGCGCATGCTCGCGAAGGACCGGGCGCGGATCCTCTTCGCCACCGTCTCGCGCGGTCAGGGTCGTTGGTGGGTGTCTCTCAACGTCGAGGCGGCGGACCTGCACCCGGCCCAGCGGCATCCGGACCGGGGAGCCGGTTCGGCGGAGGAGGACTCGCGGTGGGTCGGCGTCGACCTCGGGCTGACCTCCCTGGCAGTTGCGGCCCGCAGCGACGGCACCGAGGTGGACCGCATCGATGCCTGGCCGCGGCTGCTGCGCTCCTCCGCGCGCCGCCGGCGGGCACTACACCGGGCCGTGACCCGCAAGCAGCAGGGCTCCCGCCGTCGTCGTCGGGCTGTCGCTCGGCTCGCCCGCTACTACGCCTGGACGGCGCGTCGGCGCCGTCACCACGCGCACCTGATCTCGAACCGGCTGGTCAAGACCCACGACCGGCTCGTCCTCGAGCATCTCGACGTGCGGGGCATGCTCGCACGCAACCCCACCCTGGCCGAGTCGATCCACGACGTCGGCTGGTACCAGCTCACCCGGCAGATCGCCTACAAGCAGGCGTGGCGCGGTGGGGAGCTGGTCCGGGCCGATCGGTGGTTCCGGTCGTCGCAGACCTGCTCGTCCTGCCGGTCCGTGCAGGACATGGGTGGGGTGGCCGTGCGCCGGTTCGACTGCCGCACGTGCGGGCTGTCCCTGGACCGCGACGTCAACGCCGCGGCCAACCTCGCCGCCTGGGCCGAGCTGCACCACGGTGCAGACGTCTGGGCCCGGGACCTTCCAGCAGAGGGCCCGGTCGTCAACGCCCGCCGACGGGAACGCTCTGGCCGACGCCTCCGCGGCGGCGAAACGGACCCGGAGGACGTGGGAACCGGGGCTCGGGCCTCCGCCTGAMTRHTTFRFSLDPTVEQRGVLERHAGASRFAFNQCLRFVFDARRARERGEDVTVPRTGYDLITTFNAWKKSAAAGRVFSVAPDGTTQVTDTGLVWRREVYQQVFEEAAVDLGRGLAAWSASRRGERAGQKVGHPGFRKKATSRVSFRIRNQFPRRGKPAIRIGETAPRSVRLPGAGTLRVREDTRRLRRMLAKDRARILFATVSRGQGRWWVSLNVEAADLHPAQRHPDRGAGSAEEDSRWVGVDLGLTSLAVAARSDGTEVDRIDAWPRLLRSSARRRRALHRAVTRKQQGSRRRRRAVARLARYYAWTARRRRHHAHLISNRLVKTHDRLVLEHLDVRGMLARNPTLAESIHDVGWYQLTRQIAYKQAWRGGELVRADRWFRSSQTCSSCRSVQDMGGVAVRRFDCRTCGLSLDRDVNAAANLAAWAELHHGADVWARDLPAEGPVVNARRRERSGRRLRGGETDPEDVGTGARASAPGPT0030680_175DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030680-putative_transposase-K07496NANA
AK018_01205582hypothetical proteinGTGCTCTGCCGACCGCAGGCATGCTGCAAAGCTGGTGTGGCGGCCGCGCCGTACCCTGCCCGCATGCCGCTCTCCGACGTCGAACCTCGCCTCGACTCCGCCGACCCTTCCGCCCAGTTCGTGGCCTATCTCGACTACTTCCGGGCCGCCGTCGCGCGGAAGCTCGACGGACTCACCGATGCCCAGCTCTCCACCAGCACCCTGCCGTCCGGGTGGACGCCCGCCGAGCTGCTGGTCCACCTGGTCCACATGGAGCGGCGCTGGTTCGTGTGGGGATTCCTCGGTGAGACGGTCGACGACCCGTGGGGCGACCACAGCGGCGGCGACCCCGAGGGCCCCTGGCAGGTGCCCGACGACGTCACCGCGGCCGCGCTGGTCGACGCCCTGCACACCGGCGGCGAGCGGACCCGCGCGGTGCTGGCCGGGCACGACCTCGCCGAGAGGGCCGCCGTCGGCGGACGCTTCGACGCGGAACCGCCCACTCTGCTGTGGATCTGCTTCCACGTGCTCCAGGAGTACGCCCGCCACGCCGGGCACCTCGACGTCGCGCGCGAGCTGGCCGACGGGTCCACCGGCGAGTAGMLCRPQACCKAGVAAAPYPARMPLSDVEPRLDSADPSAQFVAYLDYFRAAVARKLDGLTDAQLSTSTLPSGWTPAELLVHLVHMERRWFVWGFLGETVDDPWGDHSGGDPEGPWQVPDDVTAAALVDALHTGGERTRAVLAGHDLAERAAVGGRFDAEPPTLLWICFHVLQEYARHAGHLDVARELADGSTGENANANANANA
AK018_012061215entS_2Enterobactin exporter EntSATGCTCGAGGCGATCGTCCCCGCCCGGATGGGACGCTCCTTCCGCTGGCTCATCGCCGCCAGCTGGACGAGCAACATCGGCGACGGCATCGCGCTGGCCGCCGGGCCGCTGCTCGTGGCCTCCCAGACCGACTCGGCGTTCCTGGTGGCGCTCGCCGCGCTCCTGCAGCGTCTGCCGTGGGTGGTCCTCGGCCTGTGGGCCGGCGCCCTGGCCGACCGCCTCGACCGCCGTCGTCTGGTCATCGTGGCCAACGTGCTGCGGACCGTCGTCGTCGCCGTGCTGTGCGCGTTCATCGTCACGGGGAACGTGAACGTCACGGTCGTGCTGGTGGCGATGCTGCTCATGGGTGTCGCCGAGGTCTTCGCCGACACCACCGCGCAGACCCTGCTGCCGATGCTGGTCGCCTCGCGCGATCTCGGCACGGGCAACGCGCGGCTGCAGGCCGGGTTCCTCACCGGCAACCAGCTCGTCGGGCCGCCCGTCGGCGCCGCGCTGTTCGCCGCCGGTGCCGCCTGGCCGTTCCTGGTGCAGGTGCTCTGCCTGGCGCTGGCGATCATGCTGGTGAGCCGGATCGCGCTGCCCACCGTGCCGCGCGCGACGACGGCGGGCACCCGCGGCGAAATCCGCGACGGTCTGCGGTGGCTGTGGCACCACCCGCCGGTGCGGACGCTGGCGCTGGTGATCTTCACGTTCAACCTCACGTGGGCCGCGCCGTGGGGCGTGCTGGTGCTGTACTCCCTCGAGCGCGTCCAGATGGGCCCGGTCGGCTACGGCCTGCTCATCACGTCCTCGGCGGTCGGCGGCATCCTCGCCACGCTGGTCTACGGACGCCTGGAACGCCGGTTCGCGCTGGCGACGCTGATGAAGGTCTGCCTGTCCGCCGAGGTCGCCTTCCACCTGGTGCTCGCCCTGACCACGACCGGCTGGGTCGCCATGCTCGCGCTGTTCGCGTTCGGGCTGTACACGTTCGTCTGGGGCACGGTGTCGAACACGGTGCGCCAGCGGGCCGTACCGACCGAGTACCAGGGCCGCGTCGGGTCCGTGTACCTGCTGGGGCTCTTCGGCGGGATCGTCGTCGGCAACTTCATCGGCGGGCTGCTCGCCGAGTGGTGGGGCATCACGGCGCCGTTCTGGTTCGCGTTCGTCGGCGCCGGGCTGACGCTGGTCCTGGTGTGGCGCCAGCTCGCGCACATCGCGCACACCGGGGCCGCCTGAMLEAIVPARMGRSFRWLIAASWTSNIGDGIALAAGPLLVASQTDSAFLVALAALLQRLPWVVLGLWAGALADRLDRRRLVIVANVLRTVVVAVLCAFIVTGNVNVTVVLVAMLLMGVAEVFADTTAQTLLPMLVASRDLGTGNARLQAGFLTGNQLVGPPVGAALFAAGAAWPFLVQVLCLALAIMLVSRIALPTVPRATTAGTRGEIRDGLRWLWHHPPVRTLALVIFTFNLTWAAPWGVLVLYSLERVQMGPVGYGLLITSSAVGGILATLVYGRLERRFALATLMKVCLSAEVAFHLVLALTTTGWVAMLALFAFGLYTFVWGTVSNTVRQRAVPTEYQGRVGSVYLLGLFGGIVVGNFIGGLLAEWWGITAPFWFAFVGAGLTLVLVWRQLAHIAHTGAANANANANANA
AK018_012074140hypothetical proteinGTGGCCCCGTCCGCGGCCGCGCCGCAGGACGCCACCGGACCGACGGACCGATCGGCGGACGCCGGCTCCCCCCGGGAGCCCGTCGCCGACGAGCAGGCCGAGGACCGGCCGGTCGACCACGAGCAGGCCGACGGTGCGAGCTCCCGCAGCGCGCCCTCGGCCGGTCCCACCACCACGACGCCGCTCGTCGACGCCGTGCGCCGCTGGCGCGCCGGCCTCGTGGAGACCGCCGGTGGTGCCGGGGTCGCCGACGTCGGACTGCTCGGCGAGGCCGTCGTCGACCTCTCCGCCGCCCACCCCTCCGGCGTCGCCCAGCTCTTCGCCGGCCGGGCCACGCGTCTGTCCAACCTCGTGCGCGAGGGCGCCGCGTTCCCCACCGCCCGCCGTCGGGCCCGGGCCGTGATGGTCCGGTCGGCCGAGCACGCCGCCCGGTACGGCATGGCGCCCACCTACCTGGCGATCGGCGTGGCCACCTGGACCGAGGCGGTCGACGCCGACGGCGAGCCCACGGCCGAGCGCCGCGGGAAGCTGACGGCGCTCGCGGACGTCGCGGCGTCGGGAGCCAGCGCGGCGTCCGCGGCGAGCGTCTCCTCGCCTCCGGAGGCCGTGACGACCTCCATCCCCGTGGTCAGCGTCGCGGCGCGCGAGGCCGACGCCCGGCGCGCCCCGGCCCCGGACGAGGCGGGCGGAGGCAGCCGCACCGTGCACGCCCCGGTGCTGCTGCGTCCGGTCATGCTCGCCCCGCGCGGCGAGGGCGAGACCGACTACGAGCTGACCCTGGAACCGACGGTCGAGGTGAACCCGCAGCTCGTCCGCACCCTGCGGGCACGCGGGGCCCGGCTGGACGCGGCCGCGCTGGCGGACGCGACGTTCACGGCGGCGGGGTTCGACCCCGACGACGTCCTGGACCGGATCGCGACGGTCGCCGCGGAGCACCTCGACGACTTCTCCTGGGAGCACCGCGTGCTCGCGGGCACGTTCGTCCACCCGGCGCAGGCGCTCGTGGACGACCTGGACGAGCTCGCCCCGGGCCTGGGCCGCCACGAGCTGGTGGCCGCCCTGGCGGGCGCCGACCCGGCCCGCCGTCGGGTGGCGGGCGTCGAGCTGCCCGCACCGCGGCGCACGGACGCCGACCCGGTGCGCGAGCGCGGCGTCGGCGACCTGGACCCCGACCAGCGCCACGTGGTCGAGGCGGCAGCGACGGGTCACCACCTGTTCGTCGACGCCCCGGTGGGCTCCGACGTCGCCGGGACCCTGGCCGCGGTCGTCGCCGAGGCGGCCGCCGCCGGACGGTCGGTGCTGTACGTCACGGGACACCGGCGTGCCGCCGACAGCCTCGCCCAGCGGCTCGAGGACCTCGGGCTGGGCAACCTCTCGTTGGACGTCACCCCGCGGCCCACCTGGCGCGACGACATGGCCCAGCGGCTGCTCAGCGCGATGGCCACCGAACCCGAGGACGTCGACACCGCCGGTCCTGCTGCGGTCCGCGACGCGCTGATCGGCGCGCGGGCGCAGCTCACCGGCTACATCGACGCGCTGCACGCCCGGCGCGCGCCCTGGGGCGTGTCCGCCTACGACGCGCTGCAGGAGCTGGCCCGCCTGACCTCGGAGCGGCCCTCGCCGTCGACCCGGGTGCGCCTCGACGCGCGCACGGCCCTGAGCCTGGACGAGGCCCGACGACGGCGGCTCGCGGCCGACCTGGAGCGCGCGGCGACGCTGGGCGCCTTCACGCTGCGGCCGTCCGGGACGCCCTGGTTCGGCGCGGACCTGCTGACCACGGACGCCGCGCGCGACGCCCTGGCGCGGGCCCGGCGGCTGAAGGACGCGACCCTGCCGCAGCTGCGCCGGCAGATCGCCTACACCGGCGAGGTCACCGGGCTGGAGGTGCCGCGCACGACCCGCGCGTGGGGCGACCAGCTGCGCATGCTCGCCGGGATGCGCAGCACGCTGGACGTCTTCCACCCGATGGTGTTCGAGCGCACCGCCACGGACCTGGTGCAGGCCACGGCGCCGCGGGCGTGGCGGCGCGAGCAGGGCATCGAGATGGGGTGGTTCACCCGGCGCCGGCTGCGCAAGCGCGCCCGCGACATGGTCCGCCCGGGCGTGCGCGTCACCGACCTGCACGCCGCGCTCGAGGAGGTCGCCGCGCAGCGCGAGCTGTGGGCCGAGCACTCGGCCCGCGGCGGCTGGCCGACCTTGCCCGAGGGGCTGGCGACCATCGAGGACACCTACGAGGCGGTGCGCATCGATCTCACCGCGCTCGAGCCGGTGCTCGCGCCGACCACGCAGGGCGGGCGCCTGCTCGACCTCGACCTGGACGCCCTCGCCGAGCGTCTGCACCAGCTCGTCGGTGACCCGGAGGCCCTGGAGACCCTGCCGGAGCGCACGGCGCTGCTGCGGCGGGCCCGGGAGGCCGGCGTCGGCGAGCTCGTCGACGACCTGACCACGCGGCGCGTGGCGGAGGAGCGGGTCACGGCCGAGCTGGACCTGTCCTGGTGGTCGACCGTGTTCGAGCAGATCCTCGTCGAGGACCCGGTGCTGGCCGGGCAGGACGGGGCCGGTCTCGACGCCCTGGCCCGCCGCTTCCGCGACCTGGACGTGCGGCACCTGGCCGCGCTCTCCCAGCCGGCGCGGGTCGCGGCCCGGGCGCACCTCGGCACGGCGATGCGCGAGGACCGGCAGGGCGCCGAGGACCTGTTCGCCGAGCTCATCGGCGGGCGGATGAGCTCGCTGCGGGACCTGGTCGACCGGTACGGCGACCTGGCGCGACGGCTGCGCCCGGTCGTCCTGGCCACCCCCACGCTGGTGCCGCACCTGCTGCCGGCCCACCGCACGGCGGACCTCGTCGTGGTGGACGCCGTCCAGCACGTGCCCACCGAGGTGGTCCTGCCGGCGCTCGCCCGCGGACGGCAGGTCGTCGTGGTCGGCGACCCGCGCTCGGCCTCGGGCAGCAGCGTGGCCGAGCTGTCGGAGCTGCTGCCCACCCTCACTCTGCAGCCGCGGGAGAACCGCCGCGACCCCGCGCTGACCCGGCTGCTCGCGGCCCACGGCTACGACGGCCTGCTGCGCCCCGCCCCCGTGCCGCGCGCCGAGGAGCTGGTCCGCTTCGACCTCGTCGACGGCAGCGGGATGCCCGACCAGTCCACCGGCGCCGTGCAGAGCACCCGCGCCGAGGTCGACCGGGTGATCGAGGCCTCCATCGAGCACGCGATGACCCGGCCCGAGGAGACGCTCGGCATCGTGACCGTCACCGCCGCGCACGCCGACCGGATCCGCGAGGCGCTGCTGGCCGAGGTGCGCGCCAACCCGGCGCTGGCGCCGTTCTTCTCGGGGCGTCGGCCCGAACCGGTGGTGGTCGCCGACATCACCGGCGTCGCCGGGCTCTCGCGGGACACCATCCTGCTGTCCGTCGGTTTCGGCCGGACGCCGCACGGCCGGGTGCTGCACCGGTTCGGCGTGCTGGGCGACGACGGCGGCGAGGCGATGCTGCTGGGCGCGCTCGGCGCGACGCGCCGTCGGCTGCACGTGGTGAGCTGCTTCGACGCCACGGCGCTCGACCCCGACCGCCTGCGGGGCGCCGGACCGCGGCTGCTGCGCGAGGTGCTGGAGATGGCCGAGCGGCGCTCGGGGGCGGCCGACCAGGTCGAGCTCGGCAACGGCGTCGACGTGGGGCGCGTACCGGACCGGCTGGTGACCGACCTCGGCGAGCGGCTGTGGCGGCTCGGCTACCTGGTCGAGACCGACTACGGCACCGTCGACGGCGAGCACGTCCCGCTGGTCGTGGGGCACCCCGACCTGCCCGGGGAGATGCTGGTCGCGGTGCTCACCGACGACGAGGACTACGTCGCCGAGCCGTCGGTGCGGGTGCGCGACCGCCAGCTCGCACAGCGCCTCGAGCGTCTCGGCTGGACCGTCACGCAGGTCTGGTCCGCGGCGGTGTTCCTCGACCCCGACGGCGAGGCCGACCGGGTGCGGCGACTCGTGCAGCGGGTGCGCGACGACCGTGTCGGCACCCCGGGCGGCGTGCCCGTGCCGCCGCGGGTCGTGGTCCCGGTGCTGGACGAGGACGGCGACCCGGACACCGCGGCGTCCGCGCCGGGCCCGGACGCCGCGGACGAGGACGCGTCGTCGGCGGACTGAMAPSAAAPQDATGPTDRSADAGSPREPVADEQAEDRPVDHEQADGASSRSAPSAGPTTTTPLVDAVRRWRAGLVETAGGAGVADVGLLGEAVVDLSAAHPSGVAQLFAGRATRLSNLVREGAAFPTARRRARAVMVRSAEHAARYGMAPTYLAIGVATWTEAVDADGEPTAERRGKLTALADVAASGASAASAASVSSPPEAVTTSIPVVSVAAREADARRAPAPDEAGGGSRTVHAPVLLRPVMLAPRGEGETDYELTLEPTVEVNPQLVRTLRARGARLDAAALADATFTAAGFDPDDVLDRIATVAAEHLDDFSWEHRVLAGTFVHPAQALVDDLDELAPGLGRHELVAALAGADPARRRVAGVELPAPRRTDADPVRERGVGDLDPDQRHVVEAAATGHHLFVDAPVGSDVAGTLAAVVAEAAAAGRSVLYVTGHRRAADSLAQRLEDLGLGNLSLDVTPRPTWRDDMAQRLLSAMATEPEDVDTAGPAAVRDALIGARAQLTGYIDALHARRAPWGVSAYDALQELARLTSERPSPSTRVRLDARTALSLDEARRRRLAADLERAATLGAFTLRPSGTPWFGADLLTTDAARDALARARRLKDATLPQLRRQIAYTGEVTGLEVPRTTRAWGDQLRMLAGMRSTLDVFHPMVFERTATDLVQATAPRAWRREQGIEMGWFTRRRLRKRARDMVRPGVRVTDLHAALEEVAAQRELWAEHSARGGWPTLPEGLATIEDTYEAVRIDLTALEPVLAPTTQGGRLLDLDLDALAERLHQLVGDPEALETLPERTALLRRAREAGVGELVDDLTTRRVAEERVTAELDLSWWSTVFEQILVEDPVLAGQDGAGLDALARRFRDLDVRHLAALSQPARVAARAHLGTAMREDRQGAEDLFAELIGGRMSSLRDLVDRYGDLARRLRPVVLATPTLVPHLLPAHRTADLVVVDAVQHVPTEVVLPALARGRQVVVVGDPRSASGSSVAELSELLPTLTLQPRENRRDPALTRLLAAHGYDGLLRPAPVPRAEELVRFDLVDGSGMPDQSTGAVQSTRAEVDRVIEASIEHAMTRPEETLGIVTVTAAHADRIREALLAEVRANPALAPFFSGRRPEPVVVADITGVAGLSRDTILLSVGFGRTPHGRVLHRFGVLGDDGGEAMLLGALGATRRRLHVVSCFDATALDPDRLRGAGPRLLREVLEMAERRSGAADQVELGNGVDVGRVPDRLVTDLGERLWRLGYLVETDYGTVDGEHVPLVVGHPDLPGEMLVAVLTDDEDYVAEPSVRVRDRQLAQRLERLGWTVTQVWSAAVFLDPDGEADRVRRLVQRVRDDRVGTPGGVPVPPRVVVPVLDEDGDPDTAASAPGPDAADEDASSADNANANANANA
AK018_01208216hypothetical proteinGTGAGCCCGCACGCCGCCACCCCGGCCCCCGACCCGGACGCCCCGGACCCGCAGCGTCCCGCGCCCGACGCCGACGCCCCGCGGCGCCGGGGTCCCCGTCGGGCCGTGCGCCGCGGGACCGAGCGCGAGACCCACTGGGGGGTCAGCACCGACGAGTCCGGCGGGCACGGCTCCAACGACGAGCGCCTGCGCGGGGACGTCCCCCCGCACTGGTGAMSPHAATPAPDPDAPDPQRPAPDADAPRRRGPRRAVRRGTERETHWGVSTDESGGHGSNDERLRGDVPPHWNANANANANA
AK018_01209393mscL_1COG1970Large-conductance mechanosensitive channelATGCTCACGGGCTTCAAGCAGTTCATCATGCGAGGCAACGTCATCGACCTCGCCGTCGGCATCGTCATCGGCGGCGCGTTCGCCACGGTGATCGCCGGGCTCAACGACGGCCTTCTCCTGCCGCTCATCGCCGCGGTCTTCGGCGAGCCGGACCTGACCCAGGTCGGCACCTTCATGATCAACGGCGCGCAGTTCAGCATCGGCCTCCTCCTCGACGCCGTGCTGAACTTCCTCGTGGTGGCGGCCGGCCTGTACCTCTTCGTCGTGATGCCGATGAACAAGCTCGCCGAGCGCCGGGCCCGCGGGCAGGAGCCGGAGCCCGCGCCGGTGCCGGACCCGGACATCGTGCTGCTCACCGAGATCCGCGACCTGCTCTCCGCACGCCGGCACTGAMLTGFKQFIMRGNVIDLAVGIVIGGAFATVIAGLNDGLLLPLIAAVFGEPDLTQVGTFMINGAQFSIGLLLDAVLNFLVVAAGLYLFVVMPMNKLAERRARGQEPEPAPVPDPDIVLLTEIRDLLSARRHPGPT0013771_55DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013771-mscL-K03282NANA
AK018_01210654hypothetical proteinATGGACCTCTCCGTGCACGGCCGGATCCGCGACCGGCTCCGCCTCGCCGCCTGGCGCTCCCGGTTCGTCGTGGCCGCCGTCTGCTGCGGCCTCGCCGCCTGGACCACGGTCGACGCCGTCCGCCCCGCACCGCCGGTGACCCGCGAGGTCCTGGTCACCGCACGTGCTCTGGACGGCGGCCGGCCCCTCGGGGCCGACGACGTCACCACGGTGCGCGTCGACGCCGGCCTGGCACCGGGTGTCCTGCTGGACGGTGCCGCCGACGTCGCCGGCAGCACCGCGGCCGTGGACCTGCCGGCCGGCACGCCGCTCTCCCCCGCGCTGCTCCGCCGCGGCGGCCCGGCCGCCGCCGCCCCGCCGGGGAGCGTCGTGGTGGCCGTGCGCCTGACCGAGTCCGACTGGCTGCGTCCCGGCGACCGGGTCGACCTCGTCGCCACCGACGACGACGGCACACGGCTGGCCCGTCGCGCCGAGGTCCTGCCGCCGCCCGACGAGGGGGCGGGAGCCGACGACGAGGCCGACGGCGGGCTGCTCGGCTCGGCCACGGGCGGTGCCACGGACCCGGTCACGCTGCTCGCCGTCTCGCCCCAGGAGGCCGCGGCCGTGTCGGCCGCCTCCGGATGGGGAGCGGTCGCCCCGGTCCTGGTGCCGTGAMDLSVHGRIRDRLRLAAWRSRFVVAAVCCGLAAWTTVDAVRPAPPVTREVLVTARALDGGRPLGADDVTTVRVDAGLAPGVLLDGAADVAGSTAAVDLPAGTPLSPALLRRGGPAAAAPPGSVVVAVRLTESDWLRPGDRVDLVATDDDGTRLARRAEVLPPPDEGAGADDEADGGLLGSATGGATDPVTLLAVSPQEAAAVSAASGWGAVAPVLVPPGPT0016005_1656DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279NANA
AK018_01211318hypothetical proteinGTGCCCACGTACGCCTACCGGTGCGCCGACTGCGGCCACGCCTTCGACATCCGTCAGGCGTTCACCGACGACGCGCTCACCGTCTGCCCCGAGTGCGCCGGACGGCTGCGCAAGCAGTACGGCTCCGTCGGTGTGTCGTTCAAGGGGTCCGGCTTCTACCGGAACGACTCGCGGGCGGGTTCCCGCTCGTCCGGCTCCGGCTCGTCGTCCGGCGGCTCGTCGTCCAGCGGTTCGTCGTCCAGCGGTTCGTCCGGGTCCGGTTCGTCGTCGGGCGGCTCGAGCTCGTCGACAGGGTCTTCCCAGGCCGCCTCGGCCTGAMPTYAYRCADCGHAFDIRQAFTDDALTVCPECAGRLRKQYGSVGVSFKGSGFYRNDSRAGSRSSGSGSSSGGSSSSGSSSSGSSGSGSSSGGSSSSTGSSQAASANANANANANA
AK018_012122658quiP_1COG2366Acyl-homoserine lactone acylase QuiPGTGTCAGCGAGCACCGACCCCGTCACGCACGAGCCCGACCAGCCCCGCGAGGGCGACGAACCCCCCGAGGAGGACGCCGCTCCGCCGGCGCGGTCCCGCCTGCGCCGGACCGCCGTCGGGATCGCCGTGCTCGTCGTGCTGGCGCTCGTCGCGACGATCGCGTTCACCGTGGTCACCGCGCGCCGGCCGCTGCCCGACCACTCCTCGACCGAGCAGGTGCCCGGCCTGAGCGGCGAGGTCACGGTCCAGCGCGACGCCCAGGGCGTGCCCCACGTCTACGCCGGCACGGCCGAGGACCTCTTCGCCGCCCAGGGGTACCTGCACGCCCAGGACCGGTTCTTCGAGATGGACTACCGCCGCCACGTCACCGCCGGCCGGCTCGCCGAGCTCGTCGGGGACGTCCCGGCCGCGATCGACGCCGACAAGGTGATCCGCACCTTCGGCTGGCGCGAGGTCGCCGAGGAGGAGTGGAACCTCGTCTCCCCGGAGTCGCGCTCCTACCTGCAGGCCTACGCCCAGGGCGTCAACGCCTACCTGGCCGACCGTGCCCCGGAGGACCTCGCCGTCGAGTACACCGTGCTGGGGGCGACCGTCGACGTCGCCGACCCCGACCCGTGGGACCCGGTCGACTCGTTGGCCTGGCTCAAGGCGATGGCCTGGGACCTGCGTGGCAACTACGACACCGAGCTCGACCGCGCCAAGGCCTACAGCACGCTGGAGGACGTCGACCTCGTCGAGGAGATCTTCCCGACCTTCGCCGACGGCGGGAACACGCCGATCCTCACCGAGGAGGACCTCGAGCCCGCGGACGCCCGCACCGTCGCCCGCACGTCGACCGAGCTGCCGTGGGGCACCTCGGCGCTGGACGCGGCGATCGAGTCCGCCACCGCGGCCCTGGAGTCCGTGCCGGTCCTGGTCGGGCGCGGGGAGGGCGCAGGCTCCAACTCGTGGGCCGTCTCCGGCGCCCTGACGGCCACCGGGGCGCCGATCCTCGCCAACGACCCGCACCTCTCCCTGGCGGCCCCCGGGCTGTGGTCCCAGGTGTCCCTGCACTGCGACCAGGTCGACGACTCCTGCCCGTTCGACGTCAGCGGGTTCTCGTTCGCGGGCTTCCCCGGCGTGATCATCGGTCACAACGCCGACCTGGCGTGGGGCCTGACGAACATGAAGGCCGACGTCACCGACTTCTTCGTCGAGCGTGTCCGCAACGACACGTGGCTGCGCGACGCCGACGCCGAGGAGTGGGTCGACATGGAGACCCGCACCGAGACGATCCGCGTCAACGGCGGCACCCCGGTCGAGCTGCGGGTGCGGTCCACCGACCACGGGCCGGTGGTCTCCGACGTGCTCGACGTCGGTGCCGTCGTCGGGGCCCCCACGGAGACCGGCACCGTGTTCGGCGAGTACGCGGTCTCGCTGGCCTGGACCGCTCTCGAGCCGGGCCGCACCGCCGACGCCGTGTTCGCGATGGCGTCCGCGAGCGACGCCGACGAGATCGCCGCGGCGGCCGAGCTGTTCGACGTCCCGGCGCAGAACATCGTGTTCGCCACGACGGACGGGCACATCGGCTACCAGGCGCCGGGCAAGGTCCCCGTGCGCCGCGACGTCGCCGGCCCGGTGCCCTCGGACGGCACCTGGCCGCGGCCCGGCTGGGACCCGCGGTTCGACTGGCAGGGATACGTCGACCCCGCCGAGATGCCGCGCGCCCTGGACCCCGAGGAAGGGTTCGTCGTCGCGGCGAACCAGGCCGTGCTGCCCGACGGCGTCGGGCCCGAGCTGTCCCAGGACTGGGACCAGGGGTTCCGGTCCGAGCGGATCCGCACGCTGCTGACCGAGCAGGTCAGCGCGGGCCGGCCGTTCACCGTCGCCGACATGAACGACCTGCAGGTCGACGACTGGTCGCCGTTCGCGGCTGTCCTGGTCCCGGTCCTGCTCGAGATGGAGATCGAGGACTCCTACGACGCCGCCGGCCAGGAGCTCCTGGCCGGGTGGGACTACCGGACCGGTGCGGACTCCGCGGCCGCCGCCTACTTCCACGCGGTGTGGCGCAACCTGCTCTCGGCGACCTTCTGGGACGACCTGCCCGCCGATGCCCTGCCGTCGGGCGGTTCGCGCTGGCTGGTCGTGGTCCGCGACATGCTGGAGCGCCCCGACGACCCCTTCTGGGACGACCGGTCCACGTTGAACGTCGTCGAGACGCGGGACGAGATCCTCACCCGTGCCCTGGTCACGGCACGCCACGACCTGACGGTCGAGCTGTCCAAGGACCCGGGCGACTGGAGCTGGGGCGCCCTGCACGAGCTGTCGCTGCAGCACCCCGTGCTGGGTGGCCCCGACGTGCCGGGCCTCGTGCGCGACTACGTCAACCCGCACCCCGTGCCGATGCCCGGCGGCAGCTCGATCGTCAACGCGACCGGCTGGGACGCCTCCACGGGCAGCTTCGCGGTGACGACGGGACCGTCGATGCGGATGGTCGTCGACCTCGGCGACCTGGACGCCTCGACCTGGGTGACGGTCACCGGCACGTCCGGGCACCCGGCCTCGTCGCACTACGACGACCAGCTGTCCTCCTGGGCGGCGGGGGACACGTTCCCGTGGCCGTTCACGCGCGACGCCGTCGAGGAGAACGCGGAGGACACCGCCACGCTCGTTCCGTGAMSASTDPVTHEPDQPREGDEPPEEDAAPPARSRLRRTAVGIAVLVVLALVATIAFTVVTARRPLPDHSSTEQVPGLSGEVTVQRDAQGVPHVYAGTAEDLFAAQGYLHAQDRFFEMDYRRHVTAGRLAELVGDVPAAIDADKVIRTFGWREVAEEEWNLVSPESRSYLQAYAQGVNAYLADRAPEDLAVEYTVLGATVDVADPDPWDPVDSLAWLKAMAWDLRGNYDTELDRAKAYSTLEDVDLVEEIFPTFADGGNTPILTEEDLEPADARTVARTSTELPWGTSALDAAIESATAALESVPVLVGRGEGAGSNSWAVSGALTATGAPILANDPHLSLAAPGLWSQVSLHCDQVDDSCPFDVSGFSFAGFPGVIIGHNADLAWGLTNMKADVTDFFVERVRNDTWLRDADAEEWVDMETRTETIRVNGGTPVELRVRSTDHGPVVSDVLDVGAVVGAPTETGTVFGEYAVSLAWTALEPGRTADAVFAMASASDADEIAAAAELFDVPAQNIVFATTDGHIGYQAPGKVPVRRDVAGPVPSDGTWPRPGWDPRFDWQGYVDPAEMPRALDPEEGFVVAANQAVLPDGVGPELSQDWDQGFRSERIRTLLTEQVSAGRPFTVADMNDLQVDDWSPFAAVLVPVLLEMEIEDSYDAAGQELLAGWDYRTGADSAAAAYFHAVWRNLLSATFWDDLPADALPSGGSRWLVVVRDMLERPDDPFWDDRSTLNVVETRDEILTRALVTARHDLTVELSKDPGDWSWGALHELSLQHPVLGGPDVPGLVRDYVNPHPVPMPGGSSIVNATGWDASTGSFAVTTGPSMRMVVDLGDLDASTWVTVTGTSGHPASSHYDDQLSSWAAGDTFPWPFTRDAVEENAEDTATLVPPGPT0028075_197DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
AK018_01213657COG02125-formyltetrahydrofolate cyclo-ligaseATGCACGGCGACCGCAGGCCCCCGACCGCCCCACAGCCGTACCCGGTCGTCGCCGGGATGGAGACGGGGGACGCCAAGGACGAGCTGCGCCGGGCGATCCGCCACCAGCGCCAGGACCGGTCCGCGCGCCTGCGCGAGGAGGCCGCCGCCGCCTTCGCCGAGGTGCTGGCCACGGTGCCGTCCGTGTCCGCCGCGGCCACCGTGGCGACCTACGCCGCCCGGCCGACCGAACCCGGCACGAGCGCCCTGCTCGACCAGCTCGCCGCACGGGGCGCCCGCGTCCTGCTGCCGGTGCTCGGCGCCGGGCTGGCCCGGGACTGGGCCGAGTACACCGGCGCGGACGACCTGCTCGAGCGCGCGCCGGGCCGGCCGCCGGAACCGGGCGGCCGCACGTTGGGCGGGCACGCCATCGCCGAGGCCGACGTCGTCATCGCCCCCGCGCTCGCCGTCGACAGCCACGGCGTCCGCCTCGGGCAGGGCGGCGGCTGGTACGACCGCTCGCTGAAGCAGGCCCGCCCCGGCGTGCAGGTGGTCGCCATGGTGTTCCCGGAGGAGTTCTACGACGCCTCCGAGCGGCCGCTGCCCGTGGAGGACCACGACGTGCCGGTGCACGCGGTGGCGACCCCGGACGGCTGGCAGCCGCTGCCGGTGTCCTGAMHGDRRPPTAPQPYPVVAGMETGDAKDELRRAIRHQRQDRSARLREEAAAAFAEVLATVPSVSAAATVATYAARPTEPGTSALLDQLAARGARVLLPVLGAGLARDWAEYTGADDLLERAPGRPPEPGGRTLGGHAIAEADVVIAPALAVDSHGVRLGQGGGWYDRSLKQARPGVQVVAMVFPEEFYDASERPLPVEDHDVPVHAVATPDGWQPLPVSPGPT0008170_959DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934NANA
AK018_01214636rimJ_1COG1670[Ribosomal protein S5]-alanine N-acetyltransferaseATGAGCGACACGAAGAGGTGGGCGGTGACCAAGCCGTGGCCGGTGACGCTGCGTGAGGACACGTCGTCGGGCGCTGTCGTGCTGCGCCCGTTGCGTCGGCGCGACGGGACCGCCTGGATGGAGCTGCGCCGCTCGAACGCGGACTGGCTGGACCGCTGGGAGGCGACGACGCCGGGCGAGCGGCCGAGCGCGTCCTCGTTCGGCGAGTACGTCCGGGCGCTGAGCGCGCAGGCGCGCGCGGGCACGTCGTTGCCTTTCGTCGTCGACCTGGACGGCGCCCTGGCCGGCCAGCTCACGGTCTCCTCGATCCAGTACGGCTCGCTGTGCTCGGGGAGCATCGGCTACTGGATCGCGCGCGAGCACGCCGGGCAGGGCGTCATCCCCACGGCGGTGGCGATGGCGACCGACTACTGCTTCCAGGTGGTCGGGCTGCACCGCGTGGAGATCAACATCCGGCCCGAGAACACCGCGAGCCTGCGGGTCGTGGAGAAGCTCGGGTTCCGTGACGAGGGGGTCCGCGAACGGTACCTGCACATCCAGGGCGACTGGCGTGACCACCGGACGTTCGCGCTGACGACCGAGGACGTCCCGGGAGGTCTGCTCGCGCGCTGGCAGCGGGCCCGCGACGACGCCTGAMSDTKRWAVTKPWPVTLREDTSSGAVVLRPLRRRDGTAWMELRRSNADWLDRWEATTPGERPSASSFGEYVRALSAQARAGTSLPFVVDLDGALAGQLTVSSIQYGSLCSGSIGYWIAREHAGQGVIPTAVAMATDYCFQVVGLHRVEINIRPENTASLRVVEKLGFRDEGVRERYLHIQGDWRDHRTFALTTEDVPGGLLARWQRARDDANANANANANA
AK018_012151227hypothetical proteinGTGGTGCGGCCCGCTCCGGCCCGGCTCGCCTACCGTCGGGGAATGGACACGTCGCCGGCAGGACTCGCAGCCCTCGCGCTGTTCGTGCTGTGGCTCGGCTACTGGGTCCCGCTGCAGCTGCGGCGACGCACGGAGCTCGCGGCGGCCCGGGTGGACGACCGGTTCTCCGGCGGCCTGCGCATGCTGACGGTGGCGGACGGAGCAGGGAAGGGGCGACCGATGCCCACGAACCGTGCGGCGGGTCACTCGCCGCCGACCGGCACCACGCCGCGGGTGACCGCGTCGGCCGCCGGGCCGGCGTCGGGCATGACGCCGCAGGTGCGCGCCTCGCGGCTGGCGGTGCTCGAGCGCCGCGCCGCCCGTGCACGTCGCCGGCTCACGCTGACGGTCCTGCTGACGCTGCTGACGGCCGCTGCGTGGACGGCCGTCGGCCTGGGGTACGTGCCGTGGCCCGTGGCGGCCGCGCCGTCCGGGCTGCTGCTCGTGGTGCTGGTGCTCGGCCGGCTGGCCGTGCTGACGGCGCGCCGGTCCGACGCCCGGTGGCGGTCGGAGCGTCGCGCCGAGCAGCAGCGGGCCACGCAGCGTCGCACGCTCGCGCACGGTGGTCCGTACGCCCCGCGCAACCGGGCGCGCGTCACCGGCTACGCCGTGCACCCCTCCGACACGCACACGCAGATGATCCCGCGCGTGCCGCAGGGCGCTGCGGCGGCGACGGGAGAGCGGCGTGAGCCGACGACCGCGCCGTCCGACCGCGGCACCGGGCGTGCCGACGACCGGGCCGACGACGGCGAGCCCGAACGCCGGGCGCCGGAACCGCCGTCCGAGCACTCCGCCGCGCCGTCGGACGATGACGACAGGTCTGGTCAGCGTGGCGACGGCGGGTCGCCCGAGGGGCACGCCCTCGAGGCCGCCGAGAGCTGCTCCCGGCACGTCGGCGGGGAGCCGTGGGACCCGGTCCCTGTGCCCCTGCCGACCTACGTGACCAAGCCGGAAGCCCCGCGCGCCGGGGCCGACGACGCCCCGACGACGCCCCGCACGGGTGGCACGTCGGCACCCCAGGAAGGCGGTCGGTGGACGGTCGAGGACCGGGCCGAGCCGCAGGACGCCGTGCACGCGGCGCCGAGCGAGGCGCCGGAGCCCGCGGTCGGAGACGAGCCGCGGCCCCGGTCCGAGACGCTGGGGCTCCCGCTGGAGCAGATCCTGGCCCGGCGTCGCGCGGCGGGCTGAMVRPAPARLAYRRGMDTSPAGLAALALFVLWLGYWVPLQLRRRTELAAARVDDRFSGGLRMLTVADGAGKGRPMPTNRAAGHSPPTGTTPRVTASAAGPASGMTPQVRASRLAVLERRAARARRRLTLTVLLTLLTAAAWTAVGLGYVPWPVAAAPSGLLLVVLVLGRLAVLTARRSDARWRSERRAEQQRATQRRTLAHGGPYAPRNRARVTGYAVHPSDTHTQMIPRVPQGAAAATGERREPTTAPSDRGTGRADDRADDGEPERRAPEPPSEHSAAPSDDDDRSGQRGDGGSPEGHALEAAESCSRHVGGEPWDPVPVPLPTYVTKPEAPRAGADDAPTTPRTGGTSAPQEGGRWTVEDRAEPQDAVHAAPSEAPEPAVGDEPRPRSETLGLPLEQILARRRAAGNANANANANA
AK018_01217855yvgN_1COG0656Glyoxal reductaseATGATGCTGAACGAGAACTACACCCTGTCGAACGACGTGGCCGTCCCCCGCATGGGCCTGGGCACCTGGTTCATCGACGACGACTCGGTGGCCGACGCCGTCCGCGCCGCCGTCGAGATCGGCTACCGCAACATCGACACCGCGCAGGCCTACGGCAACGAGCGTGGCGTCGGCGAGGGCATCCGGACCTCCGGTGTCGCCCGTGAGGACCTCTTCGTGTCGACCAAGCTGGCCGCCGAGGTCAAGTCCTACGACGAGGCGACCGCGTCGATCGACGAGTCGCTGGCGACCATGGGTCTGGACTACATCGACCTGATGCTGATCCACAGCCCGCAGCCCTGGGACGACTTCCGCGGCGGCGACTACGTCGACGGCAACCGCGAGGCCTGGCGGGCCCTCGAGGACGCTTACAAGGCCGGCAAGCTGCGGTCGATCGGCGTGTCGAACTTCGAGCAGAAGGACCTCGAGAACCTGCTGGAGGGCAGCACGGTCACGCCGCACGTGAACCAGCTGCTCGTGCACGTGGGTAACACCCCGTTCGAGCTGCTCGACTTCTGCGAGAGCCACGGCATCCTCGTCGAGGCCTACTCGCCCATCGCGCACGGCGAGATCCTCAAGGACTCGAACGTCGCCGCGATGGCGGAGAAGTACGGCGTGACGGTCCCGCAGCTGTGCATCCGCTACACGCTGCAGCTCGGCACGGTCCCCGTGCCGAAGACGGCCAACCCCGCGCACATGCGCAGCAACGCCGAGGTCGACTTCGAGATCTCGGACGAGGACATGGACACGCTGCGCGGTGTGCACTTCCGCGACTACGGCGAGAACAGCGTCTTCCCGGTCTACGCCGGCAACTGAMMLNENYTLSNDVAVPRMGLGTWFIDDDSVADAVRAAVEIGYRNIDTAQAYGNERGVGEGIRTSGVAREDLFVSTKLAAEVKSYDEATASIDESLATMGLDYIDLMLIHSPQPWDDFRGGDYVDGNREAWRALEDAYKAGKLRSIGVSNFEQKDLENLLEGSTVTPHVNQLLVHVGNTPFELLDFCESHGILVEAYSPIAHGEILKDSNVAAMAEKYGVTVPQLCIRYTLQLGTVPVPKTANPAHMRSNAEVDFEISDEDMDTLRGVHFRDYGENSVFPVYAGNPGPT0001320_1275DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
AK018_012181410gloB_2Hydroxyacylglutathione hydrolaseATGCTGCTCGAACGGATCTACGACGAAGACCTCGCCCAGGCGAGCTACTTCATCGGCTGCCAGGCCAAGGGTGAGGCCGTCGTCGTCGACGCCCGGCGCGACGTCGCCGAGTACCTCGACCTCGCCCAGCGGCACGGCATGCGCATCGTGGCCGTCACCGAGACCCACATCCACGCCGACTACCTCTCCGGGACGCGCGAGCTCGCCGCGACCACCGGTGCCGACGTCTACGTCTCCGGCGAGGGCGGCCAGGACTGGCAGTACGGCTTCGAGGCGAACCGTCTGTACCACGGCGACACCATCTCGATCGGCAACATCACCATCGAGGCCCGCCACACCCCGGGGCACACCCCCGAGCACCTCGCGATGCTCGTGACGGACGGCGCGTTCAGCGACGCGCCCGGCTACGCGCTCACCGGCGACTTCGTCTTCGCCGGCGACCTCGGCCGTCCCGACCTGCTCGACGAGGCCGCCGGCGGCGTGGACACCCGTTTCGAGGGTGCGCGCCAGCTCTTCGCCTCGCTGCGCGACGAGTTCCTCACCCTGGGCGACCACGTCCAGGTCTTCCCCGCCCACGGTGCCGGCAGCGCCTGCGGCAAGGCCCTGGGCGCCCTGCCCTCCACCACGGTCGGCTACGAGCGCCTGAACGCCTGGTGGGCCCCGTACCTGCGCGCGAACGACGAGCAGGGCTTCATCGACGAGCTGCTGGACGGGCAGCCCGACGCCCACGCCTACTTCGCGCGGATGAAGCGCGAGAACAAGGACGGCCCGGCGCTGCTCGGCCCCCTGTCCCCGCTCGGCCGGATGGCGAACGACGACCTGGCCCGCCGCCTCGAGGCGGACGAGGTGATCTTCGTCGACACCCGCGACCAGCACGCCGTCCACGCCGGGACCGTGGCCCGCAGCCTGAACGTCCCCGGCATCGCCAAGGCGGCCAGCTACGGCGCCTGGGTCTACGACCCCGAGACGGAGGACCGGCCGCTCATCCTGCTGGCCGAGGACCAGGCATACGCCGAGGAGATGCGTGACCACCTGGTCCGTGTCGGCATCGACACCGTGGCCGGGTTCACCCCCGAGCTCGACGGCCTGCCGATGACCACGCCGCCGGTGATCTCCCCGGCGGAGCTGGAGTCCTTCGACGCCACCCTGGTGCTCGACGTCCGCAACAAGACCGAGCACGCCGACGGCCACATCCCGGGGTCGACGCAGCTCAGCGGCGGCCGGGTGCTGTGGCACCTGGACCAGCTGCCCGACGACGGCACCATCGTCACGTACTGCCAGTCCGGCGTGCGCAACGCGGTGGCCGCCAGCGCGCTGCGCCGTGCCGGCTACGACGTCGTCGAGCTCGACGGCAGCTACGCCGGCTGGACCGCCTGGACCCGGTCCCGGCCCGTCGCCGTCCCCGCGTGAMLLERIYDEDLAQASYFIGCQAKGEAVVVDARRDVAEYLDLAQRHGMRIVAVTETHIHADYLSGTRELAATTGADVYVSGEGGQDWQYGFEANRLYHGDTISIGNITIEARHTPGHTPEHLAMLVTDGAFSDAPGYALTGDFVFAGDLGRPDLLDEAAGGVDTRFEGARQLFASLRDEFLTLGDHVQVFPAHGAGSACGKALGALPSTTVGYERLNAWWAPYLRANDEQGFIDELLDGQPDAHAYFARMKRENKDGPALLGPLSPLGRMANDDLARRLEADEVIFVDTRDQHAVHAGTVARSLNVPGIAKAASYGAWVYDPETEDRPLILLAEDQAYAEEMRDHLVRVGIDTVAGFTPELDGLPMTTPPVISPAELESFDATLVLDVRNKTEHADGHIPGSTQLSGGRVLWHLDQLPDDGTIVTYCQSGVRNAVAASALRRAGYDVVELDGSYAGWTAWTRSRPVAVPAPGPT0001770_194DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
AK018_01219609ygaPCOG0607Inner membrane protein YgaPATGGCCCACACCGCCAACGTCACGACCATCGAGCCCGGCGAGCTGAAGCAGCGCCTGGCCGACGACGAGCTGACGATCATCGACGTCCGCACGCCCGCCGAGTTCGAGTCCGCCCACATCCGCGGCTCGTACAACGTGCCCCTGCCGCTGCTGTCCGAGCACACCCACGACCTCGCCGACCGGCTCGGAGGCCGCGTCGTGCTGGTGTGCCAGTCCGGCGTCCGCGCGGGGCAGGCGCAGGACCGGCTGTCGTCCGTCGGCGTCGCCAGCGCCGAGGTGCTCGCCGGCGGGATCTCCGCCTTCGAGTCCGCGGGCGGGACCGTCGTGCGCGGCGCGCAGCGCTGGGCCATGGACCGGCAGGTCCGGATGGTCGCCGGCTCGCTCGTGCTCGCCGGGTTCGTCGGCAGCAAGGTGATCCACCCGCGCGTGGGGATCCTCGCCGGGGCGATCGGCGCCGGGCTGACCTACTCGGCCCTGTCCAACTCGTGCGCCATGGCGGCGGCGCTGTCCAAGATGCCGTGGAACCGCACGGAGGTCAGCCCGACCTACGAGAACACCATCCGGTCCATCCCGGTGGCGCCGCAGGCCGTCACGGCCCGGGCCGCCTGAMAHTANVTTIEPGELKQRLADDELTIIDVRTPAEFESAHIRGSYNVPLPLLSEHTHDLADRLGGRVVLVCQSGVRAGQAQDRLSSVGVASAEVLAGGISAFESAGGTVVRGAQRWAMDRQVRMVAGSLVLAGFVGSKVIHPRVGILAGAIGAGLTYSALSNSCAMAAALSKMPWNRTEVSPTYENTIRSIPVAPQAVTARAANANANANANA
AK018_01220867hypothetical proteinGTGGACATCACGACGATCGCGGTGCTGCTGCTCGCGGTGGTGGTGGGCATCTCCCTCGGCCTGCTGGGCGGGGGAGGGTCCATCCTCACCGTGCCGCTGCTCACGTACGTGGCCGGCTTCGCACCCAAGGAGGCGATCGCGGCCTCGCTGCTGGTGGTCGGCGTGACGTCGGTGACGAGCATGCTGGCCCACGCCCGCCGCGGCAACGTGCAGTGGCGGACGGGGCTGGTCTTCGGGGCGGCCGGCATGGCCGGCGCCTTCGCAGGTGGTCTCGTCGGCGGGCACATCCCCGGCACGATCCTCATGATCGCCTTCGCGGCCATGATGATCGCGACGGCGGCCGCCATGATCCGCGGTCGCCGCGGCGGCCGGACGCCCACGCACGACGGCGGCCTCCGGGTGGGTCGGACCATCCTGGACGGCCTGGTCGTGGGCCTCGTGACGGGACTCGTGGGTGCCGGCGGAGGCTTCCTGGTCGTCCCCGCGCTGGTCCTGCTCGGCGGTCTGCCGATGTCGGTGGCGGTGGGGACGTCCCTGCTGGTCATCGGGATGAAGTCGTTCGCCGGCCTGGCGGGCTACCTCACCTCGGTGTCCCTGGACTGGGGCCTCGTCGCCGCGGTCACGGCGGCGGCCGTCGTCGGGTCCCTCATCGGGGCCCGGCTGACCACCCGCGTCCCCGAGGCGGCCCTGCGCCGCGGGTTCGGCTGGTTCGTCCTGGTCATGGGCGTCGTCGTCCTGGTGCAGGAGCTGCCGGGCGTCGGCGGCCTCGTGGTCGCCGTCGTCGCCGCCCTGGTGGCGGTCGCCGCTGTCACCTGCCGTCTGGTCGGCGCGGCCTGCCCCCTGCGGGGGCGCCTCGCCGCCCGCTGAMDITTIAVLLLAVVVGISLGLLGGGGSILTVPLLTYVAGFAPKEAIAASLLVVGVTSVTSMLAHARRGNVQWRTGLVFGAAGMAGAFAGGLVGGHIPGTILMIAFAAMMIATAAAMIRGRRGGRTPTHDGGLRVGRTILDGLVVGLVTGLVGAGGGFLVVPALVLLGGLPMSVAVGTSLLVIGMKSFAGLAGYLTSVSLDWGLVAAVTAAAVVGSLIGARLTTRVPEAALRRGFGWFVLVMGVVVLVQELPGVGGLVVAVVAALVAVAAVTCRLVGAACPLRGRLAARNANANANANA
AK018_01221279hypothetical proteinATGAGAAGTGCCGACCCCGAGACCCAGCGCCGCATCCTCAACCGGCTCAAGCGTGCCCGCGGGCAGCTCGACGGCGTCATCTCCGCCGTCGAGTCCGGCGGCAGCTGTCGCGACGTGGTCACCCAGCTCTCGGCCGTGTCCACGGCCCTCGACCGGGCCGGGTACGTCATCGTCTCCACGGCGATGCGGGAGTGCCTGACGGACCCGGACGGCACCGCGGAGGCGGAGGACGGGCTCACCGCCGAGGAGCTCGAGAAGCTCTTCCTCACGTTGGCCTGAMRSADPETQRRILNRLKRARGQLDGVISAVESGGSCRDVVTQLSAVSTALDRAGYVIVSTAMRECLTDPDGTAEAEDGLTAEELEKLFLTLAPGPT0004175_1363DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600NANA
AK018_012221158hypothetical proteinATGTCGGGTCGAACCACCGCGATACTCGCCCTCGTGCATGACGAGATCTCCGAGGTTGCCCGACACCGACAGGTCCGGGGCGGTGCCCGGCTGGCCGGCACCGTCGCCGACCTCGCCCGCCCGATCACCGTGGTCGGGTCCTCGATGCCCGTCGGGCAGCTCGAGGTCATGTTCCGCAGTCCCGAGGTGACGTGCGTCGCCGTGCAGGACGACGAGGGCGGGGCCCGCACCGGGATGGTGATGCGCGCCGGGCTGACCGCCGCGCTGACCGGTCGGCTCGGCTACGGCCGTGCCGTGCTGGAGCGCAAGCCCGTCTCCTCCGTCACCGACTGGTCGCCGATGACGGTCGCCCCCGACGACGCGGTCTCCAGCGTCGCCACCCGGGCCATGGAGCGCACCGAGGCGCACCGGTACGACGACGTCCTGGTGGCCGGGACCCACTGGGGCACGGCCGCGACGGCGGACCTCATGCGCGCCCTGGTGGCCGCGCTGGCCGAGCGGTCGACCCAGGACCCGCACACTCGGCTTCCCACCCGGGCGACGACCTACCACTCGTTGTCGCGCCGCTGCGAGCTCGTGCGCGGGTCGGCCACGCGGGTCGTCCTGGTGCTCCTCGACGTGCGCGGGATGTCCGCCCTCAACGCCCGGCACGGCCTGGAGACCGGGGACGTCGTGCTCGTCGAGCTCGCCCACCGGCTGCGCACCGGGCTGCCGCGCGGGTGCGAGCCCGGCCGGGTCGGCGGGGACCGGTTCGCGGTGCTGGCCACCCTGCCGGCCATGGACGACGTCCACGCCGCGGCCTCCGCCGACCAGCTCCGGCGGCACGTCCTGGGGCGGCTCGCCGAGCCCTCGGGCGGCCTGGACGAGCTGGTCTGGCCCGACCTGCGCTCGTCGGTGGTCTGGTCCGTGGCCGGAGCGGCGTCGCCCGACGAGCTCGTCGCCGAGGCCGAGGCGCGGCTCGCCCGCGACGCCGGGGCGCCCCTCGAGGTGGCCACGACGACGTCCGCGACCGGCCCGGCCCCCGCCGCGGCGGCACCCGCTGCCGCGCCGGCGCCCGTGGTGCCGCCGACGTCGGCCGCCTCGGCGGCGTCCCCCGCGCTCCCGAGGCGTGGCGGCCGTGGCGGGGTGGCGAACCTGCCGGCCCGCCGGCTCGGCTGAMSGRTTAILALVHDEISEVARHRQVRGGARLAGTVADLARPITVVGSSMPVGQLEVMFRSPEVTCVAVQDDEGGARTGMVMRAGLTAALTGRLGYGRAVLERKPVSSVTDWSPMTVAPDDAVSSVATRAMERTEAHRYDDVLVAGTHWGTAATADLMRALVAALAERSTQDPHTRLPTRATTYHSLSRRCELVRGSATRVVLVLLDVRGMSALNARHGLETGDVVLVELAHRLRTGLPRGCEPGRVGGDRFAVLATLPAMDDVHAAASADQLRRHVLGRLAEPSGGLDELVWPDLRSSVVWSVAGAASPDELVAEAEARLARDAGAPLEVATTTSATGPAPAAAAPAAAPAPVVPPTSAASAASPALPRRGGRGGVANLPARRLGPGPT0026000_593DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0026000-tpbB-K21021NANA
AK018_012231617hypothetical proteinATGGGCCAAGATGTCGGGGTGTCTGTACGGAACGTCCCATTCGTCCTGTCGGCCCTGCTCGTCGTCCTCCTCGTCGGAGGCTGCGGAGACCAGGGCGGTCCGCAGCCGACCCGTGGCCCGGCGGTGCAGACCGTCGTCCGTGCGCCGGCGTCCACCGTGCTGCTCGGGTCGCCGGACCCGGCCGAGCTGGCCCTGACGGCGAGCCAGCAGGTGTTCGAGAGGGCACCCGTCGCCGTGCTGGCGGGGACCGCCGTCGAGCCGCCGGGCGGGGTCGTGCGCGCCCTGCACGCGGCGGCGGCCGAGAGCCTGGGAGCGCCGGCGCTGCTCGTCGGCGGCGGGGTGTCGCCCAGGGGGATCGGGGACGAGCTCGAGCGCCTGGGTGTGCGGGTCGCCGTCGTCGTCCGGGCCACCGGCGCGTCGGACGAGGAGGCCGCGGGCCTCGCCACGGGAGCCGCGGAGGCCGCGGCCGCGGCGGGCGCCGCCGTCGTCGACCTCGAGGTCCCCACCCCGCTGCCCGGCAGCGATCCGGAGGTCGACGCGCTGCCCGAGGACGACGCACGACGGCTGCAGGACCGCGTCGACGGTGCCCTGGGCGCCGGGGCCTCGTCGCCGTCGTCGGCGCCCTCGCACCTGCGCGAGGTCCTCGCGCTGACCGACCCGCGACCCGGGCAGGAGGCGGCGATCGCGACGCTGCGGGCCGCGGGTGCGGTCGACCTCGAGGTGCCGGGCGGGGACATCGCGGGCGCTCCGGAGGTCGTCGAGCACGTGGACACCGCGCAGGCGCTGGCCGTGATCGGCGTCGGGCCGAGCTTCGGCAGCGCCGAGGAGCTCGCGTGGAGGGTGGCCGCCGCCGAGCGCGGCGACCTGCTGCCCACGGGCACCCAGCAGCTGGTGCCGGCGCGGTACGTCACGGTGACCGGCGGGCGGCGCGACGACCCCGCAGTCGTCGTCGAGCGGGCCCGGACGGCTGCCGCGTCCTACGACGGGCTGGCCGGCGGGCCGGTGGTCCCCACCGCGGTCGTGCAGGCCAGTGCCGCGGCGGGGCACCCCGGCGAGGACGGCGACTGGGTCGCCGAGGAGCCGCCGGCCGAGCTGGAGCCGCTGGTCCGGGCGGCCCGCGACGCCGGCCAGTACGTGCTGCTCGACGTCGGCGCCGGGACGTCGACGCTCCGCGAGGAGGTCGAGGCGCTGGAGGACCTGCTCGCGCAGCCCGGGGTGGGGGTGGCACTGCACCCGGAGGACCGGCGGTCGGACGGGGAGACGCCTCCCGGGCAGGTCTCGGTGGCCGAGGTGCGGGACGTGATCACCTATATTGAAGGGGTGGTAACTAATCATGGTCTGCCCCCGACGATGGTGGTCCTGCACCAGACGCGACCGGAGTCCGTCGTCGACCGTGACCAGCTCGGCCGGACGGCCGCCCGGACCGACGCCGTCGAGCTCGTGCTCGTCGCCGACCGGACCGGCGGACTGACCACGACCGAGTGGGTGTGGGGGCGAGTGACCGACGAACTGCCCGACGGAGTGCACGCCGGCTGGGCGGGTCCGGAACCGGAGTACTACCGGTCCACCGACCTCGTCCCGACGGACCCCGCGCCGTTGCTCGTGACCGGGTCCTGAMGQDVGVSVRNVPFVLSALLVVLLVGGCGDQGGPQPTRGPAVQTVVRAPASTVLLGSPDPAELALTASQQVFERAPVAVLAGTAVEPPGGVVRALHAAAAESLGAPALLVGGGVSPRGIGDELERLGVRVAVVVRATGASDEEAAGLATGAAEAAAAAGAAVVDLEVPTPLPGSDPEVDALPEDDARRLQDRVDGALGAGASSPSSAPSHLREVLALTDPRPGQEAAIATLRAAGAVDLEVPGGDIAGAPEVVEHVDTAQALAVIGVGPSFGSAEELAWRVAAAERGDLLPTGTQQLVPARYVTVTGGRRDDPAVVVERARTAAASYDGLAGGPVVPTAVVQASAAAGHPGEDGDWVAEEPPAELEPLVRAARDAGQYVLLDVGAGTSTLREEVEALEDLLAQPGVGVALHPEDRRSDGETPPGQVSVAEVRDVITYIEGVVTNHGLPPTMVVLHQTRPESVVDRDQLGRTAARTDAVELVLVADRTGGLTTTEWVWGRVTDELPDGVHAGWAGPEPEYYRSTDLVPTDPAPLLVTGSNANANANANA
AK018_012241446COG3525Beta-N-acetylhexosaminidaseATGCTGCCCCTCATCCCGTGGCCCACCGAGGTCACCGCGACCGACGCCCCCGCCGTCGTCGTGCCCGCGGTCCGCGTCGACGCGCCGGACCCGGCCCTCGCCCGGCTCGTCGCCGAGCAGATCGAGGCCGCCGGCGTCCCGGTGTCCGGCGACGGAGCCGACGCTCGTGCCGTGACGGTCACGCTGCGCCTCGACCCCGCCGCCGGACCCGCGGGCGCGGAGACCGACGAGCGGTACACCGTGCGGGTGGCCGACGGCGAGATCCTCGCCACCGCCGCGGCACCCGTCGGGCTGCTGCACGCCGCCCGTACGCTGCGCCAGCTCGTGGTGCCCGGCGCCGACGGTGCTGCGGCCACCGTGCCGGGCGTCGTCGTGCACGACGCGCCCCGCTACGCCTGGCGCGGGCTGAGCCTCGACGTCGTGCGGCACTGGTTCGGTCCCGAGGACCTGCGGGCCGTGGTCGACCTGGTCGCCGCCTTCAAGCTGCGCGTGCTGCACCTGCACCTGACCGACGACCAGGGCTGGCGCATCGAGATCCCGTCCCGTCCGGAGCTGGAGAAGGCGTCCGACAACCAGGTCGGCGGCGGCTCGGCCGGCTACCTCACCGTCGAGGACTACACGGCGCTGCAGGACTACGCCGCGCAGCGGTACGTCACGATCGTGCCCGAGTTCGACATGCCCGGTCACGTCAACGCCGCCACCCACGTCTACGGCGCGCTGACGTCCGACGGCGTCGCCACCGACGCCTACGACGGCATCGAGGTCGGGTTCTCGCGGCTCTGGTTCGACAACCCGGCCACCGAGCCGTTCCTGCGCGACGTCATCGGCGACCTGTCCCGCACGACCCGCGGGCCGTGGGTGCACGTCGGGGGTGACGAGGTGCTGACGATGGAGCGCGAGGAGTTCGCGCGGTTCGTCGAGCTGGCCCAGCGGATCGTGCGCGAGCACGGCAAGACGCCGATCTTCTGGCAGGAAGGCTCGAGGGGACCGGTCGAGCCGGGCACGCTGCTGCAGTACTGGGAGCCCAAGGGCGAGGAGTTCGACCGGTTCGTCGCCGCGGCCGACGCCGGCGCGCGGTTCATCATGTCGCCCGGCAACCACGCCTACCTCGACATGAAGTACACCCCCGAGCACCCGCTGGGGCTGGAGTGGGCCGGCCACGTCGAGCTGCGCGACTCCTACGACTGGGAGCCGACCACCGTGATCGACGGCCTGCCGACGTCCTCGGTCGAGGGCGTCTCCGCCGCGATCTGGACCGAGACGCTCACGACCCGCGACGAGCTGTTCTCGATGCTGCTGCCGCGGCTCGGGGCCGTCGCCGAGGTCGCCTGGACGGCCCCCGAGCGCAAGGACTTCGAGGGGTTCGCGGCCCGCACGGCCGCGTCGGCCCCCGCCTGGCGCGCCAGCGGCTGGGCGTTCCACCCCACGCCGCAGGTCGCCTGGTAGMLPLIPWPTEVTATDAPAVVVPAVRVDAPDPALARLVAEQIEAAGVPVSGDGADARAVTVTLRLDPAAGPAGAETDERYTVRVADGEILATAAAPVGLLHAARTLRQLVVPGADGAAATVPGVVVHDAPRYAWRGLSLDVVRHWFGPEDLRAVVDLVAAFKLRVLHLHLTDDQGWRIEIPSRPELEKASDNQVGGGSAGYLTVEDYTALQDYAAQRYVTIVPEFDMPGHVNAATHVYGALTSDGVATDAYDGIEVGFSRLWFDNPATEPFLRDVIGDLSRTTRGPWVHVGGDEVLTMEREEFARFVELAQRIVREHGKTPIFWQEGSRGPVEPGTLLQYWEPKGEEFDRFVAAADAGARFIMSPGNHAYLDMKYTPEHPLGLEWAGHVELRDSYDWEPTTVIDGLPTSSVEGVSAAIWTETLTTRDELFSMLLPRLGAVAEVAWTAPERKDFEGFAARTAASAPAWRASGWAFHPTPQVAWPGPT0012150_4071DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSAMINIDASE,PGPT0012150-HEXA_B_like|exo|chb-K12373NANA
AK018_012252025hypothetical proteinGTGAGCGCCCACGATCCCGACGCCCCCGACACCGGAGAGCAGTCCGAGGTCGACACCACGCCGCCGAGTCGCCAGTATCCGTCCCGCCGCGAGATCCACGGCCACGAGCGCCGCACGAACACCCGCGGCATCCCTGTGGTGACCGGGGCGATCCGCGCGCTGACCGGGTCGACCCCGAGGGTCGGCACGGGTCCGGCGCGCAGCGACGCGGCCCCGGCGGACGACGCACCGACGTCGTCGCCGGCCGACGCCCCGGACCCCCGACCGACCACGGGGACCACACCCACCACGCCTCCCGGGACCGGCCCGACGCCGGGTGCCCTGGAGAGCGCGCCGGTCCCGGTCGCGGCGGGCGGCACCGCGACGGCGACCGCCGAGCGTCCACCCGCGCGGGACGACGACGGCTCGTACGGCTCGCCGTCGGACACCGCGCCGGACGAGGGGGTCGGCACCGAGCGGTCGCTGCTGGTGCGCCTGCTGGGCGAACGGCGCCTGGCGCTGGGGGCGACGTGGCAGGCCCGCACGCTCGGGTGGGTCGGCGCCGTCGTCGTCACCCTGATCGCCGCCGTGGCCCGGCTGTGGGAGCTCGGCCGCCCCGGGTCGCTGGTCTTCGACGAGACGTACTACGTCAAGGACGCGTACACGCTCGGCAGCACCGGCGCCGAGCGTCAGTGGCCCGAGGACCCGAACCCCGCCTTCGAGGCCGGCGACGTCGACACCTACCTGGACCAGGCGGCGTACGTCGTCCATCCCCCGGTGGGCAAGTGGATGATGTGGCTCGGCATGGAGGCCGGGGGCGGCGCGACGAACCCGTTCGCGTGGCGGCTGGCCTCCGCCGTCGTCGGCATCCTCGCCGTCCTGCTGCTGGTCCGGATCGCGCGACGGCTGTTCGCCTCCACGACGATGGGGCTGGTCGCCGGCTTCCTGCTGGCGATCGACGGGCAGGCGATCGTGCACTCCCGCACCGCGCTGCTGGACCAGTTCCTCATGTTCTGGGTGCTGGTCGCGTTCGGCTGCCTGCTCCTGGACCGGGAGTGGGCACGACGACGGCTCGCCACCCGGGTCGCGGCCGTCCTGGACGCCGGTGGCACCGTGGACAAGTACGGGCCCCGGCTCGGGATGCGGTGGTGGCGTCTCGCCGCGGGCGTCTCCCTGGGCCTGGCGTGCGGCGTCAAGTGGTCGGCGCTCTGGTTCGTCGCCGCGTTCGGCCTGCTCACCGTGCTGTGGGACGTCACCGCGCGGCGCCGCGCCGGGATCGGCCGCTGGTTCGAGGACGCCGTGCTGGCCGACGGCGTGCCGGCGTTCCTGCAGATCGTCCCGGTCGCGCTGCTCACCTACGTCGCCTCGTGGTGGCGCTGGATCGCGGGGTCGGAGGGCTACTACCGGGACTGGGCGTCGCAGAACCCGGAGCAGGCGGTGTCCTGGCTGCCCGACTGGCTGGCCAGCCTGTGGCACTACCACCAGCAGGTGTACCAGTTCCACACCGGCCTCGAGGCGGAGCACGCCTACGCGGCGGGCCCGCTCGGCTGGATGGTGCAGTGGCGGCCGACGTCGTTCTTCTGGGAACGCCTGGACGCGGGTGACGGCGCCTGCCCCGCGGACACCGACGGCGGCTGCGCCGTCGCCGTCACGGCCCTGGGCAACCCGCTGCTGTGGTACCTGGCGGCGATCGCCCTGGTCGTCACCGTGCTCCTCGGGATCTGGCTGCGGGACTGGCGGGCGCTGGCCGTCGTCTCCGGCACGATCGCCGGCTGGCTGCCGTGGTTCCTGTACACGGACCGCACGATCTTCACCTTCTACACGATCGCGTTCACGCCGTTCGTCATCATGACGCTGGTCTACCCCATGGTCGTGGCGCTGGAACGCACCCGATGGCGCCAGGGCAAGGGCGGTACCGCCGCGGTGATCGCCGTCGTCGTGGTGCTCATCGCGCTGGTGTCGGCGGCGTTCTACCCGTTCTGGTCGGCGATGGCGGTGCCGTACGACTACTGGCGCGAGGTCATCCGCTTCCAGAACTGGATCTGAMSAHDPDAPDTGEQSEVDTTPPSRQYPSRREIHGHERRTNTRGIPVVTGAIRALTGSTPRVGTGPARSDAAPADDAPTSSPADAPDPRPTTGTTPTTPPGTGPTPGALESAPVPVAAGGTATATAERPPARDDDGSYGSPSDTAPDEGVGTERSLLVRLLGERRLALGATWQARTLGWVGAVVVTLIAAVARLWELGRPGSLVFDETYYVKDAYTLGSTGAERQWPEDPNPAFEAGDVDTYLDQAAYVVHPPVGKWMMWLGMEAGGGATNPFAWRLASAVVGILAVLLLVRIARRLFASTTMGLVAGFLLAIDGQAIVHSRTALLDQFLMFWVLVAFGCLLLDREWARRRLATRVAAVLDAGGTVDKYGPRLGMRWWRLAAGVSLGLACGVKWSALWFVAAFGLLTVLWDVTARRRAGIGRWFEDAVLADGVPAFLQIVPVALLTYVASWWRWIAGSEGYYRDWASQNPEQAVSWLPDWLASLWHYHQQVYQFHTGLEAEHAYAAGPLGWMVQWRPTSFFWERLDAGDGACPADTDGGCAVAVTALGNPLLWYLAAIALVVTVLLGIWLRDWRALAVVSGTIAGWLPWFLYTDRTIFTFYTIAFTPFVIMTLVYPMVVALERTRWRQGKGGTAAVIAVVVVLIALVSAAFYPFWSAMAVPYDYWREVIRFQNWIPGPT0024545_1465DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_MANNOSYLTRANSFERASE_ACTIVITY,PGPT0024545-pmt-K00728NANA
AK018_01226882rsmI_1COG0313Ribosomal RNA small subunit methyltransferase IATGAGTCGTGTCCCCGAGACCGGGTCCGTCGTGCTGGCCGCCACCCCGATCGGCAACGTCGAGGACGCCTCCCCGCGACTGCTGCGCCTGCTCGCCGACGCCGACGTCGTGGCCGCCGAGGACACCCGCCGGCTGCACGCGCTCGCGTCCCGGCTCGGCGTGGAGGTCGGCGGGCGGATCGTGTCCTACCACGAGCACAACGAGCGCGACCGGGCGGACGAGCTGCTCGACGTCGTCGACGGCGGCGGTACCGTCCTCGTCGTCACCGACGCCGGGATGCCGGCGGTGTCCGACCCCGGGTTCCGGCTCGTCGCCCGGGCGGTCGAGCGCGAGCTGCCCGTGACCTCGGCGCCCGGTGCCTCCGCCGTCCTGACCGCGCTGGCGCTGTCCGGTCTGCCGACCGACCGCTTCACCTTCGACGGGTTCGTGCCCCGCAAGCCGGGGGACCGGTCGCGGTGGCTCGGCGGCCTCGCCGACGAGCCCCGCACCATGGTGTTCTTCGAGGCGCCGCACCGGATCGTCGACACCCTGGCCGCCATGGCCGAGGCGTTCGGTCCCGAACGACCTGCCGCCGTCTGCCGCGAGCTGACCAAGGTGTACGAGGAGGTCCTGCGCGGGTCGCTCGGGGAGCTGGCGGCGCGGGCGGCCGAGCGGGCCGAGACCGGCCAGGCGCTGCGCGGCGAGATCTGCGTCGTCGTCGGCGGCGCACCGGCACCGGAGGCGCCGAGCGTCGAGGCGCTCGTGCCGCAGGTCGCCGCGCGCGTCGAGGCGGGCGAGCGGCTCAAGGCCGTCGCGGGGGAGATCGCGGCGGCGTCGGGTGTGTCGAAGCGCGAGCTGTACGAGGCGGTGCTGGCCGCGCGCCAGGCCCCCTCCGCGAGGTAGMSRVPETGSVVLAATPIGNVEDASPRLLRLLADADVVAAEDTRRLHALASRLGVEVGGRIVSYHEHNERDRADELLDVVDGGGTVLVVTDAGMPAVSDPGFRLVARAVERELPVTSAPGASAVLTALALSGLPTDRFTFDGFVPRKPGDRSRWLGGLADEPRTMVFFEAPHRIVDTLAAMAEAFGPERPAAVCRELTKVYEEVLRGSLGELAARAAERAETGQALRGEICVVVGGAPAPEAPSVEALVPQVAARVEAGERLKAVAGEIAAASGVSKRELYEAVLAARQAPSARNANANANANA
AK018_01227510hypothetical proteinATGCCGCTCCCCCCGCCCCCCGCCGGCTGGTCCCGCTACGTCCTCAAGAGCACGTTCGGCATGGGCCGCGACTTCGCCGTCCTCCACCCGGACACGGGCGACCAGTCGTGGTTCGTGGACGGCAAGGTCGGCATGCGCCCCAAGGCGGACGTCAAGGACCGGGACGGCGAGGTCGTCTACACGGTCACCGGCAAGATGTTCGGGATCCCGAAGCAGATGACGATCGCGGGCGCCGACGGCACGGAGATCGCGGCCCTGCGCGCCAAGATGTTCTCCCCCATCAAGGACCGCATGTCCATGGAGGTCCCCGGTGGTGAGCCGTGGAGCCTCGAGGGGTCGTTCATCGAGAAGGACTACGCGGTGACGGTCGGTGGACGGCACGTCGTCCAGATCACCCAGAAGTGGGTGACGATCCGTGACTCCTACACGCTCGACGTCGCCGACGGCGTGGACGTGGGTCTGGCGCTGGCGGTCGTGTGGGCGATCGATCGCTGGGTCGAGCGCGACTGAMPLPPPPAGWSRYVLKSTFGMGRDFAVLHPDTGDQSWFVDGKVGMRPKADVKDRDGEVVYTVTGKMFGIPKQMTIAGADGTEIAALRAKMFSPIKDRMSMEVPGGEPWSLEGSFIEKDYAVTVGGRHVVQITQKWVTIRDSYTLDVADGVDVGLALAVVWAIDRWVERDNANANANANA
AK018_01228573pncA_1COG1335Nicotinamidase/pyrazinamidaseATGAGTACGCGAGCACTCCTCGTCGTCGACGTCCAACCGACGTTCTGCGAGGGTGGCGAGCTCCCCGTGGAGGGGGGCCACCGCGTCGCGCAGGACGTGGCCGACTACGTCGCCGCCCACCGCGAGCGCTACGGCCTGGTCGTCACGACCCAGGACTGGCACATCGACCCGGGCGAGCACTTCAGCGACGACCCGGACTTCGTCAACTCCTGGCCGGTGCACGGCGTGGCCGAGTCTCCGAACGCCCGGCTCCACCCGGCTCTGGCCGACCTGGACGCCGACGTGGCGGTCACCAAGGGCCAGTACGACCACGGATACTCCGGGTTCGACGGGGCCGACGCCGTCGGACGGTCGCTCGACCAGGTCTTGCGCGAGGCCGACGTCCGTGCCGTGGACGTGGTCGGCCTCGCCGAGTCGCACTGCGTGAAGTTCACGGCGCTGGACGCCGAGCGGCACGGGTTCGAGACCCGGGTCCTGACGGACCTCACCGCCCCCGTCTCGGCGGAGCAGGGCGAGCAGGCCCACCGCGAGCTGACCCGGGCCGGCGTCGAGCTGGCGACCTCCGCGACGTAGMSTRALLVVDVQPTFCEGGELPVEGGHRVAQDVADYVAAHRERYGLVVTTQDWHIDPGEHFSDDPDFVNSWPVHGVAESPNARLHPALADLDADVAVTKGQYDHGYSGFDGADAVGRSLDQVLREADVRAVDVVGLAESHCVKFTALDAERHGFETRVLTDLTAPVSAEQGEQAHRELTRAGVELATSATPGPT0013470_1979DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013470-pncA-K08281NANA
AK018_012291797metG_1COG0073Methionine--tRNA ligaseATGACCCACATCCTCTCGGCCGTGGCATGGCCTTATGCCAACGGCCCGCGGCACATCGGCCACGTCGCCGGCTTCGGCGTTCCCTCCGACGTCTTCAGCCGTCACATGCGGATGGCGGGTCACGACGTGCTGATGGTCTCGGGCACCGACGAGCACGGCACGCCCATCCTGGTCCAGGCCGAGCAGGAGGGCGTGACGCCCCAGGAGCTCGCCGACCGCTACAACCGCGTGATCGTCGAGGACCTCACCTCCCTGGGCCTGAGCTACGACCTGTTCACCCGCACCACGACGCGCAACCACTACGCCGTCGTGCAGGAGATGTTCCGCACCGTCCACCAGAACGGCTACATGGTCGAGAAGTCGACGATGGGCGCCATCTCGCCGTCGACCGGTCGCACGCTGCCGGACCGCTTCATCGAGGGCACCTGCCCCATCTGCGGCTACGACGGTGCGCGCGGCGACCAGTGCGACAACTGCGGCAACCAGCTCGACCCGATCGACCTGAAGAACCCGCGCAGCCGCATCAACGGCGAGACGCCCAAGTTCGTCGAGTCGAACCACTTCTTCCTCGACCTGCCGGCCTTCGTCGACGCGCTCGCCTCCTGGCTCGAGACGCGCGCCGGCTGGCGCCAGAACGTGCTGAACTTCAGCCGCAACCTGCTCGACGACGTCCGCCCGCGCGCCATGACGCGCGACATCGACTGGGGCATCCCGGTGCCCCTCGACGGCTGGTCCGAGAACCCGAACAAGCGCCTGTACGTCTGGTTCGACGCCGTCATCGGCTACCTGTCCAGCTCCATCGAGTGGGCCCGCCGCCGCGGCACCCCCGAGGCCTGGCGAGACTGGTGGACCAACCCTGATGCCCGCTCGTTCTACTTCATGGGCAAGGACAACATCACCTTCCACTCCCAGATCTGGCCGGCCGAGCTGCTCGCCTACGACGGCGGCGGCTCGCACGGGGGCCGGCCCGGCCCGTACGGGTCGCTCCAGCTCCCGACGGAGGTCGTCTCCAGCGAGTTCCTCAACGTCGAGGGCCAGAAGTTCTCCTCCTCGCGCGGCGTGGTCATCTACGTGCGCGACATGCTGGCCCGCTACCAGCCGGACGCGTTCCGTTACTACGTGGCCGCGGCCGGGCCGGAGAACCAGGACGTCGACTTCACGTGGGACAGCTTCCTGCGGCGCACCAACGACGAGCTCGTCGCCGGCTGGGGCAACCTGGTCAACCGCACGGCCTCGATGGTGCACAAGAACTTCGGCGAGATCCCCGCCGCGGGCGAGCAGGCCGACGTCGACCGCGAGGTGCTCGCGACCACCGGCGAGGCGTTCGGCAAGATCGGCTCGCTCATCGAGTCCAACCGGCAGCGGGCCGCGGTCGCCGAGGCGATGCGCGTGGTCGGCGAGGTCAACCGGTACGTCTCCGAGACCCAGCCGTGGAAGCTCAAGACCGACCCGGACCGGCTCGCCACCGTGCTGCACACCACCACACAGGCCGTCAGCGACTGCAACACGCTGCTCGCCCCGTTCCTGCCGCACTCGGCCCAGTCGGTGCACGAGGTGCTCGGCGGGACCGGCGAGTTCGCCCCGCAGCCGGTGATCGAGGAGGTCACCGACCTCGACGACGACTCGCGCCACTACCCGGTCATCACCGGCGGCCACGACGGCGGCTACGAGTTCCCGTCGTGGGAGTCGCGTCCGGTGGCGCCCGGCACCCCGATCGCCAAGCCGACTCCGGTGTTCACCAAGCTCGACGACTCGATCGTCGAGGAGGAGCTGGAACGCCTGCGCGAGAAGGCCTGAMTHILSAVAWPYANGPRHIGHVAGFGVPSDVFSRHMRMAGHDVLMVSGTDEHGTPILVQAEQEGVTPQELADRYNRVIVEDLTSLGLSYDLFTRTTTRNHYAVVQEMFRTVHQNGYMVEKSTMGAISPSTGRTLPDRFIEGTCPICGYDGARGDQCDNCGNQLDPIDLKNPRSRINGETPKFVESNHFFLDLPAFVDALASWLETRAGWRQNVLNFSRNLLDDVRPRAMTRDIDWGIPVPLDGWSENPNKRLYVWFDAVIGYLSSSIEWARRRGTPEAWRDWWTNPDARSFYFMGKDNITFHSQIWPAELLAYDGGGSHGGRPGPYGSLQLPTEVVSSEFLNVEGQKFSSSRGVVIYVRDMLARYQPDAFRYYVAAAGPENQDVDFTWDSFLRRTNDELVAGWGNLVNRTASMVHKNFGEIPAAGEQADVDREVLATTGEAFGKIGSLIESNRQRAAVAEAMRVVGEVNRYVSETQPWKLKTDPDRLATVLHTTTQAVSDCNTLLAPFLPHSAQSVHEVLGGTGEFAPQPVIEEVTDLDDDSRHYPVITGGHDGGYEFPSWESRPVAPGTPIAKPTPVFTKLDDSIVEEELERLREKANANANANANA
AK018_01230936tatD_1COG0084putative metal-dependent hydrolase TatDATGGGACGCTCGAAGCGCGAGCGGGGATTCCCTCCGGACCCGGAGGCCCTGCCGGTCCCGGTCGTGGACAACCACACCCACCTGGACGCCATCGCCGACGTGCTCGACGAGCGGGCGCTGCAGGGCGCCCCGGTCCCGACCGTCGCCGACCACCTCGAGCGGGCCGCCGCCGTCGGGGTGGACCGGTTGGTCCAGGTCGGCTGCGAGCTGCCGTCCGTCGAGTGGACGGACGCGCTCCTGCGCGAGCCCGCGTCCGACGGCCGCCTCCTGGGCGCCGTGGCGATCCACCCGAACGAGGCGGTGCTGCACGCGGGCGTCCGCGAGGTGGGGCCGGACGGGCTGGAGCCGTCGCCGCAGGCGCACCACGCGACCTCGCTCGACGACGCGATCGCCCGGGTGGCCGACGTCGCCCGGGACAACCCGCGCGTCCGGGCGATCGGCGAGACGGGGATGGACCTGTTCCGCACCGGCCCGCAGGGTGAGATCGCCCAGCGCGAGTCCTTCCGGGCGCACGTGGCGCTGGCCAAGGAGCTCGGGCTGGCGCTGCAGATCCACGACCGGGACGCGCACGAGCAGGTGATCGAGGTCCTGCTCGCCGACGGTGCGCCGGAACGCACGGTCTTCCACTGCTACTCCGGCGACGAGCGGATGGCGGCGCTGGCGGCCGAGCACGGCTGGTACCTGTCGTTCGCCGGGCCGGTCACCTACCCGAAGAACGACCACCTGCGCGGCGCGCTGCGCACCGTGCCGCTCGAGCTGGTCCTGGTCGAGACCGACGCCCCCTACCTGCCCCCGCATCCGTACCGGGGCCGGCCCAACGCGCCCTACGTCGCCGGGCACACCGTCCGGGCGATGGCGGAAGTGCTCGAGCTCCCGCTGACGGACCTGTGCACCGCGGTGTCGACGACCTCCGAGACGGTCTACGGCACGTGGTGAMGRSKRERGFPPDPEALPVPVVDNHTHLDAIADVLDERALQGAPVPTVADHLERAAAVGVDRLVQVGCELPSVEWTDALLREPASDGRLLGAVAIHPNEAVLHAGVREVGPDGLEPSPQAHHATSLDDAIARVADVARDNPRVRAIGETGMDLFRTGPQGEIAQRESFRAHVALAKELGLALQIHDRDAHEQVIEVLLADGAPERTVFHCYSGDERMAALAAEHGWYLSFAGPVTYPKNDHLRGALRTVPLELVLVETDAPYLPPHPYRGRPNAPYVAGHTVRAMAEVLELPLTDLCTAVSTTSETVYGTWNANANANANA
AK018_012311164rpf2_1COG3583Resuscitation-promoting factor Rpf2GTGGGCCGGCGCGGACCCCTCCCGGCCGCGACCCGGTTCGTGGCCCGCACCGCCGTGGTGGCGGCGGTCGCCGTCGGCGCCGCCGGTGTCGTGGACGCCCACTCCGAGATCACCCTCGACGTCGACGGCGAGGTGCGCACCGTCGACGGCTACGGCGACACGGTCGCCGACGTGCTGGCCTTCCACGGTGTCAGGCCCGGACCGGACGACCTGGTCCAGCCCGCGCTGACGGCGTCGGCCCCGGACGACGGCGAGGTCGTGGTCCGCACCAGCAAGGACGTCACGATGGAGATCGACGGCGAGACCGTCACCTTCCCGACGACGGCGCACACCGTGGGCGAGCTGCTGGCGGCGCTCGGGCCGCGGGGCGAGGGAGCGGTCACCACGGCGTCGCGCAGCGAGCCGCTGGGGCGGTCGCCGGTCCGGGTCTCGACGCTCAAGACCGTCCACGTCTCGGTGGACGGGTCCGTCCTCCCGCTGCGCACCACGCAGGCCACGGTGCGCGAGGTGCTCGCCGAGGTCGGGATCACCCTCGCGGCGCAGGACGGCACGTCGGTCCCGCTGGGGGCGGCGGCGGTCGACGGCATGGTCGTCGTGGTCCACCGCGGGCAGACAGGTTCCGACCTGGTCACCGAGGTGGTGCCGTTCGAGACCGAGACGGTCGAGTCCGACGACCTGCCGCGCGGGCACGAGGTGGTGCAGACCCGCGGCGTGCCGGGCGAGCGGGTGACGACCTACGAGGTGCGCACCATCGACGGCGCCGAGGTGGAGCGCACCGTGGTCGACCGCACGGTCACGACGGAGCCGGTCACGGAGGTCGTCCTGGTCGGCACGCTGGACGTCTCCGACATCCAGGTCGACCCGGGGTCGGCCAAGGCCGTCGCGCGGTCGCTGGCGGCCGAGCGCGGCTGGGGCAGCGACCAGTTCGTCTGCCTGGACAAGCTGTGGTCCAAGGAGTCGAACTGGCGCTGGAACGCCGAGAACCCGTCCAGCGGGGCCTACGGCATCCCGCAGGCGCTGCCGGGGTCGAAGATGGCCACGGCCGGCTCCGACTGGCGGACGAACCCCACCACCCAGATCCGGTGGGGGCTGGACTACATCGGCGGGCGGTACGGCTCGCCGTGCGCGGCCTGGAACCACTCGATGTCGGTCGGTTGGTACTGAMGRRGPLPAATRFVARTAVVAAVAVGAAGVVDAHSEITLDVDGEVRTVDGYGDTVADVLAFHGVRPGPDDLVQPALTASAPDDGEVVVRTSKDVTMEIDGETVTFPTTAHTVGELLAALGPRGEGAVTTASRSEPLGRSPVRVSTLKTVHVSVDGSVLPLRTTQATVREVLAEVGITLAAQDGTSVPLGAAAVDGMVVVVHRGQTGSDLVTEVVPFETETVESDDLPRGHEVVQTRGVPGERVTTYEVRTIDGAEVERTVVDRTVTTEPVTEVVLVGTLDVSDIQVDPGSAKAVARSLAAERGWGSDQFVCLDKLWSKESNWRWNAENPSSGAYGIPQALPGSKMATAGSDWRTNPTTQIRWGLDYIGGRYGSPCAAWNHSMSVGWYNANANANANA
AK018_012321362rpf2_2COG3583Resuscitation-promoting factor Rpf2ATGAAGGACTGGCCTTTCGACAACGTGGCTCCCTCGACCGAGCCGGTTCCCGTCTTCGCCCACGTGAGCGACGACCCCACCGTCGGCGCCCCGGCCGGCACCGCCGCCGGTGGTGCCGGGACGCCGGGCGACGCGACGGGCGACGCCACCCCGACGCGCCGTCGCCGACGCCGCTGGCCGCTCGTGACCGCCGTGGCCGCGCTCAGCCTCGTCGTGGCGGGCGGCGTCTCCGCCGCCGTCGTCGAGCAGCTGCGCAAGGACGTCACCCTCGACGTCGACGGCCGCCTGACCACGGTGACCACGTACGCCGACACCGTCGACGACGTGCTCGCCGAGGAAGGCGTCCGCGTCGGCGACAACGACGAGGTCACGCCCGCCGTCGACGGCGAGCTGCGCGACGGCGCCGTCGTCCAGGTGCGCTACGGCCGCCAGCTCACCGTCGAGACCGACGGCGAGCAGCGGGACGTGTGGGTCGCGGCGCTCGACGCCGACGAGGCGCTCGCCGACTTCGCCGAGCGCGCCGACCAGGTGCGGCTGCTGCCGTCGCGGTCCGCCGAGCGGGCCACGCTGCCGATCCGCCTCGACGCCGACCAGCCGGTCACGCTCGTCGTGGGCGGCGAGGAGACGGTCGTCGACGACGGCGCCGTCACCCTCGAGGAGCTGCTCGCCGCCGAGGGCGTCGAGCTCGACGCCGACGACCGCGTCCACGTCGAGCAGGTCGAGCCCGCCGACGCGTCCGAGCCCTCGGTGCGGGTCGTCGTCCAGGTCGTCGACGTGACGAAGGTCGACAAGACCAAGAAGGTCGACTTCGACACCGTGACGAAGACCGACCCGGACCGCTACGTCGACGAGGGTTCCTACGTCGCCACCCAGGGCACCACGGGCGAGCGGACCATCACCTGGGAGGTCACCCGTGTCGACGGCGAGGTGACGAACCGCGAGAAGCTCTCCAGCAAGGTCACGACGAAGCCGGTCGACAAGGTCGTGGTCGAGGGCACCAAGGAGCGTCCCGAGCCGGAGCCGGAGCCCGAGCCCGCGCCGCAGCCTGCCGACACCGGCAGCTCGTCGTCCTCCTCCGGGTCGTCGAGCTCCGGGTCCTCGTCGTCGGGCGGCTCCGCGCCGTCCGGGTCGGTCTGGGCCGCGCTGGCGCAGTGCGAGTCCGGCGGCGACCCCACGACCAACACCGGCAACGGGTACTACGGCATGTACCAGTTCTCGCTGTCGACCTGGCAGTCGGTCGGCGGGACCGGGCTGCCGTCCGACGCCTCGGCCGCCGAGCAGACGAAGCGCGCGCAGATCCTGCAGTCGCGGGCCGGGTGGGGCCAGTGGCCGCACTGCGCCGCGAAGCTCGGTCTGCTCTGAMKDWPFDNVAPSTEPVPVFAHVSDDPTVGAPAGTAAGGAGTPGDATGDATPTRRRRRRWPLVTAVAALSLVVAGGVSAAVVEQLRKDVTLDVDGRLTTVTTYADTVDDVLAEEGVRVGDNDEVTPAVDGELRDGAVVQVRYGRQLTVETDGEQRDVWVAALDADEALADFAERADQVRLLPSRSAERATLPIRLDADQPVTLVVGGEETVVDDGAVTLEELLAAEGVELDADDRVHVEQVEPADASEPSVRVVVQVVDVTKVDKTKKVDFDTVTKTDPDRYVDEGSYVATQGTTGERTITWEVTRVDGEVTNREKLSSKVTTKPVDKVVVEGTKERPEPEPEPEPAPQPADTGSSSSSSGSSSSGSSSSGGSAPSGSVWAALAQCESGGDPTTNTGNGYYGMYQFSLSTWQSVGGTGLPSDASAAEQTKRAQILQSRAGWGQWPHCAAKLGLLNANANANANA
AK018_012331341hypothetical proteinATGACCTCCGTGCCCGAGAACCTCGAGCCGCAGCCGACCACGGCTGAGACCCGAGCCGTCACCCGCACGCACCGGGTCCGTCGTCGGCGGACCCTCATCGCCTCCTTCACCGTCGGCGCCCTCGCCCTCGGTGTCGGGTCCGCGGTGGGTGTCTCCCAGGCCCACAAGACCGTGACGCTCGACGTCGACGGCGAGACCCGGTCGGTCGGCACCTTCGCCGGCGACATCGAGGGCCTGCTCGCCGAGCAGGGCGTCGAGGTCGGGGACCGCGACGTCGTCGCCCCGGCGGCCGCGACCTCCCTGCACGACGGGAGCGACGTCGTCGTGCGCACCGGCAAGCAGGTGGCCATCCAGGTCGACGGCGAGGAGTCGTCCACCTGGATCAACGCCGCCGACGCCAACGAGGCGCTGAACCTGCTCAGCCAGCGCGGCAGCGAGGTCCACCTCGTCGCGTCGCGCTCCGAGGACCGTGCGGCGCTGCCGCTGGACGTCCACGACGGCCAGGACGTCGCCGTCGTCGCCGACGACGAGATCGAGGTCGTCGACGGCTCCGAGGACCTGAACGCCGTGCTCGGCGCCGCGGACGTCGAGATCGACGCCGACGACATCGTCACCGTCACCGACGCCGCGACCGCCGACGTCACGGCGAAGAAGCTCCCCGAGGGCGCCGAGATGCCCGCCGTCGCCGCCGTCGTCCAGCGCGTCGACGTCGAGCGGGTCACCAAGACCAAGACGATCGAGCGCGAGGTCAAGGTCAAGCAGAGCGACGACCGCTACGAGGACCTCGACCCGAAGGTCAAGAAGAAGGGCCGTGACGGCTCCCGCACCGTCGTGCGCGAGATCACCACGATCGACGGCGAGGAGGTCTCGAACGAGAAGATCACCTCGATGGTCACCAAGGAGCCGAGGACCCGCGTGCTGGTCGAGGGCACCAAGCCGCGCCCCGAGCCGGAGCCGGAGCCGGAGCCCGAGCCCGCGACGTCGTCCAGCTCCTCCAGCTCCTCGAGCTCGGGGTCGTCCGGGTCGAGCACGTCCTACTCGGGTTCCAACCGCCAGATCGGTCAGCAGATGGCCGCCGCCCGCGGCTGGACCGGCTCGCAGTGGTCCTGCCTCGAGTCGCTGTGGACCAAGGAGTCCAACTGGTCGCACACCGTCGCCAACCCCTCCTCGGGCGCCTACGGCATCCCGCAGTCGCTGCCGGGGTCGAAGATGGCCTCCCACGGCTCGGACTGGCAGACCAACCCGGCCACCCAGATCGCCTGGGGCCTGGACTACATCGCCGGCCGCTACGGCACGCCGTGCGGTGCCTGGAGCCACTCGCAGGCGCACAACTGGTACTGAMTSVPENLEPQPTTAETRAVTRTHRVRRRRTLIASFTVGALALGVGSAVGVSQAHKTVTLDVDGETRSVGTFAGDIEGLLAEQGVEVGDRDVVAPAAATSLHDGSDVVVRTGKQVAIQVDGEESSTWINAADANEALNLLSQRGSEVHLVASRSEDRAALPLDVHDGQDVAVVADDEIEVVDGSEDLNAVLGAADVEIDADDIVTVTDAATADVTAKKLPEGAEMPAVAAVVQRVDVERVTKTKTIEREVKVKQSDDRYEDLDPKVKKKGRDGSRTVVREITTIDGEEVSNEKITSMVTKEPRTRVLVEGTKPRPEPEPEPEPEPATSSSSSSSSSSGSSGSSTSYSGSNRQIGQQMAAARGWTGSQWSCLESLWTKESNWSHTVANPSSGAYGIPQSLPGSKMASHGSDWQTNPATQIAWGLDYIAGRYGTPCGAWSHSQAHNWYNANANANANA
AK018_01234873ksgA_1COG0030Ribosomal RNA small subunit methyltransferase AATGACCAACACCCCTGGCGCCCTGCTCGGCCCTGCGGAGATCCGCGAGCTGGCAGGGCGCCTCGGCGTCCGCCCCACGAAGACGCTCGGGCAGAACTTCGTGCACGACGGCGGCACGGTGCGCAAGATCGTCCGTGCCGCCGGCGTGCAGCCCGGCGACCGGGTCGTCGAGATCGGGCCCGGGCTGGGGTCGCTGACGCTCGGTCTGCTCGAGGCGGGTGCCTCGGTCGTCGCCGTCGAGATCGACCCGGTGCTCGCCGGCCAGATCGCCGAGACGGTGCACCGCCACGCCCCCGACGCGGACTTCGAGGTGGTCACCGCCGACGCGATGGACGTCACCGACCTGCCGGGCGCGCCGCCGTCGGCCCTCGTGGCGAATCTGCCCTACAACGTGGCCGTGCCGGTGCTGCTGACCTTCCTCCAGCGCTTCGCGTCGCTGCAGTCGGTGCTCGTGATGGTGCAGGCCGAGGTCGCCGACCGGCTCGCCGCACCCCCCGGGTCGCGCACGTACGGGGTGCCGTCGGCCAAGGCCGCCTGGTACGGCGCCGCCCGGCGCTCGCTGAACGTCTCGCGGCACGTCTTCTGGCCCGAGCCGAACGTCGACTCGGCCCTCGTGGCGATCGAGCGCCGCGACCCGCCGGTCACGACGGCGACGCGCGAGCAGGTCTTCGCCGTCGTCGACGCCGCCTTCGCCCAGCGCCGCAAGACGCTGCGTGCCGCCCTGTCCGGGACCTTCGGGTCCGGTGCCGCCGCGGAGGAGGCGCTGCGCGCCGCCGACGTCGATCCACGGCTGCGTGGGGAACGTCTCTCGATCGCCGATTTCGCCCGGATCGCCGAGCACCTTCCGGCCGCTGCTGGCACGGTGGACGGGTGAMTNTPGALLGPAEIRELAGRLGVRPTKTLGQNFVHDGGTVRKIVRAAGVQPGDRVVEIGPGLGSLTLGLLEAGASVVAVEIDPVLAGQIAETVHRHAPDADFEVVTADAMDVTDLPGAPPSALVANLPYNVAVPVLLTFLQRFASLQSVLVMVQAEVADRLAAPPGSRTYGVPSAKAAWYGAARRSLNVSRHVFWPEPNVDSALVAIERRDPPVTTATREQVFAVVDAAFAQRRKTLRAALSGTFGSGAAAEEALRAADVDPRLRGERLSIADFARIAEHLPAAAGTVDGNANANANANA
AK018_01235933ispE_1COG19474-diphosphocytidyl-2-C-methyl-D-erythritol kinaseGTGACCAGTCTCGCTGCCGCCCCGTCGCCGTCCGTCCGCGTCCGAGCGCCGGGGAAGATCAACCTGTCCCTGCGGGTCGGTCCGGTCGAGGAGGACGGCTACCACCCGCTGGTCACGGTGTTCCAGGCGGTGGCCCTGCACGAGGAGGTCACGGCCACCGAGGTCGCCGAGGGGGTCGGCCTCTCGCTGACGGTCGACGGACCGCAGGCCGACCGGGTCCCCCTGGACGCGTCGAACCTCGCCTGGCGTGCGGCCGAGGTGCTGGCCGAGCACGTCGGCACGTCGCCGGACGTCGCCCTGCACCTGTCCAAGGGGGTCCCCGTCGCGGGCGGCATGGCGGGCGGGTCCGCCGACGCCGCCGCCACCCTCGTCGCGTGCGACGCGCTGTGGGGGGCCGGACTGTCCCGGGCCGAGCTGTCGGGGCTGGCGGCCCGGCTCGGCTCGGACGTGCCCTTCGCGCTGCTGGGGCACACCGCCGTCGGCACGGGCCGCGGCCACCTGCTGACCCCGGCGATGTCCCGCGGCGAGTTCCACTGGGCGTTCGCCACGCGGGACGAGGGGCTGTCGACCCCGGCGGTGTACGGCCGGTTCGACGAGATGTACGGGGCGACCGCCCCGCCGGTCGACGTCGCCGACGACAACGGCCTCATGCAGGCCCTGCGCGCCGGGGACCCGACGGCGCTCGGGGCGGCGCTGCACAACGACCTCGAGCCGGCTGCGCTCGACCTCCGCCCCGAGCTGGAGCGCACCCTGGAGATCGCCCGCAACGGCGGCGCGCTCGGGGCGATGGTGTCCGGTTCCGGGCCGACCGTCGCCGCGCTGGCCCGGTCCCGCCAGCACGCGCTGGCGATCGCCGCGACCTGGACCGCCGAGGACGCCGCCGACGCGGTGTGGTGCACGACGGCGCCGGCCGCCGGGGCCCGCGTCCTCTGAMTSLAAAPSPSVRVRAPGKINLSLRVGPVEEDGYHPLVTVFQAVALHEEVTATEVAEGVGLSLTVDGPQADRVPLDASNLAWRAAEVLAEHVGTSPDVALHLSKGVPVAGGMAGGSADAAATLVACDALWGAGLSRAELSGLAARLGSDVPFALLGHTAVGTGRGHLLTPAMSRGEFHWAFATRDEGLSTPAVYGRFDEMYGATAPPVDVADDNGLMQALRAGDPTALGAALHNDLEPAALDLRPELERTLEIARNGGALGAMVSGSGPTVAALARSRQHALAIAATWTAEDAADAVWCTTAPAAGARVLPGPT0007605_880DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007605-ispE-K00919NANA
AK018_01236972axeA_1COG3458Cephalosporin-C deacetylaseGTGGCCCAGTTCGACCTGCCCGTGACCGAGCTCGAGCAGTACCGCCCCACGCTCGAGGAACCCGGCGACTTCGACGACTTCTGGTCCGGCACGCTCGCCGAGGCGCGCGGGACCGGTGACGACGTGCGCCTCGAGCGGGTGGACGCCGGGCTGACCGAGCTCACGGTCGACGACGTCACCTTCCCCGGGTTCGGCGGACACCCGATCAAGGCCTGGCTCGTCCGACCGGCACGGGTCGACGGGGCCCTGCCCGCCGTCGTGGAGTTCGTCGGGTACGGCGGCGGCCGCGGGCTGCCGCACGAGCAGCTCGGGTACGCCGCGGCCGGGTACGCGCACCTGGTCGTCGACACCCGCGGACAGGGTTCCGGCTGGGGCTCGGGCGGCGACACCCCCGACCCGGTGGGGCACGGCCCCGCCACCCCCGGGTTCATGACCCGCGGCATCCTCGACCCGGCCGAGCACTACTACCGGCGCGTCTTCACCGACGGTGTGCGGGCCGTGGACGCCGTGCGGCAGATCGACGGGATCGACCCGGCGCGCGTCGCGGTCGCCGGAACCTCGCAGGGCGGCGGCATCGCGATCGCCGTCGCGGGACTGCTGCCCGACGTCGTGGCCGCAGCGCCGAACGTGCCGTTCCTGTGCCACTTCCGGCGCGCCGTCCAGATCACCGACGCCGACCCGTACGCCGAGATCACGCGGTACCTCGCGGTGCACCGGGAGCACGAGGACGCCGCCTGGCGCACGCTGTCGTACCTCGACGGGGTCTCGTTCGCGCGGCGCGCCCGGGCCGCCGGCCTGTTCTCCGTCGCGCTGATGGACACGATCTGCCCGCCGTCGACGGTGTACGCGGCGTTCAACGCGTGGGGCGGCACGGACAGGTCGATCGACGTGTACCCGTACAACGGGCACGAGGGCGGTCAGCACTACCGGTTCGCGCCGACCCTGGCGTTCCTGCGCAAGCACCTGGAATGAMAQFDLPVTELEQYRPTLEEPGDFDDFWSGTLAEARGTGDDVRLERVDAGLTELTVDDVTFPGFGGHPIKAWLVRPARVDGALPAVVEFVGYGGGRGLPHEQLGYAAAGYAHLVVDTRGQGSGWGSGGDTPDPVGHGPATPGFMTRGILDPAEHYYRRVFTDGVRAVDAVRQIDGIDPARVAVAGTSQGGGIAIAVAGLLPDVVAAAPNVPFLCHFRRAVQITDADPYAEITRYLAVHREHEDAAWRTLSYLDGVSFARRARAAGLFSVALMDTICPPSTVYAAFNAWGGTDRSIDVYPYNGHEGGQHYRFAPTLAFLRKHLEPGPT0011020_431DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-CEPHALOPORIN_METABOLISM,PGPT0011020-cah-K01060NANA
AK018_01237531hypothetical proteinGTGAGCAGTGACTGCGACCTCACGGACGTGGAGCTGAGGGCGGTCGCCCGCTACGTCGCCGAGTCGGCCGCACTCGTCCTTCCGGTGTTCGAGGCCGTCCGACCCGACGACCCGCGCCCTCGCGCGGCGCTGTCCGCCGCGCAGGAGTTCGTCGACGGCGCCCGGCGCGGCCGACGTCAACGGGCCGCCTCGACGGACGCGCACCGTGCGGCGGCGGAGGCTCCCAGCGAGGCGTCCCGTCTGGCGGCCCAGGCAGCAGGCGATGCCGCGTCGGCGGCGTACCTGCACCCGATCGCCCGGGCCCACCAGGTGGCGCACATCCTGCGCGCCGCCGCGAACGCCGCACGCATCGCCGAGATCCATGCGGGCGACGACCCGGCGGCGGGCAACCTCGCGATCCGGCAGGCGTGCGAACGCGCCTCCGCGGTGGTCGTCGACGTCCTGGGCCGGTACCCCGCGGTGCCGGCCGGCCGCACGCGCGCCTCGCAGCTCCTGTCGGAGCTGGACGTCTCGGTGCGCGCGTCGAGGTGAMSSDCDLTDVELRAVARYVAESAALVLPVFEAVRPDDPRPRAALSAAQEFVDGARRGRRQRAASTDAHRAAAEAPSEASRLAAQAAGDAASAAYLHPIARAHQVAHILRAAANAARIAEIHAGDDPAAGNLAIRQACERASAVVVDVLGRYPAVPAGRTRASQLLSELDVSVRASRNANANANANA
AK018_012381899btuD_4Vitamin B12 import ATP-binding protein BtuDGTGGCACATCTCCTCGGCGCGGACAGCATCTCGCTGTCCATCGGCACCCGCACGCTGCTCGACGACGTCTCCCTCGGGCTCGACGACGGTGACCGGATCGGCGTCGTCGGACCCAACGGCGCCGGCAAGTCCACGCTGCTGCGGATGCTCGCCGGCACGGCCTCGCCCGACGGCGGTCGCATCACCCGGGTGGGCGGCTCGCGGCTCGGGATGCTCGATCAGCGCGACGACGTCCCCGAGGGCGCGACGGTGCTCGACCTCGTGCACGGCGACGACGAGACGCACGAGTGGGCCTCCGACCCGCGCGTCCGCGCCGTGCACGCCGGCCTCCTGGCCGACCTCGACCTCGACAAGCCCGCCACCACGCTGTCCGGCGGCCAGCGCCGTCGTGTGGCCCTGGCCCACCTGCTCGTCGAGGACCCCGACGTGCTGCTGCTCGACGAGCCGACCAACCACCTCGACGTCGAGGGCGTGGCCTGGCTCGCCGAGCACCTGCGGAACCGCTACGGCCGCCCCGGGGCGACGGGCGCGCTCGTGGTGGTCACCCACGACCGCTGGTTCCTCGACGCCGTCTGCTCGCGCATGTGGGAGGTCCGCGGCGACGGTTCCGGCGCCGTCGACGGCTACGAGGGCGGCTACGCCGCCTACATCCTGGCCCGCGCCGAGCGCTCCCGGCAGGCTGCTGCGGCCGCCGAGAAGCGCAACAACCTGCTGCGCAAGGAGCTCGCCTGGCTCAAGCGCGGCGCCCCGGCGCGCACGTCCAAGCCGAAGTTCCGGGTGGAGGCGGCCCAGACGCTCATCGCCGACGAGCCGCCGCCGCGTGACCAGCTCGAGCTGACGCAGATGGCCACCAAGCGGCTCGGCAAGGACGTCCTCGACCTCGAGGACGTCACCGTGCGCGTCCCGCTGCCCGACGGCGGGGAGCGCACCCTGCTCGACGACGTCACGTGGCGCCTGGGGCCCGGCGACCGCTACGGCGTCGTCGGGGTCAACGGCGCCGGCAAGACGACGCTCCTCGCCCTGCTGGCCGGGCGCCGCGACCCCGAGGGCGGCCGGGTGCGGCGCGGCAAGACGGTCGAGGTCGCCGAGCTGACCCAGGAGGTCACCGAGCTCGACCAGGTCGGGCACCTCACCGCCGTGCAGGTCGTCGACCGGGAGAAGCGCACCGTCGTCGTGGATGGCAAGGAGCTCACCGCCGGCCAGCTCACCGAACGCCTCGGCTTCACCCGCGAGCGCGCCCACACCATCGTGCGGAACCTCTCCGGCGGGGAACGCCGACGGCTGCAGCTCCTGCGCCTGCTCGTCTCGGAGCCGAACGTGCTGCTTCTCGACGAGCCCACCAACGACCTGGACACCGACACCCTGGCCGCCGTGGAGGACCTGCTGGACGGCTGGCCCGGCACCCTGATCGTGGTGTCCCACGACCGGTACCTGCTCGAGCGGGTCTGCGACCGGCAGTGGGCGCTGCTCGGCGACGGGGCGCTGCGCGACCTGCCGGGTGGCGTGGAACAGTACCTGGAGCTGCGGCGCGGCGGTGCGGGTTCCGGTCCGGCGTCGGGCGGGGAGTCCTCGTCCCGAGGTACGCCATCCGCCTCGCTCGTTCCTCGCTCGGCTCCCGTCAGGCCCGGCCAGCCTCTCGACGAGGACTCCTCGCCCGACGCCTCGGAGAAGCCGGTACCGTCGGCGGCGGAGCAGCGGCAGGCCAAGAAGGCCGTGCAGCGCCTGGAGAAGCAGCTCGCCCGGCTGACGCAGGAGGAGGCGCGCCTGCACGAGCAGATGGCCGCGGACCCCACGGACTTCGAGGCCACGGCCAGGCTCGACGCACGGCTGCGGGAGCTCAGCGCCGAGAAGGACGACCTCGAGGTGCAGTGGCTGGAGGCCGCCGAGCTCGTCGAGTGAMAHLLGADSISLSIGTRTLLDDVSLGLDDGDRIGVVGPNGAGKSTLLRMLAGTASPDGGRITRVGGSRLGMLDQRDDVPEGATVLDLVHGDDETHEWASDPRVRAVHAGLLADLDLDKPATTLSGGQRRRVALAHLLVEDPDVLLLDEPTNHLDVEGVAWLAEHLRNRYGRPGATGALVVVTHDRWFLDAVCSRMWEVRGDGSGAVDGYEGGYAAYILARAERSRQAAAAAEKRNNLLRKELAWLKRGAPARTSKPKFRVEAAQTLIADEPPPRDQLELTQMATKRLGKDVLDLEDVTVRVPLPDGGERTLLDDVTWRLGPGDRYGVVGVNGAGKTTLLALLAGRRDPEGGRVRRGKTVEVAELTQEVTELDQVGHLTAVQVVDREKRTVVVDGKELTAGQLTERLGFTRERAHTIVRNLSGGERRRLQLLRLLVSEPNVLLLDEPTNDLDTDTLAAVEDLLDGWPGTLIVVSHDRYLLERVCDRQWALLGDGALRDLPGGVEQYLELRRGGAGSGPASGGESSSRGTPSASLVPRSAPVRPGQPLDEDSSPDASEKPVPSAAEQRQAKKAVQRLEKQLARLTQEEARLHEQMAADPTDFEATARLDARLRELSAEKDDLEVQWLEAAELVENANANANANA
AK018_01239933ydhF_1COG4989Oxidoreductase YdhFATGAAGACCGTCCCCCTCGGCACCAGCGGCCGCCAGGTCCCCAACGTCGTCCTCGGCCTGATGCGCATCCAGCAGATGGACGACGACGCCGTCCGCGAGCTCGTGCGCACCGCCCGCGACGCCGGCATCGACTTCGTCGACCACGCCGACGTCTACGGCGACGCGCTGCACGGCTGCGAGCGCCGGTTCGCCGAGGCCATGCAGCTCACGCCCTCGCAGCGCGAGGAGCTGACCATCCAGTCCAAGGCCGGCATCGTCCGCGAGGGCCCGTACTTCGACTTCTCCTACGACCACCTGGTGTCGTCCGTCGAGGAGTCGCTGAAGGCCCTCGACACCGACTACCTGGACGTGCTGCTGCTGCACCGCCCGGACGCCCTCGTGGAGCCCGACGAGGTCGCCCGCGCCTTCGACCACCTGGAGTCGTCCGGCAAGGTGCGCTCCTTCGGCGTCTCCAACCACACGCCGGGCCAGATCGAGCTGCTGACGAAGTCCGTGCGCCAGCCGCTCGTCGCGAACCAGCTCCAGCTCTCGATCACCCACGCACCGCTGGTCGCGCAGGGCGTGGCCGCCAACATGGCCGGCCTGGACCAGTCCGCCGGGCGCGACGGCGGGCTCCTCGACTACTGCCGCCTGCACGACATCACCGTGCAGGCCTGGTCGCCGTTCCAGGCCGGGTTCTTCACCGGCGTGTTCCTCGGCTCGGAGAACTACCCCGAGCTGAACGCCGTCATCAACCGGTTGGCCGCGAAGTACGACGTGCCGGCCATCGCGATCGCAACGGCCTGGATCACCCGCCACCCGGCCGGGATGCAGGTCGTGCTGGGCACCACGACGCCGGAGCGCGTCGCCGGTGCGGCGCAGGGCTCGGACGTCCCGCTCACCCGCGCCGAGTGGTACGAGCTGTTCCGCGCCGCGGGCTACACCGTGCCGTGAMKTVPLGTSGRQVPNVVLGLMRIQQMDDDAVRELVRTARDAGIDFVDHADVYGDALHGCERRFAEAMQLTPSQREELTIQSKAGIVREGPYFDFSYDHLVSSVEESLKALDTDYLDVLLLHRPDALVEPDEVARAFDHLESSGKVRSFGVSNHTPGQIELLTKSVRQPLVANQLQLSITHAPLVAQGVAANMAGLDQSAGRDGGLLDYCRLHDITVQAWSPFQAGFFTGVFLGSENYPELNAVINRLAAKYDVPAIAIATAWITRHPAGMQVVLGTTTPERVAGAAQGSDVPLTRAEWYELFRAAGYTVPNANANANANA
AK018_01240897cynR_1HTH-type transcriptional regulator CynRATGGAGCTGCGGCAGATGGAGTACCTGGTGGCGGTGGCCGAGGAGGGACACTTCACGCGCGCCGCCGCGCTGTGCGGGGTGAGCCAGTCCGGGCTGTCCGCCGCGATCCGGAACCTCGAGAAGGAGCTCGGCGCGTCCCTGTTCGACCGCACGACCCGGCAGGTCGCCGTCACCGACGCCGGCCGGGCCCTGCTGCCGTTCGCCCGGCAGATGCTCGCCCAGGCGTCGGCCGGCCGCGACGCCGTCGTGCGCGCCAGCCACCAGCTCTCGGGCCGGCTGCGGATCGGGTCCGAGCAGTGCCTCGGTGTTCTCGACGTCGGGCCGCTCCTGGAACGCTTCCGGCTGCGCTACCCGCTGGTGGACGTGCAGTTCACGCAGGCGGGTTCGCGCGAGCTCGCCACCCAGGTGCGCGCCGGTGACCTCGACGTGGCGTTCCTCGCCACGACCCAGCATCTCGGCCCCCTGCGCCGCCTCGAGCTCGGCCGCCGTCCCGTCGTCGGTCTCGTGCACCCCACCGACGACCTGGCCCGCGCGGCGCAGGTCTCGTGGGAGGACCTCGCCGTGCGGGACTTCGTGGACTTCCGCGAGCCATGGGCCATCCGACAGCTCGTGGACGCCGCCTTCGCCGACCGGCACCTCGAGCGTCGCGTCCGCATGAGCGTCGACGACGTCCACACCCTGCTCGACTTCGTCCAGCGTGGGCTGGGGGTCGCCGTCGTGCCCCAGCACGTGGCCGCGAAGCCGCAGGCCGCGGGTCTCGCCGTCCTCGACCTGCCGGACGGCGGGGCCCCGGAATGGGTGGTCTCGGCGGTCTCGGCGCCCACGGCCGAGCCGGCCGCGCTCCGGCTGCTGGAGCTGCTCGGCGAGGCGAACCTCGCCGTCGCGCGGGCGGCCTGAMELRQMEYLVAVAEEGHFTRAAALCGVSQSGLSAAIRNLEKELGASLFDRTTRQVAVTDAGRALLPFARQMLAQASAGRDAVVRASHQLSGRLRIGSEQCLGVLDVGPLLERFRLRYPLVDVQFTQAGSRELATQVRAGDLDVAFLATTQHLGPLRRLELGRRPVVGLVHPTDDLARAAQVSWEDLAVRDFVDFREPWAIRQLVDAAFADRHLERRVRMSVDDVHTLLDFVQRGLGVAVVPQHVAAKPQAAGLAVLDLPDGGAPEWVVSAVSAPTAEPAALRLLELLGEANLAVARAANANANANANA
AK018_012411281yycBCOG2807putative transporter YycBATGAGTAGCCCCGCCGGCGGCACGAGCGACGGCGGCACCGGCACCGGCGACGACGGCGGCGACGGCGGCACCGACCGGGCGACCGCGTTCGCCGCGGGCGCCGGCGGGCTCGTCCTGACCGCGCTGCTGCTCGTGGCGCTCAACCTGCGCGCACCGTTGACCGCGCTGGCCCCGGTGATCGACCAGGTCGCCGCCGGCCTGGGGATGTCGTCGGCGGGCGTCGCGCTGCTGACGTCGATCCCGGTGCTGACGTTCGCGGTGTGCACCCCGGCGTCCGCGGTGCTGGTGGGCCGCTGGGGCCCGGAACGTGCGCTCGTCGTCGGGCTGCTGGCGATCCTGGTCGGCACCCTGCTGCGCTCGAGCGGCTCCGTCGGGGCAGCCCTGGTCGGCACCGCCGTCCTGGGCATCGGCATCACGCTCGGCAACGTCTCCGTGCCGGTGATCATCACCCGGGACTTCCGGCGCCGCGCGGCCGGCGTGACCGGTGCGTACACCGCCACCATGAACGCCGGGTCCACCCTGACGACGGTGTTCACGGTCCCGCTGGCCGTCGCGTTCGGCTGGCAGTGGGCGCTGGCGGGGTGGGGCGTGCTCGCGGTGGTCGCCCTGGTCGCCTGGGTCCCGGCCGGCCGGTCGCTGTCGCGCCGCCACGACGGGGTGCCGACGTCGGACACCCGCGCGCAGGAGCGTCAGCGGGCGACGGCGCAGCGCGGGCTCGCCGTGCTGCTCGCGATCGCCTTCGCCGGGCACACCGCCGGGTACTACGCGATGTCGACGTGGCTGCCGACGATCCTCGCCGACCGGCTCGGCTTCGACGCCGCCACCGCGGGCAGCGGAGCCGCCCCGTTCCAGCTCGCCGCCGTCGTCGGGGCGTTCCTGGTGCCGCTCGGCCTGGCCGGGCGCCTGTCCGAGCGGACCGTGGCGACCGTCCAGTGCGTCCTCTGGCTCACCCTGCCGGTGGCGCTGCTGCTCGTCCCGCAGCTGTGGTGGGTCGGGGTCTGCCTGGCCGGCGCGGCCCAGGGCGGCATCTTCGCGGTGATCTTCACGCTCGTGGCCCGGCGGTCGCCGTCGGTGGCCACGGCCCGCCGCACCTCCGCCGTCGTCCAGACCGGCGGCTACGCGTGCGGCGCGACCGCCCCCATCGCGCTCGGGGCCGTGTACGAGGCGACCGGAGGGTGGACGGCGCCCCTGGCCCTGCTCACCGCGCTGCTGGTGGCGATGACCGTGGCACTGTGGCTGGCTGCGGGACCGCCGCGCGTCACCACCGCACCGAGCCGGTAGMSSPAGGTSDGGTGTGDDGGDGGTDRATAFAAGAGGLVLTALLLVALNLRAPLTALAPVIDQVAAGLGMSSAGVALLTSIPVLTFAVCTPASAVLVGRWGPERALVVGLLAILVGTLLRSSGSVGAALVGTAVLGIGITLGNVSVPVIITRDFRRRAAGVTGAYTATMNAGSTLTTVFTVPLAVAFGWQWALAGWGVLAVVALVAWVPAGRSLSRRHDGVPTSDTRAQERQRATAQRGLAVLLAIAFAGHTAGYYAMSTWLPTILADRLGFDAATAGSGAAPFQLAAVVGAFLVPLGLAGRLSERTVATVQCVLWLTLPVALLLVPQLWWVGVCLAGAAQGGIFAVIFTLVARRSPSVATARRTSAVVQTGGYACGATAPIALGAVYEATGGWTAPLALLTALLVAMTVALWLAAGPPRVTTAPSRPGPT0005211_1303DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_CYANATE_DETOXIFICATIONXENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449NANA
AK018_01242504hypothetical proteinATGGAGAGCACGCACCCCGGTGACGAGGTCGACCGCATCGTCGCCGCCTGGCAGCGCGAGCGCCCCGACCTCGACGTCGAACCCCTGACCGTCTTCTCACGCATCAGTCGGCTGGCCCGCCACCTCGACCGGGCACGGCGCGGCGCCTTCGCCCGGCACGACCTCGAGACCTGGGAGTTCGACGTGCTGTCCGCGCTGCGTCGCGCCGGCGAGCCGTACCGGCTGTCGCCGGGCCGTCTGGTCGCCCAGACCCTGGTCACCAGCGGCACCATGACCAACCGGATCGACCGGCTCGCCGAGCGCGGCCTCGTCGAGCGACACCGCTCCCCCGAGGACCGTCGCGGCGTGCTCGTGCGGCTGACCGGCGCCGGACGCTCACGCGTGGACGCGGCCATGAGCGACCTGCTCGACGTCGAGACCCAGGTCCTCGACGCCCTGCCGGCCGAGGAACGCCCCCGGCTCGCCGCCCTGCTGCGCACCCTCGGCGCCCAGTTCGATGAGTAGMESTHPGDEVDRIVAAWQRERPDLDVEPLTVFSRISRLARHLDRARRGAFARHDLETWEFDVLSALRRAGEPYRLSPGRLVAQTLVTSGTMTNRIDRLAERGLVERHRSPEDRRGVLVRLTGAGRSRVDAAMSDLLDVETQVLDALPAEERPRLAALLRTLGAQFDENANANANANA
AK018_012431527hypothetical proteinATGATCCGACGACGTACGACGACCGGTCTCGGCGCGCTGCTCGCAGCCGCCACGATCCTCACGGCCTTGCCGGCGGCCTCCGGGGCGCCGACGGACGGCACGGACCACGAGGCCGCCGGTGGTGTCGACGCCTGTCGGCCGGCAGCGGCCGTCGAAGGGCTGGGGGCCGGGTTCCCCGTGGACGACCAGGCGGTCCCGGCGACGGGCACCGTGCACGCCACGACGGTCTTCGTCGACTTCTCGGACGCACCCGCCGGTGCGGACACCCTGGCCGAGGCCGGGGACAACCTGCGCTCCGGCGTGGAGTACCTCGAGGACGTCTCCGGCGGCCGGCTCGCGCTGGAGGTGGCGGCGTCGGACTCGTGGGTGCGGATGCCGGAGCCCTCGACCGCGTACCCGTTCGAGCGGGGCCTGACCTACGCCGAGCACGTGCGCTACATCGAGGACGCGGTCGCGTCCGCCGACCCGTCCGTCGACTTCTCGGACACCGACGTCGTCTGGGTCGTGGCGACCGCGGAGGCCGAGGCCATCAGCTACTCACCCACCACGAACTTCCTCGACGTCACGGTCGACGGCAACCGCCTCACGCACGCCGTCACCATCGGTGCCGACCAGTGGTCCTGGGGCGGTCTCGTCCTGGCGCACGAGTCCGGCCACACCTTCGGACTGCCGGACCTCTACCTGGCCGAGGCCCCCGCGGACGACCCGGGGAACCACCACGCGGCCGTGGGCGGCTGGGACCTCATGGGTCTGATCTCCGGGCACGCACCGGAGCTGTTCACGTGGAGCCGCTGGCAGCTCGGCTGGATCGACGACGAGCAGGTCGTCTGCGCCGACGGCACGACCCCGTCGTCGGCGGACCTCGTCCCGGTCCCGGCCGCCGCGTCGGCGGACGCGTCGCAGGACGCGATGCTCGTGCTGCCGACAGGGCCGACCACGGCCGTCGTGGTGGAGAACCGGCAGCGGGCCGGCTACGACGACGGCGCGCTCGCGACCGGGGCGCTCGTCTACACGGTCGACACCTCGGTGCGCAGCGGCGACGGGCCGCTCCGCGTCGTCGACGCGACGCCGGGGTCCGCGGCCGGGCTCGACGACGCGCCGTTCGGCCCGGGCGACCGCTGGACGGAACCCACCACGGGCGCGAGGCTGACCTTCGCGACCGCGGAGGACCAGGGGTCCGCCGACGGGGCGCCGGTCCTGACCGTGACGGTCGAGCCGGACACCTCCGCGACGCCCCCGCTCGAGCTGGACACCGTCGTCCAGCCACGGTGCCTGGGGGGCCGCGGCTTCCTGGCCGTGCGGGTGCAGAACGGCACGGACGTCCCCGTGTCCGTCACGCTGGACACGCCGTACGGGACCCGGACGGTCGAGGACGTCGCACCTGACCGGTACTCCCACCGGACGTTCGGTGCGCGGTCCGCGGCGGTGCCCGCCGGGACGGTGTCGGTGACGGGGCAGGCCGTGGTCGGCGGCGAGGACGTGACCTCGACCGAGGACGTCCCGTTCGAGGCCTTCACCTGCGACTGAMIRRRTTTGLGALLAAATILTALPAASGAPTDGTDHEAAGGVDACRPAAAVEGLGAGFPVDDQAVPATGTVHATTVFVDFSDAPAGADTLAEAGDNLRSGVEYLEDVSGGRLALEVAASDSWVRMPEPSTAYPFERGLTYAEHVRYIEDAVASADPSVDFSDTDVVWVVATAEAEAISYSPTTNFLDVTVDGNRLTHAVTIGADQWSWGGLVLAHESGHTFGLPDLYLAEAPADDPGNHHAAVGGWDLMGLISGHAPELFTWSRWQLGWIDDEQVVCADGTTPSSADLVPVPAAASADASQDAMLVLPTGPTTAVVVENRQRAGYDDGALATGALVYTVDTSVRSGDGPLRVVDATPGSAAGLDDAPFGPGDRWTEPTTGARLTFATAEDQGSADGAPVLTVTVEPDTSATPPLELDTVVQPRCLGGRGFLAVRVQNGTDVPVSVTLDTPYGTRTVEDVAPDRYSHRTFGARSAAVPAGTVSVTGQAVVGGEDVTSTEDVPFEAFTCDNANANANANA
AK018_01244597hypothetical proteinATGACCGCGAGCCAACGCCGGGAGCAGCTGGTGGCGGTCAGTCGCGGGCTGTTCGCCGCCAAGGGGTTCGAGGGCACGAGCGTCGAGGAGATCGCCAGCACGGCCGAGGTGTCCAAGCCGGTGGTCTACGAGCACTTCGGCGGCAAGGAGGGCATCTACGCCGTCATCGTCGACCGCGAGGTGCAGGCGCTGACCGGCGCCCTCACCGGGGCCCTCGCCGAGGGCGGCCACCCCAAGGTGATGGTCGAGCGCACGGCGCTGGCGCTGCTGGGGTACATCGAGTCCTCCGAGGACGGCTTCCGCATCCTGGTCCGCGACTCCCCCGTCGCGCAGGCCACGGGCACGTTCTCGTCCTTGATCGGCGACGTCGCCTCCCAGGTCGAGCACATCCTGGCCGAGGAGTTCCGCAGCAACGGGCTGGACCCCAAGGTGGCCCCGCTGTACGCGCAGATGCTGGTCGGGATGGTGGCGCTGACCGGGCAGTACTGGCTCGACGCCCGCCGCCCGAAGAAGTCCGACGTCGCCGCGCACCTGGTCAACCTGGCCTGGAACGGGCTGTCCGGCATGGAGCGCAAGCCCGGGCTCATCGGGCGCTGAMTASQRREQLVAVSRGLFAAKGFEGTSVEEIASTAEVSKPVVYEHFGGKEGIYAVIVDREVQALTGALTGALAEGGHPKVMVERTALALLGYIESSEDGFRILVRDSPVAQATGTFSSLIGDVASQVEHILAEEFRSNGLDPKVAPLYAQMLVGMVALTGQYWLDARRPKKSDVAAHLVNLAWNGLSGMERKPGLIGRNANANANANA
AK018_012461710glmU_1COG1207Bifunctional protein GlmUGTGGTTTCCACGGCCCCCCAGGGCGACCAGCAGGCGGCGGACGGTTCGACGTCCGCAGCGCACGCCGACCCGCGACCGGCCGCGGTCGTGGTCCTGGCTGCCGGCCAGGGCACCCGGATGAAGTCCGCGGTCCCCAAGGTCCTGCACGGCATCGGCGGCCGCACCATGCTGGGCCACGCCATGACGGCCGCCCGCGAGCTGGCGCCGGAGCACGTCGCCGTCGTGGTGCGGCACGAGCGCGAGCAGGTCGCCGCCGCCGCGCGCGAGCTCGACGAGGCCGCGCTCGTCGTCGACCAGGACGAGATCCCCGGGACGGGGCGGGCCGTGCAGTGCGCGCTCGACGCGCTGGACGTGCGCACGCACGCCACCCGTGCCGCCGACCTGGTGCACAGCGCCGACGAGGTCCACGACGCCGACGGCGCGCACCCGCTGGGCGACGGGCTCGACGGTGCCGTCGTGGTGCTGGCCGGCGACATCCCGCTGCTCGACGGCGCCACGCTGGCCGAGCTGCTCGCCGCCCACCACGCGGACGGCAACGCCGTGACCGTGCTGACCACCGAGCTCGCCGACGCCACCGGCTACGGCCGGATCGTGCGCGAACCCGGCACCGGCGACGTCACCGCCATCGTCGAGCACAAGGACGCCACGGCCGAGCAGCGCGAGATCCGCGAGATCAACTCCTCGGTCTACGTGTTCGACGCCGCCGTGCTGCGCCGCGGCCTCGGCGGGCTCGGCAGCGACAACGCGCAGGGCGAGGTGTACCTCACCGACGTGATCGCCTCGGCGCGGGCCGACGGCGGTGCGGTGCGCGCCGTGCTCTCCGACGACCCGATGCTCGTCGAGGGCGTCAACGACCGGCAGGCCCTGGCGACGCTCGGCGCCGAGCTGAACCGTCGCACCCTGGAGCGCTGGATGCGCGAGGGCGTGACCGTCGTCGACCCGGCCACCACCTGGGTGGACGTCGACGTCGAGCTCGCCCGCGACGTCACCCTGCTGCCCGGCACGCAGCTGCACGGCGCGACGACCGTCGCCGAGGGCGCGACGGTCGGCCCGGACACCACGCTGACCGACGTCGAGGTGGGCGAGCGGGCGAGCGTGGTGCGCACCCACGGCTCGCTCTCGGTGATCGGCGCCGACGCCTCGGTGGGCCCCTTCGCCTACCTGCGGCCGAACACCGTGCTCGGCGCTCGCGGGAAGATCGGCACGTTCGTCGAGACGAAGAACACCGAGATCGGCGAGGGGTCGAAGATCCCGCACCTGTCGTACGTCGGCGACGCCACCATCGGCGCCGAGAGCAACATCGGCGCCGCCTCGGTGACCGTCAACTACGACGGCGTCCACAAGCACCGCACGGTCATCGGCTCCCACGCGCGCACCGGGGCGGACAACATGTTCGTCGCCCCGGTGACGATCGGCGACGGCGCCTACACGGCCGCCGGCAGCGTCGTCACGCGGGACGTCCCCGCCGGCGCGCTCGGCGTGAGCCGCCCGCAGCAGAAGAACATCGACGGCTGGGTGGAGCGGCGTCGCGCCGGCACGCCCGCCGCGGAGGCCGCCGCCCGCTCCCGCGACGAGGGCGACGAGGGCGCCGGCGGCCTCGGCCCGCAGGCGAAACGCGAGCTGGCCGAGCACAATGCCCTCACAGGAGCGATCCCGAAGGTGTCGCGCACCGGCGACGCCGCCGACCCGGAGTCCTCCGAGTCCGCCTGAMVSTAPQGDQQAADGSTSAAHADPRPAAVVVLAAGQGTRMKSAVPKVLHGIGGRTMLGHAMTAARELAPEHVAVVVRHEREQVAAAARELDEAALVVDQDEIPGTGRAVQCALDALDVRTHATRAADLVHSADEVHDADGAHPLGDGLDGAVVVLAGDIPLLDGATLAELLAAHHADGNAVTVLTTELADATGYGRIVREPGTGDVTAIVEHKDATAEQREIREINSSVYVFDAAVLRRGLGGLGSDNAQGEVYLTDVIASARADGGAVRAVLSDDPMLVEGVNDRQALATLGAELNRRTLERWMREGVTVVDPATTWVDVDVELARDVTLLPGTQLHGATTVAEGATVGPDTTLTDVEVGERASVVRTHGSLSVIGADASVGPFAYLRPNTVLGARGKIGTFVETKNTEIGEGSKIPHLSYVGDATIGAESNIGAASVTVNYDGVHKHRTVIGSHARTGADNMFVAPVTIGDGAYTAAGSVVTRDVPAGALGVSRPQQKNIDGWVERRRAGTPAAEAAARSRDEGDEGAGGLGPQAKRELAEHNALTGAIPKVSRTGDAADPESSESAPGPT0018955_16DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCOSAMINE_MODIFICATION,PGPT0018955-glmU-K04042NANA
AK018_01247984prs_1COG0462Ribose-phosphate pyrophosphokinaseATGAACACCTCCATCCCCGGTACCGGAGAGCGCACCCTCGTCCTCGCGGCCGGTCGTGCTCACCCCGCCCTCGCCGAGGACGTCGCCGAGGAACTGGGCATCAGCCTGCTGCCGACCTCGGCCTACGACTTCGCCAACAGCGAGACGTACGTCCGCTTCGGCGAGTCGGTCCGCGGGGCGGACATCTTCCTGCTGCAGAGCCACACGGCGCCGGTCAACCAGTGGCTCATGGAGCACCTGCTCATGGTCGACGCCGCCAAGCGCGCCTCGGCCCGCACGATCACGGTGGTGGCGCCGTTCTACGCCTACGCGCGCCAGGACAAGAAGTCCCGCGGCCGCGAGCCGATCTCGGCCCGTCTCGTCGCGGACATGCTGCACACCGCCGGTGCCGACCGGATCATGAGCGTGGACCTGCACACCGCCCAGATCCAGGGCTTCTTCGACGGGCCGGTCGACCACCTGTGGGCGATGCCGGTGCTGACCGACTACGTGCGCACGCGGGTGGACACCTCCAACGTGACCGTGGTCTCTCCGGACGCCGGGCGCATCCGCGTGGCCGAGCAGTGGGCGGCCAAGCTCGGCGGCGGCCCGCTGGCGTTCGTGCACAAGACGCGTGACGTCACGCGGCCCAACCAGGCCGTGGCCAACCGGGTCGTGGGCGACGTCGAGGGGCGTGACTGCGTGCTCGTCGACGACCTGATCGACACGGGCGGCACGATCTCCGAGGCGGCCAAGGTCTGCATGCAGGCGGGTGCGAAGTCCGTGATCGTGGCCGCGACGCACGGCGTGCTCTCGGACCCCGCCGCCCAGCGGCTCTCGGAATCCGGCGCCGTCGAGGTCGTGGTGACCGACACGCTCCCGATCCCCGCCGAGAAGCGCTTCGACGGGCTGACCGTGCTGTCCATCGCGCCGCTGGTCGCGCGGGCGATCCGCGAGGTGTTCGACGACGGCTCGGTGACGTCGCTGTTCGACGGCAACCCCTGAMNTSIPGTGERTLVLAAGRAHPALAEDVAEELGISLLPTSAYDFANSETYVRFGESVRGADIFLLQSHTAPVNQWLMEHLLMVDAAKRASARTITVVAPFYAYARQDKKSRGREPISARLVADMLHTAGADRIMSVDLHTAQIQGFFDGPVDHLWAMPVLTDYVRTRVDTSNVTVVSPDAGRIRVAEQWAAKLGGGPLAFVHKTRDVTRPNQAVANRVVGDVEGRDCVLVDDLIDTGGTISEAAKVCMQAGAKSVIVAATHGVLSDPAAQRLSESGAVEVVVTDTLPIPAEKRFDGLTVLSIAPLVARAIREVFDDGSVTSLFDGNPPGPT0021480_1731DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021480-prsA-K00948NANA
AK018_01248615rplY_1COG182550S ribosomal protein L25ATGGCCGAGATCAAGCTCGCCTCCGAGGTCCGTACCGAGTTCGGCAAGGGCGCCGCCCGCCGCATCCGCCGCGCGAACAACATCCCCGCCGTCCTGTACGGCCACGGCACCGACCCGGTCCACATCACGCTGCCGGGCCACGCCACCATGCTGGCGGTGCGCCACACCAACGCCCTGATCGAGCTCACCTTCGACAACGGCACCGAGCTCGCCGTGGTCAAGGACATCCAGCGCCACCCGGTGCGCTGGGACATCGAGCACATCGACCTGCTGCTCGTGAAGAAGGGCGAGAAGATCGCCGTCGACGTCTGGGTCCAGGTCGAGGGCGAGTCCGCTCCCGGCACGATCCACTTCGTCGAGTCGCAGACGCTGTCCGTCGAGGCCGACGCCACCCAGATCCCCGAGTACATCCACGTGTCCATCGAGGGCCGTGAGTCGGGCGACAACATCCACGCCGGCGACATCGAGATGCCCGCGGGCGTCACGCTGCTGACCGACGAGGAGCACGCGGTCGTGACGATCACCGAGCCGCGCGGCGAGGAGTCCGCCGAGGAGGCCGACGAGGAGGCCGCCGGTTCCGCCGAGGCCACCGAGGGCGAGTCCTCCGCCGAGTGAMAEIKLASEVRTEFGKGAARRIRRANNIPAVLYGHGTDPVHITLPGHATMLAVRHTNALIELTFDNGTELAVVKDIQRHPVRWDIEHIDLLLVKKGEKIAVDVWVQVEGESAPGTIHFVESQTLSVEADATQIPEYIHVSIEGRESGDNIHAGDIEMPAGVTLLTDEEHAVVTITEPRGEESAEEADEEAAGSAEATEGESSAENANANANANA
AK018_01249603pth_1COG0193Peptidyl-tRNA hydrolaseATGGCTGACGGACCCTGGCTCGTCGTCGGTCTGGGCAACCCCGGGCCGCGCTACGCCGGCAACCGCCACAACGTCGGCCAGATGGTGCTCGACCTGCTCGCGGCCCGCACGGGGAGCCGGTTCGCCCGGCACGGACGCGCCCAGGCCGTCGTCGCCGAGGCACGTCTCGGTGTCCTGCCCGGCGGAGCGCCGGGACCGCGGGTCGTGCTGGCCAAGCCCACGACGTACATGAACACCTCCGGGGGGCCGACGTCGGCCCTCGCCTCGTACTACGGGGTCGACCCGGCGCACGTGATCGCCGTGCACGACGAGGTCGACATCCCCTTCGACTCGATCAAGCTCAAGGCGAGCGGCGGCGAGGGCGGCCACAACGGGCTGCGGGACATCTCCAAGGCGCTCGGGACCCGCGACTACACGCGGGTGCGCGTCGGGGTCGGGCGGCCTCCGGGGCGGATGGACACCGCGGACTACGTGCTCAAGGACTTCTCCGGCAGCGAGCGCAAGGACCTGCCGATGGTGCTCGAGGACGCCGCCGACGCCGTCGAGACGGTCGTGACCGAGGGTCTGCTGGCCGCGCAGGGGAAGTACCACCAGCGGGGGTGAMADGPWLVVGLGNPGPRYAGNRHNVGQMVLDLLAARTGSRFARHGRAQAVVAEARLGVLPGGAPGPRVVLAKPTTYMNTSGGPTSALASYYGVDPAHVIAVHDEVDIPFDSIKLKASGGEGGHNGLRDISKALGTRDYTRVRVGVGRPPGRMDTADYVLKDFSGSERKDLPMVLEDAADAVETVVTEGLLAAQGKYHQRGNANANANANA
AK018_012504653hypothetical proteinGTGGTCGGCACGGTCGTGCTCGGCCTCGGCGGACTGACAGCGGTCTCGGCGCAGGCTGAGACCGACCCGTGCACTGACGGTGGCAACGCCATAGTCTGCGAGAACCAGAAGCCCGGCTCCGATCCTGACGAATGGGACATCGACGGCGCCGGGGATCCTACGATCCAGGGCTTCGCGACAGACATCAGCGTCGATGCCGGCAACCCGATCGACTTCAAGGTGGACACCGACGCCGCGGACTACTCGATCGACATCTACCGGACCGGGTGGTATGGCGGGCTCGGTGCACGGCACATCGCGGCCGTGGAACCCTCGGCGTCGCTGCCCCAGACTCAACCGGAGTGTGTCAACGACGTCACCACCGAGCTGTACGACTGCGGGAACTGGGGCGTCTCGGCGACCTGGAACGTGCCGTCGGACGCCACGTCGGGCGTCTACGTCGCGCTGCTCGAGCGCGCGGACACCGGCGGGGCGAGCCACATCACGTTCATCGTGCGCGACGACGACAGCACCTCCGACATCGTGTTCCAGACGTCGGACACCACGTGGCACGCCTACAACCGGTACGGCGGGTCCAACTTCTACTCCGGCGCGGCGAACGGCCGGGCCTACAAGATCAGCTACAACCGTCCGTTCGACACTCGGGGTGGGGCCCACAGCCGCGACTTCTTCTTCAGCGCCGAGTACCCGATGGTGCGGTTCCTGGAGCAGAACGGGTACGACGTCAGCTACATCGCCGGTGTCGACACCGATCGGTACGGCGGTCAGCTCCTCAACCACGACACGTTCCTGTCGGTCGGGCACGACGAGTACTGGTCCGGGCGGCAGCGGGAGAACGTGGAAGCGGCGCGTGACGCCGGCGTGAACCTGGCGTTCTTCAGCGGCAACGAGATGTACTGGCGCACGCGCTGGGAGCCTGCCATCACGGGAGACGCCGAGCCCCATCGCACGCTCGTGTCGTACAAGGAAACCTGGTCGAACGACAAGATCGACCCCTCGGACGAATGGACCGGGACCTGGCGTGACCCGCGCTTCGCCTCGCCGGCGAACGGTGCGAACCTGCCGGAGAACGGATTGACCGGCACGGCCTACATGGTCAACTTCTCCGACCTGCCCGTGACGGTCAGCTCCGAGGAGGGCAAGCTCCGGCTCTGGCGGCACACTGATCTCGGGGACGCACCGGAGGGGACGGTCACCGAGCTGGCACCCCACACCGTCGGGTACGAATCCAACGAGGACCTCGACAACGGGCACCGCCCCGCGGGCCTGGTACGCCTGTCGACCACTGTGGGCGACGTGCCCGAGTATCTACAGGACTTCGGCAACACCGTGGCAGAGGGCCGGACACGGCACCACGTGACGATGTATCGCGCCGAGAGCGGGGCGCTCGTCTTCTCCGCCGGGACGGTCCAGTGGAGCTGGGGGCTGGACGCGGTCCACGACGGCAACGGGGCGCCGGCCGACCAGCGGATGCGGCAGGCGACCGTCAACCTGCTGGCCGACATGAGCGCCCATCCGGTGACGCCGGCAGCCGACGTGGTCGTCGCGACCGCGTCGTCCGACACCACCGGTCCGACGGTCCAGATCACGAGCCCGTCCGCGGGCGCCGAGCTCGACAACGGCACCGAGGTCACGGTGACCGGGACGGCGAGCGACGTCGACGGCCGGGTGGCCGGGGTGGAGGTCTCCCTCGACGGTGGGAGCTCCTGGCACCCCGCCGACGGCCGCGCGTCCTGGAGCTACACCGGCATCCAGAGGGGCGTAGGCGCCGTCGAGATCCGGGCGCGCGCGACGGACGACTCCGCGAACATCGGACCCGCGGTCACGCGCGGGGTCGACGTGTCGTGCCCGTGCACCGTCTACGGGGCCGAGGTCCCGGGGATCACGTCGGCCGACGACCCGTTCGCCGTCGAGCTCGGGCTCCGGTTCAGCCCCGAGACGAACGGCTACGTGCGGGGCGCACGCTTCTACAAGGGCGACGCCAACACGGGGACCCACCGGGCGACCCTGTGGAGCAGCACCGGCCAGGCGCTGGCCTCCGCGACCTTCACCGACGAGACGCCCCAGGGATGGCAGACGGTCGAGTTCCCCGAGGCCGTCGCGGTCTCGGCGGGACAGGCCTACGTGGTCTCGTACACGGCACCCGACGGCGGGTACGCCGTCCTGGAGAACGCGTTCTCCGCGCGGGGCATCGACGCCTACCCGCTTGCCGTCCGCGGCGGGTTCGGGGTGCCGGCGGCCGGCGTCTTCGGCTCTCCTGGCTCCTATCCCACGGAGACCTGGGGCAACGCCTCGTACTACGTCGACCCGGTCTTCAGCATGGTCGACGACTCACCGCTGACGGCCTTCTCCCCGAGCCCGGCCGACGGCACCGTGAGCGTCCCGCCCGACACGGACGTGACGGTCCGCTTCTCCCGCAACGTCGACGGGGAGTCGGTGACGTTCACGCTGGAGGACTCGGCCGGGAACGTCGTCGACGGCACGACCACGTACGACGCGGCCACCCGGACGGCGAGGTTCGTCCCGGCGGAACCGCTGGCCGGGTTCGTCGAGCACACGGCGACGGTCGCCGCGACGTCCGACGATGGTCAGCCGGTGAGCGACGGGGCCAGCTGGACATTCCGTACGCAGCGCCCCTCCTCGGAGGTGTGCCCGTGCGGTCTCTACGGCGAGTCCGTCGTCCCGGGGATCACGGACGTCGACGACACGGACGCGGTGACCCTCGCGACGACGTTCGTGCCCGACCGCGACGGTGACGTCGTCGGTGCTGAGTTCTTCAAGGGGCCGGAGAGCAGCGGCCCGTACACGGTCTACCTCTGGGGACCGGGTCAGGCGGTCCTCGCGTCGGCGACCGTCGACGACCCCGTGACCGCGGGCTGGCAGTCGATGGACTTCGACACACCCGTGCGGGTGACCGCGGGCACCGAGTACACCGTCGGCTACCGCACCGAGTCCGGGCGCTACTCCGTCACCCTCGACGGGCTGCGTGACCCCTTGTCGGTCGGACATCTCTCGACGCCGGCCAACGGCGGTGCCTACACCTACGGCAGCGGATTCCCCTCCACCCGGACGTCCTCCAGCTACCTCGTCGACGTCCGCTACGAGGCGGGCGAGGCGACCCCGACCATCGTGTCGACGACGCCGGCCGGAGGCTCCATCGACGTCGCGGCCGACGCCGACGTCTCGGTCACCGTCTCGCACCCCCTGGCGACCGGTTCGCTCGTGGTCACCGACGCCCTGGGCGCCGAGGTGGCCGGGGACACGACGACGAGCGGCGATGGCCTGACCGTCACGTTCGACCCGGCGGACGACCTTGCCCCGGGTGCGCAGTACGACGTCGCCTTCACCGGGACGCGGGCGAGCGACGGTATGGCCTTCCCCGCGACGGGGTGGACCTTCGTCACGGCCTCGCCTGACGGCACCTGCCCGTGCACGGCCTTCGGCTCGGCGACGCCGACCACCCCAGCGGCCGACGACGGAGCTTCCGTCGAGCTCGGCCTCGAGTTCTCCCCGGACCACGACGGGGCGGTCACCGGGGTGCGCTTCTACAAGGGCGCCGGCAACGCGGGGACCCATACGGGATCCCTCTGGACGGCCGCCGGCGAGCAGCTCGCCCAGGTGACCTTCACCGGTGAGTCGGCGACCGGGTGGCAGACAGCGCTCTTCGCCGAGCCCGTCCCGGTCCAGGCCGGCGAGGACTACGTCGTGTCGTACCTCGCGCCGAACGGCCGGTACGCGGCTGACCCGGGTGACTTCAGCGTCGCGCAGCAGATCGGTCCGCTCGCGCTGCCCGTCGACGCCAGCCGCTACGTCTACGGCGGCGGGTTCCCGCAGTACACGTTCCAGGCGACCAACTACTACGTCGACCTGGTCTTCGTCAGCGGCGACCTCGGGCTCGTCTCCAGGCAGCCGTCGAACGGCGCCACCGGTGTGGACCCGGCTGCGACCGTGACGGCGGTCCTGTCGTCGTCACCTGTCGGCGAGACGACGCAGCTGACGCTGACCGGTGACGACGGACCGATCGCCGGGACGAGCACCTTCGACCCGGCCTCACGCACGGTCTCGTTCACGCCGGATGGCGCGCTGCCGTCGGGCGCTCCGCTCACAGCGCGAGTTCTCGTCGGGTCGCAGGTGCTCGACACCTGGACCTTCACGGTGCAGACGTTCTTCGACCCGGCAAGCGCCGTCGGCCTGTGGTCGCCGGACGACGTCCCGGCGGTGGAGAGCTGGAACGACCCGGACGCGGTCCAGGTCGGCACCCGTCTGCGCGCCAACGTCGACGGCGAGGTCGTGGGGATCACGTTCTACAAGGGGCCGGCCAACAGCGGTCCCCACACCGGTTTCCTCTGGTCCGCCGGGGGTGAGCTGCTCGCGTCGGGCACCTTCGTCGACGCGACGGCGAGCGGGTGGCAGACGCTCGAGCTGGACGCCCCGGTCGCGGTGGCGGCCGGCACCGAGCTCGTGGTCTCCTACTACGCACCGTCGGGTGGGTACGCGGTGACGGCGAACGCCCTCGCGACACCCCGCGACACGGACGCGCTGTCGTCTCTCGCGAACGGCGGCGTCTACCGCTACGGGTCCACCGGGTTCCCGAGCGCGACGGCCCCGCACAGCTACTGGGCCGACGTGGTGTTCGTCCCGGCTGCGGAATGAMVGTVVLGLGGLTAVSAQAETDPCTDGGNAIVCENQKPGSDPDEWDIDGAGDPTIQGFATDISVDAGNPIDFKVDTDAADYSIDIYRTGWYGGLGARHIAAVEPSASLPQTQPECVNDVTTELYDCGNWGVSATWNVPSDATSGVYVALLERADTGGASHITFIVRDDDSTSDIVFQTSDTTWHAYNRYGGSNFYSGAANGRAYKISYNRPFDTRGGAHSRDFFFSAEYPMVRFLEQNGYDVSYIAGVDTDRYGGQLLNHDTFLSVGHDEYWSGRQRENVEAARDAGVNLAFFSGNEMYWRTRWEPAITGDAEPHRTLVSYKETWSNDKIDPSDEWTGTWRDPRFASPANGANLPENGLTGTAYMVNFSDLPVTVSSEEGKLRLWRHTDLGDAPEGTVTELAPHTVGYESNEDLDNGHRPAGLVRLSTTVGDVPEYLQDFGNTVAEGRTRHHVTMYRAESGALVFSAGTVQWSWGLDAVHDGNGAPADQRMRQATVNLLADMSAHPVTPAADVVVATASSDTTGPTVQITSPSAGAELDNGTEVTVTGTASDVDGRVAGVEVSLDGGSSWHPADGRASWSYTGIQRGVGAVEIRARATDDSANIGPAVTRGVDVSCPCTVYGAEVPGITSADDPFAVELGLRFSPETNGYVRGARFYKGDANTGTHRATLWSSTGQALASATFTDETPQGWQTVEFPEAVAVSAGQAYVVSYTAPDGGYAVLENAFSARGIDAYPLAVRGGFGVPAAGVFGSPGSYPTETWGNASYYVDPVFSMVDDSPLTAFSPSPADGTVSVPPDTDVTVRFSRNVDGESVTFTLEDSAGNVVDGTTTYDAATRTARFVPAEPLAGFVEHTATVAATSDDGQPVSDGASWTFRTQRPSSEVCPCGLYGESVVPGITDVDDTDAVTLATTFVPDRDGDVVGAEFFKGPESSGPYTVYLWGPGQAVLASATVDDPVTAGWQSMDFDTPVRVTAGTEYTVGYRTESGRYSVTLDGLRDPLSVGHLSTPANGGAYTYGSGFPSTRTSSSYLVDVRYEAGEATPTIVSTTPAGGSIDVAADADVSVTVSHPLATGSLVVTDALGAEVAGDTTTSGDGLTVTFDPADDLAPGAQYDVAFTGTRASDGMAFPATGWTFVTASPDGTCPCTAFGSATPTTPAADDGASVELGLEFSPDHDGAVTGVRFYKGAGNAGTHTGSLWTAAGEQLAQVTFTGESATGWQTALFAEPVPVQAGEDYVVSYLAPNGRYAADPGDFSVAQQIGPLALPVDASRYVYGGGFPQYTFQATNYYVDLVFVSGDLGLVSRQPSNGATGVDPAATVTAVLSSSPVGETTQLTLTGDDGPIAGTSTFDPASRTVSFTPDGALPSGAPLTARVLVGSQVLDTWTFTVQTFFDPASAVGLWSPDDVPAVESWNDPDAVQVGTRLRANVDGEVVGITFYKGPANSGPHTGFLWSAGGELLASGTFVDATASGWQTLELDAPVAVAAGTELVVSYYAPSGGYAVTANALATPRDTDALSSLANGGVYRYGSTGFPSATAPHSYWADVVFVPAAENANANANANA
AK018_012511038hypothetical proteinGTGACGACCCGTGCCCGCGCGACCGTCCTCGCCGCGGTCGTCGCCGTGGTGGTGCTCGTGGTCGCCGTCGTCGTCGTCCGCGACGCCCGCCAGACCCGCGCCGAACGGTCCGCGCCCACCGACGTGTCCGTCGCTGCGGCCGGCGCGTTCGACGACGAGCCGCGCATCGTCTTTCGCAGCACCGCGCCGGGCGACCTGTTCGGCCGGGTCTCGGTCGTCGCACTGACCGATCCCGACGGTCCCCGCGACGTCACCCCGGTCGCGTGCGACCGTGTCGACGCCGTGCCCGGCCGCGCGTCCTGCCTGCGGACGGTCCGCGGTGTCGCCACCACGTTCACGGCCGAGATCCTCGACGACGGGTGGGACGTCGTCGCGAGCTGGCCCCTCCCGGGGATCCCCAGCCGCACGCGCCTGTCCGACGACGGCGAGCGTGTCGCCACGACCTCCTTCGTCACGGGTCACTCGTACGCGACCAGCGGGTTCTCGACGGAGACCGTGGTCCACGGTCTCGACGGTCTGCCCGACGGCGGCACCGACGACCTCGGCAACCTCGAGGAGTACACCCTGCTCGTCGACGGGGACGAGGTCGCCCCGGTCGACCGGAACATGTGGGGGGTGACCTTCGCCGACGAGGCGACCTTCTACGCCACGACCCAGTCGCGGACGCTCGGCACGACGTGGCTGGTGCGCGGCGACGTCGCCGCACGGACCCTCACCGTGGTGGCCGACGGCGTCGAGTGCCCGTCGCTCTCGCCGGACGGCAGCCTCCTCGCGTTCAAGGCCGACACCGACGACGGCTCCGCCGTCCACTGGACACCCGCGGTGCTCGAGCTCGCCACCGGTGAGATCACCGTGCTCGGCGGCGAGGAGCGGTCGATCGACGACCAGATCGAGTGGCTCGACGACGCCAGGATCCTCTACGGCATGCCCCGGGAGGACGAGCCCGGCGTCACCGACGTCTGGGCGCTCGCCACGGAACCCGAGGCAGCGCCCTCGGTCCTCGTGCCGGAGGCGTGGTCGCCGGCCGTGATCCGCTGAMTTRARATVLAAVVAVVVLVVAVVVVRDARQTRAERSAPTDVSVAAAGAFDDEPRIVFRSTAPGDLFGRVSVVALTDPDGPRDVTPVACDRVDAVPGRASCLRTVRGVATTFTAEILDDGWDVVASWPLPGIPSRTRLSDDGERVATTSFVTGHSYATSGFSTETVVHGLDGLPDGGTDDLGNLEEYTLLVDGDEVAPVDRNMWGVTFADEATFYATTQSRTLGTTWLVRGDVAARTLTVVADGVECPSLSPDGSLLAFKADTDDGSAVHWTPAVLELATGEITVLGGEERSIDDQIEWLDDARILYGMPREDEPGVTDVWALATEPEAAPSVLVPEAWSPAVIRNANANANANA
AK018_012521374hypothetical proteinGTGACAGTCGCGCCGGCCAGGACCGCCTCGGCCGCGCCCCGACGGAAGCCCTCGCCGGCCAAGGTCTCGTCGACCGTGGTGAGCCTCGGCGTCGTCAGCCTCATGACGGACATCTCCTCCGAGGCCGTCGCCGCCGTCCTTCCCCTGTACATGACGGCCGCCCTCGGCCTGACGACCGTCGCCTACGGATTCGTGGACGGCCTGCTCCAAGGGGCCAGCGCCCTCGTCCGCATCGCCGGCGGCTGGGCCGCGGACCGGGGCGGGAAACCCAAGTGGGTCGCACTCGTCGGCTACGGCGCCTCGGCGCTCACCCGGCTCGGCCTGCTCCTGTTCACCGGTGCCGGGGCGATCGTGGCCCTGGTGACCCTGGACCGTTTCGGCAAGGGGATCCGCACCGCCCCGCGCGACGCGATGATCGCGGCGTCGTCGACCCCGCGAACCCTGGGCCGCTCGTTCGGGGTGCACCGCGCGCTGGACACCCTCGGCGCCGCCACGGGCCCCCTGATCGCCTTCGTCATCCTGTGGCTGATACCGGACGGCTACACCACCGTGTTCGTCGTCTCGTTCGGTGCCGCCGTCATCGGAGTGGCCGTGCTCGGGCTGCTCGTCCCGAACCTCCAGCCACGCCGTGCCGCGTGGCTCGCCCAGCACCGCTCGCGCGAGTCGCGGAGCCTGCCGAAGTGCAAGGGCTGCACCTGCGACGGACCGGGGCTCGAGGCGGTGTCGGGGCCCCGGTTCTCCTGGAGCTTCCTGCGCGAGCCGGCCATGCGCCGCACGGTCGTCGTCGCCGGCGTCCTGGCCCTGCTGACCGTCGGCGACGGCTTCCTCTACCTCGCGCTCCAGGACCGGGACGGCTTCGCCGCGCACTGGTTCCCCCTGCTCTTCGTCGGGACGAACCTGGCCTACATGGCCCTCGCGATCCCCTTCGGCCGGCTCGCGGACCGGGTCGGGCGCACGCGGGTGTTCCTCGGCGGCCACGTCGCCCTGCTCCTGGCCTACGTCCTCGCGGCGGGCCCTGGTTCGTGGACGCTCACCCTGTGCGTGCTGCTCCTGCTCGGCGCCTTCTATGCGGCCACCGACGGTGTGCTCGCCGCCCTCGCGGGCGCCATGGTGCCCGTCGAGGTCAGGGCCTCGGCGATCGGCACCGTCCAGACGGCGGTGGCCGCCGGCCGCCTGCTCTCCTCGATAGCATTCGGTGTGCTCTGGTACAGCCTCGGCCGGGGGCCGGCCCTCGTCACGGTCGCGGTCGCGCTCGCGGTCGCGATCCCCCTCGGGTGGGCGCTGCTGCGCAGGCACGGCGCGGGCGACGCCCCGGCGCCGGGATCCTCACAGGACACCGCACCCACCTACGCGCGGGGGGACGCCGGCTCGTGAMTVAPARTASAAPRRKPSPAKVSSTVVSLGVVSLMTDISSEAVAAVLPLYMTAALGLTTVAYGFVDGLLQGASALVRIAGGWAADRGGKPKWVALVGYGASALTRLGLLLFTGAGAIVALVTLDRFGKGIRTAPRDAMIAASSTPRTLGRSFGVHRALDTLGAATGPLIAFVILWLIPDGYTTVFVVSFGAAVIGVAVLGLLVPNLQPRRAAWLAQHRSRESRSLPKCKGCTCDGPGLEAVSGPRFSWSFLREPAMRRTVVVAGVLALLTVGDGFLYLALQDRDGFAAHWFPLLFVGTNLAYMALAIPFGRLADRVGRTRVFLGGHVALLLAYVLAAGPGSWTLTLCVLLLLGAFYAATDGVLAALAGAMVPVEVRASAIGTVQTAVAAGRLLSSIAFGVLWYSLGRGPALVTVAVALAVAIPLGWALLRRHGAGDAPAPGSSQDTAPTYARGDAGSNANANANANA
AK018_01253708hypothetical proteinGTGCGTAGGTCTTCCGTCGTGGCCGTCTCAGTGGGCCTGTCCGGCCTGCTCGTGGTGGCGAGCGCCTGCACGCCGTCGGGCGGCGGACTCGACGACGCGGTCGGCCCGACCGGGTCGAGCACCAGCACGACGGCCGACGGGACGGGCGCTCCGGGCGGCACGACCGCGGACACCGGCGGGCCCGGCGGTCCCTCGGACGGCGACCCCGACGACGGGCCGACGCCGGTCCCGACGGTCACCGGCGGCAGCGGCGGCCAGACCGACGGTGACGCTAGCGAGGTCATCCCGGAGCCGAGCGACGAGGTCACCCGGCTGGTCGACCTGGTCCCGGAGGGCCCGACCGCCGGGCGCGTCGACGATTCCCTCCCGGACTCCGCCTCGGACCGGCTCGTGAGCGCGTTCCCCGCCGACGTCGTGCTCGTCCCTGAGGGTGCCACGGTGCGCTCGAGCTCGACCTCGTCCGACGGCACCACGGCGCAGGTCACGCTGGAGGCGAGGACGAAGGGCGGCTGCGGCGACGTGCTCGTCGACTACCGGGCGTGGTTCACCGGTGGTGGGTTCACCGAGTCCAGCACGTCCGAGACGGCCGAGACGGCCCAGCTGTCCTTCCGGCGCGGCGACGACGGCGTCACCGTAGCCACCACCACCGGCGCCGACCGGTGCGATGTCCAGGTGTTCGCCTCGCTGTCGACGAAGGACGCCGGGTGAMRRSSVVAVSVGLSGLLVVASACTPSGGGLDDAVGPTGSSTSTTADGTGAPGGTTADTGGPGGPSDGDPDDGPTPVPTVTGGSGGQTDGDASEVIPEPSDEVTRLVDLVPEGPTAGRVDDSLPDSASDRLVSAFPADVVLVPEGATVRSSSTSSDGTTAQVTLEARTKGGCGDVLVDYRAWFTGGGFTESSTSETAETAQLSFRRGDDGVTVATTTGADRCDVQVFASLSTKDAGNANANANANA
AK018_012541074iolG_1Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGGCAGAATCCACACCGCTGCGGGCAGCGGTCATCGGGGCGGGCTACTGGGGCCCCAACCTCGCGCGCAACTTCTCCCGGTCCGCGGACTGGGAGCTGGTCGCCGTGTGTGACCTCGACGAGCAGCGGGCCCGCAAGGTCGCGCGAGAGGCGGGCGGGGCCGACGCCATGATCTCGCTGGCCGACCTGCTCGAGCGCGACGACGTGGACGCCGTCGCCGTCGCGACACCGGCCCGAACCCACCACGACGTGGTCCTCGCCGCCCTGCGCGCGGGCAAGCACGTCGTGGTCGAGAAGCCGATCGCCGACGGCGCAGCGTCCGCGCGCGAGATGGTCGAGGAGGCCGAGCGGCGCGGACTCGTGCTCATGACCGACCACACCTACTGCTACACCCCGGCGGTCCTCAAGATCCGCGAGCTCATCGGGGCCGGCGAGCTCGGCGACGTCCTCTACATCGACTCGGTGCGCATCAACCTCGGGCTGATCCAGCCGGACGTGGACGTGTTCTGGGACCTCGCGCCGCACGACCTGTCGATCATCGACTTCGTCCTGCCCGGCGGGCTGCGGCCGGAGTCGGTCTCCGCGCACGGCGGCGACCCGCTCGCCGCCGGGAAGGCCTGCGTCGGGTACCTCTTCCTCCCGCTGGCCGACGGCGTGGTGGCCAACGTCCACGTGAACTGGCTCAGCCCCACCAAGATCCGCCGGATGACGATCGGTGGGTCCCGCCGGACGCTGGTCTGGGACGACCTCAACCCCCAGCAGCGCCTGTCGATCTACGACCGCGGCGTCGACCTGGAGATGCAGGCGCTCGACAGCCTCGAGCGGCAGGCCGCGACCGTGTCCTACCGCCTCGGGGACACGTGGGCTCCGGCGCTCGCCGAGCGCGAGGCGCTCGGGGTGATGGTCGGCGAGCTGGCGTCCGCGATCCGCGGCAGCCGCCCACCGGTCACCGACGGGCACGCGGGGCTCCGGGTCCTCGGGGTGCTCGAGGCCGCCTCCGACAGCCTGGCCGCCGGTGGTGCCGTCGTGCCCGTCCCGGCCGACGAGCCCTCGACCGTCGGGGGTGCCGCATGAMAESTPLRAAVIGAGYWGPNLARNFSRSADWELVAVCDLDEQRARKVAREAGGADAMISLADLLERDDVDAVAVATPARTHHDVVLAALRAGKHVVVEKPIADGAASAREMVEEAERRGLVLMTDHTYCYTPAVLKIRELIGAGELGDVLYIDSVRINLGLIQPDVDVFWDLAPHDLSIIDFVLPGGLRPESVSAHGGDPLAAGKACVGYLFLPLADGVVANVHVNWLSPTKIRRMTIGGSRRTLVWDDLNPQQRLSIYDRGVDLEMQALDSLERQAATVSYRLGDTWAPALAEREALGVMVGELASAIRGSRPPVTDGHAGLRVLGVLEAASDSLAAGGAVVPVPADEPSTVGGAANANANANANA
AK018_01255996galE1COG1088UDP-glucose 4-epimeraseATGAGCGCGGTGCAGGGCGCCGAGGTCCTCGTGACGGGCGGCGCCGGGACGATCGGCTCCACCCTGGTGGACCAGCTCCTCGACGCCGGGGTGGCGCGGGTCGACGTCCTCGACAACCTCGTGCGCGGGCGCCGTGCGAACCTGGACGACGCGCTCGCCACGGGACGGGCCCGGCTGGTCGAGGGGGACATCGCCGACCGGGACCTCGTCCACGACCTGACGCACGGCAAGGACCTCGTGTTCCACCAGGCGGCGATCCGGATCACGCAGTGCGCGGAGGAGCCCCGGCTCGCGCTGGAGGTGCTCGTCGACGGCTCGTTCAACGTCGTCGAGGCCGCGGCCGAGCACGGCGTCGACAAGCTCGTCCTCGCCTCGAGCGCGTCGGTCTACGGGATGGCCGAGGAGTTCCCGACGTCCGAGCGCCACCACCACCACAACAACGACACGTTCTACGGCGCGGCGAAGTCGTTCAACGAGAGCATGCTGAGGTCGTTCCGGGCGATGAAGGGCCTGGACTACGTGGCCCTGCGCTACTTCAACGTCTACGGGCCCCGGATGGACGTGCACGGCCTGTACACCGAGGTGCTGGTGCGCTGGATGGAGCGGATCGCCGACGGCAGGCCCCCGCTGATCTTCGGCGACGGCCAGCAGACGATGGACTTCGTCTGCGTCCCCGACATCGCCCACGCCAACGTGCTCGCGGCCGCGAGCGACGTCGTGGACGGCCACTACAACATTGCCAGCGGGACCGAGACCAGCCTGCTGGAGCTCGCCGAGGCACTGCTGCGGGTGATGGGCTCGGACCTGGGGGTCGAGCACGGCCCCGAGCGGGGGGTGAACGGGGTGGAGCGGCGTCTCGCCGACACCCAGGCGGCCGCCGACGACCTCGGCTTCAAGGCGACGATCGGCCTCGAGGACGGTCTGCGCCTGCTGGTCGACTGGTGGCGACCGCTGCGCGAGGAGATCGCGGCCGGACGTCGGGAGGTCCGGCCGTGAMSAVQGAEVLVTGGAGTIGSTLVDQLLDAGVARVDVLDNLVRGRRANLDDALATGRARLVEGDIADRDLVHDLTHGKDLVFHQAAIRITQCAEEPRLALEVLVDGSFNVVEAAAEHGVDKLVLASSASVYGMAEEFPTSERHHHHNNDTFYGAAKSFNESMLRSFRAMKGLDYVALRYFNVYGPRMDVHGLYTEVLVRWMERIADGRPPLIFGDGQQTMDFVCVPDIAHANVLAAASDVVDGHYNIASGTETSLLELAEALLRVMGSDLGVEHGPERGVNGVERRLADTQAAADDLGFKATIGLEDGLRLLVDWWRPLREEIAAGRREVRPNANANANANA
AK018_012561164arnBCOG0399UDP-4-amino-4-deoxy-L-arabinose--oxoglutarate aminotransferaseGTGACCGCCATGACGCCCGCGCACGACCTGCCGCGGATCAACGTCATGCGTCCGTGGCTCGGACCGGAAGAGGTCGCCGCCGTCACCGAAGTCATCGAGTCGGGCTGGGTCGCGCAGGGCCCCCGAGTCGCAGCCTTCGAGCAGGCTTTTGCAGCCCGGATGCAGGCCGTCGAGGCCGTGGCGACGTCGAGCTGCACGACGGCGCTCCACCTCGCCCTGGTGGTCGCCGGCGTCCGGCCGGGAGACGACGTCGTCGTCCCGTCGTTCTCCTTCATCGCCACCGCTAATGCCCCGACGTACGTCGGGGCGCGCCCTGTCTTCGCCGACGTCGACGCGGCGACGGGGAACGTGACGGCGGCGACCGTCGAGGAGGCGCTCACCGACGCCACGCGCGCCGTGGTCGTCGTCGACCAGGCCGGTGTCCCGGTCGACCTGGACCCGATCCGCGAGCTCTGCGACCCGCGGGGGATCGTCGTCGTCGAGGACGCCGCCTGCGGTGCGGGCGCGACGTACCGGGGACGCCCCGTCGGTGCGGGGGCGGAGATCGCCGCGTGGTCGTTCCACCCGCGCAAGATCCTCACCACCGGTGAGGGTGGCATGCTGACGACCGGTCGGCCCGAGTGGGCCGCCCGGGCGCGACGCCTGCGCGAGCACGCGATGAGCGTCTCGGCGGCCGAGCGTCACGCGAGCCTCGTCTCGCCCGCCGAGGAGTACGGCGAGGTCGGGTTCAACTTCCGGATGACGGACCTCCAGGCGGCGGTGGGCCTCGTGCAGCTCGGCCGGCTCGACGAGGTCGTGACCCGGCGGCGTGCGCTCGCCGACCGGTACCGGTCGGCCGTCGCCGACGTCCCGGGGCTCCGCCTCGTCGCCGACCCGGAATGGGGCACGAGCAACTTCCAGTCCCTGTGGCTGGAGGTCGGGGACGACTACCCGCTTGATCGCGAGGGCCTGCTCCTGGCGCTGGCAGAGGCGGGGGTCTCCGCGCGCCGCGGCATCATGGCCACCCACCGGCAGCCTGCCTACGCCGACCGTGACGGCGCCGCGGCACTGCCGGTCACCGAGCGGCTCACCGACTCCACGCTCATCCTGCCGCTCTTCCACGAGCTCACCGAGGTCGAGATCGAGCGCGTGGTCGACGTGCTCCGCCGACCGGACGCAGGCTGAMTAMTPAHDLPRINVMRPWLGPEEVAAVTEVIESGWVAQGPRVAAFEQAFAARMQAVEAVATSSCTTALHLALVVAGVRPGDDVVVPSFSFIATANAPTYVGARPVFADVDAATGNVTAATVEEALTDATRAVVVVDQAGVPVDLDPIRELCDPRGIVVVEDAACGAGATYRGRPVGAGAEIAAWSFHPRKILTTGEGGMLTTGRPEWAARARRLREHAMSVSAAERHASLVSPAEEYGEVGFNFRMTDLQAAVGLVQLGRLDEVVTRRRALADRYRSAVADVPGLRLVADPEWGTSNFQSLWLEVGDDYPLDREGLLLALAEAGVSARRGIMATHRQPAYADRDGAAALPVTERLTDSTLILPLFHELTEVEIERVVDVLRRPDAGPGPT0022785_621DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PEROSAMINE_MODIFICATION,PGPT0022785-per|rfbE-K13010NANA
AK018_01257630epsMCOG0110Putative acetyltransferase EpsMATGGCTCCCGTCCTCCTCCTGGGTGCGAGCGGCCTCGCGCGCGAGGTCCTGCCGCTGCTGCGCGAGGCGGGACGCGACGTCGTCGGGATCCTCGACGACCGGCACGCGGACCTGCCCCGGACGGTCGGCGGGGCGCCGGTCCTCGGCGCGGTCGACGACGCGCCGCTCTACCCCGACGCCGAGGTGCTGGCCTGCGTCGGTCCCGGCCGGGGCAGGGCCGCGGTGGTGGCGCGCGTCGAGGCGACCGGGGTCCGGCGGTGGGCCACCGTCGTCGACCCGTCCGTGCGCAACCCCGGGGGGAGCGTGGTCGGGCACGGCTCGATCCTCCTCGCCGGCGTCACCGTGACGGCCGACGCCGTCCTCGGCGAGCACGTCGTCGCCATGCCGTCGGTCACGGTGACGCACGACTGCCTGGTCGAAGACTTCGTGACGCTCGCCGCCGGTGTCTCGCTCGGCGGAGGCGTCCGGGTCGGGCGGGCCGCGTACCTGAGCATGAACGCGTCCGTCCGTCCGGGCGTGACGGTCGGCGCCGGGTCGACCGTGGGGATGGGGGCCGTCGTGCTCCAGGACGTCCCCGAGTCCGAGACGTGGGCCGGGGTGCCCGCACGAGAGCTGGGAGTCCGTCCGTGAMAPVLLLGASGLAREVLPLLREAGRDVVGILDDRHADLPRTVGGAPVLGAVDDAPLYPDAEVLACVGPGRGRAAVVARVEATGVRRWATVVDPSVRNPGGSVVGHGSILLAGVTVTADAVLGEHVVAMPSVTVTHDCLVEDFVTLAAGVSLGGGVRVGRAAYLSMNASVRPGVTVGAGSTVGMGAVVLQDVPESETWAGVPARELGVRPNANANANANA
AK018_012581101desVdTDP-3-amino-3,4,6-trideoxy-alpha-D-glucose transaminaseGTGAAGGTTCCGTTCCTCGACCTGGCCGCCCAGTCGGCCGAGATCGCCGACGAGGTCCTGCCCGTCTGGCAGTCACAGCTCGCCGGTGCGTCGTTCGTCGGCGGCCCGGAGGTGGCGGCGTTCGAGCAGGAGTACGCGGCCTACATCGGCGTCGAGCACTGCGTCGGGGTCGGCAACGGGACCGACGCCGTCGAGCTCGCGCTGCGGGCGGTCGGAGTGGCACCGGGCGACGAGGTCATCGTCCCGGCCAACACCTTCATCGCGACGGCGGAGGCGGTGTCGCGGCTCGGTGCCGCGCCCGTGCTCGTCGACGTCGACCCGGCGCACCTGCTCATCGACCCGCGCGCGGTGGCCGCGGCCCTGACGGACCGCACCCGCGCCGTCGTCCCGGTCCACCTCTACGGACAGACAGCACCTGTCGAGGAGCTGCTGCCGATCGTGCGCGGGCGTGGCATCGCGGTCGTCGAGGATGCGGCGCAGTCGCAGGGGGCGTCGTCGTCGGCCGGGCGGGCCGGCACCCTCGGGGACGTCGCGGCGACGAGCTTCTACCCGGGCAAGAACCTCGGAGCCGCGGGAGACGCGGGAGCCGTGATGACCGACGACCCGGAGGCCGCCGCCGTCGTGCGCAGCCTCGGGGCCCACGGGAGCACGGTCAAGTACATGCACGACCGGATCGGTATGAACTCCCGGCTCGATGCCGTCCAGGCGGTCGTGCTCCGCGCGAAGCTGCGCCGCCTCGATGCGTGGAACAAGGCTCGCAGGACCGCTGCCGACCGGTACGCGGAGCTGCTGAGCGACATCCCCGGCGTGACGATCCCGTCCGTACGCCCGGGGAACGAGGACGTCTGGCACCTGTACGTCGTCCAGGTGCAGGAACGTGACAGCATCCTGGCGGCACTGAACGAGGCCGGGATCGGGGCGGCGATCCACTACCCGACACCGCTCCACCTGACCGACGCCTACGCACACCTCGGACGGGGCGGGCAGTTCCCGGTCGCCGAGTCCGCGGCCGACCGGATCCTGTCCCTCCCGATGTTCCCCCACCTGACGCCTGCGCAGCAGGAGCGGGTCGTGAGCGTCCTCGCGGAAGCGGTCGCGTGAMKVPFLDLAAQSAEIADEVLPVWQSQLAGASFVGGPEVAAFEQEYAAYIGVEHCVGVGNGTDAVELALRAVGVAPGDEVIVPANTFIATAEAVSRLGAAPVLVDVDPAHLLIDPRAVAAALTDRTRAVVPVHLYGQTAPVEELLPIVRGRGIAVVEDAAQSQGASSSAGRAGTLGDVAATSFYPGKNLGAAGDAGAVMTDDPEAAAVVRSLGAHGSTVKYMHDRIGMNSRLDAVQAVVLRAKLRRLDAWNKARRTAADRYAELLSDIPGVTIPSVRPGNEDVWHLYVVQVQERDSILAALNEAGIGAAIHYPTPLHLTDAYAHLGRGGQFPVAESAADRILSLPMFPHLTPAQQERVVSVLAEAVAPGPT0010900_3DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-ERYTHROMYCIN_METABOLISM,PGPT0010900-erCI|desV-K13310NANA
AK018_012591188hypothetical proteinGTGACGCGGCGTGTCCTGGTCCATCTCAACAGCCTCGAGCTCGGCGGGACGCAGATCAACGCGATCGACTTCGCCGCGCGGCTTCGGGAGCACGGATGGGAGTCGTCCCTCGTCGGCCCGGTACCACCCGAGGGCCCCGACGTCCTGCCGCTCGCGCAGGAGCGTGGTCTGACGATCGAGCCCTACGACGAGCCGCCGACCGTGCTCGGCCACGCCCGGGTGCTGCGTGCCCGGGCGGACGAGCTCGGAGTCGACCTCGTGCACGCCTACGGGACGTGGGGTGCCGCCCGTCCCGCGTACTGGGGCCCCTGCCGCTGGGGACGGCGGCCCTGGCTGCTCACGATGTACGAGATGCAGCTGCACGAGTCCGTCCACCGGCACGTGCCGATGGTGGTCGGGACGGAGTACCTCCTCGAGGAGTGCGCGGACCGTCCCGGGGCCACGGTCCTGATCCGGCCGCCCGTCGATCTCGACCGGGACCGCCCAGCAGCGGCACCCGTCCGGACGCCGGGAGCACCGGTCGTCCTCGGACTCGTGTCACGGCTCGAGGAGGACATCAAGTCGACCGCCGTGGTCGCCGCGATCGGTGCGGTCCGGCGGATACGAGCGGACGTCGTGCTGGAGGTGGCCGGAGGCGGGGGTGCGCTGGATCGTCTGCGGCGCCTCGGGGACGAGACCAACGCGATCCTCGGGCGCCAGGCCGTGACCTTTCTCGGACCGCTGCCGGACCCGCGCCCGGTCTACTCCCGCGCGGACGTGATGCTGGGGATGGGCGGTTCGGCCGCGCGGGCCCTGGCTCACGGCAAGCCGCTGGTCGCCCAGGGAGAGGCCGGCTGGAGCGCCGTCCTCACCCCCGCGTCCGCGCCGGCGCTCGCGCGGGACAGCTATTGGAGTCGCGAGCACGTCGAGGATGCCGCCGGGCTCCTCGCGAGGAATCTCGAGCCGCTCGTCGCGGACCCCGCTCTGCGCGACCGGCTCGGGGCGTTCAGCAGGGAGTTCGCCGAGCGGACGTTCGGGCTCGAGGAGATGACCGCTCGTCTCGCCGAGCTGTACGACCGAGCGATGACGCGATACACGACCCGCTCGTGGGTCGCGGACCTCGGGGTCGAGGCGAGGAAGGTACCGGAGAAGGCCGTGCGGTCCGTGCGTGAGCTTCGGTCACGGCACGTCGGGGGACCGCGCCGGTAGMTRRVLVHLNSLELGGTQINAIDFAARLREHGWESSLVGPVPPEGPDVLPLAQERGLTIEPYDEPPTVLGHARVLRARADELGVDLVHAYGTWGAARPAYWGPCRWGRRPWLLTMYEMQLHESVHRHVPMVVGTEYLLEECADRPGATVLIRPPVDLDRDRPAAAPVRTPGAPVVLGLVSRLEEDIKSTAVVAAIGAVRRIRADVVLEVAGGGGALDRLRRLGDETNAILGRQAVTFLGPLPDPRPVYSRADVMLGMGGSAARALAHGKPLVAQGEAGWSAVLTPASAPALARDSYWSREHVEDAAGLLARNLEPLVADPALRDRLGAFSREFAERTFGLEEMTARLAELYDRAMTRYTTRSWVADLGVEARKVPEKAVRSVRELRSRHVGGPRRNANANANANA
AK018_012601551hypothetical proteinGTGACGGCCCCTGACGCCGGGCGCGGCGGGCGTGCCGGAGGACGGGACGACGACCGTGTGGTCGACGGGCCGGACGCCGAGGAGGGCCTCGGCCGGGCCGCCGCGGCGGGCACGCTGTGGCTCACCGCTCAGAAGTGGCTGGTCCGGTTCTCCGGTCTCGCCACGATCGCGATCCTGGCCCGGCTCGTCACCCCCGAGGAGTTCGGGGTCGTCGCGGTCGCGGCGGCCGTCGTCCCCTTTGTGCTGCTCCTCTCCGACCTCGGACTCTCGACCTACCTGGTCCAGGCCGAGCGCACCGACCAGCCGATGCTGAGCACCGGCTTCTGGTTCTCGCTCGGTGCGGGCGTCGGACTCGGCGCCCTGCTGGTGCTCGGGTCACCGCTGCTCGCCGCCCTCTTCGGGGTGCCCGACGCGACCCCCGTCCTCCGCGTCCTCATCGGTGCGGTCCCGATCGTCGTCCTGGGGTCCGTCCCGACGGCTCTGCTCCGCCGTCGGATGCAGTTCCGCCGTCTGGCGCTGCAGGGGGCGGCAGCGGCCGTGGTCGCCCAGGTCGTCGCCGTCGCCGTGGCGTTCGCGGGGGGCGGGGCCTGGGCCCTCGTCGCCCAGTCGGTGGTCTCGTCCCTCCTGATGACGTCGCTCGCGTGGTGGGCCGCCCGGTGGCGGCCGTCGCTCACGTTCTCGTGGAGCGAGCTCACAGCAATGGCTCGGTTCGGCTACAAGGTCGTCGCCGTCGAGCTGGTCGCCGTCGGCCGCCAGTGGGCGGAGACGGTGATCGTCGCCGTCGCGCTCGGAACGACCGGCCTCGGCTACCTCACGATCGCGCAGCGACTGGTCCAGGTCGCCCAGGACCTGGGCGGAGCGGCGGTGACACCTGTCTCGGTCGTGGTGCTCGCGAGGGTCCGCGACACCCCGGCACGGTTGCGGAGCGCCTATCGCCGTGCCTCGTTGCTCACCTACGCCGCCGTGTCTCCCCTCCTCGTCTTCGTCGCCTCGGCCGCCCCCGTCGTCGTCCCTCTGGTGTTCGGGGACCAGTGGGACGCGAGCATCCCCGTCGTCCAGGGTCTGGCGGTCGCCGGCATCCTCACTCTCGGGGCGTTCCTCGACCACGGCCTCTTCTACGCCCTGGGTCGCGCGGGGACGTGGCTGGTGTACGCGACGGCGATCGACCTCCTGACGGTCGGGGTCACGGCGATCGCGGTCTCGTTCGGCCTCACCGCCGTCGCCTGGGGTTTCGTCGGCGTGGCGCTGGTGGCCACGATGATCCGGTGGGGCCTGGTCGCACGGGTCCTGCACGAGCGGACAGGGGACCTCGCCAGGGCCTTCGCCCGCTTCTCGGTCTGTGCCGTGGTGACCGGTGCCGTCGGCGTCGCCGTGGTCGCGGCGGTCGGCGGACCTCTGCTGGTCCAGGTGCTGGCGGCAGGCACCGCGGTCGTCCTGACCCAGCTGGTCATGCTCAGGCTCGTGCTGCCGGACACCGTCCGCGACGCCCTCGAGCTCGGACCGGTCCCGGCCCGGGTCCGGGTCGCCACCGAGCGGTTCGCGCGGCTCTGAMTAPDAGRGGRAGGRDDDRVVDGPDAEEGLGRAAAAGTLWLTAQKWLVRFSGLATIAILARLVTPEEFGVVAVAAAVVPFVLLLSDLGLSTYLVQAERTDQPMLSTGFWFSLGAGVGLGALLVLGSPLLAALFGVPDATPVLRVLIGAVPIVVLGSVPTALLRRRMQFRRLALQGAAAAVVAQVVAVAVAFAGGGAWALVAQSVVSSLLMTSLAWWAARWRPSLTFSWSELTAMARFGYKVVAVELVAVGRQWAETVIVAVALGTTGLGYLTIAQRLVQVAQDLGGAAVTPVSVVVLARVRDTPARLRSAYRRASLLTYAAVSPLLVFVASAAPVVVPLVFGDQWDASIPVVQGLAVAGILTLGAFLDHGLFYALGRAGTWLVYATAIDLLTVGVTAIAVSFGLTAVAWGFVGVALVATMIRWGLVARVLHERTGDLARAFARFSVCAVVTGAVGVAVVAAVGGPLLVQVLAAGTAVVLTQLVMLRLVLPDTVRDALELGPVPARVRVATERFARLNANANANANA
AK018_012611407hypothetical proteinATGACCACGGTCCGGGACCTGCGGCGCCGACTCGTCGCGTCGCTCGCCGTGCCGTTGTGGGGTGCGGCCGTCGCGCTCGCCGACCTCGCCCACCCCCGGATCCGCTACGGCTACGTCCACCGGGTCTCGGCCCGGCTCCTGCGGAGAGAGATGCCGACTCTCGGCCCGGTCCCGGGAGCCGCTTTCCGGACCTCGGCTGCCGGTTCCGCCGCCGCTGACCCCGTGCTGCGCTGTGCCCTGGTGACCGACGAGCTCGACGGGGGCGGCATCGGTCGAGTCGTCGAGATGCTCTGCGACGGGATGCGTGCCTTCGGCGTCGAGCCCCTGGTCGTCGTGCCGGTCGACGGTGACCGGTCGGCGTCGATGCGCCGACGGGGAATCGACGTCACGATCGCGCCCGACCCCGGCACGGCGGGGGCCGCGCTCAGGCGGGAGGATGTCGACGTCGTCCAGCTGCACTGCGCCCCCCGTCACCTGGAGACCGCCGCCATGGACTCGGGCCACCCCCTGGTGGCGGTCCTGCACAACACCGAGATCCACTACGACCGCGCGATGTGGGCCAGCAGAGCACGCCTGTTCTCCCGGTGCTCCGCCGTCGTCGCAGTGAGCGACGTCGTGCGTGAGTACCACCGCGCCCGTCTGCCCCGGAGGCTCGGCGACGAGATCGTCGTCGTCCCCAACGGCGCTCCCGCGCCGACCCGACCCACCGCCGAGGTCCGCCGCCGCGCCCGCGAGTCCCTCGCGTCGGTCGTCGGCTCACCGCTCGACGAGGACGTCGTGGTGTTCTCCTGCCTCGCGCGCTACGACTCGCAGAAGAACATCACCGGGACGGTCGTGGCGTTCCTCGACGCTCTGGCGTCGAGAGCGCCGGCCCGCCTGGTCGTCGCCGGGGACGTCTCCGACTGGATGGAGCTGCGACGAGCCGACGCCGTCCGCCGCGCGCACCCGTCCGGGGACCGCGTCCATCTCCTGGGACGCTCCGACGCCGCGGCTCTGCTCGCCGCCTCCGACGCCTTCGTGCTCGACTCGTTCTTCGAGGGGTGGCCGCTCGCCACCACGGAGGCGGTCGCCGCCGACCTTCCCATCGTGGTCAGCGACACCGGAGGTGCCCGAGAGCTCGTCGCCGGCGCCGCGCTCGGTTCCTCGCTCGTCGCGAACCCGACGGGCCCGGCAGCACGAGTGACGGACGGCACGGCCCGTCGTGCCCGACGTCGGGCCCGGCGGCAGGACAACCGGTCCGAGCTCGCGCACGCGATCGCGTCCCTCGCTGGCGCTGCGCCGGCCCCGGGCTCGCGTCCGGCGGACACGAGCCACGCCGAGATGGCCGACCGGCACGCCGCGCTCCTCCAACAGGTCGTGGGTACGGAGGCCGCACGGCACAGTGCCGCCGGCGGTGAGGCACGGTGAMTTVRDLRRRLVASLAVPLWGAAVALADLAHPRIRYGYVHRVSARLLRREMPTLGPVPGAAFRTSAAGSAAADPVLRCALVTDELDGGGIGRVVEMLCDGMRAFGVEPLVVVPVDGDRSASMRRRGIDVTIAPDPGTAGAALRREDVDVVQLHCAPRHLETAAMDSGHPLVAVLHNTEIHYDRAMWASRARLFSRCSAVVAVSDVVREYHRARLPRRLGDEIVVVPNGAPAPTRPTAEVRRRARESLASVVGSPLDEDVVVFSCLARYDSQKNITGTVVAFLDALASRAPARLVVAGDVSDWMELRRADAVRRAHPSGDRVHLLGRSDAAALLAASDAFVLDSFFEGWPLATTEAVAADLPIVVSDTGGARELVAGAALGSSLVANPTGPAARVTDGTARRARRRARRQDNRSELAHAIASLAGAAPAPGSRPADTSHAEMADRHAALLQQVVGTEAARHSAAGGEARNANANANANA
AK018_012621233hypothetical proteinATGTCTGGGTCGGGCCGTGCAGGCGTCACCGTCGTCTGCGTGTTCAACGACGAGGCGGTGCTCGACTCCTGCCTACGCCGCTCCGTCGAGAAGGGCCTGCCGGACGCGCCGGCGACCGAGCTCGTCGCGATCGACAACCGCGATGGTCGGTTCGGTACGGCAGGTGCTGCGCTGAACCACGGCGCCGCACAGGCACGCAACGAGGTCGTCGCCTTCGTCCACCAGGACGTCTACCTTCACTCGCTGCCAGCGCTCGAGAGGGCCGCGGCCGCGATGCTCGCCGACGACGACCTGGGAATCCTCGGGGCGGTGGGGATCGCCCCGACCGGTGACGTCCTCGGTGTGGTGCGCGACCGGGTCGTCATGATCGGCACCCCGGCCGGGCCCGACAGCCGCGTGGACAGTCTTGACGAGGTGCTCTTCATGCTGCGCCGCGACCAGGTCGCCGCCGAGCCGCTGAGCGAGGACCCCCGGCTGGCCTGGCACGCCTACGCGGTCGAGTACTGCGCCCGTGTGCAGTCGGCCGGTCGCCGGGCGAGCGCCATGGACCTCGTGCTGACCCACAACAGCATGACCCTGAACCTGGCTCGGCTCGCCGAGGCCCACGCGCACGTCGCCGCACTGCATCCCTCACAGACCCCGCTCCGGACGACCTGCGGGATCGTCCGTGGCCCCGACGGCCAGGGACGCCTACGACGCCTGGCCCGACGCCGCCATGGCCTCGCACGCTGGTGGAGGGAGTCGGTCACGGCCGGTCTCCTCGCCCACAGGTCGCACCTGCCGGCCGGGCACCTCGTCCTCGGGGACGTCCGGCTCGAGATCGACGACATCCTCGAGGCGATCGGGGCCGACGAGCTGGACGTCCTGAACGTGGCCCCGGACGCCGATCCCGTCTGGGACGTCGCAGCACTTCGACGCCGGGACGCTCGAGTGACCTACCGTTCGGTCGCGGCGACCTCCGCCCTGCAGGATCTCGACGTCTCACGGACCGGCAGGGCCCTGCTGGCGACCGGACTGGACGCAGACACGGTGGCCGAGGTCGCCCGCCGGGTCGCTCCCGCGTCCTTGCTGGTCGGTCACACCCGTGACGTCGGTACCTGGGCACTCGTCCACCCCGGCGCGGGAGACCAGGGATCTCGCTGGTCCGCGCGTCGTGACCGCCCCTTCGGCCGCCGCAGCGCCCCGCCCGGACGCGAGGAGCGCTCCACCATGGACGACCTGGCCGCAGGATGAMSGSGRAGVTVVCVFNDEAVLDSCLRRSVEKGLPDAPATELVAIDNRDGRFGTAGAALNHGAAQARNEVVAFVHQDVYLHSLPALERAAAAMLADDDLGILGAVGIAPTGDVLGVVRDRVVMIGTPAGPDSRVDSLDEVLFMLRRDQVAAEPLSEDPRLAWHAYAVEYCARVQSAGRRASAMDLVLTHNSMTLNLARLAEAHAHVAALHPSQTPLRTTCGIVRGPDGQGRLRRLARRRHGLARWWRESVTAGLLAHRSHLPAGHLVLGDVRLEIDDILEAIGADELDVLNVAPDADPVWDVAALRRRDARVTYRSVAATSALQDLDVSRTGRALLATGLDADTVAEVARRVAPASLLVGHTRDVGTWALVHPGAGDQGSRWSARRDRPFGRRSAPPGREERSTMDDLAAGNANANANANA
AK018_01263957hypothetical proteinATGCAACCTGGAACGGGGCGTCCTGGTGCCGGCCCCCCGGACGTCGTCGTCGTGGTGGTGACCTACAACAGCGCGCGGGTGCTCCCGGGCCTCCTGGACTCGCTCCCGGAGGGGCTCTCCGGGCTGTCGTCACGGGTCGTGGTCGTGGACAACGGCTCGGTCGACGACTCCGTCGCGGTCGCGGGCGCTTCTCAGAGCGTCGCTTCCGTCGTGGCGACCGGCCGCAACGGGGGCTACGCGGCCGGCATCAACGCGGGGGTCCGGGCCGCGGGTCCGGCGCGCGCGGTGCTCGTCCTCAACCCCGACGTCCGGCTCGGGCCGGGCTGTGCCGCTCGTCTGCTGTCCGCTCTCGAGGCCTCGGGCGCGGGGATCGTCGCGCCTCGGCTGGAGGACGCGGCGGGTGTGCTCATCTGCTCGAGGCGTCGTGAACCCACTCTGGGACGCGCGGTCGCCGACCTGCTGCTGGGTGCCGAGCGGGCGGGGCGCATCGGGAGGCTCGGCGAGGTCGAGACCGACGCCGAGGCCTACGAGGTCGAGGGGTGGGCCGACTGGGTGGAGGGCTCGACCCTGATGATCGGGTGGCCCTGCTGGCAGACGGTCGGAGCCTGGGACGAGTCGTACTTCCTCTACTCCGAGGAGACGGACTACGCGCTGCGCGCGCGCGACGCCGGCATGCCCGCGAGGTTCGTGCCGAGCGCCCGTGCTGTCCACCTCGAAGGTGGTTCGGCCGCAGATCCCGGTCTCTGGCGTCTGCTGGTGGCCAACAAGCTGCGTCTTTACTCACGACGCCACAACCCGGGTGCAGCGGCGCTCTTCTGGACGCTACTGGTCCTGCGGGAGGCGTCGCGCGCTGCCCTGGGTCGCCGGACCAGCAGGGCCGCGCTGAAGGGGCTGTCGAGCCCTCGCTACCTGCGTGCCCGGCCGGGGCCGCACAGCGTGGTCAGCGCAGTCTCTTGAMQPGTGRPGAGPPDVVVVVVTYNSARVLPGLLDSLPEGLSGLSSRVVVVDNGSVDDSVAVAGASQSVASVVATGRNGGYAAGINAGVRAAGPARAVLVLNPDVRLGPGCAARLLSALEASGAGIVAPRLEDAAGVLICSRRREPTLGRAVADLLLGAERAGRIGRLGEVETDAEAYEVEGWADWVEGSTLMIGWPCWQTVGAWDESYFLYSEETDYALRARDAGMPARFVPSARAVHLEGGSAADPGLWRLLVANKLRLYSRRHNPGAAALFWTLLVLREASRAALGRRTSRAALKGLSSPRYLRARPGPHSVVSAVSPGPT0024205_380DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ARABINOGALACTAN|LIPOARABINOMANNAN_REMODELLINGCE-REMODELLINGL-RHAMNOSYLTRANSFERASE_ACTIVITY,PGPT0024205-wbbL-K16870NANA
AK018_01264660hypothetical proteinATGAGCAGCTCGGTGCACGTGTGCTTCCACGGTGTCGGCGAGCCCGGGCGGACCCTCGAGCAGGGCGAGGCCTCGTACTGGGTCGGACACCCCACGTTCCTGGCGATCCTCGACGAGGTGGCGGGCTGGCCGGGCGCGACGCTCTCCTTCGACGACGGCAACGCGTCGGACGTCGAGCTCGCGCTGCCCGCCCTGCGCGAGCGCGGGTTGACGGCCACCTTCTTCGTCCTCGCAGGGCGTCTCGACACCGCCGGCAGCCTCCGGACGGTCGACGTGCGAACCCTCGTCGACGCCGGCATGAGCATCGGCTCGCACGGCATGGACCACGCCACCTGGCGGCGCATGCCGCCCGCGCTCGAGCATCGTGAGCTCGTGGAAGCCCGACAGCTGCTTCAGGACATCACCGGGGGCCCCGTCGAGGATGCCGCGTGCCCGCGGGGCCAGTACGACCGCAGCGCGCTCGCTGCCCTCAAGCGGCTGGGCTACCGAGCGGTCTACACCTCGGACCGGCGTGCCGCCCGCTCCGGCGCGTGGCTGAGGCCCAGGTTCAGCGTGACCGCCTCCGACACCCCTGCAGGGCTTCGCCGCGCCGTGTGGGGGCAGGGCCGCCCGGGGGCAGCCGTCTCGGCCGCCAAGACGTTCGTCAAGAGACTGCGCTGAMSSSVHVCFHGVGEPGRTLEQGEASYWVGHPTFLAILDEVAGWPGATLSFDDGNASDVELALPALRERGLTATFFVLAGRLDTAGSLRTVDVRTLVDAGMSIGSHGMDHATWRRMPPALEHRELVEARQLLQDITGGPVEDAACPRGQYDRSALAALKRLGYRAVYTSDRRAARSGAWLRPRFSVTASDTPAGLRRAVWGQGRPGAAVSAAKTFVKRLRPGPT0012156_616DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012156-chitin_deacetylase-NANANA
AK018_01265897hypothetical proteinATGGGCCACGACACCACCCGAACCGTCCGGGCGAGCGTCGTGATCGCCGCATACAACGAGCAGGCCGTCATCGGGAGAAACCTCGACCGGCTGCTGACCCGAGCCGGACCCGGCGAGCTCGACGTCACGGTCGTCGCGAACGGCTGCACGGACCGTACCGCCGACGTGGCGCGCTCTCGCGGGGTCCGCACCGTCGAACTGCCCGAGCCCGGCAAGGCCGCGGCGCTCAACGCCGGCGACGCGGCCGCGGTCGGCTTCCCCCGGGTCTACCTCGACGCGGACGTCGGTGCCGACGCCGACACCGTTCGCCGACTCGTCGAAGCCCTCGCGCCGGCGGCGGGTGGCACGGCCCCTCTCGTCGCCGTGCCTCGACGCCGTCTCCTGATGTCCGGCCGCCCCTGGCCGGTGCGCGCCTACTACGAGATCCAGACCCGGCTGCCTGCGGCACGCGAAGGCCTCTTCGGTCGCGGGATGATCGCGGTCTCCGAGGTCGGTCGGGGACGCTTCGGCGATTTCCCCCCGGTCGTCGCGGACGACCTGTTCCTCGACTCGCTCTTCGGCCCGGACGAACGGGTCGTCGCGGCCTCGGCGATCACGTCCGTGGAGACACCTCGCACGACCGCCGACCTGGTACGACGGCTCACCCGGGTGCGCCGCGGCAACGCCGAGCTCCGGGCACGGGGGTCCGGAGACGCCGACACACCGGCCCCAGCCGTGAGACCAGCGCGACGCACCAGCTGGCTGCGCGACGTCGTCATCCCCGATCCGCGACTTGCACCGGCAGGCCTCGTCTTCGCCGTCCTGACCGTCGTCGCCGAGGTGCGCGCGCGTCGCACCCCCGCCCGCTGGGAGGTCGACACCTCCAGTCGCACGATCGATCCAGGAGCGACCGCATGAMGHDTTRTVRASVVIAAYNEQAVIGRNLDRLLTRAGPGELDVTVVANGCTDRTADVARSRGVRTVELPEPGKAAALNAGDAAAVGFPRVYLDADVGADADTVRRLVEALAPAAGGTAPLVAVPRRRLLMSGRPWPVRAYYEIQTRLPAAREGLFGRGMIAVSEVGRGRFGDFPPVVADDLFLDSLFGPDERVVAASAITSVETPRTTADLVRRLTRVRRGNAELRARGSGDADTPAPAVRPARRTSWLRDVVIPDPRLAPAGLVFAVLTVVAEVRARRTPARWEVDTSSRTIDPGATANANANANANA
AK018_012661617hypothetical proteinATGGCAGTGGCCCACTCCGACGACGGTCCGACACGCCATGAAGTACGTGCCACAGGTTTCACCGGATGGCAGGCGCGTGAGGCCGGGTGGGCATGCCGTCCTGCCGAGTTCGCCCGGGGGCAGTCACCCCAGAGCGAGGCAGCTCAGGAGCAGATCCCTTCCGACGCAGTCACGCTCTGGGGTCACCACAGGCCCGACAACTCGAACGTCGACTCGGACACGGTCGGCGTGGAACTCGGCACGCGCTTCGCCCCCGCTACCGACGGCGATGCCCTTGGTGTCCGCTACTACAAGGGCACTCGCTCTGACACAGGCACCCACATTGGGACGCTGTGGTCCACCGAGGGCGAGCGCCTCGCCAGCGCCACGTACGACAGGGCATCGGACCGCGGCTGGCAGACCGTCCTGTTCGACGAGCCGGTAACCCTCGAGGCCGGCACCGAGTACATCGTGTCGTACTACGCGCCCGAAGGCCGTTACTACCAGGAGACTCGTTCGGATGCCGTTTCGACGACGGACGAGCTGAGCGTTCCGGCGCGTGGATCGGGCGTGTTCGCCTACGGTCGGAGCCAGTTCCCGACGGAGACGTGGAAGAACAGCCAGTACTGGGCCGACGTCGTCTTCGTGCCCTCGGGCGACCCGGTGACCGAGCCGACCACCGAGCCCGAGCCGGAGCCCACCACCGAGCCCGAGCCCGAGCCCACCACCGAGCCCGAGCCCGAGCCCGAGCCCGAGCCCACCACCGAGCCCGAGCCCGAGCCCACCACCGAGCCCGAGCCCACCACCGAGCCCGAGCCCACCACCGAGCCCGAGCCGGAGCCGGAGCCCACCACGGGGCCGTCGTCGTCCGGCTTCCCCACCTCACAGACGACGGGCGTTCCTGCCGGGACGGACCTGACCGAGTACTCGGGACCGAACCGCATCACCCGGGCAGGCACGACGATCGACTCGAAGATCATCACGCAGCCGCTCGTCATCACCGCCGGCGCCGACGACGTGACCATCAGGAACAGCGTGATCCGCGCCAAGGGCTACTGGCTCGTCCTGAACGACGAGGGCGCGAAGAACCTCCGTATCATCGACTCCGAGCTGGACGGCCAGGACCACAGGTCGAACGACGCCGCCGTGGCCGGACGGAACTACACCCTCAACCGGGTGGACATCCACAGCACGGTGGACGGCCTCAAGCTGGGCAACAATGTCACTGTCAAGGACTCGTACATCCACGACCTCTCCGTCGGCGGCGGGTCACACAACGACGGCATGCAGTCGCTCGGCTCGGACAACGTCGACATCACCGGCAACTCCGTGATCGTCCCGAAGGGCTCGACGTCGGCGATCATCCTCTCGACCGGGTCAGCCGACTCGATGCGCGACATCCGGATCCAGGGCAACCTGCTCGGCGGGGGCGCCTACACCGTCTACGGCGGTTACCAGCGCGGCATCGACACTCTCTCGAAGGTCAGCGACATCGTGATCGCCGACAACCGGATCACCACGACCATCGAACCGCGAGGTGGCGCGTTCGGCCCCTTCGCCTCGGTCGACAGCCCCGCGGTGACGCTCACCGGGAACACCTGGTACGACGGCCCGAACGCGGGCAAGCCCGTCGACTGAMAVAHSDDGPTRHEVRATGFTGWQAREAGWACRPAEFARGQSPQSEAAQEQIPSDAVTLWGHHRPDNSNVDSDTVGVELGTRFAPATDGDALGVRYYKGTRSDTGTHIGTLWSTEGERLASATYDRASDRGWQTVLFDEPVTLEAGTEYIVSYYAPEGRYYQETRSDAVSTTDELSVPARGSGVFAYGRSQFPTETWKNSQYWADVVFVPSGDPVTEPTTEPEPEPTTEPEPEPTTEPEPEPEPEPTTEPEPEPTTEPEPTTEPEPTTEPEPEPEPTTGPSSSGFPTSQTTGVPAGTDLTEYSGPNRITRAGTTIDSKIITQPLVITAGADDVTIRNSVIRAKGYWLVLNDEGAKNLRIIDSELDGQDHRSNDAAVAGRNYTLNRVDIHSTVDGLKLGNNVTVKDSYIHDLSVGGGSHNDGMQSLGSDNVDITGNSVIVPKGSTSAIILSTGSADSMRDIRIQGNLLGGGAYTVYGGYQRGIDTLSKVSDIVIADNRITTTIEPRGGAFGPFASVDSPAVTLTGNTWYDGPNAGKPVDNANANANANA
AK018_01267702hypothetical proteinATGCTCGAATCCGAGGGGAGGGTCGTCGGGGTCCATCTCGCCTTCCGGTCGGAACGTGAGGTGGGCGGGAGGCGGCTCACCGTGTGCAACCTCGGGGCCTGGTGCGTGCTCGACACCCACCGCGCCCAGGGCCTGCTCCTGCTCCGGTCCCTGCTGCGGACCGGAGCCGATCTCTACACGGATCTCTCCCCGAGCGGCTCGGTGATCCCGCTCGAGGAGAGGCTCGGCTTCTCACGGCTCGACACCTCCAGCCTCCTGCGGCCCAACGTGCCGCGACCCTGGCGGCTCCGGGGCGTGCGGCTGCTCACCGACCCCGACGACGTCGCGGCCGAGCTGGGTGGAAGGGACGCCGAGGTCTTCCGCGACCACCGGGACGCCGCCGCGGCCAGGCACGCCGTGATCGTCACGGGCGACGCGCACTGCTACGTGCTCTACCGGCAGGTGCGACGCAAGGGCCTGCCGGTGTTCGCGTCGCTCGTCCACGTCGGCGACCCCGCGGTCCTGGTCCGGGGTCTGGACCGGCTCGCCGTGCACCTCCTGCGTGAGGGCCTGCCCCTGCTCCTCGCCGAGCGTCGGGTGGCGGGGGCAGCGCTCCCGTGGGCGGTACCGGTCGAGGGTCGTCCGAAGACCTATCGGGGTGACGGGGTCCGCGCCTCCGAGGTCGACGACCTCTACAGCGAAATCACCTGCGTCCCTTGGTGAMLESEGRVVGVHLAFRSEREVGGRRLTVCNLGAWCVLDTHRAQGLLLLRSLLRTGADLYTDLSPSGSVIPLEERLGFSRLDTSSLLRPNVPRPWRLRGVRLLTDPDDVAAELGGRDAEVFRDHRDAAAARHAVIVTGDAHCYVLYRQVRRKGLPVFASLVHVGDPAVLVRGLDRLAVHLLREGLPLLLAERRVAGAALPWAVPVEGRPKTYRGDGVRASEVDDLYSEITCVPWNANANANANA
AK018_012681560lcfB_1COG0318Long-chain-fatty-acid--CoA ligaseGTGACAACCGTGGTCATCGCCTGGCACCAGCTCCTCGAACATCGTGCGGCGGCAGTCCCCGACGCCCCGGCGTTGTCCTATCGTGACGAGACGATCCGCTACGGCGAGCTGTGGGCCCGGGTGCTGGGGGCCGGCGGCATGCTCGGACGGCTCGGTGTGTCGCGGGAGGACCGCGTGGCGATCTTCCTCGAGAAGCGGGTCGAGACGGTGGTGGCGATGCTCGGCGCCTCCGTGGCGGGCGGCGCCTTCGTCCCCGTGAATCCCTTGCTGAAACCGGCGCAGGTAGCGCACGTGGTGCGTGACAGCGGTTCGAGGATCCTCGTGACGTCGCGCGCCCGCCTCGATCTGCTCGCGGACGCGCTCGACGACTGTACCGACCTCATGGAAGTCGTGGTGGTGGACGATCCGCCTGCCGACGACGAGGGAGTGCGTCGGGTCCATCGGTGGTCGACCGACGGGCCGGGCCCTGCGGGACCGGTCCGCGCGGTCGACGTCGACGTGGCCGCCATCCTTTACACCTCGGGGAGCACCGGACTGCCCAAGGGCGTCGTGCTCAGCCATCGGAACCTCGTCGTCGGAGCACAGAGCGTGAGCGACTACCTCGGACTCCGGGCGGACGACGTGACGCTGGCCGCACTCCCGCTCAGCTTCGACGCCGGACTCTCCCAGGTCACGACGGCGCTCTGCGTCGGAGCGCACGTGGTCCTGCTCAACTACCTCGCGCCGTCCGACGTGCCCCGGGCCTGCGCGCGCTGGGGTGTCACGGGGCTCACCTGTGTCCCTCCGTTGTGGAATCAGGTGGCGGGTATCGCGTGGCCGGACGAGGCCAGGGAACGGCTGCGGTACTTCGCCAACACCGGTGGGCACATGCCCAAGACCCTCCTCGACCGCTTGCGGGAGACGTTCCCGGCGGCGCGGCCCTTCCTGATGTACGGGCTCACCGAAGCTTTTCGGTCCACCTATCTCGACCCTGACGAGGTCGACCGCCGTCCCGGCTCCATCGGCAAGGCCATCCCCAACGCCGAGGTGCTGGTGGTCCGTCCGGACGGGAGCAGGTGCGCCCCGGGGGAGCCCGGCGAGCTGGTGCACCGCGGTGCGCTGGTGGCGCTCGGCTACTGGAACGACGAGGAGCGCACGCGTCGGCGGTTCCGTCCCGTGCCGGGCCCGACCACAGGGAGCAGGCCTCCGGAGGTCGCCGTCTGGTCCGGCGACACGGTCGTCGCGGACGAGGAAGGGTTCCTGTACTACGTGGGCCGGGAGGACGAGATGATCAAGTCCTCCGGGTACCGCGTGTCTCCGACGGAGGTGGAGGAGTCCGCCCTGCGCACGGGACAGGTCAGCGACGCGGTGGCGTTCGGGGTGGAGGACGAACGGCTGGGGCAACGCATCGTCCTCGTGGTCGCCGGCGACGAGCCCGACGCCACGGCGCTCGCCAAGGACCTGCGCTCGAGCCTTCCTGCGTTCATGGTGCCGTCCGAGATCGTCGTGCGCGCGAGCATCCCTCGCTCGCCGAACGGCAAGTACGACCGCCGTGCGTTGCGTGAGGAGCACGGCTCGTGAMTTVVIAWHQLLEHRAAAVPDAPALSYRDETIRYGELWARVLGAGGMLGRLGVSREDRVAIFLEKRVETVVAMLGASVAGGAFVPVNPLLKPAQVAHVVRDSGSRILVTSRARLDLLADALDDCTDLMEVVVVDDPPADDEGVRRVHRWSTDGPGPAGPVRAVDVDVAAILYTSGSTGLPKGVVLSHRNLVVGAQSVSDYLGLRADDVTLAALPLSFDAGLSQVTTALCVGAHVVLLNYLAPSDVPRACARWGVTGLTCVPPLWNQVAGIAWPDEARERLRYFANTGGHMPKTLLDRLRETFPAARPFLMYGLTEAFRSTYLDPDEVDRRPGSIGKAIPNAEVLVVRPDGSRCAPGEPGELVHRGALVALGYWNDEERTRRRFRPVPGPTTGSRPPEVAVWSGDTVVADEEGFLYYVGREDEMIKSSGYRVSPTEVEESALRTGQVSDAVAFGVEDERLGQRIVLVVAGDEPDATALAKDLRSSLPAFMVPSEIVVRASIPRSPNGKYDRRALREEHGSNANANANANA
AK018_012691254btrKL-glutamyl-[BtrI acyl-carrier protein] decarboxylaseGTGAGCGGCTCCACCACCGTCGATGCCTTCGCCAGGAGCGGGGGCGCGCTCGCCGTGGGCGGCGTGCCGGTCGACCGGCTCGCCCGGACCGTGGGATCCACGCCCTTCTTCGCGTACGACCGCGGTCTGATCAGCGACCGGGTCCGGTCGCTCCGTGCGCAGCTCCCGCCCGCGCTGAGACTCGGGTACGCCGTCAAGGCCAACCCCATGCCAGCCGTCGTGCAGCACCTGTCTACCCTCGTGGACGCTCTCGACGTGGCGAGCATCGGCGAGATGCGTGTCGCACTCGACACAGGTGCGGATCCGCGCGACGTCAGCTTCGCGGGCCCGGGAAAGACCGCCGCGGAGCTCGAGCAGGCGGTTGCGGCGGGCGTCACGATCGAGCTCGAGTCCCGGGGCGAGGCTCATCGTGTCCTCGCGGCAGCGTCTGCCGTCGGTGCCGCTCCCCGGGTCGCCGTCCGGGTCAACCCGGACTTCAGCGTGCGCGGTTCGGGTATGCGCATGGGTGGCGGGCCGCAGCAGTTCGGTGTCGACGCGGAGGACGTCCCGGCCTTGCTGCACGAGCTGTCGCGAGAAGGTGCTCCCGCGGTCGGCTTCCACGTCTTCGCGGGTTCGCAGAACCTCTCGGCCGACCTGCTCGTCGCCGCACACGCGAAGACTGCCGAGCTGCTGATCCGCCTCGCCTCGGAGGCGCCGGACCCGGTGACGTACGCGAACCTCGGCGGAGGGCTCGGGGTTCCCTACTTCCCGCAGGACACCCCGCTCGACGTCGGTCGCGTCGCCGCGAACCTCACGACTCTCGTGGAGGACCGGTTGGGGCCCGCGCTCCCCGACGCCGCTCTCGTGATCGAGCTGGGTCGGTACCTGGTCGCGGAGGCCGGCGTCTACGTGACGAAGGTCGTGGACAGGAAGGTCTCCCGCGGCAGCACCTACCTCGTCGTCGACGGAGGGATGCACCACCAGCTCGCCGCTTCAGGCAACCTCGGGCAGGTGATCCGGCGCAACTACCCGGTTCGCGTCGGGACCGCGGTCGACGCAGAGCCGACCGAGCGCGCGACCGTCGTCGGCTGTCTCTGCACTCCTCTCGACCTGCTCGCGTCCGACGTCGAGCTGCCTCCGGCGGACGTGGGCGACCTGATCGTCGTCCACCTCGCAGGCGCCTACGGACTCACCGCGAGCCCTACCGGGTTCCTCAGCCATCCCGCCCCCGTCGAGGTCCTCGTCGGCCCGACCCAACCTCGGAGAACACCATGAMSGSTTVDAFARSGGALAVGGVPVDRLARTVGSTPFFAYDRGLISDRVRSLRAQLPPALRLGYAVKANPMPAVVQHLSTLVDALDVASIGEMRVALDTGADPRDVSFAGPGKTAAELEQAVAAGVTIELESRGEAHRVLAAASAVGAAPRVAVRVNPDFSVRGSGMRMGGGPQQFGVDAEDVPALLHELSREGAPAVGFHVFAGSQNLSADLLVAAHAKTAELLIRLASEAPDPVTYANLGGGLGVPYFPQDTPLDVGRVAANLTTLVEDRLGPALPDAALVIELGRYLVAEAGVYVTKVVDRKVSRGSTYLVVDGGMHHQLAASGNLGQVIRRNYPVRVGTAVDAEPTERATVVGCLCTPLDLLASDVELPPADVGDLIVVHLAGAYGLTASPTGFLSHPAPVEVLVGPTQPRRTPNANANANANA
AK018_01270270acpP_1Acyl carrier proteinATGAACGCACCCCTCACCGAGAGCGTCGCCGAGGTCGTCGTCACGACGCTCGGCATCGACGACCGTGCCGCGACGCTCGGACCGGACAGCCCGCTCTTCGGTGCCGTCCCGGAGCTCGACTCGCTCGGCGTCCTCGAGGTCGTCACCGCGCTCGAGGACCGGTTCGGCATCACTGTCGACGACGTGGAGTTCTCGGGGGAGATCTTCGAGACGGTCGGCACGCTCGCGGAGTTCGTGGGTACGAAGTTGGGCGACGGGACGGCTGCGTAGMNAPLTESVAEVVVTTLGIDDRAATLGPDSPLFGAVPELDSLGVLEVVTALEDRFGITVDDVEFSGEIFETVGTLAEFVGTKLGDGTAAPGPT0011375_1454DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078NANA
AK018_012711326hypothetical proteinATGGCCACCCCCCGGGCCCCGCGCGTCCTCATCGTGGTCCAGAACCTCCCGATCCCGCTCGACCGGCGGGTGTGGCTCGAGGCACAGGCGCTGCGCGACGCCGGATACACGGTGAGCGTGATCTGCCCGAAGGGGCCGGGCGACCCGGCTCGCCAGGACCTCGACGGCGTCGCGGCCTACAAGTACCGACCGGCGCCGCCCGCCGACGGGCTGCTGGGTTACCTGCTCGAGTTCGTCTACTGCTGGCTGCGGACGGCCCTGCTCACCCTCGTCGTACGCCGCGAACGGGGCTTCGACGTGATCCAGGCCTGCAACCCTCCCGACACGTACTGGCTGCTCGCCCTGCTCTGGCGTCCTGCGGGGGTCAGGTTCGTCTTCGACCACCATGATCTCAATCCTGAGCTCTTCCGGTCCCGGTTCGGAGAGGCGCGGGGCCGCTCCCGGCGGCTGCAGCTGACGGGCCTGCAGTGGCTCGAACGTCGGACGTTCCGTGCGGCACACCGCGTCATCTCGACCAACGAGTCGTACCGGCGTGTCGCCATCGAGCGGGGCAGTGTCGACCGTGGTCGTACAGAGGTGGTTCGTTCCGGGCCGGACACCCGGGTCATGCGCCCCGTCGTGCCGACCGTCGACCGCTCCCACGGTTCGCACCTGCTGGTCTACCTCGGAATCATGGGACCGCAGGACGACGTGGACATCGTCCTCGACCTCATGGAGGAGCTCGTCCACCACCGTGGTCGGCGGGACGTCCGCGCGGCGCTCCTCGGCTTCGGCGACTGCCTGGAGGACCTGCGCGCCAGCTGTACACGGAGAGGGCTGGACGACGTCGTCGAGTTCACGGGCCGGGTCGGCCCGCCGGAGATCGGCGAGTACCTCTCGGTCGCCAGCGTGGGGATCGGTCCGGACCGCAAGACTCCCCTCAACGACGTGTCGACCATGAACAAGACCATGGAGTACATGGCCTACGCCGTGCCACCGGTGTCGTTCGACCTGGTCGAGGTCGGTGTCTCGGCCGGGGCCTGCGGGATCCAGGTGCCGTCGGGCGACGTCCCGGCTATGGCGGATGCGGTCGAGTCGCTGCTCGACGACCGAGAGCGCCGGACGGCGCTCTCGCTCGCCGCTCGCGAGCGTGCGGCCGACGTGCTCGACTGGCAACCGCAGCTCCAGCACTACGTCAGTGTGTTCGACGACCTGCTTCGCTTCCGTTCGAGGTCCCCGGGCCCGGGCGCGGGCGAACCGTTGCCCGCCACCGACGCGACCGGTCGGCCCTATGTGGACTCGTCGGGCTCGCTCGCCGATTTCGTCGCGTCACGAGGAAGCCGCTGAMATPRAPRVLIVVQNLPIPLDRRVWLEAQALRDAGYTVSVICPKGPGDPARQDLDGVAAYKYRPAPPADGLLGYLLEFVYCWLRTALLTLVVRRERGFDVIQACNPPDTYWLLALLWRPAGVRFVFDHHDLNPELFRSRFGEARGRSRRLQLTGLQWLERRTFRAAHRVISTNESYRRVAIERGSVDRGRTEVVRSGPDTRVMRPVVPTVDRSHGSHLLVYLGIMGPQDDVDIVLDLMEELVHHRGRRDVRAALLGFGDCLEDLRASCTRRGLDDVVEFTGRVGPPEIGEYLSVASVGIGPDRKTPLNDVSTMNKTMEYMAYAVPPVSFDLVEVGVSAGACGIQVPSGDVPAMADAVESLLDDRERRTALSLAARERAADVLDWQPQLQHYVSVFDDLLRFRSRSPGPGAGEPLPATDATGRPYVDSSGSLADFVASRGSRPGPT0020150_4DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARAGINE_DEGRADATION,PGPT0020150-asnB-K01953NANA
AK018_012721374hypothetical proteinTTGCGTACCAGGGACCTCGGCGCAACCTCCAACGACGCCTTCGCCTGGTTGATCGCCTACACAGTCCTCCTCTTCGCGATCCCGTCACGCCTGGTCCTCGGGCCGCTCGGGAGTGCGGGCGCCCCCTCGATGCTCTTCGGCCTGACCGGCGCGTTCCTCTGGATCCTCGCCCAGCTGTGGCGCACGCACCCGACGCCCCAGCTGCTGCAGACCGTCCGAGGATCGCTCTGGCTGTTCGGCGCGTCGGCAGGCATCAGCTACGTGATCGCCATGGCCGGACCGATCGCTTTCGACGAGATCAGCCCGGCGGACGTCGCCATGATCTCGATGGTCTCCTGGGCCGGCGTCATGCTCGTCGCTCACGACGGCCTGCGTGACCTGGGTGCCGTGGAGCGGGTGGTCCGGGCGTTCGTCCTGGTCGGCGGCCTCATGGCGTCGGTGGGGCTGGCGCAGTACGTGACCCGGCAGGTGCTCGTCGACCGCATCTCGATCCCCGGCCTGCAGGCGGTCTCCGACATCGAGGCTGCCTTCCGCAACGGCGTGATCCGCATCTCCGGGACGGCGACCTCGCCGATCGAGTTCGGTGCGCTCCTGTCGATCCTCTTTCCCCTGGCCGCGCACGTGGCTCTCCATCCGGCCGGGCTCGGACCCCTGCGGCGCTGGCTCCCGGTCGCCACGATCGGGGCGGCTCTCGTGCTGTCGAACTCGCGGTCCGCCTACCTGGGCCTGGCCGTGGGCCTGGTTGTGCTGTTCTGCGGCTGGCCACGTCAGCTGCGGCGTCGCGTGCTCGTCGTGACGCTGACGCTCGGCACGCTCACGGTGTTGGCCGTACCGCCGCTGTTCCGCTCCGTCCGCTCGATGTTCCTCGGCGCGAGCGAGGACCCGAGCATCACGTCACGGACGGACAGCTACGGCGTGGCGTGGCAGTTCTTCTCGGAGGCACCGCTGTTCGGGCACGGGCTCGGGACCTTTCTCCCCAAGTACCGGATCCTCGACAACGCGTACCTCGGGCTGGCCATCGGCGTCGGTCTGGTCGGCACGGTGGCGTTCTTCGCCATCCTGGGGTCAGCGGTCGTGGTCCTGCTCCGTCGTCGGAGACGCCTGTCGGACCCGCGCTCCCGCGACCTGGCGCTCGCCCTCGTCGCGGCGGTCGTGGCGGGGGCGACGTCCTTCGCCTTCTTCGACGCCTTCGGATTCCCCATGACGACAGGAACCCTGTTCCTCACGCTGGGCCTCGCGGGCGCCTTCGGACGCGTGACCGCGCCACGCTGGCTCGTGGACGATCGATCGGTCACTCCCGGTGGGGGCCAGACCGGTCAGCGGCTTCCTCGTGACGCGACGAAATCGGCGAGCGAGCCCGACGAGTCCACATAGMRTRDLGATSNDAFAWLIAYTVLLFAIPSRLVLGPLGSAGAPSMLFGLTGAFLWILAQLWRTHPTPQLLQTVRGSLWLFGASAGISYVIAMAGPIAFDEISPADVAMISMVSWAGVMLVAHDGLRDLGAVERVVRAFVLVGGLMASVGLAQYVTRQVLVDRISIPGLQAVSDIEAAFRNGVIRISGTATSPIEFGALLSILFPLAAHVALHPAGLGPLRRWLPVATIGAALVLSNSRSAYLGLAVGLVVLFCGWPRQLRRRVLVVTLTLGTLTVLAVPPLFRSVRSMFLGASEDPSITSRTDSYGVAWQFFSEAPLFGHGLGTFLPKYRILDNAYLGLAIGVGLVGTVAFFAILGSAVVVLLRRRRRLSDPRSRDLALALVAAVVAGATSFAFFDAFGFPMTTGTLFLTLGLAGAFGRVTAPRWLVDDRSVTPGGGQTGQRLPRDATKSASEPDESTPGPT0026055_23DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PSL_POLYSACCHARIDE_METABOLISMCE-EPS-PSL_POLYSACCHARIDES_BIOSYNTHESIS,PGPT0026055-pslJ-K21003NANA
AK018_01273759hypothetical proteinATGGAGTTCGCAGCGATCCTGCGGGCGCTGCTGAGGCGGTGGTACGTCGTCCTGCTCGGACTGGTAGCCACCGGCCTGGCCGTGAACTTCGCGGCGGGCCATTTCCCTCCGTCGTACGAGGCCAAGGCCAGCGTCATCCTCCTGCCGCCGGAGAGCTCGCTCCCGAAGGGGGCGAACCCGCTCCTCCAACTCAGCGGCCTGGAGCAGCCGGCGGCTCTCGTCGTGGCCTACCTCTCCGGCAATGCCTCCCTGGCCCAGCTCGACGAGGCCCACCCTGACGTGACGCGCGAGGTGGTCCTCGATCCTCTCTCCCGCGGTCCCATCGTGATGATCACCGTGGATGCGGACACGCCGGATGCTGCGATGGCAGCGCTCGACACCTCGATGGCACAGGTTCCGGCCGCGCTCGCGGCGATCCAGGACGAGGTCGCCACACCTGGGGACGCTCGTCTCGGATCGGCTCCCCTGGTCGTCGACGAGGAGCCCACGACCTCCTACAGCACGACGCTCCGAGTCGTCGTCGCCGCGGTGGCGGCGGGACTCGCGCTCACCATCGCGGGCACCGTCGCGCTGGACAGCCTCCTCCGCCGCCACCGGGACCGGCGGCGAGCGGCCGAGCTCTCGGTGCAGAGCCCGGCGGACTCCGCGCCCGAGGGCCCGCCGTCCGGGGTGCCGGAGGGTCTGGTCGACTCGGCGGAGGGTTCCCCCGAGCAGCCTCCGTCGTTCGCTCCTCGCGAGACCTTCGTCCGGCACGGCTGAMEFAAILRALLRRWYVVLLGLVATGLAVNFAAGHFPPSYEAKASVILLPPESSLPKGANPLLQLSGLEQPAALVVAYLSGNASLAQLDEAHPDVTREVVLDPLSRGPIVMITVDADTPDAAMAALDTSMAQVPAALAAIQDEVATPGDARLGSAPLVVDEEPTTSYSTTLRVVVAAVAAGLALTIAGTVALDSLLRRHRDRRRAAELSVQSPADSAPEGPPSGVPEGLVDSAEGSPEQPPSFAPRETFVRHGNANANANANA
AK018_01274672hypothetical proteinATGACGGTCTGGGACGTGCTCCGCTCCCTGCTGCGGCGCTGGTACGTGCTGCTCGGCACCCTGCTGGTCGCTGCGGCGGCCTGCCAGGCGGTCCTGAGCGTCCCGCCCACCTACTGGTCGCGTGCCGAGGTGACGTTCTTGGCGCCCAGCAGCGAGCAGTTCCCGAACACCCTGCGGACGAGGTCGAGCGACCTGGTCGTCACGGCGGGCCTGGTCGCGAGGCAGATCAACGGCAACCTCGAGTGGAACAAGATGGCCGACCCGGCGGCGACCATCGTCGGCGAGGGGGTGCTCGACGGCTGGGCGGTCAGGTTGCCGGACCACGGGGGCCAGTGGTCGGTGGTGTACCCCCGTCAGGTCCTGGACGTCCAGGTCAGCGGTGCGGACGAGGCGACCGTGCGCGCTCGACAGCGTGCCCTGGTGGAGCAGATCGACACCGAGCTCGCTGCGCTGCAGCAGGACGTCGTCCCGTCCGACCGCATCACCACGGTGGTCGTCCCCGAAGAGCCCAACGTCTACGAACTCTCGGGGGACAAGCGCCGAGCGCTCCTGATGGCCTGCTTCCTTGCGGGAGCCGGTGGGCTGGCTGCGACAGCGGTCCTCGAGACGGCGAGCCGACGTCGGCGTGCTCGGCGGGCTGCCGCAGGGCTCAGGGAACCCTCAACGGTGTAGMTVWDVLRSLLRRWYVLLGTLLVAAAACQAVLSVPPTYWSRAEVTFLAPSSEQFPNTLRTRSSDLVVTAGLVARQINGNLEWNKMADPAATIVGEGVLDGWAVRLPDHGGQWSVVYPRQVLDVQVSGADEATVRARQRALVEQIDTELAALQQDVVPSDRITTVVVPEEPNVYELSGDKRRALLMACFLAGAGGLAATAVLETASRRRRARRAAAGLREPSTVNANANANANA
AK018_012751185mshA_2D-inositol-3-phosphate glycosyltransferaseATGGGACGACACGCCACAGGCGCCGGTCCGGGCGACCAGGCAGACCTGTGCCTCGTCAGCGCGCCGTACTCGTTCAGTGCACGCGGCCCGGCCGAGACGTGCGTCCGCCTGGCCGCCGGCATGGTCGCAGCGGGCCTCCCGACCCGGATCCATGCGGGCCGTGTCCGGGCGGCTCCTCCGCCGGGCGTCGAGGTGCGCGCGCCGCTGGCAGCGGCCGCGAGGCGCGTCCCGTGGCGCTTCTCCAGCGCCGCGCTGCTCCGGGTGAGCTGGCACCTCCTCGAGCGGGACCTCCGGTCGGCGGACCCGCGTCGGACCATCCTGCACGTCTGGCCGGGGACTCCCCTCTCCGTCGTCGAGCAGGCCCGGGCACGCGGGATCATCACGGTGCGGGAGATGATCAACTCCGCTCTCGCCACCGCCGGACCCCTCCTCGACGCCGCCTACTCCTCCCTGGGGATCCCTCCGTCCCACGTAGCCACACCGGCAGCGATCGCGGACGAGTCCGCCGAGCTCCTCCTCTACGACTACGTGTTCGCCTCCAACCCCAAGGTGGAGCGGTCGCTGCTCGAAGTCGGTGTCGCGCAGGAGCGGATCCTGCCGACGTCGTTCGGCTGGACTCCCGAGCGCCTGGTCGCCTCGGCAGGAACCAGCGCCGGTCGGCCGTTCCGCGCGCTGTTCGTCGGGAGCATCGGCGTCCGCAAGGGAGTCCCCGAGCTCCTCGACGCCTGGAGGCGCGCCGGCACGCCCGGCGAGCTCCTGCTCGCCGGGGGTGTGGACGACGAGATCGCCCCGCTGGTCGAGGAGGCCGTGGCGCGTGGCGGCGTCCGACTGCTCGGCTACCTCGACAACCCCGCAGACGCCTACGCCGATGCCGACGTGTTCGTCTTCCCCACCCACGAGGAGGGCGGGCCCCAGGTCACCTACGAGGCAGCGGGCTGCGGGCTGCCGGTCGTCACGACGCCGATGGGGGCGGCACGCCTCGTCCACGACGGGGAGACCGGCCTGGTGGTGGAGGCCGGGGACGCGGTCGCCCTGGCCGGCGCGCTGTCCCGGCTCGCGGACGACCCGGCCCTGCGGCGACGCATGGGGACGTCCGCACGTGCCGCGGCGGACCAGTTCGACTACCGGAACGTCGGCGCGAGGAGGGCGGAGGCCCTGCTGGGGCTGCTCGACCTACACCGTTGAMGRHATGAGPGDQADLCLVSAPYSFSARGPAETCVRLAAGMVAAGLPTRIHAGRVRAAPPPGVEVRAPLAAAARRVPWRFSSAALLRVSWHLLERDLRSADPRRTILHVWPGTPLSVVEQARARGIITVREMINSALATAGPLLDAAYSSLGIPPSHVATPAAIADESAELLLYDYVFASNPKVERSLLEVGVAQERILPTSFGWTPERLVASAGTSAGRPFRALFVGSIGVRKGVPELLDAWRRAGTPGELLLAGGVDDEIAPLVEEAVARGGVRLLGYLDNPADAYADADVFVFPTHEEGGPQVTYEAAGCGLPVVTTPMGAARLVHDGETGLVVEAGDAVALAGALSRLADDPALRRRMGTSARAAADQFDYRNVGARRAEALLGLLDLHRNANANANANA
AK018_01276591hypothetical proteinGTGCGCACCCGCTGGATCGTCGGTTCCCTCCTCGCGTTGGCGGCGGCCTGCGCTGTCTGGTGGCTCCTCGGTACCAGCCCGGTGGGGGTCGGCCTCGAGCGCTCGACCGCCGAGCTCGTGGCCCCGCTCGACGCCGGTCTCTGGCGGGTCCTCCGGGGCGGGACGAAGTACCTCGTGATGCCGGCCGCCGTCGTCGCCTGCGCGGTCGTCGCTCTCGTCTCCGTGCGCAGGGGGCGGCCGGGCGACGCGATGCGCTGCGTCGTGGTTGTACTGCTGGTCAACCTGCTCGTCCAGGGGTGCAAGCTCGGCCTGCTGCTGCCCGTCGACGCGCCGCCGCAGCTGTCTGGGCACGTCGGAGTGGTCGCGGGTGTCGGTGCCGGGGTGCTCCTCACGGCCGTCGGTCGGAGCGCGACGTGGCGTGTCGTCGTCGCGGCCGCCGTGGTGGGCACCGTCGTGCTGGTCGTGCTCGCTCGGTGGCACTCGATCGCCGAGGCAGTCGTGCCGATCGCGATCGCAGCGGCTGTGTACGCCGGCGCGTGGGCGTTTTCACCCGCAGCAGGAGTGACTGGCAGTACTAACCTGACGGCGTGAMRTRWIVGSLLALAAACAVWWLLGTSPVGVGLERSTAELVAPLDAGLWRVLRGGTKYLVMPAAVVACAVVALVSVRRGRPGDAMRCVVVVLLVNLLVQGCKLGLLLPVDAPPQLSGHVGVVAGVGAGVLLTAVGRSATWRVVVAAAVVGTVVLVVLARWHSIAEAVVPIAIAAAVYAGAWAFSPAAGVTGSTNLTANANANANANA
AK018_01277624wbpDCOG0110UDP-2-acetamido-3-amino-2,3-dideoxy-D-glucuronate N-acetyltransferaseGTGACAGGCAACGGCGGGTCCGGACGGATCGCTGACTCGGCCGACGTGGACGAGCGGGCGACCCTCGGTGAGGACGTCACGGTGTGGCACCTCGCGCAGGTGCGCGAGGGCGCCGTCGTCGGTGACGGGTGCAGCCTGGGCCGTGGCGCCTACGTCGGGCCGGGCGTGCGCCTGGGGCGGCACTGCAAGCTCCAGAACTACGCGCTGGTGTACGAGCCCGCGGTCCTCGAGGACGGCGTCTTCGTCGGCCCGGCCGCCGTGCTCACCAACGACCTCTACCCCCGGGCGGTCAACCCGGACGGGTCGCTCAAGGACGGCGACGACTGGGAGGCCGTCGGCGTCGTGATCCGGGAGGGTGCGGCGGTCGGTGCCCGGGCGGTGTGCGTCGCCCCCGTGACGATCGGTCGCTGGGCGACCGTCGCCGCCGGCGCCGTCGTGACCAAGGACGTGCCGGACTACGCGCTGGTCGGGGGAGTGCCGGCCCGTCGTCTGCGGTGGGTCGGCCAGGCCGGCGTCCCGCTGGAGGACCAGGGCGACGGCCTCTGGACGTGCCCGGCCACGGGTGACCGCTTCCACGAGCACGACGGGTCCCTGCAGCGCGAGGGCGACGGCCCGACGGTCTAGMTGNGGSGRIADSADVDERATLGEDVTVWHLAQVREGAVVGDGCSLGRGAYVGPGVRLGRHCKLQNYALVYEPAVLEDGVFVGPAAVLTNDLYPRAVNPDGSLKDGDDWEAVGVVIREGAAVGARAVCVAPVTIGRWATVAAGAVVTKDVPDYALVGGVPARRLRWVGQAGVPLEDQGDGLWTCPATGDRFHEHDGSLQREGDGPTVPGPT0022705_290DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_D_MANNURONIC_ACID_MODIFICATION,PGPT0022705-wbpD|wlbB-K13018NANA
AK018_012783615mfd_1COG1197Transcription-repair-coupling factorGTGAACCTCACCGGCATCGTCCCCGCCCTCCTCGCCGACCCCGGTGCCGCCGCCGCGCTCGAGGCCGTCCCGAGCGGTGGCGAGGTCGACGTCGTCGGCCCGAGGGGCGTCCGGGCCCCGCTGCTCGCCGCGGCGGCGGAGCAGCGCCCCCTCGTCGTGGTGACGGCGACCGGCCGCGACGCGGACGAGACGGCCGCGGCGCTGCGTGCCTACCTCCCGGACGAGCGGTCCGACGCCGTCGCTGTGCTGCCCGCCTGGGAGACGCTGCCGCACGAGCGGCTCTCGCCCCGTGCCGACACCGTGGCCCGGCGCCTCGCGGTGTTCCGTCGGCTCGCGCACCCGGACGAGACCGGGCCGACCGGTCCGGTCGACGTGCTGGTGATGCCGGTCCGTGCGCTGCTGCAGCCCGTCGTGGAGGGCCTCGGAGAGCTGGTCCCGGTCGAGCTGTCCACCGGCCAGGAGGCGGACCTCACCGCGGTCGGCGACGCCCTGGTCGCCGCCGCGTACACGCGGGTGGACATGGTCGAGCGCCGCGGCGAGTTCGCCGTGCGCGGCGGCATCCTCGACGTCTTCCCGCCGACGGAGGACCACCCGCTGCGCATCGAGTTCTGGGGCGACGAGATCAGCGAGATCCGGTGGTTCGCCGTGGCCGACCAGCGCTCGCTGGAGATCGCCGAGCACGGGCTCTGGGCGCCGCCCTGCCGGGAGATCCTGCTCACCGACGCCGTGCGGGAGCGCGCGGCCGGGCTCGTCGAGCAGCTCCCCGGTGCCACGGACATGCTGGACAAGCTCGCCGCCGGCGTGGCCGTCGAGGGTATGGAGTCCCTCGCCCCGGTGCTCGTCGACCGGATGGTGCCGGTGCTGGACCTGGTCCGTGACGACGCGCTGCTGGTCCTCGACGAGCCCGAGCGGGTCCGGCGTCGTGCCCACGACCTGGTGGCCACGACCGAGGAGTTCCTCGCCGCGGCGTGGACGGGGGCCGTGGCGGGTGCCGACGCCCCGATCGACCTGTCCGCCGCGTCGTTCGCCACCTTCGCCGAGACCCGCGAGGTCGCCGCACGGCGCGGGCTCGGCTGGTGGACGCTCTCGGCGTTCTCCCTCGATGCGGCCGAGGCGTCCGACGACGAGGTCCCGGCGGTCACCACGGACGACGGCGGCACGACGGTGACGATCGCGGCCCGCGACGTCGAGTCCTACCGCGGCGACGTCGCCCGGGCGCTCGACGACGTCCAGGGCCTGCAGAAGGCCGGGTGGCGCCTCGTGCTCACCACCGAGGGCCCCGGCCCGGCCAAGCGCATGGTCGAGCAGCTCGGCGCCGCCGACACCGCGGCCCGGCTGTCCACGGACCTGGCCACCGAGCCCGAGGGCGGCGTGGTGCACGTCGTCCCGGCGCTGGTCGGGAAGGGCTTCGTGGTCCCCGAGCTGCGGCTCGCGGTGTTCAGCGAGGCCGACCTCACCGGTCGGCAGGGTTCCTCGACCCGCGACATGCGCAAGATGCCCTCGCGTCGGCGGAACGTCGTCGACCCCCTGCAGCTGCAGGCCGGCGACTTCGTCGTCCACGAGCAGCACGGTGTCGGGCGGTTCGTCGAGATGGTGCAGCGCACGCTCGGCGCCGGGGCGAACCGGGCCACCCGCGAGTACCTGGTCATCGAGTACGCCTCGTCCAAGCGCGGGCACCCCGGTGACCGGCTGTTCGTGCCGATGGACCAGCTCGACCAGGTCACGAAGTACACCGGCGGCGAGTCACCGAGCCTGAACAAGATGGGCGGTGCCGACTGGAAGAACACCAAGGCGCGCGCCCGCAAGCACGTCCGCGAGATCGCGAGCGAGCTCATCCGGCTGTACTCGGCGCGCCAGGCCACCGCGGGGCACGCCTTCGGCCCGGACACGCCGTGGCAGCGCGAGCTGGAGGACGCCTTCGCCTACGTCGAGACGCCGGACCAGCTCGTCACGATCGACGAGGTCAAGGCCGACATGGAGAAGACCGTCCCCATGGACCGGCTGATCTGCGGCGACGTCGGCTACGGCAAGACCGAGATCGCGATCCGCGCGGCGTTCAAGGCGGTGCAGGACGGCAAGCAGGTCGCCGTGCTGGTGCCCACGACGCTGCTCGTCCAGCAGCACTTCGACACCTTCTCCGAGCGGTACGCAGGCTTCCCGGTGAACGTGCGGGCGCTGTCGCGGTTCCAGAGCACCAAGGAGTCCGAGGAGACGGTCCAGGGGCTCAAGGACGGGTCCGTCGACATCGTCATCGGCACCCACCGGCTCCTTACCGGCTCGGTCACCTTCAAGAGCCTGGGCCTGGTGATCGTCGACGAGGAGCAGCGGTTCGGCGTCGAGCACAAGGAGACGCTCAAGCAGCTGCGCACCAACGTCGACGTGCTGGCGATGTCGGCGACACCGATCCCGCGCACCCTCGAGATGGCCGTCACGGGGATCCGGGAGATGTCCACGCTCGCCACACCCCCGGAGGAGCGCCACCCGGTGCTCACCTACGTCGGGGCGTACGAGGAGCGGCAGATCGCCGCCGCCGTGCGCCGCGAGCTCCTGCGCGAGGGCCAGGTCTTCTACATCCACAACAAGGTCGAGTCGATCGATCGCACCGCGGCCAAGATCCGTGAGCTCGTGCCGGAGGCCCGCGTCGGCGTCGCGCACGGCAAGATGAGCGAGAACCAGCTCGACCAGATCATCCGCGCGTTCTGGGAGCGGGAGGTCGACGTGCTCGTGTGCACGACGATCGTCGAGACCGGCCTGGACATCTCCAACGCCAACACCCTGGTCCTGGAGCGTGCCGACACCTTCGGGCTCTCCCAGCTCCACCAGCTGCGCGGCCGCGTGGGCCGCGGTCGCGAGCGCGCCTACGCCTACTTCCTGTACCCGCCGGAGCGGCCCCTGACCGAGACGGCGCACGACCGGCTCGCGACCATGGCGGCCCACACCGACCTCGGTGCCGGCATGCAGATCGCGATGAAGGACCTGGAGATCCGCGGGGCCGGCAACCTGCTCGGCGGCGAGCAGTCCGGGCACATCGCCGGCGTCGGGTTCGACCTGTACGTGCGCATGGTCGGCGAGGCCGTGCGGGCCTTCAAGGGCGAGGGGGACGCCGAGGAGCCGGAGATCACGATCGAGCTGCCGGTGGACGCCCACCTGCCGGAGACGTACATCGCCACCGAGCGCCTGCGGCTCGAGGCGTACAAGAAGATCGCCGCCGCCCAGGACTCCGCGGCGCTGGCCGAGGTGCGGGCCGAGCTGACGGACCGGTACGGGGCGCTGCCCGAGCCGACCGAGTCGCTGTTCTGGGTGGCCGAGTTCCGCAACCACGCCCGTCGCGCCGGGCTCACGGACGTCACCGCCCAGGGCAAGTACATCCGTTTCGCGCCGCTGGACCTCGCCGAGTCGGCCCAGATGAGGCTCAAGCGGCTCTACCCGGGCACCGTCCTCAAGCCCGGCATCCGCGCCGCACTGGTGCCCTTCCCGACGACGGCGCGCATCGGCGGCAAGCCGCTGCGCGGTGCGGCGCTGCTGGACTGGGCCCGCCAGCTGATCGACGCCGTCGTGCTCGGGGAGGTGTCGGCCGCCGCGGCGGCCGGGACGGGCGCCCGCTCCGCGAGGTAGMNLTGIVPALLADPGAAAALEAVPSGGEVDVVGPRGVRAPLLAAAAEQRPLVVVTATGRDADETAAALRAYLPDERSDAVAVLPAWETLPHERLSPRADTVARRLAVFRRLAHPDETGPTGPVDVLVMPVRALLQPVVEGLGELVPVELSTGQEADLTAVGDALVAAAYTRVDMVERRGEFAVRGGILDVFPPTEDHPLRIEFWGDEISEIRWFAVADQRSLEIAEHGLWAPPCREILLTDAVRERAAGLVEQLPGATDMLDKLAAGVAVEGMESLAPVLVDRMVPVLDLVRDDALLVLDEPERVRRRAHDLVATTEEFLAAAWTGAVAGADAPIDLSAASFATFAETREVAARRGLGWWTLSAFSLDAAEASDDEVPAVTTDDGGTTVTIAARDVESYRGDVARALDDVQGLQKAGWRLVLTTEGPGPAKRMVEQLGAADTAARLSTDLATEPEGGVVHVVPALVGKGFVVPELRLAVFSEADLTGRQGSSTRDMRKMPSRRRNVVDPLQLQAGDFVVHEQHGVGRFVEMVQRTLGAGANRATREYLVIEYASSKRGHPGDRLFVPMDQLDQVTKYTGGESPSLNKMGGADWKNTKARARKHVREIASELIRLYSARQATAGHAFGPDTPWQRELEDAFAYVETPDQLVTIDEVKADMEKTVPMDRLICGDVGYGKTEIAIRAAFKAVQDGKQVAVLVPTTLLVQQHFDTFSERYAGFPVNVRALSRFQSTKESEETVQGLKDGSVDIVIGTHRLLTGSVTFKSLGLVIVDEEQRFGVEHKETLKQLRTNVDVLAMSATPIPRTLEMAVTGIREMSTLATPPEERHPVLTYVGAYEERQIAAAVRRELLREGQVFYIHNKVESIDRTAAKIRELVPEARVGVAHGKMSENQLDQIIRAFWEREVDVLVCTTIVETGLDISNANTLVLERADTFGLSQLHQLRGRVGRGRERAYAYFLYPPERPLTETAHDRLATMAAHTDLGAGMQIAMKDLEIRGAGNLLGGEQSGHIAGVGFDLYVRMVGEAVRAFKGEGDAEEPEITIELPVDAHLPETYIATERLRLEAYKKIAAAQDSAALAEVRAELTDRYGALPEPTESLFWVAEFRNHARRAGLTDVTAQGKYIRFAPLDLAESAQMRLKRLYPGTVLKPGIRAALVPFPTTARIGGKPLRGAALLDWARQLIDAVVLGEVSAAAAAGTGARSARNANANANANA
AK018_01279921yqfL_1COG1806Putative pyruvate, phosphate dikinase regulatory proteinATGGTCGCGTCGGAGCGGGTCGTCATCCACGTCGTCGCGGACTCCACCGGTGACACCGGTGCCCGCGTCGGTCGTGCCGTGCAGGCGCAGTACCCCGACCTCGACGTCGTGGTGGTGCGCCATCCCCGCCTGCACAGCCAGGAGGGGCTCGACGACGTCGTCGAGCAGCTGCGCGCGGACCCGGACCCTGCCGTCGTCTTCTGCACCGTGGTGGACGAGGTGCTGCACGGGCAGGTGATCGACCGGTGCGCCGAGCTCGAGATCCCGTGCGCCGACCTGCTCACCCCGGCGCTGGACGCCGTCACCGCGCGCACGGCCGCTGAGCCGGCGCGCCTGGTGCAGCCCGTCGGGCTCGCGGCGGACTACTTCGAGCGCATCCACGCGATGGAGTTCGCGATCGCCAACGACGACGGCCACGCCACGCCCGAGGGCCTCGCCGAGGCGCAGATCGTGCTGGTCGGGGCCTCGCGCACCGGCAAGACGCCGCTGTCGATGTACCTCGGCTACCTCGGGTACCGCACCGCGAACATCCCGCTGGTCGCCGGTGTCCCGCCGCCTCCGGAGCTGTTCCGGATCGACTCCTGGAAGGTCGTGGGGCTGACGATCGACCCCGAGCGGCTGGTGACCATCCGTCGTCGGCGGGTGGACCTGATGGGAGCGGGCCGGCAGGACGCCGGGCGCCTGGGCGGGTACGCCGACCTGGCCCGCATCGTCGACGAGCTCGACGACATCACCCAGGTCCAGCGCCGGCTCGGCTGCCCGGTGCTCGACACCACCACGCTGGCCCTCGAGGAGGCGGCCGGACGAATCATCGACCTCGTGACAGCACGGCGCCGCGCCCGTACAGTCCTGTCCGAGCACGTCGACGGGCGGAGCGACCCCCTTCCGCCCGGAGCCGAGACGGAGGCGAGGGAGCCATGAMVASERVVIHVVADSTGDTGARVGRAVQAQYPDLDVVVVRHPRLHSQEGLDDVVEQLRADPDPAVVFCTVVDEVLHGQVIDRCAELEIPCADLLTPALDAVTARTAAEPARLVQPVGLAADYFERIHAMEFAIANDDGHATPEGLAEAQIVLVGASRTGKTPLSMYLGYLGYRTANIPLVAGVPPPPELFRIDSWKVVGLTIDPERLVTIRRRRVDLMGAGRQDAGRLGGYADLARIVDELDDITQVQRRLGCPVLDTTTLALEEAAGRIIDLVTARRRARTVLSEHVDGRSDPLPPGAETEAREPNANANANANA
AK018_012802685ppdK_1COG0574Pyruvate, phosphate dikinaseATGACCGCACAGGTACGCACCGACGAGCGATCCACGACGCACGAGGACCACCGTCTCGTGTACGAGCTGTCCGAAGGCACCGCGGCGATGAGACCGCTGCTCGGCGGCAAGGGCGCCGGGGTGGCCGAGATGATCCGCATCGGTGTCCCGGTGCCCGACGGTTTCACCGTCACCACCGAGGCCTGCGTCGCCACGATGGAGGCCGGCGGCACCTGGCCCGAGCGGCTGTGGGACGAGATCCTCGCCCACCTGGACGCGCTGGAGCAGCGCACCGGCCGGCGTCTGGGGGCCGCGGAGCGCCCGCTGCTGGTCTCGGTCCGCTCGGGCGCGGTGATGTCGATGCCCGGCATGATGGACACGATCCTCAACCTCGGGATCTCCGACGAGTCCGTCGTCGGGCTGGCCGAGGAGTCCGGCAACCCGCGGTTCGCCTGGGACTGCTACCGGCGCTTCCTGCAGATGTACGGCGAGGTCGTCGAGGGGGTGCCGGGCCACGCCTTCGAGGACGAGATCTCGGCGCTCAAGACGCGCCGCGGGATCGAGCTGGACACCGACCTGACGGTCTCCGACCTCCAGGAGCTCGTCGAGACCTTCCGCACCGTCGCGCTGCGGCACACCGGGCAGGGCCTGTCCACGGACCCGCGCGAGCAGCTGCGCCGGTCCGTGCAGGCCGTGTTCTCCTCCTGGGACACGCCGCGGGCGCGGGTCTACCGCCGGGCGCACGACATCTCCGACGACCTCGGCACCGCGGTCAACGTCATGCAGATGGTGTTCGGCAACCGCGGGGACGGCTCGGCCACGGGGGTGTGCTTCACCCGCAACCCCTCTACCGGGGCCAAGGAGCTCTACGGGGAGTTCCTCGTGAACGCCCAGGGCGAGGACGTCGTCGCCGGCATCCGCACGCCCCTGCCGCTGGCGGAGATGGAGCACGTGCTCCCGGACGCCTACCGCGAGCTGCTCGACACGATGCACCGGCTCGAGCAGCACTACGGCGACATGCAGGACATCGAGTTCACCGTCGACGACGGCACGCTGTACCTGCTGCAGACCCGCACCGGCAAGCGCACCGCCGCGGCGGCGCTGAAGGTCGCCCGGGACCTCGTCGCCGAGGACGTCATCGACACCGCGACCGCGCTGCGCCGCATCGAGCCCCCCCAGCTCGACCAGCTCCTGCACCCCGGGCTCGACCCCGAGCACGGGCAGGAGCCGCTCACCCGAGGGCTCAACGCGTCGCCCGGCGCCGGCGTCGGCGCCGTCGTGTTCGACGCCGACACCGCGGCCGAGCGGGGCGAGGCCGGCGAGTCCGTGGTGCTCGTCCGCTGGGAGACGACGCCGGACGACATCCACGGGGTCATCGCGGCCCAGGGGGTGCTCACGGCGCACGGCGGCATGACGTCGCACGCCGCCGTCGTCGCACGCGGCATGGGCAAACCGTGCGTCGCGGGGGCGGGCGACCTGCAGATCGACGTCGAGGCCCGCACCTTGACCGTCGGGGACACCGTGCTCGCCGAGGGGGACACCGTCACCATCGACGGCACCACGGGCGAGGTGTACGCCGGGGCGCTGACGCTCGTGCCCCCGCAGATCACCGACGACTTCAGCGCCGTGCTCGCCTGGGCCGACGACGCGCGCCGGCTCGGCGTGCGGGCGAACGCCGACACCGGCCCGGACGCCGCCAAGGCCCGGGAGCTGGGTGCCGAGGGGATCGGGCTGTGCCGCACCGAGCACATGTTCATGGCGGCCGAGCGGCTGCCCGTCGTGCAGTCGATGATCCTCGCCGAGACGCCGGAGGACCGTGGCCAGGCGCTGGAGCGGCTGCTGCCGATGCAGCAGGCCGACTTCGAGGAGATCTTCACCGCGATGAGCGGGCTGCCGGTCACGATCCGGCTCATCGACCCGCCGCTGCACGAGTTCCTGCCCGACCTCGTCGAGCAGTCCGTGCACGTCCAGCGGTTGGAGGACGCCGGCACCACCGGCCCCGAGCTCGACGACGCCCGCGAGCTGCTGGCGCACGTCAAGCGGCTCAGCGAGATGAACCCCATGCTGGGCACCCGGGGCGTGCGTCTCGCGCTGCTGTACCCGGAGATCGCCCGGATGCAGGTGCGCGCCGTCGCCCGGGCGGCGCTCGCGGTCCGCGAGCGCGGACTGGACCCGCACGTCGAGATCATGGTGCCGCTGGTCGGGTTCGACGAGGAGCTGCGGCGCATGCGCGAGGTCGTCGAGACGACCTGGGCCGAGGAGGTCCCGGACGGCGGCGTGCCGCACACCGTCGGCACGATGATCGAGCTGCCGCGGGCGGCGCTGGTCGCCGACGCGATCGCCGAGCACGCCGACTTCTTCTCGTTCGGCACCAACGACCTGACCCAGACGACGGTCGGCATCTCGCGCGACGACGCCGAGGGCGCGTTCCTGGGTGCCTACGTCGACGCCGGGATCCTGGCCGCCAACCCGTTCGCGAGCATCGACGCCGACGGCGTCGGGGAGCTGGTCCGGATCGGGGTGCGCAAGGGGCGGTCGACGGAGCCCGGGCTGAAGACGGGCGTGTGCGGCGAGCACGGGGGAGACCCGGCGTCGATCGCGCTGTTCGACGAGATCGGGCTGGACTACGTCTCCTGCTCGCCGTACCGCGTGCCGATCGCGAGGCTCGCCGCCGCGCAGGTCGCCCTCGACCACCCCGCGAGGTAGMTAQVRTDERSTTHEDHRLVYELSEGTAAMRPLLGGKGAGVAEMIRIGVPVPDGFTVTTEACVATMEAGGTWPERLWDEILAHLDALEQRTGRRLGAAERPLLVSVRSGAVMSMPGMMDTILNLGISDESVVGLAEESGNPRFAWDCYRRFLQMYGEVVEGVPGHAFEDEISALKTRRGIELDTDLTVSDLQELVETFRTVALRHTGQGLSTDPREQLRRSVQAVFSSWDTPRARVYRRAHDISDDLGTAVNVMQMVFGNRGDGSATGVCFTRNPSTGAKELYGEFLVNAQGEDVVAGIRTPLPLAEMEHVLPDAYRELLDTMHRLEQHYGDMQDIEFTVDDGTLYLLQTRTGKRTAAAALKVARDLVAEDVIDTATALRRIEPPQLDQLLHPGLDPEHGQEPLTRGLNASPGAGVGAVVFDADTAAERGEAGESVVLVRWETTPDDIHGVIAAQGVLTAHGGMTSHAAVVARGMGKPCVAGAGDLQIDVEARTLTVGDTVLAEGDTVTIDGTTGEVYAGALTLVPPQITDDFSAVLAWADDARRLGVRANADTGPDAAKARELGAEGIGLCRTEHMFMAAERLPVVQSMILAETPEDRGQALERLLPMQQADFEEIFTAMSGLPVTIRLIDPPLHEFLPDLVEQSVHVQRLEDAGTTGPELDDARELLAHVKRLSEMNPMLGTRGVRLALLYPEIARMQVRAVARAALAVRERGLDPHVEIMVPLVGFDEELRRMREVVETTWAEEVPDGGVPHTVGTMIELPRAALVADAIAEHADFFSFGTNDLTQTTVGISRDDAEGAFLGAYVDAGILAANPFASIDADGVGELVRIGVRKGRSTEPGLKTGVCGEHGGDPASIALFDEIGLDYVSCSPYRVPIARLAAAQVALDHPARPGPT0002040_793DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002040-ppdK-K01006NANA
AK018_01281747hypothetical proteinATGTGGTCAGTCCACAGCGGGGTCGGCCGCACTATCGTGGGGACGGTGGACGGCTTCTGGGACTTCGTCGGCTCCTACTGGTGGCTGGTGTTCCCGCTCAGCGGCATCGTCGGCGGCTGGGCCGGCGGCGTCCGCCGCTGGGACGAGCGACGCCGCCGGGACAAGATCGAGATGTACCGCCTCCGGTACGGCGCCGAGAAGACCGCTGCGGAGTCCGAGGAGGCCCTGACCGGCGAGATCGAGCGCACCCTGGCCGCGCACACCGAGACCGAGCGGCGCTGGCTCGACTACGAGCTCGACGCGGTCAAGGTCCTCGAGTTCCCCGTCATGACCGACATGCGCGAGCAGGTGACGACCGACTTCCACCGCGCGCGCCGGGACGCCGAGCACCTGCGTCCGGACGACCCCGCCGAGCTGCGCGACCGCCGCCTGCTCGACCGGTACCGGGAGGCGGTGCGCGAGTACCAGCTCACCTTCGACGTCGCCGAGCGCGAGGCGAAGCGCCGACGCGCCTCGGACCTCTCGGCCGAGGAGCGTCGCGCCGTGGACCGGGCGAAGAAGCTGCTCGCGATCGCCGACGACGCCGGGGCCACGACGTCGGAACGGCAGTCCGCGTACCGCCGGGCCATGAAGGAGCTCGAGGGCATCCTCGTCCTGCCCGACGCCGCCACCGCGGCGATCGAGCAGCGCATCGCGGGCGAGCTGGGGACCGGGCACCGCCCCGACCGCGAGCGCCCCTCCGGCTGAMWSVHSGVGRTIVGTVDGFWDFVGSYWWLVFPLSGIVGGWAGGVRRWDERRRRDKIEMYRLRYGAEKTAAESEEALTGEIERTLAAHTETERRWLDYELDAVKVLEFPVMTDMREQVTTDFHRARRDAEHLRPDDPAELRDRRLLDRYREAVREYQLTFDVAEREAKRRRASDLSAEERRAVDRAKKLLAIADDAGATTSERQSAYRRAMKELEGILVLPDAATAAIEQRIAGELGTGHRPDRERPSGNANANANANA
AK018_012821281eno_1COG0148EnolaseGTGGCAAGCATCGAAGCCGTTGGCGCACGCGAGATCCTGGATTCCCGCGGCAACCCCACCGTGGAGGTCGAGATCGCCCTCGACGACGGCACGTTCGCCCGTGCCGCCGTCCCGTCGGGCGCCTCCACGGGTGCCTTCGAGGCCGTCGAGCGCCGTGACGGCGACAAGGGCCGCTACCTGGGCAAGGGTGTCGAGGGTGCGGTCAACGCCGTCATCGACGACATCGCGCCCGAGCTCGTCGGCTACGACGCCGAGGAGCAGCGCCTCATCGACCAGACCCTCATCGAGCTCGACGGCACCCCCAACAAGGGCAAGCTCGGCGCGAACGCCATCCTCGGCGTCTCGCTGGCCGTGGCCAAGGCGGCCGCCAAGAGCGCCGGCCTGGACCTGTTCCGCTACGTGGGCGGCCCGAACGCGCACGTCCTGCCCGTGCCGATGATGAACATCCTCAACGGCGGGTCCCACGCGGACTCCAACGTGGACATCCAGGAGTTCATGATCGCCCCGATCGGCGCGTCCTCCTTCAAGGAGGCGCTGCGCACGGGTGCCGAGGTCTACCACGCGCTCAAGAGCGTGCTGAAGGCCGAGGGCCTGGCCACCGGCCTGGGCGACGAGGGCGGCTTCGCGCCGAACCTGTCGAGCAACCGTGCCGCGCTGGACCTCATCATCACGGCCATCGAGAAGGCCGGCTACACGCCCGGCGAGGACGTGGCGCTCGCGCTCGACGTCGCCGCGACGGAGTTCTTCTCCGACGGCTCCTACCAGTGGGAGGGCGGCGCCAAGACGCCCGAGGAGATGATCTCCTTCTACGCCGAGCTCGTGCGCGACTACCCGCTGGTCTCCATCGAGGACCCGCTGTCCGAGGACGAGTGGGACTCCTGGTCGGCCCTCGTGGAGCAGGTCGGCGACAAGGTGCAGATCGTCGGCGACGACCTGTTCGTCACCAACCCGGAGCGCCTGACCAAGGGCATCGAGACCAAGGCGGCCAACTCGCTGCTGGTCAAGCTGAACCAGATCGGTTCGCTCACCGAGACCCTCGACGCCGTCACCCTGGCCCAGCGCAACGGCTTCACCACGATGACCTCGCACCGCTCCGGCGAGACCGAGGACACCACCATCGCGGACCTGTCCGTGGCCACCAACGCCGGCCAGATCAAGACCGGCGCCCCGGCCCGCGGCGAGCGCATCAACAAGTACAACCAGCTCCTGCGCATCGAGGAGGTGCTGGACGACGCGGGCCGCTACGCCGGTCGCAGCGCCTTCCCGCGCTTCCAGGGCTGAMASIEAVGAREILDSRGNPTVEVEIALDDGTFARAAVPSGASTGAFEAVERRDGDKGRYLGKGVEGAVNAVIDDIAPELVGYDAEEQRLIDQTLIELDGTPNKGKLGANAILGVSLAVAKAAAKSAGLDLFRYVGGPNAHVLPVPMMNILNGGSHADSNVDIQEFMIAPIGASSFKEALRTGAEVYHALKSVLKAEGLATGLGDEGGFAPNLSSNRAALDLIITAIEKAGYTPGEDVALALDVAATEFFSDGSYQWEGGAKTPEEMISFYAELVRDYPLVSIEDPLSEDEWDSWSALVEQVGDKVQIVGDDLFVTNPERLTKGIETKAANSLLVKLNQIGSLTETLDAVTLAQRNGFTTMTSHRSGETEDTTIADLSVATNAGQIKTGAPARGERINKYNQLLRIEEVLDDAGRYAGRSAFPRFQGPGPT0018050_5502DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018050-eno-K01689NANA
AK018_01283450hypothetical proteinGTGCTCACCGTCCGGCTCATGGTGCTGGCGGTCGTGGTCCTGCTCGCCTTCGTCCTGCTGCTGCCGACGGTGCGTGGAGCGGTGCAGCAGCAGGCGGAGATCGACCGGTTGCAGGCCGAGCTGACGGCGAACCAGGCCGACCGGGACCGGCTGGAGAACGAGCTGGCCCGCTGGGACGACCGCACCTACGTCGTCCAGCAGGCCCGCAGCCGGCTGAACTACGTGCTGCCCGGCGACACCGCCTGGCGGGTGGTGGACGCCGACGAGATCGAGGCCGACGGCGAACCCGCGGCGGGCGAGGAGCCGACGCCGGAGGTCGGGCCCGCCACGACCGGTGCACCCTGGTACCAGTCGATGTGGGAGTCGCTGCAGTCCACGGACCACGCGACCGTCGGTCCCGGAGGTGACCCGGACGACGTCGAGACCTCGGCGCCGGACGGGGGACAATGAMLTVRLMVLAVVVLLAFVLLLPTVRGAVQQQAEIDRLQAELTANQADRDRLENELARWDDRTYVVQQARSRLNYVLPGDTAWRVVDADEIEADGEPAAGEEPTPEVGPATTGAPWYQSMWESLQSTDHATVGPGGDPDDVETSAPDGGQNANANANANA
AK018_01284543hypothetical proteinGTGAGCTCCGAACCCTCGATCCCGTCCGCCGACGCGACCTCGTCCGGCGACGACCCCACGGTCGCGACCGCCCACGACCTCGAGGTGATGGCCGAACAGCTGGGCCGCACCCCGCGCGGCGTCGTCGGTGTCGCCGCGCGCTGCGTGTGCGGGCGCCCCCTGGTGGCGCGCACCGCTCCGCGGTTGCCGGACGGCACCCCGTTCCCCACGACGTACTACCTGACCCACCCGGGTGCGGTGGCCGCCGCGTCGCGCCTCGAGGCCGACGGCGTGATGAAGGAGATGACCGACCGCCTGGCCGAGGACCCCGAGCTGGCCGCCGCCTACCGTGCCGCGCACGAGCACTACCTCGCGCGGCGGGCCGAGCTGGGCCGGGTCGAGGAGATCGAGGGCATCTCGGCCGGCGGCATGCCGACCCGCGTGAAGTGCCTGCACGTGCTGTTCGCGCACAGCCTCGCCGCCGGTCCCGGGGTGAACCCGCTGGGTGACGAGGCCCTGGCCATGGTCCGCGACCAGTGGCGCCCGGACCGGTGCTCGTGCTGAMSSEPSIPSADATSSGDDPTVATAHDLEVMAEQLGRTPRGVVGVAARCVCGRPLVARTAPRLPDGTPFPTTYYLTHPGAVAAASRLEADGVMKEMTDRLAEDPELAAAYRAAHEHYLARRAELGRVEEIEGISAGGMPTRVKCLHVLFAHSLAAGPGVNPLGDEALAMVRDQWRPDRCSCPGPT0002595_2705DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
AK018_01285951ppx2_1COG0248Exopolyphosphatase 2ATGAGCAGCACCCGTGTGGCCGCCGTGGACTGCGGCACGAACTCCATCCGCCTCCTCGTGGCCGACGTGGCCGCCGACGGCACCCTGACCGAGCTCGACCGGCGCATGCAGATCGTGCGGCTGGGCCAGGGCGTCGACCGCACCGGCGAGCTCGCGCCCGAGGCGCTGGAACGCACCCTGGCGGCGTCGCGCGAGTACGCGAAGGTCGCCGCGGAGCTGGGGGCGACGCGCACCCGGTTCGTGGCGACGTCGGCCACCCGCGACGCCCGCAACCGCGACGAGTTCGCCGCGGGCGTCCAGGCGGCCCTGGGGGTGGAGCCCGAGGTCGTCACCGGCGACGAGGAGGCCGAGCTGTCCTTCCGCGGGGCGACCAGCGGCGAGGCCGCGACGCACCCCGGCCCGTACCTGGTGGTGGACCTCGGCGGCGGATCCACCGAGCTCGTCCTGGGCACGACGACGCCGGACGCGGCCGTGTCGATGGACGTCGGCTCCGTGCGCCTCACCGAGCGCCACCTGGACGGCGACCCGCCGACCGCGACCGAGATCGCCGCGGCCCGGGCGGACGTCGACGCCGCGCTCGACGCGGCTTCCGCCGTCGTGCCCCTGGCCCGCACCGCCACGCTGGTGGGCCTCGCCGGGTCCGTCACGTCGGTGACCGCGCACGCGCTGGAGCTGCCCGGCTACCGGCGCGAGGCGATCAACGGCACCGTGCTCGAGGTCCCGCGCGTGCTGTCCGCCTGCGAGGACCTGCTGGGCCGGACCCGTGACGAGCGCCTGGCGCTCGGGTTCATGCACCCGGGACGCGCCGACGTCATCGGCGCCGGTGCGCTGATCTGGTCGCAGATCGTGGCGCGGGTGCGCGACGAGGTGGCGGCCGCCGGCGGCGAGCTCACCGAGGTCGTCACCAGCGAGAGCGACATCCTGGACGGCATCGCGCTGTCGCTCGCCTGAMSSTRVAAVDCGTNSIRLLVADVAADGTLTELDRRMQIVRLGQGVDRTGELAPEALERTLAASREYAKVAAELGATRTRFVATSATRDARNRDEFAAGVQAALGVEPEVVTGDEEAELSFRGATSGEAATHPGPYLVVDLGGGSTELVLGTTTPDAAVSMDVGSVRLTERHLDGDPPTATEIAAARADVDAALDAASAVVPLARTATLVGLAGSVTSVTAHALELPGYRREAINGTVLEVPRVLSACEDLLGRTRDERLALGFMHPGRADVIGAGALIWSQIVARVRDEVAAAGGELTEVVTSESDILDGIALSLAPGPT0002595_4615DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
AK018_012861467ndhCOG1252NADH dehydrogenaseATGCCTCAGAACGTTCTGTCGACGGACAACCCTGCCCAGGATGCGCCCGCGCCCGCCGCACGCCCCCGCAAGGTGCCGCGCATCGTCGTGCTCGGCGGTGGCTCCGTCGGGCTGTACGTGGCGCGCCGGCTGCGCAAGAAGCTCGGCAAGCGCGAGGCGGCGATCGTCGTCGTCGACCCGCGTCCCTACATGACGTACGCGCCGTTCCTGCCGGAGGCCGGTGCCGGCTCGATCGACGCGCGCGACGTGGTCGCCCCGCACCGCATCGCCCTCCAGGGCATCGACGTGCTCCAGGGCAAGGTCGTGAAGATCGCCCACGGCGACAAGAAGGTGACGATCTCGCCGGAGGAGGGCCTGGACTACGAGGTCTCCTACGACCACCTGGTCGTCGGCCTGGGCTCGGTCTCGCGCACGCTGCCCATCCCCGGGCTCGCCGAGAACGCCATCGGCTTCAAGAACGTCGAGGAAGCCATCGCGGTCCGCAACCACGTGCTCAACCGCATGGACGTCGCCTCCTCCACCTGGGACGCCGACCTGCGCAAGCGGATGCTGACCTTCACGTTCGTCGGCGGCGGCTTCGCCGGGATCGAGGCGCTCGCCGAGATCGAGGACATGGCGCGCTACGCGACCCGCAACTACCCGACGATCGAGGAGTCGGACCTGCGGTTCGTCATGATCGAGGGTGCCGGTCGGATCCTGCCGGAGGTCTCCGAGCCCATGGGCGAGTGGGCGCTCGAGGAGATGAAGAAGCGCGGCATCGAGTTCCACCTCAACACGTTCCTGTCCTCCTGCGAGGACCACCACGTCGTGACGTCGACCGGTGTCGAGTTCGACTCCGAGACGATCGTGTGGACCGCCGGGGTCAAGCCGAACCCGGTCATCAAGGACGACTCCGACCTGCCCACGGACCGCATGGGCCGCGTCACCGTGCTCCCGACGCTGCAGGTCGCCGCGACGACCGACGACGGCACCGAGGGCGAGGTCGTCCCGGACGCCTGGGCCGCCGGTGACTGCGCCGCGGTGCCGGACCTGCTCAACCCCGGGTCGTTCTGCCCCCCGAACGCGCAGCACGCGATCCGCGAGGCCACCCAGCTGGCCGACAACATCATCGCCTCGCTCAAGGGCGAGCCGCTGGTGGAGTACAAGCACAAGAGCGTCGGCGTGGTCGCCTCCCTCGGCCTCTACAAGGGCGTGGCGGAGCTGTTCGGCTTCCTCAAGCTCAAGGGCCCCCTCGCGTGGCTCGCCCACCGCAGCTACCACGTCATGGCGATGCCCACCGGCAACCGGAAGTTCCGCATCCTCATCGGCTGGATGGGCCAGTTCCTCATGGGCCGCGAGATCGTCTCGCTCGGTTCGCTGCACGACCCCCGCGACGAGTTCCGCAAGGCCTCGGTCCCCCCGAAGCCGCAGGGCGACAAGGTCGAGCAGAAGGCCGAGGCCTCCGCGGAGAAGGCCACGCACGGCTGAMPQNVLSTDNPAQDAPAPAARPRKVPRIVVLGGGSVGLYVARRLRKKLGKREAAIVVVDPRPYMTYAPFLPEAGAGSIDARDVVAPHRIALQGIDVLQGKVVKIAHGDKKVTISPEEGLDYEVSYDHLVVGLGSVSRTLPIPGLAENAIGFKNVEEAIAVRNHVLNRMDVASSTWDADLRKRMLTFTFVGGGFAGIEALAEIEDMARYATRNYPTIEESDLRFVMIEGAGRILPEVSEPMGEWALEEMKKRGIEFHLNTFLSSCEDHHVVTSTGVEFDSETIVWTAGVKPNPVIKDDSDLPTDRMGRVTVLPTLQVAATTDDGTEGEVVPDAWAAGDCAAVPDLLNPGSFCPPNAQHAIREATQLADNIIASLKGEPLVEYKHKSVGVVASLGLYKGVAELFGFLKLKGPLAWLAHRSYHVMAMPTGNRKFRILIGWMGQFLMGREIVSLGSLHDPRDEFRKASVPPKPQGDKVEQKAEASAEKATHGPGPT0004020_535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885NANA
AK018_01288915hypothetical proteinATGGACGTCCGGCACCTCGACCTGCTGCGCGAGCTGGCGGACCGCGGCAGCATCTCCGCCGTCGCCGCGGCCACCCACCGCACTCCGTCGGCGGTGTCGCAGCAGCTGCGGACCGCGCAGCGCGAGCTCGGCACCGCCCTCGTCGAACCCCACGGGCGGGGGGTGCGGCTGACCGACGCCGGCCGGCTGCTCGCCGAGGGTGCGGTGGAGGTCGCCACCGCGCTGGCCGACGTCCAGGCGCGCTGGGAGGCGTTCCGCGACGTGCCCGCGGGCACCGTGTCCGTGGCCGCTCTGCCGAGCGCCGCCTCCTACCTCTTCCCCGCCCTGGAGCGGGACCTGGCCGGGAGCGGCGTCGAGCTCCGTCTGACCGACCTCGACCTGGCCGAGGCGCAGTACGGCGCGATGACCGCCGACCACGACGTCGTCGTCGCGCACAGCATGACCAGCGTGCGCCCCCCCGGCACGGACGGCCTCGTCGTCGTCCCGGTCGTCGACGAACCCCTCGACGTCGCCATGGCCGCGCACCACCCGCTCGCCGCCCGGTCCACGGTGAGCCCGGCCGACGTCGTCGACGCGGCCTGGGTGGGCGTCCCCCGCGGGTTCCCCTTCGACACCGTGCTGCAGAACATCGAGCAGGCCACCGGGGCCCGGCTCGACGTCCGCCAACGCCTGCTCGACAACCGCCTCGTCGAGGCGGTGGTCGCGTCCAGCCTGCGGCTGGCGGCGCTGCCGCGGTTCACCACGCCCGTCGGCGACGGGCTCGTGCTCCGCCCGCTGACCGGGGTGCCGGCTCTGCGCCACCTCGCGGCGGTGATGCGCCCCGACCGCGCCCGGCGCCGGGCCGTCCGGCACGTGCTGGACGCCCTGGTCGAGGCGGCCCGCTCCACGGCACGCCGTCACGACGTCGTCGTCTGAMDVRHLDLLRELADRGSISAVAAATHRTPSAVSQQLRTAQRELGTALVEPHGRGVRLTDAGRLLAEGAVEVATALADVQARWEAFRDVPAGTVSVAALPSAASYLFPALERDLAGSGVELRLTDLDLAEAQYGAMTADHDVVVAHSMTSVRPPGTDGLVVVPVVDEPLDVAMAAHHPLAARSTVSPADVVDAAWVGVPRGFPFDTVLQNIEQATGARLDVRQRLLDNRLVEAVVASSLRLAALPRFTTPVGDGLVLRPLTGVPALRHLAAVMRPDRARRRAVRHVLDALVEAARSTARRHDVVVNANANANANA
AK018_01289990eamA_1COG0697putative amino-acid metabolite efflux pumpTTGTGCTTCACTGTCGGTGCCGTCGAGCATGGGGCCATGCCGACCCGTCACCGCCTCCTCGCCGCCGTCGTCGCGCTGCTGTGGGGCCTGAACTTCCTGGCCATCGACGCCTCGCTGCAGCACTACCCGCCGATGTTCCTCGTCGCGTTGCGTTTCGCCGTGCTCGCGGTGCCGACCGTCCTGCTCGTCCCGTGGCCCGGGGTGCCGGTGCGCTGGCTGATCGGGTACGGGTTGGGGTTCGGCGTCCTGCAGTTCACGTTCCTGTACTGGGGGATGTCGGCCGGGATGCCGGCCGGGCTCGCCTCGCTCGTCCTGCAGGCCTCCGGTCCGTTCACCGTGGTGCTCGGCGCGACGTTCCTGCGAGAGCGGGTCAGCGGTCGGCAGCTCCTGGGCATCCTCGTCGCCGTGGCGGGGCTCGCCGTCGTCGGCTGGCAGCGCGCCGAGCACGCCGCCGTGCTGCCCTTCCTGCTCACCCTGGCCGGCGCCTTCGGCTGGGCGATCGGGAACGTGTGCAACCGTCGGGCCCGGCCGCGCAACCCCCTGCACCTGGCCCTGTGGATGTCGGTCGTCCCGCCCCTGCCGATGCTGGCGGTCTCGCTGCTCGTCGAGGGGCCGGACCCCATCTGGACCTCGCTGGTCTCCTACGACGACCCGGCCGCCGTCGCCGCCGTGGTCGGGCTCGCCTACACGGTGGTGCTCGGCACCGTCGTGGGTTCGGGGCTGTGGACGTGGCTGATGGCGCGGCACCCGGCGGGCGTGGTCGCACCGTTCTCGATGCTGGTGCCGGTCGTCGGCATGACGGCCGCCTGGCTCGTGCTGGGGGAGACGGCGACCCCGGGTGAGCTCGCCGGCGGCGTGCTGGTGGTCGTCGGCGTGCTGCTGGGCAGCCGGCCGCCGCGGCGCGGCCCGACGACGGCGCCGGGCACGGAGAGGTCGCCGGAGCGCACGCCGGGGGTCGCTGCTCGCACGGGTCCGGCTCCGACTAGGTGAMCFTVGAVEHGAMPTRHRLLAAVVALLWGLNFLAIDASLQHYPPMFLVALRFAVLAVPTVLLVPWPGVPVRWLIGYGLGFGVLQFTFLYWGMSAGMPAGLASLVLQASGPFTVVLGATFLRERVSGRQLLGILVAVAGLAVVGWQRAEHAAVLPFLLTLAGAFGWAIGNVCNRRARPRNPLHLALWMSVVPPLPMLAVSLLVEGPDPIWTSLVSYDDPAAVAAVVGLAYTVVLGTVVGSGLWTWLMARHPAGVVAPFSMLVPVVGMTAAWLVLGETATPGELAGGVLVVVGVLLGSRPPRRGPTTAPGTERSPERTPGVAARTGPAPTRNANANANANA
AK018_01290675hypothetical proteinATGACCGACCCCTCCGCCGCGACCTCGAGCTCCCCCCGGAAGCCCGCGCCCGTGGGCGCGGCACGGCTGCGCGGGCTGTCGCACCCGCTGCGGGTCACGATCCTCGACCTGCTCCAGGTGCACGGGTCGCTGACCGCCAGCCGGCTCGCCGAGCTCGTCGGCGAGTCCAGCGGGTCCACGAGCTACCACCTGCGCCAGCTCGCCAAGCACGACTTCGTCCGCGAGGTCCAGGGCAAGGGCACCGCGCGCGAACGCTGGTGGGAAGCGACGCCGGGGGGGTTCGTCCTCGCTCCGTCCGAGAACGGCGTCGACGACGCCGGCACCCGCACGGCACTGTCGCTCGCGAGCGCCGAGTTCGAACGCGCCCGCCAGGCGAAGATCTGGCGACTGCTGGACGCGCTGCGGGACGGTCCGCAGGAGTCCCGCTACGCCGACTGGTCCGACTCGGTCAGGCTCGGGACGGCGAACACCGTCGCGACTCCCCAGCAGCTCCACGACCTCATCGAGACCGTGCAGTCGGTCATCGACACCGAGCTCCACAAGCTCAAGACCCAGGAGCCCGGCCCGGACGCCCGACCCGTCCAGATCCACTTCAACGCCTTCCCTGTCGTCGACCCCGAGCCGGCGCCGACCGTCCAGGACGACGCCGGCACCGGGAGCGGTCCGGTCACCTAGMTDPSAATSSSPRKPAPVGAARLRGLSHPLRVTILDLLQVHGSLTASRLAELVGESSGSTSYHLRQLAKHDFVREVQGKGTARERWWEATPGGFVLAPSENGVDDAGTRTALSLASAEFERARQAKIWRLLDALRDGPQESRYADWSDSVRLGTANTVATPQQLHDLIETVQSVIDTELHKLKTQEPGPDARPVQIHFNAFPVVDPEPAPTVQDDAGTGSGPVTNANANANANA
AK018_01291234hypothetical proteinATGTTGCTCGCCGCCCCCACCTACCACCGCCGCACGCTCGCCGACCGCGTCGTGGACCACCTGGCCGACGCGCTGGTCCGGACCGGGGAGCACCTGCACGACGCCCTGGCCACCCACGTCGCCCGGCGCGCCGCCGGAGCGCTCGCCCGCCGTGAGCGGGACCACCGCCGGTACCTCGCCGCGGAGCGGGTCCGCGACAACGCCGCGCAGGTCAACCCGTTGGGGCTGAGCTGAMLLAAPTYHRRTLADRVVDHLADALVRTGEHLHDALATHVARRAAGALARRERDHRRYLAAERVRDNAAQVNPLGLSNANANANANA
AK018_012923354mdtC_1Multidrug resistance protein MdtCGTGTTCCGTCTTGCCCGACTGTCCCTGGCGAACCGCGCCGTGGTCGCACTGGCCACGGTCGCGATCTTCGTGTTCGGGACCCTGAGCCTGACCTCGCTGAAGCAGGAGCTCATCCCGTCGCTCCAGTTCCCGGCCGGCGTGGTCCTGGCGACGTACCCCGGCGCCTCGCCGGAGGTGGTCGAGGAGAGCGTCACCGAGCAGATCGAGGCGGCGGTGCAGGGCGTCGACGGCATCGAGTCCGTCAGCTCGAGCGCGTCGACCGGGATCTCGACCACCACGGTCGAGTTCGCCTACGGGACCGACATGGACTCCGCCACGCAGCGGCTCACCACCGTCATGACGCAGATCCAGTCCTCCCTCCCCGAGGACGTCGACCCGCAGGTCATCACCGGGTCCCTCGACGACCTGCCGGTCATCCAGCTCGCCGCGTCCGGTGCGGGCGACGACCTCGCCGGGCTGGCCGACGAGATCGAGGCCGTCCTCGTGCCGGACCTCGAGGACGTCGACGACGTGCGGTCCGTGACCGTCAGCGGGGCCGTCGACGACCAGGTGCTCATCGAGGCCGACCCGGCCGACCTCGCCGAGCAGGGCCTCGACGTCGCCCAGGTGACCGGCGTGCTCGCCGACTACGGCGTCGTCGTCCCGGCCGGCACCGTCACCGAGGACGGCGACACGTACTCCCTGCAGGCCGGGACCCGGATCGGCAGCCTCGAGGAGATCGAGGAGATCCCCCTCGTGCCGAGCGTGACCAGCACCGCCGGGGCCGACGGCGGCACGTCAGGCGCCACGGACGACGCGGCGGCCTCCGCACCGGGAGCCGAAGGCACCGTGCCGCCGTCGGGCACCGACAGCGCCGCCGGGGCGCCCGCCGAGGGCGGGACGGGGACCGACCCCGAGCAGCTCCCGGACGCCAACGCGCCCCCGGCCCCGCCGGAGCCCGTCCTGCTCGGCGACGTCGCGGACGTCTCCGTCGCGGAGTCCCAGGCCACGTCCTTCTCCCGCCTCGACGGCGAACCGTCGCTGGGCATCGGCATCATCAAGACCCCGCAGGGCAACACCGTCGACGTCTCGCACGCCGTGCAGGAGGTCATCGACGACAACGCCGCCGAGCTCGACGAGGCCGGCATCACCACCGCCGTCGTGTTCGACCAGGCCCCCTTCATCGAGGAGTCCATCGAGGGGCTCGCCACCGAGGGCGGCCTCGGCCTGGTCTTCGCGATCCTCGTCATCCTGGTGTTCCTGCTCTCGCTGCGCGCCACGCTCGTCTCGGCGGTGTCCATCCCGCTGTCGCTGGCCACCGCGTTCCTGGTCATGGACGTGACCGGGTACACCCTGAACATCCTCACGCTGGCCGCCCTGACGATCTCCATCGGCCGCGTGGTCGACGACGCCATCGTCGTCATCGAGAACATCAAGAGACACCTGTCCTACGGCGAGGACAAGAAGGACGCGATCCTCACCGCCACGGGCGAGGTCGCCGGGGCCATCGCCGCCTCGACCATCTGCACCGTCGCCGTGTTCCTGCCCCTGGGCCTCGTGTCCGGCATGACGGGCGAGCTGTTCCGGCCGTTCGCGTTCACGGTGGCCATCGCGATGCTCGCCTCCCTGCTGGTGGCGCTCACCATCGTGCCGGTGCTGGCCTACTGGTTCGTCAAGCCGCCGAAGGGCGCCGAGGAGGCCACCGACGGCGGCCGGGCCATCCGCGAGGCGGCCGAGGCCCACGAGCGCCGCGGCCTCTGGCAGCGCGCGTACGTGCCCAGCCTCGCCGCCGCCCTGCGGCACCCCTGGGTCTCCCTGCTCGTCGCCGTCGGCATCCTCGCCGGCACGCTGGCGCTCGTGCCGCGCCTGGAGACCAACTTCATCGGCGACTCGGGTCAGGACACCGTCACGGTGACCCAGACCTTCGAGAACACCACCTCGCTGCAGGCGCAGGACGACGCAGCCCGCGAGACGGAGCAGGCCATCGCCGACGTCGACGGCGTCGAGACGGTGCAGACGTCGGTCGGATCCGGGGACTCGCCCGAGGCCGCGTTCTTCGGGGGCGGGGCCGCGCCCACCGCGAGCTTCTCCGTGACGCTCGACGAGGACGCCGACGGCGTCGCCGCGCAGGACGACGTCCGTGCCGCCGTCGAGGACCTCGCCGGCCAGGGGCCGACCACCGAGGTCAGCGTCTCCACCGGGGACTCCGGGTTCGGGTCCAGCACCATCGACCTGGTGGTCCAGGCGACCGAGCTCGACGACCTCACCGAGGCCGCCGAGACCGTCCAGGACGCCGTGGCCGAGCTGGACGGCGTCGCCGAGGTCACCAACGACCTCTCGACCGCCCAGACGATCCTGCAGGTGGACGTCGACCGGGAGGCCGCGGCCGACGCCGGGCTCACCGAGATGCAGGTCGCCGGCATCGTGTCCGGGGCGATGAACCCCGAGCAGACCGTCGGGGAGGTGGACCTGGGCGACGGGCCGCTGGAGACCTTGGTGGTCACCGGGGAGGCTCCGGACACCGTCGGTGCCGTCGAGGAGATCGAGATCCCGACCGCCGCGGGCGCGGTGCCGCTCACGGACGTCGCGTCGGTCGACGAGGTCGAGACGCCGGCCTCGATCAGCCGGGCCGACGGTCAGCGGTCCGCGACGGTCGCGGTGACCCCCGGCGCCCAGGACCTCGGCACGCTGAGCGCCGAGGTGACCACGACCGTCGACGGGCTGGAGCTGCCGGCCGGCGCCTCCGTCTCCGTCGGCGGTGTCGCCGCCGACCAGGAGGAGGCCTTCGCGGACCTCGGTCTGGCGCTCCTGGCCGCGATCGCGCTCGTCTACCTGATCATGGTCGCGACGTTCAAGTCGCTGATCCAGCCGCTGATCCTGCTGGTCTCCGTACCGCTGTCCGCCACGGGTGCGCTCGTCGCGCTGCTGGTCACCGACACCCCGCTCGGTGTCGCGGCGCTCATCGGCGTGCTGATGCTGGTCGGCATCGTGGTGTCCAACGCCATCGTGCTCATCGACCTCATCAACCAGTACCGACGCCGGGGCCGCGACCTCGACGACGCGGTGCGTGAGGGCGCTCGCAAGCGTCTGCGACCCATCGTCATGACGGCCCTGGCGACGATCTTCGCGCTGACCCCGATGGCGTTCGGGCTCACCGGGGGCGGCGCGTTCATCTCCCAGCCGCTGGCCCTGGTGGTGATCGGCGGGCTCATCTCCTCGACGCTCCTGACGTTGCTCATCGTGCCGGTGCTCTACGTGCTGGTCGAGGGCCGCAAGGACCGCCGGGCCGCGCGTCGTCGGCGCCGGGCGGAGAAGCGGGAGCGCAAGGCCGTCGAGCGCAGGGACCGCGAGGCGACCGCCGCCGCTTCCGGCTGAMFRLARLSLANRAVVALATVAIFVFGTLSLTSLKQELIPSLQFPAGVVLATYPGASPEVVEESVTEQIEAAVQGVDGIESVSSSASTGISTTTVEFAYGTDMDSATQRLTTVMTQIQSSLPEDVDPQVITGSLDDLPVIQLAASGAGDDLAGLADEIEAVLVPDLEDVDDVRSVTVSGAVDDQVLIEADPADLAEQGLDVAQVTGVLADYGVVVPAGTVTEDGDTYSLQAGTRIGSLEEIEEIPLVPSVTSTAGADGGTSGATDDAAASAPGAEGTVPPSGTDSAAGAPAEGGTGTDPEQLPDANAPPAPPEPVLLGDVADVSVAESQATSFSRLDGEPSLGIGIIKTPQGNTVDVSHAVQEVIDDNAAELDEAGITTAVVFDQAPFIEESIEGLATEGGLGLVFAILVILVFLLSLRATLVSAVSIPLSLATAFLVMDVTGYTLNILTLAALTISIGRVVDDAIVVIENIKRHLSYGEDKKDAILTATGEVAGAIAASTICTVAVFLPLGLVSGMTGELFRPFAFTVAIAMLASLLVALTIVPVLAYWFVKPPKGAEEATDGGRAIREAAEAHERRGLWQRAYVPSLAAALRHPWVSLLVAVGILAGTLALVPRLETNFIGDSGQDTVTVTQTFENTTSLQAQDDAARETEQAIADVDGVETVQTSVGSGDSPEAAFFGGGAAPTASFSVTLDEDADGVAAQDDVRAAVEDLAGQGPTTEVSVSTGDSGFGSSTIDLVVQATELDDLTEAAETVQDAVAELDGVAEVTNDLSTAQTILQVDVDREAAADAGLTEMQVAGIVSGAMNPEQTVGEVDLGDGPLETLVVTGEAPDTVGAVEEIEIPTAAGAVPLTDVASVDEVETPASISRADGQRSATVAVTPGAQDLGTLSAEVTTTVDGLELPAGASVSVGGVAADQEEAFADLGLALLAAIALVYLIMVATFKSLIQPLILLVSVPLSATGALVALLVTDTPLGVAALIGVLMLVGIVVSNAIVLIDLINQYRRRGRDLDDAVREGARKRLRPIVMTALATIFALTPMAFGLTGGGAFISQPLALVVIGGLISSTLLTLLIVPVLYVLVEGRKDRRAARRRRRAEKRERKAVERRDREATAAASGPGPT0016195_1236DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-SURFACTIN_RESISTANCE,PGPT0016195-swrC|yerP-K03296NANA
AK018_01293834hypothetical proteinATGAGCAACCCCGTCTTCTCGAACAGCGACGTCTTCGGCGAGCCGCGCCGCACCGCGCGCGGCGGCACCGCGACGTCGGCGCGTCCCGCGCAGTACGGCGCGTACGGGGCCCAGGCCGCCGACGCCGCCTCCCTGCAGAACATGTACGAGGCGCCGTCGGCCACGCCCGTCGACACCAAGCGACTGACCTACACCGACGTCATCATGAAGACCGGCGGACTGTTCGCACTGCTGGTCGTCGTGGCCGCGGCGAGCTGGCAGGTCACCGAGACGATGCCGTACCTCTGGGTCGGGGGCATGATCGCAGGGCTCGTGCTCGGCCTGGTCAACGCCTTCAAGAAGAACCCGAGCCCACTGCTCATCACCCTGTACACGGTGGCGCAGGGACTCTTCCTCGGTGGGATCTCCGCCTGGTACAACACCATCGAGCCGGGCATCGTCGGGCAGGCCGTGCTCGCCACGCTCTGCGTGTTCGCGGCGGCGCTCGGCCTGTTCAGCTCCGGCAAGGTGCGGGTCACCCCGAAGTTCACGCGATTCCTGCTCTTCGGAATGGTCGGCTACCTGCTGTTCTCGCTGGTCAACGTCATCCTGGTGTGGACCGGCGTGATGGAGGGCTGGGGGATGCGGGGCGGCACGCTCGGCATCATCGTCGGGATCGTCGCCGTGGTGCTGGCCTCGATGTCCCTCATCGTCGACTTCGACTCGATCAAGCGCGGCGTCGAGGGTGGTGTCCCGGCCAAGTTCGCCTGGTCGGCGGCGTTCGGCCTCATGGTGACGCTGATCTGGCTGTACCTGGAGATCCTGCGCCTGCTGGCGATCATGCGCGGCGACTGAMSNPVFSNSDVFGEPRRTARGGTATSARPAQYGAYGAQAADAASLQNMYEAPSATPVDTKRLTYTDVIMKTGGLFALLVVVAAASWQVTETMPYLWVGGMIAGLVLGLVNAFKKNPSPLLITLYTVAQGLFLGGISAWYNTIEPGIVGQAVLATLCVFAAALGLFSSGKVRVTPKFTRFLLFGMVGYLLFSLVNVILVWTGVMEGWGMRGGTLGIIVGIVAVVLASMSLIVDFDSIKRGVEGGVPAKFAWSAAFGLMVTLIWLYLEILRLLAIMRGDNANANANANA
AK018_012941917COG3387TrehalaseATGACGCTCGATGCACAGGCACCACCGCGCACGGACGGACGCAGCACGTTCCCCGCGATCGCGGAGTACGCGTTCCTGTCCGACTGCGAGACGAACGCCCTCGTCGCCCCGAGCGGCGCGATCGAGTGGATGTGCGTCCCACGTCCGGACTCCCCGAGCGTCTTCTCCTCGCTCCTGGACCGCGGAGCGGGCCACTTCCGCATCGGCCCCCACGGGGTCCGCGTCCCCGTCGCACGGCGCTACATCCCCGGCACCCTCATCCTCGAGACCACCTGGCAGACCTCGACCGGATGGCTCGTGGTCCGCGACGCGATGGTCATGGGGCCCTGGCACAACCTGGACGAGCGGTCGCAGACGCACCGGCGCACGCCGACGGACCACGACGCCGAGCACGTCCTGCTGCGCACCGTGAAGTGCGTCTCCGGGAAGGTCGACCTCGAGGTCGTGTGCTCGCCGATGTCCGACTACGCCCGGTACGAGCCCGACTGGGAGTACCTCGACGAGGGGTACTCGTCGGTGATCGCCCGCACCGGGGACGCCAACCCCGACCTGCGGCTCAGCTCCTCGCTGCGCTTCGGCCTCGAGGGCCGGCGCGCCCAGGCGCGCACCCGCATGGAGGAGGGCGACACCCACTTCGTCGCCATGGCGTGGTCCCCGCTGCCGACTCCCGGGTCCTTCGCCGAGGCCGCCGAGAAGATGTGGCGCACCGAGCAGTTCTGGCGCGACTGGATCACGCAGGGCTTCTTCCCCGACCACCCGTGGCGCATCTACCTGCAGCGCTCGGCGCTGACCCTCAAGGGCCTGACGTACGCCCCGTCCGGCGCGCTGCTCGCCGCGGCGACGACGTCGCTGCCGGAGACGCCCGGCGGGGAGCGCAACTGGGACTACCGGTACGCCTGGATCCGCGACTCCACGTTCGCGCTGTGGGGCCTGTACACCCTCGGGCTGGACCGCGAGGCGAACGACTTCTTCGCGTTCATCCAGGACGCCTGCCAGGACAACAAGCAGCTGCAGATCATGTACGGCGTCGACGGCGAGGAGGAGCTGCACGAGTCCGAGCTGAGCCACCTCACGGGCTACGAGGGTGCCCAGCCGGTCCGCGTCGGCAACGCCGCCTACAACCAGAGCCAGCACGACGTCTGGGGCGCGGTCCTCGACTCGGTCTACCTGCACACCCGCAACCGCGAGCAGCTCCCCGAGGCGCTGTGGCCCGTCCTGAAGCGTCAGGTCGAGGAGGCCGCCAAGCACTGGCACCTGCCCGACCGCGGGATCTGGGAGGTGCGCGGCGACCCGCAGCACTTCACCTCGTCCAAGCTCATGTGCTGGGTGGCGCTCGACCGGGGCGCCCGCCTGGCGCGGCTGTACGACGAGCCGGACTTCGCCGAGCAGTGGCAGAAGCTCGCCGACGAGATCCACGCCGACATCTGCTCCAAGGGCGTCGACGAGCGCGGCGTGTTCACCCAGCGGTACGGCGACGACGCCCTGGACGCCTCGCTGCTGCTGGTGCCGCTGCTGCGGTTCCTGCCGCCGGACGACGAGCGGGTGCGCGCCACCGTGCTCGCCATCGCCGACGAGCTCACCGAGGACGGCCTGGTGCTGCGCTACCGCACCGAGGAGACCGACGACGGGCTGGCCGGCGAGGAGGGCACGTTCACGATCTGCTCGTTCTGGCTCGTCTCGGCGCTGTGCGAGATCGGCGAGGTGGAGCGGGCCCGGACGCTGTGCGAGCGGCTGCTCTCCTTCGGGTCGTCGCTGAACCTGTACGCCGAGGAGATCGACCCGCGCACCGGGCGGCACCTGGGCAACTTCCCGCAGGCCTTCACGCACCTGGCGCTCATCAACGCCGTCATGCACGTGATCCGCGCCGAGGACGACCCGGGCGACCACCGCGCGTTCCGTACGCCGAGCCGCGCCTGAMTLDAQAPPRTDGRSTFPAIAEYAFLSDCETNALVAPSGAIEWMCVPRPDSPSVFSSLLDRGAGHFRIGPHGVRVPVARRYIPGTLILETTWQTSTGWLVVRDAMVMGPWHNLDERSQTHRRTPTDHDAEHVLLRTVKCVSGKVDLEVVCSPMSDYARYEPDWEYLDEGYSSVIARTGDANPDLRLSSSLRFGLEGRRAQARTRMEEGDTHFVAMAWSPLPTPGSFAEAAEKMWRTEQFWRDWITQGFFPDHPWRIYLQRSALTLKGLTYAPSGALLAAATTSLPETPGGERNWDYRYAWIRDSTFALWGLYTLGLDREANDFFAFIQDACQDNKQLQIMYGVDGEEELHESELSHLTGYEGAQPVRVGNAAYNQSQHDVWGAVLDSVYLHTRNREQLPEALWPVLKRQVEEAAKHWHLPDRGIWEVRGDPQHFTSSKLMCWVALDRGARLARLYDEPDFAEQWQKLADEIHADICSKGVDERGVFTQRYGDDALDASLLLVPLLRFLPPDDERVRATVLAIADELTEDGLVLRYRTEETDDGLAGEEGTFTICSFWLVSALCEIGEVERARTLCERLLSFGSSLNLYAEEIDPRTGRHLGNFPQAFTHLALINAVMHVIRAEDDPGDHRAFRTPSRAPGPT0014070_147DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-TREHALASE,PGPT0014070-EC_3_2_1_28|alpha_trehalase-K22934NANA
AK018_01295423hypothetical proteinATGACCAAGTACATGCTGATCATGCGGGGTACCGACGAGGGCCAGGCGCAGTACGAGGAGACGGACTTCTCCGAGGTGATCGCCGCCATGGGCCGCTACAACGAGTCGATGATGGACGCGGGGGTCCTGACCGCCGGCGAGGGTCTCTCGGACGCCTCGGAGGGCGCCGTCGTCGACTTCTCCTCCGACACCCCGGTCGTCACCGACGGGCCGTACGGGGAGACGAAGGAGCTGTTCAACGGCTTCTGGATCCTCGACGTCGCCTCCCGGGCCGAGGCGATCGAGTGGGCCAAGCGAGCCCCGCTGAGCGGTCCGGGCACCAAGCTGGAGGTCCGTCGCGTGCACGGCGAGGAGGACTTCCCGGCCGACGACGAGTGGATCCAGAAGGAGAAGGAGTGGCGCAAGCAGCTCGGGACGGAGTGAMTKYMLIMRGTDEGQAQYEETDFSEVIAAMGRYNESMMDAGVLTAGEGLSDASEGAVVDFSSDTPVVTDGPYGETKELFNGFWILDVASRAEAIEWAKRAPLSGPGTKLEVRRVHGEEDFPADDEWIQKEKEWRKQLGTEPGPT0030505_30PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK018_012961377hypothetical proteinGTGGCGCAAGCAGCTCGGGACGGAGTGACCGGCCCGGCCGGGGTGCCCGACGGCGGCACCCCGGCCGCGGGCGGCGGCGCCGGGAGCGCGGACGGTGACGCCGCCCGTCGCGCCGTGGAGGCCACGTGGCGCATCGACGCCGCGCGGATCGTCGGTGCGCTCGCCCGGTACACCGGGGACGTCGCCCTGGCCGAGGACGTCGCCCAGGAGGCGTTGGCCGAGGCCCTCGTGGCCTGGCCGCGCGATGGGGAGCCCCGCGACCCGACCGGCTGGCTGCTCACCACCGCGCGGCGGCGCGCCATCGACGCGTTCCGGCGTCGTGCGGGACGCGACGAGCGGTACGCCGCCCTGGGCCACGACCTCGGCGAGGGCGAGGCGCACGCCGGGTCGCCGCCGTCGGACGGCGGAGAACCGGACCTGCTGTGGGACCCGGACCGGATCGAGGACGACCGGCTCGCCCTGATCTTCACCGCCTGCCACCCGGTGCTGTCCACGGAGGCGCGGGTGGCGCTCACGCTGCGGGTGGTCGGTGGGCTGACCGGCGACGAGATCGCGCGGGCCTTCCTGCTGCCGCGCACGACGGTCCAGGCGCGCATCACCCGGGCCAAGAAGACGCTCGCCGCGGCGCGGGTCCCGTTCGAGGTGCCGCCCGCCGCCGACCGCCCCGAGCGGCTGGGGTCCGTGCTCACCGTGGTGTACCTGATCTTCACCGAGGGGTCGACGGCGTCGGGCGGCACGGACTGGATCCGCGCCGACCTCGCCCGGGAGGCGATACGCCTCGCCCGTGTGCTGGACCGGCTCGTGCCCGACGAGCCCGAGGTCGCCGGTCTGCTCGCGCTGCTGGAGCTGACCGCGGCCCGGTTCCCGGCCCGCACCGGCCCGCACGGCGAGCCCGTGCTGCTCGCCGACCAGGACCGCCGCCGCTGGGACGCCGGGGCGATCCGGCGCGGACGCGCCGCACTGGCGCGGGCCAGTGCCGTCGGACGCGGGCTGGGGCCGTACGGTCTGCAGGCCGCGATCGCCGAGCGGCACGACGTCGCGCGGTCGGTCGACGACACCGACTGGGAGCAGATCGTCGTGCTGTACGAGGCGCTCGGCCGCGTCGCGCCGTCGCCCGTCGTGGAGCTGAACCGGGCGGTCGCGGTGTCGATGGCGTCCGGTCCGGCCGCCGCGCTGGAGATCGTCGACGACCTCGCCGCCCGCGAGGTGCTCACCGGGACCTACCTGCTGCCCAGCGTCCGGGGCGAGCTGCTGTCCCGCCTCGGACGCCGGGACGAGGCCCGCACCGAGCTGGAGCTCGCAGCGCGCCTGTGCGGCAACGACCGCGAGCGCGGGGTGCTGGAGGCCAAGGCCGCGGCCCTGGGTGGGTCGTCGTAGMAQAARDGVTGPAGVPDGGTPAAGGGAGSADGDAARRAVEATWRIDAARIVGALARYTGDVALAEDVAQEALAEALVAWPRDGEPRDPTGWLLTTARRRAIDAFRRRAGRDERYAALGHDLGEGEAHAGSPPSDGGEPDLLWDPDRIEDDRLALIFTACHPVLSTEARVALTLRVVGGLTGDEIARAFLLPRTTVQARITRAKKTLAAARVPFEVPPAADRPERLGSVLTVVYLIFTEGSTASGGTDWIRADLAREAIRLARVLDRLVPDEPEVAGLLALLELTAARFPARTGPHGEPVLLADQDRRRWDAGAIRRGRAALARASAVGRGLGPYGLQAAIAERHDVARSVDDTDWEQIVVLYEALGRVAPSPVVELNRAVAVSMASGPAAALEIVDDLAAREVLTGTYLLPSVRGELLSRLGRRDEARTELELAARLCGNDRERGVLEAKAAALGGSSPGPT0014960_87DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_01297402fkbP_1FK506-binding proteinATGACCACGCTGCCCACCGCCACCGGCTCCTTCGGCGACAAGCCCGAGATCACCTTCCCCGAGGGCGACGCCCCGTCGGGCCTGCAGGTCCAGGTGCTCGAGGAGGGCTCCGGCCCCGTCGTGGACGCCGGCCGCACCATCGTCGTCAACTACTACGGCCAGACCTGGGGCGGCCAGATGTTCGACAACTCCTGGGACCGCGGCCAGACCATCGACTTCCCGATCGGCGTCGGCGCCGTCATCGGCGGCTGGGACAAGGGGCTCGTCGGCCGCAACGTCGGCGACCGCGTGCTGCTGTCCATCCCGTCCGAGCACGGCTACGGCCAGCGCGGCGTGCCGCAGGCCGGTATCCCCGGCGGGGCGACCCTGGTGTTCGTCGTGGACGTCGTCGACGTGAAGTGAMTTLPTATGSFGDKPEITFPEGDAPSGLQVQVLEEGSGPVVDAGRTIVVNYYGQTWGGQMFDNSWDRGQTIDFPIGVGAVIGGWDKGLVGRNVGDRVLLSIPSEHGYGQRGVPQAGIPGGATLVFVVDVVDVKPGPT0015110_204DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
AK018_012981245rlmG_1COG2813Ribosomal RNA large subunit methyltransferase GATGCGCCCAGACTACGGTCGTGCCGTGACACCCCCCGCCGCCCTGCCGCCCACCGTGACCGCCGTGCTCGACCGGCTCGTGCCCTGGCCCGACGACGGCACCCGCGCCGACGGTCCGGTCGCCGTCGACGCCACCGACCGGCTGCTGCTGGCCGAGGCCGCCGACCGCCTCGCCGCGGCGGGTCCGGGCGACGTCGTCGTCCTCGGCGACCGCTTCGGGGCGCTCACGCTCGGCGCGCTCGCCCTCGGCGCGCCGGACGTGCGCACCCACACCGACGCCCTCGGCGCCGAGCTCGCGCTGCGCCACCACCTCGACCAGGACCCCGACGACCTGCGACGTCGCGCGACGATCGTCGACGCGCTCGAACCGGCACTGCTCGACGGCGCCCGGCTGGTGCTGCTGCAGCTGCCCAAGTCGCTGGCCGAGCTCACCGAGATCGCCGAGGCCGTCGCCCGGCACGCGGCCGACGACGTCACACTCCTGGCCGGTGGCCGCGTCAAGCACATGACCCGCGCCATGAACGACGTGCTCGCCGACCGCTTCACCGCGGTCCGCGCCACGCTGGCGCGCAGCAAGTCCCGGGCCCTGGTGGCGTCCGGCGCCCGCCCCGAGATCCGCGACGCCGCGCCCCTGTACCCGGTCCACGAGCGCCTGACCGACCCGGAGCTGCTGGCGGCGGCGACCCCGACCGACGGCGGCGCTCCCCCGGCCCATCTCGACGTCGTCGCGCACGGCGGCGCGTTCGCCGGAGCAGCCCTCGACCACGGCACCCGGTTCCTGCTGAGCACCGCCGGACGCTGGCCCGCCGCCGAGCGGGTGCACGACGCCGTCGACCTCGGGTGCGGCACCGGTCTGCTGTCCGTCGTGCTGGCCCGCCGCTACCCGCTGGCGCGCGTGGTGGCCACCGACCGCTCGGCGGCGGCGGTCGCGTCCACCCGGGCGACGCTGGCGGCGAACGGCGTCTCCGCCGTCGTGCAGCGGGACGACGCCGGGGCCGGTCTGGCCGACGAGAGCGCCGACGTCGTGCTGCTCAACCCGCCCTTCCACGACCGCGCCGCCGTCAGCACCGACGCCGCGCACCGCATGTTCGCCGCGGCCGGACGGATCCTGCGTCCCGGCGGTGAGCTGTGGTGCGTCTACAACACGCGGCTGCGCTACCGCGGGTCGCTCGCCCGCGCCGTCGGACCCACGGACCACGTCGCCCAGGACCCCCGCTTCACGGTCACCCGCTCCCGCAAGCCCTGAMRPDYGRAVTPPAALPPTVTAVLDRLVPWPDDGTRADGPVAVDATDRLLLAEAADRLAAAGPGDVVVLGDRFGALTLGALALGAPDVRTHTDALGAELALRHHLDQDPDDLRRRATIVDALEPALLDGARLVLLQLPKSLAELTEIAEAVARHAADDVTLLAGGRVKHMTRAMNDVLADRFTAVRATLARSKSRALVASGARPEIRDAAPLYPVHERLTDPELLAAATPTDGGAPPAHLDVVAHGGAFAGAALDHGTRFLLSTAGRWPAAERVHDAVDLGCGTGLLSVVLARRYPLARVVATDRSAAAVASTRATLAANGVSAVVQRDDAGAGLADESADVVLLNPPFHDRAAVSTDAAHRMFAAAGRILRPGGELWCVYNTRLRYRGSLARAVGPTDHVAQDPRFTVTRSRKPNANANANANA
AK018_01299294hypothetical proteinGTGTCCATCACCTACTGCACCCAGTGCCGCTGGCTGATGCGGGCGGCGTGGGTCGCCCAGGAGCTGCTGCAGACGTTCCGCACGCGGCTGGGTGAGGTCGCGCTCGTACCGGGGACGGGCGGGGTGTTCCGTGTGGAGCTGGTGCGGGCGCCCGGCGAGGAGCCGGTGCTGCTGTGGGACCGCAAGGCCGAGGGCGGGTTCCCCGAGATCCCGCCGCTCAAGAAGGCCGTGCGGGACGCCGTCGCGCCGGACATGGCCCTCGGGCACACCGACCGCGTGGCCTCCGGCGAGTGAMSITYCTQCRWLMRAAWVAQELLQTFRTRLGEVALVPGTGGVFRVELVRAPGEEPVLLWDRKAEGGFPEIPPLKKAVRDAVAPDMALGHTDRVASGENANANANANA
AK018_01300384hypothetical proteinATGGCCGGAACACCCTTCTCCCAGCAGGTCCTCAAGCCGACGAACGCCGCGAAGCGGCTCGGTGTCTACCTGCCCGCCACGCCGGCGGAGTTCCAGGAGAAGGGCATCAGCCGCGCCGAGCTGGAGCAGCTCGAGCAGAACCCGCCGGAGTGGCTCGACGAGCTGCGCCGCAACGGTCCGCACCCGCGTCCGGTGGTGGCCGGCCGGCTCGGCATCTCGATCGGTGGGCTGGCGCGCGGCGGCATCACCGAGCCGCTGACCACCGAGCAGATCGACGAGCTGCGCGAGGACCCCCCGGCGTGGCTGGTCCGCGAGCGCGAGACGGCCGCCAAGGTGCGCGCCGAGGAGGAGCGGATCGCGGCCGAGCGGAAGACCGAGGACTGAMAGTPFSQQVLKPTNAAKRLGVYLPATPAEFQEKGISRAELEQLEQNPPEWLDELRRNGPHPRPVVAGRLGISIGGLARGGITEPLTTEQIDELREDPPAWLVRERETAAKVRAEEERIAAERKTEDNANANANANA
AK018_01301687hypothetical proteinATGACCCGTGAGGCACCCACGAGCGAGGCCGGCGAGAAACCCGCGGTCCGCCGGCGCCGCAGCCCCAAGGGCGAGCGACGCCGCGAGTCGATCCTCGCCGTCGCGGCGGAGCACTTCGCGCAGGGCGGACTGGACTCCGCGAGCCTGGCCGAGATCGCGGCGAAGGCCGGGCTCACGCAGGCGGGCCTGCTGCACCACTTCCCCTCCAAGCACGCCCTCCTCCTCGCCGTCCTCGAACGCCGCGACAGGCCGCCGGAGACCGGTCAGGTCGACGTCACGGGAGTCGACTTCCTGACCGGCTACCTCGACGTCCTCAGCGACAACGAGAACGACCGACACGAGATGCAGTTCTTCGCGATGCTGTCGACCGAGAGCATCGCGACCGACCATCCGGCCCACGAGTACTTCCGCGAGCGTCAGCGCGCCCTCACGACGGCCATGACCGAGGCGCTCACCAGCATCGTCGACACGGACCTGCTCGCCGGGAGCACCACGGTCGCCGACGTCGCGGACTGGATCGTCGCCCTGTCGGACGCCATGCGCGTGCAGTGGTTGCGCGATCCCGCGAGCGTCGACCGCACCGAGTCGATCTTCCGCCTCCTCGAGACCCTCGCGCCCGCGATGCACCCCCCGGCACGCGACGCCCTCCTGACCCACATCCAGCAGCGACGCGAGGACGCCTCCTGAMTREAPTSEAGEKPAVRRRRSPKGERRRESILAVAAEHFAQGGLDSASLAEIAAKAGLTQAGLLHHFPSKHALLLAVLERRDRPPETGQVDVTGVDFLTGYLDVLSDNENDRHEMQFFAMLSTESIATDHPAHEYFRERQRALTTAMTEALTSIVDTDLLAGSTTVADVADWIVALSDAMRVQWLRDPASVDRTESIFRLLETLAPAMHPPARDALLTHIQQRREDASNANANANANA
AK018_013021566atsA_1COG3119ArylsulfataseGTGTCCACCCAGCCCCCGCCCTCAGATCCGACCGACCACGAGCCGGCGGACGCCGGGGCTCCCGTGGAAGCGCGTGACGGCTCGCGCCCGCGACGGCATCGCCTCCGGCGCCTCCTGATCGGTGCCGGCCTCGTGCTGGCGCTGCCCCTCACCGTGCTGCTCGGCGGCATCGGGTACGCGCTGTTCGAGCTCCTGACCAACCGCCCCGACGACTCGCCCCAGCACGAGGCGTCCAAGCGGGAGTACCTCGGTGCGGTCGCCGACCGGCCGCGGCCCGCGACGCCCCGCGAGCGTCCCAACGTGGTGCTGGCGTACTACGACGACCTGGGCTACGGCGACTTCGGCTTCTCGGGCGACGGCCCGATCGACACCCCGAACATCGACGCGCTGGCAGCCGACGGTGTGGTCCTGACGAACTACCACGCGCCGTCGCCGGTCTGCACGCCGTCACGTGCCGCGCTGCTGACAGGACGCCTGGCACCGCGCGCGGACGTGCCGGGCGTGCTGTTCCCGAGCGGCTCCGTCCAGGGAATGCTCCAGAACGACGTCGTCGGCGACTTCGCCCTGACGCAGGCGGAGGTGACGATTCCCGAGGTGCTGGGCGCCGCGGGCTACCGGACCGGCATGATCGGCAAGTGGCACCTCGGTGACACCCCGGGGTCGCTGCCCCTGGACTACGGGTTCGACTCGTTCCTGGGGTCGCTGTACTCGAACGACATCGACCCGTTCGAGATCTACGACGGCGAGGACGTGCTGCTCGAGGCTCCCGTCGACCAGACCACCATCGACGAGCTGTACACGGACGCGGCCGTCGACTACGTCGGCACGGCCGCCGAGGACGAGGACCCCTTCTTCCTCTACTTCGCCCACAACTTCCCGCACGACCCGCTCTACGTCTCGGCCGAGCACGAGGGGCGCTCGGACGCCGGCCTGTACGGCGACGTCGTCGAGACCCTCGACGACGGCATCGGTCGCATCGTGGACGAGCTCGAGGCGACCGGTGAGCTCGACAACACCGTCGTCATCGTCACGAGCGACAACGGGCCGTGGTACCTCGGCGACCCGGGCGACCACCGCGGACGCAAGGGCCAGGTCAGCGAGGGTGGCACCCGCGTGCCGTTCCTCGTCCACTGGCCCGACGGCATCGAGGGCGGTCGCGAGATCTCGTCGATGGCGATGGGCACGGACATCCTCCCGACCCTGATGGACTGGCTCGACGTGCCCGCTCCGACCGACCGGGTGCTCGACGGCGCATCGATAGTGCCGCTCCTGGAGGGCACGAGCACGACGGTGGGCGACTACTACTACTTCTACGCCGGCCGGGAGCTCTTCGCCGTCAGCGACGGTCGCCACAAGTACTACGTCGAACAGCCGTACATCCACGCGAACAGCGGGCTGCCGATCGGGTTCGGCACACCGGCGGGCCCCTGGCTGTTCGACCTCGAGAAGGACCCGGCCGAGGCCTACGACGTCTCGGCGTCCCACCCGGAGATCGTGGCGGAGCTGGCCGCCGAGCTGGAGCGACGCAACGCCGAGATGGCCGACAACCCGCGGGGGTGGCGCTGAMSTQPPPSDPTDHEPADAGAPVEARDGSRPRRHRLRRLLIGAGLVLALPLTVLLGGIGYALFELLTNRPDDSPQHEASKREYLGAVADRPRPATPRERPNVVLAYYDDLGYGDFGFSGDGPIDTPNIDALAADGVVLTNYHAPSPVCTPSRAALLTGRLAPRADVPGVLFPSGSVQGMLQNDVVGDFALTQAEVTIPEVLGAAGYRTGMIGKWHLGDTPGSLPLDYGFDSFLGSLYSNDIDPFEIYDGEDVLLEAPVDQTTIDELYTDAAVDYVGTAAEDEDPFFLYFAHNFPHDPLYVSAEHEGRSDAGLYGDVVETLDDGIGRIVDELEATGELDNTVVIVTSDNGPWYLGDPGDHRGRKGQVSEGGTRVPFLVHWPDGIEGGREISSMAMGTDILPTLMDWLDVPAPTDRVLDGASIVPLLEGTSTTVGDYYYFYAGRELFAVSDGRHKYYVEQPYIHANSGLPIGFGTPAGPWLFDLEKDPAEAYDVSASHPEIVAELAAELERRNAEMADNPRGWRNANANANANA
AK018_01303891hypothetical proteinGTGAGCGAGGACACGCGGCCCGAGCGGCCCGACGACGCCGGTCCCGGAGCGGACGACGGCCCCCGGTTCCGCCTGGGTTACGTCCCGGGTGCCACGCCGGGCAAGTGGGCCCGCACCTGGGAGCAGCGACTGCGTGACGTGCCGCTGGATCTCGTGCAGATCGAGGCCGCGGAGGTCGCCGGCGCCGTGCGTGCCGGGGACGTCGACGCGGCGATCGGGCGGCTGCCCGTCGACAAGGACGTGTTCCACGCGATCGAGCTCTACGTCGAGCTGCCGATGGTCGTGGTCTCGCGCGACCACCTGCTGGCGGCGACCGAGGAGTCCGAGCGCGTCACCACTGCGGACCTCGACGACGACGTGCTGTGGGTGCCGGGCGACGACGTGCTCTTCACCGGCGACCGACCCCGGCCCGGAAGGTCCCCCGAGGCGTACGACGACGGCACGGGGACCCGGGTGACCCCGGCCCCGACCACGACGGCGGAGGCGATCGCCTGGGCCGCCACGGGCAGCGGCGTCGTGGTCGTCCCGATGTCCCTGGCGCGGCTGCACCGGCGCAAGGACGTCGTGCACCGGCTGCTCGACGACGGTCCGGGGGCTCCGGTCGGGCTGGTCTGGCTGCGCGAGGGCCTGTCCGAGGAGACGGGAGAGCTCGTCGAGGAGATGGTCGGGATCGTCCGGGGACGGACCGCGAACAGCTCCCGCGGCCGGGCGAGGGATTCCGGGCGGTCCTCGACCAAGGCGGCGGCCGGCACGAAGACGTCCGGCGCTGCCGCGAAGAAGTCCGGGACCTCCGGCGGGCGTGGGGGAGCGGCGGGCTCCCGCCGTGGCGCGTCCCCGGGCGGTCGACGCGGCCGTCCGGGAGGCGGCAAGGGGCGCGGCAGACGCCGCTGAMSEDTRPERPDDAGPGADDGPRFRLGYVPGATPGKWARTWEQRLRDVPLDLVQIEAAEVAGAVRAGDVDAAIGRLPVDKDVFHAIELYVELPMVVVSRDHLLAATEESERVTTADLDDDVLWVPGDDVLFTGDRPRPGRSPEAYDDGTGTRVTPAPTTTAEAIAWAATGSGVVVVPMSLARLHRRKDVVHRLLDDGPGAPVGLVWLREGLSEETGELVEEMVGIVRGRTANSSRGRARDSGRSSTKAAAGTKTSGAAAKKSGTSGGRGGAAGSRRGASPGGRRGRPGGGKGRGRRRNANANANANA
AK018_013041581ligB_1COG1793DNA ligase BGTGCTCCTGGTCGAGCTGGTCCGCACGCACGCCGCGGTCGCCGCGACGCGCTCCCGCCTGAGCAAGCGCGAGCTGCTGGCCGAGGCGCTGCGGGAGGCCGCTCCGCCGTCGGGGCGCCCGTCCGAGGGCGACGACGGCGACGAGATCGAGATCGTCGCCGCCTTCCTGTCCGGTCGCCCCCGGCAGCGCCGCACCGGCCTCGGATGGCGCACGCTGTCCGACCTGCCGCCTGCGGCGGACGCCGCCACACTGACCCCGGTCGCGGTCGACGCCGCCCTGTCCGCGATGCAGGCGCTCGAGGGCGCGGGCGCCCACACGGCGCGCACGCAGGCCTTCACCGAGCTGTTCTCCCGGGCCACGGCCGACGAGCAACGATTCCTGGCCGGCCTGTTGCGCGGCGAGCTGCGTCAGGGCGCCCTGGACTCGCTCCTGCTCGACGCCATCGCCGCGGCGGCCGACGTCCCGACGAAGGCCGTGCGCCGCGCGGCCATGTTCAGCGCGCTGTCCGGCCCGATCGCGCGGGCCGCGTTGACCGGCGGGGCGCCGGCGCTGGAGGCCTTCGCCCTGCGGGTCGGACGCCCGGTGCGCCCCATGCTGGCCTCGTCCGCACCCGACGTCGACGCCGCCGTCGAACGCTTCGCCGACACGTCCGTCGCGGCGGACGTGAAGCTCGACGGCATCCGCGTGCAGGTGCACGTGGCCGGTGACGACGTCGCCGTGTACACCCGGTCGCTCGACGACATCACCGACCGCCTCCCCGAGGTCGTGGCGCTGGCCCGTTCCCTGGAGGTGGACGCCGCCGTGCTCGACGGCGAGGCCCTCGCCCTCGACGACGCCGGACGGCCCCGGCCGTTCCAGGAGACGTCGTCGCGCACCGGCACCCACGAGGCGGACCCGGGCACGAGCCTGCCGCTGACCGTGAGGTTCTTCGACCTGCTGCACCTCGACGGCACCGACCTCGTCGACGCCCCGGCCCGCGACCGCCTGGCCGCGCTCGACCGGGCGGTGCCGCCGGACGCCGTCGTCCCCCGGCTGGTCGACGCCGACGCCGCGGCGCTGCAGGAGTTCTTCGAACGGGTCGTCGCCGGCGGGCACGAGGGCGTCGTGGTCAAGGACCTCGACGCCCCCTACGCGGCGGGCAAGCGCGGAGCCGCCTGGGTCAAGGTCAAGCCGCGACACACCCTGGACCTCGTCGTGCTCGCCGTCGAGCAGGGGTCCGGGCGGCGGCACGGGTGGCTGTCGAACATCCACCTCGGCGCGCGGGACCCCGCCGGCGACGGGTTCGTCATGCTCGGCAAGACGTTCAAGGGCATGACGGACGAGATGCTCGCCTGGCAGACCGAGCGATTCACCGAGCTCGCCGAGGGCCCGACCGACGGCTACGTGGTGCAGGTGCGCCCGGAGCAGGTCGTCGAGATCGCGTTCGACGGCGTGCAGCGCTCCACCCGCTACCCCGGCGGCGTCGCCCTGCGCTTCGCCCGCGTGCTGCGCTACCGCCAGGACAAGACCGCCGCCGAGGTCGACACCATCGACGCCGTGCGCGGGCTCCTGGCCGGGGGCGGGGCGTCGCCCGGCGACTGAMLLVELVRTHAAVAATRSRLSKRELLAEALREAAPPSGRPSEGDDGDEIEIVAAFLSGRPRQRRTGLGWRTLSDLPPAADAATLTPVAVDAALSAMQALEGAGAHTARTQAFTELFSRATADEQRFLAGLLRGELRQGALDSLLLDAIAAAADVPTKAVRRAAMFSALSGPIARAALTGGAPALEAFALRVGRPVRPMLASSAPDVDAAVERFADTSVAADVKLDGIRVQVHVAGDDVAVYTRSLDDITDRLPEVVALARSLEVDAAVLDGEALALDDAGRPRPFQETSSRTGTHEADPGTSLPLTVRFFDLLHLDGTDLVDAPARDRLAALDRAVPPDAVVPRLVDADAAALQEFFERVVAGGHEGVVVKDLDAPYAAGKRGAAWVKVKPRHTLDLVVLAVEQGSGRRHGWLSNIHLGARDPAGDGFVMLGKTFKGMTDEMLAWQTERFTELAEGPTDGYVVQVRPEQVVEIAFDGVQRSTRYPGGVALRFARVLRYRQDKTAAEVDTIDAVRGLLAGGGASPGDNANANANANA
AK018_01305378yybRCOG1733putative HTH-type transcriptional regulator YybRGTGACCGAGATCCCGTTCGACCCGTACCTCAAGGCCTGCCCGAGCCGCACGGTCCTCGACCGTGTCGCCGACCGGTGGACCGTCCTCGTCGTCGGCGCCCTGGCCGACGGCCCGCAGCGCTTCTCCGCTCTGGCGCAGCGCGTCGACGGCGTCTCGCAGAAGATGCTCACCCAGACGCTGCGCGGCCTCGAGCGGGACGGCCTCGTGCAGCGCACCGTGCACGCCGAGGTCCCGCCGCGCGTCGAGTACACCCTCACCGCCGCCGGGCACGACGTGCTCGGCCCCCTGCAGGCTCTCGAACGCTGGACCCTGGACCACTCCGCCGACGTGCTCGCCGCCCGCGAGGCCTACGACGCCGCCCGCCCGGTGACCGCCTGAMTEIPFDPYLKACPSRTVLDRVADRWTVLVVGALADGPQRFSALAQRVDGVSQKMLTQTLRGLERDGLVQRTVHAEVPPRVEYTLTAAGHDVLGPLQALERWTLDHSADVLAAREAYDAARPVTANANANANANA
AK018_01306645hypothetical proteinATGGCACGTATCACCGTCATCGGAGGCACCGGCTACGCCGGGGAGCACATCGTCCGCGAGGCCGCCCAGCGCGGTCACGAGGTCACCTCGCTGAGCCGGTCCGAGCCCGCCGAGCCCGTCGACGGCGTGCGGTACACCACCGGCTCCGTCCTGGACGAGGCGACCGTGGACAGCGCCGCGGAGGGGGCCGACGTCGTCGTCGCGACCGTCTCCCCGCGCGGCGACATGGCCGGCCAGGTCCGCCCCGCCTACGCCCGGCTCGCCGACCGGGCCGCGGCGCACGGCGTGCGCCTCGCCGTCGTCGGCGGCGCCGGGTCCCTCAAGGTCAGCGAGGACGGCCCGCGCGTCGTCGACGGCCCCGACTTCCCGGACGCGTTCAAGGCCGAGGCGCTGGAGTTCACCGACATCCTCGCCGACCTGCAGGACGCGCCCGAGGGCCTCGACTGGTTCTACCTCAGCCCGCCGGCCGTGTTCGGCTCCTACGCCCCCGGCGAGAAGACCGGCACGTACCGCACCGGCGGTGACGTGCTCCTGGCCGACGACGAGGGGAACTCGTTCATCTCGGGCGCCGACTTCGCGACCGCGCTGGTCGACGAGCTGGAGAACCCGACGCACCGCCGCCGGCGGTTCACCGTCGCGAGCTGAMARITVIGGTGYAGEHIVREAAQRGHEVTSLSRSEPAEPVDGVRYTTGSVLDEATVDSAAEGADVVVATVSPRGDMAGQVRPAYARLADRAAAHGVRLAVVGGAGSLKVSEDGPRVVDGPDFPDAFKAEALEFTDILADLQDAPEGLDWFYLSPPAVFGSYAPGEKTGTYRTGGDVLLADDEGNSFISGADFATALVDELENPTHRRRRFTVASPGPT0020900_491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020900-putative_saccharopine_dehydrogenase-K07118NANA
AK018_01307672msrA_1COG0225Peptide methionine sulfoxide reductase MsrAATGATCTTCGAGAACCTGTTCGGCGGCGGCAAGACGACGATGGTCGCGCCGGAGGACGCCCTGCCGGGCCGGGAGGGGCCGGTGCTGTCCGCTCCCCGTCCGCACACCGTGCTCGGCACCTCGATCGTCGGCCCCTGGGAGCCCGGCACCCGCGTGCTGTACCTCGCCATGGGCTGCTTCTGGGGCGCCGAGGAGATCTACTGGCAGGTCCCCGGGGTGGTGAGCACCGCCGTCGGCTACATGGGTGGCACGACGCCGAACCCCACCTACGAGGAGGTCTGCACCGCGCGGACCGGGCACACCGAGACCGCGATGGTCGCCTACGACCCGGACACGGTGTCGGAGGAGGAGCTGCTGCGGATCTTCTGGGAGCGGCACGACCCGACCCAGGGCTTCCGCCAGGGCAACGACGTCGGCACCCAGTACCGCTCCGGCATCTACTGGACGACGCCGGAGCAGGCCGAGGCCGCACGGTCCACGGCCGAGCGCTACGGCGAGGTGCTGGCCGCGAAGGGCTACGACCCGATCACCACCGAGCTGCGCCCGGCCGCCGAGGCGGGCCCGTTCTTCTACGCCGAGGACTACCACCAGCAGTACCTGTCCGACGCGAAGAACCCGCACGGCTACCGCTGCCACGCCACGACCGGCGTGCCGTTCCCCGCGGCCGCCTGAMIFENLFGGGKTTMVAPEDALPGREGPVLSAPRPHTVLGTSIVGPWEPGTRVLYLAMGCFWGAEEIYWQVPGVVSTAVGYMGGTTPNPTYEEVCTARTGHTETAMVAYDPDTVSEEELLRIFWERHDPTQGFRQGNDVGTQYRSGIYWTTPEQAEAARSTAERYGEVLAAKGYDPITTELRPAAEAGPFFYAEDYHQQYLSDAKNPHGYRCHATTGVPFPAAAPGPT0013065_1676DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013065-msrA-K07304NANA
AK018_013081590COG0025putative Na(+)/H(+) exchangerATGTCGTCGGTCGCCCTGTGGGGAGTCATCGTCGCCGGGGTGGTGGTGCTGACCCCGCTCGCGGACCGCGTCCGCGTCCCGCTGCCGGTGCTGCTGACGCTGTTCGGCATCGCGCTGCCGCTGTTCCCGGCCGTGCCCGCCCTGCGCCTCTCCCCCGAGATCATCCTGCCGGTGGTGCTGCCGCCGCTGCTGTTCGCCGCCACGCAGCGCTCGACGGTGCGGGAGTTCCGCAGCCAGTCGCGGCCCATCCTGCTGACCGCCGTCGGGCTGACCCTCGCCTCGGCGGGACTGGTCGCCGTCGTCGCGCACGCCGCGGGCGCACCGTGGGCGGTCGCCTGGGTGCTCGGGGCGATCGTGGCCCCGCCCGACCCGGTGGCGGCGACGGCCGTGGCCCGCCGGCTGCGGCTGCCCGGCAGGGTCGTCACCGTGCTCGAGGGCGAGGGGATGTTCAACGACGCCACCGCGCTGGTGGTCTACCACGTGGCCGTCGCCGCGGTGGTGGCCGGGTCGGTCACGGCCGGGGAGGTCGGGCTCGACCTGCTGCTCGCCGTCGTCGTCGGGGTCGCCGTGGGCCTGGCCGCGGGCTGGCTGGGCCACGTGGTGCTCGGGCGGCTGCACGTGCCCGCCGCGGAGACCACCGTGACGATCGCCCTGCCGTTCGCCGCCTACCTGCTGGCCGAGGAATGGCTCGGCTCCGGCGTGCTGGCGGTGCTCACCCTCGGCCTCGTGCTGCGGTCGGTGTCGCACGCGTCGGTGACGTCCGGCGGCTGGCTGCTCGGCCGGGCGGTGTGGGAGTACGCGGACTACCTGATCACCGGGGTCGTGTTCGTGCTCATCGGCTTCGAGCTGACGTCGGTGCTGGACGGCAGCCCGGTGGAGCGGACCGCGCTCCCGCTGGCGCTCGCCGTCGTCGCGGTGCTCGTCGTGCTCCGGTTCGTCTGGATGTTCCCGGCGCTGTGGTGGCTGGAACGCGGGATGGCCTCGCGCGCCCGCCAGCAGGGTGCTCCGCCCGAGGTGGCGGGCATCGGGGCGTTCACCCGGCGGGAGACGACCGTCGTCTCGTGGGCCGGGATGCGCGGCGTCGTCTCCGTCGCCTCGGCGCTCGCCCTGCCGCACGTGGTCGCCTCCGGGGACGACTTCCCGCTGCGCGACACCGTCGTGTTCGTCGGGCTGATGGTGGTGCTGGCGACCCTGGTGCTGCAGGGGCTGACGCTCGCGCCGGTGGTGCGGTGGCTGGGCGTCGGGCGGGCCGGCGACGGGACGGCCGAGATCGCCCGGCTGCGCGAGGAGGCGACGGTGGCGGCGCTGGAGGCCGTGCGGGTCCGGACGGACGTCCCGGACCCGGTGCGCGAGGCCGTCGCCCAGCAGTACGAGGGGTACCTGACCGCCCAGCGGGCACTGTCCCGGGCCCGCGCCCAGGGGGACGGCGACGACCGCTACGACGAGCAGGTCGACGCGCTGCTGCGCGACGCCGTCGAGATCGAGCGGGACGTGTGCGTCCGGGCGCGCAACGAGGGGCTCGTGAGTCCCGAGGTCGCCGACGAGGTGCTCGCCGACGTCGAGGCCCGCGCGGTACGCGACCTCGACTGAMSSVALWGVIVAGVVVLTPLADRVRVPLPVLLTLFGIALPLFPAVPALRLSPEIILPVVLPPLLFAATQRSTVREFRSQSRPILLTAVGLTLASAGLVAVVAHAAGAPWAVAWVLGAIVAPPDPVAATAVARRLRLPGRVVTVLEGEGMFNDATALVVYHVAVAAVVAGSVTAGEVGLDLLLAVVVGVAVGLAAGWLGHVVLGRLHVPAAETTVTIALPFAAYLLAEEWLGSGVLAVLTLGLVLRSVSHASVTSGGWLLGRAVWEYADYLITGVVFVLIGFELTSVLDGSPVERTALPLALAVVAVLVVLRFVWMFPALWWLERGMASRARQQGAPPEVAGIGAFTRRETTVVSWAGMRGVVSVASALALPHVVASGDDFPLRDTVVFVGLMVVLATLVLQGLTLAPVVRWLGVGRAGDGTAEIARLREEATVAALEAVRVRTDVPDPVREAVAQQYEGYLTAQRALSRARAQGDGDDRYDEQVDALLRDAVEIERDVCVRARNEGLVSPEVADEVLADVEARAVRDLDNANANANANA
AK018_01309612hypothetical proteinATGGCGACGGAGCCCACCGACCCCTTGATCCTGCCGGACGCGTCCGCGTGGCGCGCCTGGTTGGACGACCACGAGGACACGGCGACCGACGGCGTCTGGGTCGTGCTCGCCCGCCAGGGTCGGCCGGGGCCCACCGGCCTGACCCGCGACCTGGCGCTCGAGGAGGCCCTGTGCAGCGGCTGGATCGACGCCCAGAGCCGCCGTCGCGACGAGGACACCTCCCTGCAGCGCTACTGCCCGCGCCGACGGCGCAGCACCTGGTCGGTGCGCAACCGCGAGATCGCCGACCGGCTCGTCGCCGAGGGCCGCATGCGCCCCCGCGGACAGGCCGAGATCGACCGCGCGCACCAGGACGGCCGGTGGGACGCCGCCTACGGGGGAGCCGTCACGATCGAGCTCCCCGCCGTGCTGGCCGACGCGCTGGCCGCCAGCCCGCGGGCCGCCGTGGCGTGGGGACGGCTCAGCGCGCAGAACCGCTCGACCATCCTGCACCGACTGTCCACGGCGCGGCGCGAGGAGACCCGGACGCGGCACGTCGCGCGTTTCGTGGCGATGCTCGAACGGGGCGAGACACCCCACCCGCAACGGCGCAGCGTGCTCCCGGACGACTGAMATEPTDPLILPDASAWRAWLDDHEDTATDGVWVVLARQGRPGPTGLTRDLALEEALCSGWIDAQSRRRDEDTSLQRYCPRRRRSTWSVRNREIADRLVAEGRMRPRGQAEIDRAHQDGRWDAAYGGAVTIELPAVLADALAASPRAAVAWGRLSAQNRSTILHRLSTARREETRTRHVARFVAMLERGETPHPQRRSVLPDDNANANANANA
AK018_013101251COG0628Putative transport proteinGTGACCAGCCCGGCAGGACCCGAGAGCCGAGACGGCGACGCCGTCCCCGCCAGCGTGCGCGCCGCGGCCGCGTGGTCCTGGAGGCTGCTGCTGATCGCCGCGGGGGTCGCCGGGGTCGTCTGGCTGCTCGGCCAGCTGAAGACGATCGCCGTGCCGGTCGCCGTGGCTCTGCTCGTGACGATCCTGCTCCGGCCGATGCGGCGGATGCTCGAGAACGCCGGTGTACCGCGTGGTGCGGCGACGGCGCTGTCGCTGGTCGCTCTGATCGTCTTCGTCGCGGGTCTGGTCACGCTGGCCGGCTCCCAGATCGTCGCCGGGTTCCAGGACCTGTGGGACCAGGCGGTCCAGGGGTTCCAGGAGTTCGTCGACTGGTTGTCGGAGGGCCCGCTCGGCCTCGACGCCCAGCAGCTCGCGAACTACACGGACCAGCTGCAGGACCTGGTGGCCAGCCAGAGCTCGAATCTCATCACCGGGGCGCTCGGCGCCGCGAGCACCGTGGGCCACGTCCTGGTGGGCATCATCATCGCGATCTTCTGCACGATCTTCTTCCTCCAGGACGGCCGGAACATCTGGACCTGGGTGGTCAACCTGCTCCCGCTGCCCGCGCGCGAGAAGGTGCACCAGGCCGGACGCCGCGGCCTGGTGACGCTGTCGTCGTACGTGCGCACCCAGATCCTCGTCGCCCTGGTCGACGGCGTCGGCATCGGGATCGGCGCGGCGTTCTTCGTGCCGTCCCTGGCGCTGCCGATCGGCATCCTCGTGTTCGTCGGCTCCTTCGTCCCCATCCTCGGTGCCATCGTCACCGGCGCGATCGCCACCGCCGTCGTGCTCGTGGCCCAGGGCTGGGTCGCCGCGTTGATCATGCTGGGCATCGTGCTGCTCGTGCAGCAGCTCGAGAGCCACATCCTGCAGCCGCTGCTCATGGGTCACGCGGTCTCCCTGCACCCGGTGGCGGTCGTGCTCGTCGTCGCCGCCGGCAGCCTGGTGGCCGGGCTCGTCGGCGCCCTGTTCGCGGTGCCGCTCGCCGCCGTGATCAACACGGTCGTGCAGTACCTGCACGGCCACGACAAGTTCCCCGAGCTCGGCACCGCCGACCACGTCCCGCTGCTGCGCAAGCAGGCCTTCGCCGACCTGCCCGGGACGCTGCTGTGGTCGAACCGCGGCGGACGCGGGGACAACGCCCCGCAGGACGGCCCCGCCGACCCGGGCGGCGGTTCCGGCGCCACGGGTCGCCGCGGCCCGTCGACGTGAMTSPAGPESRDGDAVPASVRAAAAWSWRLLLIAAGVAGVVWLLGQLKTIAVPVAVALLVTILLRPMRRMLENAGVPRGAATALSLVALIVFVAGLVTLAGSQIVAGFQDLWDQAVQGFQEFVDWLSEGPLGLDAQQLANYTDQLQDLVASQSSNLITGALGAASTVGHVLVGIIIAIFCTIFFLQDGRNIWTWVVNLLPLPAREKVHQAGRRGLVTLSSYVRTQILVALVDGVGIGIGAAFFVPSLALPIGILVFVGSFVPILGAIVTGAIATAVVLVAQGWVAALIMLGIVLLVQQLESHILQPLLMGHAVSLHPVAVVLVVAAGSLVAGLVGALFAVPLAAVINTVVQYLHGHDKFPELGTADHVPLLRKQAFADLPGTLLWSNRGGRGDNAPQDGPADPGGGSGATGRRGPSTNANANANANA
AK018_013111221tdcB_2COG1171L-threonine ammonia-lyaseGTGAACTCACCGACACCCCTGGACCGAGTGACCCTCGCCGACGTCGAGGCAGCCGCCGAGCTGCTCCACGGGGTCGTGACCCGTACCCCGGTGCACCCCTTCCGGGCGCTGACCCAGCTCGCCGGCGCCGACGTCGTCCTCAAGTGCGAGAACCTGCAACGCGCCGGATCCTTCAAGATCCGCGGCGCCTACACCCGACTCAGCCGGCTCACCCCCGAGGAGCAGCGCGCCGGCGTGGTCGCGGCCTCGGCCGGCAACCACGCCCAGGGCGTCGCGCTCGCGGCCGAGAAGCTGGGCATCCCGGCCGTCGTCTACATGCCCGTCGGCGCGTCCGTCCCCAAGCTCGAGGCGACCCGCGGCTACGGCGCGGAGGTGCGCCAGCTCGGCAACAGCGTCGACGAGGCGCTGTCCGCGGCCCGCGCGGAGGCCGCCCGCACCGGCAAGGTCCTCATCCACCCCTTCGACCACCCCGACGTCGTCGCCGGCCAGGGCACCGTGGCCCTGGAGATCCTGGAGCAGGTGCCCGACGTCGGCACCGTCGTCGTGCCGCTCGGCGGCGGCGGTCTCGTGGCCGGGATCGCCACCGTGCTGGCCGAGGTCGCGCCCCACGTGAAGGTCGTCGGCGTGCAGGCCGCCTCGGCCGCGGCCTACCCGGCCTCCCTGGCGGCCGGACGTCCGATCGCCGGCGACCTGGAGTCGACGATGGCCGACGGCATCGCCGTCGGCATGCCGGGCGACGTGCCCTTCGAGGTGCTGCACCGCCTGGGGGTCGAGGTCCGGACGGTCACCGAGGCGGAGATGTCGCGAGCGCTCCTGCTCGTGGCCGAGCGCGGCAAGCTCGTCGTCGAGCCGGCCGCCGCGGCCGCCGTCGCGGCCGTGTCCGCGTCACCGGGCGCCTTCACCGGCACCGTGGTGCCGGTGCTCTCCGGCGGGAACATCGACCCGCTGCTGCTGCAGCGCGTGGTCCAGCACGGTCTCGTGGCGGCCGGCCGCTACCTGCAGATCTCGGTGCGGCTGTCCGACGAGCCGGGGGCGCTGGCCTCGCTGCTGGACACGGTGGCCGCCGCCGAGGGGAACATCGTGCGCGTCGACCACCGGCGCACCGACACCACCCTGGAGGTCTCCGAGGTGCTGGTGACCCTGCAGCTCGAGACCACCGGTCCCGAGCACTGCGCGGCGGTGCTGGACCGGCTGCGGCGGGACGGCTACCAGGTCACCTGAMNSPTPLDRVTLADVEAAAELLHGVVTRTPVHPFRALTQLAGADVVLKCENLQRAGSFKIRGAYTRLSRLTPEEQRAGVVAASAGNHAQGVALAAEKLGIPAVVYMPVGASVPKLEATRGYGAEVRQLGNSVDEALSAARAEAARTGKVLIHPFDHPDVVAGQGTVALEILEQVPDVGTVVVPLGGGGLVAGIATVLAEVAPHVKVVGVQAASAAAYPASLAAGRPIAGDLESTMADGIAVGMPGDVPFEVLHRLGVEVRTVTEAEMSRALLLVAERGKLVVEPAAAAAVAAVSASPGAFTGTVVPVLSGGNIDPLLLQRVVQHGLVAAGRYLQISVRLSDEPGALASLLDTVAAAEGNIVRVDHRRTDTTLEVSEVLVTLQLETTGPEHCAAVLDRLRRDGYQVTPGPT0001960_4066DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
AK018_01312411ectC_1L-ectoine synthaseATGCTCGTTCGCACGCTCGACGAGATCACCGACACCGACGCCGACATCAAGACCGAGAACTGGCGTTCCAAGCGCATCATCCTGGCCAAGGAGGGTGTCGGCTTCTCCGTCCACGAGACCACGCTGTACGCGGGGACCGACAACTACTTCTGGTACGCGAACCACTACGAGGCCGTGTTCATCACCTCGGGCGAGGGTGAGATCGAGGACCTCGCCACGGGTGAGGTGCACGAGCTCAAGCCGGGGACGCTGTACCTGCTCAACGACCACGACAAGCACAAGGTGCGGCCGAAGACCGACATCACGTGCGTGTGCGTGTTCAACCCGCCGGTCACCGGCCGCGAGGTCCACGACGAGAACGGCGTGTACCCGCTGATCACCGAGCCGGAGTCCCAGCCCGCCGCCGGCTGAMLVRTLDEITDTDADIKTENWRSKRIILAKEGVGFSVHETTLYAGTDNYFWYANHYEAVFITSGEGEIEDLATGEVHELKPGTLYLLNDHDKHKVRPKTDITCVCVFNPPVTGREVHDENGVYPLITEPESQPAAGPGPT0014060_427DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014060-ectC-K06720NANA
AK018_013131302ectB_1Diaminobutyrate--2-oxoglutarate transaminaseGTGACAACCCTGTCCGCACCGACCCCCGACGCGTCCTCCCACGACGACCCCACGGGTTTCTCTGCCCTCGAGTCCGAGGTCCGCAGCTACTCCCGTGCCTGGCCTGTGGTGTTCGACCGCGCGACCGGCGCGACGGTCTTCGCCGAAGACGGTACGGCCTACCTGGACTTCTTCGCGGGCGCCGGCTCGCTCAACTACGGGCACAACAACCCCGTGCTGAAGAAGGTCCTGATCGACTACCTCGCCGACGACCGCATGGTCCACTCGCTGGACATGTTCACGACCGCACGTCGCGAGTTCCTCGAGACCTTCCGCTCGCACATCCTCGAGCCGCGCGGCCTGGACCACAAGGTCATCTTCCCCGGCCCGGGTGGCGCCAACTCCGTCGAGGCGGCCCTGAAGCTGGCCCGCAAGGTGACCGGCCGCGAGTCCATCATCAACTTCACCAACGCGTTCCACGGCATGACGCTGGGCGCGCTGTCGGTGACGGGCAACTCCATGAAGCGCGGCGGCGCGGGCATCCCGCTGGTCCACGCGACGCCGATGCCCTACGACGACTACCTCGCCGGTGCCGAGGACGACTTCGCCTACCTGGAGCGTCTGCTCCAGGACGCCGGCAGCGGTCTGAACGAGCCGGCGGCGATCATCGTCGAGTCGGTGCAGGGCGAGGGCGGCATCAACGCGGCCCGCGCCGAGTGGCTGCGCGCGCTGTCCGACCTGTGCAAGCGCCACGAGATCCTGCTCATCCTGGACGACATCCAGATGGGCTGCGGCCGCACCGGCGGGTTCTTCTCCTTCGAGGAGGCCGGGATCTACCCGGACATGATCTGCCTGTCGAAGTCGATCTCCGGCTACGGCCTGCCGCTGGCCATCACGCTGGTGCGCCCCGAGCTCGACATCTTCGAGCCCGGCGAGCACAACGGCACGTTCCGCGGCTTCGCCCCGGCCTTCGCCACGGCGTCCGAGGCCATCCGCACCTACTGGTCGGACGACACCCTCGAGAAGGAGACCCTGGCCAAGGGCGCCATCATCGAGGGCTTCTTCAACGAGATCGTGGCGCGCTACCCGAAGCTCGACCTGGCCAGCAAGGGTCGCGGCCTGGCCCGCGGTCTGCAGTTCCCCGACGGCGAGACGGCCGACAAGGTGACCACCGGCGCGTTCGAGCGTCACATGCTCGTGGAGACCTCCGGTCCTGAGGACGAGGTCGTCAAGCTGCTGCCGCCGCTGACCATCACCGAGGACGAGCTGCGTCAGGGTCTGGCGATCCTGGACGAGGCCATCACGGCCGCTCTGGGTTCCTGAMTTLSAPTPDASSHDDPTGFSALESEVRSYSRAWPVVFDRATGATVFAEDGTAYLDFFAGAGSLNYGHNNPVLKKVLIDYLADDRMVHSLDMFTTARREFLETFRSHILEPRGLDHKVIFPGPGGANSVEAALKLARKVTGRESIINFTNAFHGMTLGALSVTGNSMKRGGAGIPLVHATPMPYDDYLAGAEDDFAYLERLLQDAGSGLNEPAAIIVESVQGEGGINAARAEWLRALSDLCKRHEILLILDDIQMGCGRTGGFFSFEEAGIYPDMICLSKSISGYGLPLAITLVRPELDIFEPGEHNGTFRGFAPAFATASEAIRTYWSDDTLEKETLAKGAIIEGFFNEIVARYPKLDLASKGRGLARGLQFPDGETADKVTTGAFERHMLVETSGPEDEVVKLLPPLTITEDELRQGLAILDEAITAALGSPGPT0014050_948DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836NANA
AK018_01314540ectA_1L-2,4-diaminobutyric acid acetyltransferaseATGACGATCCCAGAGACAGGTCCGAACGCCCCCACGACCGCCGACTCGGTGTCAGGGGCGCCCGATGCAACCCTCACGATCCGTCGACCGGACGTCTCCGACGGCGCCGCCATGTGGCGCGTCGCCCGCGACTCCGGCTCGCTCGATCTCAACTCCTCCTACGCCTATCTGCTGCTGGCCGACCACTTCGCCGACACGTGCCGGATCGCCCTCATGGGCGACGACGTCGTCGGCTTCGTGACCGGCTACCGGCTGCCGGCGGACCCGACCCGCTACTTCTTGTGGCAGGTCGCCGTCGACGAGCGCGCCCGGGGCCACCGCCTCGCCGGCCGACTCATCGACGCCGTGATCGACGACCAGCCGGAGGTGACCTCCCTGGTGACCACCGTGACCGAGGACAACACGTCCTCCCGCCGCGTCTTCCAGCGGTGGGCCGAGCAGCGCGGAGCGACCCTCGACGTGGTCACCGGGTTCGAGGCGCACCACTTCCCCGACGGCCACGAGGCCGAGCCCCTGCTGGTGATCGACGGCATCCGCTAAMTIPETGPNAPTTADSVSGAPDATLTIRRPDVSDGAAMWRVARDSGSLDLNSSYAYLLLADHFADTCRIALMGDDVVGFVTGYRLPADPTRYFLWQVAVDERARGHRLAGRLIDAVIDDQPEVTSLVTTVTEDNTSSRRVFQRWAEQRGATLDVVTGFEAHHFPDGHEAEPLLVIDGIRPGPT0014055_73DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014055-ectA-K06718NANA
AK018_01315483greA_1COG0782Transcription elongation factor GreAGTGACCGAGAGCAACGTCACCTGGCTCACCCAGGAAGCTCACGACCGGTTGACGGCGGAGCTGGAACACCTCTCCGGACCTGCCCGGACCGCAATCGCCGAGCGCATCGCCGCCGCCCGTGACGAGGGCGACCTCAAGGAGAACGGCGGGTACCACGCCGCGCGCGAGGAGCAGGCGAAGAACGAGGCCCGGATCCGCGAGCTCACCGAGAAGCTGCGGCACGTCGCCGTCGGCCGGCCCGCCGACGACGGCACGGTCGAGGCCGGCATGGTCGTGACCGCGGAGGTCGCCGGGGACGAGATGACGTTCCTGCTCGGCTCCCGCGAGATCGCCGGCACCACCGAGCTGGACGTGTACTCCCCCACCTCGCCCCTCGGCGCCGCGATCGACGGCAAGAAGGTCGGCGACGAGGTCAGCTACACCGCCCCCAACGGGCGGGACATCCCGGTCAAGGTCACGTCCGCGAAGCCGTTCTCCGGCTGAMTESNVTWLTQEAHDRLTAELEHLSGPARTAIAERIAAARDEGDLKENGGYHAAREEQAKNEARIRELTEKLRHVAVGRPADDGTVEAGMVVTAEVAGDEMTFLLGSREIAGTTELDVYSPTSPLGAAIDGKKVGDEVSYTAPNGRDIPVKVTSAKPFSGPGPT0030495_1540PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TRANSCRIPTIONAL_CONTROLPUTATIVE-TRANSCRIPTIONAL_CONTROL-1,PGPT0030495-greA-K03624
AK018_01316438hypothetical proteinATGAGCCAGACGCAGCATCCTGCCGCCCCCGCCGACCGGTACGGCACCGCCGGACCCGCCGGCGGCTCGGCCCGCCGGGGCGGGCCGCTGGGACGGGGCGCGAAGGCGGCGATCGCGGCGGCCCTGACGGCGGCGGTCGCCGGCACGGCCTGGTTCGCGACGCTGCGGCAGGCCGACGACCCGGTCGCCCACGACATGGTGTCGTTCGACGTCCTCGGCCCCGAGGAGGTCGAGGTCACGTTCCAGGTGCACATGCCGGTCGGGACGACGGCGACGTGCACGATCGAGGCGCTGGCGCCCAGCTATGCCCAGGTCGGCACGCTGGACGTCCCGGTCGGCCCGGCGCAGTCCCGGACCAGCGCCTACGAGGTCACGCTCGGGACCTCCCAGGAGGCGACGTCGGCCGTCGTCGCCGGGTGCACCCCGACCGCACCGTGAMSQTQHPAAPADRYGTAGPAGGSARRGGPLGRGAKAAIAAALTAAVAGTAWFATLRQADDPVAHDMVSFDVLGPEEVEVTFQVHMPVGTTATCTIEALAPSYAQVGTLDVPVGPAQSRTSAYEVTLGTSQEATSAVVAGCTPTAPNANANANANA
AK018_01317897mca_1COG2120Mycothiol S-conjugate amidaseTTGACCGGCGAGCCACTGCGCCTGATGGCCGTGCACGCACACCCCGACGACGAGTCGAGCAAGGGGGCCGCCACCACGGCCCGCTACGCCGCCGAGGGCGTGGAGGTGCTGATCGTCACGTGCACCGGCGGCGAGCGCGGCGACGTGCTCAACCCGTCGTTCGAGGTGCCGGCGGGGCACGAGTTCGAGACGGTCGAGGGCCGCCTGGCCGTGCGACGCCTGGAGATGGCGGCCGCCGCCGAGGCGCTGGGCGTGCGTCAGCACTGGCTGGGGTTCGTCGACTCCGGTCTGCCCGAGGGCGACCCGAAGCCGCCGCTCCCGGAGGGCTGCTTCGCCCTCGTGCCGCTGGAGGAGGCCTCGGCGCCGCTGGTGGAGCTCGTGCGCGAGTTCCGCCCGCACGTCATGACGACCTACGACCCCACGGGCGGCTATCCCCACCCGGACCACATCAAGTGCCACGAGGTGGCGTTCGAGGCCTACCACGCGGCCGGTGACGCGAGCCGGTACGTCGTCGACGGCGGCGCGGACGCCTGGACGCCCTCGAAGCTCTACTACAACCACGGCTTCTCCCTGGACCGGCTGCGCGCCGTGCACGAGGCGATGGAGGGCGCCGGGCTGGAGTCGCCGTTCGGCGACTGGATCGAGTCCCGGGCCGCGCGCGAGATCCCGGAGCGGGAGGTGACCACGCGCATCGAGGTGGCCCCGTACTTCGCCCGTCGCGACGCCGCGCTGACCGCGCACGCCTCGCAGATCGACCCCGACGGGTTCTTCTTCGCCGTCCCCCGCGACATCGAGGCGGACGTGTGGTCCACCGAGGACTTCGAGCTCGCGGACTCCCGCGTGCCGGTCAGCACGCCGGAGGACGACCTCTTCGCCGGCGTGCGGACGGAGTCCTGAMTGEPLRLMAVHAHPDDESSKGAATTARYAAEGVEVLIVTCTGGERGDVLNPSFEVPAGHEFETVEGRLAVRRLEMAAAAEALGVRQHWLGFVDSGLPEGDPKPPLPEGCFALVPLEEASAPLVELVREFRPHVMTTYDPTGGYPHPDHIKCHEVAFEAYHAAGDASRYVVDGGADAWTPSKLYYNHGFSLDRLRAVHEAMEGAGLESPFGDWIESRAAREIPEREVTTRIEVAPYFARRDAALTAHASQIDPDGFFFAVPRDIEADVWSTEDFELADSRVPVSTPEDDLFAGVRTESNANANANANA
AK018_01318402hypothetical proteinATGCCGACGGCGCTGCTCGCGCGGGTCGCGGCGGACGTCGCACCGGCCCCGTCGCCCAGCCCGACGGCGCGGGTGCTGGAGGACTGGGAGGTCACCCCGGGTCTGGAGGGCTTCCTCGCGACCTTCGCGATCGCCGTCGCCGCCGTCCTGCTGTTCCTGTCGCTCAGCCGTCACCTGCGCAAGGCGGACAACTACGCGCGCGAGCACGGCATCGAGATCCCGGAGCGGCGCAGCATCGGCATCCGGCGCGGCGCGACCGGCGACGGCGGGCCCTCCGAGGCCGCGCCGACCTCGCCCGACGTCGCTCCCGGCACGGCGGCCGACGGGTCCGCCGGCGAGTGGCAGCAGGACGCCGGCACGCCGGACGCCGGGTCGCCGGACGACGGTCGGGAGCCGCGATGAMPTALLARVAADVAPAPSPSPTARVLEDWEVTPGLEGFLATFAIAVAAVLLFLSLSRHLRKADNYAREHGIEIPERRSIGIRRGATGDGGPSEAAPTSPDVAPGTAADGSAGEWQQDAGTPDAGSPDDGREPRNANANANANA
AK018_01319822ybeM_1Deaminated glutathione amidaseATGACGGCGCGCGTCACGGTCGCCCAGGTCACGATCGCCGACGACCACGAGGCCAACCGGTATCTCGTCGTCGACGCGTTCGCCCAGGCCGCGAAGCTCTCGGCGGACCTGCTGGTCCTGCCGGAGTACGCCTCCGGCTACCACCGCTCGGGCGTGGGGATCGAGCACGCCGAGGACCTCGACGGCCCGTTCGTGAGCCTCCTGCGCGAGCAGGCGGCGGCCACCGGCGTCGCCGTGATCGCCGGGGTCACGCTGTCCGGGGACCAGCCCGGGCCCGACGGCGGGCCCCGCAAGGGCGTCAACGCCGTGGTCGCGGTCGACGGTGCCGGCGAGCTGGTCGGCGTCTACCGCAAGGTGCACCTGTACGACGCCTTCGGCACCCGGGAGTCCGACCGGCTGCAGGCGGGGCCCGTGGACGCCGAGCCCCTCACGATCCGCGTCGGCGACCTGACGTTCGGCGTCATCACCTGCTACGACCTGCGGTTCCCGGAGTCGGCGCGGCGCGTCGTCGACGCCGGGGCGGACGTGCTCGTGGTGCCCGCCGCCTGGGTGGCGGGCCCGCTGAAGGCCGAGCACTGGCGCACCCTGCTCACCGCCCGCGCGATCGAGAACACGGTCGTGACCATCGGCGTCGGCATGGCGGGCAAGGGCGTCACGGGCCGCTCCACGCTCGTGGGGCCGGACGGCGTCGTCGGCCTCGAGATGGACGACAAGCCGCAGTACCGGACGGTCGACCTCGACGCCGAGGAGCTGACGAGGGCCCGTGAGGCCAACCCCTCCCTGGTGAACCGGCGCTACACCGTCGTCCCCCGCGAGGCCTGAMTARVTVAQVTIADDHEANRYLVVDAFAQAAKLSADLLVLPEYASGYHRSGVGIEHAEDLDGPFVSLLREQAAATGVAVIAGVTLSGDQPGPDGGPRKGVNAVVAVDGAGELVGVYRKVHLYDAFGTRESDRLQAGPVDAEPLTIRVGDLTFGVITCYDLRFPESARRVVDAGADVLVVPAAWVAGPLKAEHWRTLLTARAIENTVVTIGVGMAGKGVTGRSTLVGPDGVVGLEMDDKPQYRTVDLDAEELTRAREANPSLVNRRYTVVPREANANANANANA
AK018_01320798hypothetical proteinGTGACCGGACCCGCGCCGCACGAACGGCGGCACGTCGCCGTCCCCGACGCTGCCGACGTCGGCTCGGCGGCCAAGGACGCCGCCCGCGACGCCGCCCACGGCGCGCGCGAGACCGTCTCCGGCGTCGTCCAGACCGTCGCGGTGGGCGCCACCGCACAGGCCCGGCGGCTCAAGCCGAAGCTGCGCGGATGGATCCACGCCGTGACCACGCCGCTCGCCCTGGCCGCCAGCATCGTGCTCGTCGTCCTGGCCGAACCGGTGGCCGGCAAGGTCGCGGCCGCGATCTTCGGCCTGAGCGCCCTGATGCTGTTCGGCACCAGCGCCGTGTACCACCGCGGCACCTGGTCGCCGCGGGTCGAGGCCGTGCTGCGCCGGATGGACCACGCCAACATCTTCCTCATCATCGCGGGCACGTACACCCCGCTGGCCGTCGCGCTCCTGGACCAGCGCTCGGCGACGATCCTGCTCACCATCGTGTGGAGCGGCGCCGTCGCCGGCCTCCTCGCACGCGTGCTGTGGATGAACGCGCCGCGCTGGCTGTACGTGCCGGTCTACGTCGCCCTCGGATGGGTCGCGGTGGCCTATCTCGGCCAGTTCGGCGCCACGGGCGGACCCGCCGTCGTCTGGCTCGTCGCCGGCGGCGGCCTGGCCTACACCCTCGGCGCGGTCGTCTACGGCACCAAGTACCCCGACCCCTCGCCGCGCTGGTTCGGCTTCCACGAGATCTTCCACGTGCTGACGGTGATCGGTTTCGCCTGCCACACCGTGGCGATCTACCTGGCCTCGCTCGCCGTCTGAMTGPAPHERRHVAVPDAADVGSAAKDAARDAAHGARETVSGVVQTVAVGATAQARRLKPKLRGWIHAVTTPLALAASIVLVVLAEPVAGKVAAAIFGLSALMLFGTSAVYHRGTWSPRVEAVLRRMDHANIFLIIAGTYTPLAVALLDQRSATILLTIVWSGAVAGLLARVLWMNAPRWLYVPVYVALGWVAVAYLGQFGATGGPAVVWLVAGGGLAYTLGAVVYGTKYPDPSPRWFGFHEIFHVLTVIGFACHTVAIYLASLAVNANANANANA
AK018_01321762COG0020(2Z,6E)-farnesyl diphosphate synthaseGTGCGCCTGCCCCATCCGCTGTACAGCCTGTACGAGCGTCGGCTCGCGGCGTCGCTGCCGTCCGCGCAGATGCCTCGGCACGTCGGGGTCATCCTCGACGGCAACCGCCGCTGGGCCAAGTCGTTCGGCGAGACCGCCGCCACCGGGCACCGTCGTGGTGCCGACAAGATCACCGAGTTCCTGGGCTGGGCCGAGGAGCTCGGCATCGAGGTCGTCACCCTGTGGATGCTGTCCACGGACAACCTCGCCCGCTCCGACGACGAGCTGGCCGATCTGCTCGACATCATCTCCGACGCCGTGCGCGACCTGGCCGAGTCGGGGCGGTGGCGGCTGCGGATCGTGGGCCGGCTGGACCTGCTCCCCGAGCGTCTGGTGGGCACGCTGCGCGAGGCCGCGGCCGCGACCGCGGACGTCGAGGGGCTGCACGTCAACGTCGCCGTCGGGTACGGGGGACGGCACGAGATCGCCGACGCCGTGCGCTCCTACCTGCGCGCCGAGGAGGCGCGTGGCACCACGCTCACCGAGCTGGCGGAGCGGCTCGACGTCGAGGACATCGCCGCCCACCTGTACACCAAGGGTCAGCCCGATCCCGAGCTGGTGATCCGCACCTCCGGCGAGCTGCGGGTGGGCGGGTTCCTCATGTGGCAGAGCGCGCACAGCGAGCTGTCGTTCTGCGAGGCGTACTGGCCCGACTTCCGCCGGGTGGATTTCCTGCGTGCGCTGCGCGACTTCTCGCGTCGTGAGCGCAGACTGGGTCGGTGAMRLPHPLYSLYERRLAASLPSAQMPRHVGVILDGNRRWAKSFGETAATGHRRGADKITEFLGWAEELGIEVVTLWMLSTDNLARSDDELADLLDIISDAVRDLAESGRWRLRIVGRLDLLPERLVGTLREAAAATADVEGLHVNVAVGYGGRHEIADAVRSYLRAEEARGTTLTELAERLDVEDIAAHLYTKGQPDPELVIRTSGELRVGGFLMWQSAHSELSFCEAYWPDFRRVDFLRALRDFSRRERRLGRPGPT0007535_608DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007535-uppS-K12503NANA
AK018_01322483hypothetical proteinATGACCACGCAGCCGGTTCCCGGGTCGGCGCGACGCGCCGCGACGACCTGGGAGGCGTTGTTCCGCGCCCAGGTCACGCTGATGCGCCGGTTCCAGGCCGACGACGTCTGGGTCGAGCTGTCCATCCGTGAGTACGACGTGCTGTTCACGCTGTCCCGTGCGGAGGGCGGCAGGATGCGCCTGCGCGACCTCAACGAGAACGTGCTGCTGGCCCAGTCGTCGCTGTCGCGGATGGTCGAGCGGCTGGAGGACCGGGGTCTGGTGACCCGGGCGCCGGCACCGGACGACGCCCGCGGCACGCTGGTGGGGCTGACCGACGCCGGGAGCCGGCTGCAGCGCCAGGTCGGACGCCGGCACGTGCGCGCGATGGGCCAGTACGTGGGCCGTGCTCTCGACGACGACGAGCAGGCCGAGCTCGTGCGCCTGCTGACCAAGCTGCGCGCGGCCCAGGCCGCGATCCCGGACTGGACCCCGCACGATTGAMTTQPVPGSARRAATTWEALFRAQVTLMRRFQADDVWVELSIREYDVLFTLSRAEGGRMRLRDLNENVLLAQSSLSRMVERLEDRGLVTRAPAPDDARGTLVGLTDAGSRLQRQVGRRHVRAMGQYVGRALDDDEQAELVRLLTKLRAAQAAIPDWTPHDPGPT0013155_4520DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
AK018_013231194garK_1COG1929Glycerate 2-kinaseGTGACATCGACGCCGACCGCCGCCCCGCCCCCGACCGCCGAGCCGCCGCACGTCGTCCTCGTCCCCGACTCGTTCAAGGGCAGCCTGGACGCGACCGAGGTCGCCGCCGCCCTGCGGGAGGGCGTCCTGGCGGCCGCACCGGACGCCCGCGTCACGTCGCTCGCGATGGCCGACGGCGGGGAGGGCACGCTGGACGCCCTCGTCGCGTCCTGGCAGTCGGCGGTGCACACCGTCGAGACCGTCGACGCCATCGGCCGCCCCACCACCGCCCGCTGGACCGTGTCGCCCGACGGTGCCGTCGGTGTCGTCGAGCTGGCGGAGGCCAGCGGCCTGCCGGGCGTGAGCGACGAGCCGCTGCAGCCCCTGCACGCGGGCACGCGCGGGACCGGTGACGTCGCCGCGGCCGTGCTGGACACCGGGGTGAGCGAGGTGCTCGTCTGCCTCGGCGGATCGGCCTCGACGGACGGCGGTGCGGGCATCCTCTCCGGGCTCGGCGCCCGGATGCTCGACGCCGACGGCCAGGTGGTCCCCGACGGCGGCGAGGGGTTGGCCCGCGTCACCTCGATCGACCTGTCGGGGTTGCACCCCCGAGCGCGCGAGGTGCGCTGGCGCCTGGCCGTGGACGTCACCAACCCCTTGCTCGGCGAGCTCGGGGCGGCCGCGGTCTTCTCCCCGCAGAAGGGCGCCGGTCCGGGAGAGGTCGCGTTCCTCGACGAGGCGCTGACCCGGTGGGCCAACCTGCTCGAGCGCGAGACCAGCGTCCGTGTGCACGAGCTGCCCGGCGCCGGGGCCGCCGGGGGAGTGCCGGCCGGTCTCGCCGCCGTCCTCGGCGCCGAGCTGGAGCCGGGGGCGCTGCTCGTGGCCGAGGCGGTCGGACTGCCCGCCGTGCTCGCGGACGCCGCCCTCGTCCTCACCGGCGAGGGCTCGTTCGACTCCCAGTCCGTGCGCGGCAAGGTGGCCGACGGCGTGGCGCGCCTGGCCGCCGCGTCCCCGGCCCGGCCGCCCGTGGTCGTCGTGGCCGGGCAGGTGCTGCTGCCGGCGGAGCAGACCCGTGCGGCCGGCATCACCGCGGCCTTCTCCATCGCCCCGGGACCGATCGGCCTCGACGAGCTGATCCCCCGGACGGCGACGCGTCTGGCGGAGGTCGCGGCGTCGGCGACGAACCTGCTGCTCGCGGGGCGCCGGCGGGGCTGAMTSTPTAAPPPTAEPPHVVLVPDSFKGSLDATEVAAALREGVLAAAPDARVTSLAMADGGEGTLDALVASWQSAVHTVETVDAIGRPTTARWTVSPDGAVGVVELAEASGLPGVSDEPLQPLHAGTRGTGDVAAAVLDTGVSEVLVCLGGSASTDGGAGILSGLGARMLDADGQVVPDGGEGLARVTSIDLSGLHPRAREVRWRLAVDVTNPLLGELGAAAVFSPQKGAGPGEVAFLDEALTRWANLLERETSVRVHELPGAGAAGGVPAGLAAVLGAELEPGALLVAEAVGLPAVLADAALVLTGEGSFDSQSVRGKVADGVARLAAASPARPPVVVVAGQVLLPAEQTRAAGITAAFSIAPGPIGLDELIPRTATRLAEVAASATNLLLAGRRRGPGPT0018175_676DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018175-garK|glxK-K00865NANA
AK018_0132442618 kDa heat shock proteinATGGCTACGTACTGGGACCCGTTCCAGGAGATGGACCGACTCTTCGGTTCGATCCCTCTCACCACGCGGAACGCCTCGGCGATGCCGATGGACCTGTTCCGCGAGGACGACCACTTCGTCCTGGCCGCCGACCTTCCCGGGATCGACCCCGGGAGCATCGACGTCTCGGTCGAGGACCGCACCCTGACCGTCCGGGCCGAGCGGACCGCACGCTCCGCCGAGGGTCAGTGGCTGCTGCGCGAGCGCCCGGCGGGCACCGTCGCACGGCAGATCACGCTCGGGCGCGGGCTGGCGCTCGACCACATCACGGCGGCCTACGCCGACGGCGTGCTCACGCTGACGATCCCCGTGGCCGAGGAGGCCAAGCCGCGCCGGATCGAGGTGGAGCACAACTCGCACCCGCACACGATCGAGGCCGGCGGCTGAMATYWDPFQEMDRLFGSIPLTTRNASAMPMDLFREDDHFVLAADLPGIDPGSIDVSVEDRTLTVRAERTARSAEGQWLLRERPAGTVARQITLGRGLALDHITAAYADGVLTLTIPVAEEAKPRRIEVEHNSHPHTIEAGGPGPT0014635_6895DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014635-hsp20-K13993NANA
AK018_013251953hypothetical proteinGTGACGAGCACACACACCGCCTCCGCACCGGGCCGGACGGCGCGGCCCCGGCCACCCGCCGAGGTCGGCCAGGTCCGCACGACGGCGCAGGCCGAGGATCTCGCCGCCCGCCTGCAGCACCCCGACCGCGCGTGGCCCGTCGTCGTCGTCTCCACCCCGCGCGACCGCGGCCGCCCGTACGTCGACCCGGACCGCGTCCTGGACGACGTGCGCGGCCTGGCCGAGGTCGTCGTGATCCACACCGGCGACCCGTCGTGGGCCTTCTCCCACGGGATGCCGGACGCCACCCAGGTCTACGGGGGCGCCTCGCGGGTCTACCCCGTCGGCGTCGGGTGGGTGCACGACGTCGCCCGGTCGCCGCTGTGGATCGCCTACGACGACGCCGAGGGCACGCGGGTGCACGACCGGCTCGTGCAGGACGCCCTGGCGGCCGCCACCCGCGCGGGGCTGGTCGGCCTGGACCTGCTGCCCACGACGCCGGCCACGACGACGGGCACGGTGCTGGGACTCGTGGGCACCCGCGCGCTGGTGCAGACCGCCGACGGCACGACGGCGCAGGTCGCCCAGGAGCTGACGCTGCCGATCGTGCCGATCGACCGCCTCCTGGCCCCGGGGATGCGCGTCCACGGCGTGCTGGACGTCGACACGCGCCGCCTGGACGTCCGGGACATGCTGCCCGACGCCCTCGAGCAGACGTCCCGGGTGCTGTCGGACTACCCGGCCGGAGCGGTCGTGCCGGCCCAGGTGCACCGCGTGGACGCCGACGAGGTCACGGTCGCCCTCGCCCCGGCGGTCACCGTGCGCGTGCGGCGCGAGCACGCGAGCCGGGGCGACGACGACCTGCGCGACCTGTTCACCGTGGGCGAGGTGGTCGCGGCCCGGATGCAGGCCGCCCGCCCGGTCCCGGGCCCCGAGGGCGGCCACCGCCACCCGTCCCTGCGGCTCGACGACGTGGACGACGCCGGCGGCGTGCGACCCGCGATCAACCTGCTCGACGGCGGCCCGCCCTGGCTGCCGGCTCCCGCCGTCGTCCCGGACGACGAGCTCTCGGCCGACTCGGCGCCGTCGGGCCCGGCACCCACCCCGGCCCTGCTGAACCGGCACCGTCCGTCGTCCGCCCCCACGCCCGCCCCGCAGCGGCCGGCACCGGCCGAGAGGACGAGCCCGGGCCCCAAGCCGGGCCCCGGACCGCGCCGGGCGGTGCCGCCCCCGGGGCGCACCCCGGCCCCGGCGCCCGAGGCGTCGGAACCGCCGGACGCCGCGCCGGACCCGTCGACGGACCGCAAGACGCTGGTCAACCAGCTCGAGCTGTCCGTCCACGAGCAGCGCGCCCGGGCCGACCTCGCCGAACGGGAGGCGATCGAGCTGCGCGCCTCCGTGAAGGCCCTGGAGGTGGAGGTGGCCGGGCTGCGCGACCTCGCCCGCGAGCAGCGTGACCACCTGGACCGGCTCTACCGGGACGTCGAGCGGTACAAGGCCAGGATCCGGTCCGCGCGCAAGCAGCGTGGCGGCGACCCGGCACCGGCACCGACCTCCGACCGGCTGTTCACGGACCCGGTCGACCAGCTCCGCCACGACGTCTACGCCACGTGGGCCCAGGTGGTCGGCGCCACCGAGAAGGCCGACTACCCGCTGCCCGACTTCGCGGTCGGCCCGCAGTTCTGCGACTCGCTGGCCACGACCGGCCGCGGCCTCGAGGAGAAGGTGCACCGCGCGATCGTCATGGTGCTCGTCGGCCGGGCCCAGGACATCGCCGGCTACGAGCTGCACCGCCTGCGCCAGGGCGACGGCGGCGGCGACCCGTACCGGGTGCGCGAGTCGGACGGCGCCCAGGCCATGCGCCTGTCGCTGCAGGTCAGCGCACCGCAGGCGCGACGGCTGCACTACTGGGTGCTGCCCGGGGGCGGCGTCGAGCTGTCCCGCGTCGTGCTGCACGACGACGTCGAGCCGTGAMTSTHTASAPGRTARPRPPAEVGQVRTTAQAEDLAARLQHPDRAWPVVVVSTPRDRGRPYVDPDRVLDDVRGLAEVVVIHTGDPSWAFSHGMPDATQVYGGASRVYPVGVGWVHDVARSPLWIAYDDAEGTRVHDRLVQDALAAATRAGLVGLDLLPTTPATTTGTVLGLVGTRALVQTADGTTAQVAQELTLPIVPIDRLLAPGMRVHGVLDVDTRRLDVRDMLPDALEQTSRVLSDYPAGAVVPAQVHRVDADEVTVALAPAVTVRVRREHASRGDDDLRDLFTVGEVVAARMQAARPVPGPEGGHRHPSLRLDDVDDAGGVRPAINLLDGGPPWLPAPAVVPDDELSADSAPSGPAPTPALLNRHRPSSAPTPAPQRPAPAERTSPGPKPGPGPRRAVPPPGRTPAPAPEASEPPDAAPDPSTDRKTLVNQLELSVHEQRARADLAEREAIELRASVKALEVEVAGLRDLAREQRDHLDRLYRDVERYKARIRSARKQRGGDPAPAPTSDRLFTDPVDQLRHDVYATWAQVVGATEKADYPLPDFAVGPQFCDSLATTGRGLEEKVHRAIVMVLVGRAQDIAGYELHRLRQGDGGGDPYRVRESDGAQAMRLSLQVSAPQARRLHYWVLPGGGVELSRVVLHDDVEPNANANANANA
AK018_013261149hemH_1COG0276FerrochelataseATGTCGACGACCCACCGGCCGACCTCTGACGTCACCCCGTACGACGCGCTGCTGCTCTTCTCCTTCGGCGGTCCGGACAAGCCGGAGGACGTGGTCCCGTTCCTCCGCAACGTGACCGCCGGCAAGGGCATCCCCGACTCCCGCCTCGAGGAGGTCGGTGAGCACTACTACGCCTTCGGCGGCAAGAGCCCGATCAACGACCAGAACCTCGCGCTGAAGGCTGCGATCGAGGCCGAGCTCGCCCAGCGCGGCATCGAGCTGCCGGTCGTGTGGGGCAACCGCAACTGGGCGCCGTACACCGACGACGCCGTCACCGAGCTCGAGGGGCTCGGCGCCGAGCGCGCCGTGGCGCTGGTGACCTCGGCGTACTCCAGCTACTCCGGCTGCCGCCAGTACCGCGAGGACCTGGCCGTGACGCTGCAGGAGCGCGGCCAGCTCGACGAGCACGGCTCGACGGGTGTCCAGTTCGACAAGGTGCGGTCGTACTTCAACCACCCGGGGTTCGTGCAGGCCAACGTCGAGGCGGTGCTCGACGGCTACGCCGCGCTGGAGGAGAAGGGCGGGTCGCCCGCGGACGCGACGCTCGTGTTCGTCACCCACTCCATCCCCGACACGATGGAGGCCGCCTCACGCATCTCGCAGGCCACCTACTCCGCTCAGCACCTGGACGTCGCCGCCGTCATCGCCGAGCGGGTCGCCGCGGCGCGCGGGCACGAGGTGCCGTGGGAGCTGTCCTACTGCTCGCGCTCCGGCCCGCCGACCCAGCCCTGGCTGGAGCCCGACGTCAACGACCTGCTCACCGAGCGGGCCGGCGAGGGGCTGCGCGACGTCGTCATGGCGCCGATCGGGTTCATCTCCGACCACATGGAGGTCGCCTACGACCTCGACACCGAGGCCATGGAGACCGCGAGCGAGCTCGGGATGACGGCGGTGCGGGCCGGGACCGTGGGGACGCGGCCCGCCTTCGTGGCCGGGCTGGTGGACCTGCTGCTGGAGCGGGCGGCCCTCGCCCGCGGCGAGGACGTCGACCAGGCGACCGTCGGGACGCTGCCCCCGTTCCGGTCCGTGTGCGAGGTCGACTGCTGCCTGCGTCGAGACGGCGAGCCGAGCGGCGTCCCGGCGTTGTGCTCCCGCGACGTCACCCGCTGAMSTTHRPTSDVTPYDALLLFSFGGPDKPEDVVPFLRNVTAGKGIPDSRLEEVGEHYYAFGGKSPINDQNLALKAAIEAELAQRGIELPVVWGNRNWAPYTDDAVTELEGLGAERAVALVTSAYSSYSGCRQYREDLAVTLQERGQLDEHGSTGVQFDKVRSYFNHPGFVQANVEAVLDGYAALEEKGGSPADATLVFVTHSIPDTMEAASRISQATYSAQHLDVAAVIAERVAAARGHEVPWELSYCSRSGPPTQPWLEPDVNDLLTERAGEGLRDVVMAPIGFISDHMEVAYDLDTEAMETASELGMTAVRAGTVGTRPAFVAGLVDLLLERAALARGEDVDQATVGTLPPFRSVCEVDCCLRRDGEPSGVPALCSRDVTRPGPT0008485_965DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008485-hemH|ywfI-K01772NANA
AK018_01327768COG3253putative protein/MSMEI_2713GTGAGCGACCAGCACATCCACGCCGACACGGGCGAGGCCGTCGACACCGCCGCCATCAACTCCTCGATCCGCTACGCGATGATCTCGGTGTTCTCGCTGTCCGGCGAGGTCCCCGCCGAGGCCGACGCGCGGGCCGCGCTCGCCGCCGAGGCCGCGGACGCCCTGTGGGACGGCGCCGCCGACGCGGACCGCGACCCGGCCCGCCCCGACGGTGACGTGGTGGTGCGCGGCGTGTACGACGTCGCCGGGCTGCGCGCCGACGCCGACCTCATGGTCTGGGTGCACGGCCCCTCGGTGGAGGCGGTGCAGGGCGCCTACCAGCGGCTGCGGGCCTCGCGGCTCGGCCGGGTCCTGACCCCGGTGTGGTCGGTCGTGGCCCTGCACCGGGCGGCGGAGTTCAACAAGGGTCACGTGCCGGCCTTCCTCGCCGGCGAGGCGCCGCGCGACTACCTGTGCGTGTACCCGTTCGTGCGGTCCTACGAGTGGTACCTGCTGCCCGACGACGAGCGCCGCACCATGCTGCGCGACCACGGCATCGCCGCCGCCGGCTACAAGGACGTGCGGGCCAACACGATGAGCACGTTCGCGCTGAGCGACTACGAGTGGCTGCTGCCGTTCGAGGCCGACGCGCTGGACCGCATCGTGGACCTGATGCGGGACCTGCGGGCGACCGAGGCGCGGCTCCACGTGCGCGAGGAGGTGCCCTTCTTCACCGGCCCGCGCGTGGAGCTGGCCGCGTGGGTGGAGCGCCTGCCGCGCTCGGCGTGAMSDQHIHADTGEAVDTAAINSSIRYAMISVFSLSGEVPAEADARAALAAEAADALWDGAADADRDPARPDGDVVVRGVYDVAGLRADADLMVWVHGPSVEAVQGAYQRLRASRLGRVLTPVWSVVALHRAAEFNKGHVPAFLAGEAPRDYLCVYPFVRSYEWYLLPDDERRTMLRDHGIAAAGYKDVRANTMSTFALSDYEWLLPFEADALDRIVDLMRDLRATEARLHVREEVPFFTGPRVELAAWVERLPRSAPGPT0008490_103DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSOTHER_BIOTIC_STRESS_RESISTANCE_GENESBIOTIC_STRESS_RESISTANCE-BACILYSIN_METABOLISM,PGPT0008490-hemQ-K00435NANA
AK018_01328828hypothetical proteinATGTCGACCTACGACACGACACCCCAGCAGGCCACCGCCCGCGACCGCGTCCGGCAGGTCGTGGTCGCCGTCGGCGCCCTCCTGGCGATCCTCGGTGCCGCCGTCGGCTCCGGGGCGTTCGGAGGCCGGCCGATCCAGGACGCCGCCGGCGGCGCCCTGTCCGCCGAGGCGACCGTGGTGGCCCCCGACAACCCGGCGTTCTCCATCTGGTCGGTCATCTACACCGGGCTCGTCCTCTTCGCCGTCGTGCAGGCGCTGCCCGGGCGCGGGGCCGACGCCCGGCTGCGGTCCGTGTCCTGGTGGATCCTCGCCTCGATGCTCCTCAACGCCGCGTGGATCGGCGTCGTGCAGGCCGGCTGGCTGTGGGCCAGCGTCGCCGTGATCGCCGTCCTCGTCGCCGTGCTGTCCCTCGTGCTCGTCCGCCTGGTCCGCACCCCCGCACCGCGCGTGCTCGACGCCGTCGTCACCGACGTCACGGTCGGCCTCTACCTGGGCTGGGCGTCCGTGGCGACGCTCGCCAACACCACCGCCGCCCTCACCGCCGCCGACGTCGGCGAGCTGGGCCTCGGTGCCAGCGGGTGGGGCGCGGTCCTGGCCGTCGTCGCCGCCGTGCTCGCCCTGGCCATGGCGAGGTACGGCGCCGCCCGCCCCGCCGTCGTGATCCCCGTCGGGCTCGCCATGGGCTGGGGTCTCGCCTGGATCGCGGTCGGCCGCACCGAGGGCCCGCTGACGGACTCCGTCGTGGCGGTCGCCGCCGGGGTCGCCGCCGCCGTGGCCGCCGTCGGCCCGGTCGTGATCAGCCTGCTGCGGCGCCGGACCCGGTCCTAGMSTYDTTPQQATARDRVRQVVVAVGALLAILGAAVGSGAFGGRPIQDAAGGALSAEATVVAPDNPAFSIWSVIYTGLVLFAVVQALPGRGADARLRSVSWWILASMLLNAAWIGVVQAGWLWASVAVIAVLVAVLSLVLVRLVRTPAPRVLDAVVTDVTVGLYLGWASVATLANTTAALTAADVGELGLGASGWGAVLAVVAAVLALAMARYGAARPAVVIPVGLAMGWGLAWIAVGRTEGPLTDSVVAVAAGVAAAVAAVGPVVISLLRRRTRSPGPT0014330_13DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014330-ytaB-K05770NANA
AK018_01329633prmC_2COG2890Release factor glutamine methyltransferaseGTGCTCGGCCGGGTCGAGCTGGCCGGGCGGTCGTGGGCGGTGGGCCCCGGCGTGTTCGTGCCGCGGCGTCGCAGCGAGGCGCTGGTGCACCTCGCGCTGGACCGTGCCGCACCACGGCCCGACGCGACCGTCGTCGACCTGTGCTGCGGCTGCGGCGCGGTCGGCGGGGCGGTGCTGGCGGGCCGGTCGGCGGCCGGGACGTCGGCGACGCTGCACGCCGTGGACGTCGACCCGGTGGCCGTGCGGTCTGCGCGCGAGAACCTGGAGCCGCTGGGCGGGGTCGCGCTGGTCGGGGACCTGTTCGCCCCGCTCCCGCACGACCTGCACGGCCGGGTCGACCTGCTGCTGTGCCACGCGCCCTACGTCCCGACGGACGCGGTCGCCACGATGCCGCCGGAGGCCCGCGAGCACGAACCGCGACGCGCGCTCGACGGCGGCGACGACGGCCTCGACGTGCTGCGCCGGGTGCTCGCGGACGCTCCGGCGTGGCTGGCTCCGGGCGGTGCGCTGCTGTTCGAGATCGCCGAGCACCAGTGGGCCGGGGCGCGCCGTGCGGTCGAGCAGGCCGGCCTCGCCGCCCGGAGGGTCCGGGACGAGACCGTCGACGCGACGGTCGTGGTGGCGAGCCGCTAGMLGRVELAGRSWAVGPGVFVPRRRSEALVHLALDRAAPRPDATVVDLCCGCGAVGGAVLAGRSAAGTSATLHAVDVDPVAVRSARENLEPLGGVALVGDLFAPLPHDLHGRVDLLLCHAPYVPTDAVATMPPEAREHEPRRALDGGDDGLDVLRRVLADAPAWLAPGGALLFEIAEHQWAGARRAVEQAGLAARRVRDETVDATVVVASRNANANANANA
AK018_013301278gdhACOG0334Glutamate dehydrogenaseGTGACGACGATGTCGACCCGCCCGGCCCCGGCGGGCGAGGCCTCGGCCCTGGAGACGGCGCAGTCCCAGCTCGCGACCGCCGTCGCGCACCTGGGCTACGACGCCGGCCTGCACCAGATGCTGGCCACGCCGCGCCGCGAGATCCAGGTCGCGGTCCCGCTGCACCGCGACGACGGGTCCCGGGTGCTCTTCCAGGGCTATCGGGTCCAGCACAACGTCTCGCGGGGTCCCGGCAAGGGCGGGCTGCGGTTCCACCCCAGCGTGCACGTCGACGAGGTGCGGGCGCTGGCGATGTGGATGACCTGGAAGTGCGGCATCGTCGACCTGCCGTTCGGGGGCGCGAAGGGCGGCGTCGGCATCGACCCCGCCGACTACACCCCGGGCGAGCTGGAGCGGGTGACGCGTCGGTACACCTCCGAGATCATGCCGCTGATCGGCCCGGACACCGACATCATGGCGCCCGACATGGGCACCGACGACCGCACGATGGCGTGGGTCATGGACACCTACTCGGTCAACCGCGGCTACACGATCCCGGCGGTGGTCACGGGCAAGCCGCTCGCCGTGGGCGGGTCGCTGGGCCGCGGCACGGCCACGAGCGCCGGGATCGTGCACGTCACCGCCGCCGCGCTCAAGGAGGCGGACGCGCAGATGAGCGACGTGTCCGTCGCGATCCAGGGCTTCGGCAAGGTCGGTGGCAACGCCGCGACGATCTTCGCCGAGCGCGGCGCACGGGTCGTCGCCGTCAGCGACCAGTACGGCGGTGTCCGCGCGGACGACGGGCTCGACCTGGACCGGCTGGCCGACCATGTCGCCGAGACGGGCAGCGTGGCCGGTTTCGCCGACGCCGACCCGATCTCCAACGCCGAGCTGATCGCCCTGGACGTGGACGTGCTGGTGCCCGCCGCTGTCGAGGGCGTGCTCACCGCCGAGTCGTCGCGCACGGTGCGGGCACGGTGGGTGGTCGAGGGCGCGAACGGGCCGACCACCACGGCCGGAGACGCCGTCCTGGCCGAGCGCGGGATCACGGTGGTGCCGGACGTGCTGGCCAACGCCGGCGGCGTCGTCGTCTCCTACTTCGAGTGGGTGCAGGCGAACCAGACGTACTGGTGGTCGGCGCAGGAGATCGCCGAGAAGCTCGCGCGGCGCATGGCCTCGGCCTACGCGGACGTGTCCGGGCTGGCCCGGCGGGACGGCGTCTCGCTCCGGGACGCCGCGACGATCATCGGCGTCCGCCGGACCGCCGAGGCGCACGAGATCCGCGGGCTCTACCCCTGAMTTMSTRPAPAGEASALETAQSQLATAVAHLGYDAGLHQMLATPRREIQVAVPLHRDDGSRVLFQGYRVQHNVSRGPGKGGLRFHPSVHVDEVRALAMWMTWKCGIVDLPFGGAKGGVGIDPADYTPGELERVTRRYTSEIMPLIGPDTDIMAPDMGTDDRTMAWVMDTYSVNRGYTIPAVVTGKPLAVGGSLGRGTATSAGIVHVTAAALKEADAQMSDVSVAIQGFGKVGGNAATIFAERGARVVAVSDQYGGVRADDGLDLDRLADHVAETGSVAGFADADPISNAELIALDVDVLVPAAVEGVLTAESSRTVRARWVVEGANGPTTTAGDAVLAERGITVVPDVLANAGGVVVSYFEWVQANQTYWWSAQEIAEKLARRMASAYADVSGLARRDGVSLRDAATIIGVRRTAEAHEIRGLYPPGPT0000695_1160DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000695-gdhA-K00261NANA
AK018_013313546rocA_11-pyrroline-5-carboxylate dehydrogenaseATGAGCACCCATGCCACCGACCGCGGCACCGGCGACCCCGGGACCCGGCGCGACGCGACCGTGAGCCCAGCGGACCTGGTCGAGGACGCCGTCGCCCTCGCCCACTCCTGGATCGAGGCGGCCGGGCGGTCCGACGGCGTCGCCACCCGCTCCGACCGTCGCACCCGCGCCACCGCCGAGCGGCTCGGCGCGCTGGTCGCCGACCCGGCCGGCCTCGACCTCGCCGTCGGCTTCGTCGACGACGTCGCCCGGCCCCAGGACGTCCACGTCGCCGCCAAGGCGCTCGCCGGCCTCGGCCGCGACGCCGGCGCCGCCTCGTTCCTCTCGCCCGTCGACCGGACCCTGTTCCGCGTCGGCGCCGCCGTGGCGCCCGTGCTGCCCTCCGTCGTCGTGCCGGCCGCCCGGGTGCGGCTGCGTCAGCTCGTCGGCCACCTCGTCGCCGACGCCGGGCGCGGCCTGGGCACGCACCTCGCCCGCACCCGCGCCGAGGGCTACACCCTCAACGTGAACCTGCTGGGGGAGGCCGTGCTCGGCGACGAGGAGGCGGCCGCGCGGCTCGAGCGCACCATCGCGCTGGTGGAGCGCCCCGACGTGGACTACGTCTCGGTCAAGGTCTCCTCCGTGGCCGCCCAGCTGGTCACCTGGGACCTGGAGGGTTCCCGCGACCGCGTGGTCGAGCACCTCCTGCCGCTGTACCGCGCCGCGCGCGACCACGGCGTGTTCGTCAACCTCGACATGGAGGAGTACAAGGACCTCGCGCTGACCACCGCCGTCTTCCGCGACGTCCTCGAGCACCCCGAGCTGCGCGACCTGTCCGCCGGCATCGTGCTGCAGGCCTACCTCCCCGACGCGCTCGGCGCCCTCGACGAGCTCACCACCTGGGCGCAGCAGCGGGTCGCCGACGGCGGTGCGCCCGTCAAGGTGCGCCTCGTCAAGGGCGCCAACCTCGCCATGGAGCACGTCGAGGCCGAGCTGCACGACTGGGCACCCGCCCCCTACGGCACCAAGGCCGAGGTCGACGCCAACTACGTGCGCATCCTCGACCGTCACCTGACCCCCGCGCGCACCGCCGCCGTCCGCCTCGGCGTCGCCTCGCACAACCTGTTCGACGTGGCGCTCGCGATCCTGCTGGGCCGGGCGCGCGACGTCAGCGCCGGGCTCGACATCGAGATGCTGCAGGGCATGGCACCGATCGAGGCCCGGCTGGTACGTGCCGAGGTCTCCCGGGGCGCACCCGACCAGCACGGCGAGGTCGTCCTCTACACGCCCGCCGTGCGCGACGAGGACTTCGACGTCGCCATCTCCTACCTCGTGCGCCGCCTCGAGGAGAACTCCGCCGAGCAGAACTTCGTGCACGCCGCCTTCGCCCCGCCGTCGGCCGAGCCCGGTGTGCGCGGCACCCCGATGGAGCGCCAGGAGGTCGCGTTCCGTGCCTCCGTCGCCGACGGCCTGCGCGACGACCCGGACGCCGTCGTCCCGCGACGCGTCTCGCGGTTCGACGTCCCTGCGTCCCGCCCGGCGGCGACCGCGCACGACGCCGCCCGGCCCGGGTCGCCGACCGGGTTCCACAACGCCACGGACACCGACCCGGCCGTCGCCGCGCACCGCGAGTGGGCCGCCCGCCTCGTCGGGCCCGACAGCGGGTTCGTGCCCGTGCGGACCCCCGAGACCACCGACACCGGGCAGATCGACGCCGTCGTCGCCCGTGCCGTCGAGGTCCGCGAGCAGTGGGCCGCCGTCCCGGCCGCCGGTCGCGCCCGGGTCCTGCGCGAGGCCGCCCGGCAGCTCGAGCTGCGCCGCGGCGACCTCGTCGCCGCCGCCGTGCACGAGCCCGGCAAGACCGTCGCCGAGACCGACCCCGAGGTCACCGAGGCCATCGACTTCGCCGCCTACTACGCGGCGGCCGCCGAGGCGCTCGACACCGTCGACGGCGCCGACTTCGCCCCCGAGGGCGTCACCCTCGTCACCCCGCCGTGGAACTTCCCGGTGGCCATCCCGATCGGCGGCGTGCTCGCGGCGCTCGCGGCCGGGTCGACCGTGCTCGCCAAGCCGGCACCGCCGACGCCCCGCTGCTACGAGCTCGCGGTCGAGGCCGTGCAGGCCGCCCTCGAGGCCGTCGCCCCGGAGATCGGGCTGCCCGCCGACGTCGCCCGCGACGCCGTGCAGCTCCTGCGCGTGCCCGACGGCGAGGCCGGCAAGCACCTGGTCACCCACCCGGCCGTGTCCCGCGTGGTGCTGACCGGCGCGCTGGAGACCGCCCAGATGTTCTCCCGGTGGAACCCGGAGCGTCCCGTCCTCGCCGAGACCTCGGGCAAGAACGCCCTGGTCGTCACGCCGTCGGCCGACCTCGACCTCGCGGTGGCCGACGTGGTGCGCAGCGCCTTCGGGCACGCCGGGCAGAAGTGCTCGGCGTCGTCGCTGGTGATCCTCGTCGGCTCGGTCGGCGACGAGAAGACCGTGACGGGCGAGCGGTTCCGCCGCCAGCTCGTCGACGCCGTCCGGTCGCTCGCCGTCGGCCCCGCCACCTCGCTGTCGACGGTCATGGGTCCGCTGACCGAACCGGCCACGGGCAAGCTGCACCGGGCGCTGACGTCGCTGGAGCCGGGGGAGCGCTGGCTCGTCGAGCCCCGACGGCTGGACGCCGTCGCCGACGCCGCGGGGATCGACCCGGACCGGCTGTGGTCGCCCGGGCTGCGCGACGGCGTGGCACCCGGGTCGTTCTTCCACCTCACCGAGGTCTTCGGCCCGGTGCTCGGCATCCTGCGTGCCGCGACGCTGGAGGAGGCGATCGAGCTGCAGAACGCCGTCTCCTACGGCCTGACCGGCGGGATCCACTCCCTCGACGCCGACGAGATCGCGACGTGGCTGGAGCGCGTCGAGGTCGGCAACCCCTACGTCAACCGGCACATCACCGGTGCCATCGTGCAGCGGCAGTCGTTCGGCGGTTGGAAGGGCTCGGTCGTCGGTCCCGGCGCCAAGGCCGGCGGACCGAACTACGTGGCCCAGCTCGGCCGCTGGAGCGACGGCGCCGACGTGCCGTCTCGCACCGCCGACCCCGAGGGCTGGCTCGCGTGGGCCGAGGACTCCGACGCCACCGCGTGGGACACCGAGCTCGGTGTCGTGCACGACCCGACCGGCCTGGCCGTCGAGGAGAACAGCTTCCGGTACCGGCCGGTGCCCGAGGTGACGGTCCGCGTCGGCGACGGCGCCCTGCCCATCGAGGTGCGCCGCGTCCTGGCCGGTGCCCGTCGGGCCGGGGTCCGCGCCGTCGTCGTGCCCGAGTCCGACGCCGGCTGGGGCGTGCCGCACGAGGCCCCGATGTCGCACGAGGACTTCGCCGACGCCGTCACCGAGGGCCGGATCACCGGGCGGATCCGGGTGATCGGTCAGGCACCCGGCCTGCGTGCCGCCGCGGTCGAGCGCGTCGGCGAGACGACCGTGCTCGACCAGCCCGTGGTGGCGGCGGGGCGCCGGGAGCTGCTGCCGTTCCTGCGCGAGCAGGCCGTCAGCCGGACGAAGCACCGGTACGGGCACCTGCGCGCCTGAMSTHATDRGTGDPGTRRDATVSPADLVEDAVALAHSWIEAAGRSDGVATRSDRRTRATAERLGALVADPAGLDLAVGFVDDVARPQDVHVAAKALAGLGRDAGAASFLSPVDRTLFRVGAAVAPVLPSVVVPAARVRLRQLVGHLVADAGRGLGTHLARTRAEGYTLNVNLLGEAVLGDEEAAARLERTIALVERPDVDYVSVKVSSVAAQLVTWDLEGSRDRVVEHLLPLYRAARDHGVFVNLDMEEYKDLALTTAVFRDVLEHPELRDLSAGIVLQAYLPDALGALDELTTWAQQRVADGGAPVKVRLVKGANLAMEHVEAELHDWAPAPYGTKAEVDANYVRILDRHLTPARTAAVRLGVASHNLFDVALAILLGRARDVSAGLDIEMLQGMAPIEARLVRAEVSRGAPDQHGEVVLYTPAVRDEDFDVAISYLVRRLEENSAEQNFVHAAFAPPSAEPGVRGTPMERQEVAFRASVADGLRDDPDAVVPRRVSRFDVPASRPAATAHDAARPGSPTGFHNATDTDPAVAAHREWAARLVGPDSGFVPVRTPETTDTGQIDAVVARAVEVREQWAAVPAAGRARVLREAARQLELRRGDLVAAAVHEPGKTVAETDPEVTEAIDFAAYYAAAAEALDTVDGADFAPEGVTLVTPPWNFPVAIPIGGVLAALAAGSTVLAKPAPPTPRCYELAVEAVQAALEAVAPEIGLPADVARDAVQLLRVPDGEAGKHLVTHPAVSRVVLTGALETAQMFSRWNPERPVLAETSGKNALVVTPSADLDLAVADVVRSAFGHAGQKCSASSLVILVGSVGDEKTVTGERFRRQLVDAVRSLAVGPATSLSTVMGPLTEPATGKLHRALTSLEPGERWLVEPRRLDAVADAAGIDPDRLWSPGLRDGVAPGSFFHLTEVFGPVLGILRAATLEEAIELQNAVSYGLTGGIHSLDADEIATWLERVEVGNPYVNRHITGAIVQRQSFGGWKGSVVGPGAKAGGPNYVAQLGRWSDGADVPSRTADPEGWLAWAEDSDATAWDTELGVVHDPTGLAVEENSFRYRPVPEVTVRVGDGALPIEVRRVLAGARRAGVRAVVVPESDAGWGVPHEAPMSHEDFADAVTEGRITGRIRVIGQAPGLRAAAVERVGETTVLDQPVVAAGRRELLPFLREQAVSRTKHRYGHLRAPGPT0020210_1428DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020210-putA-K13821NANA
AK018_01332831hypothetical proteinATGGCGGACGTGACGACAGCGTTCGTGATGGGTGGAGGGGGCGTCCGCGGTGCCGTGCAGGTCGGGATGCTGCAGGCCCTCTTCGAGGCGGACGTCCACCCGGACCTGATCGTCGGGACGTCCGTCGGGGCCATCAACGGCGCGGCGGTCGCCGCCGACCCGACCCTCGGCGTCGTCGACCGGCTGCTGGAGGCCTGGGCGTCCCCGACGGCGGCGGCCGTCTACGCCGAGCCCTGGTACCGGCAGGTCCGCCACCTGGCGCGCTCGCGGGTCCACGTGTACGACCCGGCGAAGCTGCGCGCGCTCGTCGAGGAGGCCGTGGGGGAGCACCACACCTTCGCGGACCTCGAGGTGCCGTTGGTCGTGGCCGCGGCCAGCATCGAGCGGGCGTCGGAGCACTGGTTCGACTCCGGGCCGCTGGTCGACGCCGTGCTGGCCTCGGCGTCCGTGCCGGGGGCGATGCCCCCCACGGTCGTCGACGGCGAGCACTTCGTCGACGGCGGGCTGGTGAACTCCATCCCGCTGGGCGAGGCGGTGCGCCGGGGTGCCGACACCGTGTACGTGCTGCAGGTGGGCCGCATCGAGGAGCCGCTGTCCGCGCCGCGCAGCCCGTCCGACGTGGCGAAGGTCGCCTTCGAGATCTCCCGGCGGCACCGGTTCCACCGCGAGCTCGCCGACGTGCCCGCGGACGTCACGGTGCACGTGCTGCCCTCGGGCGGATCGCTGCCCGGTGACGAGAAGGTCCGGGCCTACAAGCGGCTGGACGTCACCCGGCACCGGATCGAGCGGTCCTACGACCGGACCCGGACCTACCTCGCCGACGAGGCGTGAMADVTTAFVMGGGGVRGAVQVGMLQALFEADVHPDLIVGTSVGAINGAAVAADPTLGVVDRLLEAWASPTAAAVYAEPWYRQVRHLARSRVHVYDPAKLRALVEEAVGEHHTFADLEVPLVVAAASIERASEHWFDSGPLVDAVLASASVPGAMPPTVVDGEHFVDGGLVNSIPLGEAVRRGADTVYVLQVGRIEEPLSAPRSPSDVAKVAFEISRRHRFHRELADVPADVTVHVLPSGGSLPGDEKVRAYKRLDVTRHRIERSYDRTRTYLADEANANANANANA
AK018_013331020hypothetical proteinATGCTGCCGCCGCGCTGGATCCGCCGGGTCGTCCTCGCCCCGCTGGTCGTCGCGCTCGCCGTCCTCATGGTCCCGACCACGCTGATGTTCGCGATCGTCGTCGGGGGCGTGCTGACCTGGGTCGTCCCCGGCGGGCTGCGCGTGCTGCGGTTGCTCTGGATGGCGGCGTTCTACGTCGTGTGGGACGCGACGGCGCTGCTGGCGATGTTCGGCCTCTGGCTCGCCGCGGGGTGCGGTCTGTTCGCCGACCGGCCGTGGTACCGCCGTGCGCACGTGCGGCTGGCCCGCGGGATGCTGGCGTTGTTCTTCTGGCAGGTGCGCTGGACCCTGCGACTGCGGATCCAGCTCGACCTGCCGTCGACCGGGACGCTGCCGGACGCTCCGGTGGTGGTGCTGAGCCGGCACGCGGGGCCGGGCGACTCGTTCATCATCGTCGACCGGTTGCTGGGGTTGTCGGGGCGTGCGCCGGCGATCGTGCTCAAGGACACGATGCAGTGGGACCCGGCGATCGACGTGCTGCTGAACCGGCTGCCCTCGGCCTTCGTGACGCCGGCGTCACGGCGTCCCGCCGGTCGGCCGGGTGCGCGGGAGACGGTGCACCGGATCGCCGCCGGGCTGACCGTCGACGACGCCCTCGTGCTCTTCCCCGAGGGCGGGAACATCACGCCGCGTCGCCGGGCGGAGCGCATCGAGGCGCTCCGCCGGGCCGGGCACGAGACGCTGGCGCACCAGGCCGAGGGAATGACCGAGGTGATGGCACCGCACGTGGGCGGCTTCGACGCCGCGATGGAGGGATCTCCCGACGCCGCGGTCCTGGTGGTCGCGCACACCGGGCTCGAGCGGCTCGTGACCGTCCGGGACGTGTGGCGCGAGCTGCCCATGGACAAGACCATCACCATGCGTGCCTGGCTGCACCCGGCCGGAGCCGTGCCGACCGCCCAGGACGCGCGTCGGACCTGGTTGTTCGACCAGTGGCGGACGATCGACGACTGGGTCGTCAGGCGGGGTCCTCCGGCCTGAMLPPRWIRRVVLAPLVVALAVLMVPTTLMFAIVVGGVLTWVVPGGLRVLRLLWMAAFYVVWDATALLAMFGLWLAAGCGLFADRPWYRRAHVRLARGMLALFFWQVRWTLRLRIQLDLPSTGTLPDAPVVVLSRHAGPGDSFIIVDRLLGLSGRAPAIVLKDTMQWDPAIDVLLNRLPSAFVTPASRRPAGRPGARETVHRIAAGLTVDDALVLFPEGGNITPRRRAERIEALRRAGHETLAHQAEGMTEVMAPHVGGFDAAMEGSPDAAVLVVAHTGLERLVTVRDVWRELPMDKTITMRAWLHPAGAVPTAQDARRTWLFDQWRTIDDWVVRRGPPANANANANANA
AK018_013341011ccpA_3COG1609Catabolite control protein AGTGGTCACGAAGCACATCGCACCGACGCTCGACGACGTCGCGCGCACCGCCGGCGTCTCGCGCTCGACCGCATCGCGGGCGATCAACGGCGGCGACCGGGTCTCGCCCGAGGCGCAGCAAGCCGTGGACTCCGCCATCGTGCGCCTCGGGTACGCACCCAACCGGGCGGCCCGGTCGCTCGTGACCCGACGGACGGACTCGATCGCCCTGGTGGTCCCCGAGCCGGACGCGAGGATCCTCACCGACCCGTTCCTCGCCGGCGTCGTGCGCGGCGTCAGCGAGGGGCTGGGGGGCACGGACCTGCAGCTCGTCCTGCTGCTGGCCCGCCAGGGCGAGCGCCCCGGGCACCTCGCCCGGTACCTGACCAGCGGGCACGTGGACGGCGTCATCGTCGCCTCGCACCACAAGGACGACAACCTCGAGCCCGAGCTGCGGTCCGGCTCGCTGCCCGCGATCTTCGTCGGGCGCCCGTTCGACGCCGCCGGCCTGCACTACGTGGACGTCGACAACCGGGCCGGCGCCCGGGTCGCCACGCAGCGGCTCATCGACCGGGGGTGCCGGTCGATCGCGACCCTGACCGGGCCGCGGGACATGACCGCCACCCTCGACCGTTTCGACGGGTGGCGGCAGACGCTGACCCGGGCGGACCTGCCCACGGACGCCGTCGCCGACGGCGACTTCACGGTCGAGGGCGGGGCCGCCGCGATGGAGCAGATCCTGGCCGAGCACCCCGACGTCGACGGCGTCTTCGCCGCGTCGGACCTCATGGCCACCGGCGCGCTGCAGGTGCTGCAGGCGCACGGCAAGCGGGTGCCCGAGGACGTCGCCGTGGTCGGTTTCGACGCTCTCGGTGCGGAGCGGACCACACCGCGGCTGACCACCGTGCTGCAGCCCGTGGTGGAGATGGTCGCGGCGGCGACGTCGTCCCTGCTCGACATGCTGGCCGGCGAGGACGTCCACCCCGAGCCGCGCATCTTCATCCCGCGTCTGGTCGAGGGTGACTCGGCCTGAMVTKHIAPTLDDVARTAGVSRSTASRAINGGDRVSPEAQQAVDSAIVRLGYAPNRAARSLVTRRTDSIALVVPEPDARILTDPFLAGVVRGVSEGLGGTDLQLVLLLARQGERPGHLARYLTSGHVDGVIVASHHKDDNLEPELRSGSLPAIFVGRPFDAAGLHYVDVDNRAGARVATQRLIDRGCRSIATLTGPRDMTATLDRFDGWRQTLTRADLPTDAVADGDFTVEGGAAAMEQILAEHPDVDGVFAASDLMATGALQVLQAHGKRVPEDVAVVGFDALGAERTTPRLTTVLQPVVEMVAAATSSLLDMLAGEDVHPEPRIFIPRLVEGDSAPGPT0017992_5908DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_013351572bglB_1Beta-glucosidase BATGACTCTGATCGCACCGGGTGCCGGAGCCCGGACCGCAGCCCCCGGGACGCCCGTCCCCTTCACCCCGTCCTCCCCGCTCACGGAGCCGACGGCCAACGCCCGCGGCCGCGTCGCGTTCCCCGAGGGCTTCCTGTGGGGAGCGGCCACCGCCGCCTACCAGATCGAGGGCGCCGGGGCCGAGGGCGGCCGGGGCGACTCCATCTGGGACGTCTTCTGCCGTGTCCCCGGTGCGGTCGTCCACGGTGACGACGGCATGGTCGCCTGCGACCACTACCACCGGTACCGCGAGGACGTCGCGCTGATGTCCCGGCTGAACCTGGGCGCCTACCGGTTCTCGAGCTCCTGGGCCCGGGTGATGCCGGACGGCCGCACCCCGAACCAGCAGGGGCTGGACTTCTACTCCCGCCTCGTCGACGAGCTGCTGGGCGCCGACATCGTCCCCTGGCTCACGCTGTACCACTGGGACCTGCCGCAGGCCCTCGAGGAGGCCGGCGGCTGGCCGGCCCGGGACACGGCCCACCGGTTCGCGGACTACGCCACCACGATGCACGAGGCCCTGGGCGACCGGGTGAAGATCTGGGCGACGCTCAACGAGCCGTACTGCTCGGCGTTCCTCGGCTACACGGCCGGGGTGCACGCCCCCGGCCGGACGTCCCCCGAGCTCGGCCTCGCCGCAGCGCACCACCTCATGCTCGGGCACGGCCTGGCCGTGGAGGCGCTGCGGGACCGTGACTCCGAGGCGACGCTGGGGCTGACGCTCAACTTCACCGTCTCCGACCCCGTCGACCCGACGGACCCGGCCGACGTGGACGCCGCGCGCCGTGACGACGCCGTGTTCAACCGGATCTTCCTCGACCCGATCTTCCGGGGCGCCTACCCGCAGGACCTCCTGGAGGACGTCGCCCACCTCGGCCTGGCCGACCACGTCCGCCCCGGCGACCTGGAGACCATCTCCACGCCGATCGACGTGCTCGGCGTGAACTACTACAACGGCGGCGCCGTCTCCGCGACGCCGCAGGCCGGGACCCGCCCCGACGGCACGGCGAGCCCCGAGGGCACCGCCGGTCCCGACGGCGAGCGCACCCCGGACGCGTCCGGACCGGTGCGCGAGACGCGCTCGCCGAACCCGGTGCCGGACGGCGTGCACCCGCACAGCCGTGGCCTGCCCCTGACCGACATGGGCTGGGAGGTGCAGCCGGAGGGCCTCACGCGGCTGCTGACGCGGCTGCAGCAGGACTACGCGGGGCCGCGCGGCACGGCGCTGGTCGTCACCGAGAACGGCGCGGCCTACCCCGACGTCGTCGAGGCGGACGGCAGCGTCGACGACCAGGACCGTCTGGAGTTCATCGACCGTCACCTGCGCGCGGTCAAGGACGCCGTCGACGCCGGCGCCGACGTGCGCGGATACTTCGCCTGGTCGCTGATGGACAACTTCGAGTGGGCGCTGGGCTACACGAAGCGGTTCGGCCTCACCCGGGTCGACTACGAGACCCAGGAGCGTATCGTGAAGGCCTCGGGCCGCTGGTACGCCGAGGTCGCCCGCGACAACGCCGTCCCGGCACAGGATTGAMTLIAPGAGARTAAPGTPVPFTPSSPLTEPTANARGRVAFPEGFLWGAATAAYQIEGAGAEGGRGDSIWDVFCRVPGAVVHGDDGMVACDHYHRYREDVALMSRLNLGAYRFSSSWARVMPDGRTPNQQGLDFYSRLVDELLGADIVPWLTLYHWDLPQALEEAGGWPARDTAHRFADYATTMHEALGDRVKIWATLNEPYCSAFLGYTAGVHAPGRTSPELGLAAAHHLMLGHGLAVEALRDRDSEATLGLTLNFTVSDPVDPTDPADVDAARRDDAVFNRIFLDPIFRGAYPQDLLEDVAHLGLADHVRPGDLETISTPIDVLGVNYYNGGAVSATPQAGTRPDGTASPEGTAGPDGERTPDASGPVRETRSPNPVPDGVHPHSRGLPLTDMGWEVQPEGLTRLLTRLQQDYAGPRGTALVVTENGAAYPDVVEADGSVDDQDRLEFIDRHLRAVKDAVDAGADVRGYFAWSLMDNFEWALGYTKRFGLTRVDYETQERIVKASGRWYAEVARDNAVPAQDPGPT0019165_216DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
AK018_01336921araQ_1COG0395L-arabinose transport system permease protein AraQATGAGCTCCGTCGCCGTCACCGCACAGACGGCCGGGGCGGGCGCCGCGCGAGCCGCCGCCAAGCGCCGCCAGCGCAAGGTGCCGCTCGGCGGGTCGGCCCGCCGGGCCGGACGCCTGACCTACTTCCTGCTCGGCGCCGTCCTGCTGATCTCGATCTTCCCGCTGTACTACACGCTCCTGCTCGGGTCCTCCGACCCGGTCGCGATCGCGCAGAACCCGATCCCGCAGTGGCTGCCCGACACCAGCCTCTTCTCGCAGTTCGCCACGGTCATCACCGACTCGAACATCAACTTCTGGAAGGCGCTGTGGAACTCCACGCTGATCGGCGTCTTCTCGTCGCTGTCGGTGGTGTTCTTCTCGACGCTCGCCGGGTACTCCTTCGCCAAGCTGAACTTCCGGGGACGGGGCCCGCTGCTCGTCTTCGTCATCGCCACGATGGCGGTGCCGGTCCAGCTCGGCATCATCCCGCTGTACATCCTCATGAGCGAGATCGGCTGGTACGGCCAGGTCCAGGCGGTCATCGTGCCCGGCCTGGTCACCGCGTTCGGCGTGTTCTGGATGACCCAGTACCTCTCGGAGGCGCTGCCGTACGAGCTCATCGAGGCCGCCCGCGTCGACGGGGCGTCGATGTTCCGGACCTTCTGGTCGGTCGCGATGCCGGCGGCGCTCCCGGCGGCGGCGATGCTCGGGCTGTTCCAGTTCGTGCAGCAGTGGACCAACTACTTCTGGCCGTCGATCATCCTCACCTCGGACAACCCGACGCTGCCGCTGGTGGTGCAGTCGCTGCGCGACAACTACTTCGTCGACTACTCGCTGGTGATGGGTGGCGTGTTCCTCGTGACGCTGCCGCTGCTGATCATGTTCTTCTTCGTCGGCCGCCAGCTCGTCGCCGGGATCATGGCGGGTGCGGTGAAGGGCTGAMSSVAVTAQTAGAGAARAAAKRRQRKVPLGGSARRAGRLTYFLLGAVLLISIFPLYYTLLLGSSDPVAIAQNPIPQWLPDTSLFSQFATVITDSNINFWKALWNSTLIGVFSSLSVVFFSTLAGYSFAKLNFRGRGPLLVFVIATMAVPVQLGIIPLYILMSEIGWYGQVQAVIVPGLVTAFGVFWMTQYLSEALPYELIEAARVDGASMFRTFWSVAMPAALPAAAMLGLFQFVQQWTNYFWPSIILTSDNPTLPLVVQSLRDNYFVDYSLVMGGVFLVTLPLLIMFFFVGRQLVAGIMAGAVKGPGPT0016440_58DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016440-cebG-K10242NANA
AK018_013371185hypothetical proteinATGGCCCTCTTGTCCCCCACCAAGCCCGCGCAACCGCGCGACGGCTCCGACGACCGTCCGCCGCGACGGCTCGGCTTCTCCCAGCGACTCGGACGCCTCGACGTCAAGGTCTCGCCGTACCTGTACATCTCCCCGTTCTTCCTGCTCTTCGCCGTCGTCGGCCTGTTCCCTCTCGCCTACACCGCCGTGGTGTCGGTGTACGAGTGGAACCTGCTCGGCGGGCAGGGCGAGTTCGTCGGCATGCAGAACTACGTCGACGTCCTCCAGCAGCCGACCTTCTGGAAGTCGGTCGGCAACACCTTCTCGATCTTCCTGTTCTCCTCGGTCCCGCAGGTGATCATGGCGATCACGATCGCCGCCCTGCTGGACCAGAACCTGCGCGCAGCCACCTTCTGGCGCATGGGCGTGCTGGTGCCGTTCATCGTGGCCCCGGTCGCCATCTCGATGATCTTCGGCCGCCTCTTCGCCGACCAGTACGGGTTCATCAACGAGCTGCTCGGACTCGTCGGGGTCGACCCGATCGCCTGGCACGGCGACCGGATCGCCAGCCACGTCGCCATCGCCACGATGGTCAACTACCGGTGGACCGGCTACAACACCCTCATCTTCCTGGCGGCCATGCAGGCCGTCCCGCGCGACCTCTACGAGGCGGCCGTCATCGACGGCGCCGGCCGGGTGCGGCAGTTCTTCTCGGTCACCGTCCCGCAGATCCGCGCGACCGTCATCTTCGTGGTCATCACCTCCACCGTCGGCGGCATGCAGATCTTCGACGAGGTCCGCATGTACGACGCCGGCGGCCTCGGCGGCCCGAACCGCGACTGGATGACCACCGTCGTCTACCTCTACGACGTCGCGTGGGGCAACCAGAAGAACTTCGGCCGCGCCGCCGCGGTCGCCTGGCTGCTGTTCCTCATCATCGTCGCCGTCGGCATGGTCAACTTCCTCATGACCCAGCGGATCGCCACCGCCGGGCCGAAGGGCGCCAGGGTCAGCCGCCGGCACACCAAGCGGCTGATGGCCGAGGCCCGCGCCGCCGCGGCCCGGGGGAAGACCCCGACGACGTCGGCCCCGCCGGGCGGCACCCCCGGCCCCCAGCCCGGGTCGCCGCCACCGCCTCCGGTGGACCCGCCCCCGCAGCCGTCCGCCGACTCGCCCACCACGAACTCCGGGGAGGACGTCCGATGAMALLSPTKPAQPRDGSDDRPPRRLGFSQRLGRLDVKVSPYLYISPFFLLFAVVGLFPLAYTAVVSVYEWNLLGGQGEFVGMQNYVDVLQQPTFWKSVGNTFSIFLFSSVPQVIMAITIAALLDQNLRAATFWRMGVLVPFIVAPVAISMIFGRLFADQYGFINELLGLVGVDPIAWHGDRIASHVAIATMVNYRWTGYNTLIFLAAMQAVPRDLYEAAVIDGAGRVRQFFSVTVPQIRATVIFVVITSTVGGMQIFDEVRMYDAGGLGGPNRDWMTTVVYLYDVAWGNQKNFGRAAAVAWLLFLIIVAVGMVNFLMTQRIATAGPKGARVSRRHTKRLMAEARAAAARGKTPTTSAPPGGTPGPQPGSPPPPPVDPPPQPSADSPTTNSGEDVRPGPT0016435_7DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016435-cebF-K10241NANA
AK018_013381347hypothetical proteinGTGCTCAGCAGCACCCGCCCGCGCCGGACTCGCCGCCTCGCCGCGGCCACCGCCGGCATCGCGTCCCTCGGCCTCCTCCTCGGCGCCTGCTCCGGCGACGCCGAGGAGCCCGCCGGTGAGGAGACCGCCGCCGAAGAGGACGGTGGCGCGTCGACCGACGAGGAGATCACCCTCACGGTCGCCACCTTCAACAACTTCGGCTACACCGACGAGCTGCTCGCGCAGTACGAGGACGAGCACCCGAACGTCACCGTCGAGCACACGACCGCGGCGCAGGCCGAGGACGCCCGCACCAACCTGTCCACCAAGCTCGCCGCCGGCGGCGAGGGCCTGGCCGACATCGAGGCCGTCGAGGTCGACTGGCTGTCCGAGTTCATGCAGTACCCGGACCTGTTCGCCGAGATGCCGGCCATCGACGGCCGCTGGGTCGGCTGGAAGGTCGAGCAGGCCACCACGCCCGACGGCAAGCTCATCGGGTACGGCACCGACATCGGCCCCGAGGCCATCTGCTACCGCTCCGACCTGCTCGAGGCCGCCGGCCTGCCGTCGGAGCGCGAGGAGGTCGCCGAGTGGATCGGCGGCGACAGCGCCACCTGGGAGTCCTACTTCGACGCCGGCAAGGAGTACGTCGACGCCAGCGGCAACGCCTGGTTCGACGGGGCGGTCGCCACCTACCAGGGCATGATCAACCAGGTCGAGGCCGCCTACGAGGACCCGGAGACCGGGGAGCCCAAGGACCTCGCCTCCAACACCGAGGTCAAGGACCTCTACGACCAGGTCATCACGGCCGCGGTCGACGACAACCTCTCGGCCGGTCTGGAGCAGTGGGGCGACGACTGGTCGGCCGGCTTCCAGAACGACGCCTTCGCCACGATGCTCTGCCCGTCCTGGATGACCGGGCCGATCGAGCAGAACGCCGGTGGCGTCGAGGGCTGGGACATCGCCGACGTCTTCCCGGGCGGTGGCGGCAACTGGGGCGGTTCCTTCCTGACCGTCCCGGCCTCCGGCGACAACGTCGAGGCCGCCCAGGAGCTCGCCGACTGGCTGACCTCCCCCGAGGTCCAGACGCAGGCCTTCGTCGAGGCCGGCACCTTCCCGTCGCAGGTCGAGGCCCAGGAGTCCGACGAGGTGCAGTCCTTCGTCAACGACTTCATGAGCGAGGCACCCGCCGGTGCGATCTTCTCCTCGCGGGCGCAGGCCATCGACGGCGCCGTCTACAAGGGGCCGCACTACTTCTCCATCCACCAGGAGGTCCAGAACGGCATCAACCGTGTCGACCTCAACGGTGAGGACCCCGAGGAGTCCTGGGAGACCTCGGTCTCCTCGGTGAACGAGCTGGGTCTCTGAMLSSTRPRRTRRLAAATAGIASLGLLLGACSGDAEEPAGEETAAEEDGGASTDEEITLTVATFNNFGYTDELLAQYEDEHPNVTVEHTTAAQAEDARTNLSTKLAAGGEGLADIEAVEVDWLSEFMQYPDLFAEMPAIDGRWVGWKVEQATTPDGKLIGYGTDIGPEAICYRSDLLEAAGLPSEREEVAEWIGGDSATWESYFDAGKEYVDASGNAWFDGAVATYQGMINQVEAAYEDPETGEPKDLASNTEVKDLYDQVITAAVDDNLSAGLEQWGDDWSAGFQNDAFATMLCPSWMTGPIEQNAGGVEGWDIADVFPGGGGNWGGSFLTVPASGDNVEAAQELADWLTSPEVQTQAFVEAGTFPSQVEAQESDEVQSFVNDFMSEAPAGAIFSSRAQAIDGAVYKGPHYFSIHQEVQNGINRVDLNGEDPEESWETSVSSVNELGLPGPT0016430_181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016430-cebE-K10240NANA
AK018_01339501hypothetical proteinGTGCACCTGACGGTGGAGCTGACCTACCCGGCGGACACGGCTTCCGTGGCCGCCATGCTCAGCGACCCGGAGTTCCTGCGCTGGCGGGCCCGCGACCCGGGTGCGGCCGCCGCGACCGTGGTGGACCAGTCCGGCTCGCCGCGCGCGGGGTTCACCGTGGCCCTGCGCCGGACGCTGCCCACCGACGTCATCCCCGTCCACCTGCGGCACGTCGTGGGCGACCAGCTGGAGATCCGTCAGGCGGAGGCGTGGGAACCCCCGACCGAGGGGCGCTACACGGGCACCGTGGTCGTCGAGATCACCGGCGCCCCGGTCCGCCTCACCGGCACCCTGCTCCTGGCCCCGACGGACGACGGCGGGACCCGGCAGGTCGTCGACGGCGTCGTGCACGCCTCGGTCCCCCTGTTCGCCGCGGCCGTCGAGGAGGCCGCCGCCGCAGCCGTCCGTCGCGCCCTGGAGGCGGAGGCGCAGGCCGGCCGCGACTGGCTGGCCCGGTCCTGAMHLTVELTYPADTASVAAMLSDPEFLRWRARDPGAAAATVVDQSGSPRAGFTVALRRTLPTDVIPVHLRHVVGDQLEIRQAEAWEPPTEGRYTGTVVVEITGAPVRLTGTLLLAPTDDGGTRQVVDGVVHASVPLFAAAVEEAAAAAVRRALEAEAQAGRDWLARSNANANANANA
AK018_013401509pdtaS_1COG3920putative sensor histidine kinase pdtaSGTGCGGGCCCGTAGGCTGGTGGGCGTGTCCGCCATGAGTGACCTGATCGCCGAGCACGCCGACCTGCACGAGGGGGACGGCGAGTGGCTCCACCTCCTCGTCGGCGACTGGCAGATCGTCTCCGACCTCGCCTTCGCCGACCTCGTGCTCTGGCTGCCGACCCGCGACGGCCGCTTCGTCGCGGTGGCGCAGTGCCGGCCCAGCACCGGTGCCACCGTGCACTACGACGACGTCGTGGGGTCCTTCGCACCCGACGGGCAGACGCCGCAGCTCACCGCGGCGATGGCCGAGGCGCGCGCCCAGCGGTCCCGCGAGCCCCGGTGGTTCGGCGCGTACGCCGTCCGGGAGGAGGCCGTGCCCGTCGTCCACGAGGGCCGCGCGATCGCCGTCGTCGCCCGGCAGACCAACCTCGGGTCCGGGCGGACGCCCAGCCGCCTCGAGCTCAACTACGTCGAGTCGGCCGACGACCTGCTCGCGATGATCGGGCGCGGGGAGTACCCGTCGCCCAACGCCGCGACGGGGCCGCGCCGGGGCGCGCCGCGCGTCGGGGACGGCCTCATCCGGCTGAACTCCGAGGGCGAGGTGCTCTATGCCAGCCCCAACGCGCTGTCGTGCTTCCACCGGCTCGGCGTCATCGGCCCGCTGGTCGGCCAGTCGCTCGTCGAGGTCACCGCCGGGATCGTCGAGCAGCAGAACACCGTCGACGAGTCCATGCCGCTGGTCGTCATGGGTCGCGCGCCCTGGCGCACCGACATCGAGGCGGGCCGTGTGGCGCTGTCGTTGCGCGCCCTGCCGCTCACCGACCACGGTCAGCGCATCGGCGCCGTCCTGCTGTGCCGCGACGTCTCCGAGCTGCGTCGGCGCGAGCGCGAGCTGATGACCAAGGACGCCACGATCCGCGAGATCCACCACCGGGTGAAGAACAACCTGGCCACGGTGGCCGCCCTGCTGCGGCTGCAGGCCCGCCGCATGGACGTCCCCGAGGCGCGGGCCGCGCTGGAGGAGGCGATGCGGCGCGTCGCCACGATCTCGCTGGTGCACGAGTCGCTGTCGCAGACGCTGGACGAGCAGGTCGGGCTCGACGACATGCTCAAGCGCGCGCTGCGCCTCGCCGCGGACGTGGCCTCGACCCACACCTCGGTGCGCACGGAGCAGCAGGGGTCCTTCGGGATGATCCCCGCGCCGGACGCCACGCCGCTGGCGCTGGTGCTCACCGAGCTGGTGACGAACGCCGTCGAGCACGCGTTTCCCGACCGTGAGTCCGGGACCGTGTGGATCGACGTGCAGCGCGAGGCCGCGGGGCTCCGCGTGGTCGTGGCGGACGACGGCGTCGGCATGCGGGAGGGGATCGAGCAGCTCGGGCGGGCGTCGCGCAGCGGGCTCGGCTCGCAGATCGTCAAGACGCTCGTGACGAACGAGCTGCGCGGCACGATCGACTGGCGCCCTCGCGAGGGCGGCGGCACGGAGGTCGTGCTCGCGGTGGAGCTGCGCGATGACTCCCATCGCTGAMRARRLVGVSAMSDLIAEHADLHEGDGEWLHLLVGDWQIVSDLAFADLVLWLPTRDGRFVAVAQCRPSTGATVHYDDVVGSFAPDGQTPQLTAAMAEARAQRSREPRWFGAYAVREEAVPVVHEGRAIAVVARQTNLGSGRTPSRLELNYVESADDLLAMIGRGEYPSPNAATGPRRGAPRVGDGLIRLNSEGEVLYASPNALSCFHRLGVIGPLVGQSLVEVTAGIVEQQNTVDESMPLVVMGRAPWRTDIEAGRVALSLRALPLTDHGQRIGAVLLCRDVSELRRRERELMTKDATIREIHHRVKNNLATVAALLRLQARRMDVPEARAALEEAMRRVATISLVHESLSQTLDEQVGLDDMLKRALRLAADVASTHTSVRTEQQGSFGMIPAPDATPLALVLTELVTNAVEHAFPDRESGTVWIDVQREAAGLRVVVADDGVGMREGIEQLGRASRSGLGSQIVKTLVTNELRGTIDWRPREGGGTEVVLAVELRDDSHRNANANANANA
AK018_01341249whiB1_1Transcriptional regulator WhiB1ATGGACTGGCGGCACCAGGCGGCCTGCCTCGACGAGGACCCCGAACTCTTCTTCCCGATCGGCAACACCGGCCCCGCGCTCATGCAGATCGAGGAGGCCAAGGCGGTCTGCCGTCGCTGCGACGTCGTCGACACCTGCCTCAAGTGGGCCATGGAGTCCGGCCAGGACGCCGGCGTCTGGGGCGGGATGAGCGAGGACGAGCGCCGCGCGCTCAAGCGTCGCACCGCTCGCGCACGCCGCGCCGGCTGAMDWRHQAACLDEDPELFFPIGNTGPALMQIEEAKAVCRRCDVVDTCLKWAMESGQDAGVWGGMSEDERRALKRRTARARRAGNANANANANA
AK018_013424449hypothetical proteinATGCCCGTCCGCCTCACCCTGCACCCCGACGAGGACGTCGAGCTGCCCGACGACGTCCGCCTCGGTGACCTGCGCGCCCCGCTGGCCGACCTCGTGCGCCGCCCGGAACTGCTGCGCGCCGACCTGCTCGCCGACGACCGCCCCGTGGGTGACGACGCCCGGGTCGGCTCCCGTCCCCTGCTGCCGGGCACGGTGCTGCGCCCCGCACGGTCCGGCGGACGCGCCCTGGGCAGACCCGCCGCCGGCGGCCCCGCGGACGCCGCGGCGGACGTCGCGGCTCTGCGCAGCCCGTGGTGCGTGGCGGCGACGACCGGACTCGCCGCGGGAGAGCCTCGGCCTCTGGCTCCCGGCGCACCCCTCACCCTCGTCGAGGGCAGGCACCGGGTCCGCGTGACCGCCGGTGCGCGCGGGGGCGTCCGGGTCCGACTGCTGTCGCCCGTGCCGCCGACGGACGGGACCGCACCGGGACGAGCCGGTCCGTGGTGGCCCGGTCTGCCGTGGCCCGGCCGACGTCGGCCCGCCACGCTGGGGCACCCCGGCGTCCGCCGCCGTCGGGGGCTCGGGTGGTGGCCACGCCGCTGGCCGTCCCACCACGAGCTCGACCTCGACGGTGTCCGGTACGCGCTGCACCGGTCCGGCGACGTCGAGGTCTGGCTCGCCCCGGAGGCGGCGTCGACGGACACCGCACCGACCGTCGGGCCGGCGATGCTCGCGACGGGACTGGTGCCCGTGCTCGGTTCCGTCGTGCTCGCGGTGACCCTGCGCCAGCCCCTGTACGCGCTGTTCTCGCTGGTCGCGGTCGTCGCGCTCGTGCCGCAGGTCGTCGCGGCCGTGCGTCGTCGCCGACGGGCCCCGCGGGCCATCGGCCCGGACGTCCCGGAGGTCGTCGGTGCGGTCCCGGGGCGCACTGCTGCGCGGATCGCCGCGGTGCACCAGGCCTCCGACGGTGCCTGGCGCCGGGCCGCGCGGGCGCTCGCCGAGCGCGCCACCGCCGGCACCCCGGTACCGCCGCCCACGCCGGGCACGATGCTGCCCGACGGCGCGCTGTGCCTGCGCGGGCCCACCGCCGCGGTCCGGTCCGTGGCACGCTCCGTCGTGGTCGACCTGGCGACCACCGGCGCCCCGGTGCGCGCCGTGGGCGCGGGCCGCGGCGCCTGGCACTGGTGCCGGTGGCTCTCCCCGGACCCCGCGCCGGCCGCGGACGACACGCCCGGCGTCCTGGTCGCCGACGCCCCGACCGCCGACGACCTCGCGACGGCGGACCGGACGGCGCGCCACGGGGGCGTGGTCGTGCTCTGCCTGCCCGACGACGGCCCCGGCGGTCCGGTGCCCGCCCCGGCCTGGTGCCGCACCACCTGGACGATCGGCCCGGACGGCCGTGTCCTGCGCACCGCCCCCGACGGCACCGACTCGCTCGCCCCCGCGACCGGGGTGACCCTCGGGTGGGCAGAACGCACCGCGCGACGGCTGGCGGGTGCGCGCCACCTGCGCCGCCCCGCGACCGGGCCGACTGCGCAGGCGGCGGCCGCACCGGAGAGCGACGGCACCGACCCCACCGACCCGCGGCTGCCGTCCTCGGTCGCGCTGGCCGACCTCCTGGACCTCGACGACCCCGCCGACCGCTGGGCACGCACCGACACCTGGCGCGTCCCGCTGGGCCGCGACGCCGCGGGACGCACCGTCGACCTCGATCTCGACACCGACGGGCCCCACCTGCTCGTGGCCGGCACCACCGGGGCCGGCAAGTCGGAGCTGCTGCAGTCCCTCGTGCTCGGGCTGGCCGCCACGCACTCCCCCGCCGACCTCGCCGTCACGCTCGTCGACTTCAAGGGCGGTGCCTCGTTCGGCCGCTGCGCCGAGCTTCCCCACGTCGTCGGGCAGGTCACCGACCTCGAGGCCGGGCTCGCCGGCCGCGCCCTGGCCGGGCTGCGGGCCGAGCTGCACCGCCGCGAGCGCGTGCTCGCCGACCACGGCGTCGCCGCCTCGCACGATCTCCCGCGCGGAGCCCTGCCCCGGCTGCTGGTGGTCATCGACGAGTTCCGGGCCCTGGCCGACGACCTGCCCGACTTCCTGCCCGGCCTGCTCCGCATCGCTGCCCAGGGCCGCTCGCTCGGGGTCCACCTCGTCCTGGCGACCCAGCGCCCGGCCGGCGCCGTCGGCGCCGACCTGCGCGCCAACGTCTCGGCACGACTCGCGCTGCGGGTCGTCGACCCCGCCGACTCGCGCGACGTCGTCGAGCACCCGGGCGCCGCGGCGATCCGGGTCGGCGAACCCGGCCGCGCCGTGCTGCGCATCGGTTCCGCACCACCGGTCGCGCTCCAGTGCGCCCACGCGGGAGCACCCGGCGGGGAGTCGACCTCGGCAGTGCGGCGGGTCCCCGGCACGCACCCGACGCCGCCGGCCGGAACCGCTGCCGCTCCGCGGGCACCCGGTGGGCCCGACGACGCCGACACCGTCGCCGCGGCCGTCACGGTCCTGCGCGAGGCGGCCGCGGCGGGCGGCCACCGCCCCGGCCCGGCACCGTGGCTCCCCGCCCTGCCGGCCCGGGTCACCGTCGCCGACCTGCCCCCGGACGCCCCCGCCGGGCCCGACCACCTGCCCCTGGCGCTGGCCGACGATCCCGACCACCAGTGCCGGACGGCCGCCTGCTGGCGTCCGGCCGACGGCCACCTCGCCGTCCTGGGCCCCGCCCGGTCCGGACGCACCACCGCCCTGGTCACCCTGGCCCGGGCGGCGCTGGAGCGCGGCCGCGCGGTGCACGTGCTCGCCCCCGCCGCCGCGCAGCACCGCTTCGCCCCTCTCGCCGACCGTCCCGGGTTCGGCACGCTCGCCGGCGCCGACGACCCGCGCCGGGCGCGCCGCCTGCTGCAGCTCCTCGCCGCACCCGCGCCGTCCGGTGCGGACGGTGGCCCGGCGCCCCTCGTCCTGGTCGACGACGTCGCGGCCCTACGCGCTGCTCTCGCCGGGACCGACCCCTGGGACCCGCTCGTCACGGCACTCTCCGCGGGCCGCGCGGCGTTCGCGGTCACGGCCGACGGCGCCACCGTGGGCGGGGTGGCCGCGCGCGTGGGACCGCGGCTGGTGCTGCTCGGCACCGACCAGCACACCGACGTCATGCTCGGTGCGCCGGCACCCTTCGCCGGGACGGGCGGCCCGCCGGGACGCGCCGTCTGGCTCACCCACGGGGTCCCGCTCGCCTGTCAGGTGCTGTCGCCGGAGCCCGTCGCTCCGTCGCACGACGCGCGGGTCGGCGACGCAGCGGTCGCCGGCACGCCCGTGCGGGTGCTGCCGCTCCCCGCGGACGTGACCCCGGCGCACCTCGGCCGAGCCGCAACCGACCCGAGCCCGCACGGCACCGCCGCACCCGGCGACGGGACCGCGGTGACGGTCGGGCTCGGCGGGGACGGCGCCGTCCCGGTCTCCCTCGACGTCGGCGAGGGCGCCCTGGTCGTCGGACCGCACGGCTCGGGCCGCACCACCACGCTGCGGACCGTCACCCGCGCCCTCGCCCGGCGCGGTCGGCTCGCCGCGGTCGTCTCCCGCGACCGGACACTGCGCGAGGACGCCGGGACCGCCCCCACGGCGGGCCTGTCCTCGGCGGCGGTACGGGGGCTCGTCGAGTCCCTGTCGCCCGGGTCGGGCACCGTCGTCGTCGACGACCTGGACGCCGTGGCGCAGACGTGCCCGGTGGAGGCCGAACGACTCGCCGCGCTCCAGCAGGAGGGGCTGCGCGTAGTGGCCTCGGCGACCACCCAGGGGGCGCTGATGGCCCATCGGGGGGTGCTCGCCGAGCTGCGCGGGCGGCGCACCGGGGTGGTGCTGGCGCCGGGCGAGCGGGGCGCGGACGAGGTGCTCGGGACGCCGGTCGCCGACATCGCGGACCCCGGTCCTCCGCGACCGGGGCGCGGCGCGCTGGTCCGGTCCGGGGAGGCGGTCTGCGTCCAGGTGGCCCGGCCCGTCGCGGCCGAGACGCGCTCAGCCGAGCGTGTGCTCGACGACGCCGCGCGTCATGAGGCAGACCAGCACACCGACGGCCAGCGCGAGCACCAGCACCCCGCCGAGCGTCACCACCAGGGACCCGCTGGTCAGCAGCGCGATGGCGATCAGCCCCTGGAAGATCTGCCAGCCGGCGACGGGCGACCGGCCGCCCCGGCGGCCCTGCCACAGGGCGCGCACGGACCAGGCCAGGAGCCAGGCGAGGGCGAGGAAGAAGGCGGCCGTGAAGAGGCTGACGCCGAGGCTCTCCGCCTGGCCCACGACGAGGTCGACGATCATCGCGCCGGCGAAGACCACCATCGCCGCGACCTCGAGCCCGACGCCCGCCACGACGGCGAGCAGAGCCCGGGGCATCCCGGCCGGGGACGGGGTGGCGTCGGCCGGGCCCGAGGGGGCGTCAGAGGTGGGCATCGTCGTGATGATACGGCTGACCTGCCCCGTTGTGCAGTGTGAMPVRLTLHPDEDVELPDDVRLGDLRAPLADLVRRPELLRADLLADDRPVGDDARVGSRPLLPGTVLRPARSGGRALGRPAAGGPADAAADVAALRSPWCVAATTGLAAGEPRPLAPGAPLTLVEGRHRVRVTAGARGGVRVRLLSPVPPTDGTAPGRAGPWWPGLPWPGRRRPATLGHPGVRRRRGLGWWPRRWPSHHELDLDGVRYALHRSGDVEVWLAPEAASTDTAPTVGPAMLATGLVPVLGSVVLAVTLRQPLYALFSLVAVVALVPQVVAAVRRRRRAPRAIGPDVPEVVGAVPGRTAARIAAVHQASDGAWRRAARALAERATAGTPVPPPTPGTMLPDGALCLRGPTAAVRSVARSVVVDLATTGAPVRAVGAGRGAWHWCRWLSPDPAPAADDTPGVLVADAPTADDLATADRTARHGGVVVLCLPDDGPGGPVPAPAWCRTTWTIGPDGRVLRTAPDGTDSLAPATGVTLGWAERTARRLAGARHLRRPATGPTAQAAAAPESDGTDPTDPRLPSSVALADLLDLDDPADRWARTDTWRVPLGRDAAGRTVDLDLDTDGPHLLVAGTTGAGKSELLQSLVLGLAATHSPADLAVTLVDFKGGASFGRCAELPHVVGQVTDLEAGLAGRALAGLRAELHRRERVLADHGVAASHDLPRGALPRLLVVIDEFRALADDLPDFLPGLLRIAAQGRSLGVHLVLATQRPAGAVGADLRANVSARLALRVVDPADSRDVVEHPGAAAIRVGEPGRAVLRIGSAPPVALQCAHAGAPGGESTSAVRRVPGTHPTPPAGTAAAPRAPGGPDDADTVAAAVTVLREAAAAGGHRPGPAPWLPALPARVTVADLPPDAPAGPDHLPLALADDPDHQCRTAACWRPADGHLAVLGPARSGRTTALVTLARAALERGRAVHVLAPAAAQHRFAPLADRPGFGTLAGADDPRRARRLLQLLAAPAPSGADGGPAPLVLVDDVAALRAALAGTDPWDPLVTALSAGRAAFAVTADGATVGGVAARVGPRLVLLGTDQHTDVMLGAPAPFAGTGGPPGRAVWLTHGVPLACQVLSPEPVAPSHDARVGDAAVAGTPVRVLPLPADVTPAHLGRAATDPSPHGTAAPGDGTAVTVGLGGDGAVPVSLDVGEGALVVGPHGSGRTTTLRTVTRALARRGRLAAVVSRDRTLREDAGTAPTAGLSSAAVRGLVESLSPGSGTVVVDDLDAVAQTCPVEAERLAALQQEGLRVVASATTQGALMAHRGVLAELRGRRTGVVLAPGERGADEVLGTPVADIADPGPPRPGRGALVRSGEAVCVQVARPVAAETRSAERVLDDAARHEADQHTDGQREHQHPAERHHQGPAGQQRDGDQPLEDLPAGDGRPAAPAALPQGAHGPGQEPGEGEEEGGREEADAEALRLAHDEVDDHRAGEDHHRRDLEPDARHDGEQSPGHPGRGRGGVGRARGGVRGGHRRDDTADLPRCAVPGPT0030468_201DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
AK018_013432556hypothetical proteinATGCTGCGGATCACGCTGGCGCAGATGCGCCGCAGCGCCGGCCGGCTCGCCGCGGCCGGTGTCGCGATCGTCATCGGCACGGCGTTCGTGGCCGCCACGCTGCTGGCCTCGGGCGTCATCACGCGCACGACCTACGACTCGATCGCCGCGCAGTACGGCGACGCCGACCTGGTCGTGGGCTCCACGACGGACGAACCGCTCGACGTCGACGCGCTGGCCGCGACCGACGGCGTCGCGGCCGTGGCGCCCGTGACGTCCACGGACGCCGAGCTGACCGACGGGGCCCGCTCGGTCTACCAGAGCATCGTCCCCACCGCCGACGAGCGTCTCATGCCGCTCGAGGTGACCGAGGGCGCGATGCCGTCCGCCGCCGACGAGATCGCCCTGCCCGCCGACGTCGCCGACCGGCTCGGCGTCGGGGTCGGGGAGACGGTCGACGTCCAGCGCGACGTGACCGGACAGGACGGATCCTGGGAGCAGGTCGCCGAGTCCCCGACCGTCGTCGGGCTGCTGGACGACCCGTACGGGGCGTACGCGCGGACCGGGGGTGCCGCCGTCGTCGACCCCGCGACGTACACGACGTGGCAGCGCGATCGCCGGGGCGAACCGGTCGCCGTGACCGAGGCCGCCGTCGTGGTGGCGGACGGCGCGGACGTGGCGGCGATGCAGGCCGCGCTCGCCGAGACCGTCGGCGGCTCCCCGAGCACGGACGGCCCCCGGTGGGTGGTCACCACCGACGAGCGGGCGGCCGAGTCCGCCGCCCAGCTCACCGGCGGCCAGGACCTGATGTTCCTCGTGTTCGTGCTGACGTTCGCGGCGATCGCCCTGGTGGTCGCCGGGCTGGTCATCGCCAACACGTTCCAGGTGCTGGTGGCCCAGCGGGCCCGCACCCTGGCCCTGCTGCGCTGCGTCGGGGCGGACAAGGCGCAGGTCGGACGGGGCGTGCTCACCGAGGCCGCGATCCTCGGCCTGGTCGCCTCGGTGGCCGGCGTGCTGCTCGGCACGGTGCTCGGGCAGACGGCCCTGTGGGTGGCCCACGCCCTGGACGTCCCCGTGCCGCTGCCCGGCACGGTGACGCTCACCTGGCAGGTCGTGGTGGTCCCGGTGCTGGTCGGCACCCTGGTCACCGTCGGTGCCGCGCTGGTCCCCGCCCGGGTCGCGACCCGGGTGGCACCGCTGGCCGCGCTGCGTCCGGCCGACTCCCCCACGACGTCGCGCCGCGCCGGGAAGGTCCGCCTGGTGCTGTCGCTGCTGGCCACGGTCGTCGGCTTCGGGCTGCTCGGCGCGGGCGCCGCGCTGGGCACGGCCTGGCAGGAGCCGACGCTCGGCCTGCTGGCCGGGATCGCCGGCGGTGCCCTGTCGTTCGTCGGCGTGGCCGTCGGGGCCGTCTTCTGGCTGCCGAAGGTCGCCGCGGCGGCCGGGCGGCTGGTCGGGGCCTCGGGTCCGACGGCGCGGCTCGCGGCCGCGAACACGCTGCGCAACCCGCGGCGGACGGCGACGACCAGCACCGCGCTGCTCATCGGCGTCACCCTGGTGGCGATGATGACGACCGGGGCCGCGAGCGCCCGGACGTCGCTGACGACGGCGCTGGACGAGCAGTTCCCGGTGGACGTCGTGGTGGGCTCCACGACCTGGGACGCCGCCGGTACGCAGGCCGAGCTCCCGGCGGCGCTGCGCGACGACGTCGCCGCCGTGGAGGGCGTAGCCGCGACGGCCGACGTCCGCCTCACGAGGGTGTCCCGTCCCGACGGCTCCGGCCGCGAGGCCACGGCGCTCGACCCGGAGGCTGCGCGAGCCGTGCTCAACGCACAGGACCGGCTCGACGGACTGGCTCCGGGCACGGTCCTGGTGGGCTCCGAGGTGACGGACGGGCTCTCGACCGGCGACACCCTCGAGCTGTCCGGGCCCGACGGGTCGGCCTCCCTCGAGGTCGTGGTCGGCGACGCCGCGCCGTACAGCGTCTTCGTCACCTCGGCAGACCTCGACCGTGCGGACGCGGCGGCGGTTGTCGTCGAGCAGTACCTGGCGCTGGACGACGACGCGGACGCCGCGTCCGCCGTCGGCGCGATCCAGGACGTCGTGGCGGACTCGGGCGAGTCGGCGCAGGTCACCGGCATCGCGTCCCAGCGCGCCACGTTCGACCAGGTGATCGACACGATGCTGGGCATCGTCGTCGGGCTGCTCGCGGTGGCCGTGGTGATCGCCCTGATCGGGGTGGCGAACACGCTGTCGCTGTCGGTCATCGAACGGCGCCGCGAGTCCGCGACGCTGCGCGCGATCGGGCTGTCCAAGGCTCAGCTGCGCGGCATGCTCGCGATCGAGGGTCTGCTCATCGCCGGTGTCGGCGCGATGCTCGGCGTCGTGCTGGGCCTGGTCTACGGGTGGGCCGGCGCCGCGGCGGCGCTGGGGATCATGGGGGACGTGGCGCTCTCGGTCCCGTGGCTCGAGGTGGGCCTCGTGCTGCTGGTGGCGCTCCTGGCCGGTCTGGTCGCCTCGGTGGCCCCGGCCCGCACGGCGCTGAAGGCGTCCCCGGTGGAGGCGCTCGCCACCGAGTAGMLRITLAQMRRSAGRLAAAGVAIVIGTAFVAATLLASGVITRTTYDSIAAQYGDADLVVGSTTDEPLDVDALAATDGVAAVAPVTSTDAELTDGARSVYQSIVPTADERLMPLEVTEGAMPSAADEIALPADVADRLGVGVGETVDVQRDVTGQDGSWEQVAESPTVVGLLDDPYGAYARTGGAAVVDPATYTTWQRDRRGEPVAVTEAAVVVADGADVAAMQAALAETVGGSPSTDGPRWVVTTDERAAESAAQLTGGQDLMFLVFVLTFAAIALVVAGLVIANTFQVLVAQRARTLALLRCVGADKAQVGRGVLTEAAILGLVASVAGVLLGTVLGQTALWVAHALDVPVPLPGTVTLTWQVVVVPVLVGTLVTVGAALVPARVATRVAPLAALRPADSPTTSRRAGKVRLVLSLLATVVGFGLLGAGAALGTAWQEPTLGLLAGIAGGALSFVGVAVGAVFWLPKVAAAAGRLVGASGPTARLAAANTLRNPRRTATTSTALLIGVTLVAMMTTGAASARTSLTTALDEQFPVDVVVGSTTWDAAGTQAELPAALRDDVAAVEGVAATADVRLTRVSRPDGSGREATALDPEAARAVLNAQDRLDGLAPGTVLVGSEVTDGLSTGDTLELSGPDGSASLEVVVGDAAPYSVFVTSADLDRADAAAVVVEQYLALDDDADAASAVGAIQDVVADSGESAQVTGIASQRATFDQVIDTMLGIVVGLLAVAVVIALIGVANTLSLSVIERRRESATLRAIGLSKAQLRGMLAIEGLLIAGVGAMLGVVLGLVYGWAGAAAALGIMGDVALSVPWLEVGLVLLVALLAGLVASVAPARTALKASPVEALATEPGPT0013350_2747DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
AK018_01344843btuD_5Vitamin B12 import ATP-binding protein BtuDGTGGACACCACCGTGTACGTCCCGATCGACGACGACGCCCCCGGCGCCGTCGCCCCCAGCGACCAGACGCCCGCCGTGCGCGCCCGGGCCCTGACCAAGACCTACGGCACCGGCCAGGCGCAGGTCCGCGCCCTGGACGGCATCGACGTGGACTTCGCGGCCGGCCGGTTCACCGCGATCATGGGGCCGTCCGGGTCGGGCAAGTCCACGCTCATGCACCTGCTGGCCGGCCTCGACAGCGCCACGCGCGGGCAGGCGTTCCTCGGCTCCACCGACGTGACCGCCCTGGGCGACAAGGCCCTGACGAGGCTGCGCCGCGACCGCGTCGGGTTCGTCTTCCAGCAGTTCAACCTGCTGCCGATGTTCACCGCCGAGCAGAACATCACCCTGCCCGTGGAGCTCGCCGGCGGGACCGTGGACCGCGCCTGGTTCGACACGCTGGTGACCACGCTCGGGCTGTCCGAGCGCCTCACCCACCGCCCGAGCGAGCTGTCCGGCGGCCAGCAGCAGCGCGTCGCCGTCGCCCGCGCGCTCATCGCCCAGCCGGAGGTCGTCTTCGCCGACGAACCCACCGGCAACCTGGACTCCCGCGCCGGGGTGGAGGTCCTGAGCTTCCTGCGCCGGTCGGTGCGCGAGCTGGGCCGCACGATCATCATGGTCACCCACGACCCGACGGCCGCCGCGTACGCGGACCGGGTGGTCCTCATCGCCGACGGCCGCATCGCGGGGGAGATCTCCGACCCGACCCCCGAGGCCGTGCTCGCCGGGCTGGACGCGCTGCGTTCCCTCGAGGCCCCGGTGACCGGGACCCCGTCCGACGACGGCACGCGGGCGGGTGCCTGAMDTTVYVPIDDDAPGAVAPSDQTPAVRARALTKTYGTGQAQVRALDGIDVDFAAGRFTAIMGPSGSGKSTLMHLLAGLDSATRGQAFLGSTDVTALGDKALTRLRRDRVGFVFQQFNLLPMFTAEQNITLPVELAGGTVDRAWFDTLVTTLGLSERLTHRPSELSGGQQQRVAVARALIAQPEVVFADEPTGNLDSRAGVEVLSFLRRSVRELGRTIIMVTHDPTAAAYADRVVLIADGRIAGEISDPTPEAVLAGLDALRSLEAPVTGTPSDDGTRAGAPGPT0013345_1612DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_01345399hypothetical proteinATGGCGACCACTCCCCTGAAGCCCGAGACCGTCGAGCTGCTCCGCCGTCCGAACCCGGCCGTCATGGCCACGGTGACGCCCTCCGGGGCACCCGTGTCGGTGGCCACCTGGTACCTCTGGGACGACGACTCGCAGCGCGTCCTGCTCAACCTCGACGCCGGCCGCGCCCGCCTGCGGCACCTCGAGCACGACCCGCGGGTCTCGCTGACGGTGCTGGACGCGAACTGGTACCACCACGTGAGCCTGCGCGGCGAGGTCGAGCTCGTCGACGACCCGGACCTGGCCGACATCGACCGCCTCGCCCGGCACTACACCGACAAGCCGTACGCGGTCCGCGACAACCCCCGGGTGAGCGCCTGGATGACGGTCACCTCGTCCCACCTCTGGCCGCCGCGCTGAMATTPLKPETVELLRRPNPAVMATVTPSGAPVSVATWYLWDDDSQRVLLNLDAGRARLRHLEHDPRVSLTVLDANWYHHVSLRGEVELVDDPDLADIDRLARHYTDKPYAVRDNPRVSAWMTVTSSHLWPPRNANANANANA
AK018_01346675hypothetical proteinGTGTCCCGCCAGTCCCCCGTCGAGCACGGCTCCTCCGTGACGGAGATGCCGTCAACCGAGCAGACCCGGCAGACGCCGCGGGCCGAGCAGGCCGAGGAGCGCTGGGAACGGCGGTTCGCCTGGCCGGTGATCGTCGCGGCCCTGGCCTCCGTGCCCGCCGTCTGGCTGACGCTGCTCTCCGAGCCCTACGCGACGGTCGGCACCGTGGGCAGCCTGCTCACCGGTGCCGTGCTGCTCGCGGAGACGGTCGTGCTGTTCGCGGTCTCCGGCGACAAGCGGCGGTGGGTGTGGCAGCACCGGTGGCTGGTCGTGGTGACGCTGGCCAGCGTGGTCTCGGCGGTGCTGGCCATCGGCCCGACCCAGCTCCTGCGGCTGGTGCGGGCGGTCGGTGCGCTGCGTCTGCTGCGCGCGCGCCACATCGTCCGGGCCGGCCGGCGGGTCATGGACCACTCCCGGCTGGACAAGAGGTGGGAGCGGGTCCTGACCGGGGTGATCATCGCCGTCGTGGCCGCCTTCGTGGCCGTGGTCCTGGCCGACCCGACGTCGCAGAGCCGCGTCCTGCTGGAGAGCCTGGTCGGCGGTCCGGCGTACGTGTGGCTCGTCCTGCTCGCCGGCCTGCTGCTGTCGGCGGCGGTCTTCGTGCTGGTGCGGGCGCGCCTGCGCGACGACGGCTGAMSRQSPVEHGSSVTEMPSTEQTRQTPRAEQAEERWERRFAWPVIVAALASVPAVWLTLLSEPYATVGTVGSLLTGAVLLAETVVLFAVSGDKRRWVWQHRWLVVVTLASVVSAVLAIGPTQLLRLVRAVGALRLLRARHIVRAGRRVMDHSRLDKRWERVLTGVIIAVVAAFVAVVLADPTSQSRVLLESLVGGPAYVWLVLLAGLLLSAAVFVLVRARLRDDGPGPT0004175_15DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600NANA
AK018_01347672nreC_1COG2197Oxygen regulatory protein NreCATGACGGCACCGATCCGCGTCGCCCTCGTCGACGACCAGCAGCTCGTGCGCGCCGGGCTGCGCATGGTGATCGACTCCCAGGACGACCTGACCGTCGTCGTCGAGGCCGCCGACGGCGCGCAGGCGCTGCGGCTGCTGGCCGACCACCGCGTGGACGTGGTGCTCATGGACGTGCGCATGCCCACCATGGACGGGCTCACGGCCACCGCCCGGCTCACGGCGTCCCCGGACGCGCCGACGGTGGTCGTGCTGACGACCTTCGACCTCGACGAGTACGTCCTGGAGGCGATCCGCGCGGGGGCGTCGGGCTTCCTGCTCAAGGACACCCCGCCCGAGGAGCTGCTCGCCGCGGTCCGGACGGTGCAGCGCGGCGACGCCGTCATCGCACCGTCGTCCACCCGCCGGCTGCTGGAGCACCTCGTCACCGCGCTGCCGGCGTCGTCCGCCCCCGCCCAGCACGCGGCCCTGGCGGCGCTGACCGAGCGCGAGCGCGAGGTGCTGGTCCTCATGGCGCGGGGGCGGTCGAACACCGAGATCGCGGCCGACCTGTTCGTCGCCGAGGCGACCGTCAAGACGCACGTCGGGCGAGTGCTGGCCAAGCTGGGCGCCCGGGACCGCGTCCAGGCGGTGGTGACCGCCTACGAGACCGGGCTGGTGCGGCCCGGCGCCTGAMTAPIRVALVDDQQLVRAGLRMVIDSQDDLTVVVEAADGAQALRLLADHRVDVVLMDVRMPTMDGLTATARLTASPDAPTVVVLTTFDLDEYVLEAIRAGASGFLLKDTPPEELLAAVRTVQRGDAVIAPSSTRRLLEHLVTALPASSAPAQHAALAALTEREREVLVLMARGRSNTEIAADLFVAEATVKTHVGRVLAKLGARDRVQAVVTAYETGLVRPGAPGPT0014870_122DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
AK018_013481320hypothetical proteinATGGGCTGGTCAGGACGGGTGAACCGGTGGTTCGAGCACCATCGGTTCCTCGTCGACGCCGTCGGTGCCGGGGTCCTCGCCCTCGTCGTGCTGCTGACGGCCACCGACCTGTCGGGGAGCGACCGCGGTCCCGCCGTCGTCGCCTGGTCCGTGGCCCTGGTCGTCCCCCTCGCCTGGCGACGCACGCACCCGGTCGCCTCGGTCGTCGCGGTCTACGCGGTCGCGCTGGCCCACCTCGTCTCCGGACTGCCGCTGCTGCTGCCCGGGGACCTCGCGGTGCTCGCCGCGCTGTGGGCGGTCACGGTCTACGGGCCACGGTGGGCCCACGTCACGGCGATCGTCTCCGCCGTCGCCGGCTGCTTCCTCCTCGGTCCGGTGCTGATCCTGCAGGGCGCCTGGTTCTCCGGGCTCGCGGACACCCTCGGGATCAGCCTGTTCTGCTCGACCGTCGCGCTGGCCGTGTGGGCGCTGGCGCTGGTCCGCCGCTACCGGCGGGTCACCGTCGAGGCGCTGCGGGACCGCGCCGAACGGCTCGAGGTCGAACGCGACCAGCAGGCCCGGATCGCCACCGCCGCCGAACGTGCCCGCATCGCCCGCGAGATGCACGACATCGTGGCCCACTCGCTCTCGATCGTGGTCGCCCAGGCCGACGGCGGCCGCTACGCGGCCTCGTCCGACCCGCAGGCCGCCGTGCGCGCCCTCGACGTCGTGTCGGAGACGGGGCGCGCCGCACTGGCGGACATGCGCCGCCTGCTCGGCGTCCTGCGCGACGACGACGGTCACGTGGTCCGGGTGCCGGCCCTGTCGGGCGCCGGGCCGGCACCGGGCGGGGGCGGGCCCGCGACACCGTCCGGGGCCACCGCACCGCCGTCGTCCCCGGCACCGCTGGCGCCGCAGCCGGACGACGCCGAGCTCGACGGCCTCGTGGCGCAGGCCCGCGAGGCCGGGATGCGGGTGTCGCTGGTGCGTGTCGGGACGCCGCGCCGGCTCCCGCCGGGAGCCGGCCTCACCCTGCACCGCGTCACCCAGGAAGCCTTGAGCAACGTCCGCAAGCACGCCGGTCCGCAGCCGCGCGTGACGGTGGTGCTGCGCTGGGAGGCGGACGCGGTCACCGTCGAGGTCTCCGACGACGGCCGGGGGGCGGCGGCCGTGCCCGGCACGGACGGCTACGGGCTGCTGGGCATGCGCGAGCGCGCCGCCGTGTTCGGGGGCTCGGTCACCGCCGGTCCCCGGCCGGGCGGAGGCTGGCGGGTACGGTTCACGATGCCCGTCCCCGCCTCGGCCCCGGGGACGTCCGACGATCCCGAGGAGCAGACATGAMGWSGRVNRWFEHHRFLVDAVGAGVLALVVLLTATDLSGSDRGPAVVAWSVALVVPLAWRRTHPVASVVAVYAVALAHLVSGLPLLLPGDLAVLAALWAVTVYGPRWAHVTAIVSAVAGCFLLGPVLILQGAWFSGLADTLGISLFCSTVALAVWALALVRRYRRVTVEALRDRAERLEVERDQQARIATAAERARIAREMHDIVAHSLSIVVAQADGGRYAASSDPQAAVRALDVVSETGRAALADMRRLLGVLRDDDGHVVRVPALSGAGPAPGGGGPATPSGATAPPSSPAPLAPQPDDAELDGLVAQAREAGMRVSLVRVGTPRRLPPGAGLTLHRVTQEALSNVRKHAGPQPRVTVVLRWEADAVTVEVSDDGRGAAAVPGTDGYGLLGMRERAAVFGGSVTAGPRPGGGWRVRFTMPVPASAPGTSDDPEEQTNANANANANA
AK018_01349687regX3_2COG0745Sensory transduction protein regX3ATGACCCACGTACTGCTGGCCGAGGACGACCCGGCAATTGCCGAGCCTTTGGCGCGGGCCCTTTCTCGTGAGGGTTACGACGTCGTCGTGCAAGGAACAGGTCAAGGAGCGATCGATCACGCCGGGGACGCGGACATCGTGGTCCTCGACCTCGGCCTGCCGGACGTCGACGGACTCGACGTCGCCCGGGAGATCCGCGGCCGCGGCCTGACCACGCCGATCCTGGTCCTGACCGCGCGCGCGGACGAGGTCGACCTCGTGGTCGGGCTCGACGCCGGCGCCGACGACTACGTCACCAAGCCGTTCCGGCTGGCCGAGCTGCTCGCACGGGTGCGGGCGCTGCTGCGCCGCACGCACGGCGAGGCGACCGAGGACGAGGAGATGCGCGCCCAGGACGTCCGGGTGGACGTCTCCGCGCACCGTGCCTTCCAGGGCGACCGCGAGCTGCACCTGACCACCAAGGAGTTCGACCTGCTCAAGGTGCTCGTGGGCAACGCGGGCTCCGTGGTCGTGCGCGACACGCTCATGCGGGACGTGTGGGGCTCGGACCCGGTCGGCTCGACCAAGACGCTGGACATGCACGTGTCCTGGCTGCGGCGCAAGCTCGGCGACGACGCGAACGCGCCGCGCTACATCTCGACCGTGCGAGGACTCGGCTTCCGCTTCGAGCTCGGTCAGCAGGCCTGAMTHVLLAEDDPAIAEPLARALSREGYDVVVQGTGQGAIDHAGDADIVVLDLGLPDVDGLDVAREIRGRGLTTPILVLTARADEVDLVVGLDAGADDYVTKPFRLAELLARVRALLRRTHGEATEDEEMRAQDVRVDVSAHRAFQGDRELHLTTKEFDLLKVLVGNAGSVVVRDTLMRDVWGSDPVGSTKTLDMHVSWLRRKLGDDANAPRYISTVRGLGFRFELGQQAPGPT0002675_159DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
AK018_013501347sasA_4Adaptive-response sensory-kinase SasAGTGCGTCGTCGCGTCCTTCAGGCGACGATCTCGGCGGTCGCGGTCGCGGTGATCCTGCTCGGCGTCCCGCTGGGCATCTTCGGCGCGCGCTACGTCGTCGCCGGTGCCGAGCAGCGGATCTCCGACCGGCTCGACGCCTTCACCCTGACGGTGTCGCGCGCCGTCGAACGGGGTGAACGGCCCACCGACGACCAGCTGCAGCGCGCCGCCGAGGGACGCGAGGGCGACCTGCCGGCCCGCGTGACCGTCAGCCTGCCCAGCGGCGAGCAGCTCACCTACGGCGAGGAGATGGCCGACCCGGTCGTCGTCAAGGCGCGGCAGACCGAGAGCGGGCGCGCCTGGATCTCCTTCGAGGTGTCCGCCCGGGGCGCCTACATCCAGGCCGCCCAGATCGTCGCCCTCGTCGTCGTGGCCGGGGTCGTGGCCATCGGTGCCGGGGTCGCGATGGCCGTGTGGCAGGCCAACCGGCTCTCCGCGCCCCTGGTGTACCTCGCGGCGTCGGCCGAACAGCTCGGCTCGGGCCAGGTCCGGCCCAGCCTGGACCCCTCCGGCGTGGAGGAGATCGACCTCGTCGCCGCCGAGCTGGCCCGGTCCGGGGACCGTCTGGCGGGTCGGCTGGCCGCCGAGCGCCAGTTCACCCAGGACGCGTCCCACCAGCTGCGCACCCCGCTGACGGCGCTGTCGATGCGGCTGGAGGAGATCATGCTGACCTCCACCGACGAGGAGGTCGTCGACGAGGCACGGGTGTCGCTGGAGCAGGTGGAACGGCTCGTCACCGTCGTCGACGACCTGCTGGCCACCTCGCGCCGCTCGCAGGGCGGCACGACCGAGGCCGTGGTCCTGCTGGACGTGGTCCGCCAGCAGCACGAGGAGTGGGCCGACACCTTCGCGGGGGCGGGCCGCGAGCTCGTGCTCGACGTCGCCGAGGACCACCGGGTGCTCGCCACGCCGGGAGCCCTGGCCCAGGTGATCGCCACCCTGCTGGAGAACTCGCTGAAGTACGGCGACGGGACGACCACCATCCGGTCGAAGCCCTCGGGGCCGAAGAACGCCGTCGCCCTCGAGGTCACCGACCAGGGGCCGGGCGTCGACGACGAGATCGCCCCGCGGATCTTCGAGCGGGGAGCCTCCACGGGCGGCAGCACCGGTCTCGGCCTCGCGCTGGCCCGTGACCTCGTGGCGGCCGACGGCGGACGCCTGGAGCTGGCGCAGCGGCGGCCACCGGTCTTCCGGATCTTCCTCTCCGGCGTGCCGCGCACCCTCGACCCGCGGGTCGTGCTGCCGCCGGGGACCACCATCTCGTCGCGAGGACGGCGCCGCGGCTGGTTGCACCACCACGAGGACTGAMRRRVLQATISAVAVAVILLGVPLGIFGARYVVAGAEQRISDRLDAFTLTVSRAVERGERPTDDQLQRAAEGREGDLPARVTVSLPSGEQLTYGEEMADPVVVKARQTESGRAWISFEVSARGAYIQAAQIVALVVVAGVVAIGAGVAMAVWQANRLSAPLVYLAASAEQLGSGQVRPSLDPSGVEEIDLVAAELARSGDRLAGRLAAERQFTQDASHQLRTPLTALSMRLEEIMLTSTDEEVVDEARVSLEQVERLVTVVDDLLATSRRSQGGTTEAVVLLDVVRQQHEEWADTFAGAGRELVLDVAEDHRVLATPGALAQVIATLLENSLKYGDGTTTIRSKPSGPKNAVALEVTDQGPGVDDEIAPRIFERGASTGGSTGLGLALARDLVAADGGRLELAQRRPPVFRIFLSGVPRTLDPRVVLPPGTTISSRGRRRGWLHHHEDNANANANANA
AK018_01351486hypothetical proteinATGTCCCCGTCGGCCCCCGCCCCCGCCTCCGTCGGGCGACCCGTGTGGCCGGTCCGGCTGGTGACCGCGCTCTGGCAGCGCCGGCTCGAGCTGCTGCGTTTCGGCACCGTCGGGGGCGTGGCGTTCGTCGTCGACTTCACGCTGTTCAACCTCATGACGCACGGGCCGGTGGACGTCCTGGCCCACAAGCCGGTGACGGTCAACATCATCGCCACCGGCGTCGCCACCCTGGTCTCCTGGGTGGGCAACCGATACTGGACGTTCGCCACGCGCCGCACCCGGCACCGGGTGCGGGAGCTCCTGGAGTACGGGGCCGTGAACGTGGGCGGCATGGCGATCTCCTCGCTCTGCCTGGCCGTCTCCCGCTACCTGCTGGACCTGGACTCGGCGCTCGCCGACAACACCGCCAAAGTGGTCGGCCTGGTCCTGGGGATGGTGTTCCGCTACGTCCTGTACCGCACGGTGGTGTTCCGCGGCGACGGCTGAMSPSAPAPASVGRPVWPVRLVTALWQRRLELLRFGTVGGVAFVVDFTLFNLMTHGPVDVLAHKPVTVNIIATGVATLVSWVGNRYWTFATRRTRHRVRELLEYGAVNVGGMAISSLCLAVSRYLLDLDSALADNTAKVVGLVLGMVFRYVLYRTVVFRGDGNANANANANA
AK018_013521161purK_1COG0026N5-carboxyaminoimidazole ribonucleotide synthaseATGATGGCGCCCCCGGCCGCCGAGCTCGGCGTGCACCTGCGCGTCCTGGTCGAGGACCCTACGACCTCGGCCGCACAGGTCGTCGTCGACACCCCGGTGGGCGCGGCGTCCGACGACGCGGCGATCCGCGACCTCATCGCCCCGGCCGACGGCCGGCCCGGTGCCGACGTGCTCACCTTCGAGCACGAGCACGTCCCGAACGCGCTGCTCGCCGACCTCATCGACCATGGCACCCCGGTCCGCCCGGGCCCCGAGGCCCTCGTGCACGCGCAGGACAAGATCGTCATGCGTCGTCGGCTCACCGACCTCGGCGTGCCCTGCCCGCGCTGGGCCGCGCTGCCGAGCGAGCCCGCGGAGGCGCGCACCGCGCTGGCGGCTTTCCTCGCCGACACGGCGGACGGCGAGGCGGTCGTCAAGACCGCCCGCGGCGGGTACGACGGCAAGGGCGTCCGGGTCGTCGGCGCGGCCGACGCGGCGGACGACTGGATCGCCGCGCACCGCGACGGCGGCCCCGAGCTCCTCGTCGAGGACAAGGTGCCGTTCACCCGCGAGCTCGCCGTGCTCGTCGCGCGCCGGCCGTCGGGCGAGGTGCGCACGTGGCCCGTGGTCGAGTCGATCCAGCGCGACGGCGTCTGCGCCGAGGTCGTCGCCCCGGCGCCGGACCTGTCGGCCGACCTCGCCCGCGAGGCACGCGACGTCGCCGTGCGGATCGCCGAGGGTCTGGACGTCACCGGGGTCTTCGCCGTCGAGATGTTCCAGGCGGCCGGGCCCGACGGCGCCCCGCACGTCCTGGTCAACGAGCTGGCGATGCGTCCGCACAACTCGGGGCACTGGACGATCGACGGTGCCGTCACCAGCCAGTTCGAGCAGCACCTGCGGGCCGTCCTGGACCTCCCGCTCGGCTCCACCGAGCCGGTGGCCGGCTGGACGGTCATGGCCAACGTGCTCGGCTCGTCCCTCGAGCGGCTCACCGACGCGCTGCCGGCCGTCGGCGAGCGGTTCCCGGACGCGCACGTCAACCTGTACGGCAAGGGCATCCGCCCGGGCCGCAAGCTCGGCCACGTGAACGTCTGCGGCGGCGACCTGGACCAGGTGCGCCGCCGTGCCCGGGCCGCCGCGGCGCTGCTGCGCGGCGAGACCTCCGAGGAGCAGGAGAACTGAMMAPPAAELGVHLRVLVEDPTTSAAQVVVDTPVGAASDDAAIRDLIAPADGRPGADVLTFEHEHVPNALLADLIDHGTPVRPGPEALVHAQDKIVMRRRLTDLGVPCPRWAALPSEPAEARTALAAFLADTADGEAVVKTARGGYDGKGVRVVGAADAADDWIAAHRDGGPELLVEDKVPFTRELAVLVARRPSGEVRTWPVVESIQRDGVCAEVVAPAPDLSADLAREARDVAVRIAEGLDVTGVFAVEMFQAAGPDGAPHVLVNELAMRPHNSGHWTIDGAVTSQFEQHLRAVLDLPLGSTEPVAGWTVMANVLGSSLERLTDALPAVGERFPDAHVNLYGKGIRPGRKLGHVNVCGGDLDQVRRRARAAAALLRGETSEEQENPGPT0021550_285DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021550-purK-K01589NANA
AK018_01353522purE_1COG0041N5-carboxyaminoimidazole ribonucleotide mutaseATGAGCCACACCGCACCCGCCGTCGGCATCGTCATGGGGTCGGACTCCGACTGGCCCGTCATGGAGGCCGCCGCCGACGCGCTGGCCGAGCTCGGCGTGGACTGCGAGGTCGACGTCGTGTCCGCCCACCGCATGCCGACCGAGATGATCGACTACGGCCGACGGGCCGCCGACCGGGGCGTGCGGGTCATCATCGCCGGCGCCGGCGGCGCTGCGCACCTGCCCGGCATGCTCGCCGCCGTCACGCCGCTGCCCGTCATCGGGGTCCCGGTGCCGCTCAAGCACCTGGACGGCATGGACTCGCTGCTGTCGATCGTGCAGATGCCCGCCGGTGTGCCTGTGGCGACGGTGTCGATCGGCGGTGCCCGCAACGCCGGGCTGCTCGCTGCGCAGATCCTCGGTGCCGGGACCGACGCCGAGTCGCTGGCACTGCGCGAGCGGATGGTGGAGTTCCAGGAGGGACTGCGTGACGTCGCCCACGCCAAGGGGGAGCGGCTGCGGGCCGCACGCGCTTCGCGCTGAMSHTAPAVGIVMGSDSDWPVMEAAADALAELGVDCEVDVVSAHRMPTEMIDYGRRAADRGVRVIIAGAGGAAHLPGMLAAVTPLPVIGVPVPLKHLDGMDSLLSIVQMPAGVPVATVSIGGARNAGLLAAQILGAGTDAESLALRERMVEFQEGLRDVAHAKGERLRAARASRPGPT0021545_776DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021545-purE-K01588NANA
AK018_013541353tagU_3Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUATGACGGACGAACGACGCATCCCCCCGAGCTTCACCCCGGCCGGAGGCCGTAGCGCCCGCCCGGCCGCGACGAACGACGCCATCTCGGTCGGCGGCTCCGACCGCACCCCTCGCCCCACGGGCCGGGTCGGCCGACGGGACGACGCGGTGCCGATGGAGAGCCGCGAGCCCCGTGTCCGCCGGCAGTCCTCCCGGGAGATCCCCGTGACGCCCCCGCGTCGCTCTGCCGCGCCTCAGCGCCAGCCGCGCGCCTATCCGCCCGCCGGCACCGAGCGGTCCGCCCGGCCCGCGTCGCACCCCCCGGCCGGCCGACAGCAGGGTGCCGCCCGTGCAGCCGCTCCGCCCCCGCGCCGCACTCCCCCGCCTTCGGGCCCGCCCGCCGGCTCCCGGACCGCCGGGGGCGACGGCGGCTTCCGCGTGCGCAAGGGCCGCGTCGCGGTGCTGGTGCTCGCCATGGTGCTCGTGCTGCTGCTCGCCTGGCCGATCGGGCTGGTGGTCTGGGCCAACGGCAAGATCCAGCACACCGAGGCCCTGTCCGACGCCTCCGGGACGCCGGGCACGACCTACCTGCTCGCCGGGTCCGACGCGCGCGGGTCCGGCGGTGTCGACGACAGCACCGCGGGCGCCCGCACGGACACGATCATGGTGCTCCACGCACCGCGCAGCGGGCCGACCGCCCTGATCTCGATCCCGCGCGACACCTATGCGGAGATCCCCGGGGAGGGCGCCAGCAAGATCAACGCTGCCTATGCCTGGGGCGGGCCGCCGCTGCTGGTGGAGACGGTCGAGGGCCTGACCGGGATGACCGTCGACCACTATGCGGAGGTCGGGTTCGGCAGCCTCGAGGAGATCGTCGACGCGGTCGGCGGCGTCGAGCTCTGCTACGACCGGACGGTCCAGGACGAGAAGAGCGACCTCGACTGGGAGGCCGGCTGCCACCTGTCCGACGGCCAGACGGCCCTCGCGTTCTCCCGCATGCGGTACTCGGACCCGCAGGGGGACATCGGACGTGCCGAGCGGCAGCGCCAGGTGATCGCCGCCGTCGCCGGGAAGGTGGTCCAGCCCAGCGTGCTGCTCAACCCGATCGACCAGGTCCAGCTCGTGGAGGCCGGCACCGACGCCCTGCTCGTCGACGAGGACACCGGCATGATCGACCTGGGCCGGCTGGCGCTGGCGTTCCGCGACGCGACGGGGCCCGAGGGCGTGACCGGCACCCCGCCGATCGCCGACCCCGGCTACAACCCCGGCAACGGTGTCGGTTCCACGGTGCTGCTCTCGGACGACGCCGACCAGTTCTGGTCCGACGTGCTCGAGGGGAACCTCACCCCGGGCGAGCCGGTCGGCGGGCTCTGAMTDERRIPPSFTPAGGRSARPAATNDAISVGGSDRTPRPTGRVGRRDDAVPMESREPRVRRQSSREIPVTPPRRSAAPQRQPRAYPPAGTERSARPASHPPAGRQQGAARAAAPPPRRTPPPSGPPAGSRTAGGDGGFRVRKGRVAVLVLAMVLVLLLAWPIGLVVWANGKIQHTEALSDASGTPGTTYLLAGSDARGSGGVDDSTAGARTDTIMVLHAPRSGPTALISIPRDTYAEIPGEGASKINAAYAWGGPPLLVETVEGLTGMTVDHYAEVGFGSLEEIVDAVGGVELCYDRTVQDEKSDLDWEAGCHLSDGQTALAFSRMRYSDPQGDIGRAERQRQVIAAVAGKVVQPSVLLNPIDQVQLVEAGTDALLVDEDTGMIDLGRLALAFRDATGPEGVTGTPPIADPGYNPGNGVGSTVLLSDDADQFWSDVLEGNLTPGEPVGGLNANANANANA
AK018_013551383tagU_4Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUGTGACTCCCCCGACCGCCCGCCACGTCGCGCCGCGACACGGCTCCGCGACCGGGCCGGCGCACGCCCGGACGCAGCCGGGAGCCTCGCTCCTGCGCGTCGTCGCGCTGCTCATGACGGCCGTGCTCGCCTTCGTCGGTGTCGGAGCCGCGACCGCGGCCGTCCAGCTCACCGGCAACATCGACGCCGTCGACGCCGAGGCCGCGCTCGGCGAGGACCGCCCGGAGAAGGTCGTCCCGGACGACCCGAACGCCGGCGAGCCGCTGAACATCCTCCTGCTCGGGTCCGACTCGCGCGAGGGCGACAACGGCAACGACGCCGACGGCACCGAGGGGGCGCGCTCGGACACCACGATGGTCCTGCACCTGTCCGCGGACCGGTCCCGGGTCGAGCTGATGTCGATCCCGCGGGACACCACGACGGACATCCCGGCCTGCCCGACCACCTCCGGCGGCGAGACCCCGCCGCTGTACGGCGTGAAGTTCAACGCCGCGTTCTCCCAGGGCGTGGTGTACGGCGGCGACGTGGAGTCCGGTGCGCTGTGCACCATGAAGACGGTCGAGACGCTGTCCGACGTCCGGATGGACGGGTTCGTCGTGGTCGACTTCTCCGGCTTCCGGGGCATGATCGACGCTCTCGGCGGCGTCGAGATGTGCATCCCGAACGACATCTCGGCGCCCAAGGCGGACGACCTCGTGCTGTCGGCGGGCGTGCAGGAGCTGGACGGCAAGACCGCGCTGCAGTACGCCCGCGCCCGCACCGGCCAGGGGCTGGGCGACGGCTCCGACATCGGGCGCATCGCCCGCCAGCAGGAGCTCATGGCGGCCCTGGCCCGCACCGTCCTGGACCAGAACATGCTGACCGACTCCGCCCGGTTGCTGCAGTTCCTCGGGGCGACGACCGGGTCGTTGACGATGAGCAGCAACTTCGCCTCGGTCCAAGGACTCGCCGGGCTCGCGTACAGCGCCCGCGGGGTGCGGCCTGAGAGCATCGCCTTCATGACCGTCCCGTGGCGCTACGACCCGGACAACCCCGCGAACGTCGTGCTCACCGAGGAAGCGGCCACCACGTGGGACGACCTGCGGCACGACCGTCCTCTCAGCGACGTCGTCGCGGGCTCGGAGGAGACCGAGCCGTCCCCGGGGACCGGCGACGGCGAGACCTCCGACGGCGGGACCGAGGAGGACGGGTCGTCCTCGGAGGGCGCCGCGGCCGACGGGGCGGAGTCCGACGCCGCTGCGACCACGGTCGCGCAGGCCGTCGTGACGGACGCGGAGACCGACGGGCCGACGGCGACGCCGACCGAGGAGCCCTCCCCCGGACAGACGCGCGACCCGCGCGAGGAAGCCTTCACCGGGGCCGACGTGACCGCGGTGTGCGGGTGAMTPPTARHVAPRHGSATGPAHARTQPGASLLRVVALLMTAVLAFVGVGAATAAVQLTGNIDAVDAEAALGEDRPEKVVPDDPNAGEPLNILLLGSDSREGDNGNDADGTEGARSDTTMVLHLSADRSRVELMSIPRDTTTDIPACPTTSGGETPPLYGVKFNAAFSQGVVYGGDVESGALCTMKTVETLSDVRMDGFVVVDFSGFRGMIDALGGVEMCIPNDISAPKADDLVLSAGVQELDGKTALQYARARTGQGLGDGSDIGRIARQQELMAALARTVLDQNMLTDSARLLQFLGATTGSLTMSSNFASVQGLAGLAYSARGVRPESIAFMTVPWRYDPDNPANVVLTEEAATTWDDLRHDRPLSDVVAGSEETEPSPGTGDGETSDGGTEEDGSSSEGAAADGAESDAAATTVAQAVVTDAETDGPTATPTEEPSPGQTRDPREEAFTGADVTAVCGNANANANANA
AK018_013562184hypothetical proteinATGACCGGGTCGCCGATGCGCATGCTCCGGGCGGCACATACCGTCTCCCTCGTGACACCCGCCACACGTGCAGGCCGGCGGACCGCCGTGACCGCCCTGGTCGGCCTGCTGTCGTTCTCGCTGGTCGCCGTCCCCGGGGCACAGGCCGTCCCCGCGTCCCCGGGCGCGGTCACCGCGGACTCCTCCGACGACGCCGGAGCACCCGGCGCAGCGCACGGCAGGTCGGCGGAACCGGTCGAGGCCACGACCGAGACGACCGGGTTCTCCCCGGCAGCGCCGGCTGCCGCCGGTTCGCCGGCCTCGCCCCGAGCGCAGGACGCCCCGCGGGCGCGGAACTCCGCCGGACCGCCGGACCGCCCGGAGCACGCCGGCGTCCCGCTCGAGGCGACCTCCGACGTCACGGGGTTCGGCGTCGTGGGCGTCACCTGGTCGAGCCCGGTCGCGCACGACGCCCTCGTGGTCGAGGTGCGTACCTCCGACGACGCCGGTGCCCCGCAGGACGACGACGGCGCGTGGAGCGCCTGGGAGCGGGTCGACGTCGAACCGTCGCCGCGCGGGGACCTGGACGGGACCGAGCCCGTGGTCGTCGGGGAGGTCGCCCGGGTGCAGGCCCGCGTCTCGGGCCCGTCCGCCGGCGCGGTGCGAGACCTGGGGCTCACCGTCATCGACCCCGGCACGTCCCCGGCCGACGACGACGTCCCCGTGCCCTCCGAGGAGACCTCGCCCTCGGGACGGGCCGTGGCCGCGACTCCCGTCCCGGACCGTCCCACGATCGCCTCGCGCGCCGCCTGGGGTGCGGACGAATCGATCATGACCTGGACGCCGCGCCAGGGCGACGTCCGCGGCGCCGCGATCCACCACACGGCCGGCACGAACTCCTACAGCGAGAGTCAGGTCCCCGGGATCCTGCGCGGCATCTACTCGTACCACGCCCAGACCCGCGGGTGGGGGGACATCGGCTACAACTTCCTCGTCGACAAGTTCGGCCGCATCTGGGAGGGCCGCGCCGGCGGCGTCGACCGGCAGACCGTCGGCGCCCACGCCCGTGGCTACAACAGCGGCTCCACCGGTGTCAGCGTGCTGGGCAACTACGAGACCGCCACCGTCTCGAACGCCGCCGTGAGCGCCGTCGTCCGCCTCGTCGCCTGGAAGCTCGCCCTGCACGGGGTGGCCGCGGACGGCTCGATCTCCATCGCCGGCACGCCTCTCGCCGCCGTGTTCGGCCACCGTGACGTCGGCTCGACCGCGTGCCCCGGCCGGACGTTGTACAACCGGTTGGGCGAGATCCGACGCCGGGCCGCTGCGCGGCAGGAGGCCGCCGCAGAGCCCGACGTGGCCGACGTGGCCGACGGCGACTTCGTCAAGCGTCCTGACGGCCGTGTCGCGATGATGGAGAAGGGCCGACGGCACCTGGCACGGTGCGATCTGGTCGAGGACTACGGGAGCCGATGCCGCGAGGCGACCCGCATCAGCAGACAGGCATGGGATGCCCTCGAGCCTGGTGGATATCTGTATCCAAGCGCCCGAACCACGGATGGCAGAGTCTTTCGCGTCGTGAACGGCACGAAGCGTGAAGTGTTCGACATGGACTCCTTGCGGCGCATCGGCAAGCTCACGCCTCGCACGCTGATGCACGCCGACGCGCTCGACCACCTCCCCTACGCGAAGCCTGTAGTGCGTCCAGGTGTCGTTGTCGTCAACCGACACTCCGGGCGGTACCGGCTCGTCGTCGACGGACGTCAGCATCACGGCCAGGTCACGGGCGGGCTGTTGAGGAACACGCCGCTCGGGGCGCTCGACCGCGGTGCCCTCGACGCCGCCTCCGTACGTCGCATGAATTGGATCCCCCGCACCACCGGAATCGTCGAGCGCAGCAACGGGCGCTCGTTCCTGGTCACAGGCGACGACCTGGTCAGACTCGACAAGACCGGAGAACTACGGCCTGCCACCAGCACGCAGGACTGGGGGTACGCCCTCATGCAGTCCGTCCCCCGTGACCCGGGAGCGGCGCGGATCGTCGCGATCCGCCAACGTGACAAGAGTCAGATCTACGTCGTCCGCGACGGCTACCGTCGTCCGGTCTCCTTTCAGCGGCTCAACGCGATCACGAAGCGTGCTCGACCGGAGATCAACGTCGTCCAACCGCGGACGATCAGAGAGCTCCCAATCGGCCCTGCGCTCTGAMTGSPMRMLRAAHTVSLVTPATRAGRRTAVTALVGLLSFSLVAVPGAQAVPASPGAVTADSSDDAGAPGAAHGRSAEPVEATTETTGFSPAAPAAAGSPASPRAQDAPRARNSAGPPDRPEHAGVPLEATSDVTGFGVVGVTWSSPVAHDALVVEVRTSDDAGAPQDDDGAWSAWERVDVEPSPRGDLDGTEPVVVGEVARVQARVSGPSAGAVRDLGLTVIDPGTSPADDDVPVPSEETSPSGRAVAATPVPDRPTIASRAAWGADESIMTWTPRQGDVRGAAIHHTAGTNSYSESQVPGILRGIYSYHAQTRGWGDIGYNFLVDKFGRIWEGRAGGVDRQTVGAHARGYNSGSTGVSVLGNYETATVSNAAVSAVVRLVAWKLALHGVAADGSISIAGTPLAAVFGHRDVGSTACPGRTLYNRLGEIRRRAAARQEAAAEPDVADVADGDFVKRPDGRVAMMEKGRRHLARCDLVEDYGSRCREATRISRQAWDALEPGGYLYPSARTTDGRVFRVVNGTKREVFDMDSLRRIGKLTPRTLMHADALDHLPYAKPVVRPGVVVVNRHSGRYRLVVDGRQHHGQVTGGLLRNTPLGALDRGALDAASVRRMNWIPRTTGIVERSNGRSFLVTGDDLVRLDKTGELRPATSTQDWGYALMQSVPRDPGAARIVAIRQRDKSQIYVVRDGYRRPVSFQRLNAITKRARPEINVVQPRTIRELPIGPALNANANANANA
AK018_01357243hypothetical proteinGTGGTGTCGCCCATGGCGCTCACCACCACGACCACGTCGTTGCCGGCGCGCCTGGCCTCGGCGATGCGCTTGGCCACGCGCTTGATGGAGCGGGCGTCCGCCACGGACGACCCGCCGTACTTCTGCACGACCAGTGCCATGCATGCAACCTTTCTGTTGCCGGCCTCCGTCTCTTCCAACGGCCCGCCGGTTTCTTGTGTGTGCGCGCACCATCGTAGCGAGAGGGTCCGTCGCCCGGTGTAGMVSPMALTTTTTSLPARLASAMRLATRLMERASATDDPPYFCTTSAMHATFLLPASVSSNGPPVSCVCAHHRSERVRRPVNANANANANA
AK018_01358780yfcA_1COG0730putative membrane transporter protein YfcAGTGCTCGAACTCGACCTCACGACCGTCCTGCTGCTCGTCCTGGCGGGGCTCGCCGCCGGCTGGGTGGACGCCGTCGTCGGCGGAGGCGGCCTCATCCAGCTGCCCGCCCTGCTCCTCGTGCCGGGCATCTCGCCGGTCCAGGCGCTGGCCACCAACAAGCTGGGTTCGATCATGGGCACGTCGGTCAGCTCGATCACCTACTACCGCCGGGTGCACCCGGACTTGACCACGGCGGGCCCGATGGCGGTCGCGGCGCTGGTCGGGGCCACGGGCGGGGCGGCGCTGGCCACGCAGATCCCCGCGGAGCTGTTCACGCCGATCATTCTGGTGGTCCTGATCGGCGTCGCCGTCTTCACGGTGGCGAAGCCCCAGCTCGGCCAGCACGACAACCTGCGCTGGGAGGGCAACCGGCACCGGTGGACGGCCGCCGGCATCGGCGCGGTGATCGGCGCCTACGACGGCCTGCTCGGTCCGGGAACCGGCACGTTCCTGGTGATCTCGCTGGTGAGCATCCTCGGCTACGCGTTCCTGCCGGCGTCGGCCCTGGCGAAGATCGTCAACTTCGCCACCAACCTCGGGGCGCTGCTGTTCTTCGTCCCGCACGGCGCCGTGATCTGGGGCCTGGGACTGGCGATGGGCGTCGCCAACCTGATCGGCGGGTACGTCGGCGCCCGGATGGCCGTCGCCAAGGGGAGCGGGTTCGTGCGCGTGGTGTTCGTCGTCGTCGTCGGTGCGCTGATCTGCAAGCTCGGGTACGACGTCGTCACGGGCGCGGCGTAGMLELDLTTVLLLVLAGLAAGWVDAVVGGGGLIQLPALLLVPGISPVQALATNKLGSIMGTSVSSITYYRRVHPDLTTAGPMAVAALVGATGGAALATQIPAELFTPIILVVLIGVAVFTVAKPQLGQHDNLRWEGNRHRWTAAGIGAVIGAYDGLLGPGTGTFLVISLVSILGYAFLPASALAKIVNFATNLGALLFFVPHGAVIWGLGLAMGVANLIGGYVGARMAVAKGSGFVRVVFVVVVGALICKLGYDVVTGAAPGPT0027725_1572DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-AbrB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027725-antitoxin_abrB-K07120NANA
AK018_013592319hypothetical proteinGTGCCCGCTCGTGGCCACCGTCCCCTCTCCCGCGTCGGCGCCGCCGCGCTCGGCCTGACCCTGTGCGGCGCCGTCGCCGCCGTCCCCGCGTCCGCGTCCGTCGTCGACGACCCGGTGGTCGTCACCGCCGACGACGCCGCCCTCGACCTGCGCCCCCTCGGCAGCTACGAGACCGGGCTGTTCGACGAGTCCGGCGCCGAGATCGTCGCCTACCACGGCGGCTCGCAGCGCCTGTTCTCGGTGAACGCGCACGCCGGTGAGGTGACGGTCCTCGACGTCGCCGAGCCCGCAGCGCCGTCGAAGCTCTTCGCACTGCAGACCACCGGTGTCACGGCCGACGACGGCACCACCGTGCCCGCCGGGGCCGTCGCGAACTCCGTGGCCGTGCGGGCCGACGGGCTCGTCGCCGTCGCCGTGGAGTCCGACGTCAAGACCGACGCCGGCTGGCTCGTGTTCTTCGACGCCGCCGGCGACGGCACCGCGCTGGGCGCCGTCCGCGTCGGGGCCCTGCCCGACATGGTGACCGTCACTCCCGACGGGGCGCGCGCCGTCGTCGCCGACGAGGGCGAGCCGAACGACGACTACACGGTCGACCCCGAGGGGGACGTCGCCGTCGTCGACCTGCCGGCCGCCGTCGAGGCGCCCGAGCAGGAGGCCGTGCGGATCGCCGACTTCCACGCGTTCGAGGACGGCGCGCTGCCCGACGGCGTGCGCGTCTTCGCCGGGATCGAGGGCGCGGACCTCCCGGTCTCGCGGAACCTGGAGCCCGAGTACATCGCCGTCTCGGCCGACTCGACCACCGCCTACGCGGTGCTGCAGGAGGCCAACGCCGTCGCCGTCGTCGACCTGGATGCCGCCGAGGTCACCGAGATCTGGCCGCTCGGCGCCAAGGACTTCTCCCTCGAGGGGCAGGGCATCGACCCGTCCGACGAGGACGGTCCGGACGGGGAGGGCGTGATCGACATCCGTGCAGTGCCCGTCCAGGGCCTCTACCTGCCGGACGGCATCAACGCGTTCGCCGCCGGCGGCGAGACCTACCTGGTGACGGCCAACGAGGGCGACGCTCGGGAGTTCGGCGACTACGAGGAGCCCGCCCGCATCAAGGACCTCGGCGAGGACGGGCTCGCGCCGATCTGCGCCGACCACCCGGCCGCGGACCGTACGGACGACGCCGACCTGGGCCGTCTCGACGTGTCCATCGCCTCCGGGCTGCGGGCCGACGGCGAGTGCTACTCCGAGCTGTACGCGTTCGGCGGGCGGTCGTTCTCGATCTGGACCACCGACGGTGAGCAGGTCTTCGACTCGGGGGACGACTTCGAGCAGATCACCGCGCAGGCGGCGCCGGAGAACTTCAACTCCGACCACGGCGAGTCCTCGTTCGAGTCGCGTTCCGACGCCAAGGGGCCCGAGCCGGAGAACATGGCGATCGGCGAGGTCGACGGGCGCACCTACGTGTTCGTGGGGCTCGAGCGCGTCGGCGGCATCATGGTCTACGACATCACCGACCCGGCCGACGCGGAGTTCGTCCAGTACGTCAACAACCGTGACTTCTCGGTCTCGGCCGAGGACGCGATCGACGACGGCGCCGACCCGGCGGAGACGGTGGCCGCTGCCGGTGACCTGGGGGCCGAGGGCCTGGCGTTCGTCGCCGCGGCCGACTCGCCCACGGGGGAGCCGATGCTCGCCGTCGGCAACGAGGTCTCCGGTTCGACGACGCTCTTCGCGATCGACGGCCCCGCGCCGACCGAGGCTCCGGCGCGCGGGGCGATCAGCGACGACAGCTCCCACGACGGCATCCGTGGTGGGTCGTACACGGTGAGCGTCGACCTGTGGTGGGGGCAGAACGCCACCTCGGTGCGGCTCCTGGAGGACGGCGAGGTGGTCGCGACGCGCAACCTGGTCGACGCCTCGCCGGCCGCGCAGCACGTCGAGTTCGACCTCGCCGGCCGCACCGACGGGACCTACACCTACACCTGCGAGCTGGTGAACGCCGCCGGCACCACTGCCTGCCACGAGCACCGGGTCCGGGTCACCGACGCCGCCCCTGCGGCCCCGCGGCTGAGCCACGACAACCACGACCGCGACGGGGACTACACCGTGAGCGCCGACCTGTGGTGGGGCACCAACGCCACCTCGTGGACACTGTTCGAGGACGACGTCGAGGTGGCGGCCGGCGAGCTCACCGCCGCCACGCCGTCGGCTCAGCACGTCGAGGTGCCGATCGCGGGCCGCGAGCCCGGGCGGTACACGTACCGCATCGTGTTCGCCAACGACCTCGGCACCACGGGCTCGAAGGACCTCACCGTCCGCGTGAAGTAAMPARGHRPLSRVGAAALGLTLCGAVAAVPASASVVDDPVVVTADDAALDLRPLGSYETGLFDESGAEIVAYHGGSQRLFSVNAHAGEVTVLDVAEPAAPSKLFALQTTGVTADDGTTVPAGAVANSVAVRADGLVAVAVESDVKTDAGWLVFFDAAGDGTALGAVRVGALPDMVTVTPDGARAVVADEGEPNDDYTVDPEGDVAVVDLPAAVEAPEQEAVRIADFHAFEDGALPDGVRVFAGIEGADLPVSRNLEPEYIAVSADSTTAYAVLQEANAVAVVDLDAAEVTEIWPLGAKDFSLEGQGIDPSDEDGPDGEGVIDIRAVPVQGLYLPDGINAFAAGGETYLVTANEGDAREFGDYEEPARIKDLGEDGLAPICADHPAADRTDDADLGRLDVSIASGLRADGECYSELYAFGGRSFSIWTTDGEQVFDSGDDFEQITAQAAPENFNSDHGESSFESRSDAKGPEPENMAIGEVDGRTYVFVGLERVGGIMVYDITDPADAEFVQYVNNRDFSVSAEDAIDDGADPAETVAAAGDLGAEGLAFVAAADSPTGEPMLAVGNEVSGSTTLFAIDGPAPTEAPARGAISDDSSHDGIRGGSYTVSVDLWWGQNATSVRLLEDGEVVATRNLVDASPAAQHVEFDLAGRTDGTYTYTCELVNAAGTTACHEHRVRVTDAAPAAPRLSHDNHDRDGDYTVSADLWWGTNATSWTLFEDDVEVAAGELTAATPSAQHVEVPIAGREPGRYTYRIVFANDLGTTGSKDLTVRVKPGPT0013395_94DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013395-nucA|ushA|yhcR|yfkN-K01081NANA
AK018_01360570hypothetical proteinGTGCCAGAGATCGCCGCCGACTCCGAGCTGAGCGAGGTCGCCCAGCAGATGTCGACCCAGGCCCGCACTTTCCTGTCGACGACGACGCAGGTCGCCTCGGGCGGGTTCCCCGGCGCCGAGCTGTCGCTGCTGCTCCTGGCCACGTCCGACCTGCTCTCCGCCGGCGCGCGACTCGCGGCGATCGTCGACGTCGTCCCCGTCGAGCGGTTCGAGCCCGACGCCGGCCGGGAGACCGACGTCGACCCCTTGCGGACCGCGCTGGCCCAGATGTTCGACGGGTTCGACGACTACGTCGAGGTCTCCGACCCGGTGCTGAGCAGCGAGGTCGCCTCCGCGACGGTCTCGGGTGACCTCGCCTGCGTCGCGGCGGAGGTCGCCAAGGGGCTGCAGCACTACGACGACGGGCACGAGCTCGAGGGCCTGTGGTGGTGGCAGTTCAGTTACCTGTCGATCTGGGGCGAGCGGGCGTCGTCGGCGCTGCGGGTGCTGCAGGGCGTGCTCGCGCACCTGCGTCTCGACGTCGACGACGACGTCGCGGCCGAGGCGGAGTACGACGCCCTGCACGCCTGAMPEIAADSELSEVAQQMSTQARTFLSTTTQVASGGFPGAELSLLLLATSDLLSAGARLAAIVDVVPVERFEPDAGRETDVDPLRTALAQMFDGFDDYVEVSDPVLSSEVASATVSGDLACVAAEVAKGLQHYDDGHELEGLWWWQFSYLSIWGERASSALRVLQGVLAHLRLDVDDDVAAEAEYDALHANANANANANA
AK018_01361600recR_1COG0353Recombination protein RecRGTGTACGAAGGTGCGGTCCAGGACCTGATCGACGAGCTCGGCCGGTTGCCCGGCGTCGGGCCCAAGAGCGCGCAGCGCATCGCGTTCCACCTGCTCGCCGCGGACGCCGCGGACGTGCGGCGGCTCGCCGACGCGCTCACGGAGGTCAAGGCGCGGGTGCAGTTCTGCGAGACGTGCGGGAACGTGGCCGAGTCGGCCACGTGCCGCGTGTGCGCCGACCCGCGCCGCAGCGACGAGGTGATCTGCGTCGTCGAGGAACCCAAGGACGTCGTCGCCATCGAGCGCACCCGCGAGTTCCGCGGCAAGTATCACGTGCTTGGCGGGGCCATCAACCCGCTGGAGAACGTCGGCCCCGACGACCTACGGATCAGCGAGCTCATGTCGCGGCTGGCCGACGGCGCGGTCACCGAGGTCATCATCGCCACCGACCCGAACGTCGAGGGGGAGGCCACGGCGACCTACCTGTCGCGGCTCATCGGGCCGATGGGTATCACGGTGTCCCGGCTCGCCTCCGGGCTCCCGGTGGGCGGTGACCTGGAGTACGCCGACGAGGTGACCCTGGGCCGTGCCTTCGAGGGGCGGCGCGTCGTCGGCGCGTGAMYEGAVQDLIDELGRLPGVGPKSAQRIAFHLLAADAADVRRLADALTEVKARVQFCETCGNVAESATCRVCADPRRSDEVICVVEEPKDVVAIERTREFRGKYHVLGGAINPLENVGPDDLRISELMSRLADGAVTEVIIATDPNVEGEATATYLSRLIGPMGITVSRLASGLPVGGDLEYADEVTLGRAFEGRRVVGANANANANANA
AK018_01362606desRCOG2197Transcriptional regulatory protein DesRGTGATCCGCATTGTCCTGGCCGACGACGAGACCCTCATCCGCGATGCCGTCGCCCAGCTCCTCGACCTGGAGGACGACCTCGACGTCGTCGCCGTGGCCGGCAGCGGGACGGAGGCGCTCGCGGTGCTGCGCCGCGAGCAGCCGGACGTCGCCGTCCTGGACCTGCAGATGCCGGGAGCGGACGGCATCGAAGTGGCCGAGGCGCTGCGCCACGAGGTGCCGGGCTGCGGGGTGGTCATCGTGACCGGCCACGGCCGGCCCGGCTACCTGAAGAAGGCTCTCGGGGTGGGCGTGCGCGGCTTCCTGCCCAAGACGGCGTCCGCCGCCGTGCTGGCCGCGGCGGTCCGGCAGGTCGCCGACGGCGGTCGGTACGTCGACCCCGAGCTCGCCGCCGACGCCATCGCGGCGGGGGAGTCGCCACTGACCCCGCGGGAGGCCGACGTCCTCGAGCTGGCCGCCGACGGCGCCCGCGTCGAGGAGATCGCCCAGCGGGCGGCGCTCGCACCCGGCACGGTCCGCAACTACCTGTCCTCGGCGGTGGCGAAGCTCGGCGTGACGAACCGGCACGAGGCCGTGCGGCTGGCGCGCAGCAAGGGCTGGGTGTGAMIRIVLADDETLIRDAVAQLLDLEDDLDVVAVAGSGTEALAVLRREQPDVAVLDLQMPGADGIEVAEALRHEVPGCGVVIVTGHGRPGYLKKALGVGVRGFLPKTASAAVLAAAVRQVADGGRYVDPELAADAIAAGESPLTPREADVLELAADGARVEEIAQRAALAPGTVRNYLSSAVAKLGVTNRHEAVRLARSKGWVNANANANANA
AK018_013631260hypothetical proteinATGACCATCGGTCGACCTGCCCCGACGCTGGCCGGCGGGGTCCGCGGCGTCGAGCTGTACACGCGGATCACGCTCTACACGTTCGTCCCCCTCGAGGGCTTTTTCTACCTCTACGCGGTCGCGGCGCTGTCCCAGAACGGGACGCCCCCGAGCGTCGGCGGTGCCGGGGCGCTGCTGGTGGCCGCCCTCGGGCACATGGCGCTGTGCTTCGCGACCGTGCACGTCGGTTTCTCCCAACCCTTGGTCCTCCGGGGCCGGTGGCGGCCCGTCGTCGTCGCGACGGTGGCGGCAGCCGTCGTCGTCACCGTGCTCGCTCTGCTCGTGCTGCCGCAGGCGTCTCCCGAGTGGATCGGCCTGGACCCCCGGTCCATCACGATCGCCGTGTGCGCGGCGGGCACGCTGGGCGCGCTGGCCACCGGGTTCGGCATCAAGCCGCTCACCGTGGCCGCCCTGGTGCCGGCGGCCATCACGGCGATCGTCCGGATCGTCGCCGGACTGAGCGTGTCGAGCAGCATCACCGTCGCGTTCGGCACCTTCCTCCTCGCGCTCTTCTGGGCCGGCACGGTCCGTCTGTCCATGTGGGTGCTCGAGGTGGTGCGCGAGCTCGAGGAGTCCCGCGCGGTGGCCGGACGGCTCGCCGTCGCCGAGGAACGCCTGCGCATCGCCCGCGACATGCACGACGTGGTCGGCCGCGCCCTGTCCGCCGTCGCCGTCAAGAGCGACCTGTCCGCCGCGCTGGCGCGACGCGGGGACACCCGTGCCGCCGACGAGATGGACCAGGTCCGCGTCCTCGCCCAGGAGTCCCTGCGGGAGGTGCGCGGCGTCGTCGCCGGCTACCGGGCGCCCGACCTGGCCACCGAGCTCGCCGGCGCCCGGTCGGTGCTGCGTGCCGCCGGGATCGCGGTGCGCGTCGTCGGGGACGTGCCCGCCCTCGACCCGTCGCAGCAGGAGGCCTTCGCCTGGGTGGTGCGCGAGGGCGTCACCAACGTGGTGCGGCACTCGCGGGCCCGGGAGTGCGACATCCGCCTCGTCGTGACCGACGGGACGGCCCGGCTGCGGCTCGTCAACGACGGCGTCGGCGACCGCGACGGCGGCCGGTCCGACGACGGCGCCACCGCCGGTCCGACCACCTCCGACGGCACCGGGATCGCCGGGCTGCGCGAACGGCTCGCCGCCGTCGGCGGCACCCTCGACACCACTCGTTCGGGTGACCGTTTCACCCTCCTCGCCAGCGTCCCGACACCCGGAGGTCGTCCGTGAMTIGRPAPTLAGGVRGVELYTRITLYTFVPLEGFFYLYAVAALSQNGTPPSVGGAGALLVAALGHMALCFATVHVGFSQPLVLRGRWRPVVVATVAAAVVVTVLALLVLPQASPEWIGLDPRSITIAVCAAGTLGALATGFGIKPLTVAALVPAAITAIVRIVAGLSVSSSITVAFGTFLLALFWAGTVRLSMWVLEVVRELEESRAVAGRLAVAEERLRIARDMHDVVGRALSAVAVKSDLSAALARRGDTRAADEMDQVRVLAQESLREVRGVVAGYRAPDLATELAGARSVLRAAGIAVRVVGDVPALDPSQQEAFAWVVREGVTNVVRHSRARECDIRLVVTDGTARLRLVNDGVGDRDGGRSDDGATAGPTTSDGTGIAGLRERLAAVGGTLDTTRSGDRFTLLASVPTPGGRPNANANANANA
AK018_013641539hypothetical proteinGTGACGACGACGCACCTGCTGCCCCGCACCGACCCCGCCGCCCACGGCGTCGACCCCGCCGTGCTGGCACGGCTGGTCGGTCGGCTCGACCAGGTCCGGGACGTGCACAGCCTGCTGGTGTTGCGTCACGGCGCCGTGGTCGCGGAGGCCTGGTGGGACCCGTTCCGCGCCGAGGAGGCGCACCGCATGTTCTCGGTGTCCAAGTCGGTCACGGCGACGGCCGTCGGGATCGCCGTCGCCGAGGGTCTGCTGACCATCGCGGACCGTGTGGTCGACCTGCTGCCGGACGACGCGCCGTCGGACCCCGGCGAGCACCTGGCCGCCATGACGGTGCGGGACCTGCTGACCATGACCAGCGGGCACGGCACGGACACGATGAACTTCACGCTGCGCAACCTGCGCAAGCCCGGCACCAGCTGGGCCCGGGACATCCTCGCCGCCCCCGTGCTGCACACGCCCGGCACCCGCTTCGTCTACAACACGGGCGCCACCTACCTGCTGTCCGCGATCCTGCACCGCCTGACGGGGGAGCGCCTGCTCGACTGGCTCACGCCCCGCCTGTTCGCGCCGCTCGGCATCACCGGCGCCACGTGGGAGCAGTGCCCGCGCGGCATCGACGTCGGTGGGTACGGGCTGACCCTGACCACCGAACAGCTCGCGGTGCTCGGGCAGCTGTGGCTGCAGCGCGGGCGCTGGGGCTCCGAACAGCTGGTGCCGGCGGCCTGGGTGGACGAGATGACGGCCGCCCAGGTGCCGAACGGGCCCGACGAGAAGCCCGACTGGGAGCAGGGCTACGGCTACCAGTTCTGGCGGTGCCGCCACGACGCCTACCGGGCCGACGGCGCGTTCGGCCAGATCTGCGTGGTGGCGCCCGCCCTGGACGCGGTGGTCGTGCTGACCAGCGGCACCACCGACACCGAGACCGAGCTCGTCGCGGTCCTCGACGCCCTGCAGCAGATGTCCGACTGCGGCACCCCGGCGGACGGCAGCGGCCCGGCGGGCACGTCGTCGGGCGCGCCGTGGACGCCGGACGACACCCTGGGCGTCGACCTGCCGCAGGGAGCGGCGTCCACCATGATGGCCGCCCTGGTCGAGGGCTCCGCGTTCGTGCTGGCCGACCACGCCGTCGAGCCGCCGACCGGGCACGGCGACGAACCCGGCCCCGGCAGTCCCGACGACCACGGCCGCGAGCTGCTGCGCTGGCACGCGGTAGCGGTGCGGCACGACGGCGCGCAGATCGCCCTCGCCTGGACCACCGACGAGGGCGCACCGTGGCACGAGGTCCGCTGCGGCGTCGGGCGCTGGACGACGAGCCAGGTGGAGCTGGCGGGTGAGGCGGTCGACGTCGCCGGGGCCGCCGCGTGGACCGACCACGACACCCTCGCCCTCCGGCTGCTGTGGCGTGGTACCCCGTTCGCGCTGGAGATCGAGCTCGTCTTCGGCGGGGACGGCGAGGGCCGCCACGTCGAGGTGGCGGTCGACCAGAACGTGTCGTTCGGACCCACCGCGCTGCTGCGCGCCACCGGGCTGGGCGTCTGAMTTTHLLPRTDPAAHGVDPAVLARLVGRLDQVRDVHSLLVLRHGAVVAEAWWDPFRAEEAHRMFSVSKSVTATAVGIAVAEGLLTIADRVVDLLPDDAPSDPGEHLAAMTVRDLLTMTSGHGTDTMNFTLRNLRKPGTSWARDILAAPVLHTPGTRFVYNTGATYLLSAILHRLTGERLLDWLTPRLFAPLGITGATWEQCPRGIDVGGYGLTLTTEQLAVLGQLWLQRGRWGSEQLVPAAWVDEMTAAQVPNGPDEKPDWEQGYGYQFWRCRHDAYRADGAFGQICVVAPALDAVVVLTSGTTDTETELVAVLDALQQMSDCGTPADGSGPAGTSSGAPWTPDDTLGVDLPQGAASTMMAALVEGSAFVLADHAVEPPTGHGDEPGPGSPDDHGRELLRWHAVAVRHDGAQIALAWTTDEGAPWHEVRCGVGRWTTSQVELAGEAVDVAGAAAWTDHDTLALRLLWRGTPFALEIELVFGGDGEGRHVEVAVDQNVSFGPTALLRATGLGVNANANANANA
AK018_01365450hypothetical proteinGTGACGAGCGAGACGACCCCCGCACCCACGACACCTCCGACGACGCTGCACATCGTGGCCGCCGTGATCGAGCGCGACGGCCGTCAGCTCCTCGTGCGCAAGCGTGGGACGACGGCGTTCATGCAGGTCGGCGGCAAGATCGAAGCCGGCGAAGACCCGCGGGACGCGCTCGTGCGCGAGTGCGCCGAGGAGATCGGGCTGGCGGTTCGGTCGCAGGAGCTGCGTGCCCTGGGACGCCGGCACGCCGTCGCCGCCAACGAACCCGACCACGTCGTCGACGCGCACGTGTTCGCGGTCGACATCCCCGAGGGGTTCGAGCCCGAGCCGCGCGCCGAGCTCGCCGAGCTGGTGTGGGTCGATCCGGCCGCACCGGTGACGACGCACCCGGTCGCGGCGCTGTCGGTGGACCTGCTGGCGGCGGCGAGCAGGCCGGCGGGTCGGGCAGACTGAMTSETTPAPTTPPTTLHIVAAVIERDGRQLLVRKRGTTAFMQVGGKIEAGEDPRDALVRECAEEIGLAVRSQELRALGRRHAVAANEPDHVVDAHVFAVDIPEGFEPEPRAELAELVWVDPAAPVTTHPVAALSVDLLAAASRPAGRADPGPT0021230_1527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876NANA
AK018_013662877hypothetical proteinGTGACGACCGCTCTGTACCGCCGCTACCGGCCCGAGACCTTCGCCGAGGTGATCGGCCAGGACCACGTCACCGCACCGCTGCGGCAGGCGCTGCGCAGCGGCCGCGTCAACCACGCCTACCTGTTCTCCGGCCCGCGCGGCTGCGGCAAGACGACGTCGGCACGCATCCTGGCGCGCACCCTCAACTGCGCGCGCAACACGGACGAGAACCCCCTCGACACCCCCTGCGGCGAGTGCGCCTCCTGCGTCGAGCTGGCCCGCGGCGGGCCCGGGTCGCTGGACGTCGTCGAGATCGACGCCGCCTCGCACAACGGCGTGGACGACGCGCGCGACCTGCGCGAGCGCGCCAGCTTCGCCCCGGCGCGGGACCGGTACAAGATCTTCGTCCTCGACGAGGCCCACATGGTCACGCCGCAGGGTTTCAACGCGCTGCTCAAGATCGTCGAGGAGCCGCCCCCGCACGTGAAGTTCGTCTTCGCGACCACCGAGCCGGACAAGGTCATCGGCACCATCCGTTCGCGCACGCACCACTACCCGTTCCGGCTGGTGCCGCCGGACGTCCTCGGCCCCTACCTGGAACAGCTCTGCGGTGCGGAGGGCGTCGCGCTCGGCGCGGGCGTCGTCCCGCTCGTGACGCGAGCGGGCGGCGGCTCCGTGCGGGACTCGCTGTCCGTGCTCGACCAGCTCATCGCCGGCGCGACCGGCGGCACCGTCGAGTACGACACCGCCGTCGGGCTGCTCGGCTTCACGCACGCCACCCTGCTCGACGACGTGGTCGACGCCCTGGCCGCCCGCGACGGCGGCTCGATCTTCCGCGTGGTCGACCAGATCATCGCCACCGGTCACGAACCGCGGCGCTTCGTCGAGGACGTCCTCGAGCGCCTCCGCGACCTCATCGTCATCGCCGTCTCCGGCGAGTCCGCCGACGCCGTGCTGCGAGACCTGCCCGCCGACCAGCTCGACCGCATGCGTCACCAGGCCGCCAACCTCGGCGTCGCCGAGTTGTCGCGGGCGGCGGACCTCGTGAACTCCGCACTGACCGAGATGACCGGGGCCACCTCGCCGCGCCTGCACCTGGAGCTGCTGTGCGCGCGACTGCTCCTGCCCGGCGCCGACGACGGCACCGACGGACTAGCGGCGCGCATCGACCGGCTCGAGCGCGGCGCGGTCGCGGCCGGGTCCGCCGCGGGGGCTTCCGTCGCGGTCGCGGCACCCGGCCCTGGGACGACGGCGGTCCCACCGGCGGCTGCAGCGGCTCCCGTGACGTCGGGCGCGGCGGGAGGCGGCGCACCCGAGGAGGACGCCGGACTGTCCGGACTAGCCGCCGCACGGGCCGCGATGCAGGCCGCGCGCCGACCGGTGAGGCACGACGTCGGGACCGTGGCGGCCCCGCAGGCCACCGAGGCTGCTCCCACCGAGCCCGCGCCTGCTCCCGCCGAGCCGGAACCCACGCGGGCTGCCGCGCCCGCCGCGGCGTCCGAGCCCGCCGCGGCGTCCGAGCCCGACGCGGCGTCCGGGGCCGTGGCGACTGCGGCGAGCGACCCCGCGCCGCGCGAGCCCGAGCCGGCCGTCGACGAGGTCGAGCCGGAGCCCGCACCGGAGCCCCGTCCCGGGCCGGCCCCGGCACCGGAAACGGCACCCGAACCAGTAGCCGAACCAGCACCCGAGTCCGTGGCCGAGCCAGAGCCCGAGCCGGCGACGGCACCGCCGTCGGAACCGGCGCCCGCCCCCGAACCCGCACCTCAGCCGGAGACGGTCGCCGCGACCGAGGCGGCTCCGGGACTGACGGCCGAGGAGGTCCGCCGGCGCTGGGACGAGGTCGTCGCGAACGTGGCGAGCCCGGTGACCCGTGCGCTCGTCGGACCCAATGCGCAGGTGGCCTCGCTCTCGGGTGACCTGCTGCGCCTCGGGTTCCAGGCCGAGGGCATGGCGCGCACCTTCTCGCAGCCGCGGCACGTCGACGGCGTCGCCGACGCCGTCTACCAGACCCTGGGTATCCAGGTCCGCGTCGAGGCGACCGTCGGAGCCCCGGGCCCCGAGGAAGCGCCCCGCACGGTGGCTCCACCCGCACCGGAGCCGGACGCCGAGCCGCAGCCTGCCCACTCCGCGCAGACGGCACCGTCCGCGTCGACGGCACCGGCTGCCCCGTCCGCCCCGCCGGCGCCGCGGTCCTCGACCGGATCGGCCGCGCCAGGAGATGCGGCGCCGGGTGCCGGTGGCCACACGTCGGGCGGCGAGTCCGGAGGATGGCCCACCGTGGTGCCCCCCGGCGCGGCACCGTCGGGTCCGCAGGGCGGGCCCTCGGCCTCCGTCGGTGCGGACCGCCGGGCCGTCGCCAGCGCGTCGGCGTCCGGGTCGGCCCCGGCGGGTCCTGGCGGCGGTGTGGCGGTCGCGGAACGCGTCGGCACCGTGACGGTGGCGGCGGAGTCGGCCACCGAGGCCGTCGAGTCGGCCACGGATGCCGCTGATGCCGCCGATGCCGCATGGCTGGCCGGGTCCTCCGCGTCAGCCGACGCGGCCCCGACGTCGTCGAGCGTCGCAACCGAGACCGCACCCGCTCCCGCAGCGGCCCCCGGGTCCGCCGGCACCCCGCCGCGACCGGACCCCGGCGCCGCCGTGCCGTCGTCGGACCGGGGAGCGGAGCGCGCGCCGGACGGCAGGTCCGCCGGCACCCCGGGCGCCACGGCGTACGAGCGGTTCCAGCGCGAGCGTCCGGCCGCACCATCCGGCCCGGCCGAGGAGCCGCCGCCGATCGACCACTACGCCGACGCCTCGGACGATGACCCGGAGCTGGTGTCCTCCGGCCTGGTCGGGGTGCCGCTCGTCGTGAAGCTGCTGGACGGCAAGATCCTCGAGGAGGTCGCCGACCAGCCGTGAMTTALYRRYRPETFAEVIGQDHVTAPLRQALRSGRVNHAYLFSGPRGCGKTTSARILARTLNCARNTDENPLDTPCGECASCVELARGGPGSLDVVEIDAASHNGVDDARDLRERASFAPARDRYKIFVLDEAHMVTPQGFNALLKIVEEPPPHVKFVFATTEPDKVIGTIRSRTHHYPFRLVPPDVLGPYLEQLCGAEGVALGAGVVPLVTRAGGGSVRDSLSVLDQLIAGATGGTVEYDTAVGLLGFTHATLLDDVVDALAARDGGSIFRVVDQIIATGHEPRRFVEDVLERLRDLIVIAVSGESADAVLRDLPADQLDRMRHQAANLGVAELSRAADLVNSALTEMTGATSPRLHLELLCARLLLPGADDGTDGLAARIDRLERGAVAAGSAAGASVAVAAPGPGTTAVPPAAAAAPVTSGAAGGGAPEEDAGLSGLAAARAAMQAARRPVRHDVGTVAAPQATEAAPTEPAPAPAEPEPTRAAAPAAASEPAAASEPDAASGAVATAASDPAPREPEPAVDEVEPEPAPEPRPGPAPAPETAPEPVAEPAPESVAEPEPEPATAPPSEPAPAPEPAPQPETVAATEAAPGLTAEEVRRRWDEVVANVASPVTRALVGPNAQVASLSGDLLRLGFQAEGMARTFSQPRHVDGVADAVYQTLGIQVRVEATVGAPGPEEAPRTVAPPAPEPDAEPQPAHSAQTAPSASTAPAAPSAPPAPRSSTGSAAPGDAAPGAGGHTSGGESGGWPTVVPPGAAPSGPQGGPSASVGADRRAVASASASGSAPAGPGGGVAVAERVGTVTVAAESATEAVESATDAADAADAAWLAGSSASADAAPTSSSVATETAPAPAAAPGSAGTPPRPDPGAAVPSSDRGAERAPDGRSAGTPGATAYERFQRERPAAPSGPAEEPPPIDHYADASDDDPELVSSGLVGVPLVVKLLDGKILEEVADQPNANANANANA
AK018_01367723rhgT_1COG2755Rhamnogalacturonan acetylesterase RhgTATGACGATCCATCTCGCGGGCGACTCGACCGTCGCCCCCACCGACCACGGCGCCACCTCGGGGCACGCCGAGATCCCGCTGCTGGGCTGGGGTGACGAGCTGGCCGCGCTCGTGACCGACGAGGTGCGCAACCTCGCCGTCGGCGGCGCCACGACGAAGTCGTTCCGCGACGAGGGCCACTGGGCCCGCGTGATCGAGGCCGTGCGTCCCGGGGACACCGTGATCATCCAGTTCGGCCACAACGACCAGAAGGAGCCCGACGAGCTCGCCGCCGACGGCGGCTACCGCCGTCGCCTCGACGAGTTCATCACCGAGGTGCGCGACGCCGGAGGACGCCCGGTACTGGCCACCAGCGTCGAGCGGCGCCTGTTCGACGACGACGGGTCGCTGCGCTGGTCCCACGGGTCCTACCCGGCCACCGTGCGCGCCCAGGCCGCCGCACGCGACGTGCCCCTGATCGAGCTGACGGTGTTCACCCGCTGGCTGTACACCTGGCTCGGCGCCGAGGCGTCGGCAGCCCTGTTTCCGCACGGCGCGGCCGCCGCGGCCGGCCTCGAGATCCCCGCGCAGATGCTGCAGGACAACACCCACTACACCACCGCCGGCGCACGGCACGTGGCCCGCTACGTCGCCGAAGCCCTCGTCTCGATCGACGGGCGGCACGACGACGAGATACCGGTCGGCCTCGAGATCGCCGCGCGGGACGCGGCCCGGAGCGCCTGAMTIHLAGDSTVAPTDHGATSGHAEIPLLGWGDELAALVTDEVRNLAVGGATTKSFRDEGHWARVIEAVRPGDTVIIQFGHNDQKEPDELAADGGYRRRLDEFITEVRDAGGRPVLATSVERRLFDDDGSLRWSHGSYPATVRAQAAARDVPLIELTVFTRWLYTWLGAEASAALFPHGAAAAAGLEIPAQMLQDNTHYTTAGARHVARYVAEALVSIDGRHDDEIPVGLEIAARDAARSAPGPT0027780_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0027780-dndE-K19172NANA
AK018_01368654metP_1COG2011Methionine import system permease protein MetPGTGAGCCCCGACCTCGTGCCCGTGCTGTGGCAGGCGCTCGCCGAGACGGCCTTCATGGTGCTGATCACCCTGGCCGTCGGCGGAGCCTGCGGACTGGCGATCGGCCTCGGGCTGTACCTCACCCGGCCCGGGAACCTGCTCGAGCACCGCGTCGTGTTCGCCGTGCTGAACGTGGCCGTGAACATCGTGCGGCCGATCCCGTTCCTCATCTTCCTCGTCGCGCTCGGCCCGGTGACGCGCGCCGCCGTCGGGACCACGATCGGCACCGGGGCGTTCACCTTCGCGATGTGCATCATGGCGTCGTTCGTGTTCGCGCGGCTGGTCGAGCAGAACCTGGTGTCCATCGACCCGGGTGTCGTCGAGGCAGCCCGAGCGATGGGTGCCTCACCCCTGCGGATCGTGCGCACCGTCGTCGTCCCCGAGGCCCTGTCGCCGCTGATCCTCGGCTACACGTTCCTGTTCGTCGGCGTGCTCGACATGTCGGCGATCGCCGGCTACATCGGCGGCGGAGGGCTGGGCGACTTCGCGATCGTGTACGGCTACCGGCAGTACGACTGGGCGCTGACGGCGTTCGTCGTCGTGATCATCATCGTCATCGTCCAGCTCGTCCAGTGGCTGGGGAACGCGTTGGCGCGGCGGGCGCTGCGGCGCTGAMSPDLVPVLWQALAETAFMVLITLAVGGACGLAIGLGLYLTRPGNLLEHRVVFAVLNVAVNIVRPIPFLIFLVALGPVTRAAVGTTIGTGAFTFAMCIMASFVFARLVEQNLVSIDPGVVEAARAMGASPLRIVRTVVVPEALSPLILGYTFLFVGVLDMSAIAGYIGGGGLGDFAIVYGYRQYDWALTAFVVVIIIVIVQLVQWLGNALARRALRRPGPT0020515_3072DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020515-metI-K02072NANA
AK018_013691080metN2_1COG1135Methionine import ATP-binding protein MetN 2GTGAGCGAGCCCATCATCCGCTTCCGCGACGCGGTCAAGGAGTTCCCGGGCCGCGGGCGCGGGCGCCGCCGCTCGGCACCCGTCCGCGCGGTCGACGGCGTCACGCTCGACGTCGCCGCGGGCGAGATCTTCGGCGTCATCGGCTACTCCGGGGCCGGCAAGTCCACCCTGGTGCGGCTGGTCAACGCCCTGGAGGCGACGACGGCCGGTTCCGTGACCGTGGACGGCACGGACCTGACGGGGCTGAGCGAGTCGGCGCTGCGTCCGGTCCGGGCCGGGATCGGCATGGTCTTCCAGCAGTTCAACCTGCTGTCCTCGCGGACGGTCGTCGGCAACGTCGCCTACCCGCTGGAGGTCGCCGGCTGGTCGCGCGCCGACCGGGACGCCCGGGTGCGCGCGCTGCTCGAGTTCGTGGGCATCGCCGACAAGGCCGACGTCTACCCGTCGAAGCTGTCCGGCGGGCAGAAGCAGCGCGTCGGCATCGCGCGCGCGCTGGCCACGAACCCGACAATCCTCCTCGCGGACGAGGCCACGTCGGCGCTCGACCCGGAGACCACCGCGGACGTGCTCGCGCTGCTGCAGCGGGTCAACCGCGAGCTCGGCATCACCGTCGTCGTCATCACCCACGAGATGGAGGTGGTCCGCTCGATCTGCCACCGCGTCGCCGTGATGGAGGCCGGCCGCGTCGTCGAGCTGGGCGACGCCTACCGGTTGTTCAGCGCGCCGCAGCACCCCGTGACGCGGCGCTTCGTGGCCTCCGCACTGCGGGACGTGCCGACGACGGCGGTCCTGGAGCGGCTGCGGGAGCGGCACGCCGGGCGCATCGTCACCGTCCGCGTCGACGAGGTCGCCGGGTCGTCCGCGCAGGTCACCCGGATCCTCGCCGAGCACGGGGCGGGCGGGACCATCGTCTACGGCGGCATCACCGAGGTCGCCGAACGGCCCTACGGCTCGCTGACGCTCGAGCTCACGGGCGACGACGCCGCGGTGCACGCGGCGCTGGACGGCCTGCGCGCCGTGACCGCCGTCGTCGACCACGGCACCGCGGCAGCACCGGCTCCGGGAGGGGAGGACCGGTGAMSEPIIRFRDAVKEFPGRGRGRRRSAPVRAVDGVTLDVAAGEIFGVIGYSGAGKSTLVRLVNALEATTAGSVTVDGTDLTGLSESALRPVRAGIGMVFQQFNLLSSRTVVGNVAYPLEVAGWSRADRDARVRALLEFVGIADKADVYPSKLSGGQKQRVGIARALATNPTILLADEATSALDPETTADVLALLQRVNRELGITVVVITHEMEVVRSICHRVAVMEAGRVVELGDAYRLFSAPQHPVTRRFVASALRDVPTTAVLERLRERHAGRIVTVRVDEVAGSSAQVTRILAEHGAGGTIVYGGITEVAERPYGSLTLELTGDDAAVHAALDGLRAVTAVVDHGTAAAPAPGGEDRPGPT0020520_22DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071NANA
AK018_01370891metQ_1COG1464putative D-methionine-binding lipoprotein MetQATGAACCTGCGCTCCACCCTGCTCTCCGCCGGCGCCGTCGCCTCCGTGCTCGCCCTGGCCGCCTGCGGCGATGACTCCTCCGCCGCGCCTGCCGCCGGGACCGCCGAGGACCCGATCCGCATCGGCGTCGTCTCCGCCGGCGAGGAGTACTGGGACACGTTCGCCCAGGCCGCCGCCGACGAGGGCATCGAGGTCGAGATCGTCAACTTCTCCGACTACCAGCTGCCCAACCAGGGCCTCTCGGACGGCGACCTCGACCTCAACCAGTTCCAGCACCTGCAGTTCCTCGCCGGCTACAACGTGGCCCGCGGCGACGACCTGACCCCGATCGGCGCCACCGCCGTCTACCCGCTCGGCCTGTACTCGACCGCGCACGGCAGCGTCGAGGAGATCCCGGACGGCGGCCAGGTCGCCATCCCCAACGACGAGACCAACCAGGCCCGCGCGCTGCTCGTGCTGCAGGACGCCGGACTGATCGCGCTGCGCGACGGCGGCAACTCGTTCTCCACCCCGGCCGACGTGATCGCCGAGGAGTCGCGGGTGACGGTGACGCCGGTGGACGCGGCCCAGACCGCGATCGCGCTGGCCGACGTCGACGCCTCGATCATCAACAACGACTTCGTGGGCGACGCGGGGCTGACCGAGGACGACGCCATCTACACCGACGACCCGGACTCCGCGGCGGCCGAGCCGTACATCAACGTGTGGGTCGCGCGGTCCGCCGACGCCGACGACGAGACGCTCGCGCAGCTCGTGGACCTCTACCACTCGCCGGAGATCGAGGACGGCGTCCTGGAGGCCTCCGGCGGCACCGGCGTCATCAAGGACAACGAGGCGGCCGAGCTGCAGTCGATCCTGGGCGAGATCGAGACCAACCTCGCCGCGAAGTAGMNLRSTLLSAGAVASVLALAACGDDSSAAPAAGTAEDPIRIGVVSAGEEYWDTFAQAAADEGIEVEIVNFSDYQLPNQGLSDGDLDLNQFQHLQFLAGYNVARGDDLTPIGATAVYPLGLYSTAHGSVEEIPDGGQVAIPNDETNQARALLVLQDAGLIALRDGGNSFSTPADVIAEESRVTVTPVDAAQTAIALADVDASIINNDFVGDAGLTEDDAIYTDDPDSAAAEPYINVWVARSADADDETLAQLVDLYHSPEIEDGVLEASGGTGVIKDNEAAELQSILGEIETNLAAKPGPT0020510_372DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073NANA
AK018_013731800bga_1Beta-galactosidaseATGCCACGCTTCGACATCGGCGACGAAGACTTCCTGCTCGACGGCCGCCCGCACCAGGTCATCAGCGGCGCCCTGCACTACTTCCGCGTCCACCCGGACCAGTGGGCGGACCGGATCCGCAAGGCCCGGCTCATGGGTCTCAACACCGTCGAGACCTACGTGGCGTGGAACCTGCACTCCCCCGCACACGGCACGTTCCACACCGACGGCCGCCGCGACCTCGGGCGGTTCCTCGACCTCGTCGCCGCCGAGGGCCTGCACGCGATCGTGCGCCCCGGGCCCTACATCTGCGCCGAGTGGACCGGCGGCGGCCTGCCCGCCTGGCTGTTCACCGACCCGCGCGTCGGCGTCCGCCGCGCCGAGCCCCGGTTCCTCGAGGCCATCGCCGACTACTACACCGCCGTGGCGCGGATCGTCGCGCCCCGCCAGGTCACCCGCGGCGGCCCCGTGCTCATGATGCAGGTGGAGAACGAGTACGGCGCCTACGGCGACGACCCCGTCGAGACGCGACGGGCCTACCTGCGCACCCTGGCCGCCCTGCTGCGCGAGCGCGACCTCGAGGTGCCGCTCTTCACGTCCGACCAGGCCAACGACGAGCACCTGGGCCGGGGCAGCCTGCCCGAGCTGCTGACCACGGCCAACTTCGGCTCCAGGGCCCGCGAGCGCCTCGCCGTCCTGCGCCGCCACCAGCCCACCGGCCCGCTGATGTGCATGGAGTTCTGGAACGGCTGGTTCGACAGCGTCGGCGGGCACCACCACATCACGCCCGCAGCGGACACGGCCCGCGAGCTGGACACCCTCCTGGGCGCCGGCGCCTCGGTGAACCTGTACATGTTCCACGGGGGCACGAACTTCGGGCGCACCTCGGGCGCCAACGACAAGGGCGTCTACCGGCCCATCACCACCTCCTACGACTACGACGCGCCGCTGGCCGAGCACGGCGCCCCGACGCCGAAGTTCCACGCGATGCGCGAGGTCGTCGCGCGCCACGCCGCCGTGCCGGACGAGGTCCCCGGTGCCGCTCCCCCGGCGCCGACGGGCACGGTGGCGCTGGACCGTCGGGTGCCGCTCACCGACCTCCTGGACGCGCTGGGCACCGAGCACTCCGTCGACGGCCCCGCACCCACGCACGACGACCTGGGCGTCTGGGACGGGTTCGTCCTCTACCGCACGCAGATCTCCGCCGACGACGCCGTCCTGACGGTCGGCGACGTCCGCGACCGGGCCCTGGTGATGGTCGACGGCGAGCCCGTCGGGCACCTGGACCGCACCACGCACCAGCGGGCGGTCGCGCTGCCGGCGCGCGACGGCGAGCTGACCGTCCTCGTCGAGGACACCGGGCGCGTGAACTACGGCCCACGGATCGGCGAGCCGCACGGCCTGGTCGCGCCGGTGCGCACCGCACTCGGCGAGCTGACGGGCTGGTCCGCGCGCCCACTGCGGTTCGACGACGGCGACACGCTGTCGTCCGAGGTGACCACGGCGCTGCGTGCCGCGCCCCGGGCGGCCGTACCGCCGTCGTCCCCGCTGGCGGGCCCGGTCCTCGCGCTCGGCACCTTCGACGGCCGCGCGGGGACGGACCTGTTCCTGCGCACCGACGGCTGGACGGCCGGCGTCGTCTGGGTCAACGGTTTCTGCCTGGGCCGGCACCGCGCGGCCGGGCCCGCGCGCACCCTGTACGTCCCGGGGCCGGTGGTGCGGGACGGTGAGAACGAGGTCGTCGTCCTCGAGCTGCACGGGGCGGACCGCGCCACCGTGGGTCTCGCCCCGGCGCCGGACCTGGGCCACACCGAGGAATAGMPRFDIGDEDFLLDGRPHQVISGALHYFRVHPDQWADRIRKARLMGLNTVETYVAWNLHSPAHGTFHTDGRRDLGRFLDLVAAEGLHAIVRPGPYICAEWTGGGLPAWLFTDPRVGVRRAEPRFLEAIADYYTAVARIVAPRQVTRGGPVLMMQVENEYGAYGDDPVETRRAYLRTLAALLRERDLEVPLFTSDQANDEHLGRGSLPELLTTANFGSRARERLAVLRRHQPTGPLMCMEFWNGWFDSVGGHHHITPAADTARELDTLLGAGASVNLYMFHGGTNFGRTSGANDKGVYRPITTSYDYDAPLAEHGAPTPKFHAMREVVARHAAVPDEVPGAAPPAPTGTVALDRRVPLTDLLDALGTEHSVDGPAPTHDDLGVWDGFVLYRTQISADDAVLTVGDVRDRALVMVDGEPVGHLDRTTHQRAVALPARDGELTVLVEDTGRVNYGPRIGEPHGLVAPVRTALGELTGWSARPLRFDDGDTLSSEVTTALRAAPRAAVPPSSPLAGPVLALGTFDGRAGTDLFLRTDGWTAGVVWVNGFCLGRHRAAGPARTLYVPGPVVRDGENEVVVLELHGADRATVGLAPAPDLGHTEEPGPT0017815_2131DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_01374306hypothetical proteinATGAGCCGCATGATCTTCAAGGCCGTGGGCGACGGGCGCCCCTATCCGGATCATGGACGCGAGAGCAGCCAGGACTGGTCCGACGTCCCGCCCCGGCAGGTCCGCCTCGACGAGCTCGTCACGACCAAGCGCAACCTCGACCTCGACACCCTGCTGGCCGACGACTCGACGTTCTTCGGCGACCTCTTCGCGCACGTGGTCGAGTACCGGGGCGTCCTCTACCTGGAGGACGGTCTGCACCGTGCGGTGCGGGCCGCCCTGCACCAGCGCCCGATCCTGCACGCCCGGGTCCTCACCGTGGGTTGAMSRMIFKAVGDGRPYPDHGRESSQDWSDVPPRQVRLDELVTTKRNLDLDTLLADDSTFFGDLFAHVVEYRGVLYLEDGLHRAVRAALHQRPILHARVLTVGNANANANANA
AK018_01375612hypothetical proteinGTGGTCTTCGGGCTCCTCATCGCGTTCATGGTGCTCATGGGCCTGGGTGCGCTCGCCGTCTACACCGGCACCATCGACTCCCCGTTCGACGAGCCCATCCAGACCCCCGGCGGCAACGCCGACTCGATGCCGCCGCCGTGCGTCCCGCAGAACGACAACTGGCCCGACGGCGCCCCGCCGCTGGCCTACGACGACGTCCGCGTCCGGGTCTACAACGCGGCCGACTACAGCTTCGCGATCGCCGGCGCCAACGCGGACGTGCTGGCCGCCCGCGGCTTCGACATCCGCGACACCGGGGACTTCTCCCGCCTCGTCGAGGGCCCCTCGGAGATCCGCTACGGATCCGGCGCCGTCCGGCAGGCGTACACGCTCGCCGCGCAGTTCCCCTCGGTGCGCCTCGTGCTCGACGACCGGCCCGGGCGCATCATCGACCTCGTGGTCGGCGAGGACTACACCGAGCCGCTGCCCGTCGACCAGGTCCAGCTCGCCGCGGGCGAACCCATGACGGACATGGAGGACTGCGTGCCCGTCGGCGAGCTCACGCCCGTGCCGCGCGAGTTCGGCGAGGGCGACGGGCCGGAGTCCGCCGAGGATGACGCCCAGGACGCCTGAMVFGLLIAFMVLMGLGALAVYTGTIDSPFDEPIQTPGGNADSMPPPCVPQNDNWPDGAPPLAYDDVRVRVYNAADYSFAIAGANADVLAARGFDIRDTGDFSRLVEGPSEIRYGSGAVRQAYTLAAQFPSVRLVLDDRPGRIIDLVVGEDYTEPLPVDQVQLAAGEPMTDMEDCVPVGELTPVPREFGEGDGPESAEDDAQDANANANANANA
AK018_013761269rutG_1COG2233Putative pyrimidine permease RutGATGCAGCTCGGTTGGACCACGCACGGCGACGGCGCGCACGTCGCGCCCGGCGAGGTCGTCGCGCCCGGCGAGCGGCTGAGCTGGCCGCGCACGATCGGTATCGGGCTCCAGCACGTCGTCGCGATGTTCGGCGCCACGTTCCTGGTGCCGATCCTCACCGGGTTCTCGCCGTCGACCACCCTGTTCTTCTCCGCGATCGGCACCATCGGGTTCCTGCTGATCACCGGCAACCGGCTGCCCAGCTACCTGGGTTCCAGCTTCGCGTTCATCGCCCCGATCGGGGCGGCCACCGCCTCGCACGGCCAGGCGGCCGCGATCGGCGGGATCTTGTTCACGGGTCTGCTGCTGGTGGGCGTCGGCGTGCTGGTGCACTACGCCGGGGCGCGGTGGATCGACGTCGTCATGCCGCCGGTCGTCACCGGCGTGATCGTGGCGCTCATCGGGCTCAATCTCGCGCCCGCCGCCTGGGACAACTTCAACCAGGCGCCGGTCACGGCCATGGTCACGCTCGTGGCCGTGGTGCTGATCTCGGTGCTGTTCCGCGGGATCCTGGGGCGCCTGTCCATCCTGGTCGGCGTGCTGATCGGGTACGCGTTCGCCGCCGTGCGCGGCGAGATCGACTTCACCCGGGTCGAGGAGGCCGGCTGGTTCGGCCCGCCGCAGCTCACCGCCCCGAGCTTCGAGCCCGGTGTCCTCGGGTTGTTCCTGCCGGTCGTGTTCGTGCTGATCGCGGAGAACGTCGGGCACGTGAAGTCGGTGGCCGCGATGACCGGCCAGGACCTCGACCCCCTGATGGGCCGGGCGCTGCTCGCCGACGGCGTGGCCACCACCCTGGCGGGCACCGGCGGCGGGTCCGGGACCACCACGTACGCCGAGAACATCGGCGTCATGGCGGCCACCAAGGTGTACTCCACGGCCGCCTACTGGGTGGCCGGCGTCGCGGCGCTCCTGCTGTCCTTCTCGCCCAAGTTCGGCGAGGTCGTCGCGACCGTCCCGGTCGGCGTCCTCGGCGGGGTCACCACGGTGCTGTACGGCATGATCGGCGTGCTCGGCTTCCGCATCTGGGTGCAGAACCGCGTGGACTTCGCCGACCCGGTCAACCTCACCGTCGCGGCCGTGCCGCTGGTGGTGGCCGTGGCGAACTACAAGTGGGTCGTCGGCGGGCTGGCGTTCGAGGGCATCGCGCTGGGCACGGCGTCCGCCCTGGTCCTGTACCACGGGATGCGCGCGATCGGCCGGTGGCGGGGGACCGTCCCGCAGGAGCGCTGAMQLGWTTHGDGAHVAPGEVVAPGERLSWPRTIGIGLQHVVAMFGATFLVPILTGFSPSTTLFFSAIGTIGFLLITGNRLPSYLGSSFAFIAPIGAATASHGQAAAIGGILFTGLLLVGVGVLVHYAGARWIDVVMPPVVTGVIVALIGLNLAPAAWDNFNQAPVTAMVTLVAVVLISVLFRGILGRLSILVGVLIGYAFAAVRGEIDFTRVEEAGWFGPPQLTAPSFEPGVLGLFLPVVFVLIAENVGHVKSVAAMTGQDLDPLMGRALLADGVATTLAGTGGGSGTTTYAENIGVMAATKVYSTAAYWVAGVAALLLSFSPKFGEVVATVPVGVLGGVTTVLYGMIGVLGFRIWVQNRVDFADPVNLTVAAVPLVVAVANYKWVVGGLAFEGIALGTASALVLYHGMRAIGRWRGTVPQERNANANANANA
AK018_013772127hypothetical proteinGTGAGGACCCGTCCGTTCGCCGCCGTGGTGGCGGTCGGTGCGCTCGTCGCCGGGTGCACGACGGCGCAGGCCCCGGCCGGCCCGACGTCCTCCGGCGTCGAGGTGGTCGAGGCCGCCGCCCCCGCCGTCGACCCGACGGTGCTGCCCGCCGCGGAGGGCCCCGACGTCGCGATGCGGCTCGCCGACGACCTGCCGCCCCCCACCAACCGCTGGTTCTCCGGTCTCGTCTTCGGCGACGAGTCGCAGCCCGTCTTCCCGCTGCCGCTCGCCGTCGACGTCACCGCCTCCGGGTTCGCCTACGGGCTGCCCGACGTCCGCGCCGACGGCACGCTCCTGGCCGGGCCGTTCGCCCCCCAGGTGGCCGTCGACCTGCGTGAACCCGTCACCGGGCAGGTCAGCGGGTACGACGCCGCGACCGTCAGCGTCGACCTGGTCGCCGGCGACGGCACCGTGCTCGGCGAGCTCCGCCTGACCCGCGGGTCGCCCGTCCTGCACTACACCGCCGGCCGTGACCAGGACGTCCGCCTCAGCCAGACCTTCGCCGCGGCCGGCGACCTGCCCGACGACGTCGCCACCGCGGACGTCGTCGGCCGCCGGCACGTGCTGGTCGGCTCCGACGGGCTCGACGTTACCGCGGCGCTGGCCGGCGACGGCGGCACGATCTCGCTGTCCGCCGGCGACGCCGTGTCCTGGCTGGTCGAGCCCGACACCGGGGACGGCGACACCGAGGATGGCGACACCGACGCGACGGCGCTCGCGGACCTGGTCGAGGCCGCCCGTGACCCGGTGGTGGCCTCGCAGGCCGACTACGCGACCGGCGACGGACAGGTGACCACCGCGGTGCGGTACGAGACCGCGGGCGGCGGGGACGCCGTCGTCGTGCGCTTCCCGCACCAGGCCGAGGCCGCCGACGAGGCCGTGTGCGGCCTGGGCACGTACGCGACGGTGCTCGGCACGGCCGAGCTGTGCCTCGGCGACGAGATCGCCTGGCACTCGCCTGCGCGGGAGCCAGTGCTCGGCCTGGACCTGTCCGGCCTGTCCACGGAGCAGCGCGACGAGCTGGCCGACCAGGTGCGTGCCGACGTCGAGGCGGCGCTGGCCGAGACGCGGCCCGCCGACACCTACTTCGGCGGCAAGGCGCTGGCCCGCGACGCGAACCTGTGGATGCTGGCGCGCGACCTCGGTCTGGAGGACGAGGCGGCGAGCCTGCACGACAGCGTCGTCGCCGACCTGCGGACCTGGGCCGAGCCCGACGGGTGCACGACCCGGCCCGAACGCTGCTTCACCTGGGACCCGACCCTGCGGACCGTCGTCGGGCAGGCCGTGTCCTTCGGCAGCGACGAGGGCAACGACCACCACTTCCACTACGGCTACTTCCTGTACGCCGCCGGCGTGCTGGCCGCCGACGACGCCGCGCTGGCCGAGGAGGTCGCCCCGGTGATCGACCTGCTGGCCGCGGACGTCGCCGCCGCCGCGGAGGTGGACGCCGGTGACGGCGCCCCGATGCCGGCGTTGCGGGTGCTCGACGTCGTCATGGGGCACTCGTGGGCGTCCGGCCCCTCGCCGTTCGCCGACGGCAACAACCAGGAGTCCGCCTCCGAGGCGGTGGCGGCCTGGCACGGCCTGGCCCTGTGGGCCGACGCGAGCGGCGACGACGCGTTGTCGCAGCAGGCCCGCTGGATGCTGTCGCTGGAGGCCGACTCCGCCCGGGCCTACTGGACCGACTTCGACCGCGACGACCCGGTCGCCGAGGGCCTCGAGGCGTCCGTCACGTCGCTGGTGTGGGACGGCAAGCGGGAACGGGCGACGTGGTTCTCCGCCGAGCAGAGCGCCGCCCTGGGGATCCTCGTGCTCCCGGTGACCGGGGTGTCCACCTACCTCGGCGACGACCCCGACCGGGTGCGGGCCAACCTCGCCGAGGCGCTCGGCACCGACGACCCGTGGTCCGAGGCCGACACGTGGGACGTCATGTTCGGCGACCAGCTGCTGATGTACGCCGCGCTGCTCGGCCCGCAGGACGCCGAGGCGGCGCTGGAGGTCGCCCGGGACCTGCCCGACGAGCGGGTCGACGACGGGTCCACCCGCTCGTGGCTGCTGGCCTGGCTGATGACGCGCGCCGCGGCGTAGMRTRPFAAVVAVGALVAGCTTAQAPAGPTSSGVEVVEAAAPAVDPTVLPAAEGPDVAMRLADDLPPPTNRWFSGLVFGDESQPVFPLPLAVDVTASGFAYGLPDVRADGTLLAGPFAPQVAVDLREPVTGQVSGYDAATVSVDLVAGDGTVLGELRLTRGSPVLHYTAGRDQDVRLSQTFAAAGDLPDDVATADVVGRRHVLVGSDGLDVTAALAGDGGTISLSAGDAVSWLVEPDTGDGDTEDGDTDATALADLVEAARDPVVASQADYATGDGQVTTAVRYETAGGGDAVVVRFPHQAEAADEAVCGLGTYATVLGTAELCLGDEIAWHSPAREPVLGLDLSGLSTEQRDELADQVRADVEAALAETRPADTYFGGKALARDANLWMLARDLGLEDEAASLHDSVVADLRTWAEPDGCTTRPERCFTWDPTLRTVVGQAVSFGSDEGNDHHFHYGYFLYAAGVLAADDAALAEEVAPVIDLLAADVAAAAEVDAGDGAPMPALRVLDVVMGHSWASGPSPFADGNNQESASEAVAAWHGLALWADASGDDALSQQARWMLSLEADSARAYWTDFDRDDPVAEGLEASVTSLVWDGKRERATWFSAEQSAALGILVLPVTGVSTYLGDDPDRVRANLAEALGTDDPWSEADTWDVMFGDQLLMYAALLGPQDAEAALEVARDLPDERVDDGSTRSWLLAWLMTRAAAPGPT0019140_388DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019140-eng1-K01180NANA
AK018_01378732hypothetical proteinATGACCTGGACCACCCGCCTCAAGCTCGCGGTCGGCGTCGTCGTCATCCTGGCGCTGTGCGCCACCCTCACGCTGGTCCTGAACCGTCGCATGAGCCAGGCCGTCTCCGCGCAGGCGACGATCGTGGCCGAGGAGATCTCCGTCGGCACCGACTACGCCGGCACCGTCGTGGAGACGTTCGTCGAGGAGGGTGACGTCGTCGCCGAGGGCGACCCCGTGTTCACGCTGCGCAGCCTCGTGCTCGCCCACGACCTGTCGATCGGCATGGTCTCGCGCAAGGCCGCCACCTACGAGGTGACCGACGAGGGTGAGATGACCATCACGGCGCCGGACGACGGCGTCGTCTCGGCGGTCGACGCCGCGCCCGGCGGGTTCGTGCAGTCCGGCACCGTGCTGGCCACGCTGCAGCGCCACGGCACGATCTCCGTCGACGCGCGCCTGCTCCTCGACCCCGCCGACTTCGCGCGGATCGAGGAGGGCTCCTACGCGCGCATCCTGCTGCCCGACCAGACCGAGCTGCCCGGCGAGGTCGAGTCGCTCGCCGTGCAGTCGACGCGCAACGACGCCGAGGCCACCCTGACGATCACCAGCGCCGCCCTGGCGCAGCAGGCGGGGGAGGGCATCGTGCTGCCGGGCACCCCCGTGCAGGCCAGCGTCGAGCTGCGCGACGACGGACCGCTCGCCGGCCCCGACCTCGCGTTCCAGCGCTTCCTGACCAGGATCGGTCTGTGAMTWTTRLKLAVGVVVILALCATLTLVLNRRMSQAVSAQATIVAEEISVGTDYAGTVVETFVEEGDVVAEGDPVFTLRSLVLAHDLSIGMVSRKAATYEVTDEGEMTITAPDDGVVSAVDAAPGGFVQSGTVLATLQRHGTISVDARLLLDPADFARIEEGSYARILLPDQTELPGEVESLAVQSTRNDAEATLTITSAALAQQAGEGIVLPGTPVQASVELRDDGPLAGPDLAFQRFLTRIGLNANANANANA
AK018_013791794hypothetical proteinATGACCACCCTGGACTCACCGAGTACCGACATCCCGTACACCGCCGGCCCGCCCCCGACGCCCGGCACCACCATCCAGGGCGACCCGCAGGCCGCCGCTCGCCGTCGGGACGCGAACGCCGCCGCGCACTCGCCGTCGCTCATGCTTGTCATGCTGCTGGCCACGCTCGGCGCCGTCGCCTACGCCGTCTTCCTGCTGAACCCCGACAACCGGGGCGACCTGCTGCCGTACACGCTCGTGGTCGTCGCCGAGTCGGTGCTGCTCGGCCTCGCGCTGCTGGCCATGTGGACGGTGCTGTCCTCGGGGTACAACCCGCGCGACTTCGCCTACCACCAGGCGCGCGAGCGCCTCTTCGACGCCCCGGAGATCCTGCGCGACGGCGCCACCGACGACCCGACCCGGTGGCGCATGTACCTGCACGACCGGCCCGTGACGGCGGACATCTTCATCACCACCTGCGGCGAGGACGTCGACACCATCGCGCGCACCGTCCGCGCCGCCGTGGCGGTGCACGGCGAGCACCGCACCTGGGTGCTCGACGACGGACGCGACGACCAGGTGCGCGACCTCGCGGCCACGCTCGGGGCCCGGTACATCCGGCGCCTGTCCAGCGGCGGGCAGAAGGCCGGCAACGTCAACCACGCGCTGAGCATCGCCAAGGGCGAGCTGTTCGTGATCCTCGACGCCGACTTCGTGCCACGGCCCGAGCTGCTCGTCGAGACGGTCCCGTTCTTCGTGCGCGACGATGTCGCGTTCGTCCAGTCGCCGCAGACGTACGGCAACATGAACTCCCTCATCTCGCGCGGCGCCGGCTACATGCAGGCGGTCTTCTACCGGTTCGTCCAGCCCGGCCGCAACCGCTTCAACGCGGCGTTCTGCGTCGGCACCAACGTGGTGTTCCGCCGCGAGGCGATCGACGACGTCGGCGGCATGTACACCGACTCCAAGTCGGAGGACGTGTGGACCTCGCTGCACCTGCACGAACGCGGCTGGCGCTCGACCTACATCCCCCAGACCCTCGCCGTCGGCGACACGCCGGAGACGATCGTCGCGTACGCCAAGCAGCAGCTGCGCTGGGCCACGGGCGGGTTCGAGATCCTCCTGCAGCACAACCCGTTGTCCCCGCGGCGCAACCTCACCGTGGACCAGCGGCTGCAGTACTTCGTGACCTCGACCCACTACCTGTCGGGCATCGCCCCGCTGCTGCTCCTGCTGGTCCCGCCGCTGCAGATCTACCTGGACCTGACCCCGATGCGGCTCGACGTGTCGGTCGGCACGTGGGCCCTGTACTACCTCGGGTTCTACGGGCTGCAGATCACTCTGGCGTTCTTCACGCTCGGCTCGTTCCGGTGGGAGGTCCTGCTGCTCGCGGCCGTGTCCTGGCCGATCTACGTCAAGGCGTTCTGGAACGCGCTCACGGGCAAGCAGCAGGCCTGGGCGGTCACCGGCCGGGTCGGGGGAGCGACGTCCCCGTTCGAGGTGATCGTCCCGCAGGTGCTGTGCTTCGTCTTCCTCCTGGTCACCTCCGTGGTGGGCCTCTGGAAGCACTGGGGCGACGACGGTCTTCCGGGCCTGTCCGTGGCCTGGAACGTCACCAACACCCTGATCCTGGGCGGGTTCGTTCTCACCGCGGTCCGGGAGCACCGGGTCGCCATGCGTGAGCAGCGGGCCGTCCGCCGCCCCCAGGCACCGGCCCGCCCCGCGGCCGGCGACTCCCGTGCCGCCCGCCGCGACCGGAACACCCGCCGCGGCGACCGCCGTCGGACCACCGTCACCTCCGGAGGTGCCGCATGAMTTLDSPSTDIPYTAGPPPTPGTTIQGDPQAAARRRDANAAAHSPSLMLVMLLATLGAVAYAVFLLNPDNRGDLLPYTLVVVAESVLLGLALLAMWTVLSSGYNPRDFAYHQARERLFDAPEILRDGATDDPTRWRMYLHDRPVTADIFITTCGEDVDTIARTVRAAVAVHGEHRTWVLDDGRDDQVRDLAATLGARYIRRLSSGGQKAGNVNHALSIAKGELFVILDADFVPRPELLVETVPFFVRDDVAFVQSPQTYGNMNSLISRGAGYMQAVFYRFVQPGRNRFNAAFCVGTNVVFRREAIDDVGGMYTDSKSEDVWTSLHLHERGWRSTYIPQTLAVGDTPETIVAYAKQQLRWATGGFEILLQHNPLSPRRNLTVDQRLQYFVTSTHYLSGIAPLLLLLVPPLQIYLDLTPMRLDVSVGTWALYYLGFYGLQITLAFFTLGSFRWEVLLLAAVSWPIYVKAFWNALTGKQQAWAVTGRVGGATSPFEVIVPQVLCFVFLLVTSVVGLWKHWGDDGLPGLSVAWNVTNTLILGGFVLTAVREHRVAMREQRAVRRPQAPARPAAGDSRAARRDRNTRRGDRRRTTVTSGGAAPGPT0022275_1473DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CELLULOSE_METABOLISMCE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0022275-bcsA|yhjN|celA-K00694NANA
AK018_01380924fgd_4F420-dependent glucose-6-phosphate dehydrogenaseATGACTCTCGATCTGCGCATCTTCACCGAGCCCCAGCAGGGGGCCTCGTACGACACCCAGCTCGCCGTCGCCCAGGCGACCGAGCAGCTGGGGTTCAGCGCCTTCTTCCGCTCGGACCACTACCTGGCGATGGGCGGGGACGGGTTGCCCGGGCCCACGGACTCGTGGACCACGCTCGCCGGTATCGCCCGCGAGACGTCCACGGTGCGGCTGGGCACCCTGGTGTCGTCGGCGACGTTCCGTCACCCCGGGGTGCTGGCGATCCAGGTCGCCCAGGTGGACCAGATGTCCGGCGGCCGCGTCGAGCTGGGCCTGGGCACCGGCTGGTTCGGTGCCGAGCACGCCGCCTACGGCATCCCGTTCCCGGACAAGCGGTTCGGTCTGCTCGAGGAGCAGTTGGAGATCCTCACGGGGCTGTGGGGGACCCCGCTGGGCGAGACCTTCGACTTCGCCGGCGAGCACTACACGCTCACCGACTCCCCGGCCCTGCCCAAGCCCACCCAGGAGTCGATCCCGCTGATCGTCGGCGGCGGTGGGCCGAGGCGGACACCGCGGCTCGCGGCACGGTTCGCGAGCGAGTACAACCAGTCGTTCCCCGAGATCGAGGCCGTCGGCCCGCGGATCCGGGTCATCGAGAAGGCTCTTGCCGACGCCGGACGCCCGTCGGACTCGCTGACGCAGTCGGTGGCGCTGGTGCTCGCCGTCGGCCGCGACGAGGCGGAGTTCACCCGCCGGGCCGCGGCCATCGGCCGTGAGCCGGCGGAGCTGCGCGAGCACGGCGTCGCCGGCACGGTCGCCGAGGCCGTGGACCGGTTGGCGACCCTGCGCGACCAGGGCGTCGAGCGCGTCTACCTGCAGGTGCTGGACCAGCAGGACCTGGACCACCTGGACCTGGTGGCGCGGGAGATCGCCCCGCAGCTCTGAMTLDLRIFTEPQQGASYDTQLAVAQATEQLGFSAFFRSDHYLAMGGDGLPGPTDSWTTLAGIARETSTVRLGTLVSSATFRHPGVLAIQVAQVDQMSGGRVELGLGTGWFGAEHAAYGIPFPDKRFGLLEEQLEILTGLWGTPLGETFDFAGEHYTLTDSPALPKPTQESIPLIVGGGGPRRTPRLAARFASEYNQSFPEIEAVGPRIRVIEKALADAGRPSDSLTQSVALVLAVGRDEAEFTRRAAAIGREPAELREHGVAGTVAEAVDRLATLRDQGVERVYLQVLDQQDLDHLDLVAREIAPQLNANANANANA
AK018_01381621Thioredoxin-like reductaseATGACTTCCACCGACACGACCAAGCCCGTCGTCGACGTCTACATCGACCCCACCTGCCCCTTCGCCTGGGTGACCTCGCGCTGGGCGCTGGAGGTCGAGAAGCACCGCGACGTCGACCTCACGTTCAAGCTGATGAGCCTCTACCTGCTCAACGCGGACAAGGACATCCCGGACGACTACCGCGAGCGCATCGAGGCCTCCCGCGGCGGCGGTCGGGTGGCCGCCGCCGTCCAGACCGACCACGGTGCCGACGCGCTGTCCGCGTACTACACGGCGTTCGGGACCCGCTGGCACGACCAGGGCGTCAAGGACGTCGACAGCGTGATCGCCGGTGCGCTGGCCGACGCCGGCCTGCCTGCCGAGCTGGCCGACGCCGCGACCTCCGAGGAGTACGACGACGCGCTGGCCGCGTCCCACCACGCGGGGATGGACCCCGTCGGCCAGGAGGTCGGCACCCCGACGATCCACGTCGACGGCGTCGCGTTCTTCGGCCCGGTGCTGACCCGGGTCCCGCGCGGCGAGAAGGCCACCGAGGTCTTCGACGCCGCCGTGTCGCTGGCCCGCAACCCGCACTTCTTCGAGCTCAAGCGCTCCCGCACCGAGCGCCCGGTCCACGACTGAMTSTDTTKPVVDVYIDPTCPFAWVTSRWALEVEKHRDVDLTFKLMSLYLLNADKDIPDDYRERIEASRGGGRVAAAVQTDHGADALSAYYTAFGTRWHDQGVKDVDSVIAGALADAGLPAELADAATSEEYDDALAASHHAGMDPVGQEVGTPTIHVDGVAFFGPVLTRVPRGEKATEVFDAAVSLARNPHFFELKRSRTERPVHDNANANANANA
AK018_01382228hypothetical proteinGTGCTCTCGATCGTGCGCAGGGTCCCGTGGGCGAGCGTCCTGACCATCGCCGCCGCCGCCGTCTTCACCCTGGTGACGCTGTTCGCCGCGCTGCGCGGCCGGGTCTGGGCCTGGATCCCCTTCGCCCTGGCCGCGGCGATCCTGGTGCGCGAGATCCGGCACGTCCAGCGCAGCCGGCGGCGGCACGTCGGGTTCGAGGAGCCCGACCGCCGCGACGCCGGGACCTAGMLSIVRRVPWASVLTIAAAAVFTLVTLFAALRGRVWAWIPFALAAAILVREIRHVQRSRRRHVGFEEPDRRDAGTNANANANANA
AK018_01383582hypothetical proteinATGCAGTCCGTGACCACCCGCTACCTCATGACCTGCGCCGCCATCGGTGCGGCCGTGGGCGTGCTCCTCGTCCCGGCGAACTTCGTCAGCGCGCCGCTGGCCGCGGCGGCACCCCTCGCCTACGCCCCGCTGGTCGGGCTGTGGATGATCGGGCCCGTGCTGGCGCTGGCGCTGATCCGCCGCCCGGGTGCGGCCGTGCTGACCACGTTCGTCGCCGGCGTCGTCTCGTCGGCCTCCCCGGTCGGCGCGTGGTCGATCGTCACGTGCCTCATGGCGGGCGTGGCGGTGGAGCTGGCGTTCCTGGTGACCCGCTACCGCGTGTGGGGCGCCTGGCTGTTCTACGTGGACGCGGCGGTGTTCGGGGCGGCGTACGTCGCCTCCGGCTGGGCGGCGTTCGACATGGCCGCGATGGCGCCCGGGGTGCTGGCGGCGTTCGTGGTGCTCATGATGGGCAGCTTCCTGGTGTTCACCTGGCTGGGGTTGCTGCTGGCGCGGCAGCTGGCGCGGGCCGGCGTCGCGCGCGGCCTGGCGCCGTCCGGCCCGGTCCGGGCGCGCGAGGTCGGCCCGGAACCGGCGAGGTAGMQSVTTRYLMTCAAIGAAVGVLLVPANFVSAPLAAAAPLAYAPLVGLWMIGPVLALALIRRPGAAVLTTFVAGVVSSASPVGAWSIVTCLMAGVAVELAFLVTRYRVWGAWLFYVDAAVFGAAYVASGWAAFDMAAMAPGVLAAFVVLMMGSFLVFTWLGLLLARQLARAGVARGLAPSGPVRAREVGPEPARNANANANANA
AK018_01384813ykoC_1Putative HMP/thiamine permease protein YkoCATGAGCGCCGCCGTCCTGCCCGCGCCCGCGTCGACGACCCGGACCCGCGAGGGCCGCAGCGACCTGCGCACCTACAACCCGCTGGTCAAGATCCTCGGCGTCGTCCCCGTGATGCTCTACGTCGTCACCACCCGTGACGTGCTCACCCCCGCGCTCATCGGCGCCGCCGCCTTCGCCGTCCTCGCCGCGATGGGCCGCGTCCGTCCCACGGTGCTCGCCGGCGTCGCGCTCACCGCCGCCACGCTCGTCGCCGTCATGACGCTCTCCTTCGGGCTGCTCACCGACCCCGCCGCCGTCACCGGCAGCACCCTGATCGCCTCCGTCGGACCCGTCCAGGTGTGGTCCGGGGCGCTGGCCACCGGGCTCGCCACCGCCGTGCGCACCGTCGCGCTCCTGATGCTCGTGCTGCTCGGCGGGCTCACCACCACCGGCGCCGACCTCGTGCGCGGCCTGACCCAGCAGCTGCACCTGCCCTACCGGATCGGGTACGCGGCGCTCGCGGCCGTGCGGTTCGTGCCACGGTTCGGCCACGAGCTCGAGGTCATCCGGGGTGCGCACCGGGTCCGGGGCGTCGCCGTCGGCCGGGGGCCGCTCGGGGCCGTGCGCCGCCGCGCCGGGTACGTGGTGCCGCTGCTCGCCGGCGGGATCCGGCACGGCGAACGGGTCTCGCTCGCCATGGAGTCGCGCGGGTTCGGCGCCCACCCGACCCGCACCGAACGCGTCCGGGTGCCGTTCGGGGCCCGCGACGTCGTCCTCCTGCTCGCGCTGTGGGGCGGGGCCGCCGCCTGCGCCGCGCTCGCCACTCTCTTCTGAMSAAVLPAPASTTRTREGRSDLRTYNPLVKILGVVPVMLYVVTTRDVLTPALIGAAAFAVLAAMGRVRPTVLAGVALTAATLVAVMTLSFGLLTDPAAVTGSTLIASVGPVQVWSGALATGLATAVRTVALLMLVLLGGLTTTGADLVRGLTQQLHLPYRIGYAALAAVRFVPRFGHELEVIRGAHRVRGVAVGRGPLGAVRRRAGYVVPLLAGGIRHGERVSLAMESRGFGAHPTRTERVRVPFGARDVVLLLALWGGAAACAALATLFPGPT0004015_1269DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0004015-fmnA|ecfT-K16785NANA
AK018_013851755ykoD_2COG1122Putative HMP/thiamine import ATP-binding protein YkoDGTGATCCTTCCGCTGCTCGAGACGACCGGCCTGCGCGTGCGGCACCATCTGCCGCACGACGACGGCGGGTTCCGGCTGGGTGCCGCAGCCCCGGACGGCGTCGACCTCGCGGTGCATCCCGGCGAGGTCGTCCTCCTGCTCGGGCCCTCGGGGTGCGGCAAGTCCACCCTGGCGCTGGCCACGAACGGGCTGGTGCCGCACGTCGTCGCGGCCGACGTCGCCGGGACGGTCACCGCGGGCGGGCGGGACGTGGCGCGGACGCGCCCTCCGGAGCTCGCCGGGGACGTCGCGATGGTCTTCCAGGACCCGGACGCCCAGGTCGTCACCGGCTCCGTGCTCGACGAGGTCTGCTTCGCCCCCGAGAACCTCTGTCGGCCCGCCGACGAGGTGCTCGCCCGCGCCGAGACCGCGCTGCGGCAGGTCGGGCTGTGGGAGCGCCGCGCCGACGACCCCGCCACGCTGTCCGGCGGGGGACGGCAGCGGCTCGCGCTGGCCGCCGCGCTGTCGGCCGGGGCCCGCACCCTCGTGCTCGACGAGCCCACCGCCAACCTCGACCCGGCCGGGGTCGAGGAGGTCTACGACGTCCTGCGCACGCTCGTCGCCACGGGTGAGCACGGCGTGCTGCTCGTCGAGCACGACCTCGACGTGGCCGCCGACGTCGCCTCCCGGGTCGTGGTGCTCGACGGCGGAGGCCGCGTCGCCGCCGAGGGTCCGGTGCGCGAGGTGCTGACCGGGCAGGCGGAGCTGCTCGACGCGCTCGGAGTCTGGTTGCCCACCGCCACTCTCGCCGGCCTGCGGCTGCGTGACGCGGGCGTTGTCGTCGACCCGCTGCCGCTCACCCCCGCCGAGCTCACCGCCACGCTCGAGGCCGCCGACGACCTCCCCGACCCGGCCGCGCACGCGGACCCGCGGCGACCGGGCCCGCCCGTCCTGACCGTCGACCGGCTCACGTTCCGCCGCGGCCGGACGACCGTGCTGCGGGACGTCGGCCTCGCCGTCGGGCGGGGCGAGTTCCTCGCCGTGGTCGGCGCCAACGGTGCCGGCAAGAGCACCCTCGCCCAGCTCGTCGCCGGCGTGCTGCGGCCGCACCGCCGGGCCGCGCAGGGGAGCGTCACCGTCGCCGGACTCGACCCCTGGCGCGCCGACGTGCGCGGCCTGACCGCCGCCGTCGGCTTCGTGTTCCAGAACCCGGAGCACCAGTTCGTCACCTCCCGCGTCGACGACGAGCTCGCCGTCGGGCTCCGGGCCCGCGGCCTGCCCGAGCCCGAGATCGCCGCGCGCGTCGAGGACGTGCTCGACCGGTTCGGCCTCACCCCCCTGCGCGACCGCCACCCGTTCTGGCTCTCCGGCGGGCAGAAGCGCCGCCTCTCCGTCGGCACCGCGATCGTCTGCCGGCCCGACGTGCTCGTCCTCGACGAACCCACCTACGGCCAGGACCGCGAACGCGCCGTCGAGCTCCTCGACCTGCTCACCGCCCTGCACGACGACGGCACCACCGTCGTCGTGGTCTCCCACGACATGCAGCTCGTCGCCGAGCACGCCACCCGCGTGGTGGCCCTCGCCGACGGGCGCGTCGTCGCCGACGGCAGCCCCGCCGTCGTCCTCGGTGACGAGGCCCTGCTGGCCCGCGCCGGGCTGCGCACGCCCCCGCTGGCCCGCGCCACGCGCGACGTGCACCGGCACCCGCGATGGCGGTCGGTGACGCGGCTCGCCGACCTGCCCACCGCCCCGGCGCCCGTGGAGGTCGGGGCATGAMILPLLETTGLRVRHHLPHDDGGFRLGAAAPDGVDLAVHPGEVVLLLGPSGCGKSTLALATNGLVPHVVAADVAGTVTAGGRDVARTRPPELAGDVAMVFQDPDAQVVTGSVLDEVCFAPENLCRPADEVLARAETALRQVGLWERRADDPATLSGGGRQRLALAAALSAGARTLVLDEPTANLDPAGVEEVYDVLRTLVATGEHGVLLVEHDLDVAADVASRVVVLDGGGRVAAEGPVREVLTGQAELLDALGVWLPTATLAGLRLRDAGVVVDPLPLTPAELTATLEAADDLPDPAAHADPRRPGPPVLTVDRLTFRRGRTTVLRDVGLAVGRGEFLAVVGANGAGKSTLAQLVAGVLRPHRRAAQGSVTVAGLDPWRADVRGLTAAVGFVFQNPEHQFVTSRVDDELAVGLRARGLPEPEIAARVEDVLDRFGLTPLRDRHPFWLSGGQKRRLSVGTAIVCRPDVLVLDEPTYGQDRERAVELLDLLTALHDDGTTVVVVSHDMQLVAEHATRVVALADGRVVADGSPAVVLGDEALLARAGLRTPPLARATRDVHRHPRWRSVTRLADLPTAPAPVEVGANANANANANA
AK018_013861992ubiB_1protein kinase UbiBATGTCGTGGCTCTCGGGACTCGTGGTGCTGGTCGTCACCCTCGTGTCGGGGCTCCTGCTGGCCGCGGCAGCACGCCGCGCGCTCGACGCGCCCGTCGGCTGGATCCGCTCGATCGTGACCACACTGGTCGTGTTCGGCGTCGGCACCTCCCTGCTGGACGCCGGGATCGGCACCCTCGACGTGGACAGCACCGGGGAGGCCCTCGGGTTCCTGCTGCTCGTCGTCGTCGCCTGGGCCTGGATGTTCGCCGTCGCCCTCGGCCTCCTCCTCGCCTTCGAGGTGTTGCTGCCCACCGGGCGGCTCCCCTCCCCGCTGCAGACGCTGCGCGGCCTGCGCGAGGGCCGCCAGGAGTCGCAGCGGTACGCCCAGGTCGTGGCGATCCTCGTGCGGCGCGGCCTCGGCGGGTTCCTGCGGCGCGGCGCCGACGGCGAACCCGAGTCGACCGGGGCGCTCGCCTCGCACGCCCGGTCCCTGCGCCTCGCGCTGTCCGACGCCGGCGTGACCTACGTGAAGTTCGGTCAGATGCTCTCCAGCCGACGCGACCTCGTCCCCGACGTCGTCGCCGACGAGCTCACCCACCTGCAGTCCCGCGTGCCGCCGGAGTCCTGGGACACGGTCCGCACCGCCGTCGATGCCGCGCTCGGGCGCCCTCTGCAGGAGGAGTTCGAGCGGTTCGACGAGACCCCGCTGGCCAGCGCGTCCGTCGGCCAGGTGCACGCCGCACGGCTGCGCGACGGCCGCGACGTCGTCGTCAAGGTGCTGCGACCCGGCGCCCGCGCCCAGGTCGAGGTGGACCTGCGGATCCTCGGAAGGCTCGCCCGACGTCTGGAGCGCGACACGCAGTGGGCCCGGTCGCTCGGCGTGGAGGGCCTGGTCGCCGGGTTCGCGGCCTCCCTGCGCGAGGAGCTCGACTACACGATCGAGCTCGGCAACACGCTCAACCTCGACGGGGCCCTCGCCGCGACGCCCGGCGGCGTCGACCCGCGCGTGCAGCTGCCCACCATGCACCCCGAGCTGTCGGGCCCGACCCTGCTCGTCATGGACCGCATGGAGGGCGTCCCCCTCGGCGAGGCCGACGCGGTGCTCGCCGACCTCGCCCCGGACGAACGGCAGGCCATGGCCGAGGCGTTGCTCGGCAGCGCGATGCGCCAGCTCGTCGTCACCGGCGTCTTCCACGCCGACCTGCACCCCGGCAACATCCTGGTCCGCCCCGACGGCACGCTCGGCCTGCTCGACCTCGGCGCCGTGGGCCGCATGGACGAGTCCGAACGCATGGCGCTCGGCGCCTTCCTGCTCGCCGTGCAGGGCGACGACTCCATCGCCGCCCTCGACGCGCTGCGTGAGCTGCTCGACCAGCCCACCCACCTCGACGCCCGGGACGTCGAGCGACGCCTCGGCGCCGTCATCGTCCGGTTCCGCCACGGCACCGGCCCCGTTGGCTCCGGCGAGCTGTTCGGCACGATGATCTCGCTGTTCGCCGACGCCGGCATGACCGTCCCGCCCGGGCCCGCCTCCGCGCTGCGCACGATGGCCTCCCTCGAGGGTGCGCTGGCCCTGATCGCGCCCGGGTACGACCTCGTCGCCGGCGCTCAGGAGATCGGGGCACCGCTGCTGAAGGCGTCGATGGGCCCGCGCGCCGTCCGCGACCGCGTGACCCGGTCCCTCGCCGGCATGGCGCCCACCCTGCAGCGCCTGCCCCGCCGCCTGACCCAGGTCGTCGAGGACCTGCAGGACGGCAACCTCACCGTCACCGTCCGCTCGTTCGCGCACCCCGAGGACCGCCGGTTCCTCACCTCCCTGGTCCAGCAGCTCGTCACCGCCGTCATCGCGGCGGCGTCGCTGGTGGGCGCCGTGCTGATGATCGTCTCCCCGACCGGGCCGATGCTCATGCCCGGCATCGACCTGTACTGGGTGCTCGGCGCGGGCCTGGCGTTCGTCGGCACGCTGCTCAGCGTCCGGGTGCTGGTGTTCGCGCTGCGCTCGCGGCGCTGAMSWLSGLVVLVVTLVSGLLLAAAARRALDAPVGWIRSIVTTLVVFGVGTSLLDAGIGTLDVDSTGEALGFLLLVVVAWAWMFAVALGLLLAFEVLLPTGRLPSPLQTLRGLREGRQESQRYAQVVAILVRRGLGGFLRRGADGEPESTGALASHARSLRLALSDAGVTYVKFGQMLSSRRDLVPDVVADELTHLQSRVPPESWDTVRTAVDAALGRPLQEEFERFDETPLASASVGQVHAARLRDGRDVVVKVLRPGARAQVEVDLRILGRLARRLERDTQWARSLGVEGLVAGFAASLREELDYTIELGNTLNLDGALAATPGGVDPRVQLPTMHPELSGPTLLVMDRMEGVPLGEADAVLADLAPDERQAMAEALLGSAMRQLVVTGVFHADLHPGNILVRPDGTLGLLDLGAVGRMDESERMALGAFLLAVQGDDSIAALDALRELLDQPTHLDARDVERRLGAVIVRFRHGTGPVGSGELFGTMISLFADAGMTVPPGPASALRTMASLEGALALIAPGYDLVAGAQEIGAPLLKASMGPRAVRDRVTRSLAGMAPTLQRLPRRLTQVVEDLQDGNLTVTVRSFAHPEDRRFLTSLVQQLVTAVIAAASLVGAVLMIVSPTGPMLMPGIDLYWVLGAGLAFVGTLLSVRVLVFALRSRRPGPT0009520_25DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009520-ubiB|aarF-K03688NANA
AK018_01387765hypothetical proteinATGACCGCCGTCCGGACGCACACCCACGCCCAGGCCGTCGACGCCGCCATCGAGCTGTTCTCCCGGAAGGGGTTCGAGCAGACCACCGTCGAGGAGATCGCCGACGCCGCGCAGATCAGCCGTGCGACGTTCTTCCGTCGGTTCCGGTCCAAGGAGGACGTGGTCTTCGCCGACCACGAGATCCTCCTCGAGGAGGTCGTGGTCATGCTGGCGGCCACCCGCCCCGAGGCGCGCGTCAACGAGGAGGCCAACACCTCGCGCGAGTCGGCGTGGGACCCGTCGGTGGACCCGTACCTGGAGGTGTGCCGCGCCGCGCGCCTGGTGTTCGACCACCACGTCGGGCAGCGCGAGACGTCGCTCGCGCGGCACCGACTCCTGCAGCAGGTGCCGGCGCTGCGGGACCGCGAGCTCGTCACCACCCACCGCTACGAGCGCGCCTTCACCGCCTACCTGCGCGACACGCTGCCCACCGACCGCTCCCGCACCACCATGTCGATCGCGTTCGCGGCCTCGGTGGTCGCCGTGCACAACGCGGTGCTGCGCCGCTGGCTGCGCAACCCGTACCTGGACCTGCGTCCCGACCTGGAGGAGGCGTTCGCGGACCTGCGCCGCGTCGCCGCTGCTCCGGCGTCCGACGGCGGCACCCCGGCAGCGGAGGACGTCGGCGAGCCGCACGCCGGCAGCAAGCGCGTCGTCGTGGCCGTGCTGGAGGAGGGCGCCGGCCCCGACGACGTCGCCCGTGCCGTGCGCGACGTGCTCAACTGAMTAVRTHTHAQAVDAAIELFSRKGFEQTTVEEIADAAQISRATFFRRFRSKEDVVFADHEILLEEVVVMLAATRPEARVNEEANTSRESAWDPSVDPYLEVCRAARLVFDHHVGQRETSLARHRLLQQVPALRDRELVTTHRYERAFTAYLRDTLPTDRSRTTMSIAFAASVVAVHNAVLRRWLRNPYLDLRPDLEEAFADLRRVAAAPASDGGTPAAEDVGEPHAGSKRVVVAVLEEGAGPDDVARAVRDVLNNANANANANA
AK018_01388696ribM_1Riboflavin/roseoflavin transporter RibMATGATCGAGTGGCTCTTCGACGCGACGTTCACGGTCGGGGACTCCGGTCCGGTCCTGTGGCGCGAGGTGATCGGCAACGCGTTCGGACTCGCCTCGGCGCTCGGCGGCATGCGCCGCAAGGTCTGGGCGTGGCCGGTCGGCATCATCGGGAACCTGCTGCTGCTCACCGTGTTCCTCAACTCCGTGTTCGGCGACGCGAGCCGCGCCGACATGCTCGGCCAGGCCGGCCGCCAGGTCATGTTCATCGCGGTCTCCGTCTACGGGTGGATGCGCTGGCGCGAGACGAGGAAGCAGGACCTGGAGGTCCGCGCCGACGGCAAGGTGCCGTCGTCGGGCGCCGAAGGGGTGCACCCGCGCTGGGCGACCTGGCCGCAGCGCGCGTTCCTGGTGGTCGCGATGGTGGGCGGCACGCTCGCGCTGACCCCGCTGTTCTCGGCGCTGGGCTCCTACGAGCCGGTGTGGGCGGACGCGTGGATCTTCATGGGTTCGCTGCTGGCCACCTACGGCATGGCGCGCGGCTGGGTGGAGTTCTGGCTGACCTGGGTGGCCGTGGACGTCGTCGGCGTCCCGCTGCTGTGGTCGGCCGAGTACTACGCCACGGCCCTGATGTACGTGTTCTACGGCGCGTTCACCCTGGTCGGCTTCTTCGTCTGGCTGCGGGTGCACCGCCGCGAGCAGGCCGTGGCCACACCCTGAMIEWLFDATFTVGDSGPVLWREVIGNAFGLASALGGMRRKVWAWPVGIIGNLLLLTVFLNSVFGDASRADMLGQAGRQVMFIAVSVYGWMRWRETRKQDLEVRADGKVPSSGAEGVHPRWATWPQRAFLVVAMVGGTLALTPLFSALGSYEPVWADAWIFMGSLLATYGMARGWVEFWLTWVAVDVVGVPLLWSAEYYATALMYVFYGAFTLVGFFVWLRVHRREQAVATPNANANANANA
AK018_01389696hypothetical proteinATGCTGATCGCCGAAGACCTGCTGCTGCTCGCCTACGACGACACCACCGGCAAGCCGGACGGCTGGCTGACCGACCTGGACACACGGTTCGGTGCCGCGCTGCTGCTCGAGCTGGCGCTGGCGGGTCGCGTCCAGGTGGCCGGCGCCGGGACGACGACGGCGGCCGGTTCCGCCACGCCGTCGGGCACCGTCGTCGTGCTGGACGCCTCCCCCTCCGGGCACCCCGCGCTCGACCGGGCGCTCGCCGTCGTCGCCGAGCGGCCGCGCACCCCGAAGGACCTGCTGGGCCCGCTGGCGAAGGACGTCCGGGACGAGCTGCTCGCCGGGCTCGTCGAGCGTCGGATCCTGCGCCGCGAGTCGGGCAAGATCCTCGGGATCTTCCCCACCACGTCCTGGCCGGCCGCCGACTCGTCGCACGAGACGGCGTTGCGGGCCGAGTGCGAGGACGTGCTGCTGGGCCGTCGTGACCCGCGGCCCGAGACGGCGGCGCTGCTGTCGCTCGTGGCGGGCACCGCGCTGGTCAAGCAGCTCGTGCCCGCCGAGCACCGCAAGCAGGCCGAGGCGCGGGCGAAGGAGCTCGCCGAGGAGTCGTGGGCGCACGACGCCGTCAAGAAGGCCGTCGACGAGATCAACGCGGTGCTCCTGACGACGATCATCTTCCCGGCGATCATCACGCCGACTGTCATGTCGTCCTGAMLIAEDLLLLAYDDTTGKPDGWLTDLDTRFGAALLLELALAGRVQVAGAGTTTAAGSATPSGTVVVLDASPSGHPALDRALAVVAERPRTPKDLLGPLAKDVRDELLAGLVERRILRRESGKILGIFPTTSWPAADSSHETALRAECEDVLLGRRDPRPETAALLSLVAGTALVKQLVPAEHRKQAEARAKELAEESWAHDAVKKAVDEINAVLLTTIIFPAIITPTVMSSNANANANANA
AK018_013901251mmgC_1COG1960Acyl-CoA dehydrogenaseATGAACCGCCCTGCACCCGCACAGATCGGCGTCACCGCGCCCGACTACGACGTCGCCGCACCCCTCGACGTCGACTTCGCCCGCGCGTTCGCCGACGTCGATCCCGCCGCCCGCGCGCACCAGCTCGCCGTGCGCGAGTTCGTCCAGGACGAGGTCCTGCCCGTCATCGACGGCTACTGGGAGCGCGCCGAGGTGCCGTTCGACCTCGTCAAGGCGCTTGCCGAGCGCGACTTCCTGCGCGACGGCGTCGACGTGCCCGGCCGCCCCTCGATCTCCTTCATGGCCGAAGGCCTGGCCAGCATGGAGATGTCCCGCGGCGACGGATCCGTGGCCACCATCTGCGGCGTCCAGGGCGGCCTCGCCCTGCGCTCGATCGTCATGCACGGTTCGCCCGAGCAGGTCGAGCGGTACGCCGAGCCGATGGCGCGCGGCGAGATCCTCGGTGCGTTCGCGCTGACCGAGCCCACCCACGGCTCGGACTCCGTGTCCCTGGAGACCACGGCCCGCCGCGAGACCCGCGACGGCGTCGAGGGGTACGTCATCGACGGCGAGAAGAAGTGGATCGGGTTCGGCTCCTGCGGCGACATCACCGTGGTGTGGGCCCGCCTGGTCGACGAGGGCAGCCCGGGCCACGGCCAGGTGCACGGGTTCGTCGTCCCGCAGGACGCCCCCGGCTACACCGGCACCACCATCGAGGGCAAGATGGCGCTGCGGGCCATCTGGCAGGCGCACCTCGTGCTCGACGACGTGTTCGTGCCCGCTGACGCCGCCCTGCCGGGTGCCACCTCCTTCAAGGCCACCTCCGAGGTGCTCTTCGCGACGCGTCTCGCCGTCGCGTGGTCCGCCGTCGGGCACGCGATCGCCTGCTATGAGGCCGCCGTGCACTACGCGACCCAGCGCGTCCAGTTCGGCAAGCCGCTCGCCGCCAAGCAGATGGTCCAGGAGCGCCTGACCCGGATGCTGTCCACGGTGACCCAGCTGCAGCTGCTGGTGACGCGCCTGACCGAGCAGGCCGACGCCGGCGAGCTCACCGGTGAGCAGGCCTCCCTGGCCAAGTACACCTGCACCCGGGGTGCCCGCGAGGTCGCCTCGATCGCCCGCGACATGCTGGGCGGCAACGGCATCCTGCTCGCCAATCGCGTCGCGCGGCACTTCGCGGACATCGAGGCGATCCACACCTACGAGGGCACCGAGTCGATGAACGCGCTGATCGTGGGCCGCGCCATCACCGGTGTCTCCGCCTTCGCGTAGMNRPAPAQIGVTAPDYDVAAPLDVDFARAFADVDPAARAHQLAVREFVQDEVLPVIDGYWERAEVPFDLVKALAERDFLRDGVDVPGRPSISFMAEGLASMEMSRGDGSVATICGVQGGLALRSIVMHGSPEQVERYAEPMARGEILGAFALTEPTHGSDSVSLETTARRETRDGVEGYVIDGEKKWIGFGSCGDITVVWARLVDEGSPGHGQVHGFVVPQDAPGYTGTTIEGKMALRAIWQAHLVLDDVFVPADAALPGATSFKATSEVLFATRLAVAWSAVGHAIACYEAAVHYATQRVQFGKPLAAKQMVQERLTRMLSTVTQLQLLVTRLTEQADAGELTGEQASLAKYTCTRGAREVASIARDMLGGNGILLANRVARHFADIEAIHTYEGTESMNALIVGRAITGVSAFAPGPT0021815_501DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
AK018_013911380hypothetical proteinATGTGGCGCGTGCCCGACGACGCCCCCGCCCCCACGACGGCCGCCGCCGCGCGGGACCGCGGTGCCCACCTCCTGGCCTCGCCGTGGCTGCTCGCGCTCGCCTTCGTCGTCGTGCACGCCCGTCTCGTCCACGAGGCCATCTCCTGGCAGAACACGATCTACGGCGACGTCACGCTCTACGAGTGGTGGGCCCGCCACGGCCTGACCACCGGCCAGTGGCCCGTCCTCGACTACGACTGGGTCTACCCCGCCGGCGCCCTCGCCCCCGTCGTCACGCCCGCGCTGGTCACCGACGACCTTCTCGGCTACGAGATCTTGTGGACCGCGGCGATCGTCGCGCTCAACGCCGTCGCCACGGTGATCCTCGTGCGCTCGACCCCCCGCGGCGTCCTGGGCGCCTGGTGGTGGCTGCTGTTCCTGCTCGCCCTCGGACCAATCTTCCTGGGCCGCCTCGACGGCGTCGTCGCCCCGATGATCCTCGTCGGCCTCGTCCTCGCCCGCCGACACCCACGGATCGCCGTCGCCGTCGCCACCGCCGGCGCCTGGATCAAGATCGCCCCCGGTGCCGTCGTCGTCGCGATCGCCGCCACCCGCCGCAGCCTGCGCGACCTGCTGCGCGCCGTCGTCGTCCCCGGAGCCGTCGTCAGCGCCGTGGTCGTCGGCCTCGCGCTCCTCGGCGGTGCCGGCACCCGCGCGCTGAGCGTGTTCGGCCAGCAGGGGTCGCGGACCCTGCAGGCGGAGTCCGTCCTCGCCACCTGGTTCTCCGTCGCCCGCTGGTGGGACCCCGGCATCCGCATCGAGTACAACGACGAGATCTTCACCTACGAGGTCCAGGGCGACGCAGCGCGAACCGTCGCCGACACCCTCGACTGGCTGCTCGTCGCCGCCGTCGCCGCCCTCGCGCTCCTGACGCTGTGGGCCGCCCGACGGCACCCCGAGAAGGCCTACGAGCTCGTCCTGCTGTCCGCGGCAGCGCTGCTCGTCGCGCTCATCGTCTTCAACAAGGTCGGCTCGCCGCAGTTCGTCGCCTGGATCGGGCCCACCGTCGCGGTGGCGCTCTCCGCCGCCCCGGCCGGTCGCTCCCTGCGCTGGTGGTGGCCACCGGCGCTCGGCATGAACCTCGTCGCCTACGCCACCTACCTCGTCTACCCGGTCGCCTACGGACCCTTCCTGGGCGGCGAGACCTGGATCGTGGTCGTCGAGGCGCTGCGCAACCTCGCCCTCGTCGTGCTGCTCGCCGGGGCCACCTGGCGCATCGTCCACCTCGGCGCCGAACCGGCGGCTCGGACGCGCGACAGCCGCCCCGTCCACACCCCGCACCTGAGGGCCGCGCGACCGGACCCTTCCGGTTGCGCACGCACCCACCTCCCCGGACGCTGAMWRVPDDAPAPTTAAAARDRGAHLLASPWLLALAFVVVHARLVHEAISWQNTIYGDVTLYEWWARHGLTTGQWPVLDYDWVYPAGALAPVVTPALVTDDLLGYEILWTAAIVALNAVATVILVRSTPRGVLGAWWWLLFLLALGPIFLGRLDGVVAPMILVGLVLARRHPRIAVAVATAGAWIKIAPGAVVVAIAATRRSLRDLLRAVVVPGAVVSAVVVGLALLGGAGTRALSVFGQQGSRTLQAESVLATWFSVARWWDPGIRIEYNDEIFTYEVQGDAARTVADTLDWLLVAAVAALALLTLWAARRHPEKAYELVLLSAAALLVALIVFNKVGSPQFVAWIGPTVAVALSAAPAGRSLRWWWPPALGMNLVAYATYLVYPVAYGPFLGGETWIVVVEALRNLALVVLLAGATWRIVHLGAEPAARTRDSRPVHTPHLRAARPDPSGCARTHLPGRNANANANANA
AK018_013921089hypothetical proteinGTGGCACACCACGCCGCACCGTCGCCCGTCACCCTGGCTCCCGACCCCTCGCCGGGCGCCGACGCCGCGCTGCCGCCGTCGGACCTGGCGTTCGTCGCCGACCACGCCACCGACGTGCCGGCGCTCCTCGACCGGGTGACCCGCATCGCACCGTCGCTGCCCGCACCCGGCGAGGGCGACACCGTCCGGCTCTGGTCGGCCCTGGCCTCGGTGGCCGCCGCCGACGTCGGCGCGGCACGCGTCCTGGAGCCGCACCTCGACGCGCTGACGATCCTGCGCCAGGCACCGGACGGCGTCGACCTGGGCCTCCTCGACGCCGGACCGGCATCGACCTGGGGCGTCTACGCCGCCGAGGGACCGGGCGTACGCGTCGAGGCCCGGCCGGACGCCGCGGGCGAGGGCTGGGTGCTCGACGGGACCAAGCCCTGGTGCTCCCTGGCCCGCCACCTCAGCCACGCCCTCGTGACGGCCTGGGTCGGCGACGAGCGACGGCTCTTCGCCGTCGCCCTGCGCACCCCGCACGTCCGCGCCGACGAGGGCCCGTGGGTGGCGCGCGGGCTCACCCAGGTGGTCAGCGCTCCGGTGCACCTCGACTCCGCACCCGCCGTACCCGTCGGACCCACCGGCTGGTACCTGCGGCGCCCCGGGTTCGCCTGGGGCGGGATCGGGGTCGCCGCCTGCTGGTGGGGCGGCGCGGTCGGGCTCGCGCGCAGCCTGTGGTCCTCGCTGCAGGGCCGCGAGGCGCAGCAGCTCGCGCTCGCCCACCTCGGCGCCGTGGACGTCGCGCTCGGCGCCGCACGGTCGGCGCTCGCCGAGGCGGCCGTGCTGGTCGACGGCAGGGTCGACGGCGGGCTCGACGACGCCGTCGCGGGCCTGACGGCGCGCCGCGTCCGGACCGTCGTCGCCGACACCGTCGAGGAGGTCCAGCGGCGCGGCGCGCACGCCATGGGTCCCGGGCCGCTGACGACCGACGAGGCCTTCGCCCGACGGGTCGCCGACCTCGGTCTCTACGTGCGCCAGCACCACGCCGAACGCGACCAGGCCTCCCAGGGTCGCGACCTCCTGGCCCGCGGGGAGCTGCCGTGGTGAMAHHAAPSPVTLAPDPSPGADAALPPSDLAFVADHATDVPALLDRVTRIAPSLPAPGEGDTVRLWSALASVAAADVGAARVLEPHLDALTILRQAPDGVDLGLLDAGPASTWGVYAAEGPGVRVEARPDAAGEGWVLDGTKPWCSLARHLSHALVTAWVGDERRLFAVALRTPHVRADEGPWVARGLTQVVSAPVHLDSAPAVPVGPTGWYLRRPGFAWGGIGVAACWWGGAVGLARSLWSSLQGREAQQLALAHLGAVDVALGAARSALAEAAVLVDGRVDGGLDDAVAGLTARRVRTVVADTVEEVQRRGAHAMGPGPLTTDEAFARRVADLGLYVRQHHAERDQASQGRDLLARGELPWNANANANANA
AK018_013931140mshB_11D-myo-inositol 2-acetamido-2-deoxy-alpha-D-glucopyranoside deacetylaseGTGGTGACGTTCGACCACCGGGAGCCCGGCACCGCGGAGCAGGCCTGGGTCGACGCCGGCGTCCTCACCCGGCCGCACCCGCTCGACCTCGAGGGTGTCGACGAGCTCGTCGTGCTCGCCGCCCACCCGGACGACGAGTCGTTCGGCGCGGCGGGACTGCTCCACCGGCTCGCCGGGGCCGGGGTCCCCGTCACGGTCGTCGTCGCCACCGACGGCGAGGCGTCGTACCCCGGCACGGCGGACGTCGAGGAGCTGCGGACCACGCGTCGCAGCGAGCTCGTCGCCGCCCTGGCCGTCCTCGCCCCGAGCGCCCGGCTGGTCCTGCTCGGACTGCCCGACGGCGGTCTGCGCGAGCACCGCGACGAGCTGCGCCGCGGGCTCGACGCAGCGCTGGCGCCGGGCCGTGGCCAGGGCCACGGCCAGGGCCACGGCCAGGGCCAGGGCACGCTCCTCGTGGCGCCGTGGCGCGGTGACGGCCACCGGGACCACCGGGTCGCCGGGGAGACCGCCGCCGACGTCGCCGCCGCCCGCGACGCCCGGCTGGCCGAGTACCCCATCTGGTGGTGGCACTGGGGCGACCCGGCGTCCGACGGACCCTGGCAGCACCTCCACGGCCTGCGGCTGACGCCGACCGAGGTCACCGCCAAGGCGAAGGCCCTGGCCGCCCACGCGACCCAGGTCGCCCCGCCGACCCCCGGGACCGAGCCCGTGCTGGGTGCCGAGATGCTGCGCCACGCGGCCCGACCCGTCGAGGTGTTCGTCGTCGAGCAGACGCCCGAGACCGCCCCGCCACCGACCAGGTCGCTCGACCGCGGCTTCTTCGACACGTTCTACGCCGGACGGACCGACCCGTGGGGGTTCGAGACGCGCTGGTACGAGGAGCGCAAGCGCGCCGTCCTCCTCGCGGCCCTGCCGCGCCCCCGCTTCCGGCACGGGCTGGAGATCGGCTGCTCCACGGGGGTCCTCACCGCCGAGCTGGCCCACCGGTGCGACCGCATCACCGGTGTCGACATCGCCGACGCACCCCTGGACCGCGCCCGCCGACGCCTCGGCGACACCGTCGAGCTGCTCCGCCTCGACACCCCCGCCCGGTGGCCCGACGGCACCTACGACCTGATCGTGCTGTCCGAGGTCCTGTAAMVTFDHREPGTAEQAWVDAGVLTRPHPLDLEGVDELVVLAAHPDDESFGAAGLLHRLAGAGVPVTVVVATDGEASYPGTADVEELRTTRRSELVAALAVLAPSARLVLLGLPDGGLREHRDELRRGLDAALAPGRGQGHGQGHGQGQGTLLVAPWRGDGHRDHRVAGETAADVAAARDARLAEYPIWWWHWGDPASDGPWQHLHGLRLTPTEVTAKAKALAAHATQVAPPTPGTEPVLGAEMLRHAARPVEVFVVEQTPETAPPPTRSLDRGFFDTFYAGRTDPWGFETRWYEERKRAVLLAALPRPRFRHGLEIGCSTGVLTAELAHRCDRITGVDIADAPLDRARRRLGDTVELLRLDTPARWPDGTYDLIVLSEVLNANANANANA
AK018_01394186hypothetical proteinGTGGTCGCCTGCCACTGGCGGCACGAGGTCCCCGAGTACCCGCTGGCGGGCGACGAGGTCCACGCCCGGCTCCGTGCGCACCCCGGCCTCGACGTGCTCGTCCGCCACGAGGAGGAGGACTTCGTGCTGGAGGTCCTGGTCCGGCGACCGGCACGGTCGGTCGCCCGCGAGACGGGACTGCTGTGAMVACHWRHEVPEYPLAGDEVHARLRAHPGLDVLVRHEEEDFVLEVLVRRPARSVARETGLLNANANANANA
AK018_01395729hypothetical proteinGTGACGGCCGCGCCCGTCCGCCTCGAGGCGATCCACGTCGTCGTCCCGGTCCACGACGAGGAGGAGCTGCTGCCGCGGTGCCTGCACGCCCTGCGGGGCGCCGTCGCGCTCCTGCACGACGCCGCGCCGCTCGTGCGGGTGCGCACCGTGCTCGTCCTGGACGGCTGCACGGACGGCAGCGCAGAGGTCGCGCGGGCGTCGGGGTTCGCCACGCTGACGACGCCGGGCGTCGGCGTCGGGGAGGCCCGCCGGGCCGGCGTCGACGCCGCCGGGCGCGTCGACCCCCACGACCCGGCGTGCGTCTGGCTCGCCTGCACCGACGGCGACTCCGAGGTGCCGGAGCACTGGCTGGTCCGGCACCTGGAGCTGGCTGACGGCGGTGCGGACGTCGTGGTCGGGACGGTCCGGCCCCGCCTGGAGGAGCTGTCCGCGGACCGCGCCGACGCGTGGCTCGCGTCACACCGGCCGGGTGTGGCGAACGGCCACGTGCACGGCGCGAACCTGGGGATCCGGCGGTCGACCTACGAGTCCGCCGGCGGTTTCGCGGCCCTGCGCGAGCACGAGGACGTCGTCCTGGTGGACCGGGCCCGCACGACGGGGGCGCGCGTCGTCGCGGACGCCGCGTGCGAGGTCGTCACGTCGGCGCGGCTGGTCGGCCGCACGCCGGGAGGGTACGCGCGGCACCTGCGCGAGGACCTCGTCCCGCCGGGGTCGGTCCGCTCCGCGTAGMTAAPVRLEAIHVVVPVHDEEELLPRCLHALRGAVALLHDAAPLVRVRTVLVLDGCTDGSAEVARASGFATLTTPGVGVGEARRAGVDAAGRVDPHDPACVWLACTDGDSEVPEHWLVRHLELADGGADVVVGTVRPRLEELSADRADAWLASHRPGVANGHVHGANLGIRRSTYESAGGFAALREHEDVVLVDRARTTGARVVADAACEVVTSARLVGRTPGGYARHLREDLVPPGSVRSANANANANANA
AK018_013961125mgtA_1COG0438GDP-mannose-dependent alpha-mannosyltransferaseGTGAGGGTAGCGATCGTCGCAGAGTCCTTCCTTCCGCAGGTGAACGGAGTGACGAACTCCGTCCTGCGGATCCTCGAGCATCTCCGCCGGACCGGCCACGATGCCCTGGTGCTGGCGCCCGACTGCGACGACGGCGACGTCCCGCCGTTCGTCCACGGCGCGCCGGTGGTCGAGGTCCCGTCGGTCGGCCTGCCGGGCTACCCGGACGTGCGGGTCGTCGTCGGGCAGCGTGCGCGGATCGAGCGGACGCTCGCCGCGTTCGAGCCCGACGTCGTGCACCTCGCCTCGCCGTTCACCCTCGGCTGGCGCGGGATGCAGGCCGCCGAGTCGCTCGGCGTCCCGACCGTGGCGGTCTACCAGACCGAGGTGCCCGGGTACGCGGCGCGGTACGGGATGCGACACCTGGAGCCGTTCCTGTGGCGGCGGGTGCGCAACCTGCACGACCGCGCGTCGGTCACTCTCGCACCGTCGACGCCCACCATCGACCACCTGCGCGCCCACGGGATCCCGCGCCTGCACCGCTGGGGCCGCGGCGTCGACACCGTGCAGTTCCGCCCGGAGGCCCGTGACGAGGCGTGGCGGCGCGAGGTCGGGGCGGGTCGCCGGCTGCTCGTGGGGTACGTCGGACGGCTCGCCGCGGAGAAGCAGGTCGAGGCCCTACGGGTGCTGCACGACCGCACCGACGTCCGCCTCGTCGTCGTCGGCGAGGGTCCCGAGCGTCCGCTGCTGGCCGAGCTGCTGCCCGACGCCGTGTTCACCGGCCTGCTGCGCGGGGAGGAGCTGGCCCGGGCGATGGCGAGCCTGGACGTGTTCGTCCACCCGGGCGAGCTGGAGACGTTCGGACAGACCCTTCAGGAGGCGAACGCGTCCGGGGTGCCCGTCGTCGCGCCGGCCGCGGGCGGGCCGATCGACGTCGTCGACCACTCCCGCACCGGCTGGCTGTACCCGCCGGGCGACCACGCGGCGCTCCGCGCGCACGTCGACGACCTGCTCGGCGACGACCGCAAGCGCCACGCGTTCGGCCGGGCCGCCCGGGAACGGGCGCTGGGTCGGACGTGGGCGAAGGTCTGCCACGAGCTGATGGGGCACTACGAGGCGGCGATCCGGGTCCGATCGGGGGTGTGAMRVAIVAESFLPQVNGVTNSVLRILEHLRRTGHDALVLAPDCDDGDVPPFVHGAPVVEVPSVGLPGYPDVRVVVGQRARIERTLAAFEPDVVHLASPFTLGWRGMQAAESLGVPTVAVYQTEVPGYAARYGMRHLEPFLWRRVRNLHDRASVTLAPSTPTIDHLRAHGIPRLHRWGRGVDTVQFRPEARDEAWRREVGAGRRLLVGYVGRLAAEKQVEALRVLHDRTDVRLVVVGEGPERPLLAELLPDAVFTGLLRGEELARAMASLDVFVHPGELETFGQTLQEANASGVPVVAPAAGGPIDVVDHSRTGWLYPPGDHAALRAHVDDLLGDDRKRHAFGRAARERALGRTWAKVCHELMGHYEAAIRVRSGVPGPT0017895_539DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_MANNOSE_METABOLISM|DEGRADATION,PGPT0017895-mgtA-K12583NANA
AK018_01397921hypothetical proteinATGACCGGCGGGCCCGTCGTCGTCGCGCTCGGCGACTCCATCACGGCGGGCGTGGGCGACGCCGTCACCCCGGAGGCGGTGCACGGTCCCGGCTGGGCGGCACACCTGGCCACGCTGACCGGGGCGTCCCGCTTCGAGAACCTCGCCCGCAACGGGGCCCGCGCGCAGACCATCGTCGCCGAACAGCTCGACGCCGCGCTGGCCGCCGACGCCGACGTCGCGACCCTCGTCGTCGGCGGCAATGACGCGCTGCGCACCGACTTCTCCCCCGTGGACGTCGGGCGGCACCTGTCGCGGTGCACGCGGACGCTGCGGGCCCGCGGGGCGGTCGTCGTCCTCGCGACGCTGCCGCCCGTCGGCCTGTTCGAGCTGTTCCCGGGCCGGGTCCGCCGGGTCATGCGGGCCCGGATCGACGCCGTCAACGCCATGGTCCGCGCGACGGCGGCCCGCGAGCGCACGGGTCGGGGGCCGGCCGTGGCGCTCCTCGACGTCGGCGAGGCCGTGCGCCGCGCCGGGCCCGGAGCCTGGTTCGTCGACCGGGTGCACCCGTCGCCGCTCGGGCACCGGCACGTCGCGGCCGGCGGGGTCCGAGCCGTCGCTGCCGCGCTGCCCGGACTGCCGGGACCGTCGGCCGTCCGCTCGGCACCGCCGGACACCTCGACGGGAGCCTTGCTGGCGCGGCTGCCCGCACCTCCGCCGCCGCCGTCGGCGTGGCAGCGCGCCGCGTGGTTGACGCTCGCCGGCGTGCCGTGGGCGGTGCGGCGGGGGCACGACTTCCTGCCCGGGCTCGTCCGTGCCGTGCTCGACGACGTGCGCGGCGGCGTCGGCCCCCTCGACCTGGACCTGACGGAGCTGTCCGACCTCGCGGACCTGCGCGCGCCGGACCCGGCCGCGCCGGACGCGCTGCTGCCCGGGCGGTGAMTGGPVVVALGDSITAGVGDAVTPEAVHGPGWAAHLATLTGASRFENLARNGARAQTIVAEQLDAALAADADVATLVVGGNDALRTDFSPVDVGRHLSRCTRTLRARGAVVVLATLPPVGLFELFPGRVRRVMRARIDAVNAMVRATAARERTGRGPAVALLDVGEAVRRAGPGAWFVDRVHPSPLGHRHVAAGGVRAVAAALPGLPGPSAVRSAPPDTSTGALLARLPAPPPPPSAWQRAAWLTLAGVPWAVRRGHDFLPGLVRAVLDDVRGGVGPLDLDLTELSDLADLRAPDPAAPDALLPGRNANANANANA
AK018_01398630hypothetical proteinATGACCAGGATCGTCGGAGACATCTCGATCTCGGTCGACGGGCTCGTCACCGGTCCGGACCCGGGGCCCGAGAACGGCCTCGGGGACGGCGGCGAGGCGCTACACGCCTGGGCGTTCGGCGACGATCCCGTCGACCGCGAGGTGCTGCGCGCCGGGACGGCGGCCAGCGGTGCCGTGGTCCTGGGGCGGCGGCTGTTCGACGTCGTCGACGGCCCGCAGGGCTGGACGGAGGAGCTCGGGTACGGGGCGCGCGAGGCCGCCACGCCGGCCTTCTTCGTCGTGACCCACGAGCCACCGGTCTCCCCGCGGTTGCCCTTCTGGCGGTTCGTCACGACCGGGCTGGCCGACGCCGTCACGCAGGCGTCCGACGTCGCGCGGGACGTCGCACAGGCCGGTGGCGGCGCCGACGTGGTGCTCATGGGCGGCGGAGCCACGATCGGGTCGGCCCTGGAGGCCGGGCTGCTGGACGTGCTGCAGCTGCACGTCTCGCCCGTCGTCCTCGGCGCGGGCACCCCGTTGTTCACGGGACGACGTCGGCACGGGCTCGTCCAGCGCGAGGTACAGGTGTCGTCGACGGCGGTGCACCTGGTCTACGACGTCCACCACCCATCGAGCAGAGGAGACTCATGAMTRIVGDISISVDGLVTGPDPGPENGLGDGGEALHAWAFGDDPVDREVLRAGTAASGAVVLGRRLFDVVDGPQGWTEELGYGAREAATPAFFVVTHEPPVSPRLPFWRFVTTGLADAVTQASDVARDVAQAGGGADVVLMGGGATIGSALEAGLLDVLQLHVSPVVLGAGTPLFTGRRRHGLVQREVQVSSTAVHLVYDVHHPSSRGDSNANANANANA
AK018_01399291hypothetical proteinATGACGGCCGAACCCACAGCGATCGACCATGCCTTCACCGCGCCCATCGGTGTCGACGTCCGGGGCGACGTCTGGCCGTGCGTCGAGCTCGCGGGGGCGACCGAGCTGCTCGGCACCGGTCGGTCCGTCCGCGTCGACGGCACGGTGGACGGCGTCGCCGTCGAGAACGTCGGACTGATGCCGACGGGGCGGGGCGAGCTGATGCTGTCCCTCAACGCGAAGCTGCGCAGACGCCTCGGCAAGGATGTCGGCGACACCGTGACGGTCCGGCTGACGCGGCGTCGGAGCTGAMTAEPTAIDHAFTAPIGVDVRGDVWPCVELAGATELLGTGRSVRVDGTVDGVAVENVGLMPTGRGELMLSLNAKLRRRLGKDVGDTVTVRLTRRRSNANANANANA
AK018_01400666hypothetical proteinATGGGTGGTCTGCTCGCGGTCTCGGACGCGGCCGAACGACTGAGCGTCTCGATCCGACAGGTGCAGCACCTCGTCGCCCGCGGCGAGCTGCGCAAGATAGCCCGCGGCCTGGTCGACGAGACGTCGGTCGACAGGTACATGGCGGTCCGGTCCGGGGCCCACACCCGAGCCTGGTCCAGCGGGACCGCATGGGCCGCTGTCTCGCTGCTGTCCGGTCGGGGATCGGGCTGGATCGGGGCCAGTCAGCGGTCCCGCCTCAGGCAACAACTCCGGCGCAGCTCGCCGGAGGCGCTTGTCGTCAGGACACGTGACCGCGCCGCGGTGACGCGCTACCGGGCCCATCCGAGCGTCGCCCGGCATCTGAGCGACGCCGTCGTTCACCATCAAGAGGCGGAGCAGAGTCTCGGGCTGACGGCTTCGACAGCGCTGGACGGGTACGTCGCCGAGGCCGACCTCGGAGGCCTCGTGTCGCAGTACGGGCTGGATCGGGACGACGACGGCAACGTCGTGCTCCGTGCGACGACGATGGACCTCGGCGTCGTGCATGAGCTCGCCGAGGGGGACGTGGTGCTGGCGGCACTCGATCTTGCCGAGTCGCTCGACGTCCGAGAACGCCGCGCAGGGCAGCAGGCGTTGGGGCGTGCGCTGGAGCGGTTCCGTGGCTGAMGGLLAVSDAAERLSVSIRQVQHLVARGELRKIARGLVDETSVDRYMAVRSGAHTRAWSSGTAWAAVSLLSGRGSGWIGASQRSRLRQQLRRSSPEALVVRTRDRAAVTRYRAHPSVARHLSDAVVHHQEAEQSLGLTASTALDGYVAEADLGGLVSQYGLDRDDDGNVVLRATTMDLGVVHELAEGDVVLAALDLAESLDVRERRAGQQALGRALERFRGNANANANANA
AK018_01401765hypothetical proteinGTGTACTTGGCGTACCTCGACGAGAGCGGACACACCGGGCGACACCTGGACCCTGATCACCCGACGCACTGGATCGGTTGCGTCCTGGTGCCCGAGGAGAACGCGCTCGCTCTGGCGGCACGGCTCGACGCGATCGTCGCGGCACACGTCCCGGAGGACCCGGACCGTGAGCTTCACGGTTACGAACTCTTCGGCTGCAAGAAGCGCTGGTCCAAGACCCCGATCGATGTCGCGAAGGCCGCCTATGCCGACAGCCTCTCCGTGCTCGCGGAGTTCGACTGCGCCGTCGCTCATGCGTCCATCGACAAGGCCGCCCTTGCTCAGCGCGCCGACCCGCCGGCGCCGCACTTCGCGGCGCTGACGTTCCTCATCGAGAAGATCGACGTCTACCTCTGCAGCCAGTCGGATCCGCTTCGCCAGCGTGCGCTGCTCGTCGCCGACGAGACCAACGAGCACGAGGCCTTCGCGATCTCCATGGTGCAGTCGATGCAGCGAGGCCTGGGTGGGGTGTACGCCAGCCGCCATGTGCAGCGCATCGTCGACACCGTGCACTTCGTCCGATCCGAGTGCAATCGAGGCGTCCAGCTTGCCGATCTCGTGACCTTCGCCCTCGCACGACTCGCACGACGGAGGGGGCGCGAGAACCGTGGCGACCTGGCTCTCCGAGAGATGGTCGCACAGCACTTCAGCCCTCAGGTCCGGACGTACCGAATGACCTGGCCAACCGCAAAGCGGCCCGCTCAAGGAGCGGGCCGCGCAGACTGAMYLAYLDESGHTGRHLDPDHPTHWIGCVLVPEENALALAARLDAIVAAHVPEDPDRELHGYELFGCKKRWSKTPIDVAKAAYADSLSVLAEFDCAVAHASIDKAALAQRADPPAPHFAALTFLIEKIDVYLCSQSDPLRQRALLVADETNEHEAFAISMVQSMQRGLGGVYASRHVQRIVDTVHFVRSECNRGVQLADLVTFALARLARRRGRENRGDLALREMVAQHFSPQVRTYRMTWPTAKRPAQGAGRADNANANANANA
AK018_01402978ccpA_4COG1609Catabolite control protein AGTGCCCGCCGCTCGCCGTCCCCGCCCCACCCTGCTCGACGTCGCCGCCGCGGCCGGGGTGTCCAAGTCGCTCGTGTCCCTCGCGATGCGCGGCGATTCCGGCGTCTCGGAGCGGACGCGCGAACGCATCCTTGCCGTCGCCGACCAGGTCGGCTACCGCCCCTCGCTCAGCGCGCGCACCCTCAAGCAGGGTCGCTCCATGCTGGTCGGCGTGGTCATCTCCAGCCTCGCCAACCCGTACCACACGGAGATCGTCGCCTCCGTCGAGGACGCCGCCGAGGCGCAGGGGCTCTCGGTGGTGCTCGCCCACGGGTCGCGCGAACGACACCGGCTCGCCGACCGCGTCCAGCAGCTCGGGGACCTCGGCGTCGACGGGCTCGTCGTCGTCTCCTCCTGGGTGCCGGCCGAGGTGCTCACCACCGCCGCGCGCCGGGCCCCCGTGGTCATGGTCGGGCGCACGGCCGAACCCGTGCCCGGCATCGACTCGGTGAACAACGACGACGAGCACGGCGCCGCGCTCGTCGTCCGGCACCTCGCCGCGCAGGGCCACGAGCGGATCGCCCACGTCAACGGCTCGCGGCGACCGGCCGGGGTGGCTCGACGCCGCGGCTACGAGGACGCGATGGCCGCCGCCGGGCTCGATAGTCACGTCCGGACCGTCGAGCCCGACGGCGTCGCGGAGCTCCTGGCCGGCCCAGGGCGACCCACCGCCGTCTTCGCCCGCAACGACGTCGAGGCGTGCGACGTGCTCGACCACGCGCTCGACGCCGGGCTCGCCGTGCCCGCCGACCTCGCCGTCGTCGGCTACGACGACACGATGCTGGCCCGCCGTGCGCGGCCCCGTCTCACCACGGTGCAGCAGCAGCGCGAGGTCATGGGGACCCGGGCGGTCGAGCTGCTCACGGGTCGGCTCGGCGGACGCGCCGACGACGTGCACGAGGTGCTCGAACCGCGGCTCGTGGAGCGCGCGTCCGGCTGAMPAARRPRPTLLDVAAAAGVSKSLVSLAMRGDSGVSERTRERILAVADQVGYRPSLSARTLKQGRSMLVGVVISSLANPYHTEIVASVEDAAEAQGLSVVLAHGSRERHRLADRVQQLGDLGVDGLVVVSSWVPAEVLTTAARRAPVVMVGRTAEPVPGIDSVNNDDEHGAALVVRHLAAQGHERIAHVNGSRRPAGVARRRGYEDAMAAAGLDSHVRTVEPDGVAELLAGPGRPTAVFARNDVEACDVLDHALDAGLAVPADLAVVGYDDTMLARRARPRLTTVQQQREVMGTRAVELLTGRLGGRADDVHEVLEPRLVERASGPGPT0014791_439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_014031719gph_4Phosphoglycolate phosphataseGTGACGATCGCCCCGAGCCCCAGCGCACCAGCACCCCGTACCGCCGACGGCGGCACCACCGCCCTGCGGACACGGCCCGCCGCGCTCCTGCTCGACTTCGGCGGCGTCGTCGTCACCACGCGGCAGCGCCCGGGCGGCCTGGAGCTGATGGCCGACCACGTCGCCGAGGTGCTCGCCCGCGCCGGGCACGAGCGCACCCCGGCCGAGCTCGTCCCGGCCCTGCGCGGCGGCAAGAAGGCCCTCAAGGACTGGAAGAACGCTTCGTCGCGACGCCTCGCCCCGACCGAGCTCGACCACCGCACCATCTGGCGCGAGTTCTACGGCTCCCCGCTGACCGCCGCCGAGCGCGAGGTCCTCGCCGGGTCGGCCGGCGCCCTGCAGGAGACCCTGACCCGCACGCTCACGGACCACCACCTGCGCCCCGGGATCGGCGAGCTGATCGACCTCGCCGCCGCGCTCGACGTCCCGCTCGGCATCGTCTCCAACGCCCACTCCGGCCGCGCGCACCGCGCGATCCTCGCCGAGCACGGCGTCGCCGACGCCTTCGCCGTGCAGGTGTACTCCGACGAGGTCGGCATCCGCAAGCCCCACCCCGGCATGATCGACCTGGCCGCTCGCGCGCTGGGCGCCGAGCCTGCGCGATGCTGGTACGTCGGCGACACCTACGACCGCGACGTCCTGGCAGGCCGGCGTGCCGGCGTCGGCGGCCTCATGCTGACCCGCGACCACCACACCGACCGGGTGCCGTTCCCGGTGGCCGACCGGCCCGACGTCGTCCTCGACGACCCCCGCGGCCTCGTCGACCTGCTGCGCGACGCCGCACCGTCGTCGTCCACGGACGTGCCCGCGGCGGCCGTCCCGGACCGCACCCCGGCCCGGGACCGCGCAGGAGTCAGCGCCCTCCTGCTCGACCACGGCGGCGTCATCGCCACGTCCCGCCCCGACCATGCCGTCCGCCGCGGCTTCGCGGCCGAGCTCGCCACCCGGCTCACCGCCGCCGGCTACCCCACCGGCACCGACGAGGCCCTCGAGGTCCTCACCGCCGCCCGCGCCGCGCACAAGTCGTGGAAGGCCGCGCACGAGGCGGGCACGGCGGCCGACGACGGCACCACCGTCCCCGAGATCGACGCACCGACGTTCTGGGTCGAGCTGGTCGGGCCGCAGCTCGCCCACCACGGCCCCGGCGTCCACCACTGGCTGCGCGCCGAGGCCCACGCCCTCATGGTCGGCTACGCCCGCGCCAAGTCCGTCCCCACCGTCCGGCCCGGCGTGCGCGAGCTGCTCGTCACCGCCCGCGACGCCGGCGTCCCCGTGGCGGCCGTCTCCAACACCGTCTGCGGACGCGCCGTGCGCGAGGAGCTGGTCGAGGCAGGCCTGGACGACCTGATCGGCGCGCACGTCTACTCCGACGAGCTGGGCGTGCGCAAACCCGACCCCACCACCGTGCGCACCGCCCTGACCGCACTCGGCGCCGAGGCCGCGAACGCCGTGTTCGTCGGCGACAAGCCGCAGCGCGACGTCGCCGCGGCCCGCGCCGCCGGCGTCGGGACCACGGTGCTCGTGCGCGGGGGATCCACGGACGACGACGCGCTCGACGCGCTGCCCGTGGGCGGCCCGCACACCCCCGACCACCTGCTCGACACCATGACCGACGTCGCCGCCCTGCTGGGCGCCCGCGTCGACGTCGGGCAGGGAACCCACGCCGGCACCGGCCGGTAGMTIAPSPSAPAPRTADGGTTALRTRPAALLLDFGGVVVTTRQRPGGLELMADHVAEVLARAGHERTPAELVPALRGGKKALKDWKNASSRRLAPTELDHRTIWREFYGSPLTAAEREVLAGSAGALQETLTRTLTDHHLRPGIGELIDLAAALDVPLGIVSNAHSGRAHRAILAEHGVADAFAVQVYSDEVGIRKPHPGMIDLAARALGAEPARCWYVGDTYDRDVLAGRRAGVGGLMLTRDHHTDRVPFPVADRPDVVLDDPRGLVDLLRDAAPSSSTDVPAAAVPDRTPARDRAGVSALLLDHGGVIATSRPDHAVRRGFAAELATRLTAAGYPTGTDEALEVLTAARAAHKSWKAAHEAGTAADDGTTVPEIDAPTFWVELVGPQLAHHGPGVHHWLRAEAHALMVGYARAKSVPTVRPGVRELLVTARDAGVPVAAVSNTVCGRAVREELVEAGLDDLIGAHVYSDELGVRKPDPTTVRTALTALGAEAANAVFVGDKPQRDVAAARAAGVGTTVLVRGGSTDDDALDALPVGGPHTPDHLLDTMTDVAALLGARVDVGQGTHAGTGRNANANANANA
AK018_01404984hypothetical proteinATGTCCAGCGACGTCACCGCGGCGGGTGCGCCCCGCACCCGGCTCGCCGACCCTCGTCCGTTGTCCGGTTCGCAGAAGCTCATGATCCTCGTGCTGTCCATGACCCTGTACGGCGTGGGCGACATCGTCGCCAGCGTGGTGCCGGAGTTCCAGGTGGGGCCGCTCGAGCTGGGCGTCTCCTACTTCTCCTTCATCGCCGTGGTGCTCGCCGCGCTGCTGAACCCGTTCTGGGTCGCGATCGGCGCACCGCTCGGCGAGCTCGTCTTCTCCGACATGCTGCTCGGCGACTTCTCCGGGTTCGGCGAGCTCGAAGGGTTCCTGCAGACGGCCCTGGCGATCTACGTCGCCGGCTGCCTGGTGCGCAACCCGCTCAACCGGGTCCAGGTCGCCCTGGCGCCGATCGTCATGGTGCTGGTCGACAAGGTCTCCGGCGGCATCGTCGACATCGCCAAGGTCCTCATCGGGATCGACCCCGAGACCCTCGAGGAGGCGGACGGCCTGGTGGGGGCGTTCCTCGTCGCCGAGGGCCTGGACATCGTCGTGACCGTGGTGTTCTCCGGCATCCTGTTCGGCGCCCTGCCGGCGCTGTGGCTGACCCCGCGCCTGTACGGCAAGCTCGAGCCGATCATGGGGCTGCGTCCGCGCGACCCGGAGCACCCGCCGCGCCTGACCGGTCCGAAGGGGACGCGCTTCTGGCCGGTCGCGGTGCTGGCGCTGGTCGCCGCCGCGGCGCTTGCGCTGCTGTCCCAGTGGGAGGAGTTCGTGGGCCGCGAGGGCGGCATCTCCACGATCGGGGCGTTCGAGCCGGACTACGTCGACCAGTACGGCGACGTGTGGCTGTGGATCGCCGCCGTGGTCGCGCTGGTCGTCGGTCTCGGCATCTTCGTGATCGTCGCCGTCGTGCGCCGTCGTCGTGCCGCTGACGCGGCCGACGCCGACGCCACCGCCGGCACGCGTCGCTCGGACGACGAGGCGTCCTTCTGAMSSDVTAAGAPRTRLADPRPLSGSQKLMILVLSMTLYGVGDIVASVVPEFQVGPLELGVSYFSFIAVVLAALLNPFWVAIGAPLGELVFSDMLLGDFSGFGELEGFLQTALAIYVAGCLVRNPLNRVQVALAPIVMVLVDKVSGGIVDIAKVLIGIDPETLEEADGLVGAFLVAEGLDIVVTVVFSGILFGALPALWLTPRLYGKLEPIMGLRPRDPEHPPRLTGPKGTRFWPVAVLALVAAAALALLSQWEEFVGREGGISTIGAFEPDYVDQYGDVWLWIAAVVALVVGLGIFVIVAVVRRRRAADAADADATAGTRRSDDEASFNANANANANA
AK018_014051782ykoD_3COG1122Putative HMP/thiamine import ATP-binding protein YkoDATGCCCGGCCGCGACGGAGCGCCGGCCGTCGAGGTCCGCGACCTGACGTTCCGGTACCCGGGCGCCTCGCAGGACTCCCTGCACGGGGTGGACCTGACGATCGAGGCCGGTGACTTCGTCGCGGTCGTGGGCGGCAACGGGTCCGGCAAGACGACGCTGTGCAAGACGTTCAACGGTCTGGTGCCACACTTCTGGGACGGCGACATCTCCGGGCAGGTCAAGGTCGCCGGGCGGTCCACCGCCCGGCGCACCGTCGGGGAGATCGCGCACGACGTCGGCTACGTGTTCCAGGACTTCGGCAACCAGCTCGTGCGGCCCACCGTGCGCGACGACGTCGCCTTCGGTCCGCTGAACTTCGGGCTCGAGGACTGGGAGGCGCGCACGGACGCGGCGCTGCGCGCCCTGGAGATCGACGACGTCGCCGGCACGCACACCTGGCAGCTCTCGGGCGGCCAGCAGCACCTCACGGCGCTGGCGGGTGCGCTCGCGCTGGCCCCGTCGATCCTCGTCGTGGACGAGCCCGCCGCGGAGGTCGACCCGCGCCGGGCCGCCCAGGTGTACGAGCACCTGACCCGCCTCAACTCGCAGGGCGTCACGGTGGTCGTCATCGAGCACCACGCCGAGCTGATCGCCCGCTACGCCCGCAGCGTCGTGCTGATGGACGCCGGGCGGGTGCGCTGGCACCTCCCGGTCGAGGAGGCCCTCGCCCGCACGGCCGACCTGGCCGACGCCCACATCCCGGCACCCCAGGTGGTGGCGCTGGCCCAGGGTCTGGTCCCGGACGTCGCCGCCGGACGACGGCGCCCGCCGCTGACGGTCGAGGCCTGCGCCGCCCTCCTGCGGGAGGCGGGGCGGTCGGAGCAGCCGGGTGCCGCGCTGCTGCGCACCCCGGACCATCCGGGGGACGACGGTACGCCGGCACCCGACGCGCCGCGCGGGCGTAACGCCCGGTCCGACGTCGTCGCGCGGCTGGACGACGTGCGGTACGGCTACCGCACGATCTCCGGCGGCAAGCACACCGTGCTCGACGGCTTCGACCTGACGCTGCGCGCCGACGAACGCATCGCGCTGGTCGGCTCCAACGGTGCCGGCAAGTCCACGCTGCTCTCGCTGCTGTCCGGACTGGCCGTGCCGGAGACCGGCACCGTCGAGGTGGACGGCCGCGACACGCGGAGCGTCAGCGCGGCCGAGCTCTCCTCCCACGTCTGCTACCTGCTGCAGCGCCCCGAGGAGATGTTCCTGACCGACTCCGTGCGGTCCGACGTCGCCATGCACCCGGTCGGGCGGCACGTCCCGGACGCCGAGGCCCTGGTCGACCAGGTCCTCGACCGCACCCGGCTGACCCACCTGGCCGACCGGGACGGCCGCCTGCTCTCCGGCGGTCAGCAGCGCCGGGCGACGCTCGCCGTCGGGCTGGCGATGCGGCCCCGTCTGCTCCTTCTCGACGAGCCGACGTCGAGCCTGGACCTGCGCTCCCGTGACGACGTCATCGAGATGCTCGCCGCGCTCGCCGACCACATCCGCTGCACCGTGGTGGCCACCCACGACATGCACCTGGTGGCCGAGTGGGCCGACCGCGTCGTCGTGCTCGACCAGGGCCGGGTGGTCGCCGACACCGACCCCGCGACCCTGTTCGACTCCCCCGACGTGCTGCGCCGCGCCCGCCTCGTGTCGCCGCAGGTCACGCAGGTCGGCCACGCGCTGGGCATGAACCCGCTGCCGCTGTCGGTCGACGAGATGAGCCGGCGCCTGGCCCCGCTACCGACCGAGGAGCTCGTATGAMPGRDGAPAVEVRDLTFRYPGASQDSLHGVDLTIEAGDFVAVVGGNGSGKTTLCKTFNGLVPHFWDGDISGQVKVAGRSTARRTVGEIAHDVGYVFQDFGNQLVRPTVRDDVAFGPLNFGLEDWEARTDAALRALEIDDVAGTHTWQLSGGQQHLTALAGALALAPSILVVDEPAAEVDPRRAAQVYEHLTRLNSQGVTVVVIEHHAELIARYARSVVLMDAGRVRWHLPVEEALARTADLADAHIPAPQVVALAQGLVPDVAAGRRRPPLTVEACAALLREAGRSEQPGAALLRTPDHPGDDGTPAPDAPRGRNARSDVVARLDDVRYGYRTISGGKHTVLDGFDLTLRADERIALVGSNGAGKSTLLSLLSGLAVPETGTVEVDGRDTRSVSAAELSSHVCYLLQRPEEMFLTDSVRSDVAMHPVGRHVPDAEALVDQVLDRTRLTHLADRDGRLLSGGQQRRATLAVGLAMRPRLLLLDEPTSSLDLRSRDDVIEMLAALADHIRCTVVATHDMHLVAEWADRVVVLDQGRVVADTDPATLFDSPDVLRRARLVSPQVTQVGHALGMNPLPLSVDEMSRRLAPLPTEELVNANANANANA
AK018_01406876ecfT_2Energy-coupling factor transporter transmembrane protein EcfTATGACCACCGTCGACGTCGCCACGCCGGCCGGCACCACCTCCGGCGCCGGTAGCCCCACGACCCGCAGACGCTCCGGCCTGGACCGGATGTCCGTCGAGTGGGTCAAACTCGAGCTGATGCGCGTCGCGTACGCCACGCGCGGCGGGTTCCTTGCCCGCCGCGACCCGCGGGCGGTGCTCGGCTGGTACGTCCTGTGCGCCCTGGCCCCGTGGTTCACCTACTCCACGCCGATCCTGGTCGCGCTGTTCGTCCTCGCGCTGGGCGGCGCGCTGGCCGCGCGGATCGGCCCGCTGCTGCTGGGGCTGTTCACCCTCGGCCTGGTGGGGCAGGCGGCCTACGTCCTGGTGCTCGTGCTGGTCCTCGGCGGGGACACGACGGCGCTGGACGGTCTGCTGCAGATCTCCCTGAAGCTCGGGGCGGTGTCGCTGGCCAGCATGGCGGCGTTCGTCTCCCTCGACCCGGAAAAGCTGTCCGACGGTCTGCAGGCGATGCGGGCCCCGGCCGTGCTCGGGTTCGCGATCAGCTACGGCTACCGGATGGTGCCGCTGCTCATCGACGAGTTCCACGACATCGTCGACGGCCACCGGCTGCGCGGCGCCCCGCACCGGGGGCACGGGTTCCTCGGCTGGCGCACGATCGCGCGGATCGGCCGGATCGCGGTGCAGGCGTTCTACCCGCTGTTCCTCAACACCGCCCAGCGCACCCGGACCACGGTGGAGGCCATGGAGACCCGCGGGTTCACGAGCGCCGGTCCGTCGGCCGCGGGGCGGCGCCTCCGGCTGGCGCACCTGCGCTGGAGCGTCGGCGACACGCTGCTGATCGTCGCGACGGCGGCGACGATCGCCGCGGTGTACGCGTTCCTCCCGACGTCCTGAMTTVDVATPAGTTSGAGSPTTRRRSGLDRMSVEWVKLELMRVAYATRGGFLARRDPRAVLGWYVLCALAPWFTYSTPILVALFVLALGGALAARIGPLLLGLFTLGLVGQAAYVLVLVLVLGGDTTALDGLLQISLKLGAVSLASMAAFVSLDPEKLSDGLQAMRAPAVLGFAISYGYRMVPLLIDEFHDIVDGHRLRGAPHRGHGFLGWRTIARIGRIAVQAFYPLFLNTAQRTRTTVEAMETRGFTSAGPSAAGRRLRLAHLRWSVGDTLLIVATAATIAAVYAFLPTSPGPT0004015_799DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0004015-fmnA|ecfT-K16785NANA
AK018_014072658hypothetical proteinATGAGATTCCAGCGCACGATCGCCGGCCTGAGCGGCGTGGCCGTCGCCACCACCTGCCTGGTCGGCGGTGCCACCGCCGCGACCGCCGACCCGACGGACGCACCCGGTCGCGACGACGGCCGCGGAGCGGAACGCGACCGCGCCTCGACGACGCCGTTCGGCGGGCAGTCCTTCGGCGACCTGGTCAGGGCCGCCAAGCAGGCGCTGCCCGATCGGGCGCAGGACGGCGGCATCGACATGCCGTCGTCGTACCCGTACCAGCCCGAGCTCACGGTGCCCGACCCGGCCGAGGACGACGCGACCGACCGCAACGAGACGATCTCCTACTCCGAGATCGCACCACGGCTCAACGAGCTGATGGCCACCAGCGACCGCGTCTCGGCCCAGGTCGTCGGGCAGTCGACCGGCGGGCGCGATCTCTACCTGGTGACGCTGACGGCTCCGGAGTCGCGCGGCGAGACCACCCGGCAGACCCGGTGGCGCGAGCAGATCCGGCAGGACCCGGAGCGTGCCGCCCGGGACGCCCGGCTGGCCTCGGGCTACAAGACGCCCCTGTGGTTCAGCGCCAACATCCACGGCAACGAGTGGGAGGGCACGGACGCGGCGATGCAGCTCGTCACCGAGCTCGCGACGGCCGACGACGCCGCCACCCGGGACCTGCTGGAGAAGCACCGGGTCTACTTCTCGGTCAGCCTCAACCCCGACGGTCGCACGCTCGGCACCCGCGCCACCGAGCTCGGGCTCGACGCCAACCGCGACATGGTCACGGGGGCGACCCCGGAGGCCCGGTCGTTCGTCGCGTCGGCCCAGGCGTTGCAGCCGCTCTACGCGGCGGACTTCCACGGGTACACGGGCGTGCTGCAGGTCGAGCCGTGCGGGCCGCCGCACGGTGACAACTACGAGTACGACCTGTTCCTCCCGCACGGGTACGCGCTGGCCCGGCAGGTCGAGGACGACGTCGTCGCCGCCGACATCGCGGGCAACACGTACTACGACACCGAGACAGGCCGGGCGACCACCGAGAAGACGGGTCACATCAAGATCCCCTACCGGGACACACCCTCCGGGTGGGACGACTACCCGCCGATCTTCACCGCGCAGTACGCGGCCTTCCACGGTGCCGTCACCAGCACGGTCGAGCTGCCGCTCGGCCGCGACCGGAACCTGGGGACCACCACCCCCGAGGACGCCGTGATCAACACCGAGGTCGCCCACACCACGATGGTGTCCATGCTCGACTACGTCGTCGAGCACAGCGACGAGATGCTCGCCGACCAGATCGAGACGTTCCGCCGCGGCGTGGCGGGCGACCCGAAGCAGCAGCTCACCGAGGAGACGGTGGCGGACGTGGCCGGCCCCGACGAGTGGAAGGACCTGTGGGACGTCACCGACGACCAGGAGCCGGTCGAGCTGCCGCGGGCGTACGTGATCCCGGTGGGTGACGGGCAGCGTTCGTCGTCGGACGCCGAGGCGCTCGTCGACCAGCTGCTCTACCACGGCGTCGAGGTCCAGCGGCTGTGGAAGCGGACCACGATCGACGGCGTCACCTACCCGGTCGGTTCGTTCGTCGTGGACATGCACCAGCCGCGCCGAGGCCTGGCCAACGTGCTGCTGGCCACCGGCTCGGACATCTCCGACAAGCTGCCGACCATGTACGACATCTCGGCGTGGAGCCTGGCCGACCTGTGGGGCGCCACGGTCGACCCCGTCGGTTCGACGACGGACCGGTCGCTGCGTTTCACCGCCGACCTGCGCTTCGTGCCGCAGGACGGCTACCTGCCGTGGCGGGCCGACCACGTCGCCTTCGACCTGGCGGGTGTCGAGGACTTCCGAGCCCTCAACGCGTTGCTGGAGGCCGACGCGCCGGTCTGGCTGCTGGACGACGGGCGTGCCGCCGTCGGACCGGCGGGTATCGACGCCGCGGCCGACGTCGTGCGCAGCCACGACATCCGCTTCGAACGGCTGGACCGTCGTGAGGTGCGCGCTCTCGACGACGCGGCCGAGCTGGACGACCTGACCGTCGCCTACACCGGGGGGTCGGACGACGTGCTTGCGCTCACCGAGCTCGGGTTCGACGACCTGGTGGCCGTGTCGTCCTCCGGGGTCTCGGCCGGCGCGGCCGACGGGACCACCGGTCTGGAGGACGCGGACGTGCTGTGGGTCGGGTCGACGTTCGACCCCGACGCGGCGGGCGACGCCGCCGTGCAGGAGTGGCTGGACGACGGCGGCGCGATCGTGGGCGAGTCGACCGCCGGGTTCGCCGCCGCCGAGGCCTACGGCCTGGTCGAGGGCGACGCCGTGCGCGGGAACTCGCGCGGCAACGGGATCGTGGCCGTGGACACGCCGAGCGACTCGCTCCTCGGGGCGTTCCCGCAGTCCACGTCGTTCATCTACCCTGCGGTCTGGTTCACCGACCTCGGTGACGGCACCACGGTCGAGCTGTCGTACGCCGCGGAGCCGTTCCTCGCCGGTCACTGGAACGCCCTCTACGGTGCCGGTCCGGACGCGGCTGCCGGCCAGGCCGCCGTCGTCTCCGGGGAGACCGCCACGGGTGCCCGAGCGGTGGTGTTCGGCACGACGCCGTTCTTCCGCACCCACCCCAAGGGCGGGATGAGCCAGGTCGCGACGGCGATGTTCTGGGCCACGTCCGGCGACTGAMRFQRTIAGLSGVAVATTCLVGGATAATADPTDAPGRDDGRGAERDRASTTPFGGQSFGDLVRAAKQALPDRAQDGGIDMPSSYPYQPELTVPDPAEDDATDRNETISYSEIAPRLNELMATSDRVSAQVVGQSTGGRDLYLVTLTAPESRGETTRQTRWREQIRQDPERAARDARLASGYKTPLWFSANIHGNEWEGTDAAMQLVTELATADDAATRDLLEKHRVYFSVSLNPDGRTLGTRATELGLDANRDMVTGATPEARSFVASAQALQPLYAADFHGYTGVLQVEPCGPPHGDNYEYDLFLPHGYALARQVEDDVVAADIAGNTYYDTETGRATTEKTGHIKIPYRDTPSGWDDYPPIFTAQYAAFHGAVTSTVELPLGRDRNLGTTTPEDAVINTEVAHTTMVSMLDYVVEHSDEMLADQIETFRRGVAGDPKQQLTEETVADVAGPDEWKDLWDVTDDQEPVELPRAYVIPVGDGQRSSSDAEALVDQLLYHGVEVQRLWKRTTIDGVTYPVGSFVVDMHQPRRGLANVLLATGSDISDKLPTMYDISAWSLADLWGATVDPVGSTTDRSLRFTADLRFVPQDGYLPWRADHVAFDLAGVEDFRALNALLEADAPVWLLDDGRAAVGPAGIDAAADVVRSHDIRFERLDRREVRALDDAAELDDLTVAYTGGSDDVLALTELGFDDLVAVSSSGVSAGAADGTTGLEDADVLWVGSTFDPDAAGDAAVQEWLDDGGAIVGESTAGFAAAEAYGLVEGDAVRGNSRGNGIVAVDTPSDSLLGAFPQSTSFIYPAVWFTDLGDGTTVELSYAAEPFLAGHWNALYGAGPDAAAGQAAVVSGETATGARAVVFGTTPFFRTHPKGGMSQVATAMFWATSGDNANANANANA
AK018_014082292hppA_2COG3808K(+)-insensitive pyrophosphate-energized proton pumpATGCTCGAACTCGGGTCGGACAGCGTGACGATCGTCGCGGTCATCGGAGTCGTCGCCCTGGCGGCCCTGGTCTGCGCGGCGACCCTGCGGCGCCAGGTGCTCGCCGCCGGGGACGGGACCGCGGCGATGCAGGACATCGCCCGCGGCGTGCAGGAGGGGGCCTCCGCCTACCTCAACCGACAGTTCCGGACGCTCGCGCTGTTCGCGATCGTCGTGTTCGCGCTGCTGTTCCTGCTACCGGGCGACGGCGGCATCCGCATCGGCCGCTCCGTGGCGTTCCTGGTCGGTGCGGGCTTCTCCGCCGCGATCGGCTACCTCGGCATGTGGCTGGCCGTGCGGGCCAACGTGCGGGTCGCGGCGGCGGCCACCCGGCCGGACGGGCGGGCCGCAGGTGCCCGGATCGCGTTCCGCACCGGCGGCGTCGTCGGGATGTCCGTCGTCGGGCTCGGCCTGCTCGGGGCGTCGGTGGTGGTGCTCGTCTACCGCACGGACGCACCCGCCGTGCTGGAGGGCTTCGGGTTCGGAGCAGCCCTGCTGGCGATGTTCATGCGCGTCGGCGGCGGCATCTTCACCAAGGCGGCCGACGTCGGGGCGGACCTGGTCGGCAAGGTCGAGCAGGGCATCCCCGAGGACGACCCCCGCAACGCCGCCACCATCGCCGACAACGTCGGGGACAACGTCGGCGACTGCGCCGGCATGGCCGCCGACCTCTTCGAGTCCTACGCCGTCACCCTCGTGGCCGCGCTCATCCTCGGCCGCGCGGTCATGGGCGAGGAAGGCCTGGTCTTCCCCCTGATCGTCACCGCCATCGGCGCGTTCGTCGCCCTGCTCGGCGTGGCCATCACCAAGGTGCGCGGCAGCGAGTCGGGGCTGACGGCGATCAACCGCGGCTTCTACATCTCCGCCGTCGTCGGCGCGCTGCTCGCCGCGATCGCCGCCTTCGCCTACCTGCCGGGCTCCTTCGCCGAGATGGCCGGGACCGCGGACCTCGGCGACGTCTCCAGCGACCCCCGGGTCGTGGCCTCGCTGGCGGTGCTGGTCGGCATCGTGCTCGCCGGCGTCATCCTGTGGCTCACCGGCTACTTCACCGGCACCGACTCCAAGCCCACCAAGCACGTGGCCGCGACCTCCAGGACCGGGGCCGCCACGGTCGTGCTCTCCGGCATCGGCGTCGGGTTCGAGTCCGCCGTCTACACCGCGGGCGTCATCGCCGCCGCGATCTGCGGCGTCTTCCTGCTCGCCGGGGGCTCCCTGTGGTTGTCGCTGTTCCTCGTGGCGCTCGCGGGCTGCGGCCTGCTCACCACGGTCGGCGTCATCGTGGCCATGGACACCTTCGGGCCCGTCAGCGACAACGCGCAGGGCATCTACGAGATGTCCCAGGGCGAGGACGGCGGCGACGACGAGGCCGCGCAGACCCTCACCGACCTGGACGCCGTCGGCAACACCACCAAGGCGATCACCAAGGGCATCGCCATCGCGACGGCCGTGCTGGCCGCCACCGCGCTGTTCGGGTCGTACGCCGACGCCGTCGAGACGGCGCTGGCCGACGTCGCCGAGGTCGGCACCGGTCTGGTCGGGGCAATGCTCAGCTACGAGATCGTCTCCCCGATCACCCTGGTGGGCGTGGTCCTCGGTGCCGCGACGGTGTTCCTGTTCTCCGGCCTGGCGATCGACGCCGTCACGCGGGCCGCCGGCGCCATCGTCTACGAGGTGCGCCGCCAGTTCCGCGAGAAGCCGGGCATCATGACCTACGAGGAGCGCCCGGAGTACGGCCGGGTCGTGGACATCTGCACCAAGGACTCGCTGCGCGAGCTCGCCACCCCCGGTCTTCTGGCGGCGTTCGCGCCGATCGCCGTCGGGTTCGGCCTCGGGGTCGGGCCGCTGGCCGGGTTCCTGGCCGGGACCATCGGTGCCGGCGTGCTCATGGCGATCTTCCTCGCCAACTCCGGCGGCGCCTGGGACAACGCGAAGAAGATCGTCGAGGACGGCGCGTTCGGCGGCAAGGGGTCCGAGGCGCACGAGGCGACGATCATCGGCGACACCGTCGGCGACCCGTTCAAGGACACCGCCGGCCCCGCGATCAACCCGCTGATCAAGGTGATGAACCTCGTCTCGCTGCTGATCGCCCCCGCCGTGGTCATGATGAGCGTGCCGGCCGACGCCAACCACGTGCTGCGGATCGCCATCGCGCTCGTCGCCGCGGCCATCGCGATGGGCGCCGTCGTCTGGTCGCGGCTGCGGGCCGCCCGCGTCGACGAGGGGTCCCCCGCGGAGTCGGTACCGGTGCGCTGAMLELGSDSVTIVAVIGVVALAALVCAATLRRQVLAAGDGTAAMQDIARGVQEGASAYLNRQFRTLALFAIVVFALLFLLPGDGGIRIGRSVAFLVGAGFSAAIGYLGMWLAVRANVRVAAAATRPDGRAAGARIAFRTGGVVGMSVVGLGLLGASVVVLVYRTDAPAVLEGFGFGAALLAMFMRVGGGIFTKAADVGADLVGKVEQGIPEDDPRNAATIADNVGDNVGDCAGMAADLFESYAVTLVAALILGRAVMGEEGLVFPLIVTAIGAFVALLGVAITKVRGSESGLTAINRGFYISAVVGALLAAIAAFAYLPGSFAEMAGTADLGDVSSDPRVVASLAVLVGIVLAGVILWLTGYFTGTDSKPTKHVAATSRTGAATVVLSGIGVGFESAVYTAGVIAAAICGVFLLAGGSLWLSLFLVALAGCGLLTTVGVIVAMDTFGPVSDNAQGIYEMSQGEDGGDDEAAQTLTDLDAVGNTTKAITKGIAIATAVLAATALFGSYADAVETALADVAEVGTGLVGAMLSYEIVSPITLVGVVLGAATVFLFSGLAIDAVTRAAGAIVYEVRRQFREKPGIMTYEERPEYGRVVDICTKDSLRELATPGLLAAFAPIAVGFGLGVGPLAGFLAGTIGAGVLMAIFLANSGGAWDNAKKIVEDGAFGGKGSEAHEATIIGDTVGDPFKDTAGPAINPLIKVMNLVSLLIAPAVVMMSVPADANHVLRIAIALVAAAIAMGAVVWSRLRAARVDEGSPAESVPVRNANANANANA
AK018_014091731cstACOG1966Peptide transporter CstAGTGAACTCCCTGGTGCTGATGGTGGTGGGCCTGGCGATGGTGCTCGCCGGATACTTCCTGTACTCGCGGTTCCTCGCCAGCCGGATCTACAAGCTCGACGAGAACTTCCGGACCCCCTCGCACGAGATGCGCGACGGCGTCGACTACGTCCCCACGAACAAGTTCGTCCTGTGGGGGCACCACTTCACCTCCGTGGCGGGCGCCGCACCGATCGTCGGCCCGGCCGTCGCGGTGATCTGGGGCTGGCTGCCGGCCTTCCTGTGGGTGACGCTCGGCACCGTGTTCTTCGCGGGCATGCACGACCTGGGCGCCCTGTGGGCGTCGGTGCGCAACCGGGGCCGGTCGATGGGCATGATCTCGGGCCGCTACATCGGTGCCCGCGGCCGCGCGCTGTTCCTCGTCGTGATCTACCTGGTGCTGCTGATGGTCGTGGCCGCGTTCGCCACGGTCATCAAGAACCTGCTCATCTCCACCCCGAGCGCCGTCATCCCGGTGTGGGGCGCCATCATCGTCGCGCTGATCATCGGCCAGATGATCTACCGCTGGAACATGAACCTGCTGCTGACCACGGTGATCGGCGTCGTCGCCCTGTACTCGCTGATCCTCGTGGGCGACCGGTTCCCCGTCGAGCTGCCGGACCCGATCCTCGGCATGTCACCGGCGACCTTCTGGATCCTCGCGCTGTTCGCCTACGCGGGCATCGCCTCCCTGCTGCCCGTGTGGGTGCTGCTGCAGCCGCGCGACTACATCAACGGCGTCCAGCTGTTCATCGGCCTGGGCATCCTGTACCTGTCGGTGCTCTTCGCGGCTCCGACCGTCGTCGCCCCGGCGATCAACGAGAACCTGCCCGCCGACACGCCCAGCCTCGTGCCGCTGCTCTTCGTGACCATCGCCTGCGGCGCTATCTCCGGGTTCCACGGCATCGTGGCGTCCGGGACCTCCTCCAAGCAGCTCGACAAGGAGACCGACGCACGGTTCGTCGGCTACTTCGGGGCCGTGGGCGAGGGTCTGCTGGCCCTCGGCGCGATCATCGCCACCACCGCGGGCTTCCGGACCCTGGTCGACTGGGAGAGCGTCTACTCGGCGTTCAACGAGGGCGGGGTGACGGCCTTCGTCACCGGTGGCGCGCAGATCGTCAACGACGGTCTCGGCATCCCGGCGTCGCTGTCCGCGACGATCCTCGCCACGATGGCGGTGCTGTTCGCGGCCACCACCATGGACACCGGGGTGCGTCTGCAACGGTTCGTGGTCCAGGAGGCCGGCGAGCTGATGGGGATGCGGATCGGCAAGGGTGTCGCGATGGTGGTGGTGCTCGTCGTGGCCGTCGGCCTGACCTTCTCCGCCGGCGGCGACGGCGCGGGCGGCCTGCTCATCTGGCCGCTGTTCGGCACCAGCAACCAGCTGCTCGCCTCCCTGACGCTGTCCATCGTGGCGGTCATGCTGCTGCGCCGGAAGCGCAACCCGCTGGCGGCGCTCGTCCCGCTGGTGTTCGTGCTGAGCATGAGCGTCTACGCGCTGATCGTCCAGCTCGGACAGTTCTACGCCGACCAGAACTGGTTCCTCCTCGGCCTGGACGTCGTCATCCTCGTCGCCTCCGCCTGGGTCGCCGTGGAGGCCGCCCGCGCCATGAACGCCGCCCGCAAGGGCACCTTCGACCCGGAGACGGACGAGCCGGTGCCCGCGGGCAGCGTGGGCTCCGGCGCCTCCGGCGCCCGCCGGTCGGAGGACTGAMNSLVLMVVGLAMVLAGYFLYSRFLASRIYKLDENFRTPSHEMRDGVDYVPTNKFVLWGHHFTSVAGAAPIVGPAVAVIWGWLPAFLWVTLGTVFFAGMHDLGALWASVRNRGRSMGMISGRYIGARGRALFLVVIYLVLLMVVAAFATVIKNLLISTPSAVIPVWGAIIVALIIGQMIYRWNMNLLLTTVIGVVALYSLILVGDRFPVELPDPILGMSPATFWILALFAYAGIASLLPVWVLLQPRDYINGVQLFIGLGILYLSVLFAAPTVVAPAINENLPADTPSLVPLLFVTIACGAISGFHGIVASGTSSKQLDKETDARFVGYFGAVGEGLLALGAIIATTAGFRTLVDWESVYSAFNEGGVTAFVTGGAQIVNDGLGIPASLSATILATMAVLFAATTMDTGVRLQRFVVQEAGELMGMRIGKGVAMVVVLVVAVGLTFSAGGDGAGGLLIWPLFGTSNQLLASLTLSIVAVMLLRRKRNPLAALVPLVFVLSMSVYALIVQLGQFYADQNWFLLGLDVVILVASAWVAVEAARAMNAARKGTFDPETDEPVPAGSVGSGASGARRSEDPGPT0015060_1744DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015060-cstA-K06200NANA
AK018_01410258hypothetical proteinGTGGCTGGCACCCTGAGCGCCGTCGCCGCCGGGCTGCGCGAGCTCTACGAGGCGCCCTACCGGCGCACGATGGCTCGCGCCCGGCGGGACGAGGACGACCTGTTCACGCTGGTCGTGCTCGCGGAGGCGCTCGGGGTGCCGAACCCCGCCAGCTACTACACGGTCGAGGTGCTGCCGCTGGTGGCCGACCGCGTCCACGAGTGGCACACGCGGCTGGGGATGGACCGCTCCCCCCTGGAGCACGTGTCGTGCTGCTAGMAGTLSAVAAGLRELYEAPYRRTMARARRDEDDLFTLVVLAEALGVPNPASYYTVEVLPLVADRVHEWHTRLGMDRSPLEHVSCCNANANANANA
AK018_01411963arsAArsenical pump-driving ATPaseGTGCTGCTAGACCTCGCCGCGCGGCGCCGGGTGCTGTTCCTCGGCGGCAAGGGCGGGGTCGGCAAGACGTCGATCGCGTCCGCCGTCGCGCTGTCCCGCGCCCGCGCGGGGCAGCGGGTGCTGGTGGTCTCCACCGACCCCGCCCACAACCTGGGGCACCTGTGGCAACACACGGTCGGTGACGACGTCGTGCGCCTGGACACCGCGCCGGGCGGCGGACACCTCGACGGCGTCGAGGTGGACCCGGAGCGCACGACGGCGGCACACCTGTCCGCGGTGCGGGACACGTTGCGCCGGATCGTGCCGGAGCACCTGGGCGGCGAGGTGGACCGGCACCTCGACCTGGCCCGCGACGCGCCGGGAATGCACGAGGCCGCGGTCCTGGAACGGGTCGCCGACCTCACCGAGCAGGGGCTGGCAGGGTATGACCTCGTCGTCTTCGACACCGCGCCGTCCGGGCACACCGCCCGCCTGCTGTCCCTGCCGGAGACGATGGGTGCCTGGACCGACGGGCTGCTGCGCCGCCGCGACCGGTCCGAGCGGCTCGGCGCGGCGGCCCAGATGCTCGGCGGGCGGGGTGAGGCCGAGGCGCGGCGCGACGCCGAGATCCGGTCCGTGCTGACCCGCCGCCGGGAACGCTTCACGCTGCTGCGCGAGGTCCTGACCGACCCCGACCGGTGCGCGTTCGTCGTCGTGCTCGCCGCCGAACGGCTGCCCGTGCTGGAGTCCGTGGAGCTCGTGGAGCAGCTGTCGACGCTGCAGGTGCCCGTCGGCGGACTCGTCGTCAACAAGCGCTCCCCCGCCGACGCCGGCCCCCTGCTCGCCGCACGCCACGAGGCCGAGCGCGCCCACCTCGACACGCTCCGCGAACGGCTGGGCCACCTCCCCCTGGACGAGGTGCCGCTGCTGGGCGACGACCTCGTCGGACCCGACGCCCTCGACCGGCTCGCCGGCTTCCTCTGAMLLDLAARRRVLFLGGKGGVGKTSIASAVALSRARAGQRVLVVSTDPAHNLGHLWQHTVGDDVVRLDTAPGGGHLDGVEVDPERTTAAHLSAVRDTLRRIVPEHLGGEVDRHLDLARDAPGMHEAAVLERVADLTEQGLAGYDLVVFDTAPSGHTARLLSLPETMGAWTDGLLRRRDRSERLGAAAQMLGGRGEAEARRDAEIRSVLTRRRERFTLLREVLTDPDRCAFVVVLAAERLPVLESVELVEQLSTLQVPVGGLVVNKRSPADAGPLLAARHEAERAHLDTLRERLGHLPLDEVPLLGDDLVGPDALDRLAGFLPGPT0004700_1976DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004700-arsA-K01551NANA
AK018_01412984hypothetical proteinATGAGCACCGCAGCCCCCACCGTCACGGCCGCCGCACCGCGCCGACGCACCTCGGCACCGGCCGCGGCGACGGTCGCCCTCGCCGCCGCGCTGTCCTGGGCGCTCGCCGGCCCCGCGCCCGCCGCCGGGGCCGTGGAGTGCGCCGCCCCGTGGTCCGCGGACACCGTCTACACCGGTGGCGACGTCGTCTCCCACGACGGGGAGAACTGGCGTGCCGGGTGGTGGACCGTCGGCACGACGCCCGCCGACACCGACTGGGGCGTGTGGACGTCGGTCGGCACGTGCGGCGACGGCGGGACCGATCCGGGCGACGGCGGGACCACCGACCCCGGCGACCCCGGCGAGGGCGACGGCGGGTCCAGCGGTGACTTCGTCGTGTCCGAGGCCCAGTTCGAGCAGATGTTCCCGGACCGGAGCTCCTTCTACACCTACGACGGCCTCGTCGCGGCGCTGTCCGCCTATCCGGGGTTCGCCACGACCGGCGGCGACGAGATCGCCCGGCGGGAGGCCGCCGCGTTCCTGGCCAACGTCGACCACGAGTCGGGCGGGCTGCGGTACGTCCGGGAGATCAACACCGCCAACTACCCGCACTACTGCGACGAGACGCAGCCGTACGGCTGCCCGGCCGGCCAGGACGCCTACTACGGCAAGGGCCCGATCCAGCTCAGCTGGAACTTCAACTACAAGGCGGCCGGTGACGCCCTCGGCCTCGACCTGCTGAACGACCCGTTCCTCGTGGAGAACGACCCAGCCGTCGCCTGGCAGACGGCGCTGTGGTACTGGAACACGCAGTCCGGTCCGGGGACGGTGACGGGGCACGAGGCGATCGTCGACGGTCACGGGTTCGGCGCGTCGATCCGCTCCATCAACGGCGCCCTCGAGTGCGACGGCGGGAACCCCGCCCAGGTGAACAGCCGTGTGGCGGCCTTCCGGGAGTTCACCCAGATCCTCGGCACCACCACCGGCGGCAACCTGACCTGCTGAMSTAAPTVTAAAPRRRTSAPAAATVALAAALSWALAGPAPAAGAVECAAPWSADTVYTGGDVVSHDGENWRAGWWTVGTTPADTDWGVWTSVGTCGDGGTDPGDGGTTDPGDPGEGDGGSSGDFVVSEAQFEQMFPDRSSFYTYDGLVAALSAYPGFATTGGDEIARREAAAFLANVDHESGGLRYVREINTANYPHYCDETQPYGCPAGQDAYYGKGPIQLSWNFNYKAAGDALGLDLLNDPFLVENDPAVAWQTALWYWNTQSGPGTVTGHEAIVDGHGFGASIRSINGALECDGGNPAQVNSRVAAFREFTQILGTTTGGNLTCNANANANANA
AK018_014131320apeB_2COG1362putative M18 family aminopeptidase 2ATGCAGGACTCCCACGCCACCACCGTGCCCGAGGCCGCCCGCACCCACGCCGAGGACCTCGGCCGGTTCGTCAGCGCCGCACCGTCCTCGTACCACGCGGCCGCCGAGCTGGCCCGCCGCGCCGAGACCGCCGGGTTCATCCGCCTGGCCGAGACCGACGCCTGGCAGGTCGCACCCGGCGGTCGCTACGTCGTCGTGCGCGACGGGTCGGCGATCGCGTTCGTGGTGCCGCCGTCCGCCGGTCCGACCACGCCCTTCACCGTGCTGGGCACGCACACCGACTCCCCCGGCTTCAAGCTCAAACCGCAGCCCACCACGGGGCGCGGCGGCTGGGTGCAGGCGGGACTCGAGGTCTACGGCGGGCCGCTGCTGAACTCCTGGCTGGACCGCGAGCTCGAGCTCGCCGGTCGCCTCGTGACGCGCGACGGCGCCGAGCACCTGGTCCGCACCGGTCCGTTCGCGCGCATCCCGCAGCTCGCCATCCACCTGGACCGCCAGGTCAACGACGGCCTCGCCCTCGACAAGCAGCGGCACACCCAGCCCGTCATCGGTCTGGGTGACGTCTCCGGGGCGGACGTCCTGGGCGAGCTCGCCGCCCGCGTCGACCCGGCCGCCGGCGGTCCCGTCGACCCCGCCGACGTGCTGGGTTACGACGTGCTGGTCGCCGACACCCAGGCCCCCCGCGCCTTCGGGGCCCGCGACGAGCTGTGGGCCTCGGGACGCCTGGACAACCTGCTCTCCACGCACGCGGCCCTGGTGGCGCTGCTCGACGCCGACCCCGACGCGCTGACCGGAGTGGCCGCCGTCGCCGCGTTCGACCACGAGGAGATCGGCTCGGAGTCCCGCTCGGGAGCCGCCGGCCCGTTCCTCGCCGACGTGCTCGGACGCGTCTCCCGGGCGCTCGGCGCGGGCGGTGAGGACCGCCGTCGTGCGCTCGCCGCCTCGCTGTGCGTGAGCTCCGACGTCGGGCACGCCGTGCACCCCAACTACCCGGAGCGCCACGACCCGGCCAACCAGCCGCAGGCCGGCGGCGGCCCGATCCTCAAGATCAATGCCAACCAGCGCTACTCCACCGACGCGCACGGCGCCGCGCTGTGGCAGGAGGCGTGCACGGCCGCCGGGGTGCCGAGCCAGGAGTTCGTCTCGAACAACACGATCCCCTGCGGGTCGACGATCGGGCCGATCACCGCGACGCGCCTGGGCATCCGGGTGGTCGACGTCGGCGTGCCGATCCTGTCGATGCACTCGGCGCGCGAGCTCACCGCCGTCGTCGACCCCTGGTACCTGTCCCGGGCGATGGGCGCCGCGCTGGTGCGCTGAMQDSHATTVPEAARTHAEDLGRFVSAAPSSYHAAAELARRAETAGFIRLAETDAWQVAPGGRYVVVRDGSAIAFVVPPSAGPTTPFTVLGTHTDSPGFKLKPQPTTGRGGWVQAGLEVYGGPLLNSWLDRELELAGRLVTRDGAEHLVRTGPFARIPQLAIHLDRQVNDGLALDKQRHTQPVIGLGDVSGADVLGELAARVDPAAGGPVDPADVLGYDVLVADTQAPRAFGARDELWASGRLDNLLSTHAALVALLDADPDALTGVAAVAAFDHEEIGSESRSGAAGPFLADVLGRVSRALGAGGEDRRRALAASLCVSSDVGHAVHPNYPERHDPANQPQAGGGPILKINANQRYSTDAHGAALWQEACTAAGVPSQEFVSNNTIPCGSTIGPITATRLGIRVVDVGVPILSMHSARELTAVVDPWYLSRAMGAALVRNANANANANA
AK018_01414801hypothetical proteinATGCCCACACTCCTGCCGCGGCGCGTCGCCGCCACCGTCGCGACCGTTGCCGCCGCGGCCCTCGTCCCGCTGACGGTCGCCCCGGCGTCGGCGAACCCTGTTCCCGCCGCCGCGGCACCCACGGTGTCCACCGCCGTCGGACCGGTGCAGACCGCCCCCGCCCAGCGCTCGGTGCGCTGGGTCAAGGCCGACCGCGCCAAGGTCACGGCCAAGCGCAGCCCGTCCAGCCGGCGCGTCGCCCGGCCCGACGACGGCACTCGCCTCGTCGTGCTGGACCGCGCGCCGAAGCGGCTCCAGGTGCGCCTGCCCGGCGGTCGGAAGGGCTGGGTCGCCAAGAAGCAGGTCACGACCGTGCCGCTGCGGGACATCACCGGCAAGCGGTACACGACGAAGCGCGTGCGGGTCACGAAGAACATCAACGCGTCGTCGCGGACCGTCACCCGAGCCGCCCTCGGGACGAAGGTCGTCAAGCTGTCCCGCACCACGCAGCGCCCGACCACCCGGGTCAAGGTCAGGCTGCCCGGCGGCCGCACCGGCTGGGTCTCGGCCGGGCAGCTGACGAAGCGCGACGTCTGGGGTCAGCTCGCGCAGTGCGAGTCCGGGGGTCGGGTGCACATCAGCACCGGCAACGGGTACTACGGCATGTACCAGTTCACCGCGCGCACCTGGCGCTCGGTCGGCGGGCGCGGGCTGCCGCACCGCCACGGCGCGCGGGAGCAGACCAAGCGTGCGCAGATCCTGCAGGCCCGCGCCGGGTGGGGGCAGTGGCCGCACTGCACCCGCAAGCTCGGCCTGCGCTGAMPTLLPRRVAATVATVAAAALVPLTVAPASANPVPAAAAPTVSTAVGPVQTAPAQRSVRWVKADRAKVTAKRSPSSRRVARPDDGTRLVVLDRAPKRLQVRLPGGRKGWVAKKQVTTVPLRDITGKRYTTKRVRVTKNINASSRTVTRAALGTKVVKLSRTTQRPTTRVKVRLPGGRTGWVSAGQLTKRDVWGQLAQCESGGRVHISTGNGYYGMYQFTARTWRSVGGRGLPHRHGAREQTKRAQILQARAGWGQWPHCTRKLGLRNANANANANA
AK018_01415840hypothetical proteinATGAAGAAGACCCTCACCGCCGCGGGTGTCGTCGGCCTCGTCCTGGCCCCCGTCGCCGCATGGGCCGCCGGCTCTGACGACCCCACGCCCTACACGGTGACCGCGAGCGGTCTGCAGCTGCCGGAGTCCGAGACGTTCCACGACAGCGGGCACGTGAACATCCGATACACGCTCGACGGTCAGGAACGCGCCGCGGGGATCCACTTCGAGGCGCTCAACAACCAGCCCTCCGGGGTGTGGATCGGGGAGTCGTACCTGCCGTGGACTGCCCTGGTCGGTGAGACCGACTTCTGCATCACGTGGGTACAGGTCTCCCAGTTCAACGAGCACTTCGGCGAGGGTGGTCAGGACCCGGTGTGCACGACGGCGGAGCCGACCGAGCCTGCGGAGCCGACCGAGCCTGCGGAGCCGACCGAGCCTGCGGAGCCGACGGAGCCGACCGAGCCTGCGGAGCCGACCGAGCCTGCGGAGCCGACGGAGCCGACCGAGCCTGCGGAGCCGACGGGGCCGACCGAGCCTGCCGAGCCGACCGAGCCTGCGGAGCCGACCGAGCCTGCGGAGCCGACCGAGCCTGCCGAGCCGACCGAGCCGACCGAGCCGACCGAGCCGACCGAGCCTGCCGAGCCGACCGAGCCGACCGAGCCGACCGAGCCGACCGAGCCGACCGAGCCGACCGAGCCTGCCGAGCCTGCCGAGCCGACCGAGCCTGCCGCCGAGGTCGTCCCGACGGCGTCATCGACCCTGCCGCAGACCGGCTCCGGGACCGCGGCGCTCGCGCTGACCGCCGCGGCGTCGGCGCTCGCGGGTCTCGTGGTGATGGCAATCCGTCGACGGGTCTGAMKKTLTAAGVVGLVLAPVAAWAAGSDDPTPYTVTASGLQLPESETFHDSGHVNIRYTLDGQERAAGIHFEALNNQPSGVWIGESYLPWTALVGETDFCITWVQVSQFNEHFGEGGQDPVCTTAEPTEPAEPTEPAEPTEPAEPTEPTEPAEPTEPAEPTEPTEPAEPTGPTEPAEPTEPAEPTEPAEPTEPAEPTEPTEPTEPTEPAEPTEPTEPTEPTEPTEPTEPAEPAEPTEPAAEVVPTASSTLPQTGSGTAALALTAAASALAGLVVMAIRRRVNANANANANA
AK018_014162541hypothetical proteinGTGCACCGAGCCGAGCCGACCCCCGCGGACCACCCGCTGCTCGACGTCCTGACCGCCCACGGCGCCCGCGCCGACCGCCTCACGCACGTGCGCACCCTGCCCGCCCGGACCGGGGAGCACTCCGACTGGCCCGCCTGGGCCGACCCCGGGCTCGTCGCCGGCTACCGCGCCCTGGGCGTCGAGAGGCCCTGGCGGCACCAGGTCGAGGCCGCCGACGCCCTGCACCAGGACCGGCACGTGGCGCTGGCGACCTCCACCGGGTCGGGCAAGTCGCTCGGCTTCTGGCTGCCGGCCCTGACCGCCGTCCGCGCAGGACGCGACCTGCACGCGAGCGACGCCGGCCGCATCGAGACCCTCGGACGGCGCAGCACCGTGCTCTACCTGTCCCCCACCAAGGCGCTCGCCGCGGACCAGCACGGTGCGCTGACGCGCCTGCTCGACGCCGCCGGGGCGCGCGACGTGCGTGCCGCCACCTGCGACGGCGACACCCCCGCCGAGGAGCGCCGCTGGATCGTCGAGCACGCGGACGTCGTGCTGACCAACCCCGACTTCCTGCACTTCGCCCTGCTCCCCGTGCACCGCCGGTGGGGACGCCTGCTGCGCGGGCTGCGCCACGTCGTCGTCGACGAGGGGCACGCCTACCGCGGGGTCTTCGGCGCCCACGTCTCCCTGGTGCTGCGTCGCCTCGCGCGGCTGGTGGAGCACCACGGCGGGCGGCCGCCCACGATCGTCGTCGCCAGCGCCACCAGCGCCGACCCTGCGGCGAGCGCCGCACGACTGATCGGCGTGCCCGTCGACCGGGTCACCGCGGTGACCCGGGACTCCTCGCCCTCGGGGCGGCGGACCGTCGCCCTGTGGCAGCCGCCCGAGATCGCCTCGGCGGGCCTGGAGCGCTCCGGTGCGGACGACATCGACCCGGCCGCGGACCCGTGGGCGCTGCCCGACCCTCTGGACCCCACCGCGCACGAGGCCGACCAGGTGCTCACGGTGCGGGGCGCTGCGGACCACCCGCGCCGCTCGGCGACGGCGGAGGTGGCCGACCTGCTGGCCGACCTGGCGACGCACGGGGCCCGCACCCTGGCGTTCACGCGGTCCCGGCGCGGCGCCGAGTCCGTGGCGCAGCAGACGCGCGACCACCTGAGGCCGGTGGACCCTGCGCTGGTCGGGCGGATCGCCGCCTACCGCGGCGGCTACCTGCCCGAGGAGCGCCGCGAGCTGGAGCAGGCGCTGCGCACCGGTGAGCTGCTGGGTCTGGCCACCACCAACGCGCTGGAGCTCGGGGTCGACATCTCGGGACTGGACGCGGTGCTCGTGGCGGGCTGGCCCGGGACGCGGATGTCGCTGTGGCAGCAGGCCGGTCGCGCCGGCCGCGCCGGGGCGGACGGGCTGGTGGCGTTCGTGGCCCGCGAGGACCCCCTGGACACCTACCTGGTGACGCACCCGGAGGCCGTGTTCGACGCGCCGCTGGAGGCGACGGTGTTCGACCCGGCCAACCCGTACGTCCTGGCGCCGCAGCTGTGCGCGGCCGCCCAGGAGGTGGCGCTGCGCGGCGAGGACCTCGACCGGTTCGGCGACCGGGGGCAGGTGCGCGAGGTGCTCGACGTGCTGGTGGCCCGCGGCCTGCTGCGCCGGCGCCCGTCGGGCTGGTACTGGACGCACGCCCAGCCCGCCGCCTCGATGGCGGACCTGCGCGGCTCGGGCGGACAGCCCGTGCGCGTCGTCGAGGCCACCACGGGCCGGCTGCTCGGCACCGTGGACGCCGGGTCCGCCGACGGTCAGGTGCACGACGGCGCCGTGTACGTGCACCAGGGCGTCACGTTCGTCGTCGACCGCCTGGACCTGGCCGACCACGTGGCGCTCGTGGTGCGCCGCGACGTCGACCACGCGACCTGGTCGCGCGAGGTCATGGAGATCGCGCTCGCGGAGGCGGGCGACCCGGCGCACCCCGCGCCGGAGGGCTCGCCGCCCGCCCGCGGGCGGGAGTGGGGTCCGGTGACGTGGGGGCTCGGACCGGTGGAGGTGACCAGCCAGGTCGTGAGCTTCCAGCGTCGCCGCGTGCCCGACATGCAGGTGCTCGACACGGAGCCGCTCGAGCTCCCGGAGCGCACCCTCGGCACCACGGCGGTGTGGTGGTCGGTGCCGGACCACGTGCTGCGGGCGGCCGGTGTCGACGCCGACGCGGCACCGGGGGCGCTGCACGCCGCCGAGCACGCCGCGATCGGCATCCTGCCCCTGCTGGCCACCTGCGACCGGTGGGACCTCGGCGGGGTGTCCACCGACCTGCACCCCGACACCGGGGAGGCGACCGTGTTCGTCTACGACGCCTACCCGGGCGGCGCCGGGTTCGCCGAACGCGGCTACGAGCAGGGCGAGCGGTGGCTGCGCGCCGTGCGGGACGCCGTCGCCGCCTGCCCGTGCCTCGACGGATGCCCCGCCTGCGTCCAGTCGCCGAAGTGCGGCAACGACAACTCCCCGCTCGACAAGGCGGGCGCGGTGCGTGTCCTCGACGCGGTGCTGTCCCACGCACCGGTCGGCCCCTAAMHRAEPTPADHPLLDVLTAHGARADRLTHVRTLPARTGEHSDWPAWADPGLVAGYRALGVERPWRHQVEAADALHQDRHVALATSTGSGKSLGFWLPALTAVRAGRDLHASDAGRIETLGRRSTVLYLSPTKALAADQHGALTRLLDAAGARDVRAATCDGDTPAEERRWIVEHADVVLTNPDFLHFALLPVHRRWGRLLRGLRHVVVDEGHAYRGVFGAHVSLVLRRLARLVEHHGGRPPTIVVASATSADPAASAARLIGVPVDRVTAVTRDSSPSGRRTVALWQPPEIASAGLERSGADDIDPAADPWALPDPLDPTAHEADQVLTVRGAADHPRRSATAEVADLLADLATHGARTLAFTRSRRGAESVAQQTRDHLRPVDPALVGRIAAYRGGYLPEERRELEQALRTGELLGLATTNALELGVDISGLDAVLVAGWPGTRMSLWQQAGRAGRAGADGLVAFVAREDPLDTYLVTHPEAVFDAPLEATVFDPANPYVLAPQLCAAAQEVALRGEDLDRFGDRGQVREVLDVLVARGLLRRRPSGWYWTHAQPAASMADLRGSGGQPVRVVEATTGRLLGTVDAGSADGQVHDGAVYVHQGVTFVVDRLDLADHVALVVRRDVDHATWSREVMEIALAEAGDPAHPAPEGSPPARGREWGPVTWGLGPVEVTSQVVSFQRRRVPDMQVLDTEPLELPERTLGTTAVWWSVPDHVLRAAGVDADAAPGALHAAEHAAIGILPLLATCDRWDLGGVSTDLHPDTGEATVFVYDAYPGGAGFAERGYEQGERWLRAVRDAVAACPCLDGCPACVQSPKCGNDNSPLDKAGAVRVLDAVLSHAPVGPNANANANANA
AK018_01417921hypothetical proteinGTGTCCTCGACGCGGTGCTGTCCCACGCACCGGTCGGCCCCTAAGATCGTGCGGGTGACCGACGACGAGATCACCACCCTGCGCGCCACCCGCGAGTCGACGCGCGTCGCCCCCGCCCACGCGCGGTCCTGGCTGCTGCTGTCGGCCCTGCGCCGCGACGACTTCGACGCCGCCCAGCTCTGCCGCGCCGACCAGCTGGTCCTCGACTGCGAGGACGCCGTCGACGACTCCCGCAAGGACGAGGCACGACGCGGCGTGCTGGACTGGTTCGCCGGCGGCGGGCGCGCCTGGGTCCGCGTCAACGAGCGCGGTTCGGACGCCTGGGGCGACGACATGCGCGCCCTGCGCGACGCCGAGGGCCTGTGCGGGGTGATGCTCGCCAAGACCGAGAGCCCCGACCAGGTGGTCGACACCGTCCAGCGGCTCGGCGGCGACGTGCCCGTGATCCCGTTGGTGGAGTCGGCGCTCGGCATCGAGGAGGCCGTCGGCATCGCCACGGCGCCCGGCGCGTTCCGCCTCGCGTTCGGCTCCGGCGACTACCGGCGGGACACCGGCGCCGCGAACGAGCCCCTCGCGATGGCCTACCCCCGGTCCCGGCTCGTCGTCGCCAGCCGCATCGGCGGGCTTTCCGGGCCGATCGACGGCCCCACGGTCGGTTCCAGCCACCCGCTGCTGCGCGAGCAGTCCGGCGACGCCGTCGCCCTCGGCATGACCGGACGCATCTGCCTCGACCTGGAGCAGCCGGCCGTGGTCAACGAGGTGCTCTCCCCCGCCCCGGCCGACGTCGCGTGGGCCCTGGACTTCCTCGCGGAGTTCGAAGCCGCCGGCTCGGTGATCCGCGACGGCTCCGACAAGCCGCGCCTGGCCCGCGCGCGGCTCATCGAGGAGCGCTCCAAGCTGTACCGCGTCAACCCGAGCTGAMSSTRCCPTHRSAPKIVRVTDDEITTLRATRESTRVAPAHARSWLLLSALRRDDFDAAQLCRADQLVLDCEDAVDDSRKDEARRGVLDWFAGGGRAWVRVNERGSDAWGDDMRALRDAEGLCGVMLAKTESPDQVVDTVQRLGGDVPVIPLVESALGIEEAVGIATAPGAFRLAFGSGDYRRDTGAANEPLAMAYPRSRLVVASRIGGLSGPIDGPTVGSSHPLLREQSGDAVALGMTGRICLDLEQPAVVNEVLSPAPADVAWALDFLAEFEAAGSVIRDGSDKPRLARARLIEERSKLYRVNPSPGPT0019480_2102DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0019480-citE-K01644NANA
AK018_01418414hypothetical proteinGTGAACGGCGGCGACCAGGGATCGGTCCTTCCGACGGCGTCGCCGGCGCTCCCCGGGACGGCGGCGCGCCGTCAGGAGGCCGGTCAGCGAGGTGCCGTCACGGCCGAGCTCGCCGTCGGCATGCCGGTGGTCGTGCTGCTCCTGGTCGCCGTGCTCACGCTCGTGGCCGCGTCCTCCGCCCAGCTGCGGGCGGCGGACGCGGCCCGGGCGGGGGCGCGGCAGGCCGCGATCGGCCACGACGAGACCGCGGTCCGCGCAGCGGTCACGAGGGCCGGCGGCGATCACGCGCGGGTGACCGTCGTCGACGAGGGTGACTGGGTCCGCGTCGTGGTCACCCGGCCGGTGGCCGCCGGGTGGCTCGCGGGGTTGCCCGTGCGCGCCACGGGCGAGGCCGTGGCCTGGGTGGAGCCGTGAMNGGDQGSVLPTASPALPGTAARRQEAGQRGAVTAELAVGMPVVVLLLVAVLTLVAASSAQLRAADAARAGARQAAIGHDETAVRAAVTRAGGDHARVTVVDEGDWVRVVVTRPVAAGWLAGLPVRATGEAVAWVEPNANANANANA
AK018_01419267hypothetical proteinATGACCGACACCATCACCCGCGAGGCCGACCAGCCGGCCGGGACCGACCGGCTCACCACGGTCGGCGCACCGGTTCCGGACGGCGCCGCCGCTCGAGACGACGCCGGCGCGCCGGACCGGGACCCGGAGGCCGGCCTGGCCACGGCCGAGTACGCCATCGCCACGATCGCCGCCGTCGGGTTCGCCGGCCTTCTCCTGCTGGTGCTGCAGAGCGACACCGTGCGCGGGATGCTCGAGGCGCTCATCGGCCAGGCGCTGACGGTGTGAMTDTITREADQPAGTDRLTTVGAPVPDGAAARDDAGAPDRDPEAGLATAEYAIATIAAVGFAGLLLLVLQSDTVRGMLEALIGQALTVNANANANANA
AK018_01420732hypothetical proteinATGGTGGAGCGGCCGCCTGACGGCCGCCGCCCGGGCCGCGGGGGCCGAGTCGTGAGCGGCCTGCCGGTGACCGGGCTGCTGGTGACGGCGTGCGCCGTGGGGGCGCTCGTGCCCTGGTGGGTCGCCGAGACCGGTGGTCGACGTCGACGGGAGACGCTGGCCCGGTCGCGGTCCGTCGGTGCGCGTGCGGGCGGGTCGGACGGCGGTCCTCGCCGTGGCGTGGGCCGCACCGGTCCGGCCGGAGCCGGCGGGGCCGGTGGCGACGGGCACCCCGAGGTGGACGTCGTCGTCGTGCTCGAGCTCGTCGCCGCAGCGGTGCGCGCCGGGGCGGGGCTGCCGCGGGCCCTGCAGGCCGTGGGTCGGGCGACCGGTGGACGGCGTGGACGTGCGCTCGAGGCGGTCTCCGGCGGGCTGCTGCTCGGTGCGGGATGGGACCCGGCCTGGGACGCCGCGACCGGCCCCGGTGCCCCGGGGGAGGGCACCGGCCGTGCCCTCGACCGCGTCCGCCGAGGCCTGCGCGCCGCCTGGACGGACGGTGCCGCCCCGCAGGAGGCCCTCCGTGCCGCGGGCGCCGACCTGCTGCACGAACGGCGGTCGACGGCACGCACGGCAGCGGCGCGGCTCGCCGTCCGCCTCGTGCTGCCCCTGGGCCTGTGCTATCTGCCCGCCTTCGTGCTCGTCGGGCTCACGCCCGTCCTCCTCGCGCTCGGCCTGGACGTGCTGTCCGGCTGAMVERPPDGRRPGRGGRVVSGLPVTGLLVTACAVGALVPWWVAETGGRRRRETLARSRSVGARAGGSDGGPRRGVGRTGPAGAGGAGGDGHPEVDVVVVLELVAAAVRAGAGLPRALQAVGRATGGRRGRALEAVSGGLLLGAGWDPAWDAATGPGAPGEGTGRALDRVRRGLRAAWTDGAAPQEALRAAGADLLHERRSTARTAAARLAVRLVLPLGLCYLPAFVLVGLTPVLLALGLDVLSGPGPT0022290_33DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
AK018_01421660hypothetical proteinGTGACGGGGGTCGGGTGCCTCGTCGCCCTCGCGGTCTGGTGCCTGGTCGCACCGCCCGGACGACCCGGCGTGTCCCGGGACCGGCGCGACGGGCAGGAGCCGGCCCTGGTGCGTGGCACCGCTGTTCCGCGCGGTGACCGGGCGGCGTCGGACCGCGGGACCCCGGTGCGGGTCGCCGTCACGCAGGTGGCCGGCGTGCTGCGGACCGGTGCCGCGCCGTCGGACGCGTGGCCGCGTGCGCTGGCCGTGCCCACCACCCGCGACGGACTGCCCGTCGAGGACGAGCTGCGTGCGCGGCTCGGCGGCGATCGTGCGGCCGCCGGGGCCATGGTCGCGGCGGCACGCCTGTCCCGCGACGTCGGCGCGCCCCTGGGTGGCGTGCTGGACGTCGTCGGCCAGGCGCTGGTCGCACGCCAGGAGGCCGAGGCGGAACGGGACGCCTCCCTGGCCGGACCCCGCGCGACGGCCCGGGTGCTGGTCTGGCTGCCCGCCCTGGGGGTGCTGCTCGCCGTCGTGCTCGGCGCCGATCCGTGGGCCACCGCCACCGACGGTGGTGCCGGGACCGCCGCCGTCGGTGGCGGCCTGGTGGCGTTGCTGGTGGGGCGATGGTGGAGCGGCCGCCTGACGGCCGCCGCCCGGGCCGCGGGGGCCGAGTCGTGAMTGVGCLVALAVWCLVAPPGRPGVSRDRRDGQEPALVRGTAVPRGDRAASDRGTPVRVAVTQVAGVLRTGAAPSDAWPRALAVPTTRDGLPVEDELRARLGGDRAAAGAMVAAARLSRDVGAPLGGVLDVVGQALVARQEAEAERDASLAGPRATARVLVWLPALGVLLAVVLGADPWATATDGGAGTAAVGGGLVALLVGRWWSGRLTAAARAAGAESPGPT0022290_2898DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
AK018_014221155COG4962Putative conjugal transfer proteinGTGACCGTGGATCAGCAGCTCCTCGACGACGTCCGCGCCCGCCTGGACGCGTCCCGCCGTCGGCCCGACGACGCCGCGGTGGCCGCCGCGATCCGGGCCAGCGGCCGGGTGCTCGGCTCCGACGCCCTCGCCGACCTCACCCGGGCGGCACGGGCCGAGCTCACCGGGGCCGGGCCCCTGCAGCACCTCCTGGACCGGCCCGGCGTGACCGATGTGCTCGTCAACGGCCCCGACCAGGTGTGGGTCGACGACGGCGCAGGACTGCGGCGCGCGGACGTCCGGCTCGGCACGGACGACGACGTCCGGGCGCTCGCCGTCCGGTTGGCGACTGTCGCCGGCCAGCGGCTGGACGACGCGAGCCCTGTCGTCGACGCCCGCCTGCCCGACGGCACCCGCCTGCACGCCGCCGTCGAACCGGTGGCACCGGCCGGGGCCGTCGTCGCCCTGCGCGTGCTGCGGCAGGCGACGCTCGACCTGCCTGCCCTCGTCGCCCGCGGCGGTGTCCCGGCCGCGTGGACCGCGCTGCTGCACGGGCTGGTCCGGCGTCGGGCCAACCTCCTCGTGACCGGCGGCACCGGGACGGGCAAGACCACCCTGCTGGCCGCGCTCCTCGGCCTGGCAGGGCCCGAGGAACGGGTGCTCACCGTCGAGGAGGCCCGCGAGCTCGCGCCGCAGCATCCTCACGTGGTCGCCCTAGCCGCGCGGCGGGCGAACGTCGAGGGGGTGGGCGAGGTCTCCCTGACCGACCTGGTCCGCGGCGCCCTGCGGATGCGGCCGGACCGCATCGTGCTCGGTGAGTGCCGCGGCGCCGAGGTGCGCGAGCTGCTGCTGGCCCTCAACACGGGGCACGACGGCGGGCTGGCCACGGTCCACGCCAACGCGGCCGAGCACGTGCCCGCACGCCTCGAGGCCCTGGCGGCGCTGGCCGGGATGTCCCGTGCCGCGGTCTCGGCTCAGGCGGCGGCTGCGCTCGACGTCGTGCTGCACCTCCGGCGCCGGGACGGCGCACGCCATCTCGCGCAGGTCGCCGTCGTCGAGCGCAGCGACGACGGCGAGCTGGCGGTCCGGACCGTCGGGACCTGGGGCGGGCCGGGTACAGGGAGACCCGACCGACTGGCCGGGTGGGACGACGTCGTGCACAGGTGGGCGTCGTGAMTVDQQLLDDVRARLDASRRRPDDAAVAAAIRASGRVLGSDALADLTRAARAELTGAGPLQHLLDRPGVTDVLVNGPDQVWVDDGAGLRRADVRLGTDDDVRALAVRLATVAGQRLDDASPVVDARLPDGTRLHAAVEPVAPAGAVVALRVLRQATLDLPALVARGGVPAAWTALLHGLVRRRANLLVTGGTGTGKTTLLAALLGLAGPEERVLTVEEARELAPQHPHVVALAARRANVEGVGEVSLTDLVRGALRMRPDRIVLGECRGAEVRELLLALNTGHDGGLATVHANAAEHVPARLEALAALAGMSRAAVSAQAAAALDVVLHLRRRDGARHLAQVAVVERSDDGELAVRTVGTWGGPGTGRPDRLAGWDDVVHRWASPGPT0016025_2991DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
AK018_01423786putative proteinATGGACAGCTCGCCCCCGGCCACCGGCCCGGACACGACCCGCGCGGCGCGGATGGTCGCCGTCGTCGGCGCGGCCGGCGGCGCCGGGACCTCCACCCTCGCCGCCGCCCTCGCGCGCAGCCTCCGCCGCCAGGTCGGGGAGACCACCCTCGTCGACCTGCACACGCCCGGAGGCGGCGTCGACGTGCTGCTCGGTGTCGAGGACGCACCCGGTGCCCGGTGGCCCGACCTCGCGGACGCCCGCGGCACCGTCGACCCGCCGGACCTGCTCGCCGCCCTGCCCCGCTGGGCCGGGGTGCCGGTCCTGTCCGCGTCCCGGTACGCCGCCGCGCCGCCGCAGGACGACGTCGTGCTCGACGTGGTGACGGCGCTGGTGCGTGCCGGGCAACGGGTCGTCCTCGACCTGCCGGGGCCACGGTCGTGGGACCGGGCCCCGGGCAACCTGCTGCGCTCGGCCGACGTCGTCGTCCTCGTCGTCCCCCGGTCGGCCCGGGGGGTCGCCGGCGGGATAGCGTCCCGTCGCGTGCTCGACGCCGTCACCAGCGGGCCGGTACGGCTCGTCGCGGGTCTGCCGTCCGCGGGCCGGGTCGACGCCGGCGAGGTCGCCCGCGCCGTCGGTGGCCCCCTCGCCGCCGTCCTCGACCGCGACCGGCACCTGCCGGCAGCGCTCGAGCGCGGCGAGGGTCCGCGCACGGGTGCCCGGACACCGGTGGGCCGTGCCGCGAGGGGCCTCGTCGACGCCCTGAGCCGCGTGCCGGGGGCGGACCGGACGGCGGTGGGGGCGTGAMDSSPPATGPDTTRAARMVAVVGAAGGAGTSTLAAALARSLRRQVGETTLVDLHTPGGGVDVLLGVEDAPGARWPDLADARGTVDPPDLLAALPRWAGVPVLSASRYAAAPPQDDVVLDVVTALVRAGQRVVLDLPGPRSWDRAPGNLLRSADVVVLVVPRSARGVAGGIASRRVLDAVTSGPVRLVAGLPSAGRVDAGEVARAVGGPLAAVLDRDRHLPAALERGEGPRTGARTPVGRAARGLVDALSRVPGADRTAVGANANANANANA
AK018_01424837COG0560putative phosphataseGTGACCGTCTCACCGCACGACCCGGGGCCCGCTCGTCGCCCCCCGCACGCCCGTCGTGTCGCGGCGTTCTTCGACCTGGACAAGACGATCATCGCGACCAGCTCCACGGCGGCGTTCTCCCGACCGTTCTTCGCCGGTGGGCTCATCACCCGCGGGGACGTGCTGCGCAGCGCCTACGCGCACTTCCTGTTCATGCTGGGCAGCGCGGACGCCGACCAGACCGAACGGATGCGCCGCCACCTGTCCGAGCTCGCCACGGGGTGGGAGGTGGCCAAGGTCGAGCAGATCGTCGCGGAGACCCTCCACGAGCACATCGACCCGTACGTGTACGCCGAGGCCGTCGACCTGATCGCCGACCACCACGCCCGGGGGCACGACGTCGTCGTGGTGTCCGCGTCGGGTCGCGAGCTGGTCGAGCCGATCGCGGCGATGCTGGGCGCCGACCACATGGTGGCGACGCGCATGGCCGTGGCCGGCGGGCGGTTCACCGGGGAGATCGACTTCTACGCCTACGGGGAGAACAAGGCCACCGCGGTCCGCGACCTCGCGGCCGCCCGCGGCTACGACCTCGAACGGTCCTTCGCGTACTCGGACTCGATCACGGATGCCCCGATGCTCGACGCGGTCGGGCACGCGTTCGCCGTCAACCCCGACCGTTCGCTGCGACGGGTCGCCGCGGAGAAGGGGTGGGACACGCTGACGTTCGTCCGGCCGGTGGCCCTGCGCACGTCGTGGCGCCCGACGGCGGCCCTCGCCGCGGCCGGTGCCCTCGGCCTGGCGGCAGCGTGCTGGTGGTGGTGGCGCCGCCGTCGTGCCGGCGGGCCCACTCCGGCCTGAMTVSPHDPGPARRPPHARRVAAFFDLDKTIIATSSTAAFSRPFFAGGLITRGDVLRSAYAHFLFMLGSADADQTERMRRHLSELATGWEVAKVEQIVAETLHEHIDPYVYAEAVDLIADHHARGHDVVVVSASGRELVEPIAAMLGADHMVATRMAVAGGRFTGEIDFYAYGENKATAVRDLAAARGYDLERSFAYSDSITDAPMLDAVGHAFAVNPDRSLRRVAAEKGWDTLTFVRPVALRTSWRPTAALAAAGALGLAAACWWWWRRRRAGGPTPANANANANANA
AK018_014251998acsA_2COG0365Acetyl-coenzyme A synthetaseGTGACCGACACCCAGTCCAGCAACCCGAGCCTGGAGAACCTGCTCCACGAGACCCGCGCCTTCCCGCCGAGCCCGGAGTTCGCCGACCAGGCCAATGCCGGCCCGGCGCTCTACGAGGAGGCCGCGGCGGACCGCCTCGAGTTCTGGGCGAAGCAGGCCCGCGAGCTCGTGACGTGGAGGACGCCGTTCACCGAGACCCTCGACTGGTCCGGCGCGCCGGTGGCGCGCTGGTTCGCCGACGGCACCCTCAACGCCGCCTACAACGCCGTCGACCGGCACGTCGAGGCCGGCCACGGCGACCGCGTCGCGATCCACTTCGAGGGCGAGCCCGGCGACACCCGCACCGTCACCTACGCCGACCTGCAGCGCGAGGTCTCGCGCGCCGCCAACGCGCTGGCCGCGCTCGGCGTCGAGTCGGGCGACCGGGTCGTGATCTACATGCCGATGCTCGTCGAGTCGGTCGTGGCCATGCTGGCCTGCGCACGCCTCGGAGCGGCGCACTCCGTGGTCTTCGGCGGGTTCAGCGCCGACGCCCTGCGCAGCCGCATCGCCGACGCCGAGGCCAAGGTCGTCATCACCGCCGACGGCGGGTACCGCCGCGGCGCCCCCAGCTCGCTCAAGCCCGCCGTGGACGAGGCGCTCACCGGCGAGGGCGCCGAGAGCGTCCAGCACGTGCTCGTGGTCCGCCGCACCGAGCAGGACGTCGACTGGACCGAGGGGCGCGACGTGTGGTGGCACGAGGCCGTCGAGGCCGCCGACACCTACCACGAGCCCGCGTGGGTCGAGGCTGAGCACCCGCTGTTCATCCTCTACACCTCGGGCACCACCGGGAAGCCCAAGGGGATCCTGCACACCACCGGCGGCTACCTGACCCAGGCTGCCTACACCCACAAGAACGTGTTCGACCTCAAGCCCGAGACCGACGTCTACTGGTGCTCGGCCGACATCGGCTGGGTCACCGGGCACACCTACATCGTCTACGGGCCGCTGCTCAACGGCGCCACCCAGGTGCTCTACGAGGGCACGCCGGACACCCCGCACAAGGGTCGCTGGTGGGAGCTCGTCGAGAAGTACAAGGTGTCGCTGTTCTACACGGCCCCGACGGCGATCCGGGCCTGCATGAAGTGGGGCGAGGAGATCCCCGCCGGCTTCGACCTGTCCTCGCTGCGCCTGCTCGGCTCGGTGGGCGAGCCCATCAACCCCGAGGCGTGGATGTGGTACCGCCGCGTCATCGGCGGCGACACCGCCCCGATCGTGGACACCTGGTGGCAGACCGAGACGGGGGCCATCATGATCAGCCCGCTGCCGGGCGTCACCGCGACCAAGCCCGGCTCGGCGCAGGTCGCGCTGCCCGGCATCAGCGCCGACGTCGTCGACGACGAGGCCCGTCCGGTCCCCGACGGCGGCGGCGGCTACCTCGTGCTCTCGGAGCCGTGGCCGTCGATGCTGCGCGGCATCTGGGGCGACCTGCAGCGGTTCAAGGACACCTACTGGTCCCGGTTCGAGGGCCTCTACTTCGCCGGCGACGGCGCCAAGAAGGACGAGGACGGCGACATCTGGCTGCTCGGCCGCGTCGACGACGTCATGAACGTCTCCGGGCACCGGCTGTCCACCACGGAGATCGAGTCCGCGCTGGTCTCCAACGACCTGGTGGCCGAGGCCGCCGTCGTCGGCGCCAGCGACGAGGTGTCCGGGCAGGCGGTCGTCGCGTTCGTCATCCTGCGCGGCGAGCACGCCGAGGAGGCGTCCACCGACGAGGGCTCGGCACGCATCGAGAAGACGCTCCGCGACCACGTCGCCAAGGAGATCGGGCCGATCGCCAAGCCGCGCAAGATCCTCGTGGTGCCCGAGCTGCCCAAGACCCGCTCCGGCAAGATCATGCGGCGGCTGCTGCGCGACGTCGCCGAGAACCGCGAGGTGGGCGACGCCACGACCCTGGCGGACTCGTCGGTGATGAACCTGATCCAGTCCGGCCTCGCCAAGCCGTCGGAGGACTGAMTDTQSSNPSLENLLHETRAFPPSPEFADQANAGPALYEEAAADRLEFWAKQARELVTWRTPFTETLDWSGAPVARWFADGTLNAAYNAVDRHVEAGHGDRVAIHFEGEPGDTRTVTYADLQREVSRAANALAALGVESGDRVVIYMPMLVESVVAMLACARLGAAHSVVFGGFSADALRSRIADAEAKVVITADGGYRRGAPSSLKPAVDEALTGEGAESVQHVLVVRRTEQDVDWTEGRDVWWHEAVEAADTYHEPAWVEAEHPLFILYTSGTTGKPKGILHTTGGYLTQAAYTHKNVFDLKPETDVYWCSADIGWVTGHTYIVYGPLLNGATQVLYEGTPDTPHKGRWWELVEKYKVSLFYTAPTAIRACMKWGEEIPAGFDLSSLRLLGSVGEPINPEAWMWYRRVIGGDTAPIVDTWWQTETGAIMISPLPGVTATKPGSAQVALPGISADVVDDEARPVPDGGGGYLVLSEPWPSMLRGIWGDLQRFKDTYWSRFEGLYFAGDGAKKDEDGDIWLLGRVDDVMNVSGHRLSTTEIESALVSNDLVAEAAVVGASDEVSGQAVVAFVILRGEHAEEASTDEGSARIEKTLRDHVAKEIGPIAKPRKILVVPELPKTRSGKIMRRLLRDVAENREVGDATTLADSSVMNLIQSGLAKPSEDPGPT0002265_830DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
AK018_01426780rhaR_3HTH-type transcriptional activator RhaRATGACCGGGGACCGTCCGCGCAGCGCGCCGCCGCCGCACGCCGGCGAGGCGGCCCAGCGTCTGCTCGACGCGCTCAGCCCCGAGCTCGTCACGCTCCTCGACGAGGGCTCGGCGACGATGTTCTGCGCCAAGGACGTCACCGGTCGTTACGTGCTGGTCAACCGCACCTTCGTCGACCGGGCGAACCGGCGCTCCCCGCGCGAGGTCGTCGGGCGCACCTCCCACGAGCTGTTCGCCCCGGAGCTCGCCGAACGGTACGAGGAGCAGGACCAGTACGTCCTGTCCGAGGCGTGGCCGCTGCGCAACGAGCTCGAGCTCATCCGCCGCCACGGCGGCACCCCCGGCTGGTACCTGACGACCAAGCTGCCCGTGCAGCGCGACGGCACGGTCGTCGGCCTGGTCTCCACCTCGCGAGACTTGGCCACGCACGACGTCGAGGACCAGGTCATGGGGTCCCTCACGCGCGTGGTGCAGCTCGTCGAGGACCGGCTCGACCGCGGGGTGCGGATCGGCGACATGGCCGACGCCGCCGGGTGCACGACGGGGGCGCTCGAACGCCGCATGCGCCGCGTGTTCGGGTTGACGCCCAAGCAGTTCGTGCTCCGGGCCCGCGTGGACCGCGCCACCGCCCTGCTGGTGCAGACCGACCTGGCGCTCGCCGACGTCGCCGTGCGGGCCGGGTTCTACGACCAGCCGTCGTTCACGCGGACCTTCGTGCGGCTCACGGGGGAGACGCCGTCGGCCTACCGGCGCAAGGGGCGGGCGCTCGCCGCCGACTGAMTGDRPRSAPPPHAGEAAQRLLDALSPELVTLLDEGSATMFCAKDVTGRYVLVNRTFVDRANRRSPREVVGRTSHELFAPELAERYEEQDQYVLSEAWPLRNELELIRRHGGTPGWYLTTKLPVQRDGTVVGLVSTSRDLATHDVEDQVMGSLTRVVQLVEDRLDRGVRIGDMADAAGCTTGALERRMRRVFGLTPKQFVLRARVDRATALLVQTDLALADVAVRAGFYDQPSFTRTFVRLTGETPSAYRRKGRALAADNANANANANA
AK018_01427945mshD_2COG0456Mycothiol acetyltransferaseATGGGACACGTGCGTCTTCCTGTCCCGATCGAGATCGGCCCGCTGTCCTCGTCCGCCCAGGACGCCGTGCGTTCCCTGGCGGAGGCCGCCGCGGCGTCCGACGGCGTCGCGCCGCTGTCCGAGCAGCCGCTGCTGCGCCTGGGTGACGACGCGGCGTCCCTGACCCACGTCGTCGTGCGCACCAGGACCGGTGCCACGATCGGCTACCTGCAGGTCGACCGCGGGGGCGACGTGGCGAGCGCGGAGCTGGTCGTGCACCCGGAGCACCGGCGCGGCGGCGTCGGCAGCCTGCTGTTGCGCACCGCGGAGCGCGACGCGCGGCTGCCCGAGCGGTCCGGTGCCCCGGACCAGCGCGGCAAGGCGCTGCACGTGTGGGCGCACGGTGACCTGCCGGCGGCCCGCGCGTTCGCCGCGGCACGCGGGCTGCGCAGCGTGCGCGAGCTGCTGTTCCTGGCGCGGCCGCTGCGCGACGACCTGTCCACCCCGGCGGCGCCCGCGGGGACGTCGCTGCGCACGTTCGTGCCCGGGGACGACGACGAGACGTGGGTGGCGCTGAACGCCCGCGCCTTCGCCGACCACCCCGAGCAGGGCCGGCTCACCGTCGCGGACCTGCGGGCCCGGCAGGCCGAGCCGTGGTTCGACCCGGCGGGGTTCCGGCTGCTGACCGAGGGTGAGCGCGCGATCGGGTTCGTGTGGACGAAGATCGAGCCGGACCAGCCGGCCGGGGCGGTCGACGGCGAGATCTACGCCGTCGGGACCGACCCGGACGCCCGGGGCCGCGGCCTGGGGCGCCTCCTGACGGCCGTGGGGCTGGCGCACCTGCGCGAGGCGGGCTGCGACCGGGCGGTGCTGTACGTCGACGGCGACAACGCGGCGGCGCTGGCCACCTACGACCGGGCGGGGTTCGAGCGCGCCGCGGTCGACGTGCAGTACGCCCGCGGCTGAMGHVRLPVPIEIGPLSSSAQDAVRSLAEAAAASDGVAPLSEQPLLRLGDDAASLTHVVVRTRTGATIGYLQVDRGGDVASAELVVHPEHRRGGVGSLLLRTAERDARLPERSGAPDQRGKALHVWAHGDLPAARAFAAARGLRSVRELLFLARPLRDDLSTPAAPAGTSLRTFVPGDDDETWVALNARAFADHPEQGRLTVADLRARQAEPWFDPAGFRLLTEGERAIGFVWTKIEPDQPAGAVDGEIYAVGTDPDARGRGLGRLLTAVGLAHLREAGCDRAVLYVDGDNAAALATYDRAGFERAAVDVQYARGPGPT0002685_5DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937NANA
AK018_014282373ppk_2COG0855Polyphosphate kinaseATGACCTCGTCCAGCACGGACCGGACCGCGACGGACCGGTCCCAGCCCTCCCGCCACCGCGACGCCCGCGGCCGGTTCGTGGCCGCGGCCACCTCGACCGCACCGGGAACCCGCACCACCGCGACGGCACCGCGTCGTCGTATGGATCCCGAGCTCGCGGCGCACATCGCCGAGCACATCGCCGAGGACATGGGCGACCAGCCGGTCATGGCGCCGCCCGCGGACCTGGAGCCGTTGCCGAAGGACCGGTTCGCGGACCGCGAGCTGAGCTGGCTGACGTTCAACGAGCGGGTGCTCGAGCTCGCCGAGGACGCTCGGCTCCCCCTGCTGGAGCGGGTGCGGTTCCTGGCGATCTTCGCCTCGAACCTCGACGAGTTCTTCATGGTGCGCGTGGCCGGCCTGAAGCGGCGCATGGCCACCGGTATCGCCGTGACGGCCGCGTCGGGGCTGAGCCCGCGCGAGGTGCTGGCGGGCATCGGCGAGGGCGCCCACAACCTCATGTCCCGGCACGCCGAGGTGTTCCGCCGCGACGTGCAGCCGCAGCTCGCCGACGAGGGCATCACGATCGTCCACTGGGACGAGCTGGCCGACAAGGAGCAGCAGCGGCTGCACAAGTTCTTCCGCAAGCACATCTTCCCCGTGCTGACGCCGCTGGCCGTCGACCCGGCGCACCCGTTCCCGTACATCTCGGGCCTCTCGCTCAACCTCGCCGTCGTGGTGCTCAACCCGCTGACCGGCAAGGAGCACTTCGCGCGCGTCAAGGTGCCGCCGCTGCTGCCGCGGTTCATCGCGGTCGACGACCGCGGCCGGCCGAGCGCGCCGACCCCGACGCAGAAGGGCGGCACGCAGAAGTCGTTCGTGCCGCTGGAGGAGGTCATCGCCCAGCACCTCGACCACCTGTTCCCCGGCATGGAGGTGCGCGAGCACCACACGTTCCGCGTCACCCGCAACGAGGACGTGGAGGTCGAGGAGGACGACGCCGAGAACCTCCTGCAGGCGATGGAGAAGGAGCTGCTGCGACGTCGGTTCGGCCCGCCGGTGCGGCTCGAGCTCGCGGAGGGCATCTCGCCGCGCATCCGCGAGCTGCTGGTCCGCGAGCTCGGTGTGTTCGAGGACGAGGTCTACGAGCTGCCGGCCCCGCTGGACCTGACGGGCCTGAACGTCATCGCGGACATCGACCGGCCCGAGCTGCACTACCCGCCGTTCGTGCCGACCACCCACCGCCAGCTCGCCGAGGTGGAGTCGGCGATGCCGGGCGACGTGTTCGCCGCGATCCGCGAGCGCGACGTGCTGCTGCACCACCCGTACGACTCGTTCTCGACGTCGGTGCAGACGTTCCTGGAGCAGGCGGCGGCGGACCCGAAGGTCCTGGCCATCAAGCAGACGCTGTACCGCACGTCGGGCGACTCGCCCATCGTGGACGCCCTGATCGACGCCGCCGACGCCGGCAAGCAGGTGCTGGCCCTGGTCGAGATCAAGGCCCGCTTCGACGAGCAGGCGAACATCTCGTGGGCGCGCAAGCTCGAGGAGTCGGGCGTGCACGTGGTGTACGGCATCGTCGGGCTCAAGACGCACTGCAAGCTGTCGCTGGTGGTGCGCCAGGAGAGCGACGGGCTGCGCCGCTACTGCCACGTCGGCACCGGCAACTACCACCCCAAGACGGCCCGGCTGTACACCGACCACGGCCTGCTGACGTGCGACCCGGACGTCGGCCAGGACCTGACGCGGCTGTTCAACCAGCTCTCCGGGTACGCGCCGCAGTCGCGGTTCCACCGGCTGCTCGTCGCGCCGCGCACGGTGCGGTCGGGGCTCATCGAGCGGATCGACCGGGAGGCGGCGGCGGCGCGCGCGGGCCACGAGGCGTGGATCAAGATCAAGGTGAACTCCGCCGTCGACGAGGCCACGATCGACGCCCTGTACCGCGCCTCGCAGGCGGGGGTGCAGATCGACCTGGTGGTGCGGGGCATCTGTGCGCTGCGCCCCGGGGTGCCGGGCCTGAGCGACAACATCCGGGTCCGGTCGATCCTGGGCCGGTTCCTGGAGCACTCGCGGATCTTCGCGTTCGCCAACGCGGCGGGACCGGCCATCGGGGAGGGCCCGGACGCGGGGCCCGAGGTCTTCATCGGGTCGGCCGACCTCATGCACCGCAACCTGGACCGTCGGGTCGAGGCGCTGGTGCGCATCGTCGACGAGGGGCAGATCGCCGAGCTCCTCGACCTCGTCGACGCCTCGATGTCGCCGGAGACGGCCGCCTGGCACCTGCAGGACGACGGCACGTGGCAGCGCCACGACGTCGCGCCGGGCGGGGAGCCGGCGGCCGACCTGCAGGCGGTGCTCGTCGACCGGCACCGTCGCCGTCCGGGTGCGCGCTGAMTSSSTDRTATDRSQPSRHRDARGRFVAAATSTAPGTRTTATAPRRRMDPELAAHIAEHIAEDMGDQPVMAPPADLEPLPKDRFADRELSWLTFNERVLELAEDARLPLLERVRFLAIFASNLDEFFMVRVAGLKRRMATGIAVTAASGLSPREVLAGIGEGAHNLMSRHAEVFRRDVQPQLADEGITIVHWDELADKEQQRLHKFFRKHIFPVLTPLAVDPAHPFPYISGLSLNLAVVVLNPLTGKEHFARVKVPPLLPRFIAVDDRGRPSAPTPTQKGGTQKSFVPLEEVIAQHLDHLFPGMEVREHHTFRVTRNEDVEVEEDDAENLLQAMEKELLRRRFGPPVRLELAEGISPRIRELLVRELGVFEDEVYELPAPLDLTGLNVIADIDRPELHYPPFVPTTHRQLAEVESAMPGDVFAAIRERDVLLHHPYDSFSTSVQTFLEQAAADPKVLAIKQTLYRTSGDSPIVDALIDAADAGKQVLALVEIKARFDEQANISWARKLEESGVHVVYGIVGLKTHCKLSLVVRQESDGLRRYCHVGTGNYHPKTARLYTDHGLLTCDPDVGQDLTRLFNQLSGYAPQSRFHRLLVAPRTVRSGLIERIDREAAAARAGHEAWIKIKVNSAVDEATIDALYRASQAGVQIDLVVRGICALRPGVPGLSDNIRVRSILGRFLEHSRIFAFANAAGPAIGEGPDAGPEVFIGSADLMHRNLDRRVEALVRIVDEGQIAELLDLVDASMSPETAAWHLQDDGTWQRHDVAPGGEPAADLQAVLVDRHRRRPGARPGPT0002685_155DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937NANA
AK018_014291047hypothetical proteinATGAGCACTCCCGCGCACTCCCCCCGACCGCTGCGCACCGCCACCCCGTTCGTCGACCCGCTCGGCGCGACGTCGGTGCAGCACACCCCGGTGATCGAGACCGCCGGGGCGCTGGTGTGGCGCCTGCGCGAGGGGCGGCTCCAGGTCCAGCTCGTGCACCGGCCGCGCTACGACGACTGGTCGTGGCCCAAGGGCAAGCACGAGGAGGGCGAGTCGCTGGCCGCGACGGCGGTGCGCGAGGTCACCGAGGAGACCGGCAAGCCCGTGGTGCTGGGCCTGCCCCTGCCGGGTCTGCAGTACCTGACGCCCGAGGGCCGGGTGAAGCGCGTGCACTACTGGGCCGCGCGCCGCGCCTCCTCGCGCCAGGACGCCCGGCCGCTGGCGGCGCGCGCCCCCGTGGCCCTGGCCGGCAAGAAGGAGATCGACCGCTGCCAGTGGCTCGACGTGGACGACGCCGCCGAGCAGCTCACGCGGTCCACGGACCGCGGGCCCCTGGACGCGCTGGTGGAGGCGCACCGCGACGGCCTGCTGTCCACGCACGCGGTCGTCATCGTGCGCCACGGCCGGGCGCTGGCCCGCGCCTCCTGGTACGGCCACGAGCAGGACCGTCCGCTGACCCCGGTGGGGCACGGACAGGCCGCCGCGCTCGTGCCCGTGCTGGCGGCGTACGGCGTGGGGACGGTGGTCTCGAGCCGGTGGGAGCGGTGCGCGACGACGATGGACCCGTACGTGCGGGCGGCGGGCCTGCGCCCGGAGTACAGCGACAACCTGGGCGAGGCCCAGCACGAACGCTCGCCGGCGCGGGTCGCGGCGGCGGTGCGGGACCTGCTGGAGGCTCCGCGCGCCTCGGTACTGTGCACGCACCGGCCGGTGCTGCCGACCGTGCTCGACGTGCTGGGGCAGCACTCGCGCCGTGCGGTGGCCTCGGCGCTGCCGCGGCGCGACCCGTACCTGGAGCCCGGCGAGGCCCTGGTGGCGCAGGTGGCGATCACGGCCAAGGGACCGCGGGTGGTCTCGGCCGAGCGGGTGGCCCCGCCGGTCTTCTGAMSTPAHSPRPLRTATPFVDPLGATSVQHTPVIETAGALVWRLREGRLQVQLVHRPRYDDWSWPKGKHEEGESLAATAVREVTEETGKPVVLGLPLPGLQYLTPEGRVKRVHYWAARRASSRQDARPLAARAPVALAGKKEIDRCQWLDVDDAAEQLTRSTDRGPLDALVEAHRDGLLSTHAVVIVRHGRALARASWYGHEQDRPLTPVGHGQAAALVPVLAAYGVGTVVSSRWERCATTMDPYVRAAGLRPEYSDNLGEAQHERSPARVAAAVRDLLEAPRASVLCTHRPVLPTVLDVLGQHSRRAVASALPRRDPYLEPGEALVAQVAITAKGPRVVSAERVAPPVFNANANANANA
AK018_014301005hypothetical proteinGTGGACGTCGCGCTCCTGGTGGTCGTGGTCGCGCTCTCGCTCGGCTTCGCGTACACCAACGGGTTCCTCGACGCGGCCAACGCCGTGGCGACGTCGGTCTCCACCCGGGCCCTCACGCCGCGCATCGCCGTCGCGATGGCCGCCGTGATGAACTTCGTCGGCGCCCTGCTGGGCACGGCCGTCGCCGAGACCGTCGCCACGGCGATCGTCGACCTCGACGGGGCCACCGAGAGCGCGGCACTGATCGTGCTCGTCGGAGCCCTGGTCGGTGCGATCCTGTGGAACCTGGTCGCCTGGTGGTTCGGCATGCCGTCGTCCTCCACCCACTCGCTCGTCGGCGGCCTGCTCGGCGCCGGGATCGCCGGCGGCATGACCGTCCACGGCGCCGAGCTGGTGGACCGCGTCATCCTCCCGACCCTGATCTCGCCGCTGGTGGGCTTCGTCCTCGCGTTCGGGCTCATGATCGCGGTGCTGTGGATCTTCCGGAACGCCGCCCCCGCCCGCGTCAACCGCCGGTTCCGCATCGCGCAGACCGCCTCGGCCGCCGCGATGGCGCTCGGTCACGGCCTGCAGTCGGCGCAGAAGACGATGGGCGTGATGTGGCTCGCCCTGCTCACCACCGGCGTGCTGGCCGACGGCGCGGGCATCCCGGTGTGGGTGAAGGTCTCGGCCGCCGCGGCGCTGGCCGCCGGCACCTACGCCGGGGGCTGGCGCATCGTGCGGACCCTCGGCCGGCGCATCATCGAGCTCGACCCGGCCCGCGGGTTCGTCGCGGAGACGGTCGCCTCGTTCGTGCTGTACGCCAACGCGATCGTGCTGCAGGCGCCGGTGTCCACCACGCACACCATCACCGCGGCCATCATGGGCGTCGGCTCCACCCGGCGGCTGGCCGCCGTCCGGTGGGGCGTGGCCCGCGACATCGCCGTGTTCTGGGTCCTCACGGCCCCCGTGGCCGGGCTGCTCGCCGCCGGCGTGACGCTCGCGCTCCTGCCGCTGGCCGGCTGAMDVALLVVVVALSLGFAYTNGFLDAANAVATSVSTRALTPRIAVAMAAVMNFVGALLGTAVAETVATAIVDLDGATESAALIVLVGALVGAILWNLVAWWFGMPSSSTHSLVGGLLGAGIAGGMTVHGAELVDRVILPTLISPLVGFVLAFGLMIAVLWIFRNAAPARVNRRFRIAQTASAAAMALGHGLQSAQKTMGVMWLALLTTGVLADGAGIPVWVKVSAAAALAAGTYAGGWRIVRTLGRRIIELDPARGFVAETVASFVLYANAIVLQAPVSTTHTITAAIMGVGSTRRLAAVRWGVARDIAVFWVLTAPVAGLLAAGVTLALLPLAGPGPT0002655_3180DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPHATE_TRANSPORT,PGPT0002655-TC_PIT-K03306NANA
AK018_01431621hypothetical proteinGTGCGCCTGCGCCTCACCCCGCGCGACTCGACGTACTTCGACCTGCTGGCCCAGCTGGCGCGGCACACCGTCACCGGTGCCAGCCTGCTCGCCGAGCTGCTCGGCGCGTCCCGCCCCGAGCGCGAAGGCCTCGTCAAGCGGCTGACCGAGGTCGAGCACCTGGCCGACGACGTCGCCCACAGCATCATGAAGCGGCTCAACCAGACGTTCGTGACGCCGTTCGACCGCGACGACATCTACGCGCTCGCGTCCGCGCTCGACGACTGCATGGACGCCATGGACGAGGCCGGCCACCTCATCGTCCTGTACCGGATCGACGAGCTGCCGATGGCGGTCTCCGAGCAGGTGCAGGTCCTGCAGCGGTGCGCCGAGCTCACCGCCGACGCCATGCCCCGGCTGCGCCGGCTGGAGCAGCTCACCGAGTACTGCGTCGAGATCAACCGGCTCGAGAACCAGGGCGACACGCTGCACCGCTCGCTGCTGGGCGACCTGTTCGACCGGACGACCGACCCGATCACGCTCATCAAGCTCAAGGAGGTCGTCGACGTCCTCGAGGAGGCGGCCGACGCCTACGAGCGCGTGGCGAACCTCGTCGAGACGATCGCCCTCAAGGAGTCCTGAMRLRLTPRDSTYFDLLAQLARHTVTGASLLAELLGASRPEREGLVKRLTEVEHLADDVAHSIMKRLNQTFVTPFDRDDIYALASALDDCMDAMDEAGHLIVLYRIDELPMAVSEQVQVLQRCAELTADAMPRLRRLEQLTEYCVEINRLENQGDTLHRSLLGDLFDRTTDPITLIKLKEVVDVLEEAADAYERVANLVETIALKESNANANANANA
AK018_01432600hypothetical proteinATGCTCGACCCCCAGGAGGCCGAGAACCTGCCGGGATCGCTCGACCCCGCCCGGCGCGACGAGGTCGCGCACACCACGGCCCGCGCCGTCGTGCACCAGGCCCGCGCCGCCGAGGACCCCGAGGTCGTGGCGCGCCTCGTGCGGCTCGTCGAGGACGAGGGGCTCGACGTCGTCGCCGGCCTCTGGGCGGACGCCGCGCCCGCGACGCTCCCGGGCGCCCTGTGGCGCCTGTACGCCCTGCGCGAGTGGGTCCGGCGCGACGCGCGCACGGTCGGCCTGCGCTACCGGCTCGGCGTCGACGCCGCCCCCGTGCAGGAGGCCGTCGCCGGCGTCCCACGGCCGCCCACGCCGTCGGACCTGCGCGACCTCGCCGACGCCGTGCTGTCCGGCGTCTACTCCGGAGAGCTGGACGTGGCCCTGGAGCGCGCCGGGGCGTTCTGCCGGATCCTCGCCACCGGCGCCGCCTACGACGCGGACGCCCGCGAGGTCGCCGACCCCGACCAGGCGGCCCGCATGACCCGGGGCGCCGCGGACCTCGTCGGCACGGCCGGCGAGCTCGAGCACGCCGCGGCGCTGTGGCGTGCGGGTTCGCTCGACTAGMLDPQEAENLPGSLDPARRDEVAHTTARAVVHQARAAEDPEVVARLVRLVEDEGLDVVAGLWADAAPATLPGALWRLYALREWVRRDARTVGLRYRLGVDAAPVQEAVAGVPRPPTPSDLRDLADAVLSGVYSGELDVALERAGAFCRILATGAAYDADAREVADPDQAARMTRGAADLVGTAGELEHAAALWRAGSLDNANANANANA
AK018_014331461xylE_1D-xylose-proton symporterATGTCGAATTCCGCACCTTCCGGGTCCGGAGCCCGCGCGGCCCACCGCAAGGCGATCGCGCTGTCGTTCTCCGCCGCCGTCGGCGGTTTCCTCTTCGGGTTCGACTCCTCGGTGATCAACGGCGCCGTCTCGGCGATCGAGGGCGAGTTCGAGCTGAGCTCGACCATCACGGGTCTGGTCGTCGCGGTCGCGCTGCTGGGTTGTGCCCTCGGCGCCTGGGGCGCCGGTCGCCTGGCCGACCGCATCGGGCGCATCAAGGTGATGCTGCTCGGTTCGGGACTGTTCCTGTTCTCCGCGATCATGTCCGCGCTGGCGTGGACCGCGCTGGACCTGTCGCTGTGGCGGTTCATCGGCGGCATCGGCATCGGTATCGCCTCGGTGATCGCCCCGGCCTACATCGCGGAGATCGCTCCGGCGGCGATCCGCGGGAGCCTGGCCTCGCTGCAGCAGCTCGCGATCACCGTCGGCATCTTCGGCGCCCTGCTGAGCGACCAGATCCTGGCCGAGACGGCCGGCGGCGCGGCCAACGAGCTGTGGCTGGGGTTCGAGGCCTGGCGCTGGATGTTCCTGGTCGAGGCCGTCCCGGCGATCCTGTACGGGATCCTCGCGCTGGCGATGCCGGAGTCCCCGCGCTACCTGGTCGCCAAGGGGCAGGAGGAGGACGCCCAGCGGGTGCTGGACTCCGTCCTGGGTCCCGAGGAGGGCGTGGGCGACCGCATCGCCGAGATCAAGCGCTCGATCGCCGTCGACGAGAAGAACGCGGAGCTCGGCTCCCTCAGGGGCAGCGGGTTCCTCGGCCTCAAGCCCATCGTGTGGGTGGGGATCGTGCTGGCGATCTTCCAGCAGTTCGTCGGCATCAACGTGATCTTCTACTACTCGACGACGCTGTGGCAGGCCGTCGGGTTCGACGAGTCGCAGGCGTTCCTCGTCTCGACGATCACCTCGGTCACCAACATCGCCGTGACGTTCATCGCCATCGCGCTCATCGACAAGGTGGGCCGGCGGCCGATGCTGCTCATCGGGTCGGCCGGCATGGCGGTCTCGCTGCTGACGATGGCGGCGGTGTTCACGCAGGGCTCGGCGGTCACCGACCCGGCGACGGGTGAGTCGACGCTGCAGCTCGGCGACCCGTGGTCGACGATCGCGCTGGTCGCCGCGAACGCGTTCGTGGTGTTCTTCGGCGCCACGTGGGGCCCGCTGATGTGGGTGATGCTCGGCGAGATGTTCCCGAACCGGATCCGCGCGGCGGCGCTCGGCGTGGGTGCGGCGGCGAACTGGATCGCGAACTTCACGATCACGCTGACGTTCCCGCCGCTGCTGTCGACGTTCGGGCCGACCATCCCCTACGGCATGTACGGGTTCTTCGCGGTGCTGTCGTTCTTCTTCATCTGGTTCAAGGTCTCCGAGACCAAGGGCAAGGAGCTCGAGGACATGACCGAGGAGGTGCGCCACCGCGCCTGAMSNSAPSGSGARAAHRKAIALSFSAAVGGFLFGFDSSVINGAVSAIEGEFELSSTITGLVVAVALLGCALGAWGAGRLADRIGRIKVMLLGSGLFLFSAIMSALAWTALDLSLWRFIGGIGIGIASVIAPAYIAEIAPAAIRGSLASLQQLAITVGIFGALLSDQILAETAGGAANELWLGFEAWRWMFLVEAVPAILYGILALAMPESPRYLVAKGQEEDAQRVLDSVLGPEEGVGDRIAEIKRSIAVDEKNAELGSLRGSGFLGLKPIVWVGIVLAIFQQFVGINVIFYYSTTLWQAVGFDESQAFLVSTITSVTNIAVTFIAIALIDKVGRRPMLLIGSAGMAVSLLTMAAVFTQGSAVTDPATGESTLQLGDPWSTIALVAANAFVVFFGATWGPLMWVMLGEMFPNRIRAAALGVGAAANWIANFTITLTFPPLLSTFGPTIPYGMYGFFAVLSFFFIWFKVSETKGKELEDMTEEVRHRAPGPT0014440_811DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_OTHER_SUGAR_TRANSPORT_RELATED_PROTEINS,PGPT0014440-hxt-K08139NANA
AK018_01434453hypothetical proteinGTGTCCGACGACGCCGCACCGGCCCTGGTCGGTGCCCTCGAACAGCTCGGGCGGGCCCAGCGCGAGGCCGCCGCGCGCATCGCCCACGACCTCGACCGTCCCCGGGCCGGTCTGGGCGTGATCCGATACCTGCGCGCCCACGGACCCGTCCAGCTCTGCGAGGTCGCCGAGGCGCTGCGGGTCGACGCCTCCGTCGCCAGCCGGCAGGTCAGCGCGCTCGTCGACTCCGGGCACGTCGCCCGGCACGTCGACGAGTCCGACCGCCGCGCCCGCACCCTGGAGCTCACCGACTCCGGCCGGCACCTGGCCGCCCGGAGCGACGAGCTCTTCGAGGCGTTCCTCGCCGAGGCCTTCGCCGACTGGTCCCCCGCCGACCTCACCCACGCCATCGAACGGATCCGCAGCGTCGCGGCCGCCATCAGCTCCGTCAGCCAGGAGGCCACGCACCGATGAMSDDAAPALVGALEQLGRAQREAAARIAHDLDRPRAGLGVIRYLRAHGPVQLCEVAEALRVDASVASRQVSALVDSGHVARHVDESDRRARTLELTDSGRHLAARSDELFEAFLAEAFADWSPADLTHAIERIRSVAAAISSVSQEATHRNANANANANA
AK018_014351620bmr3_3Multidrug resistance protein 3ATGACCGACACCACCGACGCGCGCACCGCAGGGTCCGCGACGCCCACCGAGCACACGCCCGCCGACCGCGCGCCCGCGATGAGCCGTCGGGAGACCCTCGAGGCGCTCTCCGGCATCCTGCTGGGCGTCTTCGTCTCCCTGCTCGCCACCACGATCGTCTCCACCGCGCTGCCGCGCATCGTCGCGGACCTGGGCGGCTCCCAGCACGCCTACACCTGGGTCGTCACGGCGATGCTGCTCACCATGACCATCTCCACCCCGCTGTGGGGCAAGCTGGCCGACCTGACCGACCGCAAGGTGCTCATCCAGGTCGCCCTGGTGATCACCGTGGTGTCGGCGGCGTCGGCCGGGTTCGCGCAGAACATGGAGATGCTCATCACCTCTCGCGCCCTGCAGGGCATCGGCGCCGGCGGCCTGATGTCGCTGGCGACCGTACTGATGTCGGACATCATCAGCCCCCGCGAGCGCGGCAAGTACATGGGCCTCATGGGCGGGGTCATGGCCGTCGCGCAGATCGGGGGCCCGCTGCTGGGCGGTCTCATCACCGACTCGGTGGGCTGGCGGTACACGTTCTTCGTGGGCGTGCCGTTCGCCGTCGTCGCGCTGTTCGTGCTGCAGAAGACCCTGCACCTGCCGGCCCGTCCGGCGCGGGCCGTCCGGATCGACTACGTCGGCGCCGCCCTCATCGCCGTCGGCGTCGCCCTGCTGCTGCTGTGGGTCACGTTCGCCGGCGACCAGTTCGCCTGGGCCTCGTGGCAGACCGCCGCCATGGTGGGCGCCGCGGTCCTCGCCCTGGTCGGCGCCGTGCTCGTGGAGCGGCGCGCCCCGGAGCCGATCATCCCGCTGCACCTGTTCCGCAACCGCACCTTCGTGCTCTCGATCGTCGCCTCCGCGGCGGTCGGCGTCGCGATGTTCGGCACCGCGGTGTTCCTCGCGCAATACCTCCAGCTCGCCCGGGGCATGACCCCCACGCAGTCCGGCCTGCAGACCATCCCGATGGTGGTCGGCACCATGCTCGGTGGCGTGGTGCTGGGCCGGATCATCTCCCGCACCGGCCGGTACAAGGCCATCATGGTCGGCGGCGCCGCCGTGCTGAGCCTGTCCCTGTTCGGGATGTCCACCATCGGCACGGACACGAGCCTCGTCGTGGTGTCGGTGTACCTGTTCGGGCTCGGGCTGTCCGTCGGCGCGCTCATGCAGAACCTCGTGCTCGCCACCCAGAACACGCTCGACCTGCGTGACATGGGTGCCGGGACCGCCACCGTGGCGTTCTTCCGCTCCCTCGGCGGCGCCATCGGCGTCTCCGCGCTCGGGGCCGTGATGGCCGCCGACGTCAAGGAGCGCATCGCCGACGGCCTGGCCGACCTCGGGGTGCCCGCCGCCGCGCTCGGGGGCTCCACCGGGTCCGTCCCCGACATGTCCGCCCTGCCCGCCCCGGTGGCCGACGTCGTGGCCGGCGCGTACACCGAGGGGATCACCGGGATCTTCCTCGTCGCCGTCCCGATGGCGCTCGTGGCGCTGGTGGCGATCTGCTTCGTCGTCGAGATCCCGCTCGGCGAACGCTCCGGCATCGAGCAGGCCCGCGATCTCGCGAAAGCGCCGGAAACCGTCACCGACTGAMTDTTDARTAGSATPTEHTPADRAPAMSRRETLEALSGILLGVFVSLLATTIVSTALPRIVADLGGSQHAYTWVVTAMLLTMTISTPLWGKLADLTDRKVLIQVALVITVVSAASAGFAQNMEMLITSRALQGIGAGGLMSLATVLMSDIISPRERGKYMGLMGGVMAVAQIGGPLLGGLITDSVGWRYTFFVGVPFAVVALFVLQKTLHLPARPARAVRIDYVGAALIAVGVALLLLWVTFAGDQFAWASWQTAAMVGAAVLALVGAVLVERRAPEPIIPLHLFRNRTFVLSIVASAAVGVAMFGTAVFLAQYLQLARGMTPTQSGLQTIPMVVGTMLGGVVLGRIISRTGRYKAIMVGGAAVLSLSLFGMSTIGTDTSLVVVSVYLFGLGLSVGALMQNLVLATQNTLDLRDMGAGTATVAFFRSLGGAIGVSALGAVMAADVKERIADGLADLGVPAAALGGSTGSVPDMSALPAPVADVVAGAYTEGITGIFLVAVPMALVALVAICFVVEIPLGERSGIEQARDLAKAPETVTDNANANANANA
AK018_01436540hypothetical proteinATGATGGACCGCATGCACGACAGCGAAGCACACGGCGCCTCCCCCCTGCCGGACCCGGTCACCGACCCCTTCGGCGCCCTCGAGCGGGAGCTCAGGGTGCTGATCCGTCGTGCGCAGTCGACGTCCGCCCAGATGGCGCGGATCATCCACCCGCAGCTCGACGCCTCGGCCTACCCGCTGCTCGCCCACATCGCGATGTACCCGGGCACGCGCGGCTCGGACCTCGCCGCACACTTCGGCGTCGGGCGGGCCACCGTCTCGCGCCAGCTCAGCCGGATGGTCGACCTCGGGCTGGTCCATCGCGAGACCGACCCCGAGGACACCCGCGGTCAGCTCATCACCCTGACCGACGCCGGGGTCGCGCGGTTCGAGCACGCCCGCGACGCCCGCATCGGCATGCTCGAGGGCTCGCTGAGCGGCTGGGAGAAGGACGACGTCGCCGAGCTCGCCACCCTGCTGCACCGGTACTCCGCCGACGTCGTCGACTGGCTCGCCACGCAGCAGGCCGCCGACCAGGTCGACGCAGCCCACGCGGACTGAMMDRMHDSEAHGASPLPDPVTDPFGALERELRVLIRRAQSTSAQMARIIHPQLDASAYPLLAHIAMYPGTRGSDLAAHFGVGRATVSRQLSRMVDLGLVHRETDPEDTRGQLITLTDAGVARFEHARDARIGMLEGSLSGWEKDDVAELATLLHRYSADVVDWLATQQAADQVDAAHADNANANANANA
AK018_01437717hypothetical proteinATGAGCGTCGAGACCTCCGCCGACCGGCTCGTCAACCTGCGCGACGTCGCCTCGGCGTCGGCCGCCGTCCGGCCGGGGGTGCTGCTGCGCTCCGACGCGCCCCGGGCCGGGGACGTCCGGCCCGACGACGTCGCCTGGCCCCCGCGGACGGTGCTGGACCTGCGCGACGTCGGCGAGCAGCGTGAGGAGCACCCGTTGCGTGACGTCGCGCGCGTCGTGGCCCTGCCCGTCCTGGACGGGGCGACGCGGGCCCGGCCCGCCGGCGACGTCGTCCCGTTCGACCTCGGGCGGCTGTACGTCGAGATGCTCGACGGCGTGGGTGCCGCGCACCTGGCCGACGGGGTCCGCGCGGTGGCCGACGACGACGCCCCGGTGCTGGTGCACTGCACCGCCGGCAAGGACCGCACGGGCGTGCTCGTGGCCGTCGTGCTGGCCCTGGTCGGGGTGGACCGGGCCGCGATCGTGACGGACTACGTGCGCACCGACCCCAACATGCCGCAGATCATCGCGCGGGCACGACGGACGGCGCGCGCCCCGCGGGGTGACTCGCACGTCCTGGCGGCGCTGCCGCCCGAGCTGCTCACGGCACCGGCCCACGCCGTCGAAGCCGTGCTCGACGTGCTCGCCGCGCACGAGGGCGGGGCGGTGGGTTGGTTCGTCGCGCACGGGGGCGACGCACCGACGGTCGAGCGGTTGCGCGGGCGCCTGCTGCGCTGAMSVETSADRLVNLRDVASASAAVRPGVLLRSDAPRAGDVRPDDVAWPPRTVLDLRDVGEQREEHPLRDVARVVALPVLDGATRARPAGDVVPFDLGRLYVEMLDGVGAAHLADGVRAVADDDAPVLVHCTAGKDRTGVLVAVVLALVGVDRAAIVTDYVRTDPNMPQIIARARRTARAPRGDSHVLAALPPELLTAPAHAVEAVLDVLAAHEGGAVGWFVAHGGDAPTVERLRGRLLRPGPT0014530_3087DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
AK018_01438408msrB_2COG0229Peptide methionine sulfoxide reductase MsrBATGAGCTACGAGATCGCGAAGACCGACGACGAGTGGCGCGTGGAGCTGTCGCCGCAGGAGTTCCAGGTGCTGCGCCAGGCCGGCACCGAGCGCCCGTGGACGGGTGAGCTGCTGGACGAGGGCCGCGAGGGCGTCTACCGCTGTCGCGCCTGCGACGGCGAGCTGTTCCGCAGCGAGACCAAGTTCGACTCCCACTGCGGCTGGCCGTCCTTCTACACCCCGCTCGCGGGGGACCGGGTCGAGCTGATCGAGGACCGGTCGCTGGGCATGGTGCGCACCGAGGTGCGGTGCGCCCGCTGCGGGTCGCACCTGGGCCACGTGTTCAAGGACGCTCCGCAGACCCCGACCGGGGACCGCTACTGCATGAACTCGGTGAGTCTCACGTTCGACCCGGTCGCCGACTCCTGAMSYEIAKTDDEWRVELSPQEFQVLRQAGTERPWTGELLDEGREGVYRCRACDGELFRSETKFDSHCGWPSFYTPLAGDRVELIEDRSLGMVRTEVRCARCGSHLGHVFKDAPQTPTGDRYCMNSVSLTFDPVADSPGPT0013070_4630DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013070-msrB-K07305NANA
AK018_014391464rhlE_4ATP-dependent RNA helicase RhlEGTGACTTCCTTCGCCGAACTCGGCCTGCCCGCGCCCGTCGTCGAGCACCTGACGCGCGCCGGCATCACCACCCCGTTCCCGATCCAGTCCGCGTCGCTGCCGGACTCCCTGGCGGGCCGCGACGTGCTCGGCCGGGGGCGTACCGGCTCGGGCAAGACGCTCGCCTTCTCGCTGCCGGCGGTCACGCTGCTGGCGCGCTCGGCGGCCCGGGCGAAGGCGGCGGGACGGCCGCGCCGGGTGCCGAACCGGCCCACGTGCCTGGTGCTGTGCCCCACCCGTGAGCTCGCCAACCAGATCGACGCCACGATGAAGCCGCTGGCGGAGTCGCTCGGTCTGCGCACGACGACGATCTTCGGCGGCGTCGCCCAGTCCCGTCAGGTCACGGCGCTCGGTCAGGGCGTGGACGTCGTCATCGCCTGCCCCGGACGCCTCGAGGACCTGCTGGGCCAGAAGGTGCTGACCCTGGACGACGTCGAGATCACCATCCTCGACGAGGCGGACCACATGGCCGACCTCGGGTTCCTGCCCGGCGTCAAGCGCATCATGGACCGCACCCCCCGCGACGGTCAGCGCATGCTGTTCTCCGCGACGCTCGACAACGGCGTGGACGTGCTGGTCAAGCGCTACCTCAAGAACCCGGTGACGCACTCGGTGGACGAGGCGGCCGCCCCGCCGCCGCAGATGACCCACCACATCCTCGCCGTGGCGGACAAGGAGGCCAAGAAGCGCCTCGTGCACGACCTGGCCAGCGGGACCGGCCGGCGGGTGCTGTTCACGCGGACCAAGCACCAGGCCAAGAAGCTCGCGCGCCAGCTCACGGCGGCGGGGGTGCCCGCGGTGGACCTGCACGGCAACCTCGGCCAGGGCGCCCGCGAGCGGAACCTGGCGGCGTTCTCCTCCGGGGACGTGAAGGTCATGGTGGCCACCGACATCGCCGCGCGCGGCATCCACGTGGACGAGGTCGAGCTCGTGGTGCACGTGGACCCGCCGGCGGAGCACAAGGCGTACCTGCACCGTTCGGGCCGTACCGCCCGCGCCGGCTCGGGCGGCGACGTCGTCACGCTGATGCTGCCGGAGGAGCGCGGTGACGTGCGCGACCTGACCCGCAAGGCGAAGATCTCCGCGAAGCCGCAGCAGGTGGCCCCCGGGGACGCCGTCGTGACGGCGCTGGTCGGCGAGGTCGCCCCGTACGTGACCCCGCCCGAGCCGGCCGCGCAGGGCCAGCAGGGCGGCTGGCAGCAGGGCCGGTCCGGGGGGCGCTCCGGGCAGGCCGCCGGCAACGGCGGCAGCAACGGCGGTGGCGGCCGCCGTCGGCGCCGCCGCGGCGGTGGCGGCGGCGGTGGCGGCCAGAACGGTGCCGGTGCGGCGCAGGCCGGCTCCGGATCGACGCAGGGTCGCCAGGGCTCCCGGAACCAGGGTGGCCGGCGGTCGGGCGCCCCGCGGCGGTCCGGGTCGTCGCGCTGAMTSFAELGLPAPVVEHLTRAGITTPFPIQSASLPDSLAGRDVLGRGRTGSGKTLAFSLPAVTLLARSAARAKAAGRPRRVPNRPTCLVLCPTRELANQIDATMKPLAESLGLRTTTIFGGVAQSRQVTALGQGVDVVIACPGRLEDLLGQKVLTLDDVEITILDEADHMADLGFLPGVKRIMDRTPRDGQRMLFSATLDNGVDVLVKRYLKNPVTHSVDEAAAPPPQMTHHILAVADKEAKKRLVHDLASGTGRRVLFTRTKHQAKKLARQLTAAGVPAVDLHGNLGQGARERNLAAFSSGDVKVMVATDIAARGIHVDEVELVVHVDPPAEHKAYLHRSGRTARAGSGGDVVTLMLPEERGDVRDLTRKAKISAKPQQVAPGDAVVTALVGEVAPYVTPPEPAAQGQQGGWQQGRSGGRSGQAAGNGGSNGGGGRRRRRRGGGGGGGGQNGAGAAQAGSGSTQGRQGSRNQGGRRSGAPRRSGSSRPGPT0013740_636DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
AK018_01440738hypothetical proteinGTGGACGACTTCCTCGCGACGACGGGCGCCGTGCTCGCGCAGATCTGGACGGCCGCCACCACCCCGGTCGACCCGCCCGACCGGACGGTGGTCCTCGCCGCCGCGCTGGTGGCGCTCGCCGTCGTGCTCGTCACGCCCGTCTGGCGGGTCGCCCGCCACGTGGTCACGATCGCCCACGAGGGTGCGCACGCCGTGGTGGCGATGCTGACGGGCCGCCGGCTCGACGGCATCCGGCTGCACTCGGACACCTCGGGCCTGACCGTGACGGCCGGCCGGCCCCGCGGCGTCGGCATGGTCCTGACGGCGTTCGCCGGCTACGTCGGGCCCGGGCTCGTCGGCCTCGGCGCGGCCTGGCTGCTGCGCGCGGGTTACGCCGTCGGGCTGCTGTGGCTGCTCGTGGTGCTGCTGGCGCTGCTGCTGCTGAAGATCCGCAACTGGTTCGGCCTGTGGTCGGTGCTCGTCAGCGGGGCCGCGCTGGTGGGGGTGTCGTGGTGGCTCGAGCCGGCCGCGCAGTCCACCGTCGCCTACGCCGTCACGTGGTTCCTGCTGCTCGGGTCGGTGCGACCCGTCCTGGAGCTGCAGTCCCAGCGCTCCCGCGGACGGGCGCGCACGTCCGACGCGGACCAGCTCGGCCGGCTCACCGGCGTCCCCGGCATCGTCTGGGTCGTGGTCTTCGCCCTGGTGACCCTCACCTGCCTGGTCGTGGGCGCGGGGTGGATCCTCGGCCCGGCGGTCTGAMDDFLATTGAVLAQIWTAATTPVDPPDRTVVLAAALVALAVVLVTPVWRVARHVVTIAHEGAHAVVAMLTGRRLDGIRLHSDTSGLTVTAGRPRGVGMVLTAFAGYVGPGLVGLGAAWLLRAGYAVGLLWLLVVLLALLLLKIRNWFGLWSVLVSGAALVGVSWWLEPAAQSTVAYAVTWFLLLGSVRPVLELQSQRSRGRARTSDADQLGRLTGVPGIVWVVVFALVTLTCLVVGAGWILGPAVNANANANANA
AK018_01441822hypothetical proteinATGACTGCTGACCCTGCCAACCAGGCCCGTGGTGCCGCGCAGGAGCTGCGGCACAGCACGGCCCTGCGGACGCTCGCCCGCGCGGGCTTCGTGGCGTCCGGAGTGCTCCACCTGCTCATCGGCTGGCTGGCGGTGCAGATCGCCTTCGGTTCGTCCGACGGCAGCGCCGACTCCTCGGGCGCGTTCCAGCAGCTGGCGTCGGCGCCGGGCGGCGCCTTCCTCCTCTGGGCCGTCACGATCGGGTTCGCCGCGCTGGCGCTGTGGCAGATCGCCGAGGCGCTCCTCGGGTCCGTCGGTGTGTCGATGTCGAAGCAGACCGGGGCCCGCATCAAGGCGGCCGCCAAGGGTGTGCTGTACGCGGTCCTCGCGGTGTCGGCGGCGCAGTACGCCACGGGCTCGGGCGGCTCCGGCAACAGCCAGGAGGGACTGACGGCCTGGGCGCTGCAGCTGCCCGGCGGTCGCTGGATCGTCGCCGCCGCCGGCCTGGTGATCGTCGGCGTCGGCGTCTACCACGTCGTCAAGGGCGCCCGGAAGAAGTTCGTGGAGGACCTGCGCAGCACCGGCGGCGGCGCCGTCGGCACCGCCGTCGTGCGGCTCGGCCAGGTCGGATACATCGCCAAGGGCGTCGCCCTGGCCGTCCTGGGCGGGCTGTTCGTCCTGGCCGGCTGGCAGTCCGACGCCGACCAGGCCGGGGGGCTGAACCAGGCCCTGCAGACCATCCGTGAGCAGCCTTTCGGCACCGTGCTGCTCGTCGTCGTCGGCCTCGGGATCGCGGCCTACGGGCTGTACTCGTTCGCCCGCGCCCGGTACGCGCGCCTCTGAMTADPANQARGAAQELRHSTALRTLARAGFVASGVLHLLIGWLAVQIAFGSSDGSADSSGAFQQLASAPGGAFLLWAVTIGFAALALWQIAEALLGSVGVSMSKQTGARIKAAAKGVLYAVLAVSAAQYATGSGGSGNSQEGLTAWALQLPGGRWIVAAAGLVIVGVGVYHVVKGARKKFVEDLRSTGGGAVGTAVVRLGQVGYIAKGVALAVLGGLFVLAGWQSDADQAGGLNQALQTIREQPFGTVLLVVVGLGIAAYGLYSFARARYARLNANANANANA
AK018_01442288hypothetical proteinGTGCTCACCGTGACGGACAACGCCCGCACCGCCGTCGACACCCTGGCCGAACAGGCCGGGGTACCCGCCGAGGGCGGTCTGCGCATCGCGCAGTCCGCCGAGCAGCCCGGCAACTTCGAGCTCGCGCTCGTGCCCGCTCCTCAGCCCGAGGACCAGCGTGTCGACGAGTCCGGCCAGACCAACGTCTTCGTCGACTCCGAGTCCGCTCCCGCGCTGGACACCCTCCAGCTCGACGCTGACCCCTCCACCGAGGGACCCGGCTTCGTGCTCACGCCGCAGCAGGCCTGAMLTVTDNARTAVDTLAEQAGVPAEGGLRIAQSAEQPGNFELALVPAPQPEDQRVDESGQTNVFVDSESAPALDTLQLDADPSTEGPGFVLTPQQANANANANANA
AK018_01444363hypothetical proteinGTGCTGACGTGGCTCGTCGCACTCCTGTCGATCCTCGCCGGGGTGATCATGCTCGTGACCCCCGACGACCTCCTGGCGGAGGCGGGTATCAGCGCCGGCGACGCCGCGGTGTACTCCTGGGTGGAGATCGTCTTCGGCGTCATCACCGCGCTGGTCGCGATCGGGCTGAGCAACGGGAACCGCTTCTCGCGGCTGCTGGTCACGCTGCTGATGGCCCTGCGTGCGGCGGCGACGCTCTGGGTCGTCATCGCCTGGTGGGGCACCGCCGGGACCTGGTCGGCCCTGCTGTCCGGCCTGTTCGCCGTCCTCGTGATCGCGATGCTCTGGAACGCCCGGGCCAACGCCTTCTTCGCCGGCCACTGAMLTWLVALLSILAGVIMLVTPDDLLAEAGISAGDAAVYSWVEIVFGVITALVAIGLSNGNRFSRLLVTLLMALRAAATLWVVIAWWGTAGTWSALLSGLFAVLVIAMLWNARANAFFAGHNANANANANA
AK018_01445771ugpQ_2COG0584Glycerophosphodiester phosphodiesterase, cytoplasmicGTGACCACCCTGCTGCCCGGCACCCCGGACCCGGACCGCCCCGTCGTCGTCGCCCACCGCGGCTACAGCGCCGTCGCACCGCAGAACACGATGGCGGCGTTCGACGCCGCCTGGCGCAGCGGCGCCGCTGCGCTCGAGCTCGACGTACGCCGCACCGCGGACGGCGTCCCGGTCGTCGTCCACGACCCCGTCGTGGACCGGGTCACCGACGGCTCCGGTGCGGTCGCGGACCTCGACGCGGCAGCGATCGACCGCCTGGACGCCGGCGGGTCGTTCTCCCCCGCCTTCGCCGGTCAGCGACTGCCCCGCCTGACCGACGTGCTGCGCTACCTCGCGGCCCGCCCCGGGTTCGACCTGCTCTGCGAGCTCAAGGGGCGCTGGACCGCCGAGGACGTCGCCCCGACCACGGCGGCGATCGACGCGGCGGGGCTGGCCGGCCGCGTCATCGTGCAGGGTTTCGACCGCGCCACGGTGGCTGCGCTGCGAGCCGCCGCCCCGCACCTGCCGCGCGGCCTGCTGTGCGACGCCGTCCCGGACGACCTCCTCGACGCGGGCCGGGACCTCGACGTCGTCACCGTCAACCCCTCGGTCGCCGCGGTGATCGCCGCGCCGCACCTCGTCGAGCGCGCCCACGACGCCGGTCTGCGCGTCATGCCGTGGACGGCGAACACGCCGGAGCGCTGGACGCGACTGGTGGACGCCGGCGTCGACGGGATCATCACCGACCGGCCCGGCACCCTCGCCGGATGGCTCGCCGGGCGGTGCGGCTGAMTTLLPGTPDPDRPVVVAHRGYSAVAPQNTMAAFDAAWRSGAAALELDVRRTADGVPVVVHDPVVDRVTDGSGAVADLDAAAIDRLDAGGSFSPAFAGQRLPRLTDVLRYLAARPGFDLLCELKGRWTAEDVAPTTAAIDAAGLAGRVIVQGFDRATVAALRAAAPHLPRGLLCDAVPDDLLDAGRDLDVVTVNPSVAAVIAAPHLVERAHDAGLRVMPWTANTPERWTRLVDAGVDGIITDRPGTLAGWLAGRCGPGPT0018470_5847DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
AK018_014461707hypothetical proteinATGTTCCTGGACAGCGACAACGGAGGGATCGACGAGGAGACGGTCGAGGAGACCGTCCAGTCGGCCGCGCACCTGACTCTGACCCTCGTCTGGGCCGGGGCGGCCCTGGCCGCCGCCTACATCCTGGTGACGCTGGTCTCGGCGATCGTCCGGCGGCTGGCCCGCAAGCGTCCGCTCCTGCACGACCTGGCCACCCGGCTGCGCAAGTCGATGCGAGCGCTGCTCATGACGGTGGCCGTGTGGATCGCGTTCTCGCTGTCCGCGGACGAGGAGGAGGCCTGGTACCCGCTCGTCCAGCACCTGCTGCTGATCGCGACCATCATCGCCGGCGCCTGGTTGCTGGGCGCCCTGGCGTTCGTGGTCGAGGACCGGACCCTCGCCCGGCTGTCCGGCAGCCAGGACGACCGGCACAAGCGCCGGGTCGAGACGCAGATCTCGGTGATCCGTCGCGTCACCGTCGCCGTCGTCGTCGTGCTGGCCGTCGCCGCCGTGCTGCTGACCTTCCCGCAGATGCGTGCCGCCGGTGCCTCGATCCTGGCGTCCGCCGGCCTGGTCTCGCTGGTCGCCGGTCTCGCCGCGCAGTCGAGCCTGGCCAACACCTTCGCCGGCATGCAGATCGCGTTCACCGACGCCATCCGGGTGGACGACGTCGTGGTGCTCGACGGCGAGTTCGGTCGCATCGAGGAGATCACGCTGACCTACGTCGTCGTGCACGTGTGGGACGACCGGCGCATCATCCTGCCCAGCACCTACTTCACCACCACGCCGTTCGAGAACTGGACGCGGCGGGCGGCCGACCTGCTCGGCACCGTCGAGATCGACGTCGACTTCCGCGTCCCGCTGCCCGCGATGCGGGCCGAGCTCGACCGGATCCTGCACGCCTCCTCGCTGTGGGACCACCGGCTGGGCATCCTCGAGGTCACGTCCGCCACCGACGGGTACGTGCGGGCCAGGGCGCTGGTGAGCGCCCCCGACTCGCCGACCCTGTGGGACCTGCGGTGCACGGTGCGCGAGGGTCTGGTCGCCTGGCTGCAGCGCGAGGCGCCGTACGCGATCCCGCGCACGCGGTTCGAGGAGGCGGCCGACCACGCCCCGCCGCCGCCCGCCGAGGGGCAGCACGACGTGCGTCCCGAGCTCGAGGCACCCGACGAGCCGTCTGCCGAGGAGGCGGACGAGTCGTCCGCCGAACGGCCCGGGACGTCACCGGAGCCGGAGCCCGACCTCGGCGATGACGTCATCGTGGTCGTGCCGGGGCGGGAAGGCCCTCGGCGCGCGTCCGTGCGCCAGCGGGGTCTGTTGCGACGGATCCGGCGGCATCAGTCGGACGAACCCGCCCCGGTGCCTCCCGCGACGGGCGCCGAGGAGACGGTCGTCCTGGAGAGCGTGGACCGGCCCGGCCTCTACAGCGGCAGCGCGGAGGCGGAGGAGCGCTCGCGCACGTTCCACGGGCCGGGTCAGGACGTCATCGAGGAGCGGGAGGAGAACGCCGAGCGCCGGCTGACCGGTGAGGTGCCGCTCGACGAGTCGGGCGCGTCCACCCCCGACGACCCGGACGCCGGCCGCGTCGGCGCCGACGACGGGCGCGCCGACGACGGGGGTGACGACCGCGACGACGACTCGCGTCGGCACCGGGTCGGCATGGCTCGGGACTCGGGTTCCGGTGGGGCCGTGCAGGGCCCGGGCGAGGGCGGCGACGGTGGGCAGTAGMFLDSDNGGIDEETVEETVQSAAHLTLTLVWAGAALAAAYILVTLVSAIVRRLARKRPLLHDLATRLRKSMRALLMTVAVWIAFSLSADEEEAWYPLVQHLLLIATIIAGAWLLGALAFVVEDRTLARLSGSQDDRHKRRVETQISVIRRVTVAVVVVLAVAAVLLTFPQMRAAGASILASAGLVSLVAGLAAQSSLANTFAGMQIAFTDAIRVDDVVVLDGEFGRIEEITLTYVVVHVWDDRRIILPSTYFTTTPFENWTRRAADLLGTVEIDVDFRVPLPAMRAELDRILHASSLWDHRLGILEVTSATDGYVRARALVSAPDSPTLWDLRCTVREGLVAWLQREAPYAIPRTRFEEAADHAPPPPAEGQHDVRPELEAPDEPSAEEADESSAERPGTSPEPEPDLGDDVIVVVPGREGPRRASVRQRGLLRRIRRHQSDEPAPVPPATGAEETVVLESVDRPGLYSGSAEAEERSRTFHGPGQDVIEEREENAERRLTGEVPLDESGASTPDDPDAGRVGADDGRADDGGDDRDDDSRRHRVGMARDSGSGGAVQGPGEGGDGGQNANANANANA
AK018_01447603hypothetical proteinATGAGTCCCACCCCTGTGACCGTGTCGATCCACCGTGTCGTCAGCCCGGAACGGGTCCCGGAGGTCACCGCCTGGGTGCAGGCCGGAGTCCGCCTGGCGAACCGGTGGCCGGGGTTCCTCGGTTCCGGGTGGATCCGCGCCGCCGAGGGGTCCACCGAGTGGGTGATGCTGTACCGGTTCGCCGACGTGGAGCGTCTGGAGGCGTGGGAGAAGTCCGCCGAGCGGCGCGAGTGGCTCGACCGCGGCGAGGGACTGGTCGCCGAGCAGGGCGTGGTGCGCCGCACCGGGATCGAGGGCTGGTTCGACCCGCCGCTGCGACAGGACGAACCCACCGGGCCCCCGCTGCTGCCGGCCCCGCCCCGGTGGAAGCAGTCGGTCGCGATCTGGCTCGGGTTCTTCCCGGTGAACCTCGCGTTCACGGCGCTGATGGCGTGGCTGGTCCCGGCGTTCGACGACCTGCCGCTGGTGCTCGGCGTGCTGGCCTCCACCCTGGTCCTCACGCCGATCATGTCGTTCTGGGTCCTGCCGTTCGTCACGGGGCGCCTGCGCCCCTGGCTGCACCGTCCGCCGAGCCGGGGCGCACGGCCGGCACGTCGTCCCTAGMSPTPVTVSIHRVVSPERVPEVTAWVQAGVRLANRWPGFLGSGWIRAAEGSTEWVMLYRFADVERLEAWEKSAERREWLDRGEGLVAEQGVVRRTGIEGWFDPPLRQDEPTGPPLLPAPPRWKQSVAIWLGFFPVNLAFTALMAWLVPAFDDLPLVLGVLASTLVLTPIMSFWVLPFVTGRLRPWLHRPPSRGARPARRPNANANANANA
AK018_014481260hypothetical proteinGTGACCAGACCTCGATTCACCCTGCCCTGGCGCCGTCGGACCCGACGCGGCGCCCACCGCGCCGACCCGCGCGCGACGCGCCGCCGCCCGTCCGTCGGACCGCGGACCGCCGTGGCCGGCGCCATGGCCGTCCTGGCCCTGGGCGCCGGTACGGCAACCGCGCTGACCCCCGGCGTCGCGACGTCGGCGACCAGCGCCCCCGGCACGGACGGCGCCGCGACCCCCGCATCCGCCGCCGAGCCCGCCGAACCCGCGACCCGGGCCGACGGCGACAGCGACACCACCACCACCGCCGTCGACGGCAAGGTCGTCACGCGGGCCACGACCGCGCTGCAGCGCGCCCGAGAGGTCACGAGCGAGTCCACCTCGCTGACGGCGAAGCAGGAGCGCGCCATCGCCGAGCAGGCCGATGCCGTGGCCGAGCTGCTCGCCGCGCGGAGCTCCGGCGCGGCCTCCCGGTCGAGCGAGCGCGAGCCGCTGCCGACCGAGCGCGAAGCCCAGCCGAGCGCCTCCGCCTCCCCCCTCGTCGAGGACGACGTCCGCGACGAGGTCGGGGCCGACGACGGCACCTCGGGTGACGTCGTCGACGACGCCGAGGACGGGACCGCCGACGCGGACAACACCGCCGAGGACAGCCCGTCCGCTGGCACCGCGACGGAGGAGAAGGCCGCCGACGCGGTCTCGACGGAGCAGGTGGCCGCGGCCACGAAGAAGCTCACCCGGCTCGTCACGAAGGCGCAGGCCGACGTCACGGTCGAAGCCGCACCGGAGACACCGGCGGAGATCACGGCGGCGCAGGCCGCCGAGGCGAAGGCGGCGGCCGCGAAGCTCGCGCAGCACGTCGACTCGTTCGAGGGCTTCGCCAACGGTCGGGTCCCCGCCGCCGAGATGCGGGAGCTGTCCTTCGCTGCCGGCGAGACGCTGCGCCGGGACGCCGCCGCCCAGCTCGAACGGCTCGACGTGGCCTTCCGGGCGAGGTTCGGCACGCACCTCGACATCACCGACTCCTACCGTTCCTACGACTCGCAGGTCGCCGTGCGCGCCACGAAGGGTTACCTGGCTGCTGTCCCCGGCTACTCGGAGCACGGCTGGGGCGTGGCCGTTGACCTCGGGGGCGGCGTGGAGTCCTTCGGCACGGCCGAGTACGAGTGGCTGCGCGAGAACGCGCCGAAGTTCGGCTGGGACAACCCCGCCTGGGCGCGCTCGGGAGGCTCCAAGCCCGAGGCGTGGCACTGGGAGTACACCCCGCTGCAGGGCTGAMTRPRFTLPWRRRTRRGAHRADPRATRRRPSVGPRTAVAGAMAVLALGAGTATALTPGVATSATSAPGTDGAATPASAAEPAEPATRADGDSDTTTTAVDGKVVTRATTALQRAREVTSESTSLTAKQERAIAEQADAVAELLAARSSGAASRSSEREPLPTEREAQPSASASPLVEDDVRDEVGADDGTSGDVVDDAEDGTADADNTAEDSPSAGTATEEKAADAVSTEQVAAATKKLTRLVTKAQADVTVEAAPETPAEITAAQAAEAKAAAAKLAQHVDSFEGFANGRVPAAEMRELSFAAGETLRRDAAAQLERLDVAFRARFGTHLDITDSYRSYDSQVAVRATKGYLAAVPGYSEHGWGVAVDLGGGVESFGTAEYEWLRENAPKFGWDNPAWARSGGSKPEAWHWEYTPLQGNANANANANA
AK018_01452432hypothetical proteinATGACGGACTGGGACGACGGGCGCACCCCGCCCGCCGACCGACCCCCCAGCATGGGCCGGCTCATGGAGCAGGTCTCGGAGCAGGCGACCCGGCTGGCGCGGGCGGAGATCGCGCTGGCCAAGGCCGAGGTCGCCGAGAAGGCCAAGCGGTCCGGCGTCGGCGTCGGGCTGCTCGCCGCCGCGGTGGTGATCGTGCTGTACGCCGTGGGCGTCCTGATCTGGTCGGCCGTCTTCGGTCTGGCGGACATCTTCGGCCCGTCCGTGCCGTGGCTGTGGCTCACGGCGTTGATCATCGGCGCGGCGATGCTTCTGCTCGCCGGGCTGCTCGCCTGGATCGGCGTCAAGCAGCTCAAGCAGGCCGCCCGCAAGCCGGAGTCGATCGACCGGGTCAAGGACGACGTGGCCGCGGTCAAGGAGGGGATGAAGCGGTGAMTDWDDGRTPPADRPPSMGRLMEQVSEQATRLARAEIALAKAEVAEKAKRSGVGVGLLAAAVVIVLYAVGVLIWSAVFGLADIFGPSVPWLWLTALIIGAAMLLLAGLLAWIGVKQLKQAARKPESIDRVKDDVAAVKEGMKRPGPT0014525_833DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
AK018_01453324hypothetical proteinGTGAGCCAGTCCACGAACCCGGCCGCTCCGGAGCAGGGCACCGCACCGAGCCGGCGCGAGCTGCAGTCCGAGGTCGAGGAGGCCCGGCGCGAGCTCGGGTCGGCGCTCGACGAGCTGACGACGCGTCTGTCGCCCGGCTACCAGGCCTCGCAGCTCGCCCGCGGGACCCGCCAGGCGGCGGCGGACGCCGGCGGCCTCTTCACCGGTCAGGGTCTGCCCGACGACGGCACGCACCGTGGCCGCAACGCCAAGATCCTGCTGGGCGCCACCGTCGCGGGTGCCGTCGCCGTCGTCGTGCTGGTGGTGCGCGCCGCTCGCCGTTGAMSQSTNPAAPEQGTAPSRRELQSEVEEARRELGSALDELTTRLSPGYQASQLARGTRQAAADAGGLFTGQGLPDDGTHRGRNAKILLGATVAGAVAVVVLVVRAARRNANANANANA
AK018_01454255hypothetical proteinATGTCCTTCCACAGTGACTCCGAGGTCCTGTTGACGCCTGCCGAGGTGGCCAGCCTCTTCCGTGTCGATCCGAAGACGGTGACGCGGTGGGCCAAGGCGGGCAAGCTGTCGTCCATCCGAACGCTCGGCGGCCACCGCCGCTACAAGGAGTCCGAGGTGCGCGCCCTGCTCGGTGCCGCCTCCGACGCCGCCGAGGCCGAGGCGGCCCAGAACGCCGCCGCGAACGAGGCGACGCGGCCGGACACCCGGCGCTGAMSFHSDSEVLLTPAEVASLFRVDPKTVTRWAKAGKLSSIRTLGGHRRYKESEVRALLGAASDAAEAEAAQNAAANEATRPDTRRNANANANANA
AK018_01455204hypothetical proteinATGGGCCGCGGCCGTCAGAAGGCTAAGCACACCAAGGTTGCTCGCGCGCTGAAGTACTACAGTCCCGAGACGAACTTCCACGCGCTGGAGCAGGAGTTGGGGTCGGGCACCACCGATGTCGTGACCGAGGACCGCTGGGACTCCGGCGGACCCGACGAGTACGACAACAGCTCCTCCCCGTGGGACGACGACGAGCGACACTGAMGRGRQKAKHTKVARALKYYSPETNFHALEQELGSGTTDVVTEDRWDSGGPDEYDNSSSPWDDDERHNANANANANA
AK018_014561104purM_2COG0150Phosphoribosylformylglycinamidine cyclo-ligaseGTGAGCGAACCCCTGACCTACGCCGCCGCCGGAGTCGACACCGAAGCCGGCGACAAGGCCGTCGAGCTGATGAAGGACGCGGTGCGCCGCACCCAGGGGCCCGCGGTGCTCGGTGGTGTCGGCGGGTTCGCGGGGCTCTACGACGCCTCGGCGCTGACGCGGTTCCGCAAGCCGCTGCTGGCGACCTCCACCGACGGGGTCGGCACCAAGGTGGCGATCGCCCAGGCGCTCGACGTGCACGACACGATCGGGTTCGACCTGGTGGGCATGGTCGTGGACGACATCGTCGTGGTCGGTGCCGAGCCCCTGTTCATGACGGACTACATCGCCACCGGCAAGGTCGTCCCGGAGCGTGTCGCCGACATCGTGCGCGGCATCGCCCAGGCCTGCGAGGTCGCGGGGACCGCGCTCGTGGGCGGCGAGACCGCCGAGCACCCCGGCCTGCTGGCCCCGGACGAGTACGACGTCGCGGGTGCCGCGACAGGCGTCGTCGAGGCGGACGACGTGCTCGGTCCCGAGCGGGTCCGTGCCGGCGACGTCCTGATCGCGATGGCCTCCAGCGGCATCCACTCCAACGGCTACTCCCTGGTGCGGGCCGTGATCCGGCACGCCGGGTGGGAGCTGGACCGGCACGTGGCGGAGTTCGGCCGCACACTGGGCGAGGAGCTGCTGGAGCCGACGCGCGTCTACGCCGCCGACTGCCTCGCCCTCGCCCGGGACGAGGCCGCGCAGGTGCACGCGTTCACGCACGTCACCGGTGGGGGGCTGGCGGCCAACCTCGCCCGCGTGCTGCCCTCCGGCGTCGTCGCCACGGTGGACCGCTCGACCTGGGAGGTGCCGGCCGTGTTCCGCACGGTCCGCGAGCTGGGCGACGTGCCGCGCGGCGACCTGGAGAACACGCTCAACCTCGGCGTCGGCATGGTCGCCGTGGTCGGGGCCGACGGCGCGGACGCCGCGCTGGCCGCGCTGCGTGCGCGGGGCGTGGCGGCGTGGACGCTCGGGACGGTCGAGGACCTGCACCCGGACGCGGACACGACGGAACTGGTGGCGGGGACGAAGGGTGTCCAGGCGGGGGCCGTCCGCCTCGTCGGCGACTACCGCTGAMSEPLTYAAAGVDTEAGDKAVELMKDAVRRTQGPAVLGGVGGFAGLYDASALTRFRKPLLATSTDGVGTKVAIAQALDVHDTIGFDLVGMVVDDIVVVGAEPLFMTDYIATGKVVPERVADIVRGIAQACEVAGTALVGGETAEHPGLLAPDEYDVAGAATGVVEADDVLGPERVRAGDVLIAMASSGIHSNGYSLVRAVIRHAGWELDRHVAEFGRTLGEELLEPTRVYAADCLALARDEAAQVHAFTHVTGGGLAANLARVLPSGVVATVDRSTWEVPAVFRTVRELGDVPRGDLENTLNLGVGMVAVVGADGADAALAALRARGVAAWTLGTVEDLHPDADTTELVAGTKGVQAGAVRLVGDYRPGPT0021570_855DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021570-purM-K01933NANA
AK018_014571548purF_2COG0034AmidophosphoribosyltransferaseATGCCCCTGCGTCCTGACGGCCGCCTCAACCACGACCTGATGCCCGGCGAGAAGGGCCCGCAGGACGCCTGCGGGGTCCTCGGGGTCTGGGCACCCGGTGAAGAGGTCGCCAAGCTCGCGTACTTCGGTCTCTACGCCCTGCAGCACCGCGGACAGGAATCCGCGGGCATCGCCACCAGCAACGGCGAGCAGATCCTCGTCTACAAGGACATGGGCCTCGTCTCCCAGGTGTTCGACGAGACGGCCCTGAACGCCCTGACCGGCCACATCGCCGTCGGGCACTGCCGCTACTCCACCACGGGTGGCGTCACCTGGGAGAACGCCCAGCCCACGCTGGGCGCCACGGCGTCGGGCACGGTCGCGCTGGGGCACAACGGCAACCTGACCAACTCCGCCGACCTCGTCGACCTGGTCGCCGAGCGCTACGGCGCGCAGCGCCGCGGCGAGCTCGCCCGCGGCAACACCACCGACACCGCGCTGGTGACCGCCCTGCTGACCGGCGACGAGGACCACACCCTGGAGCAGACGGCCCTCGAGGTGCTGCCGAAGCTGCGCGGCGCGTTCTCGCTGGTCTTCATGGACGAGCGCACGCTGTACGCCGCCCGCGACCCGCAGGGCGTGCGCCCGCTCGTCCTCGGGCGCACCCAGCGCGGCTGGGTCGTCGCCTCCGAGACCCCGGCCCTGGACATCGTCGGCGCCTCCTACGTCCGCGAGGTCGAGCCCGGCGAGCTGATCTGCATCGACGACGACGGCCTGCGCTCGACCCGGTTCGCTCCCACCGAGCGGGCCGGCTGCGTGTTCGAGTACGTCTACCTGGCGCGTCCCGACACCACGATCAAGGGGCGTCCGGTGCACGCTGCGCGGGTGGAGATGGGCCGCCAGCTCGCCCGGGAGCACCCGGTCGAGGCGGACATGGTGATGCCGGTGCCGGAGTCGGGCACGCCCGCCGCCACCGGGTACGCCGCCGAGTCCGGCATCCCGTTCGGGCAGGGCCTGATGAAGAACGCCTACGTGGGGCGCACCTTCATCCAGCCGTCGGACACCCTGCGCCAGCTCGGCATCCGGCTCAAGCTCAACCCCCTGCGTGAGGTCATCCGCGGCAAGCGGCTCGTCGTCGTCGACGACTCCATCGTGCGGGGCAACACCCAGCGCGCCCTCATCCGCATGCTGCGCGAGGCCGGGGCCGCCGAGGTCCACGTGCGCATCTCCTCGCCGCCGGTGAAGTGGCCGTGCTTCTACGGCATCGACTTCGCGTCCCGCGCCGAGCTGATCGCCAACGGTCTGACGCCCGACGAGATCGGGCAGTCGCTCGGTGCCGACTCCCTCGGCTACATCTCGACCGAGGGCATGATCGCGGCGACGGAGCAGCCGTCCTCCCAGCTGTGCGCCGCGTGCTTCACCGGCGAGTACCCGATCGAGCTGCCGGAGGAGGAGCGCCTCGGCAAGCACCTGCTGGAGCAGGCCGAGCTGCCCCTGGGCGCGCCCGAGGACGGGCTGTCCCAGCTCTCCGTGGGAGTCGGCGGCCAGACCGCGCTCGACCACCCCTGAMPLRPDGRLNHDLMPGEKGPQDACGVLGVWAPGEEVAKLAYFGLYALQHRGQESAGIATSNGEQILVYKDMGLVSQVFDETALNALTGHIAVGHCRYSTTGGVTWENAQPTLGATASGTVALGHNGNLTNSADLVDLVAERYGAQRRGELARGNTTDTALVTALLTGDEDHTLEQTALEVLPKLRGAFSLVFMDERTLYAARDPQGVRPLVLGRTQRGWVVASETPALDIVGASYVREVEPGELICIDDDGLRSTRFAPTERAGCVFEYVYLARPDTTIKGRPVHAARVEMGRQLAREHPVEADMVMPVPESGTPAATGYAAESGIPFGQGLMKNAYVGRTFIQPSDTLRQLGIRLKLNPLREVIRGKRLVVVDDSIVRGNTQRALIRMLREAGAAEVHVRISSPPVKWPCFYGIDFASRAELIANGLTPDEIGQSLGADSLGYISTEGMIAATEQPSSQLCAACFTGEYPIELPEEERLGKHLLEQAELPLGAPEDGLSQLSVGVGGQTALDHPPGPT0020225_1129DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020225-purF-K00764NANA
AK018_01458372hypothetical proteinGTGAGCAGCACCGAGCCCGAGCGCCCCGCCGAGACGCCCGACGGGCGCGACCCCGCACCCGCGGGGGACGCACCCGTCGGGGAGCAGCCCGGGGAGCCCGACGAGCGCCTGCTCGTCGACCCCGCCCGGGTACGCCGCGCGCCCCGGCTGCGGGCGTTCTTCACCGTCGGTGCCGTGGTCGGCGTCGTCGTCGGCGTCGCCCTGGGCGTGTGGCTCAACGCGATCGCCGTCGCCGAGGACATCCCGATGCTCAAGCCGGGCGTGTTCGTCTCCGTCGTCGTCCTCGGCGTCACCACGTTCTTCGTGCTGCTGGCCGGGGCGATCGCCGTCTGGGCCGACCGGCGCAGCGTGCGGGCGATGCAGCGGCGCTGAMSSTEPERPAETPDGRDPAPAGDAPVGEQPGEPDERLLVDPARVRRAPRLRAFFTVGAVVGVVVGVALGVWLNAIAVAEDIPMLKPGVFVSVVVLGVTTFFVLLAGAIAVWADRRSVRAMQRRNANANANANA
AK018_014592859hypothetical proteinGTGACCCGCACCGTACCCCTGTCGCACCGCCGTCGGACCCTGTCCGCCGCGGTGGCCGCGACGCTCACCGTCCCGGCCGCCGTCGCCGCCCTGCCGGCCGCCGCCGTGCCGTCGGTGGACGCCCCTGTCGTCATCGACGAGGTCTACGGAGGTGGCGGCAACAACGGCGGCACCTACGACCGCGACTTCGTCGAGCTCCACAACCCGGGCGACGAGCCCGTGTCGCTCGACGGCTGGTCCGTCCAGTACGGGTCCGCCGGCGGGACCACCTGGTCCTCCCAGACCGACCTGAGCGGGCAGATCCCGGCCGGCGGGTCGTTCCTCGTGGCCCAGGCGCCGGGCAGCGACGACTCGCAGCCCGACCTGCCGACGCCGGACGTGGACGGCGGCATCTTCATGTCCGGCTCGGGCGCCGAGGTCGCGCTCGTGTCCTCCACGGACCGGCTCGACTGCACCGGCACCGCCTGCGCCGACGTCGACGACCTCGTCGACCTGGTGGGCTGGGGCTCGGCGAACACCTACCTGGGCTCCGGCCCGGCGCCGGCCACGACGAACCCGGTCTCCGTGGCCCGCGTCGGGCACGGCAACACCGTCGACAACGCGGCCGACTTCGTGACCGGCCCGCCGACGCCGCAGAACAGCGGCAGCACGCCGACGCCGACCCCGACCCCGACGCCGTCGGTGAGCCCGTCGCCCGAGCCGTCGCCGGAGCCCACCGACGAGCCCGCGCTCGTGACGATCGCCGAGATCCAGGGCACGGGGGACTCCTCGCCGCTGGCCGGGCAGGACGTCACCACCCGCGGCGTCGTCACGGCGGCCTGGCCGACCGGCGGTTTCGACGGTTTCACGATCCAGACGCCCGGCACCGGCGGCGACCCCGCCGACGACGCGACCCCGGGCGCCTCGGACGCCGTCTTCGTCTACTCGCGCGCAGGCGCCCAGGCCGTGCAGGTCGGCGACCACGTCGAGGTCACCGGCGAGGCCGGCGACTACTACGATCTGACGCAGGTCTCCGCAGACTCGTGGACGGTGCTGGACGAGCCGGCGGCGGCCGTGAAGCCGACCGTGACGGGCTGGCCGGCCACGCAGGACGAGCGCGAGGCGCTGGAGAACATGCTGCTGGCCCCGGCCGGCGAGTTCACCGTGACCGACAACTACTCGACCAACTACTACGGCACCGTCGGGCTCGCGGCCGGCGACAGCCCCTTGGTGCAGCCGACGACGGCGGGCCGCCCCGGGTCCGAGGAGGCCGCCGCGCAGGAGGCCGAGAACGCCGCCCTCGCCGTGCAGCTCGACGACGGCTCCTCGTGGAACTACTCCAGCGCCTCCCGCGCCGCCACCCCGCTGCCCTGGCTGAACGGCACCGACCCCGTCCGGGTCGGGGCCTCGGTCACGTTCACCGGTCCGGTGGTGCTCGACTACCGGTACAGCGCCTGGTCGTTCCAGCCGCAGACCCAGCTCACCGGCGAGAACGCGGACGCCGTGCAGCCCGCCACGTTCGAGGACACCCGCACCGCCGCGCCCGAGGACGTCGGCGGGGATCTGCAGGTGGCCACGTTCAACGTGCTCAACTACTTCACCACCACCGGCGACCAGCTCGACGGGTGCCAGTACTACACCGACCGCGACGGGAACCCGATCAGCGTGCGCACCGGCTGCCTCGCCCGGGGTGCCGCCGACGCCGAGAACCTGGAGCGGCAGGAGACCAAGATCGTCGCGGCGATCGGTGACCTCGACGCCGACGTGGTCGCCCTCGAGGAGATCGAGCAGTCCGCCGCGTTCGGCAAGGACCGCGACCAGGCCCTGTCCGACCTCGTCGACGCGCTCAACGCCGCGCAGGGAGCCGGGACCTGGGCGTACGTGCCCTCCCCGGACGGGGTGCCCGCCGACGAGGACGTCATCCGCAACGCGTTCGTGTACCGGGTCGCCGACGCCGAGCCGGTCGGTGCGTCGCAGATCCTGCTGGGCTCCGAGGCCTTCGGGAACGCACGCGAGCCGCTCGCCCAGGTGTTCCAGCCGGCCGGAGGGGCCACCGGCGACCCGGCCGACGACGTCGTGGTGATCACCAACCACTTCAAGTCCAAGGGCTCCGCGGGGCCGTGGCCGGGCGACGAGGACGCCGGCGACGGGCAGGGGAGCTCCAACGAGTCGCGGGTGCGCCAGGCCACCGCGCTGGTCGAGTTCGCCGACCAGGTCGCGGCCGACGCCGGGACCGACCGGGTGCTGCTCGTGGGCGACTTCAACGCCTACGAGCAGGAGGACCCGATCGTCGTCCTCACCGACGCCGGGTACACCGACCTGGGACCGACCGTGGGCGAGTACACCTACAGCTACGGCGGGCAGGTCGGCTCCCTGGACCACGTGCTGGCCTCCGCGGGCGCCCTGGAGAACGTCACCGGCGTCGACATCTGGAACATCAACGCCTACGAGCCGGTCGCGAACGAGTACAGCCGGTACAACTACAACGCGACCATCCTCTACGACGAGTCGCCGTACCGGTCCTCGGACCACGACCCGATCCTTGTCGGGCTGGCGCTCGCTGACGACGGTCCGGCGCTGCCCGCCTGGGACGCCGGCACCGTGTACACGGCCGGGGACCGGGTCGAGCACGACGGCGCGGTCTTCGAGGCGCAGTGGTGGACCCGTGGCCAGGTCCCCGGGGCGAGCCCGTGGGGCGCGTGGGCCGAGGTCGGCGCCGCGGTGACCACCCCGGCGGGCACGGCGCCCGCGTGGACGCCGTCGGGCATCTACACCGGCGGCGAGACCGTCGCGCACGACGGCGAGCTCTGGCGGGCCCGGTGGTGGACCCGCAACCAGGAGCCCGGTGACCCGTACGGGCCGTGGGAGCAGACCTCCTGAMTRTVPLSHRRRTLSAAVAATLTVPAAVAALPAAAVPSVDAPVVIDEVYGGGGNNGGTYDRDFVELHNPGDEPVSLDGWSVQYGSAGGTTWSSQTDLSGQIPAGGSFLVAQAPGSDDSQPDLPTPDVDGGIFMSGSGAEVALVSSTDRLDCTGTACADVDDLVDLVGWGSANTYLGSGPAPATTNPVSVARVGHGNTVDNAADFVTGPPTPQNSGSTPTPTPTPTPSVSPSPEPSPEPTDEPALVTIAEIQGTGDSSPLAGQDVTTRGVVTAAWPTGGFDGFTIQTPGTGGDPADDATPGASDAVFVYSRAGAQAVQVGDHVEVTGEAGDYYDLTQVSADSWTVLDEPAAAVKPTVTGWPATQDEREALENMLLAPAGEFTVTDNYSTNYYGTVGLAAGDSPLVQPTTAGRPGSEEAAAQEAENAALAVQLDDGSSWNYSSASRAATPLPWLNGTDPVRVGASVTFTGPVVLDYRYSAWSFQPQTQLTGENADAVQPATFEDTRTAAPEDVGGDLQVATFNVLNYFTTTGDQLDGCQYYTDRDGNPISVRTGCLARGAADAENLERQETKIVAAIGDLDADVVALEEIEQSAAFGKDRDQALSDLVDALNAAQGAGTWAYVPSPDGVPADEDVIRNAFVYRVADAEPVGASQILLGSEAFGNAREPLAQVFQPAGGATGDPADDVVVITNHFKSKGSAGPWPGDEDAGDGQGSSNESRVRQATALVEFADQVAADAGTDRVLLVGDFNAYEQEDPIVVLTDAGYTDLGPTVGEYTYSYGGQVGSLDHVLASAGALENVTGVDIWNINAYEPVANEYSRYNYNATILYDESPYRSSDHDPILVGLALADDGPALPAWDAGTVYTAGDRVEHDGAVFEAQWWTRGQVPGASPWGAWAEVGAAVTTPAGTAPAWTPSGIYTGGETVAHDGELWRARWWTRNQEPGDPYGPWEQTSPGPT0013395_132DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013395-nucA|ushA|yhcR|yfkN-K01081NANA
AK018_01460174hypothetical proteinATGCTGTGGGTCGGGGGGTCTCTGGTCGTCGTGGGTGTCGCGCTCGCGGGCCGCACCGTGTGGGTGTCGCGGTCGCGTCGGACCACGGGCGCGCACGGTCTGATGCTGGCGCTCGGTGTCTCGGCGGCGTGCTGGGGGCTGCTGCTGCTCGGCGTCTCGGCGCTGCTGGACTGAMLWVGGSLVVVGVALAGRTVWVSRSRRTTGAHGLMLALGVSAACWGLLLLGVSALLDNANANANANA
AK018_01461375hypothetical proteinATGCCTGCACGACGACGGACCGATCCGGTGGCCGGGCGTGCCGCCGTGGCCGCCTGGCTGGCCGGGGAGGCCGACCGCCGCACGGTGACGACGGCCGTGCGGTTCACGCTGGAGGAGCTCGCGGCGGTCGCTCCCGGCAACGCGGTCGAGGTGCGCGTGCCGCCGGCCGGCGCCGTCCAGGCGGTCGAGGGGCCGCGGCACACCCGCGGGACGCCGCCGAACGTGGTCGAGACGGACGTCGAGACGTGGCTCGGCCTGGCGACCGGGCGGCTGACCTGGTCCGACGCCGTGGCGGCAGGAAGGGTGCACGCCTCGGGCGAGCGCGCCGACCTGTCCGGCCCGCTGCCCCTGCAGGCGGCTCGCGTCCGGCGCTGAMPARRRTDPVAGRAAVAAWLAGEADRRTVTTAVRFTLEELAAVAPGNAVEVRVPPAGAVQAVEGPRHTRGTPPNVVETDVETWLGLATGRLTWSDAVAAGRVHASGERADLSGPLPLQAARVRRNANANANANA
AK018_01462828oppFCOG4608Oligopeptide transport ATP-binding protein OppFATGAGCACGCTCGAGGTGCGGAACCTGGTCAAGGAGTTCAAGGTCCGCGACGGGCTGCGGCGCAGCACGCTGCGGGCGGTGAACGACGTGTCCTTCACGCTGTCGGCGGGACGCACGGTCGCCGTGGTGGGGGAGTCGGGCTCCGGCAAGTCCACGGTCGCCCGCATGATCGCCCAGCTCGAGACCCCGACGTCGGGCGAGATCCTGCTGGACGACGCGGCGATCGGGCGCCGCGGCCGCGCGCTGGCCGACTACCGCCACCAGGTGCAGATGGTCTTCCAGGACCCGTTCGCGTCCCTCAACCCGTACCACTCGGTGGAGCACCACCTGGCCCGTCCGCTGAAGCTGCACGGGGTCGCGCGGGGCAAGGACGTGCTCCCGGCGGTGTACGGGCTGCTCGAACGGGTCAACCTCACCCCGGCGCCGGTGTTCGCCGAGAAGCGGCCGCACGAGATGTCCGGCGGGCAGCGGCAGCGCATCGCGATCGCCCGCGCGCTCGCGCCGGGCGCCCGGTTCCTCGTCGCGGACGAACCTGTCTCGATGCTCGACGTCTCGATCCGGCTCGGCGTGCTGAACCTGCTCGCCAGGCTGCAGCGCGAGGAGAACCTCGGGGTCCTCTACATCACGCACGACCTCGCCACCGCCCGGCACTTCAGCGACGAGATCGTCGTGATGTACCGCGGGGACGTCGTCGAGCAGGGGCCGAGCGACGAGGTGATCCTGGACCCGCAGCACGACTACACCAAGACGCTGCTCGCCGCGGCCCCGGAGCCGTCGCGGCACGGCCGGCTGCGCGACGAGGTGCGGGCCGAGCTCGCCGCCGGCTGAMSTLEVRNLVKEFKVRDGLRRSTLRAVNDVSFTLSAGRTVAVVGESGSGKSTVARMIAQLETPTSGEILLDDAAIGRRGRALADYRHQVQMVFQDPFASLNPYHSVEHHLARPLKLHGVARGKDVLPAVYGLLERVNLTPAPVFAEKRPHEMSGGQRQRIAIARALAPGARFLVADEPVSMLDVSIRLGVLNLLARLQREENLGVLYITHDLATARHFSDEIVVMYRGDVVEQGPSDEVILDPQHDYTKTLLAAAPEPSRHGRLRDEVRAELAAGPGPT0004440_8223DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032NANA
AK018_01463900oppDCOG0444Oligopeptide transport ATP-binding protein OppDATGACCGCGACGACGACGGCCGGGCCGCTGAGCTCGGCGGCGCACGCCGAGCACGTGGCCCGGCTGACCCCGGTGCTCACGGCGCACGACGTCTCGATCGAGTACGAGGTGGACCCGCCCGTGCGCGCCGTGCAGGGCGTCTCGCTGACGCTGCACCGCGGCGAGATCCTGGGGCTGGCGGGCGAGTCCGGCTGCGGCAAGTCCACGCTCGCGTACGGCCTGAACCGGCTGCTCAAGGATCCCGCGGTCCTGCGCTCGGGCGAGGTGACGTTCCACGACGCCGACGGCACGGACACCGACGTCGTCGCGCTGGACGGTGACGCGCTGCGGGCCTTCCGCTGGGACAAGGTGTCCATGGTCTTCCAGGGCGCCATGAACTCGCTGAACCCCGTGCTCAGCGTGCGCGCCCAGCTCGAGGACGTGCTCACCACGCACCGGCCGGGCCTGTCGAGGACCGAGCGCGGGGAGCGCTGCGCCGAGCTGCTCGAGATGGTGGGCGTCGACCCGGTGCGGCTGGACTCGTTCGCTCACGAGCTGTCCGGAGGCATGCGTCAGCGCGTCATGATCGCGATGGCGATGGCGCTCGAGCCGCAGGTCATGATCATGGACGAGCCGACCACCGCGCTCGACGTCGTGGTCCAGCGCGACATCCTGCGCGAGATCATGCGGCTGCGCGAACGTTTTGACTTCGCGGTCGTGTTCATCACCCATGACCTGCCGCTGCTGCTCGAGATCGCCGACCGCATCGCCGTGATGCGCGCCGGGGAGATCGTCGAGCTCGACACCGCCGAGCAGCTCTACGCGGCGGCGCAGCACGAGTACACGCAGACGCTGCTGTCCTCGTTCCCCAGCCTGCTGGGCGACTTCTCCTACGACGACGGCGAGGGGGCCGGACGATGAMTATTTAGPLSSAAHAEHVARLTPVLTAHDVSIEYEVDPPVRAVQGVSLTLHRGEILGLAGESGCGKSTLAYGLNRLLKDPAVLRSGEVTFHDADGTDTDVVALDGDALRAFRWDKVSMVFQGAMNSLNPVLSVRAQLEDVLTTHRPGLSRTERGERCAELLEMVGVDPVRLDSFAHELSGGMRQRVMIAMAMALEPQVMIMDEPTTALDVVVQRDILREIMRLRERFDFAVVFITHDLPLLLEIADRIAVMRAGEIVELDTAEQLYAAAQHEYTQTLLSSFPSLLGDFSYDDGEGAGRPGPT0004435_12729DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
AK018_014641041dppCCOG1173Dipeptide transport system permease protein DppCGTGACTGACACCCGCACCCGCACCGCGCCGTCGAGCGTGCCCCCGAGCGCGCCCCCGACCGCCCCGGCGACGACGTCGAAGCCGCCCCGTCGAGGCCTGCGCGGCCGCCTGGCCGGCCAGGGGAAGCTCGTCGTCGGCCTGGGGATCGTGATCGCCATCGTGCTGTTCGCGATCGTCGGCCCGTTCTTCACCCAGGATCCGCGCGACTCCGACAACGCGGCGATGCTGCCGCCGCAACCCGGGCACTGGCTCGGCACCACGAGCCTCGGCTTCGACGTGCTGGCCCAGCTCGCCGAGGGCGCCCGTGGCTCGCTGATGGTCGGCGTCGTCGCCGGTCTGCTCGCGATCGTGCTCTCCCTGCTGTTCGGCGTGGTGGCGGGTTACACCCGCGGGATCGCCGACGAGGGGCTCTCCCTCATCACCAACGTCATGCTGGTGATCCCCGGCCTCCCGCTGATGATCGTGGTCTCCAGCTACCTGGAGGTCCGCAGCCTGTTCGTCGTGGCGCTCATCCTGGGCGCCACCGCCTGGCCGGGGTCCGCCGTCATCCTGCGGCTCCAGGCCCGCTCGTTGCGCAAGCGTGACTACGTCTCGGCCGCGAAGGTCTCGGGGGAAAGGACCCCGAGGATCCTCATGGTGGAGATCCTGCCGAACCTGCTGCCGATCCTGACCGCGCAGTTCCTCTTCGCGGTGATCCTCGCGATCCTCGGCGAGGCCGGCCTGTCCTACCTGGGGCTCGGACCGAACGGCTCGATCACCTGGGGCACGATGCTCAACGAGGCGCAGGGCGGCGGCGCGCTGACCCGCGGCGCCTGGTGGTGGTTCATCCCGCCGGGCCTGATGATCGCGCTCCTGGGCTGCGCGCTGAGCCTGATCAACTTCTCCATCGACGAGGTCATCGACCCCAAGCTCCGTTCGGCCCCGGCCGCCGCGAAGAGCGTGCGCAAGGCGCGCAGGGCGGGCCTGGACGTGACGGTGCACGACGACGGCGCCCCGGTCCGCAGCGGGACCGACGCCCAGAAGGAGGCGGTGCGGCGATGAMTDTRTRTAPSSVPPSAPPTAPATTSKPPRRGLRGRLAGQGKLVVGLGIVIAIVLFAIVGPFFTQDPRDSDNAAMLPPQPGHWLGTTSLGFDVLAQLAEGARGSLMVGVVAGLLAIVLSLLFGVVAGYTRGIADEGLSLITNVMLVIPGLPLMIVVSSYLEVRSLFVVALILGATAWPGSAVILRLQARSLRKRDYVSAAKVSGERTPRILMVEILPNLLPILTAQFLFAVILAILGEAGLSYLGLGPNGSITWGTMLNEAQGGGALTRGAWWWFIPPGLMIALLGCALSLINFSIDEVIDPKLRSAPAAAKSVRKARRAGLDVTVHDDGAPVRSGTDAQKEAVRRPGPT0004450_2567DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
AK018_01465993dppB_2COG0601Dipeptide transport system permease protein DppBATGAGGTTCTACGCCCGTCGGATCGGGTTCTACGCGCTGACGCTGTGGATCGCGGTCACGCTGAACTTCCTGCTCCCGCGCCTGCTGCCCGGAGACCCGTACACGATCCTGCTGGCCAAGCTCCAGCGGAACGGGGACGTGTCACCGGCCATCCAGAACACGCTCCGGCTCCTCCTCGGCGCCGACGAGGACACCGGCCTGTGGGAGCAGTACACGACCTATCTGGGGAACCTGCTCCGCGGTGACCTGGGGATCTCGGTGACGCAGTTCCCCACCCCCGTCACCGACCTGATCGGCGGGGCGCTGCCCTGGACCCTCGGCCTGGTCGGCACGGCCACCGTGCTGTCCTTCGTCCTCGGTGTCGGGCTCGGCGCCTGGGCCGGGTGGCGTCGCGGCACCTGGGTGGACTCGATCATCCCGTCCACCACGCTGCTGCAGTCGCTGCCCTACTTCTGGGTCGCGCTGCTGTTCATCTTCGTCTTCAGCGTCACGCTGCAGTGGTTCCCCATCATCGGGGCGTACGACGTGTTCACGTTCGACGGCCCCGAGTGGAGCTGGGCGTTCGTCGGCTCCGTGCTCTACCACGCGTTCCTCCCGGCGCTGACGATCGTCATCTCGTCGGTCGGGGCCTGGCTGCTGGGGATGCGCAACATGATGGTCGCGACGCTCTCGGAGGACTACATCACCACCGCCGAGGCCAAGGGTCTGAGCCGGCGGCGCATCTTCAGCACCTACGCCGTGCGCAACGCCGCCATCCCGTCCGTGAACGGGTTCGGCATCGCGCTCGCCTTCGTCGTGGCCGGCTCCCTCGTCACCGAGCAGGTCTTCAGCTATCCCGGGCTGGGCAAGCTGATGATCGAGGCCGTCCGGAACAACGACTACGCGCTCATGCAGGGCGTGTTCCTCATGATCACCCTGGCCGTGCTCGCCGCCCTGTTCATCATGGACCTGGTGCACGGCCTCATCGACCCGAGGGCCCGCCACAGTGACTGAMRFYARRIGFYALTLWIAVTLNFLLPRLLPGDPYTILLAKLQRNGDVSPAIQNTLRLLLGADEDTGLWEQYTTYLGNLLRGDLGISVTQFPTPVTDLIGGALPWTLGLVGTATVLSFVLGVGLGAWAGWRRGTWVDSIIPSTTLLQSLPYFWVALLFIFVFSVTLQWFPIIGAYDVFTFDGPEWSWAFVGSVLYHAFLPALTIVISSVGAWLLGMRNMMVATLSEDYITTAEAKGLSRRRIFSTYAVRNAAIPSVNGFGIALAFVVAGSLVTEQVFSYPGLGKLMIEAVRNNDYALMQGVFLMITLAVLAALFIMDLVHGLIDPRARHSDPGPT0004445_4920DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
AK018_014661746gsiBCOG0747Glutathione-binding protein GsiBATGTACGGACGGACGAGGCGCCAGCGCTGGCTCACCGCCACCGCACTCGCCGCGAGCGTGACCCTCCTCGCCGCCGCCTGCGGCGGCGGGGCGGACGACCCGGAGACCACCGACACCAGCGAGTCGCAGTCGACCGACGGCGGCGAGGGCGTCGCCACCGACCGCGAGCTCGTGATCTGGGCCGGTTCCCAGACCCCCATCACGGCGAACTTCAACCCCTACGCCGTGGGCGTGCTCCACCTGGCCAACGGCGGCATCTACGAGACGCTGTTCGCCTACAACAAGGCCGCCGACACCGAGCCCATCTCGATGCTCGGCACCGGGTTCGAGTGGAACGAGGACGGCACCGAGCTGACCGTCACGATCCGCGAGGGCGTGACCTGGAACGACGGCGAGCCGTTCACCACCGACGACGTCGTGTACTCGTTCACCAACGACGCCGCGCAGCCCGCGTACCTCGCCGGCGCCGAGGCCGTCGACGACACGACCGTGGTGCTGTCCTTCGACACCCCGCAGTACACCAACGAGTTCGCGCTGCTCGGCTCCACCTACATGGTTCCCGAGCACGTCTTCAGCGCGAACGAGGACGCCGAGGACGCCGAGGCCGAGCTCACCGGCATCGTCGCCTGGCCCAACGCGGAGGCCCCGGTCGGGACCGGCCCGTACCTGGTGGACTCCACCTCCGACGCCGCCTACACGGCGGTCGCGAACCCGGAGTACTGGGGCGGCGAGCCGCAGGTGTCGAACCTGCGCTACATCGGCATCGACTCGAACCAGTCCGCGGAGGACCTGCTGGCCACCGGCCAGATCGACTGGGCGACCATGTTCGTGCCCGAGCCCGACCGCCTGGTCGACGCCGGCCTCGGCTACCTCAACACCCAGGTCGACCCGACGGTGCTGTACACCTGCGCCGACGCCGACATGGGCTGCTCCGGCGAGCAGACCGACGTCGCCGTACGCCAGGCCCTGAGCGTGGCCATCGACCGCGGCGCCATCAACGAGAAGGCGTTCGTGGGCCTGGCCAAGGAGATCTCCCCGACGTTCGCCCTGCTCGGCCGTGACGACAAGTGGATCGCCGACGGCATGCCCGCCGCGATCGAGCAGTCCGCCGACGCCGCGCAGGCCGGCGAGATCCTCGAGGCCGCCGGCTACGAGAAGGACGCCGACGGGTTCTACGGCAAGGACGGCGAGACCGTCGAGCTCACGCTGACCTCCGTGGACGGCTGGACCGACTACAACAACGCCGCCAAGCTGATCGAGGAGCAGGCCGCCGAGGCAGGCATCAAGGTCGTCGCCTCGACCGTCTCCTGGAACGAGTTCGCAGACTCCCGCACCTCCGGCGAGTTCGAGCTCATCATGGGCGGCGTCGTCGGCACCTCCACCGCCGACCCGTACCAGATCTACCGCGACTGGTTCACCAGCGGGTACACCACCGAGGTGGGCACCCCGCTGGAGCCCGGGTTCTGGAACTTCTCCCGGTACTCGAACGAGGAGGTCGACGCCGCGGTGGCAGAGGCCTCCGCGACGAACGACGACGCGGTCAAGGCCGACGCCTACGCGACCGTCCAGGAGCACATCGTCAACGACGTGCCGTACATCCCGCTGCTGGTCAACGCCTCGCAGACGTTCTACAACCAGAACGACTACACCGGCTGGCCCACGGAGGAGGACCTCTACCTCTTCCCGCCGGCCTGGCAGGGGCCGTCCTCCGGCGTGATCCTCGGCAACCTCGCCGGGACCGAGTGAMYGRTRRQRWLTATALAASVTLLAAACGGGADDPETTDTSESQSTDGGEGVATDRELVIWAGSQTPITANFNPYAVGVLHLANGGIYETLFAYNKAADTEPISMLGTGFEWNEDGTELTVTIREGVTWNDGEPFTTDDVVYSFTNDAAQPAYLAGAEAVDDTTVVLSFDTPQYTNEFALLGSTYMVPEHVFSANEDAEDAEAELTGIVAWPNAEAPVGTGPYLVDSTSDAAYTAVANPEYWGGEPQVSNLRYIGIDSNQSAEDLLATGQIDWATMFVPEPDRLVDAGLGYLNTQVDPTVLYTCADADMGCSGEQTDVAVRQALSVAIDRGAINEKAFVGLAKEISPTFALLGRDDKWIADGMPAAIEQSADAAQAGEILEAAGYEKDADGFYGKDGETVELTLTSVDGWTDYNNAAKLIEEQAAEAGIKVVASTVSWNEFADSRTSGEFELIMGGVVGTSTADPYQIYRDWFTSGYTTEVGTPLEPGFWNFSRYSNEEVDAAVAEASATNDDAVKADAYATVQEHIVNDVPYIPLLVNASQTFYNQNDYTGWPTEEDLYLFPPAWQGPSSGVILGNLAGTEPGPT0004430_3645DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
AK018_014671476rnr_2COG0557Ribonuclease RGTGCCCACCCGACAGCTCCGCATCGCACCCGCCGCACCGGAGGACGTCGCGGACGCGCTCGCGGCGCTGCGGGCGGAGGTCGGGATCCCGGCGATGTATCGGGCGGAGGCGCGGGACGAGGCGGTCGAGGCCGCTCGCGGCGACCTGAAGGACTTCCGGCAGGACCGGCGGGACCTGGACCTGGTCACCATCGACCCGCCGGGGTCGATGGATCTCGACCAGGCGGTCCATGTCGCCACGTCGGGTCACGGGTACGTGGTGCGCTACGCCATCGCGGACCTGGCGGCGTTCGTCTCGCCGGGCGGTGCGCTGGACGCGGAGGTGCACCGGCGGGGCGTGACCTTCTACGGCCCGGACACGCGCACCCCGCTGCACCCGCCGGTGCTGGGGGAGGGCGCGGCGAGCCTGCTGCCGGGGGAGGACCGCCCCGCGGTGCTGTGGACGATGGCCCTGGACTCCTCGGGCGAGCTGACGAGCGCGTCGGTGACCCGCGCCGTCGTGCGGTCCCGCGCGCGGCTGACGTACGGGGAGGCGCAGACGGCCCTGGACTCGGGGACGGCGCCGGAACCGCTGGTGCTGCTCGCGGACGTGGGGCGGCTGCGGGAGGCCAGGGAGCGCGACCGCGGCGGCGTGTCCCTCGCGGTGCCGGAGCAGGAGGTGCTGCAGCGCCCCGACGGCACGTTCGGCCTGGAGCTGCGGCGGACGGTGCCGATCGAGGGGTGGAACGCCCAGATCTCGCAGCTGACGGGGATCGCCGCGGCCCGGCTGATGCGGGACGCGGGCGTGGGTCTGCTGCGGACGTTGCCGCCGGCGGCCGACGACGACGTGGCCCGGCTGCGGCGGACGGCCGCGGCGCTCGGGATCGACTGGCCGGAGGACGCCGGGTACGCCGACGTGCTCGCGGGGGTCGAGTCGCGCCGGGCGGCGCACGCGGCGTTCCTGACGGAGGCGACGACGCTCTTCCGTGGGGCGGGGTACCTCGCCTTCGGGGTGCCGGGGCCCGACGGCGGGGCGAAGGTCGCGCTGCCGGACGACGCCTCGCACGCCGCCCTGGGGGTGGAGTACGCCCACGTCACGGCCCCGTTGCGGCGGCTCGCGGACCGGTACGCCACGGAGGTCTGCCTCGCGCAGTCGGCCGGCCGGGCCGTGCCGGGGTGGGTGCTGGCGGCGCTGCCCGGGCTGCCGGGGACGATGGCGACCGCCGCGCGGCGGGCTGCGGCGTTCGAGCGGGCCTGCGTGGACATCGTGGAGGCGGCGCTGCTCGCGCCTCGGGTGGGCCGGCGGTTCGAGGGCGTCGTGGTGTCCGCTGACGGCGAGCCGGGCGCGGACGCCGTGCGGCGGGGCGAGGTCATGCTGCGCGAGCCGGCGGTGCGGGCCCGGGTGCAGGGGACGGAGCTCCCGCTGGGTGAGCGCACCAAGGTGACGCTCGCCGAGGCGTCCGTCGCCGAACGTCGCGTGCTCTTCACGCTGCCCTGAMPTRQLRIAPAAPEDVADALAALRAEVGIPAMYRAEARDEAVEAARGDLKDFRQDRRDLDLVTIDPPGSMDLDQAVHVATSGHGYVVRYAIADLAAFVSPGGALDAEVHRRGVTFYGPDTRTPLHPPVLGEGAASLLPGEDRPAVLWTMALDSSGELTSASVTRAVVRSRARLTYGEAQTALDSGTAPEPLVLLADVGRLREARERDRGGVSLAVPEQEVLQRPDGTFGLELRRTVPIEGWNAQISQLTGIAAARLMRDAGVGLLRTLPPAADDDVARLRRTAAALGIDWPEDAGYADVLAGVESRRAAHAAFLTEATTLFRGAGYLAFGVPGPDGGAKVALPDDASHAALGVEYAHVTAPLRRLADRYATEVCLAQSAGRAVPGWVLAALPGLPGTMATAARRAAAFERACVDIVEAALLAPRVGRRFEGVVVSADGEPGADAVRRGEVMLREPAVRARVQGTELPLGERTKVTLAEASVAERRVLFTLPNANANANANA
AK018_014682229icd_2COG2838Isocitrate dehydrogenase [NADP]ATGACCACCGAGTCCCGGCCTGCGGCCGGCAAGATCGTCTACACGTACACCGACGAGGCACCGCTGCTCGCGACGTACTCGTTCCTCCCGATCGTCCAGGCGTACGCGAAGCAGGCGGGCGTCGAGGTCGAGACCCGGGACATCTCGCTGGCCGGGCGCATCCTCGCCCAGTTCCCCGAGACGCTCGGCGACGAGCGCGTCGAGGACGCCCTCGCCGAGCTCGGTCAGATGGCCACCACCCCCGAGGCCAACATCATCAAGCTGCCGAACATCTCGGCCTCCGTGCCCCAGCTCAAGGCGGCCATCGCCGAGCTGCAGGCCGCCGGCTACGCCATCCCGGACTACCCGGAGGAGCCGACCACCGACGCCGAGCGCGCCGCCCGCGCCGCGTACGACAAGGTCAAGGGCTCGGCCGTCAACCCGGTGCTGCGCGAGGGCAACTCCGACCGCCGCGCACCCTCGGCCGTCAAGAACTACGCCAAGGCGCACCCGCACCGCATGGGCGAGTGGAGCGCGGACTCGAAGACCGAGGTCGCCACCATGGGTGCGGCGGACTTCCGCTCCAACGAGCAGTCCGTCGTCATCCCCGCCGCCGACAGCCTCACCATCCGCCTGCGCACCGCCGACGGCACCACCGTGCTCAAGGACGGGCTCGCCGTCGAGGCCGGCGAGGTCGTCGACGCCACCTTCCTGTCCGTCGCCGCGCTGCACACGTTCCTCGCCGAGCAGATCCAGCGCGCCAAGGACACCGGCGTGCTGTTCTCCGCCCACCTCAAGGCCACGATGATGAAGGTCTCCGACCCGATCATCTTCGGGCACATCGTCGAGGCGTTCCTGCCCGAGGTGTTCGAGCGGTACGGCGCCGAGCTCAAGGCCGCCGGCCTCTCCACGCGCGACGGGCTCGGCGGCATCCTCGCCGGCCTCGACGGCCTCGAGCACGGCGCCGAGATCAAGGCCGCCGTCGAGAAGGGCCTGGCCGACGGACCGGCGCTGGCGATGGTGGACTCCGACCGCGGCATCACCAACCTGCACGTGCCCTCCGACGTCATCATCGACGCCTCGATGCCCGCCATGATCCGTATCGGCGGGCACATGTGGGGCCCGGACGGCGCCGAGCACGACACGCTCGCCGTCATCCCCGACTCGTCCTACGCCGGCGTCTACCAGGCCGTGATCGAGGACTGCAAGGCCAAGGGCGCCCTCGACCCCGCCACCATGGGCTCGGTGCCGAACGTCGGCCTCATGGCCCGCAAGGCCGAGGAGTACGGCTCGCACGACAAGACGTTCGAGATCCCGGCCGCCGGCACCGTCGAGGTCGTCAGCGGCTCCGGCGAGGTCCTCATGTCGCACGACGTCGAGGCCGGCGACATCTGGCGCGCCTGCCAGACCAAGGACGCCCCGATCCGCGACTGGGTCGGCCTGGCCGTGCGCCGTGCCCGCGAGTCCGGCGCGCCCGCCGTGTTCTGGCTGGACGAGACCCGCGCGCACGACAAGAACCTCATCGCCAAGGTCGAGGAGTACCTCCCGGAGCACGACACCGAGGGGCTCGAGATCCTGGTCATGAACCCCGCCGAGGCGACGCAGTACTCCCTGGACCGCATCCGCGAGGGCCTGGACACCATCTCGGTGACCGGCAACGTGCTGCGCGACTACAACACGGACCTGTTCCCCATCCTCGAGGTCGGCACGTCCGCCAAGATGCTCTCGATCGTGCCGCTGATGAACGGTGGTGGCCTGTTCGAGACCGGCGCCGGCGGCTCCGCGCCGAAGCACGTCCAGCAGCTGCTCGCCGAGAACTATCTGCGCTGGGACTCCCTGGGTGAGTTCTTCGCGCTCGCCGCCTCGTTCGAGCACCTGGCCAAGGTGGAGGACAACGCCCGCGCCCGCGTGCTGGCCGACACCCTCGACCACGCCACCGAGACCTTCCTCAACGAGGACAAGGGCCCGACCCGGCGCATCGGCGGCATCGACAACCGGGGCTCGCACTTCTACCTGGCGCTGTACTGGGCCCAGGAGCTCGCGCAGCAGACCGAGGACGCCGCGCTGGCGGAGATCTTCGGGCCGCTCGCCGCGAAGCTCGCCGGTGACGAGGCCACGATCGTCGACGAGATGCTCGCCGTGCAGGGCAACCCGGCCGACGTCGGCGGGTACTACTGGCCGGACGGCGACAAGGCCGCCAAGGTGATGCGCCCGTCGGCGACGCTGAACGCGGCGATCGACGCGCTCTGAMTTESRPAAGKIVYTYTDEAPLLATYSFLPIVQAYAKQAGVEVETRDISLAGRILAQFPETLGDERVEDALAELGQMATTPEANIIKLPNISASVPQLKAAIAELQAAGYAIPDYPEEPTTDAERAARAAYDKVKGSAVNPVLREGNSDRRAPSAVKNYAKAHPHRMGEWSADSKTEVATMGAADFRSNEQSVVIPAADSLTIRLRTADGTTVLKDGLAVEAGEVVDATFLSVAALHTFLAEQIQRAKDTGVLFSAHLKATMMKVSDPIIFGHIVEAFLPEVFERYGAELKAAGLSTRDGLGGILAGLDGLEHGAEIKAAVEKGLADGPALAMVDSDRGITNLHVPSDVIIDASMPAMIRIGGHMWGPDGAEHDTLAVIPDSSYAGVYQAVIEDCKAKGALDPATMGSVPNVGLMARKAEEYGSHDKTFEIPAAGTVEVVSGSGEVLMSHDVEAGDIWRACQTKDAPIRDWVGLAVRRARESGAPAVFWLDETRAHDKNLIAKVEEYLPEHDTEGLEILVMNPAEATQYSLDRIREGLDTISVTGNVLRDYNTDLFPILEVGTSAKMLSIVPLMNGGGLFETGAGGSAPKHVQQLLAENYLRWDSLGEFFALAASFEHLAKVEDNARARVLADTLDHATETFLNEDKGPTRRIGGIDNRGSHFYLALYWAQELAQQTEDAALAEIFGPLAAKLAGDEATIVDEMLAVQGNPADVGGYYWPDGDKAAKVMRPSATLNAAIDALPGPT0001170_504DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001170-icd-K00031NANA
AK018_01469393hypothetical proteinATGACGTGGCTCGCGGCGTTCCTGCTGGCCGGCACCGTGCTGCTGGGCGTGGTGGCCGGCACGTCGTGGTGCCGTTCACCGTCGCACCGTGCCGCCGTCGCCCGGCGTCGGCGGCGACGGGCGGGCCCCGACCCGCTCGTGACGCTGGCGATCCAGATCCGGCTCGGCGAGCTCTCCCGCGAGCTCCGCACCGTCGCGGAGGATCCCGGGGTCTACGCCCGAGCCCACCACTGGCGGGCCGCCCAGGACGCGTACGACGCCATGCTGCGTGAGGCCTGTCGCGTCGCCGGGCTGTCCGTCGTCGACCAGCCGCTCCGTCCCGACGAGCACGTCGCCGCGGACGAACGGCTCCGCGAGGAGCTCGAGCTGAGCTCCCGGGGCTGGAACTGGTGAMTWLAAFLLAGTVLLGVVAGTSWCRSPSHRAAVARRRRRRAGPDPLVTLAIQIRLGELSRELRTVAEDPGVYARAHHWRAAQDAYDAMLREACRVAGLSVVDQPLRPDEHVAADERLREELELSSRGWNWNANANANANA
AK018_01470486dps_2COG0783DNA protection during starvation proteinATGACCACTCCGTCGATCGATCGCACCACCGACCGCGTCCAGGCGTCGGAGAAGCTCACCACGAGCCTCCAGCGCGTCCTCGTCGCCCTCGTCGACCTGCACGTGCAGGGCAAGCAGGCCCACTGGAACGTCACCGGCCGCGGATTCCGCGACATCCACCTCCAGCTGGACGAGGTCGTCGACGTCGCCCGCGAGCACAGCGACACCGTCGCCGAGCGGCTCCGCGCCCTGCAGGTCGTCCCCGACGGCCGGTCCGAGACGGTCGCCACGACCACCGAGCTCTCGCCGTACCCGGCCGGGCTCGTCTCCGTCGGCGACACCGTCGACGCGATCGTCGAGCGCCTGACGCAGACCGTCGAGGTCGCCCGCGCGGTCCACGACGACGTCGACGCCGAGGACCCGACCACCGCGGACCTCCTGCACGAGATCATCCACGACCTCGAGAAGCAGGCCTGGATGATCGCCTCGGAGAACACCGAGGTCTGAMTTPSIDRTTDRVQASEKLTTSLQRVLVALVDLHVQGKQAHWNVTGRGFRDIHLQLDEVVDVAREHSDTVAERLRALQVVPDGRSETVATTTELSPYPAGLVSVGDTVDAIVERLTQTVEVARAVHDDVDAEDPTTADLLHEIIHDLEKQAWMIASENTEVPGPT0004055_2202DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047NANA
AK018_014712334purL_2COG0046Phosphoribosylformylglycinamidine synthase subunit PurLATGACCGCCGCTGCCGAGGCTGCCGCCCCCCGTCCGACGCTCGACACCGTCGAGAACGCCGCCGCGACGCCCGACGAGACCCTGCCGTTCGGGGAGCTCGGCCTCAAGCCCGACGAGTACCAGCGCATCCGCGACATCCTCGGGCGGCGCCCCACCGCCGCCGAGCTCGCCATGTACTCGGTCATGTGGTCCGAGCACTGCTCCTACAAGTCGTCCAAGCCGCACCTGCGCAAGTTCGGCGAGCGCGTCACCCCCGAGATGACGCGGCACCTGCTGGTCGGCATCGGCGAGAACGCCGGCGTCGTCGACATCGGCGACGGCTGGGCCGTGACCTTCAAGGTCGAGTCGCACAACCACCCGTCGTTCGTCGAGCCGTACCAGGGTGCCGCCACCGGCGTCGGCGGCATCGTCCGCGACATCATCTCCATGGGCGCGCGCCCCGTCGCCGTCATGGACCAGCTCCGCTTCGGGGCCGTGGACCACCCCGACACCGCACGCGTCGTGCACGGCGTGGTGTCCGGCGTCGGCGGCTACGGCAACTCCCTCGGCCTGCCGAACATCGGTGGCGAGCTCGTCTTCGACGCCTCCTACCAGGGCAACCCGCTGGTCAACGCCCTGTGCCTCGGCGTGCTGCGGCACGAGGACATCCACCTCGCCAACGCCTCCGGCGCCGGCAACAAGGTGATCCTCTTCGGTGCCCGCACCGGCGGCGACGGCATCGGCGGCGCCTCCATCCTCGCCTCCGAGACCTTCGAGGACGGCGTGCCCGCCAAGCGCCCGTCGGTGCAGGTCGGCGACCCGTTCATGGAGAAGGTGCTCATCGAGTGCTGCCTCGACCTGTACGCCGCACGCGTCGTCGAGGGCATCCAGGACCTCGGTGCCGCCGGCATCTCCTGCGCCACCAGCGAGCTCGCCTCCAACGGCGACGGCGGCATGCACGTCGACCTCGACGACGTCCTGCTGCGCGACCCCTCGCTCAACGCCGGCGAGATCCTCATGTCGGAGTCGCAGGAGCGGATGATGGCCGTGGTGCGGCCCGAGAAGCTCGACGAGTTCCTCGCCATCACCGGCCGCTGGGACGTCGAGACCTCCGTCATCGGCGAGGTCAACGGCTCCGGGCGCCTCACCATCGACCACCACGGCCAGCGCATCGTCGACGTCGACCCGAAGACCGTCGCCCACGAGGGCCCCGTCTACGACCGCCCCTACGCCCGCCCCGCCTGGCAGGACGAGCTGCAGGCGGCGTCCGTCGTCGGGCTCGGGCTGGAGCGTCCGGCGTCGGCCCCTGATCTGCGCGCGGCCGCGCTGCAGCTCCTCGGCTCGCCGAACCTCGCCTCCCCGGCCTGGGTGACCGACCAGTACGACCGGTACGTGCAGGGCAACACCGCGCTCGCCCAGCCCGACGACGGCGGCGTGGTGCGCGTCGACGAGTCCACCGGCCTGGGCGTCGCCCTGGCCACGGACGCCAACGGCCGGTACGGCAAGCTCGACCCGCGCACCGGCGCGCAGCTGGCGCTGGCCGAGGCGTACCGCAACGTCGCCACCACGGGCGCCACGCCCCTGGCGGTCACCGACTGCCTCAACTTCGGCTCCCCGGAGCACCCCGACTCGATGTGGCAGCTCGTCGAGGCCATCGAGGGCCTGGCCGACGCCTGCCAGGAGCTCGCGGTGCCTGTCACGGGCGGCAACGTCTCCCTGTACAACGGCACCGGCGAGCCGGGCCAGATCGACTCCGCCATCCACCCGACGCCGGTGGTCGGTGTGCTCGGCGTGCTGGAGGACGTGCGCACCGCGCTGGCCTCGGGCTGGCGGGAGGCGGGCGCGTCGGTGCTGCTGCTCGGCGCGACGGCCGACGAGCTCGACGGCTCGGCGTGGGCCGACGTCGTCCACCAGCACCTGGGCGGGCTGCCGCCGCGCGTCGACCTCGAGGCCGAGCGTGCGCTCGCGTCCGTCCTGGTCGGGGCCCGGCGGTCAGGTGCCGCGACGGCGGCCCACGACCTGTCCGAGGGCGGGCTCGTGCAGGCGCTCCTCGAGTCGTCGCTGCGGCACGGCGTCGGTGTGTCGGTGTCCCTGGACGAGCTGACGACCCGCGACGGGGTGGACCCGTTCGTGGCCCTGTTCAGCGAGTCGACGGCCCGGGCGCTCGTCGCGGTGCCGGCCGAGCGGGAGGACGAGCTGCTGGCCGCCGCCGCCGAGGCCGGTGTGCCCGCGCTGCGGCTGGGCACGACCGGCGGCAGCGCCGTCTCGGTGTCCTTCGGCGAGGAGTCGTTCGAGATCGGTCTCGACGAGGCCCGTGAGGTCCACGAGGGCACGCTCCCGCGCCTGTTCGGCTGAMTAAAEAAAPRPTLDTVENAAATPDETLPFGELGLKPDEYQRIRDILGRRPTAAELAMYSVMWSEHCSYKSSKPHLRKFGERVTPEMTRHLLVGIGENAGVVDIGDGWAVTFKVESHNHPSFVEPYQGAATGVGGIVRDIISMGARPVAVMDQLRFGAVDHPDTARVVHGVVSGVGGYGNSLGLPNIGGELVFDASYQGNPLVNALCLGVLRHEDIHLANASGAGNKVILFGARTGGDGIGGASILASETFEDGVPAKRPSVQVGDPFMEKVLIECCLDLYAARVVEGIQDLGAAGISCATSELASNGDGGMHVDLDDVLLRDPSLNAGEILMSESQERMMAVVRPEKLDEFLAITGRWDVETSVIGEVNGSGRLTIDHHGQRIVDVDPKTVAHEGPVYDRPYARPAWQDELQAASVVGLGLERPASAPDLRAAALQLLGSPNLASPAWVTDQYDRYVQGNTALAQPDDGGVVRVDESTGLGVALATDANGRYGKLDPRTGAQLALAEAYRNVATTGATPLAVTDCLNFGSPEHPDSMWQLVEAIEGLADACQELAVPVTGGNVSLYNGTGEPGQIDSAIHPTPVVGVLGVLEDVRTALASGWREAGASVLLLGATADELDGSAWADVVHQHLGGLPPRVDLEAERALASVLVGARRSGAATAAHDLSEGGLVQALLESSLRHGVGVSVSLDELTTRDGVDPFVALFSESTARALVAVPAEREDELLAAAAEAGVPALRLGTTGGSAVSVSFGEESFEIGLDEAREVHEGTLPRLFGPGPT0021730_209DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021730-purL-K23269NANA
AK018_01472552hypothetical proteinGTGACCGAGCACCCCGAGACCGACGGGGACCCGTACTTCTACGGGCCCGGCGACGACGCACCCCGCAGCCTGCTGGAGGCGCTGCGCGTCTTCCGGCGCTCCGACGAGGTCATGCGCCGCCGTGCCGTGCGGGACATGGACATGAACCTCACCGACCTGCGGGCGCTGCGCCACGTCATCGCCGCCGAGCGCCACGACCGCCCCGTCACGCCGCGGGGGCTGGCCGCCGACCTCGAGATCTCCACCGCCTCCACCACCAAGCTGCTCGACCGCCTCAGCGCCTCCGGACGCCTCGAACGCCGACCGCACCCCCGTGACCGGCGCTCCGTCGTCGTCGTGGCCACCCCCGCCGCCCACGCCGAGGTCCGCGACCGGCTCGGCGGGGCGCACGCCCGCATGATCGAGGTCGCGCGCGCCGTGCCCGAGCACTGCCGGCCCGCCGTGCGGGACTTCCTGCTCGGCATGGCGGCGTCGGTCGAGGAGTCCGACGACGACGTCGCGGGCAGCGTCGTCGGCGATGTCGGGACCGTGCGCCCGGCGTCGGTAGACTGAMTEHPETDGDPYFYGPGDDAPRSLLEALRVFRRSDEVMRRRAVRDMDMNLTDLRALRHVIAAERHDRPVTPRGLAADLEISTASTTKLLDRLSASGRLERRPHPRDRRSVVVVATPAAHAEVRDRLGGAHARMIEVARAVPEHCRPAVRDFLLGMAASVEESDDDVAGSVVGDVGTVRPASVDNANANANANA
AK018_01473999COG0142(2E,6E)-farnesyl diphosphate synthaseGTGGACGGACCGCACCCCCCACCGGACCTGTCGCTCTGGCAGACCCTGCGCACCACCACCGAGGGCGGCAAGCGGGTGCGCCCGAGGCTGCTCACCGCCACCTACGACGCGCTCGCCGGGCCCTGCTCCCCCGCCCCGCGCGACGTCGTGGACCGCGTGGCCGACGCCGTCGAGCTCCTCCACGTCGCCTTCCTCGCGCACGACGACGTCATCGACGACGACGAGTACCGCCGCGGCCGGGCCAACGTCGCCGGCGTCTACGCGGCACGGGCGCGCAGCACCGGCGCCGCCGAGGACGCCGCGCACGACGTCGGCGCCGCGGCCGGCCTGCTCGCCGGGGACCTCGCGCTCGCCGGTGCGGTGCGGGACGTCGCGCTGTGCGGCGCCGACCCCGTGCTCACGGCGCGCCTGCTGGACCTCATGGACGAGGCCCTGCACGTCACCGCCGACGGCGAGCTGCGCGACGTGTGGGCGGACGCCCACCGCGGTGCCGGGCTCGAGGACGTGCTGCTCACCGCCGAGCGCAAGACCGCCGCGTACTCGTTCCAGCTCCCGATGCGTCTCGGTGCCGCGCTCGCCGGCCGGGGCGACCTCGACGACCGTCTCGTCACGATCGGCCGGCATCTCGGCGTGGCCTTCCAGGTCCGCGACGACGTGCTCGGGACCTTCGGGGACCCGGCCCGCACCGGCAAGCCGGCCAGCACCGACCTGCGCGAGGGACGCTGCACGGTGCTCGTCGCCCTGGCGCGCGGCACCGACGTCTGGCCACGGCTCGCACCGCTCGTGGGCCGCGCCGACGCCACCGACGCCGACCTCGACCTCGCGCGCACCCTCCTCGAGGAGTGCGGTGCCCGCAGCACCGCCGAGGACCTGGCGGGACGGTTCGAGCAGGCCGCGCTGCGGACGGCGACCGGCGTCGGCCTCGACGCCGCCGTCGCCGCCGTCCTGGGGCACGCCGCCCCGACGACGAGCGCCGGGACGGCGGTGCAGGCAGCATGAMDGPHPPPDLSLWQTLRTTTEGGKRVRPRLLTATYDALAGPCSPAPRDVVDRVADAVELLHVAFLAHDDVIDDDEYRRGRANVAGVYAARARSTGAAEDAAHDVGAAAGLLAGDLALAGAVRDVALCGADPVLTARLLDLMDEALHVTADGELRDVWADAHRGAGLEDVLLTAERKTAAYSFQLPMRLGAALAGRGDLDDRLVTIGRHLGVAFQVRDDVLGTFGDPARTGKPASTDLREGRCTVLVALARGTDVWPRLAPLVGRADATDADLDLARTLLEECGARSTAEDLAGRFEQAALRTATGVGLDAAVAAVLGHAAPTTSAGTAVQAAPGPT0007560_638DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007560-crtE|ispA-K13789NANA
AK018_01474930crtB15-cis-phytoene synthaseATGACCCTCGTGCACGACCGTGACGACGCGACCACCGACCACCGGCAGCAGGCCGCGCCCGCACGCCGCGACGAGCCCGCCACGACCTACGACGTCGCGGCGACGCGCAGCGCGGCCACCGTGGTCGAGGAGTACTCCACGTCCTTCGGGTGGGCCTGCCGGCTCCTCGGTCCCGAGGTCCGCGACCACGTGCGCGCCGTCTACGCCCTGGTGCGCGTCGCCGACGAGATCGTCGACGACATCGACGTCGAGCTGACCACCGAGCAGCGCGGCGCCCTGCTGGACGGCATGGAGGCCGAGACCGCCGAGGCGGTGCGCGTCGGGCGCAGCACCAACCTCGTGGTGCACGCGTTCGCCCGCACGGCCCGCAGGTTCGGGATCGGCGCGGAGCTCACCGCGCCCTTCTTCGCCTCGATGCGGGCCGACCTGACCGTCACCGAGCACGACGCCGACAGCTTCGAGGAGTACGTGTACGGGTCCGCCGAGGTGGTCGGCCTGATGTGCCTGCGGGTGTTCGTCGACGGCGACGACGCCGCCTACGAGCGGCTGGCCCCGGGGGCGCGGAGGCTGGGGGCCGCGTTCCAGAAGGTCAACTTCCTGCGGGACCTGGCCGACGACGTCGACGGCCGCGGCCGGACCTACTTCCCCGGCCTCGACGTCGCCTCCTTCACCGACGCCGACCGGGACGCGCTCCTGGCCGACGTCGACGCCGACCTGGACGCCGCCGCGACCGCCGTCAGCGACCTGCCCCGGAACAGCCGCCTGGCCGTGCGCACCGCGCACGGGCTGTTCGCCGAGCTGTCCCGGCGCCTGCACCGCACCCCGGCCGCGACGCTGCGCACCCGCCGGGTGCGGGTGCCGGACGCCGTCAAGGCCCGCATCGTGCTGGCGGCCGCCGCCCGCGAGGCCGCCGGGCGGGTGCGCTCGTGAMTLVHDRDDATTDHRQQAAPARRDEPATTYDVAATRSAATVVEEYSTSFGWACRLLGPEVRDHVRAVYALVRVADEIVDDIDVELTTEQRGALLDGMEAETAEAVRVGRSTNLVVHAFARTARRFGIGAELTAPFFASMRADLTVTEHDADSFEEYVYGSAEVVGLMCLRVFVDGDDAAYERLAPGARRLGAAFQKVNFLRDLADDVDGRGRTYFPGLDVASFTDADRDALLADVDADLDAAATAVSDLPRNSRLAVRTAHGLFAELSRRLHRTPAATLRTRRVRVPDAVKARIVLAAAAREAAGRVRSPGPT0007375_1536DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007375-crtB-K02291NANA
AK018_014751638crtN_24,4'-diapophytoene desaturase (4,4'-diaponeurosporene-forming)GTGAGGGTCGTCGTCGTCGGCGGCGGGATCGCCGGGCTGGCGACCGCCGGCCTCCTGGCCCGGGACGGGCACGAGGTGGAGCTGCTGGAGCGGCACGACCGCGTCGGCGGCCGGGCCGGGTCGTGGGAACGCGACGGGTTCCGGTTCGACACGGGCCCGTCGTGGTACCTGATGCCGGAGGTCTTCGACCACTTCTTCGCGCTCATGGGTTCCTCGACGCGGGCGGAGCTGGACCTGGTCGCGCCGGACCCGGCCTACCGGGTGTTCTTCGAGGGGCACCCGGGGCCGTTCGACGTGTCACGGGACCGCGCGGCGAACGTGGCGGCCTTCGAGGCGGTGGAGCCGGGTGCCGGTGCGGCGCTGGAGCGTTACCTGGACCAGGCCCACGACACGTACGACGTCGCGCTGCGGCGGTTCCTGTACACGTCGTTCGACTCGTTGCGGCCGTTCACCCACGCGGACGTGCTCCGCCGGGCCCACCGGCTGGCGCCGCTGCTGTCCCGCTCGCTGGCCGGGCACACGGCCTCGCGGTTCGACGACGTGCGGCTGCGCCAGGTCCTGGGCTACCCGGCGGTGTTCCTGGGGTCGTCCCCGGACCGCACCCCCGCGCTGTACCACCTGATGAGCTCGCTCGACCTGGACGGTGGCGTGCGCTACCCGCAGGGCGGCTTCGCGCACCTGATCGAGCGGGTCGCCGCGCTGGCGACGGCGGCGGGGGTGACCGTGCGGACCGGTGCCACGGTGACGGCGGTCAGCACCACCGGCACCGGGGCGCCGCCCGTGGCCCGGTCGGGGCGCCGTCGTGAGCTGGTCCCCGGCCCGCGGCGGCCGCGGGCGCGCGTCACGGGGGTGCGCTGGTCCGACGTGCACGGGACCGCGCACCACGCCGCGGCCGACGTCGTGGTGACGGCCACGGACCTGCACCACGCGGAGACGGCCCTGCTGCCGCCCCGCCTGCGCAGCCACTCCCCCGGACGCTGGGACCGGCTCGACGCCGGCCCCGGGGGCGTCCTGGCGATGCTGGGGGTGCGCGGCCGGGTCCCCGAGCTGGCGCACCACTCGCTGTTCTTCACCGCCGACTGGGACCGCAACTTCGGCGACATCGCCGCGGGGCGGATCCCGGACCCCGCGTCGCTGTACGTGTGCACGCCGTCGCGCACGGATCCCACGGTGGCGCCGGACGGTGACGAGAACCTGTTCGTGCTCGTGCCGGTGCCGGCGGACCCGACGATCGGCCGCGGCGGGGTCGACGGCGCGGGCGACCCGCTCGTCGAGCAGGTCGCCGACGCGGCGATCGACCGCGTGGCCGACTGGGCGGGCGTCGACGACCTGCGCGAGCGTGTCGCCGTGCGCCGCACGGTGGGTCCCGGGGACTTCGCCGCGGACCTGTCGGCGTTCTCGGGCAGCCTGCTGGGCCCGGCGCACACCCTGGCCCAGAGCGCGTTCCTGCGCGACGGCAACGTCTCGCGCCGGGTGACGGGGCTGCTGCACGCCGGGGGTTCGACGGTGCCCGGCGTCGGGCTGCCGATGTGCCTGATCAGCGCCGAGCTCGTGGCCCGGCGGCTGCGGGGCGGCGAGGGTCCGCTGCCCGTCTCGCCGGCGCCCGACCCGGACGACGCCGCGGCCGACGCCGCGTGAMRVVVVGGGIAGLATAGLLARDGHEVELLERHDRVGGRAGSWERDGFRFDTGPSWYLMPEVFDHFFALMGSSTRAELDLVAPDPAYRVFFEGHPGPFDVSRDRAANVAAFEAVEPGAGAALERYLDQAHDTYDVALRRFLYTSFDSLRPFTHADVLRRAHRLAPLLSRSLAGHTASRFDDVRLRQVLGYPAVFLGSSPDRTPALYHLMSSLDLDGGVRYPQGGFAHLIERVAALATAAGVTVRTGATVTAVSTTGTGAPPVARSGRRRELVPGPRRPRARVTGVRWSDVHGTAHHAAADVVVTATDLHHAETALLPPRLRSHSPGRWDRLDAGPGGVLAMLGVRGRVPELAHHSLFFTADWDRNFGDIAAGRIPDPASLYVCTPSRTDPTVAPDGDENLFVLVPVPADPTIGRGGVDGAGDPLVEQVADAAIDRVADWAGVDDLRERVAVRRTVGPGDFAADLSAFSGSLLGPAHTLAQSAFLRDGNVSRRVTGLLHAGGSTVPGVGLPMCLISAELVARRLRGGEGPLPVSPAPDPDDAAADAAPGPT0007390_19DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007390-crtD-K20611NANA
AK018_01476576hypothetical proteinATGCGTCACGAGACAGGCGGACCCGACGTCCGCGCCGCCGTCGTCGGCGGGGTCGCGACGGCCGCCTGGTACGCGGTGCCCGACGTCGTGCGCCCCCGCTGGGCGCGCGCCCTGGCCAAGACGGCCGTGCTGGCCGGCGGGCTGACCGCGGCGCTCGCCGTCACGCGGGACGGCCGGGCCGCGCGCGCCGCCGTCGACGAGCTGCGCGACGCCGTCGACGGCGCCGTCACGGACGCCGCCGACCCGCTGGCGCACGCCGGGCTGGAGGGCGCCGACCCGGGCACGCCGGACGACGACGCGGCCGTCGACAACCCGGCGCCCACGACCCTGACCGAGCCGCCCGGACCCGGGTCGGGGTGGGCCGGCGCGGCCGTCGTCACCGGCGGGCTCACGCTCGTGGCCGGAGCCGCCGTCGCCGGGGAGATCCTGGTGCACCGGCTGGCCGAGCGGCTCGGTGCGCGCGGCTGGCCCGCCCCGCACACCACGGTCGGGATCGTGCTGGGCGCGGCCGCCGCCGGGCTGTCGCTCGTCGAGCCGGGTCCCGCGCAGCCCGACGGCGCGCCGCCGGCCCGGTGAMRHETGGPDVRAAVVGGVATAAWYAVPDVVRPRWARALAKTAVLAGGLTAALAVTRDGRAARAAVDELRDAVDGAVTDAADPLAHAGLEGADPGTPDDDAAVDNPAPTTLTEPPGPGSGWAGAAVVTGGLTLVAGAAVAGEILVHRLAERLGARGWPAPHTTVGIVLGAAAAGLSLVEPGPAQPDGAPPARNANANANANA
AK018_01477483hypothetical proteinGTGGAACACCTACGGCCTTTCGACCCCCGCTCCTTCTCCTACGGGCTGGACGCGTGGACGTGGCTGGGGCTGGACGGGAAGACCGCACGGTTCGCCACGGTGTTCGGCGACGTGGTGCTGGAGTCGCTGGAGGGCTGGTGGTTCCTCGACACGGTCGAGGGCACCCTCGAGTTGCGCTGGCCGACCGCCGTCGAGCTGTCGGCCGAGCTCGACTCGCCGGAGGGCCGCCAGGACCTCCTCCTGGAGGACCTCGTGGTGGAGGCCGCGCAGCGCGGCGTGGTCCCGGCCCACGACGAGGTGCTGACCTTCATGCCGCACCCGGTGCTCGGCGGTCGGCTCAGCGCCGAGTCCGCCGTCCCGGTCCGTCTCGAGCTCGCCCTGCGCCTGTCCGGCGAGGTGCACCGCCGCACCCGCCGCCGCCCCGAACCGTCGCCGCTGCTGCTGGGTCATAGCCTCGAGCACGTGCCGCAGCACTCCCGCTGAMEHLRPFDPRSFSYGLDAWTWLGLDGKTARFATVFGDVVLESLEGWWFLDTVEGTLELRWPTAVELSAELDSPEGRQDLLLEDLVVEAAQRGVVPAHDEVLTFMPHPVLGGRLSAESAVPVRLELALRLSGEVHRRTRRRPEPSPLLLGHSLEHVPQHSRNANANANANA
AK018_01478303hypothetical proteinATGCGACGGGTCATTCTGACCGGGACTGCAGTAGCCCTGGGCGACGGCGTGCTGCTCGGCACGACGCTCGCCCTGGGATGGCCGATCGTGGCGGCGGTGTGCGCCGTCGCCGGCCTGGTCGGCGCCGGGTGGGTGGCGACCGCGACACCCCCTCCCCGCACCCGGCCCAGGCCCTCGACCGTCACGCTGGGGCTGCCCGTGCGTGAGCTGACCTCCGCCCCGGAGGAGGTGGTCGCCGCGGCCACGGACGAGCGCGGCGCCGGCATCGCCGACGAACCCGCGGTCGCGCCCGTGGCCGCCTGAMRRVILTGTAVALGDGVLLGTTLALGWPIVAAVCAVAGLVGAGWVATATPPPRTRPRPSTVTLGLPVRELTSAPEEVVAAATDERGAGIADEPAVAPVAANANANANANA
AK018_014792091hypothetical proteinATGACGACGACGTCCCCCGCCGAGAACCTCGGCGCCGCCCAGACGACCACCGCCGACGACGCCGCGACCGCCCACGTCGACGTCGCCGCGCTGTCCGAGTACCTGCTGGGCCGGTGGCCCGAGCTGCGACGCAAGGCCCGCGAGCGCGCCGGCGACCCCCGCTTCCACAAGGACGAGTCGCTGACCCCGGCCGAGCACCGCGAGCGCACGCTGGAGCAGATGCGCGAGATGGTCGCGGCCGACGACAAGATCGCCTGGCTGGCCTTCCCGGAGCGGATGGGCGGCTTCGACGAGCCGGGCGCCAACCTCGCGTGCTTCAGCGAGCTGGTCGCGGCGGACCCGTCGCTGCAGATCAAGTCGGGCGTGCAGTGGGGGCTGTTCGGTGCCGCGATCCTGCACCTGGGCACCCCCGAGCAGCAGGACCGGCTGCTGCCCGGCGCGATGGACCTGTCCGTGCCGGGTGCGTTCGCGATGACGGAGACGGGCCACGGCTCGGACGTGCAGTCGATCGGCACCACGGCCACCTACGACCCGGCCACCGAGGAGTTCGTCATCGACACCCCGTTCCGCGGGGCGTGGAAGGACTACCTGGGCAACGCGGCCGTGCACGCCACGGCCGCCACGGTGTTCGCCCAGCTGATCACGAACGGCGTCAACCACGGGGTGCACTGCTTCTACGTGCCGATCCGCGACGCGGAGACGATGGAGTTCCTGCCCGGCGTCGGGGGCGAGGACGACGGGCTCAAGGGCGGGCTGCGCGGCATCGACAACGGCCGCCTGTACTTCAGCGGCGTCCGCGTCCCGCGCACGGACCTGCTGGCCCGGTACGGGTCCGTGGCCGCCGACGGCACCTACTCCTCGCCGATCGAGAGCCCGGGCCGCCGGTTCTTCACGATGCTCGGCTCCCTGGTGCAGGGGCGCGTCTCCCTGGACGGCTCCGCGGTGAACTCCGCGAAGATCGGTCTGGCCATCGCGGTGAAGTACGGCGCGGAGCGCCGGCAGTTCGCCGGGGCGGGCGTCGAGGAGATGGTGGTGCTGGACTACGCCACGCACCGCCGTCGGCTCTTCCCGCGCATCGCCGAGGCCTACGCGGGTCACTTCGCGAACGAGCGCCTGCTGGACCTGTTCGACGACGTCTTCTCCGGCGCCGGTGACACCCCCGAGCGGCGCGAGGACCTCGAGACGACGGCGGCGGCCCTGAAGTCGACGTCGACGGCGTTCGCGCTGGACACGCTGCAGGAGTGCCGCGAGGCGTGCGGCGGCGCCGGGTTCCTCACGGAGAACCGCATCACGTCGCTTCGCGCCGACCTGGACGTCTACGCGACGTTCGAGGGCGACAACACCGTGCTGCGCCAGCTCGTCGCCAAGCGCCTCGTCGCGGACTACGGCCGCGAGGTCAAGGGCGCGACGAAGACGCCGGCCGGCATGGCACGGTTCGTCGTCGAGCGGGCCACGGACGCCGCGCTGCACCGCACCGGGCTGCGCCGCGTGTCGCAGGCGATCGCCGACGTCGGCGACCCGCGCCGTGCGGCCGGCCACCTGCGGGACGCCGAGACCCAGCGCGAGCTGCTCGCCGACCGGGTGGCCACGATGGTCGAGGACGTCGCGATGGCGCTGCGCCCCGCGCAGAAGGCCGCACCGGACGAGGCGGCGCGCATCCTGGACGAGAACCAGGTCGCGCTCGTCGAGGCGGCCGCTGCGCACGCGGACCTGCTGCGCTGGGAGGCGTTCACCGACGCGCTCGCGGGCATCGAGGACACGGGGACCCGGCTGGTCATGACGTGGCTGCGGGACGTGTACGGCCTGACCGTCATCGAGCGCAACCTCACCTGGTACCTGCTGCACGGCCGGCTGTCCGACCAGCGCGCGCGCACCGTGACGGGTTACGTCGACCGGCTGCTGCGCCGGCTGCGCCCGCACGTGCTCGACCTGGTCGACGCCTGGGGGTACGGGCCCGAGCACCTGCGCGCCAAGATCGCCTCCGGCGCGGAGGCCGAGCGGCAGGAGGAGGCGCGCGCCTACTACGCGGCGCTGCGGGCGAGCGGGAAGGCGCCGATCAGCGAGAAGGCGCTGCGCACCTCGCGGGCCTGAMTTTSPAENLGAAQTTTADDAATAHVDVAALSEYLLGRWPELRRKARERAGDPRFHKDESLTPAEHRERTLEQMREMVAADDKIAWLAFPERMGGFDEPGANLACFSELVAADPSLQIKSGVQWGLFGAAILHLGTPEQQDRLLPGAMDLSVPGAFAMTETGHGSDVQSIGTTATYDPATEEFVIDTPFRGAWKDYLGNAAVHATAATVFAQLITNGVNHGVHCFYVPIRDAETMEFLPGVGGEDDGLKGGLRGIDNGRLYFSGVRVPRTDLLARYGSVAADGTYSSPIESPGRRFFTMLGSLVQGRVSLDGSAVNSAKIGLAIAVKYGAERRQFAGAGVEEMVVLDYATHRRRLFPRIAEAYAGHFANERLLDLFDDVFSGAGDTPERREDLETTAAALKSTSTAFALDTLQECREACGGAGFLTENRITSLRADLDVYATFEGDNTVLRQLVAKRLVADYGREVKGATKTPAGMARFVVERATDAALHRTGLRRVSQAIADVGDPRRAAGHLRDAETQRELLADRVATMVEDVAMALRPAQKAAPDEAARILDENQVALVEAAAAHADLLRWEAFTDALAGIEDTGTRLVMTWLRDVYGLTVIERNLTWYLLHGRLSDQRARTVTGYVDRLLRRLRPHVLDLVDAWGYGPEHLRAKIASGAEAERQEEARAYYAALRASGKAPISEKALRTSRAPGPT0002290_382DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002290-aco|acx-K00232NANA
AK018_01480729putative HTH-type transcriptional regulatorATGACGGTCGCAGCACACGGGACGGACCGGGACGCGCGGGCCCGCCCCGACGGACGGTCGACCCGATGGGACGATCATCGCGCCCAGCGCCGCGCCGCGCTCGTGCGCGACGCCCGCCGGGCGATCCACGAGCTCGGCCCGGGTGCGTCCATGGACGAGATCGCCGGCGTCGCCGGGACCTCGAAGTCGATCTTCTACCGGTACTTCGACGACAAGGCCGGGCTGCGGCTCGCCGTCGCCGAGTCCGTGGTCAAGGGGATGCACCGCCGTCTGGCCGAGGCCGCGCACGAGGCGCCCACGCCGCACTCCGCGCTGCGCGCGATGGTGCGCACCTACCTGCAGACCATCGAGAGCTCGCCGCAGGTCTACTGGTTCGTCACCCGCACGGCGATCGGCGGGAACGAGCCCGACGACGGCACCGGCCGCGTCGAGGCGCTCGGCGCGTACCTCGACTCCGTGATCACCCTCGTCGCCGAGCCGTTCGCCCGTGCCGTCCACGTCCCGCCCACGACGGCGGCCGCCTGGGCCGCCGGGGCCGTCGGCTTCGTGCGCGGCGCCGGCGAGTGGTGGCTCGGCCACACCCGGGCCGAGGGCCTGACCCGCGACGACCTCACCGACCAGGTCACCACCTGGCTCTGGAACGGGCCGGTCGGCGTCCTGCACCATGAGGCGCCCGCCACCGGCACCGAGACCCCTGGCACCCCTGGTACCCCCGAGAAGCTGGAGTGAMTVAAHGTDRDARARPDGRSTRWDDHRAQRRAALVRDARRAIHELGPGASMDEIAGVAGTSKSIFYRYFDDKAGLRLAVAESVVKGMHRRLAEAAHEAPTPHSALRAMVRTYLQTIESSPQVYWFVTRTAIGGNEPDDGTGRVEALGAYLDSVITLVAEPFARAVHVPPTTAAAWAAGAVGFVRGAGEWWLGHTRAEGLTRDDLTDQVTTWLWNGPVGVLHHEAPATGTETPGTPGTPEKLENANANANANA
AK018_014811332fadI_2COG01833-ketoacyl-CoA thiolase FadIGTGGCCTCTCGCCAGTCCCGAGCCGCAGCGACCAACGGCCCACGCGACGCCGTCGTCGTCGGCGGCAACCGCATCCCGTTCTCCCGCGCCGGCAAGAAGTACGCCGACGCCTCCAACCAGGAGATGTTCACCGCCGCCCTCGAGGGCCTCGTGGCCCGCTACGGGCTGCAGGGCGAACGCCTCGGCGAGGTCGTCGGCGGCGCCGTGCTCAAGCACTCGCGCGACTTCAACCTGGTCCGCGAGTCCGTGCTCGGCTCCTCGCTGTCCCCCGCCACCCCCGCCTACGACCTGCAGCAGGCCTGCGCCACCGGCCTCGAGGCCACGATCGGCGTCGCCAACAAGATCCGCCTCGGCCAGATCGAGTCCGGCGTCGCCGGCGGCACCGACACCGTCTCCGACGCACCCATCGCCGTCGGCGAGGGGCTGCGCCGCGCCCTCCTGGACGCCCAGCACGCCAAGACGTGGCAGGCCCGTGCCAAGGCGCTCGCGCAGATCCGCCCCGGCGACCTCAAGCCGCTGACCCCCGCCACCGACGAGCCGCGCACCGGCCTGTCCATGGGCGAGCACCAGGCGATCACCACCGCCCGCTGGGGCATCACCCGCGAGGCGCAGGACGAGATCGCGCTCGCCAGCCACCAGCACCTCGCCGCCGCCTGGGAGTCCGGGTTCTTCGACGACCTCGTCACCCCGTTCCGCGGCCTGACCCGCGACGACAACATGCGACCCGATACCTCCGCCGAGAAGCTCGCCGGCCTCAAGCCCGTCTTCGGCCGCTCCCTGGAGACGCCGGCCACCATGACCGCCGGCAACTCCACGCCGCTCACCGACGGCGCCTCGACCGTCCTCCTCGGTTCGCGCGAGTGGGCCGAGTCGCACGACCTGCCCGTCCTGGCCCGCGTCGTCGACGCCGAGACCGCCGCCGTCGACTTCGTGCACGGCCACGAGGGCCTGCTCATGGCCCCGGTGCACGCCGTCCCGCGCCTGCTCGCCCGCAACGGCCTGACCCTGGACGACTTCGACTTCTACGAGATCCACGAGGCCTTCGCCTCCACCGTCCTGACCACGCTCGCCGCGTGGGAGGACGTCGACTACGGCAAGAACGAACTCGGCCTGTCCGGCGCGTTCGGCTCCGTGGACCGCGCCAAGGTGAACGTCAACGGCTCCTCGCTCGCCGCCGGGCACCCGTTCGCCGCCACCGGCGGGCGGATCGTCGCCACCGCCGCGAAGCTGGTGGCCGAGAAGGCCGCCGAGACCGGCCGGCCCGCCCGCGCCCTGGTGTCCGTCTGCGCCGCCGGCGGCCTCGGCGCCACCGCCGTCCTCGAGTCCGTCTGAMASRQSRAAATNGPRDAVVVGGNRIPFSRAGKKYADASNQEMFTAALEGLVARYGLQGERLGEVVGGAVLKHSRDFNLVRESVLGSSLSPATPAYDLQQACATGLEATIGVANKIRLGQIESGVAGGTDTVSDAPIAVGEGLRRALLDAQHAKTWQARAKALAQIRPGDLKPLTPATDEPRTGLSMGEHQAITTARWGITREAQDEIALASHQHLAAAWESGFFDDLVTPFRGLTRDDNMRPDTSAEKLAGLKPVFGRSLETPATMTAGNSTPLTDGASTVLLGSREWAESHDLPVLARVVDAETAAVDFVHGHEGLLMAPVHAVPRLLARNGLTLDDFDFYEIHEAFASTVLTTLAAWEDVDYGKNELGLSGAFGSVDRAKVNVNGSSLAAGHPFAATGGRIVATAAKLVAEKAAETGRPARALVSVCAAGGLGATAVLESVPGPT0008320_641DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
AK018_014821362hypothetical proteinATGACCGACCGCTACACGAAGGCCGTCAACTCCGGGTTCACCCAGACCCTCGCGAAGAAGCTCGGGCTGCCCCGACCTGCGGTCCTGCGCCGCTACCGCGCCGGTGACCCCCTCACGGTGGGTCCCGTGCTCGTCGTGTCCGACGGCGCGTCCAAGGCCGACGCCGACGCGATCGCCCAGGCCCTGCTGGGCTGGGACCTCGACGTGCGGCGCGAGCCCACCGACGACGTGCGGTGGGGCGCCGTCGTCCTCGTGCTCACCGAGGCCACCGCCCCGACCGACGCCTCCGAGGCCGTGCTGGCCACCGGCTCCGTGCTGCGGCGCCTCGCCGGCAACGGCCGCGTCGTCACCGTCTCCCGGGCCCCGGCCGACGGCGACTCCCCCGCCGTGTCCGCCACCCGCCACGGGGTCGACGGGTTCCTGCGCTCGGTCGCCAAGGAGCTGCGCGGCGGCGCGACCGGCAACGGCGTCGTCCTGACCGACGACGTCGCCGTCGACGACCCGTCCGTCCTCGGCACCCTGCGGTTCTTCCTCGGCGCGAAGAGCGCGTACGTCGACGGCCAGCTCCTGCGGGTCGGGCCGACCGCGGACGGCGTGCCCGCCGGGGACGCGCCCGAGCCGGCCACCGACCGGCCGCTGACCGGCCAGGTCGCCGTCGTCACCGGCGCGGCCCGCGGCATCGGCGCGGCCATCGCCCGCACCCTGCACCGTGACGGCGCCACCGTGGTCTGCGTGGACGTCCCCGCCGCCGGGGAGGCGCTCGCCGCGACCGCCAACGCCGTCGGCGGCACGGCCCTGCAGCTCGACGTCACCGCCGAGGACGCCGGCGAGCGCATCCTCGCCCACGCCCGCGAGCGCCACGGACGCCTCGACGTCGTCGTGCACAACGCCGGCATCACCCGGGACAAGCTGCTCGCCAACATGAAGCCGGGACAGTGGGACGCGGTGATCGCGGTCAACCTGGCCGCGCAGCTGCGGATCAACGCCGCGCTCCTCGAGGCCGGGCTGGAGGGGCTGCGCATCGTGTCCCTGGCCTCCACCTCCGGCATCGCCGGGAACAAGGGCCAGACCAACTACGCGTTCTCCAAGGCCGGCGTCATCGGGCACACCCGGGCCACCGCGGGGCTGCTCGCCGCGCGCGGCGGCACCGCGAACGCGGTGGCACCCGGCTTCATCGAGACCGAGATGACCTCCCGCATCCCGTTCGCGACCCGCGAGGTGGCGCGCCGCATCCCGTCGCTGGCCCAGGGCGGTCAGCCCGTGGACGTGGCCGAGGCGATCGCGTTCCTCGCCTCGCCGGCCGCCGCAGGTGTCAACGGCCAGGTCCTGCGGGTGTGCGGCCAGCACCTGGTGGGCCAGTGAMTDRYTKAVNSGFTQTLAKKLGLPRPAVLRRYRAGDPLTVGPVLVVSDGASKADADAIAQALLGWDLDVRREPTDDVRWGAVVLVLTEATAPTDASEAVLATGSVLRRLAGNGRVVTVSRAPADGDSPAVSATRHGVDGFLRSVAKELRGGATGNGVVLTDDVAVDDPSVLGTLRFFLGAKSAYVDGQLLRVGPTADGVPAGDAPEPATDRPLTGQVAVVTGAARGIGAAIARTLHRDGATVVCVDVPAAGEALAATANAVGGTALQLDVTAEDAGERILAHARERHGRLDVVVHNAGITRDKLLANMKPGQWDAVIAVNLAAQLRINAALLEAGLEGLRIVSLASTSGIAGNKGQTNYAFSKAGVIGHTRATAGLLAARGGTANAVAPGFIETEMTSRIPFATREVARRIPSLAQGGQPVDVAEAIAFLASPAAAGVNGQVLRVCGQHLVGQPGPT0003180_562DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_014831140hypothetical proteinGTGACGGCGGCCCCGCCCCGCACCGCCGACGGGCGGACGCTGCGCGTCGAGACCCAGACCGGGCTGCCCGGCCTGGGCGGCCTCTACGCGCGCGGCGCCGCGGCGTCGGGCCGGATCGCGGCCGGGCGGGCCCTGCCGTCGTTGCCGGTCATCGGGACCGGACGACCGGCGTCGGACGACGACGGCGAGGCGCAGGCCGCGCTGGTCCTGCCGGACGTCGCCTACCGCGTCTCGGGGGTGCGCACCGCGGGGCTGGAGCGGCACCTGCACGACTACCAGCGTCTGCTGCACGAGCCCGTCGGCAGCACGATGCCGGCCGGCTACCTGCACGTGCTCGTGTTCCCGCTGGCGACGGCCGTGATGGTGCGGGGCGACTTCCCCCTGCCGCTGCTCGGCATGGTGCACCTGCGGAACGTCGTCGAGGTGCGCGGGCCGGTGACCGTCGGTGACGTGCTGGACGTGCGCGCCTGGGCGGAGAACCTCACGGCCCACCGGCGCGGCGTCCAGGTCGACCTGGTCGCCGAGATCCGGTTCGACGGGGCCGACCCGTCCGAGCCGCCGGTGTGGCGCGGCGTGTCGACCTACCTGGCCAAGGGGTACGAGCTGCCGGACGCCGAGGCCGACGGCCCGCGAGGTCGTACCTCCCGTCCCGAGGTCGCACCCGCCGGGTACGACCCGGCGACACACGGTACGACCTCGGCGTCGTCCGCGACCTCGGCGGCGTCGGCGTCCTCGGCGTCGGACGGGTGGACGCCGCCGCTGCCGACCGGCCGCTGGGCCCTCGGTCCCGGCACCGGCCGCGCCTACGGGGCCGTCTCGGGCGACCGCAACCCGATCCACCTGTCGGCGCTGTCCGCCAAGGCGTTCGGGTTCCCGCGGGCCATCGCCCACGGCATGTACACCGCCGCCCGGGCGCTGGCCGACGTCGGGCACCGGCGCGCCGACGCGTACCGCTGGACGGTGGACTTCGCCAAGCCCGTCCTGCTGCCGGGCACCGTCGACGTGGCGATCACGCCGCGGTCCGACGACGACGGCAGCCCCGCCCCGGACCTGACGGGGACCGCCGCCGGGTTCGACTACGTGGGGTGGAGCTCCCGCAAGGGGGTCCGTCACTTCTCCGGCGAGATCACGCCGCTCTGAMTAAPPRTADGRTLRVETQTGLPGLGGLYARGAAASGRIAAGRALPSLPVIGTGRPASDDDGEAQAALVLPDVAYRVSGVRTAGLERHLHDYQRLLHEPVGSTMPAGYLHVLVFPLATAVMVRGDFPLPLLGMVHLRNVVEVRGPVTVGDVLDVRAWAENLTAHRRGVQVDLVAEIRFDGADPSEPPVWRGVSTYLAKGYELPDAEADGPRGRTSRPEVAPAGYDPATHGTTSASSATSAASASSASDGWTPPLPTGRWALGPGTGRAYGAVSGDRNPIHLSALSAKAFGFPRAIAHGMYTAARALADVGHRRADAYRWTVDFAKPVLLPGTVDVAITPRSDDDGSPAPDLTGTAAGFDYVGWSSRKGVRHFSGEITPLNANANANANA
AK018_014841461amiB2_2COG0154Putative amidase AmiB2ATGGCCGCCCTGCACGAGCAGACCGCCCTGACCCTCCGCGACCGGCTGCGCGCCGGGGAGCTGAGTCCGGGCGAGGTGACCGACCACTTCCTGGCCCGCATCGCCGCACGCGGCGACGAGCTGGGCGCGTTCGCGCACGTCACCCAGGACTCCGCCCGGGAGCGCGCCGCGACCCTGGGTCCGCCGTCGGGCATCCTGTGGGGAGTCCCGACGGCGGACAAGGACCTGTGGAACCGGGCGGGCGTGCCGAGCGGGTTCGGGTCACGGGCGATGGCGGGGTTCGTGCCCGAGGAGTCCGACGACGTCGTGCGCGACCTGGACGCCGCGGGCATCGTCAGCCTGGGCAAGACGGCGACGCCGGAGCTCGGCTTCCCGGCCTATACCGAGCCGGTGGTCGGCCCGGTGGCGCGCAACCCGTGGGACACGTCGCGGGGGGCGGGCGGCTCCAGCGGTGGCGCGGCCGTGGCGGTGGCGGCGGGGCTGCTGCCGTTCGCGCCCGGGTCCGACGGCGGAGGCTCGGTCCGCATCCCGGCTGCGGCGTGCGGGGTGGTCGGCCTCAAGCCCACGCGGGGTCTGCTCCCGGCGGGTTCCGGGATCGAGGGCCTGGGCGGTCTGGTGGTCAACGGTCCGATCGCGCGCACGACGGCGGACGCCGCTCTGCTCCTGGAGGGCATGCTGCGCCGTACCCCGACGGGCGAGGTGGACCACCGGTTCACGCTGCGCACCCCGGTGCAGCACGAGGGCGCCTATCTCGCTGCGGCGCGCACGGCCGCCGCCCGGGGTCACAGCGGGCTGGTCGGGGGCCACGGCAGCCGGTTCCGCGTGGGTGTGACCACGTGGAACGCCTGGGAGTTCTACTACGACGTGACCGTGGAGCCGGAGGCGCACGCCGCCCTGGAAGCGGGGACGCGGGCGCTGTCGGGGCTGGGCCACGAGCTCGAGGACCACTCGTGGGACCCGGCGCCGGAGTTCGGGGACGCGTTCCGTTCCCTGTGGATGGCGGGGGCGTCGGCGGTGCCGATCGACGACGACGCCGTCCTCGACTCGCTGGAACCGCTGACGTCGTGGCTGATCCGGCGCGGACGCGAGGTGCCGGCACGGGAGCTGGCCGAGGCGCTGGCGACGCTGACGCAGTTCGAGCGGCGACTGATCGCCGGGTTCGGCGACCTCGACGCCGTCATCACCCCGGCGCTGGCGATGACGCCGCGGCCGATCGGCTGGTTCGACGCCGAGGACCCGGACCGCAACTTCATGCAGCAGTGCCAGTACACGCCGTTCACGTCGTGGCTGAACGTGGCGGGGCTTCCCGCGATCACCGTGCCGACGCACTGGACGGACGACGGCCTGCCGATGGGGATCCAGATCGTCGGGCGTCCCGGCGGCGAGCCCACACTGCTGGCGCTGGCGGCCCAGCTCGAGGACGTGCTGCGCTGGCCGGAGAAGCACCCGCCCGTCTGGTAGMAALHEQTALTLRDRLRAGELSPGEVTDHFLARIAARGDELGAFAHVTQDSARERAATLGPPSGILWGVPTADKDLWNRAGVPSGFGSRAMAGFVPEESDDVVRDLDAAGIVSLGKTATPELGFPAYTEPVVGPVARNPWDTSRGAGGSSGGAAVAVAAGLLPFAPGSDGGGSVRIPAAACGVVGLKPTRGLLPAGSGIEGLGGLVVNGPIARTTADAALLLEGMLRRTPTGEVDHRFTLRTPVQHEGAYLAAARTAAARGHSGLVGGHGSRFRVGVTTWNAWEFYYDVTVEPEAHAALEAGTRALSGLGHELEDHSWDPAPEFGDAFRSLWMAGASAVPIDDDAVLDSLEPLTSWLIRRGREVPARELAEALATLTQFERRLIAGFGDLDAVITPALAMTPRPIGWFDAEDPDRNFMQQCQYTPFTSWLNVAGLPAITVPTHWTDDGLPMGIQIVGRPGGEPTLLALAAQLEDVLRWPEKHPPVWPGPT0006115_4157DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426NANA
AK018_014851428sufS_2COG0520Cysteine desulfuraseATGACCGTGATCGCCGAGAGCCCCGCCTGTCCCGCCACGGTGGGCGACCTCGCCCCCGTGCTGCCCGTCGTCGGGCACGAGACCCTCGCACCCCTCGTCGACGGCCGGCGCGTGCCCTACGCGAACCTCGACGTCGCCGCCTCCGCCCCCGCGCTGCAGGCCGTCGGCGACCGCATCACGGCCACCCTGCCGCTCTACGCCAGCGTGCACCGCGGCGCCGGCTACCTCTCCCAGGTCTCCACCACCCTCTACGAGCAGTCGCGGGCCACCATCGGCGCGTTCGTCGGCGCGCGGGACGACGACGTCACGCTGCTCGTGCGCAACACCACCGACGCGCTCAACCTGCTCGCCGGCTGCGTCCCCGCGTCCGACGACGGCACGCCGGGCCGGGTGCTCGTCCTCGACGTCGAGCACCACGCGAACTTCCTGCCCTGGCAGCGCTCCGCCGACGCCACCGTGCTCACCGGCCGCGACACCGTCGCCGCCACCGTGGCCGCGATCCGCGACGAGCTCGCCGCGGCGCACGCCGCCGGTCGCGGCTACGCGCTGCTCGCCGTCACCGGCGCCTCCAACGTCACCGGCGAGACCCTCCCGGTCGACGACGTCGTCGCCGCCGCGCACGCCCACGGCGCCCGGGTGCTGCTCGACGGCGCCCAGCTCGTCCCGCACCGCCGGTTCTCCCTGGCCGCCACCGGCGTCGACTACCTCGCCTTCTCCGGGCACAAGACCTACGCCCCGTTCGGCGTCGGCGTGCTCGTCGGCCGCCGCGACTGGCTCGACGCCGGCACCCCGTACCTCGCCGGCGGCGGCGCCGTGCGCAGCGTCCGCGTCGCCGAGACCGAGTGGCACGACGGCCCCGCGCGGCACGAGGCCGGCTCGCCCAACGTGCTCGGCGCCGTCGCGCTCGCGGCCGCGTGCGACGAGCTCGCCGCGCTGGATGCCGCGAACCTGCGGGAGCACGAGGACGCTCTGCGCGCTCGTCTCGTCGACGGGCTCGAGGCGATCGACGGCGTCGAGGTCGTGCGGCTGTGGTCCGACGCCCCCGACACCGTCGGCGTCGTGACCTTCACCGTCGCCGGGTACGAGCCCGGCCAGGTCGCCGCCTACCTCTCGGCCGAGCACGGCATCGGCGTACGCGACGGCCGGTTCTGCGCGCACCCGCTGCTGTCCCGCCTCGGCTACGGTGCCGGTGCCGTGCGGTCCTCCGTGGGCGTCGGCACCGCCGGCGAGGAGGTCGAGCGACTCGTCGCGGCCGTGGCGGCGCTGGTCGCCGACGGCCCCCAGGCGCGCTACGACGTCGTCGACGGGCTGTGGATCGTCGTCGACGACCCGCGGCCCGTGCCCGAGGGCTCCGGGCTGACCGGGCTGCTCGCCACCGCCGGCCCCGGCCAGGACGAGGCGTTCGGCTGCCTGCCCGAGGACGCCTGAMTVIAESPACPATVGDLAPVLPVVGHETLAPLVDGRRVPYANLDVAASAPALQAVGDRITATLPLYASVHRGAGYLSQVSTTLYEQSRATIGAFVGARDDDVTLLVRNTTDALNLLAGCVPASDDGTPGRVLVLDVEHHANFLPWQRSADATVLTGRDTVAATVAAIRDELAAAHAAGRGYALLAVTGASNVTGETLPVDDVVAAAHAHGARVLLDGAQLVPHRRFSLAATGVDYLAFSGHKTYAPFGVGVLVGRRDWLDAGTPYLAGGGAVRSVRVAETEWHDGPARHEAGSPNVLGAVALAAACDELAALDAANLREHEDALRARLVDGLEAIDGVEVVRLWSDAPDTVGVVTFTVAGYEPGQVAAYLSAEHGIGVRDGRFCAHPLLSRLGYGAGAVRSSVGVGTAGEEVERLVAAVAALVADGPQARYDVVDGLWIVVDDPRPVPEGSGLTGLLATAGPGQDEAFGCLPEDANANANANANA
AK018_01487456hypothetical proteinGTGACCGCACCGATCGAACCCCGACCCGCGCAGGGCTACGCCGGCGACCTGACCCCGCAGCAGGCGTGGGACCTGCTCGCCGCCGACACCGGCGCCGTCCTCGTCGACGTCCGCACCGAGGGCGAGTGGCGCACCATCGGGGTGCCCGACGTCGGCACCCTCGACAAGCGCACCGTCTTCACGCAGTGGGTCACCGGCGACGGCCGCCCCAACCCGGGATTCCTTGCCGAGCTCGAGGCCGCCGGCGTGCCCACCGACCATCCCGTGGTGTTCCTGTGCCGCTCCGGGCAGCGCTCCATCGGCGCCGCCCGCCTGGCGACGTCGGCCGGCTACGGCCCCGCCTACAACGTGCTCGAGGGCTTCGAGGGCCCCGTCGGCCCGTTCGGCGCCCGCGACCAGGCCGGCTGGAAGGTCCGCGAGCTGCCGCATACCACGTACGCGGAGCCCGCCCGGTGAMTAPIEPRPAQGYAGDLTPQQAWDLLAADTGAVLVDVRTEGEWRTIGVPDVGTLDKRTVFTQWVTGDGRPNPGFLAELEAAGVPTDHPVVFLCRSGQRSIGAARLATSAGYGPAYNVLEGFEGPVGPFGARDQAGWKVRELPHTTYAEPARNANANANANA
AK018_014881272metZ_2COG0626O-succinylhomoserine sulfhydrylaseGTGAGCCGCACCGAGATCCCCACCGGCCCCGGCCCCAACCCCGAGCCGTACGGCGGCGCCGGCCACGCCCCGCTGCCGGCCACGGCACGGCCCGCCACCCTCGCGGTGCGCGGCGGCCACCGCCGCTCGGACTTCTCCGAGACGTCCGAGGCAATGTTCCTCACGCAGGGCTACACCTACGACTCCGCCGCCGACGCCGAGGCGGCGTTCGCCGGAGACCACTCCCGGTTCGTGTACTCCCGGTACGGCAACCCGACGGTGCGCACCTTCGAGGAGCGCCTGCGCCTCATCGAGGGCGCCGAGGCCTGCTACGCGACGGCGACCGGCATGTCGGCAGTGTTCACCACCCTGGCGGCCCTCGTGCGCAGCGGTTCGCGCATCGTCTCGGCCCGCGCCCTGTTCGGGTCCACCAACGTCATCTACGACGAGATCCTCGCCAAGTGGGACGTGCAGGTCGACCTCGTCGACGGCCACGTACTGTCCCAGTGGGAGGAGGCGCTCGCGACCGGCGCGGACGTCGTCTTCTTCGAGACACCCTCGAACCCGATGCAGGAGCTCGTGGACGTGCGCCGCGTGTGCGAGCTGGCCCACGCCGCGGGCGCCGTCGTCGTCGTCGACAACGTGTTCGCCACGCCGGTCATGCAGAAGCCGCTGGAGCTCGGCGCCGACATCGTCGTGTACTCGGCGACCAAGCACATCGACGGGCAGGGCCGTGTGCTGGGCGGAGCGATCCTCGGACCGCAGGAGTTCCTGTCCGGGCCCGTCGAGACGTTCCTGCGCCACACCGGCCCGTCGCTCAGCCCGTTCAACGCGTGGGTGCTGCTCAAGGGGCTCGAGACCCTCGACGTGCGGGTCCGGGCGCAGAACGCCGCCGCGCTGCAGCTCGCCGAGTTCCTCGAGACCGCCGACGGCGTCACCGGCGTGAAGTACCCGTTCCTGCCCTCCCACCCCCAGCACGAGCTCGCCAAGGCCCAGCAGACCGGCGGCGGCACCGTGGTCACGTTCGACCTCGAGGTGCCCGACGGCGCCACCGACGCCGAGGCGAAGGCGCGCACCTTCCGCTTCCTCGACGCCCTGCGGATCGTCGACATCTCCAACAACCTCGGGGACGCCAAGTCGCTGGTCACGCACCCCGCGACGACGACGCACCGCCGCCTGGGGGCCGAGGGCCGCGCCGCGGTCGGCATCAACGAGACCACGGTGCGGCTGTCCCTCGGGCTCGAGGACCCGCTGGACATCGTCGAGGACGTCGCCCAGGCGCTCCGGGCCTGAMSRTEIPTGPGPNPEPYGGAGHAPLPATARPATLAVRGGHRRSDFSETSEAMFLTQGYTYDSAADAEAAFAGDHSRFVYSRYGNPTVRTFEERLRLIEGAEACYATATGMSAVFTTLAALVRSGSRIVSARALFGSTNVIYDEILAKWDVQVDLVDGHVLSQWEEALATGADVVFFETPSNPMQELVDVRRVCELAHAAGAVVVVDNVFATPVMQKPLELGADIVVYSATKHIDGQGRVLGGAILGPQEFLSGPVETFLRHTGPSLSPFNAWVLLKGLETLDVRVRAQNAAALQLAEFLETADGVTGVKYPFLPSHPQHELAKAQQTGGGTVVTFDLEVPDGATDAEAKARTFRFLDALRIVDISNNLGDAKSLVTHPATTTHRRLGAEGRAAVGINETTVRLSLGLEDPLDIVEDVAQALRAPGPT0020020_1157DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020020-mdeA-K01761NANA
AK018_01489510hypothetical proteinGTGAGCCTGACGATCCGCACCGCGGTCCCCGACGACGTCCCCGCGATCTTGCGACTGGTCCACGCGCTGGCCACCTACGAGCGCGAACCCGACGCCGTGGAGGCCACCGAGGACGACTTCACGGCGGCCCTGTTCCCGACGTCCGGCACCCCGACCACGCACGGGCTCGTCGCGGAGGTCGACGGCGAGGTCGTCGGCATCGCGATCTGGTTCACCACGTTCTCGACCTGGACGGGCAAGAACGGGATCTGGCTCGAGGACCTGTTCGTCGACCCCGCCCACCGGGGCGGCGGTGCTGGACGGGCGCTGCTGACCCGCCTGGCCGAGATCTGCGTCGAGCGCGGGTGGCGCCGCCTCGAGTGGTGCGTGCTGAACTGGAACGAGCCCGCCATCGCGTTCTACCGGTCCCTCGGTTCCACCCCGCAGGACGAGTGGACCACCCACCGCGTCGACGGCGCGGCGCTCACGGCGCTCGCGGGGGCGGCCGCCGAGGCGGAGGCCGCCCCGTGAMSLTIRTAVPDDVPAILRLVHALATYEREPDAVEATEDDFTAALFPTSGTPTTHGLVAEVDGEVVGIAIWFTTFSTWTGKNGIWLEDLFVDPAHRGGGAGRALLTRLAEICVERGWRRLEWCVLNWNEPAIAFYRSLGSTPQDEWTTHRVDGAALTALAGAAAEAEAAPPGPT0007790_1296DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007790-speG-K00657NANA
AK018_014911104hypothetical proteinATGGTCGAGGAACGTGGTCGACGGGTGGCTCGTGCGCTGTACGGCGCCTGGCTGCGCTACCCGCGGTTGTCGATGGCGGTCCGGGGCGGCATCGCCGCCGGGCTGGCGTGGCTGGTGGGGATCTACGTGCCCCACCCGCTGGGAGACTTCCCCTACTACGCGCCGCTCGGTGCGGTCATCGCGACGACCAGCACGCTGGTGCGGTCCGTCCAGGACTCGGTGCGGGTCACGGTCGCGGTGCTGCTCGGTGCGTTGATCGCCCGGCTCGCCGACTGGCTCCTGCCGGTCGGTCCCTTCTCGATCGCGCTCGTCGTCGCCGTCGCGCTGCTGTGCTCGAGCTGGCGGGTCTTCCGCGAGACGGGGAGCTGGGTGGCGACCTCCGCCCTCTTCGTGCTGATCCTCGGCAACGCCGACGCGTTGTCGTTCGTCGGGTCCTTCGCGGGGCTGGTGGCGATCGGCGCCCTCGTGGGCATCGGCGTGAACTTCCTGCTGCCGCCGCTGCACCTGACCCCGGCGGAGAACGCCCTCGACGGCCTGAGCACGTTGCTCGCCCACGAGGCCGAGGACCTGGCCGACGTGCTCGACGAGACCGGTGACGTCCCGGTCGAGGACTGGGAGGACCGCCGCGCGGCGCTGCAGCCGGTGCTGGAGAGGACGCGGGAGTCGGTGCGCCAGAGCCGCGAGGCGGCCCGGGTGAACCCGCGGGTGCGCCGCTACCGGCGGTGGACCCGCGGGCAGGACGTGCGCGCCCGCGAGCTGGAGACCGTGGCCGCGTCCGTCGACGTCGTCGTCACGCTGCTCGTCGACACGGGGGAGCCCGTCCGGCTGCCCGAGAGCCTGTGCGGTCCGCTCGCCCGGTCCCTGCGCTCCCTGGCCGAGGTCCTGCGGGCGGACGCCTGGAGCGAGGACCGGGACAGGCTCGTCGACGAGCTGCAGGGCCAGGTCCGGGGCTTCCGGGACCGGTTGCTGGAGCTGGAGAGCCCGCCCGGGGAGGGGCTGGTGGCCGGATCGGTGGCCGTCGCCCTGCGCCGCGCGTCCGACGCGTTCACGCGGGTGCGGCCGGACGACGTCGACGAGGAGGTCGTCCGGACCGACCCGCGGTGAMVEERGRRVARALYGAWLRYPRLSMAVRGGIAAGLAWLVGIYVPHPLGDFPYYAPLGAVIATTSTLVRSVQDSVRVTVAVLLGALIARLADWLLPVGPFSIALVVAVALLCSSWRVFRETGSWVATSALFVLILGNADALSFVGSFAGLVAIGALVGIGVNFLLPPLHLTPAENALDGLSTLLAHEAEDLADVLDETGDVPVEDWEDRRAALQPVLERTRESVRQSREAARVNPRVRRYRRWTRGQDVRARELETVAASVDVVVTLLVDTGEPVRLPESLCGPLARSLRSLAEVLRADAWSEDRDRLVDELQGQVRGFRDRLLELESPPGEGLVAGSVAVALRRASDAFTRVRPDDVDEEVVRTDPRNANANANANA
AK018_014921062hypothetical proteinATGAACGACACCGGCATGCCCACCTCCCCCGCCCTCTCCGTGCTCGACCTCGTCCCCGTCCGCTCCGGGCAGTCCAGTGCCCAGGCGCTCGCGTCCTCGATGACCCTCGCGGAGCGTGCCGACGACCTCGGGTTCGCGCGCTACTGGTTCGCCGAGCACCACAACATGCCCGCCGTGGCGGCCTCCACGCCCCCGGTGATGATCGCCGCGGCCGCGGCGCGCACGTCGCGCATCCGCGTGGGTTCGGGCGGTGTCATGCTGCCGAACCACGCCCCCCTCGTGGTGGCCGAGCAGTTCGCCGCGCTGGAGGCCCTCGCCCCGGGCCGCATCGACCTCGGCATCGGCCGCGCCCCCGGCTCTGACCCCGTCGTGACGGCGCTGCTGCGTTCCTCCGGACCGACGTCGGACGTCGAGAGGTTCCCGGAGCACGTGCGCAACATCCTCGCGCTCATGGAGCCGGACGGCGCCCAGCTGCGGCTGACCGACGGCAAGACCTACGACGTGCACGCCACCCCCGCGGCGACCGCCGCCCCGACCCTGTGGCTGCTGGGATCCTCGGACTACTCGGCACGCCTGGCCGCCGAGCTCGGGCTGCCGTACGTGTTCGCAAACCACTTCTCCGGGGCCGGCATCGACCAGGTGCTCGCCCTCTACCGCGACGGGTACCGTCCCAGCGAGGCACACCCGGAGCCGCGCACCTTCCTCACCGTCAACGCCGTCGTGGCCCCGACCGCCGAGGAGGCGCACGAGCGGGCGCTGCCGCAGCTGCGCGCGATGGCCCGGCTGCGCACCGGCAAGCCGATGGGCACCGCAGAGACGGTCGAGGAGGCGCTCGCCGCCCCGCTCGACGGGCTCGGGCAGCAGATGATCGAGGACATGCGCCCGCGATGGCTCATCGGCACCGCCGACGACGCCGCCGCCGAGATCCGCCGGCTCGCCGACCGCCACGGGGTCGACGAGGTCATGGTCGTCCCGGTGGCCGGCACCTACGCGACCGAGCCCCTGGACGCCACCCCCGGCCGGGTGCAGACCCTGGAGCTGCTGGCCGGCGCCCTCGCGTGAMNDTGMPTSPALSVLDLVPVRSGQSSAQALASSMTLAERADDLGFARYWFAEHHNMPAVAASTPPVMIAAAAARTSRIRVGSGGVMLPNHAPLVVAEQFAALEALAPGRIDLGIGRAPGSDPVVTALLRSSGPTSDVERFPEHVRNILALMEPDGAQLRLTDGKTYDVHATPAATAAPTLWLLGSSDYSARLAAELGLPYVFANHFSGAGIDQVLALYRDGYRPSEAHPEPRTFLTVNAVVAPTAEEAHERALPQLRAMARLRTGKPMGTAETVEEALAAPLDGLGQQMIEDMRPRWLIGTADDAAAEIRRLADRHGVDEVMVVPVAGTYATEPLDATPGRVQTLELLAGALANANANANANA
AK018_01493282hypothetical proteinGTGAAGACCGTCAACGTGCACGAGGCGAAGACCCACCTGTCCCGCCTGCTCGCCGAGGTCGAGGCGGGCGAGGAGATCGTCATCGCACGCGCCGGCAAGCCGGTGGCACGCCTGACCCCGGAGGTCCCGGTGCCGAGCCGTCGTCGCCTCGGTCCGCTGGCGGGCCAGTTCTCGATGCCGGACGACTTCGACACCTGGGCTCAGGACGAGATCGTCGCGATGTTCCACGGCGGTACGGCGGACACCCCGAGCGCCGCGGGCGCACCGGGAGCCGAGCGGTGAMKTVNVHEAKTHLSRLLAEVEAGEEIVIARAGKPVARLTPEVPVPSRRRLGPLAGQFSMPDDFDTWAQDEIVAMFHGGTADTPSAAGAPGAERNANANANANA
AK018_01494387hypothetical proteinGTGAGGTATCTGCTCGACACGAACATCCTCGTGTGGACGCTCGGCTACCCGGACCGCCTGCCCGACGCGGCGGCCGAGATCCTCGCCGACCGGGAGCCGGACATCTGGTTCAGCGCGGTGAACATCTGGGAGATCGGCATCAAGTACCGCCTCGGCCGGGCGGACTTCGACCTCAACCCGCACGTCGCACGCGCCTCGACGCTCTCGCTGGGGTTCACCGAGCTCGCCGTCGACGGTGCGCACGCCGCGGCCGCCGCCGACCTGCCGCCGATCCACCAGGACCCGTTCGACCGCCTCCTGGTCGCCCAGGCCCTGCTCACCGGCTCCACGCTCCTGACCAGCGACTCGACCGTCGCCCGCTACCAGGGGCCGATCCGCCTCGTGTGAMRYLLDTNILVWTLGYPDRLPDAAAEILADREPDIWFSAVNIWEIGIKYRLGRADFDLNPHVARASTLSLGFTELAVDGAHAAAAADLPPIHQDPFDRLLVAQALLTGSTLLTSDSTVARYQGPIRLVNANANANANA
AK018_01495624hypothetical proteinGTGCCCCCCACCGCCAGCACGCCGAGCCCGACCCCGGTGCTGCGCGACGACGACCCGCAGCGCGTCCGGCTCGAGGCCGACGGCTGGACGGTGGTCGCGCGATCGTGGGGTGCCGTGCTGACGGCCGACGACGTGGACGTGAGCCGGCTGCGCGACGCGGTGACCGCCGTCGGACCGGACCTCGCCGTCCGCCCACTCACCGCCGACGACGTGGACGACGCGCTCGCCCTGGACGCCGCGACCCTCGACGACCACCACCCCGGTGGCCCCGCGACGGCGCCCCTGCCGCTGTCGCCGAGCACCGCCCGACCCACCGACGTGCGGCGCGGGTACGGGGCGTTCGACGGCGGCGAGCTGGTGGCGATGACGTTCGTCGACCGCGACGGTCGGACGGCGGAGACGGACTTCACCGTCGTGGCGCCGGCGTGGCGGGAGCGCGCCGTGGCCACCGCCGTGAAGGCCGCCTCGGTCCTGGGCCTTCTCGGCGACGGCGTGCGCCGCTTCCGTACCGGCGGCGCCACCGAGAACGAGGCCATCCTGCGGGCGAACGCCCGACTCGGGTACGTCGTCGACGAGCAGTGGCTGACCTACGCACCCCCGGAGGCCGCACCGTGCGCACCCTGAMPPTASTPSPTPVLRDDDPQRVRLEADGWTVVARSWGAVLTADDVDVSRLRDAVTAVGPDLAVRPLTADDVDDALALDAATLDDHHPGGPATAPLPLSPSTARPTDVRRGYGAFDGGELVAMTFVDRDGRTAETDFTVVAPAWRERAVATAVKAASVLGLLGDGVRRFRTGGATENEAILRANARLGYVVDEQWLTYAPPEAAPCAPNANANANANA
AK018_01496774gloB_3Hydroxyacylglutathione hydrolaseGTGCGCACCCTGACCCCGTCGATCTCCGTGCTGCGTGCGGACAACCCCGGCCCGATGACGCTGGACGGCACCCGCTCGGTCGTGCTGCGGGCTCCGGGTGCGGCGTCGTGCGTCGTGGTGGACCCGGGGCCCGACGACGGCATCCACCTGGCGGCGCTCGCCACGGCCGGCCCGGTCGAGCTGATCCTGATCACGCACCGGCACGCCGACCACACCGCGGGCGCGCCGCGGCTGCGCGAGCTGACGGGCGCGCCGGTCCGCGCCGCCGACCCGGAGCACTGCCACGGTGGGGACCCGTTGAGCGCCGGTGAGGTGATCGATGCCGGTGGTGTCCGCATCGAGGTGCTCGCCACGCCCGGCCACACGGGCGACTCGGTGTCGTTCGTGGTCACCGGCGCCGACCAGGAGCCGGTGGTGCTGACCGGTGACACGGTGCTCGGCCGCGGCACCACCGTCATCGCGGAACCCGACGGCTCGCTGGCCGACTACCTCGCCAGTCTCGACGCGCTGGAGCGCGTGGGTGACGGTCGTCTCGGGCTGCCCGCCCACGGTCCCGAGATCGAGGACCTGGGTGCGGCCGTCCGGGCCTACCGGGCCCACCGGATCGAACGGCTCGACCAGGTGCGCGCCGCCCTGGGGGCGCTCGGCGCGGACGCCGGGGTGGACGACGTCGTCACCCACGTCTACGCCGATGTCGACCCGTCGGTCATCCCGGCGGCGCGCCAGTCGGTGGCGGCCCAGCTCGCGTACCTGCGGCGGCCCGGAGGGGCATGAMRTLTPSISVLRADNPGPMTLDGTRSVVLRAPGAASCVVVDPGPDDGIHLAALATAGPVELILITHRHADHTAGAPRLRELTGAPVRAADPEHCHGGDPLSAGEVIDAGGVRIEVLATPGHTGDSVSFVVTGADQEPVVLTGDTVLGRGTTVIAEPDGSLADYLASLDALERVGDGRLGLPAHGPEIEDLGAAVRAYRAHRIERLDQVRAALGALGADAGVDDVVTHVYADVDPSVIPAARQSVAAQLAYLRRPGGANANANANANA
AK018_01497876fgd_5F420-dependent glucose-6-phosphate dehydrogenaseATGACCGTCCGCCTCGGCATCGCCCACGTCCCCACCCACGCCCCCGAGTCGCTGCGCACCCTGGCCACGGCGGCCGAGGACGCCGGCCTCGACGACCTGTGGGTCTGGGAGGACTGCTTCAAGCAGAGCGGGCTCGCCTCGGCGGCCGCCGCGCTGGCGTGGACGGACCGGATCCGCGTCGGGCTCGGGCTCATGCCCGCCCCGCTGCGCAGCACGGCGCTGACCGCGATGGAGATCGCGACGCTGGCCCGGTCGTTCCCGGGCCGGTTCGTCCCGGCCGTGGGGCACGGGGTGCAGTCGTGGATGGGCCAGTCGGGCGTGCGCGTCGACTCGCCGCTGACGCTGCTGCGCGAGCACCTCGAGGCGCTGCGCAGCCTGCTCGACGGCGCCCAGGTGACGACGTCGGGCCGGTACGTGACGCTCGACGCCGTGCGCCTCGACTGGCCGCCGACGACGCCGGTGCCCCTGTGGACGGGTGGGTTCGGCCCCCGCACGCTGGCGCTGACCGGCGAGCTCGGCGACGGGCTGATCCTGGGCAACGCGCTCACCCCCGATGCCGTGCGTGACGCCGTCGCCATCACCCGGGACGCCGCGACCGCCGTCGGGCGCGAGCTGGTCGACGTGCACGCCACGCTGATCGTCGCGACGGGCCCGCACGCGGCGGAGCGGCTGGCCGCGGAGCTGCCGCAGTGGGGCGCCGAACTGGCGAGCGGGATCGGGGCGGCGGGCGGCGCCGACGAGATCGCCGCCGGCGTGCGGGCGCTGGCCGACGCCGGGGCGACCGCCGTCGCGATCCAGCCGACCGCGGACGAGCCGGACCTGGCCGGGCTCGCGGCGTTCCTGGGCCGTGAGGTCAGGCCGCGGCTCGCCGACTGAMTVRLGIAHVPTHAPESLRTLATAAEDAGLDDLWVWEDCFKQSGLASAAAALAWTDRIRVGLGLMPAPLRSTALTAMEIATLARSFPGRFVPAVGHGVQSWMGQSGVRVDSPLTLLREHLEALRSLLDGAQVTTSGRYVTLDAVRLDWPPTTPVPLWTGGFGPRTLALTGELGDGLILGNALTPDAVRDAVAITRDAATAVGRELVDVHATLIVATGPHAAERLAAELPQWGAELASGIGAAGGADEIAAGVRALADAGATAVAIQPTADEPDLAGLAAFLGREVRPRLADNANANANANA
AK018_01498543hypothetical proteinATGAGCGTCGAAGTGCAACAGATCATAGCCACCGGCCCGGCTGATCGGGCTGGCGGCGCTGTCGAGATCGTCGAGGTCCCGTGGGACGACGCCGAGGCGGTCGCGCTGCGTGCCGAGGCTGTCGCCGATCTGGGCCGCCGCTACGGCGGTGACGAGGACGCCAAGGAGGTCATCGACCCGGTGAGCATCGTCGTGACGCTCCTGGCACGGGTCGACGGCGTGACCGCCGGGTGCGGCAGCGTCCGGGACGTCTCCGGCACCGACGACGGTCGCGGACGGGGCGGCACCCACCCGGCCGCGACCGGCGAGGTCAAGCGGGTCTACGTCCTGCCCGAGCACCGGGGCCACGGCGTCGCCCGGCGGCTCATGGGCGAGCTCGAGCGTGCCGCCCGGCAGGTCGGGTTCCGGCGCTTCGTGCTGGAGACCGGCACCGCCCAGCCGGAGGCGATGGCGATGTACGACGCGCTCGGCTACGCGCCGATCGAGTCGTACGGCCGGTACGCCGCCGAGGACGACCAGCGCTGCTACGGCAAGGACCTCTGAMSVEVQQIIATGPADRAGGAVEIVEVPWDDAEAVALRAEAVADLGRRYGGDEDAKEVIDPVSIVVTLLARVDGVTAGCGSVRDVSGTDDGRGRGGTHPAATGEVKRVYVLPEHRGHGVARRLMGELERAARQVGFRRFVLETGTAQPEAMAMYDALGYAPIESYGRYAAEDDQRCYGKDLPGPT0007180_1025DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007180-iaaT|yedL|ysnE-K03829NANA
AK018_01499720purQ_2COG0047Phosphoribosylformylglycinamidine synthase subunit PurQATGGCGGCGGGCACGCTCGCCTCCGCCCGCATCGGCGTCATTACGTTCCCGGGCACCCTGGACGACCGCGACGCGGCCCGCGCCGTGCGGCTGGCCGGCGGGGAGCCGGTGTCCCTGTTCCACGCCGACGGAGACCTGCAGGGGGTTGACGCCGTCGTGCTGCCCGGCGGGTTCTCCTACGGCGACTACCTGCGGGCCGGGGCGATCAGCCGGTTCGCCCCCGCGATGGACGCCGTCGTGGACGCCGCGCGCGGCGGGATGCCGGTGCTCGGTATCTGCAACGGCTTCCAGGTCCTCACCGAGGCCCATCTGCTGCCGGGATCCATGATCAAGAACGACCACCTGCACTTCGTCTGCCGCGAGCAGGTCCTGGCCGTGGAGAACGCCGCGACGGCGTGGACCAACCGGTACGAGCGGGGCCAGCACATCACGATCCCGCTGAAGAACCAGGACGGCCAGTTCGTCGCCGACGAGCGCACCCTCGACGAGCTCGAGGGGGAGGGCCGCGTCGCCTTCCGCTACGTAGGGACCAACCCGAACGGCTCGCGCCGCGACATCGCCGGCATCACCAACGCCGCCGGCAACGTGGTGGGGCTCATGCCGCACCCGGAGCACGCGGTGGAGGCCGGGTTCGGCCCCGAGGCCGCCGACGGCACCAAGACGGGTGTGGACGGGCTGGGCTTCTTCACGTCCGTGCTCGCGGCCCTCGTCCACGCATGAMAAGTLASARIGVITFPGTLDDRDAARAVRLAGGEPVSLFHADGDLQGVDAVVLPGGFSYGDYLRAGAISRFAPAMDAVVDAARGGMPVLGICNGFQVLTEAHLLPGSMIKNDHLHFVCREQVLAVENAATAWTNRYERGQHITIPLKNQDGQFVADERTLDELEGEGRVAFRYVGTNPNGSRRDIAGITNAAGNVVGLMPHPEHAVEAGFGPEAADGTKTGVDGLGFFTSVLAALVHAPGPT0020220_379DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020220-purQ-K23265NANA
AK018_01500273purS_2Phosphoribosylformylglycinamidine synthase subunit PurSGTGGGACGCGTCGTCGTCGAGGTCATGCCCAAGCCCGAGATCCTGGACCCCCAGGGCAAGGCCGTGGTCGGGGCGCTGCCGCGCCTCGGCTTCACCCAGTTCTCCGGTGCCCGCCAGGGCAAGCGGTTCGAGCTCGAGGTCGACGGCGAGGTGACGCCCGAGGTGCTCGAGGCCGCCCGCCAGGCCGCCGAGACGCTGCTGTCCAACCCGATCATCGAGGACGTCGTGCGCGTCGCGGACGCCTCCGAGGAGTCCGCCGGGGCGGTGGCCTGAMGRVVVEVMPKPEILDPQGKAVVGALPRLGFTQFSGARQGKRFELEVDGEVTPEVLEAARQAAETLLSNPIIEDVVRVADASEESAGAVAPGPT0021725_210DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021725-purS-K23264NANA
AK018_01501459hypothetical proteinATGACCCTGCACCGTCCCCGCGTCCGGCACCGGCCCCGCGGCACCCGGACCACCACCGCCGTCGTCGCCGCCGGCACCCTCGTGCTGCCGCTCGCCGCCTGCTCCGGCTCGGGGTCCGAGGAGCCGGAACCCGAGCCGGGACCCGACGCCGAGCCCCGCACCTACCGCACCGTCGAGATGACGGCGCCGCCCCTGCCGATCACGGAGGGGGACGCCGCGGACCAGGACGACTCCGACGCGCTCTACTTCCTCGCGCCCAAGAAGGAGGCCGAACCGCACCTGGGCGGCCTGATCGTGGACGCCACGGGCGAACCCGTGTGGATCGACCCGGCGGAGACGCCGATGTACGACTTCCGCGTGCAGGAGTACGACGGCGAGCCCGTCCTGACCTACTACCGCGGCGAGTCGGACTTCGTGGGCCACGGCACCGGGGACATCCACCTGCTCGTCGGGAACTGAMTLHRPRVRHRPRGTRTTTAVVAAGTLVLPLAACSGSGSEEPEPEPGPDAEPRTYRTVEMTAPPLPITEGDAADQDDSDALYFLAPKKEAEPHLGGLIVDATGEPVWIDPAETPMYDFRVQEYDGEPVLTYYRGESDFVGHGTGDIHLLVGNNANANANANA
AK018_01502729hypothetical proteinGTGCTGATCTCGAGCCGGCAGTACCACGCCGCGTACGCCGTGGACCGCACCAGCGGCGAGGTCCGCTGGACGCTCGGCGGGGAGGACTCCGACTTCACGATGGAGGGCTCGGGCGAGGACGACGAACCCGGCACCGGCGCGCAGTTCGCGTGGCAGCACGACGTCCAGCAGCACGACGACGGCACCGTCACCCTGTTCGACAACCAGGGCAACCCTCCGATCGGCGAGTACTCCCGCGGCCTGCGGCTCGCCCTCGACACGGACACCATGACCGCGTCCGTGGACCAGGAGTGGCTGCCCAGTGACCCGGAGCTGCTCGCCGGCAGCCAGGGCAACCTGCAGGTGCTCGACAACGGCAACGTGATCGTCGGGTGGGGCGACGCGCAGTGGACCAGCGAGTACACCGACGACGGCACCCTCGTGCGCGAGTTCCCGTTCCTCGGCGGGGAGACCTACCGGGCCTACCGCTTCGACTGGCAGGCCACGCCCACGGACCCGCCCGCCGTCGTCGTCACCGACGGCACGGCCTACGTCAGCTGGAACGGCGCCACCGACGTCGCGAGCTGGCGTCTGGTCGCGGGCGCCGACGCCGACTCGGCGTCCGAGGTCGCCACCGTGGCGCGCGACGGGTTCGAGACCGCCGTGGACGGTGTGCCCGACGACGCCGAGTACGTCGCGCTCGAGGCCCTCGACGCCGACGGGGAGGTCCTCGTCACCGGCACCCCGTGAMLISSRQYHAAYAVDRTSGEVRWTLGGEDSDFTMEGSGEDDEPGTGAQFAWQHDVQQHDDGTVTLFDNQGNPPIGEYSRGLRLALDTDTMTASVDQEWLPSDPELLAGSQGNLQVLDNGNVIVGWGDAQWTSEYTDDGTLVREFPFLGGETYRAYRFDWQATPTDPPAVVVTDGTAYVSWNGATDVASWRLVAGADADSASEVATVARDGFETAVDGVPDDAEYVALEALDADGEVLVTGTPNANANANANA
AK018_01503120hypothetical proteinATGGGTCCGGATGAGTTCGCCGTGACCCTATCGGTCGGTGTCGACACCAGGGAAGACGCGCACCGCGCCGCCGTGGTCCGCGAGCCCGCACCCCCGCCGGCCGTCACGGGGTGCCGGTGAMGPDEFAVTLSVGVDTREDAHRAAVVREPAPPPAVTGCRNANANANANA
AK018_01504816hypothetical proteinGTGACGTCGCCGACGACACCCCCCGACCCCTACCAGACCCCGGGGGCGTCGCCGCACCCCGCGGGCGCTCGGCCGTCCGACGTCCCGGACCCGTACGGCGTGCCGGCGCCGACGTCGCCGGTGGACGCTGGCGGGCCCGACGCCCAGCAGCCGCCCTCCGCGGGGCAGCCGCCCTACGGACCGCCGCAGCCGGGCGGGACCGACGGCGTCTCCGTCGCCGCCCTGGTCACGGGCATCCTGGGCACGGGGCTGATCGCGGTCGGTCTCGGCATCGCCGGCCTGGTGCGCATCCGGAGGTCGGGGCGCGGGGGCAAGGGTTTCGCGATCACCGGCATCGTCCTGGGCTCCCTGGCGACCGTCGCCTGGATCGCCGCCATCGGACTCCTCGCCGCGCTCTTCACCGACGAGGACGTCCAGGCGGAGCTCCGGGAAGGCTTCAACGAGGGGTACCAGCAGTCCATGGGCCTCGACATGGTGGTGGGCGACTGCTTCGACACGCCCGCCGACCTCATGAGCGGCGACCCCATGGTCCCGGCGGACTGCGCCGCGGCCCACGACGCCGAGGTCATCGCCGTCGACGTCGTCGCGGGGCAGGAGTTCCCCGGCGACGACGCCGTGCTCGGCGAGGTCGAGACCCTCTGCCTCGACTCGTTCGCGCGGTACATCGGCACCGAGTACGCCGACTCCGAGCTGGATCTCATCTACTTCTACCCGACGCAGGCGTCGTGGACCCTCGGTGACCGGCTGATGCTGTGCGCCGCCGTCACGATGGACGGTTCCCCGCTCGAGGGGTCGGTGGAGGGCGCCGGGATCTGAMTSPTTPPDPYQTPGASPHPAGARPSDVPDPYGVPAPTSPVDAGGPDAQQPPSAGQPPYGPPQPGGTDGVSVAALVTGILGTGLIAVGLGIAGLVRIRRSGRGGKGFAITGIVLGSLATVAWIAAIGLLAALFTDEDVQAELREGFNEGYQQSMGLDMVVGDCFDTPADLMSGDPMVPADCAAAHDAEVIAVDVVAGQEFPGDDAVLGEVETLCLDSFARYIGTEYADSELDLIYFYPTQASWTLGDRLMLCAAVTMDGSPLEGSVEGAGINANANANANA
AK018_01505972purC_2COG0152Phosphoribosylaminoimidazole-succinocarboxamide synthaseGTGACCGATCTCGACACGTCCGACGCCTTCGCCGGCGGGCCCCTGGACCTGCCCGGCTGGCGGCACGTCTACTCCGGCAAGGTCCGCGACCTGTACGCCCCGGACCTGCCGGCGCTCGGTGGCGTCCACCCGCTGGGCGACGTCGTGCTGGTGGTCGCCAGCGACCGCGTGTCGGCCTACGACCACGTGCTCAGCCCCGGGATCCCCGACAAGGGCGTGGTGCTGACCCAGCTCAGCCTGTGGTGGTTCGACCAGCTCGCCGACCTGGTGGACAACCACGTCGTCTCGACCGAGGCGAGCGCCGAGCCCGGTGACGGGCTGGTGCCCGACATCGTCGCCGGCCGGGCGATGATCTGCCGCCGTCTGGACATGTTCCCCGTCGAGTGCGTGGCCCGCGGCTACCTCACCGGGTCGGGGCTGGCCGAGTACCGCGCCGGCGGGGAGGTCACGGGGATCCCGCTGCCCGCCGGGCTCGAGGACGGATCGCGCCTGCCCGCGCCGATCTTCACCCCGGCCACCAAGGCCGAGGTGGGCGAGCACGACGAGAACGTCACGTTCGCCGAGGTCGCCCGCCGGATCGGGTACGACGACGCCGCGCGGCTGCGCGACCTCACCCTCGCCGTCTACGCCCGCGCCGAGCAGGTCGCCCGCGAGCGCGGCGTGATCCTCGCGGACACCAAGCTCGAGTTCGGGACGGTGACCGGCCCGGACGGCGAGCGGCGCATCGTGCTCGGCGACGAGGTCCTCACCCCGGACTCGTCGCGGTTCTGGCCCGCCGACGACTGGGAGCCGGGTCGTGCCCAGCCGAGCTTCGACAAGCAGTTCGTGCGCGACTGGCTGACGTCGGACGCCTCCGGGTGGGACCGCGCGGGCGACGCGCCGCCGCCCGCGCTGCCGGCCGACGTCGTGCAGCGCACCCGCGAGCGCTACCTGGAGGCGTACGAGCGCCTCACCGGGTCCCCGCTGCGCTGAMTDLDTSDAFAGGPLDLPGWRHVYSGKVRDLYAPDLPALGGVHPLGDVVLVVASDRVSAYDHVLSPGIPDKGVVLTQLSLWWFDQLADLVDNHVVSTEASAEPGDGLVPDIVAGRAMICRRLDMFPVECVARGYLTGSGLAEYRAGGEVTGIPLPAGLEDGSRLPAPIFTPATKAEVGEHDENVTFAEVARRIGYDDAARLRDLTLAVYARAEQVARERGVILADTKLEFGTVTGPDGERRIVLGDEVLTPDSSRFWPADDWEPGRAQPSFDKQFVRDWLTSDASGWDRAGDAPPPALPADVVQRTRERYLEAYERLTGSPLRPGPT0021565_602DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021565-purC-K01923NANA
AK018_015061293purD_2COG0151Phosphoribosylamine--glycine ligaseGTGAAGATCCTCGTCGTCGGGAACGGTGCTCGCGAGCACGCCATCGTCCACGCCCTCGCGGCCGAGGCTTCGGGCGGTGACGTGCACGAGCTGCACGCGGCCCCCGGGAACCCCGGCATGGCCGCGCAGGCCACGCTGCACCCCGTCGACGCCCTCGACGGCACGGCCGTCGCCGCGCTGGCCGCGGAGCTCGGCGCGGACCTCGTCGTCGTCGGACCCGAGGCGCCGCTGGTCGCCGGGGTGGCCGACGTCATGCGGGACGCCGGCATCCCCGTCTTCGGTCCGTCCGCCGAGGCCGCCCGGCTCGAGGGGTCCAAGGCGTTCGCCAAGGAGGTCATGGCCGCGGCCAACGTGCCCACCGCGATGGCGCACGTGTGCACCTCCCTCGACGAGGTCGCCGCCGCCCTGGACGCGTTCGGCCCGCCCTACGTCGTCAAGGACGACGGCCTGGCCGCCGGCAAGGGCGTCGTCGTCACCTCCGACCGGGACGAGGCGCTCGCGCACGCCGACGGCGCGCTGTCCGCCCGCGGCGCGGACGCCCGCGTCGTGGTCGAGGAGTACCTGGACGGCCCCGAGGTCTCGCTCTTCTGCCTGTGCGACGGCACGACCGTGTCGCCCATGGTGCCCGCGCAGGACTTCAAGCGGGCGCTCGACGGCGGCGAGGGCCCCAACACCGGCGGGATGGGCGCCTACACGCCGCTCGACTGGGCGCCGTCCGGACTGGTCGGCGAGGTCGTCGACCGGATCGCGCAGCCCACGGTGGACGAGATGGTGCGCCGCGGCACCCCGTTCGTGGGCGTGCTGTACGTGGGGCTCGCGCTGACCTCCCGCGGCACCCGCGTGGTCGAGTTCAACGCCCGCTTCGGCGACCCGGAGATCCAGGCGGTGCTCGCCCGCCTCACCACGCCGCTGTCGGGGGTGCTGCTCGCGGCCGCGCGCGGCGAGCTCGCCGACTTCCCGCCGCTGGTCTGGTCCGACGACGCCGTCGTCAACGTCGTGGTGGCGTCCACCGGCTATCCCGAGGCGCCCCGCACGGGCGACCCGATCACCGGCGTCGAGGCCGCCGAGGCGCTCGACGCGGTCCACGTGCTGCACGCGGGCACCGCCCGGTCCGACGACGGCACGCTCGTGTCCGCGGGCGGTCGCGTGCTGTCCGTGGTCGGGCGGGGGACGGACCTCGCCGCGGCGCGCGCCGCCGCCTACGCCGGGGTCGCCGAGGTCGACCTGGCCGACTCCCACCACCGGACCGACATCGCGCTCGCCGCCGAGCGCGGAGAGGTGCAGCTGCCGTGAMKILVVGNGAREHAIVHALAAEASGGDVHELHAAPGNPGMAAQATLHPVDALDGTAVAALAAELGADLVVVGPEAPLVAGVADVMRDAGIPVFGPSAEAARLEGSKAFAKEVMAAANVPTAMAHVCTSLDEVAAALDAFGPPYVVKDDGLAAGKGVVVTSDRDEALAHADGALSARGADARVVVEEYLDGPEVSLFCLCDGTTVSPMVPAQDFKRALDGGEGPNTGGMGAYTPLDWAPSGLVGEVVDRIAQPTVDEMVRRGTPFVGVLYVGLALTSRGTRVVEFNARFGDPEIQAVLARLTTPLSGVLLAAARGELADFPPLVWSDDAVVNVVVASTGYPEAPRTGDPITGVEAAEALDAVHVLHAGTARSDDGTLVSAGGRVLSVVGRGTDLAAARAAAYAGVAEVDLADSHHRTDIALAAERGEVQLPPGPT0021575_976DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021575-purD-K01945NANA
AK018_01507708hypothetical proteinATGACGGCCCCGGCCGCGGTGGTCGCCGCGCTCGCCCCGACCGGGGTGCTGCGCGCCGTGATCAACCTCGGCAACGCCGTGCTCGCCCAGGGGGCGCCGGACGCGCCGAGCGGGGTGACGGTCGCGCTCGCCCGCGAGCTGGCCGCGCGGCTCGGCGTCGACGCGGACCTCACCTGCACCGACGCGGCGCGGGACTCCTTCGCCGCCGTGCGTGACGGGCGGGTCGACGTCGGGTTCCTCGCCGCCGAGCCGCAGCGCGCCGAGCACGTCGCGTTCACCGACCCCTACGTGCTGATCGAGGGCGTGTACGCGGTACCGGCGTCGTCGTCGCTGCGGACGGCGGACGACGTCGACGCCCCCGGTGTGCGGATCGGCGTGAAGGAGGGGTCCGCGTACGACCTGGCGCTGACCCGCACGCTGCAGCACGCGCAGATCGTGCGTGGCGCCGAGGGCACGGCCGTGCTCGAGGCCGGGGCGGCCGACGTCGCCGCCGGGATCCGCCAGCCCCTGACGCGCTGGGCCGACGCCCGCGACGTGCGGGTGCTCGAGCCGCGGTTCACCGAGATCCGGCAGGCCGTCGCCACCGGGCGCGACCGGGCGCCCGTGGCCGTCGAATGGCTGCGGGGCCAGGTCGCGGACCTGGTCGGGAGCGGATTCGTGGCCGACGCCCTCGCGGCCTCCGGCCAGGACGCCACCGTCGCGTCCTGAMTAPAAVVAALAPTGVLRAVINLGNAVLAQGAPDAPSGVTVALARELAARLGVDADLTCTDAARDSFAAVRDGRVDVGFLAAEPQRAEHVAFTDPYVLIEGVYAVPASSSLRTADDVDAPGVRIGVKEGSAYDLALTRTLQHAQIVRGAEGTAVLEAGAADVAAGIRQPLTRWADARDVRVLEPRFTEIRQAVATGRDRAPVAVEWLRGQVADLVGSGFVADALAASGQDATVASPGPT0020800_16230DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
AK018_015081296purA_2COG0104Adenylosuccinate synthetaseATGCCAGCCGTGGTGCTCGTCGGCGCCCAGTGGGGCGATGAGGGCAAGGGGAAGGCGACGGACCTCCTCGGCGACCGCGTCGACTACGTGGTCAAGTTCAACGGCGGCAACAACGCCGGGCACACCGTCGTCATCGGTGACGAGAAGTACGCCCTGCACCTGCTGCCGTCCGGGATCCTGTCGCCGGGCGTGACGCCCGTGATCGCCAACGGCGTCGTGGTGGACATCGACGTGCTGTTCGAGGAGCTCGACGCCCTGAACGCGCGCGGGGTCGACACCTCGAGGCTGATGGTCTCCTCGCAGGCGCACGTCATCGCGTCCTACCACCGCACGGTGGACAAGGTGACCGAGCGGTTCCTCGGCAAGCGGCGCATCGGCACCACGGGCCGCGGCATCGGCCCGGCCTACGCCGACAAGATCAACCGCGTCGGGCTGCGCGTCGCCGACCTGTTCGACCCCAAGATCTTGCGCGAGAAGGTCGAGGGGGCGCTCGACCAGAAGAACCACCTGCTGGTCAAGGTCTACAACCGTCGCGCCGTCGAGGTCGACGAGGTCGTCGACGAGCTCCTCGGCCACGCCGAGCGGCTGCGCCCGATGGTCGCCGACACGGGACTGGCGCTGAACCAGGCGCTCGACGCCGGCAGCACCGTGCTGTTCGAGGGCGGCCAGGCGACCATGCTCGACGTCGACCACGGCACCTACCCGTTCGTCACGTCGTCGAACGCCACGGCGGGCGGCGCCGTCACCGGCTCCGGGGTGGGGCCGACGCGGATCGACTCCATCATCGGCGTCATCAAGGCCTACACCACCCGCGTGGGCGAGGGGCCGTTCCCCACCGAGCTGTTCGACGCCGACGGCGAGTACCTGCTCAAGACGGGCGGCGAGTACGGCGTCACCACCGGTCGCGCCCGCCGCTGCGGCTGGTACGACGCGGTGATCGCCCGCTACTCCGCACGGGTCAACGGGCTCACCGACCTGGTCGTGACCAAGCTCGACGTGCTCACCGGCATGGAGAAGGTCCCGGTGTGCGTGGCCTACGACGTCGACGGCGTCCGCTACGACGAGATGCCGGACGACCAGTCGGCGTTCCACCACGCGAAGCCGATCTACGAGGAGTTCCCCGGGTGGTGGGAGGACATCTCGCGGTGCCGGTCGTTCGACGAGCTCCCCGCCAACGCCCAGGCGTACGTCCGGGCGCTCGAGGAGATGTCGGGCTGCCGCATCTCCGCGATCGGCGTCGGCCCGCGACGCGACGAGATCATCCCGGTGCACGACCTCATCCACGCCCGGGCATGAMPAVVLVGAQWGDEGKGKATDLLGDRVDYVVKFNGGNNAGHTVVIGDEKYALHLLPSGILSPGVTPVIANGVVVDIDVLFEELDALNARGVDTSRLMVSSQAHVIASYHRTVDKVTERFLGKRRIGTTGRGIGPAYADKINRVGLRVADLFDPKILREKVEGALDQKNHLLVKVYNRRAVEVDEVVDELLGHAERLRPMVADTGLALNQALDAGSTVLFEGGQATMLDVDHGTYPFVTSSNATAGGAVTGSGVGPTRIDSIIGVIKAYTTRVGEGPFPTELFDADGEYLLKTGGEYGVTTGRARRCGWYDAVIARYSARVNGLTDLVVTKLDVLTGMEKVPVCVAYDVDGVRYDEMPDDQSAFHHAKPIYEEFPGWWEDISRCRSFDELPANAQAYVRALEEMSGCRISAIGVGPRRDEIIPVHDLIHARAPGPT0020140_2375DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020140-purA-K01939NANA
AK018_01509378hypothetical proteinATGATCGAGATCGCGACGTCCTCCACGACGACGACGCTCGTGATCGCGGGCGACCTCGATCTTGCCGAGCGCGACCAGTTCCCCGAGATCGCCGCGCGCGTGGTGGGTCTGCGCCGCCAGTTGCTCGTGATCGACATGTGCCGGGTCACCTTCATGGACTCCACGGGTGCGGCGTTCCTGATCTCGCTGGCCGACTCGGGCCGCAAGCGCGGGGGAGCGACGGTGCTGCGGGGGGCGGACGAGCGCGACCTGTTCGTGCTCGAGGTGTGCGGGGCGCTGGAGCTGTTCCGCATCGACACCGACCACCGCTGCGAGTCCGCCTCGCAGTCGCCGGGGACGGGTCCGGTCCAGCTCCCGCAGCGTCCGCGGCCCTCCTGAMIEIATSSTTTTLVIAGDLDLAERDQFPEIAARVVGLRRQLLVIDMCRVTFMDSTGAAFLISLADSGRKRGGATVLRGADERDLFVLEVCGALELFRIDTDHRCESASQSPGTGPVQLPQRPRPSPGPT0014350_1918DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
AK018_01510444hypothetical proteinATGACCTCACCGAAGCCTGTGGAGAACCTGCTCGGGGGCCCGCCCCCGACGCTCCTGCCGGACGACCACGCCGCCGCGCGCGAGGGGCTGGAGACGGGCGAGGACCCGGCCCGCCTGGCCGCCACCGACCCGTCCGCCGGCCTGGTCTGGGCCGTGCTGGCCGAGCAGACCCTCGACGGTGGTGACGACGTCGTGCACGCGGTCACCGCCTACGCGTACGCCCGCACCGGCTACCACCGCGGGCTCGACGCGCTGCGACGCGCGGGCTGGCGCGGGCAGGGCCCCGTCCCGGCCGACCACGTGCCCAACCAGGGGTTCCTGCGGGCGCTGCTGGCGCTGGCGGAGGCCGCCGGACGCATCGGCGAGGACGACGAGGCGCAGCGGTGCGAGCAGTTCCTCGTCGACTCCGGCACGTCGGCCGACGAGGTGCGCGCCCTGCGCTGAMTSPKPVENLLGGPPPTLLPDDHAAAREGLETGEDPARLAATDPSAGLVWAVLAEQTLDGGDDVVHAVTAYAYARTGYHRGLDALRRAGWRGQGPVPADHVPNQGFLRALLALAEAAGRIGEDDEAQRCEQFLVDSGTSADEVRALRNANANANANA
AK018_015112163hypothetical proteinATGTCCCCCTCCCCGGCGGGACTTCTGCCCGTCTCGGCGGACCATCTGACGGCCGCGCTCGCCGCGACCGGCGTCCCCACCTTCATCACCGGGGCGTGGTCGGCGGGCATGCCGGTGCTGTGGGTCAACGCCGCGTTCGAACGGTTCGTCGGGATGACGGTCGAGGACCTGGCCGTGCTCGGCCCGAACGCGCTGCTGGCGCTGGTCGACGACGACCCCGAGCGCGAGCCCGCGCAGGTGGACCTGGTCGCGGGGCGCCCGATGCGCCGCATCGTCGGGATGCGCGCCCGGGACGGCCGGACCAGCTGGCTGCAGATCGACGTCACCCCGCTGCCCTCGGACGACGGCGGCGCGCACCACTGGGTGGGCATGGCCACCGACGTGTCCGAGTACGTCGACCGGCAGGCGGCGCAGCTCGCGTCGCTGGAGGTGGAGCGCCAGCAGCGCGCGGACCTCGACCTGATCGCCCAGACCACCGAGCTGCTCGGCGACCTCGAGTATCCCCTGGCGCTGCGGGACATCGCCGACCTGCTGCGCTCGCTCGTGCCCTGGGCGAGCTTCTACCTCAACGACGACGGCCTGCTGCACGCCGACGGCGTCGACGTCGCCTCGCCGCCGTCGGGCCGGGGGCGCCGGCACGCCCGGTACGTCCCCGCGCCGCCGGGCGAGCCCTCGACCGGGCCCGGGGACGCCGTGGAGGGCGGCGAGACGCTGGCGGGCGACCACGTGCAGGACCTCCTGGACGGTCTCGTCGACGGTCCGGTGCGGCTCGACCTCGGGGCCACCTACCCGCCGTTCTCCGCCTCGGGCTGGCTGTCCCGGGACCTGCGGCACCGCGTCGTGGAGGAGACGGGCGCGATCCCGCGCTCCGTCGTCGTGCACGCCGTGGCCGGTCGACGCCGCGTCCTCGGCCTGGTCGTGACCTGGCACGGGGACGCGCAGGGCGAGCCCCCCGCCACCGCACCGGCCCCGGAGGGCGAGCACGTCGTCACCGTCGTCGAGGTCGTGGCCCGCCGTGCGGGGACGGCTATCGACAACGCCCGCCTCTACGCCCGTGAGCACCGGCTCGCGGAGGCCCTGCAGCGCGCCATGCTCCCCGAGCAGGCGGACGTCACCGGCCTGGACGTGTGGACCTACTACGCGCCCAACGCCGAGCACGCGCAGGTCGGGGGCGACTGGTACGACCTGCTGCAGATCGCCGACGGCACCGTGGGCCTCGTCATCGGTGACGTCGTGGGGCACGACGTCGAGGCTGCGGCGGCGATGGGCCAGCTGCGCTCCGTGGTGCGCGCCTATGCCTACGAGCTGACGCGCCCGGACACGGTCCTGGACCGCGTCGACCAGCTCGTGACGGGGATGCGGGTGCCGCGGCCGGCGTCGCTCGTCTACGCCACCCTGGAGCACCGGGTCGAGGACGACACGTGGGCGCTGGACTACACGCGCGCCGGGCACCTGCCGCCGCTCCTCCTGCGCGAGGGGACGGTCCGCCTGCTCTCCGGCGCGGGGGGACCGCTGGTGGGGTTCGGGGCCGACCCGCGCGCCGTCAGCCGGGAGGAGCTGTGCCGCGGTGACGTGCTGCTGTTCTACACCGACGGGCTGATCGAACGCCGCGACCGGTCCCTGAAGGTCGGCCTGGACACGCTCGTCGACATCTCCGCGCGGATCACCGCCCGGGACTCCGCCGGCGTCGGCGAGGAGCTGCTGGCCCGCCTCGCGGACGCCCCGGAGGACGACGTCGCGATCGTCGTCGTGCGGGTGCCCGACCCGGCCACGGACGACCAGGTCACGGCGCTGAGCCCGCGGTCGCGCCGGTGGCTGCTGCCGAGCGAGCCGGCGTCCATCGGTCGTGCGCGCCACGCGGTGCTGCGCACCTGCCAGGCGTGGGGGCTGCCGGACTCCGCGGCCGCCGAGCTGGTGGTGTCCGAGCTGGTCGCCAACGGCGTGCTGCACGGCTGGGGGAACATCGCCCTGCGCCTGTACGACACGGGCGAGGGGCTGCGCATCGAGGTGGAGGACGCCAACCCGGCGCCGCCGGTCGCCACCGACGGGCACCCGAACCGGCTGGGCGGGTTCGGCATGCAGATCGTCGAGCGGCTCGCCGACTGGGGCTGGCGTCCGGCCGGCAGCGGCAAGCTGGTGTGGGCGCGGCTGCGGGCGACCTGAMSPSPAGLLPVSADHLTAALAATGVPTFITGAWSAGMPVLWVNAAFERFVGMTVEDLAVLGPNALLALVDDDPEREPAQVDLVAGRPMRRIVGMRARDGRTSWLQIDVTPLPSDDGGAHHWVGMATDVSEYVDRQAAQLASLEVERQQRADLDLIAQTTELLGDLEYPLALRDIADLLRSLVPWASFYLNDDGLLHADGVDVASPPSGRGRRHARYVPAPPGEPSTGPGDAVEGGETLAGDHVQDLLDGLVDGPVRLDLGATYPPFSASGWLSRDLRHRVVEETGAIPRSVVVHAVAGRRRVLGLVVTWHGDAQGEPPATAPAPEGEHVVTVVEVVARRAGTAIDNARLYAREHRLAEALQRAMLPEQADVTGLDVWTYYAPNAEHAQVGGDWYDLLQIADGTVGLVIGDVVGHDVEAAAAMGQLRSVVRAYAYELTRPDTVLDRVDQLVTGMRVPRPASLVYATLEHRVEDDTWALDYTRAGHLPPLLLREGTVRLLSGAGGPLVGFGADPRAVSREELCRGDVLLFYTDGLIERRDRSLKVGLDTLVDISARITARDSAGVGEELLARLADAPEDDVAIVVVRVPDPATDDQVTALSPRSRRWLLPSEPASIGRARHAVLRTCQAWGLPDSAAAELVVSELVANGVLHGWGNIALRLYDTGEGLRIEVEDANPAPPVATDGHPNRLGGFGMQIVERLADWGWRPAGSGKLVWARLRATNANANANANA
AK018_01512420hypothetical proteinGTGCACGACGGATCGAACACGGCCGCGGACCGCCCCGTCGACGACGACGGCGCGGACCCCGCCGCGCCCCGGATCGGTGACCCCGCCAGCGTCCACGTCATCCAGGGCACCTCGCGCGCCCGGGTCGTGCTGTCCGGCGAGATCGACGCCGACATCAGCGCCGAGCTCGGCGACGCCATCTCCGACGCCGAGGCCTCGGGCCTGCCCGTCGAGATCGACGCTCACCACGTGACCTTCATGGACTCCTCCGGCGTCGCGTTCCTCGCTCGCCTCGCCACCCGCAGCCCGCACAAGGTGCGCGTCCTGCGGGCCCCGCCCACCGTCCGGTTCCTGCTCGACGTGACCCGCATCGGCGAGCTGCTCGAGATCGTCGACGAGGACCCGGGCGTCGACCTCGACGTCACCACGACCCGCAACTGAMHDGSNTAADRPVDDDGADPAAPRIGDPASVHVIQGTSRARVVLSGEIDADISAELGDAISDAEASGLPVEIDAHHVTFMDSSGVAFLARLATRSPHKVRVLRAPPTVRFLLDVTRIGELLEIVDEDPGVDLDVTTTRNPGPT0014350_218DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
AK018_015131020fba_2Fructose-bisphosphate aldolaseATGCCTATCGCAACCCCCGAGGTCTACGCCGAGATGATCGACCGGGCGAAGGCTGGCAAGTTCGCCTACCCCGCCGTCAACATCACCTCGTCGCAGACCGTCACCGCCGCCCTGCAGGGCTTCGCCGAGGCGGAGTCGGACGGCATCATCCAGGTCTCCGTGGGTGGTTCGGAGTACGGTTCGGGCGCCACGATCAAGGACCGCGTGACCGGTTCGCTCGCGCTGGCCGCGTACGCGACGGAGGTCGCGAAGAACTACCCGGTCAACATCGCGATCCACACCGACCACTGCGTCAAGAAGAACCTGGACTCCTGGGTCCGTCCGCTGCTCGCCCTCGAGGCCGAGCAGGTCAAGGCCGGCAAGAACCCGACCTTCCAGTCCCACATGTTCGACGGCTCGGACATCCCGCTGGAGGAGAACCTCGTCATCGCCGAGGAGCTGCTCGAGCTCTCGCAGGCCGCCCGCACCCTCCTCGAGGTCGAGATCGGCGTCGTCGGCGGCGAGGAGGACGGCCACGTCGCGGAGATCAACGAGAAGCTGTACACGACCCCCGAGGACGGCCTGGCCACGGTCCGCGCGCTCGGCGCCGGTGAGAAGGGCCGCTACCTGACGGCGCTCACCTTCGGCAACGTGCACGGCGTCTACAAGCCCGGTGCCGTCAAGCTGCGTCCCGCGATCCTGGGCGAGATCCAGAAGGCCGTCGGGGACGAGATCGGCAAGGAGAACCCGTTCGACCTCGTGTTCCACGGCGGTTCGGGCTCCACGGCCGAGGAGGTCGCCGAGGCGGTCGACAACGGCGTCATCAAGATGAACATCGACACCGACACCCAGTACGCGTTCTCGCGCCCGGTCGCGGACCACTTCTTCCGCAACTACGACGGCGTGCTGAAGGTGGACGGCGAGGTCGGCAACAAGAAGGCGTACGACCCGCGCGCCTGGGGCAAGCTGGCCGAGGCCGGCATGGCCCAGCGCATCGTCGAGGCCTGCCAGTGGCTGCGCTCGGCCGGTCACAAGATGTGAMPIATPEVYAEMIDRAKAGKFAYPAVNITSSQTVTAALQGFAEAESDGIIQVSVGGSEYGSGATIKDRVTGSLALAAYATEVAKNYPVNIAIHTDHCVKKNLDSWVRPLLALEAEQVKAGKNPTFQSHMFDGSDIPLEENLVIAEELLELSQAARTLLEVEIGVVGGEEDGHVAEINEKLYTTPEDGLATVRALGAGEKGRYLTALTFGNVHGVYKPGAVKLRPAILGEIQKAVGDEIGKENPFDLVFHGGSGSTAEEVAEAVDNGVIKMNIDTDTQYAFSRPVADHFFRNYDGVLKVDGEVGNKKAYDPRAWGKLAEAGMAQRIVEACQWLRSAGHKMPGPT0017615_3010DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017615-fbaA|cbbA-K01624NANA
AK018_01514648trmH_2tRNA (guanosine(18)-2'-O)-methyltransferaseATGCCTGAGCAGGGCCGGAGCCCGGGGCCGGACGCCCCTCGGGTCGCCCAGGTCGGCGTGGGGCCCTGGGAGGGGCCGTGGCCCGACGACCCGCGGTACGACCCCGAGCTGCTGGAGCACGGCGACCGGCGCAACGTCGTCGACCGCTACCGTTACTGGACCGTGGAGGCGGTCGTCGCCGACATGGATCAGCGGCGCGACGCCGACGCCTTGCTGCACGTGGCGATCGAGAACTGGGTGCACGACCTCAACATCGGGTCGGTGGTGCGCACCGCCAACGCGTTCAACGTGGCCGGCGTGCACGTGGTGGGACGACGGCGGTGGAACCGCCGCGGCGCGATGGTCACCGACCGCTACCTGCACGTGCACCACCGTCCCGACGCGGGCGACCTGGCCGCCTGGGCCGCCGCGGAAGGGCTAGCCGTGATCGGGGTGGACAACGTGCCCGGGTCGGTCCCGCTGGAGCGCCGCGAGCTGCCGGCCCGTTGCGTGCTGCTGCTCGGGCAGGAGTCGAGCGGCCTGACCGCCGAGGCGCAGGCCGTGTGCGACGTCGTCGTGCACATCACCCAGCACGGGTCGACCCGGTCGATGAACGCCGGGGCCGCCGCCGCGATCGCGATGCACTCCTGGGCGCTGCAGCACCTGTGAMPEQGRSPGPDAPRVAQVGVGPWEGPWPDDPRYDPELLEHGDRRNVVDRYRYWTVEAVVADMDQRRDADALLHVAIENWVHDLNIGSVVRTANAFNVAGVHVVGRRRWNRRGAMVTDRYLHVHHRPDAGDLAAWAAAEGLAVIGVDNVPGSVPLERRELPARCVLLLGQESSGLTAEAQAVCDVVVHITQHGSTRSMNAGAAAAIAMHSWALQHLNANANANANA
AK018_01515972hypothetical proteinGTGACCGACCAGCCGCACGAGCCCACCACCGACACCGGGGCGATCCACCGGCACGCCGCACCCCGTCCCGGCACGCCGTGGCGCGCCGCTCCCGGCCTCGCCGTGCGCGGGGGACTGGTCGGCATGGCCGAGTCCGTCCCGGGGATCTCCGGCGGCACGGTCGCGCTGATCACCGGTCTGTACGACCGCCTGCTCGGCGCGGCGAACCAGGTGGTGCACGCCGGCCGCGAGCTCGTCCAGGGCGTGGTGCAGCGCCGCGGGCTGCGACCGGCGGCCCGCGCGCTGCGTGCGGTGGACTGGCGGTTCCTGGTCCCGGTGATCGCCGGGATGGCGGTGGTGCTGCTGGTGTCGCTGAACACGATCGCCCCGCTCCTCGAGGAGCACCCCGTCCCGGTCCGGTCGGTGTTCTTCGGCATGATCGCGGTCTCGGTGCTGGTCCCGCTGCGCATGATGCCGCGACGGTTCCGGCCCGCCGATGCCGCCCTGCTCGTGGCGGCCGCCGTGATCGGCTTCTTCCTGGTGGGGCTGCCCCCGGCCGAGGCCTCCGACCCGTCGCTCTGGTACGTCGCCGGCGCGGCTGCCATCGCGATCAACGCCCTCGTCCTGCCGGGGGTGTCGGGGTCGACGCTGCTCGTCGTCATGGGTCTCTACGTCCCGGTCCAGCAGGCGATCGAGGACCGTGACCTGGCCTTCGTCGGCGCGTTCGCCCTGGGCGCGATCGTCGGCCTGGCCTCGTTCGTCAAGCTTCTGCACTGGCTGCTGGAGCACCGGCGGCAGGGCACGATGGCGGTCCTCGCGGGCCTGATGATCGGCTCGCTGCGGGCGCTGTGGCCCTGGCAGGACGCCGACGGCGGGCTCCTCGCACCGCCCGACGCCGGGTCCGCGCTCGGGCCGGCGCTGCTGGCGCTGGCCGGTGCCGCCGTCGTCGGCGCGGCGATCTGGTGGGAGTCGAGCCGGACCGCCGATGCCTGAMTDQPHEPTTDTGAIHRHAAPRPGTPWRAAPGLAVRGGLVGMAESVPGISGGTVALITGLYDRLLGAANQVVHAGRELVQGVVQRRGLRPAARALRAVDWRFLVPVIAGMAVVLLVSLNTIAPLLEEHPVPVRSVFFGMIAVSVLVPLRMMPRRFRPADAALLVAAAVIGFFLVGLPPAEASDPSLWYVAGAAAIAINALVLPGVSGSTLLVVMGLYVPVQQAIEDRDLAFVGAFALGAIVGLASFVKLLHWLLEHRRQGTMAVLAGLMIGSLRALWPWQDADGGLLAPPDAGSALGPALLALAGAAVVGAAIWWESSRTADANANANANANA
AK018_01516777hdpA_2Dihydroxyacetone phosphataseATGACCTCACGGACGATCGAGTGCTGGCTGACGGACATGGACGGCGTGCTCGTGCACGAGGGCGAGGCGATCCCCGGTGCCGCCGACTTCATCGCCGCCCTGCGCGAGCACGAGCGCCCGTTCCTGGTGCTGACGAACAACTCGATCTACACGGCGCGGGACCTCGCCGCGCGGCTGGCGCACTCGGGGATCGACGTCCCGGAGGAGGCCATCTGGACCTCCGCGCTCGCCACCGCGACGTTCCTCACCGAGCAGGTGCCGAACGGGTCGGCCTACGTGATCGGCGAGGCCGGGCTGACCACGGCCATGCACGAGGCCGGCTACACGCTCACCGAGTCCTCCCCCGACTACGTGGTGCTCGGCGAGACCCGCACCTACTCGTTCGAGGCGATCACCAAGGCCATCCGCCTCATCAAGGCAGGCGCCCGGTTCATCGCGACGAACCCGGACACGACCGGACCGTCGGCCGAGGGCCCGCTGCCCGCCACGGGCGCCGTCGCGGCGATGATCACCGCCGCGACCGGCCGCTCGCCGTACTACGTCGGCAAGCCGAACCCGATGATGTTCCGGTCCGCGCTGAACCGGGTCGAGGCGCACTCCGAGACGACGGCGATGATCGGCGACCGGATGGACACGGACGTGGTCGCGGGGATCGAGGCCGGGCTGGAGACGTTCCTCGTGCTCACGGGGTCCACGGCTCCCGAGGACGTCGACCACCACCCGTTCCGGCCGACCCACGTGGTCGACTCGGTCGCGGACCTCGTCGACCGCGTCTGAMTSRTIECWLTDMDGVLVHEGEAIPGAADFIAALREHERPFLVLTNNSIYTARDLAARLAHSGIDVPEEAIWTSALATATFLTEQVPNGSAYVIGEAGLTTAMHEAGYTLTESSPDYVVLGETRTYSFEAITKAIRLIKAGARFIATNPDTTGPSAEGPLPATGAVAAMITAATGRSPYYVGKPNPMMFRSALNRVEAHSETTAMIGDRMDTDVVAGIEAGLETFLVLTGSTAPEDVDHHPFRPTHVVDSVADLVDRVPGPT0021435_568DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021435-nagD-K02566NANA
AK018_01517576pyrE_2COG0461Orotate phosphoribosyltransferaseGTGACTGCTGACTTCTCCCCGACGCCCCGCGAACAGCTGCTCGAGCTCGTCAAGGAGCTCGCCGTCGTGCACGGCAGGGTGACGCTGTCCTCCGGCAAGGAGGCCGACTACTACGTCGACCTGCGCCGGATCACGCTGCACCACCGGGCTGCGCCGCTGGTCGGGCACGTGCTGCTGGACCACCTCGAGGAGGTCGGGCTGGGCACGGCGGAGGTCGACGCCGTCGGCGGCCTGACCCTCGGGGCCGACCCCATCGCCGACGCGCTGCTGCACGCCGCGGCCTCCCGCGGGCAGGACCTCGACGCCTTCGTCGTGCGCAAGTCCGCCAAGACGCACGGGATGCAGCGCCAGATCGAGGGGCCGGACGTGGCCGGGCGTCGCGTCGTCGTGCTCGAGGACACCACGACGACCGGCGGGTCGCCGATCACCGCGATCGAGGCGCTGCGCGAGGCCGGCGCGGAGGTGCTGGGCTGCGCCACGATCGTGGACCGGGCCACCGGCGCGGGGGAGAAGATCGAGGCGCTCGGCGTGCCGTACCACTACCTGTTCGACCTGGACGACCTCGGCCTCGCCTGAMTADFSPTPREQLLELVKELAVVHGRVTLSSGKEADYYVDLRRITLHHRAAPLVGHVLLDHLEEVGLGTAEVDAVGGLTLGADPIADALLHAAASRGQDLDAFVVRKSAKTHGMQRQIEGPDVAGRRVVVLEDTTTTGGSPITAIEALREAGAEVLGCATIVDRATGAGEKIEALGVPYHYLFDLDDLGLAPGPT0021200_4084DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021200-pyrE-K00762NANA
AK018_01518789hypothetical proteinATGGGAACCGCGCTCGTCACCGGCGCCACCGCCGGCCTCGGACTGGAGTTCGCCTGGCAGCTCGCCACCGCACGCCACGACCTCGTGCTCGTGGCCCGCGACGTCGACCGCCTCGACCAGGTCGCCACGCAGATCCGCGCGGCCGCCGGCGTCCACGTGGAGGTGCTCGCCGCCGACCTGTCGGTGCCCGACGACGTCGACCGCGTCGCCGCACGCCTCACCGCGGACGGGCACGACGACGGGCCGTCGGGGGCCGCTCCCGGGGCCCGGCCCGTCGGGCTGCTGGTCAACAACGCCGGGTTCGCGCCCGCCCAGCGGTTCGTCGGCGGCGACGTCGACGTCGAGCTGCGCGCGATCGACGTCATGGTCCGGGCCGTCGTCCGCCTCACGCACGCCGCCCTCGGGCCGATGACCGCCCGGGGCCGCGGCGCCGTGCTCAACGTCGCCTCCGTCGCCGCACTGACCGCCGGCGGGACCTACTCGGCGGCCAAGGCCTACGTGCGCACCTTCACCGAGGGGCTCGCCGCCGAGCTCCACGGCACCGGGGTCACCGCCACGGTGCTGTGCCCCGGACTCGTGCGCACCGAGTTCCACGACCGGGCCGGCCTCGACATGAGCTCCGCGCCGCAGATCGGATGGCTCGACGCCCCCTACGTGGTCTCCCAGGCGCTCGCGGACGTGCGTCGCGGGGTGGTCATCTCGACGCCGTCGGCCCGCTACAAGGCCGGTTCGGCGCTGCTGCGGGTGCTGCCGCGACCCGTGGTGCGCGCCATCGGCGACGGACGCTGAMGTALVTGATAGLGLEFAWQLATARHDLVLVARDVDRLDQVATQIRAAAGVHVEVLAADLSVPDDVDRVAARLTADGHDDGPSGAAPGARPVGLLVNNAGFAPAQRFVGGDVDVELRAIDVMVRAVVRLTHAALGPMTARGRGAVLNVASVAALTAGGTYSAAKAYVRTFTEGLAAELHGTGVTATVLCPGLVRTEFHDRAGLDMSSAPQIGWLDAPYVVSQALADVRRGVVISTPSARYKAGSALLRVLPRPVVRAIGDGRPGPT0030485_3793PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-OXIDOREDUCTASE_ACTIVITYPUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
AK018_01519798xthA_1COG0708Exodeoxyribonuclease IIIGTGCGCATCGCCACGTGGAACGTCAACTCGATCCGGAGCCGTCTCGACCGGGTGCTCGCCTTCCTGGACCGTTCCGGCACGGACGTGCTCGCGATCCAGGAGACCAAGTGCCGCGAGGAGCAGTTCCCCGTCGCGGCCTTCGCCGAGGCCGGGTACGAGGTCGTCGCCTCGGGGTATCACCAGTGGAACGGGGTGGCGATCGCCTCGCGTGTCGGGATCGACGACGTCGCCCGGTCGTTCGCCGGGCAGCCGGCGTTCGGCAAGCCGGACCAGGAGCCCCGCCGGGAGGCCCGGGCCCTGGCGGCGACGTGCGGCGGGGTGCGCGTGTGGTCGCTGTACGTGCCGCACGGCCGGGCGCTGGACGACCCGCACTACGCGTACAAGCTGGACTGGCTGGCGGCGTTGCGCGCCGACGCGGCCGGCTGGTTGGAGGCTGATCCGGGAGCGCAGGTGGCGCTGACCGGGGACTGGAACGTGATCCCGCGGGACACGGACGTGTGGGACGTCTCGGCGTTCGAGGGCAGGACGCACGTCTCGGCCGCGGAGCGTACGGCCTTCGCCGCCTTCGAGTCGGCCGGCTACACCGAGGTCACGCGTGAGCACGTGCCGGCCGAGCACACCTATACGTACTGGGACTACCAGCAGCTCGCCTTCCCGCGGAACAAGGGCCTGCGCATCGACTTCGCGTACGCGTCCCCGGCGCTGGCCGCCCGGGTCGCCGGGGTGCGGATCGACCGCGACGAGCGCCGCGGCAAGGGTGCCAGCGACCACGTACCCGTGGTGCTGGAGCTGGCGTGAMRIATWNVNSIRSRLDRVLAFLDRSGTDVLAIQETKCREEQFPVAAFAEAGYEVVASGYHQWNGVAIASRVGIDDVARSFAGQPAFGKPDQEPRREARALAATCGGVRVWSLYVPHGRALDDPHYAYKLDWLAALRADAAGWLEADPGAQVALTGDWNVIPRDTDVWDVSAFEGRTHVSAAERTAFAAFESAGYTEVTREHVPAEHTYTYWDYQQLAFPRNKGLRIDFAYASPALAARVAGVRIDRDERRGKGASDHVPVVLELANANANANANA
AK018_01520648hypothetical proteinATGACCGACCGCCCCGACGCCGACCCGCTGTTCGTCGCCCCGGGTCCGGGCGCGCCCGCGGAGCCGGAGCCGGAGGTCACCGCCGTCGGCTCGGACGCGTTCGGCGCCCGGTGGGGTGCCCCGGGTGGTCCGACGCCGCGGGAGCGGGCCGCGGCACGACGCCGGGCGCGCCTGTGGGTGGCGTCGGTCCTGGGGGTCGTCGCGCTGGTGGTGGGGATCGCCGCGGGCGTCTCGTACGCGGTCTCCACGGGGCAGGAGCGTGCGTGGGCCCCGGTCGCGGCCCTGCCCGACGCGCCGATGACGGTCAACGCCGTCCAGCTCGTGCTCGGCTCCTGCCTGGACGCGCCGCCCTCGTCGGGGCCGGTGGGTCGGGTGGAGGTGGTGCCGTGCGCGGACGACCACGACGCGCAGGTCGTCGGCCGTACCGACGCGGCGCCGCGGGAGGTCTGGCCCGGCGCGGATGCCGTCCTGGCCCGCGCGGCGCGAATGTGCACCCCGGAACTGCTGGGGCCGGCGGCGCGCGCGGGGCAGGACGACGTGTCCCTGGTGGTGTGGACCCCGAGCGAGGACTCGTGGTCCGCCGGCGACCGCACCAGCCTGTGTGTGGCCCGGCTCACGCCGTCGGCCACCGGAAGCCTCCTGGAGTGAMTDRPDADPLFVAPGPGAPAEPEPEVTAVGSDAFGARWGAPGGPTPRERAAARRRARLWVASVLGVVALVVGIAAGVSYAVSTGQERAWAPVAALPDAPMTVNAVQLVLGSCLDAPPSSGPVGRVEVVPCADDHDAQVVGRTDAAPREVWPGADAVLARAARMCTPELLGPAARAGQDDVSLVVWTPSEDSWSAGDRTSLCVARLTPSATGSLLENANANANANA
AK018_015221128hypothetical proteinATGTCCACCAGCACCACGATCGCGCCTGCGCGCCCACGGCTCGTCCGCCGCGCCGCCGTCGCCATGTCGCTCACCGCCGCCCTCGCCGGCGGCACCCTCGTCGCCGGCGCCGGCACGGCCTCCGCGGCTCCGGGCACGAACTCCTCCGTCTCCGGCGAACTCGCAACCACCGAACCGAAGTCGGCCGACGTAGACGTCAAGCAGTCCCGCAAGTCAGCGCGCCAGAGCAAGGGCAGCACCCGCCCGACGTTCACCGTGACGGCCCGGTCTGCCGGCACCCCCGTGAACGGTTGGGTCAAGGTCTATGTCCGTGGACAGAAGGCCGGTGCCAAGAAGCTCGGCGCCAACGGCACCGTGACCTTCCGACCGTCGCTCTCCACGTACCACGTGGGCAGCAACAAGGTCGCGTTCAAGGTCACCCCGAGCCGGGCTACCGGTCTGGAGGCCGCCAAGAAGGTCCGTCGGGTCAAGGTCAAGCCGAAAGCCGCCCCGAACGTCACGCTGGCCACGTCCCGCTCCGTCGGCACGAAGGGCAAGAGCGGCACCCGTCCGAAGTACACCGTCAAGGCCGCTAAGTGGGGGGAATCCGTGCGAGGGCGCGCTCACCTGTACGTCAAGGGTGACAAGGTCGCGACCAAGACGCTCCGACAGGGCAAGGCGACGTTCCGGCCCGGATGGAACAAGTACAAGGTCGGCAAGAACACCGTCCGCGTCCGTGTAGCCCCCTCGGGCAACTCGGGCCTGCACCAGGTGAACCGGTCGAAGAAGGTCACGGCCAAGGCGAAGCAGAACCGGGGCCAGAAGGTCGTCCGCGTGGCCCACAAGTACGTCGGCCACCGCTACTCGTACGGCGGTGGCTCGCCGCGCACCGGGTTCGACTGCTCCGGCTTCACCTCGTACGTGTACAAGAAGGCGACCGGCAAGACCCTGCCGCGCTCGTCCTCGGCCCAGCGCAGCGCAGGCAAGAAGGTCTCGCGCAGCAAGGCGAAGAAGGGCGACATCGTCTACACCCCCGGGCACGTCGCGATCTACGCCGGCAACGGCCGGATCATCGAGGCCGCCCGCCCCGGCGTCGGCGTCGTCAAGCGCAAGATGTGGCAGGACAACCCCACGTTCATCCGCGTCTGAMSTSTTIAPARPRLVRRAAVAMSLTAALAGGTLVAGAGTASAAPGTNSSVSGELATTEPKSADVDVKQSRKSARQSKGSTRPTFTVTARSAGTPVNGWVKVYVRGQKAGAKKLGANGTVTFRPSLSTYHVGSNKVAFKVTPSRATGLEAAKKVRRVKVKPKAAPNVTLATSRSVGTKGKSGTRPKYTVKAAKWGESVRGRAHLYVKGDKVATKTLRQGKATFRPGWNKYKVGKNTVRVRVAPSGNSGLHQVNRSKKVTAKAKQNRGQKVVRVAHKYVGHRYSYGGGSPRTGFDCSGFTSYVYKKATGKTLPRSSSAQRSAGKKVSRSKAKKGDIVYTPGHVAIYAGNGRIIEAARPGVGVVKRKMWQDNPTFIRVNANANANANA
AK018_015232610clpB_2COG0542Chaperone protein ClpBATGGACACCAAGTTCACGACCATGTCGCAGCAGGCCATCGGCGACGCCGTGCAGTCGGCGTCGGCGGCCGGCAACCCCCAGCTCGAACCCGTCCACCTCCTGGCCGCGCTGCTGCAGCAGACCGGGGGCGTCGCCGTCGGGCTGCTCGAGGCCGTCGGGGCCGACGCCCAGCAGGTCGGGCAGAAGACCCGGGCCGCGCTCGTCGCGCTGCCCGCGGCCAGCGGTGGCGGCGTCGCCCAGCCGACGCCGTCGCGCGCCATGCAGACCGTGCTGACCGCGGCGGGCCAGGAGGCCGAGGCGCTCGGCGACGACTACGTCTCCACCGAGCACCTCGTCATCGCGATCGCCGCCGGGCAGTCCGCCGCCGCGCAGGCCCTGACCGCCGCGGGCGCCACCGCCGACGCGCTGCGCTCCGCGCTGCCCGCCGTCCGTGGGAACAGCCGGGTCACCAGCCCGAACCCCGAGGGCACCTACAAGGCGCTCGAGCAGTACGGCAGCGACCTCACCCAGCGGGCCCGCGACGGCCGCCTCGACCCCGTCATCGGCCGCGACGCCGAGATCCGGCGCGTCGTGCAGGTGCTGTCCCGACGTACCAAGAACAACCCCGTGCTCATCGGCGAGCCCGGCGTCGGCAAGACCGCCGTCGTCGAAGGACTCGCGCAGCGCATCGTCGCCGGGGACGTGCCCACGTCCCTGCAGGGCAAGCGGCTCGTCGCCCTCGACCTGGCCGGAATGGTCGCCGGCGCCAAGTACCGCGGCGAGTTCGAGGAGCGCCTCAAGGCCGTCCTGGAGGAGATCACCGCCTCCGACGGGGAGGTCATCACCTTCATCGACGAGCTGCACACCGTCGTCGGCGCCGGAGCGGGCGGTGAGGGCGCCATGGACGCCGGCAACATGCTCAAGCCCATGCTCGCCCGCGGCGAGCTGCGCATGGTCGGCGCCACCACGCTCGACGAGTTCCGCGAGAACATCGAGAAGGACCCCGCCCTCGAGCGCCGCTTCCAGCAGGTGTTCGTCGGCGAGCCGTCCGTGGAGGACACCGTCGCCATCCTGCGCGGGCTCAAGGAGCGCTACGAGGCGCACCACAAGGTGACCATCGCCGACTCCGCGCTCGTCGCGGCCGCCGCCCTGTCCGACCGGTACATCACCGGTCGCCAGCTCCCCGACAAGGCCATCGACCTCGTCGACGAGGCCGCCTCACGGCTGCGCATGGAGATGGACTCCTCACCCGTCGAGATCGACGAGCTCCAGCGAGCCGTCACCCGGCTCGAGATGGAGGAGGTCGTCCTCAAGGACGCCGAGGGCTCCGCGGACGCGGCGTCGCGCGAGCGGCTCGAGAAGCTGCGCGCCGACCTCGCCGACCGTCGCGAGGAGCTCGCCGCGCTCACCGCCCGCTGGGAGGCCGAGAAGGCCGGCCACAACCGCGTCGGCGACCTGCGCGCCCGCATCGACGAGCTGCGCACCGAAGCGGACCGGCTGCAGCGCGACGGCGACCTCGAGGCCGCCGCCCGGCTCCTGTACGGGGAGATCCCGTCGGTCGAGCGCGAGCTCGTCGAGGCCGAGCAGGCCGAGGCCACCGAGGCGGCCGCCGAGGAGACCGCGCACGAGGCCCCCATGATCGCCGACAAGGTCGGAGCCGACGAGATCGCCGAGGTCGTCTCCGCCTGGACCGGCATCCCGGCCGGGCGGATGCTGCAGGGCGAGACCGAGAAGCTGCTCGGCATGGAGGACGTGCTCGGCCACCGCCTCATCGGCCAGCAGGCCGCCGTGCGCTCCGTGTCCGACGCCGTGCGGCGCTCGCGGGCCGGCGTCGCCGACCCCGACCGGCCCACCGGGTCGTTCCTGTTCCTCGGACCGACCGGCGTCGGCAAGACCGAGCTCGCCAAGTCGCTCGCCGAGTTCCTCTTCGACGACGAGCGCGCCATGGTGCGCATCGACATGTCCGAGTACTCCGAGAAGCACGCCGTCGCCCGCCTGGTCGGCGCGCCCCCGGGGTACGTCGGGTACGAGGAGGGCGGCCAGCTCACCGAGGCGGTCCGCCGTCGGCCCTACTCGGTGGTGCTGCTCGACGAGGTCGAGAAGGCCCACCCCGAGGTCTTCGACATCCTGCTGCAGGTGCTCGACGACGGGCGGCTCACCGACGGGCAGGGCCGCACCGTGGACTTCCGCAACACCATCCTCGTGCTGACCTCGAACCTGGGCTCGCAGTTCCTCGTGGACCCGACCCTGGACGAAGCGGCCCGGCGCGAGAGCGTGATGACGGCGGTGCGTGCGGCGTTCAAGCCGGAGTTCCTCAACCGGCTCGACGACGTCGTCCTGTTCGACGCCCTGACCGTCGCCGAGCTGGGACGCATCGTCGACCTGCAGGTCGAGGCGCTCGCACGGCGGCTCGCCGACCGGCGCATCACGCTCGACGTCACCGACGGGGCCCGCGAGTGGCTGGCGCTGGAAGGGTTCGACCCGGCCTACGGGGCGCGGCCGCTGCGCCGGCTGGTGCAGCGCGAGATCGGCGACCGGCTCGCGCGCCGGCTCCTGGCTGGCGAGGTGTCCGACGGCGGCACCGTCGTCGTGGACCGCGACGCCGAGGGGACCGGACTGACGCTCCGCTGAMDTKFTTMSQQAIGDAVQSASAAGNPQLEPVHLLAALLQQTGGVAVGLLEAVGADAQQVGQKTRAALVALPAASGGGVAQPTPSRAMQTVLTAAGQEAEALGDDYVSTEHLVIAIAAGQSAAAQALTAAGATADALRSALPAVRGNSRVTSPNPEGTYKALEQYGSDLTQRARDGRLDPVIGRDAEIRRVVQVLSRRTKNNPVLIGEPGVGKTAVVEGLAQRIVAGDVPTSLQGKRLVALDLAGMVAGAKYRGEFEERLKAVLEEITASDGEVITFIDELHTVVGAGAGGEGAMDAGNMLKPMLARGELRMVGATTLDEFRENIEKDPALERRFQQVFVGEPSVEDTVAILRGLKERYEAHHKVTIADSALVAAAALSDRYITGRQLPDKAIDLVDEAASRLRMEMDSSPVEIDELQRAVTRLEMEEVVLKDAEGSADAASRERLEKLRADLADRREELAALTARWEAEKAGHNRVGDLRARIDELRTEADRLQRDGDLEAAARLLYGEIPSVERELVEAEQAEATEAAAEETAHEAPMIADKVGADEIAEVVSAWTGIPAGRMLQGETEKLLGMEDVLGHRLIGQQAAVRSVSDAVRRSRAGVADPDRPTGSFLFLGPTGVGKTELAKSLAEFLFDDERAMVRIDMSEYSEKHAVARLVGAPPGYVGYEEGGQLTEAVRRRPYSVVLLDEVEKAHPEVFDILLQVLDDGRLTDGQGRTVDFRNTILVLTSNLGSQFLVDPTLDEAARRESVMTAVRAAFKPEFLNRLDDVVLFDALTVAELGRIVDLQVEALARRLADRRITLDVTDGAREWLALEGFDPAYGARPLRRLVQREIGDRLARRLLAGEVSDGGTVVVDRDAEGTGLTLRPGPT0014580_1036DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014580-clpB-K03695NANA
AK018_015241071hypothetical proteinGTGCGGGATGCTGTTCGGGTGACCTCCGCCACGCTCGCCTCCCCCGCGGTCCGACGCCGGACCCGACGTCCCGCCCGCACCGTGCTCGCCGCCGCGCTCGCCGCCGTCGGGCTCCTCGCCCTGGCCGGCTGCATGAAGATCGAGACGGACTTCGTCCTCTCGGAGGACGACACGGCATCGGGCTCCGCGGTCTTCGCGTTCTCAGACGAGTTCGCCGAGTCGCTTGGGATGGACCCGCAAGAGTTGTGGGACTCGATGGGCGAAGGTGAAGACTCGTTGGATGACGTGCTTCCCGAGGGGGGCACCCGAGAGCCGTACTCAGATGGCTCGTACACCGGCGTCGCGAGCACCTACACCGATTTGCCATTGGATTCGCTGGATGTTGAAGGGTTCTCGTTCACGCGCGAGGGCGACGAGTACGTGGTCGAGGGTGTCATGGACCTGTCGGACACCAGCACCGAGGAGACCGGCGAGCTGCCCGCGGGCCTCATGGACTCCTTCATGGTCCGCATCGCCGTGACGTTCCCCGGCGAGATCAGCGAGACCAACGGCGAGGTGGACGGCACCACGGTGGTCTGGAACCCGCCCGTCGGCGAGAGCACCGAGATGTTCGCCCGCGGGTCGGCCGTCGGGGACGGCGCCGCGCCCGACGACCCCGCCACCACCGAGGAGACCGAGGAGCCGGCCACGGAGGACACCGCCGGCACCGAGGACGGGGCGACCACGGACGACTCGATGACCGACACGAGCGAGGAGTCGACGATGGTCGACGAGGCCTCCTCGCCCTGGGCGTGGATCGTCGGGGCCGTCGTCGGGCTCGCCGTGCTCGGTCTGGTCGTCTGGCTGATCGTGCGCAACAACCGCTCCTCCGGCCCGCCTCCCGCGGCAGGGTTCCCGCAGGGGCCGGGCGGGGCCGCCGCTCCCCCGCCGTACACCTCGGGCGCCGCGCCGAGCGCGGACTACGGCCAGCCCCAGCAGCCCGCCCCGCCGGTGGTCCCGCCGCAGCAGGGCCCGACCGACCCGTACCAGGGGCCGGCCGACCCGAACTCCACGCCGCCCACGCCACGCTGAMRDAVRVTSATLASPAVRRRTRRPARTVLAAALAAVGLLALAGCMKIETDFVLSEDDTASGSAVFAFSDEFAESLGMDPQELWDSMGEGEDSLDDVLPEGGTREPYSDGSYTGVASTYTDLPLDSLDVEGFSFTREGDEYVVEGVMDLSDTSTEETGELPAGLMDSFMVRIAVTFPGEISETNGEVDGTTVVWNPPVGESTEMFARGSAVGDGAAPDDPATTEETEEPATEDTAGTEDGATTDDSMTDTSEESTMVDEASSPWAWIVGAVVGLAVLGLVVWLIVRNNRSSGPPPAAGFPQGPGGAAAPPPYTSGAAPSADYGQPQQPAPPVVPPQQGPTDPYQGPADPNSTPPTPRNANANANANA
AK018_01525954hypothetical proteinATGACGTCGCTCGAGAGCACCGCCTGGCACCCCGACGTGCTCGGTCCCGACTTCGAGGACCGCACGCTCGACCTGCCGGACGGAGCCTCCGCGACCCTCGTCCGGCACCGCGCCTCGGTCGCTCCCGACGGCTCGCCGGCACGGGTGGCCGTGCTGCAGGTGCACGGGTTCGCCGACTACTTCTTCCACCCGCACGTCGCCCGCGCGGTGGCCGACGCCGGGAACGCGTTCTACGCCGTCGACCTGCGCGGGCACGGCCGCTCGTGGGACACCCAGGTGGCCGCGGGCGGCGACCCCAACCAGGTGCCGGACATCGCGGTGTACGCCCAGGACCTCGACGCGGCCGCGGCGGCGGTCCGGGCCGCGGGGCACGAGCGTCTGGTCGTCCTCGGCCACTCGACCGGCGGGCTGATCGTCCCCCTGTGGGCCGCGGCCCGACCCGGCCGGGCGGACGCGCTGGTGCTGAACAGCCCGTGGGTCGGGCAGAACGCCTCGCTCCCGGTGCGCTGGGCCGGGACGCTCGCGGTCGAGGCGCTCGCACCGATGGCTCCCCGCGCCGTCGTCTCGCACCTCGGCGTGGACTACGCCCGCGCGCTGCACCAGGGGTACGGCGGCGAGTGGGACTTCGACCCGGCGTGGAAGCCGCACGACCCGTTCCCCGTGCGGGCCGCCTGGTTCCGCTCGGTGCTGCGGGCCCAGCGCCGGCTCGCCCGGGGCGTGGACCTCGACGTGCCCGTGCTGGTCGTCACCTCGGACCGCACTACCCGCACGGAGCACCTCATGAGCGACACGGTCCTCGACGTCGCGCACATGTGGCGCGTCGCGCCGCGTCTCGGTGAGGACGTGAGCCTCGTGACGGTCGCCGGCGGGACCCACGACCTGGCGCTGTCGCCCTCTCCCGCCCGCGAGGAGTACCGCCAGGTGGTGCTGGACTGGATCGCCGCGGCGGTCTGAMTSLESTAWHPDVLGPDFEDRTLDLPDGASATLVRHRASVAPDGSPARVAVLQVHGFADYFFHPHVARAVADAGNAFYAVDLRGHGRSWDTQVAAGGDPNQVPDIAVYAQDLDAAAAAVRAAGHERLVVLGHSTGGLIVPLWAAARPGRADALVLNSPWVGQNASLPVRWAGTLAVEALAPMAPRAVVSHLGVDYARALHQGYGGEWDFDPAWKPHDPFPVRAAWFRSVLRAQRRLARGVDLDVPVLVVTSDRTTRTEHLMSDTVLDVAHMWRVAPRLGEDVSLVTVAGGTHDLALSPSPAREEYRQVVLDWIAAAVNANANANANA
AK018_015261635alkA_2COG0122putative bifunctional transcriptional activator/DNA repair enzyme AlkAATGACCACGCAGCCGGCCACCGAGCAGCCAGCGGAGCAGTTCGCGGAGCGGTACCGCGCGATCGCCGCCCGCGACGCCCGGTTCGACGGGCAGTTCGTGACGGCCGTGCGCACCACCGGCATCTACTGCCGCCCCTCCTGCCCGGCCCGTACGCCCCGGCCGGCGAATGTGACCTTCTACCTGACCAGCGCCGCCGCGCACGACGCCGGCTACCGCGCCTGCAAGCGCTGCCTGCCGGAGGCCAGCCCGGGCACCCCCGCCTGGGACCAGCGCGGGGACCTCGCCGGACGGGCGATGCGGCTGATCGGCGACGGCGTGGTGGACCGCGAGGGCGTCGACGGCCTGGCCTCCCGGCTCGGGTACAGCCCCCGGCACGTGCACCGGCTGCTGCGCACCGAGCTGGGCGCCGGGCCGCTCGCCCTCGCGCGGGCCCAGCGCGCCCAGACCGCCCGCGCGCTGCTCACCGGGACCGACCTGGCGGTGTCGGACGTCGCGTTCGCCGCCGGGTTCGGCAGCATCCGCCAGCTCAACGACACCGTGCGGGAGGTGTTCGCCACCTCCCCCTCCGAGCTGCGCGCCCGCCGCGGCCGCGCCGCCCCGACCGGCAGTCGCCGGTTCGGCACTCTGGCCCCGGACCGGCAGTCTGACGTGCCGCTTCGGGGCCAGAGTGCCGAACCGGCATCACCCGGCGCCGTGCACCTGCGGCTCACCCTGCCCGTCCGCGAGCCGTTCGACGCCACCGGCACGATCGCCTTCCTCGCCGCACGCGCCGTCGACGGCGTGGAGGCCGCCGACGGCCCGGGGACGAGCGGCGGCACGGGGACCAGCGACGGGACAGCAACCGACGACGCAGCGACCGACGACGGCGAGCTCCGGTACGCGCGCACCCTGCGCCTGCCCCACGGCCCGGGCGCCGTCGAGATCCGCGCGGGCACCGCCGTCGGCCCCGGACGCGTGGACGTGCGCCTCGAGCTGACGGCGCTCGCCGACGTCGCCACCGCCGTCGCCCGCATCCGGCGGCTCCTCGACCTCGACGCCGACCCGGTGGCGATCGACGCCGCGCTCGGCGTCGACCCGCTGCTCGCCGGCTCCGTGCGGGCCGCACCCGGCCTGCGGATGCCCGGCGCCGCCGACGCCCACGAGCTCGTCACCCGCGCCGTCGTCGGGCAGCAGATCTCCGTGGCCGCGGCCCGCACCCACCTGTCCCGGCTCGCCGCGTCCGCCGGCGCGCCGTACGCGTCGGGCTTCGCCGGGCTGACGCGCCTCTTCCCGGGGCCGGCCGCCGTCGCCGAGGCGGCCGGGACACTGCGGCTGCCCGCCCGGCAGCGCGCCACGCTGGCCGCCGCCGCGGCCGACCTGGCGAGCGGGGACCTCACGGTCGACGTCGGGCAGGATCGCGCCGAGCTCACCGCCGCCCTGCAGGCCCGGCACGGCATCGGGCCGTGGACCGCCGCGTACATCGGGATGCGGGTGCTCGGCGACCCCGACGTCTGGCTCCCCGGCGACGCCGCGCTGCGCCCCGTGACCCCCGACCGGGCCGCCGCCTGGGCCCCGTGGCGCTCCTACGCCGTCGGGCACCTGTGGCGCCGCCCCCGACCCGCCCCTGCCCGTTCCCGAGGAAGGACCACCCGATGAMTTQPATEQPAEQFAERYRAIAARDARFDGQFVTAVRTTGIYCRPSCPARTPRPANVTFYLTSAAAHDAGYRACKRCLPEASPGTPAWDQRGDLAGRAMRLIGDGVVDREGVDGLASRLGYSPRHVHRLLRTELGAGPLALARAQRAQTARALLTGTDLAVSDVAFAAGFGSIRQLNDTVREVFATSPSELRARRGRAAPTGSRRFGTLAPDRQSDVPLRGQSAEPASPGAVHLRLTLPVREPFDATGTIAFLAARAVDGVEAADGPGTSGGTGTSDGTATDDAATDDGELRYARTLRLPHGPGAVEIRAGTAVGPGRVDVRLELTALADVATAVARIRRLLDLDADPVAIDAALGVDPLLAGSVRAAPGLRMPGAADAHELVTRAVVGQQISVAAARTHLSRLAASAGAPYASGFAGLTRLFPGPAAVAEAAGTLRLPARQRATLAAAAADLASGDLTVDVGQDRAELTAALQARHGIGPWTAAYIGMRVLGDPDVWLPGDAALRPVTPDRAAAWAPWRSYAVGHLWRRPRPAPARSRGRTTRNANANANANA
AK018_01527519ogt_2Methylated-DNA--protein-cysteine methyltransferaseATGACCTCCGCCACCACGCTCGACACCCCCGACGGACCGTTCACGATCGTCGCCGACGACGGCGTCGTGCTCGCCTCGGGCTGGACCACCGATGCCGCGTCGCTGGTCGCGCTCGTGCACCCGGCGCTGCGCCCCGACCACGTGCCGAGCGTGCCCGACGACGGCACCGACGTCGCTGCACCGGTCGCGGCCGTGCGGGCCTACTACGCGGGCGACGTGACCGCCGTCGCACAGGTCCCGGTGCGCCAGCGCTCCGGACCGTTCCGCGAGCAGGCGTGGGAGGCGCTGCGCGCCGTGCCCGCCGGCGAACCCGTCACGTACACCGAGTACGCGGCGCAGGCCGGCCGACCCGCCGCCGTCCGGGCCGCGGCCGGTGCGTGCGCGCACAACGCTGCCGCGCTGTTCGTGCCCTGCCACCGGGTGCTGCGCAGCGACGGCACGCTCGGCGGCTTCCGCTACGGGACCGCCGTCAAGGAGTCGCTGCTGACCCGCGAGCGCGCGGCCTCCCGAGCGGCCTGAMTSATTLDTPDGPFTIVADDGVVLASGWTTDAASLVALVHPALRPDHVPSVPDDGTDVAAPVAAVRAYYAGDVTAVAQVPVRQRSGPFREQAWEALRAVPAGEPVTYTEYAAQAGRPAAVRAAAGACAHNAAALFVPCHRVLRSDGTLGGFRYGTAVKESLLTRERAASRAANANANANANA
AK018_015281128hypothetical proteinATGGCCAAGCAGTCGCCGCCGTCACTGCCACCGCTGCCCGCCGCCACCACGAAGGGGCACCAGGCGCGCCACCTGCTGGCGGTGCCCGACGACGTGCTCGTCGACGAGGTCGAGGTGCTGGCGGTCTCCCGCTTCTCGGGGACGCGCTGGGACGTGGTCCCCTCCGACATGCCGGGCGCCGACCTGCCCGCCGGTCGCATCGCCTCCCCCGGCGAGCCCGGGGTGCTGCGGCTGACCCGGCACAGCCACGTGCACGGTCCCTACGCGCCGCGCGGCGACGGCTTCGAGCTCGGGCTGCCGCCCGGCACCGCGATGGTGTTCGACGTCGTCACCCCGCGGGAGCGCTGGGACGACCCGCCCGCGCCCTTCGGCGGGGACCGGGACGGGCTCGCCCGCGCCTTCCCCCGGGCGCTGCCGAACCGCGAGGAGGAACGGGTGGTGCGCTGGTTGATCGCCGCGGCCCGGCGCCTCGGCGGGTCCACGCGGCTGGACGTGGCGGCCCTGTGGGACCCCGCGGAGGCCGCCCGGCGCGACGCCGGGGCCGGTGTGGTGCTGCGCCCCGACCCGGCCGCCGCCGTCGACCTGACGGTCTGGTCCGACGTGTGGCTCGACCCGCAGGCCGCGCACCGCGTCCTGCAGGCCGTGCACCCGCGCGTCGTCCTGGCGACCCAGGGCGCCGACTACCAGGGCCCGCCCGAGGGCATCGCGGAGAAGCCCCTCTACCCGGGCGAGAAGATGGACCCGGACGTGCGCCGCGAGCTGCACGCCCGCGCCGACGACTACGACATCGCGGCGCTGCAGGCGCCGATCGTGCTCGACGGGTACGGGCTGACCATCGACCTCGGCCACGACGGCTACGTCACCGTCGAGGTCAACGGCGACGAGGTTCTTCCGCTGCTCGTCAAGGAGCTGCCGTGGGCCGGGTCCGGCGCCATCTGCTACCGCGTCCTGTGGGACCCGCCGGACCAGGCCGAGTCGCAGATGGAGTTCCCCCAGCCCGCCCTGGTGGTGGCCCGCAAGCGGGCGGCCGACCTGGTGGGACGGGTGACGCTCGCCCTGCACGAGGCCGTCGGCGGCGAGATCGCCGACGAGGCCGAGTTCCTGCTCGCCCCCGAGGACCTGCGCTGAMAKQSPPSLPPLPAATTKGHQARHLLAVPDDVLVDEVEVLAVSRFSGTRWDVVPSDMPGADLPAGRIASPGEPGVLRLTRHSHVHGPYAPRGDGFELGLPPGTAMVFDVVTPRERWDDPPAPFGGDRDGLARAFPRALPNREEERVVRWLIAAARRLGGSTRLDVAALWDPAEAARRDAGAGVVLRPDPAAAVDLTVWSDVWLDPQAAHRVLQAVHPRVVLATQGADYQGPPEGIAEKPLYPGEKMDPDVRRELHARADDYDIAALQAPIVLDGYGLTIDLGHDGYVTVEVNGDEVLPLLVKELPWAGSGAICYRVLWDPPDQAESQMEFPQPALVVARKRAADLVGRVTLALHEAVGGEIADEAEFLLAPEDLRNANANANANA
AK018_01529582dcd_2COG0717dCTP deaminase, dUMP-formingGTGCTGGTGCTGCTCTCCGACCGCGACATCCGAGCCGAGATCGACGCCGGGCGGGTCGAGCTCGACCCCTACGACCCGGCGATGATCCAGCCGTCGTCCATCGACGTGCGCCTGGACCGCTTCTTCCGCCTCTTCGACAACCACCGGTACCCGTTCATCGATCCCGCGCAGGAGCAGCCGGAGCTGACACGGCTCGTCGAGGTGGACCCCGGCGAACCCATGGTGCTGCACCCGGGGGAGTTCGTGCTCGGTTCCACCTACGAGGCGGTCTCCCTGCCGGACGACGTCGCCGCCCGCCTCGAGGGCAAGTCGTCCCTGGGCCGTCTCGGTCTGCTGACGCACAGCACCGCGGGGTTCATCGACCCGGGCTTCTCGGGGCACGTCACGCTCGAGCTGAGCAACGTCGCCACCCTGCCGATCACGCTGTGGCCCGGGATGAAGATCGGCCAGCTCTGCTTCTTCCGCCTGTCGTCCCCGGCGGAGCACCCCTACGGATCGCAACGGTACGGCTCGCGCTACCAGGGGCAGCGGGGGCCGACGGCGAGCCGGTCCTGGCAGTCGTTCCACCGTACCGACGTATGAMLVLLSDRDIRAEIDAGRVELDPYDPAMIQPSSIDVRLDRFFRLFDNHRYPFIDPAQEQPELTRLVEVDPGEPMVLHPGEFVLGSTYEAVSLPDDVAARLEGKSSLGRLGLLTHSTAGFIDPGFSGHVTLELSNVATLPITLWPGMKIGQLCFFRLSSPAEHPYGSQRYGSRYQGQRGPTASRSWQSFHRTDVPGPT0021225_1610DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021225-dcd-K01494NANA
AK018_015311044hypothetical proteinATGAGCAACCTCGAGACGCGACCGGCCGAGCAGGTCTGCGGTCCCGACCCGGGCGAGTCCGTCGAGCTGCTCTCCGCCCGTGACGTGCCCCTCGGCGGCCCCCGGGCCATGACGGTGCGGCGCACCATCCCGCAACGACGCCGGTCCCTCGTGGGCGCCTGGTGCTTCTGCGACCACTACGGCCCCGACGACGTCGCCACCTCGGCGGGGATGCAGGTGCCGCCCCACCCGCACATCGGGCTGCAGACCGTGACCTGGCTGTTCGCCGGCGAGATCCTGCACCGCGACTCGGTGGGCTCCACCCAACGCGTCCGCCCGGGCGAGCTCAACCTCATGACCGCCGGACGCGGCATCTCCCACTCCGAGGAGTCCCCGGCAGGGACGCCCGAGCAGCCCCGCCCGCCGCTGCTGCACGGGGTGCAGCTGTGGACGGTGCTGCCGTCCACAGCCCGGGACGTGGAGCCGGCCTTCAGCCACCACGACGACCTCCCGGTCGCCCGGACCGCGGGGGCACGCGTCCAGGTGCTGCTCGGCTCGCTGCAGGTCGCCGGGGAGCGGCTGGTGTCGCCCGCGCCGACGTACACGCCCCTCGTGGGCGCCCAGCTCGACCTCGACGCCGGGACCGAGCTCGACCTCGACGTCGACGCGGGGTTCGAGCACGCCCTGCTCGTCGACGCCGGGCCGGCCACGTTCGCCGACACGGTGGTGCCGCCGTCGGACCTCGCCTACGTCCCGCCCGGCCGCACCCGCCTGCGGGTCGCCGCCGGCACCGAGCCCGTGCGCGCGATGCTGCTCGGCGGCGTGCCGTTCGAGGAGGACGTCGTCATGTGGTGGAACTTCGTGGGGCGCACCCACGAGGAGATCGTCGCCGCCCGGGCCGACTGGTCCGCCCAGGTCGCCGACCTGCCCGTCGGCGGCACCGACTACGCCGCCGGCGCCGAGCGGCGCCGCTTCGGCCGGGTCGACGGGTACGACGGCGGACCCCTGCGGGCGCCCGCGCTGCCCGACGTGCGGCTGCGGCCGCGCCGTCGTCCGCCGGGCTGAMSNLETRPAEQVCGPDPGESVELLSARDVPLGGPRAMTVRRTIPQRRRSLVGAWCFCDHYGPDDVATSAGMQVPPHPHIGLQTVTWLFAGEILHRDSVGSTQRVRPGELNLMTAGRGISHSEESPAGTPEQPRPPLLHGVQLWTVLPSTARDVEPAFSHHDDLPVARTAGARVQVLLGSLQVAGERLVSPAPTYTPLVGAQLDLDAGTELDLDVDAGFEHALLVDAGPATFADTVVPPSDLAYVPPGRTRLRVAAGTEPVRAMLLGGVPFEEDVVMWWNFVGRTHEEIVAARADWSAQVADLPVGGTDYAAGAERRRFGRVDGYDGGPLRAPALPDVRLRPRRRPPGPGPT0019980_138DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911NANA
AK018_015321002hypothetical proteinATGTCGTACGTCCAGGCGCTCGTCCCTCCGCAGCACGCCGCGAACCACGTGCTCGTCCTGCCCGACGGAGGTGGGCCCTCGGTCGTCGAGCTGGCCTCCGCCTGGTTCGCGGACGTGCGGTGGCTGCGCGAGCCGCAGGCAGCGACGGCGGCCGCGCCGATGCGGGGCGCGCGGTTCCGGGGTATGGCGGCGTCGGAGTCCCGCAGCGCGGGCCCCGGCGTGCTGGGCATCGGCGCGGAGCACGGCGCCGCCGGCCCCTTCGCGGTCGCGGCCGAGGTGGCGCCGCAGGCGGGTCTCGACCGGGCCGCCTCGGCGTACGCGCTCGGCCGGGTGGACGGGATGATCGACCGGCGCCAGGGTCCGCCCGCCGTGACCGACGACCGGGACGGCATCGCCCGGGCGTTCGCGGCCGGGTTGCCGGAGGGTGAGGAGCTGCGGCTGGTGCAGTTCGGCGTGGCCGCCGCCCGCAAGCTGGGCGGCTCGCTCCTGGCGGACGGGCGGCACCTGCTGCGGCCGGACCCGACGGCGACCGTGGACCTCACCCTGTACTCCGCGCACCCGATCGCTCCGGCGGACCTGCTGGGTCTGCTGCGCTCCCAGGTGGCCACCGCCGACCTGGCGGACGAGCGCACCGCACCCGACGGCAGCCGGACCTACCGGGCGGTGGCGGCCACCCCCTACGACGGGACGATCACGGCGGAGGTCGAGCACGTGGACCGCGTCCCGCGGGCGCTGGCCGACCTCGACTGGCGCGAGTACGGCCCGCACGTGGTCCGCGTCGGCTGGACGCCGCAGGACCCGTACGAGCTGCAGGTGGAGCAGCCGTCCGGCGTGCACGTCATCGCCCGCGCCCGCATGCGGGCGATGGTCGCCCGGCTGGTGCTCCTGCTGCAGGCGCGGCTCGGGGGCGTGGTGGTGGACGACGGCGCCTTCGTGGCGACGACGGCGGAGATCGAGCGACGTACCGACGAGCAGCGGACGGCGTCCCGCGCCTGGGTGTGAMSYVQALVPPQHAANHVLVLPDGGGPSVVELASAWFADVRWLREPQAATAAAPMRGARFRGMAASESRSAGPGVLGIGAEHGAAGPFAVAAEVAPQAGLDRAASAYALGRVDGMIDRRQGPPAVTDDRDGIARAFAAGLPEGEELRLVQFGVAAARKLGGSLLADGRHLLRPDPTATVDLTLYSAHPIAPADLLGLLRSQVATADLADERTAPDGSRTYRAVAATPYDGTITAEVEHVDRVPRALADLDWREYGPHVVRVGWTPQDPYELQVEQPSGVHVIARARMRAMVARLVLLLQARLGGVVVDDGAFVATTAEIERRTDEQRTASRAWVNANANANANA
AK018_01533543hypothetical proteinGTGACCGATGCCACCGACCCGTACGCCGACGTCGTCCCGGACACCAAGGACTGGACGTGGGCGGCCTCCGAGCCGTGCCCGGACTGCGGGTTCGTGCCCGCCGACCTGGACCCGCTGCGGGTCGGGGACGCCGTGCGGGCGACGTTGCCGCGCTGGCGTGCCGTGCTCTCGCGGCCGGGCGTCCGCCGTCGTCCCGCGCCGTCCGTGTGGTCCCCGCTGGAGTACGGCGCGCACGTGCGGGACGTGTTCGGCGTGTTCGACCAGCGGCTCGCCCTGATGCTCGCCGTGGACGGCGCGCAGTTCGCGAACTGGGACCAGGACGACGCCGCCCTGTCCGGCCGGTACGACCGGCTCGACCCGGACCGGGTCGCGGTCGAGCTCGTGGACGAGGGGCTGACGGTGGCGGGCCGGTTCGACACCGTCGAGACCGCCCACCTGGACCGGGTCGGGCTGCGGTCCAACGGCTCGCAGTTCACGGTGCGCAGCATCGGGCGCTACTTCGTGCACGACGTCGTCCACCACCTGCACGACGTCGGCGCCTGAMTDATDPYADVVPDTKDWTWAASEPCPDCGFVPADLDPLRVGDAVRATLPRWRAVLSRPGVRRRPAPSVWSPLEYGAHVRDVFGVFDQRLALMLAVDGAQFANWDQDDAALSGRYDRLDPDRVAVELVDEGLTVAGRFDTVETAHLDRVGLRSNGSQFTVRSIGRYFVHDVVHHLHDVGANANANANANA
AK018_01534606hypothetical proteinATGCCCAAGATCATCGGCAAGAGCCTGCACGAGCACCGCCAGATGACCCGGCACAAGCTGTTCACGGCGCTGTCCACGCTCATGGCCGAGCGCGGGTTCGACACCATCACCCTCGCCGACATCGCCCAGGCGGCCGGCGTCGGCCGCACCGCCGTGTACAACCACTTCTCCGACAAGGAGTCGCTGCTGCTCGGGTTCATCACCCACGAGACCGAGCAGTACGCCCTCACCCTCGAACGGGCGCTCGCCGAGGTCGACGACCCGGTCGCCCAGCTGCGCACCTACATCCGCCAGCAGGCGCAGCTCACCCGCGTCTTCCACCTCGCCCCCGGACCGGACCTGCGCACGGTGCTGTCCCGCTCCACGCTGGCACGCCTGCGCGAGCACGCCGAGATCGTCGAGTCCATCCTCAAGCGGATCCTGCACGACGGCATCGAGCGCGGCTCGTTCCCGCCCCAGGACATCGAGCCGACGGTCCAGCTCGTCAACGCCTGCCTGTCCGGGCGCCTGATCCCGGACGACGCCGAGGCCCGCGAGCGCGCGATCCGCGCGGCGGAGACGTTCGTGCTGCGCGCCGTCGGGGCACGACCTCAGATGGCGGCCTGAMPKIIGKSLHEHRQMTRHKLFTALSTLMAERGFDTITLADIAQAAGVGRTAVYNHFSDKESLLLGFITHETEQYALTLERALAEVDDPVAQLRTYIRQQAQLTRVFHLAPGPDLRTVLSRSTLARLREHAEIVESILKRILHDGIERGSFPPQDIEPTVQLVNACLSGRLIPDDAEARERAIRAAETFVLRAVGARPQMAANANANANANA
AK018_01535861COG1082putative proteinATGGCCGACCCGTCCATCCCCGTGACTCTGTCCACAGCATCCGTGTACCCGCGGCGTGCGGCGTTCGCCTTCGAGTCGGCGGCGCAGATCGGGTACGACGGCGTGGAGGTCATGGTCTGGTCGGACCCGGTCACGCAGGACCCGCGCGCGCTGGAGCGGCTCGTCGCGGACAGCGGCGTGCCGATCCGGTCGATCCACGCGCCGACCCTCCTGGTGAGCCAGCGGGTGTGGGGCCGGTCGCCGGCGGACAAGCTGGCCCGCGCGGTCGACATGGCCGGTGAGCTCGGCGCGCGGACCGTCGTCGTGCACCCGCCGTTCCGCTGGCAGTATAAGTACGCCCGCGGGTTCGAGGAGCAGGTCCACGAGCTGAACCAGCAGGGCGAGGTCACGGTCGCCGTCGAGAACATGTACCCGTGGCGGCCGCACAGCCGGCTGGACCGCGAGCTCAAGGCGTACCTGCCGGGCTGGGACCCGTCGGAGCACGGCTACGACTCGGTGACCCTGGACCTGTCGCACGCGGCGATCGCGCAGCAGGACGGGCTGGCGCTGCTCGACGAGTTCGGCGACCGGCTGCGGCACGTGCACCTCGCGGACGGCACGTTCAACGCGCGCGACGAGCACCTGGTCCCGGGGCGCGGAGACATGCACTGCGACAAGGTGCTCACCGAGCTGACGCGGCGCGGGTTCACCGGCGACGTGGTCCTCGAGATCTCGACCCGCAAGGCGCGCGACGCGCACGAGCGGCACGCCGACCTGGTGGCCGGGCTGGAGTTCGCGCGGGCCTACACCGCGCCGGAGCCGGTGCCCTACCGCACGCCGGACCCCGAGCACCGCCACGTGCCCGCCGACGCCTGGTGGTGAMADPSIPVTLSTASVYPRRAAFAFESAAQIGYDGVEVMVWSDPVTQDPRALERLVADSGVPIRSIHAPTLLVSQRVWGRSPADKLARAVDMAGELGARTVVVHPPFRWQYKYARGFEEQVHELNQQGEVTVAVENMYPWRPHSRLDRELKAYLPGWDPSEHGYDSVTLDLSHAAIAQQDGLALLDEFGDRLRHVHLADGTFNARDEHLVPGRGDMHCDKVLTELTRRGFTGDVVLEISTRKARDAHERHADLVAGLEFARAYTAPEPVPYRTPDPEHRHVPADAWWNANANANANA
AK018_01536645gph_5Phosphoglycolate phosphataseATGGTGCGCGCGGTGGTGTTCGACGTCGGTGAGACCCTGATCGACGAGACCAGGATCTTCACGCGGTGGGCCGCCCGCCTCGGCCTCCCGGCCGGCACGTTCCTCGGCCTGATCGGCGCCTGCGCGGCCACCGACCGCCCGCTCTCGGACGCCTTCGCGATCGCGCGGCCCGGGATCGACCTGGAGGCCGAGATCGCCCGGTGGGCGCACGACGACCCCGAGGGCCTGCGGGAGAACTTCGACGCCGACGACCTCTACCCCGACGTGCGCCCGGCACTGGCCGCCCTGCGCGACGCCGGGATCGCCGTCGTCGTCGCCGGCAACCAGCCGCCCCAGGCCCGCGCCGCCCTGGAGGCCATGGACCTGCCCGTCGACGCGATCCGCACCTCCGACGAGTGGGGCGTGGAAAAGCCGGACCCCGTGTTCTTCGCCCGCGTGGCGGACCTCGCGGGCGTGCCGGCCTCCGACGTGGCCTACGTGGGCGACCGCCTCGACAACGACGTGCTGCCCGCCGCCGACGCCGGGATGCGGCCCGTGCTGATCCGGCGCGGCCCGTGGGGCTACCTGCACGCCGAACGGCCCGAGGCGGCCCGGTGCGACGTCGTCGACTCCCTGGGCGATCTGGTGGGGTTGCTGGCGGACTGAMVRAVVFDVGETLIDETRIFTRWAARLGLPAGTFLGLIGACAATDRPLSDAFAIARPGIDLEAEIARWAHDDPEGLRENFDADDLYPDVRPALAALRDAGIAVVVAGNQPPQARAALEAMDLPVDAIRTSDEWGVEKPDPVFFARVADLAGVPASDVAYVGDRLDNDVLPAADAGMRPVLIRRGPWGYLHAERPEAARCDVVDSLGDLVGLLADPGPT0008585_1028DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008585-yigB-K20862NANA
AK018_01537384hypothetical proteinATGACCGAGATCGAGCCCGGCTTCTGGACGACGCTCGCCGACGTCGTCGCCGCCCTCTGCCTGCTCGCGGGGGCCTTCCTGACATTCGCGGCCGGCGTCGGCGCGCTGCGCTTCGGCTCCCTGCTCGCCCGCATGCACTCGGTGACCAAGCCCCAGGTCCTGGGCCTGGTGCTGCTGCTGATCGGCCTGGCGCTGCGGGTGCGCAGCTGGTCGGCCGTGGCGATGCTCGCCCTCGTGGTCGTCTTCCAGCTCGCCACCGCACCCGTGGCGGCCCACCTGCTCAGCCGGGCCGGGTTCCGCACCGGCAAGGTCGACGAGTCCGAGCTCGTGCCGAACCAGATGGACCCGTCCGACGAGGCGGACGGCCCGCAGGGGGGCGCTTGAMTEIEPGFWTTLADVVAALCLLAGAFLTFAAGVGALRFGSLLARMHSVTKPQVLGLVLLLIGLALRVRSWSAVAMLALVVVFQLATAPVAAHLLSRAGFRTGKVDESELVPNQMDPSDEADGPQGGAPGPT0013925_259DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013925-mnhG-K05571NANA
AK018_01538402hypothetical proteinATGGAGACCGTGATGCTCGTCGTCGTCGCCGTCGCGGCCGTGCTGGTCGCCGTCGCGGCCCTGCTCGCGCTCGTGCGGATCGAGCGCGGCCCCTCCATGCTCGACCGGGCGCTCGGCCTCGACCTGCTGGCCGCGGCCCTCGTCGGCGTGATCGCCATCGAGGCCGCCTGGCTGCGCCGGACCGAAACCATCCCCATCCTCGTCGCGCTCTCCCTGGTCGGGTTCGTCGGGTCGGTGGCGATCTCCCGGTTCGCCGCCCGGGAACCCGCGGCGCCCGACGCCCGGGACGGCGCCGACGTCGGCGACGGCGAGGAGCGCCCGGTGGCCGTGCTGCGCGTCGAGGACGCCGGTGAGGACGACGGCACCGAGGAGCCGCCGGAGACCCCCGAGGAGCGGCCATGAMETVMLVVVAVAAVLVAVAALLALVRIERGPSMLDRALGLDLLAAALVGVIAIEAAWLRRTETIPILVALSLVGFVGSVAISRFAAREPAAPDARDGADVGDGEERPVAVLRVEDAGEDDGTEEPPETPEERPNANANANANA
AK018_01539564hypothetical proteinATGAGCGCACCGTCCACCGGCGCCCTGCGCCGCGCCGCAGGCCGGTTCGTCTGGCAGTGGCCCGCCGTCGCCGCGCTGACCGTCGTCTGGGTGCTGCTGTGGGGCGACGTCTCCTGGGCCAACGTGCTCGGGGGTGCGGCGCTCGCGGCCCTCGTCGTCGTCGCGTTCCCGCTGCCCCGCATCGAGGACCGCGCGACCTTCCGGGTGCTGCCGTTCCTCGGGCTCCTGCGCCGGTTCGTCGCCGACCTGGTCGTGGCCTCCTTCCAGGTCGCGTGGGTGGCGGTGCGTCCCGGACCGCTGCCGAGCGGCGCCGTGGTCGAGGTGCAGCTGCGCAACCCCGACGACCTGTTCCTCACCGTCACGGCCGTGCTGTCCACGCTCGTGCCGGGGTCGCTCGTCGTCGAGGCGCGGCCCGACACGGGCCGGCTGTACGTGCACGTGCTGGACATCGCGCACTTCGACGACCCGGAGGCGGTCCGCGCCGACATCCGCGGGCTCGAGGAGCGGGTGCTGCGCACGCTGGCGCCCTCCGAGGTGCTCGAACGCTGCGGGCTGGAGGGCTGAMSAPSTGALRRAAGRFVWQWPAVAALTVVWVLLWGDVSWANVLGGAALAALVVVAFPLPRIEDRATFRVLPFLGLLRRFVADLVVASFQVAWVAVRPGPLPSGAVVEVQLRNPDDLFLTVTAVLSTLVPGSLVVEARPDTGRLYVHVLDIAHFDDPEAVRADIRGLEERVLRTLAPSEVLERCGLEGPGPT0013915_162DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013915-mnhE-K05569NANA
AK018_015401632mrpD_2COG0651Na(+)/H(+) antiporter subunit DATGAGCTGGCTCGGCACCGTGCTCAGCGCACCGACGCTCGTCCCGCTGCCCGTCCTGGTGCCGCTGTTCGCCGCCGGGCTCACGCTCGCGCTGCACCGGTACGCCAACGTCCAGCGCGTCATCTCGGTCGTGGCGCTGGCGGTGTCCACCGCCGCGTCCGCCGGGCTCGTCCTGGCCGCCGACTCCGGTCCCGTCGTCGTGGACCTGGGTGGTTGGGCCGCACCCGTCGGCATCGCGCTCGTCGCCGACCGGCTCGCCGCCCTCATGCTCACCGTCAGCGGCGTCATGCTGCTGTGCGTCCTGCTCTACTCCCTCGGCCAGGGCGTGCCCGAGGGCGAGGCCGAACCGGCCCAGGAGCTCTCCGTCGACGAGGCGCGCGTCGGCGGGGCCATCCCCGTGGCGATCTTCCACCCCACCTACCTCGTGCTGGCCGCCGGGGTGTCCAACGCGTTCCTCACCGGGGACCTGTTCAACCTGTACGTCGGGTTCGAGATCCTGCTGGCCGCCTCCGCCGTGCTGCTCACCCTGGGCGGCACCGCCGAACGGGTGCGTGCCGGGTCGGTGTACCTCATCGTCGCGCTCGCCTCGTCGGTGCTGTTCCTCGCGGCGATCGCCCTCGTCTACGCCGCGACCGGCACCGTCAACATGGCCCAGCTCGCCGTGCGGCTGCCCGAGATCGACGACACCGTCCGCGTCGCGCTGCAGCTTCTGCTGCTGCTCGCCTTCGGGATCAAGGCCGCCGTGTTCCCGCTGTCGTTCTGGCTGCCGGACTCCTACCCGACCGCCCCCGCGCCCGTCACCGCCGTGTTCGCCGGCCTGCTCACCAAGGTCGGGGTCTACTCGATCCTGCGCACCCAGACGCTGATCTTCCCCGACAGCCCCGCCGTCGACCAGGTGCTGATGGTCGTGGCGCTGGCGACCATGGTGATCGGCATCCTCGGCGCCGTGGCGCAGAACGACGTCAAACGGCTCCTGTCCTTCACGCTCGTCAGCCACATCGGCTTCATGGTGTTCGGCGTGGCGCTGGCCTCCGAGGCCGGGACGGCGGCCGCCATCTTCTACGTCGTCCACCACATCTCCGTGCAGACCGCGCTGTTCCTCGTCGTCGGGCTCGTGGAGTGGCGCGGCGGGTCGACGTCGCTCGACCGGCTCGGCGGGCTGGCCCGGATCGCGCCCGTGCTGGCGGTGCTGTTCTTCGTGCCCGCCATCAACCTCGCCGGCATCCCGCCGCTGTCCGGGTTCCTCGGCAAGGTCGGGCTGCTCACCGAGGGCGTGCGCACCGGGACGCCGCTGGCCTGGATCCTCGTGGTGGGCTCCGTCGTCACCTCCCTGCTCACCCTGTACGCCGTCGTCAAGGCGTGGAACAAGGCCTTCTGGCAGACGGCACCGCCCGACCTGCCCGAACGCGCTCCCCTGCCGCGCACCATGGTCTGGCCGGCCGGGGCGCTCGTCGCCTTCGGGGTGTCCCTGACGGTCGTGGCCGGCCCGCTGTACGCCTACGCCGAACGGTCCGCCGCCACCACGATGGACGGCGTCACCTACGTCGACGCCGTCTACCCCGGCGGGTCCGACCGCGGCACCGGACAGTCCGTCGAGGTCACCGAGGAGAGCACCGGGGAGGAGGAGTCATGAMSWLGTVLSAPTLVPLPVLVPLFAAGLTLALHRYANVQRVISVVALAVSTAASAGLVLAADSGPVVVDLGGWAAPVGIALVADRLAALMLTVSGVMLLCVLLYSLGQGVPEGEAEPAQELSVDEARVGGAIPVAIFHPTYLVLAAGVSNAFLTGDLFNLYVGFEILLAASAVLLTLGGTAERVRAGSVYLIVALASSVLFLAAIALVYAATGTVNMAQLAVRLPEIDDTVRVALQLLLLLAFGIKAAVFPLSFWLPDSYPTAPAPVTAVFAGLLTKVGVYSILRTQTLIFPDSPAVDQVLMVVALATMVIGILGAVAQNDVKRLLSFTLVSHIGFMVFGVALASEAGTAAAIFYVVHHISVQTALFLVVGLVEWRGGSTSLDRLGGLARIAPVLAVLFFVPAINLAGIPPLSGFLGKVGLLTEGVRTGTPLAWILVVGSVVTSLLTLYAVVKAWNKAFWQTAPPDLPERAPLPRTMVWPAGALVAFGVSLTVVAGPLYAYAERSAATTMDGVTYVDAVYPGGSDRGTGQSVEVTEESTGEEESPGPT0013910_594DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013910-mnhD-K05568NANA
AK018_01541525hypothetical proteinATGATCGTCCTGGAGAACACCCCCTCGGCGGTGCTGGTGCTGGCGATCGGCGTGCTGTGCGGCGCCGGCGTGTACCTGCTGCTCGAACGGCCCCTCACCCGCATCCTGCTGGGGTTCATCCTGCTGTCCAACGGGGTCAACCTCATGCTCCTCGTCGCCGGCGGCAAGGCCGGCGCGTCCCCGATCGTCGGCAGCGCGCCCGAGGACGAGCCGATGAGCGACCCGCTGGCCCAGGCCATGACGCTGACCGCCATCGTCATCACCCTCGGGCTGACCGCGTTCATCCTCGCGCTGGCCTACCGGTCCTGGCAGCTGCACGGCCACGACGAGGTCGCCGACGACGTCGAGGACCAGCGTGTCGCGCGGCAGGCCGCGCTCAACGCGCCGGCGTACACCGACGCCGACGCCGACGAACCCGGCACCACGCTCGACGAGGAGGCCGCCGAGGTGCACGACGACGTCGTGCGCGACGGCGACCCCGACCCGACGCCGGGAGACGCGCCGCGCCGGGGGTGGGACGCATGAMIVLENTPSAVLVLAIGVLCGAGVYLLLERPLTRILLGFILLSNGVNLMLLVAGGKAGASPIVGSAPEDEPMSDPLAQAMTLTAIVITLGLTAFILALAYRSWQLHGHDEVADDVEDQRVARQAALNAPAYTDADADEPGTTLDEEAAEVHDDVVRDGDPDPTPGDAPRRGWDAPGPT0013905_229DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013905-mnhC-K05567NANA
AK018_015422919ndhB_2NAD(P)H-quinone oxidoreductase subunit 2, chloroplasticATGCTCCCGCCCGCCCCCGACGGACGGAGTGCCGTGCTCCAGATCCTGCTGCTCACCTTCGCGTCAGCGCTCGTCGCGCCCGCCCTGGTGACGTGGTGGGGTCGTCGTGCCTTCTGGGTGCTGGCGCTGGGTCCGGCGTCGGCCGCCGGCTACGCGATCGCCGTCGCCGACCAGGTCGCCGCCGGCGACCACCCCACCCAGCACGTGCCCTGGGTGCCCGGCCTCGAGCTCGCCGTCGACCTGCGCCTCGACAGCCTCGCCTGGCTGATGCTGCTCGTCGTCGGCGGCGTCGGTGCGCTGGTGCTGCTGTACTGCTCGGCCTACTTCGCCCGCGACGCCGTGGGCACCGGCCGGTTCGCGGGCACGCTGACCGCTTTCGTCGCCGCGATGATCGGGCTCGTCGTGGCCGACGACCTGCTGCTGCTGTTCGTGTTCTGGGAGCTGACCACGGTCTTCTCCTACCTGCTCATCGGCCACTACGCGGACCGCAAGGCCTCCCGTCGCGCGGCGATGCAGGCGATCGTGGTGACCACCGCGGGCGGACTGACGATGCTCGTCGGGCTCATCGTGCTCGGCGTGTCCACCGGGCAGTGGCGGATCTCCGAGGTGGTCGCCGACCCGCCCACCGGCGCGCCCGCCGTCGTCGCCGCGCTGTGCCTGCTCGCGGGCGCCGCCACCAAGTCCGCGCTCGTGCCCTTCCACTTCTGGCTGCCCGCCGCGATGGCGGCACCCACCCCCGTGTCCGCCTACCTGCACGCCGCCGCCATGGTGAAGGCCGGCGTGTACCTCGTGGCGCGGTTCGCCCCCGGCCTGGCGGACCTGCCCGTGTGGCGGTGGACCGTGGTGCTCGCCGGGGGCGGCACGCTCCTGCTCGGCGGGTACCGCGCGCTGCGCCAGCACGACCTCAAGCTGGTCCTCGCGTTCGGCACGGTCTCCCAGCTGGGGCTGCTCGTGCTCCTGCTGGGCCTGGGGACCCGGGCGGCGGCACTGGCGGGGCTCGCGCTGCTCGGCGCCCACGCGATGTTCAAGGCCGCGCTCTTCCTCGTCGTCGGCGCCGTCGACGTCGCCGCGGGCACCCGTGACCTGCGTCGGCTGTCCGGGCTGTGGCGGTCCATGCCCGTCGCCGCGGCCGCCGGCGTGCTCGCCACCGCGTCCATGATCGGGCTGCCCCCGCTGGCCGGCTACGTCGCCAAGGAGGCCGCCCTCGAGGGCCTGTGGCACGACGTCACCCACGGCGGCGGGACCCTCGCGGTCGTGGCGCTGGTCGCCGTCGTCGTCGGCTCCGCCCTGACCGTCACCTACGGGCTGCGCTTCGTCTGGGGCGCGTTCGGCACCAAGCGGTCCCTGCCCGACGACGTCGCCCCGGTCACGCGGGTCCGTCGCCAGTCGTGGCTGCTGGTCGGGCCGCCGGCCGTGCTCGCGCTGCTGGGGCTCGCCGTCGCGCTCGTGCCGGCCACCGGCGAGCACCTGCTCGCCCCGTACGCCGACACCTACCCGAGCGGCGACCCCGGGCACCTGGTGCTGTGGGCGGGACTCACGCCGGCGCTCGTGATGTCCGCGGGGATCCTCGCCGTCGGTGCCCTGCTGTTCTGGCAGCGGGTGCGCGTCGAGCGGTGGCAGGAGGCCCTGCCGTCCGCGCGCGGCGCCGACGTCGTCTACCGGCGGGGGATGCGCCGCCTCGACGACCTCGCCGCCGACGTCACGGCCGCGACCCAGCGCGGCTCCCTGCCCTTCTACCTCGGCATCGTGGTGCTCGTGCTGGCGCTCGCCCCCGGCGCCGTGATCCTGACCGGGCTGGTGGGCGGCACGTCGGTGGCGCTCGAGGTGCGCCCCTGGGACGAGCCCGCCCAGGCGGCGGTGGTCGCGATCGTCGCCGTCGCCGCCGTCCTCGCCGTCCGCGCCCGGCGCCGGCTCAAGGCCGTCGTGCTCGTCGGCGTCGCCGGCTACGCCAACGCCGCCCTGTTCCTGCTGCACGGCGCCCCCGACCTGGCGTTGACCCAGGTGCTGGTCGAGACCGTCACGCTCGTGGTGCTCGTGCTGGTGCTGCGCCGCATGCCGCCGTACTTCACCGACCGGCCCCTGGCGGCGAGCCGGTGGGTGCGCCTGGCGCTCGCCGTGGTCACCGGCGTCGTCATGATGGCGCTGACGGTCGCGGCGCCGCTCGCCCGGGTCGCGGACCCGATCAGCGTGGACTTCCCCGCCGAGTCCGTCGAGTACGGCAGCGGGCGCAACATCGTCAACGTCACCCTCGTGGACATCCGCGCGTGGGACACCGTCGGCGAGCTGTCCGTGCTGCTCGTCGCCGCGACCGGCGTGGCCTCCCTGGTGTTCCTGCGGCAGCGCAGCGGCGAGGTGCTGCGGCTCTCGCGCGCACCCGGCCAGGACGGGGACCGGTCCGAGACGCGCGGGCAGTGGCTCGTCGCCGGGCGCACCCTCGCCCCCGGACGCCGCTCGGTGATGTTCGAGGTCGTCACCCGCCTGGTCTTCCACGCGATGGTCGTCTTCGGACTGTTCCTGCTGTTCAGCGGCCACAACGCCCCCGGCGGCGGGTTCGCGGCCGGGCTCATGGTCGGTATCGCGCTGGCGGTGCGCTACCTCGCCGGCGGCCGCTACGAGCTGGGTGAGGCGATGCCGGTGCCGCCCGGCCTGCTCCTCGGCACCGGCCTGTTCCTCTCGGCCGGCGTGGGCCTGTTCGCCCTGCTCACCGGCAACGAGGTGCTGGAGAGCTTCACGTACGACTTCCACGTGCCGCTGCTCGGCGACGTCCACCTGGTCACGTCGCTGTTCTTCGACATCGGGGTGATGCTGCTGGTCGTGGGCCTCGTGCTGGACGTGCTGCGCACGCTGGGCGCCGAGATCGACCGGCAGGGCGAGCTGCCCGAGCAGGTCGTGCGGACCGCGGGGGAGGAGCAGCGATGAMLPPAPDGRSAVLQILLLTFASALVAPALVTWWGRRAFWVLALGPASAAGYAIAVADQVAAGDHPTQHVPWVPGLELAVDLRLDSLAWLMLLVVGGVGALVLLYCSAYFARDAVGTGRFAGTLTAFVAAMIGLVVADDLLLLFVFWELTTVFSYLLIGHYADRKASRRAAMQAIVVTTAGGLTMLVGLIVLGVSTGQWRISEVVADPPTGAPAVVAALCLLAGAATKSALVPFHFWLPAAMAAPTPVSAYLHAAAMVKAGVYLVARFAPGLADLPVWRWTVVLAGGGTLLLGGYRALRQHDLKLVLAFGTVSQLGLLVLLLGLGTRAAALAGLALLGAHAMFKAALFLVVGAVDVAAGTRDLRRLSGLWRSMPVAAAAGVLATASMIGLPPLAGYVAKEAALEGLWHDVTHGGGTLAVVALVAVVVGSALTVTYGLRFVWGAFGTKRSLPDDVAPVTRVRRQSWLLVGPPAVLALLGLAVALVPATGEHLLAPYADTYPSGDPGHLVLWAGLTPALVMSAGILAVGALLFWQRVRVERWQEALPSARGADVVYRRGMRRLDDLAADVTAATQRGSLPFYLGIVVLVLALAPGAVILTGLVGGTSVALEVRPWDEPAQAAVVAIVAVAAVLAVRARRRLKAVVLVGVAGYANAALFLLHGAPDLALTQVLVETVTLVVLVLVLRRMPPYFTDRPLAASRWVRLALAVVTGVVMMALTVAAPLARVADPISVDFPAESVEYGSGRNIVNVTLVDIRAWDTVGELSVLLVAATGVASLVFLRQRSGEVLRLSRAPGQDGDRSETRGQWLVAGRTLAPGRRSVMFEVVTRLVFHAMVVFGLFLLFSGHNAPGGGFAAGLMVGIALAVRYLAGGRYELGEAMPVPPGLLLGTGLFLSAGVGLFALLTGNEVLESFTYDFHVPLLGDVHLVTSLFFDIGVMLLVVGLVLDVLRTLGAEIDRQGELPEQVVRTAGEEQRPGPT0013895_434DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013895-mnhA-K05565NANA
AK018_01543990hypothetical proteinGTGCTGACGAAGACCGTCGTGCCGGACGCCGCCGTCGAGGCGCTGCTCGAGCCGTGGGGCCGGGTGGCCCGCATCGTGCCTCTCGAGGGCGGCATGTTCGCGAGCGTGTCCCGGGTGGACCTGGAGGACGGCCGACGCGTCGTCGTGAAGGTCACGGGTGCCGACACCTCGCGCCTGCTGCGCTACGAGCACGGCGTCCTCGGCACCGAGGCGATGGCGGACCGGCTGGCGCACGCGGCGGGCCTGCCCGTGCCGGAGGTGCTGCTGCACGACGACTCGGGCCGCCACGTCGAGGGCGAGGCGCTGGTCACCACGTTCCTGGACGGGGAGCTGTGGAGCTGCCTGTCCCTCGAGGAGCCCGTGGCGGCCGGGGTCCGCCGGTCGCTGGGTCGCTTCATGGCGAAGTTGCACACCATCGTCGGCGACCGGTACGGCTACCCGGCACCGGCCTCCGCGCTCGCCGGCCCGACCTGGCCGGACGCCTTCGCGGCGATGGTGGCCGCGGTGGACGACGACGCCGCACGCTGGGACGTGGACATCCCGGTGGACCGCCTGCGGCACGCCGTCGCCCGGTACCGGGCGGTTCTGGCCGAGGTCACGGTGCCGCGGCTGGTGCACGCCGACCTGTGGCCGGGGAACGTCCTGCTCGACGCGGACCGCTCCGTCGTCGGGGTCCTGGACGCCGAACGGGCCCTGTGGGGCGACCCGCTGTTCGAGCTCGCCGGATGCGACCAGCTCGCGGCGGGGGCGGTCGATCCCGACACGGTGCGGGGGTACCGGGACGCCGGCGGCGACCTGGGCGTGGGCGACGGGACGCCGGACGACGGCGACGCTGCGGCCTGGACGCGTCTGCGGCTGTACCGGGCGTACTTCGCCTGCCTCCTGGCCGTGGAGGTCGTCCCCCGGGCGTACACCGGCGACTGGGTCGCCGGGCACGCGGGCACGGCGCGGGCGAACCTGGACCGGCTGCTCGACGAGCTCGGCTGCTGAMLTKTVVPDAAVEALLEPWGRVARIVPLEGGMFASVSRVDLEDGRRVVVKVTGADTSRLLRYEHGVLGTEAMADRLAHAAGLPVPEVLLHDDSGRHVEGEALVTTFLDGELWSCLSLEEPVAAGVRRSLGRFMAKLHTIVGDRYGYPAPASALAGPTWPDAFAAMVAAVDDDAARWDVDIPVDRLRHAVARYRAVLAEVTVPRLVHADLWPGNVLLDADRSVVGVLDAERALWGDPLFELAGCDQLAAGAVDPDTVRGYRDAGGDLGVGDGTPDDGDAAAWTRLRLYRAYFACLLAVEVVPRAYTGDWVAGHAGTARANLDRLLDELGCNANANANANA
AK018_015442028resA_2Thiol-disulfide oxidoreductase ResAGTGCCGCAGAATGGACCGGTGAGCACCACCGCACTGCCCAAGGTCCGCGCCTCCGCCCCCACTGGGCGTGGCTGGCTGAACACCGGCGGCAAGGATCTCGCCCTCGCCGATCTGCGGGGCAAGGTCGTCGTCCTCGACTTCTGGACCTTCTGCTGCCTGAACTGCCTGCACGTCCTCGACGAGCTGCGCGAGCTCGAGGAGTCCCACCGCGACACCCTCGTGATCGTGGGCGTGCACTCGCCGAAGTTCGCCCACGAGGCCGACCCGGACGCCCTCGCCGCAGCCGTGGAACGGTACGACGTGCGCCATCCCGTGCTCGACGACCCGGAGCTGACCACCTGGGACGCCTACACGGCCCGCGCCTGGCCGACGCTCGTGGTCATCGACCCGGAGGGCTACGTCGTCGCGCAGATGGCGGGTGAGGGGCACGGGTCGGCGCTCGCGGGGATCGTGCGCGACCTGGTCGCCGAGCACGAGGCGAAGGGGACCCTGCACCGGGGCGACGGGCCGTACGTGCCGCCGACGCCGGAGTCGACCACGCTGCGTTTCCCGGCGAAGGCTGTGGCGCTGCCGGGCGGCACGCTCCTCGTGGCGGACGCCGGGCACCACGCCCTGGCGGAGCTGGCGTCCGACGGCGAGACGCTGGTACGGCGCTTCGGCTCGGGCGAGCGTGGCCTGGTCGACGGCGGGACGGTCGACGGCGGACCGGCGTCCCCGGGCGGGCACGAGGCCCGGTTCAGCGAGCCGAACGGGCTGTGCCTGGTGCCCGAGCCGCTGCGGGAGCGCCTCGGCTACGACGTGCTGGTCGCGGACACGGTGAACCACGCGCTGCGCGGCGTACATCTCGAGTCCGGCGAGGTGTACACCGTGGCGGGGACCGGTGAGCAGTTCATGGTCGGAGCCGTGGACAACGTGGCGGGTACGAGCGCGCCGTTCGACCAGGACCGCACCTACCCGGCCCGGGAGGTCAAGCTGTCCTCGCCGTGGGACGTCGCCTGGTCCGACGCGCTGGGTGCGTTCGTCGTCGCCATGGCCGGCAACCACACGCTGTGGACCTTCGACCCCGTCGCGCACGACGGCACGGGCGCCCTGCGGCTCCTCGCCGGCACCATGAACGAGGGGCTCGAGGACGGGCCGGGTGTCGACGCGTGGTTCGCCCAGCCCTCGGGCCTGGACGCCTCGCTCGGCGCGGACGGCGCCCCCGACGGCGGGTTCTGGCTGGCCGACGCCGAGACGTCCGCGTTGCGCCGGTGCACGCCGGACCGGACGGGCGGGATCGAGGTGCGTACCGCCGTCGGGCAGGGCCTGTACGACTTCGGGCACCGCGACGGTCCCGCCGGGGAGGCGTTGCTGCAGCACCCGCTGGGCCTGGCCACGCTGCCGGACGGGTCCGTCGTCGTCGCCGACACCTACAACGGGGCCCTGCGGCGCTACGCCACCGCCGCCAACGGGGCCCCCGGCGAGGTCACGACCCTCGCGACGGGCCTGGCCGAACCGAGCGACGTCGTCGTGCAGCCGGACCCGGCCGCCGGCACCCTGCACCTGCTGGTGGTCGAGTCCGCCGCGCACCGCCTCACGCGCGTGGCCGTGCCCGCCGACCTGGCCGGCCAGGTGCTCGACGCCGGCTCCCACCGCGTCACGCGGGCGGCCACCGAGGTCGCCGCCGGCGAGGTGCGCCTCGAGGTCCCGTTCACGCCCGCCCCCGGCCAGAAGCTCGACGACCGGTTCGGCCCCTCCACCGAGCTCACCGTCAGCACCACCCCGCCGGAGCTGCTGCTCGACGGCAGCGGGACCGGCACCGACCTGACCCGCACGCTGCGCCTCGACCCTGCCGTCGGCACAGGGGTGCTGCACGTGACCGCCAAGGCCGCCTCGTGCGACCTGCCGCCCGCGGACGTGCCGCTCGGTACCGACGGCGAGCCGGAGGACTTCTTCGGGGCCTGCCATCTCGCCCAGCAGGACTGGGGCGTGCCCGTGCACGTCAGCGCCACCGGCGAGGCCACGCTCACCCTCCCGCTGCGGGGCTGAMPQNGPVSTTALPKVRASAPTGRGWLNTGGKDLALADLRGKVVVLDFWTFCCLNCLHVLDELRELEESHRDTLVIVGVHSPKFAHEADPDALAAAVERYDVRHPVLDDPELTTWDAYTARAWPTLVVIDPEGYVVAQMAGEGHGSALAGIVRDLVAEHEAKGTLHRGDGPYVPPTPESTTLRFPAKAVALPGGTLLVADAGHHALAELASDGETLVRRFGSGERGLVDGGTVDGGPASPGGHEARFSEPNGLCLVPEPLRERLGYDVLVADTVNHALRGVHLESGEVYTVAGTGEQFMVGAVDNVAGTSAPFDQDRTYPAREVKLSSPWDVAWSDALGAFVVAMAGNHTLWTFDPVAHDGTGALRLLAGTMNEGLEDGPGVDAWFAQPSGLDASLGADGAPDGGFWLADAETSALRRCTPDRTGGIEVRTAVGQGLYDFGHRDGPAGEALLQHPLGLATLPDGSVVVADTYNGALRRYATAANGAPGEVTTLATGLAEPSDVVVQPDPAAGTLHLLVVESAAHRLTRVAVPADLAGQVLDAGSHRVTRAATEVAAGEVRLEVPFTPAPGQKLDDRFGPSTELTVSTTPPELLLDGSGTGTDLTRTLRLDPAVGTGVLHVTAKAASCDLPPADVPLGTDGEPEDFFGACHLAQQDWGVPVHVSATGEATLTLPLRGNANANANANA
AK018_01545222hypothetical proteinATGGTCACGAGGGACGAGGCACGAGCCGCCAAGAGCATGCTGCGCGAGCGGCTGCAGCGCGTCGACGGCGTGCAGGGCGTCGGGCTGACGCGGCGCGGGGAGACGCACGAGTGGGTCCTGCAGGTCGACGTGGCCGACGTCCGCGCCCGCAAGGACGTGCCGCCCGACGTCGAGGGCGTCCCGGTGACGGTGTGCGTCGTGGGGGCCGTGCAGCCGTTGTGAMVTRDEARAAKSMLRERLQRVDGVQGVGLTRRGETHEWVLQVDVADVRARKDVPPDVEGVPVTVCVVGAVQPLNANANANANA
AK018_015461275hypothetical proteinATGACCACCACCGACACCGTGCACGAGGCGCCCCGGATCGTCACCCGGACCGGCCCCGGCAAGCTCGTGGCCGACACCCGCGCGGTCTTCACGCGCGAGATCCTGCTGACGCTGCGCGACCCGTTCACGCTGATCTTCTCGCTGCTGCAGCCGCTGGTGTTCCTGGGGCTGTTCGCCCCGCTGCTCACGGGCACGTTCGGCGGGACCGGGCTGTCCACTGCCGAGACCCTGCAGTGGTTCGTGCCGGGCGTGATCGTGATGATCTCCCTGTTCGGCACCTCGATGACCGGGTCGAACCTGCTCTACGAGATCATGACCGGCTCGTACGAGCGGGTGCTCGCGACCCCGCTGTCCCGGTCCTCGATCCTGGTGGGGCGGGCGCTCAAGGAGTTCGCGCCCCTCGTGGTCCAGGGGCTGCTCATCGCGGTGCTGTGCGTCCCGTTCGGCTTCCGGTTCAACCCGCTGCACGCCGTCGTCGCGCTGCTGCTCCTCGGGGTGTTCGGCATCGGCGTCGGGGCGCTGTCGTACGCGCTCGGGCTGGCGGCCAAGAACCGCGAGTGGCTGTTCTGGGGCGTGCAGCAGGCGCTGCTGTTCCCGCTGCTCATCCTGTCCGGGATGATGCTGCCGCTGGAGACCGGGCCGGGCTGGATGCAGGTCGCGGCGCGGTTCAACCCCCTGACCTACATCGTCGAGGCCGAGCGTGCCCTGTTCGCCGGGGACCTCGCGGACCCCGTGGTGCTGTGGGGCTTCGTCGCCGCGGCGGTGACCTGCGCCCTGGGGCTCGTCGTCGGGATCCGCGCGACCCGCCGGTTCTCTGAGGCTCAGCGGCCGGTGTTGTTCATCTCGTCCGGGTGCGAGCCGACCCGCTCGCCGCGGTCGAGGGCCGTGATGTCCGCCATGTCGGCCTCGGAGAGCTCGAAGTCGAAGAGCGCGAAGTTCTCCTTGATCCGCTCGGGCGTCACCGACTTCGGGAAGATCACGTCGCCGCGCTCGATGTGCCAGCGCAGCACCACCTGCGCGGGCGTGCGGTCCAGGTTCCCGGCGATGCGCACGATCGTCGGGTCCTCCAGCACGGCACCCCGGCCCAGCGGCGACCACGCCTCCGTCACGATGCCGTGCTCGGCGTCGACGGCGCGCACGTCCTCGTTGCCGAGCCACGGGTGCACCTCGATCTGGTTCACGGCCGGGACCACGGTGGACTCGTCCATCAGCCGGCGCAGGTGGTGCGGCTCGAAGTTCGACACCCCGATCGCCCGCGCCCGCCCGGAACGGTAGMTTTDTVHEAPRIVTRTGPGKLVADTRAVFTREILLTLRDPFTLIFSLLQPLVFLGLFAPLLTGTFGGTGLSTAETLQWFVPGVIVMISLFGTSMTGSNLLYEIMTGSYERVLATPLSRSSILVGRALKEFAPLVVQGLLIAVLCVPFGFRFNPLHAVVALLLLGVFGIGVGALSYALGLAAKNREWLFWGVQQALLFPLLILSGMMLPLETGPGWMQVAARFNPLTYIVEAERALFAGDLADPVVLWGFVAAAVTCALGLVVGIRATRRFSEAQRPVLFISSGCEPTRSPRSRAVMSAMSASESSKSKSAKFSLIRSGVTDFGKITSPRSMCQRSTTCAGVRSRFPAMRTIVGSSSTAPRPSGDHASVTMPCSASTARTSSLPSHGCTSIWFTAGTTVDSSISRRRWCGSKFDTPIARARPERNANANANANA
AK018_015471011drrA_3Daunorubicin/doxorubicin resistance ATP-binding protein DrrAATGATCCGAGCGCGCGGTCTGACCAAGACGTTCCGGCGCGGCAAGCAGACCGTGGAGGCGGTCAAGGGCGTCGACGTGGACGTCGCCGAGGGTGAGCTCGTCGCCTTCCTCGGCCCCAACGGCGCGGGAAAGTCCACCACGTTGCGCATGCTCACCTCGCTGCTGGAACCCACCGCCGGCACGGCCACCGTCGCCGGGTTCGACGTCGCCACCGATCCGGCGCAGGTCCGGGCCCGGCTCGGGTTCATCGGGCAGGGCAACGGCGGCGGCTTCAGCTACCAGGTGCGCGACGAGCTCTACAACCAGGGCCGCTTCTACGGCCTGGCACCAGCCGAGTACAAGGCCCGGGCCGCCGACCTCACGGCGGCGCTGGCGCTCGACGGGCTCGAGAAGCGCACCGTGCAGTCCCTCTCGGGCGGGCAGCGCCGGCGCCTCGACGTCGCCCTCGGCCTGATGAACCACCCGCCGCTGCTCTTCCTCGACGAGCCCAGCACCGGGCTCGACCCGCACTCGCGGGCCAACCTGTGGGAGCACATCACCACGATGCGCGAGCGGTTCGGTATGACCGTCGTGCTCACCACGCACTACCTCGACGAGGCTGACGACATGGCCGAGCGCGTCGTCGTCATCGACCACGGCGAGATCATCGCCGACGCCGCCCCCGGCGTGCTCAAGCGCGAGCACGCCGACGACGTCGTCACCCTCGACGTGCGCGGCGGCCCGGCCGCGTCGGTGCAGGCCGCCGTCGGGACCGTCGTCGGACCGGACGCCCCGCACCCCGGCACGGTCACGGTGCACGACGGCGGCACCGCCGCGGACCTGCACCGTGTCACCCTGGCCACGCACCGGGGCGCCGACCGGCTGCCCGAGGCAGTCGAGGCGCTGCGGTTGGCCGGGTTCACCACGACGTCGGCGACCGCCAAGCAGGCCAGCCTCGACGACGTCTTCCTCAACCTGACCGGGCGCAGCCTGCGCGAGGACACCGCGATCACCGAGGAGGCGGCAGCATGAMIRARGLTKTFRRGKQTVEAVKGVDVDVAEGELVAFLGPNGAGKSTTLRMLTSLLEPTAGTATVAGFDVATDPAQVRARLGFIGQGNGGGFSYQVRDELYNQGRFYGLAPAEYKARAADLTAALALDGLEKRTVQSLSGGQRRRLDVALGLMNHPPLLFLDEPSTGLDPHSRANLWEHITTMRERFGMTVVLTTHYLDEADDMAERVVVIDHGEIIADAAPGVLKREHADDVVTLDVRGGPAASVQAAVGTVVGPDAPHPGTVTVHDGGTAADLHRVTLATHRGADRLPEAVEALRLAGFTTTSATAKQASLDDVFLNLTGRSLREDTAITEEAAAPGPT0006725_3889DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_01548783HTH-type transcriptional repressorATGGCCGAGACCGCGACCGACCGCCCCGACCCGTCCGACGCCGGACGCCGGCTCGCGCTGCTGTGGGACCCGCCGCAGCCCTCCGGACGCGGCCGGCGAGCCCGCCTCACGCTCGACGACGTCGTCGCCGCCGGGACCGCCGTCGCGCACGACGCCGGCCTCGACGGGCTCAGCATGCGCAAGGTCGCCACCCACCTCGGCGTGGGCGCCATGACCCTCTACACCTACGTGCCGGGCCGCACGGAGCTGGTCGACCTGATGATCGACCGGGCCTTCGCCGAGCTGGAGCTGCCGGACCCCGGCCTCGGCTGGCGTGAGGCCATGACGCGGTACGCGCACGAGCACCTCGCGCTCTACCGGCGCCACCCCTGGCTGCTGCAGACCAACTCCTGGCGCATGCCGCTCGCGCCGCACGTGCTGGACTCCGAGGAGGCCGGGCTGCGGATCCTCGACGGCGCCGGGCTCGCCCCCGACCGCGTCGTCGAGGTGATCGGGCTCATCAACACCTACGTCCACGGCGTCGCGCGCGCCGCGGTCGCGGAGCAGGCCGAGGACAGCTCCTCAGGGCTCAGCAACGACGAGTACTGGGACTCGATGTCGGGATTCTGGGGCACCTACTTCGACCCCGAGCGCTACCCGACCATGACCCGCATCTGGGAGGCCGGCGGCTTCGACACCGGCCACGCCGGGTTCGACCGGACGCTCGACCGGCTGCTCGACAGCATCGAGCTCGCCGTCGAGCGGGCACGCGCCGCGGGCGGCCTCACAGACCCAGCTCGGTGAMAETATDRPDPSDAGRRLALLWDPPQPSGRGRRARLTLDDVVAAGTAVAHDAGLDGLSMRKVATHLGVGAMTLYTYVPGRTELVDLMIDRAFAELELPDPGLGWREAMTRYAHEHLALYRRHPWLLQTNSWRMPLAPHVLDSEEAGLRILDGAGLAPDRVVEVIGLINTYVHGVARAAVAEQAEDSSSGLSNDEYWDSMSGFWGTYFDPERYPTMTRIWEAGGFDTGHAGFDRTLDRLLDSIELAVERARAAGGLTDPARNANANANANA
AK018_015491674ptsI_2COG1080Phosphoenolpyruvate-protein phosphotransferaseATGAGCACGACGCTCACCGGAGCGCCGGTCAGTCCGGGGCGCGCCGCGGGGCCGGCCGTCACCATGCCCGACCCGGTGCCCGAGCCCCGGACCACCCGCGTGGGCAGCGCCGACGTCGAGGCCGCCGTCGAGCATCTCGCGGCCGCGGCGCGCGCGGTCCGCGACGAGCTCACCGAGCGCGCCGGGCGGGCCACCGGGACGGCCGCCGACCTCCTCGCCGTCACCGCCGCCATGGCCGCCGACCCGGGACTCACCGCGGACGCCGAGCGGCGGATCCGCACGGACCGGCTCACCGCCGAGCGGGCCATCTGGGACGCCGCGCGGGCGGCGGTGCGCCAGCTCGAGAAGATGGGGCCGCCGCTGTCGGAGCGGGCGCGGGACGTGCGGGACGTGCGCGACCGCATCGTCGCCGAGCTCATCGGGGTGCGGCCGCCGGGCGTGCCCCAGTCCGACGTGCCGTTCGTGCTCGTGGCCGAGGACCTCGCCCCGGCCGACACCGCCTCCCTCGACCCGGAGGTCGTGGTGGGCGTAGTCACGAGCTCCGGGGGGCCGACGTCGCACACCGCGATCCTCGCCCGGGCCCTGGGGATCCCGGCCGTCGTCGCGGTGCGTGGCGCGCGGGACATCACCGACGGCGAGACGGTGCTGCTCGACGGCGGGGCCGGCGTCGTCGTGCGCGACCCCGACCCGGACACGGTGGCGGCCGCGCAGCAGAAGGTCGCGAGCCGGCGTCGGTTCGACGGCACCGGACGCACCGCCGACGGCACCCGCGTCGAGCTGCTGGCCAACGTGGCCGACCCGGCCGGGGCGCAGGCCGCGATCGAGGCCTCCGCGGAGGGCGTGGGACTGTTCCGCACCGAGTTCTGCTTCCTGGGCCGCAGCGCCGAGCCTGGGATGTCGGAGCAGGTCGCGGCCTACCGGCAGGTGCTCTCGGCGTTCCCGGGACGCAAGGTCGTGGTGCGCACGCTCGACGCCGGTGCGGACAAGCCGTTGCCGTTCGTGACGTCCGACGGCGAGCCCAACCCGGCGCTCGGGGTGCGGGGGCTGCGCACGGCGTCGTCGCGACCGGGGGTGCTGGACCGCCAGCTCCAGGCGATCGCGCGGGCCGCCGAGGCCGAGAACGCCGAGGTCTGGGTGATGGCCCCGATGGTGTCCACGGCCGAGGAGACCGCGGAGTTCGTGGCGGCCTGCGCGCGGCACGGCCTGGACACGGCCGGCGTCATGATCGAGGTGCCGGCCGCGGCGCTGCGCTCGTCCGCCGTGTTCGCGCACGCGGCGTTCGGCAGCCTGGGCACCAACGACCTGATCCAGTACACGATGGCCGCCGACCGTGTGCTCGGCGAGCTCGCCGCGCTGTCCTCCCCGTGGCAGCCCGCGGTCCTGGAGCTGGTCCGCACCACCTGCCGGGGTGCCGCGGAGCACGACCGTCCGGTCGGGGTGTGCGGCGAGGCGGCGGCGGACGCGACGTTGGCGCCGGTGCTGGTCGGCCTGGGTGTGCGCTCGCTGTCGATGACGCCGCGTGCCCTGGCCGACGTCGCGGCCGTACTGGGGCGCGTGAGCGACGCGGAGTGCGTCGAGCTGGCGGAGCTGGCGCTGGGCCAGGACGACCCGATCGCCGCGCGCCAGGCGGTGCGCGACCGGATCCGGCCGGTGCTCACCGAGCTGGGTCTGTGAMSTTLTGAPVSPGRAAGPAVTMPDPVPEPRTTRVGSADVEAAVEHLAAAARAVRDELTERAGRATGTAADLLAVTAAMAADPGLTADAERRIRTDRLTAERAIWDAARAAVRQLEKMGPPLSERARDVRDVRDRIVAELIGVRPPGVPQSDVPFVLVAEDLAPADTASLDPEVVVGVVTSSGGPTSHTAILARALGIPAVVAVRGARDITDGETVLLDGGAGVVVRDPDPDTVAAAQQKVASRRRFDGTGRTADGTRVELLANVADPAGAQAAIEASAEGVGLFRTEFCFLGRSAEPGMSEQVAAYRQVLSAFPGRKVVVRTLDAGADKPLPFVTSDGEPNPALGVRGLRTASSRPGVLDRQLQAIARAAEAENAEVWVMAPMVSTAEETAEFVAACARHGLDTAGVMIEVPAAALRSSAVFAHAAFGSLGTNDLIQYTMAADRVLGELAALSSPWQPAVLELVRTTCRGAAEHDRPVGVCGEAAADATLAPVLVGLGVRSLSMTPRALADVAAVLGRVSDAECVELAELALGQDDPIAARQAVRDRIRPVLTELGLPGPT0002025_3088DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0002025-ptsI-K08483NANA
AK018_01550447crrPTS system glucose-specific EIIA componentATGCCGCTGACCGTCCGCTCCCCCGTCGCCGGCCGCGTGATCCCCACCGACGAGGTGCCCGACCCGGTCTTCGCCGGAGGACTCGTCGGGCCCGGGACCGCCGTCGAGCCCACGGGCGACGACGTGACCGCACCCGTCGACGGCCGCGTGGTCAAGCTGCACCCGCACGCGTTCGTGGTGCAGATTCCGGACGGACCCGCGGTGCTCGTGCACCTGGGGATCGACACCGTCCAGCTCGGCGGCGAGGGCTTCACCCTGCACGTCGCCGAGGGGGACGAGGTGGCGGCCGGCGACCCCGTCGTGACCTGGTCCCCCGCGGCGGTGCGCGACGGCGGACGCTCGGCCGCGTGCCCCGTCGTCGTCCTCGAGGCGCCGCCCGAGCAGGTGGAGCTCCTGGCCGCGCCGGGCTCCGACGTCAGCACCGGAGACCCCCTCCTGACGCTGTGAMPLTVRSPVAGRVIPTDEVPDPVFAGGLVGPGTAVEPTGDDVTAPVDGRVVKLHPHAFVVQIPDGPAVLVHLGIDTVQLGGEGFTLHVAEGDEVAAGDPVVTWSPAAVRDGGRSAACPVVVLEAPPEQVELLAAPGSDVSTGDPLLTLPGPT0014090_1149DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0014090-crr-K02777NANA
AK018_015511083hypothetical proteinATGGACCTGACGCAGGCGCGCGAGACCAAGCACCACCTGACCGACTATGCCCGTGACCTGGCCGAACGTTACGGCGTCGCGGTCACGCCCCAGGCCTCGGTGCCCGACGGCGGGCCGCTCGCCGCGGTGCGGGCGCCCACGGTCTCGATCGGGCTCGCGCCGTCCGCGGAACCCGGCAGCTACCAGATCGCGGTGCGCTACCGACTCGGCGTGCCGGCGGCCCGGGCCGTGGTCCGCCGGGTCGCCGCCGAGGCCGGTCCGGCACCCGACGTCCGGCGCACGGGTCGCATCCGCCGGCTGAGCCCGGGGCGCCGCGCCAGCGGCCGGTCGGACGTCGTCGAGCCGCAGCCGCCCGTCGCCACGGCGCTCGCGCTCGGCGAGACCTCGCGGGTCCGGCCGCTGCGACCGGGCGTCTCGATCGCGCACGTGGACGTCACGGCGGGCACGCTCGGCGGGTTCGTCGTGGCCGACCCGGACTGCGCGGGTGCCGGCGCGCCGGACCTGCCGGGCGGTCCGGACGCGCTGTACGCGCTCTCGAACCGGCACGTGCTGGACGGGGCGCCGGGCGACGGGGTGCTGCAGCCCGGGCCGGCCGACGGCGGCACCGATCCCGCCGACCGGGTGGGCACGGTCGCGGCGGTGGTCCCGCTGGCGGCGGGGGAGCGAGCGGCCGTCGACGCGGCCGTGGCCCTGCTGGACGACCCGCAGGTCGACCTCGACTACCCCGTGGGCCGCATCACGACGACGGCGGAGGCGATGCCGGGGGACGCGGTCGAGAAGATCGGCCGCACCACCGGGCACACGCAGGGACGCGTGTCGGCGATCGAGATGGACGACGTGCTCGTCGGGTACGGGCCCGAGCTGGGCGTGCTCGCGTTCGACGGGCAGATCGAGGTGGAGTCGACCGCGCCGGGCCCGTTCTCCCGCGGCGGGGACTCGGGCTCGCTCGTGTACCGGGCCGACGGCGTCGCGCTGGGGCTGCTGTTCGCGGGCTCGGAGACGGGTGGCCCCGACGGCAGCGGACTGACCTACGTCAACCCGGTCGACGCGGTGCTGACCGCGCTGGGCGTCCGGCTGCGCTGAMDLTQARETKHHLTDYARDLAERYGVAVTPQASVPDGGPLAAVRAPTVSIGLAPSAEPGSYQIAVRYRLGVPAARAVVRRVAAEAGPAPDVRRTGRIRRLSPGRRASGRSDVVEPQPPVATALALGETSRVRPLRPGVSIAHVDVTAGTLGGFVVADPDCAGAGAPDLPGGPDALYALSNRHVLDGAPGDGVLQPGPADGGTDPADRVGTVAAVVPLAAGERAAVDAAVALLDDPQVDLDYPVGRITTTAEAMPGDAVEKIGRTTGHTQGRVSAIEMDDVLVGYGPELGVLAFDGQIEVESTAPGPFSRGGDSGSLVYRADGVALGLLFAGSETGGPDGSGLTYVNPVDAVLTALGVRLRNANANANANA
AK018_01552231hypothetical proteinATGAGGAACTCCACGACGGTCGACGAGGTACGCGCCGCGGTCCGCTGGGCACTGTCCCACGACCTGACGGCGCTCCTGGCGTACCGCCAGGTCACCCACCTCGACAAGGCGGGCCGCCGGCAGGCCGACGCGGCGCTCGTCGCGCACTGGCAGCAGGCCACCGGCGCCGGCTTCCGCCCCGTGCAGATCCAGGAACGCCAGAACGCCGCACCGCTGCCCCGGCGTCACTGAMRNSTTVDEVRAAVRWALSHDLTALLAYRQVTHLDKAGRRQADAALVAHWQQATGAGFRPVQIQERQNAAPLPRRHNANANANANA
AK018_015532484hypothetical proteinATGAACCGCGTCCGCCATAACCCGTGGTCCGTCGCCGCGGTCGCCCTCCTGCCCGTGCTGGCGCTCGGCATCCTGCTGGCCGCGCTGTGGAACCCCGTCGACCGGCTGGACACCGTCCAGGCGGCGATCGTCAACAACGACGAGCCGGTCGAGGTGGACGGGCAGACCGTGCCCCTCGGCCGTCAGCTCGCCGCCGGGCTCGTCGGCGGCGCCGAGGACTCGGACGTGAACTACGACTGGACCCTCACCGACACCGAGCACGCCACCGACGGGCTGGCCGACGGCACCTACGCCTCCGTCGTCACCATCCCGGAGGGCTTCTCCGCGGCCGCGACGTCGTTCGGGTCCGAGGACCCGGCCGACGCCGAGCAGGCCACCATCGACATCTCCACCCCGGCGGGCGGTCGGGTCGTCGACGACGCCCTGGCCCGGATCGTGGCCACCACCGCGACGTCCGTCATGGGCTCGTCGCTGACTGAGACCTACGTGGACAACGTCCTGGTCGGCTTCAACGACCTCTCCGACGGCATCGGGGAGGCGGCCGACGGCGCGGACCAGCTCGCCGACGGCGTCGACCAGACCGCCTCGGGTGCCGACGAGCTCGCCGACGGCGCCGGCCAGTACGCCGACGGCGTCGACCAGTTCGCCGTCGGGCTCGACGAGGCCGCCTCGGGCGGCTTCCAGCTCGCCGACGGTGCGCAGCAGTACGCCGCCGGCGTGTCCGAGGCCGCCTCCGGGACGGACGCGCTGGTCTCCGGTGCCGACCAGCTCGCCGACGGCGTGGGTCAGGCCGCCGACGGCGGTCAACAGCTCGCCACGGGCGCCCAGCAGTACGCGGCCGGTGTGGGCGAGGCCGCCGACGGCGCCGACGCGCTCGCCGACGGCGCGAACCAGGTCGCGGCCGGCGTGGCCGGGATCAGCGGTGGCATCCGCGAGAGCGCCGACGGGGCCGACGACCTCGCCGACGGCGGGTACGAGCTCGCCGACGGTGCCGACGAGGTCGCCGGCGGCGTGCAGCAGCTGGCCGACCAGGCCGGGCAGATCAACGAGCAGATCCCCCCGGAGGAGGACATCCAGGCGGGGATCGACGAGATCGCGGCGGGCTACGAGCAGAACGCGGCCGAGGTGACCGCGGCCCTGGACGAGGCCGCCGCCGCGCTCGGGTGCGAGTCCACGCCCGACAGCGCCGCCTGCGTCCAGCTCGAGGAGATCCGCGCCGCGCTGGCCAGCCTGTCCGGTGACGTCACCGGCGAGTTCGACGAGGTCACCAGCGCGCTGCTGGACGCCCGCGGGCAGGTCACGGAGCTCGCCGACGGCACGGCGCAGCTCGCCGCCGGCGCCGAGCAGGTCGCGACGGGTACCCGCGGCATCGCCGACGGCAACGCCGAGCTCGGCGACAGGCTCCGGGAGCTCGCCGCCGGCAACGACCAGGTCGCCGCCGGGGCCGACGGCGTCGCGTCCGGTGCGACGGACCTGGCCGGCGGCATCGACCAGCTCGACGCCGGCGCCAGCGAGCTCGCGACGGGCGTGTCCGGGTTCGCGGACGGCGTCGGGCAGCTCGACGCGGGCGCCACCGGTCTCGCGTCCGGCGTCGACCAGTTCGCCGCCGGGGTGGACCAGCTCGACGCCGGGGCCAGCGAGCTCGCGACGGGCGTGTCCGGGTTCGCGGACGGTGTCGGGCAGCTCGACGCCGGTGCCGGGGAGCTCGTGAGCGGCGCGGACGGGCTCGCCGACGGGTCCCAGGGTCTGGCCGACGGCGTCGACCAGCTCTCCGACGGTGCGACCGACCTGGCCGGCGGTCTGGACGAGGCGGCGTCGGGCATCCCGACCTACTCCGACAGCGAGCGCGAGAACCTCTCCGGCGTCGTCGCCGACCCGGTCGCCGCGCCCGGGGTGGACGACCTGTCCACCGGCGCGACCGGACCGCTGTTCGCCGTCGTCGCCCTGTGGCTCGGGGCGCTCGGCCTGCTGACGGTCTACCCGCCCGTGGCCGCCCGTGCCCTGGGTTCGACGCGCTCCTCGCTGCGGCTCACGCTGGGCGCACTGGCGGTCCCCGCCGCGATCGGCACGGGGACCGGTGCCGCCGTCGGCGCGATCCTGGCGGGCGTCGAGGGCCTGTCCCTGGGCGGCTGGCTCGGTGCGATCGTGGTCGGAGCGCTGGTGTCCGTGTGCTTCGTGGCCGCGCACCTCGGCTTCCTGGCCTGGCTGGGCAACGTCGGGCGCGGGATCAGCCTGCTGATGGCGGTGCTGCTCATCGGGACCGGCGTGGTGGCCACCGTGCCGGACGTGCTGGTCGCCGTGGCCGACTTCCTGCCGACCGGTGCGGCGCAGTCGGCGCTGTCCGCCGTCGTCCTGTCCGGCGTCGGTGGCCTGGCCGGTGCGATCACCGTGCTCGTCCTGTGGACGCTCGCGGGGATCGGGCTGGGCGTCGGGGCCGCGGCGCGGGCGCGCCGCACCCGGGTCGCGGCGCTGCTGCGTACCTGAMNRVRHNPWSVAAVALLPVLALGILLAALWNPVDRLDTVQAAIVNNDEPVEVDGQTVPLGRQLAAGLVGGAEDSDVNYDWTLTDTEHATDGLADGTYASVVTIPEGFSAAATSFGSEDPADAEQATIDISTPAGGRVVDDALARIVATTATSVMGSSLTETYVDNVLVGFNDLSDGIGEAADGADQLADGVDQTASGADELADGAGQYADGVDQFAVGLDEAASGGFQLADGAQQYAAGVSEAASGTDALVSGADQLADGVGQAADGGQQLATGAQQYAAGVGEAADGADALADGANQVAAGVAGISGGIRESADGADDLADGGYELADGADEVAGGVQQLADQAGQINEQIPPEEDIQAGIDEIAAGYEQNAAEVTAALDEAAAALGCESTPDSAACVQLEEIRAALASLSGDVTGEFDEVTSALLDARGQVTELADGTAQLAAGAEQVATGTRGIADGNAELGDRLRELAAGNDQVAAGADGVASGATDLAGGIDQLDAGASELATGVSGFADGVGQLDAGATGLASGVDQFAAGVDQLDAGASELATGVSGFADGVGQLDAGAGELVSGADGLADGSQGLADGVDQLSDGATDLAGGLDEAASGIPTYSDSERENLSGVVADPVAAPGVDDLSTGATGPLFAVVALWLGALGLLTVYPPVAARALGSTRSSLRLTLGALAVPAAIGTGTGAAVGAILAGVEGLSLGGWLGAIVVGALVSVCFVAAHLGFLAWLGNVGRGISLLMAVLLIGTGVVATVPDVLVAVADFLPTGAAQSALSAVVLSGVGGLAGAITVLVLWTLAGIGLGVGAAARARRTRVAALLRTNANANANANA
AK018_015542907hypothetical proteinGTGTCCTCCGTCCTCTACTCCCTCGGCCACTGGGCCGCCGGCGCCCGCCGCCTCGTGGTCGTCGCCTGGGTCGGCGTCCTCGTGGTGGTCGGTGGTGCCGGAGCTCTCGTCTACCAGGGCTTCGACAACTCGATCACCATCCCCGGGACGGAGTCCCAGCAGGCGCTCGACCAGCTCTCGGCGACGTTCCCCGAGGTCAGCGGCTCCTCCGCGCAGATCATCGTGGTCGCCCCCGAGGGCGGCACCATCGAGGACGACGACGTGCGCGACCCGGTCGAGGACGCCGCCGAGGACATCGAGGCGCTCGACGAGGTGCGCGTCGTGTCCACCCCCTACGACGAGATGCTGAGCGCCGCGGTCAGCGACGACGACCGCGCCACGATCCTGCAGGTCCAGCTCGACGGCGACGCCTTCTCCATCAGCGACGCCACCAAGGACGAGCTGCACGGCATCACCGACGAGCTCGCCGCGGCCCTGCCCGACGGCAGCCAGGCCTCGCTCGGCGGTGAGCTCTTCTCCACCGAGCTGCCCGCGCTGAGCATCGTCGAGGCGATCGGTGTGGTCGTGGCGCTGATCGTCCTGATGATCACGCTCGGTTCGTTCGTCGCCGCGGGGCTGCCGCTGGTGAACGCGCTGGTCGGCGTCGGCGTCTCGATGCTGCTGCTCCTGGCCGCCACCGTGTTCGGCCCCATCAACTCCACGACCCCGATGCTCGGGCTGATGCTCGGCCTCGCCGTCGGCATCGACTACGCGCTGTTCATCGTCTCGCGGCACCAGGAGCTGCTGCGCGAGGGTGTCGAGGTGCGCGAGTCCATGGCCCGCGCCACCGCGACGGCCGGGTCCGCCGTCGTCTTCGCCGGGCTGACCGTGATGATCGCCCTGGTGGGCCTCAGCGTCGCCGGCATCCCGTTCCTGTCGATCATGGGTGTCGCCGCGGCCGTGTCCGTGGGCCTCGCCGTCGTCGTCTCCCTGACGCTGCTGCCCGCGCTGCTCGCCATGGCCGGGGACCGGCTGCGGCCCCGGCCGAAGAAGGCCCGCCGCGGCAAGCGGTCCGGGCAGGCGCCCGCCGCGGACGCCACCGGGCACGAGAACCGGTTCTTCGCCGGGTGGGTCAAGGCCGTCACCAAGAAGCCGATCGTGACGATCGTGCTGGTCGTGGTCGCCCTCGGGGCCCTGGCGTTCCCGGCGACGAACCTGCGCCTCGCGCTGCCCGACGCCGGCTACCTGCCGGAGGACAACGAGGCCCGCCAGACGTACGACCTGGTCGGCGAGTACTTCGGCGACGGGTTCAACGGCCCCCTGATCGTCACCGGGTCCATCATCGAGTCCACCGACCCGCTCGGTCTCATGGACGACCTCGCCGCCGAGATCGAGGACCTGCCCGGCGTCGCGGACGTCCCCATGGCCACCCCGAACCAGACCGCCGACACGGGCATCATCCAGGTGATCCCCGAGGGCGCCCCGGACTCCGAGGCGACCAAGGCGCTCGTGGCCGAGATCCGGGACATGGAGGACTACTGGCTCAGCGAGTACGGCGTCGAGCTCGCCGTCACCGGCTTCACCGCCGTCGGCATCGACGTGTCCGACAAGCTCGGCGAGGCGCTGCTCCCGTTCGGGTTCGTCGTCGTCGGCCTGTCGCTGCTGCTGCTCATGATGGTGTTCCGCTCCATCTGGGTGCCCGTCAAAGCCACCGTCGGGTTCCTGCTGAGCGTCGGGGCGGCGTTCGGTGCCGTCACGCTCGTGTTCGAGCACGGGCTGTTCGCCGACGCGCTGCACGTGACCAAGCTCGGCCCCGTCATCAGCTTCATGCCCATCATCCTCATGGGCGTGCTGTTCGGCCTGGCCATGGACTACGAGGTCTTCCTCGTGTCCCGCATCCGCGAGGACTTCGTCCACAACGGCCGCCGCGCCCGCCGCGCGGTGCTCACCGGGTTCCAGGGCGCGGCCAAGGTCGTCACGGCCGCCGCCGTCATCATGTTCTCCGTGTTCGTGGCGTTCGTGCCCGAGGGCGACATGACGCTCAAACCCATCGCGCTGGGGCTCGCCGTCGGCGTGGGAGTCGACGCCTTCGTGGTGCGGATGGTGCTGGTGCCCGCGGTGCTCGCATTGCTCGGCGACCGGGCCTGGTGGATCCCGCGCTGGCTCGACCGCGCCCTGCCGACGTTCGACGTCGAGGGCGAGGGCATTGCCAAGGAGCTGCGGCTCGCGTCGTGGCCCGGTGAGCGCGCCGACGGCCGGGCCGACGCCGTCGTCGCCCACGAGGTCGAGGTCGCCGGTCCGCGCGGCCCGGGCCTCGGGGAGCCGCCGCTCGTCGGCCCCTTCTCGGTGCGCGTGGCCGACGGCGGCTCCCTCGCCGTGCACGGCGACGCCACCGCGCCCGTCAACACCCTGCTGCTGACCCTGGCGGGACGGGTGCACCCGGACGCCGGCGCGCTGAAGGTCGCCGGGTACGTGCTGCCCGAACGCGGCGGATCCGTCCGGGCCCGGGTCGCCGTCGTCGACGCCGTCACGGACCCCGCGGCCGACGCCGTGACCACCGCCGTGCGCGAGGGCGCCCGGATCGTCGTCGTCGACCGCACCGACGTCGTCGCCGACCGGACCGACCGGGAGGCCCTGGCCGAGGCGTTCGCCGCGGCGCACGCCGCCGGCGTCACCCTGCTGGTCGGCTCCACCGGCGTCGCGGTCACCGACCTGCTGCCCGACGGCAGCCCCGTGCTCGACGTCGGCGCCGGCTGGGGAGCGCCCGTCCACCTGGGTGGAGGCGAGGTGCCGCCCCCGCCGCCCGACGACGAGACCCACGCACCGCCGTCGCCCGCGGCGGACAGCGCCGACGGCACCGACAGCGCGGCGTCCGGAGACGAGTCCCGCGCCAACCCGAACACGACCCCCGAGGAGGTGCGGGCATGAMSSVLYSLGHWAAGARRLVVVAWVGVLVVVGGAGALVYQGFDNSITIPGTESQQALDQLSATFPEVSGSSAQIIVVAPEGGTIEDDDVRDPVEDAAEDIEALDEVRVVSTPYDEMLSAAVSDDDRATILQVQLDGDAFSISDATKDELHGITDELAAALPDGSQASLGGELFSTELPALSIVEAIGVVVALIVLMITLGSFVAAGLPLVNALVGVGVSMLLLLAATVFGPINSTTPMLGLMLGLAVGIDYALFIVSRHQELLREGVEVRESMARATATAGSAVVFAGLTVMIALVGLSVAGIPFLSIMGVAAAVSVGLAVVVSLTLLPALLAMAGDRLRPRPKKARRGKRSGQAPAADATGHENRFFAGWVKAVTKKPIVTIVLVVVALGALAFPATNLRLALPDAGYLPEDNEARQTYDLVGEYFGDGFNGPLIVTGSIIESTDPLGLMDDLAAEIEDLPGVADVPMATPNQTADTGIIQVIPEGAPDSEATKALVAEIRDMEDYWLSEYGVELAVTGFTAVGIDVSDKLGEALLPFGFVVVGLSLLLLMMVFRSIWVPVKATVGFLLSVGAAFGAVTLVFEHGLFADALHVTKLGPVISFMPIILMGVLFGLAMDYEVFLVSRIREDFVHNGRRARRAVLTGFQGAAKVVTAAAVIMFSVFVAFVPEGDMTLKPIALGLAVGVGVDAFVVRMVLVPAVLALLGDRAWWIPRWLDRALPTFDVEGEGIAKELRLASWPGERADGRADAVVAHEVEVAGPRGPGLGEPPLVGPFSVRVADGGSLAVHGDATAPVNTLLLTLAGRVHPDAGALKVAGYVLPERGGSVRARVAVVDAVTDPAADAVTTAVREGARIVVVDRTDVVADRTDREALAEAFAAAHAAGVTLLVGSTGVAVTDLLPDGSPVLDVGAGWGAPVHLGGGEVPPPPPDDETHAPPSPAADSADGTDSAASGDESRANPNTTPEEVRAPGPT0028595_2DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-TOXINES_NEUTRALIZATION_YDF_SYSTEM,PGPT0028595-ydfJ-K11625NANA
AK018_01555648hypothetical proteinGTGACCGCTGCACTGCCGGTGCAGACCACCAGCGTGCGCTCGTCCCGGCGCGAGCGCACCCGCGAACGGCTGCTCGACGCCGCCTTCGAGGTGTTCGCCGAGCACGGCATCGCCGGCGGGTCGATCGAGGCCGTCTGCGAGGCCGCCGGCTTCACCCGAGGCGCGTTCTACTCGAACTTCGCCTCCAAGGAGGAGCTCTTCCACGCGATCGTCGACCGCGAGGCCCGGCGCCACCTCGACGCGCTCGAGCGGGCCGCGGCGGAGATCGACACCTCGGCCGTCGCCACGGCCGAGGGCTTCCGCGAGGCCGTCACCGAGCTGGTCGCCGCCGTCGGACTCGACGAGGCGGGCCACCGGGCGTGGACCCTGATGAACGCCGAGTTCGAGCTGCTCGCCCTGCGCGAGCCCGAGGTCGCGACCCGCTACGTGGCCGAGCAGCAGAGACTGCGCGCCGAGGTGATGCGGGCGATCGAGGCGCTGCTCGAACGGTTCGGCCTGACCTTCGCCGTCGACACGGCCACCGCCGTCGACCTGCTCATGGACTCCGCCGAGTCGAGCACCCGTGCCGCCATGCTGGGCGCCCCGGCCGAGCAGCACCCCGTCGCCCGGCTGCAGGCCGTCGTCGACCTGCTCGTCCAGCCCTGCTGAMTAALPVQTTSVRSSRRERTRERLLDAAFEVFAEHGIAGGSIEAVCEAAGFTRGAFYSNFASKEELFHAIVDREARRHLDALERAAAEIDTSAVATAEGFREAVTELVAAVGLDEAGHRAWTLMNAEFELLALREPEVATRYVAEQQRLRAEVMRAIEALLERFGLTFAVDTATAVDLLMDSAESSTRAAMLGAPAEQHPVARLQAVVDLLVQPCNANANANANA
AK018_01556885dasC_1COG0395Diacetylchitobiose uptake system permease protein DasCATGACCGCCACCGCACCCCCTCGTGACGCCGGCGCGCCGGCGGCCCGCGCCCCGCGCCGCGACGCCGCGACGCGTCGCCGCTCCACGGGCATGCTGCTCACCACGCTGACCTGGATCCTCGCCGTCGGGTTCTTCTTCCCGGTGGCCTGGCTCGCGATGACCGCCTTCAAGCAAGAGGCCGAGGCGCAGTCCGACCCGCCGACCTTCTTCTTCACCCCGACGCTGGACCAGTTCCGGGCCGTCGTGGAGGGCGGTTCGGGTACCTACGTGCTCAACTCCGTCATCGCCACCGGGGTGTCGACCCTCCTGGTGCTGCTGCTCGGTATCCCCGCGGCGTACGCGCTGTCGATCCGTCCGGTCGAGAAGGTCAGCGACGTGCTGTTCTTCTTCATCTCCACCAAGATGCTGCCGGTCGTGGCGGTGATCGTGCCGATCTACGTGATCGCCGGCGAGATCCACGCCCTGGACAACATCTGGACCCTGGTCGTGCTCTACACCGCCATGAACCTGCCGCTGGCCGTGTGGATGATGCGGTCGTTCTTCCAGGAGGTTCCCGCCGAGGTGCTCGAGGCCGCCGCGATGGACGGCGCGGGGCTGCTCAAGACGCTGCGTTCGGTGCTCATGCCGATGGTGGCGCCGGGCATCGCCGCGACGGCGCTGATCTGCGTGATCTTCGCGTGGAACGAGTTCTTCTTCGCCCTGAACCTCACGGCGTCGCGGGCGGCGACCGTCCCGCTGTTCATCGTCTCGACGATGACCAGCGAGGGCCTGTTCCTGGCGCGGCTGTGCGCTGCAGCCCTGCTGGCCTCCCTGCCGGTGATCCTGGCGGGCTGGATCGCGCAGAAGCAGCTGGTCCGTGGGCTGTCGATGGGAGCGATCAAGTAGMTATAPPRDAGAPAARAPRRDAATRRRSTGMLLTTLTWILAVGFFFPVAWLAMTAFKQEAEAQSDPPTFFFTPTLDQFRAVVEGGSGTYVLNSVIATGVSTLLVLLLGIPAAYALSIRPVEKVSDVLFFFISTKMLPVVAVIVPIYVIAGEIHALDNIWTLVVLYTAMNLPLAVWMMRSFFQEVPAEVLEAAAMDGAGLLKTLRSVLMPMVAPGIAATALICVIFAWNEFFFALNLTASRAATVPLFIVSTMTSEGLFLARLCAAALLASLPVILAGWIAQKQLVRGLSMGAIKPGPT0016390_249DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016390-smoG|mtlG-K10229NANA
AK018_01557954sugACOG1175Trehalose transport system permease protein SugAATGACGACGACGACCGTGGGCCACGCGCAGAGCCTGCGCCGCGCCCAGAGCAGCCGGGCCGCGAAGGACCGGCACACGCTGCCCCGTGCCGAGCGCTGGCGCCGTCGTGGCCCCCTGCTGCCGGCCCTGATCTTCACGATCGTGGTCACCCAGATCCCGTTCCTCGTGACGATCTGGTACTCGTTGCGCTCGCGGAACCTCCTCAACCCGGGCAGCGACCAGTTCGTGGGCCTGGCGAACTACGGCGACATCGTCCTGGACTCCACGTTCCGTCAGGCCGCCGTGAACTCGGTGGTCATCACGCTCGGGTGCGTCGTCGTGGCGATGGCGCTCGGCATCGGGCTCGCGCTGCTGCTCGACCGGTCGTTCCCCGGCCGCAGCGTGGCACGGACGCTGCTCATCACGCCCTTCCTGCTGATGCCCGTGGCGTCGTCGGTGCTCTGGTCGATGGCGATCCTCAACCCGACGTTCGGGCTGTTCAACTGGACGATCGGGCTGGTGGGCATCGACCCGGTGGACTGGACGTCGACGTTCCCCGTCCTGTCGATCGTCATGGCGCTGGTGTGGCAGTGGACGCCCTTCATGATGCTGCTGGTCCTCGCCGGGCTGCAGGCGCAGCCCAAGGACGTGCTCGAGGCGGCGCAGATGGACGGCGCAGGGCCGGGCCGGACCTTCGTGTCCATCACGCTGCCGCAGTTGCGGCGCTACATCGAGCTCGGCCTGCTGCTGGGGATCATCTACGTGGTCAACACGTTCGACCAGATCTACCTCATGACCGCCGGCGGGCCCGGGACGGCCAGCGCCAACCTGCCCTTCTACATCTACCAGCGCGCCTTCCTCGGGTTCGACGTGGGGCAGGCGGCCGCGATGGGCGTGGTCGTCGTCATCGCCACGATCATCGTCGCCTCCGCCGCGCTGCGCCTCATCTTCCGCAGCTTCGACGTCAAGGAGTGAMTTTTVGHAQSLRRAQSSRAAKDRHTLPRAERWRRRGPLLPALIFTIVVTQIPFLVTIWYSLRSRNLLNPGSDQFVGLANYGDIVLDSTFRQAAVNSVVITLGCVVVAMALGIGLALLLDRSFPGRSVARTLLITPFLLMPVASSVLWSMAILNPTFGLFNWTIGLVGIDPVDWTSTFPVLSIVMALVWQWTPFMMLLVLAGLQAQPKDVLEAAQMDGAGPGRTFVSITLPQLRRYIELGLLLGIIYVVNTFDQIYLMTAGGPGTASANLPFYIYQRAFLGFDVGQAAAMGVVVVIATIIVASAALRLIFRSFDVKEPGPT0016385_197DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016385-smoF|mtlF-K10228NANA
AK018_015581389hypothetical proteinATGTTCGAGCCGCATCGCGTGCGACGGCGACCGAGGAGCGGTGGCGGACGGTTCCGCGCCGCCGCCGGGACCGTCGCGCTGACCCTGGGCCTCGGGGCCTGTGCCGGGGCCGGGGCCATCGGCGGCGACGGCGAGCAGATCGTCGTCGCCATCGTCTCCAACCCCCAGATGCAGGACGCGATCTCCCTGCAGGACCACTTCCGTGCCGAGCACCCCGGCGTCGACGTCCGGTTCGTCAGCCTCCCGGAGAACGAGGCCCGCGCCAAGATCACCGCCTCCGTCGCCACCGGCGGCGGCGAGTTCGACGTGGTCATGATCTCCAACTACGAGACGCCCATGTGGGCGGAGAACGGCTGGATCGAGAACCTCCAGCCGTACGCTGACGCCACCGACGGCTACGCGCCCGACGACTTCATCCCGTCGGTCCGCGAGGCGCTCTCGGTGGACGGGGACCTCTACTCGGTGCCGTTCTACGGCGAGTCCTCGTTCCTCGCCTACCGCGCGGACCTCTTCGAGGCCGAGGGGCTCGAGATGCCGGAGCGGCCCACGTGGAGCGACGTGCGCGAGCTCGCCGCCGAGCTCGACGACCCCGCGGACGACTTCTCCGGCGTGTGCCTGCGCGGCCTCGCCGGCTGGGGCGAGGTCATGGCGCCGTTGGACACGGTCATCAACACCCACGGCGGCAGCTGGTTCGACGAGGACTGGAACGCGACGCTCGACAGCCCGGAGGTCCGGCAGGCCGTGGAGACCTACGTCGACACCGTGCAGGAGTACGGCCAGCCCGGCGCGGCGACCTCGGGGTTCGGGGACTGCCTGACCCGGTTCTCCCAGGGCAACGCGGCCATGTGGTACGACGCGACCTCGATGGTCTCCAGCGTCGAGGACCCTGCCTCGTCCACCGTCGCCGGTGACGTCGGGTACGCGCCGGCGCCGGTGGCCGAGACCGACGCCGCGGGGTGGCTGTACTCGTGGTCGCTCGCGATCCCCTCGACCAGCGAGCACAAGGACGCGGCGTGGGACTTCGTCTCCTGGATGACGGACCGCGACTACATCCGCCTCGTCGGCGAGGAGCTGTCCTGGGAGCGGGTCCCACCGGGCAGCCGCCTCTCCACCTACGAGATCCCCGAGTACGCGGAGGTCTCCGAGGCCTACGCGGAGGCCACGCTCGCCTCGATGGGGGAGGCCACCCAGGACAACACGATGGTCCGGCCGGTGCCGTACCCCGGGATCCAGTTCGTCGGCATCCCCGAATTCCAGGATCTCGGCACGCGCGTCGGTCAGCAGATGTCGGCGGCCATCGCGGGGCAGCAGAGCGTCGCCGAGGCGCTCGAGCAGTCGCAGCGCTACGCCGAGACCGTGGCCGAGACCTACCGCGACGGAGGTTCGTGAMFEPHRVRRRPRSGGGRFRAAAGTVALTLGLGACAGAGAIGGDGEQIVVAIVSNPQMQDAISLQDHFRAEHPGVDVRFVSLPENEARAKITASVATGGGEFDVVMISNYETPMWAENGWIENLQPYADATDGYAPDDFIPSVREALSVDGDLYSVPFYGESSFLAYRADLFEAEGLEMPERPTWSDVRELAAELDDPADDFSGVCLRGLAGWGEVMAPLDTVINTHGGSWFDEDWNATLDSPEVRQAVETYVDTVQEYGQPGAATSGFGDCLTRFSQGNAAMWYDATSMVSSVEDPASSTVAGDVGYAPAPVAETDAAGWLYSWSLAIPSTSEHKDAAWDFVSWMTDRDYIRLVGEELSWERVPPGSRLSTYEIPEYAEVSEAYAEATLASMGEATQDNTMVRPVPYPGIQFVGIPEFQDLGTRVGQQMSAAIAGQQSVAEALEQSQRYAETVAETYRDGGSPGPT0016380_23DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016380-smoE|mtlE-K10227NANA
AK018_01559951deoR_1COG2390Deoxyribonucleoside regulatorGTGAACGACGCCGCGCACGCACGCCTCCTCGTCGAGGTGAGCACCGACTACTACCTGGACAACCTGTCCAAGGTCGAGATCGCCAAGAACCGCGAGATCTCCCGCTTCCAGGTCGCCCGCCTGCTCACCGAGGCCCGGGAGGCGGGCGTCGTCCGCATCGAGATCGCCGCCCCCGCGCACCTCGACGCCGGACGGGCCCGGGCGCTCGCCGAGGAGCTGGGCGTCGAGGAGGTCGTCATCGTGCCGCGCGGCGCGGACCGCGACACGACCCGCGAGGGGCTCGCCCGCGAGCTGGCGCGCGTCACCGCGGCCCGCGTGAGAGCCGGCTCGACCGTGGGCGTGTCGTGGTCCCGCACCATCGAGACGGCCGTCCGCTTCCTCGGCACCCTCCCCCCCTGCGACGTGGTCCAGCTCGTCGGCGCCCTGCCCGTCGACGGCAGCGGCAACTCGCTCGAGCTCATCCAGCGCTTCCGGGGCATGGACGGCGTCCGGACCTGGCCCGTGTGGTCGCCGCTGCTCGTGGGCGACCCGACCACCGCCGCCGGCATGCGCCAGCAGCCGGAGATCGCCGCTGCCCTGGACCGTGCCGACGCTCTCGACCTCGCCGTCGTCGCCGTCGGCGCCTGGAACGCGACAGGATCGACGGTCTACCCCCAGGTCACGGCCGCCGAGCGGGAGGCCGCCGCTGCGGGCGGCACGGTGGCCGAGTGCTCCGGACGCCTCTTCGACGCCGCCGGACACCCGGTGCGGACCCCGCTGGACGACCGCGTCGTGGGCGTCACGCTCGACCAGCTCGTCCGCACTCAGGACGTCGTCGCGATCGGCTACGGCGCGGAGGCAGCCGTCGGCCTCCGGGCCGCCGCGGTCGGCGACATCGCGACCGTGCTCGTCATGGACGACGGCGCAGCGGTCGAGCTGGAACGGCTCACCGCCGCGCCGCGACCCGCCTGAMNDAAHARLLVEVSTDYYLDNLSKVEIAKNREISRFQVARLLTEAREAGVVRIEIAAPAHLDAGRARALAEELGVEEVVIVPRGADRDTTREGLARELARVTAARVRAGSTVGVSWSRTIETAVRFLGTLPPCDVVQLVGALPVDGSGNSLELIQRFRGMDGVRTWPVWSPLLVGDPTTAAGMRQQPEIAAALDRADALDLAVVAVGAWNATGSTVYPQVTAAEREAAAAGGTVAECSGRLFDAAGHPVRTPLDDRVVGVTLDQLVRTQDVVAIGYGAEAAVGLRAAAVGDIATVLVMDDGAAVELERLTAAPRPANANANANANA
AK018_015601497mtlKCOG0246Mannitol 2-dehydrogenaseATGACCGCACTCACCGACGAGACCGTGGGCCGCCTGCCGGGCGCCGCCGGCGAACCGCTGGCCGTCCCCGGCTACGACCGCAGCAGGTTGCGGGCGGGGATCGTGCACCTCGGGGTGGGCGGGTTCCACCGCGCCCACCAGGCGATGTACCTCGACGCGCTGATGGCGCGGGGCGAAGCCCTGGACTGGGGGATCTGCGGTGTGGGCGTGCTGCCGCACGACGCGCGGATGCGCGACGCGCTCATGGCGCAGGACGGGTTGTACACCCTGGTCCTGAAGCACCCGGACGGGACGCTCGACGGTCGCGTCGTCGGCTCGGTCGTGGACTTCCTGCACGCCCCCGAGGACCCGGAGGCGGTCGTCGAGAAGATCGCGTCGCCCGAGATCCGCATCGTCTCCCTGACCGTCACCGAGGGCGGCTACAACGTGCACCCCGTGACCGGGGAGTTCGACGACTCCGACCCGGCCGTGCAGGCCGACCTCGTCGACGGCGCCGTCCCCGCGACGTCGTTCGGCCTGGTCACCGAGGCGCTGCGGCGCCGGCGCGACCGGGGGGTGGGCCCGCTGACCGTGATGAGCTGCGACAACATCCAGGGCAACGGCGACGTCGCCCGCCGGATGTTCACCGCGTTCGCCCGGCTGAAGGACCCCGCGCTGGCCGCCTGGATCACGGAGCACGTCCCGTTCCCGAACTCGATGGTCGACCGCATCACCCCGGTCACCACGGACGCGGACCGCGCCCTGGTCGCGGAACGGTTCGGGATCGACGACGCCTGGCCCGTCGTCGCCGAACCGTTCTGCCAGTGGGTCCTCGAGGACCGCTTCGCCGCGGGCCGGCCCCCGCTCGAGCAGGTCGGCGTCCAGGTCGTCGACGACGTCGAGCCCTACGAGCTCATGAAGCTCCGCCTGCTCAACGCCAGCCACCAGGCGCTCTGCTACCTCGGTTACCTCAGCGGGTACCGGTACGCGCACGAGGTCTGCCAGGACGAGGTGTTCGTGCGGTTCATCCTCGACTACATGGAGCGCGAGGCGACGCCCACGCTGCAGGAGGTCCCCGGCATCGACCTCGACGACTACCGCCGCACGCTCGTCGAGCGGTTCGCCAACCCCGCCGTCCGCGACACCCTCGCCCGGCTGTGCGCCGAGTCCTCGGACCGCATCCCGAAGTGGCTCCTGCCGGTGGTGCGCCAGAACCTGGCCGCCGGGGGCGAGGTCCACCGGGCGGCGGCCGTCGTCGCCGCGTGGGCGCGCTACGACGAGGGGGTCGACGAGCAGGGCGCGCCGATCGAGATCGTCGACCGGCTGGCCGGGCGGCTGCACGCCGCCGCCTCCTCCCAGCACGACGACCCCCTCGCGTTCCTGCGCGACCGCGAGCTGTTCGGCGACCTCGTGGACGACCGGCGGTTCACCGAGCACTACCTCGCGGCCCTGGCGGCGTTGCACGACGCCGGCGCGCACCGGCTGGTCGAGCGCCTGGCGGCCGGAGAGGTGCTCTGAMTALTDETVGRLPGAAGEPLAVPGYDRSRLRAGIVHLGVGGFHRAHQAMYLDALMARGEALDWGICGVGVLPHDARMRDALMAQDGLYTLVLKHPDGTLDGRVVGSVVDFLHAPEDPEAVVEKIASPEIRIVSLTVTEGGYNVHPVTGEFDDSDPAVQADLVDGAVPATSFGLVTEALRRRRDRGVGPLTVMSCDNIQGNGDVARRMFTAFARLKDPALAAWITEHVPFPNSMVDRITPVTTDADRALVAERFGIDDAWPVVAEPFCQWVLEDRFAAGRPPLEQVGVQVVDDVEPYELMKLRLLNASHQALCYLGYLSGYRYAHEVCQDEVFVRFILDYMEREATPTLQEVPGIDLDDYRRTLVERFANPAVRDTLARLCAESSDRIPKWLLPVVRQNLAAGGEVHRAAAVVAAWARYDEGVDEQGAPIEIVDRLAGRLHAAASSQHDDPLAFLRDRELFGDLVDDRRFTEHYLAALAALHDAGAHRLVERLAAGEVLPGPT0018400_204DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_MANNITOL_DEGRADATION,PGPT0018400-mtlK-K00045NANA
AK018_015612127dpp5_2COG1506Dipeptidyl-peptidase 5ATGACCCAGGATTCCTCCGCGCCCACCCCGCGCACGCCCTTCGACGACCTCGACGACTACATCGGGCTGAGCCGGCTCGGCGGGCTCGCGCTGAGCGGTGACGGCCGCCGCCTCGTGACGACCGTGCAGTCCCTCGATGCCGAGCGGACGGGTTACGTCTCGGCGCTGTGGGAGGTGGACCCGGCGGGCGAGCTCCCGGCCCGCCGCCTCACGCGCAGCGCGAAGGGCGAGGCCGCTGCCGTGTTCACCGCGAGCGGCGACCTGCTGTTCACCTCGGCCCGCCCGGACCCGGAGTCGTCCGGCAAGGACGAGCCGAAGGCGGCCCTGTGGTCGCTGCCGGCCGTCGGCGGGGAGGCCCGGGTGCTGGCGACGGCACCCGGCGGGCTGGGCGGCATCCTCGCCGCCCGGGACGCCGACACCGTCTCGGTCGCGGCGTCGGTGCTGCCGTCCGCGGACGGCCTGGAGGCGGACGCCGCGCTGCGCGAGACCCGTGATGACCGCAAGGTGAACGCCATCTGGCACACCGGCTACCCGGTGCGGCACTGGGACCACGACCTGGGTCCGGACGCGCCGCGCCGGTTCGTGCTGGGCGCGGACGAGGTGGCCGAGGGCGAGCGGGCCGACCTGCACCAGCTCACCGGTCCCGGCCCGCAGCTCGTGGAGCACGGCGCGGCGCTCTCCCCGGACGGGACCACGCTGGTCACGACGTGGGCGGTCGCGGACCCGGGGGCCGCGCGCCGCGAGATCCTCGTGGCGATCGACACCGCCACCGGCGAGCGCCGCACCCTGGTCGACGACCCGGACGCCGAGATCGGCTCCCCGAAGGTCTCCCCGGACGGCCGGTGGGTCGCCTACGTCACCTCGACGATCACCACGCCGACCGACCCGCCCGTGGTGCGCGCCGGCCTCGTGGCCCTCGACGGGTCGGGCGACCCCGAGGTGCTGGCCGACGACTGGGACCGCTGGCCGGGCTCCCTGACCTGGCTGCCGGCGTCGGACGGGCTGCTCGTCACGGCGGACGACGACGGTCGCGGCCCGGTCTTCCTGCTCACGTTCGACGGCGGTCCCGGCGAGGGGCCGGTGACCGTGGAGCGGGTGACCGCCGACGACGCCGTGTTCACGGACGTCTGCGTGGCGCCCGACGCCTCGGCGGTGTTCGCGCTGCGCAGCTCCTACGCGGCTCCGGCCGAACCCGTGCGGGTCGACCTGGCGGCGTTCGTCGCGTCCGGGCCGGCGGGGGAGCGCGAGCCGGTGGCCGCCGTCGTGCTGCCGTCGCCGGCCGCGGCTCCCGAGCTGCCGGGCTCGCTGACCGAGGTGGAGACCGTCGCCGACGACGGGGCCCGTGTGCGGGCCTGGCTGGCGCTGCCCGCCGGTGCCTCGCCGTCGGACCCGGCGCCGCTGCTGCTGTGGATCCACGGCGGGCCGCTCGGCTCGTGGAACGCGTGGTCGTGGCGGTGGAACCCGTGGCTGATGGTGGCCCGCGGGTACGCCGTGCTGCTGCCGGACCCGGCGCTGTCGACCGGGTACGGGCAGGAGTTCGTCCGCCGCGGGTGGGGTGCGTGGGGAGACGCGCCGTTCACCGACCTCATGGCGATCACGGACGCCGCCGAGGCACGCGACGATGTCGACGCCTCGCGCACGGCCGCGATGGGCGGCTCGTTCGGCGGGTACATGGCCAACTGGGTCGCCGGGCACACCGACCGGTTCCGCGCGATCGTCACGCACGCGTCGCTGTGGGCGCTGGACGGGTTCGGCCCCACCACGGACCACGCCTACTACTGGGGCCGCGAGATGACCCCGGAGATGAACGAGGCGCACAGCCCGCACCGGTTCGTGGGGGAGATCCGCACCCCGATGCTGGTGATCCACGGCGACAAGGACTACCGGGTGCCGATCGGCGAGGGCCTGCGGCTGTGGCGCGAGCTGCTGGCCGACTCGGGGCTGCCGGCCGCCGACGACGGCACGACGGTGCACCGGTTCCTGTACTTCCCCGACGAGAACCACTGGATCCTGACCCCGCAGCACGCCAAGGTCTGGTACGCGGGGGTGCTGGCGTTCCTGGCCGAGCACGTCCTCGAGGTGCCGGCCGGCGAGGGCGACCGGGTGCTGCCCGACGTGCTGGGCTGAMTQDSSAPTPRTPFDDLDDYIGLSRLGGLALSGDGRRLVTTVQSLDAERTGYVSALWEVDPAGELPARRLTRSAKGEAAAVFTASGDLLFTSARPDPESSGKDEPKAALWSLPAVGGEARVLATAPGGLGGILAARDADTVSVAASVLPSADGLEADAALRETRDDRKVNAIWHTGYPVRHWDHDLGPDAPRRFVLGADEVAEGERADLHQLTGPGPQLVEHGAALSPDGTTLVTTWAVADPGAARREILVAIDTATGERRTLVDDPDAEIGSPKVSPDGRWVAYVTSTITTPTDPPVVRAGLVALDGSGDPEVLADDWDRWPGSLTWLPASDGLLVTADDDGRGPVFLLTFDGGPGEGPVTVERVTADDAVFTDVCVAPDASAVFALRSSYAAPAEPVRVDLAAFVASGPAGEREPVAAVVLPSPAAAPELPGSLTEVETVADDGARVRAWLALPAGASPSDPAPLLLWIHGGPLGSWNAWSWRWNPWLMVARGYAVLLPDPALSTGYGQEFVRRGWGAWGDAPFTDLMAITDAAEARDDVDASRTAAMGGSFGGYMANWVAGHTDRFRAIVTHASLWALDGFGPTTDHAYYWGREMTPEMNEAHSPHRFVGEIRTPMLVIHGDKDYRVPIGEGLRLWRELLADSGLPAADDGTTVHRFLYFPDENHWILTPQHAKVWYAGVLAFLAEHVLEVPAGEGDRVLPDVLGNANANANANA
AK018_015621164soxA_1Monomeric sarcosine oxidaseGTGAACCGCGACACCGCTCTGCCGCCCCTGCCCGCCAAGGTCGATCTGGTGGTCGTGGGCGCCGGGGCGGTGGGGCTCGCGCACGCCGTCGAGGCGAACGCCCGCGGCCTGTCCGTGCTCGTCGTCGACGCCGACACCCGGCCCGCCGGCGGCACCGCCCGCCGGGGCGGGCACATCGCGGTCACCACCCAGGACTCGACCGCCCTGGCCTGCGCGCTGGCCGCCCGCGAACGCTGGCTCAAGCTGGGCCGCGAGGCGGGGTTCGGGGTGCGCGAGTCCGGGGCCGTCGTCGTCGCGCGGCACGCCGACGAGCTCGCCGTCCTGGACGACCTGGTCGCGGCGCGCGCCGGCGACGCCGAGCTGCTCGACGCCCGCGGCGTGCGGGACCGCACCGGGACCACCGACACCGTCGGCGGGGCGCTGCTGCCGCTGGACCTGCGGCTGCACCCGGTGTCCGCGCTGGTCGGCGTCGCGGACTGGCTCGACGGCCGCCCCCAGGCGTCCGTGGCGTGGCAGGCGACCGCCCAGACCTTCGACGCCGGCAGCGGGTGCACCCTGGTGCGCACCACCCGGGGCGAGGTCGTGGCCAAGCGGGTGGTGGTCGCCGTCGGGCACCACGTCGGCCGCCTGTTCTGGGACGTCGGGTCGCGGCTGGTGCCGGTGGACCGGCAGCTGCTGCGCGTCGCCGCCCCGGTGGACGACGGCGGGCATCACGGGCCCGACGGCCCGGTGCTCGTGGGACCGGGCACGCTGCTGCGCGACGACGCGTTCGCGCACTCGCGCGCCCTGGGTGACGTCCGCGAGCGCCTGCGCGGCACCCGACCGGACCTGCTCGCCGCCGACGTGCACGTGACCCTGGTGTCCCAGCCGGACGGCTCGCTGGTGCTGGGTGACGGTCGGGCGCCGGCGGACGAGCCGGGCCGGTCGGAGGCGGTGGACGGGCTCCTGCTCCAGGAGGCCGCGGGTCTGCTGGGTGCCGGCGACCTGGAGGTGCTGGGCCGCTGGACGGTCCCGGAGGTGGTGCGGACCCCGGGTCCGGGTCCGCGGGAGCCGTTCCTGGTGACGGACCCGCTGCCGGGGGTGCGGACGGTGACGGTGGCGGACGGCCTGGCCACGACGACGGCGCTCGGCCTGGCGCCGCGGGTGCTCGACGAGCTGTTCTGAMNRDTALPPLPAKVDLVVVGAGAVGLAHAVEANARGLSVLVVDADTRPAGGTARRGGHIAVTTQDSTALACALAARERWLKLGREAGFGVRESGAVVVARHADELAVLDDLVAARAGDAELLDARGVRDRTGTTDTVGGALLPLDLRLHPVSALVGVADWLDGRPQASVAWQATAQTFDAGSGCTLVRTTRGEVVAKRVVVAVGHHVGRLFWDVGSRLVPVDRQLLRVAAPVDDGGHHGPDGPVLVGPGTLLRDDAFAHSRALGDVRERLRGTRPDLLAADVHVTLVSQPDGSLVLGDGRAPADEPGRSEAVDGLLLQEAAGLLGAGDLEVLGRWTVPEVVRTPGPGPREPFLVTDPLPGVRTVTVADGLATTTALGLAPRVLDELFPGPT0020390_135DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020390-lhpB2-K21061NANA
AK018_01563297hypothetical proteinATGTCGTTCCAGGCCTACCTCGACGCCGTCGAGAAGAAGACGGGCAGGACCCCGCGAGCGCTGCTCGAGGAGGCGACGGCCCACGGCTTCGGACCGGGGACCAGGGCGGCGCCGATCCTCGAGTGGCTGCAGGCCGACTACGGTCTCGGCCGCGGGCACGGCATGGCGATGGTGCACGTCATCACCAAGGGCCCGCAGATCGACGCCAAGCACGTCGGCAGCACGGGCACGCACCGGGACGCGTCGGACACCCTGTGGCTCGACGGCGCCGCGACCCGGCCCGCACCGGCGGGCTGAMSFQAYLDAVEKKTGRTPRALLEEATAHGFGPGTRAAPILEWLQADYGLGRGHGMAMVHVITKGPQIDAKHVGSTGTHRDASDTLWLDGAATRPAPAGNANANANANA
AK018_015642115hypothetical proteinGTGGACGTGACCGCGCCCGCTCGTCCGACGACCTCCCGCGCCGCGGCGACCGCACGTCGCCCCTGGTGGCTGGTCGCCGCCGGACCGGGCGCCGTCGTCGTCGCCGTGCTGGCGCTGCTCCTGGCGGGCACGTACTCCGACGCGTTCGCCCCGCTGGGCACGTTCTCCGACCCGGGCGCGCTGGTGCGCTGGGGGCTCCCGGTCAGCACCGTGCTGGCGGAGGTGAGCCTGTCGGTGACGTTCGGCGGGCTGTTCGCGGTCTCCTTCTGGCTGCCGCCGGGCCGGCAGCGCGACCGGGTGCTGTTCGTGGCGGGCTGGGCGTCGAGCGCCTGGGCGGTCGCCACGGTGGTCCAGCTCGTCCTCAACTACTCCTACGTCTCCGCGATCGCGCCGAGCGCCAGCAACTTCGGCCAGGGGCTGTGGCAGTTCGTCCAGGACGTCGAGCTGGGGCAGATCAGCGTGTGGACGATCGCCCTGGCGGCGGTGACCTCGGCGTTGGCGCTGGGCGTGCGCGGGCCGGTGGGCGCCCTGTGGACGGCGCTGCTGCCGTTCGCGGCACTGGCCCTGCAGTCCACGACCGGGCACGCGGCCGGTGCCGTGAACCACGACCTGGCCGTCGGTGCGATGCTGCTGCACATCGGGCCGGCCGCCCTGTGGGTCGGCGGGCTGGCGGCCCTGCTCGTCGTCGTGCTCACGCGGTCCGACGGCGGCACGGGCGCGGGCAGCGGCGGTGCACGCGGGCGAGCAACCGCCTCGGACGGGCGGGAGGTCGCGGCGACGGCGGTGGCCCGCTTCTCCCCGGTGGCCGCCTGGTGCTTCGCCCTGGTGGGGATCTCCGGCGTGCTCAGCGCGCTGGTCCGGGTGGCGCACCTCGACGACCTGTTCACCCGGTACGGCGTGCTGCTGCAGGTCAAGATGCTGCTGCTGCTGGTGCTCGGCGCGCTGGGCTGGGCGCACCGCCGGTGGATCGTGGGCCGGCTGGCCCGCGGCGCCGAGCCGGTGCGGCGGCTGTTCTGGCAGCTCCTCGCGGTCGAGGTGCTGGTCATCGGTGCGGTCTCGGGCGTCGCGGTGGGTCTCGGCTCGACCGCGCCGCCCGTCCCGGACGAGGTCCCGGTGGACGCCTCGCCCGCCTACCAGCTCACCGGCTACCCGCTGCCGCCCGAGAACACCCTGGACCGCTACTTCACCGAGTGGGCGTTCGACCCCCTGTTCACGGTCGCCTGCCTGGCCGGCATCGGAGTCTACGTGGCCTGGGTGCTGCGGCTGCGCCGGCGGGGGGACCGGTGGCCGGCGGGGCGCACGATCTCCTGGGTCGCCGGGCTGCTGGTCATGCTGTGGGTGACCAACGGCGGGCCCGCGGTGTACGGCCACGTGGTCTTCTCGGGGCACATGGTCCAGCACATGATCCTGGCCATGGTGATCCCGCTGCTCCTGGTCCTCGCGGCACCGGTGACGCTGCTCCTGCGCGCCGTGCCGGCCCGGAAGGACGGGTCGCGGGGACCGCGCGAGTGGGTGCTCGCGCTGGTGCACTCGCGCGTCGGGTCGTTCGTGGCCCGGCCGGTCGTGGCCGCCGTGATCTTCGCCGGCGGCATGATCGCCTTCTACTTCACGCCCGTGTTCGAGTGGGCGCTGAGCAACCACGCCGGCCACGTGTGGATGACGCTGCACTTCACGCTGGCGGGCTACCTGTTCGCCAACGCGCTCATCGGCATCGACCCCGGCCCGCAGCGCCCCCCGTACCCGCAGCGGCTGCTGTTGCTCTTCGGGACCATGGTGTTCCACGCGTTCTTCGGCGTGGTGCTCACCACGGGCACCTCCCTGCTGGTGGCGGACTGGTTCGGGAACATGGGCCGGCCGTGGGGGTTGTCCGCCATCGACGACCAGCAGCTCGGCGGGGCGATCGCCTGGGGCATCGGCGAGCTGCCCACGCTGGTGCTCGCCGTCGTCGTCGGCGTGCAGTGGTCGCGGTCCGACGAGCGCGAGGCGCGCCGCCGCGACCGCAAGGCCGAGCGGGACGACGACGCCGAGCTGCGCGCGTACAACGCGATGCTCGCCGACATGGCCGAGCGCGACGGATCGACACCCGGGCGGGACCCCCGCGACCCGCAGCGATGAMDVTAPARPTTSRAAATARRPWWLVAAGPGAVVVAVLALLLAGTYSDAFAPLGTFSDPGALVRWGLPVSTVLAEVSLSVTFGGLFAVSFWLPPGRQRDRVLFVAGWASSAWAVATVVQLVLNYSYVSAIAPSASNFGQGLWQFVQDVELGQISVWTIALAAVTSALALGVRGPVGALWTALLPFAALALQSTTGHAAGAVNHDLAVGAMLLHIGPAALWVGGLAALLVVVLTRSDGGTGAGSGGARGRATASDGREVAATAVARFSPVAAWCFALVGISGVLSALVRVAHLDDLFTRYGVLLQVKMLLLLVLGALGWAHRRWIVGRLARGAEPVRRLFWQLLAVEVLVIGAVSGVAVGLGSTAPPVPDEVPVDASPAYQLTGYPLPPENTLDRYFTEWAFDPLFTVACLAGIGVYVAWVLRLRRRGDRWPAGRTISWVAGLLVMLWVTNGGPAVYGHVVFSGHMVQHMILAMVIPLLLVLAAPVTLLLRAVPARKDGSRGPREWVLALVHSRVGSFVARPVVAAVIFAGGMIAFYFTPVFEWALSNHAGHVWMTLHFTLAGYLFANALIGIDPGPQRPPYPQRLLLLFGTMVFHAFFGVVLTTGTSLLVADWFGNMGRPWGLSAIDDQQLGGAIAWGIGELPTLVLAVVVGVQWSRSDEREARRRDRKAERDDDAELRAYNAMLADMAERDGSTPGRDPRDPQRNANANANANA
AK018_015651515pdhC_2Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complexATGAGCACCCAGCGCTTCCCCCTGCCGGACGTCGGCGAGGGACTGACCGAGGCCGAGATCGTCGATTGGAAGGTCGCCGTCGGCGACACCGTCGCGGTCAACCAGGTGATCGTGGAGATCGAGACGGCCAAGTCCCTCGTGGAGCTGCCCTCCCCGTGGGCGGGCACCGTGACGGCGTTGCTCGCCGAGGAGGGCACCACCGTCGACGTCGGCGCACCGATCCTCGAGATCGGCGACGGCGCCGCCGGAGCCTCTGCTGAGCCGGAGCCGGCCGGATCGGGGTCCGCCGCGTCGGGCTCAGCCGCGTCGGAACCGGCCGCGACCGACGGCGAGTCGTCCGGGTCCGTGCTGGTCGGGTACGGCACGTCCGACGCCGGGGCGAGCGGTCGCCGTCGACGCCGCCGGGGAGCTGCCGACGCCGGTGCCGCGGCGCCGAGCGCTGCAGCACCTGCGGTGCCCGCGGTGCCCGAGGCGCCGGCAGCCCCCGAACCTCCGGCACCCGCCCGGGCGCCGCAGCAGGCTCCAGCGCCCGAGCCGGAGCGGATCGCCCGGGCGATGGTCAGCGTGCCCGCGGCGTCCTCCCCGGACGACGCGCCGTCGTCGTCCCGCGTGCGGGTGCTCGCCAAGCCGCCGGTGCGCAAGCTCGCGAAGGACCTCGGCGTCGATCTCGCCTCGGTGCATCCCACGGGACCGGGCGGCATCGTCACCCGCGAGGACGTGACCGCGCACGCCGCCTCGGCCGAACCGCGGGCCCTGGCCACCTACCCGGACGACGACCAGCCGTGGCTGGCGTCGGGCAGCGTCTCCGACGACGGCCGCACTACCCGCGTGCCGGTCAAGAGCGTCCGCAAGCGCACCGCCGAGGCGATGGTGGCGAGCGCGTTCACCGCCCCGCACGTCACCGTCTTCCACACCGTCGACGTCACGCGGACCATGAAGCTCGTCGAACGGCTCAAGGGCGACCGGGACTTCGCCGACGTGCGGGTCACGCCGCTGCTGATCGCCGCCAAGGCCGCGCTGCTGGCGATCAAGCGGCACCCGGAGATCAACGCCGCGTGGGACGACGCCGCCCAGGAGATCGTCTACCACCACTACGTCAACCTCGGCATCGCCGCCGCCACGCCCCGCGGTCTCGTCGTCCCGAACGTCAAGGACGCCCACCGGCTCGAGCTGCTCGGCCTGGCCGAGGCCCTCGGGGAGCTCACCGCGACGGCGCGGGCCGGCCGGACCACGCCGGCCGCCATGTCGGGCGGCACGTTCACGATCACCAACGTGGGCGTCTTCGGCATCGACACCGGCACCCCGATCCTCAACCCGGGCGAGGCCGGCATCCTCGCGTTCGGGGCGATCCGGCAGCAGCCCTGGGTGCACCGGGGCAAGATCAAGCCGCGCTGGGTCACCCAGCTCGCGCTGAGCTTCGACCACCGGCTCGTCGACGGCGCGCTCGGCTCACAGTTCCTCGCCGACGTCGCCAAGGTGCTGGAGGACCCCGCGCACGGGCTCGTCTGGGGCTGAMSTQRFPLPDVGEGLTEAEIVDWKVAVGDTVAVNQVIVEIETAKSLVELPSPWAGTVTALLAEEGTTVDVGAPILEIGDGAAGASAEPEPAGSGSAASGSAASEPAATDGESSGSVLVGYGTSDAGASGRRRRRRGAADAGAAAPSAAAPAVPAVPEAPAAPEPPAPARAPQQAPAPEPERIARAMVSVPAASSPDDAPSSSRVRVLAKPPVRKLAKDLGVDLASVHPTGPGGIVTREDVTAHAASAEPRALATYPDDDQPWLASGSVSDDGRTTRVPVKSVRKRTAEAMVASAFTAPHVTVFHTVDVTRTMKLVERLKGDRDFADVRVTPLLIAAKAALLAIKRHPEINAAWDDAAQEIVYHHYVNLGIAAATPRGLVVPNVKDAHRLELLGLAEALGELTATARAGRTTPAAMSGGTFTITNVGVFGIDTGTPILNPGEAGILAFGAIRQQPWVHRGKIKPRWVTQLALSFDHRLVDGALGSQFLADVAKVLEDPAHGLVWGNANANANANA
AK018_015661008bkdB_2COG00223-methyl-2-oxobutanoate dehydrogenase subunit betaATGAGCACGCAGACGATGCCGCTGGCCAAGGCGATCACCGCCGGGCTGCGCGCCGCCCTCGACGCCGACGACTCGGTGATGCTGATGGGCGAGGACATCGGCCGGCTCGGCGGTGTCTTCCGGGTCACCGACGGGCTGCAGAAGGACTTCGGCGAGCACCGCGTCGTCGACACCCCGCTGGCCGAGTCGGGGATCGTGGGCACCGCGATCGGCCTGGCCATGCGCGGCTACCGGCCCGTCTGCGAGATCCAGTTCGACGGGTTCGTCTTCCCCGCCTACGACCAGATCACCACCCAACTGTCCAAGATGCACTACCGCTCCGGCGGGCGCGTCCAGGTGCCCGTGGTCATCCGCATCCCGTACGGCGGCGGGATCGGCGCCGTCGAGCACCACTCCGAGTCGCCCGAGGCGCTGTTCGCGCACACGGCCGGCCTGCGCGTGGTCTCCCCGGCCACCCCGCAGGACGCCTACGACATGATCCGGGCCGCCGTCGTCTCCCCGGACCCGGTCATCTTCCTCGAGCCCAAGGGCCGGTACTGGACCAAGGGCGAGGTCGACCTCGACAGCCCGGTGCCGGCGCTGTCCGACGGCGGCACCAGCGACCCGCTCGGCACGGCCCGGGTGGTGCGGCCGGGGACGGACGTCACCCTGGTCGCCTACGGTCCGACGGTCGCCACCGTGCTGTCCGCGGCCGAGGCGCTGGCCGCCGAGGGCACCAGCGCCGAGGTCGTCGACCTGCGGTCGGTGTCCCCGCTGGACGTGCCCACCGTGGCCGACTCGGTGCGCCGCACCGGACGCTGCGTCGTCGTGCACGAGGCGCCCACGTTCCTCGGGTCGGGCGCCGAGCTGGCCGCCCGCCTGAGCGAGGAGTGCTTCTACTCCCTCGAGTCGCCCGTGCTGCGGGTCGGCGGGTACCACGCCCCCTACCCGGTGGCGAAGCTCGAGCACGAGTACCTGCCGAGCGTCGACCGCGTCATCGACGCCGTCGACCGCGCCCTGGCCCACTGAMSTQTMPLAKAITAGLRAALDADDSVMLMGEDIGRLGGVFRVTDGLQKDFGEHRVVDTPLAESGIVGTAIGLAMRGYRPVCEIQFDGFVFPAYDQITTQLSKMHYRSGGRVQVPVVIRIPYGGGIGAVEHHSESPEALFAHTAGLRVVSPATPQDAYDMIRAAVVSPDPVIFLEPKGRYWTKGEVDLDSPVPALSDGGTSDPLGTARVVRPGTDVTLVAYGPTVATVLSAAEALAAEGTSAEVVDLRSVSPLDVPTVADSVRRTGRCVVVHEAPTFLGSGAELAARLSEECFYSLESPVLRVGGYHAPYPVAKLEHEYLPSVDRVIDAVDRALAHPGPT0008862_1569DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167NANA
AK018_015671176bkdA_2COG10713-methyl-2-oxobutanoate dehydrogenase subunit alphaGTGTCCGACCAGGTCACCGGCGGGTCCGACGTCGCCCCTGCCGACGTCGTCCCGCTCGTCCAGCTCGTCACCCCCACCGGGGAACGCGTCCACGAACCCGACAACCGGTACGCGGCCCGGGTCGCTCACCTGACCGGCGACGACCTGCGCGCGATGTACCGCGACATGGTCCTCACCCGGCGGTTCGACGACGAGGCCACCGCCCTGCAGCGCCAGGGCGAGCTCGGCCTGTACGCGCAGTCGGCCGGGCAGGAGGCCGCCCAGGTGGGTCCCGCCCACGCGCTCGCCGACCAGGACATGGCGTTCCCCTCCTACCGCGAGCACGGCATCCTGCACGTGCGCGGCGTCGACCCCGTGGACCGCCTCAAGCTGTACCGCGGCGTCGACCACGGCGGCTGGGACCCGGCCGAGCACAACGTGCATCTCTACACGCTGGTGATCGGTTCCCACGTGCTGCACGCCACCGGGTACGCCATGGGGATCCAGCGCGACGGCGCGGTCGGCACGGGCGACCCCGACCGGGACACCGCCGTCGTCGCCTGCTTCGGCGACGGCGCCACCAGCCAGGGCGACGTCAACGAGGCGCTGGTGTTCGCCGCCGTCAACGACGCGCCCGTGGTGTTCTGGTGCCAGAACAACCAGTGGGCGATCTCCGAGCCCACCACCCGCCAGTCCAGCGTCCCGCTGTACCGCCGCGGGGAGGGCTTCGGGGTGCCGAGCCTGCGGGTGGACGGCAACGACGCCCTGGCCTGCTACGCCGTGATGGCCGAGGCCCTCGAGCGCGCGCACGCCGGGCACGGCCCCACGTTCGTCGAGGCGTACACGTACCGGATGGGCGCCCACACCACCTCCGACGACCCGACGCGCTACCGCGAGCGCGCCGAGGAGGAGTACTGGCGCCAGCGCGACCCGATCGACCGGCTCGCCGCGCTGCTGCGGACCGAGGGCCACTGGGACGCCGACTGGGCCGCCGGTGTCGACACCGAGGCCGACGCCCTCGGCGAGACGCTGCGCGCCGGCGTGCGAGCGCTCGATGCGCCCCCCACCACCTCGATGTTCGAGAACGTCTACGCCACCGAGCACGCGCAGGTCGGCACCGAACGTCAGTGGTTCACCGACTACGAGGCCGAGACGGCCGGGACCGGGCAGCACGACACCGAGGAGGCGGCCCGATGAMSDQVTGGSDVAPADVVPLVQLVTPTGERVHEPDNRYAARVAHLTGDDLRAMYRDMVLTRRFDDEATALQRQGELGLYAQSAGQEAAQVGPAHALADQDMAFPSYREHGILHVRGVDPVDRLKLYRGVDHGGWDPAEHNVHLYTLVIGSHVLHATGYAMGIQRDGAVGTGDPDRDTAVVACFGDGATSQGDVNEALVFAAVNDAPVVFWCQNNQWAISEPTTRQSSVPLYRRGEGFGVPSLRVDGNDALACYAVMAEALERAHAGHGPTFVEAYTYRMGAHTTSDDPTRYRERAEEEYWRQRDPIDRLAALLRTEGHWDADWAAGVDTEADALGETLRAGVRALDAPPTTSMFENVYATEHAQVGTERQWFTDYEAETAGTGQHDTEEAARPGPT0008861_1204DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166NANA
AK018_01568936fas3putative 33.6 kDa protein in fasciation locusATGAGCGCCGTCACGACGCCGGTCCTCGACATGCGGGCCCGGTTCTACGCCGATCTCGGGCCCCTGCTCGACGCGCACCCCGACGTGGACGTGGTGCTCGCCGTCATCGGCTCCGACCAGGTGGCCCCCGTCGCCGCCCGGCACCCCGGGCGCGTGATCGACGTCGGCATCCGCGAACAGGCGATGATCGGGGTCGCCGGCGGACTGGCGCTCGCGGGCCGGCGACCGATCGTGCACACCTACGCCCCGTTCCTCGTCGAACGGCCCTACGAACAGCTCAAGCTCGACCTGGGACACCAGGACGTCGGCGCGGTCCTCGTCAGCATCGGAGGCTCGTTCGACGCGTCGTCGGCGGGCCGCACCCACCAGGCACCCGCCGACGTCGCCCTCGTGTCCGCGCTGCCCGGCTGGACCGTGCACGTGTCCGGCCACGCCGACGAGGTCACCGCCCTCCTGCAGGCCGAGGCCGCCACCGACCGGCGCGTCTACCTGCGGCTGTCCGGGCAGCGCAACGCGCAGCCGCAGCCCACCGACGGGCGGGTCCACCTCGTGCGCGACGTCGCCTCGGGCCTCGACGGGGCCGGGCACGCACCGCTGGTGCTCGCCGTCGGACCGATGCTCGACACCGTGCTCGCCGCCACCGCCGACCTGCCCGTCCGCGTCGCGTACACCGCGACACCGCACCCGCTCGACGCCGAGACCCTGCGGGCGCTGGCCGGGCCGCAGCCCGTGCTCACCGTCGTCGAGCCGTACCTGGAGGGCACCAGCGCGGCGGCCGTCGCGGCGGCGCTCGCCGACCGGCCCGCACGTGTGCAGCACGTCGGCGTGCCACGGGACGTCGAGCTGCGCCGGTACGGGACCCCGCGCGACCACGCGGCCGCGCACGGACTGGACGCCGCGGGGGTGCGGCGCCGGGTCGCGGATCTCCTTCAGTGAMSAVTTPVLDMRARFYADLGPLLDAHPDVDVVLAVIGSDQVAPVAARHPGRVIDVGIREQAMIGVAGGLALAGRRPIVHTYAPFLVERPYEQLKLDLGHQDVGAVLVSIGGSFDASSAGRTHQAPADVALVSALPGWTVHVSGHADEVTALLQAEAATDRRVYLRLSGQRNAQPQPTDGRVHLVRDVASGLDGAGHAPLVLAVGPMLDTVLAATADLPVRVAYTATPHPLDAETLRALAGPQPVLTVVEPYLEGTSAAAVAAALADRPARVQHVGVPRDVELRRYGTPRDHAAAHGLDAAGVRRRVADLLQPGPT0011200_8990DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615NANA
AK018_01569711fas2Ferredoxin fas2ATGACCACGACACCCCTGGCTCCCGAGACCCTGGAGCACCTCGTCGCCCGCGTCACCGGCGACGAGAAGCACGACGCGAGCGCCCACTCCACCCTCGACGTCGTCCGCGTGCTCTACGACCGGGTGCTCCGCGTGGACCCGGACCGCCCCGACGACCCGCACCGGGACCGGTTCCTACTGTCCAAGGGCCACGGTCCTGCCTCGACCTACGCCGTGCTCGCTGCCCACGGATTCTTCCCCGCGGCCTGGCTGGACGACGTCGCCGCCCGGGACTCGCCTCTCGGCCACCACCCCGACCGCGTGCTCGTCCCCGGGATCGAGATCGGCAGCGGCTCGCTCGGCCACGGGTTGCCGCTCGCCGTCGGCACGGCCCTCGGCCTGCGCGGGCGATCCCCGGGGCGCGTCGTCGTGCTCGTCGGCGACGCCGAGCTCGACGAGGGCTCCAACGCCGAGGCGATCCAGATCGCCGCCCGCCTCGGCCTCGGCAACCTGACGTGCGTCGTCGTCGACAACCACAGCGACGGCCACGGCTGGCCCGGCGGCATCGCCGCCCGGTTCGCCGTGGAGGGATGGACGACGACGGACGTCGACACCCGCTCCGACGACCGGCTCGCCACAGCGTTGCGCCGCACCGAGCCCGACCGGCCCACCGCCGTCGTCGTCGACACCACGCGACGCGGCGCCCGACCCGCGGCGGAGATGACCGCATGAMTTTPLAPETLEHLVARVTGDEKHDASAHSTLDVVRVLYDRVLRVDPDRPDDPHRDRFLLSKGHGPASTYAVLAAHGFFPAAWLDDVAARDSPLGHHPDRVLVPGIEIGSGSLGHGLPLAVGTALGLRGRSPGRVVVLVGDAELDEGSNAEAIQIAARLGLGNLTCVVVDNHSDGHGWPGGIAARFAVEGWTTTDVDTRSDDRLATALRRTEPDRPTAVVVDTTRRGARPAAEMTAPGPT0011200_11095DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615NANA
AK018_01570471soxR_2COG0789Redox-sensitive transcriptional activator SoxRGTGATCCTGGAGCGGTACCTGACCATCGGTGAGGTCGCGCGGCGCAGCGGGGTGGCGCCGTCGGCCCTGCGCTTCTACGAGCAGCGGGGCCTGATCGAGGCGCAGCGCACCGGCGGCAACCAGCGCCGCTACGAGCGCACGACGCTCCGGCGGATCGCCTTCGTCCGGACGGCCTCCCGGCTCGGGCTGACGCTCGACCAGATCGCCGACGCCCTCGCCACCCTGCCCGACGGCCGCACCCCCACCGCCGAGGACTGGCGCCGGCTGTCCCGGTCGTGGCGGGGCCTCCTGGACGAGCGCATCGCCGTGCTCGAACGTCTCCGCGACGACCTCGACTCCTGTATCGGCTGCGGCTGCCTGTCCCTGGAGCGCTGCACGCTGCAGAACCCGGAGGACCGCGCCGCCGCCCTGGGGCCGGGACCGCGCTACCTCGAGGGGGACAGCCCGTCCGACGTCGTCGGCGGCACCTGAMILERYLTIGEVARRSGVAPSALRFYEQRGLIEAQRTGGNQRRYERTTLRRIAFVRTASRLGLTLDQIADALATLPDGRTPTAEDWRRLSRSWRGLLDERIAVLERLRDDLDSCIGCGCLSLERCTLQNPEDRAAALGPGPRYLEGDSPSDVVGGTPGPT0012955_129DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGNITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012955-soxR-K13639NANA
AK018_01571339hypothetical proteinATGGACGCGATCATCGACGGGCTCATGGCGACGGAGGACCGCCTCGCGGTCGGGACGGGCGAGGACTATGCCGAGGTGCTGCACGAGGACGCCGTCGTCGTCGTCCCCGGTGCCGTGCTCGACAAGGCGGGGTGCATCGCCGCGATGGACTCCTCCCCGGGCTGGGACGAGGTCGATCTCGGCGAGGCGCGGCTGGTGCGCAGCGAGGACACGGCGACCGTCGTCTACCGGTTCACCGGCCGGCGGGGCGAGGAGACCTACGTCGCCACCCTGGCCAGCACGTACGTCACGGCTGTCGGCGGGTGGCGGCTGCTGGTCCACCAGCACACCCCGGAGTGAMDAIIDGLMATEDRLAVGTGEDYAEVLHEDAVVVVPGAVLDKAGCIAAMDSSPGWDEVDLGEARLVRSEDTATVVYRFTGRRGEETYVATLASTYVTAVGGWRLLVHQHTPENANANANANA
AK018_01572681yhfK_3COG0702putative sugar epimerase YhfKATGAAGGTCGTCGTCATCGGTGCGCTCGGCAGGGTCGCACAGCTCCTGGTCCCGCTCCTCGCGGACGGTGGCGCCGGCCCGGCCGTCGACGTGGTCGGCGTGGTCCGCAAGCCCGAGCAGGTCGACCGGGTGGCCGACCTGGGCGGCGACCCGCTGCTCCTGGACGTCGAGTCCGCGGACACCGACCAGATCGCGACGGCGCTCGACGGCGCGGACGCCGTCGTCTGGGCCGCCGGCGCCGGGGGCGGCAACCCCGACCGCACCTACGCCGTCGACCGCGACGCCGCGATCCGCTCGATGGACGCCGCCGCGCGTGCCGGCGTCCGTCGGTACGTGATGGTCTCGTGGATCGGGTCCGTGCCCGACCACGGCATCCCGTCCGACTCCAGCTTCTACCCGTACGCCGACGCCAAGCTCGCCGCCGACGAGCACCTGCGCGGCACCGATCTCGCCTGGACGATCCTGGGCCCCGGCACGCTGACCGACGGCCCGCCCACCGGCCACATCCGGGTGCTCGGCGCCGACGAACGCGTCGAGCGGGGCGGCCCCTCGGAGGTGCCCCGGGCCGACGTCGCCCAGGTCGCCGCCGCCGCGCTGCGGATCGACGAGTCGATCGGGCAGTTCGTGCGGTTCACCAGCGGGGACGAGACGATCCCGGCGGCGCTGCGCAACGTGGAGTAGMKVVVIGALGRVAQLLVPLLADGGAGPAVDVVGVVRKPEQVDRVADLGGDPLLLDVESADTDQIATALDGADAVVWAAGAGGGNPDRTYAVDRDAAIRSMDAAARAGVRRYVMVSWIGSVPDHGIPSDSSFYPYADAKLAADEHLRGTDLAWTILGPGTLTDGPPTGHIRVLGADERVERGGPSEVPRADVAQVAAAALRIDESIGQFVRFTSGDETIPAALRNVEPGPT0021315_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021315-codA-K01485NANA
AK018_015731740poxB_2COG0028Pyruvate dehydrogenase [ubiquinone]ATGGCTCGCACCGTCGCCGAACACCTGGTCGACCAGCTCGTCGCCGCCGGGGTGAGTCGCGTCTACGGCATCGTCGGGGACTCGTTGAACCCCGTCGTGGACGCCGTGCGCCGCACCGAGGGCATCGACTGGGTGCACGTGCGCCACGAGGAGGCCGCCGCGTTCGCCGCCGCCGCCGAGGCCGAGGTCACCGGGAAGCTGGCGGTGTGCGCCGGCTCCTGCGGGCCCGGCAACCTGCACCTCATCAACGGCCTGTACGACGCGAACCGCTCCGGCGTCCCGGTCCTGGCGATCGCCTCGCACATCCCGAGCGCGCAGATCGGCACCAAGTTCTTCCAGGAGACCCACCCGGACCGCCTCTTCAACGAGGCCTCGGTGTTCTCCGAGATGATCTCGACGGCCGCGCAGCTCCCCCGCGTGACCCGCTCGGCGATCCAGCACGCCCTCGCCGAGCCCGGCGTCGCCGTGCTCACCCTGCCGGGCGACGTCGCCGACCAGGAGGTGGCCGACGACGACGCCCCCATCCTCATCCCCGGCGCCTGCCCCGCCCGCGTCGTCCCGCACGACGCGGACGTCGCGGCGCTCGCCGAGGCGATCAACGCCGCCCGCAAGGTGACCCTGTTCGTCGGCGCGGGCGCCCGCGGGTCGCGGGACGAGGTGCTCGAGCTCGCCGACCTGGCCGCGGCCCCCGTCGGCCACTCGCTGCGCGGCAAGGAGATCATCCAGTACGACAACCCCCACGACGTCGGCATGTCCGGCCTGCTCGGCTACGGCTCCTGCCACGAGGCGGTGCACGACGCCGACCTGCTGATCCTGGTGGGCACCGACTTCCCGTACGACTCGTTCCTGCCCGACGACGTCCCCACCGCGCAGATCGACATCGACGCCTCCCACCTGGGCCGGCGCACCCGCCTCGACCTGCCGGTGCACGGCGACGTCGGCGAGACGCTGCGGCTGCTCAATCCCCGCATCGAGCGCAAGACGGACCGCAAGTTCCTGACGTCGATGGTGGACAAGCACGCCCGCGTCATGACCAAGGTGGTGGGCGCCTACACCCGCAAGGTGGAGAAGCACACCCCGATCCACCCCGAGTACGCCGCCGTGCAGCTCGACGAGGCGGCGGCCGACGACGCCGTGTTCACCGTGGACACGGGCATGAACAACGTCTGGGCCGCCCGGTACGTCACGCCCAACGGCAAGCGACGCGTCATCGGCTCGTTCATCCACGGCTCCATGGCCAACGCGCTGCCGCACGCCATCGGGGTGTCCATGTCCCAGCCCGACCGTCAGGTCGTGGCGCTCGCCGGGGACGGCGGGCTGTCCATGCTGCTGGGCGAGCTGATCACCGTCCGGGCCTACGACCTGCCGGTGACGGTCGTCGTCTTCAACAACGCCTCGCTGGGCATGGTCAAGCTGGAGATGCTCGTCGAGGGTCTCCCCTCGCACGGCACCGACTCGCCCGAGGTGGACTACTCCGCGATCGGCACCGCCGTCGGCATCCCGTCGCAACGCGTCACCAAGCCCAAGGACCTGGCCAAGGCGTTCTCGACCGCGCTGGACAGCGACGGTCCCGCCCTGGTGGAGGTCATGACGGACCCGCGGGCGCTGTCCATCCCGCCGTCGATCACCTCCGGTCAGATCCGCGGGTTCACCACGGCGATGACGAAGGAGATCTTCGGCGGCGGCATGGGCGAGGTCATGTCGATGGCGCGCTCGAACCTGCGCAACCTGCCCCGCTGAMARTVAEHLVDQLVAAGVSRVYGIVGDSLNPVVDAVRRTEGIDWVHVRHEEAAAFAAAAEAEVTGKLAVCAGSCGPGNLHLINGLYDANRSGVPVLAIASHIPSAQIGTKFFQETHPDRLFNEASVFSEMISTAAQLPRVTRSAIQHALAEPGVAVLTLPGDVADQEVADDDAPILIPGACPARVVPHDADVAALAEAINAARKVTLFVGAGARGSRDEVLELADLAAAPVGHSLRGKEIIQYDNPHDVGMSGLLGYGSCHEAVHDADLLILVGTDFPYDSFLPDDVPTAQIDIDASHLGRRTRLDLPVHGDVGETLRLLNPRIERKTDRKFLTSMVDKHARVMTKVVGAYTRKVEKHTPIHPEYAAVQLDEAAADDAVFTVDTGMNNVWAARYVTPNGKRRVIGSFIHGSMANALPHAIGVSMSQPDRQVVALAGDGGLSMLLGELITVRAYDLPVTVVVFNNASLGMVKLEMLVEGLPSHGTDSPEVDYSAIGTAVGIPSQRVTKPKDLAKAFSTALDSDGPALVEVMTDPRALSIPPSITSGQIRGFTTAMTKEIFGGGMGEVMSMARSNLRNLPRPGPT0001371_912DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001371-poxB-K00156NANA
AK018_015741107pat_3COG0079Putative phenylalanine aminotransferaseGTGCCGAACCAGTCGAACCCGAACGTGACCGACCAGAGCCCCGCCGCGACGAAGGTCCCGCTGCGTGCCGCCGTCGCCGCCCTGCCCGCCTACGTGCCCGGTGCCCGGCCGAGCGGTCGAGCCTGGAAGCTGTCGTCCAACGAGAACCCCTTCCCGCCGCCCGCCGCCGTCGTCTCCGCCATCACGGAGGCCGCCGGCGAGGTCAACCGGTACCCGGACATGTTCGCCACCGAGCTGGTCGAGGCGCTCGCCGCGCACGTCGGCGTCGCACCGGAGCAGATCGTGGTCGGCAACGGGTCGGTCTCGGTGCTGCAGCACGTGCTCGAGGCCGTCGTCGAGCCGGGTGACGAGGTCGTCTTCCCGTGGCGGTCCTTCGAGGCGTACCCGATCGTCACCGCCGTCGCCGGCGGGACGCCCGTCACGGTGCCGGTCACGACGGACGGCCGGCTCGACCTGCCCGCGATGGCGGCCGCCGTCGGCCCGCGCACCCGCGCCGTGCTGGTGTGCACGCCCAACAACCCCACCGGACCGGTGGTGCACGCGGGCGAGCTGGAGGAGTTCCTGGCGTCGGTCCCGGGCGACGTGCTCGTCGTCGTCGACGAGGCCTACCTGGAGTTCGTGCGCGACCCGGAGGCCCCCGACGGCATGGACGTGCTGGGCCGGCACGCGAACGTGGTGCTCGTGCGCACGCTGTCCAAGGCGTCCGGCCTGGCCGGCCTGCGGGTGGGGTACGCCGTCGCCGCACCGCGCCTCGCCGCGGGGATCCGGTCGGCGTCCACGCCGTTCGGCGTCAACCACCTCGCCCAGCGCGCGGCCCTGGCCACCCTGCAGGCGCCCGTGCAGGCCGAGCTCGCCGAGCACGTCGAGGCGCTCGTGGGTGAGCGCACCCGCGTCCACGACGCGCTGCGCGAGCAGGGCTGGGAGGTGCCCGCGACGCACGCCAACTTCGTCTGGCTGGCGACGGGAGAGCGCACCGGCGAGCTCGCCGCGCAGGGCGCCGCCGCCGGGGTGCTCGTGCGGCCGTTCGCCGACGAGGGCATGCGGGTCAGCATCGGCGAGGTCGCGGCCAACGACGCGTTCCTGGAGCTGGCCGCCGGCTGGCGCTGAMPNQSNPNVTDQSPAATKVPLRAAVAALPAYVPGARPSGRAWKLSSNENPFPPPAAVVSAITEAAGEVNRYPDMFATELVEALAAHVGVAPEQIVVGNGSVSVLQHVLEAVVEPGDEVVFPWRSFEAYPIVTAVAGGTPVTVPVTTDGRLDLPAMAAAVGPRTRAVLVCTPNNPTGPVVHAGELEEFLASVPGDVLVVVDEAYLEFVRDPEAPDGMDVLGRHANVVLVRTLSKASGLAGLRVGYAVAAPRLAAGIRSASTPFGVNHLAQRAALATLQAPVQAELAEHVEALVGERTRVHDALREQGWEVPATHANFVWLATGERTGELAAQGAAAGVLVRPFADEGMRVSIGEVAANDAFLELAAGWRPGPT0020305_3809DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
AK018_01575393hypothetical proteinATGACCTTCATCCTGCGGCTCGTCGTGACCTCGTTGGCCCTGTGGATCTGCGACCTGATCTTCGACAGCTTCGAGATCTTCGGTGGTGACGACGTCCTCGGACGCATCCTCGCCATCGTGGGTGTCGGCCTGATCTTCACGCTGGTGAGCTCGATCGTGAAGCCGATCGTCAGCTTCCTGTCGATCCCGCTGCTGATCCTCACCCTCGGGCTGTTCTACCTGCTCATCAACGCGGCGATGCTGTGGCTCACCGAGTGGCTGACCAGCCAGAACTGGTTGGGCGACTGGGGTCTGACCATCGACGGCGGCTTCTGGTGGTACCTGTGGATCGCGCTGATCCTGGCGGTCCTGCAGACGGTGATCGGCTGGGTCGTGCCCGGGGACAAGAACTGAMTFILRLVVTSLALWICDLIFDSFEIFGGDDVLGRILAIVGVGLIFTLVSSIVKPIVSFLSIPLLILTLGLFYLLINAAMLWLTEWLTSQNWLGDWGLTIDGGFWWYLWIALILAVLQTVIGWVVPGDKNNANANANANA
AK018_015761551hypothetical proteinGTGACCGACCCGCAGGACACGCTGCTCGTCCTCGGCGGCCCGTCGCTCACGCACGTCGACGTGGGACAGGTCCGCGCCGCCGCCCAGCGGCTCGCCGAGGCCACCGACCGCCTGCGGTCCGCGACCGCCGGCGCCGCCCTCGCCCGGGCCGCTCTCGACCGCGTCCTGTGGACCGTCGGGCTCGGGTGGGACGACCCCGCGCTGCCCGCCAGGGTCCGCTGGGCCCGGGCGCTCGCCGACGACACCGCCGTGGCGCTCGCGGACCGGGCCGAGCGGTGCGCGGTGCTCTCGGGCCGGCTGCTGCGCGCCGCGGGTCTGTACGAGCACGCCGAGGGCGCCGTCGAGCAGCTGGTCGGCGGGATGGTCGCCACGGCCACGGGCGCCCTCGGGTTCGCGGTGACGCGGATCGTCACCGACCCCGTCGTCGGGACGCCCCTGCGGGCGGCGGGCAGCATCCTGATCCGCACGGCGGCGGAGTCGGCGCCGGACCCCGACGACCCGGACCGTCCCGCGGTGCCCGCCGCGACGCCGGAGGGGCCTGCGACGCCGGAGGGACCGCCGTCGGACGGGGGCGTGACGGGCGCGCTCCTGCGCGAGGTGGCGCCCTTCGTCGACGAGGCGGTCGTCGGTGCCGCGACCGGGGTGGCGCTGGGCGCCCTCGAGTACACGGGACGGTCCGTCACGGACGGGGCGAGGGTGCTCGCCACGGCCGTGGAGGAGGTGCTCGGCACGGTCGAGGTGCACGTCCTGGCGACGCCTGCGGAGGCCTTCGAGGTCGGGCTGCCGGCGTGGCACGACCGTCCCCTGGCGCGGGTCGACGACGCGCTCGCCGCCACCGCCGACCTGTACCCCGCGGGCAACGGCGTCCCCGGGCGCGAGCTGCCCGGCACGCCGCCCGGGACCGTCGCGGTGCAGGAGGTGACCCGCGCCGACGGCAGCACCTCGTGGACGGTGCTGATCCCCGGCACGCAGGAGCTGCTCTCGACCGACAACCCCTTCGACGTCGCCACCGACCTCGACCTCACGGCCGAGATGTCCGCGGACGTCGCCGCCGGGGTGCTCGCCGCGCTCGCCGACGCCGGTGCCGGGCCCGACGAGCCGGTGGTGCTCGTTGGGCACTCGCTGGGCGGTATCGCCGCCGTCTCGCTCGCGGCGTCCCCGCAGCTGTGCGGGCGGGTCGCGGGCGTCGTCACCGCGGGGGCGCCGACGGCGACGTTCCGCACCCCGCCGGGCGTGCCCGTGCTGCACCTCGAGAACGACGAGGAGCTCGTCTCCCCGCTCGACGGGCGGTCCACCACGGAGAACCCCGCCACCCGCGACCGGGTGACCGTGGGCCGGGCGCTGGCCGACTCCGGCGACCCGCTCGACCGGGCCGCCTCCGGCAGCGTGGCGGCGGCGCACTCGGTGGGCACCCACCTGCGCACGCTGCGCCACGCGCGGGACGCCGGCAGCGTGCCGGTCACGCACGTGAGCGCCCGCCTCGACGCGCTCCTGGACGGCGAGCGCGCCGAGACCCGGTTCTACCGGGTGCGCCGCCGTGAGACCGGGTGAMTDPQDTLLVLGGPSLTHVDVGQVRAAAQRLAEATDRLRSATAGAALARAALDRVLWTVGLGWDDPALPARVRWARALADDTAVALADRAERCAVLSGRLLRAAGLYEHAEGAVEQLVGGMVATATGALGFAVTRIVTDPVVGTPLRAAGSILIRTAAESAPDPDDPDRPAVPAATPEGPATPEGPPSDGGVTGALLREVAPFVDEAVVGAATGVALGALEYTGRSVTDGARVLATAVEEVLGTVEVHVLATPAEAFEVGLPAWHDRPLARVDDALAATADLYPAGNGVPGRELPGTPPGTVAVQEVTRADGSTSWTVLIPGTQELLSTDNPFDVATDLDLTAEMSADVAAGVLAALADAGAGPDEPVVLVGHSLGGIAAVSLAASPQLCGRVAGVVTAGAPTATFRTPPGVPVLHLENDEELVSPLDGRSTTENPATRDRVTVGRALADSGDPLDRAASGSVAAAHSVGTHLRTLRHARDAGSVPVTHVSARLDALLDGERAETRFYRVRRRETGNANANANANA
AK018_01577228hypothetical proteinATGCCTCTGACCAGCACCGACATCACCGCGGCCGGCGTGCAGCTGCGCCGCGCGGCCACCGAGCTCGACGACGCCCTGGGCCGGCTGCGCCTCGCGGCGCTGCTCGACTGGCGGTCCCCGGCCGCCGACCGCTGCCGCTCGGAGGTCGCGGCGCTGACAGGGCTGCTCGACGCCGACGGCGCGACGGTGTCGCAGGCGCTCCTCGTCACCGCGGGCTGCGAGTCGTGAMPLTSTDITAAGVQLRRAATELDDALGRLRLAALLDWRSPAADRCRSEVAALTGLLDADGATVSQALLVTAGCESNANANANANA
AK018_015781506purB_2COG0015Adenylosuccinate lyaseGTGACCTCCACCGCCCCGCAGCACCCGTCCGACCAGATCCGCGTGAACCTCGCCGACGTCACACCGCCGATCGCGCTCGGCCCGCTCGACGGCCGCTACCGCGGTGCCGTCGCGCCCCTGGTGGACCACCTCAGCGAGGCGGCGCTGAACCGGGCCCGCATCCAGGTCGAGGTCGAGTGGCTGATCGTGCTGTGCAACGGCAGCGTCGCCGGCGAGGCGGGCACCGCCCCCGTCGCCGGCCCCGTGGTGCCCGGCGCACCCACCCTGTCGGACGCGGAGATCGCCTACCTGCGGCAGATCCCCGCCACGTTCGGCGCCGACGAGATCGCCGAGCTCGGCGCCATCGAGCGCGAGACCGTGCACGACGTCAAGGCCGTCGAGTACTTCATCAAGCGCCGCCTGGCCGCCGACGTCGCCGGAGCAGCTCTCGGGGAGACGTCGCTGCCCGCCGCGAGCGAGCTCGTGCACTTCGCCTGCACGTCCGAGGACGTCAACAACCTGTCCTACGCCCTCATGGTGCGCGGCGCCGTCCTCGACGTGTGGCTGCCCGCCGCCACGGCGCTCGCCGACCAGCTCGCCGACCTGGCCCGCGAGCACGCCGCCGTGCCGATGCTCAGCCGCACCCACGGCCAGCCTGCCACGCCCACCACGATGGGCAAGGAGCTCGCCGTCCTCGCCCACCGCCTGCGCCGACAGCTGCGCCGCATAGGCGCCGCTGAGTTCCTCGGCAAGATCAACGGCGCTACCGGCACCTACGGCGCCCACACCGTGGCGGTGCCGGGCGCGGACTGGCCCGCCGTGTCCCGCGCGTTCGTCGAGCACCTCGGGCTGACGTGGAACCCGCTGACCACGCAGATCGAGTCGCACGACTGGCAGGCCGAGGTCTACGCCGACGTCGCCCGCTTCAACCGCATCCTGCACAACCTCGCCACCGACGTGTGGACGTACATCTCGATGGGCTTCTTCACGCAGATCCCCGTCGCGGGCGCCACCGGGTCCTCGACCATGCCGCACAAGGTCAACCCGATCCGGTTCGAGAACGCCGAGGCCAACCTCGAGATCTCCTGCTCCCTGCTGGACACCCTCGCGGCCACGCTCGTCACCAGCCGCCTGCAGCGCGACCTCACCGACTCCACCACGCAGCGCAACATCGGCCCGGCGTTCGGCCACTCCCTGCTCGCGATCGACAACGTGCGCCGCGGGCTCACCGCGCTCGCGGTCAGCGCCGAGACCATGGCCGCCGACCTCGACGCCAACTGGGAGGTGCTCGGCGAGCCCGTCCAGTCGGCGATGCGCGCCGCGTCCGTCGCCGGCGTCGAGGGCATGGAAAACCCGTACGAGCGCCTCAAGGAGCTCACGCGCGGCCACCGCGTCGACGGGCCCGCCATGCGGGAGTTCGTGGCCGGCCTCGGGCTGCCCGACGACGTCGCGGCACGGCTGGCGGCGCTCACCCCGGCGTCGTACGTGGGGCTCGCCGAACGGCTCGTGGCCGACCACCTGGACTGAMTSTAPQHPSDQIRVNLADVTPPIALGPLDGRYRGAVAPLVDHLSEAALNRARIQVEVEWLIVLCNGSVAGEAGTAPVAGPVVPGAPTLSDAEIAYLRQIPATFGADEIAELGAIERETVHDVKAVEYFIKRRLAADVAGAALGETSLPAASELVHFACTSEDVNNLSYALMVRGAVLDVWLPAATALADQLADLAREHAAVPMLSRTHGQPATPTTMGKELAVLAHRLRRQLRRIGAAEFLGKINGATGTYGAHTVAVPGADWPAVSRAFVEHLGLTWNPLTTQIESHDWQAEVYADVARFNRILHNLATDVWTYISMGFFTQIPVAGATGSSTMPHKVNPIRFENAEANLEISCSLLDTLAATLVTSRLQRDLTDSTTQRNIGPAFGHSLLAIDNVRRGLTALAVSAETMAADLDANWEVLGEPVQSAMRAASVAGVEGMENPYERLKELTRGHRVDGPAMREFVAGLGLPDDVAARLAALTPASYVGLAERLVADHLDPGPT0021555_211DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021555-purB-K01756NANA
AK018_01579171hypothetical proteinATGACCGACGCACCGCAGGACCGCCCCACCCCGAACGACTTCGCCCGTCGCCTGCTGAAGGACTCCGAGCACGACGAGCAGCAGGCCGCCACCGACGAGCACGAGCGTCCCGACCAGGCGGAGCACGACCACGAGCAGACCGAGGACGACGAGCGCTTCGACGCGGGCTGAMTDAPQDRPTPNDFARRLLKDSEHDEQQAATDEHERPDQAEHDHEQTEDDERFDAGNANANANANA
AK018_015801425glnA_1COG0174Glutamine synthetaseATGTTCACCAATGCCGAGGAGGCAATCGCCTTCACCCGCAACGAGGGGGTGGAGTTCATCGACGTCCGGTTCATCGACCTGCCGGGCGTCATGCAGCACTTCAACATCCCCGTGGCGCAGTTCGACGAGGACTCGTTCACCGACGGCCTCATGTTCGACGGCTCCTCGATCCGCGGGTTCCAGGCGATCCACGAGTCGGACATGAAGCTCGTCCCGGACGTGAAGACCGCCTTCATCGACCCGTTCCGCAAGCGCAAGACGCTCGTGATGAACTTCTCGATCGTCGACCCGTTCACGGACGAGCCCTACGCCCGTGACCCGCGCAACATCGCGGCCAAGGCCGAGGCCTACCTCGCCTCCACCGGTCTCGCGGACACCGCGTTCTTCGCACCCGAGGCCGAGTTCTACATCTTCGACTCCGCTCGCTTCGAGACCAACTCGCAGCGGAGCTTCTACGAGATCGACTCCGTCGAGGCCGCCTGGAACACCGGCCGCGACGAAGAGGGCGGGAACCTCAGCTACAAGACCCGCTACAAGGGTGGCTACTTCCCCACCTCCCCCAGCGACCGCTTCGCGGACCTGCGCGACGACATGGTCGCGACCCTGGGCCAGGTGGGCCTGGACGTCGAGCGTGCGCACCACGAGGTGGGCACGGCCGGCCAGCAGGAGGTCAACTACAAGTTCAACACCCTGCTGCACGCCGCCGACGACCTGATGAAGTTCAAGTACGTCATCAAGAACGTCGGCTTCAACGCCGGCAAGTCGGTGACGTTCATGCCGAAGCCGATCTTCGGTGACAACGGCTCGGGCATGCACTCCCACCAGTCGCTGTGGCTGAACGGCGAGCCGCTGTTCTACGACGAGAAGGGCTACGGCGGCCTGTCCGACATGGCCCGCTGGTACATCGGCGGTCTGCTCAAGCACGCCCCGTCGCTGCTGGCCTTCACCAACCCGTCGGTGAACTCGTTCCACCGCCTGGTCCCCGGCTTCGAGGCCCCGGTCAACCTGGTCTACTCGGCCCGTAACCGCTCGGCCTGCATCCGCATCCCGGTCACCGGCTCCTCGCCGAAGGCCAAGCGCGTCGAGTTCCGCGTGCCGGACCCGTCGTCGAACCCGTACCTCGCGTTCTCCGCGATGCTGCTCGCCGGCATCGACGGCATCAAGAACCGCATCGAGCCGCCGGCCCCGGTCGACAAGGACCTCTACGAGCTCCCGCCGGAGGAGCACGCGGAGATCGCCCAGGTCCCGAGCTCGCTCGAGGGCGCGATCAACAACCTCGAGGCGGACCACGAGTTCCTCACCCAGGGCGACGTCTTCTCCGAGGACCTCATCGCCACCTGGGTCGACTACAAGCGCACCAACGAGATCGACCCGATCCGTCTGCGCCCGCACCCGCACGAGTTCGAGCTCTACTACGACATCTGAMFTNAEEAIAFTRNEGVEFIDVRFIDLPGVMQHFNIPVAQFDEDSFTDGLMFDGSSIRGFQAIHESDMKLVPDVKTAFIDPFRKRKTLVMNFSIVDPFTDEPYARDPRNIAAKAEAYLASTGLADTAFFAPEAEFYIFDSARFETNSQRSFYEIDSVEAAWNTGRDEEGGNLSYKTRYKGGYFPTSPSDRFADLRDDMVATLGQVGLDVERAHHEVGTAGQQEVNYKFNTLLHAADDLMKFKYVIKNVGFNAGKSVTFMPKPIFGDNGSGMHSHQSLWLNGEPLFYDEKGYGGLSDMARWYIGGLLKHAPSLLAFTNPSVNSFHRLVPGFEAPVNLVYSARNRSACIRIPVTGSSPKAKRVEFRVPDPSSNPYLAFSAMLLAGIDGIKNRIEPPAPVDKDLYELPPEEHAEIAQVPSSLEGAINNLEADHEFLTQGDVFSEDLIATWVDYKRTNEIDPIRLRPHPHEFELYYDIPGPT0000645_2394DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
AK018_015811176gltA_12-methylcitrate synthaseATGAGCGAGACCGTCGAGATCAGGAAGGGTCTGGCCGGTGTCACGGTCGACCGCACCGCCGTCTCCCACGTCAACGTCGAGAGCAACTCGCTGCTCTACCGGGGGTACCCGGTGCAGGAGCTCGCGGCGACCACCTCGTTCGAGGAGGTCGTGCACCTGCTCTGGTACGGCGACCTACCCACCGCCGAGGAGCTCGACCGCTTCCGGGCGGCCGAGCGGAAGCACCGTGCGCTGGACGCGCACCTGATGGACGTCATCGACGGGCTGTCGCGGACCGCCCACCCGATGGACGTGGTGCGCACCGCCGTCAGCGTCATCGGTGCGGACGACCCCGACGTCGCCGACCAGGACCCCGAGACGGTGCTGCGCAAGGCGCTCGTGCTCTACGCGAAGCTCCCTGCCGTCGTGGCCCACGTCCAGCGACGGCGTCGGGGGCTGGCACCGGTCCCGCCCCGGGACGACCTGGGCTACGCCGCGAACTTCCTGTGGATGACGTTCGGCGACGAACCCGACGAGGTCGTGCGCCAGGCCTTCGACGTGTCGATGACGCTCTACGCGGAGCACTCGTTCAACGCCTCGACCTTCACCGCACGAGTGGTCGCCTCGACGCTGTCCGACTACCACAGCGCGATCGTGGCGGCCGTGGGCGCCCTCAAGGGATCGCTGCACGGCGGGGCGAACGAGGCCGTGATGCACACCTTCGACGAGATCGGCACCGCGGCGAACGTCGTGCCGTGGCTCGACACTGCGCTCGCGGACAAGCGCAAGATCATGGGGTTCGGGCACCGCGTGTACAAGCGCGGCGACTCCCGGGTGCCCACGATGCAGGCGGCGCTCGACTCGCTGGTCGCGCACGACGACCGGCCCGATCTCGCGGAGCTCGCCACGGCCCTCGAGACGGAGTTCGTCGAGCGCAAGGGGATCTACCCGAACCTCGACTATCCCTCCGGCCCCGCCTACCACCTCATCGGCTTCGACACCGAGCTCTTCACGCCGATCTTCGTGGCCTCGCGCATCGCCGGCTGGACCGCGCACGTCCAGGAGCAGTACGCCGACAACGCCCTGATCCGTCCGCTCAGCGCCTACGACGGCGTGGGCGAGCGGCACGTCGCCGGCTACGTCCCCGACGCGGCGGCGGTGGCCGCAGCGACCCGGCGCGAGGAGCAGGCCGGGTAGMSETVEIRKGLAGVTVDRTAVSHVNVESNSLLYRGYPVQELAATTSFEEVVHLLWYGDLPTAEELDRFRAAERKHRALDAHLMDVIDGLSRTAHPMDVVRTAVSVIGADDPDVADQDPETVLRKALVLYAKLPAVVAHVQRRRRGLAPVPPRDDLGYAANFLWMTFGDEPDEVVRQAFDVSMTLYAEHSFNASTFTARVVASTLSDYHSAIVAAVGALKGSLHGGANEAVMHTFDEIGTAANVVPWLDTALADKRKIMGFGHRVYKRGDSRVPTMQAALDSLVAHDDRPDLAELATALETEFVERKGIYPNLDYPSGPAYHLIGFDTELFTPIFVASRIAGWTAHVQEQYADNALIRPLSAYDGVGERHVAGYVPDAAAVAAATRREEQAGPGPT0001480_934DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659NANA
AK018_015821368hypothetical proteinATGACCGCGCTGCGGCGAGGGCTGCCGCGTCGTCCGGGCGGGCCGCCGTGGCCGCCGGCCGGCGAGGCGCCCGGGACGGCGGGCGTCGTGGCCGCGCCGGAGGCGTCCGTGGCCACCGGGACGATCGAGCGCCCGGAGGAGGGCGTCGCTGAGCCGGAGGCCTCGGCCGCGGGTGCGGGCACGGGCGGCGCGACCTCCGCCCGGCCGGCAGCCGCGTCCGGTGGGTCTGCCCAGGGTCCTGCGCAGCCCGTCGCCGACGGTGTCCCGCTGCGCCGCGGCCTGCCGCGCGTGGCCGGGGGAGAGCCGTGGCCGCCGGCGGGGACGGCGCCGGCCTGGGCGTACCGACCGCCCGCGCCGGAGCCCGAGCCCGAGGCGGGGCCGGAACCGGTGCCGTCTCCGGTCGGGGCGGGGGACGACGTCCCCGTCGCACGGCAGCAGCCGGGCACGGTCGGCGGTGACGAGCCCTCCGCCAGGACCCGCCCGCGACTGCCGCGCCGCGCCGCCCGTGCTCTGGCTCTGGTCGCCGGGGCGATCGTGCTGGTCGGCGTCGCCGTCCTGGTGGCGCGGTGGCTGGTCGACCTCGAGCCGGTGCAGCGCTTCCTGGCGACGTACCCCGGCGACCACCCCCTGCCCGAGGGGTCGCCGGTGGGGATCCCCGCCTGGCTCTCGTGGCAGCACTTCTTCAACGTGTTCCTGCTGGTGATGATCGTGCGCACCGGCTGGATGGTGCGGCGCCAGCAGCGCCCCGAGGCGTACTGGGCCCCACGGTCCGCGCCGACCTCGCGCGTCAGCATCATGTCCTGGGCCCACCAGGCGCTGGACGTCTTCTGGGTCGCCAACGGCGCGCTCTACCTGGTCCTGCTCTTCGCGACCGGCCAGTGGGTGCGCATCGTGCCGACCGACTGGAGCGTGGTCCCGAACGCGCTCTCCGCGGGACTCCAGTACCTCTCGCTGAGCTGGCCCACCGACAACGGCTGGGTGCACTACAACAGCCTGCAGCAGCTGGCCTACTTCACCACCGTGTTCGTCGCGGCGCCGCTGGCGATCGCCAGCGGGGTGCGGATGAGCTCCGCGTGGCGCGAGGGCAGCCGGTGGGACCGGGTGCTCCCCGTCGCAGCGGCCCGCCGTCTCCACTTCCCGGTGATGCTCTACTTCGTCGCGTTCACGGTCGCCCACGTGGCCCTCGTGCTCTCGACCGGTGCGCTGCGCAACCTCAACCACATGTACGGCGGACGCGACGAGGTGAGCTGGTTCGGCTTCTGGATGTTCGTGGCCTCGCTCGTCGTGATCGTGGCGGCCGCGTCCGCGCTGCGCCCCGTCCTCCTCGCGCCCGTCGCCCGCCGGTTCGGCACCGTCAGCCGGCGCTGAMTALRRGLPRRPGGPPWPPAGEAPGTAGVVAAPEASVATGTIERPEEGVAEPEASAAGAGTGGATSARPAAASGGSAQGPAQPVADGVPLRRGLPRVAGGEPWPPAGTAPAWAYRPPAPEPEPEAGPEPVPSPVGAGDDVPVARQQPGTVGGDEPSARTRPRLPRRAARALALVAGAIVLVGVAVLVARWLVDLEPVQRFLATYPGDHPLPEGSPVGIPAWLSWQHFFNVFLLVMIVRTGWMVRRQQRPEAYWAPRSAPTSRVSIMSWAHQALDVFWVANGALYLVLLFATGQWVRIVPTDWSVVPNALSAGLQYLSLSWPTDNGWVHYNSLQQLAYFTTVFVAAPLAIASGVRMSSAWREGSRWDRVLPVAAARRLHFPVMLYFVAFTVAHVALVLSTGALRNLNHMYGGRDEVSWFGFWMFVASLVVIVAAASALRPVLLAPVARRFGTVSRRNANANANANA
AK018_01583981etfA_1COG2025Electron transfer flavoprotein subunit alphaATGACCGACGCCCACGACGCACCGATCCTGGTGCTCCTCGACCGCACGCCCGACGGTGCACCGGCGGCGTCGTCCGCCGAGCTGCTCGGGGCGGCCGCCACGATCGGCACGCCCGTCGCGCTGCTCGTGGGACCCGGGGCCGAGACCGAGGCCGCCGCGGCCGGCGCGCTGGGGGCGCAGCGGGTGCTGACGGTCTCCACGCCGGCCAAGACGCTGGGTGTCCCGCAGGTGGACGCCCTCGCGGCGGCGGCGCGGCACGTCCGCCCGGCGGCGGTGCTCGCCGCGCACTCCGTGGAGGGACGCGAGGTCGCCGCCCGCTACGCGGTCCGGACACGGTCGGCGCTCGCGGTCGACGCCGTGCGGGTCTCCCGCGACGACGAGGGGATCGTCTCCCACCACTCGGTCTACGGCGGGACCTACCTGGTCGACGCCGCACCGACGTTCGGCGCGCCGGTCATCACCGTCCGGCCCGGCGAGATCGACGACCGGGCACCGGCCGTCGACGACGCCGCCGTCGAGGAGATCGAGGTCGAGGACTCGGGCCTGCCCGGTGCCGAGATCGTGGCGGTCGAGCCGGTCGAGGTCACCTCGGAACGACCCGAGCTGCGCGGGGCCGAGAAGGTCGTGTCCGGCGGTCGAGGGCTGGGCTCGGCGGAGGGTTTCGAGCTGGTCGAGCGCCTTGCCGACGCGCTCGGTGCCGCCGTCGGCGCCTCGCGCGTCGCGGTGGACAACGGATACGCCCCGGCGTCGGCCCAGGTGGGGCAGACGGGCGTGTCCGTGTCACCGCGCCTCTACGTCGCCCTGGGCATCTCGGGCGCGATCCAGCACCGTGCCGGGATGCAGACCGCCCAGACCATCGTCGTCGTCAACAACGACGCCGACGCGCCCCTGTTCGAGATCGCGGACTTCGGCGTGGTCGGTGACGTGTTCGAGGTCGTGCCGCAGCTCGTGGCCGCGCTCGAGGAGCGGAGGGGCGCATGAMTDAHDAPILVLLDRTPDGAPAASSAELLGAAATIGTPVALLVGPGAETEAAAAGALGAQRVLTVSTPAKTLGVPQVDALAAAARHVRPAAVLAAHSVEGREVAARYAVRTRSALAVDAVRVSRDDEGIVSHHSVYGGTYLVDAAPTFGAPVITVRPGEIDDRAPAVDDAAVEEIEVEDSGLPGAEIVAVEPVEVTSERPELRGAEKVVSGGRGLGSAEGFELVERLADALGAAVGASRVAVDNGYAPASAQVGQTGVSVSPRLYVALGISGAIQHRAGMQTAQTIVVVNNDADAPLFEIADFGVVGDVFEVVPQLVAALEERRGAPGPT0001040_2341DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
AK018_01584777etfB_1COG2086Electron transfer flavoprotein subunit betaATGAAGATCGTCGTGCTGATGAAGGTGGTCCCGGACACCTACGTGGACCGCACGCTGTCGCTCGAGACGGGGCTGGCCGACCGTGCCACCGCCGACCTCGTCCTGGACGAGATCGACGAGCGTGCGCTCGAGGTGGCCCTGGCCCACGCCGACGAGGACCCCGAGACCGAGATCGTCGCCGTCGCCATGACCCCGGAACCCGGTGTCACCAGCCTGCGCAAGGCGCTCGCCCTCGGGGCGACCTCGGCGCTGCAGGTGGTCGACGACCGTCTCCTCGGGGCCGACGTCGTGCTCACCGCCGAGATCCTCGCCGCGGCCGTGCAGCACGTCGGCTTCGACCTCGTCCTGGCCGGCGACGCGTCCACCGACGGGTCCGGCGGGGCCGTCCCGGCCGCCGTCGCCGAGCTCCTCGCCCTGCCCTGCGCCACCGCGCTGGCCGAGGTGGAGCTGACCGCGACCGAGGTCACCGGGATGCGCGCCTCCGACGGTGCCACCGTGCGCCTCACCGCGCCCCTGCCGGCCGTGGTGTCCGTCACCGAGGCGCTGCCCGAGGCCCGCATGGCCGGCTTCAAGGGGATCATCGCCGCCAAGAAGAAGACCGTCGAGACCGTCTCCGCCACCGACCTCGGCGTCGACCCCGAGCCGGCCGACGCCGCCCGGTCGATCATGCTCGCCGTCGCCGAGCGGCCGGCGCGGACGGCGGGCACCAAGATCGTCGACAGCGGGGACGCCGGTGAGCAGCTGGCGGCGTTCCTCCTCGAGAACCGGCTGGCATGAMKIVVLMKVVPDTYVDRTLSLETGLADRATADLVLDEIDERALEVALAHADEDPETEIVAVAMTPEPGVTSLRKALALGATSALQVVDDRLLGADVVLTAEILAAAVQHVGFDLVLAGDASTDGSGGAVPAAVAELLALPCATALAEVELTATEVTGMRASDGATVRLTAPLPAVVSVTEALPEARMAGFKGIIAAKKKTVETVSATDLGVDPEPADAARSIMLAVAERPARTAGTKIVDSGDAGEQLAAFLLENRLAPGPT0001035_1904DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
AK018_015851098hypothetical proteinGTGAGCGCGCTCGTGACCGGACCCGACCGGACCGACGTCGTGCAGAACGCGGCCGAGGCCGCGGCGGCCCCGCGCCCGCCGCTGCTCGTGCTCGACCCGCTGCAGCGGTACCTCGACGGCCTCGGGGTCCCGGCGGGCACGCTCGCCTGGCGGCGCATCGGCGACGGCCAGGCCAACGTCACCTACGAGGTGCGGCGCGGCGGCGAGCGGATGGTGCTGCGCCGCGGACCGCGCCCCCCGTTCCCGCCGTCGGCCCACGACATGGTCCGCGAGGCCCGCGTCGTCGCCGCGCTGGGCGCCGTGGGGGTGCGCGCGCCGCGGGTCCGCGCGGTGTGCGACGACCTCGCGGTGCTGGGGGTGCCCTTCTACCTCATGGACTACGTCGAGGGCGAGGTCGTCACGACGTCGCTGCCGCCCGGGTTCGACGGCCCGGGCGCCGGGACCGCCCTGGTCCACGCCGCCGTCGACGCCCTCGCCGACCTGCACCAGGTACCGCTCGAGGGCGAGGTGGCCGGCCTCGGCCGGCCCGCCGGCTACCTCGACCGGCAGGTCCGGCGTTTCGCCCAGCTCTGGCCGGTCAACACGCGGCGCTCCGTCCCGGTCGTCGACCGGCTGGCCGAGCGGCTCGCCGCCACCGTGCCGCGGTCCGCCCGCGCGACGGTCGTGCACGGCGACTACCGCCTCGGCAACCTGCTGTTCGCCGCGCCCGACCGGCTCGCCGCCGTCCTGGACTGGGAGATGGCGACGCTCGGGGACCCGCTCGCGGACCTGGGCTACCTCGTCGCCACCTACTCCGCGGCGGGCGAGGTCCGCACGCCGATGGATCTCACCCCCGTGACCGCCGGCCCGGGGTTCCCGTCCCGGGCGGGGCTCGTCGAGCGATACGCTGCCCGCACCGGTGCGGACCTGGAGAACCTGGCCTGGTACGAGGCGCTCGCCCTGTGGAAGTCGACGATCTTCTGCGAGGCGATCTACACACGATGGCTCGACGGGCAGCGACCGGACGACACCTTCGCCCCCGGCCTGGCCGAGGGCGTCCCGCTGATGGCCGACGTCGCCGCCCAGGCGCTGTCCCGTGCCGAGGAAGGAAGACGATGAMSALVTGPDRTDVVQNAAEAAAAPRPPLLVLDPLQRYLDGLGVPAGTLAWRRIGDGQANVTYEVRRGGERMVLRRGPRPPFPPSAHDMVREARVVAALGAVGVRAPRVRAVCDDLAVLGVPFYLMDYVEGEVVTTSLPPGFDGPGAGTALVHAAVDALADLHQVPLEGEVAGLGRPAGYLDRQVRRFAQLWPVNTRRSVPVVDRLAERLAATVPRSARATVVHGDYRLGNLLFAAPDRLAAVLDWEMATLGDPLADLGYLVATYSAAGEVRTPMDLTPVTAGPGFPSRAGLVERYAARTGADLENLAWYEALALWKSTIFCEAIYTRWLDGQRPDDTFAPGLAEGVPLMADVAAQALSRAEEGRRPGPT0008385_114DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
AK018_015861200bbsG_1(R)-benzylsuccinyl-CoA dehydrogenaseATGACCGCCGCGGAGCTCGTCGAGCGCGCCCGACGATTCGTGCGGGACGTCGTCGTCCCGGCGGAACCACCGGCCGGCACCCCCCTGGAACCCGCGGCCCGCCGGTCCCTGCAGCGCCGGGCCCGGGAGGCCGGCGTGTTCGCGCCCCACGTGCCGCCCCGGTTCGGCGGCCAGGGGCTGCGGCTCGGCGAGTGGTCCGCCGTGTTCCAGGAGGCCGGCTACTCGCCGATCGGCCCGGCGGTCCTCAACTGCATGGCGCCCGACGAGGGAAACATGCTGCTCCTGGAGCGGATCGCCACCCCCGCGCAGCAGGAGCGCTACCTCGTCCCGCTCGCCGCGGGCGCGACGCGGTCCTGCTTCGCCATGACCGAGCCGCACCCGGGCGCCGGGTCGGACCCGGCCGCGCTGACGACCACGGCGCGCCGGGTCGACGGGGGATGGGCGATCGACGGGGAGAAGCGGTTCATCTCGGGTGCCGAGGAGGCCGACGTCGCGATCGTGATGGCCCGGACGCCGGACGTCGGCCCCGAGGCCGCCACGATGTTCCTCGTGGAGATGGGGGCCGACGGCGTCTCGATCGGGCACGGCATCCGCACGCTGGAGACGGCGATCACCGGCGGGCACCCGCACGTGCACTTCCGGGACTGCGTCGTCCCCGACGACGCCGTCCTCGGCACGCCGGGGGAAGGCTTCCGGCACGCCCAGGTCCGGCTCGGCCCCGCCCGGCTCACGCACTGCATGCGCTGGCTGGGGCTGGCACGTCGGGCCCACGACACCGCGCTGGACCGGGTGCGCCACCGCGAGCTGTTCGGGTCCCCCCTCGCCGAGCTGGGCATCGCGCAGGCGCTCGTCGCCGACTCCGAGATCGACCTCGCCACGGCCGCCGCGCTCGTCGACCGGGCGGCCCGCACGCTCGAGGACGACGCACGGGCCGGCGCCCAGGCGTCGTCCATCGCGAAGGTGCACTGCTCCGAGGCGGTCGGACGGGTCGTCGACCGGGCCGTCCAGCTCTGCGGCGGCGACGGCGTGACCCTCGAGCTGCCCCTGCTGGCGTTCCAGAACGAGGTCCGCCCCTTCCGCGTGTACGACGGGTCGAGCGAGACGCACCGGTGGGCCATCGCGCGTCGTGCCGTCGCACGCCGCGAGCGGGAGGTCGACGCCGGCGAACGCGTCCTGGACCGAGCGGAGGCCGACCGGTGAMTAAELVERARRFVRDVVVPAEPPAGTPLEPAARRSLQRRAREAGVFAPHVPPRFGGQGLRLGEWSAVFQEAGYSPIGPAVLNCMAPDEGNMLLLERIATPAQQERYLVPLAAGATRSCFAMTEPHPGAGSDPAALTTTARRVDGGWAIDGEKRFISGAEEADVAIVMARTPDVGPEAATMFLVEMGADGVSIGHGIRTLETAITGGHPHVHFRDCVVPDDAVLGTPGEGFRHAQVRLGPARLTHCMRWLGLARRAHDTALDRVRHRELFGSPLAELGIAQALVADSEIDLATAAALVDRAARTLEDDARAGAQASSIAKVHCSEAVGRVVDRAVQLCGGDGVTLELPLLAFQNEVRPFRVYDGSSETHRWAIARRAVARREREVDAGERVLDRAEADRPGPT0008385_1932DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
AK018_01587789baiA_13-alpha-hydroxycholanate dehydrogenase (NADP(+))ATGACGGAGGGTTTCGCGGCGAGGGCGGGCGGCTGCTCGCGGCTGCAGGGCCGGGTGGCGCTGGTGACGGGTGCGAGCCGCGGCATCGGCCTCGCGGTCGCGCGACGACTCGTCGCGGAGGGCGCGTCCGTCCTGCTCACCGCGCGACGGGCCGAGGGGCTGCAGGCGGCGGTGGAGTCGCTGCCGCCGGATCGGGTCCGTGTCGTCGCGGGCCGGGCCCAGGACCCGGAGCACCGGCGGGCGGCGGTCGAGACCGCGATGGCGGAGTTCGGCGCGCTCGACGTGCTCGTGAACAACGCCGGCATCAATCCCGTCTACGGCCCCCTCGTCGGGCTCGAGCCGGAGGCGGCGCGCAGGGTTCTCGAGGTCAACGTGCTCGGCACGCTCGGGTGGGTCCAGGAGGCCCGTGCGGCGGGACTCGGCGACCGCGCCGGGGCGGCCGTGCTCAACCTGTCCTCCGTGACGGGGCAGGTGCCGTCCCCGGGGATCGGGTGGTACGGCGTCACCAAGGCCGCGGTCGCCCACCTGACCGTGACGCTGGCGGCCGAGCTCGCGCCCGCGGTCCGCGTCAACGCGCTCGCGCCGGCCGTGGTGCGGACCCGGTTCGCCCGCGCGCTGTACGAGGACCGCGAGGACGAGGTCACCGCACGGTACCCGCTCGGGCGGCTCGGCGAGCCGGCCGACGTCGCCGCCGCCGCGGCGTACCTGTGCTCCGACGAGGCGGGCTGGGTCACGGGACAGGTGCTGACCCTCGACGGCGGCCTGCTCGCCGCGGGAGGGACGGCATGAMTEGFAARAGGCSRLQGRVALVTGASRGIGLAVARRLVAEGASVLLTARRAEGLQAAVESLPPDRVRVVAGRAQDPEHRRAAVETAMAEFGALDVLVNNAGINPVYGPLVGLEPEAARRVLEVNVLGTLGWVQEARAAGLGDRAGAAVLNLSSVTGQVPSPGIGWYGVTKAAVAHLTVTLAAELAPAVRVNALAPAVVRTRFARALYEDREDEVTARYPLGRLGEPADVAAAAAYLCSDEAGWVTGQVLTLDGGLLAAGGTAPGPT0003180_1815DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_015881161mmgC_2COG1960Acyl-CoA dehydrogenaseATGAGCCAGATCATCGGACCGCGCTCCCTGTACGAGGAGGAGCACGAACAGCTGCGCGAGATGGTGCGCGCCTTCGTCGAGCAGTACGCCCGCCCGCACGCCGAGCGGTGGGAGCGCGAGGGACGCGTCGACCGGAAGCTCTTCGTCCAGGCCGCCGAGGCCGGGATCCTCGGCTTCGGCATCCCCGAGGAGTACGGGGGCGGCGGGTCGGACGACTTCCGCTTCAACGCCGTCATGGGCGAGGAGCTCGCGCGCCACCCGGTGTCGGACGGCATGGCCTGCATCGCCCTGTCGAACGACATCGTCATCCCCTACTTCACGGACCTGACGAACGACGAGCAGAAGCGGCGGTGGCTCCCCGGCATCGCGGCGGGCGAGACCGTCGTCGCCGTGGCGATGTCGGAGCCCGGCACGGGCAGCGACCTCGCGGGGATCCGCACGACGGCCACCCGGGACGGGGACGACTACGTGGTCGACGGGTCGAAGACGTTCATCTCCAACGGGCAGAACGCCGACCTCGTGGTCACCGCGGTGCGCACCGGCCCGGACCCGCACAAGGGACTGAGCCTGCTCGTGATCCCCGCCGACTCCCCCGGTTTCTCCCGCGGGCGTCGCCTGGAGAAGATCGGCCTGCACGCCCAGGACACCAGCGAGCTCGCCTTCGAGGGCGTCCGCGTCCCGGCCGCGAACCTGCTCGGCCCCGAGGGGGCGGGGTTCGCGGGCCTGATGGCGAACCTGCCGCAGGAACGGATCTCCATCGGGGCCGCCGCCGTCGCCTCCAGCGAGGGGGTGCTCGAGCGCACGCTCGAGTACGTCACGCAGCGCCAGGCGTTCGGCCGGCCGATCGGCGCGTTCCAGAACACCCGCTTCGAGCTGGCCGAGATGGTGACCGCCGTCCGGGCCAGCCGCGCGTACGTGGACGCGTGCCTCGTCGAGCACAACGCCGGCCGGCTGACCCCGGAGGACGCCGCCGCCGCGAAGTTCTGGACCACCGAGCAGTACGTCGACGTCGTGGGCCGCTGCCTGCAGCTGCACGGCGGGTACGGCTACATGCGGGAGTACCGCATCGCGCGCGACTACGAGGACGCCCGCATCACCACCATCTACGGAGGCACGACCGAGATCATGAAGGAGATCGTCGGTCGAGGTCTCGGACTGTGAMSQIIGPRSLYEEEHEQLREMVRAFVEQYARPHAERWEREGRVDRKLFVQAAEAGILGFGIPEEYGGGGSDDFRFNAVMGEELARHPVSDGMACIALSNDIVIPYFTDLTNDEQKRRWLPGIAAGETVVAVAMSEPGTGSDLAGIRTTATRDGDDYVVDGSKTFISNGQNADLVVTAVRTGPDPHKGLSLLVIPADSPGFSRGRRLEKIGLHAQDTSELAFEGVRVPAANLLGPEGAGFAGLMANLPQERISIGAAAVASSEGVLERTLEYVTQRQAFGRPIGAFQNTRFELAEMVTAVRASRAYVDACLVEHNAGRLTPEDAAAAKFWTTEQYVDVVGRCLQLHGGYGYMREYRIARDYEDARITTIYGGTTEIMKEIVGRGLGLPGPT0008385_7663DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
AK018_015891209fadA_1COG0183Putative acyltransferaseATGACCGAGGCACTGATCTACGACGCGGTGCGCACACCGCGAGGCAAGAACCGCGACGGCTCCCTGCACGGCGTCAAGCCCGTGGACCTGGTCGTGGGGCTGATCGACGCGCTCACCGAGCGCCACCCCTCGATGGACCCCGAGCTGATCGACGACATCGTGCTCGGCGTCGTCTCCCCCGTCGGCGAGCAGGGCGGTGACATCGCCCGCACCGCCGCGCTGGTCGCCGGGCTCCCCGAGAGCGTCGCGGGCGTCCAGCTCAACCGGTTCTGCGCCTCGGGCCTGGAGGCGGTGAACACCGCCGCGCAGAAGGTCATGAGCGGCTTCGAGGACCTGGTGCTCGCCGGAGGGGTCGAGTCCATGTCCCGCGTCCCGATCGGGTCCGACGGCGGGGCCTACGTGCAGGACCCCACCACCAACTACGACCTGCACTTCGTCCCCCAGGGGATCGGTGCCGACCTCATCGCCACCCTCGAGGGCTTCACCCGGCAGGACGTCGACGCCTACGCGGTCGAGTCCCAGCGCCGGGCCGAGGAGGCCTGGCGCGAGGGGCGTTTCGCCCGCTCCGTGGTCCCGGTGCGCGACGTCAACGGGGTCACCCTGCTCGACCACGACGAGCACCGGCGCCCCGGGTCGACCGTCGAGTCGCTCGGACACCTGAAGCCCGCCTTCGCCATCCCCGGCGCCCAGGCCGGGTACGACGCGGTGGCTCTGCAGAAGTACCACCACGTCGAGGCGATCGACCACGTGCACACGGCGGCCAACTCGTCGGGCATCGTCGACGGCGCCGCGCTCGTCCCCATCGGCAGCCGGGAGATCGGCGATCGGCTCGGCCTCACGCCCCGGGCGCGCATCGTGGCCGCCGCCGTCACGGGGTCGGAACCGACGATCATGCTCACCGGCCCCGCCCCCGCGACCCGCAAGGCGCTCGCGCAGGCCGGCCTCACGGTCGACGACATCGACCTGTTCGAGCTCAACGAGGCGTTCGCGTCGGTCGTCATGCGGTGGGAGCGGGAGATGGGCATCCCCCACGACAAGGTCAACGTCAACGGCGGCGCGATCGCCATGGGGCACCCGCTCGGAGCCACCGGGGCCATGATCCTCGGCACGCTGCTCGACGAGCTGGAGCGGCGCGACCTGCAGCGCGGGCTGGCCACGCTCTGCGTCGGTGCCGGCATGGGGATCGCCACCATCATCGAGCGGGTCTGAMTEALIYDAVRTPRGKNRDGSLHGVKPVDLVVGLIDALTERHPSMDPELIDDIVLGVVSPVGEQGGDIARTAALVAGLPESVAGVQLNRFCASGLEAVNTAAQKVMSGFEDLVLAGGVESMSRVPIGSDGGAYVQDPTTNYDLHFVPQGIGADLIATLEGFTRQDVDAYAVESQRRAEEAWREGRFARSVVPVRDVNGVTLLDHDEHRRPGSTVESLGHLKPAFAIPGAQAGYDAVALQKYHHVEAIDHVHTAANSSGIVDGAALVPIGSREIGDRLGLTPRARIVAAAVTGSEPTIMLTGPAPATRKALAQAGLTVDDIDLFELNEAFASVVMRWEREMGIPHDKVNVNGGAIAMGHPLGATGAMILGTLLDELERRDLQRGLATLCVGAGMGIATIIERVPGPT0008320_4351DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
AK018_015902190fadJ_2COG1024Fatty acid oxidation complex subunit alphaATGAGCGTCATCGAGGACAAGACCGACGTCCGGCTCGGGTACGACTGGGCCGAGGACGCCGACGGCGTCGTCACCATCACCATGGACGACCCGGACAGCGCGGCCAACACCATGAACGCCCACTTCGTGAGCGCGATCGAGGCGACCGTCGAGCGGCTGGAGGCCGAACGCGACCGGATCGCCGGCGTCGTCCTCGCCTCGGCCAAGAAGAGCTGGTTCGCCGGCGGGGACCTCAACCTGCTGCGCGCCGCCGACCCCGAGAGGTCGGCCGAGGAGACCGCGCACATCGACCACGTCAAGTCGCTCCTGCGCCGCCTCGAGCGGCTCGGTCGGCCCGTGGTCGCCGCGCTCACCGGCACCGCGCTCGGCGGCGGTCTCGAGGTCGCGCTGGCCACCCACCACCGGATCGCCGCCGGCGACGCCGCGGGGGCACGGTTCGGGCTCCCCGAGGTCTCTCTCGGGCTGCTGCCCGGCGGCGGCGGGGTGACCCGCACCGTCCGGATGCTCGGCCTGCAGAAGGCCCTCGCCGACGTGATCCTGCCGGCCACGCGCTTCACCGCGGAGGGTGCGCTGGACGCGGGGCTCGTCGACGAGGTCGTGCCCGCGGCCGAGGTCCACGACCGCGCCAAGGCGTGGATCGCCGCCCACCCGGAGCCCGTCCAGCCCTGGGACGCCGACGGCTTCCGCCTGCCCGGGGGCTCGCCGTCGTCGCCGTCGATGGCCCAGGCCCTGGCCGCGATGCCGGCCATGCTGCGCCAGCAGGTCAAGGGAGCGCCCGTGCCGGCACCCCGCGCCGCCATGGCCGCCGCCGTCGAGGGCGCGTCCGTGGACTTCGACACCGCGTCGAGGGTCGAGACCCGCTACCTCGTCCAGCTGACCCACACCCAGGTCGCCAAGAACATGATCCAGGCGTTCTTCTTCGACCTGCAGAGCATCACCGCCGGAGCCAGCCGGCCCGAGGGCTACCCCACGTACCGGGCGACCCGTCTGGGCGTCGTCGGGGCCGGGATGATGGGCGCGGCGATCGCCTACGTGGCCGCGCGCAGCGGCATCGACGTCGTCCTCAAGGACGTGTCCGCCGAGGCGGCCGAGCAGGGCAAGGACTACGCGCGCAAGCTCGAGGAGAAGGCCCTGCGGCGGGGGAAGACCACCCCGGAACGCAGCGCCGAGCTCCTCGACCGGATCACGGCGACCGGCGAGGCCGCCGACTTCGCGGGCGTGGACTTCGTCGTCGAGGCCGTCTTCGAGTCCGTCCCTCTCAAGCAGGGGGTCTTCCAGGAGATCCAGGACGTCGTGGAGCCCGACGCCGTGCTCGGGTCCAACACCTCCACCCTGCCGATCACGCTGCTGGCCGAGGGCGTCGACCGGGTCGAGGACTTCATCGGCATCCACTTCTTCTCCCCCGTCGACAAGATGCCCCTGGTCGAGATCGTGCGGGGCGAACGCACGAGCGACGCCGTGCTGGCGAAGGTGTTCGACTTCGTCCTGCAGATCCGCAAGACGCCGATCGTCGTCAACGACGCCCGCGGGTTCTTCACCTCGCGCGTGATCGGCAAGTTCATCGACGAGGCGGTCGCCGCCGTCGGCGAGGGCGTCGAACCGGCGAGCATCGAGCAGGCGGCGCTCCAGGCCGGGTACCCCGCAGGCGCTCTGCAGCTGCTCGACGAGCTCACGCTGTCGCTCACGCAGAAGATCCGCACCGAGACGCGTGCCGCCGAGGAGGCCGAAGGACGCACCTGGGTCCCGCACCCCGCCGAGGCCGTGGTCGACTGGATGGTCGACTCCCAGGACCGGCCGGGGCGCAAGGCCCGCCGGGGCTTCTACGAGTACGACGAGTCCGGGCGGCGCGTCCGGCTCTGGCCGGGGCTGCGCGAGAAGTACGACTCCGGCAGCGCCGACGTCCCGCTCGTGGACCTCCAGGAGCGGATGCTCTTCGCCGAGGCCCTCGACGCGATCGCCTGCCTCGACGACGGAGTGCTCACCACCGTCGCCGACGCCAACATCGGCTCGATCTACGGCATCGGCTTCCCCGCGTGGACGGGGGGCGTGCTGCAGTACGTCAACCAGTACGCGGGCGGGCTCGAGGGGTTCATCGGGCGCGCCCACGAGCTGGCGGACGCCTACGGCGAACGGTTCCGCCCCCCGGCCTCGCTCGTCGCCCGGGCCGCCGCCGACGAGACCTACGCGTAGMSVIEDKTDVRLGYDWAEDADGVVTITMDDPDSAANTMNAHFVSAIEATVERLEAERDRIAGVVLASAKKSWFAGGDLNLLRAADPERSAEETAHIDHVKSLLRRLERLGRPVVAALTGTALGGGLEVALATHHRIAAGDAAGARFGLPEVSLGLLPGGGGVTRTVRMLGLQKALADVILPATRFTAEGALDAGLVDEVVPAAEVHDRAKAWIAAHPEPVQPWDADGFRLPGGSPSSPSMAQALAAMPAMLRQQVKGAPVPAPRAAMAAAVEGASVDFDTASRVETRYLVQLTHTQVAKNMIQAFFFDLQSITAGASRPEGYPTYRATRLGVVGAGMMGAAIAYVAARSGIDVVLKDVSAEAAEQGKDYARKLEEKALRRGKTTPERSAELLDRITATGEAADFAGVDFVVEAVFESVPLKQGVFQEIQDVVEPDAVLGSNTSTLPITLLAEGVDRVEDFIGIHFFSPVDKMPLVEIVRGERTSDAVLAKVFDFVLQIRKTPIVVNDARGFFTSRVIGKFIDEAVAAVGEGVEPASIEQAALQAGYPAGALQLLDELTLSLTQKIRTETRAAEEAEGRTWVPHPAEAVVDWMVDSQDRPGRKARRGFYEYDESGRRVRLWPGLREKYDSGSADVPLVDLQERMLFAEALDAIACLDDGVLTTVADANIGSIYGIGFPAWTGGVLQYVNQYAGGLEGFIGRAHELADAYGERFRPPASLVARAAADETYAPGPT0001870_748DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001870-fadJ-K01782NANA
AK018_01591984COG2070NADH:quinone reductaseATGGTGACGACACGTCTGACCGAGGCGCTCGGGATCGAGCACCCCGTGATCCAGGGCGGGATGATGTGGGTCGGCCGTGCGGAGCTCGCCGCGGCCGTCTCGGAGGCGGGCGGCCTGGGCATGATCACGGCCCTCACCCAGCCGACGCCGGCCGACCTGGTCGCCGAGATCGAGAAGGCTCGTGCGCTCACGGACAAGCCCGTGGGCGTCAACCTGACCATCCTGCCCGCGATCGACCCCCCGCCGTACGACGAGTACCGCCGCGCGATCATCGACGCCGGCGTCACGATCGTCGAGACGGCAGGCGCCAACCCGGAGCCGCACATGGACATGTTCACCGCGCACGGCGTGCGGGTGATCCACAAGTGCACCAGCGTGCGGCACGCGCTCAAGGCGCAGAGCGTCGGGGTGACCGCCGTGTCGATCGACGGCTTCGAGTGCGCCGGGCACCCCGGGGAGGACGACGTCCCGGGCCTGGTGCTCGTGCCCGCGGCGGCGGACCGGCTGACGATCCCCTTCACCGCCTGCGGCGGGTTCGCGGACGGGCGCGGGCTCGCGGCAGCCCTCGCCCTGGGCGCCGACGGCATCACGATGGGGTCCCGGTTCATGTGCACGCAGGAGTCCCCGATCGCGCCGGCCGTCAAGGACCGGATCGTGGCGGGCACCGAGCGCGACACGAACCTCATCTTCCGGCAGCTGCGCAACACGGCCCGCGTGGCGAAGAACGTCGTGAGCGACGAGGTCGTCGCGGTGCTGGCGCGGGGCGGGGACTTCGCCGACGTCCGCGAGCTCGTCGCGGGCCGCCACGGGCGGAAGGTGTTCGAGGACGGTGATCTCGACGCGGGTATCTGGACGGTGGGGCTCGTGCAGGGCCTCATCCACGACGTGCCGGCCGCGGGCGAGGTCGTGCGGCGCACCGTCGCCGACGCCGAGCAGATCCTGCGGGACCGGCTGGCGATGTTCGCGAGCCCTGCCGCGGTGTGAMVTTRLTEALGIEHPVIQGGMMWVGRAELAAAVSEAGGLGMITALTQPTPADLVAEIEKARALTDKPVGVNLTILPAIDPPPYDEYRRAIIDAGVTIVETAGANPEPHMDMFTAHGVRVIHKCTSVRHALKAQSVGVTAVSIDGFECAGHPGEDDVPGLVLVPAAADRLTIPFTACGGFADGRGLAAALALGADGITMGSRFMCTQESPIAPAVKDRIVAGTERDTNLIFRQLRNTARVAKNVVSDEVVAVLARGGDFADVRELVAGRHGRKVFEDGDLDAGIWTVGLVQGLIHDVPAAGEVVRRTVADAEQILRDRLAMFASPAAVPGPT0006800_3585DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-PROPIONATE-3-NITRATE-DERIVATE_RESISTANCE,PGPT0006800-ncd2|npd|pnoA-K00459NANA
AK018_015921311hypothetical proteinATGTCCATCGTCCGCACCGCAGGACGCGCACGACCCCTGACCACGCTCGCGGCGGGGATCGCCGTCGTCGCACTCACCCTGGCGGGGTGCTCCGGACGCGACGCGGCCGACGACGCCCCCGCCGCGTCCGGGGAGGACTCCGGCGACGACACCACGACCGCGGCCGCCGCCGAGGACTGCAGCCCCGGCTTCACCGAGACCGAGGTGCGGATCGGCAACAGCATCCCGCTCTCGGGACCGGCCGCCGCCTACGGCGCGATCGGTCAGACGCTCCAGGCCTACTTCGACGACGTCAACGCCGCCGGGGGGCTCGAGCTGGCCGACGGCACGCAGCGCGACGTCACGGTCAGCGTCGTCGACGACGGCTACGACCCCGCGAAGACCGCCGCGAACGTCCGCTCGCTCGTCGAGCAGGAGGAGGTGTTCGCCCTGGCGGGCGTACTCGGGACGGGCGCCGCGATCAGCGTCGCACCGTACGTGGAGGAGGCCGGCGTACCGAACCTGTTCGTGGGCACCGGCACGGACGCCCTCCAGTCGCTGCACGCCGAGGACTCCTGGACGACCGGCTTCATGCCCCAGTACGGCTTCGAGGTGCAGGCGCTCGCCGAGTACCTCGTCGAGCACCACCCCGGCGCGACCGCCGCGATCCTGTACCAGAACGACGACTTCGGCGAGAGCGTCCGCGCGGGCTTCGAGGAGGCGTTCGAGGGCACCGACCTCGAGATCGTCGCCGCCGAGCCGTACGAGCTGGCCAGCGCCTCCGTCGACAGCCAGGTCACGACCCTCGCGGCGTCCGAGGCGGACATCTTCCTGAACTGGGCCGTCGGGTCGTTCGCGACGCAGTCGCTCAAGAAGAAGCTGGAGCTCGGGTGGGACGCGACGACCGTCGTCAGCGCCCCGGCGGCCGACGCGACGTTCTTCCTCAAGCCCGCCGGCGAGGGAGCCGCCGACGGCGTCGTCTCCGTCGCCTACACCAAGGACATCACCGACCCGTCGTCCGCCGGCGACCCCGGCTTCGACGCCTGGACCGATTTCGCCACGGCGCACGACGAGGTCGACCCCCTCTCCGCCCCCGCGGCGGCGGGCTACCAGACCGCGCAGCTGCTGGAGGCCGCGCTGCAGCAGATGCAGGGCTGCACCCGCGAGGCGCTGCTCGAGGCGGCGACGACCTTCGAGGGCCTCGAGCTCGACCTCGCGCCGGTCGCCGTCACCACGACGCCGGACTACCCGTACGTCTTCCGGGAGATCAAGGTCCAGGCCTTCAACGGCGAGAACTGGGACCTCGCCGAGGGGGACTACACCGTCGACTGAMSIVRTAGRARPLTTLAAGIAVVALTLAGCSGRDAADDAPAASGEDSGDDTTTAAAAEDCSPGFTETEVRIGNSIPLSGPAAAYGAIGQTLQAYFDDVNAAGGLELADGTQRDVTVSVVDDGYDPAKTAANVRSLVEQEEVFALAGVLGTGAAISVAPYVEEAGVPNLFVGTGTDALQSLHAEDSWTTGFMPQYGFEVQALAEYLVEHHPGATAAILYQNDDFGESVRAGFEEAFEGTDLEIVAAEPYELASASVDSQVTTLAASEADIFLNWAVGSFATQSLKKKLELGWDATTVVSAPAADATFFLKPAGEGAADGVVSVAYTKDITDPSSAGDPGFDAWTDFATAHDEVDPLSAPAAAGYQTAQLLEAALQQMQGCTREALLEAATTFEGLELDLAPVAVTTTPDYPYVFREIKVQAFNGENWDLAEGDYTVDPGPT0020765_3648DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
AK018_01593768lptB_2COG1137Lipopolysaccharide export system ATP-binding protein LptBATGGACGCGCTGCTCGAGGTGCACGACGTGCACCTCTCGTTCGGCGGGCTGCAGGCGCTCGACGGACCGAGCCTGACGGTCGCCGACGGAGAGGTCGTGGGCCTCATCGGCCCCAACGGCGCGGGGAAGACCAGTCTCTTCAACTGCATCAACGGCTTGTACCGACCGCAGTCGGGCAGCGTCCGGGTCCTCGGCCGGGAGGTCGCGGGCCTGCCGCGCCACCGCATCGCCGGGCTCGGCGTCGGGCGGACCTTCCAGAACCTCGGTCTGCTGGCGAGCCAGACGGTGCTGGAGAACGTGCTGGCCGGCGCGTACCACGCCACGCGCGGCGGCTGGTGGGCCACCGTGCTCGACCTGCCCGACGTCCGTCGCACCGAGGACCGGCTCCGCGCCCGCGCCCTGGAGCTCCTCACCGAGCTCGACCTCGCCGACGTCGCGGGCCGTCCCGTCGGCACGCTCCCGTTCGGCACGCTCAAGCGCATCGAGCTGGCCCGTGCGCTCGTCGGCGAGCCGCGTCTGCTGCTCGTGGACGAGCCGGCCAACGGACTGGTCCACAGCGAGGTGGCCGAGCTCGGCGCGACGCTCCGACGGCTGGCCACGGACCGCGGGGCGGCGATCCTCCTCGTGGAGCACCACATGGGTCTCGTAACGTCCGTCTGCGACCGCGTCGTCGTGCTGGACTTCGGCCGCCTCATCGCCGAGGGCGACCCCCGCGAGGTCGCCCGCGACCCGCAGGTCGTGGCCGCCTACCTCGGGACCGCCGCATGAMDALLEVHDVHLSFGGLQALDGPSLTVADGEVVGLIGPNGAGKTSLFNCINGLYRPQSGSVRVLGREVAGLPRHRIAGLGVGRTFQNLGLLASQTVLENVLAGAYHATRGGWWATVLDLPDVRRTEDRLRARALELLTELDLADVAGRPVGTLPFGTLKRIELARALVGEPRLLLVDEPANGLVHSEVAELGATLRRLATDRGAAILLVEHHMGLVTSVCDRVVVLDFGRLIAEGDPREVARDPQVVAAYLGTAAPGPT0020780_7706DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
AK018_01594708livF_1COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGAGCGCGCTGACGGTCGAGATCGAGGCCGCGGGCTACGGTCCCGCGACGGTCCTCCGCGACGTGCGCTTCGAGGTGCCCGACGGCGGGCGGCTGGTGGTCCTCGGGGCCAACGGGGCCGGCAAGACCACCGTGCTGCGGACCATCTCCGGCCTCTGCGACGCCGTGGGGTCCGTCCGGCTCGGGGAGACCGAGCTCCTCGGCCTCCCGCCGTACCGTGTCGCGGGGGCGGGCATCGCCCACGTGCCGCAGGGCCGCGGGACCTTCGGGGACCTCACGGTGCGCGAGAACCTGCTCGTGGGCGGGGCGACGCGACCCCGGAGAGAGACGGTCGCAGCAGCGGACCGCTGGATGGAGCGCTTCCCGCGGCTGGGTGAACGCAGCGGCCGTCCGGCGTCCGGGCTCAGCGGCGGCGAGCAGCAGCTGCTGGCCATCGCCCGCGCGTTCATGTCGGCGCCGCGGATGCTGCTGCTGGACGAGCCCTCCCTGGGCCTCGCGCCCAAGATCACCACCGACCTCTTCGCCACCCTCGACGAGCTGGGCCGCGAGACGGGCACGACCATGCTGCTCGTCGAGCAGAACGCCGAGGTGGCCCTCGGCATCGCCGAGGACGCGGTCGTCATCTCCAGCGGCCGGATCACCGTGCGAGGTCGGGCGGACGAGCTCCGGGACAACGACGACGTGCGCCGGGCCTACCTGGGCGTCTGAMSALTVEIEAAGYGPATVLRDVRFEVPDGGRLVVLGANGAGKTTVLRTISGLCDAVGSVRLGETELLGLPPYRVAGAGIAHVPQGRGTFGDLTVRENLLVGGATRPRRETVAAADRWMERFPRLGERSGRPASGLSGGEQQLLAIARAFMSAPRMLLLDEPSLGLAPKITTDLFATLDELGRETGTTMLLVEQNAEVALGIAEDAVVISSGRITVRGRADELRDNDDVRRAYLGVPGPT0020785_7081DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
AK018_01595876livH_1COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGCTGCTGCAACAGCTCGCCGACGGGGTCGCGACCGGAGCGGTCTACGGTGCCCTCGCGCTCGCGATCGTGCTGGTCTACCGCGCGTCGCGGACGCTCAACTTCGCCCAGGGCGAGCTCGCCCTGCTCGGGGCGTACGTGTCGTGGCAGCTGACGGTCTGGGGCCTGCCGATCTGGGCGGCCCTGCTCGTCGCGACCGCTGCGCTCGCCGCGCTCTCCGCGGGGGTCGAACGGGTGCTCGTCCGCCCCCTGGTGCGCCGCCACCAGGCGCTCCCGCTCATCATCGTCACGCTCGGGCTGATGATCGCGCTCAACGCGATCATCGGCTGGGTGTGGACCTACCAGACCAAGGAGGTCCCGGCGCTCTTCGGCTCGGGAGCGGTCGAGATCGGCGGCGTCGCGGTCTCGCGCCAGGACGTCGGCATCGTCCTGACCGTCCTGGTCGTCGCCGTGGCCCTCGGCGTGCTCTTCGAGCTCACGCCGGTGGGGCTGCGCATGCGGGCCGCGATCTCCGCCCCCGAGTCGGCCGAGCTGTCGGGCATCTCGACCGGTCGCACCATGACCGCCGGCTGGGCGATCGCCGGCGCGGTGGGTGCGGTGGCCGGCACACTGATCGCCCCCGAGCTGTTCCTGCACCCCGGCATGATGACGCCTGTCCTCATCTACGCCTTCGCGGCGGCGACGCTCGGCGGCCTCGACTCGCCGCCCGGAGCGCTCGTCGGCGGCATCGTCGTCGGGGTCGTCGAGAACCTCGCCGGCAGCTACCTGCCGCACGGCTCCGACTTCAAGCAGGTGGTCGCGCTGGCGATCATCGTGGTCGTGCTGCTGGTGCGACCTCAAGGACTCCTCGGACGACGAGAGGTGGTGCGCGTATGAMLLQQLADGVATGAVYGALALAIVLVYRASRTLNFAQGELALLGAYVSWQLTVWGLPIWAALLVATAALAALSAGVERVLVRPLVRRHQALPLIIVTLGLMIALNAIIGWVWTYQTKEVPALFGSGAVEIGGVAVSRQDVGIVLTVLVVAVALGVLFELTPVGLRMRAAISAPESAELSGISTGRTMTAGWAIAGAVGAVAGTLIAPELFLHPGMMTPVLIYAFAAATLGGLDSPPGALVGGIVVGVVENLAGSYLPHGSDFKQVVALAIIVVVLLVRPQGLLGRREVVRVPGPT0020770_5882DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
AK018_015961068hypothetical proteinATGAGCACGACGGCGACCCGTCCGGCCCGGACGTCCGGCGGCGGAACCACGCGTCGAGGCGGCGGCACGGTGGTGGAGTGGCTGCGACGACCGCGGCCGCCCCTGGCACCACCGCGCTGGCTGGCGGTGCTGAGCACCGTGGGAGCGGCCGCGGCGCTCCTCGTCGTGCCGCTGGTCAACCCCAGCTACGTCAACCTCACGGTCACGCTGGTCATGGTCTGGACGATCGTCGGCCTCGGGCTCAACCTGCTCGTCGGCTTCGGTGGCCAGGTCTCTCTCGGACACTCGGCGTTCTTCGCGATCGGTGCGTACGCCGTCGCGGTGGCCGGGGAGGCCGGGTGGGCGCAGCCCGCCGCACTGCTCGTCGCGGGGGTCGTGCCGTTCGTCGTCGGCTACGCGATCGGGTTGCCGGCGCTGCGTCTGCACGGCCTCCAGCTCGGCCTCGTGACGCTCGCGCTGGCGATGGCCACCCCGGCCGCCATCCGCGCGTTCGAGCCGCTGACGCACGGCAGCCGAGGGATCGGGATCGACGGCACCCCACCGGCGTGGGTACCGCTCGACCACGACCAGTGGGTCTACTACCTCGCGTTCGCCGCGGCGTCGCTCGGCTACGTCGTCACCCGTCGGCTCGCGCGCGGTCGTCTGGGCCGATCCTTCGTCGCGGTGCGGGACGCCGAGCTGGTCGCCGAGACGCTCGGCGTGAACACGTGGCAGACCAAGACCCGGCTCTTCGCGACGTCCGCCGCGTACGCGGGCGTCGCCGGGGGTCTGTACGCGCTGCTCCTGGAGTTCGTCGGGCCCGAGAACTTCAACCTCACGCTGTCGATCTCGTTCGTGACCCTCATCGTCGTCGGAGGGCTCGCGACGGTCCCCGGTGCCGTGCTCGGCGCGATCTTCGTCCAGTACGTCCCGACGCTGACGTCGAGCATCAGTCCGGCGGCGACCGGGGCGACCTACGGCGTCGTCCTCATCCTGTTCGCGTTCTTCGTGCCCCACGGACTCGCCGGGCTCGCGCGCGCTGCGCTCGGTCCCCTGGTCCGCCGGGTGCCCGGCCGGCCGAAGGCCTGAMSTTATRPARTSGGGTTRRGGGTVVEWLRRPRPPLAPPRWLAVLSTVGAAAALLVVPLVNPSYVNLTVTLVMVWTIVGLGLNLLVGFGGQVSLGHSAFFAIGAYAVAVAGEAGWAQPAALLVAGVVPFVVGYAIGLPALRLHGLQLGLVTLALAMATPAAIRAFEPLTHGSRGIGIDGTPPAWVPLDHDQWVYYLAFAAASLGYVVTRRLARGRLGRSFVAVRDAELVAETLGVNTWQTKTRLFATSAAYAGVAGGLYALLLEFVGPENFNLTLSISFVTLIVVGGLATVPGAVLGAIFVQYVPTLTSSISPAATGATYGVVLILFAFFVPHGLAGLARAALGPLVRRVPGRPKAPGPT0020775_4602DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
AK018_01597627fadRFatty acid metabolism regulator proteinATGGACGTGACCGAGCCCGCCCCGCCACCGACCCGCGCGGCGTCGAAGTCCGCGCAGACCCGGCAGCGCATCCTCGACGCGGCTGCCGAGGTGCTGTCGAGGAAGGGCTACGCCGGGACCCGGCTCTCCGACGTGGCCGCTGCGGCGGGCGTGCAGGCCCCGGCGATCTACTACTACTTCGCCTCACGCGACGAGCTCGTCGAGGAGGTGATGTGGGTCGGTGCCCACCGTGTCCGGCTCCACGTGGAGGAGCGGCTGGCGGCGGTGCCCGAGGACACCTCGCCGATGGACCGGCTCCTGGTCGCCGTCGACGCGCACCTGCGCTACGAGCTGCAGCTCTCGGACTACACCACCGCCTCGGTGCGCAACGCCGGTCACGTCCCGGAACAGCTCCGCGTCCGTCCGGCCGCGGAGGAGGCCCTGTACAGCCGGTTGTGGCGCGACCTGTTCGTGGCGGCCCAGCAGGCGGGCCAGGTGCGTGCCGACCTCGACATCAACATCTTCCGGCTGCTGCTTCTCGGAGCGATGAACTGGGTCGTCGAGTGGTGGAACCCCCGCACGCGGTCGCTCGACGAGCTGGTCGCGACCGCCCAGGGGATGGTCCGGCACGGCGCCGGGGTCGCCTGAMDVTEPAPPPTRAASKSAQTRQRILDAAAEVLSRKGYAGTRLSDVAAAAGVQAPAIYYYFASRDELVEEVMWVGAHRVRLHVEERLAAVPEDTSPMDRLLVAVDAHLRYELQLSDYTTASVRNAGHVPEQLRVRPAAEEALYSRLWRDLFVAAQQAGQVRADLDINIFRLLLLGAMNWVVEWWNPRTRSLDELVATAQGMVRHGAGVANANANANANA
AK018_015981500ald_24,4'-diapolycopene aldehyde oxidaseATGACACTCGCGGACCAGGCACCGGCGGCCCAGCAGGTGACGACGCACAATCCGGTCGACGGCGAACCCGTCGGCCACTACCCGCTCGCGCAGGGCGTGGACGTCGAGGACGCCGTCCGCCGTGCACGCGCCGGGGCCACGTGGTGGCGGGACCAGGGCTTCGCCGCCCGGCGCGCCCACCTGCTCCACTGGAAGTCCCGCATCGCGGCCGGGGCCGAGGAGCTCGCGACCCTCATCTCCGCGGAGACCGGCAAGCCGCACGGCGACGCCCTGCTCGAGATCATGCTGACGCTGGGCCACCTCGACTGGGCCGCGAAGAACGCGCGGCGGGTGCTGCGCCGGCGCAAGGTGTCGGCCGGGCTGATCAACTACAACCAGCACGCCACCGTGGGCTACGAGCCCTACGGCGTCGTGGGCGTGATCGGTCCGTGGAACTACCCGCTGTACACCCCCATGGGGTCGATCTCCTACGCTCTTGCCGCGGGCAACGCCGTGGTCTTCAAGCCCAGCGAGCTCACCCCCGGCCCCGCCGTGTGGCTCGCCGAACGCTGGGCGGAGGCGGTCGGCCACGACGTGCTCGTCGCCCTGACCGGCGACGGCGCGACCGGCGCGGAGCTGGTCCGCTCGGTCGACAAGATCGCCTTCACCGGGTCGACCGCCACGGCGAAGAAGGTCATGTCCGTGGCGGCCGAGCAGCTCACCCCGATCGTGGCCGAGTGCGGCGGCAAGGACGCCATGCTCGTCGCAGCCGACGCCGACCTGGACTCCGCGGCCGACTTCGTGGTCTTCGGAGCCATGGGCAACGCCGGGCAGACCTGCGTCGGGGTCGAGCGCGTGTACGTCGTCGACACGGTTCGCGACGACCTGGTGGCGCGCGTCGTCGAACGGGTCGAGCGGCTGCGCACCGACGGACCCGACCCGCACTACGGTCCGATGACGATGCCGTCGCAGGTCGACGTCGTGCGCGACCACGTCGACGACGCCCTGCGCACGGGGTCGGCCGCGTTCGGCGGACGCGACAGCGTCGCCGGCCGGGTCGTCGGACCCGTCGTCGTCACCGACGTGGCCGAGGACTCCGCCGCCGTGCAGCACGAGACGTTCGGCCCGCTCGTCGTCATCAACACGGTCGCGTCCCTCGACGAGGCCGTCGAGCGCGCGAACGCCACGGTGTACGGCCTCGGCGCCGCCGTGTTCACGAAGGACAAGGGCGCCGCGACCCGGGCCGCGGACGCGCTGCGGGCGGGAGTGGTCACGATCAACTCGGTGCTCGGGTTCGCCGGTGTGGCGGCGCTGCCTTTCGGGGGCGTCAAGCAGAGCGGCTTCGGGCGCATCCACGGGGCCGACGGGCTGCGCGAGTTCTGCGCGGTCAAGTCCGTCGCGCGGCAGACCCGTCGGGCGGCGCTGAACCTGCTGACCATGGAGCGCACGGACAAGGACATGCACATGGTCGCCCGGATGATCCCGATGCTGCACGGCAGGGCGAAGCCTCCGCGCGACTGAMTLADQAPAAQQVTTHNPVDGEPVGHYPLAQGVDVEDAVRRARAGATWWRDQGFAARRAHLLHWKSRIAAGAEELATLISAETGKPHGDALLEIMLTLGHLDWAAKNARRVLRRRKVSAGLINYNQHATVGYEPYGVVGVIGPWNYPLYTPMGSISYALAAGNAVVFKPSELTPGPAVWLAERWAEAVGHDVLVALTGDGATGAELVRSVDKIAFTGSTATAKKVMSVAAEQLTPIVAECGGKDAMLVAADADLDSAADFVVFGAMGNAGQTCVGVERVYVVDTVRDDLVARVVERVERLRTDGPDPHYGPMTMPSQVDVVRDHVDDALRTGSAAFGGRDSVAGRVVGPVVVTDVAEDSAAVQHETFGPLVVINTVASLDEAVERANATVYGLGAAVFTKDKGAATRAADALRAGVVTINSVLGFAGVAALPFGGVKQSGFGRIHGADGLREFCAVKSVARQTRRAALNLLTMERTDKDMHMVARMIPMLHGRAKPPRDPGPT0001580_5503DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
AK018_015991212mce3RTranscriptional repressor Mce3RGTGAGCAGCGTGAGCGAGACGCGTGCGACGACGCCGGTCAGGCGGCGACCCCGTGACCGCCGCCAGGTCATCGAGGCGGCGGCCGCTGTCGCGTTCGCCGAACGGGGGTACCACCGGGTGGCCATGCAGGACGTCGCCGACGCGGTGGGGATCACGGCGGCAGCCCTGTACCGGCACTTCGACAACAAGTACGAGCTGTTCCGCGAGGTCGCGCTCGACCACGTGCACCGGATCTCCGTCGCGGCCGCCGCTGTCGACGCGGGGCGCGACCTGTCGTCCGCGGCTGCCCAGCAGGAGCTCGAGGTCCTGCTGGACGCCGTCGTGGGCGCGACGCTCGCGATGCGGTCGACCGGGAGCATCTACCGGTGGGAGAGCCGCTGCCTGCGGCCCGAGGACCGTCGGGTGCTCGCGGGCGAGTTCGCCGCGCTGCGCCGCCGGCTGGCCGGCCCGGCGGCCGTGCTCCGGCCGGACCTGGATCCCCGCACGCTCGACCTCGCGGCGCTCGCGGCGCTGAGCGCCGTCGCCAGCGTGACGACGCATCGCACCGCGATGCCGGCCGCTCGCCTCGGGGTGCTCCTGCGTGAGGCGGCGGTGCGGGTGCTGGCCCGGACGGCGGGCCCGGCGCCCGCCGACGGCCCCGAGGCCGCCGAGGCGACCGCGCCGCCGCGCCGACGCCGCGACCAGCTCGCCCGGGCCGGCATCACGATGTTCGCGCGGCGCGGGTACCACGACGTGACCATCGAGGAGATCGCGGCGGCCGTCGGGCTCACTCCGTCCGGCGTCTACCGCCACTTCAGCGGCAAGTCGGAGATCCTGCGAGCGGCCTGCGAGCGCGCGGCCGTGGCGCTCGACGAGGCCGCGGAGGACGCGCTGCGGTACACCGAGCCCCGCCAGGCGCTCCGACTGCTCGCCACGGCCTATATCGGGTTCGCCGTGGACGACCGCGGCCTGATGGAGGTGTACACGGCGGACGTCGGAGCGCTCGACGCCGAGGACCAGCGGCGGCTGCGGCGTCTGCAGCGCGCCCACGTCGAGGACTGGGTCGAGCTGCTGGGCCGTGTCCGCCCGGAGCTCGACGCCCGCGAGCGGCGGTTCCTCGTGCACGCCGGGTTCAACGTGGTCGCCGACCTGAGCGTGGCGCTGCGGCACGCGCCCGCGGCGGACGCCAAGGGCTGGATCGAACCCGTCCTCGAGGCGACCCTGGGCGTCTGAMSSVSETRATTPVRRRPRDRRQVIEAAAAVAFAERGYHRVAMQDVADAVGITAAALYRHFDNKYELFREVALDHVHRISVAAAAVDAGRDLSSAAAQQELEVLLDAVVGATLAMRSTGSIYRWESRCLRPEDRRVLAGEFAALRRRLAGPAAVLRPDLDPRTLDLAALAALSAVASVTTHRTAMPAARLGVLLREAAVRVLARTAGPAPADGPEAAEATAPPRRRRDQLARAGITMFARRGYHDVTIEEIAAAVGLTPSGVYRHFSGKSEILRAACERAAVALDEAAEDALRYTEPRQALRLLATAYIGFAVDDRGLMEVYTADVGALDAEDQRRLRRLQRAHVEDWVELLGRVRPELDARERRFLVHAGFNVVADLSVALRHAPAADAKGWIEPVLEATLGVNANANANANA
AK018_016001578lcfB_2COG0318Long-chain-fatty-acid--CoA ligaseATGAGCGAAGCCACCAGCGTCATTCCGGCTGCGGTCCGCCGCAACCACTGGATGAACCAGGTCCTGATCCATGCCGGCATGAAGCCGGACGCCACGGCTTTCAAGTACCAGGGCGAGGTGACCACCTGGGCCGACACCGCGCGTCACATGGACACGCTGGCCGCGGCGCTCCGGCGCCGGGGTGTGTCCTTCGGCGACCGCGTGCTGCTGCTGACCCTCAACCACCCCCAGGTGGTCGAGACCGTCTTCGCGGTGAACCGGCTCGGCGCGATCGCGGTGCCGGTCAACGTGCGGCTCTCCCCCGCCGAGATCGCCTACATCGTCGACGACGCCGACGCCGACGTGATCGTCGTCGACCAGCCGCTGGCACCGCTCGTCGCCGCGGTCGGCCAGTTCACCGACCGCCTGCAGCGGGTCGTCGTCGTGGGCGAGGCCGGCGAGGGCCAGGAGAGCCTGGCCGACCTGCTGGCCGAGCCCGCCGGCGACTTCGAGGCCCCGGACGTCGCCGAGGACACGACCTGCCTGATCATGTACACCTCGGGCACGACCGGCAAGCCCAAGGGCGCGATGCTCGACCACGTCAACATGGCGGCCCAGGCGCTCACCTGCCTGCGGGTCAACGAGATCGTCACCGAGGACGACGTCGCCTTCCTGACCGCTCCGATGTTCCACATCGCCGGCCTCGGCTCGATCGCCCCCAACTTCATCGTGGGGATCCCGACCGTCATGCACCCGCTGGGCGCGTTCGACCCCGTGGCCCTGGTCGACGCCTGGGAGCGCGAAGGGGCCACCATCGTGTTCAACGTGCCGCAGCAGTGGCAGGCGATCTGCGCGGTCCCGGGGATCCGGGAGCGCGACCTGAACCTGCGCGTGATCAGCTGGGGTGCGGCCCCGGCGTCGGACAGCCTGCTGCGCACCATGTCGGAGACGTTCCCCGACGCGCTCAACGTCGCGGTGTTCGGCCAGACCGAGCTCTCCCCCATCACCTGCGCGCTGCGCGGCGAGGACGCGCTGCGCAAGCTCGGGTCGGTGGGCCGCCCGATCCCCACGATCGAGACCCGCATCGTGGACGCCGAGCTGCAGGACGTCGCGCCCGGCACGGTCGGCGAGATCGTCTACCGCGGCCCGAACCTCATGAAGGGCTACTGGCGCAAGCCGGCCGAGACCGCCGCCGCCTTCGAGGGCGGCTGGTTCCACTCCGGGGACCTGGTGCGTCAGGACGAGGACGGCTTCGTGTGGGTGGTCGACCGGCTCAAGGACATGATCATCTCCGGCGGGGAGAACGTGTACTGCGCGGAGGTCGAGAACGCGCTCTACGCGCACCCGAAGATCGTCGAGGTCGCCGTCTACGGCCGGGCCGACGAGCGCTGGGGCGAGGTGCCCGTGGCCGCCGTCGTGCTGCGGGAGGGCGAGTCCCTGGAGCTCGCCGAGCTGAAGGACTGGCTGGGCGACCGGCTCGCCCGCTACAAGCAGCCGGCGGACGTCCTGTTCCTGGACGAGCTGCCGCGCAACGCCGCCGGGAAGCTGAACAAGATCTCGCTGCGGCGGAACGACCACCCCGTCGCGGTGGTGTCCTAGMSEATSVIPAAVRRNHWMNQVLIHAGMKPDATAFKYQGEVTTWADTARHMDTLAAALRRRGVSFGDRVLLLTLNHPQVVETVFAVNRLGAIAVPVNVRLSPAEIAYIVDDADADVIVVDQPLAPLVAAVGQFTDRLQRVVVVGEAGEGQESLADLLAEPAGDFEAPDVAEDTTCLIMYTSGTTGKPKGAMLDHVNMAAQALTCLRVNEIVTEDDVAFLTAPMFHIAGLGSIAPNFIVGIPTVMHPLGAFDPVALVDAWEREGATIVFNVPQQWQAICAVPGIRERDLNLRVISWGAAPASDSLLRTMSETFPDALNVAVFGQTELSPITCALRGEDALRKLGSVGRPIPTIETRIVDAELQDVAPGTVGEIVYRGPNLMKGYWRKPAETAAAFEGGWFHSGDLVRQDEDGFVWVVDRLKDMIISGGENVYCAEVENALYAHPKIVEVAVYGRADERWGEVPVAAVVLREGESLELAELKDWLGDRLARYKQPADVLFLDELPRNAAGKLNKISLRRNDHPVAVVSPGPT0008380_16079DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
AK018_01601429hypothetical proteinGTGCGACCGCTCGCCGTCTCGGCCGAGCGGATCGGCTCTGCCGCGATGCGCTGCGCGGCCCTGCTGCCGACGCTCGCCCGGTCCGGGACCGTCGTCGACCGCGCGGGCGGTGGTCCCGTCCTCGAGGTGTGCCCGGCGGCGTCCCTGGCGATCTGGGGGCTGCCGCACCGCGGGTACAAGGGTCGCGGCCCGGCGGCCCGCCAGGTGCGCGAGCGGCTCGTCGACGCGGTGGCGACCACGTTCCCCTGGCTCGACCTCGCGGGGTTCGCGCAGGACTGCCGCGACTCCGACGACGCCCTCGACGCCGTGCTGTGCGCCGTGATCGCGGGTCTCGCCCACCGCGGCCGGTGCGAGCGGGTGCCGGAGGAGCTGCGGGATACGGCGTCGCGCGAGGGGTGGATCGTGCTGCCGCTCGACGCGTCGGCCTGAMRPLAVSAERIGSAAMRCAALLPTLARSGTVVDRAGGGPVLEVCPAASLAIWGLPHRGYKGRGPAARQVRERLVDAVATTFPWLDLAGFAQDCRDSDDALDAVLCAVIAGLAHRGRCERVPEELRDTASREGWIVLPLDASANANANANANA
AK018_01602705gph_6Phosphoglycolate phosphataseATGAGCACTGAGCCCGGCACCGCCGCGCCGGTCCGCCCCGAGCTGGTCGTCCTCGACGTCAACGAGACCCTGTCCGACCTCGCACCCCTGGGCGAGGCCTTCGCCGACGTGGGCCTGCCCGCGCACGACACGGAGGCGTGGTTCGCCGGTGTGCTCCGGGACGCCTTCGCCCTCACCGTGCTCGGTGACAACCCGCGGTTCGCGGAGGTTGCCGACTCCGCCCTGCGGGCCCGCCTGGCGGCCGCCGGCAGCCCCGACCCTGCCGGCGGCGCCGGGCACGTCATGGCGCGCTTCGCCGCGCTCGGCACCCATCCCGACGTCGTGCCCGGACTCCTCGCCCTGGCGCGGCGGGGCTGCCGGCTGGTGACCCTCAGCAACGGGTCCGCGGACGTGGCCCGTGCGCTGCTCCGGGACACCCCGGCGGAGCGTGTCGTCGAGGACTGCCTCGCGGTCACCGACACGGAGGCATGGAAGCCCGACGCGCGCGCGTACGCCCACGCGCTGTCGACCACGGGCGTCGCCGCCGAGCACGCGATGCTCGTCGCCGTCCATCCCTGGGACGTCGAGGGGGCACGGCGGGCCGGTCTGCGGACCGCGTGGATCAACCGCACCGGAGCCGCCTACCCCGCTCACTTCGCCCCGGCCGACGTCGAGGCGGCCTCGCTCCTCGACCTGGCGGACGCGCTGGTCGTGCCGTCGCGGTGAMSTEPGTAAPVRPELVVLDVNETLSDLAPLGEAFADVGLPAHDTEAWFAGVLRDAFALTVLGDNPRFAEVADSALRARLAAAGSPDPAGGAGHVMARFAALGTHPDVVPGLLALARRGCRLVTLSNGSADVARALLRDTPAERVVEDCLAVTDTEAWKPDARAYAHALSTTGVAAEHAMLVAVHPWDVEGARRAGLRTAWINRTGAAYPAHFAPADVEAASLLDLADALVVPSRPGPT0006885_2089DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
AK018_016031020yedI_1COG2354Inner membrane protein YedIATGAGCGCAGGTCTGCTGGGGCTCCTGGACGACATCGCGGCGATCGCCAAGCTGGCGGCGGCCTCCCTGGACGACGTCGGCGCGGCGGCCGGGCGCGCGACGGCCAAGGCGGCCGGCGTGGTGGTCGACGACACGGCCGTCACGCCGCAGTACGTGCACGGGGTCGCCGCCGACCGGGAGCTGCCGATCGTCACGAAGATCGCCCGGGGGTCGATCCGCAACAAGGTCCTCGTCATCCTGCCGATCGCGCTGGTGCTCAGCGAGTGGCTGCCGTGGCTGCTGACCCCGATCCTCATGCTCGGCGGCACCTATCTCGCCTTCGAGGGTGCCGAGAAGATCTGGCGGCGCGTGCGCGGCCACACCGACCACCAGAAACCGGCCGCCGCCGTCGGCCCGGAGGCCGAGAAGACGCTCGTGGCCGGGGCGATCCGCACCGACCTCATCCTGTCCGCCGAGATCATGGTCATCGCCCTGGACGAGGTCGCCGACGAGGCATTCTGGGCGCGGCTGGCGATCCTGCTCGTGGTCGCCGTGGTGATCACGGTGATCGTCTACGGCGTGGTGGCGCTCATCGTGAAGATGGACGACGTCGGGCTCTCCCTCGCCCAGCGGGAGTCCGACGTCGCGCAGCGCGTCGGGCGTGCGCTGGTGACCGGCATGCCGAAGGTGCTGGCCGCGATCTCCGTCGTGGGCACGGTCGCGATGCTGTGGGTCGGCGGGCACATCCTGCTCGTCGGCGTCGACGAGCTCGGCTGGCACGGCCTGTACGACCTGGTCCACCACGGCGAGGAGGCGATCGCCGCGGCGGTGCCGGGGATCGGCGGGTTCCTCGCCTGGTGCTTCAACACGCTGTGCTCGGCGGTGATCGGGCTCGTCGTCGGGGCCGTGGCCGTGGCCGTGATGCACCTGCTGCCGTTCGGCCACGACGACGACCCGCGCGACGAGCCGGTCGGGCACGCTGCGGGAGCCGGCTCGGGCTCGGGCGGGACGGCGCACCCCGGTGGGGGCCGGCCCCGATGAMSAGLLGLLDDIAAIAKLAAASLDDVGAAAGRATAKAAGVVVDDTAVTPQYVHGVAADRELPIVTKIARGSIRNKVLVILPIALVLSEWLPWLLTPILMLGGTYLAFEGAEKIWRRVRGHTDHQKPAAAVGPEAEKTLVAGAIRTDLILSAEIMVIALDEVADEAFWARLAILLVVAVVITVIVYGVVALIVKMDDVGLSLAQRESDVAQRVGRALVTGMPKVLAAISVVGTVAMLWVGGHILLVGVDELGWHGLYDLVHHGEEAIAAAVPGIGGFLAWCFNTLCSAVIGLVVGAVAVAVMHLLPFGHDDDPRDEPVGHAAGAGSGSGGTAHPGGGRPRNANANANANA
AK018_016043147glnE_1Bifunctional glutamine synthetase adenylyltransferase/adenylyl-removing enzymeGTGAGCTCGACGACCTCCGGAACCGGTAGACCGCAGACCCCGACCCGGAGGCTGCTCCGGGCCGGGTTCGCCGACCTGACCCGCTCGGCGACGCTCTGGGACGACGCGGAGCTGCAGCGTCGCCTCCCCGCCGACGACGGCGGGGGAGACGCGGTGCTGCAGGCGCTCGGCGTCACGGCCGACCCCGACATGGCGCTGCTGCAGCTCGTGCGGCTGGCCGCCGTGCCCGCTGCCGAGCGGACCGTCGAGCGGCTGCTCGCCGCGGACACCCGGTCGGCCGACGGTGTCGCGCGCGGACGGCTGCTGGCGGTGCTCGGGGCGTCCTCGGCGCTCGGCGACGAGATCGTGCGGCGTCCGGCGCTGCTGGACGTGCTCGGCGACGGCGACGGCGGCCTCGGGGTCGACCCCGCCGACGTCCGGGCCGAGCTGCTGCGCGCCGTCGGCGCGGACCCCGACGCTGCCGCCCCGGTGGCCGCCGAGCAGGCGGTCGGCGACGCGGAGCCGGGCTGGCCCGACACCGACGCCCCCACCGCGACGGACGCCCTGCGGCGCGCCTACCGCGAGCGGCTGCTGCGCATCGCGGCCACCGACCTGACCGCCCCCGACCCGTCGGCGACCCTGCCCGACGTCGCCGCGGCGCTGGCCGACCTGGCCTCCGGGGCGCTGGAGGCCGCGCTGGCCGTCGCGCGCTCCCAGCTGCCCGACCACGGCGCCGGTGCCCGGCTGTCGGTCATCGGGATGGGCAAGACCGGCGGGCGCGAGCTGAACTACGTCTCCGACGTCGACGTCGTCTACGTGTGCGAGCCCGCCACCGGCGACGACGGCGAACCCGTGGTGGACGAGCCCACGGCCATGCGGACCGGGACCCAGCTCGCCACCCGGCTGCAGAAGGTCTGCGGCGGGACCTCGCTGGAGCCGGCCCTGTGGGAGGTCGACGCCGCCCTGCGTCCCGAGGGCAAGCAGGGGCCGCTGGTGCGGTCCCTGGAGAGCCACGTCGCCTACTACGAGCGCTGGGCCGAGACCTGGGAGTTCCAGGCCCTGCTCAAGGCCCGCCCGGTCGCCGGCGACGTCGCGCTCGGCACCGCCTACCGCGAGGCCCTCGACCCGTTCGTGTGGGCCGCCGCCAACCGGGACCACTTCGTCGAGGACGCCCAGGCGATGCGGCGCCGCGTGGAGGCGCACGTGCCCAACGCCGAGGCGGACCGGCAGATCAAGCTCGGCAAGGGCGGGCTGCGGGACGTGGAGTTCACCGTCCAGCTCCTGCAGCTCGTGCACGGACGCACCGACGACACGATCCACGCCGGCAACACCTTCGCGGCGCTCGCCGCGCTGGCCGCCGGGGGGTATGTGGGCCGCGAGCACGCCACGAAGATGAGCGCGTGCTACCGGTTCTCGCGGTCCCTGGAGCACCGGGTCCAGCTCTTCCGGCTCAAGCGCACCCACCTGCTGCCCACGGACGACGAGGACCTGCGGCGCCTGGCCCGGTCGCTGGGGATGCGCGGCCAGGGCGCCGACGACCTGCGCCGGCGGTGGCGGGACACCCGCCGCGAGGTGCGCGCCCTGCACGAGGCCGTCTTCTACCGCCCGCTGCTGCCGGCCTGGGCGCAGCTCTCGGAGGACGAGCTCTCGCTCGCCCCCGAGGCCGCGCGGGCCCGGTTCGCCGCGATCGGCTACCGCGACCCCGACGGCGCGATGCGGCACGTCGTCGCCCTCACCGAGGGCACCTCGCGCCGCGCCAAGCTGCAGCGCCAGCTCCTGCCGGTCATGCTCGGCTGGTTCGCCGAGGGCGCCGACCCGGACGCCGGACTGCTGGCCTTCCGCAAGCTGTCCGAGAACCTCGGGTCGACCCCCTGGTACCTGCGGCTGCTGCGCGACTCCGGCAACGCGGCCTACCACCTCGCCCAGCTGCTGTCGTCGTCGCGCTACCTCGCCGAGGCACTGTCCCGCTCGCCCGAGTCGGTGCAGTGGCTGGCCGACACCTCGCGGCTCGAGCCGCGCGGCCCGGAGCGGCTCGCCGCCGAGGCGGACGCCGTGCTGACCCGGTCGGACGACCCCGGGCCGGCGGCCACGAAGCTGCGGGCCCTGCGCCGTCGCGAGCTCGCCCGCACCGGCGCGGGCGAGGTGCTCGGCGTGCTCGACCCCGTCCAGGCGCAGGCCGCGATCTCCGACGCCGCGGACATGGTGCTCGTCGGCGGGCTGCGCGTGGCCGAGTACGCGGCACGCGCCGAGATGGGCCTCGGCCCCGACCCGGCGGCCAACCCGACGCGCATGCTCGTGGTCGCCATGGGGCGCCTCGGCGGCCGGGAGATGGGCTACGGCTCCGACGCGGACGTGATGTTCGTCCACGACCCGCTGCCCGGCGTCGCGGAGAAGCACGCCCACGACTTCGCCCTGCTGACCGCGCGGACGCTGCAGAAGATGCTCTCCGCCGTCGGGCCCGAGCCGTCGCTGCCGGTGGACGCCGACCTGCGTCCCGAGGGCCGCCAGGGCGCCCTGGTGCGCACGATGGCCTCCTACGCCGAGTACTACGAGCGCTGGTCCAGCGTGTGGGAGCAGCAGGCGCTGCTGCGGGCCCGGCCGGTGGCGGGCGCCGAGGGATCGGCGCGCGACCTCGCCGAGCGGTTCGCCGCGATCGTCGACCCGCTGCGCTACCCGTCCGGCGGGTTCTCCGAGCCCAAGCTGCGCGAGGTGCGGCGGATCAAGGCACGCGTCGAGTCCGAGCGGCTGCCGCGCGGCACCGACCCCAGCCGGCACCTGAAGCTGGGCCGCGGGGGAGTGGCCGACGTCGAGTGGACGGTGCAGCTGCTGCAGCTCCAGCACGCCCACGAGGTGCCCGGGCTGCGCACCACGGAGACGGTCTCCGCGCTGGCCGCGGCGCAGGAGGCCGGCCTGGTCGAGGCCGAGGACGCGGACTGCCTGCTCGAGGCGTGGCTGCTCGCCTCCCGGCTGCGGTCGGCGCTGGTGCTGTGGTCCGGCAAGGTCGGCGGCCCGCGCGCGGACGTCCTGCCGGCGGACGCCTGGGCGCTGAGCGGGCTGGCGCGGCTGCTCGGCGACGTGGACACCGGCCAGGAGCTGGAGGAGCTGTACCTGCGGCACGCCCGGCGGGCCCGCACCGTGATGGAGCGCCTCGTCTACGGCGAGGACTGAMSSTTSGTGRPQTPTRRLLRAGFADLTRSATLWDDAELQRRLPADDGGGDAVLQALGVTADPDMALLQLVRLAAVPAAERTVERLLAADTRSADGVARGRLLAVLGASSALGDEIVRRPALLDVLGDGDGGLGVDPADVRAELLRAVGADPDAAAPVAAEQAVGDAEPGWPDTDAPTATDALRRAYRERLLRIAATDLTAPDPSATLPDVAAALADLASGALEAALAVARSQLPDHGAGARLSVIGMGKTGGRELNYVSDVDVVYVCEPATGDDGEPVVDEPTAMRTGTQLATRLQKVCGGTSLEPALWEVDAALRPEGKQGPLVRSLESHVAYYERWAETWEFQALLKARPVAGDVALGTAYREALDPFVWAAANRDHFVEDAQAMRRRVEAHVPNAEADRQIKLGKGGLRDVEFTVQLLQLVHGRTDDTIHAGNTFAALAALAAGGYVGREHATKMSACYRFSRSLEHRVQLFRLKRTHLLPTDDEDLRRLARSLGMRGQGADDLRRRWRDTRREVRALHEAVFYRPLLPAWAQLSEDELSLAPEAARARFAAIGYRDPDGAMRHVVALTEGTSRRAKLQRQLLPVMLGWFAEGADPDAGLLAFRKLSENLGSTPWYLRLLRDSGNAAYHLAQLLSSSRYLAEALSRSPESVQWLADTSRLEPRGPERLAAEADAVLTRSDDPGPAATKLRALRRRELARTGAGEVLGVLDPVQAQAAISDAADMVLVGGLRVAEYAARAEMGLGPDPAANPTRMLVVAMGRLGGREMGYGSDADVMFVHDPLPGVAEKHAHDFALLTARTLQKMLSAVGPEPSLPVDADLRPEGRQGALVRTMASYAEYYERWSSVWEQQALLRARPVAGAEGSARDLAERFAAIVDPLRYPSGGFSEPKLREVRRIKARVESERLPRGTDPSRHLKLGRGGVADVEWTVQLLQLQHAHEVPGLRTTETVSALAAAQEAGLVEAEDADCLLEAWLLASRLRSALVLWSGKVGGPRADVLPADAWALSGLARLLGDVDTGQELEELYLRHARRARTVMERLVYGEDPGPT0000655_210DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000655-glnE-K00982NANA
AK018_016051338glnA_2COG0174Glutamine synthetaseATGGACAGGCAGCAGGAGTTCGTGCTTCGCACGGTCGAGGAGCGCGACATCCGCTTCATCCGACTCTGGTTCACCGACGTGCTGGGGGTGCTCAAGTCCGTGGCGGTGGCGCCGGCGGAGCTCGAGCAGGCCTTCGTCGAGGGCATCGGCTTCGACGGCAGCGCGATCGAGGGTCTGACCCGGGTCTACGAGGCGGACATGATCGCCAAGCCCGACCCCACGACGTTCCAGGTGCTGCCGTGGCGCGGCGAGCGCCACGGCACCGGTCGCATGTTCTGCGACCTGCTCACCCCCGAGGGCGAGCCGTCGCGCGCCGACTCGCGCAACGTGCTCAAGCGCACGCTGGCCAAGGCCGGCGACAAGGGGTTCACCTTCTACACCCACCCCGAGGTCGAGTTCTACCTCTTCAACCAGATGGCTTCCGCGGAGGGCCCCCTGGTGCCGGTCGACGAGGGCGGCTACTTCGACCACCTCGCCCGCGGCAGCACGCACGACTTCCGCCGCGCGGCGATCTCGATGCTCGAGTCGATGGGCATCTCGGTGGAGTTCTCCCACCACGAGGCCGGTCCGGGGCAGAACGAGATCGACCTGCGCTACGCCGACGCGCTGACCACCGCGGACAACCTCATGACCTTCCGCACCGTGGTCAAGGAGGTCGCGCTCGAGCAGGGCGTCTTCGCCTCCTTCATGCCGAAGCCGTTCGCCGACCAGCCGGGTTCGGGCATGCACACCCACATGTCGCTGTTCGAGGAGGACCACAACGCCTTCCACGAGCCGGGTGCGCAGTTCGAGCTGTCCAAGACCGGCCGGCAGTTCATCGCGGGCCTGCTCGTGCACGCCGGCGAGATCACCGCGGTGACGAACCAGCACGTGAACTCCTACAAGCGGCTGTGGGGCGGCGCCGAGGCGCCGAGCTACATCTGCTGGGGGCACAACAACCGCTCGGCCCTGGTGCGCGTCCCGATGTACAAGCCGGGCAAGGGCAACTCCTCGCGGATCGAGTACCGGGCGCTGGACTCGGCGACGAACCCCTACCTCGCGTTCGCGGTGCTGCTGGCCGCCGGGATGAAGGGCATCGAGGAGGGGTACGAGCTGCCCGAGGCCACCGAGGACGACGTCTGGGAGCTCACCGGGGCGGAGCGCCGCGCGCTCGGCATCGCGCCGCTGCCGGAGTCGCTCGACGAGGCCGTCGAGCTGATGGAGTCCTCCGAGCTCGTGGCCGAGACCCTCGGCGAGCACGTGTTCGACTACGTGCTGAAGAACAAGCGCAACGAGTGGGACGCCTACCGCTCCCAGGTCACCCCCTACGAGCTCAAGGCCTCGCTGCAGTTCCTCTGAMDRQQEFVLRTVEERDIRFIRLWFTDVLGVLKSVAVAPAELEQAFVEGIGFDGSAIEGLTRVYEADMIAKPDPTTFQVLPWRGERHGTGRMFCDLLTPEGEPSRADSRNVLKRTLAKAGDKGFTFYTHPEVEFYLFNQMASAEGPLVPVDEGGYFDHLARGSTHDFRRAAISMLESMGISVEFSHHEAGPGQNEIDLRYADALTTADNLMTFRTVVKEVALEQGVFASFMPKPFADQPGSGMHTHMSLFEEDHNAFHEPGAQFELSKTGRQFIAGLLVHAGEITAVTNQHVNSYKRLWGGAEAPSYICWGHNNRSALVRVPMYKPGKGNSSRIEYRALDSATNPYLAFAVLLAAGMKGIEEGYELPEATEDDVWELTGAERRALGIAPLPESLDEAVELMESSELVAETLGEHVFDYVLKNKRNEWDAYRSQVTPYELKASLQFLPGPT0000645_7904DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
AK018_01606900panB_1COG04133-methyl-2-oxobutanoate hydroxymethyltransferaseATGGAACCAGCAGGCCACAACCCCTCGGCCACCACCGCTGACAACTCCGCTGTGAGGTCGGTCACCGGCGACGACGCCCCGGCCGGTATCGCCGGCGGCGCCCGCCGCGTCCGCGTCCACCACCTGCAGCGCGCGAAGGAGCGCGGCGAGCGCATCACGATGCTCACCGCCTACGACGCCACGACGGCCGCGATCCTCGACGCCGCCGGCGTCGACACCCTGCTCGTGGGCGACTCGATCGGCAACACGATGCTCGGGCACGCCACCACCCTGCCGGTGACCCTGGACGACATGGTCCGGGCCGGCCGCGCGGTGGCCTCGGCGACGCGGCACGCGTGGGTCGTCGTCGACCTGCCGTTCGGCAGCTACGAGGCCGGTCCGGAGCAGGCCCTGGCCTCGGCGGTGCGGGTGATGAAGGAGACCGGTGCCTCGGCGGTGAAGCTCGAGGGCGGACGGCGTTCGGCGGCGCAGATCCGCGCGATCACCGACGCCGGGATCCCCGTGGTCGGTCACCTCGGTTACACCCCGCAGTCGGAGAACGTCCTCGGCGGCCCCCGCGTGCAGGGCCGCGGGGACGACTCGGCCGAGGAGCTGAGCCAGGACGCCCTCGCCGTCCAGGAGGCCGGCGCCGTGGCGGTCGTGCTGGAGATGGTGCCGCGCGAGGTCGCGGCCCGCATCACCGAGTTCCTCGTCATCCCCACGATCGGCATCGGCGCCGGTCCGGAGGTCGACGGCCAGGTGCTCGTGTGGACGGACATGGCGGGGATGACCGACTGGTCCCCGCGCTTCGCCCGCCGCTACGCCGAGCTCGGCCGGGCGCTGCAGCAGGCGGCGGCCGACTTCGCCGCCGAGGTCCGCGACGGCGCCTTCCCCGCGGACGAGCACACCTTCGACCAGTGAMEPAGHNPSATTADNSAVRSVTGDDAPAGIAGGARRVRVHHLQRAKERGERITMLTAYDATTAAILDAAGVDTLLVGDSIGNTMLGHATTLPVTLDDMVRAGRAVASATRHAWVVVDLPFGSYEAGPEQALASAVRVMKETGASAVKLEGGRRSAAQIRAITDAGIPVVGHLGYTPQSENVLGGPRVQGRGDDSAEELSQDALAVQEAGAVAVVLEMVPREVAARITEFLVIPTIGIGAGPEVDGQVLVWTDMAGMTDWSPRFARRYAELGRALQQAAADFAAEVRDGAFPADEHTFDQPGPT0008740_366DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008740-panB-K00606NANA
AK018_01607198hypothetical proteinATGAGCGAGTACAGCACCGGTCGCGCGCAGTATTGGTACAACACCGAGACCGGGCAGGTGGAGACCTCGACGGAGAAGTCGAGCTGGACCCACCTGCTGGGGCCCTACCCGACCCGCGAGGCCGCCGAGCACGCCCTGGAGAACGCCGAGCGCCGCAACGAGGCGTGGGACGCCGAGGACGAGGACTGGCGGCGCTGAMSEYSTGRAQYWYNTETGQVETSTEKSSWTHLLGPYPTREAAEHALENAERRNEAWDAEDEDWRRNANANANANA
AK018_01608774ppgK_1COG1940Polyphosphate glucokinaseATGGGGTCCATGGCTGAGCAGAACGACCATCAGGTGGCCTTCGGCATCGACATCGGCGGTTCGGGCATCAAGGGCGCTCCCGTGGACCTGGCCACGGGTGAGTTCGCCGCCGACCGGCTGCGGATCCCCACCCCCGACAAGTCCACCCCGGAGGCGGTCGTCGAGGTGCTCGCCGAGCTCGTCGGCAGCTTCGACCTGCCCGACGACGCACCGATCGGCGTCGCGTTCCCGGCGCCGCTGGACCACGGGGTCGTGCGGTTCATCGCGAACCTGCACAAGTCCTGGAAGGGCGTCGACCTGCCCGCGCTGGTGCGCGAGGCGACCGGGCACGAGGTCGTGGCCGTCAACGACGCCGACGCCGCCGGCGTCGGCGAGGACCGTTACGGCGCGGCGGCGGGCAAGGACGGCGTGGTCCTGATGGCGACGCTGGGCACCGGGATCGGCTCGGCGCTCCTCGTGGACGGTGTGCTCGTGCCGAACACGGAGCTCGGCCACCTGGAGATCGACGGCCACGACGCCGAGACGAAGGCGTCCGAGGCGGCCCGCGACCGCGAGGACCTGTCGTGGGAGAAGTGGGCGAAGCGGCTGCAGCGCTACTTCTCCACGGTCGAGATGCTCCTGTCCCCCGACCTCGTCGTGGTCGGCGGCGGCGTGAGCAAGCACCACAAGAAGTTCCTGCCGCTGCTCGACCTGCGCGCCGAGATCGTCCCGGCCACCCTGCGCAACCGGGCCGGGATCGTCGGCGCGGCCTCCCTCGCGGCCCGCCCGCACTGAMGSMAEQNDHQVAFGIDIGGSGIKGAPVDLATGEFAADRLRIPTPDKSTPEAVVEVLAELVGSFDLPDDAPIGVAFPAPLDHGVVRFIANLHKSWKGVDLPALVREATGHEVVAVNDADAAGVGEDRYGAAAGKDGVVLMATLGTGIGSALLVDGVLVPNTELGHLEIDGHDAETKASEAARDREDLSWEKWAKRLQRYFSTVEMLLSPDLVVVGGGVSKHHKKFLPLLDLRAEIVPATLRNRAGIVGAASLAARPHPGPT0017750_521DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017750-ppgK-K00886NANA
AK018_01609324hypothetical proteinGTGACCCTCACGCATGAGGTTCGGGCCGGTGGGATCGTCTTGAACGAGGCTCCCGAGGCCAGTGTGGTGACCCTGTGGGGCGAGATCGACATCGCCCTGCGCGACGAAGCCTCGGCCGCGCTGGCCGGGGCGTTCCAGCGAGACCTGCCCGTGGTCGTGGACGCCTCCGAGGTGACCTTCCTCGACTCCGCGGGCATCGCCTTCCTCGTCCAGCTCTGCCGCATCGGGCAGGACGAGGGGCTCTCGGTCACGTTGCACGACCCGCCGTCCGTCGTCAGCAGGGCGCTGGGCACGCTGCACCTGCACGTGCCCGTCGCGGGCTGAMTLTHEVRAGGIVLNEAPEASVVTLWGEIDIALRDEASAALAGAFQRDLPVVVDASEVTFLDSAGIAFLVQLCRIGQDEGLSVTLHDPPSVVSRALGTLHLHVPVAGPGPT0014350_2778DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
AK018_01610540hypothetical proteinGTGCTGGGCACCTCGCAGGCCGGGCGGTGCCAGTGCCAGCGCCAGGTGCTCGGCGACCGGGACTGGTGGTTCATGCCCCTCGAGGAGCGTCGGCTCCGGCTGGCCGAGCTGACCTGCGCCGGCGACCCGGACTCGCCGGTGACCAGCGGCGTCGTGCTGTACGTCGACGAGGACCCGGCCGGCTGGGTCGCCGTCGGTCCACGACCCACCTACCGCCGCTACTACGGGCGCAGCCCGGTGGCCTGGCGCGGCCGTCACGAGGACCGCGACGACGACGGCGTGTGGCTCGCGGCCTGCTTCGTCGTCCGCGCGGGGTTCCGGGGCCAGGGGCTGATGTACGAGCTGGCGCGCTGCGCCGTCGACAGGGCGCGGGCCCGGGGTGCCCGGGCGCTGGAGGGGTATCCGATCGTCGCTGCGGACGGTGGCGAGGTGATCTGGGACGAGGCGAGCGTCGGCGTGCCGCAGGTGTTCGCGGCGGCGGGCCTGGACGAGGTCGCGGCGCCGACGTCGCGCCGCCGGGTGATGCGGATCGAGCTCTGAMLGTSQAGRCQCQRQVLGDRDWWFMPLEERRLRLAELTCAGDPDSPVTSGVVLYVDEDPAGWVAVGPRPTYRRYYGRSPVAWRGRHEDRDDDGVWLAACFVVRAGFRGQGLMYELARCAVDRARARGARALEGYPIVAADGGEVIWDEASVGVPQVFAAAGLDEVAAPTSRRRVMRIELNANANANANA
AK018_01612384putative protein.1ATGGCGCAGGTGAAGATCTACGGGAACCGGACCGTCTGGGGCGATCGCCGCGGGGAGGTGTCCGACGCCGTGCACCAGGCGCTGGTGGGGGCCTGGCGGATCCCCGAGGACAAGAGGTTCCACCGGTTCCTGCTGCTCGAGGACGGCGACCTGGTCGCGCCGCGGTCGGCGGCGTATCTCGTGATCGAGGTCGTGTGCTTCTCCGGGCGGTCCACCACCGCCAAGAGGGCGCTGGTGCGGGCGATGTACGACGACGTCGCCCCGGCCCTGGGGCTCGCGGACGACGACCTGGAGGTCGTGATCCTCGAGAGCCGGCCGGAGAACTGGGGGATCCGGGGGCGGTCGGCCGACGAGCTGGTCCTGACGTACCCGGTGGAGGTCTGAMAQVKIYGNRTVWGDRRGEVSDAVHQALVGAWRIPEDKRFHRFLLLEDGDLVAPRSAAYLVIEVVCFSGRSTTAKRALVRAMYDDVAPALGLADDDLEVVILESRPENWGIRGRSADELVLTYPVEVNANANANANA
AK018_01613834hypothetical proteinGTGCTGATCTGCCTGCCGCCCTCCGAGGGCAAGACCTCCGCGCCCGACGGCGGCGCCCCCGTCGACCTGGCCGCGCTCACGGCCCCGGGCCTCACCGCGCAGCGCGAGACCGTCCTGGACGCCCTCGTCGACGCCAGCGCCCGCGAGGACGCCACCGCCGTGCTCAAGGTCGGCGCGAGCCTGGCCGACGAGGGCGCCCGGAACACCCGGCTGCGCTCCGCCCCCGCGGCCCCGGCGACCGAGGTCTACACCGGCGTCCTGTACGCCGCGGCCGGTCTCGGGGACCTGTCGGGAGAGGCGGCGGCCCGGGCGGCCGCCGACGTCCTGGTCTTCTCCGGGCTGTGGGGCGTCGTCGCCCCGACCGACCGGATCCCCGCCTACCGGCTCTCCATGGGCGTCTCCCTGCCCGGCGTCGGCGGGCTGGCCGCCGCGTGGCGGCCCCACCTGGAGGCCGCCCTGGCCGAGCGGGCCGCCGGGGACGTCGTCGTCGACTGCCGCTCGGCGGCCTACGTCTCCGCCTGGAAGCCCGCCACCACCGGCGACGGCGCGGCGGACTGGGTCACGATCCGCGTGGTGCGCGAGACCGACGGCGTGCGCACCGTCGTCTCGCACCACGCCAAGCACACGCGCGGGGTGCTGACCGGCCACCTGCTGCGCCGCCCGGGGCCGCCCCCGACGTCGGCGCCCGAGCTGCTGGCGGCCGCCCGCGAGCTGGACGGCACGGTGATCGGCACCGAGGTCGGCACCGGCCTGAGCTACCGCATGCTGGCGGCCGAGCTGCACGAGGCCACCGGACCGCGCCGCCCGCACACGCTGGAGCTCGTCATCTCCTGAMLICLPPSEGKTSAPDGGAPVDLAALTAPGLTAQRETVLDALVDASAREDATAVLKVGASLADEGARNTRLRSAPAAPATEVYTGVLYAAAGLGDLSGEAAARAAADVLVFSGLWGVVAPTDRIPAYRLSMGVSLPGVGGLAAAWRPHLEAALAERAAGDVVVDCRSAAYVSAWKPATTGDGAADWVTIRVVRETDGVRTVVSHHAKHTRGVLTGHLLRRPGPPPTSAPELLAAARELDGTVIGTEVGTGLSYRMLAAELHEATGPRRPHTLELVISNANANANANA
AK018_01614327hypothetical proteinATGGCGTACGACGAGGAGCTGGCCGACCGGGTCCGGGAGTCCCTGTCCCGCCGCGAGGGCCTCAGCGAGCGGAAGATGTTCGGCGGGATCGCGTTCATGCTGTGGGGGAACATGGCGGCCGGGGTCCTGCGGGACGAGCTGATGGTGCGCGTGGGCCCGGACGGGTACGACGCGGCGCTGGCCGACGGGGCCGCCCCGATGACGATGGGCGAGCGGACGATGGGCGGCTTCGTGACGGTGGGCGCCGACCAGGTCGCCGACCCGTCGGCACTGGACGCCTGGGTCGCCCGGGGCGCCGACCACGCCGCCGCGCTACCGCCGAAGTGAMAYDEELADRVRESLSRREGLSERKMFGGIAFMLWGNMAAGVLRDELMVRVGPDGYDAALADGAAPMTMGERTMGGFVTVGADQVADPSALDAWVARGADHAAALPPKNANANANANA
AK018_01615684COG0328Bifunctional proteinATGCGCAGACCCGCCTCCGGAGCCCTGGCCCGCTACGACGGCGCGGTGCCGGCGACCCTCGTCCTGGTCCGGCACGGCGTGACGCCCTTGACCGAGGTCGGCGCGCTGTCCGGCGGCGACGTACCCGGTCCGTCCCTGACCACGGTCGGACGGCGTCAGGCGGCCCAGGCGGCGGACGCCGTCTTCCGGCTGGGCACCGAGCGGTGGGCCGACCTCGCACGCCCCGAGCTGCTGGTGGCCTCGCCGATGGTGCGCACCCAGGAGACGGCCGCGGCCATCGGTCGCCGGCTGGGCGTGCACGTGGCGACGGACGACCGCTTCGCCGAGGTGCGGTTCGGGGCCTGGGAGTCGTTGACCCCGCAGCAGGTCGAGGAGTCCTGGCCGGGCGACCTGGCCAAGTGGGTCACGAGCGGTTCCTTCGCCCCGCCGGACGGGGAGTCCTACGCGGACCTGGGCGAGCGGGTCGGTCCGGCCGTCGACGAGCTGGCCGCCGGGACGGTCGGTCGCACCGCGGTCGTCGTCGCGCACGCCGCGGTGATCCGCTCCGTGGTCGGACGGGCGCTGGACGCGCCGCCGGCCGGGTGGGGACGGCTCCGGGTGCCCCCGTGCTCGCTGTCGATCGTGCGCCTCTGGGCCGACGGCGACCGCGAGGTCACCGCCGTCGGGCACCCCGCCGCGGACTGAMRRPASGALARYDGAVPATLVLVRHGVTPLTEVGALSGGDVPGPSLTTVGRRQAAQAADAVFRLGTERWADLARPELLVASPMVRTQETAAAIGRRLGVHVATDDRFAEVRFGAWESLTPQQVEESWPGDLAKWVTSGSFAPPDGESYADLGERVGPAVDELAAGTVGRTAVVVAHAAVIRSVVGRALDAPPAGWGRLRVPPCSLSIVRLWADGDREVTAVGHPAADPGPT0004650_145DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004650-cobC|phpB-K02226NANA
AK018_01616741COG1579putative proteinATGGCTACCGCACCCGTCGAGGACCAGCGTCGTCTGCTCGAGGTCCAGGCGCTGGACACCAAGCTCCAGCAGCTCGCGCACCAGCGCCGCAAGCACCCCTCGCTGACCACCCTCGCCGAGCTCGACGACCGGCTCGCGGACCTGCACTCCTCGCTCGTCGACTCGCGGACCGCCGTGGCGGACCTCGAGCGCGAGGTCACCAAGGCCGAGACCGACGTCGAGCAGGTGCGCACGCGCGCCACCAAGGACCAGCAGCGGCTCGACTCGGGCGCGCTCGGTGCCAAGGACGCCCAGGCCGTGGTGAGCGAGCTCGAGTCGCTCGCCCGCCGCCAGAACGTCCTGGAGGAGGCCGAGCTGGAGATCATGGAACGGCTCGAGGCCCACCAGGAGTCGCTGGCCCAGGTGGAGGCCGCCCACGGCGAGCTGGTCGCGGCCCAGGAGAAGGCGGCCGGGGAGCGCGACGCCGCGTTCGCCGAGATCGACGCCGAGGCGCGCGAGGTCAAGGCTGAGCGGGCCCGCCTCGCGGACGGCCTCGACGCCGGTCTGGTGACCCTGTACGACCGCCTGCGCAGCCAGCTCGGCGGGCTGGGCGCGGCCGCCCTGCGGGGCAACCGCTGCGAGGGCTGCCGCCTGGAGCTCAACCCCGGCGACCTGGCCGCGGCGCGCGGCGCGGCCCCCGAGCAGGTGGTGCGCTGCGAGGAGTGCGGCCGGATCCTCGTGCGCGAACCCGACGGCGCCTGAMATAPVEDQRRLLEVQALDTKLQQLAHQRRKHPSLTTLAELDDRLADLHSSLVDSRTAVADLEREVTKAETDVEQVRTRATKDQQRLDSGALGAKDAQAVVSELESLARRQNVLEEAELEIMERLEAHQESLAQVEAAHGELVAAQEKAAGERDAAFAEIDAEAREVKAERARLADGLDAGLVTLYDRLRSQLGGLGAAALRGNRCEGCRLELNPGDLAAARGAAPEQVVRCEECGRILVREPDGANANANANANA
AK018_01617873hypothetical proteinATGAACGCTGCACCGCCCACGCTGGCCGACGTCGTCTCCGTCCTGGAGGACCTGTACCCGCCGTCCACGGCCGAGGGGTGGGACGCGGTCGGGCTGGTCACGGGCGACCCGTCCCGGCCGGTGCGCAAGGTGCTGTTCGCCGTGGACCCGGTGGCCGACGTCGTCGCCGAGGCTGTCGACTGGGGAGCGGACCTCGTGGTCACCCACCACCCGCTGTTCCTGCGGGGCGTGCACTCGGTGGCGGCCACCACGTTCAAGGGTGCCGTGGTGCACCGGCTCCTCACCGCCGGGTGCGGCCTCTACGTGGCGCACACCAACGCCGACTCCGCCCCCCGCGGGGTCGCGGACGCCCTGGCCGACCTGGTCGGGCTGACCGACCGGCGTCCGCTCGTGGCGCACGTCGAGGACGTCGACCGCGGCCTGGGCCGGGTCGGCCGGCTGGACCACCCGACGACCCTGCGCGAGTTCGCCGAGCGGGTCGCCCAGGTGCTGCCCGCCACCGCCCAGGGCGTGCGCGTGGCCGGGGACCTGGACGCGCCGGTGTCGACGGCGGCGGTGGTCGGCGGGTCCGGGGACTCCCTGTTCGACGCCGTGCGGGCCACGGCCGCCGACGTGTACGTCACCGCCGACCTGCGCCACCACCCGGCCTCCGAGCTGCGCGAGCGCGCCGCCTTCGAGTCGCCCGACCCCGAGCGGCCGCAGGCGGGCACCCCCTACCTGGTCGACGTGGCCCACTTCGCCTCGGAGTGGCCCTGGCTGGCCTACGCCGCCGCGGATCTCGCGACCGGACTGGGAGACGGTACGGTGACCACCAAGGTGAGCACTCTGGTCACCGACCCGTGGACGCACCGTCTCGGGAGCCCGGAGCGCTGAMNAAPPTLADVVSVLEDLYPPSTAEGWDAVGLVTGDPSRPVRKVLFAVDPVADVVAEAVDWGADLVVTHHPLFLRGVHSVAATTFKGAVVHRLLTAGCGLYVAHTNADSAPRGVADALADLVGLTDRRPLVAHVEDVDRGLGRVGRLDHPTTLREFAERVAQVLPATAQGVRVAGDLDAPVSTAAVVGGSGDSLFDAVRATAADVYVTADLRHHPASELRERAAFESPDPERPQAGTPYLVDVAHFASEWPWLAYAAADLATGLGDGTVTTKVSTLVTDPWTHRLGSPERNANANANANA
AK018_016181419xylE_2D-xylose-proton symporterATGTCCGGCACGACTCAGACCCATGAACAGGGTTTCCACGCAGCACGCGTGATCCAGCTCGCGGTCACCGCGGCGCTGGGCGGTTTCCTCTTCGGGTTCGACACGGCGGTCATCAACGGCGCCGTCACACCCATGCAGGAGGACTTCGGCATGAACGCCGGCGTGACCGGGTTCGTCGTCTCCTCCGCCCTGCTCGGCTGCATGGTCGGGGCGTACTTCGCCGGGCGGCTGTCCGACAAGATCGGCCGCGTGCGCGTGATGGTGATCGCCTCGGCGCTGTTCACGATCTCCGCCGTCGGTTCGACGTTCGCGTTCGGGCCCGTGGACATGATCGTCTGGCGGGTCATCGGCGGCCTCGGTGTCGGCGCGGCGTCGGTGATCGCCCCGGCGTACATCGCCGAGATCTCGCCGGCGCACATCCGCGGCCGGCTCGGCTCGCTCCAGCAGATGGCGATCGTCACCGGCATCTTCGTGGCGCTGCTGAGCGACTACGCCATCGCGGCGGCCGCCGGCGGGGCCGACAACGAGCTGTGGTTCGGCCTGGCGGCCTGGCGGTGGATGTTCTTCACCGAGGTGATCCCGGCGGTCGTGTACGGTGCGCTCGCGCTGAGCATCCCCGAGTCGCCGCGCTTCCTCGTCCACCAGGGGCGGGAGGACGAGGCGCGCGAGGTGCTGTCCAGCGTGCTGACCGAGGGCGTCGACGAGCGCATCAGCGAGATCCGCCGCACGATCATCCGCGACCGGGCCACCTCGCTGCGCGACCTGGTCAAGCCCACCGGCGGCCTGCTGCCGATCGTGTGGATCGGCATCGCCCTGAGCGTGTTCCAGCAGTTCGTCGGGATCAACGTCATCTTCTACTACTCCTCGACGCTGTGGCAGGCGGTCGGGTTCACCGAGGACGACGCGCTGCAGCAGACCGTCATCACCTCGGTGACCAACATCGTGGTGACCGTCGTGGCGATCCTGCTCATCGACCGGATCGGCCGACGGCGGCTGCTCACCATCGGCTCGGCCGGGATGTTCGTCGCGCTGGGCACGATGACGGTGGTCTTCAGCCAGGCGCCCCTGGTCGCCAACGACGCCGGCGAGCTCGAGCCCGTGCTCAGCGACACCGGCGGCATCGTCGCCCTCGTCGCGGCCAACCTGTTCGTCGTCTTCTTCGGGATGTCGTGGGGGCCGGCGGTGTGGGTGCTGCTGGGCGAGATGTTCAACAACAAGATCCGCGGCACGGCGCTCGGCATCGCGGCGGCGGCGCAGTGGCTGGCGAACTTCGCCGTCTCCAGCTCGTTCCCGTCCATGGCGGAGATCGGCCTCTGGTTCGCCTACGGCTTCTACACGGTCGCGGCGCTCGCCTCGTTGTTCTTCGTCCTGCGCTTCGTGCCCGAGACGCGCGACAAGGAGCTCGAGGACATGGAGTGAMSGTTQTHEQGFHAARVIQLAVTAALGGFLFGFDTAVINGAVTPMQEDFGMNAGVTGFVVSSALLGCMVGAYFAGRLSDKIGRVRVMVIASALFTISAVGSTFAFGPVDMIVWRVIGGLGVGAASVIAPAYIAEISPAHIRGRLGSLQQMAIVTGIFVALLSDYAIAAAAGGADNELWFGLAAWRWMFFTEVIPAVVYGALALSIPESPRFLVHQGREDEAREVLSSVLTEGVDERISEIRRTIIRDRATSLRDLVKPTGGLLPIVWIGIALSVFQQFVGINVIFYYSSTLWQAVGFTEDDALQQTVITSVTNIVVTVVAILLIDRIGRRRLLTIGSAGMFVALGTMTVVFSQAPLVANDAGELEPVLSDTGGIVALVAANLFVVFFGMSWGPAVWVLLGEMFNNKIRGTALGIAAAAQWLANFAVSSSFPSMAEIGLWFAYGFYTVAALASLFFVLRFVPETRDKELEDMEPGPT0014440_1117DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_OTHER_SUGAR_TRANSPORT_RELATED_PROTEINS,PGPT0014440-hxt-K08139NANA
AK018_016191752hypothetical proteinGTGCACGTCCTCCTCACGCGACTCCCCGGCGGCCGGGTCCGGGTCCACCCGTCCGACGACGGCGCACCGGCCGACGCCGGTGCCGCGGCACCGAAGGACGTCGACGCCGACGCCGTCCCCGCCGTCGTGCTCCGGCTCGAGGAGACCGGCCACCCGCGGTGGACCTGGGACGACACCAACCGGTGGTACCCGGCGCTGCTGACCGCCGGCGTCCGGCTCGACCGCGCCCACGACCTGCGGCTCGCCCACCGCGTGCTGCGCACCTCGGAGCTCTCGCGCTCCACGGAGCTGGCCGGGGCCCCGCCCGGCCCGTGGGACGCCCTCGAGCCGACGGCGGCCGGGGGAGGGGGCGACACGTCCCTCGTCCGCGCACGGCAGCACGAGTCCCTGTTCGACCTCGACGACGTCGCGCCGGCCGCTCCGCCCTCCGACGGGGCGGACCCGCAGCGCGAGCTCGAGGTCCAGCGGGCCGCGGTCGTCGGCTCCTCCGACCCCGGCCGGCTGCGGCTGCTGCTGGCCGCCGAGTCCGCCGGGGCGCTCGCGGCCGCCGAGATGCACCACGCGGGGCTGCCCTGGCGCGCCGACGTCCACGACGCGATCCTCACCGAGGCCCTCGGACCCCGGCCGACGCCCGGGCAGCGCCCGGCCCGCCTGGAGGGGCTCGTGGGCGACGTCCGCGCCGCGCTGGACGCCCCGCCGACCCTCAACCCCGACTCCCACCCGGACCTGCTGCGGGCCCTGGAGTACGCGGGCGTCGGTGCCCGCAGCCTGCGCAAGGGGGAGCTCGAACGGATCGACCACCCCGTGGTCGCGCCGCTGCTGGAGTACAAGAGCCTGTACCGGCTGTGGACGGCCAACGGCTGGCAGTGGCTCGACCAGTGGGTCCACGGCGACCGGTTCCGCACCGACTACGTCGTGGCGGGCGTCGTCACCGGGCGCTGGTCCTCGACCGGCGGCGGCGCCCTGCAGCTGCCGAAGGGCGTGCGCGGGGCCGTGCGGGCCGACCCCGGCTGGGTGCTCGTCGTGGCCGACGCCGCCCAGCTCGAGCCGCGGGTGCTGGCCGCGATGGCGCACGACGAGGCGATGGCGCGTGCCGGGCGGGACGGCGACCTGTACGCGGGCATCGTGGCCTCCGGCGCCGTCGCCACCCGCGAGCACGCCAAGGTGGGCATGCTCGGCGCGCTGTACGGCGGGACCACCGGCGTCAGCGGGCAGGTGCTGCCGCGGCTGCGGCGCGCCTTCCCGCACGCGATGGGGCTGGTGGAGGACGCCGCGGCCACCGGTGAGGGCGGGGGCGTGGTGACCACCTGGCTGGGACGGTCCTCCCCACCGCCCGGCCAGGCCTGGGACGAGGCGCAGTCCGGGGCGCTCGGGGAGGGCGCCGCGGAGGACGCGGCGACCCTCGCGCGGTCCTCGGCCCGTGCGTGGGGCCGGTTCACGCGCAACTTCGTGGTCCAGGGCACCGCCGCGGAGTGGGCGGAGTGCTGGCTCGCCTCGATACGACGCCGGCTGTGGGCGCTCGGTACCGCCGGGCCCGCCGGTCGGGCGCCCGCGCCGTTCGCCGACCGTCCGCACCTGGTGTTCTTCGTCCACGACGAGGTCGTGGTGCACGCCCCGGCGGGGCTCGCCGACGCGGTGGCGCACGAGGTGCGCGAGGCCGCGGCCGAGGCCGGCCGGCTGCTGTTCGGCGACTTCCCGGTCGCCTTCCCGCTGACGGTCGCCGCCGTGGCGGCGTACGACGAGGCGAAGTAGMHVLLTRLPGGRVRVHPSDDGAPADAGAAAPKDVDADAVPAVVLRLEETGHPRWTWDDTNRWYPALLTAGVRLDRAHDLRLAHRVLRTSELSRSTELAGAPPGPWDALEPTAAGGGGDTSLVRARQHESLFDLDDVAPAAPPSDGADPQRELEVQRAAVVGSSDPGRLRLLLAAESAGALAAAEMHHAGLPWRADVHDAILTEALGPRPTPGQRPARLEGLVGDVRAALDAPPTLNPDSHPDLLRALEYAGVGARSLRKGELERIDHPVVAPLLEYKSLYRLWTANGWQWLDQWVHGDRFRTDYVVAGVVTGRWSSTGGGALQLPKGVRGAVRADPGWVLVVADAAQLEPRVLAAMAHDEAMARAGRDGDLYAGIVASGAVATREHAKVGMLGALYGGTTGVSGQVLPRLRRAFPHAMGLVEDAAATGEGGGVVTTWLGRSSPPPGQAWDEAQSGALGEGAAEDAATLARSSARAWGRFTRNFVVQGTAAEWAECWLASIRRRLWALGTAGPAGRAPAPFADRPHLVFFVHDEVVVHAPAGLADAVAHEVREAAAEAGRLLFGDFPVAFPLTVAAVAAYDEAKNANANANANA
AK018_016201698pknD_1Serine/threonine-protein kinase PknDGTGCCCGGCGTGACGCCCCCGGGACCGGCCGAGGAGGCGTCCGGCGGCCACGTGGTGCTCGGCGGGGCGTACGTGCTGGGCGACATCCTCGGCACCGGTGGCACCTACACGGTCTACGAGGCCTCCCGGGTCGGTGCGACCGGCACGGACGCGACCGGCACGGACGGGACCGCGGAGGACGCCGAGCCGCTGCTCATCAAGGTCCTGCACCCGCACCTGGTCGACGACGAACCCACCCGCGCGGCCCTGGCCCGCGAGATCGCCGCCTCCGACCAGGTCGACCACCCGGGCGTCGCCAAGGTCCTCGACACCGGTGAGGACGAGATCGCGGGCGCGACCGTCCCCTGGCTGCTCACCCGACGGCTGCCCGGGACCACCCTCGCCGAGCAGACGCCCTCGACGGGCCTGCCGTGGCCCGAGGCGCTCGGGGTCGCCGGCGGGCTGCTCGCGGCGCTCGCCGCCGTGCACGCCGCCGGGCTGGTGCACCGCGACGTGAGCCCGCGCAACGTGGTCGTCGACCGGCACCCGGACGGCACCGTCCAGGTCGGGCTGATCGACCTGGGCCTCACCGCCCCCGGCGGCCGGGACGGCGACGGCGGGACCGTCGTGGGCTCGGCGGCGTTCATGTCGCCCGAGCAGGCCCAGGGCAGGCCGCTCGACGCACGCAGCGACCTGTACTCCGTCGGGGCGCTGACCTACTTCGCCCTCACCGGGCACGCTCCGTACGAGCGCGCCGAGCCCGCCGACGTGCTGCGCGCCCACGTCGGGGCACCCGTGCCCGCGCCGTCGGCCCGCCGGGCCGGCGTGCCGACCTCCGTCGACCGGTTCGTCGCGCAGGCGATGGCCAAGGACCCGGACCGCCGGTTCACCGCCGCCGGCACCATGGCGGCCGCCGCCGCGTCGGTGCTGGGTCTCGCCGCGAGCGCCGCCGCGGGCCCGGGGGCGGACCCCGACCAGACGATGAGCCTCGCCGAGGTCGACGCGCAGGACCCGGACCGGACCGCCGCGCTGGGAGCCGCCGGCACGACGGCGGCGCTCGCCGCGGCAGCAGCGGCGGCGGCGAGCGACGCCGAGCTGCAGCGGACCCGGCAGCTCGGCGCGGTCGGCGCCGGAACGACGCCCGCCGACCCGGGCGCCGCGGCACCGGACGCCCCGCCGTCGTCCGCCCGCCGGTGGGTCCCGGTCGCGCTGGTGGCCCTCGTGCTGGCCGTCGCCGTCGGCGCCGTCGTGTCCTGGCCCCTGGGTGACGCGAACGGCGGACGCCCCGTGCCCGTCGTCACGGTCAGCCCCTCCCCGGCTGCGGACCGTTCGTCGCCCCCGCCCCCGGACGAGCCGACGACGGCACCGCCCGCCGCACCGGCACCCGAGCCCGAACCCGAACCCACTCAGGAGTCGTCGCCCAGCCCGTCGCCGAGCCCCACGCCGTCGGACGAGCCGTCGCCGGACCCGACGACGGCGTCGCCCACGGCACCGGAGCCGGACCCCACGGACGACACCACCACGGCACCGCCGCCGACGCCCGACCCGGGCCCCACGGACGACACCACCACGGCACCGCCGCCGACGCCCGACCCGGGCCCCACGGACGACACCACCACGGCACCGGCACCGGCGCCCGAGCCGACCGACGACACGCCCACGGCGCCGTCGGACGCCGGGGCCTCGCCCGCGCCGGGCGGGAGCACCCCCGCGCCCTGAMPGVTPPGPAEEASGGHVVLGGAYVLGDILGTGGTYTVYEASRVGATGTDATGTDGTAEDAEPLLIKVLHPHLVDDEPTRAALAREIAASDQVDHPGVAKVLDTGEDEIAGATVPWLLTRRLPGTTLAEQTPSTGLPWPEALGVAGGLLAALAAVHAAGLVHRDVSPRNVVVDRHPDGTVQVGLIDLGLTAPGGRDGDGGTVVGSAAFMSPEQAQGRPLDARSDLYSVGALTYFALTGHAPYERAEPADVLRAHVGAPVPAPSARRAGVPTSVDRFVAQAMAKDPDRRFTAAGTMAAAAASVLGLAASAAAGPGADPDQTMSLAEVDAQDPDRTAALGAAGTTAALAAAAAAAASDAELQRTRQLGAVGAGTTPADPGAAAPDAPPSSARRWVPVALVALVLAVAVGAVVSWPLGDANGGRPVPVVTVSPSPAADRSSPPPPDEPTTAPPAAPAPEPEPEPTQESSPSPSPSPTPSDEPSPDPTTASPTAPEPDPTDDTTTAPPPTPDPGPTDDTTTAPPPTPDPGPTDDTTTAPAPAPEPTDDTPTAPSDAGASPAPGGSTPAPNANANANANA
AK018_01621441A-adding tRNA nucleotidyltransferaseATGCGGGTGACAGAGACGTTGCGGCACAAGGGTGACGAGGTCGTCACCGTCACGCCGGGGGCGAGCGTGCGCGACCTCCTCGCGCTGCTCGCCGAGCACCGGATCGGGGCGGTCGTCGTGTCCGGCGACGGCACCCATGTCGACGGCATCGTCAGCGAGCGCGACGTGGTCCGTCGGCTGCACCACGACGGTGACGGGGTGCTCGACGCCTCCGTGGCGCAGCTCATGACGGTCGATGTGCACACCTGCGGGCCCGAGACGCCGTTGGACGATCTCATGGCCGTGATGACCGAGCGCCGGATCCGGCACGTGCCGGTCCTGGACGACGGCCGACTTGTCGGGATCGTCAGCATCGGCGACGTCGTCAAGCGCCGCATGGCCGAGGTGCAGGCCGAGCGCGACCAGCTCACCGACTACATCACCGGCGGCCGGGCGCACTGAMRVTETLRHKGDEVVTVTPGASVRDLLALLAEHRIGAVVVSGDGTHVDGIVSERDVVRRLHHDGDGVLDASVAQLMTVDVHTCGPETPLDDLMAVMTERRIRHVPVLDDGRLVGIVSIGDVVKRRMAEVQAERDQLTDYITGGRAHNANANANANA
AK018_016221416mcrA_1Mitomycin radical oxidaseATGACCGCGCTCACCACGATCGACGGCGGCACCGCACGGCTCGACACCGAGCTGGACGCCCTGGCCGCCGACCTGACCGGCACGCTGGTCCGGGCCGGGGACCCCGACTACGACACGTCCCGCGCGCTGTGGAACGCCGTGACCGACCGGCACCCGGCCGCGATCGTGCGGTGCGCCACCACCGAGGACGTGCGCCGCGCGGTGCTGCTGGCCGCCGAGCACCGCCTGCTCGTCGCGGTGCGCGCCGGCGGGCACAACGTCGCCGGCACCGCGGGCGTCGACGACGGGCTCGTCATCGATCTCGGGCAGATGCGCGACGTGTCGGTCGACCCCGGGAACAGGCTCGCCCGGGTCGCCGGCGGGGCGCGGCTCGGCGACCTGGACGCCGCCACCCAGGAGCACGCCCTCGCGGCCCCGGCCGGTGTCTTCTCCGACACGGGGATCGGCGGGCTGGGGCTGACCGGCGGCATCGGGTGGCTGCGCCGCCTGCTCGGGATGACGTGCGACAACATCGTCGCGGCGACGGTGGTCGCCGCGGACGGGACCGTCCACGAGGTCGACGAGGAGAACGACCCCGAGCTGCTGTGGGGTCTGCGCGGCGGGGGCGGAAACCTGGGGGTCGTCACCGAGCTGGTCGTGCGGCTGCACCCGGTCGGACCGGAGGTCTACGTCGGTGTGGTCGTCCACCGTGCCGACCGGGCCCTGGAGGTGCTGCACGCCTACCGGGACTGGTCCGCCGGCCTGCCCGACGAGGTCTCCTCCATGGCCGTCCTCGGGGCAGCACCCGAGGACGAGGCCATCCCCGACGAGCTGTCGGGACAGTCGTGCGTGATCGTGCTCGCCTGCGTGGCCGACCCCGACCACGGGGAGGAGCTGCTGGCGCCGATCCGCGGCCTGCCCGACCCGGCCGCCGACCTCAGCGGCCCGATGCCCTACGTCGACCTGCAGCAGTTCTTCGACGCCGACTACCCCGAGGGGATGCGGTACTACTGGCGCTCGGTGCACCTGCCCGAGCTCTCCGAGGAGGCGCTGCGGCGCAGCCTGGACCAGATGCACCGCCGGCCCTCGGCGCTGTCCACCATCGACCTGTGGCACCTGGGTGGCGCGATGTCCCGGGTGGGCGCCGAGGACACCGCGTTCGGCGACCGCAGCGCGGCCTACCTCGTGGGCATCGAGGCGAACTGGACCGAGCCGGGCGACGACGAGGCCAACATCCGGTGGGCACGGGGCTGCTCCGCCGACCTCGACGAGCTGTCCACGGGACGCGAGTACCTCAACTTCCCCGGTTTCCAGGAGGGCGGCCAGGAGACCCTGCGGGCGGCCCACGGCGAGGCGAACTACGCCCGGCTGCGTGCGCTCAAGCAGCGCATGGACCCGCAGAACCTCTTCCGGCTGCACCAGAACATCGCACCCTGAMTALTTIDGGTARLDTELDALAADLTGTLVRAGDPDYDTSRALWNAVTDRHPAAIVRCATTEDVRRAVLLAAEHRLLVAVRAGGHNVAGTAGVDDGLVIDLGQMRDVSVDPGNRLARVAGGARLGDLDAATQEHALAAPAGVFSDTGIGGLGLTGGIGWLRRLLGMTCDNIVAATVVAADGTVHEVDEENDPELLWGLRGGGGNLGVVTELVVRLHPVGPEVYVGVVVHRADRALEVLHAYRDWSAGLPDEVSSMAVLGAAPEDEAIPDELSGQSCVIVLACVADPDHGEELLAPIRGLPDPAADLSGPMPYVDLQQFFDADYPEGMRYYWRSVHLPELSEEALRRSLDQMHRRPSALSTIDLWHLGGAMSRVGAEDTAFGDRSAAYLVGIEANWTEPGDDEANIRWARGCSADLDELSTGREYLNFPGFQEGGQETLRAAHGEANYARLRALKQRMDPQNLFRLHQNIAPNANANANANA
AK018_01623885COG0589Universal stress protein/MSMEI_3859GTGATCGAGAAGAGCGAGATCTGGTCGCGCGGCGTGGTCGTCGGCGTGGACGGGTCCCCCGAGAGCTACCACGCGTTCGACTGGGCCCTGGCCGCCGCGGCGCGCCACCGCGCGACGCTGACCGTGACGCACGCCCGGACGGCGCCGGCCGGGCCCGTCAGCCCCGTGCCGGCCTACGACCCCGAGCAGCTGCGTGCCGAGGCCCAGCAGGTCGTGGACGACGCGCTCGGCAGGATCCGGCACGACCCGCAGGACATGCCGGAGGTGCGGTCCGCGGCCAGCATCGGTGCGCCCGACTCCGTGCTGACCGCGTACTCGCGCGACGTCGACCTGGTCGTCGTCGGGCGCCGCGGTGCGGCCGGCTCGCGGCACGCCCTGGGGTCGGTGTCCGCGGCGACCGCCGCGCACGCCCGGGGTCCGGTCGCGATCGTCCCCACCGGAGCCCAGGGGCCCACCCCGGAGCGGGTCGTGGTCGGCATCGGGTTCGACGACGACCCCACCGCGGCGCTCGACCTCGCGTTCTCCGAGGCGGACCGCGGCGGCTGCCCCGTCGTGCTGGTGCACGCCGTGCAGCCGGCGACGCAGGTCGCGCACGAGGCGGGACCTGTGCAGGACGAGGACGTCGAGGCCGCGCTGCGCGGGCTGGCCAGCCGCTGGACGACGACCTACCCCGAGGTCGAGTGCCTCCTGCGGACGCGGCCCGGGGACGCCGCGGAGGCGCTCCTGGACGAGGTGACGGCGTCGGACCTGCTCGTCCTCGGCGGGCACCGGCACCAGCGCTTCCTCGGGCGGCTGCTCGGCTCGGTCCCGGACGCGCTGCTGGGCGACGCCCCCTGCGTCGTCACCGTGGTGCACACCGACCGGCCGCACCCCCACGAGGACTGAMIEKSEIWSRGVVVGVDGSPESYHAFDWALAAAARHRATLTVTHARTAPAGPVSPVPAYDPEQLRAEAQQVVDDALGRIRHDPQDMPEVRSAASIGAPDSVLTAYSRDVDLVVVGRRGAAGSRHALGSVSAATAAHARGPVAIVPTGAQGPTPERVVVGIGFDDDPTAALDLAFSEADRGGCPVVLVHAVQPATQVAHEAGPVQDEDVEAALRGLASRWTTTYPEVECLLRTRPGDAAEALLDEVTASDLLVLGGHRHQRFLGRLLGSVPDALLGDAPCVVTVVHTDRPHPHEDNANANANANA
AK018_01624990adhACOG1064putative alcohol dehydrogenase AdhAGTGCGGGCCTGGACGACCGGTGACCGGGCCGGGAGCCTCACCCTGTCCGAGCTGCCCGTCCCGGAGCCGGCGGCGGACGAGGTTCTCGTGCGCGTCGAGGCCTCCGGGGTGTGCCGCACCGACCTGCACGTGGTCGACCGCGAGCTCGCCGTGCACCGGCCGCACGTCGTCCCCGGCCACCAGGTCGTGGGGACGGTCGAGGCCACCGGGTCCGCCGTCCGTCGGCTGCGCACGGGCGAGCGTGTCGGCGTCGCCTGGCTGCGCCGCACCTGCGGGGCCTGCCGCTGGTGCCGCGAGGGCCGCGAGAACCTCTGTCCCGACTCGGCCTACACCGGGTGGGACGCCGACGGTGGCTTCGCGGAGCACACCACCGTGCCCGAGGCCTTCGCCTACCCGCTGACCGCCGACCACGACCCCGTCACGACGGCGCCGCTGCTGTGCGCCGGCATCATCGGCTACCGCGCCCTGAGCCGGGCGAACCTGCCGCCCGGCGGGCGCCTCGGCATCTACGGGTTCGGCTCGAGCGCGCACCTCACCGCCCAGGTGGCGACCGCCCGCGGGGCCGAGCTGTTCGTCATGACCCGCGGCGAGCAGAACCGCGAGCTGGCGCGACGCGCCGGGGCCGCCTTCGTCGGCGGCGCCACCGACGTGCCGCCGGTGCGGGTCGACGCCGCGATCGTGTTCGCCCCGGCAGGCGAGCTGGTCCCCCTCGCGCTGCAGGCCACCGAGCGTGGCGGCACCGTCGCGCTGGCCGGCATCCACATGAGCGGGATCCCCGCGATGGAGTACACCCGCGACCTGTTCGACGAGCGCGACCTGCGCACGGTGACCGCCAACACGCGGGCGGACGGTGCCGCGCTGCTGCGGCTGGCCACCACGATGCGTCTGACGCCGGCCGTCACGCGGTACCCGTTCACCGCCGCCGACGCGGCCCTGGACGACCTGCGAGCAGGACGTGCCTCCGGCTCCCTGGTGCTCGCGCCGGCGTGAMRAWTTGDRAGSLTLSELPVPEPAADEVLVRVEASGVCRTDLHVVDRELAVHRPHVVPGHQVVGTVEATGSAVRRLRTGERVGVAWLRRTCGACRWCREGRENLCPDSAYTGWDADGGFAEHTTVPEAFAYPLTADHDPVTTAPLLCAGIIGYRALSRANLPPGGRLGIYGFGSSAHLTAQVATARGAELFVMTRGEQNRELARRAGAAFVGGATDVPPVRVDAAIVFAPAGELVPLALQATERGGTVALAGIHMSGIPAMEYTRDLFDERDLRTVTANTRADGAALLRLATTMRLTPAVTRYPFTAADAALDDLRAGRASGSLVLAPAPGPT0006365_2294DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953NANA
AK018_01625525hypothetical proteinATGTCCGCACTCGTGATCTACGAGACCAGCTTCGGCAACACCGCCCTGGTGGCGCGTGCCGTCGGGGACGGGATCGCCACCCGCATGCCGGTGCGCGTCCGCTCCGTCAGCAGCCTGGGCGACGACGAGGCCGACGGGGAGGACCTCGTCGTCGTCGGTGGCCCGACCCACGCCTTCGGCATGAGCCGGCCCCAGACACGGCACGACGCGCAGGAACGGCTGGGCGACCGCCCCTCCGACTACCCGGGCATCCGGGAGTGGATCGACCGTCTCTCACCGGACCGCGACCTGCGGCTGTACGCCACGTTCGACACGCGCGTCGAGAAGGTCCGCCACCTGCCCGGGTCGGCCGCGCACGCCGCGGCACGCGCGCTGCGGCACGACGGGCACCGCGTGGTGGACCGGGGGGCGTCGTTCTACGTCGCCGACACCGAGGGGCCGCTCCTGCCGCACGAGCGCGACCGGGCCCGCGAGTGGGGCGAACGGCTGGCCGTCCGCTCCCTGGAGATGCTGCAGCGCGCCTGAMSALVIYETSFGNTALVARAVGDGIATRMPVRVRSVSSLGDDEADGEDLVVVGGPTHAFGMSRPQTRHDAQERLGDRPSDYPGIREWIDRLSPDRDLRLYATFDTRVEKVRHLPGSAAHAAARALRHDGHRVVDRGASFYVADTEGPLLPHERDRAREWGERLAVRSLEMLQRANANANANANA
AK018_01626507hypothetical proteinATGGACGAGACGCACGAGATCCGACTGATCGAGTCCGTGGAGCAGCCCACCTTCGGGCTGCGGCAGATGGTGAGCCAGGAGGACGTGCCCGCGCTGTTCGCCCGGGTCCTGCCCCAGGTGGTCGCCGCCCTGGAGCACGGCGGCGTGCAGCCCGCCGGTCCGCCCTACGCCCGCTACCGCGGGCCCATGGCCGGGGGCTTCGACATCGAGATCGGGTTCCCGCTGGCCGAACCGGCCGACCTCACCGTGGCCGACCCCGGCCCCGGGAGGCCGGTCTCCGGCGTCCTGCCCGAGGCGCGCGTCGTGGAGACCCTCCACGACGGGGCCTACGACGGGCTGGCGGCGACCTACGCACGGCTGGAGACCTGGATGACCGAGCACGACGTGCATCCCCTGGACCAGTCGTGGGAGTTCTACGAGGCCGGACCCGAGTCGGACCCCGACCCGGCGACCTGGCGCACCCGGATCGTCATGCCGGTCAGCGGTCCGGCCGTCGAGGCCGGCTGAMDETHEIRLIESVEQPTFGLRQMVSQEDVPALFARVLPQVVAALEHGGVQPAGPPYARYRGPMAGGFDIEIGFPLAEPADLTVADPGPGRPVSGVLPEARVVETLHDGAYDGLAATYARLETWMTEHDVHPLDQSWEFYEAGPESDPDPATWRTRIVMPVSGPAVEAGNANANANANA
AK018_016271389COG1236RibonucleaseATGGGGAGGGTGGGGACAGCATCGGTCGCGCTGACGTTCCTCGGTGGTGCCGGGACCGTGACGGGGAGCCGTTTCCTGCTCGAGTCCGACGAGCGGCGGCTCCTGGTCGACTGCGGTCTCTACCAGGGCGAGCGGCGGTGGAGGCGGAGGAACTGGGACGCCTTCCCGGTCCCGCCGGAGACGATCGACGACGTGGTCCTGACGCACTGCCACCTGGACCACTGCGGCTTCCTCCCGGTCCTCGTGCGCGACGGCTACGAGGGGTCGATCCGGATGACCGAGGGGACGGCCGCGCTCACCGCGATCGTCCTGCGGGACAGCGCGAACCTGCAGGAGCGGGACGCGGACCTCGCGCGGCGCGGCGGGTGGTCCCGTCACCACCCGCCCCGGCCGCTCTACACGGTCGAGGACGCCGAACGCGCGATCGAGAGGTTCGAGACCGTGCCCTTCGACGTCGACGTCGACCTCGGGGGCGGGTCGAGCCTGCGACTCGTCCGGGCCGGTCACGTCCTGGGCTCGGCCAGCGTGCTGGCTCGGGTCGGGTCCGCCCGGGTCCTCGTCTCCGGGGACCTCGGCCGCACCGAGCACCCGGTGCTGCGACCACGCGCCGACCCGCCCGCGGCGCGCACGGTGGTGATCGAGTCCACCTACGGCGACCGCGAGCACCGTGAGCCGCCCCGCGCGCACGCGGCCTTCGCGGACGCCGTACGCCGCACCATCCGGCGGGGCGGCGTGGTCCTCGTGCCGGCGTTCGCCGTCGATCGCACGGAGCTGGTCCTGCACGCCCTGTCCACGATGGTCCGCGAGGGGCAGATCCCACCGGTCCCGGTCTTCGTCGACAGCCCCATGGCGCTGGCCGCCCTCGACGTCTACGGCCGTGCCGGGGTCGCCGGAGAGCTGCGTCCGGGGATGTCGGACCTCGTCGACCTCCCGTCGCTGCACGCGGCGCGGACCCCGGAGGAGTCGATGAGGCTCAACTCGCCGCGGCAGCCGTGCATCGTCGTCTCCGCCTCGGGCATGGCGTCCGGCGGCCGCGTGGTCCACCACCTGCGCCATCTGCTCCCGGACCGGCGCAACTGCGTGGTCCTGACCGGCTACCAGGCGATCGGCACCCGCGGCAGCATGCTGCGCGACGGTGCCCGCGAGGTGAAGATGATGGGCCGGTACGTGCCGGTGAACGCGGAGATCGTCGAGGACCAGGAGTTCTCCGTCCACGCCGACGCCGGCGAGCTGGTCGACTGGCTCCGGCAGATGCCCGATCCCCCCGAGGTCGTGTACGTGGTCCACGGCGAGGAACGCGCGTCGGCGGCACTGGCCGAGCGCATCCGTGACGAGGTCGGCTGTCCCGCCGTCGTCCCGCGCGCCGGCGAGAAGGTGCTCGTGGACTGAMGRVGTASVALTFLGGAGTVTGSRFLLESDERRLLVDCGLYQGERRWRRRNWDAFPVPPETIDDVVLTHCHLDHCGFLPVLVRDGYEGSIRMTEGTAALTAIVLRDSANLQERDADLARRGGWSRHHPPRPLYTVEDAERAIERFETVPFDVDVDLGGGSSLRLVRAGHVLGSASVLARVGSARVLVSGDLGRTEHPVLRPRADPPAARTVVIESTYGDREHREPPRAHAAFADAVRRTIRRGGVVLVPAFAVDRTELVLHALSTMVREGQIPPVPVFVDSPMALAALDVYGRAGVAGELRPGMSDLVDLPSLHAARTPEESMRLNSPRQPCIVVSASGMASGGRVVHHLRHLLPDRRNCVVLTGYQAIGTRGSMLRDGAREVKMMGRYVPVNAEIVEDQEFSVHADAGELVDWLRQMPDPPEVVYVVHGEERASAALAERIRDEVGCPAVVPRAGEKVLVDNANANANANA
AK018_016281032hypothetical proteinATGTTCAGCATGCCGTGGGACCTCGTGCCCAGCCTCGTCGCGCTGGCGGCCATGTCCGGGGTCATCGTCCTCGCGGGCGTGCGGCTGACCCGGGTCGCCGACACCCTGTCCGAGCGGACCGGCCTGGGCGACGCGGTCGGGGGTGCGCTGCTCCTCGGGGCGGTCACCTCCCTGCCCGGCCTGGTCACGGTGCTCACGGGGTCCCTCGGCGGCGACGCCGGCTTCGCGCTCGCCAACCCGGTCGGCGGGGTGGCGGTGCAGACCGTCTGGCTCGCGATCGCCGACCTGGTCTACCGCCGGGTCAACCTCGAGCACGCGGCGGCCTCCCTGCAGAACGTCCTGCAGTCGTTGATCCTCGTCGCCCTGCTGGCCGTGCCGGTGGTCGCCGCCGCCACGCCGGACCTGACGATCGGCTGGGTGCACTGGCTCACGCTGCTCATCCCGGTGCTCTACGGCTACGGGCTGGTGCTGCTGCGCCAGATGCACAAGGCGCCGATGTGGCAGCCCATCCGGACCGCGCAGACGGCGGACGACGACCAGGGCGACGGGGACGACGGCGTGGAGGACTCCCGCTCGACCCGGCGGCTGTGGGGGCTGCTGGCCGGGCTCGGGCTCGTCGTCGGCGTCGCGGGCTGGATCGTCGGCCGGGCAGGACTGTCCGTGGTCGAGGCGACCGGGCTCGACGGCGGGGTCGTCGGCTTCACCCTCACGACGGGGATCAGCTCCCTGCCCGAGCTCGTGGTGCTGGTGACCGCGGTCAGGATGGGCCAGCTCACCCTCGGTATCGGCAACGTCATCGGCGGCAACGTCTACGACATGCTCATGGTGTCCGTCGCCGACGCGGCGTACCTGCCCGGGTCCGTCTACACCGACGCGGGGTCGACCGGCCTGGTGCTGGTGGGCGGGACCCTGCTGATGACCGCCACGCTGGCCGCCGGGCTCATCGTGCGCGACCGGCGGGGGATCGGCTTCGAGGGCATCGCGATCCCGGCGATCTACGTCGGGACCGTGGCGCTCGCGGTCTGGGGCTGAMFSMPWDLVPSLVALAAMSGVIVLAGVRLTRVADTLSERTGLGDAVGGALLLGAVTSLPGLVTVLTGSLGGDAGFALANPVGGVAVQTVWLAIADLVYRRVNLEHAAASLQNVLQSLILVALLAVPVVAAATPDLTIGWVHWLTLLIPVLYGYGLVLLRQMHKAPMWQPIRTAQTADDDQGDGDDGVEDSRSTRRLWGLLAGLGLVVGVAGWIVGRAGLSVVEATGLDGGVVGFTLTTGISSLPELVVLVTAVRMGQLTLGIGNVIGGNVYDMLMVSVADAAYLPGSVYTDAGSTGLVLVGGTLLMTATLAAGLIVRDRRGIGFEGIAIPAIYVGTVALAVWGPGPT0014400_556DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0014400-yrbG-K07301NANA
AK018_01630468ahpE_1COG1225Alkyl hydroperoxide reductase EGTGGCCGACGGCGTCGTGCCGGCTGCCGACGCACCGGCACCCGACTTCACGCTGCCCGACACGCACGGCACCCCCACGCACCTGGCCGACCTGCGCGGCGAGCCGGTGCTCGTGGTGTTCTTCCCGTTCGCCTTCTCGGGGACCTGCACCGCGGAGCTCGGCGAGCTGCGCGACCACGCCGGCGAGTTCGAGTCCGCGGGCGTCCGGGTGCTGGCCGTGTCCACGGACCCGGTCTTCACGCTGAAGGCCTGGCAGGAGATCGAGGGCTTCGGCTTCGACCTGCTCAGCGACTTCTGGCCGCACGGCCGGGCCGCGCAGGCGTTCGGCGTCTTCGACGACTCCACCGGGCACGCGCTGCGAGGGTCGTTCCTCGTCGACGCCGACGGCATCGTGCGCTGGTCCGTGGTGCAGCCGCGCGGCGGCCGGCGCGACCTCGACGACTATCTCGCGGCGCTCTCGGAGGTCTGAMADGVVPAADAPAPDFTLPDTHGTPTHLADLRGEPVLVVFFPFAFSGTCTAELGELRDHAGEFESAGVRVLAVSTDPVFTLKAWQEIEGFGFDLLSDFWPHGRAAQAFGVFDDSTGHALRGSFLVDADGIVRWSVVQPRGGRRDLDDYLAALSEVPGPT0013145_90DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013145-ahpE-K24120NANA
AK018_01631429putative proteinATGACGGAAGGAACCAAGGTCCTCGTGGGACAGCAGGCGGACACCCTGGCGGCGCGCTTCGGGTTCACCACCGGTCAGGTCGTGCAGGAGTTCGGGTGGGACGACGACGTCGACGAGCCCCTGCGCGGGGCGATCGAGGCGGTGGTCGGCGACGAGCTCGTGGACGAGGACTTCGACGACGTGGTCGACGGCGTCATCATCTGGTGGCGCGAGGAGGACGGGGACCTGACGGACATGCTGGTCGACGTCCAGACGGCGCTCGACGACGGCGGGCAGATCTGGCTGCTCACCCGCAAGCCCGGCCGGGACGGCCACGTGGGCCACAGCGAGATCCAGGAGGCGTCGACCACCGCCGGCCTGCACGCGACGAGCACGTTCTCCGCGGGCGACGACTGGTCGGCCACGCGCCTCGCCTCGCGCGGTCGGTAGMTEGTKVLVGQQADTLAARFGFTTGQVVQEFGWDDDVDEPLRGAIEAVVGDELVDEDFDDVVDGVIIWWREEDGDLTDMLVDVQTALDDGGQIWLLTRKPGRDGHVGHSEIQEASTTAGLHATSTFSAGDDWSATRLASRGRNANANANANA
AK018_016322748aceE_1COG2609Pyruvate dehydrogenase E1 componentGTGGCTTCGTACGACGAGACCGGACCGCTGATCGACGGTCTGCTCAGCGCTGTGCCGGACATCGACCCGTCCGAGACCTCGGAGTGGGTGGAGTCCCTCGACGGGCTGATCGACGACAAGGGCGGCCCGCGCGCCCGCTACGTCATGCTCAACCTGCTGCGGCGTGCCCGCGAGCGCAACGTGCAGATCCCGACGTCGGTGGCCACGCCGTACGTCAACACCATCGGTGTGCACGAGGAGCCGTACTTCCCCGGCGACGAGACGATGGAGCGGCGCTACCGCTCCTGGATCCGCTGGAACGCCGCGGTGATGGTGACCCGCGCCCAGCGCCCGGAGATCTCGGTGGGTGGCCACATCTCCTCCTACGCCTCCGTGGCGACGCTGACCGAGGTCGGTCTCAACCACTTCTTCCGCGGCAAGGACCACCCGGGCGGCGGCGACCAGGTCTACTTCCAGGGGCACTCCTCCCCCGGCCAGTACGCCCGCGCCTACCTCGAGGGTCGCCTGTCCGCGGACCGGCTCGACGGGTTCCGCCAGGAGAAGTCCCACGAGGGCGGCGGCCTGCCCTCCTACCCGCACCCGCGCCTCATGCCGGAGTTCTGGGAGTACCCGACGGTCTCGATGGGCCTCGGCCCGGCCTCGGCGATCTACCAGGCCTGGACCAACAAGTACCTGCACAACCGCGGGATCAAGGACACCAGCCAGCAGGACGTGTGGGCCTTCCTCGGCGACGGCGAGATGGACGAGCCCGAGTCGCGCGGCATGCTCCAGCACGCCGCCCACCAGGGGCTGGACAACCTGACCTTCGTGGTCAACTGCAACCTGCAGCGCCTGGACGGTCCGGTCCGCGGCAACGGCAAGATCATGCAGGAGCTGGAGGCCCAGTTCCGCGGCGCCGGCTGGAACGTCATCAAGGTCGTCTGGGGCCGCGAGTGGGACGCCCTGCTCAACGCGGACAAGGACCGCGCCCTGGTCAACCTCATGAACGCCACGCCGGACGGCGACTACCAGACCTACCGCGCCGAGTCGGGCGCGTTCATCCGCGAGCACTTCTTCGGGCGCGACCCGCGCACGAAGGCGCTCGTGGAGAACATGACCGACGAGGACATCTGGAACCTGCGCCGCGGCGGCCACGACTACCGCAAGATCTTCGCCGCCTACTCGGCCGCGCGGGCGCACACCGGACAGCCCACGGTGATCCTGGCCCAGACGGTCAAGGGCTACGCGCTCGGGTCGAGCTTCGCCGGCCGCAACGCCACGCACCAGATGAAGAAGGTCAAGAACGAGGACCTCAAGGCGCTGCGCGACAACCTGCGCATCCCGCTGACCGACGAGCAGATCGACGCCGAGCCGGGCCTGCCCCCGTACTACCACCCGGGCATGGAGGACGAGTCGATCCAGTACATGCTGGACCGTCGCCGTCACCTCGGCGGGTTCGTGCCGGAGCGCCGGTCGTCGCCCAAGGCGCTGTCCCTGCCGAAGGACAAGTCCTACGAGATCCTCAAGAAGGGCTCGGGCAGCCAGCAGGTCGCCTCGACGATGGCCTTCGTGCGGCTGCTCAAGGACCTCATCAAGGACAAGGAGTTCGGCAAGCGCATCGTGCCGATCATCCCCGACGAGGCGCGCACCTTCGGTCTGGACTCGATCTTCCCGAGCGCCAAGATCTTCAACACCGTCGGGCAGAACTACCTGGCCGTGGACCGCGAGCTCATGCTGAGCTACAAGGAGTCCGAGGCCGGGCAGATCATGCACACCGGCATCAACGAGGCCGGTTCCGCCGCCGCGTTCCAGTCGGTCGGCACGGCGTACGCCACCCACGGCGAGCACATGGTGCCCGTCTACATCTTCTACTCGATGTTCGGGTTCCAGCGCACCGGCGACCAGTTCTGGGCCGCCGGTGACCAGATGACCCGCGGGTTCATCATCGGCGCCACGGCCGGCCGCACCACGCTGACCGGTGAGGGTCTGCAGCACGCCGACGGCCACTCCCCGCTCATCGCGGGCACCAACACCGCGATGGTGCAGTACGACCCGGCCTTCGGCTACGAGATCCGCCACATCGTGCGCGACGGCATCGAGCGCATGTACGGCGACGGCTCCGACGGTCGCGACCAGAACGTCATGTACTACCTGACGGTCTACAACGAGCCGATGGTCCAGCCGGCCGAGCCGGAGGACGTGGACGTCGACGGCATCCTGCACGGCATCCACCGCATCGCCACCGACGACGGCGAGGGCCCCAGGGCCCAGCTGCTCGCCTCCGGCGTGGGCGTGCCGTGGGCCCTGGAGGCCCAGGAGCTGCTGCGCGAGGACTGGGGCGTGTCGGCCGACGTGTGGTCGGTGACGAGCTGGAACGAGCTGCGTCGCGACGCGCTCGCCGCCGAGCAGGCGGCGCTGGTCGACCCGGCCGCGGAGCCGCGCGTGCCGTACCTGACCCAGAAGCTGTCCGACGCCGCGGGGCCGTTCGTCGCCACCAGCGACTACGACCACCTGGTCCCCGACCAGATCCGCGCGTGGGTGCCGGGCGACTACGCCGTGCTGGGTGCCGACGGCTTCGGGTTCTCCGACACCCGCGCCGCCGCACGCCGGTTCTTCCTCATCGACGGCCCGTCGATGGTGGTCAAGACGCTGCAGCAACTCGCCCGCCGTGGCGAGGTCCCGCAGGACGTCGTGGCCAAGGCCGTCGAGAAGTACCGCCTCACCGACGTCAACGCCGGCACCTCCGGTGTCGCGGGCGGGGACGCCTGAMASYDETGPLIDGLLSAVPDIDPSETSEWVESLDGLIDDKGGPRARYVMLNLLRRARERNVQIPTSVATPYVNTIGVHEEPYFPGDETMERRYRSWIRWNAAVMVTRAQRPEISVGGHISSYASVATLTEVGLNHFFRGKDHPGGGDQVYFQGHSSPGQYARAYLEGRLSADRLDGFRQEKSHEGGGLPSYPHPRLMPEFWEYPTVSMGLGPASAIYQAWTNKYLHNRGIKDTSQQDVWAFLGDGEMDEPESRGMLQHAAHQGLDNLTFVVNCNLQRLDGPVRGNGKIMQELEAQFRGAGWNVIKVVWGREWDALLNADKDRALVNLMNATPDGDYQTYRAESGAFIREHFFGRDPRTKALVENMTDEDIWNLRRGGHDYRKIFAAYSAARAHTGQPTVILAQTVKGYALGSSFAGRNATHQMKKVKNEDLKALRDNLRIPLTDEQIDAEPGLPPYYHPGMEDESIQYMLDRRRHLGGFVPERRSSPKALSLPKDKSYEILKKGSGSQQVASTMAFVRLLKDLIKDKEFGKRIVPIIPDEARTFGLDSIFPSAKIFNTVGQNYLAVDRELMLSYKESEAGQIMHTGINEAGSAAAFQSVGTAYATHGEHMVPVYIFYSMFGFQRTGDQFWAAGDQMTRGFIIGATAGRTTLTGEGLQHADGHSPLIAGTNTAMVQYDPAFGYEIRHIVRDGIERMYGDGSDGRDQNVMYYLTVYNEPMVQPAEPEDVDVDGILHGIHRIATDDGEGPRAQLLASGVGVPWALEAQELLREDWGVSADVWSVTSWNELRRDALAAEQAALVDPAAEPRVPYLTQKLSDAAGPFVATSDYDHLVPDQIRAWVPGDYAVLGADGFGFSDTRAAARRFFLIDGPSMVVKTLQQLARRGEVPQDVVAKAVEKYRLTDVNAGTSGVAGGDAPGPT0001385_329DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001385-aceE-K00163NANA
AK018_01633684hypothetical proteinATGGCCATGATGTCTCGGCTCCGCCAGCTCATCCGCCGGCCACGGTCCACCTCGATGGTGGGTGTCCGGCGCCCGTCCGAGACCCGACGGCGAGGTGACACCGTGCACGAAGACGCGTTGCGGGCGATGCTCCACGACGACCCGAACGACGAGCGCGCCTTCAGCGCGCTCGCCGAGCTGGTGCGTCGTCACGCGACCGAGCCCGACAACCCCGAGGACCCGCTGACGGCGGAGCCGGAGGAGGAGCCGGTCGGTGCCGCCGACCTCGCGCTCTGGTCGCTCGCCGAGGAGCTCGCGGGTCATCCCAAGGCCTGGCGCCCCCTGGTCGAGCTCGGCCGCCTGTCGGTCGGTGACGACCCCGAGGGTGCGGTGCGTCGCTTCACCACGGCCGCCGAGCGCGACCCGTCCGGGGTGGCGCTGGCCACGAGCCTGGAGATCCTGCGCGAGGCCGACATGCCCGTCGAGGCGCTCGGCCTGGGCGTCGGCCACTGGCGCACGCGGGAGCAGGTGCCCGAGGTGGGGCGCCAGCTCGTGCTGGCCGCCGTGGAGGCGGACCGCCTGTTCGAGGCGCGGCAGCACCTGGAGGCCCTGGACACCCACCCCGAGTCCGGGCAGGTCGAGGCGATGCGGCGCGACCTCGTGGTCGCGATCGAGGCCGCCGAGGCCCGGCAGACCTCCACCTGAMAMMSRLRQLIRRPRSTSMVGVRRPSETRRRGDTVHEDALRAMLHDDPNDERAFSALAELVRRHATEPDNPEDPLTAEPEEEPVGAADLALWSLAEELAGHPKAWRPLVELGRLSVGDDPEGAVRRFTTAAERDPSGVALATSLEILREADMPVEALGLGVGHWRTREQVPEVGRQLVLAAVEADRLFEARQHLEALDTHPESGQVEAMRRDLVVAIEAAEARQTSTNANANANANA
AK018_016341161COG2508putative proteinATGTCGACCACGACCGTCTCGCGCGACGAGAACGTCCAGCGCGTCCGTGAAGGGCTCGGGCTCCTCACCAACGCCGCCATGCGCCGCCTCGACGAGGAGGTCTCCTGGTACCGCCAGCTGCCCGCCGAGGACCGCTCCTACGTCGCCCTGGTCGCCCAGAGCGGCATCAACTCCTTCGCGACCTGGTTCGCCGACCCGACCCAGACCCCGCACGGCGTGGGCGAGATGTTCGCCGCCGCTCCCCCGGAGCTGACCCGGTCGATCTCCCTGCAGCACACGCTGCAGCTGGTGCGGCTCATGGTCGACGTCGTCGAGTCCTACTCCGACCAGATCGCCGCCCCGGGCTACGAGCGCGAGCTGCGCGAGGCCGTGCTGCGGTACTCCCGCGAGGTCGCGTTCTCCGCCGCCGAGGTCTACGCCCGGGCCGCCGAGGTCCGCGGCGCGTGGGACGCCCGCCTCGAGGCCCTGGCGGTGGACGCGCTGGTGCGCGGCGACACCGACGACGCGCTGCGCTCGCGCATCTCCGCCCTGGGCTGGAGCGGGCGCGGCCAGGTGCTGGTCGTCGTCGGCGAGGCGCTGGACGGGCTGGACGACGTCGGCACCGCCGAGCTGCGGCGCGCCGCCCGCCGCGCGGCGGGGGACACCCTCGTGGGCATCCACGGCGACCGCCTCGTGCTGGTCCTGGGCGGCGAGACCGACCTGGTCGCGGCCGCCACGAGCCTGATCGGCCGGTTCGGGCCGGGGCCCGTCGTGTTCGGTCCGGTCGTGCCCACGATCGCCGAGGCGACGTCGTCGGCGCGCTCCGCCCTGGCCGGGCTGGCCGCCGCGTCGGCGTGGCCCCAGGCGCCGCGCCCGGTCCTGGCCGACGACCTGCTGCCCGAACGGGTGCTCACCGGAGACCGCGCGGCACGCCGCACGCTCGTCGCGCAGGCCTACCTGCCGCTGCAGCAGGCCACCGGTGCCGTCCTGGAGACGCTGTCGGCCTACCTCGGCACCGGGCGCTCCCTGGAGGCGGCGGCCCGACGGCTGTACGTCCACCCCAACACCGTGCGCTACCGGCTGCGCAAGGTCTCCGAGATCACCGGCTGGGACCCGCTGGACGCCCGCGAGTCGTTCGTGCTGCAGATCGCCCTCGCGCTGGGGCAGCTCGACGACGCCTGAMSTTTVSRDENVQRVREGLGLLTNAAMRRLDEEVSWYRQLPAEDRSYVALVAQSGINSFATWFADPTQTPHGVGEMFAAAPPELTRSISLQHTLQLVRLMVDVVESYSDQIAAPGYERELREAVLRYSREVAFSAAEVYARAAEVRGAWDARLEALAVDALVRGDTDDALRSRISALGWSGRGQVLVVVGEALDGLDDVGTAELRRAARRAAGDTLVGIHGDRLVLVLGGETDLVAAATSLIGRFGPGPVVFGPVVPTIAEATSSARSALAGLAAASAWPQAPRPVLADDLLPERVLTGDRAARRTLVAQAYLPLQQATGAVLETLSAYLGTGRSLEAAARRLYVHPNTVRYRLRKVSEITGWDPLDARESFVLQIALALGQLDDANANANANANA
AK018_01635927fabD_1COG0331Malonyl CoA-acyl carrier protein transacylaseATGCTCAGCCCCTGGCTGGAGCTGCCCGGCACCGCCGACCTGCTCGACTCCTTCTCGGCCGCCGCCGGGACCGACCTGACCCAGCACGGGACCACGTCGGACGCGGAGACGATCCGGGACACCGCGGTGGCCCAGCCGCTGATCGTCTCGGCCTCCCTGGTCGCGCTGCGCACGATCCTCGACGGGCGGGAGGCCACCGAGGTCGTCGACGTCACCGCCGGGCACTCGGTGGGCGAGCTGTCCGCCGCCGCCGTCGCCGGAGCGCTCGACGACGCCGGCGCCGTCGGTCTCGTCTCCCACCGCGGACGGGCGATGGCCGACGCCGCGGCCGCCGCGCCGTCGGGCATGAGCGCCGTCGTCGGCGGCGACACCGACGAGGTCATGGCCGCCATCGAGGCCGCCGGCCTGTACCCCGCCAACGTCAACGGCGGCGGCCAGATCGTGGCCGCCGGGTCCCGCGAGGCCCTCGAGGCCCTGGCCGAGCAGCCCCCGGCGCGCACCCGCGTCGTCCCGCTGCCCGTGGCCGGTGCCTTCCACACCCCGTACATGGAGCCCGCGCGCAGCCGCTTCGAGCAGGTGGCCACCACGTGGCTGGCCACCGACCCGCGGCTGCCGCTGCTGAGCAACGCCGACGGCGCCGACTACGGCTCGCTGGCCGAGGGCTCGCGCGGCCACGGCACCTCCGCCGACGTCCTGTCCCGCCTGACCGCCCAGATCACCGCGCCGGTGCGCTGGGACCTGTGCCAGGCGTCGCTGGCCGAGCGCGGCGTCACCGGGCTCCTCGAGCTCGCCCCCGGCGGCGTCCTGGCCGGCCTGGCCAAGCGCTCGCTCAAGGGCGTCGAGTCCGTCGCCGTGAAGTCGCCCGACGACGTCGAGGCGGCGCGCGACCTCATCACCCGGCACTCCACCGTCGGCGGCGCGGCATGAMLSPWLELPGTADLLDSFSAAAGTDLTQHGTTSDAETIRDTAVAQPLIVSASLVALRTILDGREATEVVDVTAGHSVGELSAAAVAGALDDAGAVGLVSHRGRAMADAAAAAPSGMSAVVGGDTDEVMAAIEAAGLYPANVNGGGQIVAAGSREALEALAEQPPARTRVVPLPVAGAFHTPYMEPARSRFEQVATTWLATDPRLPLLSNADGADYGSLAEGSRGHGTSADVLSRLTAQITAPVRWDLCQASLAERGVTGLLELAPGGVLAGLAKRSLKGVESVAVKSPDDVEAARDLITRHSTVGGAAPGPT0008350_860DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008350-fabD|bmyD-K00645NANA
AK018_016361011fabH_13-oxoacyl-[acyl-carrier-protein] synthase 3ATGACCGCGCGCGCCGTGCTGCGCCAGGCCGAACCGGTGCGCCACTCGCGCATCCTGGGCATCGGCGGCGAGCGCGGCAGCCGGTCGGTCACGAACGACGAGATCGCCGGCCCGATCGACTCCTCGGACGAGTGGATCCGCCAGCGCACCGGCATCGTGACCCGGCGTCGCGCGACCGACGACGTCGACGTGCTGGACCTCGCCGAGGCCGCCGCCCGCCGGGCGATGGACGCCGCGGGGGTGACCGGCGCGGAGATCGACACGATCGTGCTGTCGACCATCACGTACTTCCACCAGACCCCGTCGGCCGCCGCCGTGCTGGCCGACCGGCTCGGCGCCACGCCGGCCGCCGCGTACGACATCTCGGCCGCCTGCGCCGGGTACGCGTACGGCATCGGGCAGGCTGACGCGATGGTCCGCGCCGGGACGGCGCGCCACGTGCTCGTCATCGGCGCGGAGAAGCTCAGCGACATCATCGACCCCACCGACCGGTCGATCTCGTTCCTGCTGGGCGACGGCGCCGGTGCCGCCGTCGTCGGCCCCTCGGACACCCCGGGCATCGGCCCGACGGTGTGGGGGTCCGACGGCGCGAAGTCGCAGGCCATCCGCCAGACCCACTCCTGGTCGGAGCTGCGCCGCGACGCCGACCTCGGCTGGCCCACGCTGCGCCAGGACGGCCAGACCGTCTTCAAGTGGGCGAGCTTCCAGATGGCCCCGGTCGCCGCCAAGGCGATGGCGGAGGCCGGGGTGCAGCCCGAGGACATCCAGGTCTTCGTGCCGCACCAGGCGAACATGCGCATCATCGACCAGATGGTCAAGCAGCTCGGGCTGCCCGAGTCCGTCGTGGTCGCCCGGGACATCGCCGACACCGGCAACACCTCGGCGGCCTCGATCCCCCTGGCCGTCGACCGGCTGCTGACCGAGGGCAAGGCCCGCTCCGGCGACCTGGCCCTCCAGATCGGCTTCGGGGCCGGCCTGGTCTACGCGGCCCAGGTGGTCGTGCTCCCGTAAMTARAVLRQAEPVRHSRILGIGGERGSRSVTNDEIAGPIDSSDEWIRQRTGIVTRRRATDDVDVLDLAEAAARRAMDAAGVTGAEIDTIVLSTITYFHQTPSAAAVLADRLGATPAAAYDISAACAGYAYGIGQADAMVRAGTARHVLVIGAEKLSDIIDPTDRSISFLLGDGAGAAVVGPSDTPGIGPTVWGSDGAKSQAIRQTHSWSELRRDADLGWPTLRQDGQTVFKWASFQMAPVAAKAMAEAGVQPEDIQVFVPHQANMRIIDQMVKQLGLPESVVVARDIADTGNTSAASIPLAVDRLLTEGKARSGDLALQIGFGAGLVYAAQVVVLPPGPT0008355_2426DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648NANA
AK018_01637249acpP_2Acyl carrier proteinATGGCTCACACTTCTTCCGAGATCCTCGAGGGCCTCGCCGAGATCGTCGCCGAGGAGACCGGTCTGCCGACCGACGCCGTCGTGCCCGAGAAGTCGTTCACCGACGACCTCGACATCGACTCGCTGTCGATGATGACGATCGTGACCCACGCCGAGGACAAGTTCGGCGTCCGCATCCCGGACGACGAGGTGAAGAACCTCACCACCGTCGGCGACGCGGTGAAGTACATCGAGGGCGCCCAGAGCTGAMAHTSSEILEGLAEIVAEETGLPTDAVVPEKSFTDDLDIDSLSMMTIVTHAEDKFGVRIPDDEVKNLTTVGDAVKYIEGAQSPGPT0011375_4275DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078NANA
AK018_016381251fabF3-oxoacyl-[acyl-carrier-protein] synthase 2ATGACCGCCCCAGCCACGCGCGACGTCGTCGTCACCGGCCTCGGTGCCACCACCCCGCTCGGCGGGGACGCCCCCTCGACGTGGGCGGCCGCGCTCGCCGGTGAGTCCGGTGCGCGCACGATGGACAACGACTGGTCGGAGGAGTACGGCATCCCCGTCACCTTCGCCGCGACGATCAAGGAGGACCCCTCCGAGAAGCTGTCGCGCCCCGAGACCAAGCGGATGGACCCCTCGACCCAGTACGCGATGATCGCCGCACGGGAGGCCTGGCAGGACGCCGGGGCCCCCGAGGTCGACGGCGAGCGGCTCGGTGCGGTGGTCTCCTCCGGCATCGGCGGCATCTGGACCACGCTGGACGGCTGGGACACGCTCCGCGAGCGGGGCGCCCGCCGCGTGCTGCCGATGACCGTCCCCATGCTCATGCCGAACTCGCCGGCGGCCTACGTCTCCCTCGAGCTCGGCGCCCAGGCCGGCGCGCACGCGCTGGTCTCGGCCTGCGCCTCCGGCGCCGAGGCGATCGGCTACGGCCTGGACATGATCCGTGCCGGCCGCGCCGACGTCGTCGTCTGCGGCGGGACCGAGGCCACGATCCACCCGATGCCGATCGCGGCGTTCGCCGCCTCGCGCACGCTCTCGTTGCGCAACGACGACCCGCAGGGCGCCTCGCGTCCCTACGACGTCGACCGCGACGGCTTCGTCATCGGCGAGGGCGCGGCCGTCGTCGTGCTGGAGAGCGCCGAGCACGCCGCCGCCCGCGGCGCGCGCGTCTACGCGAAGATCGCGGGTGTGGGGCTGTCCGCCGACGCCTACCACATCACCTCCCCCGACCCGGAGGGCAAGGGGCAGGTCGCGGCGATGCGCCGCTCCCTGGCCGACGCCGGGGTCACGGGCGCCGACGTCGTGCACGTCAACGCCCACGCGACCTCCACCAAGGTGGGCGACCTCACCGAGACCCGCTCGATCCGCACCGTGCTGGGCGAGGACACCGACCACGTGCGCCTGTCCGCGACGAAGTCGATGACGGGCCACCTGCTCGGTGGCGCGGGCGCGCTGGAGGCCCTGTTCACCATCAAGGCGGTGCACGAGCGCCTCGCCCCGCCGACGATCAACGTCGTCACGCCCGACCCGGAGCTGCAGGTGCCGCTCGTGCGGGACGAGCCGGCCCGGCTGCCCGACGGCGACATCGCCGCGGTCAACAACTCCTTCGGCTTCGGCGGCCACAACGTGGCGCTCACCGTCACCAACGCCTGAMTAPATRDVVVTGLGATTPLGGDAPSTWAAALAGESGARTMDNDWSEEYGIPVTFAATIKEDPSEKLSRPETKRMDPSTQYAMIAAREAWQDAGAPEVDGERLGAVVSSGIGGIWTTLDGWDTLRERGARRVLPMTVPMLMPNSPAAYVSLELGAQAGAHALVSACASGAEAIGYGLDMIRAGRADVVVCGGTEATIHPMPIAAFAASRTLSLRNDDPQGASRPYDVDRDGFVIGEGAAVVVLESAEHAAARGARVYAKIAGVGLSADAYHITSPDPEGKGQVAAMRRSLADAGVTGADVVHVNAHATSTKVGDLTETRSIRTVLGEDTDHVRLSATKSMTGHLLGGAGALEALFTIKAVHERLAPPTINVVTPDPELQVPLVRDEPARLPDGDIAAVNNSFGFGGHNVALTVTNAPGPT0008360_4759DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
AK018_01639501hypothetical proteinATGGCTGGCGTCATCACCCGCGGTGTACTTTTCGTGCACTCCGCGCCGCGCGCGTTGTGCCCCCACCTCGAGTGGGCGGCGGGCAACGTGCTGAGCGCTGACGTGTCGTTGGACTGGACGCCCCAGCCCGCGGCGCGCGGTCTGTACCGCGCCGAGTACGCGTGGCAGGGCGCCCAGGGCACGGGTGCGCGCCTGGCCTCTGCGCTGCGCGGCTGGGACCACCTGCGCTACGAGGTCACGGAGGACGCCAGCCACGGCAGCGACGCCGCGCGGTGGTCGCACACTCCCGACCTCGGCATCTTCCACGCCATGACCGACATCCACGGCAACGTCGTCGTGCCCGAGGACCGGGTGCGCACCGCCATGGAGAGCTCGCACGACCCGCGCGCCCTGCGCGAGGCGATGGACCTCGCCCTCGGCAGCGCGTGGGACGACGAGCTCGAGCCCTTCCGGTACGCGGGAGCCGGCGCCCCCGTGCGCTGGCTGCACCGCGTCGGGTAGMAGVITRGVLFVHSAPRALCPHLEWAAGNVLSADVSLDWTPQPAARGLYRAEYAWQGAQGTGARLASALRGWDHLRYEVTEDASHGSDAARWSHTPDLGIFHAMTDIHGNVVVPEDRVRTAMESSHDPRALREAMDLALGSAWDDELEPFRYAGAGAPVRWLHRVGNANANANANA
AK018_01640486def_1COG0242Peptide deformylaseATGGCGATGCGAGAGATCCGGGTGGTGCCCGACCCCGTGCTGCGCACGGCGTGCGACGAGATCACGACGATCGACGACCGTGTGCGCGGCCTCGTCGCGGACCTGCTCGAGACCGTCGACGCGGAGGGCCGTGCCGGGCTGGCCGCGAACCAGATCGGCGTGAACCTGCGGGCGTTCTCCTGGAACGTCGACGACGAGATCGGCTACGTGCTCAACCCGCGGCTGGTCGACGTCTCGGAGGAGCAGCAGGACGGCGACGAGGGCTGCCTGTCGGTGCCCGGGCTGTTCTACCCGACGACCCGCGCCTGGTACGCCCGCGTGGAGGGGACCGACCTGGACGGCAACGAGGTCGTCGTCGAGGGCACGGACCTCATGGCGCGTGCGCTGCAGCACGAGTGCGACCACCTGGACGGCAAGCTCTACCTGGACCGGCTCGAGCGCAGCGTGCGCAAGAAGGCGATGCGGGAGCTGCGCGAGCGCCTCTGAMAMREIRVVPDPVLRTACDEITTIDDRVRGLVADLLETVDAEGRAGLAANQIGVNLRAFSWNVDDEIGYVLNPRLVDVSEEQQDGDEGCLSVPGLFYPTTRAWYARVEGTDLDGNEVVVEGTDLMARALQHECDHLDGKLYLDRLERSVRKKAMRELRERLNANANANANA
AK018_01642174hypothetical proteinATGAGCATCGGAGACAAGGCCAAGCACGCCGCCGAGGAAGCCCTGGGCAAGGCCAAGGAGGGTCTGGGCAAGGCGTCGGAGGACGAGGAGATGCAGGCCGAGGGCGAGGCCGAGCAGTCGCAGGCCAACCTCAAGCAGGCCGGTGACGACGTCAAGGACGCCTTCAAGAAGTAGMSIGDKAKHAAEEALGKAKEGLGKASEDEEMQAEGEAEQSQANLKQAGDDVKDAFKKNANANANANA
AK018_01643522hypothetical proteinATGTTCACGCGCAGGCGTCGCCAGCAGCCCCCGTCCGTCCGTGAGGTGGTGCCGCTGGTCGGCCCCGAGCGGTTGCTCGCCGGCGCCGAGACGGCCGACGGCGGCTGGGTCGTCGCCACCACCGCCGACCTCGTCCTGGTCTCCGGGACCGACGGCGACCCCCGGGTCGCGACGCGGCGTCCCTGGTGCGACGTCGACCGCGCGGCCTTCGACCCGGAGCGGTCGATCCTCACCGTCGAGTGGGTGGACGCGGCACCGGACCTGCGGCCGATGCTCTCCGACGCGGCGGCTATCAACCTGCCGGCGGTCGTGCGCGAGCGCGTGCTGTGGTCCGTCGTCCTGGCGGAGACGGTCGACGTCCCGGGCGGGACGGTCCGGGTCGCGGTGCGGCGCCGGCTGGACGGCACCCTCTTCTCCCAGGCCGTCGCGGGCGACGGGGTCGACCTGTCGCGGGCGGACGTCGCGAACGTGGTGGACGCCACGGAGTCGAGGGTGCGGGCGGCGTGCGGACTACCCGGTTGAMFTRRRRQQPPSVREVVPLVGPERLLAGAETADGGWVVATTADLVLVSGTDGDPRVATRRPWCDVDRAAFDPERSILTVEWVDAAPDLRPMLSDAAAINLPAVVRERVLWSVVLAETVDVPGGTVRVAVRRRLDGTLFSQAVAGDGVDLSRADVANVVDATESRVRAACGLPGNANANANANA
AK018_01645579dps_3COG0783DNA protection during starvation proteinATGGCTGACGGCACGCACCAACCCACCTACACGGTCCCGTCGATGACCGCCGAGGACGGCGCCCGGGTCGCCGAGATCCTGCAGGACCGCCTCAACTCGCTGACCGACCTCCACCTGACGCTCAAGCACGTCCACTGGAACGTCGTCGGGCCGCACTTCATCGCCGTCCACGAGATGCTCGACCCGCAGGTCGACGCCGTGCGGCTCATGGCCGACGACGTCGCCGAACGCATCGCCACGCTCGGTGGCGTGCCGCAGGGCACGCCCGGTGCACTCGTCGCCCACCGCACCTGGGAGGACTACCACCTGGGCCGGGCCACGACCACCGAGCACCTCGGGGCGCTGGACGAGGTGTACCAGGGCGTCATCGCCGCGCACCGCCAGGCGGCCGAGACCACGGCCGAGCTCGACGACGTGACCAACGACCTGCTGATCGGCAACCTGCGCGACCTGGAGCAGTTCCACTGGTTCGTCCGGGCCCACCTGGAGACCGCCGGGGGAGAGCTGTCGACCGCCGGGGCGACCTCGGAGATCGCCGCCGCCCGGCAGGCGCGGGAGGCCGAGCGCGACGCCGGCTGAMADGTHQPTYTVPSMTAEDGARVAEILQDRLNSLTDLHLTLKHVHWNVVGPHFIAVHEMLDPQVDAVRLMADDVAERIATLGGVPQGTPGALVAHRTWEDYHLGRATTTEHLGALDEVYQGVIAAHRQAAETTAELDDVTNDLLIGNLRDLEQFHWFVRAHLETAGGELSTAGATSEIAAARQAREAERDAGPGPT0004055_236DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047NANA
AK018_01646249hypothetical proteinATGAGCGAGGACGACCTGGACGCCGGTGTCCCGCAGGTCGACCCGGCGGTCCGTGACGCGCTGACCACGGCCGAGGGCTGGATCGGGCCGGAGATCCAGGGGGTCGCCGTCGGCGAGACCGCCCAGGGCGACCCCTGCCTGGTCGTGTACGCGCCCGACCCGGAGTCGCCGGCCGTGCGCGAGCTGCCGCCCGCCGTCGGCGACGTCCCGGTGCGCGTCGAGGCCGCCGGCCCGTTCGCCGCGGAGTAGMSEDDLDAGVPQVDPAVRDALTTAEGWIGPEIQGVAVGETAQGDPCLVVYAPDPESPAVRELPPAVGDVPVRVEAAGPFAAENANANANANA
AK018_01647990hypothetical proteinATGCACGACGACGAGTTGTTCGACGTCGAGGCCGACGTACCGGAGGCGTTCTCCGCCGTCGCCCCGACGCGCGACGCGGCCGAGGACGACCTGCTGGCCACCGAGAACGTGGTGGGGGTCGGCCTCGGCTACAAGATCACCGGCGGGGTCCAGACGGACAAGCCCAGCGTCATGGTGCTGGTCGAGCAGAAGCTGCCGCCCGAGCTGCTGTCCGGCAAGCCGGTGCCCAAGACCATCGGCGGCAAGCCGACGGACCTGATGGAGGTCGGCGTCCTGCAGGCGGGCGGGGACGCCGAGCCCGCCGCCGAGGTGGGCGTCCAGAAGCTGGCCACGCGGGTGCGCCCGGCACGGCCCGGCTACAGCATCGGGCACCTGAAGGTCACGGCCGGCACGCTCGGTGCCGGGGCCTACGACCTGCGCAGCACGGTGCCCGGCAAGCCGCCGCGCTACTACGCGCTGAGCAACAACCACGTGCTCGCCAACTCGAACGACGCCCAGATCGGCGACCCCATCATCCAGCCCGGGGCGTTCGACGGCGGCACCTTCCCGGCGGACGTGATCGGGCGCCTCGCCCGGTTTGTGCCGATCAAGTTCGACGGGACGACGAACCTGGTCGACGCGGCGATCGCCGAGGTCCCCTTCGACACCATCGACCGGGACATCTACTGGTCCGGCTACCCGCAGTCGCTGGTCAGGGCGGCGCAGGTCGGGATGGTGCTGAAGAAGACCGGACGGACCACGCACTTCACCACGGGCCGGGTGACCGCGCTCAACGCCACGGTGAACGTCAACTACGGCGGGGGCAAGGTGGCCAAGTTCGGTCGCCAGATCGTCACCACGGACATGTCCGCGGGCGGCGACTCCGGGTCGCTCGTGCTGGACCTGCAGAACAACCCGGTGGGGCTGCTGTTCGCGGGGTCGAGCACGGCGACGATCCTCAACCCGATCGCCTACGTGCAGCGGCTGCTCGGGGTGCGCGTCTGGCCGTGAMHDDELFDVEADVPEAFSAVAPTRDAAEDDLLATENVVGVGLGYKITGGVQTDKPSVMVLVEQKLPPELLSGKPVPKTIGGKPTDLMEVGVLQAGGDAEPAAEVGVQKLATRVRPARPGYSIGHLKVTAGTLGAGAYDLRSTVPGKPPRYYALSNNHVLANSNDAQIGDPIIQPGAFDGGTFPADVIGRLARFVPIKFDGTTNLVDAAIAEVPFDTIDRDIYWSGYPQSLVRAAQVGMVLKKTGRTTHFTTGRVTALNATVNVNYGGGKVAKFGRQIVTTDMSAGGDSGSLVLDLQNNPVGLLFAGSSTATILNPIAYVQRLLGVRVWPNANANANANA
AK018_016481953dnaG_2COG0358DNA primaseGTGGCAGGCCTGATCAAGCGCGACGACGTGGACGCCGTCCGCGACCGCGCGCGCATCGACGAGATCGTCGGCCAGCACGTCACCCTCAAGTCCGCCGGCGTCGGCTCGATGAAGGGCCTGTGCCCGTTCCACGACGAGCGCACCCCCTCCTTCCACGTCCGGCCCGGCGTGGGCCGCTGGCACTGCTTCGGCTGCGGCGAGGGCGGCGACGTCATCTCGTTCGTGCAGAAGATCGACGGGATGGGGTTCACCGACGCCGTCGAGTACCTCGCCGACAAGGTCGGCGTCGAGCTGCACTACGAGGACTCCCGCACCGGCGCCGCCGCCCAGCGGGGCCCGCGCGAGGAGCCCGGCCGTCGCCAGCGCCTGCTCGAGGCCCACCGCGTCGCCGCCGCGTTCTACGCCGAGCAGCTCTTCGCCCCCGGAGCGCAGGCGGCCCGGGCGTTCCTCGCCGAGCGCAGCTTCGAGCGGGCCGACGCCGAGACGTTCGGTCTCGGGTACGCCCCGACCGGGTGGGACGCGCTGCTGCGGCACCTGCAGAGCCGCGGGTTCACCCAGCCCGAGCTCGTCGCCTCGGGGCTGGTCAGCCAGGGGCAGCGCGGGATCTACGACCGGTTCCGCGGACGGCTCGTGTGGCCGATCCGGGACGTGACCGGCGCGGTCATCGGGTTCGGGGCGCGCAAGCTCTTCGACGACGACCCCGGCCCCAAGTACCTCAACACCCCCGAGACGACGCTGTACAAGAAGGCGCAGGTCCTCTACGGGATCGACCTGGCCAAGCGCGCGATCGCCCAGAACAAGCGGGTCGTCATCGTCGAGGGGTACACCGACGTCATGGCCGCGCACCTGTCCGGCGTGGACACGGCGGTGGCGACCTGCGGCACCGCGTTCGGCCCCGAGCACGCCAAGGTCGTGCGCCGCCTGCTCGGCGACACCACCGCGGGCGGCGGTCTGCAGCTGGCCTCCGGAGCGTCGCTCGGCGGAGAGATCATCTTCACGTTCGACGGCGACGCCGCTGGTCAGAAGGCCGCCATGCGGGCCTTCGGCGAGGACCAGCGCTTCCACGCCCAGACGTTCGTCGCCGTCGAGCCCAGCGGCATGGACCCGTGCGACCTGCGCATGGAGCGCGGCCCCGACGCGGTGCGCACGCTGGTGGACACCCGCGTGCCGCTGTTCGAGTTCGTCATCCGCACCACCCTCGACGGCTTCGACCTCGACACGGTCGAGGGCCGCGTCAACGCGCTGCGGGCGGCGGCACCGATGGTCGCCGGCATCCGCGACCGCTCCATGCAGCTCGGCTACGCCCGCCTGCTGGCCCGCTGGATCGGGATCGACACCGACGAGGTCCGCCGCGAGGTGGGACGGGCGCACAGCACCCCCGGGCCGGCCCGACGCCGGGACGAGCGCTCCGCACGGCCGGAGCGCGCCGTCGAGACGCCGTCGGACGGGCCCGTGGCCGGTCCCGTCCTCAGCGCCCCCGACCCGGCCGACCCCGTGGCGCGCATCGAGCGGCTCGCCCTGGTCGTCGTGCTGCAGTACCCGCAGCACGTGCCGGTCACGTTCGACGACCTCGGCCCGGACGCCTTCGCCACCCCGGCCTGGCGGGCCGTGCACGCGGCGATCCGTGCCGCCGGGGGAGTGCGCACCGGGGCCGGCCTGGGCGGCAACCGCTGGGTGGAGACCGTCGTCGAGGAGGCCGGCGACGCCGTCTCGCCGCTGGTCACCGAGCTCGCCGTGGCGCCGGTGCCCGAGGACCGCGAGAGCGCGATCGCGGCGTTCGTGGCCGACGTCGTGCGCAAGGTCGCCGACCTGGGCCTGACCCGTCGCATCGCCGACGCCAAGAGCCGCGTGCAGCGCCTCGACGCCCAGGCCGACCCGGACGCCTACCGGGCGGCGTTCGAGGAGCTCGTCGCGATCGAGAAGGAACGGCGCGAGCTGCGCGAGAGCGCCTGAMAGLIKRDDVDAVRDRARIDEIVGQHVTLKSAGVGSMKGLCPFHDERTPSFHVRPGVGRWHCFGCGEGGDVISFVQKIDGMGFTDAVEYLADKVGVELHYEDSRTGAAAQRGPREEPGRRQRLLEAHRVAAAFYAEQLFAPGAQAARAFLAERSFERADAETFGLGYAPTGWDALLRHLQSRGFTQPELVASGLVSQGQRGIYDRFRGRLVWPIRDVTGAVIGFGARKLFDDDPGPKYLNTPETTLYKKAQVLYGIDLAKRAIAQNKRVVIVEGYTDVMAAHLSGVDTAVATCGTAFGPEHAKVVRRLLGDTTAGGGLQLASGASLGGEIIFTFDGDAAGQKAAMRAFGEDQRFHAQTFVAVEPSGMDPCDLRMERGPDAVRTLVDTRVPLFEFVIRTTLDGFDLDTVEGRVNALRAAAPMVAGIRDRSMQLGYARLLARWIGIDTDEVRREVGRAHSTPGPARRRDERSARPERAVETPSDGPVAGPVLSAPDPADPVARIERLALVVVLQYPQHVPVTFDDLGPDAFATPAWRAVHAAIRAAGGVRTGAGLGGNRWVETVVEEAGDAVSPLVTELAVAPVPEDRESAIAAFVADVVRKVADLGLTRRIADAKSRVQRLDAQADPDAYRAAFEELVAIEKERRELRESANANANANANA
AK018_016491335dgt_1COG0232Deoxyguanosinetriphosphate triphosphohydrolase-like proteinGTGCAGACGTTCTCGCAGGAGGCCTTCGACCCGGACGTGGTCGGCACCGGACCTCGTCCTGCCCCCGGCGAGGAAGGTCCGGCGTCGTACACCGACGCCGACACCGAGCGGTGGGCCGCCGAACCGCCCAAGTCCAAGGACCGCACCCCGTTCGAGCGCGACCGCGCCCGTGTGGTGCACTCCTCGGGCCTGCGGCGCCTCGGTGCCAAGACCCAGGTGCTCACCCCCGGCAGCGACGACTTCGTCCGCACCCGGCTGACACACTCCCTCGAGGTCGCCCAGGTGGGCCGGGAGATGGGCCGCGCACTCGGCTGCGACCCCGACCTCGTCGACACCGCCTGCCTCACGCACGACCTGGGCCACCCGCCGTTCGGGCACAACGGCGAGCGGGTGCTGGCCGAGCTCGCGGCGGAGATCGGCGGGTTCGAGGGCAACGCCCAGACCCTGCGCCTGCTGACCCGGCTCGAGCCCAAGATCCTCGACGCCGACGGCGCCCCGCGCGGCCTGAACCTCACGCGGGCCTCGCTGGACGCCTCGGTGAAGTACCCGTGGCGGCTCCACGAGGGCCCGCCGCGGCCGGACGGGTCCCGTACCGGCAAGTTCGGCGTGTACCCCGACGACGCCCCCGTCTTCGCGTGGCTGCGCCGCGGCGCACCGCAGTCCATGGTGCGCTGCATGGAGGCGCAGGTCATGGACCTCGCCGACGACATCAGCTACTCCGTGCACGACGTCGAGGACGCCGTGGTGGGCAGCCGCCTGGACCTGCGGGTGCTCGACGACGAGGCCGAGCGGGCCCGCATCGTCGAGCACGTGCGGTCCTGGTACGGCGCCTGGCACGACGCCGACGCTCTCGACGCGGCCCTGTGCCGGCTGCGGGACACGGGCTACCTCGTGACCGACTTCGACGGGTCGCGCGGTGCCCTGGCCGGGCTCAAGGACGCCACCAGCCAGCTCATCGGCCGGTTCAGCGGCGCGGCCCAGCGGGCCACCCGCGAGGTGTACGGCGAGGGGCCGCTGACCCGGTACTCGGCGCAGCTCGTCGTCCCGCCCGAGACGGCCGACGAGATCCTGGCGCTCAAGGGCGTCGCCGTCACCTACGTGATGGCGCCGCGGGAGTCCGAGCCGGTGTACGCGGCCCAGCGCGAGATCGTCGCCGACCTGGTCAAGGTGCTCGCGGACCGCGCCCCGGTGGCGCTCGAGCCCCAGTTCGCCGCGGACTGGCGGGCGGCGTCCGACGACGCCGCCCGGCTGCGCGTCGTGGTGGACCAGGTGGCCTCGCTGACGGACGTCTCGGCGATGCAGCTGCACGGCCGGCTGGTGCGCGGCGACGACTGAMQTFSQEAFDPDVVGTGPRPAPGEEGPASYTDADTERWAAEPPKSKDRTPFERDRARVVHSSGLRRLGAKTQVLTPGSDDFVRTRLTHSLEVAQVGREMGRALGCDPDLVDTACLTHDLGHPPFGHNGERVLAELAAEIGGFEGNAQTLRLLTRLEPKILDADGAPRGLNLTRASLDASVKYPWRLHEGPPRPDGSRTGKFGVYPDDAPVFAWLRRGAPQSMVRCMEAQVMDLADDISYSVHDVEDAVVGSRLDLRVLDDEAERARIVEHVRSWYGAWHDADALDAALCRLRDTGYLVTDFDGSRGALAGLKDATSQLIGRFSGAAQRATREVYGEGPLTRYSAQLVVPPETADEILALKGVAVTYVMAPRESEPVYAAQREIVADLVKVLADRAPVALEPQFAADWRAASDDAARLRVVVDQVASLTDVSAMQLHGRLVRGDDPGPT0021495_1378DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021495-dgt-K01129NANA
AK018_01650765hypothetical proteinGTGGCCACCGAGCAGATCGCGATCCTGTCCGACGTCCACGGCAACCTCACCGCCCTCGAGGCGGTGCTGGCCGACATCGGCTCCCGCGGCATCACCCGCATCGTCAACCTCGGCGACGACGTCGGCAAGGGCCCGCGCGGGCGCGCCGTCGTGGACCGCACGGAGCAGGTCTGCGAGGTCAACGTCCGCGGCAACTGGGACGACTTCCTGCCGGCGATCGCCGACGACGGCCCCGACGAGATGGTCTGGTGGCGCGACGAGCTGCGCCCCGACCAGCGCGAGCTGATCCGCCGTCGGCCGCTGTGCCACGACCTGCAGCTCTCCGGGCGGCGGATCCGCCTCTTCCACGCCTCGGCGACGAGCGTGCACACGCGGGTCCACGTCGACCACACCCGCGAGGAGTTCGCCGGGATGTTCGCCGCCACGGACCTCACGGGTCCGGGACCGGAACCCGACCTGGTCGGGTACGGCGACGTCCACGCCGCCTACCAGCGCACCCGGCGCGGGCGCACCCTCTTCAACGCCGGCAGCGTCGGCAACGCGCTCGACGAACCCTCGGCGGCCTACGTGGTCCTCGAGGGCACCCCCGGGCCGGACCGTGCCCCCTTCGGCCTGCAGGTCGTCCGCCTGTCCTACGACGTGGAGGCCGAGCTGGCGGTCGCCCGTGCGGCGGACATGCCGCAGTACGCCGCCTGGGCGCAGGAGCTGCGGACCGCCGTCTACCGCGGGCTGCACGACGTCGAGCCCGTGGGTGGCGCTCGGTAGMATEQIAILSDVHGNLTALEAVLADIGSRGITRIVNLGDDVGKGPRGRAVVDRTEQVCEVNVRGNWDDFLPAIADDGPDEMVWWRDELRPDQRELIRRRPLCHDLQLSGRRIRLFHASATSVHTRVHVDHTREEFAGMFAATDLTGPGPEPDLVGYGDVHAAYQRTRRGRTLFNAGSVGNALDEPSAAYVVLEGTPGPDRAPFGLQVVRLSYDVEAELAVARAADMPQYAAWAQELRTAVYRGLHDVEPVGGARPGPT0030420_552DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_RELATED_PROTEINS,PGPT0030420-ppa|prpA-K01090NANA
AK018_01651513hypothetical proteinATGCACGGCATCGCGGTGCTGCAGGACCTGTACTCCCGGATCGCGCCCACGGTGCACCGCGCGGTCGACGGGCTCGGCGACGCCGCGCTCGTCGAGCGGCTCGACCCGGCGGCGAACACGATCGCGTGGCTCACCTGGCACATCGGGCGCGACCAGGACGTCCAGGTCGCCGACGTCGTCGGCCGCGACCAGGTGTACTCGCGCGGCTGGGCGGACCGGTTCGACCTGCCGTTCGGCCTGCACGACACCGGCTACGGGCACACCTCCGACGACGTCGCGAGGGTCCGCGCACCGGCCGAGCTGCTGCTCGGCTACGTGGACGAGGTCGCCGGCGAGTCGCTCGACGTGCTCACCGGGCTCACCGACGCCGACCTCGACGAGGTGGTCGACGACGCCTGGGACCCGCCCGTCACCCGCGGCGCCCGGCTCGTGAGCGTCGCGAACGACTCCCTGGAGCACGCGGCGCAGATCGCGTACGTCCGTGGCGTCCTCGAGCGCACCGGGCGCGCGTAGMHGIAVLQDLYSRIAPTVHRAVDGLGDAALVERLDPAANTIAWLTWHIGRDQDVQVADVVGRDQVYSRGWADRFDLPFGLHDTGYGHTSDDVARVRAPAELLLGYVDEVAGESLDVLTGLTDADLDEVVDDAWDPPVTRGARLVSVANDSLEHAAQIAYVRGVLERTGRANANANANANA
AK018_016521896malZ_1COG0366Maltodextrin glucosidaseATGACGCACGCACCGCACCTGCTCGACCTGCCCCACCACGACGGCTCGGCCGTGCACGTGCCCCCGGGCACGCCGGCGCTCGGCGACGCGGTGCCCGTGCGCGTCCGCGTGCCGCGGGCCTCCGGCGTCGAGCGGGTCTGGGTGCGGTCCGTGCGCGACGGCGAGCCGCGTCTCGCCGAGGCCGTGCCCGACGGCGGCACGGACCCTGAGCAGAGCGTGCAGTGGTTCACCGGCGAGGTCGTGGTCCACAACCCCGTCACGCCGTACCGCTTCCTGCTCGACGGGCCCGGCGGGTATCGCTGGCTGAACGGTCGTGGTGTCCACGACCGGGACGTGTCCGACGACGGCGACTTCCGGCTGACCACGCACGCCCCGGCCCCGTCGTGGCTGGGCGAGGGGCTCGTGTACCAGATCTTCCCCGACCGGTTCGCCCGGTCCGCGGGTGCCGACGGACGGCCGACGCCCGACTGGGCCGTGCCCGCCGCCTGGGACGACGAGCCGGCCGGGACCGGCGTGCTCGCCGGCACCCAGTTCTACGGGGGCGACCTGGACGGCGTGATCGAGCACCTCGACCACCTCGCCGCGCTCGGCGTCGGCACCGTCTACCTCACCCCGGTCTTCCCGGGCCGCTCCAACCACCGCTACGACGCCTCGACGTTCGCCGAGGTCGACCCGCTGCTCGGTGGCGACGACGCCTACGCCCGGCTCTCCGAGGCCGTGCACGCCCGCGGCATGCGGCTGATGGGCGACATCACCACCAACCACACCGGCGAGGGGCACGAGTGGTTCGCCGCCGCGCTCGCCGACCCGGACTCGCCCGAGCACGGCATGTACGTGTGGGCCGACCCGGCGTCGGACAACACCGACGTGGCCACCACCGCGTCCGGGGAGGGGTACGCGAGCTGGCTCGGGTTCGGCTCCCTGCCCAAGCTCGACTGGGCCGCCCCCGAGACCTGGCACCGTATGGTGACCGGCCCCGACGCCCCGATCGGCCGGTACCTGCGCCCACCGTTCGCTCTCGACGGGTGGCGGGTCGACGTCGCCAACATGACCGGCCGGTGGGGGAGCGAGGACCGCACGCACGCCGTCTCGCGCGAGCTGCGGGCCGCCGTCGAGCGCGAGCGCCCCGACGGCGCGTTGATCGCGGAGCACTTCCACGACGCCGGGGCCGACCTGCGCGCCGGGGGCTGGCACGCCAACATGAACTACACCGGGTTCACCCGGCCCGCCTGGTCCTGGCTGGCGACCGAGGGGTCCCCGGCCGCGGCGCACGGGCTGCCCGTGGCGGGCACCCGTCGGCCCGGCGGCGCCATGGTGGACGCGATGCGCGAGTTCGACGCCGCGGTGCCGTGGTCCGTCACGGCGGCGCAGTGGAACATGCTCGGCTCCCACGACACGCCGCGGCTGCGCACCGCCGTCGGCTCGGACGAGCTCGCCGAGGTGGCCGCCACGCTGCTGTTCACCTACCCGGGCACGCCCGTGGTCTTCGCCGGGGACGAGGTCGGCGCCACCGGCGACAACGGCGAGCACGCCCGGACCACCATGGCCTGGGACCAGGGCGCTCGCGGCTGCGGTCCGCGCTGGGACGCCGGGACGCTGGACCGGTACCGCCGGCTGTCGGCGGTGCGGCGCGGGTCGGACGCCCTGCGGCAGGGTGGCCTGCGCTGGGCGGTCGTGGAGGACGACGCGGTCGCCTTCCTGCGCGAGTCGCCGACCGAGCGCGTCCTGGTCGTGCTGGCGCGGGCGCCGTGGGCCGGGACGGTGCTGCCGGCGCACCTGCTGGACCCGGGGACTCAGCCGGAGCGGCTGTACGGCGAGGTGGGTCTCGCCGTCGGCCCGGACGGTCTGACGATCTCCGGCGACGGCCCGGCCGTCGGCGTCTTCCGCCTGCTCTGAMTHAPHLLDLPHHDGSAVHVPPGTPALGDAVPVRVRVPRASGVERVWVRSVRDGEPRLAEAVPDGGTDPEQSVQWFTGEVVVHNPVTPYRFLLDGPGGYRWLNGRGVHDRDVSDDGDFRLTTHAPAPSWLGEGLVYQIFPDRFARSAGADGRPTPDWAVPAAWDDEPAGTGVLAGTQFYGGDLDGVIEHLDHLAALGVGTVYLTPVFPGRSNHRYDASTFAEVDPLLGGDDAYARLSEAVHARGMRLMGDITTNHTGEGHEWFAAALADPDSPEHGMYVWADPASDNTDVATTASGEGYASWLGFGSLPKLDWAAPETWHRMVTGPDAPIGRYLRPPFALDGWRVDVANMTGRWGSEDRTHAVSRELRAAVERERPDGALIAEHFHDAGADLRAGGWHANMNYTGFTRPAWSWLATEGSPAAAHGLPVAGTRRPGGAMVDAMREFDAAVPWSVTAAQWNMLGSHDTPRLRTAVGSDELAEVAATLLFTYPGTPVVFAGDEVGATGDNGEHARTTMAWDQGARGCGPRWDAGTLDRYRRLSAVRRGSDALRQGGLRWAVVEDDAVAFLRESPTERVLVVLARAPWAGTVLPAHLLDPGTQPERLYGEVGLAVGPDGLTISGDGPAVGVFRLLPGPT0018560_2358DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_01653564hypothetical proteinATGACCGAGACGCGCAGCTACAGCCCGGACCTGGGGCGGCTCACCGACGCCGCCGACGACTCGTTCACCGTGCGCCGCGCGTACGGCGAACCGTACGAGCACGACGGCCAGCTCATCATCCCGGTCGCCCGGGTGTGGGGCGGCATCGGTACCGGCTCCGGCGGAGGAGCAGGGGCCACCTCGGGCAACGGGTCCGGGGAGGGGACCGGCTCCGGCAAGGGCTCCGGCCACCTGGCCGGGTGGTCGAAGACCTTCCACCGCGGCGCCGAGGCCACCGAGGGCGCCGACGGCGAGGGCGACGGTGACGGGTCCGACGCCGGGGACGCGTCCGGGGAGACCCGGGGCGAGGCCCACGGCGAGCTGCACGGCGAGGGCTCGGGCGAGGGCGGTGGCGGCGGTGGCGGCTACGGCCTGCACGTCAAGCCGCTCGGCGTCTACGTCGTCGGCTCCGCGGGCACGCGCTGGCAGCCCGTGCTCGACCTGAACAAGGCGATCCTCGGCGGACAGGTCGTCGGGATCGCGATCGCGCTCGCCGCCGGGTGGGCGATCGGTCGCCGCCGCTGAMTETRSYSPDLGRLTDAADDSFTVRRAYGEPYEHDGQLIIPVARVWGGIGTGSGGGAGATSGNGSGEGTGSGKGSGHLAGWSKTFHRGAEATEGADGEGDGDGSDAGDASGETRGEAHGELHGEGSGEGGGGGGGYGLHVKPLGVYVVGSAGTRWQPVLDLNKAILGGQVVGIAIALAAGWAIGRRRPGPT0024995_6DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE_OTHER_SPORULATION_RELATED_PROTEINS,PGPT0024995-ytfJ-NANANA
AK018_01654906malG_1COG3833Maltose/maltodextrin transport system permease protein MalGATGACTGCCACCTCGACCGCCCCCGCGGTCCGCACCCCGTCGACGCCGACCCGTCGCAGGACGGCGGGCCGCTGGTTCTCCGAGCTCGGCTGGCGGCACGTCGTCGGCGTCCTGTTCGTCGTCTACGCCGCCTTCCCGATCGTGTACGTGCTGTCGGCCTCCGTGGCCGAGAGCGGCACCCTGACCGGGTCCAACCAGCTCTTCGACTCGTTCAGCACGGAGAACTACGCCCGGCTGGCCGACACGGTGTACTGGTCATGGTTCGCCAACTCGGTGCTGATCGCCGTCGCCACCTCGATCGGCACCGTGCTCATGGGCGCCGCCGCGGCGTACGCCTTCAGCCGCTTCCGCTTCACGGGGCGCCGCGTGGGCCTGACGACGCTGCTGATCCTCCAGATGTTCCCGCAGATGCTCGCGTTCGTGGCGATCTTCCTGCTGCTCATCAGCCTCGGCGAGGTGGTTCCGGCGCTCGGCCTGAACTCCCGGGTCGCGCTCGTCTGCGTGTACCTCGGCGGCGCGCTGGGCGTGAACACGTTCCTCATGTACGGGTTCTTCAACACGATCCCGCGCGAGCTGGACGAGGCGGCCAAGATCGACGGCGCCACGCACGCCCAGACGTACTGGACGATCATCCTGCGCCTGGTGACCCCGATCCTCGCGGTCGTGGCGCTGCTGTCGATCATCGCCACCTTCGGCGAGTTCGTCATCGCCCGCGTGCTCCTGCAGTCGGAGGCCCACTGGACGCTCGCCGTGGGTCTCTACTCGTGGGTCTCCAGCCTGCTCGAGGCCAACTGGGGACTGTTCGCCGCCGGCGCGGTGATCTCCACGATCCCGATCCTCGTGCTGTTCCTGTTCCTGCAGAAGTACATCGTCGGCGGGCTGACGGCCGGCTCGGTGAAGGGATGAMTATSTAPAVRTPSTPTRRRTAGRWFSELGWRHVVGVLFVVYAAFPIVYVLSASVAESGTLTGSNQLFDSFSTENYARLADTVYWSWFANSVLIAVATSIGTVLMGAAAAYAFSRFRFTGRRVGLTTLLILQMFPQMLAFVAIFLLLISLGEVVPALGLNSRVALVCVYLGGALGVNTFLMYGFFNTIPRELDEAAKIDGATHAQTYWTIILRLVTPILAVVALLSIIATFGEFVIARVLLQSEAHWTLAVGLYSWVSSLLEANWGLFAAGAVISTIPILVLFLFLQKYIVGGLTAGSVKGPGPT0016325_336DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016325-ganQ-K15772NANA
AK018_016551644malF_1COG1175Maltose/maltodextrin transport system permease protein MalFATGACAGACCTGCAGCAGACCCGCACCGCCTCGGGCCAGGCGCCGGGTGACGCTCCCGCCCCGCCCGACTCCACCCGCCGACGTCGCCTCGGCCGTCGCGACGAGTCACCCGCCGGCCGCTACGGCGCCGGGTTCCTCGCCAAGCTCGCCCTCATGGCCGTCGCGAACGCGTTCGGCGTCTACGTGCTCTGGTCCGCGTGGCTGGCCGAGTCGTGGATCATCCTCGGCGCCATGCTCGTCATGCTCGCCGTGGCGAACTGGGTGTACTTCTCGCGTCGCACGGTGCCGCTGAAGTACGTGCTGCCCGGTCTGATCTTCCTGTTCACGTTCCAGATCTTCACCATCGGCTACACCGGGTGGGTGGCGTTCACGAACTACGGCGACGGCCACAACTCCACCAAGGACGACGCCGTCGCCGCCCTGCTCATCCAGAACGAGCGGCGCGTCGAGGGGTCGCCCGCGCTGCCCCTGACCGTCGTCGCCGACGGCGAGGAGCTCGGGTTCGCCGTCGTGCAGCCCGACGGCACGGCCACCGTCGGCGACGCCGAGGCGCCGCTGTCCGCCGTCGACGCCACCGTCGCCGAGGGCCGGATCACCGCCGTCGACGGCTGGGAGGTCCTCGACCGGGCCGAGGTGCTCGCCCGTCAGGGCGAGGTCACCGACCTGCGGGTCCCGGTCTCCGACGACCCGGCCGCGGGATCCGTGCGCACCCAGGACGCCCGCACCGGGTACGTCTACGAGTCCACCCTCGTGTACGACGAGGCCGCGGACACGATGACGGACACCGCCACCGGCACCGTCTACACGCCCAACGACGAGGGACAGTTCGAGGCCGCGGACGGCTCCACGCTCAACGTCGGCTGGCGGGTGTTCGTCGGCTTCGACAACTTCACCACCGCGTTCTCCGACTCGCGCTACTCCGGGCCGTTCCTCCAGGTCGTGGTGTGGACCTTCGTCTTCGCCTTCGCCTCGGTGGCCACGACGTTCCTGCTCGGGATGTTCCTGGCCACGGTCTTCAACACCCCGATGCGCGGGCGCAAGATCTACCGCACGCTGCTGATCCTGCCGTACGCCATTCCCGGGTTCGTCGCCCCGCTGCTGTGGTCCGGCCTGCTCAACCGCAGCTTCGGGTTCGTCAACCAGGTGCTGCTCGGAGGCGCCGCCGTCCCGTGGCTGACCGACCCGTGGCTGGCCAAGCTGTCGATCATCGGGGTCAACCTGTGGCTCGGGTTCCCCTACATGTTCCTCATCTGCACCGGTGCGCTGCAGTCGCTGCCCACCGACGTGCTCGAGGCCGCGAAGATCGACGGCGCCGGCCGGCTGCGCACCTGGCGCTCGGTCGTCATGCCGCTGCTGCTGGTCTCCACGACCCCGCTGCTCATCTCGAGCTTCGCGTTCAACTTCAACAACTTCGCCCTGATCTACATGCTCACCGGCGGCGGACCACGGTTCGAGGACGCCTCGGTGCCGCTGGGGCACACCGACATCATGATCACGATGGTCTACTCGGTGGCCGGTCTGGACGGGAACGCCCCGAAGGACTTCGGCCTGGCCAGCGCGCTGTCCATCGTCATCTTCGTGATCATCGCGACGATCTCGGCCGTCGCCTTCAAGCGGACCCGCTCGCTCGAGGAGATCAACTGAMTDLQQTRTASGQAPGDAPAPPDSTRRRRLGRRDESPAGRYGAGFLAKLALMAVANAFGVYVLWSAWLAESWIILGAMLVMLAVANWVYFSRRTVPLKYVLPGLIFLFTFQIFTIGYTGWVAFTNYGDGHNSTKDDAVAALLIQNERRVEGSPALPLTVVADGEELGFAVVQPDGTATVGDAEAPLSAVDATVAEGRITAVDGWEVLDRAEVLARQGEVTDLRVPVSDDPAAGSVRTQDARTGYVYESTLVYDEAADTMTDTATGTVYTPNDEGQFEAADGSTLNVGWRVFVGFDNFTTAFSDSRYSGPFLQVVVWTFVFAFASVATTFLLGMFLATVFNTPMRGRKIYRTLLILPYAIPGFVAPLLWSGLLNRSFGFVNQVLLGGAAVPWLTDPWLAKLSIIGVNLWLGFPYMFLICTGALQSLPTDVLEAAKIDGAGRLRTWRSVVMPLLLVSTTPLLISSFAFNFNNFALIYMLTGGGPRFEDASVPLGHTDIMITMVYSVAGLDGNAPKDFGLASALSIVIFVIIATISAVAFKRTRSLEEINPGPT0016320_90DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016320-ganP-K15771NANA
AK018_016561257malECOG2182Maltose/maltodextrin-binding periplasmic proteinATGCGACGGAGCATCCTTATCGCGTCCGCCCTGGTCACCACTCTCGCCCTGTCGGCCTGCGGGTCGGCCGACGACGCCGGTGACGCCGCCGAGGACACCACCGACGAGAGCACGGCCGAGGCCACCGACGCCGGCGAGGACATGGCGACCGGCTCGCTGACCGTGTGGGTCGACGAGACGCGCGAGAGCGCCGTCGAGTCCGCCGCCGAGGCGTTCGAGACCGAGACCGGGGCCGAGGTCGAGATCGTCCTGAAGAACTTCGAGGACATCCGCTCGGACTTCATCGCCCAGGTCCCCACCGGCGAGGGCCCCGACGTCACCGTCGGCGCGCACGACTGGCTGGGCGAGCTCATCACCAACGGCGTCGTCGCCCCGGTCGAGCTCGGTGCCACCGCCGAGGAGTTCGAGGACGTCGCGGTCGAGGCCTTCACCGCCGACGGCGCCGTCTACGGCCTGCCGTACGCGATCGAGAACATCGCCCTGATCCGCAACACGGAGCTGGCCGACACCGCGCCCGCCACGTGGGACGAGGCGATCTCGATGGGCGAGGACGCGGACACCAAGTACCCGTTCCTCATCCAGACCGGGACCGAGGGCGACCCGTACACCTACTACCCGTTCCAGACGTCGTTCGGCGCCCCGGTGTTCGAGCAGAACGAGGACGGCTCGTACTCCCCGGAGCTCGCCATGGGAGGCGAGGCCGGTGACGCCTACGCCCAGTGGCTCGCCGACCAGGGCGAGGCCGGCACGCTGACCACCGACATCACCTACGACATCGCGGTCGAGGCCTTCGCCAAGGGCCAGTCGCCGTTCATCGTGGGCGGTCCGTGGATGCTCGAGCAGTTCGCCGACCTGGACCTCGCGATCGACCCGGTCCCCGCCGCCGGTGACCAGGCCGCCCAGCCGTTCGTGGGCGTCCAGGGCTTCTACGTCAGCGCCCAGAGCGAGAACGCCCTGCTGGCCAACGACTTCCTCGTGAACTTCCTGTCCACGCAGGAGGCCCAGACCGCGCTGTTCGAGGCCGGCGGCCGTCCGCCGGCGCTCACCGCCGCCGCCGACGCCGCGTCGTCGGACCCGATCGTCGCGGGCTTCCGCGAGGTCGGCGCCGAGGCCGTGCCGATGCCGTCCATCCCCGAGATGGGTTCGGTGTGGGCCTTCTGGGGCGTCACCGAGGCCAACATCATCTCCGGCTCGGCCGACCCGGCCGAGGCCTGGAGCAAGATGATCTCGGACATCGAGGGCGCGCTCGACTCCTGAMRRSILIASALVTTLALSACGSADDAGDAAEDTTDESTAEATDAGEDMATGSLTVWVDETRESAVESAAEAFETETGAEVEIVLKNFEDIRSDFIAQVPTGEGPDVTVGAHDWLGELITNGVVAPVELGATAEEFEDVAVEAFTADGAVYGLPYAIENIALIRNTELADTAPATWDEAISMGEDADTKYPFLIQTGTEGDPYTYYPFQTSFGAPVFEQNEDGSYSPELAMGGEAGDAYAQWLADQGEAGTLTTDITYDIAVEAFAKGQSPFIVGGPWMLEQFADLDLAIDPVPAAGDQAAQPFVGVQGFYVSAQSENALLANDFLVNFLSTQEAQTALFEAGGRPPALTAAADAASSDPIVAGFREVGAEAVPMPSIPEMGSVWAFWGVTEANIISGSADPAEAWSKMISDIEGALDSPGPT0016315_942DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016315-cycB|ganO-K15770NANA
AK018_016571044degA_3COG1609HTH-type transcriptional regulator DegAGTGTCCCTTACGATCGCAGGCGTGCGCACCCGACTGAGCGACCTGGCCGACCAGGCCGGGGTCTCCACCGCGACGGTGTCGCGCGTGCTCAACGGCAAGCCCGGTGTCGCCAGCTCCACCCGCCAGGCGGTCCTGGCCGCCCTCGACGTGCTCGGCTACGAGCGCCCGTCGGCGCTGGCCGGCCGGTCGGCCGGCCTCGTCGGCCTCGTGGTGCCCGAGCTCACCAACCCCGTCTTCCCGGCGTTCGCCCAGGCGGTGGAGTCGATCCTGGCGCAGCGAGGCTACACGCCGCTGCTGTGCACCCAGGCCCCGGGAGGGACCACCGAGGACGAGTACGTCTCGACCCTCGTGGACCACTCGGTCGACGGCATCATCTTCATCTCCGGCCTGCACGCGGACACCCGCGCCAGCCACGCGCGCTACGAGCTGCTGCGCGGCCAGGGCGTGCCGATCGTGCTCGTCAACGGCTACGCGCCGGGCATCGACGCCCCGTTCATCTCCCCCGACGACGCCGAGAGCATCGACGTGGCGGTCCAGCACCTGGTCACGCTGGGTCACCGCCGCATCGGGCTCGCCATCGGACCCGAGCGGTACGTGCCCGCCCAGCGCAAGGTCGCGGCGTTCTCCGCGGCCCTGGTCCGGCACGGTCTGGCGTCCGACGAGGCCGCAGCCCGCTCGCACGCCATCAACACGCTGTACACCCTCGAGGGCGGGCAGGCCGCCGCGGCCGACCTGCTCGCGTCGGGCCACACCGCCGTCGTCTGCGGCTCGGACATCATGGCGCTCGGCGCGGTCCGCGCCGCGAGGGCCCAGGGGCTGGACGTGCCCGGGGACGTGTCGGTGGTGGGCTACGACGACGCTCCGCTCATCGCCTTCACCGAACCGCCGCTGACCACGGTCCGCCAGCCGGTGGACGCCATGGCCAACGCGGCCGTCAGCGCGCTGCTGACCGAGATCGGCGGCGACCGCGCCCCCCGCACGGAGCTGCTCTTCTCCCCCGAGCTGGTCGTGCGCGGCTCCACCGGCCCCGCGCCCCGCGACTGAMSLTIAGVRTRLSDLADQAGVSTATVSRVLNGKPGVASSTRQAVLAALDVLGYERPSALAGRSAGLVGLVVPELTNPVFPAFAQAVESILAQRGYTPLLCTQAPGGTTEDEYVSTLVDHSVDGIIFISGLHADTRASHARYELLRGQGVPIVLVNGYAPGIDAPFISPDDAESIDVAVQHLVTLGHRRIGLAIGPERYVPAQRKVAAFSAALVRHGLASDEAAARSHAINTLYTLEGGQAAAADLLASGHTAVVCGSDIMALGAVRAARAQGLDVPGDVSVVGYDDAPLIAFTEPPLTTVRQPVDAMANAAVSALLTEIGGDRAPRTELLFSPELVVRGSTGPAPRDPGPT0021075_83DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
AK018_016581764malL_1COG0366Oligo-1,6-glucosidaseATGGCCACCACCGAGCCGACCATCCCGACACCGGAGAGCCTCGCCGCGGGCGCCACGGTCCACGTCGGGTCCGAGACCGCCCGCGAATGGTGGCGGGACGCCGTCATCTACCAGGTCTACCCGCGCTCGTTCGCCGACGGCAACGGGGACGGCATCGGCGACATCCCCGGCATCACGGCACGCCTCGACCACCTCCAGACCCTCGGCGTCGACGCCGTCTGGCTCTCGCCCTTCTACCGCTCGCCGCAGAACGACGCCGGGTACGACGTCGCCGACTACCGCGACGTCGACCCGCTGTTCGGCACCCTCGCCGACTTCGACGCGATGCTCGCCGGCGCCCACGCGCGCGGCATGCGCGTCGTCGTCGACCTCGTGCCGAACCACACCTCCGACCAGCACGCCTGGTTCCAGGCGGCACTGGCCTCCGCCCCGGGGTCCCCCGAGCGCGCGCGCTACATCTTCCGCGACGGCCGCGGCCCCGGCGGCGACGAGCCGCCGAACAACTGGCAGTCCATCTTCGGCGGCCCCGCCTGGACCCGGCTCGAGGCCCGCGAGGACGACGGCCCTCGCGGCCCGCAGTGGTACCTGCACCTGTTCGACTCCACCCAGCCCGACCTCGACTGGAACCACCCGGAGGTGCGCACGGAGTTCACCGACGTGCTGCGGTTCTGGCTGGACAAGGGCGTCGACGGCTTCCGCGTCGACGTCGCCCACGGCCTGGTCAAGGCCGACGGGCTGCCCGACTGGCACGGGCACGTGTCGATGGTCGACGGCGGCACCTCCGACGAGGCCGACCCCGGTGCCCCGGAGGACGGCTCGACCGGCGCCGGCAACCAGGGCCCGATGTTCGACCAGGACGGCGTGCACGAGATCTACCGCACGTGGCACGACGTGCTCGCCGAGTACGACGGCGACCGCTGCCTGGTCGCCGAGGCCTGGGTGGAGCCGCTGTCCCGCCTGGCCCGGTACGTGCGCCCGGACGAGATGCACCAGGCGTTCAACTTCTCGTTCCTCACCACCGGCTGGGACGCCGCCGCGCTGCGTCGCGTCGTCGCGGCGTCGTACGAGGCCAACGACGAGGTCGGCGCACCCACCACCTGGGTGCTGTCCAACCACGACGTCGTCCGCCACGTCACGCGGCTCGGCCTGCCCGACGTCGGGGTGCGGCCGAACGGCGTCTTCGCCTCCGACCCGCAGCCCGACGAGGAGCTGGGGCTGCGCCGCGGCCGCGCCGCCACGCTGCTCATGCTCGGCCTGCCCGGCTCGGCGTACCTCTACCAGGGCGAGGAGCTCGGGCTGCCCGAGCACACCACGATGCCGAACGACGTGCGGCAGGACCCGGCGCACTTCCGCACCGAGGGCGCCGAGGCCGGCCGCGACGGCTGCCGCGTGCCCCTGCCCTGGGCGGCCGACGCCGAGGGCTTCGGTTTCGGCCCGTCCGGCGAGCCCTGGCTGCCCCAGCCGGACTCCTACGCGCGCTACGCGGCGGACGTCCAGTACGGCGTCGAGGGCTCGACCTTCGAGCTGTACCGGGCCGCCCTGGCGACCCGGCGCGCCGAGGGCCTCGGGCACGGCAGCCTGACCTGGCTGGCGGCGTTCGAGGACTCGGCCGACGTCGTCGCGTTCCGCAACGGCGACGTCGTCGTGCTGGCCAACCTCGGCGCCGCACCGGTGGCGCTGCCCGACGGCGCGACCGCGCTGCTGGCCTCGGGCCCGGTGGACGGCGAGCTGCCCGCCGACACCACCGTCTGGCTGCGCGCCTGAMATTEPTIPTPESLAAGATVHVGSETAREWWRDAVIYQVYPRSFADGNGDGIGDIPGITARLDHLQTLGVDAVWLSPFYRSPQNDAGYDVADYRDVDPLFGTLADFDAMLAGAHARGMRVVVDLVPNHTSDQHAWFQAALASAPGSPERARYIFRDGRGPGGDEPPNNWQSIFGGPAWTRLEAREDDGPRGPQWYLHLFDSTQPDLDWNHPEVRTEFTDVLRFWLDKGVDGFRVDVAHGLVKADGLPDWHGHVSMVDGGTSDEADPGAPEDGSTGAGNQGPMFDQDGVHEIYRTWHDVLAEYDGDRCLVAEAWVEPLSRLARYVRPDEMHQAFNFSFLTTGWDAAALRRVVAASYEANDEVGAPTTWVLSNHDVVRHVTRLGLPDVGVRPNGVFASDPQPDEELGLRRGRAATLLMLGLPGSAYLYQGEELGLPEHTTMPNDVRQDPAHFRTEGAEAGRDGCRVPLPWAADAEGFGFGPSGEPWLPQPDSYARYAADVQYGVEGSTFELYRAALATRRAEGLGHGSLTWLAAFEDSADVVAFRNGDVVVLANLGAAPVALPDGATALLASGPVDGELPADTTVWLRAPGPT0018560_2955DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_01659624hypothetical proteinATGAGTACCACCGGGTCGTCGCGCCAGGTCCGCGTGCTGCGCGGCACCCTGGTGGCGACCCTGACCACCGGCGTCGCGCTGGCGTCGCACGTCGCCGGCGGCGGCTCCGTGCCCGGCTGGCTCGGTGTCGCCGCCCCCTGGGCGCTGTCCCTGTGGCTGTCCACGCTGCTGGCGGGCCGCCGGGTCGCGCGCTGGCGGACCACCGCGTCGGTCGTCGTCGGCCAGGTGCTCTTCCACACGCTGTTCGTGCTCGGCACCCCGACCGAGGCGGCCTACCCGTCCGGCCCGCACGCCGGGCACGCCGTGCTCGCGCCCTTCACGCCGTCGGCGACCACCGTCGACCTGATCCAGGCCGACGCCCGCATGTGGCTCTGGCACGTGGCGGCCGCCGCCGCGACGGTCGCCCTGCTCTTCCGGGGCGAGCTGTTCCTGCTCCGGCTGCGACGGGCCGCCACGACGGTCGCGGCACGGCTCGCACCCCGCTGGGTCGACGTGGCGGCCGTGGGGTTCGAGGCCCCCGCCGTCCGGACCCTCGTGCCGGCCCGACGCCGCAGGTCGAGCCTCCCCCGCCCCGAGCTGCGACCTCTGCAGCGCCGTGGGCCCCCGACCCTCTCCGCGCTCTGAMSTTGSSRQVRVLRGTLVATLTTGVALASHVAGGGSVPGWLGVAAPWALSLWLSTLLAGRRVARWRTTASVVVGQVLFHTLFVLGTPTEAAYPSGPHAGHAVLAPFTPSATTVDLIQADARMWLWHVAAAAATVALLFRGELFLLRLRRAATTVAARLAPRWVDVAAVGFEAPAVRTLVPARRRRSSLPRPELRPLQRRGPPTLSALNANANANANA
AK018_01660561hypothetical proteinGTGACCACCCGACGCACCACCACCACGCTCGCCCTGCTGCTCGCCGCCGGCTCCCTCGGCCTGGCGGGCTGCTCCACCGACGACGCCGCGGCCGAGGCGACCTCGACCGGGACCTCGACGACCGCCGCCGACGCGGTGTCGATCCAGGACGCCTGGGTCAAGGCGGCCGACGAGGGCATGACCGCCGGGTTCGGCGAGATCACGAACGGCGGCGAGGACGAGCTGACCATCGTGTCGGCCTCCACCGGGGCCGCGGCGATGACCGAGCTGCACGAGACCGCCGCCGACTCCTCCGGCGAGATGTCCATGACCGAGGTCGAGGGCGGCTTCGTCGTCCCCGCCGGGGACACGCTGATTCTGGAGCCCGGCGGGCACCACCTCATGCTCATGGACCTGGCGGATCCGATCCAGGCCGGCGACGAGGTGACGTTCACCCTGACCTTCGCCGACGACTCGACGACCGAGCTCACCGCGACGGTCAAGGACTTCACCGGCGCCGAGGAGAGCTACGAGGGCGACGACCCCGACGGGGACCACGACACGGAGCACGAGGACTCCTGAMTTRRTTTTLALLLAAGSLGLAGCSTDDAAAEATSTGTSTTAADAVSIQDAWVKAADEGMTAGFGEITNGGEDELTIVSASTGAAAMTELHETAADSSGEMSMTEVEGGFVVPAGDTLILEPGGHHLMLMDLADPIQAGDEVTFTLTFADDSTTELTATVKDFTGAEESYEGDDPDGDHDTEHEDSNANANANANA
AK018_016611233efeN_2COG2837putative deferrochelatase/peroxidase EfeNATGGCGGCGTCCGACGAGGGCGCCCGCGGCCGGTCCGGGTCGACCCGGCGGCAGTTCCTCCTCGGAGGCGCTGCCGCCGGTGTCGGCGCGGTCGCCGCGCTGGGCGCCGAGCACGTCCTGGACCGGCCCGGGGCAGCGGCGCAGGACGCCCCCGTGCCGCTGCACGGCACCGAGACGGTCCCGTTCCACGGCGTCCATCAGGCCGGCGTCACCACCGACGCCCAGGCGTACGCCACGTTCGTCGCCCTGGACCTGCACGACGAGGTCGACCGCGAGGCGCTGGGTCGCCTCATGCGGATCCTGTCCGACGACGCCGCCCGGCTGACCCAGGGCGAGGCAGCGCTGGCGGACACCGAGCCCGAGCTCGCGGTGGCGCCTGCACGACTGACGGTCACCTTCGGGTTCGGCCCTCGGTTCGTCGAGCGGGCCCGGGGTTCCGCGCCGTCGTGGCTCCACCCCTTGCCCGCGTTCGAGATCGACGAGCTGCAGCCCGGCTTCAGCGACGGTGACCTGCTGCTGCAGGTGGCAGCGGACGACCAGCTCACCGTGTCCCACGCGACGCGGATGCTGCTCAAGGACGCCCGCGGGTTCGCCGACGTGCGCTGGACGCAGCGCGGGTTCCGCCGCGCCCACGGGTCGGTCGCCCCCGGCACGACGATGCGGAACCTGTTCGGCCAGGTGGACGGCACCGCCAACCCGGTGCCGGGCACGGCCGACTTCGACGAGGTCGTGTGGGTCACCGAGGGCTGGATGGCCGGCGGCACGAGCGCCGTCGTGCGCCGCATCCACATGGACCTCGACGAGTGGGACACGGTCGGTCGGGCCGGACGGGAGCAGTCGGTGGGCCGCACCCAGGCCACCGGCGCGCCGCTGACCGGGACCCGGGAGCACGACGAGCCCGACTTCGCCGCGCGGACCGAGGCGGGCTTCTCCGTGATCCCGGAGTTCTCGCACCTGCGGCGGGCCCGCGGTGTCGACGAGGGTCGCCACGACCGGATCTTCCGGCGCGGCTACAACTACGACGATGCCCCGAGCGGGGACCACGTGTCGGACGCGGGGCTGATCTTCGCGTGCTTCCAGGCCGACGTGGACGAGCAGTTCACGCCGATGCAGCGCAGGCTCGCCGAGCTCGACCTGCTGAACCGGTGGACGACGCCGATCGGGTCGTCCGTGTTCGCGATCCCGCCGGGCTGCGAGCCGGGCGGGTTCGTCGGCGACACCCTGCTCTCGTAGMAASDEGARGRSGSTRRQFLLGGAAAGVGAVAALGAEHVLDRPGAAAQDAPVPLHGTETVPFHGVHQAGVTTDAQAYATFVALDLHDEVDREALGRLMRILSDDAARLTQGEAALADTEPELAVAPARLTVTFGFGPRFVERARGSAPSWLHPLPAFEIDELQPGFSDGDLLLQVAADDQLTVSHATRMLLKDARGFADVRWTQRGFRRAHGSVAPGTTMRNLFGQVDGTANPVPGTADFDEVVWVTEGWMAGGTSAVVRRIHMDLDEWDTVGRAGREQSVGRTQATGAPLTGTREHDEPDFAARTEAGFSVIPEFSHLRRARGVDEGRHDRIFRRGYNYDDAPSGDHVSDAGLIFACFQADVDEQFTPMQRRLAELDLLNRWTTPIGSSVFAIPPGCEPGGFVGDTLLSPGPT0003720_607DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0003720-efeB-K16301NANA
AK018_016621251dus_1COG0042putative tRNA-dihydrouridine synthaseATGGCGGGCGTGACTTCCACGCTCGACCCGACCCGCACGACGCCGCAGCCCGCGCCCGCCACGGACGCTCCGGCGTCGGACACCCGTGTGCTCCCGCCGCTGCAGATCGGTCCGATCACCGTGGACACCCCGGTGGTGCTGGCCCCGATGGCCGGGGTGACCAACCGGGCCTTCCGCACCCTGTGCCGTCAGGCCGGGGAGTCGACCGGGTTCGACCCGGGCCTGTACGTCGCGGAGATGGTGACCTCGCGCGCGCTGGTGGAGCGCAACACCGAGGCGCTGCGCATCGTCACCTTCGGCGAGGACGAGACGCCGCGGTCGGCGCAGGTCTACGGCGTCGACCCGGCCACGGTGGGCGAGGCCGTGCGGATCATCGCCGGCGAGGACCGCGCCGACCACATCGACCTGAACTTCGGCTGCCCGGTGCCCAAGGTGACGCGCAGGGGCGGCGGCGCGGCGGTGCCGTGGAAGCGTGAGCTCTTCACCGGCATCGTGCGCGCCGCCGTGGACGCCGCCGAGCCGTACGGCCTGCCGGTGACGGTCAAGATGCGCAAGGGCATCGACGACGACCACCTGACCTACCTCGAGGCCGGCCGGACGGCCGAGTCGCTCGGCGCCGCCGCCGTCGCGCTGCACGCGCGCACCGCCGCGCAGCACTACTCCGGCACCGCCGACTGGACCGCGATCGCGCGGCTCAAGGAGGAGGTGCGCACCATCCCGGTGCTCGGCAACGGCGACGTCTGGGCCGCCGAGGACGCCGTGCGCATGGTGCGCGAGACCGGCGCGGACGGCGTCGTCGTCGGCCGGGGCTGCCAGGGCCGCCCGTGGCTGTTCGCCGACCTCGCCGCCGCGTTCCACGGCTCCGACCTGCGGGTCCGGCCCGGCCTGCGGGAGGTCGCGGACACGATCTACCGCCACGGCGAGCTGATGATCGCCTACTACGACGGCGACGAGGACAAGGGCATGCGCGACCTGCGCAAGCACATGGCCTGGTACCTCAAGGGGTACCCCGTCGGGGGAGACGCCCGTCGCGGGCTGGCGATGGTCTCCACTCTCGCCGAGCTGCGCGAGCGCCTGGACGCCCTCGACCTCTCCTTGCCGTACCCGGGCGAGGAGGCCGAGGGGCCGCGCGGCCGCGCCGGCAGCCCGAAGAAGCCGCACCTGCCCTACGGCTGGCTGGACTCGCGCGAGCTCGACACGGAGTTCGAGGCGAAGCTGCGCGAGGCCGAGCTCAGCGTCTCCGGCGGCTGAMAGVTSTLDPTRTTPQPAPATDAPASDTRVLPPLQIGPITVDTPVVLAPMAGVTNRAFRTLCRQAGESTGFDPGLYVAEMVTSRALVERNTEALRIVTFGEDETPRSAQVYGVDPATVGEAVRIIAGEDRADHIDLNFGCPVPKVTRRGGGAAVPWKRELFTGIVRAAVDAAEPYGLPVTVKMRKGIDDDHLTYLEAGRTAESLGAAAVALHARTAAQHYSGTADWTAIARLKEEVRTIPVLGNGDVWAAEDAVRMVRETGADGVVVGRGCQGRPWLFADLAAAFHGSDLRVRPGLREVADTIYRHGELMIAYYDGDEDKGMRDLRKHMAWYLKGYPVGGDARRGLAMVSTLAELRERLDALDLSLPYPGEEAEGPRGRAGSPKKPHLPYGWLDSRELDTEFEAKLREAELSVSGGNANANANANA
AK018_016631395glyQS_1COG0423Glycine--tRNA ligaseGTGGCAGCACCGTCCGCGACCGCCAAGCTCGACGCCGTCGTCTCCCTCGCCAAGCGCCGAGGATTCGTCTTCCAGTCCGGCGAGATCTACGGCGGGACCCGCTCCGCGTGGGACTACGGCCCCCTGGGCGTCGAGCTCAAGGAGAACATCAAGAAGCAGTGGTGGAAGGCCATGACGCGTCGTCCCGACGTCGTCGGCCTGGACTCGTCGGTCATCCTGCCGACGCCGGTCTGGCAGGCCTCCGGTCACCTCGGTGCCTTCACCGACCCGCTGACCGAGTGCCTGAGCTGCCACAAGCGGTTCCGCGAGGACCAGATGATCGAGGAGTTCACCGAGCGCAAGGGCCGCGAGCCCGAGGGCGGCCTCGCCGAGATCGCCTGCCCGAACTGCGGCACCCGCGGCGAGTGGACCGAGCCGCGCGACTTCAACATGATGCTCAAGACCTACCTCGGCCCGGTCGAGGACGAGTCGGGTCGGCACTACCTCCGCCCGGAGACGGCCCAGGGCATCTTCGTGAACTTCGCCAACGTCGCCGCCGCGGCCCGGCAGAAGCCGCCGTTCGGCATCGCCCAGATCGGCAAGTCGTTCCGCAACGAGATCACGCCGGGCAACTTCATCTTCCGCACGCGCGAGTTCGAGCAGATGGAGATGGAGTACTTCGTCGAGCCGGGCACCGACGCCGAGTGGCACCAGTACTGGATCGACACCCGCATGGCCTGGTACACGGGCCTGGGCATCGACCCGGAGAACCTGCGCCTGTACGAGCACCCGCAGGAGAAGCTCTCGCACTACTCCACCCGCACGGTGGACATCGAGTACCGCTTCGGCTTCACCGGCAGCGAGTGGGGCGAGCTCGAGGGCATCGCCAACCGCACCGACTTCGACCTGTCGACGCACGCCGAGCACTCGGGCAAGGACCTGCAGTACCGCGACCCGGTGACCAACGAGAAGTACTTCCCGTACGTCATCGAGCCGGCCGCCGGCCTGACCCGCTCGCTCATGGCCTTCCTCGTCGAGGCCTACGCCGAGGACGAGGCGCCCAACACCAAGGGCGGCGTCGACAAGCGCACCGTGCTGCGCCTGGACAAGCGCCTCGCTCCGGTCAAGGCGGCGGTGCTCCCGCTGTCGAAGAGTTCCGAGCTGCTGCCCACGGCCGAGAAGCTGGCCGAGGACCTGCGGCAGTACTGGAACGTCGACCACGACGTCACCCAGGCGATCGGCAAGCGGTACCGCCGTCAGGACGAGATCGGCACGCCGTACTGCGTCACCGTCGACTTCGACACCCTCGACGACCAGGCCGTGACGATCCGCGACCGCGACACCATGAGCCAGGAGCGCGTCTCCCTGGACAAGGTCGCCGGCTACCTCGCGGAGAAGATGCCCGGGGTCTCCTGAMAAPSATAKLDAVVSLAKRRGFVFQSGEIYGGTRSAWDYGPLGVELKENIKKQWWKAMTRRPDVVGLDSSVILPTPVWQASGHLGAFTDPLTECLSCHKRFREDQMIEEFTERKGREPEGGLAEIACPNCGTRGEWTEPRDFNMMLKTYLGPVEDESGRHYLRPETAQGIFVNFANVAAAARQKPPFGIAQIGKSFRNEITPGNFIFRTREFEQMEMEYFVEPGTDAEWHQYWIDTRMAWYTGLGIDPENLRLYEHPQEKLSHYSTRTVDIEYRFGFTGSEWGELEGIANRTDFDLSTHAEHSGKDLQYRDPVTNEKYFPYVIEPAAGLTRSLMAFLVEAYAEDEAPNTKGGVDKRTVLRLDKRLAPVKAAVLPLSKSSELLPTAEKLAEDLRQYWNVDHDVTQAIGKRYRRQDEIGTPYCVTVDFDTLDDQAVTIRDRDTMSQERVSLDKVAGYLAEKMPGVSNANANANANA
AK018_016641026znuA_1COG0803High-affinity zinc uptake system binding-protein ZnuAATGAACCGTCGTGCCACGCTCGGCCTCGCCGCCGCGCTCCCCCTGAGCCTCGTCCTGACCGCCTGCGCCACCGACAGCGGCGGCAGCGACGACGCAGGGGCCGACGGCGTGCAGGTCCTCGCCTCGTTCTACCCGCTGCAGTACGTGGCCGAGCAGGTCGGCGGCGACCTCGTCAGCGTCGACAACCTCACGCCCCCCGCGGCGGACCCGCACGACCTCGAGCTGGCGCCCGCCCAGGTGCGCGAGCTCGGCGAGGCCTCCCTCGTCGTCTACCTGTCGGGCTTCCAGCCCGCCGTGGACGAGGGCGTGGAGGCACGTTCGCCGGAGCACGTCGTCGACGCCGCGGACGTCGTCACGCTGGAGGAGAACCCCGGGACCGTCCTGCACATGGACGAGGTCGACGAGGAGGGCCACGAGGGCGAGACGGCCGAGGAGCACGCCGAGCACGCCGACGAGGACGACCACGCCGAGGAGGGCGAGGACGACCACGACCACGGCGCCCTCGACCCGCACTTCTGGCTCGACCCCACCCTGCTGGAGCCGGTCGCCGACGCCGTCGCCGCCGAGCTCTCCGCGGCGGACCCGGACAACGCCGAGACCTACGCGGCCAACGCCGAGGCGCTGAAGTCCACCCTGGACGACCTCGACGCCGAGTTCGCCACCGCGCTGGAGCCCTGCGCGGGCGAGACGCTCGTGACGAGCCACGCCGCCTTCGGCTACCTGGCCGAGCGCTACGGCCTGACGCAGATCGGCATCGCGGCGATCGACCCGGAGGCCGAGCCCTCCCCCGCGCGCCTGCGGGAGATCGGCGAGGTCGTCGAGGAGAACGACGTGCAGACGATCTTCACCGAGACGCTCACCAGCCCGAAGGTCGCCGAGACCCTCGCCGACGACCTCGGCGTCGCCACCGCCGTGCTCGACCCGCTCGAGGGCCTGTCCACGGAGGACCTCGACGCCGGAGCGGACTACGTTGCTGTCATGGACGAGAACCTCGTGACGATCACCGACGGCCTGGGGTGCGCATGAMNRRATLGLAAALPLSLVLTACATDSGGSDDAGADGVQVLASFYPLQYVAEQVGGDLVSVDNLTPPAADPHDLELAPAQVRELGEASLVVYLSGFQPAVDEGVEARSPEHVVDAADVVTLEENPGTVLHMDEVDEEGHEGETAEEHAEHADEDDHAEEGEDDHDHGALDPHFWLDPTLLEPVADAVAAELSAADPDNAETYAANAEALKSTLDDLDAEFATALEPCAGETLVTSHAAFGYLAERYGLTQIGIAAIDPEAEPSPARLREIGEVVEENDVQTIFTETLTSPKVAETLADDLGVATAVLDPLEGLSTEDLDAGADYVAVMDENLVTITDGLGCAPGPT0004220_998DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINROOT_COLONIZATION-ZINK_TRANSPORT_LIPOPROTEIN,PGPT0004220-znuA-K09815NANA
AK018_01665807glnQ_3COG1126Glutamine transport ATP-binding protein GlnQATGACGGCTCCGGCCATCGACGTCCGCGACCTCCACGTCCACCTGGGCGCCAGCCACGTGCTGCGCGGGGTCGACCTGCGCGTGGACCACGGCGAGGTCGTCGCGCTGCTCGGCGCCAACGGGTCGGGCAAGTCCACCCTGGTGCGGACCGTCGTCGGCGTGCTGGAGCCGACCCGCGGCGAGGTGGGCCTGCTGGGCCACCGGCTCGGCGACGACGTGCCCTGGCAGCGCGTGGGCTACGTGCCGCAGCGCGTGAGCGCGGCCGCCGGCGTCCCGTCGACCGCGGCCGAGGTCGTCGCCTCCGGGCTCCTGCACGGCCGCCGCCTCGCCCTGCCGCGCGGATGGCGCCGCCTGGCACGCGAGGCGCTGGAGCAGGTCGGCCTGGCCGACCGCGCCGACCACGCCACCGGCCAGCTCTCCGGCGGCCAGCAGCAGCGGGTCCTCATCGCCCGCGCGCTGGTCCGCCGGCCGGAGCTGCTCGTCCTGGACGAGCCGGTCGCCGGCGTGGACCGGCCCAGCCAGGAGGCGTTCGCCGCCACCATGGCCCGCCTGGTCGACGACGGCCTGACGGTCCTCGTCGTGCTGCACGAGCTCGGCGAGCTCGCCGGCCTCATCAGCCGCGCCGTCGTCCTGCGGCACGGACAGGTCGTGCACGACGGCGCTCCGCCGCGCCCGCACGCCGAGCACGGGTCGCGCGAGCACGAGCACGTCCACCCCCACACCTCCGAGGTGCCGGTCGTCGGCGCCCACGACGTCGGGCTCTCCGACGGCCCGCTGCTGACCGGCGAGCAGGAGGCCCGCCCATGAMTAPAIDVRDLHVHLGASHVLRGVDLRVDHGEVVALLGANGSGKSTLVRTVVGVLEPTRGEVGLLGHRLGDDVPWQRVGYVPQRVSAAAGVPSTAAEVVASGLLHGRRLALPRGWRRLAREALEQVGLADRADHATGQLSGGQQQRVLIARALVRRPELLVLDEPVAGVDRPSQEAFAATMARLVDDGLTVLVVLHELGELAGLISRAVVLRHGQVVHDGAPPRPHAEHGSREHEHVHPHTSEVPVVGAHDVGLSDGPLLTGEQEARPPGPT0004230_279DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004230-znuC-K09817NANA
AK018_01666930znuB_1COG1108High-affinity zinc uptake system membrane protein ZnuBATGAGCGAGATCGCGTCCATGCTCACCGACCCCCTCATGCAGCGCGCCCTGCTGGCCGCCCTGCTCGTCGGGGCTGCCGCCCCGGTGGTCGGCACCTACCTCGTCCAGCGCCGTCTCGCCCTGCTCGGCGACGGCATCGGCCACGTCGCGCTGACCGGCGTGGCCCTCGGCTGGCTCGTCGGCTCGGCCATGGGCCTGGTCCCCAACGACGTGCTCGCCATCCCCGGCGCGGTGGTGGCCGCCGTCGTCGGCTCCGTCCTCATCGAGGTGGTCCGGCGGCGCGGGCGCACCTCGGGCGACCTCGCCCTGGCCATCATGTTCTACGGGGGCATCGCCGGCGGCGTCCTCATCATCACCGTCGCCGGCGGCTCGTCGGGCAGCCTCATGGCCTACCTGTTCGGGTCGATCTCGACGGTCACCACCACCGACCTGATCCTCACCGTGGTGCTGTGCCTGGTGATCCTCGCCGTCGGCGTCGGGCTGCGTCCGGCGCTGTTCTCGGTGAGCCACGACGAGGAGTTCGCCGTCTCCTCCGGCCTGCCGGTGTGGGCGCTCAACATGGCCGTGGCCGTCCTCGCCGCGCTGACCGTCACGGTCGCGATGCGGGTGGTCGGGCTGCTGCTCGTCTCCGCCCTGATGATCGTGCCGGTCGCGATCGGCCAGCTCGTGACGCACTCGTTCCGCCGCACCATGGGCGTGGGCTCCGTGGTCGGGGTCGTCGTGTGCGTGACCGGCCTGAGCATCAGCTACTGGTACCCGCTCTCCCCCGGCGCCCTCATCGTGGTGCTCGCCATCGGCGTCTACGCCGTCGTGGCGGGACTGCACCCGCTCATCGCACGCCGCCGCCCCGCCGGCGACCCGCACCCGGACATCCCCGACGACGTCCAGGTTGCCCCCCGGGCACCCGCGGACGCAGACTGCACACCATGAMSEIASMLTDPLMQRALLAALLVGAAAPVVGTYLVQRRLALLGDGIGHVALTGVALGWLVGSAMGLVPNDVLAIPGAVVAAVVGSVLIEVVRRRGRTSGDLALAIMFYGGIAGGVLIITVAGGSSGSLMAYLFGSISTVTTTDLILTVVLCLVILAVGVGLRPALFSVSHDEEFAVSSGLPVWALNMAVAVLAALTVTVAMRVVGLLLVSALMIVPVAIGQLVTHSFRRTMGVGSVVGVVVCVTGLSISYWYPLSPGALIVVLAIGVYAVVAGLHPLIARRRPAGDPHPDIPDDVQVAPRAPADADCTPPGPT0004225_173DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004225-znuB-K09816NANA
AK018_01667411zur_1COG0735Zinc uptake regulation proteinATGAACCAGCCGCTGCGCATGACCAGGCAGCGGGCCGCCGTCGCCGAGGTCCTGGACGCCAGCGACGAGTTCCGCAGCGCGCAGCAGCTCCACGAGCTGCTGCGCGACCGCGGCGACACCGTCGGGCTCGCCACCGTGTACCGCACCCTGCAGGCCCTGGCCGACGGCGGGGACGTGGACGTGCTGCGCACGGACGACGGCGAGGCGCTCTACCGGCGCTGCGCCCGCGCCGAGCACCACCACCACCTGGTGTGCCGCTCCTGCGGGCGCGCGGTCGAGATCGACGGCCCCACGGTCGAGGCCTGGGCGGCCGAGGTCGGCGCGTCCCAGGGCTTCTCCGACATCGAGCACACGATCGAGCTCTGGGGCACCTGCGCCCAGTGCCGCGCGACCGTGACGAAGTCGAGTTAGMNQPLRMTRQRAAVAEVLDASDEFRSAQQLHELLRDRGDTVGLATVYRTLQALADGGDVDVLRTDDGEALYRRCARAEHHHHLVCRSCGRAVEIDGPTVEAWAAEVGASQGFSDIEHTIELWGTCAQCRATVTKSSPGPT0003880_4910DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711NANA
AK018_01668546hypothetical proteinATGCTCACCGCCCCGCTGCTCGCCGCCGCGTCCTCGGACGCCGAGCGGCACGGCGTGTTCACCCTCGAGGGCTTCCCGTACTGGATCGTCTACGTCGCTGCCTTCGGCATCGTCATGGCCCGCGCCCAGGCGACGTACTGGCTGGGGCGCGGCGTCGCCCGGGGCGTCGGCGGCACGCGGGTCGCCCGGCTGCTGACCGGGCCGCGCGCCGCCCGCGTCATCGAGCAGATCCACCGGTGGGGCCCGCCGGCGGTGACCTTCTCCTTCCTGACCGTCGGGGTGCAGACCGTCGTCAACCTCGCCGCGGGCTACCTGCGCATGCCGTTCGCCCGCTACCTGGTCGCCCTGACCTTCGGGTGCCTGATCTGGGCGGCGATCTGGACGACCGTCGGCACCGCGGTCGTCTGGGGCGCCATCCTGCTGTTCCTGCACCAGCCCGCCGTGCTGGCGGCCCTGGTCGTGCTCGGCCTCGCCACGACCGCGTGGCTGCTGACCCGCCGTCGCGCCCGCGACGAGGACCCCCAGCCGCAGCCGGAGGAGGTCTGAMLTAPLLAAASSDAERHGVFTLEGFPYWIVYVAAFGIVMARAQATYWLGRGVARGVGGTRVARLLTGPRAARVIEQIHRWGPPAVTFSFLTVGVQTVVNLAAGYLRMPFARYLVALTFGCLIWAAIWTTVGTAVVWGAILLFLHQPAVLAALVVLGLATTAWLLTRRRARDEDPQPQPEEVNANANANANA
AK018_016691038yfiZ_1COG0609putative siderophore transport system permease protein YfiZATGCTCGCCGCCCCCGCCGCGGTCCCGGTCTCCGGGGCCGAGCAGGTCGCCCGACGCGCGCGACGCCGGGTCCTGGCGTGCGTGCTCGCCCTCGTGACGCTGGCGCTCGTGGTGCTCCTGAGCCTGGTGCTCGGCGTGCGGGACGTGTCCCTGCCCGTCGTGTGGCAGGCGCTCACCGACCCCGTGGAGGGGAACGTCGACCACCAGGTGATCGCCGGCCAGCGGGTGCCCCGCGCCCTCGTCGGCATCGCCGCCGGGCTCGCGCTCGGCGTCGCCGGCGCCGTCATCCAGGGCGTCACCCGCAACCCCATCGCCGACCCGGGGCTGCTCGGCCTGAACTCCGGGGCCTCGTTCGCCGTCGTCTGCGCCGTCTGGCTGCTCGGCCTCACCGCACCGTCGCAGTTCGTCTGGTTCGCTTTCCTGGGCGCCGCGGGGGCGGCCGCGCTGGTCTTCTCGATCGGTGCCGGACAGCCGGTCAAGCTCGCCCTCGTCGGGGCGACGGTCACCGCGCTCATCACCCCGCTCATCACGCTGGTCCTGCTGCGCGACCAGCAGGCGTTCAACCTCTACCGGTTCTGGGCCGTCGGGTCCCTCACGGGTCGCGGGACCGAGACGCTCCTGGTGGTGCTGCCGTTCCTCGCCGTCGGCGTCGTCCTGGCCGCCGGCCTCGCGCACCGGCTCAACATGCTCGCCCTCGGCGACGACATCGCCCGCGGGCTCGGCCAGCGCGTCGGCGTCACCCGGACCGTGGCCGGCCTGACGATCGTGCTGCTCGCCGGGGCCGCCACCTCCCTGGCCGGACCTATCGCCCTGGTCGGTCTCGCCGTCCCGCACGCCGCCCGTCGCCTGGTCGGCACCGACTACCGCTGGGTGATCACGCTGTCGGCGCTGCTCGGACCGGTGATGCTGCTCGGCGCCGACGTCATCGGCCGGCTGGTCCTGCCGCACAGCGAGCTGGAGGCCGGCGTCGTCGCCGCGGCGCTCGGCGCCCCCGTCCTCGTCGCGGTCGCCCGCGGCAAGAAGGTCGCGGGGGTGTGAMLAAPAAVPVSGAEQVARRARRRVLACVLALVTLALVVLLSLVLGVRDVSLPVVWQALTDPVEGNVDHQVIAGQRVPRALVGIAAGLALGVAGAVIQGVTRNPIADPGLLGLNSGASFAVVCAVWLLGLTAPSQFVWFAFLGAAGAAALVFSIGAGQPVKLALVGATVTALITPLITLVLLRDQQAFNLYRFWAVGSLTGRGTETLLVVLPFLAVGVVLAAGLAHRLNMLALGDDIARGLGQRVGVTRTVAGLTIVLLAGAATSLAGPIALVGLAVPHAARRLVGTDYRWVITLSALLGPVMLLGADVIGRLVLPHSELEAGVVAAALGAPVLVAVARGKKVAGVPGPT0003770_4838DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_016701050fepGCOG4779Ferric enterobactin transport system permease protein FepGATGACGACGACGCTCCCTCCCGCCCCCGCCGTCTCCCCGGTCGTCCGGCTCCGCGCCCGCCGCCGGCGTCGGCGCACGCTCGTGCTCGGCGTGCTCGCGGTGGTGATCGTCGCGCTGGCGGCCCTCGCCCTGACGCTCGGCGCCGCCTCGCTGTCCCCGGGCCGGGCGCTGCTGGCCGCCGTGGGCGTCGGCGACGACGGCGACCTGTTCATCGTGCAGCGGCTCCGGCTCCCCCGGCTCGCCGCCGCCCTGCTGGCCGGCGCCGCGTTCGGCCTCGCCGGCGCGCTGTTCCAGTCGACGCTGCGCAACCCGCTGGCCAGCCCCGACATCCTGGGCATCGCCACCGGAGCGTCCGTCGGCGCGGTGTACGCGATGCTCGGGCTGGGCCTGACCGGGCTCGCCGTGTCGGCGGGCGCGTTCGGCGGCGCGGCCGTCATCGCGCTGCTCATCTGGTTCTTCGCCTGGCGCCAGGGACTGCACTCCATCCGGTTCGTGCTCGTCGGGGTGGGCTTCGCCTACCTCGCCTCGTCGGTCCTGGCCTGGATGCTCGCGAGCGCCGACCAGCGCGACGCCGCGTCGGCCCTGGTGTGGACCGTGGGCAGCGTGGCCGACGTGCGGGGCACCCCCCTGACCGTGCTGGGGGTGGGGCTCGCCGTCCTGGCCGCGCTCGTCGCGCTGATCTCCCGGTGGCAGGCGCCCCTGGCCCTCGGCGACGACCACGCCCGCGGTCTCGGCGTGCCGACCGACGCGGCCCGGATCGGCTCGCTGCTCGCCGCCGTCGGGCTCGTCGCGCTGGCGACCTCCGTCGTCGGCCCCCTGGCGTTCGTCGCGCTCGTCGCCCCCGCCATCGCCCGACGCCTCCTCGACGACGGCGGTCCCGCCCTGTCCGTGTCCGTCGCCACGGGCGCCACCCTGGTGCTCGCCGCCGACATCGTCGCGGAGAACGGCCTGCTCGGCGTGGCCGCCCCGACCGGCATCGTCACCGGGCTGGTCGGGGCCCCGTACCTGCTGTGGCTGCTGGCCACCCACGAGAAGAGAACTCGCGCATGAMTTTLPPAPAVSPVVRLRARRRRRRTLVLGVLAVVIVALAALALTLGAASLSPGRALLAAVGVGDDGDLFIVQRLRLPRLAAALLAGAAFGLAGALFQSTLRNPLASPDILGIATGASVGAVYAMLGLGLTGLAVSAGAFGGAAVIALLIWFFAWRQGLHSIRFVLVGVGFAYLASSVLAWMLASADQRDAASALVWTVGSVADVRGTPLTVLGVGLAVLAALVALISRWQAPLALGDDHARGLGVPTDAARIGSLLAAVGLVALATSVVGPLAFVALVAPAIARRLLDDGGPALSVSVATGATLVLAADIVAENGLLGVAAPTGIVTGLVGAPYLLWLLATHEKRTRAPGPT0003770_2978DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_01671882yusV_1COG1120putative siderophore transport system ATP-binding protein YusVATGATCGACATCCCGCACCGCCCCGACGTCCGCCCGGCGCCGACCGCCGCCGGGGCGCTCGTCGCGCACGGCGTCTCGATCGGCTACGACGGCCACCGGGTCATCGACGGTCTCGACCTGACGCTGCCCGCCGGGAAGGTGACGGCCGTCGTCGGCCCGAACGCCTGCGGCAAGTCCACGCTGCTGCGCGGGCTGGCCCGCCTGCACCCCCTGGACGCCGGGCACGTGACGCTGGGCGACCGGGACGTCACCGCGATGCCCCGCAAGGAGCTGGCGCGGTCCGTCGGCGTGCTGCCGCAGACGTCGGTCGCGCCGGACGGCGTCCGGGTCGCCGAGCTGGTCGGGCGGGGCCGCTACCCGCACCAGGGCTGGTTCGGGCGGCACTCCAGCGACGACGACGCCGTGGTGCTGCGGTCGCTGGAGGCCACCGGGATCGCCGACCTCGCCGACCGGCCGGTGGCCGAGCTGTCCGGCGGCCAGCGGCAGCGGGTCTGGGTGGCCATGGTGCTCGCCCAGGAGACCGACGTCGTGCTGCTCGACGAGCCGACGACGTTCCTCGACGTCGCCCACCAGGTCGAGCTGCTCGACCTGCTGACCGACCTCAACGCCGAGCGCGGCACGACCGTGGTGATGGTGCTGCACGAGCTGAACCTCGCCGCCCGCTACGCCGACCACCTCGTGGTGATGAGCGCCGGCCGGGTGGTGGCCGAGGGGTCTCCGGCCGAGGTGCTCGACGCCCGCACGGTGCTCGACGCCTTCGGCCTCGACGCGACCGTGGTGCCGGACCCGGTCGCGGGCACGCCGATGATCGTGCCCGTGGGCCGGCACCGCCGCGCCGACGGCTCCCTCGCCCCGGACGGGTCGGCCGAGCACGGTCGGTGAMIDIPHRPDVRPAPTAAGALVAHGVSIGYDGHRVIDGLDLTLPAGKVTAVVGPNACGKSTLLRGLARLHPLDAGHVTLGDRDVTAMPRKELARSVGVLPQTSVAPDGVRVAELVGRGRYPHQGWFGRHSSDDDAVVLRSLEATGIADLADRPVAELSGGQRQRVWVAMVLAQETDVVLLDEPTTFLDVAHQVELLDLLTDLNAERGTTVVMVLHELNLAARYADHLVVMSAGRVVAEGSPAEVLDARTVLDAFGLDATVVPDPVAGTPMIVPVGRHRRADGSLAPDGSAEHGRPGPT0003760_415DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_016721077hypothetical proteinGTGCTTCGTCGCCGCTCCCTGACCACCGCCGTCGGCCTCGCCGCCGTCGGCGCCCTGACGCTGACCGCCTGCTCCGGCGGGAGCGACCCGGAGACGGACTCCGCCGAGGAGACCGCCGCGGCCGAGGAGTCGACCGAGGACGCCGGCGGCGCCACGGACGAGTTCCCGGTCACGATCTCCCACGCCCTGGGCGAGACGACGATCGAGTCCGAGCCGCAGCGCGTCGCCACCTGGGGCTGGGGCTCCACCGAGGCGGCACTGGCCGTCGGCGTCGCACCCGTCGGTGTCGCCGAACAGGTCTTCACCGTCGGCGAGCAGGCGCTCGTGCCGTGGGTCGCCGAGGAGTACGAGGCGCTCGGCGCCGAGGAGCCGGTCATCTTCACCGACCCCGAGGCGGGCGCGTCCGTGCCCTACGAGGAGTTCGTCGAGGCCGACCCCGACCTCATCCTGGCGCCCTACTCCGGTGTGACCGAGGAGCAGTACGAGGTGCTCTCCGACATCGCGCCCGTCGTGGCCTACCCGGAGGGCCCCTGGACCACGCCGTGGGACGAGATCATCACCATCACCGCCGAGGCCCTGGGCCGCTCCGCGGCCGGTGAGCAGGTCCTGACGGACATCGACACCTACTTCGCCGACCTCGCCGCCGAGCACCCCGCGTTCGAGGGCAAGACGTTCGCCGCCGTCGTCGACTCCCCCTCCGAGGGCCTGGTGTACGTCTACACCCCGGCCGACCCCCGCGTGAGCATCCTCGAGGGCCTCGGCGTCGTCTCGGCCCCGGCGGTGGACGAGCTCGACTCCTCCGACGGCGGGTTCTTCTACACGCTGTCCTACGAGGAGCTCGACCGGCTCGAGTCGGACTTCCTCATCGCCTACACGTACACGGAGGAGGAGGCCGAGACCTTCGGCGAGTCCGACGAGCTCCAGGCGATCCCCGCGATCGCCGACGGCAACGTCGTCAAGGTCGTCGGCAACGTCGCCGTCTCGTCCGTCTCGCCGCCCACGGCCCTGTCCTACGACTGGCCCGACGGCGTGCCCGCCGTCGTCGACCAGCTCGCGGAGCTCTACCCCGAGAGCTGAMLRRRSLTTAVGLAAVGALTLTACSGGSDPETDSAEETAAAEESTEDAGGATDEFPVTISHALGETTIESEPQRVATWGWGSTEAALAVGVAPVGVAEQVFTVGEQALVPWVAEEYEALGAEEPVIFTDPEAGASVPYEEFVEADPDLILAPYSGVTEEQYEVLSDIAPVVAYPEGPWTTPWDEIITITAEALGRSAAGEQVLTDIDTYFADLAAEHPAFEGKTFAAVVDSPSEGLVYVYTPADPRVSILEGLGVVSAPAVDELDSSDGGFFYTLSYEELDRLESDFLIAYTYTEEEAETFGESDELQAIPAIADGNVVKVVGNVAVSSVSPPTALSYDWPDGVPAVVDQLAELYPESPGPT0003765_2819DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
AK018_01673798COG0020Trans,polycis-polyprenyl diphosphate synthase ((2Z,6E)-farnesyl diphosphate specific)ATGCCCCGCGCCGCCCGCCCCTACGACGAGCCGTACCCGCACCCGTCCGGTGCCACCCCGCCGGAGATCCCCGCCCAGTTCGTGCCGAACCACGTCGCGATCGTCATGGACGGCAACGGCCGGTGGGCCAACGCGCGGGGGCTGTCCCGGATCGAGGGGCACAAGGAGGGCGAGAAGTCCCTGCTCGACGTCGTGGCGGGCGCCGTGCAGATCGGCGTCAAGCACGTCTCGGCCTACGCGTTCAGCACCGAGAACTGGAAGCGGTCGCCCGAGGAGGTGAAGTTCCTGCTCGGCTTCAACCGCGACGTGATCCGCCGACGCCGGGACGAGATGGCCTCCTGGGGAGTCCGGATCCGCTGGGCCGGCCGCCGGCCGAAGCTGTGGGGCTCCGTGATCGACGAGCTGCAGCGTGCCGAGGAGATGACCAAGGACAACGACCGCTGCACGCTGACGATGTGCGTCAACTACGGCGGGCGGGCCGAGATCGCCGACGCCGCGGCCGCGATCGCGCGGGACGCCGTCGAGGGGAGGATCAGCCCGGCCCGCGTCACCGAGAAGACGATCCAGCAGTACCTCGACGAGCCGGAGCTGCCCGACGTCGACCTGTTCCTGCGGTCCTCCGGCGAGCAGCGCACCAGCAACTTCATGATCTGGCAGGCGGCCTACGCGGAGATGGTGTTCCTGCCCGAGCCGTGGCCGGAGGTGGACCGGCGGCACCTGTGGCGGGCGGTCGAGGAGTTCGCGCGGCGGGACCGGCGCTACGGCGGAGCGGTGGACACGCCGGGCGCCTCGGCCTGAMPRAARPYDEPYPHPSGATPPEIPAQFVPNHVAIVMDGNGRWANARGLSRIEGHKEGEKSLLDVVAGAVQIGVKHVSAYAFSTENWKRSPEEVKFLLGFNRDVIRRRRDEMASWGVRIRWAGRRPKLWGSVIDELQRAEEMTKDNDRCTLTMCVNYGGRAEIADAAAAIARDAVEGRISPARVTEKTIQQYLDEPELPDVDLFLRSSGEQRTSNFMIWQAAYAEMVFLPEPWPEVDRRHLWRAVEEFARRDRRYGGAVDTPGASAPGPT0024180_641DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024180-uppS|ispU-K00806NANA
AK018_01674735recO_1COG1381DNA repair protein RecOGTGCCCCTGTACCGAGACGACGCGATCGTGCTGCGCACCCAGAAGTTGGGTGAGGCCGACCGCATCATCACGTTCCTGACCCGCGAGCACGGCAAGGTCCGCGCCGTCGGCCGGGGGGTGCGGCGCACGTCGTCGAAGTTCGGCGCCCGGCTCGAGCCCTTCATGGCCGTCGACGTCCAGCTCCACACCGGACGCAGCCTGGACTCGGTGACCCAGGTCGAGACGATCGGGCCCTTCGCCCGACAGATCAGCGCCGACTACGTGCTGTACACCGCGGGGGCGGCCATGCTGGAGACGGCCGACCGGCTCGTCTCGCAGGAGCACGAGCCCGCCGTCCAGCAGTACTGGCTGCTCGTCGGTGCCCTGCGGGCTCTGTCCGCCCGGGCGCACGCCCCGGGGCTCGTGCTCAACTCCTACCTGCTGCGGGCGCTGGCCGTGGCCGGGTGGGCGCCGTCGTTCACCGAGTGCGCCCGCTGCGGCGAGCCGGGACCGCACCACGCGTTCGCCGTCGCCCAGGGCGGTGCCGTGTGCACCCGCTGCCGTCCGCCGGGCGCGCCGTCGCCCGCACCGGAGACCTTCGTGCTGCTGGCCGCGCTGCTCGCCGGCGACTGGGACGTCGCCGACGCCGCGGACTCCCGGCACCGCAGCGAGGCGGACGGCCTGGTCGCCGCCTACTCGCAGTTCTACCTCGAGCGCACCCTGCGCTCCTTGCGTCTGATCGAGAGAGAGGCCTGAMPLYRDDAIVLRTQKLGEADRIITFLTREHGKVRAVGRGVRRTSSKFGARLEPFMAVDVQLHTGRSLDSVTQVETIGPFARQISADYVLYTAGAAMLETADRLVSQEHEPAVQQYWLLVGALRALSARAHAPGLVLNSYLLRALAVAGWAPSFTECARCGEPGPHHAFAVAQGGAVCTRCRPPGAPSPAPETFVLLAALLAGDWDVADAADSRHRSEADGLVAAYSQFYLERTLRSLRLIEREANANANANANA
AK018_016751791leuA_1COG01192-isopropylmalate synthaseATGAAGACCGAGCACACCCACGCCACCAACGGCATCGCCGCGCAGAATCCGCAGCGCAGCTCGCAGATGCCGTACCACCGGTACCTGCCCTTCCACGAGCAGATCGACGTCCACCTGCCGGACCGCACCTGGCCCGACCGCCGCATCGAGAAGGCCCCGCGCTGGTGCGCGGTCGACCTGCGGGACGGCAACCAGGCCCTCATCGAGCCGATGAACGCCGAGCGCAAGCTGCGGATGTTCGAGCTGCTGGTCCAGATGGGCTACAAGGAGATCGAGGTCGGGTTCCCCTCGGCCTCGCAGACCGACTTCGACTTCGTGCGCACGCTCATCGAGTCCGGCCGCATCCCCGACGACGTCGTCATCCAGGTGCTGACCCAGTGCCGCGACCACCTCATCGAACGCACCTTCGACGCGATCCGCGGCGCCAAGCAGGCGATCGTGCACATCTACAACTCCACGTCGATCCTGCAGCGCGAGGTCGTCTTCCGCACCGACCAGGACGGGATCATCGACATCGCCCTGCAGGGCGCGCGGCTGTGCCGCAAGCTCGAGGAGACCGTCCCCGAGACCACCGTCTACTACGAGTACTCCCCGGAGTCGTACACGGGCACCGAGCTGGAGTACGCCGCCCGGATCTGCAACGAGGTGCTCGAGGTCCTGGAGCCGACGGCGGAGCGTCCGGTGATCGTCAACCTGCCGGCCACGGTCGAGATGGCGACGCCCAACGTCTACGCCGACTCCATCGAGTGGATGAGCCGCAACCTCAACCACCGCGAGCACGTCGTGCTGTCCCTGCACCCGCACAACGACCGCGGCACCGCCGTCGCGGCGGCCGAGCTGGGCTACCAGGCCGGCGCCGACCGCATCGAGGGCTGCCTGTTCGGCAACGGCGAGCGCACCGGCAACGTCGACCTGGTCACCCTGGGCATGAACCTGTTCGGGCAGGGCATCGACCCGCAGATCGACTTCACCGTCGGCGGCGGCATCGACGCCATCCGCCGCACGGTCGAGTACTGCAACCAGCTCCCCGTGGCCGAGCGGCACCCCTACGTGGGCGACCTGGTCTTCACGGCGTTCTCCGGCTCGCACCAGGACGCCATCAAGAAGGGCCTGGAGCACATGGCGGCCCGGGCCGAGTCCGAGGGCAAGGCCGTCGACGAGATCACCTGGGGCGTGCCGTACCTGCCGATCGACCCCAAGGACCTGGGCCGCTCGTACGAAGCGGTCATCCGCGTGAACTCCCAGTCCGGCAAGGGCGGCGTCTCCTACCTGCTGCGCACCGAGCACCACCTGGAGCTGCCGCGCCGGCTGCAGATCGAGTTCTCCGGCGTCGTGCAGAAGTTCTCGGACACCGCGGGCAGCGAGGTCACCGGTGCCGACATCTGGCGCATGTTCACCGACGAGTACCTGCCCGTCGAGGAGAACGGCCACGCCGACCTGCAGCCGTGGGGCCGCCTGAAGCTGCGCGAGATCCGGACCCGTGCGGTGCAGGACGGAACGACGACGCTCGAGGCCGACGTCGTCGACCAGGGCACCGAGCAGACCCTGGTCGGCACCGGCAACGGGCCGCTGGACGCGTTCGTCACCGCGATCGCCGGCGTCGGGGTCGACGTCACGGTGCTGGACTACAGCGAGCACGCGATGAGCGCGGGCGGCGACGCGACGGCGGCCGCGTACGTCGAGTGCGCCGTCGGCGACGACGTGCTGTGGGGCGTCGGGATCGACCCGTCGATCACCACCGCCTCGCTCAAGGCGATCGTCTCCGCGGTGAACCGCGCCGAGCACGGCTGAMKTEHTHATNGIAAQNPQRSSQMPYHRYLPFHEQIDVHLPDRTWPDRRIEKAPRWCAVDLRDGNQALIEPMNAERKLRMFELLVQMGYKEIEVGFPSASQTDFDFVRTLIESGRIPDDVVIQVLTQCRDHLIERTFDAIRGAKQAIVHIYNSTSILQREVVFRTDQDGIIDIALQGARLCRKLEETVPETTVYYEYSPESYTGTELEYAARICNEVLEVLEPTAERPVIVNLPATVEMATPNVYADSIEWMSRNLNHREHVVLSLHPHNDRGTAVAAAELGYQAGADRIEGCLFGNGERTGNVDLVTLGMNLFGQGIDPQIDFTVGGGIDAIRRTVEYCNQLPVAERHPYVGDLVFTAFSGSHQDAIKKGLEHMAARAESEGKAVDEITWGVPYLPIDPKDLGRSYEAVIRVNSQSGKGGVSYLLRTEHHLELPRRLQIEFSGVVQKFSDTAGSEVTGADIWRMFTDEYLPVEENGHADLQPWGRLKLREIRTRAVQDGTTTLEADVVDQGTEQTLVGTGNGPLDAFVTAIAGVGVDVTVLDYSEHAMSAGGDATAAAYVECAVGDDVLWGVGIDPSITTASLKAIVSAVNRAEHGNANANANANA
AK018_016761785hypothetical proteinATGTCCGACGTCGTCGTCGTCGAGCAGCGCCGTTCGCCGTTCGCCGGGGTGCCGACCCGGGAGATCGTGCGCGACGTCGTCGCCGTGGTCGCGCTGCTGGTGGCCCTGCCGCTGCCCTGGGCGATCGTCACCCTGCGCGGTGTCGACGGCGCCGTGGCCGCGCGAGGCAGCGACCTGCTCTGGGTCGTGCTGGCCACGGTCGTCGCCGTCGTGGTGATCGTCGCCACCTACGCCGACCGTGCCGGGGTGCTGACCGGGGGCTGGAAGCGTCTCGCCGCACCGACCGCGCGGTGGTGGGGCCTGGCGCCCTACGGTCTGGTCACGCTGCTGTACCTGGTGCTCGATCTCGTCCGGGCGTCCGCCGACACCGGTGCGGTCGGCGGCGGGCTCGCCGTCGGACTGGCGGGCGCCGTGCTCGCCGCCGCGGTGCCCGACGTGCGGCTGATGACCGGGGCCGCCGTGGTGGTCGCCGTGGGTGCCGTCGCGACCCCCGTGCTGACCCTGGTCGACGGCGTGGCCTGGCCCGACGTGGTCGGGTCCGCGCTCGGCGCGCTCCTGGTCCTCGGTCTGCTCTGGGCGACCGCGCGGCGGTTCCTGCGCGGGGACGACGCGGCCGGCGTCGTGCTCCTCGTCCTCGGGGCCGCCGTGGCGGTCGAGGTGACGATGCTCGGCGGCGGTGCGGTCGGGGTCTGGCTCGAGTCGGTCCACGGGCTGCGCTTCGGCCTGCTCCTCCTGCCCGCGGTGGCCGCGGCCGCCGTCGTGCCGGTGCTGGCCCGGTGGGACGCCGTCGTCGGGGAACCGGCCGTGGCCACCGCGTCGCGCTGGATCCGCGTCGCGGTCCAGGCGTTCGAGCTGATGCTGCTGGTCGCGGCCTTCGTCGTGATCGTGGCCGTGGTCCAGCTCGTGGCCGGGCGGATCGAGGTCGAGCCGGTGCTGCGCCTGGTCGTCGGCGTGCTCGTCGTGGTGGTGGCGGTCCTGGCGCGGCGCGCCCTGCTGCGCGACCCGCGCGGCGGTCACGCGACGGCGGTCGGGGCCGCCTGCGTCGTCGTCGTGCTCGGCGTCGTCATCCTCGTGGCGCGCGCCGGGATCGGGACCGCCTCGCGGGTGGAGGAGCTGCTGCTGGCGCTCGCGCTGCCCGCCCTGGTGCTCGCCGCGCTCATCGTGCCGCCGTCGGTCACGACGTTCCTCGCGGTCGACCCGCAGGACCCCGCGCAGCAGGTGCCCGGCCGGCCGCAGCAGCCCTTCGGTGCGCAGCCGGGCTACGCGCAGCCGGGCTACGCGCAGCCGGGCTACGCCGAGCCCGCGCAGCCGGCGCACCCCGGCTACGCGGAGGCCGCACAGCCCGAGCCCGCGCAGCCCGAGCCCGCGCAGCCGGCCGAGACCGAGCCGGGCTCGCGCTGGCGGGGAACCTGGGCGGCGGGCACGGACGCGACGCAGCAGATGTCGCCGGTGCGCTCGGCCGCGACGGGTGAGCAGCCGTCCGCCCACGGGGCCCCGTCGGTGGCCGACGAGACGGCCGTGCAGCAGCCGGTGCAGCAGGGTGCGGCGCCGGCCGAGTCCACGCAGATGCTGCCGCCGGTCACCCACGTGCCCGGCAGCCCCTGGACCCCCGAGCAGGCGCTCGACCCGCACACGCCGCTGGAGCAGCTCGCGCAGATCGTCCAGGAGGCACCCCACCTGCGGCCGCACGTCGCGGCGAACACCTCGACCTACCCGGCCCTGCTCGACTGGCTCGGCGCGCTGGGCGACCCGTCGGTCGACGCCGCGCTGCGCACCCGCCGCTGAMSDVVVVEQRRSPFAGVPTREIVRDVVAVVALLVALPLPWAIVTLRGVDGAVAARGSDLLWVVLATVVAVVVIVATYADRAGVLTGGWKRLAAPTARWWGLAPYGLVTLLYLVLDLVRASADTGAVGGGLAVGLAGAVLAAAVPDVRLMTGAAVVVAVGAVATPVLTLVDGVAWPDVVGSALGALLVLGLLWATARRFLRGDDAAGVVLLVLGAAVAVEVTMLGGGAVGVWLESVHGLRFGLLLLPAVAAAAVVPVLARWDAVVGEPAVATASRWIRVAVQAFELMLLVAAFVVIVAVVQLVAGRIEVEPVLRLVVGVLVVVVAVLARRALLRDPRGGHATAVGAACVVVVLGVVILVARAGIGTASRVEELLLALALPALVLAALIVPPSVTTFLAVDPQDPAQQVPGRPQQPFGAQPGYAQPGYAQPGYAEPAQPAHPGYAEAAQPEPAQPEPAQPAETEPGSRWRGTWAAGTDATQQMSPVRSAATGEQPSAHGAPSVADETAVQQPVQQGAAPAESTQMLPPVTHVPGSPWTPEQALDPHTPLEQLAQIVQEAPHLRPHVAANTSTYPALLDWLGALGDPSVDAALRTRRNANANANANA
AK018_016771590hypothetical proteinGTGGTGTTCCGGACGTTCGCGGCCAGCCTGGCCCTGTTGGTCGGGCTCGCCGTGGTGGGCTCCCTGGCCGGTCCGCAGTGGCACCCCGTCCCCGTGCGCGACCACATCGTGCCGACGCGGTCCGCCACCACCATCGAGTCCACCGAGCCCGCGGCGACCGGCGACGTCGGTGAGGTCGGCGACCACGCCGTGCGCACCACCACGGTGACGGTCGACCTCGGGGACACCACCGTCGACGGGCTGCTGCGGCGGCCGCTGGACGCGGACGGCGCGGTGCTGCCGGACCGCCCCGGCGTGGTGTTCGTGCACGGCGCCGGGACCGGCGCCGCCGAGGAGGCGTTCGTCGACACCGCCGAGCTGCTGGCCAGCGCCGGCGTGGCCACGCTCGTGCCGGACAAGCGGCTGGACACCTACTCCACCCGCGAGCGCGACTACGAGGCGATGGCCGAGGACTACCTGCGCTCGGTCGAGCTGCTGCGCACCGTCGACGGCGTGGACCCCGAGCGGGTGGGCGCCTACGGCGAGTCCGAGGGCACCTGGATCGTCCCGGTGATGCAGGTCGAGGACCCCGACGTCGCCTTCACGGTGCTGGTCTCCGCACCGGTCGTGCCGCCCCGCGAGCAGGCCGCCTTCGCCGTCGACAACTACCTGCGCAACACCGGGGTGCCCGGCCAGGTGTTCCGCGCCATCCCGCGTGCGGTCGGGATGCAGCTCCCGGGCGGCGGGTTCGACTACGCCGACTTCGACGTGCGCCCGTGGCTGGAGGACCAGACCGCGCCGCTGCTGGTCGTCTACGGCACCGCCGACCCGTCGATGCCCATCGAGCAGGGCGTGCGGCTGATCCTCGCCGACACGGCCGTCGGGGCGGGGGCGCCGGTGACGGTGCGGTACTACGCCGGCGCCGACCACGGCATCCGGCTGCGGGACGAGCTCCCCGCCGACGCCCCGGAGGACGCCGAGGCGCCGCTGCACCCGCACTTCCCCCGCGACCTGGCCGCGTGGGTCCAGGGGCTGCCGGGCACCGCCGACGCCGCACCGCGCATCGCCGGGGACGCTCCGCAGCAGCTCTACCTGGCCGCCCCCGTGCCGCAGCCGCGCTGGTGGGGCAACGGCGACGTGGTGGTCGCCGTCGTCGTCGGGGGGACCGGCCTCGTCGTGCTCGCGCTCGTGGCCTGGGGCGTGGTGTCGCTGGCCCGGCGGGTGCTGCACCGCACCGCGCCGCCGAGCGGGCGCTTCGCGCCGGGAGTAGGGCCGCCGCTGGTCGCCCTCGGTGTGGTGTCGGTGGCCACGGTGTGCGGCCTGGCGGTCTACCTCGTCGCGGTGGCGCGGCTCGCCATCGACTACGAGCGCGACGCCCTCGTCGTCCAGGGCGGCTGGATCGCCGTGCGGCTGCTCGGCGCCGTGGCCGCGGTGGCCGCCGCCGTCCTGCTGCAGCGTGTCGCCGACGTCCGGGCGCGGCACCGCGCCGAGCGCGACGTCGTCGTCGCCCGCGGCGCCGTGGCGCACCTCACGCTGTGGGCCGTGCTCGTCGGGTCGGCGTTGTTGCTGGTCACGGCCGCGTACTGGGGGGTGTACCAGCTCGGGATCTGAMVFRTFAASLALLVGLAVVGSLAGPQWHPVPVRDHIVPTRSATTIESTEPAATGDVGEVGDHAVRTTTVTVDLGDTTVDGLLRRPLDADGAVLPDRPGVVFVHGAGTGAAEEAFVDTAELLASAGVATLVPDKRLDTYSTRERDYEAMAEDYLRSVELLRTVDGVDPERVGAYGESEGTWIVPVMQVEDPDVAFTVLVSAPVVPPREQAAFAVDNYLRNTGVPGQVFRAIPRAVGMQLPGGGFDYADFDVRPWLEDQTAPLLVVYGTADPSMPIEQGVRLILADTAVGAGAPVTVRYYAGADHGIRLRDELPADAPEDAEAPLHPHFPRDLAAWVQGLPGTADAAPRIAGDAPQQLYLAAPVPQPRWWGNGDVVVAVVVGGTGLVVLALVAWGVVSLARRVLHRTAPPSGRFAPGVGPPLVALGVVSVATVCGLAVYLVAVARLAIDYERDALVVQGGWIAVRLLGAVAAVAAAVLLQRVADVRARHRAERDVVVARGAVAHLTLWAVLVGSALLLVTAAYWGVYQLGINANANANANA
AK018_01678951era_1COG1159GTPase EraATGACCCACGAGAACCCGCACCGCTCCGGCTTCGCCTGCCTGGTCGGCCGCCCGAACGTCGGCAAGTCGACCCTGACCAACGCGCTGGTGGGGCAGAAGGTCGCGATCATGTCGGCGCGTCCCCAGACGACCCGGCACACGATCCGCGGGATCGTCCAGCGCGACGACGCCCAGATGGTGCTCGTGGACACCCCGGGGCTGCACCGGCCCCGCACCCTGCTGGGGGAGCGGCTGAACACGCTCGTCGTCGACACCCTCAGCGAGGTGGACGTGGTCGGCTTCTGCCTGCCCGCGGACCAGAAGATCGGCCCCGGGGACCGGTACATCGCGAACCAGCTCGCCCCGCTCATGGAGGGCCGCACGGCCGTCCCCGTCGTGGCGGTCGTGACCAAGGCCGACCTGGTCGGTCGCGCCGCCCTGGCCGAGCAGCTCATGGCCGTGGACCAGCTCGCCCGGTCGATGGACCGGGACTGGTCGGCCATCGTGCCGGTCTCGGCCCAGGACGGCTTCCAGGTCGCCGAGCTCACCGAGGTCCTGGTCGCCCACCTGCCCGAGGGGCCCGACCTCTACCCGGGCGGCGAGCTGACCGACGAGCCCGAGGAGACGATGATCGCCGAGCTCGTGCGCGAGGCGGCCCTGGAGGGCATCCGCGACGAGCTGCCGCACTCGCTGGCGGTCGTGGTCGAGGAGATCGTGCCGCGCGAGGGGTCCGGTGAGGACCCCTCGGGCAAGCCGCCGCTGCTGGACGTGCGCGTGAACCTGTTCGTCGAGCGCGAGAGCCAGAAGGGCATCATCATCGGCCGCGGCGGTTCGCGGCTGCGCGAGGTCGGGTCCCAGGCACGGGAGGGCATCGAGAAGCTCCTCGGCGCGCGGATCTACCTCGACCTGCACGTGAAGGTCGCCAAGGACTGGCAGCGCGACCCGAAACAGCTCCAGCGCCTCGGCTTCTGAMTHENPHRSGFACLVGRPNVGKSTLTNALVGQKVAIMSARPQTTRHTIRGIVQRDDAQMVLVDTPGLHRPRTLLGERLNTLVVDTLSEVDVVGFCLPADQKIGPGDRYIANQLAPLMEGRTAVPVVAVVTKADLVGRAALAEQLMAVDQLARSMDRDWSAIVPVSAQDGFQVAELTEVLVAHLPEGPDLYPGGELTDEPEETMIAELVREAALEGIRDELPHSLAVVVEEIVPREGSGEDPSGKPPLLDVRVNLFVERESQKGIIIGRGGSRLREVGSQAREGIEKLLGARIYLDLHVKVAKDWQRDPKQLQRLGFNANANANANA
AK018_016791332hypothetical proteinGTGAGCGGCGCGGTGGACGTCCCCGACCTCCTGCTGTGGGCCGTGCTCGTCGTCGCGCTCGGCCTGTCCGCCCTGCTCAGCGCCGGCGGGGCCGCCGTCGAACGGGTCACCAAGGTCTCCCTGGCCCTCGCCCTGTCCGAGCCCGGCCCCGACGGCGGCTCACCGGGGCCGCGCCGTCGGCGCAACGTGCGGCAGGCGCAGGTGCTCGCGGCCGACCCCCGGGCGGCGGGCTCCTTCGCGCTGGTGCGGGTGCTGGCCGAGACCCTGTCGGTCGCCTCGGCCACGCTGCTGCTCGCGCACTGGTTCGACCGATGGTGGGAGGTGCTGGTCGGGGCCGCCGTGGTCGGTGCGCTCGCGGGGATCCTCGTCGTGCGGCTCAGCCCGCGCACCTGGGCCCACCACCGCCCGACGACCGCGCTGGTGATGCTCGCCGGGCCGCTGTCCGTGGTGCACCGGGCCGTGTCCTGGGTGCCGCGGCGTGACCGCGCCGCCGACGTGGCGGTCCCGGAGACCGACGAGCTGCAGGACATGGCCGACCGCGTCCGGGAGAACGAGGCGATCGAGGAACCGGAGCGCGAGCTCCTGCGCTCGGCCCTGCAGCTCGGCGACACCCTCGCCCGCGAGGTGATGGTGCCGCGCACCGACATGGTGACCACCGGCACGGACACGTCGCTGGCGAAGGCGATGCGGCTGTTCCTGCGCTCGGGCTTCTCGCGCGTGCCCGTCGTGGGCCGGACGGTCGACGACCTCGTCGGCGTCGTCTACCTCAAGGACGTCGCGCGGCGGATCGAGAACGACCCCGGGGCGGCGGACTGGCCCGTGCGGGACGTGGCGCGCGAGGCCGTGTTCGTCCCCGAGTCCAAGCCGGCCGACGACCTGCTGCGCGAGATGCAGGCGCGCCGCTCGCACATCGCCGTCGTCGTCGACGAGTACGGCGGCGTGGCCGGGCTGGTCACGGTCGAGGACATCGTCGAGGAGCTGGTCGGCGAGCTGACCGACGAGCACGACACCGTCGCCGAGCCCGAGCCGGAGGACCTCGGCGACGGCCTGTGGCGCATCCCCGCCCGCCTGCCGGTGGACGAGCTCGGCGAGCTGTTCGACCTGCGTCTCGACGACGACGACGTCGACACCGCCGGCGGCCTGCTCGCCAAGGCCCTCGGCAAGGTCCCGCTGGCCGGGTCCTCGGCCGACGTCGGCGCCCTGCGGCTCGAGGCCGAGCGCGTCGAGGGACGCCGCAAGCAGCTCGCCAGCCTGCTGGTGCGCCGGATCGCCCTGCCAGCAGCGGACGAGGACGACGACCTCGTGCCGCACGACCAGAAGGACGCCGTATGAMSGAVDVPDLLLWAVLVVALGLSALLSAGGAAVERVTKVSLALALSEPGPDGGSPGPRRRRNVRQAQVLAADPRAAGSFALVRVLAETLSVASATLLLAHWFDRWWEVLVGAAVVGALAGILVVRLSPRTWAHHRPTTALVMLAGPLSVVHRAVSWVPRRDRAADVAVPETDELQDMADRVRENEAIEEPERELLRSALQLGDTLAREVMVPRTDMVTTGTDTSLAKAMRLFLRSGFSRVPVVGRTVDDLVGVVYLKDVARRIENDPGAADWPVRDVAREAVFVPESKPADDLLREMQARRSHIAVVVDEYGGVAGLVTVEDIVEELVGELTDEHDTVAEPEPEDLGDGLWRIPARLPVDELGELFDLRLDDDDVDTAGGLLAKALGKVPLAGSSADVGALRLEAERVEGRRKQLASLLVRRIALPAADEDDDLVPHDQKDAVNANANANANA
AK018_01680453ybeY_1COG0319Endoribonuclease YbeYGTGAGCATCGAGGTCAACAACGAGTCCGGCGTCGAGGTCGACGAGGCCGAGTTCGCCGCCCTGGCCCGGTTCGCCCTCGACGAGCTGCACGTCCACCCCGCCGCCGAGCTGTCCGTCGTGCTCGTCGACACCGCCACGATGACCGACCTGCACGTGCAGTGGATGGACGAGCCCGGGCCCACCGACGTGCTCTCCTTCCCCATGGACGAGCTGCGGCCCGGCCGGGAGGGCGAGGAGACCCCGCCCGGCACCCTCGGCGACATCGTGCTGTGCCCCGACGTGGCGGCCACCCAGGCCCGCGCCGCCGGCCACTCCACGGTCGAGGAGCTCCTGCTGCTCACGACCCACGGGATCCTGCACCTGCTCGGCTACGACCACGCCGAGGCCGACGAGGAGCGCGAGATGTTCGCGCTGCAGCGACGGCTCCTGCTCACCTTCCTGGCCGGGCGGTGAMSIEVNNESGVEVDEAEFAALARFALDELHVHPAAELSVVLVDTATMTDLHVQWMDEPGPTDVLSFPMDELRPGREGEETPPGTLGDIVLCPDVAATQARAAGHSTVEELLLLTTHGILHLLGYDHAEADEEREMFALQRRLLLTFLAGRPGPT0002700_49DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217NANA
AK018_016811074COG1702PhoH-like proteinATGGAGTCCCGCCTGAGCATGACGTCCGCCGCCTCCGACAGCCCCCTGACCGACCACCCGCGGCACGCCACCGAGCACCGCGTCGTCGTCCCCCCGCACGTGCCGATGGTGGCGCTGCTGGGCAGCGGCGACACCGTGCTCCGCGCGATCGAGGACGGGTTCGGTGGCGTGGACGTGCACGCCCGCGGCAACGAGATCTCCGTCCACGGCCCCGCCGGCGACGTCGCGCTGGTGGCCCGCCTGCTGGACGAGCTGGTCGAGGTCGTCGAGGCCGGGACCGCGTTGACCCCCGAGGTGGTCTCCCGCTCGGTCTCGATGCTCACCTCCGCCGCCGCGCAGCGGCCCGCCGAGGTCCTCACCCACGACATCCTCTCCGGGCGCGGTCGCACGATCCGCCCGAAGACCGTCGGGCAGAAGCGCTACGTGGAGGCCATCGCGGCCAACACGATCACCTTCGGCATCGGCCCCGCCGGCACCGGCAAGACCTACCTCGCCATGGCGAAGGCCGTGCAGGCCCTGCAGGCCAAGCAGATCAACCGGATCGTGCTCACCCGGCCCGCCGTCGAGGCGGGGGAGAAGCTCGGCTACCTGCCCGGATCGTTGAGCGACAAGATCGACCCGTACCTGCGGCCGCTGTACGACGCGCTGCACGACATGCTCGACCCCGACGCGATCCCACGGCTGGTCGAGTCCGGCACGATCGAGGTCGCGCCGCTGGCGTACATGCGCGGACGGACGATCAACGACGCCTTCATCATCCTCGACGAGGCGCAGAACACCTCGGCCGAGCAGATGAAGATGTTCCTGACCCGGCTCGGCTTCGGCTCGACGATGGTCATCACCGGTGACGCCACCCAGGTCGATCTGCCCGGCGGTACGACGTCGGGCCTGCGCGTGGTCGAGGACATCCTCACCGGGGTCGACGACGTCGAGTTCTGCCGGTTGACCAGCACCGACGTGGTCCGGCACCGCCTGGTCAGCGACATCGTCGACGCCTACGCCCGCTGGGACAGCACCCGCCCGGCCGACGACCGCCGTCGGCCCGGCCGCCACGACCGAGGAGGACGCCGGTGAMESRLSMTSAASDSPLTDHPRHATEHRVVVPPHVPMVALLGSGDTVLRAIEDGFGGVDVHARGNEISVHGPAGDVALVARLLDELVEVVEAGTALTPEVVSRSVSMLTSAAAQRPAEVLTHDILSGRGRTIRPKTVGQKRYVEAIAANTITFGIGPAGTGKTYLAMAKAVQALQAKQINRIVLTRPAVEAGEKLGYLPGSLSDKIDPYLRPLYDALHDMLDPDAIPRLVESGTIEVAPLAYMRGRTINDAFIILDEAQNTSAEQMKMFLTRLGFGSTMVITGDATQVDLPGGTTSGLRVVEDILTGVDDVEFCRLTSTDVVRHRLVSDIVDAYARWDSTRPADDRRRPGRHDRGGRRPGPT0002700_582DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217NANA
AK018_01682354COG0537Purine nucleoside phosphoramidaseATGACGACGGAGACCGAGGCGGACTGCCTCTTCTGCAAGATCGTCGCCGGCGACCTGCCCGCCGACGTCGTGGCCGACACCGACCGGGTCGTGGCCTTCCGGGACATCGAACCGCAGGCTCCCGTCCACGTGCTCGTGGTGCCCAAGGAGCACCACGGGGACGTGTCCGTCCTGGCCGCGGCCGACCCGGGACTGCTCGCCGAGGTCGTCGGTGTCGCCGACAACGTCGCGCACGAGCTGGCCGACGGCCAGTACCGGTTCATCTTCAACTCCGGCCCGCGTGCGGGCCAGAGCGTCTTCCACGTGCACGGCCACGTCCTGGCCGGCACCCAGCTGGGATGGAGTCCCGCCTGAMTTETEADCLFCKIVAGDLPADVVADTDRVVAFRDIEPQAPVHVLVVPKEHHGDVSVLAAADPGLLAEVVGVADNVAHELADGQYRFIFNSGPRAGQSVFHVHGHVLAGTQLGWSPANANANANANA
AK018_01683777rsmE_1COG1385Ribosomal RNA small subunit methyltransferase EGTGAGCGCACCGGTCTTCGTCGACGCCGGCGTGGCGTCCGCTCCGGCGCCGGGGGCGACCTTCGTCCTCGGGGGGGCCGAGGGCCGGCACGCCGGCGTCGTCCAGCGGCGCCGCCCGGGGGAGCGGGTCGACGTGGTCGACGGTACGGGCACCCGCGTGCTCGGCGTGGTCGAGGCCGTCGACGGCGGCGAGGTCACCCTGCGCGTCGAGGACGTGCGGCACGAGCCCGCCCCTGCCGTGCGGCTCGCGCTGGTCCAGGCGCTGGCCAAGGGCGACCGCGACCACCAGGCCGTCGAGGCGGCCGTGGAGGTCGGCGTCGACGCCGTCGTGCCGTGGCAGGCCGACCGGTCCGTGGTCGTCTGGCGCGGCCCGCGGGCCGAGAAGGCGCGCGCCAAGTGGGCCGCGACGGTGCTCGCGGCGGTCAAGCAGTCCCGTCGGGCCTGGCTGCCACCCGTGCACGAGCACGTGACCACCCGCGGGCTCGCCGACCGGGTGCGCGAGGTCGTCGCCGCGGGCGGTGCCGTCGTCGTGCTGCACGAGGAGGCGGCGACGCCGCTCGCGGACGTCCCGCTGCCCACGGCGGCGGACGGCACGGCCGAGGCGCCCGAGGTCGACCTCGTCGTGGGTCCCGAGGGCGGCATCTCCCCCGAGGAGGTCACCGCCCTCACCGACGCCGGTGCCGTGACGGCCCGGCTGGGTCCGCACGTGCTGCGCACCTCCACCGCCGGACCCGTCGCCGTCGCGATTCTCAGCGACCGTACGGGCCGCTGGCGGTAGMSAPVFVDAGVASAPAPGATFVLGGAEGRHAGVVQRRRPGERVDVVDGTGTRVLGVVEAVDGGEVTLRVEDVRHEPAPAVRLALVQALAKGDRDHQAVEAAVEVGVDAVVPWQADRSVVVWRGPRAEKARAKWAATVLAAVKQSRRAWLPPVHEHVTTRGLADRVREVVAAGGAVVVLHEEAATPLADVPLPTAADGTAEAPEVDLVVGPEGGISPEEVTALTDAGAVTARLGPHVLRTSTAGPVAVAILSDRTGRWRNANANANANA
AK018_016841122dnaJ2_1COG0484Chaperone protein DnaJ 2GTGACCGACTACTACGAGATCCTCGGCGTCGAGCGTGACGCCACCCCCGAGCAGATCAAGAAGGCGTACCGTCGCCTGGCCCGCGAGCTCCACCCCGACGTCGCGGGTGCCGAGGGCGAGGAGAAGTTCAAGGACGTCGCCCGTGCCTACGAGGTGCTGTCGAACCGCGACAAGCGCGAGCAGTACGACATGGGCGTCGACCCGAGCGCGCCCGGCGGCGGCGCCGGTGCCGGTTTCGGCCAGGGCTTCGGGTTCCAGGACATCTTCGAGACGTTCTTCGGCGGCGGCCAGCCGTCCGGCCCCGTGCCGCGCGCCCGACGCGGCCAGGACGCCCTGGTGCGCATGGACATCGACCTCACCGAGGCGACGTTCGGCGGCAAGCGCGAGCTGCAGGTCGACACGGCCGTGGTGTGCGGGACGTGCGGCGGCAACGGCTGCCGACCCGGCACCGACGTGCGCACCTGCGAGGTGTGCCACGGCCAGGGCAACGTCCAGCGCGTGGCCCGGTCCTTCCTGGGCCAGGTCATGACCACCGCGCCCTGCGCGGCCTGCCAGGGCTTCGGCACCGTCATCCCCGAGCCGTGCGCCGAGTGCTCCGGCGAGGGCAGGGTGCGCTCGCGCCGGTCGCTGACGGTGAACGTGCCCGCCGGCGTCGACACCGGCACGCGCATCAAGCTGTCCTCCCAGGGGGAGGTCGGCCCGGGCGGTGGCCCGGCCGGCGACCTGTACGTCGAGATCCGCGAGAAGGCGCACGACACGTTCGTGCGTCGCGGCGACGACCTGCACTGCACCCTGCCGGTGCCGGTCACCGCGGCCGCCCTGGGCACCGTGCTGGAGCTGTCCACCCTCGACGGTCAGCAGGAGATCGACCTGCGCCCGGGCACGCAGCCGGGCGAGGTCGTCACGCTCAAGGGTCTCGGCGTCGGGCACCTGCACGCGAACGGCCGCGGCGACCTGAACGTCCACATCGACGTGCAGGTCCCGACCTCCCTCGACGAGGAGCAGACCGAGCTGCTGCGCAAGCTCGCCGAGCTGCGCGACGAGGAGCGTCCCGACCCGCGGCTCGCGGCCGCGCACCCCGGCGTGTTCTCGCGCCTGCGGGACAAGTTCGCCGGGCGCTGAMTDYYEILGVERDATPEQIKKAYRRLARELHPDVAGAEGEEKFKDVARAYEVLSNRDKREQYDMGVDPSAPGGGAGAGFGQGFGFQDIFETFFGGGQPSGPVPRARRGQDALVRMDIDLTEATFGGKRELQVDTAVVCGTCGGNGCRPGTDVRTCEVCHGQGNVQRVARSFLGQVMTTAPCAACQGFGTVIPEPCAECSGEGRVRSRRSLTVNVPAGVDTGTRIKLSSQGEVGPGGGPAGDLYVEIREKAHDTFVRRGDDLHCTLPVPVTAAALGTVLELSTLDGQQEIDLRPGTQPGEVVTLKGLGVGHLHANGRGDLNVHIDVQVPTSLDEEQTELLRKLAELRDEERPDPRLAAAHPGVFSRLRDKFAGRPGPT0014545_4929DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686NANA
AK018_016851041hrcA_1COG1420Heat-inducible transcription repressor HrcAATGAGCGAGGAACGTCGGCTCGCAGTACTGCGCGCCATCGTCGAGGACTACGTCACCACGCGCGAGCCCGTCGGGTCGCGCATGCTCACCGAACGCCACGGCCTCGGCGTGTCCCCGGCCACCATCCGCAACGACATGGCCGCGCTCGAGGACGCCGGGTACATCGCCCAGCCGCACACGTCCGCCGGACGCGTGCCCACGGACGCCGGCTACCGGGTGTTCGTCGACCGCCTCGCCGAGGTGCGACCCCTCAACGTGCCCCAGAAGCGGGCCATCGAGACCTTCCTGTCCGAGGCCGTGGACCTCGACGACGTCCTGACCCGGGCCGGGCGGCTCATCGCCCAGCTCACCGGCCAGGTCGCCGTCGTGCAGTACCCGTCGCTGCGGCGGTCCGGGCTGCGTCACCTCGAGCTCGTGCCCGTGGCGGAGTCCCGGATCCTGGTCGTGGTCATCACCGACACCGGCCGGGTCGAGCAGCGCTACTGCGAGCTGCCCGTGCGTCCCGACGGCTCCGACGCGGGCGACGACCTCGACGAGGCGACCCTCGGCGAGCTGCGGGCCCGGTTCAACGCGGCCGCGGCGGGCAAGCGGCTGGCCGACCTCCCCGCGGCCTTCGCGGGCCTGGTCGAGTCCGTGGGCCCCCACCTGAGCGGGGTGACCCAGGCCGTCGCGGACCTCGTCGTGGAGACCCTCGGCGAGGAGAACGAGGAGCGGATCGTGCTGGCAGGCACCGCCAACCTCGTCCGCTCCGAGGCCACGTTCGAGCAGGGGCTCAGCCCCGTGCTCGAGGCGCTCGAGGAGCAGGTGGTGCTGCTGGGGCTGCTGACCGAGATGGCCGGCGACGGCGTCGGGGTCCGCATCGGGCGGGAGAACCGCCTCGACGGTCTCACCGAGACCTCCGTCGTCGCCTCCGGATACGGTAGCGACGGCGACACCGTCGCCTCCCTCGGCTCCATCGGCCCGACCCGCATGGACTACCCGGGCACCATCGCCTCGGTCCGCGCCGTGGCACGCTACCTGTCGCGCGTCCTGCCGAACTGAMSEERRLAVLRAIVEDYVTTREPVGSRMLTERHGLGVSPATIRNDMAALEDAGYIAQPHTSAGRVPTDAGYRVFVDRLAEVRPLNVPQKRAIETFLSEAVDLDDVLTRAGRLIAQLTGQVAVVQYPSLRRSGLRHLELVPVAESRILVVVITDTGRVEQRYCELPVRPDGSDAGDDLDEATLGELRARFNAAAAGKRLADLPAAFAGLVESVGPHLSGVTQAVADLVVETLGEENEERIVLAGTANLVRSEATFEQGLSPVLEALEEQVVLLGLLTEMAGDGVGVRIGRENRLDGLTETSVVASGYGSDGDTVASLGSIGPTRMDYPGTIASVRAVARYLSRVLPNNANANANANA
AK018_016862904malT_2HTH-type transcriptional regulator MalTATGCCGGCGACGAGCCGCGACGGCAGGGAGCGCGACGTCACCGGCTCCTGGCACGATGACGGTATGTCGCCGGGACGCACCCCTCTGGTCGGTCGCACCACGGAGCTCGCCACGCTGCGGGCCGCGCTGGCCGACGCCCGCGAGGGCTCCGGCGGCACCGTCGTGCTCGCCGGCGAGGCCGGCATCGGCAAGACGCGCCTGGTGACCGAGCTGGTCGACCACGCCGACGACGACGTCCTCGTGGCCCACGGGCAGTGCGCGACGTCCGGGTCCGGACCGGTGCCGTACGCCGGGCTCGACGGCGTCCTGCGCGACCTGGTCGCCGCCCTGGGCGACGACGAGGTGCTGGCCGCCGCGGGCCCCGCGTCCGACGCCCTGGGCGTGATCCTGCCGCGACTCGTCGCCGTCCGTCCCGGCGTCGACGGCGGGCGCACGCCCGAGGTCCTCGCCGATCTGCTCACCACCGTCTGCGCCACCCGGCCGGTGGTCGTCGTCGTCGAGGACCTGCACTGGTCCGACGACGTGACCCGGACCGCGGTGACCCGGCTCGCACGCGCCGCGCGGTCGTCGCGCCTGCTCGTGGTGGTCACCTACCGCAGCGACGACGTCGGGAGGCGTCACCCGCTGCGCACGACCCTCGCCGAGCTCGACCGGGCCCGCCTCGCCGATCGCGTCGCGGTGCCGCGGCTCGACGCAGCGGAGGTGGTCGAGCTGGCCCGCGCCGTCCTGACCGTCACGCCGGACGACGGGCCGGGCATCGACACCGGCCGTCTGGACGACCTCGTCGACCGCGCCGAGGGCGTGCCGTTCTACGTCGAGGAGCTCGCCTGCTGCTACGACGGCGAGATCCCCGTCTCCCTGCGCGACGTCCTGCTGCTGCGCTACACCGCCCTGTCCGAGGCGGCGCAGGCGTTCTGCCGGGCCGTCGCCGCCGGCGGCGTGCGGGCCGGGCACGACGTGCTGGTCACCGTCCTGGGCGACGCCGCGCTCGACCGCGCCGAGCCCGCCGCCCGCGAGGCCGTGGACGCCCTGGTGCTGCAGGCCGACCCGGACGGGTTCCGGTTCCGGCACGCGCTGGTGCAGGAGGCCGTGGAGGCCGAGCTGCTGCCCACCGAACGGCGCCGGCTGCACGCCGCCTACGCGCAAGCGTTCGCCGCCGGTCCGGCCACGGTCACGCGGCTGACCGAGCAGGCCGACCACTGGTGGCACGCCCGCGTGCCGGACCGCGCCCTGGCCGCCGCCGTCGCCGGCCTGGACGCCGCCGCGAACGACGTCGCTCCGGCGGCCGCCGTCCGGCTCGGCGAACGGGCTCTCGAGCTCTGGGAGACCGTGCCCGACGCGGCGGACGTCACCGGGACCACGCACCACGACCTGCTCGTGCGGGTCGCCGAGGCCGAGACCGTCGCCACCCACGTCGACCGGGCCCTGGCGCTGGCGCGTCAGGCGTTGGACGAGTGGCCCGCCGACGACCCCGCGGGCCGGGCCCGCACCCTCGGGCTCGTGGCGGTGCAGCAGCTGCGCGCGGGCGACGTCGCGGGCCTGGACCGGACCCGGGAGGCGCTCGCGGCAGCACCGCAGGACGACCTCGGGACCCTCGCCGGGCTGCTGCGCCTGGACGCCCGCGCCAAGATGCTCGCCGGCCGCTTCCAGGAGGCGGTGGCGGCCGCCGGGCGCGGCTACGAGGCCGCGACGGCCGTGGGCGACCACTCCACCGCCGCGCTGCTGCTGAACACCAGCGGTCTCGCCCGGCTGAGCGCGGGCGACCCGGGCGGCCTCGACGAGCTCGAGGAGTCCCGCCGCCTCTCCGGGGACGACTGGACCGGGCGTGCCCACTACTTCACCAACCTCTCCGACCACCAGCTCCGGCTCGGCCGGTTCGCCGAGGCGCTGCGGACCGCCTCGGCGGGTGCCGAGGTCGGCCGCGCCGGGGGATCCGGCTGGAGCAGCCGCGCGATGCTGGAGGGCAACGTCGCCGAGACCCTCATCGGGCTCGGCCGCTGGGAGGAGGCCGACGCCTGGTACCGGCGAGCCACGAACGAGGTCTCGCCGAGCGCCTGGGCCGTCTACCTGGCCGAACGATGGACGTGGCTCACGCTGTGGCGCGGGGACGTCGAGACCGCCCAGGCGATGGGGCGACGCCACCGGGCCGTGTGGCTGCGGTTCGCCGAGGTGGAGCTGCAGGTCCGGGGGCGCGCCCCGGCCACGCTGGCCGAGCTGGCCCTCGCGCGCGACGACGTCGACGACGCGCTCGACCTGGTCCGCCCCGCCACCGACCCCGGCCGGCTGTCCGGGGCGTACGCCCTGACGATGCTGGCGGTCGCCGCCCGCGTGCTCGCACGGGCCCGAGCCTCCGGCCGGACGGTCGACGTCGGACCCTACGAGGAGACCTTGGCCGCCGCATCCTTCTGGCCGACCCACCGGCTGTGGGCGACCGTGTTCGCCGCCGAGCTGGGCCGGACACCGTGGTCCGAGGTCGCCGCGTTCGGTCCCGACGACGGCGCCCCGGCGCACCTGCGCCCCTACGCCCTGGTGCGCGAGGGTGAGCACCTGCTCTCCGCGGGCGACAAGGATCGCGCGCGTGAGCTCCTCGGTGACGCCGCGCAGGCCGCGCGCGCCGTCGGAGCGGGCTCCGTGCTCGACCGGGCGACCTCGCTGCTGCACGACGCGGGGCTCGGGGCACCGACCCGACGCCGACCGGCCGAGATCGGCGCCGACCCGCTGACCGACCGCGAGCGCCAGGTGCTCGAGCTGGTCGCCGAGGGCCTGACGAACGGGCAGATCGCCGAGCGGCTGTTCATCTCCCGCAAGACGGCCTCGGTGCACGTCTCGGCCATCCTGCGCAAGCTCGGGGTCTCCAGCCGCACCGAGGCGGCCGTCGCGGCCCGGTCCGCACACTCCGCCTGAMPATSRDGRERDVTGSWHDDGMSPGRTPLVGRTTELATLRAALADAREGSGGTVVLAGEAGIGKTRLVTELVDHADDDVLVAHGQCATSGSGPVPYAGLDGVLRDLVAALGDDEVLAAAGPASDALGVILPRLVAVRPGVDGGRTPEVLADLLTTVCATRPVVVVVEDLHWSDDVTRTAVTRLARAARSSRLLVVVTYRSDDVGRRHPLRTTLAELDRARLADRVAVPRLDAAEVVELARAVLTVTPDDGPGIDTGRLDDLVDRAEGVPFYVEELACCYDGEIPVSLRDVLLLRYTALSEAAQAFCRAVAAGGVRAGHDVLVTVLGDAALDRAEPAAREAVDALVLQADPDGFRFRHALVQEAVEAELLPTERRRLHAAYAQAFAAGPATVTRLTEQADHWWHARVPDRALAAAVAGLDAAANDVAPAAAVRLGERALELWETVPDAADVTGTTHHDLLVRVAEAETVATHVDRALALARQALDEWPADDPAGRARTLGLVAVQQLRAGDVAGLDRTREALAAAPQDDLGTLAGLLRLDARAKMLAGRFQEAVAAAGRGYEAATAVGDHSTAALLLNTSGLARLSAGDPGGLDELEESRRLSGDDWTGRAHYFTNLSDHQLRLGRFAEALRTASAGAEVGRAGGSGWSSRAMLEGNVAETLIGLGRWEEADAWYRRATNEVSPSAWAVYLAERWTWLTLWRGDVETAQAMGRRHRAVWLRFAEVELQVRGRAPATLAELALARDDVDDALDLVRPATDPGRLSGAYALTMLAVAARVLARARASGRTVDVGPYEETLAAASFWPTHRLWATVFAAELGRTPWSEVAAFGPDDGAPAHLRPYALVREGEHLLSAGDKDRARELLGDAAQAARAVGAGSVLDRATSLLHDAGLGAPTRRRPAEIGADPLTDRERQVLELVAEGLTNGQIAERLFISRKTASVHVSAILRKLGVSSRTEAAVAARSAHSANANANANANA
AK018_01687207hypothetical proteinATGTCCCCGGAGCAGTTCCACCAGATGTACCGCCTGCAGGAGGCCGAGGTCGCCCGCGAGGCCGAGCACCGCCGTCGGGCGGCCGAGCGCGCCGCGCGGAGAGCACCGGCGCACCGCCGGCACCCCGCGGGGCCCCCGCGGCCCCGCGGGCTGGTGGTCCTCGACCGCCTGCGCAGGGCCCGGGCCCGTGCGGTCCGCGCAGCCTGAMSPEQFHQMYRLQEAEVAREAEHRRRAAERAARRAPAHRRHPAGPPRPRGLVVLDRLRRARARAVRAANANANANANA
AK018_016882862malT_3HTH-type transcriptional regulator MalTATGAGGATCAGCCGGGTCCCGCTGATCGGCCGCGAGACCGAGCTCACGACGTTGCGTGGCCTCCTCGAGGAGGCCACGCACGGCGACGGGCAGTGCGTGGTCGTGGGCGGGGAGGCCGGGATCGGCAAGACGCGCCTCGTCGAGGAGCTCCTCGACGGCTCCGGCGCCGACCCGGCCTTCGTCCTGCGGGGCCAGTGCGCCGACTCCGGCGCCGGACCCGTGCCGTACGCGGGACTGGAGGGTCTGCTGCGCGACGCCGTCGCGGCGCTGGGGCCCGAGGCCACGCTGGAGGCCGCCGGACCGGCGGCGGACGCCCTCGGCGCCGTGCTCCCCGAGCTGGTCGCGGTCCGGGCGGACGGCGAGGCAGGACGCCTCCCGGAGGCCCTCGCCGCGCTGCTCACCACGCTCGCCGGGCGACGGCCCGTCGTGGTCGTGCTCGAGGACCTGCACTGGTCCGACGACGCCACCCGGGCCTGCCTGGCGCGCCTCGCGCGCACCGCCCCGGGCCGCCGGCTGCTGCTGGTGGTCACGTACCGCAGCGACGACGTCGGGCGGACCCATCCCCTGCGGGCGACGCTCGCGGAGATCGAGCGGGCCCGGCTCGCCACCCGGGTCGAGGTCCCGCGGCTCGCCGCCCACGACGTCGTCGCCCTGTTCCGGGCGCACCTCGACGCCGGAGCCGTCGACCTCGAGGAGGTCGTCGACCGCAGCCAGGGCGTGCCGTTCTACGTCGAGGAGCTCGCCACCGGGGTCGGCGGCAGCCTGCCGGACTCGGTGCGCGACCTGATGCTCCTGCGGTACTCACGCCTCGGCCGCGACGCCCAGGAGTTCTGCCGCACCGTGGCCGCCGCCGGGCAGAGCGTCGGGCACGAGCTGCTCGCTGCGGCGCTCGGCGACGAGGCCGTCCGGGACGCCGAGCCCGCCGCCCGCGAGGCCGTCGAGGCCGGGGTCCTCGTCGCCGACGCCGACGGCTACCGGTTCCGGCACGCCCTCATGCAGGAGGCCGTGGCCACCGAGCTGCTGCCCAGCGAGAGCCGGCGCCTGCACACCGCCTACGCCCGCGCACTGGAGACCCGGCCGGCCACCATCGCGCGCCTGGCGGAGATCGCGGACCACTGGTGGCGTGCCCGCGTCCCCGACCGGGCGCTCGCCGCGTGCGTGGCGGGCCAGGCAGCGGCCGGCGAGTACGCGGCCACGTCCACGGCCGTCGCCCTGGGCGAACGGGCGCTGGAGCTGTGGGACCTGGTCGCGGACCCCGAGGAGGTCGCGGGCACCACCCACGCCGAGCTCATGCGGCGGGTGGCCTGGGCGCTGTACGTCGGGTCCCAGGCCGAGCGCGCGCTCGCGCTCGCGCGCCAGGCCCTCGACGAGTGGCCGCCGGAGGACCCGGCCGGGCGTGTCTCCGCCTACGTGACGCTGTCCACGGCCGCCGAGGTCACCGGGTCCGACGAGGGGCGGCGCCTGCTCGACCACGCCCTGGAGGAGATCCCGGACGACGACGTCGCCGGACGCGCTGCCCTGCTCACGGAGTCCGCCCGGGGAGCGATGATGGAAGGGCACGAGGACCGGGCCGTCGAGCTCGCCGACCGGGGTCTGGCGGCCGCCGAGGAGGCGGGGGACCGCCGCCTGCAGGCACGGTGCGTCAACATCCGCGCCGTCAGCCGTGTGATCACCGGTGACATGGACGGACTCGAGGACTTCGCCCTCGACCGCGAGCTCGCCGGCGACGACTGGGACGCGCTGATGAAGCACTTCGTCAACGCCTCCGAGGCCACCCTGCGCGTCGGCAGGGCGCACCGGGCGCTGGAGATCGCCGAGGAGGGTGCCGCCCGGGCACGGGAGCGCGGCACCGGGATCGGGATGCGGTCGCGCATCGAGGGCAACGGCATCGAGGCGTTGATCGACCTCGGCCGCTGGGACGAGGCGGCAGCCTGGTTCGAGCGGACCGTCCCCCTGCTGGGACGCAGCGTCTTCACCGTCACCCTCACCGAGCTCTGGGCCTGGCTCCTGCTGTGGCGCGGGGACGTCGAGCAGGCGGAGTACGTGGTCCGGACGTACCGGGCGTCCTGGGAACGGCACGGCCGGATCGAGCTGCAGGTGCGCTCGCTGCTCACCACCACGCTGGCGGACCTGGCCCTCGAGCGGGGGGACGTGGACGGGGCCCTGCGCGTCGTGGCCGACGCCGTGGCCGACCCCCTGCAGCGCCGGTCGGCGTCGTCGCTGCTGCCGACCCTCGGGATCGCGGCCCGGGCCCTGGCCGCCGCGCGGGCTGCCGGACGCGAGGTGGACCCGACGCCGTACCGCGAGGCGCTCGCCGACTGCTCCGGGTGGCCGACGCACGGCGTGTGGTCGGCGGTGTTCGCGGCCGAGCTCGGCGAGGGCCCGTGGTCCGCGGTGGCCTCCCTCGGGCCCGACGACGGCGCACCGGCCCACCTGCGCCCCTACGCCGAGTACCGCGAGGGAGCCCGCCTCCTGGCTGCCGGGGACCGGCCCGGCGGCCGCGACGCCCTGCAGGCTGCGGTCCTGGACGCCACGGCGATCGGGTGCGGGCTCGTCGCCCGGCACGCCGCCGAGCTGCTCGCGGAGGCCGGCACCGCCTCGCCGCCGCGCCGGCAGCCGCACGACCCGGCGGACCGGCTCACCGACCGCGAGCGCCAGGTGCTGGCGCTGGTCGCCGAGGGGCTGACGAACGGCCAGATCGCCCAGCGGCTGTACATCTCGCGCAAGACCGCCTCGGTGCACGTCTCGGCCATCCTGCGCAAGCTCGGGGTGTCCAGCCGCACCGAGGCCGCGGTCAGGGCCCGGTCCGGGACGGCCGGTGCCGAGCGTGTCGACCCCACGGGCCGGGCGCCGTCTGCCTAGMRISRVPLIGRETELTTLRGLLEEATHGDGQCVVVGGEAGIGKTRLVEELLDGSGADPAFVLRGQCADSGAGPVPYAGLEGLLRDAVAALGPEATLEAAGPAADALGAVLPELVAVRADGEAGRLPEALAALLTTLAGRRPVVVVLEDLHWSDDATRACLARLARTAPGRRLLLVVTYRSDDVGRTHPLRATLAEIERARLATRVEVPRLAAHDVVALFRAHLDAGAVDLEEVVDRSQGVPFYVEELATGVGGSLPDSVRDLMLLRYSRLGRDAQEFCRTVAAAGQSVGHELLAAALGDEAVRDAEPAAREAVEAGVLVADADGYRFRHALMQEAVATELLPSESRRLHTAYARALETRPATIARLAEIADHWWRARVPDRALAACVAGQAAAGEYAATSTAVALGERALELWDLVADPEEVAGTTHAELMRRVAWALYVGSQAERALALARQALDEWPPEDPAGRVSAYVTLSTAAEVTGSDEGRRLLDHALEEIPDDDVAGRAALLTESARGAMMEGHEDRAVELADRGLAAAEEAGDRRLQARCVNIRAVSRVITGDMDGLEDFALDRELAGDDWDALMKHFVNASEATLRVGRAHRALEIAEEGAARARERGTGIGMRSRIEGNGIEALIDLGRWDEAAAWFERTVPLLGRSVFTVTLTELWAWLLLWRGDVEQAEYVVRTYRASWERHGRIELQVRSLLTTTLADLALERGDVDGALRVVADAVADPLQRRSASSLLPTLGIAARALAAARAAGREVDPTPYREALADCSGWPTHGVWSAVFAAELGEGPWSAVASLGPDDGAPAHLRPYAEYREGARLLAAGDRPGGRDALQAAVLDATAIGCGLVARHAAELLAEAGTASPPRRQPHDPADRLTDRERQVLALVAEGLTNGQIAQRLYISRKTASVHVSAILRKLGVSSRTEAAVRARSGTAGAERVDPTGRAPSANANANANANA
AK018_01689870hypothetical proteinGTGCACGATCGCTACGGCTCCGACGTCCTGTCCTCCTCCCCCGGCGCACCCGGCGGCTCGGCCCACCACCGCGCGCGGCCGACCACGCGGCCGCAGCCGGCCGAGCACGGCCTCGTGGTCGAGGAGGTGACCAGCGGCTGGGTCGGCGCGGTGACCCGCGTGGAGAAGTCCGGCGGCGTGCACCTCGTGGTGCTGGAGGACCGCCGCGGCCGGACCCGGTCCTTCCCGCTGGGCAAGGGGTTCTGGGTCGACGGGCAGCCGGTCGAGCTCACCGCACCGGTCACCGCCCGGGCACCGGCCGCGCCGACGCGGACGGCCTCCGGCTCCGTCGCGGTGCACGGGGCTCGTGCCCGCGTCGCGCGCGGGTCACGCATCTGGGTGGAGGGCAAGCACGACGCCGAGCTCGTGGAGAAGGTCTGGGGCGACGACCTGCGCATCGAGGGCGTCGTGGTCGAGATGCTCGACGGCGTGGACCACCTGGCCGAGGCCCTCGCCGAGTTCTCCCCGACGCCCGAGCGCCGGGTCGGGGTGCTGGTGGACCACCTCGTGCCGGGCGCCAAGGAGCAGCGGATCGCGGCGGAGGCGCTGCGCACGGTCCCGGACGGCACCGTCCTGGTGCTCGGGCACCCCTACGTGGACGTCTGGCAGGCCGTGAAGCCTGCCCGGGTCGGCCTGGAGTCGTGGCCGACCGTCGAGCGCGGCACCGAGTGGAAGCGCGGCATCCTGCGCGAGCTGGGCTGGCCCGGAGAGTCGACCGCGGACGTCGGGCGGGCCTGGCGACGGATCCTGGGCTCGGTGCGCGACTTCCGCGACCTCGACCCGGCCCTGCTGGGCCGGGTCGAGGAGCTCATCGACTTCGTGACGGCCTGAMHDRYGSDVLSSSPGAPGGSAHHRARPTTRPQPAEHGLVVEEVTSGWVGAVTRVEKSGGVHLVVLEDRRGRTRSFPLGKGFWVDGQPVELTAPVTARAPAAPTRTASGSVAVHGARARVARGSRIWVEGKHDAELVEKVWGDDLRIEGVVVEMLDGVDHLAEALAEFSPTPERRVGVLVDHLVPGAKEQRIAAEALRTVPDGTVLVLGHPYVDVWQAVKPARVGLESWPTVERGTEWKRGILRELGWPGESTADVGRAWRRILGSVRDFRDLDPALLGRVEELIDFVTANANANANANA
AK018_01690531hypothetical proteinATGTCCGAGAACCCCCCGCAGCAGCCCGGACGACCCGAGGACCCCTACGGCGGGCAGCCGTCGCAGCCGGACCCCGCGCAGCAGCCGTACCAGCAGCCGTACACCGGGCAGCAGCACGCCGGGCAGCCGGCGGCGTCCTACCCGCCGCCGTCGGGCCACCAGGGCGGCCAGCAGCCGTTCTACGCGAGCGCGGCGTCGTCGGCCGCCGGCGTGGCGCGCGACGACACCAAGGGGCTGATCGGCTCCCTGTTCGACTTCTCGTTCAGCAACTACGTCACGCCGAAGATCGTCAAGATCGTCTACGTCATCCTGACGATCCTGGTCGCCATCGGCTGGCTGTTCTCCTTCATCGCCGGCATCGCCACGCTGTTCTCCGACCAGTGGTACGTCGGGCTCTTCACCATCCTGTTCGGCTGGATCGGCGCGCTGGTCTACCTGGCGGTCTGGCGGATCGGTCTGGAGGTCTTCCAGGCGGTGGTGAACATCTCCGAGAAGGTCAACCACTACGCCCAGCGCGACGGCATGGTCTGAMSENPPQQPGRPEDPYGGQPSQPDPAQQPYQQPYTGQQHAGQPAASYPPPSGHQGGQQPFYASAASSAAGVARDDTKGLIGSLFDFSFSNYVTPKIVKIVYVILTILVAIGWLFSFIAGIATLFSDQWYVGLFTILFGWIGALVYLAVWRIGLEVFQAVVNISEKVNHYAQRDGMVNANANANANA
AK018_01691396hypothetical proteinATGACGCAGAACCCGCCGCCCACCGGACCGCCCGCGGGCCCACGACCGCTGTCCCCGCCCGACGAACGCACCTGGGCGATCATGGCCCACATCGGCCCGCTGCTCGTCGGGATCATCACGGCGGGGTCGCTGGGGTTCCTGGCCCCGCTCGTGATCTGGCTCGCCCTGCGCGACCGCAGCGCGTTCGTCGCCGACCAGGCCAAGGAGGCGCTGAACTTCCAGATCACGCTGCTCATCGGGCAGGTCGTCGGCTGGCTGACCGTCTGGCTGCTGGTCGGATGGCTGGTCCTCGCCGCGGTGTGGGTCCTGGGCATCGTGTTCGCGATCATCGCGGCGATCACCGTCAACCGGTACGAGGCCTACCGCTACCCCCTGACCCTGCGGCTGGTGAAGTGAMTQNPPPTGPPAGPRPLSPPDERTWAIMAHIGPLLVGIITAGSLGFLAPLVIWLALRDRSAFVADQAKEALNFQITLLIGQVVGWLTVWLLVGWLVLAAVWVLGIVFAIIAAITVNRYEAYRYPLTLRLVKNANANANANA
AK018_01692513hypothetical proteinATGACCGAGTCGACTCCAGACCCGCACGCCGACCAGCGCCCGCAGCAGCCCGAGGGACAGCAGCCTCAGCAGCCCCCGCAGGGCTACCAGCAGGGCTACCAGCAGGGCTACCAGCAGGGCTATCAGCAGCCCCCGCAGGGCCAGCCGGGCCAGCCGGGCTACCCGCAGGGCGCCGCCGCACCTCAGCCGGTCGCCCCGTCGGAGGAGCGGACCTGGTCGATCATCGCGCACGTCGGCGGCATCCTCGTGGGCTTCCTCGCCCCGCTGATCGTCTGGCTCGTGTACAAGGACCGCAGCGCGCGCCTGGACGACCAGGGCAAGGAGGCGCTGAACTTCCAGCTCACGATGCTCATCGGCTACGTCGTGGGATGGGTCCTCACGATCATCATCGTCGGTGGGTTGATCGTCTTCGCCGCCTGGGTGTGCACGATCGTCTTCGGCATCCTGGGGGCGATGGCCGCCTCGCGCGACGAGTGGTACCGCTACCCGTTCAAGATCACGTTCATCAAGTGAMTESTPDPHADQRPQQPEGQQPQQPPQGYQQGYQQGYQQGYQQPPQGQPGQPGYPQGAAAPQPVAPSEERTWSIIAHVGGILVGFLAPLIVWLVYKDRSARLDDQGKEALNFQLTMLIGYVVGWVLTIIIVGGLIVFAAWVCTIVFGILGAMAASRDEWYRYPFKITFIKNANANANANA
AK018_016931296hemW_1COG0635Heme chaperone HemWGTGCCCGCGCTGCCCGACGGCGAACCCGTCCCGGCGGACGGCGCCCTGCCCGAGCTCGTGGCCCGGCCGGGAGGCGCCGCGACGGACGACGCCTCGTCGCGCTCCCGGTTCGGCGTGTACGTGCACGTGCCCTTCTGCTCGGTGCGCTGCGGCTACTGCGACTTCAACACCTACACCGCGTCCGAGCTCGGGGGCGGTGCGTCGCAGCACGAGTACGCCACGACGGCGCTCGGTGAGGTCGACCTGGCCGCGCGCGTGCTCGACGCCGCCGGGCTGGGCGACCGGCCCGTGTCGACGGTGTTCTTCGGCGGCGGGACGCCGACCATGCTGCCGGCCGGCGACCTGGTGCGGATCCTCGACGGCGTGCGGTCGGCCTGGGGCCTGGCCCCCGACGCCGAGGTCACCACCGAGGCGAACCCCGACTCGGTGACGCCCGGCTCGCTGGCGACCCTGGCCGAGGCCGGGTTCACGCGGGTCTCGTTCGGCATGCAGTCCGCGGTGCCGCGCGTCCTGGCCACGCTCGAGCGCACCCACGACCCGGCGCGGCTGCCCGACGTCGTGCGCTGGGCCCGCGAGGCCGGGCTCGCGGTCTCGGTCGACCTCATCTACGGCACCCCGGGGGAGTCGCTGGACGACTGGCGGACGTCGGTCGAGGCCGCCCTGGCCACGGGCGTCGACCACGTGTCCGCGTACGCGCTGGTCGTCGAGCCCGGGACGAAGATGGCCGCCCAGGTGCGACGCGGCGAGCTGACCCTCCCCGACGAGGACGACCAGGCGGCCAAGTACGAGCTCTCCGACGACCTGCTCACGGCGGCCGGCCTGACCTGGTACGAGGTCAGCAACTGGTCGCGCGGGCCTGAGCAGGCGTGCCGGCACAACCTGGCCTACTGGCGCGGGGACGACTGGTGGGGGATCGGCCCCGGGGCGCACTCCTACGTCGGGGCGGCCGACGGCGGTGCGGCCGGCAGCGGTGCCGCCGACGGCGCGGCGGGTGTGCGCTGGTGGAACGTCAAGCACCCGCTGCGCTACGCGACGCTGCTCGGCCAGGGGCGCTCGCCGGGGGCGGGGCGCGAGGTGCTGACCAGCGACGAGGCGCACCTGGAGCGGGTGATGCTCGGGGTCCGGCTCGCCGAGGGCCTCGACCTGGACGTGCTGGACGCCGACGGCCGCCGCGCCGTCGCCGGACTGGTCGCGTCCGGGCTGCTCGACGGGGCGGCGGCCGTGCGGGGCCGGGCGGTGCTCACGCGGCGCGGACGGCTCCTGGCCGACGCGGTCGTGCGCGAGCTGACCGCCTGAMPALPDGEPVPADGALPELVARPGGAATDDASSRSRFGVYVHVPFCSVRCGYCDFNTYTASELGGGASQHEYATTALGEVDLAARVLDAAGLGDRPVSTVFFGGGTPTMLPAGDLVRILDGVRSAWGLAPDAEVTTEANPDSVTPGSLATLAEAGFTRVSFGMQSAVPRVLATLERTHDPARLPDVVRWAREAGLAVSVDLIYGTPGESLDDWRTSVEAALATGVDHVSAYALVVEPGTKMAAQVRRGELTLPDEDDQAAKYELSDDLLTAAGLTWYEVSNWSRGPEQACRHNLAYWRGDDWWGIGPGAHSYVGAADGGAAGSGAADGAAGVRWWNVKHPLRYATLLGQGRSPGAGREVLTSDEAHLERVMLGVRLAEGLDLDVLDADGRRAVAGLVASGLLDGAAAVRGRAVLTRRGRLLADAVVRELTAPGPT0003200_3018DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003200-hemN|hemZ-K02495NANA
AK018_016941875lepA_1COG0481Elongation factor 4TTGCCCATCCCGTCCGCCTCCCTGAGCGAACGCATCCAGCCGAACGCGACCCCGCCCGAGCTGATCCGCAACTTCTGCATCATCGCGCACATCGACCACGGCAAGTCGACGCTGGCGGACCGCATGCTGCAGCTCACCGGCGTCGTGCAGCCGCGCGACGCCCGGGCGCAGTACCTCGACCGCATGGACATCGAGCGCGAGCGCGGCATCACGATCAAGTCGCAGGCCGTGCGGATGCCCTGGCAGCGGGGCGAGGATCCGTACGCGCTCAACATGATCGACACCCCCGGCCACGTGGACTTCACCTACGAGGTGTCCCGCTCGCTGGCCGCCTGCGAGGGCGCGGTCCTGCTGGTCGACGCCGCCCAGGGCATCGAGGCCCAGACGCTGGCCAACCTGTACCTGGCGATGGAGCACGACCTGGAGATCATCCCGGTCCTGAACAAGATCGACCTGCCCGCCGCGCAGCCCGAGAAGTACGCGGCCGAGCTCGCCGGTCTGGTCGGCGGGGAGCCGGAGGACGTGCTGCGGGTCTCGGGCAAGACCGGTGACGGCGTCACCGAGCTGCTCGACGTCATCGTGGACCGCATCCCGTCGCCGGTCGGCGACCCGGACGCCCCCGCGCGCGCCATGATCTTCGACTCGGTGTACGACACCTACCGCGGCGTGGTCACGTACGTGCGCGCGGTCGACGGCGACCTCAACCCGCGCGAGCGGATCGAGATGATGTCGACCAAGGCCACCCACGAGCTCCTCGAGATCGGCGTCATCTCGCCCGAGGCGATCAAGACCAACGGTCTGGGCGTCGGCGAGGTCGGCTACCTCATCACCGGCGTGAAGGACGTGCGCCAGTCCAAGGTGGGTGACACCGTCACCAGCGCCCGGCAGCCGGCGTCCGAGCCGCTGGGCGGCTACGAGGAGCCCAAGCCGATGGTGTTCTCGGGCCTGTACCCGATCGACGGGTCGGACTACCCGACGCTGCGCGACGCGCTGGACAAGCTCAAGCTCAACGACGCCGCCCTCAACTACGAGCCGGAGACCTCCGTGGCCCTCGGCTTCGGCTTCCGCGTCGGCTTCCTGGGGCTGCTGCACCTGGAGATCGTGCGCGAGCGCCTGGAGCGCGAGTTCGACCTCGACCTCATCTCGACCGCCCCGAACGTCGTCTACGACGTGACGATGGAGGACGGCACCGAGGTCAAGGTCACCAACCCCTCGGAGTTCCCGGCCGGCAAGATCAAGGACGTCCGCGAGCCGATCGTCAGGGCCACGGTGCTCGCGCCGAGCGAGTTCGTCGGCGCGGTCATGGGCCTGTGCACCGACCGTCGCGGCCAGATGGAGGGCATGGACTACCTGTCCGAGGACCGGGTCGAGCTGCGCTGGACGCTGCCGCTGGCCGAGATCGTCTTCGACTTCTTCGACGCGCTGAAGTCGCGCACCCGCGGCTACGCCTCGCTCGACTACGAGCCCTCCGGCGACCAGGTGGCCGACCTGGTCAAGGTCGACATCCTGCTGCAGGGCGACCAGGTCGACGCCTTCAGCGCCATCGTGCACAAGGACGCGGCCTACGAGTACGGCGTCAAGATGACGGCCAAGCTCAAGGAGATCATCCCGCGCCAGCAGTTCGAGGTGCCGATCCAGGCGGCCGTCGGCGCGCGCATCATCGCCCGCGAGACGGTGCGCGCCATCCGCAAGGACGTGCTCGCCAAGTGCTACGGCGGCGACATCTCCCGGAAGCGCAAGCTGCTGGAGAAGCAGAAGGAGGGCAAGAAGCGGATGAAGAACATCGGGTCCGTCGAGGTCCCGAAGGAAGCCTTCATCTCCGCGCTGTCCTCCGACGGCTCCGGCGGCAAGGAGACCAAGGACAAGAAGAAGTAGMPIPSASLSERIQPNATPPELIRNFCIIAHIDHGKSTLADRMLQLTGVVQPRDARAQYLDRMDIERERGITIKSQAVRMPWQRGEDPYALNMIDTPGHVDFTYEVSRSLAACEGAVLLVDAAQGIEAQTLANLYLAMEHDLEIIPVLNKIDLPAAQPEKYAAELAGLVGGEPEDVLRVSGKTGDGVTELLDVIVDRIPSPVGDPDAPARAMIFDSVYDTYRGVVTYVRAVDGDLNPRERIEMMSTKATHELLEIGVISPEAIKTNGLGVGEVGYLITGVKDVRQSKVGDTVTSARQPASEPLGGYEEPKPMVFSGLYPIDGSDYPTLRDALDKLKLNDAALNYEPETSVALGFGFRVGFLGLLHLEIVRERLEREFDLDLISTAPNVVYDVTMEDGTEVKVTNPSEFPAGKIKDVREPIVRATVLAPSEFVGAVMGLCTDRRGQMEGMDYLSEDRVELRWTLPLAEIVFDFFDALKSRTRGYASLDYEPSGDQVADLVKVDILLQGDQVDAFSAIVHKDAAYEYGVKMTAKLKEIIPRQQFEVPIQAAVGARIIARETVRAIRKDVLAKCYGGDISRKRKLLEKQKEGKKRMKNIGSVEVPKEAFISALSSDGSGGKETKDKKKPGPT0015105_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771NANA
AK018_01695786hypothetical proteinATGACCAGCGTGACGCCCGCCGTCGACCCCTCCACGGGCCTGCGGTCCGACGGCGGGCCCGACCTCGACCACCTGAGCCGCCTCGCCGCGCTGCAGGCCGCCGTCCTGGCGGAGGTGCCCGACGCCGACCCCCGCGCCCGGGTCCCCGCCTGCGGACCGTGGACGGTCACCCGGCTGGTGGTGCACCTCGCACGGATCCACCACTGGGCCGCGGGCCAGGCCCGCCGCCGCCAGGAGACCCCGCTGGGGCGCGGCCCGTTCGACCTCGCGCCGTTCTACGCCGCCCAGGCCGCCGAGCTGCGCGACACGCTGGCGGCCCTGCCCGCGGACGCCCCGGCGTGGACGCTGCTCGGCACCGGGCCGGTGTCCTTCTGGCACCGCCGCCAGGCGCACGAGACGCTGGTCCACCTGCACGACCTGCGCGCCGCCGTCCAGGGGTCCGGGCCGCGCGCGGTGCGCGAGCGCCCCGTCGACGTCCCCGCCGCAGCCTGGGGCGACGCCGTCGACGAGGTGGCGGGCATGTTCCTGCCGCGGCAGGTCGCCCTGGGGCGCGCGGCGCCGCCGGCCTCCTCGGTGCGGCTGACGGCCACCGACCTGGGGTGGTCCTGGCGGCTGGGACCCGCCGACACCGACCCGGACCGCGATGCCGCCGCCGAGCTGCGGGCCCCGGCGCGCGAGCTGGCCCTCGTGCTCTGGCGCCGGCTCACCCCGGACGAGGCCGACGCCCGGATCACCGGCGACGCCGACGCGGTGACCTCCCTGCTGGACGACCGCCTGGTGCCCTGAMTSVTPAVDPSTGLRSDGGPDLDHLSRLAALQAAVLAEVPDADPRARVPACGPWTVTRLVVHLARIHHWAAGQARRRQETPLGRGPFDLAPFYAAQAAELRDTLAALPADAPAWTLLGTGPVSFWHRRQAHETLVHLHDLRAAVQGSGPRAVRERPVDVPAAAWGDAVDEVAGMFLPRQVALGRAAPPASSVRLTATDLGWSWRLGPADTDPDRDAAAELRAPARELALVLWRRLTPDEADARITGDADAVTSLLDDRLVPNANANANANA
AK018_016961389CyclomaltodextrinaseATGACCGACGACGACGGAGCGCGCCCGGCCGAACCCGGCTGGGTCGCGCACGCGATGTGGTGGCACGTCTACCCCCTGGGCGCCGTGGGCGCCCCGGTCCGTCCGGCCGAGGGCGCCGAGCCTGCCGACGGCGCCGGCAGCACGGCCGTCGTGCACCGGCTCGGCCGGCTCGAGGCGTGGCTCGACCACGTCGTCGCGCTCGGGCTCAACGGCCTGCTGCTCGGGCCCGTGTTCGCCTCGTCGACGCACGGGTACGACACGGTCGACCACCTGCGCGTCGACCCGCGGCTCGGCGACGAGGCCGACCTGCAGCGCCTCGTCGACGCCGCCCACGCCCGCGGCGTGCGGGTGCTGCTCGACGGCGTCTTCCACCACGTCGGACGCGAGCACCCGGCCGTGCGGGCGCTGGAGGCCGAGGGGCCGGGGTCCCCGGCGGCGGCGCTGTTCCGCGTCGACCGCGACGCCGTCGATCCCGCGACGTGGCGGCCGGGGGACCCGGTGCCGGTCGCCGTGTTCGAGGGCCACGACCAGCTCGTCGCGCTGGACCACGGCTCGCCGGCGGTCGAGGACCTCGTCGTCGAGGCCATGACCTCCTGGCTCGACCGCGGCGTCGACGGCTGGCGGCTGGACGCCGCCTACGCCGTGCCGCCGGCCTTCTGGGCGCGGGTGCTGCCACGGGTCCGCGAGCGCCACCCCGAGGCGTGGTTCACCGGGGAGGTGATCCACGGCGACCTGCCCGGGATCGTGGCGGCGTCGACCGTGGACTCGGTGACCCAGTACGAGCTGTGGCAGGGGATCTGGCACGCGATCGCCGACGAGAACCTGTTCGAGCTCGCCCACGCTCTCGGGCGGCACGCGCAGTTCCTGCGCACGTTCGTCCCGAGCACGTTCGTCGGCAACCACGACGTGACCCGGATCGCCGACGCCGTCGGGGACCGGCACGTGCCGCACGCGCTCGCGGTCCTCTGCACCGTCGCGGGGACGCCGTCGTTCTACGCCGGGGACGAGCTGGGGCTGCACGGCGTCAAGGAGGAACGGCTCGGCGGCGACGACGCCGTGCGGCCCGAGCTCGCCGAGCGGCCCCCGGATCCGCAGGACCTGTCGGCCGAGGCCGCCGCGGTCCTGGCGGTCACCCGCGAGCTGGTCGCGCTGCGCCGGCGCCGGCCCTGGCTGCGCACCGCGGTCACCGATGTCGTGCAGGTGGCGAACCGGACCATCGTGCTGCGCACGGCGCGCGACGCCGACGCCGTCGTCACGGTCCTGCACCTGGGCGACGACGAGGTCACGGTCCCGGCCGCGGGCTCGCGGCAGGTGCTGGCCGGCACGGGCGTGCTCGAGGGCGACGCGGTGCGGGTGCCCGCCCACGGCTGGGCCGTGCTGGGTTCCTGAMTDDDGARPAEPGWVAHAMWWHVYPLGAVGAPVRPAEGAEPADGAGSTAVVHRLGRLEAWLDHVVALGLNGLLLGPVFASSTHGYDTVDHLRVDPRLGDEADLQRLVDAAHARGVRVLLDGVFHHVGREHPAVRALEAEGPGSPAAALFRVDRDAVDPATWRPGDPVPVAVFEGHDQLVALDHGSPAVEDLVVEAMTSWLDRGVDGWRLDAAYAVPPAFWARVLPRVRERHPEAWFTGEVIHGDLPGIVAASTVDSVTQYELWQGIWHAIADENLFELAHALGRHAQFLRTFVPSTFVGNHDVTRIADAVGDRHVPHALAVLCTVAGTPSFYAGDELGLHGVKEERLGGDDAVRPELAERPPDPQDLSAEAAAVLAVTRELVALRRRRPWLRTAVTDVVQVANRTIVLRTARDADAVVTVLHLGDDEVTVPAAGSRQVLAGTGVLEGDAVRVPAHGWAVLGSPGPT0012200_1088DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0012200-cd|ma|nplT-K01208NANA
AK018_01697840COG1305putative proteinGTGAGCCTGCTGCGCGTGGTGCACACGACGAGCTTCGACTACGCCGGGGACGTGACGGCGTCGTACAACGAGGCGCGGATGCGACCGGCCGACGACGACCACCAGGTCGTGCGGTCGGCACGCGTCGACGTCGAGCCGTCCACCTGGACCGACTCCTACGTCGACTACTGGGGCACCCACGTCACCCTGTTCGAGGTGCTGCGCCCGCACGGGAGCCTGCGGATCGTCGCGGACGCGACCGTCGAGGTGACGGCACCGGGACCCGCGCGGTCCGCGGTCGGCTGGGAGGACCTCGGCGGTCCCGCCGTCCTGGACGAGCACGCCGGCTACCTCGGCCACACCCCGACCACGGCGGTGCCCGACGACGTCGCGGCGCTCGCGCTGGAGGCGGCCGGGGGCCTGGACCCCGGCCCCGCGGCCGAGGCGGTCTGCCTGGCGGTGCGCGACCGCCTGGAGTACGTGCCGGGGGTGACCACCGTGCACACGCCCGCGGCGGACGCGTGGGCCTCGCGCGAGGGGGTCTGCCAGGACATGGCGCACCTGGGCATCGGTGCGCTGCGGTCGCTCGGCATCCCGGCGCGCTACGTCTCCGGGTACCTGCACCCGCAGGCCGACGCCGAGATCGGGGTGCCCGAGACCGGCGAGTCGCACGCCTGGCTGGAGTGGTGGGTCGGGCAGTGGGTGGCCTACGACCCCACGAACCGGCGCTACGCCGGGGAGGACCACGTCGTCGTCGGCCGCGGCCGCCAGTACGGCGACGTCCCCCCGCTCAAGGGCGTCTACGCCGGGCCCGGCGCGAGCGAGCTGGACGTGACCGTGGAGATCACCCGCCTGGCGTGAMSLLRVVHTTSFDYAGDVTASYNEARMRPADDDHQVVRSARVDVEPSTWTDSYVDYWGTHVTLFEVLRPHGSLRIVADATVEVTAPGPARSAVGWEDLGGPAVLDEHAGYLGHTPTTAVPDDVAALALEAAGGLDPGPAAEAVCLAVRDRLEYVPGVTTVHTPAADAWASREGVCQDMAHLGIGALRSLGIPARYVSGYLHPQADAEIGVPETGESHAWLEWWVGQWVAYDPTNRRYAGEDHVVVGRGRQYGDVPPLKGVYAGPGASELDVTVEITRLANANANANANA
AK018_01698933hypothetical proteinGTGCTGAGCCGGATCGCCGAGTCCCTGTTCTGGATCGGCCGGTACGTCGAGCGGGCGGACGACACCGCCCGGATCCTCGACGTGCACGTGCAGATGCTCTCCGAGGAACCGTGGGCGGAGGAGTCGCTGGCGTGCCGGTCGCTGCTGGCGATCATGGACCACCCCGCGCCGTCGGACGACGCCGTCGTCGGGCGGGACGCCGTCGTGCGGCTGCTGGCCCACGACCGCTCCAACCCGTCGGCCATCGCCGGTGCGCTGGTCGCGGCCCGGGAGAACGCCCGTCGGGCCCGCGAGATCGTCTCCACCGAGCTGTGGGAGACGCTCAACACCACGCGCAACGAGGTCTCGGTCGTCGGCCGTCGCGTCGGGGCGCACGAGTTCTTCGGCTGGGTGCGTCAGCGGGCCGCGGTGGTGGCGGGACTGATGGACTCCGCGACCCCGCACGACGCCACCTGGCACTTCATGGTGCTGGGCCAGTCGCTCGAGCGGGCCGACATGACGGCCCGACTGCTGACCACCCAGGCGCGGCTCGGGGCCGCGGGGCCCGGATGGACGACGGTGCTGCGCTCCTGCGGCGCCCACGAGGCCTACCTGCGGGCCCACCGCGGCCGCACCTCCGACGTCGACGCCGCCGGGTTCCTCGTGCGCGACCGGCTGTTCCCGCGCTCGATCGTCTACGCGCTGGGGGCGGCCGACCGGGCGCTGCGCGCGCTCGAACCGGTCGAGAGCCGCCGCGAGATCAGCGACGAGGCGGTCCGCCAGCTCGGCATCGTGCGGGCGCGGCTGGAGTTCGCCCGCCGCACCGACACCCTCGAGGACCTGCCGGCCACGCTGGAGCAGGTCCAGCAGGCGTGCTCGCGCGCGTCGGACGCGATCCGTGACCGGTACTTCCCGTCGTCGGCGACGACGGCCTGGGTGGGGGAGGCGCTGTGAMLSRIAESLFWIGRYVERADDTARILDVHVQMLSEEPWAEESLACRSLLAIMDHPAPSDDAVVGRDAVVRLLAHDRSNPSAIAGALVAARENARRAREIVSTELWETLNTTRNEVSVVGRRVGAHEFFGWVRQRAAVVAGLMDSATPHDATWHFMVLGQSLERADMTARLLTTQARLGAAGPGWTTVLRSCGAHEAYLRAHRGRTSDVDAAGFLVRDRLFPRSIVYALGAADRALRALEPVESRREISDEAVRQLGIVRARLEFARRTDTLEDLPATLEQVQQACSRASDAIRDRYFPSSATTAWVGEALNANANANANA
AK018_016991584COG2308putative proteinATGGCGGACCTGTTCGACGACTACCCCCTGGGCCCGGCGTTCGACGAGCTCATCGACCGCGAGCGCGCGGTGCGGCCCCGCTACGAGCAGGTGCACGCCACCTTCGCCTCGTTGTCGCCCGAGGAGGTCGCCGCCCGCTCGGACACGCTGGCGCGCTCGTTCCTGGCCCAGGGCATCACCTTCGACGTCGCGGGCGAGGAGCGCCCCTTCCCGCTGGACGTGGTGCCCCGTGTCGTCGAGCCGGACGAGTGGGACCGGATCAGCCGCGGCGTGCAGCAGCGGGTGCGGGCCCTGGAGGCGTTCCTCGCCGACGTCTACGGCCCGCAGCAGGCGGTGCGCGACGGCGTGGTCCCGCGTCGGCTCATCGAGTCCAGCGGCGAGTTCCAGCGGGCGGCGCACGGCATCGTGCCGGCCAACGGCGTGCGGTGCCACGTCGCCGGGGTCGACCTGGTCCGCGACGAGGCCGGGGAGTTCCGGGTGCTGGAGGACAACGTGCGGGTGCCCTCCGGCGTGAGCTACGTGCTGGCGAACCGGCAGGCGATGGTCCGCACGGTCCCCGAGCTGTTCTCCGAGCTGCGGGTGCGCAGCGTCGTGGAGTACCCGCGCCGGCTGCGGTCCGCGCTGGTGGCCGCGGCCCCCGACGGCACGCCGGACCCGACGGTCGTGGTCCTCACGCCCGGGGTGTTCAACTCCGCCTACTACGAGCACGCGCTGCTGGCGCGGCTCATGGGGGTCGAGCTCGTCGAGGGGCGGGACCTGTACTGCGCCGCCGGGCGCGTCTACATGCGCACCACGAGCGGCCCCCAGCGCGTCGACGTGATCTACCGCCGCGTCGACGACGCGTTCCTCGACCCCGTGCAGTTCCGGGCCGACTCCGTGCTCGGGGTGCCGGGCCTGGTCGACTGCGCCCGCCGCGGCACGGTGGCGCTGGCCAACGGCCTCGGCAACGGCGTCGCCGACGACAAGCTGGTCTACACCTACCTGCCGGACCTGGTGCGCTACTACCTGTCCGAGGAGCCGGTGCTGCAGAACGTCGACACCTGGCGCCTCGAGGAGCCGGGGGCGCTGACCGAGGTGCTCGAACGGCTCGACGAGATGGTCGTCAAACCCGTCGACGGCGCCGGCGGCAAGGGGATCGTCGTCGGCCCGGACGCTTCCGCCGACGAGCTGGCCGCCCTGCGCTCGCGGCTGGTCGCCGACCCGCGCGGCTGGATCGCCCAGCCGGTGGTGCAGCTGTCCACGACGCCGACCTACGTCGACGGCGCGTTCCGGCCCCGGCACGTGGACCTGCGCCCGTTCGCGGTCAACGACGGCGACGACGTGTGGGTGCTGCCCGGCGGGCTGACCCGCGTGGCGCTCGGGGAGGGCCAGCTCGTGGTCAACAGCTCCCAGGGCGGCGGGTCGAAGGACACCTGGGTGCTCGAGCACCCCCGTGACCACGTCGCCGCCCCGGCGGGCGACGACGCCGCCTCCCCGCGTCCGGCCGAGGCCGGGGTGCCGATCGCGACCAACCCGGCCGACGTCGTCGACCTGCACCACCAGCAGCAACAGCAGCAGCAGCAGCAGGAGGTGCCCCCGTGCTGAMADLFDDYPLGPAFDELIDRERAVRPRYEQVHATFASLSPEEVAARSDTLARSFLAQGITFDVAGEERPFPLDVVPRVVEPDEWDRISRGVQQRVRALEAFLADVYGPQQAVRDGVVPRRLIESSGEFQRAAHGIVPANGVRCHVAGVDLVRDEAGEFRVLEDNVRVPSGVSYVLANRQAMVRTVPELFSELRVRSVVEYPRRLRSALVAAAPDGTPDPTVVVLTPGVFNSAYYEHALLARLMGVELVEGRDLYCAAGRVYMRTTSGPQRVDVIYRRVDDAFLDPVQFRADSVLGVPGLVDCARRGTVALANGLGNGVADDKLVYTYLPDLVRYYLSEEPVLQNVDTWRLEEPGALTEVLERLDEMVVKPVDGAGGKGIVVGPDASADELAALRSRLVADPRGWIAQPVVQLSTTPTYVDGAFRPRHVDLRPFAVNDGDDVWVLPGGLTRVALGEGQLVVNSSQGGGSKDTWVLEHPRDHVAAPAGDDAASPRPAEAGVPIATNPADVVDLHHQQQQQQQQQEVPPCPGPT0026300_18DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
AK018_01700528hypothetical proteinATGGCGAGCCACCGGTGGACGAGACTCCTGCGTGAGGCGGCGCGCGCCGTCGGGTCGGCGGTCGCGCGGTCGCGACGACGCCCGACGGCGCCCCCGGGCCGGCAGGCGCCCGCCGGTGCCGTGCGCTACCCGGGGGACTTCACCGGCGTCGTGCGGCCCGTGTACTCCCCGCACCTGGACGGTGCGCCGGACCCCGGCGAGATCGTGTGGACCTGGGTGCCGTTCGAGGAGGACCACAGCCGCGGCAAGGACCGTCCGGTGCTGCTGATCGGCCACGACGGCCCGTGGCTGCTCGCCCTGCAGCTGACCAGCAAGGACCACGACCGCGACGCGGCCACGGAGGCCCGGTACGGCCGGCTGTGGATGGACATCGGGTCCGGGCCGTGGGACGCCCGGGGCCGGCCCAGCGAGGTGCGGGTGAACCGCGTCGTGCGGGTGGCGCCCGACGCCGTGCGCCGCGAGGGTGCGGTGCTGGACGCCGCGACCTTCCGCCAGGTCGTCGACACGATGAGCCGCGCCCGTCGCTGAMASHRWTRLLREAARAVGSAVARSRRRPTAPPGRQAPAGAVRYPGDFTGVVRPVYSPHLDGAPDPGEIVWTWVPFEEDHSRGKDRPVLLIGHDGPWLLALQLTSKDHDRDAATEARYGRLWMDIGSGPWDARGRPSEVRVNRVVRVAPDAVRREGAVLDAATFRQVVDTMSRARRNANANANANA
AK018_01701261rpsT_1COG026830S ribosomal protein S20GTGGCAAACATCAAGTCCCAGATCAAGCGCAACCTGCAGAACGAGAAGGCGCGCCTGCGGAACCGCTCCGTGAAGTCGGAGCTCAAGACGCACGTCCGCAAGGTCCGTAAGGCCGTCGCCGCCGGCGACAAGGAGGCCGCCACCGAGGCGCTCCGCGTCGCGTCGCGCAAGCTCGACAAGGCTGTCTCGAAGGGTGTCATCCACCCCAACCAGGCTGCGAACCGCAAGTCGGCCATCTCGAAGGCCGTCGACGCGCTCTGAMANIKSQIKRNLQNEKARLRNRSVKSELKTHVRKVRKAVAAGDKEAATEALRVASRKLDKAVSKGVIHPNQAANRKSAISKAVDALNANANANANA
AK018_017021014hypothetical proteinGTGCCGCCCGCCTCCCGCTCCCGCCCCGCGAAGACCTCCGCGAACCAGCGCCCCTGGAACGACCCGACCCTCGCGCCGGTGGTCCTGGTCCGCGGCCCCGAGGGCCTGCTGGCCGAGCGCGCGGTGGACGGCGTGGTGGCGCTCGCCCGCGAGCGCGACCCCGAGGTCGAGCGTGCCGAGCTGGACGCGCCGACCTACGCGGCCGGCCAGCTCACGGTGGCGGCCAGCCCGTCGCTGTTCGGCGAGGCGAAGGTCGTGGTCGTGCGGGGGGCGGAGGCGTGCACCGACGACCTGGTGGCCGACGTCGTCGACTACGTGGCCGCACCCGACCCGGAGACGGTCGTGGTGGTGGTGCACGGCGGCGGGAACCGCGGCAAGAAGATGCTCGACGCGATCACCCGGTCCGGTGCGCCGGTGCTGCAGTGCGACGCCGTGAGCAAGGACGCGGACAAGGTGGCGTTCGTCGGCGGCGAGTTCCGTGCCGCGCGGCGCCGTGCCGAGCAGGCCGCGGTGCGGGCGCTGGTCGACGCGCTGGGCAACGACCTGCGCGAGCTCGCGGCGGCCTGCTCCCAGCTCGTCGCGGACACCACGGGCACGATCTCCGCCGAGACGGTGGACCGGTACTACGGCGGCCGCGTGGAGGCGACCGGTTTCAAGGTGGCCGACGCCGCGGTGGCCGGCGACGCCGGGGCGGCGGTCGCGCTGCTGCGGCACGCCCTGGCCACCGGGGCCGACCCCGTGCCCGTCGTGGCGGCGCTGGCGCTGCGGCTGCGGACGCTGGCCCGGGTGGCGGCGATCCGCGGGGGGACGACGACGGCCCGCGAGCTCGGCCTGCAGGACTGGCAGGTGCGCAACGCCCAGCGGGACCTGTCCCGGTGGACGCCGGAGGGGCTGGCCGCCGCCATCACCGCGGTGGCCAAGGCGGACGCCGACGTCAAGGGCGGCGGGCGCGACCCCGTCTACGCCGTGGAGACCGCGGTGCTGACGATCGCGCGCTCCGGCGGACGGTCCTGAMPPASRSRPAKTSANQRPWNDPTLAPVVLVRGPEGLLAERAVDGVVALARERDPEVERAELDAPTYAAGQLTVAASPSLFGEAKVVVVRGAEACTDDLVADVVDYVAAPDPETVVVVVHGGGNRGKKMLDAITRSGAPVLQCDAVSKDADKVAFVGGEFRAARRRAEQAAVRALVDALGNDLRELAAACSQLVADTTGTISAETVDRYYGGRVEATGFKVADAAVAGDAGAAVALLRHALATGADPVPVVAALALRLRTLARVAAIRGGTTTARELGLQDWQVRNAQRDLSRWTPEGLAAAITAVAKADADVKGGGRDPVYAVETAVLTIARSGGRSPGPT0029415_7DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029415-comEC-K02238NANA
AK018_017031140pimB_1COG0438GDP-mannose-dependent alpha-(1-6)-phosphatidylinositol monomannoside mannosyltransferaseGTGCCTCGGACCCTCGTCGTCACCAACGACTTCCCGCCGCGCCAGGGCGGCATCGAGACGTTCGTCCACGCGATGACCTCGCGCTTCGACCCCGACGACGTGGTCGTGTACACCTCCTCGACCCCCGGGCAGGAGGAGTACGACCGCACCCTGCCCCACCCCGTCGTCCGGGCACGGACCCGCATGCTGCTGCCCACCCCGGCGCGGACCCGCGAGGTCGCCCGGCTCGTGGACGCGCACGGGTGCGACACGGTCTGGTTCGGCGCCGCCGCCCCCCTGGGCCTCATGGCACCGGCGCTGCGACGGCGCACGGGCGTGCGCCGGATGGTGGCCACCACCCACGGCCACGAGCTGTGGTGGGCCCGCGTCCCCGGCACCCGGGCGGCCCTGCGCCGCATCGGACGGTCCGTCGACCACCTCACCTACCTCTCGGACCGCACCGTCGGGGTGCTGGCCGACGCCGTCGGCGCCGAGGCCGCCGCCCGTGCCGTGCGCCTCTCCCCCGGCGTCGACCCCTCGACCTTCGCCGGCACCGACCCCGCCGGCGGCCGCGCGGTCCGCGAGCGCCACGGCATCCCGGCCGACGCTCCCGTGGTGCTGTGCGCCGCCCGGCTGGTCGAGCGCAAGGGCCAGGACACCCTGGTGCGCGCCCTGCCCGCCGTGCTGCGCGAGATCCCCGACGCCCGGCTGCTCCTCGTCGGCGACGGTCCCGCCGCCGACCGGCTGCGCCGACTCGTGGACGAGCACGGCGTGTCCGACCACGTCGTCCTCGCCGGGGGGCACCCGCACGCGGCGATGCCGGCCTTCTACAGCGCCGCGGACGTCTTCGCCGGGCCGTCGCGCACCCGGCGCGGCGGGCTCGAGGTCGAGGGCCTCGGCATCGTCTACCTCGAGGCCCAGGCCGCCGGTCTGCCCGTCGTCGTGGGCGACTCCGGCGGGGCACCCGACGCGGTGCGCGACGGCGTCACCGGGTTCGTCGTCGACGGCACCGACCCGGACGACGTCGCGGCCCGTCTGGTCGAGCTCCTCGCGGACCCGGCGCGGAGCCGGCGGATGGGTGCCGCCGGGCCGGGCTGGGTCGAGGACGCCTGGACCTGGGACGAGCGGTTCGAGATCCTGCACGGACTGCTCGCCGGGTGAMPRTLVVTNDFPPRQGGIETFVHAMTSRFDPDDVVVYTSSTPGQEEYDRTLPHPVVRARTRMLLPTPARTREVARLVDAHGCDTVWFGAAAPLGLMAPALRRRTGVRRMVATTHGHELWWARVPGTRAALRRIGRSVDHLTYLSDRTVGVLADAVGAEAAARAVRLSPGVDPSTFAGTDPAGGRAVRERHGIPADAPVVLCAARLVERKGQDTLVRALPAVLREIPDARLLLVGDGPAADRLRRLVDEHGVSDHVVLAGGHPHAAMPAFYSAADVFAGPSRTRRGGLEVEGLGIVYLEAQAAGLPVVVGDSGGAPDAVRDGVTGFVVDGTDPDDVAARLVELLADPARSRRMGAAGPGWVEDAWTWDERFEILHGLLAGPGPT0024300_504DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024300-pimB-K13668NANA
AK018_017042211hypothetical proteinGTGACCCCCTCCACCACCGACGTCCCGCCGCTGCCCACGCCCCGCACCCGGCTCGTGGGCCGTGAGCAGGAGGTCCGCACCGTCCTCGACGCCGTGGACGCCTCGACCCAGTCGGTCGTGACGATCACCGGGATCGGCGGCAGCGGCAAGACGACGCTCGCCACCGAGATCGTCCGGCGCCTCACGGTCCAGTTCGCCCGCCGCTGGTTCGTCGACCTGACCCGGCTCGACCGTGCCGAGGACCTGGCGGGGCACGTGTGCCACCGGCTCGGCGTGCGCCGCGGGACGACGGGGCCGCTCGCGGTCCTGGAGGAGGAGCTCCGCCGGGCGCCCGCCCTGCTCGTGCTCGACAACTGCGAGCACCTGCTCGACGCCGTGGCCGAGCTGGTCGGCTCCCTGACCGCCGCGTGCCCGGAGCTGACCGTGCTGGCCACGAGCCGTCGTCCCCTCGACGTCCCGGCCGAGCGCACCGTCGCGCTCGGGCCGCTGCCGGTCACCGGGCCCGACGGCGGTCCGGGCGCCGCGGTCGAGCTGCTCGTCGAGCGCGCCCGGACGGCGGGTGCGGACCTGTCCGCCGACGACGTCGCGCCGGACGGCCCGGCGGCGGCGCACCTGGCCGCGGTCTGCCGCCGGCTGGACGGCCTCCCGCTGCCGATCGTGCTGGCCGCGACGCACCTGCGCACGATGCATCCCGCCGAGCTGGCCGAGCGGGTGGAGCGCGACCTGTCCCTGCCGGCGATGCGGGGCGGGGCGGACCACCAGCGCACCATGGCGGCGTCGATCGACTGGAGCCTCGACCTGCTGGAGCGCTCGCACCGGGACCTCCTGCTGCGCGCCGGGGTGTTCGTCGGCGCCTTCGACGCCGACGACTGCCGTGCCGTGTGCCGCCCGGACGGCACGCCGGAGGAGGTCGACAGCGGGCTGCGCGAGCTGGTGGAGCACTCGCTGCTGACGGCCGACACCTCGGCGGCGCCGACGCGCTACCGGATGCTCGCCGTCGTGCGCGAGCACGCCCGACGCCGCCTCGGCGCCGGTCCGGCCGACCGGCTGGACGTCGCCCACCGCGTCCACCTGACGACGACCATCGGCGTCACGCCGTCGAGCTCGCCGTTCTACACGCCGGCCGACGTGGCCCGGCTGGAGGTCGTCCACGACGACGCGGTGGCCGCGCTGGACCGCGCCGTCCGGGACGAGGACGCCGCGGCCGTCGTCGGCCTGCTCATGGCGCTGATGCGGTTCTGGCGCGTCACCGGCCGGATCCGGTTCGGGCTGGACCACACCGCCCGGGCCTCGGTCGGGCTGGACGGGTTCGGTCTGGCGGTCGTGCACCTCGTCCGCGCCGACCTGGAGCGGCTGCTCGGGCTCCTCGACGACGCCGACGAGCACGTGCGGGCCGGGCTGGCGACCGTCCGGGCCGGGGGTCCGGCCGCGGCGCACGCCCTGCCCACCGCGCTGGGGATCCGCGGCGACCTCCTGTCCGCGCGGGGCCGGCACGACGACGCCCTCGCGCTGTACGACGAGATCCGCTCGCTGTACGACCCGGCGGATCGTCCGCAGCTGCACGGCGTCTGGTGCGCGAACGTCGGCGGGATCCTTCTCGCCGCGGGCCGCGACGCGGAGGCCGAGCCCCGGCTGCTCGAGGCGCGCCGCGTCCTGGGCGGGCAGCCCCCGGTCTGGCTCGCCGGACGCGTGCACGGCCACCTGGGCACGCTGGCCCGCCGGGCCGGGGACCTCGACGCCGCCCGCGATCTGGTGCTGGCCGGGCTGGACGAGCTGGCACCGTTCGGCGCGCTGGCCGAGGCGGCCCCGCTGGTCGACGAGCTCGCCGCCGTCCTGCGGGCGGACGGGCGCCCCCGGGACGCCGAGGAGTGCTCCCGCGCGGCGGCGTCGATGCGCCGCCGCGTCGGGTCGACGAGCGCCCGGCACGACGGCCCGGGCGAGCACGGACCGGACATCGCCGACGTGACCGCGCTGGTGCGGGACGTCCGTACCGCCCCGGCGTCGGCCGACGCGCTCACGGCGCGCGAGCGCGAGGTGGCCGACCTGGTCGCCGAGGGACTGACGAACCCGCAGATCGCCCGACGGCTGGTCATCTCTCCGGGCACGGCACGCACCCACGTCGAACGCATCCGCACCAAGCTCGGGGTGTCCTCCCGGGTGCACGTCGCACGCTGGGTGCTCGAGAGATACGTCGATCGACGGACGCGCTGAMTPSTTDVPPLPTPRTRLVGREQEVRTVLDAVDASTQSVVTITGIGGSGKTTLATEIVRRLTVQFARRWFVDLTRLDRAEDLAGHVCHRLGVRRGTTGPLAVLEEELRRAPALLVLDNCEHLLDAVAELVGSLTAACPELTVLATSRRPLDVPAERTVALGPLPVTGPDGGPGAAVELLVERARTAGADLSADDVAPDGPAAAHLAAVCRRLDGLPLPIVLAATHLRTMHPAELAERVERDLSLPAMRGGADHQRTMAASIDWSLDLLERSHRDLLLRAGVFVGAFDADDCRAVCRPDGTPEEVDSGLRELVEHSLLTADTSAAPTRYRMLAVVREHARRRLGAGPADRLDVAHRVHLTTTIGVTPSSSPFYTPADVARLEVVHDDAVAALDRAVRDEDAAAVVGLLMALMRFWRVTGRIRFGLDHTARASVGLDGFGLAVVHLVRADLERLLGLLDDADEHVRAGLATVRAGGPAAAHALPTALGIRGDLLSARGRHDDALALYDEIRSLYDPADRPQLHGVWCANVGGILLAAGRDAEAEPRLLEARRVLGGQPPVWLAGRVHGHLGTLARRAGDLDAARDLVLAGLDELAPFGALAEAAPLVDELAAVLRADGRPRDAEECSRAAASMRRRVGSTSARHDGPGEHGPDIADVTALVRDVRTAPASADALTAREREVADLVAEGLTNPQIARRLVISPGTARTHVERIRTKLGVSSRVHVARWVLERYVDRRTRNANANANANA
AK018_01705705hypothetical proteinGTGGTGGGCCATCTTGACGACCTCGACGGCACCGTCGGGATACCCGCCGGCGGCCAGGTCCGCGTCGAGGCGCTCCTGCCCCGGCTCCTCCAGGTCGCCCAGCGCCACGACGTCGACCCCGGCGGCCGTGTGCAGGGCGATCGCGACGCTGGCCTCGTTGGCCCCGCCGGCCCCGGCGTCGGCGCCGAGCACCGTCCAGGCCACGTCGCCCGCCGTGCCCTGGCGGGCGGCCACGGCCACCTCGACGGGCACCTCGTGCCGGGCCAGCGCGGCGCGGGTCCGGCGGGCGGCGTCCGCCGGGTCGTCGAGGGGCGAGACGAGGGCCGCCACGACGGTCCGACCCGCCAGCACGCCCTCCAGGCCGCCGACGTGGTCCGCGTGGAAGTGGCTCAGGACCAGCAGGTCGACGCGATCCACGCCGAGCCGCCGCAGGCACCGTGCGGCACCTTCCCCGGGCGGTCCGACGTCGACCACGACGGCCGCGCGCGGCCCGCTGCGCACGACCAGTGCGTCACCCTGTCCGACGTCGCACGCCGCCACCTGCCAGTCGGGCGGGACGCCGGCCGCCGGCCCGGTGCGCGGCGCGACGACGAGCACCGTCCCGAGCGCCACCCCGAGGACCGTGACCAGGACGACGGCACCCGCCGTCGCCACGCCCCCGGGCCTCCGGACCCACCCGCCGGCGGCGCCGGGAGACCGGCGTGAMVGHLDDLDGTVGIPAGGQVRVEALLPRLLQVAQRHDVDPGGRVQGDRDAGLVGPAGPGVGAEHRPGHVARRALAGGHGHLDGHLVPGQRGAGPAGGVRRVVEGRDEGRHDGPTRQHALQAADVVRVEVAQDQQVDAIHAEPPQAPCGTFPGRSDVDHDGRARPAAHDQCVTLSDVARRHLPVGRDAGRRPGARRDDEHRPERHPEDRDQDDGTRRRHAPGPPDPPAGGAGRPANANANANANA
AK018_01706936hypothetical proteinGTGACCACGGCACACCACCACCCGCCCGAGCCCCCGGACGCCACGGACGACCCCGCCGGGGGACGTCTGGAGGCCCTGCGCGCCGCGCTCGCCACCCCCGCGGACGACGGCGGGCCCGACGAGCTCGTCGAACGGCTGCGCGCTCGGCGTTCCGGCGGCCACGTCGCCGCGGCCTACAGCGCCGCGCACGGCCACCCGGTGGACGACGCGCCGGACGTCGGCCGTCGCCGGTGGGCGCTGGCCGGACCGGTCGCCACCGCGGCCGCCGTCGTCCTGCTGGCCCTCGGGCTCGTCGTGGGAGGGGTCGCGCTCTGGCCCCGCCAGGACGTGGCGCCGCTGGGCGTGCCCGTCGGCGGCGCACCGGCGGACCCCGCGCCGGGCGACCCGCCGTGGGCCGGACCCGCCTCGGTCGATCCCGCTCCGGCCGGGACCCCGCCCGGGCCGACGAGCCCCGGAGGCGGCCCGGACGGCCCGGGCGGCTCGGGCGGCTCGGCGACGGGCACGGGTGTGGTGGTGCACGTCATCGGCCAGGTCGCCGACCCCGGCCTGGTCACCGTGCCGACCGGGGCCCGGGTGGCCGACGCGGTCGATGCCGCCGGCGGTGCCACGAGCACGGCGGACCTGACCGCGCTGAACCTGGCCCGTTCCGTCGTGGACGGCGAGCAGGTGCACGTGCCGGCGCCCGGGGAGGAGCCGCGCGTGGTGGCACCGCCCGCAGGGACGGCGGCGGGGGCCGACGCCGTCGCCCCCGTGCCGCTGAACGCCGCGGACGCCACGGCGCTGACGGCGCTGCCCGGCGTCGGCCCGGTCCTCGCCGACCGGATCGTCGCCTGGCGTGACGAGCACGGGCCCTTCACCCGGTTCGACGAGCTCGCCGAGGTGTCCGGCATCGGCCCGGTGCTCCTGGAGGACCTGCGCGACCTCGTGGTGCTGTGAMTTAHHHPPEPPDATDDPAGGRLEALRAALATPADDGGPDELVERLRARRSGGHVAAAYSAAHGHPVDDAPDVGRRRWALAGPVATAAAVVLLALGLVVGGVALWPRQDVAPLGVPVGGAPADPAPGDPPWAGPASVDPAPAGTPPGPTSPGGGPDGPGGSGGSATGTGVVVHVIGQVADPGLVTVPTGARVADAVDAAGGATSTADLTALNLARSVVDGEQVHVPAPGEEPRVVAPPAGTAAGADAVAPVPLNAADATALTALPGVGPVLADRIVAWRDEHGPFTRFDELAEVSGIGPVLLEDLRDLVVLPGPT0029410_96DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029410-comEA-K02237NANA
AK018_01707912DegV domain-containing proteinATGCGTGACCTACCGGCCGTCCGCGTCGTGACCGACTCGACCGCCTGCCTGCCCGGCCCAGGAGACCTGCCCGCCGACGTCCTGCTGCCCCGGGAGCTGGCGCCCGTCGTCGTCCCCCTGCACGTGGTGACGGACGACACGGAGCTGCGCGAGGGCGTGGACGTCCGGCCGGCGGACGTGGCCGAGCGGATCGCCGCCGGGGAGCGGCTGACCACGTCGCAGCCGACGACGGCCGAGCTCACCGCCGCCTACGGCGACCTGGCCGCCCGGGGGGCGCGTGCCGTGGTCTCGGTGCACCTGTCCGGGAAGCTGTCGGGCACGGTGGAGACCGCCGAGCGGGCCGGGCAGCGCGCCATGCTGCCGGTGCGCGTCGTGGACTCCCGCACCGCGGCGATGGGTCTCGGCTTCGCGGCCGACGAGGCGGCCCGCTGCGCCGCCGCCGGGTGCGACGCGGCCCACGTGGCGCGCCGCGCGGCCGAGGTCGCCGCCTCGGCGCGCACGACCTTCCTCGTGGACTCCCTGGACCACTTGCGTCGCGGCGGGCGGCTCTCCGCCCCGGCCGCCGCGCTGGGCACGGCGCTGGGCGTGCGGCCCATCCTCGCCCTGGACGACGGTGGGATCGACCTCGTCCAGCGGGTGCGCACCCGGCGGGCCTCCGTGGCCCGGCTGGTGGCGATCGCGCTGGAGCAGGTCCGTACGGCGACCCGTCCCGCGGTGGCGGTGCACCATCTCGGCGCGCCCGACCAGGCGGCCGAGGTCGCCGACGCCCTGGCGGGGCGCCTGGGGTTCACCCCGGTGGTGACCCCCGTCAGCGCCGTCCTCGGCGCGCACGTCGGACCCGGGGCGCTGGCCGTCGTGGTCGTCGACCGCGGCGGGCACGTGCACGATCTGGAGCCCGGCGGCCCCTGGTAGMRDLPAVRVVTDSTACLPGPGDLPADVLLPRELAPVVVPLHVVTDDTELREGVDVRPADVAERIAAGERLTTSQPTTAELTAAYGDLAARGARAVVSVHLSGKLSGTVETAERAGQRAMLPVRVVDSRTAAMGLGFAADEAARCAAAGCDAAHVARRAAEVAASARTTFLVDSLDHLRRGGRLSAPAAALGTALGVRPILALDDGGIDLVQRVRTRRASVARLVAIALEQVRTATRPAVAVHHLGAPDQAAEVADALAGRLGFTPVVTPVSAVLGAHVGPGALAVVVVDRGGHVHDLEPGGPWNANANANANA
AK018_017082496malP_1COG0058Maltodextrin phosphorylaseATGGGTAGTGTCGCTCGTGTGACCGAATCGACGCCCCTGATCACCAGCCCGGAGCCCTCGGTCGAGGGGTTCGTGCGCGAGTACCTGCGCGAGCTCAACTTCACCCAGGGCACCGTCCTCGAACGCGCCAGCACCAACGACAAGTACCTGGCCCTGGCCCGCACCGTGCGCCACTACCTGATGTCGCGCTGGATGCGGACCACGAACGAGCACCTGCGCACGCAGCCCAAGGCCGTGGCGTACCTGTCCGCGGAGTACCTGCTGGGCCGCCAGCTCGACAACGCGCTCATCGCGGCCGACCTCACCGAGGTCGCCTCGGAGGCCCTGGCGTCGCTGGGCATCGACCTGGCCGACCTGCGCGAGGCCGAGGTCGAGCCGGGGCTCGGCAACGGCGGGCTGGGCCGCCTCGCCGCGTGCTTCGTCGATTCCCTGGCCACCATGTCGATCCCCGCCATCGGGTACGGCATCCGCTACGAGTACGGCATCTTCCGCCAGAACTTCGTCGACGGGTGGCAGGTCGAGGAGCCCGACCACTGGCTCGACAACGGCTCGCCGTGGGAGTTCGCCCACCCCGAGCACGAGGTCACCGTGGGCTTCGGCGGCCGCACCGAGACCGTCACCGAGCAGGTGGGCGACGACACCGTCGAGCGCACCCGCTGGGTGCCCGGCTGGAAGGTGCTCGGCGTCCCCTACAACTACATGGTCCCCGGCTACCGCAACGGGTGCGTGAACACGCTGCGGCTGTGGAGCGCGCGGGCCACGCACGCCTTCGACCTGGAGATCTTCAACTACGGCGACTACGCCGAGGCGGTGCGCGCCCAGACGTTCGCCGAGAACATCTCCAAGGTGCTCTACCCCGAGGACTCCACGCCGCAGGGCAAGGAGCTGCGCCTGCAGCAGCAGTACTTCTTCGTGGCGTGCTCGCTGCGCGACTTCATCGACCAGCTCCTGCCGGCGGGCTTCGACCTGCACCGGCTCCCCGAGCGCGTCTGCTTCCAGCTCAACGACACCCACCCCGTCATCGCGGTACCCGAGCTCATGCGGATCCTCGTCGACGAGCAGGGTTTCGCGTGGGACGAAGCCTGGGAGGTCACCCAGGGCTGCTTCGCCTACACCTGCCACACGCTGCTGCCCGAGGCGCTCGAGGTCTGGCCCGTGGAGCTGCTGGGCCGCCTGCTGCCGCGGCACCTGGAGATCATCTACCGCATCAACGACGAGTTCCTCGACGAGGTGCGCGAGTCCTCGGGAGACGACGAGCTGCTCGTACGGCGCATGTCGATCATCGCCGAGCACCCGCAGCGGGCGGTGCGTATGGCCCACCTGGCCACCGTGGCCGCGACCAAGGTCAACGGGGTCGCCGAGCTGCACTCGCAGCTCCTGCGCGACAAGGTGCTCGCCGACTTCGCCCGCCTGTGGCCGGAGAAGTTCACCAACGTCACCAACGGGGTGACCCCGCGCCGGTTCGTCCGCCTGGCGAACCCCGGTCTGTCCGAGCTGATCACCGAGGCGATCGGCGACGGCTGGGTCACCGACCTCGACCGGCTGCGCGACCTGGAGCCGATGGCCGACGACCCCGAGTTCCGGCGTCGGTTCCGCGAGGTCAAGGCCGCCGACAAGGAACGGCTGGCCGGGTTCCTCGAGCGGCGCGACGGGATCGAGATCCCGGCGGACACGATGCTGGACGTCATGGTCAAGCGCCTGCACGAGTACAAGCGCCAGACGCTGAAGATCCTGCACGTCGTCACGCTGTACGACCAGATCGTCTCCGGACGCCTCGACCCGGAGGACGTGGTGCCCCGCACCGTCGTCTTCGGCGCGAAGGCCGCCCCCGGCTACGCGATGGCCAAGCAGATCATCGGCCTGATCAACCACGTCGGCTCCGTGGTCAACGCCCACCCCGAGGTCTCGCGGGTGCTGCGCGTCGCCTTCCCGGCGAACTACGACGTGACGGTGGCCGAGACGCTCATCCCGGCGGCGGACCTGTCCGAGCAGATCTCGCTGGCCGGCAAGGAGGCCTCCGGGACGGGCAACATGAAGTTCGCGCTCAACGGCGCGCTGACCGTGGGCACCGACGACGGCGCGAACGTCGAGATCCGCCAGCTCGTCGGCGACGACAACTTCTTCCTGTTCGGCCTCACCGAGCCGGAGGCCGCCGCCGTCGCCGAGGCCGGGTACCGGCCCTCGGCGTACTACGAGGAGAACCCGGTCCTGCGCCGGGCGCTCGACCTCGTGGCGCGCGGGGAGTTCTCCGGCGGGGACCGACGCGTCTTCGAGCCGATCGTGTCCAACCTGCTGGGCGAGGACCGCTTCATGGTGCTGGCCGACTTCCAGTCCTACCTGGACGCCCAGGAGCGGGTCGAGACCGCCTACCGCGACCCGGACGCCTGGAGCCGGGCGGCCGTGCTCAACGTGGCGCGCTCCGGCTTCTTCTCCTCGGACCGGTCGATGCGCGACTACCTCGACCGCATCTGGCACGCGGAGCCGATGGAGGCGTGAMGSVARVTESTPLITSPEPSVEGFVREYLRELNFTQGTVLERASTNDKYLALARTVRHYLMSRWMRTTNEHLRTQPKAVAYLSAEYLLGRQLDNALIAADLTEVASEALASLGIDLADLREAEVEPGLGNGGLGRLAACFVDSLATMSIPAIGYGIRYEYGIFRQNFVDGWQVEEPDHWLDNGSPWEFAHPEHEVTVGFGGRTETVTEQVGDDTVERTRWVPGWKVLGVPYNYMVPGYRNGCVNTLRLWSARATHAFDLEIFNYGDYAEAVRAQTFAENISKVLYPEDSTPQGKELRLQQQYFFVACSLRDFIDQLLPAGFDLHRLPERVCFQLNDTHPVIAVPELMRILVDEQGFAWDEAWEVTQGCFAYTCHTLLPEALEVWPVELLGRLLPRHLEIIYRINDEFLDEVRESSGDDELLVRRMSIIAEHPQRAVRMAHLATVAATKVNGVAELHSQLLRDKVLADFARLWPEKFTNVTNGVTPRRFVRLANPGLSELITEAIGDGWVTDLDRLRDLEPMADDPEFRRRFREVKAADKERLAGFLERRDGIEIPADTMLDVMVKRLHEYKRQTLKILHVVTLYDQIVSGRLDPEDVVPRTVVFGAKAAPGYAMAKQIIGLINHVGSVVNAHPEVSRVLRVAFPANYDVTVAETLIPAADLSEQISLAGKEASGTGNMKFALNGALTVGTDDGANVEIRQLVGDDNFFLFGLTEPEAAAVAEAGYRPSAYYEENPVLRRALDLVARGEFSGGDRRVFEPIVSNLLGEDRFMVLADFQSYLDAQERVETAYRDPDAWSRAAVLNVARSGFFSSDRSMRDYLDRIWHAEPMEAPGPT0018545_2567DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0018545-glgP-K00688NANA
AK018_017093369smc_2Chromosome partition protein SmcGTGACCACGACGTCGACGGCCCGCATGAGCGACTCGCTGTTCGGGCTCATCCCCGCCGCCTCGGACGGCCGCCAGTGGACGGCCACCTCGATGCAGCTCGTCAACTGGGGCGGCTACCACGGGCACCACGAGGTGCGGTTCTCCGCGCGGGCGACGCTGCTGTCCGGCGCCTCCGGCTCGGGCAAGTCCACGCTGCTGGACGCCTACATCGCGCTCATGATGAGCCACACCACCCCGTTCAACGGCGCGTCCAACGGCGCCGCGGCCGGTCGGGCGCGGGGGCGAGAGCAGCGCAACGTGCTGTCCTACGCGCGCGGCAAGCTCGACGACTCGCGGGCCGACGGCGCCACCAGTCGCGAGCAGGTGCTGCGCGGCGACGGCGTGGACACCTGGACGGCGATCGCGATGTCCTGGACGGACCAGTCCGACGAGGTCTTCACGGCCCTGCGGGCCTGGTACGTGCCGCGTGGCGCGACCCGCAACGAGGAGTGCGTCGTCGTGCGGGCCACCGCCGACGGCGCGTTCGACCTGCGTGCGCTGGAGCCCCTGGCCGCCGGCCGGTTCGCCCGGGGCGGGCTCACCGAGGCCGGGCTCACCCCGTTCGACACCGACATCGCCTTCGCCACCCGGCTGCACGCCGCGCTCGGCATCGGCGCGGCCGGGGACGGTCACAAGGCGATGCAGCTGCTGGGCCGCATCCAGGCCGGTCAGGCGATCACCACCGTCGACGCGCTGTACAAGGCGATGGTGCTCACCGAGCCGGAGACGCTCGAGGTCGCGGACCGTGCCGTCGAGCACTTCGACGAGCTGAGCGCCGTCCGCAGCGAGATGCTCACCGCGACCCGCCAGGTCGAGGTGCTGCGGCCCATGGTCGAGCTGCGCGAGCGGATCGACGACGCCGAGGACTCGGTGGCCCTGCTGGACACGCTGGGCGTGGCCGGGAGCGGACCCGCCGCGGCGACGACGCCGTTCGCGGTGTGGCGCGACCGGCGCCGGCTCGCGCTCGTCCGCGCCGAGGAGGAGGTCAACCGCACGGCTCACCGGGCGGCCGAGGAGCGGCGCACGGCCGCCGCGGCGCGGATCGCCACCGCCGAGTCCGACCTCGAGGAGACCCGTGCCGCCCTGCGGCGCTCGGGCGGTGACGCGATCGAGGCCGCCGAGCGCGAGGTCCGGCGGCGCACCGAGGAGCTGGCGCAGGTGCGCACCGCCCGCGCCGGCCTCGACACCCCGCTCGCCGTGCTCGAGGAGTCGGTGTCCTCGCGGCGCGACCTCGACCGCGTGCACCGCGCCGCGCGCGAGCTCGTGGAGCACCGGACCGAGCGGGCGGCCGAGCTCGAGGACGCGGTGTACGGCGCACGCCAGGCCGTCACCGACGCCGAGCAGCGGCTGGCCCGCCTGGAGCAGGAGGCCGCCTCGCTGTCCCGCCGCCGGGGCAACGTCTCGGCGGAGGACCACGCCGCCCGGGTCGCGCTGGCCGAGGCCGCCGGGCTCGGGACCGACGACCTGCCGTTCGTCGGCGAGCTGCTCGAGGTGCGCGGCGAGTACGAACCGTGGCGCGACGCCATCGGCCTGGCCCTCGGCGGGTTCGCCACGACGCTGCTCGTCGACGCCGACCGGCTGGCCGACTTCCGGGCCGCCGTCGACACCGTGCCGCTGCGTCGCCGGCTGCGCTTCGAGGGTGTGCCCACGCATCGGCCGATGGGCGACGACGCCGACCCGCGCACGCTGCCGGGTCGCCTGGAGATCAAGGCCGGGCCGTTCGGCGGCTGGCTCGCCGACCGGCTCGCGCAGCGCTACGACCACGTCTGCGTCGACGACCCCGCCGAGCTGCACCACCACCGCCGTGCCCTGACCCGCACCGGGCAGATCGCCGACGGCGCCCGCGGCGCGCACGGTGGCAGCCCGCGAGGCTCCGTGCTGGGCTTCTCCAACGCCCGGCGCCGGGACCGTCTGGCCACCGACATCGAGGCCGCGCGCACGGCGCTGCAGGAGGCCGGGGCGTCCCTGGAGGGCGCACGGCTGCGGCAGGCGGCGCACACCGACCAGTTCGTGGCCGCCGGGCAGGTCGTGCGGACGACCTGGGAGGAGGTCGACGTCGCCGGCGCCGAGGAGGCGCTCGCCGCGCGGCAGGAACGCCTCGCCGCGCTGCGCGACGGGTCCGACGTCGTGCGCGCGCTCGGCGAGGACGAGCAGGAGCTGCGCACCCGGCTGACCGAGCTGTACCGCGAGCGCGCCGACGCCGAGAACCGCGTGCGCGAGCTCGGCGAGCAGTGGGCGTCCATCACCGACCTCGTCGACCAGGTGACCGACGCCGTCGAGGAGGCCGAGCGCACCGGAGCCGGGTGCACCGAGGCGCAGGTGCGCCGGCTGGAGGCGGCGCTGGCCGCGGTGGCCCCCGGCGACCCCGACCGGTTGCCCCTGGCCGCGCTGGACCAGGCGACCACCGGCGTCGCCCGTGAGCTCGTGCGTGACCGGGAGGCCGCCGTGGCCGCGGCCGAGGCGGCCCGGAACGCGTTGCGCGGTGTCTTCGAGCGGTTCTGCGACGCGTGGCCGAACCCCAACCTCGGCACGGACCCGGACGACTCCTCCGACGACTTCGCCCGCATCCTGGCCGAGATCGAGGACCAGCGCCTGTACGAGCTGACCGAACGCTGGTCGCGGACCCTCGGGCGCCTGTCCGGGCACGACCTGACCCTGCTGGGCAACGTGATGAGCCGGTCGGTCGCCGAGATCCGCGAACGGATGGAGCCGGTCAACCAGATCCTGGCGACCCTGCCCTTCCGTGACGAGAACCACCGGTTGCGCATCACCGCCCAGGTGACCGAGGCGCGCGACGTCGTCTCGTTCCGTCGCCGGCTGCGCGAGCTCGCCGCGGACCCGGGGGAGCAGACCCCGGCCGAGCGGCAGCGGCGCTACGAGCGCATGGCCCGCCTCGTCGACCGCATCCGCCCCGACTCGCCGGAGCGTCGTCGGCTCGTGGACGTGCGCGAGCACGTGCGGATCAGCGCCGAGTGCGTCGACCTCGACGGCAACCACGTCTCGGTCTACGACCACATCGCCGGCAAGTCCGGCGGGGAGTCCCAGGAGCTCGTGGCGTTCATCGTCGGCGCGGCGCTGCGCTACCAGCTCGGCGACGCGGGGGCCGACCGGCCGCGGTACGCGCCGGTGTTCCTCGACGAGGCCTTCATCAAGGCCGACGCGCGGTTCGCGGGGCGCGCCGTCGGGGCGTGGCAGGGTCTGGGCTTCCAGCTCGTCGTCGGTGCGCCCCTGGACAAGGTCAGCGCGCTGGAGCCGCACGTCGACGTCGTGCTGCAGGCCGTCAAGGACCCGGCGGGGCGCTCGCGGCTCGTGACCCTGGTGGGTGCCTAGMTTTSTARMSDSLFGLIPAASDGRQWTATSMQLVNWGGYHGHHEVRFSARATLLSGASGSGKSTLLDAYIALMMSHTTPFNGASNGAAAGRARGREQRNVLSYARGKLDDSRADGATSREQVLRGDGVDTWTAIAMSWTDQSDEVFTALRAWYVPRGATRNEECVVVRATADGAFDLRALEPLAAGRFARGGLTEAGLTPFDTDIAFATRLHAALGIGAAGDGHKAMQLLGRIQAGQAITTVDALYKAMVLTEPETLEVADRAVEHFDELSAVRSEMLTATRQVEVLRPMVELRERIDDAEDSVALLDTLGVAGSGPAAATTPFAVWRDRRRLALVRAEEEVNRTAHRAAEERRTAAAARIATAESDLEETRAALRRSGGDAIEAAEREVRRRTEELAQVRTARAGLDTPLAVLEESVSSRRDLDRVHRAARELVEHRTERAAELEDAVYGARQAVTDAEQRLARLEQEAASLSRRRGNVSAEDHAARVALAEAAGLGTDDLPFVGELLEVRGEYEPWRDAIGLALGGFATTLLVDADRLADFRAAVDTVPLRRRLRFEGVPTHRPMGDDADPRTLPGRLEIKAGPFGGWLADRLAQRYDHVCVDDPAELHHHRRALTRTGQIADGARGAHGGSPRGSVLGFSNARRRDRLATDIEAARTALQEAGASLEGARLRQAAHTDQFVAAGQVVRTTWEEVDVAGAEEALAARQERLAALRDGSDVVRALGEDEQELRTRLTELYRERADAENRVRELGEQWASITDLVDQVTDAVEEAERTGAGCTEAQVRRLEAALAAVAPGDPDRLPLAALDQATTGVARELVRDREAAVAAAEAARNALRGVFERFCDAWPNPNLGTDPDDSSDDFARILAEIEDQRLYELTERWSRTLGRLSGHDLTLLGNVMSRSVAEIRERMEPVNQILATLPFRDENHRLRITAQVTEARDVVSFRRRLRELAADPGEQTPAERQRRYERMARLVDRIRPDSPERRRLVDVREHVRISAECVDLDGNHVSVYDHIAGKSGGESQELVAFIVGAALRYQLGDAGADRPRYAPVFLDEAFIKADARFAGRAVGAWQGLGFQLVVGAPLDKVSALEPHVDVVLQAVKDPAGRSRLVTLVGANANANANANA
AK018_01710690hypothetical proteinATGACTGACGCCGGCGAGGGCACCTTCGTCGAGACCGCCGCGATCGAGGACGACGACGCCGCGCTGTTCGCCGGCGACAGCGGCGTGCTGCCGTTCGAGGCCCGTCGCGTGCTGGCGCTCGTGATGCAGCGTCGCTACCTGTCCGCCGCGGAGCACCCGGCCGAGTGGACGGCGCTCCTGGCCCACCAGCAGGTGCTGTCCTCGCGGCTGCACGACCTGTTCGTCGAGCTCGTGGTGGACCGCGACTACGAGATCGCCTACAAGCGCCAGGTCCGGTCCGACGGGCTCGCGATCCCGGTGCTGCTGCGCGACGAGCCGTTCAAGCGGGTCGAGACGCTGCTCATGCTCTACGTGCGCAACCGGTACCACCAGGAGCAGGGCGCCGGGCACCCCGCCGCCTACGTGGACGCCGAGGAGATGACCGACTACGCCCTCGGGTTCCTCGCCCACGACGAGACGAACCTGGCCGCCCGGCACCGCGAGATCGAGAACGCCGTCGCCGCGCTGGTGCGCGAGCGGGTGCTCGAGGAGGTCGCCACGGGGCGGTACCGCGTGGGCGCGGTGGTGGAGATCCTGCTGCCCGTGGACCGGCTGCGCGAGCTCACCGCGTGGTTGCGCGGCACCGGCGCCGACGGCGCCACCGACAGAGCCACCGACCACCGTCCCGACGAGACGCAGGAGATCGCGTGAMTDAGEGTFVETAAIEDDDAALFAGDSGVLPFEARRVLALVMQRRYLSAAEHPAEWTALLAHQQVLSSRLHDLFVELVVDRDYEIAYKRQVRSDGLAIPVLLRDEPFKRVETLLMLYVRNRYHQEQGAGHPAAYVDAEEMTDYALGFLAHDETNLAARHREIENAVAALVRERVLEEVATGRYRVGAVVEILLPVDRLRELTAWLRGTGADGATDRATDHRPDETQEIANANANANANA
AK018_017111572hypothetical proteinATGTCGTCGTCTGAGCGCGCGCACGGCTCCCGCCTGGCCGGGGCGCTCGCGGGGGTCGAGCGCGCCTTCGCGGCCCCCACGCTCGGGCTGCTGCACAAGGCCGAGGCGCCCCTGGTGGTCGCCGTGCTGCGCTGCGTGTTCACCCCGGACCGCCCGACGGTCGCCACCGAGCAGCTGCACGTCGAGGTGGACGACCTGCTGGACGGCTTCCGTGCCGCCCGGGACGACGGTGGTGGTCCGGCGGCGTCCGGCGCACCCCGGGTGCCGGACGAGCCCGCGCGCGTGCTGTGCACCCGGTGGGTGCGCGAGCGCTGGCTCGTGCGGTCCCTGGACGACGGCGGCGCCGAGCGGTACCAGCTCTCCAGCTACGCCACCGAGGCCCTCGACGTCGTCGCGCGCACCCAGGGCGGTCGGGGCCTGGTCAGCGAGTCCCGGATCCGGACGCTGCTCGTCGCGCTCGACGACCTCGCCCGGGACGCGCACCCCGACCGTGAGGCGCGGATGCGGCGCCTGCGTGCCCGCATCGACGAGGCGCAGGGCGAGCTCGCCCGGCTGGAGGCCGGGGGAGAAGTGGAGCCCGTCGCCGAGGAGCGCCTGGGCGAGCAGTACGACCACCTGCTGTTCCTCGTGCGCGAGCTGCCCGCCGACTTCGCCCGCGTGGCGGAGTCGCTGACCGTCCTGCAGCGCGACCTGGTGACCCGCCTGCGTCAGGACGACCGGTCCACCGGCGTGGTGGTCGCGGAGTACCTCGACGCCTCGGAGAACCTGCTCGACAGCACCACCGAGGGCCGGGCGTTCGCCGGGGCGATGGAGCTGCTGGGGGACCCGGACCTGCTGGACTCGCTCGAGCAGCGGGTCGGGGAGATCCTCGAGCACCCGTTCGCCGCGGACCTGCCGGTGGCGCAGCGGCACGCGCTGCAGGGGCTGCGGTCGCAGCTGGTCACGGCCATCGAGGTCGTGCTCGCCGCGCAGGCCCGCGTCTCGCGGACCGTGACCGCGCAGATCCGCCACCACAACCCGCTGCGCGACCGCGAGGTCGACAGCGCCCTGCGCGAGGCGACCGCGGCGATGGCGGACTGGTTCCCGGCCAGCGGCCGGGCGGCCCGGGTCGAGCCGCTGCGATGGTTCGAGCGTGCCGTGCCGGGCCGGCTGCGCACCACCCTGCACGACCTGCGTCCCGAGACACCGCCCGAGCAGCTCGACCCGTGGGCGCCCGAGGACACCGACGACCCGGACGGGGCGATCGACGAGCTGCGGGCGATGGGCGGCCCCAGCCACCAGGACCTCGCGGCGCGGCTGGCCGGGCTGACGGCGCCGAGCACCGTCGGGGCGGTCTTCGCCGACGGCCCGGCGGCGCTGCGCCGGCCGGTGGAGCTGCTCGGCTACCTGGACCTGGCCGTCGACGGCGGCCGCCCCGGTGCCGACGGCGCTGCGGCCGCGCCGCCACCGGAGGCCCCCCGCACCGGGGACGTGCCCGCCGACGGGCTGGAGCGGGTCACCGCCACCCGCGCCGACGGCACCACCCGCGACTTCGTGCTGCCCCGCACCCCGATCAGGAGGACCGATGACTGAMSSSERAHGSRLAGALAGVERAFAAPTLGLLHKAEAPLVVAVLRCVFTPDRPTVATEQLHVEVDDLLDGFRAARDDGGGPAASGAPRVPDEPARVLCTRWVRERWLVRSLDDGGAERYQLSSYATEALDVVARTQGGRGLVSESRIRTLLVALDDLARDAHPDREARMRRLRARIDEAQGELARLEAGGEVEPVAEERLGEQYDHLLFLVRELPADFARVAESLTVLQRDLVTRLRQDDRSTGVVVAEYLDASENLLDSTTEGRAFAGAMELLGDPDLLDSLEQRVGEILEHPFAADLPVAQRHALQGLRSQLVTAIEVVLAAQARVSRTVTAQIRHHNPLRDREVDSALREATAAMADWFPASGRAARVEPLRWFERAVPGRLRTTLHDLRPETPPEQLDPWAPEDTDDPDGAIDELRAMGGPSHQDLAARLAGLTAPSTVGAVFADGPAALRRPVELLGYLDLAVDGGRPGADGAAAAPPPEAPRTGDVPADGLERVTATRADGTTRDFVLPRTPIRRTDDNANANANANA
AK018_017122994leuS_1COG0495Leucine--tRNA ligaseGTGAGCACGCCCAACGCCGACACCACTGACCTGTCCGCCGCCCCGCAGCGCCCCGACGAGCCCGAGCACCGGTACACCCCGGCCCTCGCGCAGGAGATCGAGCTGCGCTGGCAGGACCGGTGGGAGGAGCGCGGCACGTTCCACGCCGCGAACCCCACCGGCGAGCTCACCGGTCCCGACGGGGCCGAGCCGGCCGGACGGCCCTTCTTCATCATGGACATGTTCCCGTACCCCTCGGGGGCGGGGCTGCACGTGGGGCACCCGCTCGGGTTCATCGCCACCGACGTCGTCGGCCGCTTCCGCATGATGTGCGGCGACAACGTGCTGCACGCCATGGGCTTCGACGCCTTCGGCCTGCCCGCCGAGCAGTACGCCGTGCAGACCGGCGAGCACCCCCGCCTGGTGACCGAGCGCAACATGGTCACCTACCGCCGCCAGCTGCGCCGGATGGGGCTGGGGCACGACCCGCGCCGCAGCTTCGCCACCATCGACGACGACTACGTGCGCTGGACGCAGTGGATCTTCCTGGAGATCTTCGACTCCTGGTACGACGCCGACGCCGAGCCGGTCGACGGCGGCACGCAGCGCGGCCGGGCCCGCCGGATCTCCGAGCTGCGCGCGGAGCTGGCCGCCGGGACCCGGCCCGTGCCCGGGCACGACGGCGACAACACCGGCGGCGCCGTGTGGTCCACGCTGAGCGAGCCCGAGCAGCGCGACGTCCTGGACGCCCAGCGCCTGGCCTACGTCGACTCCTCCCCGGTGAACTGGTGCCCCGGCCTGGGCACCGTGCTGGCCAACGAGGAGGTCACCGCCGAGGGACGCTCCGAGCGCGGCAACTTCCCGGTGTTCACCAAGAACCTGCGCCAGTGGAAGATGCGGATCACCGCCTACGCGGACCGCCTTGTCGACGACCTGGAGCTCATCGAGTGGCCCGACAAGGTCAAGGCGATGCAGCGCAACTGGATCGGCCGCTCGACGGGCGCCAACGTGACGTTCCACGTCGTCGGCGCGGGTGACGCGGACGCCGACGCCGCCGGCGCGGGCGCCGCCATCGAGGTGTTCACCACCCGGCCCGACACCCTGTTCGGCGCGACCTTCATGGTGGTCTCCCCGGAGCACCCGCTGCTGGACGAGGTCCCGGCGACCTGGCCCGACGGCACCCGCGCGGTCTGGACCGGCGGGCACGCCTCCCCGGTGGAGGCCGTGGCCGCCTACCGCCGCGAGGCGGCCGCCAAGACCGCCGTCGAGCGGCAGGCCGACGCCGGCAAGAAGACCGGCGTGTTCACCGGTCACCTGGCGGTCAACCCGGTCAACGGCGAGACCGTCCCCGTCTTCACGGCGGACTACGTGCTGATGGGCTACGGCACCGGCGCGATCATGGCCGTGCCCGGCGGGGACGACCGCGACCACGCCTTCGCCGAGGCCTTCGAGCTGCCGATCGTGCACACCGTCGAGCCGGCCGGCGGGCTGCCCGAGGGGCACGATGGCGCGTGGACCGGCGACGGCGTCACCGTGCGCTCGTCGAACGACGAGATCTCCCTGGACGGTCTCGGCGTGGCCGAGGCCAAGGCGCGGATCATCGCCTGGCTCGAGGAGAAGGGCGCCGGCCGGGGCACGACCACCTACCGCCTCAACGACTGGCTGTTCAGCCGCCAGCGGTACTGGGGCGAGCCGTTCCCGATCCTCTGGGACGCCGAGGACCGCCCCGTCGCCATCCCCGGTGACCGCCTGCCCGTGGACCTGCCCGAGGTGCCGGACTACGCGCCGCGCACCTTCGACCCGGACGACCGCGACTCCGAGCCGGAGGCGCCGCTGGGCCGCAACGACGACTGGGTGCACGTCACCCTGGACCTGGGCGACGGCCCGCAGCAGTACCGCCGCGACACCAACACCATGCCCAACTGGGCCGGGTCGTGCTGGTACTACCTGCGGTACCTGGACCCCACCTGGGGCACCGACGACCAGGGCGACGGCGAGCGCCCCGTGGTCGACCCGGACCTGGAGCGGTACTGGATGGGCCCCCGGCACAACGACACCTCCGGGCCGGCCGGCGGCGTCGACCTGTACGTCGGCGGCGTCGAGCACGCCGTGCTGCACCTGCTGTACGCGCGGTTCTGGCACAAGGTCCTGCACGACCTCGGGCACGTCAGCTCGCGCGAGCCGTTCGGCAAGCTCTTCAACCAGGGCTACATCCAGGCCTACGCCTTCACCGACGACCGCGGCGCCTACGTGCCCGCGGCCGAGGTCGAGGGCGACGAGCAGGAGGGCTGGACCTACCAGGGCCAGGCCGTCGAGCGCGAGTACGGCAAGATGGGCAAGTCGCTGAAGAACGTCGTCACCCCCGACGACATGTACGCCGAGTACGGCGCCGACACGTTCCGCGTCTACGAGATGGCGATGGGCCCGCTGGACCTGTCGCGCCCGTGGAACACGCGGGACGTCGTCGGCTCCCAGCGGTTCCTGCAGCGGCTGTGGCGCAACGTCGTCGACGAGACCGACGGGTCGCTGGTCGTCACCGACGACGAGCCCGCGCCGGACACCCTCAAGGCGCTGCACCGCACCATCGCGGACGTGCGCGTCGAGATGGAGGGCATGCGGCCCAACACGGCCATCGCCAAGCTCATCACCTACAACAACCACCTGACGGCCCTGGACCGCGTGCCGCGTGCCGCCGTCGAGCCGCTGGTGCTCATGGTCGCGCCCATCGCGCCGCACATCGCCGAAGAGCTGTGGGAGCGTCTCGGGCACACCGCCTCGCTGGCGCGCGAGCCCTTCCCCGAGGCCCGCGACGAGTACCTGGTCGCCGAGACGGTCACCTGCGTCGTGCAGGTCAAGGGCAAGGTGCGCGGGCGCGTCGAGGTGTCGCCGGACATCTCCGACGACGACCTGACGGCGGCGGCCCTGGCCGAGCCGAACGTGATGCGGGCGATCGACGGCGCCGAGATCCGCAAGGTGATCGTCCGGGCGCCGAAGCTGGTGAATGTCGTCGTCTGAMSTPNADTTDLSAAPQRPDEPEHRYTPALAQEIELRWQDRWEERGTFHAANPTGELTGPDGAEPAGRPFFIMDMFPYPSGAGLHVGHPLGFIATDVVGRFRMMCGDNVLHAMGFDAFGLPAEQYAVQTGEHPRLVTERNMVTYRRQLRRMGLGHDPRRSFATIDDDYVRWTQWIFLEIFDSWYDADAEPVDGGTQRGRARRISELRAELAAGTRPVPGHDGDNTGGAVWSTLSEPEQRDVLDAQRLAYVDSSPVNWCPGLGTVLANEEVTAEGRSERGNFPVFTKNLRQWKMRITAYADRLVDDLELIEWPDKVKAMQRNWIGRSTGANVTFHVVGAGDADADAAGAGAAIEVFTTRPDTLFGATFMVVSPEHPLLDEVPATWPDGTRAVWTGGHASPVEAVAAYRREAAAKTAVERQADAGKKTGVFTGHLAVNPVNGETVPVFTADYVLMGYGTGAIMAVPGGDDRDHAFAEAFELPIVHTVEPAGGLPEGHDGAWTGDGVTVRSSNDEISLDGLGVAEAKARIIAWLEEKGAGRGTTTYRLNDWLFSRQRYWGEPFPILWDAEDRPVAIPGDRLPVDLPEVPDYAPRTFDPDDRDSEPEAPLGRNDDWVHVTLDLGDGPQQYRRDTNTMPNWAGSCWYYLRYLDPTWGTDDQGDGERPVVDPDLERYWMGPRHNDTSGPAGGVDLYVGGVEHAVLHLLYARFWHKVLHDLGHVSSREPFGKLFNQGYIQAYAFTDDRGAYVPAAEVEGDEQEGWTYQGQAVEREYGKMGKSLKNVVTPDDMYAEYGADTFRVYEMAMGPLDLSRPWNTRDVVGSQRFLQRLWRNVVDETDGSLVVTDDEPAPDTLKALHRTIADVRVEMEGMRPNTAIAKLITYNNHLTALDRVPRAAVEPLVLMVAPIAPHIAEELWERLGHTASLAREPFPEARDEYLVAETVTCVVQVKGKVRGRVEVSPDISDDDLTAAALAEPNVMRAIDGAEIRKVIVRAPKLVNVVVNANANANANA
AK018_01713627hypothetical proteinGTGACCGAGACACCCGCCGACGGCGCACCGGCCGTCGCGCAGCCCCGCCCGCTGGCGGCCCGCACCTACGGCACCCTGCTCGTCGTGCTCGGCGCCGTCGGCTTCGGCGGCGCGATGTGGCTGGCCGTCGAGAGGATCCTCAAGCTCCAGGACCCCGACCGGGTCACGTCCTGCTCGATCAACCTGTTCCTCGACTGCGGCATCGCCATGGAGTCGTGGCAGGGGGCGCTGCTCGGCTTCCCGAACCCGTTCATCGGCGTGGCCGCCTTCCCCGTGGTGATCACCAGCGGTGTCGTGCTGCTCGCCGGGGCGCGGCTGCCGCGGTGGTACCACCTGTGGCTGCTCGGCGGGACGGTGCTCGGTCAGCTCCTGGTCTTCTTCCTGATGTGGACGAGCTTCTCCGTGCTCGTCGCCCTCTGCCCGGCCTGCATGGTCGTGTGGACGATCATGTGGCCGCTGCTGTGGTACCAGGTCGTGCACGACGTGCAGGAGGGGCACCTGCGCGTCGGCGAGGGGCTGCGACGCCTCGTCCTGGGCTACCGCGGCGTGATCCTCGTCATCGGCTACGTCGTGGCCATCGCCTGGCTGCTCCTCGCCGTCGGGTCGCCGCTCGTCGCCTCCTTCTGAMTETPADGAPAVAQPRPLAARTYGTLLVVLGAVGFGGAMWLAVERILKLQDPDRVTSCSINLFLDCGIAMESWQGALLGFPNPFIGVAAFPVVITSGVVLLAGARLPRWYHLWLLGGTVLGQLLVFFLMWTSFSVLVALCPACMVVWTIMWPLLWYQVVHDVQEGHLRVGEGLRRLVLGYRGVILVIGYVVAIAWLLLAVGSPLVASFNANANANANA
AK018_017141224ydhP_1COG2814Inner membrane transport protein YdhPGTGACCGTCGCGCCACCCCGACCCACCACGGGACGCCCGGCCCTCGGTGCCGGTCAAGCGCTGTTCGCCCTGGCACTCGGCGGCTTCACCATCGGCACCACCGAGTTCGCCACGATGGGGCTGCTGCCCCAGATCGGTGCGGACCTGCAGGCGAGCGACCCCGTCGTCGGCCACGCGATCACCGCCTACGCCGTCGGCGTCGTCGTCGGCGCGCCGCTGCTGACCGTGGCCGCCGCCCGGATGTCCCGGCGTCGGCTCCTGCTCGTGCTCATGGGCGCCTACACGGTGGCGAACGTGCTCTCCGCCGCCGCGCCGAGCATCGAGTGGCTGGTCGCCGGCCGGTTCCTCGCCGGGCTGCCGCACGGTGCCTTCTTCGGCGTCGGGGCCGCCGTCGGGGCCGCGGTCGCCGGCCCCGGGAGGCGCGGGCACGCCGTCGCGATGATGATGACGGGACTGACCGTGGCCAACGTGGTCGGCGTCCCGCTCTCGACCGCCGTCGGGCAGGCCTTCGGCTGGCGCGTCGCGTTCGTGCTGATCGGCGTGCTGGGCGGCATCACGCTGCTCGGGCTGTGGCGCTTCGTGCCCGAGCAGAGGCCGGTGCCGACCAGCGTCCGCCAGGAGCTGGGGACGCTCGCCAACGGTCCGCTGTGGGTCGCGTTCGTCGGCGGTGCGATCGGGTTCGGCGGGCTGTTCGCCGTCTACACCTACGTCGCGCCCACGGTCACGCGGGTGTCCGGCATGAGCGAGAGCGCCGTGCCGTGGGTGCTCGCCGTCATGGGCGTGGGGATGACCGTCGGCACGCTGCTCGGCGGTCGGCTCGCCGACCGGTCCGTGCTCGGCACCCTGCTCGGCGGCTACGTCGCCACCGGCCTGTCCCTCGTGCTGTTCGCCCTGACGGCGACCAGCGCGGTGGGGGCCGTGCTGGGTCTGTTCCTCCTCGGGGTCACCTCGCAGGTGCTCGGGATCGCGATGCAGACGCGTCTGATGGACCTCTCCCCGCGGGCCCAGTCCCTCGGCGCGGCGCTGTGCCACTCCGCGCTGAACGTCGGCAACGCCGGCGGCGCCTTCGTCGGCGGGCTCGTCATCGCCGGCGGCTGGGGGTACGTCGCACCGGCCTGGGCCGGGCTGGGGCTGACGGTGGTGGGTCTGCTGATCGTGCTCGTCTCCCTGCGCACGACCCGGCCGACGCCGGCGGCCGAGGCGTGCGATACCGTCACCCCGTGAMTVAPPRPTTGRPALGAGQALFALALGGFTIGTTEFATMGLLPQIGADLQASDPVVGHAITAYAVGVVVGAPLLTVAAARMSRRRLLLVLMGAYTVANVLSAAAPSIEWLVAGRFLAGLPHGAFFGVGAAVGAAVAGPGRRGHAVAMMMTGLTVANVVGVPLSTAVGQAFGWRVAFVLIGVLGGITLLGLWRFVPEQRPVPTSVRQELGTLANGPLWVAFVGGAIGFGGLFAVYTYVAPTVTRVSGMSESAVPWVLAVMGVGMTVGTLLGGRLADRSVLGTLLGGYVATGLSLVLFALTATSAVGAVLGLFLLGVTSQVLGIAMQTRLMDLSPRAQSLGAALCHSALNVGNAGGAFVGGLVIAGGWGYVAPAWAGLGLTVVGLLIVLVSLRTTRPTPAAEACDTVTPPGPT0028991_735DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
AK018_01715699mntR_1HTH-type transcriptional regulator MntRGTGAACGACACCGACACCACCCGGCCGGCCGATCTGACCCCGGTGGCGCAGGACTACCTCAAGGCGATCTGGTCGGCGCAGGAGTGGAGCGACGAACGGGTCACGACCGGCCTGCTCGCCGACCGCCTGGGCGTCGGGCCGTCCACGGTGTCGGAGACGGTGCGCCGGCTGACGGCGCAGGGCCTGCTCGGGCACGAGCCGTACAGCGGGGTCTGGCTCACCGACGAGGGCCGTCGGCACGCCCTGACCATGGTGCGCCGCCACCGGCTGCTCGAGACCTGGCTGGTGCGTGAGCTCGGCTACGGCTGGGACGAGGTGCACGACGAGGCCGAGGTGCTCGAGCACGCGGTCTCGGACCTGCTCGTCGAGCGCATCGACGCCCGGCTGGGGCACCCCGTGCGCGACCCGCACGGCGACCCGATCCCCACGGCGGACGGCCGGGTGGTCCGCCCCGACGCGGTGCCGCTCGAGGATCTGGCCGAGGGGGAGCGGGGCGTCGTGGCGCGGATCTCCGACGCCGACTCCGAGGCGCTGCGCTACCTCGCGGGCCTGGGTCTCGCGCTCGACGTGGAGGTGACCGTCGAGGAGCGTCGCGACTACGCCGGCACGCTCTCCCTGACCTGGACGGGGCCCGCCGGGGCGGTGGCCGTCGACCTGGGCCACCTCGCGGCCTCGCGCGTGCGGGTGGTCCGCGCGTAGMNDTDTTRPADLTPVAQDYLKAIWSAQEWSDERVTTGLLADRLGVGPSTVSETVRRLTAQGLLGHEPYSGVWLTDEGRRHALTMVRRHRLLETWLVRELGYGWDEVHDEAEVLEHAVSDLLVERIDARLGHPVRDPHGDPIPTADGRVVRPDAVPLEDLAEGERGVVARISDADSEALRYLAGLGLALDVEVTVEERRDYAGTLSLTWTGPAGAVAVDLGHLAASRVRVVRAPGPT0003890_480DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003890-troR-K03709NANA
AK018_017161710hypothetical proteinATGACCGAACGCCGTACCCCGCCCCGCTGGCTGCGCTGGACCCTCGTGGTCACCGCGGCCGTGGTCGCCTGCGTCGTGTACGGCGTGACGACCGCGTCCGCCGAGCTCAACCTCGGCCCGCACGAGGCCGTCTACGAGGTCGACACCGACGGCCTCGTGGTCACCGATCTCGGTCCGCTGGGCACCCTCGAGATCGACTCGCCGCTCCCGCTCGGCCTCGGCGTGGACGTCACCGTCCAGGAGATCCCCGCCGACCTGACCGCGGTCGACGACGCCTCGACGCTGGACAAGCTGGTCGGCGACCTCGACCGCTACCTGCAGTTCTACGACAGCCCCCAGATCACCTTCGACGCCGTCACCTGGGCCCTGGTCGCCTCGGCGGCGCGCCGGACCGTGGGGGCCCTCGTCGTCGTGGCGCTCGCGGCCTGGGGCGTGCGGCTGCTGCTCGGGCCCCGGCGTCGCGACGAGCTCTCGGCGACGCTGGCCCCGCGCACCTGGCAGCTCACCGCCGGGGCCGTCGTGGTCGGGATCGTCGGGTCGACCCTGGTCGCCGGCGACGTGACGCCGCCACGGGCCGGGCGCCCGGCGTCGGAGGTGTTCGCGGGGACCGCGCTGGAAGGTGCGCGCATCACCGGGCGCCTGGCGTCCGTGGTCGACACCTACGGGGGCCAGCTCTTGGAGCTGTACGAGGAGAACGAGGCGTTCTACGCCGCGGCGGACGACGACCTGCACGACGCGTGGCGCGCCTGGGAGATCCGTGACGCCGTGCGGACCAACCTCGGGGCGGCCCCTCCGGTGCCCGAGGACGTGGTGACGATGCTCGTGGTCTCCGACCTGCACTGCAACACCGGCATGTCGCCGCTGATCCGGTCGACCGCGGAGCTGTCCGGCGCGGACGTGATGCTCAACGCCGGGGACACGACGATGAACGGCACAGCCGTCGAGAAGGCGTGCGTCGACTCCTTCGCGGCCGCCGTGCCCGACGACGTGCCCATGATCGTCGCCGACGGCAACCACGACTCGGTGCTGACCTCCGCCCAGGAGGCCGCGCACGGTCAGGTGGTGCTCGACGGGTCCGTCGTCGAGGCGTCCGGGGTGCGCATCCTCGGCGACCGGGACGTCCTGGAGACCCGGATCGGCGAGGGCACGACCGTCGCGCGCGAGCGCACCCCGGCCGAGCAGGCCGCCGAGCTGGCCGCCACGGCCTGCACGGAGGGCGACGTCGACCTGCTGCTGGTGCACACCCCCGTGGTCGGGGACCCCGCGCTGGAGTCCGGCTGCGTGCCCTTCCAGGTCTCGGGGCACACCCACCGGCGGGCCGGGCCCGTGCAGGTCGGCCAGGGGATCCGCTACGTGTCGGCCAGCACGGCCGGGGCGGCCTCCGGGCAGGCGACCGTCGGCCCGTTGCGCGGGACCGCCGAGATGACGCTGCTGCGGTTCGACCCCGAGGACGGCCGGGTGCTGGACGTCCAGGTCGTCTCCGTGAACCCGGCCGGTCAGGCCACGGTGCACGACCGCGAGCCCGTGCCCGAGGTCGTGCCGGCGGTCGGGCAGCTCGAGCCGACGGCGGCGCCGGAGGTCGTCCCGGGCACCCCGAGCCCGGAGGCGTCGCCCGTCGCGACCCCGCTGGAGCTCGAGGACCCGCCGGACGGCGGGAGCACGGAGGAACCGTCCCCCTCGCCGAGTCCCGAGGGGCCGCTCGCGCCCTGAMTERRTPPRWLRWTLVVTAAVVACVVYGVTTASAELNLGPHEAVYEVDTDGLVVTDLGPLGTLEIDSPLPLGLGVDVTVQEIPADLTAVDDASTLDKLVGDLDRYLQFYDSPQITFDAVTWALVASAARRTVGALVVVALAAWGVRLLLGPRRRDELSATLAPRTWQLTAGAVVVGIVGSTLVAGDVTPPRAGRPASEVFAGTALEGARITGRLASVVDTYGGQLLELYEENEAFYAAADDDLHDAWRAWEIRDAVRTNLGAAPPVPEDVVTMLVVSDLHCNTGMSPLIRSTAELSGADVMLNAGDTTMNGTAVEKACVDSFAAAVPDDVPMIVADGNHDSVLTSAQEAAHGQVVLDGSVVEASGVRILGDRDVLETRIGEGTTVARERTPAEQAAELAATACTEGDVDLLLVHTPVVGDPALESGCVPFQVSGHTHRRAGPVQVGQGIRYVSASTAGAASGQATVGPLRGTAEMTLLRFDPEDGRVLDVQVVSVNPAGQATVHDREPVPEVVPAVGQLEPTAAPEVVPGTPSPEASPVATPLELEDPPDGGSTEEPSPSPSPEGPLAPNANANANANA
AK018_017171557lfrA_1COG0477Multidrug efflux pump LfrAATGGCTCAGATCCTCACGGCACCGGCTTCCTCGACGACGAACCCCACCCCGGCGCCGGCTCCCGGCGCGACCGTGACGTCCCCGGTCCGGCGGTGGATCGCCCTCGCCGTGCTCATGCTGCCGGTGCTCCTGGTGTCCATCGACAACACGGTGCTCAGCTTCGCGCTGCCGCAGATCTCCGCGGCGCTGGAACCCGGCGGCACCCAGCTCCTCTGGATCGTCGACGCCTACTCGCTGGTGCTCGCCGGGCTCCTGGTCCCGATGGGGTCGGTCGCCGACCGCGTCGGACGGCGTCGCCTGCTGCTGACCGGCGCCGTCGGCTTCGCGGCCGTGTCCGCTCTCGCGGCCTTCGCGCCCAGCGCCGGTGCGCTCGTGGTCGCCCGCGCCGCCCTCGGGTTCTTCGGCGCGATGCTCATGCCGTCGGCCCTGTCGCTGCTGCGCAACGTCTTCACCGACCGCGCCGAGCGACGCCTCGCCATCGCGGTCTTCGCCTCCGCCTTCGCGGCCGGCTCCGCCGTCGGGCCGATCGTCGGCGGCGTGCTGCTGGAGCACTTCTGGTGGGGGTCGGTGTTCCTGCTGGCCGTCCCGGTCCTCGTGCTGCTCGGAATCCTCGCCCCGATCTTCGTCCCGGAGTCCCGCGACCCCGCGCCGGGACGGGTCGACCCGGTCTCCGTCGTGCTGGTCATGGGCGCCATGCTGGCCGTCGTCCTCGGCATCAAGACGCTCGCCAAGGGTGACCTGCTCGGGCTCGCCGAGCTCACCGTCGGCCTCGGGATCGGGGCGGTGTTCGTCCGTCGTCAGTTGCGCCGGCCCGACCCGATGCTCGACGTCCGGCTCTTCACCCACGCCGCCTTCACCGGCAGCGTGCTGGTCAACCTGCTGTCGGTGTTCGCGCTCGTCGGCTTCCTGTTCTTCGTCTCCCAGGACCTGCAGCTCGTCATCGGGCTCTCCCCGGTACAGGCCGGCCTCGTCCTGGTGCCGGGAACGATCACGACGGTCGTCGCGGGGCTGTCGGTCGTGCGGATCGTCCGTCGTGTCCGGCCCGCGGTCATCGTGGCCGCCGGGCTCTGCGTGTCGGCGACCGGCTACCTCGTCACCGCCCTCGTGGCCGGGCGGGGCGAGGCCGGGTGGATCGCCGTCGCCTTCGTCGTGCTCGCGCTCGGGGTCGGGATGGCCGAGACCATCTCCAACGACCTCATCGTCTCCACCGTGCCGGCGACGAAGGCGGGTGCGGCCTCGGCCATCTCCGAGACCGCGTACGAGGTCGGGGCGGTCCTGGGCACCGCGGTGCTGGGTGGCATCCTCACGGCCTCGTACCACGCGGCCGTCCGGGTGCCCGACGGCGTCACGCCGGCCGAGGCGGCCCGCGCGGCCGAGACCCTCGGCGGGGCGACCAACGTCGCCGCCGACCTGCCCGCCGACCAGGCGAGCGCGCTGCTCGACTCCGCGCACGCGGCGTTCGGCAGCGGCGTGATGACGACCTCCGTCATCGGGTTCGTCGCGGTGCTCGGCGCCGCCGTGATCGCGCTGACCACGCTGCGCCGCGCGACCTCCTGAMAQILTAPASSTTNPTPAPAPGATVTSPVRRWIALAVLMLPVLLVSIDNTVLSFALPQISAALEPGGTQLLWIVDAYSLVLAGLLVPMGSVADRVGRRRLLLTGAVGFAAVSALAAFAPSAGALVVARAALGFFGAMLMPSALSLLRNVFTDRAERRLAIAVFASAFAAGSAVGPIVGGVLLEHFWWGSVFLLAVPVLVLLGILAPIFVPESRDPAPGRVDPVSVVLVMGAMLAVVLGIKTLAKGDLLGLAELTVGLGIGAVFVRRQLRRPDPMLDVRLFTHAAFTGSVLVNLLSVFALVGFLFFVSQDLQLVIGLSPVQAGLVLVPGTITTVVAGLSVVRIVRRVRPAVIVAAGLCVSATGYLVTALVAGRGEAGWIAVAFVVLALGVGMAETISNDLIVSTVPATKAGAASAISETAYEVGAVLGTAVLGGILTASYHAAVRVPDGVTPAEAARAAETLGGATNVAADLPADQASALLDSAHAAFGSGVMTTSVIGFVAVLGAAVIALTTLRRATSPGPT0028045_84DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167NANA
AK018_01718531hypothetical proteinATGCCTCCCCCACCCGCAGCACGCGCCAAGGTGCTCCAGGCGTTCACCGACCTGCTCGTCACCTCCGGCGAGCGGTCGGCCACCCTCGACGCGGTCGCCGACCACGCCGGCGTCTCCAAGGGCGGGCTGCTGTACCACTTCGGCTCCAAGGACGCCCTCGTCGACGGGCTCGTCGAGCACCTGACCGCGCTCATCGCCGCCGACGTCGCCGCGATGCGGGCCGCCCCCGAGGGCCCGGTGCACTACCTGCTCCGCACGTCGTCGGACGTCGGCAACGAGTTCGACCGCACGTATCTCGCGGTCGCCGAGCTCGCCCGCGGCGCCTACCCCCGTGCCCGCAGCGCGCTCGACGCCGCCGAGCAGGCGTGGACGGACACCGTGGCCGAGCAGGTGGGCGACGCCGCCCTCGCGCGGACCGTCGTGCTGCTGTCGGACGGCATCTACCACCGCGCCTCGCTGGGCGCGGCGCCCCCGCCCCTGGAGGAGCTGCTCGCCCTGGTGGAACGCCTGCGGCGACCTGCCGCGTCCTGAMPPPPAARAKVLQAFTDLLVTSGERSATLDAVADHAGVSKGGLLYHFGSKDALVDGLVEHLTALIAADVAAMRAAPEGPVHYLLRTSSDVGNEFDRTYLAVAELARGAYPRARSALDAAEQAWTDTVAEQVGDAALARTVVLLSDGIYHRASLGAAPPPLEELLALVERLRRPAASNANANANANA
AK018_01719792ku_1COG1273Non-homologous end joining protein KuATGAGGGCGATCTGGAAGGGCGCCGTGACGTTCGGTCTGGTGAACGTCCCGGTGAAGATCTACAGCGCCACCGAGGACCACGACGTGTCGCTGCACCAGGTGCACGACGCCGACGGCGGACGGATCCGCTACCGGCGCGTGTGCGAGGTGTGCGGCGAGACGGTCCCGTACGAGCACATCGACAAGGCCTACGACGACGGCGAGCACGTGGTGGTGCTGACGCGGGAGGACTTCGCGGCCCTGCCGGCGGAGTCGCACCGGGAGATCGAGGTCGTCGAGTTCGTGCCGAGCGACCAGGTCGACCCGATCCTCCTCGACCGGACGTACTACCTGGAGCCGGACTCGACGAGCCCCAAGGCGTACGTGCTGCTGCGGCGCACCCTGGAGGAGACCGACCGCACCGCCATCGTGAAGTTCGCGCTGCGCCAGCGCACCCGGCTGGCGGCGCTGCGGGTGCGGGACGAGGTCCTGACGTTGCAGACGCTGCTGTGGGCCGACGAGATCCGCGCCGCGGAGTTCCCGGCGCTGGACGGGTCGACCTCGGTGAGTGACAAGGAGCTGGCGATGTCCGCCCAGCTGGTGTCCGCCTACGAGGCGGACTTCACACCGGAGGAGTACACGGACGAGTACCAGGCCCAGCTGCGACAGCTCATCGACGCCAAGATCGAGAAGGGCGACACGATGGACGCGGCCGAGACGTTCGGCGAGCAGCCGGAGGGCGAGGGGGCCGAGGTCGTCGATCTCATGGAGGCGCTGCGGCGGTCGGTGGCCGCCCAGCGCAAGACCGGCTGAMRAIWKGAVTFGLVNVPVKIYSATEDHDVSLHQVHDADGGRIRYRRVCEVCGETVPYEHIDKAYDDGEHVVVLTREDFAALPAESHREIEVVEFVPSDQVDPILLDRTYYLEPDSTSPKAYVLLRRTLEETDRTAIVKFALRQRTRLAALRVRDEVLTLQTLLWADEIRAAEFPALDGSTSVSDKELAMSAQLVSAYEADFTPEEYTDEYQAQLRQLIDAKIEKGDTMDAAETFGEQPEGEGAEVVDLMEALRRSVAAQRKTGNANANANANA
AK018_01720258hypothetical proteinGTGTCGCCGGCGCACGGGGGTGCGATACTCGGCGCCGTGGAGATCCCCGTCGCCTGGTCCGTCGTCCTGCTCGTCGCCGCCGTGTGGAACCTCGTGGTGTGGCCGCAGTTCTGGCGCCGCGTCACCAAGGACCCGCGGTCCCGCGACGACGCCGGCCGCGCGACCCGCTTCTACACGGTGCACGCCGTGCTCGTGGGGGTGTCCCTGCTCCTGGGCGTGCTGGTGGGCGTGGTCGGCCTGCTGGGGCTGCTCGGCTGAMSPAHGGAILGAVEIPVAWSVVLLVAAVWNLVVWPQFWRRVTKDPRSRDDAGRATRFYTVHAVLVGVSLLLGVLVGVVGLLGLLGNANANANANA
AK018_017212517ligD_2COG1793Multifunctional non-homologous end joining DNA repair protein LigDGTGAGCCCGCAGGCCCAGCGCGTCACGGTGGCGGGCCGCACCCTGTCGCTGACCAACCTCGACAAGGTGCTCTACCCCGCCACCGGCACCACGAAGGGCGAGGTGCTGCAGTACCTCGCCGCGGTCGCCGACGTCCTGATCCCGCACGCGGCGCACCGACCCGCCACCCGCAAGCGCTGGCCCGACGGGGTCGAGGGGCAGTCGTTCTTCCAGAAGAACCTCGACGCCTCCACCCCCGACTGGGTGCCGCGGCACACCATCCGCCACCGGCACTCCGTCAACGACTACGTGCTCGTCGACGACCTGGCCACGCTCACCTGGCTCGGTCAGACGGCGACCCTGGAGATCCACGTGCCGCAGTGGCGGTTCGGGCGCACCGGCGACCCGCTGCCGCCGGACCGGATGGTGCTCGACCTCGACCCGGGCCCCGGGGTCGGGCTGCCCGAGTGCGCGCAGGTCGCCCGCTGGGCCCGGGAGATCGTCGCCGGGATGGGTCTCGACCTGCTGCCGGTGACCAGCGGTTCCAAGGGACTGCACCTGTACGCACCGCTGACGGGCCCGCACGGGACGCTCACCAGCGACGACGTCTCCGCCGTCGCCAAGGAGCTCGCCCAGCACCTCGCCACCGAGCACCCCGACCACGTCGTGGCCGAGATGAAGCGGTCGCTGCGGACCGGCAAGGTGTTCGTCGACTGGTCGCAGAACAACGGCTCCAAGACCACGATCACCCCCTACTCCCTGCGGGGACGCGCGCAGCCGACGGTCGCCGCCCCGCGGACGTGGGACGAGCTCGACGACCCCGACCTCCGCCAGCTCGACCACGCCGAGGTCCTCGAGCGGATCGGCCGCGACGGCGACCTGCTCGCCCCGCTGCTGGCCGGCCACCTGGACCGCCTGGAGCCCACGCCGGAGCACCTGGCGACCTTCGACCGGCTGGAGACCTACCGCGCCAAGCGCGACCCGGGACGCACCCCCGAGCCGTTCTCCTCGGGCGCTGCACGGCCGGCCGACGCGGCGCCGCGGTTCGTGATCCAGGAGCACCACGCCCGCCGGCTGCACTGGGACTTCCGGCTGGAGCACGAGGGCGTCCTGGTCAGCTGGGCGCTGCCGAAGGGTGAGCCCGTCGACCCCGACCAGAACCACCTCGCCGTGCAGACCGAGGACCACCCGCTGGCCTACGGCGACTTCGAGGGCACGATCCCGGCCGGGGAGTACGGCGGGGGCGAGGTGACGATCTGGGACGCCGGCACCTACGACCTCGAGAAGTGGCGCGAGGGCGCCGAGGTCATCGTCACGTTGCACAGCGAGCGCCGCGGGTCGCGGCGACTCGCCCTGATCCGGACCGGCGGGCGCGGCGGCGACGACCAGCGGTCGTGGCTGATCCACCGCACCAAGGCCCAGCCCGGCGAGGCCGCCGTCACGGGACCCACGCCGGCTCCGACAGATCCCGCCCCGGCCGGGCCCACCCCGACAGAATCCGCCCGGGCGCCCCGCCCCATGCTCGCCACGAGCGCTCCCCCGGCCCGGCTGGCCCGGCTCGAGCCGGCCGACTGGGCGTTCGAGGTCAAGTGGGACGGGTTCCGCGCGATCGCGGAGGTCCTGCCGCCCGACGGCGGGTCCGACGCCGCGGCGCCCGACGCCGTCCCGCACGCGCGGGTCCGGCTCATGTCCCGCTCGGGTCGCGACCTCACGCCGACGTTCCCCGAGCTGCAGGCGCTGGGCGAGATGGTGCCGGCCGAGGAGCTGCCCCTCGTGCTCGACGGGGAGATCGTCGCCCTGGACGGGGACGCGCGGCCGAGCTTCCGCCGGTTGCAGCAGCGGGCCAACCTCGCCGCACCCCGCGACGTGGAACGGGCCCGCCGACGGGTCGGCGTCGACCTCGTCCTCTTCGACGTGCTGCGCACCGCCGGCGTCGACCTGACCGACCACCCCTACACGGAGCGGCGTGCCGCGCTGGAGCGGCTCGTGGCGCCACGGCCCCCGGTGCACGTGCCGGCGGAGCTGGAGGGCACGGCCGAGGAGGCGATGGCCGAGTCCCGCCGGCTCGGGCTCGAGGGCGTGGTCGCCAAGCGCCGTCGGGCCGGGTACGCGGCGGGCCGCCGCTCGCGCGACTGGCTCAAGATCAAGCACGCCCCCACCCAGGAGGCGGTGGTGATCGGCTGGCGTCCGCTGCGGACCGGGACGCCCACCGAGGACCCCCGCTCGGCGGGAGGGCTGCTGCTCGCGCTGCCGTCGGGTGACGGCTGGCGGTACGTGGGGCGGGTCGGTACCGGGTTCTCCGACCGGGTGCGGCGCGAGGTCGTCGCGCGACTCGCACCGCACGAGCAGCCCACGCCGGCGGCCGACGACGTCCCCGCCGCCGACGCCGCCGGCGCCCGGTGGGTGGCCCCCGCCGAGGTCGTCGAGGTCCAGCACGCCGGCTGGACCGGCGACGCCGCCGGCGAGGGCAGCCTGCGGCACGCCGTGTGGCGCGGCTTCCGGCCGGACTCGGCGCCCGACCGGGTGCGCGTGGAGTGAMSPQAQRVTVAGRTLSLTNLDKVLYPATGTTKGEVLQYLAAVADVLIPHAAHRPATRKRWPDGVEGQSFFQKNLDASTPDWVPRHTIRHRHSVNDYVLVDDLATLTWLGQTATLEIHVPQWRFGRTGDPLPPDRMVLDLDPGPGVGLPECAQVARWAREIVAGMGLDLLPVTSGSKGLHLYAPLTGPHGTLTSDDVSAVAKELAQHLATEHPDHVVAEMKRSLRTGKVFVDWSQNNGSKTTITPYSLRGRAQPTVAAPRTWDELDDPDLRQLDHAEVLERIGRDGDLLAPLLAGHLDRLEPTPEHLATFDRLETYRAKRDPGRTPEPFSSGAARPADAAPRFVIQEHHARRLHWDFRLEHEGVLVSWALPKGEPVDPDQNHLAVQTEDHPLAYGDFEGTIPAGEYGGGEVTIWDAGTYDLEKWREGAEVIVTLHSERRGSRRLALIRTGGRGGDDQRSWLIHRTKAQPGEAAVTGPTPAPTDPAPAGPTPTESARAPRPMLATSAPPARLARLEPADWAFEVKWDGFRAIAEVLPPDGGSDAAAPDAVPHARVRLMSRSGRDLTPTFPELQALGEMVPAEELPLVLDGEIVALDGDARPSFRRLQQRANLAAPRDVERARRRVGVDLVLFDVLRTAGVDLTDHPYTERRAALERLVAPRPPVHVPAELEGTAEEAMAESRRLGLEGVVAKRRRAGYAAGRRSRDWLKIKHAPTQEAVVIGWRPLRTGTPTEDPRSAGGLLLALPSGDGWRYVGRVGTGFSDRVRREVVARLAPHEQPTPAADDVPAADAAGARWVAPAEVVEVQHAGWTGDAAGEGSLRHAVWRGFRPDSAPDRVRVEPGPT0014910_441DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
AK018_01722645hypothetical proteinATGCGACGCCGACGCGTGGCCGTCGTCCTCGCCGCCGGGCTGGTGCTCGGCGGCGGGACGGCGGTCGCCGTCGGGCTCGGCGACCAGGGCACCGGGCCGGGCGAGGTCCCGGCCGCAGCCCCGACGCCCTCCGGCGCGCCGACGTCCGAGGCGCCGACGGCCTCGGCGGCCCCGGAGCAGGCGCCGGAGCAGCAGGACGTCGCCCTGCCCGCGACGGTCCGGATCCCGGCCATCGACGTCGACTCCGACCTGCTGCACCTGGGGCTGAACGACGACGGCACGATCGAGGTCCCCGCCGGGGACGACATCGACCGTGCGGCCTGGTTCGACGGGTCGCCGCGGCCCGGCGAGGAGGGCCCGGCCGTCATCGAGGGGCACGTCGACAGCCCGAACGGGGCGTCGGTGTTCTACCGCCTCTCGGAGATGCAGCCGGGCCAGGAGATCCACGTGGACCGGCGCGACGGGTCGACCGCGACCTTCGTCGTCGACCGGGTCGAGCAGTACCCGAAGCGGGAGTTCCCCACCCGCGCGGTCTACGCCAACACCGACGGCCCGGAGTTGCGGGTCATCACGTGCGGCGGCGCCTGGGACGCGGACTGGGGCCACTACGTGGACAACACCGTGGTGTACGCCCACGAGGTGTGAMRRRRVAVVLAAGLVLGGGTAVAVGLGDQGTGPGEVPAAAPTPSGAPTSEAPTASAAPEQAPEQQDVALPATVRIPAIDVDSDLLHLGLNDDGTIEVPAGDDIDRAAWFDGSPRPGEEGPAVIEGHVDSPNGASVFYRLSEMQPGQEIHVDRRDGSTATFVVDRVEQYPKREFPTRAVYANTDGPELRVITCGGAWDADWGHYVDNTVVYAHEVNANANANANA
AK018_01723786hypothetical proteinATGAAGGCACGTACCCGCGCAGCGCTCACCGCGCCCGCCCTCTCGCTCGCCGGCCTGCTGGCCGTCACCGGTCCGGCCGCCGCGGCCGACGGCACCGCGTCCGGCGACCTCACGCCGGTGCCGCTCAACGGGGTGGACGGCAGCGGCGACGCGATGGTCTGGGTCGAGGGCACGACCCTCACGGTCGAGTTCGCGGCCTCGGGACTGCTCGCCGGCAGCCCCCACGCCGCCCACCTGCACTTCGGCCCGGACGCGGTCAACCAGTGCCCGACCGAGGCCGACGACGCCGACGGTTCCGGCACGATCACCACCTCCGAGGGTGTGCCGTCCTACGGGTCGGTCCAGCTCTCGCTGACCACGTCCGGCGACACGTCCGGCGACTCGGCGCTCGCCGTGGACCGCTTCGACACGGCCGAGGGCGGCAGCATCGACTACCAGCGCGGCGAGATCGAGGTCTCCGAGGACCTCGTCGACAACATCCTCGCCGGTGACGTCGCACTCGTGGTCCACGGTGTGGACCACGACGGCAGCGGTGCCTACGACGGCGACACCGAGTCGGACCTCGACCCGTCGCTGCCCGCCGAGGCCACGGACCCGGCCCTGTGCGGCATCCTCGACGCCGCGCAGATGGACGAGATGCCCGCCGGTGGCGTCCAGACGGGTACCGGCAGCACCGCGGGCGCCGAGCCGGGCGCCCTGATCACGGCCGGCGGTGTCGCGCTGCTCGCCGGCGGCGGCGTCGCCGCGGGGCTGCTCGCCCGCCGTCGCGGCACGCAGGAGTCCTGAMKARTRAALTAPALSLAGLLAVTGPAAAADGTASGDLTPVPLNGVDGSGDAMVWVEGTTLTVEFAASGLLAGSPHAAHLHFGPDAVNQCPTEADDADGSGTITTSEGVPSYGSVQLSLTTSGDTSGDSALAVDRFDTAEGGSIDYQRGEIEVSEDLVDNILAGDVALVVHGVDHDGSGAYDGDTESDLDPSLPAEATDPALCGILDAAQMDEMPAGGVQTGTGSTAGAEPGALITAGGVALLAGGGVAAGLLARRRGTQESNANANANANA
AK018_01724924qorA_1COG0604Quinone oxidoreductase 1ATGCGAGCAATCACCTACGCGAAGTACGGAAGCGCCGACGTCCTGGAGCTCACCGAGCAGCCCGACCCCCACCCCGGCGCGGACGCCGTCGTCGTCCGCGTGAAGGCGGCCTCGGTCAACCCCGTGGACTGGAAGGTGCGCGAGGGCTACCTCGACGGGCTGCTCGACGCCCAGTTCCCGGTGGTGCCGGGCTGGGACGTCGCCGGCGTCGTCGAGCAGGTCGGCCTGGACACCCCCGAGTACGCGGTGGGCGACGAGGTCTACGGCTACGTCCGCAAGGACTGGGTCCACGGCGGCACGTTCGCCGAGCTGGTCTCCGCTCCGGTGCGGACGCTGGCCCCCAAGCCGTCGACGCTGTCCTTCGAGGAGGCGGCCGCGGTGCCGCTGACGGGCCTGACGGCCCTGCAGTCGATCCGCCGCGCCGACGTCCGCGCGGGACAGACCGTGCTGGTGCACGCCGCGGCCGGCGGCGTCGGGTCGTTCGCCGTCCAGATCGCCAAGGCCCGCGGGGCCCGCGTGATCGGCACCGCGAGCGAGCCCAACCACGACTTCCTGCGCGCGCTCGGCGCCGAGCCGGTCACGTACGGCGATGGCCTGGCCGACCGCGTGCGGGCCCTGGCCCCGGAGGGCGTCGACGTGGCGCTGGACTACGTCGGCGGCGACGCCGTGACGGCGAGCGCCGCGGTCCTGGCGCAGGGCGGCACGATCGCCTCGATCGCGGACCCGGCGGCACGCGACGAGCACGGCGGTCAGTACGTGTGGGTGCGCCCCTCGACGGAGGACCTGGCCGAGCTCGGCGCCCTGATCGACGAGGGCACCGTCCGCGTCGAGGTCGCCGAGGTCTACGACCTGGCCGACGCCGCGGCTGCGCACCGGGCCAGCGAGACCGGCCACGTGCGCGGCAAGATCGTCGTGCGGGTCTGAMRAITYAKYGSADVLELTEQPDPHPGADAVVVRVKAASVNPVDWKVREGYLDGLLDAQFPVVPGWDVAGVVEQVGLDTPEYAVGDEVYGYVRKDWVHGGTFAELVSAPVRTLAPKPSTLSFEEAAAVPLTGLTALQSIRRADVRAGQTVLVHAAAGGVGSFAVQIAKARGARVIGTASEPNHDFLRALGAEPVTYGDGLADRVRALAPEGVDVALDYVGGDAVTASAAVLAQGGTIASIADPAARDEHGGQYVWVRPSTEDLAELGALIDEGTVRVEVAEVYDLADAAAAHRASETGHVRGKIVVRVPGPT0013255_9664DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_01725840COG2375putative proteinATGAGCAGCAACCCCGGGCGCCGGCCCGTCGAACCGCACGTGCTCGTGGCCGAGGTCGTGGCCACCAAGCAGATCTCGCCGCACCTCGTCCGGGTGACCCTCGGCGGGGAGCAGCTGAGCCGTCTCACGTGCCTGGGCGCCGACCAGTGGTTCCGGCTGTTCCTGCCGCGTCCCGGCCAGGACGCGATGAAGCTGCCCACCCGCACCTCGAGCCTCGGCTGGTACGCGCAGTACCTCGCCACGCCGCGCTCGCGCCGGCCGTGGGTGCGCAGCTACACCATCCGGGCCGCACGGCCCGAGCTGTCGGAGATCGACGTGGACTTCGTGCTGCACGGTCTGTCCGACGACGGCACCCCGGACGAGCACAGCGGTCCGGCGACCGCCTTCGCGGCCACGGCGCGTCCCGGCGACACCGTCGGGATGCTCGACCAGGGCTGCGGGTACGACCCGCCCGAGGACGCGGACTGGACGCTGCTCGTCGCCGACGAGACCGGGCTGCCCGCCGTCGCCGGCATCGGCGAGACGCTGCCCGCGGACGCCCGGGGTCTGGCGATCGTCGAGGTCCCGACGGCCGACGACCGGCAGGACGTGCGGGTGCCCGACGGCGTGGACCTGCTGTGGGTGGAGCGGGACCGGGCCGACCCTGCGGCAGTACCCGGGCAGGCGGCGCTCGAGGTCGTGCGCGGGGCCCGGTTCCCGGCAGGCTCGGTGTACGCCTTCGTCGTCGGGGAGTCCGGCCTGGCGACCGGGACCCGACGTCACCTGGTCAACGACCGGGGCGTGCCCAAGTCGCACGTGCACTTCGCCGGCTACTGGCGGCACGGGCGCGCCGCGACCTGAMSSNPGRRPVEPHVLVAEVVATKQISPHLVRVTLGGEQLSRLTCLGADQWFRLFLPRPGQDAMKLPTRTSSLGWYAQYLATPRSRRPWVRSYTIRAARPELSEIDVDFVLHGLSDDGTPDEHSGPATAFAATARPGDTVGMLDQGCGYDPPEDADWTLLVADETGLPAVAGIGETLPADARGLAIVEVPTADDRQDVRVPDGVDLLWVERDRADPAAVPGQAALEVVRGARFPAGSVYAFVVGESGLATGTRRHLVNDRGVPKSHVHFAGYWRHGRAATNANANANANA
AK018_01726654hypothetical proteinGTGCGCGAGCAGATCGCGGCCGGCGACGTCGTCGTCGAGCTCACGGGAGACTGGGCCGAGGACTCCGCCCCACGGGTCGCGGGCACGGGGACGTCCCGGACCCTGTCGACCGGGACCGGCGCGCTCCCGCTGACGCTCTCCCTCGACGACGGCGGGTTCGTCCGGCACGCGGACGGGAGCGTCAGCGTGCTCGACGCCGACGGCGGGACCCCGGTCGGCGGGCTGACGCGGCCGGACGGCCCCGCCACGTTCCGGGACGTCGACCCGCAGCACCTGGAGCTCGTGAGCACCGCGGGCACGGCGGGCACCGCGGGCACCGCGGGCACCGACGACGGCGCCCACGCGGAAGTGGTCACGACCCTCGGCACGGCGGGCGTCGTCGCCGCTTCCTGGGGCGAACGGGAGGGCGGCCGGTCGCTGGCCGTCGACGCGACGGACTGGGCCCGCTCGGCCGGGACCGCGGGCGTCGAGCTCGTGTGGGCGGAGCTGGTGGCCGCCGACCCTGACGTCGACACGCCGACGATGCGCGACCAGCTCGTCTGCCACGCCCTGGGCGCCCCCGACAAGGCGACGTGGAACCTCGAACCGTGGCGTCCCGACGTCGGTCTGGTCGCGGTGCTCGCGGCGCGCTGCAACCCCACCGACGACGGCTGAMREQIAAGDVVVELTGDWAEDSAPRVAGTGTSRTLSTGTGALPLTLSLDDGGFVRHADGSVSVLDADGGTPVGGLTRPDGPATFRDVDPQHLELVSTAGTAGTAGTAGTDDGAHAEVVTTLGTAGVVAASWGEREGGRSLAVDATDWARSAGTAGVELVWAELVAADPDVDTPTMRDQLVCHALGAPDKATWNLEPWRPDVGLVAVLAARCNPTDDGNANANANANA
AK018_017271503hypothetical proteinGTGGCGAGCCTCGATGCCGTCGGCCCTGCGGACCAGCACCCGGCAGACCTGGACGCGACGCTCGATGCCGTCGAGGCCGTGCAGTCCGCCATCAACACGCTCGAGGGACTGCGGGCGCTGCTGGCCGACCGGCTCCGGCGCCAGGCGGACCGTTCCCCCGGCCGGCTCGTCGACACCGGCGACGCGATCGCCCGGCGGGCCGACGCCGGACGGCAACGGGAGCTCGCGCTGCGTGCCGTCACGGCCGACCTCGCCACGTCCCTGCACGTCGGTGACGGCGCCGCCCGGCGCCTGCTGGACCACGCCACGACGCTGACGACGGTCGCGCCGCGCACGATGCGGGCCGTCGTGGACGGGACGGTCTCCTGGCCGAAGGCCGAGACCCTCGCCCGAGAGATCGACGACCTGACCGTCGCGGAAGCGGCGCACGTCGAGGCCCGCGTGCTGCCGGTCGCCGCCACGTCGACGCCGGCTCAGCTCCGGTCGCGGGCTCGCCGGGCCCGGGAGGAGGCCCACCCGGTACCCGCCGACGTCCGCCACGCCGACGCCAGCTCGCGTCGCGAGGTCTGGCTCGACCCCGGGCGCGACGGCATGGCCTGGCTCACCGCGCACCTGCCGGCGCCGTTCGCCCACGCGGTCCACGACCGGCTGACCAGCACCGCGACTCGCCTCCGCTCGGAGGGCGACGACCGCAGCACGGGACAGCTGCGCGCCGACGTCCTGGCCGACCTGCTGCTCGACGACGGCACGCTCGACGCGACGGCCGCCGGGCAGGCCGCGTCCGACGAGACCGCCCCGTCCACGCCGCAGCCCGGACGACCGGCGCCGTGCCCACGGTCGGCACCGGCACCGTCGGCACCGTCGGCGGCGTCGGCGGCGCCTGCTCCGGCGACTCCCCCGGTACGCCCCGTCGGCGCACTCGCCCCGATCGCCCGCGCGATCCGGCCGCGCGTCCACCTCACCGTCCCGGTCCTGTCGTTGCTGGGCGTGGGCGACGCCCCGGCCAGCCTCGACGGCCGCACTCCCGTCGACGCCGAGACCGCCCGTGCGCTGTGTGCGCACGCCCCGTCGTTCCGGCGCATCCTCACCGACCCCGAGACCGGCGCGGTGCTGTCCGTCGGCCGCTCCACGTACCAGGCGCCCGCCGACCTCAAGGCGATGCTCGCCGAGCGGGACGCCACCTGCCGGTTCCCCGGCTGCGTCCGCCCGGTGTCGGGCACCGACCTCGACCACACCGTGGCCTGGGCCGACGGTGGAACGACCGATGCCGACAACCTCGCGCACCTGTGCCGTCACCACCACGTGCTCAAGCATCAGACACGGTGGCGGGTCCGCCAGCTCGGCGCGGGACGGCTGCGATGGACCTCACCGACCGGTCGCGTTCACGACACCGATCCGCCCCCGCCGGAGACCACGCGGCACCGCGCACCGCCGACGCCCCCAGCCCTGCCGGCACCGTCGAGAGCGCACGAGACCGCCGATCTGGGCCCGCCTCCGTTCTGAMASLDAVGPADQHPADLDATLDAVEAVQSAINTLEGLRALLADRLRRQADRSPGRLVDTGDAIARRADAGRQRELALRAVTADLATSLHVGDGAARRLLDHATTLTTVAPRTMRAVVDGTVSWPKAETLAREIDDLTVAEAAHVEARVLPVAATSTPAQLRSRARRAREEAHPVPADVRHADASSRREVWLDPGRDGMAWLTAHLPAPFAHAVHDRLTSTATRLRSEGDDRSTGQLRADVLADLLLDDGTLDATAAGQAASDETAPSTPQPGRPAPCPRSAPAPSAPSAASAAPAPATPPVRPVGALAPIARAIRPRVHLTVPVLSLLGVGDAPASLDGRTPVDAETARALCAHAPSFRRILTDPETGAVLSVGRSTYQAPADLKAMLAERDATCRFPGCVRPVSGTDLDHTVAWADGGTTDADNLAHLCRHHHVLKHQTRWRVRQLGAGRLRWTSPTGRVHDTDPPPPETTRHRAPPTPPALPAPSRAHETADLGPPPFNANANANANA
AK018_017281539hypothetical proteinATGAACGTGTTTCGCACGACACGCCGGAAGACGCCCCGCGCCGCGGCCGGAGGAGCCGTCGGGCTGCTCGTCGCCACCGAGCTGGGCAGCGGCCTGCTGCAGGGCTGGTACGGGCCCGTCCTGACCAGCATCGGCGAGCGGTTCCAGGTCGGAGCCGCCGAGCTCAACCTGGTCGCCGTCGCCTATCTGCTCTCCTCGGTGCTGTTCGTCCCGCTGCTGACCAAGCTCGGCGACACCCACGGGCACAAAAAGCTCCTGCTGGTCGCCGTGGGGATCACGGTGCTCGGATCTCTGATCGTCGCGCTCGCCCCGACCTTCGCCGTGCTGCTCGTCGGTCGCGTGCTCCAAGGGGCGCTGGTCGCCTTCCTCCCGCTGGAGTTCGCCATCGTGCGGCAACGGTCGCCCGAGAAGGTCGGCAGGAGCATCGGTCAGCTCATCGCCTCCCTCGCGATCGGCGCCGTGGTCGGCGGGCTCGGTGCCGGCGTGCTGCTCGGTGCGACCGACAGCCTCCTGGTGACCCTGCTGGTCCCGGCGGTGTACTTCGCCGTGTGCTTCGTGCTCATCGCGCTTTTCGTCCCCGAGACGACGGTGTCCGGCACCGACAGGATCGACTGGGCCGGCGTCGCTCTTCTGGGTCTCGGCGCGGCCGGTCTGCTCGGCGGGATCTCCCTGGCCGGCATCGCGGGCTGGGACAGCGTCGTGGTGTGGGCGCTCATCGCCGCCGGGATCGCCGTCCTGGTCGTCTGGGTCGCCGTCGAGCGTCGGGTCACCGACCCGTTCATCGACCTCGACCTGCTCGTGGGCGGCGGCATCGGGCTGCCGATCGTCATCGGCGTGGTCTTCGGTGCGCAGGCCCTGGGAGCCCAGAGCCTGGTGGCCCTGTTCATCCGCATCGACCCGACCGTGTACGGGTTCGGCCTGGGCATGACCGCCACCGGAGCGGGCCTCGCCCTGGGTCTCATGGCCCTGTCGGGCTTCGCGGGGTCGATGGTCGGCGACCGCCTCGCGAAGCGGTTCTCCCCGCGGGGTGCCATGGTCCTCGCGGCCATGCTGTGCGCGCTGTCGTACACGCTGATGATCCTCGTGCCGGGCGTGACGGCGCTGTTCGTCCTCTGGGTCGCCTTCGGCGGCTTCGGGATGGGCGTCATGATCAGCGTCCTCCCGGCCGTCGTCGTCAAGCTGGCCCGGCCCGACGCCGTCGCCGTGGTGTCCGGCCTGTACAACACGGCGCGGACCGCGGCGGGTGCCGCGGCGGGCGCGGTGTTCTCCACCGTGCTGGCGGCCTTCGTCATCGAGGGGACCGGGACCGACGGCAGCGCACCCGTCACGTCGTTCACCGGCTATGCCGTGGTGTGGGCCGCCTGCGTCGTGCTGTGCCTGATCAGCGCCGCACTGGTCCTCCGCTTGCCGGCCCTCCCTCCGGCCGACCAGGACGGCGCGCAGGACAGTGCTGAGCAGGACGGCGCTGAGCAGGACGGCGCTGAGCAGCACAGTGCTGAGCAGGGGGACGACGAGGCGGTGCCCGTCAAGGCCGTCTGAMNVFRTTRRKTPRAAAGGAVGLLVATELGSGLLQGWYGPVLTSIGERFQVGAAELNLVAVAYLLSSVLFVPLLTKLGDTHGHKKLLLVAVGITVLGSLIVALAPTFAVLLVGRVLQGALVAFLPLEFAIVRQRSPEKVGRSIGQLIASLAIGAVVGGLGAGVLLGATDSLLVTLLVPAVYFAVCFVLIALFVPETTVSGTDRIDWAGVALLGLGAAGLLGGISLAGIAGWDSVVVWALIAAGIAVLVVWVAVERRVTDPFIDLDLLVGGGIGLPIVIGVVFGAQALGAQSLVALFIRIDPTVYGFGLGMTATGAGLALGLMALSGFAGSMVGDRLAKRFSPRGAMVLAAMLCALSYTLMILVPGVTALFVLWVAFGGFGMGVMISVLPAVVVKLARPDAVAVVSGLYNTARTAAGAAAGAVFSTVLAAFVIEGTGTDGSAPVTSFTGYAVVWAACVVLCLISAALVLRLPALPPADQDGAQDSAEQDGAEQDGAEQHSAEQGDDEAVPVKAVNANANANANA
AK018_017291368tpa_2COG0161Taurine--pyruvate aminotransferaseGTGCCCATCCCCTCCGACCCCGCGGGCCGTACCACCTACGAGCTCGACCGTGCCCACGTCTTCCACTCGTGGTCCGCCCAGAAGCAGCTCGACCCGCTCGTCATCACGGGCGGCCAGGGCAGCTACCTGTGGGACGCCGACGGCAAGCGGTACCTCGACTTCTCGTCCCAGCTCGTCTACACCAACATCGGCCACCAGCACCCCCGGGTCGTCCGCGCGATCAAGGACCAGGCGGACGTGCTGTGCACGATCGCCCCGGCGCACGCCAACGACCAGCGGGCGCGTGCCGCACAGCTCATCGCCGACGTCGCCCCCGACGGGATGAACCGCGTGTTCTTCACCAACGGCGGCGCGGAGGCGGTCGAGAACGCCGTGCGCATGGCACGTCTGCACACCGGACGCACCAAGGTCATGTCGGCCTACCGCTCGTACCACGGGGCGACTGCGACAGCGATCCAGGTGACGGGGGACCACCGGCGCTGGGCCAACGAGTTCACGCCGGCCGGTACGGTGCACTTCTTCGGACCGTTCCTCTACCGCTCGGCGTTCCACGCCACCACCGAGCAGGAGGAGTGCGAGCGGGCGCTGGCGCACCTCGAGCAGACGATCCTGTTCGAGGGGCCGGACACGGTCGCGGCGATCGTCCTCGAGACGGTGCCGGGCACCTCGGGCATCATGCCGCCCCCGCCGGGATACCTCGCCGGCGTGCGCGCCCTGTGCGACCGGTTCGGGATCGTCATGATCTGCGACGAGGTGATGTCGGGGTTCGGCCGCACCGGGTCGTGGTTCGCCATCGACCACTACGGCATCACGCCCGACCTCATCACCTTCGCCAAGGGTGTCAACTCGGGTTACGTCCCCCTGGGCGGAGTCATCCTGCGCGACGAGATCGCGGCCACCTTCGACGAGCGCGCCTACCCCGGGGGTCTCACCTACTCCGGTCATCCCCTCGCCGCGGCCGCTGCCGTGGAGACGATCCGGACCATGCACGACGAGGCGGTCGTCGAGAGCGCGGCGCGCGTGGGCTCGGAGGTGTTCGGTCCCGGTCTGCGCGAGCTCGCCGAGCGGCACCCGTCCATCGGGGACGTGCGCGGGCTCGGAGTCTTCTGGGCGCTCGACCTCGTCGCGGACCGGGAGACGAAGGAGCCGCTCGCCCCGTACGGCGGGGCCTCCGCGGCGGTCACGGGTGTGATGGCCGCCGCGCGGGACGCGGGTCTGCTGCTCTTCAACCAGTACCACCGCATCCACGTCGTGCCCCCGTGCACGATCAGCGACGCCGAGGCCCGCGAGGGGCTCGCCGTGCTCGACGAGGCCCTGTCCGTCGCCGACGCCGCCGTCCGGACCGCCGAGCCCGCGCTCGTCGGCTGAMPIPSDPAGRTTYELDRAHVFHSWSAQKQLDPLVITGGQGSYLWDADGKRYLDFSSQLVYTNIGHQHPRVVRAIKDQADVLCTIAPAHANDQRARAAQLIADVAPDGMNRVFFTNGGAEAVENAVRMARLHTGRTKVMSAYRSYHGATATAIQVTGDHRRWANEFTPAGTVHFFGPFLYRSAFHATTEQEECERALAHLEQTILFEGPDTVAAIVLETVPGTSGIMPPPPGYLAGVRALCDRFGIVMICDEVMSGFGRTGSWFAIDHYGITPDLITFAKGVNSGYVPLGGVILRDEIAATFDERAYPGGLTYSGHPLAAAAAVETIRTMHDEAVVESAARVGSEVFGPGLRELAERHPSIGDVRGLGVFWALDLVADRETKEPLAPYGGASAAVTGVMAAARDAGLLLFNQYHRIHVVPPCTISDAEAREGLAVLDEALSVADAAVRTAEPALVGNANANANANA
AK018_017301671nfdA_3N-substituted formamide deformylaseGTGTCCGACGTCATCATCTACACCGCCCGTCTCGTCCGCACGATGGACCGGTCCGTGCCCACCGCGGAGGCCGTCGCCGTCCGGGGCGACGTCGTCCTCGCCGTCGGTGACGTCGCCGAGCTCACCGCGACCTACGCCGGCGCCACGGTCGACGAGCGCTACGCCGACCAGGTGCTGATGCCCGGCTTCGTCGAGGCGCACTCCCACCTCGGTGGCGATCTGATGAACAGCCCGCACTACCTCGGGTACTTCCCGCGTACCTCGCCGGACGGGACGCCGCTGCCCGGCGCCCAGAGCTGGCAGGGCGTCCTCGACGCCCTCACCGTCTGGGACGCCGCTCTCCCCGAGGGCGAGGTGCTCATGGCGCGCGGGCTGGACATGCTGTTCTTCCCGGGTCAGGAGCTCACGCGCCAGGTGCTCGACCAGGTCAGCACGACTCGCGGCATCTACGTCACCCACGCCAGCGGCCACGTCGGCACGGCGAACAGCGTGCTCCTCGACCAGGTGGGCTACGGCGCGGGCACCGAGGTCGAGGGCGTCGTCAAGGGACCGGACGGACTGCCGACCGGCGAGCTGCAGGAGATGCAGGCGATGGGGCCGGTCATGGCGGCCGCCGGCATCGACCTGTCCGCCGGGCTGACGACGGAGAGCGGCCTCTACTCGTTCGCGGCGGACGCCCGCAACCACGGCTGCACGACGGCGACCGACCTGGCCAGCTTCGACCTGGTGCGGCCCGGCGGCTACGAGCTGCTCGCCGACGTCACCGGTCGCGAGGACTTCGGCCTGCGCCTGGCGCCGGCGACCTTCGGCGGCATGACGACGTCGCTCGAGCAGGCGCAGCAGCTCGCCGGGCTCGTCGCCGGGTCGCAGGCCAAGGGCACCTCGAAGCTGCACCTCGGAACGGTCAAGCTGATGCTCGACGGTTCGATCCAGCAGCACACCGCCAAGCTCCAGGACCCCGGCTACGTCTGCGGTCACGACGCGGGCATCTGGAACACCGACGCGGCGACGTTCCGCGACCAGGTGCGGGCCTTCCACACGGCCGGACTGAACATCCACGTGCACTGCAACGGCGACGAGGCGACCGAGGTGTTCCTCGACGCGGTGGAGGCGGTGCTGACCGAGTCGCCGCGCTGGAACCACCGGCACACCGTCACCCACTCCCAGCTGACCACCCGTGCGCAGTACAAGCGCATGGCCGCGCTCGGGATGTGCGCGAACATCTTCTCCAACCACATCTGGTACTGGGGCGACCAGCACATCGACCTCACCGTCGGCCCCGACCGCGTGCGCCGGATGAACGCCGCCCGCACGGCCCTCGACGAGGGCGTCACGATCGCGCTGCACAGCGACACGCCGGTGACGCCGCTCGACCCGCTGGCCACGGCGTCCTACGCCGCCGAGCGTCGCACGCCCACGGGACGTTCCTGGGGCGACCAGGAGCGGCTGTCGGTGGACGAGGCGCTCGAGGCGATCACGATCGGCCCCGCCTACCTGCTCAAGCTCGACCACCTCGTCGGCTCGATCGTGCCGGGCAAGTACGCCGACTTCGCCGTGCTCGACCGTGACCCGGCCGAGGTCGCCGAGGCGAAGGAGCTCCGCGAGATCTCCGTGCTCGGCACCGTCGTCGGCGGCGTCCACCATCCCGCACCCGTCACCAGCCGCGTCTGAMSDVIIYTARLVRTMDRSVPTAEAVAVRGDVVLAVGDVAELTATYAGATVDERYADQVLMPGFVEAHSHLGGDLMNSPHYLGYFPRTSPDGTPLPGAQSWQGVLDALTVWDAALPEGEVLMARGLDMLFFPGQELTRQVLDQVSTTRGIYVTHASGHVGTANSVLLDQVGYGAGTEVEGVVKGPDGLPTGELQEMQAMGPVMAAAGIDLSAGLTTESGLYSFAADARNHGCTTATDLASFDLVRPGGYELLADVTGREDFGLRLAPATFGGMTTSLEQAQQLAGLVAGSQAKGTSKLHLGTVKLMLDGSIQQHTAKLQDPGYVCGHDAGIWNTDAATFRDQVRAFHTAGLNIHVHCNGDEATEVFLDAVEAVLTESPRWNHRHTVTHSQLTTRAQYKRMAALGMCANIFSNHIWYWGDQHIDLTVGPDRVRRMNAARTALDEGVTIALHSDTPVTPLDPLATASYAAERRTPTGRSWGDQERLSVDEALEAITIGPAYLLKLDHLVGSIVPGKYADFAVLDRDPAEVAEAKELREISVLGTVVGGVHHPAPVTSRVNANANANANA
AK018_01731729COG4221putative oxidoreductaseATGGGACGCACGGCCGTCGTGACGGGAGCGTCGAGCGGGATCGGTGCGGCCACCGCACGGCTGCTCGCCGCGCAGGGATGGGACGTCGTCGTCGGCGCCCGACGGGTCGACCGGCTGGAGGCGCTGGCCGGCGAGATCGGCGCCCGCGCGCTGCCGCTGGACGTCACCGACCAGGAGTCCGTGGACGCGTTCTGCGCCGAGCTCGACCGCTGCGACCTGCTGGTCAACAACGCCGGGGGAGCGCTGGGCGCGACGTCCATCGCCGAGGCCGACGACGCCGAGTGGCAGTCGATGTTCGACAGCAACGTGCTGGGCACGCTGCGCATGACCCGGGCCCTGCTGCCGGCCCTGGTCGAGTCGGGTGACGGCGTCGTCGTCAACATCGGGTCCATCGCCGCACGCGAGCCCTACCGGGGCGGTGGCGGCTACAACGCCGCCAAGCACGCGGTCGCGGCCCTGACCCGGGTGCTGCGCATCGAGATGCTGGGCCAGCCGGTGCGGGTGACGGAGATCGACCCCGGGCTGGTGGAGACGGAGTTCTCCGTCGTCCGGTTCGGCGGCGACGCGGAGCGCGCCGCGCAGGTCTACGAGGGGATGACCCCGATGCGGGCCGAGGACATCGCCGAGGCGGTCGCCTGGGTCGCCTCGCGCCCGTCGCACGTCAACATCGACTCGATGCTGATGCTCGCGCGCGACCAGACCTCGGCACAGGTCGTCCACCGCGTCTGAMGRTAVVTGASSGIGAATARLLAAQGWDVVVGARRVDRLEALAGEIGARALPLDVTDQESVDAFCAELDRCDLLVNNAGGALGATSIAEADDAEWQSMFDSNVLGTLRMTRALLPALVESGDGVVVNIGSIAAREPYRGGGGYNAAKHAVAALTRVLRIEMLGQPVRVTEIDPGLVETEFSVVRFGGDAERAAQVYEGMTPMRAEDIAEAVAWVASRPSHVNIDSMLMLARDQTSAQVVHRVPGPT0021285_933DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066NANA
AK018_01732726hypothetical proteinATGACCGTCGTCACCGTCGGCGCCGCCCTGGCGGTGGTCGCGCTCGCGACCGTCGTGCAACGGCTCACCGGCATGGGGTTCGGTGTCGTCGCGGTGCCGCTGCTCGCGCTCGCGGCCCCGGACGTCGGGGTCCTGGCCGTCCTGCTGCTGACCGTCGTGGTCATGGCGGCGGTCTCGTGGACCGAGCGCGACGCCCTCGACGGGCCGGCCCTCGCCCTCTCGTCGATCGCGTCGCTCCCGGGCGTGCTCCTCGGCACCCTGCTGGCCACGGCGCTCCCGCCGACCGCCACGCAGGTCACGATCGGGCTCGTCGTCGTCGCCGGCTCGGCGGCCTCGATGATCGGCCGGCACCCGCCCCGGAACCGGGCGACCCTCGCTGCGGGCGCCGTGGCCGCCGGTGTCCTCACGCCCGTGGCCGCCCTGCCGGGACCGCCGATGGCGGTCGTCTACCGGCCCGACGACGTGCGGCGGATGCGGGCGACGCTGTCGGCGTTCTTCGCCGTGGGGTCCCTCGTGTCGGCGGTCACCGTGGTCGTGACCGGTACCATGGACTGGTCCGAGGAGCTCGGGCGCGCCGCGGTCCTGCTTCCGGGGATCGTCGTCGGCGCCGGCCTCGCCGTCCCGCTCGTGTCCCGGACCAGTCCGCGGACCGTGCGGTCCGCGACCCTGTCGATCTCTCTGCTGTCCGGCGTCGCGCTCGTCGTGAAGGCCGTCGCGGAGTCCTGAMTVVTVGAALAVVALATVVQRLTGMGFGVVAVPLLALAAPDVGVLAVLLLTVVVMAAVSWTERDALDGPALALSSIASLPGVLLGTLLATALPPTATQVTIGLVVVAGSAASMIGRHPPRNRATLAAGAVAAGVLTPVAALPGPPMAVVYRPDDVRRMRATLSAFFAVGSLVSAVTVVVTGTMDWSEELGRAAVLLPGIVVGAGLAVPLVSRTSPRTVRSATLSISLLSGVALVVKAVAESNANANANANA
AK018_017331536tauRCOG1167HTH-type transcriptional regulator TauRATGTCCGTCCGTCCCGCCCCCGACCAGCACGAGCTCGACACCGAGCGCGCGCGCCAGTACATCGACCCCGCCAGCAAGGAACCGCTGTTCCAGCAGGTGCGGCGCTTCCTGGAGCAGTCGTTGCTGGAGGGACGCTTCCGTCCCCACCGTCCCCTGCCCTCCTCCCGGCACCTCGCCGGGGTGCTCGGGGTCTCGCGCAACACGGTCAACGCCGCGTACCAGGAGCTGACCGCGCTGGGGCTCGTCGAGTCCCGGCCGCGCAGCGGGCTGTACCCGGTCGTCCAGCGCCGCGAACCCCTGCCGGAGCAGCCGACCGCACCGAGTCCGTCGGCCGCCGCCCGCCGCGGCGTCCCCACGCGACAGGTCGACTGGGCCGCGCGGCTGCCGGTTCCCCGCGACGCCTCGCTGCACCACGCCGCCGCCCACGTGGACTGGACGCGCTATCCGTTCCCGTTCCTGCCCGGCCAGCCGGAGCTCAGCACCTTCCCCGCCCGCGGGTGGCTGCGGGCGCTGACCACCGCGATGGACGGCCCCCACCTCGCCGCGAGCGTCCGCGACGCCATCGACGGGGACGACGAGCTGCTCGTCGAGTCCGTCCGCCGCGAGATCCTGCCTCCGCGCGGGATCTCGGTGAGCGCCGACGAGATCATCGTCACGAGCGGTGCGCAGCAGGCGCTCGCGCTCCTCGCCGACCTGCTCGTCGTGGAGGGCACGCCCGTCGCCGTGGAGAACCCCGGCTACGTCGACGCCTGGCACATCCTGCGCCGTGCCGGCGCCACGCTCGTGCCCCGGCCGGTCGACGCCCAGGGCATGCGCCGGGACGGCGCCACCGGTCCCCGTCCCTCCCTGGTGTACGTCACGCCGAGCCACCAGCACCCGACCAACGTGACCATGTCGTACACGCGCCGCGCCGCGCTGCTGCGCGACGCGCAGCAGCACGACCAGCTCGTCATCGAGGACGACTACGACTCGGAGGTGCGCTTCCGCGGGCGTCCGACGCCGAGCCTGAAGTCGCTCGACCGCACGGGACGCGTCATCTACCTCGGCACCTTCTCCAAGTTCGTCGCGCCCGGCATCCGCCTGGGGTTCGTGGTGGCCGACGCAGCGCTCGTCGCGGCCCTGCGAGAGCGACGTCGATACGCCACGAAGCATCCGCCGGGGCACATGCAGCGCGCTCTGGGACTGTTCATCGAGTCCGGCGAGTACCACCGGTCGCTGCGGCACCACCGGCGCCACCTCGGGCGCAAGTGGGAGGCGGTCGTCGAGGCGCTGGAGACGCACCTGCCCTTCCCGCTGGGCACCCCCACCGCCGGGGGCCTCAGCGTGTGGGTGGACGGTCCGCCCGAGTTCGACGGCGGCCGCGTCGCCGCGCTCGCCCGGGAGCGGGGCGTCATCGTCGACGCCGGCGAACGCTTCTACCTCGCGGACGGCCCGCGGAACCAGCTCCGCGTCGGGTACAACTCCATCCCGCTGCCGGCGGTCCCCCGCGGCATCGAGATCCTCGGCAAGGTCGTCCGCGCGCAGCTGGACGAGTGAMSVRPAPDQHELDTERARQYIDPASKEPLFQQVRRFLEQSLLEGRFRPHRPLPSSRHLAGVLGVSRNTVNAAYQELTALGLVESRPRSGLYPVVQRREPLPEQPTAPSPSAAARRGVPTRQVDWAARLPVPRDASLHHAAAHVDWTRYPFPFLPGQPELSTFPARGWLRALTTAMDGPHLAASVRDAIDGDDELLVESVRREILPPRGISVSADEIIVTSGAQQALALLADLLVVEGTPVAVENPGYVDAWHILRRAGATLVPRPVDAQGMRRDGATGPRPSLVYVTPSHQHPTNVTMSYTRRAALLRDAQQHDQLVIEDDYDSEVRFRGRPTPSLKSLDRTGRVIYLGTFSKFVAPGIRLGFVVADAALVAALRERRRYATKHPPGHMQRALGLFIESGEYHRSLRHHRRHLGRKWEAVVEALETHLPFPLGTPTAGGLSVWVDGPPEFDGGRVAALARERGVIVDAGERFYLADGPRNQLRVGYNSIPLPAVPRGIEILGKVVRAQLDEPGPT0016790_2495DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375NANA
AK018_017341008hypothetical proteinGTGACCGAGGACGAGATCACGCGCACCGTCGCGCTGTGCCGCCCCGACGGGTCGTTGAACCCGGAGGCCGTGGGCTGGACGCGCGCACCGCTGCACGACACCTCCGGGATCGGCCGGGGGCTGCGGGGGCGCGGCCGGGACAAGCGGTGGGAGTACTGGGCGCTCGTGACGCCGACGCACGTCGTCGGCGTGACCACCTCGGCCCTCGACTACGCCGCGCTGCACGAGGTGTACGTGCTGGACCGGGCCACCGAGGGAGAGCTGGACGAGGTCGTGATCGCACCGCTGAACCGGTCCGCGTCCCTGCCCGCGTCCCTCGGGACGGGGCCCGTGCGCTCGCGGACGCGGCGGGTCGCGGTCGCGGTGGACGAGTCCCGGGACGGGACGGCGACCCGGCTGCGCGCCCGGACGCCGCGCGTCGGGATCGACGTCCTCGTGGACCGTCCGGACGGGCACGAGGTCCTGGGGGTCGTGGTGCCGTGGTCGGAGCGGCGGTTCCAGCACACCGTCAAGGACGTCGGACGGCCGGTGCGCGGGATGCTGCGAGTGGACGGGGTCGAGCACCCGGTCGGCCGCGGGGCCGGCGCCGGGGCGTGGGCGGTGCTCGACCACGGCCGGGGCCGCTGGCCGTACGCGGTGCGCTGGCAGTGGGGCGTCGGCTTCCTGGACGGCGTGGGCCTGCAGCTCGGCGGCACGTGGACGCGGCAGGGACCCACGACCGAGAACGGCGTGTTCGTGGACGGCCGGCTGCACAAGCTCCACGGCGAGCTCGACTGGACCTTCGACGAGACCGACCACATGGCGCCGTGGCAGGTGACCGGGGACCGGGTCGACCTGACGTTCACCCCGTGGCACGACCGGGTCGCGCGGACGAACCTCGGCGTCCTCGCGTCGGCGACCGACCAGTGTTTCGGCCGCTGGTCGGGCTCCGTGGTCACCGACGGCGGCGAACGCCTCCTCGTCGACGGGCTCGAGGGGTGGGTCGAGGACGTGCGCCAGCGCTGGTGAMTEDEITRTVALCRPDGSLNPEAVGWTRAPLHDTSGIGRGLRGRGRDKRWEYWALVTPTHVVGVTTSALDYAALHEVYVLDRATEGELDEVVIAPLNRSASLPASLGTGPVRSRTRRVAVAVDESRDGTATRLRARTPRVGIDVLVDRPDGHEVLGVVVPWSERRFQHTVKDVGRPVRGMLRVDGVEHPVGRGAGAGAWAVLDHGRGRWPYAVRWQWGVGFLDGVGLQLGGTWTRQGPTTENGVFVDGRLHKLHGELDWTFDETDHMAPWQVTGDRVDLTFTPWHDRVARTNLGVLASATDQCFGRWSGSVVTDGGERLLVDGLEGWVEDVRQRWNANANANANA
AK018_017351032hypothetical proteinGTGAGGCTGCTCGTGCTCGGCGGCACGGTGTTCCTGTCGCGAGCCGTCGCCGCCCTCGGCGTCGCCCGGGGCCACGACGTCGTGGCCGTGCACCGTGGACGGTCCGGCACCGTGCCCGACGGCGTGCGGCAGGTCGCCCACGACCGCGACCAGCCGCTGCCCGCCGCGCTCGCCGCCGAGCGGTTCGACGCCGTCGTCGACGTCGCGCGGACCCCGTCGCACGTGCGGCGGGCCGTCGAGGCCTGGCCCGACGCGCACCGGGTCCTCGTCTCGACCGTCAGCGTCTACGCCGATCCTGCCGATCCCGGAGGCCCCGGCGTCGGGCGGCTGGTCGACCCCGAGCCGGACGACGTCGACCTCGCGGCCCACGCCGACGCGTACGGCGCGATGAAGGTGGCCTGCGAGCGCCTGGTGCTGGACGGCTGCGCGAGCGCCGCCGTCGTGCGGCCCGGGCTCGTCGTCGGACCCGGCGACCCGTCCGGGCGGTTCAGCTACTGGCCCGCGCGGATGCGGCGGGTGCTCGACGCCGGTCCGGACGAGGCCCGCGCCGCGGACGTCCTGGCGCCGGGCGACCCGTCGGCCGTCGTCCAGGTCGTCGACGTGCGCGACCTCGCCGCCTGGGTCCTCGACCTCGCCGAGCGACGGACCACGGGCGTGTACGACGCCGTCGGTCCCGCCGTCCCGATCGCGGACCTGCTGGCCGCCGTCGCCCGCGGGTGCGGGGCCGTCCCGCGGTGGCGGTGGGTCGACGACGAGCGGCTGTCCGCGCTCGACGTGCGCCCGTGGGCCGGGGAGAGGTCGCTGCCGCTGTGGCTGCCGCGCCCGGCCTACGACGGCATGCTCGCGCACGATCCGGGCCCGGCGCTCGCGGCGGGCCTGTCGGTGCGCCCGGTGGAGGAGACCGCCGCCGACGTGCTCGACCGCTTGCGTGCGGACCCGGACGCCCCGGTGACGGGGCTGACCGCAGCCGAGGAGGCCGAGGTCCTGGCACGGGTACCGGGTCTCCGGGACACCGGGGGGCGGCCCGGCTAGMRLLVLGGTVFLSRAVAALGVARGHDVVAVHRGRSGTVPDGVRQVAHDRDQPLPAALAAERFDAVVDVARTPSHVRRAVEAWPDAHRVLVSTVSVYADPADPGGPGVGRLVDPEPDDVDLAAHADAYGAMKVACERLVLDGCASAAVVRPGLVVGPGDPSGRFSYWPARMRRVLDAGPDEARAADVLAPGDPSAVVQVVDVRDLAAWVLDLAERRTTGVYDAVGPAVPIADLLAAVARGCGAVPRWRWVDDERLSALDVRPWAGERSLPLWLPRPAYDGMLAHDPGPALAAGLSVRPVEETAADVLDRLRADPDAPVTGLTAAEEAEVLARVPGLRDTGGRPGNANANANANA
AK018_017361338stp_1Multidrug resistance protein StpGTGCAGCGGCGCGTGCTGATCGTCGCCATCCTCGCCTCGTTCGTCTCGTTCCTCGACGGGACGGTCGTCAACGTCGCCCTGCCCGCGATCGCCGACGAGCTCAGCGGTCCCGGCGAGGCCGGTCTGACGCTGCAGCAGTGGGTGGTCGACGGCTACCTGGTGACCCTCGGGTCCTTCATCCTGCTGGCGGGGTCGCTGTCCGACGTGCACGGCCGCCGCCGGGTGCTGCTGTGGGGGCTGGTCGGTTTCGCCGTCGCCTCCGTGCTGTGCGCGCTGGCGCCCACCGGACCCGTGCTGGTCGTCGCCCGGCTGCTGCAGGGGGTCGCGGGCGCCCTGCTGGTCCCGAGCTCGCTGGCGCTGATCATCTCGACCTTCGACGGGCCGGAGCAGGGCCGCGCGATCGGCCGCTGGACGGCCTGGACCGGCACGGCGATGATCGTCGGACCGTTCGTCGGCGGGGGACTGGTCGACCTCATCTCCTGGCGCTGGGTGTTCTGGATCAACGTGCCCGTCGTGGTGATCACGCTGCTGCTGCTGCGCCGCGTGCCCGAGGCCGAGGTCACGATCCGACGCCGCATCGACGTCCCCGGGGCGCTCCTCGCCGCGCTCGGGCTGGCCGCCGCCGTGCTGGGCCTCATCGAGGAGTGGTGGCCGGTCGTCGGGGTCGGCGCGGTGCTGCTGGCCGCGTTCGTCGTCGTCGAGCGGCGGGCACCCGACCCGATGCTCCCGCTGCGGCTGTTCCGGGCACGGACCTTCGCGTGGGGGAACGTGGCCACCTTCGCCGTGTACGGGGCGCTGGCCTTCGGCGGGTTCGTGCTGACGATCTTCCTCCAGCAGGTCGCCGGATACTCGGCCACCGCCGCGGGCGTCGCACAGCTGCCGACGACGTTCGCGATGCTGGCGCTGTCGACCCGGTTCGGCACCCTGGCCGGGCGGTACGGCGCCCGCTGGTTCATGACGGTCGGCCCCGTCGTGGCCGGGTGCGGGTTCCTGCTGATGCTGACGATGGACGAGCAGGCCACCTACCTCACGCAGGTGCTGCCCGGCATCCTCGTCTTCGGTCTCGGGCTCGCGATCACGGTGGCCCCCCTGACCGCCGCGATCCTCGGTGCGGTGCCGGCGACGGACGCCGGGATCGCCTCGGCGGTCAACAACGCCGTCTCGCGCGTCGCCGGCCTGGTGGTGATCGCCTTCGCGGGCGTCATCCTCGGCGGCGTGCTCGACGTGGAGTCGTTCCACCGCGCACTCCTGGTGACCGCGGCGCTGCTCGTCGCCGGAGGTCTGGTCAGCATGGTCGGCATCGGGGACACCCGGACGGCGCCGGAGAAGGTCTCGTGAMQRRVLIVAILASFVSFLDGTVVNVALPAIADELSGPGEAGLTLQQWVVDGYLVTLGSFILLAGSLSDVHGRRRVLLWGLVGFAVASVLCALAPTGPVLVVARLLQGVAGALLVPSSLALIISTFDGPEQGRAIGRWTAWTGTAMIVGPFVGGGLVDLISWRWVFWINVPVVVITLLLLRRVPEAEVTIRRRIDVPGALLAALGLAAAVLGLIEEWWPVVGVGAVLLAAFVVVERRAPDPMLPLRLFRARTFAWGNVATFAVYGALAFGGFVLTIFLQQVAGYSATAAGVAQLPTTFAMLALSTRFGTLAGRYGARWFMTVGPVVAGCGFLLMLTMDEQATYLTQVLPGILVFGLGLAITVAPLTAAILGAVPATDAGIASAVNNAVSRVAGLVVIAFAGVILGGVLDVESFHRALLVTAALLVAGGLVSMVGIGDTRTAPEKVSNANANANANA
AK018_017371218eis_2N-acetyltransferase EisGTGGACCTCGACATCCGCCGCATCCCGTTCGACGACGCGGCCGCGTCCCAGCGGCTCCAGCACGAGGCGTTCGGCAGCGCCGCGTCCGCGCCGACGGCCGACGGGTGGCCCCCGGCCGGCTCCCGGCCGTGGGGCGCCTGGCTCGACGGCGAGCTCGCGGCCCGGGCGACGGTGCGCTCGTTCACCTCGTGGTTCCACGGCGCCCGGGTGCCGACGGCGGGGCTGGGAGGCGTCACGGTGGCGGCCGAGCACCGCGGTGCCGGGCTGCTGCGTCCGCTGATGGACGCCGCGCTGGCCGACGCTCGCGCCCACGGGGCGACGGTGTCGACCCTGTACCCGTCCGCGGCGGGGATCTACCGCGGACTGGGCTACGAGATCGTGGGCTCCTACGACGAGGTCGTGGTCCCGTCGTCGGTCCTCGCGGGGCTGCGCCGGCCGGCGGGCGTCCGCACGCGCCGCGCGCGGGCGGCGGACGTCCCGGCGGTCCGCGCGGTGTACGAACGATGGGCGGCCGCCCAGAACGGTCCGTTGACCCGGGCCGAGGCACCGTTCGCCATGGAGGCCGACGAGATGGTCGGGCCGGACGCCGACTACACGGGAGTCAGCCTCGCCGTCGACGCGTCCGACGGCACCGTCCTGGGGTTCGTGAGCTGGACGCGCGCGAGCGGCCACGACCGCACGACCGACCTCGAGGTCGACGACCTCGTGGCGCTCACCCCGGACGCCGCCCGGGCGCTGTGGTTCGTGCTCGGGTCCTTCGCCACCGTCGTGGGGGCGGCCCGCGTCTCGACGTCGGGCGCCTGGTCCGGCACGGACGTCGGCCGGCTCGTCCTGCCGGACCACGCCGCCACGACGACGTCCCGGCCGTACATGCTGCGGCTGCTGGACGTCCCCGGGGCGCTGGGCTCCGCCCGCCTCGCCCCGCTGACGGCGCAGGTACCTTTCGCGGTCCGCGACCCGCGCACGCCGGACCTGGAGGGGTCGTGGTCGCTGCGGGTGCGCGACGGCGCCGTGGAGGTCGTCGCGGACGCCGGGCCCGCCGGGTCCGCGTCGGACCGCCCGACGTTCACCGCCGGCGGTCTGGCCCAGTCGTACGCGGGGTCCCAGTCGTGCGCGAACCTGCGACTGGCCGGGCACCTGGACGGGCCGACGGAGCACGACGCCGTGTGGGACGCGCTGTGGACCGGCAGACCGGTGCACGTGCGCGACTACTTCTGAMDLDIRRIPFDDAAASQRLQHEAFGSAASAPTADGWPPAGSRPWGAWLDGELAARATVRSFTSWFHGARVPTAGLGGVTVAAEHRGAGLLRPLMDAALADARAHGATVSTLYPSAAGIYRGLGYEIVGSYDEVVVPSSVLAGLRRPAGVRTRRARAADVPAVRAVYERWAAAQNGPLTRAEAPFAMEADEMVGPDADYTGVSLAVDASDGTVLGFVSWTRASGHDRTTDLEVDDLVALTPDAARALWFVLGSFATVVGAARVSTSGAWSGTDVGRLVLPDHAATTTSRPYMLRLLDVPGALGSARLAPLTAQVPFAVRDPRTPDLEGSWSLRVRDGAVEVVADAGPAGSASDRPTFTAGGLAQSYAGSQSCANLRLAGHLDGPTEHDAVWDALWTGRPVHVRDYFNANANANANA
AK018_01738726hypothetical proteinATGACGTACCCGCCGGGAGCCTCGCCCCGCCCGGACGGCGGTCGGCGGATCGCACGCCGTCGCCTCGAGCCGAGCAGCGGTGCCATGACCTCTGTCGCGACGCTCCTGCCCGCCGAGCCCGCACCGCAGCCCGCACCGCAGCCCGCCCGCCCCGGCCCCGGCCCGACGACGCCGGTCTGGACGGCGTCGCGGGTCCAGACGGCGCTGATCGCCGCGGCGCTCGTGCTGGCCCTGGTGGCCACCCTGGGGGTGGCGATGCTCTGGTCGGCGAACCGCAAGCTCGCCGGCGAGGTCGAGGCCGCGGTGCAGCGCACCGAGGTCGCCGAGGCCGAGGCCGCCCGGCTGCGCGTCGCCGTCGACGAGGCGCCCGACACGGCCACCGTCGACGCGCTGGCGGGGCGGGTCGACGGCGTGGAGGCGTGGACCGGGATGCCGCAGGAGGGCATCGACGGCATGGACGACCTGCAGACGCGCCTGCTGGAGGTCTCGAACGGCATCGACAGCCTCGAGACGAACCTGCAGGACGGCCTCGGCACCGTGCGCAACGACCTGGCCACGGTGCGCGACGACCTGTCCGCCGGCCCCGAGCCGCCGTCGGTCGCGGACGTCGACGCGCTGCGTCGCGAGCTCAGCGGGCTGCGCAGCTCCATCGACGGGATCCGGCAGGACGTCGGCGTGCTCTGCTGGGCCCTGGGCTACCGCACGGACGTCTCCGCCTCCTGCTGAMTYPPGASPRPDGGRRIARRRLEPSSGAMTSVATLLPAEPAPQPAPQPARPGPGPTTPVWTASRVQTALIAAALVLALVATLGVAMLWSANRKLAGEVEAAVQRTEVAEAEAARLRVAVDEAPDTATVDALAGRVDGVEAWTGMPQEGIDGMDDLQTRLLEVSNGIDSLETNLQDGLGTVRNDLATVRDDLSAGPEPPSVADVDALRRELSGLRSSIDGIRQDVGVLCWALGYRTDVSASCNANANANANA
AK018_01739666pdxH_1COG0259Pyridoxine/pyridoxamine 5'-phosphate oxidaseGTGCCCGGCTTTCGCGAGAGACTCCGCGACCTGCCGATGTTCCCCGACGGTCTGCCCGACGGCCAGATCTCCGACCCGGACGCGGTGCCGCCCACCCCGCACGACCTGTTCACCGCGTGGTTCGACGACGCCGTGGCGGCGGGCGCCCACGCCCCGCACGCCATGACGCTGTCCACGGCCGGCAGCGGCGCCGTCGTGGACGCGCGCACCGTGCTGCTGACGGACCTCGACGCGGGAGGCTGGTGGTTCGCCGGTCACGCCACCAGCCCGAAGGGCCGCCACCTCGCGGAGAACCCGCACGCCGCGCTGACCTTCCTGTGGCGCGAGGTCGGACGGCAGGTCCGCGTGGCGGGCACCGTGTCCTCGCACCCGGACGTCGGCGTCGAGGACTTCCGGCGCCGCTCCGACGCGTCGCGGGCGACGGGGCTGGTCGACCACCAGAGCGAGGTGCTCGACGACGTGGCCGAGCACCGGGAGGCGTGGGCCGAGGCGCTGCAGGAGGTGCGGGCGGACCCGCGGCGCGTCCCGTCCACGTGGACGGCCTGGCGGCTGTCCCCGTCCTCGGTCGAGTTCTGGCAGACCGGTGCCGGGACCGGTCAGACGCGCCTGCGCTACCGCCGGGGCACCGGGCCGACGGCATGGACCACGGAGCTGCTCTGGCCCTGAMPGFRERLRDLPMFPDGLPDGQISDPDAVPPTPHDLFTAWFDDAVAAGAHAPHAMTLSTAGSGAVVDARTVLLTDLDAGGWWFAGHATSPKGRHLAENPHAALTFLWREVGRQVRVAGTVSSHPDVGVEDFRRRSDASRATGLVDHQSEVLDDVAEHREAWAEALQEVRADPRRVPSTWTAWRLSPSSVEFWQTGAGTGQTRLRYRRGTGPTAWTTELLWPPGPT0009115_617DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009115-pdxH-K00275NANA
AK018_017401569mqo_1COG0579putative malate:quinone oxidoreductaseGTGACTTCGCGCGAAACCTCCCCCCGCCAGCAGCCCGCGGACGCCGTCGACGTCGTCCTCGTCGGCGGCGGCGTCATGAGCGCCACCCTCGGCACGCTGATCCAGCAGCTCGAGCCGACGTGGTCGATCCGGATCATCGAACGACTCGACGACGTGGCGCTGGAGTCGTCCAACCCGTGGAACAACGCGGGGACGGGGCACGCCGCGCTGTGCGAGCTCAACTACACGCCGGAGAAGGCCGACGGCTCGGTCGACATCACCAAGGCGGTGGCGATCAACGAGCAGTTCGAGACCTCGCGCGAGCTGTGGCAGCACCTGCTCGCCACCGGTCAGCTCGCCGACGAGTCGTTCGTCCACCGCACGCCGCACATGACCTTCGTGCGGGGCGCCGAGAACGTGGACTTCCTGCGCCGCCGGTACGAGACCATGGCGGCGCACCCGCTGTTCCGGGACATGGAGTTCTCCACCGACCGCGCCGAGATCTCGCGCTGGACCCCGCTGCTCACGGCCGGCCGGGACGCCGACGAGCCGATCGCCGCGACCCGCTCGGTCGCCGGCACCGACGTGGACTTCGGCAACCTGACCCGCCAGCTCGTCGACAACCTCGTGCGCCACGGCGCCGAGCTGCAGCTGCAGCACGAGGTCACCTCCCTGAAGCGGACCAAGGACCGCCGCTGGCGGCTCAAGGTCAAGGACCGCTCCTGGAACGCCCCGCGCCGCACCTCCACGGTCACCGCGCGCTTCGTCTTCGTCGGCGCCGGCGGCGGGGCGCTCCCGCTGCTCCAGGCGTCGGGCATCCCCGAGATCAAGGGCTTCGGCGGCTTCCCCATCTCCGGGGAGTTCCTGCGCACCGACAACCCCGAGGTCGTCGCGCAGCACCAGGCCAAGGTCTACGGCAAGGCCGACGTCGGCGCCCCGCCGATGTCGGTGCCGCACCTCGACACCCGCGTCGTCGACGGCAAGAGCTACCTGATGTTCGGCCCCTACGCCGGGTTCAGCCCCAAGTACCTCAAGAAGGGCAAGTACCTGGGTCTGATCACCTCGCTGCGCGCCGACAACATCACCTCGATGCTGGGCGCCGGGCTGAAGAACATGGACCTGACCCAGTACCTGCTCGGCCAGCTCGCGGCGGCGCCGGAGTCGAAGTTCCACACGCTCCAGCAGTTCATGCCCCAGGCCCACCCCAAGGACTGGGAGAAGATCACCGCGGGCCAGCGCGTGCAGGTCATCAAGCGCGACGCCGACGGCAAGGGCGTGCTCCAGTTCGGCACCGAGGTCGTCACGGCCGGGGACGGTTCCATCGCCGGACTGCTCGGCGCCTCCCCCGGCGCGTCCACCGCGGTCTCCGCGATGGTCGACGTGCTCGGGCGCTGCTTCCCGCAGGAGTTCCCGGCCTGGCGCGAGCAGCTCGCCGCGATGATGCCCAGCCTGGACGGGGTGCCGGCCGACGCCCGCGAGATCGACACGACGGCCAGCGCGGCCGGCGAGCCCGCGGCCACCCTGCCGGAGCCGGTCGACGGCGTGCTGCCGGCCAGCGTCTACGAGTCGCAGGCCGACTCGCGGTCCTGAMTSRETSPRQQPADAVDVVLVGGGVMSATLGTLIQQLEPTWSIRIIERLDDVALESSNPWNNAGTGHAALCELNYTPEKADGSVDITKAVAINEQFETSRELWQHLLATGQLADESFVHRTPHMTFVRGAENVDFLRRRYETMAAHPLFRDMEFSTDRAEISRWTPLLTAGRDADEPIAATRSVAGTDVDFGNLTRQLVDNLVRHGAELQLQHEVTSLKRTKDRRWRLKVKDRSWNAPRRTSTVTARFVFVGAGGGALPLLQASGIPEIKGFGGFPISGEFLRTDNPEVVAQHQAKVYGKADVGAPPMSVPHLDTRVVDGKSYLMFGPYAGFSPKYLKKGKYLGLITSLRADNITSMLGAGLKNMDLTQYLLGQLAAAPESKFHTLQQFMPQAHPKDWEKITAGQRVQVIKRDADGKGVLQFGTEVVTAGDGSIAGLLGASPGASTAVSAMVDVLGRCFPQEFPAWREQLAAMMPSLDGVPADAREIDTTASAAGEPAATLPEPVDGVLPASVYESQADSRSPGPT0001440_569DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001440-mqo-K00116NANA
AK018_017411407pntB_1COG1282NAD(P) transhydrogenase subunit betaATGACCGTGCTCTCGGCCGTCCAGGCCACCTACGTCGTCGCCGGCGTGCTGTTCATCCTCTCGCTCGCGGGCCTGTCCAAGCAGGAGTCGGCGCGCCGCGGCAACGTCCTCGGCATGGTCGGCATGGCGCTCGCCCTGGTCGCCACGGTCGCCCTCGCCCTGGAGAGCTCCGCACGCCCCTGGCAGGTCACCGCCGGCCTGATCCTGCTGGTCTTCGTCGTCGGCGCCGCCGTCGGCACCTGGCGGGTCCGTCGGGTCGAGATGACCCAGATGCCCGAGCTCATCGCGCTGCTGCACTCGTTCGTCGGGCTCGCGGCGGTACTCGTGGGCTACGGCTCCTACCTGACCGAGCCGCAGTCGGACACGGTCCACCTGGTCGAGGTGTTCCTCGGCGTGCTCATCGGTGCGGTGACCTTCACGGGGTCGATCGTCGCCAACCTCAAGCTCTCCGCGCGGATCAAGTCGGCTCCCTTGATGCTGCCGGGACGGCACTGGCTGAACCTCGCCATGGTGGTGTCCGCGGCCGGGCTGCTGGCCTGGTTCATCACGGCGGCCGGCTCCGGTGCCGACGGCGCCGCGCTGACCGCGCTCGTGCTGATGACCGTCGTCGCGCTGGCGCTCGGCTGGCACCTCGTGGCGTCCATCGGCGGCGGCGACATGCCCGTCGTGGTCTCGATGCTCAACTCGTACTCGGGGTGGGCGGCGGCCGCGGCCGGCTTCATGCTGGGCAACGACCTGCTCATCATCACCGGTGCCCTGGTCGGCTCCTCCGGCGCGATCCTGTCGTACATCATGTGCCAGGCGATGAACCGCTCCTTCGTCTCGGTCATCCTCGGCGGCTTCGGCGCCGAGCCGGGCACCCCGGCGTCGGCCGGGGTCGACGGCGAGCACCGGGAGACCTACGCGGCCGACGTCGCCGAGCAGCTCGCCGGCTCCCGCTCGGTGATCATCGTGCCCGGGTACGGCATGGCGGTGGCCAAGGCCCAGTACCCGGTGGCCGACCTGACCGAGAAGCTGCGGGACCGCGGGGTGGACGTGCGGTTCGGCGTGCACCCGGTGGCGGGCCGTCTGCCGGGCCACATGAACGTGCTGCTGGCCGAGGCGAAGGTCCCGTACGACGTCGTGCTCGGCATGGAGGAGATCAACGGGGACTTCACCGAGACGGACGTGGTGCTCGTCATCGGCGCCAACGACACCGTCAACCCGGCCGCCCAGGAGGACCCGGGCTCGCCGATCGCCGGCATGCCCGTGCTCGAGGTGTGGCAGGCGCGCGACGTCGTCGTCTTCAAGCGGTCGATGGCCACCGGCTACGCCGGCGTGCAGAACCCGCTGTTCTTCCGCGAGAACACCGCGATGATCTTCGGGGACGCCAAGGACCAGATCGAGAGGATCATCCAGTCGCTGTGAMTVLSAVQATYVVAGVLFILSLAGLSKQESARRGNVLGMVGMALALVATVALALESSARPWQVTAGLILLVFVVGAAVGTWRVRRVEMTQMPELIALLHSFVGLAAVLVGYGSYLTEPQSDTVHLVEVFLGVLIGAVTFTGSIVANLKLSARIKSAPLMLPGRHWLNLAMVVSAAGLLAWFITAAGSGADGAALTALVLMTVVALALGWHLVASIGGGDMPVVVSMLNSYSGWAAAAAGFMLGNDLLIITGALVGSSGAILSYIMCQAMNRSFVSVILGGFGAEPGTPASAGVDGEHRETYAADVAEQLAGSRSVIIVPGYGMAVAKAQYPVADLTEKLRDRGVDVRFGVHPVAGRLPGHMNVLLAEAKVPYDVVLGMEEINGDFTETDVVLVIGANDTVNPAAQEDPGSPIAGMPVLEVWQARDVVVFKRSMATGYAGVQNPLFFRENTAMIFGDAKDQIERIIQSLPGPT0013505_2308DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013505-pntB-K00325NANA
AK018_017421602pntA_1COG3288NAD(P) transhydrogenase subunit alphaGTGCAGATCGGTGTCCCCCGGGAGTCACGCGACGGCGAACGTCTCGTCGCCGCCACCCCCGCGACCGTCCAGCGCCTGACCGCGCTCGGCTACGACGTGCTCGTCGAGCACGGTGCCGGCGACCAGGCGGCCATGCCCACGCGGGCCTACGTCGAGTCCGGGGCGCGGGTCGCCGGCCGGGAGGAGGTCTGGGCGTCCGACGTCGTCACGTGCGTCAACGCGCCGTCCCCGCCCGAGCTGGACCTGTTGCGTCCCGGTGCCGTGCTCGTCTCCCAGCTCGCCCCGGCGATGCACCCCGAGCTCGTCGAGGCGCTCGCCGAGCGGCACGTGACCGCGCTCGCGCTCGACGCCGTCCCGCGCATCTCGCGGGCCCAGGCGCTCGACGTGCTCTCGGCGCAGTCGAACGTGGCGGGCTACCGGTCCGTCATCGAGGCGGCCGAGGAGTTCGGCGGCATGTTCACCGGCCAGGTGACCGCGGCCGGCACGACGCCGCCCGCGACCGTGTTCGTCATCGGCGCCGGCGTCGCCGGCCTGGCCGCGATCGGCACGGCCTCCTCTCTGGGAGCCAAGGTGCGGGCGTTCGACGTCCGCCCCGAGGTCGGCGAGCAGATCGAGTCCCTCGGAGCGACGTTCGTCCAGGCCGAGGGCAGTGCGCAGGAGGTCAGCAGCGACGGGTACGCCCGCGAGCTGACGGCCGACCAGGAGGCGGCGACCCGGGCGATGTACGCGGCCGAGTCCGCCGGCGCCGACGTCGTCGTCACGACGGCGCTGGTGCGGGGCACGGCCCCGACCACCATCACCGCGGAGATGGTCGCCGCCATGAAGCCCGGGTCGGTGATCGTCGACCTGGCCGCCCCGGGCGGCGGCAACTGCGAGCTCACGGTGCCGGGGGAGCGCGTCGTCAGCGACAACGGCGTGATCGTCCTGGGCTACACCGACCTGCCCGGACGGATGCCGCAGCACACCTCGCAGCTGCTCGGTACCAACGTCGTCAACCTGCTGACCCTGATGACGCCCGGCAAGGACGGGCAGCTCGTGGTCGACCTCGACGACGTCGTCGTGCGCGGCATGACCGTCTGCCGCGAGGGCGAGGTGCTCTGGCCGCCGCCACCGGTCCAGGTCTCGGCCGCGCCGTCGGCGCCGCCGGCCGCCGCGGAGCCGGAGACGGCCGCCGCGCCGAGCCCGGAGGAGCTCGCCGAGCAGCGCCGTCTCCGGTCGCGTCGCCGGACCGTCCTGGCCGGGCTGGGCGCCGTGGTCGGGGGTCTGGCGATCGCCGCCTCGCCGCCGGACGCCGTCGGCCACTTCACCGTGTTCGCCCTCGCTGTCGTCGTCGGTTTCTACGTCATCTCGGCGGTGACGCACGCCCTGCACACGCCGCTGATGGCCCAGACCAACGCCATCAGCGGCATCATCCTCGTCGGTGCGCTGCTCCAGATCGGCGTCGACGACTGGCTCGTGACGGGGCTGGCCGTCGTGGCGGCCGCCGTGGCGAGCATCAACGTGTTCGGCGGCTTCCTGGTCGCGAACCGCATGATCCGCATGTTCCGCAAGGGAGCGCCCACGCCGCACGTGACCGCGCCGACCGGGGAGGTGGCCCGATGAMQIGVPRESRDGERLVAATPATVQRLTALGYDVLVEHGAGDQAAMPTRAYVESGARVAGREEVWASDVVTCVNAPSPPELDLLRPGAVLVSQLAPAMHPELVEALAERHVTALALDAVPRISRAQALDVLSAQSNVAGYRSVIEAAEEFGGMFTGQVTAAGTTPPATVFVIGAGVAGLAAIGTASSLGAKVRAFDVRPEVGEQIESLGATFVQAEGSAQEVSSDGYARELTADQEAATRAMYAAESAGADVVVTTALVRGTAPTTITAEMVAAMKPGSVIVDLAAPGGGNCELTVPGERVVSDNGVIVLGYTDLPGRMPQHTSQLLGTNVVNLLTLMTPGKDGQLVVDLDDVVVRGMTVCREGEVLWPPPPVQVSAAPSAPPAAAEPETAAAPSPEELAEQRRLRSRRRTVLAGLGAVVGGLAIAASPPDAVGHFTVFALAVVVGFYVISAVTHALHTPLMAQTNAISGIILVGALLQIGVDDWLVTGLAVVAAAVASINVFGGFLVANRMIRMFRKGAPTPHVTAPTGEVARPGPT0013500_189DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324NANA
AK018_01743456hypothetical proteinGTGAAGGTCGAGGCGACCACGATCGCCGAGCTGATCGAACGTTCGGCCGACGTCTGTCCGGACCTGGCGGAGGTCGACCGTCTCGTGGCCGCGGCGGCACCGGAGCTCGAGCGGCGACTGTTCGTCGGGCCGTCGATCTCGATGATCGGCTACGGCAGCATGCCGTGGCGCCGAGCCTCCGGCAGCGGCGTGTGGCCCCTGCTGGGACTGGCTCCGCAGAGGCATGGGGTGAGTCTCTACGTCGCGGCGCGGCGTGACGGCGTCACGTTGCCCGAACGGTACGCGCCGTCACTGGGCCGCGCGGACAGCGGGAAGCACTGCCTGCGGCTGCGGAGGCTGTCCAGGTGCGACGTCGACGAGCTGCGCCGTGCGGTGCGTGACGCGGTGGCCTGGGGCGCCGATCACGATCCGCGGTACGGCCGTGCCTGCGCGGCTCCCGTCACCGACGGCGGTTGAMKVEATTIAELIERSADVCPDLAEVDRLVAAAAPELERRLFVGPSISMIGYGSMPWRRASGSGVWPLLGLAPQRHGVSLYVAARRDGVTLPERYAPSLGRADSGKHCLRLRRLSRCDVDELRRAVRDAVAWGADHDPRYGRACAAPVTDGGNANANANANA
AK018_01744435hypothetical proteinGTGCACCGCACCACGGAGGACGTCGACGCCTTCTTGGCCGGTGACGACGTGTCGCCCGACATGGTCCGCACGGACGCCGTCGTGCGAGAGATGCTGCCCGCACTCTCCCGCACCCTGTGGCGGGGCGTGTTCTGGGGTGGGACGGAACAGGCGATCGTCGGCTACGGGGACATCGTCCAGCCGCGACCCCGCGGTGCCGATGTGGAGTGGTTCCTCGTCGGTCTGGCGCAGCAGAGGCGACATCTGAGCCTGTACGTCAACGCCGTCGCCGACGGCGCCTACCTCACGCGGGCCTACGCCGACCGCCTCGGACGCGCGAAGGTGGGCGCGGCGAGCATCGCGTTCACCCGTCTGGACGACCTCGACGACGCCGTGCTGCGCGAGATGCTGGCGCGGGCCGGCCGGACGGCCGACGTGCCCAGGGCGGACCCGTGAMHRTTEDVDAFLAGDDVSPDMVRTDAVVREMLPALSRTLWRGVFWGGTEQAIVGYGDIVQPRPRGADVEWFLVGLAQQRRHLSLYVNAVADGAYLTRAYADRLGRAKVGAASIAFTRLDDLDDAVLREMLARAGRTADVPRADPNANANANANA
AK018_017451371gabD1COG1012Succinate-semialdehyde dehydrogenase [NADP(+)] 1ATGCTCACTGCGACCGACCCGAGCACGGGCAAGGTCATCCGCGAGGTCGAGCCGGCCGGACCCGAGCGCGTGGAGGAGATCCTCGCGGCCGCGGCCGCTGCCGCGCCGAGCTGGGGGGACCGGTCGTTCGCCGAGCGTGCCGAGGTGCTGCACGCCGTCGCCGCCCACCTGCGCGAGCACGTCGACGAGCTCGCCCCCCTGATGACCGAGGAGATGGGCAAGCCGATCGGGGAGGCGCGCGGGGAGGTCGCCAAGGCCGCCCTGTGCTTCGACCACTACGCCGACCACGGTGCCGACTACCTGGCCGACGAGGTGCTCGCCTCCGACGCCACGACGAGCTACGTGCAGCACCTCCCGCTCGGCACGGTGCTGGGCGTGCTGCCGTGGAACGCGCCGTTCTGGCTGTGGTCGAGGTTCGCGGCGCCCGCGCTCATGGCCGGCAACACCTGCCTGATGAAGCACGACCCGCACGTGCCGGGGTGCGCCGCGGCCATCGCGGACGTGTTCGCCCGGGTCGGGGCGCCGGAGGGCGTCTTCCAGCACCTGCCGCTCGAGACGCCGCAGGTCGAGGCGGTGATCCGCGACCCGCGGGTGCACGCGGTCTCCTTCACCGGTTCGGCCCGCGGCGGGTCGGCGGTGGCCGGCACCGCGGCGGCCGAGATCAAGCCCACCGTCCTCGAGCTCGGCGGGTCGGACCCCTGCCTGGTCCTGGCCGACGCCGACCTCGACGCCGCCGCGGACACGGTCGCGCTGTCCCGGATCATCAACGCCGGTCAGTCCTGCATCGCGGCCAAGCGCATCATCGTCGAGAGCGCGGTCTACCCCCAGATGGTCGAGAAGCTGCGCGAGCGCCTCGCACGGCTGACGGTCGGGGACCCCGCCGAGGAGACCACCGACGTCGGGCCCATCGCGCGCGAGGACCTGCGCACCGAGCTCCACCGCCAGGTCGCCGAGTCGGTGGACGCCGGGGCGCGGCTGGTGCTCGGCGGCGAGCTGCCCGAGGGAGACGGCTGGTTCTACCCCGTCACGATGCTGGCGGACGTCGTCGAGGGCATGACCGCGTGCCGCGAGGAGACGTTCGGCCCGGTGATGGTCGTCATGGAGGCGGCCGACGCCGAGGAGGCCCTCGCGATCGCGAACCGCACCGAGTACGGCCTCGCGGCGAGCGTGTGGTCGACGGCGGAGCGCGGCGTGGCGATGGCCCGCCGGATCGAGGCCGGCCAGGTCGCCGTCAACGGCATCGTCAAGACCGACCCGCGGCTGCCCAGCGGCGGCGTCAAGCGGTCCGGCTACGGCCGCGAGCTCGGTCCGCACGGCATCCGGGAGTTCGTCAACGCCCAGCAGGTGTGGGTCGGTCCGAAGCGGGGTTGAMLTATDPSTGKVIREVEPAGPERVEEILAAAAAAAPSWGDRSFAERAEVLHAVAAHLREHVDELAPLMTEEMGKPIGEARGEVAKAALCFDHYADHGADYLADEVLASDATTSYVQHLPLGTVLGVLPWNAPFWLWSRFAAPALMAGNTCLMKHDPHVPGCAAAIADVFARVGAPEGVFQHLPLETPQVEAVIRDPRVHAVSFTGSARGGSAVAGTAAAEIKPTVLELGGSDPCLVLADADLDAAADTVALSRIINAGQSCIAAKRIIVESAVYPQMVEKLRERLARLTVGDPAEETTDVGPIAREDLRTELHRQVAESVDAGARLVLGGELPEGDGWFYPVTMLADVVEGMTACREETFGPVMVVMEAADAEEALAIANRTEYGLAASVWSTAERGVAMARRIEAGQVAVNGIVKTDPRLPSGGVKRSGYGRELGPHGIREFVNAQQVWVGPKRGPGPT0001580_6183DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
AK018_017461260doeA_1COG0006Ectoine hydrolaseGTGAAGCAGCGCGACGACATGACGTTCCCGTTCGAGGAGTACGAGCGCCGGCTCGACGAGCTCCGTCGACGGATGGCCGATCGGCTCCTCGACGCCGTGGTGATCACCGATCCCGAGAATCTGATGTATCTGACCGATTATCAGACCACCGGGTATTCGTTCTTCCAGGCGCTCGTGGTTCCGTTGACCGAGGAACCCTTCATGATCACCCGCAGCATGGAGGAGTCGAACGTCTATGCGCGCACCTGGGTCGAGCTGACCCGGCCCTATCCGGACACCGGGGACGCCATTCAGAGTCTCGTGCAGTCGCTGCGCGAATTCGGGCTCCACACCAAGGACATCGGCTACGAGCGCAACAGCTACTATTTCCCGGCTTATCACCAGGACTACATCCACACCTCGCTCACCGAGGGGCGGCTCCTGGACTGCTTCGGGATCGTCGAGGAGGGCCGGGTCACCAAGTCGCCGGCCGAGATCGAGATCATGCGCCGGGCCGCCCGCGCGACCGAGGTCGGCATGCAGGCCGGGCTGGAGGCGTGCGCGCCGGGCGTGACCGAGAACGACATCGCGGCCGAGATCAGTGCCGCGATGTTCCGCGCCGGGGGCGAGTTCCCGGCCGTGATGCCGTACGTCACCTCCGGTCCGCGCTCGATGATCGGCCACGCCACCTGGGAGGGCCGGGTCGTCCAGCCGGGCGAGCACGTCTTCCTCGAGGTGGGCGGCTGCTTCCGTCGGTACCACACGGCCATGATGCGCACCGCCGTGCTGGACGACCTGTCGCCGTCCATGGCGGCGGCCCAGCACCGGATGAAGACGGCGCTGGCCGAGGTCAAGAAGGCCATCCGGCCGGGGATCACGGTCTCCGACGCGGACAACATCGTGCGCAGCATCATCACGGACAACCACGTCGGTGCCCGGCTGATCACGCGGTCGGGGTACTCCATCGGCATCGCGTTCCCGCCGAGCTGGGACGAGGGCTACATCGCCAGCCTCAACCAGGGCAACCCCACCATCCTGCGCGAGGGCATGACGTTCCACATCATCCCGTGGATGTGGGGTGTCGACGGGGACAAGACCGTCGGCATCTCGGACACGGTCCACGTCACCGCGCGGGGCTGCGAGTCGTTCTTCACGCTGGACGAGGACTTCACGGTCAAGCCCGAGGCCGGCGCCCGTGCCGGGGTCCGCGACGCCGAGTCCGGCGAGGAACCGTCCGGGGGCCACGGCCAGGCCACCCCGATCCGCCCCGAAGTCGCCTGAMKQRDDMTFPFEEYERRLDELRRRMADRLLDAVVITDPENLMYLTDYQTTGYSFFQALVVPLTEEPFMITRSMEESNVYARTWVELTRPYPDTGDAIQSLVQSLREFGLHTKDIGYERNSYYFPAYHQDYIHTSLTEGRLLDCFGIVEEGRVTKSPAEIEIMRRAARATEVGMQAGLEACAPGVTENDIAAEISAAMFRAGGEFPAVMPYVTSGPRSMIGHATWEGRVVQPGEHVFLEVGGCFRRYHTAMMRTAVLDDLSPSMAAAQHRMKTALAEVKKAIRPGITVSDADNIVRSIITDNHVGARLITRSGYSIGIAFPPSWDEGYIASLNQGNPTILREGMTFHIIPWMWGVDGDKTVGISDTVHVTARGCESFFTLDEDFTVKPEAGARAGVRDAESGEEPSGGHGQATPIRPEVAPGPT0006760_908DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006760-opaA|pepQ-K01271NANA
AK018_017471245ectB_2COG0160Diaminobutyrate--2-oxoglutarate transaminaseATGGAGGCGTTCGAGAAGTGGGAATCTGAGATCCGGGGTTACAGCCGGACATACCCGACCGTTTTTGCTTCGGCGTCCAATGCCCGTCAGGTGGACGAATCGGGACGGAGTTATCTCGATTTCTTCGCGGGCGCCGGCGTGCTCAACTTCGGGCACAACAACCCGCGCATGAAGCGCGCGATGATCGAATTCCTCGAGGCCGACGGCGTCGCGCACAGCCTGGACACGGCGACGACGACGAAGCGGGACTTCATCGAGAAGTTCGCCGCCACGGTGCTCGAGCCGCGCGACATGACCATGAAGATGCAGTTCATGGGACCGACGGGCACCAACGCCGTCGAGGCCGCGCTCAAGCTCGCCCGGCGCGTGACCGGACGCCGCGACGTCGTGGCGTTCAGCAACGGGTTCCACGGGATGACGCTCGGGTCGCTGGCCCTGACCGCGAACGACTACTTCCGCGCTGCCGCGGGCGTCCCGCTGGAGAACGTCGTGCGGCTGCCGTTCGAGACGGCTCCGGGTGGCGGCGTCCAGCAGCTGGCGGACTACCGGGCGCTGCTGGAGGACTCCTCCAGCGGTCTGCTCCCGCCGGCGGCCTTCGTCGTCGAGACGATCCAGGCCGAGGGCGGCGTGCACGTGGCGAGCGCGGAGTGGTTGCGCGAGGTGCAGCGCCTCGCGCACGACGTGGGCGCCCTGTTCATCGTGGACGACATCCAGACCGGCTGCGGACGGACCGGCAACTACTTCAGCTTCGACGGCATGGGGCTCGACCCGGACATCATCACGCTGGCGAAGGGCCTCGGCGGCTACGGGACGCCGATCGCCATGAACCTCAACAAGCCCGAGCTGGACGCCCACTGGTCGCCCGGTGAGCACACCGGGACCTTCCGTGGCCAGGGGCTGTCCTTCGTGGCGGGCAGGGTCGCGCTGGAGTACTTCGACGACGACGAGCTGATGAACCAGGTCGCGGCCAAGCGCGAGACCATGACGGCGGTCCTGGACGACCTCGCCGCGGGCTCGGACGGACGCTTCGAGGTCCGCGGCCGCGGCATGATGCAGGGCCTCGACCTCGGCGACGGAGCCCTGGCCAAGGCCATCGCCAAGAAGTGCTTCGACGACGGTCTGCTCATCGGTCCGTGCGGGACCGGGGGCCGGGTCCTCAAGCTCATCCCGCCGTTGACGATCCCGGACGAGGACCTGGGCGAGGGTCTCGACATCCTCGCCTCGGCCGTCCGCAGCACCACCTGAMEAFEKWESEIRGYSRTYPTVFASASNARQVDESGRSYLDFFAGAGVLNFGHNNPRMKRAMIEFLEADGVAHSLDTATTTKRDFIEKFAATVLEPRDMTMKMQFMGPTGTNAVEAALKLARRVTGRRDVVAFSNGFHGMTLGSLALTANDYFRAAAGVPLENVVRLPFETAPGGGVQQLADYRALLEDSSSGLLPPAAFVVETIQAEGGVHVASAEWLREVQRLAHDVGALFIVDDIQTGCGRTGNYFSFDGMGLDPDIITLAKGLGGYGTPIAMNLNKPELDAHWSPGEHTGTFRGQGLSFVAGRVALEYFDDDELMNQVAAKRETMTAVLDDLAAGSDGRFEVRGRGMMQGLDLGDGALAKAIAKKCFDDGLLIGPCGTGGRVLKLIPPLTIPDEDLGEGLDILASAVRSTTPGPT0014050_1577DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836NANA
AK018_01749687gpgP_1COG0406Glucosyl-3-phosphoglycerate phosphataseGTGACCGCACGCACCGTCGTCCTGCTGCGGCACGGACGGACCTCCTACAACGCCTCGATGCGGCTGCAGGGCCAGGTCGACATCCCTCTCGACGAGGTGGGCCGGTGGCAGGCCGCCCAGGGCGCCGCCGCGCTGGTGACCTCCCACCGCGCCACCCGGATCGTCTCCTCCGACCTCGGGCGCGCGGCGGACACCGCCGCGGCCTACGCCGAGCTGGTCGGCGTGCCGGTGGAGACCGACCCTCGCCTGCGCGAGCGGTCGTTCGGCCGCTGGGAGGGGCTGACCGCGGACGAGATCGCCGAGCGCTGGCCGGACGAGCACGCCGAGTGGCGCCGTGGCGGCGAGCCCCGGGGTGTCGGCGCCGAGACGAAGGTCGAGGTCGCCGAGCGGACGGCCGGGGCGGTCCGCGAGCACGCCGAGGGCCTCGAGGGTGACGAGTGTCTCGTCGTCGTGTCCCACGGCGCGGCCATCTCGTTGGCCATCACCGGGCTCCTCGAGCTGGACGCCACGGCGTGGCGCGGGATCTCGGGCATGCACAACGTGCACTGGTCCCACCTGCACCGATCCGCTCCCGGAGCGGTCCCGGGGTGGCGGCTCGTCGCCCACAACGTGGGTGCCGGCTACCCGCTGGACCGCTGGCAGGCGGGCCCGCACGCGGATTTGGAACCTGAGCCGAAGTCTGCCTAAMTARTVVLLRHGRTSYNASMRLQGQVDIPLDEVGRWQAAQGAAALVTSHRATRIVSSDLGRAADTAAAYAELVGVPVETDPRLRERSFGRWEGLTADEIAERWPDEHAEWRRGGEPRGVGAETKVEVAERTAGAVREHAEGLEGDECLVVVSHGAAISLAITGLLELDATAWRGISGMHNVHWSHLHRSAPGAVPGWRLVAHNVGAGYPLDRWQAGPHADLEPEPKSANANANANANA
AK018_01750444rsfS_1Ribosomal silencing factor RsfSATGACCGCGACGGACCGCGCCGTCGAGCTGGCGGAGGTCGCGGCGCGCGCCGCGTCCGAGCGCAAGGCGCAGGAGATCATCGCCCTCGACGTCAGCGACCAGCTGGTGCTCACCGACGTGTTCCTCATCGCCTCCGGGACGAACGAGCGTCAGGTGGTCGCCGTCGTCGACGCCGTCGAGGAGGCCATGCACCGCGCGGGAGCCAAGATGCTCCGCCGCGAGGGCAAGGCCGAGGCCCGGTGGGTGCTGCTGGACTTCGGCGACGTGGTCGTCCACGTCCAGCACGCCGAGGACCGTGTCTACTACGCCCTCGAGCGGCTCTGGAAGGACTGCCCCGCCCTCGACCTGCCCGCGGACGCCCGCGGGGGCGACGGCGCGGCGGCGCGTGCCGAGTTCGGCGACGACGGCTCGGACGGCGCGATCCACCTGCGCGGCGGGATGTGAMTATDRAVELAEVAARAASERKAQEIIALDVSDQLVLTDVFLIASGTNERQVVAVVDAVEEAMHRAGAKMLRREGKAEARWVLLDFGDVVVHVQHAEDRVYYALERLWKDCPALDLPADARGGDGAAARAEFGDDGSDGAIHLRGGMPGPT0013435_149DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969NANA
AK018_017511212hypothetical proteinATGAGTGACAACAGGTCCCGACCGCTGACACGTCGGGAGATCCGAGAGCGTGAGCGCGCGGCGGCCGCCGCGCAGGAGAGCGCGCCGTCGGCGGGATCCGCCCCGGCCCCCGGCGCCGGTCCCGCATCGTTCGGCAGCGGTGCACCGACCCCGGCGCCCGCTCCCGCGCCGGCCCCGGCCCCCGCGCCGGCCCCGGACCCCGCGGCGGGGGAGCCCGCTCCGGCCCCGCCGTCCCGCCGCGCGCTGCGCGAGCGGTCCACCGCCTCCCCGGCCCCCTCACCGGCGCCGACGGTCCGTCCGCCGAGCGCGTCCGGCGGGGTGCGCGGGCTGGACGAGACGGGTCGCCTGACACCGGTCCGGCGGAGCCAGGGCGGCACCCCGCGCGAGGAGCCGACGGCGGCCGGTCCGACCCGCTTCCCGAGCTCCGGGGCCGAGAGCGCCCCCTCGGCTCCGCGGCGCACCTCGGCCCGCGCGTTCGGCCGGCAGGCCGACGCGCCGCCCGCGACGCCCCCGGCCCCCTCCCCGCCGGCCTCCTCTCCACCGTCGGCCCCGTCGGCGCCCTCGTCGGCGACGCACGACGCCTCGCCCTCGACGCCGCCGCGGTCACCGTTCGCCCCGTTCCCCGGTGGCGCGTCCGGCGGCCCGGCCACATCGGCGCCCTCGGGGTCCTCCCCGGCGCCGCCGCCGTCGGACGGATCCGCTCCTGGTCGCCGGTCGGCCTTCGGGTCCGGCTCACCGTTCGCCGGGGCGACCGCCCGCAGCGAGGCCCCGGCCGGCTCGACCCCTCCGCCGGCCTGGCCCAGCGCCTCGGCGGGCGCGGGGGCACCGACCCGACAGGCGCCCGGCACCGGCGGGTCCGACGCTCCGGCCCTGCCGTGGGGGACGCCGACCTCGACGGGTGCCGCACCCGCCTCGGTGCCGCCGTCGTCCGTATCGCCGTTCGGCGGACTCGCCGGGCAGACGCCGGCCGCCGCCTCCGCCCCGCTGGTCGAGGACGACGAGGACGACGAGGACGACTGGGACGACGAGCACGAGCCGTCGTACACCTGGCTGCACTACATCATCCTCGTCGTGGTCGCCTTCGTCCTGGGCCTGCTGATCTGGAACCTGGTGCTCAGCCCTCCGGACGAGTTCGCCCCCGAGGAGGCGTCCGCGACCGTGCAGACGTCCGAGGCGGCCGGCCCACCGAACGTGACGGGAGGATCCCGATGAMSDNRSRPLTRREIRERERAAAAAQESAPSAGSAPAPGAGPASFGSGAPTPAPAPAPAPAPAPAPDPAAGEPAPAPPSRRALRERSTASPAPSPAPTVRPPSASGGVRGLDETGRLTPVRRSQGGTPREEPTAAGPTRFPSSGAESAPSAPRRTSARAFGRQADAPPATPPAPSPPASSPPSAPSAPSSATHDASPSTPPRSPFAPFPGGASGGPATSAPSGSSPAPPPSDGSAPGRRSAFGSGSPFAGATARSEAPAGSTPPPAWPSASAGAGAPTRQAPGTGGSDAPALPWGTPTSTGAAPASVPPSSVSPFGGLAGQTPAAASAPLVEDDEDDEDDWDDEHEPSYTWLHYIILVVVAFVLGLLIWNLVLSPPDEFAPEEASATVQTSEAAGPPNVTGGSRNANANANANA
AK018_01752573nadD_1COG1057putative nicotinate-nucleotide adenylyltransferaseATGGGTGGGACGTTCGACCCCATCCACCACGGTCACCTCGTCGCGGCGAGCGAGGCGGCCGCGCTGCTCGACCTCGACGAGGTCGTGTTCGTCCCGACCGGCAAGCCGAGCTTCAAGCAGGACGCCCAGGTCTCGCCGGCCGAGGACCGGTACCTGATGACGGTGATCGCCACGGCGTCGAACCCTCGCTTCACGGTGAGCCGCGCCGACATCGACCGGCCCGGTCTGACCTACACGGTCGACACGCTGCGCGACCTGCAGGACGCGCGCCCCGACGCCGACCTGTACTTCATCACCGGGGCGGACGCCATCGAGCAGATCCTCACGTGGAAGGACGCGGGGGACCTGTGGACGATGGCCCACTTCGTGGCGGTGACCCGACCGGGCCACCCGCTCACCGTCGACGGCCTGCCCTCCCACGGCGTGACCACCCTCGAGGTGCCCGCGCTCGCCATCTCCTCGACCGACTGCCGCCGCCGTGCCGCGGCCGGGCAGCCGGTCTGGTATCTGGTCCCGGACGGCGTCGTCCAGTACATCGCCAAGTACGGTCTGTATCGAGGTCTCGATGAGTGAMGGTFDPIHHGHLVAASEAAALLDLDEVVFVPTGKPSFKQDAQVSPAEDRYLMTVIATASNPRFTVSRADIDRPGLTYTVDTLRDLQDARPDADLYFITGADAIEQILTWKDAGDLWTMAHFVAVTRPGHPLTVDGLPSHGVTTLEVPALAISSTDCRRRAAAGQPVWYLVPDGVVQYIAKYGLYRGLDEPGPT0013435_4168DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969NANA
AK018_01753153hypothetical proteinGTGCTGCACACCGCCGTCCTTGCCGCCGAAGAGGCCGTCGAGCACTCCGGCTACGTCATCTCGCCGGTGCTGCTCGGAGTGCTCGCCTTCGGTGGATTCGTCGTCGCGCTGCTGGCGACGTACGCCTTCCGCAACGCGAACAACAAGCACTGAMLHTAVLAAEEAVEHSGYVISPVLLGVLAFGGFVVALLATYAFRNANNKHNANANANANA
AK018_017541332proA_1COG0014Gamma-glutamyl phosphate reductaseATGACCACGACGTTCGACCCCTCCGCCACCACGACGCCCGGCACCGCGCAGCGACCGCAGCCGGACGCCGGCGTGCTGGCCGCGGTGCAGGACGTCGCGCGCCGCTCCCAGCGGGCCTCCCGGACCCTCGCGACCGCGACCCGCGCCACCAAGGACGCGGCGCTGCACGCCCTGGCTGACGCGCTGGTGGCGGCGTCCGGCGAGATCGTGGCCGCCAACGCCGAGGACCTGAGCCGCGGTCGCGAGCACGGCATGAGCGAGGGGCTCCTGGACCGCCTGGCCCTGACCGACGAGCGGGTCGCGGCGATCGCCGCGTCCCTGCGCGAGGTGGCCGGCCTGCCCGACCCGGTCGGGGAGGTCGTGCGCGGCCAGACCCTGCCCAACGGGCTGCGGCTGCGGCAGCTGCGGGTGCCGATGGGCGTGGTCGGCATGATCTACGAGGCGCGGCCGAACGTGACGGTCGACGCCGCCGGGCTCGCCCTGAAGTCGGGCAACGCCGTGATCCTCCGCGGCGGCAGCGCCGCCGCCTCGTCGAACACGGTCATCGTCGACGTGATGCGCCGCGGCCTGGAGTCCCAGGACCTGCCCGCCGACCTCGTGCAGTCCATCGACGGCTACGGCCGCCCCGGCGGCGTCGCGCTGATGCAGGCCCGCGGTCTGGTCGACCTGCTGGTGCCGCGCGGCGGTGCCGACCTCATCCGCACCGTGGTCGAGCAGTCCACGGTCCCGGTGATCGAGACCGGCACCGGCAACGTGCACGTCTACGTGGACGCGGCCGCGGACGTGGCCACGGCCGTCGACATCGTCATGAACGCCAAGACCCAGCGCGTCGGGGTGTGCAACGCGGCCGAGACGCTGCTTGTGCACGCCGACGTCGCCGACCGGTTCCTCCCCGCCGCGCTCGCGGCGCTGGGGGGTGCCGGGGTGGTGCTGCACGTCGACGACCGGGCCGCGGGGCAGGCGCCCGAGAGCGTCGAGGTGCTGCCGGCCACCGAGGCGGACTGGTCCACCGAGTACCTCGCGGCGGAGCTGGCCGTACGCGTCGTCGACTCCCTCGACGAGGCGATCGACCACATCCGCACCTGGAGCTCGGGGCACTCCGAGGCCATCGTCACCAACGACCTCGCGGCGTCGGAGCGGTTCGTCGCGGAGGTCGACGCCGCGGCCGTGCTGGTCAACGCCTCGACGCGCTTCACCGACGGTGGTCAGTTCGGGATGGGCGCCGAGCTCGGCATCTCCACCCAGAAGTTGCACGCGCGCGGACCGATGGGGCTGGCCGAGCTGTGCACCACCAAGTGGGTCGTGCACGGCGACGGGCACGTACGGCCCTGAMTTTFDPSATTTPGTAQRPQPDAGVLAAVQDVARRSQRASRTLATATRATKDAALHALADALVAASGEIVAANAEDLSRGREHGMSEGLLDRLALTDERVAAIAASLREVAGLPDPVGEVVRGQTLPNGLRLRQLRVPMGVVGMIYEARPNVTVDAAGLALKSGNAVILRGGSAAASSNTVIVDVMRRGLESQDLPADLVQSIDGYGRPGGVALMQARGLVDLLVPRGGADLIRTVVEQSTVPVIETGTGNVHVYVDAAADVATAVDIVMNAKTQRVGVCNAAETLLVHADVADRFLPAALAALGGAGVVLHVDDRAAGQAPESVEVLPATEADWSTEYLAAELAVRVVDSLDEAIDHIRTWSSGHSEAIVTNDLAASERFVAEVDAAAVLVNASTRFTDGGQFGMGAELGISTQKLHARGPMGLAELCTTKWVVHGDGHVRPPGPT0014215_323DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014215-proA-K00147NANA
AK018_017551155proB_1COG0263Glutamate 5-kinaseGTGATCGCCCAGTCCCGCTCCGCCCTGCCGGCCGCCCGTCGGCTCGTCGTCAAGATCGGTTCGTCGTCCCTGACCCGGGCCGACGGCCATCTGGACCTCGGCGCGCTGCGGGCGCTGGTCGACGTGCTCGCCGCGGGCCACCGCCGCGGCCAGGAGGTCGTGCTCGTCACCTCCGGGGCCATCGCGGCGGGGATCGGGCCGGCCGGCCTGACCTCCCGGCCCCGGGACCTGGCCACCATGCAGGCCTGCGCGATGCTGGGCCAGGGGCAGCTCGTGGCCCGGTACAGCGAGGCGTTCGCCGCCCACGACATCCGCGTCGGCCAGGCGCTGCTCACGGCCGAGGACACCGTGCGCCGGGCCCGGTACCGCAACGCGCAGCGGTCGCTGGAGAAGCTGCTCGCGCTCGGCGTCGTGCCCGTGGTGAACGAGAACGACGCGGTGACGGTCGACGAGCTGCGCTTCGGCGACAACGACCGGCTGGCCGCCCTGGTCTCCCACCTGGTGCGCGCCGACGCGATGGTGCTGCTCACCGACGTGGACGGCCTGCACGACGCTCCGCCCAGCCGCCCCGGCGCGCGCCGGATCTCGCACGTCGCCGACCTGTCCCAGGTCGCCGGCGTCGAGGTCACCGCCCGGGGGAGCGCGGTGGGCACCGGCGGCATGGTGACCAAGCTCGAGTCGGTGCGCATCGCCACCCAGGCCGGCGTGCCCGTCGTCCTGACCTGCGCCGACAACGTCGCCGCGGCGCTCGCCGGGGACGACGTCGGCACGTTCTTCGCCGCCGGCGGCAAGCGGACGACGGCGCGACGGCTGTGGATCGCGCACGCGGCCCGCACCGAGGGGCGGCTCCACCTGGACGCCGGTGCCACGCGCGCGGTCCTCGGCGGCCGGGCCTCGCTGCTGCCGGCCGGGATCACCCGCGTGGAGGGACACTTCGAGACCGGCGACCCCGTCGAGCTGGTGGCGCCGGACGGCGTCGTCGTCGCCCGCGGGCTCGTCGCCTACGACGCGGCCGACCTGCCCGCGCTGCTCGGCCGGTCCACCTACGCGCTGCGCGACGAGCTGGGCGAGGGGTACGACCGCGAGGTCGTCCACCGCGACGACCTGGTGCTCGAAGGGCGGAACGGCCTGTCCTCACGGCCCGCGTCGTCGTAGMIAQSRSALPAARRLVVKIGSSSLTRADGHLDLGALRALVDVLAAGHRRGQEVVLVTSGAIAAGIGPAGLTSRPRDLATMQACAMLGQGQLVARYSEAFAAHDIRVGQALLTAEDTVRRARYRNAQRSLEKLLALGVVPVVNENDAVTVDELRFGDNDRLAALVSHLVRADAMVLLTDVDGLHDAPPSRPGARRISHVADLSQVAGVEVTARGSAVGTGGMVTKLESVRIATQAGVPVVLTCADNVAAALAGDDVGTFFAAGGKRTTARRLWIAHAARTEGRLHLDAGATRAVLGGRASLLPAGITRVEGHFETGDPVELVAPDGVVVARGLVAYDAADLPALLGRSTYALRDELGEGYDREVVHRDDLVLEGRNGLSSRPASSPGPT0014220_701DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014220-proB-K00931NANA
AK018_017561524obg_1COG0536GTPase ObgATGGCCAGCTTCGTCGATCGAGTCGTGCTCCACGCGGCCGGGGGATCCGGCGGCCACGGCGTCGCGTCCGTGCACCGCGAGAAGTTCAAGCCCCTCGGCGGCCCCGACGGCGGCAACGGCGGTGACGGGGGCAGCGTGCGGCTCGTCGTGGACGGGCAGACGACGACGCTGCTCGACTACCACCACTCGCCGCACCGCAAGGCCCCCAACGGCGGCCAGGGCATGGGCGGGGACCGGCACGGCGCCCAGGGCGAGGACCTCGTCCTCAGCGTGCCGGACGGCACCGTCGTCAAGGACCGCGACGGCACCGTGCTGGCCGACCTCGTCGGCGTCGGTGCCGAGCTCGTCGTCGCCGCCGGCGGCCGCGGGGGTCTCGGCAACCGCGCGCTGGCCTCCCCGAAGCGCAAGGCCCCCGGGTTCGCCCTCCTCGGCGAGCCCGGCGAGGAGCGCGACGTCACGCTCGAGGTCAAGACCATCGCCGACGTCGCCCTGGTCGGCTTCCCCAGCGCCGGCAAGTCCTCCCTGATCGCCGCCGTCTCGGCCGCCCGGCCCAAGATCGCCGACTACCCCTTCACGACACTCGTGCCGAACCTCGGCGTCGTCCAGGCCGGCGCGACGCGCTACACCGTCGCCGACGTGCCCGGGCTGATCCCCGGCGCGAGCGAGGGCAAGGGGCTGGGGCTGGAGTTCCTGCGGCACATCGAGCGGACCGCGGTCATCGTGCACGTGCTGGACTGCGCCACCCTCGAGCCCGGGCGCGACCCGCTGACCGACCTGGAGGTCCTCGAGGCCGAGCTCGCCGCCTACGCGGGCGACCTGGAGATCGCCGGCGGGCGGGTCCCGCTCACGGAGCGTCCGCAGCTGGTCGTGCTCAACAAGATCGACGTGCCCGAGGCCCGCGAGCTGGCGGAGTTCGTCCGGCCCGACCTGGAGGCACGCGGGCTGCGGGTCTTCGAGATCTCGACCGCCTCGCACGAGGGGCTGCGCGAGCTCACCTTCGCGCTGGGCGACCTCGTGGACCGGGCCCGCGCCGCCGCGCCGCCGCCCGAACCGGCCCGCATCGTGCTGCGCCCGCAGGCCGTCGACGACTCCGGGTTCACGGTCACGCGTCGCACCGACGGCTCCACGGGCCACGTCTACTTCCTCGTCCAGGGGCGCAAGCCCCAGCGCTGGGTGCGGCAGACCGACTTCAACAACGACGAGGCCGTGGGCTTCCTCGCCGACCGGCTCGCCAAGCTCGGGGTGGAGGACAAGCTCCTCGAGGCCGGGGCGGTCGCCGGCGACGAGGTCCGCATCGGCACCGAGCAGGACGCGGTCGTCTTCGACTGGGAGCCCACCCTGTCCACCGGGGCCGAGCTGCTCGGGTCGCGCGGCACCGACCGTCGCCTGGAGGACACCCACCGCCCCACGCGGTCCGAGAAGCGGCGCGACTTCGTCGAGCGCATGGACGCCAAGTCGGCCGCCCGCGAGGAGCTGTGGACCGAGCGCGAGGCCGGTCACTGGGCGGACCCCTCCGACGACTGAMASFVDRVVLHAAGGSGGHGVASVHREKFKPLGGPDGGNGGDGGSVRLVVDGQTTTLLDYHHSPHRKAPNGGQGMGGDRHGAQGEDLVLSVPDGTVVKDRDGTVLADLVGVGAELVVAAGGRGGLGNRALASPKRKAPGFALLGEPGEERDVTLEVKTIADVALVGFPSAGKSSLIAAVSAARPKIADYPFTTLVPNLGVVQAGATRYTVADVPGLIPGASEGKGLGLEFLRHIERTAVIVHVLDCATLEPGRDPLTDLEVLEAELAAYAGDLEIAGGRVPLTERPQLVVLNKIDVPEARELAEFVRPDLEARGLRVFEISTASHEGLRELTFALGDLVDRARAAAPPPEPARIVLRPQAVDDSGFTVTRRTDGSTGHVYFLVQGRKPQRWVRQTDFNNDEAVGFLADRLAKLGVEDKLLEAGAVAGDEVRIGTEQDAVVFDWEPTLSTGAELLGSRGTDRRLEDTHRPTRSEKRRDFVERMDAKSAAREELWTEREAGHWADPSDDNANANANANA
AK018_01757258rpmA_1COG021150S ribosomal protein L27ATGGCACACAAGAAGGGCGCGAGCTCCTCGCGCAACGGTCGTGACTCCAACGCCAAGTCCCTCGGCGTGAAGCGCTTCGCGGGCCAGGCGGTCAACGCCGGCGAGATCATCGTCCGCCAGCGTGGCACCCACTTCCACCCCGGCGAGAACGTCGGCCGCGGCGGCGACGACACGCTGTTCGCGCTGTCGGCCGGCGAGGTCGCCTTCGCGACGCGTCGCGGCCGCAAGGTCGTCGACATCGTCGCCGCCCAGGTCTGAMAHKKGASSSRNGRDSNAKSLGVKRFAGQAVNAGEIIVRQRGTHFHPGENVGRGGDDTLFALSAGEVAFATRRGRKVVDIVAAQVPGPT0019510_13DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019510-icd2-K00030NANA
AK018_01758309rplU_1COG026150S ribosomal protein L21ATGGTGTACGCGATCGTCAAGGCCGGTGGCCGGCAGGAGAAGGTGTCCGTCGGGGACATCGTCGTCACGGACCGACTCGAGGGCTCGGCCGGTGACACCGTCGAGCTGCCCGCGATCCTGCTCGTGGACGGCGACACCGTGACCACTGACGCCACGAAGCTGGCGAAGGTCAAGGTCACCGCGGAGGTCGTCAAGGACGCCAAGGGTCCGAAGATCACGATCCACAAGTACAAGAACAAGACCGGCTACCGGAAGCGGCAGGGTCACCGTCAGCAGCTGACCCGCCTGAAGGTCACCGGTATCAAGTGAMVYAIVKAGGRQEKVSVGDIVVTDRLEGSAGDTVELPAILLVDGDTVTTDATKLAKVKVTAEVVKDAKGPKITIHKYKNKTGYRKRQGHRQQLTRLKVTGIKNANANANANA
AK018_01759576pcm_1COG2518Protein-L-isoaspartate O-methyltransferaseATGAGCACGCCGGACGTCGTGGCGGACGCGATGCGCGCCGTCGACCGGCGCGGGTTCCTGCCGCGGGCGCAGCGGGCCTCCGCCGCGTTCGACCAGCCGCTGCCGATCGGCCACGACCAGACCTGCTCCCAGCCCTCCACGGTGGCCGCGATGCTGCGGATGCTCCGGGTGCCGCGCGGCGGTGACGTGCTCGACGTCGGCGCCGGGTCCGGGTGGACGACGGCGCTGCTCGCCCGCCTCGTCGGCCCGCAGGGCGAGGTGCTGGGCGTGGAGCGGATCCCCGAGATCGCAGGGTGGGGCGCCGCGAACCTCGCGCGGGCCGGCATGCCGTGGGCCCGGTTGGTGACCGCCCGTCCCGGGGTCCTGGGCGCGCCGCGACCCGGCGGATGGTCCCGCGTCCTCGTCTCGGCCGCCGCGGACCGGCTGCCCGAGGAGCTCGTGGACCAGGTCGCGCCGGGAGGCCGCATGGTGGTGCCGGTCCGGCACCGGATGGTCGTCGTCGACCGGGACGACGACGGCAGCGTGCGCACCGCCGAGGAGGGCACCTACAGCTTCGTGCCGCTCGTGGAGGACTGAMSTPDVVADAMRAVDRRGFLPRAQRASAAFDQPLPIGHDQTCSQPSTVAAMLRMLRVPRGGDVLDVGAGSGWTTALLARLVGPQGEVLGVERIPEIAGWGAANLARAGMPWARLVTARPGVLGAPRPGGWSRVLVSAAADRLPEELVDQVAPGGRMVVPVRHRMVVVDRDDDGSVRTAEEGTYSFVPLVEDNANANANANA
AK018_01760543tdk_1Thymidine kinaseATGTTCGCGGGCAAGACCACCGAGCTCGTGCGCCGGGTCGACCGGGCACGGATCGCCGGCCGCGAGGTGCTCGTGGTCTCCCACGCGCTGGACGACCGGCACGGCTCCGGCCGCATCGCCTCCCACACCGGGCTGGCGGTGGCGTCCCGCGCGGTGACGCGCGCGGCCGAGATCCCCGGCCACCTGCGGCCCGGGACCGTCCTGGTGGCGGTCGACGAGGCGCAGTTCCTCGGTCCGGAGCTGGTGGACGTCGTCACGGGCCTCGCCGACGACGGCCTCGACGTCGTGGTGGCGGGCCTGACGGTGACGTTCGACGGCCGGCCCTTCGAACCGCTGCCGTCCCTCATGGCGCTGGCGGAGTCGGTCACGCGACTGACCGCCGTGTGCACCGTCTGCGGTCGCGACGCCGCGTACCACGTCCGCCTCGAGGGGGCGGTCGCGGGCGGCGACGCCCTGACGACGGTGGCCGGGTACGTCGGGGGAGCGGAGACCTACCAGGCCCGGTGCCGCGCCCACCGCACGGTGACCGGCCGGTCCTCGTGAMFAGKTTELVRRVDRARIAGREVLVVSHALDDRHGSGRIASHTGLAVASRAVTRAAEIPGHLRPGTVLVAVDEAQFLGPELVDVVTGLADDGLDVVVAGLTVTFDGRPFEPLPSLMALAESVTRLTAVCTVCGRDAAYHVRLEGAVAGGDALTTVAGYVGGAETYQARCRAHRTVTGRSSPGPT0021390_3145DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857NANA
AK018_017613594rne_1Ribonuclease EGTGACATCCGACACCCCCGACCAGCCCGTGGCCGCTGCCGACGAGACGCCGCGCCGGGCTCCCCGCCGTCGCGTGACCCGCGCGACCTCGGCCCCGTCGACCAGCGCGCCCGCCCCGATCGTCGTGCCGGCGACGTCGTCCGAGCCGGCCGCCCCGGCCTCCGAGCCGGCGACCGCCGCCGCGCCGCAGCCCGACCAGGCGACGGCCGCGGCGCCGTCCGCCCCGGCGCGTCGTCCGCGCCGCGCCAGCCGCCGTGCCGCCGGTCCGGCGCAGGCCGAGCCCTCGGCCGAGTCCCCGGCCGCGCCCGAGCAGCCGGCCGAGGCCGCCGCGCCGATCGCCCTGCCCGCTCGGGCGCCCGAGGCGCCCGAGGCGACCGCGACGGCCGCTCCCTCGCTGTCGCTCGACGACATCGTCCTGCCGGGACGGGACGCCGCCTCCGGTGACCGTCCGGCCACCGGTGCCGAGGCCGCGTCCGCCCCCGCCGCGCCGCCGGCGCGCCGGGCCCGCCGCAGCACCGCGAAGGCGTCGCGCGCCGAGGCCCCGGCGGAGGTCTCCGGTGACGAGAGCGCCGACGAGGGCGCCGCGTCCGCCGCCACGACCTCGACCGCGGCGAAGAGGTCGAGCTCCGCGAAGAAGTCGACCGCCACGAAGGAGGCCGGCACGAAGAAGTCGGCCGACAAGAAGCCGGCCGACAAGAAGCACTCCACGAAGAAGTCCGCCGCCAAGAAGCCGGCCGACAAGAAGTCCCGTGCCGAGCAGGCCGCCACGGCCGAGCCGACGGGCGCCGCGACCGGTGCGGCCAGGACCGAGTCCACCACCGGTACCGCCAGCGGGTCCGGCACGCCCCGTCTCGCCACGACGGCGCTGCTCTTCCAGGCGCCCGACCTGTCGGGCCAGCGCGCCGCGCGCCGCGCCCAGGCGCCGGCGGGTCCGCCGCGCCCGAGCGACGGGCCGCCCGCCGTCGAGACCACGGACGCCGGGCCCGCGCCGGAGTCGCGCGAGTCGCGCACCGAGACCACGGACACGTCGTCCTCGACGTCGGCGAAGGCCGGGAAGTCCTCCCGCTCGTCGCGCGCCCGGAGTTCTGCCGCGTCGGCCACGTCCGCCACGGACGGGGCCGCCCCGCAGTCCGAGGCGTCCGCCGAGAAGAAGGCCGACAAGACGTCCGACACGCCGTCGGACCAGCAGTCCGCCGAGCAGTCCGCCGAGCAGCCCGCCGAGCAGCCCGCGGCGACGCCGCTGGAGCTGAGCGACGTCGACGAGGCCGCCGTCGAGGAGCTCGAGCAGATCGAGACCGAGATCGTCGACGAGGGTGTCGAGCTCGTCGAGTTCGGCCCCGCCGACTTCCTCGAGGACGGCGACGAGTCCGACATCCGCCCGCGCCGTCGTCGGCGACGGGGCGGCCGCGGCCGTCGCGGGGGCCGCAAGGGCGACCGCCGGCCCCAGGACGAGGCGGCGGGCGAGTCCTCCGGCTCCTCGGCCGACGAGGACGAGGAGCGTGGCGCCGAGGAGCAGGACGAGCAGGGCTCCTCCGCACGGGACGACCGCGACGGCCAGGGCGCCGACGGCGCCGCGTCGTCCGCCACGGCGAGCGAGACCGAACGGTCCGAGGCCTCCGAGGGATCCGACGACGCCGAGCAGTCGTCCGGCAGCAGCAGCCGCCGGCGTCGGCGCCGTCGGCGTGGCCGGGGCAGCGACCGCGAGGGGAGCCGCCCGGCCCGCGCCGAGGACGAGGTCACCGCGCTCAAGGGGTCGACGCGGCTGGAGGCCAAGCGCCAGCGTCGGCGCGAGGGGCGCGACGCCGGTCGCCGCCGTCAGGTCATCACCGAGGCCGAGTTCCTGGCCCGCCGCGAGTCGGTCGAGCGGTCGATGATCGTGCGCGAGCACGACGGCCGCACCCAGATCGCCGTGCTCGAGGACGGCGTGCTCGTCGAGCACTACGTCTCCCAGCAGGCGCAGGCGTCCATGGTGGGCAACGTCTACCTCGGCCGCGTGCAGAACGTGCTGCCCTCGATGGAGGCTGCCTTCGTCGACGTCGGCAAGGGTCGCAACGCCGTCCTCTACGCCGGCGAGGTCAACTGGGACGCCGCCGGGATCGAGGGGCAGCCGCGCCGCATCGAGGAGGCCCTCAAGTCCGGCGACTCGGTCCTGGTCCAGGTGACCAAGGACCCGATCGGTCACAAGGGCGCGCGCCTGACCTCCCAGGTCACGCTCGCCGGCCGGTACCTGGTCTTCGTCCCCGGCGGGGGCATGACCGGCATCAGCCGCAAGCTGCCCGACACCGAGCGCAACCGCCTCAAGAAGATCCTGCGCGACATCGTCCCCGACGGTGCGGGCGTCATCGTGCGCACCGCCGCCGAGGGTGCCTCGGAGGAGGAGCTGCGCGCCGACGTCGAGCGGCTGCAGTCGCAGTGGCAGTCGATCACCGCCAAGGCCGAGAAGTCGTCGACCAACGCGCCGTCGCTGCTGCAGGGCGAGGCCGACATGGCCATCCGCGTGGTCCGGGACATCTTCAACGACGACTTCACCTCGCTGGTGGTCCAGGGCGACAGCGCCTGGACCGAGATCTCGTCCTACGTCGCCGAGCTGGCGCCCGACCTGCGCGAGCGGGTCACGCGGTGGAACGAGACCGGGGACGTCTTCGCCCGGCACCGGGTCGACGAGCAGCTCGCCAAGGGCATGGACCGCAAGGTCTGGCTGCCCTCGGGCGGCTCGCTCGTGATCGACCGCACGGAGGCCATGACGGTCATCGACGTCAACACGGGCAAGTTCACCGGCAGCGGCGGCACGCTCGAGGAGACGGTGACGCGCAACAACCTCGAGGCGGCCGAGGAGATCGTGCGCCAGCTCCGGCTGCGCGACATCGGCGGCATCATCGTCATCGACTTCGTCGACATGGTGCTCGAGTCGAACCGCGACCTGGTGCTGCGCCGGCTCGTGGAGTGCCTGGGCCGGGACCGCACCAAGCACCAGGTCGCCGAGGTGACCTCGCTCGGTCTGGTCCAGATGACCCGCAAGCGCGTCGGGCAGGGGCTCGTCGAGGCGTTCAGCTCGACCTGCGAGCACTGCAAGGGCCGCGGGTTCATCGTCCACGAGCACCCCGTCGAGAAGGGCGCGGCCTCCTCGGGCGACGGCGACGGCGGCGGCTCGAAGCGCTCGCGCCGCAAGCGCTCCTCCGGCAAGAAGGAGGAGCCGGCACCGGCGCACGCCGACGTGCCGAAGCTGCCCGACGACGAGTCCGAGAAGCGTCAGGCGGTCAAGGCCACGCTGGCCACCATCGCCGCGGCGGCCGCCCACGCCCACGAGCACGAGGGCGAGGAGGGCCACGAGGTGTCCGCGCCGACCGAGCCTGCCGGCGAAGCCGCCGCCGAGCCTGCCGGGGACGCCGCGGCCGAGCCCACGGCCGAGCCCACGGCCGAGCCTGCCGAGCCCGCCGGCGAGCAGGCGGCGTCGACCCCGGCCGAGACCGCGCCGGACCCCGACGCGGCCGGCGCTCCCGCACCCGGTGGTGACACGCCGCCCAAAGGAGCCGGGGCCGACGGGGCTCCTGAGCAGGCTGCGGCGTCGTCTGCGACGCTGACCGACACGCCCTGAMTSDTPDQPVAAADETPRRAPRRRVTRATSAPSTSAPAPIVVPATSSEPAAPASEPATAAAPQPDQATAAAPSAPARRPRRASRRAAGPAQAEPSAESPAAPEQPAEAAAPIALPARAPEAPEATATAAPSLSLDDIVLPGRDAASGDRPATGAEAASAPAAPPARRARRSTAKASRAEAPAEVSGDESADEGAASAATTSTAAKRSSSAKKSTATKEAGTKKSADKKPADKKHSTKKSAAKKPADKKSRAEQAATAEPTGAATGAARTESTTGTASGSGTPRLATTALLFQAPDLSGQRAARRAQAPAGPPRPSDGPPAVETTDAGPAPESRESRTETTDTSSSTSAKAGKSSRSSRARSSAASATSATDGAAPQSEASAEKKADKTSDTPSDQQSAEQSAEQPAEQPAATPLELSDVDEAAVEELEQIETEIVDEGVELVEFGPADFLEDGDESDIRPRRRRRRGGRGRRGGRKGDRRPQDEAAGESSGSSADEDEERGAEEQDEQGSSARDDRDGQGADGAASSATASETERSEASEGSDDAEQSSGSSSRRRRRRRRGRGSDREGSRPARAEDEVTALKGSTRLEAKRQRRREGRDAGRRRQVITEAEFLARRESVERSMIVREHDGRTQIAVLEDGVLVEHYVSQQAQASMVGNVYLGRVQNVLPSMEAAFVDVGKGRNAVLYAGEVNWDAAGIEGQPRRIEEALKSGDSVLVQVTKDPIGHKGARLTSQVTLAGRYLVFVPGGGMTGISRKLPDTERNRLKKILRDIVPDGAGVIVRTAAEGASEEELRADVERLQSQWQSITAKAEKSSTNAPSLLQGEADMAIRVVRDIFNDDFTSLVVQGDSAWTEISSYVAELAPDLRERVTRWNETGDVFARHRVDEQLAKGMDRKVWLPSGGSLVIDRTEAMTVIDVNTGKFTGSGGTLEETVTRNNLEAAEEIVRQLRLRDIGGIIVIDFVDMVLESNRDLVLRRLVECLGRDRTKHQVAEVTSLGLVQMTRKRVGQGLVEAFSSTCEHCKGRGFIVHEHPVEKGAASSGDGDGGGSKRSRRKRSSGKKEEPAPAHADVPKLPDDESEKRQAVKATLATIAAAAAHAHEHEGEEGHEVSAPTEPAGEAAAEPAGDAAAEPTAEPTAEPAEPAGEQAASTPAETAPDPDAAGAPAPGGDTPPKGAGADGAPEQAAASSATLTDTPNANANANANA
AK018_017621500appC_1COG1271Cytochrome bd-II ubiquinol oxidase subunit 1GTGGACGCTCTCGACCTGGCACGGTGGCAGTTCGCCATCACCACCGTGTACCACTTCATCTTCGTGCCGCTGACGATCGGGCTCGCTCCCCTCGTCGCCGGCATGCAGACGGCGTGGGTCGTCACGAAGAACGACCGCTGGCTGCGGCTGACGAAGTTCTTCGGCAAGCTGCTGCTGATCAACTTCGCCCTCGGCGTCGTGACCGGCATCTGGCAGGAGTTCCAGTTCGGCATGGCCTGGAGCGAGTACTCGCGGTTCGTCGGCGACGTCTTCGGCGCCCCGCTGGCCATGGAGGCGCTGGCCGCGTTCTTCGTGGAGTCGGTCTTCCTGGGCGTGTGGATCTTCGGCTGGGACCGCGTGTCCAAGAAGATCCACCTGGCCTCGATCTGGCTCTTCGCGCTGGCCACCAACCTCTCGGCGTTCTTCATCCTGGCGGCGAACTCCTGGATGCAGCACCCCGTCGGCGTCATCTACAACGAGGCGACGGGCCGCGCCGAGATGGAGTCCATCTGGGCGGTGCTGACCAACAACACGCTGCTGGCGGCGTTCCCGCACACCATCACCGCCGCGTTCCTCACCGCCGGCACCTTCGTGACCGGCGTCGCCGCCTGGTGGATGGTCCGGCTGGCCCGCACCAAGAAGGCCGAGAACCTCGAGACCGCCCGGGACGTCTATCGTCCGGCCGTCCGGCTCGGCGTGTGGGTCATGGTCGTGGCCGGGCTCGGCGTCGTCTGGTCCGGCGACGTCCAGGGCAAGCTCATGTACGAGCAGCAGCCCGGCAAGATGTCGTCGGCCGAGGCCCTGTGCGAGGGGACCGAGTCCGCGGAGTTCTCCATCCTCGCCGTCGGCCCGCTCTACGCCGGCTGCGAGGACGTGGCCCACCTCATCTCGATCCCCGGCGTGACCAGCTACCTCGGCACCGGGGAGTTCTCCGGCGAGGACTCCTACCTGCCCGGCGTCTACGACGTCCAGGAGGAGTACTCCGAGCGCTACGGCGAGACCACGGCCGACGGCGAGGAGGTCTCCTACACCCCGCCGCTGGCGATCACCTACTGGTCGTTCCGTCTGATGATCGGGTTCGCCGCGTTCTCCGTGGCCCTCGCCCTCGTGGCGTTCTGGCTGACGCGCAAGGGCAGGATCAGCGACAACGTCTGGCTCAGCCGGCTCGCGCTCCTGGCCATCCCCATGCCCTTCGTCGCGAACTCGTTCGGCTGGATCTTTACGGAGGTCGGGCGCCAGCCGTGGGTCGTGGCCCCCAACCCCACCGGCATCGACCAGGTCCGGCTGCTCACCGAGCGCGGGGTGTCCACCGCCGTGCCGGCGGGCGTCATCCTGACCTCGATGATCGTGCTGACGATCATCTACGCGATCCTGGCGGTGGTGTGGTTCCGGCTCATGCACCGGTACGCGATCGAGGGCGTGCCCGACGCCGTCCGCGACGAGTCGCCGGAGGCGCAGGACCCCGACGACTCCGACCGCCCGCTGTCCTTCGCGTACTGAMDALDLARWQFAITTVYHFIFVPLTIGLAPLVAGMQTAWVVTKNDRWLRLTKFFGKLLLINFALGVVTGIWQEFQFGMAWSEYSRFVGDVFGAPLAMEALAAFFVESVFLGVWIFGWDRVSKKIHLASIWLFALATNLSAFFILAANSWMQHPVGVIYNEATGRAEMESIWAVLTNNTLLAAFPHTITAAFLTAGTFVTGVAAWWMVRLARTKKAENLETARDVYRPAVRLGVWVMVVAGLGVVWSGDVQGKLMYEQQPGKMSSAEALCEGTESAEFSILAVGPLYAGCEDVAHLISIPGVTSYLGTGEFSGEDSYLPGVYDVQEEYSERYGETTADGEEVSYTPPLAITYWSFRLMIGFAAFSVALALVAFWLTRKGRISDNVWLSRLALLAIPMPFVANSFGWIFTEVGRQPWVVAPNPTGIDQVRLLTERGVSTAVPAGVILTSMIVLTIIYAILAVVWFRLMHRYAIEGVPDAVRDESPEAQDPDDSDRPLSFAYPGPT0026700_1758DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026700-cydA-K00425NANA
AK018_017631050cydB_1COG1294Cytochrome bd-I ubiquinol oxidase subunit 2GTGGACCTCGCGATCCTCTGGTTCGTCATCATCGCCGTGCTGTGGACCGGCTACCTCGTGCTCGAGGGCTTCGACTTCGGCGTCGGCATGCTCCTGTCGATCCTGCCCCGGGGCGACAAGGAGCACCGGGAGAAGGAACGGCGCGTGCTCGTCAACACCATCGGCCCCGTCTGGGACGGCAACGAGGTGTGGCTGCTCACCGCCGGCGGTGCGACCTTCGCCGCGTTCCCCGAGTGGTACGCCACGATGTTCTCGGGCTTCTACATCCCGCTGCTGATCATCCTCGTGGGCCTCGTGGCCCGCGGCGTCGCCTTCGAGTACCGCGGCAAGATCAACGACCCGACCTGGGCCCGCCGCTGCGACCAGGCCATCCAGCTCGGCTCCTGGATCCCGGCGGTGATGTGGGGCGTCGCCTTCGGCAACCTCGTGCGCGGCCTCCTGCTGGACGCCGACCACCAGTACGTCGGCGGCTTCTGGGCGCTGCTCAACCCCTTCGCCCTGGTCGGCGGCCTGACCACGCTGACGTTGTTCGGACTGCACGGCGCCGTGTTCGTCTCGCTGAAGACGGACGGCGAGATCCGCGAGCGTGCGCAGCGCCTCGCCTCCGGTCTCGCGGTCACGGCGCTCGTCGTGGCCGGCGGCTGGGCGATCTGGGCGCAGGTCGCCTACTCGACCACCTGGACCTGGGCGGCCGTCGCGGTGGCGGCGCTGTGCCTGCTCGGCGTCGTGGTCGCGACCCGCGCCCGCAAGGAGGGCACGGCCTTCACGCTGTCGGCCGTGACCATCGTGGCCGCCGTCGTGCTGATCTTCGGCTCCATGTACCCCGACGTCATCCCGGCGCTCGACGGCGGCAACGCCCTGACCGTCGCGGAGGCCTCCTCGACGGACTACACGCTGACGGTCATGACGTGGGTGGCGGTGTTCCTCACCCCGGTGGTCATCGCCTACCAGGCGTGGACCTACTGGGTGTTCCGGCGCCGCCTGTCGACGAAGGACATCCCCGCCCCCGCGGGCCTGAGCTGGCAGAAGATCAAGGACGCGGCGTTCTGAMDLAILWFVIIAVLWTGYLVLEGFDFGVGMLLSILPRGDKEHREKERRVLVNTIGPVWDGNEVWLLTAGGATFAAFPEWYATMFSGFYIPLLIILVGLVARGVAFEYRGKINDPTWARRCDQAIQLGSWIPAVMWGVAFGNLVRGLLLDADHQYVGGFWALLNPFALVGGLTTLTLFGLHGAVFVSLKTDGEIRERAQRLASGLAVTALVVAGGWAIWAQVAYSTTWTWAAVAVAALCLLGVVVATRARKEGTAFTLSAVTIVAAVVLIFGSMYPDVIPALDGGNALTVAEASSTDYTLTVMTWVAVFLTPVVIAYQAWTYWVFRRRLSTKDIPAPAGLSWQKIKDAAFPGPT0026705_1759DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026705-cydB-K00426NANA
AK018_017641701cydD_1COG4988ATP-binding/permease protein CydDGTGAGACCGCTCGACCCCCGGCTGCTCCGGCAGGCCCGGGCCGCCCGTTCCTACGTCCTGCTCACCACCGCCCTGGGTGCGGCCTCGGCCGCCCTGGTCGTGGTCCAGGCGTTCGCGATCGCCTTCGCGCTCGGACCCGTCGTGGTGGCCACCGGTCCCGGTGGCGACGGCGCCGTCGACCAGGCCGCGGTCGCCCGGTGGCTCGCCGTCCTGGCGGGTGCCGCCGTCGGACGCGCGGCGGTGGCCTGGGCGCAGGAACGCTTCGGGCGCCGCGCCGCCACCGCGGTCGTCGCGGACCTGCGCGAGCAGGTCGTCGGCCACGCGGTCGCGCTCGGCCCGCGCCCGCCCGCCGGTGCGGCGCCGTCGGACGTCGCCACCCTGGCGACCCGCGGGCTGAACGACCTCGAGCCGTACCTGGTGCGGTTCCTGCCGCAGCTGCTGCTCACGGCGCTCGTCACCCCCGCCACGGTGCTCGTCGTGCTCGGGCTCGACTGGGTCTCCGCGCTGATCGCCGTCGTCACGCTGCCGCTGGTGCCGTTCTTCATGTGGCTCATCGGCACCATGACGGCCGGGACCTCCGAGCGACGGCTCGCGACCGTCGAGCGGCTCGGGTCGCAGGTCCTCGACCTGATCGCCGGGCTGCCGACGCTGCGGGCGTTCGGCCGCGAGCTCGGTCCGGCCGCCCGGGTCCGGGCCCTGGGCGAGTCCTCGCGGCGCGCCACGATGGGCACGCTGCGGGTGGCGTTCCTGTCCGGGGCGGTGCTGGAGCTGCTGACCACGCTGTGCGTGGCGATCATCGCCGTCGGGGTGGGGCTGCGGCTCGTGCACGGCGGCATGGAGCTCGTCCCGGCGATCGCCGTGCTGGTGCTCGCGCCCGAGATCTTCCTGCCGCTGCGCCGGGTCGGCTCCGAGTTCCACGCGTCCACCGACGGGCTCGCCGCCACCCGGCGCGCCTTCGCCGTGCTGGACCTGCCGGTCACGGACGGCAGCACCGACGACGAGCACGCCCGGGCCACCGCGCCGACGACGCCGACGCTCACCGGCGGCACGCTGGTCCTCGACGACGTCACCGTGCGGGCACCCGGCCGCGACGTCGACGCCCCCGCGCACCTGACCGCCCGCATCGCGCTCGGCTCGGGCGAGCCCGGCGGCGGCCGGGTGGTCGCGCTGCGCGGACCGAGCGGGGCCGGCAAGTCGACCCTCGTGCTGCTCCTCCTCGGGCTGCTGCGCCCCGACCACGGCAGCATCTCCCCCGTCCTGCCGTGGGACCAGGTGGCGTGGGTCCCCCAGCGTCCCGCGATCGGACCCGGCACGGTGCGCGACGTCGTCACCGACGGCCGCGACGTCCCCCCGGAGACGTTGGCGGCGGCCGCGGCCACCACGGGCCTCGACGCCGTGCTCGCCGACCTGCCCGGCGGGTGGGACGCGCCCGTGGGGCTCGGCGGCGTCGGGCTGAGCGTCGGGCAGCGTCAGCGCGTCGCCCTGGCCCGGGCGCTGGTCGGCGCCGCCGACCGGCCCGTGGTCGTCCTCGACGAACCCACCGCGCACCTGGACGCCCGGGGCGAGCAGGTCGTGCTGGACACCGTCCGGGCCTGGCGGGAGGCCGGCCGCACCGTGCTCGTGGTCGCGCACCGCGCCTCCCTGCTGGGCCTGGCCGACCAGGTCGTCGACGTCGAGGCCCGAGAGGTCGCCCGTGCCTGAMRPLDPRLLRQARAARSYVLLTTALGAASAALVVVQAFAIAFALGPVVVATGPGGDGAVDQAAVARWLAVLAGAAVGRAAVAWAQERFGRRAATAVVADLREQVVGHAVALGPRPPAGAAPSDVATLATRGLNDLEPYLVRFLPQLLLTALVTPATVLVVLGLDWVSALIAVVTLPLVPFFMWLIGTMTAGTSERRLATVERLGSQVLDLIAGLPTLRAFGRELGPAARVRALGESSRRATMGTLRVAFLSGAVLELLTTLCVAIIAVGVGLRLVHGGMELVPAIAVLVLAPEIFLPLRRVGSEFHASTDGLAATRRAFAVLDLPVTDGSTDDEHARATAPTTPTLTGGTLVLDDVTVRAPGRDVDAPAHLTARIALGSGEPGGGRVVALRGPSGAGKSTLVLLLLGLLRPDHGSISPVLPWDQVAWVPQRPAIGPGTVRDVVTDGRDVPPETLAAAAATTGLDAVLADLPGGWDAPVGLGGVGLSVGQRQRVALARALVGAADRPVVVLDEPTAHLDARGEQVVLDTVRAWREAGRTVLVVAHRASLLGLADQVVDVEAREVARANANANANANA
AK018_017651749COG1132putative ABC transporter ATP-binding/permease proteinGTGCCTGAGACCCTGCGCCGCCGCGTCGCCCAGGACCCGCTGCTGCGGCTCGCACCCCTGCTCGAGATCCGCTGGGGGCGCGTGGTCCGCGCCGTCGGCCTCGGCACCGCCACCCTCGTGTGCGCGATCGGGCTGGCCGCCGCCGCGGCCTGGCTCATCGCGCGGGCCTCGCAGATGCCGCCGGTGCTCACCCTCTCGGTCGCGACCGTCGGCGTGCGCGCCTTCGGCACCGGCCGGGCGTTCTTCCGCTACCTCGAACGGCTCGCCTCGCACGGCGTCGCGCTGCGCGGCATGGCCGCCCTGCGTGCCAACCTGTACGACCGGCTCGCCCGCGGCGGCGCCGACGTCGTCGCCCTGCGCCGCGGCGACCTGCTCGCCCGGGTCGGGAACGACGTCGACGACGTGGGTGACGTCGTCGTGCGCGCGCTGGTCCCCGGCGGGGTCGCCGTGGTGGCAGGACTGGGCTCGGTGCTGCTGGTCGGGATCTTCCTGCCCGCCGCGGGGGCGGTGCTGCTCGGCTGCCTGCTGGTGACCGGGGTCCTGTCCCCCTGGCTGGCCTCGCGCGCGTCGGCGTCGGTGGAGCAGCGCGGGGCCGAGGCCCGCGGCGAGGTCGCCGCCCGCACCCTGGAGCTGCTCGAGGACGGCCAGCAGCTCCGCGTCGCCGGCCGCCTCGCCCAGCGCACCGACGGCCTGCGGGCCGCCGACCGCCGGCTCGCGGCCGCCACGGACGACGGCGCCCGCGTCTCGGGGCTGTCGGCTGCCCTCGAGGCCGGTGCCCAGACGCTGGCGGTGCTCGGCTGCCTGCTGCTCGGCATCCCGGCCGCGCTGGCCGGCGACCTGGCGGCGACCGAGCTCGCCGTCGTCGTCCTCACGCCGCTGGCCGTCTTCGAGGTGACCACGGCGCTGCCTGCCGCGGCGGTCCAGCTGCGGCGGTCCCGCGCGGCGGCCCGGCGGCTGGTGGACCTGCTGCCCGACGACGCACCGCCGCACCCCGACGCCGCGCCCGCGCCGGACGGGACCCTGCTGGAGGCCGCGGGCGTCACGGCCGGGTGGTCGTCGCAGACACCCGTGGTCGAGGGCGTGGACCTGACGCTGCGCCCCGGGTCGGTCGTGGCCCTGGCCGGGGCCTCCGGCGTCGGCAAGACGACGCTGCTGCTCACCGCCGCTGGGCTGCTCGGGCCCGTGGCGGGCCAGGTGCGCGGCGAGGGCCTGTTCGTCGCCGAGGACGGTCACGTGTTCGGCACCACCGTGCTGGAGAACCTGCGGGTGGCCCGCGCCGACGTCACCGAGGCCGACGCCCGCGAGGCGCTGGCCGCCGTCGGGCTCGACGGCTGGCTGGACGGTCTGCCCGACGGGCTCGCCACCGGGCTCGGCACGGGCGGCACCGACGTCTCCGGCGGCGAGCGCCGGAGGCTGCTCGTCGCCCGCGCCCTGCTGGCACCCCACCGGGTGCTGCTGGTGGACGAGCCCGCCGAGCACCTGGACGCCGCCACCGCCGACGCGCTGGTGGAGATGCTGGCCGCCCTGGCCCGCGGGACCGGGCGGGCCGTCGTCGTCGCCTCGCACCGCCTGACGCCGCTCGGCGCCGCCGACGAGGTGCTGCTGCTCGGGCACGACCGCGGAGCCCCGGACGGTGCCGCGCACGTCGTGGCCCGCGGGACGCACGCCGCACTGCTGCGCGACGTGCCGGAGTACCGCTGGGCGGCCGAGCGGGAGGCCGCCTCCGCGCCCGCGTCGGCCGGCCCCTGAMPETLRRRVAQDPLLRLAPLLEIRWGRVVRAVGLGTATLVCAIGLAAAAAWLIARASQMPPVLTLSVATVGVRAFGTGRAFFRYLERLASHGVALRGMAALRANLYDRLARGGADVVALRRGDLLARVGNDVDDVGDVVVRALVPGGVAVVAGLGSVLLVGIFLPAAGAVLLGCLLVTGVLSPWLASRASASVEQRGAEARGEVAARTLELLEDGQQLRVAGRLAQRTDGLRAADRRLAAATDDGARVSGLSAALEAGAQTLAVLGCLLLGIPAALAGDLAATELAVVVLTPLAVFEVTTALPAAAVQLRRSRAAARRLVDLLPDDAPPHPDAAPAPDGTLLEAAGVTAGWSSQTPVVEGVDLTLRPGSVVALAGASGVGKTTLLLTAAGLLGPVAGQVRGEGLFVAEDGHVFGTTVLENLRVARADVTEADAREALAAVGLDGWLDGLPDGLATGLGTGGTDVSGGERRRLLVARALLAPHRVLLVDEPAEHLDAATADALVEMLAALARGTGRAVVVASHRLTPLGAADEVLLLGHDRGAPDGAAHVVARGTHAALLRDVPEYRWAAEREAASAPASAGPNANANANANA
AK018_01766948btuD_6Vitamin B12 import ATP-binding protein BtuDATGTGCCGGGCGACGCGGCTCCGTAGCGTCCGAGGCATGATCAGGATCGACTCCCTCACGAAGCGCTACGGGGACCTCGCCGCCGTCGACGACGTCTCCTTCACCGCGTTCCCCGGACGGGTCACGGGCTTCCTCGGCCCGAACGGGGCCGGCAAGTCCACCACGCTGCGGATCCTCACCGGGCTGGCGACGCCGACGTCCGGCCGCGCCACGGTGCTGGGCCGGCGCTACGCCGACCTGCCCAACCCGGGGCTCGACGTCGGGGTGCTGCTGGACGCCTCGGCCCAGCACGGCGGCCGCACCGGCCGCGAGACCCTGGTGCTCGCCCAGCGCACCATGGGCCTGCCGGACGCCCAGGTCGACGCGATGCTCGACCTGGTGGGGCTCACCCGCACCGAGTCGCGGCGGCGGGTGCGCGACTACTCCCTCGGCATGCGCCAGCGCCTCGGCCTCGCCACGGCGCTGCTCGGCGACCCGCGCGTGCTGATCCTCGACGAGCCCGCCAACGGCCTCGACCCGGCCGGGATCCGCTGGATGCGGGACCTGCTGCGCTCCTTCGCCGACGACGGCGGCACCGTGCTGCTGTCCAGCCACCTGCTGGCCGAGATCGAGCTGGTCGCCGACGACATCGTCGTCATCGGCCGCGGCCGCGTCGTGGCCTCCGGGGCGACGCACGAGCTCCTGGCGGCCTCCGGCACGCTGGTGCGCGCGCACGACGGCGAGGCGCTCGTCTCGGCGCTGACCTCGGCGGGCTACCGCGCGACGCCGGGTGCCGACGGGGCGGTCGTGACCGACGCCGGCCCCGCCGACGCGGGTCGGGTCGCCTTCGCGGCCGGGCTGCCGCTCGTCGAGCTGCGGTCCGCCGACGGCACCGCCCTGGAGGAGATGTTCCTCGACCTGACCGCCGACGACCAGCGCGACCCGCACCCGATCGGAGCCCTCGCATGAMCRATRLRSVRGMIRIDSLTKRYGDLAAVDDVSFTAFPGRVTGFLGPNGAGKSTTLRILTGLATPTSGRATVLGRRYADLPNPGLDVGVLLDASAQHGGRTGRETLVLAQRTMGLPDAQVDAMLDLVGLTRTESRRRVRDYSLGMRQRLGLATALLGDPRVLILDEPANGLDPAGIRWMRDLLRSFADDGGTVLLSSHLLAEIELVADDIVVIGRGRVVASGATHELLAASGTLVRAHDGEALVSALTSAGYRATPGADGAVVTDAGPADAGRVAFAAGLPLVELRSADGTALEEMFLDLTADDQRDPHPIGALAPGPT0006725_8150DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_01767816hypothetical proteinATGACCGCCCTGACCGCCCCGCCCGCCGACGCCGTCGGCCTCTCCGGCCCCGGGACCGTCCACCGGACCCGCATCCCCCGGACGCGGCTGGTCGTCGTCGAGCTGCGCAAGCTGGTCGACACCCGGGCGAGCCGCTGGCTGCTCGCCGCGGTCCCACTGCTGACCCTCGTCGTCGCCGCCGGGGTGACGATCTGGGGCAGCGACGCCGAGACCGCCTTCGCGGCGCTCGCCACGACCAACCTCATGCCGCTGGAGCTCCTGCTGCCCCTGGTCGCCGTCCTCACCGTGGCCGGCGAGTGGAGCCAGCGGTCGGCCCTGACGACGTTCGCCCTGGTCCCGCGGCGGGGCCGCGTCGTCGCGGCGAAGGCCGTCGCGCTGGTGCTGGTCACGCTCGCCGCGGCCGCCGCCGTGATGGTGCTCAGCGCGTTCGGCACCGTCGTGGCGGCACAGGTCCGCGGGATCGACGCCGTGTGGGACCTGGGTGCGGGGCTGGCCCTGCGCTCGGTGCTGGCCTACCTCGCGGCCGTGGCCGTCGGGTTCGTCGCCGCGGTGGCGATCCGCAGCACCGCGCCGGCGATGGTGGCCGGCCTCGGGTTCCTGTTCGTGGTGCCGATGGTCTCGACCGTCGCCGCCGGCCTGTGGTCCTGGTGGGCCGAGCACGGCGCCTGGTTCGACCTGAGCTGGTCGCTGACCTTCCTCACCGCGCCGCAGACCACCGGCACGCAGTGGGCCCAGGTGGGGACCTCGGCGCTGCTCTGGCTCGGGCTGCCGCTGGTGCTGGGACTGCGCCGGCTGCTGCGGGTCGAGATCCGCTGAMTALTAPPADAVGLSGPGTVHRTRIPRTRLVVVELRKLVDTRASRWLLAAVPLLTLVVAAGVTIWGSDAETAFAALATTNLMPLELLLPLVAVLTVAGEWSQRSALTTFALVPRRGRVVAAKAVALVLVTLAAAAAVMVLSAFGTVVAAQVRGIDAVWDLGAGLALRSVLAYLAAVAVGFVAAVAIRSTAPAMVAGLGFLFVVPMVSTVAAGLWSWWAEHGAWFDLSWSLTFLTAPQTTGTQWAQVGTSALLWLGLPLVLGLRRLLRVEIRPGPT0006730_14788DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_017681218hypothetical proteinGTGACGCCCCCGACCCGCCGCGGCGCTCTGCTCGCCGGGCCGCTGACCGCCGCCCTCGTGCTGGCCGGCTGCACCAGCGACCCCGTGACGCCCGACGCCGCACCGGCACCGATCGAGCGCACCCCGGACACCACCGTCGACGCCCCGCCCGCCGTCGACACCGACGGGCTGCGCGTCCCGCTGCAGGTCGACACCGTGCGCCTCGTCGACCCCGGCTGGGACGCCGCCCCGCAGACCGCCGACGGCATCGCCCTGGGCGTCGACGAGCGCGACGGACTCCGGCGGTTCACCGCCGTCGCGGCCGACGGCGAGGCGCTGTGGAGCGCCGAACGGCCCGCGAGCAGCACCGGCCACGCCGTCACGACGACCTCGGCCGGCCGGGCGCTCGCGGTCCTGGCCGACACCGGGGCCGACACCACGGCCGAGCCCGGGGCCGACACCACGGCCGAGCCCACGACCGCGACGGCCTACGACCTGCGCACCGGCGAGCCGGTCTGGGGGCCGGTCGACGTCCCCGGACCGCCGGCCGGTCCGGGGCTGGTGTTCGCCGCGAGCGGGTCCGAGCCGGCCGACGCGGCCGGGTCCCGGGTCGTCCTGGACGCCGACACCGGCGAGTCCGTCACCCTGGAGGCCGACGTGCACGTGCTGGGGGAGCACCGCGGCACCGTGCTCGTCCGGGACGGCGACGAGGTCGTCGCCCGCACCCCGGACGGCGAGACCCGCTGGCGCCTCGACACCGCCGACCAGGGCTGGGAGCCCGGGGCCGTGACGGCGTCGAGCGAGCCGCCGCCGGGCCCGGGCACCGTGCGGCTGCGCACCGGCGAGGCCTCCGAGGCGCTGGTCGACCTCGACGACGGCACGGTCCTGGCGGACGGGTTCACCGACGTCGGCGTCGACCCGACCACCGGCACCCTCGTCACCGTCGACGCCGGCGGGCTGCGCGGGCTCGACGCCGCGGGCACCGAGCTGTGGACCACCTCGACCGCGCAGGAGACCACGATCGAGGGCGTCAGCGGCGCGCTGGTCTACCTGCGGGTCGGCGACTCCCTGCGGGCGCACAACGTCGTCACCGGGAACGTGGCGGAGGCCTACGACCCCGACGGCACCGGCGACCTCGTGGTGCCCGTCGCCGTGACCGATGCCGGCAGCATCGTGCTGTCGGACTACTCGGGGTACCTGCTGGCCACCACGGACACCGTCGCGCCGCCCGCCCCGTGAMTPPTRRGALLAGPLTAALVLAGCTSDPVTPDAAPAPIERTPDTTVDAPPAVDTDGLRVPLQVDTVRLVDPGWDAAPQTADGIALGVDERDGLRRFTAVAADGEALWSAERPASSTGHAVTTTSAGRALAVLADTGADTTAEPGADTTAEPTTATAYDLRTGEPVWGPVDVPGPPAGPGLVFAASGSEPADAAGSRVVLDADTGESVTLEADVHVLGEHRGTVLVRDGDEVVARTPDGETRWRLDTADQGWEPGAVTASSEPPPGPGTVRLRTGEASEALVDLDDGTVLADGFTDVGVDPTTGTLVTVDAGGLRGLDAAGTELWTTSTAQETTIEGVSGALVYLRVGDSLRAHNVVTGNVAEAYDPDGTGDLVVPVAVTDAGSIVLSDYSGYLLATTDTVAPPAPNANANANANA
AK018_01769861hypothetical proteinGTGGACGTCGGTCTCCTCACCGCGTTCCTCGGGGGAGCGCTGGCGCTGCTGAGCCCCTGCGGTGCCCTGCTGCTGCCCGCGTTCTTCGCCTCCACCGTCGGCTCCGGTCCGCGGCTGTGGGCCCACGGCGGCGTCTTCTACGCCGGGCTGGTCGTCGTGCTCGTTCCGCTCGGCGTCGGCGCCGGGGCGGTCGGGGCGCTGTTCGCCACGCACCGCGAGACCGTCGTCGCCGTGGCCGCGGTGCTGCTCGTCGTGCTCGGCGTCGTGCAGCTGCTCGGCCTCGGCTTCGACCCGGCCCGCGTGCTGCCCGGCGCCCGGGCGGTCCAGCGGTCCTCGGCGTCGCGCACCGGCTGGGTCAAGACGTTCCTGCTCGGCGCCGCCGGCGGGGTGGCGGGGCTCTGCGCCGGACCCGTCCTCGGTGCCGTGCTCACCCTCGCCGCCGCGCAGGGCGACGTCGTCGGCGCCGGTCTGCTGCTCGCCGTCTACGCGGCCGGGATGGTCCTGCCGCTGCTCGCCCTCGCCGCAGCCTGGGGTCGGCTCGGCGAGCGCGGCCGGTCCGTGCTGCGCGGCCGGACGGTGCGGGTGCTCGGTCGCGAGCTGCACACGACCTCGATCGTCACCGGTCTGCTGCTGATCGCGGTCGGCGTCCTGTTCCGGGTCACCAACGGGCTGGTCGGGATGCCCGAGCTCCTGCCCGTCGGCACGCAGGCCTGGCTGCAGGGTCAGGGCGCCCTGCTGGCGCACCCCGTCCTCGACGTCGCGCTGGTCCTGGTCGTCGCCGTGGTCGTGGTCGTCGTCTGGACGCGCCACCGGGCCCGTGCCCAGCGGGCCGCCGCCCCCGAGACCGAGGAGACCTCGTGAMDVGLLTAFLGGALALLSPCGALLLPAFFASTVGSGPRLWAHGGVFYAGLVVVLVPLGVGAGAVGALFATHRETVVAVAAVLLVVLGVVQLLGLGFDPARVLPGARAVQRSSASRTGWVKTFLLGAAGGVAGLCAGPVLGAVLTLAAAQGDVVGAGLLLAVYAAGMVLPLLALAAAWGRLGERGRSVLRGRTVRVLGRELHTTSIVTGLLLIAVGVLFRVTNGLVGMPELLPVGTQAWLQGQGALLAHPVLDVALVLVVAVVVVVVWTRHRARAQRAAAPETEETSNANANANANA
AK018_01770771hypothetical proteinGTGGCCGACCCCCGCACCCCGACCGCCTCGCGGCCGTGGGTCCTGCCCGCCGTCGTCGTCGCCGTCCTGACCCTCGTCCTGCTCGCCGCCGTGGCGTGGTCGTCCGACGGCGACGCCCCGGCCGCGCCGGGCGCCGGTCCGGGCACGACGGCGACCGCGCCGGAGGACGCCGACCCGGGCGACGCCCCCACCGACGTCCAGGGGCCTGCCGAGGTCGACACCGCCGCGGTCGAGCGCCGCGACCAGGACGATCCGCTGACGGACGGCCCGGTCGACGCACCCGTCGTGCTGGTCGTCTTCTCCGACTACCAGTGCCCGTTCTGCGCCCAGTGGAGCCAGGAGACGCTGCCCGAGATGCGCGAGCACGCCGCGGCCGGCGACCTGCGCATCGAGTACCGGGACGTCAACGTCTTCGGCGAGGCTTCCGAGCGCGCCGCCCGCGCCGCCTACGCCGCCGCGCTGCAGGACGAGTTCTGGACCTACCACGAGGCCCTGTACCCGGAGGGGGAGACCCGCTCCGAGGACGAGCTCTCCGAGCAGGCGCTGACCGACCTCGCCGCCGAGCTGGGGCTGGACGTCGAGCAGTTCACCCGCGACCTGGGCTCGGCCGGGACCGCCGACGCCGTCGCGGCCAACGAGCAGCTCGGCCTCGACCTCGGCGCCTACTCCACGCCCGCCTTCCTGATCGGCGGCCGGCCGATCGTGGGCGCCCAGCCGACCCAGGTCTTCCGCGACGCCTTCGACACCGCTCTCGCCGCGAGCCGGGGCTGAMADPRTPTASRPWVLPAVVVAVLTLVLLAAVAWSSDGDAPAAPGAGPGTTATAPEDADPGDAPTDVQGPAEVDTAAVERRDQDDPLTDGPVDAPVVLVVFSDYQCPFCAQWSQETLPEMREHAAAGDLRIEYRDVNVFGEASERAARAAYAAALQDEFWTYHEALYPEGETRSEDELSEQALTDLAAELGLDVEQFTRDLGSAGTADAVAANEQLGLDLGAYSTPAFLIGGRPIVGAQPTQVFRDAFDTALAASRGNANANANANA
AK018_01771558hypothetical proteinATGGTGCATAGTGACCTCGTGACGCTCGAGACACCGCCCCGCACCACGTGGCGCGAGACCGCCGGGCTCGCCGTGCTCGGCCTGCGCGCCTGGACCCCCCGCCAGCGCGTCGTCGCCGTCGTCGCGGCGCTGGCCGTCGGCCTGCTCATCGGGTGGGCGACCGTACTCCTCCCCAACCCGGTCTTCTCCCGCGAGATCCCACCGGTGTGGTGGAACTACCCCGTGTGGGTCCTCACCTCCGTCCTGTCCGGGATGCTCGTGGCGACCTATGTGCGGTCCGCCGCACCGTCCGACGACGAGACCCGGACCAGCCGCCTGGGCATGGCCGGCGGGGTCCTCGCCTGGTTCGCCGTCGGCTGCCCGGTGTGCAACAAGCTGGCGCTGCTCGCCCTCGGCTACAGCGGCGCGATCACCTGGTTCGCGCCGGTCCAGCCGTTCCTGGGCCTGGCCGCCCTCGCGCTGACCGCCGTCGCGCTCGTGTGGCGGCTGCGCGGACAGGTCGCGTGCCCCACGCCGGCGGCCGCACCGACGTCCGCCCCGGAGGGAGCCGCGCGATGAMVHSDLVTLETPPRTTWRETAGLAVLGLRAWTPRQRVVAVVAALAVGLLIGWATVLLPNPVFSREIPPVWWNYPVWVLTSVLSGMLVATYVRSAAPSDDETRTSRLGMAGGVLAWFAVGCPVCNKLALLALGYSGAITWFAPVQPFLGLAALALTAVALVWRLRGQVACPTPAAAPTSAPEGAARNANANANANA
AK018_01772393hypothetical proteinATGACCGCACGAGAGACCGACGAGCCCGCCCGCCTGGGGACCCTGGAGTCCCAGGTCATGGACGTGCTGTGGACCTGCGGCGGCTGCACGATCCGGAACGTCATCGACCGCCTCGACGGCCGGCCCGCCTACACCACGATCGCCACCGTGCTCGGCAACCTGGAGCGCAAGGGCTTCGTCGAGCACGTGCGCGAGGGCCGCTCCGCCCGGTACCTGCCCGCCTCGACCCGGTCCGAGCACGCCGCCGAGGTCATGGAGCACGCGCTCGCCACCAGCGGCGACCGCGCCGCCTCGATCCTGCACTTCGTCGAGGCGATGCCCGAGAGCGACCGTGCCCTGCTGCGCGACTACCTGGACGGACCGGGCGGACGGTCCGCCCGGGGAACCCCGTGAMTARETDEPARLGTLESQVMDVLWTCGGCTIRNVIDRLDGRPAYTTIATVLGNLERKGFVEHVREGRSARYLPASTRSEHAAEVMEHALATSGDRAASILHFVEAMPESDRALLRDYLDGPGGRSARGTPNANANANANA
AK018_01773972htpX_1Protease HtpXGTGACCCCCGCCGTGGCCGTGCTGGTCGGCCTCGGCATCGCCCTCGCCCCGCTCGGCGGTCCGTGGCTGGTCCGCCGCGCGGCACCCGCGCTCGTGCGGGCCCCGCTGGTGGCCGCGGTGGCACTCACCGGCGGGGTGGTGCTCTGGCTGGCCGCCCTGCTCGCCGTCGGACCGATGCTCGCCTGGACCCTCTCCGGGCCGGCCGTGCTGCCCGGGGCCGCGGGCGCCGTCTGCCAGCGGTGCCTGGACGCGGCCGACCCGTTCGCCGGCTCCCCCGTCGACACCGCCGTGCCCGTGGTGCTGCTCCTGGCCGGACCGGCCCTGGTGGCCGCCGTGCTCGCCGCGGTGCTGGGCCGTGAGCTGTGGCACCGGCGTCGGGAGACCGCCCGCACGGCCGCCGCGCTCCGGGCCGTCGGCGTCCCCCGCGTCGTGGCCGGGCACCGGGTGCTGGTCGTGCCCGACGACGCGCCGGCCGCCTTCGCCCTGCCCGCCCGGCACGGCGGCGTCGTCGTGAGCACCGGCGCGCTGGCCTCCCTGGACGACGCCGGGCTCGCCGCCGTGCTCGCCCACGAGGGGGCCCACCTGCGTCAGCGCCACCACCTCGTGGCCGCGCTCACCGCGGCCCTGGCGACCCACCTGCGCTGGGTCCCCGTCGTCGCCGCCGTCGCGGACGCCGTGCCCACCTACCTCGAGATCGCCGCCGACGACGCGGCCCGGCGCCGGGTCGGCACCACGGCGCTCGCCGGCGCCCTGCTCACGCTCGGTGCCGCGGAGCGGTCGACGGTTCCCGCGGCGGCCGGGGCGCTGCACGCGGCCGGCCCGGACCGGATCCGCCACCTGGTCGCCCCCGGCGCGGGGCGGGCCGGGACGTGGCCCGCCGTCGCCGTCGGGGCCCACCTCGGGGTGCTCGCCGCGGTGTCGCTCGCGGTGCACCTGCCGTACGTGGACGCCGTGCTGTCGGGGTGCGCCTGAMTPAVAVLVGLGIALAPLGGPWLVRRAAPALVRAPLVAAVALTGGVVLWLAALLAVGPMLAWTLSGPAVLPGAAGAVCQRCLDAADPFAGSPVDTAVPVVLLLAGPALVAAVLAAVLGRELWHRRRETARTAAALRAVGVPRVVAGHRVLVVPDDAPAAFALPARHGGVVVSTGALASLDDAGLAAVLAHEGAHLRQRHHLVAALTAALATHLRWVPVVAAVADAVPTYLEIAADDAARRRVGTTALAGALLTLGAAERSTVPAAAGALHAAGPDRIRHLVAPGAGRAGTWPAVAVGAHLGVLAAVSLAVHLPYVDAVLSGCANANANANANA
AK018_01774174hypothetical proteinGTGAAGAGGCGACCTCTCGAGACCGACGGCCGCGTCTCCACGGCCTGGCTCGTGCTGGCCGGGTCCGGGGACAGGGTGGAGGACGAGTCCGCCGCCGCCCAGCACGCGGCGCTGCAGGAGGACCGGGCCGCCTGCGAGCGGGTCGCCGGTCCGCGACCCGGTGCGCAGCCGTAGMKRRPLETDGRVSTAWLVLAGSGDRVEDESAAAQHAALQEDRAACERVAGPRPGAQPNANANANANA
AK018_017751647COG1233putative proteinATGACCCCCATGGAACCCGCGCGTACTCCCGCCACCGCCGCCCGCTACGACGTCGTGGTCGTCGGGGGCGGCCACAACGGTCTGACGGCGGCCGCCTACCTGGCCCGTGCGGGCCGGTCGGTGCTGCTGCTGGAACGGCTCGACCACGTCGGCGGGGCGTCCGTGTCGGCGCCGGTGTTCGACGGCGTCGACGCGCGGCTGTCGCGCTACTCCTACCTGGTCTCGCTGATGCCGCGGCAGGTGGTCGACGAGCTCGGGCTCTCGCTGCGGCTCGCCCGCCGGCGGTACTCCTCCTACACGCCGGTGGGTGATCGCGGCCTGCTCGTGGACACCGGGTCCGACGACGCCACCCGCGCCGCGTTCGAGGCGGTCGGCGCCGGGAGGGACCACGCGCGCTGGCAGGAGCTGTACGCCGGGCTGGAGCGTCTCGCGGGCCGGATCTTCCCCACGGTCACCGAGCCGCTGCTGTCGGCGGCGGAGGCGCGCGCCCGGGCCGGCGACGACGCCCTGTGGCACGCCGTCGTCGAGCAGCCGCTCGGCGAGATGCTGCGCGAGAGGTTCGAGGCGGACCTGGTGCGCGGCGTGGTCGCCACCGACGCGCTCATCGGGACCTTCGCCGACCTGGACGACACCTCGCTGGTCCAGAACCGCTGCTTCCTCTACCACGTCATCGGCGGCGGCACGGGGGACTGGGACGTGCCCGTCGGCGGGATGGGCGCCGTCTCCGGGGCGCTGCGCGACGCGGCGCTCGGCGCCGGTGCCAGCCTCGTCACCGGCGCGGACGTCACGGCGGTCGACCCGGGGCCGCCCACCGGCGACGCCGAGGTCACGTGGACCGACGACGACGGCGTCTCCCGCGGGGTGCGGGCCGGTGCGGTGGTGTGCGGGGCGGCCCCCGTCGTGCTGGACGCGCTGCTGGACGCCGGTGGCGCGACGCCGTCGGGCCGCGCCACGGCCACGGCGCCCGAGGGTGCCCAGCTCAAGGTCAACATGCTGCTGCGGCGGCTGCCGCGGCTGCGCGAGGACGTCGACCCCGTCGCAGCGTTCAGCGGGACGTTCCACGTCCACGAGTCCTTCGACGAGCTGCAGACCGCCCACGCCCAGGCCGCGGCGGGGCGGATCCCCGACACCCCGCCCTGCGAGATCTACTGCCACTCCCTGACCGACGACTCGATCCTCGGTCCCGACCTGCGGGCGGCCGGCGCGCAGACCCTCACCCTGTTCGGTCTGCACATGCCGGCCCGGCTGTTCCGGGACGGTGCGGACGGAGCCCACGACGCCGCCCGTGACGCGGCGCTCGCGGCCACGCTGCGGTCCCTGGACTCCGTGCTCGCCGAGCCGGTCGAGGACGTGCTGTGGCGGGGTCCCGACGGCGAGCCCTGCCTCGAGGCCCGCACGCCGGTGGACCTGGAGCGCGGCATCGGGCTGCCCGGCGGGCACATCTTCCACCGCGACCTGTCGTGGCCCTGGGCCGAGGACGACGGCCTGGACGCGCCCGGGAGGTGGGGCGTCGAGACGCTGCACCCGCGGGTGCTGCTCGCCGGTGCCGGCGCACGCCGGGGCGGGGGCGTCAGCGGCATCCCGGGACGGGCGGCGGCGATGGCCCTGCTGGAGGGGCGACTTCGACGCCCGGATCAACTATGTTGAMTPMEPARTPATAARYDVVVVGGGHNGLTAAAYLARAGRSVLLLERLDHVGGASVSAPVFDGVDARLSRYSYLVSLMPRQVVDELGLSLRLARRRYSSYTPVGDRGLLVDTGSDDATRAAFEAVGAGRDHARWQELYAGLERLAGRIFPTVTEPLLSAAEARARAGDDALWHAVVEQPLGEMLRERFEADLVRGVVATDALIGTFADLDDTSLVQNRCFLYHVIGGGTGDWDVPVGGMGAVSGALRDAALGAGASLVTGADVTAVDPGPPTGDAEVTWTDDDGVSRGVRAGAVVCGAAPVVLDALLDAGGATPSGRATATAPEGAQLKVNMLLRRLPRLREDVDPVAAFSGTFHVHESFDELQTAHAQAAAGRIPDTPPCEIYCHSLTDDSILGPDLRAAGAQTLTLFGLHMPARLFRDGADGAHDAARDAALAATLRSLDSVLAEPVEDVLWRGPDGEPCLEARTPVDLERGIGLPGGHIFHRDLSWPWAEDDGLDAPGRWGVETLHPRVLLAGAGARRGGGVSGIPGRAAAMALLEGRLRRPDQLCNANANANANA
AK018_01776945ghrA_1Glyoxylate/hydroxypyruvate reductase AGTGAAGATCCTCGTGCCGAGCAACGTGCCCTTCGACCTGACCCTCGACGTCGAGGGGGTCGACGTCGCGCCGTACGTCATGCGCGACCCGGTCCCCGACGAGCACCTCGACGCCGAGGCGATCGTCACCTGGGCCAGCCCGCAGCGGGTGATGGACGACGCCGCGCGCCGGCTGACGAACCTGCGCTGGGTGCAGACGCTCAACGCCGGGCCCGACCAGGCGCTCGCCACCGGGTTCGCCCCCGAGGTGGTCGTCGCCTCGGGGCGCAGCCTGCACGACGCGACCGTCGCCGAGCACACCCTGGCGCTGCTCCTGGCCTCGGTGCGCCGGATCGACCGCACCCTGGACGCCCAGCGCCGCCACGAGTGGGACCGGGACCTGGGCCGCGAGCAGGCACGGGACGAGCAGGCGTTCACCCTGCGCGGCGCGCACGTGGTGATCTGGGGGTTCGGCTCCATCGCCGCCCGCCTCGCCCCGCTGCTGGAGGCGCTCGGGGCGCGCGTGTCCGGGGTGGCGTCGTCGGACGGGCAGCGGTACGGCTACCCCGTGGTCGGCCAGGACCGGCTGGCCGAGGTGCTGCCGACGACGGACGTGCTCGTCTCGCTGCTGCCCGCCACCGCGGCCACCCGCCACGCGCTCGACGCCGACGTCCTGGCGCTCCTGCCCGCCCGCGCCCGGTTCGTCAACGCCGGGCGCGGCGCCACGGTCGACGAGACCGCGCTGGTCGCCGCGCTGCGGTCGGGGTCGATCGCCGGGGCCGCCCTGGACGTCACCGAGACCGAGCCGCTGCCGGCCGACTCGGAGCTGTGGGACGCCCCGGGGCTGATCCTCACGCCGCACGTCGCCGGCGGGCGGCCGCAGGGCGCGGCGGCCTTCGTGACCGCCCAGGTGCGGCGCTGGCGCGAGGGCGGGGCGGAGGCGCTGGAGAACGTCGTCGCGCGCTGAMKILVPSNVPFDLTLDVEGVDVAPYVMRDPVPDEHLDAEAIVTWASPQRVMDDAARRLTNLRWVQTLNAGPDQALATGFAPEVVVASGRSLHDATVAEHTLALLLASVRRIDRTLDAQRRHEWDRDLGREQARDEQAFTLRGAHVVIWGFGSIAARLAPLLEALGARVSGVASSDGQRYGYPVVGQDRLAEVLPTTDVLVSLLPATAATRHALDADVLALLPARARFVNAGRGATVDETALVAALRSGSIAGAALDVTETEPLPADSELWDAPGLILTPHVAGGRPQGAAAFVTAQVRRWREGGAEALENVVARNANANANANA
AK018_01777306hypothetical proteinGTGCTCGACGGCCAGACGATCGGCTCGCTCGTCCTCGTCGCCGGGCCGACCGCGGCGTCGTTCCTCACGACCCGCTACTGGGAGGCCCGCGACCTCGGCGACCTGCGTCGGCACGCCTGGTTCGCGCTCTACCTCGCCGTCGTGCTGACGCTGCTCGGGGCGGTGCTGGCGACCTCGTCGGTGGAGGACCGGCTACGGTCGGTCGGGATCTTCTTCGCCGTGACGATCGGCGCGACGTTCCTGCAGGAGCGCCGCGCGCGGCGGCAGCGGCGCGTGCCCGCCCCGTCGCGGACCACGGAGTCCTGAMLDGQTIGSLVLVAGPTAASFLTTRYWEARDLGDLRRHAWFALYLAVVLTLLGAVLATSSVEDRLRSVGIFFAVTIGATFLQERRARRQRRVPAPSRTTESNANANANANA
AK018_01778360hypothetical proteinATGACCGTGCACCTGGCACGCGTGTACAGCCCGCCCGGGCCCGACGACGGTCGTCGGGTGCTGGCCGACCGGCTCTGGCCGCGCGGGGTCCGCACGGACGACCCGCGGGTGGGCGTCTGGCTGCGGGACGTGGCGCCGTCGACCGAGCTGCGCCGCTGGTACGCCCACGACCCCGACCGGACGGCGGAGTTCGGCGAGCGGTACCGGGCCGAGCTGGAGACGCCGGGACCGGCGGCCGACGCTCTCGCGGAGCTGCGTGACCTGGCGCGGGAGGGGACGGTCACGCTGGTGACCTCGACCCGTGAGCTCGACGGCAGCCACCTGGTGGTGCTGGCCGGGCTGCTCGACGGCCACGGGTGAMTVHLARVYSPPGPDDGRRVLADRLWPRGVRTDDPRVGVWLRDVAPSTELRRWYAHDPDRTAEFGERYRAELETPGPAADALAELRDLAREGTVTLVTSTRELDGSHLVVLAGLLDGHGPGPT0008170_142DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934NANA
AK018_01779933fpg1_1COG0266Formamidopyrimidine-DNA glycosylase 1GTGCCTGAGCTCCCCGAGGTCGAGACCGTCCGTGACGGCCTCGACCGGCTGGTGACCGGCGCCGTCGTGCGGGACGTCGAGGTCTTCCGCGACTACTCGGTGCGACGCCACGACGGCGGCCCGGCGGTGTTCGGCGACCAGCTCCGCGGTCGCCGGCTGGCCGGCGCCGCCCGCCGCGGCAAGTACCTGTGGCTGCCCCTGGCCGACGCCGCACCCGCCGACCCCGCGGCCGCGCTGCTGGCCCACCTGGGGATGTCCGGCCAGCTCCTCGTGCGTGACCCGGCGGTCGCGGGGGAGTGGGCGCACCCCCACCTGCGGGTCCGGCTCCACCTGCTCGACGCCCCCTCCGGCGCCCACTACCTGGACTTCGTCGACCAGCGCACCTTCGGGCACCTGTCCGTGGCCGAGCTCGTCCCGACGCCGGACGGCGCACCGGGCGGGTTCGGCAGCCCCCTGGCCGCCGTGCCGGAACCCGTGGCGCACATCGGCCGCGACCTGCTCGACCCCGCGCTCGACCGGGACGTGCTGGTCGAGCGCGTGCGCCGTCGTCGGACCGGGATCAAGCGCGCGCTGCTGGACCAGACCGTCACCTCCGGGGTGGGCAACATCTACGCCGACGAGGCCCTGTGGCGGGCCCGGGTGCACTACGCCCGCGCCACGGACACGATGACGCGACCCGTGGTGCACCGGGTGCTCGACGCCGCCACGGAGGTCATGACCGAGGCGCTGGTCCAGGGCGGCACGAGCTTCGACGCCCTCTACGTCGACGTCAACGGCGAGTCCGGGTACTTCTCCCGGTCGCTGGCCGTCTACGGCCGGCTCGGCGAGGCCTGCCCCCGCTGCGCGACGCCGGTGCGCCGCGACGAGTTCATGAACCGCTCGTCGTTCACGTGCCCGCGCTGCCAGCCCCGTCCGCGGAACGGTCGCTGGTAGMPELPEVETVRDGLDRLVTGAVVRDVEVFRDYSVRRHDGGPAVFGDQLRGRRLAGAARRGKYLWLPLADAAPADPAAALLAHLGMSGQLLVRDPAVAGEWAHPHLRVRLHLLDAPSGAHYLDFVDQRTFGHLSVAELVPTPDGAPGGFGSPLAAVPEPVAHIGRDLLDPALDRDVLVERVRRRRTGIKRALLDQTVTSGVGNIYADEALWRARVHYARATDTMTRPVVHRVLDAATEVMTEALVQGGTSFDALYVDVNGESGYFSRSLAVYGRLGEACPRCATPVRRDEFMNRSSFTCPRCQPRPRNGRWNANANANANA
AK018_01780687rnc_1COG0571Ribonuclease 3GTGCTTGCCCTGACCCACCGGTCGTTCGCGCACGAGGCCGGCGGCATCCCCACCAACGAGCGCCTGGAGTTCCTCGGGGACACCGTGCTCGGCCTGGTGGTCACCGAGGCGCTGTACCGGCGTCACCCGGACAAGCCCGAGGGCGAGCTCGCGAAGATGCGGGCGGCGACGGTCTCGCAGCGGTCGCTCGCTGCGGTGGCGCGTCGGCTCGAGCTCGGCAGCTACGTCCTGCTCGGCAAGGGCGAGAAGCGCACCCGCGGGTTCGACAAGGACTCGATCCTGTCGGACACGGTCGAGGCGCTGCTGGGCGCGACCTACCTCTCGCACGGCCTCGAGACGGCCCGCGATCTGGTGCACCGGCTCGTGGACGACACCATGGAGGCCGCCGCCGACCTGGGGGCGGGCCTGGACTGGAAGACGTCCCTGCAGGAGGCCGCGGCCGAGCGCGGGTTCGACGCCCCCGCGTACGAGGTCACCGGCGAGGGCCCCGAGCACGCGCGCCGCTTCTCGGCGCACGTCACGGCCGGGCCGGTCGTCGGGATCGGCGAGGGCACCGCGAAGAAGCATGCCGAGCAGGCCGCCGCGGAGCAGGCCTACCGCGCCGTCGTCGCGCTGCCCGTGCCCGGTGTCGACGAGAGCGACGCCGGAACGGCGACCGACGGCACCGAGCAGCCCGCCGGTGCCTGAMLALTHRSFAHEAGGIPTNERLEFLGDTVLGLVVTEALYRRHPDKPEGELAKMRAATVSQRSLAAVARRLELGSYVLLGKGEKRTRGFDKDSILSDTVEALLGATYLSHGLETARDLVHRLVDDTMEAAADLGAGLDWKTSLQEAAAERGFDAPAYEVTGEGPEHARRFSAHVTAGPVVGIGEGTAKKHAEQAAAEQAYRAVVALPVPGVDESDAGTATDGTEQPAGANANANANANA
AK018_017811260tyrS_2COG0162Tyrosine--tRNA ligaseGTGACCGACGTTCTCGACGAGCTGCACTGGCGTGGCCTGGTGGCGCAGTCCACCGACGAGGCCGCACTGCGCGAAGCACTCGCGGCGGGACCGGTCACCTACTACTGCGGGTTCGACCCGACGGCACCGAGCCTGCACCACGGGCACCTGGTCCAGCTGATCCTGCTGCGGCATCTCCAGCAGGCAGGGCATCGTGCCGTCGCGCTGGTGGGCGGGGCCACCGGGATGATCGGCGACCCGCGTGAGTCGGGCGAGCGGACCCTGAACACCAAGGAGGTTGTCGCCGAGTGGACCGAGCGGCTGAAGGCGCAGGTCTCCAGGTTCCTCGACTTCGAGGGCGACAACCCGGCCGTCCTGGTGAACAACCTGGACTGGATCGACGGGATCTCGGCGATCGACCTGCTGCGCGACATCGGCAAGCACTACCGGCTGGGCACCATGCTGGCCAAGGACACGGTGGCGCGGCGGCTGCGGTCCGACGAGGGCATCAGCTTCACCGAGTTCAGCTACCAGATCCTGCAGGGCATCGACTTCCTCGAGCTGTACCGCCGGCACGGCGTGACCCTGCAGACCGGCGGCAACGACCAGTGGGGCAACCTGCTGTCCGGCGTCGAGCTGGTCCGCAAGTCCGAGGGGAGCGCGGTGCACGCCCTGACGACCCCGCTGATCACCAAGGCCGACGGGACGAAGTTCGGCAAGACGGAGGGTGGCGCCGTCTGGCTCGCGCCCGACCTGATGTCGCCGTACGCCTTCTACCAGTTCTGGCTCAACCAGGCCGACGACGACGTGGTCCGGTTCCTCAAGATCTTCACCTTCAGGTCCCGGGTGGAGATCGAGGAGCTCGAGCGCGAGGTGACCGAGCGTCCCTTCGCCCGCGTGGCCCAGCGCACCCTCGCCGAGGACGTCACGACGCTGGTGCACGGGGCGGATGCCACGGCCGCGGTGATCGCGGCGAGCCAGGCGCTCTTCGGCAGGGGTGAGCTGGGCGGGCTCGACGCCGACATCCTCGCCGGCGCGACGGAGGAGCTTCCCCGGGCCACCGTGCAGGTGGGCGGCGCCGTACTCGACGCGTTCGTGGACAGCGGCCTGGTGTCTTCCAGGGGCGCCGGCCGTCGGGCGATCTCCGAGGGCGGGGCGTACGTCAACAACGTCAAGGTCACCGACGAGGACGCCGTCCTGGCGGCGGACCAGCTGCTCCAGGGGCGGTACGCGATCCTGCGTCGCGGGAAGAAGACGTTGGCCGTCGCTGTCGCCGAGTAGMTDVLDELHWRGLVAQSTDEAALREALAAGPVTYYCGFDPTAPSLHHGHLVQLILLRHLQQAGHRAVALVGGATGMIGDPRESGERTLNTKEVVAEWTERLKAQVSRFLDFEGDNPAVLVNNLDWIDGISAIDLLRDIGKHYRLGTMLAKDTVARRLRSDEGISFTEFSYQILQGIDFLELYRRHGVTLQTGGNDQWGNLLSGVELVRKSEGSAVHALTTPLITKADGTKFGKTEGGAVWLAPDLMSPYAFYQFWLNQADDDVVRFLKIFTFRSRVEIEELEREVTERPFARVAQRTLAEDVTTLVHGADATAAVIAASQALFGRGELGGLDADILAGATEELPRATVQVGGAVLDAFVDSGLVSSRGAGRRAISEGGAYVNNVKVTDEDAVLAADQLLQGRYAILRRGKKTLAVAVAENANANANANA
AK018_01782855COG2200putative signaling proteinATGATCGAGCACTTCTCCTACGGGGCGCTGACACCCGTCCTGTCCTTCGTCCTGTCCTTCCTCGGGTGCGCCGCCGGGTTGTCCTGCACCGCACGGGCCCGGTACTACCGCGGCCGCCGACGTGCGCTGTGGCTGTGGCTCGGAGCTCTCGCCATCGGTGGCACGGGCGTCTGGGTGATGCACTTTGTCGCCATGCTCGGGTTCTCGGTCGACGGTGCCGTGATCCGCTACGACATCCCGCTGACGATCCTCAGCGCCGTGCTGGCCGTGGTGGTGGTCGCCGCCGGGTTGTTCCTCGTGGACCGCTCGCACGGCAGGACGGGGCCGATCCTCGTCGGCGGCGTGATCGCCGGCCTCGGGGTGTCGAGCATGCACTACCTGGGGATGCGCGCGATGCACACCGACGTGGCTCTGTCGTACGACCCGTGGTTGGTGCTGCTGTCGATCGTGATCGGGGTCGTCGCCGCCACGGCGGCCCTCTGGCTCTCGTACCACGTCAGGTCGGTGGGTGCCGGCGCGCTCGCTGCCGTGATCATGGGTGTCGCCGTCTCCGGCATGCACTACACCGGGATGGCGGCGATGCGGATGGGTGAGGGTGACCACGCCGGGCACGCCGCGATGGCGGAACCGCAAGGACTGAGCACCGGTGAGCTGCTGGTCCCGTTGGCGGTCTTCCTGTTCCTGTCGACGTTGGCGCTCGTCGTCACCGCGCTGCTCGCACGGAGCCCGGGAGAGATCCAGGCGGACCGCGACTTCGACTCCTGGCGTTCGCAGCTGCGCGGTGACACCGGACAGCCCGAGGACGACGCCGTCGCGTCCGCCCCTCAGCGCACCCGGCGCGCCACCGGTCGGTAGMIEHFSYGALTPVLSFVLSFLGCAAGLSCTARARYYRGRRRALWLWLGALAIGGTGVWVMHFVAMLGFSVDGAVIRYDIPLTILSAVLAVVVVAAGLFLVDRSHGRTGPILVGGVIAGLGVSSMHYLGMRAMHTDVALSYDPWLVLLSIVIGVVAATAALWLSYHVRSVGAGALAAVIMGVAVSGMHYTGMAAMRMGEGDHAGHAAMAEPQGLSTGELLVPLAVFLFLSTLALVVTALLARSPGEIQADRDFDSWRSQLRGDTGQPEDDAVASAPQRTRRATGRNANANANANA
AK018_01783678COG2094Putative 3-methyladenine DNA glycosylaseATGGACAGCACGGTGACAGCCCACGAGCAGGCCACAGCGGTGCCCTGGCAGGTTCCCGGCACCTCCTGGTACGCGCGGAGCGTGCACACCGTCGCCCGGGACCTGCTCGGCGCCTACCTGGTGCGACGGCACCCCGACGGCGACGTCGTCCTGCGCCTCACCGAGGTGGAGGCCTACGGCGGGTCGGACGACCCTGCGTCGCACGCCTACCGCGGTCCGACGGCGCGCAACCGGTCGATGTTCGGGCGGCCCGGCAGGCTGTACGTGTACCGGCACCTCGGCCTGCACCACTGCGTGAACGTCGTCTGCGGCGCGGTGGGGGACGCGGGCGCGGTGCTGCTGCGCGCCGGCGAGGTGGTCGACGGCGCGGACCTGGGCAGGAGCCGGCGCGAGGCCGCGGGACGCTGCGACTCAGCCCGGCAGATCGCCCGCGGCCCCGCGCGCCTCGCCGTGGCGATGGCTCTCGACCTGCAGGACGACTCCGCCGACCTGACCGTGCCGGACGGTCCGGTCGCGATCCACCTCCCGGTGGACCCGCTGCCCCGCACGGTCGCGACCGGGCCGCGCGTCGGCGTCGGCGGCGAGGGCGCCGACCCGCGTCGGTTCGGGTGGCGGTCGTGGCTGGTCGACGAGCCGACCGTCTCCTCCTACCGACCGGTGGCGCGCCGGGTGCGCTGAMDSTVTAHEQATAVPWQVPGTSWYARSVHTVARDLLGAYLVRRHPDGDVVLRLTEVEAYGGSDDPASHAYRGPTARNRSMFGRPGRLYVYRHLGLHHCVNVVCGAVGDAGAVLLRAGEVVDGADLGRSRREAAGRCDSARQIARGPARLAVAMALDLQDDSADLTVPDGPVAIHLPVDPLPRTVATGPRVGVGGEGADPRRFGWRSWLVDEPTVSSYRPVARRVRPGPT0014885_595DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014885-yxlJ|aag-K03652NANA
AK018_01784630cmk_1Cytidylate kinaseGTGACCGTTCCTGCGGACGTGCTCGCGGACCTGGTGCGCCGGGTCCACGACGCTCCGCCGCGGATGCCCGAGCCGGGTACCGCGCCCCCGTGGCGCGGTACCCGGCTCGTGTGCGTCGACGGTCCGGCGGGCTCCGGCAAGACCTCGCTCGCCACCCAGCTCGCCGTCGAGCTGTGCTGCCAGGTGGTGCACATGGACGACCTGTACAAAGGCTGGCAGGACGGTCCGGACGGCGGTGCCAGCCGGCTCGCGCGCCTCGTTGTGGAACCGCTGGCCGCGGGCCGGCCGGGGGAGTACCGGCGCTACGACTGGTACCGGGGGTCGTGGGCCGAGCGCCACGCCGTGCCCGTGGCACCGTTCCTCGTCGCGGAGGGCTGCGGATCCGCGGCACGCGTCGTCGACCCCTGGGCGGCGCTGAAGATCTGGGTCGAGGCCGACGCCGAGGAGCGGTTGCGGCGAGCGGTCGCCCGCGACGGCGAGGCGGCGCGGTCCCACCTGCAGCGGTGGATGCAGGACGAGGCCCGGCACTACGCTGCGGAGCAGACGCGCGCACGGTCCGACGCGCACCTCGACGGGTTCGGTCGGACACCGGCAACGGGTGAGCAGGAGATCCGATGGACAGCACGGTGAMTVPADVLADLVRRVHDAPPRMPEPGTAPPWRGTRLVCVDGPAGSGKTSLATQLAVELCCQVVHMDDLYKGWQDGPDGGASRLARLVVEPLAAGRPGEYRRYDWYRGSWAERHAVPVAPFLVAEGCGSAARVVDPWAALKIWVEADAEERLRRAVARDGEAARSHLQRWMQDEARHYAAEQTRARSDAHLDGFGRTPATGEQEIRWTARNANANANANA
AK018_017851443argH_2COG0165Argininosuccinate lyaseATGAGCGACGAGACCCTGCCCGACGGCGCGTCCGACGACGGGCCGGTCGCCCTGTGGGGCGGCCGGTTCGCCGGCGGGCCCGCTCCCGAGCTGGCACGGCTGAGCAAGTCGACCGACTTCGACTGGGCGCTCGCCCAGTACGACATCCGGGGCTCGCGCGCCCACGCCGAGGTGCTGCACGCCGCGCGCCTGCTGAGCGACGACGAGCTCACCGCCATGCACGAGGCGCTCGACCGGCTCTCCGCCGACGTCGCCTCCGGCGCGTTCGCGGCCGCCCCGCACGACGAGGACGTGCACACCGCCCTCGAGCGCGGTCTGATCGAGCGCGCGGGCGAGGAGCTGGGCGGCAAGCTGCGGGCGGGCCGTTCGCGCAACGACCAGATCGCCACGCAGGTGCGCATGTACCTGCGTGACCACGCCCGCGTCGTCGCCCAGCAGCTCGTGACCGTCGTCGACGAGCTCATCACGCAGGCCGAGGCGGCCGGCGAGGCCGTCATGCCGGGCCGCACCCACCTGCAGCACGCCCAGCCCGTGCTGCTGGCCCACCACCTGCTGGCCCACGTGTGGCCGCTGCTGCGCGACATCGACCGGCTGATCGACTGGGACGTGCGGGCCGCTCGCTCGCCGTACGGTTCCGGGGCGCTCGCGGGGTCGTCGCTGGGCCTCGACCCGGCCGCCGTCGCCGCGGGGCTCGGGTTCGACGGTCCGGTGGAGAACTCGATCGACGGCACCGCGTCGCGGGACGTCGTGGCGGAGTTCGCGTTCGTCGCGGCGATGATCGGTATCGACCTGTCGCGGATCTCCGAGGAGATCATCCTGTGGAACACCAAGGAGTTCGGGTTCGTCCGCCTGGACGACGCCTGGTCCACGGGGTCGAGCATCATGCCGCAGAAGAAGAACCCCGACATCGCCGAGCTGGCCCGCGGCAAGTCCGGGCGGCTCGTCGGTGACCTCACGGGTCTGCTCACCACGCTCAAGGGCCTGCCCCTGGCGTACAACCGCGACCTGCAGGAGGACAAGGAGCCGGTCTTCGACCAGGTCGGCACCCTGACGGTGCTGCTGCCGGCGTTCGCGGGCATGGTCCGGACCCTGACCTTCGACACGGCGCGGATGGCCGAGCTCGCCCCGCAGGGCTTCTCCCTGGCCACGGACGTCGCCGAGTGGCTCGTGCGCCAGGGCGTGCCCTTCCGGGTCGCCCACGAGGTCGCCGGAGCGTGCGTGCGGGTGTGCGAGGACCGCGACGTGGAGCTGTGGGACCTGACGGACGCCGACCTGGCCGACATCTCCGAGCACCTGACGCCGGACGTGCGCGAGGTGCTGTCCGTGGCCGGCTCCGTCGCCTCCCGCGACGCCGTCGGGGGCACGGCACCGGTGCGGGTCGCCGAGCAGCTCGAGGCGGCCAAGGAACGGGCCACCGAGTTCCGCTTCTGGGCCGAGGGCTGAMSDETLPDGASDDGPVALWGGRFAGGPAPELARLSKSTDFDWALAQYDIRGSRAHAEVLHAARLLSDDELTAMHEALDRLSADVASGAFAAAPHDEDVHTALERGLIERAGEELGGKLRAGRSRNDQIATQVRMYLRDHARVVAQQLVTVVDELITQAEAAGEAVMPGRTHLQHAQPVLLAHHLLAHVWPLLRDIDRLIDWDVRAARSPYGSGALAGSSLGLDPAAVAAGLGFDGPVENSIDGTASRDVVAEFAFVAAMIGIDLSRISEEIILWNTKEFGFVRLDDAWSTGSSIMPQKKNPDIAELARGKSGRLVGDLTGLLTTLKGLPLAYNRDLQEDKEPVFDQVGTLTVLLPAFAGMVRTLTFDTARMAELAPQGFSLATDVAEWLVRQGVPFRVAHEVAGACVRVCEDRDVELWDLTDADLADISEHLTPDVREVLSVAGSVASRDAVGGTAPVRVAEQLEAAKERATEFRFWAEGPGPT0014242_81DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014242-argHA-K14681NANA
AK018_017861230argG_2COG0137Argininosuccinate synthaseATGACTGAACGCGTCGTGCTCGCCTACTCCGGCGGCCTGGACACCTCCGTCGCGATCGGCTGGATCGCCGAGGCCACCGGGGCCGAGGTCGTCGCCGTGGCCGTCGACGTCGGCCAGGGTGGCGAGGACCTCAACGTCATCCGCCAGCGCGCCCTCGACTGCGGTGCCGTGGAGGCCTACGTCGCCGACGCCCGCGACGAGTTCGCGACCGAGTACTGCATGCCCGCCCTGCAGGCCAACGGCCTCTACCTCGACCGGTACCCGCTGGTCTCGGCGATCTCGCGGCCGGTCATCGTCAAGCACATGGTGCGTGCCGCGCGCCAGTTCGGCGCCAAGACCGTCGCGCACGGCTGCACGGGCAAGGGCAACGACCAGGTCCGGTTCGAGGTGGCCACCACCTCGCTCGCCCCGGAGCTCACCTCCATCGCGCCGGTGCGCGACCTCGCGCTGACCCGCGAGAAGGCGATCGACTACGCCGAGAAGCACGACCTGCCGATCGCGACGACGAAAAACAACCCGTTCTCCATCGACCAGAACGTCTGGGGCCGCGCCGTCGAGACGGGCTTCCTCGAGGACATCTGGAACGAGCCCACCAAGGACGTCTACTCCTACACCGACGACCCGACGTTCCCGCCGGTCGCCGACGAGGTCGTCATCACCTTCGAGCAGGGGATCCCCGTGGCGCTCGACGGCGTCGCGGTCACCCCGCTGCAGGCCATCGAGGAGATGAACCGCCGCGCGGGCGCCCAGGGCGTGGGCCGGATCGACATCGTCGAGGACCGCCTCGTGGGCATCAAGTCCCGCGAGGTGTACGAGGCACCGGGCGCGATGGCGCTCATCGCCGCCCACCAGGAGCTCGAGAACGTGACCCTCGAGCGCGAGCAGGCCCGTTTCAAGAAGGGTGTCGAGCAGCGCTGGGGCGAGCTCGTCTACGACGGCATGTGGTTCTCGCCGCTGAAGAAGAGCCTCGACACGTTCGTCGCCGACACCCAGAAGTACGTCTCCGGCGACATCCGCCTCGTGCTGCACGGTGGCCGCGCCACGGTCACGGGCCGCCGCTCGGAGGCGTCGCTGTACGACTTCAACCTCGCGACCTACGACGAGGGCGACGCCTTCGACCAGTCGCACGCCAAGGGCTTCATCGAGATCTACGGCCTGGCCGCCAAGCAGGCCGCAGCCCGGGACGAGCGGTTCGGCAACGGCCCGGACTTCGGCGTGGGGACCCTCTGAMTERVVLAYSGGLDTSVAIGWIAEATGAEVVAVAVDVGQGGEDLNVIRQRALDCGAVEAYVADARDEFATEYCMPALQANGLYLDRYPLVSAISRPVIVKHMVRAARQFGAKTVAHGCTGKGNDQVRFEVATTSLAPELTSIAPVRDLALTREKAIDYAEKHDLPIATTKNNPFSIDQNVWGRAVETGFLEDIWNEPTKDVYSYTDDPTFPPVADEVVITFEQGIPVALDGVAVTPLQAIEEMNRRAGAQGVGRIDIVEDRLVGIKSREVYEAPGAMALIAAHQELENVTLEREQARFKKGVEQRWGELVYDGMWFSPLKKSLDTFVADTQKYVSGDIRLVLHGGRATVTGRRSEASLYDFNLATYDEGDAFDQSHAKGFIEIYGLAAKQAAARDERFGNGPDFGVGTLPGPT0020130_2233DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020130-argG-K01940NANA
AK018_01787546argR_2COG1438Arginine repressorATGAGCACCACGTCCGGGCCGGGTCACGGGCCCGCGCCTGCCACCAAGGCGGCCCGGCACGCGCGGATCATCGAGATCGTGGGCCGTACCGCGATCCACTCCCAGGCCGAGCTCGCCCGCGAGCTCGCCGACGAGGGCCTCACCGTCACCCAGGGCACCCTCTCGCGCGACCTCATCGAGCTGCGCGCCGAGAAGGTCCGCAGCTCCTCGGGTGCGCTGGTCTACGCCGTGCCCGGCGAGGGCGGCGACCGCAGCGTCCGTGCCGCGTGCGTCGACGGCCAGGACACCGGCTACCTCGCCGCACGGCTGGCCCGCCTGTGCGCCGACCTGCTCGTCTCCGCGGAGGCCTCCGGCAACCAGGTGGTGCTGCGCACCCCGCCCGGCGCCGCGAACTACCTGGCCTCCGCCATCGACCACTCCGTCTTCCCCGGGGTCCTCGGCTGCATCGCCGGGGACGACACGATCCTCGTGATCTCCCGGGACCCCGCCGGCGGCGACGACCTCGCCCGCCGGTTCCTCGAGCTCACGACGTCCCCCGACGCCTGAMSTTSGPGHGPAPATKAARHARIIEIVGRTAIHSQAELARELADEGLTVTQGTLSRDLIELRAEKVRSSSGALVYAVPGEGGDRSVRAACVDGQDTGYLAARLARLCADLLVSAEASGNQVVLRTPPGAANYLASAIDHSVFPGVLGCIAGDDTILVISRDPAGGDDLARRFLELTTSPDAPGPT0020105_222DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020105-ahrC-K03402NANA
AK018_01788936argF_2COG0078Ornithine carbamoyltransferaseATGCCCCGCCACTTCCTGCGCGACGACGACCTGACGTCTGCCGAGCAGCGCGAGGTGCTCGAGCTCGCGTGGGCCTTCCGGCAGGACCGGTTCGTCCGCACCCCGCTCGCCGGCCCCCAGGGGGTCGCCGTGCTCTTCGACAAGCCGACCCTGCGCACCCAGGTCTCGTTCGCCACCGGCATCGCCGAGCTGGGCGGCTTCCCGCTGACCGTGGACGGCCGCCTCGCCCAGATCGGCGTGCGCGAGTCCGTCGCGGACGTCACCCGCGTCCTGGACCGTCAGGTGTCCGCGATCGTGTGGCGCACGTTCGGGCAGGACCGCCTCGAGGAGATGGCCGCCATCTCGCGGGTCCCGGTGATCAACGCGCTGACCGACCAGTTCCACCCCTGCCAGATCCTGGCGGACCTGCTCACGATCGCCCAGCACCGCGGCGGCCTGTCCGCGCTGTCCGGGCAGCGGATGACCTACGTCGGCGACGCCGCCAACAACATGGGCGCGTCCTACCTGATCGGCGGGGCGACGGCGGGCCTGCACGTCGTCGTGGCCGGGCCGGAGGGCTACCAGCCGGCGTCCGACGTCGTCGCGCGCGCCACCGAGATCGCGGCGAGCACCGGCGGGTCCGTCACCGTCACGACCGACGCCGCGGCCGCCGTCGCGGGTGCCGACGTCGTCGTCACCGACACCTGGGTGTCGATGGGCGACGAGGACTCCGCGGCGCAGCGGGTCGAGGACCTGCTGCCGTACCAGGTCACGCCCGCACTGCTGGAGACGGCCGCCGACGACGCGATCTTCCTGCACTGCCTGCCGGCCTACCGCGGCAAGGAGGTGGCCGCGGAGGTCATCGACGGTCCCCGGTCCGCCGTGTGGGACGAGGCCGAGAACCGCCTGCATGCCCAGAAGGCCGTGCTGACGTTCCTGCTGGAGGCCGCACGATGAMPRHFLRDDDLTSAEQREVLELAWAFRQDRFVRTPLAGPQGVAVLFDKPTLRTQVSFATGIAELGGFPLTVDGRLAQIGVRESVADVTRVLDRQVSAIVWRTFGQDRLEEMAAISRVPVINALTDQFHPCQILADLLTIAQHRGGLSALSGQRMTYVGDAANNMGASYLIGGATAGLHVVVAGPEGYQPASDVVARATEIAASTGGSVTVTTDAAAAVAGADVVVTDTWVSMGDEDSAAQRVEDLLPYQVTPALLETAADDAIFLHCLPAYRGKEVAAEVIDGPRSAVWDEAENRLHAQKAVLTFLLEAARPGPT0020080_3394DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020080-arcB|argF|argI-K00611NANA
AK018_017891254argD_2COG4992Acetylornithine aminotransferaseATGAGCGACCTGACCACCACCGGCCACGAGCTGACCTCGGACGGGTGGACCCGGGCCTACACGGGTTCCGTCATGGACACCTTCGGCCCGCCGCAGCGCATCCTCGTGCGCGGGGACGGCTGCGAGGTCTGGGACGCGGACGGCAACCGGTACCTGGACCTGCTGGCCGGGATCGCCGTCAACGCCGTCGGGCACGCGCACCCGACGCTCACGGCGGCGGTCAGCGCGCAGCTCGGCACGCTGGGGCACGTCTCGAACTTCTTCGGCACCCCGGCGCAGATCACGCTGGCCGAACGGCTGCTGCAGCTCGCGCAGGCCCCCGCAGGTTCGCGGGTGTTCTTCGCCAACTCCGGCACCGAGGCGAACGAGGCCGCCTTCAAGATGACGCGGCGCACCGGACGCACCCGGGTGCTGGCCCTCGAGGGCGGGTTCCACGGCCGCACGATGGGTGCCCTGGCGCTGACGGCCAAGGCCGCGTACCGCGAACCGTTCGAACCGCTGCCCGGCGGGGTCGAGCACCTGCCCTTCGGGGACACGGCTGCGCTCGAGGAGGCCTTCTCCGCCGACGCGGTCGCCGCGCGCGGCGAGGTCGCCGGCCTCGTCGTCGAGCCCGTCCAGGGCGAGGCGGGCGTGCGCGAGCTCCCGGCCGGCTACCTGCCGCAGGCCCGCCGGCTGACCTCGGACGCAGGCGCGCTGCTGGTGCTGGACGAGGTGCAGACCGGCGTGGGGCGCACGGGGGAGTGGTTCGCCCACCAACACACCGACCTGGGCGGTGGGATCGTGCCCGACGTCGTGACCCTCGCCAAGGGGCTCGGTGGCGGGTTCCCCGTCGGTGCCGTGATCGCCTACGGCGAGGGCCCGGCGGCCCTGCTCGGCCGGGGGCAGCACGGCACCACGTTCGGCGGGAACCCGGTGGCGGCCGCCGCGGCCCTGGCGACGCTGGGCGTGCTGGACCGCGACCGGCTGCTCGCGAACGCCACGGAGGTGGGCGAGACCCTGCGCCGGGCCGTCGCCGGCCAGGACAACCCCCTGGTGGCGGGCGTGCGGGGACGCGGCCTGCTGCTGGCGGTCGAGCTCACGCGTCCGGTGGCGGCCGACGTCGCGCGGCTCGCCCTCGACGCCGGCTTCATCGTCAACCCCGTGGCGCCCGACGCCGTCCGCCTGGCCCCACCCCTGATCCTCACGGCCGAGCAGGCGCTGGAGTTCGCCGCGTTCCTGGCCGACGTGACCGTTCCCGAACCGGAGAAGAGCTGAMSDLTTTGHELTSDGWTRAYTGSVMDTFGPPQRILVRGDGCEVWDADGNRYLDLLAGIAVNAVGHAHPTLTAAVSAQLGTLGHVSNFFGTPAQITLAERLLQLAQAPAGSRVFFANSGTEANEAAFKMTRRTGRTRVLALEGGFHGRTMGALALTAKAAYREPFEPLPGGVEHLPFGDTAALEEAFSADAVAARGEVAGLVVEPVQGEAGVRELPAGYLPQARRLTSDAGALLVLDEVQTGVGRTGEWFAHQHTDLGGGIVPDVVTLAKGLGGGFPVGAVIAYGEGPAALLGRGQHGTTFGGNPVAAAAALATLGVLDRDRLLANATEVGETLRRAVAGQDNPLVAGVRGRGLLLAVELTRPVAADVARLALDAGFIVNPVAPDAVRLAPPLILTAEQALEFAAFLADVTVPEPEKSPGPT0014253_476DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821NANA
AK018_01790951argB_2COG0548Acetylglutamate kinaseATGAGCGACACGAACACCGCTGCGCCCGACCCCGGGTTCCGGTTCGACACCCGTACCGACCTGCGCCCCGACCAGAAGGCCGAGGTGCTGGTCGAGGCTCTGCCCTGGCTGCAGGAGTTCGCCGGGGCGCTCGTCGTGGTCAAGTACGGCGGCAACGCCATGGTCGACGACCGGCTCAAGGCCGCGTTCGCCCAGGACATGGTGTTCCTGCGGCAGGTCGGGCTGCGTCCCGTCGTCGTGCACGGCGGCGGCCCCCAGATCTCCAGCATGCTCGAGCGCGTCGGCATCGACTCCGAGTTCCGCGGCGGCCTGCGCGTCACCACGCCGGAGGCCATGGACGTGGTGCGCATGGTGCTCGTCGGCCAGGTGCAGCGCGAGCTCGTCGGGCTGCTCAACGCCCACGCCCCCCGCGCCGTCGGGCTGTCGGGGGAGGACGCCGGGCTGTTCGGCGCCGTGCGCCGCCACGCCACGGTCGACGGCGAACCCGTCGACGTCGGGCTCGTGGGCGACGTCGTGCAGGTCAACCCGGGCGCGGTGCTGGACCTGCTCGACGCCGGCCGCATCCCCGTGGTCTCCACCGTCGCGCCGGACGTCGACGACCCCACCCAGGTTCTCAACGTGAACGCCGACACCGCCGCCGCGGCGCTCGCGGTCGCGCTGGGCGCCAAGAAGCTCGTCGTGCTGACCGACGTCGAGGGCCTGTACACCAACTGGCCGGACAAGGGCTCGCTGGTCGAGGAGATCACCGCCGGCGAGCTCGCCACCCTGCTGCCGAGCCTGACCTCGGGGATGGTGCCCAAGATGGAGGCCTGCCTGCGCGCGGTGTCCGGCGGCGTCCCCAAGGCGTCGGTCATCGACGGCCGGCAGGCCCACTCCCTCCTGCTGGAGGTCTTCACCACCCGGGGCAACGGCACGATGGTCGTGCCCGACACGACGGAGCAGCACGCATGAMSDTNTAAPDPGFRFDTRTDLRPDQKAEVLVEALPWLQEFAGALVVVKYGGNAMVDDRLKAAFAQDMVFLRQVGLRPVVVHGGGPQISSMLERVGIDSEFRGGLRVTTPEAMDVVRMVLVGQVQRELVGLLNAHAPRAVGLSGEDAGLFGAVRRHATVDGEPVDVGLVGDVVQVNPGAVLDLLDAGRIPVVSTVAPDVDDPTQVLNVNADTAAAALAVALGAKKLVVLTDVEGLYTNWPDKGSLVEEITAGELATLLPSLTSGMVPKMEACLRAVSGGVPKASVIDGRQAHSLLLEVFTTRGNGTMVVPDTTEQHAPGPT0014249_226DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014249-argB-K00930NANA
AK018_017911188argJ_2COG1364Arginine biosynthesis bifunctional protein ArgJGTGAGCGTCACCGCACCCCAGGGATTCCGGGCCGCCGGCGTCGCCGCCGGACTGAAGTCCACCGGAGCTCGCGACGTCGCCGTCGTCGTCAACGACGGGCCGCTGGCCACCGCGGCCGCGGTGCTGACGTCCAACCGCGTCCAGGCGGCGCCCGTGCTCTGGACGCGCCAGGCGGTGTCCGACGGCGCCGCACGTGCGGTGGTCCTCAACTCCGGCGGGGCGAACGCCTGCACGGGACCCGACGGGTTCGCCGACACCCACCGCACGGCCGAGCACGCCGCCGACGTGCTGTCCGCCGCCGCGGGGCCGGGGGGCGAGGTCGGCGCCGGCGACGTGCTCGTGTGCTCCACCGGGCTGATCGGCGTCCGGATCGACCTGGCCGCGCTGCTCGGCGGCGTGGACGCCGCGGTGGACGCGCTGCACGCCGCGGGCGGCGACGAGGCGGCGCACGCCATCATGACCACCGACACCGTCGCCAAGCAGGCGCTCGCGCAGCGTGACGGATGGAGCGTCGGCGGCATGGCCAAGGGCGCGGGCATGCTGGCGCCGGGACTGGCCACGATGCTCAGCGTCGTCACCACCGACGCCGTCGTCGACGCCGCCACCGCCGACGCCGCGCTGCGGGCCGCCACGCGCACCACCTTCGACCGGGTCGACTCCGACGGCTGCCTGTCCACCAACGACACCGTGATTCTGCTCGCCTCCGGCGCCTCGGGCGTCGAGGTCGCCGAGGACGAGCTCGCCGCGGCGCTGACGGAGGTGTGCGCGGACCTCTCCCGCCGGCTCGTCGCCGACGCCGAGGGCGCCTCCCACGACATCGCCGTGACCGTGACGAACGCGTCCGACGAGGACGCCGCCGTCGCCGTGGCGCGCGCCGTGACCCGCTCCAACCTGTTCAAGACCGCGATCTTCGGCAACGACCCCAACTGGGGACGCATCGTCTCCGCCGTCGGCACGGTGCCCGAGCACGTCGCGCCCTACGACCCGCTCACCCTCGACGTCACCGTCAACGGCGTCCAGGTGTGTCGCGCGCAGGGCGTCGGCGAACCCCGCGAGCTCGTCGACCTCGCCGCCGACCGCGAGGTGCACGTCGAGATCGACCTGCACGCCGGGACGGCGAGCGCCACGGTCTGGACCAACGACCTCACCCACGACTACGTCCACGAGAACAGCGCGTACTCCTCATGAMSVTAPQGFRAAGVAAGLKSTGARDVAVVVNDGPLATAAAVLTSNRVQAAPVLWTRQAVSDGAARAVVLNSGGANACTGPDGFADTHRTAEHAADVLSAAAGPGGEVGAGDVLVCSTGLIGVRIDLAALLGGVDAAVDALHAAGGDEAAHAIMTTDTVAKQALAQRDGWSVGGMAKGAGMLAPGLATMLSVVTTDAVVDAATADAALRAATRTTFDRVDSDGCLSTNDTVILLASGASGVEVAEDELAAALTEVCADLSRRLVADAEGASHDIAVTVTNASDEDAAVAVARAVTRSNLFKTAIFGNDPNWGRIVSAVGTVPEHVAPYDPLTLDVTVNGVQVCRAQGVGEPRELVDLAADREVHVEIDLHAGTASATVWTNDLTHDYVHENSAYSSPGPT0014244_2678DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014244-argJ-K00620NANA
AK018_017921086argC_2COG0002N-acetyl-gamma-glutamyl-phosphate reductaseATGGCCACCACCCACCCGACCCGGGACCGACTGCGCGTCGCCGTCGCCGGTGCGTCCGGCTACGCGGGCGGCGAGTTCCTCCGCCTGGCCGTGCAGCACCCGCACCTCGAGATCGGCGCCCTGACGGCCCACTCGAACGCCGGCACGCCCCTGGGGACCGTGCAGCCGCACCTGCGCTCGCTCGCGGACCGGGTGCTCGAGCCGACCACCGCCGAGGTGCTGGCCGGTCACGACGTCGTCGTCCTCGGCCTGCCGCACGGTGCCTCGGGTGAGCTCGCCGCCCAGCTCGGCGAGGACGTGCTCGTGCTCGACCTCGGAGCCGACCACCGTCTCGCCTCGGCCGCCGACTGGCAGGCCTTCTACGGCTCCGAGCACGCCGGCACCTGGCCCTACGGGCTGCCCGAGCTGATCGTCGCGGACGACGCCGGCGCCCGTACCCAGCGCGAGCGGCTGGCCGGGGTCCGCCGCGTCGCCGTCCCGGGGTGCAACGTCACCGCGGTCACGCTCGGGCTCCAGCCCGGGATCGCCGCCGGCCTGCTCGACCCGAGCGACCTCGTCGCCGTGCTGGCCAACGGGTTCTCGGGCGCCGGCAAGGCGCTCAAGCCGCACCTGCTGGCCGCGGAAGGGCTCGGTGCGGCGTCCCCGTACGCCGTCGCCGGCACGCACCGTCACATCCCGGAGATCACCCAGAACCTGCGCACCGCGGGTGCGGACGCGGTCTCCATCAGCTTCACGCCCACGCTGGTGCCGATGGCCCGCGGCATCCTCGCCACGGCGACCGCGCGTCTCGCGCCCGGTCGGGCGGCGGACGCCGACGGCGTCCGGGCCGTGTGGGAGCAGGCGTACGCCGACGAGCCGTTCGTCGAGCTGCTGCCCGCCGGGCAGTGGCCCTCGACCGTCGCCACCCTCGGCAGCAACGCCGCCCTGGTCCAGGTGGCCCTCGACGAGGCCGCCGGCCGCGTCGTGACCGTCACCGCGATCGACAACCTGGTCAAGGGCACCGCCGGTCAGGCGGTGCAGGCCATGAACCTCGCCCTCGGTCTGCCCGAGACCGCCGGGCTCGCCACCGAAGGAGTCGCCCCGTGAMATTHPTRDRLRVAVAGASGYAGGEFLRLAVQHPHLEIGALTAHSNAGTPLGTVQPHLRSLADRVLEPTTAEVLAGHDVVVLGLPHGASGELAAQLGEDVLVLDLGADHRLASAADWQAFYGSEHAGTWPYGLPELIVADDAGARTQRERLAGVRRVAVPGCNVTAVTLGLQPGIAAGLLDPSDLVAVLANGFSGAGKALKPHLLAAEGLGAASPYAVAGTHRHIPEITQNLRTAGADAVSISFTPTLVPMARGILATATARLAPGRAADADGVRAVWEQAYADEPFVELLPAGQWPSTVATLGSNAALVQVALDEAAGRVVTVTAIDNLVKGTAGQAVQAMNLALGLPETAGLATEGVAPPGPT0014251_253DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014251-argC-K00145NANA
AK018_01793489hypothetical proteinGTGCAGATCCGTGCCGCCCGCAGCGAGGACTGGCCCGCCCTGTGGCAGATCGTCGAACCGATCGTCCGTGCGGGGGAGACCTACACCTATCCCACCGACCTGACCGGCGACCGGGCGCGCGAGCTGTGGCTCGCTGGCCCGCCGGTCGAGACGTGGCTCGCCGAGGACGACGGGGTCGTGCTCGGGACGGTGCGGACGTCGCCGAACAAGCCGGGGCACGGCGACCACGTGGGCACGGCGGCGTTCATGGTCGCCCCGGCGGCGCGTGGCCGGGGCGTGGCGGCCGCGCTGGCCGAGCACGTCGTGGTCCGGATGCGTGCGCAGGGTTACCGGGGCATCCAGTTCAACGCGGTGGTCGAGACGAACACGTCCGCCGTCCGGCTCTGGGAGCGGCTGGGCTGGCGGATCGTCGGGACCGTGCCGGAGGCCTTCCGCAGCCCGTCCCGCGGCCTGGTCGGGCTGCACGTGATGTACCGCTCGCTGGTCTGAMQIRAARSEDWPALWQIVEPIVRAGETYTYPTDLTGDRARELWLAGPPVETWLAEDDGVVLGTVRTSPNKPGHGDHVGTAAFMVAPAARGRGVAAALAEHVVVRMRAQGYRGIQFNAVVETNTSAVRLWERLGWRIVGTVPEAFRSPSRGLVGLHVMYRSLVNANANANANA
AK018_01794984qorA_2COG0604Quinone oxidoreductase 1ATGCGCGCAGTCGAGGCCCGCAGCGCGGGTAGCCCCGAGGTCCTGTCCGTCGTCGAACGCCCCGAACCGGCACCCGGTCCGACCGACCTGCTGGTCCGCGTCGCAGCGGCCGGGGTCAACTTCATCGACACCTACCGCCGCGCCGGGGTGTACCCGACGGACTTCCCGCACGTCGTCGGGGTCGAGGGTGCCGGGACCGTCGAGGCGGTCGGGACCGACGTGACCGGGTTCACCGTCGGCGACCGCGTCGCGTGGGCCGCCGCGCCCGGCTCCTACGCCGAGACCGTCGCCGTGCCCGCCGCCGAGGCCGTGCCGGTCCCCGACGGGCTGGACCTCACGACCGCCGCCGCGCTGCCCCTGCAGGGCATGACCGCCCACTACCTCGTCGCCTCGACGTTCGAGGTCGGGCCCGGGCACGACGTCCTGCTCACCGCCGGCGCCGGCGGAGTCGGACTGCTCGCCACCCAGCTCGCCGCCGCCCGCGGCGGGCGCGTCCTGACCACCGTGTCCACACCCGAGAAGGCGGCGCTGTCGTCCGCGGCCGGCGCCGCGCACACCATCGACTACGCCGCGATGGACGACCTCGCCACCGAGCTCCCCGCCGTCGTGCGCGAGCTCACCGACGGCGCCGGCGTGCACGTGGCGTACGACGGCGTCGGTGCCGCGACGTTCGACGCCTCCCTGGCGTCGCTGCGCCGCCGCGGGACGCTCGTCCTGTTCGGCGGGGCGTCCGGACAGGTGCCGCCGTTCGACCTGCAGCGCCTCAACGCCGCCGGCTCGCTGTACGTCACCCGCCCCACGCTCGCGCACTACACGGCGACCCGGGCCGAGCTCGAGTGGCGGGCCGCCGAGGTCCTCGGAGCCGCCGCCGACGGCGACCTCGACGTCCGCGTCGGGGCGACCTACCCGCTGGCCGACGCCGCCGAGGCCCACCGGGCGCTCGAGGCGCGCCGCACCACCGGCAAGGTGCTGCTCGTGCCGTGAMRAVEARSAGSPEVLSVVERPEPAPGPTDLLVRVAAAGVNFIDTYRRAGVYPTDFPHVVGVEGAGTVEAVGTDVTGFTVGDRVAWAAAPGSYAETVAVPAAEAVPVPDGLDLTTAAALPLQGMTAHYLVASTFEVGPGHDVLLTAGAGGVGLLATQLAAARGGRVLTTVSTPEKAALSSAAGAAHTIDYAAMDDLATELPAVVRELTDGAGVHVAYDGVGAATFDASLASLRRRGTLVLFGGASGQVPPFDLQRLNAAGSLYVTRPTLAHYTATRAELEWRAAEVLGAAADGDLDVRVGATYPLADAAEAHRALEARRTTGKVLLVPPGPT0013255_4864DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_01795792fgd_6F420-dependent glucose-6-phosphate dehydrogenaseATGAGCACACCTGCGACCGACCGGCCCGTCCGCATCGCCGTCCAGCTCCAGCCCCAGCACGCCGACTACGCCCAGATCCGCGACGCCGTGCTGCGCGCCGAGGACCTGGGCGTCGACGTCGTCTTCAACTGGGACCACTTCTACCCGCTGTCCGGCGACCCGGACGGCAAGCACTTCGAGTGCTGGACCATGCTCGGCGCCTGGGCCGAGCAGACCGAGCGCGTCGAGATCGGCGCCCTGGTCACCGGCAACGGCTACCGCAACCCCGACCTGCTCGCCGACATGGCCCGCACCGTGGACCACATCTCCGGCGGCCGGCTGATCCTGGGCATGGGCGCCGGCTGGTTCGAGAAGGACTACGAGCAGTTCGGCTACGAGTTCGGCACCGCCGGCTCGCGCATCGCCCAGCTCGCCGAGGCCATGCCCCGCATCCGCCGCCGCCTCGCTGCCGGCAACCCCGCACCCACCCGCGACATCCCGATCCTGATCGGCGGCGGCGGGGAGAAGAAGACGCTGCGCATCGTCGCCGAGCACGCGGACGTCTGGCACTCCTTCGGCGACGTCGACACGCTGCGCCGCAAGTCGGCGATCCTCGACGAGCACGGCGAGACCGTCGGGCGCGACACCGCCGCACTGGTCGAGCGGTCCGTCGGGGTCCAGGGACCGCCGGAGGCGACCGGTCCCGGCCTGGTCGCGGCGGGAGCGACCCTCCTGACGATCGGCGTCAACGGCCCGGACTACGACCTGTCGACGGCCGCGCAGTGGGTCGCCTGGCGCGACGCCCAGGGCTGAMSTPATDRPVRIAVQLQPQHADYAQIRDAVLRAEDLGVDVVFNWDHFYPLSGDPDGKHFECWTMLGAWAEQTERVEIGALVTGNGYRNPDLLADMARTVDHISGGRLILGMGAGWFEKDYEQFGYEFGTAGSRIAQLAEAMPRIRRRLAAGNPAPTRDIPILIGGGGEKKTLRIVAEHADVWHSFGDVDTLRRKSAILDEHGETVGRDTAALVERSVGVQGPPEATGPGLVAAGATLLTIGVNGPDYDLSTAAQWVAWRDAQGNANANANANA
AK018_01796837hypothetical proteinGTGGCTGAGCGGCAGGTCGCCCCCGCACGCACGGCCCTCGTCACCGGCGCGACCCGCGGCATCGGCCGCGCGGTCGCGCTCGGGCTGGCCGACGCCGGGCTCGACGTGGCGCTGCTGGCCCGCGACGCCGACCGTCTCGCGCAGGTCGCCGACGAGGTCCGCGCCGCCGGCCGCACGGCCGTCGTCCTGCCGTGCGACGTGACGGACCCCGGTGCGGTCGCCGCGGCGGTGCGGCAGGCCGAGGACGAGCTCGGGTCCGTCGACCTGCTCGTCAACAACGCCGGCCGCATCGACGCCGAGGTCCCGGCCTGGGAGGCCGACGTCGACGAGTGGTGGCAGGTGATGGAGACCAACGTGCGCGGGCCGTTCCTGCTGGTGCGCGCGGCGGTCCCCGGCATGCTCGCCCGCGGTGGCGGGCGTGTGGTCGACCTGAACAGCGGCTCGGGCTCGCACGACATGACCTACTCCAGCGCCTACAACCTGTCCAAGACGGCACTGATGCGCCTGGGGCACCATCTGCACGCCACCGGGTACGGGCAGGGGCTGCGCACGCTCGAGCTGGCGCCCGGCGTCGTCTCCACGGACATGACGGCCTCGATGGACGTCCACGCCGGGCGGACGGAGTGGACCCCGGTCGACCGGACGGTCGACGTCACAGTCGCGTTCGCCCGCGGCGAGCTCGACGCGTGCTCGGGATGGTTCGTGCGGGTCTCGGACGACACCCCGGACTCGTTGCGGGCGACGGCGGACCGTGCGACGTCGGCGGCGCCGCGGCACCTGCGGGTTCTGCCCGCGGGTGACGACGACGCGCTGCGCCAGGCGCTCACGGGCCGTTGAMAERQVAPARTALVTGATRGIGRAVALGLADAGLDVALLARDADRLAQVADEVRAAGRTAVVLPCDVTDPGAVAAAVRQAEDELGSVDLLVNNAGRIDAEVPAWEADVDEWWQVMETNVRGPFLLVRAAVPGMLARGGGRVVDLNSGSGSHDMTYSSAYNLSKTALMRLGHHLHATGYGQGLRTLELAPGVVSTDMTASMDVHAGRTEWTPVDRTVDVTVAFARGELDACSGWFVRVSDDTPDSLRATADRATSAAPRHLRVLPAGDDDALRQALTGRPGPT0003180_1250DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_017972598pheT_2COG0072Phenylalanine--tRNA ligase beta subunitATGCCCCGCATCGTTGCTGACTGGCTCGCCGACCACGTCGAGCTGCCCGCGGACCTGACCACCTCCCGGCTCGCCGCGGACCTCGTCCGGGTCGGCCTGGAGGAGGAGGAGATCCACCCCGCGGCCGTCACCGGCCCGCTGGTGGTCGGCCGCGTCCTGGCGATGACGCCGGAGCCGCAGAAGAACGGCAAGACGATCAACTGGTGCCTGGTCGACGTCGGCCCCGAGCACAACGCCACGCAGATCAAGGGCGTCGACGACGCCGATGTGCCGGCGGGCGGTGCGCGCGGCATCGTCTGCGGCGCGCACAACTTCTCCGTCGGGGACCTCGTCGTCGTCTCGCTGCCGGGCACGGTGCTGCCGGGCGGGTTCGCGATCGCCTCGCGCAAGACGTACGGACACGTCTCCGACGGCATGATCTGCTCCACTAAGGAGCTGGGCCTCGGCGAGGACCACGCCGGCATCCTCGTGCTCACCGAGGCGGGCTTCGACGCCGCGGACCTCACGCCCGGTCAGGACGCGGTCGCGCTGCTCGGCCTGGGTGACGAGGTCCTCGAGATCAACGTCACCCCGGACCGCGGGTACGCCTTCAGCTACCGCGGCGTGGCGCGCGAGTACGCCCACTCCACCGGCGCCTCGTTCGTCGACCCCGGCATCCCGACGGGCGCCGAGCCCGCGGCCACGGCCGACGGGTTCGCCGTGGAGGTGGACGACGCCGCGCCGATCGACGGGCAGCCAGGTTGCGACCGCTTCGTCACCCGCATCGTGCGGGGCATCAACCCGGTCGCGCCGACCCCCGCGTGGATGAAGCGGCGGCTCGAGGGATCGGGGATGCGGTCGATCTCGCTGGCCGTGGACGTGACCAACTACGTGATGCTCGACCTGGGCCAGCCCCTGCACGCCTACGACCTCGACCGCGTGGCGGCGCCGATCGTGGTCCGCCGTGCCGCGGCGGGGGAGCGGCTGACCACGCTCGACGACGTCGACCGAGCCCTGGACGGCGAGGACCTGCTGATCACCGACTCGCCCGACGGCGCCCGCGGGTCGCGCGTGCTGGGCCTGGCCGGCGTGATGGGCGGCGCGTCGTCCGAGGTCTCCGCGACCACGTCGGCCGTGCTCGTCGAGGCCGCGCACTTCGACCCGGTGACGGTGGCCCGCACCGCCCGGCGCCACAAGCTGCCCTCCGAGGCGGCCAAGCGGTTCGAGCGCGGGGTCGACCCCCTGCTGCCCGCCGTCGCGGCGCAGCGTGTGGTGGACCTGCTCGTCGAGCACGGGGGCGGGACGCCCGACGGCGCCGTCAGCGACCTGGACACCACGAGCCCGCCCGAGCCGGTCACCCTCGACGTGACGCTCCCGTCGCGGACCTCCGGGGTGGAGTACAGCCCGGGGCAGGTCGTCGGCATCCTCGAGCAGATCGGCTGCACCGTGGCCGGTGCCGACGCCCTGAGGGTCACGCCGCCCACGTGGCGCCCGGACCTGACCGAGCCCGCCGCGCTGGTCGAGGAGGTCGTCCGCATCGCGGGCTACGACCAGATCCCGTCGGTGCTGCCCGCGGCTCCCGGCGGCCGGGGGCTGACGCCCGAGCAGCGCACCCGCCGTTCGGTGGCCCGCGCGCTGGCCGACGCCGGGCTGGTCGAGGTGCTGTCGTACCCGTTCGTGGGTGCCCAGGACCTGGACGCGCTCGGCCTGCCGACCGACGACCCCCGCCGCGATGCCCTGCGGCTGGCGAACCCGCTCGCCGAGGACCGCCCGCTGCTGCGCACCCACCTGCTGGTGACCCTCCTGGAGACCGCCCGCCGCAACGTGTCGCGCGGCATCGCGGACGTGGCCGTCTTCGAGCTCGGGCTGGTGACCCGGCCGGCCCCCGGCGCCCCCGCGGCGCCGCAGCTCCCGGTCGGCGTCCGCCCGTCGTCCGAGGACCTCGCCGCGCTCGCCGCCGCCACCCCGGACCAGCCGCGCCGGGTCGCCGGGGTGCTCGCGGGCGACCGCGCCCCCGCCGGCTGGTGGGGTGCGGGTCGGCCGGTCGACTGGGCGGACGCCGTCGAGGCGGCCCGGCTCGTGGCCGACGTGGTCGGCGTCGACGTCACCGTCGAGGCCGACCGCGAGCACCTGCCCTGGCACCCGGGCCGCTGCGCGCGGTTCACCGTCGTGGCACCGGACGGGTCGCAGCACACCGTCGGGCACGCCGGTGAGCTCCACCCCACGGTGGTGGAGGGGCTCGGTCTGCCCCGCCGGACGGCGGCGTTCGAGCTGGACCTGACCGCGTTGACCGCTGCCGCGTCCGGCGAGCCGGTCACCGCGGTGCCGGTGTCGGCGTTCCCCGCCGCCAAGGAGGACTTCGCCCTCGTGGTGGACGCCGACGTGCCGGCGGCGGACGTCGAGGCCGCCGTCGTCGCCGGTGCCGGCGAGCTCGTCGAGCGCGTCGAGCTGTTCGACGTCTTCACCGGCGACCAGGTCGGTGCGGGCAGGAAGTCGCTGGCCTACTCGGTGCGGCTGCGCGCCGCCGACCGGACGCTGACCGCCGAGGAGGTGCGGTCCGCGCGTGACGGCGTCGTGGCGGTCACCGCCGAGCGCGTGGGGGCGGTCCTGCGTGGCTGAMPRIVADWLADHVELPADLTTSRLAADLVRVGLEEEEIHPAAVTGPLVVGRVLAMTPEPQKNGKTINWCLVDVGPEHNATQIKGVDDADVPAGGARGIVCGAHNFSVGDLVVVSLPGTVLPGGFAIASRKTYGHVSDGMICSTKELGLGEDHAGILVLTEAGFDAADLTPGQDAVALLGLGDEVLEINVTPDRGYAFSYRGVAREYAHSTGASFVDPGIPTGAEPAATADGFAVEVDDAAPIDGQPGCDRFVTRIVRGINPVAPTPAWMKRRLEGSGMRSISLAVDVTNYVMLDLGQPLHAYDLDRVAAPIVVRRAAAGERLTTLDDVDRALDGEDLLITDSPDGARGSRVLGLAGVMGGASSEVSATTSAVLVEAAHFDPVTVARTARRHKLPSEAAKRFERGVDPLLPAVAAQRVVDLLVEHGGGTPDGAVSDLDTTSPPEPVTLDVTLPSRTSGVEYSPGQVVGILEQIGCTVAGADALRVTPPTWRPDLTEPAALVEEVVRIAGYDQIPSVLPAAPGGRGLTPEQRTRRSVARALADAGLVEVLSYPFVGAQDLDALGLPTDDPRRDALRLANPLAEDRPLLRTHLLVTLLETARRNVSRGIADVAVFELGLVTRPAPGAPAAPQLPVGVRPSSEDLAALAAATPDQPRRVAGVLAGDRAPAGWWGAGRPVDWADAVEAARLVADVVGVDVTVEADREHLPWHPGRCARFTVVAPDGSQHTVGHAGELHPTVVEGLGLPRRTAAFELDLTALTAAASGEPVTAVPVSAFPAAKEDFALVVDADVPAADVEAAVVAGAGELVERVELFDVFTGDQVGAGRKSLAYSVRLRAADRTLTAEEVRSARDGVVAVTAERVGAVLRGNANANANANA
AK018_017981059pheS_2COG0016Phenylalanine--tRNA ligase alpha subunitATGTCTGCGCCCGATCCGTCGTCGGACACCCCGAACCCGCTGGACCCCGCCGCGCTCGATGCCGCGGTGGACGCCGCGCTGGCCGACGTCGGCTCGGCGTCGGACCTGGACGAGCTCAAGGCCGTTCGTCTCCGGCACGCCGGTGACCGGAGCCCGCTCGCGCTGGCGAACCGCGCGATCGGGTCGCTGCCCGGTCCGGACAAGGCCGCGGCAGGCAAGAACGTCGGTCCGCGGCGGGGCCGGGTCAACCAGGCCCTCGCGGTCCGGCTGACCGAGCTCGAAGCCGAGCGGGACGCGCGCGTGCTCGTCGAGGAGACCGTCGACGTCACGCTGCCCGTCGGCCGCCGGCCGGTGGGGGCGCGGCACCCGATCGAGCTGATCCAGGAGCGTGTCGCCGACTTCTTCGTCGGCATGGGCTGGGAGATCGCCGACGGGCCCGAGGTCGAGGCCGAGTGGTTCAACTTCGACGCGCTGAACTTCGGGCCGGACCACCCGGCGCGCCAGATGCAGGACACGTTCTACGTCGACGGCGGCAAGAACCTCGTGCTGCGCACCCACACCTCCCCGGTGCAGGCGCGCTCCCTGCTGGAGCGCGGGGTGCCGCTGTACATCGCGTGCCCCGGCAAGGTGTTCCGCACCGACGCCCTGGACGCCACGCACACACCGGTCTTCCACCAGGTCGAGGGTCTCGCGGTCGACAAGGGCCTGACCATGGCGAACCTCGTCGGTACCCTCGACGCCTTCGCCCGGGCGATGTTCGGCCCGGAGGCCAGGACCCGCCTGCGTCCGAGCTTCTTCCCGTTCACCGAGCCCAGCGCCGAGATGGACCTGTGGTTCCCGCAGAAGAAGGGCGGGGCCGGCTGGATCGAGTGGGGCGGCTGCGGCATGGTGCACCCGAACGTGCTGCGCGCCGCGGGCGTCGACCCGGAGGAGTACTCCGGGTTCGCGTTCGGCATGGGTATCGAGCGCACGCTGATGCTGCGCCACTCGATCGCTGACATGCACGACATCGTGGAGGGCGACGTGCGCTTCTCCACGCAGTTCGGGACGGAGATCTGAMSAPDPSSDTPNPLDPAALDAAVDAALADVGSASDLDELKAVRLRHAGDRSPLALANRAIGSLPGPDKAAAGKNVGPRRGRVNQALAVRLTELEAERDARVLVEETVDVTLPVGRRPVGARHPIELIQERVADFFVGMGWEIADGPEVEAEWFNFDALNFGPDHPARQMQDTFYVDGGKNLVLRTHTSPVQARSLLERGVPLYIACPGKVFRTDALDATHTPVFHQVEGLAVDKGLTMANLVGTLDAFARAMFGPEARTRLRPSFFPFTEPSAEMDLWFPQKKGGAGWIEWGGCGMVHPNVLRAAGVDPEEYSGFAFGMGIERTLMLRHSIADMHDIVEGDVRFSTQFGTEINANANANANA
AK018_01799639thpR_2RNA 2',3'-cyclic phosphodiesteraseGTGCGTCTCTTCACGGCCGTGTACCCCGACGTGGCGGCCCTGGCCCACCTCGACCTCGCGCTCGGCGGTGTCGGCGGTCCGGCGGTCGCCGACCCGGGAGCCGGGCTGCGGTGGGTGCCCCGGGCGCAGCGGCACGTCACGCTCGCCTTCCACGGCGAGGTGCCCGACGGCGCGGTGCCCGGCTACGTGGACGCGCTCACCGAGGCTCTGGCCGCCACGGCCCCGTTCCAGCTCGCCCTGGCGGGCAGCGGCACGTTCGGCGGCCGGACCCTGTGGGTCGGGCTCACCGAGGACGTGGACGCCCTGCGGGCGCTGTCCCGGCGGGTGGCCACCGCTGCCGAGGACGCGGGGATCGGCGCCGCCGACCGCGCCGGCGGGCGCCCCCACCTGACGGTGGCGCGGGCGTCGTCGGCCCTGGTCGGTGCGGACCGGGCGCGCGAGCGCCGTGCGCGCCGCGGCCGGACGCCGTCGTCGCCGGGCTCACCCTTCGCGAGCTGGGCGCGGGCCCTGGCGGTCTACCGTGGGCCGTCGTGGACCGTCGACGCGGTGCACGTGGTGCACTCGCGGCTCGGTGCGGGACGGTCCGGCGGCCCGGCCCACGAGGACGCGGCGGTGCTCGCGCTGCCGAGCGGCCCATAGMRLFTAVYPDVAALAHLDLALGGVGGPAVADPGAGLRWVPRAQRHVTLAFHGEVPDGAVPGYVDALTEALAATAPFQLALAGSGTFGGRTLWVGLTEDVDALRALSRRVATAAEDAGIGAADRAGGRPHLTVARASSALVGADRARERRARRGRTPSSPGSPFASWARALAVYRGPSWTVDAVHVVHSRLGAGRSGGPAHEDAAVLALPSGPNANANANANA
AK018_01800360hypothetical proteinATGAAGCGCATCGTCACCGCGGGCGCCGCTGCGCTGCTCGCCGGCCTGGCCACCGTCGCGACCGCGGGCTCCGCCTCGGCGGGCCCGCCCGCCGGCGCGGGCGAGGGCGGCAAGCCCACCGGCGTCGCGTGCCAGCAGCTCGGGCTCGGCGTGCTCCGGGACACCGGTGTCCTGCCGAGCGTGGCCGCCGACGGACTCGAGTACCCGATCGGCAGCGGGAACGTCATCCCGTTCAGCACGGTGCTGGAGATCCACCGTACGGACACCGCGACCGCGAACGCCGTGCTCAAGGACTACGCGGCCGTCCTGCTTCCGGGTGCCGACGTCGGAGCCGCCGTCGATGCCGCCTGCCCGGCCTGAMKRIVTAGAAALLAGLATVATAGSASAGPPAGAGEGGKPTGVACQQLGLGVLRDTGVLPSVAADGLEYPIGSGNVIPFSTVLEIHRTDTATANAVLKDYAAVLLPGADVGAAVDAACPANANANANANA
AK018_01801855aviRb_223S rRNA (uridine(2479)-2'-O)-methyltransferaseATGCCCCGCATCCCCGACGTGACCCTCGCCAACCCGCGGGCCGATCGCGTCAAGCAGGTCAGGGCCCTGTCCGGGCGTCCTGCGCGTTCGCGGCACGGTCAGTTCCTCGTCGAGGGGCCCCAAGGGGTCCGCGAGGCCGTCCGGCACGCCCCCGGACAGGTCCGGGACGTCTACCTCACCGAGACGGCGGCCCGCCGCTACGGCGAGATCGTCGAGGCCGCGTCCGACGCCGGCCGGCGGCTCCACGTGGGCACGCCGGAGGTGCTCGCGGCGATGAGCCCGGACGCCCAGGGTGTCATCGCCGTCGTGCGTACCGCGCCGGTCTCGTTGGGCGAGGCGCTGACCGCGGCCCGCGGCAACCGGCCCCTGCTCGTCGCGGTGCTCGCGACGGTCCGCGACCCCGGGAACGCCGGGACCGTGATCCGCGCGGCGGACGCGGCGGGCGCCGACCTCGTCGTGCTGGCGGGGGACAGCGTGGACGTGCACAACCCGAAGACGGTCCGGTCCACCGCCGGGTCGTTGTTCCACCTGCCCGTGGTCGTGGACGTGACGCTCGGCGAGGCCGTGGCCGAAGTGCACGCCGCGGGGTGCGCCGTGCTCGCCGCCGACGGCGCCGGGCAGCACGACCTCGACGAGCTGCTCGACGTGGCCGGGACCTCGCCGCAGGACGGCGTCCCGGACCTGGCCGCCGACACCGCCTGGATCTTCGGCAACGAGGCGTGGGGTCTGCCCGAGGAGGACCGGGCGCTGGCCGACGCCGTCGTCCGCGTGCCGATCCGTGGCCGGGCGGAGTCCCTCAACCTCGCGACCGCCGCGACGGTCTGCCTCTACGCCAGCGGTCGCGCGCAGCGGTGAMPRIPDVTLANPRADRVKQVRALSGRPARSRHGQFLVEGPQGVREAVRHAPGQVRDVYLTETAARRYGEIVEAASDAGRRLHVGTPEVLAAMSPDAQGVIAVVRTAPVSLGEALTAARGNRPLLVAVLATVRDPGNAGTVIRAADAAGADLVVLAGDSVDVHNPKTVRSTAGSLFHLPVVVDVTLGEAVAEVHAAGCAVLAADGAGQHDLDELLDVAGTSPQDGVPDLAADTAWIFGNEAWGLPEEDRALADAVVRVPIRGRAESLNLATAATVCLYASGRAQRNANANANANA
AK018_01802384rplT_2COG029250S ribosomal protein L20GTGGCACGCGTGAAGCGGGCGGTCAACGCCCACAAGAAGCGCCGTACGACCCTCGAGCGCGCCAGCGGCTACCGCGGCCAGCGTTCCCGTCTGTACCGCAAGGCCAAGGAGCAGGTCACCCACTCCTTCGTCTACTCGTACCGTGACCGGAAGGCCAAGAAGGGCGACTTCCGCAAGCTGTGGATCCAGCGCATCAACGCTGCGGCCCGCCAGCAGGGTCTGACCTACAACCGCTTCGTCCAGGGCCTCAAGGCCGCTGGCGTCGAGGTCGACCGCCGGATGCTCGCCGAGCTCGCGGTCAACGACACCGCCGCGTTCAACGCGCTGGTCCAGGTCGCCAAGAACGCCCTTCCCGAGGACGTCAACGCGCCGAAGGCCGCCTGAMARVKRAVNAHKKRRTTLERASGYRGQRSRLYRKAKEQVTHSFVYSYRDRKAKKGDFRKLWIQRINAAARQQGLTYNRFVQGLKAAGVEVDRRMLAELAVNDTAAFNALVQVAKNALPEDVNAPKAANANANANANA
AK018_01803195rpmI_2COG029150S ribosomal protein L35ATGCCGAAGAACAAGACGCACTCCGGTGCCAAGAAGCGCTTCCGGGTCACCGGCAAGGGCAAGGTCATGCGCGAGCAGGCCAACCGCCGCCACCTGTTCGAGCACAAGTCGAGCAAGCGCACCCGTCGACTGGCGGCCGACCAGGAGGTCGCGCCGGCGGACGTCAAGAACATCAAGAAGATGCTCGGTAAGTGAMPKNKTHSGAKKRFRVTGKGKVMREQANRRHLFEHKSSKRTRRLAADQEVAPADVKNIKKMLGKNANANANANA
AK018_01804645infC_2Translation initiation factor IF-3GTGGTCGCCACGGGAGTCGCCCTGAAGCTGGCCCAGGACGCCGACCTCGACCTGGTCGAGGTCGCCCCGGACGCCCGTCCGCCCGTCGCCAAGCTCATGGACTTCGGCAAGTTCAAGTACGAGTCGGACATGAAGGCGCGCGAGGCGCGGCGCAAGCAGGCCAACACCCTGCTCAAGGAGATCCGCTTCCGCCTCAAGATCGACCCGCACGACTACGCCACCAAGAAGGGGCACGTCGAGCGCTTCCTCTCGGCCGGCGACAAGGTCAAGGTCATGATCATGTTCCGCGGCCGTGAGCAGTCCCGTCCCGAGATGGGTGTGCGGCTGCTGCAGCGCCTCGCGGACGACGTCGCCGAGCTCGGCTTCGTCGAGTCGATGCCGAAGCAGGACGGTCGCAACATGACGATGGTCCTGGGCCCGGTCAAGAAGAAGGCCGAGGCCAAGAGCGAGCAGCGCAAGCGCTCCGCCGAGGTCAACGCCCAGCGCAAGACCAAGTCCGAGGTCAAGGCCGAGGCGCGCGCCCGCGCCGCCCAGGACGGCGACGGCGAGCAGCCGGAGCCCGCCACGGAGCCGGCCGCGGAGCCGGCGACGAGCTCCGCCGCGCCGAAGCCCGGCGGACCGAAGCCGGGACCGGCGTCCCGCTGAMVATGVALKLAQDADLDLVEVAPDARPPVAKLMDFGKFKYESDMKAREARRKQANTLLKEIRFRLKIDPHDYATKKGHVERFLSAGDKVKVMIMFRGREQSRPEMGVRLLQRLADDVAELGFVESMPKQDGRNMTMVLGPVKKKAEAKSEQRKRSAEVNAQRKTKSEVKAEARARAAQDGDGEQPEPATEPAAEPATSSAAPKPGGPKPGPASRNANANANANA
AK018_01805435furA_2COG0735Transcriptional regulator FurAATGTCCACCACCCCCCTCGCCCCCGACGACGTGCAGCTCCTGCGCGACGCCGGCCTGCGCGCCACCGGGGTCCGCCTGGCCGTGCTGCGCGCCCTCGGCGCCCACCAGCACTCCACGGCCGACGACGTCGTGCGGGCCGTGCGGGCCGACCTCGGCGGCGCGTCCGTCCAGGCGGTGTACGACACCCTGCACACCCTGACGGGCGCGGGCCTGCTGCGCCGCATGGAACCCGCCGGCCACCCGGCCCGGTTCGAACGACGGGTGGGCGACAACCACCACCACGTCGTGTGCCGCGAGTGCGGGGCCGTCACCGACATCGACTGCACCGTCGGGCACGCCCCCTGCCTCGTGCCCGGCGACACCCACGGCTTCTCCGTCGACCTCGCCGAGGTGACCTTCTGGGGCCTGTGCCCCCGATGCACCCCGGCCCGCTGAMSTTPLAPDDVQLLRDAGLRATGVRLAVLRALGAHQHSTADDVVRAVRADLGGASVQAVYDTLHTLTGAGLLRRMEPAGHPARFERRVGDNHHHVVCRECGAVTDIDCTVGHAPCLVPGDTHGFSVDLAEVTFWGLCPRCTPARPGPT0003880_810DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711NANA
AK018_018061449katA_2COG0753CatalaseATGACGACCCCGTTCACGACGACGCAGACCGGTTCGCCGGTGGCGAGCGACCAGTACTCCCTGACGGTCGGTGCCGACGGCCCCACCGTCCTGCACGACCGCTACCTGGTCGAGAAGCTCGCGTCGTTCAACCGCGAGCGCGTGCCCGAGCGCAACCCGCACGCCAAGGGCGGTGGCGCGTTCGGCGAGTTCGAGGTCACCGAGGACGTCTCGGCGTACACCAGCGCCGCCGTGTTCCAGCCGGGCGCGAAGTCCGAGACGCTGCTGCGGTTCTCCTCCGTGGCCGGCGAGCAGGGCTCCCCCGACACATGGCGCGACGTGCGCGGGTTCGCGCTGCGCTTCTACACGACCGAGGGCAACCTCGACGTCGTCGGCAACAACACCCCGGTGTTCTTCCTGCGCGACGCGATGAAGTTCCCCGACTTCATCCACTCCCAGAAGCGCCTCGGCGCCTCCGGCCTGCGCGACGCCGACATGCAGTGGGACTTCTGGACCCTGTCGCCGGAGTCCGCGCACCAGGTCACCTACCTCATGGGCGACCGCGGGCTGTCGAGGTCGTGGCGCCACCTCAACGGCTACGGCTCGCACACCTACCAGTGGATCAACGCCGCCGGCGAGCGCTTCTGGGTGCAGTACCACTTCATCTCGAAGCAGGGCGTCGAGAACATGAGCAACGAGGACGCCGAGCGCATCGCCGGCGAGGACGCCGACTACTACCGTCGCGACCTGTTCGAGGCGATCCAGCGCGGCGAGCACCCCTCCTGGGACGTCAAGGTCCAGATCATGCCGTACGAGGACGCCAAGACCTACCGGTTCAACCCGTTCGACATGACGAAGGTGTGGCCGCACGCGGACTACCCGCTGATCAAGGTCGGCACCTTCACCCTGAACCGGAATCCGCAGAACTTCTTCGCCGAGATCGAACAGGCCGCGTTCTCCCCGGGCAACCAGGTGCCGGGCACCGACATCTCGCCGGACAAGATGCTCATGGCGCGGGTGTTCTCCTACAACGACGCGCACCGTCACCGCATCGGCGCGAACTTCAACCAGCTCCCCGTCAACCAGCCGCACGCCGCGCCGGTGAGCACCTACATGCACCAGGGCCCGATGCAGTACCACTTCAACGGTCCGGAGCACCCCGTCTACACGCCGAACTCGTTCGGTGGCCCGGCCGCCGACCCGACGCGCACCGCCGAGGGCAGCTGGGAGGCCGACGGCGAGCTCATGCGCTCGGCGTACACCCTGCACTCCGAGGACGACGACTTCGGGCAGGCCGGCACCCTGTACCGCGAGGTGTTCGACGACGCCGCCAAGGCGCGCTTCCTGGAGACGCTGACCGGCCAGGGCAAGTCGATCACGATCGACGAGATCCGCGAGCGCTTCTTCTGGTACTGGACGAGCGTCGACGCCGAGCTCGGCGCGAAGCTGCGCTCGGAGGTCGCCTCCTGAMTTPFTTTQTGSPVASDQYSLTVGADGPTVLHDRYLVEKLASFNRERVPERNPHAKGGGAFGEFEVTEDVSAYTSAAVFQPGAKSETLLRFSSVAGEQGSPDTWRDVRGFALRFYTTEGNLDVVGNNTPVFFLRDAMKFPDFIHSQKRLGASGLRDADMQWDFWTLSPESAHQVTYLMGDRGLSRSWRHLNGYGSHTYQWINAAGERFWVQYHFISKQGVENMSNEDAERIAGEDADYYRRDLFEAIQRGEHPSWDVKVQIMPYEDAKTYRFNPFDMTKVWPHADYPLIKVGTFTLNRNPQNFFAEIEQAAFSPGNQVPGTDISPDKMLMARVFSYNDAHRHRIGANFNQLPVNQPHAAPVSTYMHQGPMQYHFNGPEHPVYTPNSFGGPAADPTRTAEGSWEADGELMRSAYTLHSEDDDFGQAGTLYREVFDDAAKARFLETLTGQGKSITIDEIRERFFWYWTSVDAELGAKLRSEVASPGPT0014380_3249DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
AK018_01807366hypothetical proteinATGGACCCCATGAGCTCCTCCACCGAACCGGGCGACGTCGCGTCGGCCACCCGCGACATCGCCGACGTGGCCGCCGTCGAGGTCATCACCACCGCCTCCGTCCACCTCATGAGCGCCGCCGCCGTCAAGTGCGGGCTCTCCGACGACCCCCACGCCGACGACCAGCTCGACCTCGACGAGGCACGCAAGCTCATCACCGCGCTGGCCGCGCTCGTCACGGCGTCCGCGCCCGACATCGGCAACCAGCACGCGCGGTCGCTGCGGGACGGGCTGCGCTCGCTCCAGCTCGCCTTCCGCGAGAAGTCCGTGGTGCCCGACGCGCCGGGCGAGGGCCCGGGCGAGAAGTACACCGGGTCCGTCGTCTGAMDPMSSSTEPGDVASATRDIADVAAVEVITTASVHLMSAAAVKCGLSDDPHADDQLDLDEARKLITALAALVTASAPDIGNQHARSLRDGLRSLQLAFREKSVVPDAPGEGPGEKYTGSVVNANANANANA
AK018_01808594hypothetical proteinATGACGGCACCGGGCAGCCCGTGGGAGCCGACGACGACGTCGGCCGTCCCCCCGGCGGACGGGACGACCACCGCACCCCCCGCCCGCGGGCGTGCGGCCCGGATCACCGCCGTCGTCCTGGCCGTCCTGCTGATCGGGGCGCTGGCCACGGGCGGCTACCTCTGGCAGACCACGAGCGCCTGGCAGCAGCACGCCGCCGACTGGGAGACCGAGGCCCAGGGGTACGCCGAGCAGGTCGCCACGCTCCGCGGCGAGCTCGAGGCGACGCGGGCCGAGCTCGACGCCACCACCGAACAGCTCGACACCGCCACCGCACGGATCACCGAGCTCGCCGACGAGAAGGCCCAGCTCGGCGACGAGAACGTCGCGAGCCGGCAGTACCTCGACTACCAGCGTCGGGTCAGCGAGGCCGCCGGCGTCGTGGCCACCGCGCTGGGGCAGTGCACCGCGGCGCAGTCGCAGCTCATCGGCTACCTCAACAACCGCGAGGCCTACGACCAGGCCGACCTCGAGCGCTTCGCCGCCGACGTCGAGGGCCTGTGCGACGAGGCCAACGAGGCCAACGAACAGCTCCAGTCGGAGCTCGCCCAGTGAMTAPGSPWEPTTTSAVPPADGTTTAPPARGRAARITAVVLAVLLIGALATGGYLWQTTSAWQQHAADWETEAQGYAEQVATLRGELEATRAELDATTEQLDTATARITELADEKAQLGDENVASRQYLDYQRRVSEAAGVVATALGQCTAAQSQLIGYLNNREAYDQADLERFAADVEGLCDEANEANEQLQSELAQNANANANANA
AK018_01809747hypothetical proteinGTGACCCGCCGGTCCCGCAGGCACTGCCGCGCCCGCGCCGGCGCCGTGACGGCGCTCGCCGCGTCCCTGACCGCCTGCGCCGCGCTGCCGCCGATGCCGCCGGCCGTCCCCGACGACATCGTGCCGAGCATCGCCGCCCCGACGCTGGCCGCCGCCGACGAGGAGCGCCTCTCCCCCGACGGCTTCGACGCCGTCCAGCGCATGGCGGTGCGCATCCGCAACGTGGGCTGCGGGAACCTGTCGACCGGGTCGGGGTTCGCGGTGGACTCCCACACGCTCATCACCAACCGCCACGTCGTGGCCGAGTCCGAGACCCTCCAGGTCAGCACCTACGACGGTCGCGACATCGACGTCGCGACCACCGGTGCCGCCGCCCTGGCGGACCTGGCGGTCGTGCGGACCCAGGACGCGCTGCCGTCCTCGGCGGCGCTGTCCGGCGCCGACCCCGAGCAGGGCGAGGAGGTCACCGTCGTCGGGTACCCCTCCGGCGGGGAGCTGACCGTCACGGTGGGCCGGGTGATCGGGACGACGACGGACCCGTTGCACGAGAACCTCGGCGAGGTGCTCGTCACGGACGCCGCCGTCGAGCCCGGGTCGTCCGGCTCGGCCGCCCTCGACTCCGACGGCGAGGTCATCGGCGTCGTCTACGCCAAGACCGGCGACGACCGCTCCCTGCTCGTGCCGCAGTCGACGCTCAGCGAGCTGCTGGCCGACGACGACTCCTTCGCGGAGGTCGACCCCTGCTGAMTRRSRRHCRARAGAVTALAASLTACAALPPMPPAVPDDIVPSIAAPTLAAADEERLSPDGFDAVQRMAVRIRNVGCGNLSTGSGFAVDSHTLITNRHVVAESETLQVSTYDGRDIDVATTGAAALADLAVVRTQDALPSSAALSGADPEQGEEVTVVGYPSGGELTVTVGRVIGTTTDPLHENLGEVLVTDAAVEPGSSGSAALDSDGEVIGVVYAKTGDDRSLLVPQSTLSELLADDDSFAEVDPCPGPT0015105_7168DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771NANA
AK018_01810738hypothetical proteinATGAGGTCCATCCAGCCCACCAGCCCGTTCGCCGGCGACGACGGGTCCGCCGACGCCGAGCTCGTCCGTCTGCTCGAGGGTCTGCGCGCCGGGTCCACCCCGCTGCGGGACGTCGTCGCGCGGCTCGCCGACATCCGCGTGCTGGTGCCCGTGCTCGCCGAGGCCGAGGTGACCGGGATCACGGAGCACGACGGAGCCGCGCTCGAGGTCGACAAGGAGGCGTCGGCCGGTGTCGTCGCCCTCGAGTCCCCGGACGGCCGGCGGGCCCTGCCGGTGTTCACGTCGGTGGCCGCGATGCAGGCGTGGCGGTCGGACGCACGCCCCGTGCCCGTCGAGGCGCGACGTGCCGCGCTGTCCGCCGTCGACGAGCAGTGGTCGTTGCTGGTCGTGGACCCGGCCGGGCCGATCACGGTCCAGGTGCCCCGCCCCGCCGTGTGGGCGCTGGCGCAAGGCGTCGAGTGGCGGCCCGCCCTCGTGCCGACGGCGGACGGCCTCGAGGTCGACGCCGAGGTGGCCCGCGCCGTCGGCGACGCCGCGGCGCCCGTGCAGCACGTGGTCCGCGCCCATGCCGAGCCGGGGCGCAAGGCCGAGGTCGCCGTCGTCCTCGCGCTGGACCCGGGCCTGGACCGTGCCGGGCTGGACGCGGTGCTCGGTCAGGTCAACGCGCGTCTCGCGGCGGCGCGACCCATCGCCGACCGCGTGGACTCCCTCGAGCTGCGGATCGCCGCGGCTCGCTGAMRSIQPTSPFAGDDGSADAELVRLLEGLRAGSTPLRDVVARLADIRVLVPVLAEAEVTGITEHDGAALEVDKEASAGVVALESPDGRRALPVFTSVAAMQAWRSDARPVPVEARRAALSAVDEQWSLLVVDPAGPITVQVPRPAVWALAQGVEWRPALVPTADGLEVDAEVARAVGDAAAPVQHVVRAHAEPGRKAEVAVVLALDPGLDRAGLDAVLGQVNARLAAARPIADRVDSLELRIAAARNANANANANA
AK018_01811732hisA_2COG01061-(5-phosphoribosyl)-5-[(5-phosphoribosylamino)methylideneamino] imidazole-4-carboxamide isomeraseATGACCGAACGCCTGGTGCTGCTTCCCGCCGTCGACGTCGCCGACGGCCAGGCCGTCCGCCTCGTCCAGGGCGAGGCCGGCTCGGAGACCTCCTACGGCGACCCGCTCGCCGCCGCGCTGGACTGGCAGTCCGGCGGGGCCGAGTGGATCCACCTGGTCGACCTGGACGCGGCCTTCGGGCGCGGGTCGAACGCGGAGCTGCTCTCCCGGGTCGTGGCGCAGGTCGACGTGCAGGTCGAGCTGTCCGGCGGCATCCGGGACGACGCCTCCCTGGACCGGGCCCTGGCCACCGGTGCCCGCCGCGTCAACATCGGGACCGCGGCGCTGGAGGACCCCGAGTGGACCGCGCGGGTCATCGCCGAGCACGGCGACCAGGTCGCCGTCGGCCTCGACGTGCGCGGGACCACGCTGGCGGCCCGCGGTTGGACGCAGGAGGGCGGCGACCTGTGGGAGGTGCTCGCCCGCCTGGACGAGGCCGGGTGCGCCCGCTACGTGGTCACGGACGTCACGAAGGACGGCACGCTGCGCGGGCCCAACGTCGACCTGCTGCGCGAGGTCGCCTCGCGCACGCCGGCGAAGGTCGTCGCCTCCGGCGGCATCTCCTCGCTCGCCGACCTGGAGGTGCTGCGCACGCTGACCGGCGACGGCGTCGAGGGCGCCGTGGTCGGCAAGGCGCTCTACGCCGGGGCGTTCACGCTCCCCGAGGCGCTCGACGTGGCGGGCCGCGCATGAMTERLVLLPAVDVADGQAVRLVQGEAGSETSYGDPLAAALDWQSGGAEWIHLVDLDAAFGRGSNAELLSRVVAQVDVQVELSGGIRDDASLDRALATGARRVNIGTAALEDPEWTARVIAEHGDQVAVGLDVRGTTLAARGWTQEGGDLWEVLARLDEAGCARYVVTDVTKDGTLRGPNVDLLREVASRTPAKVVASGGISSLADLEVLRTLTGDGVEGAVVGKALYAGAFTLPEALDVAGRANANANANANA
AK018_01812741hisH_2Imidazole glycerol phosphate synthase subunit HisHATGAGCGACGTCCCCGACCTCCTGCCCGACGGCGGCGCCGCGGCCGAGCTGAACGCCCGGCCCGCCCCCGCGCCCCGTGCCGCGGGTCGTCCGCGGGTGGTGGTCCTCGACTACGGGTTCGGCAACGTCCGCTCGGCGGTGCGCGCTCTCGAGCGCGTGGGCGCCGACGTCGAGCTCACCGCGGACCGGCACGCCGCGATCGAGTCCGACGGTCTCGTCGTGCCCGGTGTCGGCGCCTTCGCCGCCTGCATGGAGGGACTGAAGGCCGTCCGCGGCGACCAGGTCGTGGACCGCCGCCTCGCCGGTGGCCGGCCGGTGCTCGGCATCTGCGTCGGCATGCAGGTCATGTTCGACGAGGGCGTGGAGCACGACGTGCGCGCCGACGGCCTGGGGGAGTGGCGCGGGATCGTCGACCGACTCCAGGCACCGGTCGTGCCCCACATGGGCTGGTCCGGCGTCGAGGCCGCCGAGGGATCCGTCCTGTTCCGCGGCGTCGAGCACGAACGCTTCTACTTCGTGCACTCCTACGCGGCGCAGTCCTTCACCCAGGGCCACGACGACGCCGCGGACCCCCGTTTCACCCCGCCGCGGGTGACCTGGTCGACCCACGGGCCCGAGGGCTCCGCCGCCCGGTTCGTCGCCGCGGTGGAGGACGGCCCGCTGTCGGCCACGCAGTTCCACCCCGAGAAGTCCGGCGACGCCGGCGCCACCCTGCTCGAGAACTGGGTGCGGTCCCTCTGAMSDVPDLLPDGGAAAELNARPAPAPRAAGRPRVVVLDYGFGNVRSAVRALERVGADVELTADRHAAIESDGLVVPGVGAFAACMEGLKAVRGDQVVDRRLAGGRPVLGICVGMQVMFDEGVEHDVRADGLGEWRGIVDRLQAPVVPHMGWSGVEAAEGSVLFRGVEHERFYFVHSYAAQSFTQGHDDAADPRFTPPRVTWSTHGPEGSAARFVAAVEDGPLSATQFHPEKSGDAGATLLENWVRSLNANANANANA
AK018_01813543hypothetical proteinGTGCCCGACCAGTTCCACGACGGGTCGCAGCGACCCGACCTGCCCGACGTCCCGGACGACTTCGAGGTCCCCGACGACCTGTCCACCCTCGACGGCGGCTCCGCCGAACCGGAGATCGCGGTGCTCATCACCCAGGTCGCCGACGCCGAGCCCCTGGCCGCGGCGTGCGCCCTGGCCGAGATCGAGGTCGACGCGGTACCCACCCCGGTCGGGGCGCTGGCCGTGCTGCGCGACCGCGGCGGCGAGGCGCCGCAGCACGCGGCGGCCACCGTGTCGGCGGTGGTCAAGGGGGTGCCGCTGATCCTGGTCACCCGCACCGGCGAGCAGCTGACCTGCCACCGGTACGTCGACGGGGCCGACGAGGGCCGGCTCCCGGCGGGCCTCGTCCTGGGTGGCGCCCCCGACGCCCTCGAGGACCTGCTGACCGGCCACCTGACGATCGACGACCTGCCGGGCGTGGTGCCGTCGGCCGGTATCGGACGGCTCAAGGCGGTGCGCATGCTCTCGTCCGTGTCCCGCAAGGCGCGCCGGAGGAAGCGATGAMPDQFHDGSQRPDLPDVPDDFEVPDDLSTLDGGSAEPEIAVLITQVADAEPLAAACALAEIEVDAVPTPVGALAVLRDRGGEAPQHAAATVSAVVKGVPLILVTRTGEQLTCHRYVDGADEGRLPAGLVLGGAPDALEDLLTGHLTIDDLPGVVPSAGIGRLKAVRMLSSVSRKARRRKRNANANANANA
AK018_01814603hisB_2COG0131Imidazoleglycerol-phosphate dehydrataseATGGCAGGCCGCGCCGCGCGGGTGGAGCGCGCCACGAGCGAGTCGACCGTCGTCGTCGAGCTGGACCTCGACGGCACCGGCCGCACCGACATCTCCACGACCGTGCCGTTCTACGACCACATGCTCACGGCCCTCGGCAAGCACTCGTTGATCGACCTGACGGTCCAGGCGCACGGCGACACCGACATCGACGCCCACCACACCGTCGAGGACACCGCGATCGTGCTCGGGGAGGCCCTGAAGCAGGCCCTGGGCGACAAAAAGGGCATCTCCCGGTTCGGCGACGCGCTCGTCCCGCTGGACGAGGCGCTGGCCCAGGCCGTCGTCGACGTCTCCGGGCGCCCGTACCTGGTGCACTCCGGAGAGCCCGCCGGCCAGGAGTACCACCTGATCGGCGGCCACTTCACCGGCTCGCTGACGCGGCACGTGCTCGAGTCGATCGCGCACCACGCCGGGATCTGCCTGCACGTGCGGGTCCTGGCCGGGCGCGATCCCCACCACATCGTGGAGGCCCAGTTCAAGGCCCTCGCCCGTGCGCTGCGGGCCGCCGTCGCCCTCGACGAGCGCGTCGAGGGCATCCCGTCGACCAAGGGAGCGCTGTAGMAGRAARVERATSESTVVVELDLDGTGRTDISTTVPFYDHMLTALGKHSLIDLTVQAHGDTDIDAHHTVEDTAIVLGEALKQALGDKKGISRFGDALVPLDEALAQAVVDVSGRPYLVHSGEPAGQEYHLIGGHFTGSLTRHVLESIAHHAGICLHVRVLAGRDPHHIVEAQFKALARALRAAVALDERVEGIPSTKGALPGPT0020305_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
AK018_018151131hisC_2COG0079Histidinol-phosphate aminotransferaseGTGACCACCCCTGCCGTGCCGGTCCTTCCGCTGCGCCCCGAGCTCGCCGACGAGGTGCCCTACGGGGCGCCGCAGCTCGACGTGCCCGTGCTGCTCAACGTCAACGAGAACCCGTTCGCGCCCTCCGAGGAGGTCGTGGCCACGATCGCCGCGAGCGTCGCCGAGGCCGCCCGGGGGCTGAACCGGTACCCGGACCGCGACTTCCCGGGACTGCGCCAGGACCTGGCCGACTTCCTCGCCGTCGAGTCCGGCGTCCGGCTCGACCCGTCCCAGGTCTGGGCGGCGAACGGGTCGAACGAGGTCATGCTGCACCTGCTGCAGGCGTTCGGCGGCCCCGGACGGACCGCCGTGTCGTTCGCGCCGACGTACTCGATGTACCCCGAGTACGCCCGCGACACGCACACGCGGTGGGTGACGGGGCGCCGCGCCGAGGACTTCACGATCGACCCCGCCGCGGCCGTGGCCCTGATCGAGGCGGAGCGGCCCTCGGTGGTCCTGCTCGCCAGCCCGAACAACCCGACCGGCACGGCGCTGCCCCGCGAGACCCTCGAGGCCGTCCTGGACGCCGCGGCCCGGGTGCCCGCCGTCGTCGTCGTCGACGAGGCGTACGCCGAGTTCCGGCGCGAGGGCACGCCGTCGGCCCTGGACCTGCTGGCCGACTACCCGCACCTGGCGGTCACCCGGACCATGTCCAAGGCGTTCGCCGCCGCCGGGATGCGCCTGGGCTACCTCGCGGCGTCGACCGCGCTGGTCGACGCGCTGCGCGTGGTCCGGCTTCCCTACCACCTGTCGGCCGTCACGCAGGCGGCCGCGCGGGCGGCGCTCGCCCACCGCGACTCGCTGCTCGCCCAGGTGGCGGACCTGCGTGCGCAGCGCGACGCGCTCGTGGCATGGTTGCGCACGCAGCGTGCGGGGGGCCGCGCGCTGCAGGTGGCCGACACCGACGCCAACTTCGTGCTGTTCGGCACGTTCGACGACCGGCACGCCGTCTGGCAGGGGCTGCTGGACCGCGGCGTGCTCATCCGCGAGACCGGGCCGGAGGGCTGGCTGCGGGTCTCCGTCGGCACCCCGGCCGAGACCCGGGCGTTCCAGGACGCCCTGACCGACGTGATCGCCCAGGAGGAACTGTGAMTTPAVPVLPLRPELADEVPYGAPQLDVPVLLNVNENPFAPSEEVVATIAASVAEAARGLNRYPDRDFPGLRQDLADFLAVESGVRLDPSQVWAANGSNEVMLHLLQAFGGPGRTAVSFAPTYSMYPEYARDTHTRWVTGRRAEDFTIDPAAAVALIEAERPSVVLLASPNNPTGTALPRETLEAVLDAAARVPAVVVVDEAYAEFRREGTPSALDLLADYPHLAVTRTMSKAFAAAGMRLGYLAASTALVDALRVVRLPYHLSAVTQAAARAALAHRDSLLAQVADLRAQRDALVAWLRTQRAGGRALQVADTDANFVLFGTFDDRHAVWQGLLDRGVLIRETGPEGWLRVSVGTPAETRAFQDALTDVIAQEELPGPT0020305_1133DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
AK018_01816444petC_2Cytochrome b6-f complex iron-sulfur subunitATGAACCAGCCCGCACCGTGCTGCACCCGACGTCAGGTCCTGCGGGGGGCCTCGGTCGCCGTCGGCGGCCTCGCCGTGGGCGGAGCCCTCGCCGCCTGCTCGGAGGGCACCGACCCGGAGGCGTCGGTCGACGACGTGGCCACCTCCGGCGCGGGGGAGGTCGTCGTGGCGCTCGCCGACGTGCCCGTGGGCGGTGCCGTCAGCGCCGAGGTGGCCGGGGTGGCGGTGCTGGTGACGCAGCCTTCCGAGGGGGAGGTGCACGCCTTCAGCGCCGTGTGCACCCACCAGGGCTGCACCGTCACCCCCGGCGACGGCGTGCTCGAGTGCCCCTGCCACCGGTCGGTGTTCTCCCTGACCGACGCCGCGGTGCAGTCCGGTCCCGCACCGGAGCCCCTGGGCGAGGTCGCCGTGGAGGTCGTGGACGGCGACGTCGTGGTCGCCTGAMNQPAPCCTRRQVLRGASVAVGGLAVGGALAACSEGTDPEASVDDVATSGAGEVVVALADVPVGGAVSAEVAGVAVLVTQPSEGEVHAFSAVCTHQGCTVTPGDGVLECPCHRSVFSLTDAAVQSGPAPEPLGEVAVEVVDGDVVVAPGPT0030830_290PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-PHOTOSYNTHESIS_ELECTRON_TRANSFER,PGPT0030830-petC-K02636
AK018_01817423hypothetical proteinATGTCCATCATGGATGCATCCTCGGGCCAGGTGCCAGCCGCGCACGGTCGGGCCCGGCCCCCGGTGGCCCGCCTCTGGCGCGTGGTGGCGGCCGTGGGCGTCCTGGTCTCGGCGGCGGTGCACCTGGTGCTGTGGGTCGACGGGTACCGCGACATCGCCGTCGTGGGTCCGCTGTTCCTCCTCAACGGCGTCGGCGGCGCGGTCCTGGCCGTGCTCCTGGTGCTGTGGCGGCACTGGCTCCCGCTGGTCGGCGGGATCGGGTTCGGCGCCGCCACGCTGCTGGCGTTCGTGGCGTCGACGACGGTCGGGTTCTTCGGCGTGACGAGCGCCCAGGCGGGGCCCAACGAGTGGATCGCGGCGGTGTCGGAGGTGCTGGCCGTGGTCGCCTCGACGGCGGCTCTGCTGCGCGAGCAGTCCCGCTGAMSIMDASSGQVPAAHGRARPPVARLWRVVAAVGVLVSAAVHLVLWVDGYRDIAVVGPLFLLNGVGGAVLAVLLVLWRHWLPLVGGIGFGAATLLAFVASTTVGFFGVTSAQAGPNEWIAAVSEVLAVVASTAALLREQSRNANANANANA
AK018_018182532deaD_2ATP-dependent RNA helicase DeaDGTGGCCTCCACCGACGACCCGTACGCCGACCTCGTGCCCGCCTGGACCGACGACGACGTGCCCCCGGACGACGACGCACCGCCGCCGGAGGACGACCTCGCCCCGCCGGACGACGCCCACCTGGCCGGCGCCCCAGTGCCGCGCGGTGCCGGCACCGGCACCGGCGCCGACGAGCGTCCCGGCGCCCCGGGACCGTCCCCGGACCGCGCGGAGGCGACCAAGCGCGCCAAGCTGGCGATGCTGCGCGGGCTGATGGACACCGCGGGCACCGGAGACGGCTCGAGCACGCTGCGCGAGCAGGCCACGACGGCGCTGCGCGCCCTGGTCGGCCGCGACGACGTCGAGCTGCGCGAGGACCAGTGGAGCGCGATCGAGGCCCTCGTCGCCTTCCACCGCCGCGCCCTCGTGGTCCAGCGCACGGGCTGGGGCAAGTCGGCCGTGTACTTCGTCGCCACGTCGCTGCTGCGGTCCCGCGGCGCGGGACCGACGGTCATCGTCTCGCCCCTGCTCGCGCTCATGCGGGACCAGATCGCCGCCGCCGGCCGGGCCGGCATCCGCGCCGTGACGATCAACTCGGCCAACGTCGCGGAGTGGGACGAGATCCACCGGCGCATCGCGGCCGGCGAGGTCGACGTCCTGCTGTGCTCGCCGGAGCGCCTCAACAACCCGGCGTTCCGCGACGAGGTGCTGCCACGGCTGGCGGCCGACGCCGGTCTCGTCGTCGTCGACGAGGCGCACTGCATCTCCGACTGGGGCCACGACTTCCGGCCCGACTACCGGCGCATCCGCACCCTGCTGGCCGACCTGCCGCCGGGGATCCCGGTGCTCGCCACCACGGCCACCGCCAACGAGCGGGTCACCCGCGACGTGGCCGAGCAGCTCGCGGTGCGCACCGACGGCGTCGACGCCGGGACCACCACCGTCGAGGAGGCACTGGCGACCACCGAGGACGTGCTGGTGCTGCGCGGGGGCCTGGACCGCGAGTCGCTGCACCTGGCGGTCCTCGAGCTGGGCGACCAGCCGACCCGGGTGGCCTGGCTGGTCGAGGCGCTGCAGGAGATCGACGGGTCGGGCATCGTCTACTGCCTGACCGTGTCCGCGGCCGAGGAGGTCGCCTCCCAGCTCCGCGGCGCGGGACTGGCCGTGGAGGCCTACACCGGCCGCACCGACCCGACCCAGCGCGAGCAGCTCGAGGAGGACCTCAAGGACAACCGTGTCAAGGCCCTCGTGGCGACGTCGGCGCTCGGGATGGGCTTCGACAAGCCCGACCTGGCGTTCGTCGTCCACCTGGGCGCGCCGTCGTCGCCGATCGCCTACTACCAGCAGGTGGGGCGTGCGGGACGTGGCGTCGACGACGCCGTCGTGGTGCTCCTGCCGGGCCACGAGGACCGCGCCATCTGGGACTGGTTCGGATCGCAGGCCTTCCCCGCCGAACCGCAGGTACGGGCGGCGCTCGCCGCGCTGGACGGCGCCGGTCAGACGATGTCCACGGCCGCGCTGGAGACGCACGTCGACCTCAAGCGCTCCCGGCTGGAGACCATGCTCAAGGTTCTCGACGTCGACGGCGCGGTCCGCCGGGTCCAGGGCGGCTGGGTGGCCACCGGCGCCGAGTGGTCCTACGACGCCGCCCGCTACGAGCGCGTGGAGCAGGCACGGCGTGCCGAGCAGCGGGCGATGCTGGACTTCATCACCACCGACGGGTGCCGGATGCGGTTCCTGCGCGATCAGCTCGACGACCCGGAGCTGGCCGAGGGCTGGACGTGCGGTCGGTGCGACCGGTGCGGCGGCGTCGCCCTGCCGCCTCCGCCCGACGCCGAGACGGTCGAGTCCGCCCGCTCCGAGATGGACCGTCCGGGCCTCGAGGTGGCACCGCGCAAGATGTGGCCGTCCGGGCTGTCGTCGCTCGGCCTCGAGGTCAAGGGCAAGATCGCCGAGTCGGAGCGCGCCGAGCCGGGCCGCGCGGTCGCGCGGTTCGACGGCCTCGGATGGTCCAACCCGGTCCGCGACCTCTTCGCACCGACGACGCCCGACGGCGAGACGCCGGTCGCGCTGCGGGGTGCGGCGGCCCGCGTGCTGGACGACTGGGACGCGATCCGCGAGCCCTCCGAGGCCGGCACGGACGGCGCGGAGGTCGGCACGGACGGCGCGGGTGCCGGGGCGGACGGCGGCCCGGGGGCCCTGCTCGTCGAAGGGGTCGTGGCGGTCCGGTCGGTCACCCGTCCGCAGCTGACCTTCCACCTGGCCAACGGTCTGGCGTCCTACCTCGGCGTACCGCTCATCGGTGCGGTCGGGCCGGCGCCGGGCGCCGACGAGCCCGGCCGCCACGACGTCAACTCGGCGATGCGCCTCGCGGGGGTGGCGCGGCGGCTGCGTCTCGAGCTGAACGCGGCGGCGCTGTCCGGCCTGCCCGGGCGTCGGGTGCTGCTCGTGGACGACTGGACCGAGTCCGGTTGGACCCTCACGGTCGCGGCGCGGCTGCTGCGCGAGGCCGGGGCGGCGGCCGTGTTCCCGTTCGTGCTCGGCGTGCGCTAAMASTDDPYADLVPAWTDDDVPPDDDAPPPEDDLAPPDDAHLAGAPVPRGAGTGTGADERPGAPGPSPDRAEATKRAKLAMLRGLMDTAGTGDGSSTLREQATTALRALVGRDDVELREDQWSAIEALVAFHRRALVVQRTGWGKSAVYFVATSLLRSRGAGPTVIVSPLLALMRDQIAAAGRAGIRAVTINSANVAEWDEIHRRIAAGEVDVLLCSPERLNNPAFRDEVLPRLAADAGLVVVDEAHCISDWGHDFRPDYRRIRTLLADLPPGIPVLATTATANERVTRDVAEQLAVRTDGVDAGTTTVEEALATTEDVLVLRGGLDRESLHLAVLELGDQPTRVAWLVEALQEIDGSGIVYCLTVSAAEEVASQLRGAGLAVEAYTGRTDPTQREQLEEDLKDNRVKALVATSALGMGFDKPDLAFVVHLGAPSSPIAYYQQVGRAGRGVDDAVVVLLPGHEDRAIWDWFGSQAFPAEPQVRAALAALDGAGQTMSTAALETHVDLKRSRLETMLKVLDVDGAVRRVQGGWVATGAEWSYDAARYERVEQARRAEQRAMLDFITTDGCRMRFLRDQLDDPELAEGWTCGRCDRCGGVALPPPPDAETVESARSEMDRPGLEVAPRKMWPSGLSSLGLEVKGKIAESERAEPGRAVARFDGLGWSNPVRDLFAPTTPDGETPVALRGAAARVLDDWDAIREPSEAGTDGAEVGTDGAGAGADGGPGALLVEGVVAVRSVTRPQLTFHLANGLASYLGVPLIGAVGPAPGADEPGRHDVNSAMRLAGVARRLRLELNAAALSGLPGRRVLLVDDWTESGWTLTVAARLLREAGAAAVFPFVLGVRNANANANANA
AK018_018193288hypothetical proteinATGGACGCCGTGACCGCCGCCCCGCCCCGCCTCGACCCGCTCGTGGTCGGCGGCGTCGTCGGGGCCACGATGTTCCGCCGGGGGCAGGGGTACCAGCGTGCCGGCATGGTCCGCTCGTGGCGCTGGGACGCCGACGGCCTCGTCCTGACCGCGCGCGTGACCGGCAGCGGTGCGCAGCCCTACACCTGCCGCGTGTGGTTCGTCGTCGACGGGGACCGGTACGGCTTCGAGGACTCGAGCTGCACGTGCCCGGTCGGCGTCGACTGCAAGCACGTCGCCGCCGCGCTGCTCGAGGTCGGCCGGCACGGCGTCGACGGACCGGACCGCGACGCGGGCGTCGACGGCTGGCGTGGACGACTGGCAGGCGTCACCGGCCGCGTTCCCGGTGCGACGGCGGAGCACGGCGGGGGAGACGTCCTGCGCGTCGCGCTGCGCTTCCGGCTCGACGGCGCGTTCGGCGACACGGCGCCGGGCCTGTCCGTCCGGCCGGTGGTGCCGGCGAAGAAGGGCGGCTGGAAGGTCGCACCGGAGGCGGGGTGGGACGCGCTGAGCCGCGGCCTGTACGCGTTCGCCGGCGTGCGCGCCACGCCGCGACCGGCGGTGCGGCGCTGGTTCGCCGACCTGGGCGCCGCGCTGGCACCCGGTCCCTTCGCCACGCGGGAGGCCTGGCGCTCCCTCGACGCGGGCGGTCGTGGACTCTGGGCGCTGCTCGCGGAGGCTGCGGACCTGGAGGTCCCCCTGGTCGGGCACGGCGCACGTGACGAGGTCCACCTCGCCGACCGGGCCACGCTCCGGCTCGAGGCGCGACGGACCGACGACGGCGTCGGTCTCGAGCCGCGACTCGCCTTCGACGGCGTGGACGTGCCCGCGCGCGCCACGCCCGGCACCGTCGGTGACACGGGCCTGTACGCCGCGGTGGCGGCCGAGGGGCGCACGGTGCTGCACCTCGGGCCCGCCCCGCGACGTCTCGCGGACGGAGCGGCCGACCTGCTCGCCGGCGGCCGGATCGACGTGCCGGCGTCGGACCTGACCGAGCTCTGGGACGAGCACCTGCCGGCGCTGCGACGGACGGTCCGCGTCACCTCCGACGGCACGGTCGAGGTGCCCGAGCCGCCGCGCCCGGTCCTGGTCGCCACGGTGCGGTTCGCCTCCCCGGAAGAGGCGCGGCTCGACTGGCACTGGCGCTACGGCGGCCGACGGGACCGGTCGGTGCCGCTCGACGGCGCCGAGACGGACCCCACCCGCGACCTCGAGGTGGAGCGCGAGATCCGCGCCAAGGCGCTCGCGGTCGTGCGGGGCGTGCCGGGTCACGCCCGCCACGAGCTGGCGGACTCGTGGACCGTCCGGGGGCTGGAGGCGCTCGACCTCGCCCACGACCTGCTGCCCGCTCTGGCGACCGCCGGCCCCGACGTCGTGCTGGACGCCGAGGACGTCCCGGACTACCACCATCTCGACGGTCCGGCACGGGTCGTCGTCGAGGGCGCCGCCTCGGGGGACGCCGACTGGCTGGACCTGGGGATCTCCGTCTCCGTCGGCGGCCGGGAGGTGCCCTTCTCACGCCTGTTCACCGCGCTGGCCCGCCGGCAGAAGCGGCTGCTGCTCGTCGACGGGTCGTGGCTGCGGCTCGACCAGCCGGTGCTGGACCGCCTGCGCGGCCTCATCGACGACGCCGCCTCGCTCGACGACCGTCGCGGGGCGCTGAGCGTGAGCCGCTACGACGCCGACCTGTGGGGCGAGCTCGAGGACCTCGCCGACGCCGTCGAGGTCGCGGACGACTGGCGACGCACGGTGACGGGGCTGGCGGCCCTCGCGGAGGGCCGGGCCGTGCTCGACGACCTGCGTGCCCCGTCCGGCCTGCGCGCGGAGCTGAGGCCCTACCAGCACCAGGCGTTCGAGTGGCTCACGTTCCTGTGGCGGCACGGGCTGGGCGGGATCCTCGCCGACGACATGGGCCTGGGCAAGACGGTCGAGACCCTCGCGTTCGTCGCGCACGCCCGCGCCGAGCGGCCACAGGACCCGCCCTTCGTCGTCGTCGCGCCGGCGTCGGTGGTCGGCAACTGGGTGGACGAGGCGACCCGCTTCACCCCGGACCTGCGTGTCGCGACGCTGCCCGCCACCGCGAAGAAGCTCGGCACGTCGGTCGCCGACCGGGTGGCGGGCGCCGACGTCGTGGTGGTCTCGTACGCGGTCTACCGCCTGGAGTTCGACGCCCTGGCCGGGCTGGAGTGGTCCGGGCTGATCCTCGACGAGGCGCAGTTCGCCAAGAACCCCCGCACGCGGGCCAACCGCACCGCCCGGGCGCTGCGGGCCCCGTTCAAGCTCGCCGTCACCGGCACCCCGCTGGAGAACGACCTGACCGAGCTGTGGGCGATCCTCGCGATCGTGGCCCCCGGCCTGTACCCGTCCGTGCAGCGGTTCCGCGAGCAGACGGTCAAGCCGGTGCAGGCCGCGGCGCGCGACGACGACCCGCAGGTCGTCGCCGCCGGAAACCGGGCGCTGGGGCTCCTGCAGCGTCGGCTGCGCACCCTGATGCTGCGCCGCACCAAGGAGCAGGTGGCCCCCGAGTTGCCCGCGCGCACCGAGCAGGTGCTGCGGGTGCCGCTCACGCCGGACCACCGCAAGGTCTACGACACCCACCTCCAGCGCGAGCGGCAGCGGCTGCTGGGGCTGCTCGAGGACTTCGACGCCAACCGCGCGGCGATCTTCCGTGCGCTGACCGTGCTGCGCCGGCTCGCCCTGGACGCCTCCCTGGTGGACGACGCGTACACCGGGGTCGGGTCCGCCAAGCTCGACCTCGTCGTCGACCAGCTCACCGAGATCGCCGCCGAGGGGCACCGGGCCCTCGTGTTCAGCCAGTTCACGTCGTTCCTCGGCCGCGTCGCCGAGCGGTGCGCCGCAGCCGGGCTGGAGCACGTCTACCTGGACGGGTCGACCACGCGTCGCCGCGAGGTGGTCGCCGCGTTCCGGTCCGGCGACGCCCCGGTGTTCCTCATCAGCCTCAAGGCCGGTGGCTTCGGGCTCAACCTCACCGAGGCGGACCACGTCTACCTGCTGGACCCGTGGTGGAACCCGGCCGCCGAGGCGCAGGCCGTCGACCGCACGCACCGCATCGGCCAGACGCGTCCCGTCCAGGTCACCCGGCTCGTGGCCGCCGACACGATCGAGGAGAAGGTGATGGCGCTCGCCCGGCGCAAGGCCGCGCTGTTCGACGCCGTGGTGGACGACGCGGGCGGACGGTTCTCCGGGTCCCTCGCGGCGGACGACGTGCGCGGGCTCCTGGGGCGTTAGMDAVTAAPPRLDPLVVGGVVGATMFRRGQGYQRAGMVRSWRWDADGLVLTARVTGSGAQPYTCRVWFVVDGDRYGFEDSSCTCPVGVDCKHVAAALLEVGRHGVDGPDRDAGVDGWRGRLAGVTGRVPGATAEHGGGDVLRVALRFRLDGAFGDTAPGLSVRPVVPAKKGGWKVAPEAGWDALSRGLYAFAGVRATPRPAVRRWFADLGAALAPGPFATREAWRSLDAGGRGLWALLAEAADLEVPLVGHGARDEVHLADRATLRLEARRTDDGVGLEPRLAFDGVDVPARATPGTVGDTGLYAAVAAEGRTVLHLGPAPRRLADGAADLLAGGRIDVPASDLTELWDEHLPALRRTVRVTSDGTVEVPEPPRPVLVATVRFASPEEARLDWHWRYGGRRDRSVPLDGAETDPTRDLEVEREIRAKALAVVRGVPGHARHELADSWTVRGLEALDLAHDLLPALATAGPDVVLDAEDVPDYHHLDGPARVVVEGAASGDADWLDLGISVSVGGREVPFSRLFTALARRQKRLLLVDGSWLRLDQPVLDRLRGLIDDAASLDDRRGALSVSRYDADLWGELEDLADAVEVADDWRRTVTGLAALAEGRAVLDDLRAPSGLRAELRPYQHQAFEWLTFLWRHGLGGILADDMGLGKTVETLAFVAHARAERPQDPPFVVVAPASVVGNWVDEATRFTPDLRVATLPATAKKLGTSVADRVAGADVVVVSYAVYRLEFDALAGLEWSGLILDEAQFAKNPRTRANRTARALRAPFKLAVTGTPLENDLTELWAILAIVAPGLYPSVQRFREQTVKPVQAAARDDDPQVVAAGNRALGLLQRRLRTLMLRRTKEQVAPELPARTEQVLRVPLTPDHRKVYDTHLQRERQRLLGLLEDFDANRAAIFRALTVLRRLALDASLVDDAYTGVGSAKLDLVVDQLTEIAAEGHRALVFSQFTSFLGRVAERCAAAGLEHVYLDGSTTRRREVVAAFRSGDAPVFLISLKAGGFGLNLTEADHVYLLDPWWNPAAEAQAVDRTHRIGQTRPVQVTRLVAADTIEEKVMALARRKAALFDAVVDDAGGRFSGSLAADDVRGLLGRNANANANANA
AK018_018201323hisD_2COG0141Histidinol dehydrogenaseGTGATCCAGCGAATCGACCTGCGGGGCAGGTCCCTGTCTCGTGCCGACCTCCTCGACGTGCTCCCGCGCCCCGAGATCGGGGTGGAGGAGGCGCTGCCCGCGGTGACCTCGGTCATCGAGGACGTGCGCGGTCGTGGCGCCGGGGCGCTGCGGGACCTCGCGCAGCGGTTCGACGGCGTCCGGCCGGAGCATCTGCGGGTCCCGGCGGGCGCGCTGACCACGGCGCTGGAGGGTCTCGACGACGCGGTGCGTGCCGCCCTGGAGGAGTCGATCCGCCGTGTGCGCGCGGTGCACGCCGCGCAGGTCCCGCGGGAGCACGCCACGGTGCTCGCCGACGGCGCCGAGGTGCGTCAGCGCTGGGTGCCCGTGGAGCGCGTGGGTCTGTACGCCCCGGGCGGTCTGGCCGTGTACCCGTCCTCGGTGATCATGAACGTCGTGGCCGCCCAGGAGGCCGGTGTGACCGCGCTGGCCGTGGCCTCGCCCCCGCAGAAGGACTCCGGCGGTCTGCCGCACCCGACCATCCTCGCGGCGTGCGCGCTGCTGGGCGTGGACGAGGTGTACGCCGTCGGCGGCGCGCAGGCGGTGGCGATGTTCGCGTACGGCGCGGCGGGCAGCGAGCCGGTCGACGGCGCGGTCCTGTGCGAGCCGGTGGACGTGATCACGGGCCCGGGCAACGTGTACGTGGCGGCGGCCAAGCGGCTCGTGCGCGGCGTCGTGGGCATCGACTCGGAGGCGGGCCCGACGGAGATCGCGGTGCTCGCCGACGACACGGCCTCCGCCGACCACGTGGCGCTGGACCTCATCAGCCAGGCCGAGCACGACCCGATGGCGGCCTCGGTGCTGGTGACCCCCTCGGTCGAGCTGGCCGGGGCCGTCGAGGCGCGGCTGGTCGACCTCGCGGAGGGCACGAAGCACGCGGCGCGGGTGGCGACGGCCCTCGGCGGGCCGCAGTCCGCCGTCGTGCTCGTGGACGACGTCGAGCACGGGCTGGCGGTCGTGGACGCCTACGGCGCCGAGCACCTGGAGATCCAGACCCGGCAGGCCGCCGACCTGGCGCAGCGGGTGCGGTCCGCGGGCGCGATCTTCGTGGGCTCCTGGTCGCCGGTCTCGCTCGGCGACTACCTCGCCGGGTCGAACCACGTGCTGCCCACCGGCGGCACCGCGCGGTTCGCCAGCGGGCTCGGCGTGCACGCCTTCCTGAAGTCGGTGCAGGTGATCGAGTACACGCGGGACGCCCTGGCCGAGGTGGCGGACCGGATCGTGGCCGTCGCCGACGACGAGGACCTGCCGGCGCACGGCGAGGCGGTCCGCGGGCGCTTCTGAMIQRIDLRGRSLSRADLLDVLPRPEIGVEEALPAVTSVIEDVRGRGAGALRDLAQRFDGVRPEHLRVPAGALTTALEGLDDAVRAALEESIRRVRAVHAAQVPREHATVLADGAEVRQRWVPVERVGLYAPGGLAVYPSSVIMNVVAAQEAGVTALAVASPPQKDSGGLPHPTILAACALLGVDEVYAVGGAQAVAMFAYGAAGSEPVDGAVLCEPVDVITGPGNVYVAAAKRLVRGVVGIDSEAGPTEIAVLADDTASADHVALDLISQAEHDPMAASVLVTPSVELAGAVEARLVDLAEGTKHAARVATALGGPQSAVVLVDDVEHGLAVVDAYGAEHLEIQTRQAADLAQRVRSAGAIFVGSWSPVSLGDYLAGSNHVLPTGGTARFASGLGVHAFLKSVQVIEYTRDALAEVADRIVAVADDEDLPAHGEAVRGRFNANANANANA
AK018_01821228hypothetical proteinATGGACACCCCGATCGAGGTCCCCATCCGCGACGACGTCATCCGCCTGGGTCAGTTCCTCAAGCTGGCCGGGCTCGCCGAGTCCGGCACCCACGCCCGGGACCTGGTCGCCGACGGCGACGTGCTGGTCGACGGCGAGGTCGAGACGCGACGAGGCCGCCAGCTCCAGCGCGGGGCACGCGTCACCGTGGCCGGCCCGGAGGGCGAGGAGACCGCCGTCGTCGCCTGAMDTPIEVPIRDDVIRLGQFLKLAGLAESGTHARDLVADGDVLVDGEVETRRGRQLQRGARVTVAGPEGEETAVVANANANANANA
AK018_01822405F420H(2)-dependent biliverdin reductaseGTGCGACTCAACCCGGAACAGCTCGTCTTCGTCACCGAACGTCACCTGGCCACGCTGACGACGCTGCGCGCCGACGGCACGCCGCACGTCGTGCCGGTGGCCTTCACGTGGGACGCCGAGCGCGGCATCGCCCGCGTCACCGCGCGCCGGGGCTCGGTCAAGGCCCGCAACGCCCGGCGACGCGGCGCCGACGGCGCACCTCCGCGGGCCGCGCTGTGCCAGGTCGACGGCGGCCGGTGGCTGACGCTCGAGGGCACCCTCGAGGCGGTCGAGGATCCCGACGAGGTCGCCGAGGCGGTGCGGCGCTACGCCCGGCGCTACCGGCAGGTCGAGTACGACCCCGACCGGATCGTGCTGCACCTGCACGTGGACCGGACCATGTCGTCGGCCTACATGGCCTCCTGAMRLNPEQLVFVTERHLATLTTLRADGTPHVVPVAFTWDAERGIARVTARRGSVKARNARRRGADGAPPRAALCQVDGGRWLTLEGTLEAVEDPDEVAEAVRRYARRYRQVEYDPDRIVLHLHVDRTMSSAYMASNANANANANA
AK018_01823501nudC_1NADH pyrophosphataseATGACGGGGCCGACGCGTCCCGGCTGGGACGACGGCAGCGCCGACCACCGGTTCCGCGTGGTGCCGGCCGCGTACGTGCTGCTGCGCCGCGAGGGGCAGGTCCTGCTCCAGCTGCGCCGGGGCACCGGGTTCATGGACGGGTTCTGGGCGGCGGGGGCCGCGGGCCACGTCGAGGCGGGGGAGTCGGTGCTCGACGCCGCCGTGCGCGAGGTGCGCGAGGAGCTCGGCGTCACGGTGACACCGTCGGACCTGGTGCCGTTGACCGTCCAGCACCGCGGCCTGCCCGGCGGTCCGGCGCTCGAGCAGCGCGTCGACGTCTTCTTCGCCGCGGACCGCTGGAGCGGCGAGCTGCAGATCCGCGAGCCCGAGCGGACCGCGGACCTGCGCTGGTTCCCGCTCGTCGCGCTGCCGGACCCGGTGGTGCCGCACGAGCTGCCCGTGCTGCGCGGGCTGCACGACGGCGTGCTGCCGGCCGTGATGACCTTCGGGTTCGGGTCGTAGMTGPTRPGWDDGSADHRFRVVPAAYVLLRREGQVLLQLRRGTGFMDGFWAAGAAGHVEAGESVLDAAVREVREELGVTVTPSDLVPLTVQHRGLPGGPALEQRVDVFFAADRWSGELQIREPERTADLRWFPLVALPDPVVPHELPVLRGLHDGVLPAVMTFGFGSPGPT0007945_13DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287NANA
AK018_018243567dnaE1_2COG0587DNA polymerase III subunit alphaATGCCGGACGCCGAGACCTCTTCGAAGACCGACGACTTCGTCCACCTGCACGTCCACACCGAGTACTCGATGCTCGACGGCGCGGCACGGATGGACGACCTGTTCTCCGAGGTCGCCCGGCTGGGCCAGCAGGCCATCGCCATCACCGACCACGGCTACCTCTTCGGCGCCTTCGACTTCTGGAGCACGGCCCGGAAGTACGACATCAAGCCCATCATCGGCGTCGAGGCCTACGTCACGCCCGGCACGAGCCGGCACGACCGCACCAAGGTGCAGTGGGGCGAGCAGCACCAGAAGCGCGACGACGTCTCGGCCGGCGGCGCCTACACCCACATGACGCTCTGGTCGCGGGACAACACGGGGATGCACAACCTGTTCCGGGCCTCGTCGCTGGCGTCGCTGGACGGTCAGATGGGCAAGTGGCCCCGGATGGACCGCGAGCTGCTCGAGACCTACTCCGAGGGCCTCATGGCGACCTCGGGCTGCCCGTCGGGGGAGATCCAGACCCGGCTGCGGCTGGGCCAGTGGGACGAGGCGGTCCGGGCCGCAGGCGAGTACCAGGACATCTTCGGCAAGGAGAACTACTTCGTCGAGCTGATGGACCACGGGATCGAGATCGAGTCCCGCACGTCCAAGGACCTGGTGCGCCTGGCGCAGCACATCGGCGCGCCGCTGGTGGCGACGAACGACCTGCACTACACCAAGCAGGAGGACTCCCACGCCCACGAGGTGCTGCTCGCGGTGAACTCGGGCTCGACGCTGGACGAGCCGACCTACGACCAGGGCGGCAGCCGGTTCGCGTTCAGCGGTGACAGCTTCTACGTCAAGTCCGGCGCCGAGATGCGACGGCTGTTCGCGGAGATGCCCGAGGCGGTCGACAACACCCTGCTGATCGCCGAGCGCTGCGAGGTCTCCTTCGACACCGGCGCGAACTACATGCCGAACTTCCCGGTCCCGGCGGGCGAGGACGAGGTCTCCTGGTTCGTCAAGGAGGTCGAGAAGGGGATGCACGTGCGGTACCCGCAGGGCATCCCGGACGCGGTGCGCGCCCAGGCGAAGTACGAGACCGAGGTCATCGTCCAGATGGGCTTCCCCGGCTACTTCCTCGTGGTGGCGGACTTCATCAACTGGGCCAAGGAACAGGGTATCCGCGTCGGCCCGGGCCGCGGCTCGGCGGCCGGGTCGATGGTCGCCTACGTCATGGGCATCACGGAGCTCGACCCGATCGAGCACGGCCTCATCTTCGAGCGCTTCCTCAACCCCGAGCGCGTCAGCATGCCCGACGTCGACGTGGACTTCGACGAGCGCCGGCGCTCCGAGGTCATCCGCTACGTCTCCGACAAGTACGGCGACGACCGGGTCGCGATGATCGCCACCTACGGCTCGATCAAAGCCAAGCAGGCGCTCAAGGACGCCTCGCGGGTGCTCGGGTTCCCGTTCGCGATGGGCGAGCGGCTCACCAAGGCGATGCCGCCGCCCGTCATGGGCAAGGACATCCCGCTGTCGGGCATCTTCGACCCGGACCACGACCGTTACTCGGAGGCGGGGGAGTTCCGCCAGCTCCACGACACGGACCCCGAGGCGCAACGCGTGGTCGAGACGGCGCGCGGCATCGAGGGGCTCAAGCGGCAGTGGGGCGTGCACGCGGCGGGCGTGATCATGTCCTCGGACCCGCTGATCGACGTCATCCCGATCATGCGCCGCCCGCAGGACGGCGCGGTCATCACGCAGTTCGACTACCCGACCTGCGAGGGTCTGGGCCTGATCAAGATGGACTTCCTGGGGCTGCGCAACCTCACGATCCTCGAGGACGCCCTCGAGATCATCGAGGCCAACGGCAAGGACCCGGTCCAGATCGAGACGGTGGCCCTCGACGACAAGGCGTCCTACGAGCTGCTGGCCCGCGGCGAGACGCTCGGGGTGTTCCAGCTCGACGGCGGTCCCATGCGTTCGCTCCTGCGCCAGATGCGTCCCGACAAGTTCGACGACCTCTCCGCCGTCATCGCCCTGTACCGACCGGGGCCGATGGGCATGAACTCGCACGTCAACTACGCGTTGCGCAAGAACGGCATGCAGAAGATCGAGCCGATCCACCCCGAGCTCGCCGAGCCGCTGTCCGAGGTCCTCGACGAGACGTACGGCCTAATCGTCTACCAGGAGCAGGTCCAGCGCGCGGCGCAGGTGCTCGCCGGGTACTCGCTGGGACAGGCCGACCTGCTGCGGCGCGCCATGGGCAAGAAGAAGCCCGAGGTGCTGGCCAAGGAGTTCGTCAACTTCGAGGCCGGCTGCAAGGAGCGCGGCTACTCGGACGCCGCGATCCAGGCGGTGTGGGACACCCTGGTGCCGTTCGCCGGGTACGCCTTCAACAAGGCGCACTCGGCGGGGTACGGCCTGGTCGCCTACTGGACCGCCTTCCTCAAGGCGAACTACCCGACCGAGTACATGGCCGGTCTCCTGCAGTCCGTGCGGGACGACAAGGACAAGATGGCGCTCTACCTGGGCGAGTGCCGCCGGATGCGCATCACGGTGCTGCCGCCGGACGTCAACGAGTCGGCGGCGAAGTTCACCGCCGTCGGGGAGGACATCCGGTTCGGCCTGACGGCGGTGCGCAACGTCGGCGCCAACGTGGTGGACGCCATCGTCGCCGCGCGCGAGGAGCACGGGGCGTTCACGTCGTTCACGGACTTCCTGGACAAGGTGCCCGCCGTGGTGTGCAACAAGCGCACCATCGAGTCCCTGATCAAGGCCGGGGCCTTCGACTCCCTGGGGCACCCGCGCCGGGCGCTGCTCGTGGTGCACGAGCAGGCCGTGGACTCGGTGATCTCGGTCAAGCGCAAGGAGGCCGAGGGGCAGTTCGACCTGTTCGCCGACCTGGGCGGCGGGTCGGACGACGCCGTGACCTTCGCCGTCGAGGTCCCTGACCTGCCGGACTGGGACAAGAAGCAGCGGCTGTCGTTCGAGCGCGAGATGCTCGGCCTGTACGTCTCCGACCACCCGCTGTCCGGGCTGGAGCACGTGCTGTCGCGTGCGGCGGACACCTCGATCGCCACCCTGATGGCCGACGAGCACCGCGCGGACGGGTCCAGCGTGACGGTGGCCGGTCTGCTCACCTCGGTCCAGCGCAAGATCTCCAAGAACGGCAACCCGTGGGCCGCGGTGACCATCGAGGACCTCGAGGGCGCCGTCGAGGTGATGTTCTTCGGCGAGACGTACCTCGCCTACTCCACGGTGCTGGCCGAGGACCAGGTGGTCACGCTCAAGGGTCGGGTGCGCCGCCGCGACGACCAGATGCAGCTCCAGGCCCAGGAGGTCTCGCTGCCGGACACGTCCGCGGTGGCGGACTCGCCGGTGCAGGTTACCGTCCCGCACACCCGGTGCGTCGAACCGGTCATGGTCCGGCTGCGCGAGGTCCTGGCCACGCACCCGGGGTCGGCCGCGGTCCAGGTGTCCGTCGCCGAACCCGGAAAGCGCACCCTGGTGCAGGCGGGCGACGGGCTGCGGGTCGAGAAGTCCCCGGCACTGTTCGGCGACCTCAAGGCCCTGCTGGGCCCGAGCTGCCTGTCATGAMPDAETSSKTDDFVHLHVHTEYSMLDGAARMDDLFSEVARLGQQAIAITDHGYLFGAFDFWSTARKYDIKPIIGVEAYVTPGTSRHDRTKVQWGEQHQKRDDVSAGGAYTHMTLWSRDNTGMHNLFRASSLASLDGQMGKWPRMDRELLETYSEGLMATSGCPSGEIQTRLRLGQWDEAVRAAGEYQDIFGKENYFVELMDHGIEIESRTSKDLVRLAQHIGAPLVATNDLHYTKQEDSHAHEVLLAVNSGSTLDEPTYDQGGSRFAFSGDSFYVKSGAEMRRLFAEMPEAVDNTLLIAERCEVSFDTGANYMPNFPVPAGEDEVSWFVKEVEKGMHVRYPQGIPDAVRAQAKYETEVIVQMGFPGYFLVVADFINWAKEQGIRVGPGRGSAAGSMVAYVMGITELDPIEHGLIFERFLNPERVSMPDVDVDFDERRRSEVIRYVSDKYGDDRVAMIATYGSIKAKQALKDASRVLGFPFAMGERLTKAMPPPVMGKDIPLSGIFDPDHDRYSEAGEFRQLHDTDPEAQRVVETARGIEGLKRQWGVHAAGVIMSSDPLIDVIPIMRRPQDGAVITQFDYPTCEGLGLIKMDFLGLRNLTILEDALEIIEANGKDPVQIETVALDDKASYELLARGETLGVFQLDGGPMRSLLRQMRPDKFDDLSAVIALYRPGPMGMNSHVNYALRKNGMQKIEPIHPELAEPLSEVLDETYGLIVYQEQVQRAAQVLAGYSLGQADLLRRAMGKKKPEVLAKEFVNFEAGCKERGYSDAAIQAVWDTLVPFAGYAFNKAHSAGYGLVAYWTAFLKANYPTEYMAGLLQSVRDDKDKMALYLGECRRMRITVLPPDVNESAAKFTAVGEDIRFGLTAVRNVGANVVDAIVAAREEHGAFTSFTDFLDKVPAVVCNKRTIESLIKAGAFDSLGHPRRALLVVHEQAVDSVISVKRKEAEGQFDLFADLGGGSDDAVTFAVEVPDLPDWDKKQRLSFEREMLGLYVSDHPLSGLEHVLSRAADTSIATLMADEHRADGSSVTVAGLLTSVQRKISKNGNPWAAVTIEDLEGAVEVMFFGETYLAYSTVLAEDQVVTLKGRVRRRDDQMQLQAQEVSLPDTSAVADSPVQVTVPHTRCVEPVMVRLREVLATHPGSAAVQVSVAEPGKRTLVQAGDGLRVEKSPALFGDLKALLGPSCLSNANANANANA
AK018_01825933COG0564putative RNA pseudouridine synthaseATGGCGCTGCGCACGCTGCCGGTGCCCGACGGGCTCGCCGGCGAACGGGTGGACGTCGCCCTGGGGCGGATGCTCGGCTTCTCCCGGAGCCAGGCCGCCGAGCTGGCCGCCTCCGGGGCGGTGCGGGCGGGCGGCCGGGTGCTGGGCAAGTCGGACCGGCTGGTCCCCGACACGCTGCTCGAGGTGGACGTCCCGGACGCACCGACCGGAGCCGTCGAGGTCGTCGCCGAGCCGGTCGAGGGCATGACGATCGCGTACGAGGACGACGACGTCGTCGTGGTCGACAAGCCGGTCGGGGTGGCGGCCCACCCGTCACCGGGCTGGAGCGGGCCCACGGTCGTGGGCGCGCTCGCCGCGGCCGGGTACCGCATCTCGACCTCCGGCGCGGCGGAACGCCAGGGGATCGTGCACCGGCTCGACGTCGGCACGTCCGGCCTGATGGCCGTGGCCAAGTCCGAGGCCGCCTACACCGGGCTCAAGCGGGCCTTCAAGGAGCGCACGGTCGACAAGGTCTACCACGCGCTCGCCCAGGGCCACCCCGAGCCGACGACGGGCACCATCGACGCGCCGATCGGCCGGCACCCGCACCACGACTACCGGTTCGCCGTGGTGGCCGGCGGGAAGCCCTCGGTGACGCACTACGAGGTGCTCGAGATGCTGCCGGCGGCGTCGCTCGCCGAGGTGCACCTCGAGACCGGGCGCACGCACCAGATCCGGGTCCACTTCGCCGCGCTGCGGCATCCCCTCGTGGGCGACCTGACCTACGGCGCGGACCCGGTGCTGGCTTCGCGCACGGGTCTGGAGCGGCAGTGGCTGCACGCGATGCGCCTGGGGTTCGCCCACCCCGTCACCGGCCGGGACGTCGTGGTGGAGTCGGAGTACCCGCAGGATCTGGCCCGCGCGCTCGACACGCTGCGCGACGCCTACCGGTGAMALRTLPVPDGLAGERVDVALGRMLGFSRSQAAELAASGAVRAGGRVLGKSDRLVPDTLLEVDVPDAPTGAVEVVAEPVEGMTIAYEDDDVVVVDKPVGVAAHPSPGWSGPTVVGALAAAGYRISTSGAAERQGIVHRLDVGTSGLMAVAKSEAAYTGLKRAFKERTVDKVYHALAQGHPEPTTGTIDAPIGRHPHHDYRFAVVAGGKPSVTHYEVLEMLPAASLAEVHLETGRTHQIRVHFAALRHPLVGDLTYGADPVLASRTGLERQWLHAMRLGFAHPVTGRDVVVESEYPQDLARALDTLRDAYRNANANANANA
AK018_01826624lspA_2COG0597Lipoprotein signal peptidaseATGTCCACCACGCCCGCCGGTCCCGCACCGGTTCCCGAGACCCCGGACGAGGCCGACGGGTCGACGCCGACCACCGGCGTCGCCGCCACCGGCACGGCGCCCGACGTGCCGCCCGAGCGCCCGGCGAGCCGTCGGCTCGGCCTGCTGGCCCTCCTGCTCGCCGCGCTGGTCCTGGTCGCCGACCAGCTCACCAAGTGGTGGGCGCTCGAGTCGCTGACCGAGGGCGAGCGCATCGACCTGGTGGGCGACCTGCTGGGCCTGACGCTGGTCTTCAACCCGGGTGCGGCCCTGTCGTTCATGGCGAACGGGTACACCTGGGTCCTGACGATCGTTGTCGTCGCCGTCGTCGTGGTGATCCTGCGGGCCATGCGCCGCCTGGGATCGCGCGGCTGGACCGTGGCGCTCGGCCTCCTGCTGGGCGGCGCGGTGGGCAACCTGGCCGACCGGCTGTTCCGCGAGCCGGGCTTCGCCGAGGGGCACGTGGTCGACATGATCGCCTACGTCGACTTCTTCGTCGGCAACGTCGCCGACATCGCCATCGTCGCTGCCGCGGGCCTGATCATCGTCCTGACCTTCCGCGGCATCCGGCTGGACGGCACCCGCGAGACGGACGAGCGCGACTGAMSTTPAGPAPVPETPDEADGSTPTTGVAATGTAPDVPPERPASRRLGLLALLLAALVLVADQLTKWWALESLTEGERIDLVGDLLGLTLVFNPGAALSFMANGYTWVLTIVVVAVVVVILRAMRRLGSRGWTVALGLLLGGAVGNLADRLFREPGFAEGHVVDMIAYVDFFVGNVADIAIVAAAGLIIVLTFRGIRLDGTRETDERDPGPT0004770_713DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004770-pbrB|pbrC-K03101NANA
AK018_01827462dksA_3RNA polymerase-binding transcription factor DksAATGCCCAAGCTCTCCACCACCCAGCGGGCCACGATCCGCGAGGAGTTCCCGAACCTCTCGCGCGACGTGAAGAAGTTCCCGGTCCGCGACGGGGAGGAACCGTGGACGACGGCGGAGGTCTCCGAGCTCGTCCAGCTCCTCCTCGACGACAAGGAGCGGTTCACCGCCGAGCTCGCCGCGGCCGACGCCGAGCTCTCCGACCTGCTGCGCAACTCCGGCGACGGCGCCGGCGACGACCAGGCGGACTACGGGTCGAGCGCGCTGGAGCGCGAGCAGGAGCTCACGCTGGTCAACAACCTGCGCGACCTCCTGGCGCAGACCACCCACGCGCTGGACCGGATCGCCAAGGGCACGTACGCGACCTGCGAGATGACCGGCGCCCCGATCGGCAAGGCTCGCCTGCAGGCCTTCCCCCGGGCGACGCTGTCGGTGGAGGCGAAGGCGCGCGAGGAGCGTCGCTAGMPKLSTTQRATIREEFPNLSRDVKKFPVRDGEEPWTTAEVSELVQLLLDDKERFTAELAAADAELSDLLRNSGDGAGDDQADYGSSALEREQELTLVNNLRDLLAQTTHALDRIAKGTYATCEMTGAPIGKARLQAFPRATLSVEAKAREERRPGPT0014560_543DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204NANA
AK018_01828636COG3599Cell wall synthesis protein Wag31ATGGCACTGCTGACGGCAGAGGACATCCTCAACAAGAAGTTCTCGGCGACGAAGTTCCGCGAGGGCTACGACGTCGAAGAGGTCGACGACTTCCTCGACGAGGTCGTGCGGACCCTGACGTCGGTGCAGGAGGAGAACGAGGACCTGCGCTCGAAGCTCACCGCCGCCGAGCAGCGGGTCGCCGAGCTGAGCCGCAACGAGGCCGCGCAGCAGTCCGCCGAGCCCGAGGCCCCCGCCCCCGTGGCCGCGCCCACCCCGGCGCCCGCGGTCGCGGGCGAGAAGCCCGCCGAGCCCGAGTCGGCCACGGGCATGCTCCAGCTCGCCCAGAAGCTGCACGACGACTACGTCCGCTCCGGCCAGGAGGAGGGCGACCGGCTCATCACCGAGGCCAAGGCCGAGGGCAGCCGCATCGTGCGGGAGGCGGAGGAGACCAGCCACCGCACCCTGTCCCAGCTCGAGCAGGAGCGTTCGCTGCTGGAGCGCAAGATCGACGAGCTGCGCCTGTTCGAGCGCGACTACCGCACGCGGCTGAAGAGCTTCCTGCAGAACCTCCTCGGCGACCTGGACGCCCGCGGCTCGGCCCTGCCGCCGCAGCGTCAGAACGCCGGCGCCGGCAGGTCCGGCGAGAACGTCTGAMALLTAEDILNKKFSATKFREGYDVEEVDDFLDEVVRTLTSVQEENEDLRSKLTAAEQRVAELSRNEAAQQSAEPEAPAPVAAPTPAPAVAGEKPAEPESATGMLQLAQKLHDDYVRSGQEEGDRLITEAKAEGSRIVREAEETSHRTLSQLEQERSLLERKIDELRLFERDYRTRLKSFLQNLLGDLDARGSALPPQRQNAGAGRSGENVPGPT0014806_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014806-gpsB-NANANA
AK018_01829288hypothetical proteinGTGAGTGTGATCTTCGGGCTCGTCGCCCTCCTGCTGCTGCTGTTCATGCTGTGCCTGATCGTCCGGCTGGTGTTCGACTGGGTGCAGTTCTTCGCGCGCGACTGGCGGCCCCGTGGCGTGGTGCTCCTGCTCGCCGAGGCCGTCTACACCGTCACCGACCCGCCGCTGCGCGCGCTGCGCAAGGTGATCCCGCCGCTGACGCTCGGCTCCGTGCGTCTCGACCTGGCGTTCCTCATCCTGTTCCTGGGTACGTCCATCCTGTGGAACGTCGCACTGAGCCTGTCCTGAMSVIFGLVALLLLLFMLCLIVRLVFDWVQFFARDWRPRGVVLLLAEAVYTVTDPPLRALRKVIPPLTLGSVRLDLAFLILFLGTSILWNVALSLSPGPT0013730_1997DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IVa_PILUS_HOMOLOG_PROTEIN,PGPT0013730-yggT|ylmG-K02221NANA
AK018_01830474sepF_2Cell division protein SepFATGGGCGGAGCGCTTCGCAAGACGATGCTGTACCTGGGGCTGGCCGACGACCAGCGCCCCGACGGGGAGTACCTCGACGAGTTCGACGAGGAGCTGGAGCCGGTGCGCGACGACGACTACCAGGCCGAGGTCACGCCGCTGCACCGGGACGGTGCCCCGGCGGAGGCGTTCGTCGGGGGTGACCTGCGGCGGATCACCACGATCCACCCGCGCTCCTACAACGACGCCCGGCTGATCGGCGAGGCCTTCCGCGGCGGCACGCCGGTGATCATGAACCTGTCCGACATGGACGACGCGGACGCCAAGCGGCTCGTCGACTTCTCGGCGGGGCTGATCTTTGGGCTGCACGGATCGATCGAGCGGGTGACGAACAAGGTCTTCCTGCTCTCGCCCGAGCACGTGGAGATCGCCGGCGAGGAGCAGGTCGAGAAGCGCCCCGACGGACGCACGGGTGCGTTCTACAACCAGAGCTGAMGGALRKTMLYLGLADDQRPDGEYLDEFDEELEPVRDDDYQAEVTPLHRDGAPAEAFVGGDLRRITTIHPRSYNDARLIGEAFRGGTPVIMNLSDMDDADAKRLVDFSAGLIFGLHGSIERVTNKVFLLSPEHVEIAGEEQVEKRPDGRTGAFYNQSNANANANANA
AK018_01831771COG1496Polyphenol oxidaseTTGCCGGACGACCTGGGGGCCGGCCTGCTGCGGGTCGACCTCGGCGACGGCGTGGTGGCGGGGTTCACCACGCGGCACGGCGGCGTGTCGCCGGCGCCGTGGTCGTCGCTCGACCTCTCGGCCGCCACGGGTGACGACCCGGCCCGCGTGCGGCGCAACCGCGACGTGCTGGCGGGCTGGGTCGGGGCGCCGGTCGCGTTCGCGACCCAGGTCCACGGCGACGACGTGCTCGCCCTCGGTGCGGCCGAGCGGGCCGAGTGGGAGTCGGGCCGGACGGACAGCGCCGGGGTCGCCGACGCGATGGTGACGACGGAGACCGGGCTCGGCCTGGGCGTCCTGGTCGCCGACTGCGTCCCGGTGGTCCTGGCCGACCCGGTCGCCCGGGTGGCCGGCGTCGCGCACGCCGGACGCCGCGGCCTGGTGGCCGGCGTCGTGGACCGCGCGGTGGACGCCCTGCTCGCCCGCGGTGCGACGCCGGACGGCCTGCGTGCCGCCGTCGGGCCGGCGGTGTGCGGCGACTGCTACGAGGTCCCCGAGCAGATGCGGGACGAGGTGTCCGCCGTCGTGCCGCAGGCCTGGGCGACGACGGCCGCGGGCACGGCGGGGCTGGACCTGCCCGCCGGTGTGCTCGCCGTGCTGGCCGCCCGGGGTGTGCCGACGACGCGGGTGGAACGTTGCACGCTGACCGACCCCGACCTGTACTCTCACCGCGGTGCGACGGCGGCGGGGGACGTCACCGGGCGGCAGGCCGGCGTCGTCGTGCTGACCTGAMPDDLGAGLLRVDLGDGVVAGFTTRHGGVSPAPWSSLDLSAATGDDPARVRRNRDVLAGWVGAPVAFATQVHGDDVLALGAAERAEWESGRTDSAGVADAMVTTETGLGLGVLVADCVPVVLADPVARVAGVAHAGRRGLVAGVVDRAVDALLARGATPDGLRAAVGPAVCGDCYEVPEQMRDEVSAVVPQAWATTAAGTAGLDLPAGVLAVLAARGVPTTRVERCTLTDPDLYSHRGATAAGDVTGRQAGVVVLTPGPT0019965_1709DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-POLYPHENOL_OXIDASE,PGPT0019965-yfiH-K05810NANA
AK018_018321332ftsZ_2Cell division protein FtsZGTGGCAACTCCGCAGAACTACCTGGCAGTGATCAAGGTGGTCGGCATCGGCGGTGGCGGCGTGAACGCCGTGAACCGCATGATCGAGGTCGGCCTCAAGGGCGTCGAGTTCATCGCCATCAACACCGATGCGCAGGCGCTGCTGATGTCGGACGCCGACGTCAAGCTCGACGTCGGGCGCGAGCTCACCCGCGGCCTCGGCGCCGGCGCGGATCCCGAGGTGGGCCGCAAGGCCGCCGAGGACCACGCCGAGGAGATCGAGGACGTCCTGCGCGGGGCGGACATGGTCTTCGTCACCGCCGGCGAGGGCGGCGGCACCGGGACGGGGGGAGCGCCGGTCGTCGCGCGCATCGCGCGGGCGCTGGGTGCGCTCACCGTGGGCGTCGTGACCCGGCCGTTCACGTTCGAGGGCCGCCGGCGCTCGGTGCAGGCCGAGCAGGGGATCGAGCAGCTCCGCGAGGAGGTCGACACCCTCATCGTCATCCCCAACGACCGCCTGCTGTCGATGTCCGACAAGAACGTCTCGGCCATCGCCGCGTTCCACTCGGCCGACCAGGTCCTGCACTCGGGGGTCCAGGGCATCACCGACCTGATCACCACCCCGGGCCTGATCAACCTCGACTTCGCCGACGTCAAGTCGGTGATGCAGGGGGCCGGCTCGGCGCTGATGGGCATCGGCTCCGCACGCGGCGAGGACCGCGCGGTCCAGGCCGCCGAGCTGGCGATCTCCTCGCCGCTGCTGGAGGCGTCCATCGACGGCGCCCACGGTGTGCTGCTGTCCATCCAGGGCGGCAGCGACCTCGGCCTGTTCGAGGTCCACGAGGCGGCCCGCCTCGTCCAGGAGGCCGCGCACCCCGAGGCCAACATCATCTTCGGCACGGTCATCGACGACGCGCTCGGCGACGAGGTGCGGGTGACGGTCATCGCCGCCGGCTTCGACGGCGGGCTGCCGAAGGCGCGTGAGGACTCCCGGGCGCTGGGCCAGGTCTCCGGGTCGCGCGCCGCGGCCGGTGACGCCGCCCGGTCCTCGGAGTCGGGCCCGCGCCCGGCGTCGGCCACGAGCAGCGCGACGCCCGGCGCCTCGCCGGCCACCGCTCCGGTCCCGGCGGCCGCCGAGCCGGCGCACGCCCGGCCGCGTCCCATCCCGGCCGACCCGGACGACGTGCCGGCCAGCCTGGAGCCGGTCGGCGCACGCCAGTCGCGACCGGCGTTCACCGTCGTCGAGGACGGCGAGGGCGAGGGCGTCACCGTCGAGCGTCCCGTGGACGTCCCGCGCGTCGTCGAGCGGACCCGCCCGCCCGAGGAGCTCGACGTGCCCGACTTCCTCAAGTGAMATPQNYLAVIKVVGIGGGGVNAVNRMIEVGLKGVEFIAINTDAQALLMSDADVKLDVGRELTRGLGAGADPEVGRKAAEDHAEEIEDVLRGADMVFVTAGEGGGTGTGGAPVVARIARALGALTVGVVTRPFTFEGRRRSVQAEQGIEQLREEVDTLIVIPNDRLLSMSDKNVSAIAAFHSADQVLHSGVQGITDLITTPGLINLDFADVKSVMQGAGSALMGIGSARGEDRAVQAAELAISSPLLEASIDGAHGVLLSIQGGSDLGLFEVHEAARLVQEAAHPEANIIFGTVIDDALGDEVRVTVIAAGFDGGLPKAREDSRALGQVSGSRAAAGDAARSSESGPRPASATSSATPGASPATAPVPAAAEPAHARPRPIPADPDDVPASLEPVGARQSRPAFTVVEDGEGEGVTVERPVDVPRVVERTRPPEELDVPDFLKPGPT0027695_1461DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027695-ftsZ-K03531NANA
AK018_01833690ftsQ_2COG1589Cell division protein FtsQATGCGGCGGCACCGCACGTGGCGCACGGTGCTGGTCGGTGTCCTGGTGCTGGCCCTGGCCGGCGGCGTCGGCTGGGTGGTCGGCTGGTCGGACCTCCTGGCGCTGGACGCCCGCGAGGTCTCGGTCACCGGGGAGGGCACCACCGTCGACGTCGAGCGGGTGCGTGACGTCGCGCTCGCGCCGGCCGGGACGCCGCTGGTCCGCGTCGACACCGCCGGGATGCGGGAGGAGATCCTCGGGCTGCGCGGTGTCAAGGACGTCGACGTGGTCCGGTCGTGGCCGCACGGGCTCGACGTGCGGCTCACGGCGCGGGTGCCGGTCGCGGCGGTCCCGGACGACGACGGGTTCGTGCTGCTGGACGACGAGGCGGTCCGCGTGGGCCGGACGGCCGAGGCGCCGGCGCGGCTGCCGGTGATCGCCGTGCCGCTCGACGACGCGTCCTCGGGCGCCCTGACCTCGGCATTGGCCGTGGTCGCGGCCCTGCCGCCGGGACTGGCCAAGCGTGTCGACGAGGTCAGTGCCCGCACGCGGGACGACGTCGAGACGGTGCTGCGCGACGGCGTGAGCGTGCGGTGGGGCGGGCGCGAGGAGCTCGACCTCAAGGTGGAGGTGGTCCGGACGCTGCGCGAGGTGGCGGACGACGCGGTCGTGATCGACGTCTCCTCGCCGCACATGCCGGTGACCCGGTGAMRRHRTWRTVLVGVLVLALAGGVGWVVGWSDLLALDAREVSVTGEGTTVDVERVRDVALAPAGTPLVRVDTAGMREEILGLRGVKDVDVVRSWPHGLDVRLTARVPVAAVPDDDGFVLLDDEAVRVGRTAEAPARLPVIAVPLDDASSGALTSALAVVAALPPGLAKRVDEVSARTRDDVETVLRDGVSVRWGGREELDLKVEVVRTLREVADDAVVIDVSSPHMPVTRNANANANANA
AK018_018341494murC_2COG0773UDP-N-acetylmuramate--L-alanine ligaseATGAGCGTTCCCGAGCCGGGCGACCTGGGCCGGGTGCACCTGATCGGCGTCGGCGGTGCGGGGGTCTCCGTGGTCGCCCGGCTGCTCGCGGCCCGCGGCCTCGACGTGCAGGGGTCCGACGCGGTCGGGTCGCCGGCGCTGGCCGCCCTGCGGGCCGACGGGATCCGCGTGTGGGTGGGTCACGACGCCGGCCACGTCGTCGCACCGGACGGCGTGGCGCTCGTGGACACCGTCGTCGTCTCCTCGGCGGTGCGCGACTCCAACCCCGAGCTGGCCGCCGCCCGGGAGGCGGGGGTGCGCGTGCTGCACCGGTCCGAGGCGCTCGCCGCGCTGATGCACGGACGTCGCACCGTGGCGGTGGCCGGCGCCCACGGCAAGACCACGACGTCCGCGATGGTCGCGACCGTCCTGACCGCCGCGGGCACCGACGCGTCCTACGCCATCGGCGGCACCGTGCGGGTGCGCGACGGGGCGGGGGAGCGGCACCTGCCCGGGGGGCACGCGGGCAGCTCGGACGTGCTCGTCGCCGAGGCCGACGAGTCCGACGGCTCGTTCCTCAACTACACCCCGACCGTCGCGGTCGTGACCAACGTCGAGGCCGACCACCTGGACCACTACGGGTCCGTCGAGGCCTTCGAGCAGGCGTTCGTCGACTTCGCCGGCCGCCTCGGCGCCGACGGCTGGCTCGTGGCGTGCGCGGACGACGCCGGGTCGGCGCGGCTGGCGGCACGGCACCGTGCCGACGGCGGCCGGGTCGTCACCTACGGCACCTCCCCGGACGCCGACGTCGTGGTGGGCGACGTCGTCGTCGGTGCGGGCACGGTGCGCGCCGTCGTGGCCGGGGGTCCCCTGGGTGCCGCCGGCCGGGCGATCGAGCTCGACGTGCCCGGTGCCCACAACGTGCTCAACGCGACGGCGGCCGTGGTCGCCGCCGTGCTGCTCGACGTCCCGGCCGACCTCGCGGTCGCCGGGGCCGGAACGTTCGTCGGGACCGGTCGGCGGTTCGAGCCCCGCGGCGAGGTCGGCGGGGTGCGGGTGTTCGACAGCTACGACCACCACCCCACCGAGGTCGAGGCGCTACTGCGCGCCGCGCGGCCGGTCGCGGGCGACGGTCGCCTCGTGGTGCTGTTCCAGCCGCACCTCTACTCCCGCACCCGCGCGTTCGCCGACCGGTTCGCCGCCGCGCTCACCCTGGCGGACGAGGCGGTCGTGACCGGCGTCTACCGCGCGCGGGAGGACGTCGACCCGCGGGTCACGGCGCGCACCATCACAGTCCTCGCCGGTCCCACCGTCTCGGGCGGGCGGGTACGCGCGGTCGAGGACCGCCTGGAGGCGGCCCGGGCGACGGCGGAGCTCGCCCTGGCCGGTGACGTGGTGATCACCGTCGGTGCGGGCGACGTGACCGAGCTGGGTCCGGTGATCCTCGCCGCGCTGGCAGACCGGTTCGGCGTGGCGCAGCCGGACGGCGGCCCCGCAGCCACGACGATGGGGTAAMSVPEPGDLGRVHLIGVGGAGVSVVARLLAARGLDVQGSDAVGSPALAALRADGIRVWVGHDAGHVVAPDGVALVDTVVVSSAVRDSNPELAAAREAGVRVLHRSEALAALMHGRRTVAVAGAHGKTTTSAMVATVLTAAGTDASYAIGGTVRVRDGAGERHLPGGHAGSSDVLVAEADESDGSFLNYTPTVAVVTNVEADHLDHYGSVEAFEQAFVDFAGRLGADGWLVACADDAGSARLAARHRADGGRVVTYGTSPDADVVVGDVVVGAGTVRAVVAGGPLGAAGRAIELDVPGAHNVLNATAAVVAAVLLDVPADLAVAGAGTFVGTGRRFEPRGEVGGVRVFDSYDHHPTEVEALLRAARPVAGDGRLVVLFQPHLYSRTRAFADRFAAALTLADEAVVTGVYRAREDVDPRVTARTITVLAGPTVSGGRVRAVEDRLEAARATAELALAGDVVITVGAGDVTELGPVILAALADRFGVAQPDGGPAATTMGPGPT0024120_321DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024120-murC-K01924NANA
AK018_018351149murG_2COG0707UDP-N-acetylglucosamine--N-acetylmuramyl-(pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferaseGTGAAGAACTCCCACGTGCGTTCCGTCGTGCTCGCCGGCGGGGGGACCGCCGGCCACGTGAACCCGTTGCTGGCCGTCGCCGACGAGCTGAGCCGCCGTGAGCCCGCCGCGCAGATCCGCGTCCTGGGCACCGCCGCCGGGCTCGAGGCCGACCTCGTCCCGGCCCGCGGCTACACGCTGCGCGAGATCCCCCGCGTCCCCCTGCCGCGTCGGCCCAGCGTCGACCTGCTGCGCCTGCCCGGCCGGCTGACGACGGCGGTGCGCGCCGCCGAGGCGGCGATCACCGAGATCGACGCCGAGGCGGTGGTGGGATTCGGCGGCTACGTGTCCACGCCCGCCTACCTCGCCGCGCGACGGCTCGACGTGCCGGTGGTCATCCACGAGCAGAACGCCCGTCCGGGCCTGGCCAACCGGCTCGGCGCCCGGTGGGCGGCCGCGGTGGGCACCACCTTCGCCGACACCGAGCTCGCGGGGGCCACGTGCGTCGGGCTGCCCCTGCGCCGCGAGATCGATGCGCTCGTCGCGGCCCGTGAGACGGACGCCGTGGCGGTTCGCGTGGAGGCCGCCGACGCCCTCGGCCTCGACCCGGCGTTGCCCACCGTCCTCGTCACCGGCGGTTCCTCCGGCGCGCTCTCGGTCAACCGGGCCGTCGTCGGCGCGGCCGGGCCCCTGCTCGACGCCGGGCTGCAGGTGCTGCACCTGACTGGCCGTGACAAGGCGGACGAGGTCCGCGCCGCCGTCGCCGATCTCGCCGCCACCCACGAGATCGGCCGCTACCAGGTGCGCGAGTACCTCACCGAGATGCACCAGGCGCTGGCCGCCTGCGACCTCGTGGTCGCCCGGTCCGGTGCCGGGACGGTCTGCGAGCTGGCCGCCCTCGGGCTGCCCGCCGTGTACGTGCCGCTGCCGATCGGCAACGGTGAGCAGCGCCTCAACGCCGCCGGCGTCGTCGGCGCCGGGGGAGGACTGCTGGTGGCCGACGACGACCTGACACCCGCGTGGGTGGCCGAGCACGTGCCGGCGCTCGCCGCGGACCGGGCGCGCCTCGAGGCCATGTCGACGGCGGCCCGCAGCGTGGGCGTGCGCGACGCCGCGGCCCGGGTCGCCGACCTGGTCGACGCGGCGGCAGGGACGGGGGAGCGGGCATGAMKNSHVRSVVLAGGGTAGHVNPLLAVADELSRREPAAQIRVLGTAAGLEADLVPARGYTLREIPRVPLPRRPSVDLLRLPGRLTTAVRAAEAAITEIDAEAVVGFGGYVSTPAYLAARRLDVPVVIHEQNARPGLANRLGARWAAAVGTTFADTELAGATCVGLPLRREIDALVAARETDAVAVRVEAADALGLDPALPTVLVTGGSSGALSVNRAVVGAAGPLLDAGLQVLHLTGRDKADEVRAAVADLAATHEIGRYQVREYLTEMHQALAACDLVVARSGAGTVCELAALGLPAVYVPLPIGNGEQRLNAAGVVGAGGGLLVADDDLTPAWVAEHVPALAADRARLEAMSTAARSVGVRDAAARVADLVDAAAGTGERAPGPT0024150_692DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024150-murG-K02563NANA
AK018_018361245ftsW_2COG0772putative peptidoglycan glycosyltransferase FtsWATGGCCGTCACCGCCGGGGTGCGCAAGCCTGCCGGTCGGCCGGAGCGCCAGTGGTTGGGGCAGTGGAACTCGTCGGTCACGAGCTACTACCTGCTGGTGGGTGCCACGGCGCTGCTGCTCATCATCGGCCTGGTGATGGTGCTGTCGTCCAGCACGGTCACGTCGATCGCCGCCGGCGAGTCGCCGTACGCCGAGGGGCTCAAGCAGGCGCGCTTCGCCCTCATCGGGCTGCCGCTGATGCTGGTGGCCGCGCGGCTTCCGGTGCGCTGGTACAAACGCCTCGCCTGGCCGGCCCTCGTCGTGGCGATCGCGCTGCAGTCGCTGACCCTGGTCCCGGCCCTCGGCCGGGCCGCGGGATCCAACGTGGGGTGGATCCACGTCGGCGGCGTGACCGTCCAGCCCGCCGAGATCGCCAAGCTCGCCCTCGCCCTGTGGCTCGGTGCGGTGCTCGGCCGCAAGCAGCACCTGCTCGGCTCGGTCGGGCACGCCCTCGTACCGGCCGTGCCCGGGGCCCTGGTGGTCTTCGGTCTCGTGATGGCGGGCAACGACCTGGGCACCGCGATGATCGTCGCCGGGCTCGTGGCCGGGGCAATGTGGGTCGCCGGAGCGCCGGCCCGGCTGCTGCTGCCCCTCGGCGCGGCCGGGGCGGCTGCGGTCGTGCTGTACGCCGTCGTCGACAACTCGAACCGCATGAGCCGCATCCTGGCCACCTACGGCGGGTGCACCGACCCGGGCGGCGAGTGCTACCAGTCCCTGCACGGGCTGTACGGCCTCGGCACCGGCGGCTTGTTCGGCGTCGGGCTGGGTGCCAGCCGCGAGAAGTGGCGGTACCTGCCCGAGGCGCACAACGACTTCATCTTCGCGATCCTCGGCGAGGAGCTCGGGCTGCTCGGCACCCTGTCCGTGCTGGCGCTGTTCGTCGCGCTCGGGGTCGCCATGGCCCGCGTGGTGCGCCGGCACCCCGACCCGTTCGTCAAGATCACCACCGCCGCCGTGGCCTGCTGGATCGTGGGCCAGGCGTTCCTCAACATCGGCGTCGTCGTCGGCGTCTTCCCCGTCATCGGGGTGCCGCTGCCGCTGGTCTCCGCCGGCGGGTCGGCGCTGGTCGCCACCATGGTGGCGCTCGGCATGGTGATCAGCTTCGCCCGCTCCGAACCCGGCGCGGCCGAGGCGCTCGCGGCCCGCGACGGCGTCGTGCGGCGCTCGATGGCGGTGCTCGGCCGGGGGCGCCGCGACGCCCGGTAGMAVTAGVRKPAGRPERQWLGQWNSSVTSYYLLVGATALLLIIGLVMVLSSSTVTSIAAGESPYAEGLKQARFALIGLPLMLVAARLPVRWYKRLAWPALVVAIALQSLTLVPALGRAAGSNVGWIHVGGVTVQPAEIAKLALALWLGAVLGRKQHLLGSVGHALVPAVPGALVVFGLVMAGNDLGTAMIVAGLVAGAMWVAGAPARLLLPLGAAGAAAVVLYAVVDNSNRMSRILATYGGCTDPGGECYQSLHGLYGLGTGGLFGVGLGASREKWRYLPEAHNDFIFAILGEELGLLGTLSVLALFVALGVAMARVVRRHPDPFVKITTAAVACWIVGQAFLNIGVVVGVFPVIGVPLPLVSAGGSALVATMVALGMVISFARSEPGAAEALAARDGVVRRSMAVLGRGRRDARPGPT0014810_1136DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014810-ftsW|spoVE-K03588NANA
AK018_018371440murD_2COG0771UDP-N-acetylmuramoylalanine--D-glutamate ligaseGTGGGTCGTGAGTTGACCGGCCCGGAGCCGGACGGCGTCCCCGCCGGGGCGCACGTCGTGGTCGCCGGTCTCGGGGTGACCGGACGTGCCGTGGTCTCCGCGCTCGCCGGCCGCGTCGCCGGGCTCGTGACCGTCGACGCCCGCGCCGCCGACGCCGACGTGACCGGCCGCGACGCGGCGGACCCGACGGTGCTCGCCCGGACCGTGGCGGGTGCGGACCTCGTCGTCGCCTCGCCGGGCTGGCCGCCGTCGTCCGACCTGCTGACCGCTGCCCGAGCCGCCGAGGTGCCGGTGTGGAGCGAGGTGGAGTTGGCGTGGCGGCTGCGCCGTGGCGCGCCGTGGCTCGCGGTGACCGGCACCAACGGCAAGACGACCACGGTGCAGATGCTGACCTCGATCCTGACCGCCGCCGGACTGCGCACCGCAGCCGTCGGCAACGTCGGCACCCCGGTGCTCGCCGCGGCGCAGGACCCGGACCTCGACGTGCTGGCGGTCGAGCTGTCCAGCTTCCAGCTGCACCACACCAGCACCATGGCCGTGCAGGCCGGTGCGGTGCTGAACATCGCCGACGACCACCTCGACTGGCACGGCGGGCCCGACGCCTACGCGGCCGCCAAGGGCCGGATCTACGCCGGCGCCCAGGTGGCCTGCGTGTACAACGTGGCCGACCCGCGCACCGAGCGCCTCGTGCGGGAAGCCGACGTCGCCGAGGGCGCGCTCGCCGTGGGCTTCACGCTCGGGGCGCCCGGACCCGGCCAGGTGGGGCTCGTCGAGGACGTCCTCGTGGACCGTGCGTTCCACGTCGCGCCCGACGCCCGCGACCGCCACCGCACGGCCGCCGAGCTCGGCACCCTGGCCGACCTGGCCCACCTCGGACCCGACGGCGCCCCGCCGCACGTCGTCGCCGACGCGCTCGCCGCAGCGGCGCTGGCCCGCGCGCACGGGGTGCCCGCCGTCGCCGTGCGGGACGGGCTGCGGGCGTTCCGCCCCGACGCCCACCGGTCCGCGCTCGTGCGCACCCTCGACGGCGTGGCCTGGGTCGACGACTCGAAGGCCACGAACGCGCATGCGGCGGCCGCCTCCCTGGCGTCGTGCCCGCCCGGTGCCGCGGTGTGGATCGCCGGCGGGCTGGCCAAGGGGGCGCGGTTCGACGACCTGGTCGCCGCGCGCGCCGACCGGCTGCGCGCCGCCGTCGTCATCGGCGTCGACCCGGAGCCGTTCACCGACGCGCTGGCGCGACACGCCCCCGAGATCCCCGTCGTCGTGGTCGATCCCGGCGACACTGGCACCGTGATGCGCCGGGCGGTGTCCGCGGCGCGCGGTCTCGCCGTCCCCGGCGACACCGTGCTGCTGGCCCCGGCCGGAGCGTCCATGGACCAGTTCGCGTCCTACGCGGCGCGCGGCGACGCGTTCGTCGCCGCCGTGGAGGACCTGCCGTAGMGRELTGPEPDGVPAGAHVVVAGLGVTGRAVVSALAGRVAGLVTVDARAADADVTGRDAADPTVLARTVAGADLVVASPGWPPSSDLLTAARAAEVPVWSEVELAWRLRRGAPWLAVTGTNGKTTTVQMLTSILTAAGLRTAAVGNVGTPVLAAAQDPDLDVLAVELSSFQLHHTSTMAVQAGAVLNIADDHLDWHGGPDAYAAAKGRIYAGAQVACVYNVADPRTERLVREADVAEGALAVGFTLGAPGPGQVGLVEDVLVDRAFHVAPDARDRHRTAAELGTLADLAHLGPDGAPPHVVADALAAAALARAHGVPAVAVRDGLRAFRPDAHRSALVRTLDGVAWVDDSKATNAHAAAASLASCPPGAAVWIAGGLAKGARFDDLVAARADRLRAAVVIGVDPEPFTDALARHAPEIPVVVVDPGDTGTVMRRAVSAARGLAVPGDTVLLAPAGASMDQFASYAARGDAFVAAVEDLPPGPT0024125_796DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024125-murD-K01925NANA
AK018_018381083mraYCOG0472Phospho-N-acetylmuramoyl-pentapeptide-transferaseATGATCGCGGTCCTGACGTCGGCGGGCGTGTCGCTGCTGGTGGCGCTGCTGGGCACGCCGCTGTTCATTCGCTTCCTCGTGCACCGCAACTACGGGCAGTTCGTCCGTCAGGACGGTCCGACGGCGCACTTCACCAAGCGCGGCACCCCCACCATGGGCGGCGTCGTGATCATCGCGGCGACCCTGCTGGGCGTGGCGGCCTCCATGGTGCTGGCGGGACGGCCGCCGAGCGCCTCGGCGCTGCTGGCCCTGTACCTGATGACAGGTCTGGGGCTGGTCGGGTTCCTGGACGACTTCACCAAGATCCGCAAGCAGCGCTCGCTCGGTCTGACGGCAAGGGCCAAGATCGTCGGGCAGGGCTTCGTGGGGATCTCCTTCGCGGTCCTGGCGCTGCAGTTTCCCAACGAGAACTCCCGCACGCCGGCGTCGACGAAGATCTCGTTCCTGCGCGACACGAACCTGGACCTGGCGTTCGCCGGGGTGACCGTGGGTCTCATCCTGTTCGTGGTGTGGGCGAACTTCCTCATCACGGCGTGGTCGAACGCCGTGAACCTCACCGACGGCCTCGACGGCCTGGCCACGGGGTCCTCGCTGATCGTGTTCGGCGCCTACGTGCTGGTGGGTATCTGGCAGCTCAACCAGTCCTGCCAGCGGCTCGCCGCGGCAGGCCCCGGCTGCTACGAGGTGCGCGACCCGCAGGACATCGCGATCGTGGCCGCCGCGATCATGGGTGCCTGCGTCGGGTTCCTCTGGTGGAACGCGTCGCCGGCGAAGATCTTCATGGGCGACACGGGGTCGCTGGCGCTGGGCGGCGCCCTGGCGGGTCTGTCGATCCTGTCGCGCACCGAGATCCTCGCCGCCATCATCGGCGGTCTGTTCGTCATCATCGTGATGTCGGACATCATCCAGATCGGCTCGTTCAAGCTCACCGGCAAGCGTGTGTTCAAGATGGCCCCGCTGCACCACCACTTCGAGCTGTCCGGGTGGGGCGAGGTGACCATCGTCATCCGGTTCTGGCTGATCGCCGGGTTCTTCGCCGCCCTCGGGATGGGCGTGTTCTACGCCGAGTGGGTCGTGAGTTGAMIAVLTSAGVSLLVALLGTPLFIRFLVHRNYGQFVRQDGPTAHFTKRGTPTMGGVVIIAATLLGVAASMVLAGRPPSASALLALYLMTGLGLVGFLDDFTKIRKQRSLGLTARAKIVGQGFVGISFAVLALQFPNENSRTPASTKISFLRDTNLDLAFAGVTVGLILFVVWANFLITAWSNAVNLTDGLDGLATGSSLIVFGAYVLVGIWQLNQSCQRLAAAGPGCYEVRDPQDIAIVAAAIMGACVGFLWWNASPAKIFMGDTGSLALGGALAGLSILSRTEILAAIIGGLFVIIVMSDIIQIGSFKLTGKRVFKMAPLHHHFELSGWGEVTIVIRFWLIAGFFAALGMGVFYAEWVVSPGPT0024105_2548DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024105-mraY-K01000NANA
AK018_018391410murFCOG0770UDP-N-acetylmuramoyl-tripeptide--D-alanyl-D-alanine ligaseATGATCGAGCTCACCGCCGCCGAGGTCGCCGAGGCCACCGGAGGTACGCCGGCCGGCGTGGACCCGCGGGCCACGGTGTCCGGACCGGTCGTGGTCGACTCGCGCCGGGTCGAGCCCGGCGCGCTGTTCGTGGCACTGCCCGGCGAGCACGTCGACGGCCACGACTTCGCGGCCGGGGCCGTGGCGCAGGGCGCCTCGCTCGTGCTGGCCGCCCGCCCCCTCGACGGGGTGCCCTGCGTGGTCGTCGCGGACGTCCAGGTGGCGTTGGGCGAGCTGGCCCGGGTGGTCCTGGAGCGGCTGCGCGCGCGCTCCGAGGTGCGCGTGGTCGCCGTGACGGGCTCGATGGGCAAGACCACCACCAAGGACCTCCTGGGCGGACTGCTCGCCCCCGAGGTGGACGCCGACGCGATCGTCGTGCCGACCGGCTCGTTCAACAACGAGATCGGGCTGCCCCTGACCGTGCTGCGGGCCACGGACCGGACCCGGCTCATGGTGCTGGAGATGGGGGCCGACCGGCCCGGCAACATCGCCGACCTGACCCGGCTGGCGCCGCCCGACGTCGGCGTCGTGCTCGCCGTGGGCACCGCCCACGTCGGCGTGTTCGGCGACGTCGAGACGATCGCGCGGACCAAGGGCGAGATGGTCGAGGGCGTCCGCGACGGCGGGACGGTCGTGCTCAACGCGGACGACTCGCGGGTCGCCGCCATGGCCGCGCGGGCGGCCGAGGAGACGCAGGTCGTCACGTTCGGCACCATCTCGGCGGCGCAGGTGCGCGCCCGCGACGTCGTCGTCGACGGCGGCCGGGCCCGGTTCACGCTGTCCGTCGGCGAGGAGTCGGCGCCGGTCGCGCTGCGGCTCGTCGGCGCCCACCACGTCACCAACGCGCTCGCGGCGGCCACCGTCGCCGTACGGCTCGGCCTGCCCGTCGACGTCGTCGCCGAGCGGCTGTCCGCGGCCACGCCCGCGAGCCCGCACCGCATGGCGGTGACGGAGCGGTCCGACGGCGTGACCGTCGTGGACGACTCGTACAACGCCAACCCCGACTCGATGCGCGCGGCCCTGCGTACCCTGGCGGTGATGGCCGGACGGACCCGGCGTTCCGTCGCGGTGCTGGGGGAGATGCGCGAGCTCGGCGAGGGCGCGCGCACCGAGCACGACGCGATCGGGCGGCTCGCCGTGCGGCTCAACGTGAAGCGTCTCGTCGTCGTCGGCGAGGGCGCCTACCACATCCACGAGGGCGCCCAGCAGGAGGGGTCCTGGGGAGAGGAGTCGGTGTTCGTGCCCGACCTGGCCACGGCGCGCGAGGTGCTGGCCGCCGAGCTGACCGGCGGTGACGTCGTGCTCGTCAAGGCGTCCAACGGTTCGGGGCTGTGGCGGCTCGCGGACGAGCTCGTGGAGGCCGCCGGATGAMIELTAAEVAEATGGTPAGVDPRATVSGPVVVDSRRVEPGALFVALPGEHVDGHDFAAGAVAQGASLVLAARPLDGVPCVVVADVQVALGELARVVLERLRARSEVRVVAVTGSMGKTTTKDLLGGLLAPEVDADAIVVPTGSFNNEIGLPLTVLRATDRTRLMVLEMGADRPGNIADLTRLAPPDVGVVLAVGTAHVGVFGDVETIARTKGEMVEGVRDGGTVVLNADDSRVAAMAARAAEETQVVTFGTISAAQVRARDVVVDGGRARFTLSVGEESAPVALRLVGAHHVTNALAAATVAVRLGLPVDVVAERLSAATPASPHRMAVTERSDGVTVVDDSYNANPDSMRAALRTLAVMAGRTRRSVAVLGEMRELGEGARTEHDAIGRLAVRLNVKRLVVVGEGAYHIHEGAQQEGSWGEESVFVPDLATAREVLAAELTGGDVVLVKASNGSGLWRLADELVEAAGPGPT0024145_1864DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024145-murF-K01929NANA
AK018_018401602murE_2COG0769UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--2,6-diaminopimelate ligaseGTGACATCCCCGAGCGACCGCATCCGTCCCGCGCGCGGCGTGCCGAGACGGCTGACCGATCTCGCCGAGGCGTTCGACCTGCGTACGACGGGTGCCCTGCCGGCCGACGCCACCGTCGGCGCGGTGGCGAGCGACAACCGTGCGGTGGCCTCCGGTGACCTGTTCGTCGCGCTGCCCGGGACCCGCGCCCACGGTGCCGACTTCGCCGCCGACGCCGTGTCCCGCGGTGCCCGTGCGGTGCTGACCGACGACGCCGGCGCCGCCCGCGCGGAGGGTCTCGGCGTCCCCGTGCTCGTGGCCCCCGACCCGCGGCTCGTGCTCGGTCCCGTGGCCGCCTGGGTGCACGGCGAGCCGGCCGGCGCGCTGCGTACCTTCGGCGTCACCGGGACCAACGGCAAGACCACCACCACCTACCAGCTGGACCACCTGCTGCGGGCGCTCGGGCACACGGCGGGCCTGGTGGGCACCGTCGAGACCCGGGCCGGCGACCGCGTGCTCGCGAGCCGCCTGACCACCCCGGAGGCCCCCGACCTGCAGGCGCTGCTCGCGGCGATGGTCGAGGACGGCGTGTCCGCCCTGACGATGGAGGTGTCCTCGCACGCGATCGCGATGCACCGTGTCGACGGCGTGGTGTACGACGTGGCGGGGTTCACCAACCTCAGCCAGGACCACCTCGACTTCCACGGCGACCTGCCGACCTACTTCGCGGCGAAGGCCGAGCTGTTCACCCCCGCGCGGTCGCGCCGCGGCGTCGTCGTGGTCGACGACGCCTGGGGCGAGCGGATGGCCGCCACCGCCTCCGTGCCGGTCGAGACGGTCCGCACCCCGGGTGCCGCCGGGACCGACGGCGGGGCCACCGCGGACTGGACGGTCTCCGACGTCGCGACGCACGGCACCGGGTCGGCGTTCACGCTCACCCACCGCGACGGGCGCTCGCTGCGCACCTCGACCTCGCTGCCCGGCGGGTTCAACGTCGCCAACGCCGCCCTGGCGGTCGTGATGGTGCTGGCCGCCGGGGTGCCGTTCGACGAGGTCACCGCCGCGCTGGCGGCCGGCGACGGCCTGTCCGCCCGCGTGCCCGGCCGGATGGAGGTCGTGGGGCCCGGCGGCGACGGCGACCCGCGCGTGGTGGTGGACTTCGCCCACAACACCGAGGCCCTCGAGCTGGCCCTGGCCGCGCTGCGTCCGACGACGCAGGGGCGCCTGGCGGTCGTGTTCGGGGCGACCGGGGACCGCGACCCCGGCAAGCGACCGGCGATGGGCGCGGCGGCCGTCGCCGGTGCCGACGTCGTGTGGGTCACCGACGACGACCCGCACGACGAGGATCCGGGCAAGGTGCGCGCCGAGGTGCTGGCCGGGGCCGAGGCGGCCCGCGCGGCCGCGCAGGACGCCGGGCGTACCGTCGTCGTCCGCGAGGTCGCCCCCCGGGGCGACGCCGTCCGCCGGGCGGTGCTCGACGCGGCCGCCGACGACACCGTGCTGGTCGCCGGACGCGGCCACGAGACCGTCCAGGAGGTCGCCGGCGTCGACCTCGAGCTGGACGACCGTCACGAGGCGCGCGCCGGGCTGCGCGCCCGCGCAGAGAGGACCGCCACCGCATGAMTSPSDRIRPARGVPRRLTDLAEAFDLRTTGALPADATVGAVASDNRAVASGDLFVALPGTRAHGADFAADAVSRGARAVLTDDAGAARAEGLGVPVLVAPDPRLVLGPVAAWVHGEPAGALRTFGVTGTNGKTTTTYQLDHLLRALGHTAGLVGTVETRAGDRVLASRLTTPEAPDLQALLAAMVEDGVSALTMEVSSHAIAMHRVDGVVYDVAGFTNLSQDHLDFHGDLPTYFAAKAELFTPARSRRGVVVVDDAWGERMAATASVPVETVRTPGAAGTDGGATADWTVSDVATHGTGSAFTLTHRDGRSLRTSTSLPGGFNVANAALAVVMVLAAGVPFDEVTAALAAGDGLSARVPGRMEVVGPGGDGDPRVVVDFAHNTEALELALAALRPTTQGRLAVVFGATGDRDPGKRPAMGAAAVAGADVVWVTDDDPHDEDPGKVRAEVLAGAEAARAAAQDAGRTVVVREVAPRGDAVRRAVLDAAADDTVLVAGRGHETVQEVAGVDLELDDRHEARAGLRARAERTATAPGPT0024130_322DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024130-murE-K01928NANA
AK018_018411761pbpB_2COG0768Penicillin-binding protein PbpBGTGGCCGCCGACCCGGTCCGTCGCCAGCGCTGGTTGATCGTGCTGGCCGCGATCGTCGTGGCCGTGTTCGTGGCGCGGCTGGTGCACGTCCAGGTGATCCAAGGGCCGGCGCTCGCCTCGACGGCGCAGCAGGCGCGCCTGGCCACCCAGGTCACGCTGGCTCACCGCGGCGACGTCCTGGACGCCCGGGGCACCGTCCTGGCGACGTCGGTGGACCGGTACACGGTGGTGGCCGACCAGGTGGCCATCCAGGGCTTCCGCGGCAACACGCGCACCGACGCCGACGGCGAGCCCGTGCAGGACGGCGCGCTCGGCATCGCCCAGCTGCTGGCGCCGGTGCTCGGGGAGACCAAGGCCACGCTGGCCGCGCGGTTGAACGGCGAGGACCGGTACGTGGTGCTCGCCCGGGACGTGGTGCCCGAGGTGCAGCGCGCCGTGTCGGCGCTGGGGCTGCAGTCCTACTTGCGCACGGACCTGACCTCGGAGCGGACCTACCCCGCCGGGACGGTGGCCGGTCCGCTGCTCGGCCACGTCAACTCCGAGCAGGTGGGGATGGGGGGCATCGAGTCGGCGTTCGACGACGTGCTGTCCGGGACCGACGGCACGGTCACCTACGAGCGGGGCCGGGACGGCGCGCAGATCCCGGTCTCGCAGCTCGAGTCGGTGCCGGCCGTCCCCGGTCAGGACGTGGTGCTCACCATCGACGGGGACGTGCAGTGGAAGGCGGAGGACCTGCTCGACGAGGCCGTCTCCGACACCGGGGCCTCGTACGCGATGGCGGTCGTCCAGGACGTGCGCACGGGCGAGGTGGTCGCGCTGGCGGACTCCGGCGACGTCGACCCGGGCGACCCGGACGCCACCGAGCAGGTGGTCGACGGCTCGCGCGCCGTGGACGTCGTGTTCGAACCCGGGTCCACCGGCAAGGTGATCGCCATGGCCGCCGCGCTGGAGGGCGGGTACTGGCAGCCGACCGACCAGTTCGAGGTCCCGGACACCTACACCGTCGACGGCGAGACGTTCCGCGACTCCCACTCCCACCCGGTGCAGCGCATGACGCTGGCCGGCATCCTCGCCGAGTCCTCCAACACGGGCACCGTGATGATGGGCGAGGAGATCCCGTTCGCCGTGCGGTACGACTACCTGCGCAAGTTCGGGTTCGGCGAGCGCACCGGGCTCGGGCTGCCCGGCGAGAGCGCCGGGCTCCTGCCCGCCGAGGACGTGGACGAGGTCGAGAACCGCACTCCGTACACGATCCTGTTCGGCCAGGGCGTCGCGGTCAGCGCGATGCAGGCCACGCAGGTCTTCTCGACCCTCGCCAACGACGGCGTCCGCATGCCGGCCACGATCTACGCCGGCACGCAGGGCGCCGACGGCGTGCTGCGTGCCGCCGACGCCGGCGAGGGCACGCGCGTGGTCTCCGGCGACACGGCGGCGCAGGTGCTGCGCATGATGGAGTCCGTCACCGGGGAGGACGGGACCGGTACCGACGCCCAGGTGCCCGGCTACCGGGTGGCCGGCAAGACCGGGACGGCCCAGATGTTCGAGAACGGCGGGACCACCTACGTGGCGTCGTTCGTGGGCGTGGCGCCGGCCGACGACCCGCGCTACACGGTCTCGGTGTTCCTGAAGAGCCCGCGGTCGTCGATCTACGGCGGCGTCGTGGCCGCCCCCGTGTTCAGCGACCTCATGGGCTACACGCTGCGCAAGGAGGGCGTGCCGCCGTCGCAGGCGCGGTTCGAGCCCTTCGCGCTGACCTGGTGAMAADPVRRQRWLIVLAAIVVAVFVARLVHVQVIQGPALASTAQQARLATQVTLAHRGDVLDARGTVLATSVDRYTVVADQVAIQGFRGNTRTDADGEPVQDGALGIAQLLAPVLGETKATLAARLNGEDRYVVLARDVVPEVQRAVSALGLQSYLRTDLTSERTYPAGTVAGPLLGHVNSEQVGMGGIESAFDDVLSGTDGTVTYERGRDGAQIPVSQLESVPAVPGQDVVLTIDGDVQWKAEDLLDEAVSDTGASYAMAVVQDVRTGEVVALADSGDVDPGDPDATEQVVDGSRAVDVVFEPGSTGKVIAMAAALEGGYWQPTDQFEVPDTYTVDGETFRDSHSHPVQRMTLAGILAESSNTGTVMMGEEIPFAVRYDYLRKFGFGERTGLGLPGESAGLLPAEDVDEVENRTPYTILFGQGVAVSAMQATQVFSTLANDGVRMPATIYAGTQGADGVLRAADAGEGTRVVSGDTAAQVLRMMESVTGEDGTGTDAQVPGYRVAGKTGTAQMFENGGTTYVASFVGVAPADDPRYTVSVFLKSPRSSIYGGVVAAPVFSDLMGYTLRKEGVPPSQARFEPFALTWPGPT0023865_365DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023865-ftsI-K03587NANA
AK018_01842423hypothetical proteinATGAGCGCACTGCGAGCCACGACGGCCGTCCCGCAGCGCAGGGGCGAGCCCGCTCCTCGCCGGGCCCCGCTGCGTGCCCTCGAGGGCGGTGCCGGCCGCCGCTTCGACGCGGTGCGCGCGCCGCTGCAGGCCACGTCCGGCGTGCCCTTCCTGGTGCTGTGCGCGCTGGTCCTGGTGGGCGCTCTGCTGGGTGCCCTGCTGCTCAACACCTCGATGGCGCGCGGCTCCTACGAGATGTCCGGCCTCCAGCGCGACGCGGGCCTGGTCGCCCAGGACGTCCAGGAGCTGCGTGCCGAGCTCCGCGCCGCCCAGGCCGGACTGCCGGCCGAGGCGGAGCGGCTGGGCATGGTGCCCGCCGACGACGTGACGATGCTCTCGGTCGTCGACGGCGAGGTCGTCCCCGGACGCGCCGGCACCCCGTGAMSALRATTAVPQRRGEPAPRRAPLRALEGGAGRRFDAVRAPLQATSGVPFLVLCALVLVGALLGALLLNTSMARGSYEMSGLQRDAGLVAQDVQELRAELRAAQAGLPAEAERLGMVPADDVTMLSVVDGEVVPGRAGTPNANANANANA
AK018_01843999rsmH_2COG0275Ribosomal RNA small subunit methyltransferase HATGAGCACCGACGACGCCTCCGAGCGCCACGTACCCGTCCTGCTGCAGCGGTGCGTCGACCTGCTCGCCCCGGCGCTGTCCGCCCCCGACGCCGTGCTGGTGGACTGCACGCTGGGCATGGGCGGGCACACCGAGGCCGTGCTGGAGCAGGTGCCGGGCGTCCGGGTGCTCGGTATCGACCGGGACCCGCAGGCGCTCGAGCTGGCCGGCGCGCGGCTCGCCCGGTTCGGCGACCGGTTCACCCCGGTGCACGCGGTCTACGACGAGGTCGGCGACGTCGTCGACGAGCTGGCCGGGGGAGCGGTCCAGGGCGTGCTGATGGACCTGGGCGTGTCCTCGCTGCAGCTCGACGAGACCGAGCGCGGCTTTTCCTACGCCCACGACGCGCCGCTCGACATGCGGATGGACCAGACGACCGGCGTCACCGCCGCGGACGTGCTCAACACCTACGACGAGCGCGACCTGGTCCGGGTGCTGCGCGAGTACGGCGAGGAGCGGTTCGCCCCCCGGATCGCGCGGGCCCTGGTCCGGCGCCGGCAGGACGCGCCGTGGGAGCGGACGGGCGAGCTCGCCGACGCCGTGCGCGCGGCGATCCCGGCGGCGACGCGGCGCACCGGCGGCAACCCGTCCAAGCGCACCTTCCAGGCCCTGCGCATCGAGGTCAACGGAGAGCTGGAGGTCCTGGCCCGCGCGGTGCCGGCGGCGATCGAGGCGCTCGCCGTCGACGGCCGGATCGTCGTGGAGTCGTACCACTCGCTGGAGGACCGCATCGTCAAGCGGGCGATCGCCCGCGGGACGACGTCGAGCGCCCCGCCGGACCTCCCGGTCGAGCCCGAGACGCACCGGCCCTACCTTGAGGCGCTCACGCGCGGGGCCGAGGAGGCCGACCCCGCCGAGAAGGAGCGCAACCGCCGCTCGGCGTCGGTCCGGCTGCGCGCCGCCCGACGGCTGCGGCCCACCCCCGAGCACCTGCAGGTCCCACCGAAGGAGTCCCGATGAMSTDDASERHVPVLLQRCVDLLAPALSAPDAVLVDCTLGMGGHTEAVLEQVPGVRVLGIDRDPQALELAGARLARFGDRFTPVHAVYDEVGDVVDELAGGAVQGVLMDLGVSSLQLDETERGFSYAHDAPLDMRMDQTTGVTAADVLNTYDERDLVRVLREYGEERFAPRIARALVRRRQDAPWERTGELADAVRAAIPAATRRTGGNPSKRTFQALRIEVNGELEVLARAVPAAIEALAVDGRIVVESYHSLEDRIVKRAIARGTTSSAPPDLPVEPETHRPYLEALTRGAEEADPAEKERNRRSASVRLRAARRLRPTPEHLQVPPKESRNANANANANA
AK018_01845474mraZ_2COG2001Transcriptional regulator MraZGTGGCAGGAGCACTGGGAGACCAGTTCCCGGGGACGGGGCTGCTGCTCGGCACGTACACCCCCCGGCTCGACGAGAAGGGTCGGCTCATCCTCCCCGCGAAGTTCCGCGCCCGTCTCGCCGCAGGGCTCGTCATGACGCGGGGGCAGGAGCGATGCCTGTTCCTGCTGCCCATGGACGAGTTCTCCCGCATGTACGAGCAAGTCCGGCAGGCTCCGGTCACCAGCCGGCAGGCACGCGACTACCTGCGCGTGTTCCTGTCGGGGGCGAGCGACGAGGTGCCGGACAAGCAGGGCCGCGTGGTCATCCCCGCGGCGCTGCGCGAGTACGCCGGCCTCGGCCGGGACGTCGCCGTCATCGGCGCCGGCACCCGGGTCGAGGTCTGGGACGCCGGCGCCTGGGAGGCCTACCTGGCCGAGCAGGAGTCGTCCTACTCCGACGTCGCCGAGGAGATCTTCCCCGACCTGCAGTTCTGAMAGALGDQFPGTGLLLGTYTPRLDEKGRLILPAKFRARLAAGLVMTRGQERCLFLLPMDEFSRMYEQVRQAPVTSRQARDYLRVFLSGASDEVPDKQGRVVIPAALREYAGLGRDVAVIGAGTRVEVWDAGAWEAYLAEQESSYSDVAEEIFPDLQFNANANANANA
AK018_018461062hypothetical proteinGTGACAGAGCACGCCACCAGCACGATCCAGGACCCGGCCGGGCCGGACGCAGGCCGGGAGGCGCTGCGGTCCGGGCTCGCCGAGCTGGTGGCCACCACCCGCAAGGTGTGCGAGTCGCTCGAGACCGTCGTGACGGGTCGGCCCGACCTGGCCCGGCTGGCCGTCGCCGTGCTCCTCGCCGGGGGGCACCTGCTGGTCGAGGACGTCCCGGGCGTCGGCAAGACGACGATGGCCAAGGCGCTCGCCCGCACGATCGACTGCCGCGCCGGGCGCGTGCAGTTCACCCCCGACCTCCTGCCGAGCGACCTGACCGGCGTCAACATCTACCGGGCGGCGTCCGGGGAGTTCGAGTTCCGCCCGGGCCCGGTGTTCAACAACGTCGTCATCGGCGACGAGATCAACCGCGCCTCCCCCAAGACGCAGTCGGCGCTGCTCGAGTGCATGGAGGAGGGGCAGGTCACCGTCGACGGGACCACGTACCCCCTGCCCCGGCCGTTCCTCGTCGTGGCGACGCAGAACCCCGTCGAGATGGAGGGCACCTACCCCCTGCCCGAGGCGCAGCGCGACCGGTTCACCGCACGGTTGTCCGTGGGATACCCGGACAACGCCGCCGAGCTGCGCATGCTCGACGCCCAGCACACGGACGACCCCCTCGCCCACCTGAGCCCCGTCACGACCGGCGAGGACATGGTCCGGTTCGCCACCTGGGTCCGGGCGGTGCACGCCGCTCCCGCCGTCAAGCAGTACGTGCTCGACCTCGTGGGGCGCACCCGCGGGCACGCGGGGCTGCGGCTCGGCGCGTCCCCGCGCGCGTCCCTGCAGTTGCTGCGCGTCGCCAAGGCGCACGCGGCGATGTCGGGGCGCCAGCACGTGCTGCCCGACGACGTGCAGGCGCTCGCCACCCCGGTGCTGGCCCACCGGTTGATCCTGTCCACCGAGTCCCGGCTCGCCGGCACCTCCGCGGAGCAGATCGTCGACGAGGCCGTCGCCATGGTGCCCGTGCCCGCCGCGGCAGCACCCGGCCGGGGCGCGCCGCAGGGCCGGGTGGCCGAGAGCCGCTGAMTEHATSTIQDPAGPDAGREALRSGLAELVATTRKVCESLETVVTGRPDLARLAVAVLLAGGHLLVEDVPGVGKTTMAKALARTIDCRAGRVQFTPDLLPSDLTGVNIYRAASGEFEFRPGPVFNNVVIGDEINRASPKTQSALLECMEEGQVTVDGTTYPLPRPFLVVATQNPVEMEGTYPLPEAQRDRFTARLSVGYPDNAAELRMLDAQHTDDPLAHLSPVTTGEDMVRFATWVRAVHAAPAVKQYVLDLVGRTRGHAGLRLGASPRASLQLLRVAKAHAAMSGRQHVLPDDVQALATPVLAHRLILSTESRLAGTSAEQIVDEAVAMVPVPAAAAPGRGAPQGRVAESRNANANANANA
AK018_018471326hypothetical proteinATGGACCGGAGCCGACTGCCCGCGCTGCTGCGACGCGTCGCCCGCGTCCGGACGACCGCACGCGGCGGCGCGCTGGCCGCGGCCGGTGCCGTCCTCGTGGCGGGCGGCGTCGTCCTCGACCTGGCGGACCTCGTCGGTCTGGGCGCCGCCGCGCTGCTGGCCGTCGCGGCCGCGTGGGCTGCCCTCGGCGTCCAGCGTCTCGACGCCGGGCGCGGCGCCCTCGACGTGGTGCGTCAGGTCGACCCGAACCCGGTGGTCGCCGGACGCCCGGCCACCGCCCGGCTCACCGTGGCGGCCCGCGCGCGGACCGGCGCCGCCTACGAGCGGCTGGCCCGGCTCCGGCTCTCGGAGCAGGCGGCGCACGAGCTGGCCGGCACCGGCGGGATCCGTGCCCAGGTCCGTTCCCACCCCGACCGCATCGCCGTGCGCTACGCCGTGACCCCGGTGCGGCGCGGTCGGTGGCCCCTCGGGCCCGTGCTGACGGTCCGCACCGACGTGTTCGGCCTGGTCCGCACCACGCAGCCGCTCGGCACGGCCACGCCCGTGGCCGTGTGGCCGCGCACGACGGAGGTGGCGGCGCGGGCGAGCGCGCTCGGCGACGTGGACCGGGCGGCGGTCGGCGCCCGGCTGTCCTCCCCGGACGACTCCGTGCTGCGCGAGTACGTCCCCGGCGACGACCCGCGCCGCGTGCACTGGCCCCGGTCGGCGCGCCAGGACCGCCTCATGGTCCGCTCGGACGAGAGCGCCGGGCTGCGGCCGGTGACCGTGCTGCTCGACCGCGGCCTGCTCGCCCCCGCCCCCGGCGGGGCACCCGGTGCCCGCCCGCCGACCGCGCAGCAGGTGGACGACGGCGAGTGGGTGGTCGAGCTCGCGGCCTCGGTGGCGACGTCGTTCCTCGACTCCGGACGTCCCGCCCGGTTGGTGGCCGGCGACGCGAGGCCGGCGGACCTGCGCACGCCGACGCACGGCACCCGGCGCGAGAGCGTCCTGGACGCGACCGTGGACCTGACCGGGTTGCGCGCCCCGGCGGCCGACGACGCGCTGGCCACCACGGTGCGCGCGCTGCGGACCGGCCGCACACGCTCCGAGATCACCATCGCCGTCCTCGGCCCGCTCGCCCCGGCCGCCCGTGGCGAGCTCGCCGCCCTGGGCGCCGACGGCACCTGCTGGGCGCTGCTCGTCGTACCGCGCCAGGAGTCGCGGCGCCCGCAGCTCGACGAGACCGCCGACGACCTGCGGGCGGCCGGGTGGCGGGTCGCCGCCTGCTACGCCGGCACCCCTCCCGAGCTCGCCTGGTCGGCGCTGACCGAGGGAGCGGCGGCATGAMDRSRLPALLRRVARVRTTARGGALAAAGAVLVAGGVVLDLADLVGLGAAALLAVAAAWAALGVQRLDAGRGALDVVRQVDPNPVVAGRPATARLTVAARARTGAAYERLARLRLSEQAAHELAGTGGIRAQVRSHPDRIAVRYAVTPVRRGRWPLGPVLTVRTDVFGLVRTTQPLGTATPVAVWPRTTEVAARASALGDVDRAAVGARLSSPDDSVLREYVPGDDPRRVHWPRSARQDRLMVRSDESAGLRPVTVLLDRGLLAPAPGGAPGARPPTAQQVDDGEWVVELAASVATSFLDSGRPARLVAGDARPADLRTPTHGTRRESVLDATVDLTGLRAPAADDALATTVRALRTGRTRSEITIAVLGPLAPAARGELAALGADGTCWALLVVPRQESRRPQLDETADDLRAAGWRVAACYAGTPPELAWSALTEGAAANANANANANA
AK018_018482232hypothetical proteinATGATCCCCCCGCACGCCGGTCCCGTCCTGCGGACGGTGGCCACGAGCCTCCTCGTCGCCGTCGCGGTGGCGGCCTCCATGCTCGCCCTGACCGGTCTCGTCCTGCCCGGGCCGTGGGTCCGGACGGGTCTGCTCGGCATCGCCCTGGTCTCGGTGGCCGTCGCGACCGTCCGCGCCCTGCTCGAGTCGCGGGCCCGGCGCGCCGGCACCGTCGCGGGCGGCTCCGTCGTCCCGACGCTGGCCGGAGGTCTGGTCGCCTCCTGGTTCGTGCTGTCCCGGTACGGGGCGCCGACCTCCGAGCCGGACCTCCTCGTCGGGCCGGAGCACCTCGCTCGCGTCGTCGCCCGGCTCGGCGACGCCGGCGAGGTCGTGCGGTCGGAGGTGGCACCCGTACCGGGCACCCTCCCCGTCGCGCTGCTCGCCGTCGGCGGCACCCTCGCTGTCCTGCTCCTCGCCGACGCACTCGCCGGCGGGCTCCACTGGCCGGCGGCCACGGGCCTGCCGCTGCTGGCCCTGTGGGCCCCGCCGCTCGTGCTCACGGGCGAGGTCCCGCGCGGCGTCTTCGTGGCCGTCGTGGCCGCCCTGCTCCTGTTGCTCACCGTCCAGCCGCCCGGCCGCGCACCGGCAGGACGCGGCGAACGACCCCCTGCCCCGGTACGCCGCGCGGAGCAGGCACGTGCGCTGGTCACCACCGGCACCGCCGTCGCCGTCGCGCTCGGCGCGAGCGTCGCGGCCACCGCGTCGGAGTCCCTGCCCGGGTACGCGGGCGCCTGGTACCAGGCCTTCACCACGACGGGCGACTCGATCCAGCTCGCCGAGGACCTCGACGTCCTGAGCAGCCTGACCGAGCGGTCCCAGGAGGTGGTGCTCACCTACTCCGGCCCGGACGAGGACGTCGGTCCGCTGCGCACGTACACGGCCTCGGCGTTCGACGGCCGGCGCTGGCAGCGCGGCGACGAACGATCGGGCGAGCCATTCACCGGCGAGGACCTGCTCTGGCCCGACGACCTGGACCGCGGCGGCCTGCTCGAACCCGCCGAGCTCGCGGTGACGGTCGGGTCGCTGCGCGACGACCAGCTGCCGCTCCCCCTGGAGCCCCGCGCCGTGGTCACCGACGGGACCTGGGGCTACGACGGCATCCGCGACGAGGTCGTCGGGGACCGCACCGACACCGGCGACACCTACGACCTGGGCGTCCGACCCCGGCCCCTCGACGCCGAGACGCTGCGGTCGGCCGGGGCGGGGACCGCCGTCGACGCCTACGTCGAGCTGCCCGACTCCGAGCACGCCGACGAGGTGGCGGCGCTGGCCACAGAGGTCGCGGGCGACGCGTCCACCGCCTTCGACCAGGCCGTCGCGCTGCAGGACTGGCTGCGGGACCCGGCGACGTTCACGTACTCCACCGAGCTCCCCCGCGGCGGGACGGGCGACCCGGTGTGGGACTTCCTGCAGCACCGCACGGGCTACTGCGTGCAGTTCGCGACGACGATGGCGGTGATGGCCCGCACGCTCGACATCCCGACCCGGCTCGGGGTGGGGTTCCTGCCCGGGGAGGCCACCGACGCCTCCGACGGGACCCGGAGCTGGACCGTGACCGGCCAGGACTCCCACGCCTGGCCGGAGCTGTACTTCGAGGGCGTCGGCTGGGTCCGGTTCGAGCCGACCCCGGCCGTGCAGACCGGGGCGCCGCCGGAGCACACCGTGGACCGCGGCGACCCCGCGGAGCAGGGAGCCACGCCGCAGCAGGTGCCCACGGCCGCCGAGCAGGAGCCGCGCACCGAGCCGACGCCCCAGCCGGCGGCCTCGGAGCCGGTGGTCGCCGTGGGGGGCGGCGGCGCGGACGAGGGCACGCCGTGGGCCGCCGTGGCGATCGTGGTACTGCTCGTCCTCGCCGCCGTCGCGCTGGCGTGGTACCTGCTGCGGCGTCGCCGCGACGAGCGGCCCTGGGACGCGGAGCGCGCGTGGGCGCAGGTCGTGGCCGCGCTGGAGCGGGACGGGGTGCGTCTGCCCCCGCGGACGACGCCGCGCACCGCACCGGCGGCCGTGGCGGACGCGGTGACCGCGGCTCGCGGCGCGGCGCCTTCCGCGGAGGTCCGCGACGACCTGCAGCTCCTCTCGGACGCCGTGGAGCGAACACGGTACGCAGCACCCGACGAGGAGGCGGCGTCCGACGACGAGGACCTGGCGGAGGTCGCCCAGCGGATCACCCGGGGTCTCGCCGCACGGGGATGAMIPPHAGPVLRTVATSLLVAVAVAASMLALTGLVLPGPWVRTGLLGIALVSVAVATVRALLESRARRAGTVAGGSVVPTLAGGLVASWFVLSRYGAPTSEPDLLVGPEHLARVVARLGDAGEVVRSEVAPVPGTLPVALLAVGGTLAVLLLADALAGGLHWPAATGLPLLALWAPPLVLTGEVPRGVFVAVVAALLLLLTVQPPGRAPAGRGERPPAPVRRAEQARALVTTGTAVAVALGASVAATASESLPGYAGAWYQAFTTTGDSIQLAEDLDVLSSLTERSQEVVLTYSGPDEDVGPLRTYTASAFDGRRWQRGDERSGEPFTGEDLLWPDDLDRGGLLEPAELAVTVGSLRDDQLPLPLEPRAVVTDGTWGYDGIRDEVVGDRTDTGDTYDLGVRPRPLDAETLRSAGAGTAVDAYVELPDSEHADEVAALATEVAGDASTAFDQAVALQDWLRDPATFTYSTELPRGGTGDPVWDFLQHRTGYCVQFATTMAVMARTLDIPTRLGVGFLPGEATDASDGTRSWTVTGQDSHAWPELYFEGVGWVRFEPTPAVQTGAPPEHTVDRGDPAEQGATPQQVPTAAEQEPRTEPTPQPAASEPVVAVGGGGADEGTPWAAVAIVVLLVLAAVALAWYLLRRRRDERPWDAERAWAQVVAALERDGVRLPPRTTPRTAPAAVADAVTAARGAAPSAEVRDDLQLLSDAVERTRYAAPDEEAASDDEDLAEVAQRITRGLAARGNANANANANA
AK018_01849417hypothetical proteinATGCCTCTGTCGGAGTACGAGCAGCGCGTGCTGGAGCAGATGGAGCGCGCGCTGGAGAGCGACGACCCCCGGCTGGCCACCACGCTCCAGCAGTCCCGCCGGCGTTCTCCGCTGCGCTTCGTGCTCGCGGCCGTCGGCGTGGTCCTCGGGCTGCTCCTGCTGGTCATCGGTGCCGCGTCGGACCTGACCTGGCTCGGCGTCATCGGCTTCGCGCTGATGTTCGCCGGAGTCGCGTTCGTCTTCGCCGCACCGCGACGCAAGGGCCCGCAGGGCACGGTCGGTGCCGACGGCGGCGTCAAGCCGTCCCCGGCGGCCGGCGGTGCAGGCGCTCCGCGTCAGGCCCGGCCCAAGAACGGCCAGGGTTTCTTCGACCGCCTCGAGGAGCGCTGGGACCGTCGCCGCGAGCAGGGGCAATGAMPLSEYEQRVLEQMERALESDDPRLATTLQQSRRRSPLRFVLAAVGVVLGLLLLVIGAASDLTWLGVIGFALMFAGVAFVFAAPRRKGPQGTVGADGGVKPSPAAGGAGAPRQARPKNGQGFFDRLEERWDRRREQGQNANANANANA
AK018_018501263dinB1_2COG0389DNA polymerase IV 1GTGAGCCGCGGGCCGCGGTCGCCGACGGCGCGGCGGGACTGGGGATCGGACGAGTCGGGCGCGGGCATCCTGCACGTCGACATGGATGCCTTCTTTGCCTCGGTCGAGCTGGTCCGCCGCCCCGAGCTGAGGGGTCGGCCCGTGATCGTCGGGGGTCGGGAACGAGGTGTGGTGCTGGCCGCGACCTACGAGGCCCGGGCGTTCGGGGTCCGGTCCGCGATGCCGATGACGCACGCGCTGGCACGCTGTCCGCAGGCGGTGGTCGTGCGGCCCGACCACCGTCGCTACCGCGAGGTCTCGGCGTCCGTCATGGAGATGCTTCGGGAGGTGACCGCCGTGGTCGAGCAGGTCTCGGTCGACGAGGCGTTCCTCGACGTCTCGGGAGCGCGTCGCAGGATGGGCCCGCCGACGACGATCGGCCGCCTCCTGCGCGAGCGCGTGGAGGCCGAGCACGGCATCACGTGCTCGGTCGGCATCGGGCGCAACAAGCTCGTGGCCAAGCTCGCGTCCACCCATGCCAAGCCCGACGGCATGCTTCTGGTGCCGGAGGCTGCGACGCTGGCGTTCCTGCGCGGCCTGCCGGTCGGCGCGCTGTGGGGCGTGGGGGACAAGACCGAGCAGGTGCTGCGTCGCTGGGGGATCACCACGGTGGCCCAGCTCGCCGACACCGACGTCGACGTGCTGCAGGCCGCCGTCGGCCGCGTCACGGGGGCACACCTGCACGACCTGGCGCTGGGGCGTGACCCGCGTCCCGTGGTGGCCGACCGTGCCGAACGGTCCATCGGTGCCGAGACGACGTTCGAGCGCGACCTGCACGACCGCGAGGACGTGGCGCGGCGGCTGCGCGAGCTCGCCGACCGGGTCACCGCCCGCCTGCGCCGGCACGACGTGGTGGCGCGCACCGTCGCGCTCAAGGTGCGTACGAGCGACTTCCGGACGCTGACACGCTCGAGGACCCTCGACGCGCCGACCGACGTGGCGCAGGAGTTCTACCGCGTGGCTCGTGAGCTCTTCGGTGCGGTCGACCTACGGGGCCTCCCAGTGCGCCTCGTCGGGGTGCGGGCCGAGGGGCTGCGGCCACGTGCGGACCTGGTCACCCAGCCGTCGCTCTTCGAGGGCGACGACCCGCACGTCGGTGCACGTCGGGAGGCCGAGGTCGCCGTGGACGCGGTCCGGGCGAGGTTCGGCGACGCCGCCATCGCTCTCGGGGCGTCCCCGGTTCCGCCTCCGACTACCGTCCGCGGCTCGGCGGGCCTATCCTAGMSRGPRSPTARRDWGSDESGAGILHVDMDAFFASVELVRRPELRGRPVIVGGRERGVVLAATYEARAFGVRSAMPMTHALARCPQAVVVRPDHRRYREVSASVMEMLREVTAVVEQVSVDEAFLDVSGARRRMGPPTTIGRLLRERVEAEHGITCSVGIGRNKLVAKLASTHAKPDGMLLVPEAATLAFLRGLPVGALWGVGDKTEQVLRRWGITTVAQLADTDVDVLQAAVGRVTGAHLHDLALGRDPRPVVADRAERSIGAETTFERDLHDREDVARRLRELADRVTARLRRHDVVARTVALKVRTSDFRTLTRSRTLDAPTDVAQEFYRVARELFGAVDLRGLPVRLVGVRAEGLRPRADLVTQPSLFEGDDPHVGARREAEVAVDAVRARFGDAAIALGASPVPPPTTVRGSAGLSPGPT0014881_1158DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ADAPTIVE_MUTATIONCE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014881-dinB-K02346NANA
AK018_01851438hypothetical proteinGTGGAGATGCGAGGTCGGATCCCGACGCCGGAGCGCGTGCGGCGGCTGCTCGACCGGGCGGACGCCGAGCTCGCCTCGGCCCTGCGCACCGCCGATCCCGCGGAGCGCTTCGTGCACGCCCACCTCGCGGCGCTGCGTTCCGCGGCGGCCCTGGTCGAGCTGCACGACGGCGGTGTGCCGCGCGGGCGCGCGCGCCCGGTGTGGGAGCTGCTGACCCGGGTCGAGCCGGAGCTCGGTGCGTGGAGCGTCTACTTCGCCTCCGGGGCGCGGCTGCGTGCCGCCGTCGACGCCGGGCGGGCCGAGGGGGTGTCCGCGCAGCGCGCCGACGAGCTGTTGGCCTGCGCGGAGGACTTCCGCGACGAGGTGGGTCTGCGCGTCGACCCGGGTGCTGGTTTCGCCCTGCCCGGTGCGCGTGACCGGTCGGCGGCGGTCTCGTGAMEMRGRIPTPERVRRLLDRADAELASALRTADPAERFVHAHLAALRSAAALVELHDGGVPRGRARPVWELLTRVEPELGAWSVYFASGARLRAAVDAGRAEGVSAQRADELLACAEDFRDEVGLRVDPGAGFALPGARDRSAAVSNANANANANA
AK018_01852981hypothetical proteinATGGCCCGACGCTCCCGCCACCGGAGGCACGACCGATCGTCCCGCACGGCACCGACACTGCCGGCGGACGAGGTCCCGATCGACACCGGCACCGCACGCATCGAACCCGACCCGGACCACTCCTCACGCGTGACGCTGCACGTCAACGGGGTGCCGAGCTCCTGCCTGGACCTCGAAGACCCCGGCTTCCTCGCGTTCGAGTACCTGCAGCAGATGGCCGCCGTGGTCGACCTCCTGCCCACGGGGCCGGTGCGGGCGGTGCACCTCGGCGCCGCGGGCTGCGCGCTGCCCCGGCAGATCGACCACGTACGACCCGGGTCGCGCCAGATCGGGGTGGACGTCGACGCCCGCCTGCTGGCGCTCGTGCGCGAGTGGTTCGACCTGCCGCGCTCGCCCGCCCTGCGACTGCGCGCCCAGGACGGCGGCCAGGCCCTCGACGGCCTGACCCCTGGCCTGGCCGACGTGGTGGTCCGGGACGCCTTCGACGGCGACAGGACACCCGCGCACCTCGTCGGCGAGCGGTTCGCGGACGCCTGCCGGCGCGCGCTGCGCCCCGGTGGCGTGGCCCTGGCCAACTGCGCCGACCGGCCCCCGCTGACCACGACCCGCGCGGAGGTCGCGGCGTTCGCGGAGGCGTTCGGGCCGGACGCCGCCGCCGAGCACCGCCTCGCCGTCGTCGCGGAACCGGCCGTGCTCAAGGGGCGGCGCTACGGCAACGTCGTCGTCGCGGCCGTCGCCCCCAGCCCCCGGCGCGGCGCCACCGGCGGCCGGGAGCCCGGGGCCGCACGGCCGGAGGAGGCGGACGACGCCGACGGCGCTGTCGACAGCGCCGTCGACAGCGACGACCGCCACCCCGACACGCTCCCCGACCTGGGTTCGGCGACGCTAGGCCGCGCCCTGCGCAGCCTGGCCGTTCCCGCCCAGGTGCTCACCGGACCGGCGCTCGAACGGTTCGTGGGCGCCACGACCTCGCCGCGGTGAMARRSRHRRHDRSSRTAPTLPADEVPIDTGTARIEPDPDHSSRVTLHVNGVPSSCLDLEDPGFLAFEYLQQMAAVVDLLPTGPVRAVHLGAAGCALPRQIDHVRPGSRQIGVDVDARLLALVREWFDLPRSPALRLRAQDGGQALDGLTPGLADVVVRDAFDGDRTPAHLVGERFADACRRALRPGGVALANCADRPPLTTTRAEVAAFAEAFGPDAAAEHRLAVVAEPAVLKGRRYGNVVVAAVAPSPRRGATGGREPGAARPEEADDADGAVDSAVDSDDRHPDTLPDLGSATLGRALRSLAVPAQVLTGPALERFVGATTSPRNANANANANA
AK018_01853204scoF_2COG1278Cold shock protein ScoFATGGCGCAGGGTTCTGTGAAGTGGTTCAACGCCGAGAAGGGCTACGGTTTCATCGCCCAGGACGGCGGCGGCGCCGACGTCTTCGTGCACTACTCGGCGATCCAGACGCAGGGATACCGCACGCTCGACGAGGCGCAGCGGGTCGAGTTCGAGGTGACGCAGGGCCCCAAGGGTCCGCAGGCGGAGCAGGTCGTCCCGCTCTGAMAQGSVKWFNAEKGYGFIAQDGGGADVFVHYSAIQTQGYRTLDEAQRVEFEVTQGPKGPQAEQVVPLPGPT0014675_7814DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_01854930hypothetical proteinGTGCTGGACCCGCAGGACATCTACGAGGTGGACGTCGAGGCAGTGGAGCGGACCCTGGGGCAGCCGGGGGACGCGGCGGCCTCGGGCCCGGTCCTGGTGCACGCGCTGCGCGGGTTCGTCGACGCGGGCTCTGCCGGCGAGCTGGCCGTGGAGCACCTGCTGGAGCGTTTCGAGCCCACGCGGTTGGTGACGTTCGACGCCGACGCCCTCGTCGACTACCGGTCGCGCCGGCCGCCGATGACGTTCGACGCGGACCGCTGGTCGCACTACGAGGCGCCGTCGCTGGTGGTCGACCACCTGCGCGACGCCGAGGGCAGCGGGTTCCTGCTGCTGCACGGGGACGAGCCGGACCTGCAGTGGGATCGGGTGGTGGCGGCGGTGCGTGCCGTCGTCGAGCGCCTCGGGGTGTCCCTGACGGTCGGGCTGCACGGCATCCCCATGGGGGTGCCGCACACCCGCCCTGCCTCCCTGACGGCGCACGGCACGCGGGACGGGCTCGTCGAGGACTACACCTCGTTCTTCGGCACGGTGCAGGTGCCGGGGTCGCTGGCGGCGCTGCTGGAGTACCGCCTCGGCCAGACCGAGCACGACGCGATGGGGGTGACGGTCCACGTGCCCCACTACCTGGCCCAGTCCCGGTACGCCCCGGCGGCGGTGGTCGCGCTCGAGCACCTGGAGAAGGCCACGGGCCTGGGGCTGCAGGTCGAGGCCCTGACGGAGGCGGCCGCCCAGGCGCGCGTGGAGGTGGCCGAGCTGGTCGCGGAGAACGAGGAGGTCGCGGCGGTCGTGCGGCGCCTTGAGGAGCAGTACGACGCGTTCAGCAGGTCGGTCGGCCGGACCAACCTGCTCGCCGACGACACCTCGCTGCCCACGGCCGAGGAGCTCGGTGCGGAGTTCGAGCGGTTCCTGGCGCAGCGCGACGACGAGTGAMLDPQDIYEVDVEAVERTLGQPGDAAASGPVLVHALRGFVDAGSAGELAVEHLLERFEPTRLVTFDADALVDYRSRRPPMTFDADRWSHYEAPSLVVDHLRDAEGSGFLLLHGDEPDLQWDRVVAAVRAVVERLGVSLTVGLHGIPMGVPHTRPASLTAHGTRDGLVEDYTSFFGTVQVPGSLAALLEYRLGQTEHDAMGVTVHVPHYLAQSRYAPAAVVALEHLEKATGLGLQVEALTEAAAQARVEVAELVAENEEVAAVVRRLEEQYDAFSRSVGRTNLLADDTSLPTAEELGAEFERFLAQRDDENANANANANA
AK018_01855441rcp1_2Response regulator rcp1ATGACGGAGCAGCAGGTGGGAATCGAGGTTCTGCTGGTCGAGGACGACCCGGGCGACGTGCTGATGACGCGGGAGGCGTTCGCCGAGCACAAGGTCGCGAACCGGCTCTCGGTCGTGGCCGACGGCGTCAGCGCGCTGGAGTTCCTGCGCCGGACGGGGGAGCACGCGGACGCACCGGTGCCGGACCTGATCCTGCTGGACCTGAACCTTCCCCGCATGGACGGGCGCGAGGTGCTCGCGGCCGTCAAGGCGGACCCGGACCTGAAGCACATCCCCGTGGTGGTGCTCACCACCTCGGAGGCGGAGGAGGACGTGTTGCGCTCCTACGCGCTGCACGCGAACGCCTACGTCACCAAGCCGGTCGACTTCGACCGGTTCATCGAGGTGGTGCGCCAGATCGACGACTTCTTCGTCTCGGTCGTCCGCCTGCCCGCGCGCTGAMTEQQVGIEVLLVEDDPGDVLMTREAFAEHKVANRLSVVADGVSALEFLRRTGEHADAPVPDLILLDLNLPRMDGREVLAAVKADPDLKHIPVVVLTTSEAEEDVLRSYALHANAYVTKPVDFDRFIEVVRQIDDFFVSVVRLPARNANANANANA
AK018_018561182sasA_5Adaptive-response sensory-kinase SasAGTGACGCCCGGGCCGACGGCGGCGGACCGGGTGCGCCGGCTGCTGCGGTGGGCGACCGCGGTGCTGGCGCTGACCGTCGTCGTGGCGGTCGCGGCGGTGGTCGGGTCCCTGGGGCAGCTGACCAGCAGCGCCGACCCGGCCTCCGTCGTCACCGCGCGGCGCTGGATCGACGCGCTGTTCCTGGTGGTCGGGCTGCTCGTCCTTGTGGCGGCGGCGCTCGGATGGTCCGCCTGGCGGACGGTGCGGCGGGGCCTGGTGGAGCCGATCGAGCACCTCGCGGCGGAGGTGCGGGCGGCCAGCGCCGGCGAGCACGACCACGAGATCCCCCGGGTGGGCACGGGCGAGGTCGCGGCGCTGTCGCGGGACGTCGAGGACATGCGGCGCGAGCTGGTGGCCCAGGTCGCGGACGCCCGCGACGCGCACGCGGAGGTGGAGGACGCCCACGAGCGCCTGCGGGAGCAGGCGGCGGAGCTGGAGCGGTCGAACCGGGACCTCGAGCAGTTCGCGTACGTCGCCTCGCACGACCTGCAGGAGCCGCTGCGCAAGGTCGCCAGCTTCACCCAGCTGCTGCAGAAGCGCTACGGCGAGCAGCTGGACGACCGCGCCGACCAGTACATCGCCTTCGCCGTCGACGGGGCCCACCGGATGCAACGGCTCATCCAGGACCTGCTGAGCTTCTCGCGCGTCGGCAGGTCGGGTGCGGCGGAGGAGGACGTCGACCTCGGCGAGCTGCTCGACCAGGTCCTGGCCGACCTCTCCGAGCGTGTCGCGGACTCGGGAGCCCGGGTCACCCACGACCGGTTGCCGGTGGTGCGCGGGGACCGCGGGCAGCTGACGATGCTGCTGCGCAACGTCGTGGGCAACGCCCTGAAGTTCGCCCACCCGGACCGTCCACCGCGCGTGCACGTCGGTGCGGCCCGTGCCGAGGGCCGGCACGGCGGCGGCTGGGAGCTGTGGTGCGCCGACAACGGCATCGGCATCGACCCGCAGTACGGCGAGCGGGTGTTCGTCATCTTCCAGCGGTTGCACCCCAAGGAGGTGTATTCCGGCACGGGGATCGGGCTAGCCCTGGTCAAGCGTGTCGTCGAGCACCACGGTGGCCGGGTCTGGATAGACCCGAGCGCCACCGAGGGCACCACGATCCGTTGGACGCTCCCCGGTCCGGGCGCGGCGTCGGCTTAGMTPGPTAADRVRRLLRWATAVLALTVVVAVAAVVGSLGQLTSSADPASVVTARRWIDALFLVVGLLVLVAAALGWSAWRTVRRGLVEPIEHLAAEVRAASAGEHDHEIPRVGTGEVAALSRDVEDMRRELVAQVADARDAHAEVEDAHERLREQAAELERSNRDLEQFAYVASHDLQEPLRKVASFTQLLQKRYGEQLDDRADQYIAFAVDGAHRMQRLIQDLLSFSRVGRSGAAEEDVDLGELLDQVLADLSERVADSGARVTHDRLPVVRGDRGQLTMLLRNVVGNALKFAHPDRPPRVHVGAARAEGRHGGGWELWCADNGIGIDPQYGERVFVIFQRLHPKEVYSGTGIGLALVKRVVEHHGGRVWIDPSATEGTTIRWTLPGPGAASANANANANANA
AK018_018571308hypothetical proteinATGAGCAGCCGCGACGAGGACGACGGGCGCACGGGGCCGCAACCGCGGCCGTTCGTGCTCCTCGTGGAGGACGACGACGGCGACGCCGTGCTCGTGACCGAGCTGCTCTCCGACGCCCAGGTCGACGTCGACCTGCACCGGGCGCGGTCGGTGGCCGAGGCCGCCGCCGAGCTCGAGCGCGGCACCGTCGACTGCCTGGTGGTCGACCTGGGGCTGCCCGACGCCGTGGGGCTGACCGCGATCGAGCAGCTGCGTCGGTCGAGCCGCCGCCACGCCGTCCCACCGGCCCTGGTGGTCCTGACGGGGCACTCCGGCGTGGACCAGGGGGTCGACGCCGTCGCCGCCGGCGCGGACGACTACCTGGTCAAGGGCGAGACCGGACCGGACCTGCTCGGCAGGTCCCTGCGCTACGCGCTGCAGCGCCGCAGCTCCGAGGCCCAGCAGCGGGCCCTGTACCGCAGCGAGGTCCGCGCCGCGGAGACGGCCCGCCTGGAGCGGGCCCTGCTGCCGCGGCCGCTGGTGGCCGACGAGGCCGTGTCCGTCATGGTCGGCTACCTGCCGGGCGGTGAGGGCCTCCTGGGCGGCGACTTCTTCGACACCGTCCAGATGTCCGACGGCACGGTGCTGTCGGTGATCGGCGACGTCGCCGGTCACGGTCCCGACGAGGCGGCGCTCGGCGCGACGCTGCGCACGGCGTGGCGCACCCTCGTGCTCACCGGGACGCCGCCGCAGGACGTGCTGGGTCACCTCGAGAGGGTGCTGGTGACCGAGCGGACCGGCCCCGAGATCTTCGTGACCCTGTGCCAGGTGGCGGTCGCCGCGGACCGGAGCTGGGTCGACGTCTACCTGGCCGGCCACCTGGCTCCGATGCTGCTGACCGGCGAGGTCGGTGCGGTGCGGTGTGCCGACATCGTGCCCGGGTCGCGCGGCCGCGCCCTGGGCGTCCCGGTCCCGGGGGAGTGGAAGGCGCACCGCGTCGCCCTGACGGGGCCGTTCGCGGTGCTCACCTACACCGACGGGCTCGTCGAGGCGGAGCTGGCGGGTCACGGCGAGGCCCCGGGCCGGGTGCGGGGGCGGGCGACGCCGCGCCTGGGCGTGCCCGGGCTGCGCACGCTGGTCCAGGACGAGCTGGACAGCGGCGGGTTCGTCGGTGTCGTCGAACGCGTGCTGCGCCGGGTCCGGCGCCTGCACGGCGGCCCGCTCGTCGACGACGCGGCGATGCTCGTCGTGGGGTGGACCGGGTACGACGACGTCGTCGGCGAACGGTCGTCGACGCTGGCCGACTCCGCCGAGTGGGCGCGCTCGTGAMSSRDEDDGRTGPQPRPFVLLVEDDDGDAVLVTELLSDAQVDVDLHRARSVAEAAAELERGTVDCLVVDLGLPDAVGLTAIEQLRRSSRRHAVPPALVVLTGHSGVDQGVDAVAAGADDYLVKGETGPDLLGRSLRYALQRRSSEAQQRALYRSEVRAAETARLERALLPRPLVADEAVSVMVGYLPGGEGLLGGDFFDTVQMSDGTVLSVIGDVAGHGPDEAALGATLRTAWRTLVLTGTPPQDVLGHLERVLVTERTGPEIFVTLCQVAVAADRSWVDVYLAGHLAPMLLTGEVGAVRCADIVPGSRGRALGVPVPGEWKAHRVALTGPFAVLTYTDGLVEAELAGHGEAPGRVRGRATPRLGVPGLRTLVQDELDSGGFVGVVERVLRRVRRLHGGPLVDDAAMLVVGWTGYDDVVGERSSTLADSAEWARSNANANANANA
AK018_018582235hypothetical proteinGTGGCGGGCAGGCAGGACGAGCTGGCACGCGAGCAGGCCGTCGTGAGCCGCCTGTACGCCCGACTCGACGAGCTGCGCGCGGTCGCCCGCGACCGGCTCGCGGAGACACGGCGCGAGGGCCCCTCGGGCTCGCCGCAGAACCGCAGCGAGCGCGACGCGTTCGCGACCATGTACTCCGACCGCGCCGCGCGCCTGGACGCCGTCGAGGACCGGCTGGTGTTCGGCCGGCTCGACCTGGACGACGGCGCCACGCGCTACGTCGGACGCGTCGGGATCACCGACGACGAGCACCGGTCGCTCCTGACCGACTGGCGGGCACCGGCGGCGCAGGCCTTCTACCGCGCCACCGCGGTGCATCCCGACGGCGTGCGGCGTCGTCGCCACCTCGTCACGACGGGCCGGACCGTCAGCGGCATCGAGGACGAGGTCCTCGACCTGGACGCCGTGCAGGACGGTCTCGAGGTCTCGACGCTGTCCGGCGAGGGGGCGCTCCTCGCGTCGATCGCCGAGCGCCGGACCGGGCGGATGTCGGACATCGTGGCCACCATCCAGGGCGAGCAGGACCGCATCGTGCGCGACGACCTCGGCGGCGCCCTCGTCGTCCAGGGCGGCCCCGGCACCGGGAAGACCGCCGTCGCCCTGCACCGCGCGGCCTACCTGCTGTACGCCCACCGGCGCGTGCTGGAGCGTTCCGGCGTGCTGCTGGTCGGGCCGAGCCGCGCCTTCCTGCGCTACATCGACCAGGTGCTGCCCTCGCTCGGGGAGACGGGGGTGGTGGCGACCACCGTCGCCGAGCTGCTCCCCGGGCTGCGCGCCGAGGGCGTCGAGGAGCCCGCGGTCGCCGAGCTCAAGGGTCGGCTCCTGTGGGGCGCCGCGGTCCGCCGGGCCGTGCGGGCCCGGGAGCGCGTGCCCGCCGCCGACGTCCCGGTCCGGCTCGACGGCGTGGACCTGGCCGTGCGGCGACGCGACGTGCGCGAGGCGATCGCCCGCGCACGGCGTACGCGCAAGCCGCACAACGAGGCCCGGGCCACGTTCGTGCGCGAGATGCTGACCCGGTTGGTCGACCAGTACCGCACCCGCACCGACTCGGAGCTGTCCGAGCACGACGTCGCCGTGCTCACCGAGGACCTGCGCGCCGACCGCGACGTGCGGGTCGCGCTCAACATCGCCTGGTTCCCGCTGACGCCCGAGAAGCTCGTGTCCGACCTCTGGGCCAAGCCGCACCGGCTCGCCGAGGCCGCACCCGAGCTGACCGGGGCCGAGCGCGAGCTCCTGCGCCGGTCGGCCGACAGCGCGTGGACCGAGTCCGACGTGCCGATCCTCGACGAGGCGGCCGAGCTGCTCGGCGAGGACGACACCGTGGCACGCGCCGAGGCACGTGCCGCCGAGGCGGAGCGCGCCGCCGAGCTGGCCTACGCCAAGCAGGTGCTGGACTCCACCGGGGCGGGCGGCGGCCTGGTCGACGCCGAGACCCTCGCGTCCCGGTTCGCCGACTCGGGGCCGGTGCTCACGACCGCCGAGCGCGCCGCCGCCGACCGGAGCTGGACCTACGGGCACGTGGTGGTCGACGAGGCGCAGGAGCTCAGCCCGATGGCGTGGCGCGCGCTGGTGCGCCGGGTGCCGACGCGGTCGATGACCATCGTGGGCGACGTCGCCCAGACCTCGTCCGTCGCCGGGACCCGGTCCTGGCGCGACGCCCTCGACCCCGTGCTGCGCGACGGGTGGCGGCTCGCCGAGCTCACCGTCAGCTACCGCACGCCCGCGACCGTCGCCGACGCCGCCCAGCGGTTCGCCGCGGCCGCCGGCCTGCCCGTCTCTCCGCTGACCGCGGCGCGGGACGTCCCCGCGGCCATGGCAGCGGTGCGCACCGAGGACCTCCCGGGCGAGACCGCGCGCCGCGCCGCCGGGCTGGTCGCCCGGCACGTGGCGGCGGACGGTACGGGCCGGGTCGCGGTCGTCGCGCCGGCCGACCGGCTGGCGCAGGTCCGCCGCGCCCTCGCCGAGGTGCTCGACGGCGTGGTGCAGGGCTCCTCGAGCCCCGTGGACGGCGAGTCCGTGGTGGTCCAGACGCCGCGCCAGGCGAAGGGCCTCGAGTTCGACGCGGTCGTGGTGGTCGAGCCCGCCGAGATCGCCGCCGTGCCGGGAGACCTGTACGTGGCGGTGACCCGCCCGACCCAGCAGCTCGTCCTGGTGCACTCCCTCGACCTGCCGCCGGGACTCGTGCACGAGGGATGAMAGRQDELAREQAVVSRLYARLDELRAVARDRLAETRREGPSGSPQNRSERDAFATMYSDRAARLDAVEDRLVFGRLDLDDGATRYVGRVGITDDEHRSLLTDWRAPAAQAFYRATAVHPDGVRRRRHLVTTGRTVSGIEDEVLDLDAVQDGLEVSTLSGEGALLASIAERRTGRMSDIVATIQGEQDRIVRDDLGGALVVQGGPGTGKTAVALHRAAYLLYAHRRVLERSGVLLVGPSRAFLRYIDQVLPSLGETGVVATTVAELLPGLRAEGVEEPAVAELKGRLLWGAAVRRAVRARERVPAADVPVRLDGVDLAVRRRDVREAIARARRTRKPHNEARATFVREMLTRLVDQYRTRTDSELSEHDVAVLTEDLRADRDVRVALNIAWFPLTPEKLVSDLWAKPHRLAEAAPELTGAERELLRRSADSAWTESDVPILDEAAELLGEDDTVARAEARAAEAERAAELAYAKQVLDSTGAGGGLVDAETLASRFADSGPVLTTAERAAADRSWTYGHVVVDEAQELSPMAWRALVRRVPTRSMTIVGDVAQTSSVAGTRSWRDALDPVLRDGWRLAELTVSYRTPATVADAAQRFAAAAGLPVSPLTAARDVPAAMAAVRTEDLPGETARRAAGLVARHVAADGTGRVAVVAPADRLAQVRRALAEVLDGVVQGSSSPVDGESVVVQTPRQAKGLEFDAVVVVEPAEIAAVPGDLYVAVTRPTQQLVLVHSLDLPPGLVHEGNANANANANA
AK018_018591239serA_2COG0111D-3-phosphoglycerate dehydrogenaseGTGCTGCGCGCCCTTCTCCTCGAGAACATCCATCCCGACGCCGTCCAGATCTTGCGGGACGCCCAGATCGACGTCGAGGTCCGCTCCGGCGCCCTCGACGAGGACGAGCTGATCGAGGCACTCGCCGACGTCCAGATCCTCGGCATCCGCTCCAAGACCCAGGTCACCCGGCGCGTCCTGGAGTCGACGCCCGGGCTGCTCGCCGTCGGCACCTTCTCGATCGGCACGAACCAGATCGACCTGGACGCCGCGGCGTCCCACGGCGTGGCGGTCTTCAACGCGCCGTTCTCCAACACCCGGTCCGTGGTCGAGCTGGCCGTGTCGGAGATCATCGCGCTGACGCGGCGCCTGACGGTCCGGGACAAGGCGCTGCACGACGGCACCTGGGACAAGACCGCCGAGGGCTCCCACGAGGTGCGCGGCCGCACCCTCGGCATCATCGGCTACGGGAACATCGGCTCCCAGCTGTCCGTGCTCGCCGAGAACCTGGGCATGAACGTCGTGTTCTTCGACACGGCCGAGAAGCTCGCGCTGGGCAACGCCCGCCGGGTCGAGACGCTGGACGAGCTCCTCGGCCTGGCGGACGTGGTGACGATCCACGTGGACGGACGCAAGGGCAACGCCGGTCTCTTCGGCGACGACCTCTTCGCCCGGATGAAGCCGGGAGCGATCTTCCTGAACCTCTCGCGCGGCTTCGTCGTGGACGTGGACGCGCTGCGGGAGCACATCCTGTCGGGTCATCTCGGCGGTGCGGCGGTGGACGTCTTCCCGACCGAGCCGAAGAAGCGCGGCGACCACTTCGAGTCCCCGCTGCGCGGCCTGGCCAACGTCATCCTCACCCCGCACGTCGGCGGGTCGACCGAGGAGGCGCAGCAGTCGATCGGTCACTTCGTCGCCAAGAAGCTGCGCGACTACCTCTTCACGGGCTCGACGACCCTGTCGGTGAACCTGCCGAACCTCCAGCTCGAGCACACCGGCGTGGGGCGCATCGCGCTGCTCCACCGCAACGTGCCGGGCGTCCTGGCCGCCGTGAACCAGGTCTTCGCGGACCACGGCGCGAACATCGAGGCGCAGATGCTGGCCACCCGCGGCGAGCTCGGGTACGTGGTCACCGACATCTCCGACGTCACCCATCGGGGCGCGTCGTCCAAGCTGATGGAGATGGACACCACCGTCCGCCTGCGCATCCGGGACGCCTTCGACCGCCCCGAGTTCCCGCCGGGTCCCGCGGCCGGCTGAMLRALLLENIHPDAVQILRDAQIDVEVRSGALDEDELIEALADVQILGIRSKTQVTRRVLESTPGLLAVGTFSIGTNQIDLDAAASHGVAVFNAPFSNTRSVVELAVSEIIALTRRLTVRDKALHDGTWDKTAEGSHEVRGRTLGIIGYGNIGSQLSVLAENLGMNVVFFDTAEKLALGNARRVETLDELLGLADVVTIHVDGRKGNAGLFGDDLFARMKPGAIFLNLSRGFVVDVDALREHILSGHLGGAAVDVFPTEPKKRGDHFESPLRGLANVILTPHVGGSTEEAQQSIGHFVAKKLRDYLFTGSTTLSVNLPNLQLEHTGVGRIALLHRNVPGVLAAVNQVFADHGANIEAQMLATRGELGYVVTDISDVTHRGASSKLMEMDTTVRLRIRDAFDRPEFPPGPAAGPGPT0009155_3318DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
AK018_01860183hypothetical proteinATGACCCACGAGAAGAAGACGTCGGCCGTGGCCGACGAGACCAAGGAGCGTTTCCGCGAGGCGCTCGAGCGGAAGAACGCCTCGCACCACCCGACGGCCGACGGGGACCGCAACACCGGGACGGTCCACGGCTCGGAGACGAGCGGTCCGGTCCAGCCCAGGTTTCGGCGCAAGTCCGGCTGAMTHEKKTSAVADETKERFREALERKNASHHPTADGDRNTGTVHGSETSGPVQPRFRRKSGNANANANANA
AK018_01861501nrdR_2COG1327Transcriptional repressor NrdRATGCACTGCCCGTTCTGCCGCCACGCCGACTCCCGGGTCGTGGACTCACGCACCTCGGACGACGGCGCCTCGATCCGTCGGCGGCGGCAGTGCCCCGCCTGCCAGCGACGGTTCACGACGATCGAGACGGCGAGCCTGTCCGTGGTGAAGCGCTCGGGCGTCACCGAGCCCTTCAGCCGCGACAAGGTCGTGTCGGGGGTGCGCAAGGCGTGCCAGGGTCGGCCCGTGAGCTCCGACGACCTGGCGCTCCTGGCCCAGCGGGTCGAGGAAGCGCTGCGCGCCTCGGGCAGCGCGGAGATCGACGCCTACGAGATCGGCCTCGCGATCCTCGGGCCGCTGCGCGAGCTCGACGAGGTGGCCTACCTGCGGTTCGCCTCGGTCTACCAGGCGTTCGACTCCCTGGACGACTTCGAGTCGGCGATCACGTCGTTGCGTGCCGAGCACGCCGAGCAGGCGGGACGGGACTCACGCGCCGACGTCGAGGAGCCCGGCGGTTCCTGAMHCPFCRHADSRVVDSRTSDDGASIRRRRQCPACQRRFTTIETASLSVVKRSGVTEPFSRDKVVSGVRKACQGRPVSSDDLALLAQRVEEALRASGSAEIDAYEIGLAILGPLRELDEVAYLRFASVYQAFDSLDDFESAITSLRAEHAEQAGRDSRADVEEPGGSNANANANANA
AK018_01862342hypothetical proteinATGGCGGCAACAGTGGCCGGCCCGGCGCCGGCCGACGGAGTGCTCGGTCTCGACGGCCTGCGGCTCACCGCGCGTGGCCGGTTCGTGCTGGCCCTGGCGGCGCTGCTGCTCGCGGCGCCCCTGGGGCTCTGGGGTCTCTCGGCGGTCGCCGGGAGCCCGCACGAGCCGGTCCCGGTCCAGCTCCACACGGTCGCACCGGGCGAGACCCTGTGGCAGTACGCCGAGCAGGTGGCCGGCCCGGGTCAGGACCTGCGGGACGTCGTGGCCGACCTGCGCGATCTGAACGGCCTGCGGAGCTCGGAGCTGCGCGTGGGGCAGGTGGTGGTGCTCCCGCGCGAGTAGMAATVAGPAPADGVLGLDGLRLTARGRFVLALAALLLAAPLGLWGLSAVAGSPHEPVPVQLHTVAPGETLWQYAEQVAGPGQDLRDVVADLRDLNGLRSSELRVGQVVVLPRENANANANANA
AK018_01863747lexA_2COG1974LexA repressorATGACGACGCGAGGCGACACGGACGCCGCGACCGCACGCACGCCCGAGCGCCGGCTGGCGTCGGTCTCGAACCTGTCCCCCGGTCCGGACCGGCTCACGGCACGGCAGCGCCGCGTGCTGGAGACGATCCGCGACTCGGTCGAGAGCCGCGGCTACCCGCCCACGATGCGCGAGATCGGCGAGGCCGTGGGACTGGCCAGCCCGTCGTCCGTCAAGCACCAGCTCACGACGCTGGAGCGCAAGGGCTACCTGCGCCGCGACCCGCACCGCCCCCGGGCGATGGAGGTCGTCGACCCCGACACCGGACGCACCGCGAGCACCGACGCTCCCCCCGCCGCTCCCACGCCGGACGGCGAGGGGTCCGAGACCCCGGCGCCGTCGTACGTCCCGCTGGTCGGCCGGATCGCCGCCGGCGGGCCGATCCTCGCCGAGCAGGTCGTCGAGGACGTCTTCCCGCTGCCGCGCCAGCTCGTCGGGGACGGCGAGCTGTTCCTGCTGAAGGTCGCGGGCGACTCGATGGTCGAGGCGGCGATCTGCGACGGCGACTGGGTCGTGGTGCGCCGCCAGAACGTCGCGGAGCAGGGCGAGATCGTGGCGGCGATGATCGACGGCGAGGCGACGGTCAAGACCTTCAAGCAGATCGACGGGCACACCTGGCTGCTGCCGCAGAACGACGCCTACTCCCCGATCGCCGGGGACGAGGCCCAGGTCCTCGGCCGGGTGGTGGCGGTCCTGCGGAGCCTGTGAMTTRGDTDAATARTPERRLASVSNLSPGPDRLTARQRRVLETIRDSVESRGYPPTMREIGEAVGLASPSSVKHQLTTLERKGYLRRDPHRPRAMEVVDPDTGRTASTDAPPAAPTPDGEGSETPAPSYVPLVGRIAAGGPILAEQVVEDVFPLPRQLVGDGELFLLKVAGDSMVEAAICDGDWVVVRRQNVAEQGEIVAAMIDGEATVKTFKQIDGHTWLLPQNDAYSPIAGDEAQVLGRVVAVLRSLPGPT0014895_306DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014895-lexA-K01356NANA
AK018_01864969ldh2_2COG0039L-lactate dehydrogenase 2GTGGGCCCCGTGAAGAAGACCCGCAGCACCACGAAGCTCGCCGTCATCGGTGCGGGGGCCGTCGGCTCCACCCTCGCCTTCACCGCGCTCGCCCGCGGCACGGCGAGGACGGTCGCCCTCATGGACGTCAACCGCGCCAAGGTCGACGCCGAGGTCCTCGACCTTCGCCACGGCGGCATGTTCGTCCCTCAGGCCGAGGTCGTCGGCTCCGACGACGTCGAGGTGTGCCGGGACGCCGACGTGGTCGTGGTGACCGCGGGCGCCAAGCAGAAGCCGGGCCAGTCCCGGCTCGACCTCGCCGAGGCCACGATCGGCCTGACCCGCAAGATCGTGCCCGCGCTCGTCGAGGTCGCCCCGGACGCGGTGTTCGTCATGGTCACCAATCCGGTCGACGTCGTCACGTACGCCGCGCAGCAGTTCTCCGGGCTGCCGCACGAACAGGTCTTCGGGTCGGGCACCGTGCTCGACTCCTCGCGGCTGCGCGCGGCGCTGGCCGACCACTGCGGTGTCGCGACGGGCAACGTGCACGCGTACATCGCCGGCGAGCACGGCGACTCGGAGATCGCGCTGTGGAGCTCGGCACGGATCGCGGGGGTGCCGCTCCTGGAGTGGAACGCCCTGCCGGGCCGGGCCGAGCTCGACGACGTGGCACGGGAGCGCATCGCCCGGGAGGTGGTCGAGTCCGCCTATCGCGTGATCGCCGGCAAGGGTGCCACGAACTACGCGGTGGGGCTGGCCGCGACGCGCATCGTCGAGGCGGTGCTGAACGACGAGCACCGCGTCATGCCGGTCTCCACGCGTATCCAGGACTTCCACGGCATCGGGGACGTCTGCCTCTCGCTGCCGACGCTGGTCGACTCCCGTGGGGCGACCGTCACGGTCGACACGCCCTTCTCCGAGGCGGAGCTGGAGGGCCTGCGGGCCTCGGCCGACCACGTCCGGGCCGTCCAGCGGCGCTTCGGGCTCTGAMGPVKKTRSTTKLAVIGAGAVGSTLAFTALARGTARTVALMDVNRAKVDAEVLDLRHGGMFVPQAEVVGSDDVEVCRDADVVVVTAGAKQKPGQSRLDLAEATIGLTRKIVPALVEVAPDAVFVMVTNPVDVVTYAAQQFSGLPHEQVFGSGTVLDSSRLRAALADHCGVATGNVHAYIAGEHGDSEIALWSSARIAGVPLLEWNALPGRAELDDVARERIAREVVESAYRVIAGKGATNYAVGLAATRIVEAVLNDEHRVMPVSTRIQDFHGIGDVCLSLPTLVDSRGATVTVDTPFSEAELEGLRASADHVRAVQRRFGLPGPT0001760_1539DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001760-ldh-K00016NANA
AK018_018652082dinG_2COG1199putative ATP-dependent helicase DinGGTGACGTCGCCACCCCCCGCCCAGACCCGAGCGCCCGCCGAGGGCACCCCCGCGGACGCCGACGAGACGCAGGTCCCGGGGGTCGACGAGCTGCTCGACGTCGCCGTCGAGGCGCTCGGCGGCACGCCCCGGGACGGTCAGCGGCAGATGGCGGCGGAGGTCGCTGCCGCGTTCGAGTCGGAACGGCACCTGCTCGTCCAGGCGGGCACCGGCACGGGCAAGTCGCTCGGCTACCTGGTGCCCGCCGTCCGGCACGCCGTGGCCGCCGGCGACCGTGTCGTCGTGTCCACCGCGACGCTCGCGCTGCAGCGCCAGGTCGTCACCCGGGACCTGCCCCTCGTGGCCGACGCCGTCGGCCCCCGGCTGCCGCGCGCACCCCGCGTCGCGCTGCTCAAGGGGTGGCACAACTACCTGTGCCGGCACAAGGTCGCCGGCGGTTACCCGGCCGACGGGGCGACGCTCTTCGACCTCCCGGCCGACCCCGGACCCGGTGAGGGCGCCGCCGCCGAGCAGCACCCGTCCGGGGGCGACCGGGGCTCCGACGGCGCACGTCTCGCCGACCACGTCCGCCGGCTGCACGCCTGGGCCGAGGAGACCGACACCGGCGACCGCGACGACCTGGTGCCGGGCGTCCCGGACCGCGCCTGGCGCCAGGTCTCGGTCACCTCCCTGGAGTGCCTGGGGCAGAAGTGCCCCCTCATCACCGAGTGCTTCGGCGAACGGGCGCGCCTGACCGCACGGGAGGCCGACGTCGTCGTGACGAACCACGCCATGCTCGGGATCGCGGCCGCCGGCAACACGAACGTCCTGCCGGAGCACGGTGCACTGGTGGTCGACGAGGCCCACGAGCTCGCGGACCGGATCACGGCCGCCGCGACCGTCGACCTCGCGGCCGGCACCGTCGAGAACGCGGCGCGCCTGGCGCGGCGGCACGGGGGAGTGCAGACCGAGGAGCTGGACGCCGCGGCCCAGGCCCTGGCACGGCTGCTGACCGAGGTGCCGGCCGAGCGGTTCCCCCAGGGGCTGCCCGGCGAGCTCCGCACGTCGGTGGCGGCCGTGCGCGACGCCGCCCGCAGCCTGCTCACCGCCCTGCGCCCCGAGAAGGGCGCCGACGCGGACCCCGGTGTGAAGATGGCCCAGTCCGCGGTCCAGCAGCTCTTCGACGTGGCAGAACGCATGACCGCCGAGGAGTCCGGGGGAGACGTGCTGTGGTGCTCGCGGCCGCCGGCCGACGCACCCTGGGGCGACGGCGTCGGACGGCTCCACGCGGCGCCCCTGGGCGTGGCCGGGCTCATCGGTTCCGAGCTGCTCGGCGAACGCACCGGCGTGATGACGTCCGCGACCCTGGAGCTCGGCGGCACGTTCGACCCCGTGGCGCGTTCCCTCGGGCTGACCGGTGACGGCGACGGCGACGGCGGCCAGTGGCGCGGCATCGACGTCGGCAGCCCGTTCGACTACGCCGGCCAGGGCATCTGCTACGTCGCCAAGCACCTGCCGGCACCCGGCCGCGAACCCACCACCGAGGCCCAGCTCGACGAGATCGCCGGACTGGTCGAGGCCGCGGGCGGACGCACGCTCGGGCTCTTCTCCTCGCGCCGGGCCGCGACGGCGGCGGCGGAAGCCATGCGGGAGCGGCTCGACGTGCCCGTGCTCTGCCAGGGGGACGACCAGCTGCCCACCCTGGTGCGGGAGTTCGCCGACGACCCGAGCACCTGCCTGTTCGGCACGCTGTCCCTCTGGCAGGGCGTCGACGTCCCCGGGGACGCGTGCCGGCTCGTCATCATCGACCGCATCCCGTTCCCGCGGCCCGACGACCCGGTCCGCTCGGCGCGGGCGCGTGCCGTCGAGGAGGCGGGCGGCAACGGGTTCATGCAGGTGGCCGCCACGCACGCGGCCCTGCTCCTGGCGCAAGGAGCGGGCCGACTCATCCGGTCGACGACCGACCGCGGGGTCGTCGCCGTGCTCGACCCGCGGCTCGTCACCGCTCGCTACGGATCGTTCCTGACGCGCTCGTTGCCGCCGTTCTGGCGGACCACCGACGGGAACCTGGTTCGGGCTGCGCTGCGTCGCCTCGCCGCCTAGMTSPPPAQTRAPAEGTPADADETQVPGVDELLDVAVEALGGTPRDGQRQMAAEVAAAFESERHLLVQAGTGTGKSLGYLVPAVRHAVAAGDRVVVSTATLALQRQVVTRDLPLVADAVGPRLPRAPRVALLKGWHNYLCRHKVAGGYPADGATLFDLPADPGPGEGAAAEQHPSGGDRGSDGARLADHVRRLHAWAEETDTGDRDDLVPGVPDRAWRQVSVTSLECLGQKCPLITECFGERARLTAREADVVVTNHAMLGIAAAGNTNVLPEHGALVVDEAHELADRITAAATVDLAAGTVENAARLARRHGGVQTEELDAAAQALARLLTEVPAERFPQGLPGELRTSVAAVRDAARSLLTALRPEKGADADPGVKMAQSAVQQLFDVAERMTAEESGGDVLWCSRPPADAPWGDGVGRLHAAPLGVAGLIGSELLGERTGVMTSATLELGGTFDPVARSLGLTGDGDGDGGQWRGIDVGSPFDYAGQGICYVAKHLPAPGREPTTEAQLDEIAGLVEAAGGRTLGLFSSRRAATAAAEAMRERLDVPVLCQGDDQLPTLVREFADDPSTCLFGTLSLWQGVDVPGDACRLVIIDRIPFPRPDDPVRSARARAVEEAGGNGFMQVAATHAALLLAQGAGRLIRSTTDRGVVAVLDPRLVTARYGSFLTRSLPPFWRTTDGNLVRAALRRLAANANANANANA
AK018_018661542hflX_2GTPase HflXTTGACCCACATCCCGACCGACCCCGAGCACCCCGCCACGCCTGCCGCCGCCACGCCGGACGAACCCGCCGCGCGCGACGCCCAGGCCATCGCGAACGACGTCGTCGCGCGGGTCCTCGCCCGGGCCGGGACCGCGCGGTCCGAGGGCGCCACCGTGCACACCGCCCACGACGGCGACCAGCTCGACCTGGCCGAGCGCAGCGCCCTGCGGCGCGTCGCCGGTCTGTCGACCGAGCTCGACGACGTCACCGAGGTCGAGTACCGCCAGCTGCGCCTCGAGAAGGTCGTGCTCGTCGGTCTGTACCCCGGCGGCGAGCACGCCGCGCGCGAGGCCGAGGTGTCGCTGCGCGAGCTCGCGGCGCTGGCCGAGACCGCCGGTTCCCAGGTGCTCGACGGGCTCCTGCAGAAGCGTGCCAAGCCCGACCCCGGCACGTTCCTCGGCTCGGGCAAGGCCGCCGAGCTCGCCGACGTCGTCGCCGCCACGGGGGCCGACACCGTCGTCGTGGACACCGAGCTCGCGCCCTCCCAGCGCCGTGGACTCGAGGACATCGTTAAGGTCAAGGTGGTCGACCGCACCGCCCTGATCCTCGACATCTTCGCCCAGCACGCCAAGTCCCGGGAGGGCAAGGCGCAGGTCGAGCTCGCCCAGCTCGAGTACCTGCTGCCCCGCCTGCGCGGCTGGGGCGAGTCGATGTCCCGCCAGGCCGGCGGGCAGGTCGGCGGGGCGGGAGCCGGCATGGGGTCCCGCGGGCCCGGCGAGACCAAGATCGAGCTCGACCGGCGGCGCATCCGCAACCGGATGGCCAAGCTGCGCCGCGAGATCGCCGCCATGGCCCCGTCCCGCGAGACCAAGCGGCTCGACCGGCGCCGGCACGCCATCCCGAACGTCGCCATCGCCGGGTACACCAACGCCGGCAAGTCCTCGCTGCTCAACGCGCTGACCGACGCCGGCGTGCTCGTGGAGAACGCGCTGTTCGCCACGCTCGACCCGACCGTCCGCCGCGCCCGCACCGAGGACGGCCGCGTGTACACCCTGGCCGACACCGTCGGGTTCGTGCGCCACCTGCCCCACCAGCTCGTCGAGGCGTTCCGGTCTACGCTGGAGGAGGTGGGCGACGCGGCGCTGCTGCTGCATGTCGTCGACGCCTCCCACCCGGACCCCGAGGGCCAGATCGACGCCGTGCGCGAGGTGCTCGCCGAGATCCCCGGCGTCGAGGACGTGCCCGAGGTCGTCGTGCTCAACAAGGCCGACGTCGCCGACCCGGAGGTCGTCGGCCGCGTCCAGCGTCGCGAACGCCGCACCGTCGTGGTCTCCGCGCACTCCGGCGAGGGCGTCGCGGAGCTTAAGGCGCTCGTCGCCGCCGAGCTGCCGCGGCCCGCCGTGGAGATCGACGTCGTCGTGCCCTACTCGCGCGGCGACCTCGTCCACCGGGTCCACGAGAACGGCGAGCTCGCCACCGAGGAGCACCTCGCCGAGGGCACCCGCCTGCGGGGCCGGGTCGACGCCGCGCTCGCGGCCGAGCTGTCGCGCGTCGCGGTCTGAMTHIPTDPEHPATPAAATPDEPAARDAQAIANDVVARVLARAGTARSEGATVHTAHDGDQLDLAERSALRRVAGLSTELDDVTEVEYRQLRLEKVVLVGLYPGGEHAAREAEVSLRELAALAETAGSQVLDGLLQKRAKPDPGTFLGSGKAAELADVVAATGADTVVVDTELAPSQRRGLEDIVKVKVVDRTALILDIFAQHAKSREGKAQVELAQLEYLLPRLRGWGESMSRQAGGQVGGAGAGMGSRGPGETKIELDRRRIRNRMAKLRREIAAMAPSRETKRLDRRRHAIPNVAIAGYTNAGKSSLLNALTDAGVLVENALFATLDPTVRRARTEDGRVYTLADTVGFVRHLPHQLVEAFRSTLEEVGDAALLLHVVDASHPDPEGQIDAVREVLAEIPGVEDVPEVVVLNKADVADPEVVGRVQRRERRTVVVSAHSGEGVAELKALVAAELPRPAVEIDVVVPYSRGDLVHRVHENGELATEEHLAEGTRLRGRVDAALAAELSRVAVPGPT0007245_630DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007245-hflX-K03665NANA
AK018_01867615rsmC_2Ribosomal RNA small subunit methyltransferase CATGCCCGGTGTGAGCGACCACTACTTCACGGCCGACCCGGCGTCCGACGCCGAGCGTCGCGTCCTCGGCGTCCGCCTGGGCGGGCAGGACCTGGACGTGGAGGTCGCCGGCGGCGTCTTCTCCCCCGGCGGGGTCGACAAGGGCACCCGGATCCTCCTGGACGAGGTGCCGGGACCGCCGTCGGGCGACCTGCTGGACCTCGGCTGCGGGTGGGGGCCGGTGGCCCTGACCATGGCGCTGGCGAACCCGGCGGCGACCGTCTGGGCGGTGGACGTCAACGCTCGCGCCCTGGACCTGGTGCGACGCAACGCGGAACGCCTCGGTGTCGCCGACCGGGTCCGCGCCGTCACGCCCGACGGGGTGCCCGACGCCGTCACCTTCGCCGCGCTGTGGTCCAACCCGCCGATCCGGGTGGGCAAGTCCGTGCTGCACGAGATGCTGCGCACGTGGTTGCCCCGGATCGCCCCGGGCGGAGCGCCGGGCGGCGCCTGGATGGTGGTCCAGAAGAACCTGGGCTCGGACTCGTTGGCCCGCTGGATCGAGACCGAGCTCGGCCTGGCCACCCGCCGCGCGACGTCGTCGAAGGGCTTCCGGGTGCTGCACACCACCCGCTGAMPGVSDHYFTADPASDAERRVLGVRLGGQDLDVEVAGGVFSPGGVDKGTRILLDEVPGPPSGDLLDLGCGWGPVALTMALANPAATVWAVDVNARALDLVRRNAERLGVADRVRAVTPDGVPDAVTFAALWSNPPIRVGKSVLHEMLRTWLPRIAPGGAPGGAWMVVQKNLGSDSLARWIETELGLATRRATSSKGFRVLHTTRNANANANANA
AK018_018681068hypothetical proteinGTGACCCCGGCCGACGACGTCGCCGCGGTCGCGCGGGCCGCCTCGGCCCTCCTCGAGGCCGAGCTGGGCGACCCGACGGACCTGGGCGGGTCGGCCCGGTTGACGGTCCTGCGCTGCCGCCGGGGCTCCGGCACGGTCGTCGTCAAGCAGTTCGGCGGGCACGACGACGGCGGGTACGCCCGCGAGGTGGCGGGGCTGATGCTGCTCGGCCGCACCCCGGACCTCATGGCCCGCGACGACGCGCAACGGCTGCTCGTCATGACCGACCTGGGCGACCCGCCGACCCTCGCCGACCTGCTGCTGGGCGACGACCGCGCCGCGGCCTGGACCGGGGCGGCCTCCTGGGCCCGCGAGCTGGGCCGCCTCGCCGGCGACGGGCGCGCCCGTGCCCACGACGCCGGCGCGCTGCGGGGCGAGCAGCCGTGGGTGATCCTCGACGACCTGACCCGCGGCGCCGAGCGGCTGGCCGACCTGGTGCCGGGCGGCGACACGGCCGGGCTGCTGGCCGAGGCGCGCCGGGTCGCCCGGCGGTTCGAGGACGCGGACCGCGCGGTGCTCGCGCCGTCGGACGCCTGCCCCGACAACGCCGTCCTGCGGCCGGACGGTTGGTGGTTCCTCGACCTCGAGGGCACTGTCGTGCAGCCGCCCGCGTTCGTCGCCGCCTACACGATGCTGCCGTTCGCGACGTGCTGGTGCGTGTTCGACCCGCCCGCGGGCCTCACCGACACCCTCCTGGCCGAGTTCACCACCGGCCTCGAGCAGACCGCTCCCGGACTCCTGGCCGGCCTGGACTGGCACCGCGAGGTCGCCACGGCGTGCGCGGGCTACGTCCTGGCGATGACCGGGTGGCTCCTGGACAGCACCCTCGCCGGACGGGAGCACGTCGGCCCGCCGGGCCGGTCGCCGTCGTACCGGCAGCTCATGACCTCGCGGTGGCGGTGGGCCGCGGTGAACCTGCGCCCGGTCATGCCCGTGCTTGCCGGCACCTGCGCCGCGGCGGCGCGGTGGGCCAGCAGCACCTGGGGGAGCGAGGCGGAGGCGGCCGGCTACCCGGCGTTCGCCGACTGAMTPADDVAAVARAASALLEAELGDPTDLGGSARLTVLRCRRGSGTVVVKQFGGHDDGGYAREVAGLMLLGRTPDLMARDDAQRLLVMTDLGDPPTLADLLLGDDRAAAWTGAASWARELGRLAGDGRARAHDAGALRGEQPWVILDDLTRGAERLADLVPGGDTAGLLAEARRVARRFEDADRAVLAPSDACPDNAVLRPDGWWFLDLEGTVVQPPAFVAAYTMLPFATCWCVFDPPAGLTDTLLAEFTTGLEQTAPGLLAGLDWHREVATACAGYVLAMTGWLLDSTLAGREHVGPPGRSPSYRQLMTSRWRWAAVNLRPVMPVLAGTCAAAARWASSTWGSEAEAAGYPAFADNANANANANA
AK018_01869936dapF_2COG0253Diaminopimelate epimeraseATGACGCTGCGCTTCACCAAGGGCCACGGCACCCGCAACGACTTCGTCCTGGTCGCCGACACCCGCGGCGACCTCGACCTCACCGCCGAGCAGGTGCGCCACCTCGCCGACCGGCGCAGCGGCATCGGGGCCGACGGCGTCGTCCGGCTCGCGCCGACCGCCGCCGTCGCACGCTCCGGCGAGCAGGTCGCGGACGCCGTGCTGGCCGAGGAGCCGGAGGCGATCTGGTTCATGGACTACCGCAACGGCGACGGCAGCATCGCCGAGATGTGCGGCAACGGCGTCCGGGTGTTCGCCGCGTTCGCCGAGAGCCTCGGGCTCGTCGACCTGTCCGACGGCCGCGAGCTCGCGCTCGGCACCCGCGGCGGCGTCAAGCGCGTGCGCAAGGAGCCGGACGGCTGGTACGCCGTCGACATGGGGCCGTGGCGCCTGACCGGTGGCCAGGAGGCGGCCGACGCCGGCGCCGACGCGGTCGTGCTCGCCACCGGCTGGGACGCGCCACGTCCCGCGCTGAGCCTCGACCTCGGCAACCCGCACACCGTCGTCGCCGTGCCGCGCCTCGACGAGCTCGCCGCCGTCGACCTCACCCGCGCCCCCGAGGTGGAACCCGTCCCGCCCGCCGGGACCAACGTCGAGGTCGTCGTCCCGCTCGGCGAGGAGGAGGGGCCCGACGGTCGGCCCGTCGGGCGGCTGCGGATGCGGGTGCACGAGCGCGGCGTGGGCGAGACGCAGTCCTGCGGGACCGGTGCGTGCGCCGCGGCGCTCGCGGTGCGGACCTGGGCCGCGCACGGCGTCGACGACCCGCACGGGGTGCCGTCCACCTGGTTCGTCGAGGTGCCCGGCGGCGAGGTCCGCGTGCGCGTGCTGCACGGCGGGCACGTCGAGCTCGCCGGTCCGGCCGAGCTCGTCTTCAGCGGCGACGTCGACCTGGCGTGAMTLRFTKGHGTRNDFVLVADTRGDLDLTAEQVRHLADRRSGIGADGVVRLAPTAAVARSGEQVADAVLAEEPEAIWFMDYRNGDGSIAEMCGNGVRVFAAFAESLGLVDLSDGRELALGTRGGVKRVRKEPDGWYAVDMGPWRLTGGQEAADAGADAVVLATGWDAPRPALSLDLGNPHTVVAVPRLDELAAVDLTRAPEVEPVPPAGTNVEVVVPLGEEEGPDGRPVGRLRMRVHERGVGETQSCGTGACAAALAVRTWAAHGVDDPHGVPSTWFVEVPGGEVRVRVLHGGHVELAGPAELVFSGDVDLAPGPT0007230_576DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778NANA
AK018_018701002miaA_2COG0324tRNA dimethylallyltransferaseGTGATCGTCGCCGTCGTAGGACCCACCGCCACCGGCAAGTCGGACCTCGCCCTCGACCTGGCCGAGGCGCTCTCGCCCGGTGGTGCCGGCCCGGCCGGCGAGGCGCCCGCCGAGGTCGTGGGCGCCGACGCGTTCCAGCTCTACCGCGGCATGGACGTCGGCACGGCCAAGGTCCCGCCGCACGAGCGCCGCGGGATCACCCACCACCAGTTCGACGTGCTCGAACCCACCCAGGACGCCTCCGTCGCGCGGTACCAGACGACGGCCCGGTCCGATCTCGACGCGATCGCCGCTCGCGGCGCGCGGGCCGTCGTCGTCGGCGGCTCCGGCCTCTACGTGCGTGCCCTGCTGGACGAGATGAACTTCCCCGGCACCGACCCGCAGGTGCGGGCCCGCCTCGAGGCCCGGGCGCAGACCGAGGGGCGCGCGGCGCTGCACGCCGAGCTCGACCGCGTCGACCCCGCCGCCGCCACCAGCATCGGCCCGGAGAACACCCGCCGACTGGTGCGCGCCCTGGAGGTCGTCGAGCTCACCGGGCGCCCCTACACCGCCAACCTGCCCCGTCAGGAGTACGTGCGCCCGGCGGTCCAGATCGGGCTCGACTGCGACCGGGAGACCCTCGACGCCCGTGTCGCCGCACGGGTCGAGCGGATGTGGGACGCCGGTCTCGTCGACGAGGTGCGCCGGCTCGCCTCGCCCGAGCAGGGCGGGACCGGCGCGGGCCTGGGCGCCACCGCCGCGCGCGCCGTCGGCTACGCCGAGCTGCTGCGCTGGTTCGCCGGGGACCTCAGCGAGACCGCGGCACGCGACGCCGTCGTGGCGAACACCCGGCGCCTGGCCCGCAAGCAGATGGGCTGGTTCGGCCGCGACCCGCGCGTGCAGTGGCTCGACGCCGGGTCGCCCGCGCTGGTCGACGAGGCGCTCGCCGTCGTGCGCGCCGCTCAGGCGGGCGAGCTGCCGGCGCCGGGCGAGGGTCCCGTGCGCCGTAGTCTGGGCTCATGAMIVAVVGPTATGKSDLALDLAEALSPGGAGPAGEAPAEVVGADAFQLYRGMDVGTAKVPPHERRGITHHQFDVLEPTQDASVARYQTTARSDLDAIAARGARAVVVGGSGLYVRALLDEMNFPGTDPQVRARLEARAQTEGRAALHAELDRVDPAAATSIGPENTRRLVRALEVVELTGRPYTANLPRQEYVRPAVQIGLDCDRETLDARVAARVERMWDAGLVDEVRRLASPEQGGTGAGLGATAARAVGYAELLRWFAGDLSETAARDAVVANTRRLARKQMGWFGRDPRVQWLDAGSPALVDEALAVVRAAQAGELPAPGEGPVRRSLGSPGPT0007210_1173DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0007210-miaA|ipt-K00791NANA
AK018_01871474hypothetical proteinGTGCTGCTGCTGACCGTGCTCGCCGTGAGCCTGCTGTCCGGGCTGGTCCCGGTCATCAGCGTCGAGGTGTACCTCGGTGGCGTCGCGGCCGTGACCGACGTCGCCTCCGACCCGCTGCTGCTGGCCGCGGTGGCGGCGGTGGCCGCCGTCGGGCAGACGGTCGCGAAGGTCGTCTGGTACCTGGGCGCGGCCCGTTCGATGGAGACGGCGTGGGTGCGGCGCAAGCTGGCGGACCCGCGGCGGCGGGCGTCGTTCGAGCGCTGGCAGTCCCGCATCGCCGGGCGGCACGGGCTGTCCGCCCTGGTGCTGCTCGCGTCGGGGTCGGTGGGGTTCCCGCCGCTGATGATCCTGGCGGTGGTCGCGGGCTCCCTGCGCGTCCCCCTGGCGGTGTTCGTCCCGACGGTGCTGGTGGGCCGCGCGATCCGGTTCTGGGCGCTCCTGGCGGGCGTGGGATGGTTCGCGGTCGGCGGCTGAMLLLTVLAVSLLSGLVPVISVEVYLGGVAAVTDVASDPLLLAAVAAVAAVGQTVAKVVWYLGAARSMETAWVRRKLADPRRRASFERWQSRIAGRHGLSALVLLASGSVGFPPLMILAVVAGSLRVPLAVFVPTVLVGRAIRFWALLAGVGWFAVGGNANANANANA
AK018_01872591hypothetical proteinGTGCCCGTCCGCGCCGTCGTCCTGCCCGCCACCGTCCTGCTCGTACCGACCACCGGTGCCCGCACCGGTCCCGCCGACGCCGTGCGCGCCGTCGTCCTCGCGGCCCTGCGCGCCGTCGACGCCGGTGCCGGGTGGGGCGTCCTCGGTCCGGCGCCGGACCGCTCGCGTCGCGACGGGCGGCCGAGCCTGGCGGGCGCCGGGATCGCCGACCGGTGGGTGCCGCTGCTCGCCGACAACGCCTGGCCCGCACCGGGCGGCCCGGCGGCGGGCACAGCGGTCTCCGTCGCCGCGCTGCTGCTCGCCGAGGCGCACGGCGCGCGGACGGCGGCCGCCGCCGGGACCGTCGAGCTGGCCGACGGCGACCCGGAGGCCCTCGAGCATGCGGTCGCGGACCTGGCGGGGCGGGACGCCGTCGTCGTCGCCGGCGGGGTTCCCGGCGACCCGCACGCCGGCGACGCCTGCACCCCGGCCGTGTCCGCCGTCGTGCGCGAGCTCGCCGCCCGGGGCGTGTGGCGTTCCCGCACCGAGGACGTCGAGGCGCACGGCGACCACCTGCCCGGGCGCTACACGATCACGGTCTGGGACGGCTGAMPVRAVVLPATVLLVPTTGARTGPADAVRAVVLAALRAVDAGAGWGVLGPAPDRSRRDGRPSLAGAGIADRWVPLLADNAWPAPGGPAAGTAVSVAALLLAEAHGARTAAAAGTVELADGDPEALEHAVADLAGRDAVVVAGGVPGDPHAGDACTPAVSAVVRELAARGVWRSRTEDVEAHGDHLPGRYTITVWDGNANANANANA
AK018_01873522hypothetical proteinGTGCCCCCGGTCGAGGCCGACACGGACCGGCTCCGCGCGGACGTCGAGAACGTCCTCCTCGCGGGCCCGGTCGGCGACGCGGCGGGCGCGGTCCCGGTCCCCGTCACCCGCGAACGCGTCTCCGCCTGGCTCGACGCCGGCGGCTTCACGTACTTCGTGGACACCGACGGCGATCTCGGCGGGATCTGGCACGGGCGGGTCTTCTACTTCCTCGTCCTCGGCGACGACGGTCAGGTGCTGCAGGTGCGCGGTCAGTGGCACCGGCAGGCGACGATCGAACGGCTCGGCGACATCCTGGAGATCTGCAACGCCTGGAACGCCGACCGCATCTGGCCCAAGACGTACACCCGGGTGCGCGACGACGGCGCGGTGGTGGTGTGCGCCGAGGTGACCGTGGGCGTGGAGCACGGCGCGAGCGACGACCAGCTCGGCCAGCTGCTCGAGTGCGGGCTGTCGACGGGCGCGATGTTCTTCGAGCACCTGGACGCCGCGTTCCCGGACCCCCTGGGGGGGGCGCCGTGAMPPVEADTDRLRADVENVLLAGPVGDAAGAVPVPVTRERVSAWLDAGGFTYFVDTDGDLGGIWHGRVFYFLVLGDDGQVLQVRGQWHRQATIERLGDILEICNAWNADRIWPKTYTRVRDDGAVVVCAEVTVGVEHGASDDQLGQLLECGLSTGAMFFEHLDAAFPDPLGGAPNANANANANA
AK018_01874510hypothetical proteinGTGACCGGTCCGCTGCGCCGCGCCACCGCGGCGGTGCTGCAGGCGGCCCGTCGGCGCGGGCGTCCCGAGGCCGTGGCGCGCCCCGAGCTGCCCGCACCCGTGACGACCGCCCGCATCGGCCAGGACCTGTCGCGCCGCGGCTACCGGTTCCGCACGGACGACGACGGCGACATCACCGGCACCTGGGACGGCAACCGGTTCTGGTTCCTGCTGCTCGGCGACGACGAGGAGATCCTGCAGGTCCGCGGACGCTGGGCGGGTTCCGTGCCCGAGTCGGCGCGCAGCGCGGTGCTGCAGGCCTGCAACGACTGGAACCGCGAGCGGATCTGGCCCAAGGTCTACGCCCGCGAGGAGGGGGACGCCCTCGCGCTGTACGCGGAGGTGTCGGTGGACCTCGAGCACGGCGCCACCGACGGGCAGCTCGCCGAGGCCGTGTCGTGCGGCCTGGTCACCGCGTCGCAGTTCTTCGGCAGCGTCGGCCCGCTGACCGACCCCGACCGGCCGGCCTGAMTGPLRRATAAVLQAARRRGRPEAVARPELPAPVTTARIGQDLSRRGYRFRTDDDGDITGTWDGNRFWFLLLGDDEEILQVRGRWAGSVPESARSAVLQACNDWNRERIWPKVYAREEGDALALYAEVSVDLEHGATDGQLAEAVSCGLVTASQFFGSVGPLTDPDRPANANANANANA
AK018_018751662miaB_2COG0621tRNA-2-methylthio-N(6)-dimethylallyladenosine synthaseATGTCCACGACCATGCCTACCCCCACCGCCGACGTCTCGCCCGCCCAGGAGCGGCCCGTGCCCCGGGACGGGGCGGCAGGACGCTCCTACACCGTGCGCACGCTCGGTTGCCAGATGAACGTCCACGACTCGGAGCACATGGCCGGGTTGCTCGAGCAGGCCGGCTACGTCCGCGCCTCGGCCGAGGACGACGCCGCCGACCAGGCCGACGTGGTCGTCATCAACACCTGCGCCGTGCGCGAGAACGCCGCCACGCGTCTCTACGGCAACCTGGGCCAGCTCGCGAGCGTCAAGGCCGACCGGCCGGGGATGCAGATCGCCGTGGGCGGCTGCCTGGCCCAGAAGGACCGTGGCGAGATCGTGGACAAGGCGCCGTGGGTCGACGTCGTCTTCGGTACCCACAACCTCGACGCGCTGCCGGTGCTGCTGGAGCGGGCCCGGCACAACGAGGCGGCAGAGGTCGAGATCGCCGAGTCGCTGCAGGTCTTCCCCTCCACGCTGCCCACCCGCCGCGAGTCGGTCTACGCCGGGTGGGTGTCGATCTCCGTGGGGTGCAACAACACGTGCACGTTCTGCATCGTGCCCCACCTGCGCGGCAAGGAGCGCGACCGGCGCCCCGGCGAGATCCTCGCCGAGGTGCAGGCGCTGGTGGACGCCGGGGCCGTCGAGGTGACGCTGCTGGGCCAGAACGTCAACAGCTACGGCGTCGAGTTCGGCGACCGCGGGGCGTTCGCGAAGCTCCTGCGCGCCTGTGGCCGGATCGAGGGCCTGGAGCGGGTGCGCTTCACGTCCCCGCACCCGGCGGCGTTCACGGACGACGTCATCGAGGCGATGGCCGAGACCCCGAACGTGATGCCGCAGCTGCACATGCCGCTGCAGTCGGGCTCGGACCGCGTGCTGCGCGCGATGCGCCGCAGCTACCGGTCCGCGAAGTTCCTCGGGATCCTCGACCGGGTGCGTGCCGCGATGCCGGACGCCGCGATCACCACCGACATCATCGTGGGCTTCCCGGGTGAGACCGAGGAGGACTTCGCCGAGACGTTGCGCGTGGTCGAGGCCTCGCGGTTCTCCTCGGCGTTCATGTTCCAGTACTCGCCGCGGCCGGGCACGCCCGCGGCGACCATGGACGGCCAGCTGCCCAAGGAGGTCGTCCAGGAGCGCTTCGAGCGGCTGCTCGCGCTGCAGGAACGCATCAGCGCCGAGGAGTCCGCGCGGCAGGACGGACGGACCCTCGAGGTGCTGGTCTCGGAGGGCTCGGGCAAGAAGGACGGGGCCAGCCACCGCTTGTCCGGGCGGGCCCCCGACAACCGGCTCGTGCACCTCGCGCTGCCGGCCGGCGTGCTGCCCGACGGCGTGACCCTGGCCGACGCCCCGGAGTCACCGCAGGACCCGCGGCTGGCCGACGTCGCCGCGCTGGACCCGCGGCTGCCGCGACCGGGCGACATGGTCACGGTCGACGTCACCCGCGCCGCCCCGCACCACCTCATCGCCGACTCGGCGCTGACCGGCGGCAGCTTCGCGGTGCGGCGCACCCGCTCGGGCGACGCGTGGGCCCGGCGCGAGCTCACGCGCCTCGGTGCCGGCGACGACGACCACTCCCACGGCGGGAGCGCGCAGCCGGGCGGCCCGGTCACGCTCGGGATGCCGTCCCTGCGGCGCTGAMSTTMPTPTADVSPAQERPVPRDGAAGRSYTVRTLGCQMNVHDSEHMAGLLEQAGYVRASAEDDAADQADVVVINTCAVRENAATRLYGNLGQLASVKADRPGMQIAVGGCLAQKDRGEIVDKAPWVDVVFGTHNLDALPVLLERARHNEAAEVEIAESLQVFPSTLPTRRESVYAGWVSISVGCNNTCTFCIVPHLRGKERDRRPGEILAEVQALVDAGAVEVTLLGQNVNSYGVEFGDRGAFAKLLRACGRIEGLERVRFTSPHPAAFTDDVIEAMAETPNVMPQLHMPLQSGSDRVLRAMRRSYRSAKFLGILDRVRAAMPDAAITTDIIVGFPGETEEDFAETLRVVEASRFSSAFMFQYSPRPGTPAATMDGQLPKEVVQERFERLLALQERISAEESARQDGRTLEVLVSEGSGKKDGASHRLSGRAPDNRLVHLALPAGVLPDGVTLADAPESPQDPRLADVAALDPRLPRPGDMVTVDVTRAAPHHLIADSALTGGSFAVRRTRSGDAWARRELTRLGAGDDDHSHGGSAQPGGPVTLGMPSLRRPGPT0007215_30DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007215-miaB-K06168NANA
AK018_01876780glnQ_4Glutamine transport ATP-binding protein GlnQATGGACAACAGCGGATCGAGCACGACGCCCGGCTCCCACCTGGGTGCTCCGCTCGTCGAGCTCGAGGGAGTCAACAAGCACTTCGGGGACCTGCACGTGCTGCAGGAGATCGAGCTGACGGTGCGCCGCGGCGAGGTGCTCGTCGTCATCGGCCCCTCGGGGTCGGGCAAGTCGACGCTGTGCCGCGCCATCAACCGGCTCGAGACCATCGACGAGGGCGAGATCCGGATCGACGGCGAGCCGCTGCCCGCCGAGGGCCGCGACCTGGCTCGGCTGCGCGCCGACGTCGGCATGGTGTTCCAGGCGTTCAACCTCTTCGCGCACAAGACCGTGCTGGACAACGTCACGCTCGGCCCGCGCAAGGTCCGCAGGCTCTCCAAGTCGGACGCCGAGGAGGAGGCGTACGCGCTCCTCGACCGCGTCGGCGTCCGCGACCAGGCGGCGAAGTTCCCCGCCCAGCTCTCCGGCGGTCAGCAGCAGCGCGTCGCCATCGCCCGGTCCCTGGCGATGCACCCGAAGGTGATGCTCTTCGACGAGCCCACCTCCGCGCTCGACCCCGAGATGATCAACGAGGTCCTGGACTCCATGGTCCAGCTTGCCCACGAGGGCATGACGATGATCGTCGTCACCCACGAGATGGGGTTCGCCCGCAAGGCCGCGGACCGCGTCGTCTTCATGGCCGACGGACAGATCGTCGAGCAGAACACCCCCGAGGAGTTCTTCACCCATCCGAAGAGCGACCGCGCCAAGGACTTCCTGTCGAAGATCCTCACCCACTGAMDNSGSSTTPGSHLGAPLVELEGVNKHFGDLHVLQEIELTVRRGEVLVVIGPSGSGKSTLCRAINRLETIDEGEIRIDGEPLPAEGRDLARLRADVGMVFQAFNLFAHKTVLDNVTLGPRKVRRLSKSDAEEEAYALLDRVGVRDQAAKFPAQLSGGQQQRVAIARSLAMHPKVMLFDEPTSALDPEMINEVLDSMVQLAHEGMTMIVVTHEMGFARKAADRVVFMADGQIVEQNTPEEFFTHPKSDRAKDFLSKILTHPGPT0000785_218DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000785-gluA-K10008NANA
AK018_01877855glnH_2COG0834ABC transporter glutamine-binding protein GlnHATGCGACGCACACGCACCACGGGAGCGATCGCCCTCGCGGCGACCGCAGCACTCACGCTCGCCGCCTGCTCCGACGACTCCGGCAACGGCGGCGACGGCGGCGGCGACGCCGAGGGCGGCGACTCCGTCACCATCGGCATCAAGTACGACCAGCCCGGCCTCGGGTTCATGGACGGCGACACCCCGACCGGTTTCGACGTCGAGGTCGCCAAGTACGTGGCCGGGGAGCTCGGCTTCTCCGAGGACCAGATCGAGTGGACCGAGGCGCCGTCCGCCCAGCGCGAGACGCTGCTGTCCACCGGCCAGGTCGACATGATCTTCGCCACCTACTCCATCACCGACGAGCGGCGCGAGCAGGTCGACTACGCCGGCCCGTACTTCGTGGCCGGTCAGGACCTGCTGGTCGCCGCGGACAACACCGACATCACCGGACCGGACACCCTCGACGGCAAGAACCTGTGCTCCGTCACCGGGTCGACGTCCGCCCAGCGCATCAAGGACGAGTACTCCGAGGGCGTGAACCTGCTCGAGCAGCCGGGCTACGCCGAGTGCGTCACCGCGTTGGTCTCCGGTCAGGTCGACGCCGTGACCACCGACGACATCATCCTGGCCGGCCTCGGCGCCCTCCCGGAGAACGCCGGCGAGGTCAAGGTCGTGGGCAACACCTTCTCCGAGGAGCGCTACGGCGTCGGTCTGCAGCCGGGCGACGAGCGCTGCGAGCAGATCAACGAGGCCATCACCGCGATGATCGACGACGGGTCGTGGCAGGAGGCGCTGGACGCCGCCACCGAGGGCACCGGCTACACGCCGAACTCGGAGCTGAACCCGCCGGAGTACGACTCCTGCGACCAGTGAMRRTRTTGAIALAATAALTLAACSDDSGNGGDGGGDAEGGDSVTIGIKYDQPGLGFMDGDTPTGFDVEVAKYVAGELGFSEDQIEWTEAPSAQRETLLSTGQVDMIFATYSITDERREQVDYAGPYFVAGQDLLVAADNTDITGPDTLDGKNLCSVTGSTSAQRIKDEYSEGVNLLEQPGYAECVTALVSGQVDAVTTDDIILAGLGALPENAGEVKVVGNTFSEERYGVGLQPGDERCEQINEAITAMIDDGSWQEALDAATEGTGYTPNSELNPPEYDSCDQPGPT0000770_570DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000770-gluB-K10005NANA
AK018_01878678glnM_2COG0765putative glutamine ABC transporter permease protein GlnMGTGCAGGAGTATCTCGACATCCTCCGCGAGTACGACGTGCTCGGAGCGTTCTGGGTGAACATCCAGCTCGCGTTCTGGGCAGCGTTGTTCTCGCTGGTGCTGGGTTCGGTCCTGGCCCTGTTCCGCATCTCCCCGATCTCCAGCCTCCAGTGGGCCGGCTCGGCCTACGTCACGGTGTTCCGGAACATGCCGCTGACGATCATCATGGTCTTCATGGTGCTGGGCGCCTGGGGGCAGCTGGAGTTCTCGCTCGCCACGGACTTCAACACCAACTTCTTCTGGCTGGCCGTCGTCGGCCTGACGATCTACCACGCCGCGTTCGTCTGCGAGGCGATCCGGTCCGGCGTCAACACGGTGCCGGTCGGACAGGCCGAGGCCGCGCGCTCGATCGGCCTGCCGTTCGTCGCCGCCGCGCGCCTCGTGATCCTGCCCCAGGCGTTCCGCGGCGCCATCGCCCCCCTCGGCAACGTGCTCATCGCGCTCATCAAGAACACCACGGTCGCGGCCGCCGCCTCGGTGGCCACCGAAACCTCCTCGGTGATGCGCACGATGATCGAGTTCCGGCCCGACTACATCTACGCGATCTTCTTCACCTTCGCGATCGGCTACGTGATCCTCGTGACCCCTGTCGGCCTGCTGGCCACCTCGTTCTCGCGTCGACTGGCGGTGGCCCGATGAMQEYLDILREYDVLGAFWVNIQLAFWAALFSLVLGSVLALFRISPISSLQWAGSAYVTVFRNMPLTIIMVFMVLGAWGQLEFSLATDFNTNFFWLAVVGLTIYHAAFVCEAIRSGVNTVPVGQAEAARSIGLPFVAAARLVILPQAFRGAIAPLGNVLIALIKNTTVAAAASVATETSSVMRTMIEFRPDYIYAIFFTFAIGYVILVTPVGLLATSFSRRLAVARPGPT0000775_211DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000775-gluC-K10006NANA
AK018_01879951hypothetical proteinATGAGCGCAGAGAAGACCGTCCTGTTCGACTCCCCCGGTCCGCGGGCACGCCGCAGGATCCTGATCGGCAACATCGTCGGTGCCGTCGTGGTCCTCGGGGTCCTCGCCGTCGTGCTGGCCCGCCTCGCCGACAAGGGGCAGCTCGAGCCCTCGCTGTGGCTCAACGCCGTCGACGCCGACGCCTGGGCCTACTACTACTGGCCCGGCTTCCTGGCGACGCTGCGCGCCGCCGCCGTCGCGATCGTGGGTGCGATGATCTTCGGCCTGCTGTTCGGCGTGGGCCGGCTGTCCAGCCATCTGCCGGTGCGGATCGTGTGCGGGGCGGTGGTCGAGTTCTTCCGCGCCGTCCCCGTGCTGCTCATGATGGTGTTCTTCTGGCTGCTCTTCGCCAACGCTGGTATCCCCTCCGCGTCCTACTGGGGCGTCGTCACCGGCCTCATCCTCTACAACGGGTCCGTGGTCGCCGAGCTGGTGCGCTCCGGCGTGCACGGCCTGCCGAAGGGGCAGCGTGAGGCCGCCCTGACCGTCGGCCTCACGCGCGGCCAGTCGTTGCGGTCCATCGAGGTGCCCCAGGCCCTCATGGCGATGCTGCCGGCGCTTGTCTCCCAGCTCGTCGTGGTCCTCAAGGACTCGGCGCTCGGCGCGATCATCTCCTACTCGGAGCTGCTGCAGCAGGCGCGCTACCTCGGGTCCGGGAACAGCAACATCCTGCAGACCCTCGCGGTCGCCGCGGTGCTGTTCATCCTCATCAACTGGAGCCTCACGAAGCTCGCCGAGCGGCTCGGGCGGACGCTCAAGCGCACGTCAGGGCGTACCGGCACGATGGCCGCCGGCCTGGACGCCGGGGTCGGGGTGGGCGCGACGGCTCAGGCTGCCGACCACGCCCACGGCGTCGACCGCGGTGAGGGTGCCGGGCCGGGCGACCCCGAGCAGCCGGGACGCTGGGGATAGMSAEKTVLFDSPGPRARRRILIGNIVGAVVVLGVLAVVLARLADKGQLEPSLWLNAVDADAWAYYYWPGFLATLRAAAVAIVGAMIFGLLFGVGRLSSHLPVRIVCGAVVEFFRAVPVLLMMVFFWLLFANAGIPSASYWGVVTGLILYNGSVVAELVRSGVHGLPKGQREAALTVGLTRGQSLRSIEVPQALMAMLPALVSQLVVVLKDSALGAIISYSELLQQARYLGSGNSNILQTLAVAAVLFILINWSLTKLAERLGRTLKRTSGRTGTMAAGLDAGVGVGATAQAADHAHGVDRGEGAGPGDPEQPGRWGPGPT0000780_71DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000780-gluD-K10007NANA
AK018_018809512-haloacrylate reductaseGTGCGCGCTGCCGTCCGTGACCGCTACGGTCCCCCCGAGGTCGTCTCGGTGCGCGAGGTTCCGGAGCCGACGCTCGCTGCCCACGAGGTTCTCGTCCGCGTCCGCGCCACCACCGTCAACCGCACCGACACGGCGTACCGCGCCGGCCGTCCCTGGCCCGCCCGACCCGTGTACGGCATCCCACGCCCGCGGGCACGAGTGCTCGGGTGCGAGTACGCCGGGGTCGTCGAGGCCGTCGGTGACGAGGTGACCGACCGCGACGTCGGCGAGCGCGTCTACGGCTACCTGGAGGGCCGCTTCGGCGCTCATGCCCAGCTGATGGCGGTGCCCGCCGACGGCTGGATCGAGGCGATCCCGGAGCATCTGTCCTTCACGGACGTCGTCGGACTCACGGAGGGGCCGCACTACGCGCTGGCCTTCTGCGACCGCCTTCGCATCGGTTCCGGGACGCGGGTCTTGGTGCACGGAGCCACCGGAGCGATCGGCAGCGCCACCGTCCAGCTCGCCGCCGCCCGAGGAGCCGTCGTCACCGCGGTCTGCGACGCCGCGCACGCCGACTTGCTGCGCTCGCTCGGAGCGGCCCGCGTGATCGCGCGCGACGAGGTCGACTTCACCCGGGACGAGGCCCGGTTCGACGCGATCGCCGACGCCGTCGGCAAGAGCTCGTTCGCCCGGTGCCGACGGTTGCTGGGACCGGACGGCCTGTTCGCCTCGTCCGAACCCGGCCCCGGCGGCGTCAACGTCCTGCTCGCCGCCCTGCCGGGCGTACGGGTCCGGTTCCCGGTCCCGCCACCCGAGGTGCGGGCACGGCGCACGCTGCACGACCTGATCGCCGCCGGCCGCCTCGTCCCCGTCGTCGACCGGCGCTGTCCGCTGGACGACGTCGTCGCCGCGCACCGGTACGTCGACGCGGGCCGCAAGATCGGCAGCGTCGTCATCGACGTGCCGTGAMRAAVRDRYGPPEVVSVREVPEPTLAAHEVLVRVRATTVNRTDTAYRAGRPWPARPVYGIPRPRARVLGCEYAGVVEAVGDEVTDRDVGERVYGYLEGRFGAHAQLMAVPADGWIEAIPEHLSFTDVVGLTEGPHYALAFCDRLRIGSGTRVLVHGATGAIGSATVQLAAARGAVVTAVCDAAHADLLRSLGAARVIARDEVDFTRDEARFDAIADAVGKSSFARCRRLLGPDGLFASSEPGPGGVNVLLAALPGVRVRFPVPPPEVRARRTLHDLIAAGRLVPVVDRRCPLDDVVAAHRYVDAGRKIGSVVIDVPNANANANANA
AK018_01881567recX_2COG2137Regulatory protein RecXGTGGGGAAGCGTCGCGGCCGTCCGACCGTCGTCGAGCGGCTGGAGGCCGGGGAGCTGACGACGGCGGAGGCCACCGAGCTGACGAGGGAGGCAGTGCTGCGCATCCTCACGGCCGCACCCAAGAGCCGGGCCGAGATCGCGCGGTCCCTCGCCCGCAAGGGCCACCCCGAGGAGGTCGCCCAGGCGGTGCTCGACCGCTTCGAGGAGGTCGGTCTGGTCGACGACGCCTCCTACGCCGAGACGATCGTGCGTACCCGGCACCACGAGCGGGGCCAGGCGAGGCGCGCGATCTCCGCCGAGCTGCACCGCCGTGGCGTCGACCACGACGTCGCCGCCGGCGCGCTGGAGCAGATCGACGGTGACGACGAGGCTCGCGCCGCCGCGGAGCTCGCCCGCAAGCACGTGGCACGGACCCGCGGGCTCGACCGCGACAAGCGGGTGCGCCGGGCCGTCGGGGCACTGAGCCGCAAGGGCCACAACCCGTCCGTCGCCTTCGCCGCGGTCAAGGACGCCCTGGCCGCCGAGGGCGAGGACTCCGTCGACGACGATCTCTACCTGGCCGACTGAMGKRRGRPTVVERLEAGELTTAEATELTREAVLRILTAAPKSRAEIARSLARKGHPEEVAQAVLDRFEEVGLVDDASYAETIVRTRHHERGQARRAISAELHRRGVDHDVAAGALEQIDGDDEARAAAELARKHVARTRGLDRDKRVRRAVGALSRKGHNPSVAFAAVKDALAAEGEDSVDDDLYLADPGPT0007240_1471DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007240-recX-K03565NANA
AK018_018821182recA_2COG0468Protein RecAATGAGCAGCAGACCGAAGCGCGGCCGCGCGCAGAACACGAAGGTGACCGACATGCCTGCACCGGAAGACCGTGAGAAGGCCCTCGAGGCCGCGCTCGCCCAGATCGACCGCAGCTTCGGCAAGGGCTCGATCATGCGTCTCGGCCAGGAGGGGCGCGCCCCGGTGGAGATCATCCCCACCGGGTCCATCGCACTGGACGTCGCGCTCGGCATCGGCGGGCTGCCGCGTGGGCGCATCATCGAGGTCTACGGCCCGGAGTCCTCGGGCAAGACGACCGTCGCCCTGCACGCGGTGGCCAACGCCCAGAAGAACGGCGGCATCGCGGCGTTCGTCGACGCCGAGCACGCCCTGGACCCCGAGTACGCCAAGAAGCTGGGCGTCGACACCGACGCGCTGCTCGTCTCCCAGCCGGACACCGGGGAGCAGGCCCTGGAGATCGCGGACATGCTGATCCGCTCCGGGGCGCTCGACATCATCGTCATCGACTCGGTCGCCGCGCTGGTGCCGAAGGCGGAGATCGAGGGCGAGATGGGCGACAGCCACGTCGGCCTCCAGGCCCGCCTCATGTCGCAGGCGCTGCGCAAGATCGCCGGCGCTCTGAGCACCTCGGGCACCACGGCGATCTTCATCAACCAGCTCCGCGAGAAGATCGGCGTGTTCTTCGGCTCACCCGAGACGACCACGGGCGGCAAGGCCCTGAAGTTCTACGCCTCGGTGCGCATGGACATCCGCCGGATCGAGACGCTCAAGGAGGGCACCGACTCGGTCGGCAACCGGACGCGGGTCAAGGTCGTCAAGAACAAGATGGCCCCGCCGTTCAAGCAGGCCGAGTTCGACATCCTGTACGGCGTCGGTATCTCCCGCGAGGGCGGCCTGATCGACATGGGCGTCGAGCACGGGTTCGTGCGCAAGTCGGGCTCGTGGTTCACCTACGGCGGCGACCAGCTCGGCCAGGGCAAGGAGAACGCCCGCGCGTTCCTGCGTGACAACCCCGACCTGGCCAACGAGCTGGAGAAGAAGATCAAGGAGAAGCTGGGCGTCGGGGCCCAGGTCGACGCGCCGGCCGAGGGTGAGGACGCGGAGACCACGGCGGACGCCGTGCCTGCCGCCGCCGACGTCGCCGCCAAGCGCACCACCAAGACGGCGCGCACGACCAAGGCGAAGAAGGAGCAGCCCTTCTGAMSSRPKRGRAQNTKVTDMPAPEDREKALEAALAQIDRSFGKGSIMRLGQEGRAPVEIIPTGSIALDVALGIGGLPRGRIIEVYGPESSGKTTVALHAVANAQKNGGIAAFVDAEHALDPEYAKKLGVDTDALLVSQPDTGEQALEIADMLIRSGALDIIVIDSVAALVPKAEIEGEMGDSHVGLQARLMSQALRKIAGALSTSGTTAIFINQLREKIGVFFGSPETTTGGKALKFYASVRMDIRRIETLKEGTDSVGNRTRVKVVKNKMAPPFKQAEFDILYGVGISREGGLIDMGVEHGFVRKSGSWFTYGGDQLGQGKENARAFLRDNPDLANELEKKIKEKLGVGAQVDAPAEGEDAETTADAVPAAADVAAKRTTKTARTTKAKKEQPFPGPT0007235_376DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0007235-recA-K03553NANA
AK018_01883234hypothetical proteinGTGCGCTACTCCGACTTCTCCCGGCTCGTCGACGAGGTCTTCGGCTCCGCCTACGGGCGGGTCCTGGTCCGTGAGCAGGTGCTCCCGCGCCTCGAGGACCGCACGCCGGAGCAGGCGCTCGCGGCCGGCGCCGAGCCGCGGGACGTGTGGCACGCGCTGTGCGACGCCCTGGACGTGCCGGACGCGCGCCGGTGGGGGACCGACCGGTTCCGGCAGGCCCCGCCGCCGGGCTGAMRYSDFSRLVDEVFGSAYGRVLVREQVLPRLEDRTPEQALAAGAEPRDVWHALCDALDVPDARRWGTDRFRQAPPPGNANANANANA
AK018_018844749srmBATP-dependent RNA helicase SrmBGTGGCCTCCGCACCCGAGACGACCGCGCACGACGCCGCCCCGCAGGACGCGCTACGTCGGTTCGCGCCCGCCACGCAGGCGTGGTTCGCGGACGCGTTCGCCGGTCCGACGGCGGCCCAGACGGGCGCGTGGGAGGCGATCGCGGCGGACCGGCACGCGCTGGTGGTGGCCCCGACCGGGTCCGGCAAGACCCTGGCGGCGTTCCTGTGGGCGATCGACCGGTTGTCGTCGACTCCCCCGCCGTCGGACCCGGCGCGCCGGTGCCGGGTGCTGTACGTCTCGCCGCTGAAGGCGTTGGCGGCGGACGTGCAGCGCAACCTGCGGGCGCCGCTGACGGGGATCCGCCAGGCGGCGGCGCGGGCGGGCACCACGGCGCACGAGGTGGACGTCGCGATGCGCACGGGTGACACTCCGGCGTCCGAGCGCCGCTCGTTCGCCTCGCGTCCGCCGGACGTGCTCGTGACGACGCCGGAGTCGTTGTTCCTGGTGCTGACCTCGGCGGCGCGCAGCGGTCTGGCGGGGCTGGAGACGGTGATCGTCGACGAGGTGCACGCGGTGGCGGGCACCAAGCGCGGCGCTCACCTGGCGGTGACCCTGGAGCGGCTCGACGCGATGCTGCCGCAGCCGGTGCAGCGCATCGGCCTGTCGGCGACGGTGCGCCCGCCGCAGGAGGTCGCCTCCTTCCTCGCGGGCAGCCGCAGCCCGGAGGACGGGGGGCGCGAGGTCGTCGTCGTGCAGCCGCCGGCGACGAAGCGGTGGGACCTGGACGTCGCGGTCCCTGTGCCGGACCTGACGGACCTGCCGGGCGCGGACGGGACCCCCGACGGTCCGGACCTGTCCGGGGCGGCGTCCGGCCCGCAGCGCCAGGCGTCGGTGTGGCCGCACGTCACCGACCGGGTGGTGGACCTGGTCAGCGCCCACCGGTCCACGTTGGTGTTCACGAACTCCCGGCGCGGGGCCGAACGGCTCACCGCCCGGATCAACGAGGCGTGGGCGCAGCGTCAGGGCCTGACCGTGCCGGACCCGGGCACCCAGCAGGCCGCGGACGCGCCGGGCCAGTCCGGCACGGCGTCGGGCCTGCCCGACGACGCTCCCGTGCTGGCGCGGGCGCACCACGGTTCGATGAGTCGCGCGGAGCGGACCCGGACGGAGTCGGACCTCAAGGCGGGCTCGCTGCCCGCGGTGGTGGCGACGTCGTCCCTCGAGCTCGGCATCGACATGGGCGCCGTCGACCTGGTGGTGCAGGTGGGCGCGCCGCCGTCGGTCGCCAGCGGCCTGCAGCGCATCGGGCGCGCGGGCCACCAGGTGGGCGCGGTCTCGCGCGGGGTGGTGCTGCCCACCCACCGCGGCGACCTGGTGCCCTCGGCCGTGGTGACCCAGCGGATGCAGGCCGGCGACATCGAGCCGACGGCGATGGTGCGCAACCCGCTGGACGTCCTGGCCCAGCAGGTGGTGGCCGCGCTCGCCGTCGACGACTGGCCGGCCGACGAGCTGCTCGTGCTCGTGCGGCGCGCCGCCCCGTTCGCCGGTCTGGGCGACGCGACGTGGCACGCCGTGCTGGACATGCTGGCGGGGCGGTACCCGAGCGAGGACTTCGCCGAGCTGCGGGCCCGGATCGTGTGGGACCGCGGCACGGGACGTCTCAGCGCGCGGCCGGGCGCCCAGCGCCTCGCCGTGACGAGCGGCGGCACGATCCCGGACCGGGGGCTGTACGGGGTGTTCCTCGCCGGCGACGACGGCGGTCGCGGTGGCAAGCGGGTCGGCGAGCTCGACGAGGAGATGGTGTACGAGTCGCGCGCCGGGGACACGTTCACCCTGGGGTCGTCGACGTGGCGGATCGAGGACATCACCCCGGACCGGGTCGTCGTGACGCCCGCGCCCGGACTGCCGGGGCGGCTGCCGTTCTGGAAGGGCGACGCCCCCGGCCGCCCGGTCACGCTGGGCCGCGCGGTGGGGGCGTTCGTGCGCGAGGCCGACGCCGCGCTGGTCCGGGGCGCCGGGGCCGGTCGGGAGTTCCTGCGCGGCGCCGGGCTGGACGCCTGGGCGGCGGACAACCTGGCCGACTACCTGACCGAGCAGCGCACGGCGACCGGGCGGCTGCCCGACGACCGTACCGTCGTCGTCGAACGCTTCCGCGACGAGCTGGGCGACTGGCGCGTGGTGGTGCACAGCCCGCTCGGTGCCCGCCTGCACGCGCCGTGGGCGCTGGCCGTCGCAGCGCGGCTGCGCGACCGCTACGGCACCGACGTCGCCGCGATGCCGGCCGACGACGGGATCGTGCTGCGCCTGCCGGGCGACTCGCCGTGGGACATCGAGGCCTCCACCACCGAGCCGACCGTGACCGCCGAGGACCTGCTGCTGGACGCCGACGAGGTCGCCGACGCGGTGCGCCGCGAGCTCGGGTCCTCCGTGCTGTTCGCCTCGCGGTTCCGCGAGGCCGCGGCACGCGCCCTGCTGCTGCCCCGCCGTCGGCCCGACCGCCGCTCGCCCCTGTGGCAGCAGCGGCAGCGTGCCGCCCAGCTGCTGCAGGTGGCCTCGGCGCACCCCGAGTTCCCGATCATGCTCGAGGCGGCGCGCGAGTGCCTTACCGACGACTTCGACGTCGAGGCGCTGCGCGGGCTGATGGGCGACCTGGCCGCGGGCCGCGTCCGGCTGGTCGAGGTGACGACGTCCGAGCCGTCCCCGTTCGCCCGGTCGCTGCTCTTCGGCTACACCGCCCAGTTCCTGTACGACGGCGACGCCCCGCTGGCGGAGCGGCGTGCGGCCGCGCTCAGCCTCGACCCCACGCTGCTCGCCGAGCTGCTCGGCGAGCAGGGAGCCACCGACCTGGCCGACCTGCTCGACCCCGAGGCGGTACGCCGCACCGAGGAGGAGCTGCAGGCCCTCGCCCCCGACCGGCGCGCGAAGGACGCCGAGGGACTGTGGGACGTGCTGCGCCGCTCCGGTCCGCACGGCGCCGCGGACCTGCGCGCGCGCACCCGCCCGGAGGCGAGCGCGCAGGTCGACGACTGGCTCGACGCGCTCGAGCGGGAGCGGCGTGCGATCCGGGTCCGCGTGGCCGGCGACGAGCGCTGGGCGGTGGTCGACGACGCCGCCCGGTTGCGCGACGCGCTCGGGGTCGCGGTGCCCGCCGGCCTGGCCGAGGCGCACACGGCTCCGGTCACGGACCCGCTCGGCGACCTGGTCCGCCGCCACGCGCGCACCCACGGCCCGTTCGCCGCCGCCGACGTCGCGACGCGGTTCGGGCTCGGCACGGCCGTGGTCGCGGGCGTCGTGGACCGGCTGGAGGCGGACGGGCTGCTGGTGCGCGGGGCGCTGCTGCCGGCCGAGCTCGGCGGCACCGGGGACGAGCTGTGCGACCCGCAGGTGCTGCGCACCCTGCGCCGGCGTTCCCTGGCCGCGCTGCGCGCCGAGGTCGAGCCGGTGGAGCCGGAGGCCCTGGGCGTCTTCCTGCCCCGCTGGCAGGGCGCGGACGGGTCCGGCCTGCGCGGCACCGACGGTCTGCTGCGGGCCGTCGAGCAGCTGGCCGGTGCGGCCGTGCCCGCCTCGGCCCTGGAGACCCTGGTGCTGCCCGCCCGCGTGACGGACTACTCCCCCGCCCTGCTGGACGAGCTCACCACGACCGGCGAGGTGCTCTGGGCCGGGCACGGCCCGCCGACCGCGGCAGGCACGGGTGACGGCCTGGTCAGCCTCCACCTGGCCGAGGACGCGCCCCTGACCCTCGCCGCGCCGTCGGACCTGGAGGCGGACGGCCCGCTGGACACCGACCTGCACCGCGTGGTCCTCGACCTGCTCACCGGCTCGGGCGGCTACTTCCTGCCCGAGCTGGCCGAGCGCGCCGCCGCCGAGACGGCCCGCGTGCTCGAGGTGCTGTGGGACCTGGTGTGGGCCGGGCACGTCACCAACGACGGGCTGACCGTGCTGCGCGAGCGGCTCGGGACGGCCCGCGGCGGGGCCCACCGGGCACCACGGAGGCCTGCCCGGGCACGACCCGTACGTCGTTCCCGCTTCGCGACCGCCCGTCCGGCCGTCCCGCGGGCCGGCGGCGGGCGGTGGTCCGCCCTGCCCGTGCGCGAGACCGACCCCACCCTGGCCGCGCACGCGCTGACGCAGGTGCTGCTCGACCGGCACGGCGTGCTGACGCGGGCGGTCGCGCCGTCGGAGGGGGTGGCGTCCCGGTTCCGCGAGGTGTACCGCGTCCTGACGGGCCTGGAGGAACGGGGGGCGGTGCGCCGCGGGTACTTCGTCGAACGGCTCGGCGGATCCCAGTTCGCGGTGCCCGGCGCCGTGGACCAGCTCCGACGGGACGCGGCCGAGCGCGACCGGGTGACGGCGGACCCCGACGCCCCGCGGCGTGCGGTGCTGCTCGCGGCCACCGACCCCGCCAACCCCTACGGCGCGGCACTGGCCTGGCCGCGGGCCGGCGGGACCGACCCGGACACCCCGGCGCACCGTCCGGGTCGCAAGGCCGGCGCGGTCGTCGTCCTCGCCGACGGCGCGCTGGCGCTCTTCGTCGAGCGGGGCGGCCGGTCCCTGCTGAGCTTCGACGTCGACGCCGCGGCTCTTGCCGCCGCGGCCGCGGCGCTGGCCGAGGGGACCGGCAGCGGCCCGCTGGGTCGGCTGACCGTCCGGCGGGTCGACGGGGTCGCGGCCCTGACCGCCGCCCGCGAAGGCGGACCCGTGGTCGAGGCGCTGCTCGCAGCCGGTTTCGGCGTGACCCCGCAGGGCCTGCGCGTGGCGGCGCGCTGAMASAPETTAHDAAPQDALRRFAPATQAWFADAFAGPTAAQTGAWEAIAADRHALVVAPTGSGKTLAAFLWAIDRLSSTPPPSDPARRCRVLYVSPLKALAADVQRNLRAPLTGIRQAAARAGTTAHEVDVAMRTGDTPASERRSFASRPPDVLVTTPESLFLVLTSAARSGLAGLETVIVDEVHAVAGTKRGAHLAVTLERLDAMLPQPVQRIGLSATVRPPQEVASFLAGSRSPEDGGREVVVVQPPATKRWDLDVAVPVPDLTDLPGADGTPDGPDLSGAASGPQRQASVWPHVTDRVVDLVSAHRSTLVFTNSRRGAERLTARINEAWAQRQGLTVPDPGTQQAADAPGQSGTASGLPDDAPVLARAHHGSMSRAERTRTESDLKAGSLPAVVATSSLELGIDMGAVDLVVQVGAPPSVASGLQRIGRAGHQVGAVSRGVVLPTHRGDLVPSAVVTQRMQAGDIEPTAMVRNPLDVLAQQVVAALAVDDWPADELLVLVRRAAPFAGLGDATWHAVLDMLAGRYPSEDFAELRARIVWDRGTGRLSARPGAQRLAVTSGGTIPDRGLYGVFLAGDDGGRGGKRVGELDEEMVYESRAGDTFTLGSSTWRIEDITPDRVVVTPAPGLPGRLPFWKGDAPGRPVTLGRAVGAFVREADAALVRGAGAGREFLRGAGLDAWAADNLADYLTEQRTATGRLPDDRTVVVERFRDELGDWRVVVHSPLGARLHAPWALAVAARLRDRYGTDVAAMPADDGIVLRLPGDSPWDIEASTTEPTVTAEDLLLDADEVADAVRRELGSSVLFASRFREAAARALLLPRRRPDRRSPLWQQRQRAAQLLQVASAHPEFPIMLEAARECLTDDFDVEALRGLMGDLAAGRVRLVEVTTSEPSPFARSLLFGYTAQFLYDGDAPLAERRAAALSLDPTLLAELLGEQGATDLADLLDPEAVRRTEEELQALAPDRRAKDAEGLWDVLRRSGPHGAADLRARTRPEASAQVDDWLDALERERRAIRVRVAGDERWAVVDDAARLRDALGVAVPAGLAEAHTAPVTDPLGDLVRRHARTHGPFAAADVATRFGLGTAVVAGVVDRLEADGLLVRGALLPAELGGTGDELCDPQVLRTLRRRSLAALRAEVEPVEPEALGVFLPRWQGADGSGLRGTDGLLRAVEQLAGAAVPASALETLVLPARVTDYSPALLDELTTTGEVLWAGHGPPTAAGTGDGLVSLHLAEDAPLTLAAPSDLEADGPLDTDLHRVVLDLLTGSGGYFLPELAERAAAETARVLEVLWDLVWAGHVTNDGLTVLRERLGTARGGAHRAPRRPARARPVRRSRFATARPAVPRAGGGRWSALPVRETDPTLAAHALTQVLLDRHGVLTRAVAPSEGVASRFREVYRVLTGLEERGAVRRGYFVERLGGSQFAVPGAVDQLRRDAAERDRVTADPDAPRRAVLLAATDPANPYGAALAWPRAGGTDPDTPAHRPGRKAGAVVVLADGALALFVERGGRSLLSFDVDAAALAAAAAALAEGTGSGPLGRLTVRRVDGVAALTAAREGGPVVEALLAAGFGVTPQGLRVAARNANANANANA
AK018_01885819mutM_2COG0266Formamidopyrimidine-DNA glycosylaseGTGCCGGAGGGTGACGTGCTACGACTGACCGCGCAACGGCTGGACCAGGCGCTGCGCGGTGCGCCGCTCGTGCGTGCCGAGCTGCGCTGGCCGACCGCCGCCGCTGCCGACCTGGTGGGACGCACTGTGCTGTCCTGCGAGTCCTACGGCAAGCACCTGCTGACCCGGTTCGACGACGGCCGCACCCTGCACACGCACCTGCGCATGGAGGGGTCGTGGCGCGTGGAGCGCACCGGGTCCGCGGCGGCCGCGGCCCGCGCCCCGCACGTCCGCGCCGTCCTCGCCACGCAGCGGTGGACCTGCCTGGGCCTGCTGCTCGGGATGCTGGACCTGCTGCGCACCCACGACGAGGCTCGGCTGCTGTCCCACCTGGGCCCGGACGTCCTCGGCGCCGACTTCCCGACGAGCGGCATCGCCGAGGGCGAGCGGCGGCTCGCCGAGCAGGGTGCCCGACCGTTGTGCGACGTGCTGCTCGACCAGCGGGTCGTGGCCGGGTTCGGCACCATCTGGATGGCGGAGACGCTGTTCACGCTGCGGTGTCACCCGTGGACCCCCGCCGACAGCCTCGACGCCGAGGGCAGACGCCGCCTCCTGAGCACCGGTCACCGGCTCCTGTCCCGCAGCGTCGACATCGGCCGCACGCGTGGGCTCGGGGAGGTACCGCGCGCCGTCCACGGGAGGCTCGGCAGCCCGTGCCGCCGGTGCCGCACACCCGTCGAGGTCGGGCAGGCGAACGAGCCTCCCTACGAGCGACCCGTCTTCTGGTGCCCGACGTGCCAGGCCCCCGGGCGGGGCGTGGAGGTCAGCCGACCGGCGTGAMPEGDVLRLTAQRLDQALRGAPLVRAELRWPTAAAADLVGRTVLSCESYGKHLLTRFDDGRTLHTHLRMEGSWRVERTGSAAAAARAPHVRAVLATQRWTCLGLLLGMLDLLRTHDEARLLSHLGPDVLGADFPTSGIAEGERRLAEQGARPLCDVLLDQRVVAGFGTIWMAETLFTLRCHPWTPADSLDAEGRRRLLSTGHRLLSRSVDIGRTRGLGEVPRAVHGRLGSPCRRCRTPVEVGQANEPPYERPVFWCPTCQAPGRGVEVSRPAPGPT0004020_18DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885NANA
AK018_01886327hypothetical proteinATGGTCGTCCTACGACAAGAGATCGGCGACGTGCTGCGCGGTGCGCGGCAGCGCCAGGGGCGCACCCTGCGTGAGGTGTCCTCGGCCGCACGGGTGTCGCTGGGTTACCTCAGCGAGGTCGAACGCGGCCAGAAGGAGGCGTCCTCCGAGCTGCTGGCCTCGATCTGCGAGGCGCTCGACGTCCCGCTGTCCCTCGTCCTGCGCGAGGTCAGCGACCGGATCGCCGTGGCCGAGGGGCTTCACATCCCCGACACCATCCCGGCGGACGTCCTGTCCGGCATGGTGCGCGGCACCTCGCCGCGAGACGACCTCACGCCGGTCGGCTGAMVVLRQEIGDVLRGARQRQGRTLREVSSAARVSLGYLSEVERGQKEASSELLASICEALDVPLSLVLREVSDRIAVAEGLHIPDTIPADVLSGMVRGTSPRDDLTPVGNANANANANA
AK018_01887471Protein MG115ATGACGGCTGCCCGGCTGCTCGCCGAGCTCGGGCGGCACGGTCGGACCCTCGCGGTGGCGGAGTCGCTCACCGGTGGACAGGTGACCGCCGCGCTCGTCGACGTGCCTGGTGCCTCGAGCGTCCTGCGCGGCGGCGTCGTCGCCTACGCCACCGACCTGAAGGCGTCGTTGCTCGGTGTGGACCGCGGGCTGCTGGCCGACCGGGGCGCCGTCGACCCCGACGTGGTGGCAGCGATGGCCCACGGCGTCCGGCGCGTCACGGGCGCCGACGTCGGGCTGGCCACGACCGGCGTCGCCGGTCCCGACCCGCAGGACGGCACGCCGCCGGGCGTCGTCTACGTCGCGGTCGCCTCGGCGGCCGGCGACCGGGTCCGGCGGTGCGAGCTCGCCGGCGACCGGGCGGCCGTGCGGGCCGGGGCGACACGCGCGGTGCTGGCGCTCGCCGTCGGGGTCGTCTCCGGGTCGGCGTGAMTAARLLAELGRHGRTLAVAESLTGGQVTAALVDVPGASSVLRGGVVAYATDLKASLLGVDRGLLADRGAVDPDVVAAMAHGVRRVTGADVGLATTGVAGPDPQDGTPPGVVYVAVASAAGDRVRRCELAGDRAAVRAGATRAVLALAVGVVSGSAPGPT0013460_2655DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013460-pncC2-K03743NANA
AK018_01888615pgsA_2CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferaseATGGACACCGCCCCGTCGCCGTGGAACATCGCCAACGTCGTGACCATGGTCCGCATCGCCCTCGTCCCGGTCTTCGCGGTGGCGCTGCTGGTCGACGACGGCGAGTCCATGACCTGGCGGTTCGTCGCCACCGCGATCTTCCTGCTGGCCGCGCTGAGCGACAAGGTGGACGGGCACCTCGCCAGGTCGCGAGGACTGGTCACCGACCTCGGCAAGCTGCTCGACCCGATCGCCGACAAGGCCCTGACGGGGACGGCGCTGGTCCTGCTGTGGTGGCCGTTGGGCGAGCTGCCGTGGTGGGTGCCGACGGTCATCCTTGTGCGCGAGCTCGGCATCACGGTCATGCGCATGGCCATGCTCCGGTACGCGGTCATGCCGGCCTCGCGCGGCGGGAAGCTCAAGACGGTCCTGCAGGTCGTCGCGATCGCTCTCTTCCTGCTCCCGCACGCCGACCTGCCGGCGTTCTTCCTGGTGGTCGCGTGGGCGGCCATGGCCGCTGCCGTGGCGGTGACCGTCGTCACCGGTGTGGACTACGTGGTCCAGGCCGTGCGGTTGCGCCGCGAGGGACGACGCGGCCCGGACGGCACGGCGGCCGACGCGTCGCAGGAGCGATGAMDTAPSPWNIANVVTMVRIALVPVFAVALLVDDGESMTWRFVATAIFLLAALSDKVDGHLARSRGLVTDLGKLLDPIADKALTGTALVLLWWPLGELPWWVPTVILVRELGITVMRMAMLRYAVMPASRGGKLKTVLQVVAIALFLLPHADLPAFFLVVAWAAMAAAVAVTVVTGVDYVVQAVRLRREGRRGPDGTAADASQERPGPT0007705_3138DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995NANA
AK018_018891290hypothetical proteinATGGACGTCGCGCCGTCCCGACCTCGCACCGACGTCGCCGTCGGACGCCGAGCCCGTCGCGCCGCAGCGGCCGCGCTCGCGGTCGTGGCGCTGCTCCCCGCCTGCGCCGTGCTCGCCCCGGAACCCCGTCCCGGCGCCACCGTCACGATCCTGCCGGACACCTCCCGGGCCAAGATCCTCCCGCCCGAGCCGGTGCCCCCGGTGGCCTTCACGCTCGCGGCTGCCGGCGACCTCCTGCCGCACGGTCCCGTCGTGCGCTCGGCCGCGGGCGGGTCCCGGTTCGGCGCCCTGCTCACCGGTCTCGATCCGTGGATCGCCGGTGCGGACCTCGCGCTGTGCCACCTGGAGGCCCCCGTGGCGCCGCCGGGCACGGCACCCAGCGGCTACCCGAGCTTCGCGGCGCCGGCGGGGCTCGTCGACGCGCTCGCGCGGCAGGGCTGGGACGGCTGCTCGACGGCGTCGAACCACTCGGTGGACCGCGGCCTGGCCGGCGTCGTGGCGACGCTCGACGCCTTCGACGCCGCGGGTCTCGGGCACGTGGGCACGGCCCGCTCGACGAAGGAGCAGCGGGCGCCGCAGCGCTACCGCCTCCACCGCGGCGGCAGGACCATCGCCGTCGCCCACCTGTCCGCCACGTACGGGCTCAACGGGTTGCCGCTGCCCGCCGAGGCGCCGTGGGCGGTGGACCTCATCGACGCCGGCGCGTTGGTCGCTGCCGCCGAACGGGCCCGGAGGGACGGAGCCGACGTCGTCCTGGTCAGCCTGCACGCCGGCGCCGAGTACACCGAGACGCTCACCGACCAGCAGACGGACGTGGTCGCCGCTCTCGCGGACTCGGGCGCGGTCGACCTGGTCCTCGGGCACCACGCCCACGTGCCGCAGCGGATCCAGCGGGTCGACGGCGGACCGTCGGGGGACGGCATGTGGGTCGCCTACGGACTCGGCAACATGCTGTCCAACCAGAGCGCGGCGTGCTGCGACGCCCGGACCAGCAACGGTGTGCTGCTCACGGCGACGTTCACCCAGGACCACGGTGCAGCACCGACGCGGGTGACCGACGTGCGCTGGACGGGCACGACGGTCGACATCGCCGCGGGCCACCGGGTGCACGCGCTGCCGGACCTGCTCCGGGGTGCCGCGGCCACGACCCTGGCGCGCGCCGAGCTCGTCGATCGTCGCGACCGGGTGGCGGGCGCCGTCGGCGACGACGCCCGCCGGCGCACCCGTCCGCCAGAACCGACCGGGGAGCCGCCGCGGGTGGTGCCGCGGGTCCGGACGTCGGCGCGGTAGMDVAPSRPRTDVAVGRRARRAAAAALAVVALLPACAVLAPEPRPGATVTILPDTSRAKILPPEPVPPVAFTLAAAGDLLPHGPVVRSAAGGSRFGALLTGLDPWIAGADLALCHLEAPVAPPGTAPSGYPSFAAPAGLVDALARQGWDGCSTASNHSVDRGLAGVVATLDAFDAAGLGHVGTARSTKEQRAPQRYRLHRGGRTIAVAHLSATYGLNGLPLPAEAPWAVDLIDAGALVAAAERARRDGADVVLVSLHAGAEYTETLTDQQTDVVAALADSGAVDLVLGHHAHVPQRIQRVDGGPSGDGMWVAYGLGNMLSNQSAACCDARTSNGVLLTATFTQDHGAAPTRVTDVRWTGTTVDIAAGHRVHALPDLLRGAAATTLARAELVDRRDRVAGAVGDDARRRTRPPEPTGEPPRVVPRVRTSARNANANANANA
AK018_01890552hypothetical proteinGTGACGCGGGCCGACCCGACCGCCCCGCACGTCTGCCTGCGGCCGTTGCGGCAGGACGACGCAGCCGATGTGCTCGCCGCGTTCGGGTCGGCCCCGGACATGGCCCGGCAGGGGGCTGTGACCACTCCGGCGGAGTCGGACGCCTACGTGGCGCGGCTGGTCGACCCGGACGGGCCGCACCGGCCGTGGGCGCTCGAGGAGCGCGGGCGGTGCATTGGGCTCGTGGCGGTCAGCGTGGACGCGGCGCACCGCACGGGGTGGTTCTGGTACTGGACCACCGCCGCCGCACGAGGGCGGGGCCTCACGCAGCGCGCCGCCGCCACGGTCGCGGACCACGAGCTGACCGCGGGCGGGCTGCACCGTCTCGAGCTGGGCCACCGGACGAACAACCCGGCCTCCGGCGCGGTCGCGCGGGCGGCCGGGTTCGTCCGTGAGGGCCTCGAGCGGGAGAAGTTCCTCATCGACGGGGTGCGTGTCGACGTCGCCACGTACGGTCGGCTGCGCACGGACCCGCCGCCGTCGTACCGGCCGCTGCCGATCATCGAGCGGTAGMTRADPTAPHVCLRPLRQDDAADVLAAFGSAPDMARQGAVTTPAESDAYVARLVDPDGPHRPWALEERGRCIGLVAVSVDAAHRTGWFWYWTTAAARGRGLTQRAAATVADHELTAGGLHRLELGHRTNNPASGAVARAAGFVREGLEREKFLIDGVRVDVATYGRLRTDPPPSYRPLPIIERNANANANANA
AK018_018912556hypothetical proteinATGATCCGGGGCGCCTATCTGGGCATCGCCCACGGCCTGGGGGCCGTGACACGCACGATCACCAAGGGAGCAAGAGACCTGGAACCCGAGCACCGCCGTGACGGCCTCGCCTTCTTCCTCGTGGCCGTCGCGATCGTCGTCGCGGCCCGTGAGTGGTGGGCCATTCCCGGCGCCTTCGGCGACGGCGTGCACGCCGTCGTGGCCGGCACCGTCGGGCTGGCGGGCGTCGCCGTGCCGGTGCTGCTGCTGTGGCTCGCGGGCAGGCTGATGCGGCACCCGGAGCGTGGGCAGGCGAACTCCCGGGTGGCGATCGGCGCGAGCCTCATCGTCATCTCGGTGTGCGCGCTCATCGCGATCGCAGAGGACACGCCGTCGCCGCGGGACGGGTTCGCGGACGTCCAGGACGCCGGCGGCATCATCGGCTACCTGACGGCGACCCCGGTGGTGATCGGTGTCACCGAGTGGGTGGCGGTCCCGTTGTTCCTGCTGCTGGGGTTCTTCGGCCTGCTGGTGGTCACCGCCACGCCGGTGCACCGCATCCCGGAGCGACTGCGCGGGCTGTACGACCGGCTGACCGGCAACCACGGCGATGCCGGGGCCGCCGACGACGAGCTGCAGCTCGCCGACGGCGTGTCCCGCCACGACGGCTCGGACGAGAAGAAGCCGCGCCGGCGTCGTCGCAAGACGAAGGCGCAGCGGGCCGCGGAGGCCGCGGCGGCCGAGCTGGACGAGTACGCCGGGGACGAGGCGTTCGAGAAGGCCGCGACCACCGAGCCGGGCACGGAGGGCGGTGCCCGCGGCAAGGCACCCCGCTCGGCCGCGACCCAGGTGGTGCCCACGGGTGCGACGAAGCCGGCCCCGGTCCCTGCCGGTCCGGTGGAGCAGGCGCCGCCCGAGCCGCGTCCGGCGCCTGCCGGGCGGGCCGAGCAGCCGATGCTCTCCGGCGACACGGTCTACGTGCTGCCCAGCGAGGACTCCCTGGGTCAGGGTGCCCCGCACAAGACGCGCTCGGCGGCGAACGACCGCGTCGTCGAGGCGCTGGAGGAGACGTTCGAGCAGTTCGGCGTGGACGCCAAGGTCACCAACTTCACGCGTGGCCCGACGGTCACGCGCTACGAGGTCGAGGTGGGCCCGAAGGTCAAGGTCGAGCGCATCACCTCGTTGAACAACAACATCGCCTACGCGGTGGCGAGCGCGGACGTGCGCATCCTGTCGCCGATCCCGGGCAAGTCCGCGATCGGCATCGAGATCCCGAACACGGACCGCGAGACGGTGGTGCTGGGTGACGTGCTGCGCTCGTCGGCGGCGCGGCGCACCGAGCACCCGATGGTCATGGGCGTGGGCAAGGACGTCGAGGGCGGGTTCGTGGTGGCGAACCTCGCCAAGATGCCGCACATCCTGGTGGCAGGCGCCACGGGCGCGGGTAAGTCGAGCTTCATCAACTCGATGATCACCTCGATCCTCATGCGCTCCACGCCGGAGCAGGTGCGGATGATCCTGGTGGACCCCAAGCGGGTCGAGCTGACGATCTACGAGGGCATCCCGCACCTGATCACCCCGATCATCACCAGCCCCAAGAAGGCCGCCGAGGCCCTGGACTGGGTGGTGCGGGAGATGGACGCCCGCTACGACGACCTCGCGACCTACGGCTTCAAGCACATCGACGACTTCAACGCCGCGGTCCGGGCGGGCAAGGTGACCCCGCCGCCGGGCTCGGAGCGCAAGGTCGCCGCCTACCCGTACCTGCTCGTGGTGGTCGACGAGCTCGCCGACCTGATGATGGTGGCGCCCCGTGACGTCGAGGCCGCGATCCAGCGCATCACCCAGCTCGCCCGCGCCGCGGGCATCCACCTGGTGCTGGCCACCCAGCGGCCGTCCGTGGACGTGGTCACGGGTCTGATCAAGGCGAACGTGCCCTCCCGGCTGGCGTTCGCGACGTCGTCCCTGGCGGACTCGCGCGTGGTGCTGGACCAGCCCGGCGCGGAGAAGCTCATCGGCCAGGGTGACGCGCTGTTCCTGCCGATGGGGGCCGCCAAGCCGATGCGCGTCCAGGGGGCCTGGGTCACCGAGTCCGAGGTCCACGCGGTCACCGAGCACGTCAAGTCCCAGCTCAAGCCCACCTACCGCAAGGACGTCACCGCCCCGGCGGCGGCGAAGAAGCAGATCGACGAGGACATCGGCGACGACCTGGACCTGCTGCTGCAGGCGGCCGAGCTCGTGGTCTCGACGCAGTTCGGGTCGACCTCGATGCTGCAGCGCAAGCTGCGGGTCGGGTTCGCGAAGGCCGGTCGGCTGATGGACCTGCTGGAGTCGCGGGAGATCGTCGGACCGTCCGAGGGTTCGAAGGCGCGCGACGTGCTGGTCGCGCCCGACGACCTGTCCGGTGCGCTGGCGATCATCCGCGGCGAGACGACGCCGGCGTACGACCAGGAGGCCGACGACGGCTCCGGGTCGGCGGGCGACCCGTACGCCGACGGCACCGACGGGCACCGTCCCCCGACGGCCGTCGACTACCACGACGGCGCGGACACGGACGCCGAGAACCCGGTGCGGTGAMIRGAYLGIAHGLGAVTRTITKGARDLEPEHRRDGLAFFLVAVAIVVAAREWWAIPGAFGDGVHAVVAGTVGLAGVAVPVLLLWLAGRLMRHPERGQANSRVAIGASLIVISVCALIAIAEDTPSPRDGFADVQDAGGIIGYLTATPVVIGVTEWVAVPLFLLLGFFGLLVVTATPVHRIPERLRGLYDRLTGNHGDAGAADDELQLADGVSRHDGSDEKKPRRRRRKTKAQRAAEAAAAELDEYAGDEAFEKAATTEPGTEGGARGKAPRSAATQVVPTGATKPAPVPAGPVEQAPPEPRPAPAGRAEQPMLSGDTVYVLPSEDSLGQGAPHKTRSAANDRVVEALEETFEQFGVDAKVTNFTRGPTVTRYEVEVGPKVKVERITSLNNNIAYAVASADVRILSPIPGKSAIGIEIPNTDRETVVLGDVLRSSAARRTEHPMVMGVGKDVEGGFVVANLAKMPHILVAGATGAGKSSFINSMITSILMRSTPEQVRMILVDPKRVELTIYEGIPHLITPIITSPKKAAEALDWVVREMDARYDDLATYGFKHIDDFNAAVRAGKVTPPPGSERKVAAYPYLLVVVDELADLMMVAPRDVEAAIQRITQLARAAGIHLVLATQRPSVDVVTGLIKANVPSRLAFATSSLADSRVVLDQPGAEKLIGQGDALFLPMGAAKPMRVQGAWVTESEVHAVTEHVKSQLKPTYRKDVTAPAAAKKQIDEDIGDDLDLLLQAAELVVSTQFGSTSMLQRKLRVGFAKAGRLMDLLESREIVGPSEGSKARDVLVAPDDLSGALAIIRGETTPAYDQEADDGSGSAGDPYADGTDGHRPPTAVDYHDGADTDAENPVRPGPT0030468_3205DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
AK018_01892198hypothetical proteinTTGGAGGTCGAGGACCGGCCACCGCTGCGCGACCCGGAGGCGCGCTTCGACGGCGCGGACACCGATGCGGTGCGCGCCGTCGAGGCCCGGGCCGACCGGCCGGACCGGTTCGAGCTGCCGGCGGGTCTCCGGGCAGGGCTGCGGGTCGCCATGATGCCCTCACCGTACCCGGCCGCCGTGATGCGTGGTCGCAGGTGAMEVEDRPPLRDPEARFDGADTDAVRAVEARADRPDRFELPAGLRAGLRVAMMPSPYPAAVMRGRRNANANANANA
AK018_01893780hypothetical proteinATGTCGCATCCTGACCCGTTCGTCCCGCCGTCCGGCGCGCACCGGCCCGGGGCCGGTGCGACACCCCCGGAACCGCCACAGCCGGCAAACGGCGCCTACGCGCCAGCGCCGCCGGCCGGTGTGGTGCCGCAGTACGGGGCCGGCGGACCGTGGTCGTGGACTCCGGCGCCGGCCGTGCCCTCCGGGCTGGCGGGATGGACGATCGGCCTGGCCGTGGCATGGACGGCTGTCCAGGTCCTGTACTTCGTGATGTCTTTCGAGGCAGCTGAGATATTCGCGCGGGTGATCGACGCGGGAGGGAGCCAGGCGGACGTCCTGACGGCCTACGACAGTCTCGGGATGCTCTACGCCCCGATTCAGGTCGCCACCTTCGTCGTGGCTTGCCTGTGGCTCTACCGGAGTCGTGTGCTGGCGACGATGTTCTCCCCTCGCCTGCGCCACACACGCCGACCGGTGTGGGTCTGGCTCGGATGGATCGTCCCGGTGGTGGCGCTCTGGTTCCCGTTCCAGGTGGTCCGTGACGTCCGGTCCGGCACCTCCGGTGTCCGTTGGACGTCAGGACTCAGGCTGTGGTGGGTGTCATGGCTGGTGATGATCTGGACGACGAGCCAAGCGGGCATGATCTCGGCCGGGTTCCGGTCCCTGGACCCGGCGGCCATCCCGTACCTTGAAGGGGTCGCGGCGGTCGCCGCTGTCGTGGGTGGCACGCTCTGGATCCGGATTGTGCGGGAGATCACCGCGGCCCAGCGGGCACGCCTGGAGGCGCCGTCCGCGGTGTGAMSHPDPFVPPSGAHRPGAGATPPEPPQPANGAYAPAPPAGVVPQYGAGGPWSWTPAPAVPSGLAGWTIGLAVAWTAVQVLYFVMSFEAAEIFARVIDAGGSQADVLTAYDSLGMLYAPIQVATFVVACLWLYRSRVLATMFSPRLRHTRRPVWVWLGWIVPVVALWFPFQVVRDVRSGTSGVRWTSGLRLWWVSWLVMIWTTSQAGMISAGFRSLDPAAIPYLEGVAAVAAVVGGTLWIRIVREITAAQRARLEAPSAVNANANANANA
AK018_018941686rnj_2COG0595Ribonuclease JGTGAGCCACCCTCACCCCGAACTACCCCTGCCCCCCGAGCTGCCCGCGCGCGGTCTGCGGATCGTCGCCCTCGGCGGCCTCGGCGAGGTGGGCCGCAACATGGCCGTCCTCGAGCACCACGGCAAGCTGCTCGTCATCGACTGCGGCGTGCTCTTCCCCGAGGACCACCAGCCCGGCGTCGACCTCATCCTGCCGGACTTCGAGTACATCGCCGACCGCATGGACGACGTCGAGGCGATCGTCCTCACGCACGGCCACGAGGACCACATCGGCGCCGTGCCCTACCTGCTGCGGCTGCGCCGCGACATCCCCATCTACGGCTCCCAGCTCACCCTCGCCTTCGTCGAGGCCAAGCTCAAGGAGCACCGCATCCGGCCCGTCACGCGCGTCGTCGCCGAGGGTCAGACCGTCCGGGCCGGAGAGTTCGGCCTCGAGTTCGTCGCCGTCAACCACTCCATCCCGGACGCGCTCGCCGTCGCCGTGACCACCGAGGCCGGCACCGTGCTGCACACCGGCGACTTCAAGATGGACCAGCTGCCCCTCGACGGGCGCGTCACCGACCTGCGGGCCTTCGCCCGCCTCGGCGAGAAGGGCGTCGACCTGTTCATGGTCGACTCCACCAACGCCGAGGTCCCCGGGTTCGTGACCAACGAGGTCGAGATCGGCCCGGTGCTCGACAGCGTCTTCGCCCAGGCGGAGAAGCGCATCGTCGTCGCCTCGTTCTCCTCGCACGTGCACCGCGTCCAGCAGGTCCTCAACGCCGCGCACGCCCACGGCCGCAAGGTCGCCCTCGCCGGCCGGTCCATGATCCGCAACATGGGCATCGCCGCCGAGCTCGGCTACCTCGACGTGCCGCCCGGCGTCCTCGTCGACATGCGCAAGGCCACCGACCTGCCCGACGACCGGCTCGTGTACATGTGCACCGGCTCGCAGGGCGAGCCCATGGCCGCGCTCAGCCGCATGGCCAACGGCGACCACAAGGTCTCCATCGGCCACGGCGACACCGTGATCCTGGCCAGCTCGCTGATCCCCGGCAACGAGAACTCCGTGTTCCGGGTCATCAACGGCCTGACCCGGCTCGGCGCCCGCGTCGTGCACTCCGGCAACGCCAAGGTTCACGTCTCCGGGCACGCCAGCGCCGGCGAGCTGCTCTACTGCTACAACATCCTGCGTCCCAAGAACGTCATGCCCGTCCACGGCGAGGTGCGCCACCTCGTGGCCAACGCGGCGCTCGCGGTGCGCACCGGCGTGCCGGCCGACCGCGTGGTCCTGGCCGAGGACGGCGTCGTCGTCGACCTCGTGGACGGCAAGGCGTCCGTCGTGGGTGCCGTGCCGTGCGGGTACGTGTTCGTCGACGGGTCCTCGGTCGGCGAGGTCACGGAGAACGAGCTCAAGGACCGGCGCACGCTGGGCGAGGAGGGCTTCGTCTCCGTGTTCGCCGTGGTCGACACGGCGACCGGCAAGGTGCTGGCCGGGCCGCAGATCCTCGCGCGCGGCATGGCCGAGGACGACGCGGTCTTCTCCGACATCCAGCCCGACGTGGTCAAGGCGCTCGAGGACGCCATCGCCGGGGGAGCGACGGACACCTACCAGCTGCAGCAGGTGATGCGGCGCGTCATCGGTCAGTGGGTGAACCGGCGGCTGCGCCGCCGCCCGATGATCGTCCCCGTCGTCGTCGAGGCCTGAMSHPHPELPLPPELPARGLRIVALGGLGEVGRNMAVLEHHGKLLVIDCGVLFPEDHQPGVDLILPDFEYIADRMDDVEAIVLTHGHEDHIGAVPYLLRLRRDIPIYGSQLTLAFVEAKLKEHRIRPVTRVVAEGQTVRAGEFGLEFVAVNHSIPDALAVAVTTEAGTVLHTGDFKMDQLPLDGRVTDLRAFARLGEKGVDLFMVDSTNAEVPGFVTNEVEIGPVLDSVFAQAEKRIVVASFSSHVHRVQQVLNAAHAHGRKVALAGRSMIRNMGIAAELGYLDVPPGVLVDMRKATDLPDDRLVYMCTGSQGEPMAALSRMANGDHKVSIGHGDTVILASSLIPGNENSVFRVINGLTRLGARVVHSGNAKVHVSGHASAGELLYCYNILRPKNVMPVHGEVRHLVANAALAVRTGVPADRVVLAEDGVVVDLVDGKASVVGAVPCGYVFVDGSSVGEVTENELKDRRTLGEEGFVSVFAVVDTATGKVLAGPQILARGMAEDDAVFSDIQPDVVKALEDAIAGGATDTYQLQQVMRRVIGQWVNRRLRRRPMIVPVVVEANANANANANA
AK018_01895924dapA_2COG03294-hydroxy-tetrahydrodipicolinate synthaseATGACGCTTCCCGGTACCACTGCGCGCCCGTTCGGCGCCGTGCTCACCGCCATGGTCACCCCCATGACGGAGTCGGGTGCGGTCGACCTGGACGCGGCCGTGAAGCTGGCCACGCGTCTGGTCGACCAGGGCAACGACGGTCTCGTCCTGTCGGGCACCACCGGGGAGGCCCCCGTCACGCACGCGCCGGAGAAGGCCGACCTCGTGCGCGCCGTCGTCGACGCCGTCGGGGACCGGGCCGTGGTCCTGTCCGGTGCCGGCTCGAACGACACGGCGCACGCCGTCCGCATGGCCGAGCAGGCCGCGGAAGCGGGCGCGCACGGCCTCCTCGTCGTCTCGCCGTACTACTCCCGGCCCACCCAGGAGGGCCTGTACCGGCACTTCGCCACCGTGGCGGACTCCACCGACCTGCCCGTCATGCTCTACGACATCCCCGGGCGGGCCGGTGTCCGCATCGCGCCGGCCACCTACGCCCGCATCGCCACGCACCCCCTGGTCGTGGCCGCCAAGGACGCCACGGGTGACGTGGCCTCCGTGCCGTTCCTGCGCCAGGCCACCGGCCTGGCCTGGTACGCCGGCGACGACGGCCTGCTGCTGCCGTTCCTGGCCCACGGCGCCGCCGGCATCGTCTCCGTCTCCGGCCACGTCGTCGCACCGGCCTTCGCCGAGGTCGTGCGCCGCTTCGACGCCGGGGACCACTTCGGGGCCCTCGAGGCCTTCACCGGGACGCTGCCCGTGATCTCCGCCATGAACGGCGCCGGGGCACAGGCCGTCATGGTCAAGGCCGCCCTGGAGATCCTCGGCGTGCACACCAACCGCGAGCTGCGCCTGCCGAACGTCGCCGCCACGGACGACGACGTCGCTGCAGTGCGCGCCGCCCTCATCGCCGGCGGTGTCCTGGACGCCGCCACCACACCTCAGTAAMTLPGTTARPFGAVLTAMVTPMTESGAVDLDAAVKLATRLVDQGNDGLVLSGTTGEAPVTHAPEKADLVRAVVDAVGDRAVVLSGAGSNDTAHAVRMAEQAAEAGAHGLLVVSPYYSRPTQEGLYRHFATVADSTDLPVMLYDIPGRAGVRIAPATYARIATHPLVVAAKDATGDVASVPFLRQATGLAWYAGDDGLLLPFLAHGAAGIVSVSGHVVAPAFAEVVRRFDAGDHFGALEAFTGTLPVISAMNGAGAQAVMVKAALEILGVHTNRELRLPNVAATDDDVAAVRAALIAGGVLDAATTPQPGPT0002080_290DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714NANA
AK018_018961467sad_2Succinate-semialdehyde dehydrogenaseATGACTGCGACGACGCTGCCCCCGGAAGTCCGTGACGTCCCGACCGAGGTCCTGGTCGGTGGATCGTGGCGTCCCGCGTCCGGAGGTGCGACCTTCCCGGTGACCGACCCCGCCACCGAGGAGGTCCTGTGCGAGGTGGCGGACGGCACCGCCGACGACGGTGACGCGGCGCTGGCAGCGGCCCACGCGGCCGCTCCCGCCTGGGCCGCCACGTCGCCGCGCGACAGGTCCGAGCTGCTGCGGTCCTGCTACGAGCAGATCGTCGGGCGCACCGACGAGATCGCCGCCCTCATCACGGCCGAGGGCGGCAAGCCGCTGGCGGAGGCGAGGGCCGAGGTGGCCTACGGGGCCGACTTCTTCCGGTGGTTCGCCGAGCAGGCGGTCCGCGCCCCCGGCCTGGCGCGCACCGCGCCGGCGGGCGCCAACCGGCAGCTGGTCCACCGCCGACCGGTAGGGCCGGCCCTGCTGATCACGCCGTGGAACTTCCCCATCGCGATGGCCACCCGCAAGATCGGGCCCGCCCTGGCCGCCGGTTGCCCCGTGGTGATCAAGCCCGCACAGCTCACGCCGCTGACGACGATGGCGGTCGCCGAGATCGTGCGGGCCGAGCTCGCCCGCCGCGACCTGCCGGCCGGGGTGATCAACGTGGTGCCGACGTCGTCCGCCTCGACGGTGACCGGCCCGCTCCTGGCGGACCCCCGGCTGCGCAAGCTGTCATTCACCGGGTCGACCGGCGTCGGGCGCAAGCTCCTGGAGCAGGCCGCGGCCCAGGTGCTCCCCTGCTCGATGGAGCTCGGCGGGAACGCGCCGTTCGTCGTGTTCGACGACGCCGACCTCGACGCCGCGGTCGAGGGTGCCGTCGTCGCCAAGCTGCGCAACGGCGGCCAGTCCTGCGTCGCCGCCAACCGGTTCCTGGTCCAGGAGTCCGTCGCCGAGGACTTCGCGGCCCGGCTCGCACGACGGTTCGAGGGGCTCTCGGTCGGTCCGGGCACCGACGGGCACGACGTCGGCCCTCTGATCGGCGGCGGTGCCGTGACGGACGTGCACGACCTGGTCGCCGACGCCGTCGACCGCGGCGCCACCGTGCTCAGCGGCGGCGAGCCGCTCGGCGGGCGGGGCCACTTCTACCCGCCGACCGTGCTGTCCGGGGTGACCCGCGACGCACGCTGCGTGACCGAGGAGATCTTCGGACCGGTGGCACCCGTGGTGGCCTTCGGCAGCGACGACGACGGCATCGCGCTGGCGAACGACACCGAGTACGGACTGGCGGCGTACGCCTGGTCGCGCGGCCTGGACCGTTCGATGCGGGCGGCACACGAGATCGAGGCGGGCATGATCGGGGTCAACCGGGGCATGGTCAGCGACGCCAGCGCCCCCTTCGGTGGCATGAAGCAGTCGGGGCTGGGCCGCGAGGGCGGCGAGGCCGGGCTGGAGGAGTACCTGGAGACCGTCTACGTCGCTCTGTGAMTATTLPPEVRDVPTEVLVGGSWRPASGGATFPVTDPATEEVLCEVADGTADDGDAALAAAHAAAPAWAATSPRDRSELLRSCYEQIVGRTDEIAALITAEGGKPLAEARAEVAYGADFFRWFAEQAVRAPGLARTAPAGANRQLVHRRPVGPALLITPWNFPIAMATRKIGPALAAGCPVVIKPAQLTPLTTMAVAEIVRAELARRDLPAGVINVVPTSSASTVTGPLLADPRLRKLSFTGSTGVGRKLLEQAAAQVLPCSMELGGNAPFVVFDDADLDAAVEGAVVAKLRNGGQSCVAANRFLVQESVAEDFAARLARRFEGLSVGPGTDGHDVGPLIGGGAVTDVHDLVADAVDRGATVLSGGEPLGGRGHFYPPTVLSGVTRDARCVTEEIFGPVAPVVAFGSDDDGIALANDTEYGLAAYAWSRGLDRSMRAAHEIEAGMIGVNRGMVSDASAPFGGMKQSGLGREGGEAGLEEYLETVYVALPGPT0001580_2082DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
AK018_01897708hypothetical proteinGTGCACTCCTCGCGTCCCCCCGAGGTCACCGCCGCCGTGCGGCAGGGCCTCAGCATCGCCGTGGCCACCGGGCTGTACGGGATCTCCTTCGGCGCGCTCGGCGTCGTCGCGGGCCTCTCCGTGCCGCAGACGATGGCGCTCAGCCTGCTGCTCTTCTCCGGCGGCTCCCAGTTCGCGCTGATCGGGGTGGTCGCCGCCGGGGGCACCCCGCTCGCGGCCGTGGCCACGTCGACGCTGCTCGGTGTGCGCAACATGCTCTACGGAGCCGTCGTCGCCCCGCTGCTGCAGGTGCGGGGCTGGCGCCGGCTGGCCGCCGCCCAGCTGACCATCGACGAGTCCACGGCGGTCGCCGTCGGGCAGCGCGACCCGCAGGCCGTCCGCGCCGGCTTCTGGACCACGGGCCTGGGCGTCTTCGTGCTGTGGAACCTGTGCACCCTGGTCGGCGCGCTCGCCGGCGACGCCCTCGGCGACCCCCGCGCGTGGGGCCTGGACGCCGCGGCGGGTGCCGCGTTCCTCGCCCTCGTGTGGCCCCGGCTCGCCGCCCGGCAGGCGCAGGCGGTCGCCGCTCTCGCGGTCGCCGTCACCCTGGCGCTGGTCCCGCTGACCCCGGCCGGGATCCCCGTGCTCGCCGCGGCAGCGGCCGCGATCGTCGTCGGCCTCGTGGCACCGCCGGCGCGGCCAGGGCGCGGCGAGGGGCGGGCGGCATGAMHSSRPPEVTAAVRQGLSIAVATGLYGISFGALGVVAGLSVPQTMALSLLLFSGGSQFALIGVVAAGGTPLAAVATSTLLGVRNMLYGAVVAPLLQVRGWRRLAAAQLTIDESTAVAVGQRDPQAVRAGFWTTGLGVFVLWNLCTLVGALAGDALGDPRAWGLDAAAGAAFLALVWPRLAARQAQAVAALAVAVTLALVPLTPAGIPVLAAAAAAIVVGLVAPPARPGRGEGRAANANANANANA
AK018_01898321hypothetical proteinATGACCCCGACCGTGCTGTGGGTGACCGTCCTCGTCGCCTCGGCGGCCTCGTTCGCGCTCAAGCTCGCCGGGCACCTCGTGCCCGAGCACTGGCTCGCCACCGACCGGGTGCAGCGCAGCTCCGCCCTGGTCACCGTGGCGCTGCTGGTCTCCCTCGTCGTCGTCCAGACCGTCGCCGACGGGCAGGCCGTCGTCGTGGACGCCCGGCTGCCCGCGCTGGCGGTCGCGGCCGTCGCGCTGGCGCTGCGTGCCCCGTTCGTCGTCGTGGTCGTGCTCGCGGCGGCCACCGCCGCCGGGCTGCGTGCGCTGGGCTGGGGCTGAMTPTVLWVTVLVASAASFALKLAGHLVPEHWLATDRVQRSSALVTVALLVSLVVVQTVADGQAVVVDARLPALAVAAVALALRAPFVVVVVLAAATAAGLRALGWGNANANANANA
AK018_01899507hypothetical proteinATGGCCCTGTTCCGTGAGACCGCCGACGTCTCGGTCCGCCCCGCCGTGCCGGGCGACGAGGACGCCGTGACCCGCATCCAGGTCGAGGCCTGGCGCGCCACCCATGCCGAGACGCTCGGCGGGGCGGTGGACGCTCTGGACACCGCGGCGATGCGCGAGCGCTGGGCGGACGCGATCGCCCGCCCGCCGGCGCCGGGGTGCGCGGTCTTCGTGGCGCTCGAGCGGCAGCGCGTCGTCGGGTTCGGCGCCGTCTCCCCCGACCAGCTCCTGGCGCTGGAGGTCGCGCCCGACGACCGGCAGGCCGGGCACGGTTCCCGCCTGCTCGCCGCCTGCGTGGACCGGCTGCGCTCCGACGGCTCCACCGAGGTCGTCACCTGGGTGCTCGGCGGCGACGAGGGACGGGAACGCTTCCTCTCCTCCTCGGGGCTCGGCCCCGACGGCACGACCCGGCACCTCGCCACCGGGGTGCGCGACGTCGTCGAGCACCGCTGGGCAGCGGCGATCTAAMALFRETADVSVRPAVPGDEDAVTRIQVEAWRATHAETLGGAVDALDTAAMRERWADAIARPPAPGCAVFVALERQRVVGFGAVSPDQLLALEVAPDDRQAGHGSRLLAACVDRLRSDGSTEVVTWVLGGDEGRERFLSSSGLGPDGTTRHLATGVRDVVEHRWAAAINANANANANA
AK018_019001008hypothetical proteinATGACACGCGACGAGGGTGCCGTCCGCGAGGGGTCGCACGACGGGCCGGTCGACGGGCCGGTCGACGGGCCGGTCGACGGGCCGGTCGACGAGGCGCCGGGAGCGGTGCGCAACCCGTTCCGGCGCGTGTGGTGGCTGCCCGTGCTGCGCGGGATCGTGTTCATCGTGCTCGGCCTGCTGCTGATGATCGAGCCGCTCGAGGAGCTGGAGATCCTGCGCCTGCTCATCGGCGCGTTCCTCGCCGCCGACGGCCTGCTCGTCCTGGTGCAGTGGCTGGTGCACCGGCGGCAGGTCGGCTCGGCCTGGTGGCTCGCCCAGGCGGGCGTCAACGTCGTCTTCGGGGCCGTCGTGGCCCTGTGGCCCGGCCTGGACCCCACCCCGCTGTACTACGTGCTGGCGGTCTGGACGATCGTGCTGGGCATCGTGGCGATCATCGGCGGCGCGGCGCTGTCCCGGAACCGCGACCTGGGTTGGCCGTGGATGGTGACGTTCGGCATCACGGCGGCGCTGTTCGGCATGCTCCTCGTGACGCGCCCGCTGGACTCCCTGGACGTGCTGCGCCTCGTGGCCATCGTCTTCGCGCTGTTCGCCTTCGTGGCCGGCTCGGTCAACATCGTCTCGGGCTTCGCCGTGCGGTCCGTCGCCCGCGAGCTGCGCGACCTGCGCGAACAGGCCGAGAAGGTGGGCGTGGTCGTCACCGGCGGGTCGGTGCTGGGAGCCGCCAACCCGCACGCCGCCCCGGCCCGGGCCGCCGGCCCGCGCCTGACCGGGGACGCGCCGTCGTCCGCCGCCGACACGGGCGAGACCGCCCCGACGGCAGGACCCGCCCCGACGGCAGGACCCGCCCCGACGACTGGTCCGGAGGCGTCCGGGAGCCCGGACGTCACGCCGTCGGACACGGACCCGGGCGCAGGGCGGAGCACCGCGCCGGCCGGCGAGGCGCCCCGGACGGGGGAGGACGCCGGGACGGCGTCGGATCCGTCCGAGGACGGCCGGCAGGATCGTTAGMTRDEGAVREGSHDGPVDGPVDGPVDGPVDEAPGAVRNPFRRVWWLPVLRGIVFIVLGLLLMIEPLEELEILRLLIGAFLAADGLLVLVQWLVHRRQVGSAWWLAQAGVNVVFGAVVALWPGLDPTPLYYVLAVWTIVLGIVAIIGGAALSRNRDLGWPWMVTFGITAALFGMLLVTRPLDSLDVLRLVAIVFALFAFVAGSVNIVSGFAVRSVARELRDLREQAEKVGVVVTGGSVLGAANPHAAPARAAGPRLTGDAPSSAADTGETAPTAGPAPTAGPAPTTGPEASGSPDVTPSDTDPGAGRSTAPAGEAPRTGEDAGTASDPSEDGRQDRNANANANANA
AK018_019011191COG2814Chloramphenicol efflux pumpGTGTCCCACCGCACCGTCCGTGACGCCGCCGCGGGGATCACGGTCCTGGCCGTGGCCAACTTCGTCGCCATCACCACCGAGGTCCTCCCCGTCGGCCTGCTCCCCCAGCTCGCTGCGGGGCTCGGCGTCCCCGAGTCGACGGCGGGCCTGCTGGTCTCGGTCTACGCCTTCGTGGTGGCCGCGTGCGCCGTCCCGCTCACGCTCGCCACCCGCCGGCTCCCCCGCAAGCCCCTGCTGCTGGCGACCGTCGTCGTGTACGCCGTCGCCAACGTCGTCGCGGCCCTCGCGCCGTCGTTCGGCGTCGTCGTGGCTGCACGCACGCTCGGGGGCGTCGGGCACGCGGTGTTCTTCTCGGTGTCGATCGCCTACGCCGCCCGGCTCGTCTCGCCGCTGCACACCGGACGCTCGGTGACGCTGGTGACCGCGGGCGGCACCGCCGGCTTCGTGCTCGGCGTCCCCCTGTCGACCTCGCTCGGCGCGGCCGTGGGCTGGCGGTGGTCCTTTGCCGTGCTGGCCGCCGTGTGCGCCCTGACGGCGCTGCTCCTGGCGCGCGTGCTGCCATCGGTCGACGCGGCGCCCGCGACGGCCTCCACCGAGCAGCGCGAGGGTCGCGGCAGGCTCGCGCTCGTGGTGGGGACCAACACGCTGCTGTTCGTCGGCCAGTACACCGTCTACACCTACGTGTCCCTGCTGCTGCTGGCCACCGGGCTCGCCGCGGCGTCGGTCGGGCCCGCGCTGCTCGTGTTCGGTGCGCTCGGGATCGTCGGCCTCTGGGCGGCCGGCCGCTACCTCGACCGCAGGCCGCGCATGCTCACCCTGGCCACGATCGCCGTGATGGTCGCGGCGCTCGCCGGGGTCGCGCTCGCCCTGCCGCAGCGCGCCACGGTCCTGGTGGGCCTCGCCGTGTGGTTGGCCGCGTTCGGCGCCGTCCCGGCGGCGTTCCAGACGCTCGCGCTGCGTGCCCGCGGCGCGAGCGAGGACCTGGCCGGCGCCTTCGTCAACGGCACCTCGAACCTCGGGATCGGCCTGGGCGCGGCCCTGGGGTCCGTGCTCGTCGCCGGCCCCGGGCTGCCGGCGCTGGCGTGGGCCGGTGCCGGGGCGATGGCGGTCGGCGGCGGGATCGTGCTCGTGGCCCGCCGCGCGTTCCCCCACGACCCGACCGCCGCGCCGAGGAGCGACCCCGAGCCGTAGMSHRTVRDAAAGITVLAVANFVAITTEVLPVGLLPQLAAGLGVPESTAGLLVSVYAFVVAACAVPLTLATRRLPRKPLLLATVVVYAVANVVAALAPSFGVVVAARTLGGVGHAVFFSVSIAYAARLVSPLHTGRSVTLVTAGGTAGFVLGVPLSTSLGAAVGWRWSFAVLAAVCALTALLLARVLPSVDAAPATASTEQREGRGRLALVVGTNTLLFVGQYTVYTYVSLLLLATGLAAASVGPALLVFGALGIVGLWAAGRYLDRRPRMLTLATIAVMVAALAGVALALPQRATVLVGLAVWLAAFGAVPAAFQTLALRARGASEDLAGAFVNGTSNLGIGLGAALGSVLVAGPGLPALAWAGAGAMAVGGGIVLVARRAFPHDPTAAPRSDPEPPGPT0028991_609DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
AK018_01902540hypothetical proteinATGTCGTCCGACGTCGCAGACCGCTCCGCCCGGCGAGGCTCCCGGCACCACCGGCTGGGGCAGCCGACCGAGCCGATGATCACCGAGTACTTCGCCGCGCCGTCGGACGCCCTGGCCGCCACGGTGCTCCACGCCGTCACGGGTCCGGGTACGCCGGCACGCGGCTCGGGCGAACCGCTCTTCGACGCGGTCTCCCTGCCGGCGGTCGACCCGTTCGTCGCGCTGGGCCTGCTCGCCGAGGCGGCCTTCGCCGTCCCCTACGGCGAGGTCACGGCCGACCCGCGGCACGCCCTCGTGGTCGCCGGGCAGGACGCGGGCCCCTTCGTCGTGACGGTGGGCACGGACCTCACGGCCCGGCTGGCCGCGGCGTCACCGCGGGTGCTGTCCTCCGCCGCACGGCGGTGGGCGGCGAGCTCGGCGACGTCGGACCTCGACGGCGACCTGCTCGCGCGGGGGCTGTGCGACCTGGGCGAGCTGGCCTGGCGGGCCGGGGACGTGCGGCACCGGCTCTACTGCTGGACCCGGTGGCCGCAGCGGTGAMSSDVADRSARRGSRHHRLGQPTEPMITEYFAAPSDALAATVLHAVTGPGTPARGSGEPLFDAVSLPAVDPFVALGLLAEAAFAVPYGEVTADPRHALVVAGQDAGPFVVTVGTDLTARLAAASPRVLSSAARRWAASSATSDLDGDLLARGLCDLGELAWRAGDVRHRLYCWTRWPQRNANANANANA
AK018_01903477hypothetical proteinGTGACCGGACCCGCCCCGGCGGCCGGCCGTCGGCGCGTACCGCGAGGTCTGCCGGGTGCCGTCGCGGTCACCGTCCTGCTCGGCATCTACGTCTGGGCGATCGGCGGTCGCGGGGTCGCGATGCTGGGCACGGGCGAGCCCGTGCTGATCGGGATCGGCCTGGCCGTCCTCATCATCCCGCTGCTGGTGATCGGGCTGATCGCGCGCGAGTTCCGGCTCGCCGCACGGGTGCAGCGCATGGCGGACACCTTGGCGGCGGAGGGGGCGCTGCCCGTCGACGACCTCCCGCGCTCCCCGGGCGGCCGCATCGACCGGGACGCCGCCGACGTGGCGTTCGACGACGCGCGGGAGGCGGTCGACGCCGACCCCGAGAGCTGGCGTGCCTGGTACCACCTGGCCTTCGCCTACGACGCCGCCCGGGACCGCCGTCGGGCGCGCGCCGCCCTGCGCAAGGCGTCCTCGTTGTTCAGCGGGTGAMTGPAPAAGRRRVPRGLPGAVAVTVLLGIYVWAIGGRGVAMLGTGEPVLIGIGLAVLIIPLLVIGLIAREFRLAARVQRMADTLAAEGALPVDDLPRSPGGRIDRDAADVAFDDAREAVDADPESWRAWYHLAFAYDAARDRRRARAALRKASSLFSGNANANANANA
AK018_01904774dapB_2COG02894-hydroxy-tetrahydrodipicolinate reductaseGTGAGCAGCAGCGTCGTCCCGGTGGCCGTGGTCGGAGCGGCCGGACGCATGGGCGCCACCACGTGCGCCGCCGTCGAGGAGGCGGACGGCCTGGAGCTGGTCGCGCGGATCGACGCCGGCGACGACGTCGGCGCCGCGGTGCGCGACTCCGGCGCCCTGGTCGCCGTGGACTTCACCGTCCCGGCGGTCACGGAGGCCAACGTGCACGCGATCCTCGACGCCGGCGCGCACGCCGTGGTCGGCACCACCGGCTGGGACGAGGCGTCCCGGTCCCGGGTGGTCGAGCACCTTGACCGGCTGAACGGCGGGCGCGACGACGGTCTCGGCGTGCTCATCGCGCCCAACTTCGGCCTCTCCGCGGTGCTGGCGATGACGTTCGCCGCGAAGGCCGCCCGCTACTTCGAGTCGGCGGAGGTCGTCGAGCTGCACCACCCGAACAAGGTGGACGCCCCCTCGGGCACCGCCCGGCACACCGCCGCGGCGATCGCGGCGGCCCGGGCCGACGCGGGCCTGGCGCCGGCTCCGGACGCGACCGAGTCGGGCTGGGAGGCGCGGGGTGCCGACGTCGACGGCGTGCGGGTACACGCCGTGCGGCTGCGAGGTCTCGTGGCTCACGAGGAGATCCTGTTCGGCAACGTGGGCGAGCAGCTCACGATCCGGCAGGACTCGTTCGACCGTGCCTCGTTCATGCCTGGCGTCCTGCTCGCCGTGCGCGAGGTCGTCGGGCGCCCGGGGCTGACGGTGGGCCTCGAGCACGTGCTGGACCTGACGTGAMSSSVVPVAVVGAAGRMGATTCAAVEEADGLELVARIDAGDDVGAAVRDSGALVAVDFTVPAVTEANVHAILDAGAHAVVGTTGWDEASRSRVVEHLDRLNGGRDDGLGVLIAPNFGLSAVLAMTFAAKAARYFESAEVVELHHPNKVDAPSGTARHTAAAIAAARADAGLAPAPDATESGWEARGADVDGVRVHAVRLRGLVAHEEILFGNVGEQLTIRQDSFDRASFMPGVLLAVREVVGRPGLTVGLEHVLDLTNANANANANA
AK018_019051329COG0612putative zinc proteaseATGGGCCAGCACCTCCCGCTCGTGGCAGCGGGCTCGACCGGTGCCGAGCTGACCGCCGGGCAGGAGGGGGCGACGATCCGTCGCTCCGTCCTGCCCGGCGGCGTCCGTGTGCTCACCGAGCAGATGCCGGGCCTGCGCTCGGCGACGGTGGGCGCGTGGGTGGGCGTCGGTTCGCGGGACGAGACCGACGGTCACCACGGCTCGACCCACTTCCTCGAGCACCTGCTGTTCAAGGGCACCCCGCGGCGCAGCGCGCTCGACATCGCCGAGGCGTTCGACGCCGTCGGCGGCGAGGCGAACGCCGCGACCGGCAAGGAGCACACGTGCTACTACGCGCGGGTGCTCGACGACGACCTGGCGATGGCCGTCGACGTCATCGGCGACATGGTCACGTCGGCGCGGCTCGACCCCGACGAGCTCGAGACGGAGCGCGGCGTGATCCTCGAGGAGATCGCCATGACCGAGGACGACCCGGGCGAGGTCGTCCACGAGCGGTTCGCGGCGGCCGTGCTCGGCTCGCACCCGCTCGGGCGGCCGATCGGGGGCACGCCGGAGTCGATCCGGGCGGTGCCCCGGGACGCCGTCGTGGAGCACTACCGCTGGCACTACCGGCCGGAGACGCTCGTCGTGGCCGCAGCGGGCGGCGTCGACCACGACGTCCTGGTCAAGCAGGTCGGCGAGGTGCTCGCCGAGGGCGGCTGGGACCTCGACCCGGACGCGGTCCCGCGCGAGCGCCGCTCCGACGCCGCCGAGTCCGACGGTGTGCGCACCGAGCCGACGGAGCTGACGGTCCGCCGGCAGGTCGAGCAGGCCAACGTGATCGTCGGCACCACCGGCCTGAGCGCCACCGACGACCGGCGGTTCGCGATGACGGTGCTCAACGCCGTCCTCGGCGGCGGCATGTCCTCGCGACTGTTCCAGGAGATCCGGGAGCGGCGCGGCCTGGCGTACGCCACCTACTCGTTCGCGCAGGGGCACGGGGGTCTCGGGCTGTTCGGCCTGTACGCCGGGTGCACCCCGGTGCGCGTCGACGACGTCACCGAGCTCATGGTGGCCGAGCTGGAGCGGCTGGCCGACGGCGGCATCACGGACGCAGAGCTGGAGCGGTCCGTGGGTCAGCTCTCGGGCGGCCTGGTCCTCGGTCTGGAGGACTCCGGGTCCCGCATGAGCCGGCTCGGCAAGGCCGAGCTGGTGCTCGGCGAGCTGACCACGGTCGACGAGTCCCTGGCGCGGATCCGCGCCGTCACCGCCGACGACGTGCGCGAGCTGGCGGCCGACCTCGCGTCGCGCCCCCGCTCGATCGTGCGCGTCGGCCCGTTCGGAGAGTGAMGQHLPLVAAGSTGAELTAGQEGATIRRSVLPGGVRVLTEQMPGLRSATVGAWVGVGSRDETDGHHGSTHFLEHLLFKGTPRRSALDIAEAFDAVGGEANAATGKEHTCYYARVLDDDLAMAVDVIGDMVTSARLDPDELETERGVILEEIAMTEDDPGEVVHERFAAAVLGSHPLGRPIGGTPESIRAVPRDAVVEHYRWHYRPETLVVAAAGGVDHDVLVKQVGEVLAEGGWDLDPDAVPRERRSDAAESDGVRTEPTELTVRRQVEQANVIVGTTGLSATDDRRFAMTVLNAVLGGGMSSRLFQEIRERRGLAYATYSFAQGHGGLGLFGLYAGCTPVRVDDVTELMVAELERLADGGITDAELERSVGQLSGGLVLGLEDSGSRMSRLGKAELVLGELTTVDESLARIRAVTADDVRELAADLASRPRSIVRVGPFGENANANANANA
AK018_019062247pnp_2COG1185Polyribonucleotide nucleotidyltransferaseGTGGAGGGTCCCGAGATCCAGTTCGCCGAGGCCGTCATCGACAACGGCCGCTTCGGCACCCGTACCGTCCGCTTCGAGACGGGCCGTCTGGCCCGGCAGGCCGCCGGCGCCGTGTCGGCGTACCTCGACGACGAGACCATGCTGCTGTCGACCACCGCGGTCGGCAAGCACCCCAAGGACCACTTCGATTTCTTCCCGCTGACGGTGGACGTCGAGGAGCGGATGTACGCCGCCGGGCGCATCCCCGGTTCGTTCTTCCGCCGCGAGGGCCGCCCCTCGACCGAGGCGATCCTGACCTGCCGCCTGACCGACCGTCCGCTGCGCCCCCTGTTCGTCAAGGGGCTGCGCAACGAGGTCCAGATCGTCATCACGGTCATGGCCCAGCACCCGGACGACGCCTACGACGTGCTCGCGATGAACGCGGCCTCGGCGTCGACGCAGATCTCCGGTCTGCCGTTCTCCGGCCCGGCCGGTGCCGTGCGCATCGCGCTGATCGACGACCAGTGGGTCGCGTTCCCGAAGTACTCCGACAAGGAGCGCGCCGTCTTCGAGATGGTCGTCGCGGGCCGCAAGGTCACCGCGGCCGACGGTTCCGAGGACGTCGCCATCGCGATGATCGAGGCCGAGGCCACCGACGACGCGTGGAACCTGGTCAAGAACGAGGGCGCCACCGCCCCGACCGAGCAGGTCGTGGCCGAGGGCATCGAGGCCGCGAAGCCGTTCATCGCCTCGCTGTGCGACGCCCAGCTCTCCCTGGCCCAGCAGTCGGCCAAGGAGGTCGCCGAGTTCCCCCTGTTCCCGGACTACGCCGACGACGCCTACGCGGCCGTCGAGTCCGCGGTGTCGGGACCCGCCGCCGAGGCGCTGGCCATCGCCGACAAGCAGGAGCGCGAGAACCGTCTCGACGAGATCAAGGCCGGCATGGTCGAGGAGCTCGGCGGCCGGTTCGAGGGGCGCGAGAAGGAGCTGTCGGCCGCCTACCGCTCGCTGCAGAAGCAGCTCGTGCGTCAGCGCGTGCTGACTGACGGCGTGCGCATCGACGGTCGCGGGCTCGCGGACATCCGCACCCTGTCGGCCGAGGTCGAGGTGCTCCCGCGCGTGCACGGCTCGGCCATCTTCGAGCGTGGCGAGACCCAGATCCTGGGCGTGACCACGCTGAACATGCTGCGCATGGAGCAGCAGATCGACTCCCTGGGGCCGGTCACGCGCAAGCGCTACATGCACAACTACAACTTCCCGCCGTACTCGACCGGTGAGACGGGCCGCGTCGGTTCGCCGAAGCGTCGCGAGATCGGCCACGGCGCGCTCGCCGAGCGCGCCCTGGTGCCGGTGCTGCCGAGCCGCGAGGAGTTCCCGTACGCGATCCGCCAGGTCTCCGAGGCGCTCGGGTCGAACGGCTCGACGTCGATGGGCTCGGTCTGCGCCTCGACGCTGTCGCTGCTGAACGCCGGTGTGCCGCTCAAGGCGCCGGTCGCCGGCATCGCGATGGGTCTGGTCTCGGACACGGTTGACGGCGACACCCGTTACGCCGCGATGACCGACATCCTCGGCGCCGAGGACGCCTTCGGCGACATGGACTTCAAGGTCGCCGGCACCCGGGAGTTCGTCACGGCGATCCAGCTCGACACCAAGCTGGACGGCATCCCGGCGTCGGTGCTCGCCGCCGCGCTCGGTCAGGCCCGCGACGCGCGCCTGACGATCCTCGACGTGCTCGCCGAGGCGATCGACGTCCCGGACGAGATGTCGCCGAACGCCCCGCGCGTCATCGCCGTCAAGGTGCCGGTCGACAAGATCGGCGAGGTCATCGGGCCCAAGGGCAAGATGATCAACCAGATCCAGGAGGAGACCGGCGCCGACATCTCGATCGAGGACGACGGCACGGTCTACATCGGCGCGACGGACGGCCCGAGCGCCGAGGCCGCGCGGGCGTCGATCAACGCGATCGCCAACCCGCACGTGCCGGAGGTCGGCGAGCGCTTCGTCGGCACGGTCGTCAAGACGACGTCGTTCGGTGCGTTCATCTCCCTGTCCCCGGGCAAGGACGGCCTGCTGCACATCAGCCAGCTGCGCAAGCTGGTCGGCGGCAAGCGGGTCGAGAACGTCGACGACGTGCTGTCGATCGGCCAGAAGATCCAGGTCGAGATCGGTGAGATCGACCCGCGCGGCAAGCTCTCGCTGGTCGCGATCACCGAGGAGGACGACCAGCCCGCCGAGGGCGAGCAGGCCGAGCAGCCGAGCGAGGCCTGAMEGPEIQFAEAVIDNGRFGTRTVRFETGRLARQAAGAVSAYLDDETMLLSTTAVGKHPKDHFDFFPLTVDVEERMYAAGRIPGSFFRREGRPSTEAILTCRLTDRPLRPLFVKGLRNEVQIVITVMAQHPDDAYDVLAMNAASASTQISGLPFSGPAGAVRIALIDDQWVAFPKYSDKERAVFEMVVAGRKVTAADGSEDVAIAMIEAEATDDAWNLVKNEGATAPTEQVVAEGIEAAKPFIASLCDAQLSLAQQSAKEVAEFPLFPDYADDAYAAVESAVSGPAAEALAIADKQERENRLDEIKAGMVEELGGRFEGREKELSAAYRSLQKQLVRQRVLTDGVRIDGRGLADIRTLSAEVEVLPRVHGSAIFERGETQILGVTTLNMLRMEQQIDSLGPVTRKRYMHNYNFPPYSTGETGRVGSPKRREIGHGALAERALVPVLPSREEFPYAIRQVSEALGSNGSTSMGSVCASTLSLLNAGVPLKAPVAGIAMGLVSDTVDGDTRYAAMTDILGAEDAFGDMDFKVAGTREFVTAIQLDTKLDGIPASVLAAALGQARDARLTILDVLAEAIDVPDEMSPNAPRVIAVKVPVDKIGEVIGPKGKMINQIQEETGADISIEDDGTVYIGATDGPSAEAARASINAIANPHVPEVGERFVGTVVKTTSFGAFISLSPGKDGLLHISQLRKLVGGKRVENVDDVLSIGQKIQVEIGEIDPRGKLSLVAITEEDDQPAEGEQAEQPSEANANANANANA
AK018_01908270rpsO_230S ribosomal protein S15ATGCCGCTCGACGCTGCCACGAAGCAGTCCATCATCACCGAGTACGCGACTCACGAGGGCGACACCGGCTCGCCGGAGGTGCAGATCGCTCTGCTGACCCAGCGGATCACCGACCTCACCGAGCACCTCAAGAGCCACAAGCAGGACCACCACTCGCGTCGTGGCCTGCTCCTGCTGGTCGGCCAGCGCCGCCGTCTGCTCGGCTACCTGCAGAAGGTCGACATCCAGCGCTACCGCGCGCTCATCGAGCGCCTCGGCCTGCGCCGCTGAMPLDAATKQSIITEYATHEGDTGSPEVQIALLTQRITDLTEHLKSHKQDHHSRRGLLLLVGQRRRLLGYLQKVDIQRYRALIERLGLRRNANANANANA
AK018_01909990ribF_2Bifunctional riboflavin kinase/FMN adenylyltransferaseGTGCAGGTGTTCACCGACCTGGAGCAGGTCCCCGACGGATTCGGCCCGTCCGCGGTGACGATCGGCAACTTCGACGGGGTCCATCGCGGTCACCGGGCCGTGCTCGAACGGCTGGTCCGCCTCGCCCACGGCGACGACCGCTCGGCGGTGGCGGTCACGTTCGACCCGCACCCCGCCGCGGTGCACCGGCCCGAGTCCGCGCCCGAGCTCCTCACGGGGCTGACCGACCGGCTCGACCTCCTGGCCGGCACGGGTCTCGACGCGGTCCTGGTGGTCCCGTACTCGCTGGAGTTCGCGGCCCAGAGCCCCGAGGAGTTCGTCACCCGTTACCTCACCGGGGCGCTCGGCGCGCGGAGCGTCGTCGTCGGGCACGACGTGCGCTTCGGTGCGGGCAACGCCGGCACCCTGGCCACGATGGTGGAGCTCGGGGGAGTGCACGGGTTCGAGGTCGTCGCCGTGGACGACGTCGGTGAGCCGGACGCGGACCCCGCCGCCGGGCAGCATGCCCGGTGGTCGAGCTCGGCGGCGCGGGCGCTGCTCGCCGAGGGCGCCGTCGCCCAGGCCGCCGACGTGCTCGGGCGCCCGCACCGGGTGCGCGGCACCGTGGTCCACGGGGACGCCCGGGGTCGCGAGCTGGGGTTCCCCACCGCCAACCTGGGCGACATCGCGGGGATGGTCCCGGCCGACGGCGTCTACGCCGGCTGGCTGTACCGCCCGGATCTGGCCCGCACCGCGCCGCAGCACCCTGACGTGCGGCTTCCTGCGGCGATCTCGATCGGCACGAACCCCACGTTCGACGGGGTCCAGCGCCGCGTCGAGGCGTACGTCCTGGACCGCACCGACCTGGACCTGTACGACGAGGACATCGTCCTCGAGCTCGTGGACCACCTGCGGCCCACGCTGCGGTTCGATGGCATCGAGCCGCTGGTCGCACAGATGCACGACGACGTCGCCCGGGCCCGTCGGATCCTGGTCGGCGCCGGGCGCTGAMQVFTDLEQVPDGFGPSAVTIGNFDGVHRGHRAVLERLVRLAHGDDRSAVAVTFDPHPAAVHRPESAPELLTGLTDRLDLLAGTGLDAVLVVPYSLEFAAQSPEEFVTRYLTGALGARSVVVGHDVRFGAGNAGTLATMVELGGVHGFEVVAVDDVGEPDADPAAGQHARWSSSAARALLAEGAVAQAADVLGRPHRVRGTVVHGDARGRELGFPTANLGDIAGMVPADGVYAGWLYRPDLARTAPQHPDVRLPAAISIGTNPTFDGVQRRVEAYVLDRTDLDLYDEDIVLELVDHLRPTLRFDGIEPLVAQMHDDVARARRILVGAGRPGPT0008625_759DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008625-ribF-K11753NANA
AK018_01910954truB_2COG0130tRNA pseudouridine synthase BATGAGCGACGCGCGTGAGCGTCCCGCGAGGCGGCCGACGGCGGCCGACGGGTTCCTGGTGGTCGACAAGCCCGCCGGCTGGACCAGTCACGACGTGGTCGGTCGGTGCCGGCGGCTGGCCGGCACCCGCAAGGTCGGTCACGCGGGCACGCTCGACCCGATGGCCACGGGCGTGCTCGTCGTCGGCGTCGGCCGGGCCACGAAGCTGCTGACCTACGTCGTGGGAGCCGACAAGGCCTACGACGCCACGGTCCGGCTGGGGATCTCCACGACCACGGACGACGCCGAGGGCGAGCCGTCCGCGTCGACCGGCGTCGGCCGGGGGATCGACCGGGCCGCGCTCGACCGCGAGGTCGCGGCGCTGACCGGCGACGTCCAGCAGGTGCCGAGCACGGTCAGCGCGATCAAGGTGGACGGCAGGCGTGCCTACGCCCGCGCGCGGGCCGGTGAGGACGTCGAGCTCGCCGCCCGTCCGGTCACCGTCTCGACCTTCGACGTCGTCGCGGTCCGCGAGACCTCGGCCGGGGGCGTCGCCGTCGTCGACGTCGACGTGCGGGTCGTGGTGTCGTCGGGCACGTACGTGCGCGCGCTGGCGCGAGACCTCGGTGCCGCGCTCGGCGTCGGCGGCCATCTCACCGCCCTGCGGCGCACGCGCGTCGGCGGGTACACCGTCGCCGGCGCCCGCACGCTGGAGGAGCTCGAGCGGCAGGCCGACGCCGACGGCGTGCTCGCGACCGTGCCGCTCGCCGAGGCGGCGCGCAGCACCTTCGCGGTCCGCGAGCTCACGGCGGCCGAGGCCCGGGCGCTGGCCTACGGGCAGTGGATCCAGCCCTCCGCACTGCCGGGCACGGTCGCGGCGCTGGCCCCGGACGGCACCCTGGTGGCGCTGCTGGAGGACACCACGCGCCGTGGCGAACGTCTCGCCAAGCCGGTGCTGGTGCTCGCTCCCGCGTGAMSDARERPARRPTAADGFLVVDKPAGWTSHDVVGRCRRLAGTRKVGHAGTLDPMATGVLVVGVGRATKLLTYVVGADKAYDATVRLGISTTTDDAEGEPSASTGVGRGIDRAALDREVAALTGDVQQVPSTVSAIKVDGRRAYARARAGEDVELAARPVTVSTFDVVAVRETSAGGVAVVDVDVRVVVSSGTYVRALARDLGAALGVGGHLTALRRTRVGGYTVAGARTLEELERQADADGVLATVPLAEAARSTFAVRELTAAEARALAYGQWIQPSALPGTVAALAPDGTLVALLEDTTRRGERLAKPVLVLAPANANANANANA
AK018_01911429rbfA_2COG0858Ribosome-binding factor AATGAGCGAGAACCCACGGGCACGCCGGCTGGCGGACCGCATCAAGGAGATCGTGGCGCAGCTGCTGGACGGCCGGATCAAGGACCCGCGGCTGGGTTTCGTGACCATCACGGACGTGCGGGTGACCGGCGACCTGCAGCAGGCGTCGGTGTTCTACACGGTCTACGGCGACGAGGAGGCGCACGCCGGTACGGCAGCGGCTCTGGAGAGCGCCAAGGGCATGATCCGTTCCGAGGTCGGCAAGCAGACCGGAGTGCGTCTGACCCCCAGCGTGCAGTTCCACCTGGACTCGGTGCCGGAGACGGCCGCGCACCTGGATGCCGCGCTGCTCGAGGCCCGTCGTCGGGACGCCGAGCTCGCGGCGCTCCGCGAGGGCAAGCACCCTGCCGGCGACGCCGACCCGTACCGCACGGCCGACGACGAGGACTGAMSENPRARRLADRIKEIVAQLLDGRIKDPRLGFVTITDVRVTGDLQQASVFYTVYGDEEAHAGTAAALESAKGMIRSEVGKQTGVRLTPSVQFHLDSVPETAAHLDAALLEARRRDAELAALREGKHPAGDADPYRTADDEDNANANANANA
AK018_019122823infB_2Translation initiation factor IF-2GTGGCGAAGATCCGCGTCCACGAGCTGGCGAAGCAGCTCGGGGTGGAGAGCAAGACCTTGCTGGCCGAGCTGAAGGCCTCAGGGGAGTTCGTCCGGTCGGCGTCGTCGACGCTCGAAGCACCGGTCGAGCGCACGATGCGCGACAAGTTCGCGGGCGCCGGCGGCGGCCAGGGCGACAAGCCCGCGGCCAGGAAGCCCGCCGCGCCCAAGCCCGGAGCGCAGAAGCCGGCAGCCCAGAAGCCCGGGCCGAAGCCCGCGGCGCAGGAGCCCGCCCCGAAGCCCGGTGCCGCGGCACCGACGCCGGCCGAGGCGCCCGCGCCGGGTGCCGCGCCGTCGCCGGGTGCGGCCCCCAAGCCGGGTGCCGCGCCGACGCCCGCCGAGGCCCCCAAGCCGGGTGCCGCGCCGAAGCCCGGCGCCGCTCCCAAGCCGGGTGCTCCCAAGCCGGGGGGCGCACCGCGCTCGGGCGGCAAGCCCGGCCAGCAGCGGGGTGGTCGCGGCGGTCAGCCGCGCCCCGGCAACAACCCGTACGCCTCGCAGCAGGGCATGCAGCGTTCCGGCGGCCCGCGCCCCGGCAACAACCCGTTCTCCTCGCAGCAGGGCATGCAGCAGCAGCGGCCGGCCCGCGGTGAGGGCAAGCCGACCGAGCGTTCCGGCGGTCCGCGTCCGGCCGCGCCCCGCCCCGGCGGTCCGCGCCCGAACCCGGGCATGATGCCCGGCAAGACCAGCATGCCGCGTCCGGGCGAGCGCCCCGCGGCGGGCGGTCGTGGCGGTCGCGGTCGTGGCGGCGGTCCCGGCGGCGCACCGGGCGGTCCCGGTGGCGGTCGCGGCGGGTTCCGTCCCGGTGGCGGCGGCGGCTTCCGCGGTCGCGGTGGTGCCGGTCGCGGCAGCACGCAGGGTGCGTTCGGCCGGGCCGGCGGCAAGCCGGTCCGCGGCCGCAAGTCGAAGCGGGCGAAGCGCCAGGAGTTCGAGCAGATGCAGGCGCCGACCCCGGGCGGCGTCAACGTCCCCCGGGGCAACGGCGACACGCTCGTGCGTCTGCGCCAGGGCTCGTCGCTGAACGACTTCGCCGACCGGATCGACGCGAACCCGGCGGCGCTCGTGACCGTCCTGCTGCACCTGGGCGAGATGGCCACGGCGACGCAGTCGCTGGACGAGGACACCTTCGTCACGCTCGGTTCGGAGCTCGGCTACAAGATCGAGATGGTCTCCGCCGAGGAGGAGGACCGCGAGCTGCTCGAGTCCTTCGCCATCGATCTGCAGGCCGAGTCCGACGCCGAGGACGACGAGGACCTGATGCCGCGGCCGCCGGTCGTGACCGTCATGGGTCACGTCGACCACGGTAAGACGAAGCTGCTCGACGCCATCCGCTCGACCGACGTGGTGGCCGGTGAGGCGGGTGGGATCACCCAGCACATCGGTGCCTACCAGGCGCACACCGAGCACGAGGGTGCCGAGCGTGCGGTGACGTTCATCGACACCCCGGGTCACGAGGCGTTCACCGCCATGCGTGCCCGTGGTGCGAAGTCGACGGACATCGCGATCCTCGTGGTCGCGGCCGACGACGGCGTGATGCCGCAGACGGTCGAGGCGCTCAACCACGCCCAGGCCGCCGAGGTGCCGATCGTGGTCGCGGTGAACAAGGTGGACAAGGAGGGGGCCAACCCCGCCAAGATCCGCCAGCAGCTCACCGAGTACAACCTGGTGGCCGAGGAGTACGGCGGCGACACGATGTTCGTCGACGTCTCGGCGCTGCAGCGCAAGGGCATCGACGACCTCCTCGAGGCCGTCCTGCTCACCGCGGACGCCGCGCTCGACCTGCGGGCGAACCCGGACAAGAACGCCCGCGGCGTCGCGATCGAGGCGCACCTGGACAAGGGCCGCGGTTCCGTGGCCACCGTCCTGGTGCAGTCCGGCACCCTGCGCGTCGGCGACGCGATCGTCGCCGGCACCGCGCACGGCCGCGTCCGCGCCATGTTCGACGAGCACGGCGAGTCCGTGACCGAGGCCGGTCCGGCGCGTCCGGTCCAGGTGCTCGGCCTGGCCTCCGTGCCGAGCGCGGGCGACGCCTTCCTGGTGGCGCCCGACGAGCGGACGGCCCGCCAGATCGCGGAGAAGCGCGAGGCCGCCGAGCGTGCCGCCCTCCTGGCCAAGCGCCGCAAGCGCATCAGCCTCGAGGACTTCACCAAGGCGCTCGAGCAGGGCAAGGTCGAGACCCTCAACCTGGTCCTCAAGGGCGACGTGTCCGGTGCCGTGGAGGCGCTGGAGGACGCGCTGCTCAAGATCGACGTGGGCGACGAGGTCGACCTGCGGGTCATCCACCGCGGTGTCGGTGCGATCACGCAGAACGACGTGAACCTGGCCACCGTCGACAACGCCGTGATCCTCGGCTTCAACGTCCGCTTCGGCGAGCGTGTCGAGGAGCTCGCGGACCGCGAGGGTGTCGAGGTCAAGTTCTACTCGGTGATCTACCAGGCGATCGACGACATCGAGGCGGCCCTCAAGGGCATGCTCAAGCCGGAGTATGAGGAGGCGCAGCTCGGCACCGCCGAGATCCGCCAGGTGTTCCGGTCCTCGAAGTTCGGCAACATCGCCGGCTCGATCATCCGGTCGGGCACGATCCGACGGAACTCCAAGGCGCGCGTGCTGCGTGACGGCAAGGTGGTCGGCGACGACCTCACGGTGGAGTCGCTGCGACGCGAGAAGGACGACGTCACCGAGGTCCGCGAGGGCTTCGAGTGCGGTATCGGTCTCGGGTCGTACAACGACATTCGCGAGGGCGACACGATCGAGACCTTCGAGATGCGCGAGATCCCGCGCGACTGAMAKIRVHELAKQLGVESKTLLAELKASGEFVRSASSTLEAPVERTMRDKFAGAGGGQGDKPAARKPAAPKPGAQKPAAQKPGPKPAAQEPAPKPGAAAPTPAEAPAPGAAPSPGAAPKPGAAPTPAEAPKPGAAPKPGAAPKPGAPKPGGAPRSGGKPGQQRGGRGGQPRPGNNPYASQQGMQRSGGPRPGNNPFSSQQGMQQQRPARGEGKPTERSGGPRPAAPRPGGPRPNPGMMPGKTSMPRPGERPAAGGRGGRGRGGGPGGAPGGPGGGRGGFRPGGGGGFRGRGGAGRGSTQGAFGRAGGKPVRGRKSKRAKRQEFEQMQAPTPGGVNVPRGNGDTLVRLRQGSSLNDFADRIDANPAALVTVLLHLGEMATATQSLDEDTFVTLGSELGYKIEMVSAEEEDRELLESFAIDLQAESDAEDDEDLMPRPPVVTVMGHVDHGKTKLLDAIRSTDVVAGEAGGITQHIGAYQAHTEHEGAERAVTFIDTPGHEAFTAMRARGAKSTDIAILVVAADDGVMPQTVEALNHAQAAEVPIVVAVNKVDKEGANPAKIRQQLTEYNLVAEEYGGDTMFVDVSALQRKGIDDLLEAVLLTADAALDLRANPDKNARGVAIEAHLDKGRGSVATVLVQSGTLRVGDAIVAGTAHGRVRAMFDEHGESVTEAGPARPVQVLGLASVPSAGDAFLVAPDERTARQIAEKREAAERAALLAKRRKRISLEDFTKALEQGKVETLNLVLKGDVSGAVEALEDALLKIDVGDEVDLRVIHRGVGAITQNDVNLATVDNAVILGFNVRFGERVEELADREGVEVKFYSVIYQAIDDIEAALKGMLKPEYEEAQLGTAEIRQVFRSSKFGNIAGSIIRSGTIRRNSKARVLRDGKVVGDDLTVESLRREKDDVTEVREGFECGIGLGSYNDIREGDTIETFEMREIPRDNANANANANA
AK018_0191396hypothetical proteinATGGTGCCGCTCACGTCTCGACCGGGCGCCACCGCCCGGCCGCACCACGCGTACATCGACAAGGAAGCGGGTCAGAAGCCGATGGGCACCCGATGAMVPLTSRPGATARPHHAYIDKEAGQKPMGTRNANANANANA
AK018_01914360hypothetical proteinGTGAGCTCGGGGCCGGCGAGCAGTGGCGTTAGACTAGGGCCGATCGGGTCGCGAACCCAGTCCGTCGCATGCCCGCGCAACGCACCCCGGGAGACCGGTCCGCTGCGCACCTGCGTCGGCTGCCGGGGACGCGACCTGCGGTCGGATCTCCTGCGGCTGGTGCTCTCGCCGTCGGACCCCGAGCCTCGGCTCGTGGTCGACGAACGGGGCAGCCTGCCGGGGCGCGGGGCCTGGATCCATCCGGACCTCGCCTGCCTGGAGCTCGCCCGGCGACGGCGGGCCGTGCCGCGCGCGCTGCGCGTCGCCGGACCGCTCGACCTGGACGGGGTGCGGGCATATCTGGAGCAGCAGGACCGTTGAMSSGPASSGVRLGPIGSRTQSVACPRNAPRETGPLRTCVGCRGRDLRSDLLRLVLSPSDPEPRLVVDERGSLPGRGAWIHPDLACLELARRRRAVPRALRVAGPLDLDGVRAYLEQQDRNANANANANA
AK018_019151041nusA_2COG0195Transcription termination/antitermination protein NusAATGGACATCGACATGAGCACGCTGAGGCTGCTGGAGCGGGAGCGTGAGATCAGCCTGGACGTCCTGGTCGAAGCCATCGAGCAGGCCCTGCTCTCCGCCTACCACCGCACGCCGGACGCCTACCAGCACGCCCGCGTCGAGCTGGACCGCACCTCGGGCCACGTGACGGTCTGGGCCCGCGAGCAGATCCGGACGCCCGACCCGGAGGACCCGGAGGGGCGCGGGACGGTCGAGCCCGGTCCGGAGTTCGACGACACCCCGGCGGACTTCGGCCGCATCGCGACGGCGACGGCCCGCCAGGTCATCGTCCAGCGCCTGCGTGACGCCGAGGACGACCAGGTGCTCGGGATGTTCCGCGGCAAGGAGGGCGAGGTCCTCGCGGGCGTCATCCAGCAGGGTCGCGACCCGCGCGTCGTCCTGGTCGACGTGGGCGGCACCGAGGCCGTCCTCCCGCCGCACGAGCAGGTGCCGGGGGAGGTCTACACGCACGGCGAGCGGCTGCGCGCCTACGTCGTGGAGGTCTCGCGCGGCATGAAGGGCGCGCAGGTGACCCTCAGCCGGACCCACCCCAACCTCGTGCGCAAGCTGTTCGAGCTCGAGGTCCCGGAGATCGCGGACGGCTCGGTCCAGATCATGGCGGTGGCCCGCGAGGCCGGTCACCGCACCAAGCTCGCGGTGCGCTCGAAGGTGTCCGGCCTCAACGCCAAGGGCGCCTGCATCGGACCGATGGGGTCGCGGGTGCGCGCGGTGATGGCGGAGCTGCACGGCGAGAAGATCGACATCGTCGACCACAGCGAGGACCCGGCCCGCTTCGTGGCCAACGCCCTGTCGCCCGCGCGTGTGAGCTCCGTCACCGTCGTGGACGCCGACGCGAAGGCCGCCCGCGCGGTCGTGCCGGACTACCAGCTCTCGCTCGCCATCGGCAAGGAAGGGCAGAATGCCCGGCTTGCCGCCAAGCTGACGGGCTGGCGCATCGACATCCGCTCGGACGAGGGCGGGGACGTCCCGGCCGTGGCCGTCGGGCCCGACGAGGTGGCGTGAMDIDMSTLRLLEREREISLDVLVEAIEQALLSAYHRTPDAYQHARVELDRTSGHVTVWAREQIRTPDPEDPEGRGTVEPGPEFDDTPADFGRIATATARQVIVQRLRDAEDDQVLGMFRGKEGEVLAGVIQQGRDPRVVLVDVGGTEAVLPPHEQVPGEVYTHGERLRAYVVEVSRGMKGAQVTLSRTHPNLVRKLFELEVPEIADGSVQIMAVAREAGHRTKLAVRSKVSGLNAKGACIGPMGSRVRAVMAELHGEKIDIVDHSEDPARFVANALSPARVSSVTVVDADAKAARAVVPDYQLSLAIGKEGQNARLAAKLTGWRIDIRSDEGGDVPAVAVGPDEVANANANANANA
AK018_01916525rimP_2Ribosome maturation factor RimPATGGCAGCAGAGCGGAGCCGTGCGTCGGACACGCGCGTCCGGTCGGTGGTCGAACCGGTGGTCGACGCCGCCGGGCTGTACCTGGAGGACGTGCAGGCCACGCGCGCGGGGGACCGGTCCGTCGTGCGGATCACCCTCGACCTGCCCGAGCACGTCGAGGGCGAGCTGGACTCGGACCGGCTGGCCGAGGCGTCCCGCTCGATCTCGGCGGTGCTCGACGAGGCCGACGTCGTGCCCGGGCGCTACACGCTCGAGGTCTCGACGCCGGGCGCCACGCGCCCGCTGACCCGGGCGCGCCACTTCCGGCGTGCGCGGGGTCGCCTGGTCCGCCTGACGACGACGGACGGCGACGAGGTGCGCGGGCGCCTGCGCGACGTGGTCGGTGAGGGGGACGACGTCGAGCTCGTGCTGGCCGACGGGACGCGTCTGCCGCGGTCCGCGGTGCGCCGCGGCAAGGTGGAGGTCGAGCTGACCAGGCTCGGCGACGACGACGCGGGCGCCGCCCGCGAGGGTGAGGAGGGCTGAMAAERSRASDTRVRSVVEPVVDAAGLYLEDVQATRAGDRSVVRITLDLPEHVEGELDSDRLAEASRSISAVLDEADVVPGRYTLEVSTPGATRPLTRARHFRRARGRLVRLTTTDGDEVRGRLRDVVGEGDDVELVLADGTRLPRSAVRRGKVEVELTRLGDDDAGAAREGEEGNANANANANA
AK018_019171161hypothetical proteinATGGAACCGCACCACGTCACCCCACCGGGCCGCCGCCGTCTCCGGGCGCTCGCCGGCCTGCTGGCCGTCGCGGTCCTCGCCGGGTGCGGGCTGCGCCTCGAGACCCCGCCGCCGGCGGAGCCCGTGCCCGACGCGCTCGAGATCGTGCGGCGCACCGCGGTGTCCGACGCCCTCTACGTGGCCGACCAGGCCGACGCGGTCGTCGACCGCCTCGACGGGCGCCGTGCCCGCCTCACCGCCGAGCTGGAACGCGTCGCCGCGGACTCCCGTGCGCAGGCCGCCCAGCTCGGCGGCGTCTACGACTCCGGTCTGGAGCCGACGGAGCCGCCCACCGGCTCCCCGGCACCCAGCTCGGAGCCCGTGCAGGCCCAGGACGTGGTCGACGCCCTCGTGGACGCCTCCGGCCGGAGCCGGACCGCGGCCAGCACGACCGTCGAGGGCCCGCTGGCCCGCCTCCTCGCCTCGATCGGCGCCGCCCAGGCGGTCTCCGCCCAGCGCGTCGGGGCGTACACCGACGCCGGCCCACCGCCGACGCAGGTCGCGACGGTGCCCGCCCCCGACGGCACGGACATCGTGGAGGTCGAGCCGTCCGGGGAGTCCCCCGCGGCCGACGCCGCCGGGTCCGCCGGGTCCGGGCTGGCGGCCCTGACGGCCGCGTCCCCCTCCCCGTCCCCGTCGGCCACCGACGACGGCGAGGTGTCCAGCACCGGCGGAGACTCCGACGCCCCGGCGCCGCCGCCACGGGGCCTGACCGCCGCCGACCTGAGCACGCTGGTCGCCTCGGAGGACTCGGCGGCGTACGCGCTACGGCTGCGCGCCGCCCTGCGCACCGACGACCGGCGCGCCGCGCTGGCCGGACGCGCCGACACGCACGGCGCGCGCAGCGAGGACTGGGCGCTCCTCGCCGGGACCGCCGGCACGGCCCAGGACCCCCGCCGCGTCGCCTACGCCGTCCCCCGCGGGGCCGGCGACGGCGCGCTCGTGCGCAGCGTGGAGAACGACCTGGCCACCACGTACGCCACCCTCGTGGGGACGACCGCACCGGACACCCGCGGCGCCCTGGTCGACCTCCTCGTCGACTCCGCCCTCGCCCTGGAGGCGTGGGGCGCCGAGCCCGTGCCGTTCCCGGGCCTGCCGGAGCAGGCGGACGACGCCGGGTAGMEPHHVTPPGRRRLRALAGLLAVAVLAGCGLRLETPPPAEPVPDALEIVRRTAVSDALYVADQADAVVDRLDGRRARLTAELERVAADSRAQAAQLGGVYDSGLEPTEPPTGSPAPSSEPVQAQDVVDALVDASGRSRTAASTTVEGPLARLLASIGAAQAVSAQRVGAYTDAGPPPTQVATVPAPDGTDIVEVEPSGESPAADAAGSAGSGLAALTAASPSPSPSATDDGEVSSTGGDSDAPAPPPRGLTAADLSTLVASEDSAAYALRLRAALRTDDRRAALAGRADTHGARSEDWALLAGTAGTAQDPRRVAYAVPRGAGDGALVRSVENDLATTYATLVGTTAPDTRGALVDLLVDSALALEAWGAEPVPFPGLPEQADDAGNANANANANA
AK018_019181842proS_2COG0442Proline--tRNA ligaseATGTCGATCGTGTCCGCCTCCGGCGCTGCCCGCAGCGGTGACCTGCTGCGCCTGTCCTCCCTGTTCGTCCGTACCCTGCGCGAGGACCCGGCCGACGCCGAGGTCGCCAGCCACCGGCTGCTGGTGCGGGCCGGCTACATCCGCCGGGCGGCGCCCGGGGTGTACTCCTGGCTCCCGCTGGGTCTGCGGGTGCTGGCGAAGGTCGAGGCCGTGGTGCGCGAGGAGATGGCCGCCATCGGCGCCCAGGAGGTGCACTTCCCGGCGCTGCTGCCGCGCGAGCCCTACGAGGCGACCGGACGGTGGGACGAGTACGGGCCCAACCTGTTCCGGCTCAAGGACCGCAAGGAGGCCGACTACCTGCTGGCCCCCACCCACGAGGAGATGTTCACCCTGCTGGTGAAGGACCTGTACTCCTCGTACAAGGACCTGCCCCTGGCGCTGTACCAGATCCAGACCAAGTACCGCGACGAGGCGCGTCCCCGCGCCGGGCTGATCCGCGGACGCGAGTTCATCATGAAGGACGCCTACTCCTTCGACCTCGACGACGCCGGGCTGGAGGCCGCCTACGACAGGCAGCGTGGCGCCTACCAGCGCATCTTCTCCCGGCTCGGGCTCGAGTACGTGGTCGTGGCCGCGACGTCGGGTGCGATGGGCGGCTCGCGCTCGGAGGAGTTCCTGTCGCCGTCGGCGATCGGCGAGGACACGTTCGTGCGCTCGGCCGGCGGGTACGCGGCGAACGTCGAGGCCGTCGTCACGCCGGTGCCCGAGCCGCTCGGGTACGACGACGCCCCGGCGGCGCACGTTGAGGACACCCCCGACACCCCCACCATCGAGACCCTGGTGGACTTCGCCAACGCCCACCACCCCCGGGCCGACCGCGCCTGGACGGCCGCGGACACGCTCAAGAACGTGGTGCTCGCCGTGACCCAGCCGGACGGCACCCGCGAGCTCGTCGTCGTCGGCGTCCCGGGGGACCGCGAGGTCGACGTCAAGCGGCTCGAGGCGTCGCTGGCCCCCGCCGAGGCCGAGCCCGCCACCGAGACGGACTTCGCCGCGCACCCCGAGCTGGTCAAGGGCTACATCGGCCCCGGCGTGCTCGGGCCGCAGGGCAAGCAGGTCCTCGACCCCGAGTCGGGTGAGACCCGCCCCGCGATCCGCTACCTGCTCGACCCCCGGGTGGTGGCCGGCACGCGCTGGATCACCGGCGCCGACCAGCCCGGCCGGCACGTGTTCGACCTGGTCGCCGAGCGTGACTTCGCCGCCGACGGCGTCATCGAGGCGGCGGAGGTGCGGGCCGGGGACCCGGCCCCGGACGGCTCGGGCCCGCTGGAGCTGGCGCGCGGCATCGAGATCGGCCACATCTTCCAGCTCGGACGCAAGTACGCGGAGGCGCTCGACCTGAAGGTGCTCGACCCGAACGGCAAGCAGGCCGTGGTGACGATGGGCTCCTACGGCATCGGCGTCACGCGGGTGCTGGCGGCGCTCGCCGAGGCCCACCACGACGAGCGCGGGCTGGCCTGGCCGGCCCACGTCGCGCCCGCGCACGTGCACGTCGTGGCGACCGGCAAGGGGTCCGAGGTGTTCGCCGCGGCCGAGGAGATCGCGACGGGGCTCGTGGCACAGGGCGTCGAGGTGGTCTACGACGACCGCCCCAAGGTCTCGCCGGGCGTGAAGTTCGCGGACGCCGAGCTCTTCGGGGTGCCGCTGGTCCTCGTGGTCGGCCGCGGGCTCGCCGACGGCGTCGTGGAGGTCCGTCCCCGCGCCGGCGAGGCGGTGCAGGTGCCGGTGGACCGGGCGGTGCCGACGGTGGTCGAGCGGGTCACGGAGCTGCTGGCGGGCTGAMSIVSASGAARSGDLLRLSSLFVRTLREDPADAEVASHRLLVRAGYIRRAAPGVYSWLPLGLRVLAKVEAVVREEMAAIGAQEVHFPALLPREPYEATGRWDEYGPNLFRLKDRKEADYLLAPTHEEMFTLLVKDLYSSYKDLPLALYQIQTKYRDEARPRAGLIRGREFIMKDAYSFDLDDAGLEAAYDRQRGAYQRIFSRLGLEYVVVAATSGAMGGSRSEEFLSPSAIGEDTFVRSAGGYAANVEAVVTPVPEPLGYDDAPAAHVEDTPDTPTIETLVDFANAHHPRADRAWTAADTLKNVVLAVTQPDGTRELVVVGVPGDREVDVKRLEASLAPAEAEPATETDFAAHPELVKGYIGPGVLGPQGKQVLDPESGETRPAIRYLLDPRVVAGTRWITGADQPGRHVFDLVAERDFAADGVIEAAEVRAGDPAPDGSGPLELARGIEIGHIFQLGRKYAEALDLKVLDPNGKQAVVTMGSYGIGVTRVLAALAEAHHDERGLAWPAHVAPAHVHVVATGKGSEVFAAAEEIATGLVAQGVEVVYDDRPKVSPGVKFADAELFGVPLVLVVGRGLADGVVEVRPRAGEAVQVPVDRAVPTVVERVTELLAGNANANANANA
AK018_01919879mutM_3Formamidopyrimidine-DNA glycosylaseATGCCGGAGCTCCCCGAGGTCGAGGCCCTGGCCCGGTTCCTCGACCGCAGCATGCGTGACCGCACGGTCGTGGCGGCCGACGTCGGATCGATCGCCGCGCTCAAGACGCACGACCCGCCGACGAGCGCGCTGGTCGACCGCCCCGTGCGGTCCTGGACGCGGCGCGGCAAGTGGCTCGTGCTGGCCACCGGCGGCCCGCACCTGGCCGTCCACCTCGCGCGCGGCGGCTGGGTGCGGTGGCACGACCGGGCGCCGACGACGCCGGTGCGACCCCGGCTCGGCGGCTCCTCGCGCGGGCCGTCCCTGGGTGTCCGGCTGCGGTTCGACGACGGCACCGGGCTCGACGTCACCGAGGCAGGCACGCGGCGGCGCCTGGCCCTGCACGTGGTCGCGGCGCCCGAGGACGTCGAGGCGATCCGCACCCTCGGCGTCGAGCCGCTGTCCGAGGACTTCACCGTCGAGGTCCTGGCCGGGCTGATGCGCGGCCGCAACCAGCAGGTCAAGGGGCTGCTGCGCGACCAGCACGCCGTGGCAGGGATCGGCAACGCCTACTCCGACGAGATCCTGCACGTCGCCCGCGTCTCCCCCTTCGCCCTGACCCGGTCGTTCGACGACGACGCCGTGGTGGCGCTGCACGCCGCCGTCGTGGACACGCTCACCGCGGCCGTCGCCGCGTCGGCCGGGCGTCCGGCGTCGGACCTCAAGGACGCCAAGCGTGCCGGGATGCGCGTGCACGGGCGCACCGGAGAACCATGCCCGGTCTGCGGGGACACCGTCCGCGAGGTGTCGTTCGCCGACCGGTCGCTGCAGTACTGCCCCACCTGCCAGACCGGCGGCCAGGTCCTGGCCGACCGACGGATGTCCCGGCTGCTGCGCTGAMPELPEVEALARFLDRSMRDRTVVAADVGSIAALKTHDPPTSALVDRPVRSWTRRGKWLVLATGGPHLAVHLARGGWVRWHDRAPTTPVRPRLGGSSRGPSLGVRLRFDDGTGLDVTEAGTRRRLALHVVAAPEDVEAIRTLGVEPLSEDFTVEVLAGLMRGRNQQVKGLLRDQHAVAGIGNAYSDEILHVARVSPFALTRSFDDDAVVALHAAVVDTLTAAVAASAGRPASDLKDAKRAGMRVHGRTGEPCPVCGDTVREVSFADRSLQYCPTCQTGGQVLADRRMSRLLRNANANANANA
AK018_019211143ispG_2COG08214-hydroxy-3-methylbut-2-en-1-yl diphosphate synthase (flavodoxin)ATGCCCGCACCGCCCGCTCCCACGCTCGCCCCGCGCCGCGCGACCCGGAAGATCAAGGTCGGCGACGTCTACGTCGGTGGCGACGCCCCGGTGAGCGTCCAGTCGATGACGACCACCAAGACCACCGACATCAACGGCACCCTCCAGCAGATCGCCGAGCTGACGGCCGCCGGCTGCGACATCGTGCGCGTGGCCTGCCCCACGCAGGACGACGCCGAGGCCCTGCCGATCATCGCGAAGAAATCGCAGATCCCGGTGATCGCCGACATCCACTTCCAGCCGAAGTACGTCTTCGCGGCCATCGAGGCGGGATGTGCGGCGGTGCGCGTCAACCCCGGCAACATCAAGAAGTTCGACGACCAGGTCAAGGAGATCGCGCAGGCCGCCAAGGACCACGGCACCTCGCTGCGGATCGGCGTCAACGCCGGCTCCCTCGACAAGCGTCTCCTGCAGAAGTACGGCAAGCCCACGCCCGAGGCCCTCGTCGAGTCGGCCGTGTGGGAGGCGAGCCTCTTCGAGGAGCACGACTTCCACGACTTCAAGATCTCCGTCAAGCACAACGACCCGGTGGTCATGGTCCGCGCCTACGAGCTGCTGTCCGAGCGCGGCGACTGGCCGCTGCACCTCGGCGTCACGGAGGCCGGTCCGGCGTTCCAGGGGACCATCAAGTCGGCCACCGCGTTCGGTGCGCTGCTCAGCCAGGGCATCGGCGACACCATCCGCGTCTCGCTGTCGGCGCCGCCGGTCGAGGAGGTCAAGGTCGGCATCCAGATCCTGCAGGCCCTGAACCTGCGCGAGCGCAAGCTCGAGATCGTCTCCTGCCCCTCCTGCGGACGGGCCCAGGTCGACGTCTACGAGCTGGCGGAGAAGGTCACCGCAGGACTCGAGGGCATGGCCGTCCCGCTGCGGGTGGCCGTCATGGGCTGCGTCGTCAACGGTCCGGGCGAGGCCCGCGAGGCCGACCTCGGCGTCGCCTCCGGCAACGGCAAGGGCCAGATCTTCGTCAAGGGCGAGGTCATCAAGACCGTCCCCGAGGCGATGATCGTCGAGACGCTCATCGAGGAGGCCCTGCGCATCGCCGAGGAGATGCCGGCACCCGAGAACGACGCCCAGGCGGGCGCCCCGGTCGTCACGGTGTCCTGAMPAPPAPTLAPRRATRKIKVGDVYVGGDAPVSVQSMTTTKTTDINGTLQQIAELTAAGCDIVRVACPTQDDAEALPIIAKKSQIPVIADIHFQPKYVFAAIEAGCAAVRVNPGNIKKFDDQVKEIAQAAKDHGTSLRIGVNAGSLDKRLLQKYGKPTPEALVESAVWEASLFEEHDFHDFKISVKHNDPVVMVRAYELLSERGDWPLHLGVTEAGPAFQGTIKSATAFGALLSQGIGDTIRVSLSAPPVEEVKVGIQILQALNLRERKLEIVSCPSCGRAQVDVYELAEKVTAGLEGMAVPLRVAVMGCVVNGPGEAREADLGVASGNGKGQIFVKGEVIKTVPEAMIVETLIEEALRIAEEMPAPENDAQAGAPVVTVSPGPT0007580_1656DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007580-gcpE|ispG-K03526NANA
AK018_019221266rip1_2COG0750Zinc metalloprotease Rip1GTGAACATCCTCCCGGTCGTCGTCGGCATCGTCGTCGTGGTGCTCGGCATCCTCGTCTCGATCGCCCTGCACGAGGTGGGTCACATGGTGCCCGCCAAGAAGTTCGGCGTGCGCGTCAGCGAGTACATGGTCGGTTTCGGGCCCACGCTGTGGTCGCGCAAGCGTGGTGAGACGGAGTACGGCCTCAAGGCGATCCCGCTGGGCGGCTACGTCCGCCTGGTCGGGATGATGCCGCCGGCGCCCGCGGGGACTCGTCCGGGGAACGGGTTCTTCTCCCGCGTGATCGCCGACGCGCGGGACGCGAGCGTCAGCGAGATCCGCCCGGGGGAGGAGCGCCGCGCCTTCTACCACCTGTCGACGCCCAAGAAGCTCGTGGTGATGCTGGGCGGCCCGGTGATGAACCTCGTCATCGCCGTGGTGCTGCTGGCCGTCGTCTTCCTCGGGATCGGGATGCCGACGGCGACGACCACGGTCGAGGAGGTCGGAGCGGACTCCGCGGCCGCGACGGCGGGCGTGCAGGCGGGCGACGAGGTGGTCGCGTTCGACGGAGCCCCGGTGGAGGACTGGTCCCAGCTCGTGGGCATGATCAACGACGCCGCCGGCGAGCAGGTGCCGCTGGTCGTGGAGCGCGACGGCCGGCAGGTCGAGCTCACCGTCACCCCGGAACCGGCCGAGCGACCGCTGACGGACGACGACGGCTACCCCGTCACCGACGACGCGGGCGAGCCGGTCATGGTCGACGGCGCCCTGCTCGGGGTGACCTCGAGCGTCGAACGCCAGGCGCTGCCCGTGTCGTCGGTGCCCGAGGCGGTGTGGCTCCAGGTCTCGGGGACCGCCCACGCGATCGTGACGCTGCCGGTGCGCATCTACGACGCCGCGTACGAGGCCTTCACCGACGCCCCGCGCTCGCAGGACTCGGTGATGTCCGTCGTCGGCGTGGGGCGCGCGGCCGTCGACACGGCCGGGGCCGAGGACTACTCGGTGCTCGCCCGCGTCCAGCTCATGCTCATGCTGCTCGCCTCGCTGAACATCGCCCTGTTCATGTTCAACCTGATCCCCGTGCTGCCGCTCGACGGCGGGCACGTGGTCAACGCGCTCTACGAGGGGGCGCGGCGCAGCGTGGCCCGGGCGCGCGGGCGCACGTTGCCCGGCCCGGCCGACGTGGCCCGCATGATGCCGGTCGCCTACGTGATGTTCGTCGCGCTGATCGGCGTGGGGGCGGTGCTGATGATCGCGGACGTCGTGGACCCGGTCCGGCTGTTCTGAMNILPVVVGIVVVVLGILVSIALHEVGHMVPAKKFGVRVSEYMVGFGPTLWSRKRGETEYGLKAIPLGGYVRLVGMMPPAPAGTRPGNGFFSRVIADARDASVSEIRPGEERRAFYHLSTPKKLVVMLGGPVMNLVIAVVLLAVVFLGIGMPTATTTVEEVGADSAAATAGVQAGDEVVAFDGAPVEDWSQLVGMINDAAGEQVPLVVERDGRQVELTVTPEPAERPLTDDDGYPVTDDAGEPVMVDGALLGVTSSVERQALPVSSVPEAVWLQVSGTAHAIVTLPVRIYDAAYEAFTDAPRSQDSVMSVVGVGRAAVDTAGAEDYSVLARVQLMLMLLASLNIALFMFNLIPVLPLDGGHVVNALYEGARRSVARARGRTLPGPADVARMMPVAYVMFVALIGVGAVLMIADVVDPVRLFNANANANANA
AK018_019231194dxr_2COG07431-deoxy-D-xylulose 5-phosphate reductoisomeraseATGAGCACCCGCACCGTCACCCTGCTCGGTTCCACCGGTTCGATCGGCACCCAGGCGATCGACGTCGTGTCGGCCCACCCCGGACGCTACGTGGTCGAGGGGATCAGCGCCGGCGGGTCCGACGTCGAGCTGCTCGCCGAGCAGGCGGAGCGCCTCGGCGTGCGCACGATCGCCGTGGCGGACGCCGCACGCGCGGACGACCTGCGCGAGGCGCTGGCCGCCCGGCTCGGCGGCCCGGAGGCCGGCCGGACCGAGATCCTCGTCGGACCCGGTGCCGCGACGGACCTCGCCGGCCGGGGTTCCGATGTCGTGCTCAACGGCATCACGGGTTCCGTCGGGCTCCGCCCCACCCTGGCGGCGCTGCGCGCGGGCTCGACGCTGGCCCTGGCGAACAAGGAGTCGCTGGTCGTCGGCGGGGCCCTGGTCAAGGCGCTCGCGCGCCCGGACCAGATCGTGCCCGTGGACTCCGAGCACTCCGCGATCGCGCAGGCGTTGCGCGGCGGGGCGCACGCCCCGGAGCGCAGCGAGGTGCGCCGGTTGATCCTCACCGCGTCCGGCGGGCCGTTCCGCGGCCGGGCCCGCGACGAGATCGCGACGGTCACCGCCGAGCAGGCGTTGCAGCACCCCACGTGGGCGATGGGGCCGGTCGTGACCGTGAACTCCGCGTCGCTGATGAACAAGGGTCTCGAGCTCATCGAGGCGCACCTGCTGTTCGACGTGCCCACCGACGACATCACGGTGGTGGTGCACCCGCAGTCGGTGGTGCACTCGATGGTGGAGTTCTGCGACGGGTCGACGATCGCGCAGGCCTCCCCGCCGGACATGCGCCTGCCGATCGCGCTGGGCCTGTCGTGGCCGGACCGGCTCGACGTGGTCTCCCCGCCGTGCGACTGGACGCGGGCGACGAGCTGGACGTTCGAGCCCCTCGACGCGGCGACCTTCCCCGCCGTCGACCTGGCGCGGTCCGCGGCCGCGGCGTCGGCCACGCACCCCGCGGTGTTCAACGCCGCCAACGAGCAGGGCGTCGACGCCTTCCTGGCGGGTCGGATCGGGTTCCTCGACATCGTCGACACCGTCGAGCGGGTGCTGGGCGAGCACGACGGCGTGGCCGCCGCCGACGCGACGCTCGAGGCGGTCGAGGGCGCCGAGACGTGGGCGCGGTCCCGGGCGGACGAGCTCCTGGCCCGGCGCTGAMSTRTVTLLGSTGSIGTQAIDVVSAHPGRYVVEGISAGGSDVELLAEQAERLGVRTIAVADAARADDLREALAARLGGPEAGRTEILVGPGAATDLAGRGSDVVLNGITGSVGLRPTLAALRAGSTLALANKESLVVGGALVKALARPDQIVPVDSEHSAIAQALRGGAHAPERSEVRRLILTASGGPFRGRARDEIATVTAEQALQHPTWAMGPVVTVNSASLMNKGLELIEAHLLFDVPTDDITVVVHPQSVVHSMVEFCDGSTIAQASPPDMRLPIALGLSWPDRLDVVSPPCDWTRATSWTFEPLDAATFPAVDLARSAAAASATHPAVFNAANEQGVDAFLAGRIGFLDIVDTVERVLGEHDGVAAADATLEAVEGAETWARSRADELLARRPGPT0007585_1954DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007585-ispC|dxr-K00099NANA
AK018_01924555hypothetical proteinGTGAGCAGCACGCTCTTTTCCACCGTGTCGAAGACGCGTCAGGGGTACGACCCCGACGAGGTCGACGACTTCTTCGACCACGCCCGGCAGGCGTACGAGGGGCGCACGCCCGAGCCGATGACGAACGCCGACATCGCCGGGTCCACCTTCGAGCTGATCCGCGGCGGGTACAACACCCACGAGGTGGACGCCGCGCTGGACCGGCTCGAGGGGGCGTTCATCGCACGCCAGCGGGCCGAGTTCGTCAACACCCACGGCCAGGAGGCCTGGATGGCTGCGCTGGCCGAGCGCGCCCGCACGCTGTACGGGCGGCTGGGCCGTCCGGACGGATCGAAGTTCGCCCCGGCGGAGCGCGGGCAGCAGGGCTACGACATGGACGACGTCGACGCGATCTGCGACCGACTGGTCGGCTACTTCGACCGTCAGGAGCCGTTGACGGCCGCCGAGCTGCGCTCGGCCACGTTCGGACGCGCCAAGGGCGCGAACGCCTACGCCGAGGAGCCCGTGGACAAGTTCCTGGCACGGGCCATCGAGGTGCTGCTCGGCGTCGAGTGAMSSTLFSTVSKTRQGYDPDEVDDFFDHARQAYEGRTPEPMTNADIAGSTFELIRGGYNTHEVDAALDRLEGAFIARQRAEFVNTHGQEAWMAALAERARTLYGRLGRPDGSKFAPAERGQQGYDMDDVDAICDRLVGYFDRQEPLTAAELRSATFGRAKGANAYAEEPVDKFLARAIEVLLGVEPGPT0014806_9DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014806-gpsB-NANANA
AK018_019251182rlmN_2COG0820Dual-specificity RNA methyltransferase RlmNATGGCAACGACACCCGCCGCCGGATCGGCCGAGCTCGGCATCCCCGCCGTCCGGCCCTCGGACGAGACCACGCCGATCCCGCTGCAGATGGCCCCGCGGCGTCGGGGGAAGCCGCCGCGGCACTTCGCGGACCTGACCGCCGAGCAGCGGGCCGCCTCCGTGGCCGAGCTGGGGGAGAAGCCGTTCCGCGCCAAGCAGCTCGCGGCGCACTACTTCACGCACTTCACCTCGGACCCGGCGGAGATGACCGACCTGCCGAAGGCGACCCGGGACGAGCTGGCGACGACGATGTTCCCGCCGCTCATCCGGCCCACGCGGCGCATGGAGGCCGACGGCGGCACCACCGTCAAGACCCTGTGGCACCTGTTCGACGACGCCAAGGTCGAGTCGGTGCTGATGCGCTACCCGCACCGCACCACCCTGTGCGTGTCGTCGCAGGCCGGCTGCGGCATGGCCTGCCCGTTCTGCGCCACCGGTCAGCTCGGGCTGACGCGAAACCTGTCCACGGCGGAGATCCTCGAGCAGGTGCGGGCCGCCTTCCGGGCGCTGGACCGCGGCGAGATCCCGGGCGGCCCGGCGCGCCTCAACAACCTGGTGTTCATGGGGATGGGGGAGCCGCTGGCCAACCCGCGCGCGGTCATCGAGACGGTCAAGGCCCTGGTCGCACCGCAGCCCGAGGGTTTCGGCATGTCGGCGCGCAACATCACCGTGTCGACGGTCGGGCTGGTGCCGGCGATGCGCAGGCTCGCGGACCTGGGCATCCCGGTCACCCTGGCGCTGTCGCTGCACGCACCGGATGACGACCTGCGCAGCGAGCTCGTGCCGATCAACACCCGGTTCAGCGTGGACGAGGCGATCGACGCCGCACGGCACTACTACGAGGTCACCGGCCGGCGGGTCTCGATCGAGTACGCGCTCATCAAGGACATGAACGACCAGGGGTGGCGGGCCGACCTGCTGGCCGAGAAGCTCAACGCCCGGGGCAAGGGGTGGGTGCACATCAACCCGATCCCGCTCAACCCGACCCCCGGTTCCATCTGGACGGCGTCCGAGCGTTCCGTCGAGGACGAGTTCGTGGCACGATTGCGCGGGCACGGCATCCCCACCACCATCCGTGACACCCGCGGGAGCGACATCGACGGCGCTTGCGGGCAGCTGGCCGCCGAGGAGGACGACGAGTGAMATTPAAGSAELGIPAVRPSDETTPIPLQMAPRRRGKPPRHFADLTAEQRAASVAELGEKPFRAKQLAAHYFTHFTSDPAEMTDLPKATRDELATTMFPPLIRPTRRMEADGGTTVKTLWHLFDDAKVESVLMRYPHRTTLCVSSQAGCGMACPFCATGQLGLTRNLSTAEILEQVRAAFRALDRGEIPGGPARLNNLVFMGMGEPLANPRAVIETVKALVAPQPEGFGMSARNITVSTVGLVPAMRRLADLGIPVTLALSLHAPDDDLRSELVPINTRFSVDEAIDAARHYYEVTGRRVSIEYALIKDMNDQGWRADLLAEKLNARGKGWVHINPIPLNPTPGSIWTASERSVEDEFVARLRGHGIPTTIRDTRGSDIDGACGQLAAEEDDENANANANANA
AK018_01926834cdsA_2COG0575Phosphatidate cytidylyltransferaseATGTCACCCGTCGACGCGCCGCGCAAGCCGTCCCGCGCCGGCCGCAACCTGCCGGCGGCGGTGGCGGTCGGGGTGGGGCTGCTCCTCCTCGTCGCCGCGTCCCTGTGGTTCCGTCCCGAGCCGTTCGTCGCCCTCGTCGTCGTCGCGCAGACCGCGGCGCTGTGGGAGCTCCGGGCGGCGTTCGCCCGCCGGGACATCCAGGTCCCGTTCACGCCGCTGGCCGTCGGCGGCGTCGGCATGGCCGTGTCCGCCTACCTGGCGGGTCCCGAGGCGCTGCTGGTGGCCTACGTGCTGACCGTCGGGGCCGTCGTCGTGTGGCGCGTCCTGGACGGGTCGGGGCCGCGGGCGCTGCGCGACGCCGCGGCCGCGGTCTTCGCGGCGACGTACCTGCCGTTCCTGGCGGGTTTCGTCCTGCTGATCCTGGACCAGCCCGACGGCGAGTGGCGGGTCGTGCTCTTCATCCTGCTCGGCGTCGCCAACGACGTCGGGGGCTACGTCGCGGGCGTGGTGTTCGGGCGGCACCCGTTGGCCCGGTCGATCAGCCCCAAGAAGAGCTGGGAGGGGCTGGGGGGCTCGGTGCTGCTGGCGGTGGCCGTCGGCGTGTCGGGTGCCGTGTGGGTGCTGGACGTGTCCTGGGTGTGGGGGGTGGCGCTCGGCTGCCTGGTCGCCCTGACGGCGACGGCCGGCGACCTGGCCGAGTCGCTCATCAAGCGCGACCTGGAGCTCAAGGACATGGGCTCGCTCCTGCCGGGGCACGGCGGTGTCCTGGACCGCCTCGACTCCCTGGTGATCACCGTCCCGTTCGTCTACCTCGTGCTGGCCGCGACCGTCTGAMSPVDAPRKPSRAGRNLPAAVAVGVGLLLLVAASLWFRPEPFVALVVVAQTAALWELRAAFARRDIQVPFTPLAVGGVGMAVSAYLAGPEALLVAYVLTVGAVVVWRVLDGSGPRALRDAAAAVFAATYLPFLAGFVLLILDQPDGEWRVVLFILLGVANDVGGYVAGVVFGRHPLARSISPKKSWEGLGGSVLLAVAVGVSGAVWVLDVSWVWGVALGCLVALTATAGDLAESLIKRDLELKDMGSLLPGHGGVLDRLDSLVITVPFVYLVLAATVPGPT0007685_4019DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981NANA
AK018_01927558frr_2COG0233Ribosome-recycling factorGTGATCGACGACACCCTCCTCGAGGCCGAGGAGAAGATGGACACGGCGATCGAGGTCGCCAAGGAGCAGTTCGGCGGGATCCGCACCGGCCGCGCCAACGCCGGCATGTTCTCCTCCCTCGAGGTGGACTACTACGGCGCGCCGACGCCGCTGCAGCAGCTCGCCTCGTTCAACATCCCGGACGGGCGCACGGTCCTCATCACGCCGTTCGACAAGAGCTCGATGGCGGCCGTGGAGAAGACGCTGCGGGAGTCGGACCTCGGGGTGAACCCGTCCAACGACGGCAACCAGATCCGCGTCATCATGCCGACCCTGACCGAGGAGCGGCGGCGCGACTACGTCAAGCTCGCCAAGACCAAGGCGGAGGACGCCCGCATCTCCGTGCGCGGCGTGCGCCGCAAGGCCAAGGAGCAGCTCGACAAGCTGGTCAAGGACGGCGAGGTCGGCGAGGACGAGGGTGCGCGCGCGGAGAAGGAGCTGGAGGCCCTGACCAAGAAGCACGTGGACCTGGTCGACCAGCTGCTCGCCGGCAAGGAGAGCGAGCTGCTCGAGGTCTGAMIDDTLLEAEEKMDTAIEVAKEQFGGIRTGRANAGMFSSLEVDYYGAPTPLQQLASFNIPDGRTVLITPFDKSSMAAVEKTLRESDLGVNPSNDGNQIRVIMPTLTEERRRDYVKLAKTKAEDARISVRGVRRKAKEQLDKLVKDGEVGEDEGARAEKELEALTKKHVDLVDQLLAGKESELLEVNANANANANA
AK018_01928825pyrH_2COG0528Uridylate kinaseATGACGGACGGTGGCAAGACGGATTCCTTCCCGGCGGACGCGGTCGCGACCGGTGGCGCGGCGGCGCGGCCCGAGCCGGCGCCGGCGGGTGCCGGCCAGCTCCCGGCGAAGGACGCCGGGACCCGGCGGGTGCTGCTGAAGCTGTCCGGCGAGACGTTCGGCGGTGGCAGCGTGGGTCTCGCGACGGACGTGGTACGGCGCGTGGCCCAGGAGATCGGCGCCGCCGTGCGGCAGGGTGTCCAGGTCGCCATCGTGGTCGGCGGCGGCAACTTCTTCCGCGGGGCCGAGCTCTCACGGGCCGGTCTGGACCGTGCCCGCGCCGACTACATGGGCATGCTCGGCACGGTCATGAACTGCCTGGCCCTGCAGGACTTCCTGGAGCAGGACGGGGTCAAGACCCGCGTCCAGACGGCGATCACGATGGGCCAGGTCGCCGAGCCGTACATCCCGCTGCGCGCGATCCGGCACCTGGAGAAGGGCCGCGTGGTGATCTTCGGCGCCGGTGCGGGCATGCCGTACTTCTCCACGGACACCGTCTCGGTCCAGCGTGCGCTGGAGACCCACTGCGACGAGGTGCTCATGGGCAAGAACGGCGTGGACGCGGTCTACACCGCCGACCCCCGCAAGGACCCGGACGCGCAGCGCCTCGAGCACGTGACCTACACCGACGCGCTGGTGCGCGACCTGAACGTCATGGACGCCACGGCGCTGTCCCTGTGCCGCGACAACGACGTGCGCATGCGCGTCTTCGGGCTCGAGCGGACCGGTAACGTGACCCGTGCACTGCTCGGCGAGAAGATCGGTACCGCGGTCACCACCCGCTGAMTDGGKTDSFPADAVATGGAAARPEPAPAGAGQLPAKDAGTRRVLLKLSGETFGGGSVGLATDVVRRVAQEIGAAVRQGVQVAIVVGGGNFFRGAELSRAGLDRARADYMGMLGTVMNCLALQDFLEQDGVKTRVQTAITMGQVAEPYIPLRAIRHLEKGRVVIFGAGAGMPYFSTDTVSVQRALETHCDEVLMGKNGVDAVYTADPRKDPDAQRLEHVTYTDALVRDLNVMDATALSLCRDNDVRMRVFGLERTGNVTRALLGEKIGTAVTTRPGPT0021205_263DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021205-pyrH-K09903NANA
AK018_01929840tsf_2COG0264Elongation factor TsATGGCGAACTACACCGCCGCTGACATCAAGGCGCTGCGCGAGCGCACCGGCGCCGGCATGCTCGACGTCAAGAAGGCGCTCGACGAGGCCGAGGGCAACACCGACCAGGCCATCGAGATCATCCGCAAGAAGGGCCTGGCCAAGGCGGCCAAGCGCGAGGGCAACACGGCCTCCGAGGGTCTCGTCGCGGTGAAGATCGAGGACTCGGCCGCCGGGCAGGTCGCCACGATGGTCGAGCTGAACGCCGAGACGGACTTCGTCGTCAAGAACGAGAACTTCCTCGCCCTGGCCGAGTCGGTCCTGGAGTCCGCCGCGGCCGCCGGTGCCACCGACGCCGAGTCGGCGCTGGCCGCCCCCTCCGGTGACGCCACCGTCGCCGACACCATCGCGGCCCAGGGCGCCACGATGGGCGAGAAGGTCGTGCTGCGCCGTGTGGTGCGCGTCGAGGGTCCGAAGGTCACGGCGTACCTGCACAAGACCGCCAAGGACCTGCCGCCGTCGATCGGCGTCCTGGTCGTCACGGACGAGACGGCCGAGCCGGTCGCCAAGGACGTCGCCCAGCACGTCGCGGCCCTGGCCCCGCAGTACCTCACGCGCGAGGACGTCCCCGCCGACGTCGTCGACAAGGAGCGCGAGATCGCGCGCGAGCGTTCCATCGCCGAGGGCAAGCCGGAGGCGGCGCTGCCCAAGATCGTCGAGGGTCGCCTCAACGGCTTCTTCAAGGAGGCCGTCCTGGTGGACCAGCCGCTGGCGAAGGACACCAAGACGACCGTCGGCAAGCACGTCGCCGCGACCGGTGGCTCGCTCATCGGTTTCGAGCGTTTCCGCGTCGGCAACTGAMANYTAADIKALRERTGAGMLDVKKALDEAEGNTDQAIEIIRKKGLAKAAKREGNTASEGLVAVKIEDSAAGQVATMVELNAETDFVVKNENFLALAESVLESAAAAGATDAESALAAPSGDATVADTIAAQGATMGEKVVLRRVVRVEGPKVTAYLHKTAKDLPPSIGVLVVTDETAEPVAKDVAQHVAALAPQYLTREDVPADVVDKEREIARERSIAEGKPEAALPKIVEGRLNGFFKEAVLVDQPLAKDTKTTVGKHVAATGGSLIGFERFRVGNNANANANANA
AK018_01930885rpsB_2COG005230S ribosomal protein S2ATGGCCGTCGTGACCATGCGCCAGCTCCTCGAGAGCGGTGTCCACTTCGGACACCAGACCCGCCGTTGGAACCCGAAGATGAAGCGGTTCATCTTCACGGAGCGCAACGGCATCTACATCGTCGACCTCCAGCAGTCGCTGTCCTACATCGACCGCGCCTACGAGTTCGTCAGCCAGACCGTCGCCCACGGTGGCACGATCCTGTTCGTCGGCACCAAGAAGCAGGCCCAGGAGCCCGTCGCCGAGCAGGCCTCGCGCGTCGGCATGCCCTACGTCAACCACCGCTGGCTGGGCGGCATGCTCACCAACTTCACCACGGTGCACAAGCGTCTCCAGCGCCTCAAGGAACTCGAGGAGATCGACTTCGACGACGTCGCCGGCTCGGGTCTGACCAAGAAGGAGCTGCTCGTCCTGCGTCGCGAGAAGGACAAGCTCTCGCGCACCCTGGGTGGCATCCGGGACATGGCTAAGACCCCGTCCGCGGTGTGGATCGTCGACACCAACAAGGAGCACCTCGCCGTCGACGAGGCCCGCAAGCTCGGGATCCCCGTCGTGGCGATCCTGGACACCAACTGCGACCCGGACCTCGTGGACTACGCGATCCCGGGCAACGACGACGCGATCCGGTCCGTCACGCTCCTCACCCGCGTGATCGCCGACGCCGTCGCCGAGGGCCTCATGCAGCGCGCCTCCGGCAAGAAGGGCACCTCGGCCGAGGCCGAGGCCGAGCCGCTGGCCGAGTGGGAGCGCGAGCTGCTGGCCGGTGCCGAGGGCGAGAAGGTCGAGGCCGACGAGGCCGCGGCCGCCCAGGCGGCCGACGCCGCGCAGCCGACCGCCCCGGCCGAGGACGCCGCCGCCGAGCAGCCCGCCGAGAAGTCCGAGTGAMAVVTMRQLLESGVHFGHQTRRWNPKMKRFIFTERNGIYIVDLQQSLSYIDRAYEFVSQTVAHGGTILFVGTKKQAQEPVAEQASRVGMPYVNHRWLGGMLTNFTTVHKRLQRLKELEEIDFDDVAGSGLTKKELLVLRREKDKLSRTLGGIRDMAKTPSAVWIVDTNKEHLAVDEARKLGIPVVAILDTNCDPDLVDYAIPGNDDAIRSVTLLTRVIADAVAEGLMQRASGKKGTSAEAEAEPLAEWERELLAGAEGEKVEADEAAAAQAADAAQPTAPAEDAAAEQPAEKSENANANANANA
AK018_01931534hypothetical proteinGTGGCGGCCGCTGTCCTCGCGCTGCTGACCCTGTCCCCGCCGACCACGGTCCTGGCTGCCGGCACCGACGCCGGTGCCGACTCCGGTGCCGGCGTCGCGACCGGCCCGACGTCGGCGGCCCGTCCCGGATGGGCGGCACCGGTCCCGGGCGCCCTCGTCGCGACCTTCGACCCGCCCGCACGACGGTGGCTGCCCGGCCACCGCGGAGTCGACCTGGCCGTCTCGGCCAGCGCCGTCGTCGCAGCGCCCGCGTCGGGCACGATCACCTTCGCCGGCCCCGTGGGCGGGCGACCGGTCGTGGTGGTCGACCACGGCGCGCTGCGGTCCACGCTCGAGCCCGTGCTCCCCTCGGCGCCGGTCGGCTCGACGGTGTCGCGCGGCGACGTCGTCGGGCACGTCGACGACGACGCGACGGTGTCCCACTGCGCCCCCGAGCACTGCCTGCACTGGGGTGTGCGGCGCGGGGAGGCCTACCTCGACCCGATGGCGCTGCTCGGCGGAGCACCGCCGATCGTCCTGCTGCCGGTGCCCTGAMAAAVLALLTLSPPTTVLAAGTDAGADSGAGVATGPTSAARPGWAAPVPGALVATFDPPARRWLPGHRGVDLAVSASAVVAAPASGTITFAGPVGGRPVVVVDHGALRSTLEPVLPSAPVGSTVSRGDVVGHVDDDATVSHCAPEHCLHWGVRRGEAYLDPMALLGGAPPIVLLPVPNANANANANA
AK018_01932945xerC_3COG0582Tyrosine recombinase XerCATGACGGCATCGGACGTCCCGCCGCTGCCCGCCGCGCTCGCCGACGCGGTGGACGGTTTCTCGCAGCACCTGGCTGCGCGGCGGGGGCACTCGGCCCACACCCGGCGTGCCTACCGTGCCGATGTCACGGGGATGCTCCGGTACGCCGTGCGGCACGGTGCCGTCACGCTCGACGACGTCACCCTGACGGTGCTGCGCGGCTGGCTGGGGGTGCAGGCCGACCGGGGGCTGGCACGATCCACGCTCGCACGGCGCAGCGCCGCGGCACGGGCGTTCCTGAGGTGGGCGCACCGCGAGGGCCTGCTGGGCACGGACCCCTCGGCACGGCTGGCCAGTCCGCGGGTCCCGCGCAGCCTGCCCACGGTCCTGTCCGCGGATGCCACGGCCGTGCTGCTGGACACCGCTCGCGGCGCCGTCGACGAGGCCGACCCGGAGCGGCGCCCGGGGGCGCTGCGGGCCTGGGCGGCCGCCGAGCTGCTGTACGGGTCAGGGGTCCGCGTCGGTGAGCTGGTCGCCTGCGACGTGCCGGCCGTCGACCTCGACGAGCGCTGGGTACGGGTGCTGGGCAAGGGCGGCAAGGAACGGGTGGTGCCCTTCGGCCTCCCCGCGGCGCGGGCCGTCCGGCGCTGGCTGGACGAGGGGCGCCCACGGCTCGTGCGCGCCGACTCGCCCGGCGCGCTGCTGCTCGGTGATCGGGGAGGTCGCTGGGGGCAGCGCCAGGCCCGGGAGACGGTGCACCGGTTGGCCGCCGCGGCCGGCGTGGACGACGTGGCCCCGCACGCCCTGCGGCACTCGGCGGCCACGCACCTGCTCGCCGGCGGGTCCGACCTGCGCACGGTGCAGGAGGTGCTGGGCCACTCCGACCTGGGGACCACCCAGCGGTACACCCACGTGGACGCCGAGCGGCTGCGCAGCGTGTTCGAGCAGGCGTTCCCGCGCGCCTGAMTASDVPPLPAALADAVDGFSQHLAARRGHSAHTRRAYRADVTGMLRYAVRHGAVTLDDVTLTVLRGWLGVQADRGLARSTLARRSAAARAFLRWAHREGLLGTDPSARLASPRVPRSLPTVLSADATAVLLDTARGAVDEADPERRPGALRAWAAAELLYGSGVRVGELVACDVPAVDLDERWVRVLGKGGKERVVPFGLPAARAVRRWLDEGRPRLVRADSPGALLLGDRGGRWGQRQARETVHRLAAAAGVDDVAPHALRHSAATHLLAGGSDLRTVQEVLGHSDLGTTQRYTHVDAERLRSVFEQAFPRAPGPT0021995_1515DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021995-xerC-K03733NANA
AK018_019331296hypothetical proteinGTGGATGAGCCCCTGTTCGACCTGCCGACGGGCCGGCGCGCCGCCGTCGACTTCGACGCCACCGATCCCGTGCTCGCCGCGGCCGCCTGGAGCCGCCTCGCGGAACCGGGCGACGTCGTCGCCGGCGCTCTCGTGCAGCATCTCGGCGCGACGGAGGCACTCACCTGGCTGCTGGAGGCGGTGGCCGAACCGGCACGCGCCCTGCGCAGCGGTCCGGCGGAGCTGGTCCCGCCGAGGGGGACGAACGTGGCGTGCGGCACCGCCGGCGGACCTGCTGACCCTGCGGACCGCGACAGCGGCACGGGGGCGCTGCGCCGGCTGCGGGACGCCGTCGGGCGATGGGCGCCGCGGCTCGAGACGCTCGACCCGCGTCGCGAGCTGCGCGTCCTGCACCGCCGCGGCGGCGTGCTCCTGACGCCCGCCGATCCCGGGTGGCCGCCGCGGCTCGCGGACCTGGGGGCCGCCGCCCCGTTCGCCCTGTGGGTCCGCGGACGCCCGGACGTCGCGTCCTGGTCGTCGCGTGCGGTGTCCGTCGTCGGTGCGCGCGCCGCCACCGCCTACGGAGAACGGGTCACCGAGGACCTGGCCGCGGGACTCGCCGACGTCGGGTTCACGGTCGTCTCGGGCGGTGCCTACGGCATCGACGCGGCCGCGCACCGCGGGGCGCTCGCGAGCGGCGGGACCACGGCGGCGGTCCTGGCCGGCGGGGTGGACCGCTACTACCCGCAGGGCAACGACGGGCTGCTGCGACGGACGGTCGAGGCCGGCGGGGCCGTCGTCGCGGAGGTGCCGCCGGGCTCCGCGCCGTTCCGTCAGCGTTTCCTCGCCCGCAACCGGGTCATCGCCGCCCTGACGGCGGCCACGGTCGTGGTCGAGGCGGCGCAGCGGTCCGGTGCGCTGTCCACCGCGCGGCGGGCGTCGGAGCTGCTGCGGCCGGTCGGCGCCGTGCCCGGTCCCGTGACGTCGATGACCTCCGCCGGGTGCCACGCCCTGGTCCGCGACGGCGTCGCGGTCTGCGTGACCGGCGTCGACGACGTGGTCGAGCTCGCCGGCGCGGCCGGGGAAGGTGTCACGGACGTCGGCGCCGACGACCGGACCAGCCCGGGCCGGCCGGAGCCCGGCCCGCAGGAGTGCCAGGTCCTCGACGCGCTGCCGGTCCGGTCGGCGGCCACCGTGGACTCGCTCGCACGGACCGCGGGTCTGCCGCCGCGGCGGGTGGTGGCCGCGCTCGGCGCGCTCGAACGGTCCGGCGTCGCGGCCCGGGAAGGCGGGCGATGGCGTCGCCGTGCCCGCTGAMDEPLFDLPTGRRAAVDFDATDPVLAAAAWSRLAEPGDVVAGALVQHLGATEALTWLLEAVAEPARALRSGPAELVPPRGTNVACGTAGGPADPADRDSGTGALRRLRDAVGRWAPRLETLDPRRELRVLHRRGGVLLTPADPGWPPRLADLGAAAPFALWVRGRPDVASWSSRAVSVVGARAATAYGERVTEDLAAGLADVGFTVVSGGAYGIDAAAHRGALASGGTTAAVLAGGVDRYYPQGNDGLLRRTVEAGGAVVAEVPPGSAPFRQRFLARNRVIAALTAATVVVEAAQRSGALSTARRASELLRPVGAVPGPVTSMTSAGCHALVRDGVAVCVTGVDDVVELAGAAGEGVTDVGADDRTSPGRPEPGPQECQVLDALPVRSAATVDSLARTAGLPPRRVVAALGALERSGVAAREGGRWRRRARNANANANANA
AK018_019341539comM_2COG0606Competence protein ComMATGAGTCTCGGCACCACCGCCGCCGTGGCGCTGCACGGCATGGAGGGGCACGTGATCCAGGTCCAGGCCCAGCTGGCCGCCTCCGTCCCAGGATTCACCCTGGTCGGCCTGCCCGACGCCGCGCTGGCCGAGTCGCGCGACCGCGTGCGCGCCGCCGTGCTGTCGACGGGCATCGAGTGGCCGCACCGCAAGATCACCGTCAACCTGTCGCCCGCGTCGCTGCGCAAGTCGGGCTCGGCGTTCGACCTCGCCGTCGCCGTGGCGGTGCTCGCCGGGCACCGCGTGCTGCGCGCCTCCGGGCTCGAGGAGGTCGTCCACGTCGCCGAGCTCGGGCTCGACGGCCGGCTCCAGCCGGTGCGGGGCGTCCTGCCGGCCGTCGCCGCCGCGGTACGTGCCGGCTACCGCGACGTCGTGGTGGCGGCGGGTGACGCGCAGGAGGCGGCGCTCGTGCCCGGTGCCCGGGTGCACGGCGCGGTCGACCTCGGCGACGTCGTCCGCCGGCACGGCGGTGCGCTGCGCACCGAACAGCGCTCTACGCCCGTGCCGCCGGTGCGCACGGGTGGCGGCCGGTCCCCGGCGGGGGACCTGGTCGACGTGGTCGGGCAGAGCGAGGCGCGCCTGGCCCTCGAGGTGGCGGCCGCCGGGGCGCACCACCTGCTCATGCTCGGGCCGCCGGGCGCGGGCAAGACCATGCTCGCCGCGCGCCTGCCCGGCATCCTGCCCGACCTGACCGAGCCCGAGGCGGTCGAGGTGACGGCCGTGCACTCGGTCGCCGGCACCTTCGACCCCGGTGGCGGGCTCCTGCGCCGACCGCCCTTCGAGGACCCGCACCACAGCGCCTCGCCGGCGGCGATCGTCGGCGGCGGGACCGGACTCGCGCGCCCCGGCGCGGTGTCGCGGGCGCACCGCGGCGTGCTGTTCCTCGATGAGGCACCCGAGTTCGCGCCCCGCGTGCTGCAGACGCTGCGCCAGCCGATCGAGGCCGGCGAGCTCGTGCTGCACCGCAGCGGCGGCGCCACACGGTACCCCGCGCGGTTCCAGCTCGTGCTGGCGGCGAACCCGTGCCCGTGCGGCATGGCCACGACGGGTGCCGGCGCGGACTGCAGCTGCACGCCCATGGCGCGGCGCCGCTACCTCGCGCGGCTGTCCGGCCCGCTGCTGGACCGCGTCGACCTGCAGGTGCACCTGGCGTCCCTGAGCCGCGCCGAACGTGCGCTCGGCGCGAGCGGGGAGTCGAGCGCCGACGTCGCGGCGCGGGTCCACGGCGCTCGCGGGCGAGCCCGCGAACGCCTGGCGGGTACGCCCTGGCGCACCAACGCCGAGCTGCCCGGCCCGTGGCTGCGCGAGCACCTGCGGGCCGAACGCGCCGTGCTGGCCGGGGTCGAGCGCCAGCTCGACGCGGGTGAGCTCTCGATGCGCGGCGCCGACCGGGTCCTGCGGATCGCGTGCACGCTCGCCGACCTGGACGGTCGTGGCGTCCCGGACGCCGACGACGTCGACGCCGCCCGGCTCTTCCGGACGGGGGACCGCCGTGGATGAMSLGTTAAVALHGMEGHVIQVQAQLAASVPGFTLVGLPDAALAESRDRVRAAVLSTGIEWPHRKITVNLSPASLRKSGSAFDLAVAVAVLAGHRVLRASGLEEVVHVAELGLDGRLQPVRGVLPAVAAAVRAGYRDVVVAAGDAQEAALVPGARVHGAVDLGDVVRRHGGALRTEQRSTPVPPVRTGGGRSPAGDLVDVVGQSEARLALEVAAAGAHHLLMLGPPGAGKTMLAARLPGILPDLTEPEAVEVTAVHSVAGTFDPGGGLLRRPPFEDPHHSASPAAIVGGGTGLARPGAVSRAHRGVLFLDEAPEFAPRVLQTLRQPIEAGELVLHRSGGATRYPARFQLVLAANPCPCGMATTGAGADCSCTPMARRRYLARLSGPLLDRVDLQVHLASLSRAERALGASGESSADVAARVHGARGRARERLAGTPWRTNAELPGPWLREHLRAERAVLAGVERQLDAGELSMRGADRVLRIACTLADLDGRGVPDADDVDAARLFRTGDRRGNANANANANA
AK018_01935357hypothetical proteinGTGCGAGCGAAGGACGCCGTCGGGCGACACGGGGAAGAGGTGGCCGCACGCCACCTGACCGAGCAGGGCTACGAGCTGCTGGACCGCAACTGGCGGGGCCGCGCCGGGGAGCTCGACCTGGTGGCCCGGGACGGCGGCACGCTCGTCGTGGTCGAGGTCAAGACCAGGCGCGGCACCGCCTTCGGGCATCCCGCCGAGGCGGTCACCCCGGCCAAGCTCGCGCGCATCCGGCGGCTGACGGCCCAGTGGCTCCACGAGCACCCCGTGGGTGCCCGGCAGATCCGGGTGGACGTCGTCGCGATCGTGCTGCCACGTCGCGGTGCCGCCCAGGTCGAGCACCTCAAGGCGGTGCTATGAMRAKDAVGRHGEEVAARHLTEQGYELLDRNWRGRAGELDLVARDGGTLVVVEVKTRRGTAFGHPAEAVTPAKLARIRRLTAQWLHEHPVGARQIRVDVVAIVLPRRGAAQVEHLKAVLNANANANANA
AK018_01936300putative proteinGTGAGCGCAGAGGACCTGGAGAACTACGAGAACGAGGCCGAGCTCGCCCTCTACCGCGAGTACCGGGACGTGGTGGGTCTCTTCTCCTACGTGGTGGAGACCGAGCGGCGGTTCTACCTGGCCAACAGCGTGGACCTGCAGGTGCGGTCGGCCGCGGGCGAGGTGTACTTCGAGCTGACGCTCGCCGACGCCTGGGTGTGGGACGTCTACCGGTCGGCGCGGTTCGTCAAGTCGGTGCGCGTCGTGACCTTCAAGGACGTCAACGTGGAGGAGCTCGCGAAGGCGGACATCGCGCTGTAGMSAEDLENYENEAELALYREYRDVVGLFSYVVETERRFYLANSVDLQVRSAAGEVYFELTLADAWVWDVYRSARFVKSVRVVTFKDVNVEELAKADIALNANANANANA
AK018_01937837rnhB_2Ribonuclease HIIGTGACCGCCCGCAGCACCCGACGCGGCACCCGACGCAGCCCGACGCTGCGCCAGGAACGCGGGCTGCTGGGCGAGGGCGCGCTCCTGGTCGGCGGCATGGACGAGGTCGGCCGCGGCGCGCTGGCCGGCCCGGTGAGCGTCGGCCTGGTCGTGGTGGACGCCGCGACGCCCACCGCCCCGCGTGGCCTGACCGACTCCAAGCTGCTCTCGCCGTCGGCCCGCGAGGTGCTCGTGGAACCCGTGCGCCGGTGGGCGGTGGCGTGGGCCGTGGGGCACGCCGGCCCCGCCGAGATCGACGCGCACGGCATCGTCGCCGCGCTGCGCCTGGCCGGCCGCCGCGCCCTGGCCCAGGTGCGACGCAGCGTCGGCGACGTCGACGTGGTCCTGCTCGACGGCTCGCACGACTGGCTGAGCCGCCCCCACGCCGACCTGTTCGAAGCGGCGGGGGAGGACCCGGGCGGTGCCCTCGACGCGCCCGAGCCCGGAGTGCGCACGCTCGTCAAGGCCGACCTGCAGTGCTCGTCGGTGGCTGCCGCGAGCGTGCTGGCGAAGGTGGAACGGGACGGACTGCTGGCGCGGCTCGCCGCGCAGTACCCCCACTTCGCGTGGGAGCAGAACAAGGGCTACGCGGCGCCGGCGCACCTCGACGGACTGCGGCGCCGTGGTCCCACCCCCCAGCACCGCCGGTCCTGGAACCTGCGGGTCCTCGAGGACGAGCCCGCCCACGACGGCGCCGCAGCGGCGCCGGTCGCCGGGGACGGCGTCCCGGCGGACGTCGTGACGCTCGAGACCGCCGTCCGCGCGCCGGGAGCGGGCGCGGACGCCCGGGTGGGATGAMTARSTRRGTRRSPTLRQERGLLGEGALLVGGMDEVGRGALAGPVSVGLVVVDAATPTAPRGLTDSKLLSPSAREVLVEPVRRWAVAWAVGHAGPAEIDAHGIVAALRLAGRRALAQVRRSVGDVDVVLLDGSHDWLSRPHADLFEAAGEDPGGALDAPEPGVRTLVKADLQCSSVAAASVLAKVERDGLLARLAAQYPHFAWEQNKGYAAPAHLDGLRRRGPTPQHRRSWNLRVLEDEPAHDGAAAAPVAGDGVPADVVTLETAVRAPGAGADARVGNANANANANA
AK018_01938819hypothetical proteinGTGGCAGACTCCGATCACGTGACTCCCGTGCAGCGTGCTTCCGACCCCGCCGACGACGACCGGTCGGCCGGTCGGCCCGCGGGCGAGCCGAGCGCGGAGCGGGCGGGCACCCCGCCCGCGCACGCCGCCGAACCCCCGAGGCAGCGCAGCCGGGGGCTGAGCCTGCTGCGCGAGTCCGCGATCATCGTGATCAGCGCACTGGTGCTGTCGTGGCTGATCAAGACGTTCCTCGTCCAGGCCTTCTACATCCCGTCGGCCTCGATGGAGGACACGCTCCAGATCGGCGACCGCGTCATGGTGTCGCGGCTCGTGCCGGACGTGCTCGACGTCAACCGGGGCGACGTCGTGGTCTTCGTCGACCCCGGCGGCTGGTTGCCGCCGACCGAGACCCCGGACGCCGGGCCCGTCGGCAACGCGGTCCGCGAGGCCGCGACGTTCATCGGCCTGCTGCCGCAGGACAGCGGCGAGCACCTCATCAAGCGGGTCGTCGGGACGCCCGGCGACACCGTGGAGTGCTGCGACGATCAGGGCCGGGTGAGCGTGAACGGCGTGCCCGTCGACGAGGACCCGTACCTCGCGGCGGGCTCGGTGCCGAGCCAGACCGAGTTCTCCACGCAGGTCCCCGACGACATGCTGTTCGTCATGGGCGACAACCGGCAGAACTCCCAGGACTCGCGGTACAACACCGGCAAACCCGGTGGCGGGTTCGTGCCCCTGGACAACGTGGTGGGCAACGCGTTCGTCATCGTGTGGCCGTTCGAGGACGCGCGGCTGCTGCGCAACCCGTCCGACGTCTTCGCGCAGGTGCCGGCACCGTGAMADSDHVTPVQRASDPADDDRSAGRPAGEPSAERAGTPPAHAAEPPRQRSRGLSLLRESAIIVISALVLSWLIKTFLVQAFYIPSASMEDTLQIGDRVMVSRLVPDVLDVNRGDVVVFVDPGGWLPPTETPDAGPVGNAVREAATFIGLLPQDSGEHLIKRVVGTPGDTVECCDDQGRVSVNGVPVDEDPYLAAGSVPSQTEFSTQVPDDMLFVMGDNRQNSQDSRYNTGKPGGGFVPLDNVVGNAFVIVWPFEDARLLRNPSDVFAQVPAPPGPT0030468_59DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
AK018_01939357rplS_2COG033550S ribosomal protein L19ATGAAGACTCTCGACAACGTCGACGCGGCCTCGCTGCGCGACGACGTCCCGGACTTCCGTGCCGGCGACACCGTGAAGGTCAACGTCAAGGTCGTCGAGGGCAACCGCTCTCGCGTCCAGGCGTTCCAGGGTGTCGTCATCGCCCGCCGCGGCGGCGGCGTGGGCGCGACGTTCACCGTCCGCAAGATCAGCTTCGGCGTCGGCGTGGAGCGCACCTTCCCGGTGCACGCCCCCACGATCGACTCGATCGAGCTCGTCACCCGCGGTGACGTGCGCCGCGCGAAGCTGTACTACCTGCGTGCGCTGCGCGGCAAGAAGGCCAAGATCCGCGAGAAGCGCGAGACCCCGGCCAAGTGAMKTLDNVDAASLRDDVPDFRAGDTVKVNVKVVEGNRSRVQAFQGVVIARRGGGVGATFTVRKISFGVGVERTFPVHAPTIDSIELVTRGDVRRAKLYYLRALRGKKAKIREKRETPAKNANANANANA
AK018_01940834trmD_2COG0336tRNA (guanine-N(1)-)-methyltransferaseGTGCGTATCGACGTCGTCACGATCTTCCCCGACTACCTGGCCGCGCTCGACCTGTCGCTCGTCGGCAAGGCGCGCCGCGCCGGGCTGCTCGACCTGCGCGTGCACGACCTCCGCGACTGGACCACCGACCGGCACCGCACCGTCGACGACACGCCGTTCGGGGGCGGCGCCGGGATGGTGATGCGCCCGGACGTGTGGGGGCGGGCGCTGGACGACCTGCTGCCGGCGTCACCGGACCCGGCGGTCCGCCTGGTGGTGCCGACCCCGTCGGGGCGGGTGTTCACCCAGCGTGGCGCTGAGGAGCTGGCGGCGGCGGAGCACCTGGTGGTCGCCTGCGGACGCTACGAGGGGATCGACGCGCGCGTCGTCGAGCGGTACCGCGCCGAGGGGCACCCGGTCGACGAGCTCTCGATCGGGGACTACGTGCTCAACGGCGGCGAGGTCGCGGCGCTGGTGATGGTGGAGGCCGTGGGCAGGCTGCTGCCCGGCGTGGTCGGCAACCCGCAGTCACTGGTCGAGGAGTCGCACGGGGCGGCGGGCCTGCTCGAGTACCCCGTGTACACCAAGCCGCCGTCGTGGCAGGGGCTCGAGGTGCCCGACGTGCTGCTGTCCGGGCACCACGCCCGTATCGAGCGGTGGCGGCGGGACCGGGCGCTGGAGCGCACCGCACGCCGTCGTCCCGACCTGGTCGACGCGCTCGACGCGGAGGCGCTGGACGCCCGTGACCGCGAGGTGCTCGACCGGGCGCTGCACCCCGACCCGTCCGACGACGGGGTCCGTGGCGCGTCTCACCAGGGCGAGGGCGCGTCGAGCACCGGTGGTGTGGCAGAATAGMRIDVVTIFPDYLAALDLSLVGKARRAGLLDLRVHDLRDWTTDRHRTVDDTPFGGGAGMVMRPDVWGRALDDLLPASPDPAVRLVVPTPSGRVFTQRGAEELAAAEHLVVACGRYEGIDARVVERYRAEGHPVDELSIGDYVLNGGEVAALVMVEAVGRLLPGVVGNPQSLVEESHGAAGLLEYPVYTKPPSWQGLEVPDVLLSGHHARIERWRRDRALERTARRRPDLVDALDAEALDARDREVLDRALHPDPSDDGVRGASHQGEGASSTGGVAEPGPT0007595_16DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770NANA
AK018_01941537rimM_2COG0806Ribosome maturation factor RimMATGGAGCTGGTGGTGGCCCGCGTGGGTCGCGCGCACGGACTGCGGGGCGAGGTGGCTCTCGAGCTGCGCACCGACGTCCCCGAGGAGAGGCTCGCCACGGGCGCCGTGCTGGCCACGGACCCGGCCGCCGCGGGCCCGCTCACCGTGGAGAGCACGCGCGTGCACCAGCAGCGCTGGCTGGTGCGGTTCGCCGAGGTGACCGACCGCACGCAGGCCGAGGAGCTGCGCGGCGTCGAGCTCGTGGTGACGGCCGACGACTCGGTCGAGGAGGACGCCTGGTACCCCCACGAGCTGACCGGGCTGCGCGTCGAGCTCGCCGACGGCACGCCGGTCGGGGAGGTCGTGGGGCTGGAGCACCCGCCCGCGCACGACGTCCTGGTGGTCCGCGAGACCGGCGGTCAGCGCACCGTGGTGCCGTTCGTCCGCGCCATCGTGCCCACGGTGGACGTGGCCGGCGGCCGCGTGGTGCTGACCCCTCCGGGTGGGCTGCTCGCCCGGGACGCGGACGCCGTCGACGGCCCCGGGGGCGGTGCCTGAMELVVARVGRAHGLRGEVALELRTDVPEERLATGAVLATDPAAAGPLTVESTRVHQQRWLVRFAEVTDRTQAEELRGVELVVTADDSVEEDAWYPHELTGLRVELADGTPVGEVVGLEHPPAHDVLVVRETGGQRTVVPFVRAIVPTVDVAGGRVVLTPPGGLLARDADAVDGPGGGANANANANANA
AK018_01942240hypothetical proteinATGCTCGCGGACGCTCTGGAGCACCTCGTGCGCGGCATCGTGGACCACCCGGACGACGTCCGGGTGGACGCGCGGTCCCAGCGTCGTGGTGAGCTGCTCGAGGTCCGGGTCCACCCCGAGGACCTCGGGCGCGTCATCGGCCGCGGCGGCCGGACCGCCAAGGCGCTGCGCACGGTCGTGGGCGCCCTGGCGACCGACGGCCCCGTGCGCGTCGACGTCGTCGACGTCGACCGCCGCTGAMLADALEHLVRGIVDHPDDVRVDARSQRRGELLEVRVHPEDLGRVIGRGGRTAKALRTVVGALATDGPVRVDVVDVDRRNANANANANA
AK018_01943420rpsP_2COG022830S ribosomal protein S16GTGGCCGTCAAGATTCGTCTGAAGCGTCTCGGCAAGATCCGGGCCCCGTACTACCGCGTCGTCGTGGCCGACTCGCGCACCAAGCGCGACGGTCGTGTCATCGAGGAGATCGGTCTGTACCACCCGACCGAGGAGCCCTCGTTCATCGAGATCCAGTCCGACCGCGCCCAGTACTGGCTCGGTGTCGGCGCCCAGCCGACCGAGCAGGTCGCCGCCCTGCTGAAGGTCACGGGCGACTGGCAGAAGTTCAAGGGTCTCGAGGGTGCCGAGGGCACCCTGAAGACCAAGCAGGCCGGTTCCGCGAACGCCTCCGAGGCGATCGAGGCCGTCAACGCCGAGGCCGAGAAGGTCAAGGCGAAGGCTGCGGAGTCCGCCTCGAAGAAGGCCGCCGAGTCCGACGAGGACGAGGCCGGGGCCTGAMAVKIRLKRLGKIRAPYYRVVVADSRTKRDGRVIEEIGLYHPTEEPSFIEIQSDRAQYWLGVGAQPTEQVAALLKVTGDWQKFKGLEGAEGTLKTKQAGSANASEAIEAVNAEAEKVKAKAAESASKKAAESDEDEAGANANANANANA
AK018_019441113COG1228putative proteinATGTCCGTGCCGCACGTACCCCTGCACGTCACCGGCCGCATCCTGCTCGACGGCGACCGGGAGGTCGGGGAGATGTGGGTGCGCGACGGGCGCCTCAGCCTCCTGCGCCCCACGCCGCAGGGCAGCCCGGCCACGGAGATCAGCGGCTGGGTGCTGCCCGGGTTGGTGGACGTGCACTGCCACGTCGGGCTCGACGCGGGCGGTGCCGTCGAGGAGGACACCGCGGTCAAGCAGGCGCTGGCGGACCGGGACTCCGGGGTGCTGCTCGTGCGGGACGCCGGTTCCCCGCTCGACACGTCGTGGATGGCGACGCGCACGGTGCTGCCGCGGCTGGTCCGTGCGGGCCGGCACGTCGCCCGCCCCAAGCGCTACCTGCGTCACTTCGGGCTCGAGCTCGACGACGTCGCGGACCTGCCGCGCGTCGTGCGCGAGCAGGCGCGCGCCGGCGACGGCTGGGTCAAGCTCGTCGGCGACTGGATCGACCGCGACCTGGGTGCGGACGGGGACCTGCGCCCGCTGTGGCCCCGGGACGTGCTCGTCGAGGCGGTCGAGGCGGCGCACGCCGAGGCGGCCAGGGTGACGGTGCACGCCTTCTCCGAGGAGGTGGTCGAGGACCTCCTCGCTGCCGGCGTGGACGGTATCGAGCACGGAACGGGCATCCCGGCCGAGCTGATGCCGGAGGTGGCCCAGCGGGGGATCCGGGTCACGCCCACCCTGCTGCAGGTGGGCCAGTTCGAGAACATCGCCGCGCAGGCCGACGGCAGGTACCCCGTCTACGCCGCGCGGATGCGGCGCATGCACGCGCGCCGGTACGAACAGGTGCGGGCCATGTACGACGCCGGGATCCCGCTGCTGGTCGGCACGGACGCCGGGGGGACCATCGACCACGGGCGGCTCGCGGACGAGTGCGCCGAGCTCGTCCGCGCCGGCATCCCGGACGCCGAGGTGGTCGCGATGGCGACCTGGCGCGCCCGCGCGTTCCTGGGGCACGGGGCGATGGTCGAGGGGGCGAGCGCGGACTTCGTGGTCTACCCCGACGATCCCCGGGAGGACGTGGAGGTGCTGCGGCACCCGAGCGCCGTGGTGCTGCGGGGACGCGTCGTCGCGCCCTGAMSVPHVPLHVTGRILLDGDREVGEMWVRDGRLSLLRPTPQGSPATEISGWVLPGLVDVHCHVGLDAGGAVEEDTAVKQALADRDSGVLLVRDAGSPLDTSWMATRTVLPRLVRAGRHVARPKRYLRHFGLELDDVADLPRVVREQARAGDGWVKLVGDWIDRDLGADGDLRPLWPRDVLVEAVEAAHAEAARVTVHAFSEEVVEDLLAAGVDGIEHGTGIPAELMPEVAQRGIRVTPTLLQVGQFENIAAQADGRYPVYAARMRRMHARRYEQVRAMYDAGIPLLVGTDAGGTIDHGRLADECAELVRAGIPDAEVVAMATWRARAFLGHGAMVEGASADFVVYPDDPREDVEVLRHPSAVVLRGRVVAPNANANANANA
AK018_019451629ffh_2COG0541Signal recognition particle proteinGTGTTCAACTCCCTGTCGGACCGGCTCACCTCGACGTTCAAGAACCTGCGCGGCCGGGGGCGCCTGTCCGAGGCGGACATCGACGCCACCGTGCGCGAGATCCGGCGCGCCCTGCTGGACGCCGACGTCGCCGTCCCCGTGGTGCGTCAGTTCACCGCTGCGGTGCGAGAGCGCGCCCTGGGGGCCGAGGTCTCCGGCGCGCTGAACCCGGCGCAGCAGGTCGTCAAGATCGTCAACGCCGAGCTCGTCGAGATCCTGGGCGGGCAGACCCGCTCGCTGCAGCTCGCCAAGACCCCGCCGACGGTGATCATGCTCGCCGGCCTGCAGGGCGCCGGCAAGACGACGCTGGCCGGCAAGCTGGCGCTCGCGCTCAAGGAGCAGGGGCACACCCCGCTGCTCGTCGCGGCGGACCTGCAGCGCCCCAACGCGGTCACCCAGCTCTCGGTCGTCGCCGAGCGGGCCGGCGTCCCGGTCTTCGCCCCCCACCCGGGCAACACGAGCGACGCCGATGCCGAGACGATCATCGGCGACCCGGTGGGCGTGTCCCGCGACGGCGTGGCCGAGGCGCGCGCCAAGCAGCACGACGTCGTCATCGTCGACACCGCGGGCCGGCTCGGCGTCGACCAGGTCCTCATGCAGCAGGCCGCCGACATCCGTGCGGCGATCACCCCCGACGAGGTCCTGTTCGTCATCGACGCGATGATCGGTCAGGACGCGGTCACCACGGCGAACGCGTTCGCCGAGGGCGTCGACTTCACCGGCGTGGTGCTGTCCAAGCTCGACGGCGACGCCCGCGGTGGCGCCGCGCTGTCGGTCGCGAAGGTGACCGGCAAGCCCATCATGTTCGCCTCGACCGGGGAGAAGCTCACCGAGTTCGAGGTCTTCCACCCGGACCGGATGGCCTCGCGCATCCTCGACATGGGTGACGTGCTCACCCTGATCGAGCAGGCCGAGAAGGCGTTCGACGCCGACGAGGCCGAGCGGATGGCGGCCAAGGTGGCCGGGGGCGAGGACTTCACCCTGAGCGACTTCCTGGTGCAGATGCAGCAGATGAAGAAGCTCGGCTCGATGAAGAAGATGCTCGGGATGATGCCGGGCATGGCGCAGATGCGCGACCAGCTCGAGAACTTCGACGAGCGCGAGGTCGACCGTGTCCAGGCGCTCATCCAGTCGATGACGCCCGCCGAGCGCGAGAACCCCAAGATCATCAACGGCTCGCGCCGTGCCCGCATCGCCCGGGGCGCCGGGCAGACGACGGCGGCGGTCAACGGGCTGCTGGACCGGTTCGGGCAGGCGCAGAAGATGATGCGGCAGATGGCCTCCGGCGGGGCGCCCGCGGGGCCCGGCGGCATGCCGGCCATGCCAGGGATGCCGGGCATGCCGGGGGGCGGCAAGAAGTCCCGCGGCAAGCAGCAGCCGAAGAAGAAGGTCAAGGGCAAGTCCGGCAACCCCGCCAAGCGTGCGCAGCAGGAGCGCGAGGCCATGCAACGCGCCCTGGGCGGCGGGCCGAGGAAGGCGGCGCCGAGCGGGTCCGCGTTCGGGGTCGGCGCCGGCAAGGAGTCCGACGTGGACCCGAAGGACCTCGAGCTGCCGGGTGATCTCGGCAAGCTCCTCGGCGGCGGTCGCTGAMFNSLSDRLTSTFKNLRGRGRLSEADIDATVREIRRALLDADVAVPVVRQFTAAVRERALGAEVSGALNPAQQVVKIVNAELVEILGGQTRSLQLAKTPPTVIMLAGLQGAGKTTLAGKLALALKEQGHTPLLVAADLQRPNAVTQLSVVAERAGVPVFAPHPGNTSDADAETIIGDPVGVSRDGVAEARAKQHDVVIVDTAGRLGVDQVLMQQAADIRAAITPDEVLFVIDAMIGQDAVTTANAFAEGVDFTGVVLSKLDGDARGGAALSVAKVTGKPIMFASTGEKLTEFEVFHPDRMASRILDMGDVLTLIEQAEKAFDADEAERMAAKVAGGEDFTLSDFLVQMQQMKKLGSMKKMLGMMPGMAQMRDQLENFDEREVDRVQALIQSMTPAERENPKIINGSRRARIARGAGQTTAAVNGLLDRFGQAQKMMRQMASGGAPAGPGGMPAMPGMPGMPGGGKKSRGKQQPKKKVKGKSGNPAKRAQQEREAMQRALGGGPRKAAPSGSAFGVGAGKESDVDPKDLELPGDLGKLLGGGRPGPT0025750_307DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025750-ffh-K03106NANA
AK018_019461875glnD_2COG2844Bifunctional uridylyltransferase/uridylyl-removing enzymeATGGCCGACCACCCGACCTCGGGCGTCGGCCCCGCGCAGCAGGCCCCGCACCCCGGTCCCGGGGTGCGGGGCCCTGTCGTGGGGCTGCGCGACGAGATGCTCGCCTCCGCCCGGCAGATGACCGGTCCCGGCCGGTCCGGCGTCGCACGGCGGGCCACCCTCCAGCAGCTCGTCACCGACCGGCTGGCGGCGCTCTACACCGAGGCCACCGCCGACGTCGACCCGTCCGGCCTGGCGCTGGCCGCCGTCGGCTCCCTGGGCCGCAACGACCTCGGGCCGCTGTCGGACCTCGACCTGGTGCTCGTGCACGACGGGCGCACCCACAAGGCGGACGAGCTCGCCCAGGTCGCCGAACGGCTCTGGTACCCGCTGTGGGACTCCGGGGTCGACATCGACCACGCCGTGCGCTCGCTGAACCAGACCCGCCAGCTCGCGATGCGCGACCTGCCGGCCGCCGTCGGGTGGCTGGACGTGCGGCCCGTGGCCGGCGACGCCGTCGTCGTGCACCGTGCCGCCTCCGGGATCCTCACCGACTGGCGCTCGGCGTCGCGGCGTCGGCTCCCGGAGCTGCTCACCAGCGTCCGCGAGCGGGCCGAGCGCTCCGGCGACCTGGCCTACCTCATCGAACCCGACCTGAAGGACGCGCGCGGCGGCATCCGCGACGCCGTGGTGCTGTCCGCGCTGGCGGCCACGTGGCTGACCGACCGGCCGCACGGCCGGGTCGACTCCGCCTACGCGCACCTGCTGGACGTGCGCGACACCCTGCAGGCCGTCACCGGCCGGCGCGCCACCCGGCTGCTGCTGGCCGACCTCGACGAGGTCGCCGCGGCGACGGGCTACGACGACCCCGACGAGCTGCTGGCCAGCCTGGCCGCCGCCGGGCGGGAGATCTCCTTCGCCCTCGACTCCACCGTGCGCCGTGCGCGCCAGGCGCTGCAGCGCCCCGCGGTCCGCCGCAAGCCCGTGCTCGTGCGCGGCCGGCGCCAGCCGCCCCGGCTGCGCTCCGTCGGCGACGGTCTCGTGGAGCACGACGGCGAGCTCGTCCTGGGCGTCAGCGCCTCGCCCCGCGAGGACCCGCTGCTGTCCCTGCGCGCCGCGGCGACGGCCGCCCGCACCGGGCTCGTCCTGTCCCCGGTGACCATGCAGTCCCTGGCGGAGTGCCCGCCGATCCCCGAGCCGTGGCCCGCCCCGGCGCGGGCGCACCTGCTGTCCCTGCTGAGCGCCGGGACCGCCCAGATCCACGTGTGGGAGGCGCTCGACCTGGCCGGCGCGGTGACCACGTGGATCCCCGAGTGGGCCGACGTGCGCAACAAGCCTCAGCGGGCCGCCGTGCACCGGCACACCGTCGACCGGCACCTGGTCGAGACGGCGGCGCTCGTGCCCACCGTGCGCAAGCGGCAGCTCGCCCGAGGGGTGGACCCGAGACTGCTGCCCACCGAGCTGCTGGCGGTCGCGGCGATCGTGCACGACCTCGGCAAGCGGCGTCGGGCCGAGAGCACGGACCACTCGGTCGAGGGGGCGCGGGTGGTGCCGCCGCTGCTGCGCCGCATGGGGTTCGACGACGGGTTCGTCGACGACGTCGAGCGGCTCGTGCGCCACCACCTCACGCTCGCGACGCTGGCCACCACGGCCGACCCGGACGACCCGGGCACCGTGGCCGCGCTCCTGGACGCGGTGGACCACCGTCCCGACCTGCTCGAGGTGCTGCGGGCGCTGACCGAGTGCGACGCGACCTCGCTCGGCCCGGCGGGCTGGACGAGCTGGCGGGCGAGCCTGGTCGACCTGCTCACCGACCGGGCGCGGGTGCTGCTGTCGTCCGCCCCCGTGGCGGGGGAGGCCGACGGGGAGTCGGGACCAACGGTGACCGGCCGGTAGMADHPTSGVGPAQQAPHPGPGVRGPVVGLRDEMLASARQMTGPGRSGVARRATLQQLVTDRLAALYTEATADVDPSGLALAAVGSLGRNDLGPLSDLDLVLVHDGRTHKADELAQVAERLWYPLWDSGVDIDHAVRSLNQTRQLAMRDLPAAVGWLDVRPVAGDAVVVHRAASGILTDWRSASRRRLPELLTSVRERAERSGDLAYLIEPDLKDARGGIRDAVVLSALAATWLTDRPHGRVDSAYAHLLDVRDTLQAVTGRRATRLLLADLDEVAAATGYDDPDELLASLAAAGREISFALDSTVRRARQALQRPAVRRKPVLVRGRRQPPRLRSVGDGLVEHDGELVLGVSASPREDPLLSLRAAATAARTGLVLSPVTMQSLAECPPIPEPWPAPARAHLLSLLSAGTAQIHVWEALDLAGAVTTWIPEWADVRNKPQRAAVHRHTVDRHLVETAALVPTVRKRQLARGVDPRLLPTELLAVAAIVHDLGKRRRAESTDHSVEGARVVPPLLRRMGFDDGFVDDVERLVRHHLTLATLATTADPDDPGTVAALLDAVDHRPDLLEVLRALTECDATSLGPAGWTSWRASLVDLLTDRARVLLSSAPVAGEADGESGPTVTGRPGPT0000660_2672DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONGLN-NITROGEN_REGULATORY_SYSTEM,PGPT0000660-glnD-K00990NANA
AK018_01947339glnB_2COG0347Nitrogen regulatory protein P-IIATGAAGCTCGTCACCGGGGTCATCCAGCCCCACCGTCTCGACGACGTGAAGTCCGCCCTGGAGGCCGCCGGCATCCGCGGGATGACGGTCTCGGAGGCCAGCGGCTACGGCCGGCAGAAGGGCCACACCGAGGTCTACCGCGGTGCGGAGTACACCGTCGACCTGGTGCCCAAGGTCCGCATCGAGGTCCTGGTCGGCGACGCCGACGCGCCGTCCGTGGTGGACGTCGTCGTCAACGCCGCCCAGACCGGCAAGATCGGTGACGGCAAGGTCTGGACGGTGCCGGTCGACGACGTCGCCCGGGTCCGCACCGGCGAGCACGGCGACGCCGCGCTCTGAMKLVTGVIQPHRLDDVKSALEAAGIRGMTVSEASGYGRQKGHTEVYRGAEYTVDLVPKVRIEVLVGDADAPSVVDVVVNAAQTGKIGDGKVWTVPVDDVARVRTGEHGDAALPGPT0000650_2390DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000650-glnB|glnY-K04751NANA
AK018_019481278amt_2Ammonia channelATGGAGCTGGATACCGGAGCAACCGCGTGGATGCTGACGTCAGCATCTCTCGTGCTCCTGATGACGCCAGGACTGGCGTTGTTCTACGGGGGCATGGTCCGCGGCAAGTCCGTGTTGAACATGATGATGATGTCGTTCGGCGCCATCGCCGTGACGGGTGTCATCTACGTCCTGTGGGGCTGGTCGATGTCCTACGGCGCCGACATCGGCGGGATCCTCGGGAACCCGTTCGACCAGTTCGCGCTGCAGGGAGCGATCTACGACGAGGCCGGTGAGTTCCTCATCGACGACTTCGGGGTCCCCGCCATCGTCGGTGTCGGCTTCCAGGCGACGTTCGCGATCATCACCGTGGCGCTCATCTCCGGTGCCATCGCCGACCGGGTCAAGTTCGGTACCTGGATGGTCTTCGTCGCCCTGTGGGTGACCTTCGCCTACTTCCCCATGGCCCACATGGTCTGGGGTGGCGGCCTGCTCTCCGGTGACGGTCCGTTCGTGATCGGCGACGCCGCCCCGATCGACTTCGCCGGTGGCACCGTGGTCCACATCAACGCCGGTGCGGCCGCCCTGGTGCTGGCCCTCGTCGTCGGCAAGCGCAAGGGCTTCGGCACCGAGCCGATGCGCCCCCACAACCTCACGCTGGTCATGCTCGGCGCCGCCCTGCTGTGGTTCGGCTGGTTCGGCTTCAACGGTGGCTCGGCCTTCACCGCGGACGGCTTCGCCGGCCTCGCCTGGGTCAACACCACCGCCGCGACCGCTGCCGCCGTCCTCGGCTGGCTCGTCGTGGAGAAGCTGCGTGACGGCTCGGCCACCTCGCTCGGTGCCGCCTCGGGCATCGTCGCCGGTCTGGTCGCGATCACCCCGGCCGCCGGCTCGGTCAGCCCGCTCGGTTCGCTCGCGATCGGCGTCATCGCCGGTGGCCTCTCCGCGTGGGCCGTGGGCCTGAAGTTCAAGCTGGGCTTCGACGACTCGCTCGACGTCGTCGGCATCCACCTGGTGGCCGGCCTGTGGGGCACGGTCTCGATCGGCCTCCTCGCCACCGAGACGGGTCTCCTCTACGGTGGCGGCATCAACCAGCTCGCCGTCCAGGCGATCATCGCCGTCGTCGCGATCGCCTTCGCCGCGATCGTCACCTACGTCCTGGCGATCATCCTCAAGGCGGTCATGGGCTGGCGAGTCTCCGAGGAGGTCGAGGTCAACGGCATCGACCTCGCCGTCCACGGTGAGTCCGCTTACGAAGGGCTCCAGTCGGGGTCCGTCATCAAGGAGGTCCGCGCATGAMELDTGATAWMLTSASLVLLMTPGLALFYGGMVRGKSVLNMMMMSFGAIAVTGVIYVLWGWSMSYGADIGGILGNPFDQFALQGAIYDEAGEFLIDDFGVPAIVGVGFQATFAIITVALISGAIADRVKFGTWMVFVALWVTFAYFPMAHMVWGGGLLSGDGPFVIGDAAPIDFAGGTVVHINAGAAALVLALVVGKRKGFGTEPMRPHNLTLVMLGAALLWFGWFGFNGGSAFTADGFAGLAWVNTTAATAAAVLGWLVVEKLRDGSATSLGAASGIVAGLVAITPAAGSVSPLGSLAIGVIAGGLSAWAVGLKFKLGFDDSLDVVGIHLVAGLWGTVSIGLLATETGLLYGGGINQLAVQAIIAVVAIAFAAIVTYVLAIILKAVMGWRVSEEVEVNGIDLAVHGESAYEGLQSGSVIKEVRAPGPT0000840_5608DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-AMMONIUM_ASSIMILATION|USAGEN-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320NANA
AK018_019491146ftsY_2COG0552Signal recognition particle receptor FtsYGTGACTGACTACCTCTGGCTCTGGATCGTTCTCGGCCTCGTGCTCCTCGTGGGCCTCGGCTCCGCCCTGGTGGTCCCGCGGCTGCGCGGGCGCCGTCCCGACGACACGTCGGGTCCGACGACGGCGGCCCCGCCCGACGACGGCACGGCGGCCGACGCGGGCGGCGACGTCCTCGTCGAGGAGCCCGCGGCACCCGCCCTGGAGACGCCGGAACCCGCGGCCGGCCGGATGGTCCGGCTGCGTGACCGGCTGGCCCGGTCGGGGTCCCCGCTGGGTGCGCGCCTGCTGAGCGTGCTGTCGCGGGACACCCTGACCGAGGACGACTGGGACGAGCTGGAGGAGACGCTCCTGCTGGCCGACATCGGCACCGGCCCGGCCGAGGAGCTCCTGGAGGCCCTGCGGACGCGGGTGCGGGTGCTGGGGGTGCGGGAGCCGGACGCCGTGCGCGAGCTGCTGCGCTCCGAGCTGCTCAAGGTCGTCGACCCGACGCTGGACCGCTCCCTGGCCCTTGAGCGTCCGGTCGTCGACGGGGTGACCAAGCCCGCCGTCGTGCTGGTGGTGGGCGTCAACGGCACGGGCAAGACGACGACGGTCGGCAAGCTCGCCCGGGTGCTCGTCGCGGAGGACCGGTCGGTGGTGCTGGGTGCGGCGGACACGTTCCGCGCGGCCGCGGCCGACCAGCTGCAGACCTGGGGTGCCCGGGTGGGCGTGGAGACCGTGCGGTCCGAGCGCGAGGGCGGAGACCCCGCGGCCGTGGCGTTCGACGCCGTGCGCACGGGCAGCACGCAGGGGACCGACGTCGTGCTGGTGGACACCGCGGGCCGGCTGCAGAACAAGGCCGGTCTGATGGACGAGCTGGGCAAGATCTCCCGGGTGGTCACGCGCGAGGCCCCGCTGGGGGAGGTGCTGCTGGTCCTCGACGCCACGACGGGCCAGAACGGGATGCAGCAGGCCAAGGTCTTCGGCGAGGTCGCCGGGGTGACCGGCATCGTGCTGACCAAGCTCGACGGCACCGCCAAGGGCGGGATCGTGGTCGCCGTCCAGCGCGAGCTGGGCGTCCCGGTGAAGCTGGTCGGGCTGGGCGAGGGACCGGACGACCTGGCGCCGTTCGACGCGGAGCAGTTCGTCGACGGTCTGCTCGGGTGAMTDYLWLWIVLGLVLLVGLGSALVVPRLRGRRPDDTSGPTTAAPPDDGTAADAGGDVLVEEPAAPALETPEPAAGRMVRLRDRLARSGSPLGARLLSVLSRDTLTEDDWDELEETLLLADIGTGPAEELLEALRTRVRVLGVREPDAVRELLRSELLKVVDPTLDRSLALERPVVDGVTKPAVVLVVGVNGTGKTTTVGKLARVLVAEDRSVVLGAADTFRAAAADQLQTWGARVGVETVRSEREGGDPAAVAFDAVRTGSTQGTDVVLVDTAGRLQNKAGLMDELGKISRVVTREAPLGEVLLVLDATTGQNGMQQAKVFGEVAGVTGIVLTKLDGTAKGGIVVAVQRELGVPVKLVGLGEGPDDLAPFDAEQFVDGLLGPGPT0025740_2699DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025740-ftsY-K03110NANA
AK018_01950327hypothetical proteinATGGGCGTCATGGTGACCTTCGTCGTCTGGCTCGCGGCCTCGCTGCTGCTGGCCGGTGCCGTCTTCCTCGTCGCGAGCGTGATGGGCCGCATGCAGGACGACGACGGCGAGAGCGGGCTGCGGGCGTTCGGCCACGCGTTCCGGCAGGGCCTGCGCCGCGACGGCGACCGTCGTGCCTCGGGCCCCGTGGACACCGACATGGACGCGTTCTTCGCGGCGAACCTCGAGCAGGCGCCCGGCTACGTCGACGCCGAGGAGCTCTCCGACGTGCTGCACCGGGTCCAGGTGCGCGTCCAGACGCCGCCGCGCGGCACCCCGCGCGGCTGAMGVMVTFVVWLAASLLLAGAVFLVASVMGRMQDDDGESGLRAFGHAFRQGLRRDGDRRASGPVDTDMDAFFAANLEQAPGYVDAEELSDVLHRVQVRVQTPPRGTPRGNANANANANA
AK018_019513558smc_3COG1196Chromosome partition protein SmcGTGCACCTCAAGACGCTCACGCTGCGCGGCTTCAAGTCGTTCGCCTCGGCGACGACGCTGAGCCTCGAGCCGGGCATCACGTGCGTGGTCGGGCCCAACGGCTCCGGCAAGTCCAACGTGGTCGACGCGTTGAGCTGGGTCATGGGGGAGCAGGGGGCCAAGTCCCTGCGCGGCGGCAAGATGGAGGACGTCATCTTCGCCGGCACGTCCGGTCGCCCGCCGCTCGGCCGCGCCGAGGTCTCCCTGACGATCGACAACACCGACGGTGCCCTGCCGATCGACTACACCGAGGTGACCATCTCGCGCACGCTGTTCCGCAGCGGCGGCTCGGAGTACGCCATCAACGGCAGTTCGTGCCGGCTCCTGGACGTCCAGGAGCTGCTGAGCGACTCCGGCATCGGCCGCGAGATGCACGTCGTCATCGGGCAGGGCCAGCTCGACGCCGTGCTGCGCGCCACCCCCGAGGAGCGCCGCGGGTTCATCGAGGAGGCGGCCGGCGTCCTCAAGCACCGCAAGCGCAAGGAGAAGGCGCTGCGCAAGCTCGAGGCGATGGCGGGCAATCTCGCGCGCCTGACCGACCTCACCACGGAGCTGCGCCGCCAGCTCGGCCCGCTCGGCCGCCAGGCGGAGGCGGCCCGCAAGGCCCGCACCGTCCAGGCCGAGCTCCGTGACGCCCGCGCCCGCCTGCTGGCGGACGATCTCGCCCAGCTCGGCGCCCGCCTGGAGCAGGAGCGTGCCGACGAGGCCGCGCTCAAGGACCGGCAGCGGGCCACCGAGGAGTCGCTGGACGACGCCCGGGGGCGCCTGGCCCGCCTCGAGGCGTCGGCGTCGGCGGCCACCCGGGCCGCCTCCTCGGCCGCGGACACGGTGCACGCCCTCGGCGCGGTGCGCGAACGGCTGCGCGGGCTGGCCTCGTTGGCCGACGAGCGCGCGCGCCTGCTGGGCACCGCGGAGCCCGAGCAGCGCGGTCAGGACCCCGACGAGCTCGACGCCCAGGCGGAGCGGGCCCGCCGCGCCGAGGCGGAGCTCGGCAGCGAGGTCGACGTGGCCCGCGAGGGCCTGCAGGCGCTCGAGGCGGAGCGTGCCGCCGCCGAGGAGGCCGCGGCCGACGCCGAGCGGGAGCTCGCGGCGTTGCTGCGGGGTGCGGCGGACCGGCGTGAGGGGCTCGCCCGGCTGTCCGGTCAGGTCGCGGCGCGGCGCAGCCGGGTGGAGGCCGCCGACGCCGAGATCGACCGCGTCCGCGAGGGGGTCGGCGAGGCCGAGCGGCGGGCCGAGGCGGCGGCTCGCGAGTTCGCGGACCTGGAGGCGCAGGCGGTGGGGGCCGAGGCCGGCGAGGAGGGGCTCGACGCCGACCACGAGGCGGCGGCCGAGGCGCTCGACGCCGCCCGCGCCGACGTGGAGCGGCTGGAGGGAGACCTGGAGGCGGCCGAACGGGACCGTGCCACGTGGTCGGCCCGGGTGGAGGCGCTGGAGCTCAGTCTCGACCGCAAGGACGGTGCCGGTGCGCTGCTGGCCGCCGACCAGCCGGGCGTGCTGGGGTCCGTTGCCGCGCTGCTCGGTGTGGAGGCCGGTTTCGAGGAGGCGGTCGCCGCGGCGCTGGGCCCGCTGGCCGACGCCGTGGCCGTCGAGAGCGTGGACGCCGCGGTGGACGCCCTGCGGATGCTGCGCGACGACGACGCCGGTCGCGTGGGTCTGGTGGTCGGTGGCCCGGACGGCGGCTCACCGGCCGCGGCTCCCGACGGGGCACGGGCGGCGCTGGAGGTGGTCACCGCCTCCGGCCCGGCCGCCGGTGCCCTGCGCACCCTGCTCGCCGACGTCGTCGTGGTCGAGGACCTGGCCCGGGCCCGGGCGCTGGTGCGCGACCGCCCCGACCTGGTGGTGGTGACCCGGGACGGGGACCTGCTGGCGGGCTCGCGGGCCTCGGGCGGTTCCGCGGGCGCACCGAGCGTGCTGCACCTGACCAGCGCGCTGGACGAGGCGCGCGCCGGTCTCGACGACGCCGTGGCCCGCGGCGAGCGGTACCGCGCCGACCTGAGCACCGCCCGGGAACGACTCGAGACCGCCACGGTGCGCCACGACGAGACCCTGGCCCGGCTGCACGAGTCCGACGCCGCGCTGGCGGCCGTCGCCGAGCAGCTCGGCACGCTGGGTGCGGCACGCCGCGCGGCCCAGACGGAGGCCGAGCGCCACCGTGCCGCCCTCGCGGAGGTGACCGACCGGCGTCGTGCGGACGTCGAGGAGCTGGCCGAGCTGACCCGCCGGCTCGAGGTCGCCGAGGCGGAGCCCGCGCAGACCGAGGACGACGCCGCCGAGGCGACCCGCGTCCGTGACGCGGCGCAGGAGCGCGCGACGGCGGCGCGCCGGTCCGAGACGGAGGCCCGGCTCACGTTGCGCACCGCCGAGGAGCGGGCGCGTGCGGTGTCGGGCCGCGCGGAAGGACTCGCCCGTGCGGCGGAGCGGGAGCGCCGGGCGCGCCAGGAGGCCGCCGAGCGCGCTGCCCGCCGGTCGCGTGAGGCCGAGCGCGCGGTGGCGGTCCGCGCCGACGTCGAGGTCGCGCTCGAGGCGCTGGAGCGCTCGCTGGGACGAGCGGGTGACGAGCGGGCCGCCGCGCAGGCGGACCGCGACCGGCACCGTGGCGAGCTCGACGAGGTGCGTCGCGACGTCGACCGGTTCGCCGGCGAGCTGCGGGACCTAACCGACGTGGCCCACCGCGACGAGGTGGCGCGCGCCCAGCAGGTGGCACGGCTGGACCAGCTGCGCACGCGGGCGGTCGAGGAGCTGGGCACCGACCCGGACACGCTGGTCGACGAGTTCGGCCCGCACCTGCCGGTCCCGGTGCCGCGCGACCCGGACGCTTCGGACGACGAGCCCGACCCCGATCCGGTGCCGTTCGTGCGCGCCGAGCAGGAGAAACGCCTGGCGTCGGCGGAGCGGTCGCTCAAGCGGATCGGGACCGTGAACCCCCTCGCCCTGGAGGAGTTCGCGGCCCTCGAGGAGCGGCACCGGTTCCTCACCGAGCAGCTCGCCGACCTGCAGGGGTCGCGCGAGGACCTGCTGCAGATCGTCACCGAGATCGACGAGCGGGTCGAACAGGTGTTCGCCGAGGCCTACCAGGACACGGCCGCGCAGTTCGAGCGCGTGTTCTCCCGGCTGTTCCCGGGCGGTGAGGGGCGCCTGGTGCTCACCGAACCGGCCGACCTGCTGACGACCGGTATCGAGGTCGAGGCGCGGCCGGCGGGCAAGAAGGTCAAACGGCTGTCGCTGCTGTCTGGCGGGGAGCGGTCGTTGACGGCCGTGGCGTTCCTGGTGTCGATCTTCAAGGCCCGACCCAGCCCCTTCTACGTGATGGACGAGGTCGAGGCGGCGCTCGACGACGTCAACCTCGGGCGGCTGCTGGAGATCTTCCGCGAGCTGCAGGAGGACTCCCAGCTCATCGTCATCACGCACCAGAAGCGCACGATGGAGGTCGCGGACGCCCTGTACGGGGTGACGATGCGCGGTGACGGTGTGACCACGGTCATCTCCCAGCGGCTCGGCGAATCCGTCGAGGCGGGGTGAMHLKTLTLRGFKSFASATTLSLEPGITCVVGPNGSGKSNVVDALSWVMGEQGAKSLRGGKMEDVIFAGTSGRPPLGRAEVSLTIDNTDGALPIDYTEVTISRTLFRSGGSEYAINGSSCRLLDVQELLSDSGIGREMHVVIGQGQLDAVLRATPEERRGFIEEAAGVLKHRKRKEKALRKLEAMAGNLARLTDLTTELRRQLGPLGRQAEAARKARTVQAELRDARARLLADDLAQLGARLEQERADEAALKDRQRATEESLDDARGRLARLEASASAATRAASSAADTVHALGAVRERLRGLASLADERARLLGTAEPEQRGQDPDELDAQAERARRAEAELGSEVDVAREGLQALEAERAAAEEAAADAERELAALLRGAADRREGLARLSGQVAARRSRVEAADAEIDRVREGVGEAERRAEAAAREFADLEAQAVGAEAGEEGLDADHEAAAEALDAARADVERLEGDLEAAERDRATWSARVEALELSLDRKDGAGALLAADQPGVLGSVAALLGVEAGFEEAVAAALGPLADAVAVESVDAAVDALRMLRDDDAGRVGLVVGGPDGGSPAAAPDGARAALEVVTASGPAAGALRTLLADVVVVEDLARARALVRDRPDLVVVTRDGDLLAGSRASGGSAGAPSVLHLTSALDEARAGLDDAVARGERYRADLSTARERLETATVRHDETLARLHESDAALAAVAEQLGTLGAARRAAQTEAERHRAALAEVTDRRRADVEELAELTRRLEVAEAEPAQTEDDAAEATRVRDAAQERATAARRSETEARLTLRTAEERARAVSGRAEGLARAAERERRARQEAAERAARRSREAERAVAVRADVEVALEALERSLGRAGDERAAAQADRDRHRGELDEVRRDVDRFAGELRDLTDVAHRDEVARAQQVARLDQLRTRAVEELGTDPDTLVDEFGPHLPVPVPRDPDASDDEPDPDPVPFVRAEQEKRLASAERSLKRIGTVNPLALEEFAALEERHRFLTEQLADLQGSREDLLQIVTEIDERVEQVFAEAYQDTAAQFERVFSRLFPGGEGRLVLTEPADLLTTGIEVEARPAGKKVKRLSLLSGGERSLTAVAFLVSIFKARPSPFYVMDEVEAALDDVNLGRLLEIFRELQEDSQLIVITHQKRTMEVADALYGVTMRGDGVTTVISQRLGESVEAGNANANANANA
AK018_01952441ndkACOG0105Nucleoside diphosphate kinaseATGACCGATAGCACCACGCCCGCGCCCGAGCGCACCCTCGTCCTCGTCAAGCCCGACGGCGTCCGCCGCGGCCTGTCCGGCGAGATCCTGCGGCGCATCGAGGCCAAGGGCTACACGCTCACGGCCGTCGAGCTGAAGAACGCCACCCCCGAGGTCCTCGCCGCGCACTACGCGGAGCACGAGGGCAAGCCCTTCTACGCCCCGCTGGTCGAGTTCATGCTGTCCGGCCCGGTGCTGGCGGTCGTCGCCGAGGGGCAGGGCGTCATCGCCGGGTTCCGCTCGCTGGCCGGTGCCACCGACCCGACGGCCGCGCTGCCGGGCACGATCCGCGGCGACCTGGGCCGCGACTGGGGTCTGAAGGTGCAGCAGAACCTGGTGCACGGGTCGGACTCCGTGGAGTCCGCCGAGCGCGAGATCGGCCTCTGGTTCCCCGCGCTCTGAMTDSTTPAPERTLVLVKPDGVRRGLSGEILRRIEAKGYTLTAVELKNATPEVLAAHYAEHEGKPFYAPLVEFMLSGPVLAVVAEGQGVIAGFRSLAGATDPTAALPGTIRGDLGRDWGLKVQQNLVHGSDSVESAEREIGLWFPALPGPT0021210_2480DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021210-ndk-K00940NANA
AK018_01953447hypothetical proteinGTGAGCTCGAAGAAGGACGACCGTCCCCGCCCGGGGGACTCGATCACCCCGCGCAAGCCCGCCAAGGTGCAGTTCGCCTCGACGGTGTTGCAGCTCGAGGCGTTCGTGGTCCTCTTCGCGGCGCTGGCCCTGTACGGGCTGCGGGACACGGGCTACCGTCCCGGCCTGCTCGTGCTGGACTCCACGGCGTCGCTGTGGGTCGTGTCCGGGGTGCTGGCCGTGGTGCTGATCGTGCTCTCGCGGATGCTGACGCGGCCCGGTGGGTTCGTGGCGGGGTCGGTCGCGCAGGTCCCCGTCCTGGCCACCGGTCTGCTGCTGCCGATGATGTTCCTGGTGGCGGGGATCTTCGTGGTGCTGTGGGTGATGGCGCTGCGCCTCGGCGGCCGCATCGACCGGGAGCGGGCGGCCTACGACGCGGAGCATCCCGAGACGGCGCCGAACGCCTGAMSSKKDDRPRPGDSITPRKPAKVQFASTVLQLEAFVVLFAALALYGLRDTGYRPGLLVLDSTASLWVVSGVLAVVLIVLSRMLTRPGGFVAGSVAQVPVLATGLLLPMMFLVAGIFVVLWVMALRLGGRIDRERAAYDAEHPETAPNANANANANANA
AK018_019541728bmr3_4Multidrug resistance protein 3ATGGCCCACGCCCCTGCCCCCGCGCCGGACAAGCCGCTCGTCGTCCTGACGAAGCGCACGATCTGGCTCATCTTCGGTGCCCTGATGGCGTCGATGTTCCTGTCCTCCCTCGACCAGACCATCGTCGGCACAGCGATGCCCACGATCGTCGGCGAGCTGCACGGCGTCGCCCACCAGGGGTGGGTCATCACGGCCTACATCCTGGCCGTGGCGATCGGCATGCCGCTGTACGGCAAGTTCGGCGACCTGTACGGGCGCCGCTGGCCGTTCCTCGTCGCGATCGGGCTGTTCACGGTCGCCTCGGCCGGGGCGGCGCTGGCCGACACGATGCTGGCACTGGTGCTGTGGCGTGCCGTGCAGGGCCTGGGCGGCGGCGGGCTGATGATCCTGTCGCAGTCGATCATCGCCGACATCGTGCCCGCCTCGGAGCGCGGCAAGTACATGGGCCCCCTCGGCGCGCTGTTCGGCATCTCCGCCGTGCTGGGACCGCTCCTCGGGGGCTGGTTCACGGAGGGCCCGGGCTGGCGCTGGGCCTTCTGGCTGAACGTCCCGATCGGTGTGGCCGCGTTCGCCATCGCCTGGTTCGCGCTGCGGCTGCCCACGCACCGGTCCTCGCGCCCGGTGGACTGGGCAGGGATCGTGACCATGGCGACCGCGACCACCGGCATCGTGCTGATCACCAGCTGGGAGTCGCTGGCCGACGGCGGCTACGACTGGTCCGACTGGCGCCTGTCCGGGCTCGTGGTGCTCACCCTCGGGGCGGTGGCGGCGTTCGTCGTCGCCGAGACGCGGGCGGCCGAGCCGCTGCTGCCCCTGCGGCTGTTCAAGAACCGCACCTTCACCCTGTCGACGCTCATCGGCCTGGTGCTCGGCATGGGCATGTTCTCCGCGATGGCGATGCTGCCCACGTTCCTGCAGATGTCCACCGGCGCCGGGATCACCGAGTCGGGCTGGCTCATGCTGCCGATGATGGCCGGCATGATGATCACCTCGATCGGCTCCGGTCTGGCGATCACCCGGACCGGCCGGTACAAGGCGTTCCCCGTGGTCGGGCTGGTCGTGGTCGGGCTGTCGATGGTGTGGCTGACGACGCTCAGCGGCGACATGTCGATGTGGACCTTCGGGGCGATGATCTTCGCGCTGGGGGCCGGCATGGGACTGGTCATGCAGGTCGTGGTGCTCGCCGTGCAGAACGCCGTCGACCCGCACAAGCTCGGTACCGCGACCAGCGCGAACAACTTCTTCCGGGAGATCGGCGCCGCCGTGGGCTCCGCGCTGTTCACCACCATGTTCACCACGCGGCTCACGGACAACCTCCAGGGGGTGTTCGGCGACGTGCCCGGCGGCGCTGCCGAGTCGGAGGCGAGCCTGACGCCGGAGGCGGTCCAGCAGCTGCCCGAGCCGTTCCGCACCGGGGTGATCGACGCCTACGCCGAGTCGCTCGCCCCGTCCTTCTGGTACCTGGTTCCCCTGGTGGCGGTGGGCCTGGTCATGGCTCTCTTCCTCCCGGTGCTCAAGCTGTCCGACGTCGCCGGGATGGTCGCGCGCGGCGAGGCGGTCAACGACGAGAGCGAGCTGCCGGGTGCGGTGCCCGCGGTTCCCGGCGGCGCGGACGACGGCGGCTCGGACGACGGCGGCTCGGACGACGGCGGGACGGCTCCGGGCGCCGGTGCCGGTGCCGGGCCGCGTGAACCGCACGGCCGGACGCCGGATACCCTGGAGCGGTGAMAHAPAPAPDKPLVVLTKRTIWLIFGALMASMFLSSLDQTIVGTAMPTIVGELHGVAHQGWVITAYILAVAIGMPLYGKFGDLYGRRWPFLVAIGLFTVASAGAALADTMLALVLWRAVQGLGGGGLMILSQSIIADIVPASERGKYMGPLGALFGISAVLGPLLGGWFTEGPGWRWAFWLNVPIGVAAFAIAWFALRLPTHRSSRPVDWAGIVTMATATTGIVLITSWESLADGGYDWSDWRLSGLVVLTLGAVAAFVVAETRAAEPLLPLRLFKNRTFTLSTLIGLVLGMGMFSAMAMLPTFLQMSTGAGITESGWLMLPMMAGMMITSIGSGLAITRTGRYKAFPVVGLVVVGLSMVWLTTLSGDMSMWTFGAMIFALGAGMGLVMQVVVLAVQNAVDPHKLGTATSANNFFREIGAAVGSALFTTMFTTRLTDNLQGVFGDVPGGAAESEASLTPEAVQQLPEPFRTGVIDAYAESLAPSFWYLVPLVAVGLVMALFLPVLKLSDVAGMVARGEAVNDESELPGAVPAVPGGADDGGSDDGGSDDGGTAPGAGAGAGPREPHGRTPDTLERNANANANANA
AK018_01955603hypothetical proteinGTGAGCACCGCATCGACCACCGGCCTGCGCGCGCGCAAGAAGCGCGAGCGCAGCGACGCCATCGTCGACGCCGCCCAGGCGCTGGTCCTGGACCGCGGCCTCGACGCCGTGACCGTCGAGGACATCGCCGCCTCCGCGGGCATCTCGCCACGCACCTTCTTCAACTACTTCGACACCAAGGACGACGCCGTGCTCGGCCAGCGCGGCCTCGACGTCGACGACGACGCGGTGGCCACGTTCGTCGACGGCGGTCCCACCGGGGCGCTGCTCGAGGACGTCGAGGCGCTCGTCACCGCGATGCTCACCGCCATGTCGGGGTCGCACGACCGCGCCCGCCGCGCGTACACGCTCCTGGAGGCCGAGCCGCGACTGCTCGCGCGGCACGCCGCGTGGCTCGAGCAGCACCGCGCCGAGGTCGCGCGGCTGTTCGCGCGTCGCGCCGAGACGCTCCCGGCCGCCGTCGACCCGGACCTCGCCTCGCTGACCGTCGGCCTGCTGCTGCGCGCCGCCGGCGACCGGTGGGAGAGCTCCGGGTGCGCCGGCGAGCTGGCCGACCACGTCGCGCCCGCCGTCGCGTCCCTGCGCGCCCTGCTGCGCTCCTGAMSTASTTGLRARKKRERSDAIVDAAQALVLDRGLDAVTVEDIAASAGISPRTFFNYFDTKDDAVLGQRGLDVDDDAVATFVDGGPTGALLEDVEALVTAMLTAMSGSHDRARRAYTLLEAEPRLLARHAAWLEQHRAEVARLFARRAETLPAAVDPDLASLTVGLLLRAAGDRWESSGCAGELADHVAPAVASLRALLRSNANANANANA
AK018_01956768dhaM_2COG1080PEP-dependent dihydroxyacetone kinase, phosphoryl donor subunit DhaMGTGACGGTGGACGTGGGGCTGGTCCTGGTGGCGCACTCGGCGCCGATGGCGCAGGGGACGGCGGACCTGGCGCGGCAGATGGCTCCTGACGTGGTGATCCGCTGCGCTGCCGGGGACGAGGACGGCGGCCTGGGCACCTCGTTGGACCGGGTCCAGGACGCGCTGGCGGACGCCCTGGGCACCGTCGACGGCGTGGTGGTCCTCGCGGATCTCGGGTCGGCGGTGCTGGTGGTGGAGGCGGCGTTCGAGCTGGACCCCGCGCTGGCGCGGCGGGCTCGCCTGGTCTCGGCGCCGTTCGTCGAGGGTGCCGTGGCGGCGGCGGTCACGGCGCAGCAGGGCGCGGCGCGGGAGGCGGTCGCCGAGTCCGCGGAGGCCGCCGTGCACTCGATCGGTCCGTCGCCGGTGCTGGAGCTCGTGGAGTCCTCCGCCGACGACAGCCCGGCGCCCGCCGGTACCCACGCGTCGGGCGAGACGGTGCAGGCACCCGGTGCGCCGGCGTCGGGAGCTGCCGACGAGGCGACGGCGACGGCCCAGATCCGCAACAAGCTGGGCCTGCACGCGCGACCGGCGGCGCTGCTGGCCCGGTCGGTGGCCGACCTGGGTGTGCCGGTGACGGTCGACGGGGCCGATGCGTCCAGCGTGCTGGCGTTGATGTCGCTGGGCACGGTGGCCGGTCAACGGGTGACCGTGGCGGCGCGCGGGACGGACGCTGCCGGTGCGGTCGACGTCGTCGTGGGGATGATCGAGGGGGGCTTCGGGGAGGAGTAAMTVDVGLVLVAHSAPMAQGTADLARQMAPDVVIRCAAGDEDGGLGTSLDRVQDALADALGTVDGVVVLADLGSAVLVVEAAFELDPALARRARLVSAPFVEGAVAAAVTAQQGAAREAVAESAEAAVHSIGPSPVLELVESSADDSPAPAGTHASGETVQAPGAPASGAADEATATAQIRNKLGLHARPAALLARSVADLGVPVTVDGADASSVLALMSLGTVAGQRVTVAARGTDAAGAVDVVVGMIEGGFGEEPGPT0018450_174DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018450-dhaM-K05881NANA
AK018_01957639dhaL_2COG2376PEP-dependent dihydroxyacetone kinase, ADP-binding subunit DhaLGTGACGTTGGACGCCGCGTGGGCCGAGCGGTGGATGCGGCGGTCCGCCGCCGACATGCACGCGGCGCGGGACGAGCTGACGGAGCTGGACCGCCGGATCGGGGACGGCGACCACGGTGTGAACATGGACCGCGGGTTCGCGGCCGTCGCGGACCGGCTCGACGACGACGGCGTCCCCCCGCGCGAGACGGTGGCCCAGGTGCTGCGGCTGGTGGCCACGACGCTGATGTCGACGGTGGGAGGCGCCTCCGGCCCGCTGTACGGCACGGCGTTCCTGCACGCGGCGCGGGTCACGAACAGACCGGACCTGGACGGGGCGGGCGTGGTGGCGCTCGTCGAGGCCGCGGCCGAGGGCATCACGAGCCGCGGTCGCGCCGCGCCGGGGGACAAGACGATGGTGGACGCCTGGGCGCCGGCCGTGGAGGCGGCCGAGCGTGCCGCGGACGGCGGCGACGCCGTCGAGGTGCTGCGCGCCGCCGCGGCGGCCGCGGCGGACGGTGCGGAGGCGACGGTGCCGATGATCGCGACCAAGGGTCGGGCCTCGTACCTGGGCCCGCGCAGCGCCGGGACCGAGGATCCCGGCGCGAGGTCGACGGCGACGCTCCTGGCCGCCGCGGTGGCGGCGGCCGGGGCGGACTGAMTLDAAWAERWMRRSAADMHAARDELTELDRRIGDGDHGVNMDRGFAAVADRLDDDGVPPRETVAQVLRLVATTLMSTVGGASGPLYGTAFLHAARVTNRPDLDGAGVVALVEAAAEGITSRGRAAPGDKTMVDAWAPAVEAAERAADGGDAVEVLRAAAAAAADGAEATVPMIATKGRASYLGPRSAGTEDPGARSTATLLAAAVAAAGADPGPT0018455_273DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018455-dhaL-K05879NANA
AK018_019581038dhaK_2COG2376PEP-dependent dihydroxyacetone kinase, dihydroxyacetone-binding subunit DhaKTTGTCGTTCGACCACGAGGACGTCGAGAAGGGGTGCGTCGCGATGAAGAAGTTGCTGGACGACCCGGCTGAGGCCGTCGTCGACGCGTTGCACGGGTTCGCGCTCGCGCACGCGGGAGAGATCGAGGTGCGTCGTGACCCGACGTACGCGCTGCGCGCGGGTGGCCCGGCGGCGGGCCGCGTCGCCCTGGTCAGCGGTGGTGGGTCCGGCCACGAGCCGCTGCACGTCGGGTTCGTCGGCGAGGGGATGCTGGACGCCGCCGTGCCGGGGGAGATGTTCACCTCGCCGACGCCGGACCAGGTGGCCGCGGCCGTGCAGGCCGTCGACGGCGGTGCGGGCGTGCTGGCGGTGGTCAAGAACTACACCGGTGACGTGCTGAACTTCGAGACCGGCCTGGAGCTGGCCCAGGACTCGGGCGTGCAGGTCGCCAGCGTCCTGGTGGACGACGACGTCGCCGTCGAGGACTCCCAGTTCACCGCCGGACGGCGCGGGGTCGCCGGGACCCTCGCCGTCGAGAAGATCGCCGGTGCTGCTGCGGCCCGGGGGGACTCGCTCGGTGCGGTGGCCCAGATCGCCCAGCGTGTCGTGTCGCGGGTGCGGACGATGGGGGTGGCGCTGACGGCGTGCACGGTGCCGCACGTGGGGCGCCCGAGCTTCGACCTGCCCGAGGACGAGGTGGAGATCGGCATCGGCATCCACGGCGAGCCGGGCCGGCACCGCCAGCCCGTGGGCAGCGCCCGCGAGATCACCGCAGCACTGGTGGAACCGGTGCTGGAGGACCTGGCGCCGTCGGGCGGCGAGCGCGTGCTGCTGCTGGTCAACGGCATGGGGGGCACGCCGCTGAGCGAGCTGTACGTCGTCTACGGCCGGGCCCGCGAGCTGCTCGAGGCGCGCGGGCTCGAGGTGGCCCGGTCGCTGGTGGGCAGCTATGTCACGTCGCTGGAGATGCAGGGGGTCTCGGTGTCGGTGCTGGTGCTCGACGACGAGCTCGTCGAGCTGTGGGACGCGCCGGTCCGGACCCCGGCGCTGACGTGGTGAMSFDHEDVEKGCVAMKKLLDDPAEAVVDALHGFALAHAGEIEVRRDPTYALRAGGPAAGRVALVSGGGSGHEPLHVGFVGEGMLDAAVPGEMFTSPTPDQVAAAVQAVDGGAGVLAVVKNYTGDVLNFETGLELAQDSGVQVASVLVDDDVAVEDSQFTAGRRGVAGTLAVEKIAGAAAARGDSLGAVAQIAQRVVSRVRTMGVALTACTVPHVGRPSFDLPEDEVEIGIGIHGEPGRHRQPVGSAREITAALVEPVLEDLAPSGGERVLLLVNGMGGTPLSELYVVYGRARELLEARGLEVARSLVGSYVTSLEMQGVSVSVLVLDDELVELWDAPVRTPALTWPGPT0018460_1092DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018460-dhaK|dak-K05878NANA
AK018_01959786yclP_2COG4604Petrobactin import ATP-binding protein YclPATGACGGTCCCGACCCGTACCCGCGGAGCCATCGCCGCCACCGGGCTCACCAAGCGCTACGGCGAGACCGCCGTCGTCGACGACGTCTCGATCGAGCTGCCCGCCGGCGGCGTGGTCTCGGTGATCGGCCCGAACGGGGCCGGCAAGTCCACGTTCCTGTCGATGGTGGCGCGGCTGCTCCCGATGGACGCCGGGCGCGTGGTGGTCGACGGCGACGACGTCGCCACCGCTCCGGGTGACGTCATGGCGCGGCGGCTGGGCATCCTGCGGCAGGACAACCATCTCGCGGTCCGGCTGACCGTCCGGGAGCTCGTCACGTTCGGCCGCTACCCGCACTCGAAGGGGCGCACCACGGCGGAGGACCGCCGGCACGTCGAGGAGGCCCTGGACTACCTGGACCTGACGGACCTGGGAGGCCGGTTCCTGGACGAGCTGTCCGGCGGGCAGCGTCAGCGGGCTTTCGTGGCGATGGTGCTCGCGCAGGACACCGACTACGTGCTGCTGGACGAGCCCCTGAACAACCTCGACATGGTCCACGCGCGGGGGATGATGCGGCTGGCACGACGTGCCGCCGACGAGCTGGGCAGGACCGTCGTCGCGGTGCTGCACGACATCAACTTCGCCGCCGCCTGGTCGGACCGCATCGTGGCGATGAAGGACGGACGGGTGGCCGCCTCGGGGACACCGGCCGAGATCATGCGACCCGCGGTGCTCGGGGAGATCTTCGACATGGACGTCGCGGTGCACCAGATCGACGGTCGCCCGGTCGCGCTCTACTACACGTAGMTVPTRTRGAIAATGLTKRYGETAVVDDVSIELPAGGVVSVIGPNGAGKSTFLSMVARLLPMDAGRVVVDGDDVATAPGDVMARRLGILRQDNHLAVRLTVRELVTFGRYPHSKGRTTAEDRRHVEEALDYLDLTDLGGRFLDELSGGQRQRAFVAMVLAQDTDYVLLDEPLNNLDMVHARGMMRLARRAADELGRTVVAVLHDINFAAAWSDRIVAMKDGRVAASGTPAEIMRPAVLGEIFDMDVAVHQIDGRPVALYYTPGPT0003760_3375DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_019601035yclO_2COG4605Petrobactin import system permease protein YclOATGTCGGTTGACGTCCATCCCCTCGACGCCGTCCGCAGGACGTCGGTCGCCCCTGGTGCTGGCGACGCCACCGAGCGGGCGCTGCGTCGTCGTGCCCGGCTCGTCGTGGCGGGCCTGACCGTCCTCGCGCTCGCCGCGACCGCCGTCTACCTCACCGTCGACGTCCGTGCGGGGTGGGAGTTCACCCTGCCGTTCCGCGGTCGGCGTGTCGTGCCGATGGTCGTCGTGGGTGTCGCGACCGCCACGTCGACCGTGGTGTTCCAGACCCTGACCACCAACCGCATCCTCACGCCGTCGATCCTCGGGTTCGACTCCCTGTACCAGCTGCTGCAGACCTCGCTGGTGTTCGTGCTCGGCTCGTACGCGCTGGCGTCGGTCGGGGTGGTCGAGCAGTTCGGCGTCGCCGTCTCGCTCATGGTCGCGGCGTCGCTGGCGCTGTTCCTGGGCCTGTTCGGCGGGGGCCGACGCTCCCTGCACCTCGTGCTCCTGGTGGGTGTCGTGCTGGGTACCCTGCTGCGCTCGGCCACGGCGCTGATGCAGCGGATGATGGACCCGAGCGAGTTCCAGGTGCTCCAGTCGCGGCTGTTCGCGAGCTTCACGGGGGTGGACGAACGCCTCCTCGCTGTCAGCGCCGTCGTCGTGCTCGTGTGCTGCACGCTGCTGTGGACAATGCGGCGTCGCCTCGACGTGGTGGCGCTGGGCAGGGAGACGGCTGTGGCGCTCGGCGTGAACCACCGACGCACCTCGTTGCTGGTGCTCGTGGTGGTGGCGGTCCTGGTCTCGGTGTCCACCGCGCTGGTGGGTCCGATCACCTTCTTCGGCCTGCTCGTCGCCAACCTGGCCTACGTGCTCCTCGGCAGCCACCGGCACGCCCTGACGTTGCCCGTGGCCGCCCTGCTCGCCGTCGTCACGCTCGTCGGGGGACAGGCCTTGCTCGAGCACCTGCTCGGCATGGAGACCGTCCTGTCCGTCGTCATCGAGTTCCTCGGAGGAATCGTGTTCATCGCACTGCTCGTCGCCGGAGGCCGCCGATGAMSVDVHPLDAVRRTSVAPGAGDATERALRRRARLVVAGLTVLALAATAVYLTVDVRAGWEFTLPFRGRRVVPMVVVGVATATSTVVFQTLTTNRILTPSILGFDSLYQLLQTSLVFVLGSYALASVGVVEQFGVAVSLMVAASLALFLGLFGGGRRSLHLVLLVGVVLGTLLRSATALMQRMMDPSEFQVLQSRLFASFTGVDERLLAVSAVVVLVCCTLLWTMRRRLDVVALGRETAVALGVNHRRTSLLVLVVVAVLVSVSTALVGPITFFGLLVANLAYVLLGSHRHALTLPVAALLAVVTLVGGQALLEHLLGMETVLSVVIEFLGGIVFIALLVAGGRRPGPT0003770_10338DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_019611002yclN_2COG4606Petrobactin import system permease protein YclNGTGAGCACCACCGCACCCGCCGGGACGGCGTCGCAGCGCGGCGCCGTCCTCGGCATCTCCTTCGCGGTCCTCGGCCTCGTCGTCGGAGCCGTCGCCTCGGTCTTCATCGGGGTCAGCGACGTCACCCCGGCCACCCTCTGGTCCGACGACGGGCACGCCCGGCAGCTCCTGACGGTGTCGCGGTTGCCGCGGACCGTCGCGATCCTGCTCGCCGGCGCCTGCACCGCCGTCGCGGGGGTCGTGATGCAGATGCTCGTCCGCAACCGGTTCGTCGAGCCGTCGACCGTGGGCACCTCGGAGTCGGCGGCCCTCGGGCTGCTGATCGTCACGATCTGGGCGCCCGGGATGGCGCTGCCTGGCAAGATCGGCGTCGGGGCGGTGTTCGCCGTGGCCGGCACGTGTCTGTTCCTGCTGGTGCTGCGTGCCGTGCCGATCCGGTCGGTCGTCACCGTGCCGCTGGTCGGCATCATGCTCGGCGGCGTCATCGGTGCCGTCTCCGCCTACATCGCCTTCCGGTACGACCTGATGCAGACCCTGTCCGCCTGGCTCACCGGGGACTTCTCCGGCGTGATGGCCGGTCGCTACGAGATGCTGTGGGTCGTCGCGGCCCTCACGGTCGTCGTCTACGTCCTGGCCGACCGGTTCACCGTCGTCGGGCTCGGACGCGACACCGCCACCGCGCTCGGCCTCGGCTACCGCGGCGTCATGGCGCTCGGCCTGGGCGTCGTGGCCGTCACGAGCGCCGTCGTCGTGGTCGTCGTGGGCGCGCTGCCGTTCCTCGGCCTGGTGGTCCCCAACGTGGTCAGTCTGCTGCGAGGGGACAATCTGCGCCGGTCCCTCCCGTGGGTCGCGATCGGGGGGGCGGCGCTCGTCCTGGTCTGCGACGTCGTCGGCCGCGTCGTCCGCTACCCGTACGAGATCCCGATCGGCGTCGTCATGGGGGTCGTCGGGGCCGCCGTGTTCCTCTGGCTGCTGCTGCGAAAGGCCCCCGATGTCGGTTGAMSTTAPAGTASQRGAVLGISFAVLGLVVGAVASVFIGVSDVTPATLWSDDGHARQLLTVSRLPRTVAILLAGACTAVAGVVMQMLVRNRFVEPSTVGTSESAALGLLIVTIWAPGMALPGKIGVGAVFAVAGTCLFLLVLRAVPIRSVVTVPLVGIMLGGVIGAVSAYIAFRYDLMQTLSAWLTGDFSGVMAGRYEMLWVVAALTVVVYVLADRFTVVGLGRDTATALGLGYRGVMALGLGVVAVTSAVVVVVVGALPFLGLVVPNVVSLLRGDNLRRSLPWVAIGGAALVLVCDVVGRVVRYPYEIPIGVVMGVVGAAVFLWLLLRKAPDVGPGPT0003770_8158DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_01962999yclQ_2COG4607Petrobactin-binding protein YclQGTGAGCGTTCGCTCCCTGCGCCGCACGGCCGCCGCCGTCGTGCCCGCCGCCGTCCTGGCGCTTTCCCTGTCGGCCTGCGCCGGCACCGACGAGGCCGACGCCGGATCCGAGGCCGACGCCGAAACGGCCGCGGAGTCGCCCGGCGCCGAGTCGGCGACCATCACCATCGAGCACGCCCAGGGCACCACCGAGCTCGACGGCGTCCCGGAGAAGATCTTCACCTTCGACTACGCGGCCCTGTCGGTGCTCGACGCGCTCGACGTCGACGTCGCCGGCGTGGCCAAGTCCAACCTGCCCGAGGCGTTCTCCGACTACGCGAGCGACGACGTGACCGACATCGGCACCATCTTCGAGCCCGACTACGAGACGGTCGCCGCCGAGCAGCCCGACCTGATCATCGTCGCGGGTCGGTCGTCCGCGGCCTACCCCGACCTGTCGGAGATCGCGCCGACCATCGACCTGTCCAACGACTGGGCCTCGTTCCACGACTCCGTGGTCGCCAACACCGAGCTGCTCGGCGAGGCCGTCGGCGCCGAGGAGGGTGTCGACGAGCTGGTCGCGGAGCTCGACGAGTCCGTCGCCGCCGCACAGCAGGCCGCCGAGGGCGCGGGTACCGGCCTGATCGTGCTGACCTCCGGCGGCGAGGTCACCGCCTACGGTCCGGGATCCCGTTTCGGCTACCTGCACGACACGCTCGGCGTCGAGCCCGCCGTCGAGGACGTCGAGGCGGAGACGCACGGCGAGGCGATCTCGTTCGAGTTCATCCTCGAGTCCGACCCCGACTGGCTGTTCGTCCTGGACCGGGACGCCGCCATCGGCGAGGGCACCGACAACGCCGAGCAGGTCCTCGACAACGCCGTCGTCCACGAGACGACCGCCTGGGCCGAGGAGCAGGTCGTCTACCTCGACCCCGTGGCCTGGTACATCGTCAACGGCGGCGTCCCGACTCTGACCGGCATGGCGGACGAGGTCACCACGGCGCTCCAGGACGCCTCCTGAMSVRSLRRTAAAVVPAAVLALSLSACAGTDEADAGSEADAETAAESPGAESATITIEHAQGTTELDGVPEKIFTFDYAALSVLDALDVDVAGVAKSNLPEAFSDYASDDVTDIGTIFEPDYETVAAEQPDLIIVAGRSSAAYPDLSEIAPTIDLSNDWASFHDSVVANTELLGEAVGAEEGVDELVAELDESVAAAQQAAEGAGTGLIVLTSGGEVTAYGPGSRFGYLHDTLGVEPAVEDVEAETHGEAISFEFILESDPDWLFVLDRDAAIGEGTDNAEQVLDNAVVHETTAWAEEQVVYLDPVAWYIVNGGVPTLTGMADEVTTALQDASPGPT0003765_3419DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
AK018_019631425folC_2COG0285Dihydrofolate synthase/folylpolyglutamate synthaseGTGAGCGACGAGACCGGCAGGACCAGGAAGCAGAAGGCCGACGAGCGCAAGGCGGCCCGCACCGCGGCCGAGGACGCCGCCGCCCGGGAGGACCTCGAGCGCATCTACACCCACATCGTGTCCCGGGCCCCGGAGCACGACGTCGAGCCCACGATCGACGACCGCGTCGGCAGGCTGCTCGAGCTGCTCGGCGACCCCCAGCGCACGTTCCGGGTCATCCACCTGACCGGCACCAACGGCAAGTCCTCGACGGCCCGCATGGCCGAGCGCCTGGTCCGTGAGCACGGTCTGCGCACCGGGCTCTTCACCTCGCCGCACCTGAGCAGCGTCACCGAGCGCATCCAGGTCGACGGCGAACCGCTCGACGCGGTGCGGTTCGTCGAGGTCTGGAACGACGTCCACCCGTACATCCAGGTGGTCGACGCCGAGCTCGAGGCCGAGGGGAAGTCCCCGCTGCACTTCTTCGAGGTGCTGACCGCCATGGCGTTCGCCGCCTTCGCCGACAACCCGGTCGACGTCGCCGTCCTGGAGGTCGGCATGGGGGGCACCTGGGACTGCACCAACACGGCGGACGGCGACGTCGCCGTGATCACGCCGGTCAGCGTGGACCACGAGAAGTGGCTGGGCTCGTCGCCGGCGCAGATCGCCACGGTCAAGGCGGGCATCATCAAGCCGGGTGCCACCGCCCTGACCGCGGCCCAGCGACCCGACGTCGACGAGGTCCTGGCCGAGCGGGCGGCCGAGGTCGGGGCCCGCCTGCTGCGCGAGGACGTCGACCTGGAGGTGCTCGACCGCAAGGTCGCCGTCGGCGGTCAGCTGGTCGCCCTGCGCACGCCGGCAGCCACGTACACCGAGGTGCTGGTCCCGCTGCACGGCGCCCACCAGGCCCACAACGCCCTGCTGGCGCTGGGCGCGGTCGAACAGCTTCTGGGCGGACGGGCGCTGGACGGCGGGGTCGTGGAGACCGCGTTCGCCGACGTGGCGGTGCCCGGCCGTCTCGAGCTGGTGCGCTCGAGCCCGACGGTGCTGGTCGACGTCGCCCACAACCCGCACGGTGCGGAGGCTCTGGTCGCGGCGCTGGACGAGGCGTTCACGCTGCGCACCGTCGTCGGCGTGGTCGGGATCATGGCGGACAAGGACGCGGAGGGTCTGCTGGCGGCGCTGGAGCCCGGGCTGTCCCAGGTGGTCCTCACGCGCAACTCGTCGGAGCGGTCGGCGGACCCGTTCGCGGTCGCCGAGATCGCCCGCGACGTGTTCGGCGAGGACCGGGTGCACGTCACCGAGCGGCTGGACGAGGCGCTGCAGGTCGCCACGAACCTGGTGGAGGCGGACGACGTCGTCGGCGTCGGTACGGGCACGGGGGTCGTGGTGACGGGGTCGGTGATCACCGTGGCCGACGCGCGGATCCTCCTGGGTCGGGGGTGAMSDETGRTRKQKADERKAARTAAEDAAAREDLERIYTHIVSRAPEHDVEPTIDDRVGRLLELLGDPQRTFRVIHLTGTNGKSSTARMAERLVREHGLRTGLFTSPHLSSVTERIQVDGEPLDAVRFVEVWNDVHPYIQVVDAELEAEGKSPLHFFEVLTAMAFAAFADNPVDVAVLEVGMGGTWDCTNTADGDVAVITPVSVDHEKWLGSSPAQIATVKAGIIKPGATALTAAQRPDVDEVLAERAAEVGARLLREDVDLEVLDRKVAVGGQLVALRTPAATYTEVLVPLHGAHQAHNALLALGAVEQLLGGRALDGGVVETAFADVAVPGRLELVRSSPTVLVDVAHNPHGAEALVAALDEAFTLRTVVGVVGIMADKDAEGLLAALEPGLSQVVLTRNSSERSADPFAVAEIARDVFGEDRVHVTERLDEALQVATNLVEADDVVGVGTGTGVVVTGSVITVADARILLGRGPGPT0007975_551DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007975-folC-K11754NANA
AK018_019643318ileS_2COG0060Isoleucine--tRNA ligaseATGGCCTACCCGCTGCACCGCACGCCCGAACCCGCCCCCGGCACCACGCCCGGCGAGGCGTTCGGCATCCCCGCGTCCCCGCAGCTGCCGCAGATCGAGCGCGACGCGCTGGCGTACTGGGAGGCCGACGACACGTTCCGCGCGTCGGTCGCCAAGAACCCTGCTGGGGAGAACGGCGAGAACGAGTTCGTCTTCTACGACGGCCCGCCGTTCGCCAACGGGCTGCCGCACTACGGCCACCTGCTGACCGGCTACGTCAAGGACGTCGTGCCGCGCTACCAGACGATGCGCGGCAGGCACGTCGAGAGGCGCTTCGGCTGGGACACCCACGGCCTGCCCGCCGAGCTGGAGGCGATGAGCCAGCTCGGCATCAAGACCAAGGACGAGATCCTCGAGCTCGGCATCGAGACGTTCAACGACGCCTGCCGCACCTCGGTGCTGAAGTACACCGCCGAGTGGCGCGAGTACGTCACCCGTCAGGCGCGCTGGGTCGACTTCGACCACGACTACAAGACCTTCAACCCCGACTACATGGAGTCGGTGATCTGGGCGTTCTCCGAGCTGTACCGCAAGGGGCTCGTCTACGAGGACTTCCGCGTCCTGCCGTACTGCTGGAACGACCAGACACCGCTGTCCAACCACGAGCTGCGCATGGACGACGACGTCTACCAGAACCGTCAGGACCCGGCGGTGACCGTGGGCCTCGACGTGACGTCCGTGCCCGACGGCGGTACCGACGTCGTGCGTCCCGGCGACAAGCTGCTCGTGTGGACGACCACGCCCTGGACGCTGCCGTCCAACCTGCTCGTCATGGTCGGGCCGGACATCGACTACGTCGTCGTCGAGGCCGCGCCGACCGGCACGCCGCAACGGTTCGTGCTCGCCGAGGCGCTCGTGGGCGCCTACGCCCGCGAGCTGACCGACGAGGGCGCCGAGGAGCCCCGCGTCGTGGGTCGCCTGACGGGCCGCGACCTGCTGGAGGTCACCTACGCCCCGCCGTTCTCCTACTACGCCGGGCGCGAGCGGGCCCACCGGGTCGTCGAGGCCGACTTCGTCACCACCACGGACGGCACCGGCCTGGTGCACTCCGCCGGCGCGTTCGGCGAGGACGACAAGATCGTCTGCGACCGCGAGGGCGTCGCGTCGGTCATGCCCGTCAAGGCCGACGGGACGTTCGTGCACCCCGTGGACGAGTACGCGGGCCTGCAGGTCTTCGACGCCAACGCCCCGATCATCGACCACCTCAAGGCGCGCACCCGCGGGGAGGCCGACGCCGGGTCGGTCAGCGCCGGGACGGTGCTGCTGCGCCGCGAGTCCTACGACCACGCCTACCCGCACTGCTGGCGCTGCCGGCAGCCGCTGGTGTACATGGGCGTGTCCTCCTGGTTCGTGGAGGTCACCAAGATCAAGGAGCGGATGCTCGAGCTCAACGACCAGATCTCCTGGACGCCGGACCACATCCAGCACGGCCAGTTCGGCAAGTGGCTGGCCAACGCCCGCGACTGGTCCATCACCCGCAACCGGTTCTGGGGCTCCCCGGTGCCGGTCTGGAAGTCCGACGACCCCGCCTACCCGCGCGTCGACGTCTACGGCTCCTTCGCCGAGCTCGAGCGCGACTTCGGTACCCTGCCGCGCAACGCGGCGGGCGAGCCGGACCTGCACCGCCCGTTCGTCGACGACCTCACCCGGCCCAACCCCGACGACCCGACAGGCCGCTCCACCATGCGGCGCGTCGAGGACGTCCTCGACGTCTGGTTCGACTCCGGCTCCATGCCGTACGCCCAGGTGCACCACCCGTTCGAGAACCGCGAGTGGTTCGAGCACCACTACCCGGGCGACTTCATCGTCGAGTACATCGGCCAGACCCGCGGCTGGTTCTACACGCTGCACATCCTGGCCACCGCGCTGTTCGACCGGCCCGCGTTCCGCTCCGCGGTCTCGCACGGCATCGTGCTCGGCTCCGACGGGCGCAAGATGAGCAAGTCGCTGCGCAACTACCCGGACGTCAACGAAGTCTTCGACCGCGACGGCTCGGACGCCATGCGCTGGTTCCTCATGTCGTCGCCGATCCTGCGCGGCGGCAACCTCGTGGTCACCGAGGACGGCATCCGCGACGCCGTGCGCCAGGTGCTGCTGCCGCTGTGGAGCACGTACTACTTCTTCACCCTGTACGCGAACAGCGCGAGCGGTTCCGAGGGCTCCGCCGCGGGATACCTCGCGAAGCCCGTGACGGCCGAGCGCGTGGCCGGGCTGCCCGCCCTGGACCGCTACCTCCTGGCGCGCACCCACGACCTCGTCGACCGCGTGACCGACCAGCTCGACGCCTACGACGTCGCCGGGGCCTGCGAGACCGTGCGCGAGCACCTCGACGTCCTCACCAACTGGTACGTGCGCACCCAGCGCGACCGGTTCTGGGCCGAGGACGCCGACGCGTTCGACACCCTGTACACCGCCCTCGAGGTGCTGTGCCGCGTGATGGCACCGCTCGCCCCGCTGGTGACCGAGGAGATCTGGCGCGGCCTGACCGGCGGGCGCTCGGTGCACCTGGCCGAGTGGCCGACGTCGGACACCGTGCCCGCCCTGGTGCGCGACGACGAGCTCGTCGCCGCCATGGACGAGGTGCGCGCCGTCGTCTCCTCCACCCTGGCGCTGCGCAAGGCCAACCAGCTGCGGGTGCGCCAGCCGCTGGCCCGCCTCACCGTCGCCGTCCCGGACCCGGAGGCCCTCGCGGACTACACCGGCCTGCTGACCGGCGAGCTGAACGTCAAGGCCGTCGATCTGGTCGTGGCCGACGCCGCCGCATCTGAGCGGTTCGGGATCACCGAGCGGCTCGCCGTCAACGCCCGCGCCGCCGGGCCGCGGCTGGGGCGCGGCGTGCAGGCGGTCATCAAGGCCGCCAAGACCGGTGCCTGGCACCAGGCCGACGGCGAGGTCGTGGTGACCACCGACGACGGCGAGGTGCCGCTGCTGGCGTCCGAGTACGAGCTGACCACCGTCGTGGGCTCCGAGGCCGGTGCCGACGTGGCCGCGTCCGTGCTGCCCGGCGGCGGGTTCGTGGTGCTCGACCTCGCTCTGGACGACGCACTGCGCGCCGAGGGGTACGCCCGCGACGTCGTGCGCGACGTCCAGGACGCCCGCAAGGCCGCCGGTCTCGAGGTGAGCGACCGCATCGACCTGGCGCTCGGGGTGCCGACCGAGCACGTGGCGGCCGTCGAGGCGCACCGCGACCTGGTGATGCGCGAGACCCTGGCCACGTCGATGGTGGTGACCGGCGTCGACGGCTCCGAGCGGACGGTCGACGTCACTCGCGCGAGGTAGMAYPLHRTPEPAPGTTPGEAFGIPASPQLPQIERDALAYWEADDTFRASVAKNPAGENGENEFVFYDGPPFANGLPHYGHLLTGYVKDVVPRYQTMRGRHVERRFGWDTHGLPAELEAMSQLGIKTKDEILELGIETFNDACRTSVLKYTAEWREYVTRQARWVDFDHDYKTFNPDYMESVIWAFSELYRKGLVYEDFRVLPYCWNDQTPLSNHELRMDDDVYQNRQDPAVTVGLDVTSVPDGGTDVVRPGDKLLVWTTTPWTLPSNLLVMVGPDIDYVVVEAAPTGTPQRFVLAEALVGAYARELTDEGAEEPRVVGRLTGRDLLEVTYAPPFSYYAGRERAHRVVEADFVTTTDGTGLVHSAGAFGEDDKIVCDREGVASVMPVKADGTFVHPVDEYAGLQVFDANAPIIDHLKARTRGEADAGSVSAGTVLLRRESYDHAYPHCWRCRQPLVYMGVSSWFVEVTKIKERMLELNDQISWTPDHIQHGQFGKWLANARDWSITRNRFWGSPVPVWKSDDPAYPRVDVYGSFAELERDFGTLPRNAAGEPDLHRPFVDDLTRPNPDDPTGRSTMRRVEDVLDVWFDSGSMPYAQVHHPFENREWFEHHYPGDFIVEYIGQTRGWFYTLHILATALFDRPAFRSAVSHGIVLGSDGRKMSKSLRNYPDVNEVFDRDGSDAMRWFLMSSPILRGGNLVVTEDGIRDAVRQVLLPLWSTYYFFTLYANSASGSEGSAAGYLAKPVTAERVAGLPALDRYLLARTHDLVDRVTDQLDAYDVAGACETVREHLDVLTNWYVRTQRDRFWAEDADAFDTLYTALEVLCRVMAPLAPLVTEEIWRGLTGGRSVHLAEWPTSDTVPALVRDDELVAAMDEVRAVVSSTLALRKANQLRVRQPLARLTVAVPDPEALADYTGLLTGELNVKAVDLVVADAAASERFGITERLAVNARAAGPRLGRGVQAVIKAAKTGAWHQADGEVVVTTDDGEVPLLASEYELTTVVGSEAGADVAASVLPGGGFVVLDLALDDALRAEGYARDVVRDVQDARKAAGLEVSDRIDLALGVPTEHVAAVEAHRDLVMRETLATSMVVTGVDGSERTVDVTRARNANANANANA
AK018_01965633hypothetical proteinGTGCCCACGAGTGACGTGATCTGGGAGGCGGTGCACGCGGAGCGGCGCCGGCTGGTGCGCGACCTCACCGGTCTGCCCCACGACCGGTGGACCGTCCCGTCCCTGGTCCCCGGGTGGTCGGTCCACGACGTGCTCGCGCACCTCGTGGACAGCGCCGTCACGACCCGCCGAGCGTTCTGGCGCCAGATGGTCGCCGCCCGGTTCGACTTCGACCGGGTGAACGAGCGCGGTGTGGCGCGCTGCCGCGCCACGGACCCGACCGTGACGCTGGAGTCCTTCCGCGCGGTGGTCGACCGCACCGACACACCCCCGGGTCCGCTCGCCGCGCGCCTCGTCGAGGCCTACGTCCACGGGGAGGACATCCGCCGGCCCCTCGGTATCGACGCGTCCTATCCCGCAGAGGCCGTCATGCCGGCGCTGGAGTACCTGGTCCGGACCGGCGCACGCTTCGGGGGCGGGCGCGAGCGCGTCGCAGGGCTGCGTCTCGAGCCGGTCGACGCCGAGGGTGCGCTGGGCCGTGGCTCCTCGGTCCGTGGCCCCGCCGTCGCCCTGCTGCTGGCGGTGAGCGGACGTCGTGCCGGGCTCGCCGACCTCTCCGGGAGCGGGGTCGCGCTCCTGGCCGAGCGTCTGTGAMPTSDVIWEAVHAERRRLVRDLTGLPHDRWTVPSLVPGWSVHDVLAHLVDSAVTTRRAFWRQMVAARFDFDRVNERGVARCRATDPTVTLESFRAVVDRTDTPPGPLAARLVEAYVHGEDIRRPLGIDASYPAEAVMPALEYLVRTGARFGGGRERVAGLRLEPVDAEGALGRGSSVRGPAVALLLAVSGRRAGLADLSGSGVALLAERLNANANANANA
AK018_019661347rfnT_2Riboflavin transporter RfnTATGCGTGCCGAGAACCGCACGCACGGTGCCGCACGTCCCGCCACGCCGTCGGCCGACGGGACCCAGCGCCGGACCCTGCGCGTGCTGGTGGCCGCCCAGGTCCTGTCCGGAGCCGGGCTGGCCGCCGGGATCACGGTGGGTGCCCTGCTGGTGGCCGAGCTGCTCGGGTCGGCACGGTTCGCCGGGGTGCCCGCCGCGCTGTTCACCGGCGGGTCCGCCGCCGCGGCCCTGGTGGTGGGTCGCCTGTCGCAGCGGTACGGGCGGCGCGCCGGCCTCACGTTCGGGTACGTCGTCGGGGCGCTCGGGGCGTTCGTCGTCGTGCTGGCGGCCGTCGTGGCGAACGTCGCGCTGCTCCTCGTGGCCTTCGCGCTCTACGGAGCGGGCACCGCGACGAACCTGCAGGCCCGCTACGCGGGAGCCGACCTGGCACGGCCGGACCACCAGGCCCGCGCCGTGAGCACGGTGCTCGTGGCCACCACGGTCGGGGCCGTCGCCGGACCGAACCTCGTGGGTGTCATGGGCGAGCTCGCCCAGGGCTGGGGCGTCCCGGCGCTGGCCGGGCCGTTCCTCCTGGGCGGCGCGGCGTACGCCGGCGCGGCGGTCGTGCTGTGGGCCGCGTTGCGCCCCGACCCGCTGCTGCTGGCCCGGTCCCGGGCGCTGCAGCGGGAGACGCCGGTGGCTGCGACGCCGTCCACGGACCTTCCGGACTCCGCGTCCGCCACCGCCGGACCCACCGGAGACGACGGCGGCACCGCGGCACCGCCGTCGGGCACCGCCACGCGAGGCCCGACGGTGCGCCGCGCCGTGCTGCTCGCCGGGACGGTCATGGTCCTCACGCAGGGTGTGATGGTCGCGATCATGACGATGACGCCGATCCACATGGCCCACCACGGGCACGCGGTGTCCACCGCCGGGCTGGTCATCGCCGTGCACGTGGGGATGATGTACCTGCCCGCGCCGCTGTCGGGCTGGCTGACCGACCGGTACGGGCCGTTGCGCGTCGCCGTCGGTGCGGCCGCCACGCTCCTGGCTGCCGGCGTCGTGTCCGCGGCGGTACCGCCGTCGTCCGTGGCCGGCCTGGCCGTGGGGCTGGGTCTGCTGGGCCTCGGCTGGAGCCTGGGCCTCGTGGCCGGCACAGCCCTGCTGACCACCTCGGTGCCGCTGGCGACCAGGGCGCGGACCCAGGGCGCCGTGGACCTCGCGGTGGCGCTGGCCGGGGCCGCCGGCGGGCTGGGATCCGGTTTCGTCGTCGCCTCGTCGAGCTTCGCGGCGCTCGCCCTCGGCGGCGGACTGCTGGCGCTGGCCGTGCTGCCCGTGATCGCGCTGACGGCGCGCCCCCGGTCCTGAMRAENRTHGAARPATPSADGTQRRTLRVLVAAQVLSGAGLAAGITVGALLVAELLGSARFAGVPAALFTGGSAAAALVVGRLSQRYGRRAGLTFGYVVGALGAFVVVLAAVVANVALLLVAFALYGAGTATNLQARYAGADLARPDHQARAVSTVLVATTVGAVAGPNLVGVMGELAQGWGVPALAGPFLLGGAAYAGAAVVLWAALRPDPLLLARSRALQRETPVAATPSTDLPDSASATAGPTGDDGGTAAPPSGTATRGPTVRRAVLLAGTVMVLTQGVMVAIMTMTPIHMAHHGHAVSTAGLVIAVHVGMMYLPAPLSGWLTDRYGPLRVAVGAAATLLAAGVVSAAVPPSSVAGLAVGLGLLGLGWSLGLVAGTALLTTSVPLATRARTQGAVDLAVALAGAAGGLGSGFVVASSSFAALALGGGLLALAVLPVIALTARPRSNANANANANA
AK018_01967789COG4221putative oxidoreductaseATGAGCACCACCCCGTCCACCCTCGCCCGCCGCGCTCTGGTCACCGGCGCGTCGTCGGGCATCGGCGCCGCCACGGTGCGCCGGCTGCGCGCCGAGGGCTGGCAGGTCGTCGCGTCCGCCCGCCGCGCGGACCGGCTGGAGGCCCTGGCCGCCGAGACCGGGGCCGAGGCGTACCCGCTGGACGTGACCGACGAGGCGGGCGTGGCCGAACTGGTGCGGTACCTGGAGTCGACCGGCGGGCTGGACGCCGTGGTGAACAACGCCGGGGGAGCGCTCGGCCTGGATCGGGTCGAGGACGGCGACCTGGACGGCTGGCGGCACATGTACGAGCTCAACGTGCTCGGCACGCTGCGGGTCACGCAGGCGGTGCTGCCGCTGCTGCGCGCCTCCGCCGAGGCGTCCGGGCCCGACGGCGGCGCCGACGTCGTCGTGGTCACCTCGACCGCCGCGCACGGCGCCTACGAGGGTGGCGCCGGGTACACGGGCGTCAAGCACGCCGAACGGATGCTGACCACGACGCTGCGCTGGGAGATCGCCGGCGAACCGATCCGCGTCATGGAGATCGCGCCCGGCAACGTCGCGACCGAGGAGTTCTCCCTGGTGCGGTTCGACGGCGACGCCGACCGGGCGGCCGCCGTCTACGAGGGGTACCGGCCGCTGGTCGCCGAGGACGTCGCCGACGCCGTCGCCTGGTCCCTGACCCGGCCGGCGCACGTCAACACCGACCTGCTGATCCTGCGGCCCCGCGCTCAGGCGCACAACCAGAAGATCGCGCGCACCGGCGTCTGAMSTTPSTLARRALVTGASSGIGAATVRRLRAEGWQVVASARRADRLEALAAETGAEAYPLDVTDEAGVAELVRYLESTGGLDAVVNNAGGALGLDRVEDGDLDGWRHMYELNVLGTLRVTQAVLPLLRASAEASGPDGGADVVVVTSTAAHGAYEGGAGYTGVKHAERMLTTTLRWEIAGEPIRVMEIAPGNVATEEFSLVRFDGDADRAAAVYEGYRPLVAEDVADAVAWSLTRPAHVNTDLLILRPRAQAHNQKIARTGVPGPT0021285_782DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066NANA
AK018_019681344tpa_3COG0161Taurine--pyruvate aminotransferaseATGCCTCCCACCGCCGCCCACACGGGCGCTGCACCCACCGGCGCCGCGCTCGACGACGCCGTGCTCGAGGCCGACCACCGGTACGTGCTGCACTCCTGGTCCGCCCAGGCGCACCTGCCGTCCTTCGTCGTCGCCGGCGGCGCCGGGTCGAGGGTGTGGGACCACGCCGGGACCACCTGGCTGGACCTCTCCAGCCAGCTCGTCAACACCAACATCGGCCACCAGCACCCCGCCGTGGTCGCCGCGATCAAGGAGCAGGCGGACCTGCTCACCACGGTCTCGCCCGCCACCGCCAACCGGACCCGCGGCCGCGCCGCCGAACGCGTCCTCGCCCGTGCCCCGGAGGGTTTCGCCAAGGTGTTCTTCACCAACGGCGGCGCCGACGCCAACGAGAACGCCGTGCGCATGGCCCGCCTGCACACCGGACGCGACAAGGTGATCTCCGCCTACCGCTCCTACCACGGCAACACCGGTGCCGCCGTCGTCGCCACGGGGGACTGGCGCCGCGTGCCCAACGAGTACGCGCGCGGCCACGTGCACGCCTTCGGCCCCTACCTGTACCGCTCGGAGTTCTGGGCCACCACCGAGGCCGAGGAGTGCGCACGCGCGCTGCACCACCTCGAACGGGTCGTGCAGTGCGAGGGCCCGACGTCCGTCGCCGCGGTCCTGCTCGAGACGATCCCCGGCACCGCCGGCGTCCTCGTGCCGCCGCCCGGCTACCTGGCCGGCGTGCGCGAGATCTGTGACCGGTACGGCATCGTGCTGATCCTCGACGAGGTGATGGCCGGCTTCGGACGCACCGGGTCCTGGTTCGCCTTCGAGGCCCACGACGTCGTGCCCGACCTGATCACCTTCGCCAAGGGCGTCAACTCGGGCTACGTGCCCGCCGGCGGCGTCCTCGTCAGCGAGGCGATCGCCGCGACCTTCGACGAGCGGGTCTTCCCCGGCGGGCTCACCTACTCCGGGCACCCGCTGGCGATGGCCGCGATCGTCGCCGCCCTGGACGCCATGGCGGCCGAGGGAGTCGTCGAGAACGCCGCCCGGGTCGGACGCGACGTGCTCGGTCCCGGCCTCGCGGCGCTCGCGGACGAGAACCCGCTCGTCGGCGAGGTGCGGGGGACGGGCGTGTTCTGGGCGGTCGAGCTCGTCGCCGACCAGGACACCCGCGAGCCGCTGGACGCCGCGACCGTGGCACGGATCAAGGCGCTCTGCCTCGAACGTGGTGTGCTGCCGTTCGTCGCCGAGAACCGCGTCCACGTGGTCCCGCCCTGCGTCGTCACCGACGACGAGGCGCGCGAGGGCCTCGCGGTCCTCGCCGGCGTGCTGCGCGACGTCGCCGCCTGAMPPTAAHTGAAPTGAALDDAVLEADHRYVLHSWSAQAHLPSFVVAGGAGSRVWDHAGTTWLDLSSQLVNTNIGHQHPAVVAAIKEQADLLTTVSPATANRTRGRAAERVLARAPEGFAKVFFTNGGADANENAVRMARLHTGRDKVISAYRSYHGNTGAAVVATGDWRRVPNEYARGHVHAFGPYLYRSEFWATTEAEECARALHHLERVVQCEGPTSVAAVLLETIPGTAGVLVPPPGYLAGVREICDRYGIVLILDEVMAGFGRTGSWFAFEAHDVVPDLITFAKGVNSGYVPAGGVLVSEAIAATFDERVFPGGLTYSGHPLAMAAIVAALDAMAAEGVVENAARVGRDVLGPGLAALADENPLVGEVRGTGVFWAVELVADQDTREPLDAATVARIKALCLERGVLPFVAENRVHVVPPCVVTDDEAREGLAVLAGVLRDVAANANANANANA
AK018_019691149hypothetical proteinATGAAGCACACCGCACGGCCCGTCGTCCGGACCGGGGCCCTGGCAGCCGCGGCAGCCCTCGCCCTGACCGCGTGCGCCGGGGAGGACGAACCCACCACGTCGGGCGACGGCGAGGAGCTGACCCCCGTCACGCTCCAGCTGCAGTGGGTCGCCCAGGCCCAGTTCGCCGGCTACTACGCCGCCCTCGACCAGGGCTTCTACGAGGACGCCGGCCTGGACGTCACGATCCAGGAGGCCGGCACCGACACCGTCCCCATCGACGTGCTCGCCGCGGGCGACGCCGACTACGCGATCTCCTGGGTGCCCAAGGTGCTCGGCTCCATCGAGCAGGGTGCCGAGGTCACCAACGTCGCCCAGGTGTTCGAGCGCTCGGGGACGCTGCAGGTCGCCATGGCCGACTCCGGCATCGAGGGCCCCGAGGACCTCGCGGGCAAGAACGTCGGTTCCTGGGGCTACGGCAACGAGTGGGAGCTGTTCGCCGGCATGCAGCAGGCCGGGCTCGACACCAGCGAGGACATCACCCTGGTCCAGCAGGCGTTCGACATGAACGGGTTCCTGGCGGGGGACATCGACGCCGCCCAGGCCATGACGTACAACGAGTACGCCCAGGTGCTCGAGACGGTCAACCCCGACACCGGTGAGCTCTACCAGCCCGAGGACCTGACCGTCATCGACTGGAACGAGGTCGGCACCGCCATGCTGCAGGACGCCATCTGGGCCGACGCCACCCGCCTGGCCGACGACGAGGCCTACGCCGAGACCACGGTCGACTTCATCAAGGCGTCCCTGCAGGGCTGGGCCTACGCCCGCGACAACGCCCAGGAGGCGGCCGACATCGTCACCGCCGCCGGGTCCACGCTCGGCACCAGCCACCAGCTGTGGCAGACCAACGAGACGAACAAGCTCATCTGGCCGTCCACGTCCGGCGTCGGCACCATCAACGCCGACCAGTGGCAGCAGACCGTCGACATCGCCATGAACACCCAGAACGAGACCGGCGCGACCATCATCACCAGCGAGCCGCCGGAGACCGCCTACACCAACGAGTACGTCGAGCAGGCGCTCGCCGAGCTCACCGACGAGGGCGTCGACGTCATGGGCGAGGACTTCGCCCCGATCGACGTCACTCTCAACGAGGGCGGCGAGTAGMKHTARPVVRTGALAAAAALALTACAGEDEPTTSGDGEELTPVTLQLQWVAQAQFAGYYAALDQGFYEDAGLDVTIQEAGTDTVPIDVLAAGDADYAISWVPKVLGSIEQGAEVTNVAQVFERSGTLQVAMADSGIEGPEDLAGKNVGSWGYGNEWELFAGMQQAGLDTSEDITLVQQAFDMNGFLAGDIDAAQAMTYNEYAQVLETVNPDTGELYQPEDLTVIDWNEVGTAMLQDAIWADATRLADDEAYAETTVDFIKASLQGWAYARDNAQEAADIVTAAGSTLGTSHQLWQTNETNKLIWPSTSGVGTINADQWQQTVDIAMNTQNETGATIITSEPPETAYTNEYVEQALAELTDEGVDVMGEDFAPIDVTLNEGGEPGPT0001135_762DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
AK018_01970783ribX_3Riboflavin transport system permease protein RibXATGACCCGACCAGCGACGACCACCTGGCGCCGCGTCGAGGTCGTCCTCGCCCCGGTCCTGCTCGGGCTGCTCGCCCTCGCGGCGTGGGAGGCCGCCGTCGTCGTCCTCGAGCTGCGCCCGTTCGTGGTGCCCAGCCCGTCGGCCATCGGCGCCGAGCTGACCGGCAACGTCGGCACCATCGCCACCGCGGCGCTCTCCACGGCGCTCAACGCCTGGTGGGGCCTGGTGATCGGCGTGGTCGGCGCGCTGCTGGCGGCCGCGGTCTCCGCCGCGGTGCGCACCCTCGACGAGATGTCGGCGCCCCTGGCCGCGGCGGCCGCCGTCGTGCCGATCGTCGCCCTCGCCCCGGTGCTGTACACGATGTTCGGCGCGAACGTCCAGACCGCGCGGGTCGCGATCGCCGCGATCGTGTCCTTCGTGCCGGTGTACGTCAACACCCTGCGCGGCCTGCGCACCGTGGCCCCCGTGCACCGCGACCTGCTGCGCGCCTACGCCGCCACCCGCCGCCAGGCCACGCTCACCGTCACCCTGCCCGGCGCCCTGCCGTTCTTCTTCAGCGGCCTGCGCGTCGCCACGTCGCTGGCCGTGATCTCCGCCCTGGTCGCCGAGTACTTCGGCGGGCCGGTGGACGGGCTCGGCAAGGCGATCACCTCGGCCGTGTCGTCCAGCAACTATCCGCTGGCCTGGGCCTACGTCGTGGGAGCCGTCGTCGTCGGGCTCCTGTTCTTCTGCGGCAGCTCCGGGCTGGAGCGGGCGGTCCTGCACCGCCGCTCCGGCCGGTGAMTRPATTTWRRVEVVLAPVLLGLLALAAWEAAVVVLELRPFVVPSPSAIGAELTGNVGTIATAALSTALNAWWGLVIGVVGALLAAAVSAAVRTLDEMSAPLAAAAAVVPIVALAPVLYTMFGANVQTARVAIAAIVSFVPVYVNTLRGLRTVAPVHRDLLRAYAATRRQATLTVTLPGALPFFFSGLRVATSLAVISALVAEYFGGPVDGLGKAITSAVSSSNYPLAWAYVVGAVVVGLLFFCGSSGLERAVLHRRSGRPGPT0001145_7522DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_01971888btuD_7Vitamin B12 import ATP-binding protein BtuDATGAACACCCCCGCGCCCACCCGCCCGACCGCACCGTCCGCCGGTCCGGCCGACGCGCCGGCCGCCACCGGCACCGAGGCGCACGCCGCGCCCGCCGTCGAGGTCCGCGGCGTCACCCGGCGGTTCTCGTCCCGCTCCGGCGAGGTCGTTGCGTTGTCCGACGTCGACCTGACCGTGCGGGCCGGAGAGTTCGTCTCCCTCATCGGTCCCTCCGGCTGCGGCAAGTCCACCCTGCTGCGGCTGATCGCCGACCTCGACGAGCCCACCGCCGGCGAGCTGGCCGTGTTCGGCCGGCCGCCGCGCGTGGCCCGCCAGAACCACGACTTCGGCATCGCGTTCCAGCAGGCCGGGCTGCTGCCGTGGCGCAGCGTGCGCACCAACGTCGAGCTGCCCCTGGAGCTGCACGGCGCCGGGCGGGCCGCCCGGCGTGCGCGAGCCACCGAGCTGCTGGAGATGGTGGGGCTCGCCGACTTCGTCCAGCACCTGCCGCACCAGCTCTCCGGCGGCATGCAGCAGCGTGTCGCCATCGCCCGGGCGCTGGCCGAACGGCCCAGCCTGCTGCTCATGGACGAACCCTTCGGCGCGCTGGACGAGATGACCCGCGAGCACGTCCAGACCGAGCTGCTGCGCCTGCGCGCCGAGACCGGCGCCGCCGTCGTCTTCGTCACCCACTCCATCCCCGAGGCCGTCTACCTCTCCGACCGCGTCGTCGTGATGTCCGCCCGGCCCGGGCAGGTGCGCGAGGTCGTGCCCGTCGGGCTCGGCGCGGCCCGCGACCGCAGCGACGACGTGCGCGAGGACGACGCCTTCTTCGACCGGGTGCGGGCCGTGCGCGAGGCGTTGCACGGCAGCGACGGCACCACCCCGCGGGGGGTGGACCGGCGATGAMNTPAPTRPTAPSAGPADAPAATGTEAHAAPAVEVRGVTRRFSSRSGEVVALSDVDLTVRAGEFVSLIGPSGCGKSTLLRLIADLDEPTAGELAVFGRPPRVARQNHDFGIAFQQAGLLPWRSVRTNVELPLELHGAGRAARRARATELLEMVGLADFVQHLPHQLSGGMQQRVAIARALAERPSLLLMDEPFGALDEMTREHVQTELLRLRAETGAAVVFVTHSIPEAVYLSDRVVVMSARPGQVREVVPVGLGAARDRSDDVREDDAFFDRVRAVREALHGSDGTTPRGVDRRPGPT0001140_776DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
AK018_01972861hypothetical proteinATGAGACGTCAGGTGCTGCTGGGCGTCGCCGGTGTCGTCGCGCTGGGGCTCGCGTGGGAGGGCTACAAGCTGCTCGCGCCCGACGACGGCGTGGTGGTCGGCGAGCTGACCGTGCTGCCCCGCACGACCGACGTCGCCATGCCGCACCTGTGGGACATGGCGGCCCGTGCCCTGGAACCGGTGAACTCGGCGACCGACGCGCTGCCGCTGTGGGTGGCGGTCCTGGTCGCCGCGGCCTTCACGCTCGGCGTGGCGGCGGTCGGCTGGGTGGTCGGCGTCGTCGTCGGGCTGGCCACCGCCACCGTCATGCAGCGGTTCCGCACCGCCGAATCGGCCCTGCTGCCGTGGGTCGTGCTGTCCCAGACGGTGCCGCTCATCGCCCTCGCCCCGCTGGTGCGCCGCTGGGGCAGCCAGCTCGAGATCGGGGCGTTCGACTGGCAGGACTGGATGTCGGTCGCGGTCATCGCCGCCTACCTGGCGTTCTTCCCCGTGTCGATCGGCGCCCTGCGCGGGCTGTCCTCCCCGGACGCCGTGCACCTGGACCTCATGCGTTCCTACGGCGTCGGGTGGTGGCGCACCTACCGCAGCCTGCGCCTGCCTGCCGCCGTGCCGCACCTGATCCCCGCGCTGCGCCTGGCCGCCGCCAACGCCGTCATCGGCACCGTCGTCGCTGAGGTCTCCATCGGTCTGCGCGGCGGCATCGGCCGGATGATCGTCGAGTTCGGCGCCAGCGCCAGCGCCGACCCCGCCAAGCAGTGGTCGCCGATCTTCGGCGCCGTCCTCGTCGGCCTCGTCGCCGCCGGCGTCTGTGTCCTGATCGCCCGGGCGCTGGCCCGTTACCGCGTCTCGGAGGTCTCATGAMRRQVLLGVAGVVALGLAWEGYKLLAPDDGVVVGELTVLPRTTDVAMPHLWDMAARALEPVNSATDALPLWVAVLVAAAFTLGVAAVGWVVGVVVGLATATVMQRFRTAESALLPWVVLSQTVPLIALAPLVRRWGSQLEIGAFDWQDWMSVAVIAAYLAFFPVSIGALRGLSSPDAVHLDLMRSYGVGWWRTYRSLRLPAAVPHLIPALRLAAANAVIGTVVAEVSIGLRGGIGRMIVEFGASASADPAKQWSPIFGAVLVGLVAAGVCVLIARALARYRVSEVSPGPT0001145_3028DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_019731032Phthiodiolone/phenolphthiodiolone dimycocerosates ketoreductaseATGGACTTCGGTGTCGTCCTGCAGACCGACCCGCCCGCCTCGCGCGTCGTCGACCTCGCGCGCCAGGCCGAGAACCACGGCTTCGACTACGCCTGGACGTTCGACTCCCACCTGCTGTGGCAGGAGCCGTTCGTCATCTACTCGGCGATGCTCGCCGCCACGCGCAGGATCACCGTCGGGCCGATGGTCACCAACCCGGCCACCCGCGACTGGACGGTGCTGGCCTCGCTGTTCGCCACGCTCAACGACATGTACGGCAACCGCACCGTCTGCGGCATCGGACGCGGCGACTCGGCGGTGCGCACCCTCAACGGCCGGCCGTCGAACCTGGCGACCCTGCGCGACGCCGTCGAGGTCATCCGCGAGCTCGGCAACTCCCGTCCGGCCACGGTGGGGGAGCGGACGGTGCAGTTCCCGTGGAGCAAGGGGTCCGCGCTGGACGTGTGGATCGCCGCGTACGGGCCCAAGGCGCTCGCGCTCACGGGCGAGGTGGGCGACGGGTTCATCCTGCAGCTCGCCGACCCCGACATCGCGGCCTGGATGATCAAGGCCGTCCGCGACTCCGCCGAGGCCGCCGGGCGGGACCCCGACGCGATCACGTTCTGCGTCGCCGCCCCCGCCTACACCGGGGACGGCTCCTCGCCCGCCGCCCGGGCGCACATGCGCGAGCAGTGCCGCTGGTTCGGCGGCATGGTCGGCAACCACGTGGCCGACATCGTGGCGCGCTACGGCACGGACTCGGCGATCCCGCAGGCGCTGACCGACTACGTCCGCGACCGCGAGGGCTACGACTACAACGAGCACGGCCGGGCCGGGAACTCGCACACGGCGTTCGTCCCGGACGAGATCGTCGAACGGTTCTGCCTGCTCGGCTCGCCGCACGAGCACGTCGAGAAGCTGCAGGCGCTGCGTGAGCTCGGCGTCGACCAGTTCGCCCTCTACCTGCAGCACGACAACAAGGACGACACGCTGCGCACCTACGGCGAGCGCGTCATCCCGGCCATGCGCGAGCCGGTGGTGGCCAGCGCATGAMDFGVVLQTDPPASRVVDLARQAENHGFDYAWTFDSHLLWQEPFVIYSAMLAATRRITVGPMVTNPATRDWTVLASLFATLNDMYGNRTVCGIGRGDSAVRTLNGRPSNLATLRDAVEVIRELGNSRPATVGERTVQFPWSKGSALDVWIAAYGPKALALTGEVGDGFILQLADPDIAAWMIKAVRDSAEAAGRDPDAITFCVAAPAYTGDGSSPAARAHMREQCRWFGGMVGNHVADIVARYGTDSAIPQALTDYVRDREGYDYNEHGRAGNSHTAFVPDEIVERFCLLGSPHEHVEKLQALRELGVDQFALYLQHDNKDDTLRTYGERVIPAMREPVVASANANANANANA
AK018_019741434D-hydantoinaseATGAAGACCCTCATCACCGGCGGCACCGTCGTCAACGCCAGCGGCCGCTCGCGGGCCGACGTGCTCATCGACGGCGAGCAGATCGTCGCGCTGCTCGAACCCGGCTCGACCCTGTTCGGCGTGGACCTCGCCGCCTCCGTCGACCGGGTGGTCGACGCCACCGGCAAGTACGTCGTGCCCGGCGGCATCGACGCCCACACGCACATGGAGATGCCGTTCGGCGGCACGTTCGCCGCCGACACCTTCGCCACGGGCACGACGGCGGCGGCCTGGGGCGGCACGACCACGATCGTCGACTTCGTGGTCCAGTACCCGGACCAGAACGTCCTCGACCAGTACGCCCAGTGGCACGACAAGGCGGCCGGGAACTGTGCCGTCGACTACGGGTTCCACCAGATCCTGTCCGACGTGCAGGACTCGTCGCTGGCGGCCATGGACGAGCTCATCGACGAGGGCGTGACCAGCTTCAAGCTGTTCATGGCCTACAAGGGCGTGTTCCTGTCCGACGACGGCCAGATCCTGCGGGCCATGCAGAAGGCCGCCGACAACGGCGCCATGATGATGATGCACGCCGAGAACGGCGCCGTCATCGACGTCCTCGTCCAGCAGGCGCTCGCCGCCGGGAACACCTCGCCGTACTTCCACGGCACCACGCGTCCCTGGCAGGCCGAGGCCGAGGCCACGAGCCGGGCCATCATGCTCGCCGACCTCACCGGCGCCCCGCTGTACGTCGTGCACGTCTCGGCCAAGCAGGCCGTCGAGCAGATCGCCCTGGCCCGCGACAAGGGGCAGAACGTGTTCGGCGAGACCTGCCCGCAGTACCTCTACCTCTCCCTGGAGGAGCAGCTCGGCGCCGTCAGCGAGCAGTGGGGCGACTTCGAGGGCGCCAAATGGGTGTGCTCCACCCCGCTGCGCTCGAAGCACGAGGGCCACCAGGACCACATGTGGCAGGCGCTGCGCACCAACGACCTGCAGCTCGTCTCGACCGACCACTGCCCGTTCTGCATGGCCGACCAGAAGGAGCTCGGCCGCGGCGACTTCTCCAAGATCCCCAATGGCATCGGCTCGGTCGAGCACCGCATGGACCTCATGTACCAGGGCGTCGTCACCGGCCAGATCTCGCTGGAGCGCTGGGTCGAGATCACCTCGGTCACCCCGGCGCGGATGTTCGGCATGTACGGCCGCAAGGGCGTGCTCGCCCCGGGCGCCGACGCCGACGTCGTCGTCTACGACCCGGCCGGCCACACCTCCATCGGCGTGGACAAGACCCACCACATGAACCTCGATTACTCGCCCTGGGAGGGGTTCGAGATCGACGGCCACGTCGACACGGTGATCTCGCGCGGCGAGGTCCTCGTCGCCGACGACGAGTTCGTCGGCCGCCTCGGGCACGGCAAGTACGTCAAGCGCGACCTGACCCAGTACCTCGTCTGAMKTLITGGTVVNASGRSRADVLIDGEQIVALLEPGSTLFGVDLAASVDRVVDATGKYVVPGGIDAHTHMEMPFGGTFAADTFATGTTAAAWGGTTTIVDFVVQYPDQNVLDQYAQWHDKAAGNCAVDYGFHQILSDVQDSSLAAMDELIDEGVTSFKLFMAYKGVFLSDDGQILRAMQKAADNGAMMMMHAENGAVIDVLVQQALAAGNTSPYFHGTTRPWQAEAEATSRAIMLADLTGAPLYVVHVSAKQAVEQIALARDKGQNVFGETCPQYLYLSLEEQLGAVSEQWGDFEGAKWVCSTPLRSKHEGHQDHMWQALRTNDLQLVSTDHCPFCMADQKELGRGDFSKIPNGIGSVEHRMDLMYQGVVTGQISLERWVEITSVTPARMFGMYGRKGVLAPGADADVVVYDPAGHTSIGVDKTHHMNLDYSPWEGFEIDGHVDTVISRGEVLVADDEFVGRLGHGKYVKRDLTQYLVPGPT0008880_1074DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0008880-dht|hydA-K01464NANA
AK018_01975849N-carbamoyl-D-amino acid hydrolaseATGAGCGTGGTACGCGTCGCATTCACCCAGGCCCGCTGGGCCGGCGACAAGGAGTCGATGATCGCGCTGCACGAGCGCTGGGCCCGCGAGGCCGCCGACCAGGGCGCCCAGGTCGTCGCCTTCCAGGAGCTGTTCTACGGCCCCTACTTCGGTATCACCCAGGATACCGCCTACTACGACTACGCCGAGTCCGTGCCCGGCCCGACCGTGGACCGGTTCGCCGCGCTGGCCGCCGAGCTCGGCGTCGTCATGGTCCTCCCGGTCTACGAGGAGGAGCAGCCGGGCGTGCTGTACAACACCGCGGCAGTCATCGACGCCGACGGCACCTACCTCGGCAAGTACCGCAAGCACCACATCCCGCACCTGCCGAAGTTCTGGGAGAAGTTCTACTTCCGCCCCGGCAACCTCGGCTACCCCGTCTTCGAGACTGCGGTCGGCAAGATCGGCGTCAACATCTGCTACGACCGCCACTTCCCCGAGGGCTGGCGCGTGCTGGCCCTCAACGGCGCCGAGATCGTCTTCAACCCCAACGCCACCGCCCCCGGCGTCTCCAACCGGCTGTGGGAGATCGAGCAGCCCGCCGCCGCGGCCGCCAACGGCTACTTCATCGTCGCGAACAACCGTGTCGGGCTCGAGGACAACGAGTACGGCGACGAGGCGGTGTCGTTCTACGGCAGCTCGTACGCCGTCGGTCCCGACGGCAACTACGTCGGCGAGGTCGCGAGCTCGAGCGAGGACGAGCTCGTGATCCGGGACCTCGACCTCGGACAGATCCGCGAGGTCCGCCAGCGCTGGCAGTTCTTCCGCGACCGCCGTCCCGACGCCTACGGGCCGATCGTCGCCCCGTGAMSVVRVAFTQARWAGDKESMIALHERWAREAADQGAQVVAFQELFYGPYFGITQDTAYYDYAESVPGPTVDRFAALAAELGVVMVLPVYEEEQPGVLYNTAAVIDADGTYLGKYRKHHIPHLPKFWEKFYFRPGNLGYPVFETAVGKIGVNICYDRHFPEGWRVLALNGAEIVFNPNATAPGVSNRLWEIEQPAAAAANGYFIVANNRVGLEDNEYGDEAVSFYGSSYAVGPDGNYVGEVASSSEDELVIRDLDLGQIREVRQRWQFFRDRRPDAYGPIVAPPGPT0008885_530DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0008885-UPB1_like|pydC-K01431NANA
AK018_019761404ptsJ_2COG1167Vitamin B6 salvage pathway transcriptional repressor PtsJATGCCGCAGCCCCAGCAGCCCGAGCAGGACCTCGACACGGCGGCCCTGGCCGCCCAGATCACCGACCCGAGCCCCCGGGGCATCGCCGCCACGCTGGCGCGCGTCGTACGCTCCGGCGAGCTGCGCCCCGGCGACCGCCTGCCGACCGTGCGGGACCTCGCGGCCGCCCTCGGCGTCAGCCCGGCCACCGTCAGCGGGGCCTTCCAGGCGCTGTCCGCCGTCGGGCTCGTCACCTCACGGGGTCGCGGCGGCACCGTCGTCCTGCCCGAGCCGCGCGGCTGGCTGCCGCCGCGCTACCGGTCGATGGCCGACGGCGGTCACGTCCCGGCGCGGGGCGCCGCCCCGCTCCCCCGCCTGGACCTCTCCGGCGGCACGCCCGACCCCGAGCTGCTCCCCCGGCTGGGCCCGGCGCTGCGCCGGGCCGCCGAGGCCAACCCCGCCGCGGACACGGGCAGCTACCTGGACGCCCCGCTCCTGCCCGAGCTCGAGACGCTGTTCCGCGAGACGTGGCCGTTCCTGCCCCAACGGATGACCGTCGTCGACGGCGCGCTGGACGCGATCGAGCGGACGCTGGAGCAGGTGGCCGGGTTCGGCGACCGGGTCGCGGTCGAGGACCCGGGCTTCCCGCCCGTGCTCGACGTGCTCGACCAGCTCGGGCTGGAACGCGTCCCCCTCGCGCTCGACCGGCACGGGGTGCGGCCCGCGGCGCTGGCGGCCGCCCTCGAGCGCGGGGTGCGCGCCGTCGTGCTGCAGCCGCGCGCCCAGAACCCCACCGGACGCAGCCTGACCTCGACCCGGGCCCGCGAGCTCGCGGGCCTGCTGCGCGCCGAGGGTCCCGACGTCGTCGTCGTCGAGGACGACCACTCGGGCCTCATCGCCTCGGCGCGCGACGTGAGCCTCGGGTCCTACCTGCCCGACCGCGTCGTGCACGTGCGGTCCTTCTCCAAGTCCCACGGACCCGACCTGCGCATCGCGGCCGTGGGCGGACCGGCCACGGTGCTGGACCCGCTCGTCGCGCGGCGCATGCTCGGGCCCGGGTGGACCAGCCGGCTGCTGCAGCGCGTGCTGGCAGACCTGCTCACCGACTCCGACGCGATCGCCGCCGTCGAGCACGCCCGGCGCCTGTACTTCGCCCGGCAGCGCGGGTTCGTCGCCGCGCTGGAACGGCGCGGCGTCCTGGCGCGCGCCGGCGACGGCGTCAACCTGTGGCTGGCGGTCCCCGACGAGGACACCGCGCTGGTGCGGCTGGAGGCCGCAGGGATCCGGGCCGCGCCGGGTGCGCCGTTCCGGGCCGGGCGCGAGGCACGCGGCGAGGGCCCGGCGCACCTGCGGCTCACCGTCGGGATGCTCCGCGAGGACTTCGACGCCGTCGCCGAGGCCGTCGCGGTGGCGGCCCGGCCCTGAMPQPQQPEQDLDTAALAAQITDPSPRGIAATLARVVRSGELRPGDRLPTVRDLAAALGVSPATVSGAFQALSAVGLVTSRGRGGTVVLPEPRGWLPPRYRSMADGGHVPARGAAPLPRLDLSGGTPDPELLPRLGPALRRAAEANPAADTGSYLDAPLLPELETLFRETWPFLPQRMTVVDGALDAIERTLEQVAGFGDRVAVEDPGFPPVLDVLDQLGLERVPLALDRHGVRPAALAAALERGVRAVVLQPRAQNPTGRSLTSTRARELAGLLRAEGPDVVVVEDDHSGLIASARDVSLGSYLPDRVVHVRSFSKSHGPDLRIAAVGGPATVLDPLVARRMLGPGWTSRLLQRVLADLLTDSDAIAAVEHARRLYFARQRGFVAALERRGVLARAGDGVNLWLAVPDEDTALVRLEAAGIRAAPGAPFRAGREARGEGPAHLRLTVGMLREDFDAVAEAVAVAARPNANANANANA
AK018_019771596msrP_2Protein-methionine-sulfoxide reductase catalytic subunit MsrPATGCAGACCCGAGGAACCGGCTGGTGGGCGGCGCTCGCCGGCGTCGTGGCCGCCGGCGCAGGACTGGCGCTGGCCGAGCTCGTCGCCGCGTGGGTGGACCCGACGTCCTCCCCGGTGCTGGCGCTCGGCGGTGTCGTCGTCGACAGCGTGCCGCCGTGGCTGAAGGACTTCGCCGTCGAGTGGTTCGGCACCGCGGACAAGCTCGTGCTGCTGTCCACCATGGGTGTGGTGCTCGCCGCCGGTGCCGCGCTGTCGGGGTGGCTGGAGCTGCGGCGCCCCCCGGCGGGCCGGCTGCTGCTCGGCGGCGTCGGCCTCGTGATGGCCGTGGTCGCGGCGACCCGCCCCGAGGCGACACCACTGTGGGCGCTGCCCGCGGTGATCGGGGTCGGCGTCGCGGTGGTGCTGCTGCGGCTGCTCGTGGCCCGGGTACCGGTGCCCGCCACGCCGGTGCCCGCGACGCCGGCGCCCGCCGGGGCCGGGGCCGGCGCCGGTGCGGCACCCGAGGAACCGCCGTCGGACCGGGGCACCACCCGGCGCACCTTCCTGGTCTGGACGGGGGCGACCGCCGTCGGCGGCGTGCTCGCCCTGGCGGCCTCCCGCACGCTGGCGGCCGGCAGCCGCGCCGTGCAGGTGGTGCGCGAGGCCATCAACCTCCCGGCCCCCACCGCCCCGGCCCCCGAGGTCCCCGCCGGCGCCGACCTCGGCGTCGACGGCGTCCACCCCTACGTGACGGCCAACGAGGACTTCTATCGCATCGACACCGCGTTGCGCGTGCCGCAGGTGGACCCCGGGTCCTGGTCGCTGCGCGTCACCGGGCTGGTGGACGAGCCTTTCGAGATCTCCTGGGACGAGCTCCTCGAGCTGCCGATGACGGAGCACCACGTGACGCTGTGCTGCGTGTCCAACGAGGTCGGCGGCGACCTCATCGACAACGCCCTGTGGCTCGGCTACCCGATCCGTGAGCTGCTGGCGCGCGCCGGTCCGCAGGCCGACGCCGACATGGTGCTGTCCTCCTCGGTGGACGGCTGGACGGCGGGGACCCCGCTGGAGGCGCTGACCGACCCGGACCGGGACGCGCTGCTCGCGATCGCCATGAACGGCGAGCCGCTGCCGGAGGAGCACGGGTTCCCCGCCCGGCTGGTGGTGCCCGGGCTGTACGGGTACGTCTCGGCCACCAAGTGGGTCACCGAGCTCAAGGTCACCCGGTTCGCCGACGACGAGGGCTACTGGACCCCGCGCGGCTGGTCGGCCCTCGGCCCGGTCAAGGTGCAGTCCCGCATCGACGTCCCGCGGCCGGGCACGCCGCTCGAGCCCGGCACCGTCGTCGTCGCCGGCGTCGCCTGGGCGCAGCACACCGGCATCTCCGGCGTCGAGGTGCGCGTCGACGACGGCGAGTGGCAGCCCGCCGAGCTCGCCGAGACCGTCGGTCCGGACACCTGGCGGCAGTGGCGCTACGCGTGGGACGCCACCGCGGGCGACCACACGGTGGCGGTGCGCGCCACGGACGCCGACGGTCAGGTGCAGACCGCGGACGAGGCCCCGCCCGCGCCGGACGGCGCGACGGGGTGGCACGCGTTCGACCTCACGGTCGGCTGAMQTRGTGWWAALAGVVAAGAGLALAELVAAWVDPTSSPVLALGGVVVDSVPPWLKDFAVEWFGTADKLVLLSTMGVVLAAGAALSGWLELRRPPAGRLLLGGVGLVMAVVAATRPEATPLWALPAVIGVGVAVVLLRLLVARVPVPATPVPATPAPAGAGAGAGAAPEEPPSDRGTTRRTFLVWTGATAVGGVLALAASRTLAAGSRAVQVVREAINLPAPTAPAPEVPAGADLGVDGVHPYVTANEDFYRIDTALRVPQVDPGSWSLRVTGLVDEPFEISWDELLELPMTEHHVTLCCVSNEVGGDLIDNALWLGYPIRELLARAGPQADADMVLSSSVDGWTAGTPLEALTDPDRDALLAIAMNGEPLPEEHGFPARLVVPGLYGYVSATKWVTELKVTRFADDEGYWTPRGWSALGPVKVQSRIDVPRPGTPLEPGTVVVAGVAWAQHTGISGVEVRVDDGEWQPAELAETVGPDTWRQWRYAWDATAGDHTVAVRATDADGQVQTADEAPPAPDGATGWHAFDLTVGNANANANANA
AK018_019781029hypothetical proteinGTGCCCCGAGCGCGCCTCACCGCCCTGACCCTCGCGACCCTGACCGTCGTCTCCCTGGCCGCCTGCTCCGCCGACACCGCGCCGGCCGGGGCGGAGTCGCCGCCGGCCGAGGACGTCGCGGCCGACGGCGCCGCCACCGAGTACCCGCTCACCGTCGACAACTGCGGGACCGAGGTGACCTTCGAGTCCGCACCCGAACGTGTCGTGACCATCAAGTCCTCCACCGCCGAGACGCTGCTGGCGCTCGGCCTGGGCGACCGGATCGTCGGGTCCGCGTTCCTCGACGGCCCCGCGCCCGCGTGGCTGGCCGACGCCGCCGACGGCACCGCCGTGGCCGACCCGTTCAGCGACGAGGTGCCCGGCACCGAGGCGGTCCTCGAGCTCGACCCGGACCTCGTCTACGCCGGCTGGGAGTCGAACGTCGCCGCCGACGGCGCCGGGGACCGCGAGACGCTCGCCTCGCTCGACGTGAACAGCTACGTGGCGCCCGCCGCCTGCAAGGCCCCGGAGTACATGCCGAACCCGCTGACCTTCGACGAGGTGTTCGCCGAGATCACCGAGGTCGGCGCGATCTTCGACGCGCAGGACGCGGCCGCCGATCTGGTCGCCGAGCAGCAGGCCGTGCTCGACGGCGTCACCCCGGACGACCGCGACCTGACGGCCCTGTGGTACTCCTCGGGCTCCGACATCCCGTACGTCGGCGCCGGCATCGGCGCGCCCCAGATGATCCTCGACGCCGTCGGGCTGGACAACGTCGCCGGCGACGTCGAGGACACCTGGACCTCGATGGCGTGGGAGGAGATCGTCGCCGCCGACCCGGACGTCATCGTGCTCGTGGACGCCACGTGGAACTCGGCCGACGACAAGATCGACCGGCTCGAGTCCAACGCCGCGACGTCCGAGCTGAGCGCCGTGCAGGCCGGGCGCTACCTGACCGTGCCGTTCCCGGCCACCGAGGCCGGCGTGCGCAACGCCGACGCCGCCGCCGACCTCGCCGACCAGCTCGCGGAGCTCGACCTCGATGAGTGAMPRARLTALTLATLTVVSLAACSADTAPAGAESPPAEDVAADGAATEYPLTVDNCGTEVTFESAPERVVTIKSSTAETLLALGLGDRIVGSAFLDGPAPAWLADAADGTAVADPFSDEVPGTEAVLELDPDLVYAGWESNVAADGAGDRETLASLDVNSYVAPAACKAPEYMPNPLTFDEVFAEITEVGAIFDAQDAAADLVAEQQAVLDGVTPDDRDLTALWYSSGSDIPYVGAGIGAPQMILDAVGLDNVAGDVEDTWTSMAWEEIVAADPDVIVLVDATWNSADDKIDRLESNAATSELSAVQAGRYLTVPFPATEAGVRNADAAADLADQLAELDLDEPGPT0003765_4646DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
AK018_019791089COG0609putative ABC transporter permease proteinATGAGTGAGACCCGCGCCGCCACCCGGCCCCGGACGGTGACCGCTCCGGCGACGCTGTCGCGGGGCCGGCTCGCGGCGTGGCTGGGCGGCACGACGGCGGTGCTGCTGACCTCCGTCGTGGTCGCGGTGGCGATCGGTCCGGCCGGGCTGACGCCGTCGGACGTCGGCCAGGTGGTGGCGACGCGGCTCGGCCTGGGCGACTGGCTCGGGCTGGCGGCGCCCGACCGGCTAGACGACGGCATCGTGTGGCAGCTGCGTCTGCCGCGGGTGCTGACCGCCGCAGCCGTCGGCGCGGGGCTGGCGGTGTGCGGCGTGGTCATGCAGTCCCTGACCCGCAACCCGCTGGCCGACCCGTACCTGCTCGGGCTCAGCTCCGGTGCGTCGCTGGGTGCGGCGTGCGTGCTGGTCCTCGGCTGGCTGGCCGTGCTGCCGGTGGCGGCGTTCGTCGGGGCGGCGGCGGCACTGGCGGCGACGCTGGCGCTGGCGTCCGCCGCAGGACGCGGTGCCGGTGGGCTGTCCCCCGCCCGCACCGTGCTGGCCGGGCTCGCCGTCTCCCAGCTCGCCGCCGCGGCGACCAGCTTCGTCATCTTCTGGTCGGCCACCGGCGACCAGTACCGCGAGATCCTCGCGTGGCTGCTCGGCTCCGTGGCGGGCGCCGACTGGGTGTCCGTGGCAGTGGCCGGCGGTGCGGTGCTGCTGCTCGGCACGCTGCTCGCCTCGACCGGGTCCGTGCTCGACGCGTTCACGTTCGGCGACACCGCCGCGGCTGCGCTCGGCGTCCCCGTGGCGAGGGTGCGCTGGCTGCTGCTGCTCGGCGTCGCGCTGCTCACCGGGGCGCTGGTCTCGCAGTCAGGGGCCATCGGGTTCGTCGGGCTGATCCTGCCGCACACCGTGCGGTTCCTCGTGGGCTCGCGCCACCGCGCGCTGCTGCCGCTGTCGATGCTGTGCGGGGCCACGTTCCTGGTGTGGGCCGACACGCTGGCCCGGACCGTCTTCGCCCCGCGCGAGCTGCCCGTCGGGATCGTCACCGCCGCGATCGGGGCACCCGTGTTCGCGCTGCTGCTGTGGAAGGGACGGGCCCGGGCATGAMSETRAATRPRTVTAPATLSRGRLAAWLGGTTAVLLTSVVVAVAIGPAGLTPSDVGQVVATRLGLGDWLGLAAPDRLDDGIVWQLRLPRVLTAAAVGAGLAVCGVVMQSLTRNPLADPYLLGLSSGASLGAACVLVLGWLAVLPVAAFVGAAAALAATLALASAAGRGAGGLSPARTVLAGLAVSQLAAAATSFVIFWSATGDQYREILAWLLGSVAGADWVSVAVAGGAVLLLGTLLASTGSVLDAFTFGDTAAAALGVPVARVRWLLLLGVALLTGALVSQSGAIGFVGLILPHTVRFLVGSRHRALLPLSMLCGATFLVWADTLARTVFAPRELPVGIVTAAIGAPVFALLLWKGRARAPGPT0003770_2194DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_019801008fecE_2COG1120Fe(3+) dicitrate transport ATP-binding protein FecEATGACGCAGACGTTCGACGCACGGACCGCCGGGCTCGCTCCGACGTCCCCCGGCGGCCACGGCCCGGCGGGCTGGGACGGACCGGCGGGCGCGGCCGGCCCGGCGGGCGCGGCCGGCCTGGCGGCCGAACGGGTGCGCTGGTCCGTGGGCGGCCGGCTGATCCTCGACGACGTCGACGTCACCGCCCCGCCCGGCGCCGTCACCGGGCTGCTCGGCCCGAACGGCACCGGCAAGTCGACGCTGCTGCGGCTCGTCGCGGGCGTGGAGCGGCCCGACGGCGGACGGGTCGCGTTGACCGGCAGCGGGGACGACGGCGGATCCACCGGCGGCGCGCCAGTCGCCGGAGCCGCTGCGGACGGCGAGGACCCGGCCGGTCCGGGTGGTCGCACCGCTGCCACCGACACCGCACAGGGCGAGGACCTGCTGGCGATGCCGCGCCGTCGTCGGGCCCGGACCCTGGCGTTCGTGGAGCAGGACGCCGCCACCGAGCTGCCCGTGACGGTGCTCGACGCCGTCCTGCTGGGCCGGACCCCGCACCGCTCCCTGCTGGCCGGCCCCACCGAGGACGACCACGAGCTCGCCCGGGCCGCCCTCGACCGCACCGGTGCGGCGGACCTGGCCGCCCGGGAGATCGGCACGCTCTCCGGCGGCGAGCGCCAACGCGTGCACATGGCGCGTGCGCTGGCCCAGCAGCCGCGGGTGCTGCTGCTCGACGAACCGACCAACCATCTGGACGTGGCCGCCCAGCTCGCGACGATGCGGCTCGTGCGCGATCTGGCCGGCGACGGCGTGACCGTGCTGGCGGCGCTGCACGACCTGTCCCTGGCGGCGGCGACCTGTGATCACGCCGTCGTCCTGGCTCCCGGGCACGCCGGGCACGTGGTGGCGGCCGGACCGGTCGCCGAGGTGCTGGTGCCGGAGGTGATCGATCCCGTCTACGGGGTCCGTACCACCGTGCTGCGCCACCCTCGAACCGGGCGGCCGGTGCTGACCTTCGACGAGGTGTGAMTQTFDARTAGLAPTSPGGHGPAGWDGPAGAAGPAGAAGLAAERVRWSVGGRLILDDVDVTAPPGAVTGLLGPNGTGKSTLLRLVAGVERPDGGRVALTGSGDDGGSTGGAPVAGAAADGEDPAGPGGRTAATDTAQGEDLLAMPRRRRARTLAFVEQDAATELPVTVLDAVLLGRTPHRSLLAGPTEDDHELARAALDRTGAADLAAREIGTLSGGERQRVHMARALAQQPRVLLLDEPTNHLDVAAQLATMRLVRDLAGDGVTVLAALHDLSLAAATCDHAVVLAPGHAGHVVAAGPVAEVLVPEVIDPVYGVRTTVLRHPRTGRPVLTFDEVPGPT0003760_564DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_01981447hypothetical proteinATGAAGGCTCCGGCCGCGACCACCGCCGTCGCGCAGAAGGTCAACCCGTGGGCGCTGCGGGTGAGCCACCGCGTGCCGCCCTGGGCGACGCTGCACCACGTCGGACGGCGCAGCGGCCGCGCGTACGACACCCCCGTCGTGGCGTTCGCCGCTCGCGAGCCCCGCGTCATCGGCGAACCCGTCACGGTCGCGGACGCCCGCGACATCATCGTGCTGCACCCGCTGCCGTGGGGTCCGGGCACCGACTGGTGCCGCAACGCGCTCGCCGCCGGCCGCTACACGCTGACGCGACGCGGGCAGGACTTCGCCGTGGTCGACCCGTGGGTGCTCGACGGCGAGACCGCGCGCGGTGTGCTCGGCGACGGTCCCCGGGTGGCGTCGCGACTCCTGGGCATCGACGAGTTCCTCGCCGGACGGCTGCGACCAGCCCGGTCAGCGCCCGCCTGAMKAPAATTAVAQKVNPWALRVSHRVPPWATLHHVGRRSGRAYDTPVVAFAAREPRVIGEPVTVADARDIIVLHPLPWGPGTDWCRNALAAGRYTLTRRGQDFAVVDPWVLDGETARGVLGDGPRVASRLLGIDEFLAGRLRPARSAPANANANANANA
AK018_01982411hypothetical proteinATGCGACGACGCTCCCACCGCACCGCGACCGCCTCCGCCACCGCGCTCGCGGCGGCCCTGACGGTGACCGGCACCCTGCACCTGGTCCGCCCGCGCGTCTTCGAGGGGCTGATCCCGCGGGCCCTGGGCTCCCCGCGCGCCTGGGTCGTCGGCAGCGGCGTGGCCGAGCTGGCGTGCGCCGCGGCGGTCGCCGTCCCGGCCACGCGGCGTGCCGGCGGTTATGCCACGGCGGGGCTGTTCGTCGGGGTGTTCCCGGGCAACGTCAAGATGGCGCTCGACTCCCACGCGGGCGCGCGGCACTGGTCGCGCGATCCGCGCGTGGCCTGGGGGCGCCTGCCGCTGCAGGTCCCGCTGGTGGCGTGGGCGTGGCAGGTGGCGCGCAGCGCGGAGGTCGGCTCAGGCGGGCGCTGAMRRRSHRTATASATALAAALTVTGTLHLVRPRVFEGLIPRALGSPRAWVVGSGVAELACAAAVAVPATRRAGGYATAGLFVGVFPGNVKMALDSHAGARHWSRDPRVAWGRLPLQVPLVAWAWQVARSAEVGSGGRNANANANANA
AK018_01983246hypothetical proteinATGCCCACCGCCCATGAGCGCATCCAGGTCACGCGAGACCCGCGCGTCGAGAAGATCTTGTCCCTCGGGGCGCGCAGGTTCCCTGACGAGCGTCCCGGTCGAGTCCTCGTGGGCCTCGCCGGCGAGCGGGCTGAGCAGATCGCACGGGAAGCGGACTACCCCCTGGGCACCATCCCCGTCTTCCACGCCGCCGGACGCACCGTGACCCGGGAGATGGTCGCCGAGGCGCTGGACGACGATGAGTGAMPTAHERIQVTRDPRVEKILSLGARRFPDERPGRVLVGLAGERAEQIAREADYPLGTIPVFHAAGRTVTREMVAEALDDDENANANANANA
AK018_01984453COG1848Ribonuclease VapC29ATGAGTGAGCCGGTCCAGATCGCCGACGCCAACGTCTTGATCGCACTCACCCTCGAAGAGCACGTCGACCACGAGGCAGCGCGGCTCTGGCTGAGGCAGGTGGCACGGTTCGCCACGACCCCGATGACCGAGACAGCTCTGGTGCGCCTGTTGCTCAACCCTGCCATCACGGTCGACGGCGACGCCAAGGCCGTCACCATCGACACGGCGCTCGACGCGCTGCGCGCCATCAAGGCGCTGCCGAATGCCGAGTTCGTCGCCGACGCCACATCCATCGGCGACGCTCGGGCGCTGACGAGACACGTCACCGGGCACCGTCAGGTCACCGACACCCACCTGCTCAACCTCGCGCTCTCCCACGGCGGCGTCCTGGCGACGTTCGACGCCAAGATCCGCCACTCCCTCCGGCCACGTGATCGCAAGCACGTCCACGTGATCGGTGCGAACACCTGAMSEPVQIADANVLIALTLEEHVDHEAARLWLRQVARFATTPMTETALVRLLLNPAITVDGDAKAVTIDTALDALRAIKALPNAEFVADATSIGDARALTRHVTGHRQVTDTHLLNLALSHGGVLATFDAKIRHSLRPRDRKHVHVIGANTPGPT0027605_723DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-VapC-VapB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027605-toxin_vapC_like-K07064NANA
AK018_01985108hypothetical proteinATGACCGCACAGCTCTGGATCACCGGTGACGACGCCACCGACCGACTGCTCAGCGAGGACCCGTTCGCGCTGCTGGTCGGGATGCTGCTCGACCAGCAGACTCCTTGAMTAQLWITGDDATDRLLSEDPFALLVGMLLDQQTPNANANANANA
AK018_01986471hypothetical proteinATGGTGAGGGTTCGCATCCGGCTTGCGCAGGATGAGCACGGCTGGCCCCCCGCAGAGTCCGAAGGTCTCTGGGCAACGGATCTGGGCCGCGGCCGGTACCGGCTCGCCAACTCCCCGTGGTTCGCCTTTGGCCTCTCGGTCGACGACGTCGTCCGCGCGTCGCCCGACGACGACGGCGTCCTCTGGTTCGAGGATCGCCTCGAACGGGGTGGACGGATGACGCTTCGGGTGATTCCCCGCCCCGAAGGGCCACTCGGCGGAGACCCCACACAGGTGCTCGCTGTCTTCTCGCAACTCGGCGTCTCCGGCGAGACCATGGGAGGCGGGATGAGACTCGTTGCACTCGACGTCGGTCCCGACAACGACATTGAACAGATCAAGCGGGTCTGCGTCGGCGGCGAGTCCGACGCCTGGTGGGACTACGAGGAAGCCGACATCACCTCCGAGTGGAGGACCACGACTCCCCGCTGAMVRVRIRLAQDEHGWPPAESEGLWATDLGRGRYRLANSPWFAFGLSVDDVVRASPDDDGVLWFEDRLERGGRMTLRVIPRPEGPLGGDPTQVLAVFSQLGVSGETMGGGMRLVALDVGPDNDIEQIKRVCVGGESDAWWDYEEADITSEWRTTTPRNANANANANA
AK018_01987603hypothetical proteinATGAGCGAACGACTGTGGCTGACGGGCGACCCTGACGCAGACCAGTTGCTGACCGATGACTTCTTTGCGCTCGCGATTGCGATGCTGCTGGACCAGCAGTACCCGATGGAGCACGCGTTCGCCGGGCCGCGCAAGATCGTCGACCGGTTCGGCACGCTCGACCCGGCACGCATCGCCGACGCCGACCCCGACGAGTTCGTCGAGATGGCGATCACTCCCCCGGCGATCCACCGGTACGGCCGCTCGATGGCCGGCCGGGTGCAGGCGGTGGCGCGCGCCGTCGTCGACGACTACGACGGTGACGTGTCCCGGATCTGGACGGACCCCGGCGTCTCGGGCGGGGCGCCGACGGGTGCCGAGGTGGTCGAGCGGCTCAACGCGCTGCCGGGGTTCGGTACGCAGAAGGCGCAGATCTTCCTGGCGCTGCTCGGCAAGCAGCGCGGCGTCGAACCGGCCGGGTGGCGCGAGGCGGCCGGACACTACGGCGACGACGGCTCGCGCCGGTCGATCGCGGACGTGACCAGCGCCGAGACGCTGCAGGAGGTCCGGGCGTTCAAGAAGGCACAGAAGGCAGCGGCGAAGGAAGCGAAGGCAAAGGCATGAMSERLWLTGDPDADQLLTDDFFALAIAMLLDQQYPMEHAFAGPRKIVDRFGTLDPARIADADPDEFVEMAITPPAIHRYGRSMAGRVQAVARAVVDDYDGDVSRIWTDPGVSGGAPTGAEVVERLNALPGFGTQKAQIFLALLGKQRGVEPAGWREAAGHYGDDGSRRSIADVTSAETLQEVRAFKKAQKAAAKEAKAKANANANANANA
AK018_019881068hypothetical proteinATGAGCACCACGGAGACGACGCCGGAACGCCCGGAGCACTCCCGCGGCGGCACCTACACGGTGCCGGGTCAGGAGTTTGTGCGGGACTCCAACTACATCCCCACCCGCATCACCCGCGACGGCGCGGACGGCTATCCCGTGGAGGCCGGCCGCTACCGGCTGGTGGCGGCGCGGGCCTGCCCGTGGGCGAACCGGTCGATCATCGTGCGGCGGCTGCTGGGGCTGGAGGACGCCCTCAGCATCGGCATGCCGGGCCCCACCCACGACGAGCGCAGCTGGACGTTCGACCTGGACCCGGGTGGCCGCGATCCGGTGCTGGGGATCGAACGCCTGCAGGAGGCGTTCTTCGCCCGGTTCCCCGACTACCCGCGCGGCATCACCGTGCCGGCCATCGTGGACACGCGCGACGGCGCCGTGGTCACCAACGACTACCCGCAGATCACCCTCGACCTGTCGACCGAGTGGACCGAGCACCACCGCGAGGGTGCGCCCGCGCTGCTGCCGTCCGACCCGGACGAGCGCGCCGAGATGGACTCGGTGATGCGGCGCGTGTACACCGAGGTCAACAACGGGGTGTACCGGTGCGGGTTCGCGGGCTCGCAGGACGCCTACGAGGCCGCCTACCTGCGGCTCTTCCGGGCACTGGACTGGCTGGAGGAGCGGCTGGCCGACCGGCGGTTCCTCATGGGTGACGCGATCACCGAGGCGGACGTGCGGCTGTTCACCACGCTGGTGCGGTTCGACGCCGTCTACCACGGGCACTTCAAGTGCAACCGCAACAAGCTCACCGAGATGCCGGTGCTGTGGGCCTACGCCCGCGACCTGTTCCAGCTGCCCGGGTTCGGCGACACCGTGGACTTCGAACAGATCAAGGAGCACTACTACGTGGTGCACACCGACATCAACCCCACAGGGATCATCCCGTGCGGTCCGGACCTGTCGGGCTGGCTGACGCCGCACGGGCGGGAGTCGCTCGACGGGGACCCCTGGGGCGGGGGCACCGCGCCGGGTCCGGTCCGCGACGGCGAGCAGGTCACGGCCGGGCACAACCCCCTCGTGCCGCTGTGAMSTTETTPERPEHSRGGTYTVPGQEFVRDSNYIPTRITRDGADGYPVEAGRYRLVAARACPWANRSIIVRRLLGLEDALSIGMPGPTHDERSWTFDLDPGGRDPVLGIERLQEAFFARFPDYPRGITVPAIVDTRDGAVVTNDYPQITLDLSTEWTEHHREGAPALLPSDPDERAEMDSVMRRVYTEVNNGVYRCGFAGSQDAYEAAYLRLFRALDWLEERLADRRFLMGDAITEADVRLFTTLVRFDAVYHGHFKCNRNKLTEMPVLWAYARDLFQLPGFGDTVDFEQIKEHYYVVHTDINPTGIIPCGPDLSGWLTPHGRESLDGDPWGGGTAPGPVRDGEQVTAGHNPLVPLPGPT0013050_458DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013050-yqjG-K07393NANA
AK018_01989666hypothetical proteinATGCTCGAGCTCGCCACCGGCACCGGACTCGCCCTGGCCGCGGGCCTCAACGCCTGGATCCCGCTCATGGCGCTCGGACTGCTGTCCCGGTACACCGACCTGATCACCCTGCCCGGTGCCTGGGCCTGGCTCGAGAACGGCTGGGTGCTGATCGTGCTCGGCGTGCTGCTGGTCCTGGAGATGGTCGGCGACAAGGTCCCGGTGGTGGACTCGCTCAACGACGTGGTCCAGACGGTGGTGCGTCCCGGTGCCGGCGGGATCGCGTTCGGTGCCGGTGCGACGTCGGAGACCGCGCGGGTCGAGGACCCCGCAGCGTTCGTCGACTCCGGCGCCTGGGTGCCCGTCGTGGCGGGCATCGCCCTAGCCCTGGCGGTGCATCTGACCAAGGCTGCCCTGCGCGCCGGGGCCAACGCCGCCACGGGCGGGCTCGCGGCACCCGTGCTGTCCACCGCCGAGGACGGCACGTCGGTCGGCCTGTCGCTGGTGGCGATCCTGCTGCCGCTGCTCGTCATCCCGGTCGCGATCGGGCTGGCGGTCGTCGTGTGGCGGGTGGTGCGGGCCCGACGACGGCGGCTCGCGGCAGCGCAGGACGGTACCGCCGGCGGTGGGCCCAGCGGTCCCGGGCCGGCGCTGCCACCGTCGGTACCGCCGTCGTCCCGCGAATGAMLELATGTGLALAAGLNAWIPLMALGLLSRYTDLITLPGAWAWLENGWVLIVLGVLLVLEMVGDKVPVVDSLNDVVQTVVRPGAGGIAFGAGATSETARVEDPAAFVDSGAWVPVVAGIALALAVHLTKAALRAGANAATGGLAAPVLSTAEDGTSVGLSLVAILLPLLVIPVAIGLAVVVWRVVRARRRRLAAAQDGTAGGGPSGPGPALPPSVPPSSRENANANANANA
AK018_01990849hypothetical proteinATGGACGCACTGCTCCCCCTCGGCCCCGCCCCGCGCCCCGACTCCGACCAGGACCTGGCCGCACGCCTGCGCGCGGCGTTCGTCGCCCTCGGGGGCGAGCAGGTGCAGGGCCTCGACGGCGCGAAGATCCTCCCGGTGCTCGACGGGTCGGACATCGCGTCCCTCGACGTCGACCTGACCGGGGTGGCCGTCGGGATGCCGGCCGGCAAGGAGGCCCCGCACCTGCACTGGAAGCCGCAGATCGTCGACCGCGAGCCCGGCACCGTGCGCACCCTACGCATCGAGGCGCACCCCCTGGCCGCCGTGGACCTTCCCGTGGACGTGACCGCCGAGATCTCCGACGTCCGCTTCTCCTGGGTCACCGCCGACGACGACATGGTCGGCGTCGAGCTCATCGAACCCACCGACGACGCGCCCGTCTCGGGGCACGCCCGCGTGGCCGTCTCCCGCGAAGGCCTGGCCGGGACGGTGCAGGGCCTGCTCGCCGTGGCGCTGCACGGCAACGGCATCCAGCTCACTGACTTCGACCTGCGCATCGACCAGACCGGTCCGCGCGACGCCCGGCTCGAGATCGACGCGTCGATCAAGAAGGGCATGTTCCTGTCCGCGAAGATCACCGCGACCGCGTCGGCGTCCGTCGACGAGCACATGGTGCTCACCGTCGGCGACGTCCAGCTACACAGCGGCAACCCGATCGTGGGCGCGATGCTCGGGGCGATGCGGGGCCGCGTGGAGGAGGTCGCCGGACGGCGCGTCGACCTGACCGACGCGCTGCCGCCGGGCGTGCGGCTCGACGACGTCGCGCTCGAGGTCGGCGAGCAGGTCGTGCTCACGGCCCGCCTCGCCTGAMDALLPLGPAPRPDSDQDLAARLRAAFVALGGEQVQGLDGAKILPVLDGSDIASLDVDLTGVAVGMPAGKEAPHLHWKPQIVDREPGTVRTLRIEAHPLAAVDLPVDVTAEISDVRFSWVTADDDMVGVELIEPTDDAPVSGHARVAVSREGLAGTVQGLLAVALHGNGIQLTDFDLRIDQTGPRDARLEIDASIKKGMFLSAKITATASASVDEHMVLTVGDVQLHSGNPIVGAMLGAMRGRVEEVAGRRVDLTDALPPGVRLDDVALEVGEQVVLTARLANANANANANA
AK018_01991621hypothetical proteinATGACGCGCATGACCCGGCACCACCTGACCTCGACCGTGATCCTGCTCGCCTCCGCGCTGCTAGTCGCTGGCTGCACCGGCGACGACGCCGAACCGGAAGCCTCCACGAGCGAACTGCCGTTGCCTGCCTCGGTCACCGCCTCGCCGTCCGATGAGCCTTCCCCGACGCCGTCGCCATCCCCGAGCGGACCGGAGAAGCCCGAACGGCCCGCCGCCATGGACAAGAAGGACGGCGACGGGGCGGCGGCCGCCGTCAAGTACATCCTGGCGCTCGAGCAGCCGATGATGGTCACCGGCGACACGGCGGAGTGGGAGAAGCGGTCGCATCGATCATGCGACTATTGCGCTTCACGCCTCGACCAGGCCAAGACCATCGCACAACGCGGCGACACCTTCAGCGGCGGCGGCTTCGAGGTCACGGTCGAAACTGTCTATCAACGAGACGCCGTCACGGCGATCTGGCCAGTTGACGTGAAGGTAGCCGAACACGAAACGACGATCCGGGACAGCTCTGGCGAGGTCGTCTTTGACTCCGAGGGCAGTCGAGCCGAACGACGAGTCGAAGTTGCTCTGAAGGATGGCGAATGGGTCCTCGTCGAGATGGCGGAGATACCCGAGTGAMTRMTRHHLTSTVILLASALLVAGCTGDDAEPEASTSELPLPASVTASPSDEPSPTPSPSPSGPEKPERPAAMDKKDGDGAAAAVKYILALEQPMMVTGDTAEWEKRSHRSCDYCASRLDQAKTIAQRGDTFSGGGFEVTVETVYQRDAVTAIWPVDVKVAEHETTIRDSSGEVVFDSEGSRAERRVEVALKDGEWVLVEMAEIPENANANANANA
AK018_01992849nrtD_2COG1116Nitrate import ATP-binding protein NrtDATGAGCCACGACACCACGTCGGGTGCCCGCCCCTCGGGGCTGCCGCAGGATGCTGCGGCAGCCCCGGGGGGCACCGGCATCCACATCGACGGACTGACCAAGACGTTCCAGACGGGGCGGCGCAAGTCCGTCACCGCGCTGCAGGACGCCCACCTGCACACCGACAAGGGCTCGTTCCTGGCCCTCCTCGGCCCCTCGGGGTGCGGCAAGTCGACGATCCTGCGCGTGCTCGCCGACCTCGAGCACCCCACCGCCGGCGAGGTCTTCGTCGACGGCAAGACGCCCGCGCAGCTGCGTCGCGACAGCGAGCTCGGCATCGCATTCCAGGACCACGCGCTGCTGCCGTGGCGCAGCGTGCTGACCAACATCCGCCTCGTCTTCGAGGTCGCTGCCCGCAAGGTCGACAAGGCCTACGTGGACGAGCTCATCGAGCTCGTCGGGCTGACCGGGTTCGAGAAGGCGAAGCCCGCCCAGCTCTCGGGCGGCATGCGCCAACGGGTCTCCATCGCCCGCGCCCTGGCCCTCAAGCCGTCCGTGCTGCTCCTCGACGAGCCGTTCGGTGCGCTGGACGACATGACGCGCCAGAGCCTCAACCTGGAGCTGCTGCGCATCTGGACCGAGAAGCCGGCCACCACGCTGCTGGTGACGCACGGCATCTCAGAGGCGATCTTCCTGTCCGACCGGGTCGCGGTGATGTCGGCCCGGCCGGGACGCATCAAGGAGATCATCGAGGTCGACCTCCCCCGGCCGCGCACACCCGAGATGATGCGGACCCCGGAGTTCCACGCGCTCGTCGACCGAGCCTCCGAGATCCTGTTCGGGTCGCACGGCGCCGCGGCGGAGGCCTGAMSHDTTSGARPSGLPQDAAAAPGGTGIHIDGLTKTFQTGRRKSVTALQDAHLHTDKGSFLALLGPSGCGKSTILRVLADLEHPTAGEVFVDGKTPAQLRRDSELGIAFQDHALLPWRSVLTNIRLVFEVAARKVDKAYVDELIELVGLTGFEKAKPAQLSGGMRQRVSIARALALKPSVLLLDEPFGALDDMTRQSLNLELLRIWTEKPATTLLVTHGISEAIFLSDRVAVMSARPGRIKEIIEVDLPRPRTPEMMRTPEFHALVDRASEILFGSHGAAAEAPGPT0001140_1431DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
AK018_01993810hypothetical proteinATGTCCCGCCGCTCCCGCATCCCCACCTGGCTCGCCGGGGTGATCGGCGCGGTCGCGCTGGTCGGCGCGTGGTGGGTCTTCTCCGCCACGATCTTCCAGCCGCCGCCGGGGACCACGTTCACGCCGGTGCCCTCACCGTGGGTCGTGTTCGCCACGATCGCCTCGGACGGCCTGGCGGCGTACCAGCCCGTGTTCTCCGTGACCATCACCGAGGCGCTCATCGGGTTCGCCTGGGGCAACGGCATCGCCCTGCTGCTCGCCGCGACCGTGCTCCTGGCTCCGCGCATCGAGACGGTCGTCACGCAGATCGCCGTGGTGAGCTACTGCCTGCCGGTGGTGGCGGTCGGCGGCATCGCGATCGTCGTCCTCGGCGGTGCTCCGCGCCCCGGGGAACCGAGCGCGACGGCGATCTTCCTGGCGGCGCTGGCCGTGTTCTTCACGACCGTGGTCGGTGCGCTGCTCGGCTTCAAGTCGGCGGACGCCGCGAGCCTCGACGTCGTGCGCGTCTACGGGGGCACCCGGTTCACCCAGCTGCGCAAGGTGCGGCTCATCGCCGCGACGCCCGCGATCCTCAACGCCCTGCAGATCGCCGTGCCGTCGGCGTTCCTCGGTGCGGTCCTCGGCGAGTACATGGGCGGGATCGACCAGGGCGTCGGGATCACCCTGATCCGCCTGCAGGGCGAGCTCGACTCGGCCCGCGTGTGGGCCGTGTTCCTGCTGACCGCCGCCGTCGCCCTGATCGGCTACGGCGTCGTCGGCCTCCTCTCGCGACTGGCCACGCCGTGGGTGGCAGGACGGAGCGCGTCATGAMSRRSRIPTWLAGVIGAVALVGAWWVFSATIFQPPPGTTFTPVPSPWVVFATIASDGLAAYQPVFSVTITEALIGFAWGNGIALLLAATVLLAPRIETVVTQIAVVSYCLPVVAVGGIAIVVLGGAPRPGEPSATAIFLAALAVFFTTVVGALLGFKSADAASLDVVRVYGGTRFTQLRKVRLIAATPAILNALQIAVPSAFLGAVLGEYMGGIDQGVGITLIRLQGELDSARVWAVFLLTAAVALIGYGVVGLLSRLATPWVAGRSASPGPT0001145_3892DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_01994804ribX_4Riboflavin transport system permease protein RibXATGAACGCCGTCTCCTGGCGCCCGGTGGGCCGGGCCGCTCTCAACGCCCTGCTGACGCTGGTGATCGTGCTCGCCCTGTGGTGGGCCGTGGTCAACCTCACCGGCATGTCGCCCTACGTCGCCAAGGGACCCGCCGACGTGTGGGAGTTCCTCGTCTCCGGGCAGGAGGCGGCAGCGAACCGGACGGAGCTCACCCCGCTGCTGGCGCAGACCCTGCAGGACGCCGCCCTCGGGTTCGTGGTCGGCATGGCCGTCGCCGGGCTGCTGGCCGTCCTGTTCTCCCTGTCGCGGACGGTCGAGGCCGGCGTCATGCCGCTGGCCCTGCTGCTGCGCGCCATCCCGCTGGTGTCCATCGCGCCGGTGATCATCCTCATCACCGGCCGCGGCACCCAGGCGTCGGTGGCCGTCATCGGCTCGATCGTGGTGCTGTTCCCGGCGCTGGCGTCGATCCTGTTCGGGCTGAACCGCGCGAGCGTGCAGAGCCTCGATCTCGTGCACGTCTACGGCGGCACCCGCCTGACCGGGATGCGCAAGGTGAACATCCCCGGCGCCCTGCCGTCGTTGTTCGCCGCGGCACGCGTGTCGGTCCCGGGGGCGGTCACGGGTGCCCTGCTCGCCGAGTGGCTGTCCACCGGTACCGGCATCGGCGGGTCCATCGTGAAGTTCACGGCGTCGGCCCGGTTCGACGACCTGTGGGCGTCGGTCGCGCTCATCACGATCGTCACGCTGCTGCTCTACAACGTGGTCCAGGTGGTCGAGAACGTGGTGCTGACCCGTATGGCCATGACGTCCGCGCAGCGCTGAMNAVSWRPVGRAALNALLTLVIVLALWWAVVNLTGMSPYVAKGPADVWEFLVSGQEAAANRTELTPLLAQTLQDAALGFVVGMAVAGLLAVLFSLSRTVEAGVMPLALLLRAIPLVSIAPVIILITGRGTQASVAVIGSIVVLFPALASILFGLNRASVQSLDLVHVYGGTRLTGMRKVNIPGALPSLFAAARVSVPGAVTGALLAEWLSTGTGIGGSIVKFTASARFDDLWASVALITIVTLLLYNVVQVVENVVLTRMAMTSAQRPGPT0001145_4195DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_01995648hypothetical proteinATGGACCCTCGACAGCGGCGCACCCGGACGCAGCTCCGCTCGGCGATCCTCGAGCTCGCGGCCCGGCAGCCCGTCGGGTCGCTGACGGTCGCCGAGATCGCCCGGGCCGCCGGTGTCACCCGCGACACCTTCTACCGGCACGCGGCGGGTCCGGTCGAGCTGCTGGCCGACGTCCTCACCGACGAGCTCGAGCAGATCGACCTGCCCGCGCACGGCGACGCCGAGGACTTCCTCGCCGCGCTCCACCTGCTGCTCGAGCACGTGGCCGGCCACGCCCCCGTCTACCGTGCGGCGCTCGTCGACAGCACCGAAGGACGCATCCGCGAGATCCTGCACGACGTCGTCGCGGCACGCCTCGACGCCTACCTGGCGGCCGCGCCCGCCGCCGTGCCGCGCATCCGCGGCGGGGCGCCCCCCGAGGTGACGCGCCGGGTGCTCGTCGCGCACTGCGCCGCGGGGACGGTCGCCGCGATCACCGTCTGGCTGGGCGACGGCGCGCAGACCGACGTCGCGGCGCTCGCCCGGACGATCCTCGCGGCCGGCCCCACCTGGTGGAGCCCCGAGCACGCGGCCCGGACGCTCCCCGCGGATCAGGCCCGGTCGGCCGCCAGCTGGAGCACCGACTCCGCCAGCGCCCGCGTGCCGTAGMDPRQRRTRTQLRSAILELAARQPVGSLTVAEIARAAGVTRDTFYRHAAGPVELLADVLTDELEQIDLPAHGDAEDFLAALHLLLEHVAGHAPVYRAALVDSTEGRIREILHDVVAARLDAYLAAAPAAVPRIRGGAPPEVTRRVLVAHCAAGTVAAITVWLGDGAQTDVAALARTILAAGPTWWSPEHAARTLPADQARSAASWSTDSASARVPNANANANANA
AK018_019961314amaB_3N-carbamoyl-L-amino acid hydrolaseATGGCGCTGCTGCAGACCGACCCCGGGACGGTGGCCGCGGCAGCACGGCGCGTCATGGCGCGCTGCGACGAGCTCGCCCGGGTCACCGCCGCCGACGACGGCATCGAACGGGTCTACCTCTCCCCGGAGCACGCACGCGTCAACCGCCTCGCGGCGCAGTGGATGCGCGAGATCGGCATGACCACCCGCACGGACGCCGCCGGGAACCAGGTCGGCCGGCTCGAGCGGTCCACGGCGTCCGGCACGCCCGACTCCGACGCACCCGCGCTGGTCATCGGCTCCCATCTGGACACCGTGCCCGACGCCGGACGCTACGACGGGATCGTCGGCGTCCTCATGGGGCTCGAGGTGGTACGGATGCTGCGCGAACCGGCACCCGACCAGGCCGGCTGGCGCTCCCCGCTGCCCTTCGCGCTCGAGGTCGTCGCGTTCTCCGACGAGGAGGGCACACGGTTCGGCAAGGCGCTGTTGGGCTCCTCCGCCGTCGCCGGGACGTGGGACCCGCAGTGGTGGTCTCTGACCGATGGCGACGGCGTCTCCCTGCGGGAGGCCTTCGTCGAGTTCGGGCTCGACCCCGGCCGCGTGGCCGAGGCGGCCCGCCGGCCCGAGGAGCTGGTCGGCTACCTCGAGGCGCACATCGAGCAGGGTCCCGAGCTCGACGAACGCGGCGAGTCCCTGGCCGTGGTGTCCTCCATCGCCTCCGCGCGACGGTTCCAGCTCGTCGTCGAGGGGGAGGCCCGGCACGCCGGCGGCACCCCCTACGACCGCCGTCGGGACGCGCTGCTCGGTGCCAGCGAGGCGGCGCTCGCGGTCGAACGCCTCTGCCGGGCCGAGCACCACATGATCGGCACGGTCGGCCGGCTCGAGACCTACCCGGGCGCCGTGAACGTGGTCCCCGGCGAGGCGCACCTCAGCCTGGACCTGCGCGGCGAGCTCGACGGCGAGCGGGACCGCGTGTGGGGTGCCATCGAGCGCGAGCTCGACGCCATCATGGGCCGTCGCGGGCTGCGCTGGCACGCGCGCGAGGTGCACAGCGCACCGGCCGTGTTCTGCGCTCCGCTGCTGCAGGACGTCGTGCGCGAGGGCATCGTCTCGACGCTCGACCGCGGCGTCGACGACCCGGCGACGATCTTCAGTAGGGCGGGCCACGACGCGATGGCGATCGGCTCCGTGACCGACGTCGGCATGCTGTTCCTGCGTAACCCCGACGGCATCAGCCACCATCCCGACGAGGCGGTCTCCGCCGGCGACGTGGCCTACGGCACGCGGGCGCTGGCGGAGTCGGTGCTCCAGCTGGCGGCCGACCGGGCCTGAMALLQTDPGTVAAAARRVMARCDELARVTAADDGIERVYLSPEHARVNRLAAQWMREIGMTTRTDAAGNQVGRLERSTASGTPDSDAPALVIGSHLDTVPDAGRYDGIVGVLMGLEVVRMLREPAPDQAGWRSPLPFALEVVAFSDEEGTRFGKALLGSSAVAGTWDPQWWSLTDGDGVSLREAFVEFGLDPGRVAEAARRPEELVGYLEAHIEQGPELDERGESLAVVSSIASARRFQLVVEGEARHAGGTPYDRRRDALLGASEAALAVERLCRAEHHMIGTVGRLETYPGAVNVVPGEAHLSLDLRGELDGERDRVWGAIERELDAIMGRRGLRWHAREVHSAPAVFCAPLLQDVVREGIVSTLDRGVDDPATIFSRAGHDAMAIGSVTDVGMLFLRNPDGISHHPDEAVSAGDVAYGTRALAESVLQLAADRAPGPT0000875_151DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000875-allC-K02083NANA
AK018_019971260pucG_2COG0075(S)-ureidoglycine--glyoxylate transaminaseATGACCGCCGCCCAGCCCGGATCGAGCCTGCCCGGTCCCGAACTGCCCGGACCGATCGACCCGCCTGCCCGTCTGCTCATGGGCCCCGGTCCCGTGTCGGCGTACCCGAGCGTGCTGCGCGCGATGTCGGCCCCCCTGGTGGGCCAGTACGACCCGTTCATGACGGCCTCCATGACCGAGACCCAGGAGCTCTACCGGCAGGTGTGGGGCACGGCCAACGAGGCGACGGTGCTCGTGGACGGCACGTCCCGCGCGGGGATCGAGGCGGCGATCGTGTCGCTGGTGCGCCCGGGGGAGCGGGTGCTCGTGCCGGTCTTCGGCCGGTTCGGGCTGCTGCTCGCCGAGATCGCCGAACGGGCCATGGCCGAGGTGCACACCATCGAGGTGCCGTGGGGGCAGGTGGTGCCGGTCTCGATGATCGACGAGGCGATCCGCCGGGTGCGCCCCACGCTGCTCGCGCTGGTCCAGGGCGACACGTCGACCACGATGAACCAGCCGCTCGACGAGGTCGGGGCGCTCTGCGCCGAGCACGGGGTGCTGTTCTACTCCGACGCCACCGCCTCGCTCGGCGGCAACCCCTTCGAGGCCGACGCGTGGGGGCTGGACGCCGCCACCGCGGGCCTGCAGAAGTGCCTCGGCGGGCCGTCCGGCTCGGCGCCGGTCACGCTCTCGGAACGTGCCGTGGACGTGGTGCGCTCCCGCCGGCGGATCGAGGCCGGGATCCGCGAGGACGACGACCCCGACGCGAGCGACTTCGTGCGCTCCAACTACTTCGACCTCGGCATGATCCTCGACTACTGGGGGCCGCGGCGGCTGAACCATCACACCGAGGCCACCTCGATGCTGTACGCGGCGCGCGAGTGCGCGCGGGTGATCCTGGCCGAGGGGCGTGACGCCGTCGTCGAGCGGCACCGCCTGGCCGGCGACGCCATGCTCGCCGGCGTGCGGGGGCTGGGCCTGGAGGTGTTCGGCGACGTCGCCCACAAGATGCACAACGTGGTCGCCGTCGAGATCCCCGAGGGCGTGCCCGGTGACGCCGCGCGCGCCGCGATGCTGACCGACTTCGGCATCGAGATCGGCACCTCGTTCGGCCCGCTGAACGGACGGGTCTGGCGCATCGGCACCATGGGCTACAACGCCCGCGAGGACGCCGTGCTCACCACGCTCGCCGCCCTCGAGGCGGTGCTGCGCCGCTTCGGCCGCGCCGTCCCGCCCGGGGGTGGGACGGAGGCCGCCGCCGACGTCTTCCGGGGCGCCTGAMTAAQPGSSLPGPELPGPIDPPARLLMGPGPVSAYPSVLRAMSAPLVGQYDPFMTASMTETQELYRQVWGTANEATVLVDGTSRAGIEAAIVSLVRPGERVLVPVFGRFGLLLAEIAERAMAEVHTIEVPWGQVVPVSMIDEAIRRVRPTLLALVQGDTSTTMNQPLDEVGALCAEHGVLFYSDATASLGGNPFEADAWGLDAATAGLQKCLGGPSGSAPVTLSERAVDVVRSRRRIEAGIREDDDPDASDFVRSNYFDLGMILDYWGPRRLNHHTEATSMLYAARECARVILAEGRDAVVERHRLAGDAMLAGVRGLGLEVFGDVAHKMHNVVAVEIPEGVPGDAARAAMLTDFGIEIGTSFGPLNGRVWRIGTMGYNAREDAVLTTLAALEAVLRRFGRAVPPGGGTEAAADVFRGAPGPT0021460_305DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021460-pucG-K00839NANA
AK018_019981629QRSL1_2Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrialATGACCGAGATCCCCGGCGCCGACTCGGTGCCCGCCGACCTGTACGAGGCGTTCACGCGCTACGAGGCCGCCGTCGTCGCGAACGACCTCGACCACCTCGACGCCGCGTTCGCGCCCGGCGAGGCCACGATGCGTGGGGACGCCGCCGGGCTGCTCGTCGGGCACGAGGCGATCTCGGCGTTCCGCGGGACCCGGGGCGGCGTGGCGCCACGCGTCATCGAACGCGTCGAGCACCGTGCGCTGGGACCGGACGTGGCGCTGCTGGTCTCGGTCTCCCGGTACGACGCCGGCGGGACGGGCCTGCAGACCCAGGTGTGGCAGCGCGTCGAGGGGACGTGGCTGATCACGGCCGCGCACGTCACCCCACGCGCCGCGGCCCTCGACCGGCGGATCTGGCGCACGGTCGGCGACCCGCTGTACCAGGGTGCGTGGGAAGGGCCGCTGGCCGGCCTGACGGTGGCCGTCAAGGACCTCTTCGCGATCAAGGGCTACCGCATCGGGGCGGGCAACCCCACCTACCTGGACGGCGCCCGGCCCGAGCCCTCCACCGCGCCCGCCGTGTCCGACCTGCTGCGGGGCGGCGCGTCGCTGCGCGGGATCGCCCGGACCGACGAGTTCGCCTACTCGGTGGCGGGTGACAACCCCCACTACGGCACCCCGCCCAACGAGGCGCTCCCCGGTGCGCTGCCCGGCGGCTCCTCCAGCGGACCCGCTTCCGCGGTGGCCACCGGCCAGGCCGAGATCGGGCTGGCCACCGACACCGCCGGATCGGTCCGGGTGCCCGCGTCCTACCAGGGGCTGTGGGGACTGCGCACCACGCACGGACTCGTCCCGCGGCAGGGGATGCTGCCGCTCGCCCAGTCGTTCGACACCGTCGGCTGGCTCACCCGCGACGGGGACACGCTGCAGCGGGTCGCCGACTGGTGCCTGAGCTACGACGGCTCGGAGTCCACCGAGTCCGTCTACGGCGCGTCGGACCAGGACCTGCCCTGGCAGTTCGCGGTGCCCACCGAGCTGCTGGCCGTGGTCGAGACGGACACCCGGGCCGCGTTCGACCGGTTCCTGGCCGCGCTGGCCGGGCGTCCCGACGCGCCGAGGGTCGACCAGGTCTCGATCGGCGACCCCGAGGAGTTCCTGGCGGCCTTCCGCACCGTCCAGGCCGCCGAGGCGTGGCGCAACGACGGGCCCTGGGTCCGCGAGCACCCGGGCGCCCTGGGGTCCGCCGCCGCCGAGCGCTTCCGGTCCGCCGCCCGTGTGACGGACGAGGACGAGGCCGCCGCCCGGGCCGCCCTGGCCCCGCTGGGCGACCGCGTGCGCCGCCTCGTGGGCGACGCCGTGCTGCTCCTCCCGACCGCACCCGGTCCGGCACCGCTGCGCACCAGCGGCGGCGAACGGGTGGATGCCGTGCGCACCGCGACGCTGCAGCTCACCACGCCGGCCGCCGTCGCCGGGCTGCCGGCCCTGTCGGCACCCCTGCTCACCGTGGGGTCGCTGCTCGGCCCCGCGCCCGTCGGCGTGTGCCTCGTCTCGAGCGCCGACACCGACATCGCACTCGTCCGCCTGGCGCGCCGGCTCGCGCGCGCCGTCGCGCCGGACCACGCCACCGCCCCGACCGGAGGAACGACCTGAMTEIPGADSVPADLYEAFTRYEAAVVANDLDHLDAAFAPGEATMRGDAAGLLVGHEAISAFRGTRGGVAPRVIERVEHRALGPDVALLVSVSRYDAGGTGLQTQVWQRVEGTWLITAAHVTPRAAALDRRIWRTVGDPLYQGAWEGPLAGLTVAVKDLFAIKGYRIGAGNPTYLDGARPEPSTAPAVSDLLRGGASLRGIARTDEFAYSVAGDNPHYGTPPNEALPGALPGGSSSGPASAVATGQAEIGLATDTAGSVRVPASYQGLWGLRTTHGLVPRQGMLPLAQSFDTVGWLTRDGDTLQRVADWCLSYDGSESTESVYGASDQDLPWQFAVPTELLAVVETDTRAAFDRFLAALAGRPDAPRVDQVSIGDPEEFLAAFRTVQAAEAWRNDGPWVREHPGALGSAAAERFRSAARVTDEDEAAARAALAPLGDRVRRLVGDAVLLLPTAPGPAPLRTSGGERVDAVRTATLQLTTPAAVAGLPALSAPLLTVGSLLGPAPVGVCLVSSADTDIALVRLARRLARAVAPDHATAPTGGTTPGPT0006115_925DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426NANA
AK018_019991098hypothetical proteinATGACCCCGATCCTGCGGCCGGGCGTGGGCGAACTGCCCGGTGACCACTACCTCGCCGCCACGCCCGCCACGGTCACGTGGGGCCGCCTGCCCTGCGCCGCCGACACGCCGGTGCTGACGGTCGCCCCCGGCGAGTCCGTCACCGTCGACACCGTAAGCCACGAGGGGCTGCTGGAGGACCAGGGCTCCGACCCGCGGGCCTACTTCGGCCGGCACGGTGTCCCGCCCGCCGACGTCCTGGACGACGCCGTCACCATCGCCGCGGAGCTCGCCCGCGACCCGGACCGCGACGGCCCGCACGTGGTCACCGGGCCCGTCCGCGTCGAGGGCGCCGCACCCGGCGACCTGCTGCGGATCACCGTCGAACGCCTCGAACCCCGCGTGCCCTACGGCGTCGTGTCCAACCGGCACGGCAAGGGGGCGCTCGCCGGCGAGCTGCCCCGCGGGGAGAGCAACGTCTCGGTCTTCTGCGCCGTCGAGGAGCGCGACTCCGGGCTCGTCGGCACGATGCCCGTCACCGAGGGCGGCCCACCGGTCGTCGAGTTCCCGCTCGCGCCCTTCCTGGGGATCCTGGGCGTCGCCGTGCCGGGCGACGACCGCCCCCACTCCGTGCCGCCCGGCCCGCACGGCGGCAACATCGACATCAACCTGCTCGTCGAGGGCACCGAGCTCTACCTGCCCGTCCAGGTCGACGGCGCGCTCGTCTACGCCGGCGACCCGCACTTCGCCCAGGGGGACGGCGAGGTCGCCCTCACCGCGCTCGAGGCGTCCCTGCGGGCCACGCTGCGCTTCGACGTCGTCCCGCGGGCCGAGGCGCTCGCCGCGTTCGGCGAGGTGACCGGTCCGCTGGCCCGCGCCGGCGGGTACCTCGTGCCCACGGGGATGCACGAGGACCTCGACGAGGCGATGCGCCGGGCCGTACGCGCCGCCATCGCGCTGCTGCGGGCGCGCTGGGGGATGGACGAGCACCTGGCCTACGCCTACCTCAGTGCCGCGACCGACTTCGACATCTCCCAGGTGGTCGACGTCGTGACCGGCGTGCACGCCCGTATCCGCGAGGCCGACCTGGCCCGGGTGCCCACCGGAGGTGACGCATGAMTPILRPGVGELPGDHYLAATPATVTWGRLPCAADTPVLTVAPGESVTVDTVSHEGLLEDQGSDPRAYFGRHGVPPADVLDDAVTIAAELARDPDRDGPHVVTGPVRVEGAAPGDLLRITVERLEPRVPYGVVSNRHGKGALAGELPRGESNVSVFCAVEERDSGLVGTMPVTEGGPPVVEFPLAPFLGILGVAVPGDDRPHSVPPGPHGGNIDINLLVEGTELYLPVQVDGALVYAGDPHFAQGDGEVALTALEASLRATLRFDVVPRAEALAAFGEVTGPLARAGGYLVPTGMHEDLDEAMRRAVRAAIALLRARWGMDEHLAYAYLSAATDFDISQVVDVVTGVHARIREADLARVPTGGDANANANANANA
AK018_020001371allB_2COG0044AllantoinaseATGGCCGCGCGCCAGGTCTTCCGGGCCGAGCGGGCCTACGTCGACGGAGCCTTCCGGCCGGCCGCCGTCGTGGTCGAGGCCGGACGCGTCGCGGACGTGCTGGCCGCAGGTGCCGCCGTCGCCGGGTCGCGGGACGTCCCGGTGCCCGACGACGCCGTCCTGCTGCCCGGCCTCGTCGACTCCCACGTGCACGTCAACGACCCCGGCCGCAGCGACTGGGAGGGTTTCGGCTCGGCGACCGCCGCGGCGGCCGCCGGCGGCGTCACCACCCTGGTCGACATGCCGCTGAACTCCTTGCCGCCGACCACCACCGTCGAGGCCCTGCGGACCAAGCAGACGGTCGCGGCACCCGCCGCGTACGCCGACGTCGGTTTCTGGGGCGGCGCGGTCCCCGAGAACCTCGGCACCCTCGGCGGCCTGCACGACGCCGGTGTCTACGGGTTCAAGTGCTTCCTCGCCCCCTCCGGCGTCGACGAGTTCGGGCACCTCGACGCCGCCGGCCTCGACGCGGCCACGGCCGAGGTCGCCCGCCTCGGGTCGCGGCTCATCGTGCACGCCGAGGACCCGGACCTGCTCCACGCCGGCGGTGCGCTCGGCCGCGGCTACGACGCGTTCCTGCGCTCGCGGCCGCCGGCGAGCGAGGCCGCCGCGATCCAGGCCGTCGTGGACGCCGCCCGTCGCCACGGCGCCCGCGTCCACGTCCTGCACCTCAGCGACGCCGGCTCCCTGCCGGTGATCCGCGCGGCCCGCGCCGACGGCGTCGACCTGACCGTGGAGACCTGCCCGCACTACCTGACGATCACCGCCGAGGAGATCCCCGACGGCGCCTCGGAGTTCAAGTGCTGCCCCCCGATCCGCGAGGCCGCGAACCGCGACCTGCTGTGGGAGGGGCTGCTCGACGGGACGATCGACGCCGTCGTGTCCGACCACTCGCCCTCGACGGTCGAGCGCAAACGGGCTGGCGACGGCGACTTCGGGCTGGCCTGGGGCGGCATCTCCGGGCTGCAGGTCGGCCTGTCGGCGGTGTGGACGGAGGCGTCCGCCCGCGGCGTCGACCTGGCCGCCGTCCTTCCGTGGTTCACCACCGGGCCCGCCGCCGTCGCGGGCCTCGACGGCCTCGGCCGGATCGAGCCCGGCGCGCCCGCGCACCTGGCGGTCTTCGGGCCCGACGACCCGTTCCTCGTCGACGCCGGCGCGCTGCTGCACCGCAACCCCGTCTCCGCCTACGACGGCCGTGCCCTGCGTGGCCGGGTCCGCGGCACGTGGCTGCGCGGGGACCAGGTGTACGGCGCGGACGACGGCGGCACCGGCGTCGTCCGCGGCGCCCCGGCCGGACGGCTGCTGACCGCCCGGACGGAGGTGGCGGCATGAMAARQVFRAERAYVDGAFRPAAVVVEAGRVADVLAAGAAVAGSRDVPVPDDAVLLPGLVDSHVHVNDPGRSDWEGFGSATAAAAAGGVTTLVDMPLNSLPPTTTVEALRTKQTVAAPAAYADVGFWGGAVPENLGTLGGLHDAGVYGFKCFLAPSGVDEFGHLDAAGLDAATAEVARLGSRLIVHAEDPDLLHAGGALGRGYDAFLRSRPPASEAAAIQAVVDAARRHGARVHVLHLSDAGSLPVIRAARADGVDLTVETCPHYLTITAEEIPDGASEFKCCPPIREAANRDLLWEGLLDGTIDAVVSDHSPSTVERKRAGDGDFGLAWGGISGLQVGLSAVWTEASARGVDLAAVLPWFTTGPAAVAGLDGLGRIEPGAPAHLAVFGPDDPFLVDAGALLHRNPVSAYDGRALRGRVRGTWLRGDQVYGADDGGTGVVRGAPAGRLLTARTEVAAPGPT0000870_413DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0000870-allB-K01466NANA
AK018_02001636puuR_1HTH-type transcriptional regulator PuuRGTGGACGAGACCCTGCTGCCCGCGCAGATCGGCACCCGGCTGCGCCGGCTGCGCACCTCCCGGGGTCGGTCGCTGGCGTCGGTGGCGCGCGAGCTCGGGATCTCCTCGAGCGCGCTGTCGCAGCTCGAGAACGGGGTGATGAAGCCGTCGGTGCAGCGGCTGGTCGAGCTGGTGGGGATCCTGGGCGTGCCGGTCTCGGCGATCTTCGACGACGTCGGCGTCTCGGCACCGCGGGTGGACGAGGCCGACGGGGACGTGTCGGAGCCGTTGCCGGGCGTCCTCGTGGCGAGCCGGGCGCAGGACGTGTCGGCGCAGCTGGGGCAGGGGGTCACCTACCGGCGGCTCTCCCCGGCTCCGTTGCCGGGCGTCACCTGGTTCGAGTCGACCTACCCGCCAGGGGCGTCCTCCAGCGAGGACGGCGCGATGCTGGTCCACACCGGCTATGAGAGCGGGCACGTGGTCTCCGGCGAGCTGGTCTTCGAGTTCGCCGAGGGGTCGGTCCGCCTGGGTGCGGGGGATGCGCTCTCGTTCTCGGCCGCCCGGCCGCACCGGGTCGTCAACGACTCCGCGGGCGTCGCGGTGGCGCTCTGGCTCACGGTCGACCCGGCGGCCGCGGACGAGGGCCACGGGGCCTGAMDETLLPAQIGTRLRRLRTSRGRSLASVARELGISSSALSQLENGVMKPSVQRLVELVGILGVPVSAIFDDVGVSAPRVDEADGDVSEPLPGVLVASRAQDVSAQLGQGVTYRRLSPAPLPGVTWFESTYPPGASSSEDGAMLVHTGYESGHVVSGELVFEFAEGSVRLGAGDALSFSAARPHRVVNDSAGVAVALWLTVDPAAADEGHGANANANANANA
AK018_02002525hypothetical proteinTTGCACATCGACGAGTTCGACACCCTGGCACCTCAGGACGCACGGGCCCAGGTCGCGGTCTGGGCGGCGGTGCCGACCTGGGTCGACGCCATCGTCTCCGGACGACCGTACGGGTCCACCGACGCCCTGGCCGCCCGCGCGCAGGAGCTCGCGACCGGGTGGGGCCGGGCCGAGCTGGACGCGGCGCTGGCCCACCACCCGCGGATCGGCGAGAAGCCGTCCGGCACGGGCGCCGACGCGGCCGCGTCCCGCCGGGAGCAGGCGAGCATGGCGGACGCGGGCGACGACGTCGCCGCGCTGATGACCGCCGGCAACCGGGCGTACGAAGAGCGGTTCGGCCGGGTGTTCCTCATCCGGGCCGCGGGCCGCTCCCCCGACCAGATGCTCGGCGAGCTCGCTCGCCGGCTCGACAACGACGAGGCCACCGAGGTGGCCGAGGCGTGCGACCAGCTCGCCCAGATCGCCCTGCTGCGCCTGCGCGGCACGGTCACCGACGGCGCCGACACCCGGGAGCCCGCCCCATGAMHIDEFDTLAPQDARAQVAVWAAVPTWVDAIVSGRPYGSTDALAARAQELATGWGRAELDAALAHHPRIGEKPSGTGADAAASRREQASMADAGDDVAALMTAGNRAYEERFGRVFLIRAAGRSPDQMLGELARRLDNDEATEVAEACDQLAQIALLRLRGTVTDGADTREPAPPGPT0021135_331DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021135-hpxQ-K16840NANA
AK018_02003342hiuH_25-hydroxyisourate hydrolaseATGAGCAGCCACCTGACCACCCACGTGCTGGACACCACCGCCGGGACCCCCGCCGCGGGCGTCGAGGTGACGCTGACCGACGCCCACGGCCAGGACCTCGCGACGGCCGCCACCGACGCCGACGGCCGCGCCGCCGTCGGGCCCGACCGGCTGCCGGCGGGCACCTACACGCTGACGTTCGCCACGGGCGCCTACTTCGCGGCCCGCGCCGTCGAGACCTTCTACCCGCAGGTCACCGTCGCGTTCGTCGTCACGGACGACGCCGACGGCACGAGCAGCCGCCACTACCACGTGCCGCTGCTGCTGAGCCCGTTCGCCTACTCGACCTACCGCGGGAGCTGAMSSHLTTHVLDTTAGTPAAGVEVTLTDAHGQDLATAATDADGRAAVGPDRLPAGTYTLTFATGAYFAARAVETFYPQVTVAFVVTDDADGTSSRHYHVPLLLSPFAYSTYRGSPGPT0021125_2032DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021125-uraH|pucM|hiuH-K07127NANA
AK018_020041197hpxO_2COG0654FAD-dependent urate hydroxylaseGTGAAGATCATCGTCATCGGCGCCGGCGTCGGCGGCACGAGCGCCGCGATCGCCCTGCAGCGGCTCGGCCACGACGTCGTCGTCTACGACCGCATGCGCGAGAACAAGCCCGTGGGGGCCGCGCTGTCGCTGTGGTCCAACGGGGTCAAGGTGCTCAACTGGCTGGGCGTGGGCGAGCAGGTCGCCGCGCTCGGCGGCGCCATGGACGACATGGCCTACCTCGACGGGCACTCCGGCGAGACGCTGTGCCGGTTCAGCCTGGCCCCCGTGACCGAGGCCACCGGACAGCGCCCCTACCCCGTGGCCAGGGCCGACCTGCAGCGCCTGCTCATGGACACCGTGGGCGCCGAGCACATCCACCTGGGCATGCGGCTGGTGTCGGTGGCCGACGACGGCCAGCAGGTCACGGCCACGTTCGCCGACGGCTCCACCGACACCGCCGACCTGCTGCTGGGGGCCGACGGCGCCCGCTCCGTCGTGCGCGACCACGTCACCCGTGCCGACGAGGGCGGCGAGCGCATCGAGCGCACCTACTCGGGCTACACGAACTTCAACGGCCTGGTCGCCGCGGACACCGCCGTCGGGCCGAAGAACCAGTGGACGACCTACGTCGCCGAGGGCAAGCGCGCCGCCGTCATGCCCGTGGCCGACGGCCGCTCCTACTTCTGGTTCGACGTGCCGCAGCCCTCGGGCCTGCCGTACGACGCCGCCACGGACGGCACGGCACCGCTGCACGAGGCGTTCGGCCACTGGGCGCCGGGCGTGCAGGCGCTCCTGGCGGCGATCGACCCCGCCCGGTCGCTCAACCGCGTCGAGATCTGGGACATCGACCCGTTCCACACCTGGGTGCGCGGCCGCGTCGCCCTCCTCGGCGACGCCGCCCACAACACGGCACCGGACATCGGCCAGGGCGCCTGCCTCGCCCTGGAGGACTCCTTCGCGCTCGCCATCAGCCTGGCCACGAACACCGTGAGCGTCGAGGACTCCCTGCGCCGCTACGAGCGCAGCCGCACCGAGCGCGCCGCCGACCTGGTGCAGCGGGCCCGCGACCGAGGCGAGGAGACCCACGGGTACGACGCCGCGAAGACCGCCGAGTGGTACGCGTCTCTGCGGGGCAACGACGGCACCGGCATCATCCGCGGCATCGTCGGCAACATCACCGGCAGCCCGGTCAACCTCGGCGTCGGCACCCTCTGAMKIIVIGAGVGGTSAAIALQRLGHDVVVYDRMRENKPVGAALSLWSNGVKVLNWLGVGEQVAALGGAMDDMAYLDGHSGETLCRFSLAPVTEATGQRPYPVARADLQRLLMDTVGAEHIHLGMRLVSVADDGQQVTATFADGSTDTADLLLGADGARSVVRDHVTRADEGGERIERTYSGYTNFNGLVAADTAVGPKNQWTTYVAEGKRAAVMPVADGRSYFWFDVPQPSGLPYDAATDGTAPLHEAFGHWAPGVQALLAAIDPARSLNRVEIWDIDPFHTWVRGRVALLGDAAHNTAPDIGQGACLALEDSFALAISLATNTVSVEDSLRRYERSRTERAADLVQRARDRGEETHGYDAAKTAEWYASLRGNDGTGIIRGIVGNITGSPVNLGVGTLPGPT0021115_96DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021115-hpxO-K16839NANA
AK018_020051674actP_4COG4147Cation/acetate symporter ActPGTGAGCCAGATCCAGATCTGGACCCTCGTCTTCGTGGGTCTGTCCTTCGCCACCTACCTGACCATCGCCTGGCGCAGCCGCGTCAAGGAGACCAAGGGGTTCTACGTCGCCGGCCAGGGCATCCCCGCCGTGGCCAACGGCGCCGCCGTCGCGGCCGACTGGATGTCGGCGGCCTCGTTCATCTCGATGGCGGGCCTCATCGCGTTCCTCGGCTCGGACGGCTCCGTCTACCTCATGGGCTGGACGGGCGGCTACGTGCTGCTCGCCCTGCTGCTGGCGCCGTACCTGCGCAAGTGGGGCAAGTTCACCGTGCCGGAGTTCGTCGGCGACCGGTACTCGGAGTACGTGCGGCTCATCGCCGCGATCGCCGCGATCATCGTGTCCTTCACCTACGTGGTGGGCCAGATGCGCGGTGGCGGCATCGTCTTCAGCCGGTTCCTCAACCTGTCCATCGAGGGCGGCGTGGCCGTGGCGGCCGGGATCATCTTCCTGTACGCCGTGCTCGGCGGGATGAAAGGCATCACCTGGACCCAGGTGGCCCAGTACACCGTGATGATCGTCGCGTACCTCATCCCGGCGTGGACCATCGCCCAGAAGATGACGGGCTTCCCGGTCCCGCAGGTCACGTTCGGCCAGATCCTGGGCGAGCTGGACGCGCTGAGCCAGCAGTTCGGCCTGGAGCAGTACACCGAGGCATTCGCGGCCCGTCCGCAGCTCGACGTGTTCCTGGTGACGATGTCGCTGATGATCGGTACCGCGGGCCTGCCGCACGTGATCATCCGCTTCTACACCACCAAGTCGGTGCGCGGTGCGCGGTTCTCCGCGTTCTGGGCGCTCGTGTTCATCGGCCTGCTGTACACCACGGCACCCGCCGTGGGGGCGTTCACCAAGCTCAACCTCATGCAGTCGGTCGACGGCGTGGCCGTCGCCTCGCTGCCCGCGTGGGTGAACAACTGGGCCGCGACCGGGCTGGTGTCGGTCTCCGACACCGCCGAGACGATCACGACGCTGAGCAACGACCCGGCCTCGGGTGCCGACCTCATCGTCAACAACGACATCCTGGTGCTGGCCACCCCGGAGATCGCGGGCCTGCCCGCACCGATCGTCGGACTGGTCGCCGCGGGTGGTCTGGCGGCCGCGATGTCGACGGCGGCCGGCCTGCTGCTGGTCATCTCCTCGTCCGTGTCGCACGACCTGTACTTCCGGGTCGTCAAGCGGGAGGCCTCGGAGTCGCAGCGGCTCCTGGTCGGCCGTATCGCGATGGGCGCCGCGGTGCTGGTGGCCATCTACGGCGGCATCAACCCGCCCGCCTACGTGGCCCAGGTGGTCGCCTTCGCGTTCGGGCTGGCGGCGTCGACCTTCTTCCCGATCCTGGTCATGGGGATCTTCTGGAAGCGGGCCAACGCCGTCGGTGCGGCCTCGGGCATGATCGCCGGTCTGGCGTTCACCGCGACGTACATGATCTACACCCTCGAGGTGTTCGGGACGTCGGCGCACGACCACATCCTGGGGATCTCGCCGGAGGGCATCGGCGCCGTCGGCGCGGTCGTCAACGCGATCGTGACGATCATCGTCTCGAAGCTGACGTCGCCACCGACGGAGCACGTCCAGGAGATGGTCGAGGGGCTGCGCTACCCCGCGGCGAAGCGGAAGGAGACCTCGGTTCCCGAATAGMSQIQIWTLVFVGLSFATYLTIAWRSRVKETKGFYVAGQGIPAVANGAAVAADWMSAASFISMAGLIAFLGSDGSVYLMGWTGGYVLLALLLAPYLRKWGKFTVPEFVGDRYSEYVRLIAAIAAIIVSFTYVVGQMRGGGIVFSRFLNLSIEGGVAVAAGIIFLYAVLGGMKGITWTQVAQYTVMIVAYLIPAWTIAQKMTGFPVPQVTFGQILGELDALSQQFGLEQYTEAFAARPQLDVFLVTMSLMIGTAGLPHVIIRFYTTKSVRGARFSAFWALVFIGLLYTTAPAVGAFTKLNLMQSVDGVAVASLPAWVNNWAATGLVSVSDTAETITTLSNDPASGADLIVNNDILVLATPEIAGLPAPIVGLVAAGGLAAAMSTAAGLLLVISSSVSHDLYFRVVKREASESQRLLVGRIAMGAAVLVAIYGGINPPAYVAQVVAFAFGLAASTFFPILVMGIFWKRANAVGAASGMIAGLAFTATYMIYTLEVFGTSAHDHILGISPEGIGAVGAVVNAIVTIIVSKLTSPPTEHVQEMVEGLRYPAAKRKETSVPEPGPT0001400_1457DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393NANA
AK018_02006324hypothetical proteinATGACCGATGCGCGAGGGAGCGCACCCGATCCCGGGCCACCGCCCGGGGCCAACGGGTGGCGCCAGGAGTACTGGAAGAAGAACCTGCGGCTGATGGTCGTGCTGCTGTCGATCTGGTTCCTGGTCTCGTTCGTGTGCGGGATCCTGCTGATCGAACAGCTCAACACCATCGTGATCGCCGGGTTCCCGCTGGGCCTGTGGTTCGCCCAGCAGGGGTCGATCTACACGTTCATCATCCTGATCCTGGTCTACACGCTGCGCATGGACCGGCTCGACGACGAGTACGGGGTGGCCGAGCGCGACGAGGAGGGGAACCGGCTGTGAMTDARGSAPDPGPPPGANGWRQEYWKKNLRLMVVLLSIWFLVSFVCGILLIEQLNTIVIAGFPLGLWFAQQGSIYTFIILILVYTLRMDRLDDEYGVAERDEEGNRLNANANANANA
AK018_02007459hypothetical proteinATGGCCTCGACGACGAGCTCCGCCCTCGGCAACCTGCTGCGTGCAGGGGGCCGCACCGCCACCCCGCGCAAGCGCGTGCTGCACCCGGGCAGCGTCGGCATGCTGGTGGGTGCGCTGCTGGTGATCGTCGGCAGCCTGCTGCCCTGGGTCGTCACGCCGGTCGGCACCCTGTCGGGCACCGGAGGTCCCGGGCTGTGGACGCTGTGCGCCGGGTTCGTCGGGGTGGCCGGCGCGGTGATCCCGCGCCGCTGGGTCGCGGTCTCGCACAGCCTCGTCGCGGGCACGGGTACGGCGTTCGTGGCCGGCTGGCAGCTCGTGCGCCTGGTCCAGGTCTCCAGCGCCACCGACGCGTGGGGGCAGGCGATGCCGGGCATCGGGCTGGTCATGGCCGCCGGGGGCGCCGTCGTCCTGCTCGCCACGGGGGTCCGCCTGCTGCGCACGCCCGCCGTGCCCGCCTGAMASTTSSALGNLLRAGGRTATPRKRVLHPGSVGMLVGALLVIVGSLLPWVVTPVGTLSGTGGPGLWTLCAGFVGVAGAVIPRRWVAVSHSLVAGTGTAFVAGWQLVRLVQVSSATDAWGQAMPGIGLVMAAGGAVVLLATGVRLLRTPAVPANANANANANA
AK018_02008339hypothetical proteinATGGACGACGGCGTCGACACCAGCGACACCCCTGCGGAGGTGGACGCGACCTTCCGCACCCTGCGACGGGTCGCGGTGGGCTACTTCGTCGTGTTCCTGCTCGCCGTGGCTGCCTTCCCGATCCTGTCGCTCACCCTGGACTGGTGGTCGAGCTCGCGGCTCGTGGGGGGCATGTCCCCCGGGTTCCTCGTGGCCGGGTTCGGGCTCTACGTCTTCTTCGCGGTGCTCGGCGTCGCCGCGGCCAGCCTGTCCTCCGCCGTCGAGCACCGGATGCTGGGCACCAGCCGTGAGCCGGTGGACGACGACGTCGCCCCGGGCTCGAGCGAGGGCCTCCCGTGAMDDGVDTSDTPAEVDATFRTLRRVAVGYFVVFLLAVAAFPILSLTLDWWSSSRLVGGMSPGFLVAGFGLYVFFAVLGVAAASLSSAVEHRMLGTSREPVDDDVAPGSSEGLPNANANANANA
AK018_020091695actP_5COG4147Cation/acetate symporter ActPGTGACCGGGTCGGCGGCCCTCGCCCTGGCCGCGGCGCTGGCGCTGGTGGCGACCGTGGCCGTGGTGATGCGCCCGCGGGGCGCCTCCACCGTCGACTTCTACCTGGCCGGGCAGCGCGTCGGGGTCGCGACCAACGCGTTCGCGATCTGCGGGGACTACTTCTCGGCGGCGTCGTTCCTCGGGGTCGCCGCCGCCGTGTACGCCACGGGTCTCGACGGCGCCTGGTACGCGGTCGGCTTCGCCGCCGGGTTCGTGCCGGTGCTGCTGTTCGTCGCCGCTCCCTTGCGGCGCTTCGGTGAGTTCTCCATCCCCGACTTCCTGGGCCGTCGGCTCGGTTCGGAGACGGTGCGGCTCGTCGCCGTCGGCGTGGTCCAGCTGGTCATCCTGTCCTACCTGGTCCCGCAGACCGTCGGCTCGGGCATCACGTGGGAGCTGCTGGTCGGCGAGGGCGTGCTGGGCCTGGACCCGTACGCCACCGGCATCCTGGCCTCCACGGCCGTCGTCACCGTGCTGGTCGCGTTCGGAGGGATGCGCGGGACCACCTGGACCCAGGCGGTGCAGTTCCTCCTGCTGCTCGGCGCCCTGGTGTGGCTGGCCGCGACCGTCGTCGCCGAGGGCTTCCACTACGGCGAGGCGGTCGAGAGCATCTCCAGCGTCCCCCTGGACAACCCCGCCGGGTCGACCGACGGGCTCACGCCCGAGCAGAGCGCCCTGCACCCCGGCGAGCCGGCGGTGTTCGGCGAACCGGGCGCCCGGTACGGCGGCCTGGGCCAGTTCGCCCTCATCGTCACCCTCGCCATGGGCACCGCGGGACTGCCGCACGTCATGAACCGCTACTTCACCTCCCCCACGGGCACGGCCGCCCGCACCACCACGGTGTGGGTGCTGTGCCTGGCGGGGATCTTCTACTCCCTGGCAGTCATGCTCGGCACCGCGGCGCGCGACCTGATCCCCGCCGCCGTCACGGACCGGCCGTGGCTCGCCGAGCTGACCGTCGACGGCGTCCTGCGGGTCCCCGAGCACGCCCTGCCCGTGCTGGGTCGCATCTTCGGCGAGGACGCGGGCCTCGGCGTCGTCGCCGCCGGCGCGCTCGTGGCCGTGCTGTCCACGATCGCGGGTCTGTTGCTCGCCGCCGCGGCGTCGTGGGGCCACGACGTCTACGAGCGCCACATCAACCCGCGCGCGACCCAGCGCCAGGCGGTGCTCGCCGGACGCGTCACCACGCTGGTCACGGCCTGCGCCGCGGCGGGCCTCGGGCTGGCGATGCGGCCCGAGTCGTTCGCGGCCGCCACGCCGTCCATCGTGGCCACGATGGTCACGTGGGCGTTCGCGGTGGCCGGGTCGGCGCTGACCCCGGTGTTCGTCCTGGCCATCTGGTGGCGGCGCACGACGGCGGCCGGTGCCGTGGTCGGCATGGTCGCGGGCCTGGTCGTCGCGGTCGGCATGTTCACCGCCGGGGCGCTCACCTCCGGCGGGCTGCTGCGCGAGGTCCTGGTGACCCCCACCCTGCTGGCCGCACCCGTCGCCGTGGTGACCGCCGTCGTCGTCTCCCGGCGGACCACACCGCCGGCGGACGTCGAACGCTCCTGGCAGACCATGCACGGCACCGCCGCGGACCGGCGCGCCGAACGGATCGCCCGGCTGATGCTCGCCGAACGGCGGGCCGCCCGGAGGTGGCGACGTGCGCGGCGGTAGMTGSAALALAAALALVATVAVVMRPRGASTVDFYLAGQRVGVATNAFAICGDYFSAASFLGVAAAVYATGLDGAWYAVGFAAGFVPVLLFVAAPLRRFGEFSIPDFLGRRLGSETVRLVAVGVVQLVILSYLVPQTVGSGITWELLVGEGVLGLDPYATGILASTAVVTVLVAFGGMRGTTWTQAVQFLLLLGALVWLAATVVAEGFHYGEAVESISSVPLDNPAGSTDGLTPEQSALHPGEPAVFGEPGARYGGLGQFALIVTLAMGTAGLPHVMNRYFTSPTGTAARTTTVWVLCLAGIFYSLAVMLGTAARDLIPAAVTDRPWLAELTVDGVLRVPEHALPVLGRIFGEDAGLGVVAAGALVAVLSTIAGLLLAAAASWGHDVYERHINPRATQRQAVLAGRVTTLVTACAAAGLGLAMRPESFAAATPSIVATMVTWAFAVAGSALTPVFVLAIWWRRTTAAGAVVGMVAGLVVAVGMFTAGALTSGGLLREVLVTPTLLAAPVAVVTAVVVSRRTTPPADVERSWQTMHGTAADRRAERIARLMLAERRAARRWRRARRPGPT0001400_1269DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393NANA
AK018_020101335ypdA_2COG3275Sensor histidine kinase YpdAGTGCGCGGCGGTAGCGGACTCCTGGCCGGCGTGCTGGCCGCGGCCTGGGCACTGGTCTTCCTGGTCACCCAGGTGCTCGTCGACCCGGCGCTCGACGCCGCCGCCACCGTGCTCGCCGGCGTCGTCGTGAGCACCGTCGTCGTGCTGGGCTACCCCTCCGCGCTGCGCGGCCCGCGCGCCGCACCCACCACCCGCGGCGGGAAGCGCTGGCGTCCCGCCCGCCGCCCCCGGGACCCCCGCGGGGTGCGCGACGGGCTCACCATCGCCGCCGCAGGCCAGTCGATGCCGCTGCGCAACGGCCTGACCCGCGACGCCGCCCGCCGCACCGCCCAGCTCATCAAGCCGCTGCTCGGCGGGGACGCCGTCGCGATCACCGACACCGAGCAGGTGCTCGCGTTCGTCGGCCCGGGCGCCGACCACCACCGCGTCGGCGGCGGGCTGCAGACCCGCATCGCGCGCGTCGCGCTCGGCAAGGGACGCACCGTCGTCGTGCACGCCCGCGACGGCATCGGCTGCCCCGAGCCGGTCTGCCCGCTGCGCACCGCCGTCGTCGCGCCGCTGGCGATCGGCGACCGCGTGGTCGGCACGCTGAAGGTCTACCGCACCCAGGACGAGCCCGCGCCCCGCGTGCTGGTCGACGACATGGCCTCCATGCTGTCCCTGCACCTGGAGCTGGCGGAGATGGACCGCGAGCGCCACCTGGCCGCCGACGCCCGCCTCGACGCCCTGCGCGCGCAGATCAACCCGCACTTCCTGTTCAACATCCTCAACACCATCGCGTCCAAGTCCCGCACGGACCCGGAGGAGTCCCGTCAGCTCCTGCTGCGCCTGAGCGACTTCTTCCGCTACGCGGTGCGCCAGGACGGGCACTTCGCGGAGTTCAGCCAGGAGTACTTCTTCGTGCGGACCTACCTGTCGCTGGAGCAGGCCCGGTTCGGCGACCGCCTGCGCGTGCGCTACGACATCGACCCGCAGGTACTGACCACGCGGGTGCCGGTGCTGGTGATCCAGCCGCTGGTGGAGAACGCCGTCAAGCACGGGATCGCGGACGCCGTGGCGGGCGGGACGATCCACCTGCGCGCCCGGGTGGACCCGTTGGCGCGCACCACGTCGATCCGGGTGTCCGACGACGGCGTGGGCATGACGCCCGAGGTGCTGGACCGGCTGCTGGCCGGCGGGCGTCCCGGGCTGCCGGAGTCCTCGAAGCACTCGGGCGTGGGGCTGTGGAACATCTCCCAGCGCCTGGACGCCCTGTTCGGCGACCGGTACACGTTCGACGTGGCCTCCACGCCCGGCCGGGGCACGACGGTCGACCTGCGGATCCCGCTAAGGTGAMRGGSGLLAGVLAAAWALVFLVTQVLVDPALDAAATVLAGVVVSTVVVLGYPSALRGPRAAPTTRGGKRWRPARRPRDPRGVRDGLTIAAAGQSMPLRNGLTRDAARRTAQLIKPLLGGDAVAITDTEQVLAFVGPGADHHRVGGGLQTRIARVALGKGRTVVVHARDGIGCPEPVCPLRTAVVAPLAIGDRVVGTLKVYRTQDEPAPRVLVDDMASMLSLHLELAEMDRERHLAADARLDALRAQINPHFLFNILNTIASKSRTDPEESRQLLLRLSDFFRYAVRQDGHFAEFSQEYFFVRTYLSLEQARFGDRLRVRYDIDPQVLTTRVPVLVIQPLVENAVKHGIADAVAGGTIHLRARVDPLARTTSIRVSDDGVGMTPEVLDRLLAGGRPGLPESSKHSGVGLWNISQRLDALFGDRYTFDVASTPGRGTTVDLRIPLRPGPT0026305_942DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026305-lytS|ypdA|yehU-K02478NANA
AK018_02011822lytR_2COG3279Sensory transduction protein LytRGTGACCGCTGTGCGACCCAAGGCACTGATCGTGGACGACGAGGCCCCCGCCCGGGCCGAGCTGCGCTTCCTGCTGGAGGCGGACGGTCAGGTGCAGGTGGTCGGCGAGGCCACGAACGGCGAGGAGGCCCTGCTGCTGCTCGGGTCGCTCGACTACGACCTGGTGCTGCTCGACGTGCGCATGCCCGGCGGTTCAGGTCTGGACGTCGCCGCGGCGCTGCGCGAGCGGTCGCGGCCCCCGAAGGTCATCTTCACCACCGCCTACCCCGACCACGCCGTGGACGCCTTCGACCTGGCGGCGGTCGACTACCTGCTCAAGCCGTTCGACGCCGAGCGGTTGCGGCGCGCATTGGACCGGGCGCTGCGCGGCGCCGGGGAGCAGCCGGGCACGACGGCGGAGCAGGCGACGGGCAGCAGCGCCTCGGCCGACGGTGCCGACCGGGGAACGCCGTCGGGCGCCCGGTCGTCCACCTCGCCGCCCGACGTCGAGCCGCTGGTGCGCATCCCCGTGCAGCGGGACGGACGCACGGTGCTGGTCGACGGCGCCTCGATCGTGTACGCCAGCGCAGCCCGCGGGTACTCCTACCTCAAGCTGGCCGACGAACGGCTGCTGGTGACCATGTCGCTCAACGAGCTCGAGCGGCGCCTGCACGGGCACTTCTTCCGCGCCCACCGCTCCTACCTCGTCAACCTCGACCACGTGCGCGAGCTGGTGCCGGACTTCCAGGGCTCGCTCGTGGTCGTGATGGACGACCGGCAACGCTCCCGCGTGGAGGTCTCCCGACGCCACGCCCGCGAGCTGCGGCGACGGTTCGGCATGTGAMTAVRPKALIVDDEAPARAELRFLLEADGQVQVVGEATNGEEALLLLGSLDYDLVLLDVRMPGGSGLDVAAALRERSRPPKVIFTTAYPDHAVDAFDLAAVDYLLKPFDAERLRRALDRALRGAGEQPGTTAEQATGSSASADGADRGTPSGARSSTSPPDVEPLVRIPVQRDGRTVLVDGASIVYASAARGYSYLKLADERLLVTMSLNELERRLHGHFFRAHRSYLVNLDHVRELVPDFQGSLVVVMDDRQRSRVEVSRRHARELRRRFGMPGPT0026304_550DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026304-lytR|ypdB|yehT-K02477NANA
AK018_02012735rph_2COG0689Ribonuclease PHATGACCACTCGCGCTGACGGCCGTACCCCTGACCAGCTCCGCCCCGTGACCATCACCCGCCACTGGAGCGAGAACGCCGAGGGCTCGGTGCTCGTCGAGTTCGGCAAGACCCGGGTGCTGTGCACCGCCTCGCTGACCGAGGGCGTGCCGCGCTGGAAGAAGGGCTCCGGCGAGGGCTGGGTCACCGCCGAGTACGCGATGCTGCCCCGCGCCACCAACGAGCGCAGCCCGCGCGAGTCCGTCAAGGGCAAGATCGGCGGCCGCACCCACGAGATCTCGCGGCTCATCGGCCGGGCGCTGCGTGCCGTCGTCGACGTCACGGCCCTCGGGGAGAACACGGTCGTGCTGGACTGCGACGTGCTGCAGGCCGACGGCGGCACCCGCACCGCCGCGATCACGGGCGCCTACGTGGCCCTCGCCGACGCCGTCGCGTGGGGTGAGCGGCACGGGGCGATCAAGGGCGGCAAGCAGGTGCTCACGGACTCGGTGGCGGCGATCAGCGTCGGCATCATCGACGGCACCCCCATGCTGGACCTGCCCTACGTCGAGGACGTGCGCGCCGAGACCGACATGAACGTCGTCACGACCGGTGGCGGGCAGTTCGTCGAGGTGCAGGGCACCGCGGAGGGCGTGCCGTTCCGGCGCGACGAGCTCGACGCGCTCCTGGACCTCGCGGTGGTCGGCACCACCGAGCTCACGGCGATCCAGCGGGCCGCGCTGGCCGAGGAGGCCTGAMTTRADGRTPDQLRPVTITRHWSENAEGSVLVEFGKTRVLCTASLTEGVPRWKKGSGEGWVTAEYAMLPRATNERSPRESVKGKIGGRTHEISRLIGRALRAVVDVTALGENTVVLDCDVLQADGGTRTAAITGAYVALADAVAWGERHGAIKGGKQVLTDSVAAISVGIIDGTPMLDLPYVEDVRAETDMNVVTTGGGQFVEVQGTAEGVPFRRDELDALLDLAVVGTTELTAIQRAALAEEAPGPT0021590_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428NANA
AK018_02013666COG0127dITP/XTP pyrophosphataseGTGCCGGCCACGGCGTCGGCCCCGGCCGGTGCCCGCCTCGTGCTGGCCACGCACAACCGCAAGAAGCTCGTCGAGCTGCTGGCGATCCTGCGCACCCGGCCCGGACTGGACACGCTGCCGGACGAGGCCGTCGTCACCGCCGGCGACCTCGGCGCGCCCGAGCCCGTCGAGGACGGCGTGACGTTCGCCGAGAACGCGCTGATCAAGGCGCGCGCCCTCGCGGCGGCGTCCGGGCTGCCCGCCGTGGCGGACGACTCGGGCCTGAGCGTCGACGTCCTCGGCGGGGCGCCGGGGATCTTCTCGGCCCGCTGGGCGGGGCGCCACGGCGACGACACCGCGAACCTGGGGCTGCTGCTCGCCCAGCTCGGCGACGTGCGCGACGAGCACCGGGGTGCCGCGTTCGTGTGCGCGGCGGCCCTCGTGACCCCGGACGGCCACGAGGAGGTCGCGCTCGGCGAGATGCCGGGCGTGCTGGTCCGCTCCCCGCGCGGGGACGGCGGGTTCGGCTACGACCCGATCCTGGTGCCCGCCGAGCAGCCGCCCGGTCCGGACGGCTCGCCGGGGACGCGCACGTCGGCCGAGCTCTCGGCGGACGAGAAGAACGCGATCAGTCACCGCGGCAAGGCGCTGCGCACGCTCGCCCCGGCGGTCGCCGCCGCGCTCTGAMPATASAPAGARLVLATHNRKKLVELLAILRTRPGLDTLPDEAVVTAGDLGAPEPVEDGVTFAENALIKARALAAASGLPAVADDSGLSVDVLGGAPGIFSARWAGRHGDDTANLGLLLAQLGDVRDEHRGAAFVCAAALVTPDGHEEVALGEMPGVLVRSPRGDGGFGYDPILVPAEQPPGPDGSPGTRTSAELSADEKNAISHRGKALRTLAPAVAAALPGPT0021590_1204DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428NANA
AK018_02014369hypothetical proteinGTGCAGAAGCTCCCCGCCTGGCCGGCCGCCGTGTGCGACCTGGTCTGCGTCCTGGTGTTCACGCTCGTCGGCACCGCCAGCCACGCCTCGGCCGGGTCGCCCGGCCACGTGCTGGCCGTCGCCGCGCCGTTCCTCGTCGGGCTGGCCGTCGGCTGGCTGGCGGCCCGGGCCTGGCGGGCGCCGGCGCAGCCGTGGCCGACCGGGGTGGCGGTCTGGTTCGCGACCGTCGTGCTCGGGGTGATGCTGCGGCCGCTGTTCACCGGCGGGTTCGCGTGGACGTTCACGCTGGTGACCGCCGGTTTCCTCGGGGTGACGATGATCGGCTGGCGGCTGCTGGCGACGGTCGCGCGCCGCCGCGCCGCCTCCTGAMQKLPAWPAAVCDLVCVLVFTLVGTASHASAGSPGHVLAVAAPFLVGLAVGWLAARAWRAPAQPWPTGVAVWFATVVLGVMLRPLFTGGFAWTFTLVTAGFLGVTMIGWRLLATVARRRAASNANANANANA
AK018_02015807COG1234putative proteinATGAGACTCGTGACCGTGGGCGTGGCCGGTTCGCTGCCGGGGCCGACGTCGCCGGCGTCGTGCTATCTGGTCCAGGCCTCCGACGGCGAGCGGGACTGGAGCGTGGTGCTCGACCTGGGTTCGGGCTCGCTCGGGCCGCTGCAGCGGCATGTGGACCCGCTGGACCTGGACGCGCTGGCGCTGTCCCACCTGCACCCGGACCACTGCTCGGACCTGAGCGGGCTGTACGTGTACCTGCGCTACCACCCCGAGTGGGGGGTGCACCGCACGGGCGCCGCGCGGGAGCTGCCGGTGCACGGGCCCTCGACCACGCGTGAGCGCGCCGCGGCCATGTACGGGCTGGACCCGGGCGAGACCATGGACGCCGAGTACGCGTTCCGCACCTGGGACCCGGCCGCTCCTCCGGTGCAGGTGGGGCCGCTGCTGCTGGAGCCGTTCGCGGTGAACCACCCGGTGGAGGCGTACGGCATCCGGGTAACGGGGCCGTCGTCGCAGCGTCCGGGCGAGACGGTCACGCTCGTGTTCTCCGGAGACACGGACGCGTGCGCGAACCTCGTCGAGGCGGCGCGCGGCGCCGACCTGCTGCTGTGCGAGGCGGCGTTCGTCGAGGGACGTGACGACGGGGTCCGCGACATCCACCTGACCGGGCGGCGGGCCGGCCGGGTCGCGGCGGAGGCGGGTGCGGGCCGGTTGCTGCTGACGCACCTGACCGCGTGGACGGACCCGCAGGTCCCGCTGGCCGAGGCGCGCGGCGAGTTCGACGGTCCGGTCGAGCTGGCCGTGGCGGACGGCGTCCACCTGCTCTGAMRLVTVGVAGSLPGPTSPASCYLVQASDGERDWSVVLDLGSGSLGPLQRHVDPLDLDALALSHLHPDHCSDLSGLYVYLRYHPEWGVHRTGAARELPVHGPSTTRERAAAMYGLDPGETMDAEYAFRTWDPAAPPVQVGPLLLEPFAVNHPVEAYGIRVTGPSSQRPGETVTLVFSGDTDACANLVEAARGADLLLCEAAFVEGRDDGVRDIHLTGRRAGRVAAEAGAGRLLLTHLTAWTDPQVPLAEARGEFDGPVELAVADGVHLLNANANANANA
AK018_02016804murI_1COG0796Glutamate racemaseGTGAACGACGCTCCGATCGGGATCTTCGACAGCGGGGTGGGTGGTCTCACGGTCGCCCGCTCGATCCTCGACCAGCTCCCGCACGAACAGCTGCACTACATCGGCGACACGGCGAACGGCCCCTACGGGCCCAAGCCGCTGGCCGCCGTGCGCGCGATGGCGCTCGCGGTGATGGACCGGCTGGTCGACGACGGCGTGAAGATGCTCGTCATCGCCTGCAACTCCGCGTCGGCCGTCGCGCTGCGGGACGCGCGGGAGCGCTACACCGTGCGCCGCGGCATCCCGGTGGTGGAGGTGATCCTGCCGGCCGCGCGTCGCGCCGTCGTCGCCTCGCGGTCGGGACGCATCGGTGTGATCGGGACCAAGGCGACCGTGGAGTCGCTGGCCTACGACGACGCGTTCGCCGTCACGCCGGGGCTGGAGGTCACGAGCCAGGCCTGCCCCGAGTTCGTGCGCCTGGTGGAGGAGGGTACGACGTCGGGTCCCGAGGCGCTCGACATCGCCAACCAGTACCTGGCCCCGGTGAAGGCCGCCGGCGTGGACACGCTCGTCCTCGGGTGCACCCACTACCCGCTGCTGGCCGGGCCCATCTCGTACGTGATGGGGCAGGACGTCACGCTCGTGTCCTCGGCCGAGGAGACGGCGCAGGACGTGTACCGCAAGCTCGTCGCCCACGACCTCGAGCGGCCGGTCGACGCACCCGCCCCGGTCCACCGCTTCGCGGCCACGGGCAGCCCGGCACCGTTCGAGGAGCTGGCGCGGCGGTTCCTCGGCCCGGAGGTCGACCTGGTGGAGGCGGCATGAMNDAPIGIFDSGVGGLTVARSILDQLPHEQLHYIGDTANGPYGPKPLAAVRAMALAVMDRLVDDGVKMLVIACNSASAVALRDARERYTVRRGIPVVEVILPAARRAVVASRSGRIGVIGTKATVESLAYDDAFAVTPGLEVTSQACPEFVRLVEEGTTSGPEALDIANQYLAPVKAAGVDTLVLGCTHYPLLAGPISYVMGQDVTLVSSAEETAQDVYRKLVAHDLERPVDAPAPVHRFAATGSPAPFEELARRFLGPEVDLVEAAPGPT0020200_2834DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020200-murI-K01776NANA
AK018_02017681hypothetical proteinATGAGTCCGTTCCGTGCCACCCCGGCGGGGTACGTGGCGACGTGGGAGCCGGTCGAGCGGGAGGTCCTGGCGCGGGTGGCCCGGGACGTGGCGGGGCTGCTGAGCGCGGACTCCGGGCTGCCCGACGACGCCACGGAGGCGGAGGTGGCGTTCACGGGGGTGGCGCGGGTCCCGCGGGATCCCGCGGTGCAACGGCTGCTCCCGGACGCGCACCGGGAGGACGCTGACGTGGCGGCGGAGTTCCGCCACCTGACCCAGACGGACCTGGCCGCCGGCAAGGTCGCCCGGCTGCACCGGTTCGCCGAGACGGTCGACCCGGTCGAGGAGCCCGTGACGGACGCGGGTGACGGCGACCAGGTGCTCGTCGGGCGGGACGCGGCCCAGGACTTCGCGGCGGCGCTGACGGACGTCCGGCTCGTGCTGGGCGAACGGCTCGGTCTGGACGACGACGCCGACGTCGAGCGTCTGCACCACGAGGTGCTGTCCGGGTTCGGTCCGGACGACGCCGACACAGACGCCGACGCCGATGCCGACGCCGCGGACGGAGACGAGGGCAGCGACGAGCTGGACCCGGAGCAGCGCGTGTACTGGGGCGGGGTGTTCGTCGCGGCGGGCTTCGCCCAGGAGTCCTTGATGGACGAGCTGCTGGCCGAGCTGCGGGCACGCCGCGCCGGGCAGTGAMSPFRATPAGYVATWEPVEREVLARVARDVAGLLSADSGLPDDATEAEVAFTGVARVPRDPAVQRLLPDAHREDADVAAEFRHLTQTDLAAGKVARLHRFAETVDPVEEPVTDAGDGDQVLVGRDAAQDFAAALTDVRLVLGERLGLDDDADVERLHHEVLSGFGPDDADTDADADADAADGDEGSDELDPEQRVYWGGVFVAAGFAQESLMDELLAELRARRAGQNANANANANA
AK018_02018315clpS_1ATP-dependent Clp protease adapter protein ClpSATGACGAGCGGCGCGACGCAGGAGGACACCCGGACCGAGGCGGTGTCCCGGCTCGCCGACCCGTGGGTGACGATCGTGTGGAACGACCCGGTCAACCTGATGAGCTACGTGTCCTACGTGTTCGAGAGCTACTTCGGATATCCGGAGGCGAAGGCGCGCCGGCTGATGCTGCAGGTCCACCACGAGGGGCGCGCGGTCGTCTCGACGGGGCCCAAGGAGCGCATGGAGGTCGACGTGCAGGCCATGCACGGGTTCGGGTTGTGGGCCACGATGCAGCAGTCGGACGCGCCGGCCGCGGCGGGGGAGGGCGCATGAMTSGATQEDTRTEAVSRLADPWVTIVWNDPVNLMSYVSYVFESYFGYPEAKARRLMLQVHHEGRAVVSTGPKERMEVDVQAMHGFGLWATMQQSDAPAAAGEGANANANANANA
AK018_020191425pncB1_1COG1488Nicotinate phosphoribosyltransferase pncB1ATGACCGACGAGAGACGGGGCAACGGCGCTCCGCCCGACACCCTGACCGCACCCCGATCCCTCCCGGCGGCCCCCTTGCCCACACTGCGGCCCTCCCTCGCCCTGCTCACCGACCGCTACGAGCTCACGATGCTCGCCGCCGCCCTCGCCGACGGCACCGCGCACCGTCACTGCGTCTTCGAGGTGTTCACCCGGCGCCTCCCACCCGGTCGGCGCTACGGCGTCCTCGCCGGCACCGGACGTGTCCTCGAGGCGCTCGCCGCGTTCCGGTTCGGCGACGCCGAGCTCGGGTTCCTGGAACGCCAGGGCGTCGTCGACGACCGCACGCTGGACTTCCTGCGCGGATTCCGCTTCGGCGGGCGGATCTCCGGGTACGCCGAGGGCGAGACGTTCTTCCCCGGCTCCCCCGTCCTGCAGGTCGAGGGCACCTTCGCCGAGGCCGTCCTGCTCGAGACGCTCGTGCTGTCCATCCTCAACCACGACTCCGCCGTCGCGTCCGCCGCCTCGCGCATGACCAGCGCCGCCGTCGACCGCCCCGTCATGGAGATGGGCTCGCGCCGCACCCACGAGCAGTCCGCCGTCGCCGCCGCCCGCGCCGCCGTCGTCGGCGGGTTCGTCGGCACCTCCAACCTCGAGGCCGGCTACCGGTACGGCCTGGAGACCATCGGCACCGCCGCGCACTCCTTCACGCTCCTGCACGACGACGAGACCTCCGCCTTCGCCTCCCAGGTCGCCTGGCACGGCGTCGGCACCACCCTGCTCGTCGACACCTACGACGTCCGCCGCGGCGTCGAGCACGCCGTCGCCGCCGCCGGCACCGACCTCGGTGCCGTCCGCCTCGACTCCGGCGACCTGGGGGCGCTCGCCGTCGAGGTGCGGGCCCAGCTCGACGAGCTCGGCGCCCCCGGCACCAAGATCGTGGTCACCTCGGACCTGGACGAGCACGCCATCGCCGGGCTCGCCGCGGCCCCGGTGGACTCCTACGGCGTGGGCACGTCGCTGGTGACGGGGTCCGGCGCGCCGACCTGCGGGATGGTCTACAAGCTCGTGGCGCGTGCGGACTCCAGCGGTCGGATGCAGCCCGTGGCCAAGACGTCGACGCGCAAGCAGAGCCAGGGGGGCCGCAAGACGGCGGCACGACGTCTCGACGACGAGGGCCGGGCGCTCGAGGAGGTCGTCCTCACCGGCCCGGACGAGGCCGTCGTCACCTGGGAGCCCGGCGAGGAGGCCGACACGGGGCGGATGCGGCCGCTGCACGTGCCGCTGGTCACCGACGGCGCGGTCGACTCGCGGTGGGTCGGAGCCTACGGCGTGCAGAACGCCGCCGAACGTCATCGGACCTCACGGGCCGAGCTCCCGCGCGGGGCGCGCCGGCTCTCGGCCGGCGACCCGGCCATCCCGACCGTGGAGGAAAGCCTGGCCTAGMTDERRGNGAPPDTLTAPRSLPAAPLPTLRPSLALLTDRYELTMLAAALADGTAHRHCVFEVFTRRLPPGRRYGVLAGTGRVLEALAAFRFGDAELGFLERQGVVDDRTLDFLRGFRFGGRISGYAEGETFFPGSPVLQVEGTFAEAVLLETLVLSILNHDSAVASAASRMTSAAVDRPVMEMGSRRTHEQSAVAAARAAVVGGFVGTSNLEAGYRYGLETIGTAAHSFTLLHDDETSAFASQVAWHGVGTTLLVDTYDVRRGVEHAVAAAGTDLGAVRLDSGDLGALAVEVRAQLDELGAPGTKIVVTSDLDEHAIAGLAAAPVDSYGVGTSLVTGSGAPTCGMVYKLVARADSSGRMQPVAKTSTRKQSQGGRKTAARRLDDEGRALEEVVLTGPDEAVVTWEPGEEADTGRMRPLHVPLVTDGAVDSRWVGAYGVQNAAERHRTSRAELPRGARRLSAGDPAIPTVEESLAPGPT0013375_1462DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763NANA
AK018_020201857hypothetical proteinGTGAGCGCCCCGCTCCCCGAGCCCGAGTCCGTCGACCTCTTCGAAGCCGCCAGCGAGCCGGCCAAGCCGCTCCCGCAGTCGCCGTCCGTCGCGGCGGCGTCCCACCTCAGCCCGGCGTACCCGCGCCGTGCCCCGTGGGGGACGGCGTCGAACCTGCGTGCCTGGCAGGCCGAGGCCCTCGAGCTGTACCACCAGCGGTCCGCGCGGGACTTCCTGGCGGTCGCCACTCCCGGGGCCGGCAAGACGACGTTCGCGCTGCGCGTGGCCACCGAGTTGCTCGACGCCGGCGTGGTCCGGCGGGTGACGGTGGTCGCGCCGACCGAGCACCTCAAGCACCAGTGGGCCGACGCCGCAGCGCGCGTCGGTATCCGCATCGACCCGTCCTTCAAGAACGCCCAGGGCAAGCACGGTGCCCACTACGACGGGGTGGCGCTCACCTACGCCCAGGTCGCCTCCAAGCCCGCGCTGCACCGCGCGCGGACCGAGGCGGCGCGCACGCTGGTCATCCTCGACGAGGTGCACCACGGCGGTGACGCGCTGAGCTGGGGCGACGCCATCCGGGACGCCTTCGAGGACGCGACGCGACGGCTCGCGCTGACCGGCACGCCGTTCCGCTCGGACACCGCCTCGATCCCGTTCGTGACCTACGAGGCCGACGCCGACGGGATCCGCCGCTCGAAGGCGGACTACGTCTACGGCTACGGCGACGCGCTGCGCGACCACGTGGTGCGGCCCGTGCTGTTCATGACGTACTCCGGTGAGATGCGGTGGCGCACCCGTGCCGGGGACGAGGTCAGCGCCCGGCTCGGCGAGGACATGACCAAGGACATGCACGCCCAGGCCTGGCGTACCGCCCTGGACCCGCGGGGTGAGTGGATCCCGTCGGTGCTCGCCGCCGCCGACCGCCGCCTGACGGAGATGCGGCGCGCGGTGCCCGACGCCGGCGGGCTGGTCATCGCCTCCGACCAGACGGACGCGCGGGCCTACGCCGGGCACCTGGCCCGGATCACGGGCACGTCGCCCACGGTGGTGCTCAGCGACGACGACGGCGCCAGCGCCCGCATCGACGAGTTCGCAGCCGGCAACCAGCGCTGGATGGTCGCGGTGCGCATGGTGTCCGAGGGGGTCGACGTCCCTCGGCTCGCCGTCGGCGTCTACGCCACCAGCACGTCGACGCCGCTGTTCTTCGCCCAGGCCGTGGGGCGGTTCGTCCGCGCCCGCAAGCGTGGCGAGACGGCGTCGGTGTTCCTGCCGAGCGTGCCGCTGCTGCTGGGGCTCGCGAACGAGCTGGAGGCCGAGCGCGACCACGCGCTGGACCGGCCCCAGACCGCCGAGGAGCAGGGCATCGAGTACGACCCGGAGGCGGCGCTGCTCGCGGCCGCCAACAAGGAGGAGAAGGCCTCCGGCGAGCTGACCGGGTCCTTCGAGGCGCTCGACGCCCAGGCCTCGTTCGACCGCGTGCTGTTCGACGGCGGCGAGTTCGGCACCGGGGGCGACGTCGGGTCCGACGCCGAGCAGGACTTCCTGGGGATCCCCGGCCTCCTGGACGCCGACCAGGTCTCCACGCTGCTGCGGCAGCGCCAGGCCGCCCAGACGCGCGGGCGCAGCGGCGGCGGGGCCACGGCCGGCGAGGCCGCTCTCGAGCAGTCCGAGCAGGAGCACCGGCGCGCGGCCGCGCTGCGCAAGGAGCTGTCCAAGCTGGTGTCGGCGTGGGCCCGCAAGTCCGGCACGCCGCACGGCAAGGTGCACACCGAGCTGCGCCGCCGGTGCGGCGGTCCGGAGGTGCCCCTGGCCACTGCGGACCAGCTCGACGCCCGGGTGGCGATGGTGCGCGGCTGGTTCGTCGGCAAGCGCTGAMSAPLPEPESVDLFEAASEPAKPLPQSPSVAAASHLSPAYPRRAPWGTASNLRAWQAEALELYHQRSARDFLAVATPGAGKTTFALRVATELLDAGVVRRVTVVAPTEHLKHQWADAAARVGIRIDPSFKNAQGKHGAHYDGVALTYAQVASKPALHRARTEAARTLVILDEVHHGGDALSWGDAIRDAFEDATRRLALTGTPFRSDTASIPFVTYEADADGIRRSKADYVYGYGDALRDHVVRPVLFMTYSGEMRWRTRAGDEVSARLGEDMTKDMHAQAWRTALDPRGEWIPSVLAAADRRLTEMRRAVPDAGGLVIASDQTDARAYAGHLARITGTSPTVVLSDDDGASARIDEFAAGNQRWMVAVRMVSEGVDVPRLAVGVYATSTSTPLFFAQAVGRFVRARKRGETASVFLPSVPLLLGLANELEAERDHALDRPQTAEEQGIEYDPEAALLAAANKEEKASGELTGSFEALDAQASFDRVLFDGGEFGTGGDVGSDAEQDFLGIPGLLDADQVSTLLRQRQAAQTRGRSGGGATAGEAALEQSEQEHRRAAALRKELSKLVSAWARKSGTPHGKVHTELRRRCGGPEVPLATADQLDARVAMVRGWFVGKRNANANANANA
AK018_02021330hypothetical proteinATGGAGCCCATGAGCGAGCCCCTCTCCACCCCGCCCGCGGACCCTGCGCAGGACACCGGATCGGGGACGAGCGTCCTCGAGCGTCCCGACACCCGCGAGCAGGCGGCGGAGCCGGGCGACCACGAGCGCTTCGCGCACTACGTGCGCAAGGAGAAGATCATGGAGTCGGCGATGTCCGGCAAGCCCGTGATCGCGCTCTGCGGCAAGGTCTGGGTGCCGGGTCGCGACCCGGCGAAGTTCCCGGTCTGCCCGATCTGCAAGGAGGTCTACGACGGGCTCCGTGACCCGCAGGACGGCGACGGCGACTCCGGCTCAGACTCCGAGCAGTGAMEPMSEPLSTPPADPAQDTGSGTSVLERPDTREQAAEPGDHERFAHYVRKEKIMESAMSGKPVIALCGKVWVPGRDPAKFPVCPICKEVYDGLRDPQDGDGDSGSDSEQNANANANANA
AK018_02022783nagB_1COG0363Glucosamine-6-phosphate deaminaseATGGAGGTCGTCATCGCTCCCGCGGAGGAGCTGGCGGTGCTGGCCGCCGATGCCGTCGAGGCGCTGCTGCGCCGTCGTCCGCAGGCCGTGCTGGGGCTGGCCACCGGGTCCAGCCCGCTGAAGGTCTACGACGAGCTGGCCCGCCGCCACGAGCAGGACGGGTTGTCGTTCGCCGACGCGCGCGGGTTCATGCTCGACGAGTACGTCGGCCTGGCCGCCGACCACCCCGAGCGGTACCGCAACGTCATCGCCACCGAGATCGCCGAGCGGGTGGACTGGCCGGCCGAGCAGGTCGCCGGACCCGACGGCCTGGCCGCCGACCTGCCGGCCGCGTGCGCCGCCTACGAGACGGCGATCGCCGACGCCGGCGGCGTGGACCTGCAGATCCTGGGGATCGGCACCGACGGGCACATCGCGTTCAACGAGCCCGGCTCGTCGCTGGCCTCGCGCACGCGCATCAAGACCCTGACCCGCCAGACCCGGGTGGACAACGCCCGGTTCTTCGACGGCGACGTCGACAAGGTGCCCACGCACTGCCTGACCCAGGGGCTGGGCACCATCATGGCGGCACGCCACCTGGTGCTGCTGGCCACCGGCCGGCACAAGGCCGAGGCCGTGCACCAGCTCGTCGAGGGGCCGATCTCTGCGCTGTGGCCCGCCACCGTGATGCAGATGCACCCGCACGCCACCGTGCTGGTCGACGAGGCCGCCGCGTCCCGGCTGCAGCTCGCCGACTACTACCGCCAGACCTACGCCTCCAAGCCGGACTGGCAAGGCCTCTGAMEVVIAPAEELAVLAADAVEALLRRRPQAVLGLATGSSPLKVYDELARRHEQDGLSFADARGFMLDEYVGLAADHPERYRNVIATEIAERVDWPAEQVAGPDGLAADLPAACAAYETAIADAGGVDLQILGIGTDGHIAFNEPGSSLASRTRIKTLTRQTRVDNARFFDGDVDKVPTHCLTQGLGTIMAARHLVLLATGRHKAEAVHQLVEGPISALWPATVMQMHPHATVLVDEAAASRLQLADYYRQTYASKPDWQGLPGPT0018865_1734DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018865-nagB-K02564NANA
AK018_020231320dasA_1COG1653Diacetylchitobiose binding protein DasAGTGAATCTCCGACGGATCGCCGCACCGCTCGCCGCGACCCTCGCCGTCGTCCCCGTGCTGGCCGCCTGCGGCTCCGGCGAGGTGGAGCCGGAGAGCTCCGACGACATCGTGCTCTGGCTCGTGGGCACCGACACCGGCGAGGACCTGCGCGAGCACCTCGTGACGACCTTCGAGGAGCGCAACCCGGGGGCGACGCTCACCATCGAGGAGAAGGAGTGGGGGACGCTCGTCGACGAGCTCGACGCGTCGCTGGGCGACCCCGCAGCGACCCCCGACGTCGTCGAGCTGGGCAACACCCAGGCCCCGACGTTCACCTACGCCGGCGACTTCCGGCAGATCTCGCCGGAGCTGTACGCCGAGCTGGGCGGGGAGGACCTGCTCCAGTCGTTCGTGGAGGCCGGGTCCGTCGACGACACGGTCTACGCGCTGCCGTACTACTTCGGATCCCGCTACGTCTTCTACCGCAAGGACGTGTGGCGAGAGGCCGGCGTCGACGTCCCCGACACGCTGGACGAGTTCGGCGAGGCCGTGAAGACCCTGCACACGGACAACATGGCCGGCTTCGCGATGGGCGGCCAGGACTGGCGCAACGGCATCTCGTGGGTGTTCGCCCACGGCGGCGAGCTCGCCGTCAAGCAGGGCGGCGGGTGGACCTCGACGCTGTCCGACCCGAACACCATCGCCGGTCTCGAGGCCTGGCAGGACGTCTACCAGAACGCGTCGTACCTGCCGGCCACCGAGGTCGACGTCGCCTACTGGGACTTCATCAACAACGGCGTGGACTCCGACCAGCCGGCCGCCGCCACCATGATGGCGCCCTCCTGGGCGCGCTGGTCGATCGGCGACCTCGTCCAGGGCGAGGACGGCATCGAGGTGCGCGACGGGATGGCGGACACGTCCACCTACGACATCTTCGCCCTGCCCGGCGTCGACGGCGGGGTCGCCCCCGTGTTCGCCGGCGGGTCGAACCTGGCGATCTCGGCGCTGACGCGCAACGCGGAGCTGTCCGAGGACCTGCTGCGCGTCGTGTACTCGGACGAGTACCAGACGATGCTCGCCGAGGCCGGTCTCGGGCCCGCCAACACGACCTTCACCGACCTGATGACGGGTGACAAGTTCGGTCGCACGCTCGTGGCCACCGCCGAGGCGTCCCAGCTCACCCCGCCCGCGCCGGGCTGGGCGGAGATCGAGTCGCGCGGCATCTACGAGGAACTGTTCAAGGAGATCGCTCGCGGCGGCAACGTCCCCGCGCTCGCCCAGGAGTTCGACGCGAGGATCACCCCGCTGCTCGACGGCGGCGACGTCGCCGCCGAGGAGTGAMNLRRIAAPLAATLAVVPVLAACGSGEVEPESSDDIVLWLVGTDTGEDLREHLVTTFEERNPGATLTIEEKEWGTLVDELDASLGDPAATPDVVELGNTQAPTFTYAGDFRQISPELYAELGGEDLLQSFVEAGSVDDTVYALPYYFGSRYVFYRKDVWREAGVDVPDTLDEFGEAVKTLHTDNMAGFAMGGQDWRNGISWVFAHGGELAVKQGGGWTSTLSDPNTIAGLEAWQDVYQNASYLPATEVDVAYWDFINNGVDSDQPAAATMMAPSWARWSIGDLVQGEDGIEVRDGMADTSTYDIFALPGVDGGVAPVFAGGSNLAISALTRNAELSEDLLRVVYSDEYQTMLAEAGLGPANTTFTDLMTGDKFGRTLVATAEASQLTPPAPGWAEIESRGIYEELFKEIARGGNVPALAQEFDARITPLLDGGDVAAEEPGPT0016445_8DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016445-dasA-K17329NANA
AK018_02024999nanK_1COG1940N-acetylmannosamine kinaseGTGGACGACGTGCGAACGACGGCGCCCCCGGTGCCGTCAGGGTTCAGCGTGGGCCTGGACATCGGCGGCACCAAGACTCTCGCCGTCCTGCTCGGCCACGAGGGCCAGGTGCTGGCGCAGAGCCGCCTGGCCACCGAGACCGGTCCCGTCGGCGTGGTGGACGGCGCCGTGCGTGCCGTCGAGAGCGTGGCGCGGCAGGCGGGCGTCCTGCTGGCCGACGTCACCGGCGTCGGCGTCGGGGTGCCGGGGCTCGTGGAGTCCGACGACGGCACGGTGCGCCACGCCGTCAACCTCGGGCTCGACGGCGACCCCCTCGACCTCGCGCACCTGCTCTCCGAGCGGCTCGGTGGTGTCGGCGTCGGGGTGGAGAACGACCTCAACGTGGCCGCCGTCGGCGCCGCGCACCTCGTCGAGGCCGAGGAGCCGGACGACCGGCCCACCGACCTGGCGTTCCTGGCGCTGGGCACCGGCCTGGCCGCCGGGATCGTCCTCGACGGCAGCCTGCGCCGGGGTCGCACCGGCGCGGCGGGCGAGATCGGGCACGTCCCGGTCGACCCGCTCGGCCCGCCGTGCGGCTGCGGCCAGCGCGGCTGCCTCGAGCTGTACGCCTCCGGGTCGGCGGTCACCGCGCTGTGGCCCAGCATCACCGGGCGGCCCGCGCCCGTCGAGCTGTTCGAGGCCGCCGACGCCGGCGACCCGGAGGCGGTCGCCGCCCGGGACACCTACGCGCGGGCGGTCGCGGCCGCGGTGCGGATGCTGGTGCTCACCGTCGACGTGCGCCACGTCGTGCTCGGCGGCGGTGTGTCCCAGCTCGGCGAGCCGCTGCTCGACGTCGTGCGCTCCGCGCTGACCGACGAGTCCGCGGCGTCGGGCTTCCTGCGCTCCCTCGACCTGCCGGGCCGGGTCCGGCTCGCACCGGGACGCGTCCCGGTCGGCGCGATCGGTGCCGCCGTGATCGGGCGCGGGCACGCCGCCCGAGTCCGTGACCTGGCCCGATAGMDDVRTTAPPVPSGFSVGLDIGGTKTLAVLLGHEGQVLAQSRLATETGPVGVVDGAVRAVESVARQAGVLLADVTGVGVGVPGLVESDDGTVRHAVNLGLDGDPLDLAHLLSERLGGVGVGVENDLNVAAVGAAHLVEAEEPDDRPTDLAFLALGTGLAAGIVLDGSLRRGRTGAAGEIGHVPVDPLGPPCGCGQRGCLELYASGSAVTALWPSITGRPAPVELFEAADAGDPEAVAARDTYARAVAAAVRMLVLTVDVRHVVLGGGVSQLGEPLLDVVRSALTDESAASGFLRSLDLPGRVRLAPGRVPVGAIGAAVIGRGHAARVRDLARNANANANANA
AK018_02025906dasC_2COG0395Diacetylchitobiose uptake system permease protein DasCATGAGTGCCGTCGCCGCCGACACCGTCGCACCGACCGCGACGACGCCCCAGCGGACGCCGCTGCGCCGTCGTCGGGTCAGGCCGGGCAAGGTCCTGCTGAGCATGCTGGGCCTCGCGCTCGCCGCGGTCTGGGTCTTCCCCGTCTACTGGATGATGAACTCCGCCGTCACCCCGGACGCCATCCTGGGCGGCGACACCCCGCAGTTCCTCCCGCTCAGCTTCACGCTGACGAACCTGCAGTCCGTGCTGACCGACTCCGGGTTCCTCAACGCCCTCGGCATGAGCCTCATGGTCACGGGCCTGACCATCACCCTGGTGCTGGCCTTCGCGTTCCTCGCGGCGCTGGCGATCAGCCGGTGGCGGTTCCGCGGCCGGACCAGCTTCATCCTCGCCGTGCTGTTCATCCAGATGCTGCCGGCCGAGGGCCTGTTCATCGCCCAGTACCAGATGATGTCCAGCCTCGGCCTGCTCAACCAGGTCATCGGCATCTCCGCGCTGTACGTGGCCATGCTCGTGCCGTTCACGGTCTGGATGCTGCGCGGCTTCGTCGCCGGCGTCCCGATCGAGCTCGAGGAGGCCGCGATGGTCGACGGGCTGTCCCGCCCGCGGGCCTTCCTGCGGATCACCTTCCCGCTGCTCGCCCCGGGCCTCATCGCCTCCGGCGTGTACGCGTTCCTGCAGGCCTGGAACGAGTTCACCACCGCGCTGGTCATCCTGCCGGCGGAGTCCGCCCAGACGCTGCCGATCTGGCTGCGCAGCTTCCTGTCGGCGTCGGCCAACCGCGGCATCAACTGGGCCGAGGTCATGGCCGCGTCCACGCTCATCGCGGTCCCCGTGATCATCTTCTTCCTGTTCGTGCAGGGCCGGATGACCTCGGGACTCGTCTCGGGTGCGGTGAAGGGCTGAMSAVAADTVAPTATTPQRTPLRRRRVRPGKVLLSMLGLALAAVWVFPVYWMMNSAVTPDAILGGDTPQFLPLSFTLTNLQSVLTDSGFLNALGMSLMVTGLTITLVLAFAFLAALAISRWRFRGRTSFILAVLFIQMLPAEGLFIAQYQMMSSLGLLNQVIGISALYVAMLVPFTVWMLRGFVAGVPIELEEAAMVDGLSRPRAFLRITFPLLAPGLIASGVYAFLQAWNEFTTALVILPAESAQTLPIWLRSFLSASANRGINWAEVMAASTLIAVPVIIFFLFVQGRMTSGLVSGAVKGPGPT0016455_112DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016455-dasC-K17331NANA
AK018_02026942dasB_1COG1175Diacetylchitobiose uptake system permease protein DasBATGACCCAGGCCATCGGCACGACCGCAGGCTCGGACGGCATCGCGATCCGCCGTCGGCGCAGGCCGGCCACCCCCTATGTTCTGCTGATCCCCGCCGTCGCGGCCCTCCTGATCGGCCTCGGATACCCCGTCTACTGGCAGATCGTCACCTCGCTGCAGGAGTTCGGGCTCATGCAGCAGTTCGGCGCCCCGCCGACGTTCGTGGGCCTCGACAACTACGCCCGCATCTTCACCGACGCCGAGGTGTGGTCCGTCGTCGCGAAGTCGATCGCCTTCTGCCTCGTCAACGCCCTGCTGACCGTCGGGATCGGCCTCGGCCTCGCCGTGCTCATGCGTGCGGTCAGCGGCTGGGTCCGCATCACGATGCAGATCACGCTGCTGCTGGCCTGGGCGACGCCGCTCGTGGCCGCCGTCACCGTCTTCCGGTGGCTGTTCGACTACCGCACCGGCGTCGTCAACTGGATCTTCGTCCAGTCCGGCTTCGAGAGCTTCGACGGCTACAACTGGCTGGGCAACGTCTGGACGTTCTTCATGGTGGCGTCGTTCATCGTCATCTGGATGTCCGTGCCATTCGTGGCGCTGTCCATCTACGCGGGCCTGACGCAGGTCTCCGAGGAGGTCCTCGAGGCCGCCCGGATCGACGGCGCCGGCTCCCGCCAGATCCTGTGGCGCATCATCATGCCCCTGGTGCGCCCGGTCATCGCGATCGTGCTGCTGCTCCAGATCATCTGGGACCTGCGCGTGTTCGCCCAGATCCGCCTGCTGCAGGACGCCGGCGCCCCCATCGCCGAGACGAACCTGCTCGGCAACTACATCTACGAGCTCGGTGTCGGCAGCCAGGACTTCGCCGGTGCCGCCGCCGTCTCGCTGTTCGTCCTGGTGCTCACGATGGTGCTCTCGGGACCGTACGTGCGCTATCTCATGAAGGAGGACGCAGCATGAMTQAIGTTAGSDGIAIRRRRRPATPYVLLIPAVAALLIGLGYPVYWQIVTSLQEFGLMQQFGAPPTFVGLDNYARIFTDAEVWSVVAKSIAFCLVNALLTVGIGLGLAVLMRAVSGWVRITMQITLLLAWATPLVAAVTVFRWLFDYRTGVVNWIFVQSGFESFDGYNWLGNVWTFFMVASFIVIWMSVPFVALSIYAGLTQVSEEVLEAARIDGAGSRQILWRIIMPLVRPVIAIVLLLQIIWDLRVFAQIRLLQDAGAPIAETNLLGNYIYELGVGSQDFAGAAAVSLFVLVLTMVLSGPYVRYLMKEDAAPGPT0016450_308DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016450-dasB-K17330NANA
AK018_020271350dasA_2COG1653Diacetylchitobiose binding protein DasAGTGAAGAGGACACGACTCGTCGCCGCCACCGCGGCGTCGACGATCACCCTGGCGATGGCGCTCACCGCGTGCGCGTCCGACGACACCGAGGCCCCCGCGGACTCGGAGGAGACCACGTCGGAGTCCGGCGCGGTCGAGCCCGGCGACCTGACGCTGTGGGTCGCCGGCGGTGACACGCCGGACGAGCTGCGCGAGTACCTCGTCGACACGTTCGAGGCCGAGAACGAGGGCTCGACGCTGACGATCGAGGAGCAGGACTGGGGCGACCTGGTCACCAAGCTGACCACCTCGCTCCCGGACGCCGAGAACACCCCCGACGTCGTCGAGCTCGGCAACACCCAGGCCCCGACGTTCACCAACGCCGGCGCCTTCCGCGAGATCTCCCCGGAGCTGTACGAGGAGCTGGGCGGGGACAACCTGCTGCAGTCCTTCGTCGAGGCCGGTTCGGTCGACGGCACCGTGTACGCCCTGCCGTACTACTTCGGCTCGCGCTACATGTTCTACCGCGCCGACATCTGGTCGGACGCCGGCATCGAGGTCCCGACGACGCTCGCCGAGTTCGGCGACGCCGTCACCGAGCTGCGCACCGACGACATGTCCGGGTTCGCCCTCGGCGGCCAGGACTGGCGCAACGGCATCTCCTGGGTCTTCGCCAACGGCGGCGAGCTCGCCGTCAAGGAGGGCGAGGAGTGGGTCTCCACGCTGTCCGACGAGAACACGATCGCCGGCCTCGAGCAGTGGCAGGACGTCTACGAGGGCGCCTCGAACGTCCCCGCCACCGAGCGTGACGTGGCCTACTGGGACTTCCTGAACGACAAGGCCGAGGGCGGCGCCCCCGACGCGGCGACCATCATGGCGCCGGGCTGGGCCCGCTGGTCGATCGGCGATCTCACCGAGAACGACGAGGGCGAGGAGGTCCGCGACGGCATGGCGGACGACTCCAAGTTCGACATCTTCGCCCTGCCGGGCGTCGACGGCGGCGTCGCCCCGGTGTTCGCCGGTGGTTCGAACATGGCGGTCTCGGCCCAGTCGCAGCACCCGGAGCTCTCCGAGAACCTGCTGCGCATCATCTACTCGGACGAGTACCAGACGATGCTCGCCGAGAACGGTCTCGGGCCGGCCAACACCGAGTTCAACTCCATCATGGAGACCGACAAGTTCGGTGAGATCACCGTCGAGACCGCCGAGAACTCCAAGCTGACCCCGGCCGCGCCGGGCTGGGCCGCCGTCGAGGGCGCGTCCGTCTACGAGGAGCTCTTCCAGAAGATCGCCGAGGGCGGTGACGTGACCGAGCTCGCCGCCGAGTACGACGAGACCATCACGCCGATGCTCAACGGCCAGGCCGGCTGAMKRTRLVAATAASTITLAMALTACASDDTEAPADSEETTSESGAVEPGDLTLWVAGGDTPDELREYLVDTFEAENEGSTLTIEEQDWGDLVTKLTTSLPDAENTPDVVELGNTQAPTFTNAGAFREISPELYEELGGDNLLQSFVEAGSVDGTVYALPYYFGSRYMFYRADIWSDAGIEVPTTLAEFGDAVTELRTDDMSGFALGGQDWRNGISWVFANGGELAVKEGEEWVSTLSDENTIAGLEQWQDVYEGASNVPATERDVAYWDFLNDKAEGGAPDAATIMAPGWARWSIGDLTENDEGEEVRDGMADDSKFDIFALPGVDGGVAPVFAGGSNMAVSAQSQHPELSENLLRIIYSDEYQTMLAENGLGPANTEFNSIMETDKFGEITVETAENSKLTPAAPGWAAVEGASVYEELFQKIAEGGDVTELAAEYDETITPMLNGQAGPGPT0016445_32DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016445-dasA-K17329NANA
AK018_020281152mlc_2COG1940Protein mlcATGACCACGACGACGCGTACCAGCCGACGGGGCCTGGACGGCGGTCTGCGAGCGACCACCAAGGTGCTGCCCGAGCATGCCCGGGCGCACAACCGGTCGCTCGTCCTGCAGCACCTCTTCCACGAGGGCCCCACCTCCCGAGCCGGACTCGCCCGCGCGACCGGCCTGACCCGAGTGACCATCTCCGACCTCGTGAGCGTCCTGCTGGCCGAAGGGCTCGTCGAAGAGCTCGGCACCCAGCCCGGACGCCGGGTCGGCAAGCCCGCGATCCTCGTCGGCATGCGCACCGACGCCTACCAGATCGTCGCCATCGACCTCTCCGACGACGCCGTGCTGCGCGGCGCCGTGCTGACGCTGACCGGCGAGGCCGTCGAGCGCCAGTCCCTCGGCGCCGACGACTACCGCGGCGACGACCTCGTCGAGCTCATCGCCCGCTTCGCCCGCAAGCTCGTCGCGGCCGCCACCCGGCCCGTCATCGGGATCGGCGTCGGCTCGCCCGGCGTCGTCGACCCGTCCGGGCGCGTCGTCGAGGCGCCCAACGTCGAGTGGGTCGACGTCCCGCTGGCGGCGACGCTGTCCGACAGGATCGGGCTGCCCGTCCACGTGGCCAACGACGCCAACTCCGCCGCGCTGGCCGAGTACACCTACGGCGGCGCCACCGGCTCCACCCTGGTGCTCACCATCGGCAAGGGCGTCGGTGCCGGGATCATGGTCGACGGCGCCCGCGTGCACGGCGCCGGATACTCCGCCGGCGAGCTCGGCCACGTCACCGCCGTCGACGACGACGGCGAGCCGTGCGCCTGCGGCCGCCGCGGCTGCCTCGAGACCGTCCTGTCCGCCCCCGCACTGCGGCGGGCCCTCGACGGGCTCGAGGGCCCCGAGGCCGACGCGGCGCTCACCGGCGTCGGCGTCACCCTCGGCAAGGCGCTGGCCCCCGTGGTCGGTGCCCTCAACCTCGGCGAGATCGTCCTCGCCGGCCCCCCCGAGCTGCTCGGGGAGCCGCTGCGTCGAGCGGCCCTCGAGACCATCACGGACCGCACCATGCCGGCCTCCTCGGCCGGACTGGGACTGCGGATGTCCACCCTCGACGACGACGTCGTGCTGGCCGGGGCCGCAGTGCTCGTCCTCGGCGCCCAGCTCGGCGTCTCCTGAMTTTTRTSRRGLDGGLRATTKVLPEHARAHNRSLVLQHLFHEGPTSRAGLARATGLTRVTISDLVSVLLAEGLVEELGTQPGRRVGKPAILVGMRTDAYQIVAIDLSDDAVLRGAVLTLTGEAVERQSLGADDYRGDDLVELIARFARKLVAAATRPVIGIGVGSPGVVDPSGRVVEAPNVEWVDVPLAATLSDRIGLPVHVANDANSAALAEYTYGGATGSTLVLTIGKGVGAGIMVDGARVHGAGYSAGELGHVTAVDDDGEPCACGRRGCLETVLSAPALRRALDGLEGPEADAALTGVGVTLGKALAPVVGALNLGEIVLAGPPELLGEPLRRAALETITDRTMPASSAGLGLRMSTLDDDVVLAGAAVLVLGAQLGVSNANANANANA
AK018_02029987hypothetical proteinATGCCGCACCGATCCCTGCCCCGCCGCGCCGCGGCGGCCGTGACCGCGCTGACGCTCACCCTGGGCCTCGCCGCCTGCACCGGCAGCGGTGCGGGCGACGCCGCGGACGTCGAGGCCGCCGACTCCGCCGTCTCCGACGAGGCCGGCGGTGCCGCATCCGCGATCGCCGAGGAGGCCGGTGCGGACGCTGCCGCCGGCGACGAGACCGTCGTCGACCGCGAGATCGTCGTCACCGGGTTCGTCGAGCTGACCTCGCCCGACCCGGCGGCCTCGGCCGACGAGCTGGTGCGCATGGTGGAGCAGGCGGGCGGGCGCGTGGAGCAGCTCACCGAGGAACCCACCACGCCGGACCGGCCCGGGTCGGCCAGCGCGATCTTCCGTCTGCCCGCCGAGCGGACCACCAGCGCCGTGGAGGCCTTCGGCGACGTCGCCGCCGTCGAGCGCGTCGAGCTCTCGGAGGACGACGTCACCAGCCGGGGCCAGAACCTGGACGCCCGGATCTCCGCCCTGACCACCTCCACCGACCGGCTCACCGAGCTGATGGGCTCGGCGGGCTCCACCGAGGACCTGCTGGAGGTCGAGCGCGAGCTGGCGCAGCGCCAGGCCGAGCTCGACTCCCTCACCGCGCAGCGCGAGGCCCTCAGCGACCAGGTCGCCATGTCCACGATCCACGTGTCCATCACCGCGCGGACGGCCCCCGTGACCGCTCCGTCGTCCGGGTTCGTCGACGGGCTGGCCACCGGCTGGAGCGCCCTGACCGCGACGGTGGGGACGGTGGTGCTGGCGCTCGGCGTGCTGCTGCCCTGGCTCGCGATCGCCGCCGTCGGCTACGTCGCCTACCGCCTGGTCCGCCGTCGCCGCACCGAGCAGGCCCCGCCGGCGGGCGGCCCGGGCGAGGGCGGCGGCACGGACGACGACGGCACCCCGGGCTCCTCGCCCGACCCGGCACCGCACGACCCCGAGCGCGAGCCGCAGCTCGTGCGCTGAMPHRSLPRRAAAAVTALTLTLGLAACTGSGAGDAADVEAADSAVSDEAGGAASAIAEEAGADAAAGDETVVDREIVVTGFVELTSPDPAASADELVRMVEQAGGRVEQLTEEPTTPDRPGSASAIFRLPAERTTSAVEAFGDVAAVERVELSEDDVTSRGQNLDARISALTTSTDRLTELMGSAGSTEDLLEVERELAQRQAELDSLTAQREALSDQVAMSTIHVSITARTAPVTAPSSGFVDGLATGWSALTATVGTVVLALGVLLPWLAIAAVGYVAYRLVRRRRTEQAPPAGGPGEGGGTDDDGTPGSSPDPAPHDPEREPQLVRNANANANANA
AK018_02030402ridACOG02512-iminobutanoate/2-iminopropanoate deaminaseATGCGCAAGATCTCGATCCGTACCGAGTCCGCCCCGGCCCCGGCCCACACGTTCCACCAGGGGGTGCGCAGCGGCCCCTTCGTGCAGGTCTCGGGCCAGGGGCCGGTCGACCCGGGCACGGGGGAGTACCTGCACCCGGGCGACGTGGCGGCGCAGACGACGCGCACGCTGGAGAACGTGCGCGCGATCGTCGAGGCGTCGGGCGCGACGTTCGACGACGTCGTGATGCTGCGCGTCTACCTGACCTCGCGCGACGACTTCGCGGCCATGAACGAGGCCTACGGTGCGTTCGTCACCCGGCACTGCCCGTCCGGCGTGCTGCCGAGCCGGACCACCGTGATGGTGGGGCTGCCGCGCGAGGAGATGCTGGTGGAGATCGACGCCTTCGCGATCACGGGCTGAMRKISIRTESAPAPAHTFHQGVRSGPFVQVSGQGPVDPGTGEYLHPGDVAAQTTRTLENVRAIVEASGATFDDVVMLRVYLTSRDDFAAMNEAYGAFVTRHCPSGVLPSRTTVMVGLPREEMLVEIDAFAITGPGPT0020030_1458DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
AK018_020311155hypothetical proteinATGAGGATCGACGACCCCGGCCGGTCCTGGCCGCTGCTCACCCTGGACGACGCCGCCGTGACGCACAACGTCGCCACGGTGGCCGACGTCGTCGCCCGCCACGGCGCCGAGCACGCCCCGCACGTCAAGACCCACCTGTCCCGCGAGCTGTGGCAGCGCCAGCGCGACGCCGGTGCCTGGGGCGCGACCGTCGCGACGCCCGCCCAGCTGCGCACCGTCGTCGGCTGGGGGAGCGCGCCACGGATCCTGCTGGCCAACGAGCTCGTCGACCCGCGTGACGCCGTCTGGCTGCGCACCATCCTCGACGCGGCCCGGGCCGAGGAGGTGTGGGTCTACGTCGACTCGCCGACCGGTGTCGACGTGCTGCGCGGGGCCTTCGACGGCGCCGACCACCGACGCCTCGGCGTGCTGGTCGAGCTCGGCGTGCCCGGCGGCCGCACCGGGGTGCGCGGCGTCGCCGAGGCGGCGGCGCTCGCGGGTGCGGTGGCGGAGGCCGGGCTGCGGCTCGTGGGCGTAGCCGGCTACGAGGGCCCCGTGGCCGGCAGCACCGACGGCGCCGGCCTGCAGGCCGTGGCGGCCTGGTGCCGCCGGCTGCGCGAGGCGGGCGCCGCCGTCGTCGGCCTGGTGGACGACGAGGTGGTGCTCTCGGCCGGGGGCAGCGCCTTCGCCGACGTGGTGCTGGCCGAGCTGACCGCGGCGTCGGGCGCGCGCGTCGTGCTGCGGTCCGGGGCGTACCTGACGCACGACCACGGGCACTACCGCCGCACCGACCCGTGGACCCGGCTCGGCACCGCGCCGCTGCGCCCGGCGATCACCGTGCACGCGGCGGTGCTCTCCACGCCCGAGGCGGGCCTGGCGGTCTGCGGGATGGGCCGCCGGGACGTGTCCTTCGACCTCGACCTGCCGGTGCCGCTGCACGTGCGCACGACGGACGACGCCGGCCGGCTGGGTGCCGTGCGGCCCCTCGACGCGCACGTGACCGCCCTCGACGACCAGCACGCCTACCTGCGCACCGACGACGCGCTCACGCCGGGTGACGTCGTCGCCTTCGGGGTCTCCCACCCGTGCACCACGTTCGACAAGTACCGCACCGGGCTGCTCACCGACGGCGACGTCGTCGTGGGCACCTTGACCTTCGACCTGCAGGAGAAGTGAMRIDDPGRSWPLLTLDDAAVTHNVATVADVVARHGAEHAPHVKTHLSRELWQRQRDAGAWGATVATPAQLRTVVGWGSAPRILLANELVDPRDAVWLRTILDAARAEEVWVYVDSPTGVDVLRGAFDGADHRRLGVLVELGVPGGRTGVRGVAEAAALAGAVAEAGLRLVGVAGYEGPVAGSTDGAGLQAVAAWCRRLREAGAAVVGLVDDEVVLSAGGSAFADVVLAELTAASGARVVLRSGAYLTHDHGHYRRTDPWTRLGTAPLRPAITVHAAVLSTPEAGLAVCGMGRRDVSFDLDLPVPLHVRTTDDAGRLGAVRPLDAHVTALDDQHAYLRTDDALTPGDVVAFGVSHPCTTFDKYRTGLLTDGDVVVGTLTFDLQEKNANANANANA
AK018_020321653dagN-acyl-D-glutamate deacylaseGTGAGCAGGGGAGCCGTGGACGTGGTCCGGGGCGTCGTGCTGCCGCGGCCCGACGGCGGCACGACCGCGCCGATGGACCTGCACCTGGCCGGCGGCCGGGTCGGGACGGTGGTGCCGTCGTCGGGCACCCGGGGGAGCAGCACCTCCGGGCGCGTCCTGGACGCCGGGGGACGGCTCGCCCTGCCCGGCCTCGTCGACGCGCACGTCCACGCCGGCGGTGCCGTGCTCGACGCCGGCGTGCAGCACGCCCTGCTGCGCCAGGGCGTGACCGCCGTCGTCACCGGGGCCGACGGCGTGGGGTTCGCGCCGTCCGACCGCGCGGCCTACGAGTGGGCCTGCGGGTACTTCGCCGGGATCGACGGGGAGCACCCGCGCTTCTCGGGCGGCACGCTGGCCCAGCTCCTGGCCACGTACGACGGCGCGACGGCGGTGAACGTGGCGGCGCTCGTGCCGCACGGGACCGTGCGGCGGCTGGTCGTGGGTACCGAACAGCGCCCGGCCCGGCCCGCCGAGGTCGACCGCATGGTGCGGGTGGTGCGGCAGGCGTTCACCGACGGCGCGGTCGGCCTGTCCACCGGCCTGGAGTACGTGCCGGCGGCCTGGGCCGACGAGACCGAGCTGGTCGCGCTCGCGAGGGTCGCCGCCGAGCACGGGCTGCCGCACGTCTCGCACATGCGCGGCTACGAGTCCGCTGCCGTCCCGGCGATGGCCGAGCTGTTCCGCCTCGCCACGGCCTCCGGCGTCGCGACGCACGTGTCCCACCTGCACGGCCCCGCAGCGGCGATCACGGGCGTGCTCGACGACGCCCGCGCCGCCGGGCTCGACGTCACCTTCGACTCCTACCCCTACCTGCGGGGCAGCTCGATCCTCGCGATGGTCGCCCTGCCGACGTGGCTGCCGCTGGCCGACCCGGACGCCACGGTCGCGGCGCTCGACGCCCCCGCCCTGGCCCGCCGCCTGCGCGACCACCTGGCCGGCCTCGACGACCTGTGGCCCCGCGTCACCCTCGCCTGGGTTCCGGGGCTCGACCCGGACGAGGGCGACGTCGCCGGTCGGCGCCTCGTGGACGTCGCCGCCCGCTGGGGCGTCGCCCCCGCGGACGCCGCGCTGCGCCTCCTGCGCGCATCACGCCTGCGCGCCGCCTGCGTGTTCGCCCAGCCCGACACCAACGACGCCGACGCCGTGCGCACCCTGGCCAACCACCCCGCGCACCTGGGCGGCTCGGACGCGATCTACCAGCCCGTCGGCAGCGGGGCCTGCGCCGGCCGCCCGCACCCGCGCGGGTGGGGCGCCTTCGCGCGCTTCCTCGCCGAGCACGTGCGGACCGGCGGGGACTGGACGTGGCACGACGCCGTGGAGCACCTGTCCGCACGCGCCGCCCGCCGCTTCGGGCTGGCGGGTCGAGGCAGTCTCGAGGCCGGGTCCGTCGCCGACGTCGTGCTCGTCGACCCCCTCGCGGTGGCCGACCGGGCCACCTACGACCGGCCCCGCACACCCGCCGTCGGCGTCGACGACGTCCTCGTCGCCGGCGTCCCGGTGCTGACCGACGGCGAGCTCACCGGGCGACGGCCCGGCCGCGGCCTGCGGCCGTCCGTCCGCCCCGGCACCCCCACGCCCCCGGCCGTGCCGGCCGCGACGGAAGGAGCACCATGAMSRGAVDVVRGVVLPRPDGGTTAPMDLHLAGGRVGTVVPSSGTRGSSTSGRVLDAGGRLALPGLVDAHVHAGGAVLDAGVQHALLRQGVTAVVTGADGVGFAPSDRAAYEWACGYFAGIDGEHPRFSGGTLAQLLATYDGATAVNVAALVPHGTVRRLVVGTEQRPARPAEVDRMVRVVRQAFTDGAVGLSTGLEYVPAAWADETELVALARVAAEHGLPHVSHMRGYESAAVPAMAELFRLATASGVATHVSHLHGPAAAITGVLDDARAAGLDVTFDSYPYLRGSSILAMVALPTWLPLADPDATVAALDAPALARRLRDHLAGLDDLWPRVTLAWVPGLDPDEGDVAGRRLVDVAARWGVAPADAALRLLRASRLRAACVFAQPDTNDADAVRTLANHPAHLGGSDAIYQPVGSGACAGRPHPRGWGAFARFLAEHVRTGGDWTWHDAVEHLSARAARRFGLAGRGSLEAGSVADVVLVDPLAVADRATYDRPRTPAVGVDDVLVAGVPVLTDGELTGRRPGRGLRPSVRPGTPTPPAVPAATEGAPNANANANANA
AK018_020331749hypothetical proteinGTGCTCGGGGACGGCACCCGCGTCCGGGCCCATCCGACGCTGCGACCCGCCGCGGACCGGTGGCGCCGCGCCACCGAGGAAGCCTTCGACATCGCGCTGGTGCCGACCCCGCCGGTCTGCACCGCCGGGCCCGCCGCCCCGGCCGGACTCGCCGACCCGCACGACGGCTCGCCGGAGGCCGCGGACGGCAGCCCGCGGGCCGAGGTCCGGTTCGACCTGGACCCCGGCCTCGACCCGGGCGGCTACACCGTGGAGATCGGCGACGGCGGAGCGGTGGTCGCCGCGAGCGACCTGGCGGGTGCGCACGCGGCGGGTCAGACCCTGCGACAGCTCGCCGGGGCGCCGGCGTTCCGGCGCGCCCCGGCCCACGGGGCCGGCCCCGTGCTCCCGCACCTCGCGCTGCGGGACGCCCCGGCCCACGCCTGGCGCGGCGTCCTCCTCGACGTCGCGCGGCACTTCCTGCCCAAGGCGGACGTGCTGCGGTTCGTCGACCTGGCCGCGGCCCACCATCTCAACGTGCTGCAGCTCCACCTCACCGACGACCAGGGCTGGCGGGTCGAGTCCCGCCGCCACCCGCGCCTGCACGAGGTCGGCTCCTGGCGACGCGAGTCCACCGTCGGTACGTGGCGCACCGGACGGCGGGACGGCCGTCCGCACGGCGGCTACTACACGCAGGACGACCTGCGCGAGATCGACGCCTACGCCCGGGCGCGCGGGGTCCTGGTGATCCCCGAGGTCGACCTGCCCGGGCACGTCCAGGCCGTCCTGGCCGCCTACCCGCACCTGGCGGCCCGGCCCGGCGAGCACGAGGTCTCCACGACGTGGGGGATCAGCGACGACGTGCTGGACCCGTCGGACGAGACGCTGTCGTTCTGCACCGACGTGCTCGACGAGGTGTGCGCGGTGTTCGCGGGGCCCTTCGTCGCGCTCGGCGGCGACGAGGTGCCGACCACGGCCTGGCGGGAGCGGCCCGACATCGTCGAGCGGGCCGCGGCGCTCGGGCTGACGCGCTCCGGCGTGGACGGCACCGACGGTGTGGCGCGCCTCGCCGGGTGGTTCCTCGCGCGGCTCGCTGACCACCTGCGCACGCGCGGTCGCCGCGCCGTGGTCTGGGACGAGGCGTTCGGCCCCGACCTGCCGACGGACGCCGTCGTCGTGTGCTGGCGGGGCCACGCCGTCGCGCTGGAGGCGATGGCCGCGGGCCACGACGTCGTCCTCGCGCCGGAGCAGGAGGTCTACCTGGACCACCGCGCCGGCGACGGCGACGCCGAGCCGGTGCCGGTCGGGTTCGTGCGCACCACCCGGGACGTCTACGCGTTCGACCCGCTGCCCTCCGCGCTGCTCGAGGACCGCGGCGTCACGCCGGGCGCGCTGCCCGGTCGGCTCCTCGGGGCGCAGGCACAGGTGTGGAGCGAGCACCTCGACAGCGCGCGACGGGTCGACTACGCCGCGTTCCCGCGGCTGGCGGCCTTCGCCGAGGCCGTGTGGACCACCGACCCCGCATCCCGCGTACCGGGGTCGGCGGCGTCGGCGGAGTTCCTCGCGCGTCTCGAGGACGCCCACCTGCCCCGGCTGGCGGCGGCGGGCGTCGAGTACCGGCCGCCGGCAGGTCCGCACCCGTGGCACCAGCGCCCCGGCGTGGCCGGCCACCCGCGCGACCTCGCCGCCGAGCGGGCGGCCGCCGGCTGGACCGGGATGGGCGGCTGGGTGCCGGGCCGCGACGGCGCCGAGCCGGAGACGGCCTCGTGAMLGDGTRVRAHPTLRPAADRWRRATEEAFDIALVPTPPVCTAGPAAPAGLADPHDGSPEAADGSPRAEVRFDLDPGLDPGGYTVEIGDGGAVVAASDLAGAHAAGQTLRQLAGAPAFRRAPAHGAGPVLPHLALRDAPAHAWRGVLLDVARHFLPKADVLRFVDLAAAHHLNVLQLHLTDDQGWRVESRRHPRLHEVGSWRRESTVGTWRTGRRDGRPHGGYYTQDDLREIDAYARARGVLVIPEVDLPGHVQAVLAAYPHLAARPGEHEVSTTWGISDDVLDPSDETLSFCTDVLDEVCAVFAGPFVALGGDEVPTTAWRERPDIVERAAALGLTRSGVDGTDGVARLAGWFLARLADHLRTRGRRAVVWDEAFGPDLPTDAVVVCWRGHAVALEAMAAGHDVVLAPEQEVYLDHRAGDGDAEPVPVGFVRTTRDVYAFDPLPSALLEDRGVTPGALPGRLLGAQAQVWSEHLDSARRVDYAAFPRLAAFAEAVWTTDPASRVPGSAASAEFLARLEDAHLPRLAAAGVEYRPPAGPHPWHQRPGVAGHPRDLAAERAAAGWTGMGGWVPGRDGAEPETASPGPT0012150_2440DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSAMINIDASE,PGPT0012150-HEXA_B_like|exo|chb-K12373NANA
AK018_020341827ectP_1COG1292Ectoine/glycine betaine/proline transporter EctPATGCTGGACATCCGGCCGGTGTCCGGCGAGTGTGGACCCCTGGCCGCGAGGCAGATCACGAACGGCACGATCCGGGAGATGAGGGGTTCACCGATGGCCGATCGAGGACTGGATGCTCTGGCGAAACGCTGGGGACTCAGGACGGACCCGACGATCTTCTTCGTCTCGGCGGGTCTGATGATCCTCTTCCTGATCGTGCTGCTGGTCTTCCCGGCGCCGATCGGTTCCGCCTTCGGGTCGGCGCGCGAGTGGATCGTGACCAACCTGGGCTGGTTCTTCATCCTCGGGGTGACGGTCTGGCTCGTGTTCCTCGCCTACGTGGCGCTGAGCCGGTACGGCCACCTGCGCCTGGGCGACGACGACGACCGGCCGGCGTACGGCAACCTGTCCTGGTTCGCGATGCTGTTCGCCGGTGGCATCGGCACGGTGCTGATGTTCTGGGGCGTCGCCGAGCCGATCTCCCACTTCGGCAACCCGCCCTTCGCGGACGTCGAGCCGTACTCGGCCGAGGCCGCCGAGGACGCGATGTCGATCTCGTTGTACGACCTGGGCCTGCACACCTGGACGATCTTCACCCTGCCGGGGCTGGCGTTCGGCTACTTCGTGTACCGGCACAAGCTGCCCCTGCGGGTCAGCTCGGTGTTCTACCCGTTCCTCAAGGACCGCATCTACGGCCCGATCGGCAAGACGATCGACATCTTCGCCGTCCTGGGCACCCTGTTCGGCCTGGCGGTCTCGCTGGGTCTGGGCACCTCGCAGATCGGCGCGGGGATCAACCACCTGCTGCCGGACGTCGAGAACGACACCTGGCTGCAGGTCGGCATCATCACGGTGCTCACGGCCGTGGCCGTCGGGTCGATCGTCGCGGGCCTCGACAAGGGCGTGCGGCGGCTGTCGAACATCAACATCCTCATGGCCGTGGGGATCATGATCTTCATCCTCCTGGCGGGGGACACCGTGTTCCTGCTGCGGCAGATCCCGCAGTCGATCGGCATCTACCTGCAGGACCTGACCGGTCTGGCGTTCTGGAACGACGCGATGTCGCCCTTCACGAAGGAAGGCGGCTGGGGCTGGCAGGGTGACTGGACCGTCTTCTACTGGGCGTGGACGGTGACCTGGGCGCCGTTCATGGGCGTGTTCCTGGCCCGCATCTCGCGGGGGCGCACGATCCGCCAGTTCATCGCCGGGGTGCTGCTTGCCCCGACGCTGTTCACGATCGTGTGGTTCGTGGTCTTCGGCTGGTCGGCGATGGAGCTGGACGGCATCGGCGGTTCGGGCGGTGAGATCTCCGCGGCGGTCGCGGACGACGTCGCCCTGGCGATGTTCACCTTCTTCGAACAGTTCCCCGCCGCGACGTTGATCTCGGGGATCGCCGTCGTGGTGGTGGCGCTGTTCTTCGCGACGTCGTCGGACTCCGCGTCCCTCGTGGTGGACATGCTCTGCGTCGGGACGCCGGATGCCGGGCCGACGCGCCAGCGCGTCTTCTGGGGCGTCAGCGAGGGCGGGCTCGCCGCGTCGCTGATCATCCTCGGCGGGGTGACCGACGCCGACGGGCTGGCGGCGCTCCAGCAGGTGATCACCGTGATCGGCCTGCCGATCTTCGTCCTCGTGTTCGTGATGGTCTTCAGTCTGCTCAAGGGGTTGCACTCGGAGAAGCGGGCGGCCGTGGAGGCCCAGTTCGCCGGCGTGCTCGAGAAGGCCGGTCAGGGACGCGGCCGTCCCAAGGTCGCCGGGATGAAGCGGACCCGGACGCGGTCGTCGGAGTCGACGATGACCGCGCCGACCCCGGCGGTGCCGGAGGAGGAGCAGACCTCCGACCAGTCCTGAMLDIRPVSGECGPLAARQITNGTIREMRGSPMADRGLDALAKRWGLRTDPTIFFVSAGLMILFLIVLLVFPAPIGSAFGSAREWIVTNLGWFFILGVTVWLVFLAYVALSRYGHLRLGDDDDRPAYGNLSWFAMLFAGGIGTVLMFWGVAEPISHFGNPPFADVEPYSAEAAEDAMSISLYDLGLHTWTIFTLPGLAFGYFVYRHKLPLRVSSVFYPFLKDRIYGPIGKTIDIFAVLGTLFGLAVSLGLGTSQIGAGINHLLPDVENDTWLQVGIITVLTAVAVGSIVAGLDKGVRRLSNINILMAVGIMIFILLAGDTVFLLRQIPQSIGIYLQDLTGLAFWNDAMSPFTKEGGWGWQGDWTVFYWAWTVTWAPFMGVFLARISRGRTIRQFIAGVLLAPTLFTIVWFVVFGWSAMELDGIGGSGGEISAAVADDVALAMFTFFEQFPAATLISGIAVVVVALFFATSSDSASLVVDMLCVGTPDAGPTRQRVFWGVSEGGLAASLIILGGVTDADGLAALQQVITVIGLPIFVLVFVMVFSLLKGLHSEKRAAVEAQFAGVLEKAGQGRGRPKVAGMKRTRTRSSESTMTAPTPAVPEEEQTSDQSPGPT0013600_654DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020NANA
AK018_02036507smpB_1COG0691SsrA-binding proteinGTGTCCAACAAGGCCAAGGGCGCCAAGAAGAACCAGAAGTCGGCCGACCCGCGCCAGGTCGTGGCGAACAACAAGAAGGCCCGTCACGACTACGTGATCGAGGACGTCCTCGAGGCGGGCATCGTCCTGTCGGGGACGGAGGTCAAGGCGTTGCGCATGGGACGCGCGTCGCTGCTGGACGGTTACGTGGCGGTCGACCACGACGAGGCCTGGCTGGAGAACGTCCACATCCCCGAGTACTTCCAGGGGACCTGGAACAACCATGCGCCCCGACGTCGGCGCAAGCTGCTGCTGCACCGCGACGAGATCGACCGGCTCGGCGTGAAGTCCCGCGAGAAGGGGCACACGATCGTCCCGCTGCGGCTGTACTTCCTGGACGGGCGGGCCAAGGTGGAGATCGCGCTGGCCCGCGGCAAGAAGGAGCACGACAAGCGGCAGGCCCTGCGGGAGAAGCAGGACATGCGCGAGGCGCAGCGTGCGATGCGTCGCCACGAACTGCTGACGTAGMSNKAKGAKKNQKSADPRQVVANNKKARHDYVIEDVLEAGIVLSGTEVKALRMGRASLLDGYVAVDHDEAWLENVHIPEYFQGTWNNHAPRRRRKLLLHRDEIDRLGVKSREKGHTIVPLRLYFLDGRAKVEIALARGKKEHDKRQALREKQDMREAQRAMRRHELLTPGPT0014355_560DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RatA-RatB|YfjG-YfjF|RatAB-SsrAS_SYSTEM,PGPT0014355-smpB-K03664NANA
AK018_020371545hypothetical proteinGTGTCCCGCCGTACCTCTCCCGTGCCCGCCCGCGGCCGCCTGCGTCGCTGGGTCGGCCTCCTGCTGGTCGGGCTCCTGGTGGTGGGCGCCCCGGCGCCGACGGTCCAGGCCGACGACCTGGACGACCAGCGCGCCGCCGCCGAGGAGAAGCAGCGCCAGAAGCAGGCCGAGCGGGACAACCTGCAGGAGGAGCTCGAGGACACGACCCAGAAGTTCCGGCAGGCGGTCCTCGACCTGAACGAGGTCGAGGGACGCCTCCCGGTGGCGCAGGCGGAGCTGGCCGAGGCGCAGGCCGAGCTGGCCGAGGCACGCCGCAAGGCGGAGATCCTGGCGCAGCGTCTGGCCGACGCCGAGGACGAGGAGGAGCAGGTCTCCTCCGAGATCGCGGCCGGGGCCGGCAAGGCGGACGAGGCCCGGTCCGACGTCGTCTCGATGGCGCGCGAGGCCTACCGGCGCGGCGAGGGGGTCAGCACGCTCGGGCTCGTCACGGGTGCGGAGTCGACCCGCGAGTTCCTGGAGGACCTCACGGTGACGTCCTCCGCGGCGCGCAGCCGGTCGCGGGCGGTGGCCGAGCTTCAGGAGGCCGAGACGGTCGCCCGCAACCAGGAAGCCCGGCTCGTCGCGATCCGCGAGACGATCGCCGACCTCAAGGCCGAGGCCGACGCGAACGTCGTCGCGGCGGAGCGCGCCGAGCAGGAGGCCGCCGACCGCAAGGCCGAGGTGGAACGCCTCATCGCCGAGCAGGAACGACTCAAGGCGGCGATCGCCGAGCAGCGTGACGAGACGATCGCCGAGCTCGAGGAGAACGAAGCCGAGCGCAGCACCCTGGAGTCCCAGATCCAGGACATCATCGTCAAGCAGAAGGAACGGGACCGCCGCCTCGAGGAGGAGCGCAAGCGGCGCGAGGAGGCCGAGCGCAAGCGGCGCGAGGCCGAGGCCGCGGCGCAGCGTCAGGCCGAGAAGGAAGCCGCCGAGCGTCGGGCGGAGCAGGAGAAGGACTCGGGTTCCTCGAACGGCGGCGGTTCCGGCGGCGGAGGCGGTGGCTCGAGCTCCGGGGGCGGCTCGGGCGGCGGCTCCGGCGGTGGCGGCGGCTCCAGCTCCGGTGGGGGCTCCGGCGGTGGCGGAGGATCGTCGTCCTCCGGCCCGTTCCTGGGCTGGCCCACCAACTACCGGGTCGTGACCTCCAGCTACGGCATGCGCTACCTGGAGATGTACGGCTACTCACGGCTGCACGCGGGCACGGACATCCGTTCCTACTGCGGCACGCCGATCTACGCGGCGCAGAGCGGCTACGTGGAGCAGGCGTACTACGGGTCCAACCCGGGCAACAACGTGCTCATCAACCACGGGCGGCACCGCGGCGACAGCGTGATGTCGCGGTACCTGCACCTGTCGCGCGACATCGTCTACGTGGGTCAGAAGGTGTCCAAGGGCCAGGTCATCGGCTACTCGGGCAGCACGGGTTCCTCGGGGGCGTGCCACCTGCACTTCGAGGTGTACGTCAACGGCAGCACCACCGACCCGATGGGCGGCTGGCTCAACTGAMSRRTSPVPARGRLRRWVGLLLVGLLVVGAPAPTVQADDLDDQRAAAEEKQRQKQAERDNLQEELEDTTQKFRQAVLDLNEVEGRLPVAQAELAEAQAELAEARRKAEILAQRLADAEDEEEQVSSEIAAGAGKADEARSDVVSMAREAYRRGEGVSTLGLVTGAESTREFLEDLTVTSSAARSRSRAVAELQEAETVARNQEARLVAIRETIADLKAEADANVVAAERAEQEAADRKAEVERLIAEQERLKAAIAEQRDETIAELEENEAERSTLESQIQDIIVKQKERDRRLEEERKRREEAERKRREAEAAAQRQAEKEAAERRAEQEKDSGSSNGGGSGGGGGGSSSGGGSGGGSGGGGGSSSGGGSGGGGGSSSSGPFLGWPTNYRVVTSSYGMRYLEMYGYSRLHAGTDIRSYCGTPIYAAQSGYVEQAYYGSNPGNNVLINHGRHRGDSVMSRYLHLSRDIVYVGQKVSKGQVIGYSGSTGSSGACHLHFEVYVNGSTTDPMGGWLNNANANANANA
AK018_02038912ftsX_1COG2177Cell division protein FtsXGTGCGGTTGCAGTTCGTCCTCGCCGAGGTCCTCCAGGGGTTGCGGCGCAACGCCACCATGGTCGTCTCGGTGATCCTGGTGACCTTCGTGTCCCTGACCTTCGTGGGCGCCGCGGCCCTGCTGCAGATGCAGGTCACCAAGCTCAAGGGCGACTGGTACGACCTGGTCGAGGTCTCCGTCTTCCTCTGCCCCGAAGGGTCCGCGGTCCCGACGTGCGCCGACGGGGAGGCCGGCGACGAACAGGTCGCCGCGATCGAGGACGTCATCGACACCGAGCTCGGCGACATCGTGGCCACCACGTACTTCGAGACCAAGGAGGAGGCCTTCGAGGCCTTCGAGGCGCGCTATCCCGACGGCTACCAGGGCACCCAGCTCACCGTGGACGACATGCAGGCCTCGTTCCGGCTCCAGCTCGCCGACCCCGAGCAGTACCAGGTGGTCGACGACGTGCTCACCGGTCGGGACGGCATCGAGGTGGTCGAGGACCAGCGTGCGGCGTTCGAGCCCCTGTTCGTGGCGCTGAACAGGGCTTCCATCGTCGCCGTGGGCCTGGCCGGCGTCATGCTGCTGGCCGCGGCGTTGCTGATCACCACCACCATCCGGCTCTCCGCCGTGTCGAGACGCCGCGAGACGGGCATCATGCGACTCGTGGGTGCCTCGTCGCTATTCGTCCAGCTCCCCTTCATGCTCGAGGGGGCGATCGCCGCGCTGGTCGGCGCCGTGCTCGCCGTCGTCGGGCTGTGGCTCGCGGTGCAGTACCTCGTGGCCGACTGGCTCGCCCGCTCGGTCGACTGGGTCGACTACGTCAGCACCACGGACGTGCTGACGATCGCCCCACTACTGCTCGCTGTCGCCGTGGCGCTCGCCGGGGTCTCGTCCGCCGTCACGCTCTACCGTTCCTCGAGGGTGTGAMRLQFVLAEVLQGLRRNATMVVSVILVTFVSLTFVGAAALLQMQVTKLKGDWYDLVEVSVFLCPEGSAVPTCADGEAGDEQVAAIEDVIDTELGDIVATTYFETKEEAFEAFEARYPDGYQGTQLTVDDMQASFRLQLADPEQYQVVDDVLTGRDGIEVVEDQRAAFEPLFVALNRASIVAVGLAGVMLLAAALLITTTIRLSAVSRRRETGIMRLVGASSLFVQLPFMLEGAIAALVGAVLAVVGLWLAVQYLVADWLARSVDWVDYVSTTDVLTIAPLLLAVAVALAGVSSAVTLYRSSRVNANANANANA
AK018_02039918btuD_8Vitamin B12 import ATP-binding protein BtuDGTGATCCGATTCGAGAACGTCTCGAAGGTGTACGCGCGAGGAGCGCGTCCTGCGCTGGACGACGTCTCGGTGGACGTCGAGCGCGGCGAGTTCGTGTTCCTGGTGGGGGCCTCCGGCTCCGGCAAGTCGACGTTCCTGCGGCTCGTGCTGCGCGAGGAGCGCCCGACCGGCGGCCGCGTCTACGTGGCCGGGCGGGACCTGACCCGGTTGTCCTCGTGGCGGGTCCCGGCGCTGCGCCGGGGCATCGGCATGGTGTTCCAGGACTTCCGGCTGCTGCCCAACAAGAGCGTCTACGAGAACGTCGCCTTCGCCCTGCAGGTCATCGGCCGCCCGCGTCACGTCATCCGCACCACCGTGCCCGAGGTGCTCGAGTGGGTCGGGCTGGACGGCAAGGAGAAGCGCCGCCCGCACGAGCTCTCCGGCGGCGAGCAGCAGCGGGTCGCCATCGCCCGCGCATTCGTCAACCGGCCCCAGATCCTGCTGGCCGACGAGCCCACCGGCAACCTCGACCCCACCACCTCGCTCGGGATCATGCGGCTGCTGGACCGCATCAACCGCACCGGCACCACCGTGGTCATGGCGACGCACGACGACGAGATCGTCAACGAGATGCGCCGCCGCGTCGTCGAGCTGTCCACCGGGCACGTCGTGCGCGACGAGGCCGACGCCGTCTACGGACGCCGTGAGGAGATCCTGCCCGCTGTCGGCCCGGTCGCCGTGCTGGACGCTCCCGGACGGGACGTGCCGGTCCGGCGCATCACCGTGCGCCCCGAACCGGGCGACGTCGCCGCCGAGCGCGCGTCGGAGGAGGCGGCCGAGCACCTCACCGAGGACATCGAGCGCGAACCCGTCTCCGAGCCGCTGGAGGAGCGCTCGAGCGCGATGTCCGGTGCGGCGCGAGCCACCGAGGAGGCCTGAMIRFENVSKVYARGARPALDDVSVDVERGEFVFLVGASGSGKSTFLRLVLREERPTGGRVYVAGRDLTRLSSWRVPALRRGIGMVFQDFRLLPNKSVYENVAFALQVIGRPRHVIRTTVPEVLEWVGLDGKEKRRPHELSGGEQQRVAIARAFVNRPQILLADEPTGNLDPTTSLGIMRLLDRINRTGTTVVMATHDDEIVNEMRRRVVELSTGHVVRDEADAVYGRREEILPAVGPVAVLDAPGRDVPVRRITVRPEPGDVAAERASEEAAEHLTEDIEREPVSEPLEERSSAMSGAARATEEAPGPT0020520_4226DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071NANA
AK018_020401110prfB_1COG1186Peptide chain release factor 2GTGGCCACCATCGACTTCCCCGCCGAGATCAAGGGGCTCCGCTCCACCCTCGAGTCCATCGAGGCGGTGAGCGACCCCACCGTCCTCGAGGCCAAGATCGCCGACCTGTCCCAGCAGGCGACGGCGCCGGACCTGTGGGACGACCAGGAGAACGCGCAGCGGGTCACCTCGGCGCTGTCCAACGCGCAGAACGAGCTGGAGCGCGTCAAGCGGCTCGGCCAGCGCATCGACGACGTCGAGACCCTCGTGGAGCTCGGCAACGAGATGGACGACCCGGACTCGCTGGCCGAGGCCGAGACGGAGGTCGCGGCACTGCGCAAGGAGCTCGACTCCCTCGAGGTGCGCACGCTGCTCAGCGGTGAGTACGACGCCCGCGAGGCCGTCGTCACCATCCGTGCCGGCGCCGGCGGCGTCGACGCCGCGGACTTCGCCGAGATGCTCATGCGCATGTACCTGCGCTGGGCCGAGCGCCACGGCTACCCGGCCAAGGTGATGGACACCTCCTACGCCGAGGAGGCGGGGCTGAAGTCCGCCACCTTCGAGGTCAATACGCCTTACGCGTTCGGGCACCTGTCCGTGGAGGCCGGTACGCACCGCCTCGTGCGCATCTCGCCGTTCGACAACCAGGGCCGGCGCCAGACGTCGTTCGCCGCCGTCGAGGTGATCCCGCTCATCGAGCAGACGGACTCCATCGAGATCCCGGAGAACGAGCTGAAGATCGACGTCTTCCGCTCCTCGGGGCCGGGCGGCCAGTCGGTCAACACCACGGACTCCGCGGTGCGCATGACGCACATCCCGACCGGCACCGTCGTCTCGATGCAGAACGAGAAGTCGCAGATCCAGAACCGCGCCGCCGCCCTGCGCGTCATGCAGTCGCGCCTGCTGCTGATCCGTCAGCAGGAGGAGGCCGCCAAGAAGAAGGAGCTCGCCGGCGACATCAAGGCGAGCTGGGGCGACCAGATGCGCTCCTACGTGTTGCACCCGTACCAGATGGTCAAGGACCTGCGCACCGAGCACGAGTCCGGCAACACCCAGAACGTGTTCGACGGCGCCATCGACGACTTCATCGAGGCGGGTATCCGCTGGCGCCGCGGCCAGATGGACGACTGAMATIDFPAEIKGLRSTLESIEAVSDPTVLEAKIADLSQQATAPDLWDDQENAQRVTSALSNAQNELERVKRLGQRIDDVETLVELGNEMDDPDSLAEAETEVAALRKELDSLEVRTLLSGEYDAREAVVTIRAGAGGVDAADFAEMLMRMYLRWAERHGYPAKVMDTSYAEEAGLKSATFEVNTPYAFGHLSVEAGTHRLVRISPFDNQGRRQTSFAAVEVIPLIEQTDSIEIPENELKIDVFRSSGPGGQSVNTTDSAVRMTHIPTGTVVSMQNEKSQIQNRAAALRVMQSRLLLIRQQEEAAKKKELAGDIKASWGDQMRSYVLHPYQMVKDLRTEHESGNTQNVFDGAIDDFIEAGIRWRRGQMDDNANANANANA
AK018_02041369hypothetical proteinATGAGCGACGATCAGCTGCCCGTCCACCTGGACCAGATGTTCGACCTCGCCCGGGCGGGGGAGGGGCTGCTGCTGGAGTTCGTCGACGCCGGGGTCCCCGTGGAGCACGCCGACGCCCAGGGCAACACGCTGCTGATGGTGGCCGCGTACCACGGGCACGCGGAGCTGGTGCAGGGTCTGGCCGAGCGGGGCGCCGACGTCAACCGGCTCAACGCACGCGGTCAGTCCCCGCTGGCCGGGGCGGTCTTCAAGAACGAACCCGCAGTGATCGGCGCGCTGCTCGCGGCCGGGGCGGACGTCGACGCCGGGAGCCCGAGCGCCCGCGCGACGGCGCAGATGTTCGGCCGCACGTTGCCCGGGGCGTTCTGAMSDDQLPVHLDQMFDLARAGEGLLLEFVDAGVPVEHADAQGNTLLMVAAYHGHAELVQGLAERGADVNRLNARGQSPLAGAVFKNEPAVIGALLAAGADVDAGSPSARATAQMFGRTLPGAFNANANANANA
AK018_020421113hypothetical proteinATGGCTCAACGGGACAGGGGCACGCCGTCGTCGCGCCGCCGGGACCTGCTGCGGCGTCGCGCCGTCGTGCACGAGGCTGCGCCGGCCGGGGTCCCGCACCTGACCCGCTACGTCGAGGACGGCCGTCCGACGCCGGCACCTGCCGGAGCGAGCGTGACGGACGGCCTGCGCTTCGCCGACGCCGCGGACGGACGCATGACGATGTCGCTCTACCCGCGTCCCACCGAACCCGACGTCCGCGAGCTCGCCGAGGCGTGGGACCTGCACCCGCTGGTCGTCGAGGACCTGCTGCACGCCCATCAGCGGCCCAAGCTCGAACGGTACGGGGACTTGCTGTTCCTGGTGGTGCGGTCCGCCTGGTACGTCGACGCCGAGGAGGACGTCGTCCTCGCCGAGTTCCACGTGCTCGTGCGTCCGGGCGCCGTGGCGGTGCTCTGCCAGGACGGACGCTGGATCGACGGCACACCGGCCGACCGGCTCGACGAGGAGGGCGCGGGCTCGGACGCGACCGTGCGCACTCTCCTCGCCGACGAGGACCTGCTGCGTCTCGGCCCCCAGGCGGTGGCCTACCGGCTGCTGGACGCCATCGTCGACGGCTACGCGCCCGTGCTGCAGGGAGTGGGCGTCGACAAGGAGCAGATCGAACGTCAGGTGTTCAGCGGCGACGCCGCGGTGGCCGAGCGGATCTACCGGCTCAGTCAGGAGGTCATCGACATGCAGCACGCGACGGCGTCGCTGACCGAGGTGCTCGACGCGCTGCGCGCCGGGTCCGCCAAGCACGACATCGCCCCGGAGCTGCAGGCCTACCTGCAGGACGTCTCGGACCACCTCACCCGGGCGGACGCCCGGGTGCGCGAGTACCGCGAGGCGCTCGGGCAGATCCTCGACGTCAACGCGACGCTGGTGGCGCAGCGCCAGAACGAGGACATGAAGAAGATCTCCGGCTGGGCGGCCATCCTCTTCGCGCCCACGCTGGTGGCCGCCGTCTACGGCATGAACTTCGAGGTCATGCCGGAGCTGCACTGGGCGTTCGGCTACCCCCTGGCGGTCGGGCTGATGCTGACCTTCTCCGTGGTGCTCTACGTCGTGTTCAAGCGCGGCCGGTGGATGTGAMAQRDRGTPSSRRRDLLRRRAVVHEAAPAGVPHLTRYVEDGRPTPAPAGASVTDGLRFADAADGRMTMSLYPRPTEPDVRELAEAWDLHPLVVEDLLHAHQRPKLERYGDLLFLVVRSAWYVDAEEDVVLAEFHVLVRPGAVAVLCQDGRWIDGTPADRLDEEGAGSDATVRTLLADEDLLRLGPQAVAYRLLDAIVDGYAPVLQGVGVDKEQIERQVFSGDAAVAERIYRLSQEVIDMQHATASLTEVLDALRAGSAKHDIAPELQAYLQDVSDHLTRADARVREYREALGQILDVNATLVAQRQNEDMKKISGWAAILFAPTLVAAVYGMNFEVMPELHWAFGYPLAVGLMLTFSVVLYVVFKRGRWMPGPT0014010_248DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284NANA
AK018_02043741hypothetical proteinATGCGTCGCACCCTCACCGGCCTGATCGCCGTCCTCATCGCCGCCGTCGTCGCCGTCGTGGCGACCGACCTGGACGAGAAGCTGAACCTCGACCTGGGGGCCGTCGTCTCCGAGGCGGCCGGCGCCGTGCTCGGGGAGGGCGAGGTGACCGCCGACGAAGGCGTCACCCCGGACGGGTCCGTCGACGTCGCCCGCGTCACGACACAGCTCGACGGGCTGACCGTCAAGGGCAAGGCACCGCAGACCGGCTACGACCGCGACGAGTTCGACCACTGGACCGACCCGGACGGCAACGGCTGCGACGCCCGCAACGACGCGCTGGCCCGCGACCTTGTCGACGAGACGGTGGACGACGACGGCTGCACCGTGCTGACCGGGACGCTCGCGACCGAGCCGTACACCGGCGAGACCGACCGGGCGTTCGAGCGCGGCAGCGACGACCTGGCGGTGTCCCTGGACGCCGAGCACCTCGTCGCCCTGCAGAACGCCTGGATCTCCGGCGCGCACGCCTGGGACGAGGACCGTCGCGAGGAGTTCGCGAACGACCCCGCGAACCTGCTCATGGTCGACCCGAGCAAGAACCGTGCCAAGGGTGCGGCGAACGCCGCCGAGTGGCTGCCGCCGAACAACGCGTTCCGCTGCCGATACGTCGCGGCGCAGATCGACGTCAAGGCCGCCTACGACCTCGCCGTGACCCGGCCCGAGAAGGACGCCATGATCCGCGTGCTCGACCGGTGCTGAMRRTLTGLIAVLIAAVVAVVATDLDEKLNLDLGAVVSEAAGAVLGEGEVTADEGVTPDGSVDVARVTTQLDGLTVKGKAPQTGYDRDEFDHWTDPDGNGCDARNDALARDLVDETVDDDGCTVLTGTLATEPYTGETDRAFERGSDDLAVSLDAEHLVALQNAWISGAHAWDEDRREEFANDPANLLMVDPSKNRAKGAANAAEWLPPNNAFRCRYVAAQIDVKAAYDLAVTRPEKDAMIRVLDRCNANANANANA
AK018_02044426hypothetical proteinATGCTCCTGACGGCAGGGTTCCTGGCCATCGGCCTGATGCTGGTCGGCGTGGTCGCCTCGGCGGCCGCGGTGCACCTCGATCGCAAGCACCTGTTCGACCTGGCCGACTCGCTGGCGGTGGCGGGCGCCGACTCGATGTCGCACGCCTCCTACTACGACGACCCCGGGGCTCCGGACGCCTCCGGGGTGCTGACCCTGACCGACGCGGGGGTGCGCGACGCGGTCGCCGAGCACCTGGCGGCCCAACCGGCGTCGTCGGCGCCCGGGCTGCGCGACGTCCGGGTGACCGAGGCCGTCACGCCGGACGGTCGGAGCGCCCGCGTCAGCCTGGTCGGGACCTCCCACCCGGCGCTGGTGCGGTGGTTCACCGACTCCTTCGGTGCGGGCATCACCGTCACGGCCAGCGCGACCGCCCGCGCGGGGTGAMLLTAGFLAIGLMLVGVVASAAAVHLDRKHLFDLADSLAVAGADSMSHASYYDDPGAPDASGVLTLTDAGVRDAVAEHLAAQPASSAPGLRDVRVTEAVTPDGRSARVSLVGTSHPALVRWFTDSFGAGITVTASATARAGNANANANANA
AK018_02045444hypothetical proteinATGACCGCGCGCCACACCGAACGCGGGTCTGCCGCGGTCGAGTTCCTCGGTGCGAGCGTGCTGCTCATGGTGCCGCTCGTCTACCTCGTGGTCGCCCTGGCCCAGGTGTCCGCCGCGGCGTTCGCCGTCGAGGGTGCGGCACGGGAGGCGGCCCGGGCGATCGTGACCGCGGACTCGTCCGGCGAGGGGGTCGACCGTGCCCGAGCCGCGACACGACTCGCGCTCGCGGACCAGGGGTTCGACGTCGACGCGGCGAGCGTGCTGGACGTGGAGTGCTCCCACGAGCCGTGCCTGACCCCTGGCGCGACCGTCGGTGTACGCGTCTCCTTCGAGGTTCCGCTGCCGCTGGCGCCGCCCGCGCTGCAGGGCTGGGTACCTCTGGCGATCCCGCTGGAAGCGGCGCACGTGGCCCCCGTCGAGGAGCACGTGGCGGTGCGTCCGTGAMTARHTERGSAAVEFLGASVLLMVPLVYLVVALAQVSAAAFAVEGAAREAARAIVTADSSGEGVDRARAATRLALADQGFDVDAASVLDVECSHEPCLTPGATVGVRVSFEVPLPLAPPALQGWVPLAIPLEAAHVAPVEEHVAVRPNANANANANA
AK018_02046339hypothetical proteinGTGCTCGTCTCCGCACTGCTCGTCGCCCTGTTCCTCGGCATCGTGCAGGTGGCGCTGGCCATGCACGTGCGGGCACTGGCTGTCGACGCCGCAGCCGAGGGCGCGCGCCTGGCCGCACGCGCCGACCGTGACCTCGCCGCCGGGGCCGATCGGACGCGTGCCGTCCTCGGCGCGGCGCTCGGGGAGAGGTACGACGACGACGTCACGGTGCGCAGCGCGACCCGCGACGGTCTGCCGGTGGTCCAGGTGACGGTGCGGGCACCGCTGCCCGTCGTCGGACTGTTCGGACCCTCCGGCACCATGACGGCGACCGGTCACGCCCTGGACGAGTCGGCATGAMLVSALLVALFLGIVQVALAMHVRALAVDAAAEGARLAARADRDLAAGADRTRAVLGAALGERYDDDVTVRSATRDGLPVVQVTVRAPLPVVGLFGPSGTMTATGHALDESANANANANANA
AK018_0204796hypothetical proteinATGACCGCCGGACTCGTCGTCGCACTCTGGGCGCTCGCCGGACCACTGCTCGAGGACGCGTTCACCCAGGCCATCGAGAGCGTCACCGGGTTGTGAMTAGLVVALWALAGPLLEDAFTQAIESVTGLNANANANANA
AK018_020481422hypothetical proteinGTGCTCTACCTCCGGCAGTCCACCTATCGTGAGGAGTCCATCAGCCTCGAGCTGCAGGAGGCTGCCGGCCGCGACTACTGCGAGCGCCACGGGTACGAGGTTGTCGGGGTGGAGGCGGATCCGGGGATCTCGGGGCGGACATGGAACCGGCCCGCGGTGCAGCGGGTGCTCGGGATGGTCGAGGCTGGTGCCGCGGACCTCGTCGTGCTGTGGAAGTGGTCGCGGCTGTCGCGGTCGCGGAGGGACTGGGCGATCGCGGCGGACAAGGTCGAGGTCGCCGGCGGGAGGATCGAGTCCGCGACGGAGCCGCTGGACGTGGCGACGTCGGCCGGACGGTTCGCCCGCGGTGTCATGACCGAGCTGGCGGCGTTCGAGTCGGAGCGGATCGGGGACGGGTGGCGTGAGGCGCACGCGCGTCGGGTCGCGGCCGGGCTGCCGGCGAACGGCAAGCCCCGATGGGGGTACGTGTACGACGCGGACGCGAAGGTGCACCGGCCCGACCCCCAGTCAGGGCCGGTGCTGGCCGAAACGTACCAGCGGTACGTGGCGGGGGAGTCGATCTACTCGCTGGTGCGGTGGCTGAACTCGAACGGCTACCGCACCACCCCCGGGTATGCCGCCGCCGGGCCCGGGCTCTGGTCCGATCGGTCGCTGCGGCGCGTCCTAGACTCTGGGTTCGCCGCCGGGCTCATCACCGTCGACGGCGTCACCCGGCCCGGCGCGCACGACCCGCTCATCGACGAGGAGACCTGGGAGGCGTACCAGGAGGCGCGTGAGCGCCGTCGGGTGACCCGCAGCAGCGAACGGTCCCAGTACCTGCTCTCAGGGCTCGTGCGCTGCGCCTGCGGCGCCAGCATGACCGCCGGACTGTTCGGGCAGCAGCGGCAACCGAAGTACCGATGCACCGCCGCCCGCAACAAGGGCACCCACGACGGCGGGTACATCACGGCCCGCGTCGTCGAAGACAAGGTGCAGGCCTGGGTCCGCGACCTCGCGCACGACGACGTCGACGTCGACCAGGCCGCGAGCGCCGAGCACGACGAGCTCGCCGAGCGACGTGCACGCAAGGACCCGCTGGTCGACATCGCGCGTCGCCGCACCGCACTCGAGGCGAAGCTCCTGCGGCTGTCGCGGCAGCACCTCGACGACGTGATCCCGGAGAGTGCGTACCTCGCGCTGCGTGCCGAGATCGAGGACGAGCTCGCCGGGCTGCGATCACGTGAGCTCGCCGCGAACGTAGCCGCCCGACGCGCACCCGCGCCCGCGACCGCCCGCATCCTGATCGAGGCGTGGGACGAGCTTGCCGTCGAACGTCGACGGGAGATGCTCCGGCAACTCATCACCCGCGTCGTCGTGACACCTGGCCGGCCCCGGGGGACAGTGGAGATCGTGCCCTCCTGGGAGGGTGACTCCGCGCCCTAGMLYLRQSTYREESISLELQEAAGRDYCERHGYEVVGVEADPGISGRTWNRPAVQRVLGMVEAGAADLVVLWKWSRLSRSRRDWAIAADKVEVAGGRIESATEPLDVATSAGRFARGVMTELAAFESERIGDGWREAHARRVAAGLPANGKPRWGYVYDADAKVHRPDPQSGPVLAETYQRYVAGESIYSLVRWLNSNGYRTTPGYAAAGPGLWSDRSLRRVLDSGFAAGLITVDGVTRPGAHDPLIDEETWEAYQEARERRRVTRSSERSQYLLSGLVRCACGASMTAGLFGQQRQPKYRCTAARNKGTHDGGYITARVVEDKVQAWVRDLAHDDVDVDQAASAEHDELAERRARKDPLVDIARRRTALEAKLLRLSRQHLDDVIPESAYLALRAEIEDELAGLRSRELAANVAARRAPAPATARILIEAWDELAVERRREMLRQLITRVVVTPGRPRGTVEIVPSWEGDSAPNANANANANA
AK018_020491050hypothetical proteinATGAACGACCCGAAGAAGGCCGGGAAGACCCGCAGCACCGGCACCCTCGTCTTGCAGGTCATCGTCGGACTAGTGCTCTTCGCGATCCCCTACATCGGCTGGCTACTCGGGCTATGCCTGCTGGGGTACGGCATCGCGACCTACCTGGCGCGCCCACCACGACAAGCGGCACCGCACAAGTCCGCGGGGACGGTCAGCGCAGTCACCACGCCGACGCCCTCCACCGGCCCCGTGCGGCCGCTTGCCCAGCAGCTCGAGGAGAACCCCCGGGCACGAGAGGTGGAGCTCCGCATCTACGACCTGTGGGGCACGTCCGGCTTCCCGAACTTCGAGATCGTCGGGGAGCACTACCGCCAGGGCGCGTTCCGTGCCCTGTACGACACCCGTTCATCTGGCCAGGAGTTCATGACGGACGCCCAGCTCGTACCCGACATCGGCAATGCCCACGACTCCAACGCGGTGATGGTGGTCGTTGAAGGTCAGCACGTCGGCTACCTGCCACGCGACGAGGCCGAGAGGTACCGGACCGTCATCGAACAGATGGTCCAGGACGGGTACGCGCCCACGACACCCGCTCGTGTGTGGGCCCGCAACGACGGAGGCACTTGGCGCGCTCGCGTGACGCTAGACCTCGGCGAGCCCGACATGTTGATGCCCTCCAACGAGAAGCCAGACGGTCCGTGCGGTGTCCTCCCGACGGGCCGGCGAGTCCAGGTCACCGGTGAAGAAGCACATCTCGACGTGCTAGCGCCCTACCTATCCCGCGCTAGCCATCCGCAGGTCTACGTCACCCTGCACAAGATCGTCGAACAGCGACCGAGATCGACAAAGACTCTTGTCGAGGTGCGTCTCGACGGTGCTCGCTGCGGCGCGCTGTCGCCCGTGACTTCCGCCGACATCCTGCCCCTCGTTGAGCGAGCAGAGACGCTCGACCGACCCCTGGCCGCCAGGGCGCGGATCACCGGCAACTCCCTCAAGGCCGACGTCACGATCGACATCGCGCGCGCCGGTGACATCCCCCAGAGTTGGATCGACGAAGACCTGTCTTAGMNDPKKAGKTRSTGTLVLQVIVGLVLFAIPYIGWLLGLCLLGYGIATYLARPPRQAAPHKSAGTVSAVTTPTPSTGPVRPLAQQLEENPRAREVELRIYDLWGTSGFPNFEIVGEHYRQGAFRALYDTRSSGQEFMTDAQLVPDIGNAHDSNAVMVVVEGQHVGYLPRDEAERYRTVIEQMVQDGYAPTTPARVWARNDGGTWRARVTLDLGEPDMLMPSNEKPDGPCGVLPTGRRVQVTGEEAHLDVLAPYLSRASHPQVYVTLHKIVEQRPRSTKTLVEVRLDGARCGALSPVTSADILPLVERAETLDRPLAARARITGNSLKADVTIDIARAGDIPQSWIDEDLSNANANANANA
AK018_02050807hypothetical proteinGTGAACGCACCCACGGGTCTTCGGGAGTTGCTGGACCAAGCGCTGGTCCGCCTCGACGTCCGCTCTGGACGCCGCCTCTCGGAGATCGCACAGGACGCCGGCTACCGGGTCTCGCATGCGACGATCAACCAGATTCGCAGCGGGTCCTACTCATCGCGCCCCTCGGACGACACCGTCCGAGCGATCGCGTGGCTCGCCGGCGTCAGTGATGAGACTGCGTTCGCAGCGGCGGACCTCCCCGTGCCCGGGCCGCCGTTCGCGGACGAGCTGCCGCCCGGCGTCGACGCCCTGTCGCCGCGCAAGCGGAAGGCCGTCCTCGACCTCCTGCGGGTGCTGATCGACGACGAGGAGCGTGATGGCCATGACCGAGACGCCGCCCCCAACCAGCAGGCCGTGGGGAGCACGGCCGCCGAGCAGGAATGGCGTACCCGGGTCGGCAAGGCGATCCGAGCTGCGCAGAGCGAGCAGGGCGACGACCTCAACGTGCCGGGCGTCGGGCCGGCCGCCATCGCTCACGCCATGTACGGCGACCCTCGTGTGCAAGTCGACGATGTCCTGAAGGTGGCCCTGTACCTCGGGATCCCGGAAGACATCGTCGGCCGCTACTCCTACCAGGGAGAGCCGGTCACCCTCACCGAGGCAGACGGCGTGGCGACGGCGCCACGCGCTCTGCCAGACGATGGCACGGCGAAGCACTGGACGAGCGCAACAGAACAGGACATCCGCGCAGGCGGGTCGCTTCCCCAGGCGCCGGCGCACGGACGTACCCGACGGACCAGCGACAGAACGAAGAAGCCCCACAGCTGAMNAPTGLRELLDQALVRLDVRSGRRLSEIAQDAGYRVSHATINQIRSGSYSSRPSDDTVRAIAWLAGVSDETAFAAADLPVPGPPFADELPPGVDALSPRKRKAVLDLLRVLIDDEERDGHDRDAAPNQQAVGSTAAEQEWRTRVGKAIRAAQSEQGDDLNVPGVGPAAIAHAMYGDPRVQVDDVLKVALYLGIPEDIVGRYSYQGEPVTLTEADGVATAPRALPDDGTAKHWTSATEQDIRAGGSLPQAPAHGRTRRTSDRTKKPHSNANANANANA
AK018_02051279hypothetical proteinATGCACGTGAAGGACCCCGCCGAGTTCCGGCGCCGCCGGATGCTCGCCCGCTACACACAGCGCGAACTCGCGATGCTCGTCCGTCGTACCCAGACCACGATCTGGGCCATCGAGAACGGGTCGCTCAGCAACATCAGTGAGGACCTCGCCATCGCCCTGGCCGCGCGCCTCGGCGCCGAGAACTGGGAGGACCTCTTCGAGCTCCGCGAGGCCTCTCGCATGCCTGACATGGAAAGCGAACAGCACTCCAATCGCCGCCCCCTCGCGGCCACCGCGTAAMHVKDPAEFRRRRMLARYTQRELAMLVRRTQTTIWAIENGSLSNISEDLAIALAARLGAENWEDLFELREASRMPDMESEQHSNRRPLAATANANANANANA
AK018_02052234hypothetical proteinGTGGCATCGTCCCAGACAGTCCAACCCCGGGGCCAGCGCCCCACCCGTGGGGAGTGCGTGCGCGGGTACGCCCGTGTCGGCGTCCTCGCCTACGACGAGCTGCTCGACCCGGCGACCTCGGTCGCTGAGGCCGCCCGCCGCGCCTACACCCCGACCGGCCCGTCCATCGCCGAGCTCGAGGCCCGCATCACAGCCCGCCGTGCGGCCGCCGACCGGACGGCGGTGGCGTCGTGAMASSQTVQPRGQRPTRGECVRGYARVGVLAYDELLDPATSVAEAARRAYTPTGPSIAELEARITARRAAADRTAVASNANANANANA
AK018_02053456hypothetical proteinGTGAACGCCCGAGTCCTCGCCCACGCCACGAGCGTCCTCGCGATCAAGGACTGGACGCTCGAGCTCGCCGCCGCCCTCCAGGACGACGACCCCGCCCGTGCCGCCCGCGCGGCCGCGACGATCGCGCAGGCCGTCCACGAGGTCCGCCTCGACGTCGATCCGAACCGCGAGGCATGCGCCGCGATCACCCACGACAACGGCGCCTACGCGGAGACGCTGCGGCCCGCTGCGGCGCTCGCGGCGGAGCTCGACGAGCCGATCCCCTACCGACTGACCGAGTCCGCCGGGCGGGATGCACCGCGCCCGTTCCCGGGCGTCGGCATGGTCGCCGAGGATGACCTCGCCGTGATCGCCCGGGGCGCAGGCCTGTCGGGGTGTGAGTGCTGGGACCCGTTCACCGCGGTGGTCACCGGCCACGGTCGCGCCTGCCCGCTGTACGCGGAGTCGGTCCGATGAMNARVLAHATSVLAIKDWTLELAAALQDDDPARAARAAATIAQAVHEVRLDVDPNREACAAITHDNGAYAETLRPAAALAAELDEPIPYRLTESAGRDAPRPFPGVGMVAEDDLAVIARGAGLSGCECWDPFTAVVTGHGRACPLYAESVRNANANANANA
AK018_02054486hypothetical proteinATGAGGGCCCCGCTGGTGCACCTGGTGCGCACGCTGCCGGTCCACGTCTCCAACAGCGGCGACATCCCGGTGGTCGCGGTGGTCTGCCGCGAGTCGACGCCGCAGCTCCTGGCCCGCACGACCCGCCACGCGCGTGAGGCCACGTGCCCGGCCTGCACCGCGGAGCGGTACGCCCGCCGCGAAGCACGGCGCGCGGCGCTCGCCGCGGACCTGCGCCAGGCGGTCGCTGTGGCGCACGTGCACGGGGTCTGGTCCGACACGACCCCGTTGACGCTGTACTCGTCGACGCCGGCGCTCGAGGAGGAGATCGAGCCTTCCCCTTGGGCGGTGCTCGACGGGAAGCGCGGCGATCTAGGTGCAGCGCGGGTCAGTGTCCTGGCGCAGCAGCGTGAGCGGCTGCGGACACTGTGCGCCGCGCAGCGGGCCAACGGCCGCCTGCTGCAAGCGCAGGCGGCTGGGCGCGAGGTCGGGGCGGCGGTCCGGTGAMRAPLVHLVRTLPVHVSNSGDIPVVAVVCRESTPQLLARTTRHAREATCPACTAERYARREARRAALAADLRQAVAVAHVHGVWSDTTPLTLYSSTPALEEEIEPSPWAVLDGKRGDLGAARVSVLAQQRERLRTLCAAQRANGRLLQAQAAGREVGAAVRNANANANANA
AK018_02055291hypothetical proteinATGACCGAGAACCGTGCGTCGAACCCGGTCGGTGCCGCGCTGGTGCTCGGCACGGCGACCTGGCTGCTGACTGGGGGTGTCGTGCTGCTGATCGCCGCGACGACGCTCCTGGTCTCGGCCGTCGGTCTGCTGCTCGTGGTCGTCGGTGCCTGGCTACTGGCTGAGTTCCTGACCGCGCCGGCCCGCGGTGAGCGGCGCCAGCGTCGCGAGCAGCTCGACAGGCAGTCGCTCGCGGGCGGTCGCGTCGGCGGGCCGGGCGCGGACTCCGGGCGTCGGGAGGTGCGGTCATGAMTENRASNPVGAALVLGTATWLLTGGVVLLIAATTLLVSAVGLLLVVVGAWLLAEFLTAPARGERRQRREQLDRQSLAGGRVGGPGADSGRREVRSNANANANANA
AK018_02056255hypothetical proteinATGAGCGCCATCGAGAGTGGCGCAGCAGCTCTGCGCGGCCCTGGCCTGACCGTCGACCACGAGGACGTCGCCTCGGTGACGCGCGTCTTCGAGTCCATCGATGTCGACGACCTCGCCCGCGGGATCTACGAGGCGCGCGTCCGGGAGGTCTACGGCTCGCGGCCTGATCTGGCGCCCTCGTGGGACGAGGTGGCTACCACGTGGACCTCCGTCGCCAGGATCGCGAAGGCCTACCTCGTGGGCGGTGCGTCGTGAMSAIESGAAALRGPGLTVDHEDVASVTRVFESIDVDDLARGIYEARVREVYGSRPDLAPSWDEVATTWTSVARIAKAYLVGGASNANANANANA
AK018_02057366hypothetical proteinGTGAGCAGCGAGACAGCACCGGGCTGGCAGGAATTGCCGGCAGCCTACGTCGCGGCGTGCGCGCCGGACTTCATCGGATCTCGTGTGCGGGTCGAGTACCCGGCACGTCAGCGCCGGCAGTCCGAGGTGTACGAGGGCGTGCTGTCCGACGCCGTCCTGCTGCCGCCCGGCAGCCACCCCCTAGTCGCGGTCCACCCCGACGGGTCGGTCTGCCCGAACCCACTCGTGGCCACCGTCCGCGCACCCGGCGCTCTGCTGTTCATGGCCGGTGCCGATCTGTTCGCCGCAGCTGGCCACCCGCTGCTCGTCCAGGAGCGGCCGCACCGCTCACTTCCGTCCGGTCTCCCGCAGAGGCCCACCCGATGAMSSETAPGWQELPAAYVAACAPDFIGSRVRVEYPARQRRQSEVYEGVLSDAVLLPPGSHPLVAVHPDGSVCPNPLVATVRAPGALLFMAGADLFAAAGHPLLVQERPHRSLPSGLPQRPTRNANANANANA
AK018_02058519hypothetical proteinATGAGACCTGCCCTGCTCCACCTGACCAGGAAGGACCACGTCATGCCGAGCTCGACCAGCACCACCCCTCGCAGGCACCGCTCGTCCTCGATGCTCACGCGGCTGACCCGGCGCCGGCGCCGCCGTTCGGCGCCGATCATCGCGCACCCGCCGAGGACGGTGCCGCCGTCGACGCCGGTGTGGTTCGACACCGTGAGCCCCACCGACGCGCCGCGTTCGGCGCCGGCGCGGGTGGCTCGTGCCCGCAAGATCGCCGAGCGGCTCCTGGACCCGACGGTCACCATGGCCACGGCTCTCGCTGCGGCGGCGGGCGGCGACGTCCGGACCGGCCCCGAGTCGGTTGGTGTCCGGTCGGTGGAGTTCGTCCGGCTCGACGAGCTGATCTCCGCGGCGGTCACGCGGGTGACGGCGGTGACGCTGCGGTACGGCGACCGGTCGGTGCAGCAGTCGGACGTCGCGGACCGGTGGGCGCGCATCATCGGCGCCCGGGTGCGCGTGATCGTCGGCGGTGCGTCGTGAMRPALLHLTRKDHVMPSSTSTTPRRHRSSSMLTRLTRRRRRRSAPIIAHPPRTVPPSTPVWFDTVSPTDAPRSAPARVARARKIAERLLDPTVTMATALAAAAGGDVRTGPESVGVRSVEFVRLDELISAAVTRVTAVTLRYGDRSVQQSDVADRWARIIGARVRVIVGGASNANANANANA
AK018_02059234hypothetical proteinATGGGTATCGGCCGGTCTGGCAGCGGCTTTGTGCCCGGCACGGTCGTCGCGGTGTGGGAGGACCCTGCGGACGTCGCGGGCGACGAGACCGAGTGCGTGCACACGATCCGGCTCGCGCGGGTCCTGTCGCAGCAGCGCCTGGGCCATGCCCGTCGCTGGGACGACTTCGTCCCGGAGGCACGCCGCCTGGTGGCAGCGGGCGTGCGGGTGCCGGACTCGGTGGTGCTGCCATGAMGIGRSGSGFVPGTVVAVWEDPADVAGDETECVHTIRLARVLSQQRLGHARRWDDFVPEARRLVAAGVRVPDSVVLPNANANANANA
AK018_02060372hypothetical proteinATGAGCGCGACGACGACGGCGACACCTGCCGAGGTGCGTGAGATCAAGACCGAGGGGCAGGCGCTCGGCGCCCGAGCCGCGCGTGAGGCGCACCGGGAGGCGTTCCGTTCCGCGGTACGTCGGGTGCCGGTCGGTGAGTGGTTCACCGTCAACGACCTGCGGCCCGACCTCGACGCGGCGCAGATCCCGCCCACTGCGCGGGGCCCGCTCATGGCGATGGCAGCCCGCGAGGGTCTCGCGGAGGTCGCCCAGTACATGGACCCGCTCGGCCGTGTGTACGAGCTGCAGGAGCAGTCGTCCGGCCGGTCTGCGAAGGGCGCCCGGGTCTCCGTCTACGTCCGCCTCGGGCCCGAGGCGGGTGGCCCGCCATGAMSATTTATPAEVREIKTEGQALGARAAREAHREAFRSAVRRVPVGEWFTVNDLRPDLDAAQIPPTARGPLMAMAAREGLAEVAQYMDPLGRVYELQEQSSGRSAKGARVSVYVRLGPEAGGPPNANANANANA
AK018_02061327hypothetical proteinATGACCCGGGCCCGTACCCGCCAGCGTGCCGGCGCGCGCGTCGAGTGCGTGTGCGGCAGCCCGATCATCTGGGTGCTGTACCTGCCGGACCTGGAGCACATGGTGCCGGGCCGGGCACGCAAGCGGGTGCCGCTGGACGCCGTGCCTGTCGCGGACGACGACGAGTACGCCGAGCACGCGGCCTCCCCGGGGATGACGACCTGCCGACGCATCACCGCGACCGACCCCCTCGTGGCGGGCTTCGAGACCCGCCACACCATCCACTACGCCACCCATCCCGAGTGCTCCGACCACCTACGGGGCCACACCGGAAGGACCAGATCGTGAMTRARTRQRAGARVECVCGSPIIWVLYLPDLEHMVPGRARKRVPLDAVPVADDDEYAEHAASPGMTTCRRITATDPLVAGFETRHTIHYATHPECSDHLRGHTGRTRSNANANANANA
AK018_02062171hypothetical proteinGTGAAGAAGCAGCCGATCAGTCAGAACTCCCCCGCCCACCAGGCCGTGCTGCACGGCCTGCAGGGCAAGCACGTCTACGCCGGCACGGTGCCGCCCGCCACCGTCGCCCGGCGTCGCGCCGCCAACCGGGTCGCCCGCCGCTCACGTGCGGCGAACCGCCACCGCGGCTGAMKKQPISQNSPAHQAVLHGLQGKHVYAGTVPPATVARRRAANRVARRSRAANRHRGNANANANANA
AK018_02063294hypothetical proteinATGTGCCCGACGACACCGCCGACACCCGACGCGATTCCCCCGACGCCGCCGCTGGAGCGCGGGCCGGACGACTCCCCGATCATCGAGCTGCCCGCCATCCTGGACCGTGCCCGCTCGGAGATCCTGAACGAGCTCGCCGTCGTCAACGATGCTGTGACGGCATCCAGCGACGAGCTGACCCTGTGGCTGGGTCGCCGTGACGAGCTGCAGCGTCAGCTCGAGCACGTCGACGCCGCCATCGCCACGCTGGACGGCCACGGTTCGGCCGCGGCGGACGGCGAGGCGCGGTCATGAMCPTTPPTPDAIPPTPPLERGPDDSPIIELPAILDRARSEILNELAVVNDAVTASSDELTLWLGRRDELQRQLEHVDAAIATLDGHGSAAADGEARSNANANANANA
AK018_020641452hypothetical proteinATGAGCCCCGTCATCAACGCACCCGCCACCACCCCTCCGGCGCCTCGGCAGCCCGCGGACGGCCTCGACCGGGTGACCGTCGACCCGGCCACCCTCGTCGTCGACGCGAACGTCCGCCGCGACGTCCAGCTCGACGCCGAGTTCATCGCATCGATCGGGGAGCACGGCGTCCTGACCCCGATCACGGCCCGCCGCGACCCACTCGGTCAGCTCCTCGTCGTCGACGGCCAGCGCCGCACCCTCGCCGCGATCGAGGCGGAACTGCCACAGGTCCCCGTCGACGTCGTCGACGGCATCGGCGACGACGAGTCCCGCATCACCACCCAGTACGTCGTCAACGAGCACCGCCGCGGCCTGACCGCCGCGGACAAGATCGCCTCGGTCCACCAGCTCTCACTCTTCGGCCGCTCACCAGCGGCGATCACGAAGCGACTCCGGATCCCGCGCGCCGACGTCGACGCGGCGCTCGCGGTCTCGCAGTCGAAGGCGACGACTTCAGCCCTCGCCGAGCACCCCGAGGTCGACCTGGTCGCAGCCGCGGTCATCGCGGAGTTCGACGACGACCCCGAGGCCGTAGCCGAGCTCGTCGAGGTCGCCGAGACCGAGCCGCGCAGGCTCGAGCATGTGGCGTCGACCCTGCGTTCCCAGCGCGAGGAGCGTGACCTGGTCGCGCGAGTGCGCGCCGAGCTCGAGGCGACCGGGATCACGGTGCTGGACGAGGCGCCGGTGTGGGACGACAAGTCGTCCGAGAGGCTGCACTCGCTGACGGACGACCCGGGCGCGAAGGGCTACCCGCCGCCGCTCGACCCTGTCGAGCACGAAGCCTGCCCGGGCCACGCCGTGTGGGTCACCGCACGTCGCGCCTGGGACAACGGCAAGGTCGACGGCTGGCGAGCTGAGCTCCTCGAGTACTGCATGGACTGGCGGGGCAACGGCCACCACAAGCGCAGCGCTTCGAACACGGCGGGCGCGACGTCCGGCCCGCAGTCGGACGAGCAGAAGGCCGAGCGCCGAGCGCTGATCGCGAACAACAAGGCAGCCGACGCCGCGGTGCCGGTGCGCCACGCCTGGCTCACCGAGTTCGTGCAGCGCACCAAGCTCCCCTCGGGCACCTCGACCTACGTCGCGCGGATCCTCACGAACGGTGCGGCGTACCCCGACGGTGACGCGCACCGCTTCGCCAGTGACCTCCTGTGGCCCACGGCCAGCGCGGCGATGGCCGCGCAGGACGTCCACGCCAAACTCGCCCGCCCGGCGACGGCCGACGCCTACCTCGTGGCGCTCGCGGCCGCGGTGGTCGAGACCCACATGCCGCGGGACTACCACCGTTCCGGCGGCGAGTACCGCTCGAACCTGATCGCCATGCACCTGCGCCAGCTCGAGGCGTGGGGGTACGTCCTGGCCGACGTCGAGGCGACTTGGCTCGCCGGCCTCATCGAGAAGGAGGCCTGAMSPVINAPATTPPAPRQPADGLDRVTVDPATLVVDANVRRDVQLDAEFIASIGEHGVLTPITARRDPLGQLLVVDGQRRTLAAIEAELPQVPVDVVDGIGDDESRITTQYVVNEHRRGLTAADKIASVHQLSLFGRSPAAITKRLRIPRADVDAALAVSQSKATTSALAEHPEVDLVAAAVIAEFDDDPEAVAELVEVAETEPRRLEHVASTLRSQREERDLVARVRAELEATGITVLDEAPVWDDKSSERLHSLTDDPGAKGYPPPLDPVEHEACPGHAVWVTARRAWDNGKVDGWRAELLEYCMDWRGNGHHKRSASNTAGATSGPQSDEQKAERRALIANNKAADAAVPVRHAWLTEFVQRTKLPSGTSTYVARILTNGAAYPDGDAHRFASDLLWPTASAAMAAQDVHAKLARPATADAYLVALAAAVVETHMPRDYHRSGGEYRSNLIAMHLRQLEAWGYVLADVEATWLAGLIEKEANANANANANA
AK018_02065390hypothetical proteinATGGCCACGACGCTCCCCGCGCCCGCTCATCGCCCCGCCCGGCGCGCGTCGACGGACGAGCTGGTCGCCGCCGGCGCTGCCACGGCCGTGCACCGGTTCGGCATCGCGCACTGCGGCCTCGTCGCAACCGAAGCCCGCCAGGCGGCTCGCCACGAGCTGCAGGAGGCTCTCGCCGTCGCCCAGGACCTGGCTGACGGGCACTGGCAGGCGCGCCTCGAGCTGTACGCGCGGGCGGCACTGCTCCCCCAGTACACGGAGTACGACATCGTGCGGATCGGTGGCGAGCTGCTCGCGCTGCCCGGCGACCCGGACGAGAACGTCGACCTGGCGCTGGCGCTCCTCGAGGGCTGGACGACGCGTCAGCGGCTCACCGGTGGCGGTGTGCGATGAMATTLPAPAHRPARRASTDELVAAGAATAVHRFGIAHCGLVATEARQAARHELQEALAVAQDLADGHWQARLELYARAALLPQYTEYDIVRIGGELLALPGDPDENVDLALALLEGWTTRQRLTGGGVRNANANANANA
AK018_020661338hypothetical proteinATGAGGACCGACGGCGTCGTCGCGACGGGCGGCTACATGAACAAGCCGGCACCGAGCCTGCCGTCGGGTTCCGCGATCGACGCGGACGAGGTGCGTGCACGGCGCGAGCAGGCTGCTGCCGAGCGCGCTGCACGGAACCCGTTCAACCGTCCGCAGGGTCAGCCTCGCTCGAAGTCGGCCTCCCGGGTGCTCGGCGACGCCCTCGTCGACCACGAGTACGAGCAGGCCGCGTTCACCACACCTCCGCCCAGGCCGGAGTCAGAGGCGAAGCCCGCTCCCCCGGCTCCGAAGCCGCCGACGTGGGAGCAGACGCCCCCGCCCCACGCGAAGGGACCGAAGCCGGGCCCGCCGGCGCCCGCGCCGAAGAGCGGTCGGCCGGACATCGACCGGGCAGGCATCGTGCGCGACTACGTCGAGGACAAGATGACGATGCCCGCGATCGCCGCGGCCCGCGGCATCAACGCGTCGACCGTCCGCACTGTGCTGGTCAACACCCCCGGTGTCGAGCTGCGGGACGACCGCAAGTCACGCCCCACGATGAACGTCCCCGCGATCGTCGCTGAGTACGTGTCGGGCAAGACAGTTGCCGAGATCGCTGCCTCCCGGCACCACGGCCAGCAGGCCCTGCGCAACATGCTCCGCGCCCACCCGGACGTCGTCTACCGCGACGACCGCGCCACACGCTCTGGCGGTCACAAGGCCGACGACGACCCCAAGATCGTCGCGGCCGTCCGACGCCTGTACGTCGACGAGGCCATGACACAGCAGCAGGTAGCCGAGCGCCTCGGCCTGACCCAGAAGGTCGTGCAGCGCATCATGCGCGACCACGACATCGAGGCCCGCCCACCCGCGCACGAGAGGACCGCGGAGACCATGTCGAGGACCAACCCGGCAGAGCTCATGAAGCAGCGCCTCGAGGACGCCGGCGTGACGACGTCCGACGTGCGTGGTTGGGCCCGCGAGCACAACCTCGCCTGCCCGACTCACGGCGTCGTCCCCCAGCGAATCCTCGCCGCATACCTCCGCGCTGACGGCGGCACCCCGTCCGACGACGACCTCGCCACGACCGAGGCGAGGCCCGCAAACGCCACCCCCGCCAGCGGCCCGCCCGACGCGCCCCCACCACCGGTCCCGCGTCCCGCCGACGACGTCGACGACATCGACGAGCACCTGGCCGCGATCACCGACCTCGTTCGCGTCCGGAACATGCTCACCGACGCAGGAGCGCCCACCATGCTCCTCGACAACGCACTGCACGCCTCGACGACCCGCGTCGACGCTGTCGTCACCCACGAGCTCGAAACCCTCCGACTCCTCACCGCCGGAGGTGCGCGATGAMRTDGVVATGGYMNKPAPSLPSGSAIDADEVRARREQAAAERAARNPFNRPQGQPRSKSASRVLGDALVDHEYEQAAFTTPPPRPESEAKPAPPAPKPPTWEQTPPPHAKGPKPGPPAPAPKSGRPDIDRAGIVRDYVEDKMTMPAIAAARGINASTVRTVLVNTPGVELRDDRKSRPTMNVPAIVAEYVSGKTVAEIAASRHHGQQALRNMLRAHPDVVYRDDRATRSGGHKADDDPKIVAAVRRLYVDEAMTQQQVAERLGLTQKVVQRIMRDHDIEARPPAHERTAETMSRTNPAELMKQRLEDAGVTTSDVRGWAREHNLACPTHGVVPQRILAAYLRADGGTPSDDDLATTEARPANATPASGPPDAPPPPVPRPADDVDDIDEHLAAITDLVRVRNMLTDAGAPTMLLDNALHASTTRVDAVVTHELETLRLLTAGGARNANANANANA
AK018_02067252hypothetical proteinATGAACCACATGCCCCACGAGCATGGCGTCGGCCGCTCGTGCGGCCAGGACCCTGTGCACGCCGGTGACGTGAGCGCGTCCGTGCTGGAGCGGGCTCTGGGGCGGGTGGCCGCTCTGGCGGGGCCCGACCAGCTCGTGCCCGCGCTGGACGCTCTCGCGGATGCGCTCGCGGCTGGCGTTCAGCCGTTTCAGCTCCGCTTCCTCGCGGCCGGGCTGGCGGACGGCATGCGCAAGGGCGGTGACCGCCAATGAMNHMPHEHGVGRSCGQDPVHAGDVSASVLERALGRVAALAGPDQLVPALDALADALAAGVQPFQLRFLAAGLADGMRKGGDRQNANANANANA
AK018_02068813hypothetical proteinATGACCGTGGTCAACATCGACGACCCCACCGGCCTTGCCCGCGCGCTCCGCGGCGTCCAGATGACGGCCGACTTCGACCTCGGCCGAGGCTCGGTGCGGCAGGCGCTCGCGGCGGTGCTGCCGCACGTGGGTGACCTGATGTCGCTGGATCGGGTGCGTCTGCAGTACGTCGGTGGGGAGGCCGGCATGGTGGCGATCGCGTCGACGGGTTCGTCGGTCGCGATCACCGGCGTGCATGTCGACTCGATCGGCGACGGCCAGGGCGCGTGCGTGATCGACATCGAGGGACGTTCGGCGCGCGAGGTACTTGCCGTGCTGACGCCGCCCCGCGACAAGGAGTCCCGAACGAACTGGAACGCCGAGTCGTTCCGTGTGACCGCGACGGACGACGAGGTGACGTTCGCCGAGGAGTCCGAGCTGATCGATGGCCGCTCCCTGACCGTGCCGCGCCTCCCCCACCGCGATGACGAGGGCCGCCACACCATCTACCCGGACTACCCGCGCCGTGTCGCCGAGCTCCTCGAGGCGCCCCTGACTCCCGAGGTCGACACCGCGCTCGGCAGCGGCCCCCTGGCGGCGTGGATGAAGACGGCGCGCGTCCTCGACGCCTCGCTCGAGGTCACCCCACGCCAGCGCCCCGACGGCAAGCCCGGCCTGTGGGCGGTGAGCGTCGGCGGCTCGACGGTCGGCGCGATCGCTCCCCAACACCCCGACGAGGACCACCAGGACACGGTCCTGCCCGCGTGGGCCCGCCGCCTGTGGCGCCTGCGCACCGCCACCAGCGACGCCACGACAGGCACGGAGGAACCATGAMTVVNIDDPTGLARALRGVQMTADFDLGRGSVRQALAAVLPHVGDLMSLDRVRLQYVGGEAGMVAIASTGSSVAITGVHVDSIGDGQGACVIDIEGRSAREVLAVLTPPRDKESRTNWNAESFRVTATDDEVTFAEESELIDGRSLTVPRLPHRDDEGRHTIYPDYPRRVAELLEAPLTPEVDTALGSGPLAAWMKTARVLDASLEVTPRQRPDGKPGLWAVSVGGSTVGAIAPQHPDEDHQDTVLPAWARRLWRLRTATSDATTGTEEPNANANANANA
AK018_02069366hypothetical proteinATGAACGCCCGCCTGATCACCACGCCATCCGCGGCCGCCGCCCTGCCGTTGAAGACCGTCGTCTACTCCCAGGACGGCACCATCGCCTGCCGCTTCGACACCACGCGCGGAGTCGTCTTCGGCGACGAACGCACCTTCCCCTGGACGATCCTCGGTTTACCCCTGCGCATCCTGTTCTGCCCGACCTGCGAGCTGCCGCCCCGCGACGTCGGCGACGATGGCGTGTGCCCGACCTGTGGGCGGAACTACTCGCTCGCCATCGTGCTCGGGAAGATCACCGAGTCGCTCAAGGAACTCGCCGACGCCGTCACCGGTGCACACGCCGCCGACCGCGACAACTACACCCTTGCGGCCGACCGTGGCTAGMNARLITTPSAAAALPLKTVVYSQDGTIACRFDTTRGVVFGDERTFPWTILGLPLRILFCPTCELPPRDVGDDGVCPTCGRNYSLAIVLGKITESLKELADAVTGAHAADRDNYTLAADRGNANANANANA
AK018_020701131hypothetical proteinGTGACCTGGCTGCGCATGACCGACACCTTCGCGACGCACCCGACGGTGCTCGCGGTGATCGAGCACCCGGACGCTGACGAGCGTTCGGTCGACGAGGTGTGCGGGTACATGACTCGTCTGGCGACGCAGGCGGCGCAGCACTTCACGGACTACGTGGTGTCGTTCGCGACTGCGATGACCCTCGCTGGGACTCGTGAGCGTGCCGAGCGGCTGCTGGTGTTGGCGAGCTTCGCCGGCTACGGCGTGCTCGAGGTGGACGACGAGACGGGCCGGCGCCGGTTCCGCTTCGTCGAGGACTCCGAGTTCATCCACATGATCACCGCGGCCGAGGACGCGTGGCAGAAGCAGCGCAAGGCCGACAACGCGAACCCGGACATCATCGCCCCGGTGCGGTGCCGTGACGGGGACGTGTGCCGGTACTGCTGGAACGTCGTGAACTTCAACGCCCGCAAGGGCAAGCTGCGCGGCACCTACGACCACCGTCCACCAGGACAGCCAGGATCGGCGGAGACCACGGTCGTCGCGTGCGGGGAGTGCAACGCCCGCCGCGGCAACCAGCCCGTCGCGGTCGCTGACCTCGACCTGCCGCTCCTGGACCCACCCGACGAGCCCTACTACCACGTGTCGACCCGCACCTGGCTGCAGGGGTACACGCAGATCCTTCGTCAGCACGGGATGGTCCCGCCGCCTTCGGCGCCGGACCAGAAGAACCTCGTCGCTGGCCGTCCCGCCCCTGGCGCGCCGGCAGCTCCTCGTGAGCGCCGCGCGACGGCACCGACGGCCAAGGGCAGTGCGCCTACACGGCAGCACGCCCCGGCAGCAGCGGACACCGCACCCGAGCGTGTGCGACCCGCAGCGCCCCCGAAGGATCGGCGAGCCATCCCAGCGCCGCGACGCGTTCCAGCAGATTCCCGCAGATCCCGGCAGAAGCGAGGTCTCCAGGATCTGGAAGCGCCGGGTCGGGACGGGACGGGCCGGGACGGGCCTCCTCTGGACGGGTCTCCACCAGATGCTCTACCGCAAGCCTCTCGACCAACCCAGCCCTCGCACGCCCAGGCTCGGTCTCGCCGCCGTCGTCGTGGACGTCGTGGGGGTGCCAGCCAGCGCTCTACCGGCAAGGAGAAGCCCTGAMTWLRMTDTFATHPTVLAVIEHPDADERSVDEVCGYMTRLATQAAQHFTDYVVSFATAMTLAGTRERAERLLVLASFAGYGVLEVDDETGRRRFRFVEDSEFIHMITAAEDAWQKQRKADNANPDIIAPVRCRDGDVCRYCWNVVNFNARKGKLRGTYDHRPPGQPGSAETTVVACGECNARRGNQPVAVADLDLPLLDPPDEPYYHVSTRTWLQGYTQILRQHGMVPPPSAPDQKNLVAGRPAPGAPAAPRERRATAPTAKGSAPTRQHAPAAADTAPERVRPAAPPKDRRAIPAPRRVPADSRRSRQKRGLQDLEAPGRDGTGRDGPPLDGSPPDALPQASRPTQPSHAQARSRRRRRGRRGGASQRSTGKEKPNANANANANA
AK018_020711032hypothetical proteinATGTCTGATGCCCGATACCCCGAGGAACCACCCGTGCTGACGTGCCGGCACTGCGGCCGCCCCGAGGACCCCGCTACCCCGGGGCTGTGCGTGAGGTGCCTGGATCGTGGCCGTCGCCTGGTGCTCGACGTCGTCGAGGACATGGCCCGGTTCCCGTACACGATGCTCGAGCTGACGGGGCTGCGCTCGCCGCGCCTGGGCGTGGGTCGCACGACGTCGTCGGACGACGACCTGCGGCTGCCGTTCGGCCTCGACGCGAAGGTCGAGGATCCGCAGGACACCCGCATCGCCGCGCTGCGCCACCCGGCGTCCGCGCTGGACGTCCTGTACGGGTGGGCGACGGCCTGGGCGGCCCTGCGCCACGACGAGTTGCCGTGGTCGTGGGAGGACTACCTGGTGGACCACACGGCCTGGGCGATGCAGCACCCGGGCACCTCGGACTGGGAGCAGTACGCCGAGGAGGCCCGCGCGGTGCGGTCGACGGTGCGGCGGCTGCTCGGGATCACGCCTGTGAAGGCGGGGCTGCCGTGTCCGGACTGTGGGGGCCGGGTGGTGCAGGAGTGGCGGCCGCGCGCCGACCGGACTCCCGGCCATGAGGGCGAACGTGCGCCGCGGCGAGGAGGAACAGACCACGAGGGCCTCGACGATGTCGTGCGGTGCACCCGCTGTCATCGGTCGTGGCCGACGACGGCGCACCTCGCGGTGGCCGGGCTGGCTGCCCTGACGGAGCTGCCCCGCACGAGACCCGAGGCGCTGCTCTCGTTCGGCCAGCTCGTGCGTGCCTTCGAAGGCCGGGCGTCGAAGCAGACCATCGCGACGTGGATCCGGCGCGGGGCACTCCGTCCGGTGCATGGTCCGTGGCCCCGATCGGAGACCCGGACGCGCCGCCGGCACGACGGTACGACCGAGCGGCTGTATCGGTTCGTCGACGTCGACCTGCTGGTCGCTTGGGGCGACGCTCACGCCGAGGACGCGGCGCGCCGCGCCGAGCTGCTGGCGCATGACGACGAGTTCGTGGCATCATCGTCGTGAMSDARYPEEPPVLTCRHCGRPEDPATPGLCVRCLDRGRRLVLDVVEDMARFPYTMLELTGLRSPRLGVGRTTSSDDDLRLPFGLDAKVEDPQDTRIAALRHPASALDVLYGWATAWAALRHDELPWSWEDYLVDHTAWAMQHPGTSDWEQYAEEARAVRSTVRRLLGITPVKAGLPCPDCGGRVVQEWRPRADRTPGHEGERAPRRGGTDHEGLDDVVRCTRCHRSWPTTAHLAVAGLAALTELPRTRPEALLSFGQLVRAFEGRASKQTIATWIRRGALRPVHGPWPRSETRTRRRHDGTTERLYRFVDVDLLVAWGDAHAEDAARRAELLAHDDEFVASSSNANANANANA
AK018_02072285hypothetical proteinGTGGAACCCGATGTCGACGCCGAAGTGATCGAGTCGGTCCGCTCCGCGATCGAGGGTAGGTTCGGCCGCTACCTCGGGACCATGATCGAGGCGAGCGAGGCAGTCGCTCTTATCGAGGAGCTGCAAGGCCGAGGCCTGGTGATCATCCCGCAGGACGAGGCCGTGCTCGAGGAAGCCGTCACCTGTGGTGGGGCGGGCGTCCGGGTCAACGTCAACGTCACGGTCGGAGCAGACGATGTGGCCGGCGTCCTCGACAGCCTCCGAGATCGTGGCTTCGCTCCGTGAMEPDVDAEVIESVRSAIEGRFGRYLGTMIEASEAVALIEELQGRGLVIIPQDEAVLEEAVTCGGAGVRVNVNVTVGADDVAGVLDSLRDRGFAPNANANANANA
AK018_02073480hypothetical proteinATGCACTACCACCGGTGGTACCGGCACGGTGACGTCGTCAAGGTCGGGCAGGGCCCGACCAAGCCGACCGCGAGCAACGGGCGCAAGTACCGCCGCGTCAGGCGTCCTGGACACCCGCTCGCCTCCACGAACGGTCAGGCATACGAGCACAGAATCGTTCTGTGGGAGCTGCGCGGCTGCGACCCGATGCCCTGTCACTACTGCGGTCGGATGCTCGTCTGGTTCCCCGAGAGCCAGTCGGACGAGGCGCTGCAGGTCGACCATCTCAACGACCATTCGGACGACAACAGGCCGGAGAACCTGGTGCCGTGTTGTGCCTCATGCAACACGGCCAAGGGTCAGGCCCGCAGGCACCGTGCGCTCGTCGATGGTGGTTGGTGGTCGCGCAATGACACGGTCGCCAAGCTCGCGACCGGCCGCCGCGACTTCGCCCTCACGGCTGCGACCTCCGGTGCCCAACCAGGAAAATTCGGACACTGAMHYHRWYRHGDVVKVGQGPTKPTASNGRKYRRVRRPGHPLASTNGQAYEHRIVLWELRGCDPMPCHYCGRMLVWFPESQSDEALQVDHLNDHSDDNRPENLVPCCASCNTAKGQARRHRALVDGGWWSRNDTVAKLATGRRDFALTAATSGAQPGKFGHNANANANANA
AK018_02074273hypothetical proteinATGCCCGTTCTGTTGGTGAGCTACGACCTGACAGCGCCCCAGCGCGACTACGACAACGTGATCAAGGCGATCAAGAGCCACAAAGGCTGGGCGCATCCGCTGGAGTCGGTGTGGCTCGTTTCGGCGGAACGAACTCCAGTGCAGCTTCGGGACGAGCTCACGGCAGTGATGGATGCGGACGACAAGATCCTTGTCGTCGACGTCACCAACGACCCAGCAGCGTGGAAGGGCCTCACTACCGACGTCAGCAACTGGATCAAGTCCAACCTCTAGMPVLLVSYDLTAPQRDYDNVIKAIKSHKGWAHPLESVWLVSAERTPVQLRDELTAVMDADDKILVVDVTNDPAAWKGLTTDVSNWIKSNLNANANANANA
AK018_02075660hypothetical proteinGTGACACGCAAGCGCACGCCGCCGCCAGCGCCGGACCATGTTCCTGACGACGTCGCTGAGGTCTGGGTCGAGGTCGTGGAGGCGAACGGCATCGTGGGTGCCGTGGACCGGGCCTCGCTGGAGGCTTACTGCACACTGACAGTGCGGCTGCGGGAGGCATCGAGGCGGGTCGCCGACGAGGGCATGATCGTGAAGTCGGGGACGAAGGAGATCCTGCATCCGGCGATCGCGTTGGAACGGCAGCTCGCAGAGCAGCTGCACGCGCTCGGTGCCCGGTTCATGCCGGTGACTGCGCCGCGCCGGCGGGCCGGCCCGATGTACGACGCGACGAAGGCGTCGTTCGCGGCCGCGGAGCACCTCAAGGACCAGGCCGTCTACACCGGTGCTCGCGAGGCCGTGCTGACGTTGGCGTGGCTGATCGACGAGGCGCAGCGAGCGGGGATCGATGCCCTGCAGCGTGCGACGTACAACCTGATCCCGTCCTACCTCAAGGCGTGCGCCGAGCTGCAGATCACGCCGGCGTCGCTTCCCGTGGCGCCGGCGGCGCGCGGGAAGGGGGCCTCTGGTGGCAACGGCGGCTCCGGCAAGGTCTCGAAGTTCTCAGACGCGGCCGCGCGCCGGCGCGAACGGGCCCGCGGGTCGTCCGCGGAAGCGGGCTAAMTRKRTPPPAPDHVPDDVAEVWVEVVEANGIVGAVDRASLEAYCTLTVRLREASRRVADEGMIVKSGTKEILHPAIALERQLAEQLHALGARFMPVTAPRRRAGPMYDATKASFAAAEHLKDQAVYTGAREAVLTLAWLIDEAQRAGIDALQRATYNLIPSYLKACAELQITPASLPVAPAARGKGASGGNGGSGKVSKFSDAAARRRERARGSSAEAGNANANANANA
AK018_020761632hypothetical proteinGTGATCGACTTCGCCGAGCAGGTCCTCGAGGTCGAGCTGGTGCCGTGGCAGGCGTGGTTCTTGGTGCACGCGCTGGAGCTGAACGACGACGGCTCGCTGAGGTTCCGCACCGTGGTGCTGCTCGTGGCTCGTCAGAACGGCAAGTCCACGATCGCGCAGGTCCTGACGATCTGGCTGCTGTGCGTGTGGGGCTGGCCCCTCGTGCTCGGCACCGCGCAGGACCTGGACGTCGCCGAGGAGATCTGGTCCGACGTCGTCGACCTGGTGCAGGAGAACGACGAGCTCGCCGGCATGGTCGAGAACGTCGTGAAGGTCAACGGCAAGAAGGCGCTCGAGCTGACGGCCAAGCGGCGGTACAAGGTCAAGGCCGCGAACCGGCGCGCCGGCCGTGGACTGTCGGGGAACCTCGTGCTCCTCGACGAACTGCGCGAGCACCAGAACTGGCAGGCGTGGGGCGCGATCACGAAGACGACACTGGCGCGGGCCGAGGCGATGATCCTGGCGCTGTCGAACGCCGGCGACATCACGTCGGTGGTGCTGCGCTACCTGCGCACGACGGCACATCGCGTACTGGGCGACCCGGACGGGATCTGCGCGGCCGCGGAGCAGACGGCGTTCGGTCCGACCGAGTTCGACATCGACGGGCTCCACCTGGACGACGTCGACGACGATGACGAGGACGACGTCGACTTCGAATACGACGACGTCGACATCGAGGACCTCGAGGCTGACGAGGACACCCTCGGCCTGTTCGAGTGGTCGGCTCCCCCGGGCTGCGACAAGCGGGACCGGGACGCCTGGGCACAGGCGAACCCCTCGATGGGGTACACCGAGCTGTCGGAGCGGAACATCGCGGCGGCGCTCAAGGAGCCCGACTACGTCTTCCGGACCGAGGTGCTGTGCCAGTGGATGGACGGCACCGAGTCTGGCCCGTTCCCGCCCGGGACATGGGAGGAGACCAGGGTCACCCCGGTCGAGGGCGACGGCGGCGAACTGACCCTCGCGGCTGCCGACCAGATCGTCGGGCCGGTGGTCGCGGCCATCGACCAGTCGGCTGACCGGTCGATGTGCTTCATCGCGTTCGCTGGGCGTCGCCCCGACGGCGCCGCACAGGTCGAGATACGTGCCGGCCGGTACGGCGTCGACTGGGTCCGTCCGTGGCTGACGGACCGCAAGCGGGTGGGCCGGATCCTGCGCGTCACCGGGCAGTCGCGCGGCGCGCCGGTGTCGACGTTGATGAAGCAGCTCAAGGACGACGTCAAGTTCACGATCCCGATCGAGGACCTGGCGGGTCCGGACCTGACAGACGCGCACGCCGAGGCGTTCGACGCGGTGAAGGACGGCGCCGTGTGGCACACGCCGCAGCCGGTGCTGGACCTTGCGGCGGAGACCGCCGTCGTGAAGTACCTAGCTGGTGGCACGTGGCTCATCGACCGTCGCGAGTCTCCCGCGGATGCGGCTCCGCTCGTGGCGTGGCTGGCCGCCCTGTGGCTCCTGAACAAGCATGTCCCTCCGCCGGCACCGGCTCCTCCGCCGCCGGTCGCGATCGAGCGTGACGGCACGTCGCTGGACGACGACTACCGCCGCCCCGACGACGGGCTGACTACTGATCTGGCCACGGCTGGCTTCTGAMIDFAEQVLEVELVPWQAWFLVHALELNDDGSLRFRTVVLLVARQNGKSTIAQVLTIWLLCVWGWPLVLGTAQDLDVAEEIWSDVVDLVQENDELAGMVENVVKVNGKKALELTAKRRYKVKAANRRAGRGLSGNLVLLDELREHQNWQAWGAITKTTLARAEAMILALSNAGDITSVVLRYLRTTAHRVLGDPDGICAAAEQTAFGPTEFDIDGLHLDDVDDDDEDDVDFEYDDVDIEDLEADEDTLGLFEWSAPPGCDKRDRDAWAQANPSMGYTELSERNIAAALKEPDYVFRTEVLCQWMDGTESGPFPPGTWEETRVTPVEGDGGELTLAAADQIVGPVVAAIDQSADRSMCFIAFAGRRPDGAAQVEIRAGRYGVDWVRPWLTDRKRVGRILRVTGQSRGAPVSTLMKQLKDDVKFTIPIEDLAGPDLTDAHAEAFDAVKDGAVWHTPQPVLDLAAETAVVKYLAGGTWLIDRRESPADAAPLVAWLAALWLLNKHVPPPAPAPPPPVAIERDGTSLDDDYRRPDDGLTTDLATAGFNANANANANA
AK018_020771305hypothetical proteinATGGCAGTCCCTACGGATGAGGCCGGCTACTCGGCGAACACCGGCAACGGCTGGTGGCAGGTGCCGGACGAGGAGCAGACGCCTGAGCTGAGGTGGCCGGCGAACATCGAGGTGTACGACCGGATGCGTCGCCAGGACGCGCAGGTCATCTCCGTGCTGCGGGCGGTCACGCTGCCGGTGCGGCGCACCACGTGGTGGGTCGACCCGAACGGTGCCCGCCCCGAGGTCGTCGAGTTCATCGCGGACAACCTCGGTCTGCCGGTCAAGGGGCAGGAGCCGAAGCCCGTGCTGCGTACACGGGACCGCTTCTCCTGGTCGGAGCACCTGCGCCTGGCGCTGCTCATGCTCGTGTTCGGGCACTCGCCGTTCGAGCAGGTCTACCGGATCGACGAGACCGGTCTGGCGCGACTGCGCAAGCTCGCGTGGCGGCCGCCGCGCACGATCTCGAAGGTGGAGGTCGCTGCCGACGGCGGCCTGGTCGCCGTCGAGCAGATGTCCACCGCGGCGGGCACCCCGGCGCGGATGGGCGTCGACCGGCTCGTGGTCTACGTCAACGACCGCGAGGGCGGTAACTGGCTCGGCCAGTCCCTGCTGCGGCCCGCCTACAAGTTCTGGCTCCTCAAGGACCGGATCCTGCGGGTGCAGGCCCAGACGGTCGACCGCAACGGCATGGGCGTGCCCGTGTACACAGCGTCGGAGGTGCCCAAGGAGCTCGCCAGCGCCGACGCGAAGGACTACACCCGACGCCAAGAGGAGGAGCTGAAGCGCGGGCAGGAGATCGCCCGCGGATTCCGCTCCGGGAACACCGCCGGCGCGTCCGTCCCGAACGGTGCGCAGCTCGAGCTCCTCGGCGTCCAGGGCACGCTGCCTGACGCCGACAAGCCGATCCGCTACTACGACGAGCAGATCGCCCGCGCGGTCCTCGCGCACTTCCTCAACCTCGGCACGGAGACCGGCTCGTGGGCGCTCGGATCGACGTTCGCGGACTTCTTCACGCTGTCGCTGCAGACCGTCGCCAACGACATCGCCGACGTGGCCACCCAGCACATCGTCGAGGACCTGGTCGACATCAACTTCGGCGAGTCCGAGCCCGCACCGCGGGTCACGTTCGACGAGATCGGCTCCCGGTCGCCCGCGACAGCCCAGGCGATCAAGGCGCTCGTCGACTGCGGGGCCATCACCGCTGATGCCGCGCTCGAGGCCGAGCTGCGGCAGAAGCACGGACTGCCTGCCGCCGATCCCAGCACGGCCCGCGAACGGCCCAAGACCACGCCGAGCACGGACTCGGAGACGGAGGAGTCATGAMAVPTDEAGYSANTGNGWWQVPDEEQTPELRWPANIEVYDRMRRQDAQVISVLRAVTLPVRRTTWWVDPNGARPEVVEFIADNLGLPVKGQEPKPVLRTRDRFSWSEHLRLALLMLVFGHSPFEQVYRIDETGLARLRKLAWRPPRTISKVEVAADGGLVAVEQMSTAAGTPARMGVDRLVVYVNDREGGNWLGQSLLRPAYKFWLLKDRILRVQAQTVDRNGMGVPVYTASEVPKELASADAKDYTRRQEEELKRGQEIARGFRSGNTAGASVPNGAQLELLGVQGTLPDADKPIRYYDEQIARAVLAHFLNLGTETGSWALGSTFADFFTLSLQTVANDIADVATQHIVEDLVDINFGESEPAPRVTFDEIGSRSPATAQAIKALVDCGAITADAALEAELRQKHGLPAADPSTARERPKTTPSTDSETEESNANANANANA
AK018_020781305clpP_2ATP-dependent Clp protease proteolytic subunitATGACCCAGAGCCTCGAGGAGATGCTCCGCGACCCGGACCGGGACCGCTGGTACCGGATGGAGGCCAACGACACCGAGCGCACCGCCGAGGTCATCCTGTACGGCGCGATCGGTGGCTGGTTCGGCGTGCAGGCGATCGACTTCGTGCGCGAGCTCGCCGACCTCGACGTCGACCGCATCGACCTGCGGGTGAACTCCCCCGGCGGCCTGGTGTACGACGGCCTGGCCATCATGAACGCGCTGCGCCGGCACGAGGCCCGCGTGGTGGCCACCGTCGACGGACTCGCGGCCAGCGCGGCGTCGTTCCTGATCCAGGCGGCCGACGAGGTCGTAATGGGGCGCGGCTCCGAGCTGATGATCCACGACGCGTGGAGCATCGCGCTCGGCTCGGCCGAGGACCTGCACAAGGAGGCCGACCACCTGGACAAGCTGTCGCAGTCCATGGCGGGCATCTACGCCGAGCGTGCGGGCGGCACCGCCGACGAGTGGCGCGAGGCGATGCTCGCCGAGACCTGGTACTCCGCCGAGGAGGCCGTCGCCGCCGGTCTCGCCGACCGCACCGAGGCTGGCAGTACCGGCGACGACGACGCGGACGACGAAGCCGCTGCCCTGTTCCTCGTGGAGTCCTTCGCGCACGCGGGCCGATCCGACGCCCCGGCACCACACATCCCCGCGGCCGCGCACCGGCGCTCGCACGGGGGCCTGTCCCTGGTCAACGGTTCCCCGCTGCGCACCGCGCTCCACGTCGCCGCACAGGCGACCCACCGACCCCCGGCCGAGCCGGAGGACATCACCCACCCCGAGAAGAAGGAGGCCTCCGACATGTCGGAGAAGCTCATCCAGGGGCTCCGTGAGCGGCTCGGCATCACCGCCGAACTCGACGACGACGGCCTGCTGGCCGCCGTCGACGAGGCGCTCGCGGAGCAGGCCGACACCCCCACCGGCCAGACCGCGACGACCGCTCCGCCCGAGGGCACCGTCCTGGTGGACGCCGACCAGTTCGCCGCTCTGCAGGCGGACGCCGCGGCGGGCCGCGAGGCGCGTGACGCGCAGATCGCGGCGGACCGCACGGCCACCGTGGCGGCGGCCGTCGCCGACGGTCGCATCGCACCCGCGCGGCGCGAGCACTGGGAGGCACAGCTCGCGGCCGACCCGGGCGCCGCCGAGGTCCTCGCCGGTCTGGCGAAGGGCACCATCCCCGTCACCGCGGCCGGGTTCACCGGCGGCGTCGACGAGGCCACCGACGAGGACGGCGAGCTGTACTCCAAGTTCTGGCCGTCCACCGACGCCACGAAGGAGGCGTGAMTQSLEEMLRDPDRDRWYRMEANDTERTAEVILYGAIGGWFGVQAIDFVRELADLDVDRIDLRVNSPGGLVYDGLAIMNALRRHEARVVATVDGLAASAASFLIQAADEVVMGRGSELMIHDAWSIALGSAEDLHKEADHLDKLSQSMAGIYAERAGGTADEWREAMLAETWYSAEEAVAAGLADRTEAGSTGDDDADDEAAALFLVESFAHAGRSDAPAPHIPAAAHRRSHGGLSLVNGSPLRTALHVAAQATHRPPAEPEDITHPEKKEASDMSEKLIQGLRERLGITAELDDDGLLAAVDEALAEQADTPTGQTATTAPPEGTVLVDADQFAALQADAAAGREARDAQIAADRTATVAAAVADGRIAPARREHWEAQLAADPGAAEVLAGLAKGTIPVTAAGFTGGVDEATDEDGELYSKFWPSTDATKEANANANANANA
AK018_02079351hypothetical proteinATGGGCGACTACGTGCCCCTGTTCGAGGGCGACGCGCGCACCTACACCGCGGACGCCGACGTCACGGGCGGCCAGCTCGTGATCATCACCGGCGACCGTGCGGTCTCCCCGGCGACCGCGGACTCCACGGCCGTCGTCGGTGTGGCCGCGTTCGACGCGAAGGACGGCGAGAAGGTCACCGTGCAGTCGCGCGGTGTCCAGCGCGTCGTCGCGTCCGGCGCGATCGCGGCTGGCGCGCAGGTCGCCTCGGCCGCGGCCGGAACGGTCTCCGCGACCGGCTCCAACAAGATCGGTCTCGCGCTCGCCGCTGCGGCGGACGGCGACGAGGCCCTGATCCGTCTCGACGCCTGAMGDYVPLFEGDARTYTADADVTGGQLVIITGDRAVSPATADSTAVVGVAAFDAKDGEKVTVQSRGVQRVVASGAIAAGAQVASAAAGTVSATGSNKIGLALAAAADGDEALIRLDANANANANANA
AK018_02080918hypothetical proteinATGAGCTACACCTATCCCGGGACTCCGGTCCAGGTGGACGCCAGCCTCACGGCGACGCAGGTCCACCACCTCATGAAGTCGCCGGCGCTCCTGGCCCGGCGGGTCCGTGAGATCGCGGCGCAGAAGTTCATCTCGGACTTCCTGCTCAAGGGCCGCTTCGTCGCCGTCGGTGGCGCGGTCCTGTACGAGACGGGCGAGCCGATCTTCCCCGACGACGACCCCGAGGGCGTCTCCCCGGGTGCCGACTTTCCGCTGGGCCGCATGTCGGCCGGCGAGATCGCCGCGGCGAAGACCACGAAGTGGGGCCGGGACTACCCGGTGACCGACGAGACGATCTCCCGTCTGCTCAAGAACCCGGTCGACAAGGCGCTCAACAAGGGCGTCAACGGCATGATCCGGCACGTCGACGGGATCTCCCTGGGCGTCATCGCCTCGAAGGTGACCGGGACGTACTCCGGCAGCGCGTGGGCCGACGCCGACCAGATCATCGAGGACGTGCTCACCGCGAAGGCCCAGCACGAGGAGGACAACGTCGGCGAGGGCTACGACCTCGACGCCGTCGTGCTCAAGCCGACGCAGTACGCCAAGGTCATGGCGCGGCTGCTCTCCTCGGGGCTGCTGCCGCGCGAGGCGGCGAACCCGATCAACAACGGCGAGTTCCCCGAGTACCTCGGGGTCACGTGGACGACGTCCTCGCACGTGCCGTTCAGCGACCCGTTCCTGGTCGACACCGACCAGCTCGGCGGCATGGCCGACGAGAAGATCGAGTCGCCCGGGTACTCCTCCGCTGGCGGCATCGACGTCAAGTCGATCCGCGACGAGAAGAAGGAGAAGTACGACGTGCGGGTCCGTCGTGTCACCGTGCCCGTCGTGCTCGAGCCGAACGCGGGCGTGCGCATTACCGGGACGGGGGTCTGAMSYTYPGTPVQVDASLTATQVHHLMKSPALLARRVREIAAQKFISDFLLKGRFVAVGGAVLYETGEPIFPDDDPEGVSPGADFPLGRMSAGEIAAAKTTKWGRDYPVTDETISRLLKNPVDKALNKGVNGMIRHVDGISLGVIASKVTGTYSGSAWADADQIIEDVLTAKAQHEEDNVGEGYDLDAVVLKPTQYAKVMARLLSSGLLPREAANPINNGEFPEYLGVTWTTSSHVPFSDPFLVDTDQLGGMADEKIESPGYSSAGGIDVKSIRDEKKEKYDVRVRRVTVPVVLEPNAGVRITGTGVNANANANANA
AK018_02081345hypothetical proteinGTGGCGACGAAGACACGCAAGTTCCACCGGGTGAAGGCCGGAGCCGTCGTCGTGACGGTCGACGGCGCGGAGCGGTACCTGTACCGCGGCGACCGTGTCCCGGGCGCCGTCGAGTCGGCGAGGGTCAAGGAGCTCACCGCGCTCGGTCTCGTGGAGGCCGCCGAGGTGCAGGTCGAGGACGCCGGCGACGACACCCCGACGAAGCCGGCGGGCAACGCCGGGTTCGACAAGCAGTACGCGTGGGCGCAGCACCTCGGCCTGGAGGTTCCGGCCGAGGTCGTCGACGGCAAGGACAAGGACGCCGTGAAGGCGCTCATCGAGGCCCACGAGGCCGAGGCCAAGTGAMATKTRKFHRVKAGAVVVTVDGAERYLYRGDRVPGAVESARVKELTALGLVEAAEVQVEDAGDDTPTKPAGNAGFDKQYAWAQHLGLEVPAEVVDGKDKDAVKALIEAHEAEAKNANANANANA
AK018_02082453hypothetical proteinGTGTCTGAGGAGACCCCGCCGTCCGGCGGCGACTTCGCTGCGACGGCGGACATCGTCAACTCGTGGCGCCCCCTGAACGCCGAGGAGACGACCCGAGCCGGTTACTGGCTCGAGGTCGCCTCCCGGCGTGTACGCCGCCGCTGGCCCGACGTCGACGCCCGCATCGGGTCGGGCGGCGACCTCGACGCCAAGGACGTCCGCGACGTCGTCGTGGCGCTGGTCGTCGAGGTCCTCGGCGGCCCACCCGTGCCGAATGCCCGGTCGTGGCAGGTCGCCTCTGGCGCGGAGTCCCGCTCCGTCACGCTCGGCACCGCAGCCCCGAACGACCCAAACGTGTGGGCGTCGTGGATGGTCGAGCTCTTCGAGGGCCGTGTCGTCGCGGCGCAGCCCACGGGGTCGTTCCCGGCCCCAGCCCCGTTCGACTCCCTCTTCGAGTGGAAGGAGGGCCCGTGAMSEETPPSGGDFAATADIVNSWRPLNAEETTRAGYWLEVASRRVRRRWPDVDARIGSGGDLDAKDVRDVVVALVVEVLGGPPVPNARSWQVASGAESRSVTLGTAAPNDPNVWASWMVELFEGRVVAAQPTGSFPAPAPFDSLFEWKEGPNANANANANA
AK018_02083258hypothetical proteinATGGCCCGCACCAGCAACCCCGAGACCCCCGACCAGACGCCGGCCACCGAGCAGACCGCCGACCCGGCCACGGCGCCCGACGTCCAGGCCGAGCCCGGCCGGACCCCGGCCGTGTCCGCGCCGTCGCCGTCGCCGCGTTCGAAGCGGCGGGTGATCGCGCCGAAGCCGCGCGTCGAGGGCGACGTCGTGCTGTACGCCGGCACGCGGTACCCGATGGCCGACGCCGTCGAGCTCGGTCTCGTCCCGCCGCGCTCGTGAMARTSNPETPDQTPATEQTADPATAPDVQAEPGRTPAVSAPSPSPRSKRRVIAPKPRVEGDVVLYAGTRYPMADAVELGLVPPRSNANANANANA
AK018_02084351hypothetical proteinGTGAGCTTCTGGGGCTTCGGGACGCCGCTGCACGGCGAGCCCCTGACCTTCGTCGTGGTGACGGACGGGCGCCCGGTCGACGGCATCCCGCAGCGCACCGAGACCGAAACCGACGTCGCCGGCTGGCACGTGGAGCCGATCGGCACCACGGAGCAGGTGCTCGTCTCAGCGACCGTGACGGCACGATGGCGCGCTTCGGGCCCGTTGACGCGGATCGCACGGTCCTCAGGAAAGGTGCGGCGCGCGAACGGCGACGTCCTGCAGATCGAGGGCGAGCCGCAGCACTTCGACTCCGGTGGCCCCTTGGACCACACCGAGCTCGTGCTGATCCGCTGGGGCGGAGGGAGCTGAMSFWGFGTPLHGEPLTFVVVTDGRPVDGIPQRTETETDVAGWHVEPIGTTEQVLVSATVTARWRASGPLTRIARSSGKVRRANGDVLQIEGEPQHFDSGGPLDHTELVLIRWGGGSNANANANANA
AK018_02085312hypothetical proteinGTGCCGAAGACGACGATCACGCCGGACTTCATCGAGCAGGTGATGAACGCGCCCCCGGTCCGCGCCGGCCTCGAGGCCAAGGGACGCCGCATGCTCCCCCGCGCCCAGCGGGTCGCGGCTGCCGCGGGCGCCGTCGAGTTCTCGCGGGCCATGCGCCTGGAGCGCGGCCGGCGACCGGGCGCCAAGGCGGCCAGCGGTGTCCGCCGCCCCTACGTCCGTGTCACCGCGGACATGACCGACGAGATGAAGGCGCGCGACACCCGTTCCCGGCTGACCCGCCGGCAGATCCTGTGGCGGGCCTCGCGCGCCTGAMPKTTITPDFIEQVMNAPPVRAGLEAKGRRMLPRAQRVAAAAGAVEFSRAMRLERGRRPGAKAASGVRRPYVRVTADMTDEMKARDTRSRLTRRQILWRASRANANANANANA
AK018_02086465hypothetical proteinATGCCAGGCTTCGTCCTCCTCGCCGAACCCAGCAGCCTGCCAGCCCCTGGCACTCCTGGTTCCTGGCCCGACGTCGAACGTCTCGTCGCGCGCTGGTTGACCGCCATGGTCGGCCTGTCGACCTACGGCGTCGACAACGAGCTCGACGTGTACCGAGGCGGCGAGGTTGGGGACGGCGAGCAAGGCAAGGTCCCCTTCATCACGGTCGAGCGCACCGGCGGTGTCGGGCGCGCGATCGACAAGGACGTCGACGTCGAGGTCGGCGTCTGGACGGCCGACCGCACCTCGCTGTGGCCGCTGGTGCAGCGCACCGTGTCCGCGATGGAGGCGCTCGCGGCCTCGGGCCAGGACGTCTACGTCGACGACGTCGTCGAGACGTTCGGGTTCGCCTACGACCCGCCACCCAACCAGTCCGTCCGTCGCGCGATCGCGACGTACACCCTGACCGTCCGGCCCCTGGCCTGAMPGFVLLAEPSSLPAPGTPGSWPDVERLVARWLTAMVGLSTYGVDNELDVYRGGEVGDGEQGKVPFITVERTGGVGRAIDKDVDVEVGVWTADRTSLWPLVQRTVSAMEALAASGQDVYVDDVVETFGFAYDPPPNQSVRRAIATYTLTVRPLANANANANANA
AK018_02087636hypothetical proteinATGGCCGGCCAGTCCGTCTCTTCCCAGCTCCTCACGCGCAACGACCAGGTGCGCAAGTGGGGTACCCAGCTCCTCGCCGTCGCCGATGGTGACGCCACGGTGCCGTCGGCGTTCTTCGACGTCGAGGACAACCTTCCGATCGCGCTGCCCGCCGAGTTCAAGCAGCTCGGGTTCATCACGACCGATGGTGCGACGGCCGCGAAGTCGGTCTCCCGGGAGGGCACCCAGATGGTGCAGTCCCTGGAGAACGTCCGCGACGACCTGACCGGCATCGAGCAGACGCTCGCGGTCACGTTCGGGCAGTCGTCCTCGGCGTGGGTCAACGCCCTGATCCACGGCAAGCTGCCCTCGGAGTTCGGCGCGGAGCCCCACGCCCCGTGGATCTTCCACGACGGCGAGCTGACGGACTACCCGTACCTGCGGGTGTTCTGGATCGGTCAGGACGGCGTCGGCCCGCAGGCGTTCTACCGCGTCGAGTTCGCCTACTGGGCGAAGGTCATCACGGTCAACGACCGCCAGCTCAACCGCACCAACGCCGAAGGCCTCGGCGTGACGTTCGGCCTGTTCAAGGACGTGGCCACCGGCCGCACGCTCACCCGCACCGAGAACGGCCCCGGCTTCGGCGTCACGCCGTAAMAGQSVSSQLLTRNDQVRKWGTQLLAVADGDATVPSAFFDVEDNLPIALPAEFKQLGFITTDGATAAKSVSREGTQMVQSLENVRDDLTGIEQTLAVTFGQSSSAWVNALIHGKLPSEFGAEPHAPWIFHDGELTDYPYLRVFWIGQDGVGPQAFYRVEFAYWAKVITVNDRQLNRTNAEGLGVTFGLFKDVATGRTLTRTENGPGFGVTPNANANANANA
AK018_02088372hypothetical proteinATGGCCAAGACCAAGCAGCGCCGCGCCCCGGTACGCATGGACCGGTTCAAGAAGCAGTTCGCGGACGAGGTGATCAGCGAGGGCTCGTTCGAGCAGATCGAGATCGGCGACGGCGAGTACGTCTGGATCAAGCTGCCGATCATGCTCGACGAGGACGACGACTACCAGGACAAGATCACCGAGGCGGGCAAGTCCGACGAGGACGACGCCGTGCCCCTGGTGGTCCTCGGCCAGCACCCCGACCACGACGCCCACGAGCAGTGGGCCGCATGGCAGGCCGCGGGCTACGACTCGACGGACCTCGCCGCGATCGTTCGCGTCCAGACCCAGGCAGCCCAGGAGCGCCTCAACGATTTCCGCTACGGGGGCTGAMAKTKQRRAPVRMDRFKKQFADEVISEGSFEQIEIGDGEYVWIKLPIMLDEDDDYQDKITEAGKSDEDDAVPLVVLGQHPDHDAHEQWAAWQAAGYDSTDLAAIVRVQTQAAQERLNDFRYGGNANANANANA
AK018_02089378hypothetical proteinATGCAGACGTACAGCCCCCGTGACCCGGTGCGCGAGTACATCGCCGGGAAGCTGCCCCACGCGGACCTGCGTCTCATGGTCGAGACTCTCGGTCCGGAGACCCCGTGGGCGCGGGAGCGCAACGGGCCGTTCACGCAGACGCACCGTCTTCTGCACTCGATCGACACCCAGCTGCGCTACCTGCGCGCCGACCTGCGAGCGATCGTGACCCGCCAGGCCGTCGAGCCGGAGCTCTTCCCCACCCCGGACCTCACAGCCCGCCAGCAGGCGGACCTCGACGCCCAGGCAGCCGAGGAGCGGGTCGTCCAGGAAGACCTCCTGCGCGTCATGAACGACCCCGGACGCAGGGCGCGACAGGGCACCACAACCGAACAGTGAMQTYSPRDPVREYIAGKLPHADLRLMVETLGPETPWARERNGPFTQTHRLLHSIDTQLRYLRADLRAIVTRQAVEPELFPTPDLTARQQADLDAQAAEERVVQEDLLRVMNDPGRRARQGTTTEQNANANANANA
AK018_020903681hypothetical proteinATGGCCGGTGACGTCGTCTGGATGGACGTCCTGCCGTCCATGGGGGGCTTCGCTCGCAACCTCATCACCGGCACCACGAAGGCCGCCTCCGACGCCGGCAAGCAGTCCGGGCACGCGTGGTCCGGTGCGTTCGCCGGCGCGGCGGGCGACGCCGGTACCCAGGCCGTCGTCGACGAGCTCGAGACCGCGAAGAAGCGCACCGAGAAGGTCGTCGGCGAGCAGACCCAGGCGATCGCCAAAGCCCGCGCCGCCCAGGGCGACGCCGCCGCGAAGGTCGTCCTGGCCGAGCAGGCGCTCGCCGACGCCCGCGCGAAGAACGGTGACGGCTCGGCCAAGGCGGAGGCCGCCGAGCTGCGACTCAAGGCCGCACGCGATCGCCTGGAGGCCGCCTCCACGAAGACGACAGCTGTCGAAGACCAGCTCGTCGCGGCCAAGCGGGAGCACCGCGAGGTTACCCAGCAGCTCGAGACAGCAACCGAGCAGCTCTCGGCCGAGGCGGAGCAGCAGACCACCGCCTGGGGGTCGGTCAAGACCTCGCTCGGCAACGCCAAGCGCAGCTTCGACGACGCCACCGGTGGGCTCGGTGGGCTGATCGCTCAGGCCGCTCTCGCCGTCGGCGCGGCACAGGTCCTCGGCGACGCCTGGTCCCAGGCTCTCGACCTGGAGGTCGGCACCGACAAGGTCGCCGCCTCCCTGGATCTGACGGCATCGCAGTCCGAGGCGGCCGGCGCCGTCGCCGGTTCGCTGTACTCCGAGGCCTACGGCGACTCCCTCGGCGAGGTGTCCTCGGCCGTGGGCTCGGTGATGTCGTCGATCTCGGGCATGCGGGACGCCTCCCAGGCAGACCTCGAGGCCGTCACCGCGAACGCCCTGGACTTCGCCAAGGCGTTCGACGTCGACGTCTCCGAGGCCGCACGCAACGCCGGCATCCTCATCGAGACCGGTCTGGCCACGGACGCCACCCACGCCTTCGACCTGATGACGGCGTCCCTGCAGCGGGTGCCTGAGGCGCTGCGCGGCGAGGTCACCGACGCCACCCAGGAGTACTCGCAGTACTTCGCGACGCTCGGCCTGTCGGGCGAGCAGGCCATGGGCCTCCTCGTCGACGCGTCCGCCAACGGCCAGTACGCGATCGACAAGACCGGCGACGCGCTCAAGGAGCTGACGATCCGGTCGTCCGACATGTCGAAGGCGTCGGTCGATGCCTACGAGGCCGCGGGCCTGTCCGCCGAGGACATGGCTGCCCGCTTCCTGGCGGGCGGCGACGACGCCTCCAGTGCGCTGTCGGACCTGGTCTCGGGCCTGCAGGGCATCAAGGACCCGACCGACCGGGCCAACGCCGCCATCGCGCTGTTCGGCACCCCGCTCGAGGACATCGGAACGGACAAGATCCCCCAGTTCCTCGACTCCCTGTCTGGCGTCGGCGGCGGACTCGGCGACGTCTCGGGCAAGGCCTCCGACATGGGCGACACCCTCAACGGCAACGTCGCCACCGGCCTGGAGTCCCTCAAGCGCGGCTTCATGGACGTCGTCTCCGACGGTCTCGAACCGTTGCTCGGACCGGCCAGCGCCGCCCTCGCCTGGATGCAGGAGAACCCTGCCGCGCTGCAGGTGTTCGCCGTCGGGCTCGGGGCGCTCGCGGCCGCGTGGGGCGTCTACACGGTCGCGCTGTGGGCGGCGAACTCCGCGATGCTCGCCTCCCCCGTCACGTGGATCGTCGCCGGGATCGTGGCCGTGGGTGCCGCGGTCTGGGCTGCGGTCGCCAACTGGGACGCGGTGGTGGCGTGGATCAAGGACATCTGGGAGCCGGTCGGGGCCTGGTTCGCGGGTGTCTGGGAGGGCTTCCTCGGCGCCGTCGAGCCGGTGATCTCGTGGTTCCAGGAAACCGTCGCGCCGGTGTTCGCGGCGGTGTGGGACGGCATCAAGACGGCGGCGAGGATCGCCTGGGACGTCGTGCGGGTCATCTTCGTGACCTGGCTGACGGCGTGGACGCTGCTCGCGCAGGGATTCATGAAGGTCTGGGACGTGCTGTTCGCTCCCGTCTGGGAGGCGGTCAAGCGCGGCTTCCGCGCCGGGTGGGCCTGGGTGGACCGGTGGGTCTTCACTCCGATGAAGGCCGGGTGGCGGCTGCTGGCCGACGGCTTCGCGTCGGTGTGGTCCAACGTCCTGTCGCCCACGTGGGAGGGGATCAAGTCCGGCTTCCGCGCCGCGTGGAAGTGGGTCAACCAGTGGGTCTTCGCCCCGATGAAGGCGGGCTGGGACGCTGTCGGTGAGGGGTTCGGCTGGGTCAAGGACAACCTGATCGACCCGGCGTGGTCCGGTGTGAAGACGGTCCTGAAATCCGGCTGGGACTGGATCAGTGACAAGGTGTTCGGCCCGATCAAGACGGGTGTCGACGCCGTCGGTCAGGCCTTCAGGGACACGAAGGACCTGATCTCGCGGGCCTGGGACAAGGTGAAGGAAGCGGCGGCGAAGCCGGTGAACTTCATCATCGAGACCGTCTACACCAACGGCATCAAGAAGACGTGGGACTCGATCGCGGACAAGGTCGGGCTCGACCTCAAGCTCCCTACGATCAGCCCGTTGCGGTTCGCCGCCGGCGGCGTCCTGCCGGGGTACACCCCCGGCCGGGACGTGCACTCGTTCTACTCGCCCACGGGCGGACGCCTGGAGCTCTCGGGCGGCGAGGCGATCATGCGCCCGGAGTGGACGCGGGCTGTCGGCGGCCCGGACGCGGTCGCTCGGATGAACGCTGCGGCGAGCACGGGGCAGGCGTTCGCCGGCGGCGGAGTCTGGGGCAACATCACCGGCTGGGCGGGCGACGTGTGGGACTCCGCCGTCAGCGGGGCGAAGCGCGCGTGGGACTGGGCGGGCGATGCCGCGGCCGCCGTGGGCCGGTTCCTCAAGGATCCGGTCGGCGCGATGATGGACCTGGTCACCCGGCCGGTCAACGCCCTGCTCGAGAAGATCGGTGCGGGCAAGGTCGGTGAGCTCGTCGCCGAGCTGCCTCGCATGGCGGTCGACGGCCTGATCGACACCGTCAAGGGCCTGGTCACGACGAAGAACGAGCAGGCTGGCACCGACCCGCTCGGCGCCGGGGGCACCACGGGGATGAGCAGCGCCGCCATCGGAGCGATGGTGCGCCAGCTGGACCCGACGGCGGTCATGACGTCGGGCTACCGGCCCGGGGCGATCACGGCCACCGGTGTCCCGTCGTTCCACGGGATGCCTCCTGCGGGCCGGGCCGCCGACTTCGTCTCGCCGAACATGGGCCGCACGTTCGACATCCTGCGCGCTGCGGTGGGCATGACGGCCAAGGAGCTCTTCTACTCGGGTCGGGCGTTCCTTCGCAACGGAGTCGCGGGTCCGATGCGGGACGACCACTGGGACCACGTCCACCTGGCGATGGCGAGCGGTGGCGTCCTGCCGTCGTTCCCGGAGCCGGTCGACTACGCGTTCATGGACTCCGGGGGCTGGATCGAGCCGGGATTCACGGTCGTGGAGAACCGCACCGGCCGGCGCGAGCTCGTGCTCAACCCGGACCAGATCGACGCGACGTTCGGCGGCGGCCGACCGAACGTCAACCGGAGCTGGACCTTCCACAACTACGAACGGCCGGTGACCCCGGCTGTCGTGGTGCAGGCCGAGCGCGAGCTCGAGCTGCACGACCCGAACAGGTGAMAGDVVWMDVLPSMGGFARNLITGTTKAASDAGKQSGHAWSGAFAGAAGDAGTQAVVDELETAKKRTEKVVGEQTQAIAKARAAQGDAAAKVVLAEQALADARAKNGDGSAKAEAAELRLKAARDRLEAASTKTTAVEDQLVAAKREHREVTQQLETATEQLSAEAEQQTTAWGSVKTSLGNAKRSFDDATGGLGGLIAQAALAVGAAQVLGDAWSQALDLEVGTDKVAASLDLTASQSEAAGAVAGSLYSEAYGDSLGEVSSAVGSVMSSISGMRDASQADLEAVTANALDFAKAFDVDVSEAARNAGILIETGLATDATHAFDLMTASLQRVPEALRGEVTDATQEYSQYFATLGLSGEQAMGLLVDASANGQYAIDKTGDALKELTIRSSDMSKASVDAYEAAGLSAEDMAARFLAGGDDASSALSDLVSGLQGIKDPTDRANAAIALFGTPLEDIGTDKIPQFLDSLSGVGGGLGDVSGKASDMGDTLNGNVATGLESLKRGFMDVVSDGLEPLLGPASAALAWMQENPAALQVFAVGLGALAAAWGVYTVALWAANSAMLASPVTWIVAGIVAVGAAVWAAVANWDAVVAWIKDIWEPVGAWFAGVWEGFLGAVEPVISWFQETVAPVFAAVWDGIKTAARIAWDVVRVIFVTWLTAWTLLAQGFMKVWDVLFAPVWEAVKRGFRAGWAWVDRWVFTPMKAGWRLLADGFASVWSNVLSPTWEGIKSGFRAAWKWVNQWVFAPMKAGWDAVGEGFGWVKDNLIDPAWSGVKTVLKSGWDWISDKVFGPIKTGVDAVGQAFRDTKDLISRAWDKVKEAAAKPVNFIIETVYTNGIKKTWDSIADKVGLDLKLPTISPLRFAAGGVLPGYTPGRDVHSFYSPTGGRLELSGGEAIMRPEWTRAVGGPDAVARMNAAASTGQAFAGGGVWGNITGWAGDVWDSAVSGAKRAWDWAGDAAAAVGRFLKDPVGAMMDLVTRPVNALLEKIGAGKVGELVAELPRMAVDGLIDTVKGLVTTKNEQAGTDPLGAGGTTGMSSAAIGAMVRQLDPTAVMTSGYRPGAITATGVPSFHGMPPAGRAADFVSPNMGRTFDILRAAVGMTAKELFYSGRAFLRNGVAGPMRDDHWDHVHLAMASGGVLPSFPEPVDYAFMDSGGWIEPGFTVVENRTGRRELVLNPDQIDATFGGGRPNVNRSWTFHNYERPVTPAVVVQAERELELHDPNRNANANANANA
AK018_02091966hypothetical proteinGTGCAGTCGATCATCCTGCTGTCCGTCCAAACGCTGCCACCCGAGGAGCGCCCGCAGCACTTCGGGTGGCAGCTGTGGCTGGAGTCGATGGACGGACAGGTCGTCGTCCCGCTGACGCACTCCTCGTCGCTGGGGCAGGTGCTGCTGCAGGGAGGCTTCCAGGGTCTGGGTGTGCCGCCGGTCGATCTCGCGCTCGGCGGCACACCAGGTGTGTCGGGTGGACGTATCGAGGACGTGCAGGAGCTCACCCGCTATCCGGTGCTGCCCTTGAAGGTGTGGGGCCGCACCGACGCCGAGAAGCGTGCGCAGGTCCAGGTCCTGCGCGACCTGACCGACCCGACGGTCGACATGACTCCGCTGGGGAACTTCAAGCTCTGCTCGTCAACGCCGTCGGGGCAGCGCGAGCTGACGGTCGCCTACGTCTCCGGGCTCGAGGGCGATGACCACGGTCAGGCGTACTCGGACCGGATCGTGCTGAAGCTGCTGGCCGCCGACCCCATCGCGCGGGACCGGGACGAGCGGACACTGACGTTCCCCCTCATGTCCGGCACGCCGTTCCTCGCCGCGGCCGCGGGATCCAGCCTGCCGTGGGGTACGCGACAGCTCGCCTCGACCACGGTGATCGGGGAGAACATGCCGGTGGCGATGCCGTCCGCGACACCGGTGTGGCCGACGATCTCGCTGCGCGGCCCGGCTCCGGACGGGGCCCGCATCACTGCGGGCTCCGGCCTCGACGTCGTGATCGACGGCGCGATCCCCGCCGGCCAGACGCTGCGCCTGGTGACGGACCCGCGCGCCCGTTCGGCGCGTCTGGACGGGGCTCTCGCGTTCGGGATGGTCGGCCGGGAGTCGCTGTTCCGGCCGTTCGTGAAGGGCACGAACCTCCTGGACGTGACGGTCTCGGGGGCGACGTCGCAGACGCTGCTGACGATCGGGTGGCGTGGCGGGTACAGGAGCCTGTTTTGAMQSIILLSVQTLPPEERPQHFGWQLWLESMDGQVVVPLTHSSSLGQVLLQGGFQGLGVPPVDLALGGTPGVSGGRIEDVQELTRYPVLPLKVWGRTDAEKRAQVQVLRDLTDPTVDMTPLGNFKLCSSTPSGQRELTVAYVSGLEGDDHGQAYSDRIVLKLLAADPIARDRDERTLTFPLMSGTPFLAAAAGSSLPWGTRQLASTTVIGENMPVAMPSATPVWPTISLRGPAPDGARITAGSGLDVVIDGAIPAGQTLRLVTDPRARSARLDGALAFGMVGRESLFRPFVKGTNLLDVTVSGATSQTLLTIGWRGGYRSLFNANANANANA
AK018_020921191hypothetical proteinATGATCTCGCCTCGCGACGACGACCTCGGCCGGACCTTGGACCCGGTTGCCGGATGGACGGATCTGACCCTGGTGGAGCGGAACAACACTCCCGGGACGTGGACGCTCTCCGGGCCTGCGGCCGCGCTCGACAGCTTCGAGCCGGGCATGGGCTGCATTCTGGACCGGGACGGCGAGCAGATCGAGTCCGGAGTCCTGCGGTCCTACGACCGTGACGGCGCCGTCGACATGGACACCGGCCGGGTGACGGACACCATCACCCTGGGGTTCGTCGGCGACGACGACGTGTTCGGTGGTCGCCTGGCCTGGCAGGACCCGACCAAGGCGCTCGCCTCGACGCTGTCGAAGTTCGCGGCCGAGCACGACGTGCGCACGGGTACCCGCGAGACTCTGATCCTGGAGTACCTCGCGGCGAACGTGGGGCCGGCCGCGCCGCGGCCGAACCGTCGTGTCGCGGACCTGGTGCTGCCGGCGACGTTGGGGCGTGGAGGCTCGACACGGTTCACGGCGCGGATGAACGAGCTCGCGGTCGTCGTGCACGACCTGGCCGAGGCCGCTGGCCTGCGTGTCCGGGTGGTGCACGACGAGTCCACGGGAAGCCCGCGGCTGCTCGTGACGATCGAGCCGACCGACGACGTGTCAGCTCATGTGCGGTTCGGTCCGCCCTTCATGCCGGCGTCCGCTCTCATCAGCTCGTGGAAGTTCGCCTTCGAGCGGCCTCGGGCCACTCGTGCGATCGCCGCGGCCGGCGGTGAGGGCGTGGACCGGCTGTACGCACAGCAGATCGACGCGGCCGCCGAGTCGCTGTGGAAGACGGTGCGCGAGGTGGCGGTCGACCAGCGGCAGACGTCCGAGCAGGACGAGGTCGACGACAAGCTGGCCGAGACCCTGGCGGAAGGCGCCGGCCCGACGTCGGTCGCATTCACGGTCGCGGACAGCGACGACGTCCAGTACAGGCGCGACTATCGGGTCGGCTCACGCGTTGGCCTCGACCTGCCCGGCCTGCCAGCTGCGATGTCGTCCGACGTGGTTCGCGAGGTGACTACGAAGGTCTCGGCGGCGGCCGGGCAGGCGCGCGAGCAGGTGTCCGTGGTGATCGGTTCCGCCGGCGCGACGGCGGTGTCGACGGCCTCGACGAAGCACATGACGACCGCCCTGCGCGCCATCCGAGCACTCGAGAGGAGCAGATGAMISPRDDDLGRTLDPVAGWTDLTLVERNNTPGTWTLSGPAAALDSFEPGMGCILDRDGEQIESGVLRSYDRDGAVDMDTGRVTDTITLGFVGDDDVFGGRLAWQDPTKALASTLSKFAAEHDVRTGTRETLILEYLAANVGPAAPRPNRRVADLVLPATLGRGGSTRFTARMNELAVVVHDLAEAAGLRVRVVHDESTGSPRLLVTIEPTDDVSAHVRFGPPFMPASALISSWKFAFERPRATRAIAAAGGEGVDRLYAQQIDAAAESLWKTVREVAVDQRQTSEQDEVDDKLAETLAEGAGPTSVAFTVADSDDVQYRRDYRVGSRVGLDLPGLPAAMSSDVVREVTTKVSAAAGQAREQVSVVIGSAGATAVSTASTKHMTTALRAIRALERSRNANANANANA
AK018_020931056hypothetical proteinATGGGTCAGACCTCCGGACCGATCACCGGTGAGAACTTCACCGATCAGACATGGCGGGACCTGTTCGGCGCGGAGCCTGCGATCGTGGGCGACGTCAACGGGACCTCGTACTCCCTGACGCTGCCGACCTCGACGGACGACGTGCTCCTGGGTTCGCCTTCGCAGGACTCCCTTGCGGTGGTCGCCGGCAAGTCGCACAAGATTCCCGCCGGCGAGACCGAGAGCCTCACGATCCCGCCGTCGTCGAACGTCTCGGTGGGCCGGACCGACCTCATTGTGCTGCGGTTCGACCCGGCGCTGAGCGGCGACTCGCCGCTCGGTCCGGTGCGTCTGCACCGGGTTGCCGGCGTGGAGGGGTCCTCGGCGCGGCCGAGCTACGACGGGGGCCCTCCGGGGGTGGAGGACCTTCCGCTGTGGGCGGTCACACGCAAGCAGGGCCAGTCCTTGAATCAGGCTGCGGCACGGGACCTGAGGGTGCGGTCCGGCCCCGCTCTATTCTTCCCGGCTGGCATGGCACCCAGCGGTGACGTCCCGCTCGGCACTCTGGTCCGGGCAGGCGACGTGCTGCACACCCGGATCCTGAACGGCTCGGGCTCAGCGGTCTGGTCCAGCGTGGACATCGTCCACCCGAAGCCGCGGGCGGGCTGGGCCAACGACTACGGGGTCGAGAACCCGGGGAGCTGGAACAGCGACAAGCGGCTGATGCACTTCCCTATCCCCACGAAGTCGTTCCGGCGGCTCGTCACCGTCACCGGCGCCTGGGATGTCGAGGTGGACCGGGGATCCCAGTGGATCGCTCGGATGGTCGTCGGCGGCACGGGGATCGACAACGACTACGGAGGCGGCGTCATCATCGCATCCGAGCGCCTCTACACGAGCAGTGAGGGCACGATCAACCAGTCGGCCACCATCACGGCCAGCTTTAGCATCGAGCCCGGAGAGAACCGCTGGGTCCGCCTCTGGGTGTTCAGGATCTCGGGCACCATCACCATCAACAACGGCGGGGGGCGAACGATCGACGTCTCCTGGGTGGAGCACGACGGGAACGACTGGTGAMGQTSGPITGENFTDQTWRDLFGAEPAIVGDVNGTSYSLTLPTSTDDVLLGSPSQDSLAVVAGKSHKIPAGETESLTIPPSSNVSVGRTDLIVLRFDPALSGDSPLGPVRLHRVAGVEGSSARPSYDGGPPGVEDLPLWAVTRKQGQSLNQAAARDLRVRSGPALFFPAGMAPSGDVPLGTLVRAGDVLHTRILNGSGSAVWSSVDIVHPKPRAGWANDYGVENPGSWNSDKRLMHFPIPTKSFRRLVTVTGAWDVEVDRGSQWIARMVVGGTGIDNDYGGGVIIASERLYTSSEGTINQSATITASFSIEPGENRWVRLWVFRISGTITINNGGGRTIDVSWVEHDGNDWNANANANANA
AK018_02094423hypothetical proteinATGACCAACCCTCCCGAGAACGCGCCCTGGTGGGTCTGGCTCGCCGGGCTCGTCATCTTCGTCGGCGTCCCCGCGCTGTGCGGCATCGTCGTCGCGCTGATCAACCGCCCGATTCGGCGCGGCCTAAGCGCCGTCAAGGACCAGGTCGAGAACGACCACCAGGTCGGGCACCCCTACCCGAACCTGCGCATCCAGCTCGACGCGATCCAGGCAGACGGGCAGGCCACTCGGCGTGAGCTCGAGGGCCTGCGCACCGAGCATCGCGAGACCCGCCACTGGATCGGCAACGAAGCTGCCGAGCGGCGGCACATCGGCGAGGCCCTGGACGAGCACATCCAGGAGGCCGCGCAACGCGACGAGCATATCGACGCCCAGCTCGGCGACATCAAGGCAGCGATCCACCAGCAGGTCGAGACCGACTGAMTNPPENAPWWVWLAGLVIFVGVPALCGIVVALINRPIRRGLSAVKDQVENDHQVGHPYPNLRIQLDAIQADGQATRRELEGLRTEHRETRHWIGNEAAERRHIGEALDEHIQEAAQRDEHIDAQLGDIKAAIHQQVETDNANANANANA
AK018_02095987hypothetical proteinGTGAGGTTCCGCATCATCCCCCGCAGCGAGTGGGGTGCGACCACCTACGGCCCGTACACCCGCGCCATCGGCGGCCTGGAGAAGTGGCTGCACCACTCCGTGACCGTCTCGCCCGACACCGTCGCCCCGTACACGGACGACTACGACGCGATCCGCGCGATCGACCGCATCGGCCGCCAGCGGTTCGGGCGGTACGCCTTCCCGTACACGTTCGCCGTGACCCCGGCCGGGCTGATCTTCGAGGGTCACCCGATCAACCGGGTCGGCGCGCACACCTCGGGCCGCAACAGCCGGTCGGCCGGGATCGTCTGGGTCGGCAACTACGAGAACCAGAAGCCGACCGCGGCCCAGATCGAGGCCACCGCCTGGCTGCTCCAGGAGGGCAAGCGGCGCGGCTGGTGGGGGTACGCCGAGCTCGACGGCGGCCACCGGGACACGAAGGCCACCGCCTGTCCCGGGCGCTACGCCTACGCCGCGATCGGCGACGTGAACCGTCTCTCGCGAGGCAAGACGATCTCCAGCGGTGCGGCGTCGCGCGACGACGACCGGGCCCCGATCAAGCGCAAGCCGCGCAAGCTCAAGCTGCTCAAGGTCCGCCGGATCTTCCGCTTCAAGTACCTGACGAAGTTGTGGCAGCAGATCCTCAACAGCGACGGCGCCGACCTGGTCGTCGACGGGAAGTACGGCCCCAGCACCGAGGAGGCCACGAAGCGCTGGCAGCGCAAGCGCGGCCTGCACGACGACGGAGTGGTCGGCCCGATCACCTGGACCCGTGCCCTGCTGACCGACAACGACCGCCGCCTCAAGGAGGGCGACCGGGGCGCCCGCGTCGCCGTCCTGCAGTGGATCGTCCGCGTCAAGCGGGACCGCAGGTTCGGCCCCATCACCGGGCGAGCCCTCGAGTGGGTGCAGCGCTACATCGGCGCGGACGTCGACGGCGTCTACGGCCCGGGCACCCGCGGCAAGCTCATCAAGCACTGGTCCTGAMRFRIIPRSEWGATTYGPYTRAIGGLEKWLHHSVTVSPDTVAPYTDDYDAIRAIDRIGRQRFGRYAFPYTFAVTPAGLIFEGHPINRVGAHTSGRNSRSAGIVWVGNYENQKPTAAQIEATAWLLQEGKRRGWWGYAELDGGHRDTKATACPGRYAYAAIGDVNRLSRGKTISSGAASRDDDRAPIKRKPRKLKLLKVRRIFRFKYLTKLWQQILNSDGADLVVDGKYGPSTEEATKRWQRKRGLHDDGVVGPITWTRALLTDNDRRLKEGDRGARVAVLQWIVRVKRDRRFGPITGRALEWVQRYIGADVDGVYGPGTRGKLIKHWSNANANANANA
AK018_02096561hypothetical proteinATGACCACCACCTTCGACCCCATCGAGCTCCCCTCGCGCTACGCCAAGGCGCTCGTCGCGATCCTGACCGCCGCCCTCGGAGTGCTCGTCACCGCGCTCACCGACGGCCAGATCACCCTCGAGGAACTGCTCGGCGTCGCCGTCGCCCTCGTGACGGCCGTCGGCGTCTACCTGGTGCCAAACCTGCCCGCCGGCATCGGCCGGTACGCCAAGGCCGGAGTCGCCATCGTCGGCACCGGCCTGCAGGCCGCAGTCCCGCTGATCGTCGAGGGCACCATCACCACCTCCGGCTGGCTCATGATCCTGCTCGCCGTGCTCGGCGCCGTCTCCGTGGGCATCACCCCGAACGTCGACGTCGAGGCACACCCGGCGGCCGAGACGACACCACTGGTCGACGTCGAGGCTCCGGCGGGCTACGAGACGTCGGAGGTCTCCGACGCGAAGACCGAGGTCGTAGACATCCTCAATCAGCTCGACGGCGAGGACCGCCTCACCATCGGGGAACGGCAGGTGGAGCGGCTCATCGAGATGGGCTGGCGACCGACCAACCGGGACGGCTGAMTTTFDPIELPSRYAKALVAILTAALGVLVTALTDGQITLEELLGVAVALVTAVGVYLVPNLPAGIGRYAKAGVAIVGTGLQAAVPLIVEGTITTSGWLMILLAVLGAVSVGITPNVDVEAHPAAETTPLVDVEAPAGYETSEVSDAKTEVVDILNQLDGEDRLTIGERQVERLIEMGWRPTNRDGNANANANANA
AK018_020971068hypothetical proteinATGGCTCTGGTCCGCTACGACCTCACCCCCGTCCGCGACAAGAACACCGGCGAGATCCGCAGCGACCTTGCCGGCAGCACCGTCCGCGTCGTCCTGCGGGACACCATCACCCCCGCCGCCATCTACGAGGACGCCGACGGCGAAGTCGCGATCACCAGTTCGCGCGTCACGGTCCTGCCCACCTTCGCGATCCCCACGATCTATCACGACCTCGACGACGGTCTGATCGACTGGCTCGACGAGGGCAGTGGCGCTCGCGGCCCGATCCTCTCGGAGCAGGGACTTGCAGATGTTGCGGTCGCTGCGAAGCAAGATGCGGCCTCTTCGGCGTCGGCGGCGCAGGGTGCACAGATCGCGGCCGAGGGCGTGGCTTCGGAGCTGGCCGGTGCGGTGAGGTCCGTGAACGGCCAGGAGCCTGACGAGAGCGGGAACGTCAACGTCGCTGGCGGTGGCGGTGGCGGTGTCGTCTCGGTCGCCGGCCGAGGTCCCAATGGCTCCGGCGATGTCCCGCTGACGACCGGAGACATCGGTGCCGCCCCGGCCTCTCACACCCACAGCGCCTCCGACGTCACCTCGGGTGTCTTCGCTCGGGCCCGGCTCGGCACCGGCTCCGCGTCGGCTTCGACGTGGCTGCGCGGCGACGGCACGTGGGCTCCAGCGGGCGCCGGTGGCGGCGACGTCTCGTCCGTCAATGGGCAGGGACCTGACGGCAGCGGCGATGTCACCATCTCCAAGAGCCACATCGGCCTCGGCGCGGTCGACAACACCTCTGACGCCAGCAAGCCGGTCTCGAGCGCGCAGCAGGCTGCCCTCGACCAGAAGGCCGCGGACAACGCCGTCGTGAAGCTCACCGGCGCCCAGACGATCGCAGGGACGAAGACCTTCTCCTCGCCGCCCGTCGTCCCGGACTCGTCCTTCTCGCAGGCGAAGGTGGCCGGCTTGGCCACGGCGCTGGGCGGCAAGGTCGGGTCCTCGACGATCGACGACATCTGGGTCGGCTCCCAGGCCGCCTACGACGCCCTCGGGTCCTACGACGCGAACACGCTGTACCTGACGACGGGAGCCTGAMALVRYDLTPVRDKNTGEIRSDLAGSTVRVVLRDTITPAAIYEDADGEVAITSSRVTVLPTFAIPTIYHDLDDGLIDWLDEGSGARGPILSEQGLADVAVAAKQDAASSASAAQGAQIAAEGVASELAGAVRSVNGQEPDESGNVNVAGGGGGGVVSVAGRGPNGSGDVPLTTGDIGAAPASHTHSASDVTSGVFARARLGTGSASASTWLRGDGTWAPAGAGGGDVSSVNGQGPDGSGDVTISKSHIGLGAVDNTSDASKPVSSAQQAALDQKAADNAVVKLTGAQTIAGTKTFSSPPVVPDSSFSQAKVAGLATALGGKVGSSTIDDIWVGSQAAYDALGSYDANTLYLTTGANANANANANA
AK018_020983069hypothetical proteinATGGGATTCGTCGCCGCAGGCGCAACGGAGATCTCGACCCCCGCATCCACCTGGACTCTCCCAATGCCTGCCGGTGTAGCGGAGGGCGACATCCTCGTCATCACCGTCACGACGGGGGGCGACGGCTCCTCGCTGTTGTCCACGCCCGGCGGCCTGACGACGCACCAGGCGTTCTACGAGGGGGAGTTCTCGGGCTTCGCCGGGGCCGTCTACACCTACGTCGTGCCCGCGTCGCCGCCGGCGGACCTGCAGTGGGGGTTCAGCGGCAACGAGGACGGCACGATCGCCTGGCTGCACATCGACAACGTGGCCGGCGGCGTCGACGGCTTCGAGATCAACGACGAGGGCTACGTCGACGAGTTCGCCGTGCCCGCGATCACCACCACCCAGGACGACTGCCTCGTCGTCGGCGGCTTCATGCAGGGCTCCGGCTCCTCGATGGGCACCCCGCCGTCGGGCTGGACGACCCGAGTGGATGGCTCGAACCGGAACGGCTTCCTCGCGACGAAGGACGCCACCCAGGAGTCCCCCGGCTCCACGGGCTCCGCGACCTTCGACTCCTCGTCGTCGGCCACCGGCCGGGCCTGGCAGATGGCCATCGCGCTCGCCGGCGCGGCGGCACCCACGCCCAGCCTGCAGCACGCGATCATCGGGGCCCCGCAGCCCGATGGCTTCACCGTCAACGCGAAGGTCAGCAACGCCACCTCGGCGCGCCTGGTCGTCGCCGGCGACGCCGGGCTCTCCGTCGATGTCGCCTACTCGTCCCCGGACACCCCGGATGCCGACGGCTACGTGTCGCTGACGATCTCCGGGCTGACGACGCGCGCGCGGGACTACTACGCGCTGGAGCTCACCGACTCCGAGGCGGCCACGAGCGTCACCCCGCTGGCCGGCTCCCCAAAGCGGCGTCCCGCGACGGACTCGCCGGCCGACTTCTCGGTGGCGTTCGGGTCGTGCTGGGACAACGGGCTCGCCGGTGCGCCGGCGTTCGACATGATCCTCGGCAAGGACCCGGACCTGTTCTTCCACCTGGGCGACTGGGTGTACGCCGACAGCGAGTCGACGTCGCAGTCGTCGCACCGGGCCGACATGGAGTCGCAGATCAACGCCTCCGCCTCGCTCAAGGAACTCGTGGCCAACGTCCCGACGGTCTACGTGAAGTCGGACCACGACGGCGACGCCAACGAGCAGGGCCCCGGCCCGTGGACGGCGCCGAACCGCGCCGCGACGCTGCAGATGTTCCCCTACAACACCCGGCCGAACGCGAACGGGCTCTACCACGCCTTCACCGTCGGCCGCGTGCGGTTCATCTTCATCGACACCCGCTACCTCGGCGACAACTCGACGACGCGCCTCGGTGCCACGCAGAAGGCGTGGCTCAAGACCGAGATGGAGCGCAGCGAGCCCTTCAAGGTGCTCGTCGAGGACGGTGCCTGGATCCACAACGAGGGCGCGGAGACCCCCGGCGAGGACGACTCCTGGTCGACCTACGGCGCGGAGCGCACCGAGCTCGGCAACCACTGGACCGCGAACGGCGTCGGCCAGCTCGTCGTCATGCACGGCGACCAGCACGCCATCTCGGCCGACGACGGCTCGAACAACCCGTGGGGCGGCTTCCCGTCGTTCTGCGGTGCCCCGTTCTCGAACCTGTCGTCCATCAAGACACTGTCGCAGGACGACTGGTCGGAGGGCTACTTCCCGCCCGTGGTCGGCACACCCGTCGAGCAGTACGGCCTCGTCGAGTTCACCGACACCGGCGACGGTATCGGTGCGCAGTTCCGAGGGTACGACTCGAGCAACGACGAGCAGGTCAGCCTCCTGGTGGCCACCGAGGGCTACGAGCCGCCGCCGCCCCCGCTCGAGCCGGAGCGCATCACCAGCACCGGTGCGACGTCGCTCACCTCGCCGTCCGGCCGCTGGGTCAAGGCGCCGACGCGTCCCCTGTGGTGGGACGGCGTGAACGAGGAGTGGCGAGGCGTCCTGCCGACGTCGTCGGGGCACCGGCTCTACAGCCTGGTCCCCGGCGCCATCACCCAGGGCGCCGTCGTCGACTCCCGGCAGTCCTGCCGCGTCACCGCGGTGCACGACGCTGGCAACACCTACGTGCTGCGCCAGCACGCGAGCTCGACGCTGCTGAGCGTCTACAACTCCTCGTGGACCGCGACGCTCACCGACGCCTCGGTGCCGCTGACGGCCGCCGACAACGACGCCTCGCCGATGGCGCTGTTCTGCAGCTCCAACGGGCACCTGTGGGCTGCTGTGCACGAGGGTGGGAGCGTCCAGGTGACGCGCTCCACCAACGGCGGCAGCACTTGGTCGGCCGTGACCTCCTGGTCGCTGACCGGCACCGGTGTCCCGATCCTCGTGCAGACCGGCAGCACGCTGCTGCTGTTCGTCAGCGCGAACGACGGGTTCGGCTTCCTCGTGCGGACCATCTCCATCTCGGCCGGCTCGATCGCGAGCGGTTCCTGGGCCGGGGAGGCCGCGCCGTCGCTGCCCGCGGGGATCACCTCCGACGACCACGCCTCCGGCGTCGCGCTGGCGGACGGCCGCGTCGTCATCGTCGGCAAGACGACCGGCGCGACCAGTTCGTCGCAGCCGCTGATCTTCTCGGCCGTCCGCGCCTCCACGGGCTCCTGGACGGTGAACACCATCGAGCCGGGCCCCGACTCCGGCGTGCGCTACACGCGCCCCTCGGTGACGCGAGACGACGGCACGCTGCACGTCGTCTACGGGTCGATCGGCTCCCCCTACGAGCTCAGCGGCCGCACCGTCCCGTCGGACGCGCTGGCCTTCTGGTCGACGCGGGAGACGCTGAACTCCGACGGCGACTTCCTCGACGGCGGCGTCATGCCGACGCCCGAGGACATCGACGCCACGACGTTCATGCACTGGCCGACGCTCGCCGTGGACTCCGCGACCGCGGACATCTGGGTGAACTGGAAGCTGACGCCGCCGGCAGTCAGTGGCGTCGTGCCGGGGACCGTGGGCAGCGAACCGATCAGCGCCATCTACCTCGGAGACCAGCAAATCTCCGGGATCTACCTCGGCGCCCTGCAACTGATGTAGMGFVAAGATEISTPASTWTLPMPAGVAEGDILVITVTTGGDGSSLLSTPGGLTTHQAFYEGEFSGFAGAVYTYVVPASPPADLQWGFSGNEDGTIAWLHIDNVAGGVDGFEINDEGYVDEFAVPAITTTQDDCLVVGGFMQGSGSSMGTPPSGWTTRVDGSNRNGFLATKDATQESPGSTGSATFDSSSSATGRAWQMAIALAGAAAPTPSLQHAIIGAPQPDGFTVNAKVSNATSARLVVAGDAGLSVDVAYSSPDTPDADGYVSLTISGLTTRARDYYALELTDSEAATSVTPLAGSPKRRPATDSPADFSVAFGSCWDNGLAGAPAFDMILGKDPDLFFHLGDWVYADSESTSQSSHRADMESQINASASLKELVANVPTVYVKSDHDGDANEQGPGPWTAPNRAATLQMFPYNTRPNANGLYHAFTVGRVRFIFIDTRYLGDNSTTRLGATQKAWLKTEMERSEPFKVLVEDGAWIHNEGAETPGEDDSWSTYGAERTELGNHWTANGVGQLVVMHGDQHAISADDGSNNPWGGFPSFCGAPFSNLSSIKTLSQDDWSEGYFPPVVGTPVEQYGLVEFTDTGDGIGAQFRGYDSSNDEQVSLLVATEGYEPPPPPLEPERITSTGATSLTSPSGRWVKAPTRPLWWDGVNEEWRGVLPTSSGHRLYSLVPGAITQGAVVDSRQSCRVTAVHDAGNTYVLRQHASSTLLSVYNSSWTATLTDASVPLTAADNDASPMALFCSSNGHLWAAVHEGGSVQVTRSTNGGSTWSAVTSWSLTGTGVPILVQTGSTLLLFVSANDGFGFLVRTISISAGSIASGSWAGEAAPSLPAGITSDDHASGVALADGRVVIVGKTTGATSSSQPLIFSAVRASTGSWTVNTIEPGPDSGVRYTRPSVTRDDGTLHVVYGSIGSPYELSGRTVPSDALAFWSTRETLNSDGDFLDGGVMPTPEDIDATTFMHWPTLAVDSATADIWVNWKLTPPAVSGVVPGTVGSEPISAIYLGDQQISGIYLGALQLMNANANANANA
AK018_02099405hypothetical proteinATGGTAAGGATCGCTCCTGAGCGACTCGCGGCGTCGCGGGCACTCGCGGAGTTCATCGGAAGTGCCGGTGGCCGTCGAGTCTTGGCGATCAACGAGTACCAGTCTGAGACCCCCATCTTGCCAGCCCATGAGTCCGAGACGATGGTCTCGGTGATGTCACGCGCACGGCAGCACGAGGGATCCGCAGCGGTCGTGGCCGTCCACTTCCCCGGCCGTCGGCCGGGCGCGGACCTAGCCTTCGTCAAGTTCCAGCGCAACGAGCCGGTCGAAGACAAGGACAAGCTGCCCACTGGCGGTGACGCGACCATCGGGATGGTCGCTGACCTACTCATCCGGACGAAGCGGGTCACGACCGTATCCGTCTCCCAACATGTGACCGCTGGCGTCATGGAGCTCTCTAGCTGAMVRIAPERLAASRALAEFIGSAGGRRVLAINEYQSETPILPAHESETMVSVMSRARQHEGSAAVVAVHFPGRRPGADLAFVKFQRNEPVEDKDKLPTGGDATIGMVADLLIRTKRVTTVSVSQHVTAGVMELSSNANANANANA
AK018_02100285hypothetical proteinATGCACGACCCCACCCTGCTCCCCGGCGAGGCGCCCCGGCAGGCGATCCTCAACGCCCACCCTGTGCCGCCGAAGCGTGAGCAGGTGCGCGGCTGGATCCCGGTGCGCGCCCGGATCGAATGGGGGCACGACGGTGTCGAGTGGGTCGACACGGTCGCGTTCACGTGGACGTCGCGGCTCGTGCTCGTCCAGCTCGCCGACCGGCGCTACCGGCTGCGGGGGGTGTGGGTTGCGCCGGCCGACGTCACTCGGTCGGCGACTGACGAGGGCCGATCAGTGCGATGAMHDPTLLPGEAPRQAILNAHPVPPKREQVRGWIPVRARIEWGHDGVEWVDTVAFTWTSRLVLVQLADRRYRLRGVWVAPADVTRSATDEGRSVRNANANANANA
AK018_02101693hypothetical proteinGTGCACAAGCCTGAGTTCGACGACACCGCCGACTGGGAAGGCACGATCGATACTGACCTGTTCCCCGTCGAGGCGATCTTCACCATCACCGTCACGAACGAGACAGACGCGCCCGTGAACCTCGTCGAACTAGGCGTGGGACCCAGCTTCGACGCCTTCTCGGGCAACTACGAAGGAGACCTGTTGTCGTGCGAGAGCGACGTCATGGCGCCGTCACGGCTCCAGCCGGGCCGTACAGCCAAGTGGCCGGAGTGCTTCGCCATCGTCGACGCCGACGACATCGTCTTCACGATCTACCCCCCGAACGACGGACGCACCCTCGACTACTTCCTCGGCGGACCGAGCAACGACGACGCGGAGAAGCCGAGCACCGGCGACGCGGAAGCCGACTACGTGGCCCGCGTCCAGGAGGCCGGCAAGCCCATCCTTCACGAGTTTCCCAACGCTGCCGCAGTGCTTGACGACGACGTCGCCATTGTCGAGCAGGGCAACGAAGTGTGCTCGTTGATCGCGGACGGCAAGACGCTCGACGAGATCTACATGCAGGCCGACTCAGAGGCCGGCGTCCCGCTCGACCAGGACCCAAACTTCATGTTCGCGAACTTCCTCTGGGCCACCATCCTCGAAGCCCCGCCCACCCTCTGCCCCGAACACAACGCCGTCCTCGAGGCTTGGGAAGCCTCATCGCACTGAMHKPEFDDTADWEGTIDTDLFPVEAIFTITVTNETDAPVNLVELGVGPSFDAFSGNYEGDLLSCESDVMAPSRLQPGRTAKWPECFAIVDADDIVFTIYPPNDGRTLDYFLGGPSNDDAEKPSTGDAEADYVARVQEAGKPILHEFPNAAAVLDDDVAIVEQGNEVCSLIADGKTLDEIYMQADSEAGVPLDQDPNFMFANFLWATILEAPPTLCPEHNAVLEAWEASSHNANANANANA
AK018_02102306hypothetical proteinATGAAGACCTACTTGTCGCAGGTCGCGGAGGACATCCGCACGAACCTGCCGAGCGATGCGGACGAGCCGGCGGAGGAGCCAGACCTCTTCTTGCTGTACGCGCTGCTGGCGTTGACCAAGGGCGAGAACGTCACGCTTGAGGACGTGCACGACGCCTGGATGGCGTGGATGACCATGCGAGGCGAGGAGCACCGATCGATGGTGCCGTTCGGGAAGTTGGCGCCGGACGTCCAACGGGAGGACGCCCCGTACCTCGCGGCGATTCAGGCGGCCGTTCGAGAGAGGAGCCGGCGGTCGCGCTCGTGAMKTYLSQVAEDIRTNLPSDADEPAEEPDLFLLYALLALTKGENVTLEDVHDAWMAWMTMRGEEHRSMVPFGKLAPDVQREDAPYLAAIQAAVRERSRRSRSNANANANANA
AK018_02103414hypothetical proteinATGGCGGTGGACATGGCCGATCGCATTTCGGCCCGACGCGGCGCCGCGAACACCTACTACGTCACGCTTCAGAGCGCCCTCCTGGGAGTCCTTGGATTCCTGACGCGGGACTCGCACCCCGCTGATCGGATGGTCCTGTCCGCCATCTGCGTCGCTGGCGCCGTCACCTCCGCGACGTGGTTCCTGCAGTTGCGCAGCTATCGGGATCTGAACGCCGCGAAGTTCGAGGTCATCAACAAGATGGAGCGCGATCTGCCCTATCAAGTGTTCGCTGACGAGTGGGGGGTGCTCAAGAAGGATCCCGTGTCCAAGTGGAAGGCGCGCTACTCGGAACTCGGGACGGTCGAACGGAAGGTCCCGATCGTGTTCGCGGCTGTGAACGTAGTGCTCGGCGTCTACGTTTGGTCACTATGAMAVDMADRISARRGAANTYYVTLQSALLGVLGFLTRDSHPADRMVLSAICVAGAVTSATWFLQLRSYRDLNAAKFEVINKMERDLPYQVFADEWGVLKKDPVSKWKARYSELGTVERKVPIVFAAVNVVLGVYVWSLNANANANANA
AK018_02104384hypothetical proteinGTGGCGCCCCGAGTCTTCATCAGCTTCGACTACGACAACGACAACGACCTCAAGAACTTCCTGGTCGGGCAGGCCCGGAACCCGGACTCGCCCTTCGAGATTGCGGACTGGTCGATCAAGGTTGCCTCATCGGCCTGGCGCAGTGAGGCGCGCCGCCGCATCAGAGCGAGTGATGCCGTCGCCGTGATCTGTGGCTGGTACACGAGCAGTGCCGTCGGCGTCGCGGAGGAGTTGCAAATGGCGCAGCGGGAGGGGATCCCGTACTTCTTGCTCTGGGGCCGCGCCAAGGGTGCGGTGACACGACCTGCCACGGCGTTGGCGGCAGACGAGATCTACGAGTGGACGTGGCCGAACCTCAAGGCGCTCGTGGCCGGTGCGCGGTGAMAPRVFISFDYDNDNDLKNFLVGQARNPDSPFEIADWSIKVASSAWRSEARRRIRASDAVAVICGWYTSSAVGVAEELQMAQREGIPYFLLWGRAKGAVTRPATALAADEIYEWTWPNLKALVAGARNANANANANA
AK018_02105933hypothetical proteinATGAGCCTCGCCGCGACCGGTGCTCTGCTGGGTCTCCTGGCGGGCCTCGGTCTCCTCCTCGTCCTCGCCGGTCTCCGGGCGCGCCGGATCGGGCTCGACGAACGCCTCGCTCCCACGCTGCGGGCACGCGACGCCACGTCGCGGCTCCTGCGGGACCAGGTGAACGTCACACCCTTCGGTGCGGTCGAACGGCTCGTCGCGCCCTGGGTGTCCGACGCCGCCGGCTGGTTCGAGCGACTCGGTTCCGGTCGCGCGGACGTCCAGCGTCGCCTCGACCGCGCCGGGCTGCCGGAGACCGTCGAGCAGTTCCGTGCCCGGCAGCTCGTGTGGACCGTGCTCGGGCTCGCGGCAGGGCTCGTCCTCGCCGTCCTGCTCGCGGCCACCCGCGGCTCACCCGTCATCGTCCTGGGTGCGCTGGTGCTGCTCGCCGCCGCCGGTGGGTTCGCCGCCTGCGACCAGCGCCTGACCGCTGCCGCCCGACGGCGCGAAGACCGCATGATGTCCGAGTTCCCCACCGTCGCCGAGCTGCTGGCGCTCGCCGTCACCGCCGGCGAGGGGCCCGTCCCGGCTCTCGAACGGGTCGCCGCGACCGCACGCGGGGACATCTCCGCCGAGTTCGCGACGATGCTGGCCGACGTGCGCGCCGGAGCGCCGATCCCGGCAGCCCTCACCGCCATGGCCGACCGCACCGGGCTGCCCGCCCTGACGAGGTTCGCCGAAGGCGTCGCCGTCGCTCTCGAACGAGGCACCCCGCTCGCGGACGTCCTGGGCGCCCAGGCACAGGACGTCCGTGAGTCCGGCCGCCGGGCACTCATGGAGGCAGGCGGCAAGAAGGAGGTCGCGATGCTCGTCCCGGTGGTGTTCCTCATCCTGCCGATCACCGTCGTCTTCGCCGTCTTCCCCTCCCTGTCCACGTTGCAGATCGGACTGTGAMSLAATGALLGLLAGLGLLLVLAGLRARRIGLDERLAPTLRARDATSRLLRDQVNVTPFGAVERLVAPWVSDAAGWFERLGSGRADVQRRLDRAGLPETVEQFRARQLVWTVLGLAAGLVLAVLLAATRGSPVIVLGALVLLAAAGGFAACDQRLTAAARRREDRMMSEFPTVAELLALAVTAGEGPVPALERVAATARGDISAEFATMLADVRAGAPIPAALTAMADRTGLPALTRFAEGVAVALERGTPLADVLGAQAQDVRESGRRALMEAGGKKEVAMLVPVVFLILPITVVFAVFPSLSTLQIGLPGPT0022295_1124DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511NANA
AK018_02106858hypothetical proteinATGGGGGTCGTCGTCGGGCTCGTCGGCGGAGCGGGACTCTTCTGCCTGTGGTGGTCGTGCTGGGAGAGGCCGGACGGACCACGTCCCCGCAGCCGCCGCAGCCGGGAGCTGCAGGACCTGCTAGTCCAGGCCGGTGCGCCGTCCGTGAGCCCCGCCGCCCTGCACGGGGTGGCCGCCGGCGCCGGGTTCTTCGTCCTCCTCGTCGGTCTCGCGCTGACGCGGTCGCCCGCCATCGCGGGCTGCTTCGCCGTGATGGCCGCCGCCGGCCCCGAGGTCCTGGTGCGGGTCCGTGCCCGGCGACGTCGCGACGACCTGCGCGAGGTCTGGCCCGACGTCGTCGACCACCTGGCGTCAGGCGTGCGTGCCGGACTGGCCCTGCCCGAGGCGGTCGCGCAGCTGGGCGAGCGAGGACCCGAGCAGCTGCGCGAGCCGTTCGCGCGGTTCGCCGCCGACTACCGGGCCACCGGCCGGTTCGGCGAGTGCCTCGACCTGCTCAAGGCACGGCTCGCGGACCCGGTGGCCGACCGCATCGTCGAGGCGCTGCGACTCACCCGCGAGGTCGGTGGCACCGACCTGGGCCGGCTCCTGCGCAGCCTCTCGGAGTTCCTCCGGGAGGACGCCCGCACCCGGGGCGAGCTCGAGGCCCGCCAGTCCTGGACCGTCAACGGGGCACGGGTCGCGGCCGCCGGGCCGTGGGTCGTGCTCGCGCTGCTCGCGACACGGCCCGAGACGGCCCAGGCGTACGACTCCGCGGCGGGGGTCGCGGTGCTGCTGGCCGGTGCGGCGTGCTCCGTCGTCGCCTATCGCCTGATGCGGAGGATCGGGCGGCTGCCCGAGGAAGGTCGGGTGCTGCGATGAMGVVVGLVGGAGLFCLWWSCWERPDGPRPRSRRSRELQDLLVQAGAPSVSPAALHGVAAGAGFFVLLVGLALTRSPAIAGCFAVMAAAGPEVLVRVRARRRRDDLREVWPDVVDHLASGVRAGLALPEAVAQLGERGPEQLREPFARFAADYRATGRFGECLDLLKARLADPVADRIVEALRLTREVGGTDLGRLLRSLSEFLREDARTRGELEARQSWTVNGARVAAAGPWVVLALLATRPETAQAYDSAAGVAVLLAGAACSVVAYRLMRRIGRLPEEGRVLRPGPT0022290_2096DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
AK018_021071263hypothetical proteinGTGGCCATCGAAGTACTCGCGCGCAGCGATGCCGCGAGCCTTCTCGCCCAGGAGGTGCGCGAGCTCGTCCGGCGTCGCGGCCTCGACCCCGTGACCGACCGTCGCGGACTCGAACGGCTCGTCGCCGAGGCCGCCGCCGACTACACCGACCGGGCGACCGCCGGCGTCGTCCCCCCGCTCGAGGACGCCGCCGCGGCGGCGCGCTCCCTCTGCGACGAGCTCGGCGGGCTCGGACCGCTGCAGGCCTACCTCGACGACCCCGAGATCGAGGAGATCTGGATCAACACCCCGGCGCAGGTGTTCGTCGCCCGCCGCGGCGTCAGCGAGCTGACCACCACGCTGCTGACCGCCCAGCAGGTGCGCGACCTCGTCGAGCGGATGCTCAAGGGCTCCGGACGTCGTCTCGATCTCAGCTCGCCGTTCGTCGATGCCACGCTGCCTGGTGGGGAGCGGCTCCACGTGGTCATCCCCGACGTGACCCGCGAGCACATGGCCGTCAACATCCGCAAGCACGTCGCGCGGGCCCACCACCTGGACCACCTCGTACGCCGCGGGTCGTTGACGCCGCACGCCGCGGCCTTCCTCGACGCCTCCGTCCGTGCCGGGCTGAACGTCCTCGTGGCCGGAGCCACGCAGGCCGGCAAGACCACGATGCTCAACGCGCTCGCCGGGTCGATCCCCTCCGGACGGCGCGTGGTGTCCTGCGAGGAGGTCTTCGAGCTGCAGCTGCCCGTCCGTGACCACGTCGCCATGCAGTGCCGCCAGCCCAGCCTGGAGGGCACCGGCGAGATCCCGCTACGGAGGCTCGTCAAGGAAGCGCTCCGCATGCGCCCCGACCGCATCGTCATCGGTGAGGTGCGCGAGGCCGAGAGCCTCGACCTGCTCATCGCGTTGAACGCCGGCATACCGGGTGCGTGCACCATCCACGCGAACTCCGCCCGCGAGGCGATCACCAAGATGTGCACGCTGCCGCTGCTCGCGGGCGAGAACGTCAGCGACCGGTTCGTCACCCCCACCGTGGCCAGCGCGATCGACCTCGTCGTCCACCTCGCCGTCGCCCCGGACGGGACCCGGCACGTGCGTGAGATCGTCGCCGTGACCGGGCGGGTCGAGTCCGGCACCGTGGAGACCGCGCAGATCTTCCGGCGTCGTGCCGTGGCCGAGGGCGGTGAGCTGGTCCGGGGCGACGGGTTCCCGCCCGACCGTGAGAGCTTCGAGCGTGCCGGCATCGACGTCCACGCCCTGCTCGCCGGGACGCTCTGAMAIEVLARSDAASLLAQEVRELVRRRGLDPVTDRRGLERLVAEAAADYTDRATAGVVPPLEDAAAAARSLCDELGGLGPLQAYLDDPEIEEIWINTPAQVFVARRGVSELTTTLLTAQQVRDLVERMLKGSGRRLDLSSPFVDATLPGGERLHVVIPDVTREHMAVNIRKHVARAHHLDHLVRRGSLTPHAAAFLDASVRAGLNVLVAGATQAGKTTMLNALAGSIPSGRRVVSCEEVFELQLPVRDHVAMQCRQPSLEGTGEIPLRRLVKEALRMRPDRIVIGEVREAESLDLLIALNAGIPGACTIHANSAREAITKMCTLPLLAGENVSDRFVTPTVASAIDLVVHLAVAPDGTRHVREIVAVTGRVESGTVETAQIFRRRAVAEGGELVRGDGFPPDRESFERAGIDVHALLAGTLPGPT0016025_2361DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
AK018_02108615hypothetical proteinGTGACCGCCGTCGACCTCAAGAAGACCTACCGTGCGCTGTACTCCGCGCCGCACGAGCCCGCACTCGTCAACGTGCCACCCCGTCCACATCTGATGGTCGACGGCGCCGGTGACCCGAACGCGGCGCCCGCCTACCGCGACGCGATCGCCTCGCTGTACCCGCTGGCCTACGCGCTGCGGGCCGCGATCCGCGACGCCGCCGGCACGGCCTACACGGTCATGCCGCTCGAGGGGCTGTGGTGGGCGGACGACATCGAGCGGTTCCGCGAGCTGCCGCGCTCGGCCTGGCGCTGGACGATGATGATCAGCCTGCCCGACGACGTCGCCCAGGTCGACGCCGCGGCTGTCGTCGAGCGCACGACGGCGGCACGCGACCTGCCGGCAGCGGTGCGGCTGGAGTCGTTCGGCGACGGGGAGGCGGCCCAGATGCTGCATGTCGGGCCCTACGCGGAGGAGGCGCCGACCGTGGACGCGCTGCACGCCTTCGTGGCGGCGTCCGGACTGGCACTGGCGGGCCGGCACCACGAGATCTACCTGTCCGACCCGCGCCGGGTCGCGTCGGACCGGCTGCGGACGATCATCCGGCAGCCGGTGGCGGACGGCCGCGAGCGCTGAMTAVDLKKTYRALYSAPHEPALVNVPPRPHLMVDGAGDPNAAPAYRDAIASLYPLAYALRAAIRDAAGTAYTVMPLEGLWWADDIERFRELPRSAWRWTMMISLPDDVAQVDAAAVVERTTAARDLPAAVRLESFGDGEAAQMLHVGPYAEEAPTVDALHAFVAASGLALAGRHHEIYLSDPRRVASDRLRTIIRQPVADGRERNANANANANA
AK018_021091203dapC_1COG0436putative N-succinyldiaminopimelate aminotransferase DapCATGACGTCCGCACCCCGGTGGCGCCGGGTCGCCGCCGCCACCGGCCTGCTGTCCGACGACGGAGCGATCGCGCAGACGATCTTCGCCGAGATGACGGTGCTCGCGAACCGCACGGGCGCGGTCAACCTGGGTCAGGGCTTCCCGGACGTGGACGGGCCGGACTGGATCAAGGAGGCCGCCAAGGAGGCGATCGACGCCGGCCGCAACCAGTACGCACCCGGCGACGGCGTGCCGGAGCTGCGCCACGCCGTCGCCGACCACCAGCGACGCCGCTACGGCCTGGAGGTCGATCCGGACACCGAGGTGCTGGCCACCACCGGCGCCACCGAGGCCCTGACGGCGGCGATCCTCGCGCTGACCGGCCCCGGCGACGAGGTCGTCACGCTCGAGCCGTTCTACGACTCCCACGCCGCCGCGATAGCCATGGCCGGCGCCACCCACGTCCCGGTGCCGCTCACCCCCGACCTGCGCCTCGACGCCGGCGCGCTGCGCGCCGCTGCCACCGAGCGCACCGCGATGATCCTGGTCAACACCCCGCACAACCCGACCGGCACCGTGCTGACGCGCGCCGAGCTGGAGCAGGTCGCCGCCGTCGCCCGCGAGCGCGACGCCGTCGTGCTCACCGACGAGGTGTATGAGCACCTGGTCTACGACGACGCGGTGCACGTGCCGGTCGCGACGCTGCCGGGCATGGCCGAGCGGACGGTGACGGTGTCGAGCTCGGGCAAGACGTTCAGCCTGACGGGGTGGAAGGTGGGTTGGCTGCACGGCCCGGCCGAGCTCGTCACGGCGGTGCGCACGGTCAAGCAGTTCATGACGTACACCTCGGGTGCGCCGTTCCAGCCGGCGATCGCGCGGGCGCTCGGCGACGACGAGGCGCCGCGGGCGCTGGCGGCGTCGCTTGCCGAGAGGCGGGATCTGCTGTGCGAGGGGTTGGAGCGGGCCGGATTCGACGTGACGGTGCCGCAGGGCACGTACTTCGTGGTGGCCGACGGCGCGCCGCTGGGGTTCGACGACGGTCACCAGCTGTGCCTGCGCCTGCCGGAGCAGGTCGGGGTGGTCGGCGTGCCGATCTCGGCGTTCTGCCGTACGGGGTCGACGGCGGCCGATGCGTTGCGCTCGCGGGTCCGGTTCACGTTCGTCAAGCGCCCGGAGGTGCTGCGCGACGGCGTGGAGCGGCTCGCCCGCCTGCGCCCGGCCTGAMTSAPRWRRVAAATGLLSDDGAIAQTIFAEMTVLANRTGAVNLGQGFPDVDGPDWIKEAAKEAIDAGRNQYAPGDGVPELRHAVADHQRRRYGLEVDPDTEVLATTGATEALTAAILALTGPGDEVVTLEPFYDSHAAAIAMAGATHVPVPLTPDLRLDAGALRAAATERTAMILVNTPHNPTGTVLTRAELEQVAAVARERDAVVLTDEVYEHLVYDDAVHVPVATLPGMAERTVTVSSSGKTFSLTGWKVGWLHGPAELVTAVRTVKQFMTYTSGAPFQPAIARALGDDEAPRALAASLAERRDLLCEGLERAGFDVTVPQGTYFVVADGAPLGFDDGHQLCLRLPEQVGVVGVPISAFCRTGSTAADALRSRVRFTFVKRPEVLRDGVERLARLRPAPGPT0020025_863DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020025-ybdL-K14287NANA
AK018_02110618argO_1COG1279Arginine exporter protein ArgOATGCTCACCTTCCTCGCCGGCCTCGGGCTCGGACTGTCCCTCATCGTCGCCATCGGGGCCCAGAACGCGTTCGTGCTGCGCCAGGGCGTGCGCCGCGAGCACGTCGGGCTCGTCGTCGTCGTGTGCGCCACCTCCGACGCCCTGCTCTACACCGCCGGCGCCGCCGGGCTCGGCGCCCTCGTCGAACGGCACCCCCTCGTCGTCGACGTCGCGCGCTGGGCGGGTGCCGCCGTCGTCCTCGGCTACGGGGCGCTCGCCGCACGCCGCGCCTGGCGCGGGGGAGAGGAGCTGGAGGCCGCCGGCGCCGCCGAGCTGCCCGACGCCGGCCGGCGCGTGCGCCCCGTGCTGCTCACCGCGCTCGCGCTCACCTGGCTCAACCCGCACGTCTACCTCGACACCGTCGTGCTGCAGGGCACGATCGCCGCGTCCTACGGGGCCGACCGGTGGCTCTTCACCGCCGGGGCGATCGTCTCGAGCGTGCTCTGGTTCGTCGGGCTCGGCTACGGCGCCCGCCTGCTCGCCCCCGTCCTGCGGAAGCCCGGAGCCTGGCGCGTGGTCGACGGCGTCATCGCGCTGATCATGCTCGCCGTGGCGGTCTCGCTCGTCGCCGGCGGCTGAMLTFLAGLGLGLSLIVAIGAQNAFVLRQGVRREHVGLVVVVCATSDALLYTAGAAGLGALVERHPLVVDVARWAGAAVVLGYGALAARRAWRGGEELEAAGAAELPDAGRRVRPVLLTALALTWLNPHVYLDTVVLQGTIAASYGADRWLFTAGAIVSSVLWFVGLGYGARLLAPVLRKPGAWRVVDGVIALIMLAVAVSLVAGGPGPT0020651_278DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020651-lysE|argO-K06895NANA
AK018_02111912COG0583putative HTH-type transcriptional regulatorTTGCGGTGGGAGTCCGGACAGCTCGAGGCCCTGGCGGCCGTGGTCGCCGAGGGGTCGTTCGACGCCGCGGCTCGTGCGCTGCACGTCACGCCGTCGGCCGTCAGCCAGCGGGTCCGCGCCCTGGAGAACGCTGCCGGCGCGGTCCTGGTGCAGCGCACCCGTCCGGTCGAGCCGACCGGTCCGGGACGCACCCTGCTGCGGCTGGCCCGCCAGGTGGACCTGCTCGGGGCGGAGGCCGCGGCGGAGATCGGGCCGCGTGACGCCGGCGACCGGCCGGTCACGGTCCCGCTGGGGGTCAACGCCGACTCGTTGGCGACCTGGTTGCTGCCCGCGCTGTCCGCCGTCGAGGGCGTCACCTTCGACCTGCACCTGGCCGACCAGGACCGCACCGTCGACCTCCTGCCGGCCGGGACCGTCATGGCCGCGGTGACCTCACGCCGCAGCCCCGTGCACGGCTGCACCTCGACGCCGCTCGGCATCACCCGGTACCGACCGGCGGCCTCCCCCGCCTTCGTCGCGCGCTGGTTCGCCGACGGCGTCACCCCGGCCGCGCTCGCCCGCGCCCCGATGGTGGTGTTCGCCCGGACGGACGACCTGCAGGACGCCTGGCTGCGCGACGTCGCGGCCGCGGCCGGGTGCGCCGTGCCCGACCCGCCGCGCCACCACGTGCCGTCCACGGCGGAGTTCCTGGCCGCCGTGGGCGCCGGTCTCGGCTGGGGCATGTGGGGGCCGCTGCCCGCGCCCGGCACCCGGTTCGAGGTGCTGGAACGGGCCGGTCAGGTCGAGATGCTGTCCGGGCAGACCGTGGACGTCCCGCTCCACCTGCAGCAGTGGCGCCTGCGTTCGGGGGTGCTGGACCGGGTCACCGTGGCCCTGCGGGACGAGGCGCGGCGGGCGCTGCCGCAGCGCTGAMRWESGQLEALAAVVAEGSFDAAARALHVTPSAVSQRVRALENAAGAVLVQRTRPVEPTGPGRTLLRLARQVDLLGAEAAAEIGPRDAGDRPVTVPLGVNADSLATWLLPALSAVEGVTFDLHLADQDRTVDLLPAGTVMAAVTSRRSPVHGCTSTPLGITRYRPAASPAFVARWFADGVTPAALARAPMVVFARTDDLQDAWLRDVAAAAGCAVPDPPRHHVPSTAEFLAAVGAGLGWGMWGPLPAPGTRFEVLERAGQVEMLSGQTVDVPLHLQQWRLRSGVLDRVTVALRDEARRALPQRNANANANANA
AK018_021121278tagU_5Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUGTGGAGAACGCCAACCCCCGGCACGCGGGACACCATGCCGGGCACCCCGTCGTGCGGTGGGTCGCGCTCGCCCTGACGGGCGTCCTGGCGTTCGTCGGGGTCGGCGCCGTCGGGGCCTACGTGGACCTGCAGTCCCAGATCGAGGTGTCCGACGTCGACGCGCTGCTGGGGCGGACCGATCCGCCCGAGGTGCAGGTCGAGGCGTCCGACGACGAGCTGGAGGACCCCACCGACCCGTTCGCCGGCGAGTCGTTGAACATCCTGGTCATGGGCACGGACTTCCGTGGCGAGGGCAACGCGGGGATCGCCGGCGGCGGGGACGAGTTCCACTCCGACACGACGTTGGTCGTGCACGTCAGCGGCGACCGCACCCGGATCGAGGGGGTCTCGATCCCGCGCGACTCCCTGGTGGACATCCCCTCCTGCCCGCGTCCCGACGGCAGCTCGACGTCCCCGCAGTCGAACGCGATGTTCAACACCGCGTTCGCCCTGGGTGGCGGACCGGAGCAGGACGTCACGGCCGCGGCGGCGTGCACCATCCTCACCGTCGAGGCGCTGACGGGCGTCACGATCGACGACCACGTGGTGGTGAAGATGAACGGGGTCGTCGACATCGTCGACGCGCTCGGCGGGGTGACGATGTGCCTGCCGGAGCCGGTGGTCGGCGACACCCGCTACAGCAACCTCGACCTCCCGGCCGGCGAGCAGGTGCTCGACGGCGAGACCTCCATCCAGTTCCTGCGGGTGCGCAAGGGCGAGGGGATGGGGCTCGAGCTCGGCAGCGACCTGAAGCGGATCGAGCGTCAGCAGGCGTTCGTCGACTCGATGCTGCGCGAGGTGCTCGCGAAGAACATCGTCACGGACACGCCGAAGCTGTACCGGATGGTCCGCTCCGCGCTCGGCGCCATGTCGACGAGCCCGGAGCTGGCCAGCCCCACGGCGCTCGCGGGTCTGGCCTGGAGCCTGCGCAACGTGGACCCTGCCGACATCGTGTTCGAGTCCGTCCCGGTGGTCGAGGCCCCCTATGACGCCAACCGGGTGGTCTGGACCTCCGCCGCCGACGAGCTCTGGGAGAAGCTGGCCGCCGACGAGTCCCTCGTGGACGAGCCCGAGCCCAGCGCGTCGCCCTCGACGGGTTCCTTCGGTTCCGGCGGCACGGACGACGGCGGCACGGACGACGGCGGCACGGACGACGGCGGCGGGTCGGGCGGCACGGACGGCGACCCCTCGCCCGAGCCGTCGCCCAGCGCGTCGGTGCTGCCGGGCGTGTGCGCCTGAMENANPRHAGHHAGHPVVRWVALALTGVLAFVGVGAVGAYVDLQSQIEVSDVDALLGRTDPPEVQVEASDDELEDPTDPFAGESLNILVMGTDFRGEGNAGIAGGGDEFHSDTTLVVHVSGDRTRIEGVSIPRDSLVDIPSCPRPDGSSTSPQSNAMFNTAFALGGGPEQDVTAAAACTILTVEALTGVTIDDHVVVKMNGVVDIVDALGGVTMCLPEPVVGDTRYSNLDLPAGEQVLDGETSIQFLRVRKGEGMGLELGSDLKRIERQQAFVDSMLREVLAKNIVTDTPKLYRMVRSALGAMSTSPELASPTALAGLAWSLRNVDPADIVFESVPVVEAPYDANRVVWTSAADELWEKLAADESLVDEPEPSASPSTGSFGSGGTDDGGTDDGGTDDGGGSGGTDGDPSPEPSPSASVLPGVCANANANANANA
AK018_021131239bcr_1Bicyclomycin resistance proteinATGTGGGCCATGCCCGAGAAGACCGCCGCACCCCAGCGCGCCCGCTCGTCGTTCCGCTGGGTCGTCATGCTCGGCGCGCTCGCGGCGATCCCGGCGTTCACGGTCGACATGTACCTGCCGTCGCTGCCCGATGTGGCGGCCGACCTCGGGTCCACCTCGTCCTTCGCCGCGCTCTCCGTGTCGGTCATGCTCGTCGGCGGGGCCGCCGGACAGCTCGTCATCGGCCCGCTGTCCGACCGCTACGGACGTCGTCGGCCGCTGATGATCGGGCTCGGGATGCACGTCGTCATCTCCCTGCTCTGCGCCCTGGCGCCCAACATGACCGTCCTCGTCGGGCTGCGGCTCCTGCAAGGGTTCTTCAACGCGGCGTGCGGCGTGGCGGCCATGGCCATCGTCCGCGACCGGTTCGTCGGGTCCGAGGCCGCGCGCATCCTGTCGCGACTCATGCTGATCATCGGCATCGCCCCGCTGCTCGCCCCGACCTTCGGGTCGGCCGTCGCCGAGGTCGCCTCGTGGCGCTGGGTGTTCGGCTTCCTCGCCCTCATCGGTGTCACCATGGGCGTGATCGTCTGGCGGTTCCTCCCCGAGACCCACCCCGTGCAGCGCCGGGCCACGGGAGGAGCCCGGTCCGTCGCCGGCGGCTACGCGCACCTCCTGCGCGACCGGCACTTCATCGCGCTCGCGCTGCTCCCGGGGCTCGGCATGGCCGTCCTGATGAGCTACGTCGTGACCTCACCCTTCGTGTTCCAGGAGGTCTACGGGCTCAGCCACGGGCAGTTCTCCCTGCTGTTCGCCCTCAACGGCGTCGGCCTCGTGGCCTCGGCGCAGCTCAACGCCGCGCTGGTCCGTCGCGTGGCCCCGATCCGCATCCTGCGCACCGCGCTCGTGCTGCAGGGGTTCTTCGCCGTCGTCCTGCTCGTCGTCGCCGTCACCGAGGCCGGGGGCCTGGTGGGGCTGCTCGTCGCCCTGTGGTGCGTCCTGGCCTTCACCGGGCTCGTCCCGGCGAACGCCTCCGCGATCGCCCTGTCCCGGCACGGTGAGCGCGCCGGGACCGCCGCGGCGGTCATCGGCGCCGTGCAGTCGGGGGTCGCCGGCCTCGTCTCGCCGTTGGCCGGAGCCCTCGGCGGCGACGCCGTGGCCATGACCGCCGTCATGCTCGGTGCCTGGACCTGCGCGTTCCTGGTCCTGGCGCTGGCCACGCCGGCCTTCCGACGCGGCGGTTGGGTCCAGCTCGCCTGAMWAMPEKTAAPQRARSSFRWVVMLGALAAIPAFTVDMYLPSLPDVAADLGSTSSFAALSVSVMLVGGAAGQLVIGPLSDRYGRRRPLMIGLGMHVVISLLCALAPNMTVLVGLRLLQGFFNAACGVAAMAIVRDRFVGSEAARILSRLMLIIGIAPLLAPTFGSAVAEVASWRWVFGFLALIGVTMGVIVWRFLPETHPVQRRATGGARSVAGGYAHLLRDRHFIALALLPGLGMAVLMSYVVTSPFVFQEVYGLSHGQFSLLFALNGVGLVASAQLNAALVRRVAPIRILRTALVLQGFFAVVLLVVAVTEAGGLVGLLVALWCVLAFTGLVPANASAIALSRHGERAGTAAAVIGAVQSGVAGLVSPLAGALGGDAVAMTAVMLGAWTCAFLVLALATPAFRRGGWVQLAPGPT0029005_1882DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
AK018_02114783yedK_1COG2135SOS response-associated protein YedKATGTGCGGCAGGTACGCCTCCTTCACCGACGCCCAGTCACTGGCCGACGACCTCGCGCTCGCCGAGGTCGCCGAGGACGCCCGGCTGCTCGGGCCCCGCTGGAACGTCGCGCCCACGGACGACGTGCGGATCGTCGTCGAACGTCCGCGCCGGGAGCCCGCGCCCGACGGCGGCACCACCGCGGGCGAGATCACGCGCTCGATGCAGGTGGCCCGGTGGGGCCTGGTCCCGTCCTGGGCCAAGGACCCGGGGATCGGTCCGCGGATGATCAACGCCCGCCGCGAGACCCTGCTCGAGAAGTCGGCGTTCGCGCGCCCGCTCACCGTGCGGCGGTGCCTCGTCCCGGCCGACGGGTACTACGAGTGGCGCAGGCTCGCGGCGACTCCCGCAGTCCGCAAGGTGCCCAAGCAGGCGTACTGGATCCACCCCGACCCCGGCCAGGTCACCGCCTTCGCGGGCCTCTACGAGCTCTGGCGCGACCCGGCCCGGCCGGACGGCGACCCGGCCCGCTGGCTCGTCTCGACCACGATCGTCACCACGGCGGCCTCCGGCGGCCTGGAACGGATCCACGACCGGATGCCCGTCAGCCTGCCGCGCGAGTCCTGGGACGCCTGGCTCGACCCCGCCGTCGGGGCGGAGCAGGCCCACGCCCTGCTCGACGAGCCGGTCGCACCTCTGCACACCCGGCCCGTCGGACCACGGGTCGGCAACGTCCGGTTCGACGACCCGGCGCTGCTCGAGCCGGACGACGACCCCCGCGACCCCGAGCTCGTGCTCCTGTGAMCGRYASFTDAQSLADDLALAEVAEDARLLGPRWNVAPTDDVRIVVERPRREPAPDGGTTAGEITRSMQVARWGLVPSWAKDPGIGPRMINARRETLLEKSAFARPLTVRRCLVPADGYYEWRRLAATPAVRKVPKQAYWIHPDPGQVTAFAGLYELWRDPARPDGDPARWLVSTTIVTTAASGGLERIHDRMPVSLPRESWDAWLDPAVGAEQAHALLDEPVAPLHTRPVGPRVGNVRFDDPALLEPDDDPRDPELVLLNANANANANA
AK018_021151065putative proteinGTGACGAGCCCGGAACCCCACGACGCCAGCAGGACCGACCGCGACGGCGCCGCCGTCGAGACGTCGGCCGGTGCCAGTACGGCCGGCCGGATCGACGAGGCGATCCTCGGTGGCCCGCGCACCTACACGTTCGACGACCTGGTCGCCGCGACGGGCCTGTCGGCCGAGTTCGTCGAGAACTACTGGCGCTGGCTGGGGCTGCCCGTCACGCGCACCGCGGAGGCGCGGTTCACCCGCGCCGACATGGAGTCGCTGCGGGAGATCGGCGCGCTGATCGACGACGGCCAGCTCGACGAGCAGGCGCAGATGACGCTGATCCGTTCCCTGGGGCACACCTCGGACCGGCTCGCGCTGTGGCAGGTGGAGGCGTTCGTCGAGCACCTCGGACGCCGCTTCGAGCTCGACGACGTCAGCGCCCGCCTGGCGGCCCTGGACCGCATCCCGGGTTTCGCCGACGTCCTGGCCCGGCAGCTCGAGCACGCGTGGCGCCGCCAGCTCGCGGCGCTGATGGGCCGGTTCGCCACGGAGTTCGCCGGGGCGGACGGTGCGGGCACCTCGGGCGACCAGCTGCCGCTGCGGCGTGCGATCGGGTTCGCCGACATCGTGTCGTTCACCAAGCGCACCGCCGGGCTCGGTTCGCAGGAGCTCGCCGAGTACGTCCAGCTCTTCGAGTCGCGGGCGCGGGACGTCATCACCGAGGCCGGCGGCCGGGTGGTCAAGACCATCGGTGACGCCGTGCTGTTCGTCGCCGACGACGTCGTCACGGGCGCGGAGTGCGCCCTCGGGCTGGCGGCGCCGCACGCGACCGAGGAGGAGATCCCGGTACGGGTCGGGTTCGTCTGGGGCCGGGTCCTGTCCCGGTTCGGGGACGTGTTCGGCTCCGACGTGAACCTGGCGTCGCGGATCACCGAGCTGGCCGAGCCGGCGCAGGTGCTCGTGGACCCGCCGACGGCCGCGCTGCTGAGCTCGTCGAAGCGGTACGCGCTCACGGCGCAGGCGCCGCAGGCGGTGCAGGGGCTGGGGGAGATCACGCCGGTGCGCCTGCAGCGCGCCTACACCGGATGAMTSPEPHDASRTDRDGAAVETSAGASTAGRIDEAILGGPRTYTFDDLVAATGLSAEFVENYWRWLGLPVTRTAEARFTRADMESLREIGALIDDGQLDEQAQMTLIRSLGHTSDRLALWQVEAFVEHLGRRFELDDVSARLAALDRIPGFADVLARQLEHAWRRQLAALMGRFATEFAGADGAGTSGDQLPLRRAIGFADIVSFTKRTAGLGSQELAEYVQLFESRARDVITEAGGRVVKTIGDAVLFVADDVVTGAECALGLAAPHATEEEIPVRVGFVWGRVLSRFGDVFGSDVNLASRITELAEPAQVLVDPPTAALLSSSKRYALTAQAPQAVQGLGEITPVRLQRAYTGPGPT0021560_5988DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021560-cyaB|gidA-K01768NANA
AK018_02116861birA_1COG0340Bifunctional ligase/repressor BirAATGATCCGTCCCGCCCTGGACGCCGCGTCGTTGCGTCCCGTCCTGCTCGCGCCCGCCGGACCGCTCGCCGCGCTCGACGTGGTCGCCGAGACCGCCTCGACGCAGGCCGACCTGGTGGAGCGTGCGCGTTCCGGGCGGGCGGACCCGGCGGTGCTGGTCGCCGAGCGTCAGACGGCCGGCCGGGGTCGCGCCGGGCGGTCGTGGGAGGCGCCGGCGCGGTCGGCGTTGACCGTGTCGTTTCTGCTGCGTCCGCACGTCCCGTCGGCGGCGCTGGGCTGGCTTCCCCTCCTGGCGGGGCTCGCCGTGGTGCGCACGCTCGGCCCGGGCGGCGTCCCGGCGCGGCTGAAGTGGCCGAACGACGTCCTGCTGCCCGGGGGGTCCGACGTCGACGGCTACGGGCGGTACCGGAAGGTCGCCGGCGTGCTCGCCGAGGTGGTGCCCGACGGCGGCGAGGTGCCGGCGGTGGTGCTCGGCGTCGGCCTGAACGTGGACCAGGAGCCCGGTGAGCTGCCGGTGCCGACGGCGACCTCGTTGCGCCTGGTCGGGGGTGCGGGGATGGACCGCAGCGAGCTGCTCGTCGCGCTCACCGGTGAGCTGCTCTCGACGCTCGCGCAGTGGGAGGCGGCCGACGGGGACGCGGTGGAGGCCGGCCTGGCGGGGGAGTACGCCGAGGTTTCGGCGACGCTCGGCTCGACGGTGCGGGTCGAGCTCGCGGGCGGCTCCGGGGTGGTGGTCGGCGAGGCGTTGCGGGTCGCCGACGACGGCGCGCTGGTGGTCGGCACGCCGGACGGGGAGCGGCACGTCTCGGCGGGCGACGTGCACCACGTGCGACGCCGGGACCCCGGCGTTCCCGCCCGGTGAMIRPALDAASLRPVLLAPAGPLAALDVVAETASTQADLVERARSGRADPAVLVAERQTAGRGRAGRSWEAPARSALTVSFLLRPHVPSAALGWLPLLAGLAVVRTLGPGGVPARLKWPNDVLLPGGSDVDGYGRYRKVAGVLAEVVPDGGEVPAVVLGVGLNVDQEPGELPVPTATSLRLVGGAGMDRSELLVALTGELLSTLAQWEAADGDAVEAGLAGEYAEVSATLGSTVRVELAGGSGVVVGEALRVADDGALVVGTPDGERHVSAGDVHHVRRRDPGVPARPGPT0022055_2585DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022055-birA|bpr-K03524NANA
AK018_021171578accD5_1COG4799putative propionyl-CoA carboxylase beta chain 5GTGAAGACCACCGCCGAGAAGCTCGCCGAGCTCGACCGCCGCCGCGCCGCCGCGATCACCGCGCCGGAGGAGACCGCACGCACCAAGCAGCACGCGCGAGGCAAGAAGACCGCCCGCGAGCGCATCGAGGCCCTGCTGGACGAGGGCACGTTCGTCGAGCTGGACGCGCTGGCGACGCACCGCAGCCGCAACTTCGGCATGGACGCCAAGCAGCTGCCGGGCGACGGCGTCGTGGTCGGCCACGGCACCGTGGACGGTCGCCAGGTGTGCGTGTTCTCCCAGGACTTCACGGTGTTCGGCGGGTCGCTGGGCGAGGTGCACGGCGAGAAGATCGCCAAGGTGCAGGACCTGGCGCTGCGCACCGGCGTGCCGATCGTCGGCATCTCCGACGGCGGCGGGGCGCGCATCCAGGAGGGTGTGGCCGCGCTGACGCAGTTCGCCGAGATGTTCCGGCGCAACGTGGCCGCCTCGGGCGTCATCCCGCAGATCTCCCTGATCCTCGGGCCGAGCGCGGGCGGCGCCGTCTACTCCCCCGCCCTGACGGACTTCGTCGTCATGGCGGACAAGACGTCCAACATGTTCATCACCGGCCCGGACGTCATCAAGACCGTCACCGGCGAGGACGTGGACTTCGAGACGCTCGGCGGCGGCTACACGCACAACGCCACCTCCGGCGTCGCGCACTACCTCGGCGAGGACGAGGACGACGCCATCGACTACGTGCGGCACCTGATCGGCTACCTGCCGCAGAACAACTTGTCCGACGCGCCGACGTACCCGCCCGAGGAGGAGGGTGCGCTGGAGGTCACGCCCGACGACGAGACGCTCGACACGATCGTGCCCGACGGCGACAACCAGCCCTACGACATGCGCGCCGTGGTCGAGACGGTGCTGGACCCCGACTCGTTCCTCGAGGTCCAGCCGCTGTACGCGCAGAACGTGCTGGTCGGGTTCGGGCACGTCGAGGGCCAGAGCGTCGGCGTCATCGCGAACCAGCCGCAGTCGATGGCCGGCACCCTGGACATCGCCGCCTCGGAGAAGGCCGCGCGGTTCGTGCGCACCTGCGACGCGTTCAACATCCCCGTGCTGACGTTCGTCGACGTGCCGGGCTTCCTGCCCGGCGTCGGGCAGGAGCACGACGGCATCATCCGCCGCGGCGCCAAGCTCATCTACGCCTACGCCGAGGCCACCGTCCCGCTGGTCACCGTCATCACCCGCAAGGCGTACGGCGGCGCGTACATCGTCATGGGCTCCAAGCAGCTCGGCGCGGACGTCAACCTCGCGTGGCCGACGGCGCAGGTCGCGGTCATGGGTGCCTCCGGCGCCGTGAACATCCTGCACCGCCGGGCGCTGAAGGCCGCCGGCGAGGACGGCCAGGACGTCGAGGCCGAGCGCGGCCGCCTCACCGACGAGTACACCGAGGCGATCGTGAACCCGTGGGGCGCGGCCGAGCGCGGGTACGTCGACGCCGTCATCCGCCCGTCGGAGACCCGCGTCGAGATCGTCCGGGCACTGCGTGCGCTGCGGACCAAGCGGGCGAGCCTGCCGCCGAAGAAGCACGGGAACATCCCGCTGTGAMKTTAEKLAELDRRRAAAITAPEETARTKQHARGKKTARERIEALLDEGTFVELDALATHRSRNFGMDAKQLPGDGVVVGHGTVDGRQVCVFSQDFTVFGGSLGEVHGEKIAKVQDLALRTGVPIVGISDGGGARIQEGVAALTQFAEMFRRNVAASGVIPQISLILGPSAGGAVYSPALTDFVVMADKTSNMFITGPDVIKTVTGEDVDFETLGGGYTHNATSGVAHYLGEDEDDAIDYVRHLIGYLPQNNLSDAPTYPPEEEGALEVTPDDETLDTIVPDGDNQPYDMRAVVETVLDPDSFLEVQPLYAQNVLVGFGHVEGQSVGVIANQPQSMAGTLDIAASEKAARFVRTCDAFNIPVLTFVDVPGFLPGVGQEHDGIIRRGAKLIYAYAEATVPLVTVITRKAYGGAYIVMGSKQLGADVNLAWPTAQVAVMGASGAVNILHRRALKAAGEDGQDVEAERGRLTDEYTEAIVNPWGAAERGYVDAVIRPSETRVEIVRALRALRTKRASLPPKKHGNIPLPGPT0001712_887DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_PROPIONATE|PROPANOATE_UTILIZATION,PGPT0001712-pccB-K01966NANA
AK018_02118537hypothetical proteinATGAGCCACGAGGACGCGACCCACGGCCCGGCTCCGCTGGGCGACGTCGACCCCGATCCGATGCATCGTGCCGTCGACTCCCTGGCCGCCGCGCTGCACGAGTACGTCGACGCGGCCGTCGGGGTGCGCGCGGAGTTCGGCGCGACTGAGGCCGACGAGGACCCCCGCATCCTCGCGCTCGAGCACCGGGTGGGCACGCTCAACGGCACCCTCTTCGACGCGCTGCACGACGCGCTCGGCATGCACCCCGACCTGACGACGTCGGTCTGGGAGCCGGGCGCGGGGCACGACGAGGCGGCGCACCAGGACCTGCCCGAGGGCACGATCCGCGCCGAGGCCTTCTACCTCGGCTTCGTCGTGGCGGACCCGCCGGCGGGTGCGTCGATGACGCTCGACGGCGTCATCGAGATGCTGGACGAGGCGGGCGAGCAGGCGGCGTCCCGGCTCGCCGAGGGCGGGTACCAGGTCCTCGAGTGGGCGGCCTCGCGCGGCATGGCGCCGGGGTTCGGCGACGACAGCGACGAGGACGACGAGTGAMSHEDATHGPAPLGDVDPDPMHRAVDSLAAALHEYVDAAVGVRAEFGATEADEDPRILALEHRVGTLNGTLFDALHDALGMHPDLTTSVWEPGAGHDEAAHQDLPEGTIRAEAFYLGFVVADPPAGASMTLDGVIEMLDEAGEQAASRLAEGGYQVLEWAASRGMAPGFGDDSDEDDENANANANANA
AK018_02119240hypothetical proteinATGACCCCGCAGGTACGCGTGGTGCGCGGAGCACCGGACGACGTCGAGGTCGCCGCCCTGGTGGCGGGGCTGGCGGCCGTGTCGGCCCGGGAGGACCTGCCCGACGACGTCGCACCGGTCGACGAGTGGACCAACCGCGCCCGAAACCTGCGCGGCAACGGGGCGGCCACGGCCCGCAGCTTCGGCGGCCGCGCCGGCCGCCACAACATCGACTCCTGGCGCTGGAGCCTGCGCTCGTGAMTPQVRVVRGAPDDVEVAALVAGLAAVSAREDLPDDVAPVDEWTNRARNLRGNGAATARSFGGRAGRHNIDSWRWSLRSNANANANANA
AK018_02120558hypothetical proteinGTGAGCGTGCGCTGGCAGCAGGTCCCCACGGCGTCGGACGTCGAGGCCCCCCTGGGCGAGCTGCCCGCGCCACGCCGGCCCGGCTGGCTGCGCCGCTGGCTGTGGGCCCCGGCCGTGGTCGCGACGATCGGCGTCTACGTGACGCAGCGGCTGGTCGAGGACCCCTCCGGCGAGCTGGAGATGTGGCTGATGCTCGCCCTGCTCGCCGGGCTCATGGTGACGGCCGTGGCGGCGCTGGTGCGCTACCGGGACGACCAGCGGTTCGCCCACGAGTCGCGCAGCGTCGAGGCACTGCGTCGGGACGCGCGTGCGACCACCGGATCGGTGACCGTGTCCGAGCGACCGGTGGGCGACGGCGTGATGCTGCGCGGGCTGCTCACGTACCCGCGCGGGGACGAGACCGCCGAGGAGACCTGGTCGCTGCTGGTGGCCGACGGCGACGACTCGGGTCCGCGGCCCCACGACCCGGTGGCCGTCTGGTGGGCCCCCGGGTCGGACGACGTCGTGGCGCGCTACCACCGCGGCTGGGCGGACGAGCTGCGCCGTCGGACCGGCTGAMSVRWQQVPTASDVEAPLGELPAPRRPGWLRRWLWAPAVVATIGVYVTQRLVEDPSGELEMWLMLALLAGLMVTAVAALVRYRDDQRFAHESRSVEALRRDARATTGSVTVSERPVGDGVMLRGLLTYPRGDETAEETWSLLVADGDDSGPRPHDPVAVWWAPGSDDVVARYHRGWADELRRRTGNANANANANA
AK018_02121219hypothetical proteinATGCGCGACCTCGACTGGGACGGCTGCCCGAACCTTCGTGACCTGGGAGGGCTTCCCACCCCGCGGTCCGCGACGGGGCTCACCCGGACGGGGCGCCTGGCCCGGGGACCGCGTCGCGAGCAGCTCACGGGCCCCGGCTGGTCGGCGGCGCGCTCCTGGGGCCTGACGACCGTCGTCGACCTGCGGTGCGCGAGCGAGGTCGGCCCCCCGTCCGGGTGAMRDLDWDGCPNLRDLGGLPTPRSATGLTRTGRLARGPRREQLTGPGWSAARSWGLTTVVDLRCASEVGPPSGPGPT0014530_3174DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
AK018_021221755hypothetical proteinGTGACCCACGACACCTCCGGCGCCCCCACCCCGGGCGCCCCCGCCGGCTCCCCCCGCACCCCCACTCCCCTGGACGCCGCCGCCGACGCCTACGTCGTCCGTGCCGCCGCGCTCGACCCGATCGCCGCGACCTTCATGGGTCTGCCCGGTCATGATCACGAGCTGCCGGACCTGTCGCCGGCGGGCCACGAGGCACGCGCCGACCTGGACCGGGCCCTGCTGCGCGAGCTGGACGAGCTGGAGGCGTCGGGCCGGGCGCCCGTCGACGACGTCGACCGGGTCACGCTGGCGGCGATGCGCGAACGGGTCGGCCTGGCGCTCGAGCTCCACGAGGCCGGGGAGCCGCAGGCCAGCCTGAACAACATCGAGTCGCCGGTGCAGCAGCTGCGCGACCTGTTCGACGTGGTCCCCACCGGCACCGTGGAGGCGTGGGAGAACGTCGCCGCGCGCCTGAACGCCGTCCCTGACGCCCTGGCCGGGTACCGCGAGTCCCTGACCCTCAGCGCCGAGCGGGGCCGAGTCGCCGCGATCCGCCAGGTGCGCGCAGCGGTGGGCCAGGCCCGGGACCTCGCCGGCCCGGAGTCGACGTTCACCGCGCTCGTGACCGGTGAGGAGGCCGGCCGCGTGCTCGACGACTCGTCGGCGTGCAGCCTGGTGCGCGCCGAGCTGGAGCGGGGCGCGACGGCGGCCCGGGCGGCCTACGGCGAGCTGGCGGACTTCCTGGAGCGGGAGCTCGCCCCGCGGGCCCCCGAGGACGACGCGGTCGGCCGCGAGCGCTACGCCCTGTTCTCGCGCGAGTTCCTCGGCGCGGAGGTCGACCTGGACGAGACCTACGAGTGGGGGCTGGCGGAGCTGGCCCGGATCGTGGCCGAGCAGGAGGAGGTGGCCCGCACCATCGCGGGTGACGGCGCCACCGTCCGGCAGGCCGCGGCGGCCCTCGACGCCGACGACGCCCGCCGCCTGCACGGCACGGAGGCGTTGCGCGCGTGGATGCAGACGACCGCGGACCGCGCCGTCGAGGACCTGGCCGGTACGCACTTCGACATCTCCGGGCCGGTGCGCACCATCGAGTGCCGGATCGCCCCGACCCAGACGGGCGGCATCTACTACACGCCGCCGAGCGACGACTTCTCCCGGCCGGGTCGCATGTGGTGGTCGGTGCCGGCGGGGGTCTCGGAGTTCACGACGTGGCGCGAGACGACGACGGTCTACCACGAGGGCGTCCCGGGCCATCACCTGCAGTGCGCGGCAGCCGTCGCAGCGCGGGACACGCTGAACAGCTGGCGCCGGCTGGCGTGCTGGGTGTCCGGGCACGGCGAGGGGTGGGCGCTGTACGCGGAGCGCCTCATGGCCGACCTGGGCCACCTGGACGACCCGGGTGACCGGTTCGGCATGCTGGACGCCCAGCGGCTGCGCGCGGCACGCGTCGTCCTGGACCTGGGTGTCCACCTGGGCAAGCCGTGCCCCGCCGAGTGGGGAGGCGGCACGTGGGACGCGGACAAGGCGTGGGAGTTCCTGCGCGCGAACGCGGACATGGACGAGTCGTTCCTGCGCTTCGAGCTGGAGCGGTACCTCGGCTGGCCGGGCCAGGCGCCGTCGTACAAGGTGGGCCAGCGGCTGTGGGAGCAGGCTCGCGACGACGCGCGGGCGGCCGCGGAGGCTCGCGGCGAGGAGTTCGACCTGCGCGGCTTCCACGCGCGCGCCCTGGCCCTGGGTTCGGTCGGCCTGGACGTGCTGCGCTCGGCGCTCGCCTGAMTHDTSGAPTPGAPAGSPRTPTPLDAAADAYVVRAAALDPIAATFMGLPGHDHELPDLSPAGHEARADLDRALLRELDELEASGRAPVDDVDRVTLAAMRERVGLALELHEAGEPQASLNNIESPVQQLRDLFDVVPTGTVEAWENVAARLNAVPDALAGYRESLTLSAERGRVAAIRQVRAAVGQARDLAGPESTFTALVTGEEAGRVLDDSSACSLVRAELERGATAARAAYGELADFLERELAPRAPEDDAVGRERYALFSREFLGAEVDLDETYEWGLAELARIVAEQEEVARTIAGDGATVRQAAAALDADDARRLHGTEALRAWMQTTADRAVEDLAGTHFDISGPVRTIECRIAPTQTGGIYYTPPSDDFSRPGRMWWSVPAGVSEFTTWRETTTVYHEGVPGHHLQCAAAVAARDTLNSWRRLACWVSGHGEGWALYAERLMADLGHLDDPGDRFGMLDAQRLRAARVVLDLGVHLGKPCPAEWGGGTWDADKAWEFLRANADMDESFLRFELERYLGWPGQAPSYKVGQRLWEQARDDARAAAEARGEEFDLRGFHARALALGSVGLDVLRSALANANANANANA
AK018_02123921hypothetical proteinGTGCAGGGTGTCGTCACCGGATTCGCGATCATCGGCGTCGTCATCGTCGCCGGTTACGTCGCGGCTCGGCTGCGGATCGGAGGGCCGGACGCCCGCGAGGCGCTGAACCGGGTCGGGTTCTTCGTGGCGTCCCCGGCGCTGCTGTTCACGGTGGTGTCCGACGCCGATCTGGGACGGCTGCTGGGCGCCCCCTTGCTGGTGCAGCTCGTCGCGGCGGCGACGACGGCCGCCGTCTTCGTGGTCGTGAACCTGCTGTGGTGGCGCCTGCGGGTGCCGGAGGCCACGATCGGTGCGCTGGGGGCCGGGTACGTCAACGCGGGCAACATCGGCCTGCCGGTGGCGGTGTACGTCATCGGGGACGCGACGGCGGTGGTGCCGGTGATCGGCCTGCAGCTGCTGGTCGTGTCGCCGCTGGTCCTGCTGCTGCTGGACTCGGCGACGAGCCGCAAGGTGTCGTTCGGGTTCGTGGTCAGCCAGCCGGTGCGCAACCCGATCATCCTCGGCGCGCTGGCCGGGGCGGCCGTCTCGCTGACGGGGGTCACGGTGCCGGACGTGGTGCTGGCCCCGCTGGAGATCCTGGGGGGTGCGGCGGTGCCGATGATCCTGCTGGCGTTCGGCATGTCGCTGCACGGCTCGCGGCCGCTGCGCGGCGAGGAGGGCCGGGCTCCCGTGGTCGTGGCCACACTGCTCAAGGCGCTGGTGATGCCGGCGGTCGCCTTCGTCGTCGCCCGCTACGGGTTCGGGCTGGACGACGCGGCGGTCGCCACCGCGGTGACGCTCGCGGCGCTGCCCACGGCGCAGAACATCTACAACTACGCCGCCCGGTTCCGCCGGGGCGAGGTGCTGGCCCGGGACACGGTGCTGATGACCACGCTGGCCTCTCCCGGGGTGATGATCGTCGCGGCGGCGCTGCTGACCTGAMQGVVTGFAIIGVVIVAGYVAARLRIGGPDAREALNRVGFFVASPALLFTVVSDADLGRLLGAPLLVQLVAAATTAAVFVVVNLLWWRLRVPEATIGALGAGYVNAGNIGLPVAVYVIGDATAVVPVIGLQLLVVSPLVLLLLDSATSRKVSFGFVVSQPVRNPIILGALAGAAVSLTGVTVPDVVLAPLEILGGAAVPMILLAFGMSLHGSRPLRGEEGRAPVVVATLLKALVMPAVAFVVARYGFGLDDAAVATAVTLAALPTAQNIYNYAARFRRGEVLARDTVLMTTLASPGVMIVAAALLTPGPT0001720_2511DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0001720-mdcF-K13936NANA
AK018_02124681COG0424Nucleoside triphosphate pyrophosphataseGTGCCGGACGTGACGCGACTCGTGCTGGCCAGCCAGTCCCCCGCCCGCCTGTCGACGCTGCGCGCGGCGGGTGTCGAGCCGACGGTGATCGTCAGCGCCGTCGACGAGGACGCCGTCCTGGCGGCGGCCCGCGAGCGGTTCCCGGACCTGGCGCCGTCGGACGCCGTGCTCACCCTGGCCCAGGCGAAGGCGGAAGCCGTCGCGCGCCGCGTCGAGGACGGCGGGCCGGACGCGGCCGGGGCGTCGTCGGCCCTGGTGCTGGGCTGCGACTCGATGCTGGAGATCGACGGCGAGGTGGTCGGCAAGCCCACCGACGCCGACGAGGCCCGCGACCGCTGGCGGCGCATGCGCGGACGCAGCGGCGTGCTGCACAGCGGGCACTGGCTGGTGGACGTGCGCGAGCCCGACGACGGCGGCACCGGCGCGACGCTGGGTGCCACGAGCTCCACCACCGTGCACTTCGCCGACCTCGACGACGACGAGATCGACGCCTACGTCGCCACGGGCGAGCCGCTGCACGTGGCGGGCGCGTTCACCATCGACGGCCTGGGCGGTCCGTACGTGGAGCGCCTCGAGGGCGACCACCACGGCGTCGTGGGGGTGTCGCTCCCGCTCCTGCGCGAGCTGCTCGCAGAGATCGACGTCCCGTGGCGTGCGCTGCGCAGCACGCCCGCCGGCTGAMPDVTRLVLASQSPARLSTLRAAGVEPTVIVSAVDEDAVLAAARERFPDLAPSDAVLTLAQAKAEAVARRVEDGGPDAAGASSALVLGCDSMLEIDGEVVGKPTDADEARDRWRRMRGRSGVLHSGHWLVDVREPDDGGTGATLGATSSTTVHFADLDDDEIDAYVATGEPLHVAGAFTIDGLGGPYVERLEGDHHGVVGVSLPLLRELLAEIDVPWRALRSTPAGNANANANANA
AK018_021251812carB_2Carbamoyl-phosphate synthase large chainGTGCCCTCCATCAGCAAGGTCCTCGTCGCCAACCGTGGTGAGATCGCCGTCCGCATCGCCCGCGCCTGCACCGACGCCGGTCTCACCTCCGTCGCCGTCTACGCCGACCCGGACCGTCAGGCCCTGCACGTGCGCCTCGCCGACGAGGCCTTCGCGCTGGGCGGCGACCGCGCGGCCGACACCTACCTCGACGTCGACAAGCTCCTGGACGTCGCCCGCCGCTCCGGTGCCGACGCCGTCCACCCCGGGTACGGGTTCCTCTCGGAGAACGCCGCGTTCGCCCAGGCCGTGATCGACGCCGGCCTGACGTGGATCGGACCGCCCCCGGCGGCGATCGAGGCGCTCGGCGACAAGGTCTCCGCCCGGCACATCGCCCAGCGCGCGGGTGCGCCGCTGGTGCCCGGCACGAAGGATCCGGTGGCCGACGCCGCGGAGGTCCGCGCGTTCGCCGCGGAGCACGGGCTGCCCATCGCCATCAAGGCCGCGTTCGGTGGCGGCGGACGCGGTCTGAAGGTGGCCCGCACGCACGAGGAGATCGACGAGCTGTACGACTCGGCGGTCCGCGAGGCCGTCGCGGCGTTCGGTCGCGGCGAGTGCTTCGTGGAGCGCTACCTGGACCGGCCCCGGCACGTCGAGACCCAGTGCCTGGCCGACACCCACGGCAACGTCGTGGTCGTCTCCACCCGCGACTGCTCCCTGCAGCGCCGCCACCAGAAGCTGGTCGAGGAGGCGCCCGCCCCGTTCCTGTCCGCCGAGCAGGAGGCGGAGCTGGACCGCGCCTCGAGGGCGATCCTGGCCGAGGCCGGGTACGTCGGTGCCGGCACCTGCGAGTTCCTCGTGGGCACCGACGGCACGCTGTCGTTCCTCGAGGTCAACACCCGCCTGCAGGTGGAGCACCCCGTGACCGAGGAGGTCACGGGCATCGACCTGGTGCGCGAGCAGCTGCGCATCGCCGCCGGGGAGGAGCTGGGCTACGAATCCACGACCGTGCGGGGCCACAGCCTGGAGTTCCGCATCAACGGCGAGGACCCGGCCGCAGGGTTCCTGCCCGCGCCCGGCACGGTCTCGACGCTGCGATGGCCCTCGGGCCCCGGTGTGCGCGTCGACACCGGCGTGGTCGAGGGTGACAGCATCTCCGGGCTGTTCGACTCGATGATCGCCAAGCTCATCGTCACGGGTGCGACCCGGACCCAGGCGGTCCAGCGGGCCCGCCGTGCCCTGCGGGAGCTCGAGGTGACCGGGATCCCCACCGTCGTGCCGTTCCACCGGGCCGTGCTCGAGGCCGAGGCGTTCGTGCCGGCCGACGGCGAGGCCGCCACCGCCGCGGACTTCGGCGTGCACACGCGCTGGATCGAGACCGAGTTCACCGACGAGCTGCGTGCCCTGGCCCCGGCGGCACCCGCGGCGGACGACACCGAGGACGACACCGACGAGGCCCCCGAGCGGGTCGTCGTCGAGGTCGGCGGACGCCGCCTCGAGGTCGTGCTGCCGGCCGGCCTCGGCATGGCCGCCGGCCGTGCGCGCCGCGCCGACGCCGCCAAGAACGGCCGCCGTCCGGCCCGCCGCGGCGCACGGTCCACCGCCTCGTCCGGCGCCGGCGGCAACACCCTGGCCTCCCCGATGCAGGGCACCATCGTCAAGGTCGCCGTGTCCGAGGGCGACGAGGTCGCCGAGGGTGACCTGATCGTCGTCCTGGAGGCGATGAAGATGGAGCAGCCGCTGACCGCGCACCGGGCCGGCACCGTCCAGGGGCTCAGCCTCGAGCCCGGGGCGGGCGTGTCGGCCGGGACCGCCATCTGCGAGATCGCCTGAMPSISKVLVANRGEIAVRIARACTDAGLTSVAVYADPDRQALHVRLADEAFALGGDRAADTYLDVDKLLDVARRSGADAVHPGYGFLSENAAFAQAVIDAGLTWIGPPPAAIEALGDKVSARHIAQRAGAPLVPGTKDPVADAAEVRAFAAEHGLPIAIKAAFGGGGRGLKVARTHEEIDELYDSAVREAVAAFGRGECFVERYLDRPRHVETQCLADTHGNVVVVSTRDCSLQRRHQKLVEEAPAPFLSAEQEAELDRASRAILAEAGYVGAGTCEFLVGTDGTLSFLEVNTRLQVEHPVTEEVTGIDLVREQLRIAAGEELGYESTTVRGHSLEFRINGEDPAAGFLPAPGTVSTLRWPSGPGVRVDTGVVEGDSISGLFDSMIAKLIVTGATRTQAVQRARRALRELEVTGIPTVVPFHRAVLEAEAFVPADGEAATAADFGVHTRWIETEFTDELRALAPAAPAADDTEDDTDEAPERVVVEVGGRRLEVVLPAGLGMAAGRARRADAAKNGRRPARRGARSTASSGAGGNTLASPMQGTIVKVAVSEGDEVAEGDLIVVLEAMKMEQPLTAHRAGTVQGLSLEPGAGVSAGTAICEIAPGPT0001705_2898DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001705-accC-K01961NANA
AK018_02126468mutT3_1COG0494Putative 8-oxo-dGTP diphosphatase 3GTGACCTGCGGCGACCACCGGCACTGGGGCCTGCACGGCGCGGCGGGGCTGTTCCTGGTCCGGCGCGCGCCCGCACCGGACGGTGCGCTGCGTGTCGACGACGTCGTCCTGCAGCACCGCGCCGCGTGGTCGCACGAGGGCGGCACGTGGGGCATCCCCGGTGGGGCGCTCGCCCCCGGGGAGTCCGCGGCGGGCGGGGCGCTGCGCGAGGCCGCCGAGGAGGCCGGGCTGGACCCGGCCGACGTCCGTGTGCTCGGCGAGCACGTGCTGGCGCACCCGGCGTGGTCCTACACGACGGTGGTGGCGGAGGTCGCCGCAGGGTCCGCCGTCGTGCCGGCCCCCACCGACGCCGAGAGCATCGATGTGCGCTGGACCCCCGTGGCGGCCCTCTCCGACCTGCCGCTGCACCCGGCGTTCGCCGACGCCGTGGACACCCTGCTCGAGATCGCCGTCGGCTCGGAGCGCTGAMTCGDHRHWGLHGAAGLFLVRRAPAPDGALRVDDVVLQHRAAWSHEGGTWGIPGGALAPGESAAGGALREAAEEAGLDPADVRVLGEHVLAHPAWSYTTVVAEVAAGSAVVPAPTDAESIDVRWTPVAALSDLPLHPAFADAVDTLLEIAVGSERNANANANANA
AK018_021272001hypothetical proteinGTGACCACGGCATCCCGCGACCGCTCGCTGCTGTGGCTCCTCGCGCTGGTCACCGCACTGACCGCGGAGCTCGTGCGTGCCAGCGGCCCCCTGCTGGACCGAGCGTTCGCCGCGGGCGTCACGACGGCGGCCGTCACCGCGCTGGTCGCCTACGCGCTGCCGGGCGCGGTCGTCGCGGCGTTCGTCGCCCGCGGCCGCGTGACGGGGCGGTCCGTCCTGGTGGCCGTGTCGCTGCTCGTGACCGCACGCCTCGGCCTGCAGGCGCTCGCCGGACCCGTCGCCGAGCGGGCGGTCGCACCCACGCTGGGCACGGTGCGCTACTACGTGGGCCTGGGCACCGTGGCCCTCGCCCTCGCTGTGCTGGTGCTCGTCGCCGTCCTCGCCGCCGGCGCCCGCAGCCCCGGGACGTCCGACGACGGAGCGGACGACGGCGGCGCCCGCGGCCTGCTCGTCGCCCGGGGGGTCACGCTGGGACTGCTGGGCGCTGCGGCCGTCTCCCTGCTGCTCGGGACGTGGGACGCGGTGTGGCGGGAAGGCCTCGCGGGGTGGCTTCCCGCCGTGCTCCTCGGCGCCGGGAGCCTCGCGGCCGCCTGGGCGGTGCGGGGTACCGGCGCCACGGCGGGGGTGCGGGGCCTGTGGGTGCTGGGGCCGTTCCTCGCGCTGGGCGTGCAGGTGTGGGCGAACCCCGCCTTCGTCGCGGCCACCACGGGGCTGCCGCCGGCCGCGGCGACCGTGGGCGTCGCGGTGGCCGCGCTGCTCGCCGGCGCGGCGTTGTCGATGCACCGCCCGGCCGTACGGCCGCTGACCGCCGCCGCGGTGTTCGTCGTGGGCGTGTGGGCGCTGTTCCTGACCGTGCCGCGCGTCGAGGGCCCGCCGCTGCCGTGGGCGTGGGGGCTCCTCGTGGTCGCCACGCTGCTGCCCGCTGTCGGCGCACGCGCCCTGGCCGGGGCGCTCACGCGGCCGCTGCGGCCGTTCGTCCGGTGGCGCACGATCGTGACCGGGACCGCCGTCGGGCTCGGAACCGCCCTGCCGCTGCTGGTCTACCAGCTCGACTTCGACGTCCCGCTGCCCTTCCCGGTCGGGCTGGTGCCCGTCGTGACGGCGTTCGCGCTCGTGCTGGCGGGCGTGGTGGCGGCGCGTCGGCTGGCTCCCCGCCGCGTGCCGGGCGGTGCCGCACTGACCGGTACGGTCGCCGGGCTGGCCACTGTCGCGCTCGTGCCGGGCCTCGTCACCGGCACGTCGTCCGGTGAGGCACCTGGTCCCGCACCGACGTCGTCGGCGGGCGGCGCCGACCGGCTCACCGTCATGACCTGGAACGTCCACTACGGGGTCAGCTCGGACCCGTCGGTCCGCCTCGGGGAGATGGTCGAGGTGCTGCACGGCGTGGACGCCGACGTCGTCGCCCTGCAGGAGGTGTCCCGCGGCTGGGTGCTCGGCGGCGGCGCCGACATGCTCACCCACCTCGCCGACGCTACGGGCATGGAGGCCGCGTGGGCGCCGGCCGCCGACCGCCGGTTCGGCAACGCGCTGCTGTGGGACCCGGACCGCGTCGAGGCGGCCGACGTCGACCGGGTCGAGCTGCCCTTCGGGGACGGACCGCAGGACCGCTCGGCGCTGGCCGCGACCGTCACGCCGGCCGGCGGCGAGCCGCTGCGGGTCGTGACCACCCACCTGCAGCACCGCGAGGAGAACACCGCCACCCGCCTGGACCAGCTCGGCGCGTTGTTCGCGGCCGAACCGGTCGACGGCCCGACCGTGCTGCTCGGTGATCTCAACGCCGAGCCCGGATGGCCCGAGATCACTGCGATCACCGACCGCGGGCTGGTCAGCGGCCAGGACGCCGTCGGCGACCCGGCCGCCCTCACCTCGCCGGGCGTGCTCCCCCGCCACCGCGTCGACTGGGTGTTCGCGACCCCGGACCTGCCGTTCGCCGCGGTCGAGGTGCTCGACGTGGTCCCGAGCGACCACCGGCCCGTCGTGGCGACGCTGGAGCTGCCCTGAMTTASRDRSLLWLLALVTALTAELVRASGPLLDRAFAAGVTTAAVTALVAYALPGAVVAAFVARGRVTGRSVLVAVSLLVTARLGLQALAGPVAERAVAPTLGTVRYYVGLGTVALALAVLVLVAVLAAGARSPGTSDDGADDGGARGLLVARGVTLGLLGAAAVSLLLGTWDAVWREGLAGWLPAVLLGAGSLAAAWAVRGTGATAGVRGLWVLGPFLALGVQVWANPAFVAATTGLPPAAATVGVAVAALLAGAALSMHRPAVRPLTAAAVFVVGVWALFLTVPRVEGPPLPWAWGLLVVATLLPAVGARALAGALTRPLRPFVRWRTIVTGTAVGLGTALPLLVYQLDFDVPLPFPVGLVPVVTAFALVLAGVVAARRLAPRRVPGGAALTGTVAGLATVALVPGLVTGTSSGEAPGPAPTSSAGGADRLTVMTWNVHYGVSSDPSVRLGEMVEVLHGVDADVVALQEVSRGWVLGGGADMLTHLADATGMEAAWAPAADRRFGNALLWDPDRVEAADVDRVELPFGDGPQDRSALAATVTPAGGEPLRVVTTHLQHREENTATRLDQLGALFAAEPVDGPTVLLGDLNAEPGWPEITAITDRGLVSGQDAVGDPAALTSPGVLPRHRVDWVFATPDLPFAAVEVLDVVPSDHRPVVATLELPNANANANANA
AK018_021281407lpdA_1COG1249NAD(P)H dehydrogenase (quinone)GTGGGCGGCGGCCCCGGAGGCTACGAGGCGGCGCTGGTCGCCCGCCGTGCCGGCGCCGACGTGACCGTGGTCGAGCGCCAGGGTCTCGGCGGCGCCGCCGTGCTGACCGACGTCGTCCCCTCCAAGACCCTCATCGCCACCGCCGAGTGGCTCACCATCGCCGAGTCCGCCCCCGAGCTGGGCATCCGCACCGGCGCGGCACCGGTCGGCCCCGACGACGACCAGGGCAGCCGACGCGACCTGGTCGACCTCGAGGCGGTCAACGCCCGGGTGCTCGCGCTCGCCGCCGCGCAGTCCGCCGACATCCGTGGCCGTCTGGAGCGCGAGGGCGTGCGGATCGTCGAGGGCACCGGGCGGCTCGACGGACCCAGCCGTGTCGTGGTGACGCCGTCCGACGGCGGTACCACCGAGATGCTCGACGCCGACATCGTGCTCCTCGCCACGGGCGCCACCCCCCGCGAGCTGCCCACCGCGCCGCCCGACGGCGAGCGCATCCTGACGTGGACCCAGCTCTACGGGCTGGACGCGCTGCCCGAGAAGCTGATCGTCGTCGGCTCGGGCGTCACCGGCGCCGAGTTCGCCGGCGCCTACCACGCCCTGGGTTCCGAGGTGGTGCTGGTCTCCTCGCGCGACCGCGTCCTGCCCGGCGAGGACGAGGACGCCGCCGAGCTGCTCGAGGGCGTCTTCCGCTCCCGCGGCATGACCGTCATGTCGCGCTCGCGGGCCGCGTCCGCGGAGCGCACCGCCGACGGCGTGGCCGTCACGCTCACGGACGGGCGGGTCGTCGAGGGCTCCCACGTGCTGGTCGCCGTCGGCGGCGTGCCGAGCACGGCCGACCTCGGTCTGGCCGAGGCGGGTGTCGAGGTCGCCGACTCCGGGCACATCCGCGTCGACAAGGTCTCGCGGACCTCGGTGCGCGGTGTCTACGCCGCCGGGGACTGCACCGGTGTGCTCCCGCTCGCCTCCGTCGCCGCCCAGCAGGGCCGCGTCGCGATGGCGCACGCGCTGGGTGACGCCGTCGTGCCGCTGCGGCTGGGCGCCGTCGCCGCGAACATCTTCACGGCCCCGGAGATCGCGACCGTCGGCTATTCGGAGGAGAAGCTGCGCGAGCAGGGCTCGCGGTACGTCACCACCACGCTGCCGCTGGCCCGCAACCCGCGGGCGAAGATGCACGGCGTGCGGGACGGGTTCGTCAAGCTGTTCGCCCACCCGGAGGCCGGCGTGGTGCTCGGCGGCGTCGTCGTCGGCCCGCGGGCCAGCGAGCTGATCTTCCCCGTGACGCTGGCCGTGACGCACCGCCTGACGGTCGACGACGTCTCGGACTCCTTCACCGTGTACCCGTCGCTGTCCGGCACCATCGCCGAGTCCGCGCGCGTGCTGCACGGGTCGGTGACGCCGACGGCCTGAMGGGPGGYEAALVARRAGADVTVVERQGLGGAAVLTDVVPSKTLIATAEWLTIAESAPELGIRTGAAPVGPDDDQGSRRDLVDLEAVNARVLALAAAQSADIRGRLEREGVRIVEGTGRLDGPSRVVVTPSDGGTTEMLDADIVLLATGATPRELPTAPPDGERILTWTQLYGLDALPEKLIVVGSGVTGAEFAGAYHALGSEVVLVSSRDRVLPGEDEDAAELLEGVFRSRGMTVMSRSRAASAERTADGVAVTLTDGRVVEGSHVLVAVGGVPSTADLGLAEAGVEVADSGHIRVDKVSRTSVRGVYAAGDCTGVLPLASVAAQQGRVAMAHALGDAVVPLRLGAVAANIFTAPEIATVGYSEEKLREQGSRYVTTTLPLARNPRAKMHGVRDGFVKLFAHPEAGVVLGGVVVGPRASELIFPVTLAVTHRLTVDDVSDSFTVYPSLSGTIAESARVLHGSVTPTAPGPT0020470_60DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020470-lpdA-K23842NANA
AK018_02129852punA_1Purine nucleoside phosphorylaseATGAGCACCACACCAGCCACGACACCGGACCTGGACGATCCCGGGACCGACCCGTTCGACGTCGCGCGGGCCGCCGCCGACCACATCGCCGAGACCACCGGGGTCCCGGGGCACGACATCGCGCTCGTGCTGGGGTCCGGGTGGGGTGGTGCGGCCGAGCTCGTCGGGGAGGTCGTCGCGGAGGTCCCGACGCACGAGATCCCGGGGTTCGCCCGGCCGTCGGTCGTCGGCCACGCGGCGACCACGCGCTCGATCCGCGTCGACCGTGCGGACGGCTCGACGCGGCAGGTGCTCGTGATCGGCGGTCGCACCCACCTGTACGAGGGACGCGGGGTGCGCCGCGTCGCGCACGGCGTGCGCACGGCGGCGGCCACCGGCTGCTCCACCGTGGTCCTGACCAACGGGTGCGGCGGCCTGCACATGGCGTGGCGGCCCGGGCAGCCCGTGCTGCTCAAGGACCACATCAACCTCACGGCGACCTCTCCCCTCGAGGGTGCGACGTTCGTGGACCTCACCGAGGTGTACTCGGCACGCCTGCGCGAGGTCGCCCGCACGATCGACGCCGAGCTGCCCGAGGGCGTCTACGCCCAGTTCCCCGGACCGCACTACGAGACGCCCGCCGAGGTGCGCATGGCCGGGCTGATGGGCGCCGACCTGGTCGGCATGTCCACGACCCTGGAGGCGATCGCCGCCCGGCACTGCGGCATGGACGTGCTCGGCATCTCGCTGGTGACGAACCTCGCGGCGGGCATCAGCCCGCAGCCCCTGTCCCACGAGGAGGTCCTCGAGGCGGGTGCGGCTGCCGCCCCGCGGATCAGCGACCTCCTGGCCCGGATCGTCCGGGCGATCTGAMSTTPATTPDLDDPGTDPFDVARAAADHIAETTGVPGHDIALVLGSGWGGAAELVGEVVAEVPTHEIPGFARPSVVGHAATTRSIRVDRADGSTRQVLVIGGRTHLYEGRGVRRVAHGVRTAAATGCSTVVLTNGCGGLHMAWRPGQPVLLKDHINLTATSPLEGATFVDLTEVYSARLREVARTIDAELPEGVYAQFPGPHYETPAEVRMAGLMGADLVGMSTTLEAIAARHCGMDVLGISLVTNLAAGISPQPLSHEEVLEAGAAAAPRISDLLARIVRAIPGPT0013380_677DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013380-punA-K03783NANA
AK018_021301836glmM_1Phosphoglucosamine mutaseATGGCCACGACGGACGAGCCGACGGCGGACGGGACGGCCCCCGAGCGGGCCGCGGACCTGCCGCCGACACCGACCACGGACCTGCCGACCCTGCTGGAGCAGGTGGAGAGGTGGATCCGGCACGACGTCGACGACCGGGACGTCGACGAGCTCACGCGACTGGTGGACTTCGCCACGGCAGACGACGGCCGCCGGCACCCGCGGGCGCTCGCCGAGCTCCAGGACCGGTTCGCCGGCACGCTGCAGTTCGGCACGGCCGGGCTGCGCGGCACGATGGCGGGCGGACCGAACCGGATGAACCGCGCGGTCGTGATCCGCGCGGCCGCCGGGCTGGGCGCCCATCTGATCCGGACGCTCGGGCCGGGGTCCGGGCCGCGCGTCGTCGTCGGCTACGACGCCCGGCACCGTTCGGCGGACTTCGCCCGCGACTCCGCGGCCGTGCTGGCCGCCGCGGGCTGCGAGGTGCTGATGCTCCCCCGCCCGCTGCCGACGCCGATCCTGGCGTTCGCGGTCCGGCACCTGGACGCCGACGCGGGGGTGATGGTGACCGCGAGCCACAACCCGGCCGCGGACAACGGTTACAAGGTCTACCTCGGCGGTCGCGCGGAGACCGGGCCGGGGCAGGGCGCGCAGATCGTGCCGCCGCACGACGCGCTGATCGCGGAGGCGATCGCCGACGTCGGCCCCGCGGACGAGGTGCCCCGGGCCGACGGCGGCTGGGCCGAGCTGGACCTCGGCGTCGTCGAGGAGTACCTGCGCACGCTGGCCCCGCTGCGCCCGGCGGACCCGGGGGCCGCGAGCCGCCTGAAGATCGTCACGACGTCGCTGCACGGGGTGGGCGGCCGGTTGCTCGCCCGGGCGCTGGCCGACGCCGGGTTCACCCGGGTGACGCCGGTCGAGGAGCAGTCGTACCCGGATCCGGACTTCCCGTCGGTGTCGTTCCCGAACCCGGAGGAGACCGGTGCGATGGACCTCGCACTGGGGCTGGCCATCGAGGTGGGGGCGGACCTGGTGATCGCCAATGACCCGGACGCCGACCGGTGCGCCGTCGCGGTGCTCGACACCACCCAGGGCACCCACCAGGGTGTGGAGACGGCCCGCTCGAGCGGCTGGCGGATGCTGCACGGCGACGAGGTCGGGATGCTGCTCGGTACCGAGGCGGTGGCCCGGGCCGCCGGGAAGCCCGGCGCGACGGTCGCGAGCTCCGTCGTCTCCTCGCGCGCCCTGGCGCGGCTCGCCGCCGACGCCGGCGTGGCGCACGCGACGACGCTGACGGGGTTCAAGTGGATCTCGCGGACCGAGGGCCTCGTGTTCGGCTACGAGGAGGCGCTCGGCTACTGCGTGGACCCGGAGCACGTGCGCGACAAGGACGGCATCAGTGCCGCAGTGCTGGTGGCGGGCCTGGCCGCGCGCCTCGCGGCGTCGGGCCGCACGCTCGTGGACGCGCTCGACGACGTCGCCCGCGACCACGGCCTCTACGTCACCGACCAGCTCGCCGGCCGGTTCGACGACCTGCGCCAGATCCCCGAGACGATGTCCCGGCTGCGGTCCGACCCGCCGTCGACGCTCGGCGGGTCGCCGGTGACGACGGTCGTCGACCTCGCCGACGGGTACGACGGCCTGCCGCCCACCGACGGGCTGCTGCTGCTCGCCGAGGACCACACGCGCGTCATCGTGCGACCCTCCGGCACCGAGCCGAAGGTGAAGTGCTACCTCGAGACCGTGACCGATGTCGCGCGGGACGCGTCCGCCCTCGAGGTCGGCACCGCCCGGGTGGCGGCCCGCGAGCGCCTGGTCGCGCTCAAGGGCGAGCTCGCCGGGCACCTCGGGCTCTGAMATTDEPTADGTAPERAADLPPTPTTDLPTLLEQVERWIRHDVDDRDVDELTRLVDFATADDGRRHPRALAELQDRFAGTLQFGTAGLRGTMAGGPNRMNRAVVIRAAAGLGAHLIRTLGPGSGPRVVVGYDARHRSADFARDSAAVLAAAGCEVLMLPRPLPTPILAFAVRHLDADAGVMVTASHNPAADNGYKVYLGGRAETGPGQGAQIVPPHDALIAEAIADVGPADEVPRADGGWAELDLGVVEEYLRTLAPLRPADPGAASRLKIVTTSLHGVGGRLLARALADAGFTRVTPVEEQSYPDPDFPSVSFPNPEETGAMDLALGLAIEVGADLVIANDPDADRCAVAVLDTTQGTHQGVETARSSGWRMLHGDEVGMLLGTEAVARAAGKPGATVASSVVSSRALARLAADAGVAHATTLTGFKWISRTEGLVFGYEEALGYCVDPEHVRDKDGISAAVLVAGLAARLAASGRTLVDALDDVARDHGLYVTDQLAGRFDDLRQIPETMSRLRSDPPSTLGGSPVTTVVDLADGYDGLPPTDGLLLLAEDHTRVIVRPSGTEPKVKCYLETVTDVARDASALEVGTARVAARERLVALKGELAGHLGLPGPT0017865_126DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0017865-manB|yhxB-K01840NANA
AK018_02131807COG2375putative proteinATGACCGAGACGACAGAGCGCCGCGGGGGACCGCCCGCCGGCAAGCGCACCCCGAAGTCCGCGACCGTCAGCGCCACCCGATGGCTGACCCCGCACATGGTGCGGATCACGCTGTCCGGTGGCGACCTGGCCCAGGTCGACCCCACCGAGCACACCGACCGCTACATCAAGCTCGTCGTCGGACCGCCGCCCGTCGAGGGCGCCCGCCCCGTGGTGCGCACGTACACGATCCGTGCGGTGCGCGACGACGAGTGGGACCTCGACTTCGTGGTGCACGGCGACGAGGGCCTCGGGGGGCCGTGGGCGGCCCGGGCGCAGCCGGGCGAGGAGGTCACGTTCCTCGGGCCGGGCGGCGGCTACGCGCCGGACGCCGGGGCCGACTGGCACCTGCTGGTCGGTGACGACTCCGCGCTGCCGGCCGTCGCGGCCGCCCTCGAGGCGCTCCCCGCCGGTGCCCGCGCCCACGCCGTCGTCGAGGTTCCCGGCCACGACGACGAGCAGCCGGTCGACTCCGCCGCCGACGTCACGATCACCTGGCTCCACCGCGGCGAGGCCACCCTGCTCGAGACGGTGCAGCGCCTCCACGCCGACGGCGTCCTGCCTGCCGGCGTCCCGCACGCGTTCCTGCACGGCGAGGCCGGCGACGTGCGCGACCTGCGCCGCTGGGCCCGCAGCGAGCTCGGCGTCACCCGCGAGCTGCTGTCCGCCTCCGGCTACTGGCGGCGCGGGCACGACGACGAGGCCTGGCGTGCCGCCAAGAAGGACTGGAACGCCGCCGTCGAGCAGGACGACGCCGCCCTGTCCTGAMTETTERRGGPPAGKRTPKSATVSATRWLTPHMVRITLSGGDLAQVDPTEHTDRYIKLVVGPPPVEGARPVVRTYTIRAVRDDEWDLDFVVHGDEGLGGPWAARAQPGEEVTFLGPGGGYAPDAGADWHLLVGDDSALPAVAAALEALPAGARAHAVVEVPGHDDEQPVDSAADVTITWLHRGEATLLETVQRLHADGVLPAGVPHAFLHGEAGDVRDLRRWARSELGVTRELLSASGYWRRGHDDEAWRAAKKDWNAAVEQDDAALSNANANANANA
AK018_021321539hypothetical proteinGTGAGCGGCGACGGCGACGCGGCCGACACCGCGGGGCCCGTCGCGGCGATGCCCTACGGGCCCTGGCGGCGCTGGGTCCGCGCGCTGCGGGCGCACCACCGCCGGCGTCGGTCCGACGACGGCGAGCGCACCTACCTCGCCTACGGGTTCACCCTGCTGGCGCTGATGTACGGGCCGATCCTGTGGACCACGCTCGCCCAGGCCGGGCTCCCGCTGGGCGAGAGCGCGGGGTGGTCGGTCCGCGGCATGCTGGTCGTCACCGGGATCGTCGTCGTCGCGGCGGCCGGCCTCGGCGGGGTGCTCCTCGCCCGGCTCGGGGCACCGCTGTGGGTGACACGGACCGACGCCGCCTACGTGCTCTCCGGCGTCTGGGATCCACGAGCCGTGCTGTGGCGGCGGGTCCTGGTGCTCGCGGCGGTGGCGGGCGTGCTCGCGGCGCTCGTCGGCTCGGCCCTGGCCTTCGGGGCGCTGGACGCCGCCGGAACACCCGCCGGTGCCGGGACGCTCACGGCCTGGGGTGCGTGCGCCGCCGGGGTCGCGATGCTGCCGCTGACGCTCGCGGTGGCCGCACAGTGCCCGCGATGGCGCACGACGGCACGGGTCGCGGCGGTGCTCGTCGCCGCCGTCGGTGCTCTCGTCGCGGTGCAGGGTGCCGACTTCCCCGTCGCACCCGCCGGCCCGCCCGCCGCCGTCGTGGGCTGGGCTGCAGGGCTGGCCATGGTCTGCGGGTGGCTGCTCCTCGCGGTCCTGCCGCGTGATCTCGACGCGGACCTCACGGCGGAGGCCTGGAACCGGACGGTGGCGACCGGTGAGGCGCTCGGTGCGGGGGACGCGACCGGGGTGCGCACGGTGGCCGGGCCCGCCCGGCTGACGGGTCGACAGCGGACCTTCCCGCGGAGCCTCCTGCCGTCCGTCCCGCTGGTCGCCCGTGACGTCCTGGCCCTGTCGCGGCGCCCGGCGGCCCCGCTCGGCTCCCTGCTGACGGGCGCGGTCGGGGTCGTGCTGCTCGCCGTCGCGGCCGGCGGCGGACCGGGAGCCGCGCTGGCAGCGGTCGGCGGCGGCGCCGTGCTGTACGCGGCCGCCGCGACGTGGACGGGCGGGCTGCGGGACCTGGCGGAGCAGGCCGAGCCCGGCGGGTTCCTGCCCGGCGGGCCGGCGCGGGCCGTGCGGGGCCACCTGCCGGTCCCGGTCGCGCTGGGGGCGGTGACCGGGGCGCTCGGCCTGCTGGTGGCGGCCGTGCTGGCCGGCGTGGACGGGTCCTCGGTCGTCCTGGTCGGCACGGGGCTGGTCGTCGCCCTGGGTGCCCGGGTGTGGGTGGCGGGTGCGACGCAGGCGCCGCCGGAGGTGTTCACCCCGGTGGCCGGCCCGACCGGGGATCTCAGCACGGTCATGGTGATCGCCTGGTTCCTGCGCGCCTGGCTGGTGGTGATCGGCTCGGCCTGGGGCGTCGCCCGCCTGGGCCTCGCGTGGGTCCCGCTGGTGGTGGTGGTCGTCGTGGCACTGGCCGCCGCGGGCGCGCGTCGCCTGGACCGGGGGTGAMSGDGDAADTAGPVAAMPYGPWRRWVRALRAHHRRRRSDDGERTYLAYGFTLLALMYGPILWTTLAQAGLPLGESAGWSVRGMLVVTGIVVVAAAGLGGVLLARLGAPLWVTRTDAAYVLSGVWDPRAVLWRRVLVLAAVAGVLAALVGSALAFGALDAAGTPAGAGTLTAWGACAAGVAMLPLTLAVAAQCPRWRTTARVAAVLVAAVGALVAVQGADFPVAPAGPPAAVVGWAAGLAMVCGWLLLAVLPRDLDADLTAEAWNRTVATGEALGAGDATGVRTVAGPARLTGRQRTFPRSLLPSVPLVARDVLALSRRPAAPLGSLLTGAVGVVLLAVAAGGGPGAALAAVGGGAVLYAAAATWTGGLRDLAEQAEPGGFLPGGPARAVRGHLPVPVALGAVTGALGLLVAAVLAGVDGSSVVLVGTGLVVALGARVWVAGATQAPPEVFTPVAGPTGDLSTVMVIAWFLRAWLVVIGSAWGVARLGLAWVPLVVVVVVALAAAGARRLDRGNANANANANA
AK018_02133645artM_2COG1126Arginine transport ATP-binding protein ArtMGTGCATGAAGTGCTCGTCGACGTCGAGGCCGTGACCAGGACCTACGGCACCGTCCAGGTGCTCGCCCCCACCTCGCTGCGCCTGCACGCGGGGCAGGGCTCCGCCGTCGTCGGCCCGAACGGGGCCGGCAAGTCCACCCTGCTGCGCCTGGTCGCGGGGACGGAGGAGCCGACGTCGGGCACCGCGACGGTGCTGGGGCTTGACGCCCCCGAGACACGACGACGGCACCGGGACCGGATCGTGCGCCTCCTCGGGCCGGCGCCGACGTACCCGGACCTGACGGTGGCCGAGCACCTGCGGCTCGTGCAGGTCGCCTGGGCCGGCCGTCACGACGGCCCCGACGTCGACGAGGCGCTCGCCGAGGCCACCCTGGACCGGGTGCGGGACCAGTTCCCGGGCGAGCTGTCGTCCGGCGAGACCCAGATGTTCGCCCTCGTGGCCACGCTGTACCGGCCCGCGGACCTGGTGCTGCTCGACGAGCCGGAGCAGCGTCTCGACACCCGCTGGCGGGAGGTCGCCCGCCGGCTCGTGCTGCGCGCCCTCGACCAGGGCCGGGCCGTGCTCGCCGCGACCCACGACCCCGGGCTGCGCGAGGTCCTCGCCGACCGGGGCCCTGTCGTGGAGCTGGCGGAGCCGACGCGGTGAMHEVLVDVEAVTRTYGTVQVLAPTSLRLHAGQGSAVVGPNGAGKSTLLRLVAGTEEPTSGTATVLGLDAPETRRRHRDRIVRLLGPAPTYPDLTVAEHLRLVQVAWAGRHDGPDVDEALAEATLDRVRDQFPGELSSGETQMFALVATLYRPADLVLLDEPEQRLDTRWREVARRLVLRALDQGRAVLAATHDPGLREVLADRGPVVELAEPTRPGPT0006725_28509DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_02134753deoC_1Deoxyribose-phosphate aldolaseATGAGCACGAACGACAGCACCGGGACGCCCGCCGTCCCCGGCACGGCGGCCGAGCTGGCGCGCTACGTCGACCACACGCTGCTCAAGCCGGAGGCGACCGCCGCCGACGTGACCGCGCTGGTCACCGAGGGCGCCGCGCTCGGGGTGTTCTCCGTGTGCGTCTCGCCCACGTTCGTGAGCCACGCCGTGGAGGTGGCCGACGGCCGGCTCGCGGTGGCGACCGTGTGCGGGTTCCCGTCCGGCAAGCACGCGAGCGAGATCAAGGCCGCCGAGGCGGCCCGCTCCGTGCTCGACGGCGCGGACGAGGTCGACATGGTCATCGATGTCGGCGCGGCGAAGGCCGGCGGGTTCGACGTGGTCCAGGCCGACATCGCCGCCGTGCGCGCCGCCGTGCCGTCCGACAAGGTCCTCAAGGTGATCATCGAGTCCGCCGCCCTGGACGACGACGAGATCGTCGCCGTCTGCCGGGCCGCCGACGCCGCGGGAGCAGACTTCGTCAAGACCTCGACGGGCTTCCACCCCAGCGGTGGTGCCTCGGTCCACGCGGTCGAGGTCATGGCGGCCACCGTCGGTGGCCGGCTCGGGATCAAGGCCTCCGGGGGAGTGCGCACCCTCGCCGACGCCCGTGCCGTGATCGGCGCCGGTGCCACGCGCCTCGGGCTGTCCGGGACCGCCGCGGTCCTCGCGGGGTTCGACGACGCGGACCCGGCCGGCGGCACGCCCCCGGACGCCTCCGGGAGCGGCGGCTACTGAMSTNDSTGTPAVPGTAAELARYVDHTLLKPEATAADVTALVTEGAALGVFSVCVSPTFVSHAVEVADGRLAVATVCGFPSGKHASEIKAAEAARSVLDGADEVDMVIDVGAAKAGGFDVVQADIAAVRAAVPSDKVLKVIIESAALDDDEIVAVCRAADAAGADFVKTSTGFHPSGGASVHAVEVMAATVGGRLGIKASGGVRTLADARAVIGAGATRLGLSGTAAVLAGFDDADPAGGTPPDASGSGGYPGPT0017445_1943DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017445-deoC-K01619NANA
AK018_021351104add_1COG1816Adenosine deaminaseATGACGCAAGCGCTGCTCGACGAGATCCCCGACCTGCCCAAGGTGCTCCTGCACGACCATCTCGACGGCGGCCTGCGCCCGCAGACCGTGCTCGAGCTGTGCGACGCCGTCGGGCACGAGCTGCCTGCCACGGACGCCGACACCCTGGCCACCTGGTTCCGGGACGCCGCCGACTCGGGGTCGCTGCCGCGCTACCTGGAGACGTTCGACCACACCATCGCGGCCATGCAGACGCCCGACGCGCTGGCCCGCGTGGCCCGGGAGGCCGTGCTGGACCTCGCCGCGGACGGCGTCGTGTACGCCGAGCAGCGCTGGGCCCCCGAGCAGCACGTGCAGCGGGGCATGTCGCTGCCCGAGACGGTCGAGGCCGTGCAGGCCGGGATCGACGCCGGCATCGTCGAGGCCGCCGCGGCGGGGCGCACCATCCGCGTCGGGCAGCTCGTGACCGCGATGCGGCACACCGACCGGTGGGTCGAGATCGCCGAGCTCGCCGTCGCCTACCGCGACGCCGGGGTGGTCGGGTTCGACATCGCCGGGCCGGAGGACGGATTCGCGCCCGACCGGCACGCCGAGGTGTGGCGGTTCCTCGCCGAGCAGAACTTCCCGACGACGATCCACGCGGGGGAGGCCGCCGGGCTGGACTCCATCTCCCAGGCGGTGCACCTCGGACAGGCCGACCGGCTGGGGCACGGCGTGCGGATCATGGAGGACGTCACCCTCTCGGAGCACGACCGCACCGCGACGCTCGGCCGGCTGGCCCACTGGGTCCGCGACCACCAGATCGCCCTGGAGGTCTGCCCGGTCTCGAACCTGCAGACGAACGCCGCCCCGGGCGTGACGTCGATCGCGGACCACCCGATCACCCGGCTCAAGGAGCTGGACTTCGCGGTCACGCTGAACACCGACAACCGGCTGATGTCGCGCACGTCGATGTCGCACGAGATGCGCCTGCTGGTCTCCGAGGCGGGCTGGACGATCGACGACCTCGCCGACGTGACGCTGACGGCGGCCTGGAGCGCGTTCTGCCACCACGACGAGCGGCGCGAGCTCGTCGACGAGCTGATCCTGCCCGGATACCAGAAGGTCGAGGGGGCCCTGCGATGAMTQALLDEIPDLPKVLLHDHLDGGLRPQTVLELCDAVGHELPATDADTLATWFRDAADSGSLPRYLETFDHTIAAMQTPDALARVAREAVLDLAADGVVYAEQRWAPEQHVQRGMSLPETVEAVQAGIDAGIVEAAAAGRTIRVGQLVTAMRHTDRWVEIAELAVAYRDAGVVGFDIAGPEDGFAPDRHAEVWRFLAEQNFPTTIHAGEAAGLDSISQAVHLGQADRLGHGVRIMEDVTLSEHDRTATLGRLAHWVRDHQIALEVCPVSNLQTNAAPGVTSIADHPITRLKELDFAVTLNTDNRLMSRTSMSHEMRLLVSEAGWTIDDLADVTLTAAWSAFCHHDERRELVDELILPGYQKVEGALRPGPT0021520_785DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488NANA
AK018_02136270hypothetical proteinATGGAGGGCATGAGCACGACACCGTCCGACGCCTGGCGCGACGCCGGCCTGGACGCTCCCGACGACTCGACGAGCCTGGCCGAGGAGCTCTCCGGACCCGCGTCGACGCCCACGCCCGAGCACGACGCCGAGGAGTACCACCCCGGCACGCCCCGTCCCGACCTGGAGGGGTCGGCGGACGAAGCCGACGTCGTCGAGCAGGCCGGCGAGGTCCCTGTCGACGACCCCGACGCCGACCTCGGTGACACCGGTCACGACCCGACCGTCTGAMEGMSTTPSDAWRDAGLDAPDDSTSLAEELSGPASTPTPEHDAEEYHPGTPRPDLEGSADEADVVEQAGEVPVDDPDADLGDTGHDPTVNANANANANA
AK018_02137873hypothetical proteinATGGGACTGCCGGGGCTGCGCCTGACCGATCTGCTCGGGTCGGTGGGGCTGTTCGGCGGCCGTGCCCCGCAGCCGCCCTCGGCGGGCCGCTACCGTCGCCCTCCCGTGCCGCCGGCCGTGGCCGCACGGCTCGACCGACTCGACGGTTCGGACGCGCGACGGCTCCGGGACCCGCTCGGTCGCGACGACCCGCCGGCGGCGTGGGTGCCCCGGCCACTCCTGCTCCCGGGTGACGTCCCGGCACGGCAGGTCTCGCCGACGACGTGCGGGGCCGCGGTCCTGACGATGCTGCGGTACACGGGCGACCCGCACGCTGCACTGACGCTCGTCGCCGGCCCGGACGGGACGGCAACGTCGGCGACGCGGTTCGCCGCCGACCAGGAGAGCGTCCACCGCGCCACGACCCGCGGTCCGCTGGGGCTGCCGAGCTGGCCGCCCTCGCTGGGCACCCCGCCCTGGGCAGCCGCCGCGCACGCCCGCTACGGCCCGGTCCGGTACACGCACCGGGTGGTCGGCGCACCGGGGTCGGCGGCCGCCCGCCGCGTGCTCGACGCCGCGCTCGACGCCGCCCGGGCCGGGGTCCCGGTGCCGCTGTACAGCGGCGGCGACCTGGCGCGAGGCCCGGCGACGGCGGTGCCCCGGCACGTGGTGCTGCTGACGACGGTCACGGGTGCGGCCCCGGACGCGACCGCGACGCTGTACGAGCCGTCGTCGGGCAGCCTGCACACCCTGCCGGTCGCCGTGCTGCGCGACCGCGGCCACGACGCGCGCGGGACCGCCGCCCGCACCCGGGCGCTGGGCGGCTGGCCGCACGTCGTCTGGGCGATCCTGCCTCGCGGATCGAGCGACGAGGCGCCACCATGGAGGGCATGAMGLPGLRLTDLLGSVGLFGGRAPQPPSAGRYRRPPVPPAVAARLDRLDGSDARRLRDPLGRDDPPAAWVPRPLLLPGDVPARQVSPTTCGAAVLTMLRYTGDPHAALTLVAGPDGTATSATRFAADQESVHRATTRGPLGLPSWPPSLGTPPWAAAAHARYGPVRYTHRVVGAPGSAAARRVLDAALDAARAGVPVPLYSGGDLARGPATAVPRHVVLLTTVTGAAPDATATLYEPSSGSLHTLPVAVLRDRGHDARGTAARTRALGGWPHVVWAILPRGSSDEAPPWRANANANANANA
AK018_021381293deoA_1COG0213Thymidine phosphorylaseATGAGCGAACCGTTCGACGTCGTCGACGTCATCCGTACCAAGCGCGACCGCGGCCTGCTGTCGGACGCGCAGATCGACTGGGTGGTGGACGCCTACACCCGCGGCGTCGTCGCCGAGGAGCAGATGGCCGCGCTCGCGATGGCGATCCTGCTCAACGGGATGCAGCGCGACGAGATCGCGCGCTGGACCGGGGCGATGATCGACTCCGGCGAGCGGATGGACTTCACGTCGCTGTCCCGCCCGACGGCGGACAAGCACTCCACGGGGGGAGTGGGGGACAAGATCACCCTGCCCCTGGCTCCGCTGGTCGCGGTGTTCGACGTGGCCGTTCCGCAGCTGTCCGGACGCGGCCTCGGGCACACGGGCGGCACGCTCGACAAGCTGGAGTCGATCCCGGGCTGGCGGGCGTCGCTGAGCAACGCGGAGATGCTCGCGCAGCTCGACGACGTCGGCGCGGTGATCTGCGCGGCGGGCGCGGGTCTCGCCCCGGCGGACAAGAAGCTGTACGCCCTGCGTGACGTGACGGGCACGGTCGAGGCGATCCCCCTCATCGCGAGCTCGATCATGTCCAAGAAGATCGCCGAGGGCACGGGCGCCCTGGTCCTCGACGTCAAGGTCGGCTCGGGCGCGTTCATGAAGGAGCTCGACCAGGCGCGCGAGCTCGCGCGGACGATGGTCGGGCTCGGCACGGACGCCGGGGTGCGCACGGTCGCCCTGCTCACCGACATGTCGGTGCCGCTGGGTCGCACCGCCGGCAACGCGCTGGAGGTCCGCGAGTCCGTCGAGGTGCTCGACGGCGGTGGGCCGCGCGACGTCGTGGAGCTCACGGTGGCGCTCGCCGTGGAGATGCTGGCCGCCGCCGGCCGCCCGGTGGGCGAGGACGAGGTGCACGCGGCGCTGACCGACGGCCGCGCCATGGACGTCTGGCGCCGGATGATCGCCGCCCAGGGCGGGGACCCGGACGCGCCGCTGCCGACGGCACGGCACACCCGCGACGTCGTGGCCGAACGCGACGGGGTCGTCGACCGCCTCGACGCGTACGCCGTGGGCGTGGCGGCATGGCGGCTGGGTGCGGGACGGTCCCGCAAGGAGGATCCGGTCCAGGCGGGCGCGGGGATCGAGATCCACGCGCGTCCCGGCGAGACGGTGCGGGCCGGGACCCCGGTGCTCACCCTGCACACGGACACGCCCGAGCGCTTCGACCGGGCGCTCGAGGCGCTCGACGGCGCCTGGACGGTGGCGCAGGACGCCCCGGCCGAGCGCGGCCCGGTCGTGCTGGACCGGATCGACTGAMSEPFDVVDVIRTKRDRGLLSDAQIDWVVDAYTRGVVAEEQMAALAMAILLNGMQRDEIARWTGAMIDSGERMDFTSLSRPTADKHSTGGVGDKITLPLAPLVAVFDVAVPQLSGRGLGHTGGTLDKLESIPGWRASLSNAEMLAQLDDVGAVICAAGAGLAPADKKLYALRDVTGTVEAIPLIASSIMSKKIAEGTGALVLDVKVGSGAFMKELDQARELARTMVGLGTDAGVRTVALLTDMSVPLGRTAGNALEVRESVEVLDGGGPRDVVELTVALAVEMLAAAGRPVGEDEVHAALTDGRAMDVWRRMIAAQGGDPDAPLPTARHTRDVVAERDGVVDRLDAYAVGVAAWRLGAGRSRKEDPVQAGAGIEIHARPGETVRAGTPVLTLHTDTPERFDRALEALDGAWTVAQDAPAERGPVVLDRIDPGPT0021365_1211DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021365-deoA-K00758NANA
AK018_02139390cdd_1COG0295Cytidine deaminaseGTGGGACCCGACTGGGACGCCCTGCGGTCGGCCGCCCGCGACGTCTCCCGCCACGCCTACGTGCCCTACTCGCAGTACGCGGTCGGCGCGGCGGCGACGGCGGACGACGGTCGCCTGCTGGTGGGCTGCAACGTGGAGAACGCCGCCTACGGCGTCACGCTGTGCGCCGAGTGCTCGCTGGTCTCGGCGCTGGTCACGGGCGGTGGGGGCCGGCTGACCGCCTTCACGTGCGTCGACGGGCGCGGCCGCGTCATCACGCCGTGCGGGCGCTGCCGCCAGCTGCTCTGGGAGCACGGGGGGCCGGAGCTGCTGGTCGAGACCCCCCAGGGCGTGACCACCATGGACCATCTGCTGCCCCAGGCGTTCGGACCGGAGGACCTGACCCGATGAMGPDWDALRSAARDVSRHAYVPYSQYAVGAAATADDGRLLVGCNVENAAYGVTLCAECSLVSALVTGGGGRLTAFTCVDGRGRVITPCGRCRQLLWEHGGPELLVETPQGVTTMDHLLPQAFGPEDLTRPGPT0021360_3991DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021360-cdd-K01489NANA
AK018_021401296hypothetical proteinATGACCGCCCCCGCCGTCGACGGCACGCCCGCGGCCACGCCGGACGCGCCGCGCACCGTCAGCACCGTGTCGTGGAAGACGCCGATCGCGCTCGGCGTCGTCCTGGCGCTGTACGCCCTGCTGCTCCTGCTGGCGCCCCGCGAGGGTGACGCCCGCTTCTCGCTGTCCACCCCGACGGACTTCTTCCAGCTGCCGGTGTACGTGATCCCGGGCATGGCCACCGCCTGGCTGTGCGCCGCGATCGGTGCCGTGCTCGTGGTGCCCTCGGTGCTGGCGACCCGGCGTGCGCGCCGTACCCCGCTGTGGGTGACGGGCGTTTTCGCCGCCGTGCTGCTGTTCGGCTTCCTCGCCTGGGCCGCCGCCGGCAGCGCGCGCGACCTGTCCGTCGTCGGGCTGCTCGGCGGGGCGGTCGCGCTGTCCGTGCCGCTCGTCTACGGCTCGCTCAGCGGTGTCATCGGCGAACGCTCCGGCACCATCAACATCGCCATCGAGTCCCAGCTGCTGGCCGGTGCCTTCACCGCCGCCGTCGCGGGGTCGCTGACGAACAGCCCGTGGGTCGGACTGGTCGCCGCGATGCTGGCCTCCGCGCTGGTGTCCCTGGTGCTCGCCGTGTTCACCATCACCTACCGCGTCAACCAGATCATCGTCGGTGTGGTGCTCAACGTGCTGGTCATCGGCCTGACGAGCTTCTTCTACTCCCTGGTGCTGGTGCCCAACACCGAGACGTTGAACTCGACGACGCGGTTCGAGCGCATCCCCATCCCGTTCCTGGAGCGCATCCCCGTCATCGGGCCGGTGCTGTTCGACCAGACGATCGTCGTCTACCTGATGCCGGTGATCGTGTTCGGCGTCTGGTACGGGCTGTTCCGCACCCGCTGGGGCCTGCGGCTGCGGGCCGTCGGCGAGCACCCCCGTGCCGCGGACACCGTGGGCATCGAGGTGCTGCGCACGCGGTACCGCGCCCTGCTGATCGCGGGTCTGGTCGGCGGCATGGGCGGCGCCTTCTACACGGTGGTCTCCATCAACCAGTTCGGCCGCGAGATGACCGCGGGCGCCGGCTTCATCGCCCTGGCGGCGATGATCTTCGGCAAGTGGAACCCGGTGCGCGCCGCGCTGGCGGGGCTGCTGTTCGGGTTCGCGACGAACCTGCAGAACGTGCTGTCCGTCGTCGGATCCCCGGTGCCGAGCCAGTTCATGCTCATGCTGCCGTACGTCGTGACGCTGTTCGCCGTCGCGGGCCTGGTGGGCCGTTCGCGGCCGCCCGCGGCGTTGGCGACCCCGTACACGAAGGAGTAGMTAPAVDGTPAATPDAPRTVSTVSWKTPIALGVVLALYALLLLLAPREGDARFSLSTPTDFFQLPVYVIPGMATAWLCAAIGAVLVVPSVLATRRARRTPLWVTGVFAAVLLFGFLAWAAAGSARDLSVVGLLGGAVALSVPLVYGSLSGVIGERSGTINIAIESQLLAGAFTAAVAGSLTNSPWVGLVAAMLASALVSLVLAVFTITYRVNQIIVGVVLNVLVIGLTSFFYSLVLVPNTETLNSTTRFERIPIPFLERIPVIGPVLFDQTIVVYLMPVIVFGVWYGLFRTRWGLRLRAVGEHPRAADTVGIEVLRTRYRALLIAGLVGGMGGAFYTVVSINQFGREMTAGAGFIALAAMIFGKWNPVRAALAGLLFGFATNLQNVLSVVGSPVPSQFMLMLPYVVTLFAVAGLVGRSRPPAALATPYTKEPGPT0021050_111DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021050-nupC|yufQ-K23536NANA
AK018_021411362rfuC_1COG4603putative riboflavin import permease protein RfuCGTGAGCGCGAGGCCGGGACACGACCCCGCCGACTCCGCCGAGCAGCCGCCCGCGGACGACCGCGAGCCCGTCGGGACGACGGAGCCGGGTCGGGCCGAGGAGATCGAGCAGGAGAAGGCCCGCGAGGGCGCGGCGGACGACGGCGAGACCGACGACCGCTGGCAGGAGGCGTTCCGCCGGATCATCTCGGGCGGCTGGGCCGTGGCGCTGGGCGCCATCCTGCTGGCGGTGATCGCGGGCTCGCTGATGATCATCGTCACCGACGAGGCGGTTCAGGAGGCGGCCGGGTACTTCTTCTCCCGCCCGGGTGACACCTTCGCGGCCGTCGGTGAGGCCGTGGGCGGCGCCTACTCGGCGCTGTTCCAGGGAGCCGTCTACAACTTCCGCGCGGACACGTTCGCCGCCGGGATCCGCCCCCTGACGCAGACGCTCAACAACGCCACGCCGCTCATCGCGGCGGGTCTGGGCGTGGCGATCGCGTTCCGCGCCGGCCTGCTGAACATCGGTGGCCAGGGCCAGATGCTGATGTCCGCCACGGCGGCCGGCTGGGTCGGCTTCGGCGTCACCGGGCTGCCGTTCCCTCTGCACCTGATCCTGGCGCTCGTCGCCGGAATCCTGGCCGGGGCCCTGTGGGCGGGCATCGCGGGTCTGCTGAAGGCGCGTACCGGCGCCCACGAGGTGATCGTGACGATCATGCTCAACTACGTGGCCCTGTACCTGCTGTCCTACTTCCTGGCCACGCCGGGCCTGATGCAGGCGCCGGGGTCGGCGAACCCCAAGACGCCGCCGACGCCGGAGTCGGCGCAGCTGCCGCCGCTGCTCGGCGAGCGCTACACGCTGCACTGGGGCTTCGTCCTGGCGCTCGTGGCCGTCGCGGTGGTGTGGTGGATCCTCAACCGGTCCGCGGTCGGATTCTCCTACCGCGCGGTCGGGGAGAACCCCCGCGCCGCCCGAGTGGCGGGCATCGACGTGTCGCGCTCGACGGTCTCGGTGATGCTCGTCGCCGGTGCGCTCGTGGGCCTGGCGGGCGTCACCCAGGTCCTGGGCACCGTCACGACCGGCTTCGGGTCGGACATCGACGCGGGGATCGGCTTCGACGCGATCACCGTCGCCCTCCTGGGCAACTCCAACCCGCTCGGCGTCCTCGGGGCGGGCATCCTGTTCGGCGCCTTCAAGGCCGGAGGCTCGGCCATGCAGGCCGCCGAGGGCATCCCCATCGAGATCGTGCTGGTGGTCCAGTCCCTCATCGTGCTGTTCATCGCGGCGCCGCCGCTGGTGCGGGCCATCTTCCGCCTGCCCCAGCCGGGCAGCGCCCCGAAGAAGAAGCGGTCGAAGGCCGCCCGGAAGGAGGTGTCGGCATGAMSARPGHDPADSAEQPPADDREPVGTTEPGRAEEIEQEKAREGAADDGETDDRWQEAFRRIISGGWAVALGAILLAVIAGSLMIIVTDEAVQEAAGYFFSRPGDTFAAVGEAVGGAYSALFQGAVYNFRADTFAAGIRPLTQTLNNATPLIAAGLGVAIAFRAGLLNIGGQGQMLMSATAAGWVGFGVTGLPFPLHLILALVAGILAGALWAGIAGLLKARTGAHEVIVTIMLNYVALYLLSYFLATPGLMQAPGSANPKTPPTPESAQLPPLLGERYTLHWGFVLALVAVAVVWWILNRSAVGFSYRAVGENPRAARVAGIDVSRSTVSVMLVAGALVGLAGVTQVLGTVTTGFGSDIDAGIGFDAITVALLGNSNPLGVLGAGILFGAFKAGGSAMQAAEGIPIEIVLVVQSLIVLFIAAPPLVRAIFRLPQPGSAPKKKRSKAARKEVSAPGPT0021045_185DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021045-nupB|yufP-K23535NANA
AK018_021421521xylG_1COG1129Xylose import ATP-binding protein XylGATGAGGCTCGAGCTGCGGGGGATCACCAAGCGTTTCGGCGCGCTGGTGGCCAACGACCACATCGACCTGGTGGTCGAACCGGGGGAGATCCACTGCCTCCTGGGGGAGAACGGCGCCGGCAAGTCCACGCTGATGAACGTCCTGTACGGCCTGTACGACGCCGACGAGGGCGAGATCCTCCTCGACGGCGAGGTGCAGGACTTCGAGGGCCCCGGCGACGCGATGAACGCGGGCATCGGCATGGTCCACCAGCACTTCATGCTGGTGCCCGTCTTCTCCGTCGCGGAGAACGTCATGCTTGGCCACGAGACCACTTACGGCCCCGGCATCCTCGACCTGTCCGCCGCGCGCGATACGGTGCGCAGCACCGCGGACCGCTTCGGCTTCCACGTCGACCCGGACGCCGTCGTCGAGGACCTGCCGGTCGGTGTCCAGCAGCGGGTCGAGATCATCAAGGCACTCAGCCGGGACGCCCAGGTGCTTGTCTTCGACGAGCCCACGGCGGTGCTCACCCCGCAGGAGACCGACGAGCTGATGGCGATCATGCGTCAGCTCAAGGACGAGGGCAAGGCCATCGTCTTCATCACCCACAAGCTGCGCGAGGTGCGCGAGGTCGCCGACCGGATCACCGTGGTCCGGCACGGCAAGGTGGTCGGCGAGGCCGACCCCACCGCACCGGACAACGAGCTGGCCTCCCTCATGGTGGGCCGTGCCGTGCAGCTCACCGTCGACAAGCAGGCGGCCCGGCACACGGACAACGAGTTGGCCGTCTCCCACCTCCAGGTCGCCACCCCGAACGGGCAGGTCGTCGTCGACGACGTCAGCTTCACCGTGCGCGGCGGCGAGATCCTGGTGATCGCGGGCGTCCAGGGCAACGGGCAGACCGAGCTCACCGAGGCCCTCATCGGCCTGCACCCGGACGCCCGCGGGTCGATCCTGCTGGACGGGTCCGAGCTGCGGGGCCGCAGCGTGCGCAAGGTGCTCGACGCCGGCGTCGGGTTCGTGCCCGAGGACCGCAGCACCGACGGGCTCGTCGGCGAGTTCAGCATCGCCGAGAACCTCATCCTCGACCGCACCGACGGGGCACCGTTCGTGCGAGCCGGCTCGCTGCAGCTCGGTCTGCGCGACGAGTTCGCCCGCGAGAAGGTCGACGAGTTCGACGTGCGCACCACCGGCATCGACCTGCCCGTGGGCCGGCTGTCCGGCGGCAACCAGCAGAAGGTGGTGCTGGCGCGGGAGATGTCCCGCGAGCTGCGGCTGCTGGTCGCCGCCCAGCCCACCCGCGGCGTCGACGTGGGCTCGATCGAGTTCATCCACCAGCGCATCGTGGAGACGCGCGACGCCGGCATCCCGGTGATCGTGGTCTCGACCGAGCTCGACGAGGCTGTCGCCCTCGCCGACCGGATCATGGTGATGTACCGCGGGCGCGTGGTCGGGATCGTGCCGGCCGACACCCCGCGCGACGTGCTCGGCCTGATGATGGCCGGCGTCGCGCCCGAGACCGAAGGAGACGCCGCGTGAMRLELRGITKRFGALVANDHIDLVVEPGEIHCLLGENGAGKSTLMNVLYGLYDADEGEILLDGEVQDFEGPGDAMNAGIGMVHQHFMLVPVFSVAENVMLGHETTYGPGILDLSAARDTVRSTADRFGFHVDPDAVVEDLPVGVQQRVEIIKALSRDAQVLVFDEPTAVLTPQETDELMAIMRQLKDEGKAIVFITHKLREVREVADRITVVRHGKVVGEADPTAPDNELASLMVGRAVQLTVDKQAARHTDNELAVSHLQVATPNGQVVVDDVSFTVRGGEILVIAGVQGNGQTELTEALIGLHPDARGSILLDGSELRGRSVRKVLDAGVGFVPEDRSTDGLVGEFSIAENLILDRTDGAPFVRAGSLQLGLRDEFAREKVDEFDVRTTGIDLPVGRLSGGNQQKVVLAREMSRELRLLVAAQPTRGVDVGSIEFIHQRIVETRDAGIPVIVVSTELDEAVALADRIMVMYRGRVVGIVPADTPRDVLGLMMAGVAPETEGDAAPGPT0021040_2763DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021040-nupA|yufO-K23537NANA
AK018_021431107tmpC_1COG1744Membrane lipoprotein TmpCGTGAAGAGTGCGATCAAGTTCACCGCCCTCGCCGGCGCGGCGGCACTGACCCTCGCGGCGTGCGGAGCGGCCCCGGAGGAGACCCCCGCGGACGAGTCCACCGAGACCGAGATGGCCGAGAGCGAGACCGTCGACTACCAGCCCTGCATCGTCTCCGACCAGGGCGGCTTCGACGACAAGAGCTTCAACCAGCTCAGCTACGAGGGCACCCAGCAGGCCGCCGAGGAGCTGGGCCAGACCGTCATCGACGTGCAGTCGCAGTCGGAGACCGACTTCCAGCCGAACCTCCAGTCCCTGGTGGACCAGAGCTGCGACGCCATCGTCTCGGTCGGCTTCGCCCTGTCGGCGGACACCATCGAGTCCGCGAACGCCAACCCGGAGACCGACTACTTCCTCGTCGACGACGCCGCGGACGCGGACTTCGACGGCGAGGCGGACGCCGACAACATCAAGCCGCTGCTGTACAACACGGCCGAGGCCGCGTTCCTGGCCGGCTACCTGTCCGCGGGCTACTCCGAGGCCGGCAAGGTCGGGACTTTCGGCGGTCAGCCGTTCCCGACCGTGACCATCTTCATGGACGGCTTCAAGCAGGGCGTCGAGCACTTCAACGAGGTCAACGACGCCGAGGTCGAGGTCATCGGCTACTCCGGCGGCGAGGACGGCTCGTTCACCGGCGGGTTCGAGGCCAACCAGACGGCGAAGACCACCGCGACGAACATCCTGGACCAGGGCGTCGACGTGATCCTGCCCGTCGGCGGCCCCATCTACCAGTCGGCCGTCGCCGCCATCCAGGACTCCGGCCGCGACGTCGCCCTCGTGGGTGTCGACGCGGACTTCTACGAGACCGACCCGAGCACCCAGCCCTACGTGCTGACCTCCATCCTCAAGAAGATGGACGTCTCGGTCCACGACGCGCTCATGACCGCCGCCACCGAGGAGTTCGACCCGGAGCCGTACATCGGCACCCTCGAGAACGAGGGCGTGGGCCTCGCCCCGCTGCACGACTTCGAGGACCAGGTGGACCCCGAGCTGATGACCGAGGTCGAGGACCTGCAGCAGCAGATCATCGACGGCGAGCTCGAGGTCACCTCCTACCTGGACCAGTGAMKSAIKFTALAGAAALTLAACGAAPEETPADESTETEMAESETVDYQPCIVSDQGGFDDKSFNQLSYEGTQQAAEELGQTVIDVQSQSETDFQPNLQSLVDQSCDAIVSVGFALSADTIESANANPETDYFLVDDAADADFDGEADADNIKPLLYNTAEAAFLAGYLSAGYSEAGKVGTFGGQPFPTVTIFMDGFKQGVEHFNEVNDAEVEVIGYSGGEDGSFTGGFEANQTAKTTATNILDQGVDVILPVGGPIYQSAVAAIQDSGRDVALVGVDADFYETDPSTQPYVLTSILKKMDVSVHDALMTAATEEFDPEPYIGTLENEGVGLAPLHDFEDQVDPELMTEVEDLQQQIIDGELEVTSYLDQPGPT0021055_1758DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021055-bmpA-K07335NANA
AK018_021441176scmP_1COG1473N-acetylcysteine deacetylaseGTGAACGGGCCCGGCGCCCGTCTGGACGAGATCGTCGCCGGCCTGGAGCCGGAGCTCGTGGCCGTGCGCCGCGACCTGCACGCCCACCCGGAGACGGCGCGCCAGGAGGTGCGCACGACGGCGGTGCTCGCCGAGCGGCTCCGCGCGGCCGGGCTGGCGCCCCGGCTGCTCGAGCCCACCGGACTGGTGTGCGACGTCGGCCCCGACGTGCCGGGGCGCGGCCGCGTGGCCCTGCGCGCGGACATCGACGCGCTGCCCCTGGACGACGCCTGCGGCTGCGACTTCGTCTCGACCGTGCCCGGCGTGGCGCACGCGTGCGGCCACGACGTGCACGCCGCCGTCGTGCTGGGCGCCGGGCTGGCGCTGGCGAGGCTGGCCGACGAGGGGATCCTGCGGCACGGCGTCCGGCTGATCTTCCAGCCCGCCGAGGAGACGATGCCGGGCGGGGCCCTGGAGGTCGTCGCCCAGGATGTGCTGGACGGGGTCGACCGCATCGCTGCGGTGCACACCGAGCCGAAGCTCGACGTCGGTCTCGTGGGGACGCGCATCGGTCCCATCACGTCGGCGTCCGACCTGGTGACCGTGACGCTGTCCTCCGGCGGCGGGCACACCTCGCGTCCGCACCTGACCGGGGACGTCGTGTACGCGCTCGGTCAGGTCGTCACCCAGGTGCCGGCCGTGCTGGGGCGTCGCCTGGACCCGCGCTCGGGGGTGAACCTCACCTGGGGTGCCGTCGAGGCGGGGCACGCCCACAACGCCATCCCGGCGTCGGGCGTCGCCAAGGGCACCCTGCGCTGCCTCGACGTGCGGGCGTGGGAGAAGGCGGGCCAGGTGCTGCACGACGCCGTCGAGCAGGTGGTGGCGCCGTACGACGTGGACGTGTCGGTGCACCACGTGCGCGGCGTGCCCCCGGTGGACAACGACGCCGACGTGACCGCCGCGCTGGAGGCCGCGGGGGCCGCGGTGCTCGGGGAGGACGGCGTGGTCCTGACCGAGCAGTCCCTCGGTGGCGAGGACTTCGCCTGGTACCTGACCAAGGTGCCCGGGGCGATGGCGCGGCTCGGCACGGCGACACCGGGCGGGCGCCGCTACGACATCCACCGGGGCGACCTCGTGGTGGAGGAGGGCGCCATCGCGATCGGCGCCCGGGTGCTGGCGCGGTTCGCGCTGTCCTGAMNGPGARLDEIVAGLEPELVAVRRDLHAHPETARQEVRTTAVLAERLRAAGLAPRLLEPTGLVCDVGPDVPGRGRVALRADIDALPLDDACGCDFVSTVPGVAHACGHDVHAAVVLGAGLALARLADEGILRHGVRLIFQPAEETMPGGALEVVAQDVLDGVDRIAAVHTEPKLDVGLVGTRIGPITSASDLVTVTLSSGGGHTSRPHLTGDVVYALGQVVTQVPAVLGRRLDPRSGVNLTWGAVEAGHAHNAIPASGVAKGTLRCLDVRAWEKAGQVLHDAVEQVVAPYDVDVSVHHVRGVPPVDNDADVTAALEAAGAAVLGEDGVVLTEQSLGGEDFAWYLTKVPGAMARLGTATPGGRRYDIHRGDLVVEEGAIAIGARVLARFALSPGPT0026300_361DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
AK018_021451119algA_1COG0662Alginate biosynthesis protein AlgAATGCCCTCTGCTGCTATCCCCGGGTTCCACGCCGTCATCCCTGCCGGAGGGGCGGGTACCCGGCTGTGGCCGGTCTCGCGGGCCGGTTCGCCCAAGTTCCTGCACGACCTGACCGGCTCGGGCCGCACCCTGCTCCAGGGCACCGCCGACCGCTTGGTGCCGCTGGCCGGTGAGTCGGGCGTGCTGGTCGTGACGGGGCGGCAGCACGAGGCGGCCGTGCGCGACCAGCTCCCGTCGCTGGGTGCCGGGCAGGTGCTCACCGAGCCGTCGCCGCGCGACTCGATGGCGGCGATCGGGCTGGCGGCGGCGGTCATGGAGCAGCGCCACGGGGAGGTCGTGCTCGGTTCGTTCGCCGCGGACCAGGTGATCTCGGGCCGACCGGAGTTCGAGCGCTCGGTGCGCGAGGCCGTCGCGGCGGCGCGCGAGGGGTACGTGACCACGATCGGCATCGCCGCGTCGCGGCCGTCCACCGCGTTCGGGTACGTGCACGGCGCCGCGCCGCTCGGGGTGGACGGCGCTCCCAGCGCGGTGCACGTGTCGGGGTTCACCGAGAAGCCCGACGCCGCCACCGCCCGGGGCTACCTGGCCTCCGGCGAGTACCGGTGGAACGCGGGCATCTTCGTCGCCAGCACCACGGTGCTGCTGCGTCACCTGGCCGAGCAGCGCCCTGCCCTGCACGACGGTCTGCGCCGTGTCGCGGCCTCGTGGGACACGGCCGAGCGGGACGCCGTGCTGGAGGTCGAGTGGCCGGCGCTCGAGCGGATCGCCATCGACCACGCCGTGGCCGAGCCGGTGGCCGCGGCGGGCGGCGTGGCGATGGTGCCCGGGTCCTTCGGTTGGGACGACGTCGGCGACTTCAACTCGCTGGCGGCGCTCCTGCCGGCCGACGACGACTCGGGGTCGAAGGTGCTCGGTGACAGCGCGGACGTCGTGCGCGTCCAGAGCGCCGGCTCCGTGGTGGTCCCCGCGGGCGGGCGGACGGTCACCCTGCTCGGGATCGACGACGTCGTGGTCGTCGACACCCCGGACGCGCTGCTGGTGACCACGCGCGGGCGGGCGCAGCAGGTGCGCGCCATGGTGGACGCGGTCCGTGCCAGCGGCCGCGAGGACCTGCTGTGAMPSAAIPGFHAVIPAGGAGTRLWPVSRAGSPKFLHDLTGSGRTLLQGTADRLVPLAGESGVLVVTGRQHEAAVRDQLPSLGAGQVLTEPSPRDSMAAIGLAAAVMEQRHGEVVLGSFAADQVISGRPEFERSVREAVAAAREGYVTTIGIAASRPSTAFGYVHGAAPLGVDGAPSAVHVSGFTEKPDAATARGYLASGEYRWNAGIFVASTTVLLRHLAEQRPALHDGLRRVAASWDTAERDAVLEVEWPALERIAIDHAVAEPVAAAGGVAMVPGSFGWDDVGDFNSLAALLPADDDSGSKVLGDSADVVRVQSAGSVVVPAGGRTVTLLGIDDVVVVDTPDALLVTTRGRAQQVRAMVDAVRASGREDLLPGPT0022660_1039DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0022660-manC|cpsB-K00971NANA
AK018_02146384sdhC_1COG2009Succinate dehydrogenase 2 membrane subunit SdhCGTGCCGAACGCTCCCGCAGGCACGCTCTACCGCGGCCGTGAAGGCATGTGGTCCTGGGTCGCGCACCGCGTGACCGGCGTGTCCATCTTCTTCTTCCTGCTCGTGCACGTGCTCGACACGGCACTGGTGCGGGTCTCCCCCGAGGCGTACAACGCCGTCATCGGCACGTACCAGACGCCGATCATGGGGCTCGGCGAGGCGGGCCTGGTCGCCGCCATCGTCTTCCACGCCTTCAACGGCCTGCGCATCGCGCTCGTCGACTTCTGGTCCAAGGGACCGCAGTACCACCGCGTGATGCTCTGGGTGGTCCTGGGGCTGCTCGTCGTGACCATGGCCGGCTTCCTGCCGCGGCACCTGATGAACGTCTTCGGAGGTGGGCACTGAMPNAPAGTLYRGREGMWSWVAHRVTGVSIFFFLLVHVLDTALVRVSPEAYNAVIGTYQTPIMGLGEAGLVAAIVFHAFNGLRIALVDFWSKGPQYHRVMLWVVLGLLVVTMAGFLPRHLMNVFGGGHPGPT0001595_2988DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001595-sdhC|frdC-K00241NANA
AK018_02147462hypothetical proteinATGGCTCAGACCGACGCGACCCCCCTGGTCGCCAGCCCGCGCTCCCCGTACGTGCGGCGCAAGACGACCCGCGGCAACTTCGAGCTGTACTCCTGGGTGTTCATGCGCGCCTCCGGCGTGGTGCTCGTCGCCCTGATCTTCGGCCACCTGTTCGTCAACCTCATGGTCGGGGACGGCGTGCACGCGATCGACTTCGCGTTCGTGGCCGGCAAGTGGGCCAGCCCGTTCTGGCAGGTCTGGGACCTGCTCATGCTGTGGCTCGCGATGATCCACGGCACCAACGGCGTGCGCACCATCATCAACGACTACGCGCAGCGGGACCTCACCCGCGGCGTGCTCAAGAGCCTGCTCTACCTGGCCTTCACCCTCACGGTGGTGCTGGGGACGCTCGTGATCTTCACGTTCGACCCGTGCCCGCCCGAGGCGCCGGCCGAGCTGCTCGCCTCGTTCTGCACGGCCTGAMAQTDATPLVASPRSPYVRRKTTRGNFELYSWVFMRASGVVLVALIFGHLFVNLMVGDGVHAIDFAFVAGKWASPFWQVWDLLMLWLAMIHGTNGVRTIINDYAQRDLTRGVLKSLLYLAFTLTVVLGTLVIFTFDPCPPEAPAELLASFCTAPGPT0001590_278DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001590-sdhD|frdD-K00242NANA
AK018_021481836sdhA_1COG1053Succinate dehydrogenase flavoprotein subunitATGCAGACCCACCAGTACGACGTCGTCATCGTCGGCGCAGGCGGCGCCGGCATGCGTGCGGCGCTCGAGGCGTCCAAGGACGCGCGCACCGCCGTCATCTCCAAGCTCTACCCCACCCGCTCCCACACCGGCGCCGCCCAGGGCGGCATGGCCGCCGCGCTGGCGAACGTCGAGGACGACAACTGGGAGTGGCACACCTTCGACACGGTCAAGGGCGGCGACTACCTCGTCGACCAGGACGCGGCCGAGATCCTCGCCAAGGAGGCGATCGACTCCGTCCTCGACCTGGAGCGCATGGGGCTGCCGTTCAACCGCACCCCCGAGGGCCGGATCGACCAGCGCCGGTTCGGCGGGCACACCCGTGAGCACGGACAGGCCGCCGTGCGCCGCGCCTGCTACGCCGCGGACCGCACCGGGCACATGATCCTGCAGACGCTCTACCAGAACTGCGTCAAGCAGGACGTGGAGTTCTTCAACGAGTTCTACGTGCTCGACCTGCTCACCGACCACGACCTGACCACCGAGGAGCTGGACGACGACGCCGAGGTCAACGCGACCGGCGTCGTCGCCTACGACCTCGCCAGCGGCGAGATCCACGTGTTCCAGGCCAAGGCGATCATCTTCGCCACCGGTGGCGCGGGCAAGATCTTCAAGACCACGTCCAACGCCCACACCCTCACCGGTGACGGCATGGCCCTCGCCTACCGCCGCGGGCTGCCGCTGGAGGACATGGAGTTCTTCCAGTTCCACCCCACCGGCCTGGCGGGCCTCGGCATCCTGCTGTCCGAGGCGGCCCGCGGCGAGGGCGGCATCCTGCGCAACGCGGACGGCGAGCGCTTCATGGAGCGGTACGCCCCCACCATCAAGGACCTCGCCCCCCGCGACATCGTGGCGCGGTCGATGGCCAACGAGGTACGGGAGGGCCGCGGGGCGGGTCCGAACAAGGACTACGTGCTGCTCGACCTGACGCACCTCGAGCCGGCGCACATCGACGCCAAGCTGCCCGACATCACCGAGTTCGCCCGCACCTACCTCGGCATCGAGCCCTACACCGAGCCGGTGCCCGTCTACCCCACGGCGCACTACGCCATGGGCGGCGTGCCCACGAACGTCAAGGGCGAGGTGCTGCGCGACAGCCACAACGTGGTCAAGGGACTGTACGCCGCCGGCGAGGTGGCCTGCGTGTCCGTGCACGGCTCCAACCGGCTCGGCACCAACTCGCTGCTGGACATCAACGTGTTCGGCAAGCGCTCCGGCCGGTCCGCGGCGGCCTACGCCAAGACCGTCGAGCAGCACCTGCCGATCCAGGAGAACCCGACCGAGCGCGTCGAGGCCCAGCTGTCCGAGATGCGCGACCGGCCCGACGGCGAGCGGGTCGCCGAGGTGCGCAAGGCCCTGCAGGAGACGATGGACGCGAACGCCCAGGTGTTCCGCACCAACGAGTCGCTGCAGCAGGCCGCCGACGACATCCGCGAGCTGCAGAAGCGCTACCGGAACGTCTCCGTGCAGGACAAGGGCAAGCTGTTCAACACCGACCTGCTCGAGGCGATCGAGCTCGGCTTCCTGCTGGACATCGCCGAGGTCACGGTGCTCGCGGCGCTCAACCGGCGCGAGTCGCGCGGCGGTCACTACCGCGAGGACTTCCCCGACCGGGACGACACCAACTACATGCTGCACACGATGGCGTACCGCCGTCCGACGTCGGCTCCCGACGCCGCCGACGGGCACGTCGAGGGCTACTTCGACCACGTCGAGGACTTCGGGGACTACAAGGTGGTCCTGGGGTCCAAGCCCGTCACCCAGACGCGCTACGAGCCGATGGAGCGGAAGTACTGAMQTHQYDVVIVGAGGAGMRAALEASKDARTAVISKLYPTRSHTGAAQGGMAAALANVEDDNWEWHTFDTVKGGDYLVDQDAAEILAKEAIDSVLDLERMGLPFNRTPEGRIDQRRFGGHTREHGQAAVRRACYAADRTGHMILQTLYQNCVKQDVEFFNEFYVLDLLTDHDLTTEELDDDAEVNATGVVAYDLASGEIHVFQAKAIIFATGGAGKIFKTTSNAHTLTGDGMALAYRRGLPLEDMEFFQFHPTGLAGLGILLSEAARGEGGILRNADGERFMERYAPTIKDLAPRDIVARSMANEVREGRGAGPNKDYVLLDLTHLEPAHIDAKLPDITEFARTYLGIEPYTEPVPVYPTAHYAMGGVPTNVKGEVLRDSHNVVKGLYAAGEVACVSVHGSNRLGTNSLLDINVFGKRSGRSAAAYAKTVEQHLPIQENPTERVEAQLSEMRDRPDGERVAEVRKALQETMDANAQVFRTNESLQQAADDIRELQKRYRNVSVQDKGKLFNTDLLEAIELGFLLDIAEVTVLAALNRRESRGGHYREDFPDRDDTNYMLHTMAYRRPTSAPDAADGHVEGYFDHVEDFGDYKVVLGSKPVTQTRYEPMERKYPGPT0001605_1658DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001605-sdhA|frdA-K00239NANA
AK018_02149774sdhB_1COG0479Succinate dehydrogenase iron-sulfur subunitATGACTGCTGTTGTGGAAGAGAACACCGCGAGCTCCGCTCCGGAGTCCCAGGCCGGTGCCGTCGCCTCCTTCGAGGTCACGCTCAGGATCCGCCGGTACAACCCGGAGGTCTCCGCCGAGCCGACGTGGGAGGAGCACACCGTCACGGCCTACGGCACCGACCGTGTGCTGGACGCCCTGCACAAGATCAAGTGGGAGACGGACGGGTCGCTGACGTTCCGGCGCTCGTGCGCCCACGGCGTGTGCGGGTCGGACGCGATGCGCATCAACGGTCGCAACCGCCTGGCCTGCAAGACGCTGCTGAAGGACATCAACCCGGACAAGCCGATCACCGTCGAGCCCATCAAGGGCCTGCCGGTGGTCAAGGACCTCGTGGTCGACATGGAGCCGTTCTTCGCCTCCTACCGCGAGATCATGCCGTTCCTGGTCACCTCCGGCAACGAGCCCAGCCGTGAGCACCTGCAGTCCCAGGCCGACCGCGACCGGTTCGACGACACCACCAAGTGCATCCTGTGCGCCGCGTGCACGTCGTCCTGCCCGGTGTTCTGGACCGACGGTCAGTACTTCGGCCCCGCGGCGATCGTCAACGCCCACCGCTTCATCTTCGACTCGCGCGACGAGGCCGCCACGCAGCGCCTCGAGATCCTCAACGACAAGGAGGGCGTGTGGCGCTGCCGCACGACCTTCAACTGCACCGAGGCGTGCCCGCGCGGCATCGAGGTCACCAAGGCGATCCAGGAGGTCAAGCGGGCGATGATCACCCGCGCCTTCTGAMTAVVEENTASSAPESQAGAVASFEVTLRIRRYNPEVSAEPTWEEHTVTAYGTDRVLDALHKIKWETDGSLTFRRSCAHGVCGSDAMRINGRNRLACKTLLKDINPDKPITVEPIKGLPVVKDLVVDMEPFFASYREIMPFLVTSGNEPSREHLQSQADRDRFDDTTKCILCAACTSSCPVFWTDGQYFGPAAIVNAHRFIFDSRDEAATQRLEILNDKEGVWRCRTTFNCTEACPRGIEVTKAIQEVKRAMITRAFPGPT0001600_1769DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001600-sdhB|frdB-K00240NANA
AK018_021501023hypothetical proteinGTGCCTGAACGTGACGACGGAATCAAGGAAGTCCTCACCCGCCTCGTCGGCTGGGTGAAGGACCGCCGTGAGGTCCGCGCCGTCCAGTGGTACACGGCGCGGCGCGGCAACCTGCTCTCGGGCGGGATCGCGTACTCGGCGCTGTTCGCCATCGGCGCGGGGCTGACCATCGGCTTCACGATCTTCTCGGCGACGCTCGGCAACCGCCCCGACCTCATGGCGGCGGTCACCGACCAGATCGAGCTGTGGCTGCCCGGCCTGATCGGCACCGGAGACGGTCAGCTGAACCCGCAGGATCTGGTCGTCGAGAACGTCTGGAACCCGGCGACGCTGATCGCCACCGTGGTGCTGCTGTGGACGGCCATCAGCTTCATGGGTGCCCTGCGGCACTCGATCCGGTCGATGTTCGACGCCCCGGTGGTCGGGGTGAATCCCGTGCTGGCCAAGGTGTGGCAGCTCGTCGGGTTCCTGCTGCTCGGGGTGATGGTCGTGGTGACGGCAGGCGCCAGCATCCTGTCGAGCGCCGTCACGAGCGAGGTCGACTCCTGGTTCGGGGACAACCCCGCCGTCGGGCGCCTGCTGGCCGTCGGGAGCCTCGCCGTCGCCGTGGTGCTCGACGCCGTGGTGGTCTTCCTCGTGGTCCGCGTGGTGGGCCGTGTGCGCCCGCGACGGGGCCGGGACATGGTCATCGGCTGCCTGCTCGCCGGCGTGGTCTCAGGGGCGCTGCGCTACGCGGGGACCTCGCTGGTGACCTCCAGCGTGTCGAACAACATCCTGCTGGGCTCGTTCGTCACGATCGGCACCATCCTGCTGCTCGCCAACTTCCTGTCCCGGATGCTGCTGATCATCTGCGCCTGGATGTACGACCCGCCGCGCCTGGACGAGATCGCCCGCGCCGACGCCGAGCTCGCCGCCCTGCGGCACGAGGAGGAGGTCGACCGGCTGGTGCGGCAGGGCTCCGGGAGCGGGCGACCCTACAGCCCGGTGGTCCGCGGCGTGCGCCGGGGCCGGTACGCGTTCTGAMPERDDGIKEVLTRLVGWVKDRREVRAVQWYTARRGNLLSGGIAYSALFAIGAGLTIGFTIFSATLGNRPDLMAAVTDQIELWLPGLIGTGDGQLNPQDLVVENVWNPATLIATVVLLWTAISFMGALRHSIRSMFDAPVVGVNPVLAKVWQLVGFLLLGVMVVVTAGASILSSAVTSEVDSWFGDNPAVGRLLAVGSLAVAVVLDAVVVFLVVRVVGRVRPRRGRDMVIGCLLAGVVSGALRYAGTSLVTSSVSNNILLGSFVTIGTILLLANFLSRMLLIICAWMYDPPRLDEIARADAELAALRHEEEVDRLVRQGSGSGRPYSPVVRGVRRGRYAFPGPT0014525_2653DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
AK018_02151555yjcG_1COG1514Putative phosphoesterase YjcGGTGAACATCCCCGCCAGGGGCCCGGACCAGACGCGGATCGGCATCGCGATCGCCGTCCCCGAGCCGCACGCGAGCAGGCTGCAGCAGGCGCGTGCCGACGTGGGGGACCCGCTGGCCGACGTGATCCCACCGCACATCACCGTCGTCGGCCCCACCGTCGTGGACGACTCGACGCTTGCTGCGGTTGCCGAGCACCTGGAGAAGGTCGCCGCCGAGTCGGCACCGTTCCGCGTCCACCTGCGGGGCACCGGGACGTTCCGGCCCGTCTCCCCGGTCGTGTTCGTCTCTCTGGTGGAGGGGATCGCGGAATGCGAGCTGCTCGAGCAGCAGGCGCGGTCCGGCGTGCTCGCCCAGGAGCTGCGGTTCAACTACCACCCGCACGTCACGATCGCCCACGAGATCCCCGACGCCGCGATGGACGAGGCCTTCGAGACGATGGCGGGGTTCGAGGCCGAGTTCGAGGTCGACCGCTTCTGGCAGTACACCCACGGTGACGACGGCGTCTGGCGGCCGCGACGCGCGTTCGTGCTGGGTGGCGCGCCCCCGACGTCCTGAMNIPARGPDQTRIGIAIAVPEPHASRLQQARADVGDPLADVIPPHITVVGPTVVDDSTLAAVAEHLEKVAAESAPFRVHLRGTGTFRPVSPVVFVSLVEGIAECELLEQQARSGVLAQELRFNYHPHVTIAHEIPDAAMDEAFETMAGFEAEFEVDRFWQYTHGDDGVWRPRRAFVLGGAPPTSNANANANANA
AK018_021521056trpS_1COG0180Tryptophan--tRNA ligaseATGTCCGACGCCGTCACCGCCGCGGGCACGCCGTCCGCGTCCCGCCCCCGCATCCTCTCGGGGATGCAGCCCACCGACTCCTCGTTGCACCTGGGCAACTATCTCGGGGCGCTGACCCAGTGGGTGGCCCTCCAGGAGGACTACGACGCCCTCTACTGCGTCGTCGACCTGCACGCGCTCACGGTGAACCCGGACCCGGCCGCGCTGCGCGAGCGCACCCGGGCCACGGCGGCGCAATACCTGGCCGGCGGCGTCGACCCTGCCCGCTCGGCGCTCTTCGTCCAGTCGCACGTGCCGGAGCACGCGGAGCTGGCCTGGCTGCTGAGCTGCCAGACCGGGTTCGGCGAGGCGAGCCGCATGACGCAGTTCAAGGACAAGTCCGCCAAGCAGGGCACCGAGGGCACCACGGTCGGGCTGTTCACCTATCCGGTGCTGATGGCGGCGGACATCCTGGCCTACGACGCCAACCTGGTCCCGGTCGGTGAGGACCAGCGTCAGCACCTCGAGCTCACGCGCAACCTGGCCGAGCGCCTCAACGCCCGGTTCGGCGCGGGCACCGCCGTCGTCCCGGACGCGCACATCGTGGGCTCCACCGCCAAGATCCAGGACCTGCAGAACCCCACGGCGAAGATGTCCAAGTCGAACGCGGGCGGCAAGGGCGTCATCTGGCTCCTCGAGGACCCGAAGAAGGCCGCGAAGGCGGTCAAGTCCGCCGTCACGGACGCCGACGACTCCTACGCGGTGTACTTCGACCGCGAGGCCAAGCCGGGCATCTCGAACCTGCTGACCATCTACTCGGCCGTCACCGGTCGCACGGTCGAGGACATCGCCGCCGAGTACGACGGCCGCGGCTACGGGTACCTCAAGGTCGACCTCGCCGACGCCGTCGTGGCGTTCCTCGAGCCGTTCCAGGAGCGGGCACAGACCTATCTCGGGGACCCGGCGCAGCTCGACAAGGTGCTCGACGACGGCGCGGAGCGGGCGCGGGAGATCGCGGCCGGCGTGCGGGCGCGCATCTTCGACCGGTTCGGGCTGCTGCCGCGAGGTGCGCGGTGAMSDAVTAAGTPSASRPRILSGMQPTDSSLHLGNYLGALTQWVALQEDYDALYCVVDLHALTVNPDPAALRERTRATAAQYLAGGVDPARSALFVQSHVPEHAELAWLLSCQTGFGEASRMTQFKDKSAKQGTEGTTVGLFTYPVLMAADILAYDANLVPVGEDQRQHLELTRNLAERLNARFGAGTAVVPDAHIVGSTAKIQDLQNPTAKMSKSNAGGKGVIWLLEDPKKAAKAVKSAVTDADDSYAVYFDREAKPGISNLLTIYSAVTGRTVEDIAAEYDGRGYGYLKVDLADAVVAFLEPFQERAQTYLGDPAQLDKVLDDGAERAREIAAGVRARIFDRFGLLPRGARPGPT0007120_2643DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007120-trpS-K01867NANA
AK018_02153420tatB_1Sec-independent protein translocase protein TatBGTGAGCTTCTTCGGAATCAACGGCGGCGAGCTCATCGTCATCGTGGTGCTGGCTCTGGTCCTGATCGGTCCCGAGCGCCTGCCCCGGTACGCCGCCCAGCTCGGGGCGCTGGTGCGCCAGGGCAAGGTGCTCGTCCGCGACGCCAAGGCACGGGTGGACTCCGAGCTCGGCGACGAGTTCCGGGACGTGGACTGGCAGAAGCTCGACCCGCGGCAGTACGACCCGCGCCGCATCGTCAAGGAGGCGCTGCTCGACGACGAGCCGGCGCAGCGGCCCGCCCGCACGAGCGGGGGCTCCGGCTCCGGTTCCCGCCCGACGGCCGGGGCCGCCGCGGCGCCGGTGGCCGGAGCACCCGGCACGCCGGCCGCCGGTACCGCACCGACCGCCGGTCCAGCACCGTTCGACGACGAGGCCACGTGAMSFFGINGGELIVIVVLALVLIGPERLPRYAAQLGALVRQGKVLVRDAKARVDSELGDEFRDVDWQKLDPRQYDPRRIVKEALLDDEPAQRPARTSGGSGSGSRPTAGAAAAPVAGAPGTPAAGTAPTAGPAPFDDEATPGPT0014360_2480DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0014360-tatB-K03117NANA
AK018_021541398hypothetical proteinATGACGTCCCACGACCCGACGGACCTGTTCGCCACCCCCGAGCCTCCGCCGCGCCGCGAGGCACCCGCGCCCCGGGCCGAGCCGGGCACGCCGTCGTCCCCGGCGCGGTCCGCCGCGACCCCGCCGTCGTCCCCGGCGGCCTGGACCGCCTCGCCGGCGTCCTGGGCGCCGCGGAACGCGACTGCGCCGACAGGTTCCGCCGCCCCGCCGACCGGACCTGCCACGCCGTCCGGCCCCGCCGCGCCGAGCGGCCCGCACCCCGCTGCGACGCCACCGCCACGTCCCGCCCACCCCCGGCTGGGCGCCGCGCGGGTCGCGCTGGTGGTCGTCCTGGCGCTCGTGGCCGGGCTGGTGGGCGGGTTCGCCGGCGACCGGCTCTCGGGCACGACGGCGGAGGATGCGCCGGTGGAGGCCGACCTGCCCGCGGCGCCCGACGGCGGTGAGGGCACGGACCTGTCCCGCCCCGCCGGGTCCGTGGCGGCGATCGCCGCGGACGTGCTCCCCTCGGTGGTCTCCCTGGAGGTCTCCGGCGGGGGCGGCGCCGGGTCGACCGGCTCCGGGTTCGTGCTGCGCGAGGACGGCTACGTCCTGACCAACGCCCACGTGGTCTCCGCGGGTGACGACGGCGGCGCGGTGACTGTGGTGCTGTCCGACGGCAGCGAGCACCCCGGCGAGGTCGTGGGGCTCACCACGGACTACGACCTGGCCGTCGTCAAGATCGACGTCGACGGGCTGACGCCGCTCGTGCTCGGCGACTCGGACGACGTCGTCGTCGGCGACCAGGTGCTGGCCGTCGGCGCCCCGCTCGGTCTGGACTCGACCGTGACGACCGGCATCGTCTCGGCCCTGCACCGCCCCGTGCAGGCCGGGGACCAGTCCTCCACGGCGTTCATCGACGCGATCCAGACCGACGCCGCGATCAACCCCGGCAACTCCGGCGGTCCGCTGGTCGACGCGGACGGCGAGGTGGTGGGCATCAACTCCGCCATCGCGCAGGCCCCGGGCGCGCTGCAGGCCACCGGGAGCATCGGCCTGGGGTTCGCCATCCCGGCGAACCAGGCACGCACCACCGCCGAGCAGCTCATCGAGACCGGGCAGGCGACCTACCCGGTGATCGGCGTCCTGCTGGACACGACGTACACCGGCGAGGGGGTCAAGGTCTCCGAGGATCCGCAGCAGGGCAACGCGCCCGTGACGTCCGGCGGGCCCGCCGACCTCGCGGGCGTGCGTGCCGGCGACGTCATCCTCGCGATCGACGGCCGGCCCGTCTCGCGCAGCGACGAGCTGATCGTGGCGATCCGTGCCCGGCAGCCGGGCGACGCCGTGACGTTGCGCGTGCGCAGCGGCGAGGAGGAGCGCGACGTGCGCGTCGTCCTGCAGGAGAGCGACGGCGAGTGAMTSHDPTDLFATPEPPPRREAPAPRAEPGTPSSPARSAATPPSSPAAWTASPASWAPRNATAPTGSAAPPTGPATPSGPAAPSGPHPAATPPPRPAHPRLGAARVALVVVLALVAGLVGGFAGDRLSGTTAEDAPVEADLPAAPDGGEGTDLSRPAGSVAAIAADVLPSVVSLEVSGGGGAGSTGSGFVLREDGYVLTNAHVVSAGDDGGAVTVVLSDGSEHPGEVVGLTTDYDLAVVKIDVDGLTPLVLGDSDDVVVGDQVLAVGAPLGLDSTVTTGIVSALHRPVQAGDQSSTAFIDAIQTDAAINPGNSGGPLVDADGEVVGINSAIAQAPGALQATGSIGLGFAIPANQARTTAEQLIETGQATYPVIGVLLDTTYTGEGVKVSEDPQQGNAPVTSGGPADLAGVRAGDVILAIDGRPVSRSDELIVAIRARQPGDAVTLRVRSGEEERDVRVVLQESDGEPGPT0021000_674DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021000-pepD-K08372NANA
AK018_02155888hypothetical proteinGTGAGCCGGCACCTCGGGGACTGGGTGAGCCCGCTCGCGGACGGACAGCTCGGTGCGGAGGACACCGAGCGCGCCCTCGCGCACGTGGCGGCGTGCCCGACGTGCGCCGCGGAGCTGGAGACGGCCCGCGCGGCGCGCCGGCACCTGGCCGGTGCCGGAGACGTCGTCGCCGACCCGGACCTGACGCGGCGCCTGCTCGCGCTGTCCGCGTCGATCCCGCCCACCGACGGGGACCCGCTGCGGGCCCCCGAGCGGGACACGACGTGGTCGACGCCGGTGGAGTGGCGGACCACGCTGACCGGCGACGTCGCGGTGGAACGCCGCCGTCGCCGCCGTCGGCGGGTCGCGCTCGCCGGCGTGGGCGGGGTCGGCGTGCTCGGGTGCACGCTGTTCGCGCTGGGCCAGGCCCCCGTGGTCGCCCCGGACCCGTCGCGGGCGGCCGCGCTGTCCACGCTGGCGTCGGCCTCGACGACGCCGGGCGGATCGGGGGAGGTGATCGAGTCGGCCGGGTTCGTGGCTCCCGCGGCGCTGCCCGCCGGGTACGAGATCACCGCGGTGCGGGCCGCGGACGACGTCCTGGAGATCGACCTGGACGGGCCGGACGGACCGGTCGTGGTGCGTGAGCAGCGGGGCCGGCTCGCCGACGTCGGCGAGCCGGAGGCGACCGTGTCGTTCGACGACCGGTCCGACGTCGTCGTCCTGACGGGCGACCCGTGGCACGTGGCCTGGCAGTCGGGGGACGTCGTCGTGGAGGTCACGACCGACGCGCCGCACGACGTGGTCCGCGACGTGGTCGCGGCCTTCCCCGGGCGTGCCTACGATGCCGGGGTCGTGCCTCGACTCACCCGGGGCTGGTCGACCGTGACAGGAGCACTCAGCAGCCCATGAMSRHLGDWVSPLADGQLGAEDTERALAHVAACPTCAAELETARAARRHLAGAGDVVADPDLTRRLLALSASIPPTDGDPLRAPERDTTWSTPVEWRTTLTGDVAVERRRRRRRRVALAGVGGVGVLGCTLFALGQAPVVAPDPSRAAALSTLASASTTPGGSGEVIESAGFVAPAALPAGYEITAVRAADDVLEIDLDGPDGPVVVREQRGRLADVGEPEATVSFDDRSDVVVLTGDPWHVAWQSGDVVVEVTTDAPHDVVRDVVAAFPGRAYDAGVVPRLTRGWSTVTGALSSPNANANANANA
AK018_02156585sigE_1COG1595ECF RNA polymerase sigma factor SigEATGACCGAGACCGTAGCCAGCACCCGACCCAGCGACGGACCGTCCCCCGACGGCACCACGCCGTGGGTCCCCCCGACGTGGGACGAGATCGTCCGCGAGCACTCGGCACGGGTGTTCCGGCTCGCGTACCGGCTGACCGGCGACCGTCAGGACGCCGAGGACCTCACCCAGGAGACGTTCCTGCGGGTGTTCCGGTCCCTGTCCAGCTACACCCCCGGCACGTTCGAGGGCTGGCTGCACCGCATCACGACCAACCTGTTCCTCGACCAGGTCCGCCGCAAGAAGCGCATCCGGTTCGAGGCGATGGGCGAGGACGCGTCCCGGGTGGAGGCCGCCGACGACCGCTCGCGTCCCGAGCGCGGGTTCGAGCACGCCCACCTCGACCACGACGTGCAGGCGGCGCTGGACGCGTTGCGGCCGGAGTACCGCGCCGCCGTCGTGCTCTGCGACATCGAGGGGCTCAGCTACGAGGAGATCGCCGTCACCCTCGGCATCAAGATCGGCACCGTCCGCTCGCGGATCCACCGGGCGCGCGCCCAGCTGCGCGACGCCCTGGAGCACCGACGCAGCGAGGTGAGCGGGTGAMTETVASTRPSDGPSPDGTTPWVPPTWDEIVREHSARVFRLAYRLTGDRQDAEDLTQETFLRVFRSLSSYTPGTFEGWLHRITTNLFLDQVRRKKRIRFEAMGEDASRVEAADDRSRPERGFEHAHLDHDVQAALDALRPEYRAAVVLCDIEGLSYEEIAVTLGIKIGTVRSRIHRARAQLRDALEHRRSEVSGPGPT0014960_2924DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_02157708COG4122Putative O-methyltransferaseGTGAGCACCCTGAACGGTTCCCCCGTACGATCGGCCCAGCGAGCAAGGGGGGCCGACATCACCACCGGGATCGGTGCCCACGACGGTCCGAGTGCCGCCTGGGCCTTCAGCGAGACGTACCTCACCGAGGACGTGACGCTGCTGCGCGCCCGCGAGCGGGGCGAGGAGCTGGGCTGCCGCTCGATCTCGACCGGTACCGGCGCGCTGCTGCGCACCCTCGCGGCGGCCCTGCAGGCGCGGACCGTCGTCGAGCTGGGCACGGGCAGCGCGGTCGCCTCCCTGTGGCTGCTGCGCGGCATGGCACCGGACGGCGTCCTGACCACGATCGACGCCGACGGCGAGCATCTGCGGGCCGCCAAGGCGGCGTTCGCCGACGAGGGCGTCCCGGCGCACCGGACCCGTACGATCGCCCGCTCCGCCGCGGAGGTGCTGCCCCGTCTCACCGACGGCGCCTACGACCTCGTGGTCGTCTCGACCGAGCCGCACGCGCTGCCCGGCCAGGTGACCGCGGCGGTCCGGCTGCTGCGTCCCGGCGGGATGCTCGTGATCACCGACGCCCTGCTCGGCGGCCGCGTCGCCGATCCCGCGCTGCGCGACGAGGAGACCGCCATCGTGCGCGAGGTCACCGGCGCGCTCCGCGACGACGACCGGCTGGCCCCGGCGGTCGTGCCGGTCGGCGAGGGCGTGCTGCTGGCGGTACGCCGGTAGMSTLNGSPVRSAQRARGADITTGIGAHDGPSAAWAFSETYLTEDVTLLRARERGEELGCRSISTGTGALLRTLAAALQARTVVELGTGSAVASLWLLRGMAPDGVLTTIDADGEHLRAAKAAFADEGVPAHRTRTIARSAAEVLPRLTDGAYDLVVVSTEPHALPGQVTAAVRLLRPGGMLVITDALLGGRVADPALRDEETAIVREVTGALRDDDRLAPAVVPVGEGVLLAVRRNANANANANA
AK018_02158168hypothetical proteinATGGCTGCGATGAAGCCGCGCACGGGCGACGGGCCGCTCGAGGTCACCAAGGAGGGACGCGGCATCGTCATGCGTGTCCCGCTGGAGGGCGGCGGTCGCCTGGTGGTCGAGCTGAACGCCACCGAGGCCGGCGAGCTGGGCGAGGCCCTCCAGGCCGTCACCGGCTGAMAAMKPRTGDGPLEVTKEGRGIVMRVPLEGGGRLVVELNATEAGELGEALQAVTGNANANANANA
AK018_02159972folP2_1COG0294Inactive dihydropteroate synthase 2GTGATCCCCCCGGCCGGTGCGCCGCTCGTCCTGCGCGGCAGGGAGGTCGGCCGGGACGACGACGGCGTCGTGCGCCCGGTGGTCATGGCCATCGTGAACCGCACCACCGACTCGTTCTACGCCCCGGCGCGGCTCGCGGACGACGGGCCGGCGCTCGCGGCCGCGCACGCCGCCTGGTCCGACGGCGCCGCCATCCTCGACGTCGGCGGCGTGCGGGCCGGGGTCGGCCCGGAGGTCGACGAGGCGGCCGAGATCGACCGCGTGGTGCCGTTCGTCGCCGAGGTGCGCCGCCAGGTCCCCGACCTGCTGCTGAGCGTGGACACCTGGCGTGCCGGCGTCGCGCGGGCGGCGATCGAGGCCGGTGCCGACCTGATCAACGACACGTGGGCAGGTCACGACCCGGAGCTGGTCGAGGTCGCCGGGGCGGCGGGGGTCGGGGTGGTCTGCTCCCACACCGGCGGTGCGCGGCCGCGTACCGACCCGTACCGCGTCACGTACGACGGCGGCCCCCTCGGCCCCGGGAACCCGGGTGACCCGGGTGACCCGGTCGAGCAGGCCCTCGACGACCCGCGCGACAGCGTCACCCGGGACGTGGTGGCCACCCTGCGGCGCGGCGCGGCGCGGGCGGTCGCCGCCGGGGTGCCGCCGTCGTCGGTGCTGGTGGACCCCACGCACGACTTCGGCAAGAACACCTGGCACTCGCTGCACCTGCTGCGGCGCACCGAGGTCCTGGCCGGGCTCGGGCACCCGCTGCTCATGGCGCTGAGCCGCAAGGACTTCGTGGGCGAGACGCTCGACCTGCCGCCGGACGAGCGCCTGCCCGGCACGCTCGCCGCGACCGCGCTGGCCGCCTGGCACGGCGCGCGCGTGTTCCGCGCCCACGACGTCGCCGCGACCCGGCACGTGCTGGAGATGGTCGCCGCGGTCCGGGACGAGGCCCCGCCGCGGGCGGCCCGCAGGGGACTGGCGTGAMIPPAGAPLVLRGREVGRDDDGVVRPVVMAIVNRTTDSFYAPARLADDGPALAAAHAAWSDGAAILDVGGVRAGVGPEVDEAAEIDRVVPFVAEVRRQVPDLLLSVDTWRAGVARAAIEAGADLINDTWAGHDPELVEVAGAAGVGVVCSHTGGARPRTDPYRVTYDGGPLGPGNPGDPGDPVEQALDDPRDSVTRDVVATLRRGAARAVAAGVPPSSVLVDPTHDFGKNTWHSLHLLRRTEVLAGLGHPLLMALSRKDFVGETLDLPPDERLPGTLAATALAAWHGARVFRAHDVAATRHVLEMVAAVRDEAPPRAARRGLAPGPT0007915_877DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796NANA
AK018_02160780hypothetical proteinATGAGCGAACGCACCGACGACGGCGTGCCCCAGTCCGGCCGGGGCTACCGCAAGGGGCCCGTGCTGCTGCGCGGCACCCAGATCCCCGACAGCACCACCGACCAGCGGCTGCTGGCGCCGGGGGAGGGCGCGGAGTGGGTCCACACCGACCCGTGGCGGGTCATGCGGATCCAGGCCGAGTTCGTCGAGGGTTTTGGTGCGCTCGCGGAGGTCGGCCCGGCCGTGTCGGTGTTCGGCTCGGCCCGCACCGCACCCGACCACCCCGACTACGCCCTCGGCGAGGAGATCGGCCGCCTGCTCGTCGAGTCCGGGTACTCGGTGATCACCGGCGGCGGGCCCGGGATCATGGAGGCGGCCAACAAGGGGGCCGCAGAGGCCCACGGCACCTCGATCGGCCTGGGTATCGAGCTCCCGTTCGAGCAGGGCATGAACCCCTACGTGAACCGCGGGGTCAGCTTCCGCTACTTCTTCGCGCGCAAGACGATGTTCGTCAAGTACGCCCAGGGCTTCATCGTCCTGCCCGGCGGGTTCGGGACCTTCGACGAGCTCTTCGAGGCGCTCACCCTCGTCCAGACGCACAAGGTCACCGGGTTCCCGCTGGTGCTCGTCGGCAGCGACTACTGGGGCGGCCTGCTGGACTGGATGCGCTCCGCCGTCGTGGACCGCGGCATGATCAGCCCTGGCGACATCGACCTGCTGCACCTGACCGACAGCGCCCCCGACGCCGTCGAGCACGTCCTCGAACGCGGCCGCGCGCTCGCCGCCGAGTTCCGCGAGTGAMSERTDDGVPQSGRGYRKGPVLLRGTQIPDSTTDQRLLAPGEGAEWVHTDPWRVMRIQAEFVEGFGALAEVGPAVSVFGSARTAPDHPDYALGEEIGRLLVESGYSVITGGGPGIMEAANKGAAEAHGTSIGLGIELPFEQGMNPYVNRGVSFRYFFARKTMFVKYAQGFIVLPGGFGTFDELFEALTLVQTHKVTGFPLVLVGSDYWGGLLDWMRSAVVDRGMISPGDIDLLHLTDSAPDAVEHVLERGRALAAEFRENANANANANA
AK018_021611110dapE_2COG0624Putative succinyl-diaminopimelate desuccinylase DapEGTGGACCCTGCGACCGTCCCCGCCTCGGACCTGGCCGGCCTGTGCGCCGCGATCTGCGACGTCGAGTCGGTCTCGGGCGCCGAGACAGACCTCGCCGACGCCGTCGAGGCCGTGCTGCGCGACCAGCCGCACCTGAGCGTGCACCGCGACGGCGACGCCCTCGTGGCCCGCACCGACCTGGGCCGCGACCGCCGCGTCGTGCTCGCCGGGCACCTCGACACCGTTCCCCTGACCGACCCGCCGAACCTGCCCGTCCAGCTCGAGGGCACCGGCGACGACCGCGTGCTGCGGGGCCGCGGCACGGTCGACATGAAGGCAGGGCTGACGGTGATGCTGGCGCTCGCGATCGAGCTCGGCCGCCCCGGCAGCGAGCCGGTCGCGGACCTCACCTACGTCTTCTACGACCACGAGGAGGTCGAGGAGTCCAGGAGCGGCCTGAAGCGCCTGGCCGCGAACAGCCCGGAGCTGCTCGCCGGGGACTTCGCGGTGCTCGGCGAACCGACGTCGGCCAACATCGAGGGCGGCTGCCAGGGCACGATCCGTGTCGACGTGCGCACCCGGGGCGTGGCCGCGCACTCGGCCCGCTCCTGGCGCGGCGAGAACGCGATCCACGCCGCCGCGCCGATCCTCGCGACCCTCGCCGCCTACGAGGCCGCCGAGGTCGAGGTCGACGGGCTCGTCTACCGCGAGGGCCTCAACGCCGTCGGCGTCCGCGGCGGCATCGCCGGCAACGTCGTGCCCGACGCCTGCACCGTCACCGTCAACTACCGGTTCGCGCCGTCACGGACCCTGGCCGAGGCCGAGGCCCACCTGCGCGAGCTGTTCACCGGCTACGACGTCGAGGTCACCGACGCCTCCCCGGCCGCCCGCCCGGGCCTCGACGACCCGCTGGCCGCCGAGTTCGCCGCCGCCGTGCTGGCACGCACCGGCGGGACACCCCGGCCCAAGTTCGGGTGGACCGACGTCGCGCGGTTCGCCGAGCTCGGCGTGCCCGCGGTCAACTTCGCCCCCGGTGACGCCTCGCTGGCCCACGCCGACGACGAACGCGTCCCCGTCGCCGAGCTCGCCGTGTGCCGCGACGCCCTGCGGTCCTGGCTGCGCGGTGCCTAGMDPATVPASDLAGLCAAICDVESVSGAETDLADAVEAVLRDQPHLSVHRDGDALVARTDLGRDRRVVLAGHLDTVPLTDPPNLPVQLEGTGDDRVLRGRGTVDMKAGLTVMLALAIELGRPGSEPVADLTYVFYDHEEVEESRSGLKRLAANSPELLAGDFAVLGEPTSANIEGGCQGTIRVDVRTRGVAAHSARSWRGENAIHAAAPILATLAAYEAAEVEVDGLVYREGLNAVGVRGGIAGNVVPDACTVTVNYRFAPSRTLAEAEAHLRELFTGYDVEVTDASPAARPGLDDPLAAEFAAAVLARTGGTPRPKFGWTDVARFAELGVPAVNFAPGDASLAHADDERVPVAELAVCRDALRSWLRGANANANANANA
AK018_02162966dapD_1COG21712,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-succinyltransferaseATGACCACGAGCACCTCCCCCCGCACCGCCTGGGGCCTCGGACTGGCCACCGTGGCCGACGACGGCACCACCCTCGACGTCTGGTACCCGACGCCCACGCTGGGCGAGGCGCCGGCCGACGTCGACGTCCCCGCCGACCTGGCCGCGCTCACCCAGCGCGACGACGCCCGTCGCGTGGACGTGCGCGTAGTGCACACGACCATCGACCTGGACGCCGCGCCGGCCGACGCCGCCGACGCCTACCTGCGCCTGCACCTGATCTCGAGCCGGCTCGTCCAGCCGCACGGCCTCAACCTCGACGGCCTCTTCGGCAAGCTCACCAACGTGGTGTGGACCTCGCACGGGCCGTGCAGCGTGGCCGACTTCGAGACGACGCGCCTGCGGCTCCGGGCCGCGAACGCCGGCCCCGTGACCGTGTACGGCATCGACAAGTTCCCGCGGATGGTCGACTACGTGGTGCCGTCGGGCGTGCGGATCGCCGACGCCGACCGCGTGCGCCTGGGCGCGCAACTGGCCGAGGGCACCACCGTCATGCACGAGGGGTTCGTCAACTTCAACGCCGGCACGCTCGGCGCCTCGATGGTGGAGGGCCGCATCTCCGCCGGCGTGGTGGTCGGCGACGGGTCCGACGTCGGCGGCGGCGCCTCGATCATGGGCACGTTGTCCGGCGGCGGCAAGGAGATCATCTCCCTCGGCGAGCGGTGCCTACTCGGCGCGAACGCCGGGCTCGGCATCCCCCTCGGCGACGACTGCGTCGTCGAGGCCGGCCTGTACGTCACCGCCGGCACCAAGGTGGTCGTGCTGGGCGAGATGGGCGACGACGGCGAGCCCCGCGTGGTCAAGGCCCGCGACCTGGCCGGCCGCGACGGGCTGCTGTTCCGCCGCAACTCGCGCACCGGTGCGGTCGAGGTGCTCGCCCGCCGGGGCACCGGCGTCGAGCTCAACGCCGACCTGCACGCGAACTGAMTTSTSPRTAWGLGLATVADDGTTLDVWYPTPTLGEAPADVDVPADLAALTQRDDARRVDVRVVHTTIDLDAAPADAADAYLRLHLISSRLVQPHGLNLDGLFGKLTNVVWTSHGPCSVADFETTRLRLRAANAGPVTVYGIDKFPRMVDYVVPSGVRIADADRVRLGAQLAEGTTVMHEGFVNFNAGTLGASMVEGRISAGVVVGDGSDVGGGASIMGTLSGGGKEIISLGERCLLGANAGLGIPLGDDCVVEAGLYVTAGTKVVVLGEMGDDGEPRVVKARDLAGRDGLLFRRNSRTGAVEVLARRGTGVELNADLHANNANANANANA
AK018_02163879hypothetical proteinATGGCGCGACGGCGTCCGGCCGCCCGCACGGCCGGCGCCGTCGTCGCGGTCCTCACCGTGGGGGCGGCGGCCGTCCTCGGCGTCGTGTGGGCGCTGGCCGCCCGGGACGCCGGCCCCCTGCGCGAGTCGTGCGCCGCGCGGCTCGACGGCGTCGAGCACGAGCTGACCACCGTGCAGGCGCAGAACACCGCGCTGATCGTCGGCACCACGATCCAGCGCGGACTGCCGGCCCGGGCCGCCACCATCGGGGTGGCCACCGCGATGCAGGAGTCACGGATCGTCAACATCGACTACGGCGACCGCGACTCGGTCGGGCTGTTCCAGCAGCGGCCCTCGCAGGGCTGGGGCGCCGTCGAGCAGATCATGGACCCGGTGTACTCCACGGGAGCATTCTACGACGGGCTCGTCGAGGTCGACGGCTGGGAGCAGATGGAGGTCACCGACGCCGCCCAGGCCGTGCAGCGGTCGGCCTTCCCGGAGGCGTACGCCCAGCACGAGCAGCTCGCGCGGGCCTGGGCGTCGTCGCTGACGGGTCACTCCCCCGGCTCGGTGACGTGCGACCTGCGGCCCGTCGACGCCGGGTCGGACGTCGTGGGGGTCGCCGACCGGATCGCGCGCGACCTCGGCGTGCCCGGCGGCGCGGTGACGACCGACGGCGCGACCGTGCGGGTCGACGCGTCCGTGCTGGGCTACGACGACCGCTCCCGGTCGACCTGGGCCGTCGCCCACTGGGCGGTGGCCACGGCCGCCGCGACCGGCGTCGTCGAGGTGCGCGCCGGCGAGCTGGTCTGGACCCGAGAGGCCGTCGACTGGCGGGAGGCGGGGAGCGCACCGGAGCCGCCCGGTCGCGGCGAGGTCGTCCTCCGCCTCGCGGGGTAGMARRRPAARTAGAVVAVLTVGAAAVLGVVWALAARDAGPLRESCAARLDGVEHELTTVQAQNTALIVGTTIQRGLPARAATIGVATAMQESRIVNIDYGDRDSVGLFQQRPSQGWGAVEQIMDPVYSTGAFYDGLVEVDGWEQMEVTDAAQAVQRSAFPEAYAQHEQLARAWASSLTGHSPGSVTCDLRPVDAGSDVVGVADRIARDLGVPGGAVTTDGATVRVDASVLGYDDRSRSTWAVAHWAVATAAATGVVEVRAGELVWTREAVDWREAGSAPEPPGRGEVVLRLAGNANANANANA
AK018_021641302gltA2_1COG0372Citrate synthase 1ATGACGTCCACCCAGCCGACCGCTTCGGTCCAGCTCAGCGTCGACGGCACGGCGCGCGACCTGCCCGTGGTCCCGGCCACCGAGGGGAACGACGGCATCGTCGTGTCCTCGCTGCTCAAGGACACGGGGATGGTGACCGTCGACCCGGGCTTCACCAACACCGCGTCCTGCGAGTCGACCATCACCTACATCGACGGCGCCCAGGGCATCCTGCGCTACCGCGGCTACCCGATCGAGCAGCTCGCGGACAACTCGTCCTTCCTCGAGGTCGCCTACCTGCTCATCCACGGCGAGCTGCCCACCACGGACGAGCTCGAGGCGTTCACCGACCGCATCAACCGGCACACGCTGGTGCCCGAGGCGTTCCGCACGTTCCTCGGCACCTTCCCGCGCGGCGGTCACCCGATGGCGATCATGGCGTCGGCCGTGAACGCCCTGGCGACCTATTACCCGGAGTCGCTCGACCCGCACGACGACGACGCGGTCGAGCTGGCCACGGTGCTGATCCTCGCCAAGATCCGCACGATCACCTCCTACGTGCACCGGTCGATGCAGGACGAGCCGCTGCTCTACCCGGACGCCGCCCGCGGGTACGTGGACGACTTCCTGCGCATGACGTTCCAGCGCCCCTACGAGGAGTGGCAGGCCAACCCCACGCTGGTCGCGGCGATGGACAAGCTGCTCATCCTGCACGCCGACCACGAGCAGAACTGCTCGACGTCGACCGTGCGCATCGTGGGCTCCTCGAACGCCACCCTCTACGCCTCGGTCGCGGCCGGCATCAACGCGCTGTCGGGCCCGTCGCACGGCGGCGCGAACGAGGCCGTGCTCCTGATGCTCGAGAACATCCGCTCCGGCGACGACTCCGTGGAGACCTTCATGAAGAAGGTCAAGAACAAGGAGGACGGCGTCCGGCTGATGGGCTTCGGGCACCGCGTCTACAAGAGCTACGACCCGCGCGCCGCCATCGTCAAGAAGCACGCCGACGCCGTGCTGGACGAGCTCGGTGCCAAGGACGAGCTGCTCGAGATCGCCCGCGGCCTCGAGGAGATCGCGCTCAACGACGACTACTTCGTCGAGCGCAAGCTCTACCCGAACGTCGACTTCTACACCGGCCTCATCTACAAGGCGATGGGCTTCTCGCCGGCGATGTTCACCCCGCTGTTCGCCCTCGGGCGGATGCCGGGCTGGATCGCGCAGTGGCGCGAGATGTCGAAGGACCCGCAGACCAAGATCGGCCGTCCGCGGCAGATCTACACGGGGCCGACCGAGCGGGACTACGTCGCGCTCGACCAGCGGTGAMTSTQPTASVQLSVDGTARDLPVVPATEGNDGIVVSSLLKDTGMVTVDPGFTNTASCESTITYIDGAQGILRYRGYPIEQLADNSSFLEVAYLLIHGELPTTDELEAFTDRINRHTLVPEAFRTFLGTFPRGGHPMAIMASAVNALATYYPESLDPHDDDAVELATVLILAKIRTITSYVHRSMQDEPLLYPDAARGYVDDFLRMTFQRPYEEWQANPTLVAAMDKLLILHADHEQNCSTSTVRIVGSSNATLYASVAAGINALSGPSHGGANEAVLLMLENIRSGDDSVETFMKKVKNKEDGVRLMGFGHRVYKSYDPRAAIVKKHADAVLDELGAKDELLEIARGLEEIALNDDYFVERKLYPNVDFYTGLIYKAMGFSPAMFTPLFALGRMPGWIAQWREMSKDPQTKIGRPRQIYTGPTERDYVALDQRPGPT0001455_2062DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001455-CS|gltA-K01647NANA
AK018_021651149dapL_1COG0436LL-diaminopimelate aminotransferaseATGGGTTTCACCGACCTGCGGGACGAGCCCTACCCCTGGGACACGCTGGCAGACGTCCGCGCGACGGCGGCCGCACACCCGGGCGGCATGGTCGACCTGTCGGTCGGCACCCCCGTCGACCCGACGCCGGACGTCGTCCGCGACGCGCTCGCGGCGGCGTCGGACGCGCCGGGGTACCCGGCCACGTTCGGGACCCCGGCGCTGCGGGCGGCCGTCACCGACTGGTTCGCGCGGCGACGCGGCGTCGCGGGGCTCGACCCGGCGGGCGTCATGCCGACGATCGGCTCCAAGGAGCTGGTGGGGCTGCTGCCGTCCCTGCTGCGCCTCGGGCCGGGAGACGTCGTCGTGCACCCGGAGATCGCGTATCCGACCTACGACGTCGGGGCGCGCCTGGCGGGGGCCACGCCGCTGCCCGCCGACGACGTCGCCACCTGGGCCGGGCGCGACGACGTACGCCTCGTCTGGGTCAACTCGCCGTCCAACCCCACCGGCGCGGTCGCCGACGTCGCGCACCTGCGCGCCGTGGTGGAGGCCGCTCGCGCGGTCGGTGCCGTCGTCGTGTCCGACGAGTGCTACGCCGAGCTGGCGTGGTCCGAGCCCTGGACCGCCGAGGGCGGGCGGAGCCGGGTCCCGAGCCTGCTCGACGACCGGGTCACCGGCGGGTCGCCGGACGGCCTGCTCGTCGCCTACTCCCTGTCCAAGCAGTCCAACCTGGCCGGCTACCGGTCCGCCTTCGTGGCGGGGGACCCGGCCCTGGTGGCCGACCTCGTCGCGACGCGCAAGCAGCTCGGCATGATCGTGCCGGCACCGGTCCAGGCCGCCACGATCGCCGCGCTCGGTGACGATGCCCACGTCGCGCAGCAGCGTGAGCGCTACCGCCGACGTCGCGACCTGCTGCTGCCCGCGCTGCAGGCCGCCGGGTACGTCGTCGACCGCTCCGAGGCCGGGCTGTACCTGTGGGCCCGGTCCGCGGACGGCGCCGCAGGTGGGACGACGTCGCGGGACCTCGCGCGCGAACTGGCGGGACGGGGCATCCTGGTGGGACCCGGGGAGTTCTACGGCGCCGCGGGGGCCCGCCACGTGCGGGTCGCGCTCACCGCGTCGGACGACGCGGTCGCCGAGGCTGTGGCGCGGCTCACAGTGTCTTGAMGFTDLRDEPYPWDTLADVRATAAAHPGGMVDLSVGTPVDPTPDVVRDALAAASDAPGYPATFGTPALRAAVTDWFARRRGVAGLDPAGVMPTIGSKELVGLLPSLLRLGPGDVVVHPEIAYPTYDVGARLAGATPLPADDVATWAGRDDVRLVWVNSPSNPTGAVADVAHLRAVVEAARAVGAVVVSDECYAELAWSEPWTAEGGRSRVPSLLDDRVTGGSPDGLLVAYSLSKQSNLAGYRSAFVAGDPALVADLVATRKQLGMIVPAPVQAATIAALGDDAHVAQQRERYRRRRDLLLPALQAAGYVVDRSEAGLYLWARSADGAAGGTTSRDLARELAGRGILVGPGEFYGAAGARHVRVALTASDDAVAEAVARLTVSPGPT0010335_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-TYPE_II_POLYKETIDE-OXY-|CHLOR-|TETRACYCLINE_METABOLISM,PGPT0010335-oxyQ-K14254NANA
AK018_02166318COG1146FerredoxinGTGACCTACGTGATCGCTCAGCCGTGCGTCGACGTCAAGGACAAGGCGTGCATCGAGGAGTGTCCCGTGGACTGCATCTACGAGGGCTCCCGCTCCCTGTACATCCACCCGGACGAGTGCGTGGACTGCGGCGCCTGCGAGCCGGTCTGCCCGGTCGAGGCCATCTACTACGAGGACGACGTCCCCGAGGAGTGGAAGGACTACTACCGGGCCAACGTCGAGTTCTTCGACGACCTGGGGTCCCCGGGCGGCGCCGCCAAGATGGGCGAGATCGACAAGGACGACCCCATGATCGCGGCCCTGCCCCCGCAGGCCTGAMTYVIAQPCVDVKDKACIEECPVDCIYEGSRSLYIHPDECVDCGACEPVCPVEAIYYEDDVPEEWKDYYRANVEFFDDLGSPGGAAKMGEIDKDDPMIAALPPQAPGPT0030810_1162PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0030810-fdxA-K05524
AK018_02167225hypothetical proteinGTGGTGCGCCGTCGGCTCTCCGCGGCCGAGGCCGCGTCCACGGGGCAGCGCTGGACGGACGTGATCGGCGTCGTCGTCGCCGCGGACGACGACGCGCTGGTGCTGCGGCGTGACCCGGCGCGCGCGTCGGCGCCCGGCGCCGGGACGGAGGTGCGCGTCGCGCGTGCCGAGATCGAGGCCGTCAAGCAGCTGCCACCGCGGCCGCGACGCGCCGGGAGGCCCTGAMVRRRLSAAEAASTGQRWTDVIGVVVAADDDALVLRRDPARASAPGAGTEVRVARAEIEAVKQLPPRPRRAGRPNANANANANA
AK018_021681023hypothetical proteinGTGACGCCCGGCGCCGCGGGGCCGGACCGCACCGCCGTCGTCGGGCTGGGCCTGATCGGCGGGTCGCTGGCGCGCCTGCTGGCCGCCCGCGGGGTCGACGTCGTCGCCACCGACGTCGCCCCGGCGACCCGCGCCGCGGCGCGGCGGGCGGGGCTGCGCGTCCACGACGACCTGGCGTCCTGCGTGGCGGGTGCGGGGCTGGTCGTGCTCGCCGTCCCGCTGCGGGCGATGGCGGCGACCGCCCTGGAGGTCGCCCGCCATGCGCCGGAGACCGCCACGATCACCGACGTCGGCAGCGTCAAGGGCCCCGTGCGCGCGGCTCTGGCGGCGGCCGGCCTCGCCGACCGGTACGTGGGTGCGCACCCCATGTCCGGCACGGAGCACAGCGGGTTCGACGCCTCCGACGCCGGGCTCCTCGACGACGTGACCTGGGCGGTCGCCCCGGCCGCGGGCCCGGAGGGCAGGACCGCGGACGCGCAACGGCTCGCCGCTGTCCTGGCGCTGGTCACGGGCCCCTGCGCGGGCCGGGTGGTGGTGCTCACCGACGACGTGCACGACGAGGCCGCCGCGCTCGTGAGCCATGTCCCGCACGTGCTGGCCACCCAGCTGTTCAACGCCGTCGCGGGCGCCCCGGTGCGCGAGGTCGCCCTGCGGCTGGCGGCCGGCAGCTTCCGCGACGGGACCCGGGTGGCGCTGACCGACCCCGCGCGCACCGAGGCGATGGTCACCGAGAACGCCGCGTGGGTCGCCCCCGCGCTGCGCAAGGTGATCCGCGACCTCGAGCTGGTGGTGGGCGCCCTGGAGTCCAACGGTTCCGTGCACGGCTTCTTCCACGACGCCGACGACCTGCGCGGCGTGGTCCGGTCGGGTCCCGGACGCGCTCCGGACGGGTCGGCGACCGACGTCGAGGAGGTCCCGCTGGGCCCGGACGGCGCGACGACGCTGCTCGAGCGCTGCCGGGCGGGCGCCGTCGTCGTCGGCCTGGACGCCACCCGCGAGGTAGCGCTCCTGGCCGCGAGGTAGMTPGAAGPDRTAVVGLGLIGGSLARLLAARGVDVVATDVAPATRAAARRAGLRVHDDLASCVAGAGLVVLAVPLRAMAATALEVARHAPETATITDVGSVKGPVRAALAAAGLADRYVGAHPMSGTEHSGFDASDAGLLDDVTWAVAPAAGPEGRTADAQRLAAVLALVTGPCAGRVVVLTDDVHDEAAALVSHVPHVLATQLFNAVAGAPVREVALRLAAGSFRDGTRVALTDPARTEAMVTENAAWVAPALRKVIRDLELVVGALESNGSVHGFFHDADDLRGVVRSGPGRAPDGSATDVEEVPLGPDGATTLLERCRAGAVVVGLDATREVALLAARPGPT0012870_21DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012870-cyclohexadieny|prephenate_dehydrogenase|3_phosphoshikimate_1_carboxyvinyltransferase-K24018NANA
AK018_02169957pheA_1COG0077Prephenate dehydrataseATGAGACTCGCCTACCTGGGCCCGGAGGGCACGTTCACCCACCAGGCGGCGCGCACCTGGACGGACACGTCGACCACGGGCGAGCCGGGTGCCGGAACCGCCGAGGTCGTGCCCGCCGCCGACGTGACGGCCGTGCACGACGCCGTGGCGGACGGGACGGCCGACCTGGGCGTGGTCGCGATCGAGAGCTCTGTCGAGGGGTACGTCGTGCCCTCCCTGGACGCCCTGCTGGGCAGCGCCGACGTCGTCGCCGTCGACGAGGTCGTCCTGGACGTCTCCTTCGACGCCTTCGTGCGGCCTGGCCACGGGGAGCTCACCGAGGCCACGGCCCACCCGCACGGCCTGGCCCAGTGCCAGGGGTTCGTCGCCGCGGGCGGGTGGCGGACGGTGCCCGCGGCGTCGAACGCCGCCGCCTGCCGCGACGTCGCCGACCACCAGGTCGCGCTCGGTCCGCGGCTGTGCGGCGAGCTGTACGGCCTCGAGACGTACGCCGAGGCCGTCGAGGACTTCTCCGGGGCGCGCACGCGGTTCCTGGTGCTCGGTCGGCGCGCGGAGGCGCGGGCGCGGCTGCGCGCCCGGGAGTCGGCCGGTGCGGCGTCCTGGCGCACGATGCTCGCGGTCACGCCCGTGGTCACGGGGCCCGGGGTGCTGGCCCGCATCACGCACGCGTTCGGCGGCCGCGGGGTCAACATGTCGAGCCTGGTGACACGTCCCCTCAAGGCGCGCGAGGGGCAGTACGTGTTCGTGGTGACGCTCGACGCGGCGCCCTGGGAGCCCGCCGTGCGGGAGCTGTTCGGCGACCTCCTCGACGCCGGCGACGCCCTCAAGGTCGTCGGCGTCTACCCGGCAGCACCCGGTGAGGGCGGTCTCGACGGCCCGCTCGCCGACCACGTGCCCACCGGGAGCGTGCGTCGCGGCCACGACGTCGCCGTCGTCGACGCGGGGCTGCTGTGGTGAMRLAYLGPEGTFTHQAARTWTDTSTTGEPGAGTAEVVPAADVTAVHDAVADGTADLGVVAIESSVEGYVVPSLDALLGSADVVAVDEVVLDVSFDAFVRPGHGELTEATAHPHGLAQCQGFVAAGGWRTVPAASNAAACRDVADHQVALGPRLCGELYGLETYAEAVEDFSGARTRFLVLGRRAEARARLRARESAGAASWRTMLAVTPVVTGPGVLARITHAFGGRGVNMSSLVTRPLKAREGQYVFVVTLDAAPWEPAVRELFGDLLDAGDALKVVGVYPAAPGEGGLDGPLADHVPTGSVRRGHDVAVVDAGLLWNANANANANA
AK018_02170894hypothetical proteinATGCTGGGACGCACCTCGAGGGAGTCGCCGGCCCACGCCGCGCGCGCCGCGCACGACGCCCGCTGGTCCGGCGTCGCGCCGGGCTCGCCCGTGGTCTCCGCCGTCGCCGACGAGTCCACCGAGATGCTGGACCTGGGCACGACCCCCCAGGCGCTGGCGACGGTGGCGAGCATCGACGACCTGGCGGCCGTGGTGCACGTCGGCCACCCGGAGCAGCCGTCCCCGACGCTCGAGCAGGCGCTGCTCGCCGGCGACCCCACGTTGCTGCTGACCGCGGCGGTCCCCGTCGAGCCCCGGTGGGTGTGGGTGGCCCCGGAGGGTCGCGGCGGCGGACAGGTCGTGGTCGACGAGGCGGGGGTGCGTGACTGCGCGGACGTGCTGCGCACCATGGGTGTCTCGCCACGCCTGGTGCCGACGGCCACGTCGATCGAGGAGCGGGCCGCGCTCGCCGGCGACCAGGGGTCGCTGGTCGTCGAACGGTCCCGCGTGCCCGCCGGCTGGACCGAGATGGCGGGCAGCGAACGCCTCGCCGACGTCGGACCGGTCTGGTACGGGCTGCTGGAGGCGCGCCGGGCGTGGCCGCGGTTCGAGGCGCCGGCCCAGGTGTGGCTCGCCTTCGGCCCGTCCGACGACCACCGCGGGTCGCTGCGGCACACGCTCGCGCTGCTCGACGAGGCCGGCGTGGACATGCAGCACCTGCGCAGCAACCCCTCGGCGGCCGGACCGCACGTGTTCTTCACGTCGTTCCGCTGCCCGGACGTCGCCGTGCTGGACGCGCTCGTCGACGAGCTCGACGGGCGCTCGGTGGCGCACCGGACGCTGGCGGTGCTGCCGGGCGGCCCCTCCGCCGTCGGACCGGAAGCCCTCGCGCCCCGCTGGTGGACGGGAGCATGAMLGRTSRESPAHAARAAHDARWSGVAPGSPVVSAVADESTEMLDLGTTPQALATVASIDDLAAVVHVGHPEQPSPTLEQALLAGDPTLLLTAAVPVEPRWVWVAPEGRGGGQVVVDEAGVRDCADVLRTMGVSPRLVPTATSIEERAALAGDQGSLVVERSRVPAGWTEMAGSERLADVGPVWYGLLEARRAWPRFEAPAQVWLAFGPSDDHRGSLRHTLALLDEAGVDMQHLRSNPSAAGPHVFFTSFRCPDVAVLDALVDELDGRSVAHRTLAVLPGGPSAVGPEALAPRWWTGANANANANANA
AK018_021712097hypothetical proteinATGGGCCAGTCGCCGACCGAGGACGAGTCGGGAGCGCCCGAGCGCCCGGAGGGCCCTGAGGACGCGACGACGTCGGCATCCCGGGAGCAGGGGGCCGCAGGGCCTGCTGCGCAGGAGCCCGGCGCCGAGGGGCCCGCTGCCGAGGAGTCGACGACGGAGGCTGGTCCGGGGACGCCCGACGCGGCGCCGGACACGGACGACGAGACCCCGTACGAGCCGCGCGTGCGGGCGTACGAGCAGCGCCGGGTCGTGGGGACGGTGGCCATGCCGCGGACCCCCGACGCGACCGCGGCCCCGACCGAGGCGATCCCGGCGGTGTCGTCGGCCGGCACGGCGGACTCCGCCGGCGCCGCCTCCGGCGCGTCGGGCGATGCCTCGGACCCGCTGGACGGGTTGTCGGGCGACGGCGCGCCGAGCCGCTGGCCCAAGGTGCTGCTCGGGGTCGGCGTCGGAGCGGTCGTGCTCGCCGGGCTCTACGTCGGCGCCCAGTGGTACGTCGCCGACACCGTCCCGCCGGGCACCACCGTCGCCGGGGTCGACATCGGGGACCTGCCGACCGAGGAGGCCACGGCTGCCCTCGACGAGGGCCTGTCGCCGCGCGCCGCCGAACCGATCACCGTGCGGGCGGGCGACGCCACCAGCACGCTCGACCCGGCCGAGGCCGGGCTGACGCTGGACGCCGCGGCCACCGTCGACGGTCTGACGGGTTTCTCGCTGTCACCGACCCGGCTCGTCGAGCACATCGGCGGCGGGGGAGAGGTGGCCCCGGTCGTCGACGTCGACCAGGGGGCCCTGGCGAGCAGCGTCGCCGCCGTCGGGGAGTCGCTCGCGGTCGAGCCCGTGGACGGGACGGTCCGGTTCGTCGACGGCGAGCCGGCGGCGACGGAACCGGTCGACGGCACGCAGGTGGACCCCGACGCCGCCGGCGACGCCGTCGTCGACGCCTGGCTCGTGACCAGCGGCCCGGTCGAGCTGCCCACCGAGGCCGTGCCGCCCGCGATCGACCAGGCCGACACCGACGCAGCGCTGGCCGAGGCCGAGCAGGTGGTCGCCGCCCCCGTGGTCGTCGAGGTCGGCGGGCAGAACCCCGAGCTGCCGCAGCGGGTCCTGGCCCGGTCGACGTCGTTCGCGCCGCAGGACGGCGCGCTCGAGGCGCGGTTCGACGGGGACCGGCTCACCAGCGCGATCGTGGAGCGCACCAACGACCTGCTCCGGGAGCCGGACGACGCGCACTTCGAGTTCTCCGGCGGCGAGCCGGTGATCGTGGGCGGCCAGACGGGGACCACGCTGGACCCCGAGCAGGTGTCCGGCGCCGTCGGTCCCGCCGCGCTGTCCGCGGACCAGCGCACCGCCGAGGTCGAGCTGGTCGAGGAGGACCCCGAGAACTCGCGCGCCTCGCTCGAGGAGCTGGGCGTGCAGGAGGTGATCTCCGAGTTCTCCACCCCGCTGACCAGCGAGCCGATCCGCACCAAGAACCTGATCCGGGGCGCCGAGCTCGTCAACGGGACGCTCGTCAAGCCCGGCGAGACCTTCTCCCTGGTGGACACGCTGTCCCCGATCGAGGTGTCCAACGGCTACTTCGCGGCCGGCGTGGTCAACAACGGCATCCACAGCGACGCCGTCGGCGGCGGCCTGTCCCAGATGGCCACCACGACCTACAACGCCGGGTTCTTCGCCGGGTTCGACGACGTCGAGCACCGCCAGCACAGCTACTGGTTCAGCCGCTACCCGGCCGGCCGGGAGGCGACGATCTACGTCGGTTCCATCGACATGCGCTTCAAGAACGACACGCCCTACGGCGCGCTCATGCAGAGCTACGTCTCCGGCGGGCGCCTGCACGTGCGGATCTGGTCCACGGAGCACTACGACGTCGAGGCGTCGGACTCCGGCAAGCAGGAGATCGTGCCGACCAAGACCGTCGACCTGTCGAGCAACCCGGACTGCGAGCCCTACTCGGGCGGGCAGGACGGGTTCGCGATCACCGTCTACCGCAAGGTCTACCTGGACGGTGACCTCGTCAAGGACGAGTCGGACTTCTGGCGGTACAAGCCGGACGACGCCGTGACCTGCTCGGGCGGCGGCGAGGAGGAGGACTGAMGQSPTEDESGAPERPEGPEDATTSASREQGAAGPAAQEPGAEGPAAEESTTEAGPGTPDAAPDTDDETPYEPRVRAYEQRRVVGTVAMPRTPDATAAPTEAIPAVSSAGTADSAGAASGASGDASDPLDGLSGDGAPSRWPKVLLGVGVGAVVLAGLYVGAQWYVADTVPPGTTVAGVDIGDLPTEEATAALDEGLSPRAAEPITVRAGDATSTLDPAEAGLTLDAAATVDGLTGFSLSPTRLVEHIGGGGEVAPVVDVDQGALASSVAAVGESLAVEPVDGTVRFVDGEPAATEPVDGTQVDPDAAGDAVVDAWLVTSGPVELPTEAVPPAIDQADTDAALAEAEQVVAAPVVVEVGGQNPELPQRVLARSTSFAPQDGALEARFDGDRLTSAIVERTNDLLREPDDAHFEFSGGEPVIVGGQTGTTLDPEQVSGAVGPAALSADQRTAEVELVEEDPENSRASLEELGVQEVISEFSTPLTSEPIRTKNLIRGAELVNGTLVKPGETFSLVDTLSPIEVSNGYFAAGVVNNGIHSDAVGGGLSQMATTTYNAGFFAGFDDVEHRQHSYWFSRYPAGREATIYVGSIDMRFKNDTPYGALMQSYVSGGRLHVRIWSTEHYDVEASDSGKQEIVPTKTVDLSSNPDCEPYSGGQDGFAITVYRKVYLDGDLVKDESDFWRYKPDDAVTCSGGGEEEDNANANANANA
AK018_02172414hypothetical proteinGTGACCTCTCCGCCCCACCACGCCCACCCCGCCCCGGTCCGCCGCGGCCCGGTCGCGACGGCCGGTCGGATCCTGCTCGCCGTGCTGCTGGGCGGGGCGGTCGGCACCATCGGCACCGTCGCGCACCGCACCTCCTGGGCCGACCTGCCCGCCGGACTGGTCCTGGCGCTCGTGCTGACGACGGGCGCCGCGTTCCTGTGCCGCGCGTGGTCGGGCGTCGGCACCCTGCTGGGGTGCGGGGCCGGCTGGCTCGTCGCGGTGCAGCTGCTGGCCGCGGCCGGACCGGGCGGTGACGTCCTGGTCCCGGCCGACGTCGTCGGGTTCACCTGGACGTACGGGGGCTTGGTGCCGTTCGTCGTCGTGGCGTTCCTGCCCCGGCGCTGGTTCGAGGACACCGGCGACGAGGCCTGGTGAMTSPPHHAHPAPVRRGPVATAGRILLAVLLGGAVGTIGTVAHRTSWADLPAGLVLALVLTTGAAFLCRAWSGVGTLLGCGAGWLVAVQLLAAAGPGGDVLVPADVVGFTWTYGGLVPFVVVAFLPRRWFEDTGDEAWNANANANANA
AK018_02173951mshB_21D-myo-inositol 2-acetamido-2-deoxy-alpha-D-glucopyranoside deacetylaseGTGACGCCGTCGGGCCGGCTGCTGGCCGTGCACGCCCACCCGGACGACGAGACCCTCGCCACCGGCGCGCTCCTCGCGGCGTGGGCCGCCGCGGGCGAGCCGGTGACCGTCGTGACCTGCACGCGCGGCGAGCGGGGCGAGGTGATCGACACCGCCTCCCACCGCACGGGCCTCGGCCACCTGGAGGGTGACGGACCGGCGCTGGCCGCGCACCGGGAGCACGAGCTGGCCGCCGCGCTGGCCGCGCTCGGCGTTCGCGACCACCTGTTCCTGGACGCCGCGGGCCCCGGCCGCCAGGGAGCGCGGTTCGAGGACTCGGGGATGGCGTGGGTCGCACCCGGCATCGCCGGTCCGGCGGCGGACTCCGGGCCGGCGGCGTTCGCGCGCGTCCCGCTCGACGACGCCGCCGGACGCCTGGCCGCCACGGTCCGGGACCGTCGTCCCGAGGTCGTGGTCACCTACGAGGCGGGCGGCGGCTACGGCCATCCCGACCACGTGCGGGCCCACCAGGTCACCGTGCGGGCCCTCGAGCTCGCCGCGGACCCGGCCGCCGCCGTGCCCGGGGCGGCGTGGTCGGTACCGGAACGCTGGGAGGTCGTGGAGCCCGCCGAGGCCCTGCGGGCGGCGCGTCGCACGCTCGTGGCCGCCGGCGCCCCGGAGGAGCTGGCGCTGCCCGACCCGGAGGGCGACCTCCCGCCCGTCGCCGTCGCCCGCGCCGACCTGGAGCGCGCGACGGTGCGCACCCTCGACGTCCTGCCCGTGCGGGCCGCGGTCCTGGCCGCCCTGGCCGCGCACGCCACGCAGGTCCAGGCCGTCCGTCCGCTCGACGGCGAGGGCCTGGCCGCGCGGTACGCGCTGAGCAACGCGGTCCTCGCGCCGCTGGCCGCCACCGCGCACCTGCGGGTGGTCACGACGTCGGCGCCGGACGCACCGGTAGGCTCGGCCCGGTGAMTPSGRLLAVHAHPDDETLATGALLAAWAAAGEPVTVVTCTRGERGEVIDTASHRTGLGHLEGDGPALAAHREHELAAALAALGVRDHLFLDAAGPGRQGARFEDSGMAWVAPGIAGPAADSGPAAFARVPLDDAAGRLAATVRDRRPEVVVTYEAGGGYGHPDHVRAHQVTVRALELAADPAAAVPGAAWSVPERWEVVEPAEALRAARRTLVAAGAPEELALPDPEGDLPPVAVARADLERATVRTLDVLPVRAAVLAALAAHATQVQAVRPLDGEGLAARYALSNAVLAPLAATAHLRVVTTSAPDAPVGSARNANANANANA
AK018_021741911typA_1COG1217GTP-binding protein TypA/BipAATGTCTGTGCGCTCCGACCTGCGCAACGTGGCGATCGTCGCCCATGTCGACCACGGCAAGACCACCCTGGTCGACGCCATGCTCCGACAGGCCGGCGCCTTCGCCGCGCACCAGCAGGTGGACGACCGGGTCATGGACTCCGGTGACCTGGAACGCGAGAAGGGCATCACGATCCTCGCCAAGAACACCGCGATCCGGTACGCCGGACCCGCGGCGGCGGACGCTGGCGAGCCCGACGGCGTGACCATCAACGTCATCGACACCCCCGGTCACGCGGACTTCGGTGGCGAGGTGGAGCGCGGGCTGTCCATGGTCGACGGCGTCGTCCTGCTCGTCGACGCCTCCGAGGGGCCGCTGCCGCAGACGCGGTTCGTGCTGCGCAAGGCGCTCGCCGCCAAGCTGCCGGTCATCGTCGTCGTCAACAAGGTCGACCGCCCCGACTCGCGGATCACCGACGTCGTCGCCGAGACCACGGACCTGCTGCTGGGCCTCGCGAGCGACCTGGCCGACGAGGTCCCCGACCTCGACGTCGACGCCGTCCTGGACGTGCCCGTCGTCTACGCCTCGGCCAAGGCCGGCCGCGCCTCGACCGAGCAGCCCGCTGACGGCGAGCTGCCGGCCAACGAGGACCTCGAGCCGATGTTCTCCACCATCCTGCGGACCGTCCCGGCGCCGACGTACGACGAGGACATGCCGCTGCAGGCGCACGTCACGAACCTCGACGCCTCGCCGTTCCTGGGCCGCCTCGCCCTGCTGCGGGTCCACAACGGCACCCTGCGCAAGGGGCAGACCGTGGCCTGGGCCCGCCAGGACGGCACCCTGAGCCAGGTGAAGATCACCGAGCTGCTGCGCACCGAGGCGCTCGACCGCGTGCCGGCCGAGTCGGCCGGTCCGGGCGACATCGTGGCCGTGGCCGGTATCGCGGACATCATGATCGGCGAGACCCTCACCGACGCGGACGACCCGCGACCGCTGCCGCGCATCACCGTGGACGACCCCGCCATCTCCATGACGATCGGGATCAACACCTCCCCGCTGGCCGGCAAGGGCGGCAAGGGGCACAAGGTCACCGCCCGGCAGGTCAAGGACCGCCTCGACGCCGAGCTCATCGGCAACGTCTCGCTGCGCGTGCTGCCCACGGACCGCCCCGACGCCTGGGAGGTGCAGGGGCGCGGCGAGCTCGCCCTGGCGATCCTCGTCGAGCAGATGCGTCGCGAGGGCTTCGAGCTGACCGTCGGCAAGCCGCAGGTGGTCACGCGGCAGGTCGACGGCAAGACGTGCGAGCCGATGGAGCACATGACCATCGACGTGCCCGAGGAGTTCCTCGGCGCGGTCACCCAGCTCATGGCGGCGCGCAAGGGCCGCATGGAGACGATGTCCAACCACGGCACCGGCTGGGTCCGCATGGAGTTCGTGGTGCCCGCCCGCGGCCTGATCGGGTTCCGCACCCGGTTCCTCACCGAGACCCGCGGCACCGGCATCGCCTCGTCGTACTCCGAGGGCTACGAGCCGTGGCACGGCACGATCGAGTCGCGCTCGACCGGTTCGCTCGTGGCCGACCGGGCCGGCGTCGTGACCCCGTTCGCCATGATCAACCTGCAGGAGCGCGGGACGTTCTTCGTGGACCCCACCCAGGAGGTCTACGAGGGCATGATCGTCGGCGAGAACTCGCGCAACGAGGACATGGACGTCAACATCACCAAGGAGAAGAAGCTGACGAACATGCGGTCCTCGACCGCGGACAGCTTCGAGAACCTGGTGCCGCCGAAGAAGCTCACCCTCGAGGAGTCCCTCGAGTTCGCCGCCGAGGACGAGTGCGTGGAGATCACGCCCGAGATCGTGCGGATCCGCAAGGTGAACCTCAACGCCGTCGAGCGCGCCCGCGCCGCCGCACGGGCCAAGCGCGCCTGAMSVRSDLRNVAIVAHVDHGKTTLVDAMLRQAGAFAAHQQVDDRVMDSGDLEREKGITILAKNTAIRYAGPAAADAGEPDGVTINVIDTPGHADFGGEVERGLSMVDGVVLLVDASEGPLPQTRFVLRKALAAKLPVIVVVNKVDRPDSRITDVVAETTDLLLGLASDLADEVPDLDVDAVLDVPVVYASAKAGRASTEQPADGELPANEDLEPMFSTILRTVPAPTYDEDMPLQAHVTNLDASPFLGRLALLRVHNGTLRKGQTVAWARQDGTLSQVKITELLRTEALDRVPAESAGPGDIVAVAGIADIMIGETLTDADDPRPLPRITVDDPAISMTIGINTSPLAGKGGKGHKVTARQVKDRLDAELIGNVSLRVLPTDRPDAWEVQGRGELALAILVEQMRREGFELTVGKPQVVTRQVDGKTCEPMEHMTIDVPEEFLGAVTQLMAARKGRMETMSNHGTGWVRMEFVVPARGLIGFRTRFLTETRGTGIASSYSEGYEPWHGTIESRSTGSLVADRAGVVTPFAMINLQERGTFFVDPTQEVYEGMIVGENSRNEDMDVNITKEKKLTNMRSSTADSFENLVPPKKLTLEESLEFAAEDECVEITPEIVRIRKVNLNAVERARAAARAKRAPGPT0023720_542DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0023720-typA|bipA-K06207NANA
AK018_021751749opuDCOG1292Glycine betaine transporter OpuDATGGCACGCCGACGCTCGACCCTCGCGCCCGCTGTCTTCTACCCGGCAGGCGGACTCATCCTGCTCTTCGTCCTCCTGGGGTTCTTCGCCACCGACGCGGTGGCGGAGGTGATGAGCACCCTGCAGGCCAAGACCGTCAACGGCTTCGGCTGGTACTACGTCGTGCTCGTGGCCGCGTTCGTCATCTTCGCGGTCTACCTCGGGGTCAGCCGCTTCGGCGAGATCACCCTGGGACCCGACGACGAGGCGCCCGACTTCAAGCTCCCGGTGTGGTTCGCGATGCTGTTCGCCACCGGCATGGGGATCGGCCTGGTCTACTACGGGGTCGCCGAGCCGCTGTCGCACTTCGAGAACCCCAAGCCCGGCGTCGGCGGCGACGAACCGCAGCTCGCCGAGGCGGCGATGGGACAGACGTACCTGCACTGGGGGTTCCACCCCTGGGCGATCTACGTGATCATCGGCCTGGCGCTGGCGTACTCGATCCACCGCAAGGGCCGGCCGGCGTCGATCCGGTGGGCGCTCGAACCCCTGCTCGGCGAGCGACGCGTGCGCGGGTGGCTCGGCAACGTCATCGACGTGCTGGCGATCTTCGGCACGGTGTTCGGCGTGGCGACGTCGCTCGGCCTCGGCGTCCAGCAGATCGCGGCCGGGCTGGACTACCTCGACGTGGCCAGCCCCGGTCTCGCGCTGCAGATGGGCCTCATCGCCGGCATCACGGCGGTCGCCGCGCTGTCGGTGGCCTCGGGCCTCGAGAAGGGGATCAAGTGGCTGTCGAACGCCAACATGATGCTCGCCGGCATCCTGCTCGTCGCCGTCCTCGTCATGGGCTCCTCGCTGTTCCTCATGCGCGAGTGGGTGCAGTCGATCGGCTACTACTTCCAGAACGTCATGATGATGACGTTCGACACGCTCGCGTTCCAGGGTGACGCCGGCCTGGAGTGGGAGTCCGGCTGGACCATCTTCTACTGGGGCTGGTGGATCTCCTGGGCGCCCTTCGTCGGGCTGTTCATCGCCCGCATCTCCCGCGGGCGCACCGTGCGCGAGTTCGTCATGGGCACCCTGCTCGTGCCGATGCTCGTGACCACCGTGTGGTTCAGCGTGTTCGGCGGGTCCGCCATCCACCAGGAGCGCAACGAGCCCGGCTCCATGCTCGCCGACGGTGCGGTGAACACCGACACCGCCATGTTCCAGCTCTTCGAGACGCTGCCGGGCGGCGGGGCCTGGATGGCGGTCGCCGCGATCGTGCTCGTCGTCGTGTTCTTCGTCACCTCGTCCGACTCCGGGTCGTTCGTGGTGGACATGCTGGCCAACGGCGGCGAGCAGAACCCGCCGCTGTGGTCCCGGCTGTTCTGGGCGATCCTCGAGGGCGGCGTGGCCGCGGCGCTCCTGTACGCCGGCGGGCTCAGCGCGCTGCAGACCGCGTCGATCCTCACGGCGCTGCCGTTCTCCCTGGTCCTCATCGGTGCGGCGATCTCGATCTGGAAGGCGCTGGACGGCGAGTACCGGGAGATCAGGCGGGTCGAGCGCCGCCTGCGGCGTCGCGAGCTGACCGAGGAGGTCACGGAGCACGTCACCGGTCACGTGACCGAGCACTTTGCCGAGCTCACCGGGCAGATCCCCGCGGTCGACGGGTCGAACCGGGACGGGGCGGCCCCGGCGGCCGCCCGGTCCGGCCGTCGCGCCGGGGCTCCGTGGCGGCGTCGGGACGCCGGGAACGGTCGCGGGAGCGGGCAGGACACCAGCGGGTAGMARRRSTLAPAVFYPAGGLILLFVLLGFFATDAVAEVMSTLQAKTVNGFGWYYVVLVAAFVIFAVYLGVSRFGEITLGPDDEAPDFKLPVWFAMLFATGMGIGLVYYGVAEPLSHFENPKPGVGGDEPQLAEAAMGQTYLHWGFHPWAIYVIIGLALAYSIHRKGRPASIRWALEPLLGERRVRGWLGNVIDVLAIFGTVFGVATSLGLGVQQIAAGLDYLDVASPGLALQMGLIAGITAVAALSVASGLEKGIKWLSNANMMLAGILLVAVLVMGSSLFLMREWVQSIGYYFQNVMMMTFDTLAFQGDAGLEWESGWTIFYWGWWISWAPFVGLFIARISRGRTVREFVMGTLLVPMLVTTVWFSVFGGSAIHQERNEPGSMLADGAVNTDTAMFQLFETLPGGGAWMAVAAIVLVVVFFVTSSDSGSFVVDMLANGGEQNPPLWSRLFWAILEGGVAAALLYAGGLSALQTASILTALPFSLVLIGAAISIWKALDGEYREIRRVERRLRRRELTEEVTEHVTGHVTEHFAELTGQIPAVDGSNRDGAAPAAARSGRRAGAPWRRRDAGNGRGSGQDTSGPGPT0013600_828DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020NANA
AK018_021761725COG1123putative ABC transporter ATP-binding proteinATGACGACCCAGTTCCCCGTGACCGCAGGAGACGACGGGCGCCCCGCCGTCGACCCGAACACCCCGCTGCTCGAGATCCGCGACCTGCAGATCTCGTTCTCCACGGGGGCCGGCGACGTGCACGCCGTGCGCGGAGCCGACCTGACCGTCTACCCGGGCCAGAGCGTCGCGATCGTCGGCGAGTCCGGTTCCGGCAAGTCCACCACCGCCGCCGCGATCATGGACCTGCTGCCCGGCACCGGCCGGGTCACCGGCGGCACGATCACGTTCGGCGGGCGCGAGCTCGTCGGCGCACCGCGCCGGGAGAAGGAGGCGCTGCGCGGCCGCGAGATCGGCCTCGTCCCGCAGGACCCGATGTCGAACCTCAACCCGGTGTGGCGCATCGGCACCCAGGTGACCGAGGCGCTCAAGGCCAACGGGTTCAAGGGATCCAAGGCGGACCTGCGTCAGCGGGTCGCCGACGTGCTGCGCGAGGCGGGCCTGCCCGACGCCGAGCGGCGGGCACGCCAGTACCCGCACGAGTTCTCCGGCGGCATGCGTCAGCGCGCGCTGATCGGCATCGGACTGGCGTCCCGGCCCCAGCTGCTCATCGCCGACGAGCCGACGTCGGCCCTGGACGTCACCGTCCAGCGCCAGATCCTCGACCACCTGGGCGACATGACCCGGGACCTGGGCACGGCCGTGCTGTTCATCACCCACGACCTGGGCCTGGCCGCCGAGCGCGCCGAGCACCTCGTGGTGATGTTCAAGGGCCAGGTCGTCGAGTCCGGCCCCGCGCAGCAGATCCTCGCCGACCCGCAGCACCCGTACACCCAGCGCCTCGTGTCCTCCGCCCCGTCGCTGGCCTCGCGCCGCATCCAGACGGCGCACGTGTCGGGCCAGGAGTCCGCCGAGCTGCACGCCCACCACGCGGGCGAGCGGCCGCCCGCCTCGAACGAGGCCGTCGCAGTGCGGAACCTCACCAAGGTGTTCCAGATCCGCGGGGCGCGCCCCGGGTCGTCGACCGACTTCAAGGCCGTCGACGACGTCTCGTTCACCCTGGGCCGCGGGCGGACGCTCGCCCTGGTGGGGGAGTCCGGGTCCGGCAAGTCCACGGCCGCGAACATGGTGCTGGGACTGCTGGAGCCGACGTCGGGCACGGTCGAGTTCGACGGCACCGACGTGGCGACCCTCAACCCCAAGCAGGCGTTCGCCTTCCGACGCCGGATCCAGCCGGTGTTCCAGAACCCGTACGGGTCGCTGGACCCGATGTTCTCGATCTACCGCTCCATCGAGGAACCGCTCAAGCTGCACGGCGTCGGCTCCAAGAAGGACAGGGAGAACCGGGTCCGCGAGCTGCTGGACATGGTCTCCCTGCCCCAGTCGGCCATGCGACGGTTCCCGAACGAGCTGTCCGGCGGGCAGCGCCAGCGCATCGCCATCGCCCGTGCGCTCGCCCTCAAGCCCGAGGTCGTGGTGCTGGACGAGGCGGTGTCGGCGCTCGACGTGCTCGTCCAGGCGCAGATCCTGGACCTGCTGGACACCCTGCAGACGGACCTGGGCCTGAGCTACCTCTTCATCACCCACGACCTGGCCGTGGTGCGCCAGATCGCCGACGACGTCGTGGTGATGCAGAACGGGCGGGTCGTTGAGCAGGCCACCACCGACGAGGTCTTCGACACGCCGCGCGAGCAGTACACGCGCGACCTGCTCGAGGCGATCCCGGGGGCGCACCTGGTGGGCTAGMTTQFPVTAGDDGRPAVDPNTPLLEIRDLQISFSTGAGDVHAVRGADLTVYPGQSVAIVGESGSGKSTTAAAIMDLLPGTGRVTGGTITFGGRELVGAPRREKEALRGREIGLVPQDPMSNLNPVWRIGTQVTEALKANGFKGSKADLRQRVADVLREAGLPDAERRARQYPHEFSGGMRQRALIGIGLASRPQLLIADEPTSALDVTVQRQILDHLGDMTRDLGTAVLFITHDLGLAAERAEHLVVMFKGQVVESGPAQQILADPQHPYTQRLVSSAPSLASRRIQTAHVSGQESAELHAHHAGERPPASNEAVAVRNLTKVFQIRGARPGSSTDFKAVDDVSFTLGRGRTLALVGESGSGKSTAANMVLGLLEPTSGTVEFDGTDVATLNPKQAFAFRRRIQPVFQNPYGSLDPMFSIYRSIEEPLKLHGVGSKKDRENRVRELLDMVSLPQSAMRRFPNELSGGQRQRIAIARALALKPEVVVLDEAVSALDVLVQAQILDLLDTLQTDLGLSYLFITHDLAVVRQIADDVVVMQNGRVVEQATTDEVFDTPREQYTRDLLEAIPGAHLVGPGPT0004435_2524DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
AK018_02177981oppC_1COG1173Oligopeptide transport system permease protein OppCATGCCTGAGAACCGCTACGAGAACCCGGGGGGACTGGCGAGGCCGACCCCGCGCCCCGGGCAGGAGCACTTCACCGCACCGGTCGACGAGGGCGGCCTCGGCGCCGTCGACGCCGTCCGCGCCGACGACGCCCCCACGAGCCTCTGGGGCGACGCCTGGCACGCGATGCGCCGCCGCTGGCTGTTCTGGGTCTCCGCGGCCGTCATCGTCCTGGTGATCCTGGTCGCGGCCTTCCCCGGGCTGTTCACCTCCATCGACCCCCGGGTCTGCGACCTGAGCAAGGCGCTCCAGGGTCCGCAGGCGGGCCACCCGTTCGGCTTCGACCGGCAGGGCTGCGACATCTACTCGCGCACCGTCTACGGCGCCCGGTCCTCCGTCGTCGTCGGTGTCCTCGCCACCGTGATGGTGGTGCTGCTCGGCACCACGATCGGAGCGGTCGCCGGCTACTACGGCAAGTGGTTCGACACGATCCTGAGCCGCATCACCGACATCTTCTTCGCCATCCCGCTGGTGCTCGCCGCGATCGTCATCATGTCCGTGACGGCCGACCGCACGAGCTTCCTCGTGGCGTTCGTGCTCGCGCTGTTCGGCTGGACGCAGATCGCCCGCATCACGCGCGGCACGGTCATGTCGGTGAAGAACAACGAGTTCGTCACCGCGGCGCGGTCCCTCGGCATGAGCCGCGGGCAGATCCTCGTGCAGCACGTGCTGCCGAACTCCTCGGCGCCGATCATCGTCTACGCGACGGTCGCGCTGGGGCAGTTCATCGTCGCCGAGGCGACGCTGAGCTTCCTCGGCATCGGCCTGCCGCCGTCCGTGGTCTCGTGGGGCGGTGACATCTCCGCGGCCCAGGGTGCCATCCGCACGGACCCGGAGATCCTGCTCTACCCGGCCGGCGGCCTGGCACTGACGGTGCTCGGCTTCATGATGATGGGCGACGTCGTGCGCGACGCCCTCGACCCGAAGGCTCGTAAGCGATGAMPENRYENPGGLARPTPRPGQEHFTAPVDEGGLGAVDAVRADDAPTSLWGDAWHAMRRRWLFWVSAAVIVLVILVAAFPGLFTSIDPRVCDLSKALQGPQAGHPFGFDRQGCDIYSRTVYGARSSVVVGVLATVMVVLLGTTIGAVAGYYGKWFDTILSRITDIFFAIPLVLAAIVIMSVTADRTSFLVAFVLALFGWTQIARITRGTVMSVKNNEFVTAARSLGMSRGQILVQHVLPNSSAPIIVYATVALGQFIVAEATLSFLGIGLPPSVVSWGGDISAAQGAIRTDPEILLYPAGGLALTVLGFMMMGDVVRDALDPKARKRPGPT0021025_993DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021025-oppC-K15582NANA
AK018_02178927dppB_3COG0601Dipeptide transport system permease protein DppBATGCTCTGGTATCTCGGACGCAGGCTCCTGCAGGTGATCCCTGTGTTCCTGGGCGCCACCCTCCTGCTCTACGCCATGGTCTTCCTGCGGCCCGGCGACCCGGTGTCCGCCCTCGGCGGCGAGCGGGGTCTGCCCGAGGCCGTCCAGGAGCAGATCCGGGCGGAGTACAACCTGGACCAGCCCTTCATCGTCCAGTACCTGCTCTTCCTGCGCGGCGTGGTCACCCTCGACTTCGGGGTGGACTTCCGCGGTCGCGAGATCACCGAAGTGATCGCCAGCGCCTTCCCCGTCACGATCCAGCTCGCGCTCATGGCGCTGGCCATCGAGGCGATCCTCGGCATCGGCTTCGGCCTGGTCGCCGGGATGCGCAAGGGCGGGATCTTCGACGGCACCGCCCTGGTCGTCAGCCTGTTCTTCATCGCCGTGCCGACGTTCGTCGTCGGTTTCGTCATGCAGATCGTCGTGGGCGTCAAGCTCGGCTGGCTACCCGTCACCGCCGGACGAGATCCCGACTTCGTCAGTCTGCTGATGCCGGCGTTCGTGCTCGCCGCCGTCTCGTTCGCGTACGTGCTGCGCCTGACGCGGACCTCCGTGGCCGAGAACCTGTCGGCGGACTACGTCCGCACCGCGCGGGCCCGCGGCCTGACGCGCACCCAGGTCACCGGACGGCACGTCCTGCGCAACTCCCTCATCCCCGTGGTGACGTTCCTCGGTGCCGACATCGGCGCCCTGATGAGCGGCGCGATCATCACCGAGGGCATCTTCAACATCAACGGTGTAGGCGGCACGCTCTACGACGCGATCATCCGCGGCGAGTCCGTGACCGTCGTGTCCCTGACCACCGTGCTCGTGCTGGTCTACATCGCGGCGAACCTGCTCGTGGACCTGCTCTACGCCGCCCTCGACCCGAGGATCCGCTATGCCTGAMLWYLGRRLLQVIPVFLGATLLLYAMVFLRPGDPVSALGGERGLPEAVQEQIRAEYNLDQPFIVQYLLFLRGVVTLDFGVDFRGREITEVIASAFPVTIQLALMALAIEAILGIGFGLVAGMRKGGIFDGTALVVSLFFIAVPTFVVGFVMQIVVGVKLGWLPVTAGRDPDFVSLLMPAFVLAAVSFAYVLRLTRTSVAENLSADYVRTARARGLTRTQVTGRHVLRNSLIPVVTFLGADIGALMSGAIITEGIFNINGVGGTLYDAIIRGESVTVVSLTTVLVLVYIAANLLVDLLYAALDPRIRYAPGPT0021020_1429DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021020-oppB-K15581NANA
AK018_021791623oppA_1COG4166Oligopeptide-binding protein OppAGTGACACCTCGTCGACGTCTGGCAGGCATCGGGGCCTTCACCCTCGCCTCGGCCCTGCTGCTCTCTGCGTGCGGAGGCTCCGGCAGCTCCGACGACACCGACTCGACCGCATCGGGCGACGACGCCAGCTCCGGCGTCGTCTCGATCTCCAGCGGTGAGCCGCAGAACCCCCTGACCCCCGGCATGACCAACGAGGTCTACGGCGGTCTCGTGGTCAAGAACATCTACTCCGGCCTCGTCTACTACGACGCCGAGGGCGCCGCCCAGAACGAGATGGCCGAGTCCATCGAGTCCGAGGACAACCAGACCTGGACCATCACCATCCAGGACGGCTGGACCTTCTCCGACGGCACGCCCGTCACCGCCCAGAGCTATGTCGACGCCTGGAACTACGTCGCCGACATCGACAACGCCCAGAACCAGCAGTACTTCTTCAACGGGTTCTCCGGCTACAGCACGGACGAGTCGTCCGAGCTCGCGCTCGAGGTCGTCGACGACCTGACGTTCACCGCCGAGCTCAACGAGCCGTCCGCGGACTTCGAGCTGTGGCTCGGCTACACGGCCTTCTTCCCGATGCCCGAGGCGTTCTTCGAGGACCCGGAGGGCTTCGGCTCGGCCCCGATCGGCGCCGGTCCCTACGAGCTCGAGTCCTGGGAGAACGACAGCCTGATCACGCTGATCCCGCGCGAGGGCTACGAGGGTCCGCGGCAGCCCGCCAACGGCGGCCTCGAGATGGTCGCGTACGTCGAGGAGGACACGGCGTACAACGACATGCTCGACGGCGCCCTGGACATCCTGCCGAACGTGCCGTCGTCGGCCTTCGCCACCTTCGAGTCCGACCTGGGCGAGCGTGCCGTCAACCAGCCGGCCGCCGTCATCCAGGTCGTCAACATCCCCGAGTGGCTGCCCGAGTTCCAGGGCGACGCCGGCGTCATGCGCCGCGAGGCCATCTCCATGGCGATCGACCGCGAGACGATCACCGAGCAGCTCTACAGCGGCTCGCGCACCCCGGCGCACGACTTCACCTCGCCCGTCATCGACGGCTACTCCGAGGACATCCCGGGCTCCGAGATCCTCGAGTACGACCCCGAGGGCGCCAAGGAGCTGTGGGACGAGGCCGAGTCGATGGACCCGATCGGCGACTACACGCTGCAGATCGCCTCGAACGCCGACTCCGACCACCAGGACTGGATCGACGCGGTGTGCAACACCATCCGCACCGACCTGGGCATCGGCTGCGAGTTCGCGCCCTACACCACCTTCGACGAGTTCCTCAACGCGCGTGACGACGAGTCCGTCGAGGGCATCTTCCGCGGTGGCTGGCAGGCCGACTGGCCGTCCATGAGCAACTTCCTGGGCCCGATCTACGGCACCGGGGCCGGCTCGAACGACATGAACTACTCCTCGGAGGAGTTCGACGCCAAGCTGGCCGAGGCCGGCGCCGCCCCGGACACGGAGACGGCGACCGAGCTGTACAAGGAGGCCCAGGAGATCCTGTTCCAGGACGTGCCGGGCATCCCGCTCTGGTACCAGAACGCGACCGGCGGCTACGCCGAGACCGTCGAGAACGTCGAGTTCGGCTGGGACAGCGACCCGATCCTGTACCAGGTCACCAAGGAGTGAMTPRRRLAGIGAFTLASALLLSACGGSGSSDDTDSTASGDDASSGVVSISSGEPQNPLTPGMTNEVYGGLVVKNIYSGLVYYDAEGAAQNEMAESIESEDNQTWTITIQDGWTFSDGTPVTAQSYVDAWNYVADIDNAQNQQYFFNGFSGYSTDESSELALEVVDDLTFTAELNEPSADFELWLGYTAFFPMPEAFFEDPEGFGSAPIGAGPYELESWENDSLITLIPREGYEGPRQPANGGLEMVAYVEEDTAYNDMLDGALDILPNVPSSAFATFESDLGERAVNQPAAVIQVVNIPEWLPEFQGDAGVMRREAISMAIDRETITEQLYSGSRTPAHDFTSPVIDGYSEDIPGSEILEYDPEGAKELWDEAESMDPIGDYTLQIASNADSDHQDWIDAVCNTIRTDLGIGCEFAPYTTFDEFLNARDDESVEGIFRGGWQADWPSMSNFLGPIYGTGAGSNDMNYSSEEFDAKLAEAGAAPDTETATELYKEAQEILFQDVPGIPLWYQNATGGYAETVENVEFGWDSDPILYQVTKEPGPT0021015_3524DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021015-oppA|mppA-K15580NANA
AK018_02180738ytrE_1COG1136ABC transporter ATP-binding protein YtrEATGACGACGGTGACGACCGGTCCTGCGGCGCACGGCGGTGCGGGTCCGACGACGGTGCTGCGGTGCACCGACGTGACGCGCACGTTCGGGCGCGGGACCGGCGAGGTGCACGCGCTGCGCGGCGTCTCGCTGGAGGTGGCCGCGGGCGAGCTGGTCGTGGTGCGCGGGCCGTCCGGCTCGGGCAAGACCACCTTGCTGAACGTGCTCGGCGGGCTGGACGTGCCGACGTCGGGCCGCGTGCGGCTGGGTGAGCGGGAGCTGACGACGGCGGACCCGGACGAGGTGCTCGCCGCCCGCCGTGACGAGGTCGGGTACGTCTTCCAGTCCTTCGGTCTCGTGCCGGTGCTGTCCGCGGCCGAGAACGTCGAGGTGCCGCTGCGGCTGCGGCGCACGCCGGCGGGAGAGCGGGCCGCACGGGTCGCCGAGGCCCTGGACCGCGTGGGGCTGGCCGGGCACGCGGACCAGCGCCCGGACGAGCTGTCCGGCGGGCAGCAGCAGCGGGTCGGGATCGCCCGGGCGCTCGTGGCCCGGCCGCGCGTGCTGCTCGCCGACGAACCGACCGGTCAGCTCGACTCCGCCACCGGGCGGCGCGTCATGGACCTGCTGCGCGAGCTGGTGCACGACGACGGGGTGGCCGCCGTCGTGACCACCCACGACCCGGAGCTCGTGGCGCGCGCGGACCGGGTGCTCGACCTGCACGACGGGCTCCTGCGGGACGGTGCGACGCTCGCGGCGTGAMTTVTTGPAAHGGAGPTTVLRCTDVTRTFGRGTGEVHALRGVSLEVAAGELVVVRGPSGSGKTTLLNVLGGLDVPTSGRVRLGERELTTADPDEVLAARRDEVGYVFQSFGLVPVLSAAENVEVPLRLRRTPAGERAARVAEALDRVGLAGHADQRPDELSGGQQQRVGIARALVARPRVLLADEPTGQLDSATGRRVMDLLRELVHDDGVAAVVTTHDPELVARADRVLDLHDGLLRDGATLAAPGPT0013345_4544DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_02181882btuD_9Vitamin B12 import ATP-binding protein BtuDATGAGTGACATCCTGTGCCGGGGCCTGGTGCGGATCTTCGCGACCGACGGCGTCGAGGTCCAAGCCCTGCAGGGTCTGGACCTGCGCGTCGAGGCCGGTGATCTGGTCGCCGTCGTCGGCGCGTCCGGGTCGGGCAAGTCGACGCTGCTGAACATCCTGTCCGGGCTCGACACGCCGACCGGCGGGTCCGCGACGGTGGCGGGCACGGACCTGGCCACGATGACGGCGCGGCGGCGGGTGCGGTACCAGCGCCGCACGGTGGGGTTCGTGTGGCAGCAGACCTCGCGCAACCTGCTCGGGTACCTGACGGCGGAGGAGAACGTGCGGCTGGTGCTCGACCTGGCCGGGGGACCGCGTCGGGCCCGGGCGGCCCGTGCGCGCGAGGTGCTGGACCTCCTCGGCGTCGCGGATCTCGCCGACCGGCTGCCCGGCCGGCTGTCCGGCGGCCAGCAGCAGCGCGTCGCGATCGCCGTCGCGGTCGCCAACGCGCCGCGCGTCCTGCTGGCGGACGAACCGACGGGCGAGCTCGACGAGGCCACGAGCGTGGAGGTGCTGGAGGCGTTGCGCTCGGTCAACGAGGCGACCGGGACGACGACGCTGATCGTGACCCACGACCCGACGGTCTCGGAGCACGTGGCGCGCACCGTCCAGATCCGTGATGGGCGCACCTCCACCGAGGTGCTGCGGCGCCGGTCCACCGACGCCGACGGCACGGAGCGGCACGTCGCCGAGGAGTTCGCCGTGCTGGACCGGGTGGGCCGCCTGCAGCTCCCGCACGACGTCGTGGAGGCCCTGGACCTGCGTGACCGGGTGCGCCTCACGCTGCAGCCCGACCACGTCCAGGTGCGCCCGGACCGGGACGAGAACCAGGAGGCACGATGAMSDILCRGLVRIFATDGVEVQALQGLDLRVEAGDLVAVVGASGSGKSTLLNILSGLDTPTGGSATVAGTDLATMTARRRVRYQRRTVGFVWQQTSRNLLGYLTAEENVRLVLDLAGGPRRARAARAREVLDLLGVADLADRLPGRLSGGQQQRVAIAVAVANAPRVLLADEPTGELDEATSVEVLEALRSVNEATGTTTLIVTHDPTVSEHVARTVQIRDGRTSTEVLRRRSTDADGTERHVAEEFAVLDRVGRLQLPHDVVEALDLRDRVRLTLQPDHVQVRPDRDENQEARPGPT0013345_1119DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_021822778hypothetical proteinATGAGCCTCTGGCTGCTCGTGCGCCGCCACCTGCGCACCGCCGTCGGCGCGACGGCCGCGCTCGCCGTGGTCGCGCTCGGGACCGCGGCCCTGGTCTCCGCCGTCCCGCGGGCCACGGCCGGGCTGCACGCCGACGAGTTCGCCCACGCGGTGGCGCAGGCCTCCGCCATCTCCTCCGACGTGGTGGCCACCAGCACCACCTACCCCGGCTACGGCGGCGCCCACGAGGCCTACGGCGGGACCGACCTCGGCGCCGGAGACCCGGACGGCTCCGGTACCGTGACGCCGCCGCAGCCCGACCTGGACGGCTACCTCACCGCGCTCACCGCGCTCGCCGCCGCCCAGCCGTCCCCCCTCGCGGACGTCCTCGGCACGCCCGACCTGGTGGTCTCCTCCGACCGGCTCGAGGTCGAGCGGGTCGAGGGCAACGACGTCGCCTCCCCGGGCGTGGTGCTGCGCGCCGGCCCGCGCCTGCGGGACCAGGTGGACGTCGTGGCCGGGCGCTGGCCGCGACCCACGCCGGTACCGGTGGACCGCACCACGCTGCTGCCGGGGCCGGACGGCGTCGTGGAGGTCGTCCCCGACCCGGTCGAGGTCGCGGCGTCCACCGCGGTGGCGGACGAGCTCGACTGGGAGCTCGGCTCCGTGCACCCCACCGGCGACCCCCTGCAGCCGGCGCTGCGCGTCGTGGCGCTGTGGGAACCGCGGGACGCCGGGGCCGACGTCTGGTCGCACGTGCCGCGCACCACCGGCCCCGAGATCGTCGTCGACCCCAACATCGGCAAGATCGTCACCGCCGGCGTGCTCACCGACCCGGGCACTCTCGGTGCCTGGACCGACGCCCCCACGGCGCGGATCTGGTACCCGGTGGACGCCTCCGGGCTGACCGCGGCGGACGCCCCGGTGCTGCTGGCCCAGCTGCGCGGCCTGACCGCCACCACCTCCACGGTCGTCGAGGGCGACCCGGCCGTGCTGGAACCGGCGTCCGGGCTCGTGGACCTGCTCGCCGAGGCGCTCGGCCGCCGCCAGGGCGTGGACGCGATCGTCGCCGTGCTCGCCGTCGGCCCGCTCGGAGCCCTGGCCGCCGTCCTCGTCCTGGCCGCACGGCTGGTGGTCGAACGACGGCGGGCCACCGTCGTGCTGGTCCGGGCCCGCGGCGCCGGGGCCGCGTGGATCCGCACGATGCTCGCGTTCGAGGGCCTCGCCGTCGGGCTGCCCGCGGCCACCGCCGGTCTCCTGCTCGGCCTGGCCGCGTTGCCCGGTCCCGTGACCGCCGGGCAGGTCGGGGCCGCCGCCGCGTGCGGGCTCGCCCCGGCCGCCGGGCTGGCCGCCGTCGTGCCCGCGCGCAGCGCCCGGGGCGAGCGGGCCGACCTCGGCACGACCGTCCCGCACCGTCGCCGCAGCCGCGCGGCCGTCGGGGCCGGGGTCCTCCTGGCGACGGCGGCGACCACGTGGCTGGCGATCGACCGCGGCAGGGTGACCGGACCGGACGGCACCGGCGTGGACCCCCTCCTGGTCGCCGCACCCCTCCTGGTGGGGCTGAGCGTCGCCCTCGTCGTGCTGCGGCTGGTCCCCCCGGCGGTGCGCCTCGGCGAACGGGCGCTCGCGCGACGCCGCGACCTGGTGCCCTTCCTCGGCGCGGCGCGCGTGCGCCGCGACGTCGCCGGCGGGCCCGTGCCCGCCGTCGCCCTGGTGCTCGCCTGCGGCGTCGCCTTCTCCTCGATCGCGCTGGCCTCCACCGTCCGTGCCGGCATCGAGCAGCAGGCCTGGACCGCCGTCGGGGCGGACCTGCGCCTGGCCGGCCCGGTCGTCGACGCCGACGTCACCGCGGCGATCGCGGCGGTCGACGGCGTCACCGCCGTCGCGCCGGTGGCCGACGCCGGCCGGTACCCGCTCGGCACCGTCGGCAGCGGCACGCCGGTCACGGCGTACACGACGGACGCGGCGGCGCTCGCGGCCGTGCAGTCGGGGGCACCGGGAGCCCCCGAGGGCCTGGACCGGCTCACCGAGGCCTCGGACGGCCGCCTGCCCGCGCTCGCCACGGGGGACGTGACGACGGGAGCCTCGGTACTGACCGGTCCGGGCGGGGCCGCGGTGCCGGTGACGGTCGTGGGGCACGTCGACCGGCTGCCGGGTCTGCCGCCGTCGTCGGGTGCCCTGGTGGTCGATGCCGGACTCGCCGCGGAGCTGGCCGGGATCGACGGCGGGGTCCCGCGGCTGGCGCTGATCGGGCTCGCCGACGACCTCGGTCCGGACGGCCACGCGGACGCCGTGGCGGGCGTCGCCGCGGCGGCACCGACCGGCGTCGTCGACGACCCCCTCGACGGCCGGGCCGCGCTGCTCGCCTCCCCGGCCGCGTCGGGCCTGGCGACGGCGTTCGTGGCCGCCGTCGTGCTGTCGGTGCTGCTGTGCGTCGCCACCGTGGCGCTCATGCTGGTCCTGGCGGCGCCCGCCCGGCGCCGGCTGCTGGCCGTGCTGCGCGCGCTCGGGCTGCCCCGCCGGGCCGAGCGCGGGATCGTGGCGTGGGAGGTCGGGCCGTGGGTGGTCGCCGCGCTGGTGGCGGGAGCGGTGCTCGGCGGAGCGGTGGCGGCCCTGGTGCTGGCCGTCGTGGACCTGACGCCGTTGACGGGCGGGGGCGCCGCCCCCCGGCTGCAGGTCGCCCCCTGGTGGTCCGCGGCGTTCGTGGTCGGCCTGCTGGGTGCGACCGCCGCGGGCGTGGCGGTCGCCGGGCGACGGCGGCGGGGGAGTCCCGCCGTCGACCTGGGGAGCGCGTCGTGAMSLWLLVRRHLRTAVGATAALAVVALGTAALVSAVPRATAGLHADEFAHAVAQASAISSDVVATSTTYPGYGGAHEAYGGTDLGAGDPDGSGTVTPPQPDLDGYLTALTALAAAQPSPLADVLGTPDLVVSSDRLEVERVEGNDVASPGVVLRAGPRLRDQVDVVAGRWPRPTPVPVDRTTLLPGPDGVVEVVPDPVEVAASTAVADELDWELGSVHPTGDPLQPALRVVALWEPRDAGADVWSHVPRTTGPEIVVDPNIGKIVTAGVLTDPGTLGAWTDAPTARIWYPVDASGLTAADAPVLLAQLRGLTATTSTVVEGDPAVLEPASGLVDLLAEALGRRQGVDAIVAVLAVGPLGALAAVLVLAARLVVERRRATVVLVRARGAGAAWIRTMLAFEGLAVGLPAATAGLLLGLAALPGPVTAGQVGAAAACGLAPAAGLAAVVPARSARGERADLGTTVPHRRRSRAAVGAGVLLATAATTWLAIDRGRVTGPDGTGVDPLLVAAPLLVGLSVALVVLRLVPPAVRLGERALARRRDLVPFLGAARVRRDVAGGPVPAVALVLACGVAFSSIALASTVRAGIEQQAWTAVGADLRLAGPVVDADVTAAIAAVDGVTAVAPVADAGRYPLGTVGSGTPVTAYTTDAAALAAVQSGAPGAPEGLDRLTEASDGRLPALATGDVTTGASVLTGPGGAAVPVTVVGHVDRLPGLPPSSGALVVDAGLAAELAGIDGGVPRLALIGLADDLGPDGHADAVAGVAAAAPTGVVDDPLDGRAALLASPAASGLATAFVAAVVLSVLLCVATVALMLVLAAPARRRLLAVLRALGLPRRAERGIVAWEVGPWVVAALVAGAVLGGAVAALVLAVVDLTPLTGGGAAPRLQVAPWWSAAFVVGLLGATAAGVAVAGRRRRGSPAVDLGSASPGPT0013350_908DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
AK018_021832871hypothetical proteinATGGGCCACGTGCTGCGGCGCGCCGTCGCGCACCGTGGTCTGCTCGGCCTGGTCGTCCTGCTCGTCGCCGTCGTCGCGGCGGCGGGCGGGACGACGGCCGGTGCGGTCGCGGGCACGACGGGCGCGGCGGCGCAGCGCGCCCTGACGGTCCCGGAGACGGCGAGCCTGCAGGTCACCACGCGTCTCGCCGAGGACGCCGAGTCCCAGGACGCCCACGTCCGGCAGGCGGTGGCGCGACTCCTCGGGGGTGCGCCCGTGGCGGTGGACCGGGCGCAGCGGCCCGACGGTGCCGACACCCCCTTCGTCGTGTGGACGCTCACGCCGGAGGTCGCCGCCGTGGCGCCGGACGACCTGCCCGTGCTGGCCGACGGCGGCGCGGCGCTGCACCAGGAGCTGCGCTCCGACGACGCGGTGGCGGTCCGCGGGCTGACGGTCGAGGGTGACCTCGCCGAGCGTGCCGCCCGGCAGGCGACCGCGACCGCGACGGCCGGCGCCGCCGTCGGGGTACCGGTGTCGATCCTGGCGGTGGTGGCGCTGGCCGCCCTGGGGCAGGTGGCGCGGCTCCTGTCCGGTGCGCGGCAGCGCGAGCTCGAGATCGTGGTGGCCCGGGGTGCCGCGCCGTCCCGGCTGGTCGTCGCGGACGGGGTCGAGGCCGTCGGGGTGGCCCTGTGCGGGGCCCTTGCGGGGACCACCGCCGCCGCGGTGCTGCTGGAGGCGGGCGACGTGCCCGGCGGCGCGGACCCGGTGGCCCTGGCGGCGACCGGAGCGGTGACGGCGTCGACCGCGGTCGTGGTGCTCGTCGTCACCAGTGCCTTGCGTACCCGCGACGTCGCCCGCCGGCAGGGCGGGGACCGGGCGGGGCGCCTGCGGCAGATCGCCGGGGCCGGGGGAGTGCTCGCCGTCGTCGCGCTCGCCGCCCTGGGCGTCCTGCGGTGGCGGAGCCTGGGCTCACCGGTCGTGGTGGACGCCGAGGGCGTGCGTGCGGACCTGCCGGCGGTGCTCGCGCCGGCCCTGGTGCTGGCCGCGACCGGCATGGTGGCGCTCGCGCTGCTCGGGCCGGCCACGCGCGTCTGGTCCGCGGCGGCCGCCCAGTCCCGCGGGGCGACGGCGGTGCTGGCCTCGCGCCAGGTCTCGCGCGGGTTGCGGGTGGTGGCCGTGCCGGTCGTCCTGCTGGTCCTGTCCGGCGGGGCGACGGTCCTGGCGGCGGCGTCCGTGGCCACGACGACGCAGGCCCGCGACGCCCTCGCCGCGCAACGGGTGGGGACGGACGTGCGGGTCGCGCTCCCGGGGGACGGACGGCTCGACGACGCCCGGCCGGCTCCGTCGGCGCACTCGTTCGCCCGGCTCGACGGGGCGTCCGGGGCGGCTCCGGTGCTGGTCGAGGACGCCACGGTCGACGGTGACCCGCTGCGGGTGACGGCGCTGCCCGTCGGCCTCGCGGACGGGGTGGTGCGGGCCGACGACGTCGCGGCCCTGACCGGCCCGCTGGGGCCGGGGGAGCGTTTCGACCGGGCGCCTGCGCTCGGGCCCGCCGCGGAGCTCGCGCTCGACCTGACCGGTGCGGCCGTCCCCGCCGCCGGGTCGCCGTCGCCGGCGACGGCTGGTGCCGGCGACCGGGCCGAGGTGACGGTGGCCGTCTGGCTCGCCGCCGACGACGGCACGCTGACGGTGCTGGAGGCAGGGACCGTGGCCCTGGGCGCGGCGGCGACCGTGGAGCGCGTGACGGTCGACGTGCCCGTCCGGCTGACGATGGCTCCCGGGCTGCGCCTGGTCGCCGTCGACGTCGATCCCCGGGTCGGTGCCGCCACCGACCTCGAGGTGGGGCTGCGCGACGTCGTGGCGACCGACGGCGCCGGTGGGGCGGCGGCCGCCGACCTCACCGCCGCGGCCTGGACCGCGGTGGCCCCCGCGTCCGGGGAGGTGCTGGCGCCCGAGCGGTCCGGCCCGCCCTCGGTGCGGACGACGGCGGCTCCCGGCGGCGCGGCAGGAGTGCGGTTCGTGGTCGCGCGGGACGTGGCGGGCGACCCCGCGACGACGGCCGCCACGGTGCCGGCGACCCTGACGCGGGCGGCGGCCGAGCGGTGGGACGCGTCCCCCGGCGACGTCCTCGAGGCGACGGTGGCGGGCAGCGGCGTCCGCCTGGAGGTCGCCGGGCTCGTCGACCGCGTCCCGGGCGGCACCGCCGCCGACGCCGCCCTGGTCGACCTCGGCACGCTCGACGCCGTCCTCCTGCGCACCGCGGTGCTGCTGCCGCGCCCGGCGGAGGTCTGGGTCGGAGCCGATCACCCGGACGACGACGAGTCGCTGACCTCTCTCGTGACGCTGGCCACCGCGCAGGCCCGCGTCCAGGCCCCCGACCCCGAGGACTTCGCCGTGACGACGGCCTCCGGTGCGGTCCGCGGGCCCGGCTCGCCCGGCACGGCGTCCGACACCTCGTCCGACGCCGGTGCCCCGGTCCGGCTCGCCGCCGTGACGGTGGCCGCCGGGTCGGGCGTCCTGGCGCTGGTCGGGCTCGCGGTGGCCGCCGCAGTGGGACTGGGCTCGCGCCGGGGAGAGACCGTCGTGCTGCGCGCCGTCGGGCTGGGCCCCCGCGGCCAGGGGGCCGGACGCGCCCTGGAGATCGCGGTCGTGGGGGTGGCCGGCGTCGTCTCGGGTCTGGTCGGCGGCCTCGCCGTCGCGGCCCTCACCGTCCCGGGCCTGGCCCAGGGCGTGGTCGGGTCCGCCGTCGTCCCGGCGTTCGCCGTCGACGTGCCCCTGCTGGCCGTCCTCACCGGTGTCGCGCTGCTGGGCGTCGCCGCCACGGCCGCCGTGGTCGCGGGCCGCGTCGCTGCCCAGGTGCGGGACACCGCGTACCGTCCGGAGGTCCGATGAMGHVLRRAVAHRGLLGLVVLLVAVVAAAGGTTAGAVAGTTGAAAQRALTVPETASLQVTTRLAEDAESQDAHVRQAVARLLGGAPVAVDRAQRPDGADTPFVVWTLTPEVAAVAPDDLPVLADGGAALHQELRSDDAVAVRGLTVEGDLAERAARQATATATAGAAVGVPVSILAVVALAALGQVARLLSGARQRELEIVVARGAAPSRLVVADGVEAVGVALCGALAGTTAAAVLLEAGDVPGGADPVALAATGAVTASTAVVVLVVTSALRTRDVARRQGGDRAGRLRQIAGAGGVLAVVALAALGVLRWRSLGSPVVVDAEGVRADLPAVLAPALVLAATGMVALALLGPATRVWSAAAAQSRGATAVLASRQVSRGLRVVAVPVVLLVLSGGATVLAAASVATTTQARDALAAQRVGTDVRVALPGDGRLDDARPAPSAHSFARLDGASGAAPVLVEDATVDGDPLRVTALPVGLADGVVRADDVAALTGPLGPGERFDRAPALGPAAELALDLTGAAVPAAGSPSPATAGAGDRAEVTVAVWLAADDGTLTVLEAGTVALGAAATVERVTVDVPVRLTMAPGLRLVAVDVDPRVGAATDLEVGLRDVVATDGAGGAAAADLTAAAWTAVAPASGEVLAPERSGPPSVRTTAAPGGAAGVRFVVARDVAGDPATTAATVPATLTRAAAERWDASPGDVLEATVAGSGVRLEVAGLVDRVPGGTAADAALVDLGTLDAVLLRTAVLLPRPAEVWVGADHPDDDESLTSLVTLATAQARVQAPDPEDFAVTTASGAVRGPGSPGTASDTSSDAGAPVRLAAVTVAAGSGVLALVGLAVAAAVGLGSRRGETVVLRAVGLGPRGQGAGRALEIAVVGVAGVVSGLVGGLAVAALTVPGLAQGVVGSAVVPAFAVDVPLLAVLTGVALLGVAATAAVVAGRVAAQVRDTAYRPEVRNANANANANA
AK018_021841830gsiA_2COG1123Glutathione import ATP-binding protein GsiAATGACCACCCTCGACATCACCGGCACGGACGAGCCCGCCACCCCGGGTGACGCCGTCCTGTCCTTCACCGACCTTGAGGTCACCTTCGGCACCGAGTTCGGCGATGTGCACGCCGTCAAGGGCGTCTCGCTCGAGGTCCACCCCGGCGAGGTCCTCGCCGTCGTGGGCGAGTCGGGCTCCGGCAAGTCGGTCACCTCGACGACGGCGCTCGGCCTGCTGCCGGACAACGCGCGGATCTCGGGCACCGTCCGGGTGGGCGACAAGGTGGTCGGCGAGCTGGACCAGGCGGGGCTGCGCAAGATGCGCGGCAACGACATCGCCATGGTGTTCCAGGAGCCGATGACGGCGCTCAACCCGGTGCTGACCATCGGCGACCAGCTCACCGAGGCCCTGCAGCTGCACGGGATCGCGTACGGCAAGATGGCCATGGCCCGCGCCGCCGAGCTGCTGCGCATGGTCGGCATCCCCGAGCCCGAGCGGCGCCTCAAGCAGTACCCGCACGAGCTCTCCGGCGGTCAGCGCCAGCGCGTGGTGATCGCGATGGCGATCTCCTGCGACCCGAGGGTCATCATCGCCGACGAGCCCACCACGGCGCTCGACGTGACGGTCCAGGCGGAGATCCTGGACCTGCTGCGCTCGCTGAAGGACAAGCTCGACACGGGCATCCTGCTCATCACACACAACATGGGCGTGGTGGCCGACATGGCCGACCGCGTCGCGGTGATGTTCAAGGGCGACCTGGTCGAGACGGGCACCGCGCAGCAGGTGCTGACCAACCCGCAGCACGAGTACACCAAGCGGCTGCTGGGTGCGGTGCCGCGCCTCGGCGAGGGCGTGGGCCAGGACGACGAGGGCGTCGCGCGCTCGGTCGAGGTCGAGCACGCCGACACCTCCCGGCCGGCGCTGCAGCTCGACAACCTCGTCATCGAGTACCACCGGCTGGGCAAGCCGGCCTTCCGTGCCGTGGACGACGTCTCGTTCACCGTCGGCCAGGGCGAGATCGTGGGCCTGGTCGGCGAGTCCGGGTCCGGCAAGTCGACCATCGGCAAGTGCGCGCTCGGCCTCATCCCGGCCGTGTCGGGGCATGTGCGGATCCTCGGCGAGGACTTCGGTGCGCTGAAGAAGAAGCAGCTCAAGGACCTGCGGCGGCGGATCGGCGTGGTCTTCCAGGACCCGGCCGCCTCGATCAACCCGCGGTTCCCCGTGGGGGAGGCGATCGGCGAGCCGCTGGTGGTGCACGGGGTGGGTGACCCCGCGTCGCGCGAGAAGCGCGTCATGGAGCTGCTCGACGCGGTGGAGCTGCCGCGGTCGTTCTACAACCGGTTCCCGCACGAGCTGTCCGGTGGTCAGCGCCAGCGCGTGTCCATCGCCCGGGCCCTGACCCTGGAGCCCGAGCTCATGGTGGCGGACGAGCCGACGTCCGCGCTCGACGTGTCGGTGCAGGCGTCCGTGCTGGAGATGTTCCTCTCGCTGCAGCGCGACTTCGGGTTCGCCTGCCTGTTCGTCAGCCACGACCTGGCGGTCATCGACATGCTGGCCCACCGCGTCGTCGTCCTGCAGAACGGCCGGATCGTCGAGCAGGGCACTCGAGACCGGGTGCTGCGCGCGCCGCAGGAGCCGTACACCAAGCGGCTCCTGGCGGCTGCCCCGGTGCCGGACCCGACCACGCAGGCCGAACGTCGCGAGGCCCGGCACCGCCTGCTGGCCGAGCTGGGCGACGAGGTCGTCGAGCTGCACGTCGACGACGACGAGTCGGCGGCGCGCAAGGCGCGCCAGGAGCCGGGAGCGGGTACGTCGGACCTGACGCGCGGCGCCGACCCGCACGTCTGAMTTLDITGTDEPATPGDAVLSFTDLEVTFGTEFGDVHAVKGVSLEVHPGEVLAVVGESGSGKSVTSTTALGLLPDNARISGTVRVGDKVVGELDQAGLRKMRGNDIAMVFQEPMTALNPVLTIGDQLTEALQLHGIAYGKMAMARAAELLRMVGIPEPERRLKQYPHELSGGQRQRVVIAMAISCDPRVIIADEPTTALDVTVQAEILDLLRSLKDKLDTGILLITHNMGVVADMADRVAVMFKGDLVETGTAQQVLTNPQHEYTKRLLGAVPRLGEGVGQDDEGVARSVEVEHADTSRPALQLDNLVIEYHRLGKPAFRAVDDVSFTVGQGEIVGLVGESGSGKSTIGKCALGLIPAVSGHVRILGEDFGALKKKQLKDLRRRIGVVFQDPAASINPRFPVGEAIGEPLVVHGVGDPASREKRVMELLDAVELPRSFYNRFPHELSGGQRQRVSIARALTLEPELMVADEPTSALDVSVQASVLEMFLSLQRDFGFACLFVSHDLAVIDMLAHRVVVLQNGRIVEQGTRDRVLRAPQEPYTKRLLAAAPVPDPTTQAERREARHRLLAELGDEVVELHVDDDESAARKARQEPGAGTSDLTRGADPHVPGPT0004435_1837DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
AK018_02185909hypothetical proteinATGACTGACCTCCAGACCTCGGCGACCCCGGAGAAGTCCTACAGCCAGAACCAGCTGGTCCGGATGCGCTTCTTCCGGCACCGGGGGGCGATCATCTCGATGATCGTCCTCGGCCTGGTGATCCTGCTCGCCTTCACCTCGATCGGCATCGGGCCGCTGCCGGGCTGGTGGGACAAGGTGCCCGAGCTGCAGTACCCGAAGATCGGCGACGGCGCTCCCACCTGGGAGCACCCGTTCGGCCAGGACACCGGCGGCAAGGACTACTTCGCCCTGGTGATGCTCGGCACGCAGAAGTCGCTCATCATCGCGTTCGGCGTCGGGATCATCTCGACCCTGATCGGCACGCTGATCGGCGCGGTCGCGGGCTACTTCCGCGGCTGGCTCGAGTCGCTGCTCATGCGCACCACCGACCTGCTGCTGGTCATCCCGCTGCTGGTCCTCGCCGCCGTGCTCGGCAAGATGGCGAGCGCCTGGGGGATCTGGGGCCTGACGATCATGCTCGGCATCGTGACCTGGACGGGCCTGGCCCGGCTGGTGCGCGGCGAGATGCTCTCCCTGCGCGAGCGCGACTTCGTCGTCGCGGCGACCGCCGTCGGCACGAGCAACGGGCGGATCATCACCAAGCACATCCTGCCCAACGCGATCGGCACGATCATCGTCTCGGCGACGCTGACGATCTCGGCCGCCATCCTGCTCGAGACGTCGCTGAGCTACCTCGGCTACGGCGTGCAGGCGCCCGACACCTCGCTCGGCCTGCTGATCTCCACCTACGAGACGGCGTTCACGACGCGCCCGTGGCTCTTCTGGTGGCCGGGGCTGATGATCCTCGCCATCGCGCTGACCGTGAACTTCATCGGTGACGGTCTGCGCGACGCGTTCGACCCCCGCCAGAACAGGACCAAGGACTGAMTDLQTSATPEKSYSQNQLVRMRFFRHRGAIISMIVLGLVILLAFTSIGIGPLPGWWDKVPELQYPKIGDGAPTWEHPFGQDTGGKDYFALVMLGTQKSLIIAFGVGIISTLIGTLIGAVAGYFRGWLESLLMRTTDLLLVIPLLVLAAVLGKMASAWGIWGLTIMLGIVTWTGLARLVRGEMLSLRERDFVVAATAVGTSNGRIITKHILPNAIGTIIVSATLTISAAILLETSLSYLGYGVQAPDTSLGLLISTYETAFTTRPWLFWWPGLMILAIALTVNFIGDGLRDAFDPRQNRTKDPGPT0004450_3225DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
AK018_021861521hypothetical proteinGTGCTCAAGTTCATCCTGCGACGCCTGGGGATCTCGTTCCTCGTGCTGTGGGCCGCGTCGCTGCTCATGTACGTCCTGACGGTTCACGCCGGCGACCCGCTGGCCGACCTGCGCGAGTCGAACGCGGAGAACCGCGACCAGCTCATGGCGTTGCGTCGCGAGCAGATGGGTCTCGACCTGGAGTGGTACGAGCGCTACTGGGACTGGCTGACCGGCGTGGCCGGCTGCTTCACCGGCAACTGCGACCTCGGCACCACCGTCAACGGCGCCAACGTGCTGGACCTGACGGCCCAGTCCGCGAGCTCGACGCTGCGACTGGTCACGGCGGCGACGCTGCTGGCGATCGTCGTCGGCATCGCCGCGGGCATCATCTCCGCCATCCGGCAGTACTCCGGGTTCGACTACTCGGTGACGTTCCTCGCCTTCCTCTTCTTCTCGCTGCCGGTGTTCTGGGCAGCGGTGCTCCTCAAGGAGTACGGCGCGATCCGCTTCAACGACTGGATCGCCAGCGGCGACATGGAACCACCCATGATCCTGGGCATAGCCCTGGTGGTCGGCGTGGTGATCGCCGCCGTCGTCGGGGGCACGTGGCGCCGCAAGATCTACACCGGGGCCGGCACGTTCGCGTTCGTCGCGGTCGTCCTGTGGGTGCTCAACATCCTGGACTGGTACCGCAACCCGTTCTTCGGCACCGCGATGGTGCTGCTCAGCTCGCTCGGTGCCGCGGTGCTCGTCACCGCCATCATCGCCGGGCTCGGCAACCGCCGGGTGCTCTACGCGGCGCTGACCACCGCCGTCGTCGGGACCATCAGCTACTTCGTCTTCGCCGGCCCGCTCCTGGAACCGTCGTCGTGGTGGGTGCTGATCGGCCTCTTCGTGCTCGCGGTCCTCGTCTCCGTCGGCATCGGCGCGGCCTGGGGCGGCTACGCGCGCAAGCAGGCCATGCTGATCTCCGCGATCACCGGCGTGCTCACCTCGCTGACGATCGTCTTCGACATCCTCGTCGGCCACTGGGCGGGGTTCCTGGAGCTCAAGTCGCGGCCGATCTCCACGATCGGCTCCGAGACGCCGAACTTCACCGGCGACTTCTGGGAGTCCGTGCTGGACTCCGGCATGCAGCTGATCCTGCCGACCATCGTGCTGACGCTGATCTCGGTCGCGTCGTACTCGCGCTACACGCGCTCGTCGATGCTCGAGGTGATGAACCAGGACTACGTGCGCACCGCGCGGTCCAAGGGCCTGTCCGAGCGAGCGGTGATCACCAAGCACGCGTTCCGCAACGCCCTCATCCCGATCACGACGATCGTCGCGTTCGACTTCGCCGGCCTCATCGGCGGCGCGGTCATCACCGAGAGCGTGTTCGGCTGGAAGGGAATGGGCGCCATGTTCCGCGAGGGGCTCGACCGGGTCGACCCCGACCCCGTCATGGCGTTCTTCCTCGTCACCGGCACGGCCGCGATCCTGATGAACATGCTCGCGGACATCGCCTACGCCTACCTCGACCCACGGATCCGGCGGTGAMLKFILRRLGISFLVLWAASLLMYVLTVHAGDPLADLRESNAENRDQLMALRREQMGLDLEWYERYWDWLTGVAGCFTGNCDLGTTVNGANVLDLTAQSASSTLRLVTAATLLAIVVGIAAGIISAIRQYSGFDYSVTFLAFLFFSLPVFWAAVLLKEYGAIRFNDWIASGDMEPPMILGIALVVGVVIAAVVGGTWRRKIYTGAGTFAFVAVVLWVLNILDWYRNPFFGTAMVLLSSLGAAVLVTAIIAGLGNRRVLYAALTTAVVGTISYFVFAGPLLEPSSWWVLIGLFVLAVLVSVGIGAAWGGYARKQAMLISAITGVLTSLTIVFDILVGHWAGFLELKSRPISTIGSETPNFTGDFWESVLDSGMQLILPTIVLTLISVASYSRYTRSSMLEVMNQDYVRTARSKGLSERAVITKHAFRNALIPITTIVAFDFAGLIGGAVITESVFGWKGMGAMFREGLDRVDPDPVMAFFLVTGTAAILMNMLADIAYAYLDPRIRRPGPT0004445_258DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
AK018_021871839COG0747putative lipoproteinGTGAAGATCAGGCGTGCAAGCGCAGCCGTCGCGGCCGTCGCGACCGGCGCCCTGCTGCTCTCGGCGTGCTCCAGCCCTGCCTCGGAGAACGAGCCGGAGTCCGAGGAGACCATGGCGGAGGAGACCGAGGGTTCGGCAGAGCCCACGGACTCCTGCAAGGTCGACACGGGCGTGACCGAGACCGCGGACGGGAACATCTCGTACTCCGCCGGCGAGGTGCAGTGGGCCGGCTACAACGGCAACCTGCCCGACACCTACTCGACGTACAACTCGGTCATCAACGACCGGATGTTCTCGGGCTTCATGTACTTCGGGACCGACGGGACCATCTGCCAGGACGAGACGTTCGGCTCGTTCGAGGCCGTCTCGGAGGACCCGCTGCAGGTGCAGTACACGATCTCCGACGACGCCGTGTGGTCGGACGGGACCCCCATCACCTACGCCGACTACCTGCTCGACTGGGCCACCCAGGCGGTCACCGCGGACGGCACCATCTCCGAGGACGCCTCGGAGACCCCGCTGTTCAACTCGGTCTCCGGCCTGACGCTCGGCGACTACGTGCCCGAGGGCCCGCAGGCCGACTCGGCCGACGCCAAGACGTTCCAGTACGACTACGAGCGCGTCTACGCCGACTGGCAGCTCATGGTCTCCTCGGCCTTCCCGGCGCACGTCGTCGCCGACCAGGCCGGCGTCAGCCTCGAGGAGCTCGTCACCGCCATCGAGGAGCTCGACATGTCGGTGCTCGAGCCGGCCGCCGAGTTCTGGAACACCGGCTGGCTGTCCTCGACGCCGGGCGAGCTGCCCGACCCGTCGATCGTGCCGGTCTCCGGTCAGTACACCCTCAAGGAGGACGGCTGGGTCGCCGGGCAGTCGCTGACCCTCACCGCCAACGAGGAGTACTGGGGCACCCCGCCCGCCACGAAGGAGCTGACCTACCGCTTCGCCGCGGCGGACACCCACGTGCAGGCGCTGCAGAACGGTGACCTCGACGTCATCGAGCCGCAGGCCACGGTCGACACGATCCCGCAGCTCGAGCAGATCGGCTCGTCGGTCACCACGCTGACCGGTCAGACCCTGATCTGGGAGCACCTGGACTACAACTTCGCCAACGGTGTCTTCGCCGACAACCTGGCCGCCCGTGAGGCCTTCGCCTACTGCGTGCCGCGCCAGAAGATCGTCGACGACCTGATCGCGCCGATCGACGAGGGCGCCGTGGTCATGAACGCCCGCGAGGTCTTCCCGTACCAGACCGAGAAGTACGACGAGGTCACCGCCGAGTCCTACGACGGCCGCTACGACGAAGTCGACCTGGAGATGGCCACGGAGAAGTTCGCCGAGGCCGGTCTCGAGGAGGGCACCGAGATCCGCATCGGTTACTCGGCCCCGAACCCGCGCCGTGCGGACGAGGTCGCCGCCATCAAGTCGTCCTGCGACCAGGTGGGCTTCAACATCGTGGACGCCGGCAACGCGGACTTCTTCGCCGCCGGCGGTGCGCTGGAGACCGGTGACTGGGAGATCGCCCTGTTCGCCTGGTCCGGTTCCGGCCAGATCGCCTCCGGCCAGAACATCTACGCGACCGGTCAGCCGCAGAACTTCGGCGGCTACTCCAACGAGACGGTCGACGAGGCCTGGGACACCCTGGCCTCCTCGGTCGACGAGTCGGTGCACCTGGAGCAGACGAAGATCATCGAGAAGGAGCTGTGGGACTCGCTCTACGGCATCCCGCTCTTCGCCCACCCGGGTGTCGTGGCCCACACCTCCAGCCTGGAGAACGTGCGCTTCACGGCGGCCCAGGACGGGATCGTCTGGAACGCCGAGCAGTGGGCTCGCGCGTCCTGAMKIRRASAAVAAVATGALLLSACSSPASENEPESEETMAEETEGSAEPTDSCKVDTGVTETADGNISYSAGEVQWAGYNGNLPDTYSTYNSVINDRMFSGFMYFGTDGTICQDETFGSFEAVSEDPLQVQYTISDDAVWSDGTPITYADYLLDWATQAVTADGTISEDASETPLFNSVSGLTLGDYVPEGPQADSADAKTFQYDYERVYADWQLMVSSAFPAHVVADQAGVSLEELVTAIEELDMSVLEPAAEFWNTGWLSSTPGELPDPSIVPVSGQYTLKEDGWVAGQSLTLTANEEYWGTPPATKELTYRFAAADTHVQALQNGDLDVIEPQATVDTIPQLEQIGSSVTTLTGQTLIWEHLDYNFANGVFADNLAAREAFAYCVPRQKIVDDLIAPIDEGAVVMNAREVFPYQTEKYDEVTAESYDGRYDEVDLEMATEKFAEAGLEEGTEIRIGYSAPNPRRADEVAAIKSSCDQVGFNIVDAGNADFFAAGGALETGDWEIALFAWSGSGQIASGQNIYATGQPQNFGGYSNETVDEAWDTLASSVDESVHLEQTKIIEKELWDSLYGIPLFAHPGVVAHTSSLENVRFTAAQDGIVWNAEQWARASPGPT0004430_1702DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
AK018_021881086ychF_1COG0012Ribosome-binding ATPase YchFGTGGCACTCACTATCGGCATCGTCGGACTGCCCAACGTCGGCAAGTCCACGCTCTTCAACGCCCTGACCCGCAACAGCGTGCTCGCCGCGAACTACCCGTTCGCGACGATCGAGCCGAACGTCGGGGTGGTGCCGCTGCCCGACCCCCGGCTGGACCGCCTGGCGGAGATCTTCTCCTCGGACCGGGTCCTGCCCGCGACGGTGTCGTTCGTGGACATCGCGGGCATCGTCAAGGGTGCCTCGGAGGGCGAGGGCCTGGGGAACAAGTTCCTGGCGAACATCCGTGAGGCGGACGCGATCTGCCAGGTCACGCGCGCGTTCGACGACGGTGACGTGATGCGCGTGGAGGGCTCCACCGACGCCGCGGGGGACATCGAGACGATCTCGACCGAGCTCGTCCTGGCGGACCTGCAGACGCTGGAGAAGGCGCTGCCGCGGATGGAGAAGGAAGTCAAGATCAAGAAGGGTGACCCGGTCCTGTACGCCGCCGCGAAGCAGGCCCAGGAGATCCTCGAGGAGGGCACCACCCTGTTCCAGGGTGCCGCGGCCGCCGGCCTGGACCTCGCGGAGGTCGCCCCCCTGCAGCTCATGACCGCCAAGCCGTTCATCTACGTGTTCAACACCGACGACGCCGGACTGGCCGACACCGCGATGCAGGAGCGCATGCGTGAGCTGGTCGCCCCGGCGCAGGCCATCTTCCTCGACGCGAAGTTCGAGTCGGAGCTGGTCGAGCTCGAGCCCGACGAGGCGGCGGAGATGCTGGCCGACTCCGGGCAGGACGAGGCCGGGCTGGACCAGCTCGCCCGCGTCGGGTTCGACACGCTGGGCCTGCAGACGTATCTCACCGCAGGGCCGAAGGAGGCCCGTGCGTGGACGATCCGCAAGGGCTGGACCGCTCCGCAGGCGGCCGGCGTCATCCACACCGACTTCGAGCGCGGGTTCATCAAGGCCGAGGTCATCTCCTACGACGACCTGGTCGAGGCCGGGTCGGTCGCCGCGGTGAAGGCCGCGGGCAAGGCGCGGGTCGAGGGCAAGGACTACGTCATGGCCGACGGCGACGTGGTGGAGTTCCGCTTCAACGTGTAGMALTIGIVGLPNVGKSTLFNALTRNSVLAANYPFATIEPNVGVVPLPDPRLDRLAEIFSSDRVLPATVSFVDIAGIVKGASEGEGLGNKFLANIREADAICQVTRAFDDGDVMRVEGSTDAAGDIETISTELVLADLQTLEKALPRMEKEVKIKKGDPVLYAAAKQAQEILEEGTTLFQGAAAAGLDLAEVAPLQLMTAKPFIYVFNTDDAGLADTAMQERMRELVAPAQAIFLDAKFESELVELEPDEAAEMLADSGQDEAGLDQLARVGFDTLGLQTYLTAGPKEARAWTIRKGWTAPQAAGVIHTDFERGFIKAEVISYDDLVEAGSVAAVKAAGKARVEGKDYVMADGDVVEFRFNVNANANANANA
AK018_021891080hypothetical proteinGTGTCGGGGCGGTTTGAGAGACTGGACGGCGTGATTCCCCAGAACGACCGACCCTCCCCGACGCTGCCCGACGGATGGACGGTGGTGGTTCCCGACCTTGCGGACGTGCCACGGCTGAGCGATCTGCGCGCGGCGCAGGCCGCGCCGTTCACCGGGTCGGACGCGCCGGCGACGGCGCAGGTGGAGAACGAGATCGCCGGTGCCGCCTCCTGGACGCGCCGCCATCTCGCCGTCAAGGACGACCAGGACGTCGTGCGGGCCTGGGCCCACGCGCACGACCGCGCCGCCGGACGTGCCGTCCTGGGCATCGAGATCGACCGCGGGATGCCGGTCGCGGACCAGGACCGGCTCGCGGCCTGGTGCTATGCCCGCCTCGCCGAGATCGGCCGGGAGATGGCCGAGCTGCGCGGGGAGACCACCACCCAGCTGGACGCGGGCGCGTTCGCCGACGACGAGCGCCTGCGGGGGTGGCTGACGGACGCCGGGTTCCGTCGCGCGCGCTCCTGGTGGCAGATGACGCGACCGGTGGCCGCCGAGGAGGCCGCCCCGGGCGTGTTCCCCGCGCCGAAGGACGGCGTCACCGTGCGTCGCGTGGCGCAGCACGACAACGGCATGCCGGTCGCCGAGGACCTCAACGCCGTCCACCAGGTCCTCGAGACGGCGTTCACCGACCACTTCAACTCCTACCAGGAGTACTTCACCGAGTTCGTCCAGCGCCTGCGCGAGGACCCGGGGCACCGGTGGGACCACTGGTGGCTGGCGTGCGTCGAGGACCCGGCGGACCCGACCGGTGACGCGGTGCCCGCCGGGGCGCTCGTCGGGTCGCAGCTCGCAGCGGACGACTCCGGGGTCGAGGGCACCTACATCGACTACATCGGGGCGCTCGCCGAGGCCCGCGGCCGCGGTGTGGCCACGGCGCTGCTGCACGCCGTCGTCGCGGACGCCGCCGCGCGGGGCCGCAACCGGGTCGGTCTCGAGGTCGACGCCGACAGCCCCACGGGGGCCGAGGGGCTGTACCGGAAGCTGGGCTGGCGCACCAAGTACGTCACGGAGTCCTGGCACCGCGACGTCGCGGTCTGAMSGRFERLDGVIPQNDRPSPTLPDGWTVVVPDLADVPRLSDLRAAQAAPFTGSDAPATAQVENEIAGAASWTRRHLAVKDDQDVVRAWAHAHDRAAGRAVLGIEIDRGMPVADQDRLAAWCYARLAEIGREMAELRGETTTQLDAGAFADDERLRGWLTDAGFRRARSWWQMTRPVAAEEAAPGVFPAPKDGVTVRRVAQHDNGMPVAEDLNAVHQVLETAFTDHFNSYQEYFTEFVQRLREDPGHRWDHWWLACVEDPADPTGDAVPAGALVGSQLAADDSGVEGTYIDYIGALAEARGRGVATALLHAVVADAAARGRNRVGLEVDADSPTGAEGLYRKLGWRTKYVTESWHRDVAVNANANANANA
AK018_021901602hypothetical proteinGTGGTTGCGCACTTCGTCCGACTGAAGCTGACCCTGCTCGCCAACACACTCCGGCGCAGCGTCTGGCAGACCATCGGGCTCGTGATCGCCGGGCTCTACGCGGCGGGAGTGGTCCTGCTCGGCGTCGTCGGCGCCGTCGCCGGCGGGCAGGCCGACCCGGTGCTCACCGGGCAGGTCCTGACCGTCGTCGGTGCCGCCGTCGTCCTCGGCTGGTGGATCGTGCCGTTGTTCGCGTTCGGCCTCGACTCCACGCTCGACCCGCTGCGGTTCACCACCTTCGCGATCCCGCGCCGGCATCTCCTGGTCGGGCTCGCCGCCGCCGCACTGGTGTCGGTGCCCGCCGTGGCCACCCTGCTGGCCGCCCTCGGCGTCTCGTTCGCCTGGGTCGGTGACCCGGTCGCGCTGCTCGCGGCGCTCGTCGGCGCCGTCCTCGCCGTGCTGCTCTGCGTCGTCGGCGCGCGGGCCACGACGACGCTGCTCGCCCCGCTGCTCGACTCGCGACGCCACCGCGAGGTGCTCATGGTCCTCGCGGTCGTGCCTCTGCTGGCGATCGGCCCGTTCTTCGCCTGGCTGTCGTCGTCCACCGGAGGGAGCATCGAGGTGAGGGGACCCGACGACCTCGTCCCAGGCGTCGTCGACCCGGCCGCGCAGCTCCTGGCGTGGACGCCCCTCGGTGCACCGTGGGCCCTGCCGGGCGCGGTGCACGAGGGCGCCTGGGGGCTCGCGGCCACCCGGCTCGCGATCGCCGCCGGCGCGCTCGTCGTGCTCACCGTGGTCTGGGACCGGGCCATGGCCCGCGCCCTGGTCAGCCCGCGCGGTGGTGCGGAGGCCGGGACGGCCCGCGGGCCGGGCTGGTTCGGCCGCGTGCCGCAGACTCCGACCGGCGCAGTCGTCGCCCGGTGCGCCACCTACTGGTTCCGCGACCCGCGGTACGCGGCGTCCATGGCGATGGTGCCGCTGCTGCCGCTCGTGGTGGTCCTGCCCGCACTCCTCGGTGGCGCCGGCACCGAGATGCTGCTGCTCGCCGCTCCGCTGGCGGCGTTCATCCTCGGGTTCGGCCCCTCGAACGACGTCGGCTACGACAACACCGCGTTCGCGCTGCACGTGTCCGCCGGTGTGCCCGGTCGGGCGGACCGGTGGGGGCGCGCGATCCCCGTGCTGGTGGGTGGCGTGCCCCTGGTCGTGGCGCTCGTGGCAGCCGGCGCCGGTGTCTCCGGCCGGTGGGACGCCCTGCCGGCGCTGCTCGGGCTCGCTCTCGGCGTGCTCGGGGCGGCGTTGGGGACCTCGAGCGTCGTCTCGGCGCGTCTGGTCTACCCGGTGCCCAAGCCGGGGGAGAGCGCCTTCAAGACGCCGCAGGGTGCGACCGTGGCGACCCTCGTCGCGCAGGTGGCCGCGTTCGGCGTCATCACCGCCCTGATGATTCCGGCACTGGCGGTCGGGCTGCCCGCCATCCTGCTGCCGTCGGCCGCGCTGGGCTGGGTGGCCTGCGGGGTCGGGCTGGGCACCGGTGCCGTGGCGCTGCTGGTCGGGGTGCGGTGGGGCGCGCGCGTGTACGAACGGCGGCTGCCGGAGCTGTTGGCGCAGGTCAGCGCCTTCGCCTGAMVAHFVRLKLTLLANTLRRSVWQTIGLVIAGLYAAGVVLLGVVGAVAGGQADPVLTGQVLTVVGAAVVLGWWIVPLFAFGLDSTLDPLRFTTFAIPRRHLLVGLAAAALVSVPAVATLLAALGVSFAWVGDPVALLAALVGAVLAVLLCVVGARATTTLLAPLLDSRRHREVLMVLAVVPLLAIGPFFAWLSSSTGGSIEVRGPDDLVPGVVDPAAQLLAWTPLGAPWALPGAVHEGAWGLAATRLAIAAGALVVLTVVWDRAMARALVSPRGGAEAGTARGPGWFGRVPQTPTGAVVARCATYWFRDPRYAASMAMVPLLPLVVVLPALLGGAGTEMLLLAAPLAAFILGFGPSNDVGYDNTAFALHVSAGVPGRADRWGRAIPVLVGGVPLVVALVAAGAGVSGRWDALPALLGLALGVLGAALGTSSVVSARLVYPVPKPGESAFKTPQGATVATLVAQVAAFGVITALMIPALAVGLPAILLPSAALGWVACGVGLGTGAVALLVGVRWGARVYERRLPELLAQVSAFAPGPT0006730_1139DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_02191792lnrL_2COG1131Linearmycin resistance ATP-binding protein LnrLGTGACACAGCAGCCCACAGCACCCCCCGACCCGGCCGCGGCCCTGAGCCTGCGCGGGCTCTGGAAGCGGTTCGGGGACAAGGTCGCCGTGTCCGGCATCGACCTCGACGTGCCGCACGGTTCGTTCTTCGGGCTGGTCGGCCCGAACGGAGCCGGCAAGACGACGGCGCTGTCCATCGCGACAGGCCTCCTGCGACCGGACTTCGGCACGGTGCACGTGCTCGGGACCGACCTGTGGTCCCGGGCGGACGAGGCGAAGGCGATGCTCGGTGTCCTGCCCGACGGACTGCGCCTGTTCGACCGGCTCACCGGTGCACAGCTCCTGACGTACTCGGGGCTGCTGCGCGGTCTGGACCGGGACACTGTCGCACGCCGCAGCGAGGACCTCCTGGCCGCGATGGACCTGACCGCGGACCGCGACACGCTCGTCGTCGACTACTCGGCCGGCATGACCAAGAAGATCGCGCTGGCGGGGGCCATGATCCACGCACCCCGCGTCCTGGTCCTGGACGAGCCGTTCGAGGCCGTCGACCCGGTCAGCGCGGCGAACATCCGCGACATCCTGCGCCGGTACGTCGACGACGGCGGCACCGTCGTCGTGTCCAGCCACGTCATGGACCTCGTGCAGCGCATGTGCTCGCACGTGGCGATCATCGCCGGGGGGCATGTGCTCGACGTCGGCACGGTCGACGCCGTGCGCGCCGGGCAGAGTCTCGAGGACCGGTTCGTCGACCTCGTCGGCGGCCGCAAGGAGTCGGAGGGGCTGGCGTGGTTGCGCACTTCGTCCGACTGAMTQQPTAPPDPAAALSLRGLWKRFGDKVAVSGIDLDVPHGSFFGLVGPNGAGKTTALSIATGLLRPDFGTVHVLGTDLWSRADEAKAMLGVLPDGLRLFDRLTGAQLLTYSGLLRGLDRDTVARRSEDLLAAMDLTADRDTLVVDYSAGMTKKIALAGAMIHAPRVLVLDEPFEAVDPVSAANIRDILRRYVDDGGTVVVSSHVMDLVQRMCSHVAIIAGGHVLDVGTVDAVRAGQSLEDRFVDLVGGRKESEGLAWLRTSSDPGPT0006725_20487DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_021921569hypothetical proteinATGGACACCTCGACCGCTCTGCTGCTGGCCACCGGGACCCTCGCCGTCGGCATCCTGCTCGGATGGCTCTGGCAGGCGCTGCGCGCCTCGGCCCGCGGCCGCTCGCAGGAGATGGAGTCCGTCCGGCTCGCGGCGGAGCTGGACACCGCCCGGCGCGAGGCCGCCGGCCTGCGCGACCAGGTCGCCCAGGAGCGGGCCGACGGAGACCGGCGGCTCGGGCAGGCGGCGCAGGAGACGGAGCGTCGGCTGGCGGCCGCAGAACAGCAGGCCGAACGACGGCTCGCGGAGGTGCGCTCCGAGGCGGACCGGCAGCTCGCCGAGGTCAAGGGCGACCAGGACCGCCTCGCCCAGCGCTTCAAGTCGCTCGCGAACGAGGTGCTGACCGCCAACCAGAACCAGTTCCTCGACCTGGCGAACGAGCGGCTGCGGCGCAGCACCCAGAAGAACGACGAGACGCTCGCCCAGCGCGAGCAGGCGATCCGGGCCCTGCTGGACCCGATGACGAAGACCCTCGACAAGGTCAACGAGCGGGTCGACACCGCCGAGCAGGCCCGCCTCCAGGGGCACACCGCCCTGACCGAGCAGCTGCGCCAGCTCGAGACCGTCAACACCCAACTGCGCACGGGGACCAGCGACCTCGTCTCGGCGCTGCGCTCCAACCAGACGCGCGGCGTGTGGGGCGAGCTGCAGCTCAAGCGGGTCGTCGAGTCCGCGGGGATGATGGACCACGTCGACTTCGACGCGCAGGTCCACCGCACCACGGCGGAGGGGGACGTGCTCGTCCCCGACATGGTCGTGCACCTGTCCGGCGGCAAGAACGTGGTCGTCGACTCCAAGGTGCCGCTCAGCGCCTACCTGCGCGCCCAGCAGGCCGAGCAGGCCGGCGAGGCGGACGCCGAGCTCGCGGCCCACGCGAAGGACCTCGCCAAGCACGTCGACGTGCTCGCCGGCAAGGCCTACTGGGCCCAGTTCGACACCGCCCCCGAGTTCGTCGTCATGTTCGTGCCCGCGGAGCCCATCCTCTCGGCCGCCGTCGAGCACCAGCCCGACCTGCTCGAGGCCGCCATCCGCAAGCGCGTGCTCGTCGCCACCCCGATGACGCTCGTGGCGATGCTGCGCACCGTGGCCTACGCGTGGCAGCAGGAGGCCATCGCCGAGGACGCCCAGAAGGTGCTCCGGACCGGCAAGGAGCTGTACGGGCGGCTCGTGGGCATGACGGAGAAGGTCACGAAGCTGGGCCGGTCGATCACGACGGTGACCAACGACTACAACAAGTTCGTCGCGACGCTCGAGACCCGCGTGGTGCCCTCCGCACGCAAGATGGTCGAGCTGAAGGTGGCGGACGCGACCCTCGAGATGGACGAGCTGAAGGCCGTCGAGGCCGGCACCCGGGAGGTCACCAAGCCGGAGCTGCTGGCCGGGACGGACGGTTCGTTCGTCGACCTCGCGGACCTGACCGACCCCGGCACCCGCGACTCGGTCGAGTCCCTCGCCGAGTCGGACCGGCGGGCGCTCGAGGCCGCCCGCGACCGCGACGACAGCGCCTCGTCGGCGGCAGCCGCCGGCTGAMDTSTALLLATGTLAVGILLGWLWQALRASARGRSQEMESVRLAAELDTARREAAGLRDQVAQERADGDRRLGQAAQETERRLAAAEQQAERRLAEVRSEADRQLAEVKGDQDRLAQRFKSLANEVLTANQNQFLDLANERLRRSTQKNDETLAQREQAIRALLDPMTKTLDKVNERVDTAEQARLQGHTALTEQLRQLETVNTQLRTGTSDLVSALRSNQTRGVWGELQLKRVVESAGMMDHVDFDAQVHRTTAEGDVLVPDMVVHLSGGKNVVVDSKVPLSAYLRAQQAEQAGEADAELAAHAKDLAKHVDVLAGKAYWAQFDTAPEFVVMFVPAEPILSAAVEHQPDLLEAAIRKRVLVATPMTLVAMLRTVAYAWQQEAIAEDAQKVLRTGKELYGRLVGMTEKVTKLGRSITTVTNDYNKFVATLETRVVPSARKMVELKVADATLEMDELKAVEAGTREVTKPELLAGTDGSFVDLADLTDPGTRDSVESLAESDRRALEAARDRDDSASSAAAAGNANANANANA
AK018_02193957ispH2_1COG07614-hydroxy-3-methylbut-2-enyl diphosphate reductase 2GTGCTGCTCGCCGCCCCGCGCGGCTACTGCGCCGGCGTCGACCGCGCCGTCGTCGCCGTCGAGAAGGCGCTGGAGAACTACGGTGCCCCCGTCTACGTGCGCAAGGAGATCGTGCACAACAAGCACGTCGTCGAGACGCTGCGCGAGCGCGGGGCCATCTTCGTCGAGGAGGCCGAGGAGGTCCCGCGCGGCGCCAAGCTGGTCTTCTCCGCCCATGGCGTCTCCCCGGCGGTCCGTGAGTCCGCCGCGGCCCGCGACCTGGAGACGATCGACGCCACGTGCCCCCTGGTGACCAAGGTGCACAAGGAGGCGGTGCGGTTCGCGAAGGCCGACCGCACCATCCTGCTCATCGGGCACGACGGCCACGAGGAGGTGGAGGGCACCGCCGGCGAGGCGCCGGAGCACACGATCGTGGTGAACTCGCCCGAGGAGGCGGACCTGGTCGAGGTCCCCGACCCCGACAACGTCGTGTGGTTGTCGCAGACCACCCTGTCGGTGGACGAGACGATGGACACCGTCCGGCGGCTGCGCGAGCGGTTCCCCGCCCTGCAGGACCCGCCGAGCGACGACATCTGCTACGCGACCCAGAACCGTCAGGTGGCCGTGAAGAAGCTGGCCCCGGAGTGCGACCTGGTGATCGTGGTGGGCTCGGCCAACTCCTCGAACTCGGTGCGCCTGGTCGAGGTCGCGCTGCAGGCCGGCGCCCGCACCGCGTACCGGGTGGACCGGGCCGCCGAGATCGACGAGGCCTGGTTCGACGGCGTCGACACGGTCGGGGTCACGTCCGGGGCGTCCGTGCCCGAGATCCTCGTCGACGACGTCCTGCGTCAGCTCGCCGAGCGGGGCTACGGCGATGCCGAGGAGGTGCGCACCGCGACCGAGGACCTGGTCTTCTCGCTGCCGCGGGAGCTGCGACCGCCGCGCGAGGCGCGTCAGCTGCCGATCCAGCCGGCCTGAMLLAAPRGYCAGVDRAVVAVEKALENYGAPVYVRKEIVHNKHVVETLRERGAIFVEEAEEVPRGAKLVFSAHGVSPAVRESAAARDLETIDATCPLVTKVHKEAVRFAKADRTILLIGHDGHEEVEGTAGEAPEHTIVVNSPEEADLVEVPDPDNVVWLSQTTLSVDETMDTVRRLRERFPALQDPPSDDICYATQNRQVAVKKLAPECDLVIVVGSANSSNSVRLVEVALQAGARTAYRVDRAAEIDEAWFDGVDTVGVTSGASVPEILVDDVLRQLAERGYGDAEEVRTATEDLVFSLPRELRPPREARQLPIQPAPGPT0007615_387DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527NANA
AK018_021941308xseA_1COG1570Exodeoxyribonuclease 7 large subunitATGCTGGGTGGCGTGACCGACCTCAGCACCGGACCCGACAGCCCGGCCACCAGCGCGCAGCCCCTTCCCGAGCGCGCCGCCGAGACCACCGCCGAGCGCCCCTGGCCGGTCCGCCTGCTGTCCACCAAGATCCGCGACTACGTCGCCCGGATGTCCCCCGTGTGGGTCGAGGGCCAGGTCGTCGAGCACACCTACCGCGGCGGGTCCGGGATGCAGTTCCTCACCCTGCGCGACACCGACGTCGAGGCCTCGCTCCCGGTGAGCATGCTGACCCGGGCCTTCGACGGGCTGGCCGCGCGTCCGGAGACGGGCGACCACGTCGTCGTGCACGCCCGCCCCGAGTTCTGGGTCAAGGCCGGCAGGTTGTCGATGCGCGCCGCCGACATCCGCCAGGTCGGCGTCGGCGAGCTGCTGGCCCGCATCGAGCAGCTGCGCCGGGTCCTGGCCGCCGAGGGCCTGTTCGACGCCGACCGCAAGCGCCCCCTGCCGTTCCTGCCGTCGACGATCGGCCTGGTGTGCGGCCGCGAGTCCAAGGCCGAGCACGACGTCGTCGTCAACGCCCGCGCGCGCTGGCCCCAGGTGCGCTTCGAGATCCGCGAGGTCGCCGTCCAGGGCGTCAACGCGGTCCGTGAGGTGAGCGAGGCCGTGGCCGAGCTCGACGCCCGCGAGGACGTCGACGTGCTGATCGTGGCCCGCGGCGGCGGGTCGGTGGAGGACCTCCTGCCGTTCAGCAACGAGACCCTGGTGCGCGCCGCCGCGGCCTGCCGCACCCCCCTCGTCTCGGCGATCGGGCACGAGACCGACACGCCGCTGATGGACCTCGTGGCCGACTACCGCGCGTCGACCCCGACGGACGCCGCGAAGCACGTCGTGCCCGACGTCGGCGAGGAGCGCCAGCGCGTCTCCCAGGCGCGCCAGCGCATCCGCGGCGCCGTGCAGGGGCTGCTGCAGCGTGAACAGCACGGTCTCGACTCCGTGCGGTCGCGGCCCGTGCTGGCGCGGCCGGAGACGATGGTCGAGGCCCGCGCGCAGGACGTCGCGCAGCACCTGCGGCACGTGCGCACCTGCCTCGACACCGCGCTGGTGCGCGCCGCGGGCGAGGTCGACCGGATGCGTGCCCAGGTGCGGGCCCTGTCGCCCGCCTCGACGCTCGACCGGGGCTACGCCGTCGTGCAGCGCGCCGACGGCGCCGTGGTGCGGTCCGCCACGGAGGTCGCCGCCGGGCAGGACGTGCACGTCCGGGTCGCCTCGGGCGCCCTGGACGCGACCGTGACCCGCACCGTCCCCGACGCCCCCGACGCGAGGTAGMLGGVTDLSTGPDSPATSAQPLPERAAETTAERPWPVRLLSTKIRDYVARMSPVWVEGQVVEHTYRGGSGMQFLTLRDTDVEASLPVSMLTRAFDGLAARPETGDHVVVHARPEFWVKAGRLSMRAADIRQVGVGELLARIEQLRRVLAAEGLFDADRKRPLPFLPSTIGLVCGRESKAEHDVVVNARARWPQVRFEIREVAVQGVNAVREVSEAVAELDAREDVDVLIVARGGGSVEDLLPFSNETLVRAAAACRTPLVSAIGHETDTPLMDLVADYRASTPTDAAKHVVPDVGEERQRVSQARQRIRGAVQGLLQREQHGLDSVRSRPVLARPETMVEARAQDVAQHLRHVRTCLDTALVRAAGEVDRMRAQVRALSPASTLDRGYAVVQRADGAVVRSATEVAAGQDVHVRVASGALDATVTRTVPDAPDARNANANANANA
AK018_02195231xseB_1Exodeoxyribonuclease 7 small subunitGTGAGCGAGCAGAACGAGTCCCGTGACGTGGCCACCCTGTCCTACGAGGAGGCGCGCGACGAGCTGGTCCAGGTGGTGTCCCGGCTGGAGACCGGCGGCGAGCCCCTGGAGACGTCGCTGGCCCTGTGGGAACGGGGTGAGGCGCTGGCCGCCCGCTGCCAGGAGTGGCTCGACGGCGCTCGCGAGCGGCTGGAGGCGGCCCGGTCGACCTCTGGCGCGGAGACCGACTGAMSEQNESRDVATLSYEEARDELVQVVSRLETGGEPLETSLALWERGEALAARCQEWLDGARERLEAARSTSGAETDNANANANANA
AK018_02196648cynT_1COG0288Carbonic anhydraseATGACACCCCGTGAGGCCTGGGCAGAGCTGCGGTCCGGCAACGACCGCTTCGTCCGTGACGAGCCCGCGCACCCCTCCCAGGGCGCCGCCCGGCGTCGTGAGCTGGCGTCCGCGCAGCATCCGCACACGGTGATCTTCGGGTGCTCCGACTCCCGGGTGGCGGCCGAGATCATCTTCGACCAGGGCCTCGGCGACGTGTTCGTGGTCCGCACCGCGGGGCACGTCGTGGACACCACGGTCCTGGGCTCGATCGAGTTCGGCGTCGACGTCCTCGGCACCCCGCTCGTGGTGGTGCTCGGCCACGACTCCTGCGGCGCCGTGAAGGCGACGGCGCAGACCCTGCAGACCGGCGAGCAGCCGCCCGGGTTCGTCCGGTCCGTGGTGGACAAGGTGATCCCCTCGATCGCCGGGCTCGCCGGGTCGGGCGCGATGACCTCGGCAAACGACGGCGGCACCCCCTTCGCGGACCGCCTGCGCACCGCCCACGTTCGGCACACCGTGGGCGCCCTGCGCGGCTACTCCCGCGCCCTGGACGCCGCGGTGACCGAAGGCCGCCTGGCGATCGTCGGGGTGGAGTACGACCTGGCCGAGGGGTCGGCCCGGCTGATCGAGGTGGCCGGCGACGTCGGCGAGGAGCCGCTGGGCTGAMTPREAWAELRSGNDRFVRDEPAHPSQGAARRRELASAQHPHTVIFGCSDSRVAAEIIFDQGLGDVFVVRTAGHVVDTTVLGSIEFGVDVLGTPLVVVLGHDSCGAVKATAQTLQTGEQPPGFVRSVVDKVIPSIAGLAGSGAMTSANDGGTPFADRLRTAHVRHTVGALRGYSRALDAAVTEGRLAIVGVEYDLAEGSARLIEVAGDVGEEPLGPGPT0002415_3958DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673NANA
AK018_021971467fumC_1COG0114Fumarate hydratase class IIATGCCCGCCGCGCGGGTGCGGCACGATAGACGCATGACTTCCGACACCGCCGCCGGTGGCGCCGCCGCGCCCGCGACCGAGTACCGCATCGAGCACGACACGATGGGCGAGGTCCGTGTCCCCGCCCACGCCCTGTACCGCGCCCAGACGCAGCGCGCGGTCGAGAACTTCCCGATCTCGGGCACCCCGCTGGAGCGCGGGCACATCGAGGCCCTGGCGCGGGTCAAGAAGGCCGCGGCACTGACCAACGCCGAGCTCGGCGTGCTCGACCGTGACGTCGCGGACGCCATCGCCGCCGCCGCCGACCGGGTCGCCTCGGGCGAGCTGGACGAGCACTTCCCGGTCGACGTGTTCCAGACCGGTTCGGGCACGTCGTCGAACATGAACACCAACGAGGTGCTGGCCACGCTGGCCACGCAGACGCTGGGCCGCGACGTGCACCCGAACGACCACGTCAACGCCTCGCAGTCCTCGAACGACGTGTTCCCGACGTCGGTGCACGTGGCCGCCACCGCCGGCGTCGTGCGGGACCTGGTCCCGGCGCTGGCGCACCTGGCCGAGGCCCTGGAGGCGAAGGCCGCGGAGTTCTCCGGGGTCGTGAAGTCGGGCCGCACGCACCTGATGGACGCGACGCCCGTCACCCTGGGTCAGGAGTTCGGCGGGTACGCCGCAGCGATCCGCTACGGCATCGAGCGCGTCGAGGCCGCGCTTCCCCGGGCCGCCGAGGTCCCCCTGGGCGGCACCGCCGTCGGGACCGGCATCAACACCCCGGCCGGGTTCCCGCAGCGCGTCATCGAGCTGCTGCGCGAGGACACGGGCCTGCCGCTGAGCGAGGCGCGCGACCACTTCGAGGCGCAGTCCGCCCGGGACGGTCTGGTCGAGCTGTCCGGCGCGCTGCGCACCATCGCCGTGTCGGTCACCAAGATCTGCAACGACCTGCGCTGGATGGGCTCCGGGCCCAACACCGGTCTCGGCGAGATCGCGATCCCGGACCTGCAGCCGGGCAGCTCGATCATGCCGGGCAAGGTCAACCCGGTGATCCCGGAGGCGGTGCTGATGGTCGCCGCGCGCGTGGTCGGCAACGACGCGACGGTCGCGTGGGCCGGCGCCACGGGCACGTTCGAGCTGAACGTGCAGATCCCGGTGATCGCCCAGGGCGTCCTGGAGTCGATCCGCCTGCTGTCGAACGCGTCGCGCGTGCTGGCGGACAAGACGGTGGACGGCCTGACGGCGAACGAGGAGCGGGCGCGGGCGTTCGCCGAGTCCTCGCCGTCGATCGTCACGCCGCTGAACCGCGTCATCGGCTACGAGGCGGCGGCGAAGGTGGCGAAGAAGGCCGTCGCCGACGGCATCACGGTGCGTGAGGCCGTGGTGGCTCTCGGGTTCGTCGAGCGCGGCGAGGTCACCGAGGCCCGGCTCGACGAGGCGCTGGACGTGCTGTCGATGACGCGTCCGCCCCAGGCCTGAMPAARVRHDRRMTSDTAAGGAAAPATEYRIEHDTMGEVRVPAHALYRAQTQRAVENFPISGTPLERGHIEALARVKKAAALTNAELGVLDRDVADAIAAAADRVASGELDEHFPVDVFQTGSGTSSNMNTNEVLATLATQTLGRDVHPNDHVNASQSSNDVFPTSVHVAATAGVVRDLVPALAHLAEALEAKAAEFSGVVKSGRTHLMDATPVTLGQEFGGYAAAIRYGIERVEAALPRAAEVPLGGTAVGTGINTPAGFPQRVIELLREDTGLPLSEARDHFEAQSARDGLVELSGALRTIAVSVTKICNDLRWMGSGPNTGLGEIAIPDLQPGSSIMPGKVNPVIPEAVLMVAARVVGNDATVAWAGATGTFELNVQIPVIAQGVLESIRLLSNASRVLADKTVDGLTANEERARAFAESSPSIVTPLNRVIGYEAAAKVAKKAVADGITVREAVVALGFVERGEVTEARLDEALDVLSMTRPPQAPGPT0001650_712DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001650-fumC-K01679NANA
AK018_021981341hypothetical proteinGTGGCCCACACCGACATCCCCAGCACCGACCGGCGGACGTTCGTCATCGACACGTCCGTCCTGCTGTCCGACCCGCGGGCGATCCACCGCTTCGCCGAGCACGACGTCGTGCTCCCCGTCGTCGTCGTCACCGAGCTCGAGGCCAAGCGGCACCACGCCGAGCTCGGCTACTTCGCGCGCAGCGCTCTGCGGGCGCTCGACGACCTGCGGATCGAGAACGGCCGGCTGGACGCACCGATCCCCCTCGGGTCCGACGGCGGCACCCTGCGCGTCGAGCTGAACCACACCGACCCGCAGGTCCTGCCCGCCGGGTTCCGGCTCGGTGACAACGACACCCGGATCCTGTCGGTGGCGGCCAACCTCGCCGCGGAAGGGCGCGACGTCACCGTCGTGTCCAAGGACCTGCCCATGCGGGTCAAGGCGTCCGCCGTCGGGCTGCGCGCCGAGGAGTACCGCCACGAGCTCGCCGTCGACTCCGGCTGGACCGGGATGCGCGAGCTGGCCGTCACCGACGACCAGATGGCCGCGCTGTACGACGGCACCGAGCTCGAGCTCGCCGCCCTGGACCCGCAGGTCGTGGCCGACGCGGCTCCGCTGCTGTGCCACACCGGCCTGGTGATCCAGGCGGCGGGCGGCTCGGCGCTCGGCCGCGTCACCGCCGACAAGCGCATCCGGCTGGTGCGCGGCGACCAGGACGTGTTCGGCGTGCACGGTCGGTCGGCCGAGCAGCGCGTCGCGATCGACCTGCTGCTCGACCCGGACGTCGGGATCATGTCGATGGGCGGTCGCGCCGGGACGGGCAAGTCGGCGCTCGCCCTGTGCGCCGGGCTGGAGGCCGTGCTCGAGCGGCGCCAGCACCGCAAGATCCTGGTGTTCCGGCCGCTGTACGCCGTCGGCGGGCAGGAGCTCGGCTACCTGCCCGGCACCGAGTCCGAGAAGATGAACCCGTGGGCGCAGGCGGTCTACGACACGCTCGGCGCGCTGGTCTCCCCGTCCGTCGTCGACGAGGTCATCGACCGCGAGATGCTCGAGGTGCTGCCCCTGACCCACATCCGGGGCCGGTCGCTGCACGACGCGTTCGTCATCGTCGACGAGGCCCAGTCGCTGGAGCGCAACGTGCTGCTGACCGTGCTGTCGCGCGTGGGGCAGGGCTCGCGCGTCGTGCTCACCCACGACGTCGCCCAGCGGGACAACCTGCGCGTGGGCCGGCACGACGGCGTCGCGGCGGTCATCGAGGCGATGAAGGGGCACCCCCTGTTCGCGCACGTGACCCTGACGCGGTCGGAGCGCTCGCCGGTGGCGGCGCTGGTCACCGAGATGCTGGAGGGCCTGGAGATCTGAMAHTDIPSTDRRTFVIDTSVLLSDPRAIHRFAEHDVVLPVVVVTELEAKRHHAELGYFARSALRALDDLRIENGRLDAPIPLGSDGGTLRVELNHTDPQVLPAGFRLGDNDTRILSVAANLAAEGRDVTVVSKDLPMRVKASAVGLRAEEYRHELAVDSGWTGMRELAVTDDQMAALYDGTELELAALDPQVVADAAPLLCHTGLVIQAAGGSALGRVTADKRIRLVRGDQDVFGVHGRSAEQRVAIDLLLDPDVGIMSMGGRAGTGKSALALCAGLEAVLERRQHRKILVFRPLYAVGGQELGYLPGTESEKMNPWAQAVYDTLGALVSPSVVDEVIDREMLEVLPLTHIRGRSLHDAFVIVDEAQSLERNVLLTVLSRVGQGSRVVLTHDVAQRDNLRVGRHDGVAAVIEAMKGHPLFAHVTLTRSERSPVAALVTEMLEGLEINANANANANA
AK018_02199576hypothetical proteinGTGACGGTCCACGTGGTCCTGCTGCGCGGGGTGAACGTCGGCGGGCACCGGCGGGTGTCCGCCGCGGACCTGCGCGCCGCGGCGGCCGACGTCGGGCTGCGCGACGCCGCCACGTACGCGACCAGCGGCAACCTCGTGGCGACGTCGGACGGCGGCAGCACGGGGGCCGACGGCGCGGCGCACCCGGGCTCCGAGCTGTCCGCCGCGTTGGCCGCCGAGCTGTCCGCCCGCGTGGGCGGCGACGTGCCGCTGGTCGTCGTGCCCGCGGCGCGCTGGGCCGACCTCGTCGCGGCGAACCCGTTCCCGGCCGTCGCGCGGGACGATCCGGGCCACCTGCAGCTGCACCTGGGACCGGAGCCCGTGGACGACGACGGCGTCGCCCGGCTCGCCGCGGCGCACGAGGGTCCCGAACGCCTCGCCACGGCGCGGGGCGCGCTGTACGTCCACTACACCGCGGGGATCGGACGCAGCCGGCTGTCGAGCGCGCGGCTGGACCGCGCGACGGCCACCTGGACGACGGGCCGCAACTGGCGCACCGTGCTGCGGCTGCTGCAGATGACCGGGCTCACGCCCTGAMTVHVVLLRGVNVGGHRRVSAADLRAAAADVGLRDAATYATSGNLVATSDGGSTGADGAAHPGSELSAALAAELSARVGGDVPLVVVPAARWADLVAANPFPAVARDDPGHLQLHLGPEPVDDDGVARLAAAHEGPERLATARGALYVHYTAGIGRSRLSSARLDRATATWTTGRNWRTVLRLLQMTGLTPNANANANANA
AK018_022001323nhaA_1COG3004Na(+)/H(+) antiporter NhaATTGCACGCCACGAGACGTCTGGAGCCCATCCTGAGCACCGACACACGCCAGTCCCCCGGAGCCCGCCTGGCCCACTGGGTCTCGAAGGAGACCACCGGCGGAGCCCTGCTCATCGGGGCCGCCATCCTGGCCCTGGTCTTCGCCAACTCACCCTGGCGGGAGGCCTACGAGACCCTCGCGCAGACCCACGTGGGCCCCGAGTACATCGGCGACGTCTACGTCCACCTCGACCTGACGCTCGCCAAGTGGGCGGCCGACGGCCTGCTGGCGATCTTCTTCTTCGTCGTCGGCCTCGAGCTCAAGCAGGAGTTCGTCGCCGGGTCGCTGCGCAACCCCAAGCAGGCCGGTGTGCCGATGCTCGCGGCCGTGGGCGGCATGGCCGTCCCGGCGATCATCTACGCCGTCATGGTGATCACCCTCGGCGACTCCGGCGCCCTGCACGGCTGGGCCATCCCGACGGCCACCGACATCGCCTTCGCCGTGGCGGTCCTCGCCGTCTTCGGCAAGGGTCTGCCGGTCGCGATCCGCACGTTCCTGCTGACGCTCGCCGTCGTCGACGACCTGCTGGCCATCACGGTGATCGCCGTGTTCTACACCGACGAGATCAACTTCGGCGCGCTGGCCGCCTCGCTGGTCGTCATCGCGCTCTTCGGCTGGTACGTGCGGACCCGGTCGCCGAAGTGGTGGCTGCTCATCCCGATCTTCTTCGTCGGCTGGGCGCTCATGCACGCCTCGGGCGTGCACGCGACCGTGGCCGGCGTGCTGATGGGCTTCACCGTCGCCGCGAAGCCCACGCACGGCGAGGACGTGGCCCGCACCACGCACTACGAGCACGCCGTCAAGCCGTGGTCGCAGGGCCTCGCGCTGCCGATCTTCGCCTTCTTCTCGGCCGGGGTGAACCTGGTCGACGGCGGAGGCCCGGCCGAGATCCTGTCCCAGCCGGTCGTCTTCGCGATCGTCGCGGGCCTGGTGCTCGGCAAGCTGCTCGGCATCCTGGGCACCACCTGGCTGGTCACCCGGGTCACGCCGCTACGGCTGGCCGCGGGCATCGGCGTGCGCGACCTGCTGCCGGTCGCCTTCCTGGCCGGCATCGGGTTCACGGTGTCGCTGCTGATCGCCGAGCTGTCGTTCGGCGAGGGCTCCGAGCACACGCTCGGCGCCAAGGCCGCGATCCTCATCGGGTCCGTCGTCGCGGCGACGCTGGGCGCCCTGACCCTGCGCTGGGACGCCAAGAAGGAGCGCGGCCCGGACATGAACCGCGACGACCTGCCCGACGAGGTCACGACCTTCATCGGCGACGAGGAGGACCGCAAGGACCACTGAMHATRRLEPILSTDTRQSPGARLAHWVSKETTGGALLIGAAILALVFANSPWREAYETLAQTHVGPEYIGDVYVHLDLTLAKWAADGLLAIFFFVVGLELKQEFVAGSLRNPKQAGVPMLAAVGGMAVPAIIYAVMVITLGDSGALHGWAIPTATDIAFAVAVLAVFGKGLPVAIRTFLLTLAVVDDLLAITVIAVFYTDEINFGALAASLVVIALFGWYVRTRSPKWWLLIPIFFVGWALMHASGVHATVAGVLMGFTVAAKPTHGEDVARTTHYEHAVKPWSQGLALPIFAFFSAGVNLVDGGGPAEILSQPVVFAIVAGLVLGKLLGILGTTWLVTRVTPLRLAAGIGVRDLLPVAFLAGIGFTVSLLIAELSFGEGSEHTLGAKAAILIGSVVAATLGALTLRWDAKKERGPDMNRDDLPDEVTTFIGDEEDRKDHPGPT0013935_354DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313NANA
AK018_022011029adh_2Alcohol dehydrogenaseATGAGCATGAAGGCAGCCGTCGTCACCCAGTTCGCCGCGCCGTTGGAGATCACCGACGTCGCCCTGCCGGAGCCCGGTCCCGGCCAGGCGCTGGTCAAGGTCCTGTACTCCGGCGTGTGCCACACCGACCTGCACGCCGCCCACGGCGACTGGCCGGTCAAGCCCGCCCCGCCGTTCGTGCCCGGCCACGAGGGCGTCGGCGAGGTCGTCGCCGTGGCCGACGACGTCACCCGCCTGGCCGTGGGCGACACCGTCGGCAACGCCTGGCTGTGGAGCGCGTGCGGCGAGTGCGAGTTCTGCGAGACCGGCCGCGAGACCCTGTGCCCGCACCAGACCAACGGCGGCTACAGCGTCGACGGCTCCTTCGGGCAGTACATGCTGGTCGACGCGCGCTTCGCCCCGATCATTCCGGCCGGCGTCGACCTGGCCGCCGCCGCCCCGATCCTGTGCGCCGGGGTCACGGTGTACAAGGGCCTCAAGCAGTCCGAGGTCAAGCCCGGCCAGTGGGTCCTCGTCTCCGGCATCGGCGGCCTGGGCCACATCGCCGTGCAGTACGCGCGCGCCATGGGCATGCGCGTCGTGGCCGTCGACGTCGCCGACGACAAGCTCGCCCTGGCCCGCCGGCACGGCGCCGAGGCCACCGTCAACGCCGCCACCGAGCCCGACGTCACCGCCAGGATCCAGGAGGTCACCGGCGGGGGAGCGCACGGCGGACTGGTCACCGCCGTCAACGGCAAGGCCTTCCCCCAGGCCGTCGGCGGGCTGCGCCGCGGCGGCACCGTGTCCCTGGTGGGCCTGCCGCCGGAGGAGTTCGGCCTGGACATCTTCTCCACCGTGCTGTTCGGCCTGACCGTGCGCGGCTCCATCGTCGGCACCCGCGCCGACATGGCCGAGGCGCTGGACTTCTTCGCCCGCGGCGAGGTCGACCCGACCTACACGGTGCGCCCCCTGGGCGACATCAACGAGATCTTCGACGAGATGCTGGCCGGCGCCATCGACGGCCGCGTCGTGATGGACATGCGCGGCTGAMSMKAAVVTQFAAPLEITDVALPEPGPGQALVKVLYSGVCHTDLHAAHGDWPVKPAPPFVPGHEGVGEVVAVADDVTRLAVGDTVGNAWLWSACGECEFCETGRETLCPHQTNGGYSVDGSFGQYMLVDARFAPIIPAGVDLAAAAPILCAGVTVYKGLKQSEVKPGQWVLVSGIGGLGHIAVQYARAMGMRVVAVDVADDKLALARRHGAEATVNAATEPDVTARIQEVTGGGAHGGLVTAVNGKAFPQAVGGLRRGGTVSLVGLPPEEFGLDIFSTVLFGLTVRGSIVGTRADMAEALDFFARGEVDPTYTVRPLGDINEIFDEMLAGAIDGRVVMDMRGPGPT0006365_1649DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953NANA
AK018_02202339COG0640HTH-type transcriptional regulatorATGAGCAACATTGTGTCCGCCCACGCCGTGCTCGACGCCCTCGGAGACCCGACCCGTCGGCAGATCGTCGAGCGCCTGGGCCACGGTCCCCGGCCGGTGGGCGCGCTGGCCGACGCGCTGCCCGTGGGGCGGCCCGCCGTCAGCAAGCACCTGCGCGTGCTGGCCGACGCCGGGCTGGTGCGGCACACCGCCGTGGGCACGCGACACCTGTACTCCCTGGCGCCGGCGGGCCGCGACGCCGTGCAGGCGTGGCTGACCGAGCAGTGGGGCGAGGTCCTGGGGGCCTTCGCCGAGCACGTCGAGACCCTCGAGCACGCCGACCAACGGAGGTCACCATGAMSNIVSAHAVLDALGDPTRRQIVERLGHGPRPVGALADALPVGRPAVSKHLRVLADAGLVRHTAVGTRHLYSLAPAGRDAVQAWLTEQWGEVLGAFAEHVETLEHADQRRSPNANANANANA
AK018_02203426hypothetical proteinATGAATATCGAACCCGTCGTGTGCCAGGTCGTCGTGCCCTGCCCGCCGGCGCGGGCCCACCGTCTGTTCGTCGACGACATCGGCACCTGGTGGCCGCTGGGCGAGCACAGCGTCTTCGGCGCGGGCGGCACCGTGACCGTGACCGAGGGGCGCATCGTCGAGACCGGCCCGGACGGGCGCACCGCCGTGTGGGGCACGCTCACCGACGTCGCCGAGCCCGGCCTGCTGGCCTTCACCTGGCACCCGGGCGCCGACCCCGGGGCCGCGACCCACGTCCGGGTCACCTTCGCCGACGACGGCGCCGGGGGCACCCGGGTCGAGCTGGTGCACACCGGATGGCCGGCGCACCGGGACCCCCGCGCCGCGCGGGAGGCCTACGACCGTGGCTGGCCCGGCGTGCTGGCGGCGCTGGCCGCGGCCGCCTGAMNIEPVVCQVVVPCPPARAHRLFVDDIGTWWPLGEHSVFGAGGTVTVTEGRIVETGPDGRTAVWGTLTDVAEPGLLAFTWHPGADPGAATHVRVTFADDGAGGTRVELVHTGWPAHRDPRAAREAYDRGWPGVLAALAAAANANANANANA
AK018_02204969hypothetical proteinATGTCCGACGCCGCCCCGTCCCGCCCGTGGCTGCTGTTCGCCATCACCCCGCCGCGGCGGTCCACCGAGCCGGCCGAGGCCCGCCGCATCGCCGAGCGCACCTGCGCGCGTCTGCGCGACCTGGACCTGGACGCGTTGGTCATCTACGACATCGACGACGAGTCCGACCGCAACCCGCACGAGCGGCCCTTCCCCTACCTGCCCACCCTCGACCCGGGGGACTTCGCCGAGGAGCACCTGGGCTCGTGGGACCGGCCGGTGATCGTCTACCGCAGCGCCGGCAAGCACGACCCCCGGGCGCTGGCGGACTGGTTCGCGGCCCAGGACGTCCGGCGCGTGCGCACGGTGCTGGTGGGGGCCTCGTCCTCGGACAGCGCGGTGCGCACCACGCTGCCCGAGGCCTGGCGGCTGCGCCGCGAGCACGCACCGGACCTGGCCACCGGCGGGGTGGCGATCCCCGAGCGGCACGCCTCGCGCGGGGGAGAGCACGAGCGTATGCGCGCCAAGCAGGCGGCCGGGGCGAGCTTCTTCGTCACCCAGGTCGTCTACGACGTCGGGGCGGCCAAGTCGATGGTCTCGGACTACCACTACGCCTGCGGCGACGCGGGCAGCACGACGGTGCCGGTGGTGTTCACGCTGTCGGTGTGCGGCTCGGAGCGCACCCTGGCCTTCCTGGAGTGGCTGGGAGTCCACGTGCCGACCTGGATGCGCAACGACCTGCGGCACACCGACGACCCGCTGGCCACCAGCTACGACCAGTGCGTGGCGATCGCCGAGGACCTGGCCCAGTTCTGCACGCGCCACCGGATCCCGTTCGGGTTCAACGTGGAGTCGGTCTCCATCCGGCGCGCCGAGATCGAGGCGTCGGTGCGCCTGGCCGCGCACCTGCGCGACCGCCTCGGCGCGGGGGACGGGGCTCAGGCGGCCGCGGCCAGCGCCGCCAGCACGCCGGGCCAGCCACGGTCGTAGMSDAAPSRPWLLFAITPPRRSTEPAEARRIAERTCARLRDLDLDALVIYDIDDESDRNPHERPFPYLPTLDPGDFAEEHLGSWDRPVIVYRSAGKHDPRALADWFAAQDVRRVRTVLVGASSSDSAVRTTLPEAWRLRREHAPDLATGGVAIPERHASRGGEHERMRAKQAAGASFFVTQVVYDVGAAKSMVSDYHYACGDAGSTTVPVVFTLSVCGSERTLAFLEWLGVHVPTWMRNDLRHTDDPLATSYDQCVAIAEDLAQFCTRHRIPFGFNVESVSIRRAEIEASVRLAAHLRDRLGAGDGAQAAAASAASTPGQPRSNANANANANA
AK018_022051152hypothetical proteinATGACTTCCTCGACCCGTTCGCGCCGCCTGGTCGCGGCGTCCGCCACCGGCGCCGTCGCCGTGGGCCTGTGCGCCGCGGCCACCGCCCCGGCCGCCGCCGCCGAGCACGAGCTGGAGGACATCCTCGTGGTCGGCAAGACCCTGGGGTTCCGGCACTCGCACATCGACGAGACCACCCACGCCCTCATCGACCTCGGCGCCGAGCACGGCTTCGACGTCGACGTGTGGGACCCGCCCAACGACTCCGGCGGCTGGTGGGGACCCGGCTCGCCCGGCCAGCCCGACCTGACGATGGACACCACCCCGTTCACCACCGCCGCCGACCTCGAGCAGTACGACTCGATCGTGTTCGTCTCCCCGGTGGACAACACCAACAACCTCGACCCCGACCAGCCGCGCCTGCTCGACGACGCCGAGCTCGCCGCGCTGCAGGGCTACGTCCACGACGGCGGAGGCGTGGTGGGCATCCACGCCGCCACGGACACGATGCACACCTCGAGCTGGTTCACCGACCTCATCGGCGGCGGGGCTCGGTTCGCCGGGCACCCCCAGCAGCAGACCGCCACCATGCGCGTGGAGAACCCGGCGCACCCGTCCATGCTCGACGTGCCCACCGCCTGGGAGCGCTGGGACGAGTGGTACAACTACACGCTCAACCCCCGCGGGGAGGTCCAGGTGCTGATGACCCTGGACGAGTCCACCTACGACGGCGGCAGCATGGGCGCCGACCACCCGATCGCCTGGTGCCAGAACTTCGAGGGCGGGCGCTCCTGGCACCAGGGCGCCGGGCACGTCGACGAGTCCTGGTCCGACCCGACCTTCCTGACCTCGGTGCTGCGCGGCATCCGCTGGACCGCCGGCACCGTCAGCGGAGGCGGGGACTGCGTCACCTTCGGCGAGGTCGACGCCCTGGTGGCCGAGCTGCCCGCCGACACGGCCCGCGACCGGGTCGCGGTGACCCAGCTCGAGCGGCGCCTGGACACCGCGCGCGAGCACGCCGAGGCCGGCGAGCACGACGCCGCGGTGCGCACCCTGCGCCCCGCCCGCGCCCTGGCCGGCGCCCTGGTCGCCGACGACGCCGCGGCCGAGCACCTGGCCGGCAAGGTCGCCGACCTGATCACCTGGCAGCAGGCCGTGGCCACCACGTCCTGAMTSSTRSRRLVAASATGAVAVGLCAAATAPAAAAEHELEDILVVGKTLGFRHSHIDETTHALIDLGAEHGFDVDVWDPPNDSGGWWGPGSPGQPDLTMDTTPFTTAADLEQYDSIVFVSPVDNTNNLDPDQPRLLDDAELAALQGYVHDGGGVVGIHAATDTMHTSSWFTDLIGGGARFAGHPQQQTATMRVENPAHPSMLDVPTAWERWDEWYNYTLNPRGEVQVLMTLDESTYDGGSMGADHPIAWCQNFEGGRSWHQGAGHVDESWSDPTFLTSVLRGIRWTAGTVSGGGDCVTFGEVDALVAELPADTARDRVAVTQLERRLDTAREHAEAGEHDAAVRTLRPARALAGALVADDAAAEHLAGKVADLITWQQAVATTSPGPT0004005_15DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-OTHER_CYTOCHROME-RELATED_PROTEINS,PGPT0004005-cycA|cycM-K08738NANA
AK018_022061389NAD-dependent malic enzymeGTGGCACTGCCCAGCCCCAGCTACACCATCACCCTGCGCGTGCAGGTCCCGGCCTCCCAGCGGGCCTCGAGCACCGTCGTGGCGGCCGTGGCCGACACCGGTGCGGCGGTCACCGGCGTCGACATCGCCCACTCGACCTCGCACGGGCTGGTGGTGGACGTCACCTGCGACACCGTCGACGCCGAGCACGGCGAGCGGGTGGCGGCGGCGCTGGAGGAGCTCGAGGGCGTGCACGTGCTCAAGTGGTCGGACTCGACGTTCCTGCTGCACCTGGGCGGCAAGATCGAGGTGGCGCTGAAGTCGCCGATCACGACCCGCCGGGACCTGTCGCGCGCCTACACCCCGGGCGTGGCGCGGGTGTGCACCGCGATCGCGGACAACCCCGACGACGCGCGCCGGCTGACGATCAAGCGCAACACGGTCGCCGTGGTCACCGACGGCACCGCGGTGCTGGGCCTGGGCGACATCGGCCCGGCCGCGGCGCTGCCGGTGATGGAGGGCAAGGCGGCGCTGTTCAAGCAGTTCGCGGGGGTGGACGCCTGGCCGGTGTGCCTGGACACGACCGACACCGACGAGATCGTGGCGATCGTCAAGGCGATCGCCCCGGTGTACGGGGGAGTCAACCTCGAGGACATCGCCGCCCCGCGCTGCTTCGAGATCGAGGCGCGTCTGCGCGCCGAGCTGGACATCCCGGTGTTCCACGACGACCAGCACGGCACCGCGATCGTGGTGCTGGCCGCCCTGGTCAACGCGCTGAAGGTGGTGGGCAAGGACATCTCGCGCGTGCGCATCGTCGTCTCCGGCGTCGGCGCGGCCGGCAACGCGATCGTGCGGCTGCTGCGCGCCCAGGGCGCCGAGCACATCGTCGCCTTCGGCCGCGCCGGCGCGCTGCGCCCCGGCGCGCCGCAGGACGACCCGCACCGCACCTGGATCGCCGAGCACACCAACCCCGAAGGCTTCACCGGCACGCTGCGCGAGGGCCTGGTGGGCGCCGACGTGTTCGTCGGCGTCTCGGCCGGGAACATCCTCACCGGGGCCGACGTGGCGCGCATGGCCGACGACGCGATCGTGTTCGCGCTGGCCAACCCCACCCCGGAGGTGGACCCGGTCGAGGCCTCGGAGCACGCGGCGGTGGTGGCCACCGGCCGCAGCGACCACCCCAACCAGATCAACAACGTGCTGGCCTTCCCGGGGCTGTTCCGCGGGCTGCTGGACTCCGGGGCGACCGAGATCACCGACGAGCTGATGCGGGTCGCGGCGCTGGCGATCGCCGGCGTGGTGGCCGACGACGAGCTCAACAGCGCGTTCGTCATCCCCGGCGTGTTCGACCACCGCGTGGCCGAGGCGGTGGCCGAGGCGGTGCGCACGGTCGCCGCCGGGCAGGACTGAMALPSPSYTITLRVQVPASQRASSTVVAAVADTGAAVTGVDIAHSTSHGLVVDVTCDTVDAEHGERVAAALEELEGVHVLKWSDSTFLLHLGGKIEVALKSPITTRRDLSRAYTPGVARVCTAIADNPDDARRLTIKRNTVAVVTDGTAVLGLGDIGPAAALPVMEGKAALFKQFAGVDAWPVCLDTTDTDEIVAIVKAIAPVYGGVNLEDIAAPRCFEIEARLRAELDIPVFHDDQHGTAIVVLAALVNALKVVGKDISRVRIVVSGVGAAGNAIVRLLRAQGAEHIVAFGRAGALRPGAPQDDPHRTWIAEHTNPEGFTGTLREGLVGADVFVGVSAGNILTGADVARMADDAIVFALANPTPEVDPVEASEHAAVVATGRSDHPNQINNVLAFPGLFRGLLDSGATEITDELMRVAALAIAGVVADDELNSAFVIPGVFDHRVAEAVAEAVRTVAAGQDPGPT0001350_1776DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001350-maeA|sfcA|ywkA-K00027NANA
AK018_02207897hypothetical proteinGTGACACCCCAGCAGCAGGTCCTCGACACCGCCGTGCACGAGCTCGTGGCCGCGTGGCTCGGGCCCGTCCGCGTCGTGGCGGAGCACTCCTCGGGCCTGCTCGGGACCCGCGTGTGGCAGGTCCGGGCCGACGACGGCACCCGGGCGGTCGTCAAGCGCTACGCCGGCGCCGACCGCCACTTCGAGCGCGAGCTGGCCGCGCACACCCAGGTCCTGGCCGACATGGCCGGCCAGGCCGGCCACGCCGGCCACGCCGACCAGGACCGCTTCCCCCGGCTGCTCGGCGCCGACCGCGACCACCGCCTGCTCGCGCTCGCCTGGCTCCCCGGACGCCTCGTCGAGCACCAGCCGGCCGAGGACCTGCCCGAGACCTACCGGCAGGCCGGGACGCTGCTGGCCCGGCTGCACGCGGCCGGCTCGCGCGTGGACGGCGACTGGGAGGCCGCCGAGCACTCCCGCGCCCTGAGCCTGCTCGCGGCCGAGCACCGCATCGCCGAGGCGACCGTCGCCCGCCTGCGGGCGGCCCTGGCCCGGCACGAGCACCCGCCGGTCCGGGTGGTGCCCACCCACGGCGACTTCCACCCGCGCAACTGGGTCGTCGACGAGGACGGGACCGTGCGCCTCATCGACTTCGGGCGCCACGCCTGGCGTCCGCCCGTCACGGACCTGGCGCGCCTGGACGCTCAGCAGCTCGCCGGCCGGCCGGACCTGACCGACGCCTTCGTCGCCGGCTACGGCACCGACCCCCGCCGCGGGCCCGGCTGGCGGCGCGTGCGCCTGCGCGAGGCGATCGCCGCGGCGGTCTGGTCCCACCGGGTCGGGGCGCCGTCGCTGGAGGCTCAGGGTCACCGGATGATCGCCGCGGCGCTCGCGGACGAGGAGGCGGCCGTCGGCTGAMTPQQQVLDTAVHELVAAWLGPVRVVAEHSSGLLGTRVWQVRADDGTRAVVKRYAGADRHFERELAAHTQVLADMAGQAGHAGHADQDRFPRLLGADRDHRLLALAWLPGRLVEHQPAEDLPETYRQAGTLLARLHAAGSRVDGDWEAAEHSRALSLLAAEHRIAEATVARLRAALARHEHPPVRVVPTHGDFHPRNWVVDEDGTVRLIDFGRHAWRPPVTDLARLDAQQLAGRPDLTDAFVAGYGTDPRRGPGWRRVRLREAIAAAVWSHRVGAPSLEAQGHRMIAAALADEEAAVGNANANANANA
AK018_022081272L-lactate transporterGTGGTCGTGGCCGCCACCGCGTTCGTGGTCATCGTCTGCGCCGGGGTGTTCGTCGGCCTGCCCAACCTGCTCGTGGGCCCGCTGCACGACGAGCTCGGCTGGTCCTACGGCACGATCTCGGTCGCGATCGCGGTCAACACCGTGCTGTACGGGCTCACCGCGCCGTTCGCCGCGGCGGCGACGGACCGTCTGGGCGTGCGCCGTGTCGCCGTGGCGGCCCTGCTGCTCGTGGCCGGCGGCGCCGTCACGACCACGGCCGTGACCGCCCCGTGGCAGCTCGTGCTGGCCTGGGGCGTGCTGGTGGGCCTGGGCTGCGGCGCGATCGCCACCGCCTTCGGGGCGCTGGTGGCCGAGAGGTGGTTCACCCGGCACCGGGGGCTGGTCACCGGCCTGCTGACGTCGGGGACGATGCTCGGCGGCATGGTGCTGCTGCCGGTGCTGGCCGGGCTGACCACGACGGCTGGCTGGCGGGCGGCGACCTGGGTCGTGGCCGGCGCGGCCGGGGCGGTGGCGCTGGCCGCCGCCGGCCTGCTGCGCGACCGGCCCGGAACCGACCGCCCCGATCGCCGCGCCTCGGTGGGGGCGCCGTCGGCGGCCGCGTCGGGGCCTCGGGCGGCGGACCCGGCCCCGAGCGCGGTGCGGCGCAGCCTGGCCGCGCTGGCGCGCCTGGCACGCACGGGTCCGTTCTGGCTCGTGGTGGCCACCTTCGCGGTGTGCGGGGCCTCGACGAACGGGGTGATGATGAGCCACTTCGTGCCGGCGGCCGCCGACGTCGGGCTCGCCCCCGCGCTCGCCTCGACGCTGCTGGCGGTCATGGGGGCGGTCAACGTGGCCGGCACGGTCGCGGCCGGGTGGGGCACCGACCGGGTGGACCCGCGCCTGCTGCTCGCGGGCACCTACGCCCTGCGGGCGGTGAGCCTGTCGGCGCTGCCCGTGCTGCTCGGCCCGGACCTCACCCCCGCGCTGGTGGTCTTCGCCGTCTCCTTCGGCCTGCTGGACCTGGCCACCGTGCCGCCCACGGTCGCGCTGTGCCGCGAGTACTTCGGCCTCGACGGCGCCGTGGTGTTCGCCTGGCTGACCGGCGCCCACCAGGTCGGGGCCGCCGGGGCCGCGCTGGGCGCCGGCGTCGTGCGCGACCTGACGGGCTCCTACGCCCCGGCGTTCGTCGCCGTGGCGGTCCTGTGCGCCCTGGCCGCGGCCGCCAGCGCGCTGATCCGCCGTCAGCCGACGGCCGCCTCCTCGTCCGCGAGCGCCGCGGCGATCATCCGGTGAMVVAATAFVVIVCAGVFVGLPNLLVGPLHDELGWSYGTISVAIAVNTVLYGLTAPFAAAATDRLGVRRVAVAALLLVAGGAVTTTAVTAPWQLVLAWGVLVGLGCGAIATAFGALVAERWFTRHRGLVTGLLTSGTMLGGMVLLPVLAGLTTTAGWRAATWVVAGAAGAVALAAAGLLRDRPGTDRPDRRASVGAPSAAASGPRAADPAPSAVRRSLAALARLARTGPFWLVVATFAVCGASTNGVMMSHFVPAAADVGLAPALASTLLAVMGAVNVAGTVAAGWGTDRVDPRLLLAGTYALRAVSLSALPVLLGPDLTPALVVFAVSFGLLDLATVPPTVALCREYFGLDGAVVFAWLTGAHQVGAAGAALGAGVVRDLTGSYAPAFVAVAVLCALAAAASALIRRQPTAASSSASAAAIIRNANANANANA
AK018_022091053cdhR_1COG4977HTH-type transcriptional regulator CdhRATGTCCGTCCAGCCGGGATCCGGCCCCGCCCGCCGGGCCGACGCCGTCGAGCGGCCCCACCGCGTCGCCGTGCTGGTCCGGCCCGGGGTGATGCCGCTCGAGCTCGGCCTCTGCCACCAGCTGTTCGGCCGGGCCCGCGACGCGGACGGCCGCGCGCTGTACACCGTGACCACGTGCACCCCCGCATCGGGCCTCGTGCCGACCGACGCCGACTTCACGATCGACGTCGCCGCCGGGCCGGAGGCGCTGGCCACGGCGGACACCGTCGTCGTGCTCGCCTCCCACGCCCCGGGCGAGACCGAGACCACCGGCACGCTGGGCCCCGACCTGGCCGCCGCCTGGGACCGGGTGCGGCCCGGGGCGCGGCTGGCCTCGATCTGCACCGGCGCGTACGTGCTCGCTGCCGCCGGGGTCCTGGACGGCCGGCGCGCCACGACGCACTGGAACTCCGCCGCCGACCTGGCACGCCGCTTCCCCGCCGTGCAGGTCGACCCCGACGTGCTGTTCGTCGACACCGGCGACGTGCTCACCTCTGCCGGCGAGGCGGCCGGGATCGACCTGTGCCTGCACCTGATCCGGCGCGACCACGGCGCGGCCGTGGCCAACGACGTCGCCCGTGCCGCCGTCGTGCCGCCGTACCGCGAGGGCGGGCAGGCGCAGTACATCCCGCGCCCCGCCGCCTCCCCGCACGGGCCGGTGACGGCATCGGCCCGCGCCTGGGCGCTGGACCGCCTCGACCAGGAACTCTCGCTGGCCTCCTGGGCCGCCGCCCAGGCGCTGAGCGTGCGGACCCTGACCCGCCGCTTCGCCCAGGAGACCGGGCTGTCGCCGTGGCAGTGGCTGACGGCCCAGCGTGTGGCGCGCGCCCGCGAGCTGCTCGAGAGCACCGACCTGTCCGTCGACCGGGTGGCCGCCCAAGTCGGGTTCGGCACGGCGGTGTCCCTGCGCACCCACCTGCACGAGCGCCTCGGCGTGACGCCGTCGGCCTACCGGGCCACGTTCCGCGGCCCGGCGGGCGCGGTGGGCCGGTCGGCCCCGGGCGCCGAGGGCTGAMSVQPGSGPARRADAVERPHRVAVLVRPGVMPLELGLCHQLFGRARDADGRALYTVTTCTPASGLVPTDADFTIDVAAGPEALATADTVVVLASHAPGETETTGTLGPDLAAAWDRVRPGARLASICTGAYVLAAAGVLDGRRATTHWNSAADLARRFPAVQVDPDVLFVDTGDVLTSAGEAAGIDLCLHLIRRDHGAAVANDVARAAVVPPYREGGQAQYIPRPAASPHGPVTASARAWALDRLDQELSLASWAAAQALSVRTLTRRFAQETGLSPWQWLTAQRVARARELLESTDLSVDRVAAQVGFGTAVSLRTHLHERLGVTPSAYRATFRGPAGAVGRSAPGAEGPGPT0014658_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NANANA
AK018_02210654hypothetical proteinGTGCAGCTGCCGACCTGGAAGGGCGACCCCGTCGACCCCGTCGATCCCGCCGCGCTCGTCGGGATCCTCGACGAGGCCCTGCAGACCCTCACCGAGCGCATGGACGGCGACCCGGCACGCCCGGTCGACGCGGCGCGGACGCTCCGCGCCGTCGAGGCGGCGTCCCTGCTGCGGTTCTTCGCCGAAGCAGGCCAGACGCTGCTCGTGCCGATCGCCCGGACCGACGGCGCCACCTGGGACGACCTCGGCCGGGCGATGGGGATCTCCGCGTCGACGGCGCGGGCGCACCACCAGGACGGTGTGGCCCAGCGCGAGGAGTCGCTCCGTGCCGCGCGCCGGCCCGCACCGCCCGCGGGGTTCACACCGTCCGACCGCGACGTCGTGCGGGACGATGACCGGGCGACCTGGCGCTGGGACGGCGACCTCGACCTCGGGATCCGGTACGTGCGGTCACTGCCGAACAGCGTCCTCTTCGCCTTCCGCGACACCGCCGACGACGCCGGACCGGCCGACGCCTGGCCCGACGTCGCGGAGATGGACGAGGCGACCTGGCGCGTCGTGATCGGGTCGGTGCTCGCGGACCGCCGGGCCGACCCCGCCGACGCCCGACCCGGCGAGTCCCTGGCCGAGCTCACCGCACGCCGGGGGTCCTAGMQLPTWKGDPVDPVDPAALVGILDEALQTLTERMDGDPARPVDAARTLRAVEAASLLRFFAEAGQTLLVPIARTDGATWDDLGRAMGISASTARAHHQDGVAQREESLRAARRPAPPAGFTPSDRDVVRDDDRATWRWDGDLDLGIRYVRSLPNSVLFAFRDTADDAGPADAWPDVAEMDEATWRVVIGSVLADRRADPADARPGESLAELTARRGSNANANANANA
AK018_022111020hypothetical proteinATGAAGTACATCGGTTTCCTGTCCTTCGGTCACTGGACCGACCACCCGTCCTCGGCCACCCGCAGCGCGGCGGACGTGCTGCACCAGTCGATCGAGCTGGCCGAGGCCGCCGAGGAGCTCGGGGCCGACGGCGCCTACTTCCGGGTGCACCACTTCGCCCGGCAGCTGGGCAGCCCGTTCCCGCTGCTGGCCGCGGTCGGGGCGCGCACGCGCCGGATCGAGATCGGCACGGGCGTGATCGACATGCGCTACGAGAACCCGGCCTACATGACCGAGGACGCCGGCGCGGCGGACCTCATCGCCGGCGGGCGTCTGCAGCTCGGCATCTCGCGCGGCAGCCCGGAGCAGGTGATCGAGGGCTACCGGCACTTCGACCACGTCCCGGCCCCGGGGGAGTCGGACGCGGACATGGCGCGCCGGCACACCGCGCGGTTCCTGGAGCTGTTGACGGGCGAGGGGTTCGCCGAGCCGAACCCGCGTCCGATGTTCCCCAACCCGCCGGGCCTGCTGCGCCTGGAGCCGCACTCCCCGGGCCTGCGCGAGCGCATCTGGTGGGGTGCGGGTTCGCGGGCGACGGCCGAGTGGGCCGCGACCCAGGGGATGAACCTCATGAGCTCGACGCTGCTGACCGAGGACACGGGGGTGCCGTTCCACGAGCTGCAGGCCGAGCAGATCCAGAGGTTCCGCGACGCGTGGACGACGGCCGGCCACGCGTACACCCCGCGGGTGTCGGTGTCCCGGTCGGTGTTCCCGATCACCGACGACCGCGACCGCGCCTACTTCGGCACCGCGACGGGGTCGACGGACCAGGTGGGCATGCTCGACGGCGGCCGGGCCCGGTTCGGCAAGACCTACGCCGGCGAGGTCGACCAGATCGTGGCGGACCTGGCCGAGGACTCGGCCGTCGCGGCGGCGGACACGCTGCTGCTGACGGTGCCGAACCAGCTCGGGGTGGACTACAACGCCCACGTCATCGAGAACGTGGTGCGGCACGTGGCGCCGCAGCTCGGCTGGCGCTAGMKYIGFLSFGHWTDHPSSATRSAADVLHQSIELAEAAEELGADGAYFRVHHFARQLGSPFPLLAAVGARTRRIEIGTGVIDMRYENPAYMTEDAGAADLIAGGRLQLGISRGSPEQVIEGYRHFDHVPAPGESDADMARRHTARFLELLTGEGFAEPNPRPMFPNPPGLLRLEPHSPGLRERIWWGAGSRATAEWAATQGMNLMSSTLLTEDTGVPFHELQAEQIQRFRDAWTTAGHAYTPRVSVSRSVFPITDDRDRAYFGTATGSTDQVGMLDGGRARFGKTYAGEVDQIVADLAEDSAVAAADTLLLTVPNQLGVDYNAHVIENVVRHVAPQLGWRNANANANANA
AK018_02212792menH_12-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGCTGCTCGCCCACGACATCGCCGGTACCGGCCCGCACGTCGTCCTGCTGCACGCCGGCGTCGCCGACCGGAACATGTGGGACCCCGTCATGCACGGGCTGACCCAGGTCTTCCGCGTGCTGCGCCCCGACCTGCGGGGGTTCGGCGAGACTCCGCTGCCCGCCGAGGACTACGTCGACGCCGACGACGTCGCCGAGGTCATGGACGCCTGCGGCATGGACGACGCCGTCGTGGTCGGCAACAGCCTCGGCGGACGCGTCGCTCTCGAGCTCGCCACCCGCCACCCCGCCCGCGTGCGCGAGCTCGTGCTGCTCTCGCCGGCCTACCCCGACCTGCCGCCCAGCGACGCCCTGCACGACTTCATCGCCCGCGAGGAGACCCTGCTCGACGCCGGCGACCTCGAGGCAGCGGTCGCGCTCAACGTCGACACCTGGCTCGGGCCCGCCGCCGACGACGACACCCGGGCCGCGCTGGCACGCATGCAGCACCGCGCCTTCGACATCCAGCTCGCCGCCGAAGCCGAAGCCGACGTCCGTGGTGCCGCGGCCGGCACACCCCGGCCCGTGCCGATCGCCCTCGACCAGATCCACGTGCCCACCCTCGTCGTCTCCGGCGCCCACGACCTCGACCACTTCCGCGCGGTCGCCGAGCACCTCGTGGCCGCGCTGCCCATCGCCGAGCACCTCGACCTCGACTGGGCAGGCCACCTGCCCACGCTGGAGAACCCCGACGCCATCGAGCCCCTCCTGCTCGACGTGCTGCGCGACGACCCGACCGTGCACGCACCATGAMLLAHDIAGTGPHVVLLHAGVADRNMWDPVMHGLTQVFRVLRPDLRGFGETPLPAEDYVDADDVAEVMDACGMDDAVVVGNSLGGRVALELATRHPARVRELVLLSPAYPDLPPSDALHDFIAREETLLDAGDLEAAVALNVDTWLGPAADDDTRAALARMQHRAFDIQLAAEAEADVRGAAAGTPRPVPIALDQIHVPTLVVSGAHDLDHFRAVAEHLVAALPIAEHLDLDWAGHLPTLENPDAIEPLLLDVLRDDPTVHAPPGPT0004995_2081DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
AK018_02213498ysnE_2putative N-acetyltransferase YsnEATGAACATCGCCGTCGACTCCCCCGCCCGCGAGGACGTCCGTGCCCTGCTCGACGAGCACCTGACCGAGATGCGCGCCACCTCGCCCGAGGAGTCCGTCCACGCCCTCGCCCCGGCGGCGCTCACGGCCCCCACCATCACGTTCCTCACCGCCCGCAGCGACGAGACCGGCGCCCTGCTGGGGTGCGGGGCCCTCAGCGAGCTCGCCCCGGGCCCGGGCGGGCACGGCGAGATCAAGTCGATGCGCACCGCCCGGGGCGCTCGAGGGCTCGGAGTCGCTACCCGGCTGCTGGGCGAGCTGCTCGCCCTGGCCGCCGAGCGCGGCTACGAGCGGGTGAGCCTGGAGACCGGCTCGGAGCAGTTCTTCGCCCCGGCCCGGCGGATCTACACCCGCCACGGATTCGTCGAGTGCGAGCCGTTCGCCGACTACGTGCCCGACCCCAACAGCGTCTTCATGACGTTCGCCTTGCCTGTCCCGCCTCCTGAGGGCGATCGCTGAMNIAVDSPAREDVRALLDEHLTEMRATSPEESVHALAPAALTAPTITFLTARSDETGALLGCGALSELAPGPGGHGEIKSMRTARGARGLGVATRLLGELLALAAERGYERVSLETGSEQFFAPARRIYTRHGFVECEPFADYVPDPNSVFMTFALPVPPPEGDRPGPT0007180_28DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007180-iaaT|yedL|ysnE-K03829NANA
AK018_022141458xerC_4Tyrosine recombinase XerCATGGCCTACACCGAGAAGCGCACCCGAGCCGGCGGCACGACGTCGTACGTGGGGCGCTTCCGGATCGACGGCCGCCTGCGCAGCACCCGGGCGTTCCGGGCCCGGCGCGACGCGCTGGCCGAGGCACGCCGGGCCGAGGAGGCAGGCAAGCGCGGCGACTGGGTCGACCCGAGGTCCGGCATGCTCACCGTGGCCGAGTGGTTCTCCGCGTGGCAGGCCGGCCGCGCGGACCGCGCCCCGCGGACCCTGGAGTCCGAGCGCGAGCGGTTCCGCTCCCTGGTCGCCCCCACCTTCGGCGAGGAGCCGTTGCGCCGGGTGACGCACGACGACGTCGCCCGGTGGGCCGCGACCGTGCCGTCGCCGCGTACGGGCGAACCTGCCTCCGCGGCCCGGCGCCGCGACGCGGTGCGGCTGCTCGTGGCGCTGCTGGACGCCGCCGTCGACGCCCGCCGCCTGCCCGCCAACCCGGCCCGGACGCCGTCGGGTCGGGTGCCGGCCCTGCCCCGGGCCCCGAAGACCAAGGCACACCGCTACCTGTCGCACGAACAGCTGCGCCGTGTGGCCGAGGCGACCGTGGCGGAGCAGACCCGCACGCTCGTGCTGCTCGCCGGGCTGACCGGGCTGCGGTGGGGCGAGATCTCAGCACTGCGCACCGACGACGTGGACCTCCTGCGTCGTCGCGTCACCGTCGAGCGGGCCTGGACCCGCCTGGACGACGGCACCCTGCTGCTCGGCGACACCAAGACCCACGCGCGCCGAGAGGTGCCGGTCCCCCGAGTGCTGGAGCCCGAGCTGGCCGACAGGCTCGGCGGACGCCCGGGCGCCGCGTTGCTGTTCACGGCGCGCGACGGCGGCCCGCTGCGCCGCGAGTCCTTCGACCGGCACGCCTTCCGTCCGGCCGTGCGCGCCGCCGGCGCCGCGGTGAGCACGCTGCAGGAGCTGCTCGGGCTGACCGCGACGGGGATCTACGACACGACGGCCCTGACCGCGGTGCGCCGGGTCCAGGCCGAGCACGAGCTGCCGGTCACCGGGGTCGTGGACCCCGCGACCTGGGCCGTGCTGGTCGCGGCCGACCGCACCCGTCGCGACGGGATGACCCGTGGCGAGAAGATCTCCCGCACCCGTCGCCTCGACGTCGTGGCCCGGGTGACCCTGTGCGCCGGCGCCGAGGACTTCGCCTCGCTGACCCTGCACGACCTGCGGCACACGGCGGCCTCCCTGGCCATCGCCAGCGGCGCGAGCGTCAAGGCCGTCCAGCGCATGCTCGGCCACGAGTCCCCCGTGCTGACGCTGCGTACTTACGCCGGCCTGTTCGAGGACGACCTCGACCGCCTCGGCGAGTCGATGTCCGAGCAGTTCGCAGCGCACGCCTCGGCAGACGCCGCTCACGATGCGCTCACCGAGACCCCGGAAGCGCCCGCGAGCGTGGCCGATCTGACCGCGCGTGTGGCGCGCTGAMAYTEKRTRAGGTTSYVGRFRIDGRLRSTRAFRARRDALAEARRAEEAGKRGDWVDPRSGMLTVAEWFSAWQAGRADRAPRTLESERERFRSLVAPTFGEEPLRRVTHDDVARWAATVPSPRTGEPASAARRRDAVRLLVALLDAAVDARRLPANPARTPSGRVPALPRAPKTKAHRYLSHEQLRRVAEATVAEQTRTLVLLAGLTGLRWGEISALRTDDVDLLRRRVTVERAWTRLDDGTLLLGDTKTHARREVPVPRVLEPELADRLGGRPGAALLFTARDGGPLRRESFDRHAFRPAVRAAGAAVSTLQELLGLTATGIYDTTALTAVRRVQAEHELPVTGVVDPATWAVLVAADRTRRDGMTRGEKISRTRRLDVVARVTLCAGAEDFASLTLHDLRHTAASLAIASGASVKAVQRMLGHESPVLTLRTYAGLFEDDLDRLGESMSEQFAAHASADAAHDALTETPEAPASVADLTARVARNANANANANA
AK018_02215900hypothetical proteinGTGTTCGCCGCCGCCGACGCGCTGCTCGCCGACGACGAGCCGGTCACCGTCACCACCGTGCGCGAGCGGGCCGGCTGCTCGAACGCCACGGCGACCACCCACCTGCGGGCCTGGCGCGAGGAACGCGCCGCAGCCGAGGCGGACGCCGCCCGGCTGCCCGCGCTGCCGCGGCCGGTGGAGCTGCTCGTCGAGCGGGGCGTGACCGGGCTGTGGGGTGCGGCCGTGCGCGCGGCGCGCGAGGAGCACACCGCGCAGGCGGCCCGCGTGGGCGAGGCCCTCGCCACCGCCCGCGAGGACGCCGACCGGCTGGCCCGCACCCTGGACACCGCCCGGCAGGAGCGTGACGACGCGCGCGCCGAGCTGTCCCAGCTCCGCGACCGGACGCGTCACCAGGTGCAGTCGTTGACCGAACGGCTCGCGCAGGCCGACGACGAGCGCACCCAGGCCGCGGACGCCGCGCACCGCGCCGCGGGTCAGGTCGAGGAGCTGCGCACCGCGCTGCAGCAGGCGCGCGCCGAGGCCGAGGCGCTGCGCAGCGACCTGGCCGCCGCCGTGCAGGCCCGGTCCGACGAGGCCGAGCAGCACGCCGCGGCGCGGGCGACGTCCGCCGCCCGGCAGGAGGCCCTCGACCAGGCCCACGCGTCGCTGGAGTCGGCGCGCAGCGAGCACCGACGCAGCGAGGACGAGCGGGCGCGTGCGGTCAGCGACCTCGCGGTGGCGCGCGCCACGGCGGAACGGGCCGACACCGAGGTCACCGCCCTGCGCGACGAGCTCGCCGCGGCCCGGTCGCGCGCGGACGACGCGGCGCGCGACGCCGCGGACCAGGCGGCCGCCCGGGCACGCGCCGAGGGCGAGCTGGCGGGCGTCCGTGCGGTGGCCGCCGAGGAGCACCGGGCCTGAMFAAADALLADDEPVTVTTVRERAGCSNATATTHLRAWREERAAAEADAARLPALPRPVELLVERGVTGLWGAAVRAAREEHTAQAARVGEALATAREDADRLARTLDTARQERDDARAELSQLRDRTRHQVQSLTERLAQADDERTQAADAAHRAAGQVEELRTALQQARAEAEALRSDLAAAVQARSDEAEQHAAARATSAARQEALDQAHASLESARSEHRRSEDERARAVSDLAVARATAERADTEVTALRDELAAARSRADDAARDAADQAAARARAEGELAGVRAVAAEEHRANANANANANA
AK018_02216450lrp_3COG1522Leucine-responsive regulatory proteinGTGCGCCTGGACGGGATCGACCACCGCCTGCTGGCGGCGCTGGCCGAGGACGCCCGCATGCCGAACAACGCCCTGGCGGCCCGGGTCGGGATCGCCCCGTCGACCTGCCTGACCCGCGTGCGGCGCCTGCGCGACGAGGGGGTGATCCGCGGCTTCCACGCCGACGTCGACCCCGCGCTGGCCGGCCGCCCGCTGCAGGCGATCATCGCCGTGCGCATGCAGGGCGCGGCCCGGTCCCACCTGCCGGCCTTCGCCCGCGAGCTGGCACGGCTGCCCGGCGTGCTGGACGTGTACCTCATCGGCGGGGCGCACGACTTCTTCGTGCACGTCACCGCACCCGACTCCGACGTGCTCAACGACTTCGTCATCGAGAACCTCTCGGCCAACCCGGGTGTGGCGCTGACCGAGACGAACCTGATCTTCCAGCACACCCGGGGCGGCTGGTACTGAMRLDGIDHRLLAALAEDARMPNNALAARVGIAPSTCLTRVRRLRDEGVIRGFHADVDPALAGRPLQAIIAVRMQGAARSHLPAFARELARLPGVLDVYLIGGAHDFFVHVTAPDSDVLNDFVIENLSANPGVALTETNLIFQHTRGGWYNANANANANA
AK018_022171113ald_3COG0686Alanine dehydrogenaseATGGACGTCGCCGTCCCGAAGGAAGTCAAGAACCACGAAGACCGCGTCGCCATCACCCCGGCCGGCGTGCACGAGCTCGCCACACGCGGTCACACGGTGCACGTCCAGGCCGGTGCCGGGCTGGGCGCGGGCATCACCGACGAGCAGTACGCCGCCGAGGGCGCCCGCATCGTCCAGGGCGCCGCCGCGACCTGGGACGCCGGCGAGATGGTGCTCAAGGTCAAGGAGCCCGTGGCCTCCGAGTACGAGCTGCTGCGCGATGACCTGCTGCTGTTCACCTACCTGCACCTGGCCGCGGACAAGGCCCTGACCGAGGAGCTTCTCGCCCGCCGCGTCACCGCGGTGGCCTACGAGACGGTCCAGCACGCCGACGGCTTCCTGCCCCTGCTGGCGCCGATGTCGGAGGTCGCGGGCCGGCTCGCCACGCAGGTCGGGGCCGCCACGCTGCAGAACGCGGCCGGCGGGCGCGGCGTGCTGCTCGGCGGGGTCCCGGGCGTCCCGGCCGCGCAGGTGGTGATCATCGGCGCCGGCACCTCTGGCATGAACGCCGCCCGCATCGCCGTCGGCATGGGCGCCCACGTCACCCTGCTGGACACCAACGTCGACGTGCTGCGCGCCGCGGACCGCGAGTTCGCCGGCCGCGTGCAGACCCTGACCTCCAACCGGCTCAGCCTGCGCCAGGCCGTGCTCGAGGCGGACCTGGTCATCGGCGCGGTCCTGCTGCCCGGGGCCAAGGCGCCCGTGCTCGTGCCGAACGAGCTGGTGGCGCAGATGCGACCCGGCGCGGTGCTCGTCGACATCGCCATCGACCAGGGTGGCTGCTTCGCCGACTCGCGGCCCACCACCCACGACCAGCCCACCTACCCGGTGCACGACACCGTGTTCTACTGCGTGGCCAACATGCCCGGCGCGGTCCCCCGGACCTCCACCTACGCCCTGACGAACGTCACCCTGCCCTACGCGGTGGCGCTCGCCGACTCCGGCTGGCGCGAGGCGCTCGGTGCCGACGCGGCACTGGCGCGCGGGCTCAACACCCACGACGGTCACGTCATGCACGCCGGCGTCGCCGAGGCGCACGGGCTGGACCACCGCGAGGTCGCGGGAGTGCTGTGAMDVAVPKEVKNHEDRVAITPAGVHELATRGHTVHVQAGAGLGAGITDEQYAAEGARIVQGAAATWDAGEMVLKVKEPVASEYELLRDDLLLFTYLHLAADKALTEELLARRVTAVAYETVQHADGFLPLLAPMSEVAGRLATQVGAATLQNAAGGRGVLLGGVPGVPAAQVVIIGAGTSGMNAARIAVGMGAHVTLLDTNVDVLRAADREFAGRVQTLTSNRLSLRQAVLEADLVIGAVLLPGAKAPVLVPNELVAQMRPGAVLVDIAIDQGGCFADSRPTTHDQPTYPVHDTVFYCVANMPGAVPRTSTYALTNVTLPYAVALADSGWREALGADAALARGLNTHDGHVMHAGVAEAHGLDHREVAGVLPGPT0020070_2525DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ALANINE_DEGRADATION,PGPT0020070-ald-K00259NANA
AK018_02218477hypothetical proteinGTGAGCGGGCCCCACCGCGGATCCGCGCCCGCGCCCGGCGATGCCGGGCGCGGGCGCTCGCGTGTTCCGGCGGCGCTCGCCCTGGCCGGGGTCGTGCTGGCCGGGTGCCAGTCGGCAGGCCCGGACGACGCCGCCGGCGCCTCGTCCTCCGCGACGGCGGCGGAGACCCAGCGTCACCCGGACGTGCTGGAGGTGGTGGCCGACTGCGCCGGGGAGACCTGCGACCTCGAGGTCACGATCAGCTCGCCGTACGACACCCCGCAGCGTTACGCCGACGGTTGGCGCGTCCGGACCGAGGACGGTGTCGTGCTCGGGGTGCACACCCTGGCCCACGACCACGCCGGCGAGCAGCCGTTCACGCGCACCCAGCGTGGCGTCGAGATCCCGCGGGAGGTCGAGGCCGTCGTCGTCGAGGGCCGGGACCAGGAGCACGGCTTCGGCGGGCGGACCGTGACGGTGACGCTGCCGGACCGGTGAMSGPHRGSAPAPGDAGRGRSRVPAALALAGVVLAGCQSAGPDDAAGASSSATAAETQRHPDVLEVVADCAGETCDLEVTISSPYDTPQRYADGWRVRTEDGVVLGVHTLAHDHAGEQPFTRTQRGVEIPREVEAVVVEGRDQEHGFGGRTVTVTLPDRNANANANANA
AK018_022191023galE_2COG1087UDP-glucose 4-epimeraseATGCGCGTCCTCGTCTCCGGCGGTGCCGGCTACATCGGCTCCCACACGGTCCTGTCCCTGCTGGCCTCCGGTCACGACGTCGTCGTGGTCGACGACTTCTCCAACGCCAAGCCCAGCGTCATCGGCCGGCTCGAGGCCCTGTCGGGCAAGCACGTGCCGGTGCACGCCATCGACCTGACGGACGCCGAGAAGACCGAGCGGCTGTTCGCCCACGAGCGCTTCGACGCCGTGGTCCACTTCGCCGGCTTCAAGGCCGTGGGGGAGTCGGTGGCCAAGCCGCTGGCCTACTACCGCAACAACCTCGACTCCACGCTGTCGCTGCTGGAGGCGATGCGCCGCCACGACGTGCACCGGCTCGTGTTCTCCTCCTCGGCGACCGTCTACGGCGAGCACGCTCCCGTGCCCTACGTCGAGGACTACGAGCACCTGTCCTCCTCCTCGCCGTACGGGCAGACGAAGGTCATGATCGAGCGCATCATGACCGACGTCGCCGCCGCGACCGAGGGGCTGCGCGTGGCGCTGCTGCGCTACTTCAACCCGGTCGGGGCGCACCCCTCGGGCGAGATCGGCGAGGACCCGCAGGGCATCCCGAACAACCTCATGCCCTTCATCGCCCAGGTCGCCGTGGGCCGTCGCGAGAAGCTCACCGTGTTCGGCGACGACTACGCCACCGCCGACGGCACCTGCGAGCGCGACTACCTGCACGTGGAGGACCTCGCCGCCGGGCACGTCGCCGCGCTCGAGCACCTCGACGACATGGCCGAGCCCGTGCGCGCCTTCAACCTCGGCACCGGGACCGGCACCTCGGTGCTGGCCATGCTGCACGCCTTCGAGCGGGCCGTCGGGCGCGAGCTGCCCTACGAGGTCGGGCCCCGGCGGGCCGGCGACCTGCCGGCGTTCTGGGCCGACCCCACCCGGGCGAACACCGAGCTGGGCTGGCGCGCCGAGAAGTCGATCGACGACATGTGCGCCGACACCTGGCGCTGGCAGCAGGCCAACCCGCAGGGCTTCCCGGACGCCTGAMRVLVSGGAGYIGSHTVLSLLASGHDVVVVDDFSNAKPSVIGRLEALSGKHVPVHAIDLTDAEKTERLFAHERFDAVVHFAGFKAVGESVAKPLAYYRNNLDSTLSLLEAMRRHDVHRLVFSSSATVYGEHAPVPYVEDYEHLSSSSPYGQTKVMIERIMTDVAAATEGLRVALLRYFNPVGAHPSGEIGEDPQGIPNNLMPFIAQVAVGRREKLTVFGDDYATADGTCERDYLHVEDLAAGHVAALEHLDDMAEPVRAFNLGTGTGTSVLAMLHAFERAVGRELPYEVGPRRAGDLPAFWADPTRANTELGWRAEKSIDDMCADTWRWQQANPQGFPDAPGPT0017825_26DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
AK018_02220621hypothetical proteinATGAGCACCCGCCGCACCCTCGCCGTCGTCACCGCGGGCCTGTCCCAGCCGTCCTCGTCGCGGCTGCTCGCCGACCGGCTGGCCACCGCCACGGCCGACGGGCTGCTCGAGGCCGGCCAGGAGACCGACGTCGAGGTCGTCGAGCTGCGCGAGCACGCCCACGCGATCGTCGACGCCATGCTGACGCGGTTCCCCTCGGGCGAGCTCGCCACCGCGCTGGACACCGTCACCGGTGCCGACGGGCTGGTCATGGTCAGCCCGCTGTTCACCACGACCTACTCCGGGCTGTTCAAGTCCTTCGTCGACGTCATCGACCCCGACGCCCTGACCGGCAAGCCGGTGCTGCTCGGCGCCACGGGCGGCACGTCCCGGCACTCGCTGGCGCTGGACTACTCGATGCGTCCGCTGCTGACGTACCTGCGCACGCAGGTGGTGCCCACGGCCGTGTTCGCGGCCACCGACGACTGGGCCGGCCAGGACGGTTCCGACGCCCTGACGCGCCGCATCTCCCGCGCCGGGCGCGAGCTCGCCGCGGCCGTGGCGTCGCGCCCGGCGGCCACCGGGCAGGACGACCCCTTCGGTGACACCCCGGACTTCGCCCAGCTGCTCGGCGGCTCCTGAMSTRRTLAVVTAGLSQPSSSRLLADRLATATADGLLEAGQETDVEVVELREHAHAIVDAMLTRFPSGELATALDTVTGADGLVMVSPLFTTTYSGLFKSFVDVIDPDALTGKPVLLGATGGTSRHSLALDYSMRPLLTYLRTQVVPTAVFAATDDWAGQDGSDALTRRISRAGRELAAAVASRPAATGQDDPFGDTPDFAQLLGGSPGPT0003045_529DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0003045-ssuE-K00299NANA
AK018_022211161hypothetical proteinGTGCAGTTCGGCATCTTCTCCGTCTCCGACGTGACGACGGACCCCACGACCGGCCACACCCCGGACGACACCGAACGGGTGCGGTCGATGCTGACGATCGCCCGGCACGCCGACGCGGCGGGGCTGGACGTCTTCGCCACCGGCGAGCACCACAACCCGCCGTTCGTCGCCTCGAGCCCCACGACGATGCTCGGCTACCTGGCGGGCGTGACCGAGAACATCACCCTGTCCACGGCCACCACGCTGATCACGACCAACGACCCGGTGCGCCTGGCCGAGGAGTACGCGATGCTCCAGGTGCTCTCCGGCGGCCGCATGGACCTGATGATGGGCCGCGGCAACACCGGGCCGGTCTACCCGTGGTTCGGTCAGGACATCCGCAACGGCATCCCGCTCGCGATCGAGAACTACGCGCTGCTGCGCCGGCTGTGGACCGAGGACGTCGTCGACTGGAGCGGGCAGTTCCGCACCCCGCTGCAGGGCTTCACCGCGACCCCGCGGCCGCTGGACGGCGTGCCGCCGTTCGTGTGGCACGGCTCGATCCGCTCGCCCGAGATCGCCGAGCAGGCCGCGTACTACGGCGACGGGTTCCTGCACAACAACATCTTCTGGCCCATGCACCACACCAAGCAGATGGTGCGGTTCTACCGCCAGCGCTACGAGCACCACGGCCACGGCCGTGCCGACCAGGCGATCGTCGGCCTGGGCGGACAGGTCTTCGTGCGCAAGAACTCCCAGGACGCGGTGCGCGAGTTCCGCCCCTACTTCGACGTCGCACCGGTCTACGGCCACGGCCCGAGCCTGGAGGACTTCTCCGCCCAGACGCCCCTGACGGTCGGCTCGCCCCAGCAGGTCATCGACCGCTACGGCGCGTTCGTCGAGGACGTCGGCTACTACCAGCGCCAGATGTTCCTCATCGACCACGCCGGCCTGCCCCTGAAGACCGTGCTGGAGCAGATCGACCTGCTGGCCGAGGAGATCGTGCCCGAGCTGCGCAGGATCGTCGAGGCCAAGCGGCCCGCCGACGACGTGCCGCTCGACCCGCCCACGCACGCCGAGCGCGTCGCCGCCGCCCGCACGGCGGGCGCCTCCGGCACCACCCACGTCGGCGACGGCGGCGACGCCGTCACCGGCACCCGAGCCGAGGAGGCCGTCCGATGAMQFGIFSVSDVTTDPTTGHTPDDTERVRSMLTIARHADAAGLDVFATGEHHNPPFVASSPTTMLGYLAGVTENITLSTATTLITTNDPVRLAEEYAMLQVLSGGRMDLMMGRGNTGPVYPWFGQDIRNGIPLAIENYALLRRLWTEDVVDWSGQFRTPLQGFTATPRPLDGVPPFVWHGSIRSPEIAEQAAYYGDGFLHNNIFWPMHHTKQMVRFYRQRYEHHGHGRADQAIVGLGGQVFVRKNSQDAVREFRPYFDVAPVYGHGPSLEDFSAQTPLTVGSPQQVIDRYGAFVEDVGYYQRQMFLIDHAGLPLKTVLEQIDLLAEEIVPELRRIVEAKRPADDVPLDPPTHAERVAAARTAGASGTTHVGDGGDAVTGTRAEEAVRNANANANANA
AK018_02222345rbpA_2RNA polymerase-binding protein RbpAATGCCCGACCGCTCCCTCCGTGGCATGAGCATCGGCAGCAAGAGCATGGAGTCCGACGAGGGCGTGGACTTCGCCCCGCGATTCCAGGCGCACTACGACTGCCCCAACGGCCACACGATCATCCTGCCGTTCTCCACCGACGCCGAGGTCCCCCCGATCTGGGAGTGCCAGTGCGGCGGCGAGGCGCTGCTGCGCGACGCCGAGCGTCCCGACGCCAAGCCGACCAAGCCGCAGCGCACCCACTGGGACATGCTGCTCGAGCGCCGCACCGTCTCCGAGCTGGAGGAGCTCCTGGACGAGCGCCTCGAGCTGCTGCGCGCCGGCAAGCTGCGCCGCTCCGCCTGAMPDRSLRGMSIGSKSMESDEGVDFAPRFQAHYDCPNGHTIILPFSTDAEVPPIWECQCGGEALLRDAERPDAKPTKPQRTHWDMLLERRTVSELEELLDERLELLRAGKLRRSANANANANANA
AK018_02223753Undecaprenyl-phosphate mannosyltransferaseGTGAGCACCCTGGTCATCATCCCCACCTACGACGAGCGCGAGTCGTTGCCGGTGACGGTGGAGCGGCTGCGCTCCGCCGTGCCGGACGCGGACGTGCTGGTGGTCGACGACGGCTCGCCGGACGGCACCGGGCGGTGGGCCGAGCGGGCCGCCGCCCACGACGAGCGCCTGCACGTGCTGCACCGGTCCGGCAAGGGCGGGCTCGGCGCCGCCTACGTGGCCGGGTTCGGCTGGGGGCTCGAGCGCGGCTACGACGTGCTGTGCGAGATGGACGCCGACGGCTCGCACCGGCCCGAGGAGCTCGAGCGGCTGCTGGAGCGCGCCGCCGCCGCGGACGCCCCGTCGCTGGTGATCGGCTCGCGCTGGGTGCCCGGCGGGCGGGTCGTGAACTGGCCGTGGCACCGTGAGCTGCTCTCGCGCGGTGGCAACACGTACGTGCGGATCATGCTGGGCATCGCGGTGCGCGACGCCACGGGCGGCTACCGCGCCTTCCGGGCGGACACGCTGCGGGCGCTGGACCTGGCGGCGGTGGAGTCGCACGGCTACTGCTTCCAGGTGGACATGACCTGGCGGGTGCTGCGCGGCGGGGGATCGGTGGCCGAGGTGCCGATCACGTTCGTCGAACGCACGGCCGGCGAGTCGAAGATGTCGCGCGCGATCGTGGTCGAGGCGCTGACGAAGGTGACCCGCTGGGGGCTGCGCCACCGCGGCGAGCAGCTGCGCGGGTTGCTGCGGCGCGCCGACCGCGGCTGAMSTLVIIPTYDERESLPVTVERLRSAVPDADVLVVDDGSPDGTGRWAERAAAHDERLHVLHRSGKGGLGAAYVAGFGWGLERGYDVLCEMDADGSHRPEELERLLERAAAADAPSLVIGSRWVPGGRVVNWPWHRELLSRGGNTYVRIMLGIAVRDATGGYRAFRADTLRALDLAAVESHGYCFQVDMTWRVLRGGGSVAEVPITFVERTAGESKMSRAIVVEALTKVTRWGLRHRGEQLRGLLRRADRGPGPT0017834_1853DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0017834-DPM1_like|arnC|ppm1|wcaA-K00721NANA
AK018_022241764lnt_2COG0815Apolipoprotein N-acyltransferaseATGAGCACCGTGACCGATCCCGCCGTGGCCCCGACGCCCGGGACCGCCCCGGCCGCACCGTCGTCGTGGACGACGTCCCGGCCGGTGACGCTGCTGCTGGGCGTGGCGGCGGGGGTGAGCCTGTGGGCGTCGTTCCCGGACGTGGCCTTCTGGCCGGCGGCGTTCGTGGCGGTGGGGCTGCTGTTCGCGGCCTGGCGGCGCACGGGTCGGCGGGCGGCCGGCTGGAACGCGCTGGTGGGGCTGGTGGCGGGCTGGTCGTTCTGGCTGCCGCACATCTGGTGGGCGAACTTCGCCACGGACACGGTGCCGTGGGTGGCGCTGGCGACGCTGCAGGCGGTGTTCTGGGCGCTGCTCGGCGCGGCGTGGACCGTCGCGCGACGCCTGCCGGTCCTGGCCCTGCCCGGACCGGGCGCCCGGCCGGGGCCGGCGGTGGGCCGCACCCTGGCGCACGCCGCGGCGTTCGCCGTGCTGTTCGTGGCCGTCGAGCAGGCCCGTTCCCAGGTGCCCTTCGGCGGGTTCCCGTGGGGCCGGCTGGCGTGGACGATGGTGGACGCCCCCACGGGGCGCGCGGCCTGGCTGGGCGGCACGGTCGCGGTGTCGCTGCTGGTGGCGCTGGTCGGGGTGCTCGGCGCGGTGGCGGCGGGCCGGCTGGTCGCGGCGGTGCGCGCGGCCCGGGCCGCGCGACCGGTACGTCCGGCGCTGCTGGGCGCGGGGGCCGCGGTGGTCGGCGGCGCGGTGCTGGTCGTGGCCCCGGCGGCGCTGCCGCTGCCGGCCGGGCCGGACCCGCTGCCGCAGGTGGCGACGGCCGACCTGGACACCGTGGTGGTGGACGCCGGCACGGCGACGCACGAGGGTGACGGTCCGGTGCTGCGGGCCGGGGCCGTGCAGGGCAACGTCGCCGAGCCTGGCCTGGGCTCGTTCGCCAACCGTGCCGAGGTGCTGAACAACCACCTGGACGGCACCGACGTGCTGGCCGCCCGCGACGACGACCTGGACGTGGTGCTGTGGCCGGAGAACGGCTCGGACCTGGACCCGCAGGAGGTCACCGAGGTCGCCGGGGCGATCGACGCCGCGGCGACGCGGGCGGGCGCCCCGATCCTGGTGGGTGCCCAGGAGTTCCCCGCCACGGGGGGCCGCTACAACGTCTCGCTGCTGTGGCAGCCGGGGGTCGGGGTGATCGACCGCTACGCCAAGCAGCACCCGGCGCCGTTCGGGGAGTACATCCCGCTGCGCGGCTTCGTGCGGATCTTCTCCGACCAGGTCGACCGGGTCACCAACGACATGCTGCCCGGCACCCAGCCGGCGGTGATCGACCTGCCGCGCACCGACGGGTCGACGGCCCGCCTGGCGACGGCGATCTGCTTCGAGGTCGCCTACGACGAGATCGTGCGCGACGCGGTGCTGCGCGGTGCGCAGGTGCTGGTGGTGCCGACCAACAACGCCTCGTTCGGGTACACGGCCGAGTCGACGCAGCAGCTGTCGATGACCCGCATGCAGGCGATGATCACCGGACGCGCGGCGGTGCAGATCTCCACGGTGGGGGTCTCGGGCGTCGTGGCGCCGGACGGCACGCTGGTGGCGCGCACCGGGTTGTTCACCGCCGACCAGATCGTCGCGGAGCTGCCGCTGCGCACCACCCTGACGCCGGCGGTGCGCGCCGGCGAGTGGCCGGGTGCCGTCGTCGAGGCGGCCGCGGTGCTGCTGGTCGCGGCGGGCGCCCTGTCCCCGATCATCAGCCGCCGCCGTGCGCGAGGAGCTTCGTGAMSTVTDPAVAPTPGTAPAAPSSWTTSRPVTLLLGVAAGVSLWASFPDVAFWPAAFVAVGLLFAAWRRTGRRAAGWNALVGLVAGWSFWLPHIWWANFATDTVPWVALATLQAVFWALLGAAWTVARRLPVLALPGPGARPGPAVGRTLAHAAAFAVLFVAVEQARSQVPFGGFPWGRLAWTMVDAPTGRAAWLGGTVAVSLLVALVGVLGAVAAGRLVAAVRAARAARPVRPALLGAGAAVVGGAVLVVAPAALPLPAGPDPLPQVATADLDTVVVDAGTATHEGDGPVLRAGAVQGNVAEPGLGSFANRAEVLNNHLDGTDVLAARDDDLDVVLWPENGSDLDPQEVTEVAGAIDAAATRAGAPILVGAQEFPATGGRYNVSLLWQPGVGVIDRYAKQHPAPFGEYIPLRGFVRIFSDQVDRVTNDMLPGTQPAVIDLPRTDGSTARLATAICFEVAYDEIVRDAVLRGAQVLVVPTNNASFGYTAESTQQLSMTRMQAMITGRAAVQISTVGVSGVVAPDGTLVARTGLFTADQIVAELPLRTTLTPAVRAGEWPGAVVEAAAVLLVAAGALSPIISRRRARGASPGPT0024470_161DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024470-lnt-K03820NANA
AK018_022251659nfdA_4N-substituted formamide deformylaseGTGACCTCCACCCTGTACCGCAACGGTGTCGTCCACTCTGCCGCGGACCCCTTCGCCGAGGCCCTGCTCGTCGACGACGGCGTGGTGGCCTGGCTCGGCGCCGAGGACACGGCCGCCGGCCTGGCCGCGCGTGCCGACGAGGTCGTCGACCTCGACGGAGCCCTGGTCACGCCCGGCTTCGTCGACGCCCACGTGCACACCCTGGAGACGGCGCTGACCGCCGAGGGCACGGACCTGTCCCCGGCCGGCGCCGGGACCCTCGCCGCCGCGCTGGACCGCCTGGCCGCCGCCGCACGCGACCTGGAGGCCACCGACCCCGGCGGCGAGCAGGTCCTGCTCGCCTTCGGCTGGGACGAGGGCGCCTGGCCCGAGCGCCGGGCACCGTTCCTGGGCGAGCTGGACGCCGCCACCGGGGGGCGCCCCACGTTGGCGGTGCGCGTCGACGGCCACACCGCGCTGACCTCGTCCTCCTTCGCCGCCCGCACCGGCCTGGACCGCACGCCCTCCTGGGACGGCAGCGGGCTGGTCACCGGGGCGGACTACGCCCGTGCCCGCGCCGTCGTGCACGACCTGGACGCGGCACGCCGCGAGACGCTGTACCGGCAGGCACTGAGGTCCGCCGCCGCGCGCGGCATCGTGGCCGTGCACGAGATGAGCACCCCGCACGTGGACACCCGTGCCGGCCTGCAGATGCTGACGGGGCTGGCCGCGGACCCGGAGTCCCGGCTGCCGCACGTGACCGCCTACCGGGCCGAGCTGTGCACCGGCGCCGACGACGCGGCCGCGCTGCTGGCCGAGCTGCCGTTCCTCACCGGTATCGCCGGGGACCTGACCGTCGACGGCACCCTCGGCTCGCGCACCGCGGCGCTGACCGCGCCGTACAGCGACCTGGAGCCCGACGCCCGCGAGCGCACCGGCCGGCTGTACCTGTCGGCGGAGCAGATCGCCACCCACCTGCTGGCCTGCTCGGCCGCCGGGGTCCAGGGCGGCCTGCACGTGGTGGGCGACCGGGCGATGGACGAGCTCGTCGAGGGGCTGGAGATCGCCGTGCAGCGGGCCGACGCCGGCACCCTGCGCGGCGGCCACCACCGCATCGAGCACGCCCTGTTCGTCGACGCCGCGGCGCTGGCCTCGCTGCTGCTGTACGGGGTGGCGCTGTCGATCCAGCCGGCCTACGACTCCACCTGGGGCGGCCCGGACGGGATGTACACCAGCCGCCTGGGCGGGCCCCGGGCGGCGAACCTGTCGCCGTTCGCCGACCTGGCCGGGGCGGGCGTGCCGATCGCGTTCGGCTCGGACAGCCCCGTCACCCCGCTGGCGCCGTGGCAGGCGGTGCGGGCGGCGATCGGCCACGCCGACCCGTCCCAGCGCATCAGCGCCCGGTCGGCCTTCCGCGCCCACTCGCGCGGCGGCTGGCGGCTGGCGGGCCTGGACCACACCGGTGCCGGCGAGCTGCGTGTCGGTGCTCCCGCCCACCTGGCCGTCTGGCGCGCCGAGTCCCTGGCCGTGCAGTCCGCCCCGGGCCGACTGTCGCAGTGGAACCCCGAAGCGCGCGCCGGCCAGCCGCTCCTGCCGGACCTGTCCGACGACGTCCCCGACCCCGAGTGCCTGCGCACGGTCCGCGACGGCGTCGTGCTGCACGACGTGCTCGACGGCTGAMTSTLYRNGVVHSAADPFAEALLVDDGVVAWLGAEDTAAGLAARADEVVDLDGALVTPGFVDAHVHTLETALTAEGTDLSPAGAGTLAAALDRLAAAARDLEATDPGGEQVLLAFGWDEGAWPERRAPFLGELDAATGGRPTLAVRVDGHTALTSSSFAARTGLDRTPSWDGSGLVTGADYARARAVVHDLDAARRETLYRQALRSAAARGIVAVHEMSTPHVDTRAGLQMLTGLAADPESRLPHVTAYRAELCTGADDAAALLAELPFLTGIAGDLTVDGTLGSRTAALTAPYSDLEPDARERTGRLYLSAEQIATHLLACSAAGVQGGLHVVGDRAMDELVEGLEIAVQRADAGTLRGGHHRIEHALFVDAAALASLLLYGVALSIQPAYDSTWGGPDGMYTSRLGGPRAANLSPFADLAGAGVPIAFGSDSPVTPLAPWQAVRAAIGHADPSQRISARSAFRAHSRGGWRLAGLDHTGAGELRVGAPAHLAVWRAESLAVQSAPGRLSQWNPEARAGQPLLPDLSDDVPDPECLRTVRDGVVLHDVLDGNANANANANA
AK018_022262850helY_2COG4581putative helicase HelYATGACGGCAGCACCCAGCCCCGCCGAACGCTACGCCGCCGCCCGGGCCCGCACGGCCCGCGCCCAGGCGGACGCCGGAGAGCTCGGCCGGTTCCGCGACCTGATCGACTTCGAGCTCGACGACTTCCAGGCCGACGCCTGCGCGGCCCTCGAGCGCGGCCGCGGCGTGCTGGTGGCCGCCCCCACCGGCGCCGGCAAGACCGTCGTCGGCGAGTTCGCCGTCCACCTGGCCCTGGCCCGCGGCGGCAAGACGTTCTACACCACGCCCATCAAGGCGCTGAGCAACCAGAAGTACCACGACCTCGTCGAGCGGCACGGCGTCGACGCCGTCGGGCTGCTGACCGGTGACACCTCCATCAACGGCGACGCCCCCGTGGTCGTGATGACCACCGAGGTGCTGCGCAACATGCTCTACGCCGGCTCGACCACCCTGGAGGGCCTGGCCTACGTCGTCATGGACGAGGTGCACTACCTCGCCGACCGGTTCCGCGGCCCGGTCTGGGAGGAGGTCATCATCCACCTGCCCGACCACGTCCAGCTCGTGTCGCTGTCGGCGACCGTGTCCAACGCCGAGGAGTTCGGCGACTGGCTGGCGACCGTGCGCGGCGACACCGCCGTCGTGGTCAGCGAGCACCGCCCGGTGCCGCTGTGGCAGCACGTCATCACCTCGCCCGAGGAGCCGCGCGGGCGCCCGCGCCTGTTCGACCTGTACGCCGGGCACGTGGACCCCACCGACCCGGGCACCAATCCGCCGATCGACCCCGACCTGGCGCGGCTGTTCCGCACCCACGGCCGGGCCGGGTCCGCGCCCGGCGCCCGCCGCCGCGGTCGGGGCGACCGCGGCTACCGGGGCCGCGGCGGGCGCGGCGGCGGTCAGGGGGCCGTGCCGCAGCGCCGCGTGCCGCGCCGCTACGGCGTCGTCGAGGCGCTCGACGACGACGCGCTGCTGCCCGCCATCTACTTCATCTTCTCCCGCGCCGGCTGCGAGGGCGCCGTCGACCAGTGCCTGCGTGCCGGGCTGCGCCTGACCAACGCCGAGGAGGAGGCGGAGATCCGCCGGGTCGTCGAGGAGCGCACCGTGACGGTGCCGCCCGAGGACCTCGAGGTGCTCGGCTTCTGGCAGTGGCAGCACGCGCTGGCGCGCGGCGTCGCCGCCCACCACGCCGGGCTGCTGCCCGTTTTCAAGGAGACCGTCGAGGAGCTGTTCGCCCGCGGTCTGGTCAAGGTCGTGTTCGCCACCGAGACGCTCGCGCTGGGCATCAACATGCCCGCCCGCTCGGTCGTGCTGGAGAAGCTCGTCAAGTTCGACGGCACCGCCCACCAGCCGATCACTCCGGGGGAGTACACCCAGCTGACCGGGCGCGCGGGCCGCCGCGGCATCGACGTCGAGGGCCACGCCGTGGTCGTCGACCACGTGGGCCTGGACCCCGTGGCGCTGGCCGGGCTCGCCTCGCGCCGCCTGTACCCGCTGCGCTCCAGCTTCCGCCCGACCTACAACATGGCCGTCAACCTCGTCGGACAGGTCGGCGCCGAACGCGCCCGCGAGGTGCTGGAGACCAGCTTCGCCCAGTTCCAGGCCGACCGCGGCGTGGTCGACCTGGCCAAGCAGGCCCAGGCCCACGCCGAGGCGCTGCAGGGCTACCGCGGCGCCGCCCGCTGCGAGCGCGGCGACTTCGAGGGCTACCTCGCGGTCCGGCGCGCCATCACCACCCGCGAGAAGGAGCTGTCCAAGGCGGCCAAGGGCGCCCGGCGCGCCGACGCCGTCGACTCCCTGACACGGCTGCGCCGCGGGGACGTGGCCGAGGTGCCGTCCGGACGGCGGCGCGGCTTCGTCGTCGTGCTCGACCCCGGCGCCGACGAGGGCGGGTTCGACGGGCCGCGCCCCACGGTGCTGACCCAGGAGAAGCAGGTCAAGAAGCTCACCGTGGCCGACACCCCCGACGGGGTGCGCACCGTGACGCGGGTGCGCATCCCGAAGGGCTTCAACTCCCGCCGCCCGGCCGACCGCCGCGACCTGGCCTCCAGCCTGCGCAACGCGCTGGGGGAGCGGTCCGCACCCGGCGCGGACGGCCCGGGGCGCACCGCGCGCGGCGACCGCGGCGACGTCGCCTCCGACCGCGAGCTGCAGCGGCTGCGCGCCGACCTGCGCGCCCACCCGTGCCACTCGTGCCCCGAGCGCGAGGACCACGCGCGCTGGGCCCAGCGCGCCGAGAAGCTCTCCCGCGAGCAGGACGCGCTGGTGCGGCGCATCGAGGGACGCACCGGCTCGATCGCGCGCACCTTCGACCGCATCTGCGAGGTGCTGACCGAGCTCGACTACCTGCAGCGCGACGACGACGGGCTGCGCGTGACCGAGTCCGGGTGCCGGCTGGGCAGGCTGTACGCCGAGGACGACCTGCTGATGGCCGAGTGCCTGCGCCAGGGCGTGTGGGACGAGCTGCGGCCCGCCGAGCTCGCCGCCGCGGTGTCGGTGGTGGTGTACTCCGGCCGGCGCGACGAGCCCGAGACCACGCTGGCGGGCGTGCCGGGACGCCGCCTGGCCGACGCCGTGGACGCGACCTTCGACGTGTGGGCGCGGGTGCGCGACCTGGAGGCCGCGCACCGGCTCGACGTCACCGGCACGCTGGACACCGCGCTGGCCGCCCCGGTGCACCAGTGGGCCTCGGGCGCGAGCCTGGACACGGTGCTGCGCGGCACCGACATCGCGGCGGGTGATTTCGTGCGCTGGTGCAAGCAGGTCATCGACGTGCTCGACCAGCTCGCGGCGGCCGCGCAGCCGCCGCTGCGCGGGCGTGCCCGCAGCGCCCAGGACGCCGTGCTGCGGGGTGTGGTGGCGCACTCCACGGTGTGAMTAAPSPAERYAAARARTARAQADAGELGRFRDLIDFELDDFQADACAALERGRGVLVAAPTGAGKTVVGEFAVHLALARGGKTFYTTPIKALSNQKYHDLVERHGVDAVGLLTGDTSINGDAPVVVMTTEVLRNMLYAGSTTLEGLAYVVMDEVHYLADRFRGPVWEEVIIHLPDHVQLVSLSATVSNAEEFGDWLATVRGDTAVVVSEHRPVPLWQHVITSPEEPRGRPRLFDLYAGHVDPTDPGTNPPIDPDLARLFRTHGRAGSAPGARRRGRGDRGYRGRGGRGGGQGAVPQRRVPRRYGVVEALDDDALLPAIYFIFSRAGCEGAVDQCLRAGLRLTNAEEEAEIRRVVEERTVTVPPEDLEVLGFWQWQHALARGVAAHHAGLLPVFKETVEELFARGLVKVVFATETLALGINMPARSVVLEKLVKFDGTAHQPITPGEYTQLTGRAGRRGIDVEGHAVVVDHVGLDPVALAGLASRRLYPLRSSFRPTYNMAVNLVGQVGAERAREVLETSFAQFQADRGVVDLAKQAQAHAEALQGYRGAARCERGDFEGYLAVRRAITTREKELSKAAKGARRADAVDSLTRLRRGDVAEVPSGRRRGFVVVLDPGADEGGFDGPRPTVLTQEKQVKKLTVADTPDGVRTVTRVRIPKGFNSRRPADRRDLASSLRNALGERSAPGADGPGRTARGDRGDVASDRELQRLRADLRAHPCHSCPEREDHARWAQRAEKLSREQDALVRRIEGRTGSIARTFDRICEVLTELDYLQRDDDGLRVTESGCRLGRLYAEDDLLMAECLRQGVWDELRPAELAAAVSVVVYSGRRDEPETTLAGVPGRRLADAVDATFDVWARVRDLEAAHRLDVTGTLDTALAAPVHQWASGASLDTVLRGTDIAAGDFVRWCKQVIDVLDQLAAAAQPPLRGRARSAQDAVLRGVVAHSTVNANANANANA
AK018_02227993dagK_3COG1597Diacylglycerol kinaseGTGACGCCGGCCCCGGGGCCCGCCGCGCGGCACGTGGGCGTGGCGGTCAACCCCACCGCGGGGGCGGGCCGGGGCCGCGTCGTGGCGACCGTGCTGCACGACCGGCTGCGCCGGGCCGGGCACCGCGTCACCGACCTGTCCGGCACGGACGGCGCCGCCACGGCCGCGCGGCTGGCCGCCCGTCACGACCTGGAGGCGCTGGTCGTCGTCGGCGGCGACGGCATGGTGCACCTCGGTGCCGGCGCCACCGCCGGCACGGGCACGCCGTTGGGCGTGGTGCCCGTGGGCACCGGCAACGACTTCGCCGCCGTGCTCGGCCTGCCCGGCGACCCGCTGGAGGCCGTCGACCGGGTCGTGCGGGCCCTGCACGACGGCACCGCCCGCACGGTGGACGCCATCGAGGTCACCGGCCCGCACGGCCCGCCGCGCTGGGTGGCCGGCGCGGTCTCGGCCGGGCTGGACGCCGCCGTCAGCGCCCGCGCGCTGGGGATGCGCCGCCCGCGCGGTGCCGGCCGGTACACCGTGGCGGCGCTGGCCGAGCTGGCCCGGTTCCGCGCCTGGGACTACGCGCTGGAGCTGACCGGCCTCGTCCACGACGGCGGCCTGCCGGGCCTGGCGGTCCACGACGACGCGAGCGCGACCTGGCAGGGCCGGGCCGCCATGGTCACCGCGGCCAACATCGCCCGCATCGGCGGAGGCATCCGGGTCGCCCCGCACGCGCTGGTCGACGACGGGTACCTCGACGTCCTGGTCGCCCCGGTCACCTCCCGGCTGGCGGCGACAACGATCTTCCCGGCCATGTACGCCGGCGCCCACACCCGGCGCCGCGACGTGCACCTCCTGCGCGCCCGGGCCGTGACGATCCGGCCCGCGCCCGGCACGCCCGCCGACGCCGGCCCACCCGTGGCGCACGGGGACGGCGAGGCGCTGGCGGCCCTGCCGCTGACCGCCCGCGCCGTGCCCGGGGCGCTGCACGTGCTGACCTCCGCCTGAMTPAPGPAARHVGVAVNPTAGAGRGRVVATVLHDRLRRAGHRVTDLSGTDGAATAARLAARHDLEALVVVGGDGMVHLGAGATAGTGTPLGVVPVGTGNDFAAVLGLPGDPLEAVDRVVRALHDGTARTVDAIEVTGPHGPPRWVAGAVSAGLDAAVSARALGMRRPRGAGRYTVAALAELARFRAWDYALELTGLVHDGGLPGLAVHDDASATWQGRAAMVTAANIARIGGGIRVAPHALVDDGYLDVLVAPVTSRLAATTIFPAMYAGAHTRRRDVHLLRARAVTIRPAPGTPADAGPPVAHGDGEALAALPLTARAVPGALHVLTSAPGPT0024345_331DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029NANA
AK018_02228774tatC_2COG0805Sec-independent protein translocase protein TatCATGGTCCGCACCCCCCGGGATCCCGAGGGGCGCATGCCGCTGCGCGAGCACCTGGTCGAGGCGCGGCGGCGCATCGTGCGCATCGCCGTCGGCCTGCTGCTCGGCGCGGTGGTCGGCTGGGTCCTGTACGACCCGCTGCTGGACGCGCTGATGCAGCCGCTGCAGCAGGCCGCCGACCGGCGCGGCGCGCTGATCGGGCTGAACTTCGACGGCGTGGCCACGGCGATCGACATGCGGGTCAAGGTCTCGCTGTTCCTCGCGGTGATCGTGTCCAGCCCGTGGTGGCTGTACCAGGTGTTCGCGTTCGTGACCCCCGGCCTGACCCGCACCGAGCGCCGCTACGTGTTCGGGTTCCTGGCCGCGGCGGTGCCGATGTTCCTGGCGGGGTCGCTGCTGGCCTGGTACGTGCTGCCGTTCGTGGTCGAGGTCCTCAACGACTTCGTGCCCGAGGGCGGCTCGAACCTCATCGGCGCCCAGCTGTACCTGAGCTTCGTGATGCGCCTGATCCTGGCCTGCGGCATCGCGTTCCTGGTGCCGGTGTTCATGGTGGTGCTCAACCTCATGGGCACGGTGCGGGCGCGCACCTGGCTGGCCGGGTGGCGCTGGGCGATCCTCATCTCCTTCCTGTTCGCCGCGATCGTGACCCCGACGATGGACGTGCTGAGCATGTTCGGCATCGCGGTGCCGATCGCCGCGCTGTACTTCGTGGCCACCGGCATCTGCTTCGTGCACGACCGGCGGGTCGACCGCCGGCGCGTCGCCCCCGTCGAGTGAMVRTPRDPEGRMPLREHLVEARRRIVRIAVGLLLGAVVGWVLYDPLLDALMQPLQQAADRRGALIGLNFDGVATAIDMRVKVSLFLAVIVSSPWWLYQVFAFVTPGLTRTERRYVFGFLAAAVPMFLAGSLLAWYVLPFVVEVLNDFVPEGGSNLIGAQLYLSFVMRLILACGIAFLVPVFMVVLNLMGTVRARTWLAGWRWAILISFLFAAIVTPTMDVLSMFGIAVPIAALYFVATGICFVHDRRVDRRRVAPVEPGPT0029295_2966DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0029295-tatC-K03118NANA
AK018_02229324tatA_2Sec-independent protein translocase protein TatAGTGGGTATCTTCCGCAACCCGGCAGTGATCATCACGCTGATCCTGCTGGTCGTGCTGCTGTTCGGTGCCAAGCGTCTGCCGGACGTGGCGCGCAGCGTCGGCTCGTCGCTGAAGATCTTCAAGAAGGAGATCAAGGACCTGGGCGAGGACGACGACACCACGACGTCGCGGCCCGAGGGCTCGGGAACCCACGCCGCGAGCTCGCAGGACGGCAGCACGCCGAAGGCGGCCTCGTCGCAGGAGGGGTCGTCGCCGACACCGCCGCACGCGTCGTCGGACGACTCGGCGCAGGTTCCGGGTCGCACCGACCCGCACCAGTCCTGAMGIFRNPAVIITLILLVVLLFGAKRLPDVARSVGSSLKIFKKEIKDLGEDDDTTTSRPEGSGTHAASSQDGSTPKAASSQEGSSPTPPHASSDDSAQVPGRTDPHQSNANANANANA
AK018_02230366hypothetical proteinGTGGTCGCCGTGTGGGGTTGGATCTGGACGTCGCTGGCGGTGGCCGCCGTGCTGTTCCTGGCGTGGCTGGCCTGGCGCGTGGTGCGCAGCGTCATCGCGCTGGTGCGCGGTGCCGGGCAGGCGGGACGTGTCGCGGGCGAGGCGGCCGAGCGTGTCGGGCAGGCCGCCGCCGCGGCGCAGGCGGACCCGCCGCGGGTGACGGCGACGTGGCACGACGACCCCGCGGTGCTGCGGGCGCGCCGGGACGCGCTGCGCCGGGCACGCTGGGAGCGTCGCGGGCAGCGCCGGCGGGCGCAGGCCGCGGTGTGGCGCACCTGGTCGCGGAGCACCTGGCTCGAGCGTCGGCAGGCGCTGCGCCGGGGCTGAMVAVWGWIWTSLAVAAVLFLAWLAWRVVRSVIALVRGAGQAGRVAGEAAERVGQAAAAAQADPPRVTATWHDDPAVLRARRDALRRARWERRGQRRRAQAAVWRTWSRSTWLERRQALRRGNANANANANA
AK018_02231975pafC_2COG2378Protein PafCGTGGCTGAACGCGCCGACGACCGCCTGGTCCGCCTGCTCGGCATCGTCGCCTACCTCGACGGCGCCGGACCCGTCGACGTCGAGGAGCTCGCCCACCGGTTCGGCGTGACCCCCGCCCGGCTGCGCGAGGACATCGACGCCCTGTGGGTCTCCGGCACCCCGGGCTACATGCCCGACGACCTGATCGACTTCGACGCCTTCTCCCTCGAGGAGGGCCTGGTCAGCCTGACCCAGTCCCGCGGCCTGACGCGCCCGCTGCGGCTGGGCACCCGCGAGGCCGTCGCCCTGGTCGCCGCGCTGCGCGCCATGAGCACCACCCCGGCGGTGCAGGCCGACCCGGGGCGCGCCGCCGTGGTCGCCGCCGCGCTGGACAAGCTCACCGCCGCCACCGGGGAGGCCGCGAGCGCCGTGGACGTGCGGCTGGGCGGTCCGGAGGACGTCGCGACCCTGGAGGTGCTGTCGCGGGCGCTGGCGACGGGCCGGCGCGTGCGACTGCGGTACGTCGACGCCGCGGACGTGACCAGCGAGCGCGAGGTGGACCCGTGGCGGCTGCTGACGCAGTCGGAGGCGACGTACCTGGTGGGCTGGTGCCACCGTGCGGGCGGACGGCGCACCTTCCGGGTGGACCGGGTGCTGTCGGCCGAGCCGACCGACGTGCCGGTCTCGGCGGTGCCCGTCGACGCGGAGGTGGACGTGGCCGCCCAGGTGGTCGCCGCCGCCGCGGGCCCCGTGGACGAGGTGCGGGTGCGGTGGGCGTCGGCGGCACGCTGGGTGGCCGAGGAGGTGCCGGTCGAGGAGGTCACGGACCTGCCCGACGGGTCGTTCGAGGTGCGGCTGCGGGTGACGAACCCGGCGTGGCTGCGCCGGCTGCTGCTGACGCACGCGGTGGACGTGCTGGCGGTGGACCCGCCGCAGGTGGCCGCGGAGGTGGCCGCGGCGGCGCGCGCGGCGCTGGCCGGCTACGGGCGGGACTAGMAERADDRLVRLLGIVAYLDGAGPVDVEELAHRFGVTPARLREDIDALWVSGTPGYMPDDLIDFDAFSLEEGLVSLTQSRGLTRPLRLGTREAVALVAALRAMSTTPAVQADPGRAAVVAAALDKLTAATGEAASAVDVRLGGPEDVATLEVLSRALATGRRVRLRYVDAADVTSEREVDPWRLLTQSEATYLVGWCHRAGGRRTFRVDRVLSAEPTDVPVSAVPVDAEVDVAAQVVAAAAGPVDEVRVRWASAARWVAEEVPVEEVTDLPDGSFEVRLRVTNPAWLRRLLLTHAVDVLAVDPPQVAAEVAAAARAALAGYGRDNANANANANA
AK018_022321068pafB_2COG2378Protein PafBATGGCTGGTGAGAACGCGGCGGGCGGAACGCCGACACGTCCGGACGAGCGGCTGCTGAACCTCGTCATCGCGCTGGTGAACACCTCGGCGGCGATGACCAAGCAGCAGATCCGTGCCGGCGTGCACGGCTACGACGGCGCGTCCTCGACCGAGGCGTTCGAGCGGATGTTCGAGCGCGACAAGGACACGTTGCGCGCGCTGGGCGTGCCGATCGTCACCGTGGAGGGCACCGGGCACAGCGACGAGGTCGGCTACCGCATCGACAACGAGGCCTACGCCCTGGGCACCGTCGACCTCACCCCCGCCGAGCTCGGGGCGGTCGCCCTGGCGGCCCAGCTGTGGTCGGACAAGACGCTGCGCACCGACATGTCCCGGGCGATGACCAAGCTCGCGGCCGCCGGGGCCGGCGACGCCGTCGGCGACGCGGTCGCCGGGCTGACCCCGCGGGTGCGGGCCGCGGGCGACGCCTACGGCCCGCTGCTGGAGGCGATCTCCGAGCGCCGGGTGGTCACGTTCCGCTACCGGGCGGCCTCGACCGGCGAGGTGCGCACCCGGCACGTGGAGCCGTGGCGCATCGCCGCGCGCGGCGGCGGCTGGTACGTCGTCGGCCACGACCGCGACCGCGGGGCCGAACGCGTCTTCCGCCTCTCGCGCATCGAGGGCCGCGTCCGCCTCGGCGCGACGCCGCACGCCTACGAGCTGCCCGACCGCGTCGACGTCGACGCCGCCCTGGGCGCCCGCGTGCGTCACGACAGCACCGCCCGGCTCGCCGTCGTGCCCGAACGGGCCACCGCGCTGCGCGCCCGGGCGCTGGCCACCCCCGGCGGGGACAGCACCTCCGAGGTCCCGGCACCACCACCGGGCCGCGACCTGGTCACCGTGCCCTACGGCAGCCTGACCGCGTTCGCCGACGAGGTCGCCGGCTACGGCGCCGCCGTCGTCGTGCTCGAACCCGCCGCGCTGCGTGCCGAGGTGCTGCGCCGGCTGCGCGCGGCGGCCGCCCTGTCCGCCGACACCGACGGTGCCGCAGCTGCCGCCGACCCCGACGAGGAGGCCCGCCGTGGCTGAMAGENAAGGTPTRPDERLLNLVIALVNTSAAMTKQQIRAGVHGYDGASSTEAFERMFERDKDTLRALGVPIVTVEGTGHSDEVGYRIDNEAYALGTVDLTPAELGAVALAAQLWSDKTLRTDMSRAMTKLAAAGAGDAVGDAVAGLTPRVRAAGDAYGPLLEAISERRVVTFRYRAASTGEVRTRHVEPWRIAARGGGWYVVGHDRDRGAERVFRLSRIEGRVRLGATPHAYELPDRVDVDAALGARVRHDSTARLAVVPERATALRARALATPGGDSTSEVPAPPPGRDLVTVPYGSLTAFADEVAGYGAAVVVLEPAALRAEVLRRLRAAAALSADTDGAAAAADPDEEARRGNANANANANA
AK018_022331155hypothetical proteinGTGACCTGGCGCACCGGCGCCGTGACCGCCGCCGGCCGGTCGTGGCGCGGCGCCACCGAGCTGCGGGTGCGGCTGGACACCCCGCTGCCCGCCGCGCCGGACGGGACGGCCCCGCCTGCCGAGGTCCGGGCGCTGGCCTACACCGCGCTGGTCGGGACGCCCGCCGTCGGCGACCGCGTCGCGCTGAACGTCTCCGCCCTCGCCCGCGGCCTGGGCACCGGCGGCTACGCCCTGGTGGTCGCCCCCGCGGATCCGACGGCGCTGCCGCCCGACCCCGCCCACGGCCCCGGCCACCTGGTCAAGGCCCGCTACACCCCGCTGCAGGCCCTCGTCCTCGGGGTCGACGAGCAGGAGTCGCCCCACCACGACGCGCTGCGCGAGGCCGACGACCTGCAGGGCATGCCCGTCGTCGTCGCCGACCTGCACTCGGCCCTGCCCGCGATCGTGGCCGGCGCCCGGCACGCCGCCGCGCAGGCCGGCCGGCCCGCCCCCCGCGTCGCCTACGTCATGACCGACGGCGGCGCCCTGCCGGCCGCGTTCTCCCGCGCCGTGGCCGCGCTGCGCCACGCCGACTGGCTCACCGCCACCATCACCGTCGGGCAGGCGTTCGGCGGCGACCACGAGGCCGTCACCGTGCACACCGGGCTGCTGGCCGCCCGCCACGTCGTCGCCGCCGACCTCGCCGTCGTCGCCCAGGGGCCCGGCAACCTCGGCACCGGCACCCGTTGGGGGTTCTCCGGGGTGGCCGCCGGCGACGCCGTCAACGCCGCCGCCACGCTCGGCGGACGCCCCGTCGCCTCCCTGCGCGTCTCCGGCGCCGACCCGCGCGACCGCCACCGCGGCGTCTCCCACCACTCCCTGACCGCCTACGGACGCGTCGCCCTCGCCCCCGCCGACGTCGTCGTGCCCCACCCCGACGACGCCCTGCAGGACAGACCCGCCTGGGGCGCCGACCTCACCCGCCGCGTCCACGACCAGGCCGCCGGACTCGCCGACCGGCACCGCCTCGTCGACGTCCCCGTCGGCACCGACCTGCTCGAGACCCTCGAGCACACCCCCGCGCGCCTGGCCACCATGGGCCGCGGGCTGCACGACGACCCCGCCGCCTTCGTCGCCGTCGCCGCCGCCGGCCGGCACGCCCAGCAGACCGCATGAMTWRTGAVTAAGRSWRGATELRVRLDTPLPAAPDGTAPPAEVRALAYTALVGTPAVGDRVALNVSALARGLGTGGYALVVAPADPTALPPDPAHGPGHLVKARYTPLQALVLGVDEQESPHHDALREADDLQGMPVVVADLHSALPAIVAGARHAAAQAGRPAPRVAYVMTDGGALPAAFSRAVAALRHADWLTATITVGQAFGGDHEAVTVHTGLLAARHVVAADLAVVAQGPGNLGTGTRWGFSGVAAGDAVNAAATLGGRPVASLRVSGADPRDRHRGVSHHSLTAYGRVALAPADVVVPHPDDALQDRPAWGADLTRRVHDQAAGLADRHRLVDVPVGTDLLETLEHTPARLATMGRGLHDDPAAFVAVAAAGRHAQQTANANANANANA
AK018_02234717hypothetical proteinATGACCCGCCACTCCCCCGGCACCCGGCCCGTGCTGCTGACGGCGCTCGCCGCCGCGACGCTGCTCGGCGCCGCCGCGGCCACCCCCTGGCACCTCGAGATGCCCGCCTTCGTCGCCGGCCTCGGCGACACGGACCTGCCCGAGGGCCCCACCCCCAGCGTCAGCGCCAGCCCCGCCGCCGACGACCCCCTGCCCGAGGACCCCGGCGACTCGGTGCTCACCGTCCTGCTCCTGCTCGGCGCCGCCGTCGTCGTCCTCCTGCTCGCCCTGGTCGCCCGGCGCGTGCTGACCCTGCTGCGCGACACCCCGCCCGCCCCCGAAGAACCCGACCGGCCCGACGCCGGCACCGCCCTCGCCGGCACCGAGGCCCCCTCCGTGCCGCTGCCCGACCTCGACGACGCCGTCACCCGCGCCCTCGGCCGCCTCGAGGCCGCCCGCACCCCCCACGACGCCGTCATCGCCGCCTGGGTCGCCCTCGAGGACGCCGCCGCCGAGCACGGCGCCGCCCGCGACCCCGCCCAGACCCCCACCGAGTACACCGCGGACCTCCTGGCCCACACCCCCGCACCCGCCGCCGACGTCACCACCCTGCGCCGCCTCTACCAGCAGGCACGCTTCGCCGACCACCCCACCACCGACGCCCAGGTCGCCGACGCCCGCACCGCGCTGACCCGCATCGCCCGGCACCTGCCCGAGACCACGGACCCCGCGCCATGAMTRHSPGTRPVLLTALAAATLLGAAAATPWHLEMPAFVAGLGDTDLPEGPTPSVSASPAADDPLPEDPGDSVLTVLLLLGAAVVVLLLALVARRVLTLLRDTPPAPEEPDRPDAGTALAGTEAPSVPLPDLDDAVTRALGRLEAARTPHDAVIAAWVALEDAAAEHGAARDPAQTPTEYTADLLAHTPAPAADVTTLRRLYQQARFADHPTTDAQVADARTALTRIARHLPETTDPAPNANANANANA
AK018_02235483hypothetical proteinATGACCCGCCGTCTGCTGCCCGGTGCCCTGGCCCTGACCACCGCCCTCCTGCTCACCCTCAGCGGCACCGTCGACCCCGTCCACGCCCTCCTGCTGCCCGCCGGCCTCCTCGCCCTCTGGCACGCCTGGACCTCCCTCGACGACGGCGACCACGCCGAGTGGCCCCAGCCCCCCACCGAGGAACGCCACGGCGCCCGCCGCGACGTCTCCGACCTCGGCTGGGCGGCCTTCACCCGCGACGGCCGCGTCTCGCCCCGCGTCACCCGGCGCGTCCGGGCGCTCGCGGCCCGACGCCTCGCCGCCCACGGCGTCGACCTCACCGACCCCGACCAGCGCCCCGACGCCGCCCGGCTCCTCGGCGCGGACACCCTCGCCGGGCTCACCTCCGACGCCCCGCCCACCGCCCGCACCCTGCACCAGTGGCTCGACGCCCTCGACCGCCTCACCACCGACGCCCCGCCACCCGGAAGGCCCACCCGATGAMTRRLLPGALALTTALLLTLSGTVDPVHALLLPAGLLALWHAWTSLDDGDHAEWPQPPTEERHGARRDVSDLGWAAFTRDGRVSPRVTRRVRALAARRLAAHGVDLTDPDQRPDAARLLGADTLAGLTSDAPPTARTLHQWLDALDRLTTDAPPPGRPTRNANANANANA
AK018_02236987hypothetical proteinATGACCGACACCGCCCCCGCAGCCCTGCCCGTCCCCGACGTCGCCGCCCACGCCCGCGCCGTCCTCGACGAGATCGGCACCGCCGTCGTCGGCATGCGCGAGGCCCTCGAGCTGGCGCTCGCGGCGGTGCTGGCCGGTGGCCACGTGCTGTTCGAGGACGTGCCCGGGCTCGGCAAGACCCTGGCGGCCCGCTCTCTCGCCACGGCGCTCGGCCTCGACTTCGCGCGGCTGCAGTGCACCCCCGACCTGCTGCCCAGCGACGTCACCGGCTCCAGCGTCTTCGACCCCGCCGACCGCGAGTTCGTGTTCCGACCCGGCCCGGTGTTCACGGGGCTGTTCCTCGCCGACGAGATCAACCGCACGGCGCCCAAGACGCAGTCGGCGCTGCTCGAGGCGATGGCGGAACGCCAGGTCTCGGTCGAGGGAGTCACCCGTCCGCTGCCGGCGCCGTTCCACGTGGTCGCGACGTCCAACCCGGTCGAGTACGAGGGCACCTACCCGCTGCCCGAGGCCCAGCTCGACCGCTTCATGGTGCGCCTCGCCGTCGGCTACCCCGGGGCCGCGCAGGAGCGCGACGTCCTGCTGCGTCGCGTGGCGCGCCGTCAGGAGGCGGCCGAGGTCCGTCGCGTGGTGGACGCCGACGTCGTGCGGGCGATGCAGGCCGGCGTCGAGGCCGTGGCGGTCGACGCCGACATCGTCGACTACTGCGTGGCCCTGACCGCGGCGACCCGCGCCCACCCGGCCCTGGAGGTCGGCGCCTCCCCGCGCGGGTCGCAGAACCTGCTGCTCATGGCGCGCGCCGTGGCCGTGCTGGACGGTCGCGACTTCGCGCTGCCCGAGGACGTCAAGCGCGTCGCGGTGCCCGTCCTGGCGCACCGGCTCACGCTGACACCGACCGCCTGGGCCGCCGCCACCCGGCCCGAGGACGTGGTGCACGAGCTGCTCGCGTCCGTTCCGGGCCCGGCGACCGTCGGGGCGACCCGGTGAMTDTAPAALPVPDVAAHARAVLDEIGTAVVGMREALELALAAVLAGGHVLFEDVPGLGKTLAARSLATALGLDFARLQCTPDLLPSDVTGSSVFDPADREFVFRPGPVFTGLFLADEINRTAPKTQSALLEAMAERQVSVEGVTRPLPAPFHVVATSNPVEYEGTYPLPEAQLDRFMVRLAVGYPGAAQERDVLLRRVARRQEAAEVRRVVDADVVRAMQAGVEAVAVDADIVDYCVALTAATRAHPALEVGASPRGSQNLLLMARAVAVLDGRDFALPEDVKRVAVPVLAHRLTLTPTAWAAATRPEDVVHELLASVPGPATVGATRNANANANANA
AK018_022371398hypothetical proteinGTGACGTACGGCACGAGCGTCCGGGACCGTGCGCGCGACCGCGGCCTGCGCGCCGCGGAGGACCCTGTCTGGCGCCGGACCCCGACCGCCGTGCTGAGCACCGTCTCCGGCGTCGTCGTGCTCGCCGTCGGGCTGCTGGCGGGGCGGGCGGACGTCGGTGCCCTCGGCCTGCCCCTCCTGCTGACCGGCGTCTGGACCGGTCGGCCCGGGGCGCTCGGCGGAGCCTCCCCGCAGACGCCCACCCGCGCGACGCTGTCCTCCGAGGACGGCCCCACGGCACCCGGCGAGCTGTCGGGCACCCTCACCCTCGACCCGCCGCCCGGTGCCGAGCTCGTCGTGCTCCGGGCGTCCGCGCCCGGCCACGAGCCGAGCGACCTGGTCGTCGCGGCCGACCACCGCGAGCTCGCGGTGCGGTCGGCCACCGTGCGCACCGGCCCGCAGCCCACGTTCGTCCTGGACGTGCGCGGCTACGGCGCCGCGGGCACGACGGCGGAGGACCCGGTCCGTGCCGTCGGCCCGACCCGGCTCGTGCTGCCCACCGCCGTCCCCCTCGGCCGGGTCCCGCTGCCGCCACGGATGCGGGGGCTGACCGGACCCCACACCTCCCGGCGTCTCGGCGACGGGGACGAGCTGCGCGACGTGCACCTGTTCACCCCGGGCGACCGGCTGCGACGGATCGACTGGCGCACCACCGCGCGGCGCTCGCCGGAGCTGGACGAGCTCTACGTGCGGCGCACCTACGCCACCGCCGAGGCCACCACGATGCTCGTCGTCGACTCCCGGGACGACGTCGGGCCGGACCTGCGGACCTGGCGCGGCCAGGGCGAGCAGCGGGTGGACGAGGCCACGTCGCTGGACCTCGCCCGGCACGCCGCGGCGTCGGTCGCCCACGCCGTCGTCGACGCCGGGGACCGGGTGGGGCTGCAGGACCTGGGCCGCCGCCGCCGTCCGCTCCCGCCCGCGGCCGGTCGCCGCCACCTGCGCCGGATCCTGCACGGGCTGGCGATGAGCAGCCCGTGGGGCAGCCCGACGCGGCGTCTGCGTCCGCCGCAGCTGCCGGCGGACGCCGTCGTGTTCGTGTTCTCCACGGTGCTGGACGACGAGCCGGTCGACCTGGCGCGGACCTGGCGCGAGCAGGGGCACCGGGTCGTCGTCGTCGACACGCTCCCGGCGGTCCGCCCGGTCGTCGAGCCGCACATGCGGATCGCCTGGCGCGTGACCTCGATGGAGCGCGCGGACCGGTTGCGCCGGCTCGAGGCCGAGGGGACACCGGTCGTGCCGTGGCGCGCCTCGGAGCGGGCCGGCGCCGCGGCTCGTCTCGAGGCGCTGGTCAAGGCTTCGGAACGACACCACAGCGCCCCCGTGCGCCGTGCGCCGGTGGCGGGAGGTGCCCGATGAMTYGTSVRDRARDRGLRAAEDPVWRRTPTAVLSTVSGVVVLAVGLLAGRADVGALGLPLLLTGVWTGRPGALGGASPQTPTRATLSSEDGPTAPGELSGTLTLDPPPGAELVVLRASAPGHEPSDLVVAADHRELAVRSATVRTGPQPTFVLDVRGYGAAGTTAEDPVRAVGPTRLVLPTAVPLGRVPLPPRMRGLTGPHTSRRLGDGDELRDVHLFTPGDRLRRIDWRTTARRSPELDELYVRRTYATAEATTMLVVDSRDDVGPDLRTWRGQGEQRVDEATSLDLARHAAASVAHAVVDAGDRVGLQDLGRRRRPLPPAAGRRHLRRILHGLAMSSPWGSPTRRLRPPQLPADAVVFVFSTVLDDEPVDLARTWREQGHRVVVVDTLPAVRPVVEPHMRIAWRVTSMERADRLRRLEAEGTPVVPWRASERAGAAARLEALVKASERHHSAPVRRAPVAGGARNANANANANA
AK018_02238567hypothetical proteinATGACGCTGCGTGCCGAGGTGCAGGACTGGCGCCACCGGCGTCACGACCGGCCGCTGCCGTCGGTCCGTGTGGAGCACGGGCCCACCGTGGCCGGCGCCTGGTTGCGCGTGGCCGCCGGAGCGGTCGCCACCGCGCTGGTGCTGCTGGCGGCGAGCCGTACGCCGCTGCTGCCGGACCTCATCCTCGTCGGTGCGGGGGTGCTCGGGGCCTGGTCGGTCGTCCGGCCCGGGCGGGTGCCGGCACACGTGACCGTCGTGACGTCGGCGCTGGTCCTGCTCGGCGCACGATCGGCACCGTTCGACCCGGCCGTGCTCGGGCTGCTGCCCGTGGCGCTGCTGACCGTGCGGCTGGGCTGGTGGGCCGAGCACGTCGGCTGGAGCGCACGGGTCGAGCTCGCGGCACTGCGCCGCACGGCAGGTCGGGACCTGTCGATCGTCGCCGTGTCGCTGGTGGCGGCGGCCGGTGCCTGGGCCGCCTCGGGCTGGGCGGTCGGCGGTCTGGTGGTCCTGGGGGCCGTCGCCGTCGTCGTGCTGGCGTGGTGGGCTCTGCCACGATGGGCGTCGTGAMTLRAEVQDWRHRRHDRPLPSVRVEHGPTVAGAWLRVAAGAVATALVLLAASRTPLLPDLILVGAGVLGAWSVVRPGRVPAHVTVVTSALVLLGARSAPFDPAVLGLLPVALLTVRLGWWAEHVGWSARVELAALRRTAGRDLSIVAVSLVAAAGAWAASGWAVGGLVVLGAVAVVVLAWWALPRWASNANANANANA
AK018_02239690COG0454Putative acetyltransferase OgpATATGGGCGTCGTGACCAGCATCGAGATCCGTCCCTACCGCCCCGCCGACCGCTCCGCGCTGGCGGAGGTGTGCGTGCGGACGGCAGCCGGCGGGGGCGACGCCCGCGGGGTGTACTCCGACGACTCCCTCATGCCCGACGTCTACGCGCTCCCCTACGTCGAGCACGCACCCGACCTCGCGTTCGTCGTCGTCGACCACGACGCCGTCGCGCCGGGACCCGACCCGCTCGCCGTGGACGACGGCCGGCTCATCGGCTACGTCGTCGCCGCGCCGGACACCGCGGCGTTCGTCGCGTGGTGGCAGCGCGCGTGGACCCCGGGGTTCCTGGCCCGGCACCCCGCTCCCGGGCCCGCGACGACGGCGACACCGGCGTACACCGAGGAGTCCCTCGTCCGTGACGGCGCCGACCCCGGACGGATGGTGCGCGGTCTGGACCAGGACGAGCTCCGTACCCACCCGGCGCACCTGCACATCGACCTCGTCCCCGAGGCGCAGGGCCACGGGCTGGGCCGTCGACTCGTGCAGACGTTGCGCGACGCCCTCGCGGGTCGCGGCATCCCGGGGGTCCACCTCAGCTACGACCCGGCCAACACCGGCGCCCGCGCCTTCTACGACCGGCTGGGGTTCGTCGAGCTGCCGTCCTCGACCGAACATCTCCCGCTGCTGGGGATCACGACCGCCCGGGGCTGAMGVVTSIEIRPYRPADRSALAEVCVRTAAGGGDARGVYSDDSLMPDVYALPYVEHAPDLAFVVVDHDAVAPGPDPLAVDDGRLIGYVVAAPDTAAFVAWWQRAWTPGFLARHPAPGPATTATPAYTEESLVRDGADPGRMVRGLDQDELRTHPAHLHIDLVPEAQGHGLGRRLVQTLRDALAGRGIPGVHLSYDPANTGARAFYDRLGFVELPSSTEHLPLLGITTARGNANANANANA
AK018_02240651hypothetical proteinATGGCATCCGAACGCTCCGGCACCACAGCCCCGACACCCGGCCGCTACCCGCGTCCGCCCGTGACCCTCGAGGAGGCCGAACGGGTCTGGCGCGAGCTCGCGGTCGAGGCGCTGCGCCCGGAGGCCAAGCCCGAGACGGTGCGGCTGGCCGTCGTCGCCGGTCTGACCCGCAGCACCGGGGCGCGGTACGGCGACCTGCTCCGCGTCCGGGCGGAGGACCTGGACCTCGGCCCGGACGAGCTGGCCGGGCGGGGCCGTGTCGGCGGCGCCCGAGCGGCGGGGGAGGGGAGGGTCCTGGTGCGGCACGGCAAGCACCGCACGCCGCGTCGGCACCGTGTGCCGGGGGACGTCGTCGTCGTGCTGCGGCACTGGTCCGTGGTGCGCACCGAGCTGGCGGCCGAGCTCGAGGGGTCGGTGCCGCGGGCGCTGCTGCTCACCGTCCACCACACGCACGACAACGGCACCACGGTCTCGAGCGGTCTGCCGATCACGCGGCAGGGCCTCGTGCTGTCGTGGCGGCGCTTCGTCCTGCGGTCCAACGCTCGCCAGGGGGCCACCCGGCCTCCGCTGCCGACCCGGTTCGAGCAGGTGCGGCGTGCCTGGGTCGAGGCCGGCGTCACCGATCCCGGGGTGGTTCTCCAGGAAAAATAGMASERSGTTAPTPGRYPRPPVTLEEAERVWRELAVEALRPEAKPETVRLAVVAGLTRSTGARYGDLLRVRAEDLDLGPDELAGRGRVGGARAAGEGRVLVRHGKHRTPRRHRVPGDVVVVLRHWSVVRTELAAELEGSVPRALLLTVHHTHDNGTTVSSGLPITRQGLVLSWRRFVLRSNARQGATRPPLPTRFEQVRRAWVEAGVTDPGVVLQEKNANANANANA
AK018_02241666yigZ_2COG1739IMPACT family member YigZGTGCCCCCTCGCCTGCCCCGCACCCTGGCCACCGCCGTCGACCACGAGCTGGTCGTCAAGAAGTCACGGTTCCTGGCCCACCTCGCCCCCGCGACGACGGAGACGGCGGCGGACGCCGTCGTCGCGGCCGTGCGCAAGCAGCACTGGGACGCCCGCCACCACTGCGTGGCGATGGTCCGCGGCACGCACGCCGACGCGCAGCGCTCCTCCGACGACGGCGAGCCCTCCGGCACCGCGGGCGTGCCGATGCTGGAGGTGCTGCGCCAGCAGCACCTCACCGACGTGGTCGCCGTCGTGACGCGCTACTTCGGGGGCGTGCTGCTCGGGGCGGGCGGCCTCGTGCGGGCCTACTCCGCGGCCGTCGCCGGCGCGGTCGAGGAGGCCGCCGCCCGGCACCTGGTCCTCGAGCGCCGCGCCGTGCGCGAGGTCTGGGTGGACGCCCCGCACGCCGACGCGGGCCGCGTCGACCACCTGCTGCGCGACTGGAGCGCGGCGCACGGTGCCGTGGTCGGCGACCCGGAGTACGCCGAGGTCGCTCGTCTCCGGCTGCTGGTCCCGCCCGCCGAGCTCGACCGGCTCGACGCCGACCTCGCCGCCGCCACCGCCGGGCGGCTGGCCGCGCAGGTCGGCGCCGAGCGGATCGTGGACGTGCCGCCGGCGGACTGAMPPRLPRTLATAVDHELVVKKSRFLAHLAPATTETAADAVVAAVRKQHWDARHHCVAMVRGTHADAQRSSDDGEPSGTAGVPMLEVLRQQHLTDVVAVVTRYFGGVLLGAGGLVRAYSAAVAGAVEEAAARHLVLERRAVREVWVDAPHADAGRVDHLLRDWSAAHGAVVGDPEYAEVARLRLLVPPAELDRLDADLAAATAGRLAAQVGAERIVDVPPADNANANANANA
AK018_022421410hypothetical proteinATGAGCGATCGTGGACTCGAGCTGGCACAGGACAAGATGCGCGCCGCGGGCGTGGCGACCGCGGCGATCGACACCTTCACCCGGTTCTACCGGTTGCTGGAGGAGGGGGCGACAGGGCTCGTCCGGGAGGACGACGTCGAACCGCTGACCGGGCTGACGCGGCACGCCGATCTCGACGTCCCGGACGAGGAGTCCGCCGAGGCGCTCGGCCGGACCGCGATCATCAAGCTCAACGGTGGCCTCGGCACCTCGATGGGGATGGACAAGGCCAAGTCGTTGCTCGAGGTCCGGCGCGACGAGGCGGGGGAGTCGCTGAGCTTCCTCGACGTCATCGTCGGCCAGGTGCGCGCCGCCCGGAGGTCGACCGGGGCCAGCCTGCCGCTGGTGCTGATGAACTCCTTCCGCACCCAGGACGACACTCTGGCGGCGCTCGCCCCCTACGGCGACCTGGCCGTCGACGGGCTGCCGCTGGACTTCCTGCAGAACCGTGAGCCGAAGCTGCGCGCCGACACGCTCGAGCCGGTCGAGTGGCCCGCCGACCCCACCCTCGAGTGGTGCCCGCCCGGTCACGGCGACCTGTACCCGGCGCTGCACGCGGGCGGGGTCGTGCACGCGCTGCTCGAGGCGGGCTTCCGCTACGCGTCGGTCTCGAACTCCGACAACCTCGGCGCGACGCCGGACGGCGAGATCGCGGCGTGGTTCGCCCGCAGCGGCGCCCCCTACGCGGCGGAGATGTGCCTGAAGACGCCGGCCGACGTCAAGGGCGGCCAGCTCGTGGTGCGCAAGGCGGACGGGCGGATCATCCAGCGCGAGACCGCGCAGACGCACCCCGACGACATGGACGTCTCCCTGGACCCGACCCGGCACCGGTACTTCCACACGAACAACCTGTGGTTCGACCTGGAGGCGCTGGCGGCCGAGCTCGACCGGACGGGGGGAGTGCTGGAGCTGCCCCTGATCCGCAACTCCAAGACGGTCGACCCGACCGACGGCGACTCGCCCGAGGTGGTCCAGATCGAGTCCGCGATGGGGGCGGCCGTCGCGGTGTTCGACGGGGCCACGGCGATCGAGGTGGGCCGTGAGCGGTTCCTGCCGGTGAAGACGACGAACGACCTGCTGCTGCTCCGCTCGGACGTCTACGAGCTGACCGACGACTTCCGGCTGCGGGCGACCGCGCCGGCACCCCTGGTGCAGCTGTCGAAGACCTACAAGACGATCGGCGCGTTCGACGAGCGCTTCGCCGCCGGTCCGCCGTCGTTGCGCGGGGCCGAGGGGCTGGCCGTGGCCGGCGACTGGACCTTCGGCGCGGACGTCACGGTCGTGGGTGACGCCGTCCTCGACGAGCCCGAGAGCGGGGCCGGCACGGTCCCCGACGGCGCGACCGTCGCCGCGGACGGCGTCCGGGCCTGAMSDRGLELAQDKMRAAGVATAAIDTFTRFYRLLEEGATGLVREDDVEPLTGLTRHADLDVPDEESAEALGRTAIIKLNGGLGTSMGMDKAKSLLEVRRDEAGESLSFLDVIVGQVRAARRSTGASLPLVLMNSFRTQDDTLAALAPYGDLAVDGLPLDFLQNREPKLRADTLEPVEWPADPTLEWCPPGHGDLYPALHAGGVVHALLEAGFRYASVSNSDNLGATPDGEIAAWFARSGAPYAAEMCLKTPADVKGGQLVVRKADGRIIQRETAQTHPDDMDVSLDPTRHRYFHTNNLWFDLEALAAELDRTGGVLELPLIRNSKTVDPTDGDSPEVVQIESAMGAAVAVFDGATAIEVGRERFLPVKTTNDLLLLRSDVYELTDDFRLRATAPAPLVQLSKTYKTIGAFDERFAAGPPSLRGAEGLAVAGDWTFGADVTVVGDAVLDEPESGAGTVPDGATVAADGVRAPGPT0014875_715DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0014875-gtaB|UGP2|galU|galF-K00963NANA
AK018_02243621yciO_2COG0009putative protein YciOATGGCGCGCATCGTCGACATCCATCCCGTGGACCCGCAGCCGCGGCTGGTCCGGCAGGTCGTGGACGCCCTCGACTCCGGTGCCCTGGTCGCCTACCCGACCGACTCGGGCTACGCGCTCGGCTGCCGGGTCGGCCAGCACGACGGCGCCGAGAGGATCCGGCGGATCCGTCGGCTCGACGCCAAGCACCACTTCACGCTCGTGTGCGCCGACTTCGCGCAGATGGGCCAGCTGGTCCGGCTGGACAACGCCGAGTTCCGCGCGATCAAGGCGGCCACTCCGGGGCCGTACACGTTCGTCCTGCCGGCCACGGCGGAGGTGCCCCGGCGGCTGGCCCACCCGAAGAAGAAGACGGTCGGGGTGCGGATCCCGGACTCGCGCCTGGTCCAGGCGATCCTGCGCGAGCTGGGCGAGCCGCTGCTCAGCTCGACGCTGATCCTGCCGGACCAGGACGTGGCGATGACCGAGGGCTGGCAGGTCGCCGAGGAGCTGGACAACGACGTGGACCTGGTGGTCGAGTCCGGCGTAGTGACGGCCGCGCCGACGACGGTCGTGGACTTCTCCGGCCCGACGCCGGAGGTCGTGCGCGAGGGTGCGGGGGACCCCGACCCGTTCCTGTGAMARIVDIHPVDPQPRLVRQVVDALDSGALVAYPTDSGYALGCRVGQHDGAERIRRIRRLDAKHHFTLVCADFAQMGQLVRLDNAEFRAIKAATPGPYTFVLPATAEVPRRLAHPKKKTVGVRIPDSRLVQAILRELGEPLLSSTLILPDQDVAMTEGWQVAEELDNDVDLVVESGVVTAAPTTVVDFSGPTPEVVREGAGDPDPFLNANANANANA
AK018_02244996thadhL-threo-3-hydroxyaspartate ammonia-lyaseATGGCACCGTCACCCCCGACCGTCGACGACGTCACCGCCGCCCGCGACCGCCTCGACGGGCTCGTCGTGCGGACCCCGGCCCGCGCCTACCCCGCGCTCGACCGGCTGGTGCACGCCCGGGGCGCCGTCGGGACCGCCGTCGTGGTCAAGCACGAGAACCTCCAGCACACCGGCGCCTTCAAGGTGCGCGGCGCCCTCAACCTGGTCCGGCGCGGCCGCGACGTCTCCCGCGGGATCGTGGCCTACTCCACCGGCAACCACGCGCAGGCCCTGGCCTACGCGGCCGCCCGCGCCGGCCTGCCGTGCACGATCGTCATGCCGCGGGACCCCAACCCGGTCAAGGAACGAGCCGTCCGCGACCACGGCGCCGAGGTCGTCCTGCACGGCACGGACCTCGCCGCGGCCGCCACCCACGCCCACGAGATCGCCCGGCGCCGCGGCGCCCGGCTGGTCAGCGCCGGCGACGAGCCCGAGCTCGTCGCGGGAGTCGCCACCGCCACCCTGGAGCTGCTCGAGCAGGAACCGCACTTGGACACCCTCGTGGTCCCCGTCGGCGGCGGCTCCGGCGCGGCCGCCGCGTGCCTGGTCACGGCCGCGCTCGCACCCCACGTCGAGGTCGTCGGCGTCCAGTCCGCCGCCGCGCCCGCCGCGCACGACTCCTGGCGCGCCGGGGCGCTGCGCACCCGGCCCAGCCGCACCCGCGCCGAAGGGCTCGCCGTCGGCTGCGGCTTCGCCCTGACCCAGCAGGTGCTCCGCGACCGCCTGCGCGACTTCCTGCTGGTCGACGACGACGCCATCACCCGCGCCCAGCACGCCTACCTCACCGCGGCACGGACCGTCGCCGAGGGCGCCGGTGCCGCGGCGCTCGCGGCCGTCATGTCGCACCCGGAGCGTTTCGCCGGGCGCCGCGTGGCGGTCGTGTGCAGCGGCGGCAACGCGCGCGAGGAGGAGCTGCGGCGCGCGTTGACGTGCGACGCGGCGGGGTCGGCGGCGTAGMAPSPPTVDDVTAARDRLDGLVVRTPARAYPALDRLVHARGAVGTAVVVKHENLQHTGAFKVRGALNLVRRGRDVSRGIVAYSTGNHAQALAYAAARAGLPCTIVMPRDPNPVKERAVRDHGAEVVLHGTDLAAAATHAHEIARRRGARLVSAGDEPELVAGVATATLELLEQEPHLDTLVVPVGGGSGAAAACLVTAALAPHVEVVGVQSAAAPAAHDSWRAGALRTRPSRTRAEGLAVGCGFALTQQVLRDRLRDFLLVDDDAITRAQHAYLTAARTVAEGAGAAALAAVMSHPERFAGRRVAVVCSGGNAREEELRRALTCDAAGSAAPGPT0001960_5528DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
AK018_022451014hypothetical proteinATGACGGACGTCCCTCCTCCCCCGGCACAGCTCGACCTGACGCGGCTGCGGGTGCTGGCGGCCGTGGCGCGCACCGGGTCGGTGACGGCGGCCGCCCGCGACCTGCACTACGCGCAGCCCTCGGTCAGCCACCATCTGGCCCGCCTCGAGGCGGAGGCCGGCCTGCCGCTGCTGGAGCGCGTGGGCCGCGGTGTCCGGCTGACCGAGGCCGGCCAGCTGCTGGCCGACCGGGCCGAGGAGATCATCGCCCGGGTCGAGGGGGCGCAGCGCGAGCTGGACGCCCTGGCCGGGCTGCGGGCGGGCCGGGCGCGGTTGGCCGCCTTCCCCTCGGCGCTCGCCACGCTCGTGCCCGAGGCGGTGCACCGGCTGCGTGCGGCCCACCCCGGGCTGGGGGTGAGTCTGGTCGAGGCCGAGCCGCCGGAGGCCATCGCCGCGCTGCGTGCGGGCGAGGTGGACGTGGCGCTGGTGTTCGACCACGTCGACGTCTCCGACCCGCGTGCGGTGCGCGACCCGTCGCCGTTCACCGCCACCGCCGTGCTCGACGACGAGGTGCACCTGGTCACGTGCCCGGACCGGCCCGCGGCTGCCTCCGGGGCCCCCGAGACGTCCGACGCTACCGGGGATGCGGAGACGCCCGAGACGCCCGGGGCCTCCCTCGGGGCGGGGTCGACGCCGGTGCTGCGCCGGTACGCCGACGCGCCCTGGATCGCGGGCTGCGAGCGGTGCCGGGCCGACCTGGTCGCCCGCTGCGCGGTGGCGGGCTACGCCCCGCGCATCGCCTTCGAGACCGACGACTACGTCGCGGTCCAGGCGCTGGTCGCGGCCGGTGCCGGGGTCAGCCTGCTGCCCGGTCTGGCGCTGCGGGCGCACCGCCACCCCGACGTGGCGACGTCGGTGCTGCCCGGCGCACGCCGGGCCGTGCGGGCCCTGACCGTCGGCGAGCCCTCGCCCCCCGTGCGGGCGCTGGTGGACCAGCTCGTCGCGATCGGCGCCGCCGACGCCGCGCTGGTCTGAMTDVPPPPAQLDLTRLRVLAAVARTGSVTAAARDLHYAQPSVSHHLARLEAEAGLPLLERVGRGVRLTEAGQLLADRAEEIIARVEGAQRELDALAGLRAGRARLAAFPSALATLVPEAVHRLRAAHPGLGVSLVEAEPPEAIAALRAGEVDVALVFDHVDVSDPRAVRDPSPFTATAVLDDEVHLVTCPDRPAAASGAPETSDATGDAETPETPGASLGAGSTPVLRRYADAPWIAGCERCRADLVARCAVAGYAPRIAFETDDYVAVQALVAAGAGVSLLPGLALRAHRHPDVATSVLPGARRAVRALTVGEPSPPVRALVDQLVAIGAADAALVNANANANANA
AK018_022461827COG1132Fatty acid ABC transporter ATP-binding/permease proteinATGAGCACGCCGGCCGCACGGCTGCGCCCCACCGACGCGCGCGCCGACGACGCCACCGACCTGGACCGCGGGACCTCGCGCGCCGTGCGCCGTCGGTCCCTGTCCCTGCTCGGCGGGCTGCTGCGCCCCCGGGCCGGTGCGCTCGCCGTGGCCGGTGCCCTGGTCGTGGTCAGCACGGCCGCCCAGGTGGCCGGACCGCTGCTCGTCCAGGCCGCGATCGACACCGCGCTGCCCGCCCTGCGCGACGGGGACCCGGGCCGGCTCGTCGCCGTCGGCAGCGCGTACGTGCTCGCGGCCGTCCTCGGCGGCCTGTGCGCCGGCGCCTACGTGCGCGCCGCCGCCCGGGTGGCCCAGAGCGTCCTGCTCGAGCTGCGCCGCCGCGTCTTCCGGCACACCCAGCGACTGTCCCTGGAGTTCCACGAGTCCTACACCTCCGGGCGGGTGATCAGCCGTCAGACCTCCGACCTGGAGGCGCTGCGCGAGCTGTTCGACGGCGGTCTGACCGGTGTCGTGTCGTCGCTGATGCTCATGGTGTTCACGGCCGGGGCGCTGTTCTACGTCGACTGGCGCTCCGGGCTCGTGCTGCTGGTCGCCCTGCTGCCCGCGTGGTGGCTCACCCGGTGGTTCCAGCGGCGCTCGCAGGTGTCCTACCGCGAGCAGCGCACCGCCTCGGCGCGCCTGATCGTGAAGTTCGTCGAGACCATGACCGGCATGCGTGCCGTCCAGGCGTTCCGCCGCGAGGCCACCGACGACGCCGAGTACGGCCGCCTCGGCGAGCAGTACCGGGACGCGAACCTGCGCATCTTCGGGGTCAACGGCCGCTACCAGCCCGGACTGGTGCTCATCGGCAACCTGACCGTCACCGCGGCGCTGGCCTACGGCGGCTGGCGCGTCGTGGACGGGACCCTCGAGGTCGGGGCCCTGGTGGCCGTGCTGCTGTACGTCAAGCGGTTCTTCCAGCCGATCCAGCAGCTCGGGATGTTCTACAACGCCCTGCAGTCGGCCGTCGCCGCGCTGGAGAAGGTCTCGGGGCTGCTCGCCGAGGAACCGACCGTCGTCGAGCCGGAGGACCCCACGCCGCTGCCCGCGCCCCGCGGCGAGGTCCGCCTCGACGAGGTCACCTTCGGCTACGGCGACGGCCCGGTGGTGCTGCCCGGGCTGGACCTGACGATCCCGGCCGGCCAGACCGTCGCCCTGGTCGGGTCGACCGGGGCGGGCAAGTCCACGCTGGCCAAGCTGGTCACCCGGTTCTACGACGCCAGCGCCGGGCGGGTGCTGCTGGACGGGGTCGACGTGCGCGACGTCTCCGGCGAGGACCTGCGCCGTGCGGTGGTGATGGTGACCCAGGAGGCGTACCTGTTCAGCGGGTCGGTGCGGGAGAACATCGCGCTCGGCCGTCCGGACGCCACCGACGAGGAGATCGAGGCGGCCGCCCGTGCGGTCGGCGTGCACGAATTCGTCCAGAGCCTGCCCGAGGGCTACGACACGGACGTCAACAAGCGCGGCGGCCGGGTCTCGGCGGGGCAGCGCCAGCTTCTGAGCTTCGCCCGCGCCTTCCTCGCCGACCCGGCCGTGCTCGTGCTCGACGAGGCGACGAGCTCGCTGGACGTCCCGGGCGAGCGGCTGGTGCAGCGCGGTCTGCAGACGCTGCTGGCCGACCGCACCGCGATCATCATCGCCCACCGCCTGTCGACGGTGGACATCGCCGACCGCGTCCTGGTGCTCGAGCACGGCCGCGTCCTGGAGGACGGCTCCCCGGACGAGCTCGTCGCCGCGGGCGGGCGGTACGCCGCGATGCAGCGCGCGTGGCAGGACTCGGTGGCCTGAMSTPAARLRPTDARADDATDLDRGTSRAVRRRSLSLLGGLLRPRAGALAVAGALVVVSTAAQVAGPLLVQAAIDTALPALRDGDPGRLVAVGSAYVLAAVLGGLCAGAYVRAAARVAQSVLLELRRRVFRHTQRLSLEFHESYTSGRVISRQTSDLEALRELFDGGLTGVVSSLMLMVFTAGALFYVDWRSGLVLLVALLPAWWLTRWFQRRSQVSYREQRTASARLIVKFVETMTGMRAVQAFRREATDDAEYGRLGEQYRDANLRIFGVNGRYQPGLVLIGNLTVTAALAYGGWRVVDGTLEVGALVAVLLYVKRFFQPIQQLGMFYNALQSAVAALEKVSGLLAEEPTVVEPEDPTPLPAPRGEVRLDEVTFGYGDGPVVLPGLDLTIPAGQTVALVGSTGAGKSTLAKLVTRFYDASAGRVLLDGVDVRDVSGEDLRRAVVMVTQEAYLFSGSVRENIALGRPDATDEEIEAAARAVGVHEFVQSLPEGYDTDVNKRGGRVSAGQRQLLSFARAFLADPAVLVLDEATSSLDVPGERLVQRGLQTLLADRTAIIIAHRLSTVDIADRVLVLEHGRVLEDGSPDELVAAGGRYAAMQRAWQDSVAPGPT0029045_865DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029045-mdlB|smdB-K18890NANA
AK018_022471908COG1132Putative multidrug export ATP-binding/permease proteinATGCCCGGGGCAACGATGTCGGTGCCGGGTGCGAGAATCGTTTCGATGCCCTCCTCCGCGCCTCCCGAACGACCCGACGGACCGCCGGCCCCGGCCGGGTCGCACCTGAGCACCCCGGCCTCGTTGCGGCGGCTGCTGCCGTACGTGCGGCCCGCCCTGCCCCGGCTGGTCGCCGGGCTCGTCGCCGCGCTGGGGGCCAGCCTGGCCGCGCTGGCGATCCCGCGCGTTCTCCAGGATCTGGTCGAGGGACCGCTGGCCTCCGGGGCGGCAGCCGGCGACGTCGGCGCACTGGTGTGGCCCACCCTGGCCGTGCTCGCCCTCGGCCTGCTCGAGGCCGGGCTGATCCTGCTGCGCCGCAACCTCGTGATGTACCCCGGCACCCGCGTCGAGGCGGCGCTGCGCACCACCCTGTTCCGCCACCTGCTGCAGCTGCCTGCCTCGTTCCACGACCGCTGGGCCGGCGGCCAGCTCCTCAGCCGCTCGATGACCGACCTCGGCCTGCTGCGCCGCTGGCTCGTCTTCGGGCTGCTGCAGCTCGTGGTCAGCACCATCACCATCGTCGTCGGCGTCGGCGTGCTCGTCTCGACCGCGGGGTGGCTGGGCCTCGTCTACCTCGCCGGCGCCGTGCCCGTCACGGTCGTCGCGTACCGGTTCTCGCGCCGCTACCGCGTCATCGCCCGACTGTCCCAGGACCAGTCCGGGGACCTGGCCACCACCGTCGAGGAGTCCGTGCACGGCATCCGCGTGCTCAAGGCCTTCGGCCGCGGCGGAGACGCCCTGGCCTCGTTCACCGGTCAGGCCGAACGGCTGCGACGCACCGAGATCCGCAAGGCCGGCAACCAGGCCACCGTCACCACCGCCCTGCAGCTCATCCCCGAGCTGACGCTCGCGGTGTGCCTCGTCCTGGGCGTCTGGCTGACCGCCGACGGGCAGATCAGCGTCGGGGCGCTGGCCGCGTTCTTCCTCACGGCCGCCGTCATCAACGGCCCCGTGGTCGACCTCGGCATGACGCTGTCGATGACACTGAACGCCCGCACCGCCGTCGACCGCTTCTTCGAGGTCGTCGAGACGCCCAACCCGCTGACCGACCCGGCCGAGCCGCGCGAGCTCGGCACGGTCCGCGGCGACGTGACCCTGCGCGACGTGGTGTTCCGCTACGAGGACGACGAGCCGCCCGTCCTGGACGGGGTCGACCTCGACCTGCCCGCCGGGACCACCACCGCCCTGGTCGGCCTGACCGGCTCGGGCAAGTCGACCCTGGCGATGCTGCTGCCCCGCATCCACGACGTCACCGGCGGCTCCGTCCGCCTCGACGGCGTCGACGTGCGCGACCTGCGCCGCCACGACCTGCGCCGCGCGGTCGCCGTCGCCTTCGAGGACCCGACGCTGTTCTCCACCACCGTGCGCGAGAACGTCCTGCTCGGCGTCGACGACACGCTGCCCGCCACCGAGCGCGACCGCCTGCTCGCCGACGCGCTCGAGGTCGCCCGGGCAGGGTTCGTCCACGACCTGCCCCACGGTGTCGACACGCGCATCGGCGAGGAGGGGCTGTCCCTGTCCGGCGGGCAGCGCCAGCGCCTCGCCCTGGCGCGCGCCATCGCCGCGCGGCCCCGCGTCCTCGTGCTCGACGACCCGCTGTCCGCCCTCGACGTGAGCACCGAGGAGGCCGTCACGCGCGGGCTGCGCGAGGTGCTGACCGGCACCACCAGCCTGGTCATCGCCCACCGGCCCTCCACGGTGGCGCTCGCCGACCGGGTCGCCGTGCTGGCCGACGGGCGCGTCACCGCCGTCGGCACCCACCGCGAGCTGCTGGCCCGCGACGCCCACTACCGGTACGTCGTCGCCTCCCTGGAGGAGGACTGGGCGGCCCACGAGCACGACGCCGACGTCACCGAGGAGGTCCGATGAMPGATMSVPGARIVSMPSSAPPERPDGPPAPAGSHLSTPASLRRLLPYVRPALPRLVAGLVAALGASLAALAIPRVLQDLVEGPLASGAAAGDVGALVWPTLAVLALGLLEAGLILLRRNLVMYPGTRVEAALRTTLFRHLLQLPASFHDRWAGGQLLSRSMTDLGLLRRWLVFGLLQLVVSTITIVVGVGVLVSTAGWLGLVYLAGAVPVTVVAYRFSRRYRVIARLSQDQSGDLATTVEESVHGIRVLKAFGRGGDALASFTGQAERLRRTEIRKAGNQATVTTALQLIPELTLAVCLVLGVWLTADGQISVGALAAFFLTAAVINGPVVDLGMTLSMTLNARTAVDRFFEVVETPNPLTDPAEPRELGTVRGDVTLRDVVFRYEDDEPPVLDGVDLDLPAGTTTALVGLTGSGKSTLAMLLPRIHDVTGGSVRLDGVDVRDLRRHDLRRAVAVAFEDPTLFSTTVRENVLLGVDDTLPATERDRLLADALEVARAGFVHDLPHGVDTRIGEEGLSLSGGQRQRLALARAIAARPRVLVLDDPLSALDVSTEEAVTRGLREVLTGTTSLVIAHRPSTVALADRVAVLADGRVTAVGTHRELLARDAHYRYVVASLEEDWAAHEHDADVTEEVRNANANANANA
AK018_02248933thiD_2COG0351Hydroxymethylpyrimidine/phosphomethylpyrimidine kinaseATGACGACCCGCGCCGCCGCCCTGCCGCCGACCGCGCCGCCGAGGAGCCCGGGTGCCCCGCCCCGCGTGCTGGCGGTGGCGGGCTCGGACCCGTCGGGAGGTGCCGGCGTGCAGGCGGACCTGAAGTCGATCGCCGCCGCCGACGGTTACGGCATGGCCGCGCTGACGGCGCTGACCGCGCAGAACACCTGCGGTGTGCGCGACGTCCACGTCCCGCCGCCGGAGTTCCTGGCCGCGCAGCTCGAGGCGTTGTCGGACGACGTGGCGATCGACGCCGTGAAGATCGGCATGCTGGCCGGCGCCGAGGTGGCCGCGGTGCTGGACACCTGGCTGCGACGGATCCCGGCCACCGTGCCCGTGGTCCTCGACCCGGTGATGATCGCGACCTCGGGTGACCGGCTGCTGGACGCGGCCGGCGAGACGGCCGTCCGCGGCCTGCTGTCCCGCTGCGACGTCGTCACCCCCAACCTGCCCGAGCTGGCCGTCCTCCTCGGCGAGCCACCGGCCCGGGACTGGCCGGCCGCCGTCGACCAAGGCGCGCGGCTGGCCGCTCGCGCCCGGCTGCACGTGGTCGTCAAGGGCGGGCACCTGCCCGGTGACCGTGTCCCGGACGCGCTGGTCGGCCCGGACGGCACCGTGCGCGAGGTCGAGGGCCGCCGGGTCGACACGCCGCACACCCACGGCACCGGCTGCTCGCTGTCGGCCGGGCTGGCCACGCGCTTCGTGCGCGAGGGCGACTGGTACCGGGCCCTGGCGGGCACGAAGGCCTGGCTCACGGCGGCGCTGGCCGACGGGTCCGACCTCGGCGTCGGGCAGGGCCACGGACCGGTCGACCACTTCGCCGCCGTGCGCACCGCGCTCCACGACGGCGGCACGGCGCCGGTCGGCGGCGGGTGGCAGCCCGCGGGAGCCCGGGCCGGCGTACCCGGCTGAMTTRAAALPPTAPPRSPGAPPRVLAVAGSDPSGGAGVQADLKSIAAADGYGMAALTALTAQNTCGVRDVHVPPPEFLAAQLEALSDDVAIDAVKIGMLAGAEVAAVLDTWLRRIPATVPVVLDPVMIATSGDRLLDAAGETAVRGLLSRCDVVTPNLPELAVLLGEPPARDWPAAVDQGARLAARARLHVVVKGGHLPGDRVPDALVGPDGTVREVEGRRVDTPHTHGTGCSLSAGLATRFVREGDWYRALAGTKAWLTAALADGSDLGVGQGHGPVDHFAAVRTALHDGGTAPVGGGWQPAGARAGVPGPGPT0008915_322DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008915-thiD-K00941NANA
AK018_022501005COG1253putative proteinATGACGAACCCGTGGATCGTGGCCGCCGCCACCACCCTGCTGCTCGTGGCGAGCGGATTCTTCGTGATCATCGAGTTCGCGCTGCTGGGCGCGCGCCGGCACCGCCTGGAGGAGATGGCCCCAACGCACGGGGCCGCCCGCTCCGCGCTGCGCGCCACCAACGAGCTGACCGTCATGCTCGCCGGGGCGCAGCTCGGCATCACCGCCTGCACCTTCGCGCTCGGTGCGGTGACCAAACCTGCCGTGGACGGGTGGCTGGGCCCGTGGATCGAGTCCGTCGGTGCGCCGTACTGGCTCGCCGACTCGGCCGCGTTCGTCCTGTCGCTGCTGCTGGTGACCTTCCTGCACCTGGTGGTGGGCGAGATGGCGCCGAAGTCGTGGGCCATCACCCACCCCGAACGGTCCGCCATGCTCATCGCGCCGCCGGCCCGCGCCTTCATCTGGGTGTTCCGGCCGCTGCTGGGCTGGATCAACCGGATGGCGAACAAGCTGGTCGCGGCGGTGGGCGTCGAACCCGTCGACCGTGCCGCCGTCGGCGGGCAGGACGCCGAGACGATCCGCCACCTGGTGGACCACTCGGCGCGCAAGGGTTCGCTCGACGACGCCCTCAGCGCCCCGCTGGCCGGCGCCCTCGACCTGACCACCCGCGAGGTGTCCTCCTTCGTCCGGGCCGACGCCGCACCGACCGCCGTCGCCGCGGACGCAGACGTCGCCGCCGTGCAGGAGGCCGCACGGCGCAGCGGGCACCTGCGCATCCTGGTCGACACCGGTGAGGGCCCGCCCGGCATCGTGCACGTGCGCGACACGCTGCTCGAACCCGCCGAGCGCCCCGTCCGTGAGCTCGCCCGTCCGGCGTACGTCGTGCGGCCCCAGATGCCGGTCCACGAGGCGCTGTCCGGCATGCGGCGCGCCAGCGTGCAGCTGGCCGTCGTGATGGACGGCCACCTGCTGGTGGGCGTCGTCTCGCTCGAGGACGCGCTCGGCCAGGTCGTCCCGCGGTCCTGAMTNPWIVAAATTLLLVASGFFVIIEFALLGARRHRLEEMAPTHGAARSALRATNELTVMLAGAQLGITACTFALGAVTKPAVDGWLGPWIESVGAPYWLADSAAFVLSLLLVTFLHLVVGEMAPKSWAITHPERSAMLIAPPARAFIWVFRPLLGWINRMANKLVAAVGVEPVDRAAVGGQDAETIRHLVDHSARKGSLDDALSAPLAGALDLTTREVSSFVRADAAPTAVAADADVAAVQEAARRSGHLRILVDTGEGPPGIVHVRDTLLEPAERPVRELARPAYVVRPQMPVHEALSGMRRASVQLAVVMDGHLLVGVVSLEDALGQVVPRSNANANANANA
AK018_022511443hypothetical proteinGTGCTGATCACCGTCGCCACCCTGCTGCTCGGGATCGTGGTCATCGCGGTCGTCATCGCCTTCAACGGCTACTTCGTCGCCCAGGAGTTCGCCTACATGTCGGTGGACCGCTCCCGGCTGGGGGCGCAGGCCGAGGCGGGCGACAAGGCGGCTGCCAACGCCCTGGCGATCACCCGACGGACCTCCTTCATGCTCTCGGGCGCCCAGCTCGGCATCACCGTGACCGGTCTGCTCATCGGTTACGTCGCCGAGCCCCTCGTCGGTGAGTCCCTCGGCGAGATCTTCGGCGTCGTCGGCGTCCCGGCCGGGGTCAGCGTGGCCGTCGGCACCGTCGCGGCGCTCGCGATCTCCACCGTGGCGCAGATGATCTTCGGCGAGCTGTTCCCCAAGAACCTGGCCATCGCGGCGCCGGACACGCTGGCGCGCCGGCTCGCCCGCTCCACCCGGATCTACCTGGCCGCCTTCGGCTGGCTGATCACGGTCTTCGACCACGCCGCCAACGGTCTGCTGCGGCTGGTGCGCATCGAGCCCGTCGAGGACGTCGACTCCAGCGCCACCGCGCGCGACCTGGAGCACATCGTGGCCGACTCGCGCCAGAGCGGTGACCTGCCCGACGAGCTGTCCATGATGCTGGACCGGATCCTCGACTTCCCCCAGCGCGACGTCGAGCACGCCATGGTCCCGCGCGCCCGCGTCGACACGCTGGCCCCGGACGCCACCGTCGGCGAGGCACGCGCCGCCATGGCCGCCGCGCACACCCGGTACCCGGTGATCTCCGACGAGGACGAGCCGGTGGGGGTGGTGCACCTGCTCGACGTGCTGGCCGTCGGCGAGGACCAGGAGGCACCGGTCAGCGACATCATGCGTCCGGCCACGGTCGTGCCGACCCTGATGCTGCTGCCCGACGCGCTGGCGGAGCTCACGGCGCGCCGCGACGAGCTGGCCTGCGTCATCGACGAGTACGGCGGCTTCGCCGGCATCCTCACCGCCGAGGACCTGGCCGAGGAGGTGGCCGGGGAGATCACCGACGAGCACGACGTCGAGCAGGCCGAGATCGTCGAGCCCGAGGGCGAGACTGCCTGGCGCATGGGTGGTGACGTCCACCTGGACGAGGCGGAGCGCGTCTTCGAGCACGAGCTGCCCCGAGGGGACTACGAGACGATGTCCGGCCTGGTGATCGCCGAGCACGGCCACCTGCCGCAGGTGGGGGAGACCGTGACGGTCGAGCTGGCCACCGAACCGGTCGAGCTCGCCCTGCACGAGCAGGTGCAGCGCCGGCTGACCATCGAGGTGCTCACCGTGGACCGGTACGTCCCGTCCCGGCTCCGGGTGACGCTGCACGAGATCGAGTCGTCGGAGTCCGAGGACGCCGACGAGGATCCCGGGGACGAGACACCCGTGGCGAGCGACGAGGACCTCGAGAGCGGGGGGGAGCGGCGATGAMLITVATLLLGIVVIAVVIAFNGYFVAQEFAYMSVDRSRLGAQAEAGDKAAANALAITRRTSFMLSGAQLGITVTGLLIGYVAEPLVGESLGEIFGVVGVPAGVSVAVGTVAALAISTVAQMIFGELFPKNLAIAAPDTLARRLARSTRIYLAAFGWLITVFDHAANGLLRLVRIEPVEDVDSSATARDLEHIVADSRQSGDLPDELSMMLDRILDFPQRDVEHAMVPRARVDTLAPDATVGEARAAMAAAHTRYPVISDEDEPVGVVHLLDVLAVGEDQEAPVSDIMRPATVVPTLMLLPDALAELTARRDELACVIDEYGGFAGILTAEDLAEEVAGEITDEHDVEQAEIVEPEGETAWRMGGDVHLDEAERVFEHELPRGDYETMSGLVIAEHGHLPQVGETVTVELATEPVELALHEQVQRRLTIEVLTVDRYVPSRLRVTLHEIESSESEDADEDPGDETPVASDEDLESGGERRNANANANANA
AK018_022522436nagZ_2Beta-hexosaminidaseGTGAACGAACGAGCGGCAGGTATCGGCCAGGTCGACAGCTCGGACCGGCTCGCGCAGGGACGCGTGCAGCTGCGGTCCGAGGACGCGTGGATCCCGGAGGGCATGGGCCAGGCGTGTCGCCGCGCCGCTGCCGAGGGCATCGTGCTGCTGACGAACGAGAACGAGGCTCTGCCACTGTCTGGGAGCGCTCCCATCGCAGTGTTCGGCCGCGTCCAGCGCGACTACTTCACCGTCGGCTACGGCTCCGGCGGGGACGTGCGCCCCCCGTACTCGTGGAACCTCGTCGACGCGCTGGCGGCCACCGACCTGCAGGTGGACGCCCCGCTCGCCGAGCGGTACGCGACCTGGTGCGACGAGCACCCCGTCGACCCCGAACCCGCCTGGGGCACTTGGCCCCGCTCCCACCCGGAGATGCCGCTGACCACCGCGGAGGTCGAGGCCGTCGCCGCCCGCACCCCGACCGCCGTCGTCGTCCTCGGCCGTGCCGCGGGCGAGGCGCGCGAGCAGTCGCTCACCGAGGGCGGCTACCACCTCACCGCCGACGAGCGCACCCTGCTGTCGCAGGTCAGCACCGCGTTCGAGCGCACCGTCGTCGTGATCGACACCGGCAACGTGGTCGACCTCGCCTGGACCCGGGAGTACGACCTCGACGCCGTGCTGCTGGCCTGGCAGGGCGGGATGGAGTCGGGACGCGCCGTGGCCGACGTGCTCACCGGGGCCGTCCCGGCCGGTGGCAAGCTGACCGCCACGATCGCCACCGCCTACGACCGCTTCCCGAGCGCCGGGCACTTCGGCGGCCACGAGCACAACGAGTACGTCGAGGACGTCTACGTCGGCTACCGGTGGTTCGAGACGTTCGCGGCGCAGGACGTGCTGTACCCGTTCGGCTTCGGACTGACCTACGCGACCTTCGACGTGCGCGCCCAGGACGTGCGCGCCGACGACGGCGAGGTCGTGGTGCGGGCCGAGGTCACCAACACCCACGCCGTCCACCCCGGCACCGAGGTCGTGCAGGTCTACGTGCGCGCCCCCCAGGGCGTCCTGGGCCGCCCGGCCCGGCACCTGGCCGCCTTCGCCAAGACCCGCGAGCTCGCCCCCGGCGCGTCCCAGACGCTCGAGCTGCGCTTCCGGCTCGAGGACCTCGCCGCGTACGACGACGACGGGGCGACCGGGCACCGGTCCGCCTACGTGCTCGAGGCCGGCCGCTACGAGGTCCTGCTGGGCACCGACGTGCGCAGCGCCCTGCCGTGCGGCGGCGTCGACGTCGAGGACCTGCGCGTCGTGCGGCAGGTGGCCGAGGCCGCCGCCGTCGAGCCGGCGCACGCCTTCGACCGCGTCGTGGCCCGCACCGGACCCGACGGCGCGCCGCAGGTCGCGCACGCCCCGGTGCCCGTGGCGACCGTGTCGCGCCGCGACCGGGTGCTCGCCGGGCTGCCTGCCGCCGTCGCGCAGACCGGGGACGCCGGGGTCGACCTGGCCGACGTCGCCGCCGGGCGGGCCGACCTCGACACCTTCGTCGCCCAGCTCGACGACGACGAGCTCGAGGCGCTCTCGCGCGGGGACTTCACGATGGACTCGGCGCTCGGCGCCGCGGGGAACGCCGGCGCGCTCGCCGGCACCGTGCCGTCCCTGCGCGCCAAGGGCGTGCCCGCCCTGACCACCACGGACGGCCCCGCCGGGATCCGGCTGGCCACGCACACCGCGCTGCTGCCCTGCGGGACGGCGCTCGCCTCGACCTGGAACCTCGAGCTCGTCACCGAGCTCAACACCCTGCTGGCGGCCGAGATGGCGGCCAAGGGGTCCGACATCCTGCTCTCACCGGGCATGAACGTCCAGCGTGACCCCCTGTGCGGACGCAACTTCGAGTACTTCTCCGAGGACCCGCTGCTCACCGGGCGGATGGCCGCCGCCACCGTGCGCGGCATCCAGTCCGGGGGGCTGGCAGCCTGCCCCAAGCACTTCGCCGCCAACAACCAGGAGAACAACCGCGAGCACCACGACTCGCGCGTGTCCGAGCGGGCGCTGCGGGAGATCTACCTGCGCGGCTTCGAGATCTGCGTCGCCGAGTCCGCGCCGCGGACCCTCATGACGTCCTACAACAAGATCAACGGCGTCTGGGGCCACTACCACCACGACCTGGTCACGACGATCCTGCGGGGCGAGTGGGGCTTCGACGGCGCCGTCATGACGGACTGGTGGATGCGCGAGGCCGTCGACCCCGACTTCCCGGCGGTCACCAACGACGCCTACCGGGTGCGCGCCCAGGTGGACGTGCACATGCCCGGGGCGTGGGGGCGCGAGGACCGTCACGGTGACGGCTCCCTGCTGGCCTCCCTGGCCACCGTCGACGGCCTCACGCGGGGCGAGCTGCAGCGCACCGCCCGCAACGTGCTGCACCTGGCCCTGACCAGCCCCCGGGTGACCGGCGGCGCCTGAMNERAAGIGQVDSSDRLAQGRVQLRSEDAWIPEGMGQACRRAAAEGIVLLTNENEALPLSGSAPIAVFGRVQRDYFTVGYGSGGDVRPPYSWNLVDALAATDLQVDAPLAERYATWCDEHPVDPEPAWGTWPRSHPEMPLTTAEVEAVAARTPTAVVVLGRAAGEAREQSLTEGGYHLTADERTLLSQVSTAFERTVVVIDTGNVVDLAWTREYDLDAVLLAWQGGMESGRAVADVLTGAVPAGGKLTATIATAYDRFPSAGHFGGHEHNEYVEDVYVGYRWFETFAAQDVLYPFGFGLTYATFDVRAQDVRADDGEVVVRAEVTNTHAVHPGTEVVQVYVRAPQGVLGRPARHLAAFAKTRELAPGASQTLELRFRLEDLAAYDDDGATGHRSAYVLEAGRYEVLLGTDVRSALPCGGVDVEDLRVVRQVAEAAAVEPAHAFDRVVARTGPDGAPQVAHAPVPVATVSRRDRVLAGLPAAVAQTGDAGVDLADVAAGRADLDTFVAQLDDDELEALSRGDFTMDSALGAAGNAGALAGTVPSLRAKGVPALTTTDGPAGIRLATHTALLPCGTALASTWNLELVTELNTLLAAEMAAKGSDILLSPGMNVQRDPLCGRNFEYFSEDPLLTGRMAAATVRGIQSGGLAACPKHFAANNQENNREHHDSRVSERALREIYLRGFEICVAESAPRTLMTSYNKINGVWGHYHHDLVTTILRGEWGFDGAVMTDWWMREAVDPDFPAVTNDAYRVRAQVDVHMPGAWGREDRHGDGSLLASLATVDGLTRGELQRTARNVLHLALTSPRVTGGAPGPT0019110_2048DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_02253411hypothetical proteinGTGTACTCGTCGGAGCGCCGCATCGGGCGGCTCCACGCCGGCCTGCTCGCGCCCGGGCGGCTGAGCCACACCCAGTACCTCGTGATCGAGATGCTCGGCGCGAACCGGGGCCAGCCGCTGACCGTCGGCGAGCTCGGCCGCCTGCTCGACCTCGACTCGGGGACGCTGTCCCCGCTGGCCAAGCGGCTGGAAGGACGCGGGCTGGTCCGCCGGGGACGTTCCCCCGAGGACGAACGCGTCGTGACCGTCGCGATGACCGACGCCGGGCGGGCGATGCACGGCGAGCTGGAGGACACCGCGGAGAAGGTGCGCCCGTACTCCCACGCCACGCGCGGGAACATCCGACCAGGGACTGCCGTGGGCGGCGGGCGTCGGCGTACTCCCACGCCACGCGCGGGAACATCGACCTGAMYSSERRIGRLHAGLLAPGRLSHTQYLVIEMLGANRGQPLTVGELGRLLDLDSGTLSPLAKRLEGRGLVRRGRSPEDERVVTVAMTDAGRAMHGELEDTAEKVRPYSHATRGNIRPGTAVGGGRRRTPTPRAGTSTPGPT0013155_595DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
AK018_02254321yccXAcylphosphataseATGCGGACCCGCCGACGCCCCACACGGCGCCTCGAGGTCTACCGTGGAGGGGTGACCACCCGCCTGCGCGCCGTCGTCCACGGACAGGTCCAGGGCGTCGGCTTCCGGTACGCCACCGCCCGGATCGCGGAGCGCGCCGGGGTGGCCGGCGAGGCCACCAACCTCCCCGACGGCACGGTGGCGGTCGAGCTCGAGGGCGACGAGCCGTCCGTCGCGGGTGTCGTGGAGTTCCTGCACCGCGGCCCCCCGGCGGCGAGCGTCTCGTCCGTCGAGGTGACCACGGTCGAGCCCCTGGGCGACACGGTCTTCCGCATCCGGTGAMRTRRRPTRRLEVYRGGVTTRLRAVVHGQVQGVGFRYATARIAERAGVAGEATNLPDGTVAVELEGDEPSVAGVVEFLHRGPPAASVSSVEVTTVEPLGDTVFRIRPGPT0001372_3351DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001372-acyP|yccX-K01512NANA
AK018_022551338abgB_2COG1473p-aminobenzoyl-glutamate hydrolase subunit BATGCCAGCGCCGAACCCGCCGAGCACGGCCTACCTGGACCACATCGCCGACGAGACCGACGACCGACGCCACGCGGCCCTGGCCGCCCAGCCCGCCGAGCCGTCGGGCGGGGGAGCGCCCGCGGCGCTGACCGAGGCCGCCGAGGCCGCCGCGGCGGATCTGGAGCCGGAGCTCGCCACGATCGTCCGGACCCTGCACGCGCACCCGGAGACCGCGTTCGCCGAGCACGCCAGCGCACGGCTGCTGGTCGAGGTCCTGGCCCGGCACGGCGTCGAGGCCCGCACGGGTGTGGGCGGGGTGGAGACGGCGTTCCGCGCCGAGGCGGGCACCGACGACGGGCCGACGATCGCGGTGCTGGCCGAGTACGACGCCCTGCCCGGCATCGGGCACGCGTGCGGGCACAACGTCATCGCCGCCTCCGCGGTCGGTGCGTTCCTGGCCCTGCGCCGGGCCGTGTCGACGCCGGGTGCGCCGGCCGGCCGCGTGGTCCTGCTGGGGACCCCGGCCGAGGAGGGGCACAGCGGCAAGGAGGTGCTCGCCCGGGCCGGGGCCTTCGAGGACCTGGACGCCGCGATCATGCTGCACCCCTACGGCGTCGACCTGGCCGACCAGGTGTGGCTGGGCCGCCGGCTGCTGACCTGGACGTTCACCGGCCGCAGCGCGCACGCCTCGGCGCAGCCCTTCATGGGGCGCAACGCGCTCGACGCCGCGAACCTGGCCTACACGGGGATCGGCCTGCTGCGCCAGGAGCTGCCGCCCATCGACCGCGTGCACGCGACGATCACCGAGGGCGGGACCCGGCCCAGCATCATCCCGGACCGGGCCGTCATGCGGCTGTACGCCCGCTCCAAGTACCCGGACACGCTGCGCGACCTGTCACGGCGCCTGGACGACGTCGCCCGGGGTGCGGCGCTCATGACGGGCACGGAGGTCGACATCGCCTGGGACGACGGCGCGCACCCTTCGCTGCCCGTGCGCACCAACCAGGCGCTCACGCGGCGGTGGGTCGCGGCGCAGCAGCGGCGTGGCCGCGACGTGCTGCCCGGCGGGGTCGTCTCCGAGACGCTCGCGGCGTCGACGGACTTCGGCAACGTCAGCTTCCGCATCCCGGGCATCCACCCGCTGATCCAGGTCGCCGGCCCGGACGTCGCCCTGCACACGGTGGAGTTCGCCGAGGCCGCCGGTGGGCCCGCGGCGGTGCGGGCCGCCGTCGACGGTGCGGCGGGCCTGGCGGCCACGGCGCTGGACTACCTGGCCGACGACGCCCTGCGCGAGAGCGTGCACGCGGAGTTCGCCGCCCAGGGCGGCGCCATCGACGTCCCGCACTACTTCGACTGAMPAPNPPSTAYLDHIADETDDRRHAALAAQPAEPSGGGAPAALTEAAEAAAADLEPELATIVRTLHAHPETAFAEHASARLLVEVLARHGVEARTGVGGVETAFRAEAGTDDGPTIAVLAEYDALPGIGHACGHNVIAASAVGAFLALRRAVSTPGAPAGRVVLLGTPAEEGHSGKEVLARAGAFEDLDAAIMLHPYGVDLADQVWLGRRLLTWTFTGRSAHASAQPFMGRNALDAANLAYTGIGLLRQELPPIDRVHATITEGGTRPSIIPDRAVMRLYARSKYPDTLRDLSRRLDDVARGAALMTGTEVDIAWDDGAHPSLPVRTNQALTRRWVAAQQRRGRDVLPGGVVSETLAASTDFGNVSFRIPGIHPLIQVAGPDVALHTVEFAEAAGGPAAVRAAVDGAAGLAATALDYLADDALRESVHAEFAAQGGAIDVPHYFDNANANANANA
AK018_022561788COG1132Putative multidrug export ATP-binding/permease proteinGTGCGACGGAAAGCCCTTACCCACACGTCCGACCTGGAGCGCATCGACGGCGCCCACCCGGTCCGCTCGATACTGCGCCTGCTGACGGCCCAGCCGGGCAAGCTGGCGCTGGCGCTGTACGCCTTCACGCTCAAGGAGATCCCCCTCTGGTTCCTGCCGGTCATCACCGGTGCCGTCATCGACATCGTCGCCGAGGACGGCCCCGTCGGCTCGGTGATGATCTGGTTCGCCGTCGCCGTGGTGCTGCTCGCGCAGAACTACCCGCACCACATCCTGTACACACGCAAGTTCATGACCGTGGTGCGCGACACCGGCGTGCGGCTGCGCAACGCGCTGGTCCAGCGGCTCCAGGTGCTCTCGATCGGGTACTACGCGCGCTCGAGCGCCGCGCTGGTCCAGTCCAAGGTCGTGCGCGACGTGGAGAACGTCGAGATCATGCTGCAGCAGGTCACCCACCCGCTGCTGTCGGCGCTCATGGTGCTCGTCGGTGCCGTCTCGATGACCGCGATCCGGGTGCCCGAGTTCCTGCCGGTCTACGCCCTGGTCATCCCGACCGCGCTGCTCATCCGGCGCACCATGGCGCGCCGCTCCCAGGCACGCAACGAGCAGTTCCGCCGCGAGATGGAGGGTTTCGCCTCCCGCGTGGGCGAGATGGCCTCCCTGATCCCGGTGACCCGTGCCCACGGGCTGGAGCAGACGGCCGCCACCCGGGTGGCCACGGGCGCGGACTACGTGCGGCGCGCCGGGCTCAACCTGGACCTGCTCAACGGGCGCATGCAGTCCATGTCGTGGGTGTCCATGCAGTTCCTCGGCGTGTTCTGCCTCGTGCTGGCCGCCGCGGTGTCGCTGTCGGGCGTCATCCCCATCACCCCCGGCGAGGTCGTCGTGCTGTCGACCTACTTCACGCTGCTCACCCAGGGGCTGACCCAGGTCCTCAACCTCGTGCCCGTCACGGCCCGCGGCGTGGAGTCCATGCGCTCCATCGCCGAGGTGCTGGCCGAGCCCGACCTGGAGGAGAACGAGGGTCGCCGCCCGGTCGACCGGGTGGAGGGGCTGCTGCAGCTCGACCACGTCTCGCACCGGTACCCCGAGGCCGAGACCGACGCGCTCAGCGGCATCGACCTCGAGATCCGCCCCGGAGAGACCGTCGCCTTCGTCGGGCCCTCCGGGTCGGGCAAGTCGACCCTGCTCAACCTCGTGCTCGGCTTCGTCCGTCCCACCGACGGCCGCATCCGGCTGGACGGTCAGGACATGTCCGAGCTCGACCTGCGCACCGTGCGCCGCCACGTCTCGGTCGTGCCCCAGGAGTCGGTCCTGTTCGAGGGGTCGATCCGCGACAACGTCGCCTACGGGCTCGACGAGGCCGACGACGGACGCATCCGCGCCGCGCTGCGCGACGCCAACGCCCTGGAGTTCGTCGACGCGCTGCCCCAGGGCTGGGACACCGTCGTGGGCCAGCGCGGAGCCCGCATCTCCGGCGGTCAGCGCCAGCGGCTGGCCATCGCCCGGGCGATCGTGCGCAACCCGAACATCCTCTTCCTGGACGAGGCCACCAGCGCGCTCGACCCGGAGTCCGAGGTCTCGGTGCGCGACGCGCTGGACCGGCTGATGGCCGACCGCACCACGCTGGTGGTGGCGCACCGGCTGTCCACGGTGCGCCAGGCCGACCGCATCGTCGTGCTCGACCACGGGCGCATCGTCGAGGTGGGGCCGCACGCCGAGCTGCTGGCGCGCGGCGGACGGTACGCCGCCCTGCACGCCGCCCAGGAGGGCGGGCTCAGCGCGTAGMRRKALTHTSDLERIDGAHPVRSILRLLTAQPGKLALALYAFTLKEIPLWFLPVITGAVIDIVAEDGPVGSVMIWFAVAVVLLAQNYPHHILYTRKFMTVVRDTGVRLRNALVQRLQVLSIGYYARSSAALVQSKVVRDVENVEIMLQQVTHPLLSALMVLVGAVSMTAIRVPEFLPVYALVIPTALLIRRTMARRSQARNEQFRREMEGFASRVGEMASLIPVTRAHGLEQTAATRVATGADYVRRAGLNLDLLNGRMQSMSWVSMQFLGVFCLVLAAAVSLSGVIPITPGEVVVLSTYFTLLTQGLTQVLNLVPVTARGVESMRSIAEVLAEPDLEENEGRRPVDRVEGLLQLDHVSHRYPEAETDALSGIDLEIRPGETVAFVGPSGSGKSTLLNLVLGFVRPTDGRIRLDGQDMSELDLRTVRRHVSVVPQESVLFEGSIRDNVAYGLDEADDGRIRAALRDANALEFVDALPQGWDTVVGQRGARISGGQRQRLAIARAIVRNPNILFLDEATSALDPESEVSVRDALDRLMADRTTLVVAHRLSTVRQADRIVVLDHGRIVEVGPHAELLARGGRYAALHAAQEGGLSANANANANANA
AK018_02257867COG2141putative proteinGTGCTGCAGGATGGTGCCCTGTCCCGTCGCACCGGACTCAAGCTCACCCAGGACGCCCCGGTCGCCGACTTCGAGCAGGTGTGGCGCACCGCAGACGACGCGGGCTTCGACCACGTGTGGGTGATGGACCACCTCGCCTCCCTCGGGCCCGACCCGGCGCGGCCCGTGTTCGACGCCTGGGCGATGCAGGCGGCCATGGCCGCCCTCACCACCCGGGTCCGCATCGGGTGCATGGTCTCGGGCAACTCCTACCGCCACCCCGGGATGCTCGCCAAGCTGGCGACCACGGTCGACCACCTCTCGGGCGGCCGGCTCGAGCTCGGCGTCGGCGCCGGCTGGAACGAGCGCGAGCACTCGATGTACGGGCTCGACCTGGGCGACGTGCGCACCCGCATGGACCGTCTCGAGGAGGCGCTGGTCGTCCTGCGGTCGCTGTGGACGCAGCCGACCACCACCTTCCACGGCGAGCACGACCGGCTCACCGACGCCGTCGCCGAGCCGAAGCCCGTGCAGCGCCCGCACCCGCCGATCTGGGTCGGCGGGTCGGGACCCCGCCGCACCCTGCGCATGGTCGCGCGGTACGCCGACGCCTGGAACGACACCTCCAGCAACCCCGAGCGGATCAGTGAGCTCGGCGACGTCCTGGCCCGCCACTGCGCGGACGTCGGACGCGACCCCGCCGAGATCCGCCGCACGGTCCAGCTCCGGCTGCGCGAGCACGACCTCGCCGAGCTGCCCGCGCTCGTGGCGCCCTACGCCGCGGTGGGCGTGAGCGAGTTCGTCGTCGTGCTCCCCAGCGAGGGGGACGTCCGCCCGCACCTCGACGGCGTGGTCGACGCGCTGCCCCGGCTCCGCGCCGCCGGCTGAMLQDGALSRRTGLKLTQDAPVADFEQVWRTADDAGFDHVWVMDHLASLGPDPARPVFDAWAMQAAMAALTTRVRIGCMVSGNSYRHPGMLAKLATTVDHLSGGRLELGVGAGWNEREHSMYGLDLGDVRTRMDRLEEALVVLRSLWTQPTTTFHGEHDRLTDAVAEPKPVQRPHPPIWVGGSGPRRTLRMVARYADAWNDTSSNPERISELGDVLARHCADVGRDPAEIRRTVQLRLREHDLAELPALVAPYAAVGVSEFVVVLPSEGDVRPHLDGVVDALPRLRAAGNANANANANA
AK018_022581503hypothetical proteinATGACCGCCCGTCGCACCGGGGCGGCGCTCCGCGCCGCCCCCGCCCTGCCTGTCCGTCCGCGCGGCCGACCCCGCCGCGTCCACCGCCCCGGGAACCCGCACCGCCGGATCCCTGCCCTCGCCGGCGCCGTGCTGCTCGGCCTGCTGCTCCTGCTCGCCGGCGCCGTCCCCGCGCAGGCGCACACCGACCTCGACACCGTCGAGCCTGCCGACGGCTCCACCGCCGACGGTCCGGTCGAGGAGGTCGTCCTGACGTTCACCCTGCCGGTCACGCCGTTGGGCGAGGCCGTGGAGGTCACGGGCCCGGACGGGGCCGTGCCGGTGGAGGTCACCTCGCAGGACGACGGCGTGGTGCTGCTCGCCACGCCCGCGGAGCCGCTGACCGACGGCGAGTACACCCTCGACTGGAACGTGGCCGCCGAGGACGGCCATCCTCTGGACGGCACGGTCGCCTTCACCGTCGCGGGCGCCGCGCCGGACGGCGGGTCGACCGACGACGGCGACGCGGACGAGGGCCCCGCACCCGGCGCGGAGGGCTCGCCGACCGCGGCCCCGGAGGCCGACGCGGCAGCCGACCCGGAGGCCGCGGCCGCCGAGGAGGACGCCGCGGGCTTCGCCGCCGTGGTCGCCCGGCTCGCCGGCGCCGCGGTCCTGTGGGGCGCGCTGGTCGCCGGCGGCGGGCTGCTGTTCGCGGCCCTCGTCCTGCGGGGCCGGGACCGGGAGGACGTGCCCGCCGTGCTCACGGCCGTGCGCTGGGTCGGCGTGCTCGCGCTCGTCGGCGTGCCGCTGCGCCTGGCCGCGCGGTCGGTCGTCGTGGCGCAGGGCGACGTCGCCGCCGCCGTCAGCCCGTCCGCGCTCGCCGACGCCCTGACCGGGGACACGGGGCTGGTGCTGGGGCTCCAGGCCGCCGGCGCCCTGGCGGTGCTGCTCGGGGCCCGGCGGACGCTGGCCGGCTCGTGGCTCGCCGTCGTCGGTACGCTGCTGCTCGGCGCGGGCATCGTGCTCGACGGGCACAGCAACAGCGTCGGTCCGCACTGGCTGGTCGTCACCACCGACGTCACGCACCTGCTGGCCGCCGCCGCCTGGGTCGGCGGGGTCGTCATGGTCGGCGTCGTGCTGCGCCGACGCCGGCGCGACGCCCGACCGCTGGACGCCGGACTGCTGGGCAGCCGCTTCTCGGTGCTGGCGACCGCGTCCGTCGTGGTGGTGGGGATCGCGGGCGTGGCCCTGACCGTGGAGATCCTCGACCGACCGTCCCAGCTCTGGGAGTCCAGCTGGGGGCTGTTCCTGCTGGCCAAGGTCGCGGTGGTGGCCGTGGTCGCCGCGATGGGCGCCTACCAGCACTTCCGGGTGGTGCCCCTGCTGCAGGCACCCGGGCACGGCGCGCGCCGGGCGCACAAGGCGGGCAGCCTCCTTCAGCGCGGCGCCGGCCACGAGACCGGCTTCATGGTGGTCGTCGTGCTGCTGACGGCGTGGCTGGTCGCCGCGTCCGTGCACGAGTAGMTARRTGAALRAAPALPVRPRGRPRRVHRPGNPHRRIPALAGAVLLGLLLLLAGAVPAQAHTDLDTVEPADGSTADGPVEEVVLTFTLPVTPLGEAVEVTGPDGAVPVEVTSQDDGVVLLATPAEPLTDGEYTLDWNVAAEDGHPLDGTVAFTVAGAAPDGGSTDDGDADEGPAPGAEGSPTAAPEADAAADPEAAAAEEDAAGFAAVVARLAGAAVLWGALVAGGGLLFAALVLRGRDREDVPAVLTAVRWVGVLALVGVPLRLAARSVVVAQGDVAAAVSPSALADALTGDTGLVLGLQAAGALAVLLGARRTLAGSWLAVVGTLLLGAGIVLDGHSNSVGPHWLVVTTDVTHLLAAAAWVGGVVMVGVVLRRRRRDARPLDAGLLGSRFSVLATASVVVVGIAGVALTVEILDRPSQLWESSWGLFLLAKVAVVAVVAAMGAYQHFRVVPLLQAPGHGARRAHKAGSLLQRGAGHETGFMVVVVLLTAWLVAASVHENANANANANA
AK018_02259450hypothetical proteinATGACGAGCTCGGCACCGGGCCCGGCGGATCGCCGGCCACTGCTGCGCGCGCTGCTGCTGGGTGCGGGCGTGGCCCTGCTCGTCGCTGCCCTGGTGCTGCTCGTCGTGTCCCACCAGCCCTCGGCCTCCTCGGTGTCCGCGGGGCATCTGCACGCGTCCGCCGGTGGCGTGGTCCACGCGGCCCCCGAGCACGCCGCGCCCGTCCCCGGCGACGGCACGGCGCACACGCACGAGAGCCCCGCCGAGGACCACGACCACGGGACCCTGGTGGTCTGCACCCTGCTGGCCGCGGCCACGCTGCTGGTGCTGGTCGCGCTCCGGGCGCGTGCCCTGCCCTCGCCCGCGCAGGCCGCGGGATGGGCGGGACGCCGGCTCGTCGCCGCTCTGGTCACCACCACACGCAGCATCGCCCCGCCGGACCTCCTCGCGCTCGGGATCTCGCGCAGGTGAMTSSAPGPADRRPLLRALLLGAGVALLVAALVLLVVSHQPSASSVSAGHLHASAGGVVHAAPEHAAPVPGDGTAHTHESPAEDHDHGTLVVCTLLAAATLLVLVALRARALPSPAQAAGWAGRRLVAALVTTTRSIAPPDLLALGISRRNANANANANA
AK018_022601401nuoN_1COG1007NADH-quinone oxidoreductase subunit NATGACGGGGGAGGACCTGGCCGGACTGCTGCCCGAGGGCCTGCTGCTCGTCGCGGCCGTCGGGGGACTGCTGCTCGGGCTGTGGACGCCGCAGGCCGCCCAGCGCCGGGTCGCCGTCGTCGCCGTCGCCGGATGCCTGGCCAGCGCAGGCGCCGCCGCGGTCGCGCTGGCCGGCCCCGCCCGGACGGTGTTCGCCGGGACCTGGACCGTGGACACCACCACCGGCGTCGTCCGCCTGGCAGTGGCCGCCGCGACCCTCGCCGTGGTGGTCCTGCTGCGCACCGAGCTCGCCGGGCACCCCCGCGAGACGGAGGCGTACGTGCTCGCGCTGCTGGTCGCCCTCGGTGCCGACGCCCTGGCCGCCGCGAGCGACGCCCTGCTGCTGGTGGCCGCCTACCTGCTCGCCAGCGTGCCCGCGTACGCGCTGACCGCCTTCCGCAAGGACGCCCGCGGCACCGAGGCGGCGCTGAAGTACTACCTGCTCAGCGCCCTGGTCGGCGTGGTGCTGCTGGTCGGCGTGACCGCCCTGGTGCTCGCCACGGGCCGGACGGGCTACGCCTCCGCGGGCGCGGGGCTGCCGGACGCCGCCCCGGCGCTCGGCGCGCTGGCCGCGCTCGGCCTGCTCGCCGCGATGCTTTTCAAGGCGGGCGCGGTCCCCGTGCACTTCTGGGTGCCCGACGCCGTCGACGGCGCGAGCCCGGCGGTGGCCGCCCTGATCACCACCGTGCCGAAGGTCGGGGCGCTCGCGGCCGCGTTCCGGCTCCTGGCCGAACCGTTCGCCCAGGTACCGCCCGGCCTGACGCTCGCGGTCGCCCTCGTGGCGGCGGTGAGCATGACGCTGGGGAACCTCGCGGCGTTCTGGCAGAGCTCGCTGCAACGCCTGCTGGCGTACTCCACGATCAGCCAGGTGGGGTACCTGCTGATGATCGTCGCGGTCGCCGGGACGGTGGAGCCGGCCGGCCCGGCGCTGCAGGTCTACCTCGCGGCCTACGCCGTCACCAACGTCGGTGCCTTCGCCGCGGTGGCGGCCGTGCCGCGGCGCAGCACGCCGGCGGGGTGGGCGGCCGGCGTGGCGGGACGGCCGTGGCTGGTGGTCAGCCTGGTGGTGTGCCTGCTGGGCCTCGTCGGGACGCCGCCGACCGCGGTGTTCGTGGGCAAGGTCGCGGCGTTCACCACCGCGGCCGACGGCGGGTACGCCTGGCTCGTCGTCCTGGCGGCCGCCAACTCGGTCGCCAGCCTCTTCTACTACCTGCGCTGGATCGCCCCGGCGTTCCGGGCGGTGTCGTCGCCACGCCCGCGCGTGGCCGGCGTGCGACGGCCGGCCGCCGCGACCCTGCACGTCGCGGCGGCGACGAGCCTGGTGCTGGGGGTGGCCCTCGGTGCGACGATCGGTGGCGCGTAGMTGEDLAGLLPEGLLLVAAVGGLLLGLWTPQAAQRRVAVVAVAGCLASAGAAAVALAGPARTVFAGTWTVDTTTGVVRLAVAAATLAVVVLLRTELAGHPRETEAYVLALLVALGADALAAASDALLLVAAYLLASVPAYALTAFRKDARGTEAALKYYLLSALVGVVLLVGVTALVLATGRTGYASAGAGLPDAAPALGALAALGLLAAMLFKAGAVPVHFWVPDAVDGASPAVAALITTVPKVGALAAAFRLLAEPFAQVPPGLTLAVALVAAVSMTLGNLAAFWQSSLQRLLAYSTISQVGYLLMIVAVAGTVEPAGPALQVYLAAYAVTNVGAFAAVAAVPRRSTPAGWAAGVAGRPWLVVSLVVCLLGLVGTPPTAVFVGKVAAFTTAADGGYAWLVVLAAANSVASLFYYLRWIAPAFRAVSSPRPRVAGVRRPAAATLHVAAATSLVLGVALGATIGGAPGPT0026860_1778DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026860-nuoN-K00343NANA
AK018_022611518ndhD1COG1008NAD(P)H-quinone oxidoreductase chain 4 1GTGCTCCTGACCGTCGTCGTCCTGCTCCCGGTGCTCGCCGGGCTCGTCCTCGTCGCGGCGCGCGTCCCGGACCGGGTCGCGTCCTGGGCGTGGGTGGCGACGTCCTCGGCCGTCGTCGCGCTCGTGGCGTGGATCTGGTGGGGCTTCGACGCCGGCGGCGGGGTCCAGTACGACGTCAAGCTGCGCTGGATCCCGACCGTCGACGCGTCCTACCACGTCGGCGTCGACGGCCTGTCCCTGCCGCTGCTCGGGCTCACCGCGGTGCTGTTCTGGTGCTGTGCCGTGTGGTCGCTGCGCGGCACCCCGCGGCCCCGCAGCCACGCGGCGCTCTTCCTGCTGCTGCAGACGACCTGCCTGGGCACGTTCGCCGCGCTGGACCTGATCCTGTTCTTCCTCTTCTTCGACCTGTCCATCGTGGCGATGTACTTCGTCATCGCCGGCTGGGGCCACGGCGACCGCCGGCGCAGCGCCCTGACGTTCTTCCTGTACACCTTCCTCGGGTCGTTGGCCCTGCTGCTCGGGTTCATCGGCCTGTTCCTGGGCAGCGAGCCGCGCACCTTCGACATCGTGCGCCTCGTCGAGGACCCGCCGTGGGCCGGGCAGGACGCCACCGCCTCCTGGGTGCTGCTGGCCCTCTTCGTCGGGCTGGCCGTCAAGACGCCGCTGTTCCCCTTCCACACCTGGCTGCCGCCCGCCCACACCGACGCCCCGGCCGAGGGCTCCGCGGTGCTGGCGGGCGTGCTGCTGAAGCTGGGCACCTTCGGGTTCGTGCGCATCGTCATGCCGACGCTGCCCGAGGCGTGGCAGCGCTGGGGCACCTGGATCGTCGTCGTCGGGGTCGTCAGCGTGCTCTGGGGCGCCCTGGTGGCGCTGGCCCAGGACGACCTGAAGCGGATGATCGCCTACACCTCGGTCAACCACATGGGCTACGTGCTGCTGGGGCTCGGGGCGGTCGGCGTGCTCGCACGCGAGGACGTCGAGGCCACCGACGCCGCAGGCGCGGCCGGGGTGGCCGCGACCGGGGCCGTGGTCCAGATGGTCAGCCACGGGCTGCTCACCGGCGCGCTGTTCCTCGTCGCCGGCGTGCTGTGGAACCGCGGAGGCACCTACGCGTTCGCCCGCTGGGCAGGGCTGGGCCGGGCGGTGCCCGGGTTCGCCGTGCTGCTGTCCGTGGCCGCCTTCGGGTCGCTCGGGCTGCCCGGCCTGTCGGGATTCGTCGCCGAGTTCCAGATCTTCGCCGGGTCGCTGGCCGCGGTGCCCGTGGCCGTGACGATCGCCGTCGTGGGCATCCTGCTCACCGCCGGGCTGTTCCTGCGGGCGCTGCAACGGCTGCTGACCGGCGACCTGCGGGTGCCCGAGGGCCTCGACGCGACGGCGGTGGGGGACGTGACCACCACCGAACGGGTCGCCGTCGTCCCGCTGCTGGCGCTGAGCGTCGCCGTCGGCCTGCTGCCCTGGCTGCTCGTCGACGTCGTCGGGCCGGCCGCGGACGGCCTGGTCGCCCTGGTGGCCCGGTGAMLLTVVVLLPVLAGLVLVAARVPDRVASWAWVATSSAVVALVAWIWWGFDAGGGVQYDVKLRWIPTVDASYHVGVDGLSLPLLGLTAVLFWCCAVWSLRGTPRPRSHAALFLLLQTTCLGTFAALDLILFFLFFDLSIVAMYFVIAGWGHGDRRRSALTFFLYTFLGSLALLLGFIGLFLGSEPRTFDIVRLVEDPPWAGQDATASWVLLALFVGLAVKTPLFPFHTWLPPAHTDAPAEGSAVLAGVLLKLGTFGFVRIVMPTLPEAWQRWGTWIVVVGVVSVLWGALVALAQDDLKRMIAYTSVNHMGYVLLGLGAVGVLAREDVEATDAAGAAGVAATGAVVQMVSHGLLTGALFLVAGVLWNRGGTYAFARWAGLGRAVPGFAVLLSVAAFGSLGLPGLSGFVAEFQIFAGSLAAVPVAVTIAVVGILLTAGLFLRALQRLLTGDLRVPEGLDATAVGDVTTTERVAVVPLLALSVAVGLLPWLLVDVVGPAADGLVALVARPGPT0026850_282DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026850-nuoM-K00342NANA
AK018_022621950nuoL_1COG1009NADH-quinone oxidoreductase subunit LATGAGCGCCGCCCTGCTGCTCCTCGTGCTGCTGCCCGCCGCGGGCGGTGCGGTGCTGCTGCTCGGGCGACACCGGCTGGACCGCGGCGGTGCGCCCCTGGCGCTCGGCCTCGGCGCCGTCGGGCTGGCGCTCGCGGTCGTGGCCGCCGTCGAACGTCCCGTCGTCACGGTGCCGTTCCTGGGCCGCCGCGCCGCCGCGGTCGCCGACGGCGCGGACCTCGCGCTGGCCGTCGACGGCCTGTCGGCCCTGCTGGTCGTCACCGTCGCCACCGTCGCACTGGTGGTGACGGTGCACGCCGCGGTCGACCACGAGGTCCGCACCTCCCGCGCCCGGTTCTTCGGCTTCTGGCTGCTGTTCGTCGCCGCCATGCAGCTCACCGTCACCGCCACGACCTTCCCCGCGCTCCTGCTCGGCTGGGAGGTCATGGGGGCGACCTCCTACGCGCTCATCGGGTTCCGCTGGCGGCTGGCCGGCCGGACCGCGGCAGGCACCACGGCGCTGCTCACGACCCGGGCCGCCGACCTCGGGCTGTACGTCGCGGCGGGCGCCGTCCTGGCGGGCAGCGGGGGCCTGCACCTGTCCGGGCTGGGCGGCCTGCCCGACCCGTGGACCGCGGTGGCCACGACCGGTGTGGTGGTCGCGGCGCTGGGCAAGTCGGCCCAGCTGCCGCTGTCCGGCTGGCTGTCCGCGGCGATGCAGGGGCCGAGCCCGGTGTCCGCCCTGCTGCACTCGGCCACGATGGTCGCCGCCGGTGGCTACCTGCTGCTGCGCGTCGGGCCGGACCTGATGGCGGGGGCGGCGACGACGGTCGTCTGGGCCGGGGCCGCCACCGCCCTGGTGCTCGGCCTGGCCGCCGTGGCCCAGAGCGACCTCAAGCAGCTCCTGGCGGCGAGCACCGCCGCCCAGATGGGGTTCGTCGTCGCGGCCGCGGGGGCGCACGCTGCCGGTGCGGGCGCAGGCCTGCTCGGTGGCGCCGAGCACCTGGTCGCGCACGCCGCCGTCAAGGCCGGGCTGTTCGTCGCGGCCGGCGTCTGGCTCGGGGCGCTGGGGACGCGGGCGCTCGGCGTGCTGCGCGGCGCGGGCCGCCGCTACCCGGTCGTGGGTGCCGCGGTCGTCGCCGCGGCCGCCGCGCTGGCCGGGATCCCGCCGCTGTCGTTGTGGGTGACCAAGGACGAGGTCCTGCACGGCGTGGAGCAGGCGCACCTGCCCGGCGGCGCCGTGCTGCACGTCGTGCTCCTGGCCGCCGGGGCCCTGTCGGCCGCCTACGCCGCCAAGGTCGTCGCGGTGGTGCTCGCCCCGACCGCCGGGCGCGACGACGGCTCCCCGGCCCCGGTGCCGGCCGTCGCCGCCGCGCTGGCTCTGGCTGCCGCCGCCGTCGGGCTCGGCGTCCTCGCCCTGCCTGGCGTCCGCGACGCCGTGGCCGTGGTGCTGGACGTCGAGCCCGGTGCCGCCCCGGCGCCGTCGGCCCTGGCGATCTCCGGCGGGCTCGCTGTGCTGGTGGCCGCGGCCGTGCTGTGGCGCCCGGGCCTGGCCCGGGCCTCCGAGCGTGCGCCGATGCAGGGCTGGTGGTCCCTGCCCGCGCTGCTCGCGGCCGCCGGCGCCGCGGCCGTGCGGCTGGCCGGTGCGGTCGATCGCGCCGACGCCGGGCTGGACCGTGCCGTGCGTTCCGTGCCGACCGGGACCCTGGCCGCGGCCCGGGGCGCCGGGACGGCCGACGACGGGATCGACCGGGGCGTGCACGGTGTCGCCGGGCTCGCCGTGACCGGGGCCCGGCACGCGGCGATGATCGACGTGCGCGGCGTCGACGGGCTCGTGCGCGACGTCGCCACCGGTGCCGGTCGGGCCGGTCGCGCGGCCCGCCGTCCCCAGACCGGCCTGCTGCACCAGTACTACGCGCAGGTGGCCGCCGGCCTCGGCGCGCTCCTCGTCCTGCTGATCCTCGTGAGGTGAMSAALLLLVLLPAAGGAVLLLGRHRLDRGGAPLALGLGAVGLALAVVAAVERPVVTVPFLGRRAAAVADGADLALAVDGLSALLVVTVATVALVVTVHAAVDHEVRTSRARFFGFWLLFVAAMQLTVTATTFPALLLGWEVMGATSYALIGFRWRLAGRTAAGTTALLTTRAADLGLYVAAGAVLAGSGGLHLSGLGGLPDPWTAVATTGVVVAALGKSAQLPLSGWLSAAMQGPSPVSALLHSATMVAAGGYLLLRVGPDLMAGAATTVVWAGAATALVLGLAAVAQSDLKQLLAASTAAQMGFVVAAAGAHAAGAGAGLLGGAEHLVAHAAVKAGLFVAAGVWLGALGTRALGVLRGAGRRYPVVGAAVVAAAAALAGIPPLSLWVTKDEVLHGVEQAHLPGGAVLHVVLLAAGALSAAYAAKVVAVVLAPTAGRDDGSPAPVPAVAAALALAAAAVGLGVLALPGVRDAVAVVLDVEPGAAPAPSALAISGGLAVLVAAAVLWRPGLARASERAPMQGWWSLPALLAAAGAAAVRLAGAVDRADAGLDRAVRSVPTGTLAAARGAGTADDGIDRGVHGVAGLAVTGARHAAMIDVRGVDGLVRDVATGAGRAGRAARRPQTGLLHQYYAQVAAGLGALLVLLILVRPGPT0026845_2685DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026845-nuoL-K00341NANA
AK018_02263315ndhENAD(P)H-quinone oxidoreductase subunit 4L, chloroplasticATGACCGAGCTGACCCTGCAGGTCGTGCTGACCGTCGCCGCCGCCCTGGTGGGCACCGGGCTGTTCGGGGCGCTGTCCCAGCAGTCGATCGTCATGGTGATGATGGGCCTCGAGCTCGTGGTCAACGGCGTGCTGCTGGCCGCGGGGGCCGCCTGGGCCTTCCTGACGCCGCAGCTGCCCGGCGCACAGGTCCTGGTGCTGATGGCCACCGTCGTGATGGCCGTGGAGATGGCGATGGGTTTCGCCGTCGCCCTGGCGATCTACCGCGCCCGCCAGGTCGACACCGTCGACGCCGCCGAGGACCTCGCCGGATGAMTELTLQVVLTVAAALVGTGLFGALSQQSIVMVMMGLELVVNGVLLAAGAAWAFLTPQLPGAQVLVLMATVVMAVEMAMGFAVALAIYRARQVDTVDAAEDLAGPGPT0026730_314DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026730-ndhE-K05576NANA
AK018_02264564hypothetical proteinATGACGGAGCTGCTGGTCCTCGCCGCCCTCGGGGCCGTCGCCGTGTGCACCGGGGTGCTGGTGTTCGTCGTCGACTCCATGGCCCGGGCCACGTTCTCGCTGCTCGCCTCGTTCCTCGCGACCGGCGCGGCGCTGCTGGTCATGGACCTGGCCTACCTCGGCCTGCTGACCATCCTGATGATGACCATCGAGATGGCGATCATGGCCGTGTTCATGATCATGCTCATGATGAACCCGGCCGGTCTGATGCCCATGACCATGGTGCACAACGCCACCGGGTCCGCGGTCGTGGGCGGCGCGGTGTTCGTCCTGCTGACCGTCGGTGTGTGGACGACCGACTGGCCGGACCGGCCCGGCCCACAACCGGACGACGCCACCGTCCAGGTCGGCGAGGCGATCATGGGCGACTACATGCTCGTGATGATCGTGGTCGGCGTCGTGCTGCTCGCGACGATCGTGGCGGCCATCGCGCTGGCCACGCACCGCGGGCGCTACGACCGGTTCGGGCCCGACCTGGACCGGCGCGAGCCCGACGACCCCGTGCGGGGAGGGCTGCCCCGATGAMTELLVLAALGAVAVCTGVLVFVVDSMARATFSLLASFLATGAALLVMDLAYLGLLTILMMTIEMAIMAVFMIMLMMNPAGLMPMTMVHNATGSAVVGGAVFVLLTVGVWTTDWPDRPGPQPDDATVQVGEAIMGDYMLVMIVVGVVLLATIVAAIALATHRGRYDRFGPDLDRREPDDPVRGGLPRPGPT0026835_1831DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026835-nuoJ-K00339NANA
AK018_02265948nuoH_1COG1005NADH-quinone oxidoreductase subunit HATGACCGAGACGACCTGGACGTCACCCGGCGCCGGGCTCGCCGTCGCGGGCGTCGCCGTGCTGCTCGGTCTCGTGCTCGCCGCGATGGACGCCGTGGCCCGCCGCGCACCGGCGTCCGAGGGCCGATCGGCCGAGCGCGCGGTGACCCCGGTCCGCGACGTCGCCCGGCTGCTGCTCGAGCGTCGACGCACGACGCTCGCCCCCGACCGGCTGCTGCGCACGGTGGCGGTCCTCGCGATCCCCGTGCTCGCGCTGCTCTCGGCGGCGGTGCTGCCGTTCGGGGGCCGCAGCGTGGTCTCGACGTCGGCGGACCTGGTGTGGTTCAACGCCGCCGAGGCGCTGCTGTGGGCCGCCGTCTGGCTGCTGGGCTGGGGGCCGAACGCGGCGCACGCCCTGGTCGGCGCCTACCGCTTCCTCGCCCAGGGGCTCGCCTACGAGCTCCCGCTGATGTTCGCGATCATCACCGTCGGGGTCGGTGCCGGGTCGCTGCGGGCCACCGACGTGGTCGCCGCCCAGGCCGGCGGTGCCTGGTTCGTGTGGACCATGCCGGTGGCTTTCGTGGTGTTCCTGCTCGGGGCGGCGGCGTTCGCCTTCTGGGGCCCCTTCGCGGCGCCGGCGGGAGCCGACGTCGCCGGCGGCGTGCTCGCCGAGGTCTCGGGCGTCGACCGGCTGCTGGTGCAGGTGGGTCGCGCCGTGCTCCTCGGGGTCGCGGCCGCCACGGCGGCCGCCTGGTTCCTCGGCGGCGAGGACGGACCCGTGCTGCCGGGTCCGGTGTGGTACGCGCTCAAGACCCTGGCGGTGATGGCCCTGCTGGTCGGGGTGGGGCGACGCTGGCCGGTCGTGCGACCCGAACGGTTCGCCGACGTCGCCTGGGTGGTCCTGCTGCCCGCGACGATCCTGCAGTCCGCGGTGGCCGCGGTCCTCGTGCTGGGAGGTTTCTACCGATGAMTETTWTSPGAGLAVAGVAVLLGLVLAAMDAVARRAPASEGRSAERAVTPVRDVARLLLERRRTTLAPDRLLRTVAVLAIPVLALLSAAVLPFGGRSVVSTSADLVWFNAAEALLWAAVWLLGWGPNAAHALVGAYRFLAQGLAYELPLMFAIITVGVGAGSLRATDVVAAQAGGAWFVWTMPVAFVVFLLGAAAFAFWGPFAAPAGADVAGGVLAEVSGVDRLLVQVGRAVLLGVAAATAAAWFLGGEDGPVLPGPVWYALKTLAVMALLVGVGRRWPVVRPERFADVAWVVLLPATILQSAVAAVLVLGGFYRPGPT0026825_3420DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026825-nuoH-K00337NANA
AK018_022661089hypothetical proteinGTGGGTCTGAGACGGCGTCTGGTCCGCTTCGCCCTGGCACGTCCGCGCGTGCTGCTGGTCGTCGCCCCGGACGGGGACGGGGTCTGGCGCGACGTGGAGTCCGCGCTGCTGCGGCGCGGCTGGTCGACGGCGAGCTCGCCGGCCGACGCCGATCTCCTCGTCGTGGCCGGGAATCCCGGTCCCGAGCTGACGGCGGCCGTCGACGTGCTCTGGTCCCAGGTCCCGGCGCCCCGGTCCTGCGTCCGGCTCCCGGCCGCGAACGACGTCGGTGGCGCCCTGGACGTTGCCGCGGAGTCCCTGCAGGCGTGGGGGACGCAACGCGCCTGGGCCTCCGGACCGGACGGGGATCCCTGGCTCGGGCGCGGACCCGACGAGGAGGGCGACCACGAGGGCCACGGGGGTCACGAGGGTCACGAGGGTCACGAGGGTCACGAGGGTCACGGTGATCACGGGGGTCACGGGGGTCACGGGGGTCACGGCGGTCACGAGGACCACGGGGGCCACGAAGGTCACGGCGACATGATGGTGGCGGGCCTGCCCATGGCGTCCTCGGCGCCGGACCGCGACGGCCTCGAGCTCGAGGTGCTGTCCCTGACGCTCGGTCCCTGGATGCCCGGGGCCCCCGACGGACTGGTCGTGCAGGCCTCGATGCAGGGTGACGTCCTGACCGGGGTGCACGTGCGCTGGGCCGACGCCGGTGCCCGTCCACTGCCGGGCGGAGCGGTGCGGGCCCTGGACGCCGTGTGCCGCGTCCTGACCCTGACCGGACCCGAACGGCTGCTCGACCGCGCCCGGCGCGCCCGTGACGCCGTCGCGCAGCACGACCCCTCCGGGGCGGGCGGGGCCGTCCGGCTGGGGCGCGACCTGCGCCGCTCGCGCACGCTGGCCTGGTCGCTGCGCGGGATCCCCGCGCCCGGGGGCGGTGACGTGCTGGACCGCCTGCACACCTGGTGCGACGTGCTCGACGGCGCGCGACCGCCGACACCGGTCGCCCCCGGCAGCGTGGCCGCGTCCCTCGAGGGCGCCGAGCTCGCCGCGGCGCGCCTCGCCGTGGCCTGCGTCGACGTGGCTCCAGGGGAGCACCCATGAMGLRRRLVRFALARPRVLLVVAPDGDGVWRDVESALLRRGWSTASSPADADLLVVAGNPGPELTAAVDVLWSQVPAPRSCVRLPAANDVGGALDVAAESLQAWGTQRAWASGPDGDPWLGRGPDEEGDHEGHGGHEGHEGHEGHEGHGDHGGHGGHGGHGGHEDHGGHEGHGDMMVAGLPMASSAPDRDGLELEVLSLTLGPWMPGAPDGLVVQASMQGDVLTGVHVRWADAGARPLPGGAVRALDAVCRVLTLTGPERLLDRARRARDAVAQHDPSGAGGAVRLGRDLRRSRTLAWSLRGIPAPGGGDVLDRLHTWCDVLDGARPPTPVAPGSVAASLEGAELAAARLAVACVDVAPGEHPNANANANANA
AK018_02267339ndhCNAD(P)H-quinone oxidoreductase subunit 3, chloroplasticATGGCCGCGGTCGGGCTCGTGCTGGGGATCGCGCTGCTCGTGCTGGGTCTGCGCGGTGCTGCCGTCGCCCTGGCCGTGGCTCGCACGCCGGCCCTCAGCCTGCCGTTCGAGTCCGGGACGATCCCCGCCCAGCACGCCGTGTCGCGGTTCCACGTCCGCTGGTACGCCGTGAGCCTGCTGTTCCTCGCCTTCGACATGGAGATGATCTTCATGTACCCGTGGGCCGTCGTGATCGCGCAGATGGGCGCGACCTCGGTCGTGGAGATGTTCGCGTTCCTCGCGGTGCTGCTGGTGGGGGTCCTCTACGCCTGGCGCGAGGGAGCGCTGCGGTGGGTCTGAMAAVGLVLGIALLVLGLRGAAVALAVARTPALSLPFESGTIPAQHAVSRFHVRWYAVSLLFLAFDMEMIFMYPWAVVIAQMGATSVVEMFAFLAVLLVGVLYAWREGALRWVPGPT0026780_2994DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026780-nuoA-K00330NANA
AK018_02268894hypothetical proteinGTGAGGCCAGCATCTCGGGCGATCCGCGCCGGCGACCGCGGACGTAGGCTCGGAGCATGGGTACGGCACCGACCCGGCTCGTCCTGCTGCCCGGCTGGGCCGAGACGGGCGGGGTGTTCGCACGGCTCCTGCAACGGCTGCCCGCGAGGGTCGCGGCCGAGGTGGTCGAGCTCGCCGACCCGACGATCACGGACTGGTCGGTCCGCGCCCTGGCGTCGCGCGTCGCCGACGCGCTGGACAGAGCCCGGCCGACGGCGGCACGCACCGTCGTGCTCGGGACGTCCAGCGGTGGCTACGTGGCCCAGCAGCTCGCCGTCGAACGCCCGGACCTGCTCGACGGACTCGTCCTGGTCGGCTCACCCGTCGACCTGCGGAGCAGGCCGCCGTTCGCCGACGACGTCGAACGGCTCACCGACCCCGTCGACCCGGCGTGGGTCCGCGCGTCGCTGGACTGGTTCGGCACGGGCGCCACGATCCCCGCGGACTTCCTCGCCGCCCGAGCTGCGGAGTCGGCCGCCCTGGGCGCGCGCGTCTGGCGCGACTCGTTGCGCGGCCTGGTCGACTCCGAACCGCCGCTGTCCACGGGGACGATCGAGGTGCCCACGCTGGTCGTCGGCGGGGCGCTGGACGAGCTCGTCGGCCCGAGCCACGAGCGACTCCTGGCGGCCCTCCCCCGGGCCCGCGGCACGGTGTACGCGCGCACGGGTCACCTCGTGCTCTGGGAGCGCCCGGACCGGGTCGCGGGGGGGGGGGGGGGGGGGGGGCCACCCCCGCGCGGGGGCGCGCGCCGGCCCCCCGGGGGGGGGGGGGGGGGGGGGCGGCCCGGGGGCCCCCNNNNNNNNNNTCGCGGCCGACGTCGTCGACTTCCTCGACGACGTCGGCCGCGACGCGTGAMRPASRAIRAGDRGRRLGAWVRHRPGSSCCPAGPRRAGCSHGSCNGCPRGSRPRWSSSPTRRSRTGRSAPWRRASPTRWTEPGRRRHAPSCSGRPAVATWPSSSPSNARTCSTDSSWSAHPSTCGAGRRSPTTSNGSPTPSTRRGSARRWTGSARAPRSPRTSSPPELRSRPPWARASGATRCAAWSTPNRRCPRGRSRCPRWSSAGRWTSSSARATSDSWRPSPGPAARCTRARVTSCSGSARTGSRGGGGGGGHPRAGARAGPPGGGGGGGGPGAPXXXXAADVVDFLDDVGRDANANANANANA
AK018_02269354yhdNCOG0667Aldo-keto reductase YhdNGTGTACCGCGAGCGGTCCGCGGCGAACGTCCGCGCCGCGGCCGAGGCGTCCCTGCAGCGCTTGGGCACCGACCGCATCGACCTGTACGACGCGCACTTCGACGACGCCGACACCCCGGTGGCGGAGACCGCTGCCGCGTTCTCCCGCCTCGTCGACGACGGCCTGGTCCGCGAGATCGGGATCTCGAACGACAGCGCCGAGCGGATCGACGCGTGGTTCGCCGCGGTCGAGGCCGACGGGCTGCACCGCCCGGTCGCCCTGCAGCCGCACGACAACCTCGTCGAGCGAGGCTTCGAGGAGGCCGTCCGGGGCGCCGCGCTGCGGCACGGCCGGCTCACCGACGCCTCCGCCTGAMYRERSAANVRAAAEASLQRLGTDRIDLYDAHFDDADTPVAETAAAFSRLVDDGLVREIGISNDSAERIDAWFAAVEADGLHRPVALQPHDNLVERGFEEAVRGAALRHGRLTDASAPGPT0017540_1373DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017540-yajO|iolS-K23107NANA
AK018_022701350aqdA2_1putative N-octanoylanthranilate hydrolase AqdA2ATGACCCAGGAGACCACGACGGCGTCCGGCGCGGGGTCGCACGACGGCGCGGCACGCGTCGTGCAGGCGCCGGCGGGTCGGTTCGCGGCCCGCGTCGGACCCGACGTGCTGCACGCCGGCGGGATCCGCTACGCCCGGGCCGCTCGCTTCGACGCACCCGTGGACGAGCCACCGGCCGCGGGCCCGGTCGACGCGACCGGCTTCTCGCCGTCGTGCCCGCAGAATCCCGACCCGGCCGGGCTGGACGTCTTCGGCCCGGGCTCCGCGCGACCGCTGCCACCGTCCGAGGACTGCCTGCGGCTGACCGTCACCGCACCCGTCGACGCCTCCCCGGGCGAGAACCTGCCCGTCGTGGTCTGGATCCACGGCGGGTCGTACGTGTCCGGCGCCGGGGACGCGATCAGCTACGACCCGACCCTGCTGGTACGCGAGCAACGCGTCGTCGTGGTCGCCGTGACGTACCGGCTCGGCGTGCTGGGGTTCCTCGGCGACGCCGAGCGTCCGGCGAACCTCGGTCTGCTGGACATGCTGGCCGCGCTGCGCTGGGTGTCGCGCAACGTGGCCGCGTTCGGGGGCGACCCCGGGCGCGTGACGGCGATGGGCGAGTCCGCCGGCGCGGACGCGATCGCGCACCTGATGGTCGCCGACGGCGCCTCGGGGCTCTTCCGGCGGGCGATCGTGCAGAGCCCTCCGCTGGGGATCTCCCGACGCCGCGCGGCGATGTCGGCGACCCTGGCCGCCGAGGTGCGCACTGTCCGCGACGACGCACCCCTGGAGGACCTGCTCGCGGCCCAGCACCGCGCCGCGCGTCGTGTGCTGCCCCGCTACGGGCTGCGCGCGGCGATGCCGTTCGGCGCGCAGTACGGGTTCGCCCCGCTGCCGCCGGAGGACCACCTGGCCTCCGCCTGGTCGCGGGTCGCCCCGCACGTCGAGGTCCTGGCGGGGACCAACGCCCGCGAGGCCGCGTTGTTCGTCGACGTGGCCCTGCCCCGGCCGGTCGTCCCGGGCCTGGGCCGCGGGCTGCGCGAGGCGGCGGTGCACGAGCTGACCCGGACGGTGTACGGCCGCGCGGTGGACCGGTTCGTCCAGCGCCACCGCCGCGCCGGGGGCAGGGCGGCGCGGTACACCTACCTCGGCGGCGACGCGCACCACCCGCTCCGGGCGGCGCACGCCACCGAGCTGCCGCTGCTGCTCGGCTTCCCCGACGGCTGGCGCGGGGTGCCGGTGGTGGCGGGCCGCTCCGACGCGGAGCTCCTCGACACCGGGCGGACGCTGCGCGCCGCCTGGGCCGAGTTCGCCCGCTCCGGCCGTCCTCCCACCGACGTCCCCGCGCTGCTGCGCGTCGACTGAMTQETTTASGAGSHDGAARVVQAPAGRFAARVGPDVLHAGGIRYARAARFDAPVDEPPAAGPVDATGFSPSCPQNPDPAGLDVFGPGSARPLPPSEDCLRLTVTAPVDASPGENLPVVVWIHGGSYVSGAGDAISYDPTLLVREQRVVVVAVTYRLGVLGFLGDAERPANLGLLDMLAALRWVSRNVAAFGGDPGRVTAMGESAGADAIAHLMVADGASGLFRRAIVQSPPLGISRRRAAMSATLAAEVRTVRDDAPLEDLLAAQHRAARRVLPRYGLRAAMPFGAQYGFAPLPPEDHLASAWSRVAPHVEVLAGTNAREAALFVDVALPRPVVPGLGRGLREAAVHELTRTVYGRAVDRFVQRHRRAGGRAARYTYLGGDAHHPLRAAHATELPLLLGFPDGWRGVPVVAGRSDAELLDTGRTLRAAWAEFARSGRPPTDVPALLRVDPGPT0030515_2648PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TANNIN_DEGRADATIONPUTATIVE-TANNIN_DEGRADATION-1,PGPT0030515-pnbA-K03929
AK018_02271819dasC_3COG0395Diacetylchitobiose uptake system permease protein DasCATGTCGCCGACGACCACCTCCCGCACGCTGCCGCACACGATCCTGGGGATCGTGCTCCTGGCCTTCATGCTGTTCCCGGTCTACTGGATGGTGAACGTCTCGCTGCAGGGCGGCAGCACCGCGGCCAGCAGCACGTTCCTGCCCACCGACGTCACGTTCGACGGCTACCGCACCGCCATCGAGGACCAGACCGGCAACCTGCTCACCAGCATCGTCGTGGCGCTCGGCGCCGTGGCGGTCTCCCTGGCCGTCGCCACGCCGGCCGCCTACGCCGTGTCCCGGTTCCGGCTGCGCGGCCTGGGGGTCTTCCTGTTCGCGCTGCTGCTGGCCCAGATGATCCCCGGCATCGTCATCGCGAACTCGCTGTACACGCTGTTCAACGACCTCGGCCTGCTGAACTCCTACGCGGGGCTCGTCCTGGCCAACGCCACCCACGGCATCCCGTTCGCGGTCCTCATCATGAGTGCCTTCATGCGGTCGATCCCGCCCGCGCTGACCGAGGCGGCCCGCGTCGACGGCGCGAGCCACTTCCGCGCCTTCTGGTCGATCATCGTGCCGGTGAGCAAGAACTCCCTCATCACCGCCGGGCTGTTCTGCTTCCTGTTCGCCTGGAGCGACTTCATGTTCGGCCTGACGCTGACCACGGGCGCGGACATCAAGCCGGTCACCCTCGGCATCTACGACTACCTGCAGGGCAACGTGCAGAGCTGGGGACCCGTCATGGCGACCGCCGTGCTGTCGTCGATCCCGGCGATCGTGCTGCTCGTGCTGGCCCAGCGGTACATCGCCGCCGGGGCGATGGGCGGCGCCGTCAAGTAGMSPTTTSRTLPHTILGIVLLAFMLFPVYWMVNVSLQGGSTAASSTFLPTDVTFDGYRTAIEDQTGNLLTSIVVALGAVAVSLAVATPAAYAVSRFRLRGLGVFLFALLLAQMIPGIVIANSLYTLFNDLGLLNSYAGLVLANATHGIPFAVLIMSAFMRSIPPALTEAARVDGASHFRAFWSIIVPVSKNSLITAGLFCFLFAWSDFMFGLTLTTGADIKPVTLGIYDYLQGNVQSWGPVMATAVLSSIPAIVLLVLAQRYIAAGAMGGAVKPGPT0016540_8989DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_02272960melD_4COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACCACGACCCTTGCCGCCGGACCGACGGGCGCCAGCGCGCCGCCGCGGTCCGCCCCACCGGCACGCCGGCGCGCCCGACGGCGCGAGCTCACCGCCCAGTGGCTCTTCCTCGTGCCCGCGATCGCCTACGTGCTGGTCTTCTTCGGCTACCCGATCGTCAAGAACCTCGTCATGGGGTTCCAGGACTACTCGGTGCGCACCTTCGTCACCGGCGAGGCGCCCTGGGTCGGTCTGGCGAACTACGCCGAGGTCGTCTCGAGCGGGATCTTCCAGACAACCGTGGTCAACACGGTGCTGTTCACCCTGGGGTCCATCGCCGGCCAGTTCGTCATCGGGCTGCTGTTCGCGCTGTTCTTCAAGCGCCGGTTCCCGCTGAGCAACGTGCTGCGGTCGCTGCTGCTCCTGCCGTGGCTGCTGCCGATGATCGCCGGCAGCGCCGTGTGGCGCTGGATCCTCGACCAGGACGGCGGCATCCTCAACCAGACCCTGCAGGGCGTCGGGATCATCGACGACCCCGTGCGCTGGCTGACCAGCCCGGACGTCGCGCTGGTCGCGGTGATCCTCGTGAACGTCTGGGTCGGCATCCCGTTCAACATGACGCTGCTGTACAGCGGGCTGCAGAACATCCCCGACGAGCTCTACGAAGCCGGTGCCCTCGACGGCGCCACGGGCTGGAAGGCCTTCCGGCACATCACGTGGCCGAGCCTGCGCCCCGTCGTCAACGTCGTGCTCGTGCTGGGCGTGATCTACACGCTCAAGGTGCTCGACATCATCCTGGGACTCACGGGCGGGGGACCGGCGAACGCCACGCAGACGCTCGCCACCGACTCCTACCGGCGGTCGTTCCAGGAGTTCTCCTTCGGCACCGGGGCCGCGGTGAGCAACGTCCTCATCGTCGTCTCCCTGGTGTTCGCCGTCGTCTACCTGCGCGCCAACCGCCGCGCCGAGGATGAGTGAMTTTLAAGPTGASAPPRSAPPARRRARRRELTAQWLFLVPAIAYVLVFFGYPIVKNLVMGFQDYSVRTFVTGEAPWVGLANYAEVVSSGIFQTTVVNTVLFTLGSIAGQFVIGLLFALFFKRRFPLSNVLRSLLLLPWLLPMIAGSAVWRWILDQDGGILNQTLQGVGIIDDPVRWLTSPDVALVAVILVNVWVGIPFNMTLLYSGLQNIPDELYEAGALDGATGWKAFRHITWPSLRPVVNVVLVLGVIYTLKVLDIILGLTGGGPANATQTLATDSYRRSFQEFSFGTGAAVSNVLIVVSLVFAVVYLRANRRAEDEPGPT0016535_2117DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_022731209malX_2COG2182Maltose/maltodextrin-binding proteinGTGCGACGAACCCACACCGCCGTCGGTGCGGCGTCGGCCGCCGCCGTCGTCCTGAGCCTGTCGGCCTGTGCCGACCAGGGCCGGGCCGACGCCGACACGCTGGTCGTGACCGACACCATGTCGGCGACCAGCGCGCCCATCTACGAGGAGATCTACGACGCCTGCGCCGCCGAGGTGGGCATGCAGGTCCGGGCCAACCACGTGGCAGGCTCCGGGCTCATCGCCACCGTGCTGCAGCAGGCGTCCTCGCGCACGCTGCCCGACGTGCTCATGCTCGACAACCCGGACGTGCAGCAGATCGCCTCGTCCGGCGCGCTGAGCCCGCTGGGCGACTACGGCATCACCGGCGACGGGTTCCCGCAGGGCGTGATCGACGCCGGGACCTACGAGGGCAGGCTGTACGGCATCGCCCCGGTGGTCAACAGCATCGGGCTGTTCTACGACGCCGAGGCCCTGGCCGAGGCCGGCCTCGAGCCCCCGCGGACGTGGGATCAGCTGCGTGCGGCCGCCGCCGAGCTGACCACCGAGGACCGGTACGGCATCGCGTTCAGCGCGACCAACTCGTTCGAGGGCACCTGGCAGCTCCTGCCGTTCCTGTGGAGCAACGGCGCCACCGAGGACGACCTGGACTCGCCCGAGGCGGTGCAGGCGCTCGAGCTCGTCGACGCGCTGGTCGCCGACGGCTCGGCGTCCGCCAGCGTCGTCAACTGGTCGCAGAACGACGTCAACGACCAGTTCCTCGCCGGCAACGCCGCGATGATGGTCAACGGACCGTGGAACATGCCCAGCCTCGAGGCCGCCGAGGGTCTCGAGTACGACTCGGTCCCGCTGCCGGTCCCCGCACCCGGTGACACGCTCGTGGCGCCCCTCGGCGGCGAGGCCTTCACCGTCCCCGACACGGGCGACCCGGACAAGATGGCCCGGGCCGGTGAGTTCGTCGACTGCGTCGTCGGCGGGGAGAACCAGCTGACGATGGCCACCGGCCGCGGGGCCGTGCCGGCCGACAGCGCGGTCGCGGCGGAGGCCGCACGGACGAACCCGACCGTGGCCACGTTCGTCGACACCGTGCAGACCGCCCGCGCCCGCACCGCGCTGCTGGGCCCCGACTGGCCGCGCGCCGCCACCCAGATCTACACCGCCGAACAGCTCGCCCTGACCGACACCGAGTCCCCGGCGGAAGCTCTCGAGCGCGTGGCGGGACAGGACTGAMRRTHTAVGAASAAAVVLSLSACADQGRADADTLVVTDTMSATSAPIYEEIYDACAAEVGMQVRANHVAGSGLIATVLQQASSRTLPDVLMLDNPDVQQIASSGALSPLGDYGITGDGFPQGVIDAGTYEGRLYGIAPVVNSIGLFYDAEALAEAGLEPPRTWDQLRAAAAELTTEDRYGIAFSATNSFEGTWQLLPFLWSNGATEDDLDSPEAVQALELVDALVADGSASASVVNWSQNDVNDQFLAGNAAMMVNGPWNMPSLEAAEGLEYDSVPLPVPAPGDTLVAPLGGEAFTVPDTGDPDKMARAGEFVDCVVGGENQLTMATGRGAVPADSAVAAEAARTNPTVATFVDTVQTARARTALLGPDWPRAATQIYTAEQLALTDTESPAEALERVAGQDPGPT0016545_10889DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_022741011ccpA_5COG1609Catabolite control protein AGTGGTGACCATGCAGGACGTGGCCGACCGGGCCGGCGTCTCCCTGACGACGGTCTCGTTCGTCGTCAACGGCACCAAGCCGGTCGCCGAGCGGACGCGGGCGCGGGTGCAGGCGGCCATGGCCGACCTCGGCTACCGTCGCAACGTCGTGGCCCGTGCGCTGGCGAGCCAGCGGACCCGGATCGTGGCGCTCGTGTTCCCGGCGCTCGAGCACGGCCTCGGCGGCGCGGCCCTGAGCATCGTCACCGCGGCGGCCTCCGCCGCCACCCGGCGGGGCTTCAACGTCGTGCTGTGGCCCGTCACGGGTGCCGACCAGCTCGAGGACTACGTCTCCGGGGGCCTCGCCGACGGCGTGCTGCTCATGGAGGTCACCGCGCAGGACCCGCGCGTGGAGGTGCTGCAGCGCCGCGCCGTCCCGTTCGGGCTCATCGGTCGCACCGAGGACGTCGAGGGTCTGTCGTACGTCGACATGGACTTCGACGCCATGCTCGCCACCGGCCTCGACCACCTCGTCGGACTCGGCCACGAGCGGGTCGCGCTCTTCGTCGGGGACCTCGGCCCCACGGCTCCGGCGGGCTACGGCCCGGTCGCCCGCACGGAGGCCGCCTACCTCCACGAGACCGCCGCGCGCGGGCTCGATCCCGTCGTGGTCCGCGGTGCCCAGGACCCCCGCTCCGGGCACCGCACCGCCGACGAGCTGCTCGCCCGTCACCCCGAGGTCACGGCCGTGCTGGCCCTCAACGAGGCCGCGCTGTCAGGCTTCGTCAACGGGCTCGTGGCCGGTGGACGCTCGGTCCCCGACGACGTCTCCGTGCTCGGCGTCGCCACCTCCGCCGAGGCCGTCTCCACCGCCGACCCGCCGGTCTCGGCCGTCGTCGCCCCCGGGCACGACCTCGGCAGCCGTAGCGTCGACGCCCTGATCGACCGCCTCGCCGAGCCGACGGCGTCCCCGCTGCAGCTCCTGCTCGACGGCGCGCTCCAGCCGGCCGGATCCACCGCACCGCCGCGCTGAMVTMQDVADRAGVSLTTVSFVVNGTKPVAERTRARVQAAMADLGYRRNVVARALASQRTRIVALVFPALEHGLGGAALSIVTAAASAATRRGFNVVLWPVTGADQLEDYVSGGLADGVLLMEVTAQDPRVEVLQRRAVPFGLIGRTEDVEGLSYVDMDFDAMLATGLDHLVGLGHERVALFVGDLGPTAPAGYGPVARTEAAYLHETAARGLDPVVVRGAQDPRSGHRTADELLARHPEVTAVLALNEAALSGFVNGLVAGGRSVPDDVSVLGVATSAEAVSTADPPVSAVVAPGHDLGSRSVDALIDRLAEPTASPLQLLLDGALQPAGSTAPPRPGPT0014791_184DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_022752319yicI_2COG1501Alpha-xylosidaseATGAAGTTCACCGACGGTTTCTGGCACGCCCGCCGAGGGGTCGACATCCACTACGCCCGCGAGGTGGACCGGATCACGGCCCGCGAGCGCGAGCTGCACGCGGTCTCCCCGACCCGGGTGGTCCGGCACCGCGGAGACACCCTCAACCTGCCGGTCCTGACCACGTCCGTCTCGGCGCCGATGGAGAACGTCGTCCGGGTCCGCCACACCCACCACAAGGGCGCCGGCGAGCCGTTCCGGTTCGAGGTGGACGAGGTCGACGGGGCCGGGGAGGCCGCCGTCGTCGACGGCGTGGGGACCCTCACCTCGGGCGAGCTGTCCGTCCGGCTCGCGGTCGGCAAGACCTGGGAGCTCGACTTCCGTGCCGGCGGCCGGTCGATCACGCGCTCGGGCGGCAAGTCCGCGGCGTGGGCGGACGTCTCCCCCGACGCCGCCGTGGACCACGGCGCCACCCAGCTCGAGCGCGACGGCCGGACCAGCTACATGTTCGAGCAGCTCGACCTCGGTGTGGGCGAGCTGGTCTACGGCCTGGGCGAACGGTTCGGCCCCGTGGTCAAGAACGGGCAGACCGTCGACATCTGGAACGAGGACGGCGGCACGTCCAGCGAGCAGGCCTACAAGAACGTGCCGTTCTACCTCACGAACGCCGGGTACGGCGTCTTCGTCAACGACTCCGGGCACGTCTCCTACGAGGTGGGCTCCGAGGCCGTCGAGCGGGTGCAGTTCTCCGTGCCCGGCGAGACGCTGGAGTACTTCGTCGTCTACGGCCCGGACCCCAAGTCGATCCTCGAGCGGTACACGGCGCTGACCGGGCGGCCGGCCCGCGTCCCGGCGTGGTCCTACGGGCTGTGGCTGTCGACGTCGTTCACGACCGACTACGACGAGGAGACCGTCACCTCGTTCATCGAGGGCATGGCCGAGCGGGAGATCCCGCTGAGCCTGTTCCACTTCGACTGCTTCTGGATGCGCGAGTTCACCTGGTGCGACTTCGAGTGGGACGAGCGCGTCTTCCCCGACCCCGAGGGCATGCTGGCCCGGCTGCACGACCGCGGCCTGCGGGTGTGCGTCTGGATCAACCCCTACATCGCCCAGCAGTCCCCGCTGTTCGACGAGGGGATGGACGCCGGGTACCTGGTGAAGAACCGCGACGGCAGCGTCTGGCAGTGGGACCGCTGGCAGGCGGGCATGGCCCTGGTGGACTTCACCAACCCCGAGGCCACGGCCTGGTACCAGGACAAGCTGCGCCGTCTGGTACGCCAGGGGGTCGACGCCTTCAAGACCGACTTCGGCGAGCGCATCCCGACCGACGTGCAGTACTTCGACGGCTCCGACCCGGAGCGCATGCACAACTACTACACGCATCTGTACAACCAGGCGGTCCACGAGGTCCTCGCCTCCGAGCGCGGGGTCGACGACGCCGTGCTGTTCGCCCGCTCGGCCACCGCCGGCGGGCAGCAGTTCCCGGTGCACTGGGGCGGCGACAACACCGCCTCGTACGTGTCGATGGCCGAGTCCCTGCGCGGCGGGCTCTCCCTGGCCTGCAGCGGCTTCGGCTACTGGAGCCACGACATCGGGGGCTTCGAGATGACCCCGGACGCCGGCGTGTTCAAGCGCTGGGTGGCCTTCGGACTGTTCTCCAGCCACTCGCGCCTGCACGGCAGCGGGTCCTACCGGGTCCCGTGGATGTTCGGCGAGGACGAGTCCGACCCGACCGGCGCCGTCGCCGTGACCCGGAAGTTCGCACGGCTCAAGAACCGCCTGGCGCCCTACCTGGTCGCCACGGGCGAGGAGGCGCACCGGCGCGGGACGCCCATGATGCGACCGATGCTGCTGGAGTTCCCCGACGACCTCATGGTGGCGCACCTGGACCGGCAGTACATGCTCGGCGCCGACCTCCTCGTCGCCCCGGTCTTCGGCGCCGAGGGCCACGTGGACGTCTACCTGCCCGCCGGCGAGTGGGCCGGCCTCCTGACGGGCGAGCGCGTCCACGGCGGCGGCTGGGTCCGCGAGCAGCACGACTTCGACTCCCTGCCGGTCTACCTGCGCCCCGGCGCCGTCGTCCCGCTCAGCCGGCACGAGGACCGCCCCGACGCCGACCACCTCGACGGGCTGACGCTGCTCGTCCACGCCGGCCCCGAGCCCGACTGGTCACGCACCGTCGAGGTCGCCGGCCCGGACGGCACGGCCGTGCCCTTCACCGTGGCCCGCGAGGACGGCGTCCTGGTCGCCCGGTCGACGCAGGACGCCTCCTGGTCGGTGCAGGTCGTCGGCGGCGAGACCGTCGCGGCCACCGGCGGGCGGGCGGAGGTGTCCGCATGAMKFTDGFWHARRGVDIHYAREVDRITARERELHAVSPTRVVRHRGDTLNLPVLTTSVSAPMENVVRVRHTHHKGAGEPFRFEVDEVDGAGEAAVVDGVGTLTSGELSVRLAVGKTWELDFRAGGRSITRSGGKSAAWADVSPDAAVDHGATQLERDGRTSYMFEQLDLGVGELVYGLGERFGPVVKNGQTVDIWNEDGGTSSEQAYKNVPFYLTNAGYGVFVNDSGHVSYEVGSEAVERVQFSVPGETLEYFVVYGPDPKSILERYTALTGRPARVPAWSYGLWLSTSFTTDYDEETVTSFIEGMAEREIPLSLFHFDCFWMREFTWCDFEWDERVFPDPEGMLARLHDRGLRVCVWINPYIAQQSPLFDEGMDAGYLVKNRDGSVWQWDRWQAGMALVDFTNPEATAWYQDKLRRLVRQGVDAFKTDFGERIPTDVQYFDGSDPERMHNYYTHLYNQAVHEVLASERGVDDAVLFARSATAGGQQFPVHWGGDNTASYVSMAESLRGGLSLACSGFGYWSHDIGGFEMTPDAGVFKRWVAFGLFSSHSRLHGSGSYRVPWMFGEDESDPTGAVAVTRKFARLKNRLAPYLVATGEEAHRRGTPMMRPMLLEFPDDLMVAHLDRQYMLGADLLVAPVFGAEGHVDVYLPAGEWAGLLTGERVHGGGWVREQHDFDSLPVYLRPGAVVPLSRHEDRPDADHLDGLTLLVHAGPEPDWSRTVEVAGPDGTAVPFTVAREDGVLVARSTQDASWSVQVVGGETVAATGGRAEVSAPGPT0019340_667DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0019340-xylS|yicI-K01811NANA
AK018_02276924Formate dehydrogenase, mitochondrialATGAGCGCCCGCCCGGCGATCAGCGCCGCCCCGGAGACGCCCGCGTGGGTTCCCGATGCCGTCGCGGCCGCGGGCGCCCGCCTCGTCCCGCTCGACGCAGAGACCGAGGGCCTGCTCTGGTTCGGACCGCTCGGCGTCGACGGGTTGGGTCCGGCGTTGCGGTCGGCGCCCCGGGCCCGCTGGGTGCAGCTCCCCTCCGCGGGCGTCGACGCCGCGCTCGACGCCGGGCTGATCGACGCCGACCGCACCTGGACCTCGGCCAAGGGATCGTTCGCCGAGCCCGTCGCCGAGCACGCCCTGGCCCTGACCCTCGCCGCGCTCCGGCGGTTGCCCGAACGTGCGCGGGCCCGGACCTGGGGCGTCGAGGCCGGCCTGTCGTTGTTCGACGCGCACGTGCTCGTCCTCGGCGCCGGCGGCATCGCCCGGACGTACCTGGAGCTGCTGGCCCCGTTCCGGACCCGCAACGTCGTGGTCCGTCGGCGGCCCGACCCGGTCCCGGGCGCCGACCGGGTCGTGACCGGCGAGAGCCTGATCGACGAGCTCGGACGGGCGGACGTCGTCGTGCTGGCCGCCGCGCTGACCGACCGGACCCGGGCGCTGCTGGGCGCCGACGAGCTGGCGGCGATGCGCCCCGGCGCGACGCTGGTCAACATCGCCCGCGGCGAGCTGGTCGACACCGACGCCCTCGTCGCGGCCCTGCGCTCCGGCCGGGTCGGGGCGGCAGCGCTCGACGTGACCGATCCCGAGCCGCTGCCGGACGGACACCCCCTGTGGGTGCTGCCGACCGCTCTGGTGACCCCGCACACGGCCGACACGCCGGAGATGGTCGAGCCACTGCTGCGCCGACGTGTCGAGGAGAACCTGCGGCGGTTCGTCGCCGGGGACACCCTCGAGGGCGTCGTCGACCCGACGACGGGGTACTGAMSARPAISAAPETPAWVPDAVAAAGARLVPLDAETEGLLWFGPLGVDGLGPALRSAPRARWVQLPSAGVDAALDAGLIDADRTWTSAKGSFAEPVAEHALALTLAALRRLPERARARTWGVEAGLSLFDAHVLVLGAGGIARTYLELLAPFRTRNVVVRRRPDPVPGADRVVTGESLIDELGRADVVVLAAALTDRTRALLGADELAAMRPGATLVNIARGELVDTDALVAALRSGRVGAAALDVTDPEPLPDGHPLWVLPTALVTPHTADTPEMVEPLLRRRVEENLRRFVAGDTLEGVVDPTTGYNANANANANA
AK018_02277285hypothetical proteinATGGTGCTCGGCCCCGTGCGCGGGGTCGTCGTCATGGGGGTGTCCGGCTGCGGCAAGTCGACCGTCGGCGCCCTGCTCGCGGCCCGCTGGCACGCACGGTTCGTGGACGCCGACGACCTGCCGGACCGACCACTTCATGCCCCCCGCGCTGCTCGACCCCAGCTCGCCACCCTGGAGCCGCTCGCGTCCGACGAGTCCGGCACGACCGTGGACGTCACGACCGCGCCGGAGACCGTGGTCGACCGGGTCGCGGCGTGGTCGGCACGGCTGCCCGGGGTCAGCTGAMVLGPVRGVVVMGVSGCGKSTVGALLAARWHARFVDADDLPDRPLHAPRAARPQLATLEPLASDESGTTVDVTTAPETVVDRVAAWSARLPGVSNANANANANA
AK018_02278582hypothetical proteinGTGCTGGCGCTCCTGGCCCTGGCCGCCGCGTGCCTGGCACTGGCGCCGCTCGTGCTGCCCGACTCCTACGAGGTGCTGCGGCAGCCGGTGTCCCGTGCCGGTGCCCAGGGCGTGCCCGGGGCGTGGCTCGCCCGCACCGGGTACGTGCTGCTCGGTCTCGCGGTGCTCGTCGAGGCCGCACGGGCGGGGGAGGCGTGGGGGCCCGTGGGCCGCGCCGCCCACGCCGTCTACGCCACGGCCATGGTCTGCCTCGCCGTGTTCTCCGCCAGCCCCTGGTACGGCGGGCCGGGGGACACCGTCGAGGCCTCCCTGCACACCTGGGCCGCGACCGTCGCGGTGGGGGCGTTCTTCGTGGGCGTGCTCGGGGTGCGTATCCGGCGAGGTCGCCGGCCCGGACGGATCGCGGTGCTGGACGTCGTCGCGCTCGCCGGCGCGCCCGTGCTCGCCCTGGCCGCGGAGACGATGCCCGGGGGTGCCGGGGTCACCGAGCGACTGATCTTCGTCATCGGCTTCACGTGGTACGGCGTCGAAGCGGTGCGGCTCTCGCACCCGGACGCCCCGGGGCGCGTCCGCGAGATCTGAMLALLALAAACLALAPLVLPDSYEVLRQPVSRAGAQGVPGAWLARTGYVLLGLAVLVEAARAGEAWGPVGRAAHAVYATAMVCLAVFSASPWYGGPGDTVEASLHTWAATVAVGAFFVGVLGVRIRRGRRPGRIAVLDVVALAGAPVLALAAETMPGGAGVTERLIFVIGFTWYGVEAVRLSHPDAPGRVREINANANANANA
AK018_02279429hypothetical proteinATGGCCACCTTCTCCTCCGTCACGCGTACGCACGTGCTCTCGGCGATCGCCGAGCACGACGACCGGGGCGCCTCCGCGTTCCTGTCCGTCTACGGGTTCTCCCCGACGCCCGGCGTCACCCTGACGCACGACGGCGAGACCTACGACGCCACGGCGATCCTCGCCGTCGCGCACCGGTACGCCACCGGGCGGGCCGCCCTGCCCGAGGAGATGACCGGCGGCAAGGTCGCCGTCGGGACGCTGCTGGGCAAGCGCGGTTTCGACGTGGCCGGCGGGCGGCCGGCCACGACGTCGGCACGCCGCAGCACCACGAGGGCCCCGCGCGCCGCCGCGCCGCGCAAGGCGCCCGAGCCGGAGAAGCCGACGCCCGTGTGCCCGTCGTGCTTCATGGCGCTGCCGGCCACCGGAGTCTGCGACAGCTGCGGCTGAMATFSSVTRTHVLSAIAEHDDRGASAFLSVYGFSPTPGVTLTHDGETYDATAILAVAHRYATGRAALPEEMTGGKVAVGTLLGKRGFDVAGGRPATTSARRSTTRAPRAAAPRKAPEPEKPTPVCPSCFMALPATGVCDSCGNANANANANA
AK018_02280219hypothetical proteinATGGCCTGGTTCTACGCCGCGCTCCTGCTGGCGGGTCTCGCGCTGCTGACGACCGTCGCCGTCCGCGTCCTCGTCGGCGGCGTCGCCCCGGCCCGGTCCCACCGGCCCCCCGACCGTGCCGCGCACGGTTCCGCGCGCCGGATCCTCGACGAGCGCTACGCGGCCGGCGAGCTGGACACCGCCGAGTACGAGCACCGCCGCCGGATGCTGGGCGCCTGAMAWFYAALLLAGLALLTTVAVRVLVGGVAPARSHRPPDRAAHGSARRILDERYAAGELDTAEYEHRRRMLGANANANANANA
AK018_022811461mco_1Multicopper oxidase mcoATGGAGCCGATCAGCCGGCGCACGGCGCTGACGCTCGGCGGGGTCGGGCTGGTCGGTGCCGCGGTCGGCGGCGTCGGCCTGTGGCGCGAGCTCTCCCCGACAGGCCCGGCGGACACCGGTGAGACTCTCCGCGCGCCCGAAGTCCTGCACAGTACCGACGGCGTGCTCGACGTCCGGCTGGAGGCCGCGCGCGGGACTCGCGAGATCGCCGGACGGCGGGCCACCACCTTGGGGTACAACGACAGCGTCCCCGGACCGACCCTGCGGGTACGCGCCGGCGACACACTGCGCGTCGAGCTCGTCAACAGCACGGACGAGACGACCAACCTCCATGTGCACGGCCTGCACGTCTCGCCCGAGGGCACCGCGGACAACGTGTTCCTCGCCGTCGAGCCCGGCAGGTCCCAGCAGTACGAGTACACGCTCCCGGACGACCACCCGGCCGGCACCTACTGGTACCACCCGCACCACCACGGCACCGTCGCGGACCAGCTCTTCGGGGGCCTCTACGGCGCGATCGTCGTCGAGGACGGTGCGGACGACATCTCGGTCACCCGCGAGCGCACCCTGGTGATCGCGGACATCACCCTGGACGACTCGGGGTCCGTCGCGACGCCGTCCGCCCCCGAGCGCATGAGGGGGCGTGAGGGTGAGCTGCTCCTCGTCAACGGGCAACGGCGTCCCCACCTGCGGGCAGCGGCCGGGGAACGCGAGCGCTGGAGGATCGTCAACGCCTGTGCCTCGCGGTACCTGGACCTGAGCCTGGCCGGTCAGAGCGTCCAGGTGGTCGGTCGCGACGGCCCTCGGACGGCCGCCCCTGGCCCGCTCGACGACGTCGTGCTCGCCCCCGGCAACCGCCTCGACCTCGTCGTGGACATGCGCGAGGGCACGGGCGAGCTGGTCGCCGCTCCGGTGGAGCGCGGCGGACCGATGGGTCGGATGATGGGCGGGGGCGGTCTCCTCGGGGACGACGACCCCGTCGTAGTTGCCGACCTCGCCGTCGCCGCCGGCCCAGGGGCAGACCTCGGCCCGGTGCCGCCCCCCGCGGCGCCGCGCGACCTGCGCGGCGCGCCGGTCGACGGGCGTCGCACCCTCCATTTCGCGATGCACAGGGGCGGCATGATGGGCGGCGACGGCGGCCGCTTCACGATCGACGGGCGCGCGTTCGACCCCGAGCGCGTCGACCAGCAGGTGAGGCTCGGCACGGTCGAGGAGTGGACCATCGTCAACGACAGCCCGATGAACCACCCCTTCCACCTGCACGTCTGGCCGATGCAGGTGCTCAGCATCGACGGCGCCGAACCTCCGGACCCGCTCTGGCTCGACGTGGTCGACGTCCCCGCCGGACAGAGCGTGACCGTTCGGGTGCCGTTCGAGGACTTCGGCGGCCGCACCGTGTACCACTGCCACATCCTCGACCACGAGGACCTCGGCATGATGGGAGTCGTCGCCGCCCGGTGAMEPISRRTALTLGGVGLVGAAVGGVGLWRELSPTGPADTGETLRAPEVLHSTDGVLDVRLEAARGTREIAGRRATTLGYNDSVPGPTLRVRAGDTLRVELVNSTDETTNLHVHGLHVSPEGTADNVFLAVEPGRSQQYEYTLPDDHPAGTYWYHPHHHGTVADQLFGGLYGAIVVEDGADDISVTRERTLVIADITLDDSGSVATPSAPERMRGREGELLLVNGQRRPHLRAAAGERERWRIVNACASRYLDLSLAGQSVQVVGRDGPRTAAPGPLDDVVLAPGNRLDLVVDMREGTGELVAAPVERGGPMGRMMGGGGLLGDDDPVVVADLAVAAGPGADLGPVPPPAAPRDLRGAPVDGRRTLHFAMHRGGMMGGDGGRFTIDGRAFDPERVDQQVRLGTVEEWTIVNDSPMNHPFHLHVWPMQVLSIDGAEPPDPLWLDVVDVPAGQSVTVRVPFEDFGGRTVYHCHILDHEDLGMMGVVAARNANANANANA
AK018_02282270hypothetical proteinATGATGGTGAACGGATGGGGCATGGGCGGCTGGATGTGGATCGTCTGGCCCCTCGTCACGATCGGTGTGGTGCTGCTGGTCGTGCTGCTCGTGCGCGGCCTCGGCGGAGGCACGAGCAGCCGGGACCAGGCACCGCCCACGCCTCCGACCTCCGGGCACCCCCCGAGCCGGGCGCGCGAGATCCTCGACGAGCGGTACGCCCGGGGCGAGCTCTCGGACGAGGAGTACGAGGAACGCCGACGGCGGTTGAGCGACGACGGCGGTCGCTGAMMVNGWGMGGWMWIVWPLVTIGVVLLVVLLVRGLGGGTSSRDQAPPTPPTSGHPPSRAREILDERYARGELSDEEYEERRRRLSDDGGRNANANANANA
AK018_022831446hypothetical proteinATGGGCGCACCGGAGGACCTCGACCTCGCTCGCGCGGCCTACGAGCGGCGTGACTGGATCGCGGCCTACCGCCTGCTGAGCGCCCTCGACGACGACGCGTTGGTCGGCCCCGACTTCGTTGCTCTCGCCACCGCGGCCTATCTGGTGGGACGGCACGACGACGTCGTCCAGGCCCTGCACCGCGCCTACCGCTCCTCCGAGAAGGCCCGTGACCTGCGCGGAGCCGCACGGGCCGCACTGTGGCTGACCACCGTCCTGGAGGACGCGGGAGAGCGAGCGGTCGCGCACGGCTGGCTGTCCCGGGCCGAGGGCCTGCTCGGGCGGCTGGACGAGGACGTCGTCGAGCACGGGTACCTGCGCGAGCGCCAGACCTTCGCGCATCTGGCGCGCGGGGAGATCGCCGACGCCCTCGCGCTCGCGCCGACCGTCACGGCCTACGGTCGACGGTTCGCCGACCCGGACCTCGCCGCGGCGGGGCTGGTCGTCGAGGGGCGGCTGCGGATCTACACCGGCGACGTGCCCGGTGGTCTCGCGCTCGTCGACGAGGCGATGGCGTCGGTCGTGGCCGGTGAGACCTCGCCGATCTACTCCGGCCTCGCCTTCTGCGCCGCGATCGAGGCGTGCCAGGAGCTGTCCGACCTCGGACGCGCCCACGAGTGGACCCGGGCGATGTCGACGTGGTGCGACCGCCAGGCCGGTCTGGTGGCGTTCACCGGTCAGTGCGCCGTGCACCGCGGCCAGCTGCTGCGCATGCACGGCGCGTTCCCGGACGCGGTGCGCGAGCTGGAGGACGCTGCCGCGCGGCACGGCACCGCCGGCGGGGGAGCGGCCGCCGGTCTCGCTCACTACGAGCGCGGCGAGGCGCTGCGTGTCCTCGGCCGGGAGGACGACGCCGCATCCGCATACGACCGGGCGACCGGCCTCGGCCACCCGGGTCAGCCCGGCCGGGCGCTGCTGTGGCTCGAACACGGCGAGACCGACGCCGCCGAGCGCGCGATCCGTGTGTCGCTCGCCGAGGCCGTCGACCCGGTGCGGCGCTCGGCCCTGCTCCCGGCCGCGGTCGAGATCCTGACCGCGGCGGGAGAGGTCGACGAGGCAGCGGGGCTCGCCGACGAGATCCGTGCCACCGCCGACGAGTTCGGCAGCGTCGCCCTGGCCGCCGCCGGGGCGTACGCGACGGCATCCGTCGCTCTCGCCCGCGGCGACGCCGAACGCGCGCTGGCCGCCGCCCGTCGGGCCGGGACGTGGTGGGGTGGTCTCGAGGCCCCTGCGAGTGCGCCCGGTGCCGCGTGCTTTTCGCGCGCGCACTGCGAGCCCTGGGTGACGAGCGGTCGGCGCTCGCCGAGCTCGAGCCGGCCGCCCGGACCTTCGCCGAGCTGGGCGCGATGCCCGCCTCGGCCGAGGTGGCGGCGCTGCTGCCCGGGGAGGAGCGGCCCGGCGGTCTGAMGAPEDLDLARAAYERRDWIAAYRLLSALDDDALVGPDFVALATAAYLVGRHDDVVQALHRAYRSSEKARDLRGAARAALWLTTVLEDAGERAVAHGWLSRAEGLLGRLDEDVVEHGYLRERQTFAHLARGEIADALALAPTVTAYGRRFADPDLAAAGLVVEGRLRIYTGDVPGGLALVDEAMASVVAGETSPIYSGLAFCAAIEACQELSDLGRAHEWTRAMSTWCDRQAGLVAFTGQCAVHRGQLLRMHGAFPDAVRELEDAAARHGTAGGGAAAGLAHYERGEALRVLGREDDAASAYDRATGLGHPGQPGRALLWLEHGETDAAERAIRVSLAEAVDPVRRSALLPAAVEILTAAGEVDEAAGLADEIRATADEFGSVALAAAGAYATASVALARGDAERALAAARRAGTWWGGLEAPASAPGAACFSRAHCEPWVTSGRRSPSSSRPPGPSPSWARCPPRPRWRRCCPGRSGPAVNANANANANA
AK018_022841122czcO_1COG2072putative oxidoreductase CzcOATGAACCCGCACCGTCAGCACGTGCAGACCCTCGTCATCGGCGCGGGGCAGGCCGGCCTGGCCACCGCCCACGAGCTGCAGGAACGAGGGGTACAGGTCCTCGTCGTGGACGGCAACGCCCGGCTCGGCGACAACTGGCGCTGCCACTGGGACTCGTTGCGCCTGTTCACACCCGCCCGCTACGACGGGCTGCCGGGCCTGCCGTTCCCGGGCGACCCGTGGTCCTACCCCGGCAAGGACGACGTCGCCGACTACCTCGAGCAGTACGCCCTCGAGACGGGCCTGCCCGTGCGGCTGCGCACCCGGGTCGACCGGCTGACCGCGGCTCCCGAGGGCGGGTTCGTCGCCCACGTGGGCGACGAGGCGATCGCCTGTGACGACGTCGTGGTCGCCACCGGCACCCGCGGGCGCACCCCTGCCGTCCCCGACGTCGCCCGGCGGCTGGACCCCTCCGTCCGCCAGCTCCACTCGAGCGAGTACCGGTCGCCGGCGTCCGTGAGCGGCCCCACCCTCGTGGTCGGCACGTCGCACAGCGGCTGCGAGATCGCCTACGAGCTCGCCGCGCACGTCCCGGTGACGCTGTGCGGCCGGTTCACCGGCCGGGAACCGGTGCGGCCGGGGTCGCGCTGGGACCGGATCGGGACGCCCCTTCTCGTCCTCGTGGCCCGGCACGTCCTGACCCGCCGCACCCCGCCGGGGCGGGCCCTCATGCGACGTCTGCGCGGACCGCACCACGGCCTGCCGACGGCGCGCATCACGCGGCGCGAGCTCGCCGGGCGCGGCGTGACCTGGATCGAGGAACGCGTCGAGGACGTCACCGCCGACGGCCGGCCGCTGCTCGCCGACGGCACCGCGGTCGACGTCGAGACGGTCGTGTGGTGCACCGGCTACGCGCTGGACCACTCCTGGATCGAGCTGCCGGTCCTCGGCGACGACGGATGGCCCCGGGAGTACCGCGGCGTCGCGCACGACGTCCCGGGCCTGTACTTCTGCGGACTGGTCTTCCAGTGGTCGATGGCCTCGATGGTGCTCCCCGGTGTCGCCGCCGACGCCGCGTACGTCGCCGACCACATCGCCCACCGTGCCGCCCGGCCGGCGTCGCGGTCCCTGGCGTCGGCGTGAMNPHRQHVQTLVIGAGQAGLATAHELQERGVQVLVVDGNARLGDNWRCHWDSLRLFTPARYDGLPGLPFPGDPWSYPGKDDVADYLEQYALETGLPVRLRTRVDRLTAAPEGGFVAHVGDEAIACDDVVVATGTRGRTPAVPDVARRLDPSVRQLHSSEYRSPASVSGPTLVVGTSHSGCEIAYELAAHVPVTLCGRFTGREPVRPGSRWDRIGTPLLVLVARHVLTRRTPPGRALMRRLRGPHHGLPTARITRRELAGRGVTWIEERVEDVTADGRPLLADGTAVDVETVVWCTGYALDHSWIELPVLGDDGWPREYRGVAHDVPGLYFCGLVFQWSMASMVLPGVAADAAYVADHIAHRAARPASRSLASAPGPT0013865_1239DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222NANA
AK018_02285381hypothetical proteinATGATGGTCCCCATGGCAGGCCACCGCATCTTCACCATGAGCTTCGCGAGCATCTACCCGCACTACGTGGCGAAGGTCGAGCGCAAGGGACACACGGTCGACGAGCTGCACCGGGTCATCACCTGGCTGACGGGTTACGACGAGGCCGGGCTGCAACGGGTGCTGGACGACGAGGTCGACATGGCCACGTTCTTCGAGCGGGCGCCGCAGCTGAACCCGCACGCCTCGCTCATCACGGGCGTGATCTGCGGGCACCGCGTCGAGGAGATCGAGGACCCCCTGATGCAGCGGATCCGGTACCTCGACAAGCTCGTCGACGAGGTGGCTCGCGGCAAGAAGATGTCGTCCATCCTGCGTCAGCCCACGGCGACGGCACCCTGAMMVPMAGHRIFTMSFASIYPHYVAKVERKGHTVDELHRVITWLTGYDEAGLQRVLDDEVDMATFFERAPQLNPHASLITGVICGHRVEEIEDPLMQRIRYLDKLVDEVARGKKMSSILRQPTATAPPGPT0003760_123DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_02286291hypothetical proteinATGACGACAGCGCCCACGGCCCTCGACCACACCGTCACCGCGCCGATCGGGGTGGACGTCCGCGGCGACGTCTGGCCCTGCGTCGAGCTGGCGGGTGCGGCCGAGCTCCTGGGGACGGGACGGTCGGTCCGGGTCGACGCCACGGTCGACGACGTGGAGCTGGAGAACATCGGTCTCATGCCGACCGGTCGCGGCGAGCTGATGCTGTCCCTGAACGCGCGGCTGCGCCGGCGGCTCGGCAAGGACGTCGGTCACACGGTCACGGTGCGCCTGACGCGGCGGCACGGCTGAMTTAPTALDHTVTAPIGVDVRGDVWPCVELAGAAELLGTGRSVRVDATVDDVELENIGLMPTGRGELMLSLNARLRRRLGKDVGHTVTVRLTRRHGNANANANANA
AK018_02287675ucpA_2Oxidoreductase UcpAATGCCGACGATGGCCATCATCGGAGCAGGTCCGAACCTGGGAGCCGCCGTGGCGCGGCGCTTCGGCCGGGAGGGGTTCTCCGTGGCCCTCGTCTCGCGCGACCAGCAGAAGCTCGACGCGCTCGCGGCCGAGCTCGGCGCCGAGGGCGTGACGGCGCGGGGCTACGCGGCCGACGTCCGCGACGGTGCCTCGCTCGAGGCGGCGCTCGGGCGCGCGGCCGAGGACCTCGGCGAGATCACCGCCCTGCAGTACAGCCCGCTGCCGGCGCGCGAGTACCTGAAGCCGGTCCTGGACCTCACCCCGGAGCTGGCGCTCGACGCGCTCAGCTTCTCTGCCCTCGGCCTCATCAGCGCGGTCCGCGCCGTCCTGCCCGGCATGCGCCGGGCGGGGGAGGGCAGCATCGTGCTGATCAACGGCGGCACGTCGGTCAAGGCCCGGGCGGGGTTCGCCGGGACCTCCGTGGCCTTCCCCGCCGAGAGCGCGTACGGCGAGATGCTGCACGACGCGCTCGCCGACGAGGGCATCCGCGTCGCCCAGCTGGTCATCCCGGGGGCGATCCCGAAGCTGCAGCTCGAGAACGGCATCGACGACGTCGCCGAGCGCATCTGGGAGCTCGCGAGCACGCCGGGGGAGTTCCGGACGATGCTGATCCCGCTCGAGGAGGGACGGGAGTAGMPTMAIIGAGPNLGAAVARRFGREGFSVALVSRDQQKLDALAAELGAEGVTARGYAADVRDGASLEAALGRAAEDLGEITALQYSPLPAREYLKPVLDLTPELALDALSFSALGLISAVRAVLPGMRRAGEGSIVLINGGTSVKARAGFAGTSVAFPAESAYGEMLHDALADEGIRVAQLVIPGAIPKLQLENGIDDVAERIWELASTPGEFRTMLIPLEEGRENANANANANA
AK018_02288714hypothetical proteinATGCAGACGACGTCGCGTCCGGCAGGGTCCCGCTCGCGCGAGGTCAGCGTGCAGCTGCTCGGCGGGTTCGCGGTGACGTGCGCCGACGGACCCGTCGACCTGCCCGTGCAGGCGCAGCGCCTGGTCGCTGTGCTGGCGCTGCAGGGCAGGACCGGTCGCCGCCGGCTGGCCGACCGGCTCTGGTGCGACGTCGCCGAGGACCGCGCGCTGGCCAGCCTGCGCACCTGCCTGTGGCGGACCAACAAGGCCCTGCCGGGACTGGTCGAGACCAACGGGTGCTCGGTGGGCCTCGGGCTGGACCCGGAGATCGACGTCCACCGGCTGACCGACGCCGCGCACTCGGTCCACGAACCCGCGCGGGTCGCCGCGGCGACCGAGGTCGCGCTCGCGGCGGGAGAGCTGCTGCCCGACTGGGAGGACCGGTGGCTCGACGAGGAGCGTGAACGACTGCGGCAGGTGCGGCTGCACCTGCTGGAGAACGGCGCCGCGCTCCTCGCCGGGCACGGACGGTTCGGGCTGGCGATCGAGGCGGCGCTCGCGGCGCTGGTCGTCGACGACCTGCGCGAGAGCGCGCACCGGACCGTCATCGCGATCCACCTCGCCGAGGGCAACGTGGCCGAGGCGCGGCGCGCCTACACGGCGTGCCGCCGCACGCTGCAGCGCGCCCTCGGCGTCGATCCGACACCGCAGACGGCGACGCTCCTCGCCGTCTGAMQTTSRPAGSRSREVSVQLLGGFAVTCADGPVDLPVQAQRLVAVLALQGRTGRRRLADRLWCDVAEDRALASLRTCLWRTNKALPGLVETNGCSVGLGLDPEIDVHRLTDAAHSVHEPARVAAATEVALAAGELLPDWEDRWLDEERERLRQVRLHLLENGAALLAGHGRFGLAIEAALAALVVDDLRESAHRTVIAIHLAEGNVAEARRAYTACRRTLQRALGVDPTPQTATLLAVNANANANANA
AK018_02289348hypothetical proteinATGAGGGTCCACGCCAGGGTGTTCGCCGCCGACGGTGCTGTGCCGACCCCGGGTGCATCGGTCACGGTGCGGGTCCTCGACGTGAGCCGGGCCGATGCGTCCTCGGTCCGCCTCGCCGACACCTCCCGGGACGTGGACGCCGTGGACGGGCCCGACGGCGGCGTCGTCGTCGACCTGGACCTGACCGCGCCCGATCCTCGCGCGGACTGCGCCGTGGCCGCGCACGTCGACGTCGACGGCTCTGGTGACGTCACGCCCGGTGACCTGGTGACGGTCCAGCACGTGGGCCTCGACCTCGGCGCCGACGAGCAGACCCTGGACGTCCCGGTGCGGCGGGTCGCCGGCTGAMRVHARVFAADGAVPTPGASVTVRVLDVSRADASSVRLADTSRDVDAVDGPDGGVVVDLDLTAPDPRADCAVAAHVDVDGSGDVTPGDLVTVQHVGLDLGADEQTLDVPVRRVAGNANANANANA
AK018_022901044hypothetical proteinGTGACCGACGACAGCGCGGGGAGCGCGCAGCAAGTGGAGGAGGACAACGTCGGACTCCTCGGCGGGGACGACGTCCGCACCGGCCTGGTGGTGCTGTCCAGCGGCGAGACCCGGGCCGTGCAGTACGCGGCGGTGGACGGCCTGGCCGTGTTCGAGGGCGACATCGTCCTCGGCACCGTCGACGAGATGGAGAGCGCCACGGCGCAGCTGTCCGGGCGCGCGCAAGCCGGCGACGACGTCGCCCACGGCGTGGTGCACCCCAGCCAGAGCCGACGCTGGCCGAACGCCCTGATGCCCTACGAGATCGACCCGGCGGTGACCAACGGTGAGGCACGGGTCGCGGCCGCGATCCAGCACTGGGAGCAGAACACCCACATGCGGTTCGTGCGCCGCACGTCGGCGAACGCCTCGCAGTATCCGAACTACGTGCGCGTGATCCGGGGGGACGGGTGCTGGTCCAAGGTCGGCATGCGCGGCGGGAAGCAGGAGCTCAGCCTGGCCGACGGTTGCGGGTTCGGAGCGGCGGTGCACGAATTCGGCCACGCCTGGGGCATCTGGCACGAGCAGTCGCGGGAGGACCGCGACGCCTTCGTCACGATCAACTGGGCGAACATCACCTCGGGCAAGGTGCACAACTTCAACCAGCACATCTCCGACGGCAACGACGTCGGGGCGTACGACTACGGCTCGATCATGCACTACGGCCGGTTCGCGTTCTCCAAGAACGGCCAGCCGACGATCACGCCCAAGCAGTCGGGCGTCACCATCGGGCAGCGCTCCGGGCTCTCGGCCGGGGACATCGCGACCGTGCACCACATGTACCGCCTGTGGCACACCCACATGACCGTGGCGCAGACCTACGCCACCAGCGGCAGCAAGAACGCCTGGGTCAACCTCGTCGGCATGGGCTGGCGACGCATCGACCCGAACGCGTCCGACGGCGTGACGGACGTGTTCGCCCAGGCGGTCTGGGCGCGCGCCGAGGGGCGCAAGCTCACCGTCTACGCCGACGGCCGGCACATCTACCGCGCCTACATGCTCTAGMTDDSAGSAQQVEEDNVGLLGGDDVRTGLVVLSSGETRAVQYAAVDGLAVFEGDIVLGTVDEMESATAQLSGRAQAGDDVAHGVVHPSQSRRWPNALMPYEIDPAVTNGEARVAAAIQHWEQNTHMRFVRRTSANASQYPNYVRVIRGDGCWSKVGMRGGKQELSLADGCGFGAAVHEFGHAWGIWHEQSREDRDAFVTINWANITSGKVHNFNQHISDGNDVGAYDYGSIMHYGRFAFSKNGQPTITPKQSGVTIGQRSGLSAGDIATVHHMYRLWHTHMTVAQTYATSGSKNAWVNLVGMGWRRIDPNASDGVTDVFAQAVWARAEGRKLTVYADGRHIYRAYMLNANANANANA
AK018_02291213hypothetical proteinATGTGGACCGTGATCAACCAGACCTACGCCACCAGCGGCAGCAAGAACGCGTGGGCCCACCTCAAGAAGAACAACACCGGGTGGCGCAGGATCAAGCCCAGCTCGTCCGACGGCGTGACGAACGTGTTCCTGATGCTGGTGGCGGCGAAGGCCAGCGGCAAGCAGGCCCACGTCGTCCAGGACGGGGACAAGATCACCAAGGCCTACTTCTGAMWTVINQTYATSGSKNAWAHLKKNNTGWRRIKPSSSDGVTNVFLMLVAAKASGKQAHVVQDGDKITKAYFNANANANANA
AK018_02292300hypothetical proteinGTGAACGACGACATCACCATCACCATCACGGTCGGCCGGTCCGGCTCCTCCGGCGGCTCGACGACGGTCTCGACCCAGGACGCGGACGAGGCGGCGCCGCCCGAGGAGCTGGTCCTGGCCGACGACGGGACCTCCGACGCGCAGGACGACGCCCCGCCCGAGGACGTCGGCGTGCCCGGAGACGCGCAGGCGAGCTCGGACGACGAGGCGCCTCCCGAGGATCTCGGGTCCGCGGGAGCCGACGCCGCCGTCGTGGCGGCCGACGACGCGCCGCCCGACGACGTCGGCAGCCCGTCGTAGMNDDITITITVGRSGSSGGSTTVSTQDADEAAPPEELVLADDGTSDAQDDAPPEDVGVPGDAQASSDDEAPPEDLGSAGADAAVVAADDAPPDDVGSPSNANANANANA
AK018_02293402hypothetical proteinGTGGTGATAGAAGGATTCTGCCTGAAGATCCAGCGCACGCTCGCGGGCGCCGCCGTCGCCGCCCTCGCGACGCTGGGCGTCGCGGGTACCGCCCACGCCGCCGACGACAGCACCACCGTTCCCGGCCAGCAGGGACGTGACGGCACCGTCGACGGCGTCGACGACCTCGACCCGGAGACCGTGGTCACCTGCGACTACCAGGTGATCTACCGCGGCGACTTCGGCGACGACCCCCGCCTCGACGACGGATGGATCAAGAACAACATCCGCTGCGACGACGGCACGACGTACAACAGCACCTACGTCAGCTCCGAGGACCCGCGCTACACCGGCGAGCACCCCATCTGGGGCAGCTGGGACATCGTCGTCAGCACCGTCTCCGGCCAGGGCAACATCGTCTGAMVIEGFCLKIQRTLAGAAVAALATLGVAGTAHAADDSTTVPGQQGRDGTVDGVDDLDPETVVTCDYQVIYRGDFGDDPRLDDGWIKNNIRCDDGTTYNSTYVSSEDPRYTGEHPIWGSWDIVVSTVSGQGNIVNANANANANA
AK018_02294210hypothetical proteinGTGCGCACCACCGAGCCCGGCAGGGCCCGCGGCAGCCTGAGACCGGACACCGTCAGCCCGACCGCGAGAGACCGCCCGCCGGACGACGGTCCGGTGGGCGGCCTCGGTGTCGTGACGGCCGCGGGTCTCGGTCAGACGATGTTGCCCTGGCCGGAGACGGTGCTGACGACGATGTCCCAGCTGCCCCAGATGGGGTGCTCGCCGGTGTAGMRTTEPGRARGSLRPDTVSPTARDRPPDDGPVGGLGVVTAAGLGQTMLPWPETVLTTMSQLPQMGCSPVNANANANANA
AK018_02295738hypothetical proteinATGGCGGCTCAGCGGCGGTACTCGGACGAGCAGCTCGAGCACGCCGTCTCGGCGGGGACGTCGTGGCGCGGGACGCTGCGCATCCTCGGCCTCAGCGCGACGTCGGCGTCGGCGATCCGCTCGGTCCGCGCGCACGCCGATCGTCTGGGGCTGGACTACGGCCAATTCACCGGGTCTCGCCGCTGGACCGACGCCGAGCTGAAGCAAGCGCTCGTCGGGGCCACCGACTGGGAGGACGCTGCCCGTCGGCTGGGTCTACGGGGAGGCTCCCGTGTCGCGGTGGTCAAGCGCCATGCGGCGCGCCTCGGCCTCGATGTCGGCTCGTCGTTCCCGGGCCACGTACCGGCGCCGCCGCCGGCTGCGCCGGACCTGGCGAACCTGCACCGCGCCGGACCGCAGCTCGCCGCGGCATGGTTCACCCTGTGCGGGAAGGACGTGTGCTGGCCCCTGGAGCCCTGTCGCTACGACCTCGTCGTCGACGTCGCCGGACGCGTCAGGCGCATCCAGGTCAAGACGACAGTCACCCGGAGCGGCTCGACGTGGCAGGTGTTCCTGTCGTCCGGCGGGAGCGACCGGAAGGTCTACTCACCCGACGAGATCGACGACTTCTTCATCATCGACGGCGACCTGCAGTACTACCTGGTGCCGATCGAAGCTGTCCGAGGCATGCACGCCATCCATCTCAGCGCCTATGAGGACCATCGGCTCCTGCAGCTCCCGGCGCCCGATGCGACGTGAMAAQRRYSDEQLEHAVSAGTSWRGTLRILGLSATSASAIRSVRAHADRLGLDYGQFTGSRRWTDAELKQALVGATDWEDAARRLGLRGGSRVAVVKRHAARLGLDVGSSFPGHVPAPPPAAPDLANLHRAGPQLAAAWFTLCGKDVCWPLEPCRYDLVVDVAGRVRRIQVKTTVTRSGSTWQVFLSSGGSDRKVYSPDEIDDFFIIDGDLQYYLVPIEAVRGMHAIHLSAYEDHRLLQLPAPDATNANANANANA
AK018_02297495ribH_16,7-dimethyl-8-ribityllumazine synthaseATGAGCGGGGCGGGGGCGCCCGCCACGCACGCCGTGGACAGCTCGGACCTGCGGGTGGCGGTGATCGCCTCCTCCTGGCACGACACCGTCATGGACGGGTTGCTCGACGGCGCCCGCCGCGCGTGCGCCGACCACGCGGTCGCGCCGGACGTGCTGCGCGTGCCCGGGTCCTTCGAGCTGCCGGTGGCGGCCCAGGCCTGCGCCGCGGCCGGCTACGACGCCGTCGTGGCGCTCGGCGTCGTCATCCGGGGCGGCACCCCGCACTTCGACTACGTGTGCGCCGCGGCCACCGACGGGCTGAACAGGGTCGCGCTGGACCACACGGTGCCGGTCGGGTTCGGTCTGCTCACGTGCGACGACGAGGCGCAGGCCCTCGACCGTGCCGGGCTCGAGGGCTCGCACGAGGACAAGGGCTACGAGGCCGCGGCGGCAGCGCTCGCGACGGCGCACGTGGTGCGCGGCGTGCGGGCGGCCGCGTCGGTGCCCGCCCGCTGAMSGAGAPATHAVDSSDLRVAVIASSWHDTVMDGLLDGARRACADHAVAPDVLRVPGSFELPVAAQACAAAGYDAVVALGVVIRGGTPHFDYVCAAATDGLNRVALDHTVPVGFGLLTCDDEAQALDRAGLEGSHEDKGYEAAAAALATAHVVRGVRAAASVPARPGPT0008605_1145DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008605-ribH|RIB4-K00794NANA
AK018_022981335ribBA_1COG0108Riboflavin biosynthesis protein RibBAATGAGCGTCGTCGACCCGGACGTGCGCGAGCGCGTCGATCGCGCCGTGGCAGCGGTGGGTGCCGGACAGGCGGTCGTCGTCGTCGACGACGAGAGCCGGGAGAACGAGGGCGACCTGATCTTCGCCGCGGAGGCCGCTACGCCGGAGCTCATGGGCTTCACGGTGCGGCACACCAGCGGGCTGATCTGCGTCGCCGCCGACGGCGCGACCCTGGACCGGCTGCGCCTGCCGCTGATGGTCGCCGAGAACCGGGACGCCTTCCGGACCGCGTACACGATCACGGTGGACGCCGCCGAGGGCGTCACGACCGGGATCTCCGGCGCGGACCGGGCGCGCACCGCCCGGGTCCTGGCCGACCCGGGGGCGACGCCCGCCGACCTGACCCGGCCCGGGCACGTGCTGCCGCTGCGGGCCCGCGACGGGGGCGTCCTGGAACGCACGGGGCACACCGAGGCCGCCGTCGACCTCGCCCGGCTGGCCGGGCGCGGCAGCGCGGGCGTGCTGGCCGAGGTCACCCACGACGACGGCACCATGATGCGCCGGCCGGCCCTGCGGGAGTTCGCCGCCGAGCACGGACTGGCGCTGGTCAGCGTCGCCGACCTCGTCGCCTACCGCCGCGCCACGGAGTCGACCGTGGACCGTCTCGCCGTGACCCGGCTGCCCACCCGGCACGGGGAGTTCGCGGCGGTGGGCTACCGCGACCGCGTCACGGGCGACGAGCACGTGGCCCTGGTGGCCGGAGCACTCGCCGACCTCGACGGGGCCGGGCCCGTGCTGACCCGCGTGCACTCGGAGTGCCTGACCGGGGACGCCTTCGGCTCCCTGCGCTGCGACTGCGGCCCGCAGCTGGACTCGGCGCTGCGTGCGGTGCAGGAGGCCGGCCGGGGCGTCGTCGTCTACCTGCGGGGCCACGAGGGCCGGGGCATCGGTCTGGTCGCCAAGCTGACGGCGTACAGCCTGCAGGACGGCGGTCACGACACGATCGACGCGAACCTGGCCCAGGGGCTGCCCGTGGACTCGCGGGAGTACACGGCGGCCGCGCACGTGCTGCGCGACCTGGACGTCGAGTCCGTCCGGCTGCTGACGAACAACCCGGCCAAGGTCGACGGCCTGCGGGCCGGGGGAGTCGCGGTGGCCGAGCGGGTGCCGCTGGCCATCCACCCGGCGCCCGACAACGTGGCCTACCTGCGCACCAAGCGCGACCGGATGGGACACGACCTGCCGAACCTTGAACCCGAGGTCGAACCTCGACCCGGGACCGACCCTCACCCTCGACTCGAACCTCAAGGAGAACCGATGACCGGCACGACGACGGCGCACGAGGTCCTGCGATGAMSVVDPDVRERVDRAVAAVGAGQAVVVVDDESRENEGDLIFAAEAATPELMGFTVRHTSGLICVAADGATLDRLRLPLMVAENRDAFRTAYTITVDAAEGVTTGISGADRARTARVLADPGATPADLTRPGHVLPLRARDGGVLERTGHTEAAVDLARLAGRGSAGVLAEVTHDDGTMMRRPALREFAAEHGLALVSVADLVAYRRATESTVDRLAVTRLPTRHGEFAAVGYRDRVTGDEHVALVAGALADLDGAGPVLTRVHSECLTGDAFGSLRCDCGPQLDSALRAVQEAGRGVVVYLRGHEGRGIGLVAKLTAYSLQDGGHDTIDANLAQGLPVDSREYTAAAHVLRDLDVESVRLLTNNPAKVDGLRAGGVAVAERVPLAIHPAPDNVAYLRTKRDRMGHDLPNLEPEVEPRPGTDPHPRLEPQGEPMTGTTTAHEVLRPGPT0007990_964DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007990-ribBA-K14652NANA
AK018_02299639ribE_1COG0307Riboflavin synthaseATGTTCACCGGCATCGTGTCCGAGCTCGGCACCGTGGTGGCCCTCGAGAGGACCGCCGACGCCGCACGCCTCACCGTGCGCTCGCCGGGCGTGCTCGACGGCGTCCGCACCGGCGACTCGATCGCGGTCGACGGGTGCTGCCTGACGGTCTCCGACCACGACGACAGCACCTGGACGGCCGACCTCATGGCCGAGACCCTCGAGATGACCACGCTCGGGAAACGGCTGGTCGGCGACCGGGTCGACGTGGAGCCGGCGCTCGCGGTCGGCGACCGGCTCGGCGGGCACATCGTGCAGGGCCATGTCGACGGCGTCGGCACCGTCCTGGCGCGCACGCCCGGCGAGCGGTGGGAGGTCGTGGAGATCTCCCTGCCGGCCGACCTGGCGCGGTACGTCGTGGCCAAGGGGTCGATCGCGGTCGACGGCGTGTCCCTGACCGTCGTGGAGGCCGGTGCGGACCGGCTCACGGTCAGCCTCATCCCGGAGACGCTCGCCCGCACCACCCTGGGATCTCGTGCCGTGGGCGAGCAGGTCAACCTCGAGACGGACGTGCTCGCCCGGCACGTCGAACGGCTGCTGGACGGGCGCCTGGCCGGGCCGGCCGTGCCGCCGGCCGAGATCGCGGAGGTGCTCCGATGAMFTGIVSELGTVVALERTADAARLTVRSPGVLDGVRTGDSIAVDGCCLTVSDHDDSTWTADLMAETLEMTTLGKRLVGDRVDVEPALAVGDRLGGHIVQGHVDGVGTVLARTPGERWEVVEISLPADLARYVVAKGSIAVDGVSLTVVEAGADRLTVSLIPETLARTTLGSRAVGEQVNLETDVLARHVERLLDGRLAGPAVPPAEIAEVLRPGPT0008610_2671DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008610-ribE|RIB5|ribC-K00793NANA
AK018_023001113ribD_1COG0117Riboflavin biosynthesis protein RibDATGACCACCGCCACGGCGGGTCCCACGGTGACACCGGCCGAGCAGGCCGCGATGGAGCGCGCGCTGACCCTCGCCGCGACACCGGGACTCGACCTCGGGCCCAATCCGCGCGTCGGGTGCGTGCTGCTCGACGCCGACGGCGCCACGCTGGCCGAGGGATTCCACCGGGGCGCCGGCACGCCGCACGCCGAGGCGGTGGCGTTGACCAACGCCCGGCACGCCCACGGCCCGGCTGCGCTGCGCGGCGCCACCGCCGTCGTCACCCTCGAACCCTGCGCGCACACCGGCCGCACCGGCCCGTGCACCGACGCGCTGCGCGACGCCGGCGTGTCGCGCGTCGTGTTCGCCCAGCCCGACCCCAACCCCCAGGCCGCCGGGGGAACAGAGGCCCTGCGCGCGGCCGGGGTCACCGTCGTCGGAGAGGTCCGGGCCGACGCGGCGCGGGCACTGAACCACGCCTGGTCCGCGGCGGTCTCGCTCGGGCGTCCGTTCGTCACGTGGAAGGTCGCCACGACGCTGGACGGCCGCACCGCCGCCGCCGACGGCACCTCGCGCTGGATCACCTCGGCCGCCGCCCGCCGCGACGTGCACCGCCTGCGCGCCGAGGCCGACACCGTCCTGGTGGGCACCGGCACCCTGCTGGACGACGACCCGTCGCTCACCGTCCGGGAGGCACCCGGGCCGCAGCCGCTGCGGGCGGTCATGGGCCTGCGCGAGATCCCCGCGACCGCCCGGCTGGCCGGCCCGGGCCCGGACGGTGCCGCCGCCCGCCACCTGCGCACCCGCGACCCTCGCGCGGCGCTCACCCGGCTCTGGGACCTCGACCGCCGTCACGTGCTGCTCGAGGGCGGCGCCGCGCTGGCGGCGGCCTTCCTGCGCGCCGGGCTCGTCGACGAGATCGTCGCCTACGTGGCCCCGACCCTGCTCGGCGCCGGCACCGCCGCCGTCGGCGACCTCGGCATCACGACCATCACCGACGCCGCACGGTTCGACCTCGTCGACGCCACCGTCGTCGAACCGGCGCCCGACGACCTCGCCACCCCCGACGGCCCCGCCTCCGGCCTGGCCGCCACGAACCTGCGGCTCACCCTGCGGCCGCGGAAGGAGTCCTGAMTTATAGPTVTPAEQAAMERALTLAATPGLDLGPNPRVGCVLLDADGATLAEGFHRGAGTPHAEAVALTNARHAHGPAALRGATAVVTLEPCAHTGRTGPCTDALRDAGVSRVVFAQPDPNPQAAGGTEALRAAGVTVVGEVRADAARALNHAWSAAVSLGRPFVTWKVATTLDGRTAAADGTSRWITSAAARRDVHRLRAEADTVLVGTGTLLDDDPSLTVREAPGPQPLRAVMGLREIPATARLAGPGPDGAAARHLRTRDPRAALTRLWDLDRRHVLLEGGAALAAAFLRAGLVDEIVAYVAPTLLGAGTAAVGDLGITTITDAARFDLVDATVVEPAPDDLATPDGPASGLAATNLRLTLRPRKESPGPT0008555_2075DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008555-ribD-K11752NANA
AK018_023021539der_1COG1160GTPase DerATGACCACACCCGCCGACGGTCCCGAGCCCGTGCCCGCCGACCCTGTCGACACCGCCGAGGTCCCGGTCGAGGACCTCGGTCCCGTCGTCACCGACTTCGCCGACGACGAGGCCCGCGAGCGCGCACTGCGCGCCGGCCTCGAGGAGTTCGAGCTCGACGAGACCGACCGCGAGCTGCTCGACACCGGTTGGGAGGACCTCGACGCCGCTCCGGCCGAGGCCCCGCTGCCGGTGCTGGCGGTGGTCGGCCGGCCCAACGTCGGCAAGTCGACCCTCGTCAACCGCATCCTCGGGCGGCGCGAGGCCGTCGTCGAGGACACCCCCGGCGTCACCCGCGACCGGGTGACCTACGCGGCCGAGTGGTCGGGCACCGACTTCACGCTCGTCGACACCGGCGGGTGGGAGGTCGACGTCGCCGGCATGGAGTCCAAGGTCGCCGAGCAGGCCGAGGTCGCGATCGACCTCGCCGACGCCGTCGTGTTCGTCGTGGACGCCCAGGTGGGTGCCACGGCCACCGACGAACGCGTCGTCGAGCTGCTGCGCCGCTCGGGCAAGCCGGTGATCCTGTGCGCCAACAAGGTCGACGGACCCTCCGGCGAGGCGGACGCCGCCGCGCTGTGGGCGCTGGGCCTGGGCGAGCCGATGCCCGTCTCGGCGCTGCACGGGCGCGGCCTGGGCGACATGCTCGACGCCGTGCTCGAGGTGCTGCCGGACGAGTCGGCGCGCGGCGAGCTGCGGCCCGAGGGCCCGCGTCGCGTCGCGCTCGTGGGACGTCCCAACGTCGGCAAGTCCTCCCTGCTGAACAAGCTGGCGGGCGCCGAGCGTGTCGTGGTCGACTCCACGGCGGGGACGACCCGTGACCCGGTCGACGAGCTCGTGGAGATCAAGGGGATCCCGTACTGGTTCGTCGACACCGCCGGCATCCGCCGCCGGGTGCACCAGACCCGGGGCGCGGACTTCTACGCCTCGCTGCGCACGCAGGCCGCCATCGAGAAGGCCGAGATCGCCGTCGTGCTCATCGACTCCTCGACGCCGCTGACCGAGCAGGACCTGCGGGTCATCTCCCAGACCGTCGACGCCGGCCGGGCCCTCGTCATCGCCTACAACAAGTGGGACCTGATGGACGACGACCGCCGGCACTTCCTCGAGCGCGAGATCGACAAGGAGCTCGTCCAGGTCACCTGGGCGCCCCGGATCAACGTCTCGGCACGCACCGGCTGGCACACCGACCGGCTGGTCCGGGCGCTGGAGACGTCGCTGGCCTCCTGGGACACGCGCATCCCCACCGGGCGCCTGAACGGGTTCCTCGGCGAGCTGGTCTCCGCCCACCCGCACCCGGTGCGCGGCGGCAAGCAGCCGCGCATCCTGTTCGCCACGCAGGCCTCGACGCGCCCGCCGCGCTTCGTCATCTTCGCCACGGGGTTCATCGAGGCCGGCTACCGCCGGTTCATCGAGCGCCGGCTGCGCGAGGAGTTCGGGTTCTCCGGCTCGCCGATCCGGATCAGCGTCCGCGTGCGGGAGAAGCGCCGCCGCCGCTGAMTTPADGPEPVPADPVDTAEVPVEDLGPVVTDFADDEARERALRAGLEEFELDETDRELLDTGWEDLDAAPAEAPLPVLAVVGRPNVGKSTLVNRILGRREAVVEDTPGVTRDRVTYAAEWSGTDFTLVDTGGWEVDVAGMESKVAEQAEVAIDLADAVVFVVDAQVGATATDERVVELLRRSGKPVILCANKVDGPSGEADAAALWALGLGEPMPVSALHGRGLGDMLDAVLEVLPDESARGELRPEGPRRVALVGRPNVGKSSLLNKLAGAERVVVDSTAGTTRDPVDELVEIKGIPYWFVDTAGIRRRVHQTRGADFYASLRTQAAIEKAEIAVVLIDSSTPLTEQDLRVISQTVDAGRALVIAYNKWDLMDDDRRHFLEREIDKELVQVTWAPRINVSARTGWHTDRLVRALETSLASWDTRIPTGRLNGFLGELVSAHPHPVRGGKQPRILFATQASTRPPRFVIFATGFIEAGYRRFIERRLREEFGFSGSPIRISVRVREKRRRRNANANANANA
AK018_02303699cmk_2COG0283Cytidylate kinaseGTGGTCACCATTGCCGTCGACGGCCCGTCCGGGTCCGGCAAGTCCAGCGTCTCGAAGGCCGTCGCCGGCCGTCTCGGCCTGGCCTACCTCGACACCGGTGCGATGTACCGGGCCGCCACGCTGTGGTGCGTGCGCACCGACGTCGCCCTGGACGACGCCGACGCCGTCGCGCGCGCCGTGCGCGAGATGCCCCTGGAGATGGGCGTCGACCCCGCGGCACCCGGTGTGGTGCTCGACGGTGACGACGTCGCCGCGGCGATCCGCACCACCGAGGTCTCCTCGGCGGTGTCGCAGGTGGCGACGAACCTCGAGGTCCGCGCCGAGATGAAGCGCCGCCAGCGCGCCGTCATCGATGCCGAGAACACCGACGGCTTCTCCGGCGGCCGTGGCATCGTCGCCGAGGGCCGCGACATCACCACGGTCGTCGCCCCCGACGCCGACGCCCGCGTCCTGCTGACCGCCAGCGAGGAGGCGCGGCTGCGCCGCCGGTCGCTGGAGGTGCACGGTGCGGCGGACGCCGCCGCCGTGGACGCCACCCGCGACCAGGTGCTGCGCCGGGACCGCGACGACTCGACCGTCAGCCAGTTCCTCACCGCGGCGGACGGCGTGGTGACGGTCGACTCCAGCGAGCTGGACCTGGACCAGACCGTCGCGGCGGTCCTCTCCGTCGTCGATCGCCTGGGACAATGGCAGGCATGAMVTIAVDGPSGSGKSSVSKAVAGRLGLAYLDTGAMYRAATLWCVRTDVALDDADAVARAVREMPLEMGVDPAAPGVVLDGDDVAAAIRTTEVSSAVSQVATNLEVRAEMKRRQRAVIDAENTDGFSGGRGIVAEGRDITTVVAPDADARVLLTASEEARLRRRSLEVHGAADAAAVDATRDQVLRRDRDDSTVSQFLTAADGVVTVDSSELDLDQTVAAVLSVVDRLGQWQAPGPT0021220_618DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021220-cmk-K00945NANA
AK018_02304810COG1187putative RNA pseudouridine synthaseATGCCCACCTCACGCCGCGGCGGGAGCCGCCGCTCCTCGCGCCGCCAGGCCCCCGCGTCCCCGACCGTCGACGTCCACGTCCCCGACGGCGTGCGCCTGCAGAAGGTGCTCGCCCAGGCGGGGCTCGGCTCGCGGCGCGCCTGCGAGTCGCTGATCGCCGACGGCCGGGTGGAGGTCGACGGCCAGGTCGTGGTCGAGCTGGGCGTGCGGGTCGACCCGGCCACCGCCGTCGTCCACGTCGACGGGCTGCGCGTCCAGCTCGACGACTCGAAGATCACCGTCGCGGTGAACAAGCCGCTCGGGATGCTCTCGGCGATGAGTGACCCCGAGGGTCGTCCCACGGTCGCCGAGCTGGTGCAGGACCGCCCGGAGCGCCTGTTCCACGTCGGACGCCTGGACGCCGACTCCGAGGGTCTGCTGCTGCTGACGAACGACGGCGAGCTCGGCAACCGGCTGTCGCACCCGCGCTACGAGATCCCGAAGACCTACCTGGTGACGGTCGAGGGCGGCGAGTTCTACCCGCGCCACGCCAAGGAGCTGCTGGCCGGCGTCGAGCTCGACGACGGCCCCGCCCGGATGGACAAGGTCCACGTCGTCGACGCCGTGCCCGGCCGGACGATGATCGAGGTGGTCCTGCACGAGGGCCGCAACCGCATCGTGCGGCGGATGTTCGACGCGATCGGTTTCCCGGTCACGCGGCTGGTGCGCACCCGCGTCGGGCCCGTCACCCTCGGCGACCTGAAGGTCGGCCGCACCCGTGTGCTCGGCCGCACCGAGCTCGGCACGCTGATGCGTGCCGTGGACCTCTGAMPTSRRGGSRRSSRRQAPASPTVDVHVPDGVRLQKVLAQAGLGSRRACESLIADGRVEVDGQVVVELGVRVDPATAVVHVDGLRVQLDDSKITVAVNKPLGMLSAMSDPEGRPTVAELVQDRPERLFHVGRLDADSEGLLLLTNDGELGNRLSHPRYEIPKTYLVTVEGGEFYPRHAKELLAGVELDDGPARMDKVHVVDAVPGRTMIEVVLHEGRNRIVRRMFDAIGFPVTRLVRTRVGPVTLGDLKVGRTRVLGRTELGTLMRAVDLNANANANANA
AK018_02305657scpB_1Segregation and condensation protein BATGACCGAGTCGACGCAGAGCGTCCCGGCGCCGCAGGACGTCGCCGAACCGGGGTCGGGGGACAGCCCCGACCAGGTCGACGTCGACGACCTGCCCGGCGGCCTGCCCGCCGCGCTGGAGGCGATCCTCATGGTCGCCGAGTCCCCCGTCCCGGCCGAACGGCTCGCCGCGGCCGTGGCACGCCCCACCGCCGAGGTGCACGCGGCGCTGACCGACCTGGCGCAGGAGTACCAGGGGGCCGACGGCGCCCGGCCGCGCGGGTTCGAGCTGCGGCGCGGTGCCGAGGGGTGGCGCTTCTACTCCCACCGCGACCTGACCGACGTGGTGGCCCGCTTCGTGCTGGAGGGCCAGTCGTCCCGCCTCAGCCAGGCCGCCCTGGAGACCCTCGCGGTCGTCGCCTACCGCCAGCCCGTCACCCGCGGGCAGGTCTCGGCCGTGCGCGGGGTCAACGTCGACGGGGTCGTGCGCACCCTGCTGGCCCGCAACCTGGTGGCAGAGGTCGGCCAGGACCCGTCCACGGGCGCGGTGCTGTTCGGCACCACCGGGGAGTTCCTGGACCGGATGGGCTGGTCGTCGCTGGACGAGCTGCCGCCGCTGGCCCCGCACCTGCCCGGCGTGGAGGCCCTCGGCGGGCTGGAGGACCTCGGCGTCGACTGAMTESTQSVPAPQDVAEPGSGDSPDQVDVDDLPGGLPAALEAILMVAESPVPAERLAAAVARPTAEVHAALTDLAQEYQGADGARPRGFELRRGAEGWRFYSHRDLTDVVARFVLEGQSSRLSQAALETLAVVAYRQPVTRGQVSAVRGVNVDGVVRTLLARNLVAEVGQDPSTGAVLFGTTGEFLDRMGWSSLDELPPLAPHLPGVEALGGLEDLGVDNANANANANA
AK018_02306882scpA_1Segregation and condensation protein AGTGGCAGCGCCACCTGAGCAGGCCCCGGCGGAGGCTGCGGCGGGGCAGGCCCGCGCCGGGGCGTTCGAGGTCCACCTCGACAACTTCGACGGACCGTTCGACCTGCTGCTGTCGCTGATCAACGCCCGGGAGCTGGACCTGACCGAGGTGGCCCTGGCGGAGGTGACCGACGACTTCGTCGCCCACCTGCGCGCCGCCGAGTCCGCCGCGCTCGAGGCCGCCGACCGCGGCGAGGAGCACCCCTCGTGGGACCTGGGCGCGGCGAGCGAGTTCCTCGTCGTGGCCGCCACGCTGCTCGACCTCAAGGCCGCGCGGCTGCTGCCCGGCGTGGCCGAGGAGGACGCCGACGACCTGGAGCTCCTCGAGGCGCGCGACCTGCTGTTCGCGCGCCTGCTGCAGTACCGCGCCTACAAGGAGATCTCGGCGGTGTTCGCCGACCGGCTCGCCGACGCCGGACGGCGGGTGCCGCGGTCGGTGCCGCTGGAGGAGCACCTGACCGCGATGCTCCCCGAGCTCGTGTGGACCCTGGACGGCGAGCGCCTGGCCGAGCTGGCCGCCCGCGCCCTGGAGCCGAAGCCGCCGCCCGTGGTGGGGCTGAGCCACCTGCACGGCGCCGCCGTGAGCGTGCGCGAGGAGGCGCTGATCGTGGCCGACCAGCTGCGCCGCGAGCACGCCGCGACCTTCCGCGCCCTGACCGCCGGTGCGGAGCGGCTCGTGGTCGTCGCGCGGTTCCTGGCGCTGCTGGAGCTGTTCCGCAGCGGGCAGGTCGCCTTCGACCAGGCGGCGGCCCTCGGCGAGCTGACCGTGCGCTGGACAGGCGGGACGGACGACGACGTGGGCGACGTCGAGGAGTTCGACGGCGCCCAGGAGGGAGCCGCATGAMAAPPEQAPAEAAAGQARAGAFEVHLDNFDGPFDLLLSLINARELDLTEVALAEVTDDFVAHLRAAESAALEAADRGEEHPSWDLGAASEFLVVAATLLDLKAARLLPGVAEEDADDLELLEARDLLFARLLQYRAYKEISAVFADRLADAGRRVPRSVPLEEHLTAMLPELVWTLDGERLAELAARALEPKPPPVVGLSHLHGAAVSVREEALIVADQLRREHAATFRALTAGAERLVVVARFLALLELFRSGQVAFDQAAALGELTVRWTGGTDDDVGDVEEFDGAQEGAANANANANANA
AK018_02307912COG1192putative proteinATGACGCAGCCGGCGACCGCCGAGAACACCTTGCCCGGGGTCCCGGGCGCGGAGGCGAACCAGGACGGCCCGGCCACGGACGTGGTGGGACGGCCGCTGCCCGAGTTCCCCCCGCCCGCACCGCGTTCCTCCCACGGACCCGCGCGCATCGTGGCGATGTGCAACCAGAAGGGCGGGGTGGGCAAGACCACGACGACCATCAACCTCGGGGCGACCCTCGCCGAGTACGGCCGCAAGGTGCTGCTGGTCGACTTCGACCCGCAGGGCGCGGCCTCCGTCGGCGTCGGCGTGAGCCCGCACGACCTCGAGCTGAGCGTCTACAACCTCGTCATGGAGCGTGACGTCACCCTCGACGACGTGGTGCGCCCCACCGCGATCGAGGGGCTCGACGTCGTCCCGGCGAACATCGACCTGTCGGCCGCCGAGGTGCAGCTCGTGGGCGAGGTCGCCCGCGAGTCCGTGCTGTCGCGCGCCCTGCGCCCGGCGCTGGACACCTACGACGTCGTGCTCATCGACTGCCAGCCGTCGCTCGGTCTGCTCACCGTCAACGCGCTGACCGCCGCGGACGGCGTCCTCATCCCGCTGGAGTGCGAGTTCTTCGCCCTGCGCGGCGTCGCCCTGCTCGTGGAGACCATCGACAAGGTGCGCGACCGGCTCAACCCCGACCTGGCCGTGGACGGCATCCTGGCGACCATGTACGACTCGCGCACCCTGCACTCGCGCGAGGTGGTGCAACGCGTCCACGAGGCCTTCGGCGACACCCTGCTGCACACCGTCATCGGCCGGACCGTGAAGTTCCCGGACGCCTCGGTCGCTGCCGAGCCGATCACCTCCCACGCCCCGTCGCACGCGGGTGCGGCGGCCTACCGGCAGCTGGCTCGTGAGCTCGTCGCCCGTGGCAGCGCCACCTGAMTQPATAENTLPGVPGAEANQDGPATDVVGRPLPEFPPPAPRSSHGPARIVAMCNQKGGVGKTTTTINLGATLAEYGRKVLLVDFDPQGAASVGVGVSPHDLELSVYNLVMERDVTLDDVVRPTAIEGLDVVPANIDLSAAEVQLVGEVARESVLSRALRPALDTYDVVLIDCQPSLGLLTVNALTAADGVLIPLECEFFALRGVALLVETIDKVRDRLNPDLAVDGILATMYDSRTLHSREVVQRVHEAFGDTLLHTVIGRTVKFPDASVAAEPITSHAPSHAGAAAYRQLARELVARGSATNANANANANA
AK018_02308957xerD_2COG4974Tyrosine recombinase XerDATGACCGTGGCCCCCGCCGACCTGCCCGACGCGCTGGACTCGGCGCTGCGCGACTACCTCGCCCACCTGCGGGTCGAGCGCGGGCTGTCCTCCAACACGGTGCAGGCCTACCGGCGCGACCTGACCCGCTACGCCGCCTTCCTCGACGGTCTCGGCCGGTCGGGCCTGGCGCAGGTCACCGAACCCGACGTCGAGGCGTACCTGGACGCGGTGCGCGAGGGGGACGACGGCGGCCGGGCGCTCTCGCCCGCCTCGACGGCCCGTGCCCTGGCGGCCCTGCGGGGCTGGCACCGGTTCGCCCAGGCCGAGGGCGACGCCCCCGACGACCCCACGGTCGAGGTCACCGCACCCACCCAGACCCGCCGGCTGCCGCACGCCCTGAGCGTCGACGCCGTGGCCCGCCTCCTCGCCGCGGCGTCCGCCGTCGAGGGTGCGCCCGGCCTGCGCGACCGCGCGCTGCTCGAGCTGCTCTACTCCACCGGGGGCCGGATCAGCGAGGTCGTCGGGCTCGACGTCGACGACGTCGGCACCGAGGCCGTCGTGCGGTTGTTCGGCAAGGGCGGCAAGGAGCGGGTGGTCCCCGTCGGGTCCTACGCACGTGACGCGGTGGACGCCTACCTCGTCCGGGCCCGGCCGGTCCTGGCCGCGGCCGGGAGCGCCCACGGGCGCAGCACCCCGGCGCTGTTCCTCAACTCCCGTGGCGACCGGCTGTCGCGCCAGAGCGCCTGGGCCGTGCTGCAGCGCGCGGCGGACCGCGCAGGGCTGGCCGAGCACGTCTCGCCGCACACGCTGCGCCACTCCTTCGCCACCCACCTGCTGGCCGGGGGAGCGGACGTGCGGGTCGTCCAGGAGCTGCTGGGCCACGCGTCGGTCACCACGACGCAGATCTACACGATGGTCACCCCGGAGGCGCTGCGGGAGGTCTACGCCGCCGCGCACCCCCGGGCCCTGGCCTGAMTVAPADLPDALDSALRDYLAHLRVERGLSSNTVQAYRRDLTRYAAFLDGLGRSGLAQVTEPDVEAYLDAVREGDDGGRALSPASTARALAALRGWHRFAQAEGDAPDDPTVEVTAPTQTRRLPHALSVDAVARLLAAASAVEGAPGLRDRALLELLYSTGGRISEVVGLDVDDVGTEAVVRLFGKGGKERVVPVGSYARDAVDAYLVRARPVLAAAGSAHGRSTPALFLNSRGDRLSRQSAWAVLQRAADRAGLAEHVSPHTLRHSFATHLLAGGADVRVVQELLGHASVTTTQIYTMVTPEALREVYAAAHPRALAPGPT0022000_3340DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0022000-xerD-K04763NANA
AK018_02309915ctaB_1COG0109Protoheme IX farnesyltransferaseGTGCACGGGTCGGCCGCGCAGCGCTCGACCGGCTGGCGCGACCGCGTGGGCGCGTACGTGGCCCTGACCAAGCCCCGCATCATCGAGCTGCTGCTCGTGACCACGGTGCCCACGATGATCCTCGCCGAGGGCGGCCTGCCCGACCTCTGGCTCGTCGTGGCCACGCTGATCGGCGGGGCGCTCGCGGCGGGGTCGGCCAACGCCTTCAACTGCTACCTCGACCGCGACATCGACGAGATGATGAACCGCACCAAGCGGCGCCCGCTCGTCACGGGGGAGATCCGGCCCCGCAACGCGCTCGTCTTCGCCACGGCGCTCGGCGTGGTGGCGCTGGTGTGGTTCGCCTGGCTGGTCAACGTCCCGGCCGCGTGGCTGACGTTCGGGGCGATCGCGATCTACGTCGTGGGCTACACGATGATCCTCAAGCGCCGGACCCCGCAGAACATCGTCTGGGGCGGCATCGCGGGCTGCATGCCGGTCTTCATCGGCTGGGCGGCCGTGACCGAGAGCCTGAGCTGGGCCGCGCTCGCCCTGTTCGGCGTCATCTTCTTCTGGACGCCCCCGCACTACTGGCCGCTGTCGGTGAAGTTCAAGAAAGACTACGCCACCGCCGGCGTGCCGATGCTGCCCGTCGTCGCCACGGACCGTCGCGTGGCCGCCGAGATGCTGGGCCACACGATCGCGATGATCGCGTGCTCCCTCGCGCTCGTCCCGCTGGCCGGGATGACCTGGGTCTACACGGCGGTGGCGGCCGGCCTGGGCGGCTGGTTCCTGTGGCTGACGGTCTCCATGCTGGGCAAGGCGCAGGGCCGCGCCCGCAAGGGCCCCGGCGCGATGAAGGTCTTCCACGCCTCCATCACCTACCTGACCCTGCTGTTCGTCGCCGTCGCCGTGGACGTCTTCCTGCCCTTCTGAMHGSAAQRSTGWRDRVGAYVALTKPRIIELLLVTTVPTMILAEGGLPDLWLVVATLIGGALAAGSANAFNCYLDRDIDEMMNRTKRRPLVTGEIRPRNALVFATALGVVALVWFAWLVNVPAAWLTFGAIAIYVVGYTMILKRRTPQNIVWGGIAGCMPVFIGWAAVTESLSWAALALFGVIFFWTPPHYWPLSVKFKKDYATAGVPMLPVVATDRRVAAEMLGHTIAMIACSLALVPLAGMTWVYTAVAAGLGGWFLWLTVSMLGKAQGRARKGPGAMKVFHASITYLTLLFVAVAVDVFLPFPGPT0008520_2396DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008520-ctaB|cyoE-K02257NANA
AK018_023102112tkt_1COG0021TransketolaseGTGAACGCGTTCGATCCCGCACCGGCACCGCTCGAGTGGAACGACCTGGACGAGCGGGCGGTCAAGTCCATCAAGGCGCTCGCCGCCGACGCCGTGGAGAAGTGCGGCAGCGGTCACCCGGGCACGGCGATCTCCCTCGCCCCGGCCGCCTACCTGCTCTTCCAGAAGACGATGCGGCACGACCCCTCCGACCCGACCTGGGTCGGTCGCGACCGGTTCGTGCTCTCGGCCGGGCACTCGTCCCTGACGCTGTACCTGCAGCTCTTCCTGGCCGGCTACGGCATGGAGATGGACGACCTGGCCGCGCTGCGCACCTTCAACTCCCAGACGCCGGGTCACCCCGAGTACGGCCACACGCCCGGTGTCGAGATCACCACCGGCCCCCTGGGCCAGGGCCTGGCCTCCGCCGTCGGCATGGCCTACGCCTCGCGCCGCGAGCGGGCGCTGCTCGACCCCGACGCCGCGGCCGGCACCTCGCCGTTCGACCACCACGTGTACGTCATCGCCTCCGACGGCGACCTGCAGGAGGGCGTGACCTCCGAGGCCTCGTCGCTGGCCGGCACGCAGCAGCTCGGCAACCTCGTCGTGATCTGGGACGACAACAAGATCTCGATCGAGGACGACACCGAGATCGCCTTCACCGAGGACGTCCTGGCCCGGTACGAGGCCTACGGCTGGCACACCCAGCGGGTCGACTGGACCAACGGCGGCACGGGCTACGCCGAGGACACCGACGCGCTCGCCACGGCGCTGGACGCCGCGAAGAACGAGACGGGCAAGCCGTCGATCATCGCGCTGCGCACGATCATCGGCTGGCCGTCGCCGACCAAGCAGAACACCGGCGGCATCCACGGCTCGGCGCTCGGCGCCGACGAGGTCGCCGGGCTCAAGACGACCCTGGGTCTCGACCCCGAGGCCACGTTCACCATCGACGACGACGTCCTCAAGCACACGCGGTCGGTCGCCGAGCGCCACGGCTCCGAGCGCGACGCCTGGGACACCGCCTTCGAGGCGTGGAAGACCGCCAACCCGGACGGCGCCGCGCTGCTCGAGCGTCTCGGCGCGCGCGAGCTGCCCGCCGGCTGGACCGAGTCGCTGCCCGTCTTCGAGGCCTCCGAGAAGGGCGTCGCCACCCGCGCCGCCTCGGGCAAGGTGCTCTCGGCGCTGGCCGACGTGCTGCCCGAGCTCTGGGGCGGCTCGGCCGACCTCGCCGGGTCGAACAACACCACGATGGACGGCGAACCGTCCTTCATCCCGTTCGAGCACGCCACGAAGAAGTTCCCGGGCAACCCGCAGGGCCGCACGCTGCACTTCGGCATCCGCGAGCACGCGATGGGCTCGATCCTCAACGGCATCGTGCTGCACGGCCTCACCCGCCCCTACGGCGGCACCTTCCTGCAGTTCTCGGACTACATGCGTGCCTCGGTGCGCCTGGCCGCGCTCATGGAGATCCCCACCACCTTCGTGTGGACCCACGACTCCATCGGCCTGGGCGAGGACGGCCCGACCCACCAGCCGGTCGAGCACCTCGCGGCGCTGCGCGCGATCCCCGGTCTCGACGTCGTGCGTCCGGCGGACGCCAACGAGACCGCGTGGGCCTGGCGCGGCATCATCGAGAACACCTCGAACCCCGCCGGCCTGGTGCTGACCCGCCAGGGGGTGCCCACCTACCCCCGCGGCGAGGACGGCTTCGCGCCGGCCGAGGGCACCCTGCGGGGCGCCTACACCCTGCTCGACACGGAGGGCACGCCGGACGTCATCCTGGTCGGCACCGGGTCCGAGGTGCAGCTCGCCGTCGAGGCGCGCGAGCAGCTCGCGGCCGACGGCATCGCCGCCCGCGTGGTGTCCATGCCCAGCCGCGAGTGGTTCGACCGCCAGGACGCCGAGTACCGCGAGTCGGTGCTGCCCGCCGGGGTCAAGGCCCGCGTGTCGGTCGAGGCCGGCATCGCGCTGAGCTGGCGCGACGTCGTCGGCGACGCCGGCCGCTCGGTCTCGCTCGAGCACTACGGCGCCTCGGCCGACTACAAGACGCTGTACCGCGAGTTCGGCATCACCGCCGACGCCGTGGCCACGGCGGCCCGCGAGTCGCTCGCCACCGTCCGCGGCGAGTGAMNAFDPAPAPLEWNDLDERAVKSIKALAADAVEKCGSGHPGTAISLAPAAYLLFQKTMRHDPSDPTWVGRDRFVLSAGHSSLTLYLQLFLAGYGMEMDDLAALRTFNSQTPGHPEYGHTPGVEITTGPLGQGLASAVGMAYASRRERALLDPDAAAGTSPFDHHVYVIASDGDLQEGVTSEASSLAGTQQLGNLVVIWDDNKISIEDDTEIAFTEDVLARYEAYGWHTQRVDWTNGGTGYAEDTDALATALDAAKNETGKPSIIALRTIIGWPSPTKQNTGGIHGSALGADEVAGLKTTLGLDPEATFTIDDDVLKHTRSVAERHGSERDAWDTAFEAWKTANPDGAALLERLGARELPAGWTESLPVFEASEKGVATRAASGKVLSALADVLPELWGGSADLAGSNNTTMDGEPSFIPFEHATKKFPGNPQGRTLHFGIREHAMGSILNGIVLHGLTRPYGGTFLQFSDYMRASVRLAALMEIPTTFVWTHDSIGLGEDGPTHQPVEHLAALRAIPGLDVVRPADANETAWAWRGIIENTSNPAGLVLTRQGVPTYPRGEDGFAPAEGTLRGAYTLLDTEGTPDVILVGTGSEVQLAVEAREQLAADGIAARVVSMPSREWFDRQDAEYRESVLPAGVKARVSVEAGIALSWRDVVGDAGRSVSLEHYGASADYKTLYREFGITADAVATAARESLATVRGEPGPT0011200_346DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615NANA
AK018_023111122tal_1COG0176TransaldolaseGTGACCGAGACGAACCGCCCCACCGCACAGCTGTCAGCCGCCGGTGTGTCCATCTGGCTCGACGACCTCTCCCGGGAGCGGCTCGACACCGGCAACCTCGCCGGTCTGGTGGACTCCCACGACGTGGTCGGCGTGACCACCAACCCCACGATCTTCGCCGGCGCCCTGGCCGGCGGCGACGCCTACGACTCCGCGCTGGCCGATCTCGCCGGCACCGACGTCGAGGCCGCCGTCGAGCGCATCACCACCGACGACGTGCGCGCCGCGGCCGACGTGCTGCGTGGCGTCCACGACCGCACGGACACCGTCGACGGCCGGGTCTCGATCGAGGTCGACCCGCGGCTGGCCCGCGACACGGAGGCGACGGTCGCCACCGCCCGGCGGCTGTGGAGCACCGTGGACCGCCCCAACGTCATGATCAAGATCCCCGCCACCGTCGAGGGTCTGCCGGCGATCACCGAGACCCTCGCCGCCGGGATCAGCGTCAACGTCACGCTCATCTTCTCCATCGAGCGCTACCGCGCCGTCATGGAGGCGTTCCTCGCCGGTCTCGAGCAGGCCCGTGCCAACGGTCACGACCTGTCCGTGATCGGGTCGGTCGCGTCGTTCTTCGTCTCGCGCGTCGACGCCGCCGTCGACCCCGCGCTGGCCGAGGTCGGCACCGACGAGGCGTCCGCGCTGCAGGGCACCGCCGCGATCGCCAACGCTCGCCTCGCCTACGCCGCCTACCAGGACGTCTTCGAGGCCGACGTGACGGGACGCTGGGCCGCGCTGCGCGAGGCCGGGGCGCACCCGCAGCGTCCGCTGTGGGCCTCGACCGGCGTGAAGAACCCCGACTACCCCGACACGCTCTACGTCACCGAGCTCGTCGCCCCCGGGGTCGTGAACACGATGCCGCAGGCCACGCTCGACGCGGTCGCCGACCACGGCGAGATCCCCGCCGACACCGTGACCGGCACCGCCGACAGCGCCGCGGCCACGATCGCCGCCATCGAGGCCCAGGGGATCTCGATGGCCGAGGTGACCGCGCAGCTCGAGGCCGAGGGCGTGAGCAAGTTCGAGAAGAGCTGGGACGAGCTGCTCACCACCACCAAGACCGGGCTCGACGCCGCGGGCGCCTGAMTETNRPTAQLSAAGVSIWLDDLSRERLDTGNLAGLVDSHDVVGVTTNPTIFAGALAGGDAYDSALADLAGTDVEAAVERITTDDVRAAADVLRGVHDRTDTVDGRVSIEVDPRLARDTEATVATARRLWSTVDRPNVMIKIPATVEGLPAITETLAAGISVNVTLIFSIERYRAVMEAFLAGLEQARANGHDLSVIGSVASFFVSRVDAAVDPALAEVGTDEASALQGTAAIANARLAYAAYQDVFEADVTGRWAALREAGAHPQRPLWASTGVKNPDYPDTLYVTELVAPGVVNTMPQATLDAVADHGEIPADTVTGTADSAAATIAAIEAQGISMAEVTAQLEAEGVSKFEKSWDELLTTTKTGLDAAGAPGPT0017375_896DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0017375-talA|talB-K00616NANA
AK018_023121542zwf2_1COG0364Glucose-6-phosphate 1-dehydrogenase 2GTGAGACCCGCCAAGATCACCGCTGAGCAGAATCCGCTGCGCGATCCGCTCGACCTGAGACTCCCCCGGATCGCCGGCCCGTGCGGCCTGGTGATCTTCGGGGTCACCGGCGACCTGTCGCGCAAGAAGCTCATGCCGGCCGTGTACGACCTGGCCAACCGCGGTCTGCTGCCGCCCGGGTTCGCGCTCACGGGCTTCGCCCGGCGCGACTGGGAGGACGAGGACTTCGCCCAGGTGGTGCACGACGCCGTCAAGGAGCACGCCCGCACGCCGTTCCGAGAGGCGACCTGGAAGCAGCTCGCCGAGGGCATCCGCTTCGTCCAGGGCAGCTTCGACGACCCGGACGCCTTCGAGGAGCTGCGCCGCACCGTCGAGACCCTCGACGCCGAACGCGGCACCGGCGGCAACCACGCGTTCTACCTGTCGGTGCCGCCCAGCGCCTTCCCGCTCGTGTGCGAGCAGCTGTCCCGCTCCGGGCTGTCGGAGTCCGCCGAGGACGCGTGGCGCCGGGTGGTCATCGAGAAGCCGTTCGGCCACGACCTGACCTCGGCCCAGGAGCTGGACGCCGTCGTGTCCCAGGTCTTCGACCCCGAGTCCGTGTTCCGGATCGACCACTACCTCGGCAAGGAGACGGTCCAGAACATCCTGGCCCTGCGGTTCGCCAACCAGCTCTTCGAGCCGCTGTGGAACTCCAACTACGTCGACCACGTGCAGATCACGATGGCCGAGGACATCGGCATCGGCGGCCGGGCCGGCTACTACGACGGCGTCGGTGCGGCGCGGGACGTCATCCAGAACCACCTGCTGCAGCTCCTGGCCCTCGTGGCCATGGAGGAGCCGGTGAACTTCGACGCCGACGCGCTGCGCGCCGAGAAGATCAAGGCCCTGTCCTCCGTCCGGCTGCCGCGGGACCTGTCCCGGCACACCGCCCGCGGGCAGTACGCCTCGGCCTGGCAGGGCGGGGAGAAGGTCCCCGGGTTCCTCGAGGAGGAGGGGTTCAACCCCGAGTCCACGACCGAGACCTACGCCGCCGTCCGGATGGACATCGACAACCGCCGCTGGGCCGGCGTGCCGTTCTACCTGCGCACGGGCAAGCGCCTCGGGCGCCGCGTCACCGAGGTGGCCGTGGTGTTCAAGAAGGCGCCGCACCTGCCCTTCGAGTCCTCGCTGACCTCGGACCTGGGCTCCAACGCGCTGGTCATCCGCGTCCAGCCCGACGAGGGCGTGACGCTCCGCTTCGGCGCCAAGGTGCCCGGCACGGCCATGGAGGTCCGCGACGTCACGATGGACTTCGGGTACGGGCACTCCTTCACGGAGTCCTCCCCCGAGGCCTACGAACGCCTCATCCTCGACGTGCTGCTGGGCGACCCGCCGCTGTTCCCGACCCGCGAGGAGGTCGAGCTCTCCTGGAAGATCCTCGACCCGGTGATCGCGCACTGGGCCGGCAAGGGCAAGCCGGACACCTACCCGGCCGGGTCCTGGGGGCCGCAGTCGGCCGACGCCATGATGGCCCGCGACGGCCGCACCTGGCGTCGACCCTGAMRPAKITAEQNPLRDPLDLRLPRIAGPCGLVIFGVTGDLSRKKLMPAVYDLANRGLLPPGFALTGFARRDWEDEDFAQVVHDAVKEHARTPFREATWKQLAEGIRFVQGSFDDPDAFEELRRTVETLDAERGTGGNHAFYLSVPPSAFPLVCEQLSRSGLSESAEDAWRRVVIEKPFGHDLTSAQELDAVVSQVFDPESVFRIDHYLGKETVQNILALRFANQLFEPLWNSNYVDHVQITMAEDIGIGGRAGYYDGVGAARDVIQNHLLQLLALVAMEEPVNFDADALRAEKIKALSSVRLPRDLSRHTARGQYASAWQGGEKVPGFLEEEGFNPESTTETYAAVRMDIDNRRWAGVPFYLRTGKRLGRRVTEVAVVFKKAPHLPFESSLTSDLGSNALVIRVQPDEGVTLRFGAKVPGTAMEVRDVTMDFGYGHSFTESSPEAYERLILDVLLGDPPLFPTREEVELSWKILDPVIAHWAGKGKPDTYPAGSWGPQSADAMMARDGRTWRRPPGPT0017380_1489DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036NANA
AK018_02313933hypothetical proteinATGATCATCGACATGCCGGACACCAGCACCAACGCGGTCGGCAAGCGGCTCGACAGCCTGCGCGACGAGGGCGGCGCCGTGGCGCTGGGACGCGTCCTGACGCTCGTCGTCGTGGCCGGCGAGGACGACATCGAGGCGGCCGTCGACGCGGCCAACGAGGCCAGCCACGAGCACCCGTGCCGCGTCGTCGTGGTGGCGCCGCTGGCCGGCGGGGCCACCGACGGCCGGGTCGACGCCGAGATCCGGGTCGGCGGCGACGCCGGCGCCTCGGAGGTCGTCGTCCTGCGCTGCTCCGACCCGCTGCGCGAGCACCCCGACACCCTCGTGATGCCGCTGCTGCTCCCCGACGCCCCGATCGTGGTGTGGTGGCCCGCGGGCGGACCCGACGACCCGACGGGGAACCCGCTGGGCGCCATGGCCCAGCGTCGCATCACCGACACCACCCGGGCGCACGACCCGGTCGACATGCTCGGCCGGCTGGCGGAGGCGTTCACGGAGGGCGACACCGACCTGGCGTGGGCTCGGGTCACGCTGTGGCGTGGACTCATCGCCGCCGCCGTGGACCAGCCCCCGTACGAACCGGTCACGGCCGTGCGGGTCGAGGGCGAGCACCAGCACACCTCGCTCGACCTGCTCGCGTCCTGGCTCGGTGCCAAGCTGCGCTGCCCCGCGCGCGTGGTCCGCACCGAGGACGCGGACGCCATCACGCGGGTGGTCCTGGAGCGCAAGAGCGGCCCCATCGTCCTGGACCGTCCGGACGGACGGGTCGTGACCATCACGCAGCCGGGCAAGCCGGACCGACGCGTCTCGCTGCCGATCCGTGCGCTGTCCGAGGCCCTCATCGAGGAGCTGCGGCGTCTCGACCCGGACGAGGTCTACGGTCAGGTGTTGCGAGCACTGGAGCGCGTCGAGACAGTGGAGTCGGCATCATGAMIIDMPDTSTNAVGKRLDSLRDEGGAVALGRVLTLVVVAGEDDIEAAVDAANEASHEHPCRVVVVAPLAGGATDGRVDAEIRVGGDAGASEVVVLRCSDPLREHPDTLVMPLLLPDAPIVVWWPAGGPDDPTGNPLGAMAQRRITDTTRAHDPVDMLGRLAEAFTEGDTDLAWARVTLWRGLIAAAVDQPPYEPVTAVRVEGEHQHTSLDLLASWLGAKLRCPARVVRTEDADAITRVVLERKSGPIVLDRPDGRVVTITQPGKPDRRVSLPIRALSEALIEELRRLDPDEVYGQVLRALERVETVESASNANANANANA
AK018_02314762pgl_1COG03636-phosphogluconolactonaseATGAGCACCCGTCTCGTCGTCGTCCACCCCGACGCCGCCGTCCTCGCCGAGGCCGCCGCGGCGCGCCTGCTCACGCGTCTGCTCGACGTGCAGTCCGTGCGCAGCCCCGCCCACGTCGTGCTGACGGGCGGCACGGTCGGCATCAGGACCCTCGCCGCAGCGGCTGCCAGCCCGCTGCGGTCGGCCGTCGACTGGTCCGGCGTCCACCTGTGGTGGGGGGACGAGCGGTTCCTGCCCGCCGGCGACCCCGACCGCAACGAGACGCAGGCGCGCGAGGCGCTCCTCGACGACCTCGTGGCGACCGGCGCCCTGCCCGAGGAGAACATCCACCGGATGCCGGCGCGCGGGGACGCCCCGTCCGAGGCGGCCACGCCCGAGGAGGCCGCGGCCGCGTACGCCGACGAGCTCGCGGAGCACTCCGAGGACGGCACGACGCCGCACTTCGACGTGCTGCTGCTGGGCATGGGGCCCGACGGCCACGTGGCCTCTCTGTTCCCCGAGCACCACGCCCTCGAGGCGCCCGGGTACACGGTGGGCGTGCACGGCTCGCCCAAGCCGCCCCCGGAGCGGGTCTCGTTGACGTTCGCCGCGATCGGGCAGGCCGACGAGGTCTGGGTCGTGGCGGCCGGCGGCGAGAAGGCGGAGCAGGCCGCGGCCGCGCTGGCCGACGGCCCCGTGACGCAGGTGCCCGCCGTGCGTGCCGTGGGTCGTCACCGCACGCTGTGGCTGGTGGACGCCGCGGCGGCCTCCGCACGCGACTGAMSTRLVVVHPDAAVLAEAAAARLLTRLLDVQSVRSPAHVVLTGGTVGIRTLAAAAASPLRSAVDWSGVHLWWGDERFLPAGDPDRNETQAREALLDDLVATGALPEENIHRMPARGDAPSEAATPEEAAAAYADELAEHSEDGTTPHFDVLLLGMGPDGHVASLFPEHHALEAPGYTVGVHGSPKPPPERVSLTFAAIGQADEVWVVAAGGEKAEQAAAALADGPVTQVPAVRAVGRHRTLWLVDAAAASARDPGPT0013345_541DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_02315318rbpA_3RNA polymerase-binding protein RbpAATGGGAGAGCAGGAGCGCGGCGTGCCCGCGCCCCGGAACCAGGTCTCGTACTGGTGCCTCAACGGGCACGAGACACGACCGAGCTTCGCGGCGGTCGACGAGATCGAACCCCCGGAGCAGTGGGACTGCCCCCGGTGCGGCTTCCCCGCTGGGCAGGACCCGGCGAACCCGCCGGCCCCGCTGCGCAACGAGCCCTACAAGACCCACCTGGCGTACGTGAAGGAGCGTCGGTCCGACGAGGACGGCGCCGCGCTGCTCCAGGAGGCTCTGGACACCCTGCAGGCGCGTCGCCGGGGTGTCGCCACGGCACGCGGCTGAMGEQERGVPAPRNQVSYWCLNGHETRPSFAAVDEIEPPEQWDCPRCGFPAGQDPANPPAPLRNEPYKTHLAYVKERRSDEDGAALLQEALDTLQARRRGVATARGNANANANANA
AK018_02316246secG_1COG1314putative protein-export membrane protein SecGATGTTCGCAGCGTTGACGATCTTCCTGAACGTGCTGCTGGTGCTCACCAGCGCCTTCCTGATCCTGCTCATCCTCATGCACAAGGGGAAGGGCGGGGGACTGTCCGACATGTTCGGCGGAGGGATCTCCAGCGCGGCGGGGAGCTCCGGCGTCGCGGAGCGCAACCTGAACCGCATCACCGTCGGCATCGCCGTCGTGTGGTCGGTCGTCGTGGTCCTGCTCGGGGTCGCCACGCGCGTGAGCTGAMFAALTIFLNVLLVLTSAFLILLILMHKGKGGGLSDMFGGGISSAAGSSGVAERNLNRITVGIAVVWSVVVVLLGVATRVSPGPT0025720_3050DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025720-secG-K03075NANA
AK018_02317792tpiA_1COG0149Triosephosphate isomeraseGTGGCCACGAACCGCACGCCGCTGATGGCGGGCAACTGGAAGATGAACCTGGACCACGCCGAGGCGATCGCCGCGGTCCAGAAGCTCGCCTGGACCCTCAAGGACGCCGGGCACGACTACTCCGCGGTGGAGGTGGCGGTCCTCGCGCCGTTCACCGACCTGCGCTCGGTGCAGACCCTGGTCGACGCCGACAAGCTCGACATCCGCTACGGCGCCCAGGACCTCTCCCCGCACGAGAAGGGCGCCTACACCGGCGACGTCTCGGCCCCGATGCTCGCGCGCCTCGGGTGCACGTACGTCGCCGTCGGCCACTCCGAGCGCCGCGAGCACCACGGCGAGGACGACGCGCTGATCAACGCGAAGGTCAAGGCGGCCTTCGCCCAGCAGATCACGCCGGTGCTGTGCGTCGGCGAGGGCCTCGACGTGCGCGAGGCGGGCGACCAGGTGTCGTACACCCTGGCGCAGGTCGACGCGGCCCTCGAGGGTGTCCCGGCCGAGCAGGCGAAGACCGTCGTCATCGCCTACGAGCCCGTCTGGGCGATCGGGACCGGCAAGGTCGCGACCCCGGAGGACGCCCAGGAGGTCTGCGGGGCGATCCGCGGCCGCCTCGCCGAGCTGTACGACGCCGAGCTCGCCGACGGCGTGCGCGTGCTCTACGGCGGCTCGGTGAAGTCGGGCAACGTCGCGCAGATCATGGCGCAGACGGACGTCGACGGCGCTCTCGTCGGCGGCGCGAGCCTCGACGCCGAGGAGTTCGCCAAGATCGCGCGCTACCAGTCGCACGTCTCCTGAMATNRTPLMAGNWKMNLDHAEAIAAVQKLAWTLKDAGHDYSAVEVAVLAPFTDLRSVQTLVDADKLDIRYGAQDLSPHEKGAYTGDVSAPMLARLGCTYVAVGHSERREHHGEDDALINAKVKAAFAQQITPVLCVGEGLDVREAGDQVSYTLAQVDAALEGVPAEQAKTVVIAYEPVWAIGTGKVATPEDAQEVCGAIRGRLAELYDAELADGVRVLYGGSVKSGNVAQIMAQTDVDGALVGGASLDAEEFAKIARYQSHVSPGPT0017995_770DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017995-tpiA-K01803NANA
AK018_023181200pgk_1COG0126Phosphoglycerate kinaseATGAAGACGATCGATTCGCTCGGCGACCTGCGCGGCCGGCGCGTCCTGGTCCGTTCCGACTTCAACGTGCCGCTCGACGGCACGACCATCACCGACGACGGCCGCATCCGCGCCGCGCTCCCGACGCTGACGCGTCTGGTCGACGCCGGCGCCCGCGTCGTGGTGATGGCGCACCTGGGCCGGCCCAAGGGCACGCCCGACCCGGCGTTCTCCCTCGCCCCGGTCGCCGCCCGCCTGGGCGAGCTCCTCGGCCAGGACGTCGCGCTCGCGCAGGACCTCGTGGGAGAGTCCGCCCGCGCCACCGTCGCGGGTCTGGCCGACGGCCAGGTGGCCCTGCTGGAGAACGTCCGCTTCGACCCGCGCGAGACCTCCAAGGTCGACGCCGAGCGGGCCGAGCTCGCCGGTGAGCTGGCCGAGCTGGGCGACGCGTTCGTGTCCGACGGCTTCGGCGTCGTGCACCGCAAGCAGGCCTCCGTCTACGACGTCGCCGAGCGGCTGCCCGCCGGTGCCGGTGAGCTCGTCCTCGCCGAGGTGGAGTCCCTGTCCCGCGCCACGACCGACCCGGAGCGCCCCTACGCCGTCGTGCTCGGCGGCTCGAAGGTGTCCGACAAGCTCGGCGTCATCGCCAACCTCCTGACCAAGGCGGACCGGCTCCTCATCGGCGGCGGGATGGTGTTCACCTTCCTGGCGGCCAAGGGCCACGCGGTCGGCTCCTCGCTGCTGGAGGAGGACCAGATCGACACGGTCAAGGAGTACCTCGCGCAGGCCGAGGCCAACGGCGTCGAGATCGTGCTGCCCACCGACATCGTGGCGGCCGACTCCTTCGCGGCCGACGCCCCCCACGAGACGGTCGCCGCCGACGCGATCCCCGACGGCAAGATGGGCCTGGACATCGGCCCGGACTCCGGCGCGCTGTTCGCGGCCAAGCTCGCCGACGCCCGCACGATCGCCTGGAACGGTCCCATGGGCGTCTTCGAGTTCGCGGCGTTCGCCGGCGGCACCCGTGCCGTGGCCCAGGGCATCGTCGACGCCACCGCGGCCGGCGCCTTCTCGATCGTCGGCGGCGGCGACTCGGCGGCCGCCGTGCGCAAGCTCGGCTTCGACGAGGCGGGCTTCAGCCACATCTCCACGGGCGGCGGCGCGAGCCTCGAGCTGCTCGAGGGCAAGCAGCTGCCCGGCCTGACCGTGCTGGCCGACTGAMKTIDSLGDLRGRRVLVRSDFNVPLDGTTITDDGRIRAALPTLTRLVDAGARVVVMAHLGRPKGTPDPAFSLAPVAARLGELLGQDVALAQDLVGESARATVAGLADGQVALLENVRFDPRETSKVDAERAELAGELAELGDAFVSDGFGVVHRKQASVYDVAERLPAGAGELVLAEVESLSRATTDPERPYAVVLGGSKVSDKLGVIANLLTKADRLLIGGGMVFTFLAAKGHAVGSSLLEEDQIDTVKEYLAQAEANGVEIVLPTDIVAADSFAADAPHETVAADAIPDGKMGLDIGPDSGALFAAKLADARTIAWNGPMGVFEFAAFAGGTRAVAQGIVDATAAGAFSIVGGGDSAAAVRKLGFDEAGFSHISTGGGASLELLEGKQLPGLTVLADPGPT0018015_3420DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018015-pgk-K00927NANA
AK018_023191005gapA_1COG0057Glyceraldehyde-3-phosphate dehydrogenaseGTGACCATCCGCGTCGGTATCAACGGCTTCGGCCGCATCGGACGGAACTACTACCGGGCTCTGGTCGAGTCCGGTGCGGACATCGAGGTCGTGGGCGTCAACGACCTCACCGACAACAAGACGCTCGCCCACCTGCTCAAGTACGACACCGTGCTGGGCCGGTTCGGCAAGACCGTCGAGTTCGACGACGACAACATCATCGTCGACGGCGCCAAGATCCGCGCTCTCGCCGAGCGCGACCCGGCCAACCTCCCCTGGGGCGAGCTGGGTGCGGACATCGTGATCGAGTCCACCGGCTTCTTCACCGACGCGACCAAGGCCAAGGCGCACATCGACGCCGGCGCGAAGAAGGTCATCATCTCCGCCCCGGCGAAGAACGAGGACGCGACCTTCGTCATGGGCGTCAACAGCGACCAGTACGACCCGGCCGCGCACCACGTGATCTCCAACGCCTCGTGCACCACGAACTGCCTCGCGCCGCTGGCCAAGGCCCTCAACGACGCGATCGGCATCGAGCGTGGTCTCATGACCACGATCCACGCCTACACGGGTGACCAGAACATCCAGGACGGCCCGCACAAGGACCTGCGTCGCGCCCGCGCCGCGGCCCAGAACATCGTGCCGACCACGACCGGCGCCGCCAAGGCCGTCGCCCTGGTCCTGCCGGAGCTCAAGGGCAAGCTGGACGGCTACGCGCTGCGCGTGCCGACGATCACCGGTTCGGCGACCGACCTGACCTTCGAGTCCCCCAAGGAGGTCTCGGTCGAGGAGGTCAACGCCGCGGTCAAGGCTGCCGCCGAGGGCCCGCTCAAGGGCGTGCTGTCCTACGTCGAGGACGACATCGTCTCCTCGGACATCGTGACGGACCCGCACCAGAGCATCTTCGACGCCAAGCTCACCAAGGTGATCGGCAACCAGGTCAAGGTCGTCTCCTGGTACGACAACGAGTGGGGCTACTCCAACTCGCTCGTCTCGCTGACCGAGCTCGTCGGCGAGAAGCTCTGAMTIRVGINGFGRIGRNYYRALVESGADIEVVGVNDLTDNKTLAHLLKYDTVLGRFGKTVEFDDDNIIVDGAKIRALAERDPANLPWGELGADIVIESTGFFTDATKAKAHIDAGAKKVIISAPAKNEDATFVMGVNSDQYDPAAHHVISNASCTTNCLAPLAKALNDAIGIERGLMTTIHAYTGDQNIQDGPHKDLRRARAAAQNIVPTTTGAAKAVALVLPELKGKLDGYALRVPTITGSATDLTFESPKEVSVEEVNAAVKAAAEGPLKGVLSYVEDDIVSSDIVTDPHQSIFDAKLTKVIGNQVKVVSWYDNEWGYSNSLVSLTELVGEKLPGPT0018000_5939DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018000-gapA-K00134NANA
AK018_02320981whiA_1COG1481putative cell division protein WhiAATGGCGCTCACGGCAGAGGTGAAGGACGAGCTGGCTCGATACCAGGTGACGCGCACGTCGTGCCGGAAGGCCGAGGTGTCGGCGATGCTGCGCTTCTCCGGAGGGCTGCACATCATCTCCGGGCGGGTGGTCATCGAGGCCGAGCTCGACGGCGACGCGGTGGCGGCGCGGCTGCGCCGCGCGATCGCCGACCTGTACGGGCACCAGAGCGAGCTGATCGTGGTCAAGGCGGGCGGCCTGCGCAAGAACGACCGGTTCGTCGTCCGCGTGGTGCGCGACGGGGAGTCGCTGGCCCGTCAGACGGGCCTGCTGGACGGTCGTGGGCGGCCGGTGCGTGGTCTGGCCCCCGAGGTCGTCTCGAGCGGCGCCGACGAGGCCGAGGCCGTCTGGCGGGGCGCCTTCCTCGCGCACGGCTCGCTGACCGAACCGGGGCGCTCGATGGCCCTGGAGATCACGTGTCCGGGCCCGGAGTCCGCGCTCGCCCTGGTGGGCGCCGCGCGGCGCCTGGGCGTCCAGGCCAAGTCGCGCGAGGTCCGCGGGATCGACCGCGTCGTCGTGCGCGACGGCGAGGCCATCGGGGAGATGCTGCGCCGCATGGGCGCCACGGCGACCCGGCAGACCTGGGAGGACCGCCGCGCCCGCCGCGAGGTCCGCGGCACGGCGAACCGGCTGGCCAACTTCGACGACGCGAACCTGCGACGCTCGGCACGCGCGGCCGTCGCGGCCGGGGCCCGGGTGGAGCGCGCCTTCGAGATCCTCGGGGACGAGGTGCCGGACCACCTGCGCGAGGCGGGCGAGCTGCGACTCGCGCACAAGCAGGCCTCGTTGGAGGAGCTCGGGCGCCTCGCCGAGCCGCAGCTGTCGAAGGACGCGGTCGCCGGCCGTATCCGCCGGCTGCTGTCCACGGCGGACAAGCGCGCCATGGAGCTCGGCATCCCTGACACGGAGGCCGGGCTGAGCGCCGACCTGCTCGACCTGTGAMALTAEVKDELARYQVTRTSCRKAEVSAMLRFSGGLHIISGRVVIEAELDGDAVAARLRRAIADLYGHQSELIVVKAGGLRKNDRFVVRVVRDGESLARQTGLLDGRGRPVRGLAPEVVSSGADEAEAVWRGAFLAHGSLTEPGRSMALEITCPGPESALALVGAARRLGVQAKSREVRGIDRVVVRDGEAIGEMLRRMGATATRQTWEDRRARREVRGTANRLANFDDANLRRSARAAVAAGARVERAFEILGDEVPDHLREAGELRLAHKQASLEELGRLAEPQLSKDAVAGRIRRLLSTADKRAMELGIPDTEAGLSADLLDLNANANANANA
AK018_02321834COG0391Putative gluconeogenesis factorGTGGCCGACGACGGCGGGTCCTCGGGCCGGTTGCGCGAGGAGCTGGGCGTGGTGCCCCCGGGCGACCTGCGGATGGCGCTCGCCGCCCTGTGCGACGACTCCGACTGGGGCCGCACGTGGAGCGGGCTGCTCCAGCACCGGTTCGCCTCCGGCGGCGAGCTCGACGGGCACGCCATGGGCAACCTGCTCATCGTCTCGCTCTGGGAACGCCTGGGGGACACCGTGGCGGGGCTCGACTGGGTGGGCCGGCTGCTCGGCGCCCGCGGCCGGGTGCTGCCCATGGCGTCGGTCCCGCTCGTCGTCGAGGCCGACGTCTCCTCGCACGGCCGGTGCTCCACGGTTGTCGGGCAGAGCAGGGTCGCCGTCACCGACGGGCTGGTCGAGCAGCTCCGGCTGGTTCCGGCGGACCCGCCGGCGTGCCCGGAGGCGGTCCGCGCGGTGCAGGAGGCCGACTGGGTCGTCATGGGCCCGGGCTCCTGGTACTCGTCGGTGCTGGTGCACCTGCTCGTGCCGGAGCTGGCGGCGGCGCTGCACTCGACGGCGGCGCGGCGCTGCGTGACGCTGAACCTCAGCGCCGAGCGTGGCGAGACCCACGGGCTGTCGGCGCCGCAGCACCTCGGGGCGCTGCGCAAGCACGCCCCGGGGCTGCGGGTCGACGCCGTGCTCGCCGATCCCTCGACGGTGGACGACCGCGACGCGCTGGAACGCGCCGCCGCCGAGCTCGGTGCCCGGCTGGTGTTGCGGCAGGTCCGACGGGGTGACGGCACCCCGCGGCACGACCCGTTGCGCCTGGCGGCGGCCTATCACGATGTCTTCGAGGGCGTGGCAGGATGAMADDGGSSGRLREELGVVPPGDLRMALAALCDDSDWGRTWSGLLQHRFASGGELDGHAMGNLLIVSLWERLGDTVAGLDWVGRLLGARGRVLPMASVPLVVEADVSSHGRCSTVVGQSRVAVTDGLVEQLRLVPADPPACPEAVRAVQEADWVVMGPGSWYSSVLVHLLVPELAAALHSTAARRCVTLNLSAERGETHGLSAPQHLGALRKHAPGLRVDAVLADPSTVDDRDALERAAAELGARLVLRQVRRGDGTPRHDPLRLAAAYHDVFEGVAGNANANANANA
AK018_02322936COG1660Nucleotide-binding proteinATGAGCGAACCGTCGCCCATCACCGTCCCGCAGGGCATCCCCGAGATCGAGTCCGCCACCCCCGCCCCTGACCGTTCCGACCCCGAGGTGCTCATCATCACGGGCATGTCCGGAGCGGGGCGCACCCGTGCCGCCGGCGTCCTGGAGGACCTGGACTGGTTCGTGGTGGACAACCTGCCACCGATGATGATCGTGCCGCTGGTCGACCTGATGACGAAGGCCGGGTCGTCCGTGGAGCGGTTGGCGGTCGTCGTCGACGTGCGTGGCCGGGAGTACTTCGGCGAGCTGGCGCAGGCGCTGCAGCACCTCGACGACAGCGGCGTCACGCACCGCATCCTGTTCCTCGACGCCCGCGACGACGTCCTGGTCCGCCGCTACGAGAGCGTGCGGCGACCGCACCCTCTGCAGGGCGACGGGCGGATCCTGGACGGCATCGAGGCCGAGCGGCGCATGCTCGCCTCGCTGGCCGAGCGCGCCGACGTCGTGCTGGACACCTCCGAGATGTCCGTCCACGAGCTCGCCAAGGAGGTCCGGGACACGGTCGCGGCGGGCGCTGCCGACTCCCTGCGCGTGAACGTCGTGGCGTTCGGCTTCAAGTACGGCCTGCCGCTGGACGCGGACCACGTCGCCGACGTGCGCTTCCTGGCGAACCCCTACTGGATCACCGAGCTGCGGCACCTGACCGGCCAGGACGAGGCCGTGCGCGAGTACGTGCTGGCCCGGCCCGGGGCGCGGGAGTTTGTCGACCGCTACGTCGCGGCCCTCGAGCCGGTGCTGGCCGGCTACCTCGCGGAGGAGAAGCGCTTCGTCACGATCGCCGTGGGCTGCACCGGCGGCAAGCACCGGTCCGTGGCCATCGCGGGAGAGATCGCCGACCGGCTGCGTCAGGACGGCCAGCGGGTGACGGTCACGGCACGTGACCTCGGGAAGGAGTAGMSEPSPITVPQGIPEIESATPAPDRSDPEVLIITGMSGAGRTRAAGVLEDLDWFVVDNLPPMMIVPLVDLMTKAGSSVERLAVVVDVRGREYFGELAQALQHLDDSGVTHRILFLDARDDVLVRRYESVRRPHPLQGDGRILDGIEAERRMLASLAERADVVLDTSEMSVHELAKEVRDTVAAGAADSLRVNVVAFGFKYGLPLDADHVADVRFLANPYWITELRHLTGQDEAVREYVLARPGAREFVDRYVAALEPVLAGYLAEEKRFVTIAVGCTGGKHRSVAIAGEIADRLRQDGQRVTVTARDLGKENANANANANA
AK018_023232022uvrC_1COG0322UvrABC system protein CATGGCCGACCCAGCGACCTACCGCCCTCGCGCGGGCGAGATCCCGACGTCCCCGGGGGTGTACCGGTTCCGCGACCCGCACGGGCGCGTGATCTACGTCGGCAAGGCGAAGAACCTGCGCCAGCGGCTGTCGAACTACTTCCAGGACGTCGCGAACCTGCACCACCGCACCCAGCGGATGGTCACGACGGCGGCCTCGGTCGAGTGGACCGTCGTGGGCACCGAGGTCGAGGCTCTCGCGCTCGAGTACTCGTGGATCAAGGAGTACGACCCGCGGTTCAACGTCAAGTACCGCGACGACAAGTCCTACCCCTACCTCGCCGTGACCATGGGAGAGGAGATCCCCCGGGCGCAGGTGATGCGGGGGACCAAGCGGCGCGGCACGCGGTACTTCGGTCCGTACGGGCACGCCTGGGCGATCCGGGAGACCCTCGACCTGCTGCTGCGCGTCTTTCCCGTGCGGACCTGCTCCGCGGGCGTGTACCGGCGGGCCCAGCAGTCCGGCCGGCCCTGCCTGCTCGGGTACATCGACAAGTGCTCGGCGCCGTGCGTGGGCCGTGTCAGCCCCGAGGAGCACCGCGACCTGGCGAGCGACCTGTGCGACTTCATGGCCGGTGACACCGGACGGTTCGTCCGGCGGCTGGAGAAGGAGATGGCCGGCGCCGCGGCCGCGATGGAGTACGAGCGCGCCGCCCAGCTGCGCGACGACCTCGCGGCGCTGCGTCGCGTGACCGAGAAGAACGCCGTCGTCCTCTCGGACGCCACCGACGCGGACGTCTTCGCGCTGGTCGGCGACGAGCTCGAGGCCGCGGTCCAGGTGTTCCACGTCCGCGGGGGCCGGATCCGCGGTCAGCGCGGCTGGGTCGTGGAGAAGGTCGAGGACGTCACCGACGCGGAGCTGGTCGAGCACCTGCTCCAGCAGGTCTACGGCGCCGTCGACGAGGTCCAGGACCCCACGCTGGCGCCCGAGCAGTCCCGGGCGGCCACCCGGGACGCCGTGCCGCGCGAGGTGCTCGTGCCCGTCCTGCCGCCGGACCTGGCGGAGGTGACGACCTGGCTGTCCGGGCTGCGGGGCGCCCGGGTGGACGTCCGCGTCCCGCAGCGCGGGGACAAGCGCGAGCTCGCCGAGACGGTCCGCACGAACGCCGAGCAGGCGCTGGCGCTGCACCGGACCCGCCGCGCCGGCGACCTGACCACCCGCAGCCAGGCGCTCGCCGAGCTCCAGGACGCCCTCGGGCTCGACGAGGCGCCGCTGCGCATCGAGTGCTACGACGTCTCGCACACCCAGGGCAGCTACCAGTCGGCCTCCATGGTCGTCTTCGAGGACGGCCTGCCCCGCAAGAGCGAGTACCGGACCTTCTCCGTCCGGGGCCCGGCCGGCGACGGCGCGGCGGACGACACCGCGGCGATGCACGAGGTCATCACCCGCCGGTTCAAGCGCTACCTCTCCGACCGGCACGCCTCGGGCGAGGTGGACGGCTCGGGGCCCGTGGGAGCCGAGGCCGAGCCGGAGGAGCGGCGGCGGTTCGCCTACCCGCCGAACCTCGTCGTGGTCGACGGCGGGCCGCCGCAGGTGGCCGCGGCGGCACGTGCGCTGGAGGAGCTGGGCGTGACCGACGTCGCCCTGTGCGGGCTGGCCAAGCGCCTGGAGGAGGTCTGGGTGCCCCACGACGACTACCCGGTCATCCTCGAGCGGGCCTCCCAGGGGCTCTACCTGCTGCAGCGTGTGCGTGACGAGGCCCACCGGTTCGCGATCGCCCAGCACCGCAAGCGGCGCAGCAAGGGCATGGTGTCCTCGGTGCTCGACGAGGTGCCGGGCCTGGGGCCGGCCCGGCAGCGTGCGCTGCTGGACGCCTTCGGCTCGGTCAAGCGCCTGCGCGCCGCCACCGTGGACGAGGTCGCCCGGGTCAAGGGCATGGGCCCGGCCACCGCGCAGGCCGTGGTCGACGCCCTGGCGGGCGCGACCGCCTCCGCCGCCACGCCGGCCGGGGCCGAGACTCCGGGCGCCGGGGCCGCGTCATGAMADPATYRPRAGEIPTSPGVYRFRDPHGRVIYVGKAKNLRQRLSNYFQDVANLHHRTQRMVTTAASVEWTVVGTEVEALALEYSWIKEYDPRFNVKYRDDKSYPYLAVTMGEEIPRAQVMRGTKRRGTRYFGPYGHAWAIRETLDLLLRVFPVRTCSAGVYRRAQQSGRPCLLGYIDKCSAPCVGRVSPEEHRDLASDLCDFMAGDTGRFVRRLEKEMAGAAAAMEYERAAQLRDDLAALRRVTEKNAVVLSDATDADVFALVGDELEAAVQVFHVRGGRIRGQRGWVVEKVEDVTDAELVEHLLQQVYGAVDEVQDPTLAPEQSRAATRDAVPREVLVPVLPPDLAEVTTWLSGLRGARVDVRVPQRGDKRELAETVRTNAEQALALHRTRRAGDLTTRSQALAELQDALGLDEAPLRIECYDVSHTQGSYQSASMVVFEDGLPRKSEYRTFSVRGPAGDGAADDTAAMHEVITRRFKRYLSDRHASGEVDGSGPVGAEAEPEERRRFAYPPNLVVVDGGPPQVAAAARALEELGVTDVALCGLAKRLEEVWVPHDDYPVILERASQGLYLLQRVRDEAHRFAIAQHRKRRSKGMVSSVLDEVPGLGPARQRALLDAFGSVKRLRAATVDEVARVKGMGPATAQAVVDALAGATASAATPAGAETPGAGAASPGPT0014925_819DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014925-uvrC-K03703NANA
AK018_02324516hypothetical proteinGTGGCCATGGGAGCCCACCACGAGTACTCCGTGACCGTCCGCTGGCCCGTCACCGGCGTCGAACCCGGCAGCGCCGCCGGGGCGACGACGTCGTACACCGCCTACACCCGCGACCACGACGTCGTCCTGCCGGGCCGTCCGGTGCTGGCCGGCACGGCCGACCCGTCGTTCCGCGGGGACCCGGAGCGCTACAGCCCCGAGGACCTGTTCGTGGCGAGCCTGTCCCAGTGCCACATGCTGTGGTTCCTGCACCTGGCCGCGGAGCGCGGCCTGGTGGTGCACTCCTACAGCGACGCCGCGACGGGCACGATGCGCGTCGAGTCGCGGGGCGAGGGGCAGTTCAGCGACGTCACGCTGCACCCGCGCCTCCTGGTCGCGCCGGGGGAGCAGGCCACCGAGGAGATCGTGGCCGAGCTGCACGAGCGGGCGCACGCCCTGTGCTTCCTCTCGCGCAGCGTGAACTTCCCCGTGCTCGTCGAGCCGGCGCCGCTGCACGTGGCCGACGAGGCGGCCTGAMAMGAHHEYSVTVRWPVTGVEPGSAAGATTSYTAYTRDHDVVLPGRPVLAGTADPSFRGDPERYSPEDLFVASLSQCHMLWFLHLAAERGLVVHSYSDAATGTMRVESRGEGQFSDVTLHPRLLVAPGEQATEEIVAELHERAHALCFLSRSVNFPVLVEPAPLHVADEAANANANANANA
AK018_023252949uvrA_2COG0178UvrABC system protein AGTGAGCAATCGCCTCGTCGTCTCCGGTGCCCGTGAGCACAACCTGCGCAACGTCGACCTCGACCTGCCGCGCGACCGGCTCATCGTGTTCACCGGGCTGAGCGGCTCGGGCAAGTCCTCGTTGGCGTTCGACACGATCTTCGCCGAGGGGCAGCGCCGCTACGTCGAGTCGCTCTCGGCCTACGCCCGCCAGTTCCTGGGGCAGATGGACAAGCCGGACGTCGACTTCATCGAGGGGCTGAGCCCGGCGGTCTCGATCGACCAGAAGTCGACGAACCGCAACCCGCGCTCGACGGTCGGCACGATCACCGAGGTGTACGACTACCTGCGGCTGCTCTTCGCCCGGGCGGGGACGCAGCACTGCCCCGTCTGCGACGAGCCGATCCAGGCCCAGACGCCGCAGCAGATCGTCGACAAGATCCTCGAGCTGCCCGAGGGGACCCGCTACCAGGTCCTCGCCCCCGTGGTCCGGGGCCGCAAGGGGGAGTACACCGAGCTGTTCGGCGAGCTGCAGACCCAGGGCTTCGCCCGCGCCCGGGTCGACGGCGAGGTGGCCCAGCTCAGCACGCCGCCCACGCTGGAGAAGAACCTCAAGCACGACATCGAGGTCGTCGTCGACCGGCTCGTGGCCCGCGACGGCGTGCAGCGCCGCCTGACCGACTCCGTCGAGACCGCCCTCGGGCTGGCCGGCGGGCTGGTGATGATCGAGCTCGTGGACGCGGACCTGGACGATCTCGACCGGGTCCGCAAGTACTCCGAGAAGCGCGCCTGCCCGAACGACCACCCGCTCAGCCTGGACGAGATCGAGCCGCGGACCTTCTCGTTCAACGCGCCCTACGGCGCCTGCCCGGAGTGCACGGGCATCGGGTTCCGCCTCGAGGTCGACCCCGAGCTCGTCGTGCCGGACCCGGAGAAGACGCTGCGCGAGGGCGCGATCGTGCCGTGGGCGCAGACGTCGTCGGAGTACTTCGAGCGGGTCCTGACCGCTCTCGCCGACGAGATGACGTTCTCCCTCGACGTGCCGTGGCGTGCGCTGCCGCAGCGTGCGCGCACCGCCGTCCTGCACGGCCGGAACCACAAGGTGCACGTGCGCTACCGCAACCGGTGGGGGCGTGAGCGCCAGTACTCGACCGGCTTCGAGGGGGCCGTGACCTTCATCGAGCGGCGGCACTCCGAGACGGAGTCCGACTGGTCGAAGGAGCGCTACGAGGCCTTCATGCGCCAGGTGCCGTGCCCGGTGTGCCAGGGTGCCCGCCTCAAGCCCGAGGTGCTGGCCGTCCGGGTCGGCTCGAAGTCGATCTGGGACGTGTGCCGGCTGCCCATCGCCGAGGCCAAGGAGTACCTGGACGCCCTGGACCTCGGCGAGCGGGAGCGCGCCATCGCGGGCGAGGTGCTCAAGGAGATCCACGCGCGGCTCGGCTTCCTGCTCGACGTCGGCCTGCACTACCTCACCCTCGAGCGCGCGGCGGGCACGCTGTCCGGCGGGGAGGCGCAGCGCATCCGCCTGGCGACCCAGATCGGGTCCGGGCTGGTCGGTGTGCTGTACGTGCTCGACGAGCCGAGCATCGGTCTGCACCAGCGGGACAACCGTCGACTCATCGACACCCTGAGCCGGCTGCGCGACCTCGGCAACACCCTCATCGTGGTCGAGCACGACGAGGACACGATCCGGTCCGCGGACTGGATCGTCGACGTCGGACCGGGTGCGGGCGAGCACGGCGGGCAGGTCGTGCACTCCGGCGACTACGCCGGGCTGCTCGAGACCGAGGCGTCGATGACGGGTGCCTACCTGTCCGGACGGCGCAGCATCGCGCTGCCGGCCACCCGGCGCGGGGTCGACCCCCAGCGGGAGCTCACCGTCGTCGGCGCCCGCGAGAACAACCTGCGAGACATCGACGTGTCGTTCCCCCTCGGCGTGCTCACCGCCATCACGGGGGTGTCGGGGTCGGGCAAGTCCACGCTGGTCAACTCGATCCTGCACACCGTGCTCGCCAACGAGCTCAACGGCGCGCGGCAGGTGGCCGGCCGGCACACGCGCGTGACCGGCACCGAGCACCTCGACAAGGTCGTGCACGTCGACCAGGGACCGATCGGCCGGACCCCGCGGTCGAACCCGGCCACCTACACCGGCGTGTGGGACCGGATCCGCAAGATCTTCGCCGAGACCGAGGAGGCGAAGGTCCGCGGGTACGGACCCGGTCGGTTCTCGTTCAACGTCAAGGGCGGCCGGTGCGAGGCCTGCTCCGGAGACGGCACGCTGAAGATCGAGATGAACTTCCTGCCGGACGTCTACGTGCCCTGCGAGGTCTGTCACGGGGCGCGGTACAACCGCGAGACCCTCGAGGTGCACTTCAAGGGCCGGACGGTCGCCGACGTCCTGGACATGCCGATCGAGGAGGCCGCCGAGTTCTTCTCCGCGTTCCCGGCGATCTCGCGGCACCTGACCACGCTGGTGGAGGTCGGCCTCGGCTACGTGCGTCTGGGCCAGCCGGCCCCCACGCTGTCCGGTGGCGAGGCGCAGCGCGTCAAGCTCGCCAGCGAGCTGCAGAAGCGCTCGACGGGCCGCACCGTGTACGTGCTCGACGAACCCACCACGGGCCTGCACTTCGAGGACATCCGCCGGCTGCTGTCGGTGCTGCAGTCGCTCGTCGACAAGGGCAACACCGTGCTCGTCATCGAGCACAACCTGGACGTGGTCAAGAGCGCCGACTGGATCATCGACATGGGACCCGAGGGCGGCTCCGGCGGCGGGATCGTCGTGGCCCAGGGCACGCCGGAGCAGGTCGCGGCCGTGCCGGAGAGCCACACCGGCCGCTTCCTCGCCGAGACGCTGGCGCCGCACGCGGACGTCCCGGTCGAGCCGCAGGTCGCGGCCGCCGCGGCAGCGGCGCCGCCCGCACGGCGGCGCAAGACGGCCAAGGCGCGGGCCACCAAGCACGACGCCGCCTGAMSNRLVVSGAREHNLRNVDLDLPRDRLIVFTGLSGSGKSSLAFDTIFAEGQRRYVESLSAYARQFLGQMDKPDVDFIEGLSPAVSIDQKSTNRNPRSTVGTITEVYDYLRLLFARAGTQHCPVCDEPIQAQTPQQIVDKILELPEGTRYQVLAPVVRGRKGEYTELFGELQTQGFARARVDGEVAQLSTPPTLEKNLKHDIEVVVDRLVARDGVQRRLTDSVETALGLAGGLVMIELVDADLDDLDRVRKYSEKRACPNDHPLSLDEIEPRTFSFNAPYGACPECTGIGFRLEVDPELVVPDPEKTLREGAIVPWAQTSSEYFERVLTALADEMTFSLDVPWRALPQRARTAVLHGRNHKVHVRYRNRWGRERQYSTGFEGAVTFIERRHSETESDWSKERYEAFMRQVPCPVCQGARLKPEVLAVRVGSKSIWDVCRLPIAEAKEYLDALDLGERERAIAGEVLKEIHARLGFLLDVGLHYLTLERAAGTLSGGEAQRIRLATQIGSGLVGVLYVLDEPSIGLHQRDNRRLIDTLSRLRDLGNTLIVVEHDEDTIRSADWIVDVGPGAGEHGGQVVHSGDYAGLLETEASMTGAYLSGRRSIALPATRRGVDPQRELTVVGARENNLRDIDVSFPLGVLTAITGVSGSGKSTLVNSILHTVLANELNGARQVAGRHTRVTGTEHLDKVVHVDQGPIGRTPRSNPATYTGVWDRIRKIFAETEEAKVRGYGPGRFSFNVKGGRCEACSGDGTLKIEMNFLPDVYVPCEVCHGARYNRETLEVHFKGRTVADVLDMPIEEAAEFFSAFPAISRHLTTLVEVGLGYVRLGQPAPTLSGGEAQRVKLASELQKRSTGRTVYVLDEPTTGLHFEDIRRLLSVLQSLVDKGNTVLVIEHNLDVVKSADWIIDMGPEGGSGGGIVVAQGTPEQVAAVPESHTGRFLAETLAPHADVPVEPQVAAAAAAAPPARRRKTAKARATKHDAAPGPT0014915_1264DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701NANA
AK018_02326357hypothetical proteinGTGACCCACAGCAGACAGTCGACCAGCTCCCGGACCGTCGGGGCGTGGGTCGCCGCCGCGCTCGTCCCGGTGGGCTTCCTGCTCGGCCTCGTCCTGACGTACGTGCTCGAGGGAGTGCTCGCGGGGTCGACGGTCGGTGACGAGCGGTCGCTCACCGCCGATCTCGTGGGCGCGCTGCTGACGATCGTGCTCGTCGTGGTGCCGGCGTCGGCGGCCTGGAGGCTGGGGCGTCGTGCCGGGAGGGACGGGAACCCGCGGGGTGCCTACCCCCGGCTGGTCGGTGGGGTGCTGGGGGGTCTCGGCGTCGCCGTGGTGGTGGTCCAGCTCGTCGTGAACGCGTCCTCCGGCGCCTACTGAMTHSRQSTSSRTVGAWVAAALVPVGFLLGLVLTYVLEGVLAGSTVGDERSLTADLVGALLTIVLVVVPASAAWRLGRRAGRDGNPRGAYPRLVGGVLGGLGVAVVVVQLVVNASSGAYNANANANANA
AK018_02327294hypothetical proteinATGGCCACCTTCGTCGTGACGTACACCTACTCCACCGACGCCGAACGGCTCGACGCCGTCCGGCCCGAGCACCGCGCGTTCCTCGGCGCGCTGCACGAGGAGGGGTCGGTGGTCGTCTCCGGGCCCCTGCCGCCGACGGGGCAGGCCGGTGCGGGCGCCCTGATCGTGCTCGAGGCCGAGGACGAGACCACGGCGCTGGCGCTGCTCGACGACGACCCCTTCCGCCGCGAGGAGCTCGTCGTCGAGGCGACCGTGCGCCGCTGGGTACCTGTCATCGGGACCCTCGCCGGCTGAMATFVVTYTYSTDAERLDAVRPEHRAFLGALHEEGSVVVSGPLPPTGQAGAGALIVLEAEDETTALALLDDDPFRREELVVEATVRRWVPVIGTLAGNANANANANA
AK018_023281008COG0861putative membrane proteinGTGACCCACGAGCTCCCGGTCTGGTTCGAGGCCGCGTCCCTCGCCCTGATGGTCGCGGTCCTCGTCACCGACCTGGTCGTCGTCGGCCGCCGGCCGCACGTGCCCTCGATGCGGGAGTCCGCGACCTGGGTGGCGTTCTACGTCGGCCTCGCCCTGCTCTACGGGCTCGTCGTGTGGGCCGTCGGCGGCTCGCAGCCCGCGGGGGAGTTCTACGCGGGCTGGGTCACCGAGTACTCCCTGAGCGTCGACAACCTCTTCGTGTTCGTGCTCATCATGTCGCGGTTCGCCGTGCCGCGGGAGCACCAGCAGCGGGTGCTGATGGTCGGGATCATCATCGCCCTGGTCCTGCGCGGGGCGTTCATCCTCGCCGGGGCGGCCCTGCTCGAGCAGTTCACGTGGCTGTTCTACCTGTTCGGGGCGTTCCTGGTGTACACCGCCGTCAAGCTCGCCGTCGGCGGGGACGACGACGAGGAGTTCCGGGAGAACGCCGCGATCCGCGCGCTGCGCCGCGTGCTGCCGCTGAGCCCCGGGTACGACGGCGCCCGGGTGCGCACCGTCGTCGACGGCCGGCGGGTCTGGACCCCGATGCTCGTGGTGTTCGTGGCCATCGGGACCACCGACCTGCTGTTCGCCTTCGACTCCATCCCCGCCATCTTCGGCCTGACCCAGGACCCCTTCCTCGTGTTCGCCACGAACCTCTTCGCGCTGATGGGGCTGCGCCAGCTGTACTTCCTGCTCGGCGGGCTGCTGGACCGGCTGGTCTACCTGCCGGTCGCGCTCGCGGTCATCCTCGGCTTCATCGGCGTCAAGCTCGTGCTGGAGGCCCTGCACGCCAACACGCTGCCGTTCGTCAACGGCGGTGAGCCCGTCCCGTGGGCGCCGGAGGTGCCCATCTGGCTGTCGCTGGTCGTCATCGTCGGCGCGCTGGGCGTGGCGACGGCGGCGAGCCTGCTGCGGACCCGCCGTGGCCGGGCGCTCGCCGACCGCGAGGACGCCGACCGCGACTGAMTHELPVWFEAASLALMVAVLVTDLVVVGRRPHVPSMRESATWVAFYVGLALLYGLVVWAVGGSQPAGEFYAGWVTEYSLSVDNLFVFVLIMSRFAVPREHQQRVLMVGIIIALVLRGAFILAGAALLEQFTWLFYLFGAFLVYTAVKLAVGGDDDEEFRENAAIRALRRVLPLSPGYDGARVRTVVDGRRVWTPMLVVFVAIGTTDLLFAFDSIPAIFGLTQDPFLVFATNLFALMGLRQLYFLLGGLLDRLVYLPVALAVILGFIGVKLVLEALHANTLPFVNGGEPVPWAPEVPIWLSLVVIVGALGVATAASLLRTRRGRALADREDADRDPGPT0004905_998DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794NANA
AK018_023291002COG0861putative membrane proteinATGGACGTCGCCCCCTGGGTCTGGATCGTCACCGTCGGGATCATCCTGGCGATGCTCGCCGTCGACTACGTCGGGCACGTGCGTACGCCGCACGCGCCCACGCTCAAGGAGTCGGCCTGGTGGTCGATCGCCTACGTCGCCGCGGCGCTCGTGTTCGGCCTCATCGTGCTCGCCGGGTGGGGACCCACCTACGGTGGCGAGTACTTCGCCGGCTACATCACCGAGAAGTCGCTGAGCGTGGACAACCTGTTCGTGTTCGTGCTGATCATGACCAGCTTCCGCGTCCCGCGCCAGCACCAGCAGCGCGTCCTGCTCGTCGGCATCACCATCGCCTTGGTGCTGCGCACGATCTTCATCCTGGCGGGCGCCGCGCTCATCGCGAACTTCGCCTGGATCTTCTACCTCTTCGGGGCGTTCCTCATCTGGACGGCGATCGCCCAGGCCCGTGCCGGGACCGACCACGACGAGGAGTACACCGAGAACGCCGTGCTGCGGCTGACCCGCCGGATCCTGCCGACGACCGACGACTACGTCGAGCACCACATGGTCACGACGGTCGACGGCAAGCGGTACGTGACGCCGATGCTCATCGTCATGATCGCCATCGGCAGCGCCGACCTGCTGTTCGCCGTCGACTCGATCCCGGCCATCTTCGGGCTCACCCAGGAGACGTACCTGGTCTTCGCGGCCAACGCCTTCTCGCTGCTCGGTCTGCGCCAGCTCTACTTCCTCGTCGACGGCCTGCTGGACCGCCTCGTGTACCTCAACTACGGGCTCGCGGCGATCCTCGGGTTCATCGGCGTCAAGCTCGTGATCCACGCGCTGCACACCAACGAGCTGCCGTTCGTCAACGGTGGGGAGCACATCGAGGTCGTCCCCGAGATCCCCACCAGCGTCTCGCTGTCGTTCATCGTGGTGGTCCTGGCCATCACCACCGTGGCGTCGCTGATGAAGAGCCGGCGCGAGGAGCGCGTCGGCGTGTCGTCCTCGGGTGACGCGTGAMDVAPWVWIVTVGIILAMLAVDYVGHVRTPHAPTLKESAWWSIAYVAAALVFGLIVLAGWGPTYGGEYFAGYITEKSLSVDNLFVFVLIMTSFRVPRQHQQRVLLVGITIALVLRTIFILAGAALIANFAWIFYLFGAFLIWTAIAQARAGTDHDEEYTENAVLRLTRRILPTTDDYVEHHMVTTVDGKRYVTPMLIVMIAIGSADLLFAVDSIPAIFGLTQETYLVFAANAFSLLGLRQLYFLVDGLLDRLVYLNYGLAAILGFIGVKLVIHALHTNELPFVNGGEHIEVVPEIPTSVSLSFIVVVLAITTVASLMKSRREERVGVSSSGDAPGPT0004905_1120DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794NANA
AK018_023302112uvrB_1COG0556UvrABC system protein BATGCGACCCGTGACCGACCTGCAGCGGACCGTGGCCCCGTTCGAGGTGGTCTCGGAGTACCAGCCCAGCGGCGACCAGCCCACCGCCATCGCCGAGCTCGCCGAGCGCATCCAGGCGGGGGAGAAGGACGCCGTGCTCCTCGGCGCCACCGGCACCGGCAAGAGCGCCACGACGGCCTGGCTCATCGAGAAGCTGCAGCGCCCGACGCTCATCATGGCGCCGAACAAGACCCTCGCCGCCCAGCTCGCCACGGAGTTCCGCGAGCTGCTGCCGCACAACGCCGTCGAGTACTTCGTCTCGTACTACGACTACTACCAGCCCGAGGCGTACATCGCGCAGACGGACACCTACATCGAGAAGGACTCCTCGATCAACGACGAGGTGGAGCGGCTGCGGCACTCGGCGACGTCGTCGCTGCTGACGCGGCGCGACACGGTCGTGGTGGCGTCGGTGTCGTGCATCTACGGCCTGGGCACCCCGCAGGAATACGTCGACCGGATGGTGCGCCTCTCCGTCGGCGACGTCGTCGAGCGCGACGACCTCCTGCGCCAGTTCGTCCAGATGCAGTACACGCGCAACGACATGTCGTTCACGCGCGGGACCTTCCGGGTCCGCGGCGACACGGTCGAGATCATCCCGGTGTACGAAGAGCTCGCGGTACGCATCGAGATGTTCGGCGACGAGATCGAGACCATCCAGACGCTGCACCCCCTGACCGGGGAGGTCGTGCGCACCGAGCAGAGCATCTACCTGTTCCCCGCGACCCACTACGTCGCCGGCCCCGAGCGGATGGAGCGGGCGGTGTCGAGCATCGAGGCCGAGCTCGAGGCACGGCTGGCCGACCTCGAGAAGCAGAACAAGCTGCTCGAGGCGCAGCGGCTGCGCATGCGCACCACCTACGACATCGAGATGATGCGCTCCATCGGGACCTGCAACGGCATCGAGAACTACTCGCGGCACATCGACGGCCGCGAGGCGGGCTCGCCCCCCAACACCCTGCTCGACTACTTCCCCGAGGACTTCCTGCTCGTCGTCGACGAGTCCCACGTGACGGTCCCGCAGATCGGCGCGATGTTCGAGGGCGACATGTCGCGCAAGCGCTCCCTGGTCGACCACGGGTTCCGGCTGCCCAGCGCCACCGACAACCGCCCGCTGCGCTGGGAGGAGTTCGTCGAGCGGATCGGTCAGACCGTGTACCTCTCGGCGACCCCCGGCGACTACGAGCTGTCCATGTCCGACGGCGTGGTCGAGCAGATCATCCGTCCCACGGGGCTCGTCGACCCGGAGGTCCACGTCAAGCCGACCACCGGGCAGATCGACGACCTCCTGGGCGAGATCCGCGACCGCGTGGACCGCAACGAGCGGGTCCTGGTGACGACGCTGACGAAGAAGATGGCCGAGGACCTCACCGACTACCTGCTCGGCAAGGACGTGCGGGTGCGCTACCTGCACTCGGAGGTGGACACGCTGCGCCGGGTGGAGCTGCTGCGTGAGCTGCGGCTCGGGGAGTACGACGTGCTGGTCGGCATCAACCTTCTGCGCGAGGGCCTCGACCTGCCCGAGGTGTCGTTGGTCGCGATCCTCGACGCGGACAAGGAGGGCTTCCTGCGCTCCGAACGCTCCCTGATCCAGACGATCGGTCGCGCGGCCCGCAACGTCACCGGTCAGGTCCACATGTACGCGGACAAGGTCACCCCCGCGATGCAGTTCGCGCTGGACGAGACCGACCGGCGCCGGGAGAAGCAGCTCGCCTACAACGCCGAGCACGGGATCGACCCCCAGCCGCTGCGCAAGAAGATCGCCGACGTCACCGACATGCTCGCCCGGGAGGACATCGACACCGCCGAGCTGCTCGCCGGCGGCTACCGCAAGGCGCCGGACCGCGCCGCCCGTGGGGGCGCGCCGGTGCCCGGTGCGCCCAAGGAGGGCGCGACGTCCGGCAACCGGCTCGCCGGTCTGGCCGCGACCGAGCTGGCGGAGCTCATCCAGGAGCTCAGCGACCAGATGCACACGGCCGCGGCCGAGCTGCAGTTCGAGGTGGCGGCACGCCTGCGGGACGAGATCGGCGGACTCAAGAAGGAGCTGCGGCAGATGCGCGAGGCCACCGGCTGAMRPVTDLQRTVAPFEVVSEYQPSGDQPTAIAELAERIQAGEKDAVLLGATGTGKSATTAWLIEKLQRPTLIMAPNKTLAAQLATEFRELLPHNAVEYFVSYYDYYQPEAYIAQTDTYIEKDSSINDEVERLRHSATSSLLTRRDTVVVASVSCIYGLGTPQEYVDRMVRLSVGDVVERDDLLRQFVQMQYTRNDMSFTRGTFRVRGDTVEIIPVYEELAVRIEMFGDEIETIQTLHPLTGEVVRTEQSIYLFPATHYVAGPERMERAVSSIEAELEARLADLEKQNKLLEAQRLRMRTTYDIEMMRSIGTCNGIENYSRHIDGREAGSPPNTLLDYFPEDFLLVVDESHVTVPQIGAMFEGDMSRKRSLVDHGFRLPSATDNRPLRWEEFVERIGQTVYLSATPGDYELSMSDGVVEQIIRPTGLVDPEVHVKPTTGQIDDLLGEIRDRVDRNERVLVTTLTKKMAEDLTDYLLGKDVRVRYLHSEVDTLRRVELLRELRLGEYDVLVGINLLREGLDLPEVSLVAILDADKEGFLRSERSLIQTIGRAARNVTGQVHMYADKVTPAMQFALDETDRRREKQLAYNAEHGIDPQPLRKKIADVTDMLAREDIDTAELLAGGYRKAPDRAARGGAPVPGAPKEGATSGNRLAGLAATELAELIQELSDQMHTAAAELQFEVAARLRDEIGGLKKELRQMREATGPGPT0014920_1075DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014920-uvrB-K03702NANA
AK018_02331633pcp_1COG2039Pyrrolidone-carboxylate peptidaseGTGCGGGTGCTGGTGACGGGGTTCGAACCGTTCGGCGGTGACGCCCTGAACGAGTCGTGGGAGGCCACGACGGCGTTGGCCACCGACTGGCGTGCGGCACGGGACGGCGCCGAGCTCGTCGTCGCGCCGCTGCCGGTGACGTTCTCCGCGGGCCCCGCCGAGCTGCTCCGGCTGGTCCGGCGGCACGCCCCGGACGTCGTGGTGGCCACCGGCCTGGCGGGCGGGACCGAGGCGGTGCGGCTCGAGCGCGTCGCCGTCAACGTCGCCGACGCGCGGATCCCCGACAACACCGGGGCGCAGCCCGTCGACGAGGCGGTCGTCGGCGACGGCCCGGCCGCCTACTTCTCGACCTTGCCCCTCAAGGCGGCGTGGAGCGCGGTGCGGTCCGACGGCGTGCCCGCGACCGTCAGCAACACGGCGGGCACGTACGTGTGCAACGCCACCTTCTACGCCCTGCAGCACGCCCTGGCGGGCCGGCCCGCCGTGCGCTCCGGGTTCGTGCACGTCCCGCGCGCCGCGCAGCTCGACGTGGCGTCCTCGGCCCGTGCCCTGCGGGCGGTCGTGCTCACGACGGCGGCGGCGGTGCGGGGCGAGCTGTCCGAGCCGCGGCTCGCCGCCGGCGCCGAGCACTGAMRVLVTGFEPFGGDALNESWEATTALATDWRAARDGAELVVAPLPVTFSAGPAELLRLVRRHAPDVVVATGLAGGTEAVRLERVAVNVADARIPDNTGAQPVDEAVVGDGPAAYFSTLPLKAAWSAVRSDGVPATVSNTAGTYVCNATFYALQHALAGRPAVRSGFVHVPRAAQLDVASSARALRAVVLTTAAAVRGELSEPRLAAGAEHNANANANANA
AK018_02332636coaE_1COG0237Dephospho-CoA kinaseATGTTTCGCATGGGGCTCACGGGCGGGATCGCGGCCGGCAAGTCCGTCGCGGCGCAGCGGCTGGCGGACCTCGGGGCGGTCGTCGTCGACCACGACCTGCTGGCCCGGGACGCCGTCGCGCCCGGGTCCGTCGGTCTGACCGAGGTCGTCGACGCCTTCGGACCGGGGGTGCTGTCCGACGACGGCTCGCTCGACCGGCCCGCGCTGGGACGCCGGGTCTTCGGTGACGACGACGCGCGTCGCCGCCTGGAGGAGATCGTGCACCCGGAGGTCCGGCGGCTGGCCGCGGAGCGCGAGGCCGCCGCCGGCGCGGCGGACCCGCGGGCCGTCGTCGTGCACGACATCCCTCTGCTGGTCGAGACGGGGCAGGCGGACCACTTCCACCTGCTCGCCGTGGTCGACGCCCCGGCGCGGCAGCGGGTGGAGCGCCTGGTGGCGACGCGCGGGCTCGACGAGGGCGAGGCCCGCGACCGCGTCGCGGCGCAGGCGAGCGACGCCGAGCGTCGCGAGCTGGCGGACGTGCTGCTGGACGGCACAGGGTCGCCGGACGACCTGCGCCGCCAGGTCGACGAGCTGTGGGCCCGGGTCCGCCAGGAGGTGGCGGAGGAGCTCGACGCCGAGGAGCTCGAGCACTGAMFRMGLTGGIAAGKSVAAQRLADLGAVVVDHDLLARDAVAPGSVGLTEVVDAFGPGVLSDDGSLDRPALGRRVFGDDDARRRLEEIVHPEVRRLAAEREAAAGAADPRAVVVHDIPLLVETGQADHFHLLAVVDAPARQRVERLVATRGLDEGEARDRVAAQASDAERRELADVLLDGTGSPDDLRRQVDELWARVRQEVAEELDAEELEHPGPT0008835_1018DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008835-coaE-K00859NANA
AK018_023331857msbA_1COG1132Lipid A export ATP-binding/permease protein MsbAATGCGGTCCTTCCTCCAGGACCGGTCGGTCACCGACCGGCGGCTGTCGCGGTCGACGCTGCGCCGCATCCTCGCGTTCGCGCGGCCCTACCGCCACCACCTGGCCGGTCTGGTCGGCCTGCTGACCCTCAGCGCCGCCGCCGGCGCGGTCACGCCGCTGCTGTTCCGCCGCATCATCGACGACGGGATCGCCGGCGGCGACCGTGAGCTGGTCGTCGGCCTCGCCGCGGCCGCGGTCGGGCTCGCCCTCGCCGGCGCCGGGCTCTCCCTCGCCGAGCGCTGGGTGGCCGCCCTGGTCGGCGAAGGACTCATCGTCGACCTGCGCACCGCCGTCTTCGACCACGTCCAGCGCATGCCGCTGGCGTTCTTCGCCCGCGCCCGCACCGGTGCTCTCGTGCAGCGCCTCAACGGCGACGTCCTCGGAGCGCAGCAGGCGTTCACCGCGACCCTGCAGTCGGTCGTCTCGTACGGTCTGACGGTCGTGTTCACGCTCGCGGCCATGCTGGTGATGTCGTGGCAGCTCACGCTGCTCTCCCTGCTGCTGGTCCCCGCCTTCGTCCTGCCCGCCCGTTGGTTCGGACGCCGGCTGGCGGCCCTGACCCGGACCACCTACGACCTCAACGCCGACGTCGGACAGACGATGAACGAGCGGTTCAACGTCGCCGGTGCCCAGCTCGCCAAGGTCTTCGGCGCTCCGGACCGCGAGTCCGCGGCCTACGCCGACCAGGTCCGCCTCCTGCGCGACGTCGGCGTCAAGCGCGCGGTGTACGCCACGTGGTTCCGGGTGGGCCTGACGACGCTGGCCTCCGTCGCGATCGCCCTGACCTACGGTGTCGGCGGGCTGCAGGCCCTCACCGGGCAGATCACCGTCGGCACGCTCGTGGCGCTCACGGCCTACCTCGGGCGGCTGTACGCACCCCTGGCGGCCCTGTCGAACGTCCAGGTCGACGTCATGACCGCGCTGGTCAGCTTCGAGCGGGTCCTGGAGGTGCTCGACCTCCGACCGGCGCTGACCGAGGCCCCGGACGCCGTCGACCTGCGCGACGCCGTCCGCCGCGAGGGCGCCGGGATCGAGCTGGACCACGTGACGTTCCGCTACCCCCGGTCCGACGAGGTCTCGCTGGCCTCGCTGGAGTCGGTCGCCGCGGCCCGCAAGGACCCCGACCGGGACACCCTGCGCGGCGTCTCCTTCGTCGTCCCCGCGGGCGCCATGGTCGCCCTCGTCGGGCCCTCCGGCGCCGGCAAGACGACGCTCTCCCACCTGGTCAGCCGGCTGTACGACCCGACGGCCGGGACCGTCCGGGTCGCCGGCACCGATCTGCGCCGGGCATCCTTCGCCTCCCTGCGCGCCACGGTCGGCGTGGTCTCCCAGGACGCCCACCTGTTCCACGACACCGTGGCCGCCAACCTGCGGTACGCCCGGCCCGACGCCACGGACGACGATCTCGAGCAGGCGCTGCACGCCGCGCACCTGTGGCCCGTCGTGGCGCAGATGCCCGACGGCCTCGACACGGTCGTCGGCGACCGCGGCTACCGGCTCTCGGGCGGTGAGCGGCAACGGCTCGCGATCGCCCGCGTGCTGCTCAAGGGCCCCGACGTCATCGTGCTCGACGAGGCCACGGCGCACCTGGACTCGGAGTCGGAGGCCGCCGTCCAGGCGGCTCTCGACGTGGCGCTGCAGGGGCGCACGGCACTCGTGATCGCCCACCGCCTGTCGACGGTGCGCCACGCCGACCGGATCGTCGTGCTCGACGACGGACGCGTCGTCGAGCAGGGCACGCACCTCGACCTGCTCGCCGCCGGCGGGCACTACGCCGAGGTGTACCGGGCGCAGTTCGCGGACCACGAGCGGGCCTGAMRSFLQDRSVTDRRLSRSTLRRILAFARPYRHHLAGLVGLLTLSAAAGAVTPLLFRRIIDDGIAGGDRELVVGLAAAAVGLALAGAGLSLAERWVAALVGEGLIVDLRTAVFDHVQRMPLAFFARARTGALVQRLNGDVLGAQQAFTATLQSVVSYGLTVVFTLAAMLVMSWQLTLLSLLLVPAFVLPARWFGRRLAALTRTTYDLNADVGQTMNERFNVAGAQLAKVFGAPDRESAAYADQVRLLRDVGVKRAVYATWFRVGLTTLASVAIALTYGVGGLQALTGQITVGTLVALTAYLGRLYAPLAALSNVQVDVMTALVSFERVLEVLDLRPALTEAPDAVDLRDAVRREGAGIELDHVTFRYPRSDEVSLASLESVAAARKDPDRDTLRGVSFVVPAGAMVALVGPSGAGKTTLSHLVSRLYDPTAGTVRVAGTDLRRASFASLRATVGVVSQDAHLFHDTVAANLRYARPDATDDDLEQALHAAHLWPVVAQMPDGLDTVVGDRGYRLSGGERQRLAIARVLLKGPDVIVLDEATAHLDSESEAAVQAALDVALQGRTALVIAHRLSTVRHADRIVVLDDGRVVEQGTHLDLLAAGGHYAEVYRAQFADHERANANANANANA
AK018_023341491rpsA_1COG053930S ribosomal protein S1ATGACCATCTCCACCACGAAGTCCGCCCCGCAGGTTGCCGTCAACGACATCGGCACCGAAGAGGACTTCCTTGCCGCCGTCGACTCCACCATCAAGTACTTCAACGATGGTGACATCGTCGAAGGCACGATCGTCAAGGTCGACCGCGACGAGGTCCTCCTCGACATCGGCTACAAGACGGAGGGCGTGATCCCGTCTCGTGAGCTGTCCATCAAGCACGACGTGGACCCGGGCGAGGTCGTCGCCGTCGGCGACGCCGTCGAGGCCCTCGTCCTCCAGAAGGAGGACAAGGAAGGCCGTCTGATCCTGTCCAAGAAGCGCGCCCAGTACGAGCGCGCCTGGGGCACGATCGAGCAGATCAAGGAGGACGACGGCGTCGTCACCGGTACCGTCATCGAGGTCGTCAAGGGTGGTCTCATCCTCGACATCGGCCTGCGTGGCTTCCTGCCGGCCTCCCTCGTCGAGATGCGTCGCGTCCGCGACCTCGCGCCGTACGTCGGCCGCGAGATCGAGGCCAAGATCATCGAGCTGGACAAGAACCGCAACAACGTGGTCCTGTCCCGCCGCGCCTGGCTCGAGCAGACGCAGTCCGAGGTTCGCTCCACCTTCCTGCAGACGCTGCAGAAGGGCCAGGTGCGCCCGGGTGTCGTCTCCTCGATCGTCAACTTCGGTGCGTTCGTCGACCTCGGTGGGGTCGACGGCCTCGTGCACGTCTCCGAGCTGTCCTGGAAGCACATCGACCACCCGTCCGAGGTCGTCGAGGTCGGCCAGGAGGTCACGGTCGAGGTGCTCGACGTCGACTTCGACCGCGAGCGTGTCTCCCTGTCGCTGAAGGCGACGCAGGAGGACCCGTGGCAGACCTTCGCCCGCACCCACGCCATCGGCCAGGTCGTGCCGGGCAAGGTCACCAAGCTGGTGCCGTTCGGTGCGTTCGTCCGCGTCGAGGACGGCATCGAGGGCCTGGTGCACATCTCCGAGCTGGCGGTCCGCCACGTCGAGCTGCCCGAGCAGGTCGTCCAGGTGGGTGCCGAGGTCTTCGTCAAGGTCATCGACATCGACCTCGAGCGTCGCCGCATCTCGCTGTCGCTCAAGCAGGCCAACGAGGGCATGGACCCGGAGTCCGAGGACTTCGACCCGGCGCTCTACGGCATGGCCGCCGAGTACGACGAGAACGGCGAGTACAAGTACCCGGAGGGCTTCGACCCGGAGACCAACGAGTGGCTCGAGGGCTTCGAGACCCAGCGCGAGGCCTGGGAGGCCGAGTACGCCAAGGCGCACTCGCGCTGGGAGTCGCACCGCGAGCAGGTCCGTGCGGCGCTCTCGGCCGACGCCGAGGCCGCGGCCGGCGACGTCGTCTCCAGCAGCACGGGCGGCGCGGCGGCGTCCTCGTCCTACTCCTCGGCGGCTCCGGCCCCGCAGGAGGACACCGGCGGCACGCTGGCGTCCGACGAGGCCCTGGCTGCTCTGCGTGAGAAGCTGACCGGCAACTGAMTISTTKSAPQVAVNDIGTEEDFLAAVDSTIKYFNDGDIVEGTIVKVDRDEVLLDIGYKTEGVIPSRELSIKHDVDPGEVVAVGDAVEALVLQKEDKEGRLILSKKRAQYERAWGTIEQIKEDDGVVTGTVIEVVKGGLILDIGLRGFLPASLVEMRRVRDLAPYVGREIEAKIIELDKNRNNVVLSRRAWLEQTQSEVRSTFLQTLQKGQVRPGVVSSIVNFGAFVDLGGVDGLVHVSELSWKHIDHPSEVVEVGQEVTVEVLDVDFDRERVSLSLKATQEDPWQTFARTHAIGQVVPGKVTKLVPFGAFVRVEDGIEGLVHISELAVRHVELPEQVVQVGAEVFVKVIDIDLERRRISLSLKQANEGMDPESEDFDPALYGMAAEYDENGEYKYPEGFDPETNEWLEGFETQREAWEAEYAKAHSRWESHREQVRAALSADAEAAAGDVVSSSTGGAAASSSYSSAAPAPQEDTGGTLASDEALAALREKLTGNPGPT0007615_15DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527NANA
AK018_023351026pfp_1Pyrophosphate--fructose 6-phosphate 1-phosphotransferaseGTGCGCGTAGGACTGCTGACCGGAGGCGGGGACGTCCCCGGGCTCAACGCCGCGATCAGGGCCGTGGTCAAGCGGGGAGAAGGCGAGCACGGGCACACCATCGTCGGCTTCCGCCACGGGTGGCGCGGGCTGGCCGACGGCGACGTGATGCCCCTGACCCGGTCCCACATCCGCAACGTGCTCCCGACGGGCGGCACGCTGCTCGGCACCGCCCGCTACCACCCGCACGCCGACGACGGGGGGCTGGACGCCGTGCGCGCCACTCTCGAGGAGGAGCGGATCGAGGCGCTGATCTGCATCGGCGGCGACGGGACGCTCCACGCGGCGAGCAAGGTCGCCGAGTCCGGTGTCCGCATCGTCGCCGTGCCCAAGACGATCGACAACGACGTCTGGGGCACGGACCGCTCCATCGGTTTCGACACGGCCGTCAACATCGCCACCGAGGCCGTCGACCGGATCCACACGACGGCGGAGAGCCACAACCGGGTGATGATCGTCGAGGTCATGGGCCGGCACGCCGGGTGGATCGCGACGACGGCCGGCATCGCCGGAGGTGCCGAGCTGGTGCTCGCCCCGGAGGAGCCGTTCGACATCGACCGGGTCGTCCGCTTCCTGCAGCACCGCCACCGGGCCCACGCGAGCTTCTCCATCATCGTGGTCGCCGAGGGCGCGGTGCCGCTGGAGGGCTCGTCGATGCAGTACGAGACGCAGCTCGGCCCGTTCGGGGAGATCGTGGCGGGCGCGATCAGCGAGCGCCTCGGCGCGGAGATCGCCGACCGCACCGGGTTCGACACCCGCGTGACGATCCTCGGTCACGTCCAGCGCGGCGGGACGCCGACGCCGGCCGACCGCATCCTCGGGTCCCGTCTCGGGGTCGCGGCGATCGACGCGGTCTCGGCGGGGGAGTCGGGCGTCATGACGGCCCTGCGGGGCGACGACGTGGTCCTGGTCCCGCTGACGGACATCGCGGGCAAGGTCAAGCAGGTGCCGGCCGAGATGCTGGAGGTCGCCCGCGCGCTCGCGTGAMRVGLLTGGGDVPGLNAAIRAVVKRGEGEHGHTIVGFRHGWRGLADGDVMPLTRSHIRNVLPTGGTLLGTARYHPHADDGGLDAVRATLEEERIEALICIGGDGTLHAASKVAESGVRIVAVPKTIDNDVWGTDRSIGFDTAVNIATEAVDRIHTTAESHNRVMIVEVMGRHAGWIATTAGIAGGAELVLAPEEPFDIDRVVRFLQHRHRAHASFSIIVVAEGAVPLEGSSMQYETQLGPFGEIVAGAISERLGAEIADRTGFDTRVTILGHVQRGGTPTPADRILGSRLGVAAIDAVSAGESGVMTALRGDDVVLVPLTDIAGKVKQVPAEMLEVARALAPGPT0017605_2039DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017605-pfk|pfp-K21071NANA
AK018_02336789COQ5_42-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialGTGAGCGATCCATGGTTCGGATACCGCACCACCGACGACGACGGCGCCGCCGCGCGACGGTGGTGGGACGCGCACGCCGAGGAGTACCTCGACGACCACGGCGACTTCCTCGGCGACGCCGGCTTCCGCTGGGGGCCGGAGGGGCTGACCGAGGCCGAGGCCGGGCTCCTGGGCCCCCCGCAGGGCGCCCGGGTGCTGGAGGTCGGCGCGGGGGCCGCGCACTGCTCGCGCTGGCTCGCCGCCCGCGGCGCGGACGTCGTGGCGACCGACGTGGCCCCCGCGATGCTGGACGCCGCGGCGGAGATCTCCCGGCGGTCGGGCACGCCGGTGCCGCTCGTGGAGGCCGACGCCCGTGACCTGCCGTTCGCCGACGGCTCGTTCGACGTCGTCTTCACCTCGTTCGGTGCGATCCCCTTCGTCCCGGACGCCCACCGCGTGCACGCCGAGGCTGCGCGGGTGCTGCGCGACGGCGGGCGCTGGGTCTTCTCGGTCACGCACCCGGTGCGCTGGGCCTTCCCCGACGACCCGACGCTCGCCGGGCTCACCGCCCACCGGTCCTACTTCGACCGCCGCCCCTACGTCGAGGCCGAGGGGGGTCACGTGGTCTACGCCGAGTACCACCGCACCCTGGGCGACCACGTCCGTGACGTGGCGGCGGCCGGGCTGCGGCTGCGCGACGTCGTCGAGCCCGAGTGGCCGGCCTGGAACGCCCAGACGTGGGGCGGCTGGGGTCCCGAGCGCGGGCACTACCTGCCCGGCACCGCCGTCTTCGTCGCCACGAAGGACTGAMSDPWFGYRTTDDDGAAARRWWDAHAEEYLDDHGDFLGDAGFRWGPEGLTEAEAGLLGPPQGARVLEVGAGAAHCSRWLAARGADVVATDVAPAMLDAAAEISRRSGTPVPLVEADARDLPFADGSFDVVFTSFGAIPFVPDAHRVHAEAARVLRDGGRWVFSVTHPVRWAFPDDPTLAGLTAHRSYFDRRPYVEAEGGHVVYAEYHRTLGDHVRDVAAAGLRLRDVVEPEWPAWNAQTWGGWGPERGHYLPGTAVFVATKDNANANANANA
AK018_023372637polA_1COG0258DNA polymerase IATGGCCTACCGGGCCTTCTACGCCCTGCCGGACACCCTGGCCACCACCAGCGGGCAGGTCACCAACGCCGTGTACGGCTTCACCTCGATGCTCACCAACCTGCTGCGCGACGAGGAGCCGACGCACGTGGCCGTGGCCTTCGACGCCGGTCGCGTGACCTTCCGCACGGAGCGGTTCGCCGAGTACAAGGCGCAGCGCGAGGCCACGCCCGAGGTGTTCCGCGGCCAGGTGCCGCTGATCCACGAGGTGCTGGAGTCCCTGCGCGTGCCGGTGCTGCAGCGCGCGGGCATCGAGGCGGACGACATCCTGGCGACGCTGGCCCGGCAGGGGACCGAGGCGGGCCTGGAGGTGCTCGTCTGCTCGGGCGACCGCGACGCCCTGCAGCTCGTCACCGACGACGTCACCGTGCTGTACCCGAAGAAGGGCGTCTCGGAGCTCACGCGGATGACGCCGGAGGCCGTCGAGGCCAAGTACAAGGTGCCGCCCGCGCGCTACCCCGACCTGGCGGCGCTCGTCGGCGAGACGAGCGACAACCTGCCGGGCATCCCCGGCGTCGGTCCCGGGGTCGCGGCCAAGTGGATCACCCAGTTCGGCGACCTCGACTCCCTGCTGGAGCGCCGCGACGAGGTCGGCGGCAAGCGGGGCGAGGCCCTGCGCGAGCACGTCGAGCAGGTCCGGCTGAACCGCGAGCTCAACGCGCTGCTGACCGACGTGGACCTCCCGCTGGGCATCGACGACCTCGCGGTGGCCGGCTTCGACCGCGAGGCGGTCCACCGGGTGGCCGACACCCTCGAGTTCGGGGCGCTGCGCGACCGCCTCCTGGCGGTCGACCCTGCCGGCGGCGACGCCACGGTCGCGCCGACGGCGTCCCTCGAGGTCGACCGGCACGACGGCCCCCTCGCGGACTGGCTGACCGCCCGGGCGGGCGCTCTCGTGGGCGTCGACGTCACCGGGGTGCGGCGACCGGGTGCCGGCGACGCGTGGCAGGTGGCCCTGGCCACCGCGAGCGACGGAGGCCGGGCCGACGCCGTCGTCGTCGACCTCGCCGACGTCGACGACGCCGACGAGCGGGCCCTGCGCGACTGGCTCTCCGACCCGCAGGCGCCGAAGGCCGTGCACGGGGCCAAGGCGGCCTGGCACATGCTGTCCGCGCGGGGGGCGGACCTCGTCGGTGTCCAGGTGGACACCGAGCTCGCGGCGTACCTGTGCTACCCCGACCAGCGCGGCTACGACCTCGGCGACCTCGTGGTCCGCCACCTGGGCCGCGAGCTGACCGTCGAGGACGGCGGTGCCCAGGGCGCGCTGGACCTCGCGCTGGAGGCGGGGCCCCCGGGGGCCGACGCGGCGGGCCGTGCCGTGGCCGTGGTGGACCTGGCCGCGGCGCTCGGCGAGCGTCTCGTCGACCGGGGCGCGCGCGGACTGCTCGACGACGTCGAGCTCCCGCTGTCCGGGGTGCTGGCCCGCATGGAGGCCACCGGCATCGCGGCCGACACGACGTTCCTCACCGAGCTGGAGCAGCACTTCGCCCAGCGGGTGGGGACCTCGGCCGCCGAGGCGTACGACGTCATCGGCCGCGAGGTGAACCTCGGCAGCCCGAAGCAGCTGCAGGAGGTCCTCTTCGACCAGCTCGGCATGCCGAAGACGAAGAAGATCAAGACCGGGTACACGACGGACGCCGCCTCGCTGCAGGACCTGTTCGTCAAGACCGAGCACCCCTTCCTGGCCCACCTGCTGGCCCACCGGGACGCGGCCAAGCTGCGCACCACCGTCGAGGGGCTCCTCAAGGCGGTGCACCCGGACGGCCGGATCCGCACCACGTTCCAGCAGACGATCGCGGCCACCGGACGCCTCAGCTCGACCGACCCGAACCTGCAGAACATCCCGATCCGCACCGAGGCCGGTCGGCGCATCCGGCGCGCGTTCACGGTCGGGGAGGGGTACGCCGAGCTCGTCACGGCGGACTACAGCCAGATCGAGATGCGGATCATGGCGCACCTGTCGGGCGACGCCGGGCTCATCGAGGCGTTCCGCTCCGGCGAGGACCTGCACCGCTACGTCGGGTCGCGCGTGTTCGACGTCGAGCCGGCAGCGGTCACCCCCGAGATGCGCGCCAAGGTCAAGGCGATGAGCTACGGGCTCGCCTACGGGCTCAGCGCCTTCGGGCTGTCCCAGCAGCTCACCATCCCCACCGGTGAGGCGCAGGCCCTCATGGACGACTACTTCACGCGGTTCGGGGGCGTGCGCGACTACCTGACCGGGGTCGTCGAGGAGGCGCGCGCCACCGGGTACACGGCGACCCTCCTCGGGCGCCGGCGCTACCTGCCGGACCTGACCAGCGACAACCGCCAACGCCGCCAGATGGCCGAGCGGATGGCGCTGAACGCCCCGATCCAGGGCAGCGCGGCCGACATCATCAAGCTCGCGATGCTGGGGGTGCAGCGCGAGCTCGACGAGAAGGAGCTGCGCTCGCGGCTGCTGCTGCAGGTCCACGACGAGCTCGTGGTCGAGGTCGCGGCGGGGGAGCGGGAGGTCGTCGAGGACGTGCTGCGCCGGCAGATGGGCAGCGCGGTCGAGCTCGACGTCCCCCTGGACGTCTCGGTGGGCGCCGGTCAGACCTGGCACGACGCCGCCCACTGAMAYRAFYALPDTLATTSGQVTNAVYGFTSMLTNLLRDEEPTHVAVAFDAGRVTFRTERFAEYKAQREATPEVFRGQVPLIHEVLESLRVPVLQRAGIEADDILATLARQGTEAGLEVLVCSGDRDALQLVTDDVTVLYPKKGVSELTRMTPEAVEAKYKVPPARYPDLAALVGETSDNLPGIPGVGPGVAAKWITQFGDLDSLLERRDEVGGKRGEALREHVEQVRLNRELNALLTDVDLPLGIDDLAVAGFDREAVHRVADTLEFGALRDRLLAVDPAGGDATVAPTASLEVDRHDGPLADWLTARAGALVGVDVTGVRRPGAGDAWQVALATASDGGRADAVVVDLADVDDADERALRDWLSDPQAPKAVHGAKAAWHMLSARGADLVGVQVDTELAAYLCYPDQRGYDLGDLVVRHLGRELTVEDGGAQGALDLALEAGPPGADAAGRAVAVVDLAAALGERLVDRGARGLLDDVELPLSGVLARMEATGIAADTTFLTELEQHFAQRVGTSAAEAYDVIGREVNLGSPKQLQEVLFDQLGMPKTKKIKTGYTTDAASLQDLFVKTEHPFLAHLLAHRDAAKLRTTVEGLLKAVHPDGRIRTTFQQTIAATGRLSSTDPNLQNIPIRTEAGRRIRRAFTVGEGYAELVTADYSQIEMRIMAHLSGDAGLIEAFRSGEDLHRYVGSRVFDVEPAAVTPEMRAKVKAMSYGLAYGLSAFGLSQQLTIPTGEAQALMDDYFTRFGGVRDYLTGVVEEARATGYTATLLGRRRYLPDLTSDNRQRRQMAERMALNAPIQGSAADIIKLAMLGVQRELDEKELRSRLLLQVHDELVVEVAAGEREVVEDVLRRQMGSAVELDVPLDVSVGAGQTWHDAAHNANANANANA
AK018_02338420entH_1COG2050Proofreading thioesterase EntHATGTCTGACAGTGATTCCTTCCCCCAGGACGTGGACGCCTGGCGGGAGGCGGCCGCGGGGACCCTCCTGGAGCGCACCGGCATCGACCTGGTGGCGGTGAGCGCCGACGGGGCGCGGGCGAGCATGCCCGTGGCGGGCAACACCCAGCCCGCCGGCCTGCTGCACGGCGGCGCGACGGCGACGCTGGCCGAGACGCTCGGCTCGGTGGCCGCGCAGGTGCACGCCGGACGGGGACGGGCGGCGGTCGCCACCGAGCTCAGCGTCACCCACCATCGCGGCGTGCGCTCGGGGTCGGTGCACGGCGTGGCGACGGCGGTGCACCGGGGCAGGTCGACGGCCTGCTACGAGATCGAGGTCGTGGACGACGACGGACGTCGCGTGGCCAGCGCCCGGCTGACGTGCCTCGTGCTGGACACCTGAMSDSDSFPQDVDAWREAAAGTLLERTGIDLVAVSADGARASMPVAGNTQPAGLLHGGATATLAETLGSVAAQVHAGRGRAAVATELSVTHHRGVRSGSVHGVATAVHRGRSTACYEIEVVDDDGRRVASARLTCLVLDTPGPT0001845_1278DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0001845-menI|ydiI|ydiL|ydiI|ybdB-K19222NANA
AK018_02339702hypothetical proteinATGCGTACAGCGGTCGAGGTCCGCACCGCCGACGAGGACGACCTGTGGGCCGTGGCGGACATGTCCGCCGCGCTCGGGCCCGAGGGGGCGAACGGGGCGACGGCCGAGCCGGCGCGCGTCCGCGAGCACCTGAGCGTCTTCGTCGCGGCCGGGGGCGAGGTGCTCGTCGCCCGTACGGAGCACGGCGTCGTCGGCTTCCTCCTCGCGCGCCCGCTCGCGCCACAGCTGTACTCGACCACGCCGAGCCTGTACGTCGACGCGATCCTCGTCGCGCCCCAGGCGCGGCGCCAGGGCGTCGGCCGTGCGCTGCTCGCGGCGGCGCTGCGGACGGCGGTCGTCCACGGTGCGGAGTCCGTCTACTGCGCCCCGGCACCGGGCGCCCGCGAGATGCAGCGCTTCCTCGCGCGCATCGGGTTCGCGCCCGCGGCCGGCCACCGGGTGGTCCCGGTCTCCGTGCTCGAACGCTGGCTCGCCCAGGAGCCGGGCGGTGGCCCGACCGTGGTCCGGCGGCGCGACGGCGGTCGCCGTCGGCGGGACCAGACGCGCGCGGCGATCGAGGACCTCGTGGCGCGCCGCCGCCGGGCGCGCGAGGCGGGCCTGCCGACGGGCCCCGTCGACCTGCGGGCGTTCCAGGAGCGGCGCACCGCGGAGCACGAGACGCCCGACGGCTCCCCGGCGGAGCCGACCTCGCACGTGTCCTGAMRTAVEVRTADEDDLWAVADMSAALGPEGANGATAEPARVREHLSVFVAAGGEVLVARTEHGVVGFLLARPLAPQLYSTTPSLYVDAILVAPQARRQGVGRALLAAALRTAVVHGAESVYCAPAPGAREMQRFLARIGFAPAAGHRVVPVSVLERWLAQEPGGGPTVVRRRDGGRRRRDQTRAAIEDLVARRRRAREAGLPTGPVDLRAFQERRTAEHETPDGSPAEPTSHVSNANANANANA
AK018_02340675pdtaR_1COG3707putative transcriptional regulatory protein pdtaRATGTCTCCTGTGACCGACGAGAAGCTGCCGCTCGACCTGCCCCCGATGATCGACCAGGAGTCTGCCGAGTCGCCGGAGCCGGCGCCTGCGGCGGGCAAGCCTGCCCGCCGGGCGGTGGTGGCCGAGGACGAGGCCCTGATTCGCATGGACGTCGTCGAGACGCTCCGCGAGGCGGGTTTCGACGTCGTCGGTGAGGCCGGCGACGGCGAGACCGCCGTGAACCTCGCGACCGAGCTCAAGCCGGACGTCGTCGTGATGGACGTCAAGATGCCCGAGCTGGACGGCATCTCCGCGGCGGAGCGGATCGGCAAGGCCCACGCCGCCCCGGTCGTGCTGCTCACGGCGTTCTCCCAGACCGAGCTCGTCGAGCGGGCGCGCGACGCCGGCGCGATGGCCTACGTCGTGAAGCCGTTCACACCGGCGGACCTGCTGCCCGCGGTGGAGATCGCCATCTCCCGCTACCAGCAGATCGGCGCCCTGGAGTCCGAGGTCGCCGACCTCCAGGACCGTTTCGAGACCCGCAAGCGCGTCGACCGGGCGAAGGGCCTGCTCATGACCAAGATGGGTCTCAGCGAGCCGGAGTCGTTCCGCTGGATCCAGAAGACGTCGATGGACCGTCGTCTGACCATGCGCGAGGTCGCGGACGCCGTGATCGACCAGGTCGGCGCCTCCTGAMSPVTDEKLPLDLPPMIDQESAESPEPAPAAGKPARRAVVAEDEALIRMDVVETLREAGFDVVGEAGDGETAVNLATELKPDVVVMDVKMPELDGISAAERIGKAHAAPVVLLTAFSQTELVERARDAGAMAYVVKPFTPADLLPAVEIAISRYQQIGALESEVADLQDRFETRKRVDRAKGLLMTKMGLSEPESFRWIQKTSMDRRLTMREVADAVIDQVGASNANANANANA
AK018_023421521pyk_1COG0469Pyruvate kinaseATGACAACGGACCCGGGCGCCGCCGTGGCGTCCGAGCGCGCCCCGGAAGTCGAGGGGCGGTACGACGATGAGGCTGGAGACATGCGCAGAGCGAAGATCGTGTGCACCATCGGACCCGCGACGGCGTCCCCGGAGAAGCTCCGGGAGCTGGTCGACGCAGGTATGGACGTGGCCCGGATCAACCGGAGCCACGGGGAGCAGTCGGAGCACGAGACCGTCTACCACGGGGTGCGCACGGCGGCGAAGGAGGCGGGACGCAACGTCGCCGTCCTCGTCGACCTGCAGGGCCCGAAGATCCGCCTGGGTCGGTTCGACGGCGACGAGAAGCACTTCCTCAACGAGGGTGACACCCTCACGATCACGACCGAGGACGTCGTGGGGACGCGGGAGCTCGTCTCGACGACCCACGAGGGCCTCCCGCAGGACGCTCGCGTCGGCGACCCGATCCTGATCGACGACGGCAAGGTCCGGGTGCGGGTCACCGCCGTCGAGGGGCCGCGCGTCGTCACCACGGTCGAGGTCCCGGGTCCGGTCTCCAACAACAAGGGCCTCAACCTGCCCGGCGTGGCCGTCTCGGTCCCCGCGCTGAGCGAGAAGGACACCGACGACCTGCGCTGGGCGCTGCGCATGGGCGCCGACCTCATCGCGCTGTCCTTCGTGCGCAACGCCGCCGACTACGACGACGTCCGCAAGATCATGGACGAGGAGGGCCGGGTCGTCCCGGTCATCGCCAAGATCGAGAAGCCGCAGGCCGTCGACAACCTCGAGGAGGTCGTCGCGGCGTTCGACGGCTTCATGGTGGCCCGCGGCGACCTGGCGGTCGAGATGCCGCTCGAGCAGGTCCCGCTCGTGCAGAAGCGCATCGTGGAGATGGCCCGCCGCAACGCCAAGCCGGTGATCGTGGCCACGCAGGTGCTCGAGTCGATGACCACGAGCCCGCGCCCGACGCGTGCCGAGGCCTCGGACTGCGCCAACGCCGTCCTGGACGGCGCCGACGCGGTCATGCTCTCCGGGGAGACGTCCGTCGGCGACTACCCGATCATCACGGTGGAGACGATGGCCTCCATCATCGAGGCCACCGAGGGTGCGGGCCGCGAGCGCATCGCGCCGCTCGGCTCGACGCCGCACACCCGCGGCGGGATCATCACGCGGGCCGCCGCGGAGATCGGCAACTCCCTGGAGGCCAAGTACCTCGTCACGTTCACCCAGTCGGGCGACTCGGCCAAGCGCATGTCGCGCCTGCGCTCGGGCATCCCGCTGCTGGCCTTCACCCCGGAGGAGTCGGTCCGCAACGTGCTGGCGCTGACCTGGGGCACCGTGAGCTACCAGGTGCCCAAGGTCGGCTCCGTCGACGCGATGGTCGGCCAGGTCGACCAGACCCTGCAGGCCAACGGCCTGGCCGAGGTCGGCGACCGCGTCGTCATCGTCTCGGGCGCCCCGGTGGGCGTGCCCGGCACGACGAACTCGATCCTCGTGCACAAGGTGGGCAGCCACACCGACGCCCACGCGATCGCCGAGTGAMTTDPGAAVASERAPEVEGRYDDEAGDMRRAKIVCTIGPATASPEKLRELVDAGMDVARINRSHGEQSEHETVYHGVRTAAKEAGRNVAVLVDLQGPKIRLGRFDGDEKHFLNEGDTLTITTEDVVGTRELVSTTHEGLPQDARVGDPILIDDGKVRVRVTAVEGPRVVTTVEVPGPVSNNKGLNLPGVAVSVPALSEKDTDDLRWALRMGADLIALSFVRNAADYDDVRKIMDEEGRVVPVIAKIEKPQAVDNLEEVVAAFDGFMVARGDLAVEMPLEQVPLVQKRIVEMARRNAKPVIVATQVLESMTTSPRPTRAEASDCANAVLDGADAVMLSGETSVGDYPIITVETMASIIEATEGAGRERIAPLGSTPHTRGGIITRAAAEIGNSLEAKYLVTFTQSGDSAKRMSRLRSGIPLLAFTPEESVRNVLALTWGTVSYQVPKVGSVDAMVGQVDQTLQANGLAEVGDRVVIVSGAPVGVPGTTNSILVHKVGSHTDAHAIAEPGPT0002020_5868DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002020-pyk-K00873NANA
AK018_023431467gltD_1COG0493Glutamate synthase [NADPH] small chainGTGGCTGATCCCCGTGGATTCCTCAAGGTCCGGGAGCGCGAGCTCCCGCCGAGCAGGCCCGTCGAGGTCCGCCTGCGGGACTGGAAGGACACGTACGCGATCCGTGAGGACGGCCAGCCGTTCCTCAAGGAGCAGGCCGGCCGCTGCATGGACTGCGGCATCCCGTTCTGCCACCAGGGGTGCCCGCTGGGCAACCTCATCCCGGAGTGGAACGACCTCGTGCGCACCGGCCAGTGGGCCGACGCGATCGAGCGGCTGCACGCGACGAACAACTTCCCCGAGTTCACCGGCCGGGTGTGCCCCGCGCCGTGCGAGACGAGCTGCGTGCTGGGCATCAACCAGCCCGCGGTGACGATCAAGAACATCGAGGTCTCGATCATCGACGAGGCGTTCGAGCGCGGTCTGGTCGTCCCGCAGGTCCCGCAGCGGCTGACGGGCAAGACCGTCGCCGTGGTCGGGTCCGGGCCGGCGGGCCTCGCCGCCGCCCAGCAGCTCACGCGTGCCGGGCACACGGTGGTCGTGTACGAGCGCGACGACGCCATCGGCGGTCTGCTGCGCTACGGCATCCCGGACTTCAAGCTCGAGAAGCACCACATCGACCGCCGCATGGCCCAGATGGAGGCCGAGGGCACGCGGTTCCGCGCCGGCGTGGAGATCGGCCGGGACGTGACCTGGGACGCGCTGCGCCGCCGCTTCGACTCCGTCGTGGTGGCCACCGGCGCCACGGTCCCGCGCGACCTGTCGATCCCGGGCCGCGACCTGGCCGGCGTCGAGTTCGCGATGGACTTCCTCACGCCGTCGAACAAGGCGGTGGCCGGCGACGCGGTCGAGGGTGCACCGTCGGCCGAGGGCAAGCACGTCATCGTCATCGGTGGCGGCGACACGGGCTCCGACTGCGTCGGCACGTCGCTGCGCCAGGGTGCCGCGAGCGTGACGACGCTCGCGATCGGCAAGAAGCCGCCGACGGAGCGTCCGGCGCACCAGCCCTGGCCCACCGACCCGATCCTGTTCGAGGTCTCGAGCTCGCACGAGGAGGGCGGGGAGCGCACGTTCCTCGCCTCGACGGTGGAGTTCCTGAGCGACGAGCAGGGCGCCGTGCGCGCCCTGACGGTCGCCGAGACGGAGTACCTCGAGGACGGTCGGCGCGTGCCGAAGGAGGGCACGGAGCGCGAGATCCCGGCCGACCTGGTGCTCATCGCGATGGGCTTCACCGGGCCGGAGATCACGGACCTGGTGGACCAGACCGGCGTCGCGACGACCTCGCGCGGTCTGGTGCAGCGGCAGGACGACTACGCGTCCTCGCTGCCGGGCGTGTTCGTGGCCGGCGACGCCGGTCGTGGGCAGTCGCTGATCGTGTGGGCGATCGCCGAGGGCCGCGCCGCGGCCGCCGCGGCCGACGCCTACCTGCAGGGGACCACGGAGCTGCCGGCCCCGGTGGGCCCCCGCACCGTCGCCCTGAGAGGATGAMADPRGFLKVRERELPPSRPVEVRLRDWKDTYAIREDGQPFLKEQAGRCMDCGIPFCHQGCPLGNLIPEWNDLVRTGQWADAIERLHATNNFPEFTGRVCPAPCETSCVLGINQPAVTIKNIEVSIIDEAFERGLVVPQVPQRLTGKTVAVVGSGPAGLAAAQQLTRAGHTVVVYERDDAIGGLLRYGIPDFKLEKHHIDRRMAQMEAEGTRFRAGVEIGRDVTWDALRRRFDSVVVATGATVPRDLSIPGRDLAGVEFAMDFLTPSNKAVAGDAVEGAPSAEGKHVIVIGGGDTGSDCVGTSLRQGAASVTTLAIGKKPPTERPAHQPWPTDPILFEVSSSHEEGGERTFLASTVEFLSDEQGAVRALTVAETEYLEDGRRVPKEGTEREIPADLVLIAMGFTGPEITDLVDQTGVATTSRGLVQRQDDYASSLPGVFVAGDAGRGQSLIVWAIAEGRAAAAAADAYLQGTTELPAPVGPRTVALRGPGPT0000640_1396DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000640-gltD-K00266NANA
AK018_023444569gltB_1COG0067Glutamate synthase [NADPH] large chainATGACCACGCCGCAGCACTGGGTCGCGCCACCCGAGGCGCAGGGCCTCTACGACCCCGCGAGCGAGCACGACGCCTGTGGCGTCGCGTTCGTCGCGACACTGCGAGGGACCCCCGGGCGCGACATCGTCGACGCCGGCCTCACCGCCCTGCTCAACCTCGACCACCGCGGTGCGGTGGGTGCCGAGGAGGACAGCGGTGACGGAGCGGGCATCCTGACCCAGATCCCCGACGCCTTCCTGCGCGACGTGGTGGACGCCGAGCTCCCGCCGGCGGGCCAGTACGCCATCGGCATGGCGTTCCTGCCCCAGGAGCTCGAGGACGCGGACAAGCTCGCCCGGCGGTTCGAGACGATCGCCGCCGAGGAGAAGCTCGACGTCCTCGCCTGGCGCGACGTCCCGGTGACGGTCGACCTGGTGGGCCCGACCGCCCGAGCCTCGATGCCGACGTTCCGTCAGGTCGTGGTCGCGGACCCGCAGCGCGAGCTGGCGGGCATCGAGCTCGACCGTCGCGCCTACCGGCTGCGCAAGCGGGCGGAGAACGAGCTGGAGCTCTTCCTCGCCTCGCTGTCGGCCCGCACGCTGACGTACAAGGGCATGCTGACCACGGCCCAGCTCGAGCCGTTCTTCCCGGACCTGTCCGACCCCCGGTACGCCTCGGAGATCGCGCTGGTCCACTCCCGGTTCTCCACGAACACGTTCCCGTCGTGGCCGCTGGCCCAGCCGTTCCGCCTCATCGCCCACAACGGCGAGATCAACACCGTGCGGGGCAACCGCAACTGGATGGCGGCCCGCGAGGGCAAGCTGGCGAGCGAGGCGCTGGGCGACCTGGGCCCCCTGCTGCCGGTGTGCAGCCCGGGGTCCAGCGACTCCGCGAGCTTCGACGAGGTCCTCGAGCTCCTCCACCTCTCGGGCCGCTCGCTGCCGCACTCGGTGCTGATGATGGTCCCCGAGGCGTGGGAGAACCACGACGAGATGGACCCGGCGCGGCGCGCCTTCTACCAGTACCACGCGAACCTCATCGAGCCGTGGGACGGCCCGGCCTGCCTGACCTTCACCGACGGCACGCTGATCGGTGCCGTCCTGGACCGCAACGGTCTGCGTCCGGGCCGGTTCTGGGTCACCGAGGACGGGCTCGTCGTGCTGGGCTCCGAGGCGGGCGTGCTCGACCTCGACCCGGCCACGGTGGTGCGCAAGGGCCGCCTCGAGCCCGGCCGGATGTTCCTGGTCGACACCGCGCAGGGGCGCATCGTCGAGGACGACGAGGTCAAGTCCCAGCTCGCGTCCCAGCGCCCGTACGGCGAGTGGGTCGAGCAGAACTCGATCTCGCTGGACTCGCTGCCGGAGCGTGAGCACGTCGCCCACTCGCCGGCGTCGGTGCAGCGGCGCCAGCGGGCGTTCGGCTACACCTCCGAAGAGCTGAAGATCATCCTGACGCCGATGGCCAACACCTCGGCGGAGCCGCTCGGCGCGATGGGCTCGGACACCCCGGTGGCCGTGCTGTCGAACCGGCCGCGGCTGCTGTTCGACTACTTCACACAGATGTTCGCCCAGGTGACCAACCCGCCGCTGGACTCGATCCGCGAGCAGCTGGTCACCTCGATCGGCAGCGCCATCGGCCCGGAGCCGAACCTGCTGGAGGCGACGCCGCAGCACGCTCGCAAGCTCGAGCTGCCGTTCCCGGTGCTGGACAACGACGAGCTGGCCAAGATCGTGCGCATCGAGCGCGACCAGCGGCTGGAGGGCGAGTTCCGCGCCGTCATCGTGCGCGGTCTCTACGACGTCTCGGGCGGCGGTCGCGCCCTGCACGCGCGGCTCGAGGAGATCTTCGCCCAGGTCGACGCCGAGATCGAGGCGGGCGCGACGCACATCGTGCTGTCGGACCGGGACTCGGACGCCGAGCGCGCCCCGATCCCGTCGCTGCTGCTCACCTCGGCCGTGCACCACCACCTGCTGCGTCGGCACACCCGCACGCAGATCTCGCTGGTCGTCGAGGCCGGTGACGTGCGCGAGGTGCACCACGTCGCGCTGCTGATCGGCTACGGCGCGGCGGCGGTGAACCCGTACCTGGCGATGGAGACCGTCGAGGACCTCGCCCGGCGCGGGTACCTCCAGGTCACCCCCGAGGCCGCGGTGAAGAACCTCATCACGGCGCTGGGCAAGGGCGTGCTCAAGGTGATGTCCAAGATGGGCATCTCCACGATCATGTCCTACCGGGGCGCGCAGGTCTTCGAGGCCGTCGGTCTGTCGCACGAGCTGGTCGACGACTACTTCACGGGCACCACGAGCCGCCTGGCCGGCATCGGCCTGGACGTGATCGCCGCCGAGACCGCCGCGCGGCACGCCGAGGCCTACCCGGCCTCGGGCAACCACACGCCGCACGAGCGCCTGACCACCGGTGGCGAGTACCAGTGGCGCCGGGACGGCGAGGAGCACCTCTTCGACCCGGAGACCGTGTTCCGCCTGCAGCACGCGACGCGCTCGGGCCGCATGGACATCTTCCGCCAGTACACCCAGCGGGTGGACGAGCAGTCCGAGCGGCTCATGACGCTGCGCGGCCTGCTGGAGTTCACCGGCGACCGCGAGCCCGTGCCGATCGACGAGGTCGAGCCGGTCAGCGAGATCGTCAAGCGCTTCAACACCGGCGCGATGTCCTACGGGGCCATCAGCCAGGAGATGCACGAGACGCTCGCCATCGCGATGAACCAGCTCGGCGGACGGTCGAACTCCGGCGAGGGCGGCGAGGACACCGAGCGTCTCTACGACCCCGAGCGCCGCTCGCGCGTCAAGCAGATCGCCTCGGGCCGGTTCGGCGTCACCAGCGAGTACCTCACGCAGGCCGACGACATCCAGCTCAAGCTCGCCCAGGGCGCCAAGCCCGGCGAGGGCGGTCAGCTGCCCGGACCCAAGGTCTACCCGTGGGTGGCCAAGACGCGGCACTCGACGCCGGGCGTCGGGCTGATCTCGCCGCCGCCGCACCACGACATCTACTCGATCGAGGACCTGGCGCAGCTCATCCACGACGCCAAGAACGCGAACCCGAGCGCCCGGGTGCACGTCAAGCTCGTCTCCGAGTTCGGCGTCGGCACCGTGGCCACGGGCGTGTCCAAGGCGCACGCGGACGTCGTGCTGATCTCGGGGCACGACGGCGGGACGGGCGCCAGCCCGCTGACCTCGCTCAAGCACGCGGGCACGCCGTGGGAGATCGGCCTGGCCGAGACGCAGCAGACCCTGGTGCTGAACAACCTGCGCGACCGCATCACGGTGCAGGTGGACGGTCAGATGAAGACCGGCCGCGACGTCGTCGTGGCTGCGCTGCTGGGCGCCGAGGAGTTCGGTTTCGCGACGGCCCCGATGGTCGTCTCGGGCTGCATCATGATGCGCGTCTGCCACCTGGACACCTGTCCCGTGGGCGTGGCCACGCAGAACCCCGAGCTGCGCCGCCGGTTCACCGGCAAGCCGGAGTTCGTCGTGAACTTCTTCGAGTACATCGCCGAGGAGGTGCGCGAGCACCTGGCGGCGCTCGGCTTCCGCTCCGTCGAGGAGGCCGTGGGCCAGGTGCAGCGCCTGGACACCCGCCGCGTCGTCGACCACTGGAAGGCCCAGGGCCTCAACCTGGCACCGGTGCTGGAGCGGGTCGAGCCCGTGGAGGGGTCGTCGCTGCACCGCACGCACGACCAGGACCACGGTCTGGACAAGGCGCTCGACCAGCAGCTCATCGCCCAGGCCCGGCCCGCCCTGGAGGAGGGTCGGCCCGTGCGGATCGAGCTGCCGGTGCGCAACGTCAACCGGACGGTCGGCACCATGCTCGGTCACGAGGTGACCAAGAGGTACCGCGGCGACGGCCTGCCCGACGGCACCGTCGACGTGACCCTCACCGGGTCCGCGGGGCAGTCGTTCGGCGCCTTCGTGCCGCACGGCGTCACGCTGCGCCTGTACGGGGACGCGAACGACTACGTCGGCAAGGGCCTCTCCGGCGGCCGACTGGTCGTCCGCCCGGACAAGGCCGCGGTGCTCGAGGGCGCGGCGAACGTCATCGCCGGCAACGTCATCGGCTACGGGGCCACCCGCGGCGAGATCTTCCTGCGCGGTCGCGTGGGGGAGCGCTTCGGCGTGCGCAACTCGGGGGCGACCCTCGTCGTCGAAGGCGTGGGCGACCACGGCTGCGAGTACATGACCGGCGGCGAGGTCCTCGTCCTGGGCCCGACCGGGCGGAACTTCGGCGCCGGCATGTCCGGCGGCATCGCCTACGTGCTCGACCTGCGCGACGTGGCGATGAACGACGCTGCCGTGGCGTCCGGCGAGCTCGTCGTCGGCGCGCTCTCGGACGAGGACTGGGAGCGGGTGTCCGCGCTGCTGCAGCGGCACCTGGACGAGACCGGTTCGCCGGTGGCGGCCGAACTGCTGGCCGACGAGGGCACGCGGGCCCGGTTCTCGCGCGTCCTCCCGCCCGGATGGGCCAACGTGCGCGTCGCGCTGGCCGAGGCCGAGTCGGCGGGCACGCCGCTCGGCGAGGGCGACGACTTCGACCCGACGCTGTGGGAGCGCATCATGGAGGTGGCTCGTGGCTGAMTTPQHWVAPPEAQGLYDPASEHDACGVAFVATLRGTPGRDIVDAGLTALLNLDHRGAVGAEEDSGDGAGILTQIPDAFLRDVVDAELPPAGQYAIGMAFLPQELEDADKLARRFETIAAEEKLDVLAWRDVPVTVDLVGPTARASMPTFRQVVVADPQRELAGIELDRRAYRLRKRAENELELFLASLSARTLTYKGMLTTAQLEPFFPDLSDPRYASEIALVHSRFSTNTFPSWPLAQPFRLIAHNGEINTVRGNRNWMAAREGKLASEALGDLGPLLPVCSPGSSDSASFDEVLELLHLSGRSLPHSVLMMVPEAWENHDEMDPARRAFYQYHANLIEPWDGPACLTFTDGTLIGAVLDRNGLRPGRFWVTEDGLVVLGSEAGVLDLDPATVVRKGRLEPGRMFLVDTAQGRIVEDDEVKSQLASQRPYGEWVEQNSISLDSLPEREHVAHSPASVQRRQRAFGYTSEELKIILTPMANTSAEPLGAMGSDTPVAVLSNRPRLLFDYFTQMFAQVTNPPLDSIREQLVTSIGSAIGPEPNLLEATPQHARKLELPFPVLDNDELAKIVRIERDQRLEGEFRAVIVRGLYDVSGGGRALHARLEEIFAQVDAEIEAGATHIVLSDRDSDAERAPIPSLLLTSAVHHHLLRRHTRTQISLVVEAGDVREVHHVALLIGYGAAAVNPYLAMETVEDLARRGYLQVTPEAAVKNLITALGKGVLKVMSKMGISTIMSYRGAQVFEAVGLSHELVDDYFTGTTSRLAGIGLDVIAAETAARHAEAYPASGNHTPHERLTTGGEYQWRRDGEEHLFDPETVFRLQHATRSGRMDIFRQYTQRVDEQSERLMTLRGLLEFTGDREPVPIDEVEPVSEIVKRFNTGAMSYGAISQEMHETLAIAMNQLGGRSNSGEGGEDTERLYDPERRSRVKQIASGRFGVTSEYLTQADDIQLKLAQGAKPGEGGQLPGPKVYPWVAKTRHSTPGVGLISPPPHHDIYSIEDLAQLIHDAKNANPSARVHVKLVSEFGVGTVATGVSKAHADVVLISGHDGGTGASPLTSLKHAGTPWEIGLAETQQTLVLNNLRDRITVQVDGQMKTGRDVVVAALLGAEEFGFATAPMVVSGCIMMRVCHLDTCPVGVATQNPELRRRFTGKPEFVVNFFEYIAEEVREHLAALGFRSVEEAVGQVQRLDTRRVVDHWKAQGLNLAPVLERVEPVEGSSLHRTHDQDHGLDKALDQQLIAQARPALEEGRPVRIELPVRNVNRTVGTMLGHEVTKRYRGDGLPDGTVDVTLTGSAGQSFGAFVPHGVTLRLYGDANDYVGKGLSGGRLVVRPDKAAVLEGAANVIAGNVIGYGATRGEIFLRGRVGERFGVRNSGATLVVEGVGDHGCEYMTGGEVLVLGPTGRNFGAGMSGGIAYVLDLRDVAMNDAAVASGELVVGALSDEDWERVSALLQRHLDETGSPVAAELLADEGTRARFSRVLPPGWANVRVALAEAESAGTPLGEGDDFDPTLWERIMEVARGPGPT0000635_1495DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000635-gltB-K00265NANA
AK018_023451023lgt_1COG0682Phosphatidylglycerol--prolipoprotein diacylglyceryl transferaseATGAGCGCGGACCGTCTCGTGACGCTGATCCCCAGTCCGCCCGAGCACACCTGGTACCTCGGTCCCGTCCCGCTGCGCGCCTACGCCCTGGCGATCCTCGCCGGCATCGTCGTCGCCGTCTGGATGACGATGCGCCGCTGGAAGGACCGCGGCGGCGACCCCGACGACGTCCTCGAGATCGCGTTCTGGGCCGTCCCCTTCGGCATCGTCGGCGGGCGGATCTACCACGTGATCTCCACGCCGGACCCGTACTGGGGCGAGAACGGCGACCCCGTCTCGGCGCTGTACATCTGGCAGGGCGGTCTGGGCATCTGGGGCGCGGTCGCGCTCGGAGCCGTGGGCGCCTGGATCGGCTGTCGCCGCCAGGGGGTGCGCCTGAGCAGCTTCGCCGACGCGCTGGCCCCGGGCCTGCTCGTCGCCCAGGCGATCGGACGGCTCGGCAACTGGTTCAACCAGGAGCTCTTCGGCGCCCCGACGGACCTGCCGTGGGGGCTGGCGATCGACCCCGCCTACCTCCCGATCGACCCGGCCACGGGCGTGCAGTACGCCGAGGGCACGCTGTTCCACCCCACGTTCCTGTACGAGATGCTGTGGAACCTCGCGGCCGCCGCCCTTCTGATCTGGCTCGATCGCCGGTACAGGCTCGGTCATGGGAGGGTATTCTGGGCCTACGTCGCGGTCTACACCCTCGGTAGGGTGTGGATCGAGATGCTCCGCATCGACACCGCTGAGATGGTGCTCGGGCTGCGGCTGAACGTGTGGACGTCGATCGTCGTCGGCCTGGGTGCCCTCGTCGCGTTCGTCGTCATCGGTCGGCTGCGTCCCGGTCGCGAGGACGGTGTCGCACTGCCGGGTCGTGCGGACGACACGCGGCAGGTCACCGATGCACAGACCGAGACCGACGACGCTCCCGCGGGGACGGCCGACTCCGGCCCCGGTGAGGAGGTCACCGACACGAGAGCCACGACCGACCAGGACGCGTCGTCGGCCGGGACCGACCAGGACCCGGCCTCGCGCTCCTAGMSADRLVTLIPSPPEHTWYLGPVPLRAYALAILAGIVVAVWMTMRRWKDRGGDPDDVLEIAFWAVPFGIVGGRIYHVISTPDPYWGENGDPVSALYIWQGGLGIWGAVALGAVGAWIGCRRQGVRLSSFADALAPGLLVAQAIGRLGNWFNQELFGAPTDLPWGLAIDPAYLPIDPATGVQYAEGTLFHPTFLYEMLWNLAAAALLIWLDRRYRLGHGRVFWAYVAVYTLGRVWIEMLRIDTAEMVLGLRLNVWTSIVVGLGALVAFVVIGRLRPGREDGVALPGRADDTRQVTDAQTETDDAPAGTADSGPGEEVTDTRATTDQDASSAGTDQDPASRSNANANANANA
AK018_02346852trpA_1COG0159Tryptophan synthase alpha chainGTGACCCGGACGGTGACGACGTCGCCGACGGCGACGCGCCTGGACGCGCTGCGCGCGCAGGGCCGGCCCGCGCTCGTGGGCTACCTGCCCGTGGGCTACCCGGACGTGGAGCGGTCGGTGCAGGCCGTGACGACGATGGTCGACGCCGGCGTGGACGTCGTCGAGATCGGCGTGCCGTACTCGGACCCGGTCATGGACGGTCCCGTCATCCAGCAGGCCGCCGAGGCGGCACTGGCCGGCGGCGCGCGCGTGCGGGACGTGCTGCGCGTGGTCGAGGCCGTGGCCGAGCGGTCCGGCGGCGAGGTCCCCGCGCTGGTCATGTCGTACTACAACCCCGTGCTGCGCTACGGCGTGGCCGCCTTCGCCCGGGACCTCGCGGCCGCGGGCGGAGCGGGCATGATCACGCCCGACCTCATCCCCGACGAGGCGGACGACTGGAACGCCGCCGCCGACGAGCACGGGCTGGACAAGGTCTACCTCGTCGCTCCGAGCTCGACGCCTGAGCGGCTGCGCCTGACCGCGCAGGCCTCGCGCGGCTTCGTCTACGCCGCCTCGACGATGGGCGTCACCGGCACCCGAGCCTCGGTGGGCGACCGTGCCGAGCAGCTCGTCGCCGACACCCGGGCGGCCGGCGCCTCGCACGTGTGCGTCGGCCTCGGCGTCTCGACGGGGGAGCAGGCCGCCGAGGTCGGCCGCTTCGCCGACGGCGTGATCGTCGGCTCGGCGTTCGTGCGCACGCTGCTGGGCGAGGAGCCCTGGCCGGAGCGTCTCGAGGCGCTCGGCGAGGTCACGCGCGAGCTGGCCGCCGGCGTCGCGCGCGCCCGCACCGGCGTCGCCGGGGGTGACGCATGAMTRTVTTSPTATRLDALRAQGRPALVGYLPVGYPDVERSVQAVTTMVDAGVDVVEIGVPYSDPVMDGPVIQQAAEAALAGGARVRDVLRVVEAVAERSGGEVPALVMSYYNPVLRYGVAAFARDLAAAGGAGMITPDLIPDEADDWNAAADEHGLDKVYLVAPSSTPERLRLTAQASRGFVYAASTMGVTGTRASVGDRAEQLVADTRAAGASHVCVGLGVSTGEQAAEVGRFADGVIVGSAFVRTLLGEEPWPERLEALGEVTRELAAGVARARTGVAGGDAPGPT0007070_439DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007070-trpA-K01695NANA
AK018_023471305trpB_1COG0133Tryptophan synthase beta chainGTGCCCGAGCAGTCCCACCAGCCCGTGCGCGACGCGCTGACCGAGACCCTGGCCGACCAGGACGCCGGCCGGCTCGCCGACGTCCACGGCCCGTACTTCGGCCAGTTCGGCGGCCGGTACGTCCCCGAGGCGCTGATCGCCGCTCTCGACGAGCTCGAGGCCGAGTTCCGCAAGGCCCAGCAGGACCCGGCGTTCGCCGCCGACCTGAGCCGTCTGCACCGGGAGTACACGGGTCGCCCCTCGCCGCTGACCGAGGTGTCGCGGTTCGCCGAGCACGCCGGCGGTGACGCGGTGCGCGTCTTCCTCAAGCGCGAGGACCTGAACCACACCGGCTCGCACAAGATCAACAACGTGCTGGGCCAGGCCCTGCTGGTCAAGCGCATGGGCAAGTCGCGCGTCATCGCGGAGACCGGCGCCGGCCAGCACGGGGTGGCCACCGCGACCGCTGCGGCCCTCATGGGCCTGGAGTGCGTCGTCTACATGGGCGAGGAGGACACCCGTCGCCAGGCGCTGAACGTGGCGCGCATGGAGCTGCTCGGGGCCACCGTCGTCCCGGTGACCCTGGGGACCCGGACGCTCAAGGACGCCATCAACGAGGCGCTGCGCGACTGGGTCACCAACGTCGAGTCCACGCACTACCTGCTCGGCACCGTCACCGGCCCGCACCCGTTCCCCGAGATGGTGCGCGAGTTCCACCGGATCATCGGCGCCGAGGCCCGCGAGCAGGTGCTCGAGCGCGTCGGTCGCCTGCCCGACGCCGTCGCGGCGTGCGTCGGCGGCGGGTCCAACGCGCTCGGCATCTTCAACGCCTTCCTCGACGACGACGGCGTCGACCTGTACGGCTTCGAGGCCGGCGGCGAGGGCATCGAGTCCGGCCGCCACGCCGCGCGGTTCTCCGGCGGCGCACCCGGCGTGCTGCACGGGGCACGGTCCTACCTGCTGCAGGACGACGACGGCCAGACCCGCCCCAGCCACTCGGTGTCCGCGGGGCTGGACTACCCGAGCGTGGGCCCGGCCCACTCGTGGCTGCACGACATCGGCCGCGCCACCTACGAGCCGGTGACGGACGCGGAGGCGATGGAGGCCTTCCGGCTGCTGTGCCGGACCGAGGGCATCATCCCCGCCATCGAGTCCGCGCACGCCCTGGCGGGTGTGCTGCGCGTCGGCCGCCGGCTGGCCGACGCCGGGAAGCGCGACCAGGTGCTCCTGGTCAACCTCTCCGGACGCGGGGACAAGGACGTGGCCACGGCGGCGCGCTGGTTCGGGCTGCTGCACGAGGAGCCGGCGACGGAGGGAGACCAGTGAMPEQSHQPVRDALTETLADQDAGRLADVHGPYFGQFGGRYVPEALIAALDELEAEFRKAQQDPAFAADLSRLHREYTGRPSPLTEVSRFAEHAGGDAVRVFLKREDLNHTGSHKINNVLGQALLVKRMGKSRVIAETGAGQHGVATATAAALMGLECVVYMGEEDTRRQALNVARMELLGATVVPVTLGTRTLKDAINEALRDWVTNVESTHYLLGTVTGPHPFPEMVREFHRIIGAEAREQVLERVGRLPDAVAACVGGGSNALGIFNAFLDDDGVDLYGFEAGGEGIESGRHAARFSGGAPGVLHGARSYLLQDDDGQTRPSHSVSAGLDYPSVGPAHSWLHDIGRATYEPVTDAEAMEAFRLLCRTEGIIPAIESAHALAGVLRVGRRLADAGKRDQVLLVNLSGRGDKDVATAARWFGLLHEEPATEGDQPGPT0007075_568DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007075-trpB-K01696NANA
AK018_02348825trpC_1COG0134Indole-3-glycerol phosphate synthaseATGACAGTCCTGGAGGACATCGTCGCCGGGGTCCGCGAGGACCTCGCCGAGCGTCAGGCACGGACCTCGCTCGAGGAGCTCAAGCAGCGCGCTGCGCGGGTTCCCGGGGCCCTGGAGTGCTGCGACATGCTGCGGTCCGAGGACCGCGTCGCGGTGATCGCCGAGGTCAAGCGGTCCAGCCCGTCCAAGGGGGACCTCGCCCCGATCAGCGATCCCGCCGCCCTCGCCGGGGAGTACGCCGCCGGCGGCGCCAGCGTCATCTCGGTGCTGACCGAGCAGCGTCGGTTCGGCGGCAGCCTGGCCGACCTCGACGCCGTCCGGGCGACCGTCGACGTCCCCGTGCTGCGCAAGGACTTCGTCGTGACCCCGTACCAGGTCTGGGAGGCGCGCGCGCACGGCGCCGACCTGGTGCTGCTGATCGTCGCCGCGCTGGAGCAGACGGTGCTGACCTCGCTCGTCGAGCGGGTGCACTCCCTGGGCATGACGGCCCTGGTCGAGGCGCACACGGCCGACGAGGTGCACCGGGCGCTCGACGCCGGCGCCCGCGTGGTGGGGATCAACGCCCGCGACCTGAAGACCCTCGAGGTGCGGCGCGACACCTTCGCCCAGCTCGCCCCCCTCATCCCCGACGACGTCGTCCGTGTCGCCGAGTCCGGCGTCCGCGGTCCGCACGACGTGATGGAGTACGCCCGGTCCGGGGCCCACGCGGTCCTGGTCGGCGAGGCGCTTGTGACCGACGGCGAGCCGCGCCGCTCGGTGGCCGACCTGGTCGCCGCCGGTCAGCACCCCTCGCTCTGGTCGGTCCGGCCGGCCGTGCAGCCCTGAMTVLEDIVAGVREDLAERQARTSLEELKQRAARVPGALECCDMLRSEDRVAVIAEVKRSSPSKGDLAPISDPAALAGEYAAGGASVISVLTEQRRFGGSLADLDAVRATVDVPVLRKDFVVTPYQVWEARAHGADLVLLIVAALEQTVLTSLVERVHSLGMTALVEAHTADEVHRALDAGARVVGINARDLKTLEVRRDTFAQLAPLIPDDVVRVAESGVRGPHDVMEYARSGAHAVLVGEALVTDGEPRRSVADLVAAGQHPSLWSVRPAVQPPGPT0007080_799DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007080-trpC-K01609NANA
AK018_02349279hypothetical proteinATGACCGACCACAGCACCGCCGAGCCGACGTACCTGCCGGAAGCGGTCCCGCCCACCAACCACGGCCACACGCTGGCGGCGTGGACCGCGATGACCGGCGTCATCCTGGGTGCGCTCCTCGCCTCGCTCGGCTGCCTGCCGGGCGTGCCCTTCGCGCTCTTCTGGGCCGGGCTCGCCGTCGTGGTGGTCTCCTGCGTCGTCGGCCTCGTCATGCGCAACATGGGCTACGGGCAGCCGCGGCCCGGCATGCCCGCGCGGCAGGACCGGGCCGGGCACTGAMTDHSTAEPTYLPEAVPPTNHGHTLAAWTAMTGVILGALLASLGCLPGVPFALFWAGLAVVVVSCVVGLVMRNMGYGQPRPGMPARQDRAGHNANANANANA
AK018_02350600hypothetical proteinGTGATCCGCACGCGCTCGCGCGCCGTGGTGCTGCTGCTGGCGCTGGGCGGGGCGACCTTCGGCGTCTCGGCACCGGTGTGGCTGCGCACCACGGTGGCCACGGCCCTGGAGCCGGAGGTCGCGGTCGAGGTCGCGGGCACGTCGGCCGCCCCCGTGGTCAGCGCCGCGGCGTTCGTCACCCTGGCGTGCGCGCTGGCCACGACGCTCGCCGGCCGGGTCGCCCGGCGGGTGGCCCTGGTCGTGGCCGGGCTCGCCGGGCTGGCCGTCGTGGCCGGCACCGTCGCCGTGCTGCGGGACCCGGCCGGTCCGGCGGTCGCCGCGGCCGCGGACGCCGCCGGCGTGACCGAGCTGACCGCCCCCGTGGACCTGACGCCGTGGCCGTGGCTGGCCCTGGTCACGGGCGCCGCGATCGTCGTCGTCGCCGTGCTCGCCACGCTCGGTGCCGGGGCGTGGAGCGCCACCGGCGGACGGCACGAGCGGGTGCCGGCCGACGGCCCGGTCGACGGTTCCGGGCAGGCCGCGGCCGGCGAGGACGAGGCCGACCCGCAGGCCGACTGGGACGCCCTGTCCCGCGGCACCGATCCGTCGTCGGACCGGTAGMIRTRSRAVVLLLALGGATFGVSAPVWLRTTVATALEPEVAVEVAGTSAAPVVSAAAFVTLACALATTLAGRVARRVALVVAGLAGLAVVAGTVAVLRDPAGPAVAAAADAAGVTELTAPVDLTPWPWLALVTGAAIVVVAVLATLGAGAWSATGGRHERVPADGPVDGSGQAAAGEDEADPQADWDALSRGTDPSSDRNANANANANA
AK018_023511602trpE_1COG0147Anthranilate synthase component 1GTGACCACTCCTGCCTCCACCTCCGCCCAGGCTCCTGCCGTTGCACCGACGGCCGACGAGCTCACCTGGGGCGCCACGTGGCCGGGACTGGGCACCTTCCGAGAGCTGGCGCGCGACCGGCGGGTCATCCCCGTGGTGCGCCGCGTCCTGGCCGACGACGTCACCCCGGTCGGGCTGTACCGCACGCTCGCGCAGGGACGTCCCGGCACCTTCGTGCTGGAGTCGGCCGACTCCGGCGGTGCCTGGGCGCGGTGGTCGTTCGTCGGCGTCGACTCCCGGGCGACGTTGCTGTCCGACGGCGGCCGCGCCGTCTGGCGGGGTGACGTGCCGGCCGGCATCCCGACCGAGGGCGACGTGCTCGACGTGCTCGAGGCCGCCCTGCAGGCGTTGCGCACCGAGCCGATCGACGGGCTGCCCCCGCTGACCGGCGGCTTCGTCGGGGCGATGGGCTGGGACGTCGTCCGGCACTGGGAGCCGACGCTGCCGGCCGAGGCTCCCGACGAGCTGGACGTGCCCGAGGTCGCACTGTCGCTGGCGACCGACCTCGTCGCGTTCGACCACCACTCCGGGTCGGTGTGGCTCGTCGCGAACGCGATCAACGCCGACGACACCGACGACCGGGTCGAGGAGGCCCACGCGGACGCGGTGGCCCGGCTGGACCGGCTGGCCGGGGGTCTCGCGGCCCCGACCACGCCGGTGCGCACCGTCGTCGACCCGACCGCCGCGGAGCCCGGGCTGGAGTTCCGCTCGACCCGCGACGACTTCGAGGACGCGGTGCGGGCCGGCAAGGAGGCGATCCGCGAGGGCGAGGTCTTCCAGGTCGTGCTCTCGCAGCGGCTCGACCTCGACTGCCCGGCCGAGCCGCTGGACGTCTACCGGGCGCTGCGGACGATCAACCCGAGCCCGTACATGTACTACTTCCAGCTGCGCGACCACCGCGAGCGGGACTTCGCGGTCGTCGGCTCCAGCCCCGAGACCCTGGTCAAGGTCGACGCCGGGCACGTCACGACGTACCCGATCGCCGGGTCGCGGCCGCGCGGCGCGACCGTCGAGGAGGACGTGGCGCTGGCCGAGGAGCTCATCGCCGACCCGAAGGAGCGGGCCGAGCACCTCATGCTCGTCGACCTGTCCCGCAACGACCTGGTCAAGGTGTGCGAGCCCACCACCGTCGAGGTCGTCGAGTTCATGGTCACGCGCCGGTTCAGCCACATCATGCACCTGTGCTCCACCGTCGTGGGCCGGCTGCGTCCCGGCGCCACCGCGCTGGAGACGTTCCGGGCGACCTTCCCGGCCGGGACGCTCTCCGGCGCCCCGAAGCCCCGGGCGATCGCCCTCATCGACGAGCTGGAGCCCGCCTCGCGCGGCATCTACGGCGGGACCTGCGGCTACCTCGACTTCGGCGGGAACATGGACATGGCCATCGCCATCCGGACGGCGTTCCTGCGCGAGGGTCGGGCCTCGGTGCAGGCCGGCGGCGGCATCGTGGCCGACTCGGTGCCGGCCCTGGAGTACGCGGAGTCGCGGAACAAGGCCGCCGCCGCCGTCCGCGCGGTGCAGCTCGCGGCACGGTTCGCCGACCTCGGCGCGGGGCGGACGTCGTGAMTTPASTSAQAPAVAPTADELTWGATWPGLGTFRELARDRRVIPVVRRVLADDVTPVGLYRTLAQGRPGTFVLESADSGGAWARWSFVGVDSRATLLSDGGRAVWRGDVPAGIPTEGDVLDVLEAALQALRTEPIDGLPPLTGGFVGAMGWDVVRHWEPTLPAEAPDELDVPEVALSLATDLVAFDHHSGSVWLVANAINADDTDDRVEEAHADAVARLDRLAGGLAAPTTPVRTVVDPTAAEPGLEFRSTRDDFEDAVRAGKEAIREGEVFQVVLSQRLDLDCPAEPLDVYRALRTINPSPYMYYFQLRDHRERDFAVVGSSPETLVKVDAGHVTTYPIAGSRPRGATVEEDVALAEELIADPKERAEHLMLVDLSRNDLVKVCEPTTVEVVEFMVTRRFSHIMHLCSTVVGRLRPGATALETFRATFPAGTLSGAPKPRAIALIDELEPASRGIYGGTCGYLDFGGNMDMAIAIRTAFLREGRASVQAGGGIVADSVPALEYAESRNKAAAAVRAVQLAARFADLGAGRTSPGPT0007095_673DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
AK018_02352396hisI_1COG0139Phosphoribosyl-AMP cyclohydrolaseGTGCAGAACCAGGACTCCCTCGACCCGGCCGTGGCCGACCGCCTCAAGCGTGACGAGCAGGGCCTCGTCGCCGCGATCGTGCAGCAGCACGACTCCGGCGAGGTGCTGATGCTCGGCTGGATGGACGACGAGGCCCTGGGCCGCACGCTGACGACGGGACGGGTGACGTTCTGGAGCCGGTCCCGCGGCGAGTACTGGCGCAAGGGGGACACCTCCGGCCACCGCCAGTACGTCCGGTCCGTCGCCCTCGACTGCGACGGCGACGCCCTGCTCGTGCGCGTGGACCAGGTGGGCGCCGCCTGCCACACGGGCACGCGCACCTGCTTCGAGGCCGGCGGCGCGCTCGACGCCGTCGTCGGCCACCGCCCCGACGAGACCGCCGAGGAGACCCGGTGAMQNQDSLDPAVADRLKRDEQGLVAAIVQQHDSGEVLMLGWMDDEALGRTLTTGRVTFWSRSRGEYWRKGDTSGHRQYVRSVALDCDGDALLVRVDQVGAACHTGTRTCFEAGGALDAVVGHRPDETAEETRPGPT0007095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
AK018_023531800msbA_2COG1132Lipid A export ATP-binding/permease protein MsbAATGAGCGACTCGCGCATCGCGTCCGCCAGCGACCTGGGGGTGCTCGCCACCCTGCGACGCGGTCTGGAGATCTCGCCGCAGATCGTCCAGGGGCTGTGGATCACGCTGGCGCTGGCCGTCCTGGCGGCCGCCGGCCGGGTCGTGGTGCCCCTGGCGGTCCAGCGCACGGTCGACGACGGCATCCTCGCCGCCGGCGGGCCGGACGCCTCGCGCGTCCTGACGCTGACCCTGCTCGCCGCCGGCGCGATCGTCGTCGCCGGGCTGTGCACCGCCGTCGTCAACGTCCGTCTCTTCCGCACCACCGAGGCCGGTCTGGCCACGCTGCGCGTGCGGGCGTTCCGCCACGTGCACGACCTGTCCACCCTGTCCCAGGGCTCCGAGCGGCGCGGCGCCCTGGTCTCGCGCGTGACGACCGACGTCGACCAGATCTCCCACTTCGTGCAGTGGGGCGGGATCATGCTGCTGGTCTCCAGCCTGCAGATCGCCGTGGCCACCGTCCTCATGGCCGTGTACTCGCCGGCCCTGACCGTCGTGGTCTGGCTGTGCTTCGTGCCGCTGTTCATCGTCCTGCGCTACGCCCAGCGGTCGGTCGGCCGGGCCTTCGGGCGCTCGCGCGAGAAGGTCGGCGCGATGCTCGGTGCCGTCTCGGAGGCCGTCGTGGGCGCCGAGACCGTGCGTGCGTACGGCGTCGAGGACCGCACCGGCCGGCGCATCGACACGGCGATCGAGGCGGCCCGGCGGACCCAGGGCCGTGCGCTGCTGCTGGTGGCGAGCGTGTTCTCCTCCGGGACGTTCATGGCCAACCTGGTCCTGGCCGTCGTGGTGGTGGTGGGCTCCTACCTCGGCATCGGGGGAGGGCTCACGGCCGGGCAGCTCGTCGCGTTCCTGTTCCTGGTCCAGCTCTTCACCGGTCCGGTCCAGATGGCCACGGAGATCCTCAACGAGCTGCAGAACGCCGTGGCGGGATGGCGGCGCGTGCTGGCGGTCGTCGAGACGCCGCTGGACGTCGTCGACGCGGGCGAGGACGGCGTCGAGTCCCCCCGCGGGGACGCGCACGTCGCGCTGCGCGGGGTGCGCTACGCCTACCCCGAGGGGCCGGAGGTCCTGCACGGCGTCGACCTCGAGCTGCCCGCCCGCCGCAAGGTCGCCGTCGTCGGTCAGACGGGGTCGGGCAAGACGACGATCGCCAAGCTCGTCACTCGACTCATGGACCCCACCGAGGGTCGTGTGGAGCTCGACGGCGTCGACCTGCGGCAGATCCCGTTGGCCCGCCTGCGCGAGCGCGTGGTCCTGGTGCCGCAGGAGGGCTTCCTCTTCGACGGCACGGTGCTGACCAACGCCGCCTACGGGCTGCCCGGTGCCGTGCCCGACGACCCCGAGGTCCGTGCCCGGGTGGCCGCGGCCTTCGAGGCTCTCGGGCTGACGGACTGGGTCGAGGGGCTGGCGGCCGGGCTGGACACCGACGTCGGCCAGCGCGGCGAGGCGCTGTCCGCGGGCGAGCGGCAGCTCGTCGCGGTCGCGCGCGCCTACCTGGCCGCCCCCGACCTGCTCGTGCTGGACGAGGCGACCTCGGCGGTCGACCCGGCCACCGAGGTGCGCATCGCGCGGGCGCTGGACGCGCTGACCTCCGGACGCTCGACGATCACCATCGCCCACCGGCTGTCCACCGCCGAGGCGAGCGACCTCGTCGTGGTCGTCGACGACGGGCACGTCGTCGAGGTCGGGCCGCACGAGGAGCTGGCGGCGGCCGGCGGCGTGTACGCCCGCATGCACGCCTCGTGGGTGGCCCAGACCCGCTGAMSDSRIASASDLGVLATLRRGLEISPQIVQGLWITLALAVLAAAGRVVVPLAVQRTVDDGILAAGGPDASRVLTLTLLAAGAIVVAGLCTAVVNVRLFRTTEAGLATLRVRAFRHVHDLSTLSQGSERRGALVSRVTTDVDQISHFVQWGGIMLLVSSLQIAVATVLMAVYSPALTVVVWLCFVPLFIVLRYAQRSVGRAFGRSREKVGAMLGAVSEAVVGAETVRAYGVEDRTGRRIDTAIEAARRTQGRALLLVASVFSSGTFMANLVLAVVVVVGSYLGIGGGLTAGQLVAFLFLVQLFTGPVQMATEILNELQNAVAGWRRVLAVVETPLDVVDAGEDGVESPRGDAHVALRGVRYAYPEGPEVLHGVDLELPARRKVAVVGQTGSGKTTIAKLVTRLMDPTEGRVELDGVDLRQIPLARLRERVVLVPQEGFLFDGTVLTNAAYGLPGAVPDDPEVRARVAAAFEALGLTDWVEGLAAGLDTDVGQRGEALSAGERQLVAVARAYLAAPDLLVLDEATSAVDPATEVRIARALDALTSGRSTITIAHRLSTAEASDLVVVVDDGHVVEVGPHEELAAAGGVYARMHASWVAQTRNANANANANA
AK018_023541899COG1132Putative multidrug export ATP-binding/permease proteinGTGCCCGAAACTGCCCGTCCGGCGACCCTGACCGGGTCGCGGCTGCGCCGCAGCGCCGCGCTGCTGTGGCGAGGACTGCGCGCCGAGCCGTGGCTCTTCGGGGCCGCGGTGGCGGCCTCGGCCGTGTTCGGCGCCGCGACCGTGGCGGTCAGCCGCGCCGTCGGCTGGGCGACCGACGCGGTGGTCGTGCCCGCGCTGTCGGGTGACGAGACCGCCCGGGCGGACATCTGGCTCGCCGGGGGAGTGCTCGCGCTGGTCGCCCTGACGCTCGCGCTGTCGGTGGCGGGCCGGCGCATCTGGGCCGGCTGGGGCAACGTCGGGCTGCAGGCGCAGCACCGCCGCGGCGTCACCCGCCAGTACCTGCGCCTGCCGATGTCCTGGCACCGCTCGCACCCGGCGGGTCAGCTGCTGTCCAACGCCAGCGCCGACGTCGAGGCCGCCACCGGCGTCTTCAACCCGCTGCCGTTCGCCCTCGGCGTCGTGGTGATGATCGGCGTCGCCACGGTGATGCTCTTCGCCATCGACCCCTGGCTCGCACTGTCGGCCCTGCTCGTCATCCCCGCCGCCATCGTGGCCAACCTCGTCTTCCAGCGGCACATGGCGCCCGCCGCGACCCGCGCGCAGCAGCTGCGCGCCGAGGTCGCCGACGTCGCGCACGAGTCCTTCGAGGCCGCCCTGCTGGTCAAGTCCCTCGGCACCGCGGACCGCGAGGAGGAGCGGTTCGGCCGCGCGACCGACGACCTGCGCGCCGCCAACGTGCGTGTCGGGCAGGTGCGCGCGGTGTTCGACCCCGTCATCGAGCTGCTGCCCAACCTCGGCACGCTGCTCGTCCTCGGCGTCGGCGCCGCCCGCGCCGCGGCCGGCGCGGTCGACGTCGGCGACGTCGTCACGGCCGCGTACCTGCTCACCCTGATGGCGGTCCCGGTGCGCGCCTTCGGCTGGGTGCTCGGCGAGCTGCCGCGCGCCCTGGTCGGCCACGAGCGCATCACCCGTGTCCTGGACGCGCGCGGCGAGCTCGTCCCCGGGGACGAGCCGATGCCGCCCGGGGAGGCGGGGCTGGCCGTCCGGCTCGAGGGCGTCGGCGTGGACGTGCCGGCTGCCGGGCGCACCGCGCGCCTGCTCGACGGCGTCGACCTGGACGTGCCGTCCGGCACGACCGTCGCCGTGGTCGGGGCCACCGGCGCGGGCAAGACCACGCTGGTCTCGCTGCTGAGCCGCCTCAGCGACCCCACGCGCGGCACCGTGCTCCTGGACGGCACCGACGTCCGGCGTCTCGGCGACGGACAGATCCCGGCGCAGGTGTCCCTGGTCGGGCAGCAGACCTTCGTCTTCGAGGACACCGTGCGCGCCAACGTGACCCTGGCGGACGACGTCTCGCCCCAGATCGACGCCGCCGTCTGGGAGGCCCTCGCGCTGGCCCGCGTCGACGACGTCGTGCGCGCCCTGCCCGACGGTCTGGACGCCCGTCTCGGCGAGCGCGGCGCGAACCTCTCCGGCGGGCAGCGCCAACGCCTGGCCATCGCCCGCGCGCTCGTGCGGCGTCCCCGGCTGCTCGTCCTCGACGACGCCACCAGCGCCGTCGACCCCCGCGTCGAGCAGGAGATCCTCACGGGGCTGGCGACCACCACGGCCGACGGCCGCCGCGCCACCACCGTCGTCATGGTGGCCTACCGGATGTCCTCGGTGACGATGGCCGACGTCGTCGTGCACCTCGACGCCGGACGCGTCGTCGACGTCGGCACCCACGACGAGCTGCTCGCCCGCGACCCGGGCTACCGCGAGCTCGCCACCGCCTACGAGGTCGAGACGGCGCGCCGCGAGCGCGAGCTCGCCGACGAGCGGGCCGCCGGCGAGGACGCCCGCGAACCCTGGGAGACCGAGACGGAGGAGGTCCGATGAMPETARPATLTGSRLRRSAALLWRGLRAEPWLFGAAVAASAVFGAATVAVSRAVGWATDAVVVPALSGDETARADIWLAGGVLALVALTLALSVAGRRIWAGWGNVGLQAQHRRGVTRQYLRLPMSWHRSHPAGQLLSNASADVEAATGVFNPLPFALGVVVMIGVATVMLFAIDPWLALSALLVIPAAIVANLVFQRHMAPAATRAQQLRAEVADVAHESFEAALLVKSLGTADREEERFGRATDDLRAANVRVGQVRAVFDPVIELLPNLGTLLVLGVGAARAAAGAVDVGDVVTAAYLLTLMAVPVRAFGWVLGELPRALVGHERITRVLDARGELVPGDEPMPPGEAGLAVRLEGVGVDVPAAGRTARLLDGVDLDVPSGTTVAVVGATGAGKTTLVSLLSRLSDPTRGTVLLDGTDVRRLGDGQIPAQVSLVGQQTFVFEDTVRANVTLADDVSPQIDAAVWEALALARVDDVVRALPDGLDARLGERGANLSGGQRQRLAIARALVRRPRLLVLDDATSAVDPRVEQEILTGLATTTADGRRATTVVMVAYRMSSVTMADVVVHLDAGRVVDVGTHDELLARDPGYRELATAYEVETARRERELADERAAGEDAREPWETETEEVRNANANANANA
AK018_02355771hisF_1COG0107Imidazole glycerol phosphate synthase subunit HisFATGACCGTGGCCGTTCGGGTGATCCCGTGCCTCGACGTCGACGCCGGACGGGTCGTCAAGGGCGTCAACTTCGCCAACCTGCGCGACGCCGGCGACCCGGTCGAGCTCGCCGACCGGTACGACCACGAGGGCGCCGACGAGGTGACGTTCCTCGACGTCTCGGCCTCCTCGGGCGGCCGGGAGACGATGGTCGACGTCGTGCGCCGCACGGCGGAGCAGGTCTTCGTGCCCCTCACCGTGGGCGGCGGCGTGCGCTCGACCGACGACGTCGACCGGCTGCTGCGGGCCGGTGCCGACAAGGTCGGGGTCAACACCGCGGCGATCGCGCGCCCCGAGCTCATCGCGGAGATCGCCGACCGGTTCGGCAACCAGGTCCTCACGCTCTCGGTCGACGCCCGTCGCGTCACGGGGGACACCACGACACCCTCGGGGTACGAGGTCACCACGCACGGCGGCCGCCGGGGGACCGGCATCGACGCCGTGGAGTGGGCGGAGCGTGCCGCCGGGCTCGGCGCCGGCGAGATCCTGCTGAACTCGATGGACGCCGACGGCACCACCGGCGGGTTCGACCTGGAGATGCTCCGCGCCGTGCGCGAACGCGTCCACGTCCCGCTGGTCGCCTCGGGCGGGGCGGGCACCCCCGAGGACTTCGTCGCCGCGGCGCGCGCCGGGGCGGACGCCGTCCTGGCGGCCAGCGTGTTCCACTTCGCCACGTTGACCGTCGGCGAGGTCAAGGACGCGATGCGCGCCGCCGGCGTCGAGGTGCGCTGAMTVAVRVIPCLDVDAGRVVKGVNFANLRDAGDPVELADRYDHEGADEVTFLDVSASSGGRETMVDVVRRTAEQVFVPLTVGGGVRSTDDVDRLLRAGADKVGVNTAAIARPELIAEIADRFGNQVLTLSVDARRVTGDTTTPSGYEVTTHGGRRGTGIDAVEWAERAAGLGAGEILLNSMDADGTTGGFDLEMLRAVRERVHVPLVASGGAGTPEDFVAAARAGADAVLAASVFHFATLTVGEVKDAMRAAGVEVRPGPT0007095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
AK018_023561029hypothetical proteinGTGCCCGGGGCCGGTTCCGGGACGCCGGGGCCGTCGTGGCACACTGTGCCGGTGCCACCCCGCCGTCCCCCGCTGCTCGTCGCCGTCCTGGCGGTGCTGCTGATGCTGGCGGGGTGCTCGACGCCCGTGTGGGACCGGGTCGCACCGACCCAGGTGCCCTCCCAGACCCCGGTCCAGGTCAGCGGACCCCAGGGCGAGCCGCCGGCGCTGCAGTACCCGCAGCCGTACCAGGTCGTGCAGTCCGGCTCCCGCACCCTGTGGCCCGGGACCGGTGACCCGCTCGAACCCGGCCAGCAGGTGCTGCTGCACATGTACGCCGAGGACGGCCGGGACGGCAGCGTCATCTCCTCGACCTATCTCGACGCACCCGCCTGGTACACGTTCGACGCCGACTCCCTGGGCCAGAACGTCTACGACTCGCTGCGCGGCAAGCGGGTGGGCGCGCGGGTGCTGGTCGTCGAGCAGGACGGCGACGTGCCCGTCGTGCTGGTCGTGGACGTGCTGCCCACGCGCGCCACGGGTGACGTGGTCGAGCCCGTCGAGGGACTGCCGACCGTGGTCCGGGACCCGGACGGGAGTCCGACGGTGCTCGTCGGCGACGGCGACCCGCCGGGTCAGCTCGTCGTCCAGCCGCTGATCCGCGGCGGCGGCCCCCAGGTGGAGGTCGGACAGGTCGTCACCGCCCGCTACGTGGCCGTGCGGTGGAGCGACGGGCGTGTCGTCGACACCAGCTGGGAGCCCGGCGTGGCCCCGCAGTCGGCGACGATCGGCATCGGCCGGCTGATCGAGGGGTGGGACCAGGGGCTGCTCGAGCAGTCCGTCGGGTCCCAGGTGATGCTCGTGGTGCCCCCGCACCTGGGCTACGGTGGGACCGGGAGCGAGCTGGCCGACGAGACCCTCGTCTACGTCATCGACATCCTCGACGCCCGGTTCCAGGTCACCCAGGACGTCCCGGCGCCGGAGGGCGGCGAGCAGGGCTCCGACGAGGCGGCCGACCAGGACCCGCCACCCAGCACGACCGAAGGATGAMPGAGSGTPGPSWHTVPVPPRRPPLLVAVLAVLLMLAGCSTPVWDRVAPTQVPSQTPVQVSGPQGEPPALQYPQPYQVVQSGSRTLWPGTGDPLEPGQQVLLHMYAEDGRDGSVISSTYLDAPAWYTFDADSLGQNVYDSLRGKRVGARVLVVEQDGDVPVVLVVDVLPTRATGDVVEPVEGLPTVVRDPDGSPTVLVGDGDPPGQLVVQPLIRGGGPQVEVGQVVTARYVAVRWSDGRVVDTSWEPGVAPQSATIGIGRLIEGWDQGLLEQSVGSQVMLVVPPHLGYGGTGSELADETLVYVIDILDARFQVTQDVPAPEGGEQGSDEAADQDPPPSTTEGNANANANANA
AK018_023571362pafA_1Pup--protein ligaseATGGACCGGAGGATCTTCGGGCTGGAGACCGAGTACGGCGTGACGTGCGCGGCCGACGACGGGCGGGGGCTGAGCGCCGACGAGGTCGCGCGCTACCTGTTCCGCAAGGTCGTCGCCTGGGGCCGGTCCTCGAACGTCTTCCTGCGCAACGGCTCGCGGCTCTACCTGGACGTCGGCTCGCACCCCGAGTACGCGACCGCCGAGTGCGACGACGTCCGCCAGCTCGTGGCCTACGACCGCGGCGGCGAGCGCATCCTCGAGGGCCTGGTGGCGGACGCGCAGCAGCGGCTGGAGCACGAGGGCCTGCCCGGCAAGGTCCACCTGTTCAAGAACAACACGGACTCGGCGGGCAACTCCTACGGCTGCCACGAGAACTACCTCGTGCGGCGCCAGGGCGACTTCTCCCGTCTCAGCGACGTCCTGGTCCCGTTCCTCATCACCCGGCAGGTGCTGACCGGCGCGGGCAAGGTGCTGGCCACGCCCCGCGGGGCGACCTACTGCCTGTCCCAGCGCGCCGACCACATCTGGGAGGCGGTCTCCAGCGCCACGACGCGCTCGCGGCCCATCATCAACACCCGCGACGAGCCGCACGCCGACGCCGAGCACTACCGGCGCCTGCACGTCATCGTCGGCGACTCCTCGATGTCGGAGACGACGACCCTGCTCAAGGTCGGGGCCACGGACCTGGTGCTGCGTCTGGTCGAGGCGGGGGTGCCCGTCCGCGACCTGACCCTGGAGAACCCGATCCGGGCCATCCGGGAGATCAGCCACGACTCCTCCGGCAAGCACGCCGTCCAGCTCGCCAACGGGCGCTCCGCGACGGCGGTCGACGTCCAGGGCGAGTACTACCAGCGGGTGCGCGAGCACGTCGACGCCCACCTGGACCCGACCCCGCAGGTCAAGCAGACGCTGGACCTGTGGGAGCGGGGCCTGCGCGCCCTGGAGTCCGGCGACCTGTCCCTGGTCGACCGCGAGCTGGACTGGGTCATCAAGTGGCGCATCATCGAGCGGTACCGGGCCAAGCACGACCTGCCCCTGGAGGACCCCCGCATCGCCCGCCTGGACCTGGCCTACCACGACATCTCGCGCACCGAGGGCCTGTACAACCTCCTCGCGGCGCGAGGGATGGTGGAACGGGTCGTGACCGACCTCGAGGTGTTCGAGTCTACGGCGATCCCGCCGCAGACGACGCGCGCCAAGCTGCGCGGCGACTTCGTGCGGGCGGCCCAGGACTCCCGGCGCGACTACACGGTCGACTGGGTGCACCTGAAGCTCAACGACCAGGCCCAGCGCACGGTGCTGTGCAAGGACCCGTTCCGCAACGTCGACGAGCGCGTCGAACGGCTCATCGAGTCCATGTGAMDRRIFGLETEYGVTCAADDGRGLSADEVARYLFRKVVAWGRSSNVFLRNGSRLYLDVGSHPEYATAECDDVRQLVAYDRGGERILEGLVADAQQRLEHEGLPGKVHLFKNNTDSAGNSYGCHENYLVRRQGDFSRLSDVLVPFLITRQVLTGAGKVLATPRGATYCLSQRADHIWEAVSSATTRSRPIINTRDEPHADAEHYRRLHVIVGDSSMSETTTLLKVGATDLVLRLVEAGVPVRDLTLENPIRAIREISHDSSGKHAVQLANGRSATAVDVQGEYYQRVREHVDAHLDPTPQVKQTLDLWERGLRALESGDLSLVDRELDWVIKWRIIERYRAKHDLPLEDPRIARLDLAYHDISRTEGLYNLLAARGMVERVVTDLEVFESTAIPPQTTRAKLRGDFVRAAQDSRRDYTVDWVHLKLNDQAQRTVLCKDPFRNVDERVERLIESMNANANANANA
AK018_02358720prcACOG0638Proteasome subunit alphaGTGAACATGCCGTTCTACGTCTCGCCCGAGCAGCTGATGAAGGACCGGGCGGACTTCGCGCGCAAGGGGATCGGCCGTGGACGCTCCGTCGTCGTGCTGGCCTACGACGACGGGATCGCGTTCGCGACGGAGAACCCCTCGCGCGCGCTGCACAAGATCTCCGAGATCTACGACCGCATCGCCTTCGCCGCCGTGGGCAAGTACAACGAGTTCGAGAACCTCCGCGTGGCGGGGGTGCGGTACGCGGACCTGCGCGGGTACTCCTACGACCGCACCGACGTGACGGCCCGGGGGCTCGCGAACGCCTACGCCCAGACGCTGGGCACGGTGTTCACCACCGAGTCCAAGCCGCTCGAGGTCGAGCTGGTGGTGGCGGAGGTCGGTGCCACGCAGGACGAGGACCAGCTGTACCGGCTGTCCTACGACGGTTCGGTCGCCGACGAGCACGGGTTCGTCGTGATGGGCGGGCAGGCGGACCAGCTCACCTCGCGGGTCCGCGACGGCTGGGAGCCGGGCATGGACCTGGCCGGCGTGCTGCGGCTGGCGGTGCGGACGCTGGGTGCGGTGAACACCGACGGCTCGGTCGCCGGTGAGGGGCAGGAGCGGGAGATCTCCGCCGCCGGGCTGGAGGTGGCGGTGCTGGACCGCCGCCGCGCGCGGCGGGCCTTCCGCCGGTGGCAGGGCGACGCCTTGGCGCGCCTGCTGCACGGAGACGACTGAMNMPFYVSPEQLMKDRADFARKGIGRGRSVVVLAYDDGIAFATENPSRALHKISEIYDRIAFAAVGKYNEFENLRVAGVRYADLRGYSYDRTDVTARGLANAYAQTLGTVFTTESKPLEVELVVAEVGATQDEDQLYRLSYDGSVADEHGFVVMGGQADQLTSRVRDGWEPGMDLAGVLRLAVRTLGAVNTDGSVAGEGQEREISAAGLEVAVLDRRRARRAFRRWQGDALARLLHGDDNANANANANA
AK018_02359852prcB_1COG0638Proteasome subunit betaGTGACCTCCCCATCCGCTGAGTCCTCCGGCCGGCTGCCGGACGCCTTCCTGCGGCCGGGATCCAGCTCGTTCGTCGACTTCCTGGGCGAGCACGCCCCGGACCTGCTGCCGGGCAACCGGCCGGCGGGGACGACGGGTACCGCCGCGGAGCTGGCACCGCACGCGACCACGATCGTCGCGCTCACCTTCGGCGACGACGAGAGCGGCCGCGGCGTGGTCATGGCCGGCGACCGGCGCGCGACCATGGGCAACCTCATCGCCAGCCGCGAGATCGAGAAGGTCTTCGCCGCGGACGACTACTCCGCGGTCGGCATCGCGGGCTCGGCGGGCATCGCCCTGGAGCTCGTGCGGCTGTTCCAGCTCGAGCTCGAGCACTACGAGAAGATCGAGGGCTCCCAGCTCTCGCTGGACGGCAAGGCCAACCGGCTGGCCGCGATCATCCGCGGCAACCTGCCCCTGGCCCTGCAGGGCCTGGCCGTGGTGCCCCTGTTCGGCGGGTTCGACCTCGACCGGTCCGGCGGACGCCTGTTCAGCTACGACGTCACCGGCGGGCGCTACGAGGAGCACGACCACCACTCGGTGGGGTCCGGCTCGGTGTTCGCCCGCGGGTCGCTGAAGAAGCGGTGGCGCCACGGGCTCGACGCCGACGCCGCCGTGGCGGTCGCCGTCGAGGCGCTCTACGACGCCGCGGACGACGACAGCGCGACCGGCGGGCCCGACACGGTCCGGCGCATCTGGCCGGTGGTGGCCACGGTCACCGCGGACGGCTACCGCCGGGTGGCCGACGACGCCCTGGCGGACGTCGTCGAACGGATCGTCGCCGAGCGGCGCGAGGGAGGTGCACGCGCGTGAMTSPSAESSGRLPDAFLRPGSSSFVDFLGEHAPDLLPGNRPAGTTGTAAELAPHATTIVALTFGDDESGRGVVMAGDRRATMGNLIASREIEKVFAADDYSAVGIAGSAGIALELVRLFQLELEHYEKIEGSQLSLDGKANRLAAIIRGNLPLALQGLAVVPLFGGFDLDRSGGRLFSYDVTGGRYEEHDHHSVGSGSVFARGSLKKRWRHGLDADAAVAVAVEALYDAADDDSATGGPDTVRRIWPVVATVTADGYRRVADDALADVVERIVAERREGGARANANANANANA
AK018_02360195pup_1Prokaryotic ubiquitin-like protein PupATGGCCGGTCAGGAACGGATCAACCCGCAGAACGACGACCGCACGCCCGACGACGACGCGGAGGCCCCGGCACCGGCTCCGCAGACCGCCGACCGCGACGCGGAGGTCGACTCGCTGCTCGAGGAGATCGACGAGGTCCTGGAGTCGAACGCGGAGTCGTTCGTCCGGGGATTCGTGCAGAAGGGCGGGCAGTGAMAGQERINPQNDDRTPDDDAEAPAPAPQTADRDAEVDSLLEEIDEVLESNAESFVRGFVQKGGQNANANANANA
AK018_023611623dop_1Pup deamidase/depupylaseATGGGTATCGAGACCGAGTACGGGGTGCTGTCCCCGGGACGTCCCATGGCGAACCCGATGCTGATGAGCTCCCAGGTCGTGACCACCTACCGGGCGCTCGTCCAGGACGGGCGCCCCGGCCACCCGCCGGCGCGGTGGGACTACGACGACGAGGACCCGTTGGCGGACGCGCGCGGGTTCCACCTCGACCGTGCTTCCGCCCACCCGTCCCTGCTGACGGACGACCCCGACGCCCCGGCGCCGGCCGGACCGGAAGGTTCCGGGGACACGGCCGCCACGCCCGAGAGCGTCGAGCGTCCGGAGGCGGAGGACTACGACGACCCGAGCGCCGCGAACTGCATCCTGACCAACGGGGCCCGACTGTACGTGGACCACGCCCACCCCGAGTACTCCTCGCCGGAGGTCACCACCCCCCGTGACGCCGTGGTGTGGGACGTGGCCGGCGAGCGGGTCATGCTGGCGGCGAGCCGCCAGCTCGCCCAGGTGCCCGGCACCGAGATCGTCCTGTACAAGAACAACGTGGACGGCAAGGGCGCCAGCTACGGCACCCACGAGAACTACCTGGTCGACCGCGACCTGCCGTTCGCCACCCTGGCCGAGCTCGTCACCGCGTTCCTGGTCACCCGGCAGGTCTTCACCGGCTCGGGCCGCGTCGGCCTCGGGCAGACGGGCGACGAGCCGGGGTTCCAGCTCTCCCAGCGGGCGGACTACATCGAGGCCGAGATCGGCCTGGAGACCACGCTGCGCCGCCCGATCGTCAACACCCGCGACGAGCCGCACGCCGACCGCACGCGCTGGCGCCGGCTGCACCTCATCCTCGGCGACGCCAACCACCTCGAGGTCGCCACCTACCTCAAGCTCGGCACGACGTCGCTGGTGCTGTGGGTGCTCGAGCACCTCGACGACCTCGCCGCGGCCGGTGTCCCCGCCCGGGCCGAGCTGTCGCGGCTGCGGCTGGCCGACCCGGTCCCCGCGGTCCGTCGCGTCTCGCGCGACCTGGACCTGACCGCCGAGCTGGACCTGGCCGACGGCACGACGGCCACCGCCCTGGAGATCCAGCGGCGGGTCGTCGACCTCGTCGAGCGGGCGCTCGTGGCCCTGGGCTCGGACGAGGAGTCCGACGCGGTCGTGACGCGGTGGCGCGGCGTGCTGGACCGCCTGGGCACCGACCCGATGAGCTGTGCCCGGGAGGTCGAGTGGGTGGCCAAGCTGCGCCTGCTGGAGCGGCTGCGCACCCGGGACGGGCTGGACTGGGACCACCCGCGCCTGGGTGCCCTGGACCTGCAGTGGTCGGACGTGCGGCCGGAGCGCGGGATCTACCACCGGCTGCTGTCCTCCGACGCGGTCGACCGGATCACCACCGAGGAGGACGTCGCCCACGCCGTGCACCACCCGCCGACCGACACGCGGGCGTGGTTCCGCGGTGAGGTGATGGAGCGCTACGCCGACGAGGTCTCGGCGGCGAGCTGGGACTCGGTGATCTTCGACGTCGCCGGCGCCACGTCCCTGCAGCGGGTGCCGATGCCGGACCCGCTGCGCGGCACCGCGCAGCACATCGGCCGGCTGCTGGACGCGAGCCCGGACGCGACGGCCCTGCTGACGGGGTTGCGAGGAGATGCGTGAMGIETEYGVLSPGRPMANPMLMSSQVVTTYRALVQDGRPGHPPARWDYDDEDPLADARGFHLDRASAHPSLLTDDPDAPAPAGPEGSGDTAATPESVERPEAEDYDDPSAANCILTNGARLYVDHAHPEYSSPEVTTPRDAVVWDVAGERVMLAASRQLAQVPGTEIVLYKNNVDGKGASYGTHENYLVDRDLPFATLAELVTAFLVTRQVFTGSGRVGLGQTGDEPGFQLSQRADYIEAEIGLETTLRRPIVNTRDEPHADRTRWRRLHLILGDANHLEVATYLKLGTTSLVLWVLEHLDDLAAAGVPARAELSRLRLADPVPAVRRVSRDLDLTAELDLADGTTATALEIQRRVVDLVERALVALGSDEESDAVVTRWRGVLDRLGTDPMSCAREVEWVAKLRLLERLRTRDGLDWDHPRLGALDLQWSDVRPERGIYHRLLSSDAVDRITTEEDVAHAVHHPPTDTRAWFRGEVMERYADEVSAASWDSVIFDVAGATSLQRVPMPDPLRGTAQHIGRLLDASPDATALLTGLRGDANANANANANA
AK018_023621656mpa_1COG0464Proteasome-associated ATPaseATGACCGACCACCCTGTTCGCCCGGACCACTCGGACGCGCCGACGCCGTCCGGACGCGACGCCCAGCTGGCGCTGCTCGCGGCGAAGAACGAGCGGCTCGCCGAGGCGTTGCGGGCCGCCCGGGAGCAGATCGTCGAGCTGAAGAAGCAGATCGACGACCTGGCCAAGCCGCCCGGGACGTACGCCACCTTCCTGTCCGACCACGGCGACGGGTCGGTGGACGTGGTCTCCCAGGGCCGCAAGATGCACGTCCAGGCCAGTCCCCAGCTCCAGCTGTCCGACCTCGCCCCGGGGCAGGAGGTCAAGCTCAACGAGGCCATGACCGTCGTCGGCGCCGGTGGCTACGAGCGCACGGGTGAGCTGGTCACGGTCAAGGAGGTGCTCGACGAGGACCGCGTGCTCGTGGTCGGGCGCGCCGACGAGGAGCGCGTCGTCCGGCTCGCCGGCTCGGTCGCGGCCGACCGGCTGCGGGTGGGCGACGCGCTGACCGTCGACGTGCGCAGCGGGTTCGTCTTCGAGGTCGTGCCCAAGTCCGAGGTCGAGGAGCTCGTCCTGGAGGAGGTGCCCGACATCGCCTACGAGGACATCGGCGGTCTGGGCACGCAGATCGAGGCGATCCGCGACGCCGTCGAGCTGCCGTTCTCCCACCCGGACCTGTTCCGCGAGCACGGGCTGCGCCCGCCCAAGGGCGTGCTGCTCTACGGCCCGCCCGGCTGCGGCAAGACGCTCATCGCCAAGGCGGTCGCCTCCTCGCTGGCCCGGATGGTCGCCGAGAAGCGCGGCGGCGACCCGAACGCGAAGAGCTTCTTCCTCAACGTCAAGGGTCCCGAGCTGCTGAACAAGTACGTCGGCGAGACCGAGCGGCACATCCGGCTCATCTTCGCCCGGGCCCGGGAGAAGGCCGGCCAGGGCATGCCTGTCGTGGTGTTCTTCGACGAGATGGAGTCGCTGTTCCGCACCCGCGGGACCGGCCTGTCCTCGGACGTGGAGACCACGATCGTGCCGCAGCTGCTCGCCGAGATCGACGGCGTCGAGCGGCTGGACAACGTGATCGTCATCGGTGCCTCCAACCGCGAGGACATGATCGACCCGGCGATCCTGCGTCCCGGCCGGCTCGACGTGAAGATCAAGATCGAGCGTCCGGACGCCGAGGGCGCCACGGAGATCTTCGGCAAGTACCTCACGGCCGACCTGCCCATCAGTGCCGACGACCTCGCCGAGCACGGCGGCAACCGGCAGGCGGCCGTCGAGGCGATGATCCGGTCGGTCGTGGAGCGCATGTACGCCGAGGACGAGGACAACCAGTTCCTCGAGGTCACCTACGCCAGCGGCGACAAGGAGACCCTGTACTTCAAGGACTTCAACTCCGGGGCGATGATCGAGAACGTCGTCGACCGCGCCAAGAAGTCCGCGATCAAGGACTTCCTGGCCTCCGGCCACCGGGGGATCCGGGTGGAGCACCTGCTGTCGGCCTGCGTCGACGAGTTCCAGGAGAACGAGGACCTGCCGAACACGACGAACCCCGACGACTGGGCACGCATCAGCGGCAAGAAGGGTGAGCGCATCGTGTTCATCCGCACGATCTCGAAGAAGAAGGGCGAGCACAGCGCGCCGCGCACGATCGACACCGTGAACTCCACGGGTCAGTACCTGTAGMTDHPVRPDHSDAPTPSGRDAQLALLAAKNERLAEALRAAREQIVELKKQIDDLAKPPGTYATFLSDHGDGSVDVVSQGRKMHVQASPQLQLSDLAPGQEVKLNEAMTVVGAGGYERTGELVTVKEVLDEDRVLVVGRADEERVVRLAGSVAADRLRVGDALTVDVRSGFVFEVVPKSEVEELVLEEVPDIAYEDIGGLGTQIEAIRDAVELPFSHPDLFREHGLRPPKGVLLYGPPGCGKTLIAKAVASSLARMVAEKRGGDPNAKSFFLNVKGPELLNKYVGETERHIRLIFARAREKAGQGMPVVVFFDEMESLFRTRGTGLSSDVETTIVPQLLAEIDGVERLDNVIVIGASNREDMIDPAILRPGRLDVKIKIERPDAEGATEIFGKYLTADLPISADDLAEHGGNRQAAVEAMIRSVVERMYAEDEDNQFLEVTYASGDKETLYFKDFNSGAMIENVVDRAKKSAIKDFLASGHRGIRVEHLLSACVDEFQENEDLPNTTNPDDWARISGKKGERIVFIRTISKKKGEHSAPRTIDTVNSTGQYLNANANANANA
AK018_023631002trmICOG2519tRNA (adenine(58)-N(1))-methyltransferase TrmIGTGACTTCCTCCTCCGCCACCGGTGCCGACATCCGCCGCGGGCCGCTCCGCGTCGGCGACAAGGTCCAGCTCACCGACCCCAAGGGTCGGATGCACACGATCACGCTCGCCGAGAACGCCACCTTCCACACGCACAAGGGCTACTTCCGCCACGAGGACCTCATCGGTCGCCCCGAGGGGTGGGTGGTCACCAACACCGCCGGGATCGAGTACCTCGCCCTGCGGCCGCTGCTGAGCGACTTCGTGCTGTCCATGCCGCGCGGTGCCGCCGTCGTCTACCCCAAGGACGCGGGCCAGATCGTCCAGATGGCCGACATCTTCCCCGGGGCCCGCGTCCTGGAGGCCGGTGTCGGCTCCGGCGCGCTGACCATGTCCCTCCTGCGCGCCGTCGGCGACGCGGGCGAGCTGCACTCGATCGAGCGCCGCGAGGACTTCGCCGCGATCGCGCGCGGCAACGTCGAGACGTTCTTCGGCGGCCCCCACCCGGCCTGGCACCTGCACATCGGCGACCTGGCCGACCGGGCCGCCGACGTCGTCGAGCCCGGCTCGGTGGACCGCGTCGTGCTGGACATGCTCGCCCCGTGGGAGAACGTCGACGCCGTCGCGCAGGTGCTCACCCCCGGCGGGGTGCTCGTCTGCTACGTCGCGACGGCGACCCAGCTGTCCCGGACGGCCGAGGCCCTGCGCGCCGACGGCCGGTTCGCCGAGCCCACGGCCTGGGAGTCGATGGTGCGCGGCTGGCACCTCGAGGGGCTGGCCGTCCGGCCGCAGCACCGCATGGTCGGGCACACCGGCTTCCTGCTGACCGCCCGCCGGCTGGCCGACGGCGTCACCCCGCCGGTGCGCAAGCGGCGCCCGGCCAAGGGTTCGCGCCCGGGCGACGAGGAGCAGTGGGGCGCGGGTCGCTGGAGCGAGGAGGAGCTCGGTGAGAAGGCGGTCTCGGACAAGAAGATCCGTCGCGTGCGCCGTCAGGTCGGTCAGGAGCCCGAGCAGGAGGCCTGAMTSSSATGADIRRGPLRVGDKVQLTDPKGRMHTITLAENATFHTHKGYFRHEDLIGRPEGWVVTNTAGIEYLALRPLLSDFVLSMPRGAAVVYPKDAGQIVQMADIFPGARVLEAGVGSGALTMSLLRAVGDAGELHSIERREDFAAIARGNVETFFGGPHPAWHLHIGDLADRAADVVEPGSVDRVVLDMLAPWENVDAVAQVLTPGGVLVCYVATATQLSRTAEALRADGRFAEPTAWESMVRGWHLEGLAVRPQHRMVGHTGFLLTARRLADGVTPPVRKRRPAKGSRPGDEEQWGAGRWSEEELGEKAVSDKKIRRVRRQVGQEPEQEANANANANANA
AK018_023641131rip3_1COG0517Putative zinc metalloprotease Rip3GTGACTCAACGCTCCTCCGGGTGGCGCATCGGCCGTGTCGCCGGCGCCCCTGTCCTGGTGACCCCGTCGTGGTTCCTCGCCGCCGTCGTCCTGACCGCGCTGTTCGCCCCGACGGTGCGCGCCTTCGCCCCCCGCATGGAGCTGGTGGGGGTGCTGGTCGTCTCCTTCGCGTTCGTGCTGCTGCTGTTCGCGTCGGTGTTCTGCCACGAGGTGGCCCACGCCCTGGTGGCGCGCGCCCGCGGACACCGCGTCGACGAGCTCGCCCTGACGCTGTGGGGCGGGCACACCGCCTACTCCGGAACGGTCCGGCACCCGCGCGACAGCGCGCTGATCGCCGTCGTCGGCCCGTTGACGAACCTGGCGCTCGCCGCCGGCTTCTGGCTGCTGTTCTCCGCCCAGACCTCGGCGTCGGTGCCCGCGCTGCTGCTCTACGCCGGCGCGTTCTCGAACGCGTTCGTCGGTGCCTTCAACCTGCTGCCGGGTCTCCCGCTCGACGGTGGCCAGGTCCTCGAGGCGGGCGTCTGGACCGCGACGGGCTCGCGCACGCGCGGCACGCTGGCGGCCGGCTGGGTCGGCCGGGCGGTCGGTGCCGCCGTCGTGCTCTGGGCGCTGGCCTGGCCCCTGGCGACCGGACGCAGCCCCGACCTCTTCACCGTGATGTGGGCCGCGCTCATCGGCGCGTTCCTGTGGTCCGGGGCGAGCGAGGCCATGCGGGTGGGGCGCCGGCGCGAGCAGCTCGACCGCCTCGACGTGCGGTCGCTGGTGACCTCCGCCGTGGTCGTCCCCGCCGGGGCGACGGTGGCCGACGCCGGCCGGGCGGCGCGCGGGCACGGCGAGGTCGCCGTCGTCGTCCTCGACCACCGGGGAGAGCCCGCCGGCTGGGTCGACCCGCAGGCCGCGGCCGCCGTGCCGGCGGACCAGGCCGCCGCGACGCCGGCGGAGTCGGCCCTCGTGCCCTTCCCCGCGGGGTCGACCGTGGACGTCGACGAGTCCGGGCCCGAGCTGCTCGACCACCTGGCCCGGGTCGCCGGCGGTGCGCGCGTGCTTCCGGTGGCGGACCGTGGCCGGGTCACCGGGGTGCTGGACGTCGCCCGGGTCGCGGCGGCCGTGCGTCCGGCGGGCCGCCGGTAGMTQRSSGWRIGRVAGAPVLVTPSWFLAAVVLTALFAPTVRAFAPRMELVGVLVVSFAFVLLLFASVFCHEVAHALVARARGHRVDELALTLWGGHTAYSGTVRHPRDSALIAVVGPLTNLALAAGFWLLFSAQTSASVPALLLYAGAFSNAFVGAFNLLPGLPLDGGQVLEAGVWTATGSRTRGTLAAGWVGRAVGAAVVLWALAWPLATGRSPDLFTVMWAALIGAFLWSGASEAMRVGRRREQLDRLDVRSLVTSAVVVPAGATVADAGRAARGHGEVAVVVLDHRGEPAGWVDPQAAAAVPADQAAATPAESALVPFPAGSTVDVDESGPELLDHLARVAGGARVLPVADRGRVTGVLDVARVAAAVRPAGRRNANANANANA
AK018_02365909hypothetical proteinATGACGACGGCCGACCCTGCCACCGGATCACCGGACCGCACCGCGTCGAGCCCCGACGCGCCGGGGACCCGTCCGTCGCGTCCCCCGGCCCTGTCGCCGTCGCGCGCGAACGACTTCATGCAGTGCCCGCTGCTGTTCCGCTTCCGGGCGGTCGACCGCCTGCCCGAGCCGCCGTCGTCCGCCGCCGCACGCGGCACGCTCGTGCACGCCGTCCTCGAACGGCTCTACGACGCCCCGCTGGGCGAACGCACTCCCGAGGCGGCGCGCGGCCTGCTGCCCGGCGAGTGGGAGCGTCTGGTGGAGGTCGAGCCCCGCTACGCCGAGCTGTTCACCGCCGGCGGGGACGCCGAGGGGCAGCCCCTGGAGACCTGGCTGGACGGCGCGGGCAAGCTGCTGGGCACGTACTTCACGCTGGAGGACCCGAACCGCCTGCAGCCCGAGGCCCGCGAGCTGGCCGTGGAGAGCCAGCTCGAGGACGGGCCGCTGCTGCGCGGCATCGTGGACCGGCTCGACGTGGCGCCCGACGGCGCGGTCCGGGTCGTCGACTACAAGTCCGGACGCTCGCCCCGGCCCGGTTTCGAGGCCTCGGCCCTGTTCCAGATGCGCTTCTACGGGCTCGTCGTGTGGCGCGAGCGCGGCGTGCTGCCGACGATGCTCCAGCTCGTCTACCTCGGCGACGGGCAGGTCCTGCGGGCCGAGCCCCGCGAGCGGGAGCTGGAGGTCACCGAGGCGAAGGTGCGCGGCCTGTGGGACGCCATCACCACGGCGGCGCGCCGGGGCGAGTTCGTCCCGAAGCAGAGCAAGCTGTGCGGATGGTGCGCCCACCAGGCGCTCTGTCCCGCGTTCGGCGGCACTCCCCCGCCGATCCCCGCCGACGTGCTGCGCCGACGTCTGGGCGTGGAGGTCTAGMTTADPATGSPDRTASSPDAPGTRPSRPPALSPSRANDFMQCPLLFRFRAVDRLPEPPSSAAARGTLVHAVLERLYDAPLGERTPEAARGLLPGEWERLVEVEPRYAELFTAGGDAEGQPLETWLDGAGKLLGTYFTLEDPNRLQPEARELAVESQLEDGPLLRGIVDRLDVAPDGAVRVVDYKSGRSPRPGFEASALFQMRFYGLVVWRERGVLPTMLQLVYLGDGQVLRAEPRERELEVTEAKVRGLWDAITTAARRGEFVPKQSKLCGWCAHQALCPAFGGTPPPIPADVLRRRLGVEVNANANANANA
AK018_02366705hxpBCOG0637Hexitol phosphatase BATGCGTCCTGACGAACCCGCCGCGCTGCCCGCCGCCGTCCTGTGGGACATGGACGGCACCCTCGTCGACACCGAGCCCTACTGGATCCGTGCCGAGCACGAGCTGGTGGCCGCCCACGGCGGCAGCTGGTCGCACGAGCAGGCGCTCGAGCTGGTCGGCAACCCCCTGACCGTCTCCGCGGGCATCCTGCGCGACGCCGGTGTCGACCTGAGCGTCGACGCGATCGTCGACCACCTCCTGGCCCGGGTCCGCGAGCAGGTGGCCGACTCCGTGCCGTGGCGCCCGGGCGCCCGGGAGCTGCTCGCCGCGCTCGGGGACGCCGGGGTGCCCTGCGCCCTGGTGACGATGAGCTACACGGTGCTGGCCGAGGCCGTGACCGCGCACGTGCCCGGGGCGTTCAGCACCCTGGTGACCGGTGACCAGGTCACCCACGGCAAGCCCCACCCGGAGCCGTACCTGGTGGCGGCCGAGCGGCTGGGCGTGCCCGTCGAGGACTGCGTGGCCATCGAGGACTCGCCGACCGGGATCGCCTCCGCGCTGGCCGCCGGTGCCCGCACCCTCGGGGCGGAGGCCGTCGTGCCCGTCCCGTCGCGTCCCGGTCTGAGCCGGGCGGCGAGCCTGGCCGACGTCGACCTGACCACGGTGCGGCGCCTCGCCGCCGGCGAGGTGCTCGACCTGCGGCCGGTCGCGGCCTCGTCGCGCTAGMRPDEPAALPAAVLWDMDGTLVDTEPYWIRAEHELVAAHGGSWSHEQALELVGNPLTVSAGILRDAGVDLSVDAIVDHLLARVREQVADSVPWRPGARELLAALGDAGVPCALVTMSYTVLAEAVTAHVPGAFSTLVTGDQVTHGKPHPEPYLVAAERLGVPVEDCVAIEDSPTGIASALAAGARTLGAEAVVPVPSRPGLSRAASLADVDLTTVRRLAAGEVLDLRPVAASSRPGPT0017720_1140DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017720-pgmB-K01838NANA
AK018_02367891hypothetical proteinATGACCACCGAGCAGCCGGTCGGCCGTCACGCCGCACGTCAGACCGTCATGATCGCGGCCTTCGAGGGGTGGAACGACGCGGGCAGCGCCGCGACGGACGCCCTCGAGCACCTCGCCGACGTGTGGGGAGCGTCACTGCACCGCGAGCTCGATCCGGAGGGGTATCACGACTTCCAGGTCAACCGACCGATGATCGGCTCCGGTCCGGAGGGCCGGCGCATCATCGCCTGGCCCACCACGACCGTCTCGGTCGCGGAGCTGCCGGACCGCCGCGTCGTGCTCGTGCACGGCATCGAGCCGTCCTTCCGCTGGAAGTCGTTCTGCCGCGAGCTGCTGGACATCGCCGCCGAGCTGGACGTGCGCACCGTCGTGACCCTCGGTGCGCTGCTGGCCGACGTGCCGCACACCCGCCCGATCCCGCTGACCGCGACGACGGAGAGCCCCGGCCTGCAGGCCGTCCTGGACGTCGAGCCGAGCACGTACGAGGGACCGACCGGCATCGTCGGCGTCCTGCAGCACGAGGCCGCCGCGCGCGACTTCCAGGCCGTGTCGCTGTGGGCGGCGGTGCCGCACTACGTGGCCAACCCGCCCTCGCCCAAGGCGACCCTCGCCATCCTGACCCGGGTCGAGGACCTGGTGGGCACGTCCGTCGACATGGGAGACCTGCCCGAGGACGCCGAGGCGTGGCAGCAGGGAGTCGACGAGCTGGCCGGCGAGGACGCGGAGATCTCCGAGTACGTCGCCCAGCTCGAGGAGGCCAAGGACACCGCGGACCTGCCGGAGGCGTCCGGCGAGGCGATCGCGCAGGAGTTCGAGCGCTACCTGCGCCGCCGGGACCTCGGTCCGGGCCGCGGGGGCCACGGCACCCCCGGCAGCCCGGACAAGGGCTAGMTTEQPVGRHAARQTVMIAAFEGWNDAGSAATDALEHLADVWGASLHRELDPEGYHDFQVNRPMIGSGPEGRRIIAWPTTTVSVAELPDRRVVLVHGIEPSFRWKSFCRELLDIAAELDVRTVVTLGALLADVPHTRPIPLTATTESPGLQAVLDVEPSTYEGPTGIVGVLQHEAAARDFQAVSLWAAVPHYVANPPSPKATLAILTRVEDLVGTSVDMGDLPEDAEAWQQGVDELAGEDAEISEYVAQLEEAKDTADLPEASGEAIAQEFERYLRRRDLGPGRGGHGTPGSPDKGNANANANANA
AK018_023681290mshC_1COG0215L-cysteine:1D-myo-inositol 2-amino-2-deoxy-alpha-D-glucopyranoside ligaseGTGCGACCCTGGCCCACCCCCCAGATCCCCGAGCTGCCTGCTCCCACCGACGGTCACCGTCCCGTGGTGCGGATCCACGACACGACCACCGGACACCTCGTCGAGGCGGCTCCGGGTCCGACGGCGCGCAGCTACGTCTGCGGGATCACGCCCTACGACGCGACCCACCTCGGGCACGCCGCGACCTACGTCGCCTTCGACCTGCTGCACCGCGCCTGGATCGACGCCGGCAAGCAGGTCACGTACGCCTCGAACGTCACCGACGTCGACGACCCGCTGCTCGAGCGCGCCACCGCCACCGGCGTCGACTGGCGCGACCTCGCCGCGGACCAGGTGGCGCTGTTCCGCGAGGACATGACGGCGCTCGGCGTCGTCCCGCCGGACCCGTGGACCGGTGTCGCCGAGTACGTCGGACCCATCGCCGAGGCGGTCGCCCGGATGCTCGAGGACGGCACCGCCTACCGCGTCCCGATGGAGCCCGGCGCCGGCGGCGACGACCCCTGTCTGGGCGACGTCTACGCCGACCTGACGGCCGACCCGGACTTCGGTTCCGTCTCCGGCTACGACGAGGCCACCATGGCCGAGCTGTTCGCCGAGCGCGGGGGAGACCCCGACCGCGAGGGCAAGAAGAACCCGCTGGACCCGCTGCTGTGGCGCCGTGAGCGCCCCGGCGAGCCCACCTGGGACGGCGGCGTGCTGGGCACCGGCCGGCCCGGCTGGCACGTGGAGTGCACGGTCATCGCCCGGGACGGCATCGGTCTGCCCTTCGACGTCCAGGGCGGCGGCTCGGACCTCGTCTTCCCGCACCACGAGATGTCCGTCTCGCACGGGCGGATGCTCGCCGGTGCCGGGTCCGCGCCCGGTGCGCACGCCCACGCCGGCCTCATCGCCTACGAGGGCCACAAGATGAGCAAGTCGCGGGGCAACCTCGTGCTCGTCTCCGCGCTGCGCCGCGACGGCGTCGACCCGATGGCGGTGCGCCTCGGCATCCTGTCGCAGCACTACCGCACCGAGTGGGAGTGGACCCACGACCTGCTCACGACCGCCCAGGCACGCCTCGAGCGGTGGCGGGAGGCCATCTCGGGCAACGGAGGACCGGCCTGGCAGGACACGCTCGCCGAGCTGCGCGCCGCGCTCGCCGACGACCTCGACGCCCCGCGTGCGCTCGCGGCCGTGGACGCCTGGGCCGACCGCGCCCTGGAGCCCGGACGGGACACCGCCGCGGACACCGAGGGTGCCCCCGGCGTCGTGGCCCGCGCCGTCAACGCCCTGCTCGGCGTGCGGCTGTAGMRPWPTPQIPELPAPTDGHRPVVRIHDTTTGHLVEAAPGPTARSYVCGITPYDATHLGHAATYVAFDLLHRAWIDAGKQVTYASNVTDVDDPLLERATATGVDWRDLAADQVALFREDMTALGVVPPDPWTGVAEYVGPIAEAVARMLEDGTAYRVPMEPGAGGDDPCLGDVYADLTADPDFGSVSGYDEATMAELFAERGGDPDREGKKNPLDPLLWRRERPGEPTWDGGVLGTGRPGWHVECTVIARDGIGLPFDVQGGGSDLVFPHHEMSVSHGRMLAGAGSAPGAHAHAGLIAYEGHKMSKSRGNLVLVSALRRDGVDPMAVRLGILSQHYRTEWEWTHDLLTTAQARLERWREAISGNGGPAWQDTLAELRAALADDLDAPRALAAVDAWADRALEPGRDTAADTEGAPGVVARAVNALLGVRLNANANANANA
AK018_02369876uppP_1COG1968Undecaprenyl-diphosphataseGTGAGTGCGTGGGAAGCGATCATCCTCGGTCTGGTCCAGGGTTTCACCGAGTTCCTGCCGGTCTCCTCCAGCGCACAGCTGAGGATCGTCGGCGAGCTGATCGGCGGTGCCGACCCCGGCGCGCTGTTCACCGCGGTGACCCAGATCGGCACGGAGGTCGCCGTGCTGCTCTACTACCGCCGGAAGATCCGGGACATCTGCGTGGGGTGGTGGACCTCGTTGCGCGGCGACCACGGCACCACCTGGCGCGACCGGTTCGGCGCCCACGACGCCGACGCCCGCATGGCCTGGTACATCACGCTGGGCTCGGTGCCGATCGTCGTGCTGGGCGTGCTCTTCGACGAGGCGATCGAGACGACGCTGCGCAACCTGTGGATCACCGTCGCCACGCTGGTGATCTTCGGCGTGCTGCTCGACCTGGCCGACCGGTACGGGCGGCGCACCCGGTCCGTGGAGGACCTGACCCCGAAGCGCGCGATCGGGTACGGGCTCGCGCAGGCGATGGCGCTCATCCCCGGCGTGTCCCGGTCCGGCGGCACGATCACGGCCGGTCTCGCGATGGGCTTCACCCGGCGCGCCGCGGCCGACTACTCGTTCCTCCTGGCGATCCCGGCCGTGCTGGGCTCGGGCTTCTACCAGCTCGCCAAGGCCGCCGGGGGAGACCCGGCGCCCGGGTCCGCGGGATGGTGGCCCACGCTGATCGCGACCGTCGTGGCGTTCGCGCTCGGCTACGTCGTGCTCATCGGCTTCCTCAAGATCGTCTCGACCTACTCCTACAAGCCCTTCGTGTACTACCGGTACGGCCTGGCGGCGCTCGTCGTCGTGCTGCTTCTCACGGGGGTGCTGGAGGCCGATCCGGCCGGGATCACGGCCTGAMSAWEAIILGLVQGFTEFLPVSSSAQLRIVGELIGGADPGALFTAVTQIGTEVAVLLYYRRKIRDICVGWWTSLRGDHGTTWRDRFGAHDADARMAWYITLGSVPIVVLGVLFDEAIETTLRNLWITVATLVIFGVLLDLADRYGRRTRSVEDLTPKRAIGYGLAQAMALIPGVSRSGGTITAGLAMGFTRRAAADYSFLLAIPAVLGSGFYQLAKAAGGDPAPGSAGWWPTLIATVVAFALGYVVLIGFLKIVSTYSYKPFVYYRYGLAALVVVLLLTGVLEADPAGITAPGPT0024165_612DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024165-bacA-K06153NANA
AK018_02370972yajO_1COG06671-deoxyxylulose-5-phosphate synthase YajOATGGAACGACGCCAGGTGGGGGGCTCGGGGCTGCACGTCTCGGCGCTGGGGCTGGGCACCATGTCGTGGGGCCGCGACACCGACGCGGACGACGCCGCGCAGATCCTGCGGGCCTTCCTCGACGACGGCGGGTCGTTCGTCGACACCGCCGCCTCCTACGGGGACGGCGACGCCGAGCGGATGCTGGGTGCGCTCCTGGACGGCTCCGTCGCCCGCGACGACGTGGTGCTCGCCACCAAGGCCGGGGTGCGGCACGGGCCCCGCGGCACGCACCGGGACGCCTCGCGCGGCGGGCTGCTCGGCGAGCTGGACGCCTCCCTGCGACGGCTGGGCACCGACCACGTCGACCTGTTCCTCGTGGCCTGCCCCGACCCGGTCACGCCGCTGGAGGAGACCGTCTCGGCGCTGCGGCTGGCCGTGTCCTCCGGGCGGGCCCGCTACGTGGGGCTGTCGAACTTCCCGGCCTGGGCCTCGGCGCGCGCCGCGACGCTGCTGGAGGCCGGTGACGGGATCGGGCTCGCCGCCCTGGAGCTGGAGTACTCGCTGCTGCAGCGGGGGCTGGAGCGGGAGGTCGCCCCGGCGGCCTCGGCGCTCGGGCTCGGCCTGCTCGCCTGGTCCCCGCTGGGTCGTGGTGTGCTGACGGGCAAGTACCGGCGCAGCGTGCCGGCGGACTCGCGGGCCGCCTCGGACCGGCTGGCCGGGTTCGTCGAGACGTACGTCGAGGACGCCGGGGCGGCGGCGGTCGTGGAGGCCGTGGCCACGGCCGCGGACGGCCTGGGCCGGGCCCCGCTGGAGGTGGCGCTGGCCTGGCTGCTCGCCCGTGACGCGGTGGCCTCCGCCGTCGTCGGCGCCCGCACCCCGGCCCACCTGCGCGGTGCGACGGCGGCGCTGGACCTCGCGCTGCCCGCGGAGGTGCACGCGGCGCTCGACGACGTCTCCGGGCTGCCGCTGGGCTACCCCGAGCGGGCGTAGMERRQVGGSGLHVSALGLGTMSWGRDTDADDAAQILRAFLDDGGSFVDTAASYGDGDAERMLGALLDGSVARDDVVLATKAGVRHGPRGTHRDASRGGLLGELDASLRRLGTDHVDLFLVACPDPVTPLEETVSALRLAVSSGRARYVGLSNFPAWASARAATLLEAGDGIGLAALELEYSLLQRGLEREVAPAASALGLGLLAWSPLGRGVLTGKYRRSVPADSRAASDRLAGFVETYVEDAGAAAVVEAVATAADGLGRAPLEVALAWLLARDAVASAVVGARTPAHLRGATAALDLALPAEVHAALDDVSGLPLGYPERAPGPT0017540_574DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017540-yajO|iolS-K23107NANA
AK018_02371258hypothetical proteinATGACCGCTGACCCGCGTGCCGCGCTGGACCGATTCGTCGCCGCCCTCGAGGGGCACTTCCACGCGGTGTCGTCCCGCCGGAGCGACGAGGACCCTGCCGTGGACGACGCCTACGAGGTGCTCGCCGACGCCTTCGAGGTGTACGAGGACGCCCTGGCCCAGGCCTACAGCGAGGTGACGCCGTTCTACCTCGACGACGACGATGACGACGACGAGGACGACGACTACGACGAGGACGACGACGCCAGCGCGCGCTGAMTADPRAALDRFVAALEGHFHAVSSRRSDEDPAVDDAYEVLADAFEVYEDALAQAYSEVTPFYLDDDDDDDEDDDYDEDDDASARNANANANANA
AK018_02372207hypothetical proteinATGGCTTCGAGCTGGCGCACGCACGGGCAGTACGAGTACCGGGTGGTCACGATCGACCGGGGCACGTCCGTCCCGGACGCCCGGAGACAGCTCACCGAGGAGGCCGAGTACGGGCGCTGGGAGCTCGCCCGGACGCGCCTCTACATGGGCGGCGAACGCCGGGTGTGGTTGCGGCGCAAGATCATCAAGGCGACCTCCACGCTCTGAMASSWRTHGQYEYRVVTIDRGTSVPDARRQLTEEAEYGRWELARTRLYMGGERRVWLRRKIIKATSTLNANANANANA
AK018_02373777putative ketoamine kinaseATGGACGCCTTCCGCAAGTCCCGGCACGGCTCGCCGCCCGGGTTCTTCGCCACCGAGGCGGCGGGCCTGCGCTGGCTCGCCGTCGACGGCGGGCCACGGGTGGCCGCGGTACTGGACGTCGGCCCCGGGCACCTCGACCTGGAACGGCTCGAGGCCGCGCGGCCGACCGCCCCCGCGGCCCGGTCGTTCGGCCGCGCGCTGGCCCGGCTGCACGACGCCGGAGCGCCCGCCTTCGGCGCCCTGCCCCCGGACGCCGGGCGCGGCTGGTTCGGGCCGCTGGACGACCCGCTGGACATGCCGGCCGGCGCGTTCGAGGACTGGCCCGCCTTCTACGCCGAGGCACGGCTGCGGCCGATCGTCGCCCAGGGCCGCGAGCGCGGGGTGCTCGACCGCCGGGACGCGGCGGCGATGGAGGCCGTGTGCGGGGCGCTGCCCGACCTCGCCGGTCCGCCGGACTCCCCCGCCCGGCTGCACGGCGACCTGTGGTCGGGCAACCTGCTGTGGACCGCCGCGGACGACGGCGGCACCGAGGCGGCGCTCATCGACCCCGCCGCCCACGGCGGCCACCGGGAGACGGACCTGGCGATGCTGGCGCTGTTCGGTGCGCCGCACCTGGACGAGATCCTCGCCGGCTACGACGAGACCCACGCGCTCGCCGCCGGGTGGCAGCAGCGCGTCGAGCTGCACCAGCTCTACCCGCTGGCCGTGCACGCGGTGCTGTTCGGCGGCGGGTACGTCGACGGCACCCGGCGGTCGATGGCCGCGCTGGGCGGCTGAMDAFRKSRHGSPPGFFATEAAGLRWLAVDGGPRVAAVLDVGPGHLDLERLEAARPTAPAARSFGRALARLHDAGAPAFGALPPDAGRGWFGPLDDPLDMPAGAFEDWPAFYAEARLRPIVAQGRERGVLDRRDAAAMEAVCGALPDLAGPPDSPARLHGDLWSGNLLWTAADDGGTEAALIDPAAHGGHRETDLAMLALFGAPHLDEILAGYDETHALAAGWQQRVELHQLYPLAVHAVLFGGGYVDGTRRSMAALGGNANANANANA
AK018_02374483hypothetical proteinGTGCCGGTCACCAGCGCCGGGCTGCTGTTCTACCGGCCGGGCACGGACGGGCCGACCGTGCTGCTGGCGCACATGGGCGGCCCGTTCTGGGCCCGGCGCGAGGCCGGCGCCTGGACCGTGGTCAAGGGCGAGGTCGGCGACGACGAGGACGCCCACGCCGCCGCCGTGCGCGAGGCCGGCGAGGAGCTGGGGCTGACGATCCCGGACCCCGTCGTGCCCGACGTCGACCTCGGGGAGATCCGGCAGCGCTCCGGCAAGCGGGTCCGGGCCTGGGGCCGGTGCTGGCCCGCGCCCGGACCGGACCTGTCCGCCGTGCGCAGCAACACGGTCCAGGTGGAGTGGCCGCCCCGCTCCGGCCGGCACCTCGAGGTGCCCGAGATCGACCGCGCCGCCTGGTTCGCCCCTGACGAGGCGCGCCGCGTCCTGGTCCGGGGCCAGGACGTGCTGGTCGACCGGCTGGAGGCGGCGCTCAGCAGGTCGTGAMPVTSAGLLFYRPGTDGPTVLLAHMGGPFWARREAGAWTVVKGEVGDDEDAHAAAVREAGEELGLTIPDPVVPDVDLGEIRQRSGKRVRAWGRCWPAPGPDLSAVRSNTVQVEWPPRSGRHLEVPEIDRAAWFAPDEARRVLVRGQDVLVDRLEAALSRSNANANANANA
AK018_023751344dapE_3Succinyl-diaminopimelate desuccinylaseGTGAACGCACCCGGTACCGCCCCTCACCAGCCCACCGCCGCCGACGAGGTCGTGGGGATCTGCCAGGACCTCCTGCGCATCGACACCTCCAACTACGGCGAGAACCAGGGTCCCGGCGAGCGCAAGGCCGCCGAGTACGTCGCCGGGCTGCTGGCCGACGTCGGGCTCGAGCCGCAGCTGTTCGAGTCCCGCCCGGGACGGACGTCGGTGGTGGCCCGCTTCGAGGGCAGCGACCCGACCCGGGACGCGCTGGTGCTGCACGGGCACACCGACGTCGTGCCCGCCCAGGCCGCCGACTGGTCGGTCGACCCGTTCGCGGGCGAGGAGATCGACGGCCTGCTGTGGGGCCGCGGCGCCGTCGACATGAAGGACATGGACGCCATGATCCTCTCGGTCGTGCGCCAGATGGTGCGCGAGGGCCGCCGCCCCGCCCGCGACGTCGTCATCGGCATGTTCGCCGACGAGGAGGCCGGTGGGGTCCTGGGCGCGCGCTGGTTGGTCGAGAACCACCCCGAGCTGTTCGAGGGCGCGTCCGAGGCCGTCAGCGAGGTCGGCGGCTTCTCCGTGGACGTCGACGGCCGGCGCACCTACCTGGTCCAGACCGCCGAGAAGGGGCTGGCCTGGCTGCGCCTGGTCGCCGACGGCCGCGCCGGGCACGGCTCGCAGGTCAACCACGAGAACGCCGTGACCGAGCTCGCGGCGGCCGTCGCCCGGATCGGCAAGCACGCCTGGCCCTACACCCTGACCCCGACCGTCGAGCGGCTGCTGCGGGGGGTGGCGGACCTGACCGGGCTGCCCTTCGACCCCGAGGGCGGCGCCGACCCGGACCAGGTCGACGCCCTGGTGGACGCGCTCGGCCCCGCCGCGAAGTTCGTGGGCGCCACCGTGCGGCACACCACCAACCCGACCCAGCTCGACGCCGGGTACAAGGCGAACGTCATCCCGGGCACGGCGACCGCCGCCCTGGACATGCGCACCGTGCCCGGCCACGAGGCCGAGGCCCTGGGGGTGCTGCGCGAGCTGGCCGGACCGCACGTGCGCATCGAGACGCTGCACGCCGACCGCTCCCTCGAGGTGCCGTTCAGCGGGGGACTGGTCGACGCGATGGTGGACTCCCTGCACGCCGAGGACCCGGGTTCGGCCGTGCTGCCGTACACGCTGTCCGGCGGCACCGACAACAAGTCGCTCGCGCGGCTCGGCATCACCGGCTACGGCTTCGCGCCGCTGCGCCTGCCCGCCGAGCTGGACTTCGCCGGCATGTTCCACGGCGTCGACGAGCGCGTCCCGGTCGACGCCCTGAAGTTCGGCACCCGCGTGCTGGACCGGCTGCTCACGACCTGCTGAMNAPGTAPHQPTAADEVVGICQDLLRIDTSNYGENQGPGERKAAEYVAGLLADVGLEPQLFESRPGRTSVVARFEGSDPTRDALVLHGHTDVVPAQAADWSVDPFAGEEIDGLLWGRGAVDMKDMDAMILSVVRQMVREGRRPARDVVIGMFADEEAGGVLGARWLVENHPELFEGASEAVSEVGGFSVDVDGRRTYLVQTAEKGLAWLRLVADGRAGHGSQVNHENAVTELAAAVARIGKHAWPYTLTPTVERLLRGVADLTGLPFDPEGGADPDQVDALVDALGPAAKFVGATVRHTTNPTQLDAGYKANVIPGTATAALDMRTVPGHEAEALGVLRELAGPHVRIETLHADRSLEVPFSGGLVDAMVDSLHAEDPGSAVLPYTLSGGTDNKSLARLGITGYGFAPLRLPAELDFAGMFHGVDERVPVDALKFGTRVLDRLLTTCNANANANANA
AK018_023761608ettA_2COG0488Energy-dependent translational throttle protein EttAATGCCTGCACCCGCCCCCAGCCCCGCCGTGATCCTGCAGGACCTCACCTTCACCTGGCCCGACGGCGCGACCGCGCTCGACGCCGTCACCGGCACGTTCCCGCGCGGCCGCACCGGCCTCGTCGGCGACAACGGCACCGGCAAGTCCACCCTGCTGCGGCTGGTCGCCGGTGGGCTCACGCCGACCCGTGGCAGCGTCTCCGTGGTCGGCGCCGTCGGCCTCGTGCCGCAGCGCCTCACCCTCGACACCCGCGCCACGGTCGCCGACCTGCTCGGCGTCCGTACCGCCGTCGACGCCGTGCGCGCCATCACCGACGGTGACGTGCGCCCCGAGCTCTTCGACGCCGTCGGCGACGCCTGGGACGTCGAGGAGCGGGCGGTGGCGGCGCTCGCGGCCGTCGACCTGCCGCACACCGGCGGCGCACTGGACCGCACCGTCGGCACGCTGTCCGGCGGCGAGGCCGTGCTGACCGCCGTCACCGGGCTGCGGCTGCGCAGCCCGGACGTCGCGCTGCTGGACGAGCCCACCAACAACCTCGACGCCGGATCGCGGGACCGCCTCGCCGAGCTGGTGCGCACCTGGCGCGGCGCCCTGGTGGTGGTCTCCCACGACCGCGCGCTGCTCGAGCTCGTGGACGCCACCGCCGAGCTGCGGGCCGGGTCGCTGACGACGTTCGGCGGGCCGTACAGCGCCTACGAGGACCACCTGGCCGTCTTGCAGGAGGCCGCGGTGCGGTCGGTGCGGGACGCCGAGCAGACCTGGCGCCGCGAACGCCGCGAACGGATCAAGATCGCCGAACGGGTCGCCCACTCCCAGCGCCAGGGGCGCAAGGACGCGGCCAACGCGAAGTTCGTCAAGGCGGCGATCAACGACCGGCGCAACAGCGCGGAGAAGTCGCAGGGCGCGCGGCGCGGGGCCGCGGAGGCCGCGGAGAGCACGGCGCGCGCCGCCGTCGAGACCGCCCGGAGCGCGGTCCGGGACGACGACCGCATCACGGTCGACCTGCCGGACCCCGACGTCCCCGCGTCCCGGCGGATCGCCGTGCTGGGCTCGGCCGACGGCCGCGACGTGGTCCTCGCCGGCCCGGAGCGGGTGGCCCTGGTCGGACCGAACGGCGTCGGCAAGACGACGCTGCTGGAGCGGCTGCTCGCGGGGCCGTCGCCCGCGGGCCGGCTGTGCACCGACCGGGTGGGCTACCTGCCGCAGCGCCTCGACGTCCTGGATCCCCGCGCCACCGTCCTGGACGCCGTCCGCGCCGGGGCACCCGGCGTCCCCCCGGGCGACCTGCGCGGCCGGCTGGCCCGCTTCCTCGTGCGCGGCGCCCAGGTCGACCGGCCGGTGGCCACGCTGTCCGGCGGGGAGCTGTTCCGGGTGCACCTGGCCCGGCTGCTGCTCGCCGAGCCGCCCGCCCAGCTGCTGATGCTCGACGAGCCGACGAACAACCTGGACCTGGCCAGCGTCGACCGCCTCGTCGAGGCGCTGTCGTCCTACCGGGGCGCGCTGCTGGTGGTCAGCCACGACCGGGCGTTCCTGGAGCGTCTCGGCCTCGACGCCTCCGTCGAGCTGCGTCCGGACGGCCGGCTGGCGGTGGGTACGGTGTCCTCGTGAMPAPAPSPAVILQDLTFTWPDGATALDAVTGTFPRGRTGLVGDNGTGKSTLLRLVAGGLTPTRGSVSVVGAVGLVPQRLTLDTRATVADLLGVRTAVDAVRAITDGDVRPELFDAVGDAWDVEERAVAALAAVDLPHTGGALDRTVGTLSGGEAVLTAVTGLRLRSPDVALLDEPTNNLDAGSRDRLAELVRTWRGALVVVSHDRALLELVDATAELRAGSLTTFGGPYSAYEDHLAVLQEAAVRSVRDAEQTWRRERRERIKIAERVAHSQRQGRKDAANAKFVKAAINDRRNSAEKSQGARRGAAEAAESTARAAVETARSAVRDDDRITVDLPDPDVPASRRIAVLGSADGRDVVLAGPERVALVGPNGVGKTTLLERLLAGPSPAGRLCTDRVGYLPQRLDVLDPRATVLDAVRAGAPGVPPGDLRGRLARFLVRGAQVDRPVATLSGGELFRVHLARLLLAEPPAQLLMLDEPTNNLDLASVDRLVEALSSYRGALLVVSHDRAFLERLGLDASVELRPDGRLAVGTVSSNANANANANA
AK018_02377942COG0451putative proteinATGAGGCGCGTGCTGGTCACGGGTGGCTCGGGATTCCTCGGGTCGCACACCGTCGCGGCGCTCGCGGACCGGGACGACGTCGCGCACGTCGTCTCGGCAGACCTGCGCGCACCCGCCACGCTGCCCGACGGCGTCACCGCGGTCACGCTCGACGTCACGGACGCCGACGCCGTGCGGGACGCGGTCGCCGAGCACCGCGTCGACACCGTGGTGCACCTCGCCGCGATCGTGAACCCCGGCACGCTGGACGAGGACACCGAGCGGCGCGTGGACGTCGACGGCACCCGCCACGTGCTGCAGGCGTGCGTCGCCGGGGGAGTGCGGCGCGTGGTGATCTCCTCCTCGGGCGCCGCCTACGGCTACCACGCCGACAACCCGGTGCCGCTGCGCGAGACCGACCCGGTGCGCGGCAACGAGGAGTTCACCTACTCCCGGCACAAGCGGCTCGTGGAGGAGATGCTCGCCGACTACCGCCGCGACCATCCCGACCTCGAGCAGGTGATCCTGCGGATCGGCACGATCCTCGGCCCGGGCGTGGCGAACCAGATCACCGCCCTGTGGGACGCGCCGCGGCTGGTCCGCGTGCGCGGCTCCGAGGGGCCGTTCGTGTTCGCCTGGGTCGGCGACGTCACCGGCGCGATCGTCGCCGGGGCCACCGGGACCGCGACGGGGGCGTTCAACGTGTGCGGCGACGGACGCATGACCGTCGCCGACATCGCCGACCGGCTCGGCAAGCGCATCCTCGACCTGCCCGCACCGCTGCTCGCCGGGGTGCTGCGCGTCGGCCGGGCGCTGCGCCTGACCGTGCACGGCCCCGAACGGGTCGGGTTCCTGCGCTACCGCCCGGTGCTCGACAACACCCGGCTGCGCACCGAGCTCGGCTACACCCCGCAGTACACCAGTCGCGAGGCGTTCGAGCAGTGGCTGCGGGTCCGGGCGTGAMRRVLVTGGSGFLGSHTVAALADRDDVAHVVSADLRAPATLPDGVTAVTLDVTDADAVRDAVAEHRVDTVVHLAAIVNPGTLDEDTERRVDVDGTRHVLQACVAGGVRRVVISSSGAAYGYHADNPVPLRETDPVRGNEEFTYSRHKRLVEEMLADYRRDHPDLEQVILRIGTILGPGVANQITALWDAPRLVRVRGSEGPFVFAWVGDVTGAIVAGATGTATGAFNVCGDGRMTVADIADRLGKRILDLPAPLLAGVLRVGRALRLTVHGPERVGFLRYRPVLDNTRLRTELGYTPQYTSREAFEQWLRVRANANANANANA
AK018_02378921panS_1COG0385Pantothenate precursors transporter PanSATGAACATCGACGACGTCGTCGTGAACTTCTCGCCGGGGTCGATGGTCGCGCTCAGCGTGGTGCTGGCCCTGATCATGCTCGGCATCGCGCTGGACACCTCGCCGGCCGACTTCCGGGTGCTGCGTCGGGCCCCGCGCGCGGCGGTGCTCGCCCTGGTGGCGCAGATCGTGCTGCTCCCGGCGGTCACCTTCGTGCTGACGCTCGTCCTCGGCGTCCAGGCGTCCATCGCGATGGGCATGATCCTCGTCGCCTGCTGCCCGCCGGGGAACGTCTCGCAGATCCTCACCTACCGCTCCGGCGGCAACGTGGCGCTGTCGGTGTCCCTGACGGCGGTCGGCAACGCGCTGTACCTGGTGGCGATGCCGCTGAACATCGCGCTGTGGGGCGGCCTGCACCCCACGGGCCGCGAGATCCTGGCCGAGGTCAGCCTCGACCCGCTGGAGATGATGCTCGACATCGTGCTCATCATCGGCGTGCCCTTCGCGCTGGGCCTGCTGGTGCGCACCCGCTGGCCCGCGGTCGCCGCCCGCGCGCACCGTCCCGTCCACGTCGTGAGCATCCTGGCGCTGATCGGCTTCGTCGTCGCGGCCCTGGCGGGCAACTTCGCCGTCTTCGTCGCCTGGGTCGGCGTGGTGCTGGTCGCCGTGTTCCTGCACGACGCCGTCGCGCTGGCCCTCGGCTACGCCGCCGCCCGGGCCGGACGGCTGGAGGTCCGCGAGCGCAAGGCCGTGACGTTCGAGGTCGGCATCCGCAACGCCGCCCTCGGGCTCGGCCTGGTGATGACGTTCTTCGACGGCATCGGCGGGATGGCGGTCGTGGCCGGCTGGTGGGGCATCTGGGACATCATCGCCGGCCTGACGCTGGCGACCCTCTGGGCGCGGCGCACCCGCGCCCGCCAGACGCAGGAGGTGTCGGCATGAMNIDDVVVNFSPGSMVALSVVLALIMLGIALDTSPADFRVLRRAPRAAVLALVAQIVLLPAVTFVLTLVLGVQASIAMGMILVACCPPGNVSQILTYRSGGNVALSVSLTAVGNALYLVAMPLNIALWGGLHPTGREILAEVSLDPLEMMLDIVLIIGVPFALGLLVRTRWPAVAARAHRPVHVVSILALIGFVVAALAGNFAVFVAWVGVVLVAVFLHDAVALALGYAAARAGRLEVRERKAVTFEVGIRNAALGLGLVMTFFDGIGGMAVVAGWWGIWDIIAGLTLATLWARRTRARQTQEVSAPGPT0013890_2203DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013890-panS|yocS|ybaS-K03453NANA
AK018_023791371Ferredoxin--NADP reductaseATGACGCTGCAACGGCGAGTCGCGGTCATCGGAGCCGGACCGTCCGGCCTGGCCACCGCCCGGGCCCTGGACCGGCACGGGGTGCCGCTGACCGGCTTCGAGGCCCACGACGACGTGGGAGGGCTGTGGGACATCGACAACCCGCGCTCGACGGTCTACGAGTCGGCCCACCTGATCTCCTCGCGCACGACGACGGAGTTCACCGAGCTGCCGATGTCGACGCAGGTCGACTACCCGAGCCACCGTGAGCTGCTGCGCTACTTCCACGAGTACGCCGACGCCTTCGACCTGCGCCGCCACTACCGGTTCGGCACCCGGGTCACCGCCGTCGAGCCCGGCGACGGCGACCCGACGGGCCGCTCCGGCTGGGACGTGTGCTCCACCGGGCCCGACGGCGCCACGCACCGCGAGCGCTTCAGCCACGTCGTCGTCGCCAACGGCACCCTGGCCGAGCCCAACGTGCCGACCTTCGCCGGCGAGTTCACCGGCGAGCTGCTGCACTCGTCCGAGTACAAGCGGTCCGACGTGTTCGCCGGCAAGCGGGTCCTCGTGGTCGGCGGCGGCAACTCGGGCTGCGACGTCGCCGTCGACGCCGTGCACCGGGCCGCGTCCGTCGACCTGTCGGTGCGGCGCGGGTACTGGTTCGTGCCGCGGTACCTGCTCGGTCGCCCCACGGACACGCTCAACCAGGGCCGACCGCTGCCGGCACGGATCAAGCAGGCCGTCGACTCCCGCGTGCTGACGCTCCTGAACGGCGACCCGCAGCGCTTCGGCTTCCCGGCGCCCGATCACAAGATCTACGAGTCCCACCCCGTGGTGAACTCCCTCGTGCTGCAGCACGCGGGCCAGGGCGACCTGCGGGTCCGCCGCGACATCGACCGCTTCGACGGCCGCACGGTGCACTTCGTCGACGGCACCAGCGGGGAGTACGACCTCGTGCTGCTCGCCACCGGGTACAAGCTGGACTACCCGTTCGTCGACCCCAAGCACCTCGCCTGGGACGGCCCCGGCTCGGGGACGGCGCCCGAGCTGTTCTGCAACATCGTCCCGCCGTCGCTCAACGGGCTCTTCGTGGTCGGCATGCTCGAGGCCTCCGGGATCGGCTGGCAGGGCCGTGCCGAGCAGGCCGAGCTCGTCGCCCGCTACCTCGCCGCGGAGGCCGCGAGCGCCGACGGCGACGCAGCGGCCCGCGACCGGGTGGCGGCGTTCCAGCGCCGGGTCGGCGAGCGATGGCCCGACCTGACCGGGGGCTACCGCTACCTCGGCCTGGAGCGGATGAGCTACTACGTCAACAAGGACGCCTACCGCCGTACCGTGCGCCGGCTCGCGGACGAGCTCGTCCCCCCGACGACGAACCGGAGCGAGCGATGAMTLQRRVAVIGAGPSGLATARALDRHGVPLTGFEAHDDVGGLWDIDNPRSTVYESAHLISSRTTTEFTELPMSTQVDYPSHRELLRYFHEYADAFDLRRHYRFGTRVTAVEPGDGDPTGRSGWDVCSTGPDGATHRERFSHVVVANGTLAEPNVPTFAGEFTGELLHSSEYKRSDVFAGKRVLVVGGGNSGCDVAVDAVHRAASVDLSVRRGYWFVPRYLLGRPTDTLNQGRPLPARIKQAVDSRVLTLLNGDPQRFGFPAPDHKIYESHPVVNSLVLQHAGQGDLRVRRDIDRFDGRTVHFVDGTSGEYDLVLLATGYKLDYPFVDPKHLAWDGPGSGTAPELFCNIVPPSLNGLFVVGMLEASGIGWQGRAEQAELVARYLAAEAASADGDAAARDRVAAFQRRVGERWPDLTGGYRYLGLERMSYYVNKDAYRRTVRRLADELVPPTTNRSERNANANANANA
AK018_02380606hypothetical proteinATGGAGCCCTTCGTCCTGCGCAGCCCCGAGGTCCTGCTCTCCGTCCCGACGGACGCCGACGTCGACCGGATCGCCGCGGTGTGCACCGATGAGCAGATCGCGTCCTGGACGACCGTGCCGTCGCCCTACTCGCGCGAGGACGCCGAGGGATTCGTGCGGGGATACGTGGCCCAGGGCTGGGCGCAGGACAAGGACTTCACCTGGGCGGTGCGCGCGCCCGGCCGGGCCGACGGCCCGGTGCTGGGCATGATGGGCGTCACCGTCACCGCGCGGCACCCGGACGGGATGCCGCTGACGGGGGAGATCGGCTACTGGACCGCGCCGGACGCGCGGGGCCGCGGCCTGACGACGTCCGCGGGTCGCCTGGTCGCCGACTGGGCGCTCGACGCGGAGGGGCTGGGGCTGCAGCGCCTGCAGTGGCTGGCCTTCGTGGGCAACTGGCCCTCGCGCCGGGTGGCGTGGAAGCTCGGCTTCCGGTTCGAGGGCACGATGCGGCGCCACGGCGTGCAGCGGGGCGAGCTGCGCGACGACTGGATCGGGGCGCTGCTGCCGGGCGACCCGCGGGAGCCGAACGAGCCCTGGCCCCACGATTCCGCCGATTCCTGAMEPFVLRSPEVLLSVPTDADVDRIAAVCTDEQIASWTTVPSPYSREDAEGFVRGYVAQGWAQDKDFTWAVRAPGRADGPVLGMMGVTVTARHPDGMPLTGEIGYWTAPDARGRGLTTSAGRLVADWALDAEGLGLQRLQWLAFVGNWPSRRVAWKLGFRFEGTMRRHGVQRGELRDDWIGALLPGDPREPNEPWPHDSADSNANANANANA
AK018_023811149COG0628Putative transport proteinGTGGCCGAGGCGAGGGAGAACGTCCCGCAGTGGCTGCGCAGCGCGGCCGGGTGGTCGTGGCGGCTGGTCGCCCTGGTCGTGGCGGTGTCGCTGGTCGTGTACGCCACCGCCCAGGTGCAGTTCGTCTTCTTCGCGATCTTCCTGGCGCTGGTGCTCACCTCGGTCTTCCGGCCGCTGGCGGACCTGTACGACCGGGTGATGCCCCGCGCGCTGGCCACGACGCTCGCGCTGCTGACCGGCGTCGTCCTCTTCGGCGGGCTGATGGCCTACGTCGTGGCGTCCGTCGCCGGGCAGTGGGCCGAGCTCGGCGGACAGTTCGAGACCGGCGTGCAGCAGATCCTCGACTTCCTGGAGACGGGGCTCTTCGGCCTGTCGATCAGCGCGGGCCAGCTCCAGGAGTGGCTGGACTCCGGCCAGCAGTGGGTGGCGGACAACGCCGAGAACCTCGTCGGCCAGGCGGCCGAGAGCGCCGGGTCCGTCATCGAGGGCTTCATGGTCGCGGCGCTCGCGATCTTCCTCACCGTCTTCTTCGTGCACTCGGGCGACCGCATGTGGCACTGGTTCCTGCACCAGGTGCCCTCCGCGCACCGCACCCGCTGGGTGGAGGCCGCCGGGGCCGGGTGGTACACCTTCTCCGGCTTCGCCCGCGGCACCGTCATCATCGCCTTCATCGACGGGATCCTGGCCTTCGTGCTGCTGATGATCCTCGGCGTGCCGCTCGCGGCGCCGCTGGCGGTCCTGGTGTTCATCGGCGCCTTCATCCCGCTCATCGGCGCGCCGCTGGCGATGATCATCGCCGCCGTCGTCGCCCTCGCGGCGGAGGGCTTCATCACCGCCCTCATCGTCACCCTCGGCATCGCCGCCATCGGCCAGCTCGAGGGGCACGTGCTGCAGCCGCTCATCATGGGCAAGCAGGTGTCCCTGCACCCGGTCGTGGTCGCCGTGGTCGTGCTGGCGGGCACCGTGCTGGCCGGTCTCCTGGGTGCGGTGGTGGCCGTCCCGCTCGTGGCCGTGGCCTGGACCGTGTTCTCCACCCTGCGCGGCGACAGACCCGTCCCCGTCCCGTCCGGGGCGCTGGCCACCCCGGACCCGGCCGACGACGACAGCGCCGGCACCGCCCCCGGGGCGGACGGCGCGGAAAGGGGCTGAMAEARENVPQWLRSAAGWSWRLVALVVAVSLVVYATAQVQFVFFAIFLALVLTSVFRPLADLYDRVMPRALATTLALLTGVVLFGGLMAYVVASVAGQWAELGGQFETGVQQILDFLETGLFGLSISAGQLQEWLDSGQQWVADNAENLVGQAAESAGSVIEGFMVAALAIFLTVFFVHSGDRMWHWFLHQVPSAHRTRWVEAAGAGWYTFSGFARGTVIIAFIDGILAFVLLMILGVPLAAPLAVLVFIGAFIPLIGAPLAMIIAAVVALAAEGFITALIVTLGIAAIGQLEGHVLQPLIMGKQVSLHPVVVAVVVLAGTVLAGLLGAVVAVPLVAVAWTVFSTLRGDRPVPVPSGALATPDPADDDSAGTAPGADGAERGNANANANANA
AK018_02382798gno_1Gluconate 5-dehydrogenaseGTGCCGGTCCGCGGCTACGCTGCGTCGGTGCCCTTCCTCGACGACCTGTTCTCCCTCGCCGGCCGCACGGCCCTCGTCACCGGCGGCAGCTCCGGCATCGGCCGCGGCATCGCCACCGCGCTGGCCGGAGCCGGTGCCGCCGTCGTCCTCGTGGCCCGCGGACGCGAGGCGCTGGACGCCACCGCGGCCGAGCTGCGCGACTCCGGCGCCCGGTGTGCCGTCGTCGTCGGCGACCTGTCCACCCGGTCCGGCGTGCACGGGGTCGCCGAGTCCGCCGTCGAACCGTTCGGCGAGCCGGACGTCGTGGTCTCCAGCGCGGGGGTCAACCTGCGCCCGCCCCTGGCCGAGGTCGACGAGGCCGTGTGGGACATCACGATGGCCGTCAACCTCGAGGCCCCGTTCCTGCTGGGCCAGCGGTTCGGGCCCGGGATGGCCGAGCGCGGCTACGGCCGGTTGATCCACGTCAGCTCTCAGCAGGCGCACCGCGCCTTCGCCGCCAGCGGCGTGTACGGGGTGTCCAAGGGGGCTCTGGAGTCGCTGGCGCGCTCCCAGGCCGAGGCGTGGTCGCCGCGCGGTGTCACCGCGAACACGCTCGTGCCCGGGTTCGTCCCCACGCCGCTCAACGAGCGGCTGAGCAGCGACCCGGGGCGTGTGGCGGCGCTCGCGGACCGCACCCTCGTGGGCCGCAACAGCGTCCCGGACGACTTCGCCGGGGCCGCGGTGTTCCTCGCGAGCCCGTCGGCGGGCTACGTGACCGGCCAGTCGATCCACGTCGACGGCGGGTTCTCCGTGCACTGAMPVRGYAASVPFLDDLFSLAGRTALVTGGSSGIGRGIATALAGAGAAVVLVARGREALDATAAELRDSGARCAVVVGDLSTRSGVHGVAESAVEPFGEPDVVVSSAGVNLRPPLAEVDEAVWDITMAVNLEAPFLLGQRFGPGMAERGYGRLIHVSSQQAHRAFAASGVYGVSKGALESLARSQAEAWSPRGVTANTLVPGFVPTPLNERLSSDPGRVAALADRTLVGRNSVPDDFAGAAVFLASPSAGYVTGQSIHVDGGFSVHPGPT0018070_385DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_IDONATE_DEGRADATION,PGPT0018070-idnO-K00046NANA
AK018_023831113COG2826IS30 family transposase ISCmi3ATGCGCAAGACACGCGGGGCTCGGATCTACCCCGACGGGCGCCGGGTCGATTACACCACTGGGGTGACGACTACCCATGCCGCTGGGCCGACGACGCCGTCGGTCGCTGCCCTGGAGGCCGAGCTGGATCCACGGTTCTTGACGTTGAGCGATCGGGAGAAGATCGCGGACCTGCACCGGCAGAACGCCTCGCTGCGTGAGATCGGGCGCCGGCTGGGTCGGTCGGCCTCGACGATCAAGCGAGAGATCGATGCCCGGTCGGTCGATGGCGACTACCGCCCATATGCCGCTCACCGGGCCTGGGCGGCGTCCCGGCCGCGGCCCAAAGAGGCCAAGCTCGCGACCGCCGGCCGGTTGCGCGAGTACGTCACCGGCAAGCTCGCGGTGCACTGGTCTCCCGAGCAGATCTGCCACGCTCTGGTCAGAGAGTTCCCCCACGACGAGAGCATGCGGGTGAGTACCGAGACGATCTATCAGGCGATCTACGTCCAGGCCCGCGGCGGACTGCGACGTGAGGTCGCGGCCGCGCTGCGCTCAGGACGCACCCGCCGCAAACCTCATCGCAGCCCCGACCAGCGCACGCCCCGGTTCGTCGAGGAGATGGTGATGATCTCCGAGCGGCCCGCCGAGGTCGAAGACCGGGCCGTGCCGGGGCACTGGGAAGGCGACCTGATCGTCGGTACCGCCTCGCAGTCCGCGATCGTGACCCTGGTCGAACGCACCACCCGGTACGTGCTGCTCGGTCACCTGCCCGGCGGGCACACCGCCGAGGAGGTCCGCGACGTCCTGGTCCCGCTGATCGGGACCCTGCCGGCGCACCTGCGCGGCTCGCTGACCTGGGACCAGGGCTGCGAGATGGCAGCGCACAAGCAGTTCACGATCGCCACGAACGTACCTGTCTACTTCTGCGACCCGCACTCACCCTGGCAGCGCGGCTCGAACGAGAACACCAACGGGCTGCTGCGTCAGTACTTCCCCAAGGGCACCGATCTTCGGGCCCACGGGCCCGAGGATCTCGAGCACGTGGCCCAAGAGCTCAACGGCCGACCACGCAAGACGCTCGACTGGGATACCCCAGCCGAGCGTCTGCGTGATCTACTGACAACCACATAGMRKTRGARIYPDGRRVDYTTGVTTTHAAGPTTPSVAALEAELDPRFLTLSDREKIADLHRQNASLREIGRRLGRSASTIKREIDARSVDGDYRPYAAHRAWAASRPRPKEAKLATAGRLREYVTGKLAVHWSPEQICHALVREFPHDESMRVSTETIYQAIYVQARGGLRREVAAALRSGRTRRKPHRSPDQRTPRFVEEMVMISERPAEVEDRAVPGHWEGDLIVGTASQSAIVTLVERTTRYVLLGHLPGGHTAEEVRDVLVPLIGTLPAHLRGSLTWDQGCEMAAHKQFTIATNVPVYFCDPHSPWQRGSNENTNGLLRQYFPKGTDLRAHGPEDLEHVAQELNGRPRKTLDWDTPAERLRDLLTTTPGPT0030610_70DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030610-IS30_family-K07482NANA
AK018_02384477hypothetical proteinATGACAAGCACGAAGGCAGACGTCTCGGTTCAGCGCCTCGGCCGAGGCGGAGGGTCTCAGTCCGCCTCGCGCCGCGCGACCCGGGGCCGGGGCCGGGCAGGACGGGTGGCCTGGCTGGCTCTGGTTCTCAGCGGGTTGCTGGAACTCGTGTGGGCCACGACCTTCGCCGCCTCCGAAGGCTTCGCCCGGCCGCTACCGGTGTTCGTGTTCCTCGTCGCTTTCATCGCCAGCGGGATCGGGCTCGGGTACGCGATTCGCACGGTTCGGGTCGTCCTCGCTTTCGTGGTGTGGGCGGTCATCACCGGGGCGGTGACCGCGATCTGGGCGTTTCTCACCGGTGTCGACGTCTCCAGCGTGGTCGTGGTGGCGGTGCTCGGCGTGGCGCTCGGCTCTGCGGTGGGGCTGCACCTTGTCTACCGACGCCGCGCGCTGGCCACGTCGCCATCGTCCACGCAACGAGAAGGAGACGACTCATGAMTSTKADVSVQRLGRGGGSQSASRRATRGRGRAGRVAWLALVLSGLLELVWATTFAASEGFARPLPVFVFLVAFIASGIGLGYAIRTVRVVLAFVVWAVITGAVTAIWAFLTGVDVSSVVVVAVLGVALGSAVGLHLVYRRRALATSPSSTQREGDDSNANANANANA
AK018_023851038hypothetical proteinATGAGAAGAACGACCACCCACAGGTCCGTGCCGCGAGCTGGCGGAGACGATCAGGTGGGAGGCTCGCAGCAGTTCTCCCGCCGCTCTGTGCTCGGGCTGGCGGGCCTCGCGGCAGTGGCCGGCCTGGCTGCCTGCTCGTCCCCGCGCTCTGATGAGTCAACCACCTTCGCCACACCGGCCGGACCCTCCAACTCGCCTGCTGTCTCGTCGTTCGACCTGGCCGGCGGCAGCAACGGCCGGGCCCCCACCGTGGCACTGAACAGCGGACACGCGATGCCAGTGGCGGGCATCGGCACCCTCCAACTGGATCAGCAGGAGGCCTACGACTCGGTGACCGCAGCGCTGGCAGCGGGCGTCAGGCTCATCGACACCGCGTACGCGTATCGGAACGAGGCGCAAGTGGCGCAGGCCGTCAGGGATTCAGCCGTGCCACGCGAAGACGTCTTCCTCTCCACCAAGCTCTTTCCGACCCAGTTCGCGACCGCCTGGGCGGCGATCGACGGGGCGCTGGAGAGGATGGGCGTGGACTACCTCGGCATGATGCTGCTCCACCGCACTGGGCCGTTCGACACGACGGCGTATCGCGCCATGGAGCGGGCGATGGAGGAGGGCAAGCTCCGCTCCATCGGGGTCTCGAACTGGTACCGCGAGGATTGGGAGCCCTTCCTCGCCGACGTGTCGATCCCTCCCGCGATCGTCCAGAACGAGAACCACCCCATCTATCAGGATCCGTCCCTCGTGCCCTACGTGCACGACCTGGGCATCGCCTTCGAGTCCTGGTACCCGCTCGGCGGTCGAGGCCACGTGGCAGAGATGCTGGCCGACCCGACGATCACGGAACTCGCGCAGTCGCTGGGCAGATCTCCGGCCCAGACCATCCTCAGGTGGAACCTCCAGCGAGGCGTCATCGTGATACCTGGGTCAAGCAATCCGGACCATATCGTCGAGAACATCTCGGTCTTCGATTTCGAGTTGTCCGCTGAGCAGATGGAGACGATGAACGCCCTCAACCGAGACGAGAAGTTCGGGATCTTCTAGMRRTTTHRSVPRAGGDDQVGGSQQFSRRSVLGLAGLAAVAGLAACSSPRSDESTTFATPAGPSNSPAVSSFDLAGGSNGRAPTVALNSGHAMPVAGIGTLQLDQQEAYDSVTAALAAGVRLIDTAYAYRNEAQVAQAVRDSAVPREDVFLSTKLFPTQFATAWAAIDGALERMGVDYLGMMLLHRTGPFDTTAYRAMERAMEEGKLRSIGVSNWYREDWEPFLADVSIPPAIVQNENHPIYQDPSLVPYVHDLGIAFESWYPLGGRGHVAEMLADPTITELAQSLGRSPAQTILRWNLQRGVIVIPGSSNPDHIVENISVFDFELSAEQMETMNALNRDEKFGIFPGPT0001320_450DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
AK018_02386636hypothetical proteinATGCGCGTCCGTCACCGTGCCGTCCAAGCCCTGGCCGCTCTCGCGACCGCCACGGCGCTCGCCGTCGGAGGTGCCGCCGTAGCGCAGCCCGCAGCGGCGCAGCCGACCGGTCCGGCCCCCGCAGCGGCCTCCGGTGAGGTGGTGGGTGTCCCCGGCCTGGACGTGGAGCGCTACCTGGGCACCTGGTACCAGATCGCCGCGATCCCGGCGATCTTCGAGCTGCAGTGCCGCAAGGACGTCACGGCCGAGTACACGCTGGTGCGCGACGGGGTCGTCGGGGTCCGCAACGAGTGCCGCACGTGGCTGGGTCGGACCAGCAGCGTCACCGGCGAGGCGAAGGTCCTCAACGCGCCGGACAGCTCGGAGCTGAACGTCTCGTTCCTGAAGATCAAGGACCGCTACCTGCACTTCGGCGGTGCCAACTACGTGGTGGTCGGGCTCGGCGCGGACTACGACTGGGCGGTCGTCGGCGACCCCGACCGGTCCAGCGGCTTCGTGCTGTCGCGGACCCCGTCGCTGAGCGACGCGCAGCTCGACGCGGCCCGCGACGCCCTCGTCGGCGCCGGGTACGACCCGTGCGAACTGCGCCTGACACCGCAGAGCGACGGGCAGCGCACCCGCGCCCCGCTCTGCTGAMRVRHRAVQALAALATATALAVGGAAVAQPAAAQPTGPAPAAASGEVVGVPGLDVERYLGTWYQIAAIPAIFELQCRKDVTAEYTLVRDGVVGVRNECRTWLGRTSSVTGEAKVLNAPDSSELNVSFLKIKDRYLHFGGANYVVVGLGADYDWAVVGDPDRSSGFVLSRTPSLSDAQLDAARDALVGAGYDPCELRLTPQSDGQRTRAPLCPGPT0012970_552DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGNITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012970-blc-K03098NANA
AK018_023874200hypothetical proteinATGGTCATGAGGACGACACCACCGCGGCGCTCGCCGCGACGCACGACCGCGGCCCTGACCGCGGCCACGGTGCTCGGTGCCGGCGTGTTCGGCGGGGCCGTCGCGGCCCCCGCGGCCGCCGCCGTGCCCGAGCCCGACCTGCACTACACGATGGACGACGTCGACGGCTCGACCGTGCCGGACTCCTCCGGCAACGGGCTCGACGGCACGATCGCCGGGGACACCACCCTGACCGCAGCCGCCGACGGCACCGCGGACGCCGCCCTGGACCTGGCGGGTGGCCACGTCGTCATCCCGCGCGGAGCCATCGAGGGCACCGACGACCTGACCGTCTCCACCCAGGTGCGGTGGGACGGCGAGGGCGGCCCCTGGCAGCGGATCTTCGACCTCGGCACCGACACGAGCCGCTACCTGTTCACCACCCCCTCCAACGGTGGCGACCTGCGCACCGCCGTCACCGGCAACGGTGCCGGCGGCGAGTCCCAGATCACCGGCCACGGCCCCCTCGCGGCCGGCGACTGGGTCACGCTGACCGTCACGCTCGACGCCACCGGCGGCCAGGTCACCACCTACCTCGACGGCGTGGCCGTCGGGTCTGCCGAGACGGGGGTGGCAGGGACGGACCTGCTCACCGACGCCGCCGCGCAGGCCGGGTACATCGGCCGCTCGTTCTACCCCGACCCCGCGTTCGACGGGGCCGTGGACGACTTCCGGATCTATCGGTCGGCCCTCGACGCCGCCCAGGTGGCCGAGCTGACCGAGGAGCTCGGCGGGACCGTCCCGACGCTCCAGGCGCTGAGCACCGACGTCTTCGAGGTCCGCATCTCTGCCGGGTCCGCACCCGACCTGCCCGGCACCGTCCGGGCGTCCTGGTCCGACGGCTACGATCGGGACGTGCCGGTCACCTGGGACGACGTGGACCCCGCCGACTACGAGACCTCCGGGACCTTCAGCGTCGCCGGCGAGGCCGCCGGCACCGCGGTGACCGCCGAGGTCACCGTCACCCGCGGCGAGCTCCGGGTCGACCTCGGCACCGACACCGGCGCCTTCGAAGGCGGGGCGTCCGGCCTGCTGTACGGCCTGTACGGCGAGGGCATGCCGACCGACAACCTGGTCGAGGGCATGGGCGTGCAGTCCGTGGCCACCAAGGCCCAGGACGGCGCCCAGCACCCGGGCTCGGACGCCCTCGAGGTGCTCGAACCGCTGGCCCGCACCACCGGCGGGGACGTGTACCTGCGCGTCACCGACTGGTACCGCGGCTTCCCGTACCAGTGGCCGTCCCCGGACCAGCCGGACGCGAGCCCCGAGGAGAAGCTCGCGAGCTACCGCGAGGTGCTCGACGCCCAGCTCGACATGATCGAGACCCTGGACCCCGCCGTGCGTGAGCACCTCGTCATCGAGCCGTACAACGAGCCCGCGGGCAACATGTTCGGCACCGGGCAGTGGAGCCTGGACGGGACGTCGTGGCTGTCCGACCCCACCGACTACTTCGCCGCGTGGGACGAGACGTACCGCACCATCAAGGAGCGCTTCCCCGACATGCGGATCGCGGGTCCGGGAGCGATCGAGCTCTGGCCCCAGATCCAGGGCTGGCTCGAGCACACGGTCGCCGAGGGCACCGTGGCCGACATCGTCACCTGGCACGAGCTGACCCACCCGCAGGCCATCCGCGAGTCCGTGGCCGAGTACCGCGAGTGGGAGGCCGACGTCTTCGCCGGCACCGCCTACGAGGGCACCGAGCTGCCCGTCAACGTCAACGAGTACGCGTTCAACTACCACACGTCGGTCCCCGGCCAGATGGTGCAGTGGATGTCGGCCATCGAGGACGCCAAGGTCCAGGCGATGATCGCGTTCTGGAACATCAACGGCAACCTGTCCGACTCCGCGGTGCAGACGAACCGCGGCAACGGCCAGTGGTGGCTGTACAACGCCTACAGCCGGATGACCGGCCACACCGTCGAGGTGACCCCGCCGTACCCGGGCCAGAACTACAGCCTGCAGGGCCTGGCCACGCTCGACGAGGAGCAGCGCCAGGCGCGCGTCATCCTCGGCGGGCAGGACGGTACCGCCCCGGTCGACCTGGTGAACGTCCCGGAGGACGTGTTCGGCGACGAGGTGCGCGTCACCGCACGCGAGATCCCGTGGACCGGCCAGCTCGGCGACTCCGCCCAGCCGCGGCACCTCGCCGATCTCGTCGTCCCGGTCGCCGACGGCACCGCCACCGTCGCCTTCGACGGGTCGCAGCTGCCCGAGCTCGACGAGTCCAGCGCCTACGAGCTGATCGTCACGCCCGTGGGCGCGGGGGAGACCACGGCGTCGACCCCGACGCTCTGGCAGGGCAGCTACGAGGCCGAGGACGCCGAGTACACCGGTTCCGGCTACTCGGTGAACGGTCCCGAGGGCTCGCCGCAGGACGTGGCGAAGTTCTACACTTCCGGCGGCTACAACGTGGGCGGCCTGCGCACCGGGTCGGACGGCGTCCTCGACTTCGAGGTCACCGTGCCCGAGGACGGCACCTACGACCTGTCGGTGTTCTCCAGCACGCTCAACACCTTCGACCGGGTGGCCGAGCAGGGACCGACCAATGTGTTCGTGCGGGTCGACGGCGGCGCCGAGCAGGAGATCTTCCTGCCGCTGGCCTACAAGTGGGTCGTGTGGGACCACGCCGACACCACCGTCGAGCTGACCGCCGGGACGCACACCATCTCGCTGGCCGCGCAGAGCCTCGACGGCTCCGGCGCCACGCAGGGCGACGCGATCATCGACCGCATCACTCTCGCCCTGCCGAACCCGGAGGCCGCGACGTCGGTGTACGAGGCCGAGACGGCCGTGCTCGACGGCGGGACCGCCACCTACGAGGTGTCCGACGCCTCCGGGCCGGGCGCCGTCGAGCTCACCGAGGGTGACTCCGCGACGTTCTGGGTGTACTCGTCGCTCGACGGCGAGGCGCACCTCGGGGCGGACGTCCTCGGCACGGCCGGCGGCGGGACGCTGAGCGTCAACGACGAGGACGTGCTCGACCTCGCCGACGCGCAGCAGGTCGCGGCGCACCTGGCCGGCGGCGTCAACAAGATCGTCGTCACCGGTGGTGCCGGCGGGCTCACCCTGGACCGCCTCACGGTGGCTCCGGGTGAGGGGACGCTGGAGCCGACGGAGTACCAGGCCGAGGACGCCGAGCTCGCCGGTGACGCGTCCGTGGGCGAGTACTCCCTGGCGGAGAACGGCGCCGCCGTCACCGGCGTCGGGGGAGAGCCCGGCAACGGCAACACCCTGACGTTCCACGTCGAGGCGACCGAGGCCGGCAAGCACGCCGTCGTCGTGCGGTACTCCAACCCGGAACAGGTCGACGGCACGCACTACAACCCCAACCCCGTCGCCCGGTTCTCCGACATCACGGTGAACGACGGCGAGGCCGAGCGGGTGCCGTTCGTGCCGACGTTCCACGAGAACAACTTCTGGGAGCGCACGATCGTGCTCGACCTCGCCGCCGGCGAGAACACGATCACCCTGCGCTCGGAGGAGATGCCCAACTGGGACGGCGAGACCTACGCGTCGCAGATCTGGCCGGCCGACTACCTGCTGCGCTCGCAGTGGGCCCCGATCGTCGACCGGATCACCGTCTCTCGGCTGGCGCAGCCGATCGGTACCGAGCCGGAGCTCGTCGAGGTGACGCCGGAGCGTCCGACCTGGATGGACGCGTGTGGTCCGGGCAACGTCACGGGTGCTCCGCTGCCTGTGATCGAGGGGGTGGAGTATGTCGAGACCCGTAAGAACGACGGCGGGGTGAAGGTGGTGGCGACTCCGCTGGAGGGTTACGTCCTGAGTGACAAGCCGTCGTCGACGAAGAACCCGGACTCGTGGACGTGGACCAAGGGCGACACGGGCGAGGAGTGCCCGCCGGAGTATCCGGTGTGGGACGCCTCGACGGTGTACACCGCGGGTGACCGGGTGTCGTTCGAGGGGTCGGTGTTCGAGGCGACCTGGTGGACGCGGGGCGACGAGCCGGGGGCGAACGTCTACGGCTCGTGGCAGGAGATCGCCGAGACCTCCGAGGGTGTCGCGGTGTGGACGCCGTCGCGCATCTTCACCGCGGGTGACGTCGTCGTCCACGACGGCGAGACCTACACGGCGCGCTGGTGGACCCGGAACCAGGAGCCGGCGTCGTCCGCGTGGGGTCCGTGGGAGGTGAGCGCCGGCTGAMVMRTTPPRRSPRRTTAALTAATVLGAGVFGGAVAAPAAAAVPEPDLHYTMDDVDGSTVPDSSGNGLDGTIAGDTTLTAAADGTADAALDLAGGHVVIPRGAIEGTDDLTVSTQVRWDGEGGPWQRIFDLGTDTSRYLFTTPSNGGDLRTAVTGNGAGGESQITGHGPLAAGDWVTLTVTLDATGGQVTTYLDGVAVGSAETGVAGTDLLTDAAAQAGYIGRSFYPDPAFDGAVDDFRIYRSALDAAQVAELTEELGGTVPTLQALSTDVFEVRISAGSAPDLPGTVRASWSDGYDRDVPVTWDDVDPADYETSGTFSVAGEAAGTAVTAEVTVTRGELRVDLGTDTGAFEGGASGLLYGLYGEGMPTDNLVEGMGVQSVATKAQDGAQHPGSDALEVLEPLARTTGGDVYLRVTDWYRGFPYQWPSPDQPDASPEEKLASYREVLDAQLDMIETLDPAVREHLVIEPYNEPAGNMFGTGQWSLDGTSWLSDPTDYFAAWDETYRTIKERFPDMRIAGPGAIELWPQIQGWLEHTVAEGTVADIVTWHELTHPQAIRESVAEYREWEADVFAGTAYEGTELPVNVNEYAFNYHTSVPGQMVQWMSAIEDAKVQAMIAFWNINGNLSDSAVQTNRGNGQWWLYNAYSRMTGHTVEVTPPYPGQNYSLQGLATLDEEQRQARVILGGQDGTAPVDLVNVPEDVFGDEVRVTAREIPWTGQLGDSAQPRHLADLVVPVADGTATVAFDGSQLPELDESSAYELIVTPVGAGETTASTPTLWQGSYEAEDAEYTGSGYSVNGPEGSPQDVAKFYTSGGYNVGGLRTGSDGVLDFEVTVPEDGTYDLSVFSSTLNTFDRVAEQGPTNVFVRVDGGAEQEIFLPLAYKWVVWDHADTTVELTAGTHTISLAAQSLDGSGATQGDAIIDRITLALPNPEAATSVYEAETAVLDGGTATYEVSDASGPGAVELTEGDSATFWVYSSLDGEAHLGADVLGTAGGGTLSVNDEDVLDLADAQQVAAHLAGGVNKIVVTGGAGGLTLDRLTVAPGEGTLEPTEYQAEDAELAGDASVGEYSLAENGAAVTGVGGEPGNGNTLTFHVEATEAGKHAVVVRYSNPEQVDGTHYNPNPVARFSDITVNDGEAERVPFVPTFHENNFWERTIVLDLAAGENTITLRSEEMPNWDGETYASQIWPADYLLRSQWAPIVDRITVSRLAQPIGTEPELVEVTPERPTWMDACGPGNVTGAPLPVIEGVEYVETRKNDGGVKVVATPLEGYVLSDKPSSTKNPDSWTWTKGDTGEECPPEYPVWDASTVYTAGDRVSFEGSVFEATWWTRGDEPGANVYGSWQEIAETSEGVAVWTPSRIFTAGDVVVHDGETYTARWWTRNQEPASSAWGPWEVSAGNANANANANA
AK018_023882076hypothetical proteinGTGAGCGAACCGACCGACCACCCCGTGCAGCGCGACGGCGACCGGCTCGTGTGGCGCGGCGCCGGCGAGACGCTGGTCGTCGAGCCATGGGGACGGGGCAGCGTGCGGGTGCGCGCGTCGCTGGGCGACGTCGTCGACGCCGACTGGGCGCTGCTGCCGCCGGACCCGACGGCGCACGCCGACGTGCGCACCGAGGTGCGCGCCGACGGGGCGACGCTCGTCAACGGCGGGTTGCGCGTCGAGCTGTCGGCGTCCTCCTGGCACCACGACCCCGTCGGCTACGAGGTGTTCCGCTGCGACCTGGCCTTTTACGACGCCGAGGGCCGGCTGCTGTTCCGCGAGCTGGACAGAGGCGGGTCGCTGGACCTGCGGGCGCGGCACCTGCGCCCGCGGACCGGCGACGACGGCGTGACCCTGACGGCGTCGTTCGAGGCGGACCCCGACGAGCACCTGGCCGGCATGGGGCAGTACCAGCAGCACGTGCTGGACCTCAAGGGGTCGACGTTCGAGCTGGCGCACCGCAACTCCCAGGCGTCGGTGCCGTTCGTCGTCTCCAGCGCGGGATACGGGTTCCTCTGGCACGACCCGGCGATCGGCCGGGCCACGTTCGCCCGCAACCGCACCGAGTGGTTCGCGGAGTCGACCCGTCAGCTCGACTACTGGGTGACGGCGGGGGAGACGCCGGCCGCGATCGCGCGGAACTATGCGGACGCGACCGGTCACGCCCCGATGATGCCGGAGCGCGGCCTCGGGTTCTGGCAGTGCAAGCTGCGGTACTCCTCCCAGGAGGAGCTGCTGGAGGTCGCCCGCGAGCACCAGCGTCGGGGGCTGCCGCTGGACGTGATCGTCGCGGACTTCTTCCACTGGCCGCACATGGGCGACTACCGCTTCGAGGACGAGTTCTGGCCGGACCCGGCGGCGATGGTCGCCGAGCTGGACGAGCTCGGCGTCGAGCTGATGGTGTCCGTGTGGCCGCAGGTGGCGCTCGCGTCGGAGAACTACGTCCACCTGCGCCGGAACAACCTGCTGGTGCGTGCCGACCGGGGTCTGGACGTGCAGATGTCGTTCGAGGGGCCGAGCGCGTTCCTCGACGTCCTGAACCCGGCGGCCCGGGAGTGGCTGTGGGAGACGTGCCGCCGCAACTACGGTCTCCACGGCATCCGCACGTTCTGGCTGGACGAGGCCGAGCCGGAGCTCGGCGTCTATGACCACGACGCCTACCGCACCCACCTGGGCCCCTACCAGCGCGTCGGCAATCTGTATCCGCAGGCGTTCGCGCGGGCGTTCTTCGAGGGGCAGCGGTCCGACGGCGAGACCGACGTGGTCAACCTGCTGCGGTGCGCGTGGGCCGGGAGCCAGCGGTACGGCGCGCTGGTGTGGTCGGGCGACATCTCCTCGACGTGGACGGACCTGGCGTGCCAGGTGACGGCCGGCATCCACATGGGCGTGGCGGGCATCCCGTGGTTCACCACCGACATCGGGGGGTTCCACCACGGCGACGTGGACGACCCGGCGTTCCGTGAGCTGCTGGTGCGCTGGTTCCAGTTCGGGGCGTTCTGCCCGGTGATGCGGTTGCACGGCGACCGGCTGCCGTACGAGGAGGTCACCGCGGCCGACGGTTCGCGGCGGCTGCGCTCGGGCGGGCCGAACGAGCTGTGGAGCTTCGGCGAGGACGTCTACCGCGTCCTGGAGCGCTACGTGCACCTGCGCGAGTCCCTGCGGCCCTACGTGCGTGACGTGATGCGCGCCGCGCACGACGACGGGCAGCCGGCGATGCGCGGGCTGTTCCACGAGTTCCCCGACGACCCGCACGCGTGGGAGGTCGACGACCAGTTCCTGCTCGGCCCGGACGTGCTCGTGGCGCCGGTCCTGGAGCCGGGTGCCCGCGAGCGCGAGGTGTACCTGCCGGCCGGGTCGCGCTGGACCGATGCGGCGAGCGGGACGGTGCACGACGGCGGGACCTCCGTCGTCGTGCCCGCTCCGCTGGACGTGGTGCCGGTGTTCCTGCGGGACGGCGCGCTGGACGGATTCGTCGGGCGCACCGCGGGCCGGGACGCGGGGGAGCCGGTGGGCTGAMSEPTDHPVQRDGDRLVWRGAGETLVVEPWGRGSVRVRASLGDVVDADWALLPPDPTAHADVRTEVRADGATLVNGGLRVELSASSWHHDPVGYEVFRCDLAFYDAEGRLLFRELDRGGSLDLRARHLRPRTGDDGVTLTASFEADPDEHLAGMGQYQQHVLDLKGSTFELAHRNSQASVPFVVSSAGYGFLWHDPAIGRATFARNRTEWFAESTRQLDYWVTAGETPAAIARNYADATGHAPMMPERGLGFWQCKLRYSSQEELLEVAREHQRRGLPLDVIVADFFHWPHMGDYRFEDEFWPDPAAMVAELDELGVELMVSVWPQVALASENYVHLRRNNLLVRADRGLDVQMSFEGPSAFLDVLNPAAREWLWETCRRNYGLHGIRTFWLDEAEPELGVYDHDAYRTHLGPYQRVGNLYPQAFARAFFEGQRSDGETDVVNLLRCAWAGSQRYGALVWSGDISSTWTDLACQVTAGIHMGVAGIPWFTTDIGGFHHGDVDDPAFRELLVRWFQFGAFCPVMRLHGDRLPYEEVTAADGSRRLRSGGPNELWSFGEDVYRVLERYVHLRESLRPYVRDVMRAAHDDGQPAMRGLFHEFPDDPHAWEVDDQFLLGPDVLVAPVLEPGAREREVYLPAGSRWTDAASGTVHDGGTSVVVPAPLDVVPVFLRDGALDGFVGRTAGRDAGEPVGPGPT0019340_1047DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0019340-xylS|yicI-K01811NANA
AK018_023891992hypBA1_1Non-reducing end beta-L-arabinofuranosidaseGTGACTCTTCCCTCCTCCCTCCCCGTCGCCCAGGCGCGACCCGTCGTCCCGCCCGGCCCGCGCCGCGGCGTGGGCATCGGCGAGGTCCGGCTCGACGGCGGCTTCTGGGGCACCCTCCAGGAGACCAACGCCCGTGCCACGATCCAGCACTGCCTGGACTGGATGGAACGGCTCGGCTGGCTCGCCAACTTCGACCGGGTCGCCGCCGGCGCCACGGCCGGGGTCGCGCGTCCGGGCTGGCAGTTCTCCGACTCGGAGATCTACAAGCTGCTCGAGGCGATCGCCTGGGAGCTGGGGCGGGCGGCGGACCCCGTGCTCGAGAAGACCTGGGACCGGCTGGTGGACCGGGTGGTCGCGGCCCAGGACGACGACGGCTACCTCAACACCTGCTACGGCCACGCCGGGCAGCCGGGTCGGTACACGGACCTCTCGACCGGGCACGAGCTGTACTGCGCCGGGCACCTGCTGCAGGCCGCCGTCGCCCGGCACCGCACCCACGGCACCGACCGGCTCGTGGAGGCGGCCCGCCGGGTCGCCGACCACGTGTGCGCCGAGTTCGGCGCCGACGGCCGCGAGGGCATCTGCGGGCACCCGGAGATCGAGGTCGGTCTGGCCGAGCTGGGTCGTACCCTCGACGAACCGCGGTACACCGAGCAGGCGCGCCTGTTCGTCGAGCGGCGCGGCCACGGCACGCTGGCGCCCATCGCCCTGCTCAGCCCGGCCTACTTCCAGGACGACGTGCCCGTGCGGGAGGCCGACGTCTGGCGCGGCCACGCCGTGCGTGCCCTGTACCTGGCGGCGGGCGCCGTGGACGTCGCGGTCGACACGGGCGACACGGGGCTGCACGCCGCCGTCGAACGCCAGTGGAGCCGGTCGGTGGAGCGCCGCACCTACCTCACCGGTGGGATGGGCTCGCGCCACCAGGACGAGGGGTTCGGGGACGACTTCGAGCTGCCCCCGGACCGGGCCTACTGCGAGACGTGCGCCGGCGTGGCCTCGGTGATGGTGTCGTGGCGGCTGCTGCTGGCCACCGGCGACGTCCGCTACGCCGACCTCGTCGAGCGCACCTTCTACAACGTGGTCGCCACGTCGCCGCGCACCGACGGGCAGGCGTTCTTCTACGCCAACCCGCTGCAGCAGCGCGAGCCGGGCGCCGACGTGCGGCCCGACGTCGTGAACCCGCGCGCCGAGGGCGGGGTGCGCGCGCCGTGGTTCGACGTCTCGTGCTGCCCCACGAACGTGGCGCGCACGCTGGCCTCGTGGCACACCTATGCGGCGTTCGTCGAGGAGGCGCCCACGGCCCCTAGCGACGAGGCTCCCGCCTCCCCGGCCGGCGGCGCGGTCGTCACGCTCGCGCAGTACGCCTCCGGGGAGGTCCGGGTGGCGCTCGACGGCGGCGACGTGGCCCTGCGCGTGGACACCTCCTACCCCGTGTCCGGCACGGTGCGCGTGCGCGCCCTTGAGGCGCCCGACACCCCCGTGACGTTGCGCCTGCGGGTGCCGCACTGGGCCGACGGCGCCACGCTGACCGGCCCGGACGGTGCCACCCGCCCGGCCGCACCCGGGTGGGTCGACGTGCCGGTCGCCGGCGGCGACGAGGTCACCCTGGAGCTGCCTGTCGCGCCCCGGCTGACCGCACCCGACCCGCGCGTGGACGCCGCCCGCGGGACCCTCGCCGTCGAACGGGGACCGGTGGTGCTCTGCCTGGAGTCGGTCGACCTGCCCGACGGCGTGGCCCTGGAGTCGGTGCGGCTGGACGCCGGTGCGCCGGTCGTGACGCACGACGACGGTGCGCGGGTCCGGGTCGTCGCGGCAGGGCTGCCCGACGGCGGGACCGGAGCGCCGCCCTTCGCCGCCGTGCCGCCGTCGTCGGGCGCCGTGCCGGACGCGCCGGGCGCGGCGTCGGAGCCCTTCGAGGTGCCGCTGGTGCCCTACCACCGGTGGGCCGAGCGCGGACCCTCCACCATGCGGGTCTTCGTCCCGACCACCTGAMTLPSSLPVAQARPVVPPGPRRGVGIGEVRLDGGFWGTLQETNARATIQHCLDWMERLGWLANFDRVAAGATAGVARPGWQFSDSEIYKLLEAIAWELGRAADPVLEKTWDRLVDRVVAAQDDDGYLNTCYGHAGQPGRYTDLSTGHELYCAGHLLQAAVARHRTHGTDRLVEAARRVADHVCAEFGADGREGICGHPEIEVGLAELGRTLDEPRYTEQARLFVERRGHGTLAPIALLSPAYFQDDVPVREADVWRGHAVRALYLAAGAVDVAVDTGDTGLHAAVERQWSRSVERRTYLTGGMGSRHQDEGFGDDFELPPDRAYCETCAGVASVMVSWRLLLATGDVRYADLVERTFYNVVATSPRTDGQAFFYANPLQQREPGADVRPDVVNPRAEGGVRAPWFDVSCCPTNVARTLASWHTYAAFVEEAPTAPSDEAPASPAGGAVVTLAQYASGEVRVALDGGDVALRVDTSYPVSGTVRVRALEAPDTPVTLRLRVPHWADGATLTGPDGATRPAAPGWVDVPVAGGDEVTLELPVAPRLTAPDPRVDAARGTLAVERGPVVLCLESVDLPDGVALESVRLDAGAPVVTHDDGARVRVVAAGLPDGGTGAPPFAAVPPSSGAVPDAPGAASEPFEVPLVPYHRWAERGPSTMRVFVPTTPGPT0019100_932DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955NANA
AK018_02390819dasC_4COG0395Diacetylchitobiose uptake system permease protein DasCATGACCGAGCGCAAGGTCTGGTGGAAGACGGCCCTCGGCGTCGTCTTCACCGCGCTGATGCTGTTCCCCGTCTACTGGATGGTGAACGTCTCCTTCACGCAGACCCGGGACCTGCGGGCCGACCCGCCGCACTGGTTCCCCTGGGACCCCACCTTCGAGGGCTACGAGGCGGTGTTCGCCCAGCAGCTCCCGGCGCTGGGCACGAGCCTCCTGGTGGGTCTCGGCTCGGTGGTGCTGACCGTCGTCATCGCGGCGCCTGCCGGCTACGCGCTGGCGCTGCTGCACCTGCGCGGCGGCCGCACCCTGAACTTCCTGCTGCTGGTGGCGCAGATGATCCCCGCCGTGGTGATGGCGATGGGGTTCTACGCGGTCTACAACAACCTCGGGCTGCTGAACACGATCCCGGGGCTCATCGTGGCCGACTCGACCATCGCCGTGCCGTTCGGGGTGCTGCTGTTCACGGCCTTCATGTCCGGCATCCCCCGCGAGATGCTGCAGGCCGCCCGGGTCGACGGGGCGGGCGCGTGGCGCACGTTCCGCTCGATCGTGATCCCCATGTCGCGCAACTCGATCCTCACGGTGTCGCTGTTCGCGTTCCTGTGGGCGTGGTCGGACTTCATCTTCGCCTCCACGCTCAACCGCAACGGCGACCTCATCCCGATCACGCTGAGCATCTACAACTACATCGGCAACAACACCACGCAGTGGAACGCGATCATGGCGACCGCCGTCGTCGCATCCGTGCCCGCCGCGATCCTGCTCGTGGTCGCCCAGCGCTACGTGGCCGCCGGTGTGACCGCCGGTGCGGTCAAGGACTGAMTERKVWWKTALGVVFTALMLFPVYWMVNVSFTQTRDLRADPPHWFPWDPTFEGYEAVFAQQLPALGTSLLVGLGSVVLTVVIAAPAGYALALLHLRGGRTLNFLLLVAQMIPAVVMAMGFYAVYNNLGLLNTIPGLIVADSTIAVPFGVLLFTAFMSGIPREMLQAARVDGAGAWRTFRSIVIPMSRNSILTVSLFAFLWAWSDFIFASTLNRNGDLIPITLSIYNYIGNNTTQWNAIMATAVVASVPAAILLVVAQRYVAAGVTAGAVKDPGPT0016540_6359DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_02391828lacF_1Lactose transport system permease protein LacFGTGCTCTTCTACGCCTACCCGCTCTGGCGGAACATCGACCTGTCGGTGCACGACTACACGATCCGTGCGTTCGTGCAGGGCGACGCCGAGTTCGTCGGCCTGCAGAACTACGTCGAGGTCTTCGGGTCGTCGACGTTCCCGACGGCCCTGTGGAACACGTTCGTGTTCACGTTCGGCTCGATCGCGTTCCAGTTCACGATCGGTCTGGCGCTCGCGGTGTTCTTCCGCTCCAGCTTCCGGCTGTCGAACACGCTGCGCGCGATGTTCCTCGTGCCGTGGCTGCTGCCGCTGATCGTGTCGGCGTCCACCTGGGCGTGGATGCTCAACAGCGAGAACGGCATCGTCAACTCGGTGATCACCGCGTTCGGCGGCGAGCAGATCAACTGGCTCACCTCGCCCGACACGGCGCTGATCTCCGTGACGATCGCCAACATCTGGCTCGGCATCCCGTTCAACCTGGTCATCCTCTACTCGGGCCTGCAGAACATCCCGGGCGAGGTGTACGAGGCCGCGTCCCTCGACGGCGCGGGCGCCTGGCGTCAGTTCTGGTCGATCACGTTCCCGCTGCTGCGCCCCGTCTCGGCCATCACGATCCTCCTCGGCCTGATCTACACCCTCAAGGTCGTCGACGTGATCTGGGTGATGACCACGGGCGGGCCCGGGGACGCGTCCACGACGCTCGCCATCTGGTCCTACCGGGAGGCGTTCGGCACCGGTCAGCCCGACTTCTCGCCGGCCGCCGCCGTCGGCAACCTGCTCATCGTCATCGCGCTGGTGTTCGGGTTCCTGCACCTGCGCCTCCAGAACCGTCAGGAGGCCACGTCATGAMLFYAYPLWRNIDLSVHDYTIRAFVQGDAEFVGLQNYVEVFGSSTFPTALWNTFVFTFGSIAFQFTIGLALAVFFRSSFRLSNTLRAMFLVPWLLPLIVSASTWAWMLNSENGIVNSVITAFGGEQINWLTSPDTALISVTIANIWLGIPFNLVILYSGLQNIPGEVYEAASLDGAGAWRQFWSITFPLLRPVSAITILLGLIYTLKVVDVIWVMTTGGPGDASTTLAIWSYREAFGTGQPDFSPAAAVGNLLIVIALVFGFLHLRLQNRQEATSPGPT0016535_834DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_023921278hypothetical proteinATGCAGCACACACGGCGCAAGCACACCACCCTCGCCGCCTCGGCGGCCCTGGCCGTCGCGGGCGTCTCCGTCCTCGGCGCCTGCTCGTCCGACGACGGGTCCGGCAGCTCCGACGGCGCGTCCGGCGATGCGGCCGGCGGCACCTACACCTGGTGGGACCCGTACCCCCAGCACGACGGCTCCTCCGACTGGGAGGCCCGCGTGCAGGCGTGCGGCGAGGACGCGGGCGTGACCATCGAGCGCACCGCCTACGACACCACCGCGCTGACCAACCAGGCGCTGCTCTCCGCCCAGGAGGGCACCTCGCCCGACGTCATCCTCATCGACAACCCCGCGGTCTCCACGCTCGCCGACACGGGCATGCTCACGACCGTCGAGGAGTTCGGCCTGGACACCTCCGCGATCGACCAGAACCTGCTCGACGCCGGCGTCGTCGACGGCAGCGCCTACGGCATCCCCATCGGCGCGAACACCCTCTCGCTCTACTACAACGCCGACGTCCTGTCCGACGCCGGCGTCGACCCGGCCTCCATCACCGACTGGGACTCGCTCACCGCGGCCCTCGAGCAGGTCACCGGTGCCGGGCACAAGGGCATCACGTTCGCCGGCATCGGCACCGAGGAGGGCTCCTTCCAGTTCCTGCCCTGGTTCTGGGGCGCCGGCGCGGACCTCACCGACCTGTCCTCGCCCGAGGCCGTCGAGGCCCTCGAGCTGTGGACGACCTGGCTGGACGAGGGCTACGCCCCCAACACGGTCATCAACAACTCCCAGAACACGGTGTGGGAGGAGTTCCTCACCGGCGACTTCGCGTTCGCGGAGAACGGCACCTGGCAGGTCAACAGCGCCGCCGAGGCCGAGTTCGAGACCGGCATCGTCCAGCTCCCCGGCAAGGACGGCGGCGTCGCCCCCGCCCCGACCGGTGGTGAGTTCATCGTCGCGCCCGTCCAGGAGGACACCGCGCGCTACGACGTCACCAACCAGATCGTCGAGTGCATGACGACGCCGGAGGGCTTCGTCGAGACGGCCAACACCTTCGCGTACTACATCCCGCCGACCTCCGAGGGCCAGGAGGCCCTGCTCGAGGAGAACCCCGACCTCGAGCCGTGGGTCGAGGCCGTGCAGAACGCCAAGGGCCGCACCAGCGACGGTCTGGGCACCGACTACCCGCTGATCTCCGAGGCGCTGTGGACCGCCGTCCAGAACGCGCTGTCCGGAGCGGCGACCCCGGCCGAGGCGCTCGAGACCGCGCAGTCCGAGGCCGAGTCCGCCACGAGCTGAMQHTRRKHTTLAASAALAVAGVSVLGACSSDDGSGSSDGASGDAAGGTYTWWDPYPQHDGSSDWEARVQACGEDAGVTIERTAYDTTALTNQALLSAQEGTSPDVILIDNPAVSTLADTGMLTTVEEFGLDTSAIDQNLLDAGVVDGSAYGIPIGANTLSLYYNADVLSDAGVDPASITDWDSLTAALEQVTGAGHKGITFAGIGTEEGSFQFLPWFWGAGADLTDLSSPEAVEALELWTTWLDEGYAPNTVINNSQNTVWEEFLTGDFAFAENGTWQVNSAAEAEFETGIVQLPGKDGGVAPAPTGGEFIVAPVQEDTARYDVTNQIVECMTTPEGFVETANTFAYYIPPTSEGQEALLEENPDLEPWVEAVQNAKGRTSDGLGTDYPLISEALWTAVQNALSGAATPAEALETAQSEAESATSPGPT0016545_8361DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_023931023rbsR_1COG1609Ribose operon repressorGTGGCCACCATCGGTGACGTCGCCCGCGTCGCGGGGGTCTCCCGCAGCACGGCGTCGTACGCGCTCTCCGGCAAGCGCGCCATCTCGGAGGACGTCCGACGCCGCGTCAAGGACGCCGTGCGCGAGCTCGGGTACACCCCGAATGCCGGCGCCCGTGCGCTCGCCACCTCCCAGACGATGGTCATCGGCCTGCTGGCCCAGTTCCTCGAGGACGAGTTCGCGCCCGCGATGCTGCAGTACATGCTCGGCGTCTCGAACACGGCCCGGGAGCTCGGCTACGACATCCTGCTCTCGACCGAGGCGGACGGGCGCAACGCGCTGCGCCGCATGACCGACTCACGCATGGTCGACGGGATCGTGCTGCTCAACGTCGCCGAGGACGACGATCGGCTGCCCATCCTGCGCGACGCGCCCCAGCCCGGTGCGCTCGTCGGCCTCCCGGCCGACTGCTCCGGCGTCGAGGTCTTCGACCTGGACTTCGAGGAGGCCGGCCGCACGATGGTCGAGCACCTGCACCGGCTCGGGCACCGCGAGCTGGTCCTGGTCTCCCAGCCCGAGCACGTCGTCGAACGCGGCGGTGCCTACGTGTGGCGCCTGCAGAACGCCGCGCTCGCCGAGGCCCGCGCCCGCGGGATCACGCTGCACGCGGTCTTCGGGCCCGCGCAGCAGCCCGAGGTCGGCCGCACGCTGCACGGCCTGCTGGACGCCCACCCGGACGCCACCGGGCTGCTCATCAACAACGAGGCCGCCGCGGCCGCGCTGCCGACGGTGCTGCACGAGCGCCGCCTCACGGCGCCGGCCGACCTCTCCGTCGTCGGGCGCTACTCGGACGAGTTCGCCCGCACGTTCTCCCTGCCGTACTCCTCGATCGAGAGCGCCCCGGACCGCCTCGGCCGCATGGCCGTGCGCGAGCTGGTGCGTCGTATCGAGGGTCAGGTGGGACCCGACGAGCCGCACGTGGTGCGGTTCGTCTCGCCCGAGCTCGTCGACCGGGGCAGCACCGGCGCCCCCCGGGGGGACTGAMATIGDVARVAGVSRSTASYALSGKRAISEDVRRRVKDAVRELGYTPNAGARALATSQTMVIGLLAQFLEDEFAPAMLQYMLGVSNTARELGYDILLSTEADGRNALRRMTDSRMVDGIVLLNVAEDDDRLPILRDAPQPGALVGLPADCSGVEVFDLDFEEAGRTMVEHLHRLGHRELVLVSQPEHVVERGGAYVWRLQNAALAEARARGITLHAVFGPAQQPEVGRTLHGLLDAHPDATGLLINNEAAAAALPTVLHERRLTAPADLSVVGRYSDEFARTFSLPYSSIESAPDRLGRMAVRELVRRIEGQVGPDEPHVVRFVSPELVDRGSTGAPRGDPGPT0014791_180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_02394621tag_1COG2818DNA-3-methyladenine glycosylase 1ATGACATCGACCGCCGACCCGGCTGACGGGCCCGACACCGGACCCCCTCGTTGCTTCGGCGACGGCGACCCGCTCTACGCCGCGTACCACGACACCGAGTGGGGCGTCCCGGTGCACGGCGAGGCCGAGCTGCTGGAGCGCATCGCGCTCGAGGGGTTCCAGTCCGGGCTGTCCTGGCTGACGGTCCTGCGCAAGCGCGAGGCGTTCCGCGAGGTCTTCCACGGCTTCGACCCGGCACGGGTCGCCGCGATGACGCCCGACGACGTCGACCGGCTCCTCGCGGACGCCCGGATCATCCGCAACCGCGCCAAGATCGAGGCCACGATCGCGAACGGGAGTGCCGTCGTCGCGCTGCACGACGACGGACGCACCCTCGACGAGCTGTTCTGGTCCTTCGCTCCCCCGCCCCGCGCCGAGCGGCCCGCCACCTGGGCGGACGTGCCCGCCACGACCGACGAGTCGAAGGCCATGGCCAAGGCGCTCAAGCGCGAAGGGTTTCGGTTCTTCGGACCGACGACGGCCTACGCCGCCATGCAGGCGTGCGGCCTGGTGGACGACCACCCGGCCACCTGCCGCGCCGTGCTCGACGGGCACCTCGACCCGGAGGCGGGCGCAGCCTAGMTSTADPADGPDTGPPRCFGDGDPLYAAYHDTEWGVPVHGEAELLERIALEGFQSGLSWLTVLRKREAFREVFHGFDPARVAAMTPDDVDRLLADARIIRNRAKIEATIANGSAVVALHDDGRTLDELFWSFAPPPRAERPATWADVPATTDESKAMAKALKREGFRFFGPTTAYAAMQACGLVDDHPATCRAVLDGHLDPEAGAANANANANANA
AK018_02395489hypothetical proteinATGACCTCCGACGACCTGCCCGACGGCCGGCACGGCACCCCGCCGGGCGTCTCGGACGCGACCGTGGAGGCGCTCGGCGCCCTCAGCGAGGCGCTCGAGACGGTGGAACGTGCCCGGGGCCACCTGTACACGTTCCACCAGCTGACGGGGGAGGCCGACCTGGCGCTCGGTGACGCGGTCGACCAGCTGCGCGAGGCCGGGCACGCCGACGTCGCGGCGCGGATCTCCGAGGACCTGGTCGGCCGGAACGTCCTGCCCGGCCGGTGGACGTTCCAGATCGTCGAGGAGTACGACGACGGGTACTGGCAGGTGTTCCGCGAGCACGAGCGGCGGGCGCGCGAGGCGCTGGCGGGCGGCGTCCGGCACCTGGCCGAGGCGCGCATGAAGGAGGACCGCCGCACCCACGGGCGGCCCGGGCACGAGGCGGCGCCGGAGGACGTGCCGGAGGACGCGGCCGCGCCGGACGAGGGGGTCGCGCCCGGCGACTAGMTSDDLPDGRHGTPPGVSDATVEALGALSEALETVERARGHLYTFHQLTGEADLALGDAVDQLREAGHADVAARISEDLVGRNVLPGRWTFQIVEEYDDGYWQVFREHERRAREALAGGVRHLAEARMKEDRRTHGRPGHEAAPEDVPEDAAAPDEGVAPGDNANANANANA
AK018_02396450hypothetical proteinATGGATCTCACCGAGCTCACGAAGCCCACCAGCACCTCCGTGCCGCAGACCGTGGCGCGCGTCTGGCTCGGACTGACGCTGGCCGGGGCCGGCGTCTCGCACCTGACCGTCGCCCGCGAGGAGTTCCAGGCCCAGGTCCCGGGCTGGTTCCCCGTCGACGAGGACGTCACCGTGCTCGCCTCCGGCGTCGTCGAGATCATGATCGGCGGCTCGCTCGTGGTGCTGTCGCGGTGGAAGGTCGCCGTCGGGCTGATCGCCGCGGCGTTCTTCGTGGTGATCTTCCCGGGCAACGTGGCGCAGTGGCTGGAGGGCAAGGACGGGTTCGGCCTGGACACCGACGCCAAGCGCCTCGCCCGGCTGCCGTTCCAGGCCGTCCTCGTGGCCGTCGCCCTGTGGTCCACCGGTGCCTGGTCGGCCACGCGGCGCGCCCTGCGGACCGAGGACCGATGAMDLTELTKPTSTSVPQTVARVWLGLTLAGAGVSHLTVAREEFQAQVPGWFPVDEDVTVLASGVVEIMIGGSLVVLSRWKVAVGLIAAAFFVVIFPGNVAQWLEGKDGFGLDTDAKRLARLPFQAVLVAVALWSTGAWSATRRALRTEDRNANANANANA
AK018_023971086hypothetical proteinATGGAGGGCTCCCGTTCCGATCACGCACCCGTCCGCGCGACGCCGACCGCGCACCCGACGCAGCGCCCGCACGTGGCGGCCGTCGTCGAGGACGCGATCTACGCCGTCGTGGGCACCGGTCTGCGCCGCGTGGGCTGGCGACCGCGGCTGCAGACCTTCACCGGCTACGGCAGGCCGGATCGCGTCCGCGTCATGGCACGCGTGCTCCTCGCGCCGCCGAAGGCCGCACGGCGGGACCGCAAGCGACCGACGCGGCGCGGCTTCCGCAACTTCCTGACGGTGCCCGCACCGCAGAGCAGGGTGCGCGTCACCGTGGCGGGGCACGCCGTCGAGGTCGTCACCGACCGGTCCGGGTACGTGGACGTCGAGCTCGACCTGCCGGCCGGCGCCCACCTGCCCCCGGGACGCCAGGAGGTGGCGCTGCAGTGCCTCGACCCGGCGGACGCCGTGACGGTCACCGCTCCCCTGCAGGTCCTGGACGCCGCGCCGCGGCTCGGGGTCATCAGCGACATCGACGACACCACGCTCGTCACCGGCGTCCCGCGGCCGCTGCTGGCCACCTGGAACACGTTCGTGCGGCGCGCGGGCTCGCGTCGCGCGGTGCCGGGCATGGCGGGGCTGTTCCGCGACCTGGAGGCCGCGCACGGCGACCTGGCGGTCTTCTACGTGTCGAACGGCGCCTGGAACACCGCCGGGGCGCTGCGTGCGTTCCTGGAACGCTGCGGCTATCCGGAGGGGCCGCTGCTGCTCACCGACTGGGGGCCGACCCTGACGGGCTGGTTCCGCAGCGGCCCGCGGCACAAGGCCGCGAGCATCGACCTGCTCATGGAGTGGTTCGGCGAGGTGCGGTGGCTGCTGGTCGGCGACGACGGGCAGCACGACCCGCAGATCTACGCCGACGCCGTGCAGCGGTGGCCCGACCGCGTGGCGGCCGTCGCGATCCGGCAGGTCACGGACGATGACGACGGTCCGACGGCGGGGGATCCGGCGCCGGGGACACCGCCCGGCGTGCCCGTGGTCCGCGGCCGCGACGGCTCGGCGCTGGCGGTGGCTCTCGCCGGGGTGCCCGGCGTCCTCGACGCCTGAMEGSRSDHAPVRATPTAHPTQRPHVAAVVEDAIYAVVGTGLRRVGWRPRLQTFTGYGRPDRVRVMARVLLAPPKAARRDRKRPTRRGFRNFLTVPAPQSRVRVTVAGHAVEVVTDRSGYVDVELDLPAGAHLPPGRQEVALQCLDPADAVTVTAPLQVLDAAPRLGVISDIDDTTLVTGVPRPLLATWNTFVRRAGSRRAVPGMAGLFRDLEAAHGDLAVFYVSNGAWNTAGALRAFLERCGYPEGPLLLTDWGPTLTGWFRSGPRHKAASIDLLMEWFGEVRWLLVGDDGQHDPQIYADAVQRWPDRVAAVAIRQVTDDDDGPTAGDPAPGTPPGVPVVRGRDGSALAVALAGVPGVLDANANANANANA
AK018_02398648aas_1Bifunctional protein AasGTGACGTACCGGATCCTGAAGCTCGTGTGCTCGCTCCTGGTGTACGTGTTCCTGCGTCCCCGGGTCAGCGGACTGCACAACGTGCCGCGGCGCGGGCCGGTCATCATCGCGAGCAACCACCTGTCGTTCATCGACTCGATCATCCTGCCGCTCGTGGTGCCCCGGCACGTCACGTTCATCGCCAAGTCGGAGTACTGGACCGGCCACGGGATCAAGGGGCGCATCTCGCGCTGGTTCTTCACCACCATGGGGCACATCCCCGTCGACCGCGAGGACCCCCGTGCCGGGCAGCGCTCCCTCGAGGACGCCCTGCAGGTGCTGCAGCGCGGGGACGCGTTCGGGATCTACCCCGAGGGCACCCGGTCCCGCGACGGCAAGCTGCAGAAGGGCCACACCGGCGTCGCCTGGCTGGCGCTGAGCGGGTCCGCCCCCGTGGTCCCGGTCGCGCTGCGCGGGACCGACAAGGTCCAGCCCGTCGGCAAGCGGCTGCCGCGGCCCTACCGCGGCGTCGAGGTGTCGTTCGGCGCGCCCATCGACCCCTCGCGGCAGATCACCGCCGGGACCCGCCCCGCGCAGGCGCGGCGCCAGCTCACCGACCAGGTCATGGAGTCGATCCACGCGATGAGCGGGCAGGACCGGCAGCTCTGAMTYRILKLVCSLLVYVFLRPRVSGLHNVPRRGPVIIASNHLSFIDSIILPLVVPRHVTFIAKSEYWTGHGIKGRISRWFFTTMGHIPVDREDPRAGQRSLEDALQVLQRGDAFGIYPEGTRSRDGKLQKGHTGVAWLALSGSAPVVPVALRGTDKVQPVGKRLPRPYRGVEVSFGAPIDPSRQITAGTRPAQARRQLTDQVMESIHAMSGQDRQLPGPT0024380_5655DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
AK018_023991203hypothetical proteinATGGATACCGAAGAGCGCCTGGCCGTCTTCCTCGACTACGAGAACCTGGCGCTCGGTGCCCGGGAGCACCTGGGTGGGATGCAGTTCGACTTCCAGCCCATCGCCGACGCCCTCGCGGTCCGCGGGAAGGTGATCACCCGACGCGCGTACGCCGACTGGTCCTACTTCGACGAGGACCGCCGCATGCTGACCCGCCACCAGGTCGAGCTCATCGAGATGCCGCAGCGCATGGGCGCCTCGCGCAAGAACGCCGCCGACATCAAGATGGTCGTCGACGCGATCGAGATGGCGTTCGAACGCGACTACATCACGACGTTCGTCATGTGCACGGGCGACTCCGACTTCTCCCCGCTGGTCACCAAGCTGCGCGAGCTCGACAAGAACGTCATCGGCGTCGGCGTCGAGAAGTCCACGTCCCGCCTGCTGCCGTCCGCCTGCGACGAGTTCCTCTTCTACGACCGCCTCGAGGGTGTCGACGTCCCCGACGAGACCGAGCAGCGGCCCCGCAAGAAGGCCGCCACCAAGCGGTCCGGGTCCACGTCCGGCGGGCGAGGGGCAAAGAGCCGCACCGCCACCGAGGCCGAGACCACCGAGGTGAGCTCCGCGCCGTCGTCGGGCACCCGGCGCCGCAAGAAGACCGAGACGGCACCCGAGCCGGAACCGGCGACCGAGCCGACCGTGGCCACCGCCGCCTCGCCCGCCGAGGCCGACGACGACGCCCCGGCCACCGAGGCGCCCACCATGGAGGTGAAGGTCGCCCAGACCCTCGCCGGGCTGCAGGCCTCCTCGTCCGGGTCGGTGACGGCGTCGCAGCTCAAGCGCACGCTCGTGCGCAAGGAGCCCACCTTCAGCGAGTCCGACTACGGGTTCCGCACCTTCACCGAGTTCCTGCGCTACCTCGCCGACCGCGACTTCGTCGTGCTCTCCGACGGGCCGTCCGCCGGCGACCCCGTCGTCGAGCTGCCCGAGCAGCCGGACAGCGACCGCGCGTTCGGCCTGCTGCGCAGCGTCGTCGAGGAGGCCGGCGGCACCGCACAGCTGTCCGGCCTGAAGAACCACCTGCGCAAGCAGCGCCCCGACTTCTCCGAGAAGGCGCTCGGCTACCGCGGCTTCCTGCAGTTCTGCAAGGGTGCCGCGGCCTCCGGTGCGGTGAACCTCGCCTGGGACGACGACGCCGACGACTACCTCGTGACGCTCTCCTGAMDTEERLAVFLDYENLALGAREHLGGMQFDFQPIADALAVRGKVITRRAYADWSYFDEDRRMLTRHQVELIEMPQRMGASRKNAADIKMVVDAIEMAFERDYITTFVMCTGDSDFSPLVTKLRELDKNVIGVGVEKSTSRLLPSACDEFLFYDRLEGVDVPDETEQRPRKKAATKRSGSTSGGRGAKSRTATEAETTEVSSAPSSGTRRRKKTETAPEPEPATEPTVATAASPAEADDDAPATEAPTMEVKVAQTLAGLQASSSGSVTASQLKRTLVRKEPTFSESDYGFRTFTEFLRYLADRDFVVLSDGPSAGDPVVELPEQPDSDRAFGLLRSVVEEAGGTAQLSGLKNHLRKQRPDFSEKALGYRGFLQFCKGAAASGAVNLAWDDDADDYLVTLSNANANANANA
AK018_02400348hypothetical proteinGTGACGCCACGGACACGGAGGTGCCTGGCCGACCTGCTGGACCACGCGGCGGCGGCCGGCCGGCTCGTCGAGCGGGGCCGGGCCGCCTACGACGCCGACGAGATGCTCCGGTACGCCGCCGAGGACCTCCTCATCCGGCTCGGGGAGACCGTCGCCCGCATCGACCGCGACGACCCGGGGTTCGTCGAGGCGCACCCACGGCTCGAGCTCCGCCGGGTCAAGGACGCACGGAACCTCGTCGCTCACGGGTACGACGTCGTCGACAGCGCCATCGTCTGGTCGATCGTCGCGACCAACGTCCCCGCCGTCGCGGCCGAGGTCGAGGCGCTCCTCACGTCCGACGGCTGAMTPRTRRCLADLLDHAAAAGRLVERGRAAYDADEMLRYAAEDLLIRLGETVARIDRDDPGFVEAHPRLELRRVKDARNLVAHGYDVVDSAIVWSIVATNVPAVAAEVEALLTSDGNANANANANA
AK018_02401438hypothetical proteinATGGTCGATCTGAGGGCCGAGCGCGAGAGGGCAGGCCTGACGCAGGCGCGCCTCGCGGAGCTCGCGGGGATCGCTCCGTCGAACCTGTCCGCCTACGAGTCCGGCCGACGCCCCGCGTCTGCTGCCATGATCGCGCGGATCCGACGCGCCATGGTGCGGCCCTCGGAGCGGCTCCGGGACAAGCACGACGAGGTGGTGCAGCTGATCGCGCGCAACGGGGGCACCAACCCAAGGGTCTTCGGTTCGGTCGCCCGCGGCACGGACACGCCGGCCAGCGACCTGGACCTCCTCGTGACGGTCTCTCCGGACGCGGCGTGGACCTTCGTCTCGACGGCTCGCGAGCTGTCCGAGCTGCTGGGTGTCCACGTCGACGTCCTCAGCGACGGAGGACTCCGGGAGAAGCACCGAGGCGTCCTCGATGAGGCCGTGCCGCTGTGAMVDLRAERERAGLTQARLAELAGIAPSNLSAYESGRRPASAAMIARIRRAMVRPSERLRDKHDEVVQLIARNGGTNPRVFGSVARGTDTPASDLDLLVTVSPDAAWTFVSTARELSELLGVHVDVLSDGGLREKHRGVLDEAVPLNANANANANA
AK018_024031032metF_1COG06855,10-methylenetetrahydrofolate reductaseATGGTCGCAGAGGCATCCCCTGAACCGGCACGCCCCGTGCCCTCCCGCCCGACGGTGAGCTTCGAGCTCATGCCGCCGCGGCGGCCCGACGCCGCACCCAAGTTCTGGGAGACGGCGCGCCGCCTCGTGGCCGCGCGCCCCGACTTCGTGTCGGTCACCTACGGCGCCGGCGGCGGCGACCGGGACACCGCCCGCCAGGTCGTCTCCACCCTCCTGGCCGGCACCCCCGTCCTGCCGATCGCGCACCTGACCTGCGTCGGCGCGTCCCGCGAGGATGTGTCCGCCGTCGTCGACGAGTTCCTCGAGGCCGGGGTCCGCAGCTTCCTCGCCCTGCGCGGCGACCCGCCGAGGGACCAGCCGGACTGGCAGCCGCCCGCGGGCGGCATCCACTCGGCCATCGAGCTCGTCGCCCTGCTGCGCGAGGTCGAGGCCCGCCGCTGCGCCGCCGACCCGGCGGCCGCCGTCCGCGGTGCCGCCCGGCCCCTGACCGTCGCCGTCGCCACGTTCCCGGACGGCAACGCCCAGGCCGGCACCACCCGCGCGCAGGAGGTGCACCGCCTGCTGGAGAAGCAGCAGGCCGGCGCGTCCTTCGCGATCACCCAGCTGTTCTACGAGGCGGACAGCTACACCGACTTCGTCGCCGAGGCCCGCGCGGCCGGCGTGACGATCCCGATCCTCGCCGGGTTGATACCCACGACCGAGCCGCACCGGCTCCGCCGTGTCGAGGATCTCCTCGGCGTCCGCGCGCCCCAGCACCTCCTGGACGCGCTGGACGCCCAGCCGGACCCGCAGGCCCAGTACGCCTACGGAACGGCGTACGGCGTCGAGCTCGCCCAGCGCGTCCTCGACGCCGGCGCCCCCGGCCTGCACGTGTACACGTTCAACAAGTACCGACCTGCTCTGGACCTGCTCGAGGGTGTCCACCTCGGCGGTCGGACGGCGGCGCCCACCGGGGCGTCCGACGTCGTCCACGACCTGGCCAGACGGCCGCTGGTACCGGGCATCCCGACCGACGTCCCCGCGCCCGCCTGAMVAEASPEPARPVPSRPTVSFELMPPRRPDAAPKFWETARRLVAARPDFVSVTYGAGGGDRDTARQVVSTLLAGTPVLPIAHLTCVGASREDVSAVVDEFLEAGVRSFLALRGDPPRDQPDWQPPAGGIHSAIELVALLREVEARRCAADPAAAVRGAARPLTVAVATFPDGNAQAGTTRAQEVHRLLEKQQAGASFAITQLFYEADSYTDFVAEARAAGVTIPILAGLIPTTEPHRLRRVEDLLGVRAPQHLLDALDAQPDPQAQYAYGTAYGVELAQRVLDAGAPGLHVYTFNKYRPALDLLEGVHLGGRTAAPTGASDVVHDLARRPLVPGIPTDVPAPAPGPT0008160_383DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008160-metF-K00297NANA
AK018_024042418metE_1COG06205-methyltetrahydropteroyltriglutamate--homocysteine methyltransferaseATGACCACGACCCCCTTCCCCCGCGGCACGATCCTCGGCTACCCCCGCATCGGCCGTCGCCGCGAGCTCAAGCGCGCCGTCGAGGCCCGCTGGGCCGGCCGCACCGACGCCGTCGACCTCGAGGTGACCGCCGGTGCGCTGCGCCGCGAGACCGTCCAACGTCTCGTCGCGCTCGGCCTCGACCCCGACGACGGCTCCGTGCCCGGCTCGTTCTCCTACTACGACCAGGTGCTCGACGTCGTCGCGCTGCTCGGCGCCGTGCCGGACCGCTTCCGCGACCTGCTCGACGCCGAGGACGGCTCGCTCGACCTGGACGGCTACTTCACGGTCGCCCGCGGGCGCGGTGAGGACGCGCCGCTGGAGATGACCAAGTGGTTCGACACGAACTACCACTACCTGGTCCCCGAGATCAGCGAGACCACGCCGATCTCGTTCGCCGACCACCGGATCGTGCGCGAGTACGCCGAGGCCAAGGAGGCCGGCGTCACCACGCGCCCGGTCCTGGTCGGCCCGGTCACGTTCCTCGCGCTGTCCAAGGCCGCGGACGACGCCGGAGCGGACTTCCACCCGCTCGACCGGCTCGACGACGTGGTCGCCGCGTACGCCGAGCTGCTGCGGGCGCTGGCCGCCGTCGGCGCGCCGTGGGTGCAGCTCGACGAGCCCGTTCTCGTCTCCGACACCGTGGACGCCGACCCCGCGCGGATCGACGCCGCGATCACGTCGGCCTACCGCACGCTGTCGACCGACCTCTCCCCCGCCGCCGACGACGACGGGCTCGACGTGACGCCGGAGCGCCCGCGAATCCTCGTCGCCACGCCGTTCGGCGGGCTGGCCACCGACGGCACCGACGGGACGCCGGCGCGCGACGGCCTCGCCCTGCTGGCCGGCACCGACGTCGACGCGATCGCGATCGACCTGGTCAAGGGCGCGGTGCCCACCGAGGCCGTCCCCGGGCTGGCCTCGAAGACCCTGGTGGCCGGCGTCGTCGACGGGCACAACATCTGGCGCACCGACCTCGCGGCACGCCTCGAGACCCTCGACGGGCTGGCCGGCCTCGGCGCCGGGGCGCTCGCCGTCGGCACGTCCACCTCGCTGCTGCACGTGCCGCACGACGTCGAGGACGAGACCTGGGAGGGGCCCGCCGCAGAGCGGGCGGGCCGGACGCCGGAGCTGCGCCGGTGGCTGGCCTTCGCCGACCAGAAGGTCGGTGAGGTGACGGTGCTCGCGCGTGCGCTGGCCGACGGACCGGACGCCGTGCGCGCCGAGCTCGACGCCGCGAGCGCCGCGCTGGCCGACCGCGCCGCGGCGTCCGGCGTCGTCGTGCCCGCCGTGCGCGAGCGACTGGCGGCGCTGTCGGCGCAGGACCGTGGCCGTGGCGCCCACGACGAGCGGGTCGCCGCGCAGCGGGAGCGACTGGACCTGCCGCTGCTGCCAACGACGACGATCGGGTCGTTCCCGCAGACGCCGGAGATCCGCCGTGCGCGGTCGGCGTGGGCGAAGGGCGAGCTGGCCGACGACGCGTACACGGCGGCGATGCGCGAAGAGATCGCGAGGGTCGTCGCGCTGCAGGAGGACATCGGCCTGGACGTGCTCGTGCACGGCGAGCCGGAGCGCAACGACATGGTGCAGTACTTCGCGGAGCTGCTGGACGGCTTCGCGACGACGGACCTCGGCTGGGTGCAGTCCTACGGGTCGCGGTGCGTGCGCCCGCCGATCCTGTGGGGTGACGTGACCCGGTCGGCGCCGATGACGGTCGAGTGGACGCGGTACGCGGCGTCGCTGACGTCGAAGCCGGTCAAGGGCATGCTGACGGGGCCGGTGACCATCCTGGCGTGGTCGTTCGTGCGGGACGACCAGCCGCTGGCGGACACGGCCGACCAGGTGGCTCTCGCGCTGCGCGACGAGGTGAGCGACCTCGAGGCCGCGGGGACCGCCGTCGTGCAGGTGGACGAGCCCGCCCTGCGCGAGCTGCTGCCCCTGCGGCGTGCCGACCAGCCGGCGTACCTGGAGTGGTCGGTCGGGGCGTTCCGGCTGGCGACCGCCGGGGCGGCGGCGTCGACCCAGGTGCACACGCACCTGTGCTACTCGGAGTTCGGCGAGGTCATCGGGGCGATCGACGGCCTTGACGCCGACGTGACCTCGATCGAGGCGGCGCGCTCGCGCATGGAGGTCGTGCCGGAGCTGCACGCCGCGGGGTACGCCCGGGGCGTCGGACCGGGTGTGTACGACATCCACTCGCCGCGCGTGCCGTCGCAGCACGAGGTGACCGAGCTGCTCGAGCTGGCCGTCAAGTCGATCGACCCGGCCGTCGTGTGGGTCAACCCGGACTGCGGGCTCAAGACCCGTGGCTACGCCGAGGTGGAGCCGTCGCTGCGGAACCTCGTCGGGGCGGCGCAGGCGGTCCGCACGACGCTCTGAMTTTPFPRGTILGYPRIGRRRELKRAVEARWAGRTDAVDLEVTAGALRRETVQRLVALGLDPDDGSVPGSFSYYDQVLDVVALLGAVPDRFRDLLDAEDGSLDLDGYFTVARGRGEDAPLEMTKWFDTNYHYLVPEISETTPISFADHRIVREYAEAKEAGVTTRPVLVGPVTFLALSKAADDAGADFHPLDRLDDVVAAYAELLRALAAVGAPWVQLDEPVLVSDTVDADPARIDAAITSAYRTLSTDLSPAADDDGLDVTPERPRILVATPFGGLATDGTDGTPARDGLALLAGTDVDAIAIDLVKGAVPTEAVPGLASKTLVAGVVDGHNIWRTDLAARLETLDGLAGLGAGALAVGTSTSLLHVPHDVEDETWEGPAAERAGRTPELRRWLAFADQKVGEVTVLARALADGPDAVRAELDAASAALADRAAASGVVVPAVRERLAALSAQDRGRGAHDERVAAQRERLDLPLLPTTTIGSFPQTPEIRRARSAWAKGELADDAYTAAMREEIARVVALQEDIGLDVLVHGEPERNDMVQYFAELLDGFATTDLGWVQSYGSRCVRPPILWGDVTRSAPMTVEWTRYAASLTSKPVKGMLTGPVTILAWSFVRDDQPLADTADQVALALRDEVSDLEAAGTAVVQVDEPALRELLPLRRADQPAYLEWSVGAFRLATAGAAASTQVHTHLCYSEFGEVIGAIDGLDADVTSIEAARSRMEVVPELHAAGYARGVGPGVYDIHSPRVPSQHEVTELLELAVKSIDPAVVWVNPDCGLKTRGYAEVEPSLRNLVGAAQAVRTTLNANANANANA
AK018_0240542318 kDa heat shock proteinATGGCTACCTACTGGGACCCGTTCCAGGACATGGACCGACTGTTCGGGACGCTCGCCGCCAACACGCGGAACGCGACCGCCATGCCCATGGACCTCTTCCGCGAAGGCGACCACTTCGTCCTCGCCGCCGACATGCCCGGCATCGACCCCGGCAGCATCGACGTCTCCTGCGAGGACCGGACGCTCACCATCCGCGCCGAACGGACGTCACGCTCCGCCGAAGGACAGTGGCTCCTGCGGGAGCGCCCCGCCGGCACCGTCGCCCGCCAGGTCACGCTCGGCCGCGGCCTCGCGCTCGACAAGATCTCCGCGTCCTACGCCGACGGGGTGCTCACCCTCACCATCCCCGTCGCCGAGGAGGCCAAGCCGCGCAAGATCGAGGTCACGCACTCCGGGAGCGAGGCGACCCAGATCGAGGCGTGAMATYWDPFQDMDRLFGTLAANTRNATAMPMDLFREGDHFVLAADMPGIDPGSIDVSCEDRTLTIRAERTSRSAEGQWLLRERPAGTVARQVTLGRGLALDKISASYADGVLTLTIPVAEEAKPRKIEVTHSGSEATQIEAPGPT0014635_6895DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014635-hsp20-K13993NANA
AK018_02406219hypothetical proteinATGAGCGACTTCAAGGTCAACCCGGCACCGCAGAACGACGCCCCCGGCGCGACGCTGGGACGCGTCATCGTCTCGTTCGTCCTGTTCGCGGCCGGTCTGCTGCTCATCGGCATCGGCGCCTCGGGCGGCAGCGACCTCGCGCCGTACATCTTCACCGGTGGCGTCCTGGCGGTGTCGCTGGGCTTCGGTCTCCCGATGATCGGTGCCTCCGAGCGCTGAMSDFKVNPAPQNDAPGATLGRVIVSFVLFAAGLLLIGIGASGGSDLAPYIFTGGVLAVSLGFGLPMIGASERNANANANANA
AK018_02407402hypothetical proteinATGCCTGACCGGCTCCGACGATCGACGGCCGCGGCCGCGCTCGTCCTGATCCCGGCGGGACTCGCCGGGTGCACCGCGACCGACACCCCGCCGGGGGCAGCGGTCGACCAGCGCAGCGACCTCGTCGGGACGTTCGAGCCGGCCGACGGCGGTTTCCAGGTGGTCCTCGACGCGGAGGAGTTCACCGCCACCGACGTCCCTGCCGAGCTGCTGGGCCACGGCGACCCGCAGGACGTCTCCGGTACGTGGAGCATGCCGGACGGGGAAGGGATCTTCCTCGAGGTGAAGGATCCGGGGTCGGGCGAGCTGGTGCAGCAGATCCCCGTCGACGTCGTCGACGTCGACGAGTTGGTGATCGGCGGCGGCGCGGAGGACGCGGTGACGCTGGAGCGCGTGGACTGAMPDRLRRSTAAAALVLIPAGLAGCTATDTPPGAAVDQRSDLVGTFEPADGGFQVVLDAEEFTATDVPAELLGHGDPQDVSGTWSMPDGEGIFLEVKDPGSGELVQQIPVDVVDVDELVIGGGAEDAVTLERVDNANANANANA
AK018_02408564hypothetical proteinGTGACCGCCCACGAGTATCCCGTCGAGGTGCTGCACCTGCTGGTCTCGCCCGAGCACGCCTACTTCGGGCGTCCGCGCGACGGCGCAGCGGACGTGCCGACGTCGGACCGGGACATCGTGGAGGTCGTGGCGGGCCGGGGCATCGTGGGTGACCGGTTCTTCGGCAAGGCCGCCCACATGGACGCGGCCGTGACGCTGTTCGCCGCCGAGGCGCTCGAGGCGATCGCCGACGAGCTGGGCACCGGCCCGCTCGACCCGCTGCTGACACGACGCAACGTGGTGCTGCGTGGCGCCGAGCTGGCGCCGCTGATCGGCGAGGAGGTCGTGCTGCGCTCGGGGGCGGACGAGGTCGCGCTGCACGTCGGCCGCACGGCGAACCCGTGCGTGTGGATGGACCGGATGCTGGCACCGGGTGTGCACGCGGCGATGCGCGGGCGCGGGGGAGTGCGATGCATGCCGGTCACGGACGGGGTGCTGCGGCGCGGCCCGGCGGTGCTGGTCAGTCCGGTGGAGCTCGACCCGGCGCGCGCCGGGCTGGCCGTCCGGCATCCGCGGCTGCCGTAGMTAHEYPVEVLHLLVSPEHAYFGRPRDGAADVPTSDRDIVEVVAGRGIVGDRFFGKAAHMDAAVTLFAAEALEAIADELGTGPLDPLLTRRNVVLRGAELAPLIGEEVVLRSGADEVALHVGRTANPCVWMDRMLAPGVHAAMRGRGGVRCMPVTDGVLRRGPAVLVSPVELDPARAGLAVRHPRLPNANANANANA
AK018_02409510hypothetical proteinGTGGCCTCCCCGCAATCGTTGAGCGACGGCGACCGTCGCCTCGTCGCAGCCTGGGCCGCGGACTGCGCCGAGCGCGTCCTTCCCCTCTTCGAGGCGGAGGCCCCCGACGACGACCGCGTCCGTGACGCCGTCGGACGCACCCGAGCATTCGCCCGCGGAGAGCTCGACACGGCCGGCGAGATCCGCCGTCGGCTCGTCGCCGGCCGGGCCGCCGCACGGTCGGTCGGGCAGGCCGCCGCCGTCGCCCACATGGGGGCACACGCGCTCGGCGCCGCGGCGTACGCCGCGAGAGCCGTCGCCCTCGACCGCTCTCCGGCGGAGGGCAGCGCCGAGGTCGCCTGGCAGCTCGACCGGACGAGCGACCCGGTGCGCGCAGCACTGCGGAAGCTGCCCCCTCTCGGACAGAGCACGTCCGGCCCCCTGGGGCCCGGGTTGCTGGCCTCCGGCGCGCTCGGCGGATACATCCGCGAGATCCAGGCCGCCCTCGCCGAACAGGCGGACGCCCGCTAGMASPQSLSDGDRRLVAAWAADCAERVLPLFEAEAPDDDRVRDAVGRTRAFARGELDTAGEIRRRLVAGRAAARSVGQAAAVAHMGAHALGAAAYAARAVALDRSPAEGSAEVAWQLDRTSDPVRAALRKLPPLGQSTSGPLGPGLLASGALGGYIREIQAALAEQADARNANANANANA
AK018_02410549hypothetical proteinATGTCCGAGCCGCTGCGCCGCGTCCTCGTCGCCGGGTCACCCGGAGCAGGCAAGTCGACGTTCGCCCGGCGGCTCGCCGACACCCTCGACCTGCCGTACACCGAGATCGACGCCCTGCACCACGGGCCGCACTGGACCCCGCGCCCGGAGTTCGTCGACGACGTCCGGGCGCTCGCGGCGTCGGACGCCTGGGTGACCGAGTGGCTGTTCCCGCAGGCCCGGCCTGTGCTGCTCGCCCGCGCTCAGGTGCTGGCGTGGCTCGACCTGCCGACGCCGCAGGTCATGTGGCAGGTCACCCGACGCACGGTGAGTCGCCGGGTGCACCGCACCGAGCTGTGGGCGGGCAACCAGGAGGCGCCCCTGTGGACCGTCCTCACCGAGCCGAACCACATGATCCGGTGGACCTGGCGCACCCGGCACGAGCCGGCCGAGCGCATGGCTGCCGTCCGCCGGGAGATGCCGCACGTCGTCGTCGCGCGGCTGCGCAGCCACCGCGAGGCGGACGCATGGCTGCAGAGCCTCACCCGGCAGGGCCGTCCGAAGGGCTGAMSEPLRRVLVAGSPGAGKSTFARRLADTLDLPYTEIDALHHGPHWTPRPEFVDDVRALAASDAWVTEWLFPQARPVLLARAQVLAWLDLPTPQVMWQVTRRTVSRRVHRTELWAGNQEAPLWTVLTEPNHMIRWTWRTRHEPAERMAAVRREMPHVVVARLRSHREADAWLQSLTRQGRPKGNANANANANA
AK018_02411420mutT2_1COG0494Putative 8-oxo-dGTP diphosphatase 2ATGACCCGTCGCCTCGTCGTCGCCGCCGCGATCGTCGACACCCTGGAACGTCCCGGACGGCTGCTCGCCGCCCGCCGGTCCAGGCCAGAAGCCATCGCCGGCCGCTGGGAGTTCCCCGGCGGCAAGGCCGAACCGGGTGAGCAACCCGTCGACGCGCTGCACCGCGAGCTGAGCGAGGAGCTCGGCGTGACGGTCACGCTCGGCGACGAGCTGTCCGGTCCGGACGACGGCGGCTGGATCATCACCGACCGGCACGTGCTGCGGCTGTGGTTCGCCACGGTCCTCTCGGGCGTGCCGCAACCCTTGGTCGAGCACGACGCGCTGCAGTGGCTCGACGCGTCCTCGCTGTGGGACGTCGACTGGCTCGACGGTGACGTCCGCATCGTCGAGGCGCTCGCCCACGACCTCCCGCCGAGGTAGMTRRLVVAAAIVDTLERPGRLLAARRSRPEAIAGRWEFPGGKAEPGEQPVDALHRELSEELGVTVTLGDELSGPDDGGWIITDRHVLRLWFATVLSGVPQPLVEHDALQWLDASSLWDVDWLDGDVRIVEALAHDLPPRPGPT0009110_1DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009110-thiQ-K02062NANA
AK018_02412234malT_4HTH-type transcriptional regulator MalTATGAGTGCAATCGAGATGGACCGGCCCATGATCAACCCGGGCCTGACGCGGCGTGAGCAGGTCGTGCTCTCCAACCTGTCCGAGGACGTCACCCTCGAGCAGATCGCGAGCAAGCTGTTCGTCACGCGCAACACGGTGAAGTCTCAGGTGCGCAGCGTCTACCGCAAGCTCGGGGTCTCGACCCGGGCCGACGCCGTCGCCTGGGCCCAGGAGGCCGGTTTCCGCCGGATCTGAMSAIEMDRPMINPGLTRREQVVLSNLSEDVTLEQIASKLFVTRNTVKSQVRSVYRKLGVSTRADAVAWAQEAGFRRIPGPT0025270_49DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-SPORULATION_REGULATION,PGPT0025270-gerE-K01994NANA
AK018_02413108hypothetical proteinATGACGCGGGTCACGCAGAAGAACCACACCGGAGGCGCGTCACGGCACCTCCGAGCGACGGAGCGGTCCCTCGACCGCGCCGCGTCGTCGCAGGTCAGCGCGGCATGAMTRVTQKNHTGGASRHLRATERSLDRAASSQVSAANANANANANA
AK018_02414369gcvH_1COG0509Glycine cleavage system H proteinATGGCCGACTTCCCCGCGAACCTGCGCTACTCCGTCGAGCACGAGTGGATCGACGACGCGAGCCCCGCCACCGTGGGCGTGACGTCCCACGCCGTCGAGGCGCTCGGCGACGTCGTCTACCTGGAGCTGCCCGAGGTGGGCGCCACCGTCGAGGCGGGCACCGTCATCGGCGAGATCGAGTCCACCAAGTCCGTCTCGGAGCTGTTCTCCCCGGTCTCCGGGACCGTCGTCGAGGTCAACCAGGCCGCGATCGACGACCCCGCGCTGGTCAACTCCGAGCCCTTCGGGGCGGGGTGGCTCTTCAAGGTCGACGTGACCGGCGAGGGGCAGCTGCTGAGCGCCGAGGAGTACGCGCAGCACGTCGGCTGAMADFPANLRYSVEHEWIDDASPATVGVTSHAVEALGDVVYLELPEVGATVEAGTVIGEIESTKSVSELFSPVSGTVVEVNQAAIDDPALVNSEPFGAGWLFKVDVTGEGQLLSAEEYAQHVGNANANANANA
AK018_024151161gcvT_1COG0404AminomethyltransferaseATGACCACGACGAAGTCCCCGCTGCACGCCGAGCACGTCGCGCTCGGCGCGCACCTGACCGAGTTCGGCGGGTGGGACATGCCGCTGCGGTACAGCTCGGACATCGCCGAGCACCGGGCCGTCCGCGAGGCGGCCGGGCTGTTCGACCTGTCCCACATGGGCGGGGTCAGCATCACCGGGCCGGAGGCCGGCGCGTTCCTGGACCACGCGCTGGTCGGCAACCTGTCCGCGCTGCGCGAGATGCGTGCCCGCTACACCATGATCTGCGCCGACGACGGGGGAGTGCTGGACGACCTGATCGTCTACCACAACGCCCCCGGTGAGTACTTCCTCGTGTCCAACGCGGCCAACGCCGACACCGTGCTCGTCGCGCTGCTGGAGCGCGCGGCCGGCTTCGACGTGGCCGTCCGCGACATCTCCGCCGGCCAGGCCCTGATCGCCGTGCAGGGCCCGCGCGCCGAGGAGATCCTGCGGGAGGTCCTGACGGAGGATCCCGAGATCTCCGGCGGCACCGCCCTGGACGACCTGCGGTACTACGCGTGCCTGGGGATGCGGTTCGGCGACGAGAGCGTGCTCGTCGCCCGCACCGGCTACACCGGCGAGGACGGGTTCGAGGTCTGGGTGGACGTGCCCCACGCCGTCCCGCTGTGGCGGGCGTTCCTCGCCGCGGGGGAGCCGCACGGGCTCGTCCCCGCCGGGCTGTCCGCCCGCGACTCCCTGCGCCTCGAGGCCGGCATGCCGCTCTACGGCCACGAGCTGGACACCACCACCACGCCGTTCGACGCCGGCATGGGACGCATCGTCAAGCTCGACAAGACGCACGACGACGGCACCCCGGTCGAGTTCGTGGGCCGCGCCGCGCTGGCCGCCCGCCGGGAGAGCGCCCCGGCCCGGGTGCTGGTGGGCCTGCGCGGCACCGGGCGACGCCCTGCCCGCGCCGGGTACGCCGTCGTGCAGCCCGACGCCGACGGCGCCCCGGGCCCGCAGGTGGGTACCGTCACCTCGGGGGCGCCGTCGCCGACGCTCGGGCACCCCGTCGCGATGGCGTACGTGACGCCCGAGGTCTCCGCGGAGGGGACCGAGCTGGCCGTCGACGTGCGCGGACGGGCCGAACCGTTCGTCGTCGTCCCCCTGCCGTTCTACCGCCGCGCCGACGCGTAGMTTTKSPLHAEHVALGAHLTEFGGWDMPLRYSSDIAEHRAVREAAGLFDLSHMGGVSITGPEAGAFLDHALVGNLSALREMRARYTMICADDGGVLDDLIVYHNAPGEYFLVSNAANADTVLVALLERAAGFDVAVRDISAGQALIAVQGPRAEEILREVLTEDPEISGGTALDDLRYYACLGMRFGDESVLVARTGYTGEDGFEVWVDVPHAVPLWRAFLAAGEPHGLVPAGLSARDSLRLEAGMPLYGHELDTTTTPFDAGMGRIVKLDKTHDDGTPVEFVGRAALAARRESAPARVLVGLRGTGRRPARAGYAVVQPDADGAPGPQVGTVTSGAPSPTLGHPVAMAYVTPEVSAEGTELAVDVRGRAEPFVVVPLPFYRRADAPGPT0008130_951DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605NANA
AK018_024162895gcvP_1COG0403putative glycine dehydrogenase (decarboxylating)GTGACCCACTCCCCCGCCGACCCCGACGTCTTCGCCGACCGGCACATCGGCCCGCGCGGGTCCGAGACCGCCACGATGCTGGACCGCCTCGGGCACGACTCCCTCGACTCCCTGGTGGACGCCGCCGTCCCGGCGGCGATCCGCCAGACCGCTCCCCTCGACCTGCCGGCCGCACGCACGGAGGCCGAGGTGCTCGCGCACCTGCGTGAGATGGCGGCGGAGAACCAGGTCAAGCGCCAGATGATCGGCCAGGGCTACTACCCCACCGTGACCCCGGCCGTGATCCGCCGCAACGTGCTGGAGTCCCCCGCCTGGTACACCGCGTACACCCCGTACCAGCCGGAGATCTCCCAGGGCCGGCTCGAGGCGCTGCTGAACTTCCAGCAGGTGGTCGAGGACCTCACCGGGCTGGAGATCGCCGGGGCGTCGCTCCTCGACGAGGCCACCGCCGTCGCGGAGGCCGTCGCGCTGATGTGGCGGGCCTCGCGGGCGAGGTCCGGCTACGTGGTGCTCGACGCCGACCTGTTCGGCCAGTCGCTCGAGGTCACCCGGGGCCGCGCCCGGGCCGTCGGCCTGCCGGTCGTGGTCGTGGACCTGAGCGAGGGGCTGGACGCGGCGCTGGGTCGGCTGGAGTCCGAGGGCGCGCTGCCGGAGGGCTCGCTGGTGGGCGTGGTGGCCCAGCAGGCGGGCGCCTCCGGCCGGGTCCTGGACCTGCGGGCGGTGGTCGCGGAGGCGAAGGAGCGCGGCGCCCTGGTCACAGTGGCGACCGACCCCCTGGCCCTGACGATGCTGGTCTCCCCCGGTGAGCTGGGCGCCGACGTGGCCGTCGGGTCGGCCCAGCGGTTCGGCGTGCCGCTGTTCTACGGCGGCCCGCACGCCGCCTACGTGGCCGTCCGCAAGGGTCTGGAGCGCCAGCTGCCCGGCCGGCTCGTCGGCGTCTCGGTCGACGCCGACGGCGAGATCGGCTACCGCCTGGCGCTCTCGACGCGCGAGCAGCACATCCGGCGCGAGCGCGCGACGTCGAACATCTGCACCGCGCAGGCGCTGCTGGCCGTGGTCGCCTCCATGTACGCCGTCTACCACGGCCCGGAGGGGCTGCGGGCGATCGGCGAGCGCGTGCACGGCCGGGCCGTCGCGCTGGCGACGGGTCTGCGGGCGGCCGGGGTGCAGGTCGAGCACGAGATGTTCTTCGACACGGTCCGGGTGGTGGTGCCGGGCCGCGGTGCTGCCGTCGGTGCCGCGGCGGCCGCCGCGGGGTACAACCTGTACGTCCCGGACGCCGACCATGTACAGATCTCCTGCGACGAGACGACGACCGAGGACGACGTCGCGGCGGTCCTGGGCCTGCTGGACGCCGCACCGGCGGACGCCGCGGAGGACCTGGGGGTCGGGGACGCGCTGCTGCGCTCCACGGGGTACCTGGAGCACCCGGTCTTCCACCGGCACCGCTCGGAGACGGCGATGCTGCGCTACCTGCGTGCGCTGAGCGACAAGGACCTGGCGCTGGACCGGACCATGATCCCGCTCGGGTCGTGCACGATGAAGCTGAACTCCGCCGTCGAGATGGAGCCGATCAGCTGGCCCGGCTTCGCCGACCTGCACCCGTACGTGCCCGCCGACCAGGCACGGGGCTACGCCCGGCTCGTCGACACCCTGGAGTCCTGGCTCGCGGAGATCACCGGGTACGCCGCCGTCTCGGTGCAGCCGAACGCCGGGTCGCAGGGCGAGCTCGCGGGCCTGCTGGCGATCCGCTCCTACCACTCCTCCCGCGGCGACGAGCAGCGCGACGTCGTGCTCATCCCTGCCTCGGCGCACGGGACCAACGCGGCGTCCGCGACCCTCGCAGGGTTGCGCGCCGTCGTCGTCGCCACCGCCGAGGACGGCGAGATCGACCTCGGCGACCTGCACGCGAAGCTCGACCAGCACGGCGACCGGGTGGCCGGGATCATGATCACCTACCCGTCCACCCACGGCGTCTACGAACCGCACGTCCAGGACGTGTGCGCCGCCGTACATGACGCCGGTGGGCAGGTGTACATCGACGGGGCGAACCTCAACGCCCTTGTCGGCCTGGCCCGCCCGGGCCGGTTCGGCGGCGACGTGTCGCACCTGAACCTGCACAAGACGTTCTGCATCCCGCACGGCGGGGGAGGGCCCGGCGTCGGCCCCGTCGCCGTCGCCGAGCACCTCGCACCGTTCCTCCCGGGCGACCCCACGCCGTCGGCCACCCCGGGCGCGGACGGGCCCGCCGCCGTCGCCCCGGTGTCCGCGACGCGCCACGGGTCCGCGGGGATCCTGCCCATCTCGTACGCCTACCTGGCGCTCATGGGCCCCGACGGGCTGACGAGCGCGACCGAGCACGCCGTGCTCACCGCCAACTACGTGGCCGCCCGCCTGGCCCCGCACTACCCGGTGCTGTACACGGGTGAGGCGGGCCTGGTCGCCCACGAGTGCATCCTCGACCTGCGTCCCCTCACCGCCGAGACCGGCGTGACCGTCGACGACGTCGCCAAGCGGCTCATCGACTACGGCTTCCACGCCCCCACGATGGCGTTCCCGGTGCCCGGCACCCTCATGGTCGAGCCCACCGAGTCCGAGGACCTGGGCGAGCTCGACCGGTTCGTGGACGCGATGATCGCCATCCGGCGCGAGATCGACGACGTCGCCGCCGGACGGTGGTCGATCGACGACTCGCCGCTGCGCAACGCGCCGCACACCGCCGCGTCGGTCATGGTGGAGGACTGGGACCGCCCGTACACCCGCGAGCAGGCGGCGTTCCCCGCGCCCGGGCTGCGTGCGGCGAAGTACTGGCCGCCGGTGCGCCGCATCGACCAGGCGCACGGCGACCGCAACCTGCAGTGCTCCTGCCCGCCCGTCTCCGCCTACGCCGACTGAMTHSPADPDVFADRHIGPRGSETATMLDRLGHDSLDSLVDAAVPAAIRQTAPLDLPAARTEAEVLAHLREMAAENQVKRQMIGQGYYPTVTPAVIRRNVLESPAWYTAYTPYQPEISQGRLEALLNFQQVVEDLTGLEIAGASLLDEATAVAEAVALMWRASRARSGYVVLDADLFGQSLEVTRGRARAVGLPVVVVDLSEGLDAALGRLESEGALPEGSLVGVVAQQAGASGRVLDLRAVVAEAKERGALVTVATDPLALTMLVSPGELGADVAVGSAQRFGVPLFYGGPHAAYVAVRKGLERQLPGRLVGVSVDADGEIGYRLALSTREQHIRRERATSNICTAQALLAVVASMYAVYHGPEGLRAIGERVHGRAVALATGLRAAGVQVEHEMFFDTVRVVVPGRGAAVGAAAAAAGYNLYVPDADHVQISCDETTTEDDVAAVLGLLDAAPADAAEDLGVGDALLRSTGYLEHPVFHRHRSETAMLRYLRALSDKDLALDRTMIPLGSCTMKLNSAVEMEPISWPGFADLHPYVPADQARGYARLVDTLESWLAEITGYAAVSVQPNAGSQGELAGLLAIRSYHSSRGDEQRDVVLIPASAHGTNAASATLAGLRAVVVATAEDGEIDLGDLHAKLDQHGDRVAGIMITYPSTHGVYEPHVQDVCAAVHDAGGQVYIDGANLNALVGLARPGRFGGDVSHLNLHKTFCIPHGGGGPGVGPVAVAEHLAPFLPGDPTPSATPGADGPAAVAPVSATRHGSAGILPISYAYLALMGPDGLTSATEHAVLTANYVAARLAPHYPVLYTGEAGLVAHECILDLRPLTAETGVTVDDVAKRLIDYGFHAPTMAFPVPGTLMVEPTESEDLGELDRFVDAMIAIRREIDDVAAGRWSIDDSPLRNAPHTAASVMVEDWDRPYTREQAAFPAPGLRAAKYWPPVRRIDQAHGDRNLQCSCPPVSAYADPGPT0020480_1864DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020480-gcvP-K00281NANA
AK018_02418810oxyR_1Hydrogen peroxide-inducible genes activatorGTGTCCCAGCAGATCGCTCGGCTGGAGGCCGAGGAGGGCTTCCCGGTGCTCGACCGCGGCCCCCGGGGGGTCAGCCTCACGCCCGCCGGCAGGGTCCTCGCCGACGTGGCCGAACGCATCGAGGCCGAGCTGGTCGAGGCCCGCCAGGAGATCGCCAACCTCGGCGAGGGCATCTCGGGCACCGTGCGCATCGGTTCGTTCCAGTCCGCGATCCGCGCCGTCGTGGCCCCCCTGCTCGCACCCCTCGCCGAGGAGCACCCGGGCCTCGTCCTCGACGTGCGCGAGCACGAGCCCGCCGAGGCCGTCCGCATGCTGCGCGCGGGCGACCTCGACGCCGTCCTGCTGGAACGGGACGTCGACGTCGACGCGCCGGCACCCCGCGGCCAGCACGACGTCCCCCTCCTCGACGAGCCGTGGCGCCTGCTCGTCCCCCACTCCCTGCCCACTCCCGAGCGGCTCGACGACCTGCGGGACCTGCCGTGGATCGGCGCGCTGCGGGGCACGGCATCGGACCGTGCGCTGCGACGCCTGGGCCGCACGCTCGGCACCGACCTGGCGATGCGCCACGCCTACTTCGACTTCGACACGGCGCTCGCGCTCGTGGCCGCCGGTCAGGGCGTCGCCATGCTGCCGGCGCTCGCCATCGAGCGCAGCACCGTCCCCGAGGGCGCCGACGTCGTGGCGATGACCGGCCTGGGGTCCCGGCGCATCGTGGTCCGCCACCGGGCCACCCGGCACGAGCCGGGACCCGCCGTGCGCGCTGTGGTCGACGCGATGCTCGACGTCACCCGTGACTTCGACCTCGCGTGAMSQQIARLEAEEGFPVLDRGPRGVSLTPAGRVLADVAERIEAELVEARQEIANLGEGISGTVRIGSFQSAIRAVVAPLLAPLAEEHPGLVLDVREHEPAEAVRMLRAGDLDAVLLERDVDVDAPAPRGQHDVPLLDEPWRLLVPHSLPTPERLDDLRDLPWIGALRGTASDRALRRLGRTLGTDLAMRHAYFDFDTALALVAAGQGVAMLPALAIERSTVPEGADVVAMTGLGSRRIVVRHRATRHEPGPAVRAVVDAMLDVTRDFDLANANANANANA
AK018_02419399hypothetical proteinATGTCGCACGCCCTGATGTTCGTGATCACTGCTCTGGGATGGGTCGGCGCGCTGGTGGGTCTTGTCGCCTATGCGATGGTCTCCCAGGGTCGCTGGTCGCCCAACTCGATGCAGTTCCAGCTCGCCAACCTGTGCGCGACCTCGCTGATGTTCCTCGTCGCGGCGGTCAACGGCGTGTGGCCGTCCGTCGCGGCGAACATCGCCTGGATGGTCATCGGCGCCCAGGCGCTCCTGGTCATCGCCAAGGCCCGGCGGAACGCCCGGCCGCGCCTGCGCCCGGTGCACCTGCCGCTCGTCGAGTCGCCGCTGCCCGGCATGACCGCCCCGGTCGTCGAGCACCGCGACGTGCGTCCGGCCGCCGCGCACGCCGACCTGCGCGTCGTCGCCGGGCTGCGCTGAMSHALMFVITALGWVGALVGLVAYAMVSQGRWSPNSMQFQLANLCATSLMFLVAAVNGVWPSVAANIAWMVIGAQALLVIAKARRNARPRLRPVHLPLVESPLPGMTAPVVEHRDVRPAAAHADLRVVAGLRNANANANANA
AK018_024201170aspC_1COG0436Aspartate aminotransferaseATGAAGGTCTCGCGCCGCAGCCAGGTTCCGCCGTTCGCCGTCATGGAGGTGCTCGCCGCGGCGAACGCCCGCCGTGCCGCCGGGCACGACGTGCTCAGCCTCTGCGCGGGCGAACCGTCCACCGGGGCGTCCGACGTCGTGCGCGAACGGGCCGCCGAGCTGCTGCGCACCGGCGACCTCGGGTACACCGAGGCGCGCGGCGTCCCCGCGCTGCGCGCGCAGATCGCCGACCACTACCGGCGGTGGTACGACGTCGAGGTCGACCCGGGTCGTATCGCCGTCACCACCGGGTCCAGCGGCGGGTTCGTGCTGACGTTCCTCGCGGCGTTCGACGTCGGTGACCGCGTCGCGCTCGCCCGCCCCGGCTACCCGGCGTACAAGAACATCCTGGCGGCGCTGGGCTGCGAGGTCGTCGAGCTCGACTGCGGGCCGGAGACCCGGTACCAGCCGACCGTTCCGCAGCTCATGGAGGCCTACTACGGCGGCGGGCTGGACGGCCTGATTGTGGCCTCCCCCGCCAACCCGACCGGCACGATGATCCCGCCGGCGGAGCTGGAGGCGCTGACCGCCTGGTGCTTCGAGCACGACGTCCGCCTCGTCAGCGACGAGATCTACCACGGCATCGCGTACGGCGACGACGTCGCCCAGGCGACCGCGGCGTCGTCCACCGACCGGGGCGCCGTCGTCGTGAACTCGTTCTCGAAGTACTGGGCGATGACGGGATGGCGGCTGGGCTGGCTGGTGCTGCCCGACGACCTGGTCGCCCCGGTGGATGCGCTGGCCGGCAACGTGGCCCTCTCTCCCCCGGCGCTGGCGCAGCACGCGGGGATCGCGGCCTTCTCCGCCGAGGCCTACCGTGCGGCGGCCGACAACGTGGCCCGCTACGCCACGTCGCGCGCCGCGCTCCTCGACCGGCTCGACGAGCTGGGCTGGCGCCCGGTCGCACCAGCCGACGGGGCGTTCTACCTGTACGGCAACATCGCGTCGACCGGCCTGGACGCGGTGACGTACTGCGCCCGGCTGCTGGCCGAGGCGGACGTCGCCGTGACGCCGGGCACGGACTTCGACGGCGAGCGCGGCCGGGACTGGGTGCGCCTGTCGTTCGCGGCGGCGCCCGACGTCGTCACCCGGGCCGTGGACCGGATCGTGGCCTGGCAGCGGACCCTGTAGMKVSRRSQVPPFAVMEVLAAANARRAAGHDVLSLCAGEPSTGASDVVRERAAELLRTGDLGYTEARGVPALRAQIADHYRRWYDVEVDPGRIAVTTGSSGGFVLTFLAAFDVGDRVALARPGYPAYKNILAALGCEVVELDCGPETRYQPTVPQLMEAYYGGGLDGLIVASPANPTGTMIPPAELEALTAWCFEHDVRLVSDEIYHGIAYGDDVAQATAASSTDRGAVVVNSFSKYWAMTGWRLGWLVLPDDLVAPVDALAGNVALSPPALAQHAGIAAFSAEAYRAAADNVARYATSRAALLDRLDELGWRPVAPADGAFYLYGNIASTGLDAVTYCARLLAEADVAVTPGTDFDGERGRDWVRLSFAAAPDVVTRAVDRIVAWQRTLNANANANANA
AK018_024211545hypothetical proteinATGCTGCTCACCAGGGAGATCGCGGCGGTGCCGGGTGACCACGACGCCGTCACGGAGGACCTGCGCGTGCCTCTGGACGAGGTCGCCGTCGAGCATCACGAGGACCTCCGGGCGACGACGGCGCTCGGCCAGGTCGACGACGGCCTGGACGAGGTGGCTGCGCTCCAGGCGCAGATCGACTCCCTCGAGGCCCTCAAGCTGCTCGCCGTCGATCGGGTGCGGCGGACCGCGACCGCCCACGTCCCCGAGCTGCTCGACGAGGCCGACCGCGAGGTCGCCCGCGCCGGCACCTCGCGGCGGTTCCAGCTCGCCCTGCGCGCCCTGGTCGCCGACGTCGCGACCACCCTGCGGATCACGGAACGGGAGGCCGGCCATCTGGTGGACACCGCGGGCACCCTGTGCCGGTCCGCCCCCGAGGCCGTCGACGCCCTGCACGGCGGGCGGCTCTCCCTGCGCCACGCGACGATGCTCGCCGACACCCTCGCCGACCTGCCGGACGACGTCCGACGTCCCGTCCTGCGCGAGTCCCTGGCCGGAGCCGGGTGCGACACCCCCACCCAGTTCCGTCGCCGCCTCCGCCGAGCCCGCGACCGCGCCCATCCCGTCGCTGCGGACGAGCGGCACCCTGACGCCCGGAAGCGCCGCGACGTCTACGTCGACCCGGCCGCCGACGGGATGGCATGGCTCAGCGCGCTCCTCCCGGCGACGGGCGCGCACGCCGCCGCCGACCGCCTCCACCGTGCGGCACGGGCCGCCCGGGAGGCGGGGGACGACCGGACGACAGGACAGCTGCGGGCCGACGCCCTGCTCGACCTGCTGACGGCCCCGCAGCGATCTGCCGCTGCACCCTCGCCGAGGCCGTCGAGCAGTTCGCACGGCACGGCGCACCCGGCCCCCGGACCGACGGCACGAGGCCACGCCGCACCCGACCCGGGCGCAGCCGAGCACGCGTCCTCGGCCGACGCCACCTCCTCGGGCGGACGACCGGACCACCCCGTACCCGACCTGGCGGATCTCGCCCGCCGGATCGTCCCGCGGGTCCAGGTCACCGTCCCGGTGCTCGCGCTGGCTGGTCGCGACGACCTCCCGGCCGAGCTCGACGGCCACGGCCCGATCGACGGCGAGACCGCAGCGCTCCTGACCGCCCGAGCACCGTCGTTGCGGCGGATCCTCGTCGACCCGGTGGACGGGTCGGTCCTGACCACCGACGCGACGACCTACGCCGTGCCCGCCGCGCTGCGTGCGCTGCTGCGCGCCAGGGACGGAACCTGCCGGTTCCCGGGATGCACCCGGTCCGCGGAACGCAGCGACCTCGACCACACCCGCGCCTGGCAGGACGGCGGGACCACCGGTGCGGCGAACCTCGCCCACCTGTGCCGCCACCACCACGTCCTGAAGCACCAGACCCGGTGGAACGTCCGACAGGCCGGCCCGGACCATCCGCCGGGCACCCTGACCTGGACGTCGCCGACCGGCCGCCGGCACGTGACGCGGCCCGCGAGCGGCCTGGACCTCTCGCGCCCACCTGGCGACCCCCCGTTCTGAMLLTREIAAVPGDHDAVTEDLRVPLDEVAVEHHEDLRATTALGQVDDGLDEVAALQAQIDSLEALKLLAVDRVRRTATAHVPELLDEADREVARAGTSRRFQLALRALVADVATTLRITEREAGHLVDTAGTLCRSAPEAVDALHGGRLSLRHATMLADTLADLPDDVRRPVLRESLAGAGCDTPTQFRRRLRRARDRAHPVAADERHPDARKRRDVYVDPAADGMAWLSALLPATGAHAAADRLHRAARAAREAGDDRTTGQLRADALLDLLTAPQRSAAAPSPRPSSSSHGTAHPAPGPTARGHAAPDPGAAEHASSADATSSGGRPDHPVPDLADLARRIVPRVQVTVPVLALAGRDDLPAELDGHGPIDGETAALLTARAPSLRRILVDPVDGSVLTTDATTYAVPAALRALLRARDGTCRFPGCTRSAERSDLDHTRAWQDGGTTGAANLAHLCRHHHVLKHQTRWNVRQAGPDHPPGTLTWTSPTGRRHVTRPASGLDLSRPPGDPPFNANANANANA
AK018_024221020hypothetical proteinGTGCTGCCCGGGTTCGAGCGCCGCACCCTGCCGCTGGCTCCGGACTTCGAGGGCGAGGTCGTGGCGACGCTGGTGCGCCGCCGTCGCGACGAGCCGTTGCCGCACGACGCCGGGGTGGACGTGCTCTACGTGCACGGCTGGACGGACTACTTCTTCCAGACCCATCTGGCCGACTTCTGGGAAGGGCTCGGCGTCCGCTTCCACGCGCTGGACCTGCGCAAGTACGGCCGCAGCATCCGACCGCACCACACGCCCGGCTTCATCACGCGCCTGGAGACCTACGACGAGGATCTCGAGGCGGCGCTGGCGCAGATCGGGCACGGGGAGTCCGACCGTCCCACGCGCGGGCTGGTCCTCATGGGGCACTCCACCGGCGGTCTGGTGCTCAGCCTGTGGACGGACCGTCACCCGGGACGGGCCGACGCGCTGGTCCTGAACAGTCCCTGGCTCGAGTTCCAGACGCGGAAGGTGGGACGGCGCGTGCTCGAGCCGAGCGTGCGCGCCCAGGCGGCGCTGGCCCCGCGCAGCCAGCTCGTGAACGTGGACCTGGGTTACTACGTGCGTGCCGTGTCCTCGCGGCAGGACGGCTCCTGGGAGCTGGACCCCGCCTGGCACCCCGACGAGGGGTGGCGCGCGACACCGGCCTGGCTGGCCGCGATCTTCGACGGGCACGAGCAGGTCGCGCGCGGGCTGAGCATCGACGTCCCGGTCCTCGTGCTGCTGTCGGCACGGTCGACGCCGCCGGTGCGGTGGAGCGAGGACATGCACCGCACGGACAGCGTCCTCGACGTCGAGGGGGTCGCGCGGCGCACGATGCGGCTCGGCCGGCTCGTGACGCTCGCCCGGGTCGAGGGTGCCCTGCACGACGTGACGCTCTCGGCACCCGAGGTGCGCGACGTGGTCTGGCAGGAGATGCGCCGGTGGGTCCGCACCTACGCCCCGCTGCGCGCCCCGGAGCCCGAGCCCGCGGCGCCGACCGCACCGGTGCGCGGCTGGCGTCGCTGGTTCGGTCGGTCGTAGMLPGFERRTLPLAPDFEGEVVATLVRRRRDEPLPHDAGVDVLYVHGWTDYFFQTHLADFWEGLGVRFHALDLRKYGRSIRPHHTPGFITRLETYDEDLEAALAQIGHGESDRPTRGLVLMGHSTGGLVLSLWTDRHPGRADALVLNSPWLEFQTRKVGRRVLEPSVRAQAALAPRSQLVNVDLGYYVRAVSSRQDGSWELDPAWHPDEGWRATPAWLAAIFDGHEQVARGLSIDVPVLVLLSARSTPPVRWSEDMHRTDSVLDVEGVARRTMRLGRLVTLARVEGALHDVTLSAPEVRDVVWQEMRRWVRTYAPLRAPEPEPAAPTAPVRGWRRWFGRSNANANANANA
AK018_02423522ptpA_1COG0394putative low molecular weight protein-tyrosine-phosphataseGTGACTGCTGAGACCTTCCGCGTGATGACCGTCTGTACCGGGAACATCTGCCGCTCCCCCATGGCCGAGGTGGTGCTGCGCGACCGCTTCGAGGCCGCCGGTCTCGGCGACCGGGTGGAGATCGACTCCACCGGCATCAGCGACGAGGAGCACGGCAACCCCGTCGACCCCCGGGCGCGGCGCGTGCTGGCCGCGCACGGCTACCCCGTCGGCGAGGGCCACCACGCCCGCCAGGTCCGGGCGGACCAGCTCGGTGAGCGGGACCTGGTGCTGGCCATGACCGCGCGGCACGCCCAGGTGCTGCGGCGACTGGCGAACGGTACAGAGACGGACATCCGGATGTACAGGTCGTTCGACCCGGACGCCCCGCCGGTGCCGGCGGGCGCCGGCGAGGCCGTCCTCGACGTGGACGACCCCTGGTACGGCGACGAGGACGGGTTCGAGACCACGATCGCGGAGATCGAGGCCGCCGCGGACGCCGTCGTGGCGCACGTGCGCGCCCGGCTGGGCGACGCGGGCTGAMTAETFRVMTVCTGNICRSPMAEVVLRDRFEAAGLGDRVEIDSTGISDEEHGNPVDPRARRVLAAHGYPVGEGHHARQVRADQLGERDLVLAMTARHAQVLRRLANGTETDIRMYRSFDPDAPPVPAGAGEAVLDVDDPWYGDEDGFETTIAEIEAAADAVVAHVRARLGDAGPGPT0014530_4277DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
AK018_02424927qorBCOG0702Quinone oxidoreductase 2ATGACGTGGTCTGCCGACGGACTCATCGCGGTCACCGGCGCCTCGGGGCGCCTCGGCTCGCGCCTCGCGTTCCGCCTGGCCGCCGAGGGTGCGCACCAGCGCCTGGTGGTCCGGGACCCGGAGCGGGCGCCTCGGCTCGACGACGGCCGCCCGCTGCCGGAGTGCGAGGTCGTGCAGTCGGCGGGCTACGCCGACCACGCCGCCATGCGCGCCGCGTTCGAGGGCACGCGGACGGCGTTCCTGGTCAGCGCCCGCGAGTCCACCGACCGGGTCGCCGAGCACGTGGCCGCGATCGACGCGGCGGTCGAGGCCGGCGTCGAGCGGGTCGTCTACGTGTCGTTCGTGGGGGCGGCGCCGGACGCGACCTTCACCTTCGCGCGCGACCACTTCCACACCGAGGAGCACCTGCGGCACGCCGGGGTCCGCTGGACGGTGCTGCGCGACAACCTCTACCACCAGGCGCTGGCGTCGTTCGTGGGGCCCGACGGCGTCATCCGCGGTCCGGCGGGGGACGGGCGCGTCGCGTCGGTCTCGCACGACGACGTCGCCGACGTCGCCACCGCCGTCCTGCTCGACGAGAACCCCACCCGCCACGACGGCGTCGTCTACGACGTGACCGGCCCCGAGGCCGCCACGCTCACGGAGGTCGCCGCCCGGCTGACGCTCGCCACGGGCCGGCAGATCACGTACCACGCGGAGTCGGTGTCGGAGGCGTACGCCTCGCGCGCCCACCTCGGCGCGTCGGCCGTCGAGCTGGCCGGCTGGGTGTCCTCCTACGAGGCCATCGCGACCGGGGAGATGGCGCACGTGTCGCACGACGTCGAACGGCTCGTCGGCCGTCCGGCCCGGTCCCTGACGCAGTGGCTGGACGACTACCCCCGCGAGTGGGCGCACCTGCTGCCGCCCGAGGACCGGCGCGAGCCGTAAMTWSADGLIAVTGASGRLGSRLAFRLAAEGAHQRLVVRDPERAPRLDDGRPLPECEVVQSAGYADHAAMRAAFEGTRTAFLVSARESTDRVAEHVAAIDAAVEAGVERVVYVSFVGAAPDATFTFARDHFHTEEHLRHAGVRWTVLRDNLYHQALASFVGPDGVIRGPAGDGRVASVSHDDVADVATAVLLDENPTRHDGVVYDVTGPEAATLTEVAARLTLATGRQITYHAESVSEAYASRAHLGASAVELAGWVSSYEAIATGEMAHVSHDVERLVGRPARSLTQWLDDYPREWAHLLPPEDRREPPGPT0009465_97DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009465-qorB-K19267NANA
AK018_02425657hypothetical proteinGTGGAACGCAACGACGCGAGGATCCGAAGCCATCGACGTGCGGCAGCAGCGGGGGTCGGGGCGCTGCTCGCCGGCCTCCTGACCGGGTGCGCGGGCACCGACCAGCCGGGCGACTCCCCGGGCTCCGCCGCACCGGCGTCGGCCGAGACCGCCCCGGGCGCGGCCCCCGCCGTCGACTCCGACTGCGTGCAGGGAGTCGTCGTGGACTGGCAGGGCCCGGGCACCACCGAGGACGTCTACACCGCCGTCAAGGTCGCCCGGGTGGGCGGCGACGGCGCCGTGAGCGTCAAGCACGAGTGGGAACGCAACGAGCAGGCCGGCGCGAGCACCGGCTCCGGGGTCAGCGGCGCCCAGCAGGCGATGGTCGACGACGCCGTCGTCGGCGGGCTCGTCGCCGCCGACCCGGCGCCCCGCCTCGCCGACGCCGCCGAGCTCCTCGACGGCCGCGACCAGGGCAAGTACATCCTGTACGCGTACGCGCGGCACTCGACCCGGTCCGGCACGGTGTCGTGCGCCGGCGGCGGGGAGTCGGTGGGGGTGACCGTGGTCGACTTCGACACCCTGCAGACGGGTGCCGTGAGCTGCGCCGACTCCCCCGACCCGGTGACCGAGTTCGCGGCCGCGGAGGCGATCAGCACCTGGTGCGACCGGGGCTGAMERNDARIRSHRRAAAAGVGALLAGLLTGCAGTDQPGDSPGSAAPASAETAPGAAPAVDSDCVQGVVVDWQGPGTTEDVYTAVKVARVGGDGAVSVKHEWERNEQAGASTGSGVSGAQQAMVDDAVVGGLVAADPAPRLADAAELLDGRDQGKYILYAYARHSTRSGTVSCAGGGESVGVTVVDFDTLQTGAVSCADSPDPVTEFAAAEAISTWCDRGNANANANANA
AK018_02426786hypothetical proteinGTGCGGGCCCGTCGCCCGTGGCTCGATGGGACCATGACCGACCCGCGCGCGACGCTGCGCCGCCCCGCCGACCGCCGTCGGCCCTCCGCCCGCACCGCGACCCTCGTCGCCCTCTCGGCCCTGTGCGTCCTCGTGGCACTCGTCGCCGTCACGCCCTACCTCACCGGCTCGCTCGAGAGCCTCGCCGCGGACGACACTGGCCTGGCCCGCAACTACGTCGACCGGCCGACGGCCGTCCGGGCGGCGTTCTTCGTCCACCTCGTCGCCGGGGGAGCGGCGCTGCTGCTCAGCCCCTGGCAGCTCTGGCCAGGCCTGCGCCGGCGGCACCCCGGACTGCACCGGGCCACCGGGCGCACCGTCGTCGCCGCGATCGGTCTCGCGGGCGTGTCCGGCCTGGTGATCGCACCCGTCAACGAGGCCGGCCTCGTCGGGGTCCTCGGGTTCGGCTCGCTCGCCGTGCTCTGGCTCGCCGCAGCGGGCCTCGGGTGGCGCGCGATCCGGCGCGGCGACGTCCCCGCCCACCGGGCGTGGATGATCCGCGCGTTCGCCCTGACGTTCGCCGGCGTCACGCTCCGGGTGTGGCTCGGGGTGCTGGTGGGCGCGCAGTCGCTGTGGCCCGGGAGCGACGCCGACCCGGCCGTGATGTTCGACCGCGCCTACGCCGTCGTCCCGTTCCTGAGCTGGGTGCCGAACCTCGTCGTCGCCGAGCGGGTGGTGCGCCGCGGCCGGCTCAGGGCCGACGGCGGACCACGACCGGCAGCACCGCCCACAGCCCCAGCAGCATGAMRARRPWLDGTMTDPRATLRRPADRRRPSARTATLVALSALCVLVALVAVTPYLTGSLESLAADDTGLARNYVDRPTAVRAAFFVHLVAGGAALLLSPWQLWPGLRRRHPGLHRATGRTVVAAIGLAGVSGLVIAPVNEAGLVGVLGFGSLAVLWLAAAGLGWRAIRRGDVPAHRAWMIRAFALTFAGVTLRVWLGVLVGAQSLWPGSDADPAVMFDRAYAVVPFLSWVPNLVVAERVVRRGRLRADGGPRPAAPPTAPAANANANANANA
AK018_02427489hypothetical proteinATGACCGACGACACCGGCCGACATCCCGCACGCCAGGGCCGCACGGAGTCGCCCGAGGAGCGTTCGGACCGCAACTGGAACGAGCTGCTGCAAGAGCTGCGCGTGCTGCAGACCGGCGTGCAGATCCTGACCGGGTTCCTGCTGATCCTGCCGTTCCAGTCGCGGTTCGCGGACCTCGACCTGTTCCAGCGCAACGTCTACCTGGCGGACGTGCTGGTCTGCCTGGTCACGTCGGGCTTGTTCATCGCCCCGGTGGCGGTCCACCGGGGGCTGTTCCGCCGCCAGCTCAAGACGGAGGTCGTCACGCTGGGCGACCGCATGACGCGCACCGGGCTGGTGCTGCTGGCGATCGCCCTGTCCGCGACGGCGCTGCTGATCTTCGACGTGGTGCTGGGTCGCGTGCAGGGGCTGGTGGTGGGTGGCGCGGTCGCCGTCATGCTGCTGGGGCTGTGGGCGGTGCTGCCGGTCGTGGTCCGCCGTCGGCCCTGAMTDDTGRHPARQGRTESPEERSDRNWNELLQELRVLQTGVQILTGFLLILPFQSRFADLDLFQRNVYLADVLVCLVTSGLFIAPVAVHRGLFRRQLKTEVVTLGDRMTRTGLVLLAIALSATALLIFDVVLGRVQGLVVGGAVAVMLLGLWAVLPVVVRRRPNANANANANA
AK018_024281485hypothetical proteinATGACCGCACTGCTCGACGAGACCTCGACCCCGGTGGTCGACGGCGACGTCCTCGAGACCGGGCGTCACCCGCTCGCGCTCGGCACCGAGCTCGACCGCTTCCACTTCACCCCTGAGGAGCTCGTCGCCGAGGTGCCGACCCGGCGCGCGACGATCGGCGCCGTCGTCCCCGCGTACAACGAGGCCGACACCATCGTCGACGTGCTGCGGGGACTGCTGAAGCAGACCCGCCTGCCGGACGTGATCCACGTGGTCGTCAACAACACCTCGGACAAGACGTTCCGCAAGGCGGCGAAGCTGGCCGGCGAGCACACGGTGGTGCGCAAGGGCGTCGAGCAGGTCACGCGGATCTACGTGCACGACCTCGGCGTGCTGGCGGACAAGAAGGTCGGTGCGCTCAACTACGGGTTCCGGCTCGTGCGGGGCGCCGACTACCTGCTGGGTGTGGACGGCGACACGGTGCTGGGCAGGCGCACGGTGGAGCGGCTCGAGGCCGAGATGGAGTCCGACCCGCGCATCGGCGGCATCTCGGCGATCTACACGGTGGACGACCGTGCTGTCCGCGGACCGCTGGGCCGGTTCCTGCTGACGGGCCAGCGCGCGCAGTTCGCGTCGTTCAACCTGCAGAACCTGGTGCGTGGTCGCAACATGGCGGTGCTCGGTGGGCAGGCCTCGCTGTTCCGCACCGCCGCCCTCGAGACGGTGATGGCGGCCCACCACCAGCGCGACCCGTGGGTGAGCGACTCCGAGGTCGAGGACTCCCTGCTGAGCCTGCAGATCAAGTCGGTCGGCTTCTCGACCAAGATCAGCGCGACGGCGCGGGCCACCGTGGGCGGCATGACCACGCTGCGCGCGCTCGACGGGCAACAGGTCAAGTGGAACTACGGGGCGATCGACCTCATGTGGCCGGGGCAGCGCGGCGACACCCGCGGCCAGCCGTTCCACCCGAACCTGCGGCTGCGCTGGATGGAGAACGCCTCCATGCTGCTCAACGCGGCGACCCGGCTGATGTTTGGGCTCCTGCTGGCGGCGGCGCTGAGCATCGGCGCGTTCGAGTTCTCCCCGGTGTGGCTGATCCCGCCGGCCGTCGCCGTCGCCCTCAACCTGCGCATCGCCCTGTCGATGAAGAAGCGCACCTGGCGCGACGTGCTGTTCGCCGCGACGGTGGTGCCCGCCGAGCTGTACATGTGGATCCGGTTCGGCCACTTCGTGCGCGCCTGGACCAAGTTCCTCGCCCAGTCCCGCACCGACAACTGGGCGGCGCAGGCCAAGGCGGAGCGCGGCGCCGGGTGGGCGTTCCTCAGCCCGCTGGCGGTGGCGGTGGCCGCCCTGGCCGGCCTGGTCTGGGTCTGGACGCTGCTGCCGGTGACCGCGCAGTCGGCGGTGCTGTCCGTGGGCTGGCCGGTCCTCGGCGTCGTCACCGTGGTGCAGACGGTGGCGATGGTCCGCCGGCTGCTGCGCCGGCAGCACGGCTACCGGGCCTGAMTALLDETSTPVVDGDVLETGRHPLALGTELDRFHFTPEELVAEVPTRRATIGAVVPAYNEADTIVDVLRGLLKQTRLPDVIHVVVNNTSDKTFRKAAKLAGEHTVVRKGVEQVTRIYVHDLGVLADKKVGALNYGFRLVRGADYLLGVDGDTVLGRRTVERLEAEMESDPRIGGISAIYTVDDRAVRGPLGRFLLTGQRAQFASFNLQNLVRGRNMAVLGGQASLFRTAALETVMAAHHQRDPWVSDSEVEDSLLSLQIKSVGFSTKISATARATVGGMTTLRALDGQQVKWNYGAIDLMWPGQRGDTRGQPFHPNLRLRWMENASMLLNAATRLMFGLLLAAALSIGAFEFSPVWLIPPAVAVALNLRIALSMKKRTWRDVLFAATVVPAELYMWIRFGHFVRAWTKFLAQSRTDNWAAQAKAERGAGWAFLSPLAVAVAALAGLVWVWTLLPVTAQSAVLSVGWPVLGVVTVVQTVAMVRRLLRRQHGYRAPGPT0023485_71DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISMCE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023485-pgaC|icaA-K11936NANA
AK018_024293198hypothetical proteinATGAGACGCACAGCCGCAGCCCGCGTCGGCGCCGGCGGGGTCGCACTGGCCCTGGCGACGACCATGGGCGTCACGGCACTGTCCGTGTCCTCGGCCCAGGCCGCCGTCACCGGCAGCGCGACCGGGTTCGCCACCCAGGACGGAGGCACCACCGGCGGTGCGGGCGGACAGACGGTCCGCGCCACCACCGGCACCGAGATCCACGCCGCCCTGTGCAACCGGGCCAGCAGCGACACGCCGATCATCATCGAGGTCGAGGGCACCATCGACCACGGCAACACCTCGAAGGTGTCCGGCGACTCGTGCAACACCGCCGACGACAAGATCGAGATCAAGGAGGTCAGCAACGTCTCGATCGTGGGCGTCGGCTCCGGTGCCCTGTTCGACGAGCTCGGCATCCACCTGCGGTCCGCCGAGAACGTCATCCTCCAGAACCTGCACGTGCGGAACGTCAAGAAGTCCGGCTCCCCCACCTCCAACGGCGGCGACGCGATCGGCATGGAGTCCGACGTGTCGAACGTGTGGGCCGACCACCTCACCCTGGAGGCCTCGGGCGGGGAGTCCGACGGCTACGACGCGCTCTTCGACATGAAGGCCGACACCACCTACGTCACGCTGTCGTACTCGATCCTGCGCAACTCCGGTCGCGGCGGGCTCGTCGGCTCCAGCGACGGCGACACCGGCAACGGCCCGGTCACCTACCACCACAACCTGTACCAGAACATCGACTCGCGGACCCCGCTCCTGCGCGCCGGCACCGCGCACTCGTACAACAACCACTTCGTCGGGCTCACCAAGTCCGGCATCAACTCGCGGCTCGGCGCCCAGGCGCTGGTCGAGAACAACTACTTCCAGGACTCCAAGGACCCGCTCGGGACCTTCTACACCAACGACATGGGCACGTGGGAGGTCGGCGGCAACATCTGGGACAACATCACCTGGACCGCCGACGACGACGACAACCACCCGGCCGGGCCGAACCCGACGTCGACCGGTTCCGTCTCCGTGCCGTACTCGTACGACCTCGACGGTGCCAAGTGCGTGCCGAACCTGCTCGCCGAGACCGCCGGGGCGAACACCGGCCTGCGGGTCTCGGACGGGTCGTGCGAGCCGACCGAGCCGGAGCCGAGGCCGGAGCCCACGGAGGACCCGGACCCCGAGCCCACCGAGGAGCCCACGCCCGACCCGGAGCCCACGGAGGACCCGGACCCGACCGACCCGCCCAGCGGCGAGAACCTCTCCATCGGCGCCGGTTCGGACGGTTCCTCGAAGGGCGACGGGACCAGCTACGGCAACGTGCGCGACGGTGACATGGCTACCTACTGGTCCCCGTCGGGCAGCACGGGACGCATCTCGATCAAGTGGGACGGCGACCGCACCGTCTCCTCGATCGTGATCCGCGAGGCCGCCGGCGCCGAGGGCAACATCGGCTCCTGGCAGGTGCAGAACCACGACACCGGCCAGGTGCTGGCCACCGGCAGCGGCGCGGGAGCGATCGACGTCCCGACCACCTCGCTGAGCAAGATCAACTTCGAGATCACCTCGTCGTCCGGCACGCCTCGGGTCGCCGAGTTCGAGACCTACGCCGGTTCGCCGTCGGACCCGGACCCGGAGCCCACGGAGGACCCGACGCCGGACCCCACGGACGAGCCCACCCCGGAGCCGACCGACGAGCCGCAGCCGGGCGCCGACACCCTCTACGTCGCCCCCGGCGGGTCCGCCGGAGCGGCCGGCACGGAGTCCGACCCGACCACGCTCGTCGCCGCGATCGACCGGGTGAACTCGGGCGGGGAGATCTTCCTCGCGGGCGGCACCTACGACCTGGACGACACCGTCACGATCGAGCCCGGCAACGACGGGCTGGCCGGTGACCGCACGCTGCTGTCCGCGCTCCCGGGCCAGACCCCGGTGCTGGACTTCTCCGCGCAGGAGGAGGACTCGTCCAACCGTGGCCTGGCCATCGGCGGCGACTACTGGCACGTGTACGGCATCGTCGTGCAGCACGCCGGCGACAACGGCATCCTGCTCGGCGGCGACCACAACGTCATCGAGCGGGTCGTGACCCGGTACAACCACGACACCGGTCTGCAGCTCTCCCGCCTGATCGCGGGTGCACCGCGGGACCAGTGGCCGTCGTACAACCTCATCGTGTCCAGCGAGTCGCACGACAACGCCGACTCCGACGGCGAGGACGCCGACGGGTTCGCCGCCAAGCTGACCTCCGGGCCGGGCAACGTCTTCCGGGACACGGTGGCGCACCACAACATCGACGACGGCTGGGACCTGTACACCAAGTCCGAGACGGGGCCGGTCGGCGAGGTCACCATCGAGAGCTCCCTGGCCTTCGAGAACGGCACGCTGTCCGACGGCTCCCAGGCCGGCGCGGGCGACCGCAACGGGTTCAAGCTCGGCGGAGAGGACATCGAGGTCGACCACGTGGTCCGCGACTCGTACGCGGTGGACAACGGCAAGCACGGGTTCACGTACAACTCGAACCCGGGCTCGATGACCGTCACGAACAACGTGTCGATCGGCAACGAGGAGCGCAACTTCAACTTCGACGAGGGCTCGCACACGTTCAGCGGCAACGTGTCCTGCGACAGCGGGTCCAGCGACCGCTACTCGGGCACCGACGCCGGCGGCAACTCCTTCTGGGACGGCTCGAACGGCTCGGCGTGCTCCGCGTACGACGGCGCCATGGACTGGTCGTTCGCGTCGGACGGCTCCCTGCAGGTGACGTTCGGCGGGTCGACGCCGGACCCGGAGCCCACCGAGGAGCCGACGCCGGACCCGGAGCCGACGGAGGACCCGGACCCGACCGACCCGCCGAGCGGGGACAACCTGTCGATCGGTGCCGGTTCGGACGGTTCGTCGAAGGCGAGCGGCACGAGCTACGGCGACGTGCGTGACGGTGACCTGTCGACCTACTGGTCTCCGGAGGGTTCCACGGGTCGCATCTCGATCAAATGGGACGGCGACCGCACCGTCTCCACGATCGTGATCCGCGAGGCCTCCGGCACGGCCGGGACCATCGGGTCGTACCAGGTCGTCGACCACGACACCGGTGACGTGCTGACCAGCGGCACCGGCGCCGGGGCGATCTCGTTCGCCGCGACGTCGACCAGCAAAATCGACTTCGTCATCACCTCGTCCTCCGGGACGCCGCGGGTGGCGGAGTTCGAGACCTACGCCGGCTGAMRRTAAARVGAGGVALALATTMGVTALSVSSAQAAVTGSATGFATQDGGTTGGAGGQTVRATTGTEIHAALCNRASSDTPIIIEVEGTIDHGNTSKVSGDSCNTADDKIEIKEVSNVSIVGVGSGALFDELGIHLRSAENVILQNLHVRNVKKSGSPTSNGGDAIGMESDVSNVWADHLTLEASGGESDGYDALFDMKADTTYVTLSYSILRNSGRGGLVGSSDGDTGNGPVTYHHNLYQNIDSRTPLLRAGTAHSYNNHFVGLTKSGINSRLGAQALVENNYFQDSKDPLGTFYTNDMGTWEVGGNIWDNITWTADDDDNHPAGPNPTSTGSVSVPYSYDLDGAKCVPNLLAETAGANTGLRVSDGSCEPTEPEPRPEPTEDPDPEPTEEPTPDPEPTEDPDPTDPPSGENLSIGAGSDGSSKGDGTSYGNVRDGDMATYWSPSGSTGRISIKWDGDRTVSSIVIREAAGAEGNIGSWQVQNHDTGQVLATGSGAGAIDVPTTSLSKINFEITSSSGTPRVAEFETYAGSPSDPDPEPTEDPTPDPTDEPTPEPTDEPQPGADTLYVAPGGSAGAAGTESDPTTLVAAIDRVNSGGEIFLAGGTYDLDDTVTIEPGNDGLAGDRTLLSALPGQTPVLDFSAQEEDSSNRGLAIGGDYWHVYGIVVQHAGDNGILLGGDHNVIERVVTRYNHDTGLQLSRLIAGAPRDQWPSYNLIVSSESHDNADSDGEDADGFAAKLTSGPGNVFRDTVAHHNIDDGWDLYTKSETGPVGEVTIESSLAFENGTLSDGSQAGAGDRNGFKLGGEDIEVDHVVRDSYAVDNGKHGFTYNSNPGSMTVTNNVSIGNEERNFNFDEGSHTFSGNVSCDSGSSDRYSGTDAGGNSFWDGSNGSACSAYDGAMDWSFASDGSLQVTFGGSTPDPEPTEEPTPDPEPTEDPDPTDPPSGDNLSIGAGSDGSSKASGTSYGDVRDGDLSTYWSPEGSTGRISIKWDGDRTVSTIVIREASGTAGTIGSYQVVDHDTGDVLTSGTGAGAISFAATSTSKIDFVITSSSGTPRVAEFETYAGPGPT0018225_36DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-T1SS_SECRETED_PROTEINS,PGPT0018225-pel|plyB-K01728NANA
AK018_02430765walR_2COG0745Transcriptional regulatory protein WalRATGACCGCAGCAGGGTTCCCTACTCCTGGCGGTGCGTCCGCCGCTGCCGAACGCACCGCGGTCGTCGTCGAGGACGACGACGAGATCCGCGACCTGCTGGAAGAGGTCCTGACACACGCAGGCTTCGAGACCTCGTCGGCCGCCGACGGCCGCTCCGGGGTCGAGCTCGTGGAACGCATCGACCCCCTGGTCACGACGCTGGACGTCAGCCTGCCGGACATCGACGGCTTCGAGGTGTGCCGCAGGATCCGCGCGGTGTCGAACACCATCATCATCATGCTTACCGCTCGTACCGACGAGATCGACACCCTGATGGGCCTCGAGGCCGGCGCGGACGACTACCAGACCAAGCCGTTCCGCCCACGCGAGCTCCGGGCGCGCATCGAGGCGATCATGCGTCGGCAGCGCCGGGGCAGCACGGCGACACCGGCGTCCGCGTCGTCACCGGCGCTCGACGGACTCACGATCGACGTCCCCGCCCGCACGGTCAGCGTCGACGATGTCGAGGTCCACCTGACCCGTAGCGAGTTCGACCTGCTGGCCGCCCTTGCCGGTGAGCCCGGACGAGTGCTGACCAAGGACGCCCTGGTCCGGGTGCTCTGGGGGGACGAGTACGACGCCGGCACGCTGGTGACGAGCTCGGACCATCGCCGCGTCGAGGTGCACCTGGCGAACCTGCGCCGCAAGATCGGCGACGACCCGAACTCCCCGCGGTGGATTCGGACGATCCGCGGCGTCGGCTACCGCTTCGACCAGCGCGCCTGAMTAAGFPTPGGASAAAERTAVVVEDDDEIRDLLEEVLTHAGFETSSAADGRSGVELVERIDPLVTTLDVSLPDIDGFEVCRRIRAVSNTIIIMLTARTDEIDTLMGLEAGADDYQTKPFRPRELRARIEAIMRRQRRGSTATPASASSPALDGLTIDVPARTVSVDDVEVHLTRSEFDLLAALAGEPGRVLTKDALVRVLWGDEYDAGTLVTSSDHRRVEVHLANLRRKIGDDPNSPRWIRTIRGVGYRFDQRAPGPT0012985_11DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659NANA
AK018_02431492hypothetical proteinGTGGTGACCGATTCCATCGAGGCACGCGGCGCCGAACAGGACCGCGACATCGAGGTCATGGCCCGTGCCGCCGTGTTCCCCCGCACGGCGGCACGGGCATCGGTCGACCACCAGCCCGGCGACCTGATGACGGTGGCGCGGGCGTGGCACGACCTGGTCGAGGACCTCGAGGGCGACGAGCGTGCCGTCGAGCGCTTCGCGACGATCTGGCTCGACCTGCTGCCGCGGCGGCTCGCTGCCTGCCGGCGTGCGCTCGTGGCCGGTGACGACGACACGGCGCGAGTCCGGTTGCTGACATTGCACAGTTCGGCCGCGATGCTCGGTCTGGATCGGTTCGCCAAGATCGCGTGGCGCTGTCAGGACGCGTTGGACGCGTCGGCCACCGGTACCAGCTCGGCACGTCATCTGGCGCGCGACATGATCGCCGAGGCGCAGGTCTCGGCCGGCCTGGTACGGACGGTGCTGTCTCAGGCGCGCTGGTCGAAGCGGTAGMVTDSIEARGAEQDRDIEVMARAAVFPRTAARASVDHQPGDLMTVARAWHDLVEDLEGDERAVERFATIWLDLLPRRLAACRRALVAGDDDTARVRLLTLHSSAAMLGLDRFAKIAWRCQDALDASATGTSSARHLARDMIAEAQVSAGLVRTVLSQARWSKRNANANANANA
AK018_02432357hypothetical proteinGTGAGCTCGTCGGCCGACCGGGACGACGACGGCCTGGCCGACGCCGTGGCTGCGCTGGCGACGCGTGCCCGCCGGCGCAACCGCGCACGCGTCGAGCAGGTGGTGCGGCTTCTCGGGCCGGCGGGCGAGGCGGTGGAGGATCCGGAAGCGCGCGACCACGCCAGGCGGCTCTGCCACGCCGTGGCCGGTTCCGCGGGGACGTTCGGCGACGACGAGCTGGCCGAATCGGCCCGAGACCTCGAGGACACCCTCGACGAGTCGCCCGCGGTCGACGAGGTCGTCGCCATGGTCGGCCGTCTCCGGGACGCGGTGCCCGGCGACGAGCGCCCCGATCCGACGATCTTGAGGGAATCCTGAMSSSADRDDDGLADAVAALATRARRRNRARVEQVVRLLGPAGEAVEDPEARDHARRLCHAVAGSAGTFGDDELAESARDLEDTLDESPAVDEVVAMVGRLRDAVPGDERPDPTILRESNANANANANA
AK018_02433387walR_3COG0745Transcriptional regulatory protein WalRATGTCGACGAACAACCGACGAGTGGTGGTCATCGACGACGATCCGTCGATCCGAGAGGTGGCGACGTTGGCCTTGTCGATGGCCGGCGGTCACGAGAGCTACTCGGCCGCGGACGGCTTCGAGGGTGTGGAGCTGGCGCGGCAGGTCCGGCCTGATGCGATCCTGCTCGACGTGATGATGCCGACGGTGGACGGTCCCACGGTCCTGTCGAGGTTGCGCCAGGTCGAGGACCTGCGACGGACGCCGGTCGTCTTCCTGACGGCGAAGGTGGGGGCCCAGGACATCTCCCGGCTCGACGGTCTCGGTGCTGCCGCCGTCATCACCAAGCCGTTCGACCCCCTCACACTGGCGGACCAGCTCGCCACGGCGCTGGGGTGGGAGGAGTGAMSTNNRRVVVIDDDPSIREVATLALSMAGGHESYSAADGFEGVELARQVRPDAILLDVMMPTVDGPTVLSRLRQVEDLRRTPVVFLTAKVGAQDISRLDGLGAAAVITKPFDPLTLADQLATALGWEEPGPT0002660_2065DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002660-phoB-K07657NANA
AK018_024342601rcsC_1Sensor histidine kinase RcsCATGGAGGATGCCAGGCGCACCGCGACGCGGCTGCACGACAGGTTCGTGCGGTGGTGCTGGACCGCAGGGGTCGTGCTGTTCGCCCTGCTCGTGGTCCTGACCGGACCGTTCGACGACGCCACCCGCGAACAGGTCTCCCGCGCAGCCATCGGAGCAGCCGGTGTCGTCGCCGCCATCAGCTGCGGGCTGCGCGCAGCACGGTCCGCCGGTCGGCGACGTCGCGCGTGGGGGGCGCTGTCGCTGGGCGCGATCGTCGGCCTGACCGGCAACCTCTGGGCCGCCCTGGTCCAGGACCCCGCGACGGGAGACCTCGCCTACATCTCCGCGCTCGTCCTCGGCATCGTCGGGCTCGCGTTCTTCCCGACGGTCCGACCCCGCGGCCAGGACCTGGTGCGGATGCTGCTCGACAGCGTCGTCGTCGGCGGTTCCGTGCTGTACATCGCTGTCTTCGCCGTGGTGCTCGACGCCCCGGTCGGCACCGCCCAGCCGGCCCTGACCGTCTACGCGCTTCCTGTCGTCGACGCGCTACTGGCCACGCTCGCCGTGCTGGTCATGACCCGCTCCAGCGCGGCCGAACGCGTCCCGCTGGTGCTCGTGGGCAGCGGGTTCGTCCTCTACGCGGTCGCGGACGTCGCCTTCGCGCTCCTCTCCGCCGGGACCGGCTTCGCGTTCGGCACCGTCGTCGACCTTGGCTGGGTGGGCGGCTATCTGGCGATCGCCGTCGCTGCTCGCCACCCCGCAGCCTCGGGAAGCCCGGTCGCCAGCCCGCGCCACGACGGCTCACCCGTGCTCGGCACCGTGGTGACCTTCTGCCTGTTCCTCGCGGCGGCACTCGTCCGCGTCGGTCAGTCCGGTCAGAACGCCCCCTGGGTGGCGGACGCCCTCTGGGTCGCCGTGCTGGTCGCCGTCGTCGCACGCCAGATCCTCGTCGTGGTCGACAACGAGTCGCTGCGGCACGGGCTGGAACAGCGGGTCGAACGGCGCACCGCACAGCTCCGCGCGCTTGCGGGGGAGCGCGAGCGGACCCTCGAGTCCGTGGCCGACGGCATCTACGGCGTCGACCTCTCCGGACGGATCACCTTCATGAACGCCGCCGGAGCCCACGTTCTCGGTGCGGCACCCGATGACATGGTCGGGCACGAAGCGCACACCTCGTTCCACACCAGGCACGACGGGACCGGCGCGGAGAGCCCGGGCTGCTACGTCACGGCGGCGCTGCAGGAGGGCGTCACCGCCACCGCGGTCCAGGACGTGTACCGCCGGCCCGACGGCAAGGAGGTGCCGGTCGAGGTCACCGCCGGCCCGCTCCGCGACGACGGCGCCGTCCGCGGCGCCGTCGTCGTCTTCCGCGACATCACCGAGCGCCGTGAGATGGAACGGATCAAGGACGAGTTCGTGTCCGTGGTCTCCCACGAGCTGCGGACTCCGCTGACCTCGATCCGCGGGGCCCTGGGACTCCTGGCGAGCGGCCTGCTGACCTCGGCGCCGGACCGCGCCGAGCGGATGGTCCAGGTGGCCCTGACCAGCAGCGAGCGCCTCGGACGGCTGGTCGACGACATCCTCGACATCGAGCGCATGGCAGCCGGTTCGACCCATCTCGATCTGGGCGAGCACCGGATCGGTGATCTGGTGGCGGAGGCCGCTGACCAGGTCTCGATCCTCGCCGGTGACGCCGACGTGAACCTGGACCCGACCGACTCCGACGAGCTCGTCGTCGCCGACCGGGACCGCATCGTCCAGACGGTGACGAACCTGCTGACCAACGCCGTGAAGTTCTCGCCGCCCGGGGGGACGGTGCGCGTGGGGGTCGCCGCGGTGGGGGACCTGCTCGAGGTGCGGGTCGACGACGACGGTCGCGGCATCCCGCAGGAGAAGCTGGAGACGATCTTCCGACGGTTCGAGCAGGTCGACGCGTCCGACGCCCGGGAGCGGGGTGGTACCGGCCTGGGCCTCGCCATCGCTCGCAGCATCGTCGAGCGGCACGGCGGGCGGATCTGGGCGCTCAGCGACGGAGCGGGCCGGGGGTCGAGCCTGCGGTTCACGCTGCGACGCGCACGGCAGGTGGCGCCCGAGGACGCCGTGGCGCCGCCGGCGGACGGACGGACCGGGGCCGAGACCGGCACGGTCGAGCACCTGCCGAGGGAGTCGTCCGGGCCCGAGCGCGTGATCGTGGTCGACGACGACCCCTATGTCGTCGATGTGCTGCGCACGCTGCTGGAGGAGCAGGGCTACGACGTCGTCGGCGTCACGGACGGCGACTCGGCGCTCGACGCGGCGGCGTCCGGTGCGGTCGCGGCGATCGTGCTCGACCTCGCGATGCCCGGCACCGACGGCAACGACGTGCTGATCGCCCTCCGGCAGGACCCGGACCTGGCGGACGTCCCCGTGGTCATCGTCTCGGTTACGACGCCCCTCGAGAACCCGGACGTCTCCCACCTGGCCGAGGCCTGGCTCGTCAAGCCCGTCGACCCGGGCCGCCTGCTGCGCGCCGTCCGCGACGCCGTCCGGGGCGGTGTCCGACGACGCCCGGTGGACACCGCACCCCAGCCTCGGACAGTATCCGCATCGACCCCCGCTCCGTCCGACCCGAGGAACACATGAMEDARRTATRLHDRFVRWCWTAGVVLFALLVVLTGPFDDATREQVSRAAIGAAGVVAAISCGLRAARSAGRRRRAWGALSLGAIVGLTGNLWAALVQDPATGDLAYISALVLGIVGLAFFPTVRPRGQDLVRMLLDSVVVGGSVLYIAVFAVVLDAPVGTAQPALTVYALPVVDALLATLAVLVMTRSSAAERVPLVLVGSGFVLYAVADVAFALLSAGTGFAFGTVVDLGWVGGYLAIAVAARHPAASGSPVASPRHDGSPVLGTVVTFCLFLAAALVRVGQSGQNAPWVADALWVAVLVAVVARQILVVVDNESLRHGLEQRVERRTAQLRALAGERERTLESVADGIYGVDLSGRITFMNAAGAHVLGAAPDDMVGHEAHTSFHTRHDGTGAESPGCYVTAALQEGVTATAVQDVYRRPDGKEVPVEVTAGPLRDDGAVRGAVVVFRDITERREMERIKDEFVSVVSHELRTPLTSIRGALGLLASGLLTSAPDRAERMVQVALTSSERLGRLVDDILDIERMAAGSTHLDLGEHRIGDLVAEAADQVSILAGDADVNLDPTDSDELVVADRDRIVQTVTNLLTNAVKFSPPGGTVRVGVAAVGDLLEVRVDDDGRGIPQEKLETIFRRFEQVDASDARERGGTGLGLAIARSIVERHGGRIWALSDGAGRGSSLRFTLRRARQVAPEDAVAPPADGRTGAETGTVEHLPRESSGPERVIVVDDDPYVVDVLRTLLEEQGYDVVGVTDGDSALDAAASGAVAAIVLDLAMPGTDGNDVLIALRQDPDLADVPVVIVSVTTPLENPDVSHLAEAWLVKPVDPGRLLRAVRDAVRGGVRRRPVDTAPQPRTVSASTPAPSDPRNTNANANANANA
AK018_02435507pdaD_1Pyruvoyl-dependent arginine decarboxylaseATGACCTCCGCACTCACCATCCGCGTCAGCGCCGGCACCGGTACCGGCCGGACGACCTTGGCCGCCTTCGACGCCGCGCTGCTCGCCGCCGGCGTCGGCGACTTCAACCTGGTCCGCCTCAGCTCGGTGGTACCTCCCGGCAGCCGCGTGGAGGCCGTGACAGGAAGGGACCAGATCGTCGGGGAGCACGGCGACGCCCTGTACTGCGTGTACGCCGAGGCGCACGCCTCGCTGCCCGGGCACGAGGCGTGGGCCGGGGTGGCCTGGTCGCAGCACGAGGACGGCAGCGGGGCGGGACTGTTCGTCGAGCACGAGGGGCCGTCGCACGAGCAGGTCGCGACCGACCTGACCCACAGCCTCGAGGACCTGTCGGCCTCCCGCGGGGGTGTCTTCCGCCCGGCGGGCCGGAGCATCACCGGCATCACGTGCGACACGCTGCCCGTGTCCGCCGTCGTCGTGGCGTCGTTCAGCCGTTCCGGGTGGCAGGAGACGTCCGGTGCGCGCTGAMTSALTIRVSAGTGTGRTTLAAFDAALLAAGVGDFNLVRLSSVVPPGSRVEAVTGRDQIVGEHGDALYCVYAEAHASLPGHEAWAGVAWSQHEDGSGAGLFVEHEGPSHEQVATDLTHSLEDLSASRGGVFRPAGRSITGITCDTLPVSAVVVASFSRSGWQETSGARPGPT0012230_184DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012230-pdaD|aaxB-K02626NANA
AK018_02436543hypothetical proteinGTGCGCGCTGACGTGACGTTCGAGCCGGTCGTCTCCGGGCAGGTGGCCGATGACTTCTGGGAGCTGTACCTGGAGGCCTTCGGGCCGCTGCGCACCCGCGCCGCGGCACGGCACGTGCTGCACCGCGAGGAGTTCGACGAGGAGATGGCGGACCCCCGGATCCTCAAGCTCCTCGCGCACGACGAGCACGGCACGCCGGTCGGGCTCACCACGCTGGCGACCGACCTGGCGGCGGTGCCGTGGGTCAGCCCCGAGTACTTCGCCGCCCGGTACCCGGAGCACGCAGCCCGCGGGGCCGTCTGGTACATCGGGTTCACGCTCGCCCACCCCGGACGCCGGGCCACGCGCACGTTCATGGACATGATCGACGCCCTCGTCGCCCACCTGGCCGAGCACCGCGTGGTCTGCGCCTACGACGTCTCGCGGTTCAACGACGACGGCCTGCGGTTCGCCGACAACCTGCGCCGCCACCTCGAGCGGACGCGGGACGTCACGGTCGAGACGGTGGACCGTCAGACGTACTACGCGACGACGTTCCACTAGMRADVTFEPVVSGQVADDFWELYLEAFGPLRTRAAARHVLHREEFDEEMADPRILKLLAHDEHGTPVGLTTLATDLAAVPWVSPEYFAARYPEHAARGAVWYIGFTLAHPGRRATRTFMDMIDALVAHLAEHRVVCAYDVSRFNDDGLRFADNLRRHLERTRDVTVETVDRQTYYATTFHNANANANANA
AK018_024371266hypothetical proteinGTGCCCACGGCCCCCGACGACGCCGAGATCGAGCTCATCCGACGCTCCGGCGTGGCGCTGCGCGTCGGGCGGCTCTCCCTGTCCGCGGGGACCGGCTCCTACCGGGTCAAGGCGTCCATGGCGCGGGTGGCGCGGGCGCTCGGGATCGAGCGCCACCAGGCGCACGTCACCCTCACGGAGATCACGACGACGTCCCACCGGGGTGCGAGCTTCCGCACCGAGGTGACCGAGGTGCGCAGCGTCGGCATCAACGCCGACCGGCTCAGCGCGCTGGAACGGTTCGCGCAGTCGATGGAGGCGCGCGCTCCCGTCACGGTGGAGGAGGCCGGCCGCGAGCTCGACCGCATCGAGGGCCGCGGCCCGCTCTACCCGCCGTTCCTGAACGCCCTGTGGGCCGCGATGGCGTGCGCCGCGTTCGCGTTCCTCAACAACGGCGGTGTGGTGGAGGTGGTGGGGGTCTTCGTCGCGGCGGGCCTGGGTCAGGCGCTGCGACGGGCGCTGATCCACCGCGGCTGGAACCAGTTCGGGGTGACGATGCTCGCCGCCGCGCTGGCGAGCCTGACGTATGTGGGATTCCTCGCGGCGTTCGGCGCGTTCGGCGGTGCCGCGACCAGCCACGAGGCCGGGTACGTCTCGGCCGTGCTGTTCCTCGTGCCCGGGTTCCCCCTGGTCACCGGGGCGCTGGACCTCGCCAAGCTCGACTTCTCCGCCGGGCTGGCGCGGCTGACCTACGCCCTGATGATCCTCACCTCGGCGGCGCTGTCGGTGTGGGGGGTGTCCATGCTGGTGGGGATCGAACCGGACCCCGCCGATCCCGTCGGCCTCGATCCCGGGCTGCTGCTGGCGCTGCGGCTGCTCGCCGGGTTCCTCGGCGTGCTCGGGTTCGCGCTGATGTTCAACAGCCCCTGGTCCATGGCGCTGGCCGCGGCGACGATCGGCATGGTGGCGAACACCGGACGCCTGTGGCTGGTGGACACCGACGTCCCCGTCCAGGTGGCCGCGGCCGCGGCGGCGCTGCTCGTGGGCCTGCTGGCCGCCGTCGTCGCACCCCGCATGAACGTGCCGCGGGTGACCGTGTCGGTGCCCGCCGTCGTCATCATGGTGCCGGGTGCGTCGGCTTACCGGGCCATCTACTACCTGTCCAACGGCGAGACGACGCAGGCGCTGGCCTACGCGGTCGAGGCGGGGCTGGTGGTGGCCGCGCTGGCCATCGGGCTCGCCGTGGCGCGGATGCTGACCGACCGCGAGTGGGGGTTCGAGCGGTGAMPTAPDDAEIELIRRSGVALRVGRLSLSAGTGSYRVKASMARVARALGIERHQAHVTLTEITTTSHRGASFRTEVTEVRSVGINADRLSALERFAQSMEARAPVTVEEAGRELDRIEGRGPLYPPFLNALWAAMACAAFAFLNNGGVVEVVGVFVAAGLGQALRRALIHRGWNQFGVTMLAAALASLTYVGFLAAFGAFGGAATSHEAGYVSAVLFLVPGFPLVTGALDLAKLDFSAGLARLTYALMILTSAALSVWGVSMLVGIEPDPADPVGLDPGLLLALRLLAGFLGVLGFALMFNSPWSMALAAATIGMVANTGRLWLVDTDVPVQVAAAAAALLVGLLAAVVAPRMNVPRVTVSVPAVVIMVPGASAYRAIYYLSNGETTQALAYAVEAGLVVAALAIGLAVARMLTDREWGFERNANANANANA
AK018_02438276hypothetical proteinGTGACCCCCGCACCCCGCCGCGCCTTCGCCCTGCCCGCACGACTGTCCGCCAAGGACGACCCCGTCCTGATCGCCGACGACGAGGCCCACCTCGCCGCGATCGCCGCGGCCGTCGACCACCAGGTCGCCGACCTCACCGCTCGCCTCGACGTCGCGCGCCGCGCCCCCGGCGGTCCGGGCAGGCCGCGTTCGACCGCGACCAGGAGATCCACCGTCTGTCCGCCCGCCTGCGGATGCTGCGTCGCTTCGGCGTGGACCTGTGCCTGGGCCGCATGAMTPAPRRAFALPARLSAKDDPVLIADDEAHLAAIAAAVDHQVADLTARLDVARRAPGGPGRPRSTATRRSTVCPPACGCCVASAWTCAWAANANANANANA
AK018_024392049hypothetical proteinATGCTGCGTCGCTTCGGCGTGGACCTGTGCCTGGGCCGCATGATGCGGGACGACGGCGTCACGTACGTCGGGCGCGTCGGGCTCACCGACGCCGCGGGGGAGCGGCTCCTGGTGGACTGGCGCTCGCCCGCCGCCGAGCCGTTCTTCCGCGCCACCCACGGCGACCCGCAGGGGCTGGTCAGCCGACGTCGCTACCGCTGGACCGACGGCCGGGTCACCGACTACTGGGACGAGGTCTTCCGCACCGACGGGCTCGCGAGCCACGCCGCGCTGGACGACCAGTCGGCGTTCCTCGCGAGCCTGGCCGCCGACCGGTCACCCCGGATGCGCGACGTCCTCGGCACGATCGCCGCCGACCAGGACGCGATCGTCCGGGCCGGATCGGCCGGCACGCTCGTGGTCGACGGCGGGCCCGGCACCGGCAAGACGGTCGTCGCGCTGCACCGCGCCGCCTACCTGCTGTACTCCGACCCGCACGTGGGCGAGCACCATGGCGGCGTGCTGTTCGTCGGACCGCACCGCCCCTACCTGGACTACGTCGCCGACGTGCTGCCCGGGCTCGGCGAGGAGGGCGTGCGCACCTGCACCCTGGCCGACCTGGTGCCCGAGGGCGCGGCGGCACGCCCGGAACCCGACCCGACCGTCGCGCGGCTCAAGGCCGACGCCCGGATGATCGCCGCCGTCGACCCGGCCGTCGCCCTGTCCGAGCAGCCGCCCACCGAGGGGATGCTGCTCGAGACGCCCTCGGCCGACGTGTGGGTCGACCCGCGCGACTGGGCCGAGGCGTTCGACGCCCCCGACCCCGGCACGCCGCACCACGAGGCCCAGGGCGTGATCGCCGAGGCGCTGGTGACGATCCTGGTGGGCCAGCTCGCCGACGCCGTGGCGGAGCCGCACGAGGACGGGTTCGGCTCGGACGAGAACCCCGGCTGGGACGCTGTGCCCACCGGGTACCCGCCCGCCGTCGGCGACGACGAGTTCGACGCCTACGGTCGCTCCGCTCCCGAGGCCGGAGCCGACCTGCGCCAGGAGCTCGCCGACCACCCCGACCTGCGCCGCGCCGTCGCGCGGGCCTGGCCGCTGCTGGACCCGGCCGACGTCGTCGGCGACCTGTGGACGGTGCCCGCCTACCTGCGCCGCTGCGCGCCGTGGCTGACGCCGGACGAGGTCGCCACGCTGCAGCGCACCGACGCGCACGCCTGGACCGACGCCGACCTGCCGCTCCTCGACGCGGCCCGGCGTCGCCTCGGCGACCCGGACGCCGCCCGTCGCCGCCGGCGGGCCGCAGCCGCGCAGGCCGCCGAGCGTGCCCGGATGGCCGACGTCGTCGACCACCTGATCGCCACCGACGACTCCGACCTCGGCGTGATGTCCATGCTGCGGGGCCAGGACCTGCAGGCCGCGCTGACCGGCGGCTCGCAGGTCCCCGCCCCCACGCCGGACGCGCTCGCCGGACCGTTCGCGCACGTCGTCGTCGACGAGGCGCAGGAGCTCACCGACGCGCAGTGGCAGATGCTGCTGGCCCGCTGCCCGTCCCGCAGCTTCACCGTCGTGGGGGACAGGGCCCAGGCGCGGCACGGGTTCGCCGAGTCCTGGACCGAGCGGCTGACACGGGTCGGGCTGGACCGCGTGACGCAGGCGTCGCTGACGCTGAACTACCGCACCCCGCCGGAGGTGATGGCCGCCGCCGCACCCGTCATCCGGGCCGCGCTGCCCGACGCGAACGTGCCAGAGTCCGTGCGCCCGGGCGGGGCGCCGGTGCGGTCCGGGACGACGGCGGACCTCACCTCCGTGCTGGACGATTGGCTCGCGCAGCACCCCGGCGGCACCGCATGCGTCGTCGCCGCCGACCCCGGCGCGGTGGGCCCGATCGGCGGCGACCGGGTCCGTGCGCTCGACCCGGTGTCCGCCAAGGGGCTGGAGTTCGACCTCGTGGTGGTCCTCGAGCCGGAGCGGATGGGGGACGGCATCGAGGGGGCCGTGGACCGGTACGTCGCGATGACGCGGGCCACCCGCGAGCTCGTGGTGCTGAGCCGGCCGGGAGTGTAGMLRRFGVDLCLGRMMRDDGVTYVGRVGLTDAAGERLLVDWRSPAAEPFFRATHGDPQGLVSRRRYRWTDGRVTDYWDEVFRTDGLASHAALDDQSAFLASLAADRSPRMRDVLGTIAADQDAIVRAGSAGTLVVDGGPGTGKTVVALHRAAYLLYSDPHVGEHHGGVLFVGPHRPYLDYVADVLPGLGEEGVRTCTLADLVPEGAAARPEPDPTVARLKADARMIAAVDPAVALSEQPPTEGMLLETPSADVWVDPRDWAEAFDAPDPGTPHHEAQGVIAEALVTILVGQLADAVAEPHEDGFGSDENPGWDAVPTGYPPAVGDDEFDAYGRSAPEAGADLRQELADHPDLRRAVARAWPLLDPADVVGDLWTVPAYLRRCAPWLTPDEVATLQRTDAHAWTDADLPLLDAARRRLGDPDAARRRRRAAAAQAAERARMADVVDHLIATDDSDLGVMSMLRGQDLQAALTGGSQVPAPTPDALAGPFAHVVVDEAQELTDAQWQMLLARCPSRSFTVVGDRAQARHGFAESWTERLTRVGLDRVTQASLTLNYRTPPEVMAAAAPVIRAALPDANVPESVRPGGAPVRSGTTADLTSVLDDWLAQHPGGTACVVAADPGAVGPIGGDRVRALDPVSAKGLEFDLVVVLEPERMGDGIEGAVDRYVAMTRATRELVVLSRPGVNANANANANA
AK018_02440768surA_1Chaperone SurAATGTCGAAGCGTCCGCTCGTCGCCGTCACCCTGGCCGCGGCCGTCGCCCTCGCCGGCTGCAGCGCCGACTCCGACGGCGAGGACACCTCGTCACCTTCCGCCGCCCCCAGCGCCGAGGCCACGCCGGACGCCGGCGCCGCGCCCGAGGCCGACCTCGAGGACGTGCCCGACGTCGTCGCCGAGGTCAACGGGGAGGAGGTCGGCCGCGAGGAGTTCGTCACGAGCTTCGAGGGACAGCTGCAGCAGGCCGCCCTGTCCCAGCAGCAGAACGGCGGCGGGGAGGTGGACCAGGATGCGCTCAAGGAGCAGGTGGTCGAGCAGCTGGTGAACAACCAGCTCCTGACGCAGGCCGCGGACGAGGCCGGGATCGAACCGACCGAGGAGGACGTGCAGTCCACGCTCGAGGACGTCGCCGCGCAGAACGGGCTCGAGTCGGCCGACGCCGTGATCTCCGCGCTGGAGGAGCAGGGCCTGTCCGAGAAGCAGGTGCGCGAGGACGCCGCGACCCAGTTCCGGGTCACGACCTACATCGAGGCCGAGGCCGACGTGCAGGAACCGTCCGAGAAGGAGCTGCGCGCGCAGTACGACGACCTCGTCGAGCAGATGGAGAACCAGGCCGGCGACGGCGCGTCGGCACCGGAGGTCCCGCCGTTCGAGGACGTCCGCGACCAGCTCGCCCAGCAGGCCACCAGCCAGCAGCAGAGCGCGGCGATCGACACCATCGTCACCGACCTGCGCGACGACGCGGACGTCACGATCCACCTGTGAMSKRPLVAVTLAAAVALAGCSADSDGEDTSSPSAAPSAEATPDAGAAPEADLEDVPDVVAEVNGEEVGREEFVTSFEGQLQQAALSQQQNGGGEVDQDALKEQVVEQLVNNQLLTQAADEAGIEPTEEDVQSTLEDVAAQNGLESADAVISALEEQGLSEKQVREDAATQFRVTTYIEAEADVQEPSEKELRAQYDDLVEQMENQAGDGASAPEVPPFEDVRDQLAQQATSQQQSAAIDTIVTDLRDDADVTIHLPGPT0014978_2763DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014978-surA-K03771NANA
AK018_02441762hypothetical proteinATGGATCACGGCCACGAGGTCGGCCACCGGATCGAGCACGCGATCATGGCGCAGCTGGAGAACCACGCGCCGGAGCTCGCCCTGACGGACGACCGCGACGGGCTGCTGGCGCGGTTCCGCGAGCTGCGCACGGAGTTCCAGCGGCTGCGGCTGACCTACCAGTTCGGCATCGAGGAGGTGTCGACCAAGGTCAACATCCTGCGCCAGGAGTTCGAGAGCACCTACGACTACAGCCCGATCGAGCACGTGCGCAGCCGGCTGAAGTCGCCCGACAGCATCCTGACCAAGGCGATGCGCCAGGGCACCGACCTCACCGTGGCCGCGGTCCGGTCGGAGATCCGCGACATCGCCGGCATCCGCATCACGTGCTCGTTCGTCTCCGACGTGTACTGGATCGCGGAGATGCTCAGCACCCAGGCCGACCTGCGGCTGCTGACCACCAAGGACTACATCGCCGCGCCCAAGCCCAACGGCTATCGGTCGCTGCACCTCATCGTCGAGGTGCCGGTGTTCCTGTCCGACCACGTCGAGCACGTCCCGGTCGAGCTGCAGATCCGGACCATCGCCATGGACTTCTGGGCCTCGATGGAGCACAAGCTGCACTACAAGTACGACGCCGACCTGCCGGCGGACCTCGCCGCCGAGATCGACGACGCCGCCCGCGTGGCCGCCGACCTGGACGCCCGCATGGGCCGGCTGCGCGACGTGGTGCGTCCGTCGCCGCGGGCCGGTGACGACCTGGCCGCCCTGCACCAGAGCTGAMDHGHEVGHRIEHAIMAQLENHAPELALTDDRDGLLARFRELRTEFQRLRLTYQFGIEEVSTKVNILRQEFESTYDYSPIEHVRSRLKSPDSILTKAMRQGTDLTVAAVRSEIRDIAGIRITCSFVSDVYWIAEMLSTQADLRLLTTKDYIAAPKPNGYRSLHLIVEVPVFLSDHVEHVPVELQIRTIAMDFWASMEHKLHYKYDADLPADLAAEIDDAARVAADLDARMGRLRDVVRPSPRAGDDLAALHQSPGPT0014825_527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0014825-ywaC|yjbM-K07816NANA
AK018_024428042-(acetamidomethylene)succinate hydrolaseATGGTCCAGCAGCAGTCCGCAGGTCCCTGGCACGTCACGTCCAAGGACGGGGTACGGCTGGCGGTGTGGAGCACCGGGACCGGTCCTCCGCTGCTCCTGGTGCACGGGTCGATGTCCGACCACCGCCGCTGGCGCATCACCGAGCGCCTGAGCGACGTCAGGACGGTGCACGCGATGGACCGGCGCGGTCGCGGCGGCAGCACGGACGGTCCCGACTGGACCCCGGAGCGGGAGGTCGAGGACGTCGTCGCGGTCGTGGAGGCCGTGGCGGCCGACGCCGGGCATCCCGCCGACGTGCTGGGCCACTCGTTCGGCGGCTACCTGGCGGTCCGGGCAGCAGCCCGCACCGCGCAGGTGCGTCGGCTGGTGCTCTACGAGCCGGCCGTCGTGCCGCACCCCCAGCCGCCCGAGCTGGTCGCCCGCGTGCAGGCGGCGGTCGACGCCGGACGGTCCGAGGACGCCGTCGAGATCATGCTGCGCGACGTGCTGCACATGCCCGAGGAGGTGATCACGATGCTCCGGGCGCAGCCGAGCTGGCCGGCGCGCGTGGCCACGGCCCCGACCCTGCCCCGGGAGGAGAGTGTCCCGCTGATGCTGGACCCCGCCGAGGCGGCCGCCGTCACGGCGCCCACGCTGCTCCTCCGGGGCGGGGACAGCCCGGCGTTCCTGCAGGACGCGATCCGGACCGTGGCCGGCTCCGTCCCGGACTGCCGGGTCGTCACACTCGAGGGGCAGCAGCACGTGGCGGACCAGACGGACCCGGAGGGGTTCGCCCGTGTGGTGCGGGAGTTCCTTCGGTACTGAMVQQQSAGPWHVTSKDGVRLAVWSTGTGPPLLLVHGSMSDHRRWRITERLSDVRTVHAMDRRGRGGSTDGPDWTPEREVEDVVAVVEAVAADAGHPADVLGHSFGGYLAVRAAARTAQVRRLVLYEPAVVPHPQPPELVARVQAAVDAGRSEDAVEIMLRDVLHMPEEVITMLRAQPSWPARVATAPTLPREESVPLMLDPAEAAAVTAPTLLLRGGDSPAFLQDAIRTVAGSVPDCRVVTLEGQQHVADQTDPEGFARVVREFLRYNANANANANA
AK018_024432523hypothetical proteinATGCCGACCTCAGCCGCCCTGCGGTGCCCCTTGACCCCCCGTGGAGCGGCCGCATCGCTCCTGGCCGCCGGACTCGCCGTCGGCTTGGCAGCGACGAGCGCTGGCGCCGTCCCAGTCGTCACACCGACGACAGTGTCGACAAGCTCGAGCACCGAGGTCGACGCGACGGCTTTCGTCCAGGAGGGGGCTGCGAGATCGACCGGCGGGCAGGTCGTGGCGTGGGGTGATCATGTCGGATCGGTGGACGGCATCGTGCCACCGGCGCTCCCCGAGGGTGTGTATGCGGTCGGGCTTGTCGCGGGGGAGATGCAGCTGCTGGTGCTTCGCAGCGACGGCGGAGTCGACCGCTACGAGAACGGCGTCTCGTCCGGCTCCACGCAGCACCTGCCAGCACCGTCCGACGACCTCCGCTACACCGCAGCGGCTTCCACCTACAACGGATCTGCGCGCCTGCTCCGCTCCGACGGCGTCATCACGGACAGCTCGGGCGACGTCGTTCTCACTCCACCGGACGGATTGGCGTACACGGCGATCGCAGAGGGTCTCGCCCTGCGGACCGACGGTGTGCTCGAGCCGTCCGGGCATCCGGGCGTGAAGTGCTCGGACGCACGAGACCCGGGCGCCGGTCTGCGCTACACAGCGATCTCCCGGCGCGCCGGCGCGGAGGACTGGGCCGCCCTGCGCGATGACGGCGCGATGGTCTGGTGCCAAGGAGGGGAGGATGCGACGGCGACCGTGGTGGAGCCACCCGACGGGAGCTCCTTCATCGGTGTCGACATGGGTCAGGCCGAGGCGGTCGCGGTGACAACCCATGGACGAGTGATCTCGTCAGAGTCTGGGTTGCTCACCAGGGCTCCCGAGGGCCGGTCGATCGTCTCGCTCGCGGCAATGGGGCGCGGACAGGGCGCCGCCACCCTGGACGACGGGACCCTCCTGTCCTGGGGGCTGAGCGGCCAGGAGGCCACGCCGCCCGTCGTGCCGGAGGGCCGCGACAAGTTCAGCGCCGTGAGTGGCCATCACGGCTACGGCACCCACTGGTCGATCATGGTCGGCGACCCGATTCCGGTAGACGTCGACGTCGTCCAGGTCCAACTCCCCTCCGACCGACCACTTCGCGTGACGGACCCGATTCGGATGGCGCTCTCCGCGGGCCTGAGGGAGGGCCCGCCTACGTCGGGAAGGGTCGACGTCGAGATCCACGCCCCGGGCGGGTCAACCACGACACTCGACCCCATCGGCGCGGATCGCGGTGAGGCGCAACTCGTCCTCGGGCCCCGTGACCACGAGCGTGCCGGGCACTACGCCGTCGACGCAACCTTCTCTGCGGCTCCGTACGCGACAACGACCGTCAGGACCACGTTCGATCTCAAGACGCCCAGCCCAGTCACCGTATCGACCTCAGGACCGACGATCTGGCACCAGGGGAGCGAGGACACCCTCTGTGTCGACCTGGACACCGAGGACGGCTCACGCCTCTGGTATCCCTCGTACGACCAGGCGATCCTTCGCAGTGCTCTGAACTCCCGGACCGAGCTGTTCACCCGGCATGAAGGCTCGCAGGCCAGGGGCTGTGTCCGACACCTGGATCTCCCGCTGGGGACTCACACCCTCACCCTCGACTACGACAGCTGGGGCGACGTGGACGCGGCCTCTTGGACCGGGCAGGTCGAGGTGCTCCCTCCGGCAACGACGCTCATCGACACAGATCTTCCGGCGTCCTGGAAGTACGGCCAGCAGCCCGACGCCATTTGGGCCACAGTGACTTCCGACATGTCCACCCCCGTAGGATCCGCCCGGCTGGAGGTCGCGGACCGGCAACTCGGAATGGGCGCCCAGCTCGACCCGGCTGGTCGCGCTCGGCTCTGGCTCGGCGGCGAGCAAGAGCTGGAGCCTGGTACCCACACGGTCACGGCCACGTATCTGGGCGGGAACGGCTTCCTTCCCGCCACGCGGGACCACACCGTCACCGTCGAGGCTGCGGAATTCACGTCCAGCAGCGCATCGGTCCACGGCACTCCCGTGGTCGGCCGGGTGCTGAGCGCCGACACCGATGGATGGTCGCCGGCACCGACGGGCTTCCGCTACGAATGGCTTGTCGATGGAGACACCGTCGACGGGGCGACATCGAGCACCTTCGCGGTCCCGGCTTCAGCCGTGGGTAGATCGATCAGTGTGAAGGTCACCGGTCTCACCGATCATCACCGGACGTCGGTGACCAGCGCCCCCACGGACATCGTGGCGAAGGGCAAGTTCTCAGCCGACCGACCCGCCATCAAGGGCACCAAACGCGTCGGCAAGACCCTGCGCGTCGACCTCGGCACCTGGACACCCGAACCCACCTCCACCAAGTACATCTGGCGCGCCAACGGCGCCAAGATCGCCGTCCGCACCTCCCCACACCTCACCGTGCCGGCCAAAGCCCGAGGCAAGCGCCTCACCGTCACCGTCGTCGGCACCCGCGACGGCTACACCAAGAAGGGCATCACCAGCGCCCCCACGGTCAAGGTCCGCACGCGCCGGTAGMPTSAALRCPLTPRGAAASLLAAGLAVGLAATSAGAVPVVTPTTVSTSSSTEVDATAFVQEGAARSTGGQVVAWGDHVGSVDGIVPPALPEGVYAVGLVAGEMQLLVLRSDGGVDRYENGVSSGSTQHLPAPSDDLRYTAAASTYNGSARLLRSDGVITDSSGDVVLTPPDGLAYTAIAEGLALRTDGVLEPSGHPGVKCSDARDPGAGLRYTAISRRAGAEDWAALRDDGAMVWCQGGEDATATVVEPPDGSSFIGVDMGQAEAVAVTTHGRVISSESGLLTRAPEGRSIVSLAAMGRGQGAATLDDGTLLSWGLSGQEATPPVVPEGRDKFSAVSGHHGYGTHWSIMVGDPIPVDVDVVQVQLPSDRPLRVTDPIRMALSAGLREGPPTSGRVDVEIHAPGGSTTTLDPIGADRGEAQLVLGPRDHERAGHYAVDATFSAAPYATTTVRTTFDLKTPSPVTVSTSGPTIWHQGSEDTLCVDLDTEDGSRLWYPSYDQAILRSALNSRTELFTRHEGSQARGCVRHLDLPLGTHTLTLDYDSWGDVDAASWTGQVEVLPPATTLIDTDLPASWKYGQQPDAIWATVTSDMSTPVGSARLEVADRQLGMGAQLDPAGRARLWLGGEQELEPGTHTVTATYLGGNGFLPATRDHTVTVEAAEFTSSSASVHGTPVVGRVLSADTDGWSPAPTGFRYEWLVDGDTVDGATSSTFAVPASAVGRSISVKVTGLTDHHRTSVTSAPTDIVAKGKFSADRPAIKGTKRVGKTLRVDLGTWTPEPTSTKYIWRANGAKIAVRTSPHLTVPAKARGKRLTVTVVGTRDGYTKKGITSAPTVKVRTRRNANANANANA
AK018_02444345hcaC_1COG21463-phenylpropionate/cinnamic acid dioxygenase ferredoxin subunitATGCATCGTCTGTGTTCGTTGAGCGACCTCACCCCCGGTGAGGGACTGCGGGTCGACTCGGTCGCACCGCCGGTCGCCGTCTTCCTCGCGGAGGACGGCACGGTGCACGCGATCGACGACACCTGCACCCACCAGGACGCCTCCCTCGCCGAGGGCTGGCTCGAGGACGGCGCGGTCGAGTGCCCGCTGCACGAGAGCCGGTTCTGCCTGCGCAGCGGGGTGCCCGACGGCGGTCCCGCACGCGGCGCGGTGCGGGTCCACCGGACGGAGGTGGTCGACGGCGAGGTCCTCGTCGAGCTGTCGACCGCCGCGCCCTGCCTGCCGCCCGGGGTGGTCTCCGCATGAMHRLCSLSDLTPGEGLRVDSVAPPVAVFLAEDGTVHAIDDTCTHQDASLAEGWLEDGAVECPLHESRFCLRSGVPDGGPARGAVRVHRTEVVDGEVLVELSTAAPCLPPGVVSAPGPT0019745_65DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019745-hcaC-K05710NANA
AK018_024451197camAPutidaredoxin reductase CamAATGACCGGGCCCGCCGCCGTCCGCACCGGCGTCGTCGTGGTCGGCGCGGGACTCGCCGGCTGGGCCGTCGCCGACACGCTGCGGACCGAGGGCTACGCCGGCGACGTCATGGTCATCGGCGCCGAGGAGCACGCCCCGTACGACCGTCCCCCGCTGAGCAAGGACTTCCTCGCCGGACGCGTGGGACGCCCGGACCTCACCCTGGGCGGTAGCTCCGACGACGTCACGTGGCGGCTCGGGCGACGGGCCGTCGCGCTCGACATCCACACCCGCACCGTGACGCTCGACGACGCGTCCACCGTCACCGGCGACCACGTGGTGCTCGCGACCGGGGCCGCCGCACGGCGCCTGCCCGGTCCGCACGGGGCCGTGCACACCGTCGCCACGCTGGACGACGCCGAGAGGTTGCGCGCCGCTGTCAGGCCCGGCACGCGGGCCGTGGTGGCCGGCGCGGGATTCCTCGGCCTGGAGGTCGCCGCCTCGCTGACCGGGCTCGGCGCGCACGTCACCGTGGTGTGTGCCGCTGCCGGCCCGCTGCTGCGCGAGATCGGCCCCGACGCGAGCGCCGCCGTGCTCCGGCTCCACGAGGGGCACGGGGTGCAGGTGCTCACCGGGGCGCGGGTGGCCGGCGTCGTCGGCCCCCGCGGACGCCGCCGTGGGCGGACCAGCGTCGACGGCCCGTCCGGTCCGGTCGCCGTCGTGCTGGAGGACGGGCGGGAGATCGCCGCCGACCTCGTCGTCGTCGCGGCCGGAGCCGACCCGGCGTCCGCCTGGCTGGCCGGCAGCGGGCTGCGGCTCGACGGCGGCGTCGTGTGCGACGACGCCGGACTGGCCGCGCCGGGGGTGCACGCCGTCGGCGACTGCGCGGTGTGGGCGGGGGAGCGCTGCTCCCACTGGACGCGCACGGTGCGCCAGGCGCGGCGCGTGGCCGCCGTCGTCGCCCACGGACGGCCGCCCGAGGCCGACGCCGAACCCGACTACGTCTGGTCCGACCAGTACGACGCCCGCCTGCAGCTCGCCGGCAGCCTGCGCGGCGACGATACCAGCGAGGTGGTCTGCGCCGACGGCGGGCTGTTCGTCGTCTTCCGCTCCGGCGACGAGGAGGTCGCGGCCTTCGCCCTGAACCAGTCGCGTCAGCTGATGCGCTGGCGCAAGACCCACCGCCGTCGGCCCGCCGCAGAGAGGATCCCCGCATGAMTGPAAVRTGVVVVGAGLAGWAVADTLRTEGYAGDVMVIGAEEHAPYDRPPLSKDFLAGRVGRPDLTLGGSSDDVTWRLGRRAVALDIHTRTVTLDDASTVTGDHVVLATGAAARRLPGPHGAVHTVATLDDAERLRAAVRPGTRAVVAGAGFLGLEVAASLTGLGAHVTVVCAAAGPLLREIGPDASAAVLRLHEGHGVQVLTGARVAGVVGPRGRRRGRTSVDGPSGPVAVVLEDGREIAADLVVVAAGADPASAWLAGSGLRLDGGVVCDDAGLAAPGVHAVGDCAVWAGERCSHWTRTVRQARRVAAVVAHGRPPEADAEPDYVWSDQYDARLQLAGSLRGDDTSEVVCADGGLFVVFRSGDEEVAAFALNQSRQLMRWRKTHRRRPAAERIPAPGPT0019730_2372DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
AK018_024461128yeaW_1COG4638Carnitine monooxygenase oxygenase subunitATGATCATCGAGCAGCTCGACGAGCCCCTGCCGGGATCGCTCCTGCCCACGCTGGGCGGCAGCTGGTACACCGACCCCGACGTGTTCGCCCTGGAGCAGGAGCGCATCTTCTCCACGCAGTGGATGTGCGTGCTGCGCGGTGACGACCTCCCCGGGGCGGGCGACTACCGGCTGGTGCAGGTCGGCCGTGAGCAGGTCGTGGTGTCCCGCAACCGGCGGGGCGAGATCCGAGCGTTCCTCAACGTGTGCCGGCACCGCGGCATGCGGGTGTGCACCGAGCCCGCCGGCACCGCCCGGAAGTTCCAGTGCGGGTATCACGCGTGGACCTACGACCTGGACGGGAAGCTCGTCGCGGCGCCGAACCTGACGAAGATGCCCGACGTCGACCGCGACGCCTACGGGCTGCGCGGCATCGCGGTGCAGGAGTGGATGGGCTACGTGTGGGTGTGCCTGGCCCCGGAGCCGCCGTCGTTCACCGAGACGGTGCTGGGCGAGCTGGTCACCCGGCTCGGGGAGGCCGAGACGTTCGACGCCTGGCAGGTCGCCGACCTGCGGCTCGGGAAGCGGATCGCCTACGACGTGCACGCCAACTGGAAGCTGGTCATCGAGAACTTCATGGAGTGCTACCACTGCGCGACGATCCACCCCGAGCTCACCGAGGTCATCCCCGAGTTCGCGGACGGCTGGGCGGCGCAGACGTACGTCGGGCGCGGCGCGGAGTTCGGCGAGGGGGTCGAGGGGTTCACCGTCGACGGGTCCGCCGGGGTCGCGCCGCTGCCGCTGCTCGCCGCCGACCAGGAGCGACGCTACTTCGCGGTGACGATCAAGCCGTCCGTGTTCGTCAACATGGTGCCGGACCACGTCGTCGTGCACCGCATGTTCCCCACCGCGGTGGACCGCACGTACGTCGAGTGCGACTGGCTGTTCCTGCCCGAGGTCGTCGAGGCGGGGACCGACGTGTCCCGCTCGGTCGAGCTCTTCGACCGGGTCAACCGGCAGGACTTCGAGGCCTGCGAGCGGACCCAGCCCGCGATGTCGTCGGCCGCCTACGCCGACGGCGGCTCGCTGGTGCCGGCCGAGCACCACATCGAGACCTTCCACGCGTGGGTGCGCGAGCAGCTCGGCTGAMIIEQLDEPLPGSLLPTLGGSWYTDPDVFALEQERIFSTQWMCVLRGDDLPGAGDYRLVQVGREQVVVSRNRRGEIRAFLNVCRHRGMRVCTEPAGTARKFQCGYHAWTYDLDGKLVAAPNLTKMPDVDRDAYGLRGIAVQEWMGYVWVCLAPEPPSFTETVLGELVTRLGEAETFDAWQVADLRLGKRIAYDVHANWKLVIENFMECYHCATIHPELTEVIPEFADGWAAQTYVGRGAEFGEGVEGFTVDGSAGVAPLPLLAADQERRYFAVTIKPSVFVNMVPDHVVVHRMFPTAVDRTYVECDWLFLPEVVEAGTDVSRSVELFDRVNRQDFEACERTQPAMSSAAYADGGSLVPAEHHIETFHAWVREQLGPGPT0013680_712DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013680-gbcA-K00479NANA
AK018_02447708hypothetical proteinATGGTGAGCGCGACGCCTTCGAGTCCTGCTCTCAGATTTGCCTCCGCGGAATCCGTTCTGTCCACCCCTCGCCTGGACACCTACGTCCGCGCAGCCGACTGCGACGAAGCACATGCACTGGACCTGTATGTGTGGAACGCACGGGTGTGCGCCGCCCTGATGGTGCCGGCTCACTTTGCCGAGGTAGCCATCCGCAACGCCGTGGACCAAGTACTCACGACCGTCTACTCCGAGCGGTGGCCCTGGGATCGCGGGTTCGAGCTCAGCGTGCCGGCAGGCGGGCACTACGACCCGCGGCGCGACCTTCGGTCCACCCGTGGCAAGTACCCGACGACGGGGAAGGTCATCGCGGACCTGAGGTTCGCGTTCTGGCAGAAGATGTTCACCAGCCGCCACGACGAACGACTCTGGGAACCGCACATCCTGACTGCCTTCCCGGGTGTCGGAGGAATCACTCCCGCGAGACTCAGGGGCCGCATCTACGGGGACCTCGAAGTCATCCGCAAGCTGCGCAACCGGATGGCCCACCACGAGCCGGTCTTCACTCGCAACCTTCGCCGCGACCTGTCGCGGATGCACGACCTCGTCCAGCTCCGCTCGCCGGAGACCGGAGCGTGGGTCCGTGATCTCTCCGCGGATCTGCCCAGGCTCATCGATCAGATGCCCGCGGTCGTCGACCTGCGACGCAGGTCGGAGCCCGCGGGGTAGMVSATPSSPALRFASAESVLSTPRLDTYVRAADCDEAHALDLYVWNARVCAALMVPAHFAEVAIRNAVDQVLTTVYSERWPWDRGFELSVPAGGHYDPRRDLRSTRGKYPTTGKVIADLRFAFWQKMFTSRHDERLWEPHILTAFPGVGGITPARLRGRIYGDLEVIRKLRNRMAHHEPVFTRNLRRDLSRMHDLVQLRSPETGAWVRDLSADLPRLIDQMPAVVDLRRRSEPAGNANANANANA
AK018_024481167soxA_2Monomeric sarcosine oxidaseGTGCAGCACCACGACGTCATCGTCCTCGGTCTCGGCTCGATGGGCGGTGCGGCGGCGAACGAGCTGGCCGGGCGCGGCCTCGACGTCCTCGGCCTGGAGACGTTCACCCCCGGCCACGACCAGGGCTCGGCGCACGGCGGCTCGCGGATCGTGCGGCAGTCGTACTTCGAGTCCCCCGAGTACGTGCCCCTGCTGCGGCGGGCGTACGAGGGCTGGCACCGGCTCGAGGCCGAGTCGGGACGCGATCTGCTCACCCTGTGCGGCGGCATCTACCTCGGCGACCCGGCCAGCCCGACCTACGCGGGCAGCCGGCTGGCCGCCGAGGAGCACGGCCTCGACCACGAGGTGCTGGACGCCGCGGAGATCCGCCGCCGCTTCCCCACCATGGACCCCGCCGACGACGCTATGGGCTTGTACGAGTCGGCGGCGGGTTATGTACGTCCCGAGGAGACGGTGATCGCCAACGCCGAGGTGGCGGCCCGCCACGGCGCGACGCTGCGCTTCGGGGAGCGGGTGCAGCGCTGGAGTGCGACCCCGGGCGGCGGCGTCGAGGTGGTCACCCCCGAGGGGACCTACGGCGCCGACCGGCTCGTGGTGACGCCGGGCGCGTGGGCGCCGCAGATGCTGCCCGAGCTGGAGCTGCCGCTGTCCGTCGAGCGCATGGTCTTCTACTGGTTCACCCCGGACTTCGACGCCGTCCCTGTCGAGCGGTGGTCGCAGGAGCAGCACCCCGTGTACATCGAGGAGACCCACGGCAACGGGCAGATCTACGGGTTCCCGATGACCGACGGCCCCGCCGGCGGGTTCAAGCTCGGGTACTTCCACCTCGGCACGCCGACGGACCCCGACGCCGTCGACCGCGCCGTGCGCTCCGACGAGACCGCCGAGATGCGTCGACGGGCCCTCGAGCTCTTCCCGCACCTGACCGGTCCCGTGGTCCAGGCCAAGACCTGCCTGTACACCGTGGCGCCCGACGAGCACTTCGTCATCGGCACCCACCCGCTGCACGACCAGGTCGCGATCGCCTGCGGGTTCAGCGGGCACGGATTCAAGTTCGTGCCGGTGATCGGCGAGATCCTGGCGGACCTGACGACCGACGGCGCGACCGACCTGCCCATCGGGCTGTTCGACCCCCGGCGCCCCGCCCTCGCCGTGCCGACGGGATGAMQHHDVIVLGLGSMGGAAANELAGRGLDVLGLETFTPGHDQGSAHGGSRIVRQSYFESPEYVPLLRRAYEGWHRLEAESGRDLLTLCGGIYLGDPASPTYAGSRLAAEEHGLDHEVLDAAEIRRRFPTMDPADDAMGLYESAAGYVRPEETVIANAEVAARHGATLRFGERVQRWSATPGGGVEVVTPEGTYGADRLVVTPGAWAPQMLPELELPLSVERMVFYWFTPDFDAVPVERWSQEQHPVYIEETHGNGQIYGFPMTDGPAGGFKLGYFHLGTPTDPDAVDRAVRSDETAEMRRRALELFPHLTGPVVQAKTCLYTVAPDEHFVIGTHPLHDQVAIACGFSGHGFKFVPVIGEILADLTTDGATDLPIGLFDPRRPALAVPTGPGPT0013530_226DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013530-soxA|solA-K00301NANA
AK018_024492511dmg_1Dimethylglycine oxidaseATGACCGATCTGTCCCGCCTCACGTACCAGCCGCGCATCGTCGTGATCGGCCTCGGCGTCGTCGGTGCGGCGCTGGCCGACGAGCTCACCCAGCGCGGCATGCGGCACGTGACCGTCCTCGAGCAGGGCCCCCTGTGGGAGACCGGCGGCTCGTCCTCGCACGCGCCCGGCTTCGTCTTCCAGACCTCGCCGCACCGCACCATGAGCCTGCTGGCCCGCCGCACCCTCGACAAGCTCGACGGGCAGAAGGTGGACGGGCAGTGGCTGCTCAAGCGGCTCGGCGGCCTGGAGATCGCGATCACCCCCGAGCGCCTGCACGACCTGTCCCGCCGCCACGGCCTCGCGCAGTCCTGGGGCATCCCGTCCCGGTTGGTCGACCCCGGCGAGTGCGCCGAGCTGTGGCCCGGCCTCGACACGACGAGCGTGCTCGGCGGCTTCCACACCCCGACCGACGGCGTCGTGAAGTCCGTGCACGCCGTCCGCTGGCAGGCTGAGCGGGCCGTGGAGCACGGCGCCCGCCTCGTGCCCCGCACCCGGGTCGTGGGCGTGACCCGGACCGGCGGCCGCGTCACCGGCGTCGAGGTCCTCCCGGTCCCGGCACCCGACGGCGCGACGCCGGAGCACGTGCCGGCCGACGTCGTCGTCGCCTGCGCCGGCCTGTGGGGTCCGGGCCTGGCCCGCGACCTGCTCGGTTTCGAGCTGCCGATGATGCCCATGGAGCACTGCTTCGGCCTCTCCGCACCCGTGCCGGGGCTGATCGGTCGGCACGACGTGCTCGACGAGGCCTCCCGCCCGATGCTGCGGCACCAGGACTTCTCGCTGTACCTGCGCGAGTACGTCGACCGGATCGGCATCGGCGCCTACCGCCATCGGCCGATGCCCGTGGAGCCCGACGCCGTGGCGAGCGCCGACGAGTTCGTGGCCACCGGTGTGCACCCCGCCATGCACCCGCTGACCTGGGAGGATTTCGGTCCGTCGTGGGACGAGGCACGCCGCCTGCTGCCCGAGCTGCGCGACGTCGGCTTCGGCGAGGGCTTCAACGGCATCTTCTCCTTCACGCCCGACGGCGGGCCGATGCTGGGACCGGTCGCCGGGATCGACGGGCTCTGGCTCGCGCAGGCCGTCTGGGTCACGCAGTCCGCGGGCGTCGGGCAGGTCATGGCCGACTGGATCGTGCGCGACGACCCGGGCGTCGACACCCACGGGCTGGAGTACACCCGCTTCGACCCCGCCGTGGTCAGCCGCGACTGGACGCGCGCCCGGGCGGCCGAGGCGTACGCGGAGGTCTACGACGTCGTCCACCCGCAGGCCTCCACCGAGGTGCAGCGTGGCCTGCGCACGAGCCCGTTCCACGACCGCCAGCGTGAGCTCGGGGCCGTGTTCGAGCAGGCGAACGGCTGGGAGCGGCCGCTGTGGTTCGAGGCCAACGCCCCGCTCGTGGACGCCCTCGACCGCGTCCCGCACCGCGAGAAGTGGGCCGCGCGGCACTGGTCACCGATCGCGGCCGCGGAGGCCCACGCCACCCGCACCGCCGTCGGTCTGTACGACATGACCCCGCTGTCCCGCCTCGAGGTCTCCGGACCCGGTGCGACCGCGTTCCTGCAGCACCTGACCAGCAACGACGTCGGCCGGGCCGTCGGACGCGTCGTGTACGCGCTGCTGCTCGACGACGCGGGCGGCATCCGCTCGGACATCACCGTGACGCGGCTCGGGCCCGAGCAGTACCTGGTCGGCACCAACGGGCACCGCGACCGCGTCCACCTGGAGAGCCGGTGCCCCGACACCGTCCGGATCACCGACCTCACGGCGGGCACGTGCGGGCTCGGACTGTGGGGGCCGCGTGCCCGCGACGTGCTCGAACGCCTCACCGACGACGACGTCTCGCACCAGGCGCTCGGCTACTTCCGCGCCAAGCAGCTCCGGGTCGCCGGCACCGACGTGCTCGCGCTGCGCGTCAGCTACGTCGGCGAGCTCGGCTGGGAGCTGTGGACCACCGCCGACCAGGGCCGACGGCTGTGGGACAGCCTCCGGGAGGCCGGTGCGCCGTCGGGACTCGTCGCCGGTGGGCGGCGGGCGTTCCACAGCCTGCGCCTCGAGAAGGGCTACCGCGCGTACGGCACCGACATCGGCCGCGAGCACTCCCCCGAGGAGGCGGGCCTCGGTTTCGCCGTGAGCCGCCGGAAGGGCGACTTCGTGGGCCGGGCGGCGCTCGCTGATCGGCCCGTCCGACGGCGGCTCGCCTGCCTCACGCACGACGACACGGACGCCGTCGTGCTCGGCGGCGAGCCGGTGCTGGCCCGCGGTGCCGGACCGGGCCAGGGCGCCGTCGGGCACGTGACCAGTGCCGACCAGTCGTACACCCTCGGGGTGACCGTGGCGTACGCCTGGCTGCCCCCGGAGCTGGCGGAGCCCGGTACGGCGTTGGACGTCGAGTACTTCGGCCGCCGCCTGCCCGCTACCGTGCAGTCGGAACCGCTGGTCGACCCCGAGATGTCGCGCATCCTGCGCTGAMTDLSRLTYQPRIVVIGLGVVGAALADELTQRGMRHVTVLEQGPLWETGGSSSHAPGFVFQTSPHRTMSLLARRTLDKLDGQKVDGQWLLKRLGGLEIAITPERLHDLSRRHGLAQSWGIPSRLVDPGECAELWPGLDTTSVLGGFHTPTDGVVKSVHAVRWQAERAVEHGARLVPRTRVVGVTRTGGRVTGVEVLPVPAPDGATPEHVPADVVVACAGLWGPGLARDLLGFELPMMPMEHCFGLSAPVPGLIGRHDVLDEASRPMLRHQDFSLYLREYVDRIGIGAYRHRPMPVEPDAVASADEFVATGVHPAMHPLTWEDFGPSWDEARRLLPELRDVGFGEGFNGIFSFTPDGGPMLGPVAGIDGLWLAQAVWVTQSAGVGQVMADWIVRDDPGVDTHGLEYTRFDPAVVSRDWTRARAAEAYAEVYDVVHPQASTEVQRGLRTSPFHDRQRELGAVFEQANGWERPLWFEANAPLVDALDRVPHREKWAARHWSPIAAAEAHATRTAVGLYDMTPLSRLEVSGPGATAFLQHLTSNDVGRAVGRVVYALLLDDAGGIRSDITVTRLGPEQYLVGTNGHRDRVHLESRCPDTVRITDLTAGTCGLGLWGPRARDVLERLTDDDVSHQALGYFRAKQLRVAGTDVLALRVSYVGELGWELWTTADQGRRLWDSLREAGAPSGLVAGGRRAFHSLRLEKGYRAYGTDIGREHSPEEAGLGFAVSRRKGDFVGRAALADRPVRRRLACLTHDDTDAVVLGGEPVLARGAGPGQGAVGHVTSADQSYTLGVTVAYAWLPPELAEPGTALDVEYFGRRLPATVQSEPLVDPEMSRILRPGPT0013545_142DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013545-dmg_like-K00309NANA
AK018_02450783kdgRCOG1414Transcriptional regulator KdgRATGGCGGAGAGCTCGGCGGGACGTGCGACCAGGGACGGCGCCGTCCAGTCCGTCGACCGGGCGGCCGCGATCCTCGAGCTCCTGGCCCGCACGGGCGAGCTGGGCGTGAGTGAGATCGCCCGCGAGCTGGGGGTGCACCGCTCCACGGCGTTCCGCCTGCTGGCGACGCTGGAGGCGCACGACCTGGTCGAGCGGGAGGAGCGGCGCGGCACCTACGTCCTCGGTGTCGGGCTGCTGCGCCTGGCCGGCCGGGTGACCCGCCGCATGGACCTCGCGACGGACGCGCGGGCGGTGTGCGACGACGTCACGGCGGAGGTCGACGAGACCAGCAACGTCGCGATCCTCGACGACGGTGCGGCGGTGAACATCACCCAGACCACCAGCTCGCAGCTGGTCGGGGTCGCCCGGCAGTACGTCGGCCAGCGCACGCCGCTGCACGCGACGTCGACCGGCAAGATGCTCCTCGCCCACGCCGGGGACGACGTCGTCGAGCGCGTGCTGGCCGGCCCGCTCGAGGTGTGCACCGACCGCACGATCACCGATCCGGCGGCGCTGAGCGAGGAGCTGGCGACGATCCGGCGTCGTGGCTGGGCGGCCGCCGTGGCCGAGTGGGAGCAGGACACCAACGCGCTCGCCGTCCCGGTGCACGGGACCGGTGGCCGCGTGGTGGCGGCGCTGAGCGTAACGGCGCCGAGCTTCCGGCTGACCCCGGAGGGCTTCGAGGAGACCGCGGCCGTGCTGACTCGGCACGCCGCGGGGCTCAGCGCGCGGCTCGGCGCGTAGMAESSAGRATRDGAVQSVDRAAAILELLARTGELGVSEIARELGVHRSTAFRLLATLEAHDLVEREERRGTYVLGVGLLRLAGRVTRRMDLATDARAVCDDVTAEVDETSNVAILDDGAAVNITQTTSSQLVGVARQYVGQRTPLHATSTGKMLLAHAGDDVVERVLAGPLEVCTDRTITDPAALSEELATIRRRGWAAAVAEWEQDTNALAVPVHGTGGRVVAALSVTAPSFRLTPEGFEETAAVLTRHAAGLSARLGAPGPT0018213_961DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
AK018_024511023hypothetical proteinATGTCCACCGTCCTGGTCACCGGAGCATCCGGCTTCATTGCCAAGCACGTCGTGCGTGAGCTGCTCGACGCCGGTCACACGGTGCGGGCGACGGTCCGGTCGGACCGTCGGCGGGCGCAGGTCGAGGCGCTCTTCCCGGGGGCCGCCGTCGAGTTCGTCTCGCTCGACCTCACCTCGGACGACGGGTGGGACGAGGCGCTGACCGGTGTGGACGTCCTGATGCACACGGCGTCCCCGTTCCCGACGGCGCCGCCCAAGGATCCGCAGGACCTCATCCGACCCGCGGTGGACGGGACCCTGCGCGCGCTGCGCGCCGCCCGGGCGGCGGGCGTGCACCGGGTGGTCCTGACCTCGACGTGCGGCGCGATCTACAAGCCGGCCGACCACGACTGGTCCCGCCGGAAGACGCGTGCGGACTGGACGGAGATCGACGGGCCGCGGACCACCCCGTACGAGGCGTCCAAGACGCTGGCCGAGCAGGCGGCCTGGCGTTTCGTCGCCGAGCACCCCGAGATGCGGCTGACCGTGGTCAACCCGGGCATGGTGTTCGGCCCGGCGTTGGACGAGCACTACGGGTCGTCCCTGGAGACGGTCGAGCAGCTCGTCACCGGACGGATGCCGATGCTGCCGCAGATGAACATGCCGGTCGTCGACGTCCGGGACGTCGCACGCATCCACGTCCGGGCGATGACCGACGACGGTGCGGTGGGCCAGCGTTTCCCGGCGAACGCCGGGCGGATGTCCATCCCGGAGATGGCCGACGTGCTGCGTGCCGCTTACCCGGACGCCCGGATCACCACGCGCGTCGCGCCGGACTGGCTGATCCGCGTCCTGTCCGCCGTCGTGCCGGCGATGCGGACGGCCTCCCGGGGTCTGGGCCTGAACGCCGACGTGGACGGCTCGGACGCTCCGCGCCAGTTCGGCTTCGACTACATCTCCTCGCGCGACGCCCTGCTGGCTGCGGCGGAGTCGGTGCGCGGCGGGGCTGCTGCCGGCGGCGGGGGTCCGACGGCGTCCCGATAGMSTVLVTGASGFIAKHVVRELLDAGHTVRATVRSDRRRAQVEALFPGAAVEFVSLDLTSDDGWDEALTGVDVLMHTASPFPTAPPKDPQDLIRPAVDGTLRALRAARAAGVHRVVLTSTCGAIYKPADHDWSRRKTRADWTEIDGPRTTPYEASKTLAEQAAWRFVAEHPEMRLTVVNPGMVFGPALDEHYGSSLETVEQLVTGRMPMLPQMNMPVVDVRDVARIHVRAMTDDGAVGQRFPANAGRMSIPEMADVLRAAYPDARITTRVAPDWLIRVLSAVVPAMRTASRGLGLNADVDGSDAPRQFGFDYISSRDALLAAAESVRGGAAAGGGGPTASRNANANANANA
AK018_02453717hypothetical proteinATGGGAGCGCTGGACCGCTTCGAGAAGAGCGTCGAGCGACTGATGAACAACGCGTTCTCCAAGGTGGGACGCGGTGAGGTCAAGGCTGTCGAGCTGGCGAGCCGGCTGCGGCGCGAGATCGACGACCGTGCCGCCGTCGTCGGTCACGACCGCACGGTGGCGCCGAACGAGTTCACGATCGATCTCGCCCCGAGCGACTTCGCCCAGGTGCAGTCCTGGGGTGCGGAGCCGCTCGCCGACGAGCTCGCGACCAACCTCACCGAGTACGCGGCGACGCAGCACTACGCGTTCGTCGGCCCGGTGAGCGTCTCGTTCGAGGAGCACTCGGAGCTGACCGGTGGCCGGTTCACGGTGCGGGCGGCGACGGTGCGCGGCAACGTCGCGCCCGCCACGAACCCCGCGCCGAGCACCCGGCACCCGCTCATCGACATCGACGGGCAGCGGTACCTGCTCACCGGCCCCGTGACGGTCATCGGCCGCGACGCCGAGGCCGACATCGTCGTCGACGACCCGGGCGTCTCCCGCCGCCACCTCGAGATCCGCGTCGCCCCAGAGGGCGTGATCGCCACCGACCTCGGCTCCACCAACGGCCTCTTCGTCGAGGGCCACCAGGTGCCGGCCGCCACGCTGCTGGACGGCAACACCCTGACCATCGGACGGACCCGCATCATGTTCTGGACCGGGTCCTCCGCCGGACGCTCGAGCGAGGACTGGTGAMGALDRFEKSVERLMNNAFSKVGRGEVKAVELASRLRREIDDRAAVVGHDRTVAPNEFTIDLAPSDFAQVQSWGAEPLADELATNLTEYAATQHYAFVGPVSVSFEEHSELTGGRFTVRAATVRGNVAPATNPAPSTRHPLIDIDGQRYLLTGPVTVIGRDAEADIVVDDPGVSRRHLEIRVAPEGVIATDLGSTNGLFVEGHQVPAATLLDGNTLTIGRTRIMFWTGSSAGRSSEDWNANANANANA
AK018_02454492fhaB_1COG1716FHA domain-containing protein FhaBATGAGCGAGCTGACGTTCACCCTGCTGCGGCTGGGCTACCTGGTGCTGCTCTGGGTGTTCGTGCTCTCCGCGATCGCGGTGCTGCGCCGCGACATGGGGTCCCGATCCGTGCGGGCGGCCCGTCGCCAGCGGTCCGACGGCGGCTCGTCGTCGTCCGCCCCGGCCGCCTCGGCGGGCAGCCCGCCCCCGCCCCGGCGCTCGGGTCCGACGCGGCTCGTCGTCACGGCCGGCCCGCTGACCGGCACCACCCTGCCGCTGTCGACGTCGTCGATCCTCATCGGCCGGGCCCCGAGCTGCACCCTCGTGCTCGACGACGACTACTCGTCGTCGCGGCACGCCCGCATCTTCCCGCAGGGAGACCAGTGGTACGTCGAGGATCTCGGCTCGACGAACGGCACCTACATCGGCGACCAGCGCCTTTCCTCACCCACCCACCTGCCGCCGGGCGTCGGCGTGCAGATCGGCCGGTCCGTCGTCGAGCTGCAGGGGTGAMSELTFTLLRLGYLVLLWVFVLSAIAVLRRDMGSRSVRAARRQRSDGGSSSSAPAASAGSPPPPRRSGPTRLVVTAGPLTGTTLPLSTSSILIGRAPSCTLVLDDDYSSSRHARIFPQGDQWYVEDLGSTNGTYIGDQRLSSPTHLPPGVGVQIGRSVVELQGNANANANANA
AK018_024551329pstP_1COG0631PP2C-family Ser/Thr phosphataseGTGAGCCTCGCCCTACGCTACGCCGCCCGGTCCGACATCGGCCTCGTGCGGTCCGACAACCAGGACTCGGCGTACGCCGGACCCAACCTGCTCGTCGTCGCCGACGGCATGGGCGGCCACGCGGGCGGCGACATCGCCTCCGCCCTGGCGATCGCCGCCCTGGCGCCCCTGGACACCCCGGAGCACGGCCCCGAGCAGGCGTTGTCCGACCTGGAGCACACCGTCGAGCGGGCCCGCCAGGACCTGGTCGACGCGTCGGAGGCCGACCCGGAGCTCGCCGGGATGGGCACCACCGTCACCGCGCTGCTGCGTTCCGGCAACACCCTCGCGATGGCGCACCTCGGCGACTCCCGCGCCTACCTGCTGCGCGACCAGGTGCTCAACCAGGTCACGGTGGACCACACGTTCGTCCAGCACCTCGTCGACACCGGCCGCATCTCCCCGGACGAGGCCGAGACCCACCCGCAGCGCAACGTCGTCATGCGGGTGCTCGGCGACTTCGACGTCGACCTCACCCCGGACATGTCGATCCGGGAGGCGCGCGCCGGCGACCGCTGGCTGCTCTGCTCCGACGGGCTGTCCGGGTTCGTGCCGATCGAGCAGATCACCCAGGTGCTCGTGGAGTGCGAGTCGCCGGACGAGGCCGCCGACCTGCTCATCACCCTCGCCATGACCGCGGGCAGCACGGACAACATCACCGTCGTCGTGGCGGACGTCGTGGACGTGGCGGCCGACGACGCGGCCGCGGCCTCGCAGGTCGTGGGCGCCGCCGCGACGCACGACACCCCGGCGCCGACCCACCGCGACGACACCGCGACGCACGACGAGGCACCGGCCCCACGCGAGGACGACGACGAGGAGGACGAGGACGACGACGTCCGCCCGGCCCCCCGCCGTCGTCCCTGGATCGGCGTGCTCGTGGCGATCCTGGTGCTCGGCGGCCTCGGCTACGGCGGCTGGTGGGCGTACGGGTGGACCCAGGACCAGTACTACGTGGGCGTCGCCGACGGCGAGGTCGCCGTGTTCCAGGGCATCCCGCAGGACGCCGGACCCCTGACGCTCTCGCACCCCGTCGACTGGACGGGCACCGCCGTCGACGAGCTCCCCGCGTACTGGGTCGACCGCCTCGACGGCACCATCCGCGCCTCCTCGGAGTCCGAGGCCCGCGCCCGCGCCGACGCACTCATCGACGAGGCCCTGCCGACTCCCACCCCGACCCCGACCCCCAGCCCGTCGCCGTCGACGAGCCCGAGCCCCGCACCGTCCCCCACGCCCACCGGGCGCGACGGCGACGGCGGCGGCGCCGGCTCCGAGGGGGCGCAGGCGTGAMSLALRYAARSDIGLVRSDNQDSAYAGPNLLVVADGMGGHAGGDIASALAIAALAPLDTPEHGPEQALSDLEHTVERARQDLVDASEADPELAGMGTTVTALLRSGNTLAMAHLGDSRAYLLRDQVLNQVTVDHTFVQHLVDTGRISPDEAETHPQRNVVMRVLGDFDVDLTPDMSIREARAGDRWLLCSDGLSGFVPIEQITQVLVECESPDEAADLLITLAMTAGSTDNITVVVADVVDVAADDAAAASQVVGAAATHDTPAPTHRDDTATHDEAPAPREDDDEEDEDDDVRPAPRRRPWIGVLVAILVLGGLGYGGWWAYGWTQDQYYVGVADGEVAVFQGIPQDAGPLTLSHPVDWTGTAVDELPAYWVDRLDGTIRASSESEARARADALIDEALPTPTPTPTPSPSPSTSPSPAPSPTPTGRDGDGGGAGSEGAQANANANANANA
AK018_024561596rodACOG0772putative FtsW-like proteinGTGAGCGCTGACACCCCCGCGGTGACACCGCGCCAGCGCAGGCCGCTGCGTCTGGCCGAGATCTTCCTGCTGATCCTCGCCCTCGGCGGCGGGGTCGGCGGGTACGCCATGGTGGGGCTGTCGATCCGCGGCGAGCTGCCGGAGAGCTTCTGGTGGCGTGCCGGCCTGCTCGGGCTGACGGCCCTGGTGGCGCACGTGGTCCTGCGGCTGCGCGCCCCCTGGTCGGATCAGGTGATCCTGCCCGCGGTGGTGCTGCTCAACGGCATCGGCCTGTCGATGATCTGGCGACTGGAGATCTCCGACTCCGCCGGCATGGCTCCCGCGGACGCTGCCGGGAACATGAGCGCGTCGCTGCTGGGCGCCGTCGTCGCGTTCACGCTCCTGTGGATCCTGCGCGACCACCGGTGGCTGCGCCGCTACACGTACATCGCGATGCTGGTCGGCCTGCTGCTCGTAGCGCTGCCGCTGATCCCCGGGCTCGGCGAGGAGATCAACGGCGCACGCATCTGGATCTCGGTCGGCGGGTTCTCCCTCCAGCCCGCGGAGTTCGCCAAGATTGCGTTCGCCGTGTTCTTCGCCGGCTACCTGGTGGTCAACCGCGACACGCTCGCGCTGGCCGGTCCCAAGCTCCTGGGCCTGCACCTGCCGCGGCTGCGCGACCTCGGCCCCATCCTGGTGGTCTGGGCGGCCTCGCTGGTCGTGCTCGTGTTCCAGCGCGACCTTGGCACCTCGCTGCTGTTCTTCGGCCTGTTCGTCGCCATGCTCTACCAGGCGACCGCCCGCTCGAGCTGGATCCTGCTGGGTCTGTCCCTGTTCGCCGTCGGTGCGCTGGCCGCCGCCCGCCTGTTCCCGCACGTGCAGGCCCGCGTCGACGTCTGGCTGCACCCGTTCGACGCCGAGTACTACGACCGCGAGATCGGCGGGTCGTTCCAGCTCGTCCAAGGGCAGTTCTCCATGGCGAACGGCGGGTTGTTCGGCACCGGCTGGGGTGAGGGCCGTCCGTTCCAGATCCCCTACGCCTACTCCGACTTCATCTACGCCGCCCTCGGCGAGGAGCTCGGTCTGACGGGGCTGGCCGCCATCCTCCTGACGTACCTGCTGATCGTGCAGCGCGGCCTCAAGACGGCCGTGACGGTGCGCGACGGCTTCGGCAAGCTGCTCGCGGGCGGCCTGGCGTTCGTGATGGCGCTGCAGATCTTCGTGGTCGTCGGGGGCATCACGCGGATCATCCCGCTGACCGGCCTGACCCTGCCGTTCATGGCGCAGGGCGGGTCGTCGCTGCTGGCCAACTGGATCGTGGTTGCGCTGCTGCTGCGCATCTCGGACCAGGCCCGCAGACCGTCCGACCTGCCGGTGCGCGGCCAGGTCTCGCCCGGCCGGGCCGAGCCCGAGCCCGTCCTCGTCGGGGCGGGGTCCGACGGCGGCGCCCCGGCCGCCGGCACGCCCGCCGCGGGGACCCCGGCCTCCGGCTCGTCGTTGCCGCGCCGCCGTGTCACGGACCGTGACGTGCCCGACGGCGGCACCGATCCGGCGTCGTCCGCACCGACCGAACGCCTCGACCATCCCGACGACCGGCCAGGAGGTGAGCACCGGTGAMSADTPAVTPRQRRPLRLAEIFLLILALGGGVGGYAMVGLSIRGELPESFWWRAGLLGLTALVAHVVLRLRAPWSDQVILPAVVLLNGIGLSMIWRLEISDSAGMAPADAAGNMSASLLGAVVAFTLLWILRDHRWLRRYTYIAMLVGLLLVALPLIPGLGEEINGARIWISVGGFSLQPAEFAKIAFAVFFAGYLVVNRDTLALAGPKLLGLHLPRLRDLGPILVVWAASLVVLVFQRDLGTSLLFFGLFVAMLYQATARSSWILLGLSLFAVGALAAARLFPHVQARVDVWLHPFDAEYYDREIGGSFQLVQGQFSMANGGLFGTGWGEGRPFQIPYAYSDFIYAALGEELGLTGLAAILLTYLLIVQRGLKTAVTVRDGFGKLLAGGLAFVMALQIFVVVGGITRIIPLTGLTLPFMAQGGSSLLANWIVVALLLRISDQARRPSDLPVRGQVSPGRAEPEPVLVGAGSDGGAPAAGTPAAGTPASGSSLPRRRVTDRDVPDGGTDPASSAPTERLDHPDDRPGGEHRNANANANANA
AK018_024571464pbpA_1COG0768Penicillin-binding protein AGTGAACATCACGACCCGTCGGCTGGCCTCCATCGTGATGGTCATGTTCCTCGCGCTGCTCGTCTCCACCACCTGGATCCAGTACTTCCAGGCCGAGTCCCTCAACGACGACCCGCGCAACGCCCGGTCGCTGTACGCCCAGTTCGGCACCGACCGCGGCCCGATCGTGGTGGGGGGCGACGCGATCGCGGACTCCGTGCCCGTCGACGACGAGTGGAACTACCAGCGCCAGTACGCCCAGGGCCGGCTGTACGCCCCGCTGACCGGCTACTACTCGCTGGTCAGCGGCACGTCCGGCATCGAGCAGGCCGAGAACGACTTCCTCGCGGGCTCCGCCGACGCCCTGTGGGTGGACCGGCTGACCAACCTGCTCACCGGTTCGGACCCACAGGGCTCCGCCGTCGAGCTGACCATCGACCCCGCCGCACAGCAGGCGGCGTGGGACGCCCTCGGCGACCAGCGCGGCGCCGTCGTCGCCCTGGAACCCTCTACGGGCAAGATCCTGGCGCTGGTCTCCAAGCCGACGTTCGACCCGAACGACCTGGCGACCCACAGCACCAGCGAGGCGAACCAGGCGTACCTCGACCTGGTGAACGACGACGACGACCCGCTGATCAGCAGGGCGACCAACACGCTCTACCCACCGGGGTCGACGTTCAAGCTCGTCACCACCGCGGCGGCGCTCGAGAGCGGCGACTACACGCCCGAGACGGTCATCCCCGCACCCTCGACCTACACGCTGACGCAGACGGAGACCCAGGTCGGCAACTTCGCCGGCACGTCCTGCGCGTCCTCGGGGGAGATGACCCTCGCCGACGCGCTGCGGATCTCCTGCAACACCGCTTACCTGGGGCTGGCCGGCGAGCTCGGCGCCGACGACATGAACTCCCAGGCCGAGGCCTTCGGGTTCGGCAGCCCGTACGACGTCCCCTTCACCACGTCGGCGAGCCAGTACGACCCCGACGTCGACACGATGACCACCGCCCAGGTCGAGCTGTCCGGCATCGGCCAGGGCAGCGTGAACACCACCCCGCTGCAGGTCGCGATGACGTCGGCCGCCATCGCGAACGGCGGCGAGGTCATGGTGCCGTACTCCGTCGACCGCATCCGCGACGCCGAGCTCGAGGTCGTCGAGGAGACCCGCGCCAACGCTCTCGGCCGGGCGATCTCCTCCAGCACCGCCGACGAGCTCACCGACATGATGGTCAGCGTCGTCGAGAGCGGGTCCGGCACCGCGGCGCAGATCTCCGGCGTCTCCGTGGCCGGCAAGACGGGCACGGCCCAGCACGGCGACAACTCCGAACCGCCGCACGTGTGGTTCACCGGGTTCGCCCCCGCCGACGACCCGCAGGTGGCCGTCGCCGTGGTCGTCGAGAACGGCGGCGCGATGGGCTCCGAGGCGACCGGCGGGCGCGTCTCCGCACCGATCGCCAAGGCGGTCATGGAGGCGGTGCTGAACGGATGAMNITTRRLASIVMVMFLALLVSTTWIQYFQAESLNDDPRNARSLYAQFGTDRGPIVVGGDAIADSVPVDDEWNYQRQYAQGRLYAPLTGYYSLVSGTSGIEQAENDFLAGSADALWVDRLTNLLTGSDPQGSAVELTIDPAAQQAAWDALGDQRGAVVALEPSTGKILALVSKPTFDPNDLATHSTSEANQAYLDLVNDDDDPLISRATNTLYPPGSTFKLVTTAAALESGDYTPETVIPAPSTYTLTQTETQVGNFAGTSCASSGEMTLADALRISCNTAYLGLAGELGADDMNSQAEAFGFGSPYDVPFTTSASQYDPDVDTMTTAQVELSGIGQGSVNTTPLQVAMTSAAIANGGEVMVPYSVDRIRDAELEVVEETRANALGRAISSSTADELTDMMVSVVESGSGTAAQISGVSVAGKTGTAQHGDNSEPPHVWFTGFAPADDPQVAVAVVVENGGAMGSEATGGRVSAPIAKAVMEAVLNGPGPT0023920_510DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023920-pbpA-K05364NANA
AK018_024581434pknD_2Serine/threonine-protein kinase PknDATGAGACCTGCGGTAGGCATCTCCCTGGGCGAGCGCTATCGCCTCACGCGGCGCATCGCCGTCGGCGGCATGGGCGAGGTGTGGGTCGCCGACGATGGCTACCTGGGCCGCGACGTCGCCGTGAAGGTGCTGCGCGAGGAGTACACCGGCAACGAGGACTTCCTGCGCCGGCTGCGCACCGAGGCCCGCAACAGCGCCGCCCTGTCGCACCCCAACATCGCGCAGATGTACGACTACGGCGAGCAGGACGGCGCCGGATACCTCGTCATGGAGCTGGTGCTGGGCGAGCCCTTGTCCGACCTGCTCGAGCGCGAACCCGTCGTCGCACCCCGCAAGCTGCTGCCGATCCTGTCGGCTACCGCCCGCGGCCTGCACCACGCGCACGTCGCCGAGGTCGTCCACCGCGACGTCAAGCCCGGCAACATCCTGCTCGAGCACGACGGCGGCGTGAAGATCACCGACTTCGGCGTCTCCCTGGCCGCCAACCAGGCCACGATGACCGCCACCGGCATGGTCATGGGCACCGCCCAGTACCTCTCCCCGGAGCAGGCCGTCGGCCAGGCCGCCACCCCGGCGTCGGACCTCTACGCGCTCGGGATCGTCGCCTACGAGGCCACCGCCGGCAAGCGCCCCTTCACCGGGTCGACGCCGGTCGACATCGCCGTCGCGCACGTCAACAACGCCGTCCCGCCGCTGCCCCAGGCGGTGCACCCGGGCCTGAACGACGTCATCATGCGCATGCTCGCCAAGGACCCGAGCAAGCGGCCCGCGTCGGGCAAGGCGCTGGCCGACGAGCTGGACGCGCTCGCCGTCGAGATCGCCGAGGACCCGCTCGGAGCACGCTCACGATCCGCCCGCCGGGCAGCCCGGGCCGGCCGCCCCGCACCCGTGCGCCACGCCCGGTCCGAGCCCGCCCGCGCCACGCCGTCGGCCGGCTCCGCCGAGACCCCCGCACGAACCGCACGGGCCGCCGGCACGCCGTCGTCCCCGCCCCCGGAACCCGTCGCCACCCGCGCCGCCCGGCGGAACGCCGAACCCGGCCGCACCTACCCCGCGCGCCGCGACCTGCACGGAGGACCCGGCCGCACGACGCCCGTGCAGGGCGAACCCCGGACCCGCGCCGACGCCGGAGCGGGGGCCGGGACGACCCGGTCGTCCACGACGACCGGGCGCCGGCTCGGACCGCTGCAACGCTTCTCCTGGCCGCTGCTCGCACTCCTCGGACTGCTCGGGGTGCTCCTGGTGGCTACCGTGGTGAGTGCTCTGACCGGGGGCGGCGGCGACGACTCGGCCGCCGCGGCGGCCCTGGTCACCGCCGGAGCGCTGACGACACGGCCCGCACCGTTGCGGGCGATGACCGTGCCCGACTCTGGGATGATGTGCCCAGACCCGCCGCGCTCCGCGAGCGCGGCCACGACCGAGAAGGACGACTGAMRPAVGISLGERYRLTRRIAVGGMGEVWVADDGYLGRDVAVKVLREEYTGNEDFLRRLRTEARNSAALSHPNIAQMYDYGEQDGAGYLVMELVLGEPLSDLLEREPVVAPRKLLPILSATARGLHHAHVAEVVHRDVKPGNILLEHDGGVKITDFGVSLAANQATMTATGMVMGTAQYLSPEQAVGQAATPASDLYALGIVAYEATAGKRPFTGSTPVDIAVAHVNNAVPPLPQAVHPGLNDVIMRMLAKDPSKRPASGKALADELDALAVEIAEDPLGARSRSARRAARAGRPAPVRHARSEPARATPSAGSAETPARTARAAGTPSSPPPEPVATRAARRNAEPGRTYPARRDLHGGPGRTTPVQGEPRTRADAGAGAGTTRSSTTTGRRLGPLQRFSWPLLALLGLLGVLLVATVVSALTGGGGDDSAAAAALVTAGALTTRPAPLRAMTVPDSGMMCPDPPRSASAATTEKDDNANANANANA
AK018_024592085pknB_1COG0515Serine/threonine-protein kinase PknBGTGGAGAATACCCCCCGAGTACTCGCGGGCCGGTACGAGGTCGGTGAGCTCATCGGCCGCGGAGGCATGGCCGAGGTGCACATCGGTCACGACGCGCGCCTCGGGCGCACCGTCGCGATCAAGGTGCTGCGCTCCGACCTCGCCCGCGACCCGTCCTTCCTGGCCCGGTTCCGCCGCGAGGCGCAGTCCGCCGCCGCGCTGAACCATCCCGCGATCGTCGCCGTCTACGACACGGGCGAGGACACCGCCACCGACGCCGGCGGGCAGCAGGTCCACATCCCGTTCATCGTCATGGAGTACGTCGAGGGCCACACCGTCCGCGACATCCTCGCCGACGGTGCCGCGGTGCCGATCGAGGAGGCCGCGGAGATCACCGTCGGCATCCTCAGCGCGCTCGAGTACTCCCACCACGCCGGCATCGTCCACCGCGACATCAAGCCCGCCAACGTCATGATCACCCCCACCGGCGCGGTGAAGGTGATGGACTTCGGCATCGCGCGCGCCGTCGCGGACTCCGCCGCCACCATGACCCAGGGGCAGGCCGTCATCGGCACCGCCCAGTACCTCTCGCCCGAGCAGGCCCGCGGCGAGCAGGTCGACGCGCGCAGCGACCTGTACTCCACCGGCTGCGTGCTGTTCGAGCTGCTCACCGGCCGCCCGCCGTTCGTCGGCGACTCCCCGGTGGCGCTGGCGTACCAGCACGTCGGGCAGGAGGCGCAGCGTCCCAGCGAGATCGCCAGCGACGTGCCGGACGTCTTCGACCGCATCGTCCTCAAGGCCCTGACCAAGGACCGCGACCAGCGGTACTCCTCGGCCGCCGAGTTCCGCAGCGACCTCGAGTCGGCCATGCGGGGCGGCGCCGTCGGCGCGCCGGCCATCGGGGCCGCCGCCGCAGGCCTCGGCGCCGGGTACGCCGCCACGCAGGTGCTCGGCAACGACCCGACGTCCACCCAGGTCATGGACCCCTCCCAGTCCCCGTGGGGCGCCACCGGGCTGCCGGCCGACCAGACCGCCGCCGGCGGCGCTCCGCCCGAGGAGGAGGAGAAGCCGAGCCGCAAGGGTCTGATGTGGACCCTCATCGCCATCGGTGTGCTCGCGCTCGGCGCCATCATCACGATGCTGCTCCTGAACAACGACAGCGCCCCCGAGACGGTCGCCGTCCCGGAGCTGACCTCCGACATGAGCCGGGCGGAGGCCGAGCGCGAGCTCGAGGACGTCGGGCTCGGGTTCGCCGAACGGGTCGACGACGAGTCGGACGAGCCCGAGGGTACGCTGACGCGGACCGACCCGGAGTCCGGCACCGAGGTGGAGGTCGGCTCGACCGTCGACGTGTACTTCTCCGGCGGCCCCGAGACCTTCGCGATGCCGGACCTCACCGGGCTCAGCCTGGACCAGGCGCGCAGCGAGCTGGAGGAGGCCGGGCTCGAGGAGGGCGAGATCACCGAGGAGGCGAGCGCGGACGTCGACGCCGACCACGTCATCTCGACCGACCCCGCCCCCGAGAACGCCGTGAACCCCGGCGACTCGGTGAACCTGACCATCTCCAACGGCCAGGTCGACCTGCCCGACCTCATCGGGCTGTCCCAGTCCGAGGCCGAGTCCCGGCTCGACGAGCTCGGTCTGAACTACTCGACCGAACGTCAGGAGGTCGACGACCAGGCCGACGTCGGCAACGTCGTCAACCAGTCGCCCGAGGCCGGTTCCGTGACCCAGGACCAGCGCGTCACGCTGACCATCGGCGAGGAGCCCGAGGCCGAGATGGTCCAGGTGCCGAACGTCGTCGGGATGACCGCCGACGAGGCCCAGTCCGCGCTCGGCAACCAGGCCAACCTCAACGCCCGCCAGACCACCGCCGGCTCGGAGGAGTACTGCCCGGGCTACGTCTCGGCGTCGGACCCGCCCGCCGGCACCGAGGTGGAGGCCGGCAGCGAGGTCACCATCACCGTCTCGACCGGCGCCCAGGGCCAGAACTGCACCGGCGGTGCCACGCCGGAGCCGGCCGACCCTAACGTCGGCAACGACGAGGGCGACGACGACGGTGGCGGCGACGCCTCGCTGCCCGTCGAGCCGCCGGCCACCGACTGAMENTPRVLAGRYEVGELIGRGGMAEVHIGHDARLGRTVAIKVLRSDLARDPSFLARFRREAQSAAALNHPAIVAVYDTGEDTATDAGGQQVHIPFIVMEYVEGHTVRDILADGAAVPIEEAAEITVGILSALEYSHHAGIVHRDIKPANVMITPTGAVKVMDFGIARAVADSAATMTQGQAVIGTAQYLSPEQARGEQVDARSDLYSTGCVLFELLTGRPPFVGDSPVALAYQHVGQEAQRPSEIASDVPDVFDRIVLKALTKDRDQRYSSAAEFRSDLESAMRGGAVGAPAIGAAAAGLGAGYAATQVLGNDPTSTQVMDPSQSPWGATGLPADQTAAGGAPPEEEEKPSRKGLMWTLIAIGVLALGAIITMLLLNNDSAPETVAVPELTSDMSRAEAERELEDVGLGFAERVDDESDEPEGTLTRTDPESGTEVEVGSTVDVYFSGGPETFAMPDLTGLSLDQARSELEEAGLEEGEITEEASADVDADHVISTDPAPENAVNPGDSVNLTISNGQVDLPDLIGLSQSEAESRLDELGLNYSTERQEVDDQADVGNVVNQSPEAGSVTQDQRVTLTIGEEPEAEMVQVPNVVGMTADEAQSALGNQANLNARQTTAGSEEYCPGYVSASDPPAGTEVEAGSEVTITVSTGAQGQNCTGGATPEPADPNVGNDEGDDDGGGDASLPVEPPATDNANANANANA
AK018_02460654trpG_1COG0512Anthranilate synthase component 2ATGACCTCCATCCTCGTCGTGGACAACTACGACTCCTTCGTCTACACGATCGTCGGCTACCTCGATCAGCTCGGCGCGCGCACCACCGTCGTGCGCAACGACGCCGTGCCCGAGCCCGACGCCGAGGGTCGCTTCTGGCACGAGGACGGCACGGCGTACGACGGCGTCCTCGTCTCCCCCGGCCCGGGCACACCCCACGACGCGGGCTCCTCGGAGGACGTCATCCGGGCGTGCGCCCGGTCGGCCACGCCGATGCTCGGCGTCTGCCTCGGGCACCAGGCGCTGGCGGAGGTCTACGGCGCGACCGTCTCGCACGCCCCCGAGCTCATGCACGGCAAGACCAGCCGGGTGGAGCACACGGGGACCGGGGTGCTCGACGGGCTCGGGACGCCGTTCACCGCGACGCGGTACCACTCGCTGGCGGTCGAGCCGCAGACCGTGCCCGGCGAGCTCGAGGTGACCTGCTCGACGGCGTCGGGCGTCGTCATGGGACTCCAGCACCGGGACCTGCCGCTGCACGGGGTGCAATTCCACCCCGAGTCGGTGCTCACCGAGGGCGGTCACCGGCTGCTCGCGAACTGGCTGGCCGTGTGCGGTGACGACGCCGCCGTCGAGCGCTCGGCCGGCATGGCCCCGCTGGTCCACACCGCCTGAMTSILVVDNYDSFVYTIVGYLDQLGARTTVVRNDAVPEPDAEGRFWHEDGTAYDGVLVSPGPGTPHDAGSSEDVIRACARSATPMLGVCLGHQALAEVYGATVSHAPELMHGKTSRVEHTGTGVLDGLGTPFTATRYHSLAVEPQTVPGELEVTCSTASGVVMGLQHRDLPLHGVQFHPESVLTEGGHRLLANWLAVCGDDAAVERSAGMAPLVHTAPGPT0008000_211DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008000-pabA-K01664NANA
AK018_02461171hypothetical proteinATGATGTACGGCCTGCTGTGGCACGCGCTCCCGGGTCCCGTCTGGCTGCGGGTGCTGCTCGTCCTGATCCTGTTCGTCGCGGCCGTCTGGGTGTGCTTCGAGTGGGTCTTCCCCTGGTTCTCCGAGTACGTCCCCATCAACGACAACACCGTCGAGGCGCACGCACCATGAMMYGLLWHALPGPVWLRVLLVLILFVAAVWVCFEWVFPWFSEYVPINDNTVEAHAPNANANANANA
AK018_02462810srtE1_1COG3764Sortase SrtE1GTGAGGCACGCGAGCCGCGCGTCGGCCCGCCGTGGCGGGACGTTCGGCGCCCTGGTCGGCGTTGTCGGCGAGCTGCTCATCACTGCGGGGGTGTTCCTCGGTCTCTTCGTCGTGTGGCAGCTGTGGTGGACCGACGTGCAGGCCGAGCGCATCCACACCCAGGTGCTCGCCGACCTCGACTGGACCGAGCCACCGCTGGAGGTCCCGGACAACGAGCTCGAGGGCCCCGTCGTCGCCCCCGAGTACCGGGACGACCCACCGATCATGGACACCCCGGACTACGCCGAGGTCTTCGCGCAGTTCTACGTCCCGCGCTGGGGCGCCGACTACGTCGAGCCCGTTGCCGAGGGCATCGACAAGGCGGAGATCCTCGACCGCCTCGGGATCGGTCACTACCCGGACACCGTGCTGCCGGGCGACCTGGGCAACTTCTCCGTGGCCGGCCACCGCACCACCTACGGCAGGCCGTTCCACGGGGTCGCGGACCTGCAGGAGGGTGACCCGATCGTGGTCCGTACCGAGGACACCTGGTACGTGTACCGCGTCACCGAGCACGAGATCGTGTGGCCGCAGCAGGTCGAGGTGGTCTCGCCCGTGCCCGGCCTGATGCCGGGTGAGCCCGTACCGGAGCTGACCGAACGGTTCATCACCCTGACGGCGTGCCACCCGATGTACTCCGCGGCGCAGCGCTACATCGTCCACGGGGAGTTCGACTACTGGGCGCCGGTGGACGAGGGCACGCCCGCCGAGCTGATCGACGCCGGCGTCGAGATCCAGGCACTGGCCGACCACGACGCGGGGGTGCGATGAMRHASRASARRGGTFGALVGVVGELLITAGVFLGLFVVWQLWWTDVQAERIHTQVLADLDWTEPPLEVPDNELEGPVVAPEYRDDPPIMDTPDYAEVFAQFYVPRWGADYVEPVAEGIDKAEILDRLGIGHYPDTVLPGDLGNFSVAGHRTTYGRPFHGVADLQEGDPIVVRTEDTWYVYRVTEHEIVWPQQVEVVSPVPGLMPGEPVPELTERFITLTACHPMYSAAQRYIVHGEFDYWAPVDEGTPAELIDAGVEIQALADHDAGVRPGPT0024075_911DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_SORTASE,PGPT0024075-srtA-K07284NANA
AK018_02463732hypothetical proteinATGTCACCCCGGGTGCGTTCCACGCTCGCCGTCGCGGTGGTGCTCGGCCTGTCCGGACTGCTGTTCACCGTCAGCGCGCAGCTCGCCCCCGACGACGAGGCGCGGCACGCGGAGGACCTCGCGTCCGTGGTCGCGGACGAGTCCGAGCGGGTCGAGGAGCTGTCGACGGAGGCAAGCGCGCTCGACGACCAGATCTCCGGGCTCAGCGGAGCCGTCGAGACCGACGTCCCGACCCGCGGCGGCGACCTCCGCCGGCGGGAAGCGGTGGTGACCGGCGCCTGGCCGGTGAGCGGACCCGGGCTGAGCGTCGCGCTCGAGGACGCGCCGTCGTCGTCCCTGGAGGTCGAGGGGGCGGTACCCGACGACCTGGTGGTCCACCAGCAGGACGTCCAGCACGTCATCAACGCCCTGTGGGCCGGCGGCGCGGAGGCGATGACGCTCCAGGGCGAGAGGGTGACCCCGACCTCCGCTTTCCGTTGCTCGGGCAACATCATGCTCCTGCACGGCAAGGTGTTCTCGCCGCCGTACGTGGTCGAGGCGATCGGCGACCCGGACGCGCTGCAGGCCGCCCTCGACTCGTCGCCCGGGGTCGCCATCTACCAGCAGTACGTCGACTGGATCGGCCTGGGCTACGCCGTCGACCGCTTCGAGTCCACGGACATGCCGGCGTACTCGGGCGGCCAGGACCTGCAGTACGCCGAGGTCCCGGACGGGACGGACGTGTTCTCGTGAMSPRVRSTLAVAVVLGLSGLLFTVSAQLAPDDEARHAEDLASVVADESERVEELSTEASALDDQISGLSGAVETDVPTRGGDLRRREAVVTGAWPVSGPGLSVALEDAPSSSLEVEGAVPDDLVVHQQDVQHVINALWAGGAEAMTLQGERVTPTSAFRCSGNIMLLHGKVFSPPYVVEAIGDPDALQAALDSSPGVAIYQQYVDWIGLGYAVDRFESTDMPAYSGGQDLQYAEVPDGTDVFSNANANANANA
AK018_02464261crgA_1Cell division protein CrgAGTGTCCGAGAAGTCGCCGAAGCCCGGCAAGAAGAAGGGCGACGACGTCGCGCCCGCGATGCCGCAGAAGTCCTCGGCCAACCCCCGCTGGCTCGTGCCGACGATGCTCACGCTGATGCTCGCCGGGCTGGCCTGGATCGTCATCTACTACCTGACGAGCCAGAACCTCGGCCTGCCCGTGCCGGCCCTCGGCAACTGGAACCTGCTCGTCGGCTTCGTGCTCATCATCGCGGGGTTCTCGCTCACCACGCGATGGAAGTAGMSEKSPKPGKKKGDDVAPAMPQKSSANPRWLVPTMLTLMLAGLAWIVIYYLTSQNLGLPVPALGNWNLLVGFVLIIAGFSLTTRWKNANANANANA
AK018_02465834glpG_1Rhomboid protease GlpGGTGTGCCCGCGGCACCCGGACCGGGTGTCGTACGTGCGGTGCCAGCGCTGCGGTCGCCCGGCCTGCCCCGAGTGCCAGCGACCCGCCGCGGTCGGGGTGCAGTGCGTCGACTGCGTCGCGGAGTCGTCGAAGGCGGCGCGCAACGTGCGCACCGCCTTCGGCGCGACCGTGCGCGGCGGTCGGCCGGTGGTGACCCTGACGATCATCGGGCTGTGCGTCGTCAGCTGGGTGCTGCAGCTCGCCACCGGTGGGGCGTGGACCCAGCAGTGGGCGTTCTCCCCCGCGACCGGTCAGGACGAGCCGTGGCGGTTCCTGACCGCCGCGTTCCTGCACTCCACGACCCCGCTGCACATCCTGTTCAACATGTACGCGCTGTGGCTCGTGGGTCCGTTCCTCGAGCAGGCGTTCGGCCGGGGCCGGTTCGTGGCGCTCTACCTGCTCTCCGCGCTGGGCGGCTCGGTCGGCGTCCTGTTGCTGGCCGACCCGACGGGGCTGAGCTGGCAGCAGGGCGTCGTGGGGGCCTCGGGTGCGGTCTTCGGGTTGTTCGGCGCGATCATCCCCGTGCTGCGTCGGCTGGGACGCAACGCGGGGCAGATCGTCGCCCTCATCGCCATCAACATGGCGCTGCCGTTCTTCGTGGGCGGCATCGCCTGGGAGGCGCACGTCGGCGGTCTGATCGTGGGGCTCGCGATCGGCGCGGGCTACGCGTGGGCTCCCCGGGAACGGCAGCAGCTCGTCGGGTGGGCGCTGCCCGCCGTCGTCGGCGTCGTGCTGGTGGCGCTGTCGGTGTGGAAGTACTCCACCGTCCCGACCTGGGGACTCGGGCTCTTCTGAMCPRHPDRVSYVRCQRCGRPACPECQRPAAVGVQCVDCVAESSKAARNVRTAFGATVRGGRPVVTLTIIGLCVVSWVLQLATGGAWTQQWAFSPATGQDEPWRFLTAAFLHSTTPLHILFNMYALWLVGPFLEQAFGRGRFVALYLLSALGGSVGVLLLADPTGLSWQQGVVGASGAVFGLFGAIIPVLRRLGRNAGQIVALIAINMALPFFVGGIAWEAHVGGLIVGLAIGAGYAWAPRERQQLVGWALPAVVGVVLVALSVWKYSTVPTWGLGLFNANANANANA
AK018_02466540cypB_1Peptidyl-prolyl cis-trans isomerase BATGTTCGCAACCCTGCACACCTCCGCCGGTGACATCCGCATCGAGCTCCTGCCGAACCACGCGCCGAAGACGGTCAAGAACTTCGTCGGCCTGGCTCAGGGCACCACGACCTGGACCGACCCGCGCACGGGCGCCGAGCGCAACGACCCGCTCTACGACGGCGTGATCTTCCACCGCGTCATCGAGAACTTCATGATCCAGGGCGGCGACCCGCTCGGCACCGGGACCGGCGGTCCGGGCTACATGTTCGACGACGAGATCCACCCGGAGCTCGCGTTCGACGACAAGTACATCCTGGCGATGGCCAACGCGGGCAAGCGCCGCAACCCGGTCACGGGCGCGGTCGAGGGCACCAACGGCTCCCAGTTCTTCATCACCACGGCCGCCACCCCGTGGCTGAACGGCAAGCACACCATCTTCGGCAAGGTCGCCGACGACGACTCGCGCGCGGTGGTGGACGCCATCGGCACCACGCAGACGCGCCCGGGCGACCGCCCGGTGGAGGACATCGTCATCAACTCGGTCACCGTCGAGGACTGAMFATLHTSAGDIRIELLPNHAPKTVKNFVGLAQGTTTWTDPRTGAERNDPLYDGVIFHRVIENFMIQGGDPLGTGTGGPGYMFDDEIHPELAFDDKYILAMANAGKRRNPVTGAVEGTNGSQFFITTAATPWLNGKHTIFGKVADDDSRAVVDAIGTTQTRPGDRPVEDIVINSVTVEDPGPT0015110_2107DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
AK018_02467807hypothetical proteinATGGTGCAGACCCCGAAGATCGACTCCGCCAAGGTCAAGGACTCCGCCGCCGAGGTCGCGGCAGCGCTGGTCGGTGCGGGCTCGCGCGCCGCAGACGGTGCCCGCGACGCCGCCGGTCAGGCCAAGGACTGGGCCGGCCCGCGCTACGACTCGTTCGTCGAGTGGCTGCGGCCCCGCGCCGAGAAGGCCTGGAACGACAGCGTCCAGGCCGCCGCCCCGCGCGTCGAGGACGCCGCCGTCAAGGCCGGTCCGATGATCGACTCCGCCCACGACAAGATCGTCGACGAGTACCTGCCCAAGCTGGTCCTCGCCTTCAACGCCGCGGCCGAGCGCGCTGCCATGACGGCCGACGAGGCCGCCAAGATGGCCGCGAAGTCCGCCAAGTCCGCCGAGAAGGCGGCCCGCAAGGCGCAGCGGAAGTCCCGCCGGCGCAAGACGCTCGTGTGGACCGCCGCCCTCGGCGGCGTCGCCGCGGCCGGCTACGCCTTCTACCGCCGGGCGCAGCCGCAGAACGACCCGTGGGCCGAGCCCTGGGAGCAGTCCTCCGCCCCCGACTTCGACGGTGTGGCCCGCGACGCCCGCCACGTGGTCGGTGACGCGGCCGAGGCCGTGGGCGAGGCCGCCGGCGCCGCCGTCGCGAAGGGCAAGGAGGCCTCGGAGAAGATCTCGGAGGCCGCCGGCCGCGCCCGCAAGAAGACCGCCGACGAGGCGAGCGACGCTGCCGAGGACGCTCAGGAGGCCGTGGACGAGGCCGCCGAGGACGTCAAGGATGCCGCGGACAGCGCGAAGGACGACACGACGAAATAGMVQTPKIDSAKVKDSAAEVAAALVGAGSRAADGARDAAGQAKDWAGPRYDSFVEWLRPRAEKAWNDSVQAAAPRVEDAAVKAGPMIDSAHDKIVDEYLPKLVLAFNAAAERAAMTADEAAKMAAKSAKSAEKAARKAQRKSRRRKTLVWTAALGGVAAAGYAFYRRAQPQNDPWAEPWEQSSAPDFDGVARDARHVVGDAAEAVGEAAGAAVAKGKEASEKISEAAGRARKKTADEASDAAEDAQEAVDEAAEDVKDAADSAKDDTTKNANANANANA
AK018_02469120hypothetical proteinATGAAGAAGTTGATCGTCGTGCTGTTCGCCGCAGCGGCCGGCTACCTCGTCTGGCGGCGCGTCTCGGCGGACGCCGCCGACCGTGACCTGTGGACCGAGGTCACCGACTCCCTCGACTGAMKKLIVVLFAAAAGYLVWRRVSADAADRDLWTEVTDSLDNANANANANA
AK018_02471915hypothetical proteinATGTCGAGCCAGAACACCTCGCAGCGCACCGCGGCTTCCGAGGAGGACGTCGAGGCCACGCAGTCGATGACGCCCGTGAGCGATTCCGAGCCCGCCACGACCGGCAACGGCAAGAGCTCCCCCGAGAAGACGTCGGCAGCGCCGGCGGAGCCCGCCGGTACGGACTTCGTCTCCGAGGAGCCGCAGTCGAGGGAGCAGACGAAGCAGCCGGCGGCTCCCGACGAGCAGCCGGCGGAGCCCGCGGAGCAGACCTCCTCGCCCATGAAGGAGGGGGCCGTCAAGGCTGCGGCCACGGCGCTCGCTGCCGCCCGGAACGCCGCGCGGAAGGTCCAGTCGGCGTCGTCGTCGGCCTCCGCCTCCGGCCGGACCGCCGACGCGTCCGCGCCGTCGTCCGGTGCGACCGGTACGCCGGGCGCCACGCCGCCGCCCCCGCCGGCGCCGGACTCCGCGGACCGCTCGGCGCCGCGACCCGAGATGCACTACTCCGTCGGCGGGGTGCACGGCACCGCGCAGCAGCCGCAGACCGGCGCCCAGCCGGTGGCGGCCACGGAGGCCGGGGTGCGGCGGGTCCGGCTCTCGGTCTCCCGCGTGGACCCGTGGTCCGTCATGAAGCTCGCGTTCCTGCTGTCGTTCGCCGTCGGCATCATGATGGTGGTGGCCACCGCCGTGGCCTGGTACATGCTCAACAGCATGGGCACGTTCGGCACGATCCAGGAGTTCCTGGTGGAGACCCTGGGCAACCAGGCGATCGACATCACGCAGTTCGTCGCGTTCGAACGGGTCATCTCACTCTCGATGCTGGTCGCGCTGGTGAACATGGTGCTGATGACCGCGCTGGCCACGATCATGGCGATCCTCTACAACATCACGGCCGCCCTGGTGGGTGGCGTGCACGTCGCCCTCACGGACGAGTGAMSSQNTSQRTAASEEDVEATQSMTPVSDSEPATTGNGKSSPEKTSAAPAEPAGTDFVSEEPQSREQTKQPAAPDEQPAEPAEQTSSPMKEGAVKAAATALAAARNAARKVQSASSSASASGRTADASAPSSGATGTPGATPPPPPAPDSADRSAPRPEMHYSVGGVHGTAQQPQTGAQPVAATEAGVRRVRLSVSRVDPWSVMKLAFLLSFAVGIMMVVATAVAWYMLNSMGTFGTIQEFLVETLGNQAIDITQFVAFERVISLSMLVALVNMVLMTALATIMAILYNITAALVGGVHVALTDENANANANANA
AK018_024722622gyrA_1COG0188DNA gyrase subunit AGTGACGGACGAGACCCCCGGACCCGACACGGAGGGCACCGACGGCGTGCCCGACACGCTGGTGCACCACGGGCGCATCGAGCAGGTCGACCTGCAGCTCGAGATGCAGCGCTCGTACCTCGACTACGCGATGAGCGTGATCGTGGGCCGTGCGCTGCCCGACGTGCGCGACGGGCTCAAGCCGGTGCACCGGCGCGTGCTGTACGCGATGTACGACGGCGGGTACCGCCCCGACCGGGCGTTCTCGAAGTGCTCGCGCGTCGTCGGCGACGTCATGGGCAAGTACCACCCGCACGGTGACACGGCCATCTACGACACCCTGGTCCGCCTGGTGCAGGACTGGGTGCTGCGCTACCCGCTCGTCGCCGGGCAGGGGAACTTCGGCTCCCCCGGCAACGACCCGGCGGCCGCCCCGCGGTACACCGAGTGCAAGATGGCGCCGCTCGCCCTCGAGATGGTCCGGGACATCGACAAGGACACCGTCGACTTCCAGGACAACTACGACGGCCGCACCCAGGAGCCCACCGTCCTGCCGGCCCGCATCCCGAACCTGCTGGTCAACGGCTCCGCGGGCATCGCCGTCGGTATGGCCACCAACATCCCGCCGCACAACATGCGCGAGGTGGCCGACGGCGTCCGGTGGCACCTCGCCAACCCGGACGCGCCGAAGGAGGAGCTGCTCGCCGCGCTGCTCAAGCGGATCAAGGGCCCGGACTTCCCCACGGGCGCGCAGATCCTCGGCACCAAGGGCATCGAGGAGGCCTACCGGACCGGCCGCGGGTCGATCACGATGCGCGCGGTGGTGAACGTCGAGGAGATCCAGAACCGGACCTGCCTCGTGGTCACCGAGCTGCCCTACATGGTCAACCCGGACAACCTGGCCACCAAGATCGCCGACCTCGTCAACGACGGACGCATCCAGGGGATCGCGGACATCCGCGACGAGACCTCGGGCCGCACGGGGCAGCGCCTGGTCATCGTGCTCAAGCGCGACGCCATCGCCAAGGTCGTCCTCAACAACCTCTACAAGCACACGCCGCTGCAGGACAACTTCAGCGCGAACATGCTCGCACTCGTCGACGACGTGCCCCGCACGCTCAGCCTCGACGCGTTCGTGCGGCACTGGACGCAGCACCAGATCGACGTCGTGCGCCGACGCACCGAGTACCTGCTCAGGGCCGCCGAGGAGCAGATCCACATCTACGAGGGCTACCTGCGCGCCCTCGACGCCCTCGACGAGGTCATCGCGCTCATCCGCCGCTCCCCCGACGTCGAGGAGGCGCGTACCGGGCTGCGCGAGCTGCTCGGCATCGACGAGGACCAGGCCAACGCGATCCTCGCGCTGCAGCTGCGCCGCCTGGCGGCCCTGGAGCGGCAGAAGATCCTCGACGAGCACGCGCGGCTCCAGGCCGAGATCCTCGACTACCGCGACATCCTGGCGAAGCCGGAGCGGCAGCGGGCCATCGTCGGCGACGAGCTCGACGAGGTCACCGAGAAGTGGGGCGACGAGCGCCGCACCCACATCCTCCCGTTCGACGGCGACATGTCCGTCGAGGACCTCATCCCCGAGGAGGACGTGGTCGTCACGATCACGCGCGGCGGCTACGCGAAGCGCACCCGGTCGGACTCGTACCGGGCCCAGCGCCGCGGCGGCAAGGGCGTGCGCGGCGCCCAGCTGCGCGAGGACGACATCGTCGACCACTTCTTCGTGACCACGACGCACCACTGGCTGCTGTTCTTCACCGACGCCGGCCGTGTCTACCGGGCCAAGGGCTACGAGCTGCCCGAGCAGGCCCGGGACGCCAAGGGCCAGCACGTGGCCAACCTCCTGGCCTTCCAGCCGGGCGAGAAGATCGCCCAGGTGCTGGCCCTGCGGGACTACGACGACGCCGAGTACCTGGTCCTCGCCACCCGGCGCGGCCTGGTGAAGAAGACCCGCCTGGGCGACTACGACTCGCCGCGCAGCGGCGGGCTCATCGCCATCAACCTGCGCACGGACGACGACGGCACCCCGGACGAGCTGGTCGCCGCCCGCCTCGTGGATGCGGACGACGAGCTGATCCTCGTCTCCCGCAAGGGCCAGTCGATCCGCTTCCCGGCCGACGACGAGACGCTGCGTCCCATGGGCCGCGCCACCTCCGGCGTCACCGGAATGAAGTTCCGCGACGACGACGAGCTGCTGGCCGCCGACGTCGTCGAACCGGAGACCGACCTGTTCGTCGTCACCGAGGGCGGGTTCGCCAAGCGGACCCGCATCGAGGAGTACCGCCTGCAGGGGCGCAACGGCTACGGCATCAAGGTGGCCAACCTCGTCGAGGCCCGGGGCGACCTGGTGGGCGCGCTCGTCACCGAGGCCGACACCGAGGTGCTCGTCATCATGAAGCAGGGCAAGATCGTGCGTTCCCGCGTCGACGAGGTCAACCTCACGGGGCGCACCACGCAGGGCGTGACCTTCGCCAAGCCCGCGAAGGGCGACCGGATCATCGCCGTCGCCCGGAACGTCGAGCGTCGCGAGGACGAGGAGTCGGTTAGCTTGGAGGGACGAGTCGCCGAGAACGGCTCGACCGAGGACGCGACGGCAGCCCCGCCGGCGCAGGACGAGACCGGGGACGGGAACATCTGAMTDETPGPDTEGTDGVPDTLVHHGRIEQVDLQLEMQRSYLDYAMSVIVGRALPDVRDGLKPVHRRVLYAMYDGGYRPDRAFSKCSRVVGDVMGKYHPHGDTAIYDTLVRLVQDWVLRYPLVAGQGNFGSPGNDPAAAPRYTECKMAPLALEMVRDIDKDTVDFQDNYDGRTQEPTVLPARIPNLLVNGSAGIAVGMATNIPPHNMREVADGVRWHLANPDAPKEELLAALLKRIKGPDFPTGAQILGTKGIEEAYRTGRGSITMRAVVNVEEIQNRTCLVVTELPYMVNPDNLATKIADLVNDGRIQGIADIRDETSGRTGQRLVIVLKRDAIAKVVLNNLYKHTPLQDNFSANMLALVDDVPRTLSLDAFVRHWTQHQIDVVRRRTEYLLRAAEEQIHIYEGYLRALDALDEVIALIRRSPDVEEARTGLRELLGIDEDQANAILALQLRRLAALERQKILDEHARLQAEILDYRDILAKPERQRAIVGDELDEVTEKWGDERRTHILPFDGDMSVEDLIPEEDVVVTITRGGYAKRTRSDSYRAQRRGGKGVRGAQLREDDIVDHFFVTTTHHWLLFFTDAGRVYRAKGYELPEQARDAKGQHVANLLAFQPGEKIAQVLALRDYDDAEYLVLATRRGLVKKTRLGDYDSPRSGGLIAINLRTDDDGTPDELVAARLVDADDELILVSRKGQSIRFPADDETLRPMGRATSGVTGMKFRDDDELLAADVVEPETDLFVVTEGGFAKRTRIEEYRLQGRNGYGIKVANLVEARGDLVGALVTEADTEVLVIMKQGKIVRSRVDEVNLTGRTTQGVTFAKPAKGDRIIAVARNVERREDEESVSLEGRVAENGSTEDATAAPPAQDETGDGNIPGPT0027705_992DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027705-parC-K02621NANA
AK018_024732073gyrB_1COG0187DNA gyrase subunit BATGTACGACGCCGGGAACATCACCGTCCTCGAGGGTCTCGAGGCCGTCCGCAAACGACCCGGCATGTACATCGGGTCCACCGGCGAACGAGGCCTGCACCACCTGGTCTACGAGGTCGTGGACAACTCGGTGGACGAGGCCCTGGCGGGGCACGCCGACACCATCGACGTGACGCTGCTGGCCGACGGCGGCGTGCGCGTGCGCGACAACGGCCGCGGCATCCCCGTGGCCATGCACCCCACCGAGGGCCGGCCGACGGTCGAGGTCGTCATGACGATCCTGCACGCCGGCGGCAAGTTCGGCGGCGGCGGGTACGCGGTCTCCGGCGGTCTGCACGGCGTGGGCATCTCCGTGGTCAACGCGCTGTCGACGCGGGTGGTCACCGAGGTCTCGCGCGACGGGTACGCCTGGCGTCAGGAGTTCGCCGACGGCGGGGCTCCGGTCGGTGAGCTGCAGCAGCTCGGCGAGACCACCGAGACCGGCACCACCCAGACCTTCTGGGCGGACCCGGGGATCTTCGAGACCACGGACTACGACTTCGAGACGCTGCGCTCCCGCTTCCAGCAGATGGCCTTCCTGAACAAGGGGCTGCGCATCACGCTGACCGACGAGCGCGCCGAGCACGTCTCGGGCCCGGACGAGGTCACCGGTGCCCTGGACTCGCGCCAGGTGCTGGCCGCGGTGGCGGCGCAGGACGGCGAGGCCGACCAGGACGGCACCGCCTCCCCCGACGACGAGGTGCACGACGCCGAGTCGGCGGCCGGCGCGGTGCGGACCGTGACGTTCAAGTACGACGGCGGTCTGACGGACTACGTCAAGCACATCAACGGTGCCAAGAAGTCCGAGATCATCCACCCGGAGGTCATCGACCTCGAGGCGGAGGACGACGCGCAGAAGATCTCGGTGGAGATCGCGATGCAGTGGACGGGCGCCTACAGCGAGTCGGTGCACACGTTCGCTAACACGATCTCCACGACGGAGGGCGGCACGCACGAGGAGGGCTTCCGGGCGGCGCTGACCACCCTGGTCAACTCGTACGCGCGTGACAAGGCGATCCTCAAGGACAAGGACGAGAACCTCACGGGCGACGACATCCGCGAGGGCCTGACGGCGGTGCTGTCCGTCAAGCTCTCCGAGCCGCAGTTCGAGGGGCAGACGAAGACCAAGCTCGGCAACACCGAGGCGAAGACGTTCGTGCAGCGCATCGTCCGCGAGCGGCTGACGGACTGGTTCGACGCCCACCCCAACGAGGCGCGCGACGTCATCCGCAAGGCGATCTCGGCGTCCCAGGCCCGTATCGCGGCCCGCAAGGCCCGCGAGGCCACGCGCCGCAAGGGCATCCTGAACTCCGGCGGTATGCCGGGCAAGCTCAAGGACTGCCAGTCGAACCGTCCCGACGAGTGCGAGGTCTACATCGTCGAGGGTGACTCGGCCGGTGGTTCGGCGGTGCGCGGGCGCGATCCCCACAACCAGGCGATCCTGCCGATCCGCGGCAAGATCCTCAACGTGGAGCGGGCCCGTCTCGACAAGGCGCTGTCGAACAACGAGGTGCAGGCGCTGATCACGGCGTTCGGCACGGGCATCGGCGAGGACTTCGACCTGTCCAAGCTGCGGTACCACAAGATCGTGCTGATGGCGGACGCCGACGTCGACGGCCAGCACATCTGCACCCTGCTGCTGACGCTGCTGTTCCGCTACATGCGCCCGCTCATCGAGCACGGGTACGTGTACCTGGCCCAGCCGCCGCTGTACCGGCTCAAGTGGACCAACGCGCCGCACGACTACGTGTACTCCGACCGGGAGCGCGACGCGTTCCTGGAGCAGGGTCTGGCCGCAGGCAAGCGGATCCCGAAGGACAACGGCATCCAGCGGTACAAGGGTCTGGGCGAGATGGACTACTCGGAGCTGTGGGACACCACGATGGACCCGGAGCACCGGACCCTGCTGCAGGTGACCATGGACGACGCGGCCGCGGCCGACGAGATCTTCTCGGTCCTGATGGGCGAGGACGTCGAGTCCCGCCGCAGTTTCATCCAGCGCAACGCCAAGGACGTCCGCTTCCTCGACATCTGAMYDAGNITVLEGLEAVRKRPGMYIGSTGERGLHHLVYEVVDNSVDEALAGHADTIDVTLLADGGVRVRDNGRGIPVAMHPTEGRPTVEVVMTILHAGGKFGGGGYAVSGGLHGVGISVVNALSTRVVTEVSRDGYAWRQEFADGGAPVGELQQLGETTETGTTQTFWADPGIFETTDYDFETLRSRFQQMAFLNKGLRITLTDERAEHVSGPDEVTGALDSRQVLAAVAAQDGEADQDGTASPDDEVHDAESAAGAVRTVTFKYDGGLTDYVKHINGAKKSEIIHPEVIDLEAEDDAQKISVEIAMQWTGAYSESVHTFANTISTTEGGTHEEGFRAALTTLVNSYARDKAILKDKDENLTGDDIREGLTAVLSVKLSEPQFEGQTKTKLGNTEAKTFVQRIVRERLTDWFDAHPNEARDVIRKAISASQARIAARKAREATRRKGILNSGGMPGKLKDCQSNRPDECEVYIVEGDSAGGSAVRGRDPHNQAILPIRGKILNVERARLDKALSNNEVQALITAFGTGIGEDFDLSKLRYHKIVLMADADVDGQHICTLLLTLLFRYMRPLIEHGYVYLAQPPLYRLKWTNAPHDYVYSDRERDAFLEQGLAAGKRIPKDNGIQRYKGLGEMDYSELWDTTMDPEHRTLLQVTMDDAAAADEIFSVLMGEDVESRRSFIQRNAKDVRFLDIPGPT0027710_1255DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622NANA
AK018_02474618hypothetical proteinGTGTCTGAGCCGACGGGCGCGCTCCCGGAGGGCGGGGACGACGGCGGAGCGTCGGCGGCCTCCCCCGCCCCGGCCGGGCGGGACCCACGCGACCCGCGTCCCGTCGTCGAGCGGACCGAGCTGACACCGGCGGCGGAGGTGGCGCGCGAGGCGCTCAACCGGGCCAAGGCCGCCGCGCGGGCGAAGGGGCTGCGCCCGGGGGCGCCGTCGCGCCGCTCCCCGCTGGCCGAGCCGCGCAAGGACCCGGGCAAGGGGCCGGGTGCGAGGGACCCGCGGCTGCTGTCGGACGTGGTGTCGCGGCTGCTGCGGGACAAGGGGTGGACGCAGGACGTCTCGGTCGGTGGCGTCATCGGCCGGTGGTCGGAGGTCGTCGGCGACCAGGTGGCGCAGCACTGCGTGCCGGAGACGTTCGAGGACGGCGTGCTCGTGGTGCGCGCCGACTCCACCGCGTGGGCCACGCAGGTGCGGTTGCTGCTGCCGACGCTGCGTCGCCGTCTGGACGAGGAGGTCGGTGAGGGCGTCGTGGAGCAGGTGACGGTGCTGGGTCCGGCGGGGCCGAGCTTCCGCCGGGGACGCCGGTCGGTGCGCGGTCCGGGGCCTCGCGACACGTACGGGTGAMSEPTGALPEGGDDGGASAASPAPAGRDPRDPRPVVERTELTPAAEVAREALNRAKAAARAKGLRPGAPSRRSPLAEPRKDPGKGPGARDPRLLSDVVSRLLRDKGWTQDVSVGGVIGRWSEVVGDQVAQHCVPETFEDGVLVVRADSTAWATQVRLLLPTLRRRLDEEVGEGVVEQVTVLGPAGPSFRRGRRSVRGPGPRDTYGNANANANANA
AK018_024751197recF_1COG1195DNA replication and repair protein RecFATGTACGTCTCGCACCTGTCGCTGCTCGACTTCCGGTCCTACCCGGCGACGGACGTCGAGCTCGAACCCGGGCCGAACGCGTTCGTCGGCCGCAACGGGCGGGGTAAGACGAACCTGGTCGAGGCCGTCGGCTACGTCGCCACGCTGGGCAGCCACCGGGTGCCGAACGACACGCCCCTGATCCGCGCTGGGGCGCAGCGCGCCGTGGTGCGCACGCGGGTGGTGCGCGGGGACCGGGCGTCGACCGTCGAGCTCGAGATCACCGCCGGCAAGGCGAACCGGGCCCGGATCAACCGGGGTCAGCTGGGGCGCGCGCGGGACGTGCTCGGCATCCTGCGCACGGTGCTGTTCGCACCCGAGGACCTCGCCCTGGTCAAGGGCGACCCGGAGGGACGACGGCGGTTCCTGGACCAGCTCGTGGTGCAGCTCCTGCCCCGTGCGGCGGGCGTGCACGCGGACTACGAACGCGTCGTGCGGCAGCGCTCCGCGCTGCTGAAGTCGCTGCGGGGGCAGCGGGCCGCGGGCCGTGACCCCGACATCGCACCGCTGGAGGTGTGGGACGCGCGCGCCGCGCAGCTCGGCGCCCAGGTGCTCGCCTGGCGTACCGCCCTGGTCGCGGCGTTGCGGCCGGCCGTCGCGGAGGCGTACGAGCAGGTCAGCGATGCCGACGGCCGCGCGGAGCTGACGTACCGCTCGACGGTGGCGCCCGACGACGCGACCGCCGCGCCGTCGTCGTCCCCGGCGCCCGAGGATCTCGAGAAGGCGATGCTCGCGGCGATCCAGGAGCAGCGGACCGCCGAGGTCGAGCGGGGGCAGAGCCTGGTCGGTCCGCACCGGGACGACCTGGTGCTCACGCTCGGCGGGCTGCCGGCCAAGGGGTACGCGAGCCACGGCGAGTCGTGGTCGTTCGCGCTGGCGCTGCGGCTGGCCTCGTTCCGCCTGCTGGGCGGCGGTGGCGGCGTCCCGACGGGCGCGGACGAGGTCTTCTGGGACCCGGACCACGGGTCGGACGCGGATCCGGTCCTCGTCCTGGACGACGTGTTCGCCGAGCTGGACGTGCGCCGGCGCGAACGGCTGGCCGACCTGGTGGCCCCGGCGCGCCAGGTGCTGGTGACGGCGGCGGTGCCGCAGGACGTGCCGGACCAGCTCCTGGGGGCCCGGTTCGAGGTCGCCGAGGGCCGGGTCACCCGTGTCTGAMYVSHLSLLDFRSYPATDVELEPGPNAFVGRNGRGKTNLVEAVGYVATLGSHRVPNDTPLIRAGAQRAVVRTRVVRGDRASTVELEITAGKANRARINRGQLGRARDVLGILRTVLFAPEDLALVKGDPEGRRRFLDQLVVQLLPRAAGVHADYERVVRQRSALLKSLRGQRAAGRDPDIAPLEVWDARAAQLGAQVLAWRTALVAALRPAVAEAYEQVSDADGRAELTYRSTVAPDDATAAPSSSPAPEDLEKAMLAAIQEQRTAEVERGQSLVGPHRDDLVLTLGGLPAKGYASHGESWSFALALRLASFRLLGGGGGVPTGADEVFWDPDHGSDADPVLVLDDVFAELDVRRRERLADLVAPARQVLVTAAVPQDVPDQLLGARFEVAEGRVTRVNANANANANA
AK018_02476894COG10236-phosphogluconate dehydrogenase, NAD(+)-dependent, decarboxylatingATGGTCACCCACATGGGTCTGGTCGGGCTCGGCAGGATGGGCAGCAACATGCGCGAGCGGCTGCGTCGCGCCGGGATCGAGGTCACCGGGTACGACCCGCGGCCGGAGGTCTCCGACGTCCCCTCCCTCGCGGCGCTGGTCGAGGCGCTGCCGGCCCCGCGCGTCGTGTGGGTGATGGTGCCGGCCGGTGAACCCACGCGGGGCGTCGTGGACGAGCTCGGCGCGCTCCTCGAGGACGGCGACGTGGTCGTCGAGGGCGGGAACTCCCACTACCCCGAGGACCAGGCCCGCGCGGCCGAGCTGGGCGAGCGCGGCATCGGCTACGTCGACGTGGGTGTCTCGGGCGGCATCTGGGGGCTGGAGAACGGCTACGGCCTCATGTGCGGCGGTGCGGACGCCGACGTCGAGCGGCTCATGCCGGTGTTCGACGCGCTGCGGCCCGAGGGCCCGCGGGACGAGGGGTTCGTGCACGCCGGCCGGGTCGGCGCCGGGCACTTCGCGAAGATGGTCCACAACGGCATCGAGTACGGGCTCATGCAGGCCTACGCCGAGGGCTACGAGCTGCTCACCGCCAAGGAGGACGTGGTCACGGACGTCCACGGCACCATGAAGGCCTGGAGCCGCGGCACCGTGGTGCGGTCCTGGCTGCTGGACCTCATGGTCAAGGCGCTCGAGGCGGACCCGGACCTGGCCGCCATCGACGACTGGGTGGACGACTCGGGCGAGGGCCGCTGGACGGTCGACGAGGCGATCGACAACGCCGTCCCCCTGCCGGTGATCTCCGCTGCGCTGTTCTCCCGCTTCCAGTCCCGCCAGACCCAGTCGCCCGCCATGAAGGCGGTCGCGGCGCTGCGCCAGCAGTTCGGCGGGCACGCCGTCCGCCCTGCCGAGTAGMVTHMGLVGLGRMGSNMRERLRRAGIEVTGYDPRPEVSDVPSLAALVEALPAPRVVWVMVPAGEPTRGVVDELGALLEDGDVVVEGGNSHYPEDQARAAELGERGIGYVDVGVSGGIWGLENGYGLMCGGADADVERLMPVFDALRPEGPRDEGFVHAGRVGAGHFAKMVHNGIEYGLMQAYAEGYELLTAKEDVVTDVHGTMKAWSRGTVVRSWLLDLMVKALEADPDLAAIDDWVDDSGEGRWTVDEAIDNAVPLPVISAALFSRFQSRQTQSPAMKAVAALRQQFGGHAVRPAEPGPT0017385_4603DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033NANA
AK018_024771134dnaNCOG0592Beta sliding clampATGAAGTTCCGGGTTGAGCGCGACGTCCTGGCCGATGCCGTGACCTGGACGGCACGCACCCTCCCCACCCGGCCGCCGGCCCCGGTGCTGGCCGGCGTGCGCCTCGAGGCCGACGTCTCGGGCTCCATCACGTTGGCGAGCTTCGACTACGAGGTATCGGCCCGCTCCGAGATCGCGGCGGAGGTGTCGGAGGCCGGCACCGTGCTGGTCTCGGGTCGTCTGCTGGCCGAGATCTCCCGTGCCCTGCCGAACAAGCCGGTCGACGTCTCGGTCGAGGGCAACAAGGTCGTCCTGACCTGCGGCGCCTCGCGGTTCACGCTGCTGACCATGCCCGTCGAGGAGTACCCGGCCCTGCCCGCGATGCCGGAGCTCACCGGGACCGTCACCGGAGACGCGCTGACGCACGCCGTGGCGCAGGTCAGCGTCGCCGCCAGCCGGGACGACACCCTCCCGCTGCTGACCGGCGTCCGCATGGAGATCGAGGGCGAGCGGATCACCCTGCTGGCCACGGACCGCTACCGTCTGGCGCTGCGCGAGCTGACGTGGACGCCCGCCACCCCGGGGTTCTCCGCCGTCGCGCTGGTCCGGGCCCGCACGCTGACCGACGTCGCCAAGTCCCTGGGCTCGGGCGGCGGGCTGGTCAACGTCGGCCTCAGCACGGGCGAGGGCGTGGACCTCATCGGCTTCGAGGCGGGCGGTCGCCAGACCACCTCCCAGCTCGTCGACGGTGACTACCCCGCCGTGCGCCGGCTGTTCCCCGACGCCACGCCGATCCACGCCGTCGTGCCCACCCAGGCCCTCATCGACGCCGCCAAGCGCGTCTCGCTGGTCGCGGAGCGCAACACCCCGATCCGACTGGCGTTCTCCGAGGGCCAGGTCGTGCTGGACGCCGGGCAGGGCGACGACGCGCAGGCCTCCGAGGCCCTGGAGGCGGTCCTGGTCGGCGAGGACATCCAGGTGGCGTTCAACCCGCAGTTCCTGCTCGACGGGCTGGGCGCGCTCGGCACCGACTTCGTGCGCATGTCGTTCACGCACCCGAACAAGCCCGTGGAGTTCACCGGCCAGGAGTCGCTGGACGGCGAGGACTCCTCGGAGTACCGCTACCTGCTGGTCCCGATCCGCTTCTCCTCCTGAMKFRVERDVLADAVTWTARTLPTRPPAPVLAGVRLEADVSGSITLASFDYEVSARSEIAAEVSEAGTVLVSGRLLAEISRALPNKPVDVSVEGNKVVLTCGASRFTLLTMPVEEYPALPAMPELTGTVTGDALTHAVAQVSVAASRDDTLPLLTGVRMEIEGERITLLATDRYRLALRELTWTPATPGFSAVALVRARTLTDVAKSLGSGGGLVNVGLSTGEGVDLIGFEAGGRQTTSQLVDGDYPAVRRLFPDATPIHAVVPTQALIDAAKRVSLVAERNTPIRLAFSEGQVVLDAGQGDDAQASEALEAVLVGEDIQVAFNPQFLLDGLGALGTDFVRMSFTHPNKPVEFTGQESLDGEDSSEYRYLLVPIRFSSNANANANANA
AK018_024781434dnaA_1Chromosomal replication initiator protein DnaAGTGCCACAACCCGACGAGAACATCACCGACGTCTGGTCGCAGACGTTGGCGACGCTCGAGGCACGGTCCGACATGACCACCCGTCAGCTCGCCTTCATCAAGCTCGCCAAGCCGATGGCGATCGTCGACGACACGGTGTTCATCGCGGTGCCGCACGAGCAGACGCGGACCTACCTGGAGACCAGCGCGCGCGACCAGCTCGTCTCGGCGATGTCGTCCACCCTCGGCCGCGACATCCGGTTCGGCATCACCGTGGACCCGGAGCTCAGCCACGAGGCCCTCGCCGGACCGGCTCAGGACTACGCGCCGCCGGTCGGCGACCCCGCGATGCCCGGTGCACCGGCGGAGCCCGTGGTGGCCGCCCCGCCCGTGGACCGTCGCGAGTCCGCAGAGGCCACCCGCCTCAACCCGAAGTACATCTTCGAGACGTTCGTCATCGGCTCCTCCAACCGGTTCGCCCACGCCGCCGCGGTGGCCGTCGCCGAGGCGCCGGCCAAGGCCTACAACCCCCTGTTCATCTACGGCGACTCGGGCCTGGGCAAGACGCACCTGCTGCACGCCATCGGGCACTACGCCCACAACCTCTACCCGCACGTGCGCGTGCGGTACGTGAACTCCGAGGAGTTCACCAACGACTTCATCAACAGCATCGGTGAGGGACGCACGGGAGCCTTCCAGCGCCGGTACCGCGACGTCGACGTGCTGCTGATCGACGACATCCAGTTCCTGCAGGGCAAGGAACAGACGATGGAGGAGTTCTTCCACACGTTCAACGCCCTGCACAACGCGGACAAGCAGGTGGTGATCACCTCCGACCTGCCGCCCAAGCAGCTCGACGGGTTCGAGGACCGCCTGCGGTCCCGGTTCGAGTGGGGCCTGATCACGGACGTCCAGCCGCCCGACCTCGAGACGCGCATCGCGATCCTGCGCAAGAAGGCCGCGAGCGAGCACCTCGCGGTCCCGGACGAGGCGCTCAGCTACATCGCCTCGCGGATCTCCACCAACATCCGCGAGCTCGAGGGTGCGCTGATCCGCGTCACGGCGTTCGCCAACCTCAACAAGCAGCAGGTGGACTCCGCGCTGACCGAGATCGTCCTCAAGGACCTCATCACGGACGACGACCAGGCCGCGGAGATCACCCCGGCGATGGTCATCGCCCAGACCGCCGCCTACTTCGGGCTGACGATCGACGACCTGTGCGGCTCGTCGCGCTCCCGGGTGCTGGTGACGGCACGGCAGATCGCCATGTACCTGTGCCGCGAGATGACCGACCTGTCCCTGCCGAAGATCGGGCAGCAGTTCGGCGGCCGTGACCACACCACGGTCATGCACGCCAACAAGAAGATCGCCGGCCAGATGGCCGAGCGGCGGTCCACCTACAACCAGGTGACCGAGCTGACGAGCCGCATCAAGCAGCAGCAGCACCGCGCCTGAMPQPDENITDVWSQTLATLEARSDMTTRQLAFIKLAKPMAIVDDTVFIAVPHEQTRTYLETSARDQLVSAMSSTLGRDIRFGITVDPELSHEALAGPAQDYAPPVGDPAMPGAPAEPVVAAPPVDRRESAEATRLNPKYIFETFVIGSSNRFAHAAAVAVAEAPAKAYNPLFIYGDSGLGKTHLLHAIGHYAHNLYPHVRVRYVNSEEFTNDFINSIGEGRTGAFQRRYRDVDVLLIDDIQFLQGKEQTMEEFFHTFNALHNADKQVVITSDLPPKQLDGFEDRLRSRFEWGLITDVQPPDLETRIAILRKKAASEHLAVPDEALSYIASRISTNIRELEGALIRVTAFANLNKQQVDSALTEIVLKDLITDDDQAAEITPAMVIAQTAAYFGLTIDDLCGSSRSRVLVTARQIAMYLCREMTDLSLPKIGQQFGGRDHTTVMHANKKIAGQMAERRSTYNQVTELTSRIKQQQHRAPGPT0014800_1671DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-PILUS|FIMBRIAE_SYSTEMMOTILITY-PILUS_SYSTEM,PGPT0014800-dnaA-K02313NANA
AK018_02479168rpmHCOG023050S ribosomal protein L34GTGCCTCCCCGACGTTTCTTGGAGTACCTCGTGAGCAAGCGGACCTTCCAGCCGAACAACCGCCGTCGTGCCAAGACCCACGGCTTCCGGCTGCGCATGCGCACCCGCGCCGGCCGCGCCATCCTGGCGAACCGCCGTCGCAAGGGTCGCGCCGAGCTCTCTGCCTGAMPPRRFLEYLVSKRTFQPNNRRRAKTHGFRLRMRTRAGRAILANRRRKGRAELSANANANANANA
AK018_02480276rnpA_1COG0594Ribonuclease P protein componentGTGGTCGTCCACCTGGTTCGGGACCCGGACCAGGTGGACGGGCCGCTGGTCGGTCTTGTCGTATCCAAGGCCGTCGGCAACGCCGTGCGCAGGAATCTCGTCAAGCGTCGCCTCCGTGGCGCCGCCGCCCAGCACCTCGGGACGCTCCCCCCGGACGCCCTGATGGTGCTACGTGCCCTGCCCGCCGCGAGTGATGTCCCGTATGCGAAGCTCGAGCGAGATGTCGCCCGGGGGATGGCCAAGGCCCTCGACCGCGCCACGGAGCCGGCGAGATGAMVVHLVRDPDQVDGPLVGLVVSKAVGNAVRRNLVKRRLRGAAAQHLGTLPPDALMVLRALPAASDVPYAKLERDVARGMAKALDRATEPARNANANANANA
AK018_02481297yidD_1Putative membrane protein insertion efficiency factorATGAGCACCTCGGTCCTTGAGCGCGGGCGTGAGCTCGCTCGGACGGTCCCGACAGCGGTGCTCGTCGGAGCGATCCGGATCTACCAGGCCGTCGTGTCGCCGTGGACGGGACCGACCTGCAAGTACTACCCCTCGTGCTCGCAGTACGCCGTGATCGCCCTCCGGCGGCACGGACCGCTGCGCGGTACCGGGCTCGCCCTCTGGCGGATCTTGCGGTGCAACCCCTGGAGCCTGGGCGGCGTCGACGACGTCCCGCCGGCTCGTGGACACGAGCACCGCGGCGCCCGCACACACTGAMSTSVLERGRELARTVPTAVLVGAIRIYQAVVSPWTGPTCKYYPSCSQYAVIALRRHGPLRGTGLALWRILRCNPWSLGGVDDVPPARGHEHRGARTHNANANANANA
AK018_02482945yidC_1COG0706Membrane protein insertase YidCATGGGGTTCTTCGATACGATCCTGTTCCCGATCCAATGGGTCGTGGCCTGGATCATGTACGGCTCTCACCAGCTGTTCACAGCGCTGGGGATGCAGGACGGTCCGGGGTTCGCCTGGGTCCTGTCGATCGTCGCGCTCGTGATCGTCATCCGGATCGTGCTGATCCCGCTGTTCTTCAAGCAGATCAAGGCCTCGCGCGGCATGCAGATCATGCAGCCGGAGCTGCAGGCGATCCAGAAGAAGTACAAGAACAAGAAGGACCCCTCGTCGCGTGAGGCCATGGGCCGCGAGACGATGGAGCTCTACCGCAAGCACGGCACGAACCCGATGGCGTCGTGCATGCCGATCCTGCTGCAGTCGCCGATCTTCTTCGCGCTGTTCCGGGTGCTCTACAACCTCCAGCCGATCGCCGAGGGAGAGCTCGACCCCATCGGGCCGATCGACCAGTCGGTCGCGGGGGACATCGAGAACTCGGACCTGTTCGGTGCCCAGCTCTCCGACGTCTTCCTGCAGACGGACGACTGGGGCGTCCGTGCCGTCATCCTGTTCCTCATCATCGCGATGAGCGCGACGACGTTCTTCACCCAGCGGCAGCTGACCATGAAGAACATGCCGAAGGCCGCGCTCGAGGGCCCGATGGCGAACACGCAGAAGATGATGCTCTACGTCCTGCCGCTCATCTTCCTGATCTCCGGCGTGAACTTCCCGGTGGGTGTGCTGATCTACTGGACCACGACCAACCTCTGGTCGATGGGGCAGCAGTTCTACACCATCAAGAAGATGCCGGCCCCCGGCTCGGAGGCCGAGCGGATCCTGAAGGAGAAGCAGGCAGCCAAGGCGGCGAAGAAGGGCATCGTGGTGGAGGAGGAGGCTCCCGAGCCCCCGAAGCCCCGCGGGCAGCGTCAGCAGCCGGTCCGCAAGGACCGTCAGAAGAGGAAGAAGTGAMGFFDTILFPIQWVVAWIMYGSHQLFTALGMQDGPGFAWVLSIVALVIVIRIVLIPLFFKQIKASRGMQIMQPELQAIQKKYKNKKDPSSREAMGRETMELYRKHGTNPMASCMPILLQSPIFFALFRVLYNLQPIAEGELDPIGPIDQSVAGDIENSDLFGAQLSDVFLQTDDWGVRAVILFLIIAMSATTFFTQRQLTMKNMPKAALEGPMANTQKMMLYVLPLIFLISGVNFPVGVLIYWTTTNLWSMGQQFYTIKKMPAPGSEAERILKEKQAAKAAKKGIVVEEEAPEPPKPRGQRQQPVRKDRQKRKKPGPT0024530_5130DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217NANA
AK018_02483516hypothetical proteinATGACGGACGCCACGCCGGACACCAGCGTCGAGCTGACGAAGCGCCTCGAGGAAGAGGGCGAAGTCGCCGCCGACTACCTCGAGGAGCTGCTGGACATCGCCGACCTCGACGGCGACATCGACCTGGACATCCAGCACGATCGCGCCGCGGTCGAGGTCGTGTCGGAAGAGTCCCCACGGTCGCTCGACGTCCTCGTCGGCCGGGACGGGGAGGTGCTCGACGCGCTCCAGGACCTGACGCGGCTGGCCGTGCAGGCTCGCACCGGTGAACGGAGCCGGCTGATGCTCGACGTGGCAGGCTACCGGGCGGGACGCCGAGCGGAGCTCGAGCGCCTCGCCGCCGAGGCCGTGGCCGGCGTCAAGGGCTCGGGAGAGCGCGCGACGCTGGCGCCGATGAACGCTTTCGAGCGCAAGGTCGTGCACGACGCCGTCGCCGCAGCCGGCCTCGTCAGCGACTCGGCAGGCGTCGAGCCGCACCGGTACGTGGTCATCCACCCCGCCGCCGACGCCTCGTGAMTDATPDTSVELTKRLEEEGEVAADYLEELLDIADLDGDIDLDIQHDRAAVEVVSEESPRSLDVLVGRDGEVLDALQDLTRLAVQARTGERSRLMLDVAGYRAGRRAELERLAAEAVAGVKGSGERATLAPMNAFERKVVHDAVAAAGLVSDSAGVEPHRYVVIHPAADASPGPT0024530_1367DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217NANA
AK018_02484639rsmG_1COG0357Ribosomal RNA small subunit methyltransferase GATGGAACGCGACGACGAGCAGATCGGGCAGAGCGCCGCTGTCCGGGACTACTTCGGCACCCACTACGCAGCGATGTACCGCTTCTACGAGATGCTGCGTGACCAGGGTGAGCTCCGCGGCCTCATCGGTCCGCGCGAGGTCGGACGACTGTGGAACCGGCACCTGCTGAACTCGGCGGCCGTCATGCCGTACCTCTCGTCGGCCAGATCGATCGTCGACGTCGGTTCCGGCGCGGGCCTTCCGGGCATCGTGATCGCCGTGCAGCGACCGGACGCCGAGGTGATCCTCGTCGAACCGATGGAGCGCCGTGTCGCGTGGCTCACCGAGGTCAGCGAGGAACTGGGGCTCCAGAACGTGGAGGTGCGCCACGGTCGCGCCGAGGAGTACGACGGCGCCCTCGAGGCGGACGCCGTGACGTCCCGTGCCGTGGCGGCGCTGTCGAAGCTGGTGCGGATGAGCATGCCGTTGCTGCGCCCGGGCGGGGAGATGGTCGTGCTGAAGGGTCGCAACGTGGAGCGGGAGATCGAACCCGCACTGAAGGTACTGCGCAGGTTCAAGGCGTCCGAGCCGGAGATCCTCGAGGGTTCGACGGTCGACGGAGCCGAGGCCACGACGATCCTTCGCGTCCGGCGCGACTGAMERDDEQIGQSAAVRDYFGTHYAAMYRFYEMLRDQGELRGLIGPREVGRLWNRHLLNSAAVMPYLSSARSIVDVGSGAGLPGIVIAVQRPDAEVILVEPMERRVAWLTEVSEELGLQNVEVRHGRAEEYDGALEADAVTSRAVAALSKLVRMSMPLLRPGGEMVVLKGRNVEREIEPALKVLRRFKASEPEILEGSTVDGAEATTILRVRRDNANANANANA
AK018_02485918sojCOG1192Sporulation initiation inhibitor protein SojATGTCCTCGGTGCCGGAGGTCGACGACGAGACGCCGCTCGCCGCTCAGCTGGCGCTCGACGCGCGCCGCCGCATCGATCTCGACGGCCGCAAGTTTCCTCGGCCCGAGCGCACGCGCATCATCACGGTGGCGAATCAGAAGGGCGGCGTCGGCAAGACGACGACCACGGTCAACCTCGCCGCCGGACTGGCGCGTGCGGGACTCAAGGTGCTCGTCATCGACAACGACCCCCAGGGCAACGCGTCGACGGCGATGGGCTTGGAGCACCGCGCCGGCACGCCGTCGGTGTACGAGGTGCTGGTGGAGGACGGGCGCCTGGCCGACGCGGTGCAGGCATGCCCCGATGTCGACGGACTGTGGGGCGTTCCGGCGACCATCGACCTCTCGGGCGCCGAGGTCGAGCTCGTCTCCCTGGTTTCACGTGAAACAAGGCTGCGGAAGGCTCTGGACACGTATCTCGAGGAGCGGGTTGCACGGGGGGAGGAGCGGATCGACTACGTGTTCGTGGACTGCCCGCCGAGCCTCGGACTGCTCACGGTCAACGCCTTCGTGACGGCGCGAGAGGTGCTGATCCCGATCCAGTGCGAGTACTACGCGCTGGAAGGCTTGAGCCAGCTCTTGAAGACCATCGAGCTCATCAAGGCGCACCTGAATCCGAATCTCATCGTCTCGACGATCCTGCTGACGATGTACGACGGTCGGACGAACTTGGCTCAACAGGTCGCCGCGGAGGTGCGGAGCCATTTCCCGGACCAGACGTTGCGGACGACGGTCCCGCGCTCGGTGCGGATCTCCGAGGCGCCCTCCTACGGGCAGACGGTGATCACCTACGACCCGGGCTCGACGGGCGCGCTCGCCTACCTGGAGGCGGCGCGCGAGATGTCGGAGCACGCGGTTCAACGCGCTGACCTGCGATGAMSSVPEVDDETPLAAQLALDARRRIDLDGRKFPRPERTRIITVANQKGGVGKTTTTVNLAAGLARAGLKVLVIDNDPQGNASTAMGLEHRAGTPSVYEVLVEDGRLADAVQACPDVDGLWGVPATIDLSGAEVELVSLVSRETRLRKALDTYLEERVARGEERIDYVFVDCPPSLGLLTVNAFVTAREVLIPIQCEYYALEGLSQLLKTIELIKAHLNPNLIVSTILLTMYDGRTNLAQQVAAEVRSHFPDQTLRTTVPRSVRISEAPSYGQTVITYDPGSTGALAYLEAAREMSEHAVQRADLRNANANANANA
AK018_024861350noc_1Nucleoid occlusion proteinATGAGCCAGAAGAAGCGAGGGCTCGGTCGAGGACTGGGGGCGTTGATCCCTCAGGGTCCTGTTCAGGACAAGCCCGTGGACGTGTTCTTCCCCGCGGGGAGGGACGAGTCGGACGGCAGCGCCGTGGCAACCGTCGAGCGTGACGAGGCGCCGGAGGGTGCCGAGAGCAGCGCGGAGTCCGCAGCGGGGGCGAGCCGCTCCCGCCGATCGGCGTCGTGGGACTCGGCGATCGCTGGCGGTCGCCTCGCGATCAACGGCGGTGCCGGGCGCACCGACGAGGCGAGCGACGACCCGGTCAGTGCTCTCGCGGGCCTGGCGGACCGGCTCGAGTCCGAGGCCACGCAGGTGGGTGACGACGAGCGCGTGGTGGGAACTGTCTCTGTCGTGGAGGTGGCGGAGCACGACGGCGGCGACGACCTCGCCTCGTCGACCTCGGCGGTCCCGACCGAGGGGGAGTCCGGTGGAGCTCCGTCGGACGCTGCGCACGTCGGGTCCCAGGACGGCGTCGAGCTGGTGCCGGTGCCGGGGGCGCACTTCGCCGAGGTGCCGGTCGCGGACATCCGCCCGAACGCTAAGCAGCCGCGCACAGTCTTCGACGAAGGTGACCTCGACGAGCTCGTGGACTCGATCAGCCAGATCGGTGTGCTGCAGCCCATCGTGGTGCGCCCCGATCCGGACGCCGGCTCCGGGTACGAGCTCATCATGGGTGAGCGCCGGTGGCGGGCCGCGCAGGAGGCCGGGCTCGAAACGATCCCGTCGATCGTCCGCGACACCGACGACTCCGAGATGCTGCGGGACGCGTTGCTGGAGAACCTGCACCGCGCTGCCCTCAACCCGCTCGAGGAGGCCGCGGCGTATCGTCAGCTGCTGGACGACTTCGGCTGCACGCACGAGGAGCTGGCCGGCAGGATCGCACGGTCCCGCCCGCAGATCTCGAACACGCTGCGGCTGCTCCGTCTGCCACCGCTGGTGCAGCGCCGCGTCGCGGCGGGTGTGCTGTCGGCCGGCCACGCACGCGCGCTGCTCGGACTGAGCGATGGCGCCGAGATCGAGCGCTTGGCCCAGCGAATCGTCTCGGAGGGCCTGTCGGTGCGGGCTACCGAGGAGATCGTCACCCTGGTGGCCGAAGGTTCGGAGGAGAAGACGAAGCGGCGTCAGCCGCGCGCCGGCCAACGGTCGGAGGCGATGTCCGAGCTGGCCGGGCGCCTCTCGGACCGCTTCGAGACCCGCGTCAAGGTCGACCTGGGGAAGACCAAGGGCAAGATGACCGTGGAGTTCGCCTCCGTGGAGGACCTCAACCGGATCCTTCAGGTGATGGCACCCGAGGACCCGGGTCTGCTCAAGCCGTGAMSQKKRGLGRGLGALIPQGPVQDKPVDVFFPAGRDESDGSAVATVERDEAPEGAESSAESAAGASRSRRSASWDSAIAGGRLAINGGAGRTDEASDDPVSALAGLADRLESEATQVGDDERVVGTVSVVEVAEHDGGDDLASSTSAVPTEGESGGAPSDAAHVGSQDGVELVPVPGAHFAEVPVADIRPNAKQPRTVFDEGDLDELVDSISQIGVLQPIVVRPDPDAGSGYELIMGERRWRAAQEAGLETIPSIVRDTDDSEMLRDALLENLHRAALNPLEEAAAYRQLLDDFGCTHEELAGRIARSRPQISNTLRLLRLPPLVQRRVAAGVLSAGHARALLGLSDGAEIERLAQRIVSEGLSVRATEEIVTLVAEGSEEKTKRRQPRAGQRSEAMSELAGRLSDRFETRVKVDLGKTKGKMTVEFASVEDLNRILQVMAPEDPGLLKPPGPT0014815_1462DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014815-parB|spo0J|yyaA-K03497NANA
AK018_02487996ddlB_1COG1181D-alanine--D-alanine ligase BATGTCCTCCCCCACCACCGACCTGCCCGACGCTCCGTCCACGTCAGGTCATGTCGGACCTGTCGTCATTCTCGCCGGCGGGCTGTCGCACGAGCGCGACGTCTCCCTGCGCTCCGGACGCCGCGTCGCCGACGCGCTCCGCGAGGCCGGCATCGAGGTGCACGTGCACGACGTCGACGCCGACCTGCTGCGGTTCCTCGCCGAGTCGCGTCCTTCCCTGGTCTGGCCTGTCCTCCACGGCGCGAGCGGCGAGGACGGTTCGCTGCAGGACGTCCTCGCGCTCACCGGACTGCCCACGGTCGGCACGGGTCCGCGGGAGAGCCGGCAGGCCTGGACCAAGCCGGTCGCCAAGGCCGAGCTCCTCACGGCCGGTCTGCACACCCCCGACTACGTGACGCTCCCCCAGGCACTCTTCCGCGACCTCGGGGCGCAGAGCGTGCTCGACCTCATCGAGGACCGGCTCGGCCTCCCTCTGGTGGTCAAGCCGGTGCGCGGCGGATCCGCGCTCGGCGTGACCCGCGTCGAGCGCTCGGCCGACTTCCCCCGTGCCATGGTGGACTGCTTCGCCTACGGCGACACCGCGCTCATCGAGCGCGCGGTCGACGGTGTCGAGCTCGCCGTGTCGGTCGTCGACGGGCCCGAGGGCCTGGAAGCCCTGCCGCCCGTGGAGATCGTCACCGACGGCGCGTACGACTACGACGCGCGGTACAACCCCGGTCCCGTGGAGTACTTCACGCCGGCTCGGCTCGATCCGTCCGACGCCGCAGCGGTCTCCGACGTCGCCGTCCGGGCCCACCTCGCCCTGGGACTCAAGCACCTGTCCCGCACCGACATCATCCTCGACAACGCCGGTGTCCCGTGGGTCCTCGAGGTCAACGTGGCCCCGGGCATGACCGAGACGTCGCTCCTCCCCCAGGCCGCCGTGGCGGCCGGGTACGAGCTCCCGGCCCTCTATCGCCGCATCGTCGAGCACGCGGCCGTCTCGGCCCGAAGCTGAMSSPTTDLPDAPSTSGHVGPVVILAGGLSHERDVSLRSGRRVADALREAGIEVHVHDVDADLLRFLAESRPSLVWPVLHGASGEDGSLQDVLALTGLPTVGTGPRESRQAWTKPVAKAELLTAGLHTPDYVTLPQALFRDLGAQSVLDLIEDRLGLPLVVKPVRGGSALGVTRVERSADFPRAMVDCFAYGDTALIERAVDGVELAVSVVDGPEGLEALPPVEIVTDGAYDYDARYNPGPVEYFTPARLDPSDAAAVSDVAVRAHLALGLKHLSRTDIILDNAGVPWVLEVNVAPGMTETSLLPQAAVAAGYELPALYRRIVEHAAVSARSPGPT0020050_4019DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921NANA
AK018_024881323lysN_1COG11672-aminoadipate transaminaseGTGACAGACCAGCAGCGGATCTCCGAGCAGACCTCCGGCACGCGTCTCGACCCGTGGTTCGGCGCCTACGCCGAGCGGACGCACGGCATGCGAGCGTCCGAGATCCGCGCGCTCTTCTCCGTCGCGAACCGCCCCGAGGTCGTCTCCCTGGCCGGCGGCATGCCCTACATCAGCGGGCTCCCGCTCGACGTGATCGGCGAGGCGATGGACCGCCTCATCCGCACCAAGGGCGAGACGGCGCTCCAGTACGGCTCCGGCCAGGGCGAGGAGTCGCTGCGCGAGAAGATCACCGAGGTCGCCGCGCTCGAGGGCGTCGACGCCCACCCGGACGACGTCGTCGTGACCACCGGCTCCCAGCAGGGACTCGACCTGGTGACGCGCCTGTTCATCGACCCGGGTGACGTCATCGTCGCCGAGGCGCCGTCCTACGTCGGTGCGCTCGGGGTCTTCCGCTCCTACCAGGCCGACGTGGTCCACGTGGAGCTCGACGCCGAGGGCCTGATCCCCGCCGCGCTGGAGCAGACCCTGACCCGCCTCGAGGCCGAGGGCCGCCGGGTCAAGATGCTCTACACCATCCCGAACTTCCACAACCCGGCCGGCGTGACCATGTCGGTCGAGCGCCGCGTCCAGGTGCTCGAGATCTGTCGGCGACACCACGTGCTCGTGGTCGAGGACAACCCGTACGGGCTGCTCGGGTTCGAGGGCGATCCCTACCCTGCCCTGCGCTCCTACGACGCCGAGGGCGTCATCTACCTCGGCTCGTTCTCCAAGACGTTCGCCCCCGGGTACCGCGTCGGCTTCGTGATCGCGCCCCACGCCGTGCGCGAGAAGCTGGTGCTGGCCACGGAGTCCGCGATCCTGTCGCCCTCGAACGCCTCCCAGCTGGCTGTGGACACCTACCTGTCGACCTGCGACTGGCGAGCCCAGATCAAGGACTACCGCGAGCTGTACCGGGAACGTCGGGACGCGCTGGTCGGCGCTCTGGCGGAGCACATCCCCGCGGCGAGCTGGAACGTGCCCGCCGGAGGCTTCTTCGTCTGGGTCCGGCTGCCTGATGGTCTCGACGCCAAGTCCATGCTGCCGCGCGCGGTCACCGAGCGGGTGGCCTACGTCCCGGGGACGGCCTTCTACTCCGACGGTCAGGGCGCCGACCACATGCGCCTGTCCTTCTGCTACCCGACGCCGGACCGCATCCGGGAGGGCGTGCGCCGGCTGTCGACCGTCGTCAACGCCGAGGCGGAGCTGGTCGAGCTCTTCGGCACCTCGGCGCGTCCCGACGACGACCCCTCGGACGTGGAGAACCCGTCCCCCGACCTCGCCTGAMTDQQRISEQTSGTRLDPWFGAYAERTHGMRASEIRALFSVANRPEVVSLAGGMPYISGLPLDVIGEAMDRLIRTKGETALQYGSGQGEESLREKITEVAALEGVDAHPDDVVVTTGSQQGLDLVTRLFIDPGDVIVAEAPSYVGALGVFRSYQADVVHVELDAEGLIPAALEQTLTRLEAEGRRVKMLYTIPNFHNPAGVTMSVERRVQVLEICRRHHVLVVEDNPYGLLGFEGDPYPALRSYDAEGVIYLGSFSKTFAPGYRVGFVIAPHAVREKLVLATESAILSPSNASQLAVDTYLSTCDWRAQIKDYRELYRERRDALVGALAEHIPAASWNVPAGGFFVWVRLPDGLDAKSMLPRAVTERVAYVPGTAFYSDGQGADHMRLSFCYPTPDRIREGVRRLSTVVNAEAELVELFGTSARPDDDPSDVENPSPDLAPGPT0007135_78DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007135-lysN-K05825NANA
AK018_02489327trxA_1COG0526Thioredoxin 1ATGCCCACCTCCGCCGTCACCGACGACACCTTCAAGACCGAGGTCCTCGAGTCCGACGTCCCCGTCCTGGTCGACTTCTGGGCGACCTGGTGCGGCCCGTGCCGCCAGGTCGCGCCGATCCTCGAGGAGCTCTCGGACGAGTACGAGGGCAAGGTGAAGATCGTCAAGCTCGACACCGACGCCAACCAGGCCACCACGATGGCCTACGGCATCACGTCGATCCCCACGCTCAACGTCTACTCCGGCGGTGAGGTCGTCAAGTCCATCATCGGCGCGCGCCCCAAGCGCGCGCTGGCCGAGGAGATCGACGGCGTCCTCGCCTCCTGAMPTSAVTDDTFKTEVLESDVPVLVDFWATWCGPCRQVAPILEELSDEYEGKVKIVKLDTDANQATTMAYGITSIPTLNVYSGGEVVKSIIGARPKRALAEEIDGVLASPGPT0013055_5212DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671NANA
AK018_024901044trxB_1COG0492Thioredoxin reductaseTTGACCGACCAGCCGACCACGTCAGCCCCGGAACCCACGGTCCACGACATCGTCATCGTCGGCTCCGGACCCGCCGGCTACACCGCCGCCATCTACGCGGCCCGCGCCGGGCTCGCCCCCGTCGTGATCGCCGGGTCGGTCACGGCCGGCGGTGCCCTGATGAACACCACCGAGGTCGAGAACTTCCCCGGGTTCCCGCCGGGCATCCAGGGTCCCGAGCTCATGGAGTCCATGCAGAAGCAGGCCGAGAAGTTCGGCGCAACCGTCCTGTGGGACGACGCCGAGAGCCTCGCCCTGGACGGTGACGTCAAGGAGATCGTCACCGGCGGGGGCGAGACCTTCCGGACCCGTGCCGTCATCCTGGCGACCGGCTCCGCCTACCGCGAGCTCGGTCTGCCCGAGGAGAAGCAGCTCTCCGGCCGCGGCGTCTCCTGGTGCGCCACCTGCGACGGCTTCTTCTTCCGCGACCAGCACATCGCCGTCGTCGGCGGTGGCGACTCCGCGATGGAGGAGGCGACCTTCCTGACCCGGTTCGCCGCAAAGGTCACGATCGTCCACCGCCGTGACGCCCTGCGCGCGTCAAAGATCATGGCCGACCGTGCGCTGTCCGACCCGAAGATCGACTTCGCGTGGAACAGCGAGGTCGTCGGGATCTCCGGGGAGGACAAGGTCTCCGGCCTGCGGCTGCGCGACACCGTGACGGGCGAGGAGCGCGACCTCGACGTGACCGGCCTGTTCGTCGCCATCGGTCACGACCCCCGCAGCGAGCTGTTGCGCGGACAGGTCGACCTGGACGACGAGGGCTACGTCCTCGCCGAGGGCCGTTCCACCCGCACCAACCTGTCCGGCGTGTTCGCCTGCGGCGACCTCGTCGACCACACCTACCGCCAGGCCATCACGGCCGCCGGGTCCGGGTGCGCGGCCGCGCTCGACGCGCAGGCGTACCTCGCGGACCTCGCCGACATGGACGAGGTCGACCCGGAGGACCTGCCCGCGGCGCTCGACGAGGTCGACGCCTCCGGCGAGCCCGTCACGGCCGGCTGAMTDQPTTSAPEPTVHDIVIVGSGPAGYTAAIYAARAGLAPVVIAGSVTAGGALMNTTEVENFPGFPPGIQGPELMESMQKQAEKFGATVLWDDAESLALDGDVKEIVTGGGETFRTRAVILATGSAYRELGLPEEKQLSGRGVSWCATCDGFFFRDQHIAVVGGGDSAMEEATFLTRFAAKVTIVHRRDALRASKIMADRALSDPKIDFAWNSEVVGISGEDKVSGLRLRDTVTGEERDLDVTGLFVAIGHDPRSELLRGQVDLDDEGYVLAEGRSTRTNLSGVFACGDLVDHTYRQAITAAGSGCAAALDAQAYLADLADMDEVDPEDLPAALDEVDASGEPVTAGPGPT0013060_2048DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384NANA
AK018_024911959hypothetical proteinGTGAGCAACGTCCAGCCCGGGACCGTCATGGTCGACCGTTACCGGCTGACCGGGTCCGCCGCCACCGACCTGGCGGCCGCGCACGCCTGGGAGGCCCACGACCAGATCCTCGACCGGCCGGTCCGGGTGACTTTCGTCGAGGGGCCCCACGCCGCCGCCGCGCTCGACGCCGCCCGCCGGGCCGCGCTCGTCGCCGACCCGCGCCTGTGCCGGGTGCTCGACGTCGGCACCACCGACCTCGGTGACGGCGAGACGTCCTACGTCATCACCGAGCCCTACACCGGCGAGACCCTCACGCAGATCATCTCCCGCGGCCTGGTAGACGCCCAGCAGGCCCGCGCCCTCATGGGCGAGGCCGCGACCGCCCTCGCCGCCGCCCACCAGCGCGGCGTGCACCACCTGGCGCTGCGGCCCGAGGCCGTGCGCGTCGACGGGCACCGGGTGGTGGTCACCGGTCTCGGGGTCGACGCCGGAGTGGCCGGCCTCGAGGTCCCCGGCCGGCAAGGTGCGGCCACCGACGCCCGCGGGCTCGTCGCCCTGGGGTACTACGCGCTCACCGCCCGTTGGGCCGGCGACCCCCTGGAGGTCGACTGGATCACCCCGGACGCGGTGCGCCCGCTGCCCGCCCAGACCGGGCCCGACGGCGTCGTCCCCGTGTCCGAGCTGGTGCCGCACGTCGACGAGCAGGTCGACCAGCTGGTGCGGCGCACGTTCTCCGGCGGGGAGGACGCCCCGGACGGCCCGGACGACGTCGTCGCGGCGCTCGAGCCGTGGGGCGCCGTGTCCGTCATGGGGGCGCTGCCCGAGTTCGTCCAGCCGACCGCGGAGCGTCCGGTCCGGTCCTCGGTGCTCGGCGCCGGCTCCCCCGCCGGTGGCGGATCCCGACCCGGCACGCCGCCGCCCGCACCGCCGGTGCGCCGTCCGTCCACCGGTCGGATCGCTCGGGCCGGGGCGGTCGGTGCCGCCGCCGGTGCGGGCGCCGCGTGGGCCGGTCAGCAGGCCGCCTCGCCGGCCCCCGCACAGCAGACGGCCGCGTACGGCCAGGCCCCGGCGCCCGCAGGACAGGTCCCGCCGGGGCAGGTCCCGCCGCCCCCCGGTGGGCAGGCTGCGGGCTACGCGCAGCCCGGAACGCCGCAGTTCGCTCCGGGTGGTCCCCAGGCCGGGTACGCTCCGGCGGGCTACGCGCAGCCTGGCTACGCCCAGCCCGGGTACGACCAGGCCGGCTACACCGCAGCGGGGGCCCAGGGTTCGCCCCCGTCGTCGGGCAGCCCGTCCACGGGCGGGTTCGCCTCGACCCCGTCGCCCAAGCGGCGAGGTGTGAACCCGACGCCGATCGTCCTCGGACTGCTGCTCGTCGTCGTCGTGCTCGGCGCCCTGTGGGCGATGGGCCAGGCGTTCTCGCCGTTCGACGACTCGCCGCCGCCCGGTGCGGAGGCGTCGCAGTCCCCGACCACCGACGCCGAGGGGTCCGGCGAGGAGGGCGACGGCTCGGCCGCTCCCGAGGAGGAGCCGACCGAGACCGAGGAGCCCGAGGTCCGCCCCATCATCGACTCCGGGAACCAGCTCGACCCGTACAGCGACGGCGAGCACCCCGAGGCGGTCGAGCTCGCGTACGACTCCGACCCCTCGACGTTCTGGTACACCCGGACCTACTACAACAATCCTGCCTGGGGCGGGTTCAAGAGCGGTGCCGGGTACCACGTGACGCTGCGCGAACCGGCGCCGGTGTCCGCCGTCGACCTCGACACCAACAGCTCGGGCGGGACCTGGCAGCTCCGCCAGACCACCGCCGACGACCCGGAGGGGGGCGAGGTGCTCGCCGAGGGCTCGTTCTCCGAGGACACGTCGATCGAGCTCGACGAGGCGGTGATCCTCGACGAGTTCGTCCTGTGGATCACCGAGCTGCCGCAGACCGACGGCGAGAACCGCCTCGAGCTCAACGAGATCACGCTGTCCTGAMSNVQPGTVMVDRYRLTGSAATDLAAAHAWEAHDQILDRPVRVTFVEGPHAAAALDAARRAALVADPRLCRVLDVGTTDLGDGETSYVITEPYTGETLTQIISRGLVDAQQARALMGEAATALAAAHQRGVHHLALRPEAVRVDGHRVVVTGLGVDAGVAGLEVPGRQGAATDARGLVALGYYALTARWAGDPLEVDWITPDAVRPLPAQTGPDGVVPVSELVPHVDEQVDQLVRRTFSGGEDAPDGPDDVVAALEPWGAVSVMGALPEFVQPTAERPVRSSVLGAGSPAGGGSRPGTPPPAPPVRRPSTGRIARAGAVGAAAGAGAAWAGQQAASPAPAQQTAAYGQAPAPAGQVPPGQVPPPPGGQAAGYAQPGTPQFAPGGPQAGYAPAGYAQPGYAQPGYDQAGYTAAGAQGSPPSSGSPSTGGFASTPSPKRRGVNPTPIVLGLLLVVVVLGALWAMGQAFSPFDDSPPPGAEASQSPTTDAEGSGEEGDGSAAPEEEPTETEEPEVRPIIDSGNQLDPYSDGEHPEAVELAYDSDPSTFWYTRTYYNNPAWGGFKSGAGYHVTLREPAPVSAVDLDTNSSGGTWQLRQTTADDPEGGEVLAEGSFSEDTSIELDEAVILDEFVLWITELPQTDGENRLELNEITLSNANANANANA
AK018_02492102hypothetical proteinATGACCCTGCCCGCCCACTACCATGGACCGATGGAACGGACAGTCGGCTCACCCCGCCGGACTTCCACCGCCGACCACACCACCACGGAGGCCTCCAGGTGAMTLPAHYHGPMERTVGSPRRTSTADHTTTEASRNANANANANA
AK018_024931698murJ_1lipid II flippase MurJATGACCGACCGCCCGCAGCCCGAGCCCGGCCCCGAGGACGTCCCGTCCGAGGGGGTGCGCCGGTCGAGCCTCGGCCGCAGCTCGCTGATCATGTCACTGGGGACCACGGCGTCGCGCGCCTCCGGGCTGGTCCGCACCATGCTGCTGGTCGCCTGCGTCGGCACCGTAGGGACCGTGGCCGACGCGTTCGACATCGCCAACAAGCTGCCCAACATGCTGTTCGCCCTCATCTCGGCAGGGTTCCTGCAGTCCGTGCTGGTGCCCCAGATCATGAAGGCGATGGACGCGCCCAACGCGCGGGAGCGGCTCGACAAGCTGCTGACCATCTCGGGCCTGGGGCTGCTGTCCGGCACCATCGTGCTCGTCGCGGCCGCGCCCGTCGTCGTGCAGCTCATGACGCTGTCGGACGCCTGGACGCCCGAGGCGCGGGGGCTCGCCACGGTCTTCGCCTACTGGTGCCTGCCCCAGCTGTTCTTCTACGGGCTGTACACGCTGCTCGGGCAGGTGCTGGCCGCCCACGGCCGGTTCGCGGCCTACGGCTGGGCGCCGGTGGCGAACAACATCGTCTCGCTGCTCGGGTTCGGGGCGTTCCTCCTCGCCTTCGGGCGGGCACCCTCCGGCGGGCTCGACGACGTCACGGCCTGGACCACCGGCCAGACGCTGCTGCTGGCCGGGACCGCGACGGCCGGCATCGTCGCGCAGGCGCTGCTGCTCATCCCGGCGCTGCGCCGCTCCGGCTTCCGGTGGGGCTTCCGCCTGGGCGTGCGCGGCATCGGCATGCGCTCGGCCGGCAAGGTGGTCGGCTGGACGCTCGGCGCCGTCGTGCTCGAGCAGCTCGGCGTCATCTACCTGACCAACATCCTCGGCGCCGCCGGCCAGGTCGCCGCCGACACCGGCGAGGTCGCGGCCGGCAACGCCGCGTACACCAACGCCATGACCATCTACCTGCTGCCGCACTCCCTGGTCGTGGTCTCCATCGTCACGGTCCTGTTCCCCCGGATGAGCGCCGCGGTGAACGCCGGCGACCTGCCCGGCGTGCGCCGCGACATGTCCCTCGGCATGCGCTCGGCCGGGGTGTTCTCCGTGTTCTCCGCGGCGGCGCTGATCGTGCTCGCCTTCCCGTTGACGCGCACGCTCGTGCCCACCGCCACCGAGGCCGACGTCGACGCCGTCGCCCCGATCCTGCGCGCGATGGCGATCGGAACCGTCGCGCTCGGTGCGACCGTCCTGGTGCGCCGCATGTACTTCGCGTTCGAGGACGGCCGGTCGGTCTTCGTGATCCAGGTCGTCGCGACGGTCGCGATGGTGATCGCGCTGTGGATCGCCGTCCAGACCCTGCCCGTCACCGCGTGGGCGGTCGCCGCGGGCGGCGCCTTCGCCCTGTCGACGTGGATCTCCCTGCTGCTGCGGGTGCGGGGCATGAACCGCAAGCTCCACGGCATGGACGGGCGGCGCATCCTGTCGCTGTACGGCCGCGCCGGGCTGTCCGCGCTCGTCGCCGGCGGGCTGGCGGCCTGGATCGTGCACCTGATGGGTACCTCGCCGGCGGACTCGTGGCCCGAGGCGCTCCTCGTCACCGCCGTGGCCGGGACCGTCATGGCCGGCGTCTACGTGCTCGGCCTGAAGCTGTTGCGGGTCCGCGAGCTCGACGACGCCCTCGCTCCGCTGGTCCGCCGCCTGCGGAGGTCCGGCTCATGAMTDRPQPEPGPEDVPSEGVRRSSLGRSSLIMSLGTTASRASGLVRTMLLVACVGTVGTVADAFDIANKLPNMLFALISAGFLQSVLVPQIMKAMDAPNARERLDKLLTISGLGLLSGTIVLVAAAPVVVQLMTLSDAWTPEARGLATVFAYWCLPQLFFYGLYTLLGQVLAAHGRFAAYGWAPVANNIVSLLGFGAFLLAFGRAPSGGLDDVTAWTTGQTLLLAGTATAGIVAQALLLIPALRRSGFRWGFRLGVRGIGMRSAGKVVGWTLGAVVLEQLGVIYLTNILGAAGQVAADTGEVAAGNAAYTNAMTIYLLPHSLVVVSIVTVLFPRMSAAVNAGDLPGVRRDMSLGMRSAGVFSVFSAAALIVLAFPLTRTLVPTATEADVDAVAPILRAMAIGTVALGATVLVRRMYFAFEDGRSVFVIQVVATVAMVIALWIAVQTLPVTAWAVAAGGAFALSTWISLLLRVRGMNRKLHGMDGRRILSLYGRAGLSALVAGGLAAWIVHLMGTSPADSWPEALLVTAVAGTVMAGVYVLGLKLLRVRELDDALAPLVRRLRRSGSPGPT0024200_684DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_LIPID_II_FLIPPASE_ACTIVITY,PGPT0024200-murJ|mviN-K03980NANA
AK018_024942124hypothetical proteinGTGACCCGGACCGCCTCCTCCCGCGGCGCGGGAGACCTTCGCAGCGCGCTGGCCGTCCTGGTCGGCACGCTGCTGGCGTGCCTCGTGCTGGTCGGGACCCCGCAGCCCGCCGTGGCGCACGAGTCCGTCACGCTCACCCTCGTGACGCAGTCACCCACGGTGGTGGGTCCGCAAGACACGCAGGAGGTGACGGTCCGGATCGACAACGCCGGCGAGGATCCGCTGACGGACGTCCAGGCGGATCTGGGGGTCGGGTGGCGCCCCCTGAGCACCCGCAGCGAGATCGCGGCGTGGGCCGACGACGGCTCGGACCTGACGAACACGAGCCAGGCACGCGAGAGCGTGGACCGCATCCCTCCCGGCGGGAGCGCCGAGGTGGAGCTCTCGCTGGACGTCGCCGCACTGCGCCTCGGTGACGACGCGTTCTGGGGGCCGCGCTCGCTGTCGGTGGAGGTCACCTCCGGGGGCGAGACGCTCGACGTGCTGCACTCGTTCCTGATGTACGACCCGGACAGCGGCACGGACCGCGCCGGCAGCTCCGCGCCGGACCCGCTCCGCCTCGCCCTCGTCGCGCCGGTGACCGGCCCGGCCCCCGACCCCGCCGACGAGGCGCGGTACGCGGAAGCCGTCGTCGCCGGGACGGCCGAGGGTGGCGCGCTCGACCGGCTGCTGGACGCCGCGACGGAGGGGTCGGCGGCACTCTCCCTGGCGGTGGACCCGGCGGTGGTCGCCGCGGCCGGCGGCTCGGGCGACCCGGAGGCCGCGGCCTGGGACCGCCGTCTGCGCGGGGCGGACGACGTCGTCCTGCTGCCGCCGTACGACCCGGACCTGGCGGCGCTGGCGCACGCGGGCGCGGGATCCGCCGCGGTCGCCGCGGCGACGGACCCGGCCACCCTCCTGCCGGGGGCCGCCGCCCTGCCGACGGCGTGGGACACCACCGTCGCCTGGCCGCAGGGTGTCGTCGATCAGTCCACGCTCGCCGTCACGGGTGCCGCGGACGCCGGGTACGCCCTGGTGGTGGAGGGGGTCACGGAGGTGCCCGGTGCCGTGCCCGCCGCCCGCGACACGGTGTCGACCACGGCCGGCGACGTGCCCGTCGTGGTGGCCGACGGCGTGCTGTCCGACCTGGTCGCGGCCGGTAGCGAGGGCAGTGGTACATCCGGGTCGACGCTCGATGTACAACGCCTCCTGGCCGAGACCGCCGTGCTCGCCGGCACCGCGGCCGACGCCGGGACCACCGGGACCGCGGTGGCAGCGCTGCCGCGCGGATGGAGCCCGGACGTCGACGCGTTCGAGTCGCTCGTCATGGCCCTGGACTCCACCGGATGGGTCGAGACGGCCGGGCTCGGCGAGGTGCTCGCCGCGGAGCCGCAGCCCGGCACGCACACCGAGCCGGAGGGCACCGTCGTCGACGACGCCGAGCTCGCCCCCGACGACGTGCGCCGGCTCCTGCGCGCCGGGCAGTCCGTCGAGGAGTTCGCGTCGGTCGCGGCCGACCCCGCCGAGCTCACCGGTCCGGTGGGCCGTGACCTCGTCTCGCCGCTGGCCCTGGCCTACCGGGACGCCCCGCAGGCCCGGGACGCCGCCACCCGCCTCGCCCTGACCCGTGCCGACCAGGTCCGCACCGGGATCAGCGTGGGCCAGCGCGGCGACGTGACCCTCATCAGCGACTCCGGAGCCCTGCCCGTCCGCGTCCGCAACGACCTCCCGGTGGACGCGACCGTCACGGTCTCCCTGACCCCCTCCGACCCGCGCGTCGTCGTCGAGACCTCGCCGACCGTCGTCGTCCCCGCCGGGGAGTCCCGCGACGCCCAGGTGCGCGTGCGGGCCATCGGTTCCGGCGACGTCGACCTCGCCGTCGAGGTCCTCGCCCCGAGCGGCGTCCCCGTGGCCGAGCCCACGAGCTTCGCCGTCCGGGTCCGCGCCGGCTGGGAGACCGTCGGCACCGCCGTGATCGCCGTCGCCGTCGCGCTGCTGTTCCTCGGGGGCATCTGGCGCACCATCCGCCGCGGCCGGTCCGACAGCCGCACCACCGGCACCGAGGTCGCCGAGTCCGTCACCCCCGCCGGTGACGGACCGCCCCTGACGGACACCACCCAGGACGTGGAGGACGCCCCCCGATGAMTRTASSRGAGDLRSALAVLVGTLLACLVLVGTPQPAVAHESVTLTLVTQSPTVVGPQDTQEVTVRIDNAGEDPLTDVQADLGVGWRPLSTRSEIAAWADDGSDLTNTSQARESVDRIPPGGSAEVELSLDVAALRLGDDAFWGPRSLSVEVTSGGETLDVLHSFLMYDPDSGTDRAGSSAPDPLRLALVAPVTGPAPDPADEARYAEAVVAGTAEGGALDRLLDAATEGSAALSLAVDPAVVAAAGGSGDPEAAAWDRRLRGADDVVLLPPYDPDLAALAHAGAGSAAVAAATDPATLLPGAAALPTAWDTTVAWPQGVVDQSTLAVTGAADAGYALVVEGVTEVPGAVPAARDTVSTTAGDVPVVVADGVLSDLVAAGSEGSGTSGSTLDVQRLLAETAVLAGTAADAGTTGTAVAALPRGWSPDVDAFESLVMALDSTGWVETAGLGEVLAAEPQPGTHTEPEGTVVDDAELAPDDVRRLLRAGQSVEEFASVAADPAELTGPVGRDLVSPLALAYRDAPQARDAATRLALTRADQVRTGISVGQRGDVTLISDSGALPVRVRNDLPVDATVTVSLTPSDPRVVVETSPTVVVPAGESRDAQVRVRAIGSGDVDLAVEVLAPSGVPVAEPTSFAVRVRAGWETVGTAVIAVAVALLFLGGIWRTIRRGRSDSRTTGTEVAESVTPAGDGPPLTDTTQDVEDAPRNANANANANA
AK018_02495567hypothetical proteinGTGCCGGTGCCCGTCCCGCCCGGCGGTCATCCCCTGCGGGTCGACCCCGCACGTGTGCACGGTGGTGCCGTCGCGTCCGCGGGCGGGCCGGGCCATGCGACGACGGCCCACCTGCCGGTGGTCGACGAGACCTCGGCCGGCGGACTGGTGGTGCAGCCCCACCGCACCGGACCGCAGGCTGCCGTCATCCTGCGCCGCAACCGGGCCGGGCGCCTCGAGATGTGCCTGCCGAAGGGGCACCTGGAGGGCCGCGAGACCCCCGAGGAGGCAGCCGTCCGCGAGATCCGGGAGGAGACCGGCATCAGCGGCACGGTCCGGTCCGCGCTGGGCGTGATCGACTACTGGTTCAGCGGCGAGGACCGCCGGGTGCACAAGGTGGTGCACCACTTCCTGCTCCGCGCCGACGGCGGCGTCATCACCGCGGCCGGCGATCCGGACGGCGAGGCCGAGGACGCCCGCTGGGTACCGCTCGCGGAGCTGACGCAGCGGCTGGCCTACCCGAACGAGCAGCGGCTCGCGGGCGCCGCGCTGCAGGTGCTGGTGCGCACGCCGGACCTCGTCGAGTGAMPVPVPPGGHPLRVDPARVHGGAVASAGGPGHATTAHLPVVDETSAGGLVVQPHRTGPQAAVILRRNRAGRLEMCLPKGHLEGRETPEEAAVREIREETGISGTVRSALGVIDYWFSGEDRRVHKVVHHFLLRADGGVITAAGDPDGEAEDARWVPLAELTQRLAYPNEQRLAGAALQVLVRTPDLVENANANANANA
AK018_024961488cca_1CCA-adding enzymeGTGTCGACACCTGAGCCCCCCGCCCCCGCCGCCCTCCTGCGGCGTGCGCTGAGCGTCCTGACCGAGATGGCCCCGGCCGCCGTCGAGCTCGGCGAGGTCTTCGCGGCCGCCGGGCACGAGCTCGCGCTGGTGGGCGGCCCGGTGCGGGACGCGTTCCTGGGGCGGGCGAGCGAGGACCTCGACTTCGCGACGTCGGCGACCCCGGACGAGACGCAGCGGCTCCTGGCGCGCTGGGGTGACGCCCACTGGGACATCGGCAAGGAGTTCGGGACCATCGGGGCGCGCCGCTACGGGCCGGGCGGCCGCACCGGCTCCGGGGCGGGCGACGTCGTCGTCGAGGTCACCACGTACCGGTCCGACGAGTACGACCCGGAGTCGCGCAAGCCGGTCGTGGCGTTCGGCGACACCCTCGACGGCGACCTCTCGCGCCGTGACTTCACCGTCAACGCGATGGCCGTCCGCCTGCCCGACCTGACGTTCGTCGACCCGTTCGGCGGGCTGAGCGACCTGGCCGACGGCGTGCTGCGCACCCCGATCGCCCCCGAGCGGTCGTTCGACGACGACCCGCTGCGGATGCTGCGCGCCGCCCGGTTCGCCGCCCGGCTGGGGTTCGCCGTCGAACCGGCCACCCGGGCCGCGATCGAGGCGATGGCGCCGCGCCTCGCCATCGTCTCGGCGGAGCGCGTGCAGGCCGAGCTGTCCAAGCTGCTGTGCGCCGACCAGCCGCGGGCCGGGCTCGAGGTGCTGGTCGAGTCGGGACTGGCCGACCAGGTGCTGCCCGAGCTGCCCGCGCTGCGCCTCGAGATCGACGAGCACCACCGGCACAAGGACGTCTACGAGCACTCGCTCATCGTGCTCGACCAGGCGATCGCCCAGGAGACCGGGGCCGACGGCGCCGTGCCGGCACCCGACCTGGTGCTGCGGCTCGCGGCACTGCTGCACGACATCGGCAAGCCCGCCACACGACGGTTCGAACCCGGCGGCGGCGTCAGCTTCCACCACCACGAGGTGGTCGGCGCCAAGATGGTGGCCAAGCGGCTGCGTGCGCTGAAGTACGAGAAGCAGGTCGTCAAGGACGTCGCCCGGCTCGTGGAGCTGCACCTGCGGTTCCACGGCTACGGCGACGGCGCCTGGACCGACTCCGCCGTGCGCCGGTACGTCACCGACGCCGGCCCCCTGCTCGAGCGGCTCCACCGGCTGACGCGGGCCGACTGCACGACCCGCAACCGCCGCAAGGCGCGGCGGCTGTCCGAGGCGTACGACGACCTCGAGCGCCGCATCGCCGAGCTCCAGGAGAAGGAGGAGCTCGACGCGATCCGACCCGACCTCGACGGGACGCAGATCATGGCGATCCTCGGCATCTCGCCGGGGCGTGACGTCGGCGCCGCCTACCAGCACCTGCTCGCGCTGCGCATGGAGCACGGACCGCTCGGGGAGGAGCGGGCCCGTGCCGAGCTCGAGGCCTGGTGGGAGGCCCGCCAGGCCTGAMSTPEPPAPAALLRRALSVLTEMAPAAVELGEVFAAAGHELALVGGPVRDAFLGRASEDLDFATSATPDETQRLLARWGDAHWDIGKEFGTIGARRYGPGGRTGSGAGDVVVEVTTYRSDEYDPESRKPVVAFGDTLDGDLSRRDFTVNAMAVRLPDLTFVDPFGGLSDLADGVLRTPIAPERSFDDDPLRMLRAARFAARLGFAVEPATRAAIEAMAPRLAIVSAERVQAELSKLLCADQPRAGLEVLVESGLADQVLPELPALRLEIDEHHRHKDVYEHSLIVLDQAIAQETGADGAVPAPDLVLRLAALLHDIGKPATRRFEPGGGVSFHHHEVVGAKMVAKRLRALKYEKQVVKDVARLVELHLRFHGYGDGAWTDSAVRRYVTDAGPLLERLHRLTRADCTTRNRRKARRLSEAYDDLERRIAELQEKEELDAIRPDLDGTQIMAILGISPGRDVGAAYQHLLALRMEHGPLGEERARAELEAWWEARQANANANANANA
AK018_024971491ribZ_1Riboflavin transporter RibZATGTCCGCACGCACCACCGAGGCTCCGCCCGGCGGCACCACCGACGGGACGGTGCCCGGCCGCGACCGCGACAAGCTCTCGCGCGAGCACCTCGGCGTCATCGCCCTGCTGATGGTGTCGGCGTTCATCGTCATCCTCAACGAGACGACGATGGGCGTGGCCCTGCCGGCCGTCATGGACGAGTTCGACATCGAGGCCTCCGCCGGTCAGTGGCTCACCACGGCGTTCCTGCTGACGATGGCCGTCGTCATCCCGACCACGGGCTGGCTGCTGCAGCGGTTCGGGACCCGGGTGGCCTTCGTGCTCGGCATGTCCCTGTTCACCACGGGCACGCTGCTCGCCGGGCTCGCGCCCGTGTTCGGGCTGCTCGTGGCGGCTCGCGTCGTGCAGGCGTCCGGCACGGCGATCATGCTGCCGCTGCTGATGACCACCGTCATGACGATCGTGCCGCCGCACCACCGCGGCCGCGTCATGGGCAACGTGTCCCTGGTGATCGCCGTCGCCCCGGCGCTGGGCCCGACGATGTCCGGCGCGGTCGTCAACGCGCTCGGCTGGCGCGAGGTCTTCTGGGTGATGCTGCCCATCGCCGTGACCGGCCTGGTCATCGGCCTCTTCCTGGTCCGTGACGTCGCCGAGCGGGCCCGCAAGCACCTCGACGCCGTGTCGGTCGTGCTGTCGGGCTTCGCGTTCGGCGGTCTGGTCTACGGGCTCTCGGCGCTGGGTGAGGCCGCCCGGCACGCGCCGCCGGTGCCCCCGGTGCTGCCGATCGTGGGCGGACTGGTCTTCCTGGCGCTGTTCGTGTGGCGTCAGCTGCGCCTGCAGCGCATCGACGACGCCCTGCTGGACCTGCGGGTCTTCCAGGCGCCCGGGTTCGCGACCGGGCTGGGCGTGCTGGTGGTGGCGATGATCGCCATGTTCGGCATGATCATCGGTCTGCCGCTGGTGCTGCAGGAGGCCATCGGTCTCGCGCCGCTGGCGAGCGGCCTGGTGATGCTGCCCGGCGGTCTGATCATGGGACTGCTCGGCCCGGTGGTCGGCCGACTCTACGACCGGGTCGGCCCGCGCCCGCTGGTGCTGCCCGGGGTGTCGGCGGTGGCGGTGGCCATGGTCCTGTTCGCGACGCTGACCCCGTCGTCGCCCATCTGGTGGGTGATGACCGGGCACGTCGTGCTGAGCCTCGGGCTGGCCTTCGTGTTCACGCCGACGCTGACCTCGGCGCTCGGCGGGCTCGCACCGCGGCTCTACTCGCACGGTTCGGCCACGATCACCACGCTCCAGCAGCTCGCCGGTGCGGCGGGGACGGCGATGTTCGTCGCGCTGCTGACCATCCGGTCGGTGGCGCTGGTGGACGACGGCGTGGGCGAGGCCGCGGCGACGGCCGGCGGCGCGCAGCTCGCCTTCGGGGTGGCCGCCGTCGTCATGGTGGGTGCGGTCCTGCTGGCCACGCGGCTGCGCCGGGCGGACTCGACGGCCGAGGCCCCCGCGCACTGAMSARTTEAPPGGTTDGTVPGRDRDKLSREHLGVIALLMVSAFIVILNETTMGVALPAVMDEFDIEASAGQWLTTAFLLTMAVVIPTTGWLLQRFGTRVAFVLGMSLFTTGTLLAGLAPVFGLLVAARVVQASGTAIMLPLLMTTVMTIVPPHHRGRVMGNVSLVIAVAPALGPTMSGAVVNALGWREVFWVMLPIAVTGLVIGLFLVRDVAERARKHLDAVSVVLSGFAFGGLVYGLSALGEAARHAPPVPPVLPIVGGLVFLALFVWRQLRLQRIDDALLDLRVFQAPGFATGLGVLVVAMIAMFGMIIGLPLVLQEAIGLAPLASGLVMLPGGLIMGLLGPVVGRLYDRVGPRPLVLPGVSAVAVAMVLFATLTPSSPIWWVMTGHVVLSLGLAFVFTPTLTSALGGLAPRLYSHGSATITTLQQLAGAAGTAMFVALLTIRSVALVDDGVGEAAATAGGAQLAFGVAAVVMVGAVLLATRLRRADSTAEAPAHPGPT0028570_230DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028570-lmrB-K18926NANA
AK018_024982160hypothetical proteinATGAGCAACCCCACGTCGCAGGCCACGGAGCAGGCCGCGGGCACGGCCCTGGCGGCGGCCGCGCTGGCCGACGTGGACGACCCGATCGAGATCGCGACCGGCGGAGCAGTGCTCATGGTCGACGCCGCGACCGACCGCGTGGTGGACGCCAACCCCGTGGCCGGACGCATGAGCGGCGGCACGGACCTGCCGGCGTCGCTGGACTCGTGGTGCGCCGCGGCGGGCCTGACCACCGGGGTCGACGGGGTCTCGGCCGCCGAGGCGATCCGCGGCACCCTGGACGGGGGCGGGGGCACCGCGCTGCTCTCGCGACGGCCGGGCGGGCCCGAGTCGCTCTGGGCCGTCGGCGTCCCGTTGGAGGGCGCCCCGAACGGCCTCGACGACCGTGTCCTGGTGGCTCTCCTGCCGGGGACGGGCCTGCGCGAGACCACGACGACGGCGTCCCCCCTCGACGGCCTGCAGATGCGGGCGGCCGTGGCCAGCCACCTCAGCTTCACGATCTCCGACCCGAGCCAGCCCGACAACCCGCTGATCTGGGTGAACCCGGCGTTCTGCGACGTCACCGGTTACTCGGCGGAGGAGGTCCTGGGCGACAACTGCCGGTTCCTCCAGGGTGAGGGCACGGACCCGGCGGCCGTCCAGCGGATCCGCGACGCGCTGGCCGAGGGCCGCACGGTGGGCACCACGCTGCTCAACTACCGCAAGGACGGCACGCCGTTCTGGAACCAGGTGGTGATCTCGCCGGTGCTGGGCGAGGACGGCGAGGTCACCCATCACGTCGGCATCCAGACCGACGTGACCGACCGCGTGCACGCCGACCGCCGCCGCGCCAACGAGCTGGACGAGGCGCACCGCGAGAAGGACGAGGCGCACCGCGAGAAGAACCGGCTGGGCCTGCTGACGCAGATCACCCAGTCCCTGGTGGACCTCTTCGACGAGGAGGCCGGCGCGGCGGTGCTGCCCGAGCTGGTGGCACCGCACTTCGGGTCCTGGTGCGCCGTCGTCGTGGCGGACGAACGCGACCGGCCCCGGCTCGTGCACGTCGCCGCGCGGGACCTCGACCGGGCCGACGACGTCGCCCTGCTGGAGGCCTCCCAGCGCTGGGCGCTGGAGTCCCCCGCGATCCACCGGGTGCTGTCCGCGGATCCCTCCTACGTGGCCGAGCCGTTCCCGGTGGACGTGGCCTCGCTGCCGGACCGGACCGATCCCGGCGAGCTCGCTGCGCTGGAGCGGCTGGGCCTGGGGTCGGCGATCGTGGTTCCGCTGCGCGGCCGCGACCACACGATCGGCGTGCTCGTCGTCATCAGCGAGGACCCGCCGGAGAGCTTCAGCCCCGACGACGTGCGCGACATCGTCGCGCTCGGTGCCCGCGGCGGTCTGGCGCTGGACAACGCCCGGCTCTACCGCCGGGAGCACCACACCGCGCTGACGCTGCAGCGCAGCATGCTCCCGGAGATCGTCGAGGCGCCCGGCCTGGACTGCGCCGCGCTGTACGAGCCGGCGTCGGCGGGGGCGGACGTGGGCGGCGACTGGTACGACGTCGTCCCGCTGCCCTCGGGCCGGGTCGCCGTCTCGGTGGGCGACGTCGTCGGGCACGACGTGCGCGCCGCCGCGTCGATGGGCCAGCTCCGGTCGGTGCTGCGTTCCGGGGCCTGGTCCGGGCGGTCCCCCGCCGCCGTCGTCTCCGGCATGGACGAGCTGGTCCGCGGGCTCAGCATGGCCGACATGGCCACGTGCGTGTTCGCGCTCATCGACCCGGCCGACGACGACGGCGTCCGGCGCGTCACGTACACCCGGTGCGGCCACCCGGCACCGTTGCTGCTGCGGGCCGACGGCGAGGTCGAGCTGCTGGAGGAGGCGTTGAACACCCCGGTCGGCGCACCTGTGCTGACCGACGAGGCCCCCGAGGCGACCACCGAGCTGCGTCCCGGCGACCTGCTGGTGCTGTTCACCGACGGACTGGTCGAGCGCCGGGACCGGTCGCTGCGGGACCAGCTCGCGAACCTGTACAACTGCGCCGCCGAGATGGCGACCGGGCTGGACGCCGCAGCGGCCCGCGACACCATCGTCGAGGCGTGCGCGGACGGCGAGCGGGAGGACGACACCTGCATCCTCGTGGTGCGCAACGCCGCGTCGCCGACCGATGAGTCCGGAGCGTAAMSNPTSQATEQAAGTALAAAALADVDDPIEIATGGAVLMVDAATDRVVDANPVAGRMSGGTDLPASLDSWCAAAGLTTGVDGVSAAEAIRGTLDGGGGTALLSRRPGGPESLWAVGVPLEGAPNGLDDRVLVALLPGTGLRETTTTASPLDGLQMRAAVASHLSFTISDPSQPDNPLIWVNPAFCDVTGYSAEEVLGDNCRFLQGEGTDPAAVQRIRDALAEGRTVGTTLLNYRKDGTPFWNQVVISPVLGEDGEVTHHVGIQTDVTDRVHADRRRANELDEAHREKDEAHREKNRLGLLTQITQSLVDLFDEEAGAAVLPELVAPHFGSWCAVVVADERDRPRLVHVAARDLDRADDVALLEASQRWALESPAIHRVLSADPSYVAEPFPVDVASLPDRTDPGELAALERLGLGSAIVVPLRGRDHTIGVLVVISEDPPESFSPDDVRDIVALGARGGLALDNARLYRREHHTALTLQRSMLPEIVEAPGLDCAALYEPASAGADVGGDWYDVVPLPSGRVAVSVGDVVGHDVRAAASMGQLRSVLRSGAWSGRSPAAVVSGMDELVRGLSMADMATCVFALIDPADDDGVRRVTYTRCGHPAPLLLRADGEVELLEEALNTPVGAPVLTDEAPEATTELRPGDLLVLFTDGLVERRDRSLRDQLANLYNCAAEMATGLDAAAARDTIVEACADGEREDDTCILVVRNAASPTDESGANANANANANA
AK018_024991338COG0477putative MFS-type transporterGTGGGAGCCCTGCACGAGACCTGGCGCGACCTGCTCGCGCTCCTCCGCCTGCAGGGTTTCCGCCGTCTCTTCGCCGTCCGACTGGTGTCCCAGGCGGGGGACGGCATGTTCCAGGTGGGCCTGGCGTCCCTGCTGTTCTTCTCCCCCGAGCGCGCCGGCACGGCCGCCGGGGTCGCGTCGGCGTTCGCGGTGATGCTGGCCCCCTTCACGATCATCGGCCCGTTCGCCGGGGTCTTCCTGGACCGGTGGCGTCGCCGTCAGGTCCTCGCCGTCGGCAACGCCGTGCGGGTGGTCCTGGCGGGAGCGATGGCCGCGGTCATGCTGACCCTCGGCCTCGACGGCCCCGGCGAGGCGTGGGTGATCGTCCTGGGCCTCGCCGCCCTGAGCGTGAACCGCTTCCTGCTCGCTGCGCTCAGCGCCGGTCTGCCTCGCGTCGTGGACGGCCCGCTGCTGCTCACGGCCAACTCGCTGACCCCGACGCTCGGGACGGGCGCGGCGTTCCTGGGCGGCGGCGTCGGGTTCGTCGTCGGTCTGGGCCTCGCGCCCGGGCCGGTGCACGACGCCGCGGCCCTGCTGTGCGCGGCGGTCGTCTTCGGTGTGGCTGCCGCGCTGGCGCTGCGCCTCGGCCGAGACCAGCTCGGTCCCCTCCACCCACGCCGCGGGCGCCTGGCCACGGAGATCGCCGAGGTCGCGCGCGGGCTGGTCGACGGCGCCCGCTACCTGTCGGCCCGTCGCACGCCCGGGCAGGCCCTCCTGGTCATGGCGGCGCACCGGTTCCTGTACGGCGTGGTGTTCATCGCCGCCATCCTCATCTCCCGCAACATGCTGGCCGCCCCCGGCGACACGTCGGCGGGTCTCGCGAACTTCGCGATGGTCCTCGGCGCGACGGCGGTCGGTGGTGCGTTCGCGATCGTCGCGACCCCGGTGCTCTCGCGTCGCACGGGACCGCAGGGCTGGATCGTGTGCATGCTGCTGCTGGCCGCGGTGTCCCAGCTCCTGCTGGCCACCACGCCGTCGCGCACGGTCGTCCTGGTCGGTGCCGGGTTCCTGGGGCTGGCGGCGCAGAGCGCCAAGATCGCCGTGGACACGATCGTGCAGCGGGACACGCACGACGGCTACCGCGGTCGGGCCTTCGCCTTCTACGACGTGCTGTTCAACGCCGCGTTCGTCGGGGCCGCGGTCCTGGCCGCCTGGGCGGTGCCCGACGACGGCTGGTCGCGTGGCCTGTTCGCCACGCTGGCGCTGGCCTACCTGGCGGTCGCGGCCCGGCTCTGGTTCCGCGGCGACCGGCAACCCGCCGAGGTCCCGCGCCGCGCGGCGCCGTCGACGCATCCCTGAMGALHETWRDLLALLRLQGFRRLFAVRLVSQAGDGMFQVGLASLLFFSPERAGTAAGVASAFAVMLAPFTIIGPFAGVFLDRWRRRQVLAVGNAVRVVLAGAMAAVMLTLGLDGPGEAWVIVLGLAALSVNRFLLAALSAGLPRVVDGPLLLTANSLTPTLGTGAAFLGGGVGFVVGLGLAPGPVHDAAALLCAAVVFGVAAALALRLGRDQLGPLHPRRGRLATEIAEVARGLVDGARYLSARRTPGQALLVMAAHRFLYGVVFIAAILISRNMLAAPGDTSAGLANFAMVLGATAVGGAFAIVATPVLSRRTGPQGWIVCMLLLAAVSQLLLATTPSRTVVLVGAGFLGLAAQSAKIAVDTIVQRDTHDGYRGRAFAFYDVLFNAAFVGAAVLAAWAVPDDGWSRGLFATLALAYLAVAARLWFRGDRQPAEVPRRAAPSTHPNANANANANA
AK018_025001092ino1_1COG1260Inositol-3-phosphate synthaseATGACCTCCGTCCGCGTTGCCATCGTCGGTGTCGGAAACTGTGCATCGTCCCTGGTCCAGGGCGTGCACTACTACCGCGACGCCGACCCGTCAGACACCGTCCCGGGTCTCATGCACGTGCAGTTCGGCGACTACCACGTGCGCGACCTCGAGTTCGTGGCGGCGTTCGACGTCGACGCGAAGAAGGTCGGGTTCGACCTCGCCGAGGCCATCAACGCCTCGGAGAACAACACGATCAAGATCGCCGACGTGCCGCCCACGGGCGTCATGGTCCAGCGCGGACCGACCCTCGACGGGCTCGGCGACTACTACCGCGCGACCATCGACGAGGCGGCCGACGAGCCGGTCGACGTCGTGCAGGCCCTGCGGGACGCGCAGGTCGACGTCCTGGTGTCCTACCTGCCGGTGGGTTCCGAGGAGGCCGACAAGTTCTACGCCCAGTGCGCCATCGACGCCGGCGTGGCGTTCGTCAACGCGCTGCCGGTCTTCATCGCCTCCGACCCCGAGTGGGCGAAGAAGTTCGAGGACGCGGGCGTGCCGATCGTCGGCGACGACATCAAGTCCCAGGTCGGCGCGACGATCACGCACCGCGTGCTCGCCAAGCTGTTCGAGCAGCGCGGCGTGGTCCTGGACCGCACCTACCAGCTCAACGTCGGCGGCAACATGGACTTCAAGAACATGCTGCAGCGCGACCGCCTCGAGTCCAAGAAGGTCTCCAAGACCCAGGCCGTGACCTCCAACCTCACCGGCGCGCTCGCCGGGAAGAAGGAGGACCGCAACGTCCACATCGGCCCGTCGGACTACGTCGCCTGGCTCGACGACCGCAAGTGGGCCTACGTGCGCCTCGAGGGCCGCGCGTTCGGCGAGGCCCCGCTGAACCTCGAGTACAAGCTCGAGGTGTGGGACTCCCCCAACTCGGCCGGCATCATCATCGACGCCATCCGCGCGGCGAAGATCGCCAAGGACCGCGGCATCGGCGGCCCGATCCTGTCCGCGTCGACGTACTTCATGAAGTCGCCGCCGGTCCAGATGGAGGACACCCAGGGCCGCGCGAAGCTCGAGGCCTTCATCGCCGGCGACGAGGAGCGCTGAMTSVRVAIVGVGNCASSLVQGVHYYRDADPSDTVPGLMHVQFGDYHVRDLEFVAAFDVDAKKVGFDLAEAINASENNTIKIADVPPTGVMVQRGPTLDGLGDYYRATIDEAADEPVDVVQALRDAQVDVLVSYLPVGSEEADKFYAQCAIDAGVAFVNALPVFIASDPEWAKKFEDAGVPIVGDDIKSQVGATITHRVLAKLFEQRGVVLDRTYQLNVGGNMDFKNMLQRDRLESKKVSKTQAVTSNLTGALAGKKEDRNVHIGPSDYVAWLDDRKWAYVRLEGRAFGEAPLNLEYKLEVWDSPNSAGIIIDAIRAAKIAKDRGIGGPILSASTYFMKSPPVQMEDTQGRAKLEAFIAGDEERNANANANANA
AK018_02501681hypothetical proteinGTGCGGAGCCGTTCGAACGTCCTCGAGACGGCCGTGCTCGGCCTGCTGAGCTCCTCCCCCCTGCACGGGTACGAGCTGCGCAAGCGGCTCAACCTGCTCCTGGGCTCCTTCCGGGCCTTCTCCTACGGCAGCCTGTACCCCGCGCTGAAGTCGCTGGTGGCCCGCGGTCTCATCGAGACGGTGGACCCCGAGCCCGCGCCCACCGGACGGGCAGCGGGCCGCGGCGTCGCCGGCGCGACCGGACGTCCGTCGTCGGGCAGCAAACCGCTCACCGGGCGCCGCGGCCGCATCGTGTACCGGCTCACCGCCGACGGCAAGGAGCACCTGCAGACCACTCTCGCCTCCGCCGGGCCGTCGGCCTGGGAGGACGAGAGCTTCGACGTACGGTTCGCGCTGTTCGCGCAGACCGACGCCGAGACCCGCCTCCGCATCCTCGAGGGCCGGCGCACCCGGCTGACCGAGCGGCTGGAGGCCGTCCGGGAGTCCGCCTCCCGGACCCGTGAACGGCTCGACGAATACACTCTGGAGCTGCAGCGGCACGGGCTGGAGCAGGTCGAGCGCGAGGTGCGCTGGCTCGACGGCCTCATCACCACCGAGCGCGACCGCGCGAGCGGCCGTGCCCGCGACCGAAACGCCGGGGTGCACGACACCCCGGCCCCGAGAAACAAGGAGCGAGGATGAMRSRSNVLETAVLGLLSSSPLHGYELRKRLNLLLGSFRAFSYGSLYPALKSLVARGLIETVDPEPAPTGRAAGRGVAGATGRPSSGSKPLTGRRGRIVYRLTADGKEHLQTTLASAGPSAWEDESFDVRFALFAQTDAETRLRILEGRRTRLTERLEAVRESASRTRERLDEYTLELQRHGLEQVEREVRWLDGLITTERDRASGRARDRNAGVHDTPAPRNKERGNANANANANA
AK018_025022550mtgA_1Biosynthetic peptidoglycan transglycosylaseGTGGCGAGCACCCGCAGACGTCGCTTCTGGAACTACCCGCGCCGGGGGAAAGGCATCGTGCAGCGATGGCTCCCGTCGTGGCGCGTCGTCGTCGGCTGCGCCCTGACGTGCCTCGCCCTCGGCGCCGGCGTGTTCTTCGCCGCCTGGTCCACCACGGAGATCCCCGACAACCTCGACGAGGTCGACCACCAGGCCACGACGGTCTACTACTCCAACGGCAAGGAGATCGGCACCTACTCGTCGATCAAGCGTGAGCTCGTCCAGTACGAGGACCTGCCGGGCTACGTCGGCAACGCCGTCGTGGCCTCCGAGAACGCGACCTTCTGGGACGACCCCGGCGTCGACGTCAGGGGTCTGGCGCGCGCCGCGTGGAACAACCTGACGAACTCGGGCAGCCGCCAGGGCGGGTCGACGCTGACCCAGCAGTACGTGGAGCGGTACTACCTCGGGACGACGACGGACCTGGTCGGCAAGGCGCGTGAGGCGATCATCGCGCTGAAGATCGGGCGCAGCGAACCCAAGGAGCTCGTGCTCGAGCGGTATCTGAACACGATCTACTTCGGTCGCGGCGCCTACGGCGTCGAGGCCGCCGCCCAGGCTTATTTCGACACGAGCGCCGCGGACCTGACGATCTCCGAGTCGGCGATGCTGTCCGGCATCATCCCGTCGCCCGTCAGCTACGACCCGTCCGTGAACGAGGACGTGGCCAAGGCGCGCTGGGAGCGCAGCATCTCGCGGATGGCGGACCAGGGGTACATCACCCAGGCGGAGGCCTCGGACGCGACCTTCCCGGAGTACGTCCCCAAGGACGAGGGCGGCAACAGCCTCGGTGGCCAGAAGGGCTACATCATGGCGGCCGTCAAGAAGGAGCTGCTCGCCACCGGGGAGTTCACGCAGGAGGACCTCGAGTCCCGCGGCCTGCAGATCTACACGACGATCAAGCCGAAGCTGCAGCGCGAGGCCGCCAAGATCGTCAGGAACATGCCCGAGGACGCGAGTGACAAGTTGCGACCGTCGATCGTCTCGATCAACCCGGAGGACGGCGCGATCTGGACGCTGTACGGGGGCGCCGACTACGTGAAGCAGCCGACCAACACCGCGACGGACACCGTTGTTCAGGCAGGTTCCACGTTCAAGCCGTTCACCCTCATCGGGGCTTTGGAAGACGGGCACGAACTCAACGAGACGTTCGACGGCAACTCCCCGAAGATCTTCGAGGGGCTCGGCGAGAATGGCAGCGACTACACGGTCAATAACTTCGGTGGCGACAGTTCGGACTACGGACAGGTCGATCTGGTCGACGCCACTGCGCACTCCATCAACACCGCCTACGTCGAGCTGAACGTCACCAACGGCCCTGAGCGCACCGTCGACGTCGCCTACCGACTCGGTCTGAGGGATTCCGAGGAGGGTGCCGTGATACCCAGTGTGCCCTCCAATGTCCTGGGGGTGGGTTCCGTCTACCCCGTGGACATGGCGTCCGCCTACGCGACGATCGCGGCCGGCGGTTCCTACGTCACGCCGCACGTGGTGGAACGGGTCGAGCACATGGACGGCACTCAGCGTTACGCGCCGGATACGACCTCGGACAAGCGGTTCGATACCGAGGTCATCAACGCCGCGACCTACGCCATGACGCAGGTCGTGGAGGAAGGCTCCGGTGATGAGGCGCTCGCTCTCACAGGTCCCGACGGCACGCGCCGCCCAGTGGCCGGGAAGACCGGTACCGCCAACAACAACGAGACGGCGTGGTTCGCCGGGTTCACCCCGCAACTGGCTACCGTCGTCAATCTGCGCCAGTTCGCCCAGGTGGACGTCGAGGCCGGCGTGATGAAGGGCAAGGAGGGCATCGACGCATTCGGCGAATGGGGTGAGATCACCGGTTCGACCTGGCCCGCCCAGGCGTGGACCGAGTACATGCAGGTCGCCCTCGAGGGCAAGGACGTCGTGGAGTTCCCGGCCTACACGCCGCCGCGGCCGCAGCCCTCGCCCACCCCGACGCCGTCCGAGTCGACGCCCGAGTGGGTGGAGCTGCCCGGCAACCTCGTCGGCATGGACGTCGCCCAGGCGACGGCGCTGCTCGAGGGTCTGGGACTCAGCGTCTCCACCCAGGCCAAGGACGACGACGCCCCCAAGGGCACCGTCGTGGACGTCTACGACCCGGGCGGCAGCATCCCCGCCGGCTCGAACATCACCCTGTGGGTCTCCACCGGCCAGACGCAGGAGGAGGAGCGGGTCGCCGTGCCCAACGTCGCCGGCCAGACCGTCGGGTCGGCCCGCGCCCAGCTGCAACGGGTGGGGCTCGGCGCCGCCGAGTCGCAGGAGTACAGCAACGACGTCCCGGCCGGCCAGGTCATCCGCACGGATCCCGGTGCGGGTGCCGAGCTCGAGCCCGGTGCCACCGTGACGCTCGTCGTCTCGCAGGGGCCCGAGCAGACCCAGGAGCCGACGCCCACGCCGACGCAGACCGGCGGCGGGGACGGCGAGGACGACGGCGAGGACTCCACCGGCCCCGGCAACGGCGGGGGCAACGGCAACGGTGGTGACTGAMASTRRRRFWNYPRRGKGIVQRWLPSWRVVVGCALTCLALGAGVFFAAWSTTEIPDNLDEVDHQATTVYYSNGKEIGTYSSIKRELVQYEDLPGYVGNAVVASENATFWDDPGVDVRGLARAAWNNLTNSGSRQGGSTLTQQYVERYYLGTTTDLVGKAREAIIALKIGRSEPKELVLERYLNTIYFGRGAYGVEAAAQAYFDTSAADLTISESAMLSGIIPSPVSYDPSVNEDVAKARWERSISRMADQGYITQAEASDATFPEYVPKDEGGNSLGGQKGYIMAAVKKELLATGEFTQEDLESRGLQIYTTIKPKLQREAAKIVRNMPEDASDKLRPSIVSINPEDGAIWTLYGGADYVKQPTNTATDTVVQAGSTFKPFTLIGALEDGHELNETFDGNSPKIFEGLGENGSDYTVNNFGGDSSDYGQVDLVDATAHSINTAYVELNVTNGPERTVDVAYRLGLRDSEEGAVIPSVPSNVLGVGSVYPVDMASAYATIAAGGSYVTPHVVERVEHMDGTQRYAPDTTSDKRFDTEVINAATYAMTQVVEEGSGDEALALTGPDGTRRPVAGKTGTANNNETAWFAGFTPQLATVVNLRQFAQVDVEAGVMKGKEGIDAFGEWGEITGSTWPAQAWTEYMQVALEGKDVVEFPAYTPPRPQPSPTPTPSESTPEWVELPGNLVGMDVAQATALLEGLGLSVSTQAKDDDAPKGTVVDVYDPGGSIPAGSNITLWVSTGQTQEEERVAVPNVAGQTVGSARAQLQRVGLGAAESQEYSNDVPAGQVIRTDPGAGAELEPGATVTLVVSQGPEQTQEPTPTPTQTGGGDGEDDGEDSTGPGNGGGNGNGGDPGPT0023875_1666DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023875-mrcA-K05366NANA
AK018_02503291rpsF_1COG036030S ribosomal protein S6ATGCGTCAGTACGAACTGATGGTGATCCTGGACCCGGAGGTCGAGGAGCGCACCGTGGCCCCGACGCTGGAGAAGCTGCTCAAGGTCATCACGACCGACGGCGGCTCCGTCGAGAACACCGACATCTGGGGCCGTCGCCGCATGGCCTACGAGATCGACAAGCGTTCCGAGGGCATCTACGCCGTCGTCGACTTCACCTCGACGCCGGACACCGCCAAGGAGCTTGACCGCCAGCTCGGCCTCAACGAGGGCGTGCTGCGGACCAAGATCATGCGCAAGGACGCTGCCTGAMRQYELMVILDPEVEERTVAPTLEKLLKVITTDGGSVENTDIWGRRRMAYEIDKRSEGIYAVVDFTSTPDTAKELDRQLGLNEGVLRTKIMRKDAANANANANANA
AK018_02504531ssb_2COG0629Single-stranded DNA-binding proteinATGGCTGGTGAGACCGTCATCACGGTCGTCGGAAACCTGACCGCGGACCCGGAGCTGCGCTTCACCCCGTCGGGTGCAGCCGTCGCCAACTTCACGATCGCGTCCACGCCTCGCACGTTCGACCGGCAGTCGAACGAGTGGAAGGACGGAGAGGCGCTCTTCCTGCGCTGCTCCGTCTGGCGCGAGGCGGCGGAGAACATCGCCGAGTCGCTGACGAAGGGAATGCGCGTCATCGCGCAGGGCCGTCTTCAGCAGCGCTCGTTCGAGACCCGCGAGGGCGAGAAGCGCACCGTCGTCGAGCTGCAGGTCGACGAGATCGGCCCGTCGCTGAGGTGGGCCTCGGCGAAGGTCGCTCGCGCCCAGCGCAGCGGCGGCGGCGGTGGATTCGGTGGCGGCTACGGCGGCAACGCCGGTGGCCAGCCCGGTGGCGGCGGTGGATTCTCCTCCGGCGGCAATCAGCAGAGCGACCCCTGGGCCACGGCTGGCCCGGCGTCGTCCGGCGGCGGGTTCTCGGACGAACCCCCGTTCTGAMAGETVITVVGNLTADPELRFTPSGAAVANFTIASTPRTFDRQSNEWKDGEALFLRCSVWREAAENIAESLTKGMRVIAQGRLQQRSFETREGEKRTVVELQVDEIGPSLRWASAKVARAQRSGGGGGFGGGYGGNAGGQPGGGGGFSSGGNQQSDPWATAGPASSGGGFSDEPPFNANANANANA
AK018_02505237rpsR2COG023830S ribosomal protein S18 2ATGGCAAAGCCTGTGGTGCGGAAGCCCAAGAAGAAGGCCAACCCGCTCAAGACCGCGAAGGTCGAGACGGTCGACTACAAGGACACCGCCCTGCTGCGGAAGTTCATCTCCGACCGTGGCAAGATCCGCGCGCGTCGCGTCACCGGCGTGTCCGTGCAGGAGCAGCGCCAGATCGCCAAGGCCGTCAAGAACGCCCGCGAGATGGCCCTGCTGCCCTACTCGTCGTCGGCCCGCTGAMAKPVVRKPKKKANPLKTAKVETVDYKDTALLRKFISDRGKIRARRVTGVSVQEQRQIAKAVKNAREMALLPYSSSARNANANANANA
AK018_02506450rplI_1COG035950S ribosomal protein L9ATGGCAAAGCTGATCCTGACCCACGAGGTGACCGGTCTCGGTGAGCCCGGCGACGTCGTCGAGGTGAAGGACGGGTACGCCCGCAACTACCTCATCCCGCGTTCGCTGGCCACGCCGTGGACGAAGGGCGCCGAGTCGCAGGTCTCCGCGATCCGCAAGGCTCGCAAGTCCCGCGAGATCGCCTCCCGCGACGACGCCCAGGCCGCGGCCGAGTCGATCCAGTCGCGCACCTACACCGTCTCCGCGCACGCCGGCGAGTCCGGTCGTCTGTTCGGTGCGGTGACGACGGCGGACATCGCCGCGGCCGTCCAGGCCGCCGGTGGCCCGTCGGTTGACAAGCGCAAGATCGAGATCGGCCAGCCGATCAAGCAGACCGGTGAGCACACGGTCTCGGTCCGCCTGCACCCCGAGGTGTCGGCGAAGATCGAGCTCGACGTCGTCGCCGGCTGAMAKLILTHEVTGLGEPGDVVEVKDGYARNYLIPRSLATPWTKGAESQVSAIRKARKSREIASRDDAQAAAESIQSRTYTVSAHAGESGRLFGAVTTADIAAAVQAAGGPSVDKRKIEIGQPIKQTGEHTVSVRLHPEVSAKIELDVVAGNANANANANA
AK018_025071074hypothetical proteinATGCCGACGGTTGTCCACAGGCCGTCCGCACGGCCGGGCGGATTCTGGTGCCATGACTCCGTGCGTTCCCCCGAAACCCTGCCGCCGGCGGCCCTCTCGCTCGCCTGTCGGCAGGAACAGCTGATCGACAGTCAGCAGCTCCAGGCCTGCGGCGTGAACCGGTCGCGCATCAGCCGCAACGTCGGGTACGGCACCCTCCGGAGGGTCGGCCACGGGATCTACGACCTCATCGCCGTGCCGCCCGAACAGCGGACGATGGATCCCGATCCCGAACGGAACGACCTCCACCAGCACCGACGACGGCGTGGGGCCTGGCTCGGTCTTCTGCGCTACGGACCTCGAGCAGTGGCCGTCGGGCAGACGGCTCTCCTCCTCCACGGCGTCGAAGGGCTACCTGTCGAACCTCGCGTCGAGGTCAGCCGCCAGGACCGGCGGGGACGCACCTCCTTCGAGGGCGTGACACTGCGACGCTACGCGTCGTTCCGCCATGTCGCCGACGTCGGCGGCCGTCGCGTCGCGCCGATCCAGCTCGCCCTCGCACAGGCCGTGCCGACCCTGGAACGCCGGGAGGCGGTCGCCGTGCTCGACAGCGCACTGCACCGGAGGCTCGTCAACGCGATCACCCTGCAGGAGGCTCATGACCTGGCGCGTGGCCGGCGCGGCGTCGAACGCACCCACCCCTGGTGGGACCTCGCCGACGGACGCGCCGAATCACCCGCGGAGACCTGGGCCCGGCTGAGCTGTCTGGACGCGGGCGCACCACCCGACGCCCTGCAGCACATCTTCTACCGGCGCGACGGCAGTGTCGCCGCCCGCGTCGACCTCGCCTGGCACCTACCGGACGGCCACTGGTTCATCTGCGAGATCGACGGCCGCACGGCGCATGAGTCCCCGCAGGCTCTGCTGCGTGACAGGAGGCGGCAGAACGAGCTGGTCGCAGCCGGTCACAGGGTGGTGCGATTCACCGGCGCCGACGCCTACCGCGACCTCCCGGGTGCGGCGATCCGTGCACACCTGCAGCGCCTCGGCTGGGTGCCGGGCGGACGGATACCGCCGGTCTCCTGGCTCGACTGAMPTVVHRPSARPGGFWCHDSVRSPETLPPAALSLACRQEQLIDSQQLQACGVNRSRISRNVGYGTLRRVGHGIYDLIAVPPEQRTMDPDPERNDLHQHRRRRGAWLGLLRYGPRAVAVGQTALLLHGVEGLPVEPRVEVSRQDRRGRTSFEGVTLRRYASFRHVADVGGRRVAPIQLALAQAVPTLERREAVAVLDSALHRRLVNAITLQEAHDLARGRRGVERTHPWWDLADGRAESPAETWARLSCLDAGAPPDALQHIFYRRDGSVAARVDLAWHLPDGHWFICEIDGRTAHESPQALLRDRRRQNELVAAGHRVVRFTGADAYRDLPGAAIRAHLQRLGWVPGGRIPPVSWLDNANANANANA
AK018_025081323yeeO_1COG0534putative FMN/FAD exporter YeeOTTGAGTGAGGTTCGCCGCCTCGATCGCGAGATCCTCGCGCTCGCCTGGCCCGCCCTGGGCGCGCTGGTCGCCGAGCCGCTGTTCGTGCTCGTCGACAGTGCCGTCGTCGGGCACCTGGGCACGGCCCAGCTCGCCGGGCTCTCCCTCGCCTCCACGCTGCTGGTCACCCTCGTCGGGCTGTGCGTGTTCCTCGCCTACGCCACCACCGCGGCTGTCGCACGCCGCTTCGGCGCCGGGCACGACCGCGAGGCGCTGCAGTCCGGCGTCGACGGCATGTGGCTCGCGCTGCTCCTCGGCGCAGGGCTCGCCGCACTGCTGTGGCTCGCGGCGCCGTGGGCGGTCTCGGCCATGGGGGCGTCCGACGACGTCGCCGCGCACGCGACGACGTACCTGCGGTGGTCGGCACCCGGCCTGCCGGGGATGCTGCTGGTGCTGGCGGCCACGGGCGTGCTGCGCGGCCTGCAGGACACGCGCACGCCCCTGTGGGTCGCCTCGGGCGGTGCGGTGCTCAACGCGATCGGTTCGGTGACGTTGGTCTACGGCGTCGGCATGGGCATCGCAGGTTCGGCCCTGGCGACGACGACGGCGCAGCTGCTGATGGGTGCGGTGCTCGCGGCGGTCGTGGTCGTCGGTGCCCGCCGGCGGGACGCCTCCCTCCGCCCCCATCGGGCCGGCATCTGGGCGAACGCGGTCGCCGGGGCGCCGCTGTTCGTGCGGACCCTCTCGCTGCGCCTGGCGATCCTGCTGACGGTCTGGGTGGCGACCGGGCTCGGTGCCGTGGCACTCGGCGGCCACCAGGTCGTCAACAGCCTCTGGGGGTTGGCGGCGTTCGCGCTCGACGCCCTCGCGATCGCCGCCCAGGCACTCGTCGGGTACGGCCTCGGTACCGGGGACCGCGAGCGTGTCCGGGCCGTGCTGCGCCGCTGCCTGCAGTGGGGTGTCGCGGCCGGGGCGATCATCGGCGTCGTGCTCGCCGTGGCGGGATGGTGGATCGCGCCGCTGTTCTCCCCCGACCCGGACGTCCGGGTGGCCGTCGCCGTGGGCCTCGCGGTGTGCGGGCTGTGCATGCCGATGGCGGGCTGGGTGTTCGTGCTCGACGGAGTGCTGATCGGGGCCGGCGACGGGCGTTTCCTCGCGGCCGCCGGGATGCTGACGCTGGTCGTCTACGCGCCCGTCGCGCTGATGGTGCGTGCGTGGGCTCCGGAGGGGGCCGTCGGGCTGGCGTGGTTGTGGGCGGCGTTCGCGGGCGTCTTCATGCTCGCGCGCGCCGTGACGACCGGCTGGCGGGCGCGGGGCGAGCGCTGGATGGTCACGGGCGCCTGAMSEVRRLDREILALAWPALGALVAEPLFVLVDSAVVGHLGTAQLAGLSLASTLLVTLVGLCVFLAYATTAAVARRFGAGHDREALQSGVDGMWLALLLGAGLAALLWLAAPWAVSAMGASDDVAAHATTYLRWSAPGLPGMLLVLAATGVLRGLQDTRTPLWVASGGAVLNAIGSVTLVYGVGMGIAGSALATTTAQLLMGAVLAAVVVVGARRRDASLRPHRAGIWANAVAGAPLFVRTLSLRLAILLTVWVATGLGAVALGGHQVVNSLWGLAAFALDALAIAAQALVGYGLGTGDRERVRAVLRRCLQWGVAAGAIIGVVLAVAGWWIAPLFSPDPDVRVAVAVGLAVCGLCMPMAGWVFVLDGVLIGAGDGRFLAAAGMLTLVVYAPVALMVRAWAPEGAVGLAWLWAAFAGVFMLARAVTTGWRARGERWMVTGAPGPT0029115_10058DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029115-TC_MATE|norM|mdtK|dinF-K03327NANA
AK018_025093879hypothetical proteinATGTCGATCGAGGAGCTGGAGGCGGGCTACGGCGCGCCGTCGAGCGGAGCGTTCGACCGCACCCCGCCGCAGGACATCGACGCCGAGATGAGCGTGCTCGGCGGCATGCTGTTGTCCAAGGACGCCATCGCCGACGTCGTCGAGCAGATCCGCGGGAACGACTTCTACCGCCCCGCCCACGAGGCCGTGTACGAGGCGATCATCGACCTCTACGGCCGCGGCGAGCCCGCCGACGCCATCACCGTGGTCGCCGAGCTGACCAAGCGCGGCGAGATCGGTCGGATCGGCGGCGCCTCCTACATCCACGACCTCATGGCCGGCGTGCCCACGGCGGCCAACGCCGGGTACTACGCGCGCATCGTGCGTGAGCGTGCCGTGCTGCGGCGGCTCGTCGAGGCCGGCACCAAGATCGTCCAGCTCGGGTACGCCACCGACGGCGGCGACGTCGAGGCCGTCGTCAACAACGCCCAGGCCGAGATCTACGCCGTCACCGAGCGCAAGACCTCCGAGGACTACCTCCCGCTCGCCGACATCATCGGCGGGACGATGGACGAGATCGAGGCCGCCGGCAACCGTGGCGAGGGCATGGTGGGCGTGCCCACCGGGTTCGCGGACCTCGACCGGCTGACCAACGGGCTGCACCCCGGGCAGATGATCGTTGTCGCGGCGCGGCCGGCCATGGGCAAGGCGCTCGCCCTCGACACCCCCCTGCCGACCCCGACCGGGTGGACGACCATGGGCGACGTCGCTGTCGGCGACGACCTGATCGCCGCTGACGGGACACCGACCCGCGTGGTGCGCGCGACCGAGGTGATGACCGGTCGCCCCTGCTACGAGGTGGTGTTCGACGACGGCACGTCGATCGTCGCGGACGCGTGGCACGAGTGGGCGACGAGCACGCGCGCACAGCGGCGCAAGGTGCGTGTCGGCGAATCGCCGGCCACCTCGGTCAGTACGACCGAGCATCTGAGGTCCACACTTCGTTGCCAAACGGCAGACGGACGTGCAAATCACTCCGTCGTCACCACTGCACCGCTGCACCTGCCGGAAGCAGAACTTCCGGTCGACCCTTACGTGCTCGGAGTGTGGCTGGGAGACGGGCACGCGGGATCCGCCCGATTCACATCCGCGGACCCGGAGATCGCCATGCGTATCGAGGGTCTTGGATATGTGGTTGGTGAGCGCAGGAGTGCCGCCGGCGCCGCCAAGCTGTACCAGATTCAACTACCAAGTCTCCCGGTGGTCGGTGACCGCGACTGCGTAGTCTGTGGGCGGCAGTTCAGACCCCGGACATCGCAGGTGAAGACATGCGGTCGGTCCTGCGGGGGGCGAGCCAAGACCGTGTCGGAACCCTCCAGTGTTCCGACGTGTCCAGACTGTGGCAATAAGACCGCGGGATACAGGCGTTGCCGAGAGTGCAACCAGAAACGCGGTTCGGTGGCAGGAATTCTGCGTGCTCTGGGTGTCCTGGAGAACAAACACATCCCTGCGCAATACCTGCGAGCATCGGAGTCGCAGCGCCGTGCTCTCCTCGCTGGCCTCCTGGACACCGACGGAACCGTCAATCGGACAGGTAGCCCGCAGATCGCACTCACCGACCGGACCCTGGCGGACGGAGTGAGGGAGCTCATCCACAGCCTGGGATACAGGACCGGCTGGTGGGAGAAGCGCGTTGAGGGCCGCAGCCCACAGACATCGATCGCTTATACCATCACGTTCACGACGCAGGACGACGTCTTCGCTCTGGAGCGCAAGCGTATCCAGCACAAGGAGCGTCGACGTCGTCCGACGGCGAAGCTCACTTCGCGATTCATCACAGAGATCCGACCGGTGGAATCGGTCCCGGTCAGGTGTGTTGAGGTCGACCACCCCGACCATCTCTACCTCGCCGCACATTCCATGGTTCCGACACACAACTCGACGCTAGCCATCGACATCGCCCGGGCCGCGTCGATCAAGAACCAGAAGACCTCGGTCGTGTTCTCGCTTGAGATGAGCCGCAACGAGATCACCATGCGTCTGCTGTCGGCCGAGGCTCGCGTCCACCTGCAGAAACTGCGCAACGGATCCATGGCCGAGGACGACTGGCAGAAGATCGCCGGCGTGATGGGCAAGGTGTCCGAGGCGCCGCTCTTCATCGACGACTCGCCCAACATGTCGCTCACCGAGATCCGCGCCAAGTGCCGGCGGCTCAAGCAGCGACACGACCTGCAGCTCGTCGTCGTCGACTACCTGCAGCTCATGACCTCCGGCAAGAAGGTCGAGTCGCGGCAGCAGGAGGTCTCCGAGTTCTCTCGGGCGCTGAAGCTGCTCGCGAAGGAGATCGAGGTCCCGGTCATCGCGCTCTCGCAGCTGAATCGTGGACCGGAGACGCGTGGCGACAAGAAGCCGCAGATGTCAGATCTTCGCGAGTCGGGATGCCTGACCGAGGACACGAGGATCCTCCGCGCCGATACCGGTGCGGAGACGACGATGGGCGAACTGTTCGCCCTGAACGCCAGAGACGTCCCTGTGTGGGCTCTGAACGATCGGCTGCAGTACGTCCGGCGGCATCTCACCCACGTCTTCCCGACCGGCGTCAAGCCGGTGTATCGACTGCGGCTGGCGTCCGGTAAGGAGATCGAGGCGACGGCGAACCACCCGTTCCTCACCTACGAGGGTTGGACCCCGCTGGGCGAGCTCGAGGTCGGATCCCGCCTGGGTGTGCCGAGGCACGTCCCAGGCCCGGAACAGAAGACTGCGTGGGACGACCGCAAGGTGGTCATGCTGGCGCACCTGCTCGGTGACGGCTCGTTCGTCAAGCGGCAGCCCATCCGCTATGCCTCGATCGACGAGCGCAACCTGGACGCGGTCAGCGACGCGGCAACCGCGTTCGGCATCACGCCCGTGCGCGACGACTACGCGACCGCTCGCGTGACCACGCTCCGACTTCCGGCGCCGTACAGGTTGGCGCGCGGGAAGCGGAACCCGGTTGCGGCGTGGCTGGACGATCTGGGGCTGTTCGGCGCCCGAAGCCATGAGAAGTTCATCCCGTCGGGTGTGTTCCACCTGCCCAAGGAACAGATCGCGCTCTTCATCAAGCACATCTGGGCGACCGACGGGTCAGTGACGGTCAACAAGAACCGGCGAGGCGGACGGATCTACTACGCCTCGACGGCCCGAGAGCTCGTCGATGGGCTCTCGCGACTCCTGCTGCGCTTTGGCATCTCGACGAGGATTCGGCGCGCCACGCTGAAGGGTGCATACCGGCAGGGCTACACGCTCGACGTCTCGGGTGTGGACGACCAGCGACGGTTCCTCCAGGAGATCGGCGTCCACGGCGACCGCGGTGATACGGCCGCTGAGCTTCTCGGGATTATTCGCGAGACCCAGGCGAACACGAACCGGGACACCGTGCCGCGCCAAGTATGGGACGACGTCCGTGACCTGCTGGTCGAGCGCGGGATGTCCCACCGCCAGTTCGCCGAAGCGATCGGCACACAGTTCTGCGGCAGCGCACTCTGGAAGCACGCACCCTCGCGGCAGCGCCTCGGCAAGATCGCCGACGTCCTCGAGAGTGAAGAGCTCGAGATCATGGCGGTCAACGACCTGCTGTGGGACGAGGTCGTGTCGATCGAGTCGATGGGGGAGAAGCAGGTCTTCGACGCAACGGTGCTCGACACGCACAACTTCATCGCCAACGGCATCGCCGTCCACAACAGCATCGAGCAGGATGCAGACATGGTGATCCTGCTGCACCGCGAGGACGCCTATGAGAAGGAGTCCCCGCGCGCCGGCGAGGCCGACCTGATCGTCGCCAAGCACCGTAATGGTCCGACCGACACGATCACCGTGGCGTTCCAGGGGCATTACTCGCGATTCGTCGACATGCAGGTCTGAMSIEELEAGYGAPSSGAFDRTPPQDIDAEMSVLGGMLLSKDAIADVVEQIRGNDFYRPAHEAVYEAIIDLYGRGEPADAITVVAELTKRGEIGRIGGASYIHDLMAGVPTAANAGYYARIVRERAVLRRLVEAGTKIVQLGYATDGGDVEAVVNNAQAEIYAVTERKTSEDYLPLADIIGGTMDEIEAAGNRGEGMVGVPTGFADLDRLTNGLHPGQMIVVAARPAMGKALALDTPLPTPTGWTTMGDVAVGDDLIAADGTPTRVVRATEVMTGRPCYEVVFDDGTSIVADAWHEWATSTRAQRRKVRVGESPATSVSTTEHLRSTLRCQTADGRANHSVVTTAPLHLPEAELPVDPYVLGVWLGDGHAGSARFTSADPEIAMRIEGLGYVVGERRSAAGAAKLYQIQLPSLPVVGDRDCVVCGRQFRPRTSQVKTCGRSCGGRAKTVSEPSSVPTCPDCGNKTAGYRRCRECNQKRGSVAGILRALGVLENKHIPAQYLRASESQRRALLAGLLDTDGTVNRTGSPQIALTDRTLADGVRELIHSLGYRTGWWEKRVEGRSPQTSIAYTITFTTQDDVFALERKRIQHKERRRRPTAKLTSRFITEIRPVESVPVRCVEVDHPDHLYLAAHSMVPTHNSTLAIDIARAASIKNQKTSVVFSLEMSRNEITMRLLSAEARVHLQKLRNGSMAEDDWQKIAGVMGKVSEAPLFIDDSPNMSLTEIRAKCRRLKQRHDLQLVVVDYLQLMTSGKKVESRQQEVSEFSRALKLLAKEIEVPVIALSQLNRGPETRGDKKPQMSDLRESGCLTEDTRILRADTGAETTMGELFALNARDVPVWALNDRLQYVRRHLTHVFPTGVKPVYRLRLASGKEIEATANHPFLTYEGWTPLGELEVGSRLGVPRHVPGPEQKTAWDDRKVVMLAHLLGDGSFVKRQPIRYASIDERNLDAVSDAATAFGITPVRDDYATARVTTLRLPAPYRLARGKRNPVAAWLDDLGLFGARSHEKFIPSGVFHLPKEQIALFIKHIWATDGSVTVNKNRRGGRIYYASTARELVDGLSRLLLRFGISTRIRRATLKGAYRQGYTLDVSGVDDQRRFLQEIGVHGDRGDTAAELLGIIRETQANTNRDTVPRQVWDDVRDLLVERGMSHRQFAEAIGTQFCGSALWKHAPSRQRLGKIADVLESEELEIMAVNDLLWDEVVSIESMGEKQVFDATVLDTHNFIANGIAVHNSIEQDADMVILLHREDAYEKESPRAGEADLIVAKHRNGPTDTITVAFQGHYSRFVDMQVNANANANANA
AK018_02510321hypothetical proteinATGCGTATCGAGAACCTGGAACTCGCTCCGCTCGACGGCGCGCCAGGCATGGTCATGTCGTTGCTCGCCCCGGGCGTCGACCCGGAGCTCGTCCGTGTCGATGTCGTGGTCGTGCAACCTGGTGCGTCGCTCCCCAAGCACCCTGCGGGAAGCGATCAGGCGTTCTACGTGGTGAGCGGGTCCGGGCAAGTGGCCGGGGACGACGACGTCCCCACCGTCGTCGGGCCGGATGACCTGGTGTCCTGGGACGCTGGCGAACAGCACACCACCTGGGCGACGACGACCCTCACCGCGGTCATCGTGCAGCGCAGGGTCCCGTGAMRIENLELAPLDGAPGMVMSLLAPGVDPELVRVDVVVVQPGASLPKHPAGSDQAFYVVSGSGQVAGDDDVPTVVGPDDLVSWDAGEQHTTWATTTLTAVIVQRRVPNANANANANA
AK018_025111173COG0628Putative transport proteinATGGGTCTCTTCGGCCGCCGCGCACCACGCCGCGACCGCCAGCCGGTGGAGGCGAGCCGCGAGGTGACGCCCCCACAGGCCGCCGAGCCTCGGGGTGCCTCGAAGCTCTGGTCGGACGGCATGGGCAAGGTGGCGACGCGTTCGGTGCAGACCCTCGCGATCGTCGCGATCGTCGCTGTGGCAGTGTTCGTGGGCACGCGCCTGACGCTCGTGGTGATCCCGCTCCTGATCGCGCTGGTGCTGGCTGCGGCGATCTCTCCGCTGGTCTCGTGGCTGCGCGCCCGCGGGGTGCGCTCGCTCCTGGCGACGTGGCTCTCGCTCCTCGCGCTGATCGCGATCCTGGCGGCCGTGATGTGGCTGGTCGTGCTTGCCGTGGTCGACCAGTGGGACGAACTGCAGCAGCAGGCGTTGGACGGTTTCGACTCCCTGCAGACCTACGTCCAGGACCTGCCCTTCCAGATCTCGGAGGAGCAGATCAGCTCGGTGCGGGACTCCGCGCTGAACTTCCTGCAGTCCAGCGCGGTCGGGTCCGGGGCGATCCAGGGCGTGTCGCAGACCGCGGACTTCGTCGCGGGCTTCTTCATCATGGTCGTCGTGCTGTTCTTCTTCCTGAAGGACGGCCCGGCCATGTGGGAGTTCCTGCTGCGCCCGTTCGACGGCGAGGCGTACGAGCGCGGTCGGCGCGTCGGGTCGGCGACCATCCAGACGCTGGGCAACTACGTGCGCGGGACGGCGATCGTGGCGGCCGCGGACGCCGTCGGCATCGGCATCGGTCTCGCCATCGTGGGTGTCCCGCTGGCGCTCCCGCTGTCGGTCCTGGTCTTCCTGCTCGCCTTCATCCCTCTCGTCGGTGCCACCCTGGCGGGCATCCTCGCCGCACTCGTGGCGCTGGTCGCCGTCGGCCCGGTCGAGGCACTGATCGTCGTCGCCATCGTGGTCGGCGTGAACCAGCTCGAGGGCAACTTCCTGCAGCCGATCGTCATGGGCCGCACACTCCGGCTGCACCCCCTGGCGATCCTGTTCGCCCTGACGGCCGGCACCGTGCTCGTCGGCATCACCGGCGCGGTGCTGGCCGTGCCGATCGCGGCGTCGATCTGGCGGGCGATCCAGGTGTGGGACGGGCCGGACCTCCCGGCGAAGTTCGCCCGCCAGAAGCGGTCCGAGACCGTCTGAMGLFGRRAPRRDRQPVEASREVTPPQAAEPRGASKLWSDGMGKVATRSVQTLAIVAIVAVAVFVGTRLTLVVIPLLIALVLAAAISPLVSWLRARGVRSLLATWLSLLALIAILAAVMWLVVLAVVDQWDELQQQALDGFDSLQTYVQDLPFQISEEQISSVRDSALNFLQSSAVGSGAIQGVSQTADFVAGFFIMVVVLFFFLKDGPAMWEFLLRPFDGEAYERGRRVGSATIQTLGNYVRGTAIVAAADAVGIGIGLAIVGVPLALPLSVLVFLLAFIPLVGATLAGILAALVALVAVGPVEALIVVAIVVGVNQLEGNFLQPIVMGRTLRLHPLAILFALTAGTVLVGITGAVLAVPIAASIWRAIQVWDGPDLPAKFARQKRSETVNANANANANA
AK018_02512927pip_1COG0596Proline iminopeptidaseATGCGTGACGTCCCGCTGCACACCGGTCGCCTGCCCGTCGGCGACGGCAACGAGCTGTACTTCGAGGTGGCGGGCAACCGGCGCGGCCCGGCGGTGCTGTGGCTGTACGGCGGTCCTGGCGCCGGGGCGATGGCCGGGCACCGGCGTCGCGTCGATCTGCGGCGCCAGCAGGCGATCACCTTCGACCAGCGGGGTTGTGGACGGAGCCGGCCGCTGGCCCCGGACCGGCTCGACCTGCTGGACACCAACACGACGCCGGCGCAGATCGAGGACATCGAGGTGCTGCGCGCCCACCTGGGGATCGAGCGGTGGATGGTCACGGGTGCGTCCTGGGGGACGACGCTCGCGCTCGCGTACGCCCAGGCGCATCCGGAGCGGGTTTCCGCGTTGGGCCTGTTCGCGGTGACGACGACGTCGACGGCGGAGGTCGAGTGGATCACCGAGGCGATGGGTCGCGTGTTCCCCGAGGAGTGGCACGAGTTCGCCACCGCCGTCGAGCGGGCGCCGGGGGAGCGCCTGGTCGACGCCTACGCACGGGCGCTGCGCCACCCGGACGCCGGCGTCCGCCGCCGGGCCGCCGCGGCGTGGGGCAGGTGGGAGGACGTCCACGTCTCGCTCGGACCGGGCTGGGAGCCGGACCCACGGTGGCACACCTCGCCCACCCGCGACGTCCTGGCCACCCTCGTGACCCACTACTGGTCGCACTCGGGATTCGGCGGCGACCAGATCCTGGAACGGATGGACCGCCTCGCCGGCATCCCGGGCGTGCTGATCCACGGCCGCCGCGACATCTCCGGCCCCGCGATCACGGCGTGGGAGCTGCACCGGGCCTGGCCCGGCAGCGAGCTGCACATCGTCGACGAGGGGCACGGCGGCCCGGCGGCGTCCGCGCTGCTGACCAGGGCGATCGCCGACTCGCTCGGCTGAMRDVPLHTGRLPVGDGNELYFEVAGNRRGPAVLWLYGGPGAGAMAGHRRRVDLRRQQAITFDQRGCGRSRPLAPDRLDLLDTNTTPAQIEDIEVLRAHLGIERWMVTGASWGTTLALAYAQAHPERVSALGLFAVTTTSTAEVEWITEAMGRVFPEEWHEFATAVERAPGERLVDAYARALRHPDAGVRRRAAAAWGRWEDVHVSLGPGWEPDPRWHTSPTRDVLATLVTHYWSHSGFGGDQILERMDRLAGIPGVLIHGRRDISGPAITAWELHRAWPGSELHIVDEGHGGPAASALLTRAIADSLGNANANANANA
AK018_02513987hypothetical proteinGTGCGCCGATGGGTCGACCCGTTCGTGGTCGGCATCCTCCTCGCGCTGCTCGTCGGCATCGTGCTGCCCGTCCCGGACGGTGCGCGCGGCGTGCTCGACGTCGTCACCGACGTCGCCATCGCGCTGCTGTTCCTGCTGTACGGGGCGCGGCTGCCGACCCGGGAGATCTGGCGCTCGCTGACGAACTGGCGCCTCCAGGGGTCCCTGCTCGCCGCGACGTTCGTCGCGTTCCCGCTCGTCGGGCTCGCGATCTCCGCCGCCGTCGGGCCGCTCGTCGGGCAGGGGATCGCCGTCGGGCTGCTCTGCGTCTCGCTCCTGCCGTCCACCGTGAACTCCGCCGTCGCGTTCACGTCCGTGGCCCGCGGCGACGTCGCGGGGGCGATCTGCGGCGCGACCGTGTCGAACGTCGTCGGCATGGTCGCCACTCCCCTGCTGGTGCTCGGGCTCATGAGCGGGGCGGCCGCCGGCGACGGCGCGATCGGTGCGGACGGCCTGCAGACCGTGCTCCTGCAGCTCCTCGCACCGCTGGTGGTCGGCCAGCTCCTGCAGCCCTGGGTGGGCGGGCTGGTGCGACGGCACAAGGGCCTCACCACGGCCGTGGACCGCGGCACGATCCTGCTCATCGTGTTCACGGCGATCAGCGGTGCCACCGCCGAGGGCATCTGGGCGGACATGACCGTGGGGGTCGTGCTCGTGCTCGTCGGATCCGCCGGCGTGCTGCTGGCCGTCATGCTCGCCGCCACCTGGTGGGGCGGCCGCGCCCTCGGACTGCCCCGCGACCAGCGGGTCACCCTGCTGCTCGTCGGAGGGATGAAGTCGCTGGCCACCGGCCTGCCGATGGCCTCGGCGCTGCTGCCCGCCGCGACGCTCGCCGTCGTCGTCGTGCCGCTCGTCGTCTTCCACCAGCTCCAGCTCGTGGTGTGCTCCGTGCTGGCCCGACGGCTCGGGCAGGAGCCGGTCGGGGTCTCGCCGGACCCGGGGGCCTGAMRRWVDPFVVGILLALLVGIVLPVPDGARGVLDVVTDVAIALLFLLYGARLPTREIWRSLTNWRLQGSLLAATFVAFPLVGLAISAAVGPLVGQGIAVGLLCVSLLPSTVNSAVAFTSVARGDVAGAICGATVSNVVGMVATPLLVLGLMSGAAAGDGAIGADGLQTVLLQLLAPLVVGQLLQPWVGGLVRRHKGLTTAVDRGTILLIVFTAISGATAEGIWADMTVGVVLVLVGSAGVLLAVMLAATWWGGRALGLPRDQRVTLLLVGGMKSLATGLPMASALLPAATLAVVVVPLVVFHQLQLVVCSVLARRLGQEPVGVSPDPGANANANANANA
AK018_025141653treS_1COG0366Trehalose synthase/amylase TreSATGACAGCGGTCGAGGCGGGACGACGCGGCGGCGATCCGACCGGTGGCACGCCCGGATGGCTCGCCGACGCCGTCGTCTACGAGATCTACCCGCAGTCGTTCGCGGACTCGGACGGCGACGGCATCGGCGACCTGCGCGGCGTCGTCGAGCACCTCGACCACCTGGAGTGGCTCGGGGTGGACGTCATCTGGTTCAACCCGTGCTTCGCCTCACCGTTCCGGGACGCCGGCTACGACGTCGTCGACTACCTGCGGATCGCGCCGCGGTACGGGACGAACGCGGACATGGTCGAGCTCGTCGAGGAGGCCCGACGCCGTGGCATCCGGGTGTTGCTCGACCTCGTGGCCGGGCACACCTCGATCGACCACCCGTGGTTCGCGGCGGCGCTGGCCGACCCGGGCGACGACCGGTACATCTGGGCCGACCGCGCCGGACCGGCGCTCGTCCCGTCGCCCGGCCCCCGCGAGGGCTGGTACCTGAAGAACTTCTTCGACTCCCAGCCGGCGCTGAACTTCGGCTACGCCCGGCCGCACCCGGACGAACCCTGGCGGCAGGCCCCTGACGCCCCCGGGCCGACGCGCAACCGCGAGGCGCTGCAGGAGATCATCGGGTACTGGCTGGACCGCGGGGTGGCCGGGTTCCGCGTCGACATGGCGTTCTCGCTGGTCAAGGACGATCCGGGCCTCGCGGCGACGACGGCGTTCTGGCGGGGGATCGCCGACTGGATGCGCGCGCGGTACCCGGACGCCGTGCTCATGCCGGAGGCCGACGAGGACAACACCGCCGACGCCGGTCTGCGCGGCGGCTTCGACGCGGACTTCGCGCTCGTCATCCAGCGCGAGCACAGCGCGCTGTTCAACAACGGCGCCACCGGGCACCTCACCTGGCAGGACCCGGAGACGATGGCCCCCTGCTACTTCGACCCCGACGTCGACGAGGCGGCGGGCACCCGCGCGCTGGAGACCTTCCTGGCCGAGTGGGGCGAGCGGGAGCGCCAGGCCGGTGCGGACCGGCTCGTGGTGCTGCCGACGGCGGACCACGACTTCTCCCGGCTCGCCGCGGGGCCGCGCACGGGTGACCAGCTGCGCCCGGCCTTCACGTTCCTGCTGACCTGGGGGTCGTTGCCGTCGATCTACTACGGCGACGAGATCGGGATGCGCAACCTGCCCGAGGCGCCGGAGACCGAGGGGAGCCGCTGGAACCCGGGGTACGACCGGGCGGGTTGCCGCACCCCGATGCAGTGGGACGACGCCCTGCCGAACAGCGGGTTCTCCTCGGCGCCGGCCGAGCGCTTGTACCTGCCGCAGGACCCGGACCCGGCCCGTCCCACGGTGGCGGCACAGCGTGGCGACCCGGGGACGCTGCTGCACCACGTCCGCGACCTGGTGGACCTCCGTCGTCGCACCCCGGCCCTCCGCCCGCGAGCGGGGCGGCGGGTGCTGCACGCCGGGTACCCGTTCGTCTACCTCCGGGGCGAGGAGCATCTCGTCGTCGTCAACCCGCGGCGCCAGGCTGCCCGGGCCACGGTCCCGGAACTTGCCGGAGCCGCCGCGACGACGCTCCTCGGTGACGGCGTCGAGGTCGACGACGGCGTGGTGCAGGCTGCGGGGGGAGCTCACGCGGTGCTCGCCCTGACGCGACGCGTAGGCTGAMTAVEAGRRGGDPTGGTPGWLADAVVYEIYPQSFADSDGDGIGDLRGVVEHLDHLEWLGVDVIWFNPCFASPFRDAGYDVVDYLRIAPRYGTNADMVELVEEARRRGIRVLLDLVAGHTSIDHPWFAAALADPGDDRYIWADRAGPALVPSPGPREGWYLKNFFDSQPALNFGYARPHPDEPWRQAPDAPGPTRNREALQEIIGYWLDRGVAGFRVDMAFSLVKDDPGLAATTAFWRGIADWMRARYPDAVLMPEADEDNTADAGLRGGFDADFALVIQREHSALFNNGATGHLTWQDPETMAPCYFDPDVDEAAGTRALETFLAEWGERERQAGADRLVVLPTADHDFSRLAAGPRTGDQLRPAFTFLLTWGSLPSIYYGDEIGMRNLPEAPETEGSRWNPGYDRAGCRTPMQWDDALPNSGFSSAPAERLYLPQDPDPARPTVAAQRGDPGTLLHHVRDLVDLRRRTPALRPRAGRRVLHAGYPFVYLRGEEHLVVVNPRRQAARATVPELAGAAATTLLGDGVEVDDGVVQAAGGAHAVLALTRRVGPGPT0018560_3294DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_025151395hypothetical proteinATGAACCAGCACATCGGGGTCGCGATCTCCGGCGGTGGCCACCGTGCGACGGTCTGGAGCCTGGGCACGCTGCTCTACCTGGTCGACAGCGGGAAGAACCGTGAGGTGTCCGCGATCTCCTCGGTGTCCGGGGGCTCGATCACCAACGCCGTCGTGGCGCAGGAGACCGACTACACGACCACGGACCCGGCCGACTTCGACCGGAGCATCCGACCGCTGGTGAAGCACGTCGCCGGTATCGGACTGTTCTTCTGGGGTCCGCCCACCAACGGCTACCTGCTGTCGGTGTTCGTCGGATTCGGCGTCGCCCTGGGCACCCTGGTGGCCGGTGCCGTCTTCGCGTTCCTCGACGGCATGTCGTGGCGCTCCGGTCTGACGCTGCTGATCGGGAGCGTGCTGACGGGGCTCATGGCGCGCTGGTTCGAGCACCGTTCGCACGTCCTCGACCGCGCTCTGGCCCGGACCCACTTCCACCGGGACGGGAGGCCCACGCGGCTGGAGGACGTCGGCCGGTCCCTCGACCACGTGGTGTGCGCGACCGAGCTGCAGTCCGCGGAGCACCTCTACCTCACGCCCCGTTTCCTCTACTCCTACCGGCTGGGGACGGGGTCGCCGAACGGGATGCGGCTGTCCACGGCCGTCCAGGCGTCGCTGAGCATGCCCGGCGCCTTCACGCCGCGGCGGCTGAAGACCGCGCCGTACGGGTTCCACGGCGGCACGCAGGACGGCGGTGTCGCCGAGGACTTCCTGCTCACCGACGGCGGCGTGTACGACAACCTGGCCGACCAGTGGCCCGACGGTCTCGCGGCCCGCCTGGAGCGCGTGCCGGACCTGCCCGTCGTGGGACGCACCATCGACGAGCTCGTCGTCGTCAACGCCACCACCGCCCTGCACTGGAGGCGGCTGCGGTACGCCCGCCGGTTCCTCGTGGGTGAGCTGTTCACCCTGCTGCGGTCCAGCAGCGTCATGTACCAGGTGCCCACCGAGCGGCGTCAGCGCGGGCTGGTGCACAACTGGGTGGAGTGCGAGCGCACCGGGCGGGGGCAGCGGGGCGCGATCGTGCAGATCCAGCAGTCGCCGTACCGGATCGCCGACGCGTTCCTCCGCAAGGACGACGAGGACCGCGCCTCCCGTGCCCGCGCCGTGCTCGACCTGCTGGGCGACGACGACGAGGACCGCGAGGCGTGGCGGGCCCGGGCGGAGTCTGACGCGGCCGTCCCCACGGTGCTGCGTCGGCTCGGCCGGACGGCCACCGTCGACCTGCTCGAGCACGCCTACGTGCTCGCCATGTGCAACCTGCACGTCCTGCACGGGTACCCGCTGCTCGAGCTGCCGGGGCGCGAGCGGTTCGAGCGTCTCCTGGACGACGCAGAGGGCTCGACCGGCGTCGTGTGAMNQHIGVAISGGGHRATVWSLGTLLYLVDSGKNREVSAISSVSGGSITNAVVAQETDYTTTDPADFDRSIRPLVKHVAGIGLFFWGPPTNGYLLSVFVGFGVALGTLVAGAVFAFLDGMSWRSGLTLLIGSVLTGLMARWFEHRSHVLDRALARTHFHRDGRPTRLEDVGRSLDHVVCATELQSAEHLYLTPRFLYSYRLGTGSPNGMRLSTAVQASLSMPGAFTPRRLKTAPYGFHGGTQDGGVAEDFLLTDGGVYDNLADQWPDGLAARLERVPDLPVVGRTIDELVVVNATTALHWRRLRYARRFLVGELFTLLRSSSVMYQVPTERRQRGLVHNWVECERTGRGQRGAIVQIQQSPYRIADAFLRKDDEDRASRARAVLDLLGDDDEDREAWRARAESDAAVPTVLRRLGRTATVDLLEHAYVLAMCNLHVLHGYPLLELPGRERFERLLDDAEGSTGVVNANANANANA
AK018_02516201hypothetical proteinATGGTCGCGCAGGACCAGGTCCAGCTCATCGCGTACGCGGACCGCCTCGGTGGTGACCTGCGCGGGCTCGCCGACTTCCTGTGTCGTGACGAGGCCTCCGGCGGGGCGTCGCTGGCCCGGTCCCTCGCGGCGGGTACCGAGGCCACGGTCGACCTCGGCACCTTCGTCCCGCACGACCTCGGCGTCGTCGGCACGCCATGAMVAQDQVQLIAYADRLGGDLRGLADFLCRDEASGGASLARSLAAGTEATVDLGTFVPHDLGVVGTPNANANANANA
AK018_02517816hypothetical proteinGTGCTGGTCCGGTACCCGACGGTCTGTCAGGGTCGTCACGTGACCGAGACGTTCGACGACCTGCTCGACGCCGGGTCCCGCGCCGACGTGTCCGGGTGGGACTTCGCCTGGCTGGAGGGCCGCGCGACCGAGGAACGCCCGCCGTGGGGCTATGCCCGGCTGCTGGCCGACCGACTGGCCACGGCGACGGCCTCGTTGGACGTCCAGACCGGCGGCGGCGAGGTGCTCGCCGAGGCACCGGTCTTCCCGCCGACGGCGGTGGCCACCGAGTCGTGGCCGCCGAACGTGGCGCACGCGACCCGGCTGCTCCACCCCCGCGGCGTGGTGGTGGTCGCCGACCCGGACGAGCCGCCCCTGCCGTTCGGCGACGCGGCGTTCGACCTGCTCACGAGCCGGCACCCGGCGACGATCTGGTGGGATGAGATCGCCAGGGTCCTGCGCCCCGGTGGCACCTACCTCGCCCAGCACGTCGGGCCCGCCAGCGCCTTCGAGCTCGTCGAGTTCTTCCTGGGTCCGCAGCCGGGGGCGCGGCGTGGGCGCCACCCCGACGACGAGGTGGCTGCGGCGGAGGCCGCCGGTCTGGAGGTGGTGGATCTGCGCACGGCGCGGCTGCGTATCGAGATCGACGACGTGGCCGCGGTGGTGTACCTGTTGCGCAAGGTGATCTGGTGGGTGCCGGGCTTCACGGTGGACGCCTACCGCGACCGGTTGCGGGACCTGCACGACCTGATCGCGGCCGAGGGGCCGTTCGTCGCGCACTCGACGCGTCACCTGATCGAGGCGCGCCGCGGCCCGCGGGCTCACCACCCGGGGTAGMLVRYPTVCQGRHVTETFDDLLDAGSRADVSGWDFAWLEGRATEERPPWGYARLLADRLATATASLDVQTGGGEVLAEAPVFPPTAVATESWPPNVAHATRLLHPRGVVVVADPDEPPLPFGDAAFDLLTSRHPATIWWDEIARVLRPGGTYLAQHVGPASAFELVEFFLGPQPGARRGRHPDDEVAAAEAAGLEVVDLRTARLRIEIDDVAAVVYLLRKVIWWVPGFTVDAYRDRLRDLHDLIAAEGPFVAHSTRHLIEARRGPRAHHPGNANANANANA
AK018_025181800hypothetical proteinATGAGGCTGACCGTGCACCGGCTGGGCGCCGACCGCGTCCTGGTGTGCCGCAACGACGGGCGACGCTGGGTGCTCGACGTCGGCACGGACGACCTCGAGGGCGAAGCGGCGCGCTCCGCGATGGACAGCCTGGCCGCCGTCGCCGACGGCGAGCCGGTCACCGGGCCGCCGCCGGGTCCCGACGTCGCGGCGGCGAGCCTGCGCGGCCTGGCACAGGTCGCGGTCGCGCTGGACCGCGAGGGGTCCGACCGCGAAGGTTCGGACCGTGTGGTGCGCTGGCCCTTCGCCGGGTCCACCTACCGGGTCCGGCTGCGCGCCGGCCGGGCCGTCGAGCTGGCGGATACCGTCTCGGCGCTGCTGAGGGCCACGGTCGCCGACCCGGAGCAGGCCCGTGCGCTCGTCGAGGACCCGGTGGCGATCGTGGCCGGCGCAACCTCGTCCGTCGTTCCGAGTCCGGACCGAACCGATCCCGGCCCTGCCACCGGCTTCCTGGAACGGTGGACCGACGGCGCGTGGCATCCGCACGCCGTCGACCCGCCCGCCGTCGTCGACCCGGTCACCGGGCTCCTGCACCGCGTGGTGCGCCGCCCCGCCGACCCGCGTGCACCGGGTCCGTTCGTCCACCGGCACGCCGAGCTGCCGTACCTCGCGAGCGTCGACCCGCGATGGCAGCCCGACCTGCTCGCACCCGCCGGCTCGCTCGGCGACGACGCCGGCCGGGCCGCCGTGCTCTCCGGTCTGGCACACCTGTGCGGCGCCCACCTCGGCCAGGGTGAGCTGCGCCGCGCCTCCGCCGCCGACCTGACCGCCGCCGGGCAGAAGGCGCTGACCCTCGCCGAGTGGCGCCCGCACGACCCCGCCCTCGACGACCTGGCAGGTTTCCCCTTCACCCGCCCCGGACCCGACGACACCCTGTGGTGGCTGCGCGGGACGGAACACCTCGACGGCGGGACGGCGGCATGCTGGGTGCCGTTCAGCCTGGTGCACGCGGGCTACCTCGCCGCCGGCCTCGACGGACAGGCGCCCACCAACGGGCACAACCTCGTCGGACTCGAGGCGGGCCACGACCGGGTCGAAGCGCTCGACCGGGCCGCCGGACGCCTGCTGGCCCAGGACGCCGTCGCCCGGTGGTGGCACGACGCCACGGATCCGCTCCCGGCCGTCGACCCCCCGCCGGGCCTCCGTGGCGACGACGCCGCCGTCACCGTCCGCGTCCTGGCCGTGCCGTCCCCGCACGGGGTGCCGGTCCGGCTCGCGGTGGCCGACGACGCCGGCGACGACGTCGTCGCGCTCGGCCACGGGTGCGCCGCCGACCCCGCCCACGCCGCCGAGCAGGCGGTGTGCGAGGCACTGATCCAGCACGCCTCGGCACGCGACCTGGCCCGCCCCGACAGCCTCATCCGGCGAGCACCCGAGCTCGGCAACGGCGGGGTCGCCGGACTCGCCCCGTACGACCCCCACCGACGCTACGACGCGGCGTTCGCCGACCGGCGGCGCCTGATCGACCCGATGTGCCACGTCCAGCACGGACTCGACCCGGCCGTGGTGGACCACGTGCGACGCCGTACCGCCGGCAGCGGCACGGCGAGCGCCGGCCGGCCCGACCCGGACGCCGACACGCCGTTCACGGGACTGCTGACCACGGCCGACCGGGTCGTCACCGTCGACGTGGCCACCCCCCGCGTCCGGGCCGCCGGATACAGCGCGTACCGGATCCTCGCCACCGGCCTGCGGCGCCTGAACGTCGCGGCCTTCCCGCAGCACCTCGGCGAGGAACGGACGCCCTACCCCGGGTGGTGAMRLTVHRLGADRVLVCRNDGRRWVLDVGTDDLEGEAARSAMDSLAAVADGEPVTGPPPGPDVAAASLRGLAQVAVALDREGSDREGSDRVVRWPFAGSTYRVRLRAGRAVELADTVSALLRATVADPEQARALVEDPVAIVAGATSSVVPSPDRTDPGPATGFLERWTDGAWHPHAVDPPAVVDPVTGLLHRVVRRPADPRAPGPFVHRHAELPYLASVDPRWQPDLLAPAGSLGDDAGRAAVLSGLAHLCGAHLGQGELRRASAADLTAAGQKALTLAEWRPHDPALDDLAGFPFTRPGPDDTLWWLRGTEHLDGGTAACWVPFSLVHAGYLAAGLDGQAPTNGHNLVGLEAGHDRVEALDRAAGRLLAQDAVARWWHDATDPLPAVDPPPGLRGDDAAVTVRVLAVPSPHGVPVRLAVADDAGDDVVALGHGCAADPAHAAEQAVCEALIQHASARDLARPDSLIRRAPELGNGGVAGLAPYDPHRRYDAAFADRRRLIDPMCHVQHGLDPAVVDHVRRRTAGSGTASAGRPDPDADTPFTGLLTTADRVVTVDVATPRVRAAGYSAYRILATGLRRLNVAAFPQHLGEERTPYPGWNANANANANA
AK018_025192247hypothetical proteinGTGCCGACCCCCTCGCTCACCCTCACGCCCCGCGTGGAGGTCCGTCCCCTCGCGGCGGGCCGCAGCCTCGTCACCACCCCGGTCGGTACGTCGTTCGTCCTCGACGTGCCCGCCGAGCGGGTGCTGCAGATCCTCGACGCCTGGACCACCGGCCAGGCGAGCCCGGCCCTGCCCGACGGGTGGGACGAGGCCTCCGCCGTGCTGCGCGACGTCCTGGACCGTGACGGCGCGTTCGTCCCGGCCGCACCGTCCGGCCCCGACCTCGGCGAGGACGCGCCGTCGTACGACGACGTCGACACCGCCGCGGCACGACCCGGCGACCTGCTCCTCACCGGCGACCCCGAGGTCGTGGCCGCGCTGCAGACGCTCGCCCGGACCACGCGCCCCGACGTCGCCGTCCGTGCCGTGCCCGCCGACGACTGGCAGCGCGTGGTCCACCGCGCCTTCCGGACGCGCGAGCTGCTCGTGTACGCCGTGCGGGGCGGCGACGACGCGACGCTCGTCGCCCTGGACCGGCTCTGCGCCGACGCCCGCACCCCGTGGGTGGCGCTCGAGGTGAGCCGCTCCGTCGTGTGGCTGGGCCCGTTCGTCACCCCCGGCGTCGGCGCGAGCTACGAGGACCTGGCCGACCGGCGCACCGCCGCCGCGTTCGACACCGAGGCGCACCGGGCGCTGCGCTCCCCCGCCGTCGGCGGGGACTCCGGCGCGCCGCCGCGGCACCTCGCCGACGCGCTGCGCCGCGCGCTCGACCTGCTCTCCGGCGCGGAGTCCGCCGACGCGGACGCGGAGCGCCCCGGGGACCTCGTGTGGGAGATCGCCACCGACGGCGCCGCACACACCCACCCGGTGCTGCCGCTGCCCACGCGGATCCTCAGCGGTTCGCGGCACCACACCCCCGACGACCTCGTCGACCCGCTGACCGGGCTGGTGCAGCGCACCCGCGACGTCACCCACCACCCGAGCATCCCGCCCGCCCTCGCGACCGCGCAGAGCGACGTGTGCAACATGCGGCGCGTGTCGCGGTGGGCCAACAACACCTCCTGTCAGGGCGCGGCGTTCGGCGACCCGGCCCAGGCCCGCGCCAGCGCCGTCGGCGAGGCCGCCGAACGCTACTGCGGGAACCTGCTCGACACCCTGCCGGTGACCGTCGGGAGCTTCGCGGACCTGCGTCGCCGGGGCACCCGCGTGCTGGACCCCGCCGAGCTGGTGCTCTACTCCGAGCAGCAGTACGACACCCCCGGCTTCCCGTTCGTGCGGATGACGCCCGACCTGGAGATGCACTGGGTGCCGGGCCGGTCGCTCACCACCGGCGAGGAGCTGCTCGTGCCCGCCAGCATGGTGTACGTCAACTGGTTCACGGCCGGGTACTCGGCCGCCCCGGTGACGAACTTCTGCCCGTTCGCCGGGATCGCCGCCGGCCCCACGCTCGACTACGCCGTCACCTCCGCGCTGGAGGAGATCATCGAACGGCACGTGACCATGGTGTGGTGGCTCAACGCCCACCCGTTCGACGCCACCGACCCCGGCGACCTGGCCCGCGTGTGGGACGACGTCCCGGCCGAGCACGGCCAGCGTCCGAGCCTGATCATGCTGGACAACGAGTTCGGCGTGCCGGTCGCGGCGGGGGTGCTGCACAACGACGTCGACACGCTGGTCAACGTCGGCTTCGCCTGCCGCGACACCCCCGAGGCGGCCGCGGCCAAGGCCTGGACCGAGGCCTGCACCCTGCAGGAAGGCAGCCGCGACCTGCTGCGTGCGGACGGCGCGCACTGGGACGCGATGCAGCGCGGCGAGCTCAACAGCCGATCGTTCAAGCCGTGGCGGGCCGACCGCCGCTACCTCGACTCCTACCGCGCGGACATGCGCGACTGCGACGACCTGATGGTCCAGCAGCAGGTGCACCTGGACCCGCGTGCCGTGGCCCGCGTGGCACCCCTGCTGGACCGGCCCGTCACCCGCACCCTCGCCGACACGCCCGCCCTGGCCGAGCGGACCCCGGACGCTTACCGGGCGGCGCTGGAGGCCGCCGGGCACGAGGTGATCGTCGTCGACATCACCTCCCCGGACGTCGCCTCCACCGGGATGCGCGTCGTGCGGGCCGTCGTGCCCGGCACCGTCGGCAACGCCCCGGCCGCCTTCCCGTTCCTGGGCCGACGGCGTGTGCAGGACCTGGCGGTCGAGCTGGGCTGGCGTACGACGGCGCTGCCCGAGGACGGCCTCAACCACTTCCCGATCCCGCACGCATGAMPTPSLTLTPRVEVRPLAAGRSLVTTPVGTSFVLDVPAERVLQILDAWTTGQASPALPDGWDEASAVLRDVLDRDGAFVPAAPSGPDLGEDAPSYDDVDTAAARPGDLLLTGDPEVVAALQTLARTTRPDVAVRAVPADDWQRVVHRAFRTRELLVYAVRGGDDATLVALDRLCADARTPWVALEVSRSVVWLGPFVTPGVGASYEDLADRRTAAAFDTEAHRALRSPAVGGDSGAPPRHLADALRRALDLLSGAESADADAERPGDLVWEIATDGAAHTHPVLPLPTRILSGSRHHTPDDLVDPLTGLVQRTRDVTHHPSIPPALATAQSDVCNMRRVSRWANNTSCQGAAFGDPAQARASAVGEAAERYCGNLLDTLPVTVGSFADLRRRGTRVLDPAELVLYSEQQYDTPGFPFVRMTPDLEMHWVPGRSLTTGEELLVPASMVYVNWFTAGYSAAPVTNFCPFAGIAAGPTLDYAVTSALEEIIERHVTMVWWLNAHPFDATDPGDLARVWDDVPAEHGQRPSLIMLDNEFGVPVAAGVLHNDVDTLVNVGFACRDTPEAAAAKAWTEACTLQEGSRDLLRADGAHWDAMQRGELNSRSFKPWRADRRYLDSYRADMRDCDDLMVQQQVHLDPRAVARVAPLLDRPVTRTLADTPALAERTPDAYRAALEAAGHEVIVVDITSPDVASTGMRVVRAVVPGTVGNAPAAFPFLGRRRVQDLAVELGWRTTALPEDGLNHFPIPHANANANANANA
AK018_02520111hypothetical proteinATGACGACGATCACCCTCGTCGAGGTGGCGACGGAGCGGTCCGAGGACCAGATCCTGGCCCCCAACGCGAACAACCACGGTCACGTCTCGACCGCTTTCGCCTGGTCCTGAMTTITLVEVATERSEDQILAPNANNHGHVSTAFAWSNANANANANA
AK018_025211878yheHCOG1132putative multidrug resistance ABC transporter ATP-binding/permease protein YheHATGAGCGCCACCACACCCACCAGCAGCCTGCTGCGACCCGTCCTGCGCCTGCTCGACGAGGTGCGCGAGGAACGCTCGCTGTTCTGGCGCTCCACGGCCGCCATGACCGGCTACCAGCTCGCCACCGCGGCCGCCGCCGGGATCAGCACGGCCGTCGCCGCTCTCGTGACGTCGTCGGACACCTCGCTCGTGACCGTCCTGCTGCTGGCCCTCGGCGCCGCCGTGGTCGCCGTCGCCGCGTTCACCTGGATCGAGTCGTGGCTCAGCCACGTGCTCGCCTACCGGGTCATCGACGCGCTGCGGGTCCGTGTCTACGACGCGGTCGAACGGATCGTCCCGGCCCGGTCCGGACGACGCCGTGCCGGCGAGGTGGCCGGCACGGCCATGAACGACGTCGAGATCCTCGAGTGGTTCTACGCCCACACCCTCGGTGCCGGCGTCAACGCCGTGCTGTCCCCCCTGCTCGTCTCGGTCGCGCTCGTGGCCATGGTCGGGCCGCGCGGCCTGATCGTCACCGCCGGCGTGGCACTGCTGCTGGCCGTGCCGTGGCTGTTCGCCGGCCTGCAGCAACGCCAGGGGACGGCGATCCGGCGCGAGCTCGGCACCCTGCAGGCCGTCGCCCTCGAGGGGTCCCAGGCGCGCCGCGAGCTCGCCGCGCTCGACCTCACCGCTCACCACCGCGCCCAGGTGCTCACCGGCACCGACGCCGTCCAGTCCGCCAAGCGGCGGTTCGCGCTGCGGGCCGCCGGGGAGTCGGCGCTCGCCGACCTGGTCGTGGCCGCCACCAGCCTGCTGTTCCTCGCGTCGCTGGTGCAGGGGGCACTGGCCGGGGCCGTGGATCCCGTCCTCATCCCGCCGGCGACGGTCCTGGTGGCCGCCGCGGTGACCCCGGCGGCTGGTGCCTTCGCGATGGTCCAGCGGCTCGGCGAGATGTCGGCGGCCGCCCGGCGCGTCCTCGACCTCGTCGACTCCGGCGACCAGTCCGACCGGGCCGAGCAGGCCGGGCACGCGGAGCACGCGAGCGGATCGGGGCCCGGTGCCCCGCGGGCCGGCACCGATGCGCCCGGCCCCGTGCCGCCGTCGTCCCGCGGCCACCTGCTCCTCGACGGCGTGACCTTCGCCTACGACGACGGTCCCCGCGTGCTCGACGGGCTCGACCTCGAGGTGCGGCCTGGTGAGCAGGTCGCCCTGGTGGGCGCCTCCGGTGCCGGCAAGTCCACGCTCGCCCGCCTGCTCACCCGGCTGTGGACGCCGCAGGCCGGACGGATCCTGCTCGACGGCGCCGAGACCGGCTCCCTGGATGCCGACGAGTTGCGGCGACAGGTCGCGATGGTGTCGCAGCACCCGTTCGTCTTCCGCGGCACCGTCCGCAGCAACCTGCTGCTCGCGGCACCCGAGGCGGACGACGCCGCGCTGTGGCGGGCGCTGGAGGACGCCGGGCTCTCCGCGACCGTGCGCGCTCGCCCGGACGGGCTCGACACCCCGGTGGGTGACCGCGGGGCCACGCTGTCCGGCGGGCAGCGGCAACGCCTGTCCGTGGCGCAGGCGCTGCTGCGCGACCCGGCCGTGCTCGTCCTGGACGAGGCCTCCGCCCACCTCGACGCGGTGGGCGAGCAGGACCTCGCCGACACCGTTTCGCGATGGGGGCGCACCACCGTGGTGATCGCCCACCGAGTCTCGACCATCCGCCGCGCCGAGCGGGTCGTGCTGCTGGCCGGCGGGCGCATCATCGCCGACGGCACCCACGCCGGCCTGCTGCGCACCTCCCCCGACTACCGGCGCCTGCTCGACCTGTCCCCAGGTCAGGGCGTCGGTGACCAGGAACCGGCCGCTGTGGCCGGTTCGACCCGAGAAGAAGGAAGGAGTGAGCACCCATGAMSATTPTSSLLRPVLRLLDEVREERSLFWRSTAAMTGYQLATAAAAGISTAVAALVTSSDTSLVTVLLLALGAAVVAVAAFTWIESWLSHVLAYRVIDALRVRVYDAVERIVPARSGRRRAGEVAGTAMNDVEILEWFYAHTLGAGVNAVLSPLLVSVALVAMVGPRGLIVTAGVALLLAVPWLFAGLQQRQGTAIRRELGTLQAVALEGSQARRELAALDLTAHHRAQVLTGTDAVQSAKRRFALRAAGESALADLVVAATSLLFLASLVQGALAGAVDPVLIPPATVLVAAAVTPAAGAFAMVQRLGEMSAAARRVLDLVDSGDQSDRAEQAGHAEHASGSGPGAPRAGTDAPGPVPPSSRGHLLLDGVTFAYDDGPRVLDGLDLEVRPGEQVALVGASGAGKSTLARLLTRLWTPQAGRILLDGAETGSLDADELRRQVAMVSQHPFVFRGTVRSNLLLAAPEADDAALWRALEDAGLSATVRARPDGLDTPVGDRGATLSGGQRQRLSVAQALLRDPAVLVLDEASAHLDAVGEQDLADTVSRWGRTTVVIAHRVSTIRRAERVVLLAGGRIIADGTHAGLLRTSPDYRRLLDLSPGQGVGDQEPAAVAGSTREEGRSEHPNANANANANA
AK018_025221725COG1132Putative multidrug export ATP-binding/permease proteinGTGATCCACCTCCGCCTCCTCCGGCTCACGCGGTCCTCGGCCGCGGGACAGGCCTGGTGCGTCGCCGTCGGTCTGGTCCTCAGCGCCCTGGCGATCACCCAGGCGATCGCCATGTCACGGCTGTTCGCCGGGATCCTCGACGGCGCCGACCCGGCCACGTTGGCCGGTCCGTTCGCGCTGCTGGCGGCCGCGCTGCTGCTCCGCCCCGCCGTGACCGCGCTGCGGGAGCTCACCGCGCACGCCGTCGCGGGCCGGATGAAGCGCGACCTGCGGGCTCGGCTGCTCGACGCCGACGCCGCACGCGGCCCCTTCGCCGGCGCCACGGAGAACCTCGGCGGACGGCACTCGCAGCTCGTCGACGGCGTGGAGAACCTCGAGCCCTACGTCACCCGCTACGTTCCGCAGGTCGTCGTCACCACGGTCACCGCCGTCGTCACCGTCGCGCTCCTCGTGGCCGTCGACCCGGTCGTCGGCCTCGCCGCCGGCCTGACCGCAGCGCTGGTCCCCCTGCTGCCCCGGCTGTGGGACCGCGCGCTGCGATCGCGCGGCGACGAGCACTGGGACGCCTACGCCGGCATGCACGCCGACGTCGTGGACTCGATGCGCGGGATGGAGACGCTCAAGCTGCTCGGCGCGGCCGGCCGACGCCGCGAGCACCTGGTCACCGCGAGCGCCCGGCTGCTGCGCTCGACGCTGCGCCAGCTCCGGCTCTCCCTGGTGGAGTCCGGACTGACCGGCTTCCTGCTCGTGGCGGGCCCCGCCCTGGTGCTCACCGTCGGCGTCCTGCGCGTCGACGCCGGGGCGCTCGCCGCACCCGCCCTGTTCACCGTGACCCTCGTCGGCTTCGAGGTCTTCCGCCCGTTCCGCGACCTCGCCAACCACTGGCACGCCGGCTACCTGGGCGTCTCGGCCGGCTCCCGGCTGCTGGAACGGCTCGCGGAACCCGACGACACCGAGCCCGACGACACCGAGTTCCCGGCAGCAGCCGGGACCGCACCTGGCGACCCGGCGGTCGCCGTCGCGCTCGACCACGTCCGCGCGCGCTACCCCGGAGCGGAGCGCCCCGCCGTCGAGGACCTCACCCTGCACGTGCCCACCGGCAGCGTGACGGCCGTGGTCGGACCCTCCGGAGCCGGCAAGTCGACCGTCGCCAACCTGGTGCTCGGGCTGCTGCCGCCGGAGGCCGGGACGGTCGCGGTCCGAGCCGCCGACGGCGTCCCCCCGGTCACCCTCGTCTCCCAGGAGCCGGTGCTCTTCGCCGGCACCTTGCGGGAGAACCTGGCGCTCGTCGCCCCCGCGGCGTCCGACCACGAGCTCGTCGACGCCCTGGACCGTGCCCAGGCCCCGGAGCTGGCCGGGACGGACCGCGCCGGCCTCGACGCCGAGGTCGGCGAGGGCGGCAGCCTGCTGTCCGGCGGTCAGCGCCAGCGGGTCGCGGTCGCCCGCGCGCTGCTGCGCCGCTCCCCCGTCCTCGTGCTCGACGAGGCGTCCTCCGCCCTCGACGCCGACCGCGAACGCCGGCTGCTCACCGCGCTGCGCAGCGGCTCCGACGCCCCGACGCTGCTGATCATCGCCCACCGGCTCAGCGCGGTGCGCGACGCCGACCGGATCGTCGTCGTCGAGGACGGCCGTGTCGTCGAGGAGGGCACCTGGGACCAGCTCCTCGCGCTCGAGGGCACGTTCGCCCGGCTGCACGCCGCTCAGACCGAGGAGATCCCGGCATGAMIHLRLLRLTRSSAAGQAWCVAVGLVLSALAITQAIAMSRLFAGILDGADPATLAGPFALLAAALLLRPAVTALRELTAHAVAGRMKRDLRARLLDADAARGPFAGATENLGGRHSQLVDGVENLEPYVTRYVPQVVVTTVTAVVTVALLVAVDPVVGLAAGLTAALVPLLPRLWDRALRSRGDEHWDAYAGMHADVVDSMRGMETLKLLGAAGRRREHLVTASARLLRSTLRQLRLSLVESGLTGFLLVAGPALVLTVGVLRVDAGALAAPALFTVTLVGFEVFRPFRDLANHWHAGYLGVSAGSRLLERLAEPDDTEPDDTEFPAAAGTAPGDPAVAVALDHVRARYPGAERPAVEDLTLHVPTGSVTAVVGPSGAGKSTVANLVLGLLPPEAGTVAVRAADGVPPVTLVSQEPVLFAGTLRENLALVAPAASDHELVDALDRAQAPELAGTDRAGLDAEVGEGGSLLSGGQRQRVAVARALLRRSPVLVLDEASSALDADRERRLLTALRSGSDAPTLLIIAHRLSAVRDADRIVVVEDGRVVEEGTWDQLLALEGTFARLHAAQTEEIPANANANANANA
AK018_025231062hmuU_2COG0609Hemin transport system permease protein HmuUGTGGTAGCGACGATCGACACGCCGACGGCGGTGTCCCCCGCGGCGAACCGCCGGCGGCACGCCCTCCTGCTCGGGACGCTCGGTGTCGCCCTGCTCGGCACCTCCGTCGTCGCCGTCGGCATCGGGCCGGTGGCCATCACGCCGTCCGTCGTCACCGACGTCGTCCTCGGCCGCCTCGGGCTGGCCGACCCCGAGGCCGTCAGCGCCACCGACGACTCGATCGTGTGGCTGATCCGGCTGCCGCGGGTCATCCTCGGTGCCACTGTCGGTGCCGCGCTGGCCCTGGCGGGCGCCGTGATCCAGGCGCTCGTGCGCAACCCGCTCGCCGACCCCTACCTGCTCGGCATCTCCTCCGGCGCCTCGGTCGGGGCGGCCGCCAGCATCCTGTTCGGCGTGGGGGGAGGAGTGCTCGCCCTGACCGGCAGCGCGTTCGTCGGTGCCCTGCTCGCGATCGTCCTCGTGCTGTCCGTGGCACGCATCGGCGGCCGGCTGATCATCTCCCGCCTCGTGTTCGCCGGGATCGCGGTGGGCTTCGCGCTGACCGCCCTGACCAACTTCCTCGTGTTCGCCAGCGAGTCCCGCGAGGGCGCCCGGGCCGTCATGTTCTGGACGCTCGGCTCCCTGGCCCAGTCCCGCTGGTCGTCCGTGCCGCTGGCCGTCGCTGCGGTCGTCGTCGCCGCGGTGGTGTTCATCGCCTGGGCACGCCGGCTCGACGCGCTCGCCATCGGCGACGACACCGCGCTCGCGCTCGGCACCGACCCCACCCGGTTCCGGTCCGCCGCCGTCGTCGTCGTCAGCCTGGTCGTCGCCGTCGCCGTCTCCGTGTCCGGGCTCATCGGGTTCGTCGGCCTCGTGGTCCCGCACATCGCCCGTCGCCTCGTCGGCGCGAGCCACCGCATCGTCCTGCCCGTGTCCGCCCTGCTCGGCGCCCTGCTGCTCGTGTGCGCCGACGTCCTGGCACGCACCGCCTTCGCCCCCCGTGAGCTGCCGCTCGGCATCCTCACCGCGCTGATCGGCACCCCGCTGCTCATCGCGCTCGTCCGCCGGTCCCTCACCCGTTGAMVATIDTPTAVSPAANRRRHALLLGTLGVALLGTSVVAVGIGPVAITPSVVTDVVLGRLGLADPEAVSATDDSIVWLIRLPRVILGATVGAALALAGAVIQALVRNPLADPYLLGISSGASVGAAASILFGVGGGVLALTGSAFVGALLAIVLVLSVARIGGRLIISRLVFAGIAVGFALTALTNFLVFASESREGARAVMFWTLGSLAQSRWSSVPLAVAAVVVAAVVFIAWARRLDALAIGDDTALALGTDPTRFRSAAVVVVSLVVAVAVSVSGLIGFVGLVVPHIARRLVGASHRIVLPVSALLGALLLVCADVLARTAFAPRELPLGILTALIGTPLLIALVRRSLTRPGPT0003770_863DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_025241053hypothetical proteinATGTCCCCTGCGACCCTCCGCCGCCGCGGTACCGCCGCGTTCGGCGTGCTCGCCCTCGCCACCCTCGCCGCCTGCTCCTCGGACGCCGACGCCTCGTCCGGGACCGGCACCGACTCCGCCGCAGCGTCCTCCGCGCCCGCGGACGACGCCGGCACCGAGTACCCGGTGACCGTCCAGAACTGCGGCGAGGACCTCGAGATCCCCGCCGAGCCCGAGTCGGTGCTCTCCATCGGCACCTCCGCCGTCGCCCTGCTCGACGCGGCCGGCGCCTCCGAGCGCATCGTGGCCCGGGCCGGCGAGTTCGGCGCCGACCTGCCGCCCGACCTGGCCACGCCGCCCACCGACGCCCCCGTCCTCGACCCGTTCGACCCGACCATCGAGGTGATCGTGGGCGCCGAGGCGGACATCATCGTGGGCTACGGGCTGTTCAACGCCGCCGTCGAGGACGTCGAGGCGGCCGGGCTGACCAACGTCGTCATCGACGGCGAGTGCAGCCACGACGCCGCGCTGACCCAGAAGACCGACTTCGACGCGATCTTCGCCGACGTGGAGCGTCTCGGCACCATCTTCGACACCCAGGCGGAAGCCGCCGAGAACGTCACCGCGCTGCGCGCCGAGCTCGACGAGCTGACCGCGGCCGCGGGGGCACAGCCGGACGGTGAGGCGGCTGCCGGCGAGAGTGCCGCCGTCGTCTACTACTTCTCCGAGGACGCCACGATGTCGGCCCGCGGCGGCCAGGGCATCGCCGACGACGTGCTCGCCCGGGCAGGACTCGAGAACACCTACGGCGACGAGCAGTCGGTCTACCTCGAAGCGAACGTCGAGACGCTGCTCGACGCCGACCCGGACGTGCTCGTGCTCGCCTACGGCCTCTACGGCGAGAGCTACGAGGACGCGCTGGCCACCTTCATGGACGAGCCCGGCGCCGAGGACCTCGCCGCCGTGCAGCAGGACCGGATCATCGGGGTGCCCGCCGCCGACCTGGCGCCGGACCCGGGTGCCGTCCGCGGGCTGGAGGCCGTGCTCGAGGGCACCGGCGCCCTGGAGGAGTGAMSPATLRRRGTAAFGVLALATLAACSSDADASSGTGTDSAAASSAPADDAGTEYPVTVQNCGEDLEIPAEPESVLSIGTSAVALLDAAGASERIVARAGEFGADLPPDLATPPTDAPVLDPFDPTIEVIVGAEADIIVGYGLFNAAVEDVEAAGLTNVVIDGECSHDAALTQKTDFDAIFADVERLGTIFDTQAEAAENVTALRAELDELTAAAGAQPDGEAAAGESAAVVYYFSEDATMSARGGQGIADDVLARAGLENTYGDEQSVYLEANVETLLDADPDVLVLAYGLYGESYEDALATFMDEPGAEDLAAVQQDRIIGVPAADLAPDPGAVRGLEAVLEGTGALEEPGPT0003765_7895DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
AK018_02525804fecE_3COG1120Fe(3+) dicitrate transport ATP-binding protein FecEGTGATCGGGACGCGACGGCTGACCGTCCGGTACGGCCGGACGGTCGCCGTGGCGGCCGCCGACCTGGTGGCCGCCGACGGGCGCACCCTGGGTCTGATCGGACCCAACGGGTCCGGCAAGTCGACCATGCTCCGTGCCGTCCTCGGCGCCGTCACCGGTCAGGGCACGGTGACCGTCGACGACGACCTCGTGCGCGACCTCACGCCCCGGCAACGGGCCGACCGCATCGCCGTCGTCGCCCAGGAGGAACCCAGCGGCCTGCCCCTGACCGCGTGGGACTCCGTGCTGCTCGGACGCTCGGCACGCCGGTCCGGCTGGAGCCGCTACCGGCCCGAGGACGAGCAGGCGGCCCGCGAGGCGATGGCCCGCGCCGGGGTGACGCACCTCGCCCACCGGCACGTCGACGACCTCTCGGGCGGGGAACGTCAGCGGGTGCTCATCGCGCGCGCTCTCGCCCAGGGATCCAGCCACCTGCTGCTCGACGAGCCGACCAACCACCTCGACGTGCGCTACCAGCACGAGATCCTTTCGCTGGTGCACGGCCTGCCGCTGACCACCGTCGCCGTGCTGCACGACCTCAACCTGGCGGCCCGGTACTGCGACGAGCTGGTCCTGCTCTCCGCCGGACACGTGGTCGCCGCAGGTGTCCCGGCGGAGGTGCTGGTCCCGGAGGTGCTGGAACCGGTCTACGAGATCGCGGTGCGCCGGTTCGACGTCGACGGGGTGCCCCAGCTCGTGTTCGGGATGACCGAGGGGGCCGGCGCAGCGACGGATCAGCGGCTCGGCGGGACGACCACGACCTGAMIGTRRLTVRYGRTVAVAAADLVAADGRTLGLIGPNGSGKSTMLRAVLGAVTGQGTVTVDDDLVRDLTPRQRADRIAVVAQEEPSGLPLTAWDSVLLGRSARRSGWSRYRPEDEQAAREAMARAGVTHLAHRHVDDLSGGERQRVLIARALAQGSSHLLLDEPTNHLDVRYQHEILSLVHGLPLTTVAVLHDLNLAARYCDELVLLSAGHVVAAGVPAEVLVPEVLEPVYEIAVRRFDVDGVPQLVFGMTEGAGAATDQRLGGTTTTPGPT0003760_2229DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_02526393vapC9_1COG4113Ribonuclease VapC9ATGATCGTCGTCGACGCCTCGGCGATGGTGGAGGCCCTGGTGGGCCGCGACGCCGCCGCGAGTCTGCTCGACGCGCTGGACGACGCCGTGTGCGCGCCCCACCTGCTGGACGTCGAGGTGCTCTCCGTGCTGCGCGGTCTCACCCTGTCCGGAAAGCTCAGCACCGACATGGCCGACCAGGCCCGAGGCGACTTCTTCGCCCTGGCGATCGAGCGATACCCGACGGACGCGCTCGCGGATCGCATCTGGGGACTGCGGCACAGCTTCACCGCCTACGACGCCGCCTACCTCGCTCTCGGCGAGGCCACGGGAGCCCCCGTCATCACCTGCGACAGCAAGCTCGCCGCGCCCGGCCACGGCGCTCAGGTCGTGGTCGTCCCGCCGAGCCGCTGAMIVVDASAMVEALVGRDAAASLLDALDDAVCAPHLLDVEVLSVLRGLTLSGKLSTDMADQARGDFFALAIERYPTDALADRIWGLRHSFTAYDAAYLALGEATGAPVITCDSKLAAPGHGAQVVVVPPSRNANANANANA
AK018_02527252hypothetical proteinTTGCACATTGCTATCATCGGTGGCATGGCCACCCTCTACATCCGCGACGTCCCCCCACAGGTCTCGGAGACGCTCAAGCGACGCGCGGCCGCGTCCGGCCTGTCCCTGTCGGCCTACGTCTCCGCAGAGCTGTCGCGGCTCGCGGAGCGCCCGACGAACGCCGAGGTCGTCGAACGCCTCCGTGCTCGTGACCGGTCGGCCGGGCCGTCGTCGCAGGAGGTCGTCGAGGCTCTCCACACCGGTCGCCGATGAMHIAIIGGMATLYIRDVPPQVSETLKRRAAASGLSLSAYVSAELSRLAERPTNAEVVERLRARDRSAGPSSQEVVEALHTGRRPGPT0027675_772DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-FitB-FitA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027675-antitoxin_fitA|vapB-K21495NANA
AK018_02528342hypothetical proteinATGTCCGCCCTGGAGGGGCCTGGCTATCCTCGCCCTGTGGCTCCCAGCAGACTCCGCACGACCGCCCGGATCGTCGCCGTCGTGGCGGCCGGGCTGGCGATCGCCGACGGCTTCCGGTGGGGCAACCGCTGGTACGTCTCGACGATGTTCGGCGGCGCGGAGAGCGGGAACCTGCTGGCGGTCGAGCGGCTCGTGGGCGCCCACGACGCGCTCGTCGCCGGGCTAGCCTGGCTATGCCTGGCGATCGTCGCCGCGGTCGTCGGGTGGCGTCTGCGGATCGTGAGCGTGCCGGACGACCGCTCGGTCAGGACACCCCGCCGGCCGCCTCGACGGCCGCGGTGAMSALEGPGYPRPVAPSRLRTTARIVAVVAAGLAIADGFRWGNRWYVSTMFGGAESGNLLAVERLVGAHDALVAGLAWLCLAIVAAVVGWRLRIVSVPDDRSVRTPRRPPRRPRNANANANANA
AK018_02529948hypothetical proteinATGAAGCACGCCCGGCACGCGGCCGACCCCGCGCCGACCGCACCCCGCACCACCCGCAACCGCGCCACCGCCAAGCACGCCGGACGGCACGTCGCCAGCCCGGCAACGCGGCAGCGACGCAGCGGACCCACCTGGTCCTCGCTCGCGCCGAAGAGCTGGCCCGTGAGCCTCGGCGTCGGCCTCGCCGTCACGATGGCGACCACCACCGGGCTGTCCGTGGCCTCCGGGACCACCGGCGTCCCGCACTCCGCGACGCCGGACACCTCGGCGTCCGGCATCCGGGCCACGCCCGAGCCCGCCGACTCCGGCACCGCGCTCGGTACCGAGGCCAGCACCGAACGGCGCTCCGAGCTCGTCGCCGAACGCAGCCAGGCCGCCTCCCGCAGCGGCGAGCGCAGCGCCCGGACCGCCCCCGGTTCTGCCGGACTGGTCGTCGCCGACGACGCCGCCATCCCGTCCGAGGACATCGCCGTCGACGTCGAGTCCGCACCCGAGCCGCCCGTCCTGCCGGGCTGCGACGGTGAGGCGACCGGGGCCGGCACCAACGGCAACATCTCCAGCACCGAGATGTGCTCGCTGTGGGACGGCGGCCCCATGGTCCGCGCGGACGCCGCCGTGGCCCTCGCCCGGCTCAACGAGGCCTACGTCGCCGCGTTCGGCGAGGCCATGTGCGTCACCGACGGCTACCGCAGCTACAGCCAGCAGGTCGCCGCGCGAGCCGCCAAGGGGTCGCTCGTGGCGCCGCCCGGAACCTCCAACCACGGCTGGGGGCTCGCCGTCGACCTGTGCCCCGAGACGTACACCGGCGACCGCTACGACTGGCTCGCGCAGCACGGCCCCACGTACGGCTGGGACAACCCGGCCTGGGCGCGCCCGGGCGGGTCCAAGTACGAGCCCTGGCACTGGGAGTTCACCGCGGCCGTCGAGGCGGCCGGCGGGGTGTCCTGAMKHARHAADPAPTAPRTTRNRATAKHAGRHVASPATRQRRSGPTWSSLAPKSWPVSLGVGLAVTMATTTGLSVASGTTGVPHSATPDTSASGIRATPEPADSGTALGTEASTERRSELVAERSQAASRSGERSARTAPGSAGLVVADDAAIPSEDIAVDVESAPEPPVLPGCDGEATGAGTNGNISSTEMCSLWDGGPMVRADAAVALARLNEAYVAAFGEAMCVTDGYRSYSQQVAARAAKGSLVAPPGTSNHGWGLAVDLCPETYTGDRYDWLAQHGPTYGWDNPAWARPGGSKYEPWHWEFTAAVEAAGGVSPGPT0024055_314DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_02531837hypothetical proteinATGCTCGGAGCCATGACGACCGAGGGTGCGTGGCCGGCCGCCGTCGCGCACGTGCGCGACCGGTCGCGCGGCGGCCCGGTGCCGCCGTCGTCCCGCGTGGTGCTGCACTTCCACCCGGACGCCCCGGCGGGTGGCGGCACCGTGATGGAGGCGCTGGCCGAGCACGGTGTCTACCGGTCCCAGTTCGAGACGGGGACGTCCAACGGAGGGCTCACCGCCTACCGGGGCGGCGACCGCTGGCGGTGGGAGAGCCGCCTCTTCGGCGGTGTGTACGACGACGGTCCCGCGGCCGGGCGCCCGCGGTACGGCGCACTGCTGCTCGCCGGCGACCCCTACGGTGCTGCGCCGCGCTTCGGATCCGCCTACCTGCGGCTGCGGGCGCACCTGCTGGCGCGGATGACCTTCGCCTACCCGGACAGCGCCCACGCGCCGCGGCACGTCGGGACGGCGGACCGGTTCGACCTGGCCGCGCGACTGCTCGCCGAGCCGCGCCCGGATCCGCTGGACCGCTACGTCGAGGCGCACGTGCACGGTGGGGTGGTGGTCGCCGACGACGTCGAGGCGGTGGTGCTCGACCCGTCGTACCGCGGGACGCCGGTCGCCCACGCGGCGCGACGCCTGGGCTGCCCGGTCGAGTGGCACCCGGGCTACCGGGCCGCGCCGACGGCGTTCGACCCCGCCTATCGTGGCGCGGCACCGGTCGCGCTCGCGGAGCGAATCGCCGGCGGCGGTGAGCTCACCCCGGCACGGCTCGGCGTGTGGCGACGCGCCGACGTGGATGCCCGCACCCTCAAGCAGGTGTGGCACCTGCTGGCTCGGTTCGGGCGACGCGCCTGAMLGAMTTEGAWPAAVAHVRDRSRGGPVPPSSRVVLHFHPDAPAGGGTVMEALAEHGVYRSQFETGTSNGGLTAYRGGDRWRWESRLFGGVYDDGPAAGRPRYGALLLAGDPYGAAPRFGSAYLRLRAHLLARMTFAYPDSAHAPRHVGTADRFDLAARLLAEPRPDPLDRYVEAHVHGGVVVADDVEAVVLDPSYRGTPVAHAARRLGCPVEWHPGYRAAPTAFDPAYRGAAPVALAERIAGGGELTPARLGVWRRADVDARTLKQVWHLLARFGRRANANANANANA
AK018_02532468hypothetical proteinATGTATCGTACATGTATGCCGGACCGCCATGGAGACCTCGAGACCGTCGACCGCGCGCTGGTGGACCTGCGCCGCTTCCTCGCCGCCCCCGACGTGCTGGACGACGCCGGCCGCCGCCTCGAGCTGTCCACGCTGCTCGTGCTCGACGGGCTCCCGGCCGCGGGGCAGAGCATCGGCGAGATAGCAGCCCGCCTCGACGTCGCGCACTCCACGGCCAGCCGGTTCGTCACCCGGGCCGGACGTGCCGGCGTCGTGCACCGCTCCCCCGCCCACGACGACCCCCGCCGGACCGTCGTCGCCCCGACCGAGGCCGGCACCGCGCTCGCCGGACGAGCGACCGCGCACCGTCTCGAACGGCTCCGGGCACTGCTCGACGGGTGGGACGACGGGGACGTCGCGGACCTCGCACGACTCCTCGGCCGGTTCGCCCGGGAGCACGCGGAGGATCACGACCGCGCGCGGCGGTGAMYRTCMPDRHGDLETVDRALVDLRRFLAAPDVLDDAGRRLELSTLLVLDGLPAAGQSIGEIAARLDVAHSTASRFVTRAGRAGVVHRSPAHDDPRRTVVAPTEAGTALAGRATAHRLERLRALLDGWDDGDVADLARLLGRFAREHAEDHDRARRNANANANANA
AK018_02533888azoB_2NAD(P)H azoreductaseATGATCCTGGTGACGGGTGCGACGGGAAACGTCGGAGCCGTGGTGGCGCACGAGCTGAGGACGCACGGCGAGCCGCTGCGCCGCGCCGTCCGCCGGGCGAACCCCGAGGCGTACGACGAGGTCACGTTCGACTTGACCGACCCCGGGACGTGGCCGGACGCGTTCGACGGTGTCCGGTCGATCTTCCTCGTCCGGCCCCCGGCGCTCGGCAACGTGCGCCGCGACCTGCTGCCCGCCGTCGCCGCCGCCCGCGCCGCCGGGGTGGAGCACGTCGTCTTCCTGTCCCTGCAGGGCGCCGAGCACAACAAGGTGGTCCCGCACGCCACCGTCGAGGCGTGGCTGCGCGGGTCCGGCCTGGACTGGACGTTCGTCCGCGCCTCGTTCTTCGGCCAGAACCTGTCCACCACGCACGCGGCGGACATCCGCGACCGCGACGAGATCGTCGTCCCGGCCGGCGGCGGCGCGACGGCGTTCGTCGACGCGGACGACGTCGGTGGGGTCGCGGCGGCCGCCCTGACCGACCGTGCGGGCCACGCCGGGCGTGCCTGGACGGTCACCGGCCCCCGCTCGCTGACGTACGAGCAGGTCGCGCACATCCTCACCGACGAGCTGGGACGACCGATCCGCTACACCCGCCCCGGGATGCTGCGCTACGCACGGCACGCCCGCCGCCGGCTCGACATGCCGTGGCCGATGGTCGCCGTGACCACCGCGATCTACACCACCGCGCGGCTCGGCCTCGCCGCCGGTCTCAGCGACGACGTGCGCACCGTGCTCGGCCGCGAACCCGTCGACCTCGCCGACGTCGCCCACCGCGAGCGCCGCGCCTGGATCCCGGGGACGCCGGGGTCCGCGCCCGCCGACACCACCGACCCGGAGGAACCCTGAMILVTGATGNVGAVVAHELRTHGEPLRRAVRRANPEAYDEVTFDLTDPGTWPDAFDGVRSIFLVRPPALGNVRRDLLPAVAAARAAGVEHVVFLSLQGAEHNKVVPHATVEAWLRGSGLDWTFVRASFFGQNLSTTHAADIRDRDEIVVPAGGGATAFVDADDVGGVAAAALTDRAGHAGRAWTVTGPRSLTYEQVAHILTDELGRPIRYTRPGMLRYARHARRRLDMPWPMVAVTTAIYTTARLGLAAGLSDDVRTVLGREPVDLADVAHRERRAWIPGTPGSAPADTTDPEEPNANANANANA
AK018_02534639hypothetical proteinATGCACCTCGCCCTGATCGGAGCCACCGGCCGCACCGGCCGGCACGCCCTGACGACCGCGCTCGAGCGCGGTCACGACGTGACCGTCCTGGTCCGTGACCCGGCCCGGCTGGACGCCGCGGACCGCGACCGGGTGCGCGCCGTCGTCGGGGAGTCCACCGACCCCGCCGCGCTGGCCGACCTGCTCACCGGTGCCGACGCCGTCGTCTCCGCGCTGGGCCCCACCTCCAAGGAGCGCGACCTGCACGCCCGCACCGCGCGGGAGCTCGTCGCGCTGATGACCGCCTCGGGGCCCCGGCGGTTCGTCGGGGTCAGCGGTGCCGGCATCGACGTGCCGGGCGACCTGAAGGCCGGCAAGGACAGGGCGATCAGCTGGCTGATCCGCGCGCTCGGCGGCGCCGTCGTGCAGGACAAGCCCGCCGAGTACGCGGTCTGGGCCGGCTCGGGGCTCGAGTGGACGCTGGTGCGCCCGCCGCGCCTGGTCGACGGCGGACCCACCGGCCGGCTCGAGCACGACGCGCACCGCTCGACCCGCTCCACGGCGATCCGCCGTGCCGACCTCGGCGCGTTCCTCGTCGACGTCGTCGAGCAGGACCTGTACCCGCGCACCGCGCCGTTCGTGGCGACCGCGAAGGGCTGAMHLALIGATGRTGRHALTTALERGHDVTVLVRDPARLDAADRDRVRAVVGESTDPAALADLLTGADAVVSALGPTSKERDLHARTARELVALMTASGPRRFVGVSGAGIDVPGDLKAGKDRAISWLIRALGGAVVQDKPAEYAVWAGSGLEWTLVRPPRLVDGGPTGRLEHDAHRSTRSTAIRRADLGAFLVDVVEQDLYPRTAPFVATAKGNANANANANA
AK018_025351038glsA1_1COG2066Glutaminase 1GTGAAGACGGTGATCGGCGAGGTCGAGCAGGCGGTCTCCACCGGTTCGTTGCCGGGCTGGGACCTGGTGGACGAGCTCGTGCACGTGGTCCACGACCGGTACCGGTCGCACGACGAGGGGGTCGTGGCCACCTACATCCCGGCGCTGGCGGACGCCGACCCGGGCGCGTTCGGGGTGTGCGTCGCGGAGACCTCCGGGGGCATCCACGAGGCGGGGGACACCGGCGTCGAGCTCTCCGTGCAGTCCATCTCGAAGGCGTTCGTCTACGCCCTCGTGTGCGAGGCGCTCGGGCACGAGGCCGTGCGGGAGCGCGTCGGGGTGAACAACACGGGCCTGGGGTTCAGCTCGGTGATGGCGCTCGAGCTCAACGAGGGCCATCCGATGAACCCGATGGTCAACGCCGGGGCGCTCGCCACCACGGCGATGATGCCGGGCAGCTCGTTCGCCGAGCAGTGGGAGAACGTCCGCACCGGGCTGTCCCGGTTCGCGGGGCGCCAGCTCGCCCTCGACGGCGAGGTGTACCGCTCGGAGTCCGCCACCAACATGCGCAACAAGGCGATCGCCCGGCTGCTGCAGAGCTACGGGCGCATCGACCTCGACCCGCTGGGTGTCGTCGACGTCTACACCCGGCAGTGCTCGCTGCTGGTCACGGCGCGGGATCTCGCGGTCATGGGTGCCACGCTCGCCGACGGCGGGGTCAACCCGCTCACCGGCGACCGGGTGGTCTCGGGCCAGGTCTGCCGGGACACCCTCGCGGTCCTCGCGTCGACGGGGATGTACGAGCGGTCGGGGGAGTGGCTCTTCGAGATCGGGCTGCCCGCCAAGTCCGGGGTGTCGGGCGGCATCGTCGCCGTCGCCCCCGGCAAGGGCGCCATCGGCACGTTCTCCCCGCGACTCGACCCGGCGGGCAACAGCGTCCGCGGCCAGCGCGCCACCGGCTACCTGTCACGTGCCCTGGGTCTCAACGTCTTCGCCTCCGCCGCCCGCGTGCCGGAGCGCGACGTCCCGCCCGCCGAGCTGACCGAGGACGACCGATGAMKTVIGEVEQAVSTGSLPGWDLVDELVHVVHDRYRSHDEGVVATYIPALADADPGAFGVCVAETSGGIHEAGDTGVELSVQSISKAFVYALVCEALGHEAVRERVGVNNTGLGFSSVMALELNEGHPMNPMVNAGALATTAMMPGSSFAEQWENVRTGLSRFAGRQLALDGEVYRSESATNMRNKAIARLLQSYGRIDLDPLGVVDVYTRQCSLLVTARDLAVMGATLADGGVNPLTGDRVVSGQVCRDTLAVLASTGMYERSGEWLFEIGLPAKSGVSGGIVAVAPGKGAIGTFSPRLDPAGNSVRGQRATGYLSRALGLNVFASAARVPERDVPPAELTEDDRPGPT0020215_840DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0020215-glsA-K01425NANA
AK018_025361683stp_2Multidrug resistance protein StpATGAGCGCACCGGAACCCGCCGCGACGGCGCCCGCCACCGAGGAGCGACGCTCCTGGCTGCCGATGGTGTGCCTCTTCCTCGCCCAGGTCCTCATGTCCTTCAACGTCGCGGCGCTGCCCGTCTCGCTGGGCGGCATGGTCGAGGACTTCGGCGTCCCGCCCACCGTGGTGAGCTCCACGATCGTCGTCTACGGCCTGGTCGTGGCGGCGCTGGTCATGACCGGCGCCAAGATCGGCCAACGGGTCGGGTGGGTGCTCGTCTTCCGCGTCGTGGTGGTCACGTTCGGCGTCTCGGCGCTGCTGATGATCCTCTCCCCGACGGTCGGGTGGGCGATCGCGGGACAGTCGCTCGCGGGGGCCTCGGCGGCGATCATCGTGCCCGCGCTCGTGGCGCTCATCGCGGAGAACTACCGCGGGGCGCAGCAGGCGACGGCGATCGGTGCGCTCGGGTCGGCACGCGCCATCTCCGGGGTGTCCGCGTTCTTCCTCGGCGGTGCCCTCGGCACCCTGGTCGGGTGGCGGCCCGTGTTCGGCATCGTGCTGCTGCTGGCGGTCGCGGTGCTGGCCTTCAGCTTCACCCTGCGGTCCGACGGCGGCAACGCGGACGTGCACATCGACGTCGTCGCCGCCGTCCTCATCGGCGTCGCGGTCATGCTGCTCACGCTCGGGTTCAACAACCTCAACACCTGGGGGCTGTTCTACGCCACGCCGGACGCGCCGTTCGACGTCGGCGGCGTCTCGCCGGCACCGGTGCTCGTGCTGTGCGGCGTCGTCCTCGGCCAGACGTTCTTCTGGTGGACCCGGCGACGGATGGCGGCCGGCAAGGTGCCTCTCGTGGACCTGAGCGTGCTGGCCTCGCCGCGGGAGCGGGCGGCGGTGTACGCGATGTTCATCATCGTCGCCCTCGAGGGCGCCCTGAACTTCACGGTGCCGCTGTACATCCAGATCGTGCAGGGCCGCACCCCGTTCGACACGGCGCTCGCGATGATGCCGTTCAACCTCACGGTGTTCGTCACCGCGACGCTCGTGGTGCGGTTCTACCGGCGCTACCCGCCGCGGACCATCGGGGTGTTCGGCTTCGTGCTGACCACCGCCGCGCTGCTCTGGCTCTCGTTCGTCGTGACGAACAACTGGGAGACGCTGCCGACGATCCTGGGTCTGTTCGTCTTCGGCGTCGGGCAGGGCGCGCTGGTCACCCTGGTGTTCAACGTGCTGGTGACCGCCGCACCGACGTCGCGTGCCGGCGACGTCGGTTCGATCCGGGGCACGACGCAGAACCTCGCCTCGGCGGTCGGCACGGCGATCGCCGGGGCCCTGCTGGTGACGCTGCTGTCGTTCAACGTGGGCCGCGCCGTCGTCGAGCACGTCGAGATCCCGCCGTCGCTCGTGGCGCAGGTCGACCTGGACGCCGTGAACTTCGTCAGCAACGACGAGCTGCGCGGGGTCCTGGAGGACACCGACGCCACGCCCGAGCAGGTCGAGGCCGCCGTCGAGGTCAACGAGGAGACCCGGCTCGACACGCTCCGGCTCGGGCTGCTGATCCTCGCCGGGGTGAGCGCGACGGCCATCCTGCCCGCGAGCCGGCTGCCCGCCTACACCCCCGACGAGATCCCCGACCCGGAGACGTCCGGCGGTCCCGACCCCGAGCCTGAGCCTGACCGCGACGACCGGTCCCGGGTGTGAMSAPEPAATAPATEERRSWLPMVCLFLAQVLMSFNVAALPVSLGGMVEDFGVPPTVVSSTIVVYGLVVAALVMTGAKIGQRVGWVLVFRVVVVTFGVSALLMILSPTVGWAIAGQSLAGASAAIIVPALVALIAENYRGAQQATAIGALGSARAISGVSAFFLGGALGTLVGWRPVFGIVLLLAVAVLAFSFTLRSDGGNADVHIDVVAAVLIGVAVMLLTLGFNNLNTWGLFYATPDAPFDVGGVSPAPVLVLCGVVLGQTFFWWTRRRMAAGKVPLVDLSVLASPRERAAVYAMFIIVALEGALNFTVPLYIQIVQGRTPFDTALAMMPFNLTVFVTATLVVRFYRRYPPRTIGVFGFVLTTAALLWLSFVVTNNWETLPTILGLFVFGVGQGALVTLVFNVLVTAAPTSRAGDVGSIRGTTQNLASAVGTAIAGALLVTLLSFNVGRAVVEHVEIPPSLVAQVDLDAVNFVSNDELRGVLEDTDATPEQVEAAVEVNEETRLDTLRLGLLILAGVSATAILPASRLPAYTPDEIPDPETSGGPDPEPEPDRDDRSRVNANANANANA
AK018_02537954melD_5COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGACGACCCCAGACCTGGCCACCCGGCCACCACGCACCGAGCCCGCGCCGTCCACGCGCGGTCCGCAGCGCCGTCGGCCGCAGGACCGCCACCGGGCGAACCACCCCGCGCGGTTCCTGCTCCCGGCGTTCGCCGTGCTCGCGGTGTTCTTCTTCCTGCCGACGCTCTTCAACTTCGTCTACGCGCTGACCGACTGGTCCAGCTTCAAGGCCGAGATCGGCTTCGTCGGGCTGCAGAACTTCCGGGACCTGATCACCAGCGGGACCCTCCTGGCCTCGCTGCGCATCACCCTGGTCTACGCGGTGCTCGTCGCGATCTTCCAGAACCTCTTCGGTCTGCTGCTGGCGCTGCTGCTCGAGCGGGACACCCGGGTCAACCGGTTCGCCCGCGTGATGTTCTTCGTGCCCGTGGTGATGTCGGCCCTCGCCGTCGGCTACGTCTTCCAGGCGCTGCTGAAGCCCGACGGCGCGGTGAACCAGGTGCTGTCGGCGGTGCTCGGGCAGCAGATCCAGATCCCGTGGCTCGGGAGCACCACCTGGACGCTGGTCGTCGTGGCGCTCGTGCACGCCTGGAAGTGGATGGGGCTGTCCATGCTCATCTACCTCGCGGGCCTGAAGACCATCTCCGAGGACGTGCTCGAGGCGGCCCGCCTCGACGGCGCGTCGGCGTGGACCACGTTCCGCGAGATCCGGTTCCCCCTGCTGGCCCCGGCCGTCACCTTCAACGTGGCCACCGCGCTGCTCGGGTCGATGAACGGCTTCGACATCGTCCAGGCGACCACCGGGGGAGGCCCGGCGCGCACCACGGAGGTCCTGAACATCTTCATCTTCCGCACGTTCGGCCAGGGCCTGTTCGCCCAGGCCACGACCATGAGCCTGGTGCTCTTCGTCGTCGTGGTGGCCCTCGCGTTCCCCGTCATCCGGACCCTGCGCAAGCGGGAGGAGGTCCTGTGAMTTPDLATRPPRTEPAPSTRGPQRRRPQDRHRANHPARFLLPAFAVLAVFFFLPTLFNFVYALTDWSSFKAEIGFVGLQNFRDLITSGTLLASLRITLVYAVLVAIFQNLFGLLLALLLERDTRVNRFARVMFFVPVVMSALAVGYVFQALLKPDGAVNQVLSAVLGQQIQIPWLGSTTWTLVVVALVHAWKWMGLSMLIYLAGLKTISEDVLEAARLDGASAWTTFREIRFPLLAPAVTFNVATALLGSMNGFDIVQATTGGGPARTTEVLNIFIFRTFGQGLFAQATTMSLVLFVVVVALAFPVIRTLRKREEVLPGPT0016335_1271DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_02538882melC_3COG0395Melibiose/raffinose/stachyose import permease protein MelCGTGAGCACCACGGCCGTCACCCCCACCCCCGCCCGCACCCGGCGGCGCTCCGTCGCGGACCGCCACGGCGTGTGGCGGCGCCTGCAGCCCGTCGTGGCGGTCGCGGCGGTCGTCGTCCTCGTCGCGGCGCCCCTGTGGGTCGTGCTGGTCACCGCCGGCAAGACCCAGGCCGAGGCGCTCAACCCGAACCTCGCGCTGCCGACCACCTGGCACTACCTGGAGAACTTCACCGAGGTCTGGCAGCAGGGACGCGTCCCGGCGGCGCTCGGCGGCAGCCTCCTCGCCATGGTGCCGGCCGTCCTGGGCGTCCTCGCGCTCGGGTCGCTGGCGTCGTGGATCCTCGCCCGCCGGTCCACCCGTCCGTTCGCCGTGCTCTACGCCCTGGCGATCAGCGGGATCGTGCTGCCCCCGGCGGTCGTCACGATCGTGCTGGTCCTGCGGCAGCTCGGTCTGGCCGGCACCGCCGTCGGCATGATCGGCGTGTACATGGGCATGTACATGTCCACGGTGATCTTCTTCGTCACCGGGTTCGTCCGCACGATCCCGCACGAGCTCGAGGAGGCGGCCCGGGTCGACGGCGCGGGTCCGCTGCGGGTCTTCCGCACGATCATCCTGCCGCTGCTGGTCCCCGTGCTGTCGACGGCGACCATCCTCATCTGCCTCTACGTCTGGAACGACGTCTTCTACGCCTTCTTCGTGGTCGGCGGACGGCTGGACACCCTCCCGCTCAACCTGTTCCAGGTCGCGAGCGCGGGCCTCTACCTCGACAACTGGCATCTCATCTTCGCCTACGTGGTGCTCATGAGCCTGCCGCTGCTGGTCGTCTTCATCGTGGCCCAGCGGCGCATCATCTCCGGCATCACGTCGGGCGCGGTCAAGTAAMSTTAVTPTPARTRRRSVADRHGVWRRLQPVVAVAAVVVLVAAPLWVVLVTAGKTQAEALNPNLALPTTWHYLENFTEVWQQGRVPAALGGSLLAMVPAVLGVLALGSLASWILARRSTRPFAVLYALAISGIVLPPAVVTIVLVLRQLGLAGTAVGMIGVYMGMYMSTVIFFVTGFVRTIPHELEEAARVDGAGPLRVFRTIILPLLVPVLSTATILICLYVWNDVFYAFFVVGGRLDTLPLNLFQVASAGLYLDNWHLIFAYVVLMSLPLLVVFIVAQRRIISGITSGAVKPGPT0016340_825DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_025392868hypothetical proteinATGGCGCTGAGACGAACGACGGCCACGGCGACCGCCGTGGCGATGATCGCCGGACTGGGGGCAGCCGTCGGCGCGATGCCGGCCACGGCCGCCCCCGGGACGGTCGAGGTCGACCTGACCCGGAGCACGGGCGAGATCTACGGCGGCGCCACCGGCGTCCTGTACGGGCTGAGCGACGACGGCGTCCCGAGCGACGACCTCATCGCCGGCCAGCGGCCGCGCACCGTCGCCCAGAAGGCGCCGGGCGGCGAGCAGCACCCCAACGGCGACGCGCTGGAGATCGCCGCCCCGTTCTTCGCCGCCGGCGGCGAGCAGGTCGTGGTCTACATGCAGGACGAGTACAGCCGGTGGCCCTACCAGGAGCCGGAGGACGTCCAGGCCGACTACCTGCCCCGCCTGCGCGCGCAGGTCCAGGCGGTGCTGGACTCCGGGCAGGACTCGGAGAGGTTCGCCTGGGTCCCGTTCAACGAGCCCGACTGGATCTGGTACCAGGACTGGTACGGCGGGGACCGGGAGAAGTTCTTCGCCGACTGGGACGCGGCGTACGCCGCGATCCGCTCCGTGGACGACGACGCGCTGATCGTCGGTCCGAACGAGGCCCACTGGCGCCCCGGCCCGGTGCGGGAGTTCCTCACCCACGCCCAGGAGTCCGGCACGGTGCCGGACATCATGGCCTGGCACGAGCTCGGCACCGGGTCGCTGGGCGACGGGACCAACGGCTACCGCACCCGCTACCAGGAGTACCGCGACCTCGAGGCCGAGCTCGGCATCGGGCCGCTGCCGATCAACATCGACGAGTACGGCAACCGGCAGGACATGGGCAACCCCGGGCGCCTGATCCAGTGGCTGTCGATGTTCGAGGACACCAAGGTCGACGCCGACATGGCGTTCTGGACCTACGCGGGCAACCTGTCCGACCACGCCGTCCAGACCTCGATGGGCAACGGCGGCTGGTGGCTCAACACCTGGTACTCCGACCTGACCGGCCACACGGTCGAGCTCACGCCGGAGGCCGAGAACACGCCGGACACGATGCAGGGGATCGCCGCGCTCGACGAGGCCCGGCAGACCGCCACGGTGCTGCTGGGCGGCAACCCCGAGGGCGGATCCCTGGTCCTGCACGGCGTGGACCAGACGATCGGCGACGAGGTCGACGTCTACCTCGAGACGACCGACTTCACCGGGCAGGAGGGCGAGACGTCGGCCCCGCGCGTGGACCGCGTGCAGCGTCTGGACGCCGTCGGCGGCGACGTCACCGTCACGATCCCGGGCGACGGCGAGCAGGCCGCCTACCGGGTCACCGTCGTCCCGGCGACGTCCGACGCCGTCGACGAGCCGGAGACCGGCTGGTCGGCCTCGTACGAGGCGGAGGACGCCGACCTCGTCGCGGCCCAGGTCTACGACCAGGCCGCCGACTGGGACTACGCCGCGTCCGGGCGGCAGGACGTCGGGTCGTTCAACACCCCGGAGTCCCGGGCCACGTTCGACATCGAGGTGCCGGCCGACGGGACCTACGAGCTGGGGATCCTGCACGGGTCGAACACGCAGTGGGGGCAGCACGCGCTGTACGTCGACGGCGAGTTCCGCGAGCGGATCACGTACTCGGCGACCCTCGGCTGGTCCTACCGCGGCCGGACCGAGGTCCCCGTGGACCTCACCGCGGGGGCGCACACGATCTCGCTGCGCGCGAGCGACGACGACGGTGCGCTGGACGTGCACTACGACATCACCCTCGACCGGATCGACGTCGCCGAGCCGGAGCCCGACACGCTGCACTTCCCGCTGTGGCGCTCGCGACTGTCCGGTGACGTCTCGGTGGACCACTCGACGGCGGCCCGTGCGGTCACCCTCGCGCCGGGTGCGTCGTCCCAGACCTTCGTCGGGGCTCCCGAGGACGGCTACTACGACCTGGTGCGCACCGGCGCCTCCGACGTCGAGGGCACGGTGCAGGTCACGGCCTCGGGTCGTGACCTGGGCGCCGAGGCGGGGTACGTCCCGGCCGGCGCGGCGACGGTCACGACGACGGTCTACCTGCACCGGGGGGTCAACGAGCTCGTGCTGACCAACACCGGTGACACCCCGGTCTCCATCGACGGGCTGAGCACCGTGCGCGACCGGGACGCCGACGCCTCGACCGCGCAGGTGGAGGCGGAGGACCTCGTGCTGGAGGGCGAGGCCGCCGCCCAGGAGAGCCGATGGGCCTCCCAGGGCACCTACGTCGACGGGCTCGGGCAGAACGGCTCCCTGGTGTGGGAGCGGCCCGCCGACCTCGGCGCGGGGGAGTACGTGCTGAACGTCGCGTACGCCAACGCCCAGGTCAACCTCGGGCACCCGTACAACACCGACGTCGTGAGCCGGTTCGTCGACACGACCGAGGACGGCGGGGCGACCACGCGGTCCGTGTACCGGCACAACTACACCTGGGACGGGTTCTGGGACGTGACCTCGGGCCTGACCCTGGAGACCGACGGCGGCACCCTCCGCTTCGGACGGAGCGACGGGGCCGCGCCGAACATCGATCGGCTCTCGCTGTCGCCGCTCACCCTGGGCACGACCGTCGTCGACGGTGCGCAGGACGGGCTCGCGCTCGAGGCGAGCGTGCAGCAGCGCTGCCTGGGCGGCAGGGGCTTCGTGGCGGTGCGGGCGGTCAACGGCGAGGACGTGCCGATGGACGTCGAGCTGTCGACGGCCTACGGCTCCCGGACGGTCAAGGACGTCGACCCGGGCGGGAACGCCTACCGGTCCTTCCCGGCGCGCACCGGGTCCGTCCCGGCCGGTGAGGCGACGGTGACGGGCACGGCCACGATCGACGGCGAGGAGGTGTCCGCGACCGAGCAGGTGCCGTACGACGCGTTCGACTGCTCCTGAMALRRTTATATAVAMIAGLGAAVGAMPATAAPGTVEVDLTRSTGEIYGGATGVLYGLSDDGVPSDDLIAGQRPRTVAQKAPGGEQHPNGDALEIAAPFFAAGGEQVVVYMQDEYSRWPYQEPEDVQADYLPRLRAQVQAVLDSGQDSERFAWVPFNEPDWIWYQDWYGGDREKFFADWDAAYAAIRSVDDDALIVGPNEAHWRPGPVREFLTHAQESGTVPDIMAWHELGTGSLGDGTNGYRTRYQEYRDLEAELGIGPLPINIDEYGNRQDMGNPGRLIQWLSMFEDTKVDADMAFWTYAGNLSDHAVQTSMGNGGWWLNTWYSDLTGHTVELTPEAENTPDTMQGIAALDEARQTATVLLGGNPEGGSLVLHGVDQTIGDEVDVYLETTDFTGQEGETSAPRVDRVQRLDAVGGDVTVTIPGDGEQAAYRVTVVPATSDAVDEPETGWSASYEAEDADLVAAQVYDQAADWDYAASGRQDVGSFNTPESRATFDIEVPADGTYELGILHGSNTQWGQHALYVDGEFRERITYSATLGWSYRGRTEVPVDLTAGAHTISLRASDDDGALDVHYDITLDRIDVAEPEPDTLHFPLWRSRLSGDVSVDHSTAARAVTLAPGASSQTFVGAPEDGYYDLVRTGASDVEGTVQVTASGRDLGAEAGYVPAGAATVTTTVYLHRGVNELVLTNTGDTPVSIDGLSTVRDRDADASTAQVEAEDLVLEGEAAAQESRWASQGTYVDGLGQNGSLVWERPADLGAGEYVLNVAYANAQVNLGHPYNTDVVSRFVDTTEDGGATTRSVYRHNYTWDGFWDVTSGLTLETDGGTLRFGRSDGAAPNIDRLSLSPLTLGTTVVDGAQDGLALEASVQQRCLGGRGFVAVRAVNGEDVPMDVELSTAYGSRTVKDVDPGGNAYRSFPARTGSVPAGEATVTGTATIDGEEVSATEQVPYDAFDCSNANANANANA
AK018_025401818nhaA_2Na(+)/H(+) antiporter NhaAATGGCCCGCCTCGACCTGACACAGCGGCTGCGCACCGACACCGGCGCGGCCGTGCTGCTGCTGTCGGTCACGCTGCTCGCGCTGCTGTGGGCCAACTCGCCGCTCTCCGGGGCGTACTCGGCGCTGTGGGAGACCGCGGTCAACCTCGAGATCGGCGACCTGGCCTTCGACATGGACCTGCACCACTGGGTCAACGACGGGCTGATGGTGCTGTTCTTCTTCGTCGTGGGTCTGGAGGTCCGCCAGGAGCTGTCGGTCGGGTCGCTGCGACGGCGCAGCCAGCGCCTCGTCCCGCTGGTGGCGGGCACGGCCGGCGTCGTCGTCCCGGCCCTGATCTACCTGGCGATCGCCGGGGGCACGGCACCCGAGGGATGGGGCGCCGTCGTCGGCACCGACACGGCGTTCCTGCTCGGGGTGCTGGCCCTGGTGGGGCCGCGGATGTCCAACCAGCTGCGGGTCTTCCTGCTGACCCTGTCCGTGGTGGACGACTTCCTGGCGGTGACGATCATCGGCGTCGTCTACTCCGAGGACGTCCGGATCGGCCCGCTGCTGATCGCGGCCGCGTGCCTCGGGGCGCTGTGGCTGCTCGGGCGGATGCGCGAGTGGCGCAGCACCCCTTACGTGGTGGTCGTCGTCGTCCTCTGGGGCGCCACGATGCAGGCCGGTGTCCACCCCTCCATCGCGGGGATGCTCGCCGGCCTGCTGGTCCCGGCCGCCCTGACCCGGCGGGCCGACGTCGTGCGCACGAAGAACCTCTACCGCGCGTACTGGCAGTCGCCCAGCGCGAGCGTCGCCCGGGACGTCCACCTCGGGCTGTCGCGGTCGATCTCGGTCAACCATCGCCTGCACGAGGTGCTGAACACCCCGGTGAACGTCGTCGTCGTGCCGCTGTTCGCCCTGGCCAACGCCGGGATCGACCTGCGGGGCGGCGCGCTCGGCGAGGCGCTCGCCTCGTCCATCACCTGGGGAGTCGTCGGCGGCCTGGTGGTCGGCAAGCTGGTGGGCATCAGCCTGGGGACCTGGGCGGCGGTCAGGGCCGGGCTGGGGACCCTGCCCGACGGCGTCGGCCCCGGCAGCGTGCTGGGCGGCGCGGCGCTGTCCGGCATCGGGTTCACCGTGTCCCTGCTGGTGATCGGCCTCGCCTTCGACGACGAGTCGCAGGTGCAGGCCGCCACGGTCGGCGTGCTGCTGGCGCTCGTCCTCGCCTCGCTGGTCGCCTGGGCGCTGTTCCGGCTGGCCCGCGTGCGGTGGGGCGAGGAGACCGCCGACCTGCCGACGACGCTCGACCCGCCGGTGGATCCCCGCCACGACCACGTCCAGGGCGAGCCCGACGCCCCGCACACGATCGTCGAGTACCTGGACTACGAGTGCCCGTTCTGCGCCCGCGCCACCGGTATGTGGCGCGACCTGCGCGACGAGCTCGACGGCCGGGTCCGCTACGTGGTGCGGCACCTGCCCCTGGACGACGTGCACCCGCACGCCCACCTGGCCGCCGTCGCCGCCGAGGCCGCGCACCGGCAGGGACGCTTCTGGGACATGCACCACCACCTCTTCGCGCACCAGTCCCGCCTCGAGGCGGAGGACCTGCGCGGCTACGCCGACGAGCTCGGGCTCGACGTCGAGCAGTTCGACGCGGACCTGGCGGACGAGTCGCTGCACGCCCGCGTCCGCGACCACGCCGAGAGCGCCCGCCTCAGCGGGGCCCGGGGCACGCCGACCTTCTTCCTGGACGGCGTGCGCCACCAGGGTCCGCACGACGCCGCGACGCTCATCGCCGCGATCGAGGAGCTGGACGCCGCGGGGCGGACCGGGCGCTGAMARLDLTQRLRTDTGAAVLLLSVTLLALLWANSPLSGAYSALWETAVNLEIGDLAFDMDLHHWVNDGLMVLFFFVVGLEVRQELSVGSLRRRSQRLVPLVAGTAGVVVPALIYLAIAGGTAPEGWGAVVGTDTAFLLGVLALVGPRMSNQLRVFLLTLSVVDDFLAVTIIGVVYSEDVRIGPLLIAAACLGALWLLGRMREWRSTPYVVVVVVLWGATMQAGVHPSIAGMLAGLLVPAALTRRADVVRTKNLYRAYWQSPSASVARDVHLGLSRSISVNHRLHEVLNTPVNVVVVPLFALANAGIDLRGGALGEALASSITWGVVGGLVVGKLVGISLGTWAAVRAGLGTLPDGVGPGSVLGGAALSGIGFTVSLLVIGLAFDDESQVQAATVGVLLALVLASLVAWALFRLARVRWGEETADLPTTLDPPVDPRHDHVQGEPDAPHTIVEYLDYECPFCARATGMWRDLRDELDGRVRYVVRHLPLDDVHPHAHLAAVAAEAAHRQGRFWDMHHHLFAHQSRLEAEDLRGYADELGLDVEQFDADLADESLHARVRDHAESARLSGARGTPTFFLDGVRHQGPHDAATLIAAIEELDAAGRTGRPGPT0013935_23DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313NANA
AK018_02541981iolS_1COG0667Aldo-keto reductase IolSATGCATATCCGCACCCTCGGACAGGGCCTCGAGGTCTCGGCGGTCGGTCTCGGCGCGATGGGCATGTCGCAGTCCTACGGCCCCAACCCGGGCAGCCGCGACGACATGGTCGCCGTGCTGCGCGGTGCCGTGGAGCGCGGCGTGACCTTCGTCGACACCGCCGAGGTGTACGGCCCGTACGTCAACGAGGAGCTCGTCGGCGAGGCCCTCGCGCCCCTGCGCGACCAGGTGGTGATCGCGACCAAGTTCGGGTTCGACATCGCCGGCGGCGGGGGCCTGGACAGCCGCCCGGAGCAGATCCGGCGCGTGGCCGAGGAGTCGCTGCGCCGACTGCGCACCGACCGGATCGACCTCTTCTACCAGCACCGCGTCGACCCGCAGGTCCCGATCGAGGACGTCGCGGGCACGGTCGGCGAGCTGGTCGCCGAGGGGAAGGTCGGCCACCTGGGCCTGTCCGAGCCGGCGGCCACGACGATCCGACGTGCGCACGCCGTCCACCCCGTCACGGCCGTGCAGAGCGAGTACTCCCTGTGGACGCGCGACCCCGAACCGGACGTCCTGCCCACCCTGGCCACGCTCGGTATCGGGTTCGTCCCGTTCAGCCCGCTCGGCAAGGGGTTCCTCACCGGCACGGTCGACGCCACGACCTCCTTCGCCGACGGCGACATCCGCACCACGATCCCGCGGTTCACCGCGGACAACCGGGCGAGGAACCGGACACTGGTCGACCACGTGAGGACCCTCGCGGCGGCCAAGGGCGCGACGCCCGGGCAGGTCGCCCTGGCCTGGCTGCTCGCGCAGCAGCCGTGGGTCGTGCCCATCCCGGGCACCCGCCGGATCGAGCGGGTCGAGGAGAACGCCGCCGCGACCACCGTGGCGCTGTCGGCGGACGAGCGCGCCGACCTCGACGGCCTCGCCGCACGCGTCGGGGTCCGCGGGGACCGGTACGGCGAGCAGCACCTCCGGCTCGTCGGCCGCTGAMHIRTLGQGLEVSAVGLGAMGMSQSYGPNPGSRDDMVAVLRGAVERGVTFVDTAEVYGPYVNEELVGEALAPLRDQVVIATKFGFDIAGGGGLDSRPEQIRRVAEESLRRLRTDRIDLFYQHRVDPQVPIEDVAGTVGELVAEGKVGHLGLSEPAATTIRRAHAVHPVTAVQSEYSLWTRDPEPDVLPTLATLGIGFVPFSPLGKGFLTGTVDATTSFADGDIRTTIPRFTADNRARNRTLVDHVRTLAAAKGATPGQVALAWLLAQQPWVVPIPGTRRIERVEENAAATTVALSADERADLDGLAARVGVRGDRYGEQHLRLVGRPGPT0009140_363DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275NANA
AK018_02542774hypothetical proteinATGGCCTACTTCCGACGCACCGACGCCTCGACCTTCGCCCCGACCGACCTCGTGGGCGGGGCCTGGCGCACCGACGAGCAGCACGTGGCACCCACGTTCGGTCTGCTCACCCATCTCGTCGAGACCGACCGCACCGCCCGCGGACGCGACGACCTCGCACCGGTCCGACTCACCTTCGACGTCTGGGGCCCGTACCCCCTGGCGCCCATGGACACCGTCGTGCGCGTGCTGCGTCCTGGACGCGGGGTCGAGCTCGTCGAGGCGGAGGTGTCGTGCGCAGGCCGCACGGTCGCCACGCTCCGCGCCTGGCTCGCCGGCCACGCGGACACGACCGAGCTCGCGGACGGAGCGCCGTCGGCGGTCCCCGGGCCCGACGAGACCCCCTCGTGGGACCCGACGACGGACTGGCCCGGCGGGTTCATCTCCTCGCTCGACGTGCGACGGACCCTCTCCGGCCCCGGTCGCGGCACGGCGTGGGTGCGGACGGACGTCCCCCTCGTCGAGGACGAGGAGGTCGGCGCCCTCGCACGGACCGCCGGCCTGCTCGACGTCGCGAACGGCATGACCGTCCGCGCCGACCCCCGCCGGGTCGCCTACCCCAACCTGGACCTCACCGCCCACCTGGTCCGGCACCCGACGGACGGGTGGCTCGGCCTGGACACCACCGTGACGTTCGGCTCGGGCGGGACCGGGACGACCGCCTCCGTCCTGCACGACACCGTCGGGCCGTTCGGCCGGCTGGCGCAGGCGCTCGTCGTCCGGCCGCTCGGCTGAMAYFRRTDASTFAPTDLVGGAWRTDEQHVAPTFGLLTHLVETDRTARGRDDLAPVRLTFDVWGPYPLAPMDTVVRVLRPGRGVELVEAEVSCAGRTVATLRAWLAGHADTTELADGAPSAVPGPDETPSWDPTTDWPGGFISSLDVRRTLSGPGRGTAWVRTDVPLVEDEEVGALARTAGLLDVANGMTVRADPRRVAYPNLDLTAHLVRHPTDGWLGLDTTVTFGSGGTGTTASVLHDTVGPFGRLAQALVVRPLGNANANANANA
AK018_025431023COG1063putative zinc-binding alcohol dehydrogenaseATGCGCGCATCCGTCATCTACGGCGCCGGCGATGTCCGCGTCGAGGACCTGCCGGCCCCGACGATCCAGGAGCCGACCGACGCGGTCGTCCGCGTCACCCTGGCCTGCGTGTGCGGGTCCGACCTGCACCCCTACCACTCCATGCCCGCCTCGGAGCAGGGCGTCCCGATGGGCCACGAGGCCATCGGCGTGGTCGAGGAGATCGGCGACGACGTCACCGGCGTCTCCGTCGGCGACCACGTCGTGGTCCCGTTCGCCTACGCGGACAACACGTGCTCCGTCTGCCGCGACGGCTTCCAGACCGCCTGCTCCCACGGCGGGTTCTTCTCCGGGGCCCAGGCCGAGAAGCTCCGCGTCCCGCAGGCCTCCGGCACGCTCGTGCAGATCCCGGACGACGTCGACGAGGCCCTGCTGCCCTCCCTGCTCACCCTGTCCGACGTGTACCTGACCGGCTACCACGCCGCCTTCATGGCCAAGGTGCAGCCGGGCCAGACCGTCACCGTGATCGGTGACGGCGCCGTCGGCCTGTCCGCGGTCCTCGCGGCGAAGCAGATGGGCGCCGACAAGATCATCCTCATGGGCCGCCACAAGGACCGCACCGACCTCGGCCGCGAGTGGGGCGCGACCGACGTCGTCGCCGAGCGCGGTGAGGAGGGCGTCGCGAAGGTCATGGAGCTCACCGGCGGCGAGGGCTCGCACGTCGTGCTCGAGGCCGTCGGCCACATGCCCGCCTACGAGCAGTCGTACGGCGTGGTCCGCCCCGGGGGCGTCATCTCCCGCGTCGGCGTGCCCCAGTACGAGGAGGCCCCCGTCGGGTTCATGTCGCTGTTCGGCAAGAACGTCACCCTCAACGGTGGCCCCGCCCCGGTGCGCGCCTACCTCGAGGCCGCCATCCCGCAGGTGCTCGACGGCACCATCGAGCCCGGCAAGGTCTTCGACGCCGAGGTCTCCCTCGACGACGTCGCCGAGGGCTACCGGCTGATGGACTCGCGCGAGAAGATCAAGGTCCTCGTGCGCCCGTGAMRASVIYGAGDVRVEDLPAPTIQEPTDAVVRVTLACVCGSDLHPYHSMPASEQGVPMGHEAIGVVEEIGDDVTGVSVGDHVVVPFAYADNTCSVCRDGFQTACSHGGFFSGAQAEKLRVPQASGTLVQIPDDVDEALLPSLLTLSDVYLTGYHAAFMAKVQPGQTVTVIGDGAVGLSAVLAAKQMGADKIILMGRHKDRTDLGREWGATDVVAERGEEGVAKVMELTGGEGSHVVLEAVGHMPAYEQSYGVVRPGGVISRVGVPQYEEAPVGFMSLFGKNVTLNGGPAPVRAYLEAAIPQVLDGTIEPGKVFDAEVSLDDVAEGYRLMDSREKIKVLVRPPGPT0006375_884DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
AK018_02544513hypothetical proteinATGGACGAGCGCAGCGAGCCTCCCCGGACCGGCACCACCGCGCGAGACGTGACGTGGGCCCTGGCCGCCCTGACGTACCTGGGGTTCCTGGCCCTGCTCACGCTCACGCCCCGGCCGTGGGGGCGGGACGTCGACCAGGTGCCGTTCGGCGTGCTCAACCCCGCCGCCTGGCTCTCGTCCGCCACGTGGACCACGGGGACGGCGCGCGAGTTCGTCCTCAACATCCTGCTGTTCGTGCCGGCCGGCCTGCTGGCCGCGCGGTTCCGCGGGGCGTGGGGACTGGCCGCCGCCGTGCTGCTCACCGGTGCCGTCGAGGTCGCCCAGATCCCGCTGGCCAACCGGCTGTCGGACCCCCGCGACATCGTCGCCAACGTCGGCGGCGCCCTGGTCGGCCTCGCCCTCGGTGCCGCCTCGCGGTCCGGCGCGCCACCGCCACCACCACCGCGGCCGCCGACCGGGCGGGCGACCGCCGACCCGTCGGCCTCTGAGGGGGACCGCCGGAGCAGGTACTGAMDERSEPPRTGTTARDVTWALAALTYLGFLALLTLTPRPWGRDVDQVPFGVLNPAAWLSSATWTTGTAREFVLNILLFVPAGLLAARFRGAWGLAAAVLLTGAVEVAQIPLANRLSDPRDIVANVGGALVGLALGAASRSGAPPPPPPRPPTGRATADPSASEGDRRSRYNANANANANA
AK018_02545456hypothetical proteinATGACGATCGCCACGACCCGACCGGAGACCGACGCGCTGCCCACCGGTGGCGTCGTCCACCTGCTCGGCGAGGAGGTCCCGGCCCCGGCGTGGCTCGTCCAGGTCGGTGACGACGTCTACCTGCGCTCGGCCGAGCCTCGTTCCGTCGTCGACGCCCGCGGTCGCGGTCGCGTCCGGGTCGGCAGCGCGGAGCACTTCGTCGTGCTGAGCGAGGTCGCGCCGGAGATGCACGACGTGCTCGACGACGCCTTCCGCGCCACCTACGGCCGGTGCCGTCCGGAGCAGGTCGCCGCGATGGTGTCCGACGACGCCGCCGCCTCGACGTACCGGCTGCGGCAGCGCCGTCCGACCGTCGCCGAGCGCGTCGCGGACCGGCTGGGCGCCTGGCAGCAGCGGGCCCGGGTCGCGCGGGACGTGGCGGTCACGGACCGCACGCCGTGCCCGTGCTCGGCCTGAMTIATTRPETDALPTGGVVHLLGEEVPAPAWLVQVGDDVYLRSAEPRSVVDARGRGRVRVGSAEHFVVLSEVAPEMHDVLDDAFRATYGRCRPEQVAAMVSDDAAASTYRLRQRRPTVAERVADRLGAWQQRARVARDVAVTDRTPCPCSANANANANANA
AK018_025461095hypothetical proteinGTGCCGACGACACCGTCCCGGGCCGCGGCCGCCACCGTGCTGGCCGGACTGCTGCTGACCGCGTGCAGCGCGTCGGACGACGGCGGCGGCCCCGACGGCGCCGCCCCGGAGAGCGCCGCGAGCTCGCTGCCCGCCTCCCCCACCGGCGAGGCGTCGACGGTCGCGACCGGGCTGGCCGCCCCGTGGTCCGTGACGTTCGTCGAGGGCACCCCGCTGGTCAGCGAGCGCGACAGCGCGCGGATCCTCGAGCTCGCGGACGACGGCGCGGCCCGGGAGGTCGGGGTCGTGGCCGGCGTCGACACCGCCGGCGAGGCGGGGCTGCTCGGTCTCGCGGCCCACGACCGCCGGCTGTACGTCTACTCCACGGCGAGCGACGGCAACCGCATCGAACGGTACGACCTCGACGGTGAGCCCGGCACCTTCACGCTGGGTGACCCCGTCACCCTCGTCGACGGCATCCCCGCCGCCCGCTTCCACGACGGCGGACGGCTCGCGTTCGGCCCCGACGGGATGCTCTACGCCACGACCGGCGACGCCGGGGACCCGGACCGGGCGCAGGACCCGGACTCGCTCGCCGGCAAGATCCTGCGGATGACGCCCGACGGCGGACCTCCGGACGACAACCCCTTCCCGGGCTCGCTCGTCTACAGCCTGGGCCACCGCAACGTGCAGGGGCTGGCGTGGGCCGACGACGGCACCCTGTTCGCGACCGAGTTCGGGCAGAACACCTGGGACGAGCTCAACGTCGTCGAGCCCGGCGCGAACTACGGCTGGCCGGAGGTCGAGGGAGCCGCGGGCGTCGCGGAGTACGTCGACCCGGTCCAGCAGTGGCGCCCCGGCGACGCCAGCCCCAGCGGGCTGGCCCACCTGGACGGCACGCTGTTCGTCGCGAACCTGGGCGGCGAGGTGCTGCGGGCCGTGCCCGTCGACGACCCGGCCACCTCCGCCGTCGTCGTCGAGGACGAAGGACGTCTGCGCGACGCCGTCGTCACGCCGGACGGCGAGCTGTGGATCGTCACCAACAACACCGACGGGCGGGGTTCACCCGGGCCGGACGACGACCGGGTCCTGCAGCTCGAGGTCGCCGGCTCCTGAMPTTPSRAAAATVLAGLLLTACSASDDGGGPDGAAPESAASSLPASPTGEASTVATGLAAPWSVTFVEGTPLVSERDSARILELADDGAAREVGVVAGVDTAGEAGLLGLAAHDRRLYVYSTASDGNRIERYDLDGEPGTFTLGDPVTLVDGIPAARFHDGGRLAFGPDGMLYATTGDAGDPDRAQDPDSLAGKILRMTPDGGPPDDNPFPGSLVYSLGHRNVQGLAWADDGTLFATEFGQNTWDELNVVEPGANYGWPEVEGAAGVAEYVDPVQQWRPGDASPSGLAHLDGTLFVANLGGEVLRAVPVDDPATSAVVVEDEGRLRDAVVTPDGELWIVTNNTDGRGSPGPDDDRVLQLEVAGSPGPT0017700_901DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_ALDOSE_DEGRADATION,PGPT0017700-yliI-K21430NANA
AK018_02547333hypothetical proteinATGACGACGACACCGCGGACCTCCGCACCCGGCCTCCTCGCCCACGCCCTCGGCGCGGCACTGCTGGTCAACGCCGTCCCGCACACGGTGCACGGCCTGGCCGGCGAGCCCTTCCCGAGCCCGTTCGCGGACCCGCCGGGCGTCGGGGACTCGACCCCGGTCGAGAACATCGTGTGGGGCGGCCTCAACGCCGTCGTGGGCGGTGCGCTGCTCCGGGGCGTCGAGGGGTCCCGTCCCCGGACGCGGGTGGACACGGCCGTCACGGTGGCGAGCGGTCTGGCCACGGCGTTCGCCGTCGCCCGCTACTTCACCGCGGCCCGCCGCCGGGACTGAMTTTPRTSAPGLLAHALGAALLVNAVPHTVHGLAGEPFPSPFADPPGVGDSTPVENIVWGGLNAVVGGALLRGVEGSRPRTRVDTAVTVASGLATAFAVARYFTAARRRDNANANANANA
AK018_02548624hypothetical proteinATGGAGCCACGCGAGGTCTCGCAGCCGCCCGGTCGCCGCCACTCCCGCACGTGGGTGTTCGGCGGGATGCTGTTCTCCGCGCTGATCAGCCTGACCGCCTCCCTGGTGCTGTCGATCGACGCCGTCGTGCTGGCCGCGGACCCCGGCACGGAGCTGTCCTGCGACATCAACACGGTGCTCTCCTGCGGCAGCGTCGCGCTGTCGTGGCAGGCGCAGCTGCTCGGGTTCCCCAACGCCTTCCTCGGGCTCATCGCCGAACCCGTGGTCATCACGATCGCGGTCGCCGGCCTCGGTGGCGTCCAGTTCCCCCGCTGGTTCATGGCCGCGGCGCAGGGCGTCTACACGATCGGGCTGCTCTTCGCCTACTGGCTGTTCGCGCAGTCGTACTTCGTCATCCACGCGCTGTGCCCGTGGTGCCTGCTCGTGACGCTGTCCACCACGGTCGTCTTCATGACCCTCCTGCACTGGAACATCATGGAGAACAACCTGTACCTGCCCCGGCGGGTGCAGCGCTGGGCCCTGTCGATGATCCGTATCGACGCCGACGTCTACCTCACCGCGGCGTGGATCATCCTCCTGGTCGCCGCGGTGCTGCTGCGGTACGGCAACGCCCTGCTCGGCTGAMEPREVSQPPGRRHSRTWVFGGMLFSALISLTASLVLSIDAVVLAADPGTELSCDINTVLSCGSVALSWQAQLLGFPNAFLGLIAEPVVITIAVAGLGGVQFPRWFMAAAQGVYTIGLLFAYWLFAQSYFVIHALCPWCLLVTLSTTVVFMTLLHWNIMENNLYLPRRVQRWALSMIRIDADVYLTAAWIILLVAAVLLRYGNALLGNANANANANA
AK018_025491020rbsR_2COG1609Ribose operon repressorGTGGCCACCATCGGTGACGTTGCCAAGGTCGCGGGAGTGTCCCGCAGCACGGCGTCGTACGCACTGTCCGGCAAGCGGGCGATCTCGCACGACGTCCGTCGTCGTGTCGAGGACGCCGTCCGGCAGCTCGGGTACACGCCGAACGCCGGCGCGCGCGCCCTGGCCACCTCGCAGACGCGGGTGATCGGTCTCCTCGCCCAGTTCTTCGACGACGAGTTCGCCCCCGCGATGATGCAGTACATCCGCGGCGTGACCGACACCGCCCGCGAGCTCGGGTACGACACCCTGCTGGTCTCCGAGGCCGACGGCCCGAACGCCCTGCGCCGCATCACCGACTCGCGCATGGTCGACGGCGTCGTCCTGCTCAACGTCGCCGAGCAGGACGACCGGCTGCCCGTGCTGCGCACCGCCGGCGCCCCGGGCGCCCTGGTCGGGCTGCCGCGCGACACGACCGGCGTCGACGTCTTCGACCTCGACTTCGAGGAGGCCGGCCGCGCGATGGTCGACCACCTCGCCGCGCTGGGGCACCGCGAGCTGCTGCTCGTCTCCCAGCCCGACCACGTCGTCGAGCGCGGCGGCGCGTACGTGTGGCGACTGCGCGACGCCGCCGTCGCCCAGGCCGCGCTGCGCGGGGTGCGTCTGCACACCGCGTCCGCCGCCGCTCACCAGCCGCAGGTCGGGTCCGACCTGCGCACGCTGCTCGAGGAGCACCCGGACGTCACCGGGCTGCTGCTCAACAACGAGGCCGCCGCGGCAGCACTGCCCAGCGTCCTGCAGACCCGCGGGCTCTCCGTCCCGGCCGACCTCTCGGTCGTCGGCCGCTTCTCGGACGAGTTCGCCCGCAACTTCTCGCTGCCGTACTCCTCCGTGGAGAGCGCCCCCGACCGGTTGGGGAGCATGGCCGTGCGCCAGCTCGTCCGCCGCATCGAGGGTGGCGGCGAGGTGACCGAACCGCACGTCGTCCGGTACATCACGCCGGAGATCGTGGACCGAGGAAGTACGGACCGACCGCGCGTCTGAMATIGDVAKVAGVSRSTASYALSGKRAISHDVRRRVEDAVRQLGYTPNAGARALATSQTRVIGLLAQFFDDEFAPAMMQYIRGVTDTARELGYDTLLVSEADGPNALRRITDSRMVDGVVLLNVAEQDDRLPVLRTAGAPGALVGLPRDTTGVDVFDLDFEEAGRAMVDHLAALGHRELLLVSQPDHVVERGGAYVWRLRDAAVAQAALRGVRLHTASAAAHQPQVGSDLRTLLEEHPDVTGLLLNNEAAAAALPSVLQTRGLSVPADLSVVGRFSDEFARNFSLPYSSVESAPDRLGSMAVRQLVRRIEGGGEVTEPHVVRYITPEIVDRGSTDRPRVPGPT0014791_180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_025501272hypothetical proteinATGCGAAAGTACACCCTGCGGGGTGCCGGGATCCTGGGGGTCACCGGCCTCACGTTCGCGCTGGCCGCCTGCGGATCCAGCGACGACGGCTCGACCGGCGCCGACGGCGGCGAGTCCGGTGACGCGCCGGGCGGCACCTACACCTGGTGGGACCCGTACCCCCAGCACGACGGCTCCTCCGACTGGGAGGCCCGCGTGCAGGCCTGCGGTGAGGACGCCGGCGTCACCATCGAGCGCACCGCGTACGACACGACCGCGCTGACCAACCAGGCGCTGCTGTCGGCCCAGGAGGGCACGTCGCCCGACGTCATCCTCATCGACAACCCGGCCGTGTCCACGCTCGCCGACACCGGCATGCTGACCACGGTCGACGAGTTCGGGCTGGACACGTCCTCGATCGACCAGAACCTGCTGGACGCGGGCGTCGTCGACGGGAACGCCTACGGCATCCCCATCGGCGCCAACACGCTCTCGCTGTACTACAACGCCGAGATCCTGGACGAGGCCGGTGTCGACCCCGCGTCGATCACCGACTGGGACTCGCTGACCGCCGCCCTCGAGCAGGTCACCGGCGCCGGGAGCAAGGGCATCACCTTCTCCGCCATCGGAACCGAGGAGGGCACCTTCCAGTTCCTCCCGTGGTTCTGGGGCTCCGGTGCCGACCTGGGCCAGCTCGACTCGCCGGAGGCCGTCGAGGCCCTCGAGCTGTGGAAGGGCTGGCTGGACGAGGGCTACGCGCCCAACACCGTGATCAACAACTCCCAGAACACCGTCTGGGAGGAGTTCCTCACCGGTGACTTCGCGTTCGCGGAGAACGGCACCTGGCAGGTCAACAGCGCCGCCGAGGCCGAGTTCGAGACCGGTCTGGTCCAGCTCCCGGCCAAGGACGGCGGCGTCGCCCCCGCGCCGACCGGTGGTGAGTTCATCGTCGCGCCCGTCCAGGAGGACACCGCGCGCTACGACGTGACCCGCCAGATCGTCGAGTGCATGACGACGCCGGAGGGCTTCGTCGAGACGGCGAACACCTTCGCGTACTACATCCCGCCGACGGCCGAGGGCCAGGAGGCGCTCCTCGAGGAGAACCCCGACCTGGAGCCCTGGGTCGAGGCCGTGCAGAGCGCCAAGGGCCGCACCAGCGACGGTCTGGGGACCGACTACCCGCTGATCTCCGAGGCGCTGTGGACCGCCGTCCAGAACGCCATGTCCGGGGCGGCGACCCCCGCCGAGGCCCTCGAGACGGCGCAGGCCGACGCCGAGGCCGCCACCAGCTGAMRKYTLRGAGILGVTGLTFALAACGSSDDGSTGADGGESGDAPGGTYTWWDPYPQHDGSSDWEARVQACGEDAGVTIERTAYDTTALTNQALLSAQEGTSPDVILIDNPAVSTLADTGMLTTVDEFGLDTSSIDQNLLDAGVVDGNAYGIPIGANTLSLYYNAEILDEAGVDPASITDWDSLTAALEQVTGAGSKGITFSAIGTEEGTFQFLPWFWGSGADLGQLDSPEAVEALELWKGWLDEGYAPNTVINNSQNTVWEEFLTGDFAFAENGTWQVNSAAEAEFETGLVQLPAKDGGVAPAPTGGEFIVAPVQEDTARYDVTRQIVECMTTPEGFVETANTFAYYIPPTAEGQEALLEENPDLEPWVEAVQSAKGRTSDGLGTDYPLISEALWTAVQNAMSGAATPAEALETAQADAEAATSPGPT0016545_8361DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_02551984lacF_2Lactose transport system permease protein LacFATGACCAGCACCCCGGCAGACGTCGGGACGCGCGGGGAGTCGCGCGGCGCGGCGGGCACCGAGCCCGCCGCGCCGTCGGCCCCCCGACGCCGACGGACGCTGAGCTCGAGCCAGTGGGCCGCGGTCGGCTTCGCCGCACCGCTCCTGGTGTACCTCGTGCTCTTCTACGCCTACCCGCTGATGCGGAACATCGACCTGTCGGTGCACGACTACACGATCCGCGCGTTCGTGCAGGGCAACGCCGAGTTCGTGGGGCTGCAGAACTACGTCGACGTGTTCAGCTCGTCGACGTTCCCGACAGCCCTGTGGAACACGGCCGTGTTCACCTTCGGGTCGATCGCCTTCCAGTTCACGCTCGGCCTCGCCCTGGCCGTGTTCTTCAAGTCGAGCTTCCGGCTGTCGACCACCCTGCGGGCCATGTTCCTCGTGCCCTGGCTGCTGCCGCTGATCGTGTCGGCCTCCACGTGGGCCTGGATGCTCAACAGCGAGAACGGCATCGTCAACTCGGTGATCACGGCCTTCGGCGGCGAGCAGATCAACTGGCTCACCGACCCCGACACGGCGCTGCTGTCCGTGACGATCGCCAACATCTGGCTCGGCATCCCGTTCAACCTGGTCATCCTGTACTCGGGGCTGCAGAACATCCCCGGGGACGTCTACGAGGCCGCGTCCCTCGACGGCGCCGGTGCCTGGCGGCAGTTCTGGTCCATCACCTTCCCGCTGCTGCGCCCGGTGTCCGCGATCACGATCCTGCTCGGGCTGATCTACACGCTCAAGGTCGTCGACGTCATCTGGGTCATGACGACGGGCGGGCCGGGCGACTCGTCCACGACGCTCGCCATCTGGTCCTACCGGGAGGCGTTCGGCACGGGGCAGCCCGACTTCTCGCCGGCCGCCGCCGTCGGCAACCTGCTCATCGTCATCGCGCTGGTGTTCGGGTTCCTGCACCTGCGCCTCCAGCACCGACAGGAGGCCACGTCATGAMTSTPADVGTRGESRGAAGTEPAAPSAPRRRRTLSSSQWAAVGFAAPLLVYLVLFYAYPLMRNIDLSVHDYTIRAFVQGNAEFVGLQNYVDVFSSSTFPTALWNTAVFTFGSIAFQFTLGLALAVFFKSSFRLSTTLRAMFLVPWLLPLIVSASTWAWMLNSENGIVNSVITAFGGEQINWLTDPDTALLSVTIANIWLGIPFNLVILYSGLQNIPGDVYEAASLDGAGAWRQFWSITFPLLRPVSAITILLGLIYTLKVVDVIWVMTTGGPGDSSTTLAIWSYREAFGTGQPDFSPAAAVGNLLIVIALVFGFLHLRLQHRQEATSPGPT0016535_834DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_02552819dasC_5COG0395Diacetylchitobiose uptake system permease protein DasCATGACCGAGCGCAAGGTCTGGTGGAAGACGGCTCTGGGTCTCGTCTTCACCGCGCTGATGCTGTTCCCCGTCTACTGGATGGTGAACGTCTCCTTCACCCAGACGCGCGACCTGCGCGCGGACCCGCCCCACTGGTTCCCCTGGGACCCCACCTTCGAGGGCTACGAGGCGGTGTTCGCCCAGCAGCTGCCCGCACTGGGCACCAGTCTGCTCATCGGGCTCGGCTCGGTGCTGCTCACCGTGGTGATCGCCGCTCCGGCCGGCTACGCGCTGGCGCTGCTGCACCTGCGGGGCGGCCGCACGCTGAACTTCCTGCTGCTGGTGGCGCAGATGATCCCCGCCGTCGTCATGGCGATGGGCTTCTACGCCGTCTACAACAACCTCGGGCTGCTCAACACGATCCCGGGGCTGATCGTGGCCGACTCGACGATCGCGGTGCCGTTCGGCGTGCTGCTGTTCACGGCGTTCATGTCCGGCATCCCGCGCGAGCTGCTGCAGGCCGCGCGGGTCGACGGGGCGGGGGCGTGGCGCACCTTCTGGGAGATCGTCATGCCGATGTCGCGCAACTCGGTCCTGACGGTGTCGCTGTTCGCGTTCCTGTGGGCCTGGTCGGACTTCATCTTCGCCTCGACGATCAACCGCAACGGCGATCTCATCCCGATCACCCTGAGCATCTACAACTACATCGGCAACAACACGACGCAGTGGAACGCGATCATGGCGACGGCCGTCGTCGCCTCGATCCCGGCGGCGATCCTCCTGGTGATCGCTCAGCGCTACGTCGCCGCGGGTGTGACCGCGGGCGCCATCAAGGACTGAMTERKVWWKTALGLVFTALMLFPVYWMVNVSFTQTRDLRADPPHWFPWDPTFEGYEAVFAQQLPALGTSLLIGLGSVLLTVVIAAPAGYALALLHLRGGRTLNFLLLVAQMIPAVVMAMGFYAVYNNLGLLNTIPGLIVADSTIAVPFGVLLFTAFMSGIPRELLQAARVDGAGAWRTFWEIVMPMSRNSVLTVSLFAFLWAWSDFIFASTINRNGDLIPITLSIYNYIGNNTTQWNAIMATAVVASIPAAILLVIAQRYVAAGVTAGAIKDPGPT0016540_6359DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_025531941hypBA1_2Non-reducing end beta-L-arabinofuranosidaseGTGACCGAACCGACGATGACCGACACCACCCCGGCGTCCGTGCTGGCGCGTCCGGTGGTCCCCGCACCGACCTCCGGTGCGACAGCTCGCGGGCTGGGCCTCGGCGAGGCCCACCTGCGCGGCGGGTTCTGGGGCGAGCTCCAGACGACCAACACCGCGGCGACGTTCGACCACTGCCTGCAGTGGATGGAGCACCTGGGCTGGCTGGCGAACTTCGACCGCGTGGCCTCCGGCACGACGTCGACGGAGCGTCCGGGCTGGCAGTTCTCGGACTCCGAGGTCTACAAGCTCCTCGAGGGGCTGGCCTGGGAGTTCGGGCGCACGAAGGACCCGCGGGTCGACGCCACCGTGCGTGCGCTGACCGAGCGGATCGCCGCGGCGCAGGACGAGGACGGCTACCTCAACACCTGCTACGGCCACGCCGCGCAGCAGCCCCGCTGGAGCGACATGGCCATGGGCCACGAGCTGTACTGCGTGGGCCACCTGCTGCAGGCGGCGGTGGCGCGGTACCGGACGGTGGGCGACGACCCGCTGGTCGAGGTCGCTCGCCGGGCGGCCGACCAGGTCTGCGCCGAGTTCGGTCCCGACGGACGCGACGGCCTGTGCGGGCACCCGGAGATCGAGGTCGGTCTGGCCGAGCTCGGCCGGGCGCTCGGCGAGCCGCGGTACACGGCCCAGGCCGGTCTGTTCCTGGACCGGCGCGGCCACGGCCGGCTCGCCCCGATCCCGCTGCTCGCCCCGACCTACTACCAGGACGACGTCCCGGTGCGGGAGGCCGACGTCTGGCGCGGCCACGCCGTGCGTGCCCTGTACCTGGCCGCCGGCGCGGTGGACGTCGCCCTGGACACCGGTGACACCGAGATGCTCTCGGCCGTGCAGCGCCAGTGGGACCGCACCGTGGAGCGTCGCACCTACCTCACCGGCGGCATGGGCTCGCGCCACCAGGACGAGGGCTTCGGCGACGACTGGGAGCTGCCGCCGGACCGCGCCTACTGCGAGACCTGCGCGGGCATCGCCTCGGTGATGGTCTCGTGGCGGCTCCACCTCGCCACGGGAGACGTCCGGTACGCCGACCTCATGGAGCGCACGTTCTTCAACGTCGTGGCGACCTCGCCGCGGGGTGACGGCCGCGCGTTCTTCTACGCCAACCCGCTGCACCAGCGCGAGGCGGGCGAGGACGTGCCGATGGACGCGGAGAACCCGCGGGCCGAGGGCGGCGTGCGCGCCCCCTGGTTCGAGGTCTCCTGCTGCCCCACGAACATCGCCCGCACGTTGGCGTCGTGGCACACCTACCTGGCCGCGGTCGACGGTGACACCGTCTCGCTGGTGCAGTACGCCGCGGCCGACCTGCGGGTCGCCCTCGACGACGGTGCCGCCGTGGCCCTGTCGGTGTCCACCGACTACCCGGTCTCCGGCCGGGTCACGGTGGACGTCACCGAGGCGCCCGGACGTCCCGTCACGCTCCGGCTGCGGGTGCCGCACTGGGCCGACGGCGCGACCGTGAGCACCGACGGCGGCGCCCCCCGCGCCGTCGCGCCCGGCTGGGCGGACGTGACGGTGGCGACCGGCAGCACCGTGGTGCTGGAGCTGCCCGTGGCGCCGCGGCTGACCTGGCCGGACCCGCGGGTCGACGCCGTGCGCGGGTGCGTCGCCGTCGAGCGGGGGCCGCTGGTGCTCTGCCTGGAGTCCACGGACCTGCCCGACGGTGTCGACATCGACCGGGTCCGGATGGACACGTCGATCGCCCCGGTCGCCGCCGGGGACGGGGCGCAGGTGCGCGCGGTCGTGCCGCCGGACTTCGCCCAGCCCGCCGGGCGTCCGCCGTTCGGCCCCCCGGCGCCGCCGGCGGGCGGCGAGCCGGTCGACCTGCCGCTGGTCCCGTACCACCGGTGGGCCGAGCGCGGACCCTCGACCATGCGCGTCTTCCTGCCCACCGTCTGAMTEPTMTDTTPASVLARPVVPAPTSGATARGLGLGEAHLRGGFWGELQTTNTAATFDHCLQWMEHLGWLANFDRVASGTTSTERPGWQFSDSEVYKLLEGLAWEFGRTKDPRVDATVRALTERIAAAQDEDGYLNTCYGHAAQQPRWSDMAMGHELYCVGHLLQAAVARYRTVGDDPLVEVARRAADQVCAEFGPDGRDGLCGHPEIEVGLAELGRALGEPRYTAQAGLFLDRRGHGRLAPIPLLAPTYYQDDVPVREADVWRGHAVRALYLAAGAVDVALDTGDTEMLSAVQRQWDRTVERRTYLTGGMGSRHQDEGFGDDWELPPDRAYCETCAGIASVMVSWRLHLATGDVRYADLMERTFFNVVATSPRGDGRAFFYANPLHQREAGEDVPMDAENPRAEGGVRAPWFEVSCCPTNIARTLASWHTYLAAVDGDTVSLVQYAAADLRVALDDGAAVALSVSTDYPVSGRVTVDVTEAPGRPVTLRLRVPHWADGATVSTDGGAPRAVAPGWADVTVATGSTVVLELPVAPRLTWPDPRVDAVRGCVAVERGPLVLCLESTDLPDGVDIDRVRMDTSIAPVAAGDGAQVRAVVPPDFAQPAGRPPFGPPAPPAGGEPVDLPLVPYHRWAERGPSTMRVFLPTVPGPT0019100_932DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955NANA
AK018_025542103hypothetical proteinGTGACCACACCACCTGTCCCCGGTGACCTGTCCCTGCAGGTCGACGGTGCGCGGCTGACCTGGCGCGGCGAGGGCGAGACGCTGGTCGTCGAGCCGTGGGGCGCCGACGCCGTCCGCGTGCGCTCGACGCTGCAGGGCGACGTCGAGGACGCCGACTGGGCGCTGCTCGCGCCGGCGGCGTCCGACGCCCGCGTCCAGACCCGCGCGGACGGGGCGACCCTGACGGTCGGCCGGCTGCGGGTCGAGCTCACGGTGGCCGCCTGGTTCCACGAGATCGTGGGGTACGAGGTGACCCGGTGCGACCTGGCGTTCTACGACGCCGTCGACGGCCGTCTGCTCCTGCGCGAGCAGGACCGGGGCGGGTCGCTCAACCTCACCGCCCGTCGGCTGCGGCCACGGCTCGGCGGGGACCTCGAGCTCACGGCGTCCTTCGAGACGCCGGCCGACGAGAAGCTCTACGGCATGGGCCTGTACCAGCAGGACCTGCTGGACCTGAAGGGCTCCACCCTGGAGCTGGCCCACCGCAACTCCCAGGCGAGCGTGCCGTTCGTGCTGTCCAGCGCGGGTTACGGGTTCCTGTGGCACAACCCCGCCGTCGGCCGGGCGACGTTCGGGCGCAACCGGACCGAGTGGACCGCGGAGTCGACGCGCCGGCTCGACTACTGGGTGACGGCGGGGGACTCCCCGGCGGCGATCACGCGCGCCTACGCGGACGCCACCGGTCACGCCCCGATGATGCCGGAGCGGGGTCTGGGGTTCTGGCAGTGCAAGCTGCGCTACACCTCGCAGGACGAGCTCCTGGCGGTCGCGCGCGAGCACACGCGGCGCGGGCTGCCGCTGGACGTGATCGTCGCGGACTTCTTCCACTGGCCCCGCATGGGCGACTTCCGGTTCGACGAGGAGTTCTGGCCGGACCCGCAGGCGATGGTCGACGAGCTGGCCGAGATGGGCGTCGAGCTCATGGTGTCGGTCTGGCCGCAGATCGCCACGACGTCGGAGAACTACTCCCACCTGCGGCGGAACAACCTGCTGGTCCGGGCCGAGCGCGGTCCGGACGTGCACATGGCGTTCCAGGGGCCCAGCGCGTTCCTCGACGTGACGAACCCCGAGGCGCGGCGTTGGTTGTGGGACACGTGCCGCGAGAACTACGGCCGGTACGGGATCCGCACGTTCTGGCTGGACGAGGCCGAGCCCGAGTACGGCGTCTACGACTACGACAACTACCGCTACCACGCCGGACCGAACGTCCGGGTCGGCAACCTCTACCCGCAGCACTACGCGCGGGCCTTCGCCGAGGGCCAGTGGGCCGACGGCGAGACCGACGTGGTCAACCTGCTGCGGTGCGCCTGGGCCGGCAGCCAGCGCTACGGCGCCCTGGTGTGGTCGGGCGACATCTCCTCGACGTTCACGGACCTGCGTCGGCAGGTGGTCGCGGGCATCCACATGGGCGTGGCGGGCGTCCCGTGGTTCACCACCGACATCGGCGGGTTCCACGACGGGGACGCGACCGATCCGGACTTCGGTGAGCTGCTCGTGCGCTGGTTCCAGTTCGGTGCGTTCTGCCCGGTGATGCGCCTGCACGGCGACCGGCTGCCGTACCGCGAGGTGACCGCGGCCGACGGGTCGCCGCGGCTGCGCAGCGGCGGGCCGAACGAGCTGTGGAGCTTCGGCGAGGAGGTGTACGCCGTCCTCGAGCGCTACGTCCACCTGCGCGAGGACCTGCGCGGCTACGTCCGCGAGGTCATGCGGACGGCCCACGCCGACGGCCAGCCCGCCATGCGCGGGCTCTTCCACGACTTCCCCCACGACCCGGCGTGCTGGGACGTGGCGGACCAGTTCCTGCTCGGTCGCGACCTGCTGGTCGCGCCCGTGCTGGAGGCCGGTGCCCGCGAGCGCGCGGTGTACCTGCCGGCCGGCGCGCGGTGGACCGACGCCGCGAGCGGTGCGGTGCACGACGGCGGGACCACCGTCGTCGTCGACGCACCCCTCGACGTGGTGCCGGTGTTCCTGCGCGACGGCGCGCTCGGCGACCTGGTGGGTCGGACTGCCGGACGGACCGCGGGTCGGTCCGGGTCCGTGACCGCGGGTTCGCCGGTGAGCTGAMTTPPVPGDLSLQVDGARLTWRGEGETLVVEPWGADAVRVRSTLQGDVEDADWALLAPAASDARVQTRADGATLTVGRLRVELTVAAWFHEIVGYEVTRCDLAFYDAVDGRLLLREQDRGGSLNLTARRLRPRLGGDLELTASFETPADEKLYGMGLYQQDLLDLKGSTLELAHRNSQASVPFVLSSAGYGFLWHNPAVGRATFGRNRTEWTAESTRRLDYWVTAGDSPAAITRAYADATGHAPMMPERGLGFWQCKLRYTSQDELLAVAREHTRRGLPLDVIVADFFHWPRMGDFRFDEEFWPDPQAMVDELAEMGVELMVSVWPQIATTSENYSHLRRNNLLVRAERGPDVHMAFQGPSAFLDVTNPEARRWLWDTCRENYGRYGIRTFWLDEAEPEYGVYDYDNYRYHAGPNVRVGNLYPQHYARAFAEGQWADGETDVVNLLRCAWAGSQRYGALVWSGDISSTFTDLRRQVVAGIHMGVAGVPWFTTDIGGFHDGDATDPDFGELLVRWFQFGAFCPVMRLHGDRLPYREVTAADGSPRLRSGGPNELWSFGEEVYAVLERYVHLREDLRGYVREVMRTAHADGQPAMRGLFHDFPHDPACWDVADQFLLGRDLLVAPVLEAGARERAVYLPAGARWTDAASGAVHDGGTTVVVDAPLDVVPVFLRDGALGDLVGRTAGRTAGRSGSVTAGSPVSPGPT0019340_1047DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0019340-xylS|yicI-K01811NANA
AK018_025553903hypothetical proteinATGAGGACGACACCTCCGCGGCGCTCGCCGCGGCGCACGACCGCGGCGCTGACCGCGGCGACGATGCTCGGTGCCGGTGTGTTCGGCGGGGCTGTCGCGGCCCCCGCGGCCGCCGCCACGCCCGACCCGGACCTGCACTACGCGATGGACGACGTCACGGACACCACGGTGCCGGACTCGTCGGGCAACGGCCTCGACGGGACCCTGGCCGGGGACACCGCCCTGACCACGGCCGCCGACGGGTCCGCCGACGCCGCCCTGGACCTGCTGGGCGGCCACGTGGTCATCCCGCGCGACGCCATCGACGGCGCCGCCGACCTGACCGTCTCCGCCCAGGTGCGCTGGGACGGCGAGGGCGGGCCCTGGCAGCGGGTCTTCGACCTCGGGACCGACACGTCCCGCTACCTGTTCACCACGCCGTCGAACGGCGGGGACCTGCGCACGGCCGTCACCAGCGGCGGCGCCGGCGGCGAGTCGCAGATCACCGGGCACGGGCCGCTGGAGGCCGGGGACTGGGTCACCCTGACCGTCACCCTCGACTCCGGCGCCGGCCAGATCACCACCTACCTCGACGGCGTGGCCGTCGGCTCGGCCGAGACGTCCGTGGCGGGCACCGACCTGCTCACCGACGCCGCGGCGCAGGCCGGCTACATCGGGCGGTCGTTCTACCCGGACCCGGCGTTCGACGGTGCCGTGGACGACTTCCGGATCTACCGCTCGGCCCTCAGCGCCGAGCAGGTGACCGAGCTGACCGAGGAACTCGGCGGCACGGTCCCGACGCTGGAGGGGCTGAGCACGGACGTGTTCGAGGTGCGCACCTCGGCCGGGTCGGCCCCCGACCTGCCGTCCGCCGTCCGCGCGTCGTACTCCGACGGCTACGATCGGGACGTGCCGGTCACCTGGGACGACGTCGACCCCGCCGACTACGAGACCTCCGGGACGTTCACCGTCGCCGGTGACGCGGCCGGCACGGCCGTGACCGCCGAGGTCACCGTGCACCGCGGCGAGCTGAAGGTCGACCTGGGCACCGACACCGGTGAGTTCTCCGGCGGTGCCTCCGGGCTGCTGTACGGCCTCTACGGCGAGGGCATGCCGACCGACAACCTCGTCGAGGGCATGGGCGTGCAGTCCGTGGCCACCAAGGCCCAGGACGGCGCCCAGCACCCCGGCTCCGACGCCCTCGAGGTGCTCGGACCGCTGGCCCGCACCACCGGCGGGGACGTCTACCTGCGCGTCACCGACTGGTACCGCGGCTTCCCCTACCAGTGGCCGTCGCCCGACCAGCCCGACGCCACGCCCGCCGAGAAGCTCGAGAGCTACCGCTCCGTGCTGGACGAGCAGCTCGACATGATCTCCACGCTCGACGCGGACACCCGCGAGCACCTCGTCATCGAGCCGTACAACGAGCCCGCGGGCAACATGTTCGGCACCGGAACGTGGAGCCTGGACGGCACGTCGTGGCTGTCCGACCCCACCGACTACTTCGCCGCGTGGGACGAGACGTACCGCACCATCAAGGAGCGGTTCCCGGACATGCGCGTCGCCGGGCCGGGCGCGATCGAGCTCTGGCCCCAGATCGAGGGCTGGCTGGAGCACACGGTCGCCGAGGGCACCGTCCCGGACATCGTCACCTGGCACGAGCTGACCCACCCGCAGGCCATCCGCGAGTCGGTGGCCGAGTACCGCGAGTGGGAGGCCGACGTCTTCGCCGGCACCGAGCACGAGGGCACCGAGCTCCCCGTCAACGTCAACGAGTACGCCTTCAACTACCACACCTCGGTCCCCGGTCAGATGATCCAGTGGATGTCGGCCATCGAGGACGCCAAGGTCCAGGCGATGATCGCGTTCTGGAACATCAACGGCAACCTGTCCGACTCGGCCGTGCAGACCAACCGCGGCAACGGGCAGTGGTGGCTCTACAACGCCTACAGCCGGATGACCGGCCACACCGTCGAGGTGACGCCGCCCTACCCGGGCCAGAACTACAGCCTGCAGGGCCTGGCCACGCTCGACGAGCAGCAGCGGCAGGCGCGCGTCGTCCTCGGCGGGCAGGACGGCCCCGCCCCGGTCGACCTCGTGAACGTCCCGTCGGACGTCTTCGGCGACGAGGTGCGGGTCACCGCCCGCGAGATCCCGTGGACCGGTCAGCTCGGCGACTCCGCCCAGCCCCGGCACCTGGCCGACCTCACCGTCCCGGTGACGGACGGCGTCGCGACCGTGGCCTTCGACGGGTCGCAGCTGCCCGAGCTGGCCGAGTCCAGCGCGTACGAGCTGATCGTCACGCCCGTCGGTGCGGGGGAGACCACGGCGTCGACCCCGACGCTGTGGCAGGGCAGCTACGAGGCCGAGGACGCCGAGTACACCGGTTCCGGCTACTCGCTCAACGGTCCCGAGGGCTCGCCGCAGGACGTGGCGAAGTTCTACACCTCCGGCGGGTACAACGTCGGTGGCCTGCGCACCGGGTCGGACGGCGTCCTCGACTTCGAGGTCACCGTGCCCGAGGACGGCACCTACGACCTGTCGGTGTTCTCCTCCACCATGAACCGCTTCGGGCTGGTCCAGGAGCAGGGGCCGACCAACGTGTTCGTCCGTGTCGACGGCGGGGCCGAGCAGGAGATCCACCTGCCGCTGGCCTACAAGTGGGTCGTGTGGGACCACGCGGACACCACCGTCGAGCTGACCGCCGGGACGCACACCATCTCGCTGGCCGCGCAGAGCCTCGACGGCTCCGGCGCCACGCAGGGTGACGCGATCATCGACCGCATCACCCTGGCCCTGCCGAACCCCGAGGCCGCGACCTCGGTCTACGAGGCCGAGACCGCCGTCCTCGACGGGGGGACCGCCACCTACGAGGTCTCCGACGTGTCCGGTCCGGGCGCCGTGGAGCTCGCCGAGGGCGATTCCGCGACGTTCTGGGTGTACTCGCCGGTCGACGGCGAGGCGCACCTGGGTGCGGACGTCGTGGGCGACGGCAGCGGCACCCTGGCCGTCAACGGTGCGGACGTGCTCGACCTGGGCACCTCCCAGGAGGTCGCCGCCCACCTGGCCGGCGGCGTCAACAAGATCGTCGTCACCGCCGGTGCCGACGGCGTCGTCCTGGACCGTCTCACGGTGGCCCCGGGCGAGGGGCTGCTGGAGCCCGCCGAGTACCAGGCCGAGGACGCCGAGCTCACCGGTGACGCGTCCGTGGGCGAGTACTCCCTGGCCGAGGGCGGCGCCGCCGTCACCGGCGTCGGGGGCGAGCCGGGCAACGACAACGCGCTGACGTTCCACGTCGAGGCGGCCGAGGCCGGCCGGCACGCGGTCGTCGTGCGGTTCTCCAACCCGGAGCAGGTCGACGGCACGCACTACAACCCGAACCCCGTCGCCCGGCACGCCGACATCTCGGTGAACGGCGGCGACGCCGAGCGGGTGCCGTTCGTGCCGACGTTCCACGAGAACAACTTCTTCGAGCGCACGATCGTGCTCGACCTCGTCGAGGGCGAGAACACGATCTCCCTGCGCGGCCAGGAGATGCCGAACTGGGACGGCGAGACCTACGCGTCCGAGATCTGGCCGGCGGACTACCTGCTGCGCTCGCAGTGGGCCCCGATCGTCGACCGGATCACCGTCTCCCCGCTGGCCCACGTCGTGGTGCCCAGCCCGGTGACGGTCCAGGTCGCCACCGAGTGCCGAGGGAAGGCCGCGTTCGTCGTCGCCGAGGTGACCAACACCTCCGGCGAGCGCACGGACGTCACCGTCACCGGGCTCGGTGACGAGCGCAGCCGGGACGTGCTGAAGCCGGGCAAGACCTGGAGGCAGCCGTTCTCGGCCGAGTCGCCGACCCTCGAGGCCGGCGAGCTGACCGTCACCGCGGGCGGGGTCACCACGACCCACCCGTACGAGGCGGTCACCTGCCGGTGAMRTTPPRRSPRRTTAALTAATMLGAGVFGGAVAAPAAAATPDPDLHYAMDDVTDTTVPDSSGNGLDGTLAGDTALTTAADGSADAALDLLGGHVVIPRDAIDGAADLTVSAQVRWDGEGGPWQRVFDLGTDTSRYLFTTPSNGGDLRTAVTSGGAGGESQITGHGPLEAGDWVTLTVTLDSGAGQITTYLDGVAVGSAETSVAGTDLLTDAAAQAGYIGRSFYPDPAFDGAVDDFRIYRSALSAEQVTELTEELGGTVPTLEGLSTDVFEVRTSAGSAPDLPSAVRASYSDGYDRDVPVTWDDVDPADYETSGTFTVAGDAAGTAVTAEVTVHRGELKVDLGTDTGEFSGGASGLLYGLYGEGMPTDNLVEGMGVQSVATKAQDGAQHPGSDALEVLGPLARTTGGDVYLRVTDWYRGFPYQWPSPDQPDATPAEKLESYRSVLDEQLDMISTLDADTREHLVIEPYNEPAGNMFGTGTWSLDGTSWLSDPTDYFAAWDETYRTIKERFPDMRVAGPGAIELWPQIEGWLEHTVAEGTVPDIVTWHELTHPQAIRESVAEYREWEADVFAGTEHEGTELPVNVNEYAFNYHTSVPGQMIQWMSAIEDAKVQAMIAFWNINGNLSDSAVQTNRGNGQWWLYNAYSRMTGHTVEVTPPYPGQNYSLQGLATLDEQQRQARVVLGGQDGPAPVDLVNVPSDVFGDEVRVTAREIPWTGQLGDSAQPRHLADLTVPVTDGVATVAFDGSQLPELAESSAYELIVTPVGAGETTASTPTLWQGSYEAEDAEYTGSGYSLNGPEGSPQDVAKFYTSGGYNVGGLRTGSDGVLDFEVTVPEDGTYDLSVFSSTMNRFGLVQEQGPTNVFVRVDGGAEQEIHLPLAYKWVVWDHADTTVELTAGTHTISLAAQSLDGSGATQGDAIIDRITLALPNPEAATSVYEAETAVLDGGTATYEVSDVSGPGAVELAEGDSATFWVYSPVDGEAHLGADVVGDGSGTLAVNGADVLDLGTSQEVAAHLAGGVNKIVVTAGADGVVLDRLTVAPGEGLLEPAEYQAEDAELTGDASVGEYSLAEGGAAVTGVGGEPGNDNALTFHVEAAEAGRHAVVVRFSNPEQVDGTHYNPNPVARHADISVNGGDAERVPFVPTFHENNFFERTIVLDLVEGENTISLRGQEMPNWDGETYASEIWPADYLLRSQWAPIVDRITVSPLAHVVVPSPVTVQVATECRGKAAFVVAEVTNTSGERTDVTVTGLGDERSRDVLKPGKTWRQPFSAESPTLEAGELTVTAGGVTTTHPYEAVTCRNANANANANA
AK018_02556444lrp_4COG1522Leucine-responsive regulatory proteinATGGACCAGACGAACCGCGAGATCGTGGCGATCCTGCTGCGCGACGGCCGGGCGTCCTACGCGGAGATCGGGGAGGCCGTCGGACTCTCGGCGACGGCCGTCAAGCGTCGCGTCGACCGGATGCAGGCCCGCGGGGAGATCGCCGGGTTCACCGTGCGGGTCGCCCCGGAGGAGCTGGGCTGGCGCATCGAGGCCTACGTCGAGATCTTCTGCCGCGGCAACATCTCGCCGGCCGCCCTGGAGCGGGACTTCGGGCCGATCCCGGAGGTCGTGCGCATGGACACCGTCACCGGCGAGGCCGACGCGCTGGTGCAGATCATGGCGGGGTCGATGTCCGACGTCGAACGGATCGTCGAGTCGTTCCGGGTCAACGCCCGCGTGGACAAGACGCGCACCGCGATCGTCATGTCCCGGGTGATCGACCGGCCGGCGCGGCTGGACTGAMDQTNREIVAILLRDGRASYAEIGEAVGLSATAVKRRVDRMQARGEIAGFTVRVAPEELGWRIEAYVEIFCRGNISPAALERDFGPIPEVVRMDTVTGEADALVQIMAGSMSDVERIVESFRVNARVDKTRTAIVMSRVIDRPARLDNANANANANA
AK018_02557906COG1834N(G),N(G)-dimethylarginine dimethylaminohydrolaseATGACGTTGCTCACACCGCCCGTCGCGCAGACCGCGACGACCGGCACCGACCGGACGCCGACCGCACGCCACTACCTCATGTGCCCGCCCGTCCACTTCGACGTCGTCTACGCGATCAACCCGTGGATGGACCTGACGGTCCCCGTCGACGCCGGCCACGCCGTCGTGCAGTGGCAGGCGCTCAAGGCCGCCTACGAGGCGCACGGCCACACCGTCGACGTCGTCGAGCCCGAGCCCGGCCTGCCCGACATGGTCTACGCCGCGAACGGCGGCGTCGTCGTCGACGGCCAGGCGCTCGCCGCCCGCTTCACCCACCCCGAACGCCAGCCCGAGGGCATCGCCTACGACGCCTGGATGCGCGACGCCGGCACGCGGCACGGCCTCGTCGCCCTCGGGCAGGCGGCCGAGCTGAACGAGGGGGAGGGCGACCTGCTCTGGGACGGCGAGGTCGTGCTCGCCGGCACCGGGTTCCGTACCTCCCGGGAGGCTCACGCCGAGGTCGCCGAGCGCCTCGGAGTCGACGTCCTCACCCTCGAGCTCGTCGACCCGCGCTTCTACCACCTCGACACCGCGCTGGCCGTGCTGACGACCGCGGCGGACGACGGCACACGCCCGGAGGTCGCCTACTTCCCCGGGGCATTCACCCCGGAGTCCCGGGCGGTCCTGCGCGAGCGCTACCCGGACGCGATCCTCGCGACCGAGGCCGACGCGGCCGTGCTCGGCCTCAACGCCGTCAGCGACGGCAAGCACGTGTTCCTGTCCGACCGCGCCACCGGGATGCACGCCGCGCTCCGCGAGCGGGGGTACACCCCCGTCGGCATCGACCTGTCCGAGCTGCTCAAGGGCGGCGGCTCGGTGAAGTGCTGCACCCTCGAGCTCCGACCCGCGCAGGAGGTGCGCTCATGAMTLLTPPVAQTATTGTDRTPTARHYLMCPPVHFDVVYAINPWMDLTVPVDAGHAVVQWQALKAAYEAHGHTVDVVEPEPGLPDMVYAANGGVVVDGQALAARFTHPERQPEGIAYDAWMRDAGTRHGLVALGQAAELNEGEGDLLWDGEVVLAGTGFRTSREAHAEVAERLGVDVLTLELVDPRFYHLDTALAVLTTAADDGTRPEVAYFPGAFTPESRAVLRERYPDAILATEADAAVLGLNAVSDGKHVFLSDRATGMHAALRERGYTPVGIDLSELLKGGGSVKCCTLELRPAQEVRSNANANANANA
AK018_025581068ocd_2Ornithine cyclodeaminaseATGACCACCGTCGACCTGCTGGACGTCGCCGCCACCGCCCGCTGGGTCGCCGAGCGCGGCCCCGAACGGATCATCACCGAGCTCGCCGACGCCCTCGCCACGGACTTCCGGCGCTGGCCGGAGCTCGACAAGCGACCGCGCATCGCCTCGCACTCCCGCGACGGCGTCATCGAGCTCATGCCGACCTCCGACGACGTCACCTACGGCTTCAAGTACGTCAACGGCCATCCGCTCAACCCGACGCGCGGCTACCAGACCGTGACGGCCTTCGGCGTCCTCGCCGACGTCCAGAACGGCTACCCGACGTTCCTCGCCGAGATGACGCTGCTCACGGCGCTGCGCACGGCGGCGACGTCGGCGCTCGCCGCCCGCACGCTCGCCCGGCCGGGGGCCCGCACCCACGCGCTGATCGGCACCGGCACGCAGGCCGAGTTCCAGGCGCTCGGGATGCGGGCCCTGCTCGGCGCCACCCAGGTGCGGGCCTGGGACGTGGACCCGGCGGCGCGGGAGAAGTTCGTCCGCAACGCACGCGCCCTCGGGTTCGACGTGCACGAGGCGACCAGCGCGGCCGACGCCGTGGCCGGGGCCGACGTCGTGACGACGTGCACCGCCGACAAGCGCAACGCCACCGTGCTGACGGCGGACATGCTCGCGACCGCGGCCCCCGGTGTGCACGTCAACGCCATCGGCGGGGACTGCCCGGGCAAGACCGAGCTCGAGGTGGGCATCCTCACCGCGCCCGGGACCGCCGTCGTCGTCGAGTACACCCCGCAGACCCGGATCGAGGGGGAGATCCAGCAGCTCGCGGACGACCACCCCGTCACCGAGCTGTGGGAGATCCTCACCGGCCAGGCCTCGGGCCGGACGGACCCGGACCAGGTGACGGTGTTCGACTCCGTCGGGTTCGCCGTCGAGGACTGGACGACGCTGCGGTTCGTGCACGCGGCGCTGCGAGCCGACCCGGCCGGGCGCGAGCTGCTGGCGCAGGTCGACCTCATCGCCGAGCCGGCCGACCCGAAGGACCTGTTCTCGCTCGTCGCGGCGTCGCTGCTCCAGCCGCAGGGCTGAMTTVDLLDVAATARWVAERGPERIITELADALATDFRRWPELDKRPRIASHSRDGVIELMPTSDDVTYGFKYVNGHPLNPTRGYQTVTAFGVLADVQNGYPTFLAEMTLLTALRTAATSALAARTLARPGARTHALIGTGTQAEFQALGMRALLGATQVRAWDVDPAAREKFVRNARALGFDVHEATSAADAVAGADVVTTCTADKRNATVLTADMLATAAPGVHVNAIGGDCPGKTELEVGILTAPGTAVVVEYTPQTRIEGEIQQLADDHPVTELWEILTGQASGRTDPDQVTVFDSVGFAVEDWTTLRFVHAALRADPAGRELLAQVDLIAEPADPKDLFSLVAASLLQPQGPGPT0014250_163DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014250-ocd-K01750NANA
AK018_025591092hypothetical proteinGTGCGCACCACCGAACGGCTCCGTCCCTGGTCGCGTCTCCGCGACTGGTTCGCGTCCCCGGCGAACCAGACCGACGTGCTGCAGCTGGTCAAGTCCGTCGTCGCCGCCATGGTCGCGTGGGCGGTGGCCGGGTTCGCCCTCGGGCTCGAGCAGTCGTTCCTGGCACCCTGGGTCGCCCTGCTGACGATGCACGAGACGGTGCACCGCACGCTGTGGCGCGGCACGCAGACGGTTCTCGCCGTGGCGGCCGGGATCCTCGTCTCCCTGGTCGTCGTGCAGTTCTTCGAGGCGACCGTGTGGTCGTTCGGCCTCGCGCTGCTCGTGGGGCTCCTGATCGGGCGTCTGCCCGGTCTGCGGACCGAAGGACTCACCGTCGCGACCACCGTCCTGTTCGTCGTCACCACGGGCTACGACCTGTCGGAGCAGCGCGCGATCGAGCTGCTCCCCGACCGGTTGCTGGACACCGCCGTCGGCGTGGGCGTGGCGCTGCTGGTCAACCTGGTCGCCTTCCCGCCGCTGAACGACCGCAGCGCGCAGCGGCAGATCGACGACGTCGACGAACGACTCGGCGAGCTGCTGGGCGACATGGCCACGGAGATGCGCCGGCCCTGGGACTCCCAGTCCGAGGACGACTGGATCGAACGCACCCGGTCGATCCAGCGCGACCTCGACCACGCCTGGTCGCTCGTCCGGACGGCCCGCGAGGCCGGCCGGTGGAACCCGCGCCGGCGGCGGCACCCCGGCGAGGAGATCTCCACCTACCCCGAGGTGCTGGTGCGGCTCGAGGAGGGCGTGGCGCAGACGCAGGCCGTCGCCCGCCACGTCCGCGACGCGGGCCGGGAGGCCTCGGAGTGGGACCCGCGCTTCCGGGACCGGTACCTCGACCTGCTCGAGGAGGTCGGCCGCCGCGTCGCCGACCCGGACCAGGACGTCGCACCTCTGCGCCGGGACGTGAGTCGGCTCGCCGCGGACCTGTCCGACGAGGACCTGTCCGGCCGGTACTGGCCGTTGTACGGGGCACTCATCGCGAACCTGCGGGCCATCATCGACATCGTCGACGACGTCGCCACCGCCCGGCCCGTGCGGACCTGAMRTTERLRPWSRLRDWFASPANQTDVLQLVKSVVAAMVAWAVAGFALGLEQSFLAPWVALLTMHETVHRTLWRGTQTVLAVAAGILVSLVVVQFFEATVWSFGLALLVGLLIGRLPGLRTEGLTVATTVLFVVTTGYDLSEQRAIELLPDRLLDTAVGVGVALLVNLVAFPPLNDRSAQRQIDDVDERLGELLGDMATEMRRPWDSQSEDDWIERTRSIQRDLDHAWSLVRTAREAGRWNPRRRRHPGEEISTYPEVLVRLEEGVAQTQAVARHVRDAGREASEWDPRFRDRYLDLLEEVGRRVADPDQDVAPLRRDVSRLAADLSDEDLSGRYWPLYGALIANLRAIIDIVDDVATARPVRTNANANANANA
AK018_025601335hypothetical proteinGTGAGGGCGAGGCAGGACGCCTCCGGGTCGTCGGGCGCCGACGACGTCGCGCGGCAGATGCGTGCCGCGGCCGCTGCCCGGGGCCACGACGACGGGCCGGGTGCCGACGGGACGGTCGACCCGGACGTCGTGCGGACCGCCCTGGCCACGCTGTCCCACGACGACCAGCAGCTGCTCTGGGACCTGCACGTCCTGGGCCGGCGGATCGAGGTCGTGGCGCGCGAGCTCGGCGTGCACGTGAAGTCGGCGGCGCGTCGGCTGCGGCAGGCCGAGGACCAGCTCGGCCGTGCCCTGTCCGCCGCCCATGCCCGCGGCGGACCGCGGCGGGCGTGCGTCGAGACCCGGCGCGACCTGCACGCCTACGTCCAGCACCGGCTCGGCGGCGGCCGGCGGCAGCTGCTCGAGGACCACCTGTTCGGCTGCACCGGGTGCCTGCGCGCCTTCATCGACGTCCGGGAGTCCTCCTGGGCGCTGCGGGACGTGGCGCCGGTGCTGCTCAGCGGGGCCGCCGTCTCGGGGATGTCGGTCCCGGTCGTCGTCGGCGCGTCCGGTGCGGCGGCGTCCCACGGCGCGCTCGCCTGGCTCGGGCCGTTCGGCGCCGCCCTCGTCGCCGCCGGGGAGTGGTTCGTGCAGGGCGCGCGCCGGCTGGTCGGGCGCCCGGTGGCCCTGGCGGCCGGCGTCGGGGTCGCCGCCGTCGCGGTCGCCGCCGGCGCCCTCGTCGGGGGTGACGTGCCGGAGGAGCCACCGCCCACCGCTCCGGTGGTGATGGAGCGACCCTCGCCGGCCCCGACCCCGCGGGAGTCCACGGGTCCGTCCCTGGAGCCGTCCCCGGAGCCGGAGCCGTCTCCGGAGCCGGAGCCGTCTCCGGAGCCGGAGCCGTCCCCGGAACCGGAGCCGACGCCGGAACCGGAGCCGACGCCGGAACCGACCCCCGAGCCCCCGGCCCCGGAGCCCGCCGTGGTTCCGGAGCCGCCGGCGGACCCCTTGCCGGAGCCCCCGCCCGGCCCGGAGCCCACGCCGTCCCCGGAACCGGAGCCGACGCCGGAGCCGACCCCCGAGCCCCCGGCCCCGGAGCCCGAGCCGCCACCGGAGCCGGTCACGATCACGGTCGGGCTCGACCTCGAGGAGCGAGGAGAGTTCCGGGTCGTGCCGAGCGCCGGGGTCGAGGTCGTGGCCGTCGAGGCCGCGCGCGGCAACGTCCGCATCGAGCAGACCGTGGACGGCGTGTGGCGCGTGTGGACCCCGGGAGGGTCGCCGGGCAGCGTGACCGTACAGGTCAGCGCGCCGGAGGGAACGACGCCGGAGGCGTGGCTCGACGTCGTCGACGAGCGCTGAMRARQDASGSSGADDVARQMRAAAAARGHDDGPGADGTVDPDVVRTALATLSHDDQQLLWDLHVLGRRIEVVARELGVHVKSAARRLRQAEDQLGRALSAAHARGGPRRACVETRRDLHAYVQHRLGGGRRQLLEDHLFGCTGCLRAFIDVRESSWALRDVAPVLLSGAAVSGMSVPVVVGASGAAASHGALAWLGPFGAALVAAGEWFVQGARRLVGRPVALAAGVGVAAVAVAAGALVGGDVPEEPPPTAPVVMERPSPAPTPRESTGPSLEPSPEPEPSPEPEPSPEPEPSPEPEPTPEPEPTPEPTPEPPAPEPAVVPEPPADPLPEPPPGPEPTPSPEPEPTPEPTPEPPAPEPEPPPEPVTITVGLDLEERGEFRVVPSAGVEVVAVEAARGNVRIEQTVDGVWRVWTPGGSPGSVTVQVSAPEGTTPEAWLDVVDERNANANANANA
AK018_025611233rlmC_2COG226523S rRNA (uracil(747)-C(5))-methyltransferase RlmCGTGCAGTGCCCCCACTACGACGCCGGCAGGTGCCGCTCGTGCACCCTCATCGAGATCGCTCGCCCCGAGCAGGTCCGCGACAAGGAGTCGCACGTGCGCGAGCTGCTCGCAGCGCACGACGACGTCTCGTGGTTGCCGGCCGTCGTCGGACCCGAGAGCGGCTTCCGCAACAAGGCGAAGATGGTGGTCACGGGCACCGTCGAGGAGCCGGTGCTCGGCATCGTCGGGCCGCCCGGACCCTCCGCGGGCCAGAGCGTCGACCTGACCGACTGCGGCCTGTACCCGCCCGCGCTGCAGGCCGCCTTCGGCCCGCTCGCCGAGCTGGTCACGCGCGCCCGGATCCAGCCCTACGACCTCGCCCCGGCCCCTGCCGGACGCCGGGTCACCCCACGGGACGCGGCCCGGCGCGGGGAGCTCAAGCACGTGCTGGTCACCCTCTCCCCCGACGGCGAGCTGATGGTCCGGTTCGTCCTGCGGTCCACCGAGGCCGTGGCCCGGATCCGCAAGCACCTGCCCTGGCTGCACGCGCGCCTGCCCGGGCTGGCCGTGCTGAGCGTGAACGTCCAGCCGGCGCACGCCGCCGTGCTGGAGGGCGAGCAGGAGATCGTGCTCACCGAGCGCGCCACCCTGCCCATGCGGCTCGACGGCGTCACGCTGCACCTGCGTCCGCAGAGCTTCTTCCAGACCAACACCGGGGTCGCGGAGGCCCTGTACCGCCAGGCACGACGGTGGATCGACGAGATCGACCCGGCCACGCTGTGGGACCTCTACTGCGGCGTCGGCGGATTCGCGCTGCACGCCGCCGCACCGGGCCGGTCGGTCACCGGGATCGAGATCTCCGCCGAGGCGGTCGCGTCGGCGACCACGACGGCGACCGAGCTGGCCGCGCTGCCGGCCGATGCCGTCGTCGGCTCGCGGGACGCGGAATGGTGGCACCGCGCCATGGCGGGTGTCCGGTTCGCCGCCGGGGACGCGACCGGTTTCGCCCTCGGCAGCGGGGACGACCCCGAGCTGGTCGTGGTCAACCCGCCCCGGCGGGGCATCGGCACGGACCTGGCCCGTCGGCTCGAGGCGTCCGCCGTGCGGCACGTCCTGTACTCGAGCTGCCGCGCGAGCACGCTCGCCCGCGACCTGGCCGACATGCCGTCGCTGCGACCTCGCCGGGCGGTGCTGCTGGACATGTTCCCGCAGACGAGCCACTACGAGGTGCTGGTGCTGCTGTCCCGCGAGTGAMQCPHYDAGRCRSCTLIEIARPEQVRDKESHVRELLAAHDDVSWLPAVVGPESGFRNKAKMVVTGTVEEPVLGIVGPPGPSAGQSVDLTDCGLYPPALQAAFGPLAELVTRARIQPYDLAPAPAGRRVTPRDAARRGELKHVLVTLSPDGELMVRFVLRSTEAVARIRKHLPWLHARLPGLAVLSVNVQPAHAAVLEGEQEIVLTERATLPMRLDGVTLHLRPQSFFQTNTGVAEALYRQARRWIDEIDPATLWDLYCGVGGFALHAAAPGRSVTGIEISAEAVASATTTATELAALPADAVVGSRDAEWWHRAMAGVRFAAGDATGFALGSGDDPELVVVNPPRRGIGTDLARRLEASAVRHVLYSSCRASTLARDLADMPSLRPRRAVLLDMFPQTSHYEVLVLLSRENANANANANA
AK018_02562438hypothetical proteinATGAGCACCCACGACACCGTCACCCCCGACCACCCCACGATCCGCCAGGTCGTCCTCGACACCACCGATGCGCGGTCGCTGGCAGAGTTCTATCGCCGGATGTTCGGGCTGCACTACCGTCCCGGCGACGACCCGCCGCCGCCCGGAGCCCCCGACCCGCGGGGCACCGACTGGCTCGTGCTCGGCGGTACGGGCGGGTTCAGCCTCGCTTTCCAGCAGGTCGACGCCCTCGACGCGGCGACCTGGCCCGACGCCGCGGTGCCCCAGCAGCTCCACCTGGACACCACCGTCCCGGACGTCGCGGCCCTGGACCGCCAGCACGAGCGCGCGCTCGCGCTCGGCGCCACGCTGCTCTTCGACCGCTCCGACGACCCGCAGGAACCGCTGCGCGTCTACGGCGACCCGGCCGGCCACCCGTTCTGCGTCTTCGTCGCCTGAMSTHDTVTPDHPTIRQVVLDTTDARSLAEFYRRMFGLHYRPGDDPPPPGAPDPRGTDWLVLGGTGGFSLAFQQVDALDAATWPDAAVPQQLHLDTTVPDVAALDRQHERALALGATLLFDRSDDPQEPLRVYGDPAGHPFCVFVANANANANANA
AK018_02563414hypothetical proteinATGGCGAAGTACCTGTTGCTCAAGCACTACCGCGGCGGCCCGGAGCAGCGGCCGAACGCCCGCGAGCCGATGGACCGCTGGACGCCCCAGGAGGTCTCCGACCACATCGCGTTCATGCAGCACGTCGCCGACGTGCTCACCGAGCGGGGCGAGTTCGTCGACGCCCAGGCGCTGTCGCCGGAGGGCACGTTCGTGCGGTACGACGGCGAGGGGCGCCCGCCGGTGACCGACGGTCCGTTCGCCGAGACGAAGGACGTCGTCGCCGGCTGGATGATCATCGACGTCGAGTCGACCGAGCGGGCCCACGAGGCGGCGGCGTTCCTGTCCTCGGCGCCGGGGCAGGGCGGCAAGCCCCTCGAGGAGTGGATCGAGGTCCGGCCCTTCATGGCGGACGCTCCCCCCGCGGACGGATGAMAKYLLLKHYRGGPEQRPNAREPMDRWTPQEVSDHIAFMQHVADVLTERGEFVDAQALSPEGTFVRYDGEGRPPVTDGPFAETKDVVAGWMIIDVESTERAHEAAAFLSSAPGQGGKPLEEWIEVRPFMADAPPADGNANANANANA
AK018_025641173hypothetical proteinATGACGGCGCCGTCCGGAGGGGCCACGGCCCCGGACGCCCGCGTGGCCGAGCTCCTGGCCGAGCTCGGCCCGCGGGTGCTCGGCGTGCTCGTGCGCCGCGGGGCCGACTTCGCCACGGCCGAGGACTGCGTGCAGGAGGCGCTGCTCGAGGCCTCCCGACGCTGGCCGGACGGGATCCCCGACGAGCCGCAGGGATGGCTGGTCACCGTGGCCTGGCGCCGGTTCCTGGACGTGCAGCGCTCGGAGACGGCGCGCCGTCGCCGGGAGGAGCAGGTCCACGCCACCCCGGACCCTGGTCCCACCGAGCAGGCCGACGACACGTTGCTGCTGCTGAGCCGCTGCTGCCACGAGGCGCTCAGCCCGGCGTCGGCCGTGGCGCTGACGCTGCGCGCCGTGGGCGGGCTGACGACGGCGCAGATCGCCCGGGCGTACATGGTGCCGGAGGCGACGATGGCCCAGCGCATCAGCCGGGCGAAGCGCACGCTGTCCGGCCGGTCCTTCGACCGTCCGGGGGATGTACAGAACGTGCTCCGGGTGCTGTACGTGATGTTCACCGAGGGGCACACGGGCGAGGTGGACCTGGCGCGGGAGGCGATCCGCCTGACCCGGCAGCTCGCCGTCGCCACGGCCGACGCGGAGGTCGCCGGGCTGCTCGCCCTCATGCTCCTGACCGACGCCCGTCGCGCCGCCCGGTGGACGCGGCGCGGTGAGCTGGTGCCGCTCGCCGAGCAGGACCGGTCGCGGTGGGACACCGCGGCGATCGCCGAGGGCGTGCAGGTCCTGCAGGCCGCGCTCGCCGACGAGCGGCTGGGGGAGTACCAGGTCCAGGCGGCGATCGCGGCGCTGCACGACGACGCCCCGCGGGCCGAGGACACCGACTGGGTGCAGATCCTCGAGTGGTACGACGAGCTCGTGGCGCTCGCCGACACCCCGGTCGTGCGGCTCAACCGGGCGGTCGCCGTCGGGCACGTCGACGGGGCGCTCGCGGGGCTGCGGGTTCTGGACGCCGTGCCCGACCGGGTGCCCCGACGGACCGCCGCCGCCGCGTACCTGCACGAGCGCGCCGGCGACGTCGAGGAGGCGTCGGAGCTGTACGCGCGGGCCGCCGACGAGGCGGCGACGCTGGCGGAACGGCACCACCTCCTGCGGTGCGCGGCGGGGCTCCGGGGTTGAMTAPSGGATAPDARVAELLAELGPRVLGVLVRRGADFATAEDCVQEALLEASRRWPDGIPDEPQGWLVTVAWRRFLDVQRSETARRRREEQVHATPDPGPTEQADDTLLLLSRCCHEALSPASAVALTLRAVGGLTTAQIARAYMVPEATMAQRISRAKRTLSGRSFDRPGDVQNVLRVLYVMFTEGHTGEVDLAREAIRLTRQLAVATADAEVAGLLALMLLTDARRAARWTRRGELVPLAEQDRSRWDTAAIAEGVQVLQAALADERLGEYQVQAAIAALHDDAPRAEDTDWVQILEWYDELVALADTPVVRLNRAVAVGHVDGALAGLRVLDAVPDRVPRRTAAAAYLHERAGDVEEASELYARAADEAATLAERHHLLRCAAGLRGPGPT0014960_522DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_02565654hmuO_2Heme oxygenaseATGCCCGTCGTCGCCCCCGACGGCACCCTCTCCGCCCTGCTGCGTGACGGCACGCGCCGGGAGCACGAGCAGGCCGAGAACGAGGGGTTCGTCGCGCGTCTGATGAGCGGGAGCCTCGACGTCGCCGCGTACGCCGACCTGGCCGCCCAGCAGCACGCCGTCTACACGGCCCTGGAGCGGGCGAGCGAGGCCGTGCGCCACGACGCGCGCGGGGCGGGACTGGTCTTCGACGAGCTGACCCGGGTCCCGGCGATCGAGCGCGACCTGGCCCACCTGTACGGGCCGGACTGGCGCGAGCGCGTCCGCACGCTGCCGGCCACCCAGGAGTACGTCGAGCGGCTGCACGACGTCGGGACGCACCTGCCGCAGTACGCCGCCCACGCGTACACGCGCTACCTCGGCGACCTGTCCGGCGGGCAGATCGTGCAGCGCATGATGCAGCGTCACTACGGCATGGGGACGGCCGGGCTGGAGTTCTACGACTTCCCCGAGATCTCCAGGCTCAAGCCGTTCAAGGACCTCTACCGCGAGCGCCTCGACGCGCTGGACCTGAGCGCCGACGAGGTCGACCTCGCCGTGGCCGAGGCCCGCGAGGCGTTCCGTCTCAACCGGGCCGTGTTCGTCGAGCTCGGCGCGGCCCACCCCGGTCGCTGAMPVVAPDGTLSALLRDGTRREHEQAENEGFVARLMSGSLDVAAYADLAAQQHAVYTALERASEAVRHDARGAGLVFDELTRVPAIERDLAHLYGPDWRERVRTLPATQEYVERLHDVGTHLPQYAAHAYTRYLGDLSGGQIVQRMMQRHYGMGTAGLEFYDFPEISRLKPFKDLYRERLDALDLSADEVDLAVAEAREAFRLNRAVFVELGAAHPGRPGPT0003625_699DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_UTILISATION,PGPT0003625-pbsA1|hmuO-K21480NANA
AK018_02566810hypothetical proteinATGGCCGTCACCCTCGCGCGCTACAGCGCAGCCGTACTCGTGTGCGGGGCGGCGATCCTGCTCTTCGCCGTGCACGTGCGTCCGCTCGGCTACGTGCCGCTCGTCGCCGGCGTCGTGCTCGGACTCCTCGTCGACCGCGTGCTCGGCCGTGACCTCGGCCTCATCGCGCTCGGCATGGCGATCGTCTCGTCGATCTCGCTGAAGGCCGACCTGTCGAACGCCGGCATGGCGCGGTTCACGGTGGCGCTCTCGCTGGCCGTGCTGGTGCCCTGGGCGCTGTCGAAGTACTGGTTCCGGGACGACGACGGCGCGGGGGCGGTGCGGTTCCCCGCGTTCACCGGACGCCGGTGGACCCGCGGCCAGTGGCTGTACCTCGTCGTGGTGGTCGTGGTCGGCTACCTCGTGCTGCCCTGGTACTTCCTCGGCTCGGGCGCCTACCTGAACTGGCCGCCGCTCGAGGGCGACAGCGACATCGCGCGGCTGTTCGTGGGCGTCAACGCGGTGGGGATCTGGGACGAGCTGTTCTTCATCTGCACCGTGTTCGCCCTGCTGCGGCGGCACTTCCCGCTGCAGGCGGCCAACGTCCTGCAGGCCATGGTCTTCGTGTCGTTCCTGTGGGAGCTCGGCTACCGCGAGTGGGGTCCGGTGCTGACGATCCCGTTCGCGCTCGTCCAGGGCTGGATCTTCGCCCGGTACACGTCGTTGCCGTACGTCGTCACGGTGCACCTGCTGTTCGACGCCGTCGTGTTCGCCGTGCTCGTGCACGGCCACCACCCGGAGCTGCTCGACATCTTCGTCACCGCGCCCTGAMAVTLARYSAAVLVCGAAILLFAVHVRPLGYVPLVAGVVLGLLVDRVLGRDLGLIALGMAIVSSISLKADLSNAGMARFTVALSLAVLVPWALSKYWFRDDDGAGAVRFPAFTGRRWTRGQWLYLVVVVVVGYLVLPWYFLGSGAYLNWPPLEGDSDIARLFVGVNAVGIWDELFFICTVFALLRRHFPLQAANVLQAMVFVSFLWELGYREWGPVLTIPFALVQGWIFARYTSLPYVVTVHLLFDAVVFAVLVHGHHPELLDIFVTAPNANANANANA
AK018_02567672hypothetical proteinGTGCTGGTCGCCGCCGCGACGGTAGCCGCCTGCACCGGCGGCGGGTCGCCGGCCACGACCGAGGCGGCCGCGACGCCGGAGAGCGTCGTGGTCCAGCCCGGCCGGCCCGGCGAGGAGAACACCACCGTCGCGCCCGAGGACGTCGCACCACCTCGCGCCGACGACGAGTGGAACCGGGCCGACGCCACGTTCATCAGCGACATGATCGTGCACCACGCCCAGGCGCTGGAGATGTCCGAGCTGGCGCCGGACCGGGCCGAGGACCCCGGCGTCCTGGCGCTCGCGGCACGCATCTACGACGTCCAGGGCGCCGAGATCCACGGTATGGCGGGCTGGCTGCAGGGGTACGACCTGCCCGTGCCCGTCGAGCTCGAGGACGGCGACGGCAGCGGCCCGCGGGCGCCGGTCGACGACGCCCACGACCACGACCCCGAGGACATGCCGGGCATGCTCAGCGACGCCCAGATGGCCGAGCTCGAGGCGGCGTCCGGCACCACCTTCGACCGGCTCTACCTGGAGGGCATGATCCAGCACCACCTGGGTGCGGTGACCATGTCCACCGAGCTGGCCGTCGACGGGATCAACTTCCGCACCCAGGAGCTGGCCAACGACATCGGCGCGGGCCAGCTCGCGGAGATCGGGCGCATGCAGGACATGCTCGACGACCTCTGAMLVAAATVAACTGGGSPATTEAAATPESVVVQPGRPGEENTTVAPEDVAPPRADDEWNRADATFISDMIVHHAQALEMSELAPDRAEDPGVLALAARIYDVQGAEIHGMAGWLQGYDLPVPVELEDGDGSGPRAPVDDAHDHDPEDMPGMLSDAQMAELEAASGTTFDRLYLEGMIQHHLGAVTMSTELAVDGINFRTQELANDIGAGQLAEIGRMQDMLDDLNANANANANA
AK018_025681464hypothetical proteinGTGCGTCATCTGACCACGAGACAGCGACGTCGAGCCCTGGCGGCCGGAGCGCTCACCAGCGCCCTCGCCGTCGGTTCGTTCGCCGTCGCCGCCCCCGGATTCGCCGAACCCGGTGGCGACGCGCCCGACGACGGCAGCGAGCTGCCCGCCCAGAGCATCGTCGCCCTGGACGACTCCGCGACACCGGACGGGCTCACGGAGCCGGGCACCACGGACGCGCTGAACATGGAGCTGCTGGCGAACATCCCGAAGAACGGGGCGTTCGCGGCCGAGGACTCCTACAGCTCCGACCTCGCTTTCCAGGGCGACTACGCGTTCGCGGGGAACTACAACGGGTTCACCGTCTACGACATCTCCGACCCGGAGAGCCCGACGCAGGCCGCGCAGGTCGTCTGCCCGGGGTCGCAGAACGACGTCTCCGTCTACGGCGACATCCTCGTGCTGTCCACGGACTCGTGGCGGACCGACGACTCCTGCTCCAGCGAGTCGATCTACCCGGTCGGCGTCGACTACTGGGAGGGTCTGAAGGTCTTCGACATCTCCGAGCCGACGGAGCCGCAGTACGTCGCGGCCGTCGAGACCGCGTGCGGTTCGCACACGAACTCCCTGGCGCCGAGCAAGAACGGCCAGACGCTGTACGTGTACGTCTCGTCGTACTCGCCGCACCCCCTGCTGTCGGGCTGCCAGCCGCCGCACGACGCGATCTCGGTGGTGGAGATCCCGACGAAGGCGCCCGCCGAGGCCGCGGTCGTCTCGACGCCGGTGCTCTTCCCCGAGGGTGGCTACACGAACACCTCCGGCTGCCACGACATCACCACGTACGTGAAGCTCGACCTCGCGGCCGGCGCGTGCATGGGCGACGGCATCCTCATGGACATCTCCGACCGGGCGAACCCCGAGGTGATCTCCACCGTCCGCGACACCGAGAACTTCGCGTTCTGGCACTCGGCGACGTTCAACAACGACGGGTCCAAGGTCGTCTTCACCGACGAGCTCGGTGGCGGCGGTGCCGCGACCTGCAACGACACCGTCGGCTCGAAGCGCGGGGCCAACGGCATCTACGACGTCGTCGACGGCGAGCTGGAGTTCCGCAGCTACTACAAGATCCCGCGGACGAACACGAACACCGAGAACTGCGTGGCCCACAACGGCTCGCTGATCCCGGTCAAGGACAAGGACATCATGGTCCAGGCCTGGTACCAGGGCGGGATCTCGGTGTTCGACTTCACCGACTCGTCGAACCCGACGGAGATCGCCTGGTTCGACCGGGGCCCGCTGTCCTCGGAGCGGATGGTCCTGGGTGGCTCGTGGTCGGCGTACTACTACAACGGGTACGTCTTCTCGAACGACATCCAGCAGGGCTTCGACGTCCTGGAGATCGACGACGCGGCCGGTGTCGGCAAGCAGAAGCCGAACACCTACCGTGAGCTGAACCCGCAGGGGCAGGTCCGCTTCCACGGCTGAMRHLTTRQRRRALAAGALTSALAVGSFAVAAPGFAEPGGDAPDDGSELPAQSIVALDDSATPDGLTEPGTTDALNMELLANIPKNGAFAAEDSYSSDLAFQGDYAFAGNYNGFTVYDISDPESPTQAAQVVCPGSQNDVSVYGDILVLSTDSWRTDDSCSSESIYPVGVDYWEGLKVFDISEPTEPQYVAAVETACGSHTNSLAPSKNGQTLYVYVSSYSPHPLLSGCQPPHDAISVVEIPTKAPAEAAVVSTPVLFPEGGYTNTSGCHDITTYVKLDLAAGACMGDGILMDISDRANPEVISTVRDTENFAFWHSATFNNDGSKVVFTDELGGGGAATCNDTVGSKRGANGIYDVVDGELEFRSYYKIPRTNTNTENCVAHNGSLIPVKDKDIMVQAWYQGGISVFDFTDSSNPTEIAWFDRGPLSSERMVLGGSWSAYYYNGYVFSNDIQQGFDVLEIDDAAGVGKQKPNTYRELNPQGQVRFHGNANANANANA
AK018_025691014hypothetical proteinGTGACCGCCCAGCCCGCTGCCCGCAGCGCCGGCACCGTCGCCGGAGTCGCCGCCGCCGTGGTGGGCGGGATCGCCGCCGCGTCCCAGTCCCGGGTGAACGGCACCCTCGCCGAGCACGTGGGCTCCGCGTTCGCCGCGGCGGTGATCTCGTTCGGCTCGGGCCTGCTGTGGCTGACGATCGCGGTCCTGTGCTGGCCCGCGGCGCGGACCGCCGTCGGGCACGTGCGCGGCGCCCTGCGCACCGGCGGGCTACGCCCGTGGGAGGTGCTCGGGGGTCTGGGCGGCGGCTTCTACGTGGCGGCCCAGGGACTGACCGTCTCCTCCCTCGGCGTCGCCCTGTTCATGGTCGCGATCGTGGCGGGGCAGTCGACGAGCTCGTTGGCGGTGGACCGGCTCGGCCTCGCGCCGGGCGGCGTGCGGCTGATCACGCTCGGTCGCGCCGTCGGCCCGGCCCTGACCGTCGTGGCCGTCGTCGTCGCCGTGTCCGGGTCCGTCGGACGGGTCGAGGACGTGCACCTCGCGGTGATCCCGCTGCTCGCCGGGGTGGTCCAGGCGTGGCAGCAGGCGATGAACGGGCGGGTGCGGGCGGCGGCCGTCCCTGCACCGGAAGCCGGGCGGGCGCCGTCGTCGACGTTCCCGGGCGTGGCCGCGGCGACCTTCGTCAACTTCGGCGTCGGCACGGCGGCGCTGCTGGTCGCGCTCGCGGTGTCGGTGCTCGTGGGCGGCGCACCCGACGGGGCGCTGCCGACACGGTGGCCGCTGGACCTGGTCCTCTACTCCGGCGGACTGCTCGGCATCGTCTTCATCGCCGTCCAGGCCGCCGTGGTGCACCGGATCGGCGTGCTGCTGCTGGGCCTGGGCCTCATCGCGGGCCAGATCGTCGGGGCGCTGCTGCTGGACCTGCTCGTCCCGGGCGCGACGCCGCCCGGCCCGGCGATGTACCTCGGCGCCGCCCTGACCCTGGTCGCCGTCGCCGTGCCGCTGGTCGAGTCCCGGCTGCGGCGTCGCTCCTGAMTAQPAARSAGTVAGVAAAVVGGIAAASQSRVNGTLAEHVGSAFAAAVISFGSGLLWLTIAVLCWPAARTAVGHVRGALRTGGLRPWEVLGGLGGGFYVAAQGLTVSSLGVALFMVAIVAGQSTSSLAVDRLGLAPGGVRLITLGRAVGPALTVVAVVVAVSGSVGRVEDVHLAVIPLLAGVVQAWQQAMNGRVRAAAVPAPEAGRAPSSTFPGVAAATFVNFGVGTAALLVALAVSVLVGGAPDGALPTRWPLDLVLYSGGLLGIVFIAVQAAVVHRIGVLLLGLGLIAGQIVGALLLDLLVPGATPPGPAMYLGAALTLVAVAVPLVESRLRRRSPGPT0009795_37DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-TOXOFLAVIN_METABOLISM,PGPT0009795-toxF-K09936NANA
AK018_025701323hypothetical proteinGTGACGACCGACGTCGGCTCCCGGCGAGGCGCCCGCCACGCCCGTACGACGGAGCTCTCCACCCTGCCCGACGGCGGGCACGGCCACGGGCACGGCGGGCCCGTGCCGCCGGCGCCCTGGCGCACCCGGATCGTGCTCGCCCTCCTGGTGCTGCCCGCGCTGGTCGCCACCGGTCTCGGCCTGTGGCAGCTGTGGCCCGCCGCGGCCGGGGTCCCGGACCGGGTGCCGGTCGTCGTCGAGGGCAGCGAGCTCGTGTCGGCGACCGTCGTCGGGCCGCTCGAGGGGGAGGCCGCCGGGGACGCGTCGTGGCCGACCACCGAGGACTCGACGATCGGCAACGTCGAGATCCGTCTGGCCGACGGCAGCACGTCCGGGATGCAGGCCGAGCCGCGGTTCGAGCTCGAGCCCGGCGACCCGGTGATCGCGCTGTACATCGGCGACTTCGCCGAGACCCCGGTGCCGTACGTGTTCATGGACTACGAGCGCGAGGTGCCCCTGGGGATCCTCGCCGCCGCGTACGTGCTGGTCGTGCTGCTGGTCGCCCGCTGGCGCGGCCTGGCGGCCCTGGTCGGCCTGGCGGTGGCGTTCGCCGTGTTCGTCGGCTTCACGTTCCCGGCGCTGCTGTCCGGCGAGAACGCGATGGGCGTGGCCCTGGTGACGTCGTCGGCGGTGATGCTGGCCGTCCTCTACCTGGCGCACGGCCTGACGGCCCGGACGACCGTGGCGCTGCTGGGCACGCTGGCCGGGCTGGCGCTCACGGCGGGGATCGGGGCGTGGGCGACGGGTGCGGCGCAGATCACCGGTGCCTCGGAGGAGATCGCCCAGAACCTGCCGACGATCGCGCCCGGGGTGGACCTGCGCGGCATCGCGCTGTGCGGGCTGGTGCTGGCCGGGATGGGCGTGCTCAACGACGTGACGATCACGCAGGCCTCGGCCGTGTGGGAGCTGCGGGCGCTGGCCCCGCTGGCCCCGCGGCGGATGCTGTTCGCCCGGGCGATGCGCATCGGTCGCGACCACATCGCCTCGACCGTCTACACGATCGCCTTCGCCTACGTGGGAGCGGCCCTGCCGCTGCTGCTGACGGTGTGGCTGCTCGACCAGACCCCGATGATGACGCTGACCTCGGGAGAGATCGCCGAGGAGATCGTGCGCACGCTGGTCGGGTCCATCGGGCTCGTGCTGGCGATCCCCGTCACGACGGCGATCGCGGCGGTCACCGTGCCCACGGGCGCTGCCCTGGCGGCGAGCGCCGGGGTCGGCCACGATGGTGCGGACCCGACCCCGGAGGACGACGTGCCGACCCGACCCGACGAGAGAGTCTGAMTTDVGSRRGARHARTTELSTLPDGGHGHGHGGPVPPAPWRTRIVLALLVLPALVATGLGLWQLWPAAAGVPDRVPVVVEGSELVSATVVGPLEGEAAGDASWPTTEDSTIGNVEIRLADGSTSGMQAEPRFELEPGDPVIALYIGDFAETPVPYVFMDYEREVPLGILAAAYVLVVLLVARWRGLAALVGLAVAFAVFVGFTFPALLSGENAMGVALVTSSAVMLAVLYLAHGLTARTTVALLGTLAGLALTAGIGAWATGAAQITGASEEIAQNLPTIAPGVDLRGIALCGLVLAGMGVLNDVTITQASAVWELRALAPLAPRRMLFARAMRIGRDHIASTVYTIAFAYVGAALPLLLTVWLLDQTPMMTLTSGEIAEEIVRTLVGSIGLVLAIPVTTAIAAVTVPTGAALAASAGVGHDGADPTPEDDVPTRPDERVNANANANANA
AK018_02571777hypothetical proteinGTGCCCGAGCAGCCGGACCCGTCGCGCGACCCGGCCCCCGTCGGCCGGGACGCGTTCATCTCGCGCGAGCGGCAGCCGCCGACCGGTGACGACTCCCGGTTCGACCCGCACTCGCGCTGGATCGACCGGTTCGGGGTGCTGCTCGCCCTGACGGGGCTGACGGTGGCGCTGCTGTCGCTGGTGGACATCCGGTCCTCGGGCGACCAGATCGGCCCGGCGCTCGCCGGCCTGGCGACGACGCTCACGGTCGGGGCGACCCTGGGTCTGGCGCTCCGCGCGGCGGGCCTGCGCACCCGGTGGCGGCGGTGGGCCTACGTCGTGCTGGGCGTGCTGGTCGCGGTGTCCCTGGTGATCGTGCTCCTGCTCGACACCTCGGACGCGGTGACGTCCGCACCCCCGTTGCTGCTCCTCATCGCGGCGATGGCTCCCGTGGTCGTGGTGCGGCGGCTGGTGCACCACCGGATCGTCACTCTCGCGACGGTGCTCGGGGCCGTGTCGGCCTACCTGCTCATCTCGCTGATGTACTACTACGCGTTCATCACGGTGGACAACCTCACCGAGTCTCCCTTCTTCGGCACGGAGCAGCCGACGACGTCGTTCATGTACTTCTCGCTGACGACGATCACGACGCTCGGGTACGGCGACCTCGCGGCCGTGACACCGGTGGGCCGACTGCTCGCCACGAGCGAGGCGATCGTCGGGCAGGTGTACCTCGTGGTCTTCGTGGCGATGATCGTCAGCCTCGCCGCGAGCCGCGTGCAGCACTCGCGGGGCTGAMPEQPDPSRDPAPVGRDAFISRERQPPTGDDSRFDPHSRWIDRFGVLLALTGLTVALLSLVDIRSSGDQIGPALAGLATTLTVGATLGLALRAAGLRTRWRRWAYVVLGVLVAVSLVIVLLLDTSDAVTSAPPLLLLIAAMAPVVVVRRLVHHRIVTLATVLGAVSAYLLISLMYYYAFITVDNLTESPFFGTEQPTTSFMYFSLTTITTLGYGDLAAVTPVGRLLATSEAIVGQVYLVVFVAMIVSLAASRVQHSRGNANANANANA
AK018_025721377hypothetical proteinATGACCACCCGATCCCGCGCCGCCACGGCGCTCGCCCTCGCGCTGCCCCTCGGCCTCCTGGCCGCGTGCGGCACCGATGCCGAGGAACCGGCCACCGAGACCGACCCCGCCGCCGCCGAGACCGAGGACTCGGCGGACAGCGCTCAGGGCCCCACCGAGGTCCAGTCCCGCACCGCCCGCGTTGCCGTCACCTACGACGGCGGCATCAAGGTCCTCGACGCGATGACCCTCGAGGAGGTCGGCGACGTCGAGCTCGAGGGCTTCAACCGCCTCAACCCGGCCGGCGACGGGCGCCACCTCGCGGTCTCCACCACCGGTGGCTTCCAGCTCCTCGACACCGGGACCTGGGGCGAGGGCCACGGCGAGCACTTCCACTACTACACGGCCTCCCCGGAGCTGACGGACGTCACCTACGACGCCGAGAGGCCCGGGCACGCGGTCGTCCACGACGGCACCACCGCCTTCTTCGACGACGGCACCGGGCACGTCGAGCTCGTGGAGTCGCTGCACGTCGCCGAGGCGGACGCGGAGGTCGAGACCGTCGAGCTGCCCGACGCCCACCACGGCGTGGCCGTCCCGCTGAGCGACGGGTCGCTCCTCGTCACGATCGGCACCGAGGAGGAGCGCACCGGTGTCGCGGTCCTGGACGCCGACGGCGAGGAGGTCGCCTCCTCCGGCGACTGCCCCGGCGTGCACGGCGAGTCCGTCGCGCAGGGAGAGGCCGTCGTCCTCGGCTGCGAGAACGGGGCCGTCGTCTACGCCGACGGCGAGTTCACGCAGGTCGAGACCCCGGACGAGTACTCGCGGATCGGCAACCAGGCCGGTTCGGAGGCCTCGCCCGTCATCCTCGGTGACTACAAGACCGACCCCGACGCGGAGCTCGAGCGGCCGACCCGCGTCAGCCTGATCGACACCCGGGACGCGAGCCACCGGCTCGTCGACCTGCCGGGCTCGTACAGCTTCCGCTCCCTGGCCCGCGGTGACGACGGCGAGGCGCTCGTCCTGACCACCGACGGATCCCTGCAGGTCATCGACCCCGAGTCCGGCGAGATCACCGCCTCGATCCCGGTCGTCGACTCCTGGGAGGAGCCGACGGACTGGCAGCAGCCGCGCCCGACGGTGCTCGCGCTCGACGGCTCGGTCTACGTCACCGACCCGGCGAACCAGCAGATCCACGCGGTCGACCTCGTCGAGCAGGAGGTCTGGCTCACGGCCGACCTCGGCGTCGCGGCGAACGAGCTCTCCGGCGTGTACGGCGAGCCCACGGCGGAGCACTCCGAGGAGGAGCACGGCGACGAGCACTCCCACGAGGAGCACGGCGACGAGCACTCCCACGAGGAGCACGCCGAGGAGGACCACGAGGGTCACGACCACTGAMTTRSRAATALALALPLGLLAACGTDAEEPATETDPAAAETEDSADSAQGPTEVQSRTARVAVTYDGGIKVLDAMTLEEVGDVELEGFNRLNPAGDGRHLAVSTTGGFQLLDTGTWGEGHGEHFHYYTASPELTDVTYDAERPGHAVVHDGTTAFFDDGTGHVELVESLHVAEADAEVETVELPDAHHGVAVPLSDGSLLVTIGTEEERTGVAVLDADGEEVASSGDCPGVHGESVAQGEAVVLGCENGAVVYADGEFTQVETPDEYSRIGNQAGSEASPVILGDYKTDPDAELERPTRVSLIDTRDASHRLVDLPGSYSFRSLARGDDGEALVLTTDGSLQVIDPESGEITASIPVVDSWEEPTDWQQPRPTVLALDGSVYVTDPANQQIHAVDLVEQEVWLTADLGVAANELSGVYGEPTAEHSEEEHGDEHSHEEHGDEHSHEEHAEEDHEGHDHNANANANANA
AK018_025731374hypothetical proteinATGCCGCGCCTGCGTCCTCCCGAGCTGATCGCCGAGTGGTTCGGCCTCGACACGGACTTCGAGCGCACCCCGACCGATCCCGCCGACGCCTATCGCCGCGACGTGTGGCTCGGCCTGGCCCTCGTGGTGCTGGCGGTCGTCGGCTCCGAGCTGGCCCGCTCCGCGGGCATCCTCGAGGAGGACACCGCGCCGTGGCTCGTCGCGCTGCTCTCCGCGGCCGGCGCTCTGCCGCTGGTCGTGCGGCGGCGGTACCCGTTGATGGTCCTGACCGTCGTCTACGCCCACTTCCTCCTGGTCGGGCTGACCCTCCCGGGGATCCCGATGACCGTCGTGCTGCAGGCCGTCTACTTCGTCGCGCTGTACTCGGCCGTGGCGTGGGCACGGGACCGGCAGGCGATGGTGGTCGTGGTCGGGGTGTGCCTGCTCGTGATGTTCACCTGGCTCCTGTGGCAGCTCGCCGTCGGCTCCGGGCTGCAGCAGGCCGCCGAGTCGCGGGGCCTGCTCGACGACCCGCCCGGCTACGTCGACCCGATCGTCGCCATGGTCGCCAACGTCTGGCTCGTCAACATCGCCTACTTCCTCGGCGCGATCGCGATCGGGCAGGTCTCGTGGAACGCGGCCCGGCGCCGGCAGCAGCTGGCACACCAGGCGCTGACCATCGAACGGCAGTCGGCCGAGCTGCAGCGTCGCGCGGTCGTCTCCGACCGGCTGCGGATCGCCCGCGAGCTGCACGACGTCGTCGCCCACCACGTCTCGGTCATCGGCATCCAGGCCGCCGCGGCCCGCCGGCTGCTCGCCAAGGACCCGGTCCTCGCCGCCGAGCCCCTGGCCACCATCGAGTCGGCGTCCCGGGAGGCGGTGACCCAGATGCGCGGCCTCGTCGGGACGCTGCGCGACACCGGGTCCGACGGCGGGTCGGGGGCGCGCTCTCCCGGGCCCGGACTGACGGACATCCCGGCGCTGGCGGCGGCCGACGACGGTCTCGACGTCACGTTCTCGCTCGTCGCCGAGCCGCCCGGTGCCGACACGGAGGTCCCGGCACCCGTCGCGCTGAGCCTGTACCGGACCGTCCAGGAGGGACTGGCCAACGTGCGCAAGCACTCCACGGCACGCACGGCCTCGGTCACCGTCCGGGTCGACCGGCGTCCCGACGCGGCGGCCGGGCCGGGTGGGTCGGCCGGGTCGGCCGGCTTCGCCGAGGTCGAGGTGCTCGACGACGGGCGGACGCGGCCCGGGTCCTCCGGCACCGGGCTCGGCCTGGTCGGGCTGCGCGAGCGGGTCGCCGCCCACCACGGCGTGGCCGAGATCGGCCCCCGGGTGACCGGCGGTTACCGTGTGCGCGTGCGACTGCCCCTGCCCCAGGACCCGGCATGAMPRLRPPELIAEWFGLDTDFERTPTDPADAYRRDVWLGLALVVLAVVGSELARSAGILEEDTAPWLVALLSAAGALPLVVRRRYPLMVLTVVYAHFLLVGLTLPGIPMTVVLQAVYFVALYSAVAWARDRQAMVVVVGVCLLVMFTWLLWQLAVGSGLQQAAESRGLLDDPPGYVDPIVAMVANVWLVNIAYFLGAIAIGQVSWNAARRRQQLAHQALTIERQSAELQRRAVVSDRLRIARELHDVVAHHVSVIGIQAAAARRLLAKDPVLAAEPLATIESASREAVTQMRGLVGTLRDTGSDGGSGARSPGPGLTDIPALAAADDGLDVTFSLVAEPPGADTEVPAPVALSLYRTVQEGLANVRKHSTARTASVTVRVDRRPDAAAGPGGSAGSAGFAEVEVLDDGRTRPGSSGTGLGLVGLRERVAAHHGVAEIGPRVTGGYRVRVRLPLPQDPANANANANANA
AK018_02574675lnrK_1COG2197Transcriptional regulatory protein LnrKATGACGTCGGTGCTGCTCGTCGACGACCAGCGGCTCGTGCGGTCGGGCTTCCGCCTCATCCTCGCCGTCGAGGACGACCTCGACGTGGTCGGGGAGGCGTCGGACGGTGTCGACGCGGTCGCCGCGGCCCGGGAGCTGCGTCCCGACGTCGTGCTCATGGACGTCCAGATGCCCGTCATGGACGGGATCGAGGCGACCCGGCAGATCGTCGCCGAGGACCTGTCCCGCGTGCTGGTGCTGACGACGTTCGACGACGACGACTACGTCTTCGACGCCCTGGCCGCCGGGGCGTCCGGGTTCCTGCTGAAGAACGCGGACGCGGACCATCTCGTCGAGGCCGTCCGGACCGTCGCCGACGGGCACGGGCTGCTGTCGCCGCAGGTGACCCGGCGGGTCGTGGAGCGGATGGTCGCCGGGACGACGGGTGCCGGGGCTGCCCGGGGCACCGGGGTGCCGCCGTCGGCCCCGGACCTGGACCGTCTGACCAGCCGCGAGCGCGAGGTCCTCGTGCTGGTGGGGCGGGGGATGTCCAACGCGGAGATCGCCCAGGAGCTGTTCCTCGGTGAGGCGACGGTCAAGACCCACGTGTCGAACGTCCTGGGCAAGCTCCACCTGCGCGACCGGGTCCAGGCGGTCGTCTACGTCCACCAGCACGGACTGGCCGGGAGCGCCTGAMTSVLLVDDQRLVRSGFRLILAVEDDLDVVGEASDGVDAVAAARELRPDVVLMDVQMPVMDGIEATRQIVAEDLSRVLVLTTFDDDDYVFDALAAGASGFLLKNADADHLVEAVRTVADGHGLLSPQVTRRVVERMVAGTTGAGAARGTGVPPSAPDLDRLTSREREVLVLVGRGMSNAEIAQELFLGEATVKTHVSNVLGKLHLRDRVQAVVYVHQHGLAGSAPGPT0014870_504DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
AK018_02575831hypothetical proteinGTGTACGACGTCGGCGTCGGCGGGGACCAGGCGCGGGACCGGCTGGACCGTGCTCGCCGTCGGGCCTCCCTGCTCGGGCCGCTGGCGTGCCCCGGCACGGTGGCCACCGGCGTCGCCGCGCTGGTCCTGCACGGCGTCCACGGCGCACCGCCCGACGTCCGGCCCGAGGTCACGGTCCCGGACGGGTCGGCCCGCCGGGGCCCCGACCCGGTCCGCGTCCGCCGGCTGCGGCTCCGCCGCTGGTCGGAGGTCGACGGCGTCGCGTGTGCCCTCCCGGAGGACGCGTTGGCCCAGGCGGTCCCCGCCCTGGCGCGGTACCGCGCCGTCGCGATGATGGACTCCGCGGGCCACCGCGGCCTCGTCTCGCGCGCCGGCCTCGACCGGGCCCGAGAGAAGTCCGGCGACCTCGTCGGGGCGGCCGCGCGCCGGTCCTGGTGGAACGAGTGCGATCCCCGGGCAGAGTCGCCGGCCGAGACCTGGGCACGCCTTGGCTGCGTCGACGCCGGCGTCGCGCCGGACGCGCTGCAGCTCCGGCTGGTCACGTCGTCCGGGCTGGTCGTGGCCCGGGTCGACCTGGCGTGGCTGCTCCCCGGCGACAGCGCGCTCCTGGTCGAGATCGACGGTCGTGACGTCCACTCCCGGCTCGACGCCGTCGTCGCGGACCGCGCCCGGCAGAACCGGATCGCCGGCCGACGGACGCTGGTACGCCGCTACACCGGACGGGACGCCTGGGACGGCACCGTCGCCCGGGAGGTGGCTGCCGTCCTGGCCGCGGAGGGCTGGTTCCCGCAGCGTCCCCCGGTGGACCACCGGTTCGTCCTGCCGTCGTGAMYDVGVGGDQARDRLDRARRRASLLGPLACPGTVATGVAALVLHGVHGAPPDVRPEVTVPDGSARRGPDPVRVRRLRLRRWSEVDGVACALPEDALAQAVPALARYRAVAMMDSAGHRGLVSRAGLDRAREKSGDLVGAAARRSWWNECDPRAESPAETWARLGCVDAGVAPDALQLRLVTSSGLVVARVDLAWLLPGDSALLVEIDGRDVHSRLDAVVADRARQNRIAGRRTLVRRYTGRDAWDGTVAREVAAVLAAEGWFPQRPPVDHRFVLPSNANANANANA
AK018_02576888btuD_10Vitamin B12 import ATP-binding protein BtuDATGTCCACTCTCGAGGTCAGGGACCTGACCAGAACCTTCGGCGATCTGCGGGCCGTCGACGGCGTCTCCTTCGCCGCCCGGGGCGGCATGCTCACCGGGTTCGTCGGCTCCAACGGCGCCGGCAAGACGTCCACGATGCGCATGATGATGGGGGTCCTCGCGGCCACCTCCGGGGAGGTGCTGTTCGACGGCGCCCCGGTGACCCGCGCGGACCGGCGCACGTTCGGGTACATGCCCGAGGAGCGCGGCCTGTACCCCAAGCAGCCGGCGCTCGACCAGCTCGTCTACCTGGCCCGGCTGCGCGGCATCCCCGCCGCGACGGCGCGTGCCGAGGCGATGGAGCACCTGGAGCGGCTGGGCCTCGGCGAGCGCGCCCGCGACCACGTGGAGAAGCTCAGCCTCGGCAACCAGCAGCGCGTCCAGATCACGGCGGCTCTCATGGGCCGGCCGCGGGCCCTCATCCTCGACGAGCCCTTCTCGGGGCTGGACCCCACGGCGGTGGACGACATGGTCGACCTGCTGCGCCAGCACACCGCCCGCGGTGTCCCGGTGCTGTTCAGCTCGCACCAGCTCGACCTGGTCGAGCGCCTGTGCGAGCGGCTCGTGATCCTGCGCGGCGGCCGGGTCGTCGCGGACGGCACGCCGGCCGAGCTGCAGGAGACCGGCACGCTGCGGCACCGCCTCGTCCTCGACGGCGACGCCGGCTGGGTCCGCGGCGTGCCCGGTGTGCACGCCGTCGACGTGGACGGTCCGACGGCGCTGCTCGAGCTCACCGACGACGCCGCGACCCAGCGCCTGCTCGCCGCGGCGCTCGAGCGGGGCGCCGTCCACGAGCTCTCCCCGGTCCGCCCCTCCCTGGCCCAGATCTACCGCGAGGTGACCTCATGAMSTLEVRDLTRTFGDLRAVDGVSFAARGGMLTGFVGSNGAGKTSTMRMMMGVLAATSGEVLFDGAPVTRADRRTFGYMPEERGLYPKQPALDQLVYLARLRGIPAATARAEAMEHLERLGLGERARDHVEKLSLGNQQRVQITAALMGRPRALILDEPFSGLDPTAVDDMVDLLRQHTARGVPVLFSSHQLDLVERLCERLVILRGGRVVADGTPAELQETGTLRHRLVLDGDAGWVRGVPGVHAVDVDGPTALLELTDDAATQRLLAAALERGAVHELSPVRPSLAQIYREVTSPGPT0006725_17050DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_025771242hypothetical proteinATGAGCGCCCCGACGCAGGAATCCACCCGGACGACGACGAACCCGACCCCGGAGCCCACGGACGACAGCACCCGCGGCGCCTGGCGTCTGGTGATGCAGCGCGAGATCGTCACGCGAGTGATGAACAAGGCGTTCGTGATCGGGCTCGTGACCTCGCTGGTCGTCATCGCGGCGCTCGCGGCCTTCTTCGCCTGGCAGGCCAACCGGGTCGACACCTCCACCGTCGCGGTGAGCGGCGGCGACAGTGCGGCCGTCGCCGCGGCCACGTCGGCCGGAGAGATCGCCGCGGCCGAGGGCGGTAACGACGAGATCGAGGTCCTCCAGGTGGGTGACGACGCCGCCGCGCGGGCCGCTCTCGAGGACGGCGAGGCGGACGCCTGGTTGCACCCGGGCGACGACGGCTGGGTGCTGGCCGGCCAGGGCGAGCCCGGCGGTGACCTGCAGCGGTACGTGGCCACCGCCGTCGAGCAGCAGGTCGTCGCCGCGAACGCGGAGGCCGCCGGCACGTCGGTGGCCGAGCTGTCGGCCGGTGCGGAGCTGACCACCGAGGCCCTCGAGCCGGACGCGGTCGGCGAGCAGGCGCTGTTCTTCGCGACGTTCGCGCTGTCGTTCCTGTTCTTCGCGGGGGCGATCACGTCGGGCAACATGATCGCCAGCTCGGTGGTCGAGGAGAAGCAGTCGCGGCTGGTGGAGATCATCGCGACGGCGGTGCCGCTGCGCCAGCTCCTGGCGGGCAAGATCCTGGGCAGCTCGGTGATCGCCGTCGGGCAGAACCTGCTGTTCGCCGGCGTCGGGCTGGTCGCGGTCTCGGCGAGCCCCGTGTCGATGGCATTGCCCGCGCTGTCGACGTCGTTGATCTGGTTCGTGGTGTTCTTCGCCGTCGGGTTCCTCGCGCTGGCGGCGCTGTACGCCGTGGCCGGTGCCCTGGCCAGCCGCGCCGAGGACCTGCAGTACACGGCGACCCCGATGACGTTCCTGGTCATGGGTGTGTACTTCGTGACGTTCACGGCCTCGGGCACGTTCCTGACCGTGCTGTCGTACGTGCCGATCGCCTCCGTGGTGGCCATGCCGGCCCGGATCCTCTCCGGGGACGCGGCGTGGTGGGAGCCCGTGATCGCGCTGGTGCTCCTGGCCGCGTTCGCCGCCGTGGCGCTGCTCGTCTCCGAGCGCGCGTTCCGCGGGTCGCTGCTGCAGACCGGCGGGCGCATCTCCTGGCGGCAGGCGCTTCGCCCGCAGAGCTAGMSAPTQESTRTTTNPTPEPTDDSTRGAWRLVMQREIVTRVMNKAFVIGLVTSLVVIAALAAFFAWQANRVDTSTVAVSGGDSAAVAAATSAGEIAAAEGGNDEIEVLQVGDDAAARAALEDGEADAWLHPGDDGWVLAGQGEPGGDLQRYVATAVEQQVVAANAEAAGTSVAELSAGAELTTEALEPDAVGEQALFFATFALSFLFFAGAITSGNMIASSVVEEKQSRLVEIIATAVPLRQLLAGKILGSSVIAVGQNLLFAGVGLVAVSASPVSMALPALSTSLIWFVVFFAVGFLALAALYAVAGALASRAEDLQYTATPMTFLVMGVYFVTFTASGTFLTVLSYVPIASVVAMPARILSGDAAWWEPVIALVLLAAFAAVALLVSERAFRGSLLQTGGRISWRQALRPQSPGPT0006730_3703DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_025781641hypothetical proteinATGAGAGATAGATTGCCGGACATGGCTCGACGACGTGATCCCGTGCAGTTCGACCTCGTCGCCGACGACGGCGAGCTCGGGGGCGCCGGGACGGCCGCGGCCGGGTCGGCGAGCGAGTCTGTCGAGCCCGGCTGGTTCGGCCGCCGCGTCGCCGGACCCGTCCGGGATCGCTGGCGGGCGACGCCGCGCCGCCTGCGGGCCGGGATCGTCGGCGTCACCGCGGTCGCCGTCGTCGGGACGGCGGCCGGGGTCGCCGCGCTCGACGCCCGGTCCGACGCCGCGCACGCCGAGCACATGGCCGAGATGCCGGGCGGCGTCGCGGACCTGTCCGAGCCGCTGGAGGAGACCTGGCGGGTGGAGACCGACGAGGGCGTCCTGGCCGTCTTCCCGGACGGTGTCGTCGTCACCCGCGACGGGACGGACGTGCTGGGTGTCGACGTCGCCACGGGGGACGAGGTGTGGCGCCACGAGCTGGGGGCTCTCGTCGAGTGCGGTCCGAACACCGTGCGCGGGAACGTCCTCGAACCGGTCGACCGACTGGTCTGCGTGCACGGCCAGCCCGGACGCACGGCGACGGTGCTGGACGCCTCCGGGAGCGTGGTCGGCCAGCGAGAGCTCGGCCAGGCGAACGGGCGACGGGGCGATCGGATACCGGGCGAGCCGGAGATCGCGCCGGCCGCTGACGGGGCGATCGCGGTGCTCGAGCCCGTCGACGAGGCGGTGCCCGTCGTCGACCCGGACGACCCCGCCGGCAGCCTCGCCCGGCTGCGTGCGGACGGCGTCTGGCAGGACCCGACCTTCCGGGTCGAGGACGCCCTGACCGGAGAGGTCCGGGGCGAGGCGACGATCGTGCTGGGCTCCGCCGGCGAGGACCTGTCGGGATGTCTCGTCCGGCCGCCCGAGGGGTCCGCCCGCATCGACCTGTTTCCGTGGTTGCAGACATGGTTCGGGGACGTCCGGCTCGACGTGTGCGACCGGAGCGCGGTGCTGTCCTCGCGGGGGGAACGTCAGGAGGCGGTGCGCATGCCGTCGGTCGACGGCGATGACCTGCTGCTGGGCGTCGCGGACGGGATGCGTTTCGTGACGCCGGACGGGGGCGACGAGCTGCCCGGATCGGTGCTGGACCCGGCCGCGGCGGACGGCTCCGACGGGCCGCGGATGATCCGCGACCCGGAGGGGCGCCTGGCCGCCGTCGACGGGTCCGGGCGTCGTGCCTGGACCGCGGAGCCGGACGACGTCGTCGGTGTGCTGGTGCGTGCGGGTGGGACCGCCGTCGTCGCTCGCGCGGGGACCGTCGCCTCCGGGATCGACCTCGGCACCGGGGAGGTGGCGTGGTCGCGCGACGACCTCGTCGACAGCACCCCGGCCACCAGTAGCGGCGCGCTCCTCGGCAACCCGCTCACCGACGGTTCGATCGCCCTGCTCGTGCTGCCCGGTGGTCCCGACCTCGATCTCGTGGCGATCGAGCTCGACGACGGCCGGACGCTGTGGCGCACCGAGCTGGGTACCGACCAGGGGAACCTGCAGGCCGTGGCGGGGCACGCCGTCCATGTCGTCCACGGGGGCGGTGGCTTCGTCGAGACGGTCGACGGGGTGCAGGTCGTGACCTCCGACGCCGCACTCGTCGGCCTGGCGAACTAGMRDRLPDMARRRDPVQFDLVADDGELGGAGTAAAGSASESVEPGWFGRRVAGPVRDRWRATPRRLRAGIVGVTAVAVVGTAAGVAALDARSDAAHAEHMAEMPGGVADLSEPLEETWRVETDEGVLAVFPDGVVVTRDGTDVLGVDVATGDEVWRHELGALVECGPNTVRGNVLEPVDRLVCVHGQPGRTATVLDASGSVVGQRELGQANGRRGDRIPGEPEIAPAADGAIAVLEPVDEAVPVVDPDDPAGSLARLRADGVWQDPTFRVEDALTGEVRGEATIVLGSAGEDLSGCLVRPPEGSARIDLFPWLQTWFGDVRLDVCDRSAVLSSRGERQEAVRMPSVDGDDLLLGVADGMRFVTPDGGDELPGSVLDPAAADGSDGPRMIRDPEGRLAAVDGSGRRAWTAEPDDVVGVLVRAGGTAVVARAGTVASGIDLGTGEVAWSRDDLVDSTPATSSGALLGNPLTDGSIALLVLPGGPDLDLVAIELDDGRTLWRTELGTDQGNLQAVAGHAVHVVHGGGGFVETVDGVQVVTSDAALVGLANNANANANANA
AK018_025791671hypothetical proteinATGGGCCGACCACGCCGGGACGACGTCGTCACCTTCGACGTCTCCCACGACGCCGACGACGGGGTCGACGACGCCGCGCGCACCCCCGACGAGCGGGCGGGCGGCGTCGCCGCGGTGCCCCGGCGCCACCGGGTCCGCCGCTGGTGGCGCAGCGCGTCCCGGCGCCAGCGGCGCACGGCGACGGCCCTCGTCGCGGGTGCGGCCGTGGTGCTGACCGGCGGCACCGTGGCGGCATCCACGCTGGCGGACCACGTCGAGGCCGAGCGGCTGCGCGCCGCCCCGGGCGGGGTGCTCTCCCTGGACGGGCCGCTCACCGAGGTCTGGAGCGCCGACGTCAGCAGCATCGCGGCCGTGCTGCCCGCGGGCGGCATCGTCACCACCGAGGGTCCCCGGGTCGTCGCCCGGGAGGTCGCCACCGGTGCCGAACGATGGGCGGTCACCCTGACCGGGGCGGTGGAGTGCGGTCCCCGGCCACGGTTGGACAGCGTCGCGGAGTGGACGGTGCCCGTCGAGACGGTGACGTGCGTGCACGGCCGGGCCGGGAACCGTGCGGTCACGGTGCTCGACGCCGACGGTGCCGTCGTCGGGCAGCGGGGGCTGGCGGCCGAGCGGTACGGTGGCCCGGCCCGGTCGGTGGTCGCGGCGGCGGACGGCGCGCTGGCCGTCACCGAGCACGACACCGACCTGCCGGAACGGCTCACCTTCGCCACGCCGGACGAGATGTTCTCCGAGCTGAGCCAGATGGAGGTCGACGGAGGGGGCACGCGGACCTGGCTCGAGGACGCGCTGACCGGGGAGCGTCGGCAGACCCTGGACCTGGTCGAGCTGCCGTGGGCGCACGGCGTCGACTGCTACACGCTGGGGCAGGACGAGGTCGACTCCTCCGGCCTGGGGACGGCCGGTCGGGCCACGCTGGACCTCGGCGCGACGCTGGGGACGCCGACGATGGTCGGCTTCGCGGGCTGCGCCGCCGACGGCGCCGCGACCTACACGGGCGTCCCTCTGGGGTACCGGTCCGCGCTCGCCACGACGTGGCCGCGGCAGTCCGTGCGCCAGCCGTACCCGGACGAGCGCTTCGTCGTGCCGGCCGGGGAGGGCAGCAGCCTCCTCGCCGACGACGGCGAACCGGTCCTCGACGTCCCCGGCGTGCGTCTGGAGGTGCCCGCGACGGACGGGACCGCCGGCGACGGGTACGTCGCCGTGGAGGGCGCCGAGCGCGTCGTCCTGCTCGCCGAGGACGGGAGCGAACGGTGGAGCGCGCCGGGAGAGACCCCCCGGGTCCTGGTGCGCACCGACGACCTCGTGGTCGTCAGCGGCTGGGACGAGCTGGTCGGCTACGACGCGGCCGACGGGACCGAGCGGTGGCGGCTGGCCCCGGACGCCGGGCCGCGGCGGTACGTGCTCTCGGCCGTCACCGACGGCGTCCGGATGACGGGTGTGCTGATGGACGTCTCGGTCGAGGCCACGTCCGAGCTGTCGCTGTTCACGCTCGACCTGCGCACCGGGCGAGAGGTGGCCCCGCGGGTGCGGGACGTCGCCACGCGCACGGTGCTGGCCGTCGACGGCCACCTCGTCGTGCCCGAGCTGCCGGCCGACGAGGTGCTCCTCGGCGACGCCACGACGCCGGTGGTGGGGCTGCGCGTGCTCGCTCCCGGCGAGGGCGGGGCCTGAMGRPRRDDVVTFDVSHDADDGVDDAARTPDERAGGVAAVPRRHRVRRWWRSASRRQRRTATALVAGAAVVLTGGTVAASTLADHVEAERLRAAPGGVLSLDGPLTEVWSADVSSIAAVLPAGGIVTTEGPRVVAREVATGAERWAVTLTGAVECGPRPRLDSVAEWTVPVETVTCVHGRAGNRAVTVLDADGAVVGQRGLAAERYGGPARSVVAAADGALAVTEHDTDLPERLTFATPDEMFSELSQMEVDGGGTRTWLEDALTGERRQTLDLVELPWAHGVDCYTLGQDEVDSSGLGTAGRATLDLGATLGTPTMVGFAGCAADGAATYTGVPLGYRSALATTWPRQSVRQPYPDERFVVPAGEGSSLLADDGEPVLDVPGVRLEVPATDGTAGDGYVAVEGAERVVLLAEDGSERWSAPGETPRVLVRTDDLVVVSGWDELVGYDAADGTERWRLAPDAGPRRYVLSAVTDGVRMTGVLMDVSVEATSELSLFTLDLRTGREVAPRVRDVATRTVLAVDGHLVVPELPADEVLLGDATTPVVGLRVLAPGEGGANANANANANA
AK018_025801698hypothetical proteinATGGCGCGGCGCCGCGACGACGCGATGGTCTCCTTCGACGTCTCCGCCGACACGTCCGGCGACGCCGTCGAGCAGGGCGCAGGGCACGACGGCGGCGCGAGGACGCCGGAGCCGCCGCGGCCGGGGTGGCTCGAGCGTGCCGCGGCGTGGTGGCGGGCGGCGTCCCCGCGTCGGCGGCGCGCGACGGTGGGTGTCGGCGGCGGCGCGGTCCTCGTCCTGGTGGGCGGACTGGTCGCCGGCGGGGCGGCGGCGGCCCACCTCGAGTCGGAGCGGCTGCGGGCGGCACCGGGTGGCGTGCTCGCCCTCGAGGGCGAGCTGACCGAGGCGTGGAGCCGGGACGGGTCCGGGGTGGTCGCCGTGCTCGACGGCGGCCGGCTGGCCTTCGTCGAGGACCGGACGCTGGTCGTGCACGACGCGGCCGACGGCAGCGAGGTGTGGCGCGCCGCGCTCGGACCCGACCTGGAGTGCGGCCCGCGACCGCGGCTGAGCAGCGGGGTCGAGTGGACGATGCCGAGCACGACCCTGACGTGCGTGCACGGCGACGACGGTGCGCGCACCGTGACGGTCCTGGACGCCGACGGTGCCGTCGTCGGGGACCGCGTCCTGGACCCGGGTGTCTACGGCGACGAGCACGTGCGGGTCGCGCCGGCCGCCGCCGGCGGCCTGGCCGTGGTCGAGCACGTGATCGACCTGCCCGGCCGTCGGACGGTCGAGAACTCGCCGACCACCCAGCAGCTCGTCGAGGAGATCGACCCGAACGGCCTGGGTACGGCGACGCTGCGGGTGGAGGACGCGCTCACCGGGCAGGTGCGTGCCGAGAGCACGGCGAACCGCTGGCCGACGTCGCTGCAGGACTGCGTGTGGTTCAGCGCCGACGCCGAGGGACGACCGCGACCGGCGACCACCCGGATCGAGCTGTGGGGCGTGCGGCAGCCCGTCGCGACGCCGTCGGTCGTGGGCTACCAGCTGTGCCAGGGCGGCACCGGGCTGGCGACGGACGGCACGCCGCTCGACGTGGCCGACGTCACCGGCGTCTCGTTCGTCGACCTGCAGGGCCTCGGCGGGGTGGAGCCGTTCCCGGGCGGCGGTCACGTCGTGCCCGGTCCCCGGGGCGGCACCGTGCTCGTGACCGCCGAGGACGGTCGGCGGGAGGACCTCGCGGGCCGCCTCCGCGTCCCCGTGGCGCAGGTGGGGCCGGTCGAGCCGGAGCTGGTCGTCGCCCGCGAGCTCGGCACCGCCGTCGGGATCGGCGACGACGGCGCCGTCCGCTGGGAGGCGGAGCTCGGGGGCGACCCGGACGTGCTCGCCCGCGTGGCCGGGACGACGGTGGTGGCGACCGACGCGTCCTCGGAGCTGGTGGCGCTCGACGACGCCGACGGGTCGGAGCGGTGGCGCGTCGACCTGGTCCACCCCGCCCGGGACGGTCGCTGGGTCCAGCCCACCTCGGCGGTCACCGACGGTGAGCGGGTCACGGTCGCGCTCGTGGAGGGCCTCGACGGCGGTCCGACCTGGGCCGGCAGCCTGGTGACGGTGGACCTCGCCACCGGGGAGGCCCGCCGGACGGAGCTGGACGGGGACGGGCTGCCGTGGGTCACCGCCGTCGACGGCCACCTGCTGCTCCACGAGCTCGACCCGGGCGGCGGGGGATTCGCCGCCTGGCCGCGGATCGCTGCGGTGAAGATGCTCGAACCGCGCTAAMARRRDDAMVSFDVSADTSGDAVEQGAGHDGGARTPEPPRPGWLERAAAWWRAASPRRRRATVGVGGGAVLVLVGGLVAGGAAAAHLESERLRAAPGGVLALEGELTEAWSRDGSGVVAVLDGGRLAFVEDRTLVVHDAADGSEVWRAALGPDLECGPRPRLSSGVEWTMPSTTLTCVHGDDGARTVTVLDADGAVVGDRVLDPGVYGDEHVRVAPAAAGGLAVVEHVIDLPGRRTVENSPTTQQLVEEIDPNGLGTATLRVEDALTGQVRAESTANRWPTSLQDCVWFSADAEGRPRPATTRIELWGVRQPVATPSVVGYQLCQGGTGLATDGTPLDVADVTGVSFVDLQGLGGVEPFPGGGHVVPGPRGGTVLVTAEDGRREDLAGRLRVPVAQVGPVEPELVVARELGTAVGIGDDGAVRWEAELGGDPDVLARVAGTTVVATDASSELVALDDADGSERWRVDLVHPARDGRWVQPTSAVTDGERVTVALVEGLDGGPTWAGSLVTVDLATGEARRTELDGDGLPWVTAVDGHLLLHELDPGGGGFAAWPRIAAVKMLEPRNANANANANA
AK018_025811680hypothetical proteinGTGGGGCGACGACGCGGTGCCCCCCAGGGGGCGTTCACGTTCGACCTCGTGCCCGAGGACGGGTCCGAGGCCGAGCAGCACCCTGCGGGCCGGCGGGTCACGGAGGAACCCGACCCGGGTACCGCCCCGGAGGCCGAGCCCCCCGCCCTGCTCGCCGGTGCCCGACGGCGCTGGGCCGACCGGCCCCGCCTGCTGCGGTGGGGCGTGCCGGTGGCCGCGGTGGTCGCGCTCGCCGCGGTGGTCGTGGTCGAGGGGGTCGTCGACCGGTGGCGCGGGGACGACCTGCGGGCGGCGGCGGGCGGGGTGAGCGACCTGTCCGGTCCGCCGTTCGAGTCCTGGCGCCTCGACGAGGATGTCGGCGGCATCGGACTGACCGGCGGACTGATCGCGATGGAGGGCGACGTGGCCGCCCTGCTGCACCACGACGAGCTCGTCGGGGTCGACCTGCGGACCGGTCAGCCGGTGTGGACCGTCGAGCTGACCGCGACCGACGCGAGCTGCGGGCCCGGGCTGGCGATCTGGGGCGACACCGTCGACCTGCGACCGGCGGAGCTCGTGGTCTGCGTCGCCGGGACGACCGACGACGCGGTGGACGTCACCGTCGTGGAGGACGACGGCAGCGTCCTGGTGCGCCGCACCGTCGAGGGCGAGCACGACCTCCTCGTGCCGGGACCCCGCGGCACCCTGGTGTCGGCGACGTGGACCGGCGACCCGGACGACGTCGACGTGGAGCTGCGCGGCGACCCGCTGACGAACCTCACCGTCCAAGGCGACATCGACGACGGGTACGACCTGCAGCTGCGGGCGGTGGACGCCGTGACCGACGAGGAGCGCTGGGCCACGACGGTGCCCTTCGGGACCGTCCGCGACGCCACGCAGTGCGTCAGCTGGGACACCGGGGGCCGCAACGCGCAGGTCGACCGGCGGGCCACCCTCGACTACGCGGTCAGCCAGCAGCTGATCGGGGTCGCCGGCTGCGGCATCCTCGCCTACGTCACCCCCGACGGGAAGCGGCTGGACCTGCCGGACGACGACGGCGACGACGAGGCGGGCACGGTGCGCCGGGTCCGGCCGCTCGCCGACGGCGGCTTCGTCGTCTCCTCCGGCGTCTGGAACCTGCCGGTGTGGGACCACGCCGTCCTCGGCCCGGACGGCGAGCACTGGTACACCGTGGAGGGGAAGCTGCTCGAACCCCTGTCCACCGGGGGCGGGGGCGGCGGCCAGCAGCTGGTCGCCCACGCCGCCCGCACGGTCGCGCTGGACCAGGACGGTCAGGAGCTGTGGACGGCGGACGTGAACACGCAGACGTTCCTGGCCCGGACCGAGGAGGTCGCCGTCGTCCTGGACGTCCAGGACCGCGTCCTCGGGTTGGACCGGTCCGACGGCACCGTGCGGTGGGTGCGCGACGACGTGGTCACGCAGTTCACGGCCCTGGAGGACGGCGGCCGGACGGGTGAGCTCGAGGCGGCCTTCACCGACGGCGCCGTCGTGGCCGTGGTCGTGCCCACCTACACCGGCGAGCGGGTGGTCTCCCGGTGGCGTGCCGTCGACGTCAGGACGGGGGAGGACCTGTGGTCCACCGAGCTGGCCGCGGACGGCTGGGGGCTGGAGCTGGCGGCGTCGGGCCACCTGCTGCGGTGGTCCCCGCGGGGCCTGACGGGGTACACGACCGGATCGTGAMGRRRGAPQGAFTFDLVPEDGSEAEQHPAGRRVTEEPDPGTAPEAEPPALLAGARRRWADRPRLLRWGVPVAAVVALAAVVVVEGVVDRWRGDDLRAAAGGVSDLSGPPFESWRLDEDVGGIGLTGGLIAMEGDVAALLHHDELVGVDLRTGQPVWTVELTATDASCGPGLAIWGDTVDLRPAELVVCVAGTTDDAVDVTVVEDDGSVLVRRTVEGEHDLLVPGPRGTLVSATWTGDPDDVDVELRGDPLTNLTVQGDIDDGYDLQLRAVDAVTDEERWATTVPFGTVRDATQCVSWDTGGRNAQVDRRATLDYAVSQQLIGVAGCGILAYVTPDGKRLDLPDDDGDDEAGTVRRVRPLADGGFVVSSGVWNLPVWDHAVLGPDGEHWYTVEGKLLEPLSTGGGGGGQQLVAHAARTVALDQDGQELWTADVNTQTFLARTEEVAVVLDVQDRVLGLDRSDGTVRWVRDDVVTQFTALEDGGRTGELEAAFTDGAVVAVVVPTYTGERVVSRWRAVDVRTGEDLWSTELAADGWGLELAASGHLLRWSPRGLTGYTTGSNANANANANA
AK018_02582894hypothetical proteinATGACGGGGTACGACGCCTGCTTCCTCGACCGCGACGACCGGCTGCGCGTCCCGCTGCCGGTACCGGCCGACGGTGGGCCCGACCCGGCCGAGCTGCGCCGGCTCGACCACCCGCACTTCAGCGTGCTGCTGCACTCCGGGCGCCGGCTGGCGGTCGCCACCGCCTGCATGATCGACGGCGCCCGCCTGCAGCCGCTGGCCCGCTCCGGGTCGTGGCGGCTCGACCCCCAGGCGCCGCCCGCGGAGCAGGCCGACAACGACCTGTACCACCACAACGTCCTCGACCGCGGTCACCTCGTGCGCCGCCTGGACCCGATGTGGGGCACCGAGGAGGAGGCGCGCGACGCCGGCGAGGCGACCTTCGTCTACACCAACGCCGCCCCGCAGGTCGACGAGTTCAACCAGTCCAAGAGCCTGTGGAACGGGTTGGAGGACCACGTCCTGGCGTTCGCCGACGCCCACGACCACCGGGTCGTGGTGCTGACCGGCTGCGTCTTCGCCGACGCCGACCCCGTCTACCGCGGCGTCGCCCTGCCGCGACGGTTCTGGAAGGCCGCAGCCTGGGTGACGACGGACGACGGCGAACGCGTCCTGCGCTCGGCGGGGTTCCTGCTCGACCAGTCGCCCCTGCTCACCGACGCCGAGCTGAGCACCGCCACCGGTCGGGCGCTCGCGGTGGGGAACGTCCCGCCGCTGGGCCCGTACCGCACCTTCCAGGTACCGGTCGCCGACCTCGCGGACCTGACCGGACTCGACCTCGGCCCGCTGGTCGGGGCGGACGTGGTGCCCACCGAGCGCAGGGCCCTGGAGCCGCTGGCGGCGGCCGGCCCGCCGTCCGCGGGCTGGACGGAGCTGAGCGAGCCGGCCGCCATCACCCTCGGACCGACGACGTAGMTGYDACFLDRDDRLRVPLPVPADGGPDPAELRRLDHPHFSVLLHSGRRLAVATACMIDGARLQPLARSGSWRLDPQAPPAEQADNDLYHHNVLDRGHLVRRLDPMWGTEEEARDAGEATFVYTNAAPQVDEFNQSKSLWNGLEDHVLAFADAHDHRVVVLTGCVFADADPVYRGVALPRRFWKAAAWVTTDDGERVLRSAGFLLDQSPLLTDAELSTATGRALAVGNVPPLGPYRTFQVPVADLADLTGLDLGPLVGADVVPTERRALEPLAAAGPPSAGWTELSEPAAITLGPTTNANANANANA
AK018_02583786end_2COG0648putative endonuclease 4ATGAGCATGCCGATCGGTGCCCACGTCAGCCTCGCCGACGCCGTGACCGAGGCCCAGGAGATGGGGGCCGACGTCGTCCAGGTGTTCCTGTCCGACCCGCAGGCGTGGAAGGTGCCGCCGCTGGACTACCCGGGCGGGGCAGAGGCCTTCCGGACCGCGACGTCGGAGGCCGGGATCGACGTCGTCGTGCACGCGCCGTACGTCATCAACGTGGCCTCGACGAACAACCGCATCCGCATCCCGAGCCGCAAGCTGCTGCAGCAGATCATGACCGGCGCCGGCGAGATCGGCGCGCGGGGGGTGGTCGTGCACGGCGGGCACGTCACGGCGAAGGACGACCCGGCCAAGGGGTTCGACAACTGGCGCAAGGCGATCGAGGCGCTCGACACCGACGTCCCGGTGCTCATCGAGAACACGGCCGGGGGCGACCACTCGATGGCACGGCGGCTGGACCGCATCGCGGAGCTGTGGGCAGCGGTGCAGCAGGCGGACAGCGACGTCGAGGTCGGCTTCACGCTCGACACGTGCCACGCCTGGGCCGGAGGACTCGACCTGTCCACGGTGGTGGACGACGTCCGGGCGATCACCGGCCGGATCGATCTCGTGCACGCCAACGACTCGCGGGACGCCGCCGGTTCCGGGGCGGACCGGCACACGAACTTCGGGGCCGGCGAGATCCCGCCCGAGCTGCTCCTCGACGTGATCCGCACCGCCGGTGCACCTGTCGTGTGCGAGACGAAGGGCGACGTCGCCACGGACATCACCTGGCTGCGCGAGCGCCTCTGAMSMPIGAHVSLADAVTEAQEMGADVVQVFLSDPQAWKVPPLDYPGGAEAFRTATSEAGIDVVVHAPYVINVASTNNRIRIPSRKLLQQIMTGAGEIGARGVVVHGGHVTAKDDPAKGFDNWRKAIEALDTDVPVLIENTAGGDHSMARRLDRIAELWAAVQQADSDVEVGFTLDTCHAWAGGLDLSTVVDDVRAITGRIDLVHANDSRDAAGSGADRHTNFGAGEIPPELLLDVIRTAGAPVVCETKGDVATDITWLRERLNANANANANA
AK018_02584231hypothetical proteinATGTCCCTGGTGATGCTGGCCAACATGCTCGTGCCGGTCGTCGTCGCGCTCGCTCTCGTCGCGATCGCGGTGGCGCTCGTCCGCGGTGGTGCGCGCGGCGCCTCCGTGCCCACCGACCGGCCCGGACTGCTCGAGCAGCGGCTGGAGCACCTCGACCGGCTGCACGCCGCCGGCCGGATCAGCGACGTCGAGCGTGCCGACGCCCGGGCCCGTCTGCTCGGCACGCTCTGAMSLVMLANMLVPVVVALALVAIAVALVRGGARGASVPTDRPGLLEQRLEHLDRLHAAGRISDVERADARARLLGTLNANANANANA
AK018_02585825pdxK_2COG0351Pyridoxine kinaseATGCCCAGCACACCCCCGCTCGCCTACGTGATCGCCGGCTCCGAGGCCACGGGAGGCGCCGGCATCCAGGCCGACCTCAAGACCTTCCAGCAGCGCGGCGTCTACGGCGTCGGCACGCTGACCTGCATCGTCTCCTTCGACCCGCTGCACGACTGGGCGCACCGGTTCGTCCCGGTCGAGCCGCAGGTGATCGTCGACCAGATCGAGGCGGCCACGGCCACCCACGACCTCGACACGGTGAAGATCGGCATGCTCGGCACGCCCGCGACCGTCGACGTCGTCGCGAAGTCCGTGTCCACGCGACCCTGGCGGCACGTGGTCCTCGACCCGGTCCTCATCTGCAAGGGCCAGGAGCCCGGTGCGGCGCTCGACACCGACACGGCGCTGCGCGAGCGCGTCCTGCCGCACGCGACCGTCGTCACCCCCAACCTGTTCGAGGCGGCGACGCTGGCGGGCATGGACCGGATCGACGACGTCGCCGACCTGACCGAGGCCGCCCGTCGCGTCCACGCGCTGCTCGACACCTCCGCGGGCCCCCGCTACGTGGTCGCCAAGGGCGGGGCCGAGCTGCCCGGTCCCGACGCCGTCGACGTGCTGTTCGACGGCGAGGAGGTCACGGTGCTCACGGCCCCGAAGATCGGCGAGGAGCGCGTCTCGGGTGCCGGCTGCACGTTCGCGGCCGCGATCACCGCCGAGCTGGCCAAGGGTGCCGACGTCCCGGCGGCCGTCGAGGTCGCCAAGGACATGGTCACGGCCGGCATCCGGGCCCGGGTCGCCGCGCACACCCCCTTCGACACCGTCTGGCAGGGCGCCTTCACCGGCTGAMPSTPPLAYVIAGSEATGGAGIQADLKTFQQRGVYGVGTLTCIVSFDPLHDWAHRFVPVEPQVIVDQIEAATATHDLDTVKIGMLGTPATVDVVAKSVSTRPWRHVVLDPVLICKGQEPGAALDTDTALRERVLPHATVVTPNLFEAATLAGMDRIDDVADLTEAARRVHALLDTSAGPRYVVAKGGAELPGPDAVDVLFDGEEVTVLTAPKIGEERVSGAGCTFAAAITAELAKGADVPAAVEVAKDMVTAGIRARVAAHTPFDTVWQGAFTGPGPT0009125_2501DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009125-pdxK|pdxY-K00868NANA
AK018_025862724ppc_2COG2352Phosphoenolpyruvate carboxylaseGTGAGCGACAACTACGGACACCAGAGCCCGAGCACGGGCGCGATCGAGCGTGTGGTCGCCCGTCACGAGATGCCCGACCCGCTGCGCGACGACATCCGCCTGCTCGGCGGCCTCCTGGGCGACGTCCTGCGCGAGGCCGGCGGCCAGGACCTGCTCGACGACGTCGAACGCCTGCGCGAGCTGACGATCCGCGCCTACGGGGTGGACGACGGCGGTGCCGCGCTGGCCGAGGCCTCGGACGTCGTCGCCGGCTACAGCCTGGAGCGGGCCGAGCAGGTCGCGCGCGCCTTCACGTGCTACTTCCACCTGGCGAACCTGGCCGAGGAGTACCACCGCGTGCGCGTGCTGCGGCAGCGCGAGGCGGAGTCCGGGGCGGCGATCGAGGAGTCGCTGCCGGCGGCCTTCACCCAGCTGACCGAGGAGGTCGGGCGTGACGAGGCGCTGCGTCGCCTGTCCGAGCTCGAGTTCCGCCCGGTGCTGACCGCGCACCCCACCGAGGCTCGCCGTCGGGCCGTCTCGGGTGCCGTGCGGCGCATCTCCGACCTGCTGGCCGACCGCGACACCGTCGAGCTGGGCGGCACCTCCCGCTCGGAGAACGAGCGCCGGCTGATCGCCGAGATCGACACGATGTGGCGCACCTCGCCGATCCGCGCCGCGAAGCCGACCGTGCTCGACGAGGTCAAGACGGCCATGGGGGTCTTCGATGCCACGCTGTTCGAGACCTACCCCGAGGTCTACCGGCGTCTGGACGACTGGCTGCTCGACGGCGACGCGGGACGGACGAAGCCCGTCGCGAGCCCGTTCGTCTACCTCGGGTCGTGGATCGGCGGCGACCGGGACGGCAACCCGAACGTCACCGCCGAGGTGACGCGCCAGGCGGCCACGCTGGCCGCCGAGCACGCGCTCACGGCGCTCGAGCAGGCGGCGCGGGCCACCGGCCGCAAGCTCACGCTGGAGGAGGCGTCCACCCCGGCGTCGGACGAGCTCAAGGCGCTGTGGCAGCGGATGCGCCAGCTCTCGGAGGACCTGGCCGCCCAGGCGGCGGCGGAGTCCCCGAACGAGCCGCACCGTGCCGCCGTGCTGGCCATCGCCGGCCGCGTCGGCGCGACGCGCGCCCGTGACGCCGACCTGGCCTACCGCGAGCCGGCCGAGCTCGAGGCCGACCTGCAGATCGTCCAGGACTCGCTGGTCGACGCCGGTGCGAACCGCGCCGCCTACGGCGACCTGCAGCGGCTGGTGTGGCAGGTGCAGAGCTTCGGCTTCCACCTCGCCGAGATCGAGGTCCGCCAGCACTCGCAGGTGCACGCCGCCGCGCTGGAGGAGATCTACGACAAGGGTGTCCACGGTGACCTGTCCGACCGCACCCGCGAGGTGCTGGACACGTTCCGTGCTCTGGGCGCGGTGCAGAAGCGGTTCGGCCAGCGGGCGGCGCGCCGCTACATCGTGTCGTTCACGCAGGCGCCGGAGCACATGGCGGCCGTGTACGAGCTGGCCGCCCTGGCCTTCGAGGGCACCGACGACCCGCCCGTCGTCGACGCGATCCCGCTGTTCGAGACCTTCGCCGACCTGGAGAACTCGGTGGAGATCCTCGAGGCGATGCTCGAGATGCCGCAGGTCCAGAAGCGGCTGGCCGAGAACGGCCGCCGCGTCGAGGTCATGCTCGGGTACTCCGACTCCTCCAAGGACGTCGGCCCGGTGGCGGCGACGCTGGCGCTGCACTCGGCGCAGTCCCGCATCGCGCAGTGGGCGCAGCGGCACGACATCACGCTGACGCTCTTCCACGGTCGCGGCGGTGCGCTCGGCCGCGGCGGCGGCCCGGCGAACCGCGCCGTGCTGGCCCAGCCGCCGCACTCGGTGGACGGCCGGTTCAAGCTCACCGAGCAGGGCGAGGTCATCCTGGCCCGCTACGGCAACCCGACCATCGCCGCGCGGCACATCGAGCAGGTGGCCGCGGCGACGCTGCTCGCCTCGGCCCCGTCGACGGAGAAGCGCAACGCGGAGGCCACCGAGCGGTTCGCCGGCATGGCGGCCGCGCTGGACGCCACCTCGCGGGCCCGGTTCCACGAGCTGGTGCAGTCCGAGGGCTTCCCGCAGTGGTTCGCCGAGGTGACGCCGCTGGAGGAGGTCGGCCTGCTGCCGATCGGCTCCCGCCCGGCCAAGCGCGGCCTGTCGGTCAACTCCCTGGACGACCTGCGCGCGATCCCGTGGGTCTTCTCCTGGTCGCAGGCGCGCATCAACCTCGCCGGCTGGTACGGCCTCGGCACCGCGCTGCGCGAGTACGGCGACCTGGAGCAGCTCCGGGCCGCCTACGAGGAGTGGCCGCTGTTCACCACGCTGCTGGACAACATCGAGATGTCCCTGGCGAAGGCGGACGAGCGCATCGCGCGGATGTACCTCGACCTCGGCGACCGGGACGACCTGGCCGACATGGTGCTCACCGAGATGCACCTCACCTACGAGTGGGTGCTCAAGGTGACCGGCAACCAGTGGCCGCTGGCCAGCCGTCGCGTGCTCGGCCGGGCCGTGCAGCTCCGGTCGCCCTACGTCGACGCCCTGTCGCTGCTGCAGGTCCGCGCGCTGCGGGCGCTGCGCACGCAGGGTGCGAGCGAGGGGCTGTCGCTGGACGAGGGCGAGTGGGTCGACGGCGGGTACAAGGACCGCTGGCGCCACCTGCTGCTGCTGACGGTCAACGGCGTGTCCGCCGGCGTGCAGAACACGGGCTGAMSDNYGHQSPSTGAIERVVARHEMPDPLRDDIRLLGGLLGDVLREAGGQDLLDDVERLRELTIRAYGVDDGGAALAEASDVVAGYSLERAEQVARAFTCYFHLANLAEEYHRVRVLRQREAESGAAIEESLPAAFTQLTEEVGRDEALRRLSELEFRPVLTAHPTEARRRAVSGAVRRISDLLADRDTVELGGTSRSENERRLIAEIDTMWRTSPIRAAKPTVLDEVKTAMGVFDATLFETYPEVYRRLDDWLLDGDAGRTKPVASPFVYLGSWIGGDRDGNPNVTAEVTRQAATLAAEHALTALEQAARATGRKLTLEEASTPASDELKALWQRMRQLSEDLAAQAAAESPNEPHRAAVLAIAGRVGATRARDADLAYREPAELEADLQIVQDSLVDAGANRAAYGDLQRLVWQVQSFGFHLAEIEVRQHSQVHAAALEEIYDKGVHGDLSDRTREVLDTFRALGAVQKRFGQRAARRYIVSFTQAPEHMAAVYELAALAFEGTDDPPVVDAIPLFETFADLENSVEILEAMLEMPQVQKRLAENGRRVEVMLGYSDSSKDVGPVAATLALHSAQSRIAQWAQRHDITLTLFHGRGGALGRGGGPANRAVLAQPPHSVDGRFKLTEQGEVILARYGNPTIAARHIEQVAAATLLASAPSTEKRNAEATERFAGMAAALDATSRARFHELVQSEGFPQWFAEVTPLEEVGLLPIGSRPAKRGLSVNSLDDLRAIPWVFSWSQARINLAGWYGLGTALREYGDLEQLRAAYEEWPLFTTLLDNIEMSLAKADERIARMYLDLGDRDDLADMVLTEMHLTYEWVLKVTGNQWPLASRRVLGRAVQLRSPYVDALSLLQVRALRALRTQGASEGLSLDEGEWVDGGYKDRWRHLLLLTVNGVSAGVQNTGPGPT0001165_2017DIRECT EFFECTBIO-FERTILIZATIONCARBON_DIOXID_FIXATIONCO2_FIXATION-ALTERNATIVE_PAHTWAYSCO2_FIXATION-PHOSPHOENOLPYRUVATE_CARBOXYLASE_BIOSYNTHESIS,PGPT0001165-ppc-K01595NANA
AK018_02587741cutC_2COG3142Copper homeostasis protein CutCGTGTCCGCGGTGCCGGCCCTCGAGCTGGCGGTCCAGGACGTGGCCGGCGTCGAGGTCGCGGCGTCGGTCGGTGCCCGCCGGGTGGAGCTGTGCGCCGCCCTGGGCGCGACGGGCGGGATGACGCCGGGTCCCGGGCTGCTGGCCGCGGCCGTGGAGCGGGCCACCGCGGTCGAGGTGCACGTGCTGGTGCGGCCGCGACCCGGCGGGTTCGTCCTCGTCGACGGCGAGCTGGACGTGCAGGTGCGCGAGGTCGCCGCCGTGGTGGCTGCCGGGGCGGACGGCGTGGTCGTCGGCGCGCTGAGCGCGGACGGCACCGTGGACACGGTCGCGCTGCGCGAGCTGGTGGCGGCGGCCGAGGGCGCCGAGGTGACGTTCCACCGCGCGTTCGACCAGCTCGCCGCGCCGTCGGCCGCCCTGGACACGCTGGCCGGGCTCGGCGTGAGGCGGGTGCTCACCTCCGGTGGGGCGTCCCGCTGCGCCGACGGGGTCGACCGGCTGCGGACCTGCGCCGTCCACAGCCGGGACGTCCTCGACGGTGCCGTCCAGGTCATGGCCGGCGGCGGCGTCCGGGTCGAGGACGTCCCCGTGCTCGTCGAGGCCGGGGTGGACGCCGTGCACCTGTCCGCCAAGCGCGTCGTGACCGACGACGGCGGGCCCGGCGGCGGGGGAGACGACGGCTACGAAGTCACCGACCCGGTCGTGGCCGCTGCGGCGGCCGCCGCCCTGAGCGCCTCGAGATGAMSAVPALELAVQDVAGVEVAASVGARRVELCAALGATGGMTPGPGLLAAAVERATAVEVHVLVRPRPGGFVLVDGELDVQVREVAAVVAAGADGVVVGALSADGTVDTVALRELVAAAEGAEVTFHRAFDQLAAPSAALDTLAGLGVRRVLTSGGASRCADGVDRLRTCAVHSRDVLDGAVQVMAGGGVRVEDVPVLVEAGVDAVHLSAKRVVTDDGGPGGGGDDGYEVTDPVVAAAAAAALSASRPGPT0004085_47DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004085-cutC-K06201NANA
AK018_02588765COG3324Putative glyoxylase CFP32ATGCCCCCTGTGGAGAACCTGCCCGAGGGGGCGCCCGGCTGGATGGACCTGGCCGCCACCGACCTCGACGCCGCGGTCGCCTTCTACACCGCGCTGTTCGGCTGGGAGCACCGGGATCTCGGTGAGCACTTCCGGCACTACGGGCAGCTCACGCACCGCGGCGCGCCCGTGGCGGGCGTCGTGCCGCTGCAGAGCGACGAGCAGACCCCGGGCTGGCACGTCTACCTGTGGACGACGGACGCCGAGGCCGTCGCCGGTCGGATCGGCTCCCACGGCGGCACCGTCGACGTCCCGCCGCAGGACGTGCCCGGGATGGGCCGCTACCTGTTCGCCACCGACCCCGTCGGCGGGCAGATCGGCTTCTGGCAGGCCACCGGTCACCCGGGTTTCGTCCGGCTGGCCGAAGCCGGTGCGCCGTGCTGGTTCGAGCTGTGGACGACCGACTACGACACGGCGCTGCCGTTCTACCGCGACGCGCTCGGCTGGGACGTCCACGAGATGCCCGGCGGGGACGGCTTCCGCTACGCCACGCACGGTGCCGAGGACGCGGCGAGCGCAGGACTGTTCGACGCCGCGGCCGCGCTCGGGGAGCACGGCCGCCCGACCTGGATGGTCTACCTCGGCGCCGCGGACGTCGACGCCGCCGCCGCGCGGGCGGTCGACCTGGGCGGGACCGTGGCCGACGCCCCGGCCGAGACGCCGTACGGACGGATGGTCGACGTCGCGGACCCGAACGGAGCACCCCTGCGGATCATCACCGCCTGAMPPVENLPEGAPGWMDLAATDLDAAVAFYTALFGWEHRDLGEHFRHYGQLTHRGAPVAGVVPLQSDEQTPGWHVYLWTTDAEAVAGRIGSHGGTVDVPPQDVPGMGRYLFATDPVGGQIGFWQATGHPGFVRLAEAGAPCWFELWTTDYDTALPFYRDALGWDVHEMPGGDGFRYATHGAEDAASAGLFDAAAALGEHGRPTWMVYLGAADVDAAAARAVDLGGTVADAPAETPYGRMVDVADPNGAPLRIITANANANANANA
AK018_025891002COG02585'-3' exonucleaseATGCGCCTCCTGCTGCTCGACACCGCGTCGCTGTACTTCCGCGCCTACTTCGGGATGCCGGACTCGCTGCGCTCCCCCGACGGTCGGCCCGTCAACGCCGTGCGCGGCCTGCTCGACATGATGGCGTTCCTGATCACCGAGCACCGGCCCGACCGCGTGGTGGCCTGCTGGGACGACGACTGGCGCCCGGCGTTCCGCGTCGAGGCGATCGGCACGTACAAGGAGCACCGGGTCGCCGAGCTGCGCGCCGACGGCCCCGACGTCGAGGAGATGCCGGAGGACCTGCGCGCGCAGATCCCGGTGATCGTCGACGTTCTCGCCGCGCTGGGCATCGCCCGCGTCGGCTCCCCCGGCTTCGAGGCCGACGACGTGATCGGCACGCTCGTCGCCCGGGAGCTCGCCGGCCGCGGTTCCGGCGCTCCGGGGGACGACGGCGGCACCCCGGCCGACGGCGGCACCCCGGCCGTGCACGCTCGCTCCGGCCCGGAGGTCGGCATCGTCACCGGCGACCGCGACCTGTTCCAGCTCGTCGACGACGCCGCCGGGGTCGCCGTCCTCTACCCGGCCCGCGGGGTGCGCGACCCGGACGTCGTGGACCAGGCACGGCTCGCCGAGAAGTACGGCGTGCCGACCGGCACCGCCTACGCCGAGATGGCGGTGCTGCGCGGCGACCCGTCCGACGGGCTCCCCGGCGTGGCCGGCATCGGGGAGAAGACCGCGGCCAAGCTGCTCGCGGCGTTCGGGACCCTGGACCGTGTACTCGACGCGGCGGCCACCGGGGAGAAGGGCGTCACGCCGTCGCAGCGCACCCGGATCGCCGCGGCGGCCGACTACCTCGCCGTGGCTCCCGGCGTCGTCCGCGTGGCCGACGACGCGCCGCTGGCGCCGTTCGACGACGCCCTGCCCGACGCTCCTGCCGCCCCCGAGGCCCTGGACGCGCTGGCCGCCCGGTGGGGCCTCACCTCGAGCGTGCACCGGGTGGTGAGCGCCCTGCAGGCGTGAMRLLLLDTASLYFRAYFGMPDSLRSPDGRPVNAVRGLLDMMAFLITEHRPDRVVACWDDDWRPAFRVEAIGTYKEHRVAELRADGPDVEEMPEDLRAQIPVIVDVLAALGIARVGSPGFEADDVIGTLVARELAGRGSGAPGDDGGTPADGGTPAVHARSGPEVGIVTGDRDLFQLVDDAAGVAVLYPARGVRDPDVVDQARLAEKYGVPTGTAYAEMAVLRGDPSDGLPGVAGIGEKTAAKLLAAFGTLDRVLDAAATGEKGVTPSQRTRIAAAADYLAVAPGVVRVADDAPLAPFDDALPDAPAAPEALDALAARWGLTSSVHRVVSALQANANANANANA
AK018_02590387crcB_3COG0239Putative fluoride ion transporter CrcBGTGAGCGGGCTGCTGGGGGCGCTGCTCGTGGGGCTCGGCGGCGGGCTCGGTGCGGCGGCCCGCTTCTGGCTCGCGGACACGATCAAGGCGCGACGCCCGGACGGATTCCCGTGGGGGACCTGGCTCGTCAACGCGCTCGGGTCGTTCCTCATCGGCCTGGCGGCGGGATGGCTGGCCCTCGGCACGGCGGGGCCCGCCTGGGAGCTCTTCCTCGTCGTCGGGGTGTGCGGCGGCCTCACCACGTTCTCGACGTCGATCCTGGAGACCGCGGCGATGCTGCGCGGCGGCCGTCCCGCCCGGGCCGTGCTGCACGCGCTGAGCACGCTGGCGGTGTCGGTGCTCGCCGTCGTCGTCGGGCTCGGGCTGGTGGCGGCGCTGCTCGGCTGAMSGLLGALLVGLGGGLGAAARFWLADTIKARRPDGFPWGTWLVNALGSFLIGLAAGWLALGTAGPAWELFLVVGVCGGLTTFSTSILETAAMLRGGRPARAVLHALSTLAVSVLAVVVGLGLVAALLGPGPT0004985_2005DIRECT EFFECTBIO-REMEDIATIONFLUORIDE_DETOXIFICATIONFLUORIDE_RESISTANCEFLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199NANA
AK018_02591456crcB_4Putative fluoride ion transporter CrcBGTGACCGCCGCGCGCCCCCCGCACCGGGACCTCCGGCTCGTCGCCCTGGTCGCGGCCGGAGGTGCGGTCGGGTCGGTGTCCCGCTACGGGGTCGAGCTGCTGCTGCCGCAGCCGTCGGGCGGCTGGCCGTGGGGCACCTTCGCGGTCAACGTCCTCGGCGCGTTCCTGCTCGGCTGGCTGCTCGAGGCGGTCGCCCGCCGCGGCCCCGAGACGCCGCGGCTGCGGCGGGTCCGGCTGCTCGCGGGCACGGGCGTCCTGGGCGGCTTCACCACGTACTCCTCCCTCGTGCTGGAGACCACCGGGCTCACCGGGGACGGCGCCTGGCTCGTCGCGGCCGGCTACGTCGGGGCCACGCTGGTCCTCGGCACCCTGGCGGCGCTGCTGGGCGCGCTCCTCGGCCTGCGGGGCCGACGCAGCACTCTCGGGCGCCTGCTGCACCCGGAGGAGGGCCGGTGAMTAARPPHRDLRLVALVAAGGAVGSVSRYGVELLLPQPSGGWPWGTFAVNVLGAFLLGWLLEAVARRGPETPRLRRVRLLAGTGVLGGFTTYSSLVLETTGLTGDGAWLVAAGYVGATLVLGTLAALLGALLGLRGRRSTLGRLLHPEEGRPGPT0004985_676DIRECT EFFECTBIO-REMEDIATIONFLUORIDE_DETOXIFICATIONFLUORIDE_RESISTANCEFLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199NANA
AK018_025921002sigG_2COG1595ECF RNA polymerase sigma factor SigGATGACACAGACGGCCTCCCCGGACGCCGGCACCTCTCGCGACCTCGCCGCACGGCTCGAGGTCCACCGCCGCGAGCTGACCGGCTACTGCTACCGGCTGCTGGGCGGTGCCGCGGACGCCGACGACGCGGTGCAGGAGACGATGCTGCGGGCCTGGCGCGCGTACGACCGGTTCGAGGGGCGGTCCTCCCTGCGGTCCTGGCTGTACCGGATCGCGACCAACGTGTGCTTCGACGCGCTCGGGTCCGCCAAGCGGCGCGAACGCCCCATGGGCATCGGCGGCCCGCAGCCGGCCGAGATCGAGTACCTGGGCGAGACCCTGACCGAGGAGCGCTGGGTCGAGCCCGTGCCGGACGACGCCGTGCTGCCCCGCGAGGGCGACCCGGCGGACATGGCCGTGGGCCGGGAGTCGGTCCGGCTCGCCTTCGTCGCAGCGCTGCAGCACCTGCCGCCGCGGCAGCGCGCGGTGCTGGTGCTGCGGGAGGTGCTGCGCTGGTCGGCCGCCGAGACGGCCTCGCTGCTCGACACGACCGTAGCCTCGGTGAACAGCGCGCTGCAGCGGGCCCGCGCGACCCTCGGGACGAAGAACCTCTCCCGGGACGCCGACCGCTGGGGCGAGGTCGACGAGGCACTGCTCGAGCGGTACCTCGACGCGTTCGAGCGGTACGACATGGACGCGCTGGTCGCGCTGCTGCACGACGACGCGGTGCTCAACATGCCGCCGTACACGTTGTGGGTGTCCGGCCCGGCGGAGGTCGTGCGCTGGATGGTCGGCCCGGGCCACGGGTGCCGCGGGTCGCGGTGCCTGCGCGTGCACGCCAACGGCTCGATGGCGTTCGGGCAGTACCGGGCCGCGCCCGAGGGCGGCTGGACCCCGTGGGGGCTGGTCGTGCTCGAGGACGACGGCGCCGGCCGCATCACGGGAGTCACCACGTTCCTCGACACGGCCACCTGGTTCCCCCGGTTCGGGCTGCCGGACCGGCTGCCCGCCGAGCGTGCGTGAMTQTASPDAGTSRDLAARLEVHRRELTGYCYRLLGGAADADDAVQETMLRAWRAYDRFEGRSSLRSWLYRIATNVCFDALGSAKRRERPMGIGGPQPAEIEYLGETLTEERWVEPVPDDAVLPREGDPADMAVGRESVRLAFVAALQHLPPRQRAVLVLREVLRWSAAETASLLDTTVASVNSALQRARATLGTKNLSRDADRWGEVDEALLERYLDAFERYDMDALVALLHDDAVLNMPPYTLWVSGPAEVVRWMVGPGHGCRGSRCLRVHANGSMAFGQYRAAPEGGWTPWGLVVLEDDGAGRITGVTTFLDTATWFPRFGLPDRLPAERAPGPT0014960_961DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_025932343hypothetical proteinGTGCCCGCGACCCACGTCCTGGGTTCGCTGACCCACGGCGCTCCCGGGGACCACTCCGCGGACGAGGTGTTCGACCGCATCGTCCGGATCGCCCGCCGTACGCTCGACGTGCCGGCGGCGTGCTTCATCGTGCTCGGCGACGGCCCCGTGCAGCACCTCCCGGGCGCCTCGGGGCTTCCCGACGCCGTCCAGCGCAGCCGGGTCTACGAGCTCGACCGTCCGGCCACGGGCATCGTCGCCGGGAGCCGGACGCCGCTCATCGTCCCGGACGTCGCCGCGGAACCGCTGGTCGCGGGCCGTGGCCTCATCGCCGAGATGGGCGTGCGCGCCATCGCCGGCTACCCGGTCGAGGACGGCCATGGCGAGGTGGTCGGGGCGCTGTGGGCGCTGTGCGACGACCCGCGCGACTGGACCGACGCCGACCTGGCCACGCTGTCCGACCTGGCCGCCTCGTGCACCGGCGAGCTGCGGCTGCGCGCCGAGCGGGAACGCGCCCGGCGCGCCGAGCAGGTAGCCTTCCGCGCCCACCAGCGCGCCCAGTTCCTGCTCGGGCTGTCCGAACGGTTCGCCGGCGTCACCACCATCGAGGAGGTCGAGGAGACCATCGCCCAGGTGGTCGGCACCGGGATGGGGGCCCGCTGGTGCTCCCTGGCCCTGGTCGACGCCGACCGCCGCCACCTGCGCTACGTCACCGTCGGGCACCAGGAGCCGGGCTTCCCCGACGAGATGCGCAGCCTGCGCCTCGACGCTCCCCGGCCGGACGCCGCCGTCGTACGCGAGCACCGCACCCGCTTCTACCGCGACCACTCCGAGATGATCGCCGCGTACCCGGCGATGGCCGGCCTCGGCCTGACGTCGACGGGAGCCCGCTCGTTCCTGCCGGTGATCGCCGACGACGACGTCATCGGCGTCGTGGTCTGCGTCTGGGACGAGGCCCGCGACCACGACGCCGGCACCGCTGCCCTGGAGACGACCGTCACGCGGTACGTGGCGATGGCGCTGGAACGCGTCGCGCTGCTCGAGGCGCGCCGGCGCGTCGCCACCACCCTGCAGGAGTCGCTGCTGACCGACCCGCCGGACGTCGCCCACCTCGACATCTCCACGACGTACTCCCCGGCCGCGCGCACCGACCAGGTCGGCGGGGACTGGTACGACGCGGTCGTCCGCGAGGAGGGCACCGCGATCCTGACGATCGGGGACGTCGCGGGGCACGACGTCAACGCGGCCGCCCAGATGGGCCAGCTGCGCTCGATGCTGCGCGTGCTGGCCTGGAGCCACGACGAGGGCCCGGCACAGCTGCTGTCCCGGCTCGACCGGGCGGACGCCCAGCTCGGGCTGCACGCCCTGGCGACCGCCGTCGTCGTCCGGCTGGACCACGACGCCGAGCCGCAGGGCGACAGCGGGCCCGACGGCACCCCCGAGCGCGGCTACACCCTGACCTGGTCCGACGCCGGCCACCCGCCGCCGCTGGTGCTGCGCCGCGACGGCACGGTCGAGCAGCTCGCAGCGCGTCCGGACATGCTGCTGGGCATCGACCCGGGCACGGTCCGGCACGACCACGTCGACCGTCTGCTGCCCGGCGATACCCTCGTGCTGTACACCGACGGCCTGGTCGAGCGGCGCGGCGTCCAGGTGAACGACCGGATCGCCCAGCTCGAGCAGGCGCTCGCCGACGTGCACGGCGAGGCCACCGCCGCCCTGCCCCGCGCACTCGTGCGTCGGCTGGTCGGCCGCTCGCAGCGCGACGACGTGGCGGTCCTCGTCGCGCGGGCCCGCGTGCCCGCGCCGTCCGGGCCGCCGTCCGAGGACGGCCCCGCCACGGCCGAGCGCAAGGTCGCGCACGAGGACCTCAGCGACCTCGGGCCCGCTCGCCGCTGGGTCGACGACGTGCTCGAGTCCTGCAGCGTGGACCCCGAGCACCGGCGCACGGCGATGCTGCTGTCCAGCGAGATCCTCACCAACGCGCTGGAGCACGGGGCGGGGCCGATCGTCGCGACCGTCGAGGTCGACGCCCACCGGTTGCGCGTCGGGGTCCGGGACGGCTGCACCCGCGCACCCGTGCTGCGCGCCCCCGAGCCGCAGGACCTGTCCGGACGCGGCGTGCAGTTCCTCGAGCGCCTGGCCTCCCGCTGGGGCGTGGAGCAGCACCTGGCCGGGGACGCGGTCGGTCGGCACGTCGCCCAGGGCGCGGGGAAGACGGTCTGGTTCGAGATCGACCGGTCGGCGCGCCCCCTGACCGGCGTCGTGCCCGTCGTGCGCCGCGCCTCGCCCACCAGCTCGATCCCGCTGGTCGAACGGGTGCTGCCGTGGACGCGTGCGGAGGCCCGACGCCGGCGCACCTGAMPATHVLGSLTHGAPGDHSADEVFDRIVRIARRTLDVPAACFIVLGDGPVQHLPGASGLPDAVQRSRVYELDRPATGIVAGSRTPLIVPDVAAEPLVAGRGLIAEMGVRAIAGYPVEDGHGEVVGALWALCDDPRDWTDADLATLSDLAASCTGELRLRAERERARRAEQVAFRAHQRAQFLLGLSERFAGVTTIEEVEETIAQVVGTGMGARWCSLALVDADRRHLRYVTVGHQEPGFPDEMRSLRLDAPRPDAAVVREHRTRFYRDHSEMIAAYPAMAGLGLTSTGARSFLPVIADDDVIGVVVCVWDEARDHDAGTAALETTVTRYVAMALERVALLEARRRVATTLQESLLTDPPDVAHLDISTTYSPAARTDQVGGDWYDAVVREEGTAILTIGDVAGHDVNAAAQMGQLRSMLRVLAWSHDEGPAQLLSRLDRADAQLGLHALATAVVVRLDHDAEPQGDSGPDGTPERGYTLTWSDAGHPPPLVLRRDGTVEQLAARPDMLLGIDPGTVRHDHVDRLLPGDTLVLYTDGLVERRGVQVNDRIAQLEQALADVHGEATAALPRALVRRLVGRSQRDDVAVLVARARVPAPSGPPSEDGPATAERKVAHEDLSDLGPARRWVDDVLESCSVDPEHRRTAMLLSSEILTNALEHGAGPIVATVEVDAHRLRVGVRDGCTRAPVLRAPEPQDLSGRGVQFLERLASRWGVEQHLAGDAVGRHVAQGAGKTVWFEIDRSARPLTGVVPVVRRASPTSSIPLVERVLPWTRAEARRRRTNANANANANA
AK018_02594696hypothetical proteinGTGGTGGGAACCGCTGGAACGTTCGACGCCCTGCCCATGCTGGGCCGTGGCAAGCACCGCAACCCGAGGAAGGGCGCCTGCTTCATGGAGCTCGCGTCGTTCCTCGCCGGGGAGCGCTGGAGCGATCATCCGCAGTGCACGCACCCGCTCCTGGCGATGCTGGCGCGTGCCGTCAACGACCTCACGTCGGACCGGAACCGTCCGCAGCTCGCGCCGATGATCCCGTCGGTGATCGGGCTGAACAGCGACGACCCGCGCTGGGACGTGCACATCGCCCTGCGTGCCGCCCAGACGGCCCTCCCGGTCGCGCCCGCCGACCGGCAGCAGACCCTCGCGGTGGCGATCTACGGGGCCGAGCGCATGCTCGACGTCCTGGACGCCCGACCCGAGGGGACCATGTCCGTCGAGAGCGTCCAGGCGCTGAGCGCGGTGCCAAAGACCTCCGAGTGGGCCCGCCGGTTCTGCGCCGGCACCCACGTCAAGCCGAAGCGGTTCGTACGGGACGCCGCCCCGTCGGTCGTGTCCACGGCCGTGCAGGGCATCAGCGAGGCCTACGTCGGCGACGCGGACGACCGCCTGCGGAGCCTGCTGGGCGACACCATCGCCGACGCCCGCCGCTGGGCCGGGCTCGAGGAGACCGGGACCGCGCTGCGCGAGGACCAGTGGTCCGACGTCGTGCGTCCCGCCGAGGTCTGAMVGTAGTFDALPMLGRGKHRNPRKGACFMELASFLAGERWSDHPQCTHPLLAMLARAVNDLTSDRNRPQLAPMIPSVIGLNSDDPRWDVHIALRAAQTALPVAPADRQQTLAVAIYGAERMLDVLDARPEGTMSVESVQALSAVPKTSEWARRFCAGTHVKPKRFVRDAAPSVVSTAVQGISEAYVGDADDRLRSLLGDTIADARRWAGLEETGTALREDQWSDVVRPAEVNANANANANA
AK018_025951206COG1168Putative cystathionine beta-lyaseGTGATCGACACCAGCGCCAGCCCGCTCGACCAGCTCACCCTCGCCGACCTGCGCCGGCGGACCTCCGTGAAGTGGACCGCCTACCCCGAGGACGTCCTGCCCCTCTTCGTCGCCGAGATGGACGTGCCGCAGGCGCCGTTCGTCGTCGACGCCGTCACCCGGGCGCTGCAGGTCGGTGACACCGGCTACGACCGGGGCACGGCCTATGCCGCCGCCCTCGTGCCGTTCGCGCAGCGCCGCTGGGGCTGGACGCCCGACGAGCGCACCAGCCGCACCCTGCCCGACGTCATGGTGGCCGTCGTCGAGGTCCTGCGCGTGCTCACCGCTCCCGGGGACGCGGTCGTCGTCACCCCGCCCGTCTACCCGCCGTTCTACGGGTACACCCGCAACGAGGGGCGCCGGGTCGTCGAGGCGCCGCTGACCGACGCCGGCCGCCTGGACCTGGGCACGCTGGAGTCGGCGTTCCGCGAGGCCACCGGAGGCGGACCGACCAGCACCCGGCCCGGGTCGGGCCGACGCGCGGTGCTGCTGCTGTGCAGCCCGCACAACCCGACCGGCACCGTGCACACCCGCGACGAGCTCGAGGCGGTGCTGGCGCTCGCCGACCGCTACGGCGTGCGGGTCGTGGCCGACGAGATCCACGCGCCGTTCACCGTCGCCGACCTGGCCGACGGAGCCACGCCGTTCACGCCGCTGCTGTCCGTGCCCGGCAGCGGCTCGGCGATCGCCGTGCACTCGGCCTCCAAGGCCTTCAACCTCGCCGGGCTGCGCGCGGCGACGGCGCTCGCCGGCCCCGACGCGGCCGACGACCTGCGCCGCATCCCCGAGGAGGCCGGGCACGCCGTCAACCACCTCGCGGTGCTGGCGCACGCCGCCGCGTACACCGAGGGCGACGCGTGGCTGGACGCGCTGCGGGCCGGCATCGTGCGCAACCGCGAGCTGGTCACGACGCTCCTGGCCGAGCACGCCCCGGCCGTCCGGGTCCACCCGGGCGAGGGCACCTACCTGATGTGGCTGGACGTGCGCGACGCCGTCCCCGCCGACGTCGACCCGCACCGGCACGTGCTGCGCACCGCGAAGGTGGCGCTCGGCGACGGGCGGGACTTCGGCAGCAACGGTGCCGGGTGGTTGCGGCTCAACCTCGCCACCTCGCCCGAGATCCTCACCGAGGCCGTCGAGCGGCTGGGGACGGCGCTCGGGCGCTGAMIDTSASPLDQLTLADLRRRTSVKWTAYPEDVLPLFVAEMDVPQAPFVVDAVTRALQVGDTGYDRGTAYAAALVPFAQRRWGWTPDERTSRTLPDVMVAVVEVLRVLTAPGDAVVVTPPVYPPFYGYTRNEGRRVVEAPLTDAGRLDLGTLESAFREATGGGPTSTRPGSGRRAVLLLCSPHNPTGTVHTRDELEAVLALADRYGVRVVADEIHAPFTVADLADGATPFTPLLSVPGSGSAIAVHSASKAFNLAGLRAATALAGPDAADDLRRIPEEAGHAVNHLAVLAHAAAYTEGDAWLDALRAGIVRNRELVTTLLAEHAPAVRVHPGEGTYLMWLDVRDAVPADVDPHRHVLRTAKVALGDGRDFGSNGAGWLRLNLATSPEILTEAVERLGTALGRPGPT0001990_425DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001990-patB|malY-K14155NANA
AK018_02596996hypothetical proteinGTGACCGCGACGGCCGTCGCCGTGCCGCTCGCCGTGCCGGCCGCAGTCCCTGCCACGGCGGCGGCGCTGTCCCTGCCGTACCCGCCCGGGCCGACGCCGCCGGGTGCGCACACGGGCGTCGTGGGCTGGTCCCCGCTCGAGGAGCGGACCGCGGGGACCGACTGGTCGGACGGCGTGGCGATCGCCCCGGGCGAGGGCAGGACGCTCGAGCTGCAGCAGGAGGTCGACGGCCGCTGGGTGACACGGTGGACCACCACGATGCCCGCCGACGGCACCTACTCCGCCGCGATGGAGCTCACCCGGCACTGGCGACAGGAACCGGTCACCCGCTGGCGGCTCTTCGCCCCCGGCACCGCGCAGGTGGCACCTGCCGTCAGCGGGGTCAAGGTGGTCCGCACGACGTGGGAGGCGTCCACGGACCCCCGCGATCTCACCGTGCTCGTGACCAAGGACCGTGGCGTCACGCCCCGCGACTTCGTGCCGGGCCGGCTCGCCGCGCCCGACATGGCGCTGCAGGGCACCTGGGTCGAGCTGCGACCGGCGGCGGCCGACGCCCTCGCCGAGCTGGCCGAGGCCGCGGAGGAGGCCACGGGGAAGCGGCTGGTCCTGGTCTCCGGGTTCCGTCCCGCCGGCTACCAGGAACGCCTCTTCGAGCGGTACGCCTCCCGGTACGGCGCCGAGGCCGCGTCGCGCTTCTCGGCACGGTCGGGGCACTCCGAGCACCAGACCGGGCTCGCGGCGGACGTCACCCAGGCCGGGGTGCCGTTCACGGAGTTCGGCGGCACGCCCGCCTCGGACTGGGTCGCCGAGCACGCGTGGCGGTACGGGTACGTCGTGCGCTACCCGGACGGCGGCGAGGAGATCACCGGCTACCGGGGCGAGCCGTGGCACCTGCGTTACGTCGGCGAGGACCTCGCCGCCTACCTGCACCACAGCGGCGACACCCTCGAGGAAGCGTTCGGCGTCGTCGAGCCCGGCGGTCCCGGCGCGCCGTGAMTATAVAVPLAVPAAVPATAAALSLPYPPGPTPPGAHTGVVGWSPLEERTAGTDWSDGVAIAPGEGRTLELQQEVDGRWVTRWTTTMPADGTYSAAMELTRHWRQEPVTRWRLFAPGTAQVAPAVSGVKVVRTTWEASTDPRDLTVLVTKDRGVTPRDFVPGRLAAPDMALQGTWVELRPAAADALAELAEAAEEATGKRLVLVSGFRPAGYQERLFERYASRYGAEAASRFSARSGHSEHQTGLAADVTQAGVPFTEFGGTPASDWVAEHAWRYGYVVRYPDGGEEITGYRGEPWHLRYVGEDLAAYLHHSGDTLEEAFGVVEPGGPGAPPGPT0024055_164DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_02597351hypothetical proteinATGACCGCTCTCGACCTCGCGCTCGACACGGCGGCCGTCCTGGCTTCCACCGGCTCGGACGGGGATTCCGGTGCCTTCGGGCTCGTCTTCTTCCTGTCCGGATTCGTCTTCTTCTTCGTGATCTTCGCGCGGTACCGCAACGCGGACAAGCGCTACCGGCACGAGAAGCAGACCCGCACGGTCACGAAGAACATCGAGGTCCGCGACGACTTCGTCCGCTCCCGCAAGGGGCTGAGCAACCGCACCATGGACGGCGCGAACCACGACTCCGTCTCCGGGTCGCTGAACCCGACGGCTCGCAGCGTCCAGGGTCTGATGCGGGAGATCAACCGCTACCGACACCTCGGCTGAMTALDLALDTAAVLASTGSDGDSGAFGLVFFLSGFVFFFVIFARYRNADKRYRHEKQTRTVTKNIEVRDDFVRSRKGLSNRTMDGANHDSVSGSLNPTARSVQGLMREINRYRHLGNANANANANA
AK018_025981251hypothetical proteinATGGACGACGTGACCGAACCGCCCTCCGACGAGCAGGCCCCCGCCCCACCGACGACACCGCCGGAGCCCGACCACGGCCCCCGCGTGATCGACACCGACGCCGACGCCGTCGACGGACTGACCAAGTGCCCGCGCTGCGGGGCGACGCAGATCGCCCTGAACATCGGCTCGGGGATGCTGCGGTGCCACTACTGCCGCGACGAGTGGTCGACGCCGAGCGCCAACGAGGCGTTCGGCCTGGACGCCGGCGTCGGTGAGCTCCGCGGCGTCACGATGGGGTCGGGCTCGTCCGACATCGTCCCGTCCGCCGAGATCGTGCTCACCTTCAAGTGCAGCGCGTGCGGCGCGGAGATCGTCATCGACACCGCGAGCAGCACCCAGGCGCGCTGCCACTGGTGCCGCAACACCCTGTCGATGAACCAGCAGGTGCCCAACGGCGCCGTGCCCGACATGGTGCTCCCGTTCAGCCTCCCGAAGGAGGAGGCCGTGCGGAAGATCGCCACGTTCGTGCGCAAGCGCCGCTTCTTCGCCCACCCGCGGTTCCGCAAGGAGTTCAACCCGGACAACGTGCTCGGCGCCTACCTGCCCTACATGGTCGTCGACGTCAACGCCCACGCCGAGTTCGACGGACAGGGCGAGCACCAGACCCGCAGCTACACCGTCTCGGTGGGCGAGGACCGGTCGGAGACCCGCTACGACGCGGACCTCTACGACGTCGGCCGCGCCTTCGACATCGAGGTGCACGACCTCGCCGTCGTCTCGTCGCAGCAACGCCTCGACCAGGGGCTCAGCACCACCAACAACGTCATCAACGCGATCCGGCCCTTCGACCTCGAGAACGCGGTCACCTACGACTCGAACTACCTGGCCGGGTTCACGTCCGAGCGTCGCGACACCAACATCGGCGACCTGGTGCCGATCGCGGACGCGCAGTCGAAGGACGTCGCCCGGCACGCCGTCCACGACACGCTGCGCTTCTACGACCGCGGGGTGCGGTGGCACAGCGAGCAGCTCGACGTGCGCGGGCAGCGGTGGGTGTCGGCCTACTTGCCGGTGTGGCTGTACAGCTACCACCAGACCGGACGCGACGGCCGGTCGGTCACGCACTACGTCGCGGTGAACGGTCGGACCGGCGCGGTGATGGGCAGCGTGCCGATCAACTATCCCCGGCTGCTGCTGACGTCTGCGGTCGTGGAGGCCGCGGGCATCGTCGTCGGCACGACCGTGATGATCCTGGGAGGTGGGTCATGAMDDVTEPPSDEQAPAPPTTPPEPDHGPRVIDTDADAVDGLTKCPRCGATQIALNIGSGMLRCHYCRDEWSTPSANEAFGLDAGVGELRGVTMGSGSSDIVPSAEIVLTFKCSACGAEIVIDTASSTQARCHWCRNTLSMNQQVPNGAVPDMVLPFSLPKEEAVRKIATFVRKRRFFAHPRFRKEFNPDNVLGAYLPYMVVDVNAHAEFDGQGEHQTRSYTVSVGEDRSETRYDADLYDVGRAFDIEVHDLAVVSSQQRLDQGLSTTNNVINAIRPFDLENAVTYDSNYLAGFTSERRDTNIGDLVPIADAQSKDVARHAVHDTLRFYDRGVRWHSEQLDVRGQRWVSAYLPVWLYSYHQTGRDGRSVTHYVAVNGRTGAVMGSVPINYPRLLLTSAVVEAAGIVVGTTVMILGGGSNANANANANA
AK018_025991197hypothetical proteinATGGGGTTCATCAAGGCATTCGCCGGCGCTCTCGGCGGGACGCTCGCCGACCAGTGGAAGGACTTCATCGTCCCGCCCCCGGGTCTCGAGCCCACGGCGGCGCTGTTCCCGGCGGTCCGCCAGGGCCAGGACGCCGGACGCGGCGCGAACACCCAGGGTTCCGAGCACATCATCACCAACGGTTCCCGGATCGTCGTCCCCGAGGGGTACGCGCTGATGACGTTCCAGGACGGCGAGCTGACCGGCCTCGTCAGCGACCCGGGCGGCTACGTGTTCACCTCCGACGACCAGAACTCGCGGTCGGTGTTCGCCGACGACGGCTTCCTCAGCGCGACGGTGAAGACCTCGTGGGAGCGGTTCAAGTTCGGCGGGCGGCCCGGCTCCCAGCAGCTCGCGTTCTACGTCAACCTCAAGGAGATCCCGAACAACCGCTTCGGCACGCAGTCGGAGATCTACTGGGACGATGCCTACCTGCGGGCCCAGGTCGGCGCGATCACGCGCGGCAGCTACTCGCTGCGGATCGTCGACCCCGTGCTGCTCGTCAAGAACTTCGTGCCGCTGACGTACCTGAGCTACGACGCGAAGGTCTTCGACTTCGGCGACTTCGACAACGACGCGGCCAGCCAGCTGTTCAACGAGCTGGTGGGGTCGTTGGCGGCAGCGTTCTCCCACTACACGAACGACCCGAGCAAGGGGAACCGCATCGCCCGCATCCAGGGCGACGCGGTCGGCTTCGCGCAGTCGCTGAGCCACGCCGTCGAGGAGTCCTACCGGTGGACGTCGGACCGGGGACTGACCATCGTCAAGGTGGCGCTGCAGGCGATCGAGTACGACGCGGACACCCGCAAGCTGCTCTCCGACGTCAAGAAGGCGGACGCACTCGGCGGCGCACGCGGCAACTCGTTCATGCAGCAGGCCGCCGCCCGCGGGTTCCAGGCGGCCGGGGAGAACGGCGGGGGCGGGGGCTCCGACATGGCGTTCCTCGGCATGGGGATGAACGCGACCGGCGCGGCCATGGGCGGTCTGCAGCAGCCCGCCGGCCAGGTTCCCCCGCAGCAGGCGTCGCCCCAGGCGTCCGCCGAGCCGGCCGAGGAAGACGCGATGGCGAAGCTCACCCGGTTCAAGGCGATGCTCGACGCCGGTCTCATCACCCAGGAGGACTACGACGCCGCCAAGAAGAAGGCGCTCGGGCTGTAGMGFIKAFAGALGGTLADQWKDFIVPPPGLEPTAALFPAVRQGQDAGRGANTQGSEHIITNGSRIVVPEGYALMTFQDGELTGLVSDPGGYVFTSDDQNSRSVFADDGFLSATVKTSWERFKFGGRPGSQQLAFYVNLKEIPNNRFGTQSEIYWDDAYLRAQVGAITRGSYSLRIVDPVLLVKNFVPLTYLSYDAKVFDFGDFDNDAASQLFNELVGSLAAAFSHYTNDPSKGNRIARIQGDAVGFAQSLSHAVEESYRWTSDRGLTIVKVALQAIEYDADTRKLLSDVKKADALGGARGNSFMQQAAARGFQAAGENGGGGGSDMAFLGMGMNATGAAMGGLQQPAGQVPPQQASPQASAEPAEEDAMAKLTRFKAMLDAGLITQEDYDAAKKKALGLNANANANANA
AK018_026002013mrdA_2Peptidoglycan D,D-transpeptidase MrdAGTGCTGGCCGCCGCCGCGGCGTGCACCGGGCCCGAACGGCCGGCTCCCGGAGAGACGGCGCAGGCGTTGGCCGACGGGCTGGCCCGCCAGGACCTGTCGGCGCTGACGCTGGTGTCCGACACGAGCGCCCTGCCGGAGCAGCACCTGGCCGAGGTCGTCGAACCCCTGCTCGCGGCCGCCGAGGAGACCGGCGCCGCGCCGAGCGTCGAGGTGGCCGAGGTCGTCGAGGCCGAGACGGCCGAGGACGAGCCGCCGCGGGCCGCGGTCACGTTCGCCTGGGGCTGGCCGCTCGCGCCGGGCCACACCTGGGACTACACGACCGACACCGAGCTGGTCTGGGCGCCACCGCCCGAGGACTCCGAGGAGACCGGCACCTGGGAGGTGCAGTGGCAGCACGACCTGGTCGCCCCCGACCTCGCCGGCGGCGAGCGCCTCGAGCTCGAGTCCCTGGAGCCCGACCGCGGCGACCTGCTGGACGTCCACGGCGAGCCGCTGGTCACCGAGCGCGACGTGTGGCGCATCGGCATCGACAAGACCTACCTCGAGCCCCCGCGGTACGCGGAGCAGGCCGAGGCGCTGGCCGAGCTGGTCGGGCTCGACCCCGCGGCGTACGCGGACCGCGTGGCCTCCGCCGGGGAGAAGGCCTACGTCCTGGCGATCACGATCCGCCAGGACGAGGCGACGTCAGGGGTCTCGTTCACCGCCGACGACGCCCGGGCGATCGACGGGGTGAACGTGCTGGCGGACACGATGGAGCTGGCCCCGACGTCGTCGTTCGCGCGGTCGGTCCTCGGTCGCGCGGGGGAGGCGACCGCCGAGATGATCGAGCAGTCCGACGGCGCGGTCGAGCAGGGCGACGTCGTCGGGATCTCCGGTCTGCAGCGGCAGTACGACGCGGCGCTGACCGGCAGCGAGGGTCTGGCCGTCCACGTCGTCGACGGTGACGGCGAGGTCGTGCGGGACGCGTACCGCATCGAGGCCGTCGACGGTGCCGACGTCGCCACGACCTTCGAGCCCGCCCTGCAGATCCTCGCCGAGGAGGTGCTGTCCGACGTCGAGCCGGCCAGCGCGATCGTGGCGGTCCGGCCCTCGACGGGCGAGGTCCTGGCGGCCGCCAGCGGTCCGGGCGGCGAGGGCTGGTCGACGGCGACGCTGGGCCAGTACGCGCCGGGGTCGACCTTCAAGGTGGCCACCGCGCTCTCGCTGATGCGTGCCGGGGTCTTCCCCGAGGACGAGGTCACCTGCCCGACGTCGGTCACCGTGGACGGCCGCACGTACGAGAACGTGCCCGGCTACCCGCGGGACGCCACGGGGGCGGTGTCGCTGCGCACGGCGTTCGCGCACTCGTGCAACACCGCCATGATCGGCGAGGGGGCGGAGGTGCGGCAGGCCGACCTCGCCGCCGCTGCGGTGGACCTGGGGCTCGGCGCGTCGTCGTCCGTCGGGGCCCCGGCGTTCCTGGGCGAGGTGCCGACCGAGGCGTCCGCCACGGGGCACGCCGAGGCGCTCATCGGCCAGGGTGCGGTGCTCGCCTCCCCGCTGGGCATGGCTACCGTCGCCGCGTCGGTCGCGGCGGGGGAGCGGGTCGAGCCGGTGCTGGTCCGGCCGGTCGAGGACGACGGCGGCACCGACGGCTCGGTCGAGGGGGACGACGGTGCCGCGGGGGCCTCGCCCTCGGCGAGCGCCTCGCCGGACGGCTCGGACTCCTCCGAGGCCGCGTCCGACGCGTCGGAGCCGACCGGGTCCGCGGGCGGACTGACGCAGACCGAGGCCGCGGACCTGCACGACCTGATGGGCGCCGTCGTCGCCGAGGGCAGCGCCTCGGCGCTGGCGGACGTGCCCGGGGTGACCGGCGCGAAGACGGGGACGGCCCAGTACGGGGACGGGTCCCGGCAGCACGCCTGGATGCTGGCGATCGCGGACGACCTGGCGGTCGCGGTCTTCGTCGAGGACGGCGAGTACGGGTCGACGACGGCGGGCCCGCTGATGGGCCGCTTCCTCACCGGTCGCTGAMLAAAAACTGPERPAPGETAQALADGLARQDLSALTLVSDTSALPEQHLAEVVEPLLAAAEETGAAPSVEVAEVVEAETAEDEPPRAAVTFAWGWPLAPGHTWDYTTDTELVWAPPPEDSEETGTWEVQWQHDLVAPDLAGGERLELESLEPDRGDLLDVHGEPLVTERDVWRIGIDKTYLEPPRYAEQAEALAELVGLDPAAYADRVASAGEKAYVLAITIRQDEATSGVSFTADDARAIDGVNVLADTMELAPTSSFARSVLGRAGEATAEMIEQSDGAVEQGDVVGISGLQRQYDAALTGSEGLAVHVVDGDGEVVRDAYRIEAVDGADVATTFEPALQILAEEVLSDVEPASAIVAVRPSTGEVLAAASGPGGEGWSTATLGQYAPGSTFKVATALSLMRAGVFPEDEVTCPTSVTVDGRTYENVPGYPRDATGAVSLRTAFAHSCNTAMIGEGAEVRQADLAAAAVDLGLGASSSVGAPAFLGEVPTEASATGHAEALIGQGAVLASPLGMATVAASVAAGERVEPVLVRPVEDDGGTDGSVEGDDGAAGASPSASASPDGSDSSEAASDASEPTGSAGGLTQTEAADLHDLMGAVVAEGSASALADVPGVTGAKTGTAQYGDGSRQHAWMLAIADDLAVAVFVEDGEYGSTTAGPLMGRFLTGRNANANANANA
AK018_02601450hypothetical proteinATGCGCTCCTTCTTCGCCGCGACCGCGGCTGTCTCCGCTGCCCTCCTGCTCACGGCCTGCGCCGGACCGGACTCGGTCGAGCCGGCGGCGGACTCCTCCCCCACCCCGGAGGCCTCCACGGAGACGGAGGGTGCTGTCGACATCGCCGCCACCTGCGCGGGCTACTACGACGGCGGCGAGCTCTCGATCGACCACCGGGTCACGACGTGGACCCCGGAGGTCTCCTCCCCGGCGACCGAGGAGAACACCGCGGAGCTCACCATCGTCCGCGACCGCCTCGACGCCCAGATCCGTTACGCCGACACCGGTCCCGCAGCGATCCTGCAGGCGATCCAGGAGCCGTTCGACGACGCGTTGAACGGCACGTCGGGGGATCAGGGCGCCGTCGAGGACGCCGTGACCGCGCTGGAGGCGATGTGCGACGACGCCGGGTTCGTGCGCCCCGAGTGAMRSFFAATAAVSAALLLTACAGPDSVEPAADSSPTPEASTETEGAVDIAATCAGYYDGGELSIDHRVTTWTPEVSSPATEENTAELTIVRDRLDAQIRYADTGPAAILQAIQEPFDDALNGTSGDQGAVEDAVTALEAMCDDAGFVRPENANANANANA
AK018_026021266hutI_3ImidazolonepropionaseATGACTTCCACGCAGCAGCCCACCACCCCGGGCACCACCCGCAGCTCCGTCGCCATCACGGACGGCCACGTCGTCCCCGTCGCCGGCGACCCGATCGAGCACGGCACGGTCCTCGTCGAGAACGGCGTCATCACCGCCGTCGGCGCCGACGTCGAGATCCCCGACGGCGTCCCCACCGTCGACGCGGGCGGCCGGTGGGTGCTGCCCGGGTTCGTCGAGTCCCACGGCCACGTCGGCGTGCACGAGGAGGCCGAGGGGTGGGCCGGCGACGACACCAACGAGAAGACGGCCCCGAACGGCGCCGCGTTCCGCGCGCTCGACGGGATCAACATCGAGGAGGAGGGGTTCCGCGACGCGCTCGCCGGCGGCGTGACCTCCGTCGTCGTCAAGCCGGGCTCCGCCAACCCCATCGGCGGGCAGACCGTCGCCATCAAGACCTGGGGCGGGCGCACCGTCGACGAGCAGGTCCTGCGCGAGGCCGTGTCGGTCAAGAGCGCGCTCGGGGAGAACCCCAAGCGGGTGTACGGCGAGCAGAAGAAGACGCCGTCGACCCGGCTCGGGGTCGCCTCGGTGATCCGCCAGGCCTTCCTCGACGCCCAGCACTACGCGGCCGCACGCGCCGCCGCCGAGGCCAAGGGCGAGCCGTTCGCCCGCGACCTGACCAAGGAGACGCTGGCCCGCGTGCTCGACGGCGAGCTCGCCTGGGACCAGCACACCCACCGCGCCGACGACATCGCCACCGCGATCCGCCTCGCGGACGAGTTCGGCTACCGGCTCGTGGTCAACCACGGCACGGACGGCGCCGCGGTCGCCGACGTGCTCGCCGAGCGCGAGATCCCGGTGATCTTCGGACCGATGTTCACCACGCGCACCAAGGTCGAGCTGCGGAACCGCGACATCGCGCACCTGGCCCGGCTGGCCGAGGCCGGCGTGACGGTCGCGATCACCACCGACCACCCCGTGGTGCCGATCAACTTCCTGGTGCACCAGGCCTCCCTGGCCGTCAAGGAGGGGCTGGACCGGCAGGTGGCCCTGGAGGCGCTCACCACGAACCCGGCGAGCATCCTCGGCCTCGACGACCGGATCGGTGCCCTGCGACCCGGCCTGGACGGCGACGTCGTGGTCTGGTCCGGCGACCCGCTGGACGTGAACGCCCGCGCCGAGCACGTCTTCGTCACCGGTACCGAGGTGTACTCCTGGGACGCCACGGCCGACGGCGGCCGGGGAGCCGGTCGCGTCGTCGAGCGGTCCGCACGCTTCGCCTGAMTSTQQPTTPGTTRSSVAITDGHVVPVAGDPIEHGTVLVENGVITAVGADVEIPDGVPTVDAGGRWVLPGFVESHGHVGVHEEAEGWAGDDTNEKTAPNGAAFRALDGINIEEEGFRDALAGGVTSVVVKPGSANPIGGQTVAIKTWGGRTVDEQVLREAVSVKSALGENPKRVYGEQKKTPSTRLGVASVIRQAFLDAQHYAAARAAAEAKGEPFARDLTKETLARVLDGELAWDQHTHRADDIATAIRLADEFGYRLVVNHGTDGAAVADVLAEREIPVIFGPMFTTRTKVELRNRDIAHLARLAEAGVTVAITTDHPVVPINFLVHQASLAVKEGLDRQVALEALTTNPASILGLDDRIGALRPGLDGDVVVWSGDPLDVNARAEHVFVTGTEVYSWDATADGGRGAGRVVERSARFANANANANANA
AK018_026032049nadE_2COG0171Glutamine-dependent NAD(+) synthetaseGTGGACTTCCGCAACGCCTACGCCCACGGCTTCGCCCGCGTGGCCGCCTGCACCGTGCCCGTGACGCTCGCCGACCCGGCGGCCAACGCCGCGGCGATCCTCGACCAGGCCCGGGCCTGCCACGACGACGGGGTGGCCGTCGCGCTGTTCCCCGAGCTGTCGGTCTCCGGCTACGCGCTGGACGACCTGCACCTGGCGGACACCCTGCTCGAGGCCGTCGGGGACGCCCTGGAGCAGATCGTGGAGGCCAGTGCCGACCTGCGCCCGCTGCTCGTGGTGGGGGCGCCGCTGGAGATCGACGGCCGCGTGCACAACTGCGCCGTGGTGGTCCAGGGCGGCCGGGTGCTCGGCGTCGCCCCGAAGTCCTACCTGCCGACCTACCGGGAGTTCTACGAGAAGCGCTGGTTCGCCTCCGGCGCCGACCTGCGCGGGGCGACGGTGCGGCTGCCGTTCGCCGACGAGGAGGTCCCCTGCGGCCCGGACCTGCTGTTCCGCGCCTCCGACGTCGCGGGGCTGACCGTGCACGTCGAGGTGTGCGAGGACATGTGGGTGCCCGTGCCGCCGTCGGCCGAGGCGGCGCTGGCCGGGGCGACGGTGCTGCTCAACCCGTCCGCGAGCCCGATCACCATCGCCCGCGCCGAGGACCGCCGGCTGCTGGTGCGCTCGGCGTCCTCGCGCTGCCACGCGGCCTACGTCTACGCCGCGGCCTCGCAGGGCGAGTCGTCGACCGACCTGTCCTGGGACGGGCAGACGATGGTCTACGAGGCCGGCGACGAGCTCGCCGAGACCGAACGCTTCCCGGACGGACCGCGGCGCGCGGTGGCCGACGTCGACCTCGACCGGCTGCGCCAGGACCGGCTGCGCCAGGGCACCTTCGACGACAACCGCCGCGCGCTCGGCGACCGGACCAGGGACTTCCGCACCGTCGAGTGGCGGGTGGGACCGCCGTCGGGCGACCTCGGCCTGCGCCGGCACGTGGACCGGTTCCCGTTCGTGCCCGACGACGCGGCGCGGCTCGCGCAGGACTGCTACGAGGCGTACAACATCCAGGTCACCGGCCTGGAACGGCGGCTGGCCGCGATCGGGCAGCCGAAGGTCGTCGTCGGGGTCTCCGGCGGCCTGGACTCGACGCACGCGCTGGTCGTGGCCGCGAAGGCGATGGACCGCCTCGGACGTCCCCGCACGGACGTCCACGCCGTCACGATGCCGGGGTTCGCGACGTCGTCCGAGACCAAGGACCGGGCCACCCGCCTGGCGCGCGCGCTGGGCGTGCGGTTCGAGGAGCTGGACATCCGGCCGGCCGCCGAGCAGATGCTGCGCGACCTGGACCACCCCTTCGGCGCCGGTGAGCCCGTCTACGACGTGACCTTCGAGAACGTCCAGGCCGGGCTGCGCACCGACTACCTGTTCCGGATCGCCAACCATCGCGGCGGCATCGTGCTGGGGACCGGCGACCTGTCCGAGCTGGCGCTGGGGTGGTGCACCTACGGCGTCGGCGACCAGATGTCGCACTACGCGGTGAACACCGGGGTGCCGAAGACGCTGATCCAGCACCTCATCCGCTGGGTGGCGGACTCCGGCGACTTCCCGGCGGAGGTCGGCGACGTGCTGCGCGAGATCGTCGTGCAGGAGATCTCCCCCGAGCTCGTGCCGGCCGGCGAGGGCGAGGCGCCGCAGTCCACCGAGGCGATGGTCGGCCCCTACGCGCTGCAGGACTTCACGCTGTACTGGACGCTGCGGTGCGGGATGCGGCCGTCCAAGATCGCGTTCCTGGCGTGGCACGCCTGGCGGGACGCCTCCGTGGGCGACTGGCCGGCGAACTTCCCGCACGACGACCGGTCGACCTACGACCTCGCGACGATCCGACGGTGGATGCTGGTGTTCTTCCGCCGGTTCTTCGCCTCGCAGTTCAAGCGCTCCGCGCTGCCGAACGGGCCGAAGGTCTCGGCCGGGGGCACGATGTCGCCGCGCGGGGACTGGCGGATGCCGTCGGACGCGTCGGCGGCGGCGTGGCTGCGCGAGGTCGAGGAGAACGTCCCGGAAGCCTGAMDFRNAYAHGFARVAACTVPVTLADPAANAAAILDQARACHDDGVAVALFPELSVSGYALDDLHLADTLLEAVGDALEQIVEASADLRPLLVVGAPLEIDGRVHNCAVVVQGGRVLGVAPKSYLPTYREFYEKRWFASGADLRGATVRLPFADEEVPCGPDLLFRASDVAGLTVHVEVCEDMWVPVPPSAEAALAGATVLLNPSASPITIARAEDRRLLVRSASSRCHAAYVYAAASQGESSTDLSWDGQTMVYEAGDELAETERFPDGPRRAVADVDLDRLRQDRLRQGTFDDNRRALGDRTRDFRTVEWRVGPPSGDLGLRRHVDRFPFVPDDAARLAQDCYEAYNIQVTGLERRLAAIGQPKVVVGVSGGLDSTHALVVAAKAMDRLGRPRTDVHAVTMPGFATSSETKDRATRLARALGVRFEELDIRPAAEQMLRDLDHPFGAGEPVYDVTFENVQAGLRTDYLFRIANHRGGIVLGTGDLSELALGWCTYGVGDQMSHYAVNTGVPKTLIQHLIRWVADSGDFPAEVGDVLREIVVQEISPELVPAGEGEAPQSTEAMVGPYALQDFTLYWTLRCGMRPSKIAFLAWHAWRDASVGDWPANFPHDDRSTYDLATIRRWMLVFFRRFFASQFKRSALPNGPKVSAGGTMSPRGDWRMPSDASAAAWLREVEENVPEAPGPT0013450_854DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013450-nadE2-K01950NANA
AK018_02604759hypothetical proteinGTGGCGCAGAACCCCGAGGGCCCCCGGCCCCGATCCCGACCGTCCGCCCCGTCCGAGGGGCCGGACTGGACTCCGGTCCGCCCGCAGCGACGCAACCGGCTCGTCGCGGCGATCGTGGCGCTCGCGATGCTGCTGACCGCCGTCGGCGGCACGGCCGCGATGCTCTTCGGCGCGCTGTCCGCCGGCGCGCACGACCAGCTGCTGTCCACCGACCCCGAGGACGGGGCGTCGCTGGACGAGCCGGTCGAGGAGCTGAGCCTGACCTTCAGCTCCGACATCATCGCCGACGGCACCCAGGTCCGGGTGACCCCGCCGTCGGGCGACCCCGTCGACGCCGAGGTGAGCGTCGACGGCCCCGTGGTCACCGCCACGGTGGGCGAGCAGGTCGCCGGCGGGGAGTACGAGGTCGCCTGGCGCGCCGTCTCCTCGGACGGGCACCCGATCGAGGGTGGCTTCGCCTACTCCGTGGCCGACCAGCCCGAGACCGAGCAGGCCGACGAGCCGGTGCCCGCCGCGTCCGCCGAGGCCGAGCTGTCCGAGTCGGGCGAGATGGAGGGGCTCGGAGCGGCCGCCCCGGCCGACGAGCCCTCGCCGTCGGCGCCCGTCGAGGAGGACGCGTCCGCCGCCGGGGCCATGCCGGTGCTGTACGGTGCCGCGCTCGTGGCGATCATCGGTGTCGCGGCCGTGCTGCTGATGCGGACGCGACGCCGTCTGCACGACGACCAGGGCCAGGGCCCCACCCAGGGGCCGCTGAGCTGAMAQNPEGPRPRSRPSAPSEGPDWTPVRPQRRNRLVAAIVALAMLLTAVGGTAAMLFGALSAGAHDQLLSTDPEDGASLDEPVEELSLTFSSDIIADGTQVRVTPPSGDPVDAEVSVDGPVVTATVGEQVAGGEYEVAWRAVSSDGHPIEGGFAYSVADQPETEQADEPVPAASAEAELSESGEMEGLGAAAPADEPSPSAPVEEDASAAGAMPVLYGAALVAIIGVAAVLLMRTRRRLHDDQGQGPTQGPLSPGPT0004115_36DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004115-pcoC|copC-K07156NANA
AK018_02605282hup_2COG0776DNA-binding protein HB1ATGTCGCTGAACAAGTCCGAGCTCGCCTCGGCCATCGCCGCCAAGGCCGACCTGACCAAGTCGGACGCCGAGGCTGCGCTCAACGCCTTCCAGGAGGTGCTCATCGAGTCCCTCGGCAAGGGTGAGGCCGTCAAGGTCACCGGTCTGCTGTCGGTCGAGCGCGTCGAGCGTGCCGCCCGCACCGGCCGCAACCCTCGCACCGGTGAGGAGATCCAGATCCCGGCCGGATACGGCGTCAAGATCAGCGCCGGCTCGCTGCTGAAGAAGGCTGTCGCCAAGTGAMSLNKSELASAIAAKADLTKSDAEAALNAFQEVLIESLGKGEAVKVTGLLSVERVERAARTGRNPRTGEEIQIPAGYGVKISAGSLLKKAVAKNANANANANA
AK018_026062772hypothetical proteinATGTCCCGAGCCAGCGGCGAGGCCCCCGCGGGCCCCGGCACCCCGCCGAGCACGGTGCACGACGTCGGCTCCTCCCGCCGGGAGGACGCCCAGCCGCCCGCCGGCGCCTTCGACGCGCTCTTCCTCGCCGGCGGCGTCCCCGACGACGACGCCGGACTCGTCCGCGTCGTCGACACGCCCGAGCAGCGGGTGCGCAACCCCTCCGACCTGCTCGGCATCATCAGCAGCGCCGTCGGCGTCGCGCTGGTGCTGGTGCTGTCGGTCGTCGCCCACGGCACCACCGAAGGCGTCACCGCCGACGTGCGCGCTTTCAACACCCTGCTCGGCGAGCTGCTGTTCATCCCGGTGGTCGTCCTCGAGGGGCTCGTCACGCTGTTCGTGCCCGTCGTGGTGCTCGTCGAGCTCGCCGTCCGGCGGCTGGGTCGCCAGGTCGTCGAGTCGATCATCGCCGCCACGTTCGGGCTCGTGCTCGGCGTCCTCGCGGTGCTGATGGTCGACTGGTGGGGCGGCGACGAGCTGCTGCGCTCGTTGTCGATCTTCCGCGACGGCGCCTGGCAGATCACGATCCCCGGCTACGTGGCGGGCCTGGCGGCGCTGCTCACCACCGCCGGTCCGCGGACCCGGCGCCGCACGGTGCGCTGGTCGTGGAACGTCCTCTACCTCGCCCTGATCATCGCCCTCATCACCGGGCAGGCGCCGCTGCCGGGCGTCCTGGTCGCCCTGCTGCTCGGCCGCTTGGCGGGCCAGACCGTGCAGTACGCCTCCGGCGTGCGCTCCGAGCGTGCCTACGGCGGTGAGCTCGTCACCGCCGTGCGCCGCGCCGGCTTCCGTCCGACGACGCTCGTGCGCGTGCGCGACGTCACGGCGCCCGCCGACGCCGGGGCCGCGGAGGACGCCGCTCGCCCGGAGCTGCCCGACGAGACGGTCACCGACGTCGACGCCTCCGGCGAGGTCACCTCACGCACCACGCTGCGGGCCCTGCTGCGCAACCGACCCCGGTACGGCACCCGCCGCACCACCGGCACCGGTGCCGACGACCCCCGTTCCCGGATCCCGTCGGCGCAGACCCTCGCCGACCCCGCCACCCGGGCTCTGACCCGCACCGGCGACGCCCGGGTCTACGCGATGTTCACCCCGGACGGGGACCGCCGCGACGTCGTCGTCCTCGACGGGGACCGCCACGTCGTCGGCGTGCTCACCCGGCTGTGGCGCGGCCTGCGCCTGCGGGGCCTGGAGGGCCGGGCGCAGGTGTCGCTCAAGGCCGTCGCCGAGCGCACCGCGATGCTCACCTACGCGGCCGACGCCGCGCACGTCCGCACCCCGCGCCTGCTCGGCGTCGGCGAGGCCGCGGACTCGATCGTGCTCGTCACCGAGCACGCCGTCGGTGCCGTGCCCTGGCGCGACCTGTCCGACGCGGCGCTCGCCGGGGCGCGGGGCGACGCCGTCCTGGCCGCCGCCTGGGCGCAGCTCGGGCGGGCGCACGAGGCCGGGCTGACGCACCACGCGCTGACGCCGGACGTGCTGCTCGTCGACTCCGACGGACCCCGCCCCCGCGTCTGGCTGACGGGCTGGGAGCAGGGCGAGATCGCCTCGACCGTCCTGGGCCGCCGGCTCGACCTGGTCCAGATGCTCGCGCTGCTGGCCCTGCGGGTCGGTCCGCGCCGCGCCGTCGCCTCGGCGGTGCGGGCGCTCGACGCCGACGACGTCGCCGCCGTCGGGCCGCTGCTGCAGTCCATCGCCCTGCCGGCCGTGACACGCGTGGCCGTGCGGCAGCGGCGCGGGATGCTCGACGAGCTCCGCGACGCCCTCGTCGAACGGCTGCCGCAGGTCGACGTCCAGCCGCAGAACATCACACGGTTCGGCGCACGGACCGTCATCACGCTCGCGCTGTCGATCGTGGTGGTGACCGCCCTGGTCACCACCATGAACCTCGACGAGATCACCGACGCCGTGAGCCGGGCCAACCCCTGGTGGGTGGTCGCGTCCTTCGCCCTCGGGGCGATCACGTGGTTCGGTGCCGCCCTGACGTTCGTCGCGTTCTCCCCCCGACGGCTGCCGCTGTGGCGCGCCACGCTGACGCAGATGGCGGGGTCGTTCGTGGCGCTCGCGGCACCGGCCGGCATCGGTCCCGCGGCGCTGAACCTGCGGATGCTCACCCGGCGCGGCGTCGAGCTGCCGATGGCCGTCGCGACGGTGGCGCTGGTGCAGGTGTCGCAGTTCGTCGTCACCGTGGTGCTGCTGGTCGTGCTGTCGATCTTCACCGGGTCGGGCGGGCTCATCGAGCTGCCCTCGATCACGGTGCTGCTCACCATCGCCGGGGTGGCGACCGTCGTCGTGGCGACGCTGCTGGTCCCGGCGATCCGCCGCTGGGTGTGGGGCAAGATCCGGCCCACGCTGGAGCAGGTCTGGCCGCGGCTGTCGCAGATGCTCGGCCAGCCGACCCGCCTGGCGCTCGGCATCGGCGGCAACGTGGTGATGTCGCTGGGGTACGTGCTGGCGTTCGACGCCGCGCTGGCCGCCTTCGGCCAGTCCCTCAACCTCATCGACGTCGCCGTCATCTACCTGGTGGGCAACGCGCTGGGCGCACTGGTGCCCACGCCGGGCGGTCTGGGCGGTGTCGAGGCGGCGCTGACCGCCGGCCTGACCGCCGCAGGCATCCCGGCGTCGATCGCGCTGTCCACGACCATCCTGTTCCGGCTGGTCACCTACTGGGGCCGGGTGCCCTTCGGCTGGGCGGCGATGCGCTACCTGGAGCGCAAGGGCGACCTCTGAMSRASGEAPAGPGTPPSTVHDVGSSRREDAQPPAGAFDALFLAGGVPDDDAGLVRVVDTPEQRVRNPSDLLGIISSAVGVALVLVLSVVAHGTTEGVTADVRAFNTLLGELLFIPVVVLEGLVTLFVPVVVLVELAVRRLGRQVVESIIAATFGLVLGVLAVLMVDWWGGDELLRSLSIFRDGAWQITIPGYVAGLAALLTTAGPRTRRRTVRWSWNVLYLALIIALITGQAPLPGVLVALLLGRLAGQTVQYASGVRSERAYGGELVTAVRRAGFRPTTLVRVRDVTAPADAGAAEDAARPELPDETVTDVDASGEVTSRTTLRALLRNRPRYGTRRTTGTGADDPRSRIPSAQTLADPATRALTRTGDARVYAMFTPDGDRRDVVVLDGDRHVVGVLTRLWRGLRLRGLEGRAQVSLKAVAERTAMLTYAADAAHVRTPRLLGVGEAADSIVLVTEHAVGAVPWRDLSDAALAGARGDAVLAAAWAQLGRAHEAGLTHHALTPDVLLVDSDGPRPRVWLTGWEQGEIASTVLGRRLDLVQMLALLALRVGPRRAVASAVRALDADDVAAVGPLLQSIALPAVTRVAVRQRRGMLDELRDALVERLPQVDVQPQNITRFGARTVITLALSIVVVTALVTTMNLDEITDAVSRANPWWVVASFALGAITWFGAALTFVAFSPRRLPLWRATLTQMAGSFVALAAPAGIGPAALNLRMLTRRGVELPMAVATVALVQVSQFVVTVVLLVVLSIFTGSGGLIELPSITVLLTIAGVATVVVATLLVPAIRRWVWGKIRPTLEQVWPRLSQMLGQPTRLALGIGGNVVMSLGYVLAFDAALAAFGQSLNLIDVAVIYLVGNALGALVPTPGGLGGVEAALTAGLTAAGIPASIALSTTILFRLVTYWGRVPFGWAAMRYLERKGDLNANANANANA
AK018_02607837hypothetical proteinGTGACCGCACCGGAGCCCGCCGTCCAGGACCGCTGGACCCCGCCCGCGCCCGCCGCGCCGGCCCGCACGCCGCAGGAACGCCGTCGGACCGGAGCAGAGATCTGGCTCGTCCTCGGCCTCAGCCTCGGCCAGAGCGCCGTGTACGCGGTCGTCAACATCCTCGCGCGGCTCACCTCCGGCACCGCGCTGGCCGAGCAGTCCGCCACCCTGAACGCCACCCGGTCGGCACGCCCCTACCTCGACCTCACCTACCAGCTGCTCGGCATCGCCTTCGCCGTGCTGCCCGTCGCCCTCGCGATCTACCTCCTCAGCGCCCGCGGGCCCGGGACTCTGCGCCGCATCGGGTTCGACGCCGCCCGCCCCGGCCGCGACACCGCCTGGGGGTTCGCGCTCGCCGCCGCGATCGGCATCCCCGGGCTGGCGTTCTACACACTCGGCCGCGCGCTCGGCATCACCGTGGAGATCCAGGCCAGCGCCCTGGCCGACTACTGGTGGACCGTCCCCGTGCTCGTCCTGGCCGCCCTGCAGAACGGCCTCCTCGAGGAGGTCGTCGCCGTCGCCTACCTGCACGAACGCACCGCGGACCTCGGCTGGCACCGGGTCACCTTCGTCGTGACCAGCGCGCTGCTGCGCGGTTCGTACCACCTCTACCAGGGCTTCGGGCCGTTCCTGGGCAACGTGGTGATGGGGATCGTCTTCTCCTGGTTCTACACCTCGCGCTGGGGGCGGCACCGCGTGCTGCCCCTGGTGATCGCGCACACCCTGCTCGACGTCGTCGCCTTCGTGGGCTACGCCTTCCTGCCGGCCGGCTGGCTCGCGACCCTCGGCGTCGGGTGAMTAPEPAVQDRWTPPAPAAPARTPQERRRTGAEIWLVLGLSLGQSAVYAVVNILARLTSGTALAEQSATLNATRSARPYLDLTYQLLGIAFAVLPVALAIYLLSARGPGTLRRIGFDAARPGRDTAWGFALAAAIGIPGLAFYTLGRALGITVEIQASALADYWWTVPVLVLAALQNGLLEEVVAVAYLHERTADLGWHRVTFVVTSALLRGSYHLYQGFGPFLGNVVMGIVFSWFYTSRWGRHRVLPLVIAHTLLDVVAFVGYAFLPAGWLATLGVGNANANANANA
AK018_02608660hypothetical proteinGTGAGCACCGAGTCCGAGAGCAGTCCCGACCGACCGCTCGACCCCGCCGCCACGCTGGACCTCATCGCGCAGTCCCAGCGCCGCGCCCGTGCCGGGACGGAACCCGACGGCCGGCTGCTCTGCCTGGTGTGGGGGGTCGCCTGGCTGATCGGCTACACGGCGCTGTGGTGGAGCGCCCGCGCGCTCGGCGGCGCGCCGGACGCCCTCGCCTTCGCTCTGTTCGGGGCGCTGCTCGGCACCGCCGTCGTCATCACGATCGTCCATGCGCTCCGACGCACGGCGGGGACCCGCGGGCCCGAGCGCCGCGCCGGGGCGCGGTGGGGGACCGCGTGGCCGCTGGCCTTCCTCGTGTTCCCGGTCGTCATGGCCGGTCTCGGACGGGCGGACGCGTCGGGCGAGGTCGTCGGCCTCGTCTCCAACGCGCTGGCCTGCGTCATCATCGGCGTGATGTACCTGACCGGAGGCGCGCTCTTCGACGACACGGGCCTCTACGTCCTCGGGGTGTGGATCCTGCTCACCGGCGGTGCCGCGACGCTCGCCGGGATGCCGGCCACCTATCTCGTCATGGCCACGGTCGGTGGCGGCGGGTTCCTCGCCATCGCGCTCGTGTGGCACCTGCTGCTCGTCCGGCGCCGCCGCGAGGGCGGGGTGCCGTCGTGAMSTESESSPDRPLDPAATLDLIAQSQRRARAGTEPDGRLLCLVWGVAWLIGYTALWWSARALGGAPDALAFALFGALLGTAVVITIVHALRRTAGTRGPERRAGARWGTAWPLAFLVFPVVMAGLGRADASGEVVGLVSNALACVIIGVMYLTGGALFDDTGLYVLGVWILLTGGAATLAGMPATYLVMATVGGGGFLAIALVWHLLLVRRRREGGVPSNANANANANA
AK018_02609300hypothetical proteinGTGACCGAGCTCGACACGGTCATCCACGCCCCGGCGCGCCTGCGGGTGGTCTCGACGCTGGCCGCGCTGAGCGCCGGCGAGGAGATCACCTTCGCCAAGCTGCAGAAGCTCCTGGACATGACCGCGGGCAACCTCTCGACGCACCTGCGCAAGCTCGAGGACGCCGGCTACGTGCGCCAGACCAAGGAGTTCGCCGGGCGTCGGCCCGTCACCTACCTCGCCCTGACGACGGACGGTCGCCGGGCCTTCGAGGACTACACCACCACCCTGCAGGACCTGTTGAGAGGAGCCGGATCATGAMTELDTVIHAPARLRVVSTLAALSAGEEITFAKLQKLLDMTAGNLSTHLRKLEDAGYVRQTKEFAGRRPVTYLALTTDGRRAFEDYTTTLQDLLRGAGSNANANANANA
AK018_02610894drrA_4COG1131Doxorubicin resistance ATP-binding protein DrrAATGACAGTCATCTCCGTCGACGGCGTCACCCGCCGGTTCGGCGAGGTCGTCGCCCTGGACGACGTCACCCTGGACGTCGGCCCCGGCGAGCTCGTCGGCCTGCTCGGCCCGAACGGCGCCGGCAAGTCGACCCTGCTGTCGCTGGTCAGCGGCCAGCGGCGACCCGACGCGGGCAGCGTCCGTGTGCTCGGCGGGGACCCGCGCGACGCGGCGACCCGCACCGGCCTGGGGGTCACCCCGCAGGAGACGGGCCTGCCGCCCACCCTGCGCGTCGGCGAGGTCGTCGACTTCGTCGGCGGGCACTTCCCGGACCCGATGCCGACCGCCGCCCTGCTCGAGCAGTTCGGCCTGACGGACAAGGCCCGCAAGCAGACCGGGTCGTTGTCCGGCGGTCAGAAGCGACGGCTCGCCGTCGCCCTGGCGTTGGTCGGGCGCCCCCGGGTGATCCTGCTCGACGAACCCACGACGGGGCTCGACGTCTCCGCGCGGCAGGCCCTCTGGGGCGCGATCCGGCGGTACCACGCCGAGGGCGGGACGGTGCTGCTGACCAGCCACTACCTCGAGGAGGTGCAGGCGCTGGCCGAGCGCGTGGTGGTCATCGACCACGGCGTCGTGCGGGCCGACGACTCCCTGGACGGGATCCTGCGCCGCGTCGGCCTGCGTCGGGTGCTGCTGCGTGCCGCGACCGACCTGACCGGGCTCCCCGGAGTCGCCCGGGGCGAACGCCGCGACGACGGCACGCAGGAGCTCTACACCACCGACTCCGACGCGCTGGTCCGGGACCTGGTCTCCGCCGGCGTGCAGTTCTCGGACCTGCAGATCCGCGGGGCCAGCCTCGAGGAGGCCTTCGCCGAGATGGTCGCCGCGGACACCCTGGAAGGAGCCCACCGATGAMTVISVDGVTRRFGEVVALDDVTLDVGPGELVGLLGPNGAGKSTLLSLVSGQRRPDAGSVRVLGGDPRDAATRTGLGVTPQETGLPPTLRVGEVVDFVGGHFPDPMPTAALLEQFGLTDKARKQTGSLSGGQKRRLAVALALVGRPRVILLDEPTTGLDVSARQALWGAIRRYHAEGGTVLLTSHYLEEVQALAERVVVIDHGVVRADDSLDGILRRVGLRRVLLRAATDLTGLPGVARGERRDDGTQELYTTDSDALVRDLVSAGVQFSDLQIRGASLEEAFAEMVAADTLEGAHRPGPT0006725_16395DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_02611798hypothetical proteinATGACCGCCACGACCGCCGCCGCGCAGGTCCCGCCGTCGGGCACCGTGCACCCGGCACGCCTGACCTGGCTGCACCTGAAGTTCCAGTTCCTGGAGACCGTGCGCATCCCCATCGCCGTGCTGGGCAACATGCTCTTCCCGTCGCTGGCGATGTTCTTCTTCGTGGTCCCGCAGAGCGACGTGGCGCAGAATCCGGTGTACGCGACCATGGCCGTCGCCGGGCTCGCCCTCTTCGCCGTCTGCTCGGCGAGCCTGTTCACCTACGGGCTCGGCGTGGCCGAGGACCGCCAGCTCCCGTTCGACCCCTTCGTGCGGTCCCTGCCGGCCGGCCCGACACCCCGCATGGTCGCGCGGATCCTCAACGGCGCGATCTTCGCGCTGTTCGGGCTGGTGCCGCTGATCGTCATCGGCTGGCTGTTCACCGCGGCCTCGGTCACGCTGCTGCAGCTGCTGGCCGGGGTGGCGACGATCCTGGCCACCTCGGTGCCGTTCGTCCTGCTGGGCATGGCCGTCGGCTACTCGCTGTCGGCCAAGGCGGCCCTGCCGGTGGTGCAGGTCGTGCTGTTCCCGCTGGCGTTCGCCGGCGGCCTGTTCCTGCCGCCGGTGGCGTTCCCGGACTGGCTGAACACGCTGTCCCAGGGGACCCCGACCCGCGCCGGCCGCGACCTGCTCGTGCAGGCGCTGACCGGCGAGGCGGCCTACGCCGCGGCGTGGCCGGTGCTGATCGGCTGGACCGTGCTGTTCGCCGCGCTGGCCGTCGGTGCCTACCGCCGTGACGAGGGCCGACGCTTCCGCTGAMTATTAAAQVPPSGTVHPARLTWLHLKFQFLETVRIPIAVLGNMLFPSLAMFFFVVPQSDVAQNPVYATMAVAGLALFAVCSASLFTYGLGVAEDRQLPFDPFVRSLPAGPTPRMVARILNGAIFALFGLVPLIVIGWLFTAASVTLLQLLAGVATILATSVPFVLLGMAVGYSLSAKAALPVVQVVLFPLAFAGGLFLPPVAFPDWLNTLSQGTPTRAGRDLLVQALTGEAAYAAAWPVLIGWTVLFAALAVGAYRRDEGRRFRPGPT0006730_15345DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_026122475ctpACOG2217Copper-exporting P-type ATPaseATGACCACCACCCCCACCCACGCCGTGCGCGAGGTCGACCTCGCCGTGTCGGGCATGACCTGCGCCAGCTGCGTCGCGCGGGTCGAGAAGAAGCTCGCCAAGCTGCCCGGCGTCGAGGCCACCGTCAACCTGCCGCTCGAGAGCGCGCACGTGGTCCTCACCGAGGAGCACGACGACGACGACCTGCTGCAGGCCGTCGCCTCCGCCGGGTACACCGCGACCGTCACGCGGTCGCGGGCCGCGGGCGCGCCGTCGGAGCCGCAGCCGGAACCGGAGTCGTCCGCGGAGCCCGCTCCCCCGACCGACGAGACGGCCGCGGGGACCGACGGGGCGCCCGCCGCGGGCGACGAGGCACCCGCCGCGGGTGGTGCCGAGTACCGCGGGGCGGACCTGCTGCGCCGGCTGCGCGTGTCCGCGGTGCTGACGGTGCCCGTCGTCGCGCTCTCGATGGTGCCGGCGTGGCAGTTCCCCGGCTGGCAGTGGGTCGTCGCCGTCCTCGCGCTGCCCGTGGTGACCTGGGGCGCCTGGCCGTTCCACACCGCGGCCGCCCGTGCCGCCCGCCACGGCTCGTCGACCATGGACACCCTGGTCTCGATCGGCGTCGTGGCCGCCACGCTGTGGTCGCTGTGGGCGCTGCTGCTCGGCGGCGCCGGCGAGCTCGGCATGACCATGGACGTCTCCCTGCTGCCCTCGCGGGAGCACGCCGGCGCCCCGGAGCTCTACTTCGAGGTCGCCGCCGTGGTGACGACCTTCCTGCTGGCCGGCCGGTACGCCGAGCACCGCTCGAAGCGCCGGGCCGGGGACGCCTTGCGGACCCTCCTGTCCCTGGGCGCCAAGGAGGCCGAGCGCGTGCGCACGCGGCCCGACGGCACTCCCGTCACCCGCGACGACGGCCGGCACGTCACCGACCTCGTCGCCGTGTCCGCCCTGCGCGTCGGCGACCTGTTCACCGCGCGTCCCGGCTCCACGATCGCCACCGACGGCGAGGTCGTCGAGGGCACCTCGGCCGTGGACACCTCGCTGCTGACCGGTGAGCCCGTGCCGGTGGACGTCGGACCCGGCGACGCCGTCACCGGCGCCACCGTCAACACCTCGGGCCACCTGCTGGTGCGGGCCACGCGCGTCGGCGCGGAGACGACGCTGGCGCAGATCGGCCGGCTCGTCGCCCAGGCGCAGACGGGCAAGGCCCCCGTGCAGCGCCTCGCGGACCGCATCTCGGCCGTGTTCGTGCCGATCGTGCTGACGCTGTCCGTGCTGACGCTCGGTGGCTGGCTGCTCGCCGGCGCGGACCTGCCGTTCGCCTTCACCGCGGCGGTGGCGGTGCTCATCATCGCCTGCCCGTGCGCCCTCGGTCTGGCGACCCCCACGGCCCTGCTGGTCGGGACCGGCCGCGGCGCCCAGCTCGGCATCCTCATCAAGGGACCCGAGATCCTGGAGTCCACCCGGCGCATCGACACCGTGGTGCTCGACAAGACCGGCACGGTCACCGCCGGCGCGATGGCGCTGGAGGACGTCGTCCCGGCCCCCGGCGTCGACCCCGACGAGGCGCTGCGGTACGCCGCCGCCGTCGAGGCGCGCAGCGAGCACCCGATCGCCCGGGCGGTCGCCGAGGCCCCCTCCGCCGGCGAGAGCCGTCGCCCCGCGGAGACCGGGGACGACGGTGTCGCGATCGGCGCCCTGCAGGTGTTCGACTTCCGCACCGTCCCCGGCGGGGGCGTCGAGGCGGTCGTGCGCACCGCCCACTCCGGCCTCGGCGAGACCGGGCTCGGCGTCGGGGGCCTCGGCAGCCGGCGGGTCCTCGTGGGTCGCCCGAGCTGGCTCGACGAGGCCGACGTCCGGGTGCCCGACGAGGTGCGCGACGCCGTCGAGCAGGCCGAGAGCGACGGGGCGACCGCCGTCGTCGTCGCCTGGGACGGCTCCGCCCGCGCCGCGCTCGTGCTGCGCGACCCGGTCAAGCCGACGTCGGCCGAGGCCGTGCGCGAGCTGCGCGACCTCGGGCTGCGCCCGGTCCTGCTGACCGGCGACGCCGAGGGTGCGGCACGGGCGGCCGCCGCCGAGGTCGGCATCGACGAGGTGATCGCCCGCGTCCTGCCGCAGGACAAGGCGGCGACGGTGTCCCGGCTGCAGGGTGAGGGGCGCACGGTGGCGATGGTCGGCGACGGCGTCAACGACGCCGCCGCCCTGGCCACCGCCGACCTCGGCCTGGCGATGGGCACCGGGACCGACGTCGCCATCGAGGCCAGCGACATCACGCTGGTCCGCGGGGACCTGCGGGCGGCGGCCACCGCCGTCCGGCTGTCCCGCCGGACGCTGCGGATCATCCAGCAGAACCTGTTCTGGGCGTTCGCCTACAACGTCGCCGCGATCCCGCTGGCGGCGGCAGGCCTGCTCAACCCGATGATCGCGGGAGCGGCCATGGCGGCGTCGTCGGTGATCGTGGTGAGCAACTCGCTGCGACTGCGCCGCGCCGGCTGAMTTTPTHAVREVDLAVSGMTCASCVARVEKKLAKLPGVEATVNLPLESAHVVLTEEHDDDDLLQAVASAGYTATVTRSRAAGAPSEPQPEPESSAEPAPPTDETAAGTDGAPAAGDEAPAAGGAEYRGADLLRRLRVSAVLTVPVVALSMVPAWQFPGWQWVVAVLALPVVTWGAWPFHTAAARAARHGSSTMDTLVSIGVVAATLWSLWALLLGGAGELGMTMDVSLLPSREHAGAPELYFEVAAVVTTFLLAGRYAEHRSKRRAGDALRTLLSLGAKEAERVRTRPDGTPVTRDDGRHVTDLVAVSALRVGDLFTARPGSTIATDGEVVEGTSAVDTSLLTGEPVPVDVGPGDAVTGATVNTSGHLLVRATRVGAETTLAQIGRLVAQAQTGKAPVQRLADRISAVFVPIVLTLSVLTLGGWLLAGADLPFAFTAAVAVLIIACPCALGLATPTALLVGTGRGAQLGILIKGPEILESTRRIDTVVLDKTGTVTAGAMALEDVVPAPGVDPDEALRYAAAVEARSEHPIARAVAEAPSAGESRRPAETGDDGVAIGALQVFDFRTVPGGGVEAVVRTAHSGLGETGLGVGGLGSRRVLVGRPSWLDEADVRVPDEVRDAVEQAESDGATAVVVAWDGSARAALVLRDPVKPTSAEAVRELRDLGLRPVLLTGDAEGAARAAAAEVGIDEVIARVLPQDKAATVSRLQGEGRTVAMVGDGVNDAAALATADLGLAMGTGTDVAIEASDITLVRGDLRAAATAVRLSRRTLRIIQQNLFWAFAYNVAAIPLAAAGLLNPMIAGAAMAASSVIVVSNSLRLRRAGPGPT0004090_2232DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004090-copA|ctpA-K17686NANA
AK018_02613315hypothetical proteinATGAGCACCGTCACCACCCTGGGCGTCACCGGCCTGACGGGCGCCGACTCGGTCGCCCGCGTCACCGAGCAGATCGAGACCGTCGAGCGGGTCGAGCACGTCAGCATCGTGCTCGAGTCCGCCGGCGAGTCCGAGGTGAGCGTCTTCTCGGACCAGCCCGTCGACGAGGACGCCCTGCGCGCCGCCGTCGACACCGCCGGCTACGCCGTCGCCTCCGTCGACGTCCAGACCGACGCCCTGGCCGCCCAGCAGGCCGAGCAGGCTCCCGCCAAGCAGCGGGCGCACGACGACGCCGCACGCGGCGCCGACGACTGAMSTVTTLGVTGLTGADSVARVTEQIETVERVEHVSIVLESAGESEVSVFSDQPVDEDALRAAVDTAGYAVASVDVQTDALAAQQAEQAPAKQRAHDDAARGADDPGPT0004125_54DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213NANA
AK018_02614357hypothetical proteinATGACCGAGACCGCGCCACCCGCCCCCGAGAGCCTCGCCGCACGGGAGGACCCGACGGCCGTGGAGCACGACGGCCCGCACGGGTACGCCTCGGACAAGGCCGCCTACCTCAAGCGCATGCGCCGCATCGAGGGGCAGGTCCGCGGCATCGCCCGGATGATCGACGACGACGTCTACTGCATCGACATCCTCACCCAGGTGTCCGCCGTGACCAAGGCGCTGCAGTCCGTGAGCCTCGCGCTGGTCGAGGACCACCTCAACCACTGCGTCGTCGGCGCCGCGCGCGAGTCCGACGAGGCGGGCGCCGACAAGGTCAAGGAGGCGACCGCCGCCATCGGCCGCCTCGTCCGCAGCTGAMTETAPPAPESLAAREDPTAVEHDGPHGYASDKAAYLKRMRRIEGQVRGIARMIDDDVYCIDILTQVSAVTKALQSVSLALVEDHLNHCVVGAARESDEAGADKVKEATAAIGRLVRSPGPT0004175_580DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600NANA
AK018_02615462ihfB_2Integration host factor subunit betaATGAACAAGTCCGAGCTCGCCGCGGCGGTCGCGGAGCGCACCGAGAGCACTCCCACCGAGGCCCGTCGGCAGGTCGACGCCGTCCTGGACTCCATCGTCGAGAGCGTCTCCGCAGGCGAGCGCGTCTCCCTGCTCGGCTTCGGCACGTTCACGGGGGCCGAGCGGCCCGCACGGACGGCCCGCAACCCGCGCACCGGCGACACGATCGACGTCCCCGCCGCCGTCGTGCCCCGGTTCCGTGCCGGCTCGGGGTTCAAGGCGCGCGTCTCCGGCAGCGAGCCCGCGCCGGCCCGCTCGTCCGTGCCGGCCGCCTCGACCGGCACGTCGGCCGCCCCGTCGAAGCCCTCGTCGTCGAAGTCGTCGAAGGGCAAGAAGTCCGACAAGGACAAGGGCTCGAAGAATTCGACGAAGGACTCGACGAAGAAGTCCAAGAAGAAGAACAAGAAGTCGAAGAAGAAGTAGMNKSELAAAVAERTESTPTEARRQVDAVLDSIVESVSAGERVSLLGFGTFTGAERPARTARNPRTGDTIDVPAAVVPRFRAGSGFKARVSGSEPAPARSSVPAASTGTSAAPSKPSSSKSSKGKKSDKDKGSKNSTKDSTKKSKKKNKKSKKKNANANANANA
AK018_026161296hypothetical proteinATGACCCGGACGATCAACGACAACGGCGCCTGGTGCTGGTTCCAGGACGAACGTGCCCTGACGGACCCGGGCACCGGGACCCTGGTGGTGGGGTCGGTGGCCGCGCCCGAGGGCCCCGGGGGCGAGGCCCGGGCCGGAACCATCGAGCTGGCGGTGGTCGACCTCGCCACCGGGGGGTCCGTCGTCGTCCCGCTGCACGAACGGCTCGAGGCCGACGACCACGACGTCCCGGCGCTCTGGCGACGCCGGGACGGGCGCTGGCTGGCCGTCTACGCCAAGCACAAGACCGACGACCTCACCCGCTGGCGGATCAGCGACACGGACGATCCCCGCGGCCCGTGGGGGCCGGAACGCACCTACGACTGGAGCGAGCGCACCGGCGGCGCCGGCGTCACCTACGCCAACCTGCACGAGCTCGACGGGCGGCTGTACTGCTTCGCCCGCGCCGTCAACGACGACCAGTGCGCGCTCGTCTCCGACGACGACGGCGAGACCTGGGCCTACGCCGGCAAGCTGTTCACGCGGCCCAAGGTCGGCTACGTCAACGGCTACACGCGGTACGCCTCGCGCCCGACGTCGCCCGACCGCATCGACGTCGTCACCACCGACCACCACCCGCGGGACTTCGACAACTCGATCTACCACGGCTACCTCGCCGACGGGGCGCTGCGGCGCTCGGACGGGAGCGTGCTCGACCCCGACCCGCTGCACGGCGAGGGGCTCTCGCAGGAGGGGCTGACGACGGTCGTCGCCGCGGGCTCGGTGCACGGCGGGGTGCCCGTGACCCACTGCTGGACCACCGACGTCCGACGCGCCGCCGACGGCACCGTCGCGATGGTGGTCACCGCGCGCCACGACACCCCCGACGACCCGGCCGACGCCTTCGAGCGGTTCCGCGACGTCACGGACCACCGGTTCCTCTACGCCCGGCTCGCGCCCGGCGGCGAGTGGGAGGTCCACCACCTCGCCCTGGCCGGCCCCGGGCTGCTGCCGCACGAGCAGGACTACACGGGCCTGGCCGCGATCGATCCCGAGGACCTCGACTCGCTGTACGTCTCGACACCCGTCGACCCCCGCGACGGCGCCGGGCTGGCGCACCACGAGATCTTCCACGGTCGCACGGCCGACGGCGGCGCGACCTGGGCGTGGACGGCCGTCACCGAGGACTCCGCCGTCGACAACCTGCGTCCGATCGTCGCCCCCGGCGACCCGGGGAACCGCCCGTTGCTGTGGTTCCGCGGGGAGATGACCGCCTCGCAGCACTACCGGTGCGAGGTGGTGCTGCACGGGTCGTGAMTRTINDNGAWCWFQDERALTDPGTGTLVVGSVAAPEGPGGEARAGTIELAVVDLATGGSVVVPLHERLEADDHDVPALWRRRDGRWLAVYAKHKTDDLTRWRISDTDDPRGPWGPERTYDWSERTGGAGVTYANLHELDGRLYCFARAVNDDQCALVSDDDGETWAYAGKLFTRPKVGYVNGYTRYASRPTSPDRIDVVTTDHHPRDFDNSIYHGYLADGALRRSDGSVLDPDPLHGEGLSQEGLTTVVAAGSVHGGVPVTHCWTTDVRRAADGTVAMVVTARHDTPDDPADAFERFRDVTDHRFLYARLAPGGEWEVHHLALAGPGLLPHEQDYTGLAAIDPEDLDSLYVSTPVDPRDGAGLAHHEIFHGRTADGGATWAWTAVTEDSAVDNLRPIVAPGDPGNRPLLWFRGEMTASQHYRCEVVLHGSNANANANANA
AK018_026171374hemL_2COG0001Glutamate-1-semialdehyde 2,1-aminomutaseATGACGGACACCGCAGGCTTCGGCCAGGTCGAGACGGCGCTGGTGGGCGCCACGCCCCCCGCCGACAACCACACCGCGTTCCTGCGCGCGCAGGACGCGATCCCCGGCGGGGTGAACTCGCCGGTGCGCGCCTACGGCTCGGTCGGCGGGGACCCGCGGTTCCTCGCCTCCGCGCGCGGCCCGTACGTCACCGACGTGGCCGGGCGCGAGTACGTCGACCTCGTGGGGTCCTGGGGTCCTGCGCTGCTCGGCCACGCCCACCCCGAGGTGGTCGCCGCCGTGCAGGAGGCGGCCTCGCGGGGCCTGTCGTTCGGGGCGCCCACGGTGGGCGAGGTCGAGCTGGCCGAGGAGATCCGACGGCGCGTCCCGGCCGCCGAGCACATCCGGCTCGTCTCGACGGGCACCGAGGCGACGATGACGGCGGTGCGTCTCGCCCGCGGCGTCACCGGCCGTCCGCTGGTCGTGAAGTTCGCGGGCTGCTACCACGGGCACGTCGACTCGCTGCTCGCCGAGGCCGGCTCCGGCGTCGCGACGCTGTCCATGCCGGGGTCGGCCGGCGTCACCGAGGCCTCCGCGGCCGAGACGCTCGTCCTGCCGTACAACGACCTGGCGGCCGTCGAGGCGGCGTTCGCCGCGCACGGTGACCGCATCGCCGCGGTCATCACCGAGGCGGCCCCGGCCAACATGGGCGTGGTGCCGCCGGCGCCGGGCTTCAACGCGGGCCTGCGCCGGCTGGCGTCGCAGCACGGGGCGCTGCTGATCCTCGACGAGGTGCTCACCGGCTTCCGGGTCTCCGACGCCGGTTACTGGGGGCTGGCCCGGGAGCAGGGCGAGGACTGGACCCCCGACCTGTTCACCTTCGGCAAGGTCGTGGGCGGCGGGATGCCCGTGGCCGCACTGGCCGGTCCGGCGGCGGTCATGGACCGCCTCGCCCCGACGGGGCCCGTCTACCAGGCGGGGACCCTGTCCGGGAACCCGGTCGCCGTGGCGGCCGGCCTGGCGACGCTGCGGCTGGCCGACGAGCTCGTCTACGACCGGGTGGCCCAGGTGGCGGACACGGTGTCCGGCGCGCTCGGCGAGGCCCTGGACGCCGAGGGCGTGCCGCACCGCGTGCAACGCGTCGGCTCGCTGTTCTCGGTCTTCTTCGGCGAGGCGGCGGCGCGCGACGGCGTGGCGTCGTTCGCGGACGCCCAGGCCCAGGACGTGTTCCGGCACAAGCCGTTCTTCCACGCCATGCTCGACGCGGGCGTGAACCTGCCGCCGTCGCTGTTCGAGGCCTGGTTCTGCTCGGCCGCGCACGACGAGGACGCCGTCGGTCGCGTCCTCGAGGCGCTGCCCTCCGCGGCGCAGGCCGCGGCGGCCGCGACGGCCTGAMTDTAGFGQVETALVGATPPADNHTAFLRAQDAIPGGVNSPVRAYGSVGGDPRFLASARGPYVTDVAGREYVDLVGSWGPALLGHAHPEVVAAVQEAASRGLSFGAPTVGEVELAEEIRRRVPAAEHIRLVSTGTEATMTAVRLARGVTGRPLVVKFAGCYHGHVDSLLAEAGSGVATLSMPGSAGVTEASAAETLVLPYNDLAAVEAAFAAHGDRIAAVITEAAPANMGVVPPAPGFNAGLRRLASQHGALLILDEVLTGFRVSDAGYWGLAREQGEDWTPDLFTFGKVVGGGMPVAALAGPAAVMDRLAPTGPVYQAGTLSGNPVAVAAGLATLRLADELVYDRVAQVADTVSGALGEALDAEGVPHRVQRVGSLFSVFFGEAAARDGVASFADAQAQDVFRHKPFFHAMLDAGVNLPPSLFEAWFCSAAHDEDAVGRVLEALPSAAQAAAAATAPGPT0003680_659DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003680-hemL-K01845NANA
AK018_026181014hemB_2COG0113Delta-aminolevulinic acid dehydrataseATGAGCACGTCCGGCATCGTCTACCGGCCCCGCCGTCTGCGGACCACCCCGCGCATGCGGCGGCTGGCCGCCGAGACCCGCCTGCACGCGGCGGACCTCGTGCTGCCGCTGTTCGTCAAGGAGGGTCTGACCGAGCCGGCACCGATCGCCTCGATGCCCGGCCAGGTGCAGCACACCGAGGCCACGCTGGCCGACGCCGTCACCGCGGCGGCCCGGGCCGGCGTCGGCGGCGTGATGCTGTTCGGCATCCCGGCGGTGCGCGACGCCCGCGGCACCGCCGGGGACGCGCCGGACGGGATCCTGCAGCGCGGCATCCGCATCGCGCGCGAGGCCGTCGCCGCCGCCGAGGCGGAGACCGGGCGTCCGGGGCCCGTCGTCATGGCGGACACCTGCCTGGACGAGTTCACCGACCACGGGCACTGCGGCGTGCTGACCCGCGACGGCACGGTGGACAACGACGCCACGCTCGAGCGGTACGCCACGACGGCCGTCGCCCAGGCGAAGGCCGGGGCCGAGGTCGTCTCGCCCTCGGGCATGATGGACGGCCAGGTCGCGGTGATCCGCGACGCGCTGGACGACGCCGGGTTCGAGGACGTCTCGATCCTCGCCTACAGCGCCAAGTACGCCAGCGCGTTCTACGGTCCGTTCCGCGAGGCCGTCGACTCCGCCCTGCAGGGCGACCGCCGGACCTACCAGATGGACGCCGCCAACGCCCGCGAGGGCCTGCGCGAGGCCGACCTGGACATCGCCGAGGGCGCCGACATGGTGATGGTCAAGCCCGCCGGGACGTCGCTCGACGTGCTGCGCGGCGTGGCGGACCGGGCCGAGGTCCCGGTCGCCGCCTACCAGGTCTCCGGCGAGTACGCGATGATCGAGGCGGCGGCCGCGAACGGCTGGATCGACCGCCGGGGCGCGGTCCTGGAGTCGGTGCTGGCGATCAAGCGGGCCGGTGCGGACGTGATCCTCACCTACTGGGCGCTCGAGATCGCCGACTGGCTCGCCGGAGCCTCCTGAMSTSGIVYRPRRLRTTPRMRRLAAETRLHAADLVLPLFVKEGLTEPAPIASMPGQVQHTEATLADAVTAAARAGVGGVMLFGIPAVRDARGTAGDAPDGILQRGIRIAREAVAAAEAETGRPGPVVMADTCLDEFTDHGHCGVLTRDGTVDNDATLERYATTAVAQAKAGAEVVSPSGMMDGQVAVIRDALDDAGFEDVSILAYSAKYASAFYGPFREAVDSALQGDRRTYQMDAANAREGLREADLDIAEGADMVMVKPAGTSLDVLRGVADRAEVPVAAYQVSGEYAMIEAAAANGWIDRRGAVLESVLAIKRAGADVILTYWALEIADWLAGASPGPT0003655_1775DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698NANA
AK018_02619906hypothetical proteinGTGACCGCACCGGGCGCGGGACCCGACCTGACGGGACGGTCCGTGCTGCTGCCCCGCTCCCCCGGCCGCGCGGCCGGGCTGGCGCGGCGGCTGCGCGACGCCGGGGCGGACGTCACCGTCGCCCCCGTGATCGAGCGTGCCCCGGCCCTCGACCAGCACGCGCTGCGCGACGCCGTGGACCGCCTGCGCGACGGCCGCTACGCGTGGACGGTGATCACCAGCGTCAACGCCGTCGACGCCCTGGCCGGCGCGCTCCCGGGGGCCGACGGCGGCACCCCGGCCGGGCGGACCGCGCTCGCCGCCGCACCCACCCGGTGGGCCGCCGTCGGACCCGCCACCGTGCGCGCCCTGCGGTCCACCGGCATCGAGCCGGACCTGGTGCCCACCGACGCCTCCGCCGCGGGTCTGGTCGCCGCGTTCCCCGGTCCGTCCGAGGACGCGGAGGGCGCCACGCGCGACTGGACGGTCGGTGGCGCGGCGCGTGCGGCGTCGTCCGTCCCGAAGTGGAGGTCGCGCAGCGACCGTGAACGCGACGCCGCACGCGCCGCGCCACCGACCTCGCACCATGTCCTCCTGCCGCTCGGCGACCGCGCCCGCCCCACGCTGCGCGACGGGCTGGCCCGGCTCGGTTGGACGCCCGAGGTCGTCACCGCCTACCGCACGGTGCGCTCGGAGCTGCCCGCCGACGTCGTCGGCCGCGCCTTCGACCTCGTGGTCGTCACCTCCGGGTCCGTGGCCCGCGAGGTCGCCGACCAGCTCGGCACCGCCGCCCCCGTCGTCGCGATCGGCCGCCCCTCGGCCGAGGCCGCCGGCGAGGTCGGGCTGACCGTCGCGGGCGTCGCGTCCGCACCGACCGACGACGGCCTCGCCGCCGCCGTCACGACCGCCCTGGAGCAGAACCCATGAMTAPGAGPDLTGRSVLLPRSPGRAAGLARRLRDAGADVTVAPVIERAPALDQHALRDAVDRLRDGRYAWTVITSVNAVDALAGALPGADGGTPAGRTALAAAPTRWAAVGPATVRALRSTGIEPDLVPTDASAAGLVAAFPGPSEDAEGATRDWTVGGAARAASSVPKWRSRSDRERDAARAAPPTSHHVLLPLGDRARPTLRDGLARLGWTPEVVTAYRTVRSELPADVVGRAFDLVVVTSGSVAREVADQLGTAAPVVAIGRPSAEAAGEVGLTVAGVASAPTDDGLAAAVTTALEQNPPGPT0003665_983DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003665-hemD-K01719NANA
AK018_026201041hemC_2COG0181Porphobilinogen deaminaseGTGAGCCCCCTCGACGTCGAACACCTGCGCCTCGGCACCCGGGCCAGCCGGCTGGCCACCACCCAGTCCGGGTTCGTGGCCCGCCGCCTGACCGAGCTGCTCGAGCACCCGGTGGAGCTCGTGCACGTCCGCACCCAGGGCGACGCGGACCGCACCACCTCGCTGTCCCAGCTCGGCGGCACGGGCGTCTTCGTCGCCGCCCTGCGCGAGGCCCTGCTGGAGTCCCGGTGCGACGTCGCCGTGCACTCGCTGAAGGATCTGCCGACCACCCAGCCCCCCGAGCTGGCGTTCGTCACCCCCGAGCGCGAGGACCCCCGCGACGCCCTGTGCGCCCGCGACGGGCTCACGGTGGAGACCCTGCCCCGCGGCGGCCGCGTCGGCACCGGCTCGCCCCGGCGCGCCGCCCAGCTCCAGGCCGCCCGTCCGGACCTGGAGATCGTGGACATCCGCGGCAACGTCGAGACACGGCTGGCCCGCGCGCTCGGCGAGGACGCCGACCTCGACGCGGTCGTGCTCGCCTTCGCCGGCCTGAGCCGTCTGGGCCGCACCGAGGTCGTCAGCGAGGTGCTCGACCCCGCCGTCGTGGCCCCGGCCCCCGGCCAGGGCGCCCTCGCGGTCGAGGCCCGCAGCGCCGACCTGGCCGACGGCGGCCCGCTCGCCGAGGCGTTCGCCGCCCTGGACCACCGGCCCACCCGGCTCGCGGTCACCGCCGAGCGCGCGGTCCTCGCCCGCCTCGAGGCCGGGTGCGCCGCCCCGATCGGCGCCTACGCCCGGCTGGAGGACGGCGAGCTCGTGATGTCGGCGGCCGTCGGCCGGGTCGACGGCGCCGAGCAGCTCACGCACACCGCGCGCGTCGCCGTCGGGCCGGACCTGGCCGACGTCGCGGCGGACACCGAGGCCCGCGAGCTCGGCGTGCGCGTCGCCGAGCGGCTGCTGGCCGACGGGGCCGCCCGGCTGGCTCCCCTGACGGCCGCGGCACCGCCGGCCCCGCGCGAGCCGCAGCGGGGACCGACGGGGACGGACGACCCGGAGGTCCCGTGAMSPLDVEHLRLGTRASRLATTQSGFVARRLTELLEHPVELVHVRTQGDADRTTSLSQLGGTGVFVAALREALLESRCDVAVHSLKDLPTTQPPELAFVTPEREDPRDALCARDGLTVETLPRGGRVGTGSPRRAAQLQAARPDLEIVDIRGNVETRLARALGEDADLDAVVLAFAGLSRLGRTEVVSEVLDPAVVAPAPGQGALAVEARSADLADGGPLAEAFAALDHRPTRLAVTAERAVLARLEAGCAAPIGAYARLEDGELVMSAAVGRVDGAEQLTHTARVAVGPDLADVAADTEARELGVRVAERLLADGAARLAPLTAAAPPAPREPQRGPTGTDDPEVPPGPT0003660_857DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003660-hemC-K01749NANA
AK018_02621780hypothetical proteinGTGGGCGCCACCTGCCGCGATGCTCTGCACCACGCATGCGGCCACGACGACGCGCTGCGGCAGACGGACGACCTGGATATCGCACTGGCTGTCGAGGACTGGGACAGGTACCGCGCACTGACAGACCGTCTCGAACGCGTCTCAGGCTCGACGAACGGGATCAGGTTCCTCGTGGGAGGCATCCCGGTCGACCTCATGCCCTTCGGTGAGACGATCGAAGAGCCAGATGGTGAGGTCACCCCGCCGCCACGCCAGGACGTCATGAGCGTCTTCGGCTTCCAGGACGTCTGGAACGACGCGCAGGTGATCGATGTCAACGGCGCTGGACCAGTGCGGCTCCCCACGGTCGCCGGATACACCGTGCTCAAGCTCAGGGCCTGGCTCGACCGGGTCCAACAGCCGAACTACAAGGACGCCCCCGACCTTGCCTGTGCCATGTACTGGTGCGTGGACCCGATGAACCGGGGAACGTTCGGGCACGTCGTCCGCGATCGGCTGTACGACACCGATGCTGGTCGGGCCCATCTCACCGCGACCGACTTCGACGAAGCGTCCGCTGCCGTACGTCAGCTCGCGACCGACGCCATCGACCTCTTGAGTCCCGACCGCCGAGCAGTGCTCCGACGGGACTGGACTGCCGGCTCGGAGGACGCGCTCCTCGCGGGCAACCTCCGGCTCCCGCTACCTGGGTGGCCGCGACCCCGTGACGAGCGGCTCGGTCGATACGCTGCTGCTGTGCGTTCCGCGCTCGCCGTCGAATCGGCGACTGGTCCTGTGTGAMGATCRDALHHACGHDDALRQTDDLDIALAVEDWDRYRALTDRLERVSGSTNGIRFLVGGIPVDLMPFGETIEEPDGEVTPPPRQDVMSVFGFQDVWNDAQVIDVNGAGPVRLPTVAGYTVLKLRAWLDRVQQPNYKDAPDLACAMYWCVDPMNRGTFGHVVRDRLYDTDAGRAHLTATDFDEASAAVRQLATDAIDLLSPDRRAVLRRDWTAGSEDALLAGNLRLPLPGWPRPRDERLGRYAAAVRSALAVESATGPVNANANANANA
AK018_02622996hypothetical proteinGTGTCAGACGTCGACACACTCGTCAAGCGGATCGCAACGCGATGGCACGACGACGGGGTCGAACTGACCCTCGCGGGCCCGGTGGCCCGCATCGAGGTCGACGGGATGTCGTCCGAGAGACGGTGGTGGTGGTTCGACGCCAAAGACCCGGAGCATCGCCGAGCTCTGCGGGCGGCGGACAGCCTCGAGGACCTCTTGCTCATCGGCGACAAGATCCCCCTCTCCGTCGCTGAGCGCACGCGAGAACGCGGAGGCTGGCACATCGATGCCGCGGGGAACGCCTACGTTCGCGCCCCCGGTGTGCACATCGACGTTCGTGGACGCCGCACGGCGTCACGGACCGAGCGGAAGACCAGACTGTCGACGGCACAGGAGACGAACCTCATGAGCGCAGGACGCGCCCAGGTCATCTTCTGCCTGCTCAGCTGGCCAGACCTGGTGAGCATGCCGATCCGCGCCATCGCCGACGTCGCCGGCGTATCGCCCGGCACCGCGCACACCACCATCAAGGCACTCACGGAGGAGGACTACCTCTTTCTCGGCGCCTCCGTCATCGCCCGCCGAGAAGAGCTGCTCGATCGATGGGCGACAGCATTCCCCCTCGGACTCGGAAGATCACTCGAGCTCGGCAGATTCTGCGGGAAGCCCGATCTCAGCGCATGGGAGGCGACGGGGAGCAGCGTCCGTGTGAGCGGCGAGTACGCCGCGGACAACATCCGCGGAACTGACCTCACCCTGTACGCCAAGGAACTGGAACCCGCACTGATCGCGCGCTCACGTTGGCGCAGGCCCGAACCGGGTGAGTCAGCCAACATCATCGTGCGCCGCAAGTTCTGGACCGAGCCGACGTCACCACTCGGCGGGAACACCGGGGCACCCTCGATCCGGAGAGCACCCGCGCTTCTCGTCTACGCCGACCTGCTCGCCTCTCGAGAGCCGAGACAACAAGAGACTGCACGAGCGATGCGGGGAGACCTGGTTGACCAGGGCGGCTGAMSDVDTLVKRIATRWHDDGVELTLAGPVARIEVDGMSSERRWWWFDAKDPEHRRALRAADSLEDLLLIGDKIPLSVAERTRERGGWHIDAAGNAYVRAPGVHIDVRGRRTASRTERKTRLSTAQETNLMSAGRAQVIFCLLSWPDLVSMPIRAIADVAGVSPGTAHTTIKALTEEDYLFLGASVIARREELLDRWATAFPLGLGRSLELGRFCGKPDLSAWEATGSSVRVSGEYAADNIRGTDLTLYAKELEPALIARSRWRRPEPGESANIIVRRKFWTEPTSPLGGNTGAPSIRRAPALLVYADLLASREPRQQETARAMRGDLVDQGGNANANANANA
AK018_02623450mgsA_2COG1803Methylglyoxal synthaseATGGACGCCGTCCGGCACGACATCGCCCTGGTGGCGCACGACAACAAGAAGGTCGAGCTGCTGCGCTGGGCGGAGTTCAACCGGGGCACGCTCTCCGGTCACGCTCTGTGGGCGACGGGCACGACCGGCACGATGCTGGAGTTCGAGCTGGGGCTGCCGGTGCACCGGCTGCTCTCGGGCCCGGTCGGGGGAGACCAGCAGATCGGCGCCAAGATCGCCGAGGGCACGATCGACATGCTGATCTTCTTCTGGGACCCGCTCGAGGCGCAGCCCCACGACCCCGACGTCAAGGCGCTGCTGCGCCTCGCCGCCGTGTGGAACGTGCCGATGGCGTGCAACGTCGCCACGGCGGACATGATGATCTCCTCGCCGATGATGCACCAGGACTACACGGCGAACCGCCCGGTGATCGACCAGCGCGGCTGGGTCGGCGGGGAACCGGCCGAGTGAMDAVRHDIALVAHDNKKVELLRWAEFNRGTLSGHALWATGTTGTMLEFELGLPVHRLLSGPVGGDQQIGAKIAEGTIDMLIFFWDPLEAQPHDPDVKALLRLAAVWNVPMACNVATADMMISSPMMHQDYTANRPVIDQRGWVGGEPAEPGPT0001780_667DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001780-mgsA-K01734NANA
AK018_02624750speEPolyamine aminopropyltransferaseATGGCCCTGCGCTTCGAGGAGCTCGACTTCCAGCCGACCCCGATGGGCGAGATCAGCCTGCGCCGTCGGTACGACCCGGCCGCGCGCCAGGACGTCTACGAGGTGCGCCTGGGCGACGAGTACCTGATGTCGAGCCTGTTCACCGCCGCCGAGCGGGCGCTGGCGACCCTGGCGCTCGACGTCCTCGACACCGGTCCCGACACCGGTCCCGACACCGGTCCCGACACAGGTCCCGATACGGGGCTGCGGGTGCTGGTCGGTGGTCTCGGCCTCGGCTACACGGCCCACGCCGCGCTGGCCGACCCGCGCGTCGCGGCCCTCGACGTCGTCGAGTACTCCGCGCCCGTGCTGGACTGGCACCGGCGCGAGCTGCTGCCCGACACCGCCGGCCTCGCCACGGACCCGCGCTGCCGGCTGGTCCAGGACGATTTCTTCCGCCGGATGGGTGCCGCCCCGCAGGACCGCTACGACGCGATCCTGCTGGACATCGACCACACCCCGGACCACGTGCTGCACCCGAGCCACGCCGCGTTCTACACCGCCGACGGGCTGCGGACCGCGGCCGAGCACCTGACGCCGGACGGCGTGTTCGCGCTCTGGTCGGACGACCCGCCCGAGCCGGTCTTCGAGGCGATCCTCGACGAGGTCTTCGCCGAGCGCGCGTCCCACCCGGTGCGGTTCGGCAACCCGATCACGGGCGGGGAGTCCGCCAACACGGTGTACGTGGCCCGCGACCGGGCCGCCCGGTAGMALRFEELDFQPTPMGEISLRRRYDPAARQDVYEVRLGDEYLMSSLFTAAERALATLALDVLDTGPDTGPDTGPDTGPDTGLRVLVGGLGLGYTAHAALADPRVAALDVVEYSAPVLDWHRRELLPDTAGLATDPRCRLVQDDFFRRMGAAPQDRYDAILLDIDHTPDHVLHPSHAAFYTADGLRTAAEHLTPDGVFALWSDDPPEPVFEAILDEVFAERASHPVRFGNPITGGESANTVYVARDRAARNANANANANA
AK018_026251449hemY_2COG1232Protoporphyrinogen oxidaseGTGAGCCAGCAGGTGGACGCCGTCGTCGTCGGCGGCGGGATCGGCGGGCTCGTCGCCGCCAGCACGCTCATCGACCGCGGCCTGCACACCGTCGTGCTCGAGGCGTCCCCGCGCCTCGGCGGCCCGATCCGCGGCGGCTCGTTCGAGTCGCTGCCGCGCGTGCCGATCGACCTCGGCGCCGAGTCGTTCGCCTCGCGCGGCACGGCGGTCGCCGAGCTCGCCGCCCGTCTCGGCCTCGACGTCGTCGCCCCCGCGCCGCTGACCGCCTGGGGCTACGCCGCCGGCCGGCCCTTCCCGCTGCCCGCCGCCGGTGTGCTCGGCATCCCGGCGGTCCCGTGGGCGTCCGACGTCCGCCACGTGATCGGCTGGACCGGCGTGGCCCGGGCGTCCCTGGACCGGGTCCTGCCGCGGTTCGTCGGCGCGGACGCCCACGACCTCGACGCGCTGGTGCGCGCCCGGCTCGGCGCCCGGGCCACCGACCGGTTGGTCGCCCCCGTCGCCACCGGCGTGCACTCCGCGCCGCTGGACCGGCTGGACGTCGCCGCGGTCGCTCCCGGCCTGCGCGACCGGTTCGCCGTCGAGGGCTCGCTGACCCGTGCCGTCGCCGGCCTGCGGGCCGCGGCACCGGCCGGGTCGGCGGTGCGCGGCATCGCGGGCGGGTTGCACGGCATCGTCGAGGCGCTGGCCGGCCAGATCGCCGCGAGCGCCGAGGACTGGACCGACTCGCCCACCACCGACGCCACCGGCCCCATCCACACCACGCTGCGGCTCGGTCACGAGGTCGTGGGGATCGAGCGGGCCGACGACGGCGGCTGGGTCGTGCGCTCGCGGGCCACGGCCGCGCAGGTGCGGGGCGGCCGCGGGTCGGTGCACACCACGACGGCCCCGCGCCTGGTCGTGGCCACGCCCGCCGTGGCACCGATGCTCGAGCCGTGGACCGACGTCGTGCCGCGCCCGGAGCAGGGGGCGGACGTGTGGCTCGCGACGCTGCTGCTGGACGCCCCCGAGCTGGACGCCGCCCCTCGCGGGTCCGGCATGCTCGTGGCGCCGGACGCCGGCCCGGTCCGCGCCAAGGCGATGACCCACGCGACGGCGAAGTGGCCGTGGCTCGCCGACCGGGTCCGCGCCACCGCCGGAGAGGGGATGCACGTGGTGCGGCTGTCGTACGGACGGCTGGGCGAGCCCACCGTGCCCCCGACGGCCGAGGAGGCCGCGCGGGACGCCGCCGAGCTGTTCGGCACGCCGGTGGCGGACCGGGTGGTCGACCACCTGCTGCAGCGCTGGGACGGTGCGCTGCCCCCGCCGACCCCCGCCTACCGGACGACCGTGGCCGACCTGGCGGCCGCCGTCGGCCGCACGCCGGGACTGGCCACCACCGGCGGGTGGGTCGCCGGGACCGGGCTCGCCTCGATCGTCGCGCACGCCCAGGCGGCGGTCGCGGGACTCTGAMSQQVDAVVVGGGIGGLVAASTLIDRGLHTVVLEASPRLGGPIRGGSFESLPRVPIDLGAESFASRGTAVAELAARLGLDVVAPAPLTAWGYAAGRPFPLPAAGVLGIPAVPWASDVRHVIGWTGVARASLDRVLPRFVGADAHDLDALVRARLGARATDRLVAPVATGVHSAPLDRLDVAAVAPGLRDRFAVEGSLTRAVAGLRAAAPAGSAVRGIAGGLHGIVEALAGQIAASAEDWTDSPTTDATGPIHTTLRLGHEVVGIERADDGGWVVRSRATAAQVRGGRGSVHTTTAPRLVVATPAVAPMLEPWTDVVPRPEQGADVWLATLLLDAPELDAAPRGSGMLVAPDAGPVRAKAMTHATAKWPWLADRVRATAGEGMHVVRLSYGRLGEPTVPPTAEEAARDAAELFGTPVADRVVDHLLQRWDGALPPPTPAYRTTVADLAAAVGRTPGLATTGGWVAGTGLASIVAHAQAAVAGLPGPT0008475_747DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008475-hemY-K00231NANA
AK018_026261005hemE_2COG0407Uroporphyrinogen decarboxylaseATGCGGCAGGCCGGCCGCTCGCTGCCCGAGTACCGCGAGGTGCGCGAGGGCATCGGGATGCTCGAGTCGTGCCTGCGGCCCGACCTGGCCGCCGAGATCACGCTGCAGCCGGTGCGTCGCCACGGCGTGGACGCGGCGATCTTCTTCAGCGACATCGTCGTGCCGCTGAAGCTCGCCGGGGTGGACGTCGAGATCGCCCCCGGCGTCGGCCCGGTCATGGACCGCCCGTACCGCACGGCCGCCGACATCGACGAGCTCGTCTCCCGCGACCTCGACGAGGCCGCGCTGGCCCCGATCACCGAGGCCGTGCACCGCACGGTCTCCGAGCTGTCCGACGGCGCCGCATCCACCCCGCTCATCGGGTTCGGGGGCGCGCCCTTCACGCTCGCCGCCTACCTGGTCGAGGGGCGCCCGTCGCGGGACCACCTGGCCGCACGCACCCTCATGCACGCCGACCCGGAGACCTGGCAGCGCCTGACGACCTGGACCGCCGACCTCACCGGCCGGTTCCTGCGGGCCCAGGTCCTCGCCGGCGCCAGCGCCGTGCAGCTCTTCGACTCCTGGGCCGGGTCGCTGTCGCTGGCCGACTACGTCACCCACGTCGCGCCGTCGTCCACGCGGGCCCTGCGTCACGTCGCCGACCTGCGCACGCCGGACGACGCCGGCGTGCCCGGCATCCACTTCGGCACCGCGACCGGCCACCTGCTGCCCGCCCTGCGCGACGTCCTCGTCGACGCCGGGGTGACCCACCGCACCGTCGGCGTCGACTACCGCACGCCGCTGGACGAGGCCGCCGGCCGCCTCGGCGACGACGTGCCGCTGCAGGGCAACATCGACCCGGCGCTGCTCGGCGCCCCGTGGCCCGCGCTGGAGGCGCACGTGCGCGACGTCGTCGAGCGGGGTCGCACCGCCCCCGCGCACGTGGTCAACCTCGGACACGGCGTCCCGCCGACCACCGACCCGACGGTGCTCACCCGCGTCGTCGAGCTCGTGCACTCGCTGTGAMRQAGRSLPEYREVREGIGMLESCLRPDLAAEITLQPVRRHGVDAAIFFSDIVVPLKLAGVDVEIAPGVGPVMDRPYRTAADIDELVSRDLDEAALAPITEAVHRTVSELSDGAASTPLIGFGGAPFTLAAYLVEGRPSRDHLAARTLMHADPETWQRLTTWTADLTGRFLRAQVLAGASAVQLFDSWAGSLSLADYVTHVAPSSTRALRHVADLRTPDDAGVPGIHFGTATGHLLPALRDVLVDAGVTHRTVGVDYRTPLDEAAGRLGDDVPLQGNIDPALLGAPWPALEAHVRDVVERGRTAPAHVVNLGHGVPPTTDPTVLTRVVELVHSLPGPT0008465_513DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008465-hemE-K01599NANA
AK018_026271398hemA_2Glutamyl-tRNA reductaseGTGGTACTCCTCTCCCTCACCGCCTCCCACCGCGAGCTGGACCTGGACGCGCTCGAGCGCCTGTCGTCCGGCTCGCACTCCGTGGGCCGTGAGGTCGTGGGCACGTGCCGGCCGGTCCAGGGCGCCGTGGTGATCTCCACGTGCAACCGCTTCGAGCTGTACCTCGACGTCGACGCGCCCCTGGACGGCGACGCCGTCCGGCACGCTACCCGGCACGTGGCCGACCTCGTCGCCGCCTCCTCGGGCGTCACGACCGCGACCGCCGCGGACTCCTTCACCGTGCGCACCGGCTCCGAGGTCGCCCAGCACTTGTTCGGCGTCGCCGCCGGGCTGGACTCGATGGTCGTCGGGGAGCGGGAGATCGCCGGGCAGGTGAAGCGCTCCCTGGTCACGGCGCGCGAGGACGGCACCACCTCCAAGACCCTCGAGCTGCTGTTCCAGACGGCGTCGCGCACCTCCAAGCAGGTGGGGCACCACACCACGCTCGGCGGGGTCGGGCGCTCGCTGGTCGCGCTCGGTCTCGACCTCGCGGGGGAGACCCTGCCGCCCTATCCGGCCGCCCGGGCCGTCATCATCGGCACGGGCGCCTACGCCGGCGCCTCCGTCGCGGCATTGCGGGCCCGCGGCTGCACCGACGTGCGCGTCTACTCCCGCTCGGGCCGGGCCGCCGACTTCGCCGCGTCGCACGACGTCCAGGCCGTCGGCACCGGGCTCGAGGAGCTCGTCGAGGCGCTCGAGGACGCCGACGTCGTCGTGTCGTGCTCGGGTGCACGGGGGCGTGCCCCGGGCGCTCCGGGTGCCGCCGGGGCGGAGGCCTCGCTGGCCTACGTCCTGGACGCGGCGGCCGTGGCCCGCGCCCGGGAGCGCGCCGCCGCCCGGGCCGAGGACGCGCCGGAGCCGCCGGCGCTGGTCATCCTGGACCTCGCCCTGCACCGGGACGTCGACCCCCGGGTCGCCGACGTCGAGGGCGTGCTGCTGTACGACCTGTCGACCCTCAAGGCGCACGCTCCGGCCACGGACCACGCCGAGCTGGAGCGGGCCCACGGCCTGGTGGACGACGCCGCCGTCCGGTTCGAGGAGACGCGGCTGGGCCGCGCGGCCGACGCCGCCGTCGTGGAGCTCTTCGACGACGCCGAGCAGCAGGTCGACCGCGAGGTCGCCCACGAGACCGCCCGTCTGGTGGACGAGCTGGCGCCCCGGGGCCAGCGGCCGACCGAGGCCGACGTCGAGCGCATCGCGCGGTCGGTGCGCCGTCGGGTGCACACCGCGCTGCACGACCGGATCGTGGCCGTGCGGGCCGCCGCGCTGGCCGAGGCGCGGGCCGCGGAGGCGGCGGTCGTCGAGGGCGCGGAGCAGACGCTCCGGACGTCTCGGGCAACACCGGCCTCACGCGCATAGMVLLSLTASHRELDLDALERLSSGSHSVGREVVGTCRPVQGAVVISTCNRFELYLDVDAPLDGDAVRHATRHVADLVAASSGVTTATAADSFTVRTGSEVAQHLFGVAAGLDSMVVGEREIAGQVKRSLVTAREDGTTSKTLELLFQTASRTSKQVGHHTTLGGVGRSLVALGLDLAGETLPPYPAARAVIIGTGAYAGASVAALRARGCTDVRVYSRSGRAADFAASHDVQAVGTGLEELVEALEDADVVVSCSGARGRAPGAPGAAGAEASLAYVLDAAAVARARERAAARAEDAPEPPALVILDLALHRDVDPRVADVEGVLLYDLSTLKAHAPATDHAELERAHGLVDDAAVRFEETRLGRAADAAVVELFDDAEQQVDREVAHETARLVDELAPRGQRPTEADVERIARSVRRRVHTALHDRIVAVRAAALAEARAAEAAVVEGAEQTLRTSRATPASRAPGPT0003650_621DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003650-hemA-K02492NANA
AK018_02628381hypothetical proteinATGGACAGCTTCTGGGACTACATCTGGTTCCTGCTCTGGATCTTCCTGTTCATGGCGTATCTCATCGTCCTGTTCCAGATCTTGACCGACCTCTTCCGGGACCACACCCTCAGCGGGTGGTGGAAGGCGGTCTGGGTCGTCTTCCTCATCTTCATCCCTCTGGTGACCGCGCTGGTCTACCTCATCGCGCGCGGTCGCGGCATGGCCGAGCGCAACCTCGCGGCCGTGAAGGAGTCCAAGGCGGCGACCGACGACTACATCCGCTCGGTGGCCACCCAGCCGGCGCCGGCGGACCAGATCGCCTCGGCCAAGAAGCTGCTCGACGAGGGCACCATCACGCCCCAGGAGTTCGAGTCGATCAAGGCCAAGGCCCTCTCCTGAMDSFWDYIWFLLWIFLFMAYLIVLFQILTDLFRDHTLSGWWKAVWVVFLIFIPLVTALVYLIARGRGMAERNLAAVKESKAATDDYIRSVATQPAPADQIASAKKLLDEGTITPQEFESIKAKALSNANANANANA
AK018_02629927ppx1_2COG0248Exopolyphosphatase 1ATGCGTCTCGGCGTCATCGACATCGGCTCCAACACCGTCCACCTGCTGGTGATGGACGCACGCCACGGCGCGCGGCCCGTCCCGCAGGCGAGCCACAAGACCACCGTGCGGCTCATGCGCTACCTGCAGCCGGACGGGTGCCTCTCTCCCGACGGCGTCGCGGCGCTGCAGGAGGCGGTCGGCGAGGCCGCCGCCGTCGGCCGCGAGCACGGGATCGAGGGCACGATGGCCCTGGCCACGTCGGCGCTGCGGGAGGCCACCAACGGCCCGGAGCTCATCGAGGACCTCTCCGAGCGCATCGGCGTGCCGATCGAGGTCCTGGAGGGTGACGAGGAGGCGCGCCTGACGTTCCTCGCGGCGCGCCGCTGGTACGGCTGGGGCGCGGGCCGGCTGCTCCTGCTGGACATCGGCGGCGGGTCGCTGGAGATCGCGACCGGCGTGGACGAGTCCCCGGACGTCGCGCTGTCGGTCCCGCTCGGGGCGGGGCGGATGACGCGCGAGTTCCTGGACGAGGACGACCCGCCCGCCCTCAAGGACGTCGAGAAGCTGCGCAAGCACGCCCGCAAGGTGCTGCGCGACGCCGTCGGCCCGATCCTCGAGGCACCGGCGCCGGACCACGCGGTGGCGACGTCGAAGACGTTCCGGTCACTGGCCCGCCTCGCGGGGATGCCCCGCCAGGTGATGGGCACGGGGGAGCGGTGGCGGATGCGCCAGGAGCACCTGGCCGACTGGGAGCCGCGGCTGGCCCGGCTCTCCTCGTCCGACCGCACGGTGCTGCCGGGCATCGGGCCGGGCCGGGCGAAGCAGGTCGTGGCGGGGGCGGTCGTCGCCGAGGAGGCGATGCGGGCCCTGGGCGTCGACGAGGTGGAGATCTGCCCGTGGGCCCTGCGCGAGGGCGCGATCCTGCAGCGCCTCGACCACCTCTGAMRLGVIDIGSNTVHLLVMDARHGARPVPQASHKTTVRLMRYLQPDGCLSPDGVAALQEAVGEAAAVGREHGIEGTMALATSALREATNGPELIEDLSERIGVPIEVLEGDEEARLTFLAARRWYGWGAGRLLLLDIGGGSLEIATGVDESPDVALSVPLGAGRMTREFLDEDDPPALKDVEKLRKHARKVLRDAVGPILEAPAPDHAVATSKTFRSLARLAGMPRQVMGTGERWRMRQEHLADWEPRLARLSSSDRTVLPGIGPGRAKQVVAGAVVAEEAMRALGVDEVEICPWALREGAILQRLDHLPGPT0002595_5442DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
AK018_026301245frc_2Formyl-CoA:oxalate CoA-transferaseATGAGCTGGCTCGCCGCGACCCTGCCGGTCCTCGACCTCGCCACCCACGCTCTCGAGGCGGTGCGCACCGCGGCCCGGCGGGCCGGGGCGACGGGTGCGGTGGTCGACGAGCCCCTCGACCCCGCCCGGGTCGCCGCGTCGTTCGCCTCCGACCGGCTGCTGCGGATCGACGGCGCGCCGGTCGCCGGCTTCGCCCCGCACTCCGGGTTCTTCCCGACCGCCGACGGCTGGGTGCGCACGCACGCCAACTACCCCCACCACCGCACCCGGCTGCTGCGGGTCCTCGACCTGCCCGACGACGCGACGCGGGACGACCTGGCCGCCCGGCTCGCGACGTCGTCCGCCCAGCAGGTCGAGGACGACGCCGCGGCCGCCGGGGCGGTGGCCGTGCGGGTCCGGGGCGAGGACGAGTGGCGGGACTCCGCTCCCGGCCGGGCAGCCGCCGTCGGCCCCCTCGTCCGGATCGATCCCCGTGCTGCCGCCCCCGACGGGCACGGCGCCTCCCCGGGGGCCGGCCCGGCACCGCTGCGCGGGCTGCGCGTGCTGGACCTGACCCGGGTCATCGCCGGGCCGGTCGGCACCCGCACGCTCGCCCTGCTGGGCGCGGACGTGCTGCGCGTCGACCCGCCCGCACCGGCGGAGATCCCCGCCCAGCACCTCGACACCGGCCAGGGCAAGCGCACGACGCTCCTCGACCTGCGGGACCGCCCCGACCGCGAGCGCACGCAGGAGCTGCTCGAGGCGGCCGACGTGCTGGTCTCCGGGTACCGGCCCGGTGCCGTGGAAGCCCTCGGTCTGCGCGTCCCCGCGTCCGCCGTCCACGCCCGGGTCTCCGCGTGGGGCACCGCGGGGCCGTGGGGCACGCGGCGCGGGTTCGACTCGATCGTGCAGGCGGCCTCCGGGATCGCGCTGGTCGAGTCGCCCGACGGCGTCACCCCCGGCGCCCTGCCGGCCCAGGCCCTCGACCACGCCACCGGCTACCTGCTGGCCACCGGGGTCCTGTCGGCGCTCACCGACCGGGCCGCCGACGGGGTCGGACGCGACGTGTCGGTCTCCCTGGCCCGCACGGCGACGTGGTTGCTGGACGCCCCCGGTCGCGACGCGCGGCACGCGGCGCCCGCGGTCCCGCCGTCGTCGACGACCGTGACCCACCGCGGCGTGACCACGGCACGCCCGGCGCTGCCCGTGCAGGACTACCCGGCCCCGGCGCACCCCTGGGGCACCGACCCCCCGCTGTGGGCATGAMSWLAATLPVLDLATHALEAVRTAARRAGATGAVVDEPLDPARVAASFASDRLLRIDGAPVAGFAPHSGFFPTADGWVRTHANYPHHRTRLLRVLDLPDDATRDDLAARLATSSAQQVEDDAAAAGAVAVRVRGEDEWRDSAPGRAAAVGPLVRIDPRAAAPDGHGASPGAGPAPLRGLRVLDLTRVIAGPVGTRTLALLGADVLRVDPPAPAEIPAQHLDTGQGKRTTLLDLRDRPDRERTQELLEAADVLVSGYRPGAVEALGLRVPASAVHARVSAWGTAGPWGTRRGFDSIVQAASGIALVESPDGVTPGALPAQALDHATGYLLATGVLSALTDRAADGVGRDVSVSLARTATWLLDAPGRDARHAAPAVPPSSTTVTHRGVTTARPALPVQDYPAPAHPWGTDPPLWANANANANANA
AK018_026311815QRSL1_3Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrialATGCGTGTCGTGGCGACGGGCGCCGCCGCGACCCTGGCCGGGACGGCCGCCGTGGCCGTCGTCGCCGGACCTGCCGCCGCCGCCGACGAGCCCGGTGCCGCGTTCCTGGCCCCGTACTACAGCGAGCTCGACCTGACCGGTGACGAGCAGGTCACCACCGACGACCTCGACGTGCTGACCGAGGCGCTCGGCACCACCGCGGGGTCGAAGGGCTGGGACGCCGTGGCCGTCGCCGACACCGACGGGGACGGCGAGATCACCGTCACCGACCTGGCCGACCTCGCCCAGCGCATGGTCTACGACGACGGCCCGTTCGACCTCGTCGAGGCCTCCGTCGTGGACATGCAGGCGGCCATGAACGCCGGCGTCACCACCTCGGTGGAGATCACGCAGGCCTACCTCGACCGCATCGAGGCCTACGACCGCACGCTGGTGGACCCGGCCGAGGACGGACGTCCGCTCGCCTCGATCATCTCCACCAGCGACGTCGCCCTCGGGGTGGCCGCGGAGGCCGACGCCGAGCGCGCCGCGTCCGGCATGACGAGCATGCTGCTCGGCGTGCCGGTCGCCGTGAAGGACAACTACAACACCGTCGACATGCCGACCACGGCCGGCTGCGGCTGCTGGGACGACAACGTCACCACCGACGACGCGACGATGGTCACCGGCCTGCGCGACGCCGGGGCGGTCCTCCTGGCCAAGGCCAGCCTCGACGAGTTCGCCTACGGGTTCTCCTCCCAGTTCTCCTCGTACCAGCCGGCCGGCGAGACCACCTACGTCGCCAGCCCGTACGACACCTCCCGCACCGCCGGCGGCTCGAGCGGCGGCACGGGCGCGGCGATCGCGGCGAACCTCGCCGGGATCGGCTTCGGGACCGACACCGGCGGCTCGATCCGCGTGCCGTCCTCGTACAACCAGCTCGTGGGCGTCCGCCCGACCGTCGGGCTGGCGAGCCGCGACGGGATCGTGCCGCTGGCGCTCAGCCAGGACACGGGCGGCCCCATGACCCGCTCGGTCACCGACGCCGCCGTGGCGCTGGACGCCGTCGTGGGCGTGGACGAGAACGACCCGGTCACCGCACGGCAGGACGGGCTGGTCCCCGACTCGTTCACCGCGTACCTCGACGCCGACGCCCTGGACGGTGCCCGCATCGGGTACGTGCCCTCCATGCTCGGCAGCAACGCGACGACGAACCGGCTCTGGGCCGAGGCCGTCGAGACCTTCGAGTCCCTCGGGGCCGAGGTCGTCGAGGTCGCGGAGCCGGACGCCTTCGCCACGGTGCTCGCCGAGGGATCGGGCAGCACGCCCGAGTTCCGGCACGACCTCGCCGAGTACGTCGAGGCGTACCTCGCTCCGGAGGTCGAGGCCCGCACGCTGCCCGAGATCATCGACTCCGGGCGCTTCGTGACCAGCCGTCAGTGGACGTACGAGCGGCGCGCCGCGGTCACCGAGGAGGAGTACGAGGCGTGGGCCGGGCCGGAGGGCTCGCACACGCAGGTGCTGGCGATGGGCAAGGAGCTCGTCACCGGCATGCTCGACGAGGCCGAGCTCGACGCGCTCGTCTACCCCTCGGGCAACCCCTACCGCACTCAGGGCCGCAACCTGCGCCTCAGCCCGAACACCGGGATGCCGGCCGTCACCGTCCCGATGGGGCAGGCGATCCCGGAGGACGACACGATCGACGGCGCGGGCGTGAACCTCGAGTTCCTCGGCCGCGACTTCGACGAGGGCACGCTCCTCGGGCTCACGTACGCCTTCGAGCAGGCCACCGGCGCGCGGACCAGCCCCGCCCTGTACGGGGAGCTGGACCAGTGAMRVVATGAAATLAGTAAVAVVAGPAAAADEPGAAFLAPYYSELDLTGDEQVTTDDLDVLTEALGTTAGSKGWDAVAVADTDGDGEITVTDLADLAQRMVYDDGPFDLVEASVVDMQAAMNAGVTTSVEITQAYLDRIEAYDRTLVDPAEDGRPLASIISTSDVALGVAAEADAERAASGMTSMLLGVPVAVKDNYNTVDMPTTAGCGCWDDNVTTDDATMVTGLRDAGAVLLAKASLDEFAYGFSSQFSSYQPAGETTYVASPYDTSRTAGGSSGGTGAAIAANLAGIGFGTDTGGSIRVPSSYNQLVGVRPTVGLASRDGIVPLALSQDTGGPMTRSVTDAAVALDAVVGVDENDPVTARQDGLVPDSFTAYLDADALDGARIGYVPSMLGSNATTNRLWAEAVETFESLGAEVVEVAEPDAFATVLAEGSGSTPEFRHDLAEYVEAYLAPEVEARTLPEIIDSGRFVTSRQWTYERRAAVTEEEYEAWAGPEGSHTQVLAMGKELVTGMLDEAELDALVYPSGNPYRTQGRNLRLSPNTGMPAVTVPMGQAIPEDDTIDGAGVNLEFLGRDFDEGTLLGLTYAFEQATGARTSPALYGELDQPGPT0006115_145DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426NANA
AK018_02632522hypothetical proteinATGCCCACCACCCCTGCGCGGACCCGTCGGACCCGCCTCCTGGCGGGAGCCGGGGTGCTCGGCCTCGCCCTGTGTGCCGGCGGCGCCGCCGTGGCCACCGCGGACGACGCCGACCCGTCGTTCGTCGTCGAGGTCTCCGACCCGGCGCCCTCGCCCGGCGACACGGTCGAGGTGACCGTCACGGCGTCCGACGTCGTGGACCTCTACGCGTACGAGCTGACCCTCGAGTACGACCGTCGCGACCTCACCTACGTCAAGGGGTCGGCCGCGGCACCGGCCGGGGGATACACGGACGCGAGCTCGTCCAAGGGCTCGGTCGAGGTCGTCCACACGCGGCTCGGGACCTCCCCGGCGCCGTCCGGTGACCTGGAGCTGGTCACGGTTACGTTCCGGACCCACGGGCCGGGCGAGGCGGGGGTCGACCTCGCCTCCGCCGTCACGGTCACCACGGACCGGGAGACCACCGTGGTCGACGACGCCGCCGCGGCGACGCTGACCGTCGCCACGCGCGGCAGGGGCTGAMPTTPARTRRTRLLAGAGVLGLALCAGGAAVATADDADPSFVVEVSDPAPSPGDTVEVTVTASDVVDLYAYELTLEYDRRDLTYVKGSAAAPAGGYTDASSSKGSVEVVHTRLGTSPAPSGDLELVTVTFRTHGPGEAGVDLASAVTVTTDRETTVVDDAAAATLTVATRGRGNANANANANA
AK018_02633411hypothetical proteinATGGTCACTGCACAGCGCGGGATCGCCAGCTTCTCCGTCGACGACGTCGACGCGGCCCAGCGGTTCTACTCCGACGTGCTCGGGCTGCAGGTCACCGAGGCCCGGGGTTCGCTGGTCCTGCACCTGCCCGGGGGGACCTCGGTCTTCGTCTACCCCAAGGGGGAGGACCACACCCCGGCGTCGTTCACCGTGTTCCACCTGATGGTCGACGACGTGGACGCGGTGGTCGACGAGCTCGCGGCCCACGGCGTCGAGCCGATCCGCTACGAGGGTTTCGAGCACGACGACAGCGGGGTCGTCCGCGGCTTCATGGAGGGTGGCGACGGGGTCTGGTTCGCCGACCCGTCCGGCAACGTCATCGGGTTCGCCGACGGCGAGGGCGCCCGGCTGTTCGACGAGCTCGTCGGCTGAMVTAQRGIASFSVDDVDAAQRFYSDVLGLQVTEARGSLVLHLPGGTSVFVYPKGEDHTPASFTVFHLMVDDVDAVVDELAAHGVEPIRYEGFEHDDSGVVRGFMEGGDGVWFADPSGNVIGFADGEGARLFDELVGNANANANANA
AK018_02634828hypothetical proteinATGGCCAAGTCCACCGCTGAATTCGTGCTGCGTCCGTTCCAGGGTCTGTCCGGGGAGGCCGACTGGGTCTCGATGCGGGAGATCGTGCCCTCGGCGACCGCCCCCGCTCGTACCACCGCCGAGCACGGCGGCGAGGACGTGGTCATCGCCACGGTGCTGCCCGGCGGGTGGGCCGCCATGCGCCGCGAGGACGGCACCGTGCTGCTCGGCGTCCAGGGCGTGCTGAACTCCGACGACCTGAGCCGCGACCTGGCTGCCGCGCTGCTGGCCGCCGTCGAGGGCGAGCCGGGAACGGGGATCCTGCCCGAGCACCTCGACGTGCCCGCGGACGGCCCGCGCCTGCAGGACGTCCTGGACGACTCGGTGCCCTTCGAGGTGACCGTGCACGAGGGGTACGACTACTGGATCGACGACTCCGCCGAGATGACCGACGAGATCAAGGCGGGTCTGGACGAGGCCGCCGGCCAGTCGGTCCCCACCGTCAAGATCGACGGGGTCGAGGCCGCGTACTGGTGCCGCATGAGCCGTGAGTTCGTGCGGTGGGCCCGCACGGAGGGCGAGGACCGCGTCGTCGACGCCATCGCCCGGATGCACGCGAAGCGCGACTCCGGCCTCGCCGGGGGCAAGTTCCTCGGCATGTTCCGCGCCTGCGGTCTGGTCGTGCCGGTGTGGGAGCTGCCGCGCGGCACGGAGGCCGACGAGCTGGCCGAGCCGATCCAGGACCTGTCGAGCCGGTTCGAGGCGGCGCTCGCCGTGGACGAGCCCCTGGACGCCACCCAGCGACGCGCCCGGGCCGGGATTGTCTCCCGCCAGGTCACGCTGCGCTGAMAKSTAEFVLRPFQGLSGEADWVSMREIVPSATAPARTTAEHGGEDVVIATVLPGGWAAMRREDGTVLLGVQGVLNSDDLSRDLAAALLAAVEGEPGTGILPEHLDVPADGPRLQDVLDDSVPFEVTVHEGYDYWIDDSAEMTDEIKAGLDEAAGQSVPTVKIDGVEAAYWCRMSREFVRWARTEGEDRVVDAIARMHAKRDSGLAGGKFLGMFRACGLVVPVWELPRGTEADELAEPIQDLSSRFEAALAVDEPLDATQRRARAGIVSRQVTLRNANANANANA
AK018_02635792hypothetical proteinATGCCGGTCGCCAAGACGCCGCGTCCGCCGACCACGCGGGACGGCCGCAGCTCGCAGCGGGTCGCGGTGATCGTCCCCGCGAAGGACGAGGCCGAGCGCATCGCCGCGACGGTGCGTTCCGCCCGGGCGATCCCGCACGTCGACCTCGTGCTCGTGGTCGACGACGGCTCCGAGGACGACACCCAGCACGTCGCGCGCGAGGCGGGGGCGGTGGTCGTGCGGCACTCGCACAACCGCGGCAAGGCTGCCGCGATGGAGACCGGCGCCGCCGTCGTGGCCATGCGGGACGCGGACGGCCGCGCCCCGCGGCTGCTCCTGTTCATCGACGGTGATCTCGGTGATACCGCGGTCAACACCGCGCCACTGGTCTCCCCGGTCCGCGAGGGTGTCGCCGACCTCGCCATCGCGCTGCTGCCACGGCAGAAGGGCGCCGGGGGTCGCGGCATCGTCGTGGGTGCCGCCCGCCGGGCGATCCAACGTCTCGCGGGCTGGAGCCCCACCCAGCCGCTGTCCGGCATGCGGTGCCTGACCCGGGACGCCTTCGAGGCCGCCACACCGCTCGCCCACGGATGGGGCGTCGAGACCGGCATGACGATCGACCTGCTGCGCGCGGGCTACGTCGCCGTCGAGGTCCCGTGCGACCTGCGGCACCGGCCGTCGTCGAACGACCTGGCGGGCCAGCTCCACCGTGCCGGGCAGTACCGCGACGTCATGGCCGCCGTCGGGGCGCGCCAGGTGCGTCGTGCGGTGGACGCCGTGAGCCGCCGGGGCTCCTCGGGCGCGCGGCGCTGAMPVAKTPRPPTTRDGRSSQRVAVIVPAKDEAERIAATVRSARAIPHVDLVLVVDDGSEDDTQHVAREAGAVVVRHSHNRGKAAAMETGAAVVAMRDADGRAPRLLLFIDGDLGDTAVNTAPLVSPVREGVADLAIALLPRQKGAGGRGIVVGAARRAIQRLAGWSPTQPLSGMRCLTRDAFEAATPLAHGWGVETGMTIDLLRAGYVAVEVPCDLRHRPSSNDLAGQLHRAGQYRDVMAAVGARQVRRAVDAVSRRGSSGARRPGPT0022460_839DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022460-gpgS-K13693NANA
AK018_02636423lpxD_2UDP-3-O-(3-hydroxymyristoyl)glucosamine N-acyltransferaseGTGCGACGCATCCCGAGAAAGGTCGAGATCGAGGACGACGCGGGCAACGTCACGCGGTACGTCCGACACGAGAACGGCCTGGGCTACGTCTCCCCCCACGCGACCGTCCACCCGGAGGCCCGGATCGAAGCCGGTGCCTACGTCGAGGCCGGCGCGCGGGTCGCAGCCGAAGCCCGGGTCGACCGGTTCAGCTGGATCGACGTCGACGCCGTCGTCGGTCCCCGCGCACGCGTGGGCCAGTGCGTCCACGTCGGACGCCGCAGCGTCGTGGGCGACGACGCCCGCGTCGGCGCCTACGCCCAGCTCGGCGAGGACATCGTCCTCGAGCCGGGCGCGGACGTCGAGGCGGACGCCGTCGTGCCCGAGCGCACCGTGGTGCGCCCGGCACGACGTCAGCGCCACGACTTCAGCACCGCCGCCTGAMRRIPRKVEIEDDAGNVTRYVRHENGLGYVSPHATVHPEARIEAGAYVEAGARVAAEARVDRFSWIDVDAVVGPRARVGQCVHVGRRSVVGDDARVGAYAQLGEDIVLEPGADVEADAVVPERTVVRPARRQRHDFSTAANANANANANA
AK018_02637948hypothetical proteinGTGACTACGCACAAGACCCGTCGCATCCTCGCGACGACCGCCGCCGGAGCCATGCTCACGGCCGGCCTGTTCGGCGCCGGAACCGCCAGCGCCGTCCCCGAGCACCCGCACGGTGACGACCACCCCGGCCACGGCCACGGTCGGACCCTCCCGGCCGAGAAGATCGGCATCCAGCTCTTCAGCTACCTCGGCTGGCAGTTCGCCGACGGCATCGACACCGTCATCGACGGGCTCGAGGACGTCGGTCTGCGCAACGTGGAGTCCTTCGGGACCCCCGGCAGCTTCTTCAGCTCGTACGGCGACTACAGCCCGTCGGAGTTCCGCACCGAGCTGCGCGACCACGGCATGAAGATCCCGAGCTCGCACGGCAGCACCGACGAGGACACCTTCGACACGACGCTCGGTTACGCCAAGGAGCTCGGCCAGAAGCACGTGGGTTCCGGCGGCTTCGCCGCGCCGGGCATCCAGGGCGGCTACGAGAACGTCATCGCCACCGCCGAGACGATGAACCGCCTCGGTGAGCGGTCGGTCAAGAACGGCACCGGGAAGTTCTTCGGCCACAACCACGCCGGTGAGTTCCAGACGATGTACGAGGACCCGGAGACGGGCGAGACGAAGTCCGCCTGGCACATCCTCGAGGAGAACACCGACCCGCGGTACGTGGCCTTCGAGGTCGACGTCTACTGGGCGAAGGCCGCCGGCGTCGACGTGGTCGACCTCCTCGAGACCTACGGCGACCGTATCGACCTGCTCCACATCAAGGACGGTCACGCGCCCTACACCCGCGACACCCTCACCGACGTCGGCGAGGGCGACATCGACTGGGCCCCGATCCTGCGTGCCGCGCACGGCAAGATCGACTACTACATCCTGGAGCGCGACGGCGCCCCGAACGACATCGAGTTCGCCCAGGACAGCTTCGAGTACCTCTCGACGCTGCGCTACTGAMTTHKTRRILATTAAGAMLTAGLFGAGTASAVPEHPHGDDHPGHGHGRTLPAEKIGIQLFSYLGWQFADGIDTVIDGLEDVGLRNVESFGTPGSFFSSYGDYSPSEFRTELRDHGMKIPSSHGSTDEDTFDTTLGYAKELGQKHVGSGGFAAPGIQGGYENVIATAETMNRLGERSVKNGTGKFFGHNHAGEFQTMYEDPETGETKSAWHILEENTDPRYVAFEVDVYWAKAAGVDVVDLLETYGDRIDLLHIKDGHAPYTRDTLTDVGEGDIDWAPILRAAHGKIDYYILERDGAPNDIEFAQDSFEYLSTLRYNANANANANA
AK018_026383321hypothetical proteinATGTCCCATTCTATGCGTTCACGTGCTCTCGCGGCGGTAGCCACCGCGGCGTTGGCACTGCCGATCGCAGCGGCGACGGCGTCGGCCCACGACGGCGTCGACCACAGCTCCGAGGAAGGCGCCGAGGCGGCGCTCGACTGGTCCAACTACGAGAAGATCCTGCTCACCGAGAACACCGGTGAGCCCATCGCCATGGCCGTGATGCCCGACGGGTCGGTGCTGCACACCGCCCGCGACGGCGCGATCCGGCACACCGACCCCAGCACGGGCGTCACCGAGGTGGTCAACACCGTCGACGTCTACGCCAACTCCGAGGACGGCATGCAGGGCATCGCCCTGGCCCCGGACTTCTCCGAGTCCGGCTGGGTGTACCTGTACTACGCGCCCCGCGTCATGGACGTCGAGGGCTACCCCACCACGACGCCGTCCGGCTCGGCCCCCAACTCCCTGCCCGAGGGCGAGGACGAGTCCTACTGGGACCAGTGGAAGGGCTACAATCAGCTGACCCGCGTGCAGTGGGACGCCGAGGCCGGCGCCCTGGACATGAGCACCGAGCAGGACCTCCTCGAGGTCGAGGTCCAGCGCGGGCAGTGCTGCCACGTCGGTGGTGACATCGACTTCGACGCCGAGGGCAACGTCTACGTGTCCACCGGCGACAACACGCCGGCCGGCACCCCGGGTTCCAACGGCTTCGCCCCCAACAACAACGCTCCCGGCATGAACCCCGGGTTCGACTCGCGGCGCGGCGCCGGCAACACCAACGACCTGCGCGGCGCGATCCTGCGGATCCACCCCGAGGAGGACGGCAGCTACACGATCCCCGAGGGGAACCTGTTCGAGCCGGGCACCGAGGGCACCCGTCCCGAGATCTTCGTGATGGGCCTGCGCAACCCGTTCCGGATCGACGTCGACGACGTCACCGGTGCGGTGAGCTGGGGCGACTACGGTCCCGACTCCGGTGTCGCCAGCGACGAGCGTGGCCCGATGGGCTACGTCGAGTGGCAGAGCACGACGACGCCGCTCAACGGCGGCTGGCCGTACTGCCACGGCCCGAACGCCAACTACAACGAGTGGGACTTCGAGACCGCGACGCCGGGCGACTGGTTCGACTGCGAGGCCGGGGCGGAGAACAACTCCACCTGGAACACGGGTCTCGACGTCCTGCCGCCGGCGACGGCGCCGCAGGTCTACTACGGCGACAACCCGGGTGACCAGCCGTTCGACGAGTTCGTCGAGTTCGACCCGCAGGGCGGCCAGGGCCCGATGGGCGGCCCGACCTTCGCCTTCGACCCGGAGGGTCCCGAGACCCAGTGGCCGGAGTACTGGGACGGCAAGGCGTTCTTCTACGAGTTCTCCCAGGACTACATCGCCGGGCTGACCATCCCCGACCGTGACGGGCCCGTCACCCACGTCGAGCACGTGCTGCCCAACGCGGCGCTGACGGACAACGTGCAGGCCATCACCGACGGCCCGATCGACATGGAGTTCGGTCCCGACGGGTCGCTGTACATCCTCGACTACGGCAACGGCTTCTTCCGGCAGAACCCGGAGGCGGGCCTGTACCGCGTCGACTACGCCGAGGGCAACAAGGCCCCGACCGCGGTCATCGAGGCCGACCCGATCTCGTCCTCCGAGGCGCCGCTGACGGTGACCCTGGACGGCTCGGGCTCGACCGACCCCGAGGGCGAGGAGCTCACCTACGAGTGGGACACCAACGGTGACGGCACGTTCGACGAGACCGGCGTGGAGATCACCACGACCTACTCCGAGCTCGGCCAGTACACCGCTCGCCTGCGGGTCACCGACCCGGCCGGCCGCATCGGCCTCACCTCCGAGCTGATCACGGTCGGCAACGTGGCGCCGACGCTGACCGCCGACTACCCGGCCGACGGCGCGTTCTTCGCCTGGGGCGACGCCGTGCCGTACGCGTTCAGCACCTCGGACCCGGAGGACGGCACCGACACGGTGTGCTCGAACCTGTCCTGGACGCTGGGTCTGGGCCACGACACGCACGCCCACCCCGAGGTGCTCGGCAGCGGTTGCTCCGGCGCCTGGGTCACCCCGGCCGACGCCCCGGAGCACGGCGAGACGGAGAAGCTGTACGCCGTCGTCGTGGCGAACTACACCGACCAGGGCAACGGGGACATCCCGCCGGCCGTGGCCGAGACGTCGCTGCTGCTCAACACCTTCACCCAGGAGGCCGAGCACGCCGACACGTTCTCCGGCGTCGAGGTCGTCAGCGACGACACCGCGGGCGCACTGTCCAAGGTCGTCTCGTTCGACGCCGGTGACCACCTCGCCTGGGACCCGGTGAACTTCGCCGGGATCGACGGCGTCGAGGTGACCGGGGCCGGGACCGGCACGATCGCGCTCCGCTGGGGCGCGGCCGACGCCGAGCCCTTCGCCACCGCCGACCTCGACTCGTCCGGCTGGTCCACCGTGGCCGCGGACGTGACCGCGTTCCCCGAGGGCACCGGCGAGCTCTTCGTCACCTCCACCGGCGGCGTCGAGCTCGACACCCTGGAGTTCCAGGGCGACGGCGTCAGCGACGTCACCCCGCCCGAGGCGAGCCACTCGCTGAACCCGTCCGAGCCGACCGGTGACAACGGCTGGTACACGGGCTCCGTGTCGCTCTCCGTCAACGGGACCGACGACGGCGAGATCGGCGACGCGGAGGTGTCGTACGACGGCGGCGAGACCTGGGACAGCATCCGCCACCCCTGGTTCGGCATCCGTCCGGTCACGCTGTCCGACGACGGCGTGCACGAGGTCCAGTACCGCGTCATCGACACCGGCGGCAACGTCTCCGAGCCCGGCGAGGTGACCGTCTCCATCGACACGACGGCCCCCGAGGTCGCAGTGACCGGTGTGGCCGACGGTGACGAGCTCGGCTCCTCCGAGGTCCTCGACCTCGGCGCCGAAGCCTCGGACGCCACCTCCGGTGTCGCGTCGTGGAGCCTCACGCTCGACGGCGAGGAGATCGAGGCCGGCGAGATCGAGCTGTGGACGCTCGACCTCGGCGACCACGAGGTCGTCGCGACCGCGACCGACGAGGCCGGCAACACGGCCGAGGCGACCGCGAGCTTCACGGTCACCACCTCGGCCGCCGACCTCGCGGCGCACCTCGAGCGCCTCGACGAGGCCGGCGAGCTGTCGACGTCCGAGTCGGCCCGCCTGCACGCCTTCCTCGAGCAGGCCGAGCGGCACGCCGACGCCGGCCGCGACGCCCAGGCGGCGAACGCCCTGCAGCGGTTCGCCGACGCCACCGACGAGGAGGTGCTGATCCGCGACGCCGAGGCGCTCATCGCCCAGCTCGGCTGAMSHSMRSRALAAVATAALALPIAAATASAHDGVDHSSEEGAEAALDWSNYEKILLTENTGEPIAMAVMPDGSVLHTARDGAIRHTDPSTGVTEVVNTVDVYANSEDGMQGIALAPDFSESGWVYLYYAPRVMDVEGYPTTTPSGSAPNSLPEGEDESYWDQWKGYNQLTRVQWDAEAGALDMSTEQDLLEVEVQRGQCCHVGGDIDFDAEGNVYVSTGDNTPAGTPGSNGFAPNNNAPGMNPGFDSRRGAGNTNDLRGAILRIHPEEDGSYTIPEGNLFEPGTEGTRPEIFVMGLRNPFRIDVDDVTGAVSWGDYGPDSGVASDERGPMGYVEWQSTTTPLNGGWPYCHGPNANYNEWDFETATPGDWFDCEAGAENNSTWNTGLDVLPPATAPQVYYGDNPGDQPFDEFVEFDPQGGQGPMGGPTFAFDPEGPETQWPEYWDGKAFFYEFSQDYIAGLTIPDRDGPVTHVEHVLPNAALTDNVQAITDGPIDMEFGPDGSLYILDYGNGFFRQNPEAGLYRVDYAEGNKAPTAVIEADPISSSEAPLTVTLDGSGSTDPEGEELTYEWDTNGDGTFDETGVEITTTYSELGQYTARLRVTDPAGRIGLTSELITVGNVAPTLTADYPADGAFFAWGDAVPYAFSTSDPEDGTDTVCSNLSWTLGLGHDTHAHPEVLGSGCSGAWVTPADAPEHGETEKLYAVVVANYTDQGNGDIPPAVAETSLLLNTFTQEAEHADTFSGVEVVSDDTAGALSKVVSFDAGDHLAWDPVNFAGIDGVEVTGAGTGTIALRWGAADAEPFATADLDSSGWSTVAADVTAFPEGTGELFVTSTGGVELDTLEFQGDGVSDVTPPEASHSLNPSEPTGDNGWYTGSVSLSVNGTDDGEIGDAEVSYDGGETWDSIRHPWFGIRPVTLSDDGVHEVQYRVIDTGGNVSEPGEVTVSIDTTAPEVAVTGVADGDELGSSEVLDLGAEASDATSGVASWSLTLDGEEIEAGEIELWTLDLGDHEVVATATDEAGNTAEATASFTVTTSAADLAAHLERLDEAGELSTSESARLHAFLEQAERHADAGRDAQAANALQRFADATDEEVLIRDAEALIAQLGPGPT0004005_34DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-OTHER_CYTOCHROME-RELATED_PROTEINS,PGPT0004005-cycA|cycM-K08738NANA
AK018_026394488hypothetical proteinGTGCGTCTCCTCGTCCGACTCGTCGTCGCCGTGGTGGCGCTCCTGGTCACCGCCGCGTCCGTCGTCCTGCCGACGAGCGCGCACGCCGAGGAGTCCGCCGCCCCGACCGACACGCCGCTCGTGCTGGCCGGCGTCGCCGGGCTGCAGTGGACGGACATCGACGCCGCGCGCACCCCGCACCTGTGGCGGCTGGTGGGCGGCGGATCGGTCGCGTCGGTCTCGGTCCGCACCCTGACCCCGACCTGCCCGCGGGACGCCTGGCTCTCGCTCTCCGCGGGCAGCCGGGTCGTGACCGAGCGGCCCGAGGACACCGGCGCGGGCGCGGACGGAGGCAGCGCCGGCGGAGGCGACGACGGCGAGGACGACGGCCGGGCGGCGGACGGGGAGCCGGAGCAGCCCTGCCCGCCGTTGCCCGCGGTCCAGGGGCCGGACGGCGGCGGACCCACGCAGGTGCCCGGCTGGGACGCGCTCGTCGACGAGGACGCCCTGGCCTCCACGGGTGCCGAACCCGGCACCCTCGGCGAGCTGGCCCGCACGGTCGGCACGTGCACGACGGCGGTCGGCCCGGGCGCAGCCCTCGCGACGGCGGACCGGTCCGGCGACGTACTCCGCTACCTCGCCGGCCCCGACGACGTCACGGCGGCGGCGGACCTGACCACCTGCCCCGTGACGGTGGTCGACCTCGGCGAGCTGCCGGACGCCGCCACCGAGCGGGCCGACGCCGTCGCCGCCGTGGACGCGGCCGTCGGACGGATCGCCGACCTGCTGCCCACCGGCGGCCGGCTCGTCGTGGCAGGCCTGGCCGACACCCCGCTGGGGCCCGCCGACCTGCAGGTGGTGGTGGACTGGACGCGTCCGGGCGGCCAGGCCACCTGGCTGACCTCCACCTCGTCGCGCTGGCCCGGCGTGGTGGTGGCCGGCGACCTGTCCGCGACACTGGCCGACGCCCTGCTCACCGACGCCGATCCCGACGAGCTCGCCGCCGCCGAGCAGGACCCCGAGAGCAGGCTGGCCGGGCTCGTCTCGGCGTTCACCGGGTCCCCGCTGGAACGTGGCGAGGACCGTCGGCTGTCGGTGTTCCGCACCGTCGAGAACCGGCAGTACCTGTCCGTCCTGACCGAGACGCTGCCGCGCATGACGCCGGTGCTGGTCGGCGTGCTCGCGCTCGGCGTCGTCGGCGTCGTGACCGGGCTGCTGCTCGGGCGTCGCCGGCGCACCGGCGACGCCGCGTCCGCGGGATCCCCCGTCCTGCCGCCGTGGCGCACGGGGCTGGCGATCGCGGTGCTGACCGTCGTGGCCTCGCTGCCCGCCGCCGCCACCCTGGCCACGCTGTCGCGCTGGTGGGTGTGGCCGGTCCCGGTCGCGGTCCTGTGCCTCGCGATCGGTGCCGCCGCGCTCGCCGTGGCGCTCGGCGCGTGGTGGGCCCGGCTGCTGCTGCCGCGCACGCCGTGGCGGCTGCCCACGACTCTCGCGGCGATCACCTGGCTCGTGCTCACGGTGGACGGCCTGACCGGCACCACGCTGCAGCAGGGGTCGCTGCTCGGCCCCGCCCCCTCGCTCGGGGCGCGCTTCTACGGGTTCTCCAACTCGGTGTTCGCCGTGTACGCCGTCGTCGGCCTCGTGCTCGCCGCCGGCGTGGCCGCGCTGCTGCGCGACCGGGGCACCTCGCGCCGCGCCCAGGCGTGGTCGGCCGCCGCGGTCGGCACGGTCACCGTGCTCGTCGACGGGCTGCCGCCGTTCGGCGCCGACCTCGGCGGCATCCTCGCGCTCGTACCCGCCTTCGCCGTGCTGGTCCTCGGCGTCGCCGGGATCCGGCTGACCTGGCGGCGCGTGCTGCTCGTGCTGGCCGCCTCCGCCCTCGTGGTCGCCGTCGTCGCCGTCCTGGACTGGGCCCTTCCCCCGGCGACGCACCTGGGCGGGTTCGTCGACTCCGTCCTGGACGGCACCGCCCTGTCGGTGATCGCCGGCAAGGCGGCCGGAGCCTGGGCCACGGTGGCGAACCCCGCCGGGGCGTTCGCCGCCGTCGTCTGCGCGCTCGCGGCCTGGGCCGTGATCGACCCGCGCCGGGCCCGGCTCGACGGCGTCGCCGCGGCCTACGCCCGCGAGCCCCTGCTCCGCCGCGCCGTCCTGGCCGTCGTCACGGTCGGCGTCGTCGGCACCGTCGTCAACGACTCGGGCGTCGTGGTGGCGATGTACGTGCTGCTCGTCGGCACGCCGCTGCTGCTCGTCGGCCGCCTCGAGGCGACGCTCACCCCGCCCGCCGCACCCTCCGGCGCCGCCCGGGGCACGGGACGCCGGATCCTCGGCGTGGCCGCCGGCGTCGTGGTCGCGCTGCAGCTCGGCGGCGCCGCGGTGCCGGCGGGCGGCATGTCCCACGCCGGGGACGTCACCGCCGGTGGTGATCCCGTGCTGACCGACGAGGAGCCGGTCGTCGTCGTCGGCACGAACGGCCTGCGCTGGCAGGACGTCTCCCCCACCCGCACCCCGACCCTGTGGGGCCTGCTGCGCGACGGCGCGAGCGCCGGGGGGATGACGACGACCGTCACCGGACCGTCCGGGGACTGCCGGGCCGCCGGATGGCTCAGCCTGTCGGCCGGCCGCAGCACCGTCACCGGCGCGTTCGACGACGGCACCTGGCGCTGCACGGACTGGGGGGTGACGGCGGACGGCGAGGGTGCCGTCGTCGACGGCTGGGACGCGCTGCTGGCCGAGCAGGCGGCCTCCGAGTTCAACCCGCACCCCGGGGTGCTGGGCGAGACCCTGTCCGCGGGCGACGTCTGCACGACGGCGGTCGGCCCCGCGGCCGCCCTGACGCTCGCGGGCCGCGACGGCACCGTCGAGCGGTACCGGACCCTGGACGCCGCGCTGCAGGACCCGGACGACGCGTTCTCGTGCCCGGTGACCGTCGTGGACGCCGGTGCAGCGCCCTACCACCCGACCGGCGAGGGATCGGACGCCCGGCCCGTGCCGACGGACGCCACGCAGCCCGGGCCGGAGCGGGACGCGATGCTGCGCGACGTCGACGCGACGGTGCGCAGCGTCCTGCTCGCCGCCCCGCGGGACGTCACCGTGCTCGTCGCCGACACGGGGAACCCGGCACCCACGCGGCCGGCGCTCGGCGTGGGCGTCGCCCGCACGCACACGGACGCCGCGCCGTCGTACCTGGCGTCCTCCGCCACCCGCTGGGTCGGCGTCGTCCGGCTGCTGGACCTGCCCCCGACCCTCGTCGCGGACTTCGACCTGCCACGGCCGACGGACTTCTCCGGGGCGCCCGTGACGCTCAGCGAGCAGCGTCCGAGCGGCACGGGCGCCACGGTCCGCGACCTGTCGTCCCTGACGGAGCGGGACCACGGCCTGCGCGAGGTGACCGGCGCCGTGACCGGGCTGCCGACCTACGTCGCCCTCGCCGCCTTCGGCCTCGTCGTGCTCCTGCTGCCGACGGTCCGACGACGGGCCTCCGACCGCACCACCCGACTGTGGACGGGTGCGCTGGAGACGGTGATGCTGGTGTGCGCGGCGATACCGGCGGCCTCGTTCCTCATGACGACCTGGTCGTGGTGGCGGATGCCGGACCCGCAGGCGGGTCTGTGGGTGGCGCTCGCCGGCGGCACCGCGCTGGTGGCTCTCGTCGGGACCCTGGCGCCGCGTCGCCCGGCGTGGGCGGGCACGGTCGTCCTCGCCACGGTCACGTTCGTGGTGCTCACCCTGGACGCGGTGCTGGGCACGCCCCTGCACCGCGGCAGCCCGCTCGGCGCGGCACCCACGCTGGGCGGCCGGTTCTACGGCTTCGGCAACCCGACGTACTCGGTCTACGCGGTCGTGGCGGTGCTCGCCGCCGCCGGGCTCGCGACCGTCGTCGCACGGCGGTGGGGTCGGGTCGCCGGCGCCGTCGTCGCGGGGATCGTCGGTCTCGTCGCGCTGGTCGTGACGGTCTGGCCCACGTTCGGTGTCGACGTCGGGGGCGGGCTGGTCCTGGTCCCGGTGTTCGCCGTCGTGGTGCTCGCGGCGCTCGGCGCGCGGCTGACCTGGCGCAGGCTGCTGGTCGCCGGGGGCGCCGGCGTGCTGCTGGTCGCCGTCATCGGCGTCCTGGACTGGCTGCGGCCGCCGGCGCAGCGCTCGCACCTGGGCGCCTTCGTGCAGTCCGTGGTGGACGGCACCGCCGTCGAGACGATCTGGCGCAAGGCGGGCTACGCCCTCGGCTCCCTGGACGGCGGTCCGCCGGCCTGGTTGTCGCTGGCCGTCCTGCTCGGGGTCGTGGCTGCCCTGTGGGCGGGTCCACGTTTCTCCGCACGATGGCTCGAGCGGGCCGAGGAGGCGTGGCCCCTGCTGCGTCCGGTGCTGGTGGCGCTGCTCATCGCGGCCGTGGGCGGCGCGCTCGCGAACGACTACGGCATCCGGGTCGTGACGATCATGCTGTTCCCCGCGGTGCCGCTCATCGGTCTGCTCGTGCTCCGCACCGACGATTCCCGACAGATGTCTGTCAACTGAMRLLVRLVVAVVALLVTAASVVLPTSAHAEESAAPTDTPLVLAGVAGLQWTDIDAARTPHLWRLVGGGSVASVSVRTLTPTCPRDAWLSLSAGSRVVTERPEDTGAGADGGSAGGGDDGEDDGRAADGEPEQPCPPLPAVQGPDGGGPTQVPGWDALVDEDALASTGAEPGTLGELARTVGTCTTAVGPGAALATADRSGDVLRYLAGPDDVTAAADLTTCPVTVVDLGELPDAATERADAVAAVDAAVGRIADLLPTGGRLVVAGLADTPLGPADLQVVVDWTRPGGQATWLTSTSSRWPGVVVAGDLSATLADALLTDADPDELAAAEQDPESRLAGLVSAFTGSPLERGEDRRLSVFRTVENRQYLSVLTETLPRMTPVLVGVLALGVVGVVTGLLLGRRRRTGDAASAGSPVLPPWRTGLAIAVLTVVASLPAAATLATLSRWWVWPVPVAVLCLAIGAAALAVALGAWWARLLLPRTPWRLPTTLAAITWLVLTVDGLTGTTLQQGSLLGPAPSLGARFYGFSNSVFAVYAVVGLVLAAGVAALLRDRGTSRRAQAWSAAAVGTVTVLVDGLPPFGADLGGILALVPAFAVLVLGVAGIRLTWRRVLLVLAASALVVAVVAVLDWALPPATHLGGFVDSVLDGTALSVIAGKAAGAWATVANPAGAFAAVVCALAAWAVIDPRRARLDGVAAAYAREPLLRRAVLAVVTVGVVGTVVNDSGVVVAMYVLLVGTPLLLVGRLEATLTPPAAPSGAARGTGRRILGVAAGVVVALQLGGAAVPAGGMSHAGDVTAGGDPVLTDEEPVVVVGTNGLRWQDVSPTRTPTLWGLLRDGASAGGMTTTVTGPSGDCRAAGWLSLSAGRSTVTGAFDDGTWRCTDWGVTADGEGAVVDGWDALLAEQAASEFNPHPGVLGETLSAGDVCTTAVGPAAALTLAGRDGTVERYRTLDAALQDPDDAFSCPVTVVDAGAAPYHPTGEGSDARPVPTDATQPGPERDAMLRDVDATVRSVLLAAPRDVTVLVADTGNPAPTRPALGVGVARTHTDAAPSYLASSATRWVGVVRLLDLPPTLVADFDLPRPTDFSGAPVTLSEQRPSGTGATVRDLSSLTERDHGLREVTGAVTGLPTYVALAAFGLVVLLLPTVRRRASDRTTRLWTGALETVMLVCAAIPAASFLMTTWSWWRMPDPQAGLWVALAGGTALVALVGTLAPRRPAWAGTVVLATVTFVVLTLDAVLGTPLHRGSPLGAAPTLGGRFYGFGNPTYSVYAVVAVLAAAGLATVVARRWGRVAGAVVAGIVGLVALVVTVWPTFGVDVGGGLVLVPVFAVVVLAALGARLTWRRLLVAGGAGVLLVAVIGVLDWLRPPAQRSHLGAFVQSVVDGTAVETIWRKAGYALGSLDGGPPAWLSLAVLLGVVAALWAGPRFSARWLERAEEAWPLLRPVLVALLIAAVGGALANDYGIRVVTIMLFPAVPLIGLLVLRTDDSRQMSVNNANANANANA
AK018_026401086yegSlipid kinase YegSATGCCCTGGGAACTCACCGTCGGGATCGTCGCACTGGTCGTCGGCCTGACCGCACTGGTGGTCGCGCTGGTCGTCCTGCGCCGCAGCCGGCACGCCGCCGCCCCGTCGTCGGGGCGGGGGACGCCGGCCGACCGTCCGCAGCGTCCCCAGCTCGCCGTGGTGGTCAACCCCTCCAAGGAGAGCACCCAGCAGGCGATGGAGACCGTGCGCCGGGTCGCCGGGGAGGCGGCCCTGCCGGCACCGCGCTTCTACGAGACGACCGTCGACGACCCCGGCACCGGGCAGGCCCGCACCGCCGTGCGTGACGGGGCCGACATCGTCGTCGCGGCCGGCGGGGACGGCACCGTCCGCGCCGTCGCCGAGGGCATGCTCGGGTCCGAGGTGCCGATGGGCATCATCCCGGCCGGGACGGGCAACCTGCTGGCACGCAACCTCGACCTGCCGCTGACCGACCCGAAGGACGCCCTGGCGGTCGTCCTCGGCGGGATCGACCGGTCGATCGACGTGGGCCGCGTCCGCGTCACCGAGCGCCCGCCCGACGAGGAGCCGGACGACACCGACCACCTGTTCCTCGTCATCGCCGGCCTCGGCTTCGACGCCGCGATGGTGGCCGACGCCGACGACCAGCTCAAGGCGAAGATGGGCTGGGTCGCCTACTTCCTGGCCGGGGCGCGCCACCTGCACGGTCGGCGTATGGCCACGCGCATCACCGTCGACGACGAGGAACCGGTCGAGGCCAGGCTGCGCAGCATCATGGTGGGCAACTGCGGCCGGCTGCCGGGCGGCATCAACCTGCTGCCCGACGCCACGCTCGACGACGGCGTGCTCGACGTCGCCGCGATCGACACGCGCGGCGGGCTCGCGGGCTGGGCACAGCTCTTCGGCGAGGTCGTCGCGCAGGGCATGGGCGTGCAGAACGACATGCGGGCGAAGATCGGCCGCATCGACCACGTCAAGGCCCGGCGGGCCACGATCCGCGTCGAGGACGGCGAGCAGGCGCAGGTCGACGGCGAGGTGCTCGGCAAGGCGGTCCAGATCGAGACGTGGGTCGAGCCCGGGGCGCTGGTGGTCCGCGCGCCCGCCTGAMPWELTVGIVALVVGLTALVVALVVLRRSRHAAAPSSGRGTPADRPQRPQLAVVVNPSKESTQQAMETVRRVAGEAALPAPRFYETTVDDPGTGQARTAVRDGADIVVAAGGDGTVRAVAEGMLGSEVPMGIIPAGTGNLLARNLDLPLTDPKDALAVVLGGIDRSIDVGRVRVTERPPDEEPDDTDHLFLVIAGLGFDAAMVADADDQLKAKMGWVAYFLAGARHLHGRRMATRITVDDEEPVEARLRSIMVGNCGRLPGGINLLPDATLDDGVLDVAAIDTRGGLAGWAQLFGEVVAQGMGVQNDMRAKIGRIDHVKARRATIRVEDGEQAQVDGEVLGKAVQIETWVEPGALVVRAPAPGPT0024345_188DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029NANA
AK018_026411269serS_2COG0172Serine--tRNA ligaseGTGATCGACATCCGTCTCCTGCGCGACAACCCCGACGCCGTCCGCGCGAGCCAGCGTGCCCGCGGCGAGGACCTCGACCTGGTGGACGCGGCGCTGGCCGCCGACGCCCGCCGGCGCTCCTCCTTGGCGGAGTTCGAGTCCCGGCGGGCCGAGCAGAAGGCGATGGGCAAGCAGGTCGCCCAGGCGACCGGCGACGAGAAGGCCGCGCTCATCGGCCGGACCAAGCAGCTCGCCCAGGAGGTCAAGGACCACCAGGCCGCCGTGAACGAGGCCGAGGCCGAGCTCGACGAGCTGCTGTTCCGGATCCCGAACATCGTCGAGGGCGCCCCGGCGGGCGGCGAGGAGGACTTCGTCACCGTCAAGGCCGTCGGCACGCCGCGCGACTTCGCGGCCGAGGGCTTCGAGCCGCGTGACCACCTCGACCTCGGCGAGGGTCTCGGCGCGATCGACACCCAGCGCGGCGCGAAGGTCTCCGGCTCGCGGTTCTACTTCCTCACCGGTGTCGGCGCCCGCCTCGAGCTCGCCATCCTGCAGGCCGCGATGGACAAGGCCGTCGCCGAGGGCTTCACCCCGATGATCACGCCCACGCTCGTCACCCCGGAGACGATGCGGGGCACCGGGTTCCTGGGGGAGCACTCCGACGAGGTGTACCGCCTCGAGCGGGACGACCTGTACCTGGTCGGCACCTCCGAGGTGGCGCTCGCGGGCTACCACGGCGACGAGATCATCGACCTGTCCGACGGCCCGAAGCGGTACGCGGGCTGGAGCGCCTGCTACCGCCGCGAGGCGGGCTCGCACGGCAAGGACGTGCGCGGCATCATCCGCGTGCACCAGTTCCACAAGGTGGAGATGTTCAGCTACTGCTCCGTGGACGACGCCGAGGCCGAGCACCAGCGTCTGCTCGCCTGGGAGGAGGCCATGATGGCCGCGGTCGAGCTGCCCTACCGGGTGATCGACACGGCGGCCGGGGACCTCGGCACCAGCGCGGCGCGCAAGTTCGACTGCGAGGCGTGGCTGCCCACCCAGCAGCGCTACCTCGAGCTGACCTCGACCTCCAACTGCACCACGTTCCAGGCGCGGCGGCTCAACGTGCGCGAGCGCGCCGAGCACGGCACGCGGACCGTGGCGACCCTCAACGGCACCCTCGGCACCACCCGGTGGATCGTCGCGATCCTGGAGAACCACCAGCAGCCGGACGGCTCCGTGCGGGTCCCCGAGGGACTGCGCCCCTACCTCGGCGGACTCGAGGTCCTCGAGCCGGTGCGCTGAMIDIRLLRDNPDAVRASQRARGEDLDLVDAALAADARRRSSLAEFESRRAEQKAMGKQVAQATGDEKAALIGRTKQLAQEVKDHQAAVNEAEAELDELLFRIPNIVEGAPAGGEEDFVTVKAVGTPRDFAAEGFEPRDHLDLGEGLGAIDTQRGAKVSGSRFYFLTGVGARLELAILQAAMDKAVAEGFTPMITPTLVTPETMRGTGFLGEHSDEVYRLERDDLYLVGTSEVALAGYHGDEIIDLSDGPKRYAGWSACYRREAGSHGKDVRGIIRVHQFHKVEMFSYCSVDDAEAEHQRLLAWEEAMMAAVELPYRVIDTAAGDLGTSAARKFDCEAWLPTQQRYLELTSTSNCTTFQARRLNVRERAEHGTRTVATLNGTLGTTRWIVAILENHQQPDGSVRVPEGLRPYLGGLEVLEPVRNANANANANA
AK018_02642792ybhACOG0561Pyridoxal phosphate phosphatase YbhAATGCTCGTCGCCCTCGACATCGACGGGACCCTGCTGTCCTACGACGGCGACCTGAGCGACGCCGTGCGCGAGGCCGTCGGGGCGGTCCGCGAGGCCGGGCACGAGGTCGTGCTGGCCTCCGGACGGTCGCTGCTGGCCATGCTCCCGGTTGCGTCCGCTCTCGGGATCGGGACCGGGTGGATGGTGTGCTCGAACGGTGCCGTCACGGTCCGGCTGGACCCGGCGTCGCCGCAGGGGTGGGCCACCGAGGACGTCGTGACGTTCGACCCGGAACCGGCGCTGCGCCTGCTGCGCGAGCAGCTCCCGGACGCGCGGTACGCCGTCGAGGACCTCGGCGTCGGGTTCCGGATGACCGAGCACTTCCCCGACGGCGAGCTGGAGGGCGAGCACGTCATCGTCCCCATGGAGGACCTCTGGTCCACCGAGGTCACCCGTGTCATCGTGCGCCGGCCGGACTCGACGTCGGGGCACTTCCACGAGCTGGTCGAGCACCTCGGCCTCGAGGACGTCACCTATGCCGTGGGGTGGAGCGCCTGGATGGACCTCGCCCCGCTGGGGGTGTCCAAGGCGACGGCGCTCGAGCAGGTGCGGCGACGGCGGCACCTGCAGCCGCACCGCACGGTCGCGATCGGCGACGGGCACAACGACCTCGAGATGCTGCGCTGGGCGGCGCGCGGCGTCGCGATGGGGCACGCGGACGACGCCGTGCAGGCGGCCGCGGACGAGGTCACCGGGCCGATCGAGGACGACGGCGCGGTGGAGGTGCTCCGCTCCCTCCTCCCGCCGAGGTAGMLVALDIDGTLLSYDGDLSDAVREAVGAVREAGHEVVLASGRSLLAMLPVASALGIGTGWMVCSNGAVTVRLDPASPQGWATEDVVTFDPEPALRLLREQLPDARYAVEDLGVGFRMTEHFPDGELEGEHVIVPMEDLWSTEVTRVIVRRPDSTSGHFHELVEHLGLEDVTYAVGWSAWMDLAPLGVSKATALEQVRRRRHLQPHRTVAIGDGHNDLEMLRWAARGVAMGHADDAVQAAADEVTGPIEDDGAVEVLRSLLPPRPGPT0008595_684DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008595-ycsE|yitU|ywtE-K21064NANA
AK018_02643783map_2COG0024Methionine aminopeptidase 1ATGATCGAGCTGAGGACGCCCCGTGAGATCGAGGAGATGCGTCCTGCCGGCCGGTTCGTCGCCGAGACGCTGCAGGCTGTCCGCGAGGCCGCCGAGCCCGGCGTCAACCTGCTCGAGCTCGACGCCCTGGCGCACCGGCTCATCAAGGAGCGCGGTGCCGAGTCCTGCTACATCGACTACCACCCCTCCTTCGGCGCGAGCCCGTTCGGCAAGGTGATCTGCACCTCCGTCAACGACGCCGTGCTCCACGGGCTCCCGCACGACTACGACCTCGTCGACGGCGACCTGCTCACCCTCGACTTCGCGGTCGCCGTGGACGGCTGGGTCTCGGACTCCGCGATGTCCTTCGTCGTCGGCGAGTCGCCGTCCGAGGAGCGGGCCGCCGCGGACGAGAAGCTGATCCGCACCACCGAGGTCGCGCTCGAGGCCGGGATCGCCGCCGCGCAGCCGGGGAAGAAGGTCGGGGACATCTCCGCCGCGATCGCCGCGGTCGCCCGGGAGGCCGGCTACACGATCAACACCGACTTCGGCGGTCACGGTGTCGGACGCACGATGCACGGCGACCCGCACGTGCCGAACGACGGCCGCGCCGGCCGAGGCTTCCCGCTGCGTCCCGGGCTCGTCATCGCCATCGAGCCGTGGTTCCTGGAGACCACCGACGAGATCTACACCGACGACGACGGCTGGACGCTGCGTTCGGTCGACGGCTCGCGCGGGGCGCACAGCGAGCACACGATCGCCATCACCGCCGACGGGCCGATCGTCCTCACCGCCCGCGACTGAMIELRTPREIEEMRPAGRFVAETLQAVREAAEPGVNLLELDALAHRLIKERGAESCYIDYHPSFGASPFGKVICTSVNDAVLHGLPHDYDLVDGDLLTLDFAVAVDGWVSDSAMSFVVGESPSEERAAADEKLIRTTEVALEAGIAAAQPGKKVGDISAAIAAVAREAGYTINTDFGGHGVGRTMHGDPHVPNDGRAGRGFPLRPGLVIAIEPWFLETTDEIYTDDDGWTLRSVDGSRGAHSEHTIAITADGPIVLTARDPGPT0020010_6524DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
AK018_026441398hypothetical proteinATGACACGAAGGACCACGACGAGCGCACGCCGACGACTGGCGGCGGTGGCCGCCGGTGCCGGTCTCGCCCTCGTGCTCGCCGCGTGCGGCGGCGGGGACGACGACGGCGGTGGCGGCGACGACATGGGCGAGGGCGGTGGCGGAGGTGCCGCCGCGGACATCGACTGTGCCGCGTACGACGAGTTCGGTGACCTCGAGGGCACGAGCGTCAGCATCTACACCTCGATCGTCGACCCCGAGCAGACGCAGCAGGAGAACTCCTACGACGCGTTCGAGGAGTGCACCGGGGTCACGGTGGAGTACGAGGGTTCGCGCGAGTTCGAGGCGCAGCTGCTCGTCCGCATCCAGGCGGGGAACACGCCCGACATCGCCTACATGCCGCAGCCGGGCCTGCTGAACACGATCGTGTCCGACTTCCCGGACGCCGTCGTGGAGGCTCCGGAGGCGACCGCGGCCAACGTCGACGAGTACTTCAGTGAGGACTGGAAGGAGTACGGCTCGGTCGACGGCACCTTCTACGCCGCCCCGCTGGGCGCGAACGCGAAGTCGTTCGTCTGGTACAACCCGGCGATGTTCGCCGACGCCGGCTACGAGGTCCCCGAGACCTGGGACGAGCTGATGGAGCTCAGCGAGACGATCGCCACCGAGCAGGAGGTCCTGCCGTGGTGCGTGGGCTTCGAGTCCGGTGACGCGACCGGCTGGCCCGGTACGGACTGGATCGAGGACGTCGTGCTCCGCACGGCCGGCCCCGACGTGTACGACCAGTGGTACATGCACGAGATCCCGTTCAACGACCCTCAGATCGTGGACGCGTTCGACACCGCCGGGGAGATCCTCAAGAACCCGGACTACGTCAACGCGGGACTGGGCGGCGTGGACTCGATCGCCACCACGCCGTGGGACCAGGCCGGCGTCGGTGTCCTGGACGGCACCTGCTGGATGTACCGCATGGCCAACTTCTACGCCACGCAGTGGCCGGAGGGGACCGAGGTCGGGTCGGACGGTGACGTCTACGCCTTCTACCTGCCCGGCGACGGGGAGACCCAGCCGATGCTGGGCGGCGGGGAGTTCGTGCTGGCGTTCGAGGACCGCCCGGAGGTGCAGGCGTTCCAGACCTACCTCGCCAGCGCCGACTGGGCCAACCAGAAGGCCATCGCCACGCCCGACGGCGGCTGGATCAGCGCGAACAACGGCCTGGACGTCAACAACCTCGCTACGGAGTTCGACCAGGACGCCGCCGCGATCCTCGCGGACGAGAACACCGTGTTCCGGTTCGACGGCTCGGACCTGATGCCCGGTGAGGTCGGTGCCGGGACCTTCTGGACCGGGATGGTCAACTGGGTGACCGGTTCCTCGACCCAGGAGGTCACCGACCAGATCGAGAACAGCTGGCCGTGAMTRRTTTSARRRLAAVAAGAGLALVLAACGGGDDDGGGGDDMGEGGGGGAAADIDCAAYDEFGDLEGTSVSIYTSIVDPEQTQQENSYDAFEECTGVTVEYEGSREFEAQLLVRIQAGNTPDIAYMPQPGLLNTIVSDFPDAVVEAPEATAANVDEYFSEDWKEYGSVDGTFYAAPLGANAKSFVWYNPAMFADAGYEVPETWDELMELSETIATEQEVLPWCVGFESGDATGWPGTDWIEDVVLRTAGPDVYDQWYMHEIPFNDPQIVDAFDTAGEILKNPDYVNAGLGGVDSIATTPWDQAGVGVLDGTCWMYRMANFYATQWPEGTEVGSDGDVYAFYLPGDGETQPMLGGGEFVLAFEDRPEVQAFQTYLASADWANQKAIATPDGGWISANNGLDVNNLATEFDQDAAAILADENTVFRFDGSDLMPGEVGAGTFWTGMVNWVTGSSTQEVTDQIENSWPPGPT0016395_74DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016395-aglE|ggtB-K10232NANA
AK018_02645990melD_6COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGGACTGGTTGCTGAATCCTGACACGGTCACCCAGAAGTTCGTCGTCATGGGCGTCGGCATCGCGCTGTTCGTCGCGGTGATGAGCCTGATCCTGTTCCTGGTCGACCGGCCGAAGCGCATCCCGTCGTGGGTGGTCGCCGTGGGCTTCGTCGGCCCCGCCCTGCTGCTCATCGCCTACGGTCTGCTGCGTCCGGGGCTCGAGACGCTGTTCAACTCGTTCTTCAACCGCACCACCACGGAGTTCGTCGGGTTCGACAACTACGTGACGATGTTCACCGGTGCGCAGTTCCAGAAGGTGCTCGTCGTGACCGCGGCCTGGGTGATCCTGGCCCCGCTGGTGAGCACGTTCGTCGGGCTGGTCTACGCGGTGCTGGTGGACCGGGCCCGCTTCGAGAAGATCGCCAAGACGCTGATCTTCATCCCGATGGCGATCTCGATGGTCGGCGCCTCGATCATCTGGGGCTTCGTCTACGAGTTCCGGCCCGACCAGCCGGGCATCGAGCAGATCGGTCTGCTCAACCAGCTGCTGGTCTGGCTCGGACTGCCACCCCAGCAGTTCCTCATCGGCGAACCGTGGAACACCGGGTTCCTCATCGTCGTCATGATCTGGATCCAGACCGGTTTCGCCATGACGGTGCTCGCGGCGGCGATCAAGGCCATCCCGGACGACATCGTCGAGGCGGCTCGCCTCGACGGGCTGCACGGGATGGGGATGTTCCGCTACATCACCGTGCCGAGCATCCGGCCGGCCCTCGTCGTCGTCCTGACCACCATCGCCATGACGACGCTCAAGGCGTTCGACATCGTCCGCACCATGACCGGCGGCCAGTTCGGCACCCAGATCGTCGCGAACGAGTTCTACACGCAGGCGTTCCGCCAGAACAACCAGGGACTGGCCGCTGCGCTCGCCGTGGTCCTGTTCATCCTGGTCGTGCCGATCGTCGCCTACAACGTGCGGCAGATGCGTAGGTCGGAGGAGATTCGATGAMDWLLNPDTVTQKFVVMGVGIALFVAVMSLILFLVDRPKRIPSWVVAVGFVGPALLLIAYGLLRPGLETLFNSFFNRTTTEFVGFDNYVTMFTGAQFQKVLVVTAAWVILAPLVSTFVGLVYAVLVDRARFEKIAKTLIFIPMAISMVGASIIWGFVYEFRPDQPGIEQIGLLNQLLVWLGLPPQQFLIGEPWNTGFLIVVMIWIQTGFAMTVLAAAIKAIPDDIVEAARLDGLHGMGMFRYITVPSIRPALVVVLTTIAMTTLKAFDIVRTMTGGQFGTQIVANEFYTQAFRQNNQGLAAALAVVLFILVVPIVAYNVRQMRRSEEIRPGPT0016400_442DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016400-aglF|ggtC-K10233NANA
AK018_02646954araQ_2COG0395L-arabinose transport system permease protein AraQATGAGTACGACGCCGCCCGTTCCCACGACGAACCCCGAGACCGAGGACACCGCTCCGGTCAAGGAACGCAAGCTCACCCGCCTCGAGAAGCGGGCCATCGCCACCAAGGGCCGGCTGACCTCGCCGTGGGCTTCCCTGACCGCGGTGATCCTGGCGATCCTGTGGACGATCCCCACGGTCGGGCTGCTCGTGACGTCGTTCCGGCCGGAGATCGACATCCGCCGCAGCGGCTGGTGGACGGTCATCCCCGGCATCTTCACGGGCGAGACGGAGTTCACGCTCGACAACTACGACCAGGCTCTCTACGGCAGCGGGACGGGACTGTCGGAGGTGTTCATCAACACCTTCGTCATCACGATCCCGGCGGTGATCATCCCGATCACCGTCGCGCTGCTGGCGGCCTACGGGTTCGCGTGGATCGAGTTCCCCGGCCGCAACCTGCTGTTCGTGGCGGTCTTCGCGCTGCAGGTGGTGCCCATCCAGGTCACCCTCGTGCCGCTGCTGACCAACTACAACAACTGGGGCATGGCCGGGTCGTTCTGGGCCGTGTGGTTGTCCCACTCGATCTTCGCGCTACCGCTCGCGGTGTTCCTGCTGCACAACTTCATGAAGGACATCCCGCGCTCGCTCGTCGAGGCGGCCCGCGTCGACGGGGCGGGGCACGTGAAGATCTTCTTCCGCGTGCTGTTCCCGCTGCTCGTGCCGGCCATCGCGGCGTTCGGGATCTTCCAGTTCCTCTGGGTCTGGAACGACCTGCTCGTCGGTCTGACGTTCGCGGCACCGGAGTACCGGCCGCTGACGGTGGCCGTCGCCGAGCTCGCGGGTACCCGCGGCGGTGACTGGCACATCCTGACCGCCGGGGCGTTCATCTCGATGATCGTGCCGCTGATCGTGTTCCTGCTGCTCCAGCGCTATTTCGTGCGCGGGATGCTGGCGGGGGCGGTGAAGGGGTAGMSTTPPVPTTNPETEDTAPVKERKLTRLEKRAIATKGRLTSPWASLTAVILAILWTIPTVGLLVTSFRPEIDIRRSGWWTVIPGIFTGETEFTLDNYDQALYGSGTGLSEVFINTFVITIPAVIIPITVALLAAYGFAWIEFPGRNLLFVAVFALQVVPIQVTLVPLLTNYNNWGMAGSFWAVWLSHSIFALPLAVFLLHNFMKDIPRSLVEAARVDGAGHVKIFFRVLFPLLVPAIAAFGIFQFLWVWNDLLVGLTFAAPEYRPLTVAVAELAGTRGGDWHILTAGAFISMIVPLIVFLLLQRYFVRGMLAGAVKGPGPT0016405_299DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ALPHA-GLUCOSIDE_TRANSPORT,PGPT0016405-aglG|ggtD-K10234NANA
AK018_02647423yhaI_3COG3152Inner membrane protein YhaIATGGGATTCGGCGAAGCCGTCAAGACCGTCTTCGGCAAGTACGCGACCTTCTCGGGACGAGCACGCCGTTCGGAGTTCTGGTGGTTCTACCTGTTCACCGCGCTGCTGAGCATCGTCCTGGGCGTTGTCGTCGCGGTGACCGGAGGCATCAGCGTCGACGCGAGCACGGGCGCCGTGAGCTACGGGGCCACCTACTTCCTGTTCGCCCTCGTCGGCATCGCCCTGATCCTGCCCAGCCTGGCCGTCACGGTGCGCCGCCTGCACGACACGGACCGCTCCGGCTTCTGGTGGTTCATCAGCTTCGTGCCGCTCGTCGGCGGCATCATCCTCCTCGTGTTCATGCTGCTGGACAGCACGCCCCGGCAGAACCGCTTCGGTCACTCCCCCAAGCTCCCGGCCATGCCCGAGAACGGCCGAGTCTGAMGFGEAVKTVFGKYATFSGRARRSEFWWFYLFTALLSIVLGVVVAVTGGISVDASTGAVSYGATYFLFALVGIALILPSLAVTVRRLHDTDRSGFWWFISFVPLVGGIILLVFMLLDSTPRQNRFGHSPKLPAMPENGRVNANANANANA
AK018_02648444yhaI_4COG3152Inner membrane protein YhaIATGTCCATCGACCTGCACGAGGAGCTCGGCATGGGGTTCGGCGAGGCCGTCACGACCGTCTTCGGCAAGTACGCGACCTTCTCGGGGCGGGCGCGCCGCTCGGAGTTCTGGTGGTGGTACCTGTTCGTGCTGCTCGTCAGCATCGCGCTCTCCGTGATCGCGGCCGCCACGGGTGGCTTCACCCTCGACCCGGACACCGGGATGCCCGAGATCGGCGGCATGTACTTCGTGACGCTCCTGGTCGGTCTGGCGCTGCTGCTCCCCAACCTGGCGGTGACCGTGCGCCGTCTGCACGACACCGACCGCTCCGGCCTGTGGTGGTTCATCAGTCTGGTCCCCCTCGTCGGATGGATCATCCTGCTCGTGCTCATGGTGCTGGAGGGAACCACGGGACCGAACCGCTTCGGCCGCGACCCGAGGTACCGGTCCGACCTGCCGAGCTGAMSIDLHEELGMGFGEAVTTVFGKYATFSGRARRSEFWWWYLFVLLVSIALSVIAAATGGFTLDPDTGMPEIGGMYFVTLLVGLALLLPNLAVTVRRLHDTDRSGLWWFISLVPLVGWIILLVLMVLEGTTGPNRFGRDPRYRSDLPSNANANANANA
AK018_02649906hypothetical proteinGTGCCCGACGCGACCTCCCCCGCCCGGCCCGGCTCGCCGCCGTCGGCCCCTGGCGGCCCCGCCGACCGTGTGCCGGCACCGCTGCTGTTCGTCGCCTCCGGACTGACGCTCTACCTGGGGGCGGCCGTCGCGGTCGGTCTCTTCGACACGCTCGGCGCGCCCACGGTGAGCTGGTGGCGGATCGTGCTCGCCGCCGTCGTCCTGGTGGCCTGGCGCCGTCCCTGGCGTCGGCGCTGGACCCGCCAGGAGCTCGTGGGGGCCGGGCTGTTCGGCGTGGCGCTGGCCGCGATGAACATCGTCTTCTACGTCGGCATCGACCACCTGCCGCTGGGTGTGGCGGTCGCGATCGAGTTCACCGGTCCCATCGCCGTGGCCGCGATCACCGGGCGCGGCTGGCGCGAGCGCGGCGCGATCGTCGTCGCCGCGGCCGGCGTGATCCTGCTCGCCGGCGTCACGCTCGAGGGGGACCTGGCCCGGTCGGACGCGCTGGTCGGCCTGGTCGCCGTGCTCGCCGCCGCTGCCTGCTGGGCGGGGTACATCGTGCTCGGCAAGCGCGTGGCCGGCGGCGGGGCGGGGATCGACGGCCTCGCCGTGGGCATGGCGACCGGTGCCGTCGTGTTCGCGCCGTTCTTCGCGGGCTCGGTCACCACGGTGGTCCCGGACCTGCGCCTGCTCGGATTCCTGCTCGTGGTCGCCGTCTGCTCGTCCGTGGTGCCGTACGTGCTCGACCAGGTGGTGCTGCGCCGGATCGGCACGGCGACCTTCGCCGTGCTGCTCGCCCTGCTGCCGGCAACGGCCACCGTGGTCGGCGCCGTCGTCCTGGGGCAGCTGCCGAGCTGGCCGGAGATCGTCGGCCTGGTGCTGGTGTCCGGAGCCATCGCGATGACGGCGACGGGGCGCGAGTAGMPDATSPARPGSPPSAPGGPADRVPAPLLFVASGLTLYLGAAVAVGLFDTLGAPTVSWWRIVLAAVVLVAWRRPWRRRWTRQELVGAGLFGVALAAMNIVFYVGIDHLPLGVAVAIEFTGPIAVAAITGRGWRERGAIVVAAAGVILLAGVTLEGDLARSDALVGLVAVLAAAACWAGYIVLGKRVAGGGAGIDGLAVGMATGAVVFAPFFAGSVTTVVPDLRLLGFLLVVAVCSSVVPYVLDQVVLRRIGTATFAVLLALLPATATVVGAVVLGQLPSWPEIVGLVLVSGAIAMTATGRENANANANANA
AK018_02650510bpa_2Bacterial proteasome activatorATGACGGACGAGCATCCCGGCGAGGCGTCGGCACCGGAGACCGCGGAGACCTCACCCGCCGCACCGGAGACCTCCCGCATCTCCGAGCCGGCCAAGGTCATGCGGATCGGGAGCATGGTCAAGAAGCTCCTCGACGAGGCACGTGCCGCCCCGCTGGACGCCGCGGCGCGCGGGCGGCTCGCCGAGATCCACGAGAGGTCGCTCACCGAGCTGGAGGACGGGCTCTCGGAGGATCTCGTCGCCGAGCTGCACCGCATCACGTTGCCGCTGACCGACCACGACCCGCCGTCGGACGCCGAGCTGCGGGTCGCCCAGGCACAGCTCGTCGGCTGGCTCGAGGGGCTCTTCCACGGCATCCAGACGGCGTTGGTCGCCCAGCAGATGGAGGCGCACCACCAGCTCGACCAGATGCGGCGTCAGCTCCCCCGCGGCGCACGCCCCGGACCGGGTCTCGCGGGCAGGGGGCCGGAGGACGGCGACGACGCCGCGTCGCCGGGCCAGTACCTCTGAMTDEHPGEASAPETAETSPAAPETSRISEPAKVMRIGSMVKKLLDEARAAPLDAAARGRLAEIHERSLTELEDGLSEDLVAELHRITLPLTDHDPPSDAELRVAQAQLVGWLEGLFHGIQTALVAQQMEAHHQLDQMRRQLPRGARPGPGLAGRGPEDGDDAASPGQYLNANANANANA
AK018_02651759ppsC_2Phthiocerol synthesis polyketide synthase type I PpsCGTGGGCGTGTCGGACAGGCGTGTCGGCGACGAGGTCGTCGCCCTGCTCGACGGGGGCGGCTACGCGGAGCAGGTCGTCGTCCGCGCGAGCCAGACCCTCCCCCGACCGGACGGCGTCGATCTGGTCGACGCGGCCGCGCTGCCCGAAGCGGTCTGCACGGCCTGGACGAACCTCGTGGACACCGCGCGGCTGCAGGCGGACGAGACGTTGCTGGTCCTCGGCGGGTCCGGCGGCGTCGGGAGCATGGCCGTCCAGCTCGGCCACGCCCTCGGGGCCCGCGTGGTCGCCACCGCGGGCGGACCCGAGCGCACCGCGCGCTGCCGCGAGCTCGGGGCCGACGTCGTCGTCGACCACCGCGCCGAGGACGTCGTCGACGCGGTACGGGCCGCCACCGACGGCCGGGGCGCCGACGTCGTCCTGGACGTGCTCGGCGGCGGGGCGCTCGGCGACAACGTGCGCGCCCTCGCCCCGGGTGGCCGCCTCGTCGTCATCGGGCTGCAGCAGGGGCGCACCGGCGAGCTCGACCTCGCCCGCCTCATGGCGAAGCGCGCCCTCGTCACCGGGACCCTGCTGCGGTCCCGCAGCCCGCAGGAGAAGGCCGCCATCGTCGAGGCCGTCGGGGAGCACGTGTGGCCGCTCGTCGCCGCGGGCCGGGTCCGCCCGGTCGTGCACGCCCGGCTGCCCTTCGACGAGGCGGACCGGGCCCTGGGGATGCTCGAGTCCGGCGAGGCCTTCGGCAAGGTGCTCCTGCTGCCCTGAMGVSDRRVGDEVVALLDGGGYAEQVVVRASQTLPRPDGVDLVDAAALPEAVCTAWTNLVDTARLQADETLLVLGGSGGVGSMAVQLGHALGARVVATAGGPERTARCRELGADVVVDHRAEDVVDAVRAATDGRGADVVLDVLGGGALGDNVRALAPGGRLVVIGLQQGRTGELDLARLMAKRALVTGTLLRSRSPQEKAAIVEAVGEHVWPLVAAGRVRPVVHARLPFDEADRALGMLESGEAFGKVLLLPPGPT0013255_1720DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_026523987hypothetical proteinATGCTCCGCAGGTTGGGCGTTCGCGGGAAGATCCTGGCGACACTCGCCGTGCCGATCTTCGTCCTGATGCTGGCGGCGGCCTACATCTCCTGGGGCGCGCTGCAGGACGCCGTCAGCGCGGACCAGACGTCCGAGCTCGTGGACAGCCTCGAGGCGCAGGACGCCGCGGGCACCGCGGTGGCGACCGAGCGCGCGCTCGCCATCGCCGCGCTCAACGGTGCCGACGGTGCCATGGAACAGCTCGTCGCCGCGCAGGAGCAGACCGACGAGGCCGTCGACGCCCGCGACGAGGAGCTGCGTGCTCTCGAGACGGACGCCCTGAGCGTCAACGTCCAGGACGCCATCGACGTGACCCTCGAGGACCGGCGCGCGCTCGACGAGCTGCAGCGCAAGGTCATCGCGGGCCAGATCACCGAGACCGCCGCCACCGGTCAGTACACGGACATCATCCAGCGGGCCCTGGACCTCCCCCGCGCGGTGTCGGCGTCCTCCACGGACTCCGGGCTGGCCGAGCTGCTCAACGCCTACGTCGCGATGGACGAGGTGATGCTGGCCAACACGATCGAGCGTCCGATCGTGGGCCTGGCGCTGGCCGACGCCGCCCGCGCGGCGCAGCAGGGCGAGGACCGCGACGGCGAGCTGGTCAGCCGGATGGTCAACGCCATCGAGACCACCGACGAGCTGCAGGTCGCCGCGCAGGCGCAGGCCGACCGCCTCGGCCTGGACATCACGGTCCCGCCGCTCTCCGACGAGCTGGACGAGCTGCGGTTCAAGCTCCGCTACGTGAACTTCTCCTCCATCGAGCCGGAGACCGCGAACAGCTGGTCCGAGCTCTCCGCCGGCTGGATCGACTCCATGCGCCCGGTCCGCGACGAGGTCCGGACCGAGACCGTCAGCTACGCCGCGCAGGCCTCGGCCGACGCGCGCAACCAGGCGATCGGCACGGTCGCCGCCACGTTCGGCATCGTGCTCATCTCGCTGGTCCTGGCGCTGGTCATCGCCCGCCGGATCGTCACGCCGCTGCGGCGCCTGACCGTCGCGACGGCGGACGTGCGCGACCGCCTGCCGCAGATGGTCGAGCAGATGGCGGTGCCGGGCCAGGCACCCGAGATGGACGTGGTCCAGATCCCGGTCGAGTCCACGGACGAGATCGGTCGTCTGGCCAACGCGTTCAACGAGGTCAACGCGACCACGATCGAGGTGGCGCGGGAGCAGGCCGCGCTGCGTGGCTCGATCGCGGAGATGTTCGTCAACGTGGCCCGCCGCGACCAGGTGCTCCTGAACCGTCAGCTCGCGTTCCTCGACGAGCTGGAGCGGTCCGAGGAGGACCCGGGCACGCTGTCCAACCTGTTCCGGCTGGACCACCTCGCGACCCGTATGCGCCGCAACGCCGAGTCGCTGCTGGTCCTGGCGGGCATCGACTCCGGCCGCCGCGTGCGCACCCCGATGCCGATCTCCGACGTCATCCGGACGGCGTCCTCCGAGATCGAGCTGTACGACCGGGTCCGGCTGAACCTGCAGGCCGACCCGCACATGCTCGGCCACAACGCGCTGAACGCGGCTCACCTGCTGGCCGAGCTGCTGGAGAACGCGACGATGTTCTCCGAGCCGCACACCGCGGTCGAGGTCACGGCCTCGCGCGACACGCGCGGCGTCGTCGTCTCCGTCGTCGACCAGGGCCTGGGCATGTCGGCGGCCGAGATCGCCGACGCCAACGCCAAGGTCGCCTCGTCCGCGGCGTCCGACGCCGTCGGCGCCCAGCGCCTGGGCCTGTTCGTGGTCGGCCGCCTGGCGCAGCGTCTGCGCGTCCACGTCGAGTTCGCGAGCGGTCGGGACGGCAAGGGCACGGTCGCGACCGTGACCTTCCCCGACGAGCTCTTCGTGGCCGACGAGGCGATGCCGCTGCCGCAGCCGACCGATCCGCTGGAGGCGTCGACCCAGGCCTCCGTGGCCCAGCTGACGAGCCCGTCGACCGACACCCCGCTGCCGCAGGGCGAGCCGTCGACCGTCCCGGTCCCGGGGGAGGACCACGCGCCGGCGTCGGCTCCCGCGCCGACCGAGCCCGCGCCTGCTCCCGCCCCCGTCGAGCCCGCTCCCGCTCCCGCGCCGGCCGAGCCTGCGCCCGCGGCTCCGGCCCCGGCCACGTCGTCGGTGCAGAGCGTCGCCCCCGAGGCGCCCGAGGTCGAACCGGTCGACATCGCGGCGCTGACGGACGGCACGACCCGCGCCGGCATGCCGCGTCGGCGCCGCTCGGAGACCGCCGCGACGCCGACCGAGGCGATCGTGCTGCCGCCGCTCGAGACGCCGCAGCTCGAGGAGTCGGACCCCGGAGACAGCGCGTGGGCCCCGCCGACCGCGGACGGCTCGGCCGCGGCGTCGCTGCCGAGCCGTCGGCCGTCCCCGACCGGGCCGCCGGAGCCGGAGGCGCAGTCGGGTGCCATCGCGCTGCCCGACGCCGAGCCGACGACGGAGCCCGTGGCTCCGCAGCAGCGCGCGGGCCTGTTCTCCAGCTTCCGGACGATGGACAACCTCGCCGAGAGCACCCTGCAGCTCGACGCGGTGACCGACGACCCGGCCGACGTCCCCGAGCTGGAGACGTCGACGTCCGAGTCGGCCCCGGCCCCGCGGGTCGAGGAGGAGGCGCCGTCCGGCCGCACGGAGTCGGACCAGGTCGTGCCGCCGTCGCCGGTCCCGGCTCCCGCGCCGGCGTCCGCACCGGCTCCTGCACCGGCCCCCGTCCCGGAGCGTCCGACCGCGTCGGAGCCGACGTCCGCGAGCTCGGCTCCCGCGCCGGAGCGGACCGCGGCGACGCCTGCTCCTGCTCCGGCCTGGCAGTCGCCTGCGGAACCGGCCCCGCCCGCCCCGGCCGCACCGGTGGCGGACCACCGACCGGCACCCGCGACGCAGCCCGAGGTGGCCTCGGCCGACTCCGCGCCCGTGGCGTCGAGCACCTCCTTCGCGGCGTTGCCCGCCTTCGAGGAGCTCATGTCGGACCTCCCGACGCGACGCACCGAGGGTGGCTCGTCGACGGCGCACCGCAAGCGTGGGCTGTTCGGTCGCAAGCCGGCCCCCAAGGACGCCCCGGAGTCCGCCGTCGGGTCCGTGGCCCGCGGAGGATCCGCGCAGCCGGTCGGCTCGGCCGGCGGGGTGGACCCGCTGACCGCGCCGACCGCCGACTCCTCGGCGACGCCGTCGACCGTGCCCGCACCCCGTGACGGCGGCCCGGCCCGAGCCGAGGACGCCTCCCAGGACGCCGCCCCGCAGGACGGCTCCGCACCGGTGCCCGCACCGCGTCCCGACGAGCTCCCGCTGCCCTCCGCCCAGCGTCGACCGGCCGACCGGCCGTTCGACGAGGCCTGGGGAGCGACGCGTCCGGCCGGCTCCGCACCGTCGGCGTACTCCCCGCCCGTGGCGGACGAGGTGCCGTTCCGGCCGGAGCCCGCCGCCTCGTCGGCGTCCGCGTCGGCGGAGCCTGCTCCGGCCGCGGGGGAGACCCAGACCGACCCGACGGTGAACGGGGAGCGTCCGTCCCGGACGTCCTACGGCGACTCCGTCCTTCCGCTGCGATCCACCGAGACGGCCGACGTCGACGCGTTCGACCCGCAGGACGTCTCCGACACCGTCGAGGCGCGGTCGGAGTGGATGGCCTCGGCCGTCCTGTACGAGGAGATGTCCACGCTGATGCAGCGCGGCGTCTTCCAGGAAGAGAACGTGACGACGACCAACGAGGAGCAGACCTATCGTCCCGCCAGCGTGGCACCGGCAGCCAACGGGCTGACGCGCCGCGACCGACGCGACGAGACCGTGGAGCCCCCGGAGCGCTTCACCGCCCGTATCGAGCGTGACCCGGAGCAGCTGCGCGCTCGGTTGTCGGCCTTCCAGACCGCCACGGCGCGTGGCCGGTCGGAGACGACCGACGAGGGGGCCTCGACGAATGGGCCCCTGAGCGTGAATGATGTCCAAGGATCGGCTCCGCACCAGCGGTGAMLRRLGVRGKILATLAVPIFVLMLAAAYISWGALQDAVSADQTSELVDSLEAQDAAGTAVATERALAIAALNGADGAMEQLVAAQEQTDEAVDARDEELRALETDALSVNVQDAIDVTLEDRRALDELQRKVIAGQITETAATGQYTDIIQRALDLPRAVSASSTDSGLAELLNAYVAMDEVMLANTIERPIVGLALADAARAAQQGEDRDGELVSRMVNAIETTDELQVAAQAQADRLGLDITVPPLSDELDELRFKLRYVNFSSIEPETANSWSELSAGWIDSMRPVRDEVRTETVSYAAQASADARNQAIGTVAATFGIVLISLVLALVIARRIVTPLRRLTVATADVRDRLPQMVEQMAVPGQAPEMDVVQIPVESTDEIGRLANAFNEVNATTIEVAREQAALRGSIAEMFVNVARRDQVLLNRQLAFLDELERSEEDPGTLSNLFRLDHLATRMRRNAESLLVLAGIDSGRRVRTPMPISDVIRTASSEIELYDRVRLNLQADPHMLGHNALNAAHLLAELLENATMFSEPHTAVEVTASRDTRGVVVSVVDQGLGMSAAEIADANAKVASSAASDAVGAQRLGLFVVGRLAQRLRVHVEFASGRDGKGTVATVTFPDELFVADEAMPLPQPTDPLEASTQASVAQLTSPSTDTPLPQGEPSTVPVPGEDHAPASAPAPTEPAPAPAPVEPAPAPAPAEPAPAAPAPATSSVQSVAPEAPEVEPVDIAALTDGTTRAGMPRRRRSETAATPTEAIVLPPLETPQLEESDPGDSAWAPPTADGSAAASLPSRRPSPTGPPEPEAQSGAIALPDAEPTTEPVAPQQRAGLFSSFRTMDNLAESTLQLDAVTDDPADVPELETSTSESAPAPRVEEEAPSGRTESDQVVPPSPVPAPAPASAPAPAPAPVPERPTASEPTSASSAPAPERTAATPAPAPAWQSPAEPAPPAPAAPVADHRPAPATQPEVASADSAPVASSTSFAALPAFEELMSDLPTRRTEGGSSTAHRKRGLFGRKPAPKDAPESAVGSVARGGSAQPVGSAGGVDPLTAPTADSSATPSTVPAPRDGGPARAEDASQDAAPQDGSAPVPAPRPDELPLPSAQRRPADRPFDEAWGATRPAGSAPSAYSPPVADEVPFRPEPAASSASASAEPAPAAGETQTDPTVNGERPSRTSYGDSVLPLRSTETADVDAFDPQDVSDTVEARSEWMASAVLYEEMSTLMQRGVFQEENVTTTNEEQTYRPASVAPAANGLTRRDRRDETVEPPERFTARIERDPEQLRARLSAFQTATARGRSETTDEGASTNGPLSVNDVQGSAPHQRNANANANANA
AK018_02653450hypothetical proteinGTGACCCTCAGTACTGAAGCGACCAACTTCGGGTGGCTTCTCGACAACTTCGTCCGGACCGTTCCGGGCAGCCGCCACACCCTGGTGGTCTCGGCCGACGGTCTCCTGATGGCGATGTCGGACCAGCTCGACCGGACGAGCGGCGACCAGCTCGCCGCCATCGTGTCGGGGATGTCGAGCCTGACCCGTGGTGCCTCGCGCCAGCTCAACGGCGGCAACGTCCGCCAGGCCATCATCGAGATGGACAACGGGTACCTCTTCCTGATGAACGTCTCGAACGGCTCGGTCCTCGCGGTCGTGGCCGACGGGAACTGCGACATCGGGCTTGTGGGATACGAGATGGCTCTTCTGGTGTCCCGCACGGAGTCGACGCTGACGCCGCAGCTGATCTCCGAGATGCGCGGCAACCTTCCGGTCGACGGCAACCAGCGCTCCGCACAGGTGGGATGAMTLSTEATNFGWLLDNFVRTVPGSRHTLVVSADGLLMAMSDQLDRTSGDQLAAIVSGMSSLTRGASRQLNGGNVRQAIIEMDNGYLFLMNVSNGSVLAVVADGNCDIGLVGYEMALLVSRTESTLTPQLISEMRGNLPVDGNQRSAQVGNANANANANA
AK018_02654417hypothetical proteinATGACGCACGCACCGTTCGGTTCCCTGGGCGCGCAATCCGCGGACGGCTACGAGGCTGCCACGGTGCGTCCCTACGCGGTCACGGGAGGTCGTGTCCGCTCGTCGATGTCCGACCTGCCGCTCGAGGCGCTCGTCGAGGTGATGCCGGGGGCGGTGAGCAGCCACGGTCTGACACCGGAGAAGCGCGCGATCCTGCAGCACGCCGCGCACACCTACGTGTCGATCGCCGAACTGTCGGCGCTGCTCAAGCTCCCCCTCGGTGTGGTCCGCGTGCTGGTCGCGGACATGCAGGAGGAGGGGCACATCACCGTGCACACCTCGGCCCCGGTGAACGTCCACACGGGCCACGGCAGCAACCACTCGGGACTTTCCCTGAGCGTCTTGGAGAGTGTTCTCAATGGCATTTCCGCCCTCTGAMTHAPFGSLGAQSADGYEAATVRPYAVTGGRVRSSMSDLPLEALVEVMPGAVSSHGLTPEKRAILQHAAHTYVSIAELSALLKLPLGVVRVLVADMQEEGHITVHTSAPVNVHTGHGSNHSGLSLSVLESVLNGISALNANANANANA
AK018_02655969hypothetical proteinATGGCATTTCCGCCCTCTGACAGTGCGTCGCCCGCTGGCTCGGGCGGGTTCGCTCCCAGCTGGGCGCCGGTCTCGCAGCCTGCCGGTGCGATGAGCGCGTCGACGGGCGGCGCGGCTCCCTCCGTCGGTGCGAGCGGGGGCCCGGCGCGCCAGAGCGTCCTCGGCGGCGCAGCGTCGGCTCCGGCCGCCCCCGCGGCGTCGGCCGCCCCGCAGCAGGGTGGTGCGGTCGCGGAGAACGAGTCGGCCGCACCCCCCGCTCCGGCGCAGAACCAGCACCCCGCCCCGCCGGCGCAGAGCGCCCCGGCGGCGGAGGCCCCTGCCGCCCCGCAGGCCTCGAGCGGTGCGGCCTCCGCGCCCGCACAGACCGCCGGGCCGGCACAGTCGACGGCGGGCGAGAACAGCGCCGCCCCGACCGTCACGAAGATCGTGGTCGCCGGCGGCTTCGCCGTGGGCAAGACGACGTTCATCGGGTCCATCTCGGACGTCGAGCCGCTGAACACCGAGGCGGCGATGACCGAGCACTCCATGGGTGTCGACGACGCCGGCGGTGTGACCGACCGCAAGACCACGACCACCGTGGCGATGGACTTCGGGCGCGTGTCGCTGCCGGGCAACCTGTGGCTGTACCTGTTCGGCACTCCCGGTCAGGACCGCTTCCTGTTCATGTGGGACGACCTGGTCCGCGGCGCGATCGGTGCCGTGGTGCTCGTGGACACCGACCGCCTCGAGCAGTGCTTCCCGGCGATCGACTACTTCGAGTCGCGCGGCGTCCCGTTCGTCGTGGGTGTCAACTGCTTCGACGGCGTCGCCAAGCACCGCCTCGAGGACGTGCGGGAGGCGCTGCAGATCCCGGCGCACGTGCCGATGCTCTACACCGACGCGCGGTCGCGTGCGGCGACGAAGCAGACGCTGATCTCTCTGGTGCAGCTCGCGATGCGGCAGCTGCGATCGGGCAGCCAGCCGGCCTGAMAFPPSDSASPAGSGGFAPSWAPVSQPAGAMSASTGGAAPSVGASGGPARQSVLGGAASAPAAPAASAAPQQGGAVAENESAAPPAPAQNQHPAPPAQSAPAAEAPAAPQASSGAASAPAQTAGPAQSTAGENSAAPTVTKIVVAGGFAVGKTTFIGSISDVEPLNTEAAMTEHSMGVDDAGGVTDRKTTTTVAMDFGRVSLPGNLWLYLFGTPGQDRFLFMWDDLVRGAIGAVVLVDTDRLEQCFPAIDYFESRGVPFVVGVNCFDGVAKHRLEDVREALQIPAHVPMLYTDARSRAATKQTLISLVQLAMRQLRSGSQPANANANANANA
AK018_026571734choD_2COG2303Cholesterol oxidaseATGACGCGCACCACAGACGGTGAGGACTACGACGTCCTGGTCATCGGCTCCGGGTTCGGCGGCAGCGTGGCCGCGCTCCGCCTCACCGAGCGCGGGTACCGCGTCGGTGTCCTGGAGGCCGGGCGCCGGTTCGCGGACGACGAGTTTCCCCGCACGTCCTGGGACCTGCGTCGATTCCTCTGGGCACCGGCCCTCGGATGCTTCGGGATCCAACGCATCCACCGGCTGCGCGACGTCGTGGTGCTGGCGGGAGCAGGCGTCGGCGGCGGGTCGCTCGTCTACGCCAACACGCTGTACCGGCCCGTCGGACGCTTCTGGCAGGACCCGGCCTGGCGAGGCATCACCGACTGGGAGGCCGAGCTCGACCCGTACTTCGACCAGGCCGAGCGCATGCTCGGCGTCGTGGACTACTCCCGCACCACGCCCGCCGACGAGGTGATCCGCGACGTCGCCGCGCAGATGGGCGTCGGTGCGACGTGCCGCACCGCCCGCGTCGGCGTGCACCTCGGGGATCCTGCGACGACGGAGCCGGGTGCCGCCCGGCCGGACCCCTACTTCGGCGGCGCGGGGCCCGACCGCCACACCTGCCTGCACTGCGGCGAGTGCATGACGGGGTGCCGGCACGACGCCAAGAACACCCTCGTGAAGAACTACCTGCACCTGGCCGAGCGGGCAGGCGCCCAGGTGCACGCCCTGACCACAGCCACCGCCGTAGTCCCCCGGTCCGACGGCGGCTACACCGTCCGGACGCACCGCACCGGGCACCCCTGGTCACGACGCCGGGCACTGCGCGCCGGGCAGGTCGTCCTCGCGGCCGGCACGCTCGGGACGCAGCGACTGCTGCACGCGATGCGCGACGACGGCACGCTCCCCCGGCTGTCCGACCGCCTCGGCGAGCTCACCCGCACCAACTCCGAGGCGCTGCTCGGGGCGGTGCGCCCACCCGGCGGACCGGACGCGCCCGACTACTCCCGCGGCGTCGCGATCACCTCGGAGTTCGCACCCGACGCCGACACGCACGTCGAGCCGGTCCGCTACGGCCACGGATCGAACGCGATGGGTCTCCTGCAGACCGTGCTGGTCGACGGCCGGCGCCGTCCCGACGACCGTCCGCGGCTCCGGCGCTGGCCGGCCGAGCTGTGGCGACAGCGTCGGCATCTGCCCACGCTGCTGAACCTGCGCGGTTGGTCGCGCCGGACGGTCATCGCCCTGGTGATGCAGAACCGCGACAACTCCCTGACCACGGTCACCCGGCGGGGGCTGTTCGGCCGCCGACTGACGTCCCGCCAGGGCACGGGCGAACCGAACCCGACCTGGATCCCGGTCGCCCACGACGTCGTGCGGGCCATGGCCGACCGGATGGGCGGGGTGGCCGGCGGGGGCATCGGCGACCCGTTCGACGTCCCGATGACCGCGCACATCCTCGGCGGGTGCACCATCGGGGTCTCGGCGGAGTCCGGGGTGATCGACCCCTACCACCGCGTGCACGGGTATCCCGGTCTCCACGTCGTCGACGGCTCGGCCGTGACCGCCAACCTCGGGGTCAACCCGTCGCTGACGATCACCGCCATGGCCGAGCGCGCCTGCGCACTCTGGCCCAACCGGGACGAGCCCGACCGCCGGCCCGCCCCCGGCAACGCCTACACCCCGGTCGCGACGACCGCTCCCCGGCGACCGGCCGTGCCGCCGACGGCACCGGGGGCCCTGCGGCTGCCCCTCGTCGAGATCCGTTGAMTRTTDGEDYDVLVIGSGFGGSVAALRLTERGYRVGVLEAGRRFADDEFPRTSWDLRRFLWAPALGCFGIQRIHRLRDVVVLAGAGVGGGSLVYANTLYRPVGRFWQDPAWRGITDWEAELDPYFDQAERMLGVVDYSRTTPADEVIRDVAAQMGVGATCRTARVGVHLGDPATTEPGAARPDPYFGGAGPDRHTCLHCGECMTGCRHDAKNTLVKNYLHLAERAGAQVHALTTATAVVPRSDGGYTVRTHRTGHPWSRRRALRAGQVVLAAGTLGTQRLLHAMRDDGTLPRLSDRLGELTRTNSEALLGAVRPPGGPDAPDYSRGVAITSEFAPDADTHVEPVRYGHGSNAMGLLQTVLVDGRRRPDDRPRLRRWPAELWRQRRHLPTLLNLRGWSRRTVIALVMQNRDNSLTTVTRRGLFGRRLTSRQGTGEPNPTWIPVAHDVVRAMADRMGGVAGGGIGDPFDVPMTAHILGGCTIGVSAESGVIDPYHRVHGYPGLHVVDGSAVTANLGVNPSLTITAMAERACALWPNRDEPDRRPAPGNAYTPVATTAPRRPAVPPTAPGALRLPLVEIRPGPT0006645_257DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_CHOLESTEROL_DEGRADATION_,PGPT0006645-choD-K03333NANA
AK018_02660900atpG_1ATP synthase gamma chainATGGCCGGAGGATCCCAGCGCGTCTACAAGCAGCGGATCAAGTCGACGCAGTCGCTGAAGAAGATGTTCCGCGCGCAGGAGCTGATCGCGGCGTCCCGCATCGGCAAGGCTCGCGGCCGGACGGCTGCCGCCGCGCCGTACGAGCGAGCGATCACGCGCGCCGTGTCGGCCGTGGCGACGCACACCTCGACCGATCACCCGCTGACCACCGAGCGCACCGACACCGACCGCGTCGCGGTGCTGGTCATCGCCTCGGACCGTGGCATGGCCGGGTCCTACTCGGCCGCCATCATCCGCGAGTCGGAGCGGCTCGTGGCCCGGCTGACGGCCGAGGGCAAGCAGGTCTCGCTCTACGCCGCCGGGCGTCGCGCGATCTCGTACTACAAGTACCGGGACCGCGAGCTGGCCGGTCAGTGGTCCTACGGGTCCGACAGCCCGGAGTCCGAGGTGGCCGGCGACATCGCCGACACGCTGCTCGGTGCCTTCCTGGCCCCGGAGGCCGAGGGGGGCGTCAGCGAGCTGCACGTCGTCTACACGCAGTTCGTGAACATGGTGACCCAGCGCCCGCGGGTCGTGCGCATGCTCCCGCTCGAGGTCGTCGAGGGCGTCGCGACGCCCGGCGAGCACGACGCGCTGCCGCTGTACGACTTCGAGCCGTCGCCGGAGAGCGTCCTGGACGCCCTGCTGCCGCGGTACGTGCGCAGCCGCATCTTCAGCTTCATGCTGGAGGCGGCGGCGTCCGAGCTGGCGTCGCGCCAGCGTGCGATGCACACCGCGACGGACAACGCCGAGGACATCATCCGCAACTACACGCGCCTGGCGAACCAGGCCCGCCAGGCGGACATCACCCAGGAGATCAGCGAGATCGTCTCGGGTGCTGACGCCCTCGCGGCGTCGTGAMAGGSQRVYKQRIKSTQSLKKMFRAQELIAASRIGKARGRTAAAAPYERAITRAVSAVATHTSTDHPLTTERTDTDRVAVLVIASDRGMAGSYSAAIIRESERLVARLTAEGKQVSLYAAGRRAISYYKYRDRELAGQWSYGSDSPESEVAGDIADTLLGAFLAPEAEGGVSELHVVYTQFVNMVTQRPRVVRMLPLEVVEGVATPGEHDALPLYDFEPSPESVLDALLPRYVRSRIFSFMLEAAASELASRQRAMHTATDNAEDIIRNYTRLANQARQADITQEISEIVSGADALAASPGPT0014297_1337DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014297-atpG-K02115NANA
AK018_026611629atpA_1ATP synthase subunit alphaATGGCTGAGCTGACGATCCGGCCGGAGGAGATCCGCGCCGCACTGGACAGCTTCGTGAAGTCCTACGAGCCCGAGGGAGCGGCGACCGAGGAGGTCGGCCGCGTGACCTTCGCCGCCGACGGCATCGCGAACGTCGAGGGCCTGCCCGGCGCGATGGCGAACGAGCTGCTGCGCTTCGAGGACGGCACGCTCGGCCTCGCGCAGAACCTGGACGTCCGCGAGATCGGTGTCGTCGTCCTCGGTGAGTTCACCGGGATCGAGGAGGGCCAGGAGGTCCGTCGCACCGGCGAGGTGCTCTCGGTCCCCGTGGGCGAGGGCTACCTGGGTCGCGTCGTCGACCCGCTGGGCAACCCGGTCGACGGTCTCGGCGACATCGAGTCCGAGGGCCGCCGCGCCCTCGAGCTGCAGGCGCCCGGCGTCATGCAGCGCAAGTCGGTCCACGAGCCCCTGCAGACCGGCATCAAGGCGATCGACTCGATGATCCCGGTCGGCCGGGGTCAGCGTCAGCTGATCATTGGCGACCGCCAGACCGGCAAGACCGCGATCGCGATCGACACGATCATCAACCAGAAGGCCAACTGGGAGTCCGGCGACCCGGACAAGCAGGTGCGCTGCATCTACGTCGCCGTCGGCCAGAAGGGCTCGACCATCGCCTCGGTGCGCGGCGCGCTCGAGGACGCCGGCGCACTGGAGTACACGACGATCGTGGCCGCCCCGGCGTCGGACCCGGCGGGCTTCAAGTACCTCGCCCCGTACACCGGTTCGGCCATCGGCCAGCACTGGATGTACGCCGGCAAGCACGTGCTGATCATCTTCGACGACCTGTCGAAGCAGGCCGAAGCCTACCGCGCCACGTCGCTGCTGCTGCGCCGCCCGCCGGGCCGCGAGGCCTACCCGGGTGACGTCTTCTACCTGCACTCCCGGCTGCTGGAGCGCTGCGCCAAGCTCTCCGACGAGATGGGCGCGGGCTCGATGACCGGTCTGCCGATCATCGAGACCAAGGCGAACGACGTGTCGGCCTACATCCCGACCAACGTCATCTCCATCACCGACGGGCAGATCTTCCTGCAGTCCGACCTGTTCAACGCCGACCAGCGCCCCGCCGTCGACGTCGGCATCTCGGTGTCCCGAGTCGGCGGTGACGCGCAGGTCAAGGCCATGAAGAAGGTCTCCGGCACGCTGAAGCTCGAGCTGGCGCAGTACCGCTCGCTCGAGGCCTTCGCGATGTTCGCCTCGGACCTCGACGCGGCGTCGCGCGGCCAGCTGGCCCGCGGTGCGGTGCTCATGGAGTTGCTCAAGCAGCCCCAGTACACCCCGTACCCGGTCGAGGAGCAGGTCGCCTCCATCTGGGCCGGCACCAAGGGCAAGCTGGACGACGTGCCCGTCGCGGACGTCAAGCGGTTCGAGTCCGAGCTGCTGGAGCACCTGCGCCGCAACACCGACGTCTTCAGCACCATCACGGAGACCGGCAAGCTCGAGCAGGAGACCGAGGACGCCCTGGCCGCGGCCGTGGAGGACTTCCGCAACGGGTTCCTCAAGGGCGACGGCTCGGCGCTCGTCGGCGGCGAGGACGTGTCCGGGGACACCGACGTCGAGCAGGAGCAGCTCGTCGTGCAGAAGAAGGGCTGAMAELTIRPEEIRAALDSFVKSYEPEGAATEEVGRVTFAADGIANVEGLPGAMANELLRFEDGTLGLAQNLDVREIGVVVLGEFTGIEEGQEVRRTGEVLSVPVGEGYLGRVVDPLGNPVDGLGDIESEGRRALELQAPGVMQRKSVHEPLQTGIKAIDSMIPVGRGQRQLIIGDRQTGKTAIAIDTIINQKANWESGDPDKQVRCIYVAVGQKGSTIASVRGALEDAGALEYTTIVAAPASDPAGFKYLAPYTGSAIGQHWMYAGKHVLIIFDDLSKQAEAYRATSLLLRRPPGREAYPGDVFYLHSRLLERCAKLSDEMGAGSMTGLPIIETKANDVSAYIPTNVISITDGQIFLQSDLFNADQRPAVDVGISVSRVGGDAQVKAMKKVSGTLKLELAQYRSLEAFAMFASDLDAASRGQLARGAVLMELLKQPQYTPYPVEEQVASIWAGTKGKLDDVPVADVKRFESELLEHLRRNTDVFSTITETGKLEQETEDALAAAVEDFRNGFLKGDGSALVGGEDVSGDTDVEQEQLVVQKKGPGPT0014298_595DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014298-atpA-K02111NANA
AK018_02662816atpH_1ATP synthase subunit deltaATGCGAGGCACGAGCGGAGCATCGCTGGCAGCCGCCCAGGAGCGGTTCGAGCCGGTGCTGCGGTCGGCGGGTGCCGACGCCACCACGCTCGGCGAGCAACTGTTCGTCGTCGTGACCGCGTTGGACGGGTCCGGTGCGCTGCGCCGCTCGCTCGCCGACCCCTCGCGGGAGGGCGACGACAAGGCCCAGGTGGTCCGTACCGTCCTGGCGGGCGGCTTCGACGAGCGCGTGATCGACCTGGTCTCCGGACTGGCCCGGTCACGGTGGTCGAGCGAGGCCGACCTGACGGACGCCCTCGAGCGGCTCGGCGTCGACGCCGTGCTCGCCGGTGCGGAGGCCAGGCAGGCCCTCGAGACGGTGGAGGACGAGCTGTTCCGGCTCACGCGGGCCCTCGCGGGACAGCGTGACGTGCGGCAGGCGCTCTCCGACCCGACGACCGAGGCGTCCCGTCGTGCCGCCCTGGTGGACGACCTGCTGGACGGCAAGGTCGACCAGGTCACGCTCGTGCTGGCCCGCCGTGCGACCACCGCTCCGCGGGGTCGCCGGTTCGTGCCGAGCCTGACCTGGTTCGGCGACGTCGCGGCCGAGCGTCGTCACCGTCTCGTGGCCTCCGTCACGAGCGGCTCGGTCCTCACCGCGGCGCAGGAGGAGCGGCTCGGGGGCATCCTCGAGCGCGCCTACGGCCGTCCCGTGCAGCTCAACGTGACGGTCGACCCGGCCGTCGTCGGCGGGCTGCGAATCCAGGTCGGCGCGGACGTCGTCGACTCCACCGTGCTGACCCGCCTGGCCGACGCCCGTCGCCGGCTGGCCGGCTGAMRGTSGASLAAAQERFEPVLRSAGADATTLGEQLFVVVTALDGSGALRRSLADPSREGDDKAQVVRTVLAGGFDERVIDLVSGLARSRWSSEADLTDALERLGVDAVLAGAEARQALETVEDELFRLTRALAGQRDVRQALSDPTTEASRRAALVDDLLDGKVDQVTLVLARRATTAPRGRRFVPSLTWFGDVAAERRHRLVASVTSGSVLTAAQEERLGGILERAYGRPVQLNVTVDPAVVGGLRIQVGADVVDSTVLTRLADARRRLAGPGPT0014299_547DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014299-atpH-K02113NANA
AK018_02663591atpF_1COG0711ATP synthase subunit bATGGCGGCGGCGAACTTCGCCGCCCCGGTGATCGTGGCGGCCGAAGAGACGACGGCGGAGGGGATCGACCTCTTCATCCCCGCCTGGTACGACATCATCTGGTCGTCGGTCGTCATGATCGTCATCGCCGTCGTGTTCTACAAGGTCGTGCTCCCCAAGTTCCAGGTCGTCCTGGACGAGCGCACCGCGAAGATCGAGGGCGGTCTGGCCAAGGCCGAGAAGGCGCAGGAGGAGGCGGCAGCGGCGCTGGCGGAGTACCACCAGCAGCTCGCCGAGGCCCGCTCCGAGGCGGCCAGGACGCGTGAGGAGGCTCGGGCCGAGGGCACCGCCATCGTGGCCGAGCTCAAGGCCAAGGCGAACGACGAGGCGGCACGTATCGTCGAGACCGCGCACCGTCAGATCGAGGCCGAGCGGCAGTCCGCCGCGGTCTCCCTGCGGTCCGAGGTCGGGACCCTGGCCACCGAGCTCGCGTCCAAGATCGTCGGCGAGTCCCTCGAGGACAGCGCCCGGCAGTCGCGCGTGGTCGACCGGTTCCTCGACGAGCTCGAGGCCGAGCAGTCCGCGACGACGAACGCCACCAGGGAGGGCTGAMAAANFAAPVIVAAEETTAEGIDLFIPAWYDIIWSSVVMIVIAVVFYKVVLPKFQVVLDERTAKIEGGLAKAEKAQEEAAAALAEYHQQLAEARSEAARTREEARAEGTAIVAELKAKANDEAARIVETAHRQIEAERQSAAVSLRSEVGTLATELASKIVGESLEDSARQSRVVDRFLDELEAEQSATTNATREGPGPT0014301_956DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014301-atpF-K02109NANA
AK018_02664237atpH_2ATP synthase subunit cGTGGACGTCACCACCCTCGCCGAGGTCACCGGTAACCTCAACGCTGTCGGCTACGGCCTCGCCGCGGTCGGCCCGGGCATCGGTCTCGGCATCCTCATCGGCAAGACCATCGAGGGCATGGCCCGCCAGCCCGAGGTCGCCGGCCAGCTGCGCGCCACCATGTTCCTCGGTGTCGCGTTCGTCGAGCTCCTCGCCCTGCTCGGCCTCGTCGCCGGCTTCCTCTTCCCGGCCGCGTGAMDVTTLAEVTGNLNAVGYGLAAVGPGIGLGILIGKTIEGMARQPEVAGQLRATMFLGVAFVELLALLGLVAGFLFPAAPGPT0014302_2006DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014302-atpE-K02110NANA
AK018_02665849atpB_1ATP synthase subunit aGTGCCGAACGACCTTCGACCACCGGGAGTCCTCCTGTTCACCTCAGCGACCCCCACGCTGCTCGCCGCCTCCGAGGGTGAGGGCGGCTTCCACGTGCCGTCCATCGACGAGTTCTTCCCGCCGGCGATCCTCTTCGAGGACACGATCTTCCAGATCGACCGCATCTGGATCATCCGCATCGTCGCGGCGGCCGTGCTCCTCACGGTCTTCGTGATCGCCGCTCGTCGGGCCAAGCTCGTGCCCGGGCGGTTCCAGGGCGCGATCGAGATGATCCTCGACTTCGTCCGCGTCCAGATCGCCGAGGAGATCCTCGGCAAGACGAACGCCCGGCGCTTCGTCCCGATGCTGACGACGATCTTCCTGTCGATCCTCGCGTTCAACATCACGGGCATCATCCCGTTCCTCAACATGGCCGGCACCGCCCGCATCGGTCTGCCGATCGTCCTCGCCCTGTGGGTCTTCGTGACCTACTGGTGGGTCGGCGTCAGCAAGCATGGGCTCGGCGGCTACCTGAAGAACAACCTCTTCCCGCCCGGGATCCCGTGGCCGATCTACATCATCGTCACGCCGATCGAGCTGCTGCAGATCCTCGTGGTCCGGCCGGCCTCGCTCGCGCTGCGACTCGCGGCCAACATGATCGCCGGGCACATCATGCTCGTGCTCTGCTTCGCGGCGACGCACTTCTTCCTCCTCGAGGCGGCACCGGCCCTGAAGGCCATCGGCGCGCTCACGCTCGCCGGCGGCTTCGCGGTCACCCTGTTCGAGATCCTGGTCGCGCTGCTGCAGGCGTACATCTTCGCCCTGCTCGCCGCGGTCTACATCAGCCTGTCGCTGGAGGAGGAGCACTGAMPNDLRPPGVLLFTSATPTLLAASEGEGGFHVPSIDEFFPPAILFEDTIFQIDRIWIIRIVAAAVLLTVFVIAARRAKLVPGRFQGAIEMILDFVRVQIAEEILGKTNARRFVPMLTTIFLSILAFNITGIIPFLNMAGTARIGLPIVLALWVFVTYWWVGVSKHGLGGYLKNNLFPPGIPWPIYIIVTPIELLQILVVRPASLALRLAANMIAGHIMLVLCFAATHFFLLEAAPALKAIGALTLAGGFAVTLFEILVALLQAYIFALLAAVYISLSLEEEHPGPT0014303_2179DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014303-atpB-K02108NANA
AK018_02666477hypothetical proteinATGACCGAGCAGAACGCCACTCCGGACCCGCAGGGCGACCCGGCTGAGGTGCCCGGGCGGACCTTCGACGAGGTGCAGGCCTCGGAGCGCACGATGCTGCGCCGCGCGATGCGGTCGACGCTGGCCCTGGTGGGCGGGCTCGTCGTGATCGGGGGACTGGTGGGCTGGCTCGTGGCCGGGACGGCGGGCCTGTGGGGCGCCCTGGTGGGCGCGGGCCTGGCCGCGTTCTTCTGCGCGACGACGATCTGGTCGATGCAGCGCACGGTCGGCAAGTCCCCGACGACGATGGCGGCGACGGTGATGGGCGCGTGGCTGGCGAAGATCGTGGTGCTCGTCGTCGTGCTCGTGCTGCTGCGTGGAGCGGACTTCTACGACCCGTACGTGCTCTTCGTGGTCCTGGCCGTCGGTGCGGTGGGCTCGGCGCTGCTGGACTACCAGGCGGTGCGGGGCGCGCGCATGCCGTACGTGCAGCCGTGAMTEQNATPDPQGDPAEVPGRTFDEVQASERTMLRRAMRSTLALVGGLVVIGGLVGWLVAGTAGLWGALVGAGLAAFFCATTIWSMQRTVGKSPTTMAATVMGAWLAKIVVLVVVLVLLRGADFYDPYVLFVVLAVGAVGSALLDYQAVRGARMPYVQPNANANANANA
AK018_026671272wecA_1COG0472Decaprenyl-phosphate N-acetylglucosaminephosphotransferaseGTGAGGGTCTACGTCCTGGTCATGCTCGTCGCGGCCGCGGTGACGTACCTGGCGACGCCGGGTGCCCGCTGGGTCGCCCGCCGCACCAACGCGATCTCGGCGGTCCGGGCCCGTGACGTCCACGTGCAGCCGACACCGCGGCTCGGTGGTCTGGCGATGCTGCTCGGGATCGTCGTGGCGGTTCTCCTGGCGTCGCAGATGCCGTTCCTCGAGGACGTCTTCGCGGACCGCCAGGTGATCGGCATCGTCGGCGGCGCGGCCATCGTGTGCCTGCTGGGCTGGGCCGACGACGTGTGGGACCTGGACTGGATGACCAAGCTGGCCGGGCAGATGCTCGCGGCCGGCTTCGTCGCCTTCAACCAGGTCCAGCTCGTCTGGCTGCCGACCCCGGGAGGGCTGACGATCCCGTCGGCGCGGCTGTCGTTGTTCCTCACGGTGCTCGTGATCGTGGTCGCGATGAACGCGGTGAACTTCGTCGACGGGCTGGACGGGCTGGCAGCCGGCATCGTCGCCATCGGCGCCTCGGCGTTCTTCCTCTACACGTACTCGTTGACGCAGCAGGCCAGCCCGGAGAACTACGCGAGCATCGCCACGCTGATGACAGCGGTGCTGGTGGGGATCTGCCTGGGCTTCCTGCCGCACAACTTCTACCCGTCGCACATCTTCATGGGCGACTCGGGCTCGATGGTCCTGGGGCTCGTGTTCGCCGGGGCGGCCATCTCCGTGATCGGCCGGTTCGACCCCACGCTGGTCGCGATCTCCGGTGCGCAGCGCGCCCCGCTGTTCATCCCGCTGGTGCTGCCCGTCGCGGTCGTGCTGCTGCCGCTGCTGGACATGACGATGGCGGTGGTCCGGCGGCTCGCGGCCGGCAAGTCCCCGATGGCTCCGGACCGGCTGCACCTGCACCACCGCATGCTGGCCCTGGGCCACTCGCACCGGCGCGCCGTGCTGATCCTCTACGTGTGGACCGCCGTGTTCGCCTTCGGTGCCGCCGCGCTCGTGCGGTGGCGCTGGCAGGTGGTGCTGGTGTGGCTGGCCGTCGCGATCGTCGTCGCCTTCGTGCTGACGCTGGGTCCGCTGCGGACCCGCGGGCGGTTCCTGGACGACGACGTCGCCTCCGGCACGCTGCCCGTCGCCACGTCCGCGCCGTCGTCGCGCACCGTCCGCGCGACCGCACCCTCCTCGACCCGGGTGTCGAGCCCCGTCCCGACCAAGGAGCACGACCATGACCGAGCAGAACGCCACTCCGGACCCGCAGGGCGACCCGGCTGAMRVYVLVMLVAAAVTYLATPGARWVARRTNAISAVRARDVHVQPTPRLGGLAMLLGIVVAVLLASQMPFLEDVFADRQVIGIVGGAAIVCLLGWADDVWDLDWMTKLAGQMLAAGFVAFNQVQLVWLPTPGGLTIPSARLSLFLTVLVIVVAMNAVNFVDGLDGLAAGIVAIGASAFFLYTYSLTQQASPENYASIATLMTAVLVGICLGFLPHNFYPSHIFMGDSGSMVLGLVFAGAAISVIGRFDPTLVAISGAQRAPLFIPLVLPVAVVLLPLLDMTMAVVRRLAAGKSPMAPDRLHLHHRMLALGHSHRRAVLILYVWTAVFAFGAAALVRWRWQVVLVWLAVAIVVAFVLTLGPLRTRGRFLDDDVASGTLPVATSAPSSRTVRATAPSSTRVSSPVPTKEHDHDRAERHSGPAGRPGPGPT0015240_318DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISMCE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015240-wecA|tagO|rfe-K02851NANA
AK018_02668696COG0009Putative threonylcarbamoyl-AMP synthaseGTGAGCAGCGTGCGCGACGTCACCGACGCCAACACCTGGGGCCCCGCGATCGACGAGGCCGTGAACACCGTCTCCCGCGGGGGCCTCGTCGTCCTGCCGACGGACACCGTCTACGGCATCGGCGCCGACGCCTTCGACGCCGAGGCGGTGGCCGCCCTCCTGGCGGCCAAGGGCCGCGGACGGCAGATGCCGCCGCCCGTCCTGGTGCCCGACACGCGGACGGTCGACGGCCTGGCGGTCGACGTCTCCGACGACGCCCGAGCCCTCATCGAGGAGTTCTGGCCCGGAGGGTTCACGATCATCCTGCGCTCCCAACCCTCCCTGCACTGGGACCTGGGGGAGACGCACGGCACGGTGGCGCTGCGCATGCCCGACCACGAGGCGGCGCTCGCGCTGCTGCGGCGCACCGGGCCGCTGGCGGTCTCCAGCGCGAACCGGACGGGCGGCCCGGCGGCGACGGAGGTCGCCTCCGCTGTCGACCAGCTCGGGGACGCCGTGACCTGCTACCTCGACGGCGGGACGGCACCCGGTGGTGTCGCCTCGACGATCGTCGACGCGACCGGCGCGACGCTGCGTGTCGTGCGCGACGGCGCGATCCCGCTGGAGGCGTTGCGTCAGGTCGCGCCGGTGCTGGGCGTCGACGAGGTGCCGGAGGCCGCCGGTGCGGACGACGCCGCGGGGGAGCCCGCCGGGTGAMSSVRDVTDANTWGPAIDEAVNTVSRGGLVVLPTDTVYGIGADAFDAEAVAALLAAKGRGRQMPPPVLVPDTRTVDGLAVDVSDDARALIEEFWPGGFTIILRSQPSLHWDLGETHGTVALRMPDHEAALALLRRTGPLAVSSANRTGGPAATEVASAVDQLGDAVTCYLDGGTAPGGVASTIVDATGATLRVVRDGAIPLEALRQVAPVLGVDEVPEAAGADDAAGEPAGNANANANANA
AK018_02669921prmC_3COG2890Release factor glutamine methyltransferaseGTGGGCGAACGCGTCGACCTGCTGCTGCGGCGTGCCGCCGAGGACCTGGCTGCCGCCGGTGTCCCCTCGCCGCGCCCGGACGCCGAGCTGCTCCTGGCACACGTCCTCGGCGTGCCGCGCGGGGAGGTGCGGCGTCGCGCGCTGCTCGGCAGCGAGATGTCCGACGGCGCAGGTCCGGAGTCCGTCGCGGCCCGGTTCGCGCGGCTGGTGCGACGTCGTGCCGACCGTGAACCGTTGCAGCACCTGACCGGGACGGCACCGTTCCGGCACGTGGAGCTCGCTGTCGGGCCCGGGGTGTTCGTCCCGCGTCCGGAGACCGAGCAGGTGGCGCAGGTGGCTGTCGACGCGGCGGCCGAGGCGATCTCCACGCGGGGGAGCGCCGTCGTCGTCGACCTGTGCACCGGGTCGGGGGCGATCGCGCTCTCCGCGGCGACCGAGGTGCCCGGTGCGCAGGTGCACGCCGTCGAGCTGGACGCCACCGCGCACGGCTGGGCGGCGCGGAACCTCCGCGGCTCCCGGGTGCACCTCGTCCGTGGCGACGCCCGCACCGCGCTGTCCGACCTGGACGGGAGCGTCGACGTCGTCGTCTCCAACCCGCCGTACGTGCCGTCCGACGCCGTGCCGCAGGAACCCGAGGTCGCCCGGCACGATCCCGCGGTCGCGCTCTACGGGCTCGGCGCCGACGGGCTCGAGGTGCCGCGCGGCATCGTCGCGGCGGCGGCCCGGCTGCTGCGTCCGGGGGGACTGCTGGTCATGGAGCACGCCGAGGTCCAGGCGGCGGCCGCGAGGTCCCTCGTCGCGGACCACGGGTTCGTGGACGTCGGGACCCGCCCGGACCTGTCCGGCCGCGACCGGATGGTCGTGGCCCGGCGGCCGCGCGCGCCGGAGCAGGCCGGAACCGTGACAGACTGGCCCGCGTGAMGERVDLLLRRAAEDLAAAGVPSPRPDAELLLAHVLGVPRGEVRRRALLGSEMSDGAGPESVAARFARLVRRRADREPLQHLTGTAPFRHVELAVGPGVFVPRPETEQVAQVAVDAAAEAISTRGSAVVVDLCTGSGAIALSAATEVPGAQVHAVELDATAHGWAARNLRGSRVHLVRGDARTALSDLDGSVDVVVSNPPYVPSDAVPQEPEVARHDPAVALYGLGADGLEVPRGIVAAAARLLRPGGLLVMEHAEVQAAAARSLVADHGFVDVGTRPDLSGRDRMVVARRPRAPEQAGTVTDWPANANANANANA
AK018_026701092prfA_1COG0216Peptide chain release factor 1GTGACCGAGGACTTCGCGGTGGCGCAGCCGCTGCTCGCCGAGCACGCGGAGATCGAGAGCGCCCTCGCTGATCCCTCGGTGCACGCCGACGCCGGCCGCGCCCGCACGCTGGGACGCCGGTACGCGGAGCTCAACCGCGTGGTCGGCGCCTACCGCGCCTGGCGGAGCGCGCACGACGACGCGGCCGCCGCGGCGGAGCTCGCCGACGAGGACGAGTCGTTCGCGGCCGAGCTGCCGGAGCTGACCGCTGCGGAGGACGAGGCCGCCGAGCACCTGCGCCGCGTGCTGGTCCCGCGCGACCCCGACGACGGACGCGACGTGATCCTGGAGATCAAGGCCGGCGAGGGCGGCGACGAGTCGGCGCTGTTCGCGGGCGACCTGCTGCGCATGTACCTGCGGTTCGCGGAGCGGCGCGGCTGGGCCACCCAGGTGCTGGAGTCCACGGAGACCGAGCTCGGCGGGTTCAAGGACGTCCAGCTCGCGATCAAGACGCGGGGCAACCTCGAGGACCCCGCCGACGGCGTGTGGGCCAACCTCAAGTACGAGGGCGGGGTGCACCGCGTCCAGCGGGTGCCGGTCACCGAGTCGCAGGGGCGCATCCACACCTCGGCCGCCGGCGTGCTGGTGCTGCCGGAGGTCGACGACCCGGGCGAGGTCGAGATCGACGCGAACGACCTGCGCATCGACGTCTACCGGTCCTCCGGGCCGGGCGGGCAGTCCGTGAACACCACGGACTCCGCGGTGCGCATCACGCACCTGCCGACCGGCATCGTGGTCTCGATGCAGAACGAGAAGTCGCAGCTGCAGAACAAGGAGCAGGCGATGCGCGTGCTGCGTGCCCGGCTGCTGGCGGCGCAGCAGGAGGCTGCCGCGGCGGAGGCCGCCGACATCCGCCGCTCGCAGGTGCGCACGGTCGACCGCAGCGAGCGGATCCGGACGTACAACTTCCCGGAGAACCGCATTGCGGACCACCGCACCGGGTACAAGGCGTACAACCTGGACCACGTGCTGGCGGGCGATCTCGACCCGGTCGTCCGGTCGGCGATCGAGGCGGACGAGGCCGCCCGTCTGGCCGCGGCCGGCGGGGCCTGAMTEDFAVAQPLLAEHAEIESALADPSVHADAGRARTLGRRYAELNRVVGAYRAWRSAHDDAAAAAELADEDESFAAELPELTAAEDEAAEHLRRVLVPRDPDDGRDVILEIKAGEGGDESALFAGDLLRMYLRFAERRGWATQVLESTETELGGFKDVQLAIKTRGNLEDPADGVWANLKYEGGVHRVQRVPVTESQGRIHTSAAGVLVLPEVDDPGEVEIDANDLRIDVYRSSGPGGQSVNTTDSAVRITHLPTGIVVSMQNEKSQLQNKEQAMRVLRARLLAAQQEAAAAEAADIRRSQVRTVDRSERIRTYNFPENRIADHRTGYKAYNLDHVLAGDLDPVVRSAIEADEAARLAAAGGANANANANANA
AK018_02671213rpmE_1COG025450S ribosomal protein L31ATGAAGAGCGGTATCCACCCCGAGTACGTCACCACCGAGGTCACCTGCACCTGCGGGAACACCTTCGTGACCCGCAGCACCGAGACCAGCGGCAAGATCTCGGCGGACGTCTGCAGCGCCTGCCACCCGTTCTACACGGGCAAGCAGAAGATCCTCGACACCGGTGGCCGCGTGGCCCGGTTCCAGGCCCGCTACGGCAAGAAGAACAAGTAGMKSGIHPEYVTTEVTCTCGNTFVTRSTETSGKISADVCSACHPFYTGKQKILDTGGRVARFQARYGKKNKPGPT0014325_4009DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909NANA
AK018_026721929rho_1Transcription termination factor RhoGTGACGAACACCACCGACAACCTGAGCTCGATGAAGCTTGCCGAGCTCCAGGCCGTGGCGTCCCAGCTGGGCGTCAAGGGCACGAGTCGCATGCGCAAGAGCGACCTCGCCGACGCGATCCGCACCCGACGTGGCGGAAATCAGCAGCAGGGGGCGGCATCCGCTCCCGCCGAGCGCCGTCGCCCCGCGGCGGCGCGGGACGAGCAGCCGGCCGTCGCCGAGCAGCCGGTCGCCGCGGCGACCGCGACGGCGCAGACGGTCCGCACCGACGCCCCGGCCGAGGGCGGGCAGCGGCGCCAGCGCCGCGCCACGCGTCCGACGTCGGCCGCGCAGGACGGCGCCGCCGACGCGCCGCGCACCGAGCAGGCACCCGCCCGTGAGCAGAAGTCGACCGGTCGTGGCGAGGACCGGGAGGCCCGGCTCGCTCAGCTGGCCGACGCCGTCGCGGCGCCGCGCGAGCGCAACCAGCGCCCGCGCCAGGAGGGCCAGGGCGAGGGGCAGGACGCCGACCGGTCCGGTCAGGACTCCCGGTCCGGCAACCAGAACGGCTCCCGCCAGGGCCAGGGCCAGGACGACCAGCGCCAGCGCGGCGACCAGCAGAACGAGCGGTCCGGGTCGCGCCGTCGTCGCGGCCGGGACCGCGGACGTGACCGCAAGCGCAACCGCGGCGGCGGTCGCGGCGGCAACGCGCCCGACCTGCACCTCGACGAGCCCGAGGTGCGCGAGGACGACGTGCTGGTCCCCGTGGCCGGCATCCTCGACGTCCTCGACAACTACGCGTTCGTGCGCACCAGCGGCTACCTGCCGGGTTCCAAGGACGTCTACGTCTCGCTGAACCAGGTCAAGAAGTCGGGCCTGCGCCGCGGCGACGCGGTCACGGGCGCGATCCGCCAGCCCCGCGAGGGCGAGGAGCCGCCCGGCGGCAACTCGAGCGGTGGCGGCAAGAACGTGCGCAACAAGTTCTCCGCGCTGGTCCGGCTCGACTCCGTCAACGGCATGCCGCCCGAGCAGGCGCGCGAGCGGTCCGAGTTCACCAAGCTCACGCCGCTGTACCCCCAGGAGCGGCTGCGGCTGGAGAACCCGGAGGCGACCCGGCTGACGCCGCGCGTCATCGACATCGTCGCGCCGATCGGCAAGGGCCAGCGCGGCCTCATCGTGGCGCCGCCCAAGGCAGGCAAGACGATCATCATGCAGCAGATCGCCAACGCCATCACGACGAACAACCCCGAGGTCCACCTCATGGTCGTGCTCGTCGACGAGCGCCCCGAGGAGGTCACCGACTTCGAGCGCTCGGTCAAGGGCGAGGTCATCGCCTCGACATTCGACCGGCACGCCTCGGACCACACGCTGGTCGCCGAGCTGGCGATCGAGCGGGCGAAGCGGCTCGTCGAGCTCGGCCAGGACGTCGTCGTGCTGCTCGACGGCATCACCCGTCTGTCGCGTGCCTACAACCTGGCCGCCCCGGCGTCGGGCCGGATCCTGTCCGGTGGTGTGGACGCCGCGGCGCTCTACCCGCCCAAGAAGTTCTTCGGCGCGGCCCGCAACATCGAGAACGGCGGCTCGCTCACGATCCTCGCCACGGCGCTGGTGGAGACCGGCTCCAAGATGGACGAGGTGATCTTCGAGGAGTTCAAGGGCACCGGCAACATGGAGCTGCGCCTGTCGCGCTCGCTGGCGGAGAAGCGCATCTTCCCGGCGATCGACGTCAACAGCTCGAGCACGCGGCGCGAGGAGATCCTGCTCTCCAAGGAGGAGCTGGGCATCGTCTACAAGCTGCGTCGCGTCATGGGCGCCCTCGACCAGACCCAGGCGGCCGAGCTGCTGCTCGGCAAGCTCAAGGAGACGCCGACCAACGTCGAGTTCCTCCTGCAGGTCCAGAAGACGACGCCCGCCGGACTCACGGACGACCGTCCGGGCGAGACGGTCTGAMTNTTDNLSSMKLAELQAVASQLGVKGTSRMRKSDLADAIRTRRGGNQQQGAASAPAERRRPAAARDEQPAVAEQPVAAATATAQTVRTDAPAEGGQRRQRRATRPTSAAQDGAADAPRTEQAPAREQKSTGRGEDREARLAQLADAVAAPRERNQRPRQEGQGEGQDADRSGQDSRSGNQNGSRQGQGQDDQRQRGDQQNERSGSRRRRGRDRGRDRKRNRGGGRGGNAPDLHLDEPEVREDDVLVPVAGILDVLDNYAFVRTSGYLPGSKDVYVSLNQVKKSGLRRGDAVTGAIRQPREGEEPPGGNSSGGGKNVRNKFSALVRLDSVNGMPPEQARERSEFTKLTPLYPQERLRLENPEATRLTPRVIDIVAPIGKGQRGLIVAPPKAGKTIIMQQIANAITTNNPEVHLMVVLVDERPEEVTDFERSVKGEVIASTFDRHASDHTLVAELAIERAKRLVELGQDVVVLLDGITRLSRAYNLAAPASGRILSGGVDAAALYPPKKFFGAARNIENGGSLTILATALVETGSKMDEVIFEEFKGTGNMELRLSRSLAEKRIFPAIDVNSSSTRREEILLSKEELGIVYKLRRVMGALDQTQAAELLLGKLKETPTNVEFLLQVQKTTPAGLTDDRPGETVNANANANANA
AK018_02673930thrB_1COG0083Homoserine kinaseATGAGGCTCGGCGCCGACCACGTGGTCGTCCGTGTCCCCGCCACGAGCGCGAACCTGGGGCCGGGCTTCGACGCGATGGGCCTCGCCCTGGGGCTGTACGACGAGATCGAGGTGCGGCTCGTCGCGAGCGACGAGATCCGCGTCGACGTCACCGGCGAGGGCGCCGGTGAGGTGCCCGACGGCGAGGACCACCTGGTGGTGCGCGCGCTGCGGCACACGCTCGAGGTGGCCGGCGCGCCGCTGACCGGGATGCACCTTCGCTGTGCCAACCGGATCCCGCACGGCCGGGGTCTCGGGTCCTCGGCGGCCGCCGTCGTCTCGGGCATCGTGGCGGCCCGCGGCCTGCTCGCCGACCCCCAGGCGCTCGGCCGGACGACGATGCTCGGCATCGCCACGGCGTTCGAGGGGCACCCGGACAACGCGGCACCGGCACTGCGGGGCGGCGCCACCTTGGCCTGGTCCGGGCCGGCGGGACCGCGCGCGGTGGACCTGGAGCTCGACCCGCGGATCGCGGCGACGGTCCTCGTGCCGGACGTGCGACTGGCCACGAGCCGGGCGCGCGGGGTCCTGCCGGAGCAGGTCCCGCACGCCGACGCGGCGTTCACCGCCGGGCGGGCGGCGCTGCTCGTCGAGGCCCTCGCCCGACGGCCGGAGCTGCTGCTCGACGCCACGGAGGACCGGATCCACCAGGACTACCGCGCCGAGGTCATGGCGGCCACGGCCGAGCTGGTCCGGTCGCTGCGGGCCGAGGGCCTGGCGGCCACGGTCTCGGGCGCCGGACCCACGGTGCTGGTGCTGACCGGACCCGGCCAGCAGGAGCCGCTCGACGCGCTGCTCGCCGACCTGGTCGACGACGTCGCCGGCTGGCGTCGTGCGGACCCGGGCATCGACACCGCGGGCGCCGTCTGCAGGAGTGGTAGCATGAACTAAMRLGADHVVVRVPATSANLGPGFDAMGLALGLYDEIEVRLVASDEIRVDVTGEGAGEVPDGEDHLVVRALRHTLEVAGAPLTGMHLRCANRIPHGRGLGSSAAAVVSGIVAARGLLADPQALGRTTMLGIATAFEGHPDNAAPALRGGATLAWSGPAGPRAVDLELDPRIAATVLVPDVRLATSRARGVLPEQVPHADAAFTAGRAALLVEALARRPELLLDATEDRIHQDYRAEVMAATAELVRSLRAEGLAATVSGAGPTVLVLTGPGQQEPLDALLADLVDDVAGWRRADPGIDTAGAVCRSGSMNPGPT0020275_1626DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020275-thrB-K00872NANA
AK018_026741107thrC_1COG0498Threonine synthaseATGCCGGCCCACCAGTGGCGGGGTGTCATCGCCGAGTACGCCGACCGTCTGCCGGCCCACGTCGCCGAGAAGATCGTCACGCTGGCCGAGGGCGGTACCCCGCTCGTCGAGGCCCCGGCGCTCTCGCGGCGCACGGGTGCCGACGTCCACGTCAAGGTCGAGGGGATGAACCCCACGGGTTCGTTCAAGGACCGCGGGATGACGACGGCGATGTCCGCCGCCGCCGCCCGGGGCGCCCAGGCGGTCGTGTGCGCCTCCACCGGCAACACCTCGGCGTCGGCGGCGGCTTACGCCACCCGGGCCGGGATGGTCTGCGCCGTGCTGGTCCCCGACGGCAAGATCGCGATGGGCAAGCTCAGCCAGGCCATCGCCCACGGGGCGAAGCTGCTGCAGGTCGACGGCAACTTCGACGACTGCCTGGTCGTGGCGCGCAAGCTGGCCGAGGCCTACCCGGTCGAGCTGGTCAACTCCGTCAACCCGGACCGCATCGAGGGGCAGAAGACGGCGGCGTTCGAGGTCGTGGACGCCCTCGGCGACGCACCCGACATCCACGCCCTGCCGGTCGGCAACGCGGGCAACATCACCGCGTACTGGAAGGGCTACCGGGAGTACGCGGGCGTCGCGACCAGCGAGCAGGGTCCGGGCGCCGCCCCGGTCGCCGTCGCCACCCGGACGCCGGCCATGTGGGGCTTCCAGGCGGCGGGCGCGGCCCCGATCGTGCAGGGCCACCCGGTGGACCCGGAGACGATCGCCACCGCCATCCGGATCGGCAACCCGGCGTCGTGGACGCAGGCCGAGCAGGCCCGCGACGACTCCGGGGGCGTGATCGAGGCGGTCTCCGACGACGAGATCCTCGCCGCGCACCGGATCCTTTCCGCCGAGGTCGGCGTCTTCGTCGAGCCGGCGTCCGCCGCCGGCGTCGCGGGTCTCCTGTCGCGTGCCGAGCGCGGGCTCGTCCCGGCCGGCGCCCGCGTCGTGGTGACCGTCACCGGGCACGGGCTGAAGGACCCGCAGTGGGCGCTGCGCGGGCCCGACGGCGCGGACGTCACGCCGACCCGCGTGGGTGCCGACGTCGTCTCCGTCGCCGACGCGCTCGGGCTGGAGTGAMPAHQWRGVIAEYADRLPAHVAEKIVTLAEGGTPLVEAPALSRRTGADVHVKVEGMNPTGSFKDRGMTTAMSAAAARGAQAVVCASTGNTSASAAAYATRAGMVCAVLVPDGKIAMGKLSQAIAHGAKLLQVDGNFDDCLVVARKLAEAYPVELVNSVNPDRIEGQKTAAFEVVDALGDAPDIHALPVGNAGNITAYWKGYREYAGVATSEQGPGAAPVAVATRTPAMWGFQAAGAAPIVQGHPVDPETIATAIRIGNPASWTQAEQARDDSGGVIEAVSDDEILAAHRILSAEVGVFVEPASAAGVAGLLSRAERGLVPAGARVVVTVTGHGLKDPQWALRGPDGADVTPTRVGADVVSVADALGLEPGPT0009175_5390DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0009175-thrC-K01733NANA
AK018_026751398hom_1COG0460Homoserine dehydrogenaseGTGCCCGCTGCAGCCAGCCCGCCCGCCGTGCCCGCGCCGTCGGACGCCCCGCTCCACGAGCGCACCCCGGTACGCGTCGCCCTCCTGGGCTGCGGCGTCGTGGGCACCCAGGTCGCGAACCTGCTCCTGGAGCAGTCCCCGGACCTCGGGGCGCGCGTCGGTGCCCCGTTGCAGCTGGTGGGTGTCGCCGTGCGCGACCTCGCCCGCCCCCGCGACGGAGTCCCCGCCGAGCTGCTCACCGACGACGCCGAGGCGCTGGTCGACACCGCCGACATCGTCGTGGAGCTCATGGGCGGCATCGAGCCGGCGCGCGGCCTGATCCTGCGGGCGCTGGCCCGCGGCGCGAGCGTCGTCACCGCGAACAAGCAGCTGCTCGCCGAGCAGGGACCCGTGCTGTTCGAGGCCGCCGACGCCGCCCGCGCCGACCTGTCCTTCGAGGCCGCCGTCGCCGGGGCCATCCCGATCGTGCGGCCGGTGCGCGAGTCGCTCGCCGGGGACCAGGTCAACCGGGTGCTGGGGATCGTCAACGGCACCACGAACTACGTGCTGGACGAGATGACCACCCAGGGCATGGACCTCGACGACGCCGTCAAGCGCGCCCAGGAGCTCGGGTACGCGGAGGCCGACCCCACGGCCGACGTCGACGGCTTCGACGCGGCGGCCAAGGCCGCGATCCTGGCCTCCCTGGCGTTCCACACCCGCGTCTCGATCCACCAGGTGGCCCGCGAGGGCATCCGCGGCATCACCAGCGACGACGTCGACTGGGCGCGCCGCACCGGCTACGTGCTCAAGCTGCTGGCCATCGCCGAGCGCACGGGGGAGGGCGTCGCCGCCCGCGTCCACCCGGCGCTCGTGCCCACCGACCACCCGCTGGCGGCGGTGCGCGGCGCGTTCAACGCCGTCTTCGTCGAGGCCGAGGGTGCGGGTCCGCTCATGTTCTACGGGCAGGGCGCCGGGGGGCGTCCGACGGCGTCGGCCGTGCTGGGTGACGTCGTCTCGGCGGCCCGGGACCGGCTCATCGGCGGCAAGGGGCCGCAGGAGTCCGCGTACGCCTCGCTGCCGGTGCTGCCGTCCGACGCCGCGGTCACGCGCTACCAGGTCCGGCTCGAGGTGGCGGACCGCACCGGTGTGCTCGCCCAGGTCGCCGGCGTGCTGGCCGAGCACGGCGTGTCGATCGACACCGTGCGCCAGAGCGAGGCGCTCACGGCGCCGTTCGAGGCCGAGCCGGCCTCCGAGCCCGCCCCGGGGGCCGTCCCCGACGAGGGCGAGCCCGTGGCCCGGCTCGTCATCACGACGCACGCCGCCCGCGAGGCCTCGCTGGCCGCCACGGTCGCGGCCCTGGAAGGCCTGGAACCCGTCCGCCAGATCACGTCCGTCCTGCGAGTCGAGGGAGTCTGAMPAAASPPAVPAPSDAPLHERTPVRVALLGCGVVGTQVANLLLEQSPDLGARVGAPLQLVGVAVRDLARPRDGVPAELLTDDAEALVDTADIVVELMGGIEPARGLILRALARGASVVTANKQLLAEQGPVLFEAADAARADLSFEAAVAGAIPIVRPVRESLAGDQVNRVLGIVNGTTNYVLDEMTTQGMDLDDAVKRAQELGYAEADPTADVDGFDAAAKAAILASLAFHTRVSIHQVAREGIRGITSDDVDWARRTGYVLKLLAIAERTGEGVAARVHPALVPTDHPLAAVRGAFNAVFVEAEGAGPLMFYGQGAGGRPTASAVLGDVVSAARDRLIGGKGPQESAYASLPVLPSDAAVTRYQVRLEVADRTGVLAQVAGVLAEHGVSIDTVRQSEALTAPFEAEPASEPAPGAVPDEGEPVARLVITTHAAREASLAATVAALEGLEPVRQITSVLRVEGVPGPT0020155_94DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020155-hom-K00003NANA
AK018_026762706hypothetical proteinGTGCGAAACAACCTGCGACGACGCCGGTACCTCGGCGCGTTCGCAGCGCTCGGGCTCGCCGCCACCACCGTGGCCCTGCCGAGCGTCGCGACCGCCGACGACGATGGACCGACGTTCCTGGCCCCCGTCCACGACGCCCCCGCGAGCGACGACGACGTCCTCGTGAACGAGACCTCGGGAGCCTGGTTCGTCGAGCTCGAGAGCCCGCCGACCGCCGAGGGCGGTGCGCGCTCCGCCGTCCGCGGCGACCACACCGCGTTCCGGCGGGCCGCGCGCGACGCCGGCGTCGAGTACACGGAGCGCGAGGAGTTCGACGCGCTCTTCAACGGCTTCTCCATCGACATGGACAGCTCGCAGCTCGCCAAGCTGCAGCGCACCGAGGGCGTGAAGGCCATCTACCCGATGGTGCGCGTCTCCGTGCCGGAGCCCCAGGAGGCCGCGGTGCCGGAGATGGCCACCGCGCTCGCCATGACCGGGGCCGACGTCGCCCAGTCCGAGCTCGGGCTGACCGGTGACGGCATCCAGGTCGCCGTGATGGACACCGGGATCGACTACCAGCACCCGGACCTCGGCGGACCGGCCCAGTTCCCGACCGAACGGGTCACCCACGGCCACGACTTCGTCGGCGACGCCTACGACGCCGGGTCGTCCGACGACGCCGCCCGCGTGCCGCAGCCCGACGGGGACCCCATGGACTGCCAGGGCCACGGCACCCACGTGGCCGGCATCGTCGGGGCCGACGGCGAGGTGGTCGGCGTCGCGCCCGACGTGACGTTCGGCGCCTACAAGGTCTTCGGCTGCAACGGGTCCACCGAGGCCGACATCATGATCGAGGCCATGGAGATGGCCCTGGCCGACGGGATGGACGTGCTCAACATGTCCATCGGCTCGGCATACACCTGGCCGAACTACCCGACCGCCACCGCGTCGGACGCCCTCGTCGACGCCGGCATGACCGTCATCGCGTCCATCGGCAATTCCGGTGACACCGGCGTGTACTCCACCGGCGCCCCCGGAGTCGGCAAGAAGACAGTCGGCGTCGCCTCCATCGACAACACGCACTCGATGGCCAACGCGATGATCGCCAATCCGTCCGGAGAGCAGATCGCCTACACCGTGCTCGCGGACGTCGCCGACCCGCCGTCGGCGGGCACCACCGACCCGGTGGTCCCCGTGGGCACCGCATGTCTCTCCCTGGGCGAGGAGCTCACCGGCGACCCCGCCGGCAGCACCGCGCTCGTGCGCCGCGGCGGATGCTCGTTCGCCGAGAAGTACGAGGTCGCGCTCGATGCCGGTGCCACTGCCGTCGTGATCGCCAACAACGTGCCCGGCCTGTTCAGCGGCGGGGGCGTCGTCGACGGCGGCATACCCGGCGTCGGCATCTCGATGGCCGACGGCGACGCGCTCGAGGCCGCCGTCGCGGCGGGCGAGACCGTCACCCTCACGTGGACCGACGAGACGGTGCGCGTGGCCAGCCCCACGGGCGGCGAGAAGAGCTCGTTCAGCTCCTACGGGCTGGCCCCGGACCTGACCCTCAAGCCGGACCTCGCCGCACCGGGCGGGAACATCTACTCCACCTACCCGCTGGCCAAGGGCGCCTACGCCACGCTGTCGGGGACGTCGATGGCCGCCCCGCACGTGGCCGGGGCCGCGGCGCTCATGCTCGAGGCCGACCCCGGCCTCGAGCCCGCCGAGATCCGGCGCGTCCTGCAGAACACGGCCGAGCCGGTGCTCTACGCGGGCGCCTACGTCGAGACGGTGCACGGCCAGGGTGCCGGCATGATCGACGTGCCAGCGGCCGTCGGCACCACCGCGACCGTCAAGCCCGGGAAGATCTCGCTCGGCGAGTCCGAGGACGGCCCGGTCACCAAGCGTCTCAAGGTGACCAACTCCGGTGACAAGGCCGTGACCTACGAGCTCTCGAGCGTCGACGCGCTCGCGACGGGCGGCGACACGTTCGCACCCGGTCTCTACCTCTCGGAGTCGCCGGTGTCGTTCTCCACGCCGACGCTGACGGTCCCGGCCGGTGGTTCGAAGAAGGTCGAGGTGACCGTCACGGCACCCGGCGCCGATCCCGAGCTGCACATGATCTACGGCGGATACGTCTTGCTGACCGGCGACGACGGCACCGAGCTGTCGGTGCCGTTCGCCGGGTTCGACGGCGACTACCAGTCGATCGAGGCGATCACCCCGATCGGCTCCGGGGAGACCCAGGTCGACGTACCGTGGCTCAGCCGCCTGACGACGTGCGACGAATTCATCGAGCTCGACTGCATCGACGAGAACGGCTCGTTCAGCGAGGCCGGCGGGGAGACGTTCACCCTGCAGTGGAAGGACGGCGTGCCCGACTACCCGTACGTCGTCGCGCACTTCGACCACCAGGTCGAGGACTTCGAGATCCACGTCATCGACGACAAGCACCCGTGGCGGGCGCACCCGCTGTTCTACGTCGCCTCCGACCTGGGCTCGCTCGGTCGGTCGGCCTCGGCGGGCGGCATCGACGCGTTCGTGTGGGACGGGACCGCCACCAAGAAGCTCGGGAACACCTCGGTGTCGAAGAAACTGTCGGACGGCGACTACCGGCTGCGGATCCGCGCCCTGAAGGCGGACGGCGACTGGTGGGACCGGGACCACTGGGAGACGTGGACCTCGCCCGTCTTCACGATCGACCGTCCGGGCAAGGGCAACGGGAAGGGCAAGGGGTGAMRNNLRRRRYLGAFAALGLAATTVALPSVATADDDGPTFLAPVHDAPASDDDVLVNETSGAWFVELESPPTAEGGARSAVRGDHTAFRRAARDAGVEYTEREEFDALFNGFSIDMDSSQLAKLQRTEGVKAIYPMVRVSVPEPQEAAVPEMATALAMTGADVAQSELGLTGDGIQVAVMDTGIDYQHPDLGGPAQFPTERVTHGHDFVGDAYDAGSSDDAARVPQPDGDPMDCQGHGTHVAGIVGADGEVVGVAPDVTFGAYKVFGCNGSTEADIMIEAMEMALADGMDVLNMSIGSAYTWPNYPTATASDALVDAGMTVIASIGNSGDTGVYSTGAPGVGKKTVGVASIDNTHSMANAMIANPSGEQIAYTVLADVADPPSAGTTDPVVPVGTACLSLGEELTGDPAGSTALVRRGGCSFAEKYEVALDAGATAVVIANNVPGLFSGGGVVDGGIPGVGISMADGDALEAAVAAGETVTLTWTDETVRVASPTGGEKSSFSSYGLAPDLTLKPDLAAPGGNIYSTYPLAKGAYATLSGTSMAAPHVAGAAALMLEADPGLEPAEIRRVLQNTAEPVLYAGAYVETVHGQGAGMIDVPAAVGTTATVKPGKISLGESEDGPVTKRLKVTNSGDKAVTYELSSVDALATGGDTFAPGLYLSESPVSFSTPTLTVPAGGSKKVEVTVTAPGADPELHMIYGGYVLLTGDDGTELSVPFAGFDGDYQSIEAITPIGSGETQVDVPWLSRLTTCDEFIELDCIDENGSFSEAGGETFTLQWKDGVPDYPYVVAHFDHQVEDFEIHVIDDKHPWRAHPLFYVASDLGSLGRSASAGGIDAFVWDGTATKKLGNTSVSKKLSDGDYRLRIRALKADGDWWDRDHWETWTSPVFTIDRPGKGNGKGKGPGPT0020990_208DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020990-vpr-K14647NANA
AK018_026771440lysA_1COG0019Diaminopimelate decarboxylaseGTGAGCGCCCGGGTGGACGTCGACGGGACGACGGCGGCACTCCCGACAGGTGGGCCCGGTGCGCTGGGTGCGCCGTGGTCCTCGGGTGTCCGACGCCGGCCGGACGGCGAGGTCGAGGTGGCCGGCGTCGGTGCGGGTGACCTCGCCGCCGAGCACGGCACGCCGGCCTACGTCCTGGACGAGGCCGACTTCCGTGCGCGCGCCCGCGCCTACCGGGGTGCCTTCGAGGCCGCCTTCGAGCAGATCGGCACGGGCGTCGACGTCTACTACGCGGGCAAGGCGCTGCTGACCGTCGCCGTCGCCCGCTGGGCCACCCAGGAGGGCCTGCGGGTCGACACGGCCTCCGGCGGCGAGCTCGCCGTCGCGCTGCGCGCCGGCGTCCCCGGCGCCGCCATCGGTCTGCACGGCAACAACAAGTCCGACGGCGAGATCCTTGCGGCGCTGGACGCCGGCGTCGGGCGGATCATCGTCGACTCCCTGGTCGAGATCGAGCGGGTCGGGGACCTGGCCGCCTCCCGCGGTGTCGTCGCGCCCGTGATGGTCCGGGTCACCACCGGCGTGCACGCCGGCGGGCATGAGTACATCTCCACCGCGCACGAGGACCAGAAGTTCGGGCTCTCCGTGACGCCCGGGCCCGACGGCGGCACGTCGCCGGCGCTCGCGGCGCTCGAGGCGGTGGTGGCGCGGCCCGAGCTGGAGCTGCTGGGCATCCACTCCCACATCGGCTCGCAGATCCTGGACCCGTCCGGCTTCGAGGCGGCGGCCCGCTTGGTGCTGCAGCTGCGGGCCGACCTGGCGGAGCGTACCGGCGTCCTGGTGGACGAGGTCGACCTGGGTGGCGGTTACGGCATCGCCTACCTGCCGGCCGACGAGGCGCTCGAGCCCGCACCCGTGGCGCAGGACGTGGCCGCCGCGGTGGCCGCCGTTTGCTCCGAGCTCGGGACGCCGCTGCCGCGCTTCTCGATCGAGCCCGGCCGGGCCGTCGTCGGCCCCGCGGGGATGACCCTCTACACGGTGGGCACGGTCAAGCCGGTGACGGTCTCGCCGGGCGCCGGAGCGTCGTCGGACGCCGAGCCGTTCACGCGGCTGTACGTCTCCGTCGACGGGGGGATGAGCGACAACATCCGCCCGGCGCTGTACGGCGCGGACTACCACGCGGAGGTCGTGGGGCGGCTCTCCGACGCCGCCCCGGTGCTGGCCCGCGTGGTCGGCAAGCACTGCGAGAGCGGCGACATCGTGGTGCACGAGGTCTTGCTGCCCCGTGACGTGCGCGCGGGGGACCTGCTCGCCGTCGCCGCGACGGGTGCCTACGGGCGGTCGATGGCCTCCAACTACAACGCGCTGACCCGCCCGCCGGTCGTGGCGGTCGCCGAGGGGGACTCCCGGGTCCTGGTGCGGCGCGAGACGGTCGAGGACCTGCTCGCCCTCGACCAGGGCTGAMSARVDVDGTTAALPTGGPGALGAPWSSGVRRRPDGEVEVAGVGAGDLAAEHGTPAYVLDEADFRARARAYRGAFEAAFEQIGTGVDVYYAGKALLTVAVARWATQEGLRVDTASGGELAVALRAGVPGAAIGLHGNNKSDGEILAALDAGVGRIIVDSLVEIERVGDLAASRGVVAPVMVRVTTGVHAGGHEYISTAHEDQKFGLSVTPGPDGGTSPALAALEAVVARPELELLGIHSHIGSQILDPSGFEAAARLVLQLRADLAERTGVLVDEVDLGGGYGIAYLPADEALEPAPVAQDVAAAVAAVCSELGTPLPRFSIEPGRAVVGPAGMTLYTVGTVKPVTVSPGAGASSDAEPFTRLYVSVDGGMSDNIRPALYGADYHAEVVGRLSDAAPVLARVVGKHCESGDIVVHEVLLPRDVRAGDLLAVAATGAYGRSMASNYNALTRPPVVAVAEGDSRVLVRRETVEDLLALDQGNANANANANA
AK018_026781644argS_1COG0018Arginine--tRNA ligaseGTGGCCGACGGCACGTTCGCCCTCGACGCCGACGCCGTGCCGACGTCGGTCCACGTGGAGCGACCCAAGCAGCGCGAGCACGGCGACTGGGCCACGAACGTGGCCCTGCAGCTCGCGAAGAAGGCCGGTGTGCCGCCGCGCGAGCTGGCCCAGGAGCTCGCTACCCGGCTCGGGTCTACCCCGGGGATCAAGGCGGTCGACGTCGCCGGACCGGGCTTCCTGAACATCACGCTGGAGGCCGGCGCCGCCGGCGAGCTGGCGCGCACCATCGTCGAGTCGGGCGCCGCCTACGGCCGCAACGACTCCGAGGCCGGCAAGAAGGTCAACCTGGAGTTCGTCTCGGCGAACCCGACGGGACCGATCCACATCGGCGGCGTGCGCTGGGCCGCCGTCGGCGACTCCCTGGCCCGCGTGCTCGAGGCCAGCGGCGCCGAGGTGACGCGCGAGTACTACTTCAACGACCACGGCGCGCAGATCGACCGTTTTGCGCGGTCGCTGCTCGCCCGCGCTCGCGGCCAGGAGGCGCCGGAGGACGGCTACGGCGGGCAGTACATCGCCGAGATCGCCGACGCCGTCATCGCCGACGCGGTCGCTGCGGGCGACCCCGACCCGCGCGACCTGCCCGACGCCGAAGCGCAGGAGATCTTCCGGTCGCGTGGCGTGGAGCGCATGTTCGGCGAGATCAAGTCCTCGCTGCACGACTTCGGCGTCGACTTCGACGTGTTCTTCCACGAGGACTCCCTGCACGGGTCCGGTGCGGTGGACCGCGCCGTGGCCCGGCTGCAGGACGCGGGCCGGATGTTCGAGGCGGACGGTGCGACCTGGCTGCGCACCACCGACTTCGGCGACGATAAGGACCGCGTCGTCATCAAGTCCGACGGCGACGCCGCCTACATCGCCGGTGACATCGCCTACTACCTGGACAAGCGCGAGCGCGGCTTCGACGAGGCGATCATCATGCTCGGCGCGGACCACCACGGGTACGTCGGCCGCATGATGGCGGTGTGCGCCGCGTTCGGCGACACCCCGGGCGTCAATCTGCAGCTCCTCATCGGCCAGATGGTCAACCTGGTCAAGGACGGCCAGCCGGTGCGCATGTCCAAGCGTGCCGGGACCGTCGTCACGCTCGAGGACCTCGTGGACGCCGTGGGCGTCGACGCCGCGCGCTACTCGTTGGCCCGGTCCTCGGTCGACACGAGCATCGACCTGGACCTGGACCTGCTCGCCAGCGCCACCAACGAGAACCCGGTCTACTACGTGCAGTACGCGCACTCGCGGACCTGCGCCGTGGACCGCAACGCCGCAGACCGGGCGGTGCGGCGCCTGCTCGACGACGGCACGCCCGGCTTCGACCCGGCGCTGCTTGACCACGAGACCGAGGCCGTGCTGCTCGGTCGCCTGACCGAGTTCCCGCGGATCGTCGCCCAGGCGGCCGAGCTGCGCGAGCCGCACCGCGTCGCCCGCTACCTCGAGGGGCTCGCCGCGGACTACCACAAGTGGTACAGCGAGCGTCGCGTCCTGCCCTACCCGGACGAGGAGGTCGAGACCGTGCACCGCACGCGCCTGTGGCTCAACGACGCCGTGCGCCAGGTGCTCGCCAACGGGCTCGACCTGCTCGGCGTCAGCGCCCCGGAGCGGATGTGAMADGTFALDADAVPTSVHVERPKQREHGDWATNVALQLAKKAGVPPRELAQELATRLGSTPGIKAVDVAGPGFLNITLEAGAAGELARTIVESGAAYGRNDSEAGKKVNLEFVSANPTGPIHIGGVRWAAVGDSLARVLEASGAEVTREYYFNDHGAQIDRFARSLLARARGQEAPEDGYGGQYIAEIADAVIADAVAAGDPDPRDLPDAEAQEIFRSRGVERMFGEIKSSLHDFGVDFDVFFHEDSLHGSGAVDRAVARLQDAGRMFEADGATWLRTTDFGDDKDRVVIKSDGDAAYIAGDIAYYLDKRERGFDEAIIMLGADHHGYVGRMMAVCAAFGDTPGVNLQLLIGQMVNLVKDGQPVRMSKRAGTVVTLEDLVDAVGVDAARYSLARSSVDTSIDLDLDLLASATNENPVYYVQYAHSRTCAVDRNAADRAVRRLLDDGTPGFDPALLDHETEAVLLGRLTEFPRIVAQAAELREPHRVARYLEGLAADYHKWYSERRVLPYPDEEVETVHRTRLWLNDAVRQVLANGLDLLGVSAPERMNANANANANA
AK018_02680288hypothetical proteinGTGTGGGCTGCACTCGTGACGGTCCTTGCCCTGACGGCCTGGGCCGTGGCGACCACCGAATTTCCGTACAGCGCCATGTCCGTCCTGTCCGAGCGCCCGTCGGCGCTGGACGGCGGGGCGTCCGACTCGCTCATCGTGGCCTACGTGCGCCAGGGTGCGTTGAGCCCGGTGACAGCGGTCTTCCTCGGCGTCCTGGTGGTGCTCGTGCTCGCCCGCCCGTGGGCCCGCCGTGCCCCGGCTCCCGCGACGACGGAGGTCGCGATCGAGGACGATCGGCCGGCCCGCTGAMWAALVTVLALTAWAVATTEFPYSAMSVLSERPSALDGGASDSLIVAYVRQGALSPVTAVFLGVLVVLVLARPWARRAPAPATTEVAIEDDRPARNANANANANA
AK018_026811311hypothetical proteinATGAGCAGTCACGACACCTCCATGCAGTCCGTGAACACCGATCGCCGCTGGGTGGCACCGGCCGTGCTGGCCGCCGTGCTCGGACTGTTCCTGCTGAACTCACCGCTCTCGCGGCCGATCGCCGTGATGTCCTCCTCGCAGGACGGCGTCGTCGGGGCGACAACAGGCAGGACCTCGCTCCTGGTCGGCACAAGCTGGCTCGATACCAGCGGCATGATCAACCTCGTCTCCGTGGCCACCGGGTTGAGCTGCGTGACTGCCGTCGTGCTGGCCCGCCGTCGTCCGTTCACCGCGACGGCACTGGCGGCCTGGCCGTTCGTCACGATCCCGCTTCTGGGCCAGTTCGTCTGGGGCTGGTGGCTCGCGCTGCTGATGATCACCTGCCTGGTCGTGCAGGACTCCTGGCGCCGCGCCGCCGTCCCGCTCGTGGCGACCCTGGCGACCGCGTGGTGGTACGTGGTCAGCGACGTCCCGGCCATGCTGCCGATCGGCCCGGTGACCGCGGGCAGCGCCGACGCCCGGGAGGTCGTGGAAGCAGGTGTGCTCTACACCGTTGCGGTCGCCGTCGTCGTCGGCGCAGCAGCGGCGGTCCGCCTCGTCCGCGAGTCCCGGCGCCGCAGCGACCGTGCGGCCGCCGTCGAACGCCACGCGCTCGAGGTGGAGTCCGTCGCGACCGAGCGGGCGCGGCTGGCCCGCGACCTGCACGACGTCGTCGCCCACCACGTCTCCCTGGTGGCGGTGCGCGCCGAGTCCGCCCCGTACACCCACCCCGACCTGGACGCGAACGCCCGGCGGGTCCTGGCGGAGATCGCCGACGACGCCCGGTCCGCACTCGGCGAGCTGCGCCAGGTCCTGTCCGTGCTGCAGCGCACCGCGGGGCCCGGCCGCGCCCCTCAGCCGACAGCGTGCGACGTCGCGGACCTGGTCGACCAGGCACGGGCCGCCGGGCAGGACGTCACACTGACCGGACGCTGCGACGACGTGCCGGACGCGCCGGGGTACGTCCTCTACCGGGCGGCCCAGGAGGCCCTGACCAACGCCCGACGTCACGCCCCCGGAGCGCCGACCACCATCGAGCTGACCCATGCGGCCCAGGTCGCCGGGCTGCGGGTCACCAACCCCGTCAACCGGACGGACGCGGTCGTCGTGCCCGGGCGCGGCCTGACCGGGATGCGCGAGCGCGTCGAAGCCCTCGGCGGGGCACTGACCGCGGTCGTGGAGGACTACGCGTTCGTGCTCGTCGTGACGCTGCCCACCGATGCGGACCGCGGGCCCACGGCTGCACCCACCGAGCGCGAGGAGGTCGCGTGAMSSHDTSMQSVNTDRRWVAPAVLAAVLGLFLLNSPLSRPIAVMSSSQDGVVGATTGRTSLLVGTSWLDTSGMINLVSVATGLSCVTAVVLARRRPFTATALAAWPFVTIPLLGQFVWGWWLALLMITCLVVQDSWRRAAVPLVATLATAWWYVVSDVPAMLPIGPVTAGSADAREVVEAGVLYTVAVAVVVGAAAAVRLVRESRRRSDRAAAVERHALEVESVATERARLARDLHDVVAHHVSLVAVRAESAPYTHPDLDANARRVLAEIADDARSALGELRQVLSVLQRTAGPGRAPQPTACDVADLVDQARAAGQDVTLTGRCDDVPDAPGYVLYRAAQEALTNARRHAPGAPTTIELTHAAQVAGLRVTNPVNRTDAVVVPGRGLTGMRERVEALGGALTAVVEDYAFVLVVTLPTDADRGPTAAPTEREEVANANANANANA
AK018_02682666nreC_2COG2197Oxygen regulatory protein NreCGTGACGCGCGTCGTCGTCGCGGACGACCAGCCCGTCGTCCTGCACGGATTCGCCTCCATCCTGGATTCCGCACCTGACCTGGAGGTGGTCGGCACCGCGGGCGACGGCGCCGAGCTGCTGACCGCCGTCGCCCGCGACGCACCGGACGTCGCCGTCGTCGACGTCCGCATGCCGGTTCTCGACGGCATCGCCGCGACCGCCCGCATCGCCGCGGAGCACCCGTCGACCCGCGTGCTCATCCTGACCACGTTCGACCTCGACGAGTACGTCTACGACGCCCTGCGGGCCGGGGCCAGCGGGTTCCTGCTCAAGGACGTCACCGGCGCTCGCCTCATCGAGGGCGTCCGGCTCGTCGCCGACGGCTCCATGCTGCTCGGCCCACGGGTGACGCGCCGCCTCGTCGATGACTTCGCCGTCCGGGCCGGCACGCGGGACACCACCCGGATCGACACCCTCACCGCCCGCGAGTCCGAAGTGCTCCTGGAGGTGGCCCGCGGCCGATCCAACGCGGAGATCGCCGCCGAGCTGTTCATCGGCGACGAGACCGTCAAGTCCCACGTCTCGGAGGTCCTGCGCAAGCTCGGCTGCCGGGACCGCGTCCAGCTCGTCATCACCGCCTACGAGGCCGGGTTCGTGGGCACCCCGGATCGATCGGGAGGTCGATGAMTRVVVADDQPVVLHGFASILDSAPDLEVVGTAGDGAELLTAVARDAPDVAVVDVRMPVLDGIAATARIAAEHPSTRVLILTTFDLDEYVYDALRAGASGFLLKDVTGARLIEGVRLVADGSMLLGPRVTRRLVDDFAVRAGTRDTTRIDTLTARESEVLLEVARGRSNAEIAAELFIGDETVKSHVSEVLRKLGCRDRVQLVITAYEAGFVGTPDRSGGRPGPT0012750_183DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0012750-degU-K07692NANA
AK018_026831518prpD2_1COG20792-methylcitrate dehydratase 2ATGATCGACCACACCGTGCGCACCTACCGCGCCGACGAACCGCTCGCCCGCACCGACCAGCTCGCGTGGAAGATCGCGGATGTCGCGGCCGAGCAGCTCGACCCGACGCCGGAGGTCACCGACATGGTGATCAACCGGATCATCGACAACGCGGCGGTGGCCACGGCGTCGTTGGGGCGTGCCCCGATCCTCGCCGCCCGGGCGCAGGCCGAGGCCCACCCGGTCTCCCGCAACGGACGCGGGTCCACGGTGTTCGCCTCGCCGCAGCGCACGAGCCCCGAGTGGGCGGCCTGGGCGAACGGCGTGGCCGTGCGCGAGCTGGACTACCACGACACGTTCCTCGCCGCGGAGTACTCCCACCCGGGGGACAACATCCCGCCGGTCCTGGCCGTGGCGCAGCACCTGGGACGCGACGGCGCGGACCTGCTGCGCGGCATCGTCACCGGCTACGAGATCCAGGTCGACCTCGTCAAGGGCATCTGCCTGCACGAGCACAAGATCGACCACGTCGCCCACCTCGGCCCGAGCGCGGCCGCCGGGATCGGCACGCTGCTGGGCCTGCCCGCCGAGACGATCTACCAGGCCGTCGGCCAGGCGCTGCACACCACCACGGCCACCCGTCAGTCCCGCAAGGGCGAGATCTCCACCTGGAAGGCGCACGCGCCGGCCTTCGCCGGGAAGATGGCCGTGGAGGCCGTGGACCGCGCGATGCGCGGACAGACCTCCCCCAGCCCGATCTACGAGGGCACCGACGGTTTCATCGCATGGATGCTGTCCGGACCCGAGGCGCGGTACACGGTGCCGCTGCCCGGCCACGGGGAGGACCGCACGGCGATCCTGGACACGTACACCAAGGAGCACTCCGCGGAGTACCAGGCCCAGGCGTGGATCGACCTGGCACGCCGGCTGGGCACCGAGCGTCCCGAGCTGCGCGAGGCCGGGGCGGTGCGGTCGATCGTGCTGCACACGTCCCACCACACCCACTACGTGATCGGGTCCGGGTCGGGCGACCCGCAGAAGTACGACCCGACCGCCAGCCGGGAGACCCTCGACCACTCCATCCCGTACATCTTCACCGTCGCCCTGCAGGACGGCGCGTGGGACCACGCGGCCAGCTACGCCCCCGAGCGCGCCGGCCGCCCGGACACCGTCGAGCTGTGGCGGAAGGTCACCACGGCGGAGGACGCGGAGTGGACCCGTCGCTACCACTCGGCCGACCCCGACGAGAAGTCCTTCGGCGGCCGGGTGGAGATCACCATGTCCGACGGCGAGACGATCGTCGACGAGATCGCCGTCGCCGACGCCCACCCCTACGGGGCCCGTCCTTTCGCGCGTGAGCAGTACGTCGCCAAGTTCCGGTCCCTGGCCGACGGCGTCCTGGCGGAGGACGAGATCGAGCGGTTCCTCGACGTCGCCCAGCGCCTGCCCGAGCTGAGCGCCGAGGAGCTCGGCGGCCTGACCGTCACGCCCGCCGTCGACCCGGCCGCAGGTGCCGCCGTCGGGCACGGGATCTTCTGAMIDHTVRTYRADEPLARTDQLAWKIADVAAEQLDPTPEVTDMVINRIIDNAAVATASLGRAPILAARAQAEAHPVSRNGRGSTVFASPQRTSPEWAAWANGVAVRELDYHDTFLAAEYSHPGDNIPPVLAVAQHLGRDGADLLRGIVTGYEIQVDLVKGICLHEHKIDHVAHLGPSAAAGIGTLLGLPAETIYQAVGQALHTTTATRQSRKGEISTWKAHAPAFAGKMAVEAVDRAMRGQTSPSPIYEGTDGFIAWMLSGPEARYTVPLPGHGEDRTAILDTYTKEHSAEYQAQAWIDLARRLGTERPELREAGAVRSIVLHTSHHTHYVIGSGSGDPQKYDPTASRETLDHSIPYIFTVALQDGAWDHAASYAPERAGRPDTVELWRKVTTAEDAEWTRRYHSADPDEKSFGGRVEITMSDGETIVDEIAVADAHPYGARPFAREQYVAKFRSLADGVLAEDEIERFLDVAQRLPELSAEELGGLTVTPAVDPAAGAAVGHGIFNANANANANA
AK018_02684912prpB_1COG25132-methylisocitrate lyaseATGCTGTACTCGGACCTCACTGCCGCCGCCAAGCGGGCCGCGTTCCGCGAGCGCCTGCGCTCCGGGGAGCTGCTGCAGCTCCCCGGTGCCTTCAACCCGCTCTCGGCCCGGCTGATCGAGCGCAAGCGGTTCGACGGCGTGTACGTGTCGGGAGCGGTCGTCGCGGCCGACCTGGGCCTGCCCGACGTCGGTCTGACGACGGCGAGCGAGGTCGCCGGCCGCGCCGGGCAGATCGCCCGGATGACGGACCTGCCGACGCTCGTGGACGCGGACACCGGGTTCGGCGAGGCCATGAACGTGGCCCGCACGGTCCAGTCGATGGAGGACGCCGGCGTGGCCGGCCTGCACGTCGAGGACCAGGTCAACCCCAAGCGGTGCGGCCACCTCGACGGCAAGCAGGTGGTCGACGAACCCACCGCGCTGCAGCGCGTCCGCGCCGCCGTCACGGCGCGTCGGGACCAGAACTTCCTGATCATGGCGCGCACCGACATCCGTGCCGCCGCCGGCCTGGACGCGGCGATCGAACGTGCCCGCGCACTCGTCGACGCCGGGGCGGACGCCGTGTTCCCCGAGGCGATGCGCGACCTCGACGAGTTCGCCGCGATGAGCGCCGCTCTCGACGTGCCGGTCCTGGCGAACATGACCGAGTTCGGCAAGTCCGAGCTGTTCACCGCCGACCGGCTGCGCGACGCGGGCGTCGCCCTGGTCATCTACCCGGTCTCGTTGCTGCGCCTGGCGATGGGGGCGGCGGACCGTGCGCTCGACGCCCTGCACGCGGAAGGGTCCCTCACCTCGCAGGTCGAGCACATGCAGACGCGTGCCGAGCTCTACGACCTGCTCGACTACCCCGCCTACAGCACGTTCGACGCCGGGGTGTACGACTTCTCCCTGGAGGGGCACCACCACCAGTGAMLYSDLTAAAKRAAFRERLRSGELLQLPGAFNPLSARLIERKRFDGVYVSGAVVAADLGLPDVGLTTASEVAGRAGQIARMTDLPTLVDADTGFGEAMNVARTVQSMEDAGVAGLHVEDQVNPKRCGHLDGKQVVDEPTALQRVRAAVTARRDQNFLIMARTDIRAAAGLDAAIERARALVDAGADAVFPEAMRDLDEFAAMSAALDVPVLANMTEFGKSELFTADRLRDAGVALVIYPVSLLRLAMGAADRALDALHAEGSLTSQVEHMQTRAELYDLLDYPAYSTFDAGVYDFSLEGHHHQPGPT0001555_339DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001555-prpB-K03417NANA
AK018_026851143gltA_22-methylcitrate synthaseATGACCGACTCCCCCAACGAGCCCGACGTCCGCCGCGGACTGAACGGGGTCGTCGCCGACACCACGGCGGTGTCCAAGGTCGACCCGGAGTCCAACTCCCTGCTGTACCGCGGCTACCCCGTGCAGGACCTCGCGGCCACCCAGCCGTTCGAGGCCGTCGCCCACCTGCTCTGGCACGGCGAGCTGCCGACGTCGGACGAGCTCGCGGACCTGCGGGCCGCGGAGCGCGAGCACCGGGCCCTCGACGACGCGGTCCGCAGCGCGATGGACCTGCTGCCCACCGACGCGCACCCGATGGACGACGTCCGGACAGCCCTCAGCGTGCTGGGGGGCCGGGACGCGGCCGGCACCGAGCTGCTCGACCTCGCCGACCCGACCGCCACGCTGCAGCACGCGGTGCCCCTCTACGCCGCGCTGCCGGCCGTCGTCGCATACGCCCAGCGCCGTCGGCGCGGACTGGATGCCGTACCGCCGCGCGACGACCTGGACCACGCCGCGAACACGCTGTGGATGACGTTCGGCGAGGAACCCGACGCGACCGTCGTCGACGCGTTCAACCGCTCGATGATCCTGTACGCCGAGCACTCCTTCAACGCCTCGACGTTCACCGCACGCGTCGTGGCCTCGACGCTGAGCGACGTGCACTCGGCGGTCGTGGCCGCCGTCGGCGCCCTCAAGGGCCCTCTGCACGGCGGAGCGAACGAGGCCGTCATGCACGCCTTCGCCGAGATCGGGTCGGCGGACAACGCGGCGGCCTGGCTGGACGACGCGCTGGCCGCCAAGCGCAAGGTCATGGGGTTCGGGCACCGGGTCTACAAGCGCGGCGACTCGCGCGTGCCGACGATGAAGGGCGCCCTGGACTCCCTGGTGGCCCACTACGACCGTCAGGACCTCGCCGACCTGTACGACGCGCTGGAGTCGGCGTTCGTCGAGCGCAAGGGCATCTACCCCAACCTCGACTACCCGGCCGGTCCCGCCTACCACCTCATGGGCTTCGACACCGAGACGTTCACGCCCCTGTTCGTGGCGGCGCGGGTGACCGGGTGGACGGCCCACGTCGCCGAGCAGCAGTCGTCCAACGCGCTGATCCGGCCGCTGTCCGCGTACGTGGGCCACGAACGGCGCCAGATCCCGCAGCCGTGAMTDSPNEPDVRRGLNGVVADTTAVSKVDPESNSLLYRGYPVQDLAATQPFEAVAHLLWHGELPTSDELADLRAAEREHRALDDAVRSAMDLLPTDAHPMDDVRTALSVLGGRDAAGTELLDLADPTATLQHAVPLYAALPAVVAYAQRRRRGLDAVPPRDDLDHAANTLWMTFGEEPDATVVDAFNRSMILYAEHSFNASTFTARVVASTLSDVHSAVVAAVGALKGPLHGGANEAVMHAFAEIGSADNAAAWLDDALAAKRKVMGFGHRVYKRGDSRVPTMKGALDSLVAHYDRQDLADLYDALESAFVERKGIYPNLDYPAGPAYHLMGFDTETFTPLFVAARVTGWTAHVAEQQSSNALIRPLSAYVGHERRQIPQPPGPT0001480_843DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659NANA
AK018_02686627hypothetical proteinATGCCCACCGACTACTCCGACTTCGAGTTCGAGCGCCGCTTCCTCGTCCGCGACCTTCCTGCGGTGCTGCGGGACGCGCCATCGCTGATCGTGCAGTCCTACTTCCTGTCGGACGGCGGGTACGCGCTGCGCGTGCGCGCGCAGGCCAACGGCGTCGAGGCGGGACTCGACGGCCGCAGCGACCCCCGTGACGTCCTGGACGCGCACCGCGAGCGGATCGACTTCTCGGCGGTGACGGTGAAGGGTCCCTCGGCGGGCGGCACCCGGTACGAGGCCGAGCGACAGCTCGACCCGCTCGTCGGCTGCGAGCTTGTGCGCCGTGGCGGCGCTCGCGTGCTCAAGACGCGCTACGCCGTCTGGCTCGGTGCCGACGGCTGGTCCGTCGACGTGTTCGGGGGTGCGAACAGCCCGTTGATCGTCGCCGAGTGCGAACGCTCGGGCCCGGTCACCGACCTGCAGATCCCGGAGTTCTGCGTCACCGAGATCACCGACGACCGGCGCTTCTCCAACGAGTCGCTGGCGGTCCGACCCTTCGGCGAGTGGGCGGCGGACTACGCCCGCGAGCTGGCCGAGACCGGCCCGCGCTTCCGCGACGACTTCGGCGACAACCAGGAGCTGGACGTCTGAMPTDYSDFEFERRFLVRDLPAVLRDAPSLIVQSYFLSDGGYALRVRAQANGVEAGLDGRSDPRDVLDAHRERIDFSAVTVKGPSAGGTRYEAERQLDPLVGCELVRRGGARVLKTRYAVWLGADGWSVDVFGGANSPLIVAECERSGPVTDLQIPEFCVTEITDDRRFSNESLAVRPFGEWAADYARELAETGPRFRDDFGDNQELDVPGPT0021560_7116DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021560-cyaB|gidA-K01768NANA
AK018_02687828hypothetical proteinGTGGACACGACGTCGCAGGGCGACGCCCCCGCTCCCCGCTCCCGTCGCGAGCTGCGGGAGGCCGCCGAGGTCCGCGACGGACGCCGGCCTCGCCGTCGGGGACGCGGGGCGCACGCCGCTCCGACCGGGCACACCTGGGTGACCCGAGCGACCGTCCTCGGGTCCCTCGCGGCGGCGACCATCGCCGTCCCGCTGACGGCCGACGCCGATGCCGACGAACGGTCCCCGTTCGACCTCGAGAGCTCGCCGTCGGGACCCTCGACGCTCGCCGTGCTGCAGTCGGGTGCCACGGCCCCGGCCCCGGCGTCCGCCATCGCCGCCGCCCCGCGCGAGAGGTCGGTCGACGTCGCCAGCCGTTCGACGGTCAGCCGGGACCCCCTGCCGGACTGCGACCCGTCCGCGCCGGTCGAGGGCACCAACGGCCAGCTCGCCGACCACTCGCTGTGCGACCTGTGGCAGAGCGGCGAACAGCTCCGCCCGGACGCGGCCGTGGCGCTCAGCGCCCTCAACGAGGCCTTCGGCGCCCGGTTCGGCCGCAGCCTGTGCCTGGTCGACAGCTACCGCTCGCTGTCCTCCCAGTACGCCGTCAAGGCCAGCCGGGGGTATCTCGCGGCCACCCCGGGGACGTCGATGCACGGCTGGGGACTGGCGATCGACCTGTGCTCGAAGGAGACGGGCAGCTCCGAGGTCTACCAGTGGCTCTGGGACAACGCCCCGGCCTACGGCTGGGAGAACCCGCCGTGGGCGCAGCGCGGCGGGTCCGGCAAGTACGAGCCGTGGCACTTCGAGTACCGCCCGGGTGTCGAGGAAGTCTCCACCTGGCACTGAMDTTSQGDAPAPRSRRELREAAEVRDGRRPRRRGRGAHAAPTGHTWVTRATVLGSLAAATIAVPLTADADADERSPFDLESSPSGPSTLAVLQSGATAPAPASAIAAAPRERSVDVASRSTVSRDPLPDCDPSAPVEGTNGQLADHSLCDLWQSGEQLRPDAAVALSALNEAFGARFGRSLCLVDSYRSLSSQYAVKASRGYLAATPGTSMHGWGLAIDLCSKETGSSEVYQWLWDNAPAYGWENPPWAQRGGSGKYEPWHFEYRPGVEEVSTWHPGPT0024055_556DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_026881122COG1253putative proteinATGAGCACCACCACCGCACTGCTGATCGGCCTGCTGCTGCTCGTCGGCAACGCCTTCTTCGTCGGAGCCGAGTTCGCCGTGCTGTCGGTGCGGCGCTCGACGATCGAGCCACGCGCCGAGGCGGGGGAGAAGCGCGCCAAGGTCGTCCTGTGGGCCATGGAGAACGTCTCGCTGATGCTGGCGTGCGCCCAGCTCGGCATCACCGTGTGCTCCACGGGACTGGGCATCATCGCCGAACCGGCGCTGGCGCACCTGCTCGAGGGGCCGTTCGAGGCGATCGGGATCCCCGAGCAGCTCGTCCACCCGGTCGCGCTGGTCATCGCTCTCGGCATCGTCGTCTACCTGCACGTGGTGCTCGGCGAGATGGTCCCGAAGAACCTGGCCGTGACCGGCCCGGAGGCGGCCGCCCTGTGGTTCGCGCCCCCGCTGGTGTTCATCGCCCGGGTCGTGCGCCCGATCATCGTCGCCCTGAACTGGGTCGCCAACCACGCGATCCGCGCGCTCGGCGTCGAACCGAAGGACGAGGTCGCCTCCGCCTTCACGGTGGAGGAGGTGCAGTCCATCGTGGAGCACTCCCGCGCCGAAGGAGTGCTCGAGGACGACCAGGGGCTGCTCGCCGGCGCGATCCAGTTCTCCTCGCGCACGGCGCGCGACGTCATGGTCCCCGTGGCGGACCTGGTGACCCTGTCGCCGGGCTGCTCGCCGGAGGACGTCGAGCGCCTGGTGGCGCAGACCGGGTACAGCCGGTTCCCGATGGTCGAGCCCGCTGAGCCCGCTGAGCCCGCTGAGCCGGCTGGGCCCCCGGAGGCGGGCGTTGGTCGCGGCGACGCGGGGACGGACCTGGACGGTGGTGCCCGCCTCATCGGGTACCTGCACCTCAAGGACGTGCTGTACGCCACCAACGGCAACCGGGCGCGCCCGGTGCCTACCTGGCGTGTCCGGGCCATCGCGACCGTCGGCCCGGACGAGGAGGTCGAGGACGCCCTGCGGGCCATGCAGCGCTCCGGCGCGCACCTGGCGCGGGTGGACGAGGGCGGCCGGACCGTGGGCGTCGTGTTCCTCGAGGACATCCTCGAGGAGCTCGTCGGCGAGGTCCGTGACGCGATGCAGCGCCGGCGCTGAMSTTTALLIGLLLLVGNAFFVGAEFAVLSVRRSTIEPRAEAGEKRAKVVLWAMENVSLMLACAQLGITVCSTGLGIIAEPALAHLLEGPFEAIGIPEQLVHPVALVIALGIVVYLHVVLGEMVPKNLAVTGPEAAALWFAPPLVFIARVVRPIIVALNWVANHAIRALGVEPKDEVASAFTVEEVQSIVEHSRAEGVLEDDQGLLAGAIQFSSRTARDVMVPVADLVTLSPGCSPEDVERLVAQTGYSRFPMVEPAEPAEPAEPAGPPEAGVGRGDAGTDLDGGARLIGYLHLKDVLYATNGNRARPVPTWRVRAIATVGPDEEVEDALRAMQRSGAHLARVDEGGRTVGVVFLEDILEELVGEVRDAMQRRRNANANANANA
AK018_026891359hypothetical proteinGTGCTGACCGACGTGCTCATGGTCACGGTGGGTGTGCTGCTGACGGCCGGTACCGCGATCTTCGTGGCGAGCGAGTTCTCGCTGGTGACCCTCGATCCCGCCGTCGTCGGCGCCGACGACGAGGAGGGCGACAGTCCGCCGCCCGGCCGGAAGGGTCCCGACCGTCGGGACCGCATCGTCCGTGCCGGGCTCAAGCACCTGTCCACGGAGCTGAGCTCCGCGCAGGTCGGCATCACCGTCACCACCATCCTGCTGGGCTACACCGCGCAGCCCGCCCTCCTGTCGCTGTTCAGCGCCGGGTTCTCCGCGACTCCGCTGGGTGAGGGCGTCGCCGGCGTCCTGGCGGGCGTGCTTGCCCTGATCGTGGTGAACGCCTTCTCCATGCTCTTCGGCGAGCTGATCCCCAAGAACTTCGCCCTGTCGACCCCGCACACGACCGCGCGCGCCGTCGTGCCCCTGCAGCGGGTGTTCACCGTGGGCGCGGGGCCGCTGATCGCCGTCCTGAACGGGTCCGCGAACGCGATCCTGCGCCGGATGGGCGTCGAGCCGCGCGAGGAGCTGTCGGGCGCCCGGTCGTCCTCCGAGCTGCTGTCGCTGGTGCGCCGCTCCGCCCAGGAGGGGACGCTGGAGGCGGGCACCGCCACCCTGCTGGCCAACTCCCTGGAGCTGGACGAGCTGACCGCGCGCGACGTGATGACCGACCGCACCCGCATGTCCGTCGTCGGGCGGGACACCAGCGCGCGCGAGGTCGTGGCGCTGGCGCACCGCACCGGGCACTCCCGCTTCCCCGTGATCGGCGACGACCGGGACGACGTCGTCGGGCTGGTCCACCTGCGCCGCGCCGTGGGGGTCCCCGACGACCGGCGCGACGACGTCCCGGCCGGGGCGCTGATGGTCGAGGCACCCCGCGTGCCGGAGACGGTGACGCTCGGTCCGCTGCTCGTCGAGCTGCGCGGCCTGGGCCTGCAGATGGCCGTCGTCGTGGACGAGTACGGCGGCACCTCCGGCGTCGTGACGCTCGAGGACGTGGTCGAGGAGCTCGTCGGGGACGTCGCCGACGAGCACGACCGCCGCCGCGGCGGGGTCGCCAGGCTCGCCGACGGCTCCTGGGCGGTGCCCGGCGTGCTGCGGCCCGACGAGCTCGAGGAGTCCACGGGGCTGCGCGTCCCCGAGGGCGCGGCGTACGAGACGCTCGGGGGCCTGGTCATGGACCGCCTCGGACGCCTGCCCGCCGAGGGCGACACCGTGGACGTCGACGGCGTGGTCCTGCGCGTCGAGATCGTCGACGGACGCCGGGTGGAACGCCTGCGGGTGGCCGGCGACGACACTTCCACGACCGTCGCGGGGGGTGCGGCATGAMLTDVLMVTVGVLLTAGTAIFVASEFSLVTLDPAVVGADDEEGDSPPPGRKGPDRRDRIVRAGLKHLSTELSSAQVGITVTTILLGYTAQPALLSLFSAGFSATPLGEGVAGVLAGVLALIVVNAFSMLFGELIPKNFALSTPHTTARAVVPLQRVFTVGAGPLIAVLNGSANAILRRMGVEPREELSGARSSSELLSLVRRSAQEGTLEAGTATLLANSLELDELTARDVMTDRTRMSVVGRDTSAREVVALAHRTGHSRFPVIGDDRDDVVGLVHLRRAVGVPDDRRDDVPAGALMVEAPRVPETVTLGPLLVELRGLGLQMAVVVDEYGGTSGVVTLEDVVEELVGDVADEHDRRRGGVARLADGSWAVPGVLRPDELEESTGLRVPEGAAYETLGGLVMDRLGRLPAEGDTVDVDGVVLRVEIVDGRRVERLRVAGDDTSTTVAGGAANANANANANA
AK018_02690729phoP_1COG0745Alkaline phosphatase synthesis transcriptional regulatory protein PhoPATGACCACCACTGCGAGCAGCTCCGGGCAGGGCCAGCAGAACGCGACGGTGCTCGTCGTCGAGGACGAGCCGACCATCGCCACCGCCATCGCGCAGCGGCTCTCCGCCGAGGGCTGGCGGGTCGAGGTCGCCCGCGACGGGCTGTCCGGCGTCGACGCCGCCGCGCGGCTGCACCCGGACGCCGTCGTGCTGGACGTCATGCTGCCCGGGATCGACGGGCTGGAGGTGTGCCGCCGCATCCAGGCCGACCACCCGACGCCGATCCTCATGCTGACCGCACGCGACGACGAGACGGACATGATCATCGGCCTCGGCGTGGGCGCGGACGACTACATGACCAAGCCGTTCTCGATGCGCGAGCTCGTCGCGCGCGTCAAGGCGCTCCTGCGACGCGTGGAGCGCGCGGCCCAGGCCGCGGCGGCAGCACCCGCCGAGCCGCCCCTCGTCGCCGGCGACGTCACGATCGACCGGGCCCAGCGCCGCGTGCACCGCTCGGGCGAGGAGGTCCACCTCACCCCCACGGAGTTCGAGCTGCTGGTGATGCTCGCCGCCGCCCCGAAGACCGTGCAGACCCGCGAGAAGCTCCTGGCGGAGGTGTGGGACTGGGCGGACGCGAGCGGGACCCGCACCGTGGACTCCCACATCAAGGCGCTGCGTCGCAAGCTCGGTCCGGAGCTCATCCGCACGGTCCACGGCGTGGGGTACGCGTTCGAGCCGCCGGCGGACTGAMTTTASSSGQGQQNATVLVVEDEPTIATAIAQRLSAEGWRVEVARDGLSGVDAAARLHPDAVVLDVMLPGIDGLEVCRRIQADHPTPILMLTARDDETDMIIGLGVGADDYMTKPFSMRELVARVKALLRRVERAAQAAAAAPAEPPLVAGDVTIDRAQRRVHRSGEEVHLTPTEFELLVMLAAAPKTVQTREKLLAEVWDWADASGTRTVDSHIKALRRKLGPELIRTVHGVGYAFEPPADPGPT0002665_1244DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002665-phoP|phoB1-K07658NANA
AK018_026911095sasA_6Adaptive-response sensory-kinase SasAGTGGAGCCGACGCAGCCGGGCGCGCGCCGCCCGGAGCACCACCGTCTCGACGTCCGCCCCCTGGACCCGGTGCACTCGCTGAAGGTGAAGCTGGGCCTCCTCGTCGTGGCGAGCGTCGCCGTGGGGGTGCTGATCACCTGGATCGGCCTGCGCAACGAGCTCGGGCCCAGCCGGACGTTCCCGCTGGCGATCCTGGTCTCGCTGCTGCTGACCTGGCTGCTCGCGCGGGGCATGACGTCCCCGCTGCGGGAGATGACGGCGGCCGCCCAGGCCATGGCGGACGGCGACTACTCGATCCGGGTGCGCTCCACGAGCCAGGACGAGGTCGGTCAGCTGGCCGAGGCGTTCAACACCATGTCGCGCGACCTCGAGGCCTCGGACCGCATCCGGCGCGAGCTCGTCGCCAACGTCTCGCACGAGCTGCGCACCCCGGTCGCGGCGCTGCAGGCACAGCTGGAGAACATGGTCGACGGCGTCACCGAACCGACGCCGGCCGCCCTGGAGGTCTCCCTGGAGCAGACCGAGCGCCTGAGCCGCCTGGTGACCTACCTGCTGGACCTTTCACGGGTGGAGGCGGGTGCCTCGGCGCTGACGCTGACGCAGTTCTCCGTGGGTGACTTCCTCGGGGAGTGCGCCGAGGCGGTGTCCATGGTCGACGCGGCCAAGGGCCTCACCTACGTCGTGGACGTCACGCCCGAGGACCTCGTGCTCGAGGCGGACGTCGAACGCCTGCGACAGGTCGTGACCAACCTGCTGCAGAACGCGATCCGGCACTCGCCGCACGGGGGCACGGTGCGTCTCGACGCCTACCCGGTCGACGACGACGTCGTGGTCGAGATCGGCGACGAAGGTCCCGGCATCGCCCCGGAGGACCGCGACCGGGTGTTCGAGAGGTTCGCCCGGGGTTCCACGAGCGGACGAGCCCTGGCCGGCAGCGGCGGCACCGGGATCGGCCTGGCGATCGTGCGCTGGGCCGTGGACCTGCACGGCGGGCACGTGGAGGTCGCGGACACCGAGTCGGGCGCGACGATGCGGGTGACGCTCCCGGCGTCAGCCCGGCCCGCCGCCGGGGTGACGACCGAGTCCGCCCGCTGAMEPTQPGARRPEHHRLDVRPLDPVHSLKVKLGLLVVASVAVGVLITWIGLRNELGPSRTFPLAILVSLLLTWLLARGMTSPLREMTAAAQAMADGDYSIRVRSTSQDEVGQLAEAFNTMSRDLEASDRIRRELVANVSHELRTPVAALQAQLENMVDGVTEPTPAALEVSLEQTERLSRLVTYLLDLSRVEAGASALTLTQFSVGDFLGECAEAVSMVDAAKGLTYVVDVTPEDLVLEADVERLRQVVTNLLQNAIRHSPHGGTVRLDAYPVDDDVVVEIGDEGPGIAPEDRDRVFERFARGSTSGRALAGSGGTGIGLAIVRWAVDLHGGHVEVADTESGATMRVTLPASARPAAGVTTESARPGPT0003985_9DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-ENVELOPE_STRESS_RESPONSE,PGPT0003985-baeS-K07642NANA
AK018_026923852kgd_1COG0508Multifunctional 2-oxoglutarate metabolism enzymeGTGGTGTCCCCGAAGGCTGGGTCAGAGTCGATCAACGCCGAGAGTGCGTCGTTCGGAGCCAACGAATGGCTCGTGGACGAGCTCTACGAGCAGTACCTGAAGGACAAGAACGCGGTCGATCCCGCGTGGTGGGACTTCTTCGAGGACTACACGCCGGACGAGTCCGCCGACGGTGCGGCCGACCGGTCGTCGGCACCCTCGTCACCTGCCGAGGGCAGCCCCGCTCCGGCGTCCTCGTCGGGCTCCGCGGACGCGACGCCGCAGGAGACCCGCACGGAACCGACCCAGGAGTCGGGCACCTCGACGCCCGCGACCGGCACGGCCGCGGCCGAGGAGCGCCAGGGCAGCGCCGAGCCGCCGGTGCCCGCCGACCCTGTCGTCTCCGCCGCCGACGCGCCGGTCGCCGAGGCCCTGCCCGCGACGGCACCGTACGCCGAGGTCGCACGTTCGACCCCGGAGTCCGGCGACGACGAGGCCACCGACGACGTCCAGAAGCTGCGCGGCCCCGCGGCGCGCGTGGTCACCAACATGGAGGCCTCGCTCGAGGTCCCGACCGCGACGTCGGTGCGTGCCGTGCCCGCCAAGCTCATGGTGGACAACCGCATCGTCATCAACAACCACCTCAAGCGCGGCCGCGGCGGGAAGATCTCCTTCACCCACCTGATCGGCTACGCGCTCGTCGAGGCGCTGGCCGACATGCCGGTGATGAACGCGCACTACGAGAGCACCGACGGCAAGCCCCACGTCGTCCAGCCCGCGCACGTCGGGTTCGGCCTCGCGATCGACCTCGCCAAGCCGGACGGCTCGCGCCAGCTCCTCGTGCCGAGCATCAAGAAGGCCGAGGAGATGGACTTCGCCGAGTTCTGGGCGGCGTACGAGGACCTCGTGCGCAAGGCCCGCGGCGGCAAGCTCGGCATGGACGACTTCGCCGGCACCACGATCTCGCTGACCAACCCGGGCGGGATCGGCACGGTCCACTCGGTACCGCGCCTCATGCAGGGCCAGGGCACGATCATCGGTGTCGGCGCGATGGACTACCCGGCGGAGTTCGCCGGGGCCTCGGACGAGCAGCTCGCCCGCATGGGCGTCTCGAAGGTCATGACCGTGACCTCGACGTACGACCACCGGATCATCCAGGGCGCGCAGTCCGGCGAGTTCCTCAAGATCCTGAGCAGCAAGCTCCTGGGCCTGGACGGCTTCTACGACCGCGTGTTCGCGGCGCTGCGCGTCCCCTACGAGCCGGTGCGCTGGGTGCGCGACAACACCGTGGACGCCGAGGTCGAGGCTGCCAAGCCGGCCAAGATCGCCGAGCTCATCCACGCCTACCGCTCGCGCGGTCACCTCATGGCGGACACCGACCCGCTCGCGTACCGCCAGCGCAAGCACCCGGACCTCGACATCCAGAACCACGGCCTGACGCTGTGGGACCTGGACCGCGCCTTCCCCACCGGCGGGTTCGGCGGCACGTCCAAGGCGACGCTGCGCGACACCCTGGGCCTGCTGCGCGACTCGTACTGCCGCTCCATCGGCATCGAGTACATGCACCTGTCCGACCCGGCACAGCGCAAGTGGCTGCAGGACCGGCTCGAGCACGGGTACGCGCGCACGCCCCGCGAGGACCAGTTGCGCATCCTGCGCCGCCTCAACTCGGCCGAGGCGTTCGAGACGTTCCTGCAGACCAAGTACGTCGGCCAGAAGCGCTTCTCGCTCGAGGGCGGCGAGTCCGTCATCCCGCTCCTCGACGCCGTGCTGTCCAAGGCCGCCGAGAACGGCCTCGACGAGGTCGGCGTCGGCATGGCCCACCGCGGCCGTCTCAACGTGCTCGCGAACATCGCAGGCAAGAGCTACGCGCAGATCTTCCAGGAGTTCGAGGGTCAGCTCGACCCGAAGTCCGTGCAGGGCTCCGGCGACGTGAAGTACCACCTCGGCACCGAGGGCACGTTCACCGCCGAGTCGGGTGCGACCACCAAGGTCTACCTGGCGGCGAACCCGTCGCACCTGGAGGCCGTGGACCCGGTCCTCGAGGGCATCGTGCGCGCCAAGCAGGACCGGATCGACCTGGGCGGCGACGGCTTCTCGGTGCTGCCGATCCTCATCCACGGGGACGCGGCCTTCGCGGGCCAGGGCGTCGTGCCGGAGGTGCTCAACCTCGCCCAGCTGCGCGGCTACCGCACCGGCGGCACGATCCACGTGGTCATCAACAACCAGGTGGGCTTCACCACCGGACCGTCGTCCTCGCGCTCCACGACCTACTCCACCGACGTCGCCAAGGGCTACCAGGTCCCGGTGTTCCACGTGAACGGCGACGACCCGGAGGCGTGCGTGCGCGTCGCCGAGCTGGCCTTCGCCTACCGCGAGCAGTTCGACCGCGACGTGATCATCGACATGATCTGCTACCGCCGCCGCGGTCACAACGAGGGTGACGACCCCTCGATGACGCAGCCGCTGATGTACAACCTCATCGAGGCCAAGCAGTCGGTGCGCAAGCTCTACACGAAGAACCTCGTGGCCCGCGGCGACATCACCGTCGAGGAGGCCGAGCAGGCGCTCAAGGACTACCAGGCGCAGCTCGAGCGCGTCTTCACCGAGACGAAGGGCTCGGGGTACACGGCGCCCGCCGGCACCGAGGAGATCGCCGGTCTCGAGCGGCCCGAGTCCCAGCGCGAGGACGCAGGCACGATGGTCGGCTGGCAGACGGCCGTGCCGCACACCGTCCTGGAGCGCGTGGGCGAGGTGCACGTCTCGCAGCCCGAGGGGTTCACCATCCACCCCAAGCTCGGCAAGCTGCTCGAGAAGCGCCAGCTCATGGCCAAGGAGGGCGACATCGACTGGGGCTTCGGCGAGCTGCTGGCCTTCGGGTCGCTGCTCATCGAGGGCACCCCGGTGCGCCTGGCCGGCCAGGACTCGCGTCGCGGCACGTTCACCCAGCGCCACGCCGTCCTGCACGACCGCCACACGGGTGCCGAGTGGACCCCGCTGCTGTACCTGTCCGGCGACCAGGCCAAGTTCTGGGTGTACGACTCCTCCCTGAGCGAGTACGCGGCGCTCGGCTTCGAGTACGGCTACTCGGTCGAGCGGCCCGACGCCCTCGTGCTGTGGGAGGCGCAGTTCGGCGACTTCGTCAACGGCGCCCAGACGGTCATCGACGAGTTCATCTCGTCGGCCGAGCAGAAGTGGGGGCAGAACTCCTCGGTCGTCATGCTGCTCCCGCACGGGTACGAAGGGCAGGGTCCGGACCACTCCTCGGCCCGCATCGAGCGGTTCCTGCAGATGTCGGCGGAGAACAACATGACGGTCGCCCAGCCGTCGACGCCGGCGTCGTATTTCCACCTGCTGCGCAAGCAGGCGTACGACCGCCCGCGCCGTCCGCTGGTCGTGTTCACCCCCAAGCAGCTGCTGCGGCTCAAGGCGGCGGCCTCCGACGTCGCCGACTTCACGTCGGGCACGTTCGAGCCGGTGCTGCCGGACACCGCCGTCGAGCGTGGCGAGATCACGCCGTCCGACGTCGAGCGGCTCGTGCTGTGCACGGGTCGCGTCTACTACGACCTGGTCGCCGAGCGCGCCAGGCGTGAGGACGCCCGGACGGCGATCGTGCGGGTGGAGCAGCTCTACCCGTTCCCGGAGGAGCAGATCCGCGCCGAGTTCGCGAAGTACCCGGACGCCGATGTCCTCTGGGTCCAGGACGAGCCCCAGAACCAGGGCGCCTGGTCGTTCCTGCACCTGGCGATGCCGGACGACCTGCCCCGCGTGGGCGTCGTCTCACGCCCGGCGTCGGCCTCGACCGCCGCGGGCACCGCGAAGCGGCACAAGGAGGAGCAGCAGATCCTGCTGAACCAGGTCTTCGACCGCTGAMVSPKAGSESINAESASFGANEWLVDELYEQYLKDKNAVDPAWWDFFEDYTPDESADGAADRSSAPSSPAEGSPAPASSSGSADATPQETRTEPTQESGTSTPATGTAAAEERQGSAEPPVPADPVVSAADAPVAEALPATAPYAEVARSTPESGDDEATDDVQKLRGPAARVVTNMEASLEVPTATSVRAVPAKLMVDNRIVINNHLKRGRGGKISFTHLIGYALVEALADMPVMNAHYESTDGKPHVVQPAHVGFGLAIDLAKPDGSRQLLVPSIKKAEEMDFAEFWAAYEDLVRKARGGKLGMDDFAGTTISLTNPGGIGTVHSVPRLMQGQGTIIGVGAMDYPAEFAGASDEQLARMGVSKVMTVTSTYDHRIIQGAQSGEFLKILSSKLLGLDGFYDRVFAALRVPYEPVRWVRDNTVDAEVEAAKPAKIAELIHAYRSRGHLMADTDPLAYRQRKHPDLDIQNHGLTLWDLDRAFPTGGFGGTSKATLRDTLGLLRDSYCRSIGIEYMHLSDPAQRKWLQDRLEHGYARTPREDQLRILRRLNSAEAFETFLQTKYVGQKRFSLEGGESVIPLLDAVLSKAAENGLDEVGVGMAHRGRLNVLANIAGKSYAQIFQEFEGQLDPKSVQGSGDVKYHLGTEGTFTAESGATTKVYLAANPSHLEAVDPVLEGIVRAKQDRIDLGGDGFSVLPILIHGDAAFAGQGVVPEVLNLAQLRGYRTGGTIHVVINNQVGFTTGPSSSRSTTYSTDVAKGYQVPVFHVNGDDPEACVRVAELAFAYREQFDRDVIIDMICYRRRGHNEGDDPSMTQPLMYNLIEAKQSVRKLYTKNLVARGDITVEEAEQALKDYQAQLERVFTETKGSGYTAPAGTEEIAGLERPESQREDAGTMVGWQTAVPHTVLERVGEVHVSQPEGFTIHPKLGKLLEKRQLMAKEGDIDWGFGELLAFGSLLIEGTPVRLAGQDSRRGTFTQRHAVLHDRHTGAEWTPLLYLSGDQAKFWVYDSSLSEYAALGFEYGYSVERPDALVLWEAQFGDFVNGAQTVIDEFISSAEQKWGQNSSVVMLLPHGYEGQGPDHSSARIERFLQMSAENNMTVAQPSTPASYFHLLRKQAYDRPRRPLVVFTPKQLLRLKAAASDVADFTSGTFEPVLPDTAVERGEITPSDVERLVLCTGRVYYDLVAERARREDARTAIVRVEQLYPFPEEQIRAEFAKYPDADVLWVQDEPQNQGAWSFLHLAMPDDLPRVGVVSRPASASTAAGTAKRHKEEQQILLNQVFDRNANANANANA
AK018_02693993iolS_2COG0667Aldo-keto reductase IolSATGGAAGAGCGGGTGCTCGGTCGGACCGGCCGGATGGTGTCGGTCGTCGGCCTGGGAACCTGGCAGCTCGGCGCGGACTGGGGCGAGGTGAGCGACGACGAGTCGCGCGCCGTGCTCGAGGCCTCGCTGGAGGCCGGGGTCAACTTCTTCGACACGGCCGACGTGTACGGGGACGGTCGCAGCGAGCAGGCGCTGGGGCGCTTCCTCGCCGACCACGAGGGCGAGGGCATCACCGTGGCGACCAAGATGGGTCGCCGGGCGGACCAGGTGCCGGAGAACTACGTGCTGCCCCACTTCCGGGAGTGGACCGACCGGTCGCGCCGCAACCTCGGTGTCGACCGCCTCGACCTGGTGCAGCTGCACTGCCCCCCGACGGCGGTGTACTCCGACGACGAGGTCTACGACGCGCTCGACACCCTCGTCGCCGACGGCGTCACCGCGGCCTACGGCGTGTCGGTGGAGACGGTCGACGAGGCCCTGACGGCGATCGCCCGCCCCGGTGTGGCGACGGTCCAGATCATCCTCAACGCGTTCCGGCACAAGCCCCTCGAGCAGGTGCTGCCGGCAGCGTCCGAGGCCGGCGTCGGCATCATCGCCCGCGTCCCGCTGGCCTCCGGGCTCCTGTCCGGGCGCTACACCAAGGACACCACGTTCGGCGAGAACGACCACCGGACGTTCAACCGCTCCGGCGAGGCGTTCGACGTCGGCGAGACGTTCTCGGGCGTCCCCTTCGAGACGGGGGTCGAGGCCGCTGCACGGTTCACCGAGATCGCGGGCGGTCTGACCCAGGACCTCACCGCGGCCCAGGCGGCGCTGGCGTGGGTCTGGCAGCGGGCCGGGGTCTCCACCGTGATCCCAGGTGCCCGCAACCCCGAGCAGGCGCGGCTCAACGCCGCGGCCGGGTCGGCGTCGTCCCTGGGGCCGCTCTTCACCTCGAAGGTGCGCGACCTGTACGACGAGCTGGTCCGCGAGCACGTGCACGACCGCTGGTGAMEERVLGRTGRMVSVVGLGTWQLGADWGEVSDDESRAVLEASLEAGVNFFDTADVYGDGRSEQALGRFLADHEGEGITVATKMGRRADQVPENYVLPHFREWTDRSRRNLGVDRLDLVQLHCPPTAVYSDDEVYDALDTLVADGVTAAYGVSVETVDEALTAIARPGVATVQIILNAFRHKPLEQVLPAASEAGVGIIARVPLASGLLSGRYTKDTTFGENDHRTFNRSGEAFDVGETFSGVPFETGVEAAARFTEIAGGLTQDLTAAQAALAWVWQRAGVSTVIPGARNPEQARLNAAAGSASSLGPLFTSKVRDLYDELVREHVHDRWNANANANANA
AK018_02694933yihR_1COG2017putative protein YihRGTGAACACGACCTCCCACGCCCCCACCGTCCCCGCGCCGTCGGGCGCCCAGCACGTCATCCGCGCCGGCGAGCACACCGCCACGATCGCCGAGGTCGGCGCGATGGTCCGCGAGTACACCGTGGGCGGTCGCGACGTCTTCGTGCCGTTCGACGCCGCCGAGCCCGCCCCGGTGTTCAACGCCGCGGTCCTGGTGCCGTGGCCGAACCGGCTGCGCGACGGCCGCTACACCGTCGACGGGACCTCCTACCAGCTGCCGGTGAGCGAACCGGACCGCGGCACGGCGCTGCACGGCCTGGGCTGCTGGTACCGCTGGACGCCGGTGGACAGCGCCCCGGACTCGGTCACCCTGGAGCTCGCCCTGCCCGCGCAGAAGGGCTGGCCGTTCCAGCTGGTGACCCGCGTGCGCTACACCGTCGACGCCGGGTCGGGACTCGAGGTCGTCGTGCGCACCACGAACGTCGGTGCCGGCACCGCGCCCTACGGCGTCGGCTTCCACCCGTGGCTGTCCGCCGGGGGCGCCGACCTCGACGACTGCACGGTGCGGCTGGACGCCACCGAGCACGTGACGGTCGACGACCGTCTGCTGCCCACCGGGGTCGATCCGGTCACCGGCGACCACGACCTGCGCGAGACGCGGTCCCTGGCCGGTCTTGACCTCGACGACGCCTGGGTCGGGGCCACCCGGGACGCCGACGGCCTGGCCTGGTGCCGCCTGGGCTGCCCCGACGGCAGCACGCCCGCCGTCTGGATGGACGGGACCATGGACTGCTGGCAGGTCTGCTCCGCGGACCACATCGACGGCCACGAACGGTTCGGCCTCGCCGCCGAGCCGATGAGCTGCTACGCCGACGCGTTCAACACCGGCGACCGCCTGGTACGCCTCGCGCCGGGCGACTCGCACGAGGTCCGCTGGGGCGCCACCCTGCTCTGAMNTTSHAPTVPAPSGAQHVIRAGEHTATIAEVGAMVREYTVGGRDVFVPFDAAEPAPVFNAAVLVPWPNRLRDGRYTVDGTSYQLPVSEPDRGTALHGLGCWYRWTPVDSAPDSVTLELALPAQKGWPFQLVTRVRYTVDAGSGLEVVVRTTNVGAGTAPYGVGFHPWLSAGGADLDDCTVRLDATEHVTVDDRLLPTGVDPVTGDHDLRETRSLAGLDLDDAWVGATRDADGLAWCRLGCPDGSTPAVWMDGTMDCWQVCSADHIDGHERFGLAAEPMSCYADAFNTGDRLVRLAPGDSHEVRWGATLLPGPT0017825_3786DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
AK018_02695591hypothetical proteinGTGCGCATCTGCGTGGTGGGCGACGAGCTCAGCGTGGGCGTCGGGGACGCCCGCGCCCTGGGCTGGACGGGGCGCGTCCTGGCCCGGACGCGGTTCGAGCGACCCGCCATGACGTTCACCCTCGCGGTGCCCGGCGAGACGACGTCGGCGCTCGGCGCCCGCTGGGAGGGCGAGACCGAGCAGCGCTTCGGTCCGGAGGCCACGACCGACAACCGCCTGGTCGTGGCGCTCGGACGCCACGACCTGGCAGCAGGGCTGTCGGTGGCACGCTCCCGCCTGAACCTGGCCAACATCCTCGACCAGGCGGACAGCCGTCGTCTGCCGGCGTTCGTGGTGGGTCCCCCGCCGGGCCGGGCCGAGGACGGCGGGCGCATCGCCGAGCTGTCGGCGGCGTTCGCGGACGTCGCCAGCCGTCGCCGCGTGCCCTACGTGGACACGTACACCCCGCTGGCCCAGCACGAGCAGTGGCTGGCCGACCTGGCCACCACGGGGTCGACGTTCCCGGGGCAGGCCGGGTACGGGCTGATGGCGTGGCTGGTCCTGCACACAGGCTGGCACTCCTGGCTGGGCCTGCCCGGCGAGAACGAGTGAMRICVVGDELSVGVGDARALGWTGRVLARTRFERPAMTFTLAVPGETTSALGARWEGETEQRFGPEATTDNRLVVALGRHDLAAGLSVARSRLNLANILDQADSRRLPAFVVGPPPGRAEDGGRIAELSAAFADVASRRRVPYVDTYTPLAQHEQWLADLATTGSTFPGQAGYGLMAWLVLHTGWHSWLGLPGENEPGPT0001840_2691DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001840-tesA-K10804NANA
AK018_02696801hypothetical proteinATGAGCACCGAGACGTGGGCGGTCGCCGCCCCCCAGACCTTCGACGTCCCGGGGGTCACCGCCGTGTCCGCGCGTCTGCAGTCCGGGCGGGTCGAGGTCGTCACGGACGACGACGCGACCGCCGTGCAGGTCGCGGTCGACGAGGTCGGGGAGAAGCCGCTGCAGGTCACCCGCGACCGTGACCGCCTGCGCATCGCGTACGAGCGCTCCCGGGTCGACGCGTTCGTCGCCCGGGTGCGGTCCCTCGGGGAGTCCGAGCGCGCCGTCGTGCGACTGACCGTGCCACCCGGTACCAGCGTGGACCTCGGCAGCGTCGACGCCGCGATCGACGTGGCGGGCACGGCCGGGACGGTGGTCAAGACCGTCACGGGGAGCGTGCACACGGCGGGCACCCGGGGATCGCTCTACCTGCGGTCGGTGTCCGGCGACGTCGCCGCCGGCGACCACACCGGCGACGTCTCGGGCCAGGTGGTCTCCGGCTCGCTGGCCGTCGACGGAGCGGTGGGGCGCGTCTCGGCGGCCAGCGTGTCCGGCGCGGTCGTCGTGACGGCGGCCGGGACGGCACCGATGGTCACGGCCAAGACCGTCTCCGGAGACGTGGCGGTGCGGCTCGACGCCGGCACCCCGGTCAGCCTCAAGGTGCGGGGGGCGGCCGGTCAGGTCGTGCTGGACGGCGAGTCCGTCGAGTCGGCGGCGCGCACGCTGAGCGTGGACCGGGCGGCCCCGGGCGAGGACGGCCGCCCCACGGCCTACGTCACGGCCAACGTCACCTCGGCGCGCGTCGTCGTCTCACGCGGCTGAMSTETWAVAAPQTFDVPGVTAVSARLQSGRVEVVTDDDATAVQVAVDEVGEKPLQVTRDRDRLRIAYERSRVDAFVARVRSLGESERAVVRLTVPPGTSVDLGSVDAAIDVAGTAGTVVKTVTGSVHTAGTRGSLYLRSVSGDVAAGDHTGDVSGQVVSGSLAVDGAVGRVSAASVSGAVVVTAAGTAPMVTAKTVSGDVAVRLDAGTPVSLKVRGAAGQVVLDGESVESAARTLSVDRAAPGEDGRPTAYVTANVTSARVVVSRGNANANANANA
AK018_02697282rsrA_1Anti-sigma factor RsrAATGAGCGGCGACCTGACGCCCATCCCGCACGAACCCGCGGAGGGCGAGAGCGAGTGCGAGCACGCGCTCGTGCACCTGTACGAGTACCTCGACTCCGAGATGACCGAGGCGGACGAGCGGCGCATGCGCGCCCACGTCGCCCACTGCTCGCCCTGCCTGGCCGAGCTGAGCATCGAGGAGCTCGTCAAGAAACTGGTGAAGCGCTCGTGCGCCGAGCAGGCGCCGGAGACGCTCCTGGTGCGCATCCGCCAGCAGATCACCGTCATGTCCGTGCACGAGTGAMSGDLTPIPHEPAEGESECEHALVHLYEYLDSEMTEADERRMRAHVAHCSPCLAELSIEELVKKLVKRSCAEQAPETLLVRIRQQITVMSVHENANANANANA
AK018_02698840hypothetical proteinATGCGCGCGGCGGACGCGTCGTTGCACGCGGATGTGGAAGCCTGCACGACCCGACCCGACGCGCCCGCCGCCGAGGTGCCCCTGTTCGGCCTCGCGCTCGACGCCATGGACACCTCCGCCTCGCCGCGCACGACCCGCACGGCCTGGCCGACAGGGCTAGGCTCGAGAGCGATGACCCAGGATGACGACACCGGCGCACCCGCCCCCGCGACCCCCCAGGACGAGGTCGGCGAGGACACCGAGCGCGCGCCCGAGCAGGAGTCCGACGCCGACCGCGCCGCCCGTTTCGAGCGGGACGCGCTGCAGTTCGTCGACCAGCTCTACTCGGCCGCCCTGCGCATGACCCGCAACCCGGCCGACGCCGAGGACCTCGTCCAGGAGACGTTCGTCAAGGCGTTCGCCGCGTTCCACCAGTACCGGCCGGGCACCAACCTCAAGGCGTGGCTGTACCGGATCCTGACCAACACGTTCATCAACAACTACCGCAAGAAGCAGCGCCAGCCCCAGCAGGCGCAGACCGAGGACATCGAGGACTGGCAGATCGCGCGCGCCGCGACCCACACCTCCCAGGGTCTGCGTTCCGCCGAGGTCGAGGCCCTGGACCGGCTGCCCGACTCCGACGTGAAGCGGGCGCTCGCCGAGCTGCCCGAGGAGCGGCGGATGGTCGTCTACTACGCCGACGTCGAGGGCTTCCCCTACAAGGAGATCGCGGAGATCATGGGCACACCCATCGGGACGGTGATGTCCCGGCTGCACCGTGGCCGGCGCCAGCTGCGCGAGCTGCTCGCCGACTACGCGGCCGACCGCGGACTCGCCGCAGCGCGTGGAGGAGAATCATGAMRAADASLHADVEACTTRPDAPAAEVPLFGLALDAMDTSASPRTTRTAWPTGLGSRAMTQDDDTGAPAPATPQDEVGEDTERAPEQESDADRAARFERDALQFVDQLYSAALRMTRNPADAEDLVQETFVKAFAAFHQYRPGTNLKAWLYRILTNTFINNYRKKQRQPQQAQTEDIEDWQIARAATHTSQGLRSAEVEALDRLPDSDVKRALAELPEERRMVVYYADVEGFPYKEIAEIMGTPIGTVMSRLHRGRRQLRELLADYAADRGLAAARGGESPGPT0014960_2048DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_026991035rhaSHTH-type transcriptional activator RhaSGTGGCCGAGATGCCATGCTTCATCGACATCCTGCCACCGGTGTGCAAGGCTGGGCCCATGATCGAGAAGGTGGCCGCCGTCGTCGTCCCCGGCGTCGCGCCGTTCGAGATGGGGATCGCCTACGAGGTCTTCGGCATCGACCGCCGCGACACCGGCGGGCCGACGTTCGAGTTCACGCTCTGCACCCCCGTGCCCGGGTCGGTGCCCACGAAGGGCGGGTTCGCGCTCCAGGTCGACGCCGGGCTCGAGGCCACCGAGGACGCCGACGTCGTCGTCGTGGTCGCCTACGACGTGCTGTCGGGCGACGGCGTCCCGGACGTGCCGTCGTCGTACCTCGACGCCCTGCGCCGCGCCCACGCCCGCGGCGCGTGGATCCTGTCCCTGTGCTCCGGCGCCTTCGTCCTGGCCGCCGCGGGACTGCTCGACGGACGCCGCTGCACCACCCACTGGATGTTCGCCGACCGGCTCGCCGCCCTCGTGCCCGACGCCGATGTCGACCCGGACGTGCTCTACGTCGCCGACGGGCGGGTGCTCACCAGCGCCGGCACCGCCGCCGGCATCGACGCCGCCCTGCACCTGGTCCGCACCGAGCTCGGCGGCGAGGCGGCGCGTGCCGTCGCGCGCCGGATGATCGTCCCGCCGCAGCGCGACGGCGGGCAGGCGCAGTTCGTCCTCGACCCCGTGCCCGACGCCGCCGACTCGCTCGCGCCGCTGCTCGCCTGGGTCCGCGCGCACCTGGCCGAGCCGCACACGGTGCCTTCCCTCGCCCGCCGCGCCATGCTCTCCGAGCGCACCTTCGCCCGACGGTTCGCCGCCGAGACCGGGACCACCCCGGCCGCCTGGATCGCCCGCCAGCGCGTCGCCCGCGCCCAGGAGCTGCTCGAGTCGACCGCCGCGAGCATCGACGAGATCGCCGACACCGTCGGGTTCGGCACCGCGGCCGTGCTGCGGCACCACTTCACGCGCGTGCTCGGCACCAGCCCCACCGCCTACCGGCGCCGCTTCGGGGACCGCGTCCCCGCCGTCGTGCCCTGAMAEMPCFIDILPPVCKAGPMIEKVAAVVVPGVAPFEMGIAYEVFGIDRRDTGGPTFEFTLCTPVPGSVPTKGGFALQVDAGLEATEDADVVVVVAYDVLSGDGVPDVPSSYLDALRRAHARGAWILSLCSGAFVLAAAGLLDGRRCTTHWMFADRLAALVPDADVDPDVLYVADGRVLTSAGTAAGIDAALHLVRTELGGEAARAVARRMIVPPQRDGGQAQFVLDPVPDAADSLAPLLAWVRAHLAEPHTVPSLARRAMLSERTFARRFAAETGTTPAAWIARQRVARAQELLESTAASIDEIADTVGFGTAAVLRHHFTRVLGTSPTAYRRRFGDRVPAVVPPGPT0014658_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NANANA
AK018_02700144hypothetical proteinATGACCCTTCTCCTGCTGCTTCTCGCCCTCGCGATCGGCACCGCCTGGTTGGCCGCGCTCGCCCGCACGGTGCACCGCGACGGCCTCGGCACGCGCCGTCCGCCCCGGTCCCACCGCGACTGGTGGGAAGTCGGCGCCGGTTGAMTLLLLLLALAIGTAWLAALARTVHRDGLGTRRPPRSHRDWWEVGAGNANANANANA
AK018_02701360hypothetical proteinATGTCTGCTCGCGTGCGGGGTGCCGGCCCGGTCACCGCTGCCCTGCTCACCGTCGTGGTGCTGGTGACGGGGGCGTGCTCCGGCGGCCGGGGCGGCGCGGTGCCCGACCCCCCGGCGGACGTCACGGGTGTGGTGTCCGACGTCGGCTCCGCCGGTCCCGCGTTGACGGGCGCGAGCGACGACTACTACGAGGGCATGGCCCTGCTCAGCGAGGAGACGATGGTCGTGGGCACCGACGGCAGGGAGGCGCCGCCCGAGTCCCTCGAGCCGGGTGCGGACGTCGAGGTCTGGGTCGCGGACGAGTGCGAGGAGTCCTCCCCGGTGCGGTGCGTCGTCGAGGTCGTGCGGATCGTCGGGTAGMSARVRGAGPVTAALLTVVVLVTGACSGGRGGAVPDPPADVTGVVSDVGSAGPALTGASDDYYEGMALLSEETMVVGTDGREAPPESLEPGADVEVWVADECEESSPVRCVVEVVRIVGNANANANANA
AK018_02702744hypothetical proteinATGCTGCTGCGACGTCTCGCCCGCCCCCTGCTGGCCGCCCCGTTCGTCTACGACGGCGTGTCCACCGCGCTGCGACCGGCCGAGCACACCGACGCCGCCCGCCAGGGCGCCGACACGGTCACCGACGCGCTCGGCGTCGACAAGCTCGACGACACGCAGGTCTCGCTGCTGGTCCGCGCCCACGGCACCGCCACCGCGCTGGCCGGCGTGCTCCTCGCCGTCGGACGCGCACCCCGCACGGCCGCGCTCGCGCTGGCCGCCCTGTCCGCGCCTCTGGCCGTGGTCAACCAGCCCTTCACGAGCAAGGGCGACGAGCGCAAGGACAAGACCGCCAAGTTCGTCCGCAACCTCGGCGCCGTCGGTGCGGCGGTCATCGCGGGGATCGACCTCGAGGGTCGCCCCGGCGTGAGCTACCGGATCTCCCAGAAGCGCACCGCCGCCCAGCGGTCCGGCAAGCACGCGATCGAGTCCGCCGAAAGGTCCGGCAAGCATGCCGTCGAGTCCGCGACGAAGTCCGGCAAGCACGCCGTGGACACCGCCAAGCGGTCGGCCGAGCACGCCGGCAGGTCGGCCACGGCGTCGGTCAAGCACGCCCGCCGGTCCGCGACCGCGTCCGCCAAGCACGCCGCAGCCTCGGCCAAGAAGTCCGCGGAGCACGCGACCCGCGCCGCGAAGCACGATGTCAAGGCCACCGCCAAGAGCGCCAGGGCCTCCGCCGAGAAGGCCGCCGCCAAGGTGTCCTGAMLLRRLARPLLAAPFVYDGVSTALRPAEHTDAARQGADTVTDALGVDKLDDTQVSLLVRAHGTATALAGVLLAVGRAPRTAALALAALSAPLAVVNQPFTSKGDERKDKTAKFVRNLGAVGAAVIAGIDLEGRPGVSYRISQKRTAAQRSGKHAIESAERSGKHAVESATKSGKHAVDTAKRSAEHAGRSATASVKHARRSATASAKHAAASAKKSAEHATRAAKHDVKATAKSARASAEKAAAKVSNANANANANA
AK018_027031323aroA_1COG01283-phosphoshikimate 1-carboxyvinyltransferaseATGACGACCGCGCCTGCCTCGACCGACCTGCCCCTGTGGGACGCCCCCGTCGCCGACGGAGCGCTCGCCGCCACGGTCGAGGTCCCCGGCAGCAAGTCGCTGACCAACCGGCTGCTGGTGCTCGCCGCCCTGGCCGATGGCCCCGGCACCCTGCAGGGCGCCCTGCGCTCGCGCGACGCCGACCTGATGATCGCCGCGCTGCGGTCCCTCGGCGCCACCGTCACCAAGGGCGACTCCCCCAGCACCCTGCACGTCACGCCCGGCCCCCTCACCGGAGACGTCGACGTCGACTGCGGACTGGCGGGCACCGTCATGCGGTTCCTGCCGCCCGTGGCCGCGCTGGCCGACGGCGACGTCCGGTTCGACGGCGACCCCGAGGCCCGCGTGCGGCCGATGCAGCCGGTGCTCGCCGGCCTGCACACCCTCGGGGTGCGCGTCACCAGCCCCGAGGGCGACCGCCCGACCAACCTGCCGTTCACGGTGCACGGTCGCGGCCACGTCGCGGGCGGCGCCGTGGACATCGACGCCTCGGGCTCCTCGCAGTTCGTCTCCGCGCTGCTGCTGGCCGCCGCCCGGTTCGACCGGCCGCTGACGCTGCGCCACATCGGCACCACCCTGCCGAGCCTGCCGCACATCGACATGACCGTGGCCACCCTGCGCGAGGTCGGCGTCGCCGTGGACGACTCCCGCGACGGCATCTGGCAGGTCACCCCCGGCCCGATCGCCGCCCGCGACGTGCGCGTCGAGCCCGACCTGTCCAACGCCGCGCCGTTCCTCGCCGCGGCCCTCGTCGCCGGCGGCACGGTGCGTGTGCCGGGCTGGCCGACGTCGACCACCCAGCCGGGCGCCATGGTCCCCGCGCTGCTGGAGCGGATGGGCGGCACGTCGTCGCTCGACGACGGCGTGCTCACCGTGACGGGGACCCGCGAGATCCGCGGCATCGACGTCGACCTGCGCGCCGCCGGCGAGCTCGCCCCCACGTTCGCCGTGCTCGCCGCGCTGGCCGACTCCCCCAGCCGCCTGCGCGGCATCGCGCACCTGCGCGGCCACGAGACCGACCGGCTGGCCGCGCTGGCCGCCGAGATCACGCGGCTGGGCGGCCGGTGCGAGGAGACCCGCGACGGGCTCGTCATCACCCCGCGCCCGCTGCACGGCGGCGTGTTCCGCACCTACGCCGACCACCGCATGGCCACCTCGGCGGCCCTGCTCGGGCTGCGGGTGCCGGGCGTCCAGGTCGAGAACGTCGCCACCACCGCCAAGACCCTGCCGGGGTTCGACCGCATCTGGGCGCGCATGCTCCGCCGCACGGAGGACCCGGCCTGAMTTAPASTDLPLWDAPVADGALAATVEVPGSKSLTNRLLVLAALADGPGTLQGALRSRDADLMIAALRSLGATVTKGDSPSTLHVTPGPLTGDVDVDCGLAGTVMRFLPPVAALADGDVRFDGDPEARVRPMQPVLAGLHTLGVRVTSPEGDRPTNLPFTVHGRGHVAGGAVDIDASGSSQFVSALLLAAARFDRPLTLRHIGTTLPSLPHIDMTVATLREVGVAVDDSRDGIWQVTPGPIAARDVRVEPDLSNAAPFLAAALVAGGTVRVPGWPTSTTQPGAMVPALLERMGGTSSLDDGVLTVTGTREIRGIDVDLRAAGELAPTFAVLAALADSPSRLRGIAHLRGHETDRLAALAAEITRLGGRCEETRDGLVITPRPLHGGVFRTYADHRMATSAALLGLRVPGVQVENVATTAKTLPGFDRIWARMLRRTEDPAPGPT0012850_1582DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012850-yddE-K00800NANA
AK018_027041056rsgA_1COG1162Small ribosomal subunit biogenesis GTPase RsgAATGGCCCGCCGGGTCCGCGACGAGCACGAGCGCTTCGCGCGCCCCTCCAAGCACGGCTCGCGGCCGCGCTCCAAGCAGCGACCCGACCACGCCGACGCCGTCCCCGCCCTGGTCACGGGCATCGACAGGGGGCGGTACACGCTCGTGGTGGACGACGGCGGGCCTGACGAGCGCGAGATCCTCGCCATGAAGGCCCGCGAGCTCGGGCGCACCCGCACGGTCGTCGGCGACCGCGTCGACGTCGTCGGGGACACCACCGGCCACGAGGGCACGCTCGCCCGCATCGTGCGCATCACCGACCGGACCTCCACGCTGCGACGCACCGCCGACGACACCGACCCGTACGAGCGGATCGTGGTCGCCAACGCCGACCAGCTCGTCGTCGTCACGGCGCTCGCCCAGCCCGAGCCGCGTACCGGCATGATCGACCGCTGCGTCGTCGCCGCCTACGACGCCGGCATGGACGTGCTGCTGTGCCTGACCAAGGCCGACCTCGCCTCCCCCGACGAGCTGCGCGGGCTGTACGAGCCGATCGGGGTGTCGGTCGTCGTGACGCGCCGGGACTCCCCCGAGGCCGTCGAGGACGTGCGCTCGCACCTGCTCGGACGCACGTCGGTACTCGTGGGCCACTCCGGCGTCGGCAAGTCCACACTCATCAACGCGCTGGTGCCCGACGCCCTGCGGGCGACCGGCGACGTCAACGACGTGACCGGACGCGGACGGCACACCTCGACGTCGGCGGTCGCCCTGCGGCTGCCCGTGGGGCCGGACTCCTCCGTGGACGACGACGGCCACGACGGCTGGGTGATCGACACCCCCGGCGTGCGCTCCTTCGGGCTGGCGCATGTCGAGACCGACCACCTCCTGGCGGCATTCGAGGACCTCGACGCCGCGGCCGCGGAGTGCCCACGGGGCTGCACCCACGCCGAGGACGCGCCGGACTGCGCGCTGGACGACTGGGTCACGGCCGCCGACGGCGAGACCGAGCGAGAGGCCAGGGCAGCGCGTCTCGCGTCGTTCCGCCGCCTGCTGGCGTCCAGGACCGACGCGACATAGMARRVRDEHERFARPSKHGSRPRSKQRPDHADAVPALVTGIDRGRYTLVVDDGGPDEREILAMKARELGRTRTVVGDRVDVVGDTTGHEGTLARIVRITDRTSTLRRTADDTDPYERIVVANADQLVVVTALAQPEPRTGMIDRCVVAAYDAGMDVLLCLTKADLASPDELRGLYEPIGVSVVVTRRDSPEAVEDVRSHLLGRTSVLVGHSGVGKSTLINALVPDALRATGDVNDVTGRGRHTSTSAVALRLPVGPDSSVDDDGHDGWVIDTPGVRSFGLAHVETDHLLAAFEDLDAAAAECPRGCTHAEDAPDCALDDWVTAADGETEREARAARLASFRRLLASRTDATPGPT0009020_1865DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009020-rsgA|engC-K06949NANA
AK018_02705825hisN_1COG0483Histidinol-phosphataseGTGAGGGTGGCCTCCTTCCAGCAGACTCCCAGCACCTCCGGGCACGGGCGCACGTACGAGGACGACCTGCGCCTGGCCCACGTGATCGCCGACCAGGTGGACTCGATGACGATGTCCCGGTTCCGCGCGGTCGACCTCCACGTCGAGACCAAGCCGGACCAGACGCCGGTCTCCGACGCCGACCGCGGCGCCGAGGAGTTCATCCGCGCCCAGCTCGCCCGCGCCCGCACGCGTGACGCCATCGTCGGGGAGGAGTTCGGCGAGGCCGGCAGCGGGTCGCGCCGCTGGATCATCGACCCGATCGACGGCACCAAGAACTTCGTGCGCGGCGTACCCGTGTGGGCGACGCTCATCGCGCTCGCCGACGGCGACGACCTCGTCATGGGCCTCGTCTCCGCCCCGGCGCTGGGACGGCGCTGGTGGGCTGCCAAGGGGTCGGGCGCCTGGACGGGCAAGTCCATCGCCGCGGCCACCCGGATGCACGTCTCCGGCGTCTCGTCGCTCGGGGACGCCTCGTTCGCCTACTCCTCCCTGGACGGCTGGGAGGAGCGCGACAAGCTCAACGGGTTCCTCGACCTGACCCGCGAGTGCTGGCGCACGCGCGGCTACGGCGACTTCTGGTCCTACATGCTGGTGGCCGAGGGCGCGGCGGACATCGCCGCGGAGCCCGAGCTCGAGCTGTACGACATGGCCGCGCTCGTACCGATCGTCGTCGAGGCCGGGGGCCGTTTCACGTCGCTCGAGGGCACCGACGGCCCCTGGGGCGGCAACGCCGTGGCCACCAACGGGCTCCTGCACGACAAGGCGATGGTCTACCTCGGCTGAMRVASFQQTPSTSGHGRTYEDDLRLAHVIADQVDSMTMSRFRAVDLHVETKPDQTPVSDADRGAEEFIRAQLARARTRDAIVGEEFGEAGSGSRRWIIDPIDGTKNFVRGVPVWATLIALADGDDLVMGLVSAPALGRRWWAAKGSGAWTGKSIAAATRMHVSGVSSLGDASFAYSSLDGWEERDKLNGFLDLTRECWRTRGYGDFWSYMLVAEGAADIAAEPELELYDMAALVPIVVEAGGRFTSLEGTDGPWGGNAVATNGLLHDKAMVYLGPGPT0012270_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-PUROMYCIN_METABOLISM,PGPT0012270-pur3-K12634NANA
AK018_02706510hypothetical proteinATGCGCATCTACGTGCCCGCGACCCTCGACGAGCTCGACGCCGCCACCGTGACCTCGAACGGCGCCCGCTGGGACCTTCCGGCCCGCCGGGTGCACGCCGTGACCCCCGCCCTCGAGGCGACGTTGGCGGACGAGGACGACGAGGGACGCGAGTACGCCGCCTTCCTCGCCGCTGCCGACGACTCGCTCGCCCTGGTCGCCGGTGGCGGGGCCCTGCCCGCACGCGTGGTCGTCTCGCTCGACGTGCCCGACGGTGCGGTGACCCCCGGTGCGCACCCTCCGGCCGGGGAGGCCACCGCCCCGTCGTCGGTGGACGCGGGACCGGCGCCCGACGCCCGGGTCGTGGCGGTGCACGTCGACGAGCCCGAGGCCGCCGAGGACGTCCGCGCCGTGCTCGCGGCCGCGGACGGCGACGACGACGAGGCGCTCGCGGACGCGGTCCAGCGGGTCACCGACCGGGACCTGCTCTGGTACGACCCGACCGAGATCGGCCAGATCCCGCGCCCCTGAMRIYVPATLDELDAATVTSNGARWDLPARRVHAVTPALEATLADEDDEGREYAAFLAAADDSLALVAGGGALPARVVVSLDVPDGAVTPGAHPPAGEATAPSSVDAGPAPDARVVAVHVDEPEAAEDVRAVLAAADGDDDEALADAVQRVTDRDLLWYDPTEIGQIPRPNANANANANA
AK018_027071293hypothetical proteinATGGCGGGGCCCACGACGGTCCTGTGCGCGGTGCACGGGCCGTCCGAACCCGACGTCGTGCTCACGCTCGAGGCGCCGGGGGCCCGCACGTCGGTCACGCGCCGCTGCGGCGACGTCACGGAGCTGCTCGCGGCGTCGGCCGCAGGTGCCGGGACGGTGGCCGTGGTCGCGGCCGACCTCCCCGGACTGGACCGGGAGACGGTCGGGCGCCTGCACGCCGCCGGGACCCGGGTGGTGGCCCTGGTCGACGACGGCCCGCTCGAGCGCGTCGAGGCGCTGGGCGTGGACGCCGTCGTCGACGGTCCGGACGACCCACGGTTCCTCGATGCGGTGCGCGACACGGCGCCGATCACCGACCCGTTGGCCACCGCGGAGCACGACCTGTCGACGCTGTCCGGGTTCGCGACGCCGGGGCTCGCCACCCCGCCCGGCTCCGTCGTAGCGGTCTGGGGTCCGGTCGGGGCTCCCGGGCGCACGACGACGGCGGTCGAGCTGGCGGCCGAGCTCGCCGGGCTCGGGCGTCGCTCGGGCCGTCGTCGCCGTCGACGCCGGGAGACCCGGGCGGCGGACCCGACGCTCCTGGTGGACGGCGACACCTACGGGTCGTGCGTGGCGGCGCGGCTCGGGCTGCTGGACGACGCGCCGGGGCTCGCCGCCGTCGCCCGGGCCGCAGGCCAGGGCACCCTCGACGTGGCCGCCCTCGCCCGGCACGCCCCGGTGGTGGAGGGCCACCTGCGGGTCCTGGCCGGGATCACACGAGCCTCGCGGTGGCCCGAGCTGCCCGCGAGCGCGCTTGAGGTGGTCCTCGAGCGGGCCCGGTCGCTGGCCCGCTGGACGGTGGTCGACTGCGGTCCGGTCCTGGAGCTCGACGAGCTGCTGATGTACGACACGCACGCCCCGCAGCGCAACGCCGCGACCCTGGCCGCCTTGCAGGCTGCGGACGTCGTGGTCGTCGTCGGTGCGGCCGACCCGATCGGCATCCACCGCCTGGTGCGTGCCCTGGAGGACCTGGCCGAGGTGCCGGTGCCCGTGCCGGGACGGCGGGTCGTGGTGGCCAACCGGGTCCGGGCCTCGGCGGCCGGTGCGGACCCGTCCCGTGCCGTGGCCGAGGCGCTGGACCGCTACGGCGGGGGCGACGAGCTCCACCCCGTGCCCGACGACGGCCCGGCCGTCGACGCGGCCGTCCTGGCGGGACGGACCCTGGCCGAGCATGCTCCGACGTCGGCGGCACGCGAGGCGTTCGCCGACCTGGCGGCACGCGTGCGCGAGCAGGTACCCGCCCCGGTGGCGTGAMAGPTTVLCAVHGPSEPDVVLTLEAPGARTSVTRRCGDVTELLAASAAGAGTVAVVAADLPGLDRETVGRLHAAGTRVVALVDDGPLERVEALGVDAVVDGPDDPRFLDAVRDTAPITDPLATAEHDLSTLSGFATPGLATPPGSVVAVWGPVGAPGRTTTAVELAAELAGLGRRSGRRRRRRRETRAADPTLLVDGDTYGSCVAARLGLLDDAPGLAAVARAAGQGTLDVAALARHAPVVEGHLRVLAGITRASRWPELPASALEVVLERARSLARWTVVDCGPVLELDELLMYDTHAPQRNAATLAALQAADVVVVVGAADPIGIHRLVRALEDLAEVPVPVPGRRVVVANRVRASAAGADPSRAVAEALDRYGGGDELHPVPDDGPAVDAAVLAGRTLAEHAPTSAAREAFADLAARVREQVPAPVANANANANANA
AK018_02708651hypothetical proteinTTGAGCAACGAAGCACTCCCGGCCCGTACCGCCCCGCGGCTGCGCCGCCCCACCTGGCGCGACCCGCGGCTCGTCGTGGGCGTCGTGCTGGTCGCCCTCGCCGTCGCCCTCGGCGCGTGGGTGGTGTCCAGCGCCGACCGCACCGTCGGCGTCTACGCCGCCGCCGACACCCTGACCCCCGGCGAACCCGTCGACACGAGCCTGCTGCGGGTCGTCGACGTGAACCTGGGCGCGGAGCAGGAACGCTACCTGCGCGCCGACGCCGCCCTGCCCGACGACCCGGTGGCGCTGCGCGTCGTCCCGGCCGGCGAGCTGGTCGCGCTCACCGCCGTCGGTGACGCCACGGCGGTCGAGGTCCGCTCGGTGGCGGTGCCCGTCTCGTCCGGGCTGTCCGAGCGGATCCGGCCCGGTGCCGTCGTCGACCTGTGGTTCGTGCCGGAGGCCCCCGCGGGGGAGTCCGACGCGCGCCAGGAGCCGGAGCCGCTGGTGGCCGGCGTCGTCGTCGAGCAGGTGGACGTCAGCGAGAGCGGCCTCGTCGTCGCCGACCGCGGGACGCTGCACGTCCTCGTCGGCGACGGCGACCTGCCCCCGGTGCTCGCCGCGCTGGGTGCCCTTGGGTCCGTGGCCGTCGTCCCCGTGGCCGGCACCTGAMSNEALPARTAPRLRRPTWRDPRLVVGVVLVALAVALGAWVVSSADRTVGVYAAADTLTPGEPVDTSLLRVVDVNLGAEQERYLRADAALPDDPVALRVVPAGELVALTAVGDATAVEVRSVAVPVSSGLSERIRPGAVVDLWFVPEAPAGESDARQEPEPLVAGVVVEQVDVSESGLVVADRGTLHVLVGDGDLPPVLAALGALGSVAVVPVAGTNANANANANA
AK018_02709210hypothetical proteinATGACGGCCCGCTTCCTCTCCCTCGCCGAGGTCCAGGAGATGCTGAGCATCTCCGCGACGCAGGCCTACTCGCTCGTGCGGTCGGGCGAGCTGCCCGCGATCCAGGTGGGCCCCAAGAAGGTCTGGCGCGTCGAGGCCTCCAAGCTCGAGGAGTACATCGACCGCCAGTACACGCGCACCCGCGAGCGCATCGCCTCCGGCGAGCTGTAGMTARFLSLAEVQEMLSISATQAYSLVRSGELPAIQVGPKKVWRVEASKLEEYIDRQYTRTRERIASGELNANANANANA
AK018_02710546hypothetical proteinATGAGCGCGGGACGCTCCCGCTGGGCCCTGCTGTTCGCCGACCTGGAGGCGCAGCTCGCCGCCGAGGAGGCGGCCGAGCGCGACGGCGCCGTCGCCGAGCTGACGCGCGCCGAGCAGGCGTCGGTGCCCCTCGCGGACCGGCTGCGGGCAGCCGTCGGGACGCAGCTCCGGTTCGAGCTGCGCGACGGCGAGGCGGTCGAGGGCGTCCTGGCGCATGTGGCGGACGCCTGGTGCCAGCTCCAGGGGCGTGGCGCACGCGGGCCGGTGCAGCACGTGGTGCCGCTGTCGGCGGTGGTCGGCGTGGTGGGTCTCGGTCGGCACGGCGCGCCGTCGCGCTCGCGCACGGACGGCCTCGGCCTCGGCACGGCCCTGCGGGGCCTGCAGCGCGACCGCGCCCGGGTGCAGGTGTGCACGACGGCGGGTCGCGTCGTGGGCAGGATCGCTCGCGTGGGCGCGGATCACCTGGACGTCGAGGAGCTGGACCGTGCGCGCCCGGTCGTCCGGGTCGTGCCGTTCGCCGCGCTGGTCCGGGTCAGCGAGGCGTGAMSAGRSRWALLFADLEAQLAAEEAAERDGAVAELTRAEQASVPLADRLRAAVGTQLRFELRDGEAVEGVLAHVADAWCQLQGRGARGPVQHVVPLSAVVGVVGLGRHGAPSRSRTDGLGLGTALRGLQRDRARVQVCTTAGRVVGRIARVGADHLDVEELDRARPVVRVVPFAALVRVSEANANANANANA
AK018_02711873hypothetical proteinATGAGAGACCACACCGCCCGGTCGCTGCGCAGCACCTGCGGCCTCGTGGCCTGCGCGCTGGGTGCCGCGGTCGCGCTGCTGCTCCTCGCGTCGCGCCTGCTCGCCGTCGCACCCCGTGACCTCACCACGGCCCGGCTCACCGGCATCGAGCGGTGGGTCGAGCTCGCCGTCCTGACGGCCGGCGGCGTCGCCGCGGCCTGGGTCCTGACCGCCTCCCTGGTGGCGGCCGCCTGTGTCGCCGTCGCTCGGTTCGGCGGCGCCCGGGGCGCCGGTGCGCGGCGCACCGTCGACGCCGCGCTCGGCACGTGGGCGCCCGCCGTCGTCCGTCGGCTCGCCCGCGGGGCGGTCGGCGTGGGCGTCGGCACCGGGCTCGCCCTCACCCCGATGGCCGCCACCGCGGCGGAGACCCCCACGCCCGCGCCGACACCCGCCGCCGTCCTCGACCTCGGCTGGCAGAGCTCGGCGCCCGCCGGCGGGTCCGGGAGCGAGCACGGCAGCGGGGCCACGGAGGACCGGCCGGACCGCGCGGAGACCGTCTCGACGCCGGACCTCGTCCGGCCCGCCCCGCACGGGGCGAACGACGGCGGTCCCACCGCCGACACCACGACCTCGGACGACACCGAGAGGGCGGACGACGCGAGCGCCGACGAGGTCCGGCCGGTGGACGTCCGCCCCGCCCGCGACGTCGCCGACAACACCTACGTCGTCGTCCACGGCGACACGCTGTGGGACATCGCCGCACGCGACCTGCCCGCCGACGCCGGTGCCGCCGACGTCCTGCGCGAGGTCACCCGATGGCATGAGACCAACCGGGACACCATCGGCGCCGATCCCGACCTCATCCTGCCCGGGCAGGTCCTGCAGACCCCCTGAMRDHTARSLRSTCGLVACALGAAVALLLLASRLLAVAPRDLTTARLTGIERWVELAVLTAGGVAAAWVLTASLVAAACVAVARFGGARGAGARRTVDAALGTWAPAVVRRLARGAVGVGVGTGLALTPMAATAAETPTPAPTPAAVLDLGWQSSAPAGGSGSEHGSGATEDRPDRAETVSTPDLVRPAPHGANDGGPTADTTTSDDTERADDASADEVRPVDVRPARDVADNTYVVVHGDTLWDIAARDLPADAGAADVLREVTRWHETNRDTIGADPDLILPGQVLQTPNANANANANA
AK018_02712564hypothetical proteinATGACCGCCACGACGCCCGAGAGCACGCCCGCAGGCACCGACGAGCGCCGCGACACCCCACGACGCCTGCGGGTCACGGCACCGCCGCGCGACCGACGGCCCGGCACTCCTCCGCGCGCTCCCCGGCGCCCAGGTCCGGTACGGCGAGTGCGCGTCGGCGGCCCCACCACGACCCCGGCGGGCGACCGGACCACCGGCCGCCCGGTACCGACTCAGGACCCGGCTGCCGACACGCGTCTGCCGGATCCCACGGCGCTGTGCTGCGCCGTCGTGCGGGCCGCCGTCGACGTGCTGCGCGGCAGCCGGGCGCCGTCCCAGATCGCGCGCTGGGTCTCCCCCACCGTGCACGACCAGCTCGCCGAGCGTGCACGCCTCACCCGTCCCACGGCCGACGGCACGGTGCCCCCTCCGGTCACGGTGCGCCGGGTCCGGATGGTCCGGCTCGGCGACACGACCGCCGAGGCCACCGTCGTCCTCGACGACGCCGGGCGGGTCCGGGCCGCCGCCGTCCGGCTCGAGGCACGGCGGGGCATCTGGCGGGTCACCGTCCTCGAGCTCGGCTGAMTATTPESTPAGTDERRDTPRRLRVTAPPRDRRPGTPPRAPRRPGPVRRVRVGGPTTTPAGDRTTGRPVPTQDPAADTRLPDPTALCCAVVRAAVDVLRGSRAPSQIARWVSPTVHDQLAERARLTRPTADGTVPPPVTVRRVRMVRLGDTTAEATVVLDDAGRVRAAAVRLEARRGIWRVTVLELGNANANANANA
AK018_027132976secA_1Protein translocase subunit SecAGTGCCTGCCATCCTCGAGAAGATCCTCCGCATCGGCGAGGGCCGGACCCTCAAGAAGCTGACCGCGCTCGCCGAGCAGGTGAACCAGCTCGAGTCGAGCTTCACCGAGCTCAGCGACACCGAGCTGCAGGAGGAGACGGACCGGTTCAAGGAGCGGCTGGAGCACGGGGCGTCGCTCGACGAGCTCCTGCCCGAGGCGTTCGCCACGGTCCGCGAGGCGGCGCGCCGCACGCTCGGCCACCGGCACTTCGACGTCCAACTCGTCGGCGGGGCCGCGCTGCACCAGGGCAACATCGCCGAGATGAAGACCGGTGAGGGCAAGACCCTGGTGGCCACCACGGCCGCCTACCTCAACGCCCTGACGGGCAAGGGCGTGCACGTCATCACCACGAACGACTTCCTCGCCCGGTACCAGGGCGAGCTGATGGGCCGCGTCTACCGGTTCCTCGGGATGAGCACCGGCATCATCGTCTCCGGGCAGACGCCGGACGAGCGCCGCGAGCAGTACGCCGCGGACATCACCTACGGGACCAACAACGAGTTCGGGTTCGACTACCTGCGCGACAACATGGCGTGGTCGCCGGACGACCTGGTCCAGCGCGGCCACCACTTCGCGATCGTCGACGAGGTCGACTCGATCCTCATCGACGAGGCGCGGACGCCGCTGATCATCTCCGGTCCCTCGTCGGGCGACTCCAACCGCTGGTACGTCGAGTTCGCCAAGGTGGTCAAGCGGCTGCAGCGCGAGACCGACTACGAGGTCGACGAGAAGAAGCGCACCGTCGGCATCCTCGAGCCGGGGATCGCGAAGATCGAGGACTACCTCGGCATCGACAACCTGTACGAGTCGCTCAACACGCCCCTGATCGGGTTCGTCAACAACGCCATCAAGGCCAAGGAGCTGTTCAAGCGCGACAAGGACTACGTCGTGCTCAACGGCGAGGTCATGATCGTCGACGAGCACACCGGGCGCATCCTCGCAGGCCGCCGGTACAACGAGGGCATGCACCAGGCCATCGAGGCCAAGGAAGGCGTGCAGATCAAGGCGGAGAACCAGACGCTCGCCACGATCACGCTGCAGAACTACTTCCGTCAGTACGAGAAGGTCGCCGGCATGACCGGTACGGCCGAGACGGAGGCCGCGGAGTTCCAGGGCACCTACAAGCTCGGCGTGGTGCCCGTCCCGACGAACAAGCCGATGATCCGCGTCGACCAGCCGGACCTCGTGTACAAGGGCGAGGAGGGCAAGTTCAACGCGGTCGTCGAGGACATCGTCGAGCGCCACGCCAAGGGCCAGCCGGTGCTGGTGGGCACCACCAGCGTCGAGAAGTCCGAGCTGCTGTCGAAGCTGCTGAAGAAGGCCGGCGTCCCGCACGACGTGCTGAACGCCAAGGAGCACGACCGCGAGGCCGCCATCGTCGCCCAGGCGGGCCGCAAGGGCGCCGTGACCGTCGCGACGAACATGGCCGGTCGAGGCACCGACATCATGCTCGGCGGCAACGCCGAGTTCACCGCCGTCGCGGAGATGGCGGCCCAGGGCTACGACTCGACCGAGGACCCGGAGGCGTACGAGGAGGCCTGGCCCGAGGTGCTGGCCAAGGCCGAGGAGTCCGTGAAGGCCGAGCACGAGGAGGTCGTCGCGCTCGGCGGTCTCTACGTGCTGGGCACCGAGCGCCACGAGTCGCGCCGGATCGACAACCAGCTGCGCGGCCGTTCCGGCCGTCAGGGCGACCCGGGCGAGTCCCGTTTCTACCTGTCGATGCAGGACGACCTGATGCGCCTGTTCAACTCGGGTCTGGCCGAGTCGATGATGGGCCGCGCCGGGTTCCCCGACGACCTGCCGCTCGAGTCGAAGATGGTCACGCGCGGCATCCAGAGCGCGCAGTCCCAGGTCGAGGCGCGCAACTTCGAGATCCGCAAGAACGTCCTGAAGTACGACGACGTCCTGGCGCGCCAGCGCACCGTCATCTACGACGAGCGGCGCCGGGTGCTCGAGGGCGAGGACCTGCACGAGCAGATCCAGCACTTCCTCACCGACGTCATCACCGCGTACGTGGAGGGTGCCGCCGACGACGGCAACGCGGAGGCGTGGGACCTGGACGGGCTGTGGACGGCGCTGAAGTCCGTCTACCCGGTCTCCATCACCGTGGACGAGCTGCTCGAGGAGGCCGGCGGTCGCGAGCGTCTCACCAAGGAGATGCTGCTCGAGGAGCTGCTCTCCGACGCGCGGGTCGCCTACCAGGGCCGCGAGGAGGCCCTGGGCGAGGCCGCGATGCGCCAGCTGGAGCGTCGCGTGGTGCTGTCGGTGCTGGACCGCAAGTGGCGTGAGCACCTGTACGAGATGGACTATCTCAAGGAGGGCATCGGCCTGCGGGCGATGGCCCAGAAGGACCCGCTCATCGAGTACCAGCGCGAGGGCTTCCAGCTCTTCCAGGCGATGACCGAGGCCATCAAGGAGGAGTCGGTCGGCTACCTGTTCAACCTGGAGGTCCAGGTCAAGGAGGCCGGCGAGTCGGCGCAGAGCGCGGACGGTCCGGCCGTCTCGGTCGCGTCCGCCGCGGCCGCCGCCGGATCGGCGGCGGGCCAGGTCGTGACGGCGTCGAGCCCGACCGTGGTGGGTGCGGACGCGGCCGAGGACGCCCCCGCCGCTCCGGCGGCTCCGGCCGAGTCCGAGGCGGAGCCGGAGCCGGAGCCCGGTCCGGACGTGCCCGCGGCGTTCGGCGGGACCGAGGAGCCGGTGCTGGTGGCCAAGGGCCTCGAGACGCCCAAGCCGCCGCAGAACCTGCAGTACTCGGCGCCGAGCGAGGACGGCTCGACGACGCGTTCCGGTGACACGCGGGCCGCGCGTCGGGCGCTGCACGGCGAGGCGGCCGCGACCGAGGCGGACGGCCGCACCTTCCCGGGCACGCCCCGCAACGCCCAGTGCCCCTGCGGTTCGGGCAAGAAGTACAAGGTCTGCCACGGCGTGAACGAGTAGMPAILEKILRIGEGRTLKKLTALAEQVNQLESSFTELSDTELQEETDRFKERLEHGASLDELLPEAFATVREAARRTLGHRHFDVQLVGGAALHQGNIAEMKTGEGKTLVATTAAYLNALTGKGVHVITTNDFLARYQGELMGRVYRFLGMSTGIIVSGQTPDERREQYAADITYGTNNEFGFDYLRDNMAWSPDDLVQRGHHFAIVDEVDSILIDEARTPLIISGPSSGDSNRWYVEFAKVVKRLQRETDYEVDEKKRTVGILEPGIAKIEDYLGIDNLYESLNTPLIGFVNNAIKAKELFKRDKDYVVLNGEVMIVDEHTGRILAGRRYNEGMHQAIEAKEGVQIKAENQTLATITLQNYFRQYEKVAGMTGTAETEAAEFQGTYKLGVVPVPTNKPMIRVDQPDLVYKGEEGKFNAVVEDIVERHAKGQPVLVGTTSVEKSELLSKLLKKAGVPHDVLNAKEHDREAAIVAQAGRKGAVTVATNMAGRGTDIMLGGNAEFTAVAEMAAQGYDSTEDPEAYEEAWPEVLAKAEESVKAEHEEVVALGGLYVLGTERHESRRIDNQLRGRSGRQGDPGESRFYLSMQDDLMRLFNSGLAESMMGRAGFPDDLPLESKMVTRGIQSAQSQVEARNFEIRKNVLKYDDVLARQRTVIYDERRRVLEGEDLHEQIQHFLTDVITAYVEGAADDGNAEAWDLDGLWTALKSVYPVSITVDELLEEAGGRERLTKEMLLEELLSDARVAYQGREEALGEAAMRQLERRVVLSVLDRKWREHLYEMDYLKEGIGLRAMAQKDPLIEYQREGFQLFQAMTEAIKEESVGYLFNLEVQVKEAGESAQSADGPAVSVASAAAAAGSAAGQVVTASSPTVVGADAAEDAPAAPAAPAESEAEPEPEPGPDVPAAFGGTEEPVLVAKGLETPKPPQNLQYSAPSEDGSTTRSGDTRAARRALHGEAAATEADGRTFPGTPRNAQCPCGSGKKYKVCHGVNEPGPT0025735_770DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025735-secA-K03070NANA
AK018_027141584kefC_1COG0475Glutathione-regulated potassium-efflux system protein KefCGTGGACGTCGTCGCGCTGTACCTGGGCGTCGCCTTCGTCGGCGGCGTGCTCGCCACGCTCGTGCGCCTGCCCCCGCTGGTCGGGTTCCTCGCCGCAGGGTTCGCGCTGGCCGCCGCCGGCGCACCGGAGATGCCGGGCCTGCACGTGCTGTCCGAGGTGGGCGTGGCCCTGCTGCTGTTCACGATCGGTCTCAAGCTCGACGTGCGTTCGCTGCTGCGGCGTGAGATCTGGGGCACGACGGCGGTCCACATGGCCGTGTCCGTCGCCCTCGGCGTGGGCTTCCTCGGCCTGCTGGGCCTGGTCGGCACGTCGCTCGCCGCGGGGGAGTCGTGGCGCACGATCGCGCTGATCGCGTTCGCGCTGTCCTTCTCCTCGACGGTGTTCGTCGTCAAGGTCCTCGAGGACCGGTCGGACGCCACCAGCCTGTACGGGCGGATCGCGATCGGCATCCTCGTGGTCCAGGACGTGGTGGCCGTGGTCTTCCTGGCGGTGGCCGAAGGGCGCGTGCCGAGCCCGTGGGCGCTCGCGCTGCTCGCGTTCCTCCCCGGGCGCAGGCTGCTCCACCTGCTGTGGGACCGGCTCGGGCACGGCGAGCTCCAGGCGCTGTTCGGGGTGGCGATGGCGCTCGGGCCAGGGTTCTTCCTGTTCGAGCACCTCGGCCTGTCCGGGGACCTGGGTGCGCTCGTCATGGGGGCCCTCCTGGCCTCGCACCCGAGCGCCGGCGAGATGTCCCGCTCGCTCATGACGTTCAAGGACCTCATGCTGGTCGCGTTCTTCCTCGAGATCGGCCTGCACGGGACGCCCGAGGCCGGGCACGTGGGGCTGGCGCTGGGCCTGCTCCTGCTGCTGCCGGTGCAGGCGGCCGTGTTCGCCGTCGTGCTGTGGATGCTGCGGCTGCGCCGGCGGACGGCGTTCCTCACGGGGCTGGCGCTCGGCAACTACTCGGAGTTCGGGATCATCGTCGCCGTGGTCGGCGCGGAGGCCGGGTGGCTGGCGGAGGACTGGGTCATCGTGGTCTCGCTGGCGGTGGCCGCCAGCTTCGCGCTGTCGTCGGTGGTCAACCGGCGCGGCGTCGAGCTCGCCTCGTGGCTGACCAGGTTCCTGCCGGCCAAGGACCCCACGACCCTGCACCCCGACGACCAGGTGGTCGACGTCGGCGCCACCGACGCGCTCGTGCTCGGCCTGGGCCGGGTGGGTTCGGCGACGTGCGCGAAGCTGCGCGACGAGTACGGGCTGGGTGTCGTCGGCGTCGAGCACGACCAGTCCCGCGTGACGGCCCTGCGCGACGAGGGGTTCGAGGTGGTGCGGGCCGACGCCACCGACCTGGAGTTCTGGGCGCGGGTCAAGCGGGCGGGGCGGGTCCGGCTGGCCGTGCTGGCGATGCCGTTCCACAACGCCAACCTCATCGCGCTGTCCCGCCTCCAGGACGCCGGGTTCGAGGGCTACGTGGCCGCGATCGCGCGGTACGACGACGACGCCGACGAGCTGCGTCGCCACGGAGCGCACGCCGTGTTCCACCTCTACGGTGCGGCCGGCGCGGAGCTCGCGGACCGGGCGGCGGAGGTGCTCGCCACCGGTCGTTGAMDVVALYLGVAFVGGVLATLVRLPPLVGFLAAGFALAAAGAPEMPGLHVLSEVGVALLLFTIGLKLDVRSLLRREIWGTTAVHMAVSVALGVGFLGLLGLVGTSLAAGESWRTIALIAFALSFSSTVFVVKVLEDRSDATSLYGRIAIGILVVQDVVAVVFLAVAEGRVPSPWALALLAFLPGRRLLHLLWDRLGHGELQALFGVAMALGPGFFLFEHLGLSGDLGALVMGALLASHPSAGEMSRSLMTFKDLMLVAFFLEIGLHGTPEAGHVGLALGLLLLLPVQAAVFAVVLWMLRLRRRTAFLTGLALGNYSEFGIIVAVVGAEAGWLAEDWVIVVSLAVAASFALSSVVNRRGVELASWLTRFLPAKDPTTLHPDDQVVDVGATDALVLGLGRVGSATCAKLRDEYGLGVVGVEHDQSRVTALRDEGFEVVRADATDLEFWARVKRAGRVRLAVLAMPFHNANLIALSRLQDAGFEGYVAAIARYDDDADELRRHGAHAVFHLYGAAGAELADRAAEVLATGRPGPT0013800_467DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013800-kefC-K11745NANA
AK018_027151224hypothetical proteinGTGCAGACGCTGACGAAGTCCGAGGCGCGCCGGGCCGCGCTGCGAGCACAGGGCGTGGACCGGGCCAGGCCCGCCGCGCCGGTCACGATGCGCCACCTGACGCGCACCGTCGACCGGATCAACCTCCTGCAGATCGACTCCGTCAACGTCCTGGCGCGCGCCCACCTGGTGCCCTTGTACTCGCGTCTGGGCCCGTACGACACCGCGCTGCTCGACCGCGCCGCGGGCCGTGCCCCACGCCGCCTGGTCGAGACGTGGGCGCACGTGGCCTCCTACGTCCCCGCGACCACCTACCCGCTGCTGGAGTGGCGGCGTCGTGCCTACCAGAAGGAGGCCTGGTCCTCGATCTCGGCCGTGCCGCGGGCGCACCCCGTCGAGCTCGAGCTGGTGCGCGCGCTCGTGACCGAGCGCGGACCGATCACCGCTGCCGCCCTCCACGACGCCCTCGAGCGGCGGGGCGACGTCTCACCGCGGTCCCGGGGCGAGTGGGGCTGGAACTGGACCACGGCGAAACGGTGCCTGGAGTTTCTGTTCTTCACCGGCGAGGTCCTCTCGGCGTCCCGCAACGCCGCCTTCGAGCGGCGCTACGACCTCGCCGAACGGGTGCTGCCGCCGTCGGTGCGGCACGCGCCGCCGGTGGCCGACGACGACGCCGTGCGCCGGCTGCTGGAGCTCGGCGCCCGTGCCCACGGCGTCGGGACCGCCCGCTGCTTCCAGGACTACTTCCGCGTCACCGGCCCGGCGGCGCGGCGAGCCCTGGCCGAGCTCGTCGAGGAGGGCACGCTCGAGCCCGTCGAGGTCGAGGGATGGGCTGCGCGGACCTACCGGCACCGCGACGCCGTGGTCCCGCGGTCCGTCTCCGCCGCGACGTTGCTGAGCCCGTTCGACCCCGTGGTCTGGGAACGTCGCCGGCTCGAGGCCCTCTTCGACGTCTACTACCGCATCGAGATCTACGTGCCCGCCCCGAGGCGCACGCTCGGCTACTACGTCCTGCCGTTCCTGGAGGGCGAGGACCTCACCGCGATGGTCGACCTCAAGGCCGACCGGGCCGCCGGAGTGCTGCAGGTGGCCGCCGCCCACGGCACCGCGCACACCGGCCCGGACACCGCGTCGGCGCTCGCCGCCGAGCTGGCGACGCTCGCGGCCTGGCTGGGACTCGAGCGGATCGTGGTGCGGCCCGTGGGAGACCTCGCCCGGGCGCTGGACGCCGAGGTCGCCCGGTAGMQTLTKSEARRAALRAQGVDRARPAAPVTMRHLTRTVDRINLLQIDSVNVLARAHLVPLYSRLGPYDTALLDRAAGRAPRRLVETWAHVASYVPATTYPLLEWRRRAYQKEAWSSISAVPRAHPVELELVRALVTERGPITAAALHDALERRGDVSPRSRGEWGWNWTTAKRCLEFLFFTGEVLSASRNAAFERRYDLAERVLPPSVRHAPPVADDDAVRRLLELGARAHGVGTARCFQDYFRVTGPAARRALAELVEEGTLEPVEVEGWAARTYRHRDAVVPRSVSAATLLSPFDPVVWERRRLEALFDVYYRIEIYVPAPRRTLGYYVLPFLEGEDLTAMVDLKADRAAGVLQVAAAHGTAHTGPDTASALAAELATLAAWLGLERIVVRPVGDLARALDAEVARNANANANANA
AK018_02716657hpf_1COG1544Ribosome hibernation promotion factorATGGAGATCATCGTCGTCGGTAGGCACACGGACGTGACGGACAGGTTCCGTCAGCACGTGGAGGACAAGCTCGGCAAGGTCACGCAGTTCGCCCCCAACGCGCGGCGCGTCGACGTCGCGGTCACGCACGAGAAGAACCCGCGGCTCGCCGACCAGAGCGAACGGGTCGAGCTGACGGTGCGGGCCAAGGGGCCGGTGATCCGGGCGGAGGCCGCCGCGGACGACCGGTTCGGCGCCCTGGACCTCGCGATGGACAAGCTCAACGAGCGTCTGCGCCGGTCCCGCGAGCGGAGCAAGGAGCACCGCCGCCGCACCCCCGTCACCCCCGCCGTGGACGTGCGCCCCTACGACGAGATGCTCGCCGCTCAGCCCGAGCCCGAGCCCGAGCCGGCGACCCTGGAGACCCCGGGCGACGCGGTGGAGCACCAGCTCGGTGACTCGCCCGTCGTGATCCGCCAGAAGCTGCACACCGGCGAGCCCATGGCGGTCGACGAGGCCGTCGAGCGCATGGAGCTCGTGGGCCACGACTTCTTCCTCTTCATCGACAAGGAGTCCGCGCGCCCGGCGGCCGTCTACCGGCGCAAGGGCTGGACCTACGGCGTCATCGAGCTCGACACCACCTGCAGCGGTGTGGAGCCGGTCTCCTCGCTGACCTAGMEIIVVGRHTDVTDRFRQHVEDKLGKVTQFAPNARRVDVAVTHEKNPRLADQSERVELTVRAKGPVIRAEAAADDRFGALDLAMDKLNERLRRSRERSKEHRRRTPVTPAVDVRPYDEMLAAQPEPEPEPATLETPGDAVEHQLGDSPVVIRQKLHTGEPMAVDEAVERMELVGHDFFLFIDKESARPAAVYRRKGWTYGVIELDTTCSGVEPVSSLTNANANANANA
AK018_02717795hypothetical proteinTTGCTTGCTGCAGCGACGGTGGCGCTGCGCTCGCTGGCGCGGCTCGTGGTGCCCGTGTCCTGCGCGGGGTGCGGGCTGGACGACGTGCCGCTGTGCGCCCGGTGCGGGGGCGCGCTCGACGGCGCGCCGTGGCGGGCCGAGGCCGACGCCCCGCGGCTGGACCGCCTCGACGGGGTGCCGCCCCTGCCGGTCTGGGCGCTCGGCGTGTGCACGGGCAGCACCCGGGAGACGGTCGTCGCGTGGAAGGACCGCGACCGGGCCGACCTGGACCGCGTCCTCGGCGACGCGGTGCGGCGGGCGGCGGTGGCGCTCGCGCCCGACCTGCGGGTGGCGTCCGCCGGTCGGGTGACGGTCGTGCCGGCGCCGTCCTCGCCCGGCTCCCGGCGCCGGCGGGGCCGTGAGCCGACCGCGGTCCTGGCCGCCGCCGTCGCGGACGGCCTGCGGTCGGCGGGGGTGCCGGCCGCCGTCGCGGGCGCGCTGGTCCGACGGCGGCGCACGGCGGACCAGGCCGGCCTCTCGGCACGGGCCCGTGGCGCCAACCTGCTCGGTGCGGTGGCCGTCCGACGCCGGTACCGGGCCGCCGTGCCCTCCGCGGGGACGTGCCTCCTGGTCGACGACGTGCTCACCACCGGGGCGACGCTCGCGGCCGCGGAGCGGGTCCTGGAGGCTGCCGGTGCCGCCGTCGTCGGCGCCCTCGTGCTCGCCGCGACCCCGCCGCCGGGCACCGTCACACCCTCGGCACGCGACGCGGGGGACGCCTCCGGTTCTCCTGACGGACACCGTGGGTTAGCCTAGMLAAATVALRSLARLVVPVSCAGCGLDDVPLCARCGGALDGAPWRAEADAPRLDRLDGVPPLPVWALGVCTGSTRETVVAWKDRDRADLDRVLGDAVRRAAVALAPDLRVASAGRVTVVPAPSSPGSRRRRGREPTAVLAAAVADGLRSAGVPAAVAGALVRRRRTADQAGLSARARGANLLGAVAVRRRYRAAVPSAGTCLLVDDVLTTGATLAAAERVLEAAGAAVVGALVLAATPPPGTVTPSARDAGDASGSPDGHRGLANANANANANA
AK018_027181743lpqB_1Lipoprotein LpqBATGACCACCCAGGCCCCGTCCCGCCGGTCCCGGCGCGCCACCGCCGTCGCCGTCGTGCTCGCCGCCGCGCTGGCGCTGGTCGGCTGCGCGTCCATGCCCACCTCCGGCGGCGTCATGGAGGGCACAGCCGAGGTGGCCGCCCCGGGCGAGGTCGGGTTCGACGTGCAGGGGCCCGCCAGCGGGGCGGACCCGATGCAGCTCGTCCAGGGTTTCGTCAACGTCGCCCAGCTCGGCCCGGCCTCGACGAGCACGTTCAACGTGGCCCGCGAGTACGTCACGCCGGCGGCCTGGAACGCCTGGGACCGGGCCTCGCGGGTGCTGGTGCTGTCGGAGTACCCCGAGTGGGAGGTCGCCGCGTACGAGGAGGACGCCACCACCACGACGGTCAGCGGCGAGGCGATGGTGGTGGCCACGCTCGACGAGGCAGGGGTGTACTCCGAGCTGCCGGAACCCAGCCCGGTCGACGTGTCCTACGAGCTGTCCCGGGACGGCGGCGAGTGGCGCATCAGCGGCCTGGACGACGGCCTGCTCGTGCTCCAGACCCTGTTCGGGTACGCGTTCCACCGCACCACGCTGTACTACCCCACGCCCGACCGGCGCTGGTGGGTCCCGGACGTGCGCTGGTACCCGGAGCAGGCGTGGCGCACCACCGCCAGCCAGCAGATCCTGGCCGGGCCGCCCCCGCCGCTGGTGCAGTCCGCGATCTCCGTCGTGCCCGAGGGCACGGCGCTCGCGATCGACGCCGTGACCGTGGACGACCAGGGCGTCATCGACGTCTCGGTGACCTCCGCGATCACCAGCGCCCCGGCCGACGACCGGGCCCTCCTGGTCGCCCAGCTCGAGGAGACGCTGCGCGAGGGCGAGGGGCGCAGCGTCGAGCTCTCCGAGGGCAGCAGCCCGCTGGCGGTCGAGGCCGCCACCGAGACGCCGTCGCACCCGGTCACGCTGGGTGACGCGGTGGCGGTGCTGGAGGGCGACGACGGCGAGCCCGCCCTGCGCCGGGTGGTGGGCACCGAGCTGACCGACCTCGAGCAGCCCGTCCGGCTGGGCGACCTGACGCCGACGGGCGTGGGTGTCGGACCCGACGACGGTCCCGTCGTCGTGCGCGCCGGCGACGACCGGTTGTTCCGGCTCTCCGCGGACGCCCCGCCCGCCCTGCTGCTGCGGGGCGACGACCTGCTGACGCCGTCGGTGGACCGGTTCGGCACCGTGTGGACGGCGGTGGACGGCCGGACGTGGGTCGCGCTGGAGTCGGGGGAGTCGTTCGCGCTCGACGTCGAGTGGCTCGCCGACGCGCAGGTCCGGTCGCTGCGGGTGTCGCCCGAGGGGGCGCGGATCGCGGTGGTCGCCGACGGCGCCGACGGCCCGGAGGTGTGGGTGGCCGCCGTGGAGCGGGACGCCGACGACGTCCCCACCGGGCTGTCCGTCCCGGTCCGGGTCGGCGCTCCCGTCCCGTCGGTCGCCGCCGTCGACTGGTACGAGGAGACCACGCTGGTGCTGCTGGGCCGCAACCCCGACGGGACGCGGTCGCCCTACCTGGCGGGGATCGGCGGTCTCGCCGGGTCGGCCGGCGGGGCGTCGCGGGCGCTGGTGACGCCGTCGGGCCCGCAGGCGCTCGCCTCGGGCGTGGGCGCGAGCCCGCTGCTCGTCCTCGACTCGGGCGGGGTGCTGTCCGTGCGGCAGAGCTCCGCGCTGTGGCCGTCGGTGGCGACCGGGGTGCGGGCCGCGGCCTACCCCGGCTGAMTTQAPSRRSRRATAVAVVLAAALALVGCASMPTSGGVMEGTAEVAAPGEVGFDVQGPASGADPMQLVQGFVNVAQLGPASTSTFNVAREYVTPAAWNAWDRASRVLVLSEYPEWEVAAYEEDATTTTVSGEAMVVATLDEAGVYSELPEPSPVDVSYELSRDGGEWRISGLDDGLLVLQTLFGYAFHRTTLYYPTPDRRWWVPDVRWYPEQAWRTTASQQILAGPPPPLVQSAISVVPEGTALAIDAVTVDDQGVIDVSVTSAITSAPADDRALLVAQLEETLREGEGRSVELSEGSSPLAVEAATETPSHPVTLGDAVAVLEGDDGEPALRRVVGTELTDLEQPVRLGDLTPTGVGVGPDDGPVVVRAGDDRLFRLSADAPPALLLRGDDLLTPSVDRFGTVWTAVDGRTWVALESGESFALDVEWLADAQVRSLRVSPEGARIAVVADGADGPEVWVAAVERDADDVPTGLSVPVRVGAPVPSVAAVDWYEETTLVLLGRNPDGTRSPYLAGIGGLAGSAGGASRALVTPSGPQALASGVGASPLLVLDSGGVLSVRQSSALWPSVATGVRAAAYPGNANANANANA
AK018_027191629mtrB_1Sensor histidine kinase MtrBATGCAGGTGCGCGTCGTCGCCTCGGCGCTCGCGCTCGGGGTGATCGTCGTCGCCGTCCTCGGCGTCTACCTGTCCTACTCCGTGCGCGACGGGCTGTTCGAGCAGCGCGTCGACCAGATCGAGGCCGAGAACGTCGCGCTGGTGGAGGAGGCGCAGTCGCGGTTCAGCGCCTCGACCGCCACGACCATCGGCGAGCAGCAGTCCCTCCTCGGGGACGTCATCCTCGGGCTCAGCGCCGCCGGGTCGAGCGCGCAGGACTACTTCCTGCGTCAGGCGCCCGGGCAGGGGCTGCCCCTGGTCGACCCCTCCTCCCGCCAGGACCTGTCGGTCGACGACCTGGTCAGCGACGAGCTGCGGGAGGCCACCCTCGCCACCGACGGCCACGTCATGCAGTCCGTGCTCATCCCCGCCGAGTACTCCGGGACCGGCCAGGCCGAGCCGGGGCTCGTCTTCGGTGCCACGGTCGAGCTGGCCTCGGCCGGCGTCTTCGAGCTGTACGCCCTGTACTCCCTCGCCTCCCAGCAGGAGACCCTGCGGTTCGTCCAGCGCACCCTCGCGGTCGGGGCGGTGGTGATCCTGGCGATGATCGGGCTGCTCACCTGGACCGTGACCCGCCAGACCGTCGTGCCCGTGCGGCGCGCGGCGACGGCGGCCGCCCGGCTCGGCGAGGGCCACCTGGACGTGCGCGTGCCCGGCTCGAAGGGCCAGGACGAGATGGCCACCCTGGCGCGCACGTTCAACGAGATGGCGGCGAGCCTGGAGGACCAGATCGCCCGCATGGAGGAGCTGTCGGCCTCGCAGCGCCGGTTCGTCTCCGACGTGTCCCACGAGCTGCGCACCCCCCTGACGACGGTGCGCATGGCCGGCGAGGTCATCTACGGCGCCCGCGACGACCTGGACCCCGCGGCCCGGCGGTCCGCCGAGCTGCTGCAGAACCAGCTCGACCGGTTCGAAGACCTGCTGACCGACCTGCTGGAGATCAGCCGGTTCGACGCCGGGGCCGCGGTGCTGGACGTGGAGCACCGCGACGTGCGCGACGTGGTCACCGCCGTCGTCGACACCGCCGGCCCGCTGGCCGAGCGCAAGGACGTCTTCCTGTCGGTGGACATGCCCGGCGAGGCGGTCCGCGCCGACATCGACCCGCGGCGCGTCGAACGCATCCTGCGCAACCTCGTCGTCAACGCGATCGAGCACGCCGAGGGCAAGCCCGTGGAGGTCACCGTCGGCGCCGACGACGAGGCGGTCGCCGTCGTCGTGCGCGACCACGGGGTGGGGCTGACCCCCGACGAGCTCAACCGTGTCTTCGACCGCTTCTGGCGGGCCGACCCGGCCCGCGCCCGCACCACCGGTGGCACGGGGCTGGGCCTGGCGATCTCCCTGGAGGACGCCCGCCTGCACGCCGGCACCCTGCAGGTCTGGGGCGTCCGCGGGCAGGGCGCCAGCTTCCGGCTCACCCTGCCGCGGCGCGCCGGCATCCGCCTGACCGGCTCGCCCCTGCCGGTCGAGGGGCCGTCACGGCAGCACGGCCGGCACGTGCCGACCGGGCAGATCCCGGTGGTCAACCCGGTCACCGGTCCGACGCCGACCGCCATCCCGGACCTGCCACCCGCCGAGGAGGACGCCCGATGAMQVRVVASALALGVIVVAVLGVYLSYSVRDGLFEQRVDQIEAENVALVEEAQSRFSASTATTIGEQQSLLGDVILGLSAAGSSAQDYFLRQAPGQGLPLVDPSSRQDLSVDDLVSDELREATLATDGHVMQSVLIPAEYSGTGQAEPGLVFGATVELASAGVFELYALYSLASQQETLRFVQRTLAVGAVVILAMIGLLTWTVTRQTVVPVRRAATAAARLGEGHLDVRVPGSKGQDEMATLARTFNEMAASLEDQIARMEELSASQRRFVSDVSHELRTPLTTVRMAGEVIYGARDDLDPAARRSAELLQNQLDRFEDLLTDLLEISRFDAGAAVLDVEHRDVRDVVTAVVDTAGPLAERKDVFLSVDMPGEAVRADIDPRRVERILRNLVVNAIEHAEGKPVEVTVGADDEAVAVVVRDHGVGLTPDELNRVFDRFWRADPARARTTGGTGLGLAISLEDARLHAGTLQVWGVRGQGASFRLTLPRRAGIRLTGSPLPVEGPSRQHGRHVPTGQIPVVNPVTGPTPTAIPDLPPAEEDARNANANANANA
AK018_02720681mtrA_1COG0745DNA-binding response regulator MtrAATGAAGTCCCGTGTGCTCGTGGTCGACGACGACACTGCCCTGGCCGAGATGATCGGCATCGTCCTGGAGTCGGAGGGGTTCGAGCCGACGTTCTGCGCGAACGGGGACGAGGCCGTCGGGCTGTTCCGGTCGGTCCAGCCCGACCTCGTGCTCCTCGACCTGATGCTGCCCGGCAAGGACGGCATCGAGATCGCCCGGGAGATCCGCGGCGAGTCGGGCGTGCCCATCATCATGCTCACGGCCAAGACGGACACCGTCGACGTGGTGCTCGGCCTGGAGTCCGGTGCCGACGACTACGTGACCAAGCCCTTCAAGCCCAAGGAGCTCGTCGCCCGGGTTCGCGCCCGCCTGCGCCGCTCGGACGAGCCCGGGCCGGAGCGGCTGCGCATCGGCGACCTGGAGATCGACGTCACCGGGCACGCCGTGCTGCGCGACGGCGAGCGGATCGGTCTGACGCCGCTCGAGTTCGACCTGCTCGTCGAGCTCGCCCGCAAGCCGTGGCAGGTGTTCACGCGCGAGGTCCTGCTGGAGAAGGTGTGGGGCTACCGGCACAGCGCCGACACGCGCCTCGTCAACGTCCACGTGCAGCGCCTGCGCTCGAAGATCGAGAAGGACCCGGAGAACCCCGAGGTCGTCCAGACGGTGCGCGGCGTCGGATACAAGGCCGGTGCCGCCCGCTGAMKSRVLVVDDDTALAEMIGIVLESEGFEPTFCANGDEAVGLFRSVQPDLVLLDLMLPGKDGIEIAREIRGESGVPIIMLTAKTDTVDVVLGLESGADDYVTKPFKPKELVARVRARLRRSDEPGPERLRIGDLEIDVTGHAVLRDGERIGLTPLEFDLLVELARKPWQVFTREVLLEKVWGYRHSADTRLVNVHVQRLRSKIEKDPENPEVVQTVRGVGYKAGAARPGPT0013765_422DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0013765-vicR|walR|yycF|micA-K07668NANA
AK018_027211212hypothetical proteinATGAGCACGCCCGACCAGCCGTCCTCCCCGTCCGGGTGGGGAGAGGCCCCGCGCCCGCCTGCCTACGGGCAGTACGGCCCGGGTCAGTACGGTGCCGGGCAGTACGGGCAGGGCAGGTACGGCCAGGCGCCCGACGGCGGCACCCCCGGGCAGCAGCCCGCCGGGGCACCGAACCCGTACGGCCCCGCCGCCACCAGGCCCGGGATCGTCCCGCTGCGGCCGCTGAGCCTCGGGGAGGTCTACGACGGCGCGTTCGGCGCGGTGCGGCACAACCCGGCCGTGCTGCTCGGCATGGTCTCCGTCGTCGTCGCCGTCGCGACCGTGCTGGCGACGCTGCTGTCCCGGGTCGCGGTGCCGTTCCTGACCGGTGCGCTCAGCGACGCCGTGGCCCGCCAGCCCGACCTCGCGCCGCTGGAGGCGGAGGTCCCGCTGTTCGCCGAGCTTTTGGCGCTCTCGGGAGCGCTCACGCTGACCTTCCTCATCGCCCAGCCGATCGCCGAGGGCCTCATCACCGCCTCGGTCAGCCAGTCGGTGATCGGCCGCAAGCTCGCCCCGGGCCAGGTCTGGGCGCGGGTCCGGCCCCGCCTCGCCACCCTGGTCGGCTGGATGGTGGTGCGCACGCTGGCGGTCACCGTCGGCGTCTTCGCCCTGACGTTCACGGTCGCGCTCCTGGCCGGGTTCGCCGCCGCGGCGTCGGGCTCGATCGGCCTCGCCGTCCTGGTCGCGCTGGTGGCCGGGCTCGCGTGCGTCGCGCTCGTGCTGTGGCTGTGGTTGCGGTTCCTGCTGGTGGTTCCCGCCCTCGTGCTCGAGGGACGGCCGCTCCTCGCCACCGTCGCCCGGGCCTGGCGCCTGACCCGCCAGAACTACTGGCGCATCCTCGGCACCGTGCTGCTGGCGAACGTCATCGCGAGCCTCGCCGGGCAGGTCGTCGGCTACCCGCTGGCCCTGGTCGGGTTCGCCGTCGACGAGCAGACCGGCGGCCTGTGGGGCACGGTCGTGGCGTCCGTGGTCGCGTCGGTCATCGCCTCCGTGGTGCTGCTGGTCTTCACCTCCGGCGTCGTCGCGCTCGTCTACACCGACGTGCGCATGCGCCGCGAGGGCCTGGACGTCCGGCTCGCCGAGGCCGCCGCCCGCGCCGCCCAGGAACCCGCCCCGGGTACCTCCGACGGCCCGACCCCGCCCCCGACGACGGGGCCCGGCGCCCAGTGGTGAMSTPDQPSSPSGWGEAPRPPAYGQYGPGQYGAGQYGQGRYGQAPDGGTPGQQPAGAPNPYGPAATRPGIVPLRPLSLGEVYDGAFGAVRHNPAVLLGMVSVVVAVATVLATLLSRVAVPFLTGALSDAVARQPDLAPLEAEVPLFAELLALSGALTLTFLIAQPIAEGLITASVSQSVIGRKLAPGQVWARVRPRLATLVGWMVVRTLAVTVGVFALTFTVALLAGFAAAASGSIGLAVLVALVAGLACVALVLWLWLRFLLVVPALVLEGRPLLATVARAWRLTRQNYWRILGTVLLANVIASLAGQVVGYPLALVGFAVDEQTGGLWGTVVASVVASVIASVVLLVFTSGVVALVYTDVRMRREGLDVRLAEAAARAAQEPAPGTSDGPTPPPTTGPGAQWNANANANANA
AK018_02722663hypothetical proteinGTGACCCCGGCGTCCGGCGCGGTCGGGCTGCTAACGACACCGCTCGCCGCCGCGGTGCCCGTCGACCCGGACCGGCCGACGGCGCGCCGGTGGCTGCTCGAGGAACTGTCCCGCCCCGAGTACTCCACCGACCAGACCCTGCTGTCCCGGTTCGTCGAGTGGTTCACCGGCCTCTTCGAGGGCCTCGAGGCCGTGGCCGTGTCCCCCGGGCGCCTCGCCGTCGTCGTCGCCCTGGTCCTGGGCCTCGTGGTCGCCGTCGCCTGGTGGGTGGCCGGGCCCGCCCGCCTGCGCCGCCGCACCCGGCCGGCCTCCGCCGTCGTGCACGGCGACGACGTCCGCACCGCGGCGCAGCTGACCGCCGCCGCCGACGACGCCGCCGCACGGGGCGACTGGTCCCTGGCCGTGCTGGAACGGTTCCGGGCCACCGTCCGTGGGCTCGAGGAGCGCGCCGTCCTCGACGAACGGCCCGGCCGCACCGCCCGGGAGGCCGCCGACGACGCCGCCGCACGCCTGCCCGACCTGGCCCGCGACCTGCACGACGCCGCCACCGTGTTCGACGACGTCTGCTACGGCCACCTGCCCGCCGGACCGGCCGACGACGCGACGCTGCGCGGCCTCGAGCACCGGGTCTCCGCCGCCCGCCCGGCGGTGGCCGCGCCATGAMTPASGAVGLLTTPLAAAVPVDPDRPTARRWLLEELSRPEYSTDQTLLSRFVEWFTGLFEGLEAVAVSPGRLAVVVALVLGLVVAVAWWVAGPARLRRRTRPASAVVHGDDVRTAAQLTAAADDAAARGDWSLAVLERFRATVRGLEERAVLDERPGRTAREAADDAAARLPDLARDLHDAATVFDDVCYGHLPAGPADDATLRGLEHRVSAARPAVAAPNANANANANA
AK018_027231203putative membrane proteinATGACCGCCACCGTCACCTGGACGTCCGACCCGGCCACCGACGCCACCACGGCGTCGCGACGGCGCCTGCGTCGGCACCGCGCCCGCTGGGTGCTCGTCGCAGCGGCGTCGCTGCTCCTCGTCGTCGCCGTCCTGCTCGTGACCCGCTCCCCCGGCTCCACCGCCGACCTCGACCCCGGCAACACGCGTCCCAACGGCTCCCAGGCCGTGGCGCGGGTGCTCGAGCAGCAGGGCGTCACCATCACCCACGTCACCCGCGTCGCCGACGCCCTCGCCGCGGCCGGCCCCGACAGCACGCTGCTCGTCACCCCGTCACCGTTCCTGCTGCCCGAGCAGGCCGACGCGCTCGCCGGCACCGACGCGGACCTCGTGCTCGCCGGCGCCGGGCGGACCCTGCTGACCGCCGCCACCGGCGCGCAGGTCGAGACCGACCCCCTGACCGGGACCCCGCCCGAGGCCCGCCCGCCCGGGTGCGAGCTGCCCGCCGCTGTCGCCGCGGGACCGCTGGTCCTGGAGGCCGGGCTCGTCGCCGTCGGCGACGCGGTCACCACCTGCTGGCCCTCCGGCGACGCCGCCGCACTGGCCGCCGTCGAGCAGGACGGGCGCCTGGTCACCGCCGTGCACGACCCGAGCCTCCTGCGCAACGACACCGTCGCCGACGAGGGCAACGCCGCCCTCGCCCTGCACCTGCTCGGCGCCCACGAGCGCCTCGTCTGGCTCGTGCAGGACCCGACCGATCTCACCGCCGCACCCGACGGCGGCCGCAGCGGCGTCGAGCCCGACCCCGCCGGCGTGCTGCCCGACTGGTTCGGCGCCGCCCTCGCCTGGGCCGCGCTCGTCGCCCTCGCCACCGTGCTGTGGCGCGGCCGGCGCCTCGGCCGCCTCGTCGCCGAGGACCTGCCCGTCGTCGTGCCCGCCGCCGAGTCCACCCGCGGACGCGCCCGCCTGTACCGGCGCTCGCGGGCACGCGGGCACGCAGCCGCCGCGCTGCGCGCCGCCACCGCCGACCGGATCGCCCACCGGCTCGGCCTGCCCCGCGCGGCCGGCGCGCCGGACGTCGTGGACGCCGTCGTGCGGGCGAGCGGTCACCACCCCGACGACGTCGGGGCACTGCTGTACGGACCACCACCCGCCGACGACGCCGAGCTGCAGGAGCTCGCCCGCCGGCTCGACACCCTGGAGAGCGAGGTTCACCGACCGTGAMTATVTWTSDPATDATTASRRRLRRHRARWVLVAAASLLLVVAVLLVTRSPGSTADLDPGNTRPNGSQAVARVLEQQGVTITHVTRVADALAAAGPDSTLLVTPSPFLLPEQADALAGTDADLVLAGAGRTLLTAATGAQVETDPLTGTPPEARPPGCELPAAVAAGPLVLEAGLVAVGDAVTTCWPSGDAAALAAVEQDGRLVTAVHDPSLLRNDTVADEGNAALALHLLGAHERLVWLVQDPTDLTAAPDGGRSGVEPDPAGVLPDWFGAALAWAALVALATVLWRGRRLGRLVAEDLPVVVPAAESTRGRARLYRRSRARGHAAAALRAATADRIAHRLGLPRAAGAPDVVDAVVRASGHHPDDVGALLYGPPPADDAELQELARRLDTLESEVHRPNANANANANA
AK018_027241056hypothetical proteinGTGACCCACCCCGACGAGAACCCGCCCGTGCCGCAGGAACCGGCGCCGGCCCCGGAACCCGAGCACCGGCCCGAGGCCGAGGCCGTCGCCGAGCCGCCCCGGCCCTCCCTGGAGCTGCGGCAGGCGCTCGCCGGGGTGCGCACGGAGGTGGGCCGCGCCGTCGTCGGGCAGGACTCGGCCGTCACCAGCCTGCTCATCGCGCTGCTGTGCTGCGGGCACGTGCTGCTCGAGGGCGTGCCCGGCGTCGCCAAGACCCTGCTGGTCCGCTCCCTGGCCGCCTCGCTAGACCTGGACTTCAAGCGGGTGCAGTTCACCCCCGACCTGATGCCCGGCGACGTCACCGGCTCGCTCGTCTACGACGCGCGCACCGCGCAGTTCTCCTTCCGCGAGGGCCCGGTGTTCACCAACCTGCTGCTCGCCGACGAGATCAACCGCACACCTCCGAAGACCCAGGCGTCCCTGCTGGAGTCCATGGAGGAGCGCCAGGTCTCCGTTGACGGCCAGCCGCGGCCGCTGCCCGAGCCGTTCGTCGTGGTGGCCACGCAGAACCCCGTCGAGCACGAGGGCACCTACCCGCTGCCCGAGGCCCAGCTCGACCGGTTCCTGCTCAAGGTGCTGCTCCCCCTGCCGGAACGCGACACCGAGATCGAGGTGCTGGCCCGGCACGCCGCCGGGTTCGACCCGCGCGACCTGACCGCCGCAGGCGTGCAGGCCGTGGCCGACGCCGGCACGCTCGCCGCCGCGCGGGCCGAGGTCCGCCGCGTCGAGGTGGCGCCCGAGGTGCTCGGGTACGCCGTCGACGTGTGCCGCGCCACCCGGCAGTCGCCGTCGCTGCAGCTCGGCGTGTCCCCCCGCGGCGCCACGGCGCTGCTCGCCGCCTCCCGCGCCTGGGCCTGGCTGACCGGCCGCATGTACGTCACGCCCGACGACGTCAAGGCGCTCGCGCACCCGACCCTGCGGCACCGCGTGGCCCTGCGCCCCGAGGCCGAGCTGGAGGGCGTGACCGCCGAGACGGTGCTCGGTACCGTCCTGTCGGCCGTCCCGGTGCCGCGCTGAMTHPDENPPVPQEPAPAPEPEHRPEAEAVAEPPRPSLELRQALAGVRTEVGRAVVGQDSAVTSLLIALLCCGHVLLEGVPGVAKTLLVRSLAASLDLDFKRVQFTPDLMPGDVTGSLVYDARTAQFSFREGPVFTNLLLADEINRTPPKTQASLLESMEERQVSVDGQPRPLPEPFVVVATQNPVEHEGTYPLPEAQLDRFLLKVLLPLPERDTEIEVLARHAAGFDPRDLTAAGVQAVADAGTLAAARAEVRRVEVAPEVLGYAVDVCRATRQSPSLQLGVSPRGATALLAASRAWAWLTGRMYVTPDDVKALAHPTLRHRVALRPEAELEGVTAETVLGTVLSAVPVPRNANANANANA
AK018_027251371hypothetical proteinATGGTCCTGACCCGTCGTGCCGTCGCCCTCGCGGCCCTCGGCGTGGTGCCGCTGGTGCTGTGGCCGGTCGCCGGGACCGTCGTCGTGTGGGCCGGCGTGGTCGTGCTGGTGTGCGCGCTGGACGTGGCGCTCGCGGTGCCGCCGCGCGGGGTCGCCGTGCGGCGCACCGTGCCCGCCGCGGTGCGGCTCGGCACGCCCGTCGACTCGGAGCTGGTCGTGTCCCACCCGGGACGACGGCGCCTGCGCGCCCTGGTGCGGGACGCGTGGCCGCCGTCGCTGGCCGCCGACCGCGACGGTGACGCCCTGAGGCCGCACACCGATCCCGCCGCCGTGACCCGCACGGCCCGGCACCGCATCGACCTGCGGCCCGGGGAGTCGGCGCGGCTGCGCACGCCCCTGCTCGCGACCCGTCGCGGCGAGCGCCGGGCCGGTCCGGTCACCGTGCGCACCTACGGACCCTGCGGGGTCGCGGGCCGGCAGGCCTCGCTGCCCGTGGGCGGCCGGATCCGGGTGCTGCCGGAGTTCGCCTCGCGGCGCCACCTGCCGAGCCGGCTGGCGCGGCTGCGCGAGATGGACGGCCGCGCGGCCGTGCAGGTGCGCGGCGAGGGCACCGAGTTCGACTCCCTGCGCGAGTACGTCGTCGGGGACGACGTGCGCTCGATCGACTGGCGCGCCACCGCGCGCGGCGGTGACGTCGTCGTGCGCACCTGGCGGCCCGAGCGCGACCGGCGGGTCGTCGTCGTGCTCGACACCGGGCGCACGGCGGCCGCCCGCATCTCCGCCGTCGACGACGGGTCGCTGAACACCGGCGGGACGCGGCTCGAGGCCGGCATCGAGGCGGCACTGCTGCTCGCCGCGCTGGCCGACCGCGCCGGTGACCGGGTCCAGGTGCTCGCGTACGACCGGGCGCTGCGGGCCCGGGTCGCCGGCGCGTCCGGCACCCGGCTGCTGCCGGCCGCCGCCGACGCGCTCGCCGCCGTGGAGCCGGCGCTGCGCGAGACGGACTGGACCGGCCTGGTGGGTCAGGTGCGCGCCCGGGTCTCGCAGCGCTCGCTCGTGGTGCTGCTGACGTCGCTCGACCCGGCCGCCGTCGAGTCGGGGCTGCTGCCGGTGCTCGGCCACCTGACGGGGACGCACCAGGTCGTGGTCGCGGCGGTCCAGGACGGCGAGGTCGCGGCGATGCGCGGCGGCCGCGACGACGTCGAGGCGGTCTACGACGCCGCGGCGGCGTCGCGGGCGGCCCTCGAGCGCTCGGCCGTCGCCGCGGTGCTGCGCCGGAACGGCGCCGAGGTGGTCGAGGCGCTGCCGGCGGAGCTCGCGCCGCGGCTGGCCGACGCCTACCTGGCGCTCAAGGCGGCCGGCCGCCTCTAAMVLTRRAVALAALGVVPLVLWPVAGTVVVWAGVVVLVCALDVALAVPPRGVAVRRTVPAAVRLGTPVDSELVVSHPGRRRLRALVRDAWPPSLAADRDGDALRPHTDPAAVTRTARHRIDLRPGESARLRTPLLATRRGERRAGPVTVRTYGPCGVAGRQASLPVGGRIRVLPEFASRRHLPSRLARLREMDGRAAVQVRGEGTEFDSLREYVVGDDVRSIDWRATARGGDVVVRTWRPERDRRVVVVLDTGRTAAARISAVDDGSLNTGGTRLEAGIEAALLLAALADRAGDRVQVLAYDRALRARVAGASGTRLLPAAADALAAVEPALRETDWTGLVGQVRARVSQRSLVVLLTSLDPAAVESGLLPVLGHLTGTHQVVVAAVQDGEVAAMRGGRDDVEAVYDAAAASRAALERSAVAAVLRRNGAEVVEALPAELAPRLADAYLALKAAGRLNANANANANA
AK018_02726990hypothetical proteinGTGGACCTCGACGCCTTCACCGCCGTGCACGGCCCGGAGTGGCGACGCCTGGACGAGCTGACGCGCCGCCGTCGCCTCGACGGCGCGGAGGCCGACGAGATCGTGCGGCTGTACCAGGCCGTGGCCACGCACCTGTCCACCGTGCGGTCGGCCGCACCGGACCCGGCCACGGTCAGCCGCCTGTCGGACCTGCTGGGCAGGGCCAGGACCCGGATCTCGGGGGCGCACGAGCCCGCCTGGAGCGACGTGGTCCGTTTCGCCGTCGTCTCGGTGCCGGCCGCGCTGTACCGCATCCGCTGGTGGAGCGTGTGGGTCACGGTCGCGTTCCTGGCGGTGGCGCTGCTCGCCGGGTTCCGCGTGGCGCTCGACCCGGACGCGCTGGCCTCGATGGGCACGCCCGCGGAGCAGGAGCAGTACGTCTCGGAGGCGTTCGCGTCCTACTACGACCCGCAGCTGTCGTTCGCGGCGATGGTCTGGACCAACAACGCGTGGATCTGCGCCCAGCTCGTCGCGTTCGGGGTGACTGGGCTGTGGCCGGTCTACGTGCTGCTGCTCAACGCGGTCAACGTCGGCGCGGCGGGCGGACTGATGGCCGAGCACGGCGAGCTCGGCCTGTTCCTGCAGCTCATCGCACCGCACGGGCTGCTGGAGCTGACGTGCATCTTCGTCGCGGGGGCGGCGGGCCTGCGGCTGTTCTGGGCCTGGGTCGCGCCGGGGCCGCGGCGGCGTGCCGTCGCACTGGCGGCGGAGGGTCGGGCGCTGGTGACGGTCGCGGTGGGGCTGACCGGCGCGCTGGCGCTGTCGGGTCTCGTGGAGGGTTTCGTCACGGGGTCCGGGCTGGCCTGGTGGCTGAAGATCGCCATCGGCGCCGTGGCGCTGGGCGCGTTCCTGGCGTACGCGCTGGTGCTCGGTCGCCGGGCGGTGCGGGCCGGGGAGACCGGCGACCTCGACGCGGACCGGGCCGGGGCTGTTCTGCCGACCGCCGGCTGAMDLDAFTAVHGPEWRRLDELTRRRRLDGAEADEIVRLYQAVATHLSTVRSAAPDPATVSRLSDLLGRARTRISGAHEPAWSDVVRFAVVSVPAALYRIRWWSVWVTVAFLAVALLAGFRVALDPDALASMGTPAEQEQYVSEAFASYYDPQLSFAAMVWTNNAWICAQLVAFGVTGLWPVYVLLLNAVNVGAAGGLMAEHGELGLFLQLIAPHGLLELTCIFVAGAAGLRLFWAWVAPGPRRRAVALAAEGRALVTVAVGLTGALALSGLVEGFVTGSGLAWWLKIAIGAVALGAFLAYALVLGRRAVRAGETGDLDADRAGAVLPTAGNANANANANA
AK018_02727822hypothetical proteinGTGGAGCAGGACGGCATCCTCATCGGCGAAGGCGTGCTGCTCGACGCCCGCCCGGCGTCCTTCGCCTCCCGCGGGCTCGGCGCACTGCTCGACGTGATCGTCACCGTGCTGGTCGGGATCGTGGCGCTGGTGGTGGTCAGCGGCAGCCTCCTCGACGCCGGCACGCAGTGGCAGACCACCGCCACGGTGAGCCTGCTGGTGCTGCTGCTGGTGCTCGTACCGGTCACGGTCGAGACGCTCACGCGGGGCAGGTCGCTCGGCAAGCTCGCCGCCGGCCTGCGGGTGGTGCGCGACGACGGCGGTCCCGTCCGCTTCCGGCACGCCCTGGTGCGCGCCCTGGTCGGCGTCTTTGAGATCTGGTTCACGCTCGGCTCCGTGGCCGTCATCGCCTCGCTGTCCAACGCCCGGGGCAAGCGCCTGGGTGACCTGCTCGCCGGGACCTACGCGGTCCGGGTGCGCGGGGTGCGCGGGTGGGAGCAGCCCCTGGTCATGGCTCCGGGGTTGGCCGGCTGGGCGGCGAGCGCCGACATCCGGCGCCTGCCGGACGGGCTGGCGCTGCAGGTGCGCCAGGTGCTGGACCGCGCACCGCGGCTGGCGCCGTCGTCCCGCGCGCAGCTCACCGACGAGCTGGCCGGACGCGTCGAGGCCTTCGTGGCGCCCGGCCCGCCGCCGGGCACCTCCGCCGAGACGTTCCTGCACGCCGTGCTGCACGAGCGGCGCGAGCGGGAGCTGGCACGCGGCACCGTCGAGCGGGAGCGTGCCGCGGCCCAGGCCGCGGCGCTGCACCGCCTGCCGTACGGCGTGCCCGACCCGCGCGACTGAMEQDGILIGEGVLLDARPASFASRGLGALLDVIVTVLVGIVALVVVSGSLLDAGTQWQTTATVSLLVLLLVLVPVTVETLTRGRSLGKLAAGLRVVRDDGGPVRFRHALVRALVGVFEIWFTLGSVAVIASLSNARGKRLGDLLAGTYAVRVRGVRGWEQPLVMAPGLAGWAASADIRRLPDGLALQVRQVLDRAPRLAPSSRAQLTDELAGRVEAFVAPGPPPGTSAETFLHAVLHERRERELARGTVERERAAAQAAALHRLPYGVPDPRDNANANANANA
AK018_02728450hypothetical proteinATGCGATCGACACTCCCCCGGGCCGGCGCCGCGGCCACGACGCTCCTGCTCGCCTTCGGCCTGGCGGCCTGCTCCGGCGGCGCCGACGACGCCGAGGCGCAGGCGTTCTGCGACTCGTTCGACGCCCTGGAGGACCTGACCACCGAGCTCGGCGAGGTCGACTACTCCGACCCCGAGTCGGCCACCTCCTCCCTGGAGCAGATCACCGCCGAGATCGAGTCCATCGAGGCGCCGGAGGAGATCGCCGACGACTACGCGGTGGTGTCCTCGGCGTTCCGCACCTTCACCGACACGGCGAGCGAGGCGCTCGCCGACCCGGAGAACGTGGACCAGCAGGCCATGAGCGAGGCGACGGCCGCGATGGGCGGCGAGGAGTTCACCGCGGCGACCACCGCGCTCAACGACTACACGAACGAGCACTGCGCGGGGGCCTCACCGACGTCCGAGTGAMRSTLPRAGAAATTLLLAFGLAACSGGADDAEAQAFCDSFDALEDLTTELGEVDYSDPESATSSLEQITAEIESIEAPEEIADDYAVVSSAFRTFTDTASEALADPENVDQQAMSEATAAMGGEEFTAATTALNDYTNEHCAGASPTSENANANANANA
AK018_027291533ahcY_1AdenosylhomocysteinaseATGACCGCGACCGCTGCGGCCAGCACCCACTCCGCGCCCGGCTTCGACGAGGTCCCGGGCCGCTACAAGGTCCGCGACCTCTCCCTCGCCGAGGCCGGCCGGCACCAGATCCGCCTCGCCGAGCACGAGATGCCCGGCCTCATGGCCCTGCGCGCCGAGTACGGCGAGGCCAAGCCCCTCACCGGGGCCCGGATCGCGGGATCCCTGCACATGACCGTCCAGACCGCCGTCCTCATCGAGACCCTCACGGCGCTGGGCGCCGAGGTCCGTTGGGCGAGCTGCAACATCTTCAGCACGCAGGACGAGGCCGCGGCCGCCGTCGTCGTCGGCCCGGACGGCACCCCCGACGACCCGCGGGGCGTGCCCGTCTTCGCCTGGAAGGGCGAGACGCTGCCCGAGTACTGGGACTGCACCGAGCAGATCCTCGTGTGGCCGCACGGGGAGGGCGCCAACCTCATCCTCGACGACGGCGGCGACGCCACCCTGCTCGTCCACCTCGGTCTGCAGTACGAGCGCGTGGGCGCGGTGCCGCCGGACACGCTGCCCGGCGAGCCCGACCACACCGAGGAGATGAACGTGGTGCGCGGCGTGCTGCGTCGCGCCCTGGCCACCGATCCGCTGCGCTGGACCGGCGTCGCCGAGCAGATCGGCGGCGTCACCGAGGAGACCACCACCGGTGTGCACCGGCTGTACCACCTGGCCGAGGCCGGCGAGCTGCTCTTCCCGGCCATCAACGTCAACGACTCGGTGACCAAGTCCAAGTTCGACAACAAGTACGGCATCCGGCACTCGCTGCCGGATGGCATCAACCGTGCGACCGACATCCTCATCGGCGGCAAGGTCGCGTTCGTGGCCGGCTACGGCGACGTCGGCAAGGGCGCCGCCGAGGCGTTCCGGGGCCAGGGCGCCCGCGTGATCGTCTCCGAGGTGGACCCGATCTGCGCGCTGCAGGCCGCCATGGACGGCTTCCAGGTCGCCCGCATCGAGGACGTGCTCGGCGAGGCCGACTTCTTCATCACCACCACGGGCAACTTCGGCGTCATCACCGCCGAGCACATGACCGCCATGAAGGACAAGGCCGTGGTGGGCAACATCGGCCACTTCGACAACGAGATCGACATGGCCGGGCTGGCGCAGGTGCCCGGCGTCGTCAAGACCGAGATCAAGCCGCAGGTGCACGAGTGGACCCTGCCGGCCGCGAGCGACCGCGCCGAGCGGTCCATCATCGTGCTGTCCGAGGGTCGCCTGCTCAACCTCGGCAACGCGACCGGGCACCCGTCGTTCGTCATGTCGAACTCGTTCGCCAACCAGGTCATCGGCCAGCTCGAGCTGTTCGCCGACATGGCCCGCCCGGCCGAGGAGCAGCAGTACTCCCGCCAGGTCTACCGGCTGCCCAAGGTGCTCGACGAGAAGGTCGCGCGGCTGCACCTCGACGCCCTCGGCGTCCGCCTCACCGAGCTGTCGACGGCGCAGGCCGACTACCTCGGGGTGCCGGTCGAGGGTCCGTACAAGCCGGAGCACTACCGGTACTGAMTATAAASTHSAPGFDEVPGRYKVRDLSLAEAGRHQIRLAEHEMPGLMALRAEYGEAKPLTGARIAGSLHMTVQTAVLIETLTALGAEVRWASCNIFSTQDEAAAAVVVGPDGTPDDPRGVPVFAWKGETLPEYWDCTEQILVWPHGEGANLILDDGGDATLLVHLGLQYERVGAVPPDTLPGEPDHTEEMNVVRGVLRRALATDPLRWTGVAEQIGGVTEETTTGVHRLYHLAEAGELLFPAINVNDSVTKSKFDNKYGIRHSLPDGINRATDILIGGKVAFVAGYGDVGKGAAEAFRGQGARVIVSEVDPICALQAAMDGFQVARIEDVLGEADFFITTTGNFGVITAEHMTAMKDKAVVGNIGHFDNEIDMAGLAQVPGVVKTEIKPQVHEWTLPAASDRAERSIIVLSEGRLLNLGNATGHPSFVMSNSFANQVIGQLELFADMARPAEEQQYSRQVYRLPKVLDEKVARLHLDALGVRLTELSTAQADYLGVPVEGPYKPEHYRYNANANANANA
AK018_027301194hypothetical proteinATGCACCTGCTGGACGTGCTGCGCTTCGGCTCCGCCGCCGCCGTGGTCGTCTACCACTTCACGGCCACGCCGAGCGCATCGCGCTACTGGGACGCCGACGTCACCGTGCTCTTCGAGGGCATCAGCCACCTGACGCGCTACGGCTGGCTCGCCGTCGAGATGTTCTTCGTGATGAGCGGGTTCGCGATCCTGTGGAGCAGCCAGGGTCGCAGCGTGGCCCAGTTCACCGGTTCCCGCGTCGGACGCCTGTACCCGGCGTTCTGGGCGTGCATCGTCGTCACTGCCGTGCTGCAGGCGTTCTGGGCGGGCGGGCGGCACCTGACCTTCGGTGAGACGCTCGCCAACCTCACCATGGCACCGGCGGTGCTGGGCGCCGAGCTGTCCCAGGTCGTGTACTGGACGCTGCTGGTCGAGCTGAAGTTCTACGTGCTGGTCGGCGTCGCCATGCTGTTCGGTCCGCTGACCCGCGCGCGGGTGCTGGGCCTGGCCGTCGGGTGGCCCGCCGTCGCGCTGCTGGTGCGCGGCTTCGGCTACCCCGACCTGGCCGAGCACCTCGTGGTCCGGCACGCCGTCTACCTGAGCATCGGGATGGTGCTGTTCCTGCTGTGGCAGGACCTCTCCGCCCGCCGCGAGGCGTCGGACGACGGCGGGCGCCTCGGCACGGCGACCGTGGCGACCACCCTCGGCGTCCTGCTGGCCTGGGGCTCCTACCAGGTCATGGACGCCGCGGGCCGCGCCACCGCGCTGCAGGGCGTCGACGTCGACCCGGCCGTGTCCGTCGCAGTCTTCCTCGCCACCGTCGGTGCGGTGTGGCTGGCGACGCGGCCGTGGGCCGGGTTCCGGTCCCCGGCCCTCGGGGCCGTCTGCGTGCTCGCCGGGGGCCTGACGTACCCCCTGTACCTGGTGCACACGCAGTTCGGCTGGGCCGTCACCGAGTGGCTCACGGTCCGGGGCGTCGGGACCTGGACGACGCTCGCTGCCGCCGTGCTCGTCTCGGTGCTGCTCGCCGCCGTCATCCACTACGCCGTCGAGCGGCCCTTCGGCACCCGGCTGCGCCGGGCCGTCACCGCACGCCTCGACCGTAACCGCGCCGGACGGCCGGCGCCCGCACCGGCGGCGGTCAGCTCTCATCCTGCCGCTCACCCGTCGCTCGCGACCGCGGGACCGCCGCTCCTCGACCCGCAGCTACGCTGAMHLLDVLRFGSAAAVVVYHFTATPSASRYWDADVTVLFEGISHLTRYGWLAVEMFFVMSGFAILWSSQGRSVAQFTGSRVGRLYPAFWACIVVTAVLQAFWAGGRHLTFGETLANLTMAPAVLGAELSQVVYWTLLVELKFYVLVGVAMLFGPLTRARVLGLAVGWPAVALLVRGFGYPDLAEHLVVRHAVYLSIGMVLFLLWQDLSARREASDDGGRLGTATVATTLGVLLAWGSYQVMDAAGRATALQGVDVDPAVSVAVFLATVGAVWLATRPWAGFRSPALGAVCVLAGGLTYPLYLVHTQFGWAVTEWLTVRGVGTWTTLAAAVLVSVLLAAVIHYAVERPFGTRLRRAVTARLDRNRAGRPAPAPAAVSSHPAAHPSLATAGPPLLDPQLRNANANANANA
AK018_02731948hypothetical proteinATGAGCACCCATCGCAAGCATCTTCGTCGCCGTCAGGGCGTCGCCCTGGTCTCTGCCGCCGCCCTGGGCCTGACCCTGGCCGCGTGCAGCACCGACGACTCCGGTTCGGAGGACGCCGGCGCCGAGGGCTCCGAGGAGACCACCGAGTCCGAGGACATGGGGACCATCACGCTCGGTTACCTGCCGGCCTGGACCGACGGCCTGAGCATGGCCTACCTCGCGGACCACGTCCTGACCGAGGCCGGCTACACGGTCGAGCACCAGGACGTCCAGGAGGCCGGTCTGCTCTACACCGCGCTCGCCGAGGGCGACGTCGACATGTACCCGTCGGCCTGGCCCGAGGTCACCCACGCCTCCTACATGGAGGAGTACGGCGACTCCATCGACGACATCGGCACCTACTACGACAACGCCAAGCTCACGATGGCGGTGCCGGAGTACACCGACGTCGACTCGATCGACGAGCTGGCCGACAACACCGACCTGTTCGGCGGCACCATCACCGGCATCGAGCCGGGCGCCGGTCTGACGGCGGCCGTGCAGGACAGCGTCATCCCGACGTACGGCCTGGACGAGGCCGGCTACGAGCTGCAGACCTCCTCCACGACGGCCATGCTCACCGAGCTGGAGCAGGCCACGGAGAACGAGGAGGACATCCTCGTCACGCTGTGGCAGCCGTTCTGGGCGAACGCGTCCTACCCGGTCAAGACCCTCGAGGACCCGGAGGGAGCGCTCGGTGAGGCCGAGGGTCTGCACTTCCTGGGTACCTCCGGGTTCGCGGACGAGTACCCGGAGGCGGCCGAGATCATCGGCGGCATCCAGCTCGACGACAACCAGTTCGGCACGCTCGAGGACCTCGTGGTGAACGAGAACCCGGACGACCCGGCCGCTGGTGTCGAGGCCTGGCTCGAGGAGAACCCCGACGTCATCCCGATGCCGGAGAGCTGAMSTHRKHLRRRQGVALVSAAALGLTLAACSTDDSGSEDAGAEGSEETTESEDMGTITLGYLPAWTDGLSMAYLADHVLTEAGYTVEHQDVQEAGLLYTALAEGDVDMYPSAWPEVTHASYMEEYGDSIDDIGTYYDNAKLTMAVPEYTDVDSIDELADNTDLFGGTITGIEPGAGLTAAVQDSVIPTYGLDEAGYELQTSSTTAMLTELEQATENEEDILVTLWQPFWANASYPVKTLEDPEGALGEAEGLHFLGTSGFADEYPEAAEIIGGIQLDDNQFGTLEDLVVNENPDDPAAGVEAWLEENPDVIPMPESPGPT0013640_2029DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
AK018_02732912opuAB_1COG4176Glycine betaine transport system permease protein OpuABATGTTCTTGAAGTTTGCTGCGGAAGACAGCCCGCTCGTGCCGAAGGTGCCGATCGGCGAGGCCGTCGACAGCGCGATCGACTGGATCAACGACAACCTCGAGTGGTTGCTGGACGGCATCACGATGGTGATGTCCTTCCTGATCGACGGGATCACCGACCTGCTCCTGTGGCCGCCGGCACTGGTCATGGTCGCGCTGTTCTCGCTCCTGGCGTTCCTCGTGCGTTCGGTCGGCTTCGCCGTCTTCACGCTGGTCGGCACGCTGCTGATCATCAGCATGGAGATGTGGGAGCCGGCGATGGAGACCCTCAGCCTCGTGCTGGTCGCCACGGTCGTGGCCGTGGTGATCGCCGTCCCCGTCGGCATCCTGGCAGCGCGGAACGACTCGGTCAGCGCCTTCGTCCGCCCGGTCCTCGACTTCATGCAGACGATGCCGGCCTTCGTCTACCTGGTCCCGGTGGTCATCTTCTTCGGCATCGGCGTCGTGCCCGGTGTCTGCGCGACCATCGTGTTCGCCCTGCCGCCCGGTGTCCGCCTGACCGAGCTGGGTATCCGCCAGGTGGACGGCGAGACCGTCGAGGCCGGTGAGGCCTTCGGCGGCACGCCGTGGCAGATCCTGCGCGGTATCCAGCTCCCTCTCGGTCTGCCGACCATCATGGCCGGCGTCAACCAGGTCATCATGCTGGCCCTGTCGATGGCGGTCGTCGCCGGGATTGTCGGCGCCGGCGGCCTCGGCGGGGAGGTCGTGCAGTCGATCTCCACCCTCGACGTCCCGCAGGGTGTCGAGGGCGGTCTGGCCGTGGTCATCCTGGCCATCTTCCTCGACCGCACCACCGGCGCCATCGGCCAGCCGACGGGGCGGTCGCTCGTCGCCGTCCTCAAGAGCCGCAGGAGCGCCGCCGTCGCGGTCTGAMFLKFAAEDSPLVPKVPIGEAVDSAIDWINDNLEWLLDGITMVMSFLIDGITDLLLWPPALVMVALFSLLAFLVRSVGFAVFTLVGTLLIISMEMWEPAMETLSLVLVATVVAVVIAVPVGILAARNDSVSAFVRPVLDFMQTMPAFVYLVPVVIFFGIGVVPGVCATIVFALPPGVRLTELGIRQVDGETVEAGEAFGGTPWQILRGIQLPLGLPTIMAGVNQVIMLALSMAVVAGIVGAGGLGGEVVQSISTLDVPQGVEGGLAVVILAIFLDRTTGAIGQPTGRSLVAVLKSRRSAAVAVPGPT0013635_1215DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013635-gbuB|proW-K02001NANA
AK018_027331191gbuA_1Glycine betaine/carnitine transport ATP-binding protein GbuAATGCTCAAGGAGGGAGCCGACCGCGCGGCGTTGCGCCGCGAAGGCCTGACGGCAGCGGTCATCGACGCCGCGTTCGACGTGGCGCCGGGAGAGATCTTCGTCGTCATGGGTCTGTCCGGCTCCGGAAAGTCGACCCTGATCCGCATGGTCAACGGTCTGCTCGAGCCGACCGACGGCACCATCTCCATCGACGGTCAGGACGTCACCCACCTGAGCAAGGCGGGCCTGCGCGAGGTCCGTCGGTCCAAGGTCTCGATGGTCTTCCAGCACTTCGCGCTGCTGCCGCACCGCACCGTGGGCGAGAACGCCGCCTACCCGCTGGCGCTGCGCGGCGTGAACAAGGCCGAGCGCGAGGCCAAGGCCGAGGAGGCCCTCGGCATGGTGGGCCTGGGCGGCTGGGGCGGCTCCATGCCCGACGAGCTCTCCGGCGGTATGCGCCAGCGCGTCGGGCTGGCCCGCGCGCTCGCCGCCGGCACCGACGTGATGCTCATGGACGAGGCGTTCAGCGCGCTCGACCCTCTGATCCGCAAGGAGATGCAGGACCAGCTCCTCGAGCTCCAGGCCGAGCTCGGCAAGACGATCCTGTTCATCACCCACGACCTCAACGAGGCCATGCGCCTCGGTGACCGCATCGCCATGATGCGCGACGGCCGCGTGGTGCAGGTGGGCACCTCGGAGGAGATCCTCAACGAGCCGGCCAACGACTACGTGGCACAGTTCGTCGCGGACGTCGACCGCTCCCGCGTCCTGTCGGCGAGCGCCGTCATGGAGCGGCCCGTGGCCGTCGTCGGACCGGAGTCCGGCCCCAAGGCCGCGCACAAGCTGATGCGCGAGCACCAGGTCTCGTCCCTGCTGGTCATCGGCCGCAACCGCAAGGTCTCCGGCGCCGTGTTCGAGAACGAGGTGGCCGACGCCGTGCGCCGCGGTGTCGACGTGCTCCCCGTGAGCGACGAGCCGGTGGCCCAGGTCGCCCCCGAGACGCCGCTCGCCGAGCTGTTCGCCGACGCCGCCGCGAGCCGCGCCCCGCTGGCCGTGGTGGGTGAGGACGGCCGCGTGCAGGGCGTCATCCCCCGGGTGACGCTGCTCAGCGCGCTGTCCGTGCCCACGACCGATGACGCCGACGGCGCGACGGGCGAGGGCGACGGCCCCGCCGACGGCGAGCCCGTCCTCGACCCGGCAGGAGCGAAGTGAMLKEGADRAALRREGLTAAVIDAAFDVAPGEIFVVMGLSGSGKSTLIRMVNGLLEPTDGTISIDGQDVTHLSKAGLREVRRSKVSMVFQHFALLPHRTVGENAAYPLALRGVNKAEREAKAEEALGMVGLGGWGGSMPDELSGGMRQRVGLARALAAGTDVMLMDEAFSALDPLIRKEMQDQLLELQAELGKTILFITHDLNEAMRLGDRIAMMRDGRVVQVGTSEEILNEPANDYVAQFVADVDRSRVLSASAVMERPVAVVGPESGPKAAHKLMREHQVSSLLVIGRNRKVSGAVFENEVADAVRRGVDVLPVSDEPVAQVAPETPLAELFADAAASRAPLAVVGEDGRVQGVIPRVTLLSALSVPTTDDADGATGEGDGPADGEPVLDPAGAKPGPT0013630_439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013630-gbuA|proV-K02000NANA
AK018_02734669hypothetical proteinGTGCCTCGCGACAAGCTCCACCTCGGCCTCATGCTGGCCCTGACCTTCTCCACCGGGATCGCCGACGCCGTCGGCTACCTCGGCCTGGACCGCGTCTTCACCGGCAACATGACCGGGAACGTCGTCATCCTCGGTATGGGCCTGGCCGGCGCCGACGACCTGCCCGTGGTCGGTCCGTTGCTCGCCTTCGCGACGTTCTTGACCGGCGCGGCGTTCGGCGGGTTCGTCCTGCGCCGCCAGGAGGCCGGCTGGTCGTGGCGCACGACGTCGTGCTTCGGCCTGGTCGCAGCGGTCATGGTGGCCCTGACGATCCTGCTGACGGTGTTCGACGGCGACATGCCGCACGCCGTGCAGCTCACCGTCACCGGGCTGCTCGCCGCAGCCATGGGACTGCAGGCCGCCGCCGCCCGCCACCTGGCCGTCAAGGAGATCACCACCGTCGTGGTCACCAGCGCCATCACCGGCCTCGCGATGGACTCGCGGCTGGTCGGGGGGCACGGCCGCCACGTGTGGCGCCGGGTCGCGGCCATCGGGCTGCTCGGCGCGGGCGCGTGCGCCGGGGCGCTGCTCCTGCAGGCCCACCTGGCGCTCGGCGTCGCCGCGAGCGCCGCCATCACCCTGGCCGTCACCCTGCTGGGTCACTTGAGAGGACAGGAGATCACCCGATGAMPRDKLHLGLMLALTFSTGIADAVGYLGLDRVFTGNMTGNVVILGMGLAGADDLPVVGPLLAFATFLTGAAFGGFVLRRQEAGWSWRTTSCFGLVAAVMVALTILLTVFDGDMPHAVQLTVTGLLAAAMGLQAAAARHLAVKEITTVVVTSAITGLAMDSRLVGGHGRHVWRRVAAIGLLGAGACAGALLLQAHLALGVAASAAITLAVTLLGHLRGQEITRNANANANANA
AK018_027351791ywrD_1COG0405Glutathione hydrolase-like YwrD proenzymeATGACGTTCACCGCACCACCGGCCCACCTGACCCGCCCCGACCTGCAGGGCACCCACGGCACGGCCGCCTCGACCCACTGGCTGGCCACGGCGACCGCCCAGTCGGTGCTGGAGCGCGACGGCAACGCGTTCGACGCCGGCTGCGCCGCGGCGTTCGTGCTGCACGTCGTCGAACCGCACCTCAACGGCCCCGGCGGCGACCTGGTCGGCCTGTTCGCGACGGCGCAGGCACCCGCCGCCCCGCAGGTCCTCATGGGACAGGGGCCGGCGCCCGCCGGCGCGACCATCGAGCACTACCGCGACCACGAGAGCCTCGAGCTCGTCCCCGGCTCCGGAGCCCTGGCGGCCGCCGTCCCCGGTGCCGTCGACGCCTGGCTGCTGCTCCTGCGCGACCACGGCACCTGGTCCGTGCGCGACGTGCTCGCCTACGCCGTCGGCTACGCCCGCGACGGCCACCCCGTGCTGCCCGCCGTCGCCGCCGCCGTCGAACGCGTCGCCGACCTGTTCGGCCGCCACTGGCCGACGTCCGCGGCCCGCTGGCTGCCGCACGGCCGTCCACCGCGCGCCGGCGAGACGATCACCAACCCCGAGTACGCCGACCTGCTCGACGCGCTCGCCGACGCCGCCGACGCCTCACCCGGCGACCGCGCGGCCTCCGTCGACGCCGCGCGCGACGCCTGGCGCACCCGCGTCGGCGCCGCCGTCGAACCGTTCGTCCGCACCCCCCACCGCCACTCCGACGGCCGCGACCACGCCGGCGTGATCACCGCCGCCGACGTCGAGAGCTTCCGCGCCGGCTACGAGCAGCCGACGACGACGGAGTTCCGCGGCCGCACCGTCGTCAAGCCCGGCGCATGGACCCAGGGACCCGTGCTGCTGCAGTCGCTGCGGATCCTCGACGGGTTCGACGACGACCGGCTCGACGTCGCCACCGAGCTCGGCGCGCACACCGTGCTGGAGACGCTCAAGCTGGCGCTCGCCGACCGGGACGTCTGGTACGGGGACGCCGAGGTGCCTTTGAGCGACCTGCTCTCCGAGGAGTACGCCGCCGGACGCCGAGCCCTGATCGGCGAACGCGCCTCGCACGAGGTGCGCCCCGGCGTCGTGCCCGGACGCACCGCTCCCCCGCTGCCGCCGCTGCGCACGACCGGACCGACGTCGTCGGACACCGGAGAACCCACCGTCGCCTCGAGCGGCGCCGTGAAGGGCGACACCTGCCACCTCGACGTGGTGGACCGCTGGGGCAACATGCTCAGCGCGACACCGTCCGGCGGCTGGCTGACATCCTCCCCCACCGTGCCCGGGCTCGGGTTCTGCCTCGGCACCCGCCTGCAGATGACCTGGCTCGACGCGGACTCGCCATCCGCGCTGACCCCCGGCGTGCGACCGCGCACCACCCTGTCACCCACGCTGGTGCTCGCGGACGGCGTCCCCGTGCTGGCCTGCGGCACCCCGGGCGGCGACCAGCAGGACCAGTGGCAGCTGCCCTTCCTGCTGCGCGTCCTCGCCGGCGGGTGGACCCCGCAGCAGGCCATCGACGCACCTACCCTGCACACCACGTCGGCCGTCGGGTCGTTCTGGCCGCGCACCTGGGTGCCCGGCGGCGCCGTCGTCGAGGACCGGCTCGGCGCCGACGTGCTCGCCGGGCTCGCCGAACGCGGCCACGCGCTCACCCTCGCCGGCGACTGGGCACTCGGACGGCTCACCGCCGTGACGCGCGACCCGGCGACCGGGGTGCTCGGGGCGGCGGCGAACCCACGGGGGCAGCAGGGGTACGCCGCCGGGCGGTGAMTFTAPPAHLTRPDLQGTHGTAASTHWLATATAQSVLERDGNAFDAGCAAAFVLHVVEPHLNGPGGDLVGLFATAQAPAAPQVLMGQGPAPAGATIEHYRDHESLELVPGSGALAAAVPGAVDAWLLLLRDHGTWSVRDVLAYAVGYARDGHPVLPAVAAAVERVADLFGRHWPTSAARWLPHGRPPRAGETITNPEYADLLDALADAADASPGDRAASVDAARDAWRTRVGAAVEPFVRTPHRHSDGRDHAGVITAADVESFRAGYEQPTTTEFRGRTVVKPGAWTQGPVLLQSLRILDGFDDDRLDVATELGAHTVLETLKLALADRDVWYGDAEVPLSDLLSEEYAAGRRALIGERASHEVRPGVVPGRTAPPLPPLRTTGPTSSDTGEPTVASSGAVKGDTCHLDVVDRWGNMLSATPSGGWLTSSPTVPGLGFCLGTRLQMTWLDADSPSALTPGVRPRTTLSPTLVLADGVPVLACGTPGGDQQDQWQLPFLLRVLAGGWTPQQAIDAPTLHTTSAVGSFWPRTWVPGGAVVEDRLGADVLAGLAERGHALTLAGDWALGRLTAVTRDPATGVLGAAANPRGQQGYAAGRPGPT0002935_1073DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681NANA
AK018_027361116hypothetical proteinATGACCAACGCTGACCACGCCACCGAGGGACCGGAGGCCGGTTCGACCCGACCGACTGTCGTCCTCGTCACCGGTGCAGGCCGCAGCGGCACCAGTACGGTGACCGGCGTGCTGAAGTACCTCGGCGTCGAGGTGCCGGCGCCGGAGATCGCCGCGAACGAGTCCAACCCGCGAGGCTTCTTCGAGACGAAGTGGGTGGTGTGGCGCAACCGCCAGATCCTGCAGAAGTCTCGTGTCCGCTCGCTCGACGCCGATCCGCACGTGCGGGACGAGGCGACGCGCGTGGCGCAGAGCAAGTTCGCACCGATGATCCGGGCCTGGATCGACGACGTCCTGAGCCTCGACGTGGCCGCCTACGTGATCAAGGACCCTCGGACGATCTGGACCGCGCAGGTGTGGACCGAGCTGTTGGAGGAGGCGGGCTACCGGGTCGTCTACCTCACAATGCTCCGGCATCCGGTCGAGGTCCTGGGCAGCCGTCGTCAGTACTACCAGGACGGCAAGACCGCGGACCAGCAGCACGCGCTCCAGACCAGCCAGCTGGCCGGTTGGGTCAACGTCAACCTGGAGAGTGAGCGTCTCGGGCAGGGGAGGCCGCATGCGTTCGTCCGCTACGACGATCTCCTGGCGGACTGGCGAGGTGCGATGCGACGGGTCCGTGACGAGCTGGACCTCGAGTTCAACCATGATCTCGACGACTCTCCCCACGAGGTCGACTCGTTCGTCGAGCCGACGTTGCGGCGGGTCCGTGGGGACTGGGACGACACGGAGGTCCCGGACTGGCTGAGGGTTCTGGCGGAGTCGACGTGGGATGCACTCGGTCGACGCGCTCGGGACGACATCGACACGGACGCGGCGGGGGAGATCCTGAAGGACGTGCGCTCTCGCTACGAGACGACGTACGACGTGGCTGACGCGCTCGTCAGCGATCGCACACGGCGACGGGTGATCGCGGCACGTCCGAACAAGAAGGGTGCGAAGGGCGCCGCGGACCGCGCTGCGGGCGCCGCGACATCGGCCGTCGACCGGACGCCGTCGCTCGCGAAGGTGCCTGCGCGTGAGCTTGTCACGGAGCTGCGCGCACGGCTGGTGCGAAAGGTGCGACGCTCCGCCTGAMTNADHATEGPEAGSTRPTVVLVTGAGRSGTSTVTGVLKYLGVEVPAPEIAANESNPRGFFETKWVVWRNRQILQKSRVRSLDADPHVRDEATRVAQSKFAPMIRAWIDDVLSLDVAAYVIKDPRTIWTAQVWTELLEEAGYRVVYLTMLRHPVEVLGSRRQYYQDGKTADQQHALQTSQLAGWVNVNLESERLGQGRPHAFVRYDDLLADWRGAMRRVRDELDLEFNHDLDDSPHEVDSFVEPTLRRVRGDWDDTEVPDWLRVLAESTWDALGRRARDDIDTDAAGEILKDVRSRYETTYDVADALVSDRTRRRVIAARPNKKGAKGAADRAAGAATSAVDRTPSLAKVPARELVTELRARLVRKVRRSANANANANANA
AK018_027371407hypothetical proteinATGAGTGAGAAGTACAGTCCGGACTGGCTCCGGGGCTATGGGGACGGCAAGGCCGCGGGGCGTCGGTTCCGCAACGAGTTCGGCCCGGTCCGTCAGCCCGCCCGGAACGATCGCGACGAGCTGTCCGAGAGTCTGTCGCGGCTCGCCGTGGGTAGCGTGAGCGACGACGCGCGCCTCCAGCAGATCGAGGAGGTGCGCAAGCTCGCGGTGCGTAGTCGCCACAACGACTGGTCGGGTCTCGCGCTCGCGGCGACAGCGCTGCTGGCCGGCTCCTACGACGACGCGCCGGCGGCTACCTGGCTGCCAGTCATGCTCGCGGAGCGGGGTGACTTCGAGGCCGCAGCAGCCCACCGCGCCGACGGCGGCGTCGGCGCCCCCGGATGGGCGCGGACGATCCTCGTGACGGCCCTGTCGGAGCTGGGTCGGCGCGACGAGGCGCGCGAGCTGATGGCGTCGCTGTCGAGTCGGTACGACGGCGTGCGCTCGGGCTTCGTCGGGCGGTGGGACGAGGGCAAGGTGGCTGTCGAGTACGCCCGCCTGACCGAGACGACCGCGGTACGCGAGCGCGCGCTCCCGACCTTCTACCACCTCCCGTTCTCGGGGGGGACGAGCATGATCGTCTCGCTCAAGCGTGTCGTTCCGTGGGGCCGGATGGTCCAGGTCCAGCGCCGGTTCGGGCTGCTGCAGGTGGAGCAGGCTTTGCAGCTCGGACCCGACGAGGTTCGGGACAGGATGATGGTCCACCAGCATCACCCGCTGCCGCTGGAGCTGCCCGGGCGTGACCTGAGCTACTTCACCGTGCTGCGGGATCCGGTGTCGCAGATGAGGTCAGGCTTCTACAAGCGGATGTCGACACGCGGCATCGTTCCCACCGGTGACCACCGAGTCTCGGAGGACTTCGGCGACCACGTCGAGTACACGATCTCGCACGGACTGACCAACATGTTGTCCCGACAGCTGGTGATGACGCATCCCGCGATGCGCAGCGCGTACGAGGCGGAGTTCTCCTCGGCGGGTGCCTTCCGCCCCATCACCTCCGAGGAGGATATGTTCTGGTTCCGTGCCACCGCGGACCTGTCGGCGAGCCGGCTCGACGAGATGGTCCACGAGGTGCTCGAGGACCGCTTCCACCTCGTGGGGAGCATGCGTCACCTGGGCGCGAGTCATCTTGCTGCCAGCGCATCGATCGGGCTTCCCGTGGCTCAGAGGGTGGGACACCGCGGCAAGTCCGGGCAGCCGACGACCGACCAGGGCACGGACCCGGTCGAGGAGAGGCTGCGCGACGCCAACGCGGTCGACCAGCGCATCTTCGAGGAGTACACGGTGCGGTTCGAGCGGACGTACGCTCCCCTCATCTCGGCGCTGGACGCCGAGGCTGCCGACGAGAACGCGTCGAACGCCGGCTGAMSEKYSPDWLRGYGDGKAAGRRFRNEFGPVRQPARNDRDELSESLSRLAVGSVSDDARLQQIEEVRKLAVRSRHNDWSGLALAATALLAGSYDDAPAATWLPVMLAERGDFEAAAAHRADGGVGAPGWARTILVTALSELGRRDEARELMASLSSRYDGVRSGFVGRWDEGKVAVEYARLTETTAVRERALPTFYHLPFSGGTSMIVSLKRVVPWGRMVQVQRRFGLLQVEQALQLGPDEVRDRMMVHQHHPLPLELPGRDLSYFTVLRDPVSQMRSGFYKRMSTRGIVPTGDHRVSEDFGDHVEYTISHGLTNMLSRQLVMTHPAMRSAYEAEFSSAGAFRPITSEEDMFWFRATADLSASRLDEMVHEVLEDRFHLVGSMRHLGASHLAASASIGLPVAQRVGHRGKSGQPTTDQGTDPVEERLRDANAVDQRIFEEYTVRFERTYAPLISALDAEAADENASNAGNANANANANA
AK018_027381035hypothetical proteinATGAGCATCACCGATCTCAGGTCTCCGGTGACCGCCGCCGCTGCGGGGACCGTCAAGAACACCCTGGTGCTGCCCGAGCAAAAGGTCGTGTTCACGTCGGTGGGCAAGAACGCCTGCACCTCGGTCAAATGGATGCTCGCCCAGCTTTCCGGTCAGGACATGCAGGTCTTCGCGACCGCTCCCTCGGCGAAGACGACGGTCCGGGCGATGGTCAACGACCGGCGCCTGTGGACAGGCGTGCCGAGCTTCGTCGACCTCGACCGCAAGACGCTCGGCGCGATCTCGCCCGAGCGTGGTTGGTTCGTCTTCGGCTTGGTGCGTGACCCTCGGTCTCGCCTCTTCTCCGCGTGGCAGTCCAAGTTCCTCGTGGGTGACCCTCTGTACTCGGGACGCAGGTTCGCCGGCCAGCCCTGGCTCCCGCGGACCCCGCGCGACCAGCAGGACGTGCTCGACGACTGGAAGCGCTTCGTCGACGTCATGGAGCTCGGTCGAGGGAAGGGACGTCCGGCCGGGGACGGCCACTTCCAACCGCAGGTCCGGCGTCTGCAGGAGGAGCTGGTCCCGTACAGTCGTCTGTACGACGTCAGGGAGATGGATGAGCTCGTCGTCGACCTGACCCGGCACGTCGCCGAGACGACGGGGGCGCACGTGGAGCTGGAGGTCCTCAACGAGAACTCCACGCCGCTTCGTGCCGGGCGCGAGGTGTACGACGACGGCGTCAAGGAGCGCATCGAGGCGATCTATTCCGAGGACATGGCACGGTTCGGCCACCTGTGGTCCTTCGACGAGGTGATGTCGCGATCGGCCGGCTGGACCTCGGAGGTGCTGCGCGACATCGCCGCACGCCGGGCGGCGGGTGAGCGCATCGCTCACCTGCATGAGCTCTACCGGGCGGAGTGCGCCGAGAACGCCCGGCTGCGTCGCGCGCTGGCCGAACGCTCGGCGACGGCGGTACGGCGGGAGCCCGGCTACGGCCGCGTCCTGCGTCGAATCCGGGCGTCGATGGGCGGCCCGCCAGGTGCGGCCGGTTCGTGAMSITDLRSPVTAAAAGTVKNTLVLPEQKVVFTSVGKNACTSVKWMLAQLSGQDMQVFATAPSAKTTVRAMVNDRRLWTGVPSFVDLDRKTLGAISPERGWFVFGLVRDPRSRLFSAWQSKFLVGDPLYSGRRFAGQPWLPRTPRDQQDVLDDWKRFVDVMELGRGKGRPAGDGHFQPQVRRLQEELVPYSRLYDVREMDELVVDLTRHVAETTGAHVELEVLNENSTPLRAGREVYDDGVKERIEAIYSEDMARFGHLWSFDEVMSRSAGWTSEVLRDIAARRAAGERIAHLHELYRAECAENARLRRALAERSATAVRREPGYGRVLRRIRASMGGPPGAAGSNANANANANA
AK018_027391002hypothetical proteinATGCCCCTCGGCACCAGGCGCGCCACCATGCGGCCCGGACGGCGACGTCCGGACCGCATGGTGCTGCACGCCGGTCTGCACAAGACCGGGTCGACGTTGCTGCAGAGCATGATCCGGGCGAACCGGGATCAGCTCGAGGAGCTCGGCTACGGAGCCTATGCGTGGCGAGGGTTCAACGAACTGCTCGAACGCTCGCCCCGGTTGTACGACCGGCCGTTCCGCCGCGCGGACGTCGCGAGGGCCGCGGAGACGTTCCGCTCGAAGCATCCCGAGCATTCCCTGGTGTACTCCGAGGAAGCCTTGCTCGGCCCGATGGTGGCGCTGGCACGAGGTGAGCAGATCTATCGGCACGGTCCAGACGTCCTCGCTTCTTTCGTCGAGGAGTTCGGTGCCGAACGGCCGGTCGTGGTGCTGTACCTACGGCGCCAGGATCAGTTTATCGAGAGCGTGTACCTCCAACTGGTGAAGATGGGGGTGCTGCACGACGACTTCCCGACCTTCTTCGCTGGTATCGATCTGGACTGGTTCCGGTGGGACGTGCTGATCGAGCGTCTCGAGGAGGTGCTGCCCCGATCGGCGGAGATCCGGGTGAAGTACTTCGAGTCGATCAAGTCGCTAGGCAGCGACGACTTCTGCCGCGACTTCGCCCGGGAGATCGATCCGCGCTTCGTGCCGGAGCTAGGGTTCGACACCTCGAGCCGGAATCGTGGCTACTCCGCCGTCGCGCTGGACATCGCCCGTGTGGCGAACCCCCAGCTCGATCGGGCGGAGCGGCAGGTCCTGCGACGATTCCTCGATCAGCACTTCACCAATGCCACGCACCCGGCGCCGGTCCTGATGGACGACTCCGAGCGTCTTCGTGTGTTGGAGCACCTCGCGGAGTCCAATACCGCACTTCATGACAGGGTTGCCGACGGGACGCGTCCTTCCCCGTACCTGCCGCACCGGGTGGCCGGTACAGCCCTGCCTGAGGTGGCGCCTGTGGGACCATTTACGCCATGAMPLGTRRATMRPGRRRPDRMVLHAGLHKTGSTLLQSMIRANRDQLEELGYGAYAWRGFNELLERSPRLYDRPFRRADVARAAETFRSKHPEHSLVYSEEALLGPMVALARGEQIYRHGPDVLASFVEEFGAERPVVVLYLRRQDQFIESVYLQLVKMGVLHDDFPTFFAGIDLDWFRWDVLIERLEEVLPRSAEIRVKYFESIKSLGSDDFCRDFAREIDPRFVPELGFDTSSRNRGYSAVALDIARVANPQLDRAERQVLRRFLDQHFTNATHPAPVLMDDSERLRVLEHLAESNTALHDRVADGTRPSPYLPHRVAGTALPEVAPVGPFTPNANANANANA
AK018_027401311cysNC_1COG0529Bifunctional enzyme CysN/CysCATGAGCACCACGATCGAGAACACCGCCGAGGCCATGACCGACGGCTCCGTCGACCTGCTGCGGTTCGCGACCGCCGGCTCCGTCGACGACGGCAAGTCGACCCTCATCGGCCGCCTGCTGTTCGACTCCAAGACGATCTTCGAGGACCAGCTCGACTCGGTCGAGCAGGTCTCCCAGGACCGTGGCAACGACTACACGGACCTGGCGCTGCTGACGGACGGCCTGCGTGCCGAGCGTGAGCAGGGCATCACGATCGACGTCGCCTACCGGTACTTCGCGACGCCGAAGCGCAAGTTCATCATCGCTGACACCCCGGGCCACATCCAGTACACCCGGAACATGGTGACGGGGGCCTCGACGGCCGACGTCGCGTTGATCCTCGTGGACGCGCGCAAGGGCGTCATCGAGCAGTCGCGCCGCCACACGTTCCTGGCGACCCTGCTGGGCGTGCCGCACATCGTGGTGTGCGTCAACAAGATGGACCTCGTGGACTACGCGGAGGACGTCTTCGAGAAGATCCGCAAGGACTTCACGGAGTTCGCCTCCCGCCTGCGCGTGCCCGACCTGACGTTCATCCCGATCTCCGCGCTGGAGGGCGACAACGTCGTCAACCGTTCGGAGAACACGCCCTGGTACGACGGCCCCGCGCTGCTCAGCCACCTCGAGCGCCTGCACGTCGCCTCGGACCGCAACCTCATGGACGTGCGGTTCCCGGTCCAGTACGTGATCCGGCCGCAGTCGCACGACGCGCGTGACTACCGCGGCTACGCGGGCACCGTGGCGTCCGGCGTGATGAAGCCCGGCGACAAGGTCGTGGCGCTGCCGGCGGGCCTGGAGACCACGATCGAGGCGATCGACACGGCCGACGGTCCCGTCGAGGAGGCCTACCCCCCGATGGCGGTCACCGTCCGGCTCGCCGACGAGATCGACATCTCCCGCGGAGACATGATCGCCCGGCCGAACAACACGCCCGCCGCGCTGCAGAACATCGACGCACAGATCTGCTGGATGGACTCCGACTCCGCGCTCGTCAAGGGCAAGAAGTACGCCATCAAGCACACCACCCGGTGGGCGCGCGCGATGGTCAAGGACATCAACTACCGCGTCGACGTCAACACGCTGCACCGTGACGAGGAGGCGACCGAGATCAAGCTCAACGAGATCGGTCGTATCCAGCTCCGAGTGACGCAGCCGCTGTTCGTCGACCCGTACCAGCAGAACCCGCAGACGGGATCGTTCATCCTGGTCGACGAGTCGACGAACAAGACCGTCGCCGCCGGGATGATCGGCGGGCTGCCGCACAGCGCCTGAMSTTIENTAEAMTDGSVDLLRFATAGSVDDGKSTLIGRLLFDSKTIFEDQLDSVEQVSQDRGNDYTDLALLTDGLRAEREQGITIDVAYRYFATPKRKFIIADTPGHIQYTRNMVTGASTADVALILVDARKGVIEQSRRHTFLATLLGVPHIVVCVNKMDLVDYAEDVFEKIRKDFTEFASRLRVPDLTFIPISALEGDNVVNRSENTPWYDGPALLSHLERLHVASDRNLMDVRFPVQYVIRPQSHDARDYRGYAGTVASGVMKPGDKVVALPAGLETTIEAIDTADGPVEEAYPPMAVTVRLADEIDISRGDMIARPNNTPAALQNIDAQICWMDSDSALVKGKKYAIKHTTRWARAMVKDINYRVDVNTLHRDEEATEIKLNEIGRIQLRVTQPLFVDPYQQNPQTGSFILVDESTNKTVAAGMIGGLPHSAPGPT0002395_1110DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACIDADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0002395-cysNC-K00955NANA
AK018_02741903cysD_1COG0175Sulfate adenylyltransferase subunit 2GTGACGTCTCACGTCCTGAGCCAGCTCCGCAGCCTCGAAGCGGAGAGCATCCACATCATCCGCGAGGTGGTCGCGGAGATGCAGCGGCCCGTCCTGCTGTTCTCCGGCGGCAAGGACTCGATCGTCATGCTGCACATGGCGGCCAAGGCGTTCGCGCCGGCGCGGATTCCTTTCCCGATCATGCACGTCGACACGGGCCTGAACTTCCCCACCGTGCTCGCGTGCCGTGACCGGTGGGTCGAGAACCTCGGGATCCAGCTCGTCGTCGCCTCCGTGCAGGACGCGATCGACCGCGGCCTGGTCCAGGAGGAGCCGAACGGCTCGCGCAACCGGATCCAGACGCCGGTGCTGCTGGAGGCCATCGAGAAGAATGGCTTCGACGCGGCCTTCGGCGGTGGCCGCCGCGACGAGGAGAAGGCACGCGCCAAGGAGCGCGTGTTCTCCTTCCGCGACGACTTCGGCCAGTGGGACCCGAAGAACCAGCGTCCGGAGATCTGGAGCCTGTACAACGGCCGTGTCCACCAGGGCGAGTCCATCCGCGTCTTCCCGCTGTCGAACTGGACCGAGCTGGACATCTGGTCCTACATCGCGGCCGAGGAGATCGACATCCCGGACCTCTACCTCGCCCAGGAGCGCGAGGTCGTGAACCGCGACGGGATGCTGTTCGCCGTCAACGAGTTCACCCCGCTCAAGGAGGGGGAGACCTCCGAGACCCGCTCCGTGCGCTACCGCACGGTCGGCGACGCCAACCTCACCGCCGCCGTCGAGTCCGACGCCACCACGCTGCAGGCCATCGTCGAGGAGACCGCCGCCGTGCGCGTCACCGAGCGTGGCGCGACCCGCGGCGACGACAAGGTGAGCGAGGCCGCGATGGAGGACCGCAAGCGAGAGGGCTACTTCTAAMTSHVLSQLRSLEAESIHIIREVVAEMQRPVLLFSGGKDSIVMLHMAAKAFAPARIPFPIMHVDTGLNFPTVLACRDRWVENLGIQLVVASVQDAIDRGLVQEEPNGSRNRIQTPVLLEAIEKNGFDAAFGGGRRDEEKARAKERVFSFRDDFGQWDPKNQRPEIWSLYNGRVHQGESIRVFPLSNWTELDIWSYIAAEEIDIPDLYLAQEREVVNRDGMLFAVNEFTPLKEGETSETRSVRYRTVGDANLTAAVESDATTLQAIVEETAAVRVTERGATRGDDKVSEAAMEDRKREGYFPGPT0002405_2362DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002405-cysD-K00957NANA
AK018_02742885cysQ_1COG12183'-phosphoadenosine 5'-phosphate phosphataseATGACCACGCCTTCGCCGGCCCTCCCCGAGGAAGCGTTGGACGACGCCGCTCTGGCGGCTGCGCTCGCCGACGGAGCAGGGAGGGTGCTGCTCGCCCTGCGCGCCGACATCGACGCCGCCGGTGGTGACTTCGAGGCGCGGGCCTTCAAGGACGCCGGTGACGCCGCGGCGCAGCAGTGGTTGGCCGACGCGATCGCGCACGCCCGTCCGGACGACGCCGTTCTGTCCGAGGAGGCCAAGGACGATGCCGCACGCACCGGCGTCGACCGCGTGTGGATCATCGATCCGCTCGACGGGACGCGGGAGTTCGCGGAGCGAGCCTCGGACGGCCGCTGGCGGGACGACTTCGCGGTGCACGTGGCCCTGTGGGCGCGCGGCACGGACGACGCCACCGTGGGCCCCGGCGGGCTCCTCGCCGGCGCTGTCGCGCTGCCGGCCCGAGACGTCGTGCACACCACCGGTGCTCCGTCGTCGTCCACCGACCTGGACGCGGCCGCCGAGTCCGTGCTGCGCGGGGAGCGGCCGCTGCGCATCGCCGCCAGCCGTTCCCGCCCGCCTGCCTTCGTCGCCGAGCTGGCCGAGCGCGGCGACGTCGAGCTCGTCCCGATGGGGTCGGCCGGCGTCAAGGTGGTGTCCGTCGTGGACGGCACCGTCGACGCCTACGTCCACGGTGGTGGACAATACGAGTGGGACTCCGCGGCGCCGGTCGCGGTCGCGCTGGCCGCCGGGCACACGGCGACCCGGCTCGACGGCACCCCGCTCAAGTACAACCGCCAGGACCCCTGGCTCCCCGATCTGTTCGTCTGCCACCCGGCCCTGGCCGCGCACCTGCGCGCGGCGCTCCAGGAGGTCGGCGTGGCGATCAAGGAAGGTGCCCAGTCGTGAMTTPSPALPEEALDDAALAAALADGAGRVLLALRADIDAAGGDFEARAFKDAGDAAAQQWLADAIAHARPDDAVLSEEAKDDAARTGVDRVWIIDPLDGTREFAERASDGRWRDDFAVHVALWARGTDDATVGPGGLLAGAVALPARDVVHTTGAPSSSTDLDAAAESVLRGERPLRIAASRSRPPAFVAELAERGDVELVPMGSAGVKVVSVVDGTVDAYVHGGGQYEWDSAAPVAVALAAGHTATRLDGTPLKYNRQDPWLPDLFVCHPALAAHLRAALQEVGVAIKEGAQSPGPT0002975_943DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002975-cysQ-K01082NANA
AK018_027431239cysC_1Adenylyl-sulfate kinaseATGAACCTTCCCGAGACGACCTCCGTGCTGTCCGACGACGAGCTCGACCTGCTCGAGCTCCACCTCGGCGGCGGCACGGACCAGCTCCCCGTCGACGGGTCCTCGACCACCCTGCCGGTGACGCTCACCGACGTCGAGAACACGCCCCTGGCCATCGTCCGGAACGGGTCCGAGGGAGCTCACGCCGAAGCGGTCAAGCCCTTCGCCCGTGCGGTCGGCGCGCACTGGGATCCCGAGATGCGCCGTCCCGCCCACGACGTGGCGCACGACCTGCGCCGGGCCGTCGGCCCCGAGGCCGAGGTCCTCGCCGTCGTCGTCGACGAAGCACCCACGCTCGACGAGATGACCGCGCTCGGTGACCTCGTGGCGGGAGCGGCCGCTGTCGCCGTCCTGACACCCGTCTCCCGTCGTTCCCCGGCCCCCGGACGGATCGGAGCGCCCGGTCTGGCTCGTCTCGGCATGGTGGTGCGCGACGCGATCGCCACCCACACTCGTCAAGTTGCCGCCGCCGTGGTCCCGTGGCCGCCGACAGCAGAGCTGTCGTGGTCGGCCGTGGCGTCCCGGTACGGCGCGGACCGCGTGGTCCGCCTCGCCGACGCACGCGGGACCGAGACGACACGGCGGCTGGAAGGGCTGGGTTCCCTCTGGTCCGACGAGGTGCACGCGCTGTACCCGCCCGAGGTCGCCGCCGAGGTCGAGCACGCCGCACGCGGCGCCCGTCGCGGAGGCACGGTCGTGTTCTTCACCGGGCTGTCCGGGTCCGGCAAGTCCACGGTGGCGCAGGCTCTCGCCGCAGAGCTCGACGACGAGGGTCGGCACACGACTCTGCTGGACGGCGACGCCGTGCGTCAGCACCTCTCCAAGGGACTCGGTTTCGACAAGGAGTCGCGCGAGCTGAACGTGGAAAGGATCGGCTACGTGGCCTCGCTCGTGGCGTACCACGGCGGCATCGCTGTCGCCGCGCCGATTGCGCCCTTCGCCTCGTCGCGCACGAAGGTTCGCGAGATGGCCGAAGCCGCCGGCCGTTTCGTGCTCGTGCACGTCTCCACGCCGCTCGAGGTGTGCGAGGCCCGGGACCGCAAGGGGCTCTACGCGAAGGCGCGGGCGGGCGAGATCCCCGAGTTCACCGGGATCTCCTCGCCCTACGAGCAGCCGACCGACGCCGATCTGGTCATCGACACCTCGACCATGTCCGTCGAGGAGGCCGTCGTAGCAGTGCGCGCGGTACTGGGAAGCTAGMNLPETTSVLSDDELDLLELHLGGGTDQLPVDGSSTTLPVTLTDVENTPLAIVRNGSEGAHAEAVKPFARAVGAHWDPEMRRPAHDVAHDLRRAVGPEAEVLAVVVDEAPTLDEMTALGDLVAGAAAVAVLTPVSRRSPAPGRIGAPGLARLGMVVRDAIATHTRQVAAAVVPWPPTAELSWSAVASRYGADRVVRLADARGTETTRRLEGLGSLWSDEVHALYPPEVAAEVEHAARGARRGGTVVFFTGLSGSGKSTVAQALAAELDDEGRHTTLLDGDAVRQHLSKGLGFDKESRELNVERIGYVASLVAYHGGIAVAAPIAPFASSRTKVREMAEAAGRFVLVHVSTPLEVCEARDRKGLYAKARAGEIPEFTGISSPYEQPTDADLVIDTSTMSVEEAVVAVRAVLGSPGPT0002410_551DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002410-sat|met3-K00958NANA
AK018_027441005btuD_11Vitamin B12 import ATP-binding protein BtuDGTGACTGAGTCGGAGCTGCACATGGACGTCGACCTCGATGTCGAGTTCGACCCGGAGGATCTGGCCGGTGCACGGCCCGTCGCGCACCTCGGCGATCCCTGCCTCGTCGTGGACGACTTGCACGTCACCTATCGGGTGATCGGCAGCAAGGGACGGCAGAAGGCGCGGGCCAGTGGCGCGGCCACGCGTGACGTGGAGGCTCCGCAGCCGACTTTCGTCCGACGCCTGCTCAGCGCGGGGAATCAGCATGTGGGCGCATACACGGAGGTTCATGCGGTTCGAGGGATCTCCTTCGTCGCCCGCCACGGGGAGTCGATCGGAATCGTCGGTGTGAACGGTTCGGGCAAGAGCACGCTGCTCCGCGCAGTAGCCGGCCTCATCCCGCCGCGCTCCGGTGCCGTCTACGTCTCGGGCGAGCCGGCGCTGCTCGGGGTGAATGCCGCGCTCATGCCGAAGCTCTCGGGTGAACGCAACATCATGATCGGTGGTCTCGCTCTGGGTCTGACGGTTCCGGAAGTGGAGGAGAAGTTCGACGAGATCGTCGACTTCGCCGACATCGGGGACTTCGTGTACCTGCCGATGAAGACATACTCCTCGGGGATGGGTGCACGACTGCGGTTCGCCATCTCTTCGGCCGCCGCCCCGGACATCCTGATGATCGACGAGGCCCTCGCCACCGGCGACGCCGCGTTCAAGTCCCGCAGCAAGGCGCGGGTCGAGGAGATCCGTGAGAACGCGGGCACGGTCTTCATCGTCAGCCACTCGATCTCGACCATCGAGGCGATGTGCACGCGCGTGCTCTGGGTGCACCAGGGAAGGCTCGTGATGGACGGGCCGACCGAAGAGGTCGCCGATGCCTACCGCGAGTTCGTCCGGTCCCAACGGAAAGCGAACCGTGGCCCCGGGGACCGTGGCAAGGCCACCAAGGGAACACGCGCGGCCGGGAAGGGGAGGGTCGGTCGGCGGCGCGAGAACCGTGCACGGAAGGCAAAGGAGCACGGCTGAMTESELHMDVDLDVEFDPEDLAGARPVAHLGDPCLVVDDLHVTYRVIGSKGRQKARASGAATRDVEAPQPTFVRRLLSAGNQHVGAYTEVHAVRGISFVARHGESIGIVGVNGSGKSTLLRAVAGLIPPRSGAVYVSGEPALLGVNAALMPKLSGERNIMIGGLALGLTVPEVEEKFDEIVDFADIGDFVYLPMKTYSSGMGARLRFAISSAAAPDILMIDEALATGDAAFKSRSKARVEEIRENAGTVFIVSHSISTIEAMCTRVLWVHQGRLVMDGPTEEVADAYREFVRSQRKANRGPGDRGKATKGTRAAGKGRVGRRRENRARKAKEHGPGPT0023470_349DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023470-tagH-K09693NANA
AK018_02745990hypothetical proteinGTGACCACGGAGAAGACCACCCGAGGTACCGCTCTCGACGGCGACACCGGGACGACCGCGGTGCAGCCGCCGACACCGATCGTCCCAGCACTGACGTCGGCCGAGAGACGTGCCCTGGCCGCCCAGCACGACCTGACCGCGATGGGCGTCCGGCCGCCGTTCTTCGCATATGTCAGGGACGTCGCTCACCGGTGGTCCTTCATCCGGGTGATGGCGACCTCGAGCGCCTATGCCAAGAACCAGAACAACTACCTCGGTCAGCTATGGGCGCTGCTCAACCCCATCTTGAACGCCACGGTCTACGTGATCATCTTCGGCTTCCTGCTGAACGCGAGCCGTGGAGTCGAGAACACGATCGCGTTCATCGTGATCGGCGTCTTCATGTTCCGGTTCGTCGAGCAGTCGGTTTCCGGCGGAGCGCAGTCGATCGCCGGCCGCACCAACTTGATCCGCTCGCTGCACTTTCCCCGCGCTGTGCTTCCGATCTCGACCGTCCTCTCGCTGCTGGCGACCATGGTCCCGACGATGATCGCCATGTGTGGCATCGTGCTGCTGTCCGGGCTGCACCCGGACTATCCGCCGGTCCTCATCACCTGGTACTGGCTGCTTCTGCCCGTTGCGGTCCTGCTGCTCTGGATCTTCAACACGGGAATCGCCTTCTTCATGGCCCGCGCGGTCGCGGGCATGCCGGACCTCGACAACGTGATCGGTTTCGTCATGCGGTTCGTCATGTACGGCTCCGGTGTGATCTTCCCTGTCACCCGCTACATCCAGAACCTGCCGGACACGGTCCAGGCGGTACTGGGTCCGGTCCTGGAGTACCAGCCCATCGCGGTCTACCTGTACCTGTTCCGTTCGTCGCTCACCCAGGAGGAGTCCTTTCCGCCGGACGCCGCGATGTGGGCCTGGGGAGCGGGCTGGGCCGTAGTGACGTTCCTGGTCGGGTTCATCGTGTTCTGGCGTGGAGAGGAGCGCTACGGCCGTGACTGAMTTEKTTRGTALDGDTGTTAVQPPTPIVPALTSAERRALAAQHDLTAMGVRPPFFAYVRDVAHRWSFIRVMATSSAYAKNQNNYLGQLWALLNPILNATVYVIIFGFLLNASRGVENTIAFIVIGVFMFRFVEQSVSGGAQSIAGRTNLIRSLHFPRAVLPISTVLSLLATMVPTMIAMCGIVLLSGLHPDYPPVLITWYWLLLPVAVLLLWIFNTGIAFFMARAVAGMPDLDNVIGFVMRFVMYGSGVIFPVTRYIQNLPDTVQAVLGPVLEYQPIAVYLYLFRSSLTQEESFPPDAAMWAWGAGWAVVTFLVGFIVFWRGEERYGRDPGPT0023465_11DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023465-tagG-K09692NANA
AK018_02746942hypothetical proteinGTGCTGGAAGCCTGCGCAGCGGGGCTGACGGACGGCTCGCTCCACGTCCGTGTCCGCCGGGACGTGCCCGCGCTGACGGTCGCTGCTGCGGACCTCCGGCGGCTCGGCGTGCCCGAGGGTGTCCGCTGGAGGACGGTGTCGCCGCCACGAGCGCTGTTCGCCCCGGGGCAGACCCAGGTGGTCGGCGACGCCTTCTCGGGGCTCTTCCAGCTGTCGCTGCTGTGGCGACGCCCCCGTCGGCTCGTGGTGGTGGACGACGGCCTCGACACCCTCGAGCTCGGGCGGCGCCTCACGACGCCCGGCCAGGCGCTCGTGCGGGTGCGTGCGACCGCCGGCCGGTCGCGCACTCTCCTCGGGACCCTCACGACCGCCAGGCTGCGGCGCTGGGCACGAGCAGGACGGGTGACCCTGTTCACTGCGATCCCCCTGGCGGACGACCTGGCCGAGAAGTTGACCGAGATCGGCGTACGCGTGGAGCGCAACTCCTTCGACTGGCTCCGCGACCAGGCGCTGCCCGATCCGCCCCCGGAGCCACACGTCGTCATCGGTTCCGCTCTCGTCGCCGACGGCATGATCGACGAGGAACCGTACGTCGACTGGGTCCGGGCGCTCGCAGCAGGGGGACCGCTCCGCTACCTGCCCCACCGTCGGGAGACGCCGGAGTCACTCGGCCGCATCGCCGCCGTCCCCGGTGTGGTGGTCGACTCGCCCGGCGCTCCGGTAGAGCTGCGGCTGGGCGGCGTCACACCGCGACATCGCATCACGACGCTCCCCTCCACGTCCGCCGTCCTGCTCACCCGCATCGTCGGCCCCCGCGGCACCTCGGTCCAGCCGCACGATGTCCCGGAGGAGTGGTGGACACCGCGTGCCACGCCCGAGCTGCGCCGCCATCTTCGCCGCGTGCTGACGTTGGCTGCGGACGCCCGCAAGGAGGTCCGATGAMLEACAAGLTDGSLHVRVRRDVPALTVAAADLRRLGVPEGVRWRTVSPPRALFAPGQTQVVGDAFSGLFQLSLLWRRPRRLVVVDDGLDTLELGRRLTTPGQALVRVRATAGRSRTLLGTLTTARLRRWARAGRVTLFTAIPLADDLAEKLTEIGVRVERNSFDWLRDQALPDPPPEPHVVIGSALVADGMIDEEPYVDWVRALAAGGPLRYLPHRRETPESLGRIAAVPGVVVDSPGAPVELRLGGVTPRHRITTLPSTSAVLLTRIVGPRGTSVQPHDVPEEWWTPRATPELRRHLRRVLTLAADARKEVRNANANANANA
AK018_027471956hypothetical proteinATGACACCGCCGCGTGTGTCCGTGGTCGTCCCAGGGCGCGACGTCGGCTCCTACGTCGCCGATGCCATGACCAGCCTGGCTCGGCAGTTCGCCGACCGACGCGATCTCGAGGTGGTCGTGGTCGACGACGGCTCCGTCGACGACACCACCGAGGTCGCGACGTCGTTCAGCAGTCGCCTTGCACGGCTCACCGTGCTGACGAACTCCGAGCCGCAGGGCATCTCCGCCGCGCGCAATCGCGGAGTGGCAGCGACCACCGGGCGATACCTCGCGTTCCTGGATGCTGACGACTGGCTCGCACCGGGCCACCTGGCACACCTCGCCGACGCGATGGACGTCCTGCGTGTGCCGTTCCTCAGGACGGACCACACGACCGTCCACGGCGGTCGCCGTCAGCTCGTGCGCGCACCCCAGGCGGTGCGCGGTGAACGACTCGATCCTCGTGGCTCGATCCTGCCCGTCGACGATCGCACCATGGTGGACTATCCCTACTCTTGGGCCGGGCTCTTCGACCGCGCACTGGTGCAGGACGATCTCCTGTCCTTCCGCGAGGATCTCCGCACTGCGGAGGACCGCCCATGGATCTGGAGCCTCTTCCTCCGTGGCGGCTCCTACGCGGTGGTCGATGCGCCCGGTATCCGCTACCGTCGCGGGCTTCCGGCGTCCCTCTCCCAGACCTACGACTCCCGCCAGCTGGACGTCGTTCCTGCACTGCACGCCACCTACGACGTGCTCGAGGCCGACCCCGACTACGAGGTCTTCCTGCCCAAGCTGGTGCGCACGACCGCGGGCCTCCTCTCGCACCACCTGCGCCGCAGCAGACAGATGCCCAGCGGGGCTCACCAGGCTCTGCGCGAGGGGGCCGCGACCCTCATCGGCCGTATCCCCGACGATGTCCTCGCCTACGAGACGGCCCGCATGCATCCTGGCCGCATCTACATGCTCCAAGGATTGCTCCCCGCTCTCGACGCCGGTCTGCGACACCGCCCGCCGGCCTGCTTGCGTCTCCCACCGTCGAGGGCTTGGAGTGCTCGCAGACCCCACGCCGGCCCCACGATCGTCCTCGCGGCTGACGAGGACGAAGCACTGGTGGCGACAGCGGCGCTGTCTGCGAGTCCAGTCCTGAAGGAGGGACGACACCAGCTCGTGCTGACCGGAACAGGCACGGAGCCGGCACCGGAGGTGGTTGAGAGCGCGTACGACCGCGTCGAGCGTCTGGGCGACGTTCTGGCGCCTGGTGAGCCCGACCAAGACTTGCTCCCGATGCTCGAGAAGCTGGTCAGGGGGGTGTGGGACCTGGGCACCGGACCGGTACGTCTCGTCGTGCCCGCCCTCGACGGACCGAGCCGCACGGTGGCACGGCTGCTGCACGACGCGCCCATCTACGTCGCCTCTGGTCGGCCCCAGACCTACGCACCCGACCCCACCATCCCCCTCGACGTCTCGCAGCGCGTCAGGAGCGTTCACCACGTCGAGCTCCTCGCGGGGGTCGAGCCGCTTCTCGCAGCACAGGTCGGTGCACCCGCCGTCGTCATTCCATCGGCCGAGATCGATCGTGTCGCCGGTGGCCGCCGACAAGGGGCCGAGCTCCGACGCCGACTCCGGGAGAACGAGGACGGAAGCAGGACGGCGGGCCTGATACGGACATCACCACCAGGGGTAGCAGGTCTGCTCGCGGCGACCTCGTACGTCTCCGCGCCGGACGAGCTTCCCTGGCTGCGGGACCACGCCGAGCGGTTCCTGTCCACGACCGACCTCGACCTCACCGGCTGGATACGGATCCCGGTGTTGGCGGAGCTCGGCCTCCCCCGCGCGCACAGGTTGTCGTTGCAGGCCCGACTTCGTCGGCTGGCCTACCGTTCGGTGCGGCACCCGGTCGCCGGACACCTCTCCAGGCTGGCGGACCTTCTGCGTGTCCGACACCTGGTGGGGCGTGCGCTCCATCGCCTCCTGTGAMTPPRVSVVVPGRDVGSYVADAMTSLARQFADRRDLEVVVVDDGSVDDTTEVATSFSSRLARLTVLTNSEPQGISAARNRGVAATTGRYLAFLDADDWLAPGHLAHLADAMDVLRVPFLRTDHTTVHGGRRQLVRAPQAVRGERLDPRGSILPVDDRTMVDYPYSWAGLFDRALVQDDLLSFREDLRTAEDRPWIWSLFLRGGSYAVVDAPGIRYRRGLPASLSQTYDSRQLDVVPALHATYDVLEADPDYEVFLPKLVRTTAGLLSHHLRRSRQMPSGAHQALREGAATLIGRIPDDVLAYETARMHPGRIYMLQGLLPALDAGLRHRPPACLRLPPSRAWSARRPHAGPTIVLAADEDEALVATAALSASPVLKEGRHQLVLTGTGTEPAPEVVESAYDRVERLGDVLAPGEPDQDLLPMLEKLVRGVWDLGTGPVRLVVPALDGPSRTVARLLHDAPIYVASGRPQTYAPDPTIPLDVSQRVRSVHHVELLAGVEPLLAAQVGAPAVVIPSAEIDRVAGGRRQGAELRRRLRENEDGSRTAGLIRTSPPGVAGLLAATSYVSAPDELPWLRDHAERFLSTTDLDLTGWIRIPVLAELGLPRAHRLSLQARLRRLAYRSVRHPVAGHLSRLADLLRVRHLVGRALHRLLNANANANANA
AK018_02748963hypothetical proteinATGCAGGACCTCCGCCCGGACGTGGTCCTCGTCGCCGCCACCGGGCCGGTTGCCGAGCTGGTCGCACGAACCGTCGTCGCAGCGACCCGCCCGCACCGTCCGGCGCTCATCTCAGGTCTGCCCGGGATGGCCCTGCCCGCCACGCCGTTCGGGACGGGCTGGCGACGCTGGAGCGACGCCTTCGTCGTCCACAGCCACCGTGAGGTGGAGGAGTACCGGCGTGAGTTCGAGGCGCAGGGCGCCCACCCGCGGATAGCACTCGCAAGGCTTCCGTTCCTGGGGCGTCCGTTCGATCCGGCCGTCCCTCCCACGCGACTCGTGTTCGCGCCGCAGTCCATCGTGCCCGCGAGCCGTACGGAGCGGGTCCGCCTGCTGGACGGGCTGGCTCGTGTCGCGGCGACCGGGAGCGAGGTGCTCGTCAAGCTGCGCGCGCGCTCGGGCGAACGACAGACTCACAACGAGGCGTTCCCGCTCGACCAGTTGTGGGACGCCGTCCACGACGATCTGGGCCAACCGGGAGACGCACTGCGGTTCGTCGACGGGCCGATGGCGGAGTGGCTCGTCCCGGGTACGGCACTGGCGACGGTCAGCTCCACAGCGGCGTTGGAGTCTCTCTCGCTCGGCTTGCCGACAGTTCTCATCGACGACTTCGGCGTCGCACCGCGCCTGCTCAACGAACCCTTCATCGGGAGCGGGTGCTTCGCCTCTCTCGACGAGCTACCGTCCGTGCTCGCAGCCGGCGGACCACTCCCCGACAGCACGTGGAAGCAGCGCAACTATCTGCACACGGGACCTTCGGAGCTCCCCGCCGTCGTCCAGGAGCTGGCCCTGGCGCGGCGGTCCGGTGACCTCTCGGTGCTCCGCAGCGTCGCGCCGTTCTCGTGGCCACGGCACATGCGCACCGTGGTGCGCTCCGCGCTCCCGGGGGCCGTGACCAAGCGCCTCGTTCGCCCCCCACGCTGAMQDLRPDVVLVAATGPVAELVARTVVAATRPHRPALISGLPGMALPATPFGTGWRRWSDAFVVHSHREVEEYRREFEAQGAHPRIALARLPFLGRPFDPAVPPTRLVFAPQSIVPASRTERVRLLDGLARVAATGSEVLVKLRARSGERQTHNEAFPLDQLWDAVHDDLGQPGDALRFVDGPMAEWLVPGTALATVSSTAALESLSLGLPTVLIDDFGVAPRLLNEPFIGSGCFASLDELPSVLAAGGPLPDSTWKQRNYLHTGPSELPAVVQELALARRSGDLSVLRSVAPFSWPRHMRTVVRSALPGAVTKRLVRPPRNANANANANA
AK018_027491008hypothetical proteinGTGACGGTCGTCGCCACGGTCCGCGACGAGGAGCCGTACCTCGCCGCGGCGGTCCGCTCGATCCTGGAGCAGGACTACCCTGCGACGCTCGACCTGGTGGTCGCTGTCGGTCCCTCGCACGATCGAACGCGCGAGATCGCGGACGACCTCGCGGTGCACCATCCCAGGATGCGTGTGATCGACAACCCGACGGGGTCGCGGTCGGACGGCCTGAACGCCGCGATCCGGCACGCCGACCCCGAGCACCCTGTGGTCGTCCGCATCGACGGCCACACGGTCTTCGAGAGGACCTATGTGCGCCGGGTCGTGACAGTGATGCTCGAGGCGGGAGCGGCCGGGGCGGGTGGCGTCATGCGCCCGGTCGGCGACGATCCGGTGCAGGAGGCCGTGGCGCGTGCGATGAGTCATCCCGCCGGGATCGGCTCGGTCTCGTTCCATGTCGGTGGTGCGCCCGGTCCCGCCGACACGGTGTATCTCGGGGCCTTCGACCGCGCCGCCGTACGCGACGCGGGAGGGTTCGCGACCGACATCGTTCGTGGGGAGGACTGGGAACTCTGCCTCCGGATGCGGCGGCGTGGCTCGCTGCTCTGGTTCGACCCGTCGTTGGAGGTGGAGTACCGCCCGCGCCGTACTCTACGGGCCGTCGCGAAGCAGTTCTGGCGCACCGGTATGTGGCGCAGGGAGATCGTCCGCCGGTACCCGGACACGGCGAGCCTCCGATACCTGGCTCCACCAGCCGTCGTCGCGACGCTTGGTCTCGCGGGAGTCGGACTGGTCACCGGCATCGCACTCGGCAGCGCGATGACGACCATCCTCTGTGCTTCAGTGCTCGGCTGCTACGTCCTGGGCGAAGCGGCAGCGGCTCTCCACGCCGCGACGCGCGACCCACGGCTCGCTTGGCGCGCCGCGGCTCTGCTCCCGCTGGTGTTCATGACGATGCACCTCGCGTGGGGCGCGGGCTTCGTCCGCGGCGTCTCGCGGCGCGGACGTGCCGATCATCGGGCCTGAMTVVATVRDEEPYLAAAVRSILEQDYPATLDLVVAVGPSHDRTREIADDLAVHHPRMRVIDNPTGSRSDGLNAAIRHADPEHPVVVRIDGHTVFERTYVRRVVTVMLEAGAAGAGGVMRPVGDDPVQEAVARAMSHPAGIGSVSFHVGGAPGPADTVYLGAFDRAAVRDAGGFATDIVRGEDWELCLRMRRRGSLLWFDPSLEVEYRPRRTLRAVAKQFWRTGMWRREIVRRYPDTASLRYLAPPAVVATLGLAGVGLVTGIALGSAMTTILCASVLGCYVLGEAAAALHAATRDPRLAWRAAALLPLVFMTMHLAWGAGFVRGVSRRGRADHRAPGPT0026525_61DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-SUCCINOGLYCAN_METABOLIC_PATHWAY,PGPT0026525-exoA-K16557NANA
AK018_02750894legI_1COG2089N,N'-diacetyllegionaminic acid synthaseATGACTGCGACCACCTCGCAGCCCGCCCCGGTCAGCATCGGTGAGCACCAGGTCGGTGTCGACCAGCCGGTGTACGTGATCGGCGAGATCGGCATCAACCACAACGGTGACGTCGAGAACGCCAAGAAGCTCATCGACGTCGCCGTCGAGGCCGGCGCGCAGGCCGTGAAGTTCCAGAAGCGCACGCCGGAGATCTCCACGCCCAAGGACCAGCGGGACAAGATCCGCCAGACGCCCTGGGGCGAGATGACCTATCTCGAGTACAAGTACAAGGTCGAGTTCGAGGACGCCGAGTACACCGAGATCGCCGAGTACGCCAAGTCCCAGGGCGTCCAGTGGTTCGCCTCGCCGTGGGACGTGCCGTCCGTCGAGTTCCTCGAGAAGTTCGACGTCCCGACCCACAAGGTCGCCTCGGCCTCGGTGACCGACATCGAGCTGCTGAAGGCGCTCCAGCAGACCGGGAAGCCGATCATCCTCTCTACCGGCATGTCGACGCTCGAGCAGATCGACGCTGCCGTGGAGACGCTCGGCACGGACAAGCTCGTCATCCTGCACTCGACGTCGACGTACCCCCTGCCTCCGGAGGAGGCGAACCTGCGCACCATCACGACGCTCCAGGAGCGCTACGGCGTGCCGGTGGGGTACTCCGGTCACGAGACCGGTCTGCAGATCTCTCTCGCCGCAGTGGCCCTCGGCGCCGTGGCGGTCGAGCGTCACATCACGCTCGACCGCGCGATGTGGGGCTCCGACCACGCTTCGTCGCTCGAACCGAAGGGGCTCGAGAACCTCGTCCGCGACATCCGCGTCCTGGAGAAGGCGCTGGGCGACGGTGAGAAGCGCGTGATGCCCGGTGAGTTCTCGCCGATGTCGCGCCTGCGTCGCATCGACGGCTGAMTATTSQPAPVSIGEHQVGVDQPVYVIGEIGINHNGDVENAKKLIDVAVEAGAQAVKFQKRTPEISTPKDQRDKIRQTPWGEMTYLEYKYKVEFEDAEYTEIAEYAKSQGVQWFASPWDVPSVEFLEKFDVPTHKVASASVTDIELLKALQQTGKPIILSTGMSTLEQIDAAVETLGTDKLVILHSTSTYPLPPEEANLRTITTLQERYGVPVGYSGHETGLQISLAAVALGAVAVERHITLDRAMWGSDHASSLEPKGLENLVRDIRVLEKALGDGEKRVMPGEFSPMSRLRRIDGPGPT0019080_180DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-SIALIC_ACID_MODIFICATION,PGPT0019080-neuB|nnaB-K01654NANA
AK018_027511278kdsB_18-amino-3,8-dideoxy-manno-octulosonate cytidylyltransferaseATGCCCGATTTCGTCCCACCGTCCCCGACGGCACTCGTGATCATTCCCGCGCGCGGGGGCTCCCAGGGCGTGCCCCTGAAGAACCTCCAGAGGGTCGACGGCGTCACTCTCGTCGGCCGCGCCGTCCAGGCTGCGCTCGCCGCGCCCTCTGTCGGTACGGTCGTGGTCTCGACCGACCACGACGGCATCGCGGCGGAGGCTCGGGACCACGGGGCTCGGGTCGTGGTGCGGCCCGCGGACATCGCCGGCGGCACCGCCTCGTCCGAGTCGGCGCTGCTGCACGTCCTCGACGTGGTCGAGACCGGCGCGGACGGCTCGGCGCCCCAGGAACTGCCTCCCGTCACGGTGATGGTCCAGGCGACGTCCCCGTTCATCGACTCCGGCGACCTGGACGGCGCGATTCGCCGGGTCGCCTCGGGAAAGCAGGACGTCGTCGTCGCGGTCGCGGAAACACACGACTTCCAGTGGCGCGCGGAGTCCGACGGCTTCGTCCCCGTGGGCCACACCACCGACTACCGCCCTCGGCGGCAGGAGCGACCACAGCACTTCAGGGAGACCGGGGCCTTCTACGCCATGCGGACCGATGGGTTCCGCGAGGCGAAGGTCCGGTTCTTCGGCGCCGTCGGCGTCCATCCTGTAGCCCCGGAATGGTCGATCGAGATCGACGAGCCGCGGGACCTGTGGCTCGCCCGGCAGCTGGTCGGCCAGCCGTCCGACGAAGACCTCGCGGAGACGAGCGTCGCCCTCGGGCCGGCCTCGATCGACGTGGACGCGTTGGTGACCGACTTCGACGGCGTGCACACCGACGACCGCGCCGTGGTGACGCAGGACGGCCAGGAGTCCGTCCGTGTGAACCGCGGTGACGGCATGGGTGTCTCGATGCTCCGCCGGGCAGGAGTGCCCATCCTGATTCTCTCGACGGAGGTCAACCCTGTCGTGGCTGCGCGCGCCGGGAAGCTGCGTGTCGAGGTGCTCCACGGCGTGTCGGACAAGGCGGCGGCCCTCTCGGGGTGGATCACAGACCGCGGCCTGGACCCCCGTCGTGTCGCCTATGTCGGCAACGACGTCAACGACCTCGCCGCGATGGCCCTCGTCGGCTGGCCGATCGCCGTCGCGGATGCGCGTCACGAGGCCAAGGACGCCGCACGGCTCGTCCTGCACCACGCGGGCGGCCAGGGCGCCGTCCGAGAAGTGTGCGACCGTATACTCGCAGCGCGCCAGAGCGTTGAGACAGCTGGTGCTCCGACACCAACGGGTGTCAGCAGCGGTGAGGACTGAMPDFVPPSPTALVIIPARGGSQGVPLKNLQRVDGVTLVGRAVQAALAAPSVGTVVVSTDHDGIAAEARDHGARVVVRPADIAGGTASSESALLHVLDVVETGADGSAPQELPPVTVMVQATSPFIDSGDLDGAIRRVASGKQDVVVAVAETHDFQWRAESDGFVPVGHTTDYRPRRQERPQHFRETGAFYAMRTDGFREAKVRFFGAVGVHPVAPEWSIEIDEPRDLWLARQLVGQPSDEDLAETSVALGPASIDVDALVTDFDGVHTDDRAVVTQDGQESVRVNRGDGMGVSMLRRAGVPILILSTEVNPVVAARAGKLRVEVLHGVSDKAAALSGWITDRGLDPRRVAYVGNDVNDLAAMALVGWPIAVADARHEAKDAARLVLHHAGGQGAVREVCDRILAARQSVETAGAPTPTGVSSGEDNANANANANA
AK018_027521008epsJCOG0463putative glycosyltransferase EpsJATGACCACTCGCCCGCGCATCTCCGTGATCCTCCCCGGGAAGGACGCCGAAGACTACGTCGCCGACACGCTGACGAGTCTCGTGCACCAGGTACCGGACCCCTCGGAACTCGAGGTCGTCATGGTCAACGACGGCTCCAGCGACGGCACCGGCGAGATCGTCGAGTCCTTCACCGGGGTCCTGCCGCACCTGAACGTGCTCACCAACCAGCGGGCTTCCGGGCTCGCCAACGCACGCAACCAAGGTCTCGCAGCGGCAAACGGCCGCTACGTCGTCTACCTCGACGCCGACGACTGGCTCGCGCCGCGACGGTTGGCCGTCCTCGCAGACGCGATGGACCAGCTCCGGGTCCCCTTCGTGCGGGCCGACCACACAACGGTCCGCGGGCGACGCCGAGACCTCGTCCGGGCACCGCAGGCGGTCCGTGGCGTCGCTCTGGACCCGAGGCGTTCGATCCTGCCGGTGCACGAGTCGACCATGGTCGACTATCCGTACGCCTGGGCAGGGATGTTCGACCGTGCGCTGGCGAGCGACGGCCTGCTGGAGTTCCCGTCGGACCTGCACACTGCTGAGGACCGACCCTGGATCTGGCGCCTCTTCCTCCAGACGTCGTCCTACGCGGTGGTGGATGCTCCGACGCTCTGCTACCGGCGGGAGGTCACGACGTCGCTCACCGCCACCTACGACCGGCGACAGCTCGACATCTTCCCGGCCCTGCGCCAAGCTTTCGACACCGTGCTCGCCGACCGTGACGCCGAGCTGTTCGCACCGAAGATCACGAGAACGGCACTCGCGCTCGTGGCGCACCACGTGAGCAGGTCCCGAAACATGTCGTCCGAGGTCCGCCGATCTCTGAGATCGACGGCTCGTGCCTTCTTCGCCGACCTGCCCGCCGACGCCCTCACGGCAGAGGTCCGCGCCATGAAGCCCGAGCGCGCACGGCTCCTGCACGGGCTGCTGCCCGGCTACGCGAACCGTCAGGTCAACTCGAGGGAGGCCACCAAGTGAMTTRPRISVILPGKDAEDYVADTLTSLVHQVPDPSELEVVMVNDGSSDGTGEIVESFTGVLPHLNVLTNQRASGLANARNQGLAAANGRYVVYLDADDWLAPRRLAVLADAMDQLRVPFVRADHTTVRGRRRDLVRAPQAVRGVALDPRRSILPVHESTMVDYPYAWAGMFDRALASDGLLEFPSDLHTAEDRPWIWRLFLQTSSYAVVDAPTLCYRREVTTSLTATYDRRQLDIFPALRQAFDTVLADRDAELFAPKITRTALALVAHHVSRSRNMSSEVRRSLRSTARAFFADLPADALTAEVRAMKPERARLLHGLLPGYANRQVNSREATKPGPT0023435_262DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023435-tarS-K22708NANA
AK018_027531356hypothetical proteinGTGACCCAGCTCGTCGTCGCGTCGACCCTCTTCGGGGCGTCGACCGCTGCTGCTGCCGTCGACGCAGGGCTGCTCGGACCGGCAGACACCCGACGAGTCCTCGTCGTCGTGAACAACGCCGCAGCCCCCGAGCTCACCCCGGCGCTCGACGAGATCCCTGGCTGCGACCCGGTACTCGAGCGTTTCTATCGGGTAGTGCACCTCACCGATCTGGTCGCTCCCGTACATCCGTCGGACTGGGCCACCGGTTCACGGGAACGCCCCGTCATGGAACGCCTCTTACGTAGCTACTGGGGACTGGGCGAGGAACAGGTCGAGATCGTCTGCGAGTCCGTCTGGGTCAACCCGGCCCAGAACCTGGCGCGAATCTTCCACGATGCACCCGTCACGGTGTACGCCGACGGGCTGATGAGTTACGGCCCGACCCGGGACCCCTTGCCGCTCGACGTGGCGCAACGCCTCCAAGGGCTACTGCACCTCGACCTCGTCCCCGGGCTGCGTCCGGTGCTGCTCTCCGAGTACGGCGTCGTCCCCACGGTCGTGCCCAGCGAGGCGTTCCTGGCGGTGATGAACGAGCTGGCGGCCGACCGGGCCCCTCGTGGCGACGATGGCGAGGAGGCCGCCATCGTCGTGGGGCAGTACCTTGCAGCCCTCGGTCTCGTGACGCGCGCCGAGGAGTCGGCGATGCACGCACGGATGATCCGGGCGGCTGCGGAAGCAGGCGCGTCCCTGGTCCGGTTCAAGCCCCATCCTTCGGCACCGCCCGGCATGCTCGCACCGCTCCACGATGCAGCCCGACAGGTCGGCGTCCGTCTGGAGGTACTCGACGATCCGCTTCCCGTCGAGGTCATGCTTCTCAGCTCTCGGCACGTCGCACTCATCGGCTGCTTCTCCACCGCTCTCGTGACGGCCAGGTCGATACTCGACATGCCGACGATCGCCGTCGACACCGAGATGCTGCTCCGTCGACTCACGCCGTACGAGAACAGCAATCGGATCCCGCTGACGATCGTCGACGCGGTGCATCGCAAGAGCTCGCCATACGAGAGTCTCGAGACGATGCAGAGCCTGGTCGACACCGTCGCCTACTGCATGCAGCCGAAGTCGCTCCGCGACAGACGAGGCGCGGCAGCGTCCTTCCTCGGCTCGGTCGACCACGACGAACGTCAGCGCTACGTCCGGGCAACACGTCTGACAGCGTTGAGCATGCCGGGAGGACCGCGACCGCACCCCGCGGTGGCCGCGGCAACCAGCATCGCGCGGCGCACTGTTCGGCACCCGGCGTTCGGATGGCTGGACGAGCGGACGCGCACCTCGGGACTGCGGCGCAAGATCTCCATGAGGATCCACGGGTAGMTQLVVASTLFGASTAAAAVDAGLLGPADTRRVLVVVNNAAAPELTPALDEIPGCDPVLERFYRVVHLTDLVAPVHPSDWATGSRERPVMERLLRSYWGLGEEQVEIVCESVWVNPAQNLARIFHDAPVTVYADGLMSYGPTRDPLPLDVAQRLQGLLHLDLVPGLRPVLLSEYGVVPTVVPSEAFLAVMNELAADRAPRGDDGEEAAIVVGQYLAALGLVTRAEESAMHARMIRAAAEAGASLVRFKPHPSAPPGMLAPLHDAARQVGVRLEVLDDPLPVEVMLLSSRHVALIGCFSTALVTARSILDMPTIAVDTEMLLRRLTPYENSNRIPLTIVDAVHRKSSPYESLETMQSLVDTVAYCMQPKSLRDRRGAAASFLGSVDHDERQRYVRATRLTALSMPGGPRPHPAVAAATSIARRTVRHPAFGWLDERTRTSGLRRKISMRIHGNANANANANA
AK018_027541152hypothetical proteinATGCCTCAGTTCGGTGCCTACCAGATGGCCCGAGAGGGCAAGGGCGGTCTGCAGATCCTGAACCACTACTACCGCGGATCAACGGTGAGCTACCGGAAGACCGTCACGGCCGTAAATGTCCAGGTCTTCGGCCCCGATCCGTACAACTTTCGCCAATACGGCGACTCGGCGTCGACGACGGAAATCACCGTGGCCGGGGGTAGCTGGCGGCTCCGTGCGGACGGTCGGACACTCACCACGGGGCGCCCCGGGACACTGACGGTGTCGACGCGAGGCAACGACGTGATAGTTCGGGTCGGCGGACGGTCCTACCGCGCTGGTTCGATGCAGCTGCAGTGGTCAGGCACACGCTTCTACCGCACGGCAGGGAAAGCTGCCGTCGCCTCCGTGGAGGGCGCTCACGGGACGTACCGACACGGTCGGCTTCGGCTCGCTGCGCGCGACGGTACGCCCAACGTGGTGAACAACCTCCGGCTCAACACCGAGTATCTTTACGGAGTGGCAGAGATGCCGTCCTCCTGGGGCACTACCTCGGGCAAGAAGGCGCTCCGTGCCCAGGCCATCGTGGCGCGCTCCTACGCCCAGGTGAAGTCGTCCGAGTACAAGAAGGCCTGCGGCTGTCACCTGGTCGACGACGTACGGGACCAGATGTTCACCGGGTGGAACAAGGAGTCGGAGGGGTCGAACGGTGCGTACGGTGCGGTCTGGAAAGACGCGGTCGACCGGACGCAGACCAGTGTGACCGAGGGCCGGTTGCTGATGTACGGGGGGAGCCCCGTGATCGCGCACTACTACTCCGCCAGCGGGGGACGTACCGCAAACTCGGAGGACGTCTGGTCGTCACGTGTCGGGTACGAACGCTCCGTCCCGGACGACTACAGCCTCCAGGCACCGGGCAACTCCCACCGTAGGTGGGGCCGACTGCTCACCCAGCAGCAGGCCCAGCGGCTCTTCGATCTTCCGGATGTCGTCTCGATCCGGGTGGCGTCACGCTACTCCAGCGGCCAGGCACGGACTCTGGTGGCGAAGTCCTCCGCCGGCCGCACCTCGACGTTGACGGGCAAGGCCGACCAGGTCCGAGCGATGCTGGGCGCCCGGACCCGAGCCGGCAACGTCCCCTCGGCGTGGATCAGGTGGATCCGTGCCAACTAGMPQFGAYQMAREGKGGLQILNHYYRGSTVSYRKTVTAVNVQVFGPDPYNFRQYGDSASTTEITVAGGSWRLRADGRTLTTGRPGTLTVSTRGNDVIVRVGGRSYRAGSMQLQWSGTRFYRTAGKAAVASVEGAHGTYRHGRLRLAARDGTPNVVNNLRLNTEYLYGVAEMPSSWGTTSGKKALRAQAIVARSYAQVKSSEYKKACGCHLVDDVRDQMFTGWNKESEGSNGAYGAVWKDAVDRTQTSVTEGRLLMYGGSPVIAHYYSASGGRTANSEDVWSSRVGYERSVPDDYSLQAPGNSHRRWGRLLTQQQAQRLFDLPDVVSIRVASRYSSGQARTLVAKSSAGRTSTLTGKADQVRAMLGARTRAGNVPSAWIRWIRANPGPT0024670_409DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-STAGE_II_SPORULATION,PGPT0024670-spoIID-K06381NANA
AK018_02755210hypothetical proteinGTGAACACCGAGAACACTCCCTGGATCGACCCGTGGGTGCGTTCCGTGCTGCGGTGCCCCGTCACCGGGGCCGAGCTGGTCGATGCCGTCGGCCCGGACGGGGCGCCGGAGCTGCGGTCGACCGACCCCGTGCGACCGCTGGCCTACCCCGTCCGTGACGGGATCCCGGTGCTGCTGGAGAGCGAGGCACGGGTGGTCCGTGGCGAGTGAMNTENTPWIDPWVRSVLRCPVTGAELVDAVGPDGAPELRSTDPVRPLAYPVRDGIPVLLESEARVVRGENANANANANA
AK018_027561500algC_1COG1109Phosphomannomutase/phosphoglucomutaseATGGCATCTACCGAGCGAGCCGCACGTCGTACGCTGTGGCAGGTGAGCGACTTCGACCTGTCCCGGATCATCAAGGCGTACGACGTGCGGGGGATCGTGCCCGAGGAGTTCTCAGCGCGGGTGGCCGAGGCGGTCGGGGTGGCGTTCGCGCGGGTGGTCGTCGCGCCGGAGGGTGCGTCGCGGGTCGTGGTGGGCAGGGACATGCGGGACTCGGGTCCGGACCTGGTGGCGGGGTTCGCGCGGGGGGTGACCTCGCAGGGGGTGGACGTCCTCGACGTGGGGATGTGTTCCACGGACGGGTTGTACTTCGCCTCGGGGCACCTGGACGCTCCGGGGGTGATGTTCACCGCCTCGCACAACCCGGCGGCGTACAACGGGATGAAGCTGTGCCGGGCCGGTGCGCGTCCGGTCGGGCAGGACACGGGCCTGGCCGAGATCCGCGAGATGGCGCAGCAACTCCTCGACGACGCGGGCGACGACGGCACCCTGGACGGTGGCGAGGACGCTGGCGCGGCCGGGCGGGGGACGATCTCGCGGCGGGACCTGCTGGGCGACTACGCGGGGTTCCTGCGTTCCCTGGTGGACCTGTCGGGGATGCGGCCGTTGAAGGTCGTGGTCGATGCCGGCAACGGGATGGCGGGGTTGACGGTCCCGGCGGTGCTGGGCGACGCGGCCGGGCTGGCCGGCCTGCCGCTGGAGGTCGTGCCGATGTACTTCGAGCTGGACGGCACGTTCCCGAACCACGAGGCCAACCCGCTGGAGCCCGCGAACCTGCTGGACCTGCAGGCCGCGGTCGTGGCCCACGAGGCCGACCTGGGCCTGGCGTTCGACGGCGACGCCGACCGCTGCTTCGTGGTCGACGAGACCGGCGCCGCCGTGTCTCCGAGCGCGGTCACCGCGCTGGTGGGGCTGCGCGAAGTCGCCCGCGAGAAGGCCGCCGGCCGGTCCGCGACCGTGATCGCCAACCTCATCACCTCCCGCGCGGTGACCGACCTGCTCGGAGCCGAGGCCGACGTCGTGCGCACCCGGGTGGGGCACTCCTTCATCAAGCAGACCATGGCCGACCACGGCGCCGTGTTCGGCGGGGAGCACTCCGCGCACTACTACTTCCGCGACTTCTGGTACGCCGACACCGGCATGCTCGCCGCGCTGCATGTCCTGGCCGCCCTCGGCTCCCAGCCCCACCCCGCCTCGGCGCTGGCCGACATGTACACCCCCTACACCGCGTCCGGGGAGATCAACTCCACCGTCACCGACGCCGCCGCCGTCACCGACCACGTGCGCGCCACCTACCAGGCCGCCTACCCCGACGCGGTCGTCGACACCCTCGACGGGCTGACCATCACCCACTGGGACGGCCACCACCCCAAGTGGTGGTTCAACCTGCGCGCCTCCAACACCGAACCCCTGCTGCGCCTCAACGTCGAAGCAGCCGACCACGACAACATGACCAAGCTACGAGACGACGTCCTGTCCCTCGTGCGCAAGGAGGACGCGTGAMASTERAARRTLWQVSDFDLSRIIKAYDVRGIVPEEFSARVAEAVGVAFARVVVAPEGASRVVVGRDMRDSGPDLVAGFARGVTSQGVDVLDVGMCSTDGLYFASGHLDAPGVMFTASHNPAAYNGMKLCRAGARPVGQDTGLAEIREMAQQLLDDAGDDGTLDGGEDAGAAGRGTISRRDLLGDYAGFLRSLVDLSGMRPLKVVVDAGNGMAGLTVPAVLGDAAGLAGLPLEVVPMYFELDGTFPNHEANPLEPANLLDLQAAVVAHEADLGLAFDGDADRCFVVDETGAAVSPSAVTALVGLREVAREKAAGRSATVIANLITSRAVTDLLGAEADVVRTRVGHSFIKQTMADHGAVFGGEHSAHYYFRDFWYADTGMLAALHVLAALGSQPHPASALADMYTPYTASGEINSTVTDAAAVTDHVRATYQAAYPDAVVDTLDGLTITHWDGHHPKWWFNLRASNTEPLLRLNVEAADHDNMTKLRDDVLSLVRKEDAPGPT0017865_1351DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0017865-manB|yhxB-K01840NANA
AK018_027571239manA_1COG1482Mannose-6-phosphate isomeraseGTGCTGTCTACCGCTGTCTTCCACGACCCGCTGCCGCTGACCAACGCCGTCCAGCGCTACGACTGGGGCTCACGTCGCGCGATCCCAGAACTCCTCGGGATCGAACCCGACGGCGGACCGTACGCCGAGCTCTGGCTCGGCGCGCACGCGAGCAACCCCTCGGTCACGACGGCGCACCGGACCAAGATCACGCTCGACGCGTTGCTCCACGAGGTTCCGGTCCAGACGCTCGGCCATCGCGTGGCCGAACAGTTCGGACCCCGGCTGCCCTTCCTGCTCAAGGTGCTCGCCGCTGACCGGGCGCTGTCCCTGCAGGTCCACCCGTCTGCCCGTCAGGCGCGCGAGGGCTTCGCCCGCGAGCACAAGACCGGCATCGCCGCCGACGCGGCCGAGCGGTCGTTCCGCGACGACCAGCACAAGCCGGAGATGCTCGTCGCCGTCACCCAGTTCGAGGGACTGGCAGGCTTCCGTGCCCCCCGGACCATCCTGCAGATCATGGAGGGCCTGCAGGGCAGGCTCGTCGACGACGTCCGGCGAAGCATCCTGGAGGACCGCTCGGACCGTGGGATGCGTGCAGCGTTCGACGGCCTGGTCTCCGCACGCGGTGACGCCGGCTGCGCAGCCGACATCGCCGCGACAGTCGGCTCGGTCCGAGACCGGCTGACGGACGGATCGCCATATGCCCGCGCCGACCAAGCCGTCGTCACGCTCGCCGAGCAACACCCCGGTGACCCGGGAGCCATCGCCTCCCTGATGCTCAACCGGGTCTCTCTGGAACCCGGCGATGCGCTCTTCGTGCCGGCCGGCGAGGTGCACGCCTACCTGAGCGGCCTGGGCGTCGAGATCATGGCGTCCAGCGACAACGTCCTTCGAGCGGGGCTCACGACCAAGCGCGTCGACCAGACCTCGCTGGCGGAGATCGCCTCGTTCTCGCCGCGCCGGCCCGCCACACCCGAGATCACGACGTCGGGGCGCCGCGGGCAGGTCCACACCTACCGTGTTCCCGTCACAGAGTTCGCCCTCACGGTGGCCGACGTCGACGCGTCCGAGCCGGTGGTACTGGCCTCTACCGGACCCCGCATCGTGCTCTGCCTCGACGGGGATGTTGAGCTCGCCGCTGACCGGTCCGACGGCGGAAAGACCGCGCTGCACCGCGGGGAGTCGGTCTTCGTCCCGCACGACGCCGGCAACCTCGAGGTCACCGGCAACGGCCACGTCGTGTGCGCCTGGGTGCCCTGAMLSTAVFHDPLPLTNAVQRYDWGSRRAIPELLGIEPDGGPYAELWLGAHASNPSVTTAHRTKITLDALLHEVPVQTLGHRVAEQFGPRLPFLLKVLAADRALSLQVHPSARQAREGFAREHKTGIAADAAERSFRDDQHKPEMLVAVTQFEGLAGFRAPRTILQIMEGLQGRLVDDVRRSILEDRSDRGMRAAFDGLVSARGDAGCAADIAATVGSVRDRLTDGSPYARADQAVVTLAEQHPGDPGAIASLMLNRVSLEPGDALFVPAGEVHAYLSGLGVEIMASSDNVLRAGLTTKRVDQTSLAEIASFSPRRPATPEITTSGRRGQVHTYRVPVTEFALTVADVDASEPVVLASTGPRIVLCLDGDVELAADRSDGGKTALHRGESVFVPHDAGNLEVTGNGHVVCAWVPPGPT0017860_859DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCOSE-MANNOSE-FRUCOSE_CONVERSION_MODIFICATION,PGPT0017860-manA-K01809NANA
AK018_02758324hypothetical proteinGTGGCGACGCTCACCTATGTGTACGCGGACTCCACCGCCGTCCTGGGCCCGCTGGCGCAGCGCGCCGAACCGCACAGCTACGACCTGTGCTCGGTGCACGCCGAGCGACTGACGGCGCCGCGCGGCTGGGAGGTCGTGCGGCTGCAACCGGAGTTCGTGACCCCGCCGCCGTCGAAGGACGACCTGTCGGCCCTGGCGGAGGCGGTCCGTGAGGCCGGTCGTGGGGGTCGGGCAGCGGATCCGGCACCCGCGGCGGAGCCGGCGAGCGTCACCGAGACGGCGCGGCGCGGGCACCTGCGGGTGCTGCGCGCGGAGTCCGACTGAMATLTYVYADSTAVLGPLAQRAEPHSYDLCSVHAERLTAPRGWEVVRLQPEFVTPPPSKDDLSALAEAVREAGRGGRAADPAPAAEPASVTETARRGHLRVLRAESDNANANANANA
AK018_02759453hypothetical proteinGTGCTCTGGCGCGCCGCACACGGATACGCTCGTCGGGTGAACAGCTTCGTCCGACGGCGGGACCGGCGTGGCCGCGGCATCCGCGGCCCGCTGCTGCCCCCGGGGGCGCCGGCTCGCCGGACCCGGGCGGACGTCTTCGACGACACGGTCCTGGCCGCCATGGACCGCCTCGAGCGACGGTGGCCCGCCGTCTCGGGCACCGAGCTGGCCGTCGAGGACGTCCCGCCCTCGGACCCGGCGCCGTGGGAGACGCGGGGCGTCCCCCTGGGACGGCTCTTCCCGGCCGAGTCGGGCCAGCCGGCGCGGATCGTGGTCTACCGCCGCCCGGTGGAGTCCCGTGCCCTGGACGCCGAGGACCGTGTCCGCCTGGTCAACGACGTCCTGGTGGAGCAGGTCGCCGAGCTCCTCGCACGCACGCCGGAGGAGATCGACCCCGACGTCGGGCGCCCGTAGMLWRAAHGYARRVNSFVRRRDRRGRGIRGPLLPPGAPARRTRADVFDDTVLAAMDRLERRWPAVSGTELAVEDVPPSDPAPWETRGVPLGRLFPAESGQPARIVVYRRPVESRALDAEDRVRLVNDVLVEQVAELLARTPEEIDPDVGRPNANANANANA
AK018_027601593hypothetical proteinATGAGTCGCGCCGCGCAGTGGGGCCGCACGGCCGCCGTGGTCGCCACCGGGATCGTCGTGGCCGGAGGGCTGGCCGCCACGGCCGCCGTCGGGCAGGACTGGGTCGACCGGTGGACCGGGGCGGAGCAGTCCGCCGTCGCCGCGGGGACCCGAGAGGTCCCGGTGGATCCGTCCGAGACACACCTCGTCTGCCCGCGACCCGTCAGCCTGCCGCAGGGCGCCGACGTCGGTGACGACCAGTTCAGCGCCTCCCAGGACGTGGCCTCGGGGCTGGCCGCCGTCGTCCTCGGGGCCGACGGCGCCGAGACCCGCGGGCTCGGCGGAGGGCGGGAGGCGGAGCTCACCGACGGTGCGGACGCCGACGTGCTCACCACGCCGGTGGAACGCCCCCGGGTGCTCTCCGCGACGCCCCGAGGCTCTGCGCTGCGTGCGGCCGCGGCGACGGGGTCGGTGACCGCCGCCGGCGACCTGCGCGGTCTGGCGGCGGCGTCCTGCCAGGAGCCCGCGACCGAGCACTGGCTCGTCGGCGGCGACAGCGAGGTCGGGTCCAGCGCGCTGCTGGTCGTGCAGAACCCGAGCGCCCGTCCCGCGGCGGTCGCCGTGCAGGTGTACGGGCCGAACGGGCCCGTCGCGGTCGGGGGCCAGGGGGAGTTCACCGTCGCAGCGGGTGAGCAGGAAGTGGTCCGGCTCGACTCCCTCGCCCCCGAGCAGCGGCGTCTCGCCGTGCACGTGGCGGCCTCGGGGACACGCGTCACCGCAACGATGCAGATCCAGGCCATCGACGGGCTCGTGCCGGCCGGTGTCGACCTCGTCGAAGCCGGCGCCGCGCCGGGCGACGTCGTGGCGGTCGACGGCGTCGTCTCCCGCGGCGAGGAGCTCGAGGACGACCACGCGCCGGTGCTGTGGCTGCTGAACCCGGGGGACCGGAGCGGGACGGCTCGCCTGACCGTCCTGGGTCCCGACGGCCCGGTGACCCTGCGGGGCGCCGAGCAGGTCGAGCTCGCCGCGGGCGCGGTCACGGCCGTGCCGGTGGGCGGACTGCCGGCCGGGACCTACACGGTCCGGGTCGACGCCGACGTCTCCGTGGCCGCCGCGGCACGCGTCTCCGTGCCCGGCGAGCAGCCGGAGGACTCGGTGGTGGACGGCACGCCGCACGACGTCGCGTGGAGCGCCGGGCAGGCGCTGCCGGACACCGGGGCCCCCGTCGCCGCGCAGGTGGCCCTGCCCCCGACGGCTGCCGGGGCCACCGTGGCACTGACGGCCGTGCCGCCCGCCGGCGCGGACGACGTCACGGGGGAGCTCACCGCCACCGTCCGCGGGGTCGACGCCGCGGGCGACGTGGCGGGCGAACAGGCCGTCACCGTCCCGATCGGGTCGACGGTGGAGGTGCCGGTCGCGGACGTCGGTGCCGAGGTCGGTGTGCTCGTCGACACCGACGGTGACCGGGAGGGCTCCGCAGTGCTCACCTGGTCCGTGCGCTTGCGGGCCGACGACGGCACGGGAGCCGACGGCACCCTGGTCGCCACGCTCGACCCGACCGTGACGTCCGCGAGCGCGGGCAGCGTCTCGGTGCGGCGCGTGGACGTGCCCTGAMSRAAQWGRTAAVVATGIVVAGGLAATAAVGQDWVDRWTGAEQSAVAAGTREVPVDPSETHLVCPRPVSLPQGADVGDDQFSASQDVASGLAAVVLGADGAETRGLGGGREAELTDGADADVLTTPVERPRVLSATPRGSALRAAAATGSVTAAGDLRGLAAASCQEPATEHWLVGGDSEVGSSALLVVQNPSARPAAVAVQVYGPNGPVAVGGQGEFTVAAGEQEVVRLDSLAPEQRRLAVHVAASGTRVTATMQIQAIDGLVPAGVDLVEAGAAPGDVVAVDGVVSRGEELEDDHAPVLWLLNPGDRSGTARLTVLGPDGPVTLRGAEQVELAAGAVTAVPVGGLPAGTYTVRVDADVSVAAAARVSVPGEQPEDSVVDGTPHDVAWSAGQALPDTGAPVAAQVALPPTAAGATVALTAVPPAGADDVTGELTATVRGVDAAGDVAGEQAVTVPIGSTVEVPVADVGAEVGVLVDTDGDREGSAVLTWSVRLRADDGTGADGTLVATLDPTVTSASAGSVSVRRVDVPNANANANANA
AK018_027613279hypothetical proteinATGACTGCACCGCACCTGACCCAGGATCCCTCGCGAGCGAGTGCCGCGCCGACGGCGCCCGGGCCCGAGGCCGTGCTGGGCGTGCCCGCGCGGACCGCCGTCACGGTGACCGTCGTCGTGGTCACGCACGGCCGGACGCCCTTCCTGCAGGCCACGCTCGCGGCCCTCGGCGCGCAGGACCGTGCGCCTGACGACGTCGTCGTCGTCGACACGGACGCAGCCCGGTCCACCGGTGACCACGACGGTCTGCGCATGGGCGACCACCGCTACGTCCCCGCCCCGTCGGCCCGCAGCCTCGGAGACGCCGTCGACCGTGCCCTGACGGCGGAGGCTGAGGAGGGCGACCCGGACCGGGAGCCCGGTGGCTGGGTCTGGATCCTGCACGACGACTCCGCCCCGGCACCCGACGCCCTGGGCCGGCTGCTCCGTGCCGTCGAGCACTCCGCCGCGGTGGCCGTCGCGGGGTGCAAGCAGCGCCGCTGGACCCTCGAGGCCGACGGGCGTCCCGCCGCACCCGATCCGGCCCGGCCGGGGCTCCTCGTCGAGGTGGGTTACACGGTCTCGCCCCTGGGCCGCAGGATGACCGGCATCGACGAGTCGGAGATCGACCAGGGCCAGCACGACGCCCGCGAGGACGTCCTCGCGGTGGGCCTCGCCGGCGCGCTGGTGCGGCGCCGCGTGTGGACCGAGCTGGGCGGTACCGACCCCGAGGCGGGCGTCTTCGGTGACAGCCTCGACCTGTGCCGGCGGGCTCGCCTGGCCGGGCACCGGGTCGTCGTGGTGCCCGACGCCGTCGTCGACCACGCGCAGGCGTCGCTGCGAGGTCTGCGTCGTCCGCGCACCCACCGTGCCCGGGGTACGGCGTCGTCCGCCTACGCCCGTCGTCGCAGCCAGCTGTACGCCCGCCTGGTGTCGGTGCCGTTGCCGCTGCTCCCGCTGGCCCTGGTGGCCATGGTGGTGTGGGCGCCGTTCGTGGCGGGCTACCGCCTCGCGCTGAAGAGTCCTGCCGGGGCGCGCGACGAGATCCTGGCGCCGCTGGTCACCGTGCTGCGTGTGGTGCCCCTGGTCCGGGGCCGACGTCGTGCCGCCCGTACCCGGAGCCTGCCGCGCCGGGTGCTGCGGCCGCTGCGGGCCGACTGGCGGCGGGTGGCCGCCGAGCGACGCGACGCCCGGCTCACCCGCGCCGAGACGCTGCGTGCGCGGCGCCAGCTCACCGACCTGGAGCGTGCCGAGCTGAGGCACCTGGCCGCGCGACGCCGCGTCGGGTTGACGTCCGTGCTGCTCGCCTCCGCGGCGGTCGCCGTGGCCGCCTTCGCCCCCTGGCAGGGTGTGCTCGCCGACGGCGGCCGGATCGTCGGCGGGGCGCTGCTGCCCGCCCCCGCGGGCCTGGCCGAGACGTTCGACGCCGCCACGTCGGGCTGGGTGCGCGACGGCCTGGGGACGGCGGCGCCCGCGGATCCCTGGCTGGCGGTGGTGACCCTCCTGACCGTCCTCGCCGGGGGGAGCGCCCAGCTCGCCGTCAACCTGCTCGTCGTGGCGGCGCTGCCGCTCGCCGCGCTCGCCGGGTGGTTCGGGGCGGGTGCGGTGAGCCGGTCGGTGTGGGCGCGCGCCGCCGCGGCGCTGTGCTGGGCCGCGGCGCCGACCTTCCTCGACTCCCTCGGCACCGGGCGGCTCGCGGCCGTGGTCGCACACCTGACGTTGCCCTGGGTGCTGCTCGCCGGGGTCCGCGCCGTCGGAGTGCAGGCCCGGGACGACGTCGGGCCGGCCCCGGAGCGCCGGGGGTCGCTCGGTGCGGGCGCGGCCGCCGCCCTCCTGCTCGCCGTCGCCGTCGGCGCGGCGCCGGTGCTCCTGCCGGTCGCGCTCGTGGTCGTGGTGGCCGGGATCGTCCTGCGTCCGCGGTACTGGCGGCGGCTGTCCCTCGTCGTCGTCCCCGCGGCGGTGGTGGGGCTGCCGTTCTGGTGGCAGGCCGTCTCGACGTGGTCGGACGGCGGCTGGCGTCTGCTGTTGGCCGAGCCGGGGGCCGCCCGTGCGGCGACGACGCCCGACGGACTGTCGCTGCTGCTCGGGTTCCCGCTGCACCGTGACCTGCCGACGGTGCCGGGCGACCCGCTCGAGGTGCTGGTCGCGATCGTGCCGTGGCTGCTGGGTGCCGGTGTGCTGGGGCTGGCCCTGGTGGCGCTCTTCGGGGGCGAGCGGATCGTGGCGGCGCGCGTCGCGGTCGGTGCGTCGGCGGTCGGGCTGCTGGCGGCGCTGCTCGCCGCCGGCACCGTCGTGGCGGCCGGGACGGCGGCGGACGGCGCGGCCGTCCCGGTGCACGGCTGGCCGTCGGCCGGTCTGTCGGTGCTGCTGCTCGGCCTGGGGGTCGCGGCGCTCGGGGTCACGGCGGCACCGGGCGGGCGTCCGTTGCGCCGTGCCGCCGTGGGCCTCCTCGCCGCCGCGGCCCTCGTGGTGCCCACCGCCGGGCTGGCCGCCTGGTGGGTCGACGACGTCGACGACGGGTCCGTCGACCAGCTGGTCGCCGCGCCGGCCGGCACCGTGCCGGCCGTCGGGCAGCAGGTCCAGGCGCCCCCGCGCAGCGCCCGGGTGCTGCAGCTCGAGCCGGTCGACGGAGCCGTCGAGTACGCCGTGCTGCACGCCGACGGCTCCAGCCTGCTGGACTCGTCTACGGTGGTCCGGGCCCGCGCGGCCGGCGTGCTGGAGGCCCCCGGACGTGCCGACGTCGCCGCGCTGGACGCGGCCGTCGCCCAGCTGTCCGCCGGTGCCGGACCCGGTACCACCGAGCGTCTGTCCGCCCTCGGCGTCGGTGCCGTGCAGGTCCCGGCCGGGACCGACAGCGAGCTGGTCACCTCTCTGGACCTGACGCCCGGCCTCGCGCGCAGCACCCAGGACGGCACGCTCGTCTGGCGTGTCGCGGGCGCGCCCGTCGAACCGGCCTGGGCGGTGCTCCACGAGGGTCTTCCGGCGTCCGGCGAGACCGCGCTGCGCTCCGTGGCGGCGGACGGGCGGGTCGTGGCGGAACGTATCGGGCCGGGGCCCGACTCCCGCGTGCTGGTGCTCGCCGAGACCGCCGACCCGGGCTGGCGGGCCACCCTGGACGGACGTCGCCTGACCGCCGTGGAGGCCGACGGCCGGCAGGCGTTCGAGGTGGGGCCCGACGGCGGACGCCTGGTGGTCGAGCACGACGTCCCGTCCCGGACGCCCTGGCTCGTCCTGGCCGGGCTCGTGCTGGTCGTGTTCGTGCTGCTGGCCCTGCCGGTCGCACGACGGAGGTCACGATGAMTAPHLTQDPSRASAAPTAPGPEAVLGVPARTAVTVTVVVVTHGRTPFLQATLAALGAQDRAPDDVVVVDTDAARSTGDHDGLRMGDHRYVPAPSARSLGDAVDRALTAEAEEGDPDREPGGWVWILHDDSAPAPDALGRLLRAVEHSAAVAVAGCKQRRWTLEADGRPAAPDPARPGLLVEVGYTVSPLGRRMTGIDESEIDQGQHDAREDVLAVGLAGALVRRRVWTELGGTDPEAGVFGDSLDLCRRARLAGHRVVVVPDAVVDHAQASLRGLRRPRTHRARGTASSAYARRRSQLYARLVSVPLPLLPLALVAMVVWAPFVAGYRLALKSPAGARDEILAPLVTVLRVVPLVRGRRRAARTRSLPRRVLRPLRADWRRVAAERRDARLTRAETLRARRQLTDLERAELRHLAARRRVGLTSVLLASAAVAVAAFAPWQGVLADGGRIVGGALLPAPAGLAETFDAATSGWVRDGLGTAAPADPWLAVVTLLTVLAGGSAQLAVNLLVVAALPLAALAGWFGAGAVSRSVWARAAAALCWAAAPTFLDSLGTGRLAAVVAHLTLPWVLLAGVRAVGVQARDDVGPAPERRGSLGAGAAAALLLAVAVGAAPVLLPVALVVVVAGIVLRPRYWRRLSLVVVPAAVVGLPFWWQAVSTWSDGGWRLLLAEPGAARAATTPDGLSLLLGFPLHRDLPTVPGDPLEVLVAIVPWLLGAGVLGLALVALFGGERIVAARVAVGASAVGLLAALLAAGTVVAAGTAADGAAVPVHGWPSAGLSVLLLGLGVAALGVTAAPGGRPLRRAAVGLLAAAALVVPTAGLAAWWVDDVDDGSVDQLVAAPAGTVPAVGQQVQAPPRSARVLQLEPVDGAVEYAVLHADGSSLLDSSTVVRARAAGVLEAPGRADVAALDAAVAQLSAGAGPGTTERLSALGVGAVQVPAGTDSELVTSLDLTPGLARSTQDGTLVWRVAGAPVEPAWAVLHEGLPASGETALRSVAADGRVVAERIGPGPDSRVLVLAETADPGWRATLDGRRLTAVEADGRQAFEVGPDGGRLVVEHDVPSRTPWLVLAGLVLVVFVLLALPVARRRSRNANANANANA
AK018_02762339whiB_1Transcriptional regulator WhiBATGTGGAACTTGCTCGACGGGGACCAGGAGGTCTTCCCGTCTGACGTCGGCAGCACGACGGACCATGTAGCACCGGTCCTCCCGCTGTTCGGCCAGGGCGACGTCGACGACGACGAGTCCCTGCTGGGGTGGCAGGAACGAGCTCTGTGCGCCCAGACCGACCCGGAGGCCTTCTTCCCGGAGAAGGGCGGGTCGACGCGCGAGGCCAAGAAGGTCTGCGCTTCCTGCGACGTGCGCAGCGAGTGCCTGGACTACGCGCTCGAGCACGACGAGCGGTTCGGGATCTGGGGAGGTCTGTCCGAGCGCGAGCGCCGCAAGCTCAAGCGGCGCGCCGTCTGAMWNLLDGDQEVFPSDVGSTTDHVAPVLPLFGQGDVDDDESLLGWQERALCAQTDPEAFFPEKGGSTREAKKVCASCDVRSECLDYALEHDERFGIWGGLSERERRKLKRRAVNANANANANA
AK018_02763717hypothetical proteinGTGGCACACTCCCCCAGCACCGTCCCTGACCTGCTCGACAACCTGCGATCCACCGGCGGGCGACCTGCCCTGACGTGGTACGGCGAGGCCGGGGAACGGATCGAGCTGTCCGGCGCCGTGCTCGACAACTGGGTCGCCAAGACCGTCAATCTTCTGGTCGAGGAGTTCGACGTCGACCCCGGCAGCACCGTCGCCGTCGACCTGCCCGCGGGCTGGCGGCAGGTCGTCTGGTCGTTGGCCGCGGCCCGCTGCGGCGCAGCGGTCGGCCTGTCCGACCCGACAGCGGACCCTGCGGGTGGTGCAGCGGTGGTCGACGTCGTGGTCACGTCACGTCCGTCGGCCTGGCCGGACGCCGACGAGCTGGTCGCCGTCGCGCTGCCGGCCCTCGCCCGCCGGTTCGACGGCGACCTGCCGGACGGCGCCGTCGACGCCGCCGCGGCCGTCATGACCTACGGGGACGTCATCGGCTTCGACCCCGCGGCCGGGACCCGCACACCGCTGGACCGGCTGGGCGCCGTCACCGCCGGCGACGCGGCAGGACGCACGCTGGTCCGTGGGGACGCCGCGGTGGACGAGGTGCTGGCCGAGGCCGTCTCCGTGTGGGCCCGGGGCGGTTCCGTCGTCCTGGTCGGTGCCGGCCCGCTCGCCGAGCTGACGGCCGACCCGGCTCGCCTGGAACGGCTTGTCGCGACCGAGCAGGTCACCGACGGGCTCTGAMAHSPSTVPDLLDNLRSTGGRPALTWYGEAGERIELSGAVLDNWVAKTVNLLVEEFDVDPGSTVAVDLPAGWRQVVWSLAAARCGAAVGLSDPTADPAGGAAVVDVVVTSRPSAWPDADELVAVALPALARRFDGDLPDGAVDAAAAVMTYGDVIGFDPAAGTRTPLDRLGAVTAGDAAGRTLVRGDAAVDEVLAEAVSVWARGGSVVLVGAGPLAELTADPARLERLVATEQVTDGLNANANANANA
AK018_027641308rkpKCOG1004UDP-glucose 6-dehydrogenaseATGCGGATCTCGGTGATCGGTCTGGGGTATCTCGGTGCGGTGCATGCGGCGTCGATGGCGTCGTTGGGGCACGAGGTCGTGGGTGTGGACGTGGATGCGGGGCGGGTGGAGTCGTTGGCCGCGGGGAAGGCGCCGTTCTTCGAGCCGGGGTTCGACGAGCTGTTGACGCGGGTGCAGGACACGGGTCGGTTGCAGGTGACGACGGACGTGGCAGCGGTGGCTGGTGCTCGGGTGCACTTCGTGTGTGTGGGTACCCCGCAGCAGGCGGGGTCGTTGGCGGCGGACCTGTCGTTCGTGGAGGCGGCGTTCGCCTCGGTGGTCGGGCAGGTGGCGCCGGGGGACGTGGTGGTGGGTAAGTCGACGGTGCCGGTGGGCACAGCGGCGCGGTTGGCGGCCGGGGTGGAGGCGGCGGGGGCGTCGTTGGTGTGGAACCCGGAGTTCCTGCGTGAGGGGTTCGCGGTCGAGGACACGTTGCATCCGGATCGGATCGTGTACGGGGTGGCCGAGGGTGAGGCCGGGGTGCGGGCGGCGGGTGTGCTGGACGAGGTGTATGCGGCGGTGCTGGCCGAGCGGATGCCGCGGGTGGTGACGGACTATCCGACGGCGGAGCTGGTGAAGGTGGCGGCGAACTCGTTCCTGGCCACGAAGATCTCGTTCATCAACGCGATGGCGGAGCTGTGCGAGGTGGCCGGGGGTGACGTGACGCGGTTGGCGGACGCGATCGGGCACGACGCGCGGATCGGTCGGCGGTTCCTGAACGCGGGGCTGGGGTTCGGGGGTGGGTGTCTGCCGAAGGACATCCGGGCGTTCATGGCGCGGGCGGACGAGCTGGGTGCGCCGGAGGCGGTGGCGTTCCTGGGGGAGGTGGACGCGATCAACACGCGGCGGCGGGTGCGGATGGTGGAGCTGGCTGGCCAGGTGCTGGGCGGGGATGTGGCGGGTCGGCGGGTGGTGGTGCTGGGGGCGGCGTTCAAGCCGGACTCGGACGACGTGCGTGACTCGCCGGCGCTGGACGTGGCGGCGCGGCTGGGTGAGGCGGGTGCGGACGTGGTGGTGCACGATCCGCAGGCGATCGACAACGCGCGGCTCAAGGCTCCTGGGCTGGTCTACGAGCCGGACCTGGAGGCGGCGCTGTCGGGGGCGGAGGCGGTGCTGGTGCTGACCGAGTGGCGTGTGTACAAGGATCTGGACCCGGTCCGGGCCGGGTCCCTGGTCGGGGCGCGCAACGTCCTGGACGGCCGCAACGCGTTGGACCGCGAGTCGTGGCAGGCCGCCGGATGGCGGTACCGCGCCCTCGGCCGCGCCTGAMRISVIGLGYLGAVHAASMASLGHEVVGVDVDAGRVESLAAGKAPFFEPGFDELLTRVQDTGRLQVTTDVAAVAGARVHFVCVGTPQQAGSLAADLSFVEAAFASVVGQVAPGDVVVGKSTVPVGTAARLAAGVEAAGASLVWNPEFLREGFAVEDTLHPDRIVYGVAEGEAGVRAAGVLDEVYAAVLAERMPRVVTDYPTAELVKVAANSFLATKISFINAMAELCEVAGGDVTRLADAIGHDARIGRRFLNAGLGFGGGCLPKDIRAFMARADELGAPEAVAFLGEVDAINTRRRVRMVELAGQVLGGDVAGRRVVVLGAAFKPDSDDVRDSPALDVAARLGEAGADVVVHDPQAIDNARLKAPGLVYEPDLEAALSGAEAVLVLTEWRVYKDLDPVRAGSLVGARNVLDGRNALDRESWQAAGWRYRALGRAPGPT0017855_4193DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCURONATE_MODIFICATION,PGPT0017855-ugd|tuaD-K00012NANA
AK018_027652385hypothetical proteinGTGCCCTACCGCTCGACAGGTGCGGCGGCATGGCCGTCGGGTGAACTCTCCGAGCGACTGGCGGTCACGACAGGTCCGACATTCCGCTCCCGTCCCGAGGTGTCGCACGTCGACCTGCGCAGTCGGTTGCCCGGTCGTACCGTGCCTCACGTGACGCGTACCACAGCTCCGCGAGCAGTCACCGCCGGCGTCGCCGGGGTCCTGACCTTCGCCCTCGTCCTGCCGGCCGGCGGCGCCGTCGCCGCACCACCCGCCCCGTCCGTCCCCACGACCACGGGGACGGCGGAGACGACGCACGTCCCGTCGGCCGCCGACCAGGATCCTGAGCCCGTCGCCCCGGAGTCGTCCGAGGCCGAGTTCGTCGAGTCCGACGACGCCGCCGCCGACGAGGTGCCGGCGCACGAGCACGAGCACGACGAGCAGGGCCAAGACGATCCGGAAGCCGAGAACCCGTCGTCGTCCGCGTCTCCGGAGCAGGAGGACGCCACCGTGGATTCCGCAGCTCCGTCGGCCGCACCGAGCGTGGACGCTTCTGCTGAGCCTTCGACCAACTCCGGGGAGGGGGCGACATCACGCCAGGAGCAGGACGATGTCCTGCTCGCCGACGCCCCGGTCACCGGGTTCGGCGTCGTCGGCGTGACCTGGTCCGGGGATCTCACCGACGAGCACGCGCTCGTCGTGCACGTGCGCACCACCGAGCGTCCGGACCCGGCCGCCGACGACCCGTCGTGGAGCGACTGGGAGGAGGTCGCCGTCGAGCCCTCGCCGCGCGGCGTGTACGACGGGACCGAGCCGGTCGTCGTCGGAGACGTCGCGCATGTCCAGGCCCGTGTGTCTGGCGACGATGTCGGCGCGGTGCGCGGGCTCGAGCTCGCCGTGATCAACCCGGGAGAGTCGTCCGCCGACGACGACATCGAGATCCCGGCTGAAGAGATCTCGCCGCACGGCTCAGCGGTCGGCGCCGGCGTGCCCGACCGGCCTTCGATCGTCTCGCGTGCCGCCTGGGGCGCGGACGAATCGATCATGACCTGGACGCCCCGCCAGGGTGACGTCCGCGGGGCTGCCATACACCACACCGCCGGGACCAACGACTACGCCGCGAGCGACGTACCGCGGATCATCCGGGGCATCTACGCCTACCACGCCCAGACCCGGGACTGGGGCGACATCGGCTACAACTTCCTGGTCGACAAGTACGGGCGGATCTGGGAGGGACGAGCCGGTGGCATCAGGAACGAGACCATCGGTGGTCACGCGATCGGCTTCAACTCGTACTCGACCGGGATCTCCATGATCGGTAACTACGACGTCACTCGCCCGACCAACACCTCGGTGAGCGCCGTCGTCCGCTTGGCTGCCTGGAAGCTGGCGCTCCACGGCGTCTCGGCCGACGGGACCGTCACCATCGAGGGAACGCGCCTGAGCCGGGTGTTCGGGCACCGCAACGTCGCCTCGACCGCCTGTCCGGGTCGATACCTGTACGAACGGCTCGGTGAGATCCGACGACGCGCAGCGGCCCTGCAGGACAGGTTCCTCGATCTTCCCAACGGCTCTTTCATCATCAACCCCAACGGCCGTGCCGCGCTCTACGAGAACGGACGCAAGCACGCCGCCTACTGCTCGATGGTCCGTCACTACGGTTCCCGCTGCTCGGATGCGCGCGAGGTGACGCTCGACCAGTGGCGGGGTGTATCCGATGCGGGGCGACTCCGGAGAACCGTGCGAACCACCGGTGGAGATCGGGTCTACTGGATCGAGAACGGCCGCAAGCTGCAGGCGTTCGATCTGTTGTCGCTGCGGCGCACGGACCGATCGAGCAAGTCGGTGGTGATGCCACGAAGCGCGCTGGGACAGCTTCCCTGGGGCGATCCTGTGGTACGCGTCGGCGTCATCGTCGTCAACAGGTCGACCGGCGCTCGCCACCTCGTCGTCGGCCCTGGTAAGCGAGCGCCGGTCAATGTCGGCTTGCGAAAGCGCACCCCCCTCGGGGATCTACCCGTCGGCGCCCTGGACCGAGCCAGCTTCATCCGGATGGATCGCGTCCGCGCAACGACAGGAGTCGTGCGACGCACGAACGGACGTGAGTTCGTCCTGACAACCCGGAACCTGGTTCGAACTGACGGCACCGGTCCGTTGCGACCGGAGGCGAAGACGCAGCACTGGGGACTGTGGCTCATGCGTGCCGTCCCGCGCTCCAAGAAGGACCAGCCGCCGACAGTCTTCGTCCGTACGCCCCGGTCCTCGCAGCGCTACTTCCTCCGTAGCGGCACCCTGCATCCCGTCTCGCCGCAACGGGCCCGGGAGCTGAACGGTGGTCGGGACCCGATGGTCCACACCATCCTGAACATCACGAAGCGCCAGTTCCCTGTGGGATCGCGCCTCTGAMPYRSTGAAAWPSGELSERLAVTTGPTFRSRPEVSHVDLRSRLPGRTVPHVTRTTAPRAVTAGVAGVLTFALVLPAGGAVAAPPAPSVPTTTGTAETTHVPSAADQDPEPVAPESSEAEFVESDDAAADEVPAHEHEHDEQGQDDPEAENPSSSASPEQEDATVDSAAPSAAPSVDASAEPSTNSGEGATSRQEQDDVLLADAPVTGFGVVGVTWSGDLTDEHALVVHVRTTERPDPAADDPSWSDWEEVAVEPSPRGVYDGTEPVVVGDVAHVQARVSGDDVGAVRGLELAVINPGESSADDDIEIPAEEISPHGSAVGAGVPDRPSIVSRAAWGADESIMTWTPRQGDVRGAAIHHTAGTNDYAASDVPRIIRGIYAYHAQTRDWGDIGYNFLVDKYGRIWEGRAGGIRNETIGGHAIGFNSYSTGISMIGNYDVTRPTNTSVSAVVRLAAWKLALHGVSADGTVTIEGTRLSRVFGHRNVASTACPGRYLYERLGEIRRRAAALQDRFLDLPNGSFIINPNGRAALYENGRKHAAYCSMVRHYGSRCSDAREVTLDQWRGVSDAGRLRRTVRTTGGDRVYWIENGRKLQAFDLLSLRRTDRSSKSVVMPRSALGQLPWGDPVVRVGVIVVNRSTGARHLVVGPGKRAPVNVGLRKRTPLGDLPVGALDRASFIRMDRVRATTGVVRRTNGREFVLTTRNLVRTDGTGPLRPEAKTQHWGLWLMRAVPRSKKDQPPTVFVRTPRSSQRYFLRSGTLHPVSPQRARELNGGRDPMVHTILNITKRQFPVGSRLNANANANANA
AK018_027661353tagU_6Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUGTGAGTGACCGCCCTGCCCGCCACGCCGCACCGCGCCGCGACCCCGCCAAGGGTCCGTCGCACGCGCGCGACCTGGGGCGGCGCCCGGTGGCGCGGGTCGTCGGGCTGGCCATGACGGCCGCGCTGGCGTTCGTCACGGTCGGCGCGGGCACCGCTGCCCTCACGCTGACGGGCAACATCACCGCGGTGGACGCCGAGGCGGCGCTCGGGACGGACCGTCCGACGAAGGAGCCACCGGCCGACCCGTCCGCCGGGGAGGCGCTCAACATCCTGCTGCTCGGCTCGGACTCGCGAGGCGGGGCGAACAGCGACGTGGTCGACGACGGCACGGACGGCGCGCGGTCCGACACGACGATGATCATGCACATCGCGGCGGACAGATCGCGTGTCGAGCTCATGTCGATCCCCCGCGACACCACCATCGACGTGCCCTCGTGCCCCACCTCGGCCGGGGGGACGACGCCGGAGATGTACGGCGTGAAGTTCAACTCCGCGTTCGCCCAGGGCGTCCTGTACGGCGACGACGTCGAGTCCGGTGCGCTGTGCACGATGAAGACCGTCGAGACCATCACCGACGTCCGCATGGACGGGTTCGTCGTGGTGGACTTCTCGGGCTTCGAGGCGATGATCGACGCCCTCGACGGCGTGGAGATGTGCATCCCCGAGGACATCGACTCCCCCAAGGCGGACAACCTGGTGCTGTCCGCGGGCGTGCAGTCCCTCGACGGCGAGACGGCCCTGAAGTACGCCCGTGCCCGCACGGGCCAGGGGCTCGGCGACGGCTCCGACATCGGCCGGATCGGTCGCCAGCAGGAGCTGATGGCGGCGCTCGCCCGGACGGTGCTCGGACAGAATCTGCTCACCGACTCCCCCCAGCTGCTGCGGTTCCTCGACGCCGTGACCGGGTCGCTGACGATGAGCAGCAACTTCGCCTCCGTCCAGGGACTCGCCGGGCTGGCGTACAGCGTCCGCGGGCTGCGGCCTGACACCATCGCGTTCATGACGGTTCCGTGGCAGTACGACCCGTCGAACCCCAACAACGTCGTGCTCACGGAGGAATCGGTCCAGGTGTTCGACAACCTGCGCAGCGACGTCCCGCTCAGCGACGTGATCGAGCCGGAGCCCTCGGCGTCGCCGGAGGACGGGTCGTCCGGGGACGACGAGCAGACGTCGTCGGACGACCCGACCGACGCGGGCGACGACGCCTCGACCGGCGGCGACGCCGGCGACGGATCCACCGACGCGGGCACCGCCGAGGCGTCCGAGCCCGAGCAGTCCCCGTCGCCCACCCAGACCCGCGACGCCGGTGAGGAAGCCTTCACCGGGGCGGACGTGACCTCGGTGTGCGGGTGAMSDRPARHAAPRRDPAKGPSHARDLGRRPVARVVGLAMTAALAFVTVGAGTAALTLTGNITAVDAEAALGTDRPTKEPPADPSAGEALNILLLGSDSRGGANSDVVDDGTDGARSDTTMIMHIAADRSRVELMSIPRDTTIDVPSCPTSAGGTTPEMYGVKFNSAFAQGVLYGDDVESGALCTMKTVETITDVRMDGFVVVDFSGFEAMIDALDGVEMCIPEDIDSPKADNLVLSAGVQSLDGETALKYARARTGQGLGDGSDIGRIGRQQELMAALARTVLGQNLLTDSPQLLRFLDAVTGSLTMSSNFASVQGLAGLAYSVRGLRPDTIAFMTVPWQYDPSNPNNVVLTEESVQVFDNLRSDVPLSDVIEPEPSASPEDGSSGDDEQTSSDDPTDAGDDASTGGDAGDGSTDAGTAEASEPEQSPSPTQTRDAGEEAFTGADVTSVCGNANANANANA
AK018_027671350tagU_7Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUATGAGCGACGACCGACGCATCCCCCCGAGCTTCACGCCCGCCGGCGGCGGCTCGTCGCGCCCCCGGCAGGACGGCGACGCGATCTCCGTCGGCGGCTCCGACACCCCGGCACGCCCCTCGGGCCGGGTCGGACGGCGGGACGACGCCGTCCCGATGGAGCCTCGCGAGCCGCGGGTGCGCCGGCAGTCGTCGCGCGAGATCCCCGTCACCCCGCAGCGGCGGTCGGCGACCCCGCAGCGCAAGCCCCAGTCCTACGCGCCGGCCGTCGGGTCGACCCGCCGTGCCGCCGAGCGTCAGCCCACCCGTCCCCCGTCGCAGCAGCCCCGGCGCGCGGGGTCGGCACCGGCACAGCCACGTCCCGCCCCTGCCGCAGCACCGCCGTCGGGCCGGGACGGCGGCTCGGGCGGCATCCGCATCCGCAAGGGCCGCGTCGCCGCGCTGGTCCTCGCCCTGCTCCTGGTGCTGCTGCTGGCCTGGCCCGTCGGGCTCCTGATCTGGGCGAACGGCAAGATCCAGCACACCGAGGCGCTCTCCGGCGCCGAGGGGACCCCGGGCACCACGTACCTGCTGGCCGGTTCGGACGCCCGCGGCTCGGGCGGGATCGACGACGGCACCGCCGGCGCCCGCACGGACACCATCATGGTGCTGCACCAGCCCCGCAGCGGTCCGACGGCGCTCATCTCGATCCCACGCGACACCTACGCCGAGATCCCCGGCGAGGGTGCGAGCAAGATCAACTCGGCCTACGCCTGGGGCGGTCCCCCGCTCCTCGTCGAGTCCGTCGAACAGCTGACCGGCCTGACGGTCGACCACTACGCGGAGATCGGCTTCGGCAGCCTCCAGGAGATCGTCGACGCCGTCGGTGGCGTCGAGCTGTGCCTGGACTACGACGTCGACGACAAGCGCTCGGAGCTCGTGTGGGAGGCGGGCTGCCACCAGGCCGACGGCGCGACGGCCCTGGCGTTCTCGCGGATGCGCTACTCCGACCCGAAGGGTGACATCGGCCGGGCCGAGCGCCAGCGGCAGGTCATCGCGGCCACGGCCGACAAGGTGGTCCAGCCGAGCGTGCTGCTCAACCCGATCGACCAGGTCCAGCTCGTCGAGGCGGGCACCGACGCGCTGCTCGTCGACGAGGACACGGGCATGATCGACCTCGGCCGGCTCGCGCTGGCGTTCAAGTCCGCCACCGGCCCGGAGGGCGTGACCGGCACCCCGCCGATCGCGGACCCCGGGTACAACCCCGGTGGCGGCGTCGGCTCGACGGTGCTGCTGACCGACGACGCCGACCAGTTCTGGGTCGACGTGCGCGACGGCGAGCTGGAGCCCGGCAGCACCGTCGGCGGGCTCTGAMSDDRRIPPSFTPAGGGSSRPRQDGDAISVGGSDTPARPSGRVGRRDDAVPMEPREPRVRRQSSREIPVTPQRRSATPQRKPQSYAPAVGSTRRAAERQPTRPPSQQPRRAGSAPAQPRPAPAAAPPSGRDGGSGGIRIRKGRVAALVLALLLVLLLAWPVGLLIWANGKIQHTEALSGAEGTPGTTYLLAGSDARGSGGIDDGTAGARTDTIMVLHQPRSGPTALISIPRDTYAEIPGEGASKINSAYAWGGPPLLVESVEQLTGLTVDHYAEIGFGSLQEIVDAVGGVELCLDYDVDDKRSELVWEAGCHQADGATALAFSRMRYSDPKGDIGRAERQRQVIAATADKVVQPSVLLNPIDQVQLVEAGTDALLVDEDTGMIDLGRLALAFKSATGPEGVTGTPPIADPGYNPGGGVGSTVLLTDDADQFWVDVRDGELEPGSTVGGLNANANANANA
AK018_02768519purE_2COG0041N5-carboxyaminoimidazole ribonucleotide mutaseATGAGCAACGCACCCGCCGTCGGGATCGTCATGGGGTCGGACTCCGACTGGCCCGTCATGGAGGGCGCCGCCGACGCGCTCGACGAGCTCGGCGTCACCTACGAGGTCGACGTCGTCTCCGCCCACCGCATGCCCACCGAGATGATCGACTACGGCCGCGAGGCCGCCGGTCGCGGGCTGCGGGCGATCGTCGCCGGCGCCGGGGGAGCGGCGCACCTGCCCGGCATGCTCGCCGCCGTCACCCCGCTTCCCGTCATCGGGGTCCCGGTGCCGCTCAAGCACCTCGACGGGATGGACTCCCTGCTGTCGATCGTGCAGATGCCCGCCGGCGTGCCCGTGGCCACCGTGTCCATCGGCGGGGCCCGCAACGCCGGCCTGCTCGCCGCGCAGATCCTCGGGGCGGGCGTCGACGACGAGTCGCTGGCGCTGCGCGAGCGGATGGTCGCCTTGCAGGAGAACCTGCGCGACGTCGCGCACGCCAAGGGGGAGCGGCTGCGGGCGTCCCGCGCCGGGCGCTGAMSNAPAVGIVMGSDSDWPVMEGAADALDELGVTYEVDVVSAHRMPTEMIDYGREAAGRGLRAIVAGAGGAAHLPGMLAAVTPLPVIGVPVPLKHLDGMDSLLSIVQMPAGVPVATVSIGGARNAGLLAAQILGAGVDDESLALRERMVALQENLRDVAHAKGERLRASRAGRPGPT0021545_776DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021545-purE-K01588NANA
AK018_027691194purK_2COG0026N5-carboxyaminoimidazole ribonucleotide synthaseGTGGTCGCCGTCGTCGGCGGTGGCCAGCTCGCCCGCATGATGGCCCCCGCGGCCGCCGAGCTCGGCGTGCACCTGCGCATCCTGGTCGAGGGGCCGACGACGTCGGCCGCCCAGGTCGTCGTCGACGCCCCCGTGGGCGCGGCCGCGGACGAGGTGGCGGTGCGCGCGCTGGTGGCCCCGGCCGACGGCGCGGCCGCCGACGTGCTGACCTTCGAGCACGAGCACGTGCCGAACGCCCTGCTGGGCGACGTCGCCGCCCACGGCACCCCCGTGCACCCCGGACCGCACGCGCTCGTGCACGCCCAGGACAAGATCGTGATGCGCCGGCGCCTGACCGAGCTCGGCGTGCCGTGCCCGCGCTGGACCGCGCTGCCCTCCGACGTCGCGGCCGCCCGCGAGGCGCTGGGAGCCTTCCTGGACGCGACCCACGAGGGCCGCGCCGTGGTCAAGACCGCCCGTGGCGGCTACGACGGCAAGGGCGTGCGCGTCGTCTCCGCGGCCGACCAGGTCGACGACTGGGTCGCCGCGCACCTCGACGGCGGACCGGAGCTGCTCGTCGAGGCCAAGGTGCCGTTCACCCGCGAGCTCGCCGTGCTCGTCGCCCGCCGGCCCTCCGGCGAGGTGCGGACCTGGCCCGTCGTCGAGTCGACCCAGCGGGACGGGGTCTGCGCCGAGGTCGTCGCCCCCGCCCCGGGGCTCGACGACACCCTGGCGCGACGGGCCCGCGACGTGGCGGTGCGCATCGCCGAGGGGCTCGACGTCACCGGCGTGCTCGCCGTGGAGATGTTCGAGGTGGTCGGCGTGGACGGCACCAGCGAGGTGCTCGTCAACGAGCTCGCCATGCGTCCGCACAACTCGGGGCACTGGACCATCGACGGCGCGGTGACCAGCCAGTTCGAGCAGCACCTGCGCGCCGTCCTCGACCTGCCGCTGGGTGACACCGCCCCCGTGGCCCGCTGGACCGTCATGGCCAACGTCCTCGGGTCGGGGCTGGACCGGCTCACCGACGCGCTGCCCGCCGTCGGCACGCAGGTCCCCGAGGCCCGGGTCAACCTGTACGGCAAGGGGATCCGCCCCGGCCGCAAGCTCGGCCACGTCAACGTCAGCGGCGACGACCTCGACGAGGTCCGCCGTCGTGCCCGCACCGCCGCCGCGCTCCTGCGCGGCGAGGACCCCGCGAACCTGGAGGACTGAMVAVVGGGQLARMMAPAAAELGVHLRILVEGPTTSAAQVVVDAPVGAAADEVAVRALVAPADGAAADVLTFEHEHVPNALLGDVAAHGTPVHPGPHALVHAQDKIVMRRRLTELGVPCPRWTALPSDVAAAREALGAFLDATHEGRAVVKTARGGYDGKGVRVVSAADQVDDWVAAHLDGGPELLVEAKVPFTRELAVLVARRPSGEVRTWPVVESTQRDGVCAEVVAPAPGLDDTLARRARDVAVRIAEGLDVTGVLAVEMFEVVGVDGTSEVLVNELAMRPHNSGHWTIDGAVTSQFEQHLRAVLDLPLGDTAPVARWTVMANVLGSGLDRLTDALPAVGTQVPEARVNLYGKGIRPGRKLGHVNVSGDDLDEVRRRARTAAALLRGEDPANLEDPGPT0021550_285DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021550-purK-K01589NANA
AK018_02770492hypothetical proteinATGTCCCGTGCCCCCGCCCCCGCGGCCCCCCGGCCGCGCGCGTGGCCCGTCCGGTTCGTCGCCGCCACCTGGCGGCGCCGGGTCGAGCTGCTGCGCTTCGGGACGGTCGGCGGGCTGGCGTACGTGGTGAACCTGGCCGTGTTCAACCTGCTGCTGCACGGACCGGCGCCGTTCGACGTGCTGTCGCACAAGCCGGTCACCGTCAACGTCGTCGCGGTGGCGGTCTCCACCGTCGTCGCCTGGCTCGGCAACCGGTACTGGACCTTCTCGGCCGGGCGCACGACGCGCCACGTGCGCGAGCTGATCGAGTTCGGGCTCGTGAACGTCGGCGGTCTGGTGATCTCCTCGGCGTGCCTGGCCGTCTCCCGGTACGTGCTCGGGTTCGACTCGATCCTGGCGGACAACGTCGCCGCCAACGGCGTCGGGCTCGTGCTGGGCATGATCTTCCGGTACGTGATGTACCGCGGCGTGGTCTTCCGCGGGGACCGCTGAMSRAPAPAAPRPRAWPVRFVAATWRRRVELLRFGTVGGLAYVVNLAVFNLLLHGPAPFDVLSHKPVTVNVVAVAVSTVVAWLGNRYWTFSAGRTTRHVRELIEFGLVNVGGLVISSACLAVSRYVLGFDSILADNVAANGVGLVLGMIFRYVMYRGVVFRGDRNANANANANA
AK018_027711347sasA_7Adaptive-response sensory-kinase SasAGTGCGCCGTCGCGTCCTGCTGGCGACGATCTCGGCGGTGGCCGTCGCGGTGATCCTGCTCGGTGTGCCGCTGGGGCTCTTCGGCGCCCGGTACGTCGTCGCCATCGAGGAGCAGCGCATCTCCGACCGGGCGACCACCCTGGCAAACACCGTCGACCGCGTGGTCGGCACGGGTGAGCGCCCCACCGACGACCAGCTCCAGCGCGCCTCCGAGGGACGCGCGGGCGACCTGCCCGCACGCGTGACGGTCAGCTTGCCCGACGGCGAGCAGCTCACCTTCGGCGAGACCGTCGAGCCGCCGACGATCGTCAAGGCGGCCGAGGCCGGGGACAGCCGTGCCTGGGTGTCCCTGGAGGTCTCCTCCTGGGCGGTGCTGGTCAAGTCGGCGCAGATCGTCGCGCTCGTGGTGGTCGCCGGGCTCGTCGCCATCGGCGCGGGCGTCGCGATGGCGGTGTGGCAGGCCAACCGGCTCTCGGCGCCGCTCGTCTACCTCGCGGCGTCCGCCGAGCAGCTCGGTTCCGGCCAGGTCCGCCCCAGCCTCGAGCCCTCCGGCGTCGAGGAGATCGACCTCGTGGCCGCCGAGCTGGCCCGCAGCGCCGACCGGCTCGCGGGACGGCTGGCCGCCGAGCGTCAGTTCACGCAGGACGCCTCGCACCAGCTGCGCACCCCGCTGACCGCCCTGTCGATGCGGCTCGAGGAGATCATGCTGACCTCGGACGACGACGACGTCGTCGAGGAGGCGCGCGTCTCCCTGGAGCAGGTCGAGCGGCTGGTGACGGTCGTGGACGACCTGCTGGCGACGTCGCGCCGGTCGGCCGGTGGCACCACGGAGGCCATCGTGCTGCTCGACGTGGTGCGCCAGCAGCACGAGGAGTGGGTCGAGACGTTCGAGCAGGCCGGTCGCCGGCTGGTGGTCGACGTCGCGGAGGACCACCGCGTCCTGGCCACCCCGGGTGCGCTCGCCCAGGTGATCGCGACCCTGCTCGAGAACTCCCTGAAGTACGGCGACGGCACCACGACCGTGCGGTCCAAGCTGTCCGGCCCCAAGGGCACCGTCGCGCTCGAGGTGACGGACGAAGGGCCGGGGGTCGCCGACGAGGTGGCGCCGCGCATCTTCGAGCGCGGCGAGTCCACCGGCGGCAGTACCGGTCTCGGGCTGGCCCTGGCGCGCGACCTGGTAGCCGCCGACGGCGGACGGCTGGAGCTGGCGCAACGCCGCCCACCGGTGTTCCGCGTCTTCCTCGCCCGGGTCCCGCGCACGCTCGACCCCCGGCTCGTGCTGCCCCCGGGCACCACGATCTCCTCGCGCGGACGTCGCCGGGGCGGGTGGATGCACCCCGAGGACTGAMRRRVLLATISAVAVAVILLGVPLGLFGARYVVAIEEQRISDRATTLANTVDRVVGTGERPTDDQLQRASEGRAGDLPARVTVSLPDGEQLTFGETVEPPTIVKAAEAGDSRAWVSLEVSSWAVLVKSAQIVALVVVAGLVAIGAGVAMAVWQANRLSAPLVYLAASAEQLGSGQVRPSLEPSGVEEIDLVAAELARSADRLAGRLAAERQFTQDASHQLRTPLTALSMRLEEIMLTSDDDDVVEEARVSLEQVERLVTVVDDLLATSRRSAGGTTEAIVLLDVVRQQHEEWVETFEQAGRRLVVDVAEDHRVLATPGALAQVIATLLENSLKYGDGTTTVRSKLSGPKGTVALEVTDEGPGVADEVAPRIFERGESTGGSTGLGLALARDLVAADGGRLELAQRRPPVFRVFLARVPRTLDPRLVLPPGTTISSRGRRRGGWMHPEDNANANANANA
AK018_02772687regX3_3COG0745Sensory transduction protein regX3ATGACCCACGTACTTCTGGCCGAGGACGACCCGGCGATTGCCGAGCCTTTGGCGCGGGCTCTCACACGTGAGGGTTACGACGTCGTCGTGCAAGGAACTGGTCAAGGCGCGATCGATCACGCCGGTGACGCGGACATCGTGGTCCTCGATCTCGGACTGCCCGACGTGGACGGGCTCGACGTCGCCCGCGAGATCCGGGGGCGCGGGCTGAGCACGCCGATCCTCGTCCTCACCGCGCGTGCCGACGAGGTCGACCTGGTGGTCGGCCTCGACGCCGGCGCCGACGACTACGTCACCAAGCCGTTCCGCCTCGCCGAGCTGCTCGCGCGCGTGCGTGCCCTGCTGCGGCGCACCCACGGGGAGGCCACGGACGACGAGGAGCTGCGCGCCCAGGACGTGCGCGTCGACGTCGCCGCGCACCGGGCGTTCCAGGGCGAGCGGGAGCTGCACCTGACCACCAAGGAGTTCGACCTGCTGAAGGTCCTCGTCGCCAACGCGGGCTCCGTCGTCGTGCGCGACTCGCTGATGCGGGACGTGTGGGGCTCCGACCCGGTGGGCTCGACCAAGACGCTCGACATGCACGTGTCGTGGCTGCGCCGCAAGCTCGGCGACGACGCCAACTCCCCGCGCTACGTCTCCACGGTCCGGGGGCTCGGCTTCCGGTTCGAGCTCGGCCAGCAGGCCTGAMTHVLLAEDDPAIAEPLARALTREGYDVVVQGTGQGAIDHAGDADIVVLDLGLPDVDGLDVAREIRGRGLSTPILVLTARADEVDLVVGLDAGADDYVTKPFRLAELLARVRALLRRTHGEATDDEELRAQDVRVDVAAHRAFQGERELHLTTKEFDLLKVLVANAGSVVVRDSLMRDVWGSDPVGSTKTLDMHVSWLRRKLGDDANSPRYVSTVRGLGFRFELGQQAPGPT0002675_800DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
AK018_027731386hypothetical proteinATGACCTGGTTCGCACGCGCCACCCGGTGGCTGGAGAGCCACCGATTCGCCGTGGACGCCACCGGGGCCGCCCTCTTCGCCCTCGCCGCGGCCGTCCTGGCCGCCGACGCCGTCGGGTACGCGAGCGGCGAGCGCCTCGCGCCCACCCTGTGGTCGGTGGCGCTCGCCGTGCCGCTCGCGTGGCGGCGCACCCGGCCCGTCGTGTCGGCCGTCGCTGTGTACGCGGTGGCGCTGGTCCACCTGGTCACCGGGTATCCCCTGCTCCTCCCGGGCGACCTCGCCGTCCTGGTCGCCCTGTACTCCGTGACCGTGTACGGACCGCGCTGGGCGCACCTGACCGCGATCGCCGCGACGGGCGTCGGCTGCCTGGCGTTCGTCGCCGTCACCGCGTGGTCGTTCGCCGGTGCCGGGTTCGGCACGAGCTTCGCGGACCTGCTGCCCAGCGCCGTGTTCCTGGGCGCGATCGCGCTCGCGGTCTGGGCCTTCGGGCTGACACGCCGCTACCGGCGGGTGACCGTCGAGGCCCTGCGGGACCGCGCCGGACGCCTCGAGGTCGAGCGCGACCAGCAGGCACGCATCGCCACCGCCGCCGAGCGGGCCCGGATCGCCCGCGAGATGCACGACATCGTCGCCCACTCGCTGTCCATCGTCGTCGCCCAGGCCGACGGCGGCCGGTACGCGGCCGCGGACGACCCGCAGGCCGCCGTGCGCTCGCTGGGCGTCATCTCCGAGACAGGCAGGGCGGCGCTGGCGGACATGCGCCGCCTGCTGGGCGTGCTGCGGGACGACGACGGCGCACCGGCCCCGCACCCGGCGGCAGCGGGGGTGGCGATCTCCGCGGCGCCCCGACCCGACGCGCCTCCCGGCCCGGCATCCCACCCGGCACCCGACCCCGCGACCGGCGCGACGGTGCTGGCCGGAGGCCCGCCGTCGTCGGGCGCCGCCCCGCTGACCCCGCAACCGGACGACGCGGACCTCGAGTCGCTGACCGCGCAGGCCCGCGCGGCGGGCTCCCGCGTGTCCCTGGTCCGCGTGGGCACCCCGCGCCGCCTGCCCCCCGGCGCCGGGCTCACGCTGCACCGGGTGGCGCAGGAGGCGTTGAGCAACGTGCGCAAGCACGCGGGCCCCGGTCCGGGTGTCACCGTCGTCGAACGCTGGCAGCCGGAGGCGGTCGTGCTGGAGGTCTCCGACGACGGTCGCGGCGCCGCGGCCGGGACGGGTCGGGCGGGCTACGGCCTGCTGGGGATGCGGGAGCGGGCGGCGATGTTCGGCGGCACCGTGACCGCGGGCCCCCGTCCTGGTGGCGGCTGGCGGGTACGGTTCACGATGCCGCTGCCGTCGGGTCCGACCGACGGGCCCGCACCCACCCCCGAGGAGCCCGCATGAMTWFARATRWLESHRFAVDATGAALFALAAAVLAADAVGYASGERLAPTLWSVALAVPLAWRRTRPVVSAVAVYAVALVHLVTGYPLLLPGDLAVLVALYSVTVYGPRWAHLTAIAATGVGCLAFVAVTAWSFAGAGFGTSFADLLPSAVFLGAIALAVWAFGLTRRYRRVTVEALRDRAGRLEVERDQQARIATAAERARIAREMHDIVAHSLSIVVAQADGGRYAAADDPQAAVRSLGVISETGRAALADMRRLLGVLRDDDGAPAPHPAAAGVAISAAPRPDAPPGPASHPAPDPATGATVLAGGPPSSGAAPLTPQPDDADLESLTAQARAAGSRVSLVRVGTPRRLPPGAGLTLHRVAQEALSNVRKHAGPGPGVTVVERWQPEAVVLEVSDDGRGAAAGTGRAGYGLLGMRERAAMFGGTVTAGPRPGGGWRVRFTMPLPSGPTDGPAPTPEEPANANANANANA
AK018_02774690degU_1COG2197Transcriptional regulatory protein DegUATGAGCGAGACCCGCCCCGGCCCGGTGCGGGTCGCGCTCGTCGACGACCAGCAGCTCGTGCGCGCCGGGTTCCGCATGGTCATCGACTCCCAGCCCGACCTGACCGTCGCCGTCGAGGCCTCCGACGGCGCCCAGGCGCTGCGGCTGCTCGCCGACCACCCGGTCGACGTGGTCCTCATGGACGTGCGCATGCCCACCATGGACGGCCTGACCGCGACGTCGCACCTGACCGCCGCGCCCGACGCGCCGCGCGTCGTCGTGCTGACCACCTTCGACCTGGACGAGTACGTCCTCGAGGCGATCCGGGCCGGCGCCTCGGGGTTCCTGCTCAAGGACGCCCCGCCGGAGGAGATGCTGGCGGCGGTGCGCACCGTCCACCGCGGCGACGCCGTCATCGCGCCGTCCTCGACGCGGCGGCTGCTGGAGCACCTGGTCACCGCGCTGCCGACGTCAGCCCCGGCCACCGACCCCCGGCACACGGCGCTGACCGGGCTCACCGACCGCGAGCGCGAGGTGCTCGTCCTCATGGCCCGCGGGCTGTCCAACGGGGAGATCGCGGCCGAGCTGTTCGTCGCGGAGGCGACGGTCAAGACGCACGTGGGCCGGGTCTTGGCCAAGCTGGACGCCCGCGACCGCGTGCAGGCCGTCGTCGTCGCCTACGAGACGGGCCTGGTCCGCCCGGGCGGCTGAMSETRPGPVRVALVDDQQLVRAGFRMVIDSQPDLTVAVEASDGAQALRLLADHPVDVVLMDVRMPTMDGLTATSHLTAAPDAPRVVVLTTFDLDEYVLEAIRAGASGFLLKDAPPEEMLAAVRTVHRGDAVIAPSSTRRLLEHLVTALPTSAPATDPRHTALTGLTDREREVLVLMARGLSNGEIAAELFVAEATVKTHVGRVLAKLDARDRVQAVVVAYETGLVRPGGPGPT0014870_135DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
AK018_02775678hypothetical proteinGTGAGCATCCCCACGACGGCCACCGAGCCGCGCTTCGTCGAGCCGGACGGTGCACCCGTGGCGTTCCGTGCGGCGCGGGACGTCCTCGTCGGGCTCGCGTCCGGTGCCGGTGCGACGCTCGGGCTGGTCGTGGTCGTCGGCCTCGTCGTGGAGGAGGTGCTCGTCGGTCATGCCCTCGCCCCGGCGCTGGACCTGCTCGCGCGGCGCGGTGGCGCCGTCGTCCTCGCCCTGGGTGCGCTCCTGGTCGTCGGCTGGCCCCTGGTCGGAGCGCTGGAGCGTGCCGTGCTGCTGCGCCGGCTCGAGCGACGCCTGGAGGCGGACCCCCGGGCGGTGGCGCTCGGCTCCGTCGTCGAACGGGTCGCGACGGCCCCGTCCCACGTCGTCGGACGGCTGGTCGCGTTCCTCGGCGTCGCCGCGGCGGGGCTGGGGGTCGTCCTGGCGTTCGTGGCGATGTCGGGCGCCGACGAGACGACCCTGCCGCTGCTGGGCTTCGCGTCCGTCGTCGTGCTGTGGCTCGCCGTGCGCGTCCCGCTGCGGCGTGCGACCGGGCGCTGGGAGGCGCGGGTCGACGAGTTCCGCCGGCGGCGCGACCGGTGGGCCGAGGCCGCGCGGACGTCGCTGGAGCGGCGTCGCCGCGAGGCGCCCCAGGATCCGGGCCCGCAGCGTCGTGCGCCCTGAMSIPTTATEPRFVEPDGAPVAFRAARDVLVGLASGAGATLGLVVVVGLVVEEVLVGHALAPALDLLARRGGAVVLALGALLVVGWPLVGALERAVLLRRLERRLEADPRAVALGSVVERVATAPSHVVGRLVAFLGVAAAGLGVVLAFVAMSGADETTLPLLGFASVVVLWLAVRVPLRRATGRWEARVDEFRRRRDRWAEAARTSLERRRREAPQDPGPQRRAPNANANANANA
AK018_02776555hypothetical proteinGTGCTGCAGGTCCTCGCGGTGGCGCTGTGGTTCGCGCCGGTCCGGGTGCGCTACCGGTGCCGCACCTGCGAGCCGCGCACGTTCGGACCGGTCGGCGAGGAGCGCATGGACGCCCTGACCGTCGGCACGACGGCGTTCCTCGCGGTGGCGACCGTGCTCCTGGTCCTGGTCCTCGCCGCACGCCTGCTCGACCGGGTCCGCCAAGACCGCGTCGTCGCACGCTGGGCCACGACCGGACCGTGGGACGTCCCGGACGCCGTCGCCGAGGACCTGCTGGGACGCCGTGCGGCCACCTCGACCTCCGTCCGCGTCCTGGCCGGCCTCTGCCCGCTCGTGCTCACCGTCCTGGTCGCCGCGACCGACCCGGACCTTGCGCTCCCGCTACCGGCGCCGGTGTGGGCCGCTGCCCTGCCCGCCGTGGCGCTGGGGCTCGCGCTGGTCACCGCGCCCGGCGCGCACCGGCGTCGTGCCGCGCTGCGGCACTCGCTCCTCGCCGGCGACGACGTGACCCCGCAGGCCGACGTCGACCCCGAGGACGCCCGGACCGGCGACTGAMLQVLAVALWFAPVRVRYRCRTCEPRTFGPVGEERMDALTVGTTAFLAVATVLLVLVLAARLLDRVRQDRVVARWATTGPWDVPDAVAEDLLGRRAATSTSVRVLAGLCPLVLTVLVAATDPDLALPLPAPVWAAALPAVALGLALVTAPGAHRRRAALRHSLLAGDDVTPQADVDPEDARTGDNANANANANA
AK018_02777837btuD_12Vitamin B12 import ATP-binding protein BtuDGTGGACACCACCGTGTTCGTGCCCGTCGACGACGCCACCGGCGCCGCCGCACCCGACGCGACGCCCGCCGTGCGGGCCCGTGCCCTGACCAAGACCTACGGCCGCGGCCAGGCGCAGGTGCGCGCCCTGGACGGCGTGGACGTCGACTTCGACGCCGGCCGCTTCACCGCGATCATGGGCCCCTCGGGCTCGGGCAAGTCGACGCTCATGCACCTGCTGGCGGGGCTGGACAGCGCCACGAGCGGACAGGCCTTCCTCGGGTCCACGGACGTGACCGCGCTCGGCGACAAGGCGCTGACGCGGTTGCGGCGCGACCGCGTCGGGTTCGTCTTCCAGCAGTTCAACCTGCTGCCGATGTTCACCGCCGAGCAGAACATCACCCTGCCCGTGGAGCTCGCCGGCGGCAGCGTGGACCGCGCCTGGTTCGACACGCTGGTCACCACCCTCGGACTGTCGCAGCGGCTGACCCACCGCCCCAGCGAGCTGTCCGGCGGGCAGCAGCAGCGTGTCGCCATCGCCCGAGCGCTCATCGCCCAGCCGGAGGTCGTCTTCGCCGACGAGCCCACCGGCAACCTGGACTCGCGCGCCGGGGTCGAGGTGCTCAGCTTCCTGCGCCGGTCCGTGCGCGAGCTGGGCCGGACCGTCATCATGGTCACCCACGACCCGACCGCCGCCGCGTACGCGGACCGGGTGGTCCTCATCGCCGACGGGCGGATCGCCGGGGAGATCTCCGACCCGACACCGGAGGCCGTGCTGGCCGGCCTGGACGCGCTGCGCTCGCTCGAGGCCCCCGTGGCCGGGACGGTGGCCGACGGCGGCACCCGGGCGGGTGCCTGAMDTTVFVPVDDATGAAAPDATPAVRARALTKTYGRGQAQVRALDGVDVDFDAGRFTAIMGPSGSGKSTLMHLLAGLDSATSGQAFLGSTDVTALGDKALTRLRRDRVGFVFQQFNLLPMFTAEQNITLPVELAGGSVDRAWFDTLVTTLGLSQRLTHRPSELSGGQQQRVAIARALIAQPEVVFADEPTGNLDSRAGVEVLSFLRRSVRELGRTVIMVTHDPTAAAYADRVVLIADGRIAGEISDPTPEAVLAGLDALRSLEAPVAGTVADGGTRAGAPGPT0013345_1344DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_027782559hypothetical proteinATGCTGCGGATCACCCTGGCCCAGATGCGGCGCAGCGCCGGGCGGCTCACCGCCGCCGGCGTGGCGATCGTCATCGGCACCGCGTTCGTCGCGGCCACCCTGCTGGCCTCCGGCGTCATCACCCGCATGACGTACGACTCCATCGCCGCGCAGTACGGCGACGCCGACCTGGTGGTCGGGGCCACCGAGGACGCCCCGCTCGACGTCGACGCGCTCGCCGCGACGGACGGGGTCGCGGCCGTCGCCCCGGTGACCTCCACCTACGCCCAGCTGACCAACGGGGCACGGTCGGTCTACCAGAGCGTCGTGCCTACGGCCGACGACCGGCTGATGCCCCTCGAGGTGACCGAGGGCGCCATGCCCGCCGGACGCGACGAGATCGCCCTGCCGGCCGACGTCGCCGAACGGCTCGACGTCACCGTCGGGGACACCGTCGACGTGAACCGTGACGTCGTCGGCGACGACGGCTCGTGGCAGCAGGTCACCGAGACGCCGACCGTCGTCGGGCTGCTGGACGACCCCTTCGGGGCGTACTCCCAGACCGGCGGTGCCGCCGTCGTCGACGCCTCGACGTACACGACGTGGCAGACCGAGGCCCGGGGCGAGCCCGTGCCCGTGACGGAGGCCGCCGTGATCGTGGCGGACGGTGCGGACCTGGCGGCGACGCAGTCCGCCCTCGCCGGGGCGATCGACGGGGCGACCAGCACGGACAGCTCTCCGTGGGTGGTCACCACCGACGAGCGGGCGGCCGGGTCCGCCGCTGAGCTCACCGGCGGCCAGGACCTGATGTTCCTCGTCTTCGTCCTGACGTTCGCCGCGATCGCGCTGGTCGTGGCCGGACTGGTCATCGCGAACACCTTCCAGGTGCTGGTGGCCCAGCGGGCCCGCACGCTCGCGCTGCTGCGCTGCGTCGGCGCCGACAAGGCTCAGGTCGGCCGCGGCGTCCTCGTCGAGGCCGGGATCCTCGGGCTGATCGCCTCCGTCGCCGGTGTGCTGCTCGGCACCGCGCTCGGCCAGGCCGCGCTCTGGGTCGCCCACGCCATGGACGTGCCCGTCCCCCTGCCGGACACGGTGACGCTCACCTGGCAGGTCGTGGTGATCCCGGTCCTGGTCGGCACGCTGGTCACCGTCGGCGCCGCCGTCGTCCCGGCCCGAGTCGCCACCCGGGTGGCACCGCTGGCCGCGCTGCGACCGGCGGCGTCCCCCTCGACGTCGCGGCGCGCCGGGAAGGTCCGCCTGGTGCTGTCGCTGCTGGCGGCGGTCGTCGGGTTCGCCCTGCTCGGCGGGGGTGCCGCGCTGGGCACGCTTGGGCAGGAACCGACGCTCGGCCTGCTGGCCGGGATCGCCGGCGGTGCCCTGTCGTTCGTCGGCGTCGCCGTCGGTGCCGTGTTCTGGCTGCCGAAGGTCGCCGCCGCGGCCGGGCGTCTGGTCGGTGCCTCCGGCCCGACCGCGCGGCTCGCGGCCGCGAACACGCTGCGGAACCCGCGGCGCACGGCCACCACCAGCACGGCACTGCTCATCGGCGTCACGCTCGTGGCGATGATGTCCACGGGAGCCGCGAGCGCCCGGGTGTCGCTGACCGCGGCCCTCGACGAGCAGTTCCCGGTGGACGTGATGGTCGCGAGCACGTCGTGGGACGCGGACGGTGCGCCGGCGGCCCTGTCGGACGGCTTGCGGGCCGACGTGGCCGGCGTGGACGGCGTGACCGCCGTCGCGGACACGGCGGAGGTGACACTGGGGCTGCCGGACGACGACGTCGCCACGTTCACGGCGCTCGACCCCGGGCTCGCGGCCGACGTCGTCAACTCCCCCGAGCTCCTGGACGGGCTGGCGCCCGGCACGGTGGTGGTCGGCTCCGACCAGGCGGACCTCCTCGGGGTGACCGAGAGGCCGCTCGAGCTGACCGGGCCGGACGGCTCCGCGGTGCTCGACGTCGTCGTCAGCGAGTCGGCTCCCTTCACGAGCTTCATCGCGCTGTCCGACGTGGCGGGGCTCGACGACGAGGCCGCGGTCTCCGGGCAGTACGTCGCTCTGGACGACGACGTGGACGCCGTGGCCGCCGTCGGCGCGGTCCAGGACGTGGTCGCGGACTCCGGGGAGTCGGCGCAGGTGACGGGCATCGCGTCGCAGCGCGCCATGTTCGACCAGGTGATCGACACGATGCTGGGCATCGTCCTCGGGCTGCTCGCGGTGGCCGTGGTGATCGCGCTGATCGGCGTGGCCAACACGCTGTCGCTGTCGGTGCTCGAACGGCGTCGCGAGTCGGCGACCCTGCGGGCGATCGGGCTGTCCAGGGCGCAGCTGCGCGGCATGCTCGCGGTCGAGGGCCTGCTCATCGCGGGTGTCGGCGCCGTGCTCGGCGTGGTGCTCGGTCTGGTGTACGGGTGGGCCGGCGCCGCCGCGGCGCTGGGCGTCATGGGTGACGTGACGCTCTCGGTGCCGTGGCGGGACGTGGTGCTGGTGCTGCTGGTGGCGCTGGTGGCGGGGCTGGTCGCCTCGGTGGCCCCGGCGCGGACCGCGCTGAAGGCCTCTCCGGTGGAGGCGCTCGCCACCGAGTAGMLRITLAQMRRSAGRLTAAGVAIVIGTAFVAATLLASGVITRMTYDSIAAQYGDADLVVGATEDAPLDVDALAATDGVAAVAPVTSTYAQLTNGARSVYQSVVPTADDRLMPLEVTEGAMPAGRDEIALPADVAERLDVTVGDTVDVNRDVVGDDGSWQQVTETPTVVGLLDDPFGAYSQTGGAAVVDASTYTTWQTEARGEPVPVTEAAVIVADGADLAATQSALAGAIDGATSTDSSPWVVTTDERAAGSAAELTGGQDLMFLVFVLTFAAIALVVAGLVIANTFQVLVAQRARTLALLRCVGADKAQVGRGVLVEAGILGLIASVAGVLLGTALGQAALWVAHAMDVPVPLPDTVTLTWQVVVIPVLVGTLVTVGAAVVPARVATRVAPLAALRPAASPSTSRRAGKVRLVLSLLAAVVGFALLGGGAALGTLGQEPTLGLLAGIAGGALSFVGVAVGAVFWLPKVAAAAGRLVGASGPTARLAAANTLRNPRRTATTSTALLIGVTLVAMMSTGAASARVSLTAALDEQFPVDVMVASTSWDADGAPAALSDGLRADVAGVDGVTAVADTAEVTLGLPDDDVATFTALDPGLAADVVNSPELLDGLAPGTVVVGSDQADLLGVTERPLELTGPDGSAVLDVVVSESAPFTSFIALSDVAGLDDEAAVSGQYVALDDDVDAVAAVGAVQDVVADSGESAQVTGIASQRAMFDQVIDTMLGIVLGLLAVAVVIALIGVANTLSLSVLERRRESATLRAIGLSRAQLRGMLAVEGLLIAGVGAVLGVVLGLVYGWAGAAAALGVMGDVTLSVPWRDVVLVLLVALVAGLVASVAPARTALKASPVEALATEPGPT0013350_2747DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
AK018_02780438hypothetical proteinATGCCCGGTCCGCACGTCGCCGAACCGGCACCGGACGCCCCTTCCGGGGGTGACGGTGGCCGGCCGCCCGCCGCAGTCGTCGCGCTGCTCGCGGGCGTCCTGCTCGAGGCCGTGGCACTCGCCGTCTTCGCCGGTGCCGTCGTCGTCGACCTGATGCGCGGCGCCACCGCCGGCGTCGGGGTCAGCCTGTTCGTGATCGCGTTCTTCGCGGGTCTGGCCTGGATGCTGGTCGCGGCCGCCCGGGCGCTGTGGCGCGGCCGTCGTGGTGGCCGCGCGCCGGTGGCCGGATGGCAGGTGTTCCAGGGGTTGATCGGCGTCGCGCTCCTGACCGGCGGAGCGGCGTGGGCGGTCGCGGCCGGAGCCGTGGCGCTGGCGCTCGCGGTCGGGATCCTGGTCGGGCTGATGACCCGCCCGCTGGTCCGGCACACGATCGGCTGAMPGPHVAEPAPDAPSGGDGGRPPAAVVALLAGVLLEAVALAVFAGAVVVDLMRGATAGVGVSLFVIAFFAGLAWMLVAAARALWRGRRGGRAPVAGWQVFQGLIGVALLTGGAAWAVAAGAVALALAVGILVGLMTRPLVRHTIGNANANANANA
AK018_02781249whiB1_2Transcriptional regulator WhiB1ATGGACTGGCGTCACAAGGCTGCCTGCCTCGAGGAGGACCCCGAGCTCTTCTTCCCCATCGGCAACACCGGCCCGGCCCTCATGCAGATCGAGGAGGCCAAGGCCGTCTGCCGCCGGTGCGACGTGGTCGACACGTGCCTGAAGTGGGCGATGGAGTCCGGTCAGGACGCCGGCGTCTGGGGCGGCATGAGCGAGGACGAGCGCCGCGCGCTCAAGCGCCGCACCGCGCGCGCCCGCCGCGCCGGCTGAMDWRHKAACLEEDPELFFPIGNTGPALMQIEEAKAVCRRCDVVDTCLKWAMESGQDAGVWGGMSEDERRALKRRTARARRAGNANANANANA
AK018_027821476pdtaS_2COG3920putative sensor histidine kinase pdtaSATGAGTGACCTGATCGCCGAGCACACCGACCTCCCGCCCGGGGACGTGGAGTGGCTCCACCTGCTGGTCGGCGACTGGCAGATCGTCTCCGACCTCGCCTTCGCCGACCTCGTGCTGTGGCTGCCGACCGACGACGGCGGGTTCGTCGCCGTCGCGCAGTGCCGTCCCAGCACCGGGGCCACCGTGCACTACGACGACGTCGTGGGTTCGCTGGCACCGGAGGGGCAGCGTCCGCAGCTCGTCGCCGCGATGACCGAGGGCCGCGCGCAACGGTCCCGCGAGCCGCGGTGGTTCGGTGCGTACGCGGTGCGGGAGGAGGCCGTCCCGGTGGTGCACGAGGGCCGGGCCGTAGCCGTCGTCGCGCGGCAGACGAACCTCGGCTCGGGGCGGACCCCCAGCCGGCTCGAGCTGAACTACGTGGAGTCGGCGGACGACCTGCTCGCCATGATCGGACGCGGGGAGTACCCCTCGCCCAACGCCGCCACCGGACCGCGCCGCGGAGCACCCCGCGTGGGCGACGGGCTCATCCGCCTCAACTCCGAGGGCGAGGTGCTCTACGCCAGCCCCAACGCCCTGTCCTGCTTCCACCGGCTCGGCGTCATCGGCCCGCTCGTCGGACAGTCGCTCGTCGAGGTCACCGCCGGGATCGTCGAGCAGCAGAACACGGTCGACGAGTCGCTGCCCCTGGTCGTCATGGGGCGCGCGCCGTGGCGCACCGACATCGAGGCGGGCCGCGTCGCGCTGTCGCTGCGCGCGCTGCCGCTGACCGACCACGGCCAGCGCATCGGTGCCGTCCTGCTCTGCCGCGACGTCTCGGAGCTGCGGCGTCGTGAGCGCGAGCTCATGACCAAGGACGCCACGATCCGCGAGATCCACCACCGGGTGAAGAACAACCTCGCGACCGTCGCCGCCCTGCTGCGCCTGCAGGCCCGGCGGATGGACGTCCCCGAGGCGCGGGCGGCACTGGAGGAGGCGATGCGACGCGTCGCCACCATCTCCCTGGTGCACGAGTCGCTGTCGCAGACGATCGACGAGCAGGTCGAGCTCGACGACATGCTCAAGCGGGCGCTGCGGATGGCCGCCGACGTCGCCTCGACGCGCACCCAGGTCAGCACCCGGCAGAGCGGCTCGTTCGGCATGATCCCCGCCCAGGACGCCACGCCGCTGGCGCTCGTGCTCACCGAGCTGGTGACCAACGCCGTCGAGCACGCGTTCCCCGACCGCGAGGCGGGCATGGTGTCCATCGACGTCACGCGGACGGGCCAGGACCTGCGGGTGGTCGTCGCCGACGACGGCGTGGGGATGCGCGAGGGGATCGAGGAGCTGGGCCGTGCCTCCCGCAGCGGGCTCGGGTCCCAGATCGTCAAGACGCTCGTGGTCAACGAGCTGCGGGGGTCCATCGACTGGCAGCCCCGCGAGGGCGGCGGCACCGAGGTCGTGCTCGACGTCCGACTGCGCGAGGACTCCGGTCGCTGAMSDLIAEHTDLPPGDVEWLHLLVGDWQIVSDLAFADLVLWLPTDDGGFVAVAQCRPSTGATVHYDDVVGSLAPEGQRPQLVAAMTEGRAQRSREPRWFGAYAVREEAVPVVHEGRAVAVVARQTNLGSGRTPSRLELNYVESADDLLAMIGRGEYPSPNAATGPRRGAPRVGDGLIRLNSEGEVLYASPNALSCFHRLGVIGPLVGQSLVEVTAGIVEQQNTVDESLPLVVMGRAPWRTDIEAGRVALSLRALPLTDHGQRIGAVLLCRDVSELRRRERELMTKDATIREIHHRVKNNLATVAALLRLQARRMDVPEARAALEEAMRRVATISLVHESLSQTIDEQVELDDMLKRALRMAADVASTRTQVSTRQSGSFGMIPAQDATPLALVLTELVTNAVEHAFPDREAGMVSIDVTRTGQDLRVVVADDGVGMREGIEELGRASRSGLGSQIVKTLVVNELRGSIDWQPREGGGTEVVLDVRLREDSGRNANANANANA
AK018_02783501hypothetical proteinGTGCACCTGACGGTGGAGCTGACCTACCCGGCGGACGTCGCCGACGTCGCCGCCCTGCTCAGCGACCCCGACTTCGTGCGCTGGCGAGCCGGACGCCCGGGTGCCGGGTCCGTCTCCCGGGTCGACGTCACCGGCGACCCGACCTCCGGGTTCACCGTCTCCCTGCGCCGGACGCTGACGACGGACGCCATCCCCGCTCAGGTGCGTCCGTTCGTCGGCGAGTGCCTGGAGATCCGTCAGACCGAGGCGTGGGAGGCCGCGGGGTCGGGACGCCACGTCGGGACCGTCGTCGTCGAGATCACCGGCGCCCCCGTGCGCATGACCGGCACCCTCGTCCTGGAGCCGCACCCGCAGGGCGGGTGCCGGCAGGTGTACACCGGAGAGCTGCGCGCCTCGGTGCCGCTCTTCGCGGCCGCCGTGGAGGAGGCTGCGGCGGGAGCCGTGCGGCGCACCCTGGAGTCGGAGGAGCAGTCCTTGCGCGACTGGCTCGCCGGCGCCTGAMHLTVELTYPADVADVAALLSDPDFVRWRAGRPGAGSVSRVDVTGDPTSGFTVSLRRTLTTDAIPAQVRPFVGECLEIRQTEAWEAAGSGRHVGTVVVEITGAPVRMTGTLVLEPHPQGGCRQVYTGELRASVPLFAAAVEEAAAGAVRRTLESEEQSLRDWLAGANANANANANA
AK018_027841338hypothetical proteinGTGCTCAGCAGCACCAGCCCCCGCCGGAATCGTCGCTTCGTCGCGGCGAGCGCCGGCATCGCGTCCCTCGCTCTCGTCCTCGGCGCCTGTGGCAGCGGGGACGAGCCCGCGGACGAGGAGACCGCCGCCGAGGAAGGCGGCAGCACCGACGAGGAGATCACCCTCACGGTCGCCACCTTCAACAACTTCGGCTACACCGACGAGCTGCTCGCCCAGTACACCGAGGAGCACCCGAACGTCACCGTCGAGCACGTCACGGCCGCGCAGGCCGAGGACGCCCGGACGAACCTGTCGACCAAGCTCGCCGCCGGCGGCGAGGGCCTGGCCGACATCGAGGCCGTCGAGGTCGACTGGCTCGCCGAGTTCATGCAGTACCCCGAGCTGTTCGCCGAGATGCCGGCCATCGACGGCCGCTGGGTGGACTGGAAGGTCGAGCAGGCCACCACGCAGGACGGCAAGCTCATCGGCTACGGCACCGACATCGGCCCGGAGGCCATCTGCTACCGCTCCGACCTGCTCGAGGCTGCGGGCCTGCCGTCCGAGCGCGAGGAGGTCGCCGAGTGGATCGGCGGCGACGGCGCCACCTGGGAGTCCTACTTCGACGCCGGCAAGGAGTACGTCGAGGCCACCGGCAACGCCTGGTTCGACGGCGCGGTCGCCACCTACCAGGGCATGATCAACCAGGTCGAGGCCGCCTACGAGGACCCCAGCACGGGTGAGCCGAAGGACCTGGCCTCCAACACCGAGGTGCAGGACCTGTACAACCAGGTCGTCACCGCCTCGGTCGACGACGAGCTGTCCGCCGGCCTGGAGCAGTGGGGCGACGACTGGTCGGCCGGCTTCCAGAACGACGCCTTCGCCACCATGCTCTGCCCGGCCTGGATGACCGGGCCGATCGAGCAGAACGCCGGTGGCGTCGAGGGCTGGGACGTCGCCGACGTCTTCCCCGGCGGTGGTGGCAACTGGGGCGGTTCGTTCCTGACCGTCCCGGCCTCCGGCGAGAACGTCGAGGCTGCCCAGGAGCTCGCCGACTGGCTGACCTCGCCCGAGATCCAGACCCAGGCCTTCGTCGAGGCGGGCACCTTCCCGTCGCAGGTCGACGCGCAGGAGTCCGAGGAGGTCCAGTCCTTCACGAACGACTTCATGAGCGGCGCCCCGGTCGGCTCGATCTTCTCGTCGCGGGCCCAGGCCATCGACGGTGCGGTCTACAAGGGGCCGAACTACTTCGCGATCCACCAGGAGGTCCAGAACGGTCTCAACCGAGTCGACCTCAACGGTGAGGACCCGGACGCGTCGTGGGAGACCACGCTGTCGTCCGTCAACGAGCTGGGTCTCTGAMLSSTSPRRNRRFVAASAGIASLALVLGACGSGDEPADEETAAEEGGSTDEEITLTVATFNNFGYTDELLAQYTEEHPNVTVEHVTAAQAEDARTNLSTKLAAGGEGLADIEAVEVDWLAEFMQYPELFAEMPAIDGRWVDWKVEQATTQDGKLIGYGTDIGPEAICYRSDLLEAAGLPSEREEVAEWIGGDGATWESYFDAGKEYVEATGNAWFDGAVATYQGMINQVEAAYEDPSTGEPKDLASNTEVQDLYNQVVTASVDDELSAGLEQWGDDWSAGFQNDAFATMLCPAWMTGPIEQNAGGVEGWDVADVFPGGGGNWGGSFLTVPASGENVEAAQELADWLTSPEIQTQAFVEAGTFPSQVDAQESEEVQSFTNDFMSGAPVGSIFSSRAQAIDGAVYKGPNYFAIHQEVQNGLNRVDLNGEDPDASWETTLSSVNELGLPGPT0016430_181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016430-cebE-K10240NANA
AK018_02786459COG1959Putative HTH-type transcriptional regulatorGTGAGGGTCTCGGCGAAGGCGGACTATGCCGTCCGAGCGACGATCGAGCTGGCCGCCTCGGACGTGGCCGGACCCGTCCCCGCGGAGTCCCTGGCCCAGGCGCAGCAGATCCCGCACCGCTTCCTCGAGGCGATCCTGCGCGATCTGCGCCGCGAGGGCATCGTGGCGAGCCGTCGCGGCGCCGGTGGCGGATACGTGCTGGCCCGGCCGGCTCGGGAGGTGACCGTGGCGGACATCGTGCGGGCCGTCGACGGGCCGCTCGTCTTCGTCCGTGACGAGAGGCCCTCCGACCTCGACTACGAGGGTGCGGCGTCAGCACTGCTGGACGTCTGGGTCGCTCTGCGCGTCAACGTGCGTGCCGTGCTCGAGGACGTGACGGTGGCCGATCTCGCGCGCGGGACCGTGCCGCACGCGGTCCAGGAGCTGACCGACGCCGAGGGCGCCTGGCACAACCCCTGAMRVSAKADYAVRATIELAASDVAGPVPAESLAQAQQIPHRFLEAILRDLRREGIVASRRGAGGGYVLARPAREVTVADIVRAVDGPLVFVRDERPSDLDYEGAASALLDVWVALRVNVRAVLEDVTVADLARGTVPHAVQELTDAEGAWHNPPGPT0004960_1921DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-ANTIMONY_HOMEOSTASIS,PGPT0004960-iscR-K13643NANA
AK018_02787918hypothetical proteinGTGCGGACGTTGATTCTTCTGGCCCTGGTGGGCCTCGGCGCGCAGCTCGTCGACGGGAGCCTGGGCATGGCCTACGGCGTCACCTCGACCACCCTGCTGCTGGCCATCGGCACCAACCCCGCGGCGGCCTCGGCCACGGTCCATCTCGCCGAGATCGGGACCACGCTCGCCTCGGGTGCCTCCCACTGGCGGTTCGGCAACGTCGACTGGCGCGTGGTCCTGCGCATCGGCGTTCCTGGCGCGGTCGGTGCGTTTGCCGGCGCGACCTTCCTGTCGTGGTTGTCCACCGAGATCGCCAAGCCGCTGATGTCGATCCTCCTGCTCGGCCTGGGCGTCTACGTCCTCGTGCGCTTCACCGTCCGGGGCCTGCGGACCGATCGGCTGGGCCAGCCGCTGCGCAAGCGGTTCCTCACCCCGCTCGGCCTCGTGGCCGGGTTCATGGATGCCACCGGTGGTGGCGGGTGGGGGCCCGTGGGCACGCCGGCGATCCTCGCGAGCGGGCGGATGGAGCCGCGCAAGGTGGTCGGATCGATCGACACAAGCGAGTTCTTCGTCGCGGTGGCCGCCAGCCTGGGCTTCCTCGTCGGCCTCGGGACGGCCGGCGTGGACCCCGCGTGGGCACTGGCGCTGCTCGCCGGCGGCCTGGTGGCGGCGCCGATCGCGGCGTGGATCGTCCGACTCGTCCCGCCGCGCGTCCTGGGCTCGGCCGTCGGCGGCGTCATCGTCCTCACCAACGCGCGCACGTTGCTCGGCACCGTCGAGGCGTCCGCGACGTGGACGACGGCGGTCCTCGGGCTGATCGTTCTGGTCTGGGCGGCGGCGGTGGTGTGGTCCGTGCGCGCGCACCGCAGGGAGCGCGCCGGTCTCCTGGCCGGCGCGACCTCGCAGGTGGAGGGCGCGGGTACGGCGCGGGGGTGAMRTLILLALVGLGAQLVDGSLGMAYGVTSTTLLLAIGTNPAAASATVHLAEIGTTLASGASHWRFGNVDWRVVLRIGVPGAVGAFAGATFLSWLSTEIAKPLMSILLLGLGVYVLVRFTVRGLRTDRLGQPLRKRFLTPLGLVAGFMDATGGGGWGPVGTPAILASGRMEPRKVVGSIDTSEFFVAVAASLGFLVGLGTAGVDPAWALALLAGGLVAAPIAAWIVRLVPPRVLGSAVGGVIVLTNARTLLGTVEASATWTTAVLGLIVLVWAAAVVWSVRAHRRERAGLLAGATSQVEGAGTARGNANANANANA
AK018_02788732hypothetical proteinATGAGCGCGCCGACGTCGTCGCACAGGGGCACGAGGTCGACCACGGTATCCGGCATCGCCGAGTCCCTGGCCGTGGGCGCCCAGCTCGTGGTGGGGCGCTATCGCGTCGACGTCGGCTCCGGCCGGCTCTGGTGGTCGGACGAGGTCTACCGGATGCACGGCCGCGAGCCGGGCGAGGGTGAGCCCACCATCGACGGGCTACGGTCCCGGATCCACCCCGACGACCGCGCGAGGTTGTCACGGACGGCCGCGGTGGCGCTGCGCGCCGGACGTCCTTTCAGCAGCGGATACCGGATCGTGGATCCGCACGGCAAGTCACGGACCGTCGTCGTCACGGGTGAGGGGCAGCACGACGCGACCGGGGACCTCACCCACGTGGCGGGCTACGTGCTGGACGTCAGTCCGCTGACGCGCGAGGCGCTCGACCGGGAGGCGCAGCGGGCGGTGGGCCGGGCCATGGTCGGCGCGGCCTCGGTCGAGCAGGCCAAGGGCGCGCTGATGGCGGTCCGGGGCGTCGACGAGTCCACCGCCGACGAGGTGCTGGGCGAGGTCGCCACCCGCGCCGGCGTGCCGTTGCAGACGGCGGCCGCGCAGGTCGTGGCCGGGCTGTGCGACGGCGGGGCCGACCCGGTGGAGCGGATCGAGGGCGCGCTGGGCGCCGTGCACGCCGTGGACCGGCCCCGGGGGCACGAGGCCCAGCTCGCCCGGCGCAGGCAGCGCGACCGCGGCTGAMSAPTSSHRGTRSTTVSGIAESLAVGAQLVVGRYRVDVGSGRLWWSDEVYRMHGREPGEGEPTIDGLRSRIHPDDRARLSRTAAVALRAGRPFSSGYRIVDPHGKSRTVVVTGEGQHDATGDLTHVAGYVLDVSPLTREALDREAQRAVGRAMVGAASVEQAKGALMAVRGVDESTADEVLGEVATRAGVPLQTAAAQVVAGLCDGGADPVERIEGALGAVHAVDRPRGHEAQLARRRQRDRGNANANANANA
AK018_02789279hypothetical proteinATGTCCGAGCACTCCGAGCCGTCGTTGGCCGTCAAGGTCGCCACCATGGGCGCGACCCTCGCCGCCGGATGGGTCGCCCAGAAGCTGATCAAGACGATCTGGGAGAAGGCCACCGGCAGCGACGCGCCCATCGACCTCGACGCGGACGACATCCCCGTCGTCCAGGCGATCACGTTCGCCGCGGTCACCGGTGGCGTGGCCGTCCTGGCCCGTCGCCTCGCCCGTCAGGGCGTCGCGAAGGCCGTGGACCGCCGCGCCGAGAAGGTCTCGGTCGTCTGAMSEHSEPSLAVKVATMGATLAAGWVAQKLIKTIWEKATGSDAPIDLDADDIPVVQAITFAAVTGGVAVLARRLARQGVAKAVDRRAEKVSVVNANANANANA
AK018_027911095thiB_1COG4143Thiamine-binding periplasmic proteinATGACCATCCGGACCCGTCGGACCGCGGCGATCGCCGCTGTCGGACTGCTGCCGCTGCTCGCCGCCTGCACCGGTGACGACGCCCCGGGGGAGCAGCAGAACACCCCGGTGCCCGCCGAGAGCGGGGAGGCCGAGCTCTCCGGCACGGTGACCCTCGTGACCCACGACTCCTTCGCGCTGGGCGACGGGACGCTCGCCTCGTTCGAGGAGGAGACCGGGCTCACGGTCGAACACGTCGCGGCGGGCGACGCGGGCACGCTGGTGAACCAGCTGGTGCTGACCGCGGACTCGCCGCTCGGCGACGTCGTGTACGGCGTGGACAACACGTTCGCGTCCCGTGCCGTGGCCGCCGACGTCTTCGAGCCGTACCAGCCGGAAGGGCTGGACGACTCGGTGACCGACCTGGTCGGCGCGGGGCTCGAGGGCCTCACCCCGATCGACAAGGGCGACGTCTGCCTGAACGTGGACACCGCGTGGTTCGAGGACCAGGGCGTCGAGCCGCCGTCGACGTTCGAGGACCTGACGGACCCGCGGTACGCGGACCTGACGGTCGTGACCAACCCGGCGACGTCGTCCCCGGGCTTCGCGATGCTGCTCGCCACGGTCGACGCGTTCGGCGAGGACGGCTGGGAGCAGTACTGGGCCGACCTGTCCGCGAACGGGCTGAAGGTGACCGACGGCTGGTCGGACGCCTACTACGCCGACTTCTCCGGGGCGGGCGAGGGTGGCGAGCGACCGGTCGTGCTGTCGTACGCGACCTCGCCGGCCTTCACGGTCACGGAGGACGGCAGCGAGTCGACGACGGCGGCGCTGCTGGACACGTGCTTCCGTCAGGTGGAGTACGCGGGCGTCCTGGCGGGCACCGACAACCCGGACGGGGCGCGGGCGCTGGTCGACTTCCTCTCCTCGCCGGAGGTGCAGGCCGACATCCCGGCGAACATGTACATGTACCCCGCCGACAGCACGGTCGAGCTGCCTGCCGAGTGGGAGCAGTTCGCGCCGCTGGCGGACGAGCCGTTCGACGTCGCGCCGGGCGAGATCGACGCGCACCGCGACGAGTGGATCGAGCAGTGGACGGCCACGGTCGTCGGGTGAMTIRTRRTAAIAAVGLLPLLAACTGDDAPGEQQNTPVPAESGEAELSGTVTLVTHDSFALGDGTLASFEEETGLTVEHVAAGDAGTLVNQLVLTADSPLGDVVYGVDNTFASRAVAADVFEPYQPEGLDDSVTDLVGAGLEGLTPIDKGDVCLNVDTAWFEDQGVEPPSTFEDLTDPRYADLTVVTNPATSSPGFAMLLATVDAFGEDGWEQYWADLSANGLKVTDGWSDAYYADFSGAGEGGERPVVLSYATSPAFTVTEDGSESTTAALLDTCFRQVEYAGVLAGTDNPDGARALVDFLSSPEVQADIPANMYMYPADSTVELPAEWEQFAPLADEPFDVAPGEIDAHRDEWIEQWTATVVGPGPT0009095_185DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009095-thiB|tbpA-K02064NANA
AK018_027921740hypothetical proteinGTGACGACCTCGTCGAGCGGCGGGGCCGTCCTGCGGGCGCCCCTCCGTCGGTCAACGCCGGCGACCTGGGCGTGGTGGCTGCTCGCCGCCGGTGCGCCCCTGCTGTTCCTCGGCGTGTTCTTCGCGTGGCCGGTGGTCGCGCTGGTGCTCCAGGGCTTCTTCGCCGACGACGGCGGTGGCGGCCGCGCCCTGGACCTCTCCGGTTTCGGGGAGGTCCTGTCGCAGCCGCGCACCTGGCGCGTGGTCGGCCAGACCCTCGCCCAGGCGACCGTCGGCACGGCGCTGAGCGTGCTGCTGGGGCTGCCCGCCGCCTACGTGCTGTACAGGTGCCGGTTCCCCGGACGTACGGTCGCCCGCGCCCTGGTGACGGTGCCGTTCGTGCTGCCGACCGTCGTCGTCGGCGTCGCCTTCCGCTCCGTCCTGGCCCCGTCCGGGCCGTTGGGGTTCCTGGGCTGGGAGGAGTCGTTCGCCGGGATCGTGCTGGCGCTGGTGTTCTTCAACTACGCGGTCGTGGTGCGGACCGTCGGCGGGCTGTGGGAGCGCCTGGACCCCCGGGCCGAGCAGGCCGCCCGCTCCCTCGGTGCCACCCCGTGGCAGGCGTTCCGGACGGTCACGCTGCCCGCCCTGGGTCCCGCGATCGCCTCGGCCGCCTCGGTCGTGTTCCTGTTCTGCGCCACCGCGTTCGGCGTCGTCCTCGTGCTCGGCGGCATGCGCTACGGCACCATCGAGACCGAGATCTGGGTGCGCACCACCCAGTTCCTCGACCTGCGCGCCGCCGCCGTGCTCAGCATCCTGCAGCTCGTCGTCGTGACCGGCGCGCTGCTCGTCAACGCCCGGCTGCGGGCCCGCCGTGAGCGCGCCCTGCACCTGTCCAGCGACCTGTCGGCCGCCCACCGGTTCTCCTGGCGCAGCGCCGCGGACGTCGTGCCCGCCGGCGTGACCGCCGTCGTCGTGGCGGGCCTGCTCGTGCTGCCCCTGGCCGGGCTCGTCGCCCGCTCCTTCCAGGGCCCCGACGGGAGCTGGGGGCTCGACAACTACGTCGCCCTGGGCACCACGGGCGGACGCAACGCCCTGACCGTCACCGTCTGGGAGGCCACCGCCACGTCGCTGCGCACGGCCGCCCTCGCGGCCACGATCGCGGTCGTCGTCGGAGGGCTCGTCGCGCTCGTCGTCTCCCGGCGGCCCCGGTCCCGCGGCCTGCGACGCGCCGTCGGCACCCTCGACGCCGTGTTCATGCTGCCCCTCGGGGTCTCGGCCGTGACCGTCGGGTTCGGGTTCCTCATCACCCTGGACCGCCCGCTCGGGTTCGACGTCGACCTGCGCACCTCCGGGCTCCTGGTCCCGATCGCCCAAGCGGTCGTCGCGATCCCGCTGGTGGTGCGGACCGTCCTGCCGGTGCTGCGCGCGATCGACCCGCGGCTGCGCGAGGTCGCCGCCACCCTCGGCGCGCCACCCGGACGGGTGCTGCGCAGCGTGGACGCCCCGCTCGCCGCCCGGTCCCTCGGGCTCGCGATCGGGTTCGCGTTCGCGGTGTCCCTCGGCGAGTTCGGCGCCACGTCGTTCCTCGCCCGGCCCGACGCCGCGACGCTGCCCGTCGTGATCTACCGGCTCATCGGGCTGCCCGGCGCGGAGAACTACGGCATGGCGCTCGCGGCCTCGGTGGTGCTCGCGACGCTCACGGCGACGGTCATGATGGTGGCGGAACGCCTGCGCGGAGACGCGGGCGGAGGGGAGTTCTGAMTTSSSGGAVLRAPLRRSTPATWAWWLLAAGAPLLFLGVFFAWPVVALVLQGFFADDGGGGRALDLSGFGEVLSQPRTWRVVGQTLAQATVGTALSVLLGLPAAYVLYRCRFPGRTVARALVTVPFVLPTVVVGVAFRSVLAPSGPLGFLGWEESFAGIVLALVFFNYAVVVRTVGGLWERLDPRAEQAARSLGATPWQAFRTVTLPALGPAIASAASVVFLFCATAFGVVLVLGGMRYGTIETEIWVRTTQFLDLRAAAVLSILQLVVVTGALLVNARLRARRERALHLSSDLSAAHRFSWRSAADVVPAGVTAVVVAGLLVLPLAGLVARSFQGPDGSWGLDNYVALGTTGGRNALTVTVWEATATSLRTAALAATIAVVVGGLVALVVSRRPRSRGLRRAVGTLDAVFMLPLGVSAVTVGFGFLITLDRPLGFDVDLRTSGLLVPIAQAVVAIPLVVRTVLPVLRAIDPRLREVAATLGAPPGRVLRSVDAPLAARSLGLAIGFAFAVSLGEFGATSFLARPDAATLPVVIYRLIGLPGAENYGMALAASVVLATLTATVMMVAERLRGDAGGGEFPGPT0009105_125DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009105-thiP-K02063NANA
AK018_02793747cysA_1COG1118Sulfate/thiosulfate import ATP-binding protein CysAATGGCCCGGAGCGAGGGCCTGCAGGTGCGCGACGCCGTCGTGCGCTACGACGGGCCGCGACGCGCACCCGGCACGACGGCGGTCGACCGGGTCACGCTGGACGTGCCGGTGGGGGAGATCCTGGCGCTGCTCGGTCCGAGCGGGTGCGGCAAGTCGTCGCTGCTGCGGGCCGTGGCCGGTCTCGAGCCCCTGGCCGGCGGGACGGTGTCCTTCGACGGCCAAGACCTCGCCGCGGTGCCGGTGCACCGGCGCGGGTTCGGGCTGCTGTTCCAGGACGGCCAGCTCTTCCCGCACCGGGACGTCGAGGGCAACGTCGGCTACGGGCTGCAGATGCAGGGCGTGGCCAGGGCCGAACGCCGGGAGCGGGTGGCCGGCCTGCTCGAGGACGTCGGGCTGGCGGGGCACGCCCACCGGGCCGTGACGACGCTGTCCGGCGGGGAGAAGCAGCGGGTCGCGCTCGCCCGCGCGCTCGCCCCCGACCCGCGGCTGCTGCTGCTCGACGAGCCGCTCTCTGCGCTGGACCGGCAGCTGCGCGAGAAGCTCGCGCTCGACGTGCGCGACACGCTGAAGCGGGCGGGCACCACCTCGGTGTTCGTCACCCACGACCACTCCGAGGCCTTCACCGTGGCCGACCGTGTCGCCGTCATGGACGCCGGCCGGCTGCTGCAGGTCGACACCCCGGAGCGGCTGCGGGAGCGACCGGCGTCGGACCGGGTGGCGGAGTTCCTCGGCGTCGCGCCGGCCTGAMARSEGLQVRDAVVRYDGPRRAPGTTAVDRVTLDVPVGEILALLGPSGCGKSSLLRAVAGLEPLAGGTVSFDGQDLAAVPVHRRGFGLLFQDGQLFPHRDVEGNVGYGLQMQGVARAERRERVAGLLEDVGLAGHAHRAVTTLSGGEKQRVALARALAPDPRLLLLDEPLSALDRQLREKLALDVRDTLKRAGTTSVFVTHDHSEAFTVADRVAVMDAGRLLQVDTPERLRERPASDRVAEFLGVAPAPGPT0009110_404DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009110-thiQ-K02062NANA
AK018_027942103hypothetical proteinATGTCCTTGACCGCCCCCGGCCTCCGTCTCCGGAGGACCATCGCCCCAGCGCTCGCCGCGGCGCTCGCCCTGAGCACCGCGGTCCCTGCCGCGGCGGCCGCCACGACCGCCGCCGCCACGCCAGCCGTCGCCACGAGTGCCGTCTCGGACGGCGTGCTCACCGACGGATTCTCCGAGCTCGGCGACGACTGGTACGTCGCGTCCGGCGCGTGGCGCGCCGAGGACGGCCGCGCCGTCGCCGACGAGCAGCCCGGGGACCGCGGCTACTCCCTCGCGCTCGTCGACCACCGGCTCGACGGTGACGGCAGCGTCGCCGTCGACGTCAGCACGAGCGCGGGCAGCGACTCCACCTGGGTAGGCATCCACGTCCACCGCGCCGCCGTGCTCGACGACTACACCATGTCGGGGTACACGGCGCTGCTGCGCCGGTCCGGCGAGCTCGTGATCATCGGCGCCGCCGGCGACAGCGCCGTGGAGTACCTCGCCCGGGCCGACACCTCGGCCCGGACAGGCGACGGCCCCGTCCGGATCGAGATGGAGGTCGTCGGCGACGAGCTGCGGGCCACCGCCGGCGGCACGACGGTGACCGCGACCGACGCGTCGTTCCGGGGCGGCGGCGTCAGCCTGGTCGCGCACCGCGGCACCGCGGCCGCCTTCGACGACGTGCGTGCCGAGGGCCTCGTCCCGTCCGACGACACGATCCCGCCCGCACCCGGCTGCACCGCGCGGGACGACGCACCGGTCGGGGACGCCCGCGGACCCGTCCTGGTGGACGACGACAGGGTCGACGTCGTGGCGGCGCGCATCGCCGCCGGCGCCGAGCCGCAGGCCTCCGCCTGGGACCAGCTCCAGGACACGCTCACCGCCGACATCGCGCGCGAGCCGGACGCTCCCGAGGTGTTCTTCGTACCCTGGTTCTACAACGACCCGGACGCGCACCGCGCAGCCCGCGACGGGCTCCAGCACGACGCGAACGCGGCCTACCGGCTCGCGCTCGCCTACCGGATCACCGGTGACGCCACCTACGGCGAGCACGCGGCGGCGTTCCTGGACGCCTGGACCGACGTGCCGTGCTTCCGCACCTCCGAGGACTCCTCGCTCGCCTTCAGCTACCACTTCCCGGCCATGATCTACGCGGCGTCGCTGCTGCGCGGCCAGCCCGTCTGGCCGGCCGAGGACGAGGCGGACTTCGCCGCGATGATCGGCACCGAGGCGCTCCGCGTCGGGAAGTCGATCGACGGCGGCATGAACAACTGGGGCAGCTGGGCGCTGGCGCTCGAGTCGGCGATCGGCGGCTACCTGGACGACCAGACGCTGCTGGAGGAGGTCGCGGCGTCAGCCAGGGCGAAGCTCGACCACCAGATCGCGGCCGACGGCCACCTGGTCGAGGAGGTCGGCCGCAACGGCGGCGTCGGCGACTACGGCATCTGGTACTCCCACTTCTCCCTGGCTCCGACGGTCTTCACCGCCGAGGTGCTCGACGCCCACGGACTGGACCTCTACGGGTACGAGAACAGCCAGGGCGCGACGATCGAGGACGCCACGGCGCTCCTCGCCGGCTGGGCGGACGACCCGACGACGTTCTCCTACTACGACGGTGACGTCACCGGCCTGCACAACGTGCGCACCATCGACTACCTGGCCGACCAGGGGGTCACGGCGCACAGCATGGCCTGGTTCGAGATCGCGGCGACCCGGTTCGACCTGCCGGTGGTCGACGGTCTCCTCAACGAAGAACGCCCGATGACCGCGATCCACTCCGCGCCGGTACTCACGCTCACCCACGGCGACCTGGCGCACGACGCCACCGTGGCCCCTGCGTGGGACGCGACGGCGGTGTACACCGAGGGTGACCACGTCTCCCACGACGGCGCCCTGTGGGAAGCCACCTGGTGGACCTCCGACCAGGAACCCGGGGCCGCGCCCTACGGGCCCTGGCAGGAGCTCGCCACCACCAGCGACGGCACCCCTGTGTGGACCGATTCGCGGGTCTTCACCGAGGGCGACGTCGTCGCCCACGACGGCGAGCGCTACACCGCGCAGTGGTGGACCCGCAACCAGGAACCCGGCGATTCCCACGGCCCCTGGCGGCCCGTCGGCTGAMSLTAPGLRLRRTIAPALAAALALSTAVPAAAAATTAAATPAVATSAVSDGVLTDGFSELGDDWYVASGAWRAEDGRAVADEQPGDRGYSLALVDHRLDGDGSVAVDVSTSAGSDSTWVGIHVHRAAVLDDYTMSGYTALLRRSGELVIIGAAGDSAVEYLARADTSARTGDGPVRIEMEVVGDELRATAGGTTVTATDASFRGGGVSLVAHRGTAAAFDDVRAEGLVPSDDTIPPAPGCTARDDAPVGDARGPVLVDDDRVDVVAARIAAGAEPQASAWDQLQDTLTADIAREPDAPEVFFVPWFYNDPDAHRAARDGLQHDANAAYRLALAYRITGDATYGEHAAAFLDAWTDVPCFRTSEDSSLAFSYHFPAMIYAASLLRGQPVWPAEDEADFAAMIGTEALRVGKSIDGGMNNWGSWALALESAIGGYLDDQTLLEEVAASARAKLDHQIAADGHLVEEVGRNGGVGDYGIWYSHFSLAPTVFTAEVLDAHGLDLYGYENSQGATIEDATALLAGWADDPTTFSYYDGDVTGLHNVRTIDYLADQGVTAHSMAWFEIAATRFDLPVVDGLLNEERPMTAIHSAPVLTLTHGDLAHDATVAPAWDATAVYTEGDHVSHDGALWEATWWTSDQEPGAAPYGPWQELATTSDGTPVWTDSRVFTEGDVVAHDGERYTAQWWTRNQEPGDSHGPWRPVGNANANANANA
AK018_02795933ycjOCOG1175Inner membrane ABC transporter permease protein YcjOATGGCACAGATAAGCACACAAAGAACCATGTCGAAGTCCGGTGATGGACGGCGGATCGGGTCACGGATCGAAGGGCGGACCTTCGCCGTCCTGCTCGTCCTGCCGGGCCTCGCCCTGCTGGCGGCCGTCGTCGTCTACCCGTTGATCTCAGCGATGACCAGCGCGTTCTTCGAGCAGAGCCTGCTGTACCCGGGGCGGACCTTCGTGGGCCTCGAGAACATTCGCGACGTTCTCGCCGGCGACTTCTGGCAGCTGCTCTGGCAGACGATGGTCTTCACGGTCGGGACGACGATCCTGCCGTTCGTCGTCGGGTTCGGGCTGGCGCTCGCGCTCAACACGAGGATCCGCGGAGCCAAGGCGCTGCGCGGGATCATGCTCATCCCCTGGCTCGTGCCCGGCGTCGTCGTCTCGTTCCTGTGGATGTGGATCTTCAACGCCAACTACGGCGTCCTCAACGCCGTCCTCGAGGGCACCGGGCTGATCGACGAGCCCCAGGCCTGGCTCGCCCAGCCGGGGACCGCGATGGCCGCGGTCGTCGTCGCCAAGACCTGGCAGAGCTTCCCCTGGATGATGGTGATGCTCCTGGCCGGTCTGCAGACCGTGCCCCCGGAGCTGCACGAGGCGGCCTCCGTGGACGGCGCGGGCGCCGTGCGTCGCTTCCGTGCCGTCACCCTGCCGCACCTGCGCGGCATCGTGGGGCTCGTCCTGCTGCTCGAGTTCATCTGGAACTTCCAGCACTTCGACATCATCTACGTCCTCACCGGCGGCGGACCCGCCGGCACCACCCAGACGTTCGCCACCGCCGTCTACGACACCGCCTTCCACGGCTACGACCTCGGCCGCGCCGGCGCGCTCGGACTCCTGTGGATGGTGCTGCTCATGGTGCTGGTGGTCGTCTACATCCGTTTCTCGGAGAAGGGGGAGCGCGCATGAMAQISTQRTMSKSGDGRRIGSRIEGRTFAVLLVLPGLALLAAVVVYPLISAMTSAFFEQSLLYPGRTFVGLENIRDVLAGDFWQLLWQTMVFTVGTTILPFVVGFGLALALNTRIRGAKALRGIMLIPWLVPGVVVSFLWMWIFNANYGVLNAVLEGTGLIDEPQAWLAQPGTAMAAVVVAKTWQSFPWMMVMLLAGLQTVPPELHEAASVDGAGAVRRFRAVTLPHLRGIVGLVLLLEFIWNFQHFDIIYVLTGGGPAGTTQTFATAVYDTAFHGYDLGRAGALGLLWMVLLMVLVVVYIRFSEKGERAPGPT0016535_5096DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_02796894dasC_6COG0395Diacetylchitobiose uptake system permease protein DasCATGAGCGCCACCGACACCGCCCCACCCGTGGCCCCGGCCCCGCCCGTCCTGACGGCACGCCCGCGCCGTCGTCGGCGACGCTCGAACGTCGCCGCGTGGATCGCCGTCGTCGTCTTCGGCGGGTTCGCCCTGTTGCCCGTCTACTGGCTGCTGGCGACGTCGTTGACGCCACGCACCGAGGTCTTCGCCTATCCACCGGCGATCTTCCCGTCCTCGCCCACCCTCGACGCCTACACCGCGCTGCTGGAGAACGAGCAGCTCTTCGTCTACCTGCGCAACTCGGTCGTCGTCTCCGTCGTGACCGCCGTGCTCAGCGTCGTGGTCTCGGCCTGCATGGCGTACTCGTTCTCCAAGTACCGCTACCGCGGCCGCCGGTCGCTCATGTACCTGGTGCTCGCGTCACAGATGTTCCCCCAGGCGCTGCTCCTGGTCACGCTCTACGCCGTCTTCAGCGCCTACGGCCTGCTCAACACCTACGCAGCGCTGGTGCTGTCGTTCACCACGTTCACGCTCCCGCTGTGCGTCTGGATGCTCAAGGGGTTCTTCGACACGATCCCCGACGAGCTCATCGAAGCCGCACGGGTCGACGGATCCTCGCCGCTGCGGACCTTCGTCTCGATCGTGCTGCCGCTCGCGGCTCCAGGGCTCGTCGCTGCGGGACTGTTCGCCTTCGTCCGGGGCTGGAACGACTTCATCTTCGCCCTGACACTGGCCGGTCCCGAGAAGCAGACGCTCCCTCCGGGCCTCGTCAACACCTTCATCGGTGAGGCGTCCACGGCCTGGCCCGAGCTCATGGCCGCATCGCTCGTCGTCTCGCTGCCCGTCGCCGTCGCCTTCATCGCCCTGCAGCGCTTCCTCGTCGGTGGGCTCACGGCCGGCGCGGTCAAGGGCTGAMSATDTAPPVAPAPPVLTARPRRRRRRSNVAAWIAVVVFGGFALLPVYWLLATSLTPRTEVFAYPPAIFPSSPTLDAYTALLENEQLFVYLRNSVVVSVVTAVLSVVVSACMAYSFSKYRYRGRRSLMYLVLASQMFPQALLLVTLYAVFSAYGLLNTYAALVLSFTTFTLPLCVWMLKGFFDTIPDELIEAARVDGSSPLRTFVSIVLPLAAPGLVAAGLFAFVRGWNDFIFALTLAGPEKQTLPPGLVNTFIGEASTAWPELMAASLVVSLPVAVAFIALQRFLVGGLTAGAVKGPGPT0016540_2241DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_027971317hypothetical proteinATGACCTCCCGGACGACCACCTCCACCATCGTCGACGACCTCTCGCGCCGTCGCGTCCTGCAGCTGCTCGGTATCGGCGCCGGGACGGCCCTCGTAGCGGCGTGCGCCCCCTCCGGGGGCAGCGCGCCCGCTCCCGCCGCCTCGACCGGCAGCGCCGCCCAGGACTTCTCGTTCGCGTCCTGGTCCCTGTCGGAGGAAGCGGCCAAGCCCGTCATCACCGGCCAGCTCGACACCTTCGGCGCGGACGCCGGGGTCACGGCCACCCCCGTGTCCTACCCGTACAACGAGTACCTCAACCAGCTCACCCTGCAGACCCGTGGCGGTGAGTTCTCCGGCGCAGCCCAGCTCGACATTGCCTGGCTCGGCACGCTCGCCGCCCTCGGCAAGCTCCAAGACCTCTCGGCGCTGGCCCAGGGCCGCGGCTACATCGAGGCGGGCCTGTCGGCCGGGCAGTTCGACGGCGTCCAGTACGGGCTGCCGTGGACGCTCGGCGCGATCGGCCTCGTCGGCAACCGGGAGATCCTCGACCGGGCGGGGATCACGGACCTCCCCTCCGACATCGCCGGTTTCGAGGAGGCGCTGCGCGAGCTGAAGAAGCTCGACGACGGCCTGGTGCCGTACGCCGCCTCCACGAAGGTCGCCCAGCTCAAGGACGTTCAGACCTGGATGCAGACCTTCGGGTGCACCCTCGTGGAGGACGGCCGGGTGACGCTCGGCGACGACGCCTCCGTCGAGGCCATGACCTGGTACAAGAGGCTTTACGACGACGGCCTCATCGGGGCGGACGTCGACCGGTTCGACGCCCGCTCGCTCTTCGCCCAGGGCAAGACGGCGCTGTACGACGACGCACCGGTCGGCCGATCGGCAGTGCTCGCCGACTCTCCCGACACCGAGCTCGGTGACAAGCTCGTGCCCTTCGCCCGCCCGGTCGTCTCCGCCGGAGACGACCCGCGGGCCCTGGCCTGGGGCCACGTCATCGTCGTCGTCGACGGCGACGGGGCGGGCACCGCCGCCGAGTACGCCCGGTGGGTGACCTCCGACGAGGCCGTGGTCGTGGACTACTTCGAGCAGCTCGGCCTGCCCCCGACCACCCAGGCCGGTCTGTCCTCGGAGGCGGTCGCCTCGGACCGGTTCATCAGCGAGTTCGGCGAGCGGATCACCGCGACCTCGACGCCGAGCCCCTTCTGGGTCTACCCCCAGTACGGACAGATCGACACCGCGATCGCCGAGCAGGTCCAGGCGGCCCTGGTCGGCTCCAAGACGCCGCGCGAGGCCATGGAGGCAGCGCGCGACGAGGCCCAGTCCCTCATCGACTGAMTSRTTTSTIVDDLSRRRVLQLLGIGAGTALVAACAPSGGSAPAPAASTGSAAQDFSFASWSLSEEAAKPVITGQLDTFGADAGVTATPVSYPYNEYLNQLTLQTRGGEFSGAAQLDIAWLGTLAALGKLQDLSALAQGRGYIEAGLSAGQFDGVQYGLPWTLGAIGLVGNREILDRAGITDLPSDIAGFEEALRELKKLDDGLVPYAASTKVAQLKDVQTWMQTFGCTLVEDGRVTLGDDASVEAMTWYKRLYDDGLIGADVDRFDARSLFAQGKTALYDDAPVGRSAVLADSPDTELGDKLVPFARPVVSAGDDPRALAWGHVIVVVDGDGAGTAAEYARWVTSDEAVVVDYFEQLGLPPTTQAGLSSEAVASDRFISEFGERITATSTPSPFWVYPQYGQIDTAIAEQVQAALVGSKTPREAMEAARDEAQSLIDPGPT0016545_3868DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_027982274hypothetical proteinGTGCAGAACCGGACCGTGCAGACCGACGTCGTCGTCGTGGGAGGCGGCCTGGCCGGCGTGAGCGCCGCCGTCGCCGCCGCCCGCCTCGGCCGTCGCGTCGCGCTGGTGAACAACCGCCCCGTCCTGGGCGGCAACTCGTCCTCGGAGGTGCGGGTGTGGGTGTGCGGCGCCACCGCGCACGGCAACCAGCGCTGGGCCCGGGAGAACGGCGTCGTCGGCGAGATGTACGTCGAGAACCAGTACCGGAACCCGGAAGGGAATCCTGTCTACTGGGACGACGTCGTGCTCGACACGGTCCGTCGCGAGGAGAACATCGAGCTGTTCCTCAACACCGACGTGCGCGAGGTCGAGGCCACCGGGCCCGACGACTCCCGACGCATCGAGTCCGTGACCGGCTGGACGATGGGCTCCGAGATCCTCACCCGCTTCGAGGCCCCCATCTTCCTCGACTGCTCCGGCGACGGACTCGTCGGGCACCTGGCCGGTGCCCGGTACCGGCTGGGCAAGGAGTCCCGGGCGGAGTTCGGCGAGGAGTGGGCGCCCGAGGAACCGCGCCGCGAGTTCCTCGGCTCGACGCTGCTGTTCTACACCAAGGACCTCGGCAAGCCCGTCAAGTACGTCCCGCCCGAGACCGCCATCGACATCACGAAGACCCCGATCCCGGAGTCGCGGGTGATCCGCAGCGGTGACTCCGGGGCCCACTACTGGTGGATCGAGTGGGGCGGCGAGCTCGACATCGTCGCCGACAACGAGCGGATCCGGGACGAGCTGCGCGGCGTCATCCTCGGCATCTGGGACTACATCAAGAACTCGGGAAAGTTCGACGCGGACAACCTCACCCTCGAATGGATCGGCAACGTGCCCGGCAAGCGCGAGTACCGCCGGTTCATCGGTGACCACACGCTCACCCAGCAGGACGTGGTCGGCCAGACCCGGTTCCCGGACACGGTGGCGTTCGGGGGCTGGTCGATCGACCTGCACCCCGTGGGCGGGATGTACGAGCCGGGGGCCGGAGCCGTCCAGCGCTTCTCCGACGGGGTCTTCGAGATCCCGTACCGCTGCCTGTACTCGGTGAACGTGGAGAACATGCTCATGGCCGGGCGCGACATCTCTGCGACGCACATCGCGTTCGGCGCGAGCCGCGTCATGGCCACCTGCGGGACGCTCGGCGAGGCCGCCGGCACCGCCGCCGCGCTGTGCGTCGAGCACGGGCTCACCCCGCGCGAGCTCGGTGCGCGCCGGACGTCCCTGCTCCAGCAGACCCTGCTGCGGCAGGACGCCTCCGTCCTGGGGGTCGCCAACGAGGACCCGGACGACCTGGCCCGGTCGGCCAGAGTCAGCGCGTCGAGCCACCAGCGCGTCGTCGGCGTCCACCGACACGGGGACGGCTCCGTCGCCGCCGACGACGTCCGTGCCGACCGGCTGGAGTCCGACCTCGGGATCGTCCTGCCTGTCGACCCCGTCCTGGAGCACGTGGACGTCCTGCTCTCCGCAGACGTCGACACCACCCTGGAGGTCGAGGTGCACTCGACGGGGCTGCCGCAGAACGTGGTGCCCGCCCAACTCGAGCACGCGGCGAGCGTCCCGGTCCCCGCCGGGGGGGAGCGGTGGGTCCGGCTGCCGGCCCGGTACAACCCGGACCGGCCGGCCAACGCCGTCGTCGTCCTGCGGGCGAACCCCCACGTCGAGGTGCGCACGTCCCGACCGCTGCCGCCCGGCGTCCTCACGCTCGTGCACGGGCAGGACGCCGACGACCAGAACGTCTCGGTGACCGCCGGTCGACTCCTCTCGTGGCCGACGAAGCCGATGCGTGGACGGGCCGTCTGCTTCTCGGCCGGGCCCGAGTCCCGTGCCCTGGCGCCCGAGCGGGCCGTGTCCGGGTACCACAGGCCCTACGGCGGGCCGCACGAGTGGGCGTCGGCTCCGATGCGGGAGGGGGTCGAGGAATGGTTGCAGCTGGACTGGGACGCTGCGGTCGACCCCCGTGAGGTGCACGTCGTCCTCGACGACGACGTCGACCTCGAACTGAACACGCTGCACCACCACCGCAGCCCCGACGAGGTACTGCCCCAGCTCGTGCGCGACTACCGCGTCGAGGTCCTGCCCGCGGACGCCGACGCCTGGCGGACCCTGACCGCCGTCCGTGACAACCGGTGGCGGCACCAGGTGCACCCCGTCGTCGGCTTCGGCCCGCTGCGGGCCCTGCGACTCGTGGTCGAGCGCACCAACGGCGCCCCCGAGGCACGCGTCGTCCAGCTGCGGGTCCAGGCGTGAMQNRTVQTDVVVVGGGLAGVSAAVAAARLGRRVALVNNRPVLGGNSSSEVRVWVCGATAHGNQRWARENGVVGEMYVENQYRNPEGNPVYWDDVVLDTVRREENIELFLNTDVREVEATGPDDSRRIESVTGWTMGSEILTRFEAPIFLDCSGDGLVGHLAGARYRLGKESRAEFGEEWAPEEPRREFLGSTLLFYTKDLGKPVKYVPPETAIDITKTPIPESRVIRSGDSGAHYWWIEWGGELDIVADNERIRDELRGVILGIWDYIKNSGKFDADNLTLEWIGNVPGKREYRRFIGDHTLTQQDVVGQTRFPDTVAFGGWSIDLHPVGGMYEPGAGAVQRFSDGVFEIPYRCLYSVNVENMLMAGRDISATHIAFGASRVMATCGTLGEAAGTAAALCVEHGLTPRELGARRTSLLQQTLLRQDASVLGVANEDPDDLARSARVSASSHQRVVGVHRHGDGSVAADDVRADRLESDLGIVLPVDPVLEHVDVLLSADVDTTLEVEVHSTGLPQNVVPAQLEHAASVPVPAGGERWVRLPARYNPDRPANAVVVLRANPHVEVRTSRPLPPGVLTLVHGQDADDQNVSVTAGRLLSWPTKPMRGRAVCFSAGPESRALAPERAVSGYHRPYGGPHEWASAPMREGVEEWLQLDWDAAVDPREVHVVLDDDVDLELNTLHHHRSPDEVLPQLVRDYRVEVLPADADAWRTLTAVRDNRWRHQVHPVVGFGPLRALRLVVERTNGAPEARVVQLRVQANANANANANA
AK018_02799828cytR_1COG1609HTH-type transcriptional repressor CytRGTGCTCCTCGCCGTTCCCGACCTCGAAGAACCCTGGTTCGCCGAGCTGACGTCGCTGCTGGTGCGGCGGGCCGAGGAGCGAGGGCTCGCCGTCGTGGTACGCCAGACGTTCGGCGACCACGGGAAGGAGATCGACGTCGCCAACGGCGTCGGGGTGCCGCCGTCGGACGGGCTGTTGCACATCCCCCGGTCCCTGACCGTCGCGGACCTGACCCGACGCACCCGTCCCGGACCGCTCGTCCTGCTCGGTGAGCACGTCGACGTCGGGCCGTTCGCCCACGTGACCATCGACAACCACGCCGCCGCGGCTGCGGCCACGGAGCACGTCCTGCGTGGCGGGCGACGCCGTGTCGCGATGGTCGGTCGTCGATCGGCCGCTCCCTCCGACGCCGCCAACCGGAGGTACGAGGGCTACGTCGACGCCCTGCTCGACCACGGCATCGAGCCGGACCCGCAGCTGGTGGCGGCCGTCGAGGCGTTCACGCCGGCCGAAGGGGACGCGGCACTGGACCGCCTCATCGCCACGGGCGCCGACTTCGACGCCGTCGTCTGCGCCAACGACTCCGTCGCGCTCGGTGTGCTGCACCGACTCGCCGCCGCGGGGCGCCGTGTACCCGACGACGTCGCCGTGATCGGTATCGACGACATCGCCGCCGGCCGCTGGACGGTCCCGTCCCTGTCCACGGTCGCCCCCGACCGCGGCCGGCTCGTGGACCGGGCGCTCGCGGTCCTCGAGCGGCAGATCGCCGCACCGGCCGCCGCGGACCAGCCGGTCGAGCAGATCACCGTACCGTTCACGGTCGTGGACCGGGGCAGCACCGCGACCTGAMLLAVPDLEEPWFAELTSLLVRRAEERGLAVVVRQTFGDHGKEIDVANGVGVPPSDGLLHIPRSLTVADLTRRTRPGPLVLLGEHVDVGPFAHVTIDNHAAAAAATEHVLRGGRRRVAMVGRRSAAPSDAANRRYEGYVDALLDHGIEPDPQLVAAVEAFTPAEGDAALDRLIATGADFDAVVCANDSVALGVLHRLAAAGRRVPDDVAVIGIDDIAAGRWTVPSLSTVAPDRGRLVDRALAVLERQIAAPAAADQPVEQITVPFTVVDRGSTATPGPT0021075_1238DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
AK018_02800795srlRCOG1349Glucitol operon repressorATGGTGGCCATGCTCCCCGCCGAACGCCGGTCCGCTCTGCTCGACCACGTGGCGACCCACGGGTCCGCGCGCGTCGTCGACCTCGCGTCCGCGCTCGGCGTCTCACGGATGACGGTGCGCCGCGACATCGACGAGCTGGCCGAGCAGGGTCTGCTGCTCAAGGTCCACGGCGGCGCCATGGCGATCGACGGTGACACCTCCCGGCCCGCGGCGACGGGGTGGGCCGCCCGGGAGGCCGAGAAGGAGGCGATCGCCCGGACGGCCGCCTCGCTGGTCGAACCCGGCATGTCCGTCGGGCTCTCCGGCGGCTCGACGGCCTGGCACGTGGCCTATCGACTCCGCACGATCCCGGACGTCACCGTGGTCACCAACTCCCTGCCGGTGGCCGAGCTGTTCGACGACGAGGCGCTGGTCGTCGAGGCGCGCTCCGCACATGTCGTGCTCACCGGCGGGGTGCGTACGCCCGCGCGGGCGCTGGTCGGGCCCGTGGCCGTGCGCACCCTCGAGGTGCTGCACTGCGACGTCGTGTTCGTCGGGGTCCACGGCCTCGACCCGCGTGCCGGTCTGACCACCCCGAACCTGCTCGAGGCGGAGACGAACCGGGCGCTGCTCGCGGCCGGCGAGCGCGCCGTCGTCGTGGCGGACCACTCGAAGTGGCACACCGTCAGTCTCACGACGGTCGCGGACCTCGATGCGGCGGACGTCGTGATCAGCGATGCCGGGCTCGCACCCGAGGCCGTCGCCGAGATCGAGCAGCACGGCCCGGAGGTGGTCGTCGCACCGCCGCCTGAGTGAMVAMLPAERRSALLDHVATHGSARVVDLASALGVSRMTVRRDIDELAEQGLLLKVHGGAMAIDGDTSRPAATGWAAREAEKEAIARTAASLVEPGMSVGLSGGSTAWHVAYRLRTIPDVTVVTNSLPVAELFDDEALVVEARSAHVVLTGGVRTPARALVGPVAVRTLEVLHCDVVFVGVHGLDPRAGLTTPNLLEAETNRALLAAGERAVVVADHSKWHTVSLTTVADLDAADVVISDAGLAPEAVAEIEQHGPEVVVAPPPEPGPT0017590_253DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017590-fruR2-K03436NANA
AK018_028011149hypothetical proteinGTGGAGGCACGGGTCCCGGGCCAGTACCTTCGTCGCATGCCAGGCCTCGACCCCCGGGCCGTCCTCGCCGGACGCCCCACGGCCCGACCCCCGCTCGGTGTGGTGGTCACCGTCGCCGTCTCCTCCGTCTGCCTGTTCGTGGCGCTGGCGCTCCTGCTGCACGACGGCGCCACGGGCGTGGTCACTGCGGTGCTGCTCGCGCTCGTCCCGCTGCCCCTGCTGCTCGCCGGCGTGCTCGCCCTCGACCGGCTCGAGCCGGAGCCGCCCGACGCCCTCGTGGCCGCGTTCGGCTGGGGTGCGGGCGTGGCGGTGCTGATCGCCACCGTCGTGAACACCGCCGGCCTGGACCTGGTGTGGCGTCCCCTGCTCGGTGACGAGCTCGGCCTGTACGCCACGGCGGCGATCACCGCACCGGTCGTGGAGGAGCTCGCCAAGGGCACGGTGCTGGTCGGCCTGCTGTGGTTCCGCCGCCACGAGCTCAACGGGCCCACCGACGGGATCATCTACGGCTCGATGGTCGCGCTCGGCTTCGCGACGGTCGAGAACATCAGCTACTACGCGTTCGCCGCCGACGGCGCGCTGGCCTGGACGTTCGTGATGCGTGGGCTCTTCTCTCCCCTGCTGCACCCGCTGTGCACGTCCCTGGTGGGGATCGGCGTCGCCACCGCAGCGCTGCGACCCCGCGGCCGCCGCGTGCTGCCGGTGGTCCTCGGGTTCGTCGGCGCGATCGGCGTGCACGCGGCCTGGAACGCCTCCACGGCGGGTGGCCTCGAGGGGCTGGCCGCGGCCTACACGCTCGGTCTCGGCGTCCTCGTGGCGCTGGCGGTGGTGCTGCACCGCGACCGGCGTCGCATCGTCGGCCTCGTCCAGGAGCACCTGCCCCGGTACGCCGCCGTCGGCGTCGTCGGGCCGGGTGACGTGCGCATGCTGTCCTCGCTCCAGGCACGACGGCGGGCCCGCGAGCGCCTGCGCGTCACCCTGGGCCGTGGCCCTGCCCGGGCGATGGCGGACTACCAGCAGGCCGCGACGGAGCTGGCGATGCTGCACCGCCGCCACGGCCTGGGCCTGGTGCCCGACGACGAGTTCCAGGCCCGGCGCGACCCGCTGCTGCTGCTCATGGGGCACGCGCGGGTCGCGTTCACCCGCTGAMEARVPGQYLRRMPGLDPRAVLAGRPTARPPLGVVVTVAVSSVCLFVALALLLHDGATGVVTAVLLALVPLPLLLAGVLALDRLEPEPPDALVAAFGWGAGVAVLIATVVNTAGLDLVWRPLLGDELGLYATAAITAPVVEELAKGTVLVGLLWFRRHELNGPTDGIIYGSMVALGFATVENISYYAFAADGALAWTFVMRGLFSPLLHPLCTSLVGIGVATAALRPRGRRVLPVVLGFVGAIGVHAAWNASTAGGLEGLAAAYTLGLGVLVALAVVLHRDRRRIVGLVQEHLPRYAAVGVVGPGDVRMLSSLQARRRARERLRVTLGRGPARAMADYQQAATELAMLHRRHGLGLVPDDEFQARRDPLLLLMGHARVAFTRNANANANANA
AK018_028021596rcsC_2Sensor histidine kinase RcsCATGACGGCGCACCACCGGGTGCTCGTCGTCGACGACACCGCAGCGCACCGCTACCTCATGGTCTCCTGGCTGCGCACCGCCGGCTACGAGGTCCTCGAGGCCGCCACGGGCGCCGAGGCGCTCGACCGCGCGACGGCCGACACGGGCGTCGTCGTGCTCGACGTCAACCTCCCGGACCTGTCCGGGCGGGAGGTCTGCCGACGCCTCAAGGACGACGACGTCACCCGGCACGTCCCCGTGCTGCACGTCTCGGCGACGTCCATCGACGCCGCCGCCCGCACCGCCGGGCTGGAGGGCGGCGCCGACGCCTACCTGCCGGAACCTCTTGACCGAGACGAGTTCCTCGCCACCGTGCGGTCCCTGTGCCGCGGTCACGACGAACGGCGGGCCAGCGCGCGCGAGGCCCGCCTGTACGAGGCGATGAACACGGCGCTCGTGCCCCTGCACGGCGCCCGCTCCGCCGAGGAGGCGGTCGGACTCGCCGCCCGCGGGGCGACCACCGTCCTGGCACGTCCCGCCATCGCGATGATCGTCGTCGACCCGACGACCGTGCTGCGTGCGGTCTGCACCGACCCCGGTTCGCCCCTGGTGCGGGGCAGCGGGGAGAGCCCCGTCCTGCCGCCGAGCCACCAGGATGCGGCGCTCGTCCCGCGTGACGCGCTGCCGGAGCCGTGGCGTCCGCTGCTCGAGCGGGCCGGGGTCGCACCGTGCGACTGGTGGACGTCCTGGCTGCGGGACGAGCATGGGCAGCTCGTCGGCGGGCTGGGCGTCCAGGTCCGGGACCCCTCCCACGCCCCGTCATCGGCCGAGCGCGAGATCATCCGACGCTTCACCGAGGCGTCCGCGGTCGCGCTGTCCAACCTGCGCACCTTCGCCGAGGAGCGCAGGATCACGGTGGCCCTCCAGGAGGCCCTCCTGCCCCAGGACCTGACGGTACGGCCCGGCGTCGACGTGGCCGCCTGCTACGAGGCGTCCGACGAACGGCTCGACGTCGGCGGCGACTTCTACGACGCGTTCGACCTGCCGGACGGTCGGGTGGCCGTCGTGATCGGTGACGTCCAGGGCCACTCGCTCCGCGCCGCGACGGTCATGGGCGAGGTCCGCATCACGCTGCGCGCCTACCTGCGCGAGGGGCACACCGCGGCGCGGGCGCTGGACCTGCTGAACGAGATGCTGCGCACCGACCACCCCGAGATGGCCACCCTGTGCCTCTGCGTCATCGACCCGGTCACCGGGCAGGCGGAGTTGAGCGACGCCGGCCATCTGCCCACGATCCTGGTCCGCACGGACGGCACCACCCGCGCCCTGAAGGCGCCGTCCCGTCTTCTCGGCCTGCTGAGCAGCCCGGACGTCCGCGAACCGTACCGCGAGCGCCTGGAGACCGGTGATCTGCTGGTCCTCGTCACCGACGGGCTCGTCGAACGACGCGGGTCGACGCTGCGCGAGGGGATCGACCGTCTGACCGAGGTCGCGCGCTCGTTCGCGGGGGCGGCTCCCGACGACGTGTGCCAGGCGCTGCTGAAGGCGTTCGACGGCGACGGCGAGGACGACGTGGCGGTCGTCGTCGTGCGCCGGACGGACGCAGCACCGGCCTGAMTAHHRVLVVDDTAAHRYLMVSWLRTAGYEVLEAATGAEALDRATADTGVVVLDVNLPDLSGREVCRRLKDDDVTRHVPVLHVSATSIDAAARTAGLEGGADAYLPEPLDRDEFLATVRSLCRGHDERRASAREARLYEAMNTALVPLHGARSAEEAVGLAARGATTVLARPAIAMIVVDPTTVLRAVCTDPGSPLVRGSGESPVLPPSHQDAALVPRDALPEPWRPLLERAGVAPCDWWTSWLRDEHGQLVGGLGVQVRDPSHAPSSAEREIIRRFTEASAVALSNLRTFAEERRITVALQEALLPQDLTVRPGVDVAACYEASDERLDVGGDFYDAFDLPDGRVAVVIGDVQGHSLRAATVMGEVRITLRAYLREGHTAARALDLLNEMLRTDHPEMATLCLCVIDPVTGQAELSDAGHLPTILVRTDGTTRALKAPSRLLGLLSSPDVREPYRERLETGDLLVLVTDGLVERRGSTLREGIDRLTEVARSFAGAAPDDVCQALLKAFDGDGEDDVAVVVVRRTDAAPANANANANANA
AK018_028031311torSCOG0784Sensor protein TorSGTGACCGCCCCGAGCGACGAGGAGAAGGCAGTGCTCCAGCGCCGGCTCGTCGAGCTCGAGGCGGAGCACCGCTCGGTGCTCGCGCAGTACGAGCAGCTCTCCGCCGAGCTCGAGGAGACGAACTCCGGAGTGGTCGCGCTGTATGCCGAGCTGGACGAACGCGGCCGTCAGCTCGCGGCGGCCGTGGAGTCCAAGACGCGGTTCCTGCGGAACGTGAGCCACGAGCTGCGCTCCCCCGTCAGCTCGATCATCGGGCTCTCCTCGCTCCTCGAGGAGTCCGGGCTCGACGACGACCAGCTCCAGCAGGTCCGGTACGTCCGCGACAGCGCCGACACCCTGCTCACGCTCGTGGACGAGCTCCTCGACCTCGCGCGCGCGGAGGCCGGCCAGCAGGCGGTGGAGCCGGCACCGGTCGACCTCGCGGACCTCGTGCAGGAGCTGCGCGGCACGATCCAGCCGCTGGTGCGCCCCGGCGTCGACCTCGTCGTCGCCTCCCCCGGGGACGCGACGCTGGTCAGCGACCGACGGCTCGTCTCCCGGATCCTGCGCAACCTGCTCACCAACGCGGTGAAGTTCACCGCCTCGGGCTCGGTCCACCTCGACGTCGGTGCCGACGCCACGGGCATCCGTCTCACCGTCCGGGACACCGGGGTCGGCATCCCCGCCGAGTCGCTCGAGTCGGTGTTCGAGGAGTTCGTCCAGATCCCCAACGACCTGCAGCCCGGCGTGCGCGGGACGGGCCTCGGCCTGCCCTACTCCCGCCGGACCGCCGAGGCGCTGGGCGGGACCCTGACGGCCATCTCCACCCCGGGCGTGGGCAGCGCCTTCACCCTCCGGCTGCCGTCCTCGCCCGCCGGACCGCCCTCCGGACCGCCCGCCGGACCTGCCGCCGGACCGGCCGCCACCGACACGGCAGCCCCCGACGGGACCGAGGACGCCGCGCGCCTGGGGTACGTGCTCGTCGTCGACGACGACCACGGCTTCGCCGCCACGGTGGCGGGGATGCTCCGCGCGTCGGCGGAGCGAGTCAGCGTCGCCGACCGCGGCGACCACGCGCTGGACCTGCTGCGGGACGACCCGGCCGACGCCGTCGTGCTGGACGTGCAAATGCCCGAGCTGGACGGGGTGAGCGTCCTGCGCGCCCTGCGCGCCCAGCACCCCGGGACCGCGGCCGTCCTCGTGTCCGCCGGTCCCGCGCCGGTCCAGGACACCGTCGTCCGCCCCGCACCTTTCCTGTCCAAGGCACGCCTCGACACGGCGATGCTGCTGGCTGCGCTGCGCCAGGACGGCGCGGAGGACCGACGAGGATGAMTAPSDEEKAVLQRRLVELEAEHRSVLAQYEQLSAELEETNSGVVALYAELDERGRQLAAAVESKTRFLRNVSHELRSPVSSIIGLSSLLEESGLDDDQLQQVRYVRDSADTLLTLVDELLDLARAEAGQQAVEPAPVDLADLVQELRGTIQPLVRPGVDLVVASPGDATLVSDRRLVSRILRNLLTNAVKFTASGSVHLDVGADATGIRLTVRDTGVGIPAESLESVFEEFVQIPNDLQPGVRGTGLGLPYSRRTAEALGGTLTAISTPGVGSAFTLRLPSSPAGPPSGPPAGPAAGPAATDTAAPDGTEDAARLGYVLVVDDDHGFAATVAGMLRASAERVSVADRGDHALDLLRDDPADAVVLDVQMPELDGVSVLRALRAQHPGTAAVLVSAGPAPVQDTVVRPAPFLSKARLDTAMLLAALRQDGAEDRRGNANANANANA
AK018_028041044hypothetical proteinGTGACGGGCGTCGTCGACCCGGACGAGCTGCCGACGGTGCTCGAGAGCGGGGCCTGGTACACGATCGACCACCCGTCGGCCGTGGGACGGGTCCGCCGCGCGGCGTCGGACGCGGCCCGCCGGCTCGGCCTCGACGAGTCCCGAGCCGCCGAGGCCGGGCTCCTGGTCTCCGAGCTGGCCACCAACCAGGTGCGCCACGCCGGTTCCGGCACGGTGCTGTTGCGGGTGCGCCGCGACGCAGCGGGTGCTGCGCTGGAGATCCTCGCGGTCGACTCGGGCCCGGGGATGCGGAGCGTCGAGGCCGAGATGCGCGACGGAGTGTCCTCCCGGGGCACACTCGGGATCGGGCTCGGCACCCTCCCCCGGCTCGCCTCCTGGTGGGACGCATGGTCGGCCCCGGGAGCCGGGACGGTCGTCGCGGCTACCGTCCACGCCCGGGGAGACGCGGCGGAGCCTTCCAGCACGGCCCCCGTGCCGGCCGGCCTCACGCGCGCGATGACGGGCCAGTCCGTCTGCGGGGACGCCTTCGCCGTCAAGGGCTCCCCCGGTGCCCGCACGGTCCTCGTCTCGGACGGGCTGGGGCACGGCCCGCTCGCGGCCGCGGCCTCGAGGTCCGCGGTGCGCGCCTTCCTCGCGGCTCCCGACACCGGGCCCACCGAGCTGCTGCAGATCGTGCACGAGGCGCTGCGCGGGACCCGCGGCGCAGCGGTCGCCGTCGTGCAGCAGTCGGGCGGCTTCCTGCACCACGTCGGCGTCGGCAACGTCGGGGGCGCGATGCACGGCGCGCGGACGCGCACGCTGCTGAGCCAGCCGGGGATCACCGGATCGCACGCGCCGCGGCTGCACGAGACGGTGCACGCCCTCGAGCCTCGGGAGGTCGTGACGCTGTTCAGCGACGGCCTGACCGACCGCGCCGCCCTGTCCCGCTACCCCGGCCTGGCCCGGCGCTCGCCCCTCGTGGTGGCCGGCGTGCTCCTGCGCGACTTCGGCGTGCGCCGCGACGACGCCTGCGTCGTGGTGATGCCGGTGGGTGAGGCGGCGTGAMTGVVDPDELPTVLESGAWYTIDHPSAVGRVRRAASDAARRLGLDESRAAEAGLLVSELATNQVRHAGSGTVLLRVRRDAAGAALEILAVDSGPGMRSVEAEMRDGVSSRGTLGIGLGTLPRLASWWDAWSAPGAGTVVAATVHARGDAAEPSSTAPVPAGLTRAMTGQSVCGDAFAVKGSPGARTVLVSDGLGHGPLAAAASRSAVRAFLAAPDTGPTELLQIVHEALRGTRGAAVAVVQQSGGFLHHVGVGNVGGAMHGARTRTLLSQPGITGSHAPRLHETVHALEPREVVTLFSDGLTDRAALSRYPGLARRSPLVVAGVLLRDFGVRRDDACVVVMPVGEAANANANANANA
AK018_02805417rsbTCOG2172Serine/threonine-protein kinase RsbTATGACGACCGTGGCACCGACCACGACGCAACGGCTCGAGGTCCAGGGGGACGCCGACGTCGTCCGGGTCCGTCAGCTCGTCCGCGGCGTCGCGCAGGAGGCCCGGCTCTCGCTCGTGGACCAGACCAAGCTGGTCACCGCCGCGAGCGAGCTGGCCCGGAACACCCTCGTCCACGGCGGCGGTGGTCACGTCATCGTGGAGCTGGTCACGGAGGGCGCGCGGACGGGGGTGCGGGCCGTCTTCGCGGACGACGGGCCCGGCATCGCCGACCTCGACCTCGCCCTGACCGACGGTTGGACGAGCGGGGGCGGACTGGGCCTCGGCCTGTCGGGGTCCCGCAGGCTCGTGGAACGCTTCTCGATCGACTCAGCCCCGGGCGCCGGCACCCGCGTCGAGATCGTGGCCTGGTCCCGGTGAMTTVAPTTTQRLEVQGDADVVRVRQLVRGVAQEARLSLVDQTKLVTAASELARNTLVHGGGGHVIVELVTEGARTGVRAVFADDGPGIADLDLALTDGWTSGGGLGLGLSGSRRLVERFSIDSAPGAGTRVEIVAWSRNANANANANA
AK018_02806408rsbSCOG1366RsbT antagonist protein RsbSATGAACGACGCCATCCCGATCCTGAAGATCGGCTCGACCCTGCTGGTGTCCATCCAGGTCGACCTGCAGGACACCACGGCCCTGAGGCTGCAGGAGGACCTCGCGGAGCGGATCACCACCACCGGCGCGCGCGGCGTGATCATCGACATCTCCGGCCTGGAGATCGTGGACAGCTTCATCGGGCGGATGCTGGCGACCGTCGCCGCGATCTCCCAGGTGCTCGACGCACGGACCGTCGTCGTCGGCATGCGTCCGGCCGTGGCGATCACCCTGGTCGAGCTCGGCCTCTCGCTCGGCGGCGCCCGGACCGCGCTCGACGTGGACCGAGGGCTCGCCCTGCTGGAGAGCGACGACACGCCCTCCGCCGGGGCCACGCTGCTGGACGCCGCGAAACGCAGGGCGCGATGAMNDAIPILKIGSTLLVSIQVDLQDTTALRLQEDLAERITTTGARGVIIDISGLEIVDSFIGRMLATVAAISQVLDARTVVVGMRPAVAITLVELGLSLGGARTALDVDRGLALLESDDTPSAGATLLDAAKRRARNANANANANA
AK018_02807834hypothetical proteinATGTCCGATGCCTCGACCGGGGCGCTGTCCCAGGTCCTCACCCGTCACGCCGACGAGGTCCGTACCGCGTGGCTCGACGCCGCCGCGGCAGAGCTGCACGGCAGGAGCTCCCGCGGCGAGCTCGACAGGGAGCAGACCGAGATCTTCGAGGCGCTGGTCGGCGGCCTGGCCGACGGCGGCACCACGCTTCGCGACGCGGCCTTCGACCAGCTCCGCGGCATCCTCGCCGACGTCTCGGCCGCCCGCGCGCGCCTCGGCTACACGCCGCGGGAGACCGCGATGGCGGTGTTCGCCCTCAAGGAGGGCCTGTACGCCCTCGTCTCCGACGCGTCGGTGCGCACGGACATCACGAGCCTGCTCCGCCTCGTGGACGACCTGGGTCTGTACACCTTCGAAGCCTTCGCCGAGGCCCGCGAGGCGATCATCACCGAGCAGTCGGAGCAGCTCCTGGAGCTCTCGACGCCGGTGGTGAAGATCTGGGACGGCGTCGTCGCGGTCCCCCTGGTGGGCACCCTCGACTCGGCCCGCACCCAGGTCGTCATGGAGAAGCTTCTCAACACCCTCGTCGAGACGGGCAGCGAGCACGCCATCATCGACATCACCGGGGTCCCGGCCGTCGACACGCAGGTCGCCCAGCACCTGTTCAAGACGGTGGTGGCCGCTCGGCTGATGGGGGCGCAGTGCACGATCAGCGGCATCCGTCCCCAGATCGCGCAGACCATCGTCTCGCTCGGCATCGAGTTCGGCGACATCCGCACACGGGCCTCCCTGGCCGACGCACTCGTCGACGCGCTGGAGTCGGGGGGCCGGTCCGCCGCCGAGGTGACCGGATGAMSDASTGALSQVLTRHADEVRTAWLDAAAAELHGRSSRGELDREQTEIFEALVGGLADGGTTLRDAAFDQLRGILADVSAARARLGYTPRETAMAVFALKEGLYALVSDASVRTDITSLLRLVDDLGLYTFEAFAEAREAIITEQSEQLLELSTPVVKIWDGVVAVPLVGTLDSARTQVVMEKLLNTLVETGSEHAIIDITGVPAVDTQVAQHLFKTVVAARLMGAQCTISGIRPQIAQTIVSLGIEFGDIRTRASLADALVDALESGGRSAAEVTGPGPT0014945_975DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014945-rsbRD|yqhA-K17763NANA
AK018_028081710pgi_1COG0166Glucose-6-phosphate isomeraseATGACGACCTCCCCTGTCGACGCCACCACCACTCCCGCCTGGGCCGACCTGGGCAGCCACCTGTCGGACTTCCGCGGCGACCTGCGCGGCTGGTTCGCCTCCGACCCGCAGCGCGCCGAGCGGCTCACCCGCACCGCCGGCGACCTGACGGTCGACCTGTCGAAGAACCTCGTCACCGACGACACCCTCGACCTGCTGGTCCGTCTCGCACGCGACGTCGCGCTGCCCGAGCGCATCGAGGCGATGTTCACCGGCGAGCACATCAACGTCACCGAGGACCGCGCCGTGCTGCACACGGCGCTGCGCCGCGCCCCCGGCACGCAACCGCCCCTCGTCGTCGACGGCCAGGACGTCGACGCCGACGTCGCCCGCGAGCTCGACAAGGTCTGCGCGTTCGCCGACCAGGTGCGCTCCGGCGAGTGGAGCGGCATCACGGGCAAGCCCGTCACCACGGTCGTCAACATCGGCATCGGCGGCTCCGACCTCGGCCCCGTCATGGTCTACGAGGCCCTGGAGCCCTACGGCAGCAGCGACCTCGAGGCGCGTTTCGTCTCGAACATCGACCCCACCGACGTCGCGCAGAAGCTCTCCGGCCTCGACCCCGAGACCACGCTGTTCATCGTCGCCTCCAAGACGTTCGGCACCCTCGAGACGCTCACCAACGCCCGTCTCGCCCGCGCCTGGCTGTGGGAGCAGCTCATCGCGGCCGGTGCGATCGAGGACGACGACGACGCCAAGCAGGCTGCGGTGCGCGCCCACTTCGTGGCCGTCTCCACGGCCCTCGACAAGGTCGAGGCGTTCGGCATCGACCCCGCCAACGCGTTCGGCTTCTGGGACTGGGTCGGCGGCCGGTACTCGGTGGACTCCGCGATCGGCACCTCGCTGGCTGTCGCGTTCGGGCCCGACGTCTTCCGCGAGCTGCTCGCCGGCTTCCGCACCATGGACGAGCACTTCCGCAGCACCCCGCTGGAGCAGAACGTCCCGGCACTGATGGGCCTGCTCAACGTCTGGTACGTCAACTTCCTCGACGCGCACACGCACGCGGTGCTCCCCTACGCCCAGCAGCTGCACCGGTTCCCCGCGTACCTGCAGCAGCTCACCATGGAGTCCAACGGCAAGTCGGTGCGCTGGGACGGCAGCCCCGTCACCACGCAGACCGGCGAGGTCTTCTGGGGCGAGCCCGGCACCAACGGCCAGCACGCCTTCTACCAGCTCATCCACCAGGGCACCCGGACCATCCCGGCGGACTTCATCGCGTTCGCCACCCCCGCCTACCCCCTCACCGACGCCGAGGGTGACGGCAAGGCGGTGGCGGCCGGGGCCGACGTCCACGAGCTGTTCCTCGCCAACTTCTTCGCCCAGACCAAGGCCCTCGCCTTCGGCAAGACCGCCGACGAGGTCCGGGCCGAGGGCACCGCCGAGGAGCTGGTCAGCGCGCGCACCTTCTCCGGCAACCGGCCGACGACGTCGATCATGGCACCGGCCCTCACGCCCTCCGTGCTCGGCCAGCTCGTCGCCCTCTACGAGCACATCACGTTCGTCCAGGGCGTCGTGTGGGGCATCGACTCGTTCGACCAGTGGGGTGTGGAGCTCGGCAAGAAGCTCGCCCTGGAGATCGCGCCCGCCGTGTCCGGGGACGACGACGCCCTGGCCGCGCAGGACTCCTCCACACGCCGGCTCGTGGAGTACTACCGCGCCCACCGCGGCTGAMTTSPVDATTTPAWADLGSHLSDFRGDLRGWFASDPQRAERLTRTAGDLTVDLSKNLVTDDTLDLLVRLARDVALPERIEAMFTGEHINVTEDRAVLHTALRRAPGTQPPLVVDGQDVDADVARELDKVCAFADQVRSGEWSGITGKPVTTVVNIGIGGSDLGPVMVYEALEPYGSSDLEARFVSNIDPTDVAQKLSGLDPETTLFIVASKTFGTLETLTNARLARAWLWEQLIAAGAIEDDDDAKQAAVRAHFVAVSTALDKVEAFGIDPANAFGFWDWVGGRYSVDSAIGTSLAVAFGPDVFRELLAGFRTMDEHFRSTPLEQNVPALMGLLNVWYVNFLDAHTHAVLPYAQQLHRFPAYLQQLTMESNGKSVRWDGSPVTTQTGEVFWGEPGTNGQHAFYQLIHQGTRTIPADFIAFATPAYPLTDAEGDGKAVAAGADVHELFLANFFAQTKALAFGKTADEVRAEGTAEELVSARTFSGNRPTTSIMAPALTPSVLGQLVALYEHITFVQGVVWGIDSFDQWGVELGKKLALEIAPAVSGDDDALAAQDSSTRRLVEYYRAHRGPGPT0017735_297DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017735-pgi-K01810NANA
AK018_02809486hypothetical proteinATGGCCATGTTCACGGTCTGGAAGTTCGACGATCCGGCGGGCGCCGGCAAGGCCGCCGAGATCATCAAGAACGCCGATTCGGAAGGGCTGATCAAGCTCGTCGACCACGCCGTCGTGGAGTGGCCCGAGGGCGAGAAGCACCCCAAGACCCACGGCGTGAACGACGACGCCGCCAAGGCCGGTGGATGGGGTGCCCTGTGGGGTCTCCTCATCGGCGCGCTGTTCTTCATCCCGGTGGTCGGGGCCGTCGCCGGCGCCGCGATCGGCGGGCTGAGCCGCGCGCTGTCCAGCACGGGGATCAGGAAGGAAGACCTCGAGAAGATCCGCGAGGAGGTCGTCCCCGGGACCTCGGGCCTGTTCCTCATCTCGGAGCAGGGTGACCCGGACCGCTTCCGCGAGCGCCTGCACGGTCTCAAGGCCACCCTGATCAGCTCGAACATGTCCGACGTGGAGACGCAGGAGCTGCGCGACATGTTCGGCAGCTGAMAMFTVWKFDDPAGAGKAAEIIKNADSEGLIKLVDHAVVEWPEGEKHPKTHGVNDDAAKAGGWGALWGLLIGALFFIPVVGAVAGAAIGGLSRALSSTGIRKEDLEKIREEVVPGTSGLFLISEQGDPDRFRERLHGLKATLISSNMSDVETQELRDMFGSNANANANANA
AK018_02810870hypothetical proteinATGAGAGAGCTCTCATCCGGCTGCTCGCGCGGGCCGGCGTCCGGGACGACGACGGCCCGCCCCCCCCCGGGCCCCCGGCGCGGGGCGGGGACCCCACGGGGGCGGGCCCGCCCGCGCACACGACCCCGCCTCCGCCGGCGGGGGGCCCGGGGGGCCGCCCGCCCCCCCCCCCCCCCCCCCCCCGCGACCGGTCGAGCACCGGTCGCGGGCCGTGGACACCTCGGGGTCGGCCGAGCTCGCGCTCAGTCCCCGGAGTCCGCGGAACCCGAGTCCGCCGACTGCGGCGACTGGGCCGAAGCGGCCGAGGCGGCCGACGGTGCGGACTGCGGGGACTGCGGCGCCGCCGCCGGGGAGGCGGCGGACCGGGCACTCTGTGCGCTCTGCGCGCTCTGCGCCGACGCCGCGGTCTTCTTCGGCGCAGGGGCCGGCGAGGCCGCCGAGCGGGCGCTCTGCGCGCTGCGGGCGCTCTGCGCCGACGCCGCGGACTGTGGTGCCGGGGCCGCGGAAGCGGCCGACCGGGCCGACCGCGCGCTCTGCGCCGAGGCCTGGGACTGCGCCGAGGTCGCGCTGGGCGACGCGACCGCGGTCGAGGACGGCGAGGGCCCCGGCGAGCTCGAGGCCGCCGGAGCCGACGTCGTCCGCATCCCGTCCAACGTCACCGCCGCCGCGCTGTCACCCAGGGACACCTGGTCGAGCAGGCCGATCCCCGCTGCACCGACGGTCCCGACGCCGAGCACCGCGGCGGTCCCGACCGCCCATCGCTTCTTCACCGAAGACTTCATGGCTGTCACTTCCCTGTTCGCACGTCGTCTGCTGTGGACACGTTCCACGGTGCCGCGACGCCATGAGAGGCCGAGGAAGCCCCCATGAMRELSSGCSRGPASGTTTARPPPGPRRGAGTPRGRARPRTRPRLRRRGARGAARPPPPPPPATGRAPVAGRGHLGVGRARAQSPESAEPESADCGDWAEAAEAADGADCGDCGAAAGEAADRALCALCALCADAAVFFGAGAGEAAERALCALRALCADAADCGAGAAEAADRADRALCAEAWDCAEVALGDATAVEDGEGPGELEAAGADVVRIPSNVTAAALSPRDTWSSRPIPAAPTVPTPSTAAVPTAHRFFTEDFMAVTSLFARRLLWTRSTVPRRHERPRKPPNANANANANA
AK018_02811384hypothetical proteinATGAAGTCGTCCGTCACTAAGCGCTGGATCGTCGTCGGGACCGCCGCCGCCCTGGGGGTCGGGGTCGCGAGCGCCGCCGCCGTCGGCCTGGACGACCAGGCCTCGGAGACGGAGAGCGTCGCCGCGGTCACGCTGCCCGAGCAAGAGGTCGCGACCGGACCCGGCGACGACGTGTCGCCGACGGGCACGGACGTGACCGACCCGTCGCCGGAGTCGGCCGACTCGCCGGACGAGTCCGCCGTCGACTCCGCGGACTCGCCGCAGGTGGCCGAGCCGCAGGCCCACGAGGTCAGCGCCCAGTCGGCCCAGAGTGCGCAGTCCGCCCGGTCTGCCCAGAGCGCTCGGTCCGCCCAGTCGGCACGCTCCGCGCAGTCCGCGGGCTGAMKSSVTKRWIVVGTAAALGVGVASAAAVGLDDQASETESVAAVTLPEQEVATGPGDDVSPTGTDVTDPSPESADSPDESAVDSADSPQVAEPQAHEVSAQSAQSAQSARSAQSARSAQSARSAQSAGNANANANANA
AK018_028121215hypothetical proteinATGGGACAGAGCGACCTGGACCTCCTGACCGGTGCCGACGCGACCGAGCTGCTGGCCACCGCGGTGTCGACCGCCGGGGGTGAGCTCGTCGACTGGTCGGTGCGGCAGGTCGACCACCGTCCGGGACGGTCCACGACCGTGGCCTACCGGGCCCGGGTCCGCTGGGCGTCCGACGGCGGCGTCGACGCGCCGGTGCGCACCGAGACGCTGGGCGCGTCGCTCGGCCGACCGGGGGACCAGCAGGTGCCCGGGGTGCTGACGCTGGACGACGGCGAGCACGCGGTCGCCGTGTGGCGGTTCCCCGGTGATCCGGCGCTGCCGGCGCTGGCCACCGCCTACGACGCGGAGTCGGTCGCGACGCTCCTCGGGGACCTCGGGGTGCCGGAGGTCGCGCGCGGTCCGGTGACGCTGCGGGTGCGCGCCTACCGTCCGACCCGGCGTGCCGTCATCGAGGCGAGCACGCCGGGGGCCCGGGTCTTCCTCAAGGTCGTGCGGCCCGACAAGGTCGACGACCTGCACGAGCGGCACGCGCTGCTGGCCGGTGCCGGGCTCCCGGTGCCCAAGCCGCTGGGGCGCAACGCGGACGGGCTGCTCGTCATCGCACCGCTGGCCGGCGAGTCCATGCGCCACGCGGTACGCGACGGCGGTGCCGTCCCGACGGCGGCGGAGGTGGTCGGGATGCTCGACCGGCTCCCCGACGAGGTCGCCCTGCTGCCCCGCCGCACGTCCTGGAGCGAGAACGCCGGGCACTACGCCTCGGTCATCGGAGCCGCGCTGCCCGCCGAGGCGGGCCGCGCCGCCCACCTGGCCGCCGTCGTCGGCGACCGCATCTCCGGGCTGACGGCCGACGAACCCACCCACGGCGACCTGTACGAGGCGCAGGTCATGCTGGAGTCGGGCCGGATCACGGGGCTGCTCGACGTCGACTCCGCCGGTCCCGGCAGGCGGGCTGACGATCTGGCGTGCCTGGTGGCCCACCTGGAGACCCTGTCGCTGCTGCGCGGCTGGGACGCCGAACGGCTGCGCGGGCTCGCGCGTGAGTACGCGGCCGGGTTCTGCGGCGTCGTCGACCCCACCGAGCTGTCCGCGCGCGTCGCGGGCGTGCTGCTGTCGCTGGCGACCGGCCCGCACCGTGTGCAGGAGGCCGACTGGCCGGCGCAGACGTCGCGGCGGCTGGACGCCGTCGAGCACTGGCTCACCGGGGCACCCGGGTGAMGQSDLDLLTGADATELLATAVSTAGGELVDWSVRQVDHRPGRSTTVAYRARVRWASDGGVDAPVRTETLGASLGRPGDQQVPGVLTLDDGEHAVAVWRFPGDPALPALATAYDAESVATLLGDLGVPEVARGPVTLRVRAYRPTRRAVIEASTPGARVFLKVVRPDKVDDLHERHALLAGAGLPVPKPLGRNADGLLVIAPLAGESMRHAVRDGGAVPTAAEVVGMLDRLPDEVALLPRRTSWSENAGHYASVIGAALPAEAGRAAHLAAVVGDRISGLTADEPTHGDLYEAQVMLESGRITGLLDVDSAGPGRRADDLACLVAHLETLSLLRGWDAERLRGLAREYAAGFCGVVDPTELSARVAGVLLSLATGPHRVQEADWPAQTSRRLDAVEHWLTGAPGNANANANANA
AK018_028131482sasA_8Adaptive-response sensory-kinase SasAGTGAGCGGACCCCACCGCTGGACGTGGCGGCACCCCTTCGGGGCGCTGTCCGTCCGGACCAAGGTGCTGGCGTCCGTCCTGGCGATGTCGGCCCTCGGGCTGGCGGTCACGTGGACCGTCACCGACGCCATCCAGACCCAGGGGATCGTCGACCGGGTCGAGGACGAGCTCGACCAGGAGGTCGAGGAATTCCGGGTACTGGCCGAGCGGGGCGTGGACCCCGCCACCGGTGACCCCTTCACCGGCGTCGCCGAGCTGCTGCAGGTCGCCATCGAACGCAACGTGCCCGGTCCGGACCAGATGCTCGTCACGTTCGTCGCCGGGGAGCCGCAGCTCTACTCCCCGCAGTGGGCGCGGCCCGTCGTCGACGACCCGGCGCTGCGCGACCTCGTCGACTCGATCGCCCCGGACGCCTCCCGCGTCTCCCAGCGCTGGATCGACACCGAGGTGGGCCGGATGGACGTGGCCGCGGTCCCGGTGAGCGTCACCGGCAGCGACGACCACGGCACCTACGTGGTCGGGATCGGCACCGACATGGCGCTCGCGTCCCAGCTGGCGCTGCGGCAGACGTTCGCGCTGGTGTCGGTGGCGGTGCTGCTGCTGGTCGGCGTGGTCGGCTGGGTCGTGGCCGGGCGGCTGCTGCGGCCGCTCGAGCTGCTGGCCGCGACGGCCCAGCAGGTCGGCGGGGACGACCTGACGCGGCGGGCGCCCGTGACGGGAGACGACGACGTCGCCTCCCTGGGCCGGGCGTTCAACACCATGCTCGACCGGGTCTCGGACGCCTTCGACGCGCAGCGCCAGTTCCTGGACGACGCCGGCCACGAGCTGCGCACCCCGCTGACGGTGCTGCGCGGTCACCTCGAGCTGCTCGACCCCGACGACGCGCAGGACGTCGCCGAGACCCGGGCCCTGCTGCTCGACGAGACCGAGCGGATGAGCCGCATCGTCGAGGACCTCGTCCTGCTCGCCAAGGCGGACCGGCCCGACTTCGTGCAGGTCGGGCAGGTGGACCTCGGCCGGCTCACCGACGACCTGCACGACAAGGCCCGCGCCCTGGGGGACCGCACCTGGCTCGTCGACGAGCGCGCCGAGGCGACCGTGCGCGGCGACGAGCAGCGGCTCACGCAGGCGCTGCTGCAGCTCGCCGACAACGCCGTGAAGTACACCCCGCCCGGGACCCGGGTGGCCCTCGGCAGCGCCGTGCGCGACGGGACCGCCGTGCTGTGGCTGCGCGACGAGGGACCGGGCGTCCCCGAGGCCGAGCTGGACCGCATCTTCGAACGGTTCGTCCGCGTCGACGCCACCGGGGAGCGGGGCTCCGGGCTGGGCCTCGCCATCGTCGCGGCCATCGCGGCCGGCCACGACGGTACCGTCGCGGCGACGCGCGGCGACCCCACCGGGGCGGCACCCGGCCTGCGCGTGACGCTCACCTGGCCGGCCGCCGTCGTCCACCCCGACCGCACCCCCGAGGAGACCCCATGAMSGPHRWTWRHPFGALSVRTKVLASVLAMSALGLAVTWTVTDAIQTQGIVDRVEDELDQEVEEFRVLAERGVDPATGDPFTGVAELLQVAIERNVPGPDQMLVTFVAGEPQLYSPQWARPVVDDPALRDLVDSIAPDASRVSQRWIDTEVGRMDVAAVPVSVTGSDDHGTYVVGIGTDMALASQLALRQTFALVSVAVLLLVGVVGWVVAGRLLRPLELLAATAQQVGGDDLTRRAPVTGDDDVASLGRAFNTMLDRVSDAFDAQRQFLDDAGHELRTPLTVLRGHLELLDPDDAQDVAETRALLLDETERMSRIVEDLVLLAKADRPDFVQVGQVDLGRLTDDLHDKARALGDRTWLVDERAEATVRGDEQRLTQALLQLADNAVKYTPPGTRVALGSAVRDGTAVLWLRDEGPGVPEAELDRIFERFVRVDATGERGSGLGLAIVAAIAAGHDGTVAATRGDPTGAAPGLRVTLTWPAAVVHPDRTPEETPPGPT0004100_923DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
AK018_02814657mprACOG0745Response regulator MprAATGAGCCGCATCCTGGTGGCCGAGGACGAGGACCGCATCGCCCAGTTCATCCGCAAGGGGCTCAAGGCCCACGGGTTCGTCCCGACCGTGGTGGGCGACGGGCTGTCCGCCGTGCAGCACGCGCTCGCGGGCGAGTTCGACCTGATGGTGCTCGACATCGGGCTGCCGCAGGTCGACGGCTTCGAGGTGCTCTCCAGGCTGCGCGGGTCCGGCAGCACGATGCCGGTGATCATCCTGACCGCGCGCGACTCCATCACCGACCGGGTGTCCGGGCTCGAGGGCGGCGCCGACGACTACATGGCCAAGCCGTTCGGGTTCGAGGAGCTGCTCGCGCGGATCCGGCTGCGCCTGCGCGACCCGGGGCGGGCCGAGCACTCCGTGCTCGAGCACCGCGGGCTGGTCCTCGACCCGGGCACGCGGCGGATCACCGTCGACGGGCGCGAGGTCGACCTGTCCGCGCGGGAGTTCGCGCTGGCCGAGGTGTTCCTCGCCAACGCCGGCCGGGTGCTCTCGCGCGAACAGATCCTGTCGCGGGTGTGGGGGTACGACTTCGACCCCGGGTCGAACGTGGTGGACGTGTACGTGCGCTACCTGCGCAGGAAGGTCGGGGCGGACCGGATCGAGACGGTGCGCGGGATGGGGTACCGCCTCGTCTGAMSRILVAEDEDRIAQFIRKGLKAHGFVPTVVGDGLSAVQHALAGEFDLMVLDIGLPQVDGFEVLSRLRGSGSTMPVIILTARDSITDRVSGLEGGADDYMAKPFGFEELLARIRLRLRDPGRAEHSVLEHRGLVLDPGTRRITVDGREVDLSAREFALAEVFLANAGRVLSREQILSRVWGYDFDPGSNVVDVYVRYLRRKVGADRIETVRGMGYRLVPGPT0003915_1693DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003915-pmrA-K07666NANA
AK018_028151074degA_4COG1609HTH-type transcriptional regulator DegAGTGAGCACCGCCGCCGACCCGCCCGCCGCGGGTCCCACGACCAGCCCGCCGCCCGGTCGGGTGACGATCTCCGACGTCGCGCGCGTCGCCGGGGTCTCGGTCGCGACCGTCTCCAAGGTCGTCAACAACCGCTACGGCGTCGCGGCGTCCACCGCCGAGCGGGTCCTCGCCGTCGTGGGCGAGCTCGGCTACGAGTCCTCCCTGGTCGCCCGCAGCCTGCGGCGGCAGTCCACCAACGTCGTCGGCGTGCTGGTCGCCGAGTTCGAGCCGTACTCGACCGAGCTGCTCAAGGGGATCTCGTCGGCCGTCGGCGGCACCGGCTACGAGCTGCTCGCCTACAGCGGCGGGTCCGACGGCGGCGTGCCCGGCGGGTGGGAGCGCCGCTCGCTGTCCCGGCTCGCCGGCACCCTCATCGACGCCGCGATCGTCGTCACCCCCACGATGGTGATGTCCGAGGCCAACGGCATCCCCGTCGTCGCCGTCGACCCACACACCGGCCCCGAGGGCACCCACACCGTCGACTCCGACAACGTCACCGGCGCCCGGGAGGCCGTCGAGCACCTGCTCGGGCTCGGGCACCGTCGCATCGCCCACCTGGGCGGACGCTCCGACCTGCAGTCCGCCCGGCTGCGCGAGCTCGGCTACCGCGAGGCGCTCGAGGCCGCCGGCATCGCCGTCGACCCCGACCTGGTCCGCGTGGGCGGATACCGGCCCGACACCGCCGACACCCCGGCGCGCGAGCTCCTCACGACGTCCGGCGCCGAGCGGCCCACCGCCGTGTTCGCCGCCAACGACCTCTCCGCCATCCACCTGATGGAGGTCGCCGCCGAGCTCGGCATCCGGGTGCCGCAGGACCTGTCCGTCGTCGGTTTCGACAACGTCCCCGAGTCGATGACCACCACCCCGGCGCTCACCACCGTCGCCCAGCCGCTGCACCAGATGGGCGCCGAGGCCCTGCGGATGGTCCTCGACCTGCTCGGCGGGACGCCCCGCGAGCAGCACCTGCGCCTGCCGACCTCGCTCGTCGTCCGCGGCAGCACCGCCCCGCCCCCGAGCCCTCCTCCCGCGAGGTAGMSTAADPPAAGPTTSPPPGRVTISDVARVAGVSVATVSKVVNNRYGVAASTAERVLAVVGELGYESSLVARSLRRQSTNVVGVLVAEFEPYSTELLKGISSAVGGTGYELLAYSGGSDGGVPGGWERRSLSRLAGTLIDAAIVVTPTMVMSEANGIPVVAVDPHTGPEGTHTVDSDNVTGAREAVEHLLGLGHRRIAHLGGRSDLQSARLRELGYREALEAAGIAVDPDLVRVGGYRPDTADTPARELLTTSGAERPTAVFAANDLSAIHLMEVAAELGIRVPQDLSVVGFDNVPESMTTTPALTTVAQPLHQMGAEALRMVLDLLGGTPREQHLRLPTSLVVRGSTAPPPSPPPARPGPT0017992_4101DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_028161335hypothetical proteinATGACGAGGACACAGCGAGGAGCGACTGCCATCGCCCTCGGCGCGACCGTGGCGATGCTCGCGACGGCCTGCGCAGGGCAGGGCACGGCCGACCAGGACACCGCGGACACCGAGGGCACCAGCACCGAGGACGCCGGCGGCGACGTCACCCTCGAGTGGTGGCACAACTCCAACACGGGGGAGGGCAAGGAGTACTACGACCAGGTCGCCGCGGACTTCGCCGAGGCGAACCCCGGGGTGACCGTCCAGGTCGAGGCCATGCAGCACGAGGACATGGTCACCAAGCTCCAGGCCGCCATGCAGGCCGGCACGGACGTCCCGGACGTGTTCATGAGCCGGGGCGGCGGCGAGCTGCAGAACGACGTCGACGCCGGGCTGCTGCGCGACCTCACCGACGACGCCGCCGACACGATCGACACGATCTCGGCGTTCACCGGCCAGTACACGATCGACGACCAGGTCTACGCCCTGCCCTTCTCCATGGGCATCGTCGGCTTCTGGTACAACAAGGACCTGTTCGCCGAGGCCGGGATCGACGACGTCTCCCCGGACCCCACGTTCGAGGAGTTCTCCGGATACGTCGACCAGCTCCAGGCCGCCGGGATCGACCCGATCTCCGTCGGCGCCGGCGACAAGTGGCCCGCCGCGCACTACTGGTACTACGGCGTCGTGCGCGAGTGCGAGTTCGAGACCGTCGAGACCGCCATCGAGACCGGCGACTACTCCGACGAGTGCTTCCTGAAGGCCGGCGAGGACGTGCAGGCCATCCTGGACAAGGAGCCCTTCAACCCGGGCTTCCTGGCCACGGCCGCGCAGTCCGGCCCGACGTCGGCGTCCGGCCTGCTCGCCTCCGAGAAGGTGGGCATGGAGCTCGCGGGTCACTGGGAGCCCGGCGTGGTCGGAGGACTGCGCGAGGACGAGCAGGTGCCCGACTGGATGGGCTGGTTCGCGTTCCCGACGTTCGACGGCCAGGCCGGCGACCCCGCCGACCAGATGGGTGGCGGCGACGCCTGGGCCGTGTCCCAGGACGCCCCGGACGCCGCGGTCGACTTCGCCGCGTACCTGCTCTCCGACGAGGTCCAGCAGGGCTTCGCCGAGCTCGACATGGGCCTGCCGACCAACCCGGCGGCGACCGGCTCGCTGTCCAACGAGACGCTGGCCCAGCTCATCCCCGTCCGCGACGGCGGTGGCGAGACCCAGCTCTACCTGGACACCCGCCTCGGCCAGTCCGTGGGCGGCGCGATGAACGACGAGATCGCCCTGCTGTTCGCCGGCGAGTCCGGTCCGCAGGACGTCGTGGACGCCATCGAAGACGCTGCGGCGTCGCAGGGGTGAMTRTQRGATAIALGATVAMLATACAGQGTADQDTADTEGTSTEDAGGDVTLEWWHNSNTGEGKEYYDQVAADFAEANPGVTVQVEAMQHEDMVTKLQAAMQAGTDVPDVFMSRGGGELQNDVDAGLLRDLTDDAADTIDTISAFTGQYTIDDQVYALPFSMGIVGFWYNKDLFAEAGIDDVSPDPTFEEFSGYVDQLQAAGIDPISVGAGDKWPAAHYWYYGVVRECEFETVETAIETGDYSDECFLKAGEDVQAILDKEPFNPGFLATAAQSGPTSASGLLASEKVGMELAGHWEPGVVGGLREDEQVPDWMGWFAFPTFDGQAGDPADQMGGGDAWAVSQDAPDAAVDFAAYLLSDEVQQGFAELDMGLPTNPAATGSLSNETLAQLIPVRDGGGETQLYLDTRLGQSVGGAMNDEIALLFAGESGPQDVVDAIEDAAASQGPGPT0016330_2023DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
AK018_02817849melD_7COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGGCGCCGGCCCTCGCGATGCTCGCCCTGTTCGTGGTCTGGCCGGTCATCACGGCCGTGCAGATGTCGGCCTTCCGCTGGAACGGCCGCGGTCCGCTCGTCGACTTCGTCGGGCTCGCGAACTACGTCTCCGTGCTCACCGACGACGTGTTCGTCGGTTCGCTGGTCAACAACCTCGTCATCGTGGTGCTGTCCATCGCGATCCAGCTCCCGCTGGGCCTGGCGATCGCGCTGCTGCTCAACCGCAAGATGTGGGGGCAGGGCGCGCTGCGCACCATCATCTTCGTCCCCTACGTCCTCGCGGAGGTCGTGGCCGGGGTGGTCTGGTTCCAGCTGCTGCAGCCCTACTACGGCGTGCTCGACACCATCCTGCAGGCGGTCGGCCTGGAGCCGCCCGCGCAGGGCTGGCTCGGCGACCCGGACCTGGCGCTGTGGACCGTGATGGCCATCCTGACGTGGAAGTACCTCGGCCTGGCCGTGATCCTCTTCCTCGCCGGGCTCCAGGGCGTGCCCGAGGAGCTGTACGAGGCGGCCCAGCTCGACGGCGCCTCGTGGTGGCAGGTGCAGCGCAGGATCACCGTGCCGCTGCTGGGTCCCACGATCCGCACCTGGGGGTTCCTGTCGATGATCGGTTCGCTGCAGCTGTTCGACATGGTCTGGATCCTCACCAAGGGCGGGCCGGCCAACGCCACCAGCACGATGGCGATCTTCCTCGTCAACGAGGGCACCCGCAGCAACAACTTCGGCATCGCCGGCGCCGCCTCCGTGGTGCTCTTCCTGATCGCGCTGGTCATGGCGGTGCTCTACCAGCGACTCATCCTGCGCCGAGACGCGAAGGGGGTGGCGTGAMAPALAMLALFVVWPVITAVQMSAFRWNGRGPLVDFVGLANYVSVLTDDVFVGSLVNNLVIVVLSIAIQLPLGLAIALLLNRKMWGQGALRTIIFVPYVLAEVVAGVVWFQLLQPYYGVLDTILQAVGLEPPAQGWLGDPDLALWTVMAILTWKYLGLAVILFLAGLQGVPEELYEAAQLDGASWWQVQRRITVPLLGPTIRTWGFLSMIGSLQLFDMVWILTKGGPANATSTMAIFLVNEGTRSNNFGIAGAASVVLFLIALVMAVLYQRLILRRDAKGVAPGPT0016335_89DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_02818894ngcG_1COG0395Diacetylchitobiose uptake system permease protein NgcGGTGATGACCACGTCGACCCAGACGCCCGCCACGCCGACGACGGCGCCGAGCCGCCGCCGTCGTGGCAGCGCGGACAGGTTCCAGGGCGGCAACCCGGTCGTCTACGCGGTGGCCTTCCTGGTGGTCTGCGCGACGCTCGGACCCGTGGTCTACGGCGTGCTCGGCGGGTTCCGCAGCAACGCCCAGCTCGCCGACGCCCCGGCGTCCCTGCCCGATCCCTGGATCTTCTCCAACTACACCGGTGTGGTCACCGACCCGTCGTTCTGGCAGTACACGCTGAACTCCGTGGTCGTGGCCGTCGTCACCACGGCGATCGTCGTCGTCTTCGGCGTCATGGCCGCCTACCCGCTGGCGCGCTACGCGTTCAAGGGGCGCGAGGTGCTGTTCATGGTGTTCGTCGCGGGGCTGCTGTTCCCGGCCACGGTCGCCGTCGTCCCGCTGTTCATCCTGCTCACGCAGAACTTCGGGCTGGGCAACACCTGGTGGGGCATCGCACTGCCCCAGGCGGCGTTCGCGCTGCCGATGACGGTGGTCATCCTGCGTCCCTTCCTCAAGGCGCTGCCGAAGGAGCTCGAGGAGGCGGCCCAGCTCGACGGCACCAGCCGGATCGGGTTCTTCTGGAGGATCCTGATCCCCCTGTCCGGACCGGGCATGGTGACGGTCGGCGTGCTGGCCTTCGTCGGGTCGTGGAACGCCTACCTGCTGCCGCTGCTGCTGCTGCAGGGCGACATGAAGACGTTGCCGCTCGGCGTCGCCGACTTCTCCTCCGAGCACTCCTCCGACACCGCCGGCGTCTTCGCCTTCACCACCCTCGCCATGATCCCGGCGCTGGTGTTCTTCCTCGCGATGCAGAAGCGCATCGTCAACGGACTGCAGGGCGCGGTGAAGGGATGAMMTTSTQTPATPTTAPSRRRRGSADRFQGGNPVVYAVAFLVVCATLGPVVYGVLGGFRSNAQLADAPASLPDPWIFSNYTGVVTDPSFWQYTLNSVVVAVVTTAIVVVFGVMAAYPLARYAFKGREVLFMVFVAGLLFPATVAVVPLFILLTQNFGLGNTWWGIALPQAAFALPMTVVILRPFLKALPKELEEAAQLDGTSRIGFFWRILIPLSGPGMVTVGVLAFVGSWNAYLLPLLLLQGDMKTLPLGVADFSSEHSSDTAGVFAFTTLAMIPALVFFLAMQKRIVNGLQGAVKGPGPT0016340_233DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_028192442Beta-xylosidaseATGACCCACACCGCCGTCCCGGGCGTCACCCCGGTCCCACCGCAGGTCTCGGACCGCGTCGCGGCGCTGCACGCGCGGATGAGCCTCGAGGAGAAGGTGGCCCAGCTCGTGGGCTACTGGCTCGACCAGGGCGGCGACGTCGTGGCCCCGATGCAGGACGAGATGGCGGCCGGCCAGGCCACCTCCGACCGGCTCGGTGAGATCACCCGGCACGGCATCGGGCACTACACGCGGGTGTACGGCACCCGGCCCGTCGATCCGGTGGAGCGGGCCCGCTGGTTGTGGGGCGAGCAGCGCCGGCTGCGCGCCGAGACGAAGCTGGGCATCCCCGCGCTGGTGCACGAGGAGTGCCTGACCGGTCTGGCGGCCTGGCAGGCGGCGACGTTCCCGACGCCGCTGGCCTGGGGCGCCGCGTTCGACCCGGACCTCGTCGCCGAGATGGGCGCCCTGATCGGCGAGTCGATGCGCGCCCTCGGGATCCACCAGGGCCTCGCGCCCGTGCTGGACGTGATCCGGGACCCGCGCTGGGGACGCGTCGACGAGTGCATCGCCGAGGACCCGTACCTCGTCGGGACCGTGGGGACGGCGTACGTCCGCGGCCTGCAGGGATCGGGCGTGCACGCCACGCTCAAGCACTTCGTGGGCTACAGCGGGTCGCGGGCCGGGCGTAACCACGCACCGGTCTCCGCCGGTCCGCGCGAGATCGCCGACGTGTACCTGCCGCCGTTCGAGATGGCGGTGCGCGACGGCGGCGTCCGGTCGGTCATGGCGTCCTACAACGACGTCGACGGGGTGCCGCTGCACTCCTCGGACGAGTACCTCACCGGCGTCCTGCGGGACCGGTGGGGGTTCGACGGCGTGGTGGTCGCGGACTACTTCGGCGTCGCGTTCCTGCAGGTCATGCAGGGTGTGGCCGCCGACCGCGGTGAGGCCGCGGCGATGGCGCTCGCCGCCGGGCTCGACGTCGAGCTGCCCACCGGGGACGCGTTCGCCGCCCCGCTGGTCGAGGCGGTGCACGCCGGCCGCGTCGACGAGGCGCTCGTGGACCGCGCCGTGCTGCGGGCCCTCGCCCAGAAGGAGGAGCTGGGTCTGCTCGACGACGACGCGTTCACCGGTGAACCGCCGTCGGACGTGGACCTGGACTCCCCGCGGCACCGCGCGGTCGCACGCCGGCTGGCCGAGGAGTCCGTGGTGCTGCTGGCCGACGACGGCGTGCTGCCCCTGGACCGCTGGTCGACGCCGCCCGCGCGGGTGGCCGTCCTCGGACCGAACGCGGACCGCGCCGAGGCCCTGATGGGCTGCTACTCGTTCGCCAACCACGTGCTCGCGCACCACCCCGAGCACCCGCGCGGCTTCGAGATCCCGACGGTCCTCGAGGCGATGGGCGGAGCGTTCGCGGACGCCGGCGTCCCGGCACCCACGCTCGTCCACGCCCGCGGCTGCGACGTCGACGGCGAGGACACCTCGGGGATCGCCGAGGCCGTCGCGTCCGCCGCCTCGGCCGACGTGGCCGTCGTCGTCGTCGGCGACCAGGCGGGCCTGTTCGGCCGCGGCACCGTGGGCGAGGGCAACGACGTCGAGTCCCTCGAGCTGCCCGGTGTGCAGCGCCGGCTCGTCGAGGAGGTCGTCGCGACCGGGACCCCCGTGGTCATGGTCGTGCTGTCGGGTCGCCCGTACGCGATCGACTGGGCGCTCGACGGCGAGCGCGCCCCGTCCGCCGTCGTGCAGGCCTTCTTCCCCGGCGAGGAGGGCGGCGCGGCCGTGGCCGGCGTGCTGACGGGGGCCGTCAACCCGTCCGGCCGCCTGCCGGTGTCGCTGCCCCGCTCCGCCGGCGCGCAGCCCTACAGCTATCTGCACCCGGTGCTCGGCGGGCCGAGCGACGTGACCTCCACCGACTCCACGCCGCTGCGACCGTTCGGCTTCGGCCTGTCGTACACGACGTTCTCGTACTCGGACCTCGCGGTGGACGACGACGTCGCCACCGACGGGACGTTCACCGCCACGGTGCGCGTCACCAACACGGGTGACGTGGCGGGCACCGACGTGGTCCAGCTCTACGGCCGCGACCCGGTCGCCTCCGTGGCCCGACCGGTGGCCCAGCTCCTCGCCTACGAGCGGGTGGCGCTCGCGGCGGGGGAGTCGGTCGCGGTGACGTTCGCGGTGCCGGCGGCACGGTTCGCGTTCTCCGACCGCCGTCTGGTGCGCGTCGTGGAACCGGGGGACGTCGAGGTGTGGGTCGGGTCCCACGTGGCGGCGGTCGCCGAGTCCGCCGGCACGGACCTGCGGGACACCACCGGGGGTGCGATCACCAACGTCCGGGCCGCCGTCGAGCGTTCGCTGCCGGGTGCGGCGACGCCGCGGGCACGGCTCGCGCTGACCGGGCCGGTCCACGAGGTGGGCGTCGACGACGCGCGCCTGGCCACCGCCGTCGTCGCGAGGTAGMTHTAVPGVTPVPPQVSDRVAALHARMSLEEKVAQLVGYWLDQGGDVVAPMQDEMAAGQATSDRLGEITRHGIGHYTRVYGTRPVDPVERARWLWGEQRRLRAETKLGIPALVHEECLTGLAAWQAATFPTPLAWGAAFDPDLVAEMGALIGESMRALGIHQGLAPVLDVIRDPRWGRVDECIAEDPYLVGTVGTAYVRGLQGSGVHATLKHFVGYSGSRAGRNHAPVSAGPREIADVYLPPFEMAVRDGGVRSVMASYNDVDGVPLHSSDEYLTGVLRDRWGFDGVVVADYFGVAFLQVMQGVAADRGEAAAMALAAGLDVELPTGDAFAAPLVEAVHAGRVDEALVDRAVLRALAQKEELGLLDDDAFTGEPPSDVDLDSPRHRAVARRLAEESVVLLADDGVLPLDRWSTPPARVAVLGPNADRAEALMGCYSFANHVLAHHPEHPRGFEIPTVLEAMGGAFADAGVPAPTLVHARGCDVDGEDTSGIAEAVASAASADVAVVVVGDQAGLFGRGTVGEGNDVESLELPGVQRRLVEEVVATGTPVVMVVLSGRPYAIDWALDGERAPSAVVQAFFPGEEGGAAVAGVLTGAVNPSGRLPVSLPRSAGAQPYSYLHPVLGGPSDVTSTDSTPLRPFGFGLSYTTFSYSDLAVDDDVATDGTFTATVRVTNTGDVAGTDVVQLYGRDPVASVARPVAQLLAYERVALAAGESVAVTFAVPAARFAFSDRRLVRVVEPGDVEVWVGSHVAAVAESAGTDLRDTTGGAITNVRAAVERSLPGAATPRARLALTGPVHEVGVDDARLATAVVARPGPT0018670_10DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_CELLULOSE|HEMICELLULOSE_DEGRADATION,PGPT0018670-bxlA-K17641NANA
AK018_02820360hslR_1COG1188Heat shock protein 15ATGCGGATCGACATCTGGCTGTGGGCGGTCCGGCTCTTCAAGAGCCGGTCCGTCGCCGCGTCGACGCTGCGCTCCGGCAAGGTGCGCATCAACGGCAGCGTGGCCAAGCCCGCCAGCCAGGTGCAGGTCGGCGACCGCGTGACGTGGCGCGACCCCCTGCGCGGACGCATCGTCGTCGTGCGCGAGCTGCTGCCCAAACGCGTCGGCGCGCCGCTGGCGGTCAAGGCCTACGACGACCAGAGCCCACCGGTGCCCACCCGGCAGGAGCGCGAGGCCGTCGGCGTGCGCGAGCGCGGCGCCGGTCGCCCCACCAAGAAGGAGCGCCGCGACATCGACAAGCTGCGCGGACGACGGCGGTAGMRIDIWLWAVRLFKSRSVAASTLRSGKVRINGSVAKPASQVQVGDRVTWRDPLRGRIVVVRELLPKRVGAPLAVKAYDDQSPPVPTRQEREAVGVRERGAGRPTKKERRDIDKLRGRRRPGPT0014620_2219DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014620-hslR|yrfH-K04762NANA
AK018_02821483hypothetical proteinGTGGCCGCCACCAGTGCGGGTCTGATGCCCTTCCGCCGGCCGGCCGACGGCGGGATCGAGGTGCTGCTCGGCCACATGGGCGGGCCGTACTGGGCGGGCAAGGACGCCCACGCCTGGACGGTCCTCAAGGGCGAGCTCGACGACGGCGAGGACCCGCACGACGCCGCCCTGCGCGAGGCGGGCGAGGAGCTCGGCCTGGACCTGCCGCCGTCGGACGGACCCGACCTGGACCTCGGGGAGGTCCGCCAACGGTCCGGCAAGCGGGTGCTCGCCTGGGCGCGGGAGTGGACCTACCCCGGCCCGGACCTCGGTGCCGCGCGCAGCAACACCGTCGAGATCGAGTGGCCGCCGCGCTCCGGGAGGACGATCGCGGTGCCCGAGATCGACCGGGTCGCCTGGTGGCGGCCCGACGACGCTCGCCGGCTGCTGGTCACGGCACAGGCCGCGTTCGTGGACCGCCTGGAGGCGCTCGCCGCCGGGTGAMAATSAGLMPFRRPADGGIEVLLGHMGGPYWAGKDAHAWTVLKGELDDGEDPHDAALREAGEELGLDLPPSDGPDLDLGEVRQRSGKRVLAWAREWTYPGPDLGAARSNTVEIEWPPRSGRTIAVPEIDRVAWWRPDDARRLLVTAQAAFVDRLEALAAGNANANANANA
AK018_02822402hypothetical proteinATGACCGCGCCGCAGACCATGCACATCGGGGCCGTCGCCGACCGCACCGGCCTGTCGCTGCGGACGTTGCGGCACTACGACGACGTCGGGCTGCTGCGCCCGTCCGCCCGGTCCGACGGCGGGTTCCGCCTCTACACGGAGTCCGACGTGGAGCGGCTCCTGCTCATCCGTCGGATGAAGCCGCTGGGGTTCTCGCTCGAGGAGATGGCCGACCTGCTCGACGTCGCCGACCGGCTCGGTGCGGGCGACGAATCCGCGACGGGCGACGCACCGCCGTCGGACGTCGACACGCTGCGCGACCGCCTCGCCGGGCACCTCGCCGCCGCCGAGGAACGCCGCACCGACCTGGCCCGCAAGCTGGACATGGCCGACGAGCTCATCGGCCTGCTGCGCGCGCTCTGAMTAPQTMHIGAVADRTGLSLRTLRHYDDVGLLRPSARSDGGFRLYTESDVERLLLIRRMKPLGFSLEEMADLLDVADRLGAGDESATGDAPPSDVDTLRDRLAGHLAAAEERRTDLARKLDMADELIGLLRALPGPT0004135_2076DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexPQ-OpmE,PGPT0004135-cueR-K19591NANA
AK018_028231572dauA_1COG0659C4-dicarboxylic acid transporter DauAGTGTCCGACGACCTGCGCGCCTCCCTGCCCGATCCTGCTCCCGCCCCGCAGCCCGCCTCCGGGGCGCCCGAGGCCACGTCCTCGGGCTCGTTCCGGGCGGCCTTCAGCTCGATGACGCGGCTGCGCACCGAGGTCCTCGCCGGCCTCGTCGTGGCCCTCGCGCTCATCCCCGAGGCGATCGCCTTCTCGATCATCGCCGGCGTCGACCCCAAGATCGGGCTCTTCGCGGCGTTCACGATGGCGGTGACGATCTCGTTCGTGGGCGGCCGCCCGGCGATGATCTCCGCCGCGACCGGCGCCATCGCGCTGGTGATCGCCCCGGTGGTGCGGGACCACGGGCTCGACTACCTCGTCGCCACCGTGATCCTTGGCGGACTGATCCAGGTGGTCCTCGGCGTGCTCGGCGTGGCCCGCCTCATGCGGTTCATCCCCCGCTCGGTGATGGTCGGGTTCGTCAACGCGCTCGCCATCCTGATCTTCACCTCCCAGCTGCCGCACCTGTTCGGCGACAAGGTCACCGCGGACAACCGGTGGTGGATCTACGGCATGGTGGCGGTCGGTCTGGTGATCATGGTGTTCTTCCCGCGGATCACCTCGGTGGTCCCGGCGCCCCTGGTCGCGATCGTGCTGCTCACCGTGATCACGGTGTTCGCCGCGATCGCGGTGCCGACCGTGGGTGACGAGGGCGAGCTGCCGTCGTCGCTGCCCACGCTGTTCTTCCCGGACGTCCCGCTGAACCTGGAGACCCTGCAGATCATCGCCCCGTACGCCCTGGCGATGGCGCTGGTCGGACTCATCGAGTCGCTCCTGACGGCCAAGCTGGTCGACGACGTCACGGACACCCACTCGAACAAGACCCGCGAGTCGTGGGGGCAGGGCGTGGCGAACCTGGTCACCGGGTTCTTCGGCGGCATGGGCGGCTGCGCCATGATCGGCCAGACGATGATCAACGTGAAGGTCTCCGGCGCGCGCACGCGGCTGTCGACGTTCCTGGCGGGCGTGTTCCTGCTGCTCCTCGTCGTCACCCTCGGCGACGTCGTGTCCATCATCCCGATGGCCGCCCTCGTGGCCGTGATGATCATGGTCTCGGTGGCCACGTTCGACTGGCACTCGATCCAGCCCTCGACGCTGCGCCGCATGCCGGTGCCCGAGACCGTCGTCATGCTCGCCACCGTCGGTGTCACCGTGTGGACGCACAACCTGGCCTACGGCGTCATCGTGGGCGTGCTGGTGGCGGCCGTGCTGTTCGCGCAGCGCGTCGCTCACCTGACGACGGTGCAGCGCCTCGACGCGTCCGACGACGACGGCGAGCGTGTCTACGCCGTCGACGGCGAGCTCTTCTTCGCCTCCTCCAACGACCTCGTCTACCAGTTCGACTACGCCGGCGACCCGCAGCACGTGGTCATCGACATGACCAACGCGCACGTCTGGGACGCCTCCACCGTGGCCGCGCTGGACGCCGTCCAGCACAAGTACGCCGCCAAGGGCAAGACGGTCGAGTTCCGCGGGCTGAACGACGACTCACGGGCGCGCCTCGACCTGCTGGCCGGGAACCTCGGCGCCGGGCACTGAMSDDLRASLPDPAPAPQPASGAPEATSSGSFRAAFSSMTRLRTEVLAGLVVALALIPEAIAFSIIAGVDPKIGLFAAFTMAVTISFVGGRPAMISAATGAIALVIAPVVRDHGLDYLVATVILGGLIQVVLGVLGVARLMRFIPRSVMVGFVNALAILIFTSQLPHLFGDKVTADNRWWIYGMVAVGLVIMVFFPRITSVVPAPLVAIVLLTVITVFAAIAVPTVGDEGELPSSLPTLFFPDVPLNLETLQIIAPYALAMALVGLIESLLTAKLVDDVTDTHSNKTRESWGQGVANLVTGFFGGMGGCAMIGQTMINVKVSGARTRLSTFLAGVFLLLLVVTLGDVVSIIPMAALVAVMIMVSVATFDWHSIQPSTLRRMPVPETVVMLATVGVTVWTHNLAYGVIVGVLVAAVLFAQRVAHLTTVQRLDASDDDGERVYAVDGELFFASSNDLVYQFDYAGDPQHVVIDMTNAHVWDASTVAALDAVQHKYAAKGKTVEFRGLNDDSRARLDLLAGNLGAGHPGPT0003020_4104DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321NANA
AK018_028241119hypothetical proteinATGGTGAGTGAACGGATCCGCGAGCTCGTGACCGAGCAGCCCGTCTGGGACGGGCACAACGACCTGCCGTGGGAGGCGCGCGAGCAGGCCGGCTACGACTGGGACGTGCTCGACATCGCCGGGTCGACGGCGGACCGCACCCACACCGACATCCCCCGGCTGCGCGCCGGGGGAGTCGGGGCGCAGTTCTGGTCGGTCTACGTGCCCACCACGATCACCGGGCCCGACGCCGTCGTCGCCACGCTCGAGCAGATCGACGCCGTGCACCGCATGGCGATGCGGTACTCCGACCAGCTCCAGCTCGTCACCACGGTCTCCGGGGTGCGGGACGCCTGGTCCCACGGCCGCATCGCCAGCCTGCTGGGCGCCGAGGGCGGGCACTCCATCGACGGGTCCCTGGCCGTGCTGCGCGCCTTCTGCTCGCTCGGCGTGCGGTACATGACGCTGACCCACAACGACAACACCCCGTGGGCGGACTCCGCCACGGACACCCCGAGCGAGCACGGAGGACTGAGCGAGTTCGGGCGCGAGGTCGTGGCCGAGATGAACGACCTCGGCATGCTCGTCGACCTCTCCCACGTCTCGGCCGGCACCATGCACGCCGCCCTGGACACCACCACGGCGCCGGTGATCTTCTCCCACTCCAGCGCCCGCGCCGTGTGCGACGTGCCGCGCAACGTGCCCGACGACGTCCTGACCCGGCTGGCGACCAACGGCGGGATCTGCATGGTCACGTTCGTGCCGCAGTTCGTCACCCCGGCGGTCGCCGAGTGGAAGGACGAGGCCGCCGCCGCGGCCGCCGACCAGGGGATCCGCGCCACCGACTACCTGGCGTTCAGCGAGTTCCTCGCCGAGTGGCGCGAGCGCAAGCCCGCACCGCCCACGCGGCTGTCCGACGTCGTCGCGCACGTCGAGCACGTGCGGGAGGTGGCGGGCGTCGACCACGTCGGCCTCGGCGGCGACTACGACGGCGCCACCGGGTTCGCGCCCGAGCTCGCGGACGTCTCCGGATATCCGGCGCTGCTCGAGGCGCTCGCGGACCGCGGCTGGTCGGACGTCGAGCTGGGCAAGCTCACGAGCGGGAACATGCTGCGGGTGCTGCACGAGTCCGAACGGTGAMVSERIRELVTEQPVWDGHNDLPWEAREQAGYDWDVLDIAGSTADRTHTDIPRLRAGGVGAQFWSVYVPTTITGPDAVVATLEQIDAVHRMAMRYSDQLQLVTTVSGVRDAWSHGRIASLLGAEGGHSIDGSLAVLRAFCSLGVRYMTLTHNDNTPWADSATDTPSEHGGLSEFGREVVAEMNDLGMLVDLSHVSAGTMHAALDTTTAPVIFSHSSARAVCDVPRNVPDDVLTRLATNGGICMVTFVPQFVTPAVAEWKDEAAAAAADQGIRATDYLAFSEFLAEWRERKPAPPTRLSDVVAHVEHVREVAGVDHVGLGGDYDGATGFAPELADVSGYPALLEALADRGWSDVELGKLTSGNMLRVLHESERPGPT0020950_1416DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020950-acdP-K01273NANA
AK018_02825261hypothetical proteinATGGCTAGTGACGCTGGAGCGACGACCATCGCGATGTTGACCGCCTGCTCCGACCCGGACCTCGGGATCCGGTCCAGCATCGTCCAGGAGCTCCTCGACGAGGCCACGCAGGACCCGCGCGTCGCCCGGCGGATCCTGACCACCATGCTCACCGCGTCGGTGATGTCGCTGCAGGCCTACTCGGACGCGACCGAGCGCGAACCCTCCGAGGTGCTGCAGGCGCTCGGGCTGTCGTGGTCCGCGCGCACCCTCGAGGTCTAGMASDAGATTIAMLTACSDPDLGIRSSIVQELLDEATQDPRVARRILTTMLTASVMSLQAYSDATEREPSEVLQALGLSWSARTLEVNANANANANA
AK018_02827540hypothetical proteinATGTCCACCGCCGCCGCGCACGAGGTCCCGTCACCGACCGTGCACGAGCACCAGATGTCGCCCGTCGCGGCCTACACGTTCGCGATCGTGCGGATCCTGATCGCCGTCGAGTTCCTCTGGGCCTTCCTCGACAAGACCTTCGGACTCGGCGTCGCCACCCCCGCCGAGCGCGCCTGGATCGAGGGCGGGTCGCCCACCACGGGATACCTGTCCAACGTCGAGGGCACGTTCGGGGACTTCTTCGGCACGATGGCCGGCAGCGCCGTCATCGACTGGCTCTTCATGCTCGGTCTGCTCGGCATCGGCCTGGCGCTGCTGCTCGGCATCGGCATGCGGATCGCCGCCGTCTCCGGTGCCGTCCTGCTGCTGCTCATGTGGCTCGCGTCGCTGCCGCTGGCCAACAACCCGTTCGTGGACTACCACCTGGTCGACGCCGTCCTGCTGATCGGGCTGGCCGCCGTTGCCGCCGGGGACACCCTCGGGCTCGGCAAGCAGTGGGCCGCGACCGACCTGGTCCAGCGCTTCCCGTGGCTGCGCTGAMSTAAAHEVPSPTVHEHQMSPVAAYTFAIVRILIAVEFLWAFLDKTFGLGVATPAERAWIEGGSPTTGYLSNVEGTFGDFFGTMAGSAVIDWLFMLGLLGIGLALLLGIGMRIAAVSGAVLLLLMWLASLPLANNPFVDYHLVDAVLLIGLAAVAAGDTLGLGKQWAATDLVQRFPWLRNANANANANA
AK018_02828648devR_1COG2197DNA-binding transcriptional activator DevR/DosRATGGCAGAGCAGCCCGTGCGGGTGTTCCTCGTGGACGACCACGAGATCGTCCGCCGAGGAGTCGCCGACCTCGTCGAGTCCGAACCGGACCTCGAGGTGGTCGGCGAGGCCGGCACGGCCGCCCAGGCGCTCGCCCGTGTCCCCGCCCTCACCCCGGACGTCGTCGTGCTGGACGTGCGCCTGCCCGACGGCGACGGGGTGACCGTGTGCCGTGAGCTGCGCTCCCGCATGGACGTCGCCTGCCTGATGCTCACCTCGTTCGACGACGACGAGGCCCTCGTCGACGCCATCATGGCCGGAGCCGCCGGCTACGTGCTCAAGCAGGTGCGGGGCACCGACGTCGTCGCCGCGATCCGTACCGTCGCCGCCGGCGGGTCCACGCTCGACCCCCGCACCACGGCCGCCGTCATGGAACGCCTGCGCAGCCAGTCGCGCCACGACGAGGACCCGCTCGCCGAGCTCACCGAGCAGGAGCAGAAGGTGCTCGCGCTCGTCGGCCAGGGTCTCACCAACCGGCAGATCGGCGCCGAGCTCTACCTCGCCGAGAAGACCGTCAAGAACTACGTCTCCCACATCCTGGCCAAGCTCGGCCTCGAGCGGCGGGTCCAGGCCGCCGTGCTCGCCACCCGGCTGCAGCGCGACGCCTGAMAEQPVRVFLVDDHEIVRRGVADLVESEPDLEVVGEAGTAAQALARVPALTPDVVVLDVRLPDGDGVTVCRELRSRMDVACLMLTSFDDDEALVDAIMAGAAGYVLKQVRGTDVVAAIRTVAAGGSTLDPRTTAAVMERLRSQSRHDEDPLAELTEQEQKVLALVGQGLTNRQIGAELYLAEKTVKNYVSHILAKLGLERRVQAAVLATRLQRDAPGPT0012750_273DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0012750-degU-K07692NANA
AK018_028291617devS_1COG2203Oxygen sensor histidine kinase response regulator DevS/DosSATGGCCGACGACGCGGACGTGCTGCTCGACGCGGTGCTGGCCGTCGGACGGGGGATCGAGCTCGAGTCGACGCTGTACCGGCTCGTGCAGGTCGCGACCGACGTGGTGGACGCCCGGTACGGGGCGCTGGGCGTCCTGGGCGACGACGGCATGATCGCCCAGTTCCTCACGGTCGGGCTCGACGACGCCGAGATCGCGGCGATCGGTCCGTACCCGCGCGGTCACGGGCTGCTCGGCGAACTGATCCGGCACCCCGTCCCGCTGCGGCTGCCCGACATCGGCAGCGACCCGCGCTCGGTCGGGTTCCCGCCGCACCACCCGCCGATGGGGTCCTTCCTCGGTGTGCCGCTGCGGGTGCACGGCAGCCCGTTCGGCAACCTCTACCTCACCGAGAAGCGCGGCGGCGCGCAGTTCTCGGAGCGGGACGAACAGCTCGTGCGGGGCCTGGCCTCGGCGGCGAGCGTCGCCGTCGAGAACGCGCGCCTGTACGACGAGGCACGGCTGCGGGAACGCTGGGCGCACGGCAACGACGAGATCTCGCGCCACCTGCTGGAGGGCGACGCGCCCTCGGACGTGCTGGCACTGGTCGCCGAGGAGGCCATGCGCCTGGCCGCGGCGGACGTCGCACTGCTCGCGACCGTCTCCGAGGACTCCCCGGACCACCTGCTCGTCCGGGCGGCGCTCGGCCCGGGCACCGACGACCTGGTGGGCACCGCCGTCGCACTCGAGGGCACCTTCGCCGCGGAGGCCTACACCTCCGGCCGGCCCCAGGTCTCGCACGACGGCGCCCTCGACGGCCGCGAGACCCTCACCGCGCACCCGGCGAGCGTCGTCGGACCGGTGGCGGTCCTACCGCTGGGCGGACCGGGCCGCACGGCGGGCGTGCTGTCCGTGGGAAGACGGCGCGGCACCTCCCCGTTCCCCGGCGTCGTCGTGGACGCCCTGGCAGCGTTCGCGTCACAGGCCGCCGTCGCGCTCGAGCTCGCCGAGCGTCGTCTCGACGCGGCGCGGCTCGCGGTGATGCGCGACCGGGACCGGATCGCGCGCGACCTGCACGACCTCGCGATCCAGCGCCTCTACGCCACGGGGCTCAGCCTGGACGCCGTGGGGCGGCGTCTCGAGGACCGGCCCGACGTCGCCGCTCGGGTGGGACGTGCCGTCGACGACCTCGACGAGACCATCAGCCTGATCCGCACCACGATCCGCGACCTGCAGCCCTCCCCCGGCCCCGGACGACGCGTCGGACTGCGTGCCCGCCTGTCGGCGGAGATCGAGGCGGCCACCCGGACCCTCCCCTTCAAGCCCGTGCTGCGCACCTCCGGCCCGGTGGACGCGCTGATCCAGCCGGCGATCGGCGACCACCTCGTGGCCGTGCTGCGCGAGACGCTGTCCAACGTGTCCCGCCACGCCGACGCCCGGCGCACCGACGTCGAGCTGGTCCTGGGTGACGACGTGGTCCTCACCGTGACGGACGACGGCTGCGGGATCCCCGCGGACGCCGCCCCGAGCGGGCTGGCGAACCTGGAGCACCGTGCCGCCGACCTGGGCGGCGCCTTCTCCGTGGAGCGGATGCACCCGGGGACCCGGGTCCGCTGGCGGGTACCGCTGCGTCGGTGAMADDADVLLDAVLAVGRGIELESTLYRLVQVATDVVDARYGALGVLGDDGMIAQFLTVGLDDAEIAAIGPYPRGHGLLGELIRHPVPLRLPDIGSDPRSVGFPPHHPPMGSFLGVPLRVHGSPFGNLYLTEKRGGAQFSERDEQLVRGLASAASVAVENARLYDEARLRERWAHGNDEISRHLLEGDAPSDVLALVAEEAMRLAAADVALLATVSEDSPDHLLVRAALGPGTDDLVGTAVALEGTFAAEAYTSGRPQVSHDGALDGRETLTAHPASVVGPVAVLPLGGPGRTAGVLSVGRRRGTSPFPGVVVDALAAFASQAAVALELAERRLDAARLAVMRDRDRIARDLHDLAIQRLYATGLSLDAVGRRLEDRPDVAARVGRAVDDLDETISLIRTTIRDLQPSPGPGRRVGLRARLSAEIEAATRTLPFKPVLRTSGPVDALIQPAIGDHLVAVLRETLSNVSRHADARRTDVELVLGDDVVLTVTDDGCGIPADAAPSGLANLEHRAADLGGAFSVERMHPGTRVRWRVPLRRNANANANANA
AK018_02830918COG0589Universal stress protein/MSMEI_3859ATGAACAGCAATCGAGTGATCGTGGGCATCGACGGGTCGGTCGCCGGTGACCAGGCCCTGCGGTGGGCGGCCGCCGAGGCGCTGCGCCGCCGGGCGACCCTGACCGTGCTGAGCGCCTACAGCGTGCCGGTGTCCCCCTCGGAGGAGGGGTACGGGCTGGGGATGGAGGCCATGCGCGAGCGCGCCCAGGACGTCGTGGGCGCGGCGGCACGGCAGCTGTCCGGGCTGCGCGAGTGCCGGGTCCCCGCGGTTCCCGACGCCGAGCACGTGGAGTGGGAGGTCGTCGCCGGGACACCGGCGGGGATCCTCGTGAGCCGCACCGGCCCGGACCGGCTCGTGGTGGTCGGGCAGCGAGGCCTCGGCGGGTTCGACCGCGTCGTGCTCGGGTCCGTCTCGTCCGCCGTGGCGGCGATGGCCCGCGGGTCGGTCGTCATCGTGCCCACCGACCCGATGGCCCAGGTCTCGAAGTCGCCGTGCGACGGCGTCGGCCCGGTCTGGCGCGTCGTCGCCGCCGTCGACACCGACGACCAGGCCGACCGCGTCCTCGAGCAGGCCTTCGCGGAGGCCGAGGACGCCGCCGCACCGCTGCTCGTGGTGCACGCGGTGCACCCGGACTTCATCGCGGGCCCGTACGCCATGGTCACCGCGATGTCGCAGGAGTACCGCGACGAGGCACGGGAGCACCTGGACCGGATCATGGCCCGCTGGACGGAGAAGTTCCCCCGCGTCGAGGTCACCACGGAAGTCGTCACCGGTGTCATCACCGACGTGCTGCGCGAGCGGCTCAGCCGTCACGACGTCGTCGTGGTCGGCGGCCGCAAGCACTCGGCGCTCGTCGGGCGGGTGCTGGGCTCGGTGCCCGACAAGCTGGTCCGGCACGCGACGTGCCCGGTGATGATCGCCCACGAACCGCGCTGAMNSNRVIVGIDGSVAGDQALRWAAAEALRRRATLTVLSAYSVPVSPSEEGYGLGMEAMRERAQDVVGAAARQLSGLRECRVPAVPDAEHVEWEVVAGTPAGILVSRTGPDRLVVVGQRGLGGFDRVVLGSVSSAVAAMARGSVVIVPTDPMAQVSKSPCDGVGPVWRVVAAVDTDDQADRVLEQAFAEAEDAAAPLLVVHAVHPDFIAGPYAMVTAMSQEYRDEAREHLDRIMARWTEKFPRVEVTTEVVTGVITDVLRERLSRHDVVVVGGRKHSALVGRVLGSVPDKLVRHATCPVMIAHEPRNANANANANA
AK018_028311341hypothetical proteinATGAGCGACAGCACCATCGACGAGCGCCTCTCGCGCCTCGCGCCGACCGGGTCGCCGGACCCCGAACGGTTCACCGCGGCCCGCGCCGAGCTGCTCGCTGCCGTCGCGACCGATCGCCGAGAGCCCGCAGCCGCGCACGCCGGCGACATGTCGACCCACCTGGCGCAGGTCCCCGTGGACGTCGTCGTCCCAGGGCCGTCACATCGCCGAGGTCGCCGCCGTGCAGCCTGGTCGTTGGCGGCGGCCGCAGTGGTCCTGGTGGCCGGTGTCGCTCTCTTCTTCCGCCCCGCGGAGCCCGTCCCGGCGAGCGGTGAGATGGTCGACGCGTGCCGCGACCTGCTGACCACGCAGGTGCCTGGCATGCCAGAACCCGTCCTGGCCGCCGGTGCTCGCCTGATCGCGTCAGAGGACCTCGACGGCACGGCGTTGGTCTTCTTCGCCCCCGCCGATCCCGATGACGGCGACCCGGCGCTGTGCCACGTACCCGGCGGCGACCTCTCGCGCACGACCTTCACCCGGGTCGGTGACGCCTCGGGCAGCACGGCACCGGCTGTCGACGAGGTCACGGAGTCGGGCACGGCGGCCACCGAACCGCTGGAGCTCAGCGACCGGCACAGCGCGGCCGCCGCCTGGGGCCGAGTCGGAGAAGCCGTCGAGAGCGTGACGGTGACCACGGCCGACGGCCAGGAGGTCGAGGGTGTCGTGTCCGACGGCTACTGGGTCGCTTGGTGGCTGCGCGATGCCCCGGCAGCGGACATCGCCGACCCGTCCGACGTCGTGGCCGCCGTCACCTGGACGCTGACAGACGGCGACCAGCTGTCCCGCACCGCAGCCTGGCCCGGGGCCGACGAGTGGAACCCACAAGCCGAGCGACGTCGCGAGGAGTGCCGCTCCATCCGGAACTGGCAGACCGGCGAACGGGTCTCACCTGTGCTGGAGGACCAGGTGTACGGGTACGGGACGACGCTGTACGCCACCGACAGCTCGTACCGCCTGTGCGTCCAGGAGATCAGCCCGCCGTACGAGCTTCTGGGGCAGTCGGCCGGCACCCGCACCGACGGCCCGCCGGCGCCCGACGGGATCGGTACGGGGTTCGGCGCCGGGTTCGGCGGGATCCAGTCGTTGTACGGCCAGGTCGGCAGCGACGTCGACCAGGTGGTCGTCACGCTGGAGGACGGGACCCGGATCGACGCCGAGATCCAGAACGGCTACTGGCTGGCCCAAGCGCAGGACCCGACACCACGCGCGGACGACGGCGGCCCGTGGGACGGCGCCGAGCTGGCCTGGTACCTCGCCGACGGTTCGCTCGGCGGTCGACAGGCCGCCACCCACCACTCCTGAMSDSTIDERLSRLAPTGSPDPERFTAARAELLAAVATDRREPAAAHAGDMSTHLAQVPVDVVVPGPSHRRGRRRAAWSLAAAAVVLVAGVALFFRPAEPVPASGEMVDACRDLLTTQVPGMPEPVLAAGARLIASEDLDGTALVFFAPADPDDGDPALCHVPGGDLSRTTFTRVGDASGSTAPAVDEVTESGTAATEPLELSDRHSAAAAWGRVGEAVESVTVTTADGQEVEGVVSDGYWVAWWLRDAPAADIADPSDVVAAVTWTLTDGDQLSRTAAWPGADEWNPQAERRREECRSIRNWQTGERVSPVLEDQVYGYGTTLYATDSSYRLCVQEISPPYELLGQSAGTRTDGPPAPDGIGTGFGAGFGGIQSLYGQVGSDVDQVVVTLEDGTRIDAEIQNGYWLAQAQDPTPRADDGGPWDGAELAWYLADGSLGGRQAATHHSNANANANANA
AK018_02832585hypothetical proteinGTGAGCACCCCCGACGACGACGCCGACCCAGATCACCTGGACGACGCCGCAGCAGCCCGGCTGGCCGCGCTGTGGGACGCCCACGCCGTGCGCCTGCACGCCTACGCGCTCCGGCACAGCGACCCCGACACCGCCCAGGACCTCCTGTCCGAGACTTTCCTCGTCGCCTGGCGACGCATGCCGGACGTCCCGGCCGACGCTCTGCCCTGGCTGCTCGTCGTGGCCCGCAACCTCCTGCACGCCGACCGCCGTGCCCAGGTCCGCCGTCGGGAGCTGACCACCGAGCTGACCCGCCTGGAACGCGCCGCGCCCGCCGTCACCGGCACCCCCGAGTCGCTGGCGGCCGAGCGCGAGGCCCTGCTGCACGGGTTGGCGGCACTCAGTGAGAAGGAGCGCGAGGCGCTCCTGCTGGTCGCCTGGGACGGCCTCGCCCCGGCGCAGGCCGCCGACGTCGCCGGGTGCACGACGGCGGCGCTCCACGTCCGCCTGCACCGCGCACGACGGCGCCTCGCAGCCGCCGTCGACCGTCCCGACGGCAGCACCCGGGCCGCGCAGTCCCCCACGTCCTCGAGGAGGTCGGCATGAMSTPDDDADPDHLDDAAAARLAALWDAHAVRLHAYALRHSDPDTAQDLLSETFLVAWRRMPDVPADALPWLLVVARNLLHADRRAQVRRRELTTELTRLERAAPAVTGTPESLAAEREALLHGLAALSEKEREALLLVAWDGLAPAQAADVAGCTTAALHVRLHRARRRLAAAVDRPDGSTRAAQSPTSSRRSAPGPT0014960_9002DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_02833300rimJ_2COG1670[Ribosomal protein S5]-alanine N-acetyltransferaseGTGACGCTGAGCGACGTCGTCGGCGGCGCCTTCTGCAACGCGCACCTGGGCTATTGGCTCGCCGGCTCGGTGACCGGGCGCGGTGTGATGACCGCGGCCGTCGAGGCGACGCTCGAGCACGCCCGGGACGTGCTGGGGCTGCATCGTGTGCAGGCCGCGACGCTGCCGCACAACGCGCCGTCGCAGGCGGTCCTGGTGCGCACGGGGTTCGAGCGGATCGGGTTCGCGCCGGGCTACCTGCGCATCGCCGGAGGCTGGCAGGACCACGTGCTGTTCCAGCGGATCCTGCACGACGGCTGAMTLSDVVGGAFCNAHLGYWLAGSVTGRGVMTAAVEATLEHARDVLGLHRVQAATLPHNAPSQAVLVRTGFERIGFAPGYLRIAGGWQDHVLFQRILHDGNANANANANA
AK018_02834576hypothetical proteinATGCTCTCCTCGATCCGCCGCGGCATCGCGCGCCTGTACTGGCGGCTGAGCCGCTGGCGGCTGCAGTCCGAGCCCGCACCGCAGCAGGCCGGTCTGCTGATCGGCGCCCCGCACACCTCCAACTGGGACTTCGTCTTCATGCTGGCCATCTCGTGGCGGCTGGGCCTCGACGTGCGCTGGCTGGGCAAGCACACCCTGTTCACGGGCTGGAAGGGTCCGGTCATGCGCGCGCTGGGCGGTATCCCGGTGGACCGCCGCGACCCGTCGCGCGTGGTCGCGGAGGTGCTGGAGCACGTGGCTGCCGGCGAGGTCTTCCACCTGGTGGTCACGCCAGAGGGCACCCGTTCGGGTGACGGCTGGAAGTCCGGCTTCTACCGCATCGCCCGCGAGGCCGACCTGCCGGTCACGCTCGGCTACGTCGACAGCACCACGATGACCACCGGCCTGGGTCCGACGATGCTCCTGTCCGGCGACGTCCGCGCGGACATGGACCGCATCCGGGAGTTCTACGCCGACAAGGCCGGGGTCAACCCCGAGCTGCGCACCGAGCCGCGTCTGCGCTCGGAGGAGGGCTGAMLSSIRRGIARLYWRLSRWRLQSEPAPQQAGLLIGAPHTSNWDFVFMLAISWRLGLDVRWLGKHTLFTGWKGPVMRALGGIPVDRRDPSRVVAEVLEHVAAGEVFHLVVTPEGTRSGDGWKSGFYRIAREADLPVTLGYVDSTTMTTGLGPTMLLSGDVRADMDRIREFYADKAGVNPELRTEPRLRSEEGNANANANANA
AK018_028351095hypothetical proteinATGGACGCCCCCGCCACCTCCGCCCGCGGCTCGACGCTCCTGCGCTGGGGACGCAAGGCGTGGGCCCTGGTCGGCATCGCGCTCGCGTCCGTGGCGGTCTACCTGCTCACCGGAGCGATCTCGGGGCTGTTCATCCCGCTGCTCGTCGCCCTCGTCGTCGGCGCGCTCTTCGCCCCGCTGTGCGCCCTGCTCGCCCGCTGGATGCCGCGCTGGCTCGCCGCGATCATCGTGCTGGCCGGGCTGCTCGGCGTCGCGGTCGGCGCGATCGGCCTGGCGGTCCGGGGCGTGGTCCAGCAGGCGGCGGAGATCGGCTCGCAGCTCACCGACGGCTTCGAGGCCGTCCAGGGCTGGGCGCGGGACCTGGGGGTCGACCTGCCCACCCTCACCGACACGACGGACGGGCTGCCGGAGTGGGGCACGGCCCTGCTGTCCGGTTTCACGGCACAGCTCGGCAACGTCTTCTCGGGGACCGCGGCCCTGGTCATGGGCACGTTCGTGGGGGTGTTCCTGCTCTACTTCATCCTGGCCGACTGGGACCTGCTGATGCGGTGGACGTCCCGCAACATCGGCGTCGACGCGCAGGTGGGGGCGGGCATCATCGACGACGGCACGTGGGCGATGCGGCAGTACTTCCTCGCCCTGACGGCGTCCTCGGTGGTGGTGTCGATCCTGGTGGGGACGGCCGCCTGGCTGCTGGACCTGCCGCTGGCCTTCACGATCGCGGTCGTCACGTTCATCACCTCCTACGTGCCGTTCCTGGGGGCGATCTTCTCGGGGGCGTTCGCGGTGCTGATCGCTCTCGGATCGGGCGGGCTGTTCGACGCGGTGGTGATGCTGGTGGTCATCCTCGTGGCGCAGAACGCGGTGCAGACCGTCATCCAGACCTTCATGACGCAGGGTGCGCTGAAGCTGCACCCCATCGTGATCCTCGGGTCGACGATCGCGGGCGGTGCCCTGTTCGGCCTGCTCGGTGCCGCGCTGTCGACGCCGGTGGTGGCGATCGTCATCAAGATCGTCGAGCGCTTCCGGGCGCTCGGCGCGGAGCCGAGCCCCGCCGTCGTCCCGCCGGAACCGGACGCGGGGTCCGCGCCGTAGMDAPATSARGSTLLRWGRKAWALVGIALASVAVYLLTGAISGLFIPLLVALVVGALFAPLCALLARWMPRWLAAIIVLAGLLGVAVGAIGLAVRGVVQQAAEIGSQLTDGFEAVQGWARDLGVDLPTLTDTTDGLPEWGTALLSGFTAQLGNVFSGTAALVMGTFVGVFLLYFILADWDLLMRWTSRNIGVDAQVGAGIIDDGTWAMRQYFLALTASSVVVSILVGTAAWLLDLPLAFTIAVVTFITSYVPFLGAIFSGAFAVLIALGSGGLFDAVVMLVVILVAQNAVQTVIQTFMTQGALKLHPIVILGSTIAGGALFGLLGAALSTPVVAIVIKIVERFRALGAEPSPAVVPPEPDAGSAPNANANANANA
AK018_02836159hypothetical proteinATGTCGACGGACACGCACGACACCGCCGAGCACACCACCGTGGAGCACCAGCACGGTGCGGACTGCGGCCACGAGGCCGTCCCGCACGGCGACCACGTGGACTACGTGCACGACGGCCACCACCACGCCGAGCACGGCGACCACTACGACGAGCACTGAMSTDTHDTAEHTTVEHQHGADCGHEAVPHGDHVDYVHDGHHHAEHGDHYDEHPGPT0004225_90DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004225-znuB-K09816NANA
AK018_028371071hypothetical proteinATGACCTCCGCCGCTCTGCGCGCAGTCAACCCTGTCACCAGCACGTACGCCGCCCTGTCGCGCACCGTTCGCGACGCCGGGCTGCTGCACAAGACCCCCCGCTACTACCTGTGGACGCTCGGGGTGCTCACCGCGGCGCTCGGCGGGATCGTCACCGGGTTCGTGCTGCTGGGCGACTCCTGGTTCCAGCTCCTCATGGCCGGGACGCTCGGCCTCGTGCTGACCCAGTTCTCGTTCGTGGCGCACGAGGCGGCCCACCGGCAGGTGTTTGCCTCCGGCCCCGTCAACGACCGGGTGGGCCGGATCCTCGCCAACGGCGTCGCCGGCATCAGCTACTCCTGGTGGATGACCAAGCACACGCGCCACCACGCCAACCCGAACAAGGTCGGCAAGGACCCGGACATCGCGATGGACACCATCGCGTTCACCGAGGACCAGGCCCGGGAGCAGAAGGGGTTCCTGAGGCTCGTCCACCGCTACCAGGGGTGGCTGTTCTTCCCGCTGCTCACCCTCGAGGGCCTGAACCTGCACGTCACGTCGATCCGGTCGTTGTTCACCGGGTCGCCCGGCACGCTGCGCGCACGGGTCCAGGAGCTGGTCGTCATCGGCCTGCGCCTGTCGCTCTACCTGACGGCGGTGTTCTGGGTGCTGCCGCTGGGCATCGCCTTCGCGTTCGTCGGCGTCCAGATGGCGGTGTTCGGCGTCTACATGGGTGCGTCGTTCGCCCCGAACCACAAGGGCATGAAGCTCGTCCCGGCGGACAGCAAGCTCGACTTCCTGTCCAAGCAGGTGCTCACCTCACGCAACATCCGCGGCGGGTGGTTCATGAGCATCCTCATGGGCGGTCTCAACTACCAGATCGAGCACCACCTGTTCCCGTCCATGCCGCGCCCGCACCTGCACCGCGCCCGCGAGATCGTGCGCGAGCACTGCGCCCACCTCGGCATCCCGTACACGGAGACCAGCCTGATCGCCTCGTACGGCATCGTGGTGCGCTACCTCAACCGCGTCGGCCTGCAGGCCCGCGACCCGTTCGACTGCCCGATGTTCCACCAGCTGCGCAAGCTCTGAMTSAALRAVNPVTSTYAALSRTVRDAGLLHKTPRYYLWTLGVLTAALGGIVTGFVLLGDSWFQLLMAGTLGLVLTQFSFVAHEAAHRQVFASGPVNDRVGRILANGVAGISYSWWMTKHTRHHANPNKVGKDPDIAMDTIAFTEDQAREQKGFLRLVHRYQGWLFFPLLTLEGLNLHVTSIRSLFTGSPGTLRARVQELVVIGLRLSLYLTAVFWVLPLGIAFAFVGVQMAVFGVYMGASFAPNHKGMKLVPADSKLDFLSKQVLTSRNIRGGWFMSILMGGLNYQIEHHLFPSMPRPHLHRAREIVREHCAHLGIPYTETSLIASYGIVVRYLNRVGLQARDPFDCPMFHQLRKLNANANANANA
AK018_02838762rsmARibosomal RNA small subunit methyltransferase AGTGCCTACCCGTTCCCGCCATGGCGGCCGCCATGAGCTCGGCCAGAACTTCCTCGTCCACCGCCCCACCGTCGACCGCATCACGCGGCTCGTGGCCGCCACCGACGGCGCGATCCTCGAGATCGGTGCCGGCGACGGCGCCCTGACCGTCCCGCTGTCCCGCCTCGGCCGTCGGCTGACGGCGATCGACCTCGACGAGCACCACGTGCGCGCGCTGCGCCGCCGGCTCCCGCACGTTCGCGTGCTGCACGACGACGTCCTACGGCACCCGCTCGACGTCCCCGTCGTCGTCGGCAACATCCCGTTCCACCTGACCACGCCGACGCTGCGGCGGCTGCTGGGACGCCCGGGGTGGCGCGACGCCGTCCTGCTCACCCAGTGGGAGGTCGCCCGCAAGCGGGCCGGCGTCGGCGGAGGGACCCTCATGACGGCCCAGGCCGCGCCCTGGTTCCGGTTCTCCCTGGAGGGCCGCGTCCCCGCGCGGGCGTTCCGGCCCGTGCCCGGGGTCGACGGCGGGATCCTGCGCATCGAGCGACGTCCGGGCCCGCTCGTCCCGACCCGGGAACGCCGCGCCTACGAACGGTTCGTGCAACGAGCCTTCACCGCGCGCGGGCGAGGGCTGGCCGAGATGCTGCGCGCGGCAGGTGGCACGCGCCACGAGGTGCAGGCAGCGCTCGCTGCGGCGGGAGTGGACGGCCGGGTGCTGCCGCGCGCCGTGCCCGCGACCGCCTGGTCCGTGCTGTGGCGAGCGCTGGGCAGGTAGMPTRSRHGGRHELGQNFLVHRPTVDRITRLVAATDGAILEIGAGDGALTVPLSRLGRRLTAIDLDEHHVRALRRRLPHVRVLHDDVLRHPLDVPVVVGNIPFHLTTPTLRRLLGRPGWRDAVLLTQWEVARKRAGVGGGTLMTAQAAPWFRFSLEGRVPARAFRPVPGVDGGILRIERRPGPLVPTRERRAYERFVQRAFTARGRGLAEMLRAAGGTRHEVQAALAAAGVDGRVLPRAVPATAWSVLWRALGRPGPT0027915_201DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027915-ermC|ermA-K00561NANA
AK018_02839429hypothetical proteinATGACGACGAACGACGACGCGGCCGGGTCGCGCCCGGGGCCGGTGAAGCAGCTGCGCCTCGTGGTGCAGACCGACGACTTCGACGAGGCGCTCGCCTTCTACCGCGACGTGCTCGGGATGAGCACCCGCGAGGCCTACCACGGCGACGGTGGCGCCGAGGTCGCGATCCTCGACGCCGGGGTGGCCACCCTCGAACTGTCCAACCCCGCACAGGTGCGGATGATCGACGACGTCGAGGCCGAGGGCCGGCCCAGCGCTCGGTTGCGGGTCGCTCTCGAGGTGGACGACGCCGAGCGCGCGACGGCCGAGGCCGTGCAGGGCGGGGCGGAGCTGGTCGCGTCGCCGCGCGAGACGCCGTGGCGGTCGCTGAACTCGCGGCTGGAGGCGCCCGCCGGGCTGCAGGTGACGCTCTTCCAGGAGCTGGACTGAMTTNDDAAGSRPGPVKQLRLVVQTDDFDEALAFYRDVLGMSTREAYHGDGGAEVAILDAGVATLELSNPAQVRMIDDVEAEGRPSARLRVALEVDDAERATAEAVQGGAELVASPRETPWRSLNSRLEAPAGLQVTLFQELDPGPT0013300_2218DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BLEOMYCIN_RESISTANCE,PGPT0013300-gloA|ywbC-K01759NANA
AK018_02840669COG4122Catechol O-methyltransferaseATGGGAACTGACACGCAGTGGGGCGACGTCGACTCCTACCTCGTCGCCGAGACCGTCCACGAGGACGACGCGCTGGTCGCCGCCCGCGCATCGGCCCGCGAGAACGGGCTGCCGCCGATCGAGGTCGCGCCGAACCAGGGCGCCTTCCTGTCCCTGCTGGCCCGGATGTGCGGCGCTCGCCGCGTGCTGGAGCTCGGCACGCTCGCCGGGTACAGCTCGATCTGGCTGGCCCGTGCCGTCGGCCCGCAGGGGCGGGTGACGACCGTCGAGCAGGATCCCCGGCACGCCGAGGTGGCACGCGAGAACCACGACCGTGCCGGCGTGTCCGAGCGTGTCGACGTCGAGGTCGGCCCGGCGCTGGACGTCCTTGCGCGCCTCGTCGACGACGGCGCGGCACCGTACGACCTGGTCTTCATCGACGCCGACAAGGCGAACATGCCCGCCTACCTCGACCTCGCGATGCGCCTGGTCCGGTCCGGCAGCGTGATAGTCGGCGACAACGTCGTCCGCCGCGGCGCCGTCGTCGACCCCGACAGCCCCGACGCCGACGTGCAGGGCGTGCGCGCCTTCCTGCACGCGCTCGGCAGCGACCCGCGGCTCGAGGCCACCGCGCTGCAGACCGTGGGATCCAAGGGCTGGGACGGGTTCGCCGTCGCGCGGGTGCGGTAGMGTDTQWGDVDSYLVAETVHEDDALVAARASARENGLPPIEVAPNQGAFLSLLARMCGARRVLELGTLAGYSSIWLARAVGPQGRVTTVEQDPRHAEVARENHDRAGVSERVDVEVGPALDVLARLVDDGAAPYDLVFIDADKANMPAYLDLAMRLVRSGSVIVGDNVVRRGAVVDPDSPDADVQGVRAFLHALGSDPRLEATALQTVGSKGWDGFAVARVRPGPT0011950_18DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSTUMORICIDAL_COMPOUNDSTUMORICIDAL-ANSAMITOCIN_P-3_METABOLISM,PGPT0011950-asm17-K16028NANA
AK018_02841933hypothetical proteinGTGCCCCAGGGAACAGTCCGATGGTTCGACACCGACCGAGGGTTCGGTTTCATCGACCTCGGCAACGACGGCGAGGACCTGTTCGTGCACGCGTCCGAGATCGTCGGCGCCGGTGGCGGGCCGAAGCAGCTCCGCGAGGGGCAGGCCGTCGAGTTCGAGGTGGGCGAGGGCGACCGCGGCCCCCAGGCGCGCCACGTCCGCGTCACCGGTGACGTCGCCGCCGACGCGCCGCTGGGTGTGCTCGGCACCGTCAACTGGTACGAGCCGGCCAAGGGCTACGGGTTCGTCACGCCGGACGACGGCCGCACCGAGATCTTCGTGCACAGCTCGGCCATCGTCACCGGCGGTGTGATCTCCGAGGGGCAGCGGGTGGCGTTCCTCGTGGTCGAGGGGGAGAAGGGTCCGCAGGCGGACCACCTGCTGCCGCTCGCGGCGGAGGCTGCGCGGCCGGCGTCGGACGGCGCGGACGGCACGGTGTCCTTCTACGACGACGCGAAGGGCTTCGGGTTCATCGCTCCCGACGCGGGCGGCGCGGACGTCTTCGTCCACGCCAAGGCGCTCGGCCGGGGGCTGACCGAGCTCGCCGAGGGCGCGCGCGTGACGTACGACGCCGTCGACGGCGACCGGGGGCCGAACGCCCGCAACGTGCAGCTCGTGCGAGGCGCCGGGGGAGCGCGCGGCGGTGCCGACCGGGGACGGTCGAACCGTCCGGGCCGGTCCGGTGGCCCCGTGCGCGGGGGCGAGGGCACCGTCGCGCGCTACGACGCGGACCGCGGGTTCGGTTTCATCACGCCCGACGCCGGCGGTGACGACCTGTTCGTGCACGTGTCCGTGGTGCGGGACGCCGAGATCCTGGAGGAGGGCGACCGGGTCCGCTTCAAGGTGCGCCAGAGCGACCGCGGGCCGCAGGCGGACGGCGTCGAGCTGATCTGAMPQGTVRWFDTDRGFGFIDLGNDGEDLFVHASEIVGAGGGPKQLREGQAVEFEVGEGDRGPQARHVRVTGDVAADAPLGVLGTVNWYEPAKGYGFVTPDDGRTEIFVHSSAIVTGGVISEGQRVAFLVVEGEKGPQADHLLPLAAEAARPASDGADGTVSFYDDAKGFGFIAPDAGGADVFVHAKALGRGLTELAEGARVTYDAVDGDRGPNARNVQLVRGAGGARGGADRGRSNRPGRSGGPVRGGEGTVARYDADRGFGFITPDAGGDDLFVHVSVVRDAEILEEGDRVRFKVRQSDRGPQADGVELIPGPT0014675_32DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_02842516idi_2Isopentenyl-diphosphate Delta-isomeraseGTGGTCGACACGGAGTGGTGGGACGTCATCGACGAGGCCGGCGACCCCACGGGCGAGACCTACCGTCGCGGAGCGAACGACTGGCCTACCGGGCGGTTCCACCTCATCGTGGCGACCGCCGTCGTGCGGACGGACGGGTCCGTCCTCCTGACGCGACGAGCCGCGACCAAGGAGTTCGCCCTCGCGTGGGAGTTCCCCGGGGGCAGCGCACTCGCCGGCGAGACGAGCCGACGTGCGGCCCGCCGCGAGCTGCACGAGGAGACGGGCCTCCTCGTGCCGACGGACAGCCTCCGCCCCGTCGATCGGTTCACGGAGGCGTCCGCACTGCTCGACATGTACGTCGCCCCCGTGCACGGCGCCCCCGACGTCACGCCCGACGGGGTCGAGGTCGACCGTGCGGAATGGGTCTCCTGGAACGAGGTGGAGGCCCGTCTGCGCGCCGGAGGGATGGCGGAACCGTGGACCGATCGCCTGCGAGCCCTCCTGCCACCTCTGAGGCGCATCGCCGGACCGTGAMVDTEWWDVIDEAGDPTGETYRRGANDWPTGRFHLIVATAVVRTDGSVLLTRRAATKEFALAWEFPGGSALAGETSRRAARRELHEETGLLVPTDSLRPVDRFTEASALLDMYVAPVHGAPDVTPDGVEVDRAEWVSWNEVEARLRAGGMAEPWTDRLRALLPPLRRIAGPNANANANANA
AK018_028431884dnaK_1COG0443Chaperone protein DnaKATGGCTCGTGCAGTCGGCATCGACCTCGGAACCACGAACTCCGTGGTCACCGTCCTGGAGGGTGGCGAGCCCACCGTCATCGCGAACGCCGAGGGCGCCCGCACCACCCCGTCGGTGGTCGCGTTCTCCAAGACCGGCGAGGTCCTCGTCGGCGAGGTCGCGAAGCGCCAGGCCGTCACCAACGTCGACCGGACCATCTCGTCGGTCAAGCGCCACATGGGCACCGACTGGTCCACCGAGATCGACGACAAGAAGTACACCGCGCAGGAGATCAGCGCCCGCATCCTCGGCAAGCTGAAGCGCGACGCCGAGGAGTACCTGGGCGAGCCCGTCACCGACGCGGTCATCACCGTCCCGGCCTACTTCAACGACGCCGAGCGTCAGGCCACCAAGGACGCCGGTCAGATCGCGGGCCTCAACGTCCAGCGCATCGTCAACGAGCCCACCGCGGCGGCCCTGGCCTACGGCCTCGACAAGGGCAAGGAGGACGAGCTCATCCTCGTCTTCGACCTCGGTGGCGGCACCTTCGACGTCTCCCTGCTCGAGGTCGGCAAGGACGAGGACGACTTCTCCACCATCCAGGTCCGCGCCACCTCCGGCGACAACCGTCTCGGCGGCGACGACTGGGACCAGCGCATCGTCGACCACCTCATCAAGCAGGTGAAGAACAACGAGGGCGTCGACCTGTCCAAGGACAAGATCGCCCTGCAGCGTCTGCGCGAGGCGGCCGAGCAGGCCAAGAAGGAGCTCTCGTCCGCGACGAGCACCAACATCTCGATGCAGTACCTGTCGATGAGCGAGAACGGCCCCGTCCACCTGGACGAGAAGCTGACCCGCGCGCAGTTCCAGCAGATGACGCAGGACCTGATCGACCGCACCAAGGAGCCGTTCCACGCCGTCATCCGTGACGCGGGCGTGTCCGTGTCGGAGATCGACCACGTCGTGCTCGTCGGTGGGTCCACCCGCATGCCGGCCGTGTCCGACGTCGTCAAGGAGCTCACCGGCGGCAAGGACGCCAACAAGGGCGTCAACCCGGACGAGGTCGTCGCCGTCGGCGCGGCGCTGCAGGCCGGTGTCATCGGCGGTGAGCGCAAGGACGTGCTGCTCATCGACGTCACCCCGCTGTCCCTCGGCATCGAGACCAAGGGCGGCGTGATGACCAAGCTCATCGAGCGCAACACGGCCATCCCGACCAAGCGCAGCGAGATCTTCTCCACCGCCGAGGACAACCAGCCCTCCGTGGCGATCCAGGTGTTCCAGGGGGAGCGCGAGTTCACCCGGGACAACAAGCCGCTGGGCACCTTCGAGCTCACCGGCATCGCCCCCGCCCCGCGCGGCGTGCCGCAGATCGAGGTCACCTTCGACATCGACGCGAACGGCATCGTGCACGTGTCCGCCAAGGACCGCGGCACCGGCACCGAGCAGTCGATGAAGATCACCGGCGGCTCCGCCCTCCCGCAGGAGGACATCGACCGCATGGTCAAGGAGGCCGAGGAGCACGCCGAGGAGGACAAGAAGCGTCGCGAGGAGGCCGAGACGCGCAACCAGGCCGAGTCCTTCGCCTACGCGATGGACAAGCAGATCGCGGACAACCGCGACAAGCTGCCGGCCGACGTCGTCTCCGAGGTCGAGGCGGACGTCGCCGCGGTGAAGTCCGCCCTCGAGGGCGACGACACCGAGGCCGTCAAGACCGCCTACGAGAAGCTGGGCACCTCCTCGCAGAAGATCGGCGAGGCCCTCTACTCGGCCGAGCAGGCCGCCGGTGGCGACGCCGGTGCCGAGGGCGCCGCGGCGGGCGACGCGCCGTCGTCGGAGAACTCCGACGAGGACGTGGTCGACGCCGAGATCGTGGACGACGAGGACGACAAGAAGGACTCCAAGTGAMARAVGIDLGTTNSVVTVLEGGEPTVIANAEGARTTPSVVAFSKTGEVLVGEVAKRQAVTNVDRTISSVKRHMGTDWSTEIDDKKYTAQEISARILGKLKRDAEEYLGEPVTDAVITVPAYFNDAERQATKDAGQIAGLNVQRIVNEPTAAALAYGLDKGKEDELILVFDLGGGTFDVSLLEVGKDEDDFSTIQVRATSGDNRLGGDDWDQRIVDHLIKQVKNNEGVDLSKDKIALQRLREAAEQAKKELSSATSTNISMQYLSMSENGPVHLDEKLTRAQFQQMTQDLIDRTKEPFHAVIRDAGVSVSEIDHVVLVGGSTRMPAVSDVVKELTGGKDANKGVNPDEVVAVGAALQAGVIGGERKDVLLIDVTPLSLGIETKGGVMTKLIERNTAIPTKRSEIFSTAEDNQPSVAIQVFQGEREFTRDNKPLGTFELTGIAPAPRGVPQIEVTFDIDANGIVHVSAKDRGTGTEQSMKITGGSALPQEDIDRMVKEAEEHAEEDKKRREEAETRNQAESFAYAMDKQIADNRDKLPADVVSEVEADVAAVKSALEGDDTEAVKTAYEKLGTSSQKIGEALYSAEQAAGGDAGAEGAAAGDAPSSENSDEDVVDAEIVDDEDDKKDSKPGPT0014555_4610DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043NANA
AK018_02844657grpE_1COG0576Protein GrpEGTGACGTCTGACGAGACGCAGGGCACCCCCGAGCCGGAGAACTCCGGCTCGGGGGGCACCCCTTTCCACTTCACGGACAAGCGCAAGGTCGACCCGACCACGGGCCACAAGCGCGAGGTGCCCGACGGCGGAACCCCCGACCCGGACGGCGCCGCGGCGGCGTCCGGCGAGGGCGACCCGCTGGAGGCCCTCGACTTCGCCCCCGAGGGCGAGGCCGCCGAGGACTCCGAGGTCATGCAGGCCAAGGCCGAGGCCGCCGAGCACCTCGACGCCCTGCAGCGCGAGCGGGCGAGCTTCACCAACTTCCGCAACCGGGCGCGTCGTGACCAGGAGGCCGCGCGCACCCAGGGCACGCAGGACGTGCTCACGGCGCTGCTGCCGGTGCTGGACGACATCGAGCGGGCCAAGGCCCACGCCGAGCTGTCCGGTCCGATGGCCGCCATCGCGGAGAAGCTCGACGCCTCGCTGACGAAGTTCGGCGTCGAGCGGTTCGGCGCCGTGGGCGAGGAGTTCGACCCCACCGTGCACGAGGCACTCATGCACAACACGGACGCCGAGGCGGAGTCCACCACGGTGAACCTGGTGGTCGAGCCCGGCTACCGCATCGGCGAGAAGGTGGTCCGGGCCGCCCGCGTGGGCGTCGTCGGCCCGGAGTAAMTSDETQGTPEPENSGSGGTPFHFTDKRKVDPTTGHKREVPDGGTPDPDGAAAASGEGDPLEALDFAPEGEAAEDSEVMQAKAEAAEHLDALQRERASFTNFRNRARRDQEAARTQGTQDVLTALLPVLDDIERAKAHAELSGPMAAIAEKLDASLTKFGVERFGAVGEEFDPTVHEALMHNTDAEAESTTVNLVVEPGYRIGEKVVRAARVGVVGPEPGPT0014650_2201DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0014650-grpE-K03687NANA
AK018_028451002cbpA_1COG2214Curved DNA-binding proteinGTGACCGGCCAGGACTGGATCGAGAAGGACTTCTACGCCGCGCTCGGCGTTCCCAAGGACGCCGACCAGGCGGCCATCAAAAAGGCGTACCGGAAGCTGGCGCGCCAGTACCACCCGGACCAGAACCCGGGCGACGCCGCGGCCGAGGCCCGGTTCAAGGAGATCGGCGAGGCGTACGCCGTGCTGTCCGACGCCGAGCAGAAGCAGCAGTACGACGCGCTGCGCTCGATGGCGGGCGGCGGCCCGCGGTTCGCCGCCGGCCCCGGCGGTGGCCCGGCCGGGTTCGAGGACATGTTCGGCTCGATGTTCGGCGGGGGCGGCGCACGAGCCGGGGGCCCGGGCGGTCCCCGCGTGCAGTACCAGCAGACCGGTGGGGCCGGGTTCGAGGACATCCTCGGGTCCATGTTCGGCATGGGCGGCGGCCGCCAGGCCGGGTTCGGCGGACCGCAGCGGCAGAAGGGTGCCGACGTCGAGACCAGGGCCACGCTGCCGTTCCGCGCCGCCGTCGAGGGGACGACCGTCGAGCTCACGGTGGACGGGCGCAGCCTCAAGGCGCGGATCCCCGCCGGGGTGCGCGACGGTCAGAAGATCCGCCTCAGCGGCAAGGGCCGACCCGGCATGAACGGCGGCCCCGCGGGCGACCTGCTGATCGCCGTGCACGTGGAGGACCACCCGGTGTTCACCATGGACGGCGACAACCTGCGCATGACGCTGCCCGTCACGTTCGCCGAGGCCACCCTCGGCACGACGGTCGAGGTGCCGACCCTGTCCGGCGAGACGGTGCGGCTGAAGGTGCCCGCCGGCACGCCGTCGGGCCGTGCGCTGCGCGTCAAGGGTCGCGGCGTCGCCACGAAGAAGCGCACCGGCGACCTGCTGGTCACGATCCAGGTCGTGGTACCGCAGAAGCTGAGCCGTGCGGCGAAGAAGGCGCTCGAGGAGTTCGCCGCCCAGGCCGACGGCGAGGACGTGCGTGCCGACCTGGCCACGCGCGCCGCGCAGTAGMTGQDWIEKDFYAALGVPKDADQAAIKKAYRKLARQYHPDQNPGDAAAEARFKEIGEAYAVLSDAEQKQQYDALRSMAGGGPRFAAGPGGGPAGFEDMFGSMFGGGGARAGGPGGPRVQYQQTGGAGFEDILGSMFGMGGGRQAGFGGPQRQKGADVETRATLPFRAAVEGTTVELTVDGRSLKARIPAGVRDGQKIRLSGKGRPGMNGGPAGDLLIAVHVEDHPVFTMDGDNLRMTLPVTFAEATLGTTVEVPTLSGETVRLKVPAGTPSGRALRVKGRGVATKKRTGDLLVTIQVVVPQKLSRAAKKALEEFAAQADGEDVRADLATRAAQPGPT0014545_6318DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686NANA
AK018_02846459hypothetical proteinATGGTCACCGACGACGCACCCGTGCTGACGGTCTCGCAGGCCGCGCAGCTCGCCGGCATGCATCCGCAGACGTTGCGCCAGTACGACCGGCTGGGGCTGGTCACGCCCCGTCGTACCCGCGGCCGCGGTCGCCGCTACTCGCGGCACGACGTCGCGCGGCTGCTCGAGGTGCAGCGCCTTGCGCAGGACGAGGGCATCAACCTGGCGGGGATCAAGCGCATCCTGGACCTGGAGCAGCACGTCGCCGTGCTCGAGGACCGGTTGGCGCGGCTCGCGCACCTCGTCGCGGAGCGCGAGGAGGCCGACGGTCGCGTGTTCGCCGCGGGGTCCGGCGGGGACGTCGTGGCGATGCCGCTGGGCCGCCGGGTCCGGCGCTCCGAGCTGCGGCTCGAGGTCGAGACGCGGCGCGAACGCGGTGGGGCGATGGTGCTGTGGCGCCCGAGCCCGCCCCGGCGTTGAMVTDDAPVLTVSQAAQLAGMHPQTLRQYDRLGLVTPRRTRGRGRRYSRHDVARLLEVQRLAQDEGINLAGIKRILDLEQHVAVLEDRLARLAHLVAEREEADGRVFAAGSGGDVVAMPLGRRVRRSELRLEVETRRERGGAMVLWRPSPPRRPGPT0014625_224DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014625-hspR-K13640NANA
AK018_02847309hypothetical proteinATGACGTCAGTGCTGGAGATGCCCGAGGTCACCGAGTGCTCGGTGACGGGCTGCGGATACAACCACGACCACGACTGTCATGCCGGAGCCGTCACGATCGGCGGCGTCCCCGGTGACGCCGAGTGCGCCACCTTCATCCCGCTGGGCACCAAGGGCGGGCTCGACAAGGTCGTCGCCCACGTCGGGGCCTGTCAGCGCATGGACTGCGTGCACAACCAGGACCTGGAGTGCACCGCGACGGCGATCCGTGTCGGTGCCGGCCCCCAGGACGACGCGCACGCCGACTGCCTCACGTTCAGCGAGGGCTGAMTSVLEMPEVTECSVTGCGYNHDHDCHAGAVTIGGVPGDAECATFIPLGTKGGLDKVVAHVGACQRMDCVHNQDLECTATAIRVGAGPQDDAHADCLTFSEGNANANANANA
AK018_02848792hypothetical proteinATGATGGACATCTATGGGGGTCCCATCAGCATGATTCTGCCCACAGACGGCGCGCACGGCGCCGTCACGCGCGAGCGCTGGCGCAGCGCCAGCCTCTCCGAGGCATGGTTGCGCCCCGGTGACTGGTACCACCCGGCCGTCGACGCCGTCGTCGAAGCCCTGGTGGAAGGACGGTCGCCGGAGGCTCCCGCGCACCGCCTCGGGTGCGCGCGCAGCAGCGCCGGCATCAGCCTGGACGAGACGCTCGAGGACGTCGTCTGCCTCTACCGGGCCGTCGGGCACCCGGTGGACGCCGCGGTCATCCGCAGCATCGCCCTGGGCTGGGTCCACGGACGCGAGCGCCAACCCGCGCTCAACGGGGTCCGCGATCCCGCCACGGGCCTTCCCACGGTCGACTACCTCGGCGAGCGGCTGCGCGAGACCTACGGCCGCGCGGCCCGGGCCGGCACGCCCGTCCCGGAGAGCCACTGCCTGGTGGTCATCGACGTCGCCGTCGACGAGCTCGACGCGTGGCAGCGCATGGCCCGCTCCGCCTCCGTGGGCCGCACACTCGACCAGGTGTTCGGCGACGGGCACCCGATGGCGGCGCTGGCCGACGGCGTCTTCACCGTGCTGTGCGAGCGCACGCCCGAGCTGGCACGCCTGTCGCAGACGGTGCGACGCATCGTGGAGCGCAACGCGCAGGTCCTGGGGGTCGCGGACACGATGCGGCGGCCGGTCCGGGTCTGGCTGGAACAGCTCCCGGTCACGCACGACGCCGCGCTGGACCTGCTGCAGCACCTGCAGCGCTAGMMDIYGGPISMILPTDGAHGAVTRERWRSASLSEAWLRPGDWYHPAVDAVVEALVEGRSPEAPAHRLGCARSSAGISLDETLEDVVCLYRAVGHPVDAAVIRSIALGWVHGRERQPALNGVRDPATGLPTVDYLGERLRETYGRAARAGTPVPESHCLVVIDVAVDELDAWQRMARSASVGRTLDQVFGDGHPMAALADGVFTVLCERTPELARLSQTVRRIVERNAQVLGVADTMRRPVRVWLEQLPVTHDAALDLLQHLQRNANANANANA
AK018_028494065hypothetical proteinGTGACCGACGTCTTCATCGGATCCGGCGGAACAGCTCCCAGCGACGGCGAGCTGATCCTTGAGGTGCGTGGAGGCAGCCTCGAGGCCTACGGCGCGCTGTACGAGCGGCACGCCGCGGCCGCCCGCAGCCTGGCGCGGCAGTACGTCCGCTCCGACTCGGACGCCGACGACATCGTCTCGGACGCCTTCCAGCGCGTGCTCGGCACCCTGCAGCAGGGCAACGGCCCCGACACCCACTTCCGTGCCTATCTGTTCACCGTCGTGCGCCGGTTGGCCGCGGACCTGGCCAAGGGCGCCAGGCGTACCCGTCCCACCGACGACGACGGCACGTTCGAGAGCGCGCTCGGCCCCTCGGCGTCGCCGGAGGACCCGGCGCTCGCCGGGTTCGAGAACAGCGTCGTCGCCCGCGCCTACGACGCGCTGCCCGAGCGGTGGCAGGCCGTGCTCTGGTACACCGAGGTCGAGGGGATGCCGCCCGCGGAGGTGGCGCCGATCCTGGGCCTGACGCCGAACGGCGTGTCCGCACTGGCCTACCGTGCCCGCGAGGGGCTGCGGGTCGGCTACCTCCAGGAGCACCTGACCACCGAGCCCGCCGACTCGTGCCGCACGGTCAACCCGCTGCTGGGCGGGTACGTGCGCGGCAGCCTCTCGCGGCGGGAGGTCGCCAAGGTCGACCGCCACCTCGAGCAGTGCGGCGACTGCCGCACCCTGGTGCTCGAGCTCGGCGACGTCGCGCACGGCATGCGTGCCGTCGTCGCGCCCCTCGTGGTCGGCATCGCCGGGCTCGCGCTGCTCGGGTCGCTTCCCGTCGGGGTGCTCTCCGGCGGCGCAGCCGCGGGGGCCGCCGCAGGTGCCGGGGGTGCCGCCGGAGGCGCCGCGGGCATGGGGACCGCGGCCGGTACCGGTACCGGCGCCGCTGCCGGCGCGGGCACGGGCGTCGGGGCGTCCACCGCCGGTGCGTCCACGGCTGGCGCTGCGGCCGGTTCCGGGGCCACCGCGGGTGCCGGTGCGACCGCAGGGGCTGGTGCGACCGCAGGGGCTGGTGCGACGGCGGGTGCCGGTGCGACCGCGGGTGCGGGTGCCGGCGCTGCAGGAGCCGGCACGGCGGCGACGACCGCCGGCGCGGGTGCCGCCGGGGCCGGTGCGGGAGCCGCGACGACGGCCGCCACCGCGACGACGGCGGCCACGGCCACGACGGCCACCGCGGCCACCACCGCGACCACCGCCGCCGTCGCGACCGGTGCCGCCGGGGTCACGGGAGCGACGGTCGCCGCGTCCACGGGCGCCGTGGCCGTCGCCACGGTCGGCGTGGTCTCCGTGCTGGGATCGCTCGACGCCGGCGACAGCTCGCTCCCCGAGGACCCGCCGCCCTTGGCGATCGCGTCCCCCTGGCCGACGGAGGACGAGGATCAGCAGGTCGACGCGACGCCTGCCGAGCCGACCCCCGAGCCGAGCGAGGACCTGACCGACCCGTCCAACGTGCCGCCCCTCGTCGACCCCGACATCGACGAGATCGTGCTGCCGGACCCCGCCGCGGTCGCGGTGACGGTCGCCGACGACGTGCTCGCGCCCCGCACGACGGAGCGCCTGAGCTTCGCGGTCACGAACACCGGGGGTTCGGTCGCCGAGCAGACCACCGTGACGTTGGCGCTCCCTGCCGGGATGGGGCTGGTCGAGGGGTCCGCCGCAGTCGGCGCCGCGAACCTGCCGCAGCCGTTGGACGTGAGCTCGCTGCCGTGCACGGCGACCTCGCAGCCGCAGCAGGTCCAGTGCTCCGTCGGCACCCTGGAGCCGGGCGCGTCGCGCACCCTGAGCGTCCCGGTGAGCGTGCGCGACGGCGGCACCTACTCCGTGAGCGCGCAGGTGTGGGCCGACGGGCTCGAGCCGCGTCGGATCCAGCTCGCCCCCACGCAGGTCGCCTACTTCGGTGCCGAGCTGCGTGCCCGCAGCGAGGACACGGTGAAGGCGGGCAACCCCGGGCAGGCGAGCGTGCCGTTCACCGTCCTGAACACCGGCGACCGGACGGCGGGCGCCGGGTGGCAGGTCGAGGTGTCGGTCCCGGCCGGGCTCGAGCCGCGGTCCGTGAGCGGGGACCTGGACTGCGCGCGCGCCGACGAGCGCCGGACCTGGACGTGCCAGGGCGGTGACCTCGCTCCCGGAGCCCAGGTGAGCGGTGCGCTCTCCGTGGTCGCCGACGGGACGACCGAGGCGGGTGCCTACGACGTCGACGTGCGTCCGGTCCTCGGCGGCGACGGCGCCACGGTGCGCACGGCGACCTCCGTCGACGTCCCGCGAGGGTGGCAGGGCGCGTTCTCCGGCGTCGGCGGCATCGAGGCGTCCTGCGCCGTCGTCGGCGGCTTCGACGACGCCGACGCCGTGGTCGCCGGGACCTACACCAACCGCACCGAGCGCACCGTCGTCGTCGCCCTGACGGCGGCCGGGGCCGACCCGGTGGGCTCCCGGCCGCTCGCCCCCGGGGAGTCCACGCGGCTCGTCGTCCACGACGGCCTGCGCGTGCCGTCGGGCGAGGCCACCTGGACGCTGTCGACCACGGTCGCCGGCTCGACCTACTCGCGGACCGTCACCGGCGGCGCGCACGGTGCCGCCGAGTGCTACGACCCCGCCTGGGGCGTGCGCACCTCGGCGCAGGTCGTCAACGACGGCTCGCGCGTGCGGGTGGACGGGACCGTCACCAACGTCTCCGACGAGCCCATGCAGGCGGGCATGTCCGGTGCGGGAGGCCAGGCGGACCGTGTCCGCCTCGACGTGGGGCAGACCGCCACGCTCAGCATCCTCACCGACAAGGCGGCGGTCGCGTCGGGCGACGTCCGGTTCGACCTGTACCGCTGGGTGAGCGACCGGGACGGCGACCAGCCCGCAAACGGCATCGTGCCCGTCACCGCGCCGACGGCCTCCTACCCGGCCGCGACCATCGCCCCGGCGGCCGGCGCGGCCGAGCGCGTCGGGGAGTGCACCTACGACGCCGGCACGGAGACCTCCACCCAGAGCTACTCCGTCCTGCTGGACAACAGCGGGTCCACGCTGCCGTCCCGCTACGAGGTCGTGGTCGGGGACCAGGTCCGCGAGCGTCGGCTCGCGGCAGGGGAGTCGACGACGGTGCGGTTCGACGTCCCGTGGGGGACGCGCAGCGGCACCGTGTCCGCCGACGGGCGTGAGCTGGCCACCCTCGACGTCCGGTTCGGGTCGTGCGCCACGCCGCTGACCTGGCCGCAGGCGGCGACCGTGACGGCGGACGCCCGGTGCGACGCCGGGACCGCCGAGGTCGTGGTCGACGTGCGCAACGGGGGAGGCCGGTCCTGGGAGGCGACCCTCCTGCACGGCGGGAGCGTCGCCGGGACCCGCGCGCTGGGCGGCGACGCGTCGGCGCGGTTCGTGGTCGACACCGGCTCCATGAAGGCTCGGGACGGTTCGGCGACCGTCCGGCTGGTGCGAAGCATCGAGGGTTCCCCGCAGACCGTCGAGCAGACCGTCTCCTACGAGGGCGTGCGGTGCGTGGTCCGCGACCCGGTCTCCGCGCTGGACACCGGGGAGATCCGTCTGGACGGGAACGGCGACTACGTGACCTCGTGGCGGGACGTCGCGGTCGAGCTCGACAACACCGGGTCGAACGTGCCCGTCGACTTCCGCGTGGTCGGACCGAACGGTCTCGACGCGGCCTTCACGGTCCCGGCCGGCGAGACCCGCGCCACGGACCCGGCCCGCGTCGAGGGCCGCCGCGGCGGCACGTGGACGGTCACGGCCGGGGATCGGTCGCGGGAGCTCACCGTCGAGACGTTCACCGGGGCCGAGGCCGGCTGGTGCGCAGACCGGATCGCCTGGGGCTCCACCTACGGCGAGGGTGACGTGCGCTCGTGGAACGGCACGGCGTTCCGCTACCTGGGGTGGGACGAGTCGGCACCGGGCTACGCGTCGTGGCACCGTCTGCGGTCGCAGAGATGGAGCGACAGGGACGACGCCCCCTGGTACACGTCCGAGAAGTGGCGCGGCATCTGGATGGGCCAGTGGCAGCAGTGGGAGAAGGTCGGGACGTGCGAGTACCGGTGAMTDVFIGSGGTAPSDGELILEVRGGSLEAYGALYERHAAAARSLARQYVRSDSDADDIVSDAFQRVLGTLQQGNGPDTHFRAYLFTVVRRLAADLAKGARRTRPTDDDGTFESALGPSASPEDPALAGFENSVVARAYDALPERWQAVLWYTEVEGMPPAEVAPILGLTPNGVSALAYRAREGLRVGYLQEHLTTEPADSCRTVNPLLGGYVRGSLSRREVAKVDRHLEQCGDCRTLVLELGDVAHGMRAVVAPLVVGIAGLALLGSLPVGVLSGGAAAGAAAGAGGAAGGAAGMGTAAGTGTGAAAGAGTGVGASTAGASTAGAAAGSGATAGAGATAGAGATAGAGATAGAGATAGAGAGAAGAGTAATTAGAGAAGAGAGAATTAATATTAATATTATAATTATTAAVATGAAGVTGATVAASTGAVAVATVGVVSVLGSLDAGDSSLPEDPPPLAIASPWPTEDEDQQVDATPAEPTPEPSEDLTDPSNVPPLVDPDIDEIVLPDPAAVAVTVADDVLAPRTTERLSFAVTNTGGSVAEQTTVTLALPAGMGLVEGSAAVGAANLPQPLDVSSLPCTATSQPQQVQCSVGTLEPGASRTLSVPVSVRDGGTYSVSAQVWADGLEPRRIQLAPTQVAYFGAELRARSEDTVKAGNPGQASVPFTVLNTGDRTAGAGWQVEVSVPAGLEPRSVSGDLDCARADERRTWTCQGGDLAPGAQVSGALSVVADGTTEAGAYDVDVRPVLGGDGATVRTATSVDVPRGWQGAFSGVGGIEASCAVVGGFDDADAVVAGTYTNRTERTVVVALTAAGADPVGSRPLAPGESTRLVVHDGLRVPSGEATWTLSTTVAGSTYSRTVTGGAHGAAECYDPAWGVRTSAQVVNDGSRVRVDGTVTNVSDEPMQAGMSGAGGQADRVRLDVGQTATLSILTDKAAVASGDVRFDLYRWVSDRDGDQPANGIVPVTAPTASYPAATIAPAAGAAERVGECTYDAGTETSTQSYSVLLDNSGSTLPSRYEVVVGDQVRERRLAAGESTTVRFDVPWGTRSGTVSADGRELATLDVRFGSCATPLTWPQAATVTADARCDAGTAEVVVDVRNGGGRSWEATLLHGGSVAGTRALGGDASARFVVDTGSMKARDGSATVRLVRSIEGSPQTVEQTVSYEGVRCVVRDPVSALDTGEIRLDGNGDYVTSWRDVAVELDNTGSNVPVDFRVVGPNGLDAAFTVPAGETRATDPARVEGRRGGTWTVTAGDRSRELTVETFTGAEAGWCADRIAWGSTYGEGDVRSWNGTAFRYLGWDESAPGYASWHRLRSQRWSDRDDAPWYTSEKWRGIWMGQWQQWEKVGTCEYRPGPT0022155_2244DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_V_SECRETION_SYSTEMSCE-T5c_TRIMERIC_AUTOTRANSPORTER_ADHESINS-SECRETION,PGPT0022155-ata|sadA|emaA-K21449NANA
AK018_02850636upp_1Uracil phosphoribosyltransferaseATGCGCCTGCACGTCGCCGACCACCCGCTGGTGGCCCACAAGCTCTCCGTCCTGCGCGACGAGTCCACGCCGTCGCCCATCTTCCGGCTGCTGGTCGACGAGCTGGTCACCCTGCTCGCCTACGAGGCCACCCGGCACGTGCGGACCGAGCCCAAGGAAGTGACCACCCCGGTCACCACCACCACCGGTGTGGCCATCAGCAAGCCGAGCCCCATCGTGATCCCGATCCTGCGCGCGGGCCTCGGCATGCTCGACGGCATGACCCGGCTGCTGCCCACCGCGGAGGTCGGTTTCCTCGGCCTGCAGCGTGACGAGGAGACCTTCGAGGCCGTCACCTACGCCAACCGGCTCCCCGACGACCTGACCGGGCGCCAGGTGTTCCTCCTCGACCCGATGCTCGCCACCGGCGGCACCCTCGTGGCGGCCGTCGACTACGCGCTGGAGCGCGGTGCCGAGGACGTGACCGCGGTGTGCCTGCTCGCGGCCCCCGAGGGCGTGCAGGTGGTCCAGGAGGCCGTCGGCGACCGGGCGGACGTGCAGATCGTCGTCGCCGCCGTCGACGAGCGGCTCAACGACAAGAAGTACATCGTGCCCGGGCTGGGCGACGCGGGCGACCGCCTCTACGGCGTCGTCTGAMRLHVADHPLVAHKLSVLRDESTPSPIFRLLVDELVTLLAYEATRHVRTEPKEVTTPVTTTTGVAISKPSPIVIPILRAGLGMLDGMTRLLPTAEVGFLGLQRDEETFEAVTYANRLPDDLTGRQVFLLDPMLATGGTLVAAVDYALERGAEDVTAVCLLAAPEGVQVVQEAVGDRADVQIVVAAVDERLNDKKYIVPGLGDAGDRLYGVVPGPT0021240_1917DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021240-upp-K00761NANA
AK018_028511722hypothetical proteinGTGAGAAGGATCCTGGCGAGCATCGCCACCTCGACGCTCGCACTCGGCGGACTGCTCGTCGCCACCGCGGCGCCCGCCTCCGCGCACACTCCCCATGTCGAGAGCACCTGCGACAGCCTCTCGATCGACCTGCGCTACTACGCCGAGGAACGGCAGGGAAGCGCGAACACGATCGAGGTCGTCGTCGACGGCGAGACCAAGATCGACGAGAAGTTCGGCCGTTCGTACAGCACGACGCTCACGCTCGACCCGACCGAGGCGCACGAGTGGAGCCTCGAGGTCGACGCTCGGGACGACCGTCGGTACGACGTCAAGAAGGCCGGCACCACCACGCCGTGCCCGACGTCGGAACCGGGTCTCGAGACCGGCTTCTACGTCTACCCGAAGCTGGACCCGAACAAGCCTGCCGCCTGGACGAACTCGGGCTTCCAGACCCTGATCACCACTCGTGACGGTGGCGAGTTCTGGGACACGCTCCCCGAGGAGTACCCGGGCCCGATCTTCGACCCCGAGGAGCTGCCCGGCGACGTCTGCGAGGGCTCCTGGGGCGTTCAGCAGGACGTCGTGCGGATGGTCCCCGGCCACGACTGGGCGGACTACCAGCACATCGAGTTCCGCAAGGGCGGGCCGATGTTCAAGTCGTTGAAGGCAGCGCGCCACGACGAGCTGAGCAACTACCTGCCGCAGTGCAACCCGTCGCAGGCCGAGGAGGTCACGCTCCCCGCACCCGCACCCGTCGAGCAGTGCGACGCCCAGAGCTCCGTCACGATGCCCGAGACCGACCTTGCCGTGTACACCGAGGAGTGGAACGACTCCCGCACCGAGGTCACGGTCACGGCCGAGCCTAACGACGGTGTCCGGCTGGCACCTGACGCCCAGACGGAGTGGACCTTCCAGTTCGCCGGTGAAGCCTGCGAACCCACCATCGTGACGCCGGAGGCGCCCCAGGTCACCGACCAGTGCGGTGTCCAGGACGACGGCCTCACCGTGCCGGCGGACACCGAGCAGGTCACCTACACCTCCACCGACGAGGGCATCCTCGCCCACGCCGCCGAGGCGACGACGTTCGGCGACCTGCCCGAGGGCTACACCGCCGTCGACGACACCACCGCGCTGTTCGCCGTCGACGAGTCCACGTTCTCCGACGAGCCGTGCGCCCTGGTGCCCGGTGACATCACCGCCGTCTGCGAGTCCGAGGTCCCGTACCTCGCCTACGAGGTCAGCCTGCCCGAGGGCGTCGAGGCCGACGGCGACACCCCACTGACGGTCACGTTCCTCAACCCGGACGGCGACGACTACACCGTCACCGACCAGCCGCTGGCCGGCAGCCTGCTGTGGCCCGGCGCCTCCGCGCAGGAGCCGCTGCAGTGGCCGGGCTGGGAGCAGCTCGACGACGGCAGCTACGTCGAGACGGACGGCAACTACGCCTGGACCCGCGACGGCGTGCAGGTGCTCTTCGAGGTCAACCCCGACTACTCGACCGTGGTGGACTACCCGCAGGCCTCCAGCGAGTGCGCCAACCCCGAGCTCCCCGACGCCGGTGTGGGCGGGGTCGACCCGGTCGTCGACGCCGAGCCGGTCGCCGACGCGAGCGTCGACGCGGCAGCCGAGGAGCTCCCGCAGACGGGTGCCACCGTCGGCATCGTGGCGGCACTCGCCGCGCTGCTGGTGGCTGCCGGTGTGACGTTGTTCGTGGTGCGACGCCGCGTGCGCCAGGAGTGAMRRILASIATSTLALGGLLVATAAPASAHTPHVESTCDSLSIDLRYYAEERQGSANTIEVVVDGETKIDEKFGRSYSTTLTLDPTEAHEWSLEVDARDDRRYDVKKAGTTTPCPTSEPGLETGFYVYPKLDPNKPAAWTNSGFQTLITTRDGGEFWDTLPEEYPGPIFDPEELPGDVCEGSWGVQQDVVRMVPGHDWADYQHIEFRKGGPMFKSLKAARHDELSNYLPQCNPSQAEEVTLPAPAPVEQCDAQSSVTMPETDLAVYTEEWNDSRTEVTVTAEPNDGVRLAPDAQTEWTFQFAGEACEPTIVTPEAPQVTDQCGVQDDGLTVPADTEQVTYTSTDEGILAHAAEATTFGDLPEGYTAVDDTTALFAVDESTFSDEPCALVPGDITAVCESEVPYLAYEVSLPEGVEADGDTPLTVTFLNPDGDDYTVTDQPLAGSLLWPGASAQEPLQWPGWEQLDDGSYVETDGNYAWTRDGVQVLFEVNPDYSTVVDYPQASSECANPELPDAGVGGVDPVVDAEPVADASVDAAAEELPQTGATVGIVAALAALLVAAGVTLFVVRRRVRQENANANANANA
AK018_02852522tadA_1COG0590tRNA-specific adenosine deaminaseGTGGAGACGAGAGGACTTGCCCTGCCGTGGGCCGACGGCGCGTTCCCCCCGGCGACGCTCAGCGAGCGCCGGGCCGTGTGGGGCCACCTCATGGGACTCGCCCTGCACGAGGCGACCCACGCCCTGGTGAGCGACGACGTCCCCGTCGGTGCCGCCGTCGTCTCCCCGGACGGCCGCCTGCTCGGACTGGGGCACAACCGTCGCGAGGAGACCGGCGACCCGACGGCGCACGCCGAGGTGCTCGCGCTGCGTCAGGCGGCCGCGAGCTGGGGGGAGTGGCGGCTGACGGGCTGCACGCTCGTGGTCACGCTCGAACCCTGCGTGATGTGCGCGGGGGCGCTCGTGGCGGCCCGGGTCGGACGCCTGGTCCTCGGCGCCTGGGACCCCAAGGCGGGCGCGACGGGATCCGTGTGGGACATGGTCCGTGACCAGCGAGCCCTGCACGAGGTCGAGGTGATCGCCGGGGTGCGGGCCGACGAGTGCGCCGCCGTGCTCCAGGAGTTCTTCGCCGCCCGCCGCTGAMETRGLALPWADGAFPPATLSERRAVWGHLMGLALHEATHALVSDDVPVGAAVVSPDGRLLGLGHNRREETGDPTAHAEVLALRQAAASWGEWRLTGCTLVVTLEPCVMCAGALVAARVGRLVLGAWDPKAGATGSVWDMVRDQRALHEVEVIAGVRADECAAVLQEFFAARRPGPT0006855_48DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROPROPENE_DEGRADATION,PGPT0006855-dhaA-K01563NANA
AK018_028531356hypothetical proteinATGACCAGCACCCGCTCCGTGCCGCGCGAGACCGCGCCGGCCGTCACGAGCCTCCCAGGACTCCTGCGTGCTCCCTGGGCCGGCGCCAGCTGGCGCGGCCTCGCCCAGCTCGCCCTGGGCTACCTGTGGCTCGTCACCGTCGGCCTGGTCGTCTTCGACCTGGTCCTCGTGGCGGCGTCCCTCGTGCCCGCCCTCGGGCTCGGCCTCCTCGTGCTGCCGGCCACCCTGTGGCTGGCGCGCCGGTTCGCCGCCGCGGAGCGTGCCCGCCTGGCCGCGCAGACCGGCGTCGCGATCCAGGACCCGGGCCGCCGCCGACCCGCCCGGCCCGGCTGGTGGGGCTGGACGACGGCGGAGCTCACCGACCGGCGCGGCTGGCTCGCCACCGCGTACGCCGTCGCCGGGCTGGTCGTCGTCACCACGTTCCTCTCGCTCGCCGTGGTCGCGGCCGGCAGCGCCGTCGCCGCCGTGATCCTCGGCGTGCACACGGTGGTCACCGACCCCGCGGACCTCTCCTGGCTGCTCGCCGTCCCGGTGGCGGTCGTGCTCGCCTGGCTCGCCGCCGTCCTGGCCCAGGTCGGCACGCTCATCACCGCAGCCCTCGCCCGGGCGATGCTGGGCGTCTCCCCGGCCTCGGCGGCCCGCGCCGCCCAGCACGCCGCCGAGGCCGAGGCCCGCGCCGCCGAGACCGCCGCCACCAGCGCCCGGCAGCGCGCCGTCGAGCTCACCGAGACCCGCGCCGCCGCCCTCGAGGCCGCCGACGCCGAACGCCGCCGCATCGAACGCGACCTGCACGACGGCGCCCAGCAGCGCCTCGTCGCCCTCGGCGTCGCGCTCGGCACGGCCCGCCGCGCCGCCGAGACCGACCCGGCCGCCGCCGTCACCGCCGTCGAGCACGCCCACACCGAGGTCAAGGAGACCCTCGCCGAGCTGCGCGACCTCGTCCGCGGCATCCACCCCGCCGTGCTCGCCGACCGCGGGCTCGACGACGCCCTCTCGGCGCTCGCGGCCCGCAGCCCCGTCCCCGTCCGGGTCGACGCCGGACCCGACCTGGGCCGGGCGGGCTCCGGGGTGCAGGCCGCCGCCTACTTCGTCGTCGCCGAGGCGCTCACCAACGTCGCCCGGCACGCGCGAGCCACCCGCGCCCACGTGCGTGCCGCCGTCGTCCCCGGCCCCGAGGGGCCGCCCCGCCTGCTCGTCGAGGTGTCCGACGACGGCGCCGGCGGTGCCGAGGCCCGGCCCGGGTCCGGGCTGGCCGGTCTGCGCGGCCGCGTCGCAGCCCTGGACGGCGCCTTCGACCTGACCAGCCCGCCCGGAGCGGGGACCCGCCTGCGAGTGGAGCTGCCGTGCGCATCGTGAMTSTRSVPRETAPAVTSLPGLLRAPWAGASWRGLAQLALGYLWLVTVGLVVFDLVLVAASLVPALGLGLLVLPATLWLARRFAAAERARLAAQTGVAIQDPGRRRPARPGWWGWTTAELTDRRGWLATAYAVAGLVVVTTFLSLAVVAAGSAVAAVILGVHTVVTDPADLSWLLAVPVAVVLAWLAAVLAQVGTLITAALARAMLGVSPASAARAAQHAAEAEARAAETAATSARQRAVELTETRAAALEAADAERRRIERDLHDGAQQRLVALGVALGTARRAAETDPAAAVTAVEHAHTEVKETLAELRDLVRGIHPAVLADRGLDDALSALAARSPVPVRVDAGPDLGRAGSGVQAAAYFVVAEALTNVARHARATRAHVRAAVVPGPEGPPRLLVEVSDDGAGGAEARPGSGLAGLRGRVAALDGAFDLTSPPGAGTRLRVELPCASNANANANANA
AK018_02854657lnrK_2COG2197Transcriptional regulatory protein LnrKGTGCGCATCGTGATCGCCGAGGACTCCGTCCTGCTGCTGGACGGACTGACGCGGCTGCTGCAGACCGAGGGGCACGACGTCGTCGGGCACCGGACGGCCGAGGAGATGGTCGGCGCCCTGACCGCGCCCGGCGCCACCCTGCCGGACCTGCTCGTCACCGACGTGCGGATGCCGCCCTCGCACACCGACGAGGGCCTGCGCGCCGCCGTGCACCTGCGCAGCCTCCACCCGGATCTGCCCGTGCTGGTGCTCTCGCAGTACGTGGAGCAGCGCTACGCCGCCGAGCTGTTCGCCCACGGGAGCCGGGCCGTCGGCTACGTGCTCAAGGACCGGGTCGCCGACGTCGAGGAGTTCCTCGACGCCGTCGCCCGGGTCGCCGGCGGCGGCACCGTCCTCGACCCCGAGGTCGTCTCCCAGGTGCTCGCCCGCACCCGCCACGAGCTCGACGACCTCACCCCCCGGGAGCGCGAGGTGCTCGCCCTCATGGCCGAAGGGCTGTCCAACGCCGCGATCGCGGACCGGCTCGTCGTCGGGCCCGCCGCCGTGGAGAAGCACGTCACCAACATCCTCACCAAGCTGGGGCTGCCCGTCGACGCCGACACGCACCGTCGTGTCCTGGCGGTGCTGCGCTGGCTGGACCGGAACGGAGAAGCATGAMRIVIAEDSVLLLDGLTRLLQTEGHDVVGHRTAEEMVGALTAPGATLPDLLVTDVRMPPSHTDEGLRAAVHLRSLHPDLPVLVLSQYVEQRYAAELFAHGSRAVGYVLKDRVADVEEFLDAVARVAGGGTVLDPEVVSQVLARTRHELDDLTPREREVLALMAEGLSNAAIADRLVVGPAAVEKHVTNILTKLGLPVDADTHRRVLAVLRWLDRNGEANANANANANA
AK018_028551008hypothetical proteinATGAGCCACGACACCTCGCCGGGCACCACCACGCCGGGGGACACCGCCCCGGACGCCGCATCCCACGGCACCACCGCGCCGCAGCACGGCCCGCCGCCCGGGGGACCGCCGTCGTCGGCCGGAGACCCGTCGGCACCGGACCCCCGGCGCAGCGGTCTCGGCCGTGCGCTGCTCGGGATCGGCGTCGTCGTCGCCGCGCTGATGGTCGCCTGGGGCGCCCTGCACCTGGTCGACTGGGCGCTCACCGACACCCGCACCACCTCCGAGACGCACTCCGCCGCCGCCGAGGTGGAGCTGGTCGCCGACGGTGACGTGACCGTCCGGTCCGACGACGGCGCCACCGACGTGTCCGTCGAGATGGTGTCCCGGGGCGGGCTGACCGAGCCGCGGTACTCCGTCGACACGGTCGGCGACACCCTGGTCCTCGAGAACACCTGCCCGACCTGGGTGTGGTGGTCGTGGACGTGCGCCGGCGAACTGCACGCCGTCGTCCCGCCGGACACCGCGGTGACGGTGCGGACCTCGAACGGCGAGGTGCGGGCCGAGGGCCTCGCCGGAGACGTGGACCTCGACTCCTCGAACGGTTCCGTGCTCGCTGCCGACCTCGACGGTGACCTGCGTGCGCGCACCAGCAACGGGGACGTCGAGGTCGGTCGGATCGGCGGGTCGTTGGACGTCCGCACGTCGAACGGCGGTGTCCGGGTGACCGACGCCGCCGGGGACGCCGTCGTCGGGACGGACAACGGCGACGTGGAGCTGCGGGACGTCGGCGGCGACGCCGAGGTGCGGACCGCGAACGGGTGGGTCGAGGTGTCCGGCGTGGCCGGCGACGTGCTCGCCGAGACCTCCAACGGCGACGTCACGGTGACGGGCGACGGCGAGCCGGTGGCGCTGACCATCGAGACGTCGAACGGGGAGCGGACCGTCGAGGGGCCGACCGACCCCGCGGCGTCGCGCACGGTGGAGATCCACAGCTCGAACGGGGACGTCACCTACCTGGACCCCTGAMSHDTSPGTTTPGDTAPDAASHGTTAPQHGPPPGGPPSSAGDPSAPDPRRSGLGRALLGIGVVVAALMVAWGALHLVDWALTDTRTTSETHSAAAEVELVADGDVTVRSDDGATDVSVEMVSRGGLTEPRYSVDTVGDTLVLENTCPTWVWWSWTCAGELHAVVPPDTAVTVRTSNGEVRAEGLAGDVDLDSSNGSVLAADLDGDLRARTSNGDVEVGRIGGSLDVRTSNGGVRVTDAAGDAVVGTDNGDVELRDVGGDAEVRTANGWVEVSGVAGDVLAETSNGDVTVTGDGEPVALTIETSNGERTVEGPTDPAASRTVEIHSSNGDVTYLDPNANANANANA
AK018_028561464hypothetical proteinATGGAGGACGTGATCGTCGTCGGGTCGGGGCCGAACGGCCTCGCCGCCGCGGTCACGCTCGCACGGGTCGGCCTGTCGGTGACGGTCCTGGAGGCGCAGCCCACGCCCGGCGGCGGCTCCCGCACCCTCGACCTCGATCTGGCCCCCGGCCTGCGGCACGACGTCTGCTCCGCGGTCCACCCGATGGCGTGGGCCTCGCCGTTCTTTCGCGCCTTCGACCTGCCCGCGCACGGCGTCGAGCTGCTCACCCCGGACGCCTCCTACGCCCAGCCGCTGCCCGGCGGTCGCGCGGGAGTCGCCTACCGCGACCTCGACCTCACGGCCGAACGCCTCGGCGTCGACGGCGGCGCCTGGCGCTCGCTGCTCGGCCCGCTGGCCGCACGGTGGGAGGCGGTCGTCGCGCTCGCGCTCGGCGACAAGCGGTCGCTGCCCGACGTCGGTGGCCTGGTCGGGGCGGCACGGTTCGGCGCGGCGATGCTCGAGCAGGGCACGGGCGCGTGGGGTGCCCGGTTCCGCACCGAGGAGGCGTCCGCGCTGCTGACCGGCGTCGCGTCCCACTCGATCGGCCCGATGCCGTCGCTCGGCTCGGCCGGGACGGCGCTGCTGCTCGGCGCGCTCGGCCATGCCGCGCCGTCGGGCGGGTTCGACGGCGGCTGGCCGGTCCCGCGCGGCGGCTCCGGCGCGATCGCCGCAGCACTGGTGGCGGACCTCGAGACGCACGGCGGCACGGTCGTCACCGATCACCCGGTGCGCGCCTACTCCGACATCCCCTCCGCGCACGCCTACCTGTTCGACACCCCCGTGGGCACGCTCCTCGACGTGCTCGGCGACGCGCTCTTCCCCACCTGCCACCGGGCGCTGTCCCGGTTCCCCGGCGGCAACGCGGCCGCCAAGGTCGACCTGGTGCTCGACGGCCCGATCCCCTGGGCCGCGCCCGAGGTCGCTCGCGCCGGCACGGTGCACGTCGGAGGGACGCGCACCGAGATGGCCCGCGCGGAGTCCGAGGTGGCCGCCGGCCGGCACGCCGCGGCACCGATGTGCCTGGTCAGCGACCCGACCGTCGTCGACCCGTCCCGCGCCTCCGGCGGGCTGCGACCCGTGTGGGCCTACGCGCACGTGCCTGCCGGCTCGACGCGGGACGTCACCGACGTCGTCCTCGACCAGCTCGACCGCTTCGCCCCCGGGGTGCGGGACGTCGTCGTCGCCTCCCGGTGCACCCCGGCGTCGGAGCTCGTGGGGCACAACCTCAACCTGGTCGACGGGGACATCGCAGGCGGGCGGACGAGCCTGTGGCGGATGATCGCCCGACCCACCGCGGCGGCGAACCCGTACCGGCAGGCCGGGAACGTCTACCTCTGCTCGGCGTCCACGCCGCCCGGCCCGGGCGTGCACGGCATGGCTGGCTGGCACGCGGCCCGCCGCGCCGCCCGGGACGTGTTCGGGATCCGGGTCCCGGCCCTCTGAMEDVIVVGSGPNGLAAAVTLARVGLSVTVLEAQPTPGGGSRTLDLDLAPGLRHDVCSAVHPMAWASPFFRAFDLPAHGVELLTPDASYAQPLPGGRAGVAYRDLDLTAERLGVDGGAWRSLLGPLAARWEAVVALALGDKRSLPDVGGLVGAARFGAAMLEQGTGAWGARFRTEEASALLTGVASHSIGPMPSLGSAGTALLLGALGHAAPSGGFDGGWPVPRGGSGAIAAALVADLETHGGTVVTDHPVRAYSDIPSAHAYLFDTPVGTLLDVLGDALFPTCHRALSRFPGGNAAAKVDLVLDGPIPWAAPEVARAGTVHVGGTRTEMARAESEVAAGRHAAAPMCLVSDPTVVDPSRASGGLRPVWAYAHVPAGSTRDVTDVVLDQLDRFAPGVRDVVVASRCTPASELVGHNLNLVDGDIAGGRTSLWRMIARPTAAANPYRQAGNVYLCSASTPPGPGVHGMAGWHAARRAARDVFGIRVPALNANANANANA
AK018_02857909cobB_1COG0846NAD-dependent protein deacetylaseGTGGAACCCGCCGCCCGCCCGCTCGCCCCGACCTACCAGGAACGGCGCTGGGAGCTCCCCCCGGACGCGGTGATCCACCACGGCACCGTCGACGACGCCGCCCGCGTCCTCGCCGGACGCACGTTCACCGTGCTGACAGGAGCCGGCATATCCACCGACTCCGGCATCCCCGACTACCGCAGCCCCGACTCCCCGCCCCGCAACCCGATGACGTACCAGCAGTTCGTCGGCGACGCGGGCTTCCGGCGCCACTACTGGGCCCGCAACCACGTGGGCTGGCAGCACGTGGACCGCACCCACCCGAACGCCGGCCACCGCACCCTCGCCGAGCTGGAGCAGCGCGGGATCGTGCGCGGCGTCATCACCCAGAACGTCGACCTGCTGCACGAGGACGCCGGCTCCCGCGTCGTCATCGACCTGCACGGCCGCTACGACCGCGTCATCTGCCTGCAGTGCGGCCGCGTCATCTCCCGCACCCACCTGGCCGAGCGCCTCGACGCCCTCAACCCCGGGTTCGTCGAGTCCGTGCTCGACGGCGGCACCACCGTCGCCGACATCGAGGTCGCCCCGGACGCCGACGCCGTCATCGCCCGCACCTCGCACTTCAACCCCGCCGACTGCGAGTTCTGCGGAGGCGTCCTCAAGCCGGAGATCGTCTACTTCGGCGAGAACGTCCCGCGCGAGCGGGTCGACCGGGCGTTCGCGCTCGTCGAGTCGGCTGACGCGCTGCTCGTCGCCGGCACGTCCCTGACCGTGATGAGCGGGCTGCGGTTCGTGCGCCGCGCCGCCAAGAACGGTCAGCCGATCGTCATCGTCAACCGCGGCGAGACCCGCGGCGACCCGCTCGCCACGGTCAAGGTCGACGCCGGCGCCACCGAGACGCTCGTGGTGCTCGCCACCCGGCTCTGAMEPAARPLAPTYQERRWELPPDAVIHHGTVDDAARVLAGRTFTVLTGAGISTDSGIPDYRSPDSPPRNPMTYQQFVGDAGFRRHYWARNHVGWQHVDRTHPNAGHRTLAELEQRGIVRGVITQNVDLLHEDAGSRVVIDLHGRYDRVICLQCGRVISRTHLAERLDALNPGFVESVLDGGTTVADIEVAPDADAVIARTSHFNPADCEFCGGVLKPEIVYFGENVPRERVDRAFALVESADALLVAGTSLTVMSGLRFVRRAAKNGQPIVIVNRGETRGDPLATVKVDAGATETLVVLATRLNANANANANA
AK018_028583750hypothetical proteinATGACACCGACAGGCAAGCGCATCCGCGCATCGTTGGCCGCTGCCGCGGTCACGGCGCTGGCGGTCGCCGGTGCCCCCGCCGCCACGGCGGTCGGCCCGGAGACGGCCCTGAACGCGAACGACCTCGCACCCGGCGACTACACCACCGTGGTCGACACCGGTACCGACTTCACGATCCGCGCCGACGCGGAGAAGGACGTCTCGGTCGACGGCACCGACCGCGTCTCCGACCGCGGCGACGTCTTCACCCAGCGCATCAAGCTCAACGGCTCCGGCGACGAGGACCGCCGCTCGCTCCACTTCAGCGTGGACGCTGAGCAGGTGCCCACCGAGGTCGTCGTCAACGCCCGCTCCAGCAGCGGCAGCAGCGACCGTGCGCTCGCCCTGTTCGACGCGAGCGGCGAGATCGACCGCGTCGACGCGCTCGCCGACGACGAGGGCACCCCCGCGGTGACCGCGTCGTTCGACATCACGGCCGCCGGCGACTATTGGCTCGCCTCCCCGAGCTCCGGCGTCAACGTCTTCTACGCCCAGATCGGCGCCGTCGACGACAGCGGCCGCGGCGCGTGGGCCGACGTCGCGGAGCCGACGGTCGACGCCGTCACCGTCAGCGCCGACGACCCGGCCCAGGTCGAGGTCGCCTACAGCGGCCTGCTCGGGCCGGACGGCGGCGACGTGGTCACCGCCGTCCTGTACGACGACGCCGGCGCCGTGACCGACAAGGCGCTCGGTGCCGCCGAGGGCGCCTCCGGCACCCTGTCGCTCACGCCCCCCGCGTCCGGCGACTACGACGTCGAGGTGCAGATCACGCGGTACGGCGAGACCGACGCCAAGGTCTCCGGGCGTGCGGCCCTCGACGGGTTCTCCCTGCCCCTGACCGGGCCGGAGGTCACCGGCGCGCTGACCTCCGCCGTCGACGGCGGACAGGCCACCGTGTCGCTCGAGTGGACCGCCACCGACGAGGCCGAGACGTACTCCGTCGAGACCGGCCAGGGCGGCACCTTCACGACGGCCCTCGACGGCGTCACCGGCACCTCCGCCGACGTGACCGGGCTGACCCCGGGCGAGACCTACCAGGTGCGCGTGGTCGCGCACCGCGGGTCGGACTCCGCGACCGGCGACGCCTTCGACGTCGAGGTCGCCACCTCCGTGGAGCGCTGGCAGATCGCCGACGTCGGCTCGAACGCCGGGTCCGGCGGAGAGGTCGTCGACAACGGCGACGGCACCATCACGTTCGACGCGCGCGAGAGCTCGACGAAGTTCGCCTCCTCCGAGGACGGTTTCCAGTACTACTTCACCGAGATCGACCCGGCGGAGGAGAACTTCACGCTGACGGCCACGTTCGAGGTGACCGACGCCGCCACCAAGGACAACCAGTCCGGGTTCGGCGTCATCGCCATCGACGACCTGGTCGCCGAGTCCTCCCCGCACCGCTACTTCAACTCCGCGGGCGCCGTCGTCACCCGGTACAACGAGGGCACCGACGACGTCGTCAACGGCACCCCGGGCGCCCGGTTCGTGCACGGCTACACCGGCGCCACCGACGACAACACCGCCGGGGCGCGGGACACCAGCGACTCCGAGGAGTTCGACCCGTCGTACCGCGACGAGGTCACGACGGGGCCGAAGTTCGAGACCGGCGACGTCTACGAGTTCACGCTGCGCAAGTCCAACACCGGCTTCCACGCCGTCTGGCACGGCGCCGGCGAGGGCGGCGAGGACATCGAGGTCATCGAGGTCATCCAGTACGACCCGGAGATGCTGCTGCAGCAGAACTCCGAGGCGTACTACGTCGGCATGGCCACGGCCCGCAAGATCGCCGTGACCGTCACCGAGTGGGACTTCACCACGACCCACCCGGACGACGACGAGCCCGCCCAGGACCCGCCGACCGAGTACGTGCCGACGAACCTGTCGGTGGACGTCACCTCGACGACGCCGGAGCAGCAGCTCGACATCCCGCTCGTGGCCGACTTCCACGGCACCGGGCAGATCCTCGACGCGGCCGGTGACGTCGTCGTCGACGGGCTGGAGCTCACCCCGGGCGAGCAGGCGCTCGGCACCGTGGACCTGGAGCCCGGCGTCAACGAGTTCACCGCGCGGGCCACGCCCGAGGGCGACCAGCCGCAGCTCGGCGAGTACGAGGAGCTGGAGTCGTTCGACCCGGTCGACGTCCCGGTGACCGTCACGGTCGACTCGTACGGCGAGCCGGGTCAGTCGATCTGGGTCGCGCCCGACGGCACCGCCGACGGCGCGGGCACGCAGGCCGACCCGCTGGACATCCACACGGCGGTCGGGTTCGCGCAGGCCGGTCAGCAGATCGTCCTGGCCGGCGGCACCTACCCGATCGAGCACAACGTGGTGGCCGAGCGGGGACGCGACGGCACCGAGGACGCCCCCATCACCCTGATGTCCGAGCCCGGCGACCGCGCCGTGCTGGACCTGAGCGGGTCGCCCGACGGCGGCCTCGTGATCCGCGGCGACTGGTGGCACGTGTACGACCTGGAGATCACCGGGTCGGCCGACAAGGCCAAGCCGATGCTGGTCCAGGGCAACCACAACGTGGTCGAGCGGGTCGAGTCGCACCACAACAAGGACACCGGCATCCAGATCTCGGGGCTCTCCGCCGAGCCGCCGTCGATGTGGCCGTCGCACAACACGATCCTGTCCTCGGTGTCGCACAACAACGCCGACACGGGCGGGAACGACGCCGACGGGTTCGGCGTCAAGCTCACCGTCGGCGAGGGCAACGTGCTGCGGTACAACATCGCCCACCACAACATCGACGACGGCTGGGACCTGTACGCCAAGTCCACGACCGGCCCGATCGGCACCGTGATCGTCGAGGACTCCGTGGCCTACGCCAACGGGTTCCTCGAGGCCGATCCGTCGACGACGGGCGAGGGCAACGGGTTCAAGCTCGGCGGCGAGTCCATGCCGGGCGACCACCTGCTGCGCAACGCGCTCAGCTACGGCAACCTCGGCACCGGCGCGACGTCGAACTCCGGTCCGGACATCCGGCTCGACGGCGTCACCTCCGTGGGCAACGACCGGGGCGTGCGCCTGGAGACCAACGCGAGCACCACCGCCTACGAGGCGAGCGGCGTCATCTCCTGGCAGAACCCGTCCTCCGACGTGCTCGGCATGGAGCAGGACGACACGTCGCTGCTGACGGACCCGTCGAACTACTTCGACGGCACGACGGCGGACGCCTCCGACGGCCGTCCGGCCACCGTGGGTGCCGACTGGTTCGTCTCGACGGACTCCGCGGCCGTGACGCCGGAGATCGCCCCGGACGGGTCGATCGAGATGCACGGGCTCTACGAGCTGACGGACGTGGCGCCGTCGGACACCGGGGCGCGGTTCACCGCCAACCCGGAGCCGACCGTCATCGAGCTGCTGCCCGAGGTCTCGGCCGGTGAGGCCGGCCCGAACCCCTGGTACCCGTCCGGGCTCTACCTGCGCGGCGACGTCGTGCAGCACGAGGGCGTGGTCTACGAGGCGCGCTGGTGGACGCGTGGTCTCGAGCCGGGCGTGAGCGTGTGGGGCTCGTGGGTCGAGGTCGGCCCCGCGGAGGCGGCTCCGGCCGCCGCCGAGTGCGCCGAGCCGTGGGACGGCTCGACGGTCTACCGCCACGGCGACACGGTGACGTCCGACGGCGTCAACTACGTCGCGCAGTGGTGGACGCGAGGGCAGGAGCCCGGCGCGAGCGTGTGGGGCTCGTGGGCGGCGGTAGAACCGTGCGCCTGAMTPTGKRIRASLAAAAVTALAVAGAPAATAVGPETALNANDLAPGDYTTVVDTGTDFTIRADAEKDVSVDGTDRVSDRGDVFTQRIKLNGSGDEDRRSLHFSVDAEQVPTEVVVNARSSSGSSDRALALFDASGEIDRVDALADDEGTPAVTASFDITAAGDYWLASPSSGVNVFYAQIGAVDDSGRGAWADVAEPTVDAVTVSADDPAQVEVAYSGLLGPDGGDVVTAVLYDDAGAVTDKALGAAEGASGTLSLTPPASGDYDVEVQITRYGETDAKVSGRAALDGFSLPLTGPEVTGALTSAVDGGQATVSLEWTATDEAETYSVETGQGGTFTTALDGVTGTSADVTGLTPGETYQVRVVAHRGSDSATGDAFDVEVATSVERWQIADVGSNAGSGGEVVDNGDGTITFDARESSTKFASSEDGFQYYFTEIDPAEENFTLTATFEVTDAATKDNQSGFGVIAIDDLVAESSPHRYFNSAGAVVTRYNEGTDDVVNGTPGARFVHGYTGATDDNTAGARDTSDSEEFDPSYRDEVTTGPKFETGDVYEFTLRKSNTGFHAVWHGAGEGGEDIEVIEVIQYDPEMLLQQNSEAYYVGMATARKIAVTVTEWDFTTTHPDDDEPAQDPPTEYVPTNLSVDVTSTTPEQQLDIPLVADFHGTGQILDAAGDVVVDGLELTPGEQALGTVDLEPGVNEFTARATPEGDQPQLGEYEELESFDPVDVPVTVTVDSYGEPGQSIWVAPDGTADGAGTQADPLDIHTAVGFAQAGQQIVLAGGTYPIEHNVVAERGRDGTEDAPITLMSEPGDRAVLDLSGSPDGGLVIRGDWWHVYDLEITGSADKAKPMLVQGNHNVVERVESHHNKDTGIQISGLSAEPPSMWPSHNTILSSVSHNNADTGGNDADGFGVKLTVGEGNVLRYNIAHHNIDDGWDLYAKSTTGPIGTVIVEDSVAYANGFLEADPSTTGEGNGFKLGGESMPGDHLLRNALSYGNLGTGATSNSGPDIRLDGVTSVGNDRGVRLETNASTTAYEASGVISWQNPSSDVLGMEQDDTSLLTDPSNYFDGTTADASDGRPATVGADWFVSTDSAAVTPEIAPDGSIEMHGLYELTDVAPSDTGARFTANPEPTVIELLPEVSAGEAGPNPWYPSGLYLRGDVVQHEGVVYEARWWTRGLEPGVSVWGSWVEVGPAEAAPAAAECAEPWDGSTVYRHGDTVTSDGVNYVAQWWTRGQEPGASVWGSWAAVEPCAPGPT0018240_22DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_MEMBRANE_POLYSACCHARIDE_DEGRADING_FUNCTIONSPLANT_MEMBRANE_PECTATE_LYASE|ESTERASE,PGPT0018240-pelX-K22994NANA
AK018_028591728hypothetical proteinATGAACCCCAAGACACTGCCCCGCTGGACCCGCGCGACCTGGACCAAGGTGGTGGGCGGCGCGGCCGGAGCGGCACTCGCCGTCGGTGCGCTCGGCGCGTGCGGCGTCGTCTCCTCCGACGCCGCCGAATCGACCACGCAGAGCTCGACCAGCGAGACGACGTCGCAGGAGTCCGCCGTCGTGTCCTCCTCGTCGGTCGGGCTGACCGCCGCCGAGGTGCTCGCCGAGAACCTGGACGCCTCCGAGACCATGGCCCTCGCCGAGGAGACCTGGGACACGGCCGACGAGATCGCGGTCGACCTGTCCTCCCCCGCGGCCGCCGACGGGGTGGAGGTCGACGGCGACACCGTGACCATTACCCAGCCGGGCACCTACCGGCTGTCCGGCGAGATGGCCGGGCAGGTCGTGGTGGAGTCCGCCGACGACGGCGTGGTGCGCCTCGTGCTCGACGGCGCGGACATCACGTCCGGCACGGGGGCCGCCATCGACGTCCAGGACGCCGACCAGGTGTCCGTGGTGCTCGCCGACGGCTCGACCAACCGGCTCGAGGACGCCGCGGAATACGCAGAGACCGACGACTCCGGGAGCACCGACAACGCGGCCAACGCCGCCCTGTACTCGACCGCCGACATGGCGATCTCCGGGTCCGGGTCCCTCGAGGTCGTGGGCAACAGCAACGACGGCATCACCGGCAAGGACGGCCTGGTCATCACCTCCGGCACCGTCACGGTGGACGCCGTCGACGACGCGATCCGCGGCAAGGACTACCTGGTGGTCTCCGGCGGGACGATCGATGTCACCGCGGGCGGCGACGGGCTCAAGTCCGACGAGGACTCGGACGAGACCGCCGGCTACGTCGCACTGCTCGGTGGGGACGTGACGGTGGCGGCAGGCTCGGACGGTGTCCAAGGCTTCACCGACGTGGCCGTCGCCGGCGGCACGCTCACCGTCACCGAGTCCGAGGAAGGGATCGAGGCCGCGGTCATCGCGATCTCCGACGGCACCGTGGACATCACCTCCTCCGACGACGGGCTCAACGCCACCGTCAAGGAGGCCGAGGACGACTCGGCGTCCACGGAGTCCGAGACGGATTCGGAGTCGACCGAGGCGGACGCCTCGACCACGGAACCGGGGCAGGCCGGGGGCCAGCAAGAGGTCTTCGAGGACGGCGCCTCGTTGACCGTCACCGGAGGAACCATCGCTGTCGTCGCCGGTTATGACGGCTTCGACTCCAACGGCGTGACCGAGATCAGCGGCGGCACGATGACCATCGAGTCCGCACCCGGCGTGGGCGGGGACGGCGCCCTCGACGCGAACGGCACGACGACGATCACCGGCGGGTCGATCCTCACGGCGGGCAACGCCAACACGGGCACCGTCGAGAGCAGCAACGGCTGGGTCACCCTCGACACCTCGGTGACGGCCGGCAGCACGATCGAGGTCTCGTCCACCGACGGCACGGTGGTCGCGCGCGGCGAGCTGACCACGGACACCGAGACGATCTCGGCGAGCGGCGAGGGAATCGTCGCAGGAGAGACCTACACGGTCTCGATCGACGGCGAGGAGGTCGGTGAAGCCACGGCTGTGGAGGCACTGACCGCCTCCGGCCCCGGTGCTGGCGGCCGCGGGGGCGGCGCCCCCGGCGACGGGCAGATGCCCGGTGGCGGACAGCCCCCGGCCGACGGCGAGCTGCCCGGCGGGACTCCGCCGTCGGACGCCGGAGCCTGAMNPKTLPRWTRATWTKVVGGAAGAALAVGALGACGVVSSDAAESTTQSSTSETTSQESAVVSSSSVGLTAAEVLAENLDASETMALAEETWDTADEIAVDLSSPAAADGVEVDGDTVTITQPGTYRLSGEMAGQVVVESADDGVVRLVLDGADITSGTGAAIDVQDADQVSVVLADGSTNRLEDAAEYAETDDSGSTDNAANAALYSTADMAISGSGSLEVVGNSNDGITGKDGLVITSGTVTVDAVDDAIRGKDYLVVSGGTIDVTAGGDGLKSDEDSDETAGYVALLGGDVTVAAGSDGVQGFTDVAVAGGTLTVTESEEGIEAAVIAISDGTVDITSSDDGLNATVKEAEDDSASTESETDSESTEADASTTEPGQAGGQQEVFEDGASLTVTGGTIAVVAGYDGFDSNGVTEISGGTMTIESAPGVGGDGALDANGTTTITGGSILTAGNANTGTVESSNGWVTLDTSVTAGSTIEVSSTDGTVVARGELTTDTETISASGEGIVAGETYTVSIDGEEVGEATAVEALTASGPGAGGRGGGAPGDGQMPGGGQPPADGELPGGTPPSDAGANANANANANA
AK018_02860777hypothetical proteinATGAGCGCGCCGACCGTCGACCACCTCTCCCCCGTCACCCTCGACGAGCTCAACGCCGAGGCGGCGCTGCAGACCCGCGTCGACCGCAAGTACGTGCTCACCGCCGGCGAGACCACAGGACTGCTCGCGGCCCTCGACCCGGCGACCCGCGTGCTGGAGATCGACGGGCGCCGGGCGTTCACCTACTCCTCGACCTACTTCGACACCCCCGACCTGGTGACGTTCCACCAGGCCGCCCGCCGCCGTCGCCGGCGGTACAAGGTCCGCACCCGCACCTACGTCGACACCGGCAGCACCTTCCTCGAGGTCAAGACCCGCGCCGCACGCGGCGTCACCGTCAAGGAACGCTGCCCCGCGGACCTCCTGACCGACGACCTGGACCCCGAGTCCGTCGAGTTCGTCGACGACCGGCTCGCCGCCGCCCGGCTGGCCGCCCCGCCGTCGTCCGTCCTCGACCCGGTGCTGCGCTCGCACTACCGCCGCACCACGCTGCTCGCCTCCGACGCCCGCGTCACCCTCGACACCGCGCTCACCTGGCAGCTCGCCGGGCCGCACGCCCGCCACGACGCGACGGCCGACGTCGGTGACCTAGTCGTCGTCGAGACCAAGGCCGGCACCGCGCCGTCGTCCGTGGACCGGCTCCTGTGGCGGTCGGGCCAACGCCCCGACCGCATCTCCAAGTACGCGACCGGGCTCGCCGTGCTGCGACCCGACCTGCCCGACCACCCCTGGCGCCGCCTGCGCCGCGAGCGCCTGACCGCCCGACCTGCCACCTGAMSAPTVDHLSPVTLDELNAEAALQTRVDRKYVLTAGETTGLLAALDPATRVLEIDGRRAFTYSSTYFDTPDLVTFHQAARRRRRRYKVRTRTYVDTGSTFLEVKTRAARGVTVKERCPADLLTDDLDPESVEFVDDRLAAARLAAPPSSVLDPVLRSHYRRTTLLASDARVTLDTALTWQLAGPHARHDATADVGDLVVVETKAGTAPSSVDRLLWRSGQRPDRISKYATGLAVLRPDLPDHPWRRLRRERLTARPATNANANANANA
AK018_02861621hypothetical proteinATGTCACCCGCTCTGCTCTACGCGATCGACGCCCTCGCCGTCGCCGTCCTCACGTTCGCCCTCTACTTCCCCCGGCACCGCCGCCGCGACCTCGTCGTGGCCTACCTGGGGGTGAACGTCGGCGTCCTGGCCGTGGCGACCGTCCTCGCGCAGAGCAGCGTCGGCGCCGGCCTCGGACTCGGCCTGTTCGGTGTGCTGTCGATCATCCGGCTGCGCTCCAACGAGCTCACTCAGCACGAGGTCGCCTACTACTTCGCCGCCCTCGCGCTCGGCCTGCTCGGCGGTCTGGGCGCCTCGGTGGGCTGGCTCGCCGTCGCCGGCATGGGCCTGATCCTGCTGGTCATGGCCGTCGCCGACCACCCGCGACTGTTCGCCCGGCACCGCAACGCCACGATCGTCGTCGACCGCGCCCACGCCGAGGAGGACGCGCTGGTCGCCCACCTCGAGGGTCTGCTCGGCGCCCGCGTGCACGGCGTCACCGTGCTCAAGCTGGACCTGGCCAACGACACCACCGTGGTGGACGTGCGCTACCGGGTCGGCTCACGCGGCACGACGGCGGCACACGGCACGGCAGCACCCGTTGCAGCCGCGCCGTCCCCGGCCCTGGAGACCGCACGATGAMSPALLYAIDALAVAVLTFALYFPRHRRRDLVVAYLGVNVGVLAVATVLAQSSVGAGLGLGLFGVLSIIRLRSNELTQHEVAYYFAALALGLLGGLGASVGWLAVAGMGLILLVMAVADHPRLFARHRNATIVVDRAHAEEDALVAHLEGLLGARVHGVTVLKLDLANDTTVVDVRYRVGSRGTTAAHGTAAPVAAAPSPALETARNANANANANA
AK018_02862861yghA_2putative oxidoreductase YghAATGGCCGAGCAGGACGCTTTCCCCCCGCAGCAGCAGGACCCGCCGGGGTGGACCGGACAGATGGAACCGGTACCCGACCACGGCGAGCAGAGCTACCGGGGCAGCGGGAAGCTGGAGGGCAAGAACGCCCTGGTCACCGGTGGCGACTCTGGCATCGGGCGGGCGGTGGCGATCGCTTTCGCCCGCGAGGGTGCCGACGTCGCGATCGGCTACCTGCCCGAGGAGCAGGAGGACGCCGAGGAGACCGCCCGGTGGGTGCGTGAGGCCGGGCGCTCGGCGGTGCTGCTGCCGGGTGACCTGACCGAGGAGTCGGTGGCGCGTGCGCTGCCGGGGCGGGCGGCCGGTGAGCTCGGGGGTCTGGACGTGCTGGTGAACAACGCCGGTTTCCAGATGGCGCGGCGCGAGTCGTTCGAGGACGTCACGACCGACGAGATCGACCGGATTCTGAAGACCAACCTGTACGCGCTGATGTGGGTGACGCAGGCGGCGCTCGAGCACCTTCGCGAGGGTGCGAGCATCATCAACAACTCCTCGATCCAGGCGTACCAGCCGTCCACGTCGTTGCTGGACTACGCCTCGACCAAGGCGGCGATCAACAACCTGACCGTGAACCTCGCCGCCGAGCTGGGCCCGCGGGGCATCCGGGTGAACGCCGTGGCTCCCGGGCCGATCTGGACGCCCCTGCAGCCGTCCACGCAGCCCGAGTCCAAGCTCGCCTCGTTCGGGCAGGACACCCCGCTGGGGCGCGCCGGGCAGCCGGGGGAGGTCGCCCCGGCGTTCGTGTTCCTCGCCTCGCCCGCCGACTCGAGCTACGTGTCGGCGACGGTGCTGGGGGTGACCGGCGGCAAGCCCGTCTTCTGAMAEQDAFPPQQQDPPGWTGQMEPVPDHGEQSYRGSGKLEGKNALVTGGDSGIGRAVAIAFAREGADVAIGYLPEEQEDAEETARWVREAGRSAVLLPGDLTEESVARALPGRAAGELGGLDVLVNNAGFQMARRESFEDVTTDEIDRILKTNLYALMWVTQAALEHLREGASIINNSSIQAYQPSTSLLDYASTKAAINNLTVNLAAELGPRGIRVNAVAPGPIWTPLQPSTQPESKLASFGQDTPLGRAGQPGEVAPAFVFLASPADSSYVSATVLGVTGGKPVFPGPT0003180_8024DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_028631740hypothetical proteinATGACACGACGCACGCACCGACGAACTCCCGTCCTGGCACTCACCGCCGGCGCCACCGCCGTCGGGCTCGGGCTGGGGGCGCTCGCTCCCGCCGCCGCGGCACCGGCGCCCGAGACGCCGGACGCCGGCTCCACCCACGACGCCGACGGCGTCAACGGGTACACCACGCTCGGCTACTTCCCCGGCTGGGCGTCCGCCGACAGCCACGACTACGAGGTCGCCGACCTCGTCAAGACAGGCGCCGTCGCCGACCTGACCCACCTGACCTACGCGTTCGGCAACGTCACCACCGACCTGGTGTGCGACATCAGCGACGCCACCGTCCCCGAGGACGGCGTCGACCCCGGCCAGCCCGAGGGCGACCCCGAGAACGACTACCTGCGCCTGATCGACGCCGAGAACTCCGTCGACGGCGTCGCCGACGTCGAGGGTCAGGAGCTCGCCGGCAACTTCAACCAGCTCCGCAAGCTCAAGGAGCTCTACCCCGACCTGAAGATCATGGTCTCCCTCGGCGGCTGGACCTGGTCCGACAACTTCTCCGCGGCCGCCGCCACCCCCGAGAGCCGCGCGCGGCTCGTCGAGTCCTGCCTGGACGTCTACCTCGACGGCAACCTCCCGGTCTACGGCGACCAGGGCGGTGACGGGGCCGCCGCCGGCATCTTCGACGGGTTCGACATCGACTGGGAGTGGCCCGCCGCCACCGGTGAGCACCCCTCGCCGACGCCCGACGTCGACAAGGAGAACTTCCTCGCGCTCATGGAGCTGTTCCGCGCCGAGCTCGACGAGCGCACCGCCGCCACCGGCGAGGACTACCTGCTGACCGGGTTCGCCCCCGCCGGCTGGGCCCCCCGCACCAACGGAGGCTGGGTCGACCCGCGGCTCGCCGCCGTCGTCGACTTCCTCAACATCCAGGGCTACGACTACCACGGCACCTGGGTCGCGAACCGCACCGGACACCAGGGCAACCTGCACCCCTACGACTGGCCGGACACCTCGCCCGCCAACTGGGGCCTCGCCGTCGACGGCCTGCTCGGCGCCTACCGTGCCGCCGGGTACGACGACTCCCAGCTCGTCCTCGGCCTCGCCGCCTACGGGCAGGGCTGGCACGGCGTCGACGACCCGACCCCCGGCGCCGCTGCCGAGGGAGCCGTCGGCGTCAAGAACTACTCCGAGCTGCGCACCCTGGGCGAGGAGTACTACGACGCCGAGGCCGTGGCCTCCTACCGCTACGACGGCGACCAGTGGTGGAGCCTCGACACCCCCCGGTCCGTGACCGCCAAGGCCGAGTGGCTCGCCGAGAACGGGTACGGCGGCGCCTACTTCTGGGACATCGCCGGTGACCACGACAACGAGCTCGGCGGGGCGCTCGCGGACACCTTCCGCGCCGCCACGCCCGGCCCGCTCGTGGCCGACGGCGGAGCGGCGCCCTGGTACGCGACCGGCGTGTACACCTCCGGCGACGTGGTCTCCCACAACGGCGTCGAGTACGAGGCGCGCTGGTGGACGCGGAACCAGGAGCCCGGCTCGGCGAACGGGCCGTGGCAGGAGATCGGCGTGCACGGGGACAACCCCGCTGCTGTGGCCGACTGCGCCGCGGCGTTCGACCCGGCGGCGACGTACGCCTCCGGTGACGTCGTCTCCCGGGCCGGCGTGAACCACACCGCCCAGTGGTGGACGCGAGGCGCCGTGCCCGCCACGGACGCGTGGAACTCCTGGGACGCCGGGCTGCCCTGCGCCTGAMTRRTHRRTPVLALTAGATAVGLGLGALAPAAAAPAPETPDAGSTHDADGVNGYTTLGYFPGWASADSHDYEVADLVKTGAVADLTHLTYAFGNVTTDLVCDISDATVPEDGVDPGQPEGDPENDYLRLIDAENSVDGVADVEGQELAGNFNQLRKLKELYPDLKIMVSLGGWTWSDNFSAAAATPESRARLVESCLDVYLDGNLPVYGDQGGDGAAAGIFDGFDIDWEWPAATGEHPSPTPDVDKENFLALMELFRAELDERTAATGEDYLLTGFAPAGWAPRTNGGWVDPRLAAVVDFLNIQGYDYHGTWVANRTGHQGNLHPYDWPDTSPANWGLAVDGLLGAYRAAGYDDSQLVLGLAAYGQGWHGVDDPTPGAAAEGAVGVKNYSELRTLGEEYYDAEAVASYRYDGDQWWSLDTPRSVTAKAEWLAENGYGGAYFWDIAGDHDNELGGALADTFRAATPGPLVADGGAAPWYATGVYTSGDVVSHNGVEYEARWWTRNQEPGSANGPWQEIGVHGDNPAAVADCAAAFDPAATYASGDVVSRAGVNHTAQWWTRGAVPATDAWNSWDAGLPCAPGPT0012130_1667DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_CHITIN_DEGRADATION,PGPT0012130-chiA|chtA|chiI-K01183NANA
AK018_02865309hypothetical proteinATGCCTACCGCAAACGCGCGGTCAGAGCGCCTACACATGCGCCTGTCACCCGATGCCCTCGAGACCATCCGCGAGGCCGCTGCCGCCCAACAGCAGGACGTGTCCGCGTTCGTGCTCGGGGCCGCGATGGAACATGCCCGCGAGGTCCTGCTCCGGGACCGAGTCCTCCAGCTCACGCCTCGCGAGCTCGACCAGGTCGACACTGCCCTCGACGCCGAGGCTCGCGTGGTCCCGGAGCTCGCCGCGCTCGTCGCTGCCGTTCGACGGGACACCCCGCAGCACGGCGAGCAGGAGCTGACGTCGCACTGAMPTANARSERLHMRLSPDALETIREAAAAQQQDVSAFVLGAAMEHAREVLLRDRVLQLTPRELDQVDTALDAEARVVPELAALVAAVRRDTPQHGEQELTSHNANANANANA
AK018_02866513hypothetical proteinATGCTCATCGCGCGGCCGTTCACCTCGGCAGCCATCAAGCTCCATCCGTTCGACTGCGGCGAACCGGAGCTCAACGAATGGCTCGCCCGCTACGCCGGCCAGAGCGAGAAGAAGGACAACGTCCGCACCACTTTGCTGCTCGACGAGGAAGCCCAGCGCGTCGCCGGCTACTTCTCCATGCGCACCTTCGAACTGTCAGCGGCCCACGGCGAGTCAGCGATGGGACGCAGGCGTCGCTATCCGGTGCCGGCGATGCTCCTTGCGCGGCTCGCTGTCGACAACGACTACAAGGGTCAGGGCGTCGGCAAGCTGCTCCTCGTCGACGCCCTCCAGCGGCTGCTGGCAGCGGCCGACAACGTCGGCTTCGAGATCGTCGTCGTGCACGCGCTCCACGAGGACGCCGCCTGCTTCTACCTCAAGCACGGCTTTCGCCGGTTCCTCGACCACGAACTCAGCCTCTTCCTCACGACGAAGGAACTGCGCGCGACGTTCGCGTCAACAGAACCAGGTTGAMLIARPFTSAAIKLHPFDCGEPELNEWLARYAGQSEKKDNVRTTLLLDEEAQRVAGYFSMRTFELSAAHGESAMGRRRRYPVPAMLLARLAVDNDYKGQGVGKLLLVDALQRLLAAADNVGFEIVVVHALHEDAACFYLKHGFRRFLDHELSLFLTTKELRATFASTEPGNANANANANA
AK018_02867150hypothetical proteinGTGGTCCTCCTCGGAGTTGACGAGTGCTTCGACGGTCCGATCGTCGTGACGTACGAGAGCGGCCACAGTTTCGACCTCTCCGGACCGATCTGCCCCGGCCAGGAACTCCGGATCAAGGCCGAGAGTGCCGAGATCGTGGCGGCGTCCTAGMVLLGVDECFDGPIVVTYESGHSFDLSGPICPGQELRIKAESAEIVAASNANANANANA
AK018_02868336hypothetical proteinATGGCAGAGCAGCCCTCGCAGGCCGAGCTGACGGCGTCGACGGCCGACCGGCCGGGCACGTCGTCGCCCAAAGCTCAGCAGGTGGCGAGCGCCGGCCTCGCCATTCTCGTCCAGTGCGGCTTCGTGTGGATGTTCGTCGGCGAGTGGCTGGCGAACGTGCAGGCGGTCGACGGCGACCCGGCGCGCCTCTGGCTCAGCGTGGCGACGGCAACCCTGCTCGTCGGCACGATCGTCGGCGAGGCGGTGTTGCTGGCCCGGCGCCGGCGCGATCCGTGGCAGGTCGCCGTCGTCGCGATGGTGCTGGTGCAGATCGCCTGGTTCGCCGAGTCCTTCTGAMAEQPSQAELTASTADRPGTSSPKAQQVASAGLAILVQCGFVWMFVGEWLANVQAVDGDPARLWLSVATATLLVGTIVGEAVLLARRRRDPWQVAVVAMVLVQIAWFAESFNANANANANA
AK018_02869522hypothetical proteinATGTGGGTAGCACCGGAGAAGGATCCCCGCACCACGGGGATCGACCCGGTGGGCGAGAAGGAGACCCTCTGGGAGTACCTGTGCCGGTACCGCATGACCCTGGTCATGAAGTGCGAAGGCCTCGATGCCGAACAGCTCGCGCGCCGCAGCGTGCCGCCGTCGACCCTCTCCCTGCTGGGCCTCGTGCGGCACCTCGCCAACTCGGAGCACCATTGGTTCGCCCGCGTCATCGACGGCTCCTCGGCACCGGGCCCGTTCGAGCGCCCCGGCGTCGACGACGTCGACTTCGACGACGCGATCGGCACCGACGACTGCGTGGCCAGCGCCTGGCGGTCCTGGCACGCGGCGGTCGACTCCGCCGACGACATCATGGCGTCCGAGGAGCTGGACCGCGAGATCCCCTTCGAGGGCGGCACCGTCGAGGTGCGCGACGTCGTCATCCACCTCGTCGAGGAGTACGCCCGGCACATGGGACACGCCGACCTGCTGCGCGAGTGCCTGGACGGGCGCACCGGGCTCTGAMWVAPEKDPRTTGIDPVGEKETLWEYLCRYRMTLVMKCEGLDAEQLARRSVPPSTLSLLGLVRHLANSEHHWFARVIDGSSAPGPFERPGVDDVDFDDAIGTDDCVASAWRSWHAAVDSADDIMASEELDREIPFEGGTVEVRDVVIHLVEEYARHMGHADLLRECLDGRTGLPGPT0031940_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-POLYENE_AMPHOTERICIN_B_METABOLISM,PGPT0031940-amphORF1-NANANA
AK018_02870948hypothetical proteinATGGGCCCCACCGCTGCACGTCGCGACGCCCCGTCGTCCGTGTCCGACGGCGGTCCGTGGGCCGGTCAGGGCGGGTTCCCGTGGGCGGCACCACCGGAGGCGGACGCCGTCGCGGACGCGCCGGAGCACGCACCGGACGCGTCGGAGGCCCCGGCCCCGGGCGAGGGTCTGCCGCCGTGGGCGCAGACTCCCGTCCCCACCGAGGCGCCGTCGCTCGATGCCGTCCTCGACGGGTCGGCGCCGGTCGCGGGCACCTTCCGCGACGCGATCGCGCCCACCCGCAACCCGTTCGCGCGCAGCCACCGGCCCGCCGTCGCACGGGGGACGAGCGCGCCGACCGCGCGTGACGGCGACGCCCGCAGCATCGCCGACCGCACGCGGGCGGGCCGGGACGCCGTGCGGCGCGGGGCGTCAGGAGCCGCCGGGGCGATGCGATCGGCCCGCTCCGCCGCGGGCACCGTGCGCCGTCGTCGGACCTCCGGCCTGTTCTCGCGCCGCTCCACCCTGCTCGGCGCGACGGGCCTGTCCCTCGTGGCGGGCGTCGGGGTCGCGGCCGCCCTGGACGCGGTGACCGGCCCGGCCGAACCGGTCGCCACGGACGCCACGGCCGTGGTCGCCGCCCCCGAGGTGTGCGCGCCGGCGCAGGTGGCGTGGTCGCGCGCCGCGGCGGCGCAGGTGCAGATGGACGTCGAGTCGCCGTCCAGCCTGCGCAAGGGGTTCGGCACCGCCCGCGAGGCCCTGGCCGCGGTGACCCCGCCCGACGCCGTCGCCACCGAGTGGGCCACCGTGTCCGACTACGTGTCCACGATGGCGGAGGCGACGGCGGAGGCCGAGGACGGCCAGGTGGAGGCGGCCGCCGCGGAGGCGCTCGCGACCCTCGACACCGCGGCGATGACCACCGCGTCCGAGCAGGTCACCGCCTATCTGGCCGACGACTGCGGGTCCTGAMGPTAARRDAPSSVSDGGPWAGQGGFPWAAPPEADAVADAPEHAPDASEAPAPGEGLPPWAQTPVPTEAPSLDAVLDGSAPVAGTFRDAIAPTRNPFARSHRPAVARGTSAPTARDGDARSIADRTRAGRDAVRRGASGAAGAMRSARSAAGTVRRRRTSGLFSRRSTLLGATGLSLVAGVGVAAALDAVTGPAEPVATDATAVVAAPEVCAPAQVAWSRAAAAQVQMDVESPSSLRKGFGTAREALAAVTPPDAVATEWATVSDYVSTMAEATAEAEDGQVEAAAAEALATLDTAAMTTASEQVTAYLADDCGSNANANANANA
AK018_02871531hypothetical proteinATGCTGACTCCCCGTCTGCGCGCCCGCCGAGCGATCGCCGGCGTGGCCGCGCTCACCGGAGTGGCGGTCCTCGGCGCCTGCAGCTCGGACGACGGCGCCACGGAGGCCGCTCCTGAGCCGCAACCCGCCATCTCCATCGACTCCGACCTCGCCATGAACCCCGGTGACGGCGACGGACCCGCACCCTCGCCGGACGTCAGCCAGGAGTGCCTGGAGCTGCAGGAGGTGTGGGCCGAGACCAACCGGTCCCTCGCCGGCATCGATGAGGAGCACCCCCGCGTGCTGGTCGCCGGGTTCCGCGAGGCGCAGCGGGTCTTCACGGCGGCGGAGGTCCCGGAGGACGTCCCCGGCTGGGACGGGATGGGCGACTACCTCGACACGGCCGTCGGCGCGCTGGCCGACGTCGACACCGACGACGCCGACGAGGTCGCCTCCGTGCTGACCCTGACGTTCTCCGAGTCGGACACGGCGCGCGCCGCCGCCGCGCACAACCAGGTCACCGAGTACCTGGCCTCGGGATGCCGGGGCTGAMLTPRLRARRAIAGVAALTGVAVLGACSSDDGATEAAPEPQPAISIDSDLAMNPGDGDGPAPSPDVSQECLELQEVWAETNRSLAGIDEEHPRVLVAGFREAQRVFTAAEVPEDVPGWDGMGDYLDTAVGALADVDTDDADEVASVLTLTFSESDTARAAAAHNQVTEYLASGCRGNANANANANA
AK018_028721581prmC_4Release factor glutamine methyltransferaseATGCCGGGGCTGACCTCCCCGCCGTCGCCGGCCGGGGACACCGCCGCGCTGCGTGCGGACCTGACGGCGTCGGACTACACGGTCGACGGCGTCGAGGACCTGCTCGGCGACCTCGCCTCGGCGGCGCTGCGGCGCGAGCAGACGGTCCCGGCGCGCCGGGTCCTCGCGGCCCGGGCCGGCGACCCGCGCGCCACGCTCGCCGGACTGTTCGTCCTGGGCGGGCAGGAGTCGCGTGCCGCCGTGGACGCCGCGCTGCCCGGCGTGGGGACGGCCGGGGCCGAGGCGCTCGGCCTGGTGCGCAGCGCCGGGCACGACGACGGCGACCCGGTCCGCGCCGTCGTCGACCTGCGCCCGTACGCCGCGACCGACGCCGGCGGCCCGGTGCAGTGGTGGCTCGCCAGCGACCTCGGCGAGCTGGCCACTAGCCGGCGGCTCGCCGCCGACCACGTGCTCGGCGCGGGCGGCGCGTCGACGACGCTGGCGCAGGTCACCGTGCGCGACCGGGTCGGCCGCGTCCTGGACCTCGGCACGGGGTGCGGCATCCAGGCCCTGCACGCCGCCCGCCACGCGGACGCCGTCGTCGGCACCGACATCTCCCGCCGTGCCCTGGACTTCGCCCGCTTCAACGTGGCGCTCAACGCCGCCGCGACGGACGTCGAGCTGCGCGAGGGCTCCATGCTGGAGCCGGTCGCGGACGAACGCTTCGACCTGGTCGTGTCCAACCCGCCGTTCGTCATCACGCCCCGCAGCGGGGCGGCGGGTGCCGCGGTGGCCGTGGCACTGGGGGAGTTCGAGTACCGCGACGGCGGGCGGGCCGCCGACGACCTGGTGTGCGACCTGATCACCGGCGTCGGGCAGGTCCTGGCACCTGGCGGCGTCGCGCAGATGCTCGTCAACTGGGAGCACCGGCGCGGCGAGCCGTGGACCGACCGCGTCGGCGCCTGGCTGGACGCCTCGGGCCTGGACGGCTGGGTGATCGAGCGCGAGCTGCTGGACCCCGCCGAGTACGCCGAGACGTGGATCCGTGACGGCGGCACGACGCCCGAGCGTGAGCCGGCCGCCTGGGAGGCCGCCTACGGCGCCTGGCTCGACGACTTCGCGGCGCGCGACGTCGAGGCCGTCGGCTTCGGGTTCGTCACGCTGCGACGCCCGTCCGACGGCGGCACCCCGGACGGGCGGCTGCGGCGCCTCGAGGAGCACCACGGCACCCTGCGCCAGCCGCTGGGCGCGCACCTGGCGGCGTCGCTGGCCGCCCACGAGTGGCTCGCCGCCCGCGACGACGCCGTGCTCTCGACCGAGCGGCTCGTCGTCGCCGGCGACGTCACCGAGGAGCGGTACCTCACCCCGGGGGCCACCGACCCGAACGTCGTGATCGTGCGTCAGGGCGACGGCCTGGGCCGCGGCATCCAGGCCTCCACCGGGCTGGCGGCGTTCGTCGGCGTCTGCGACGGCGAGCTCACCGTGGCGCAGATCGTGGGGGCGCTCGCCGCGCTGCTCGACGTCGGTGCGGACGACCTGGCCGCCGAGCTGCTGCCCGCCGTGCGCGGCCTGGTGCGCGACGGGTTCCTCGCCCCCGCCTGAMPGLTSPPSPAGDTAALRADLTASDYTVDGVEDLLGDLASAALRREQTVPARRVLAARAGDPRATLAGLFVLGGQESRAAVDAALPGVGTAGAEALGLVRSAGHDDGDPVRAVVDLRPYAATDAGGPVQWWLASDLGELATSRRLAADHVLGAGGASTTLAQVTVRDRVGRVLDLGTGCGIQALHAARHADAVVGTDISRRALDFARFNVALNAAATDVELREGSMLEPVADERFDLVVSNPPFVITPRSGAAGAAVAVALGEFEYRDGGRAADDLVCDLITGVGQVLAPGGVAQMLVNWEHRRGEPWTDRVGAWLDASGLDGWVIERELLDPAEYAETWIRDGGTTPEREPAAWEAAYGAWLDDFAARDVEAVGFGFVTLRRPSDGGTPDGRLRRLEEHHGTLRQPLGAHLAASLAAHEWLAARDDAVLSTERLVVAGDVTEERYLTPGATDPNVVIVRQGDGLGRGIQASTGLAAFVGVCDGELTVAQIVGALAALLDVGADDLAAELLPAVRGLVRDGFLAPANANANANANA
AK018_02873762hypothetical proteinATGGGCGAACGCGTCACGTTCCCGAGCAGCACCGGCCCCACCCTGGCCGGCATCATCGACGAACCGGAGAGCGACGTCCGGGGGTGGGCGGTGTTCGTGCACGGGTTCACGCTCGGCAAGGACTCCCCCGCGGCCGCCCGCATCAGCAAGCAGCTCGCCGCCGAGGGCGTCGGGGTGCTGCGCTTCGACAACCTCGGCCTGGGCGACTCCGAGGGCGACTGGGGCGACGGGTCCTTCACCGTCAAGGTCGCCGACGTCGTGCAGGCCGCCCGGTTCATGGCCGACCGCGGCACTCCGGCCGAGCTGCTCATGGGCCACTCGTGGGGCGGCGCGGCCGCGATCGCCGCGGCCCCCGAGCTCGAGTCGGTGCGCGCCGTGGCCACGGCGTGCGCGCCGTTCGACCCGAGCCACGCCGAGCACCACTACGACGACCTGGTCGACGAGGTCCTGGCCGAGGGCAACGCCGTCTGGCAGGTGGGCGGCAAGCGGCTCAACCTCAAGCGCGGGATGGTCGAGGACGTGCGGGCCGCGGACCTCGAGCACCGCATCGCCGACCTCGGCAAGCCGCTGCTGATCCTGCACTCCCCCACCGACAGCACCGTCGGCATCGAGAACGCCAGCAAGATCTTCGCCGCGGCCCGGCACCCGCGCAGCTTCGTCGCCCTGGAGGGTTCCGACCACCTGCTGACCCGGCCCGGTCAGGCGCAGCGCGCCGGACGGATCATCAGCGCGTGGGCGGACCAGTACCTGCAGCAGGACTGAMGERVTFPSSTGPTLAGIIDEPESDVRGWAVFVHGFTLGKDSPAAARISKQLAAEGVGVLRFDNLGLGDSEGDWGDGSFTVKVADVVQAARFMADRGTPAELLMGHSWGGAAAIAAAPELESVRAVATACAPFDPSHAEHHYDDLVDEVLAEGNAVWQVGGKRLNLKRGMVEDVRAADLEHRIADLGKPLLILHSPTDSTVGIENASKIFAAARHPRSFVALEGSDHLLTRPGQAQRAGRIISAWADQYLQQDNANANANANA
AK018_02874957hypothetical proteinATGGAGATCGACCTCCGGCACCTCCGCCTCGTCTCGACGGTCGCCGCCCAGGGCAGCGTGACCCGGGCGGCGTCGTCGCTCGGCATGGCGCAACCGGCCCTGACCGCCCAGCTCAACCGTATCGAGGAGGCGCTCGGCGGGCCCGTGTTCGTCCGGGACCGCCGCGGCGCGCGCCCCACCCCGCTCGGTGACCTGGTGCTGCGGCACGCCCGCGTGATCCTGCCGGCGATGGACGCGTTCGGCGAGGACGTGCGCCGTCACGTCAGCGGACGCTCCGACGTCGTCTCCTCCCTGCGGGTCGGCACCGTCGCCACGGTGCTGGGCGGCATCTTCCTCAACCGGCTGCGCGCCGAGCTGACCGGGGTGGCGCTCACGTCGTTCACGGCCTGGTCGGCCGACGAGGCCGCCCGGCGGCTGGCCAGCGGCGCCCTCGACCTGGCGTTGGTGGGAGCGTGCGAGAACGAGGTGCTGCCCACCGACGGCGACGTCGTGTGGACCGAGCTGTTCACCGACCCCGTCTTCGTGCTGCTCTCCGAGGAGCACCCGCTCGCGGAGCGGGACGAGATCCCGCTCGGCGAGCTCGCGGGCGAGTACTGGCTGTCGGCGCCGGGCGAGGGCTGCTTCGAACGGTGCTTCGTCGCCGCGTGCGTCCGGTCGGGGTTCACCCCGCGGGAGGTCAGCGAGACCGAGCGGGCCGCCGCCATCGAGCAGGTCCGGGGCGGGCACGCCGTCGGACTCGTCCAGCCGCTGCTCCTCGACGCGCCCGGGGTGCAGCCGGTGGCCCTCGAGGACCGGCCGCTGGCGTGGACGCAGTACGTCGGCTGGCGCCGCGACGCCGCCGACCGGTTCGACGGCGAGCTGGTGCGCAGGGCCGCGCTGGACGCCCACGCCGAGGCCGTGCACCGCACGCCCGCCTACGAGAAGCACCTGGCGAACCGCGAGGGCCTCGCCTCCTAGMEIDLRHLRLVSTVAAQGSVTRAASSLGMAQPALTAQLNRIEEALGGPVFVRDRRGARPTPLGDLVLRHARVILPAMDAFGEDVRRHVSGRSDVVSSLRVGTVATVLGGIFLNRLRAELTGVALTSFTAWSADEAARRLASGALDLALVGACENEVLPTDGDVVWTELFTDPVFVLLSEEHPLAERDEIPLGELAGEYWLSAPGEGCFERCFVAACVRSGFTPREVSETERAAAIEQVRGGHAVGLVQPLLLDAPGVQPVALEDRPLAWTQYVGWRRDAADRFDGELVRRAALDAHAEAVHRTPAYEKHLANREGLASNANANANANA
AK018_02875873hypothetical proteinGTGCCGGGCGTGACGGACCGACGGTTCACCTCAGGGCTGCGCCAGCTCGGCCTGCTGCTGGGCGCGTTCCTCGTCGGACTGGCGCTGTTCCTCCTGGTGGCGGTCCTGGCGCCGGACCTCGTGCGCGTCGCCTCGGCCCCGCCGTCGGGGACGTCGGACGAGGCCGCGGCAGCATCGCCGTCCCAGGAGGTCGCGCTCGCCTGGGACGACGGCGCCCAGCAGGCTGCGCCGGGCGGACGGTCGCAGCGCGAGACCGCGACACCCCGGCCCGAGCGCGACGGCACGGACGACGAGTCCCCGCCGGGCGACGCCGGGCGCGAGAGCGAGGCAGGCCCCGCTGACGACGCTGACGACGACGGCGACGACGCGGCCGACGACGCGGCCGACGACGCGGCCGACGCCGAGGACGACGCGGCTTCCGAGGGTGCGGACAGCACGGCGGACGCGTCGACCACGGACACCTCCGACACCCCCGCGGACGCCACCGGCACGGCCGACGCCTCGGACGCGCAGGCCGTGCTGGCCCTGGTCAACGCCGAGCGCGAGGCCGCGGGGTGCGGTCCCCTCACCGCCGACCCGCAGCTCGACGCCCTGGCGGGAGAGCACTCCGCCGACATGGCCGAGCACGGTCGTCTCGACCACACCGGGTCGGACGGGCGCACCCCGTGGGACCGGGCGGCCGACGCCGGGATCTCCGGGCTGGCCGCCGAGAACGTGGCGCGCGGGCAGCCGGACGCCGAGGCCGTGGTGGCGGCCTGGATGGACAGCTCCGGGCACCGCGCCAACATCCTCGCGTGCGGGCACACCCGCCACGGGCTCGGGGTGGTCCACGACGTCGGCGGGCCGTGGTGGACGCAGGTGTTCGGCCGCTGAMPGVTDRRFTSGLRQLGLLLGAFLVGLALFLLVAVLAPDLVRVASAPPSGTSDEAAAASPSQEVALAWDDGAQQAAPGGRSQRETATPRPERDGTDDESPPGDAGRESEAGPADDADDDGDDAADDAADDAADAEDDAASEGADSTADASTTDTSDTPADATGTADASDAQAVLALVNAEREAAGCGPLTADPQLDALAGEHSADMAEHGRLDHTGSDGRTPWDRAADAGISGLAAENVARGQPDAEAVVAAWMDSSGHRANILACGHTRHGLGVVHDVGGPWWTQVFGRNANANANANA
AK018_028761446ktrB_2COG0168Ktr system potassium uptake protein BGTGCCACACTCGTGGTTCGTGGCATGGTCCCCCTCCGATCCGCCCCGCGGGCCGCAGCGGTCCGGGCACAACCCGGCGGCCCGCCCCCGGCGCCCCGCCCAGGTCGTGGCCTCCGGGTTCCTCGTCGCGATCGCCACCGGCACCGTGCTGCTGCTGCTGCCGGTCTCGACCACCGGGCAGCGGGCCTCGTTCGTCGAGGCGCTGTTCACCGCGACGTCGGCGGCGTGCGTCACCGGGCTCGTCGTGGTGGACACCGCCACCTTCTGGAGCCCGTTCGGCCAGACCGTGATCCTCGCGCTCATCCAGATCGGCGGGTTCGGCGTCATGACCGTCGCCTCCCTGCTCGGCCTGGTCCTGACCCGGCGGCTGGGTCTGCGCTCCCGGCTCGTCGCCGCCGAGTCGACGCACACCGTCGGCCTCGGCGACGTCCGCCGCGTCCTGCTCGGGGCGCTGGTGTTCACCGTCGTCGCCGAGCTCCTCCTCGCCGTCGTGCTCACCGCCCGGTTCGTGGTGGGCTACGGCGCGACCCTCGGGGAGGCGGCCTGGTCCGGGGTCTTCCACAGCCTGTCCGCGTTCAACAACGCCGGCTTCTCCCTCTACCCGGACTCCCTGATGCGGTTCGTCACCGACCCGTGGGTGTGCCTGCCGATCTGCGCCGCCGTCGTCGTGGGCGGCATCGGCTTCCCCGTGCTGCTCGAGCTGACCAAGCTGGCCCGGCAGAAGCGCCTGGCCGGCCACCGGCCCGCGCTGCTCGTGTGGGCCCGGTGGAGCGTCCACGCCCGGCTGACCCTCATCACCACCGGGGTGCTCCTCGTGGTCGGCACTCTGGTGTTCCTCACCGTCGAGTGGGCCAACCCGCGCACCTTCGGCCCGCTCGACGTGCCCGGCAAGATGCTCGCGGCGTTCACCCAGTCCGTCATGCCCCGCACCGCCGGCTTCAACTCGGTGGACACCTCCGCGCTCAACCACGGCACGTGGTTCTTCACCGACGTCCTGATGTTCATCGGGGGCGGCACGGCAGGGACGGCGGGCGGCATCAAGGTCGGCACGATCGCCCTGCTGGCGTTCATCATCTGGTCCGAGCTGCGCGGCGACGCGGACGTGACCGTGTTCGACCGTCGGGTCCGCGTGGGCAGCCTGCGCAGCGCCCTGACCGTCGCGCTGCTGGCCATCGCCCTGGTGGCCGCCGCGGCCTTCGCGATCGCCGTCTCCACCTCGCCCGACCGCCTCCCCCTGGACCGGGTCCTGTTCGAGGTGGTGTCGGCCTTCACCACGACCGGGCTGTCGACGGGGATCACCACGGCCCTGGAGCCGTGGCACCAGTGCCTGCTCGCCGTCCTGATGTTCCTCGGGCGGCTCGGTCCGATCACGCTGGCGACCGGCCTGGCGCTCCGTAGCCGCCAACGCGTCTACCGGCGGCCCGAGACCGCCGTCCTGGTGGGCTGAMPHSWFVAWSPSDPPRGPQRSGHNPAARPRRPAQVVASGFLVAIATGTVLLLLPVSTTGQRASFVEALFTATSAACVTGLVVVDTATFWSPFGQTVILALIQIGGFGVMTVASLLGLVLTRRLGLRSRLVAAESTHTVGLGDVRRVLLGALVFTVVAELLLAVVLTARFVVGYGATLGEAAWSGVFHSLSAFNNAGFSLYPDSLMRFVTDPWVCLPICAAVVVGGIGFPVLLELTKLARQKRLAGHRPALLVWARWSVHARLTLITTGVLLVVGTLVFLTVEWANPRTFGPLDVPGKMLAAFTQSVMPRTAGFNSVDTSALNHGTWFFTDVLMFIGGGTAGTAGGIKVGTIALLAFIIWSELRGDADVTVFDRRVRVGSLRSALTVALLAIALVAAAAFAIAVSTSPDRLPLDRVLFEVVSAFTTTGLSTGITTALEPWHQCLLAVLMFLGRLGPITLATGLALRSRQRVYRRPETAVLVGPGPT0002735_4409DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498NANA
AK018_028771020ampH_2COG1680D-alanyl-D-alanine-carboxypeptidase/endopeptidase AmpHATGACCGACGTCCCCGCCCTGCTCGCCGACACCGCCCGCCGCTGGGGCCGACGTCGTGCCGGGATCGCGCTCGGGTACCTCGCGCCGGACGGCGCCGTCACCACCCACGGCGTCGGGCACCGGAGCCTGCCCGACGGCCCGGCCCCCGACGCCCGCACCCGCTTCGAGATCGGGTCGATCACCAAGACGTTCACGGCCCTGGCGCTCGCGCGAGCCGTCGTCGCGGGAGAGCTCCGGCTCGACACCCCCGTCGGCGAGCTCGTCCCGGAAGTCGCCGGCCTGGGCCGCGACGGCACCCCGGTCACCCTGGAGCACCTCGCCACCCACACCTCGGGACTGCCCCGCGTCCACATCTCCGGGACGGTCGGCACCCTCGAGATGCTGCGCGGCATCGACCCGTACCGGAACCACACCGAGCAGGTGCTGCTGACCCGCATCGCCGCCGGCCGCCTGAAGCGCACCCCCGGCACCGGCCGGCCCGCCTACTCCAACAGCGGGTTCGGGCTGCTCGGCATCGCCCTGGCCCGCCACGCCGGCACCACCTGGGCCGAGCTGGTCCGGTCCCGGGTCACGGCACCGCTCGGGCTGGGCGACACCGGCACCCGCGCCGGGGCGACGCCCGAGCAGGCCGCACGCACCGCCGTCGGACACTTCCGCCAACGCAGCGAGGCACCCGCGTGGAACCTCGACGCCCTGCCCGGCGCCGGCGCCCTGCTGTCCACCGTCACCGACCAGCTCGCCTGGGCACGGGCGCACCTCGACCCGCCCGACGAGCTCGGTGCCGCGGTCCGCCTGGCGCTCGCCCAGCACGCCCCGCACGTCGGGCTCGCGTGGCAGCGCACGTTCGCCGACGGCGAGCGCCCGCGCGGCGACCGGTTGATCTGGCACTCCGGCGGCACCGGCGGGTACCGGTCCGTGCTGTGCCTGCGGCCCGACGTCGGGGACGCCGTCGTCGTGCTGACGAACCACGGGCGCGGGGTCGCACTCGCCGGCATGCGGGTGCTCGCGAAGATCCGCTGAMTDVPALLADTARRWGRRRAGIALGYLAPDGAVTTHGVGHRSLPDGPAPDARTRFEIGSITKTFTALALARAVVAGELRLDTPVGELVPEVAGLGRDGTPVTLEHLATHTSGLPRVHISGTVGTLEMLRGIDPYRNHTEQVLLTRIAAGRLKRTPGTGRPAYSNSGFGLLGIALARHAGTTWAELVRSRVTAPLGLGDTGTRAGATPEQAARTAVGHFRQRSEAPAWNLDALPGAGALLSTVTDQLAWARAHLDPPDELGAAVRLALAQHAPHVGLAWQRTFADGERPRGDRLIWHSGGTGGYRSVLCLRPDVGDAVVVLTNHGRGVALAGMRVLAKIRPGPT0024060_462DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024060-ampH-K18988NANA
AK018_028781059hypothetical proteinATGAACGGCGACACCCGGGAGCTCTCCGCCGCGACACCCGCTGCGGGTGACGCGGGGCCCGGTCCTGCGGCCGTCGCGCCGCGGCCCGCCGCACCCCGGACCGTGCCGCCCGGCGCCCCGCAGCACGCGCCGTCGGTGCCCGTCGCCCGCGTCCCCGCCCCGCCGCGGCCGCAGGTGCGCGTCGGCGCCCAGGTCACGGCCGCCCTCGTCGCCCTGGTGGCGGCGTTCGGCGTGTGGGCCACCTACCGCGTCTTCGTGATGACCGTGCCCGGCCAGCGGCTCGACGAGCTGGCCCGCGACGGCGCGCTGTACGGGCAGGACAGTCTGTGGCGGGTCGCCGAACCTGTTCTGGACGTGGTCTCGGTGTCGTTCGTGGTGCTCGGGATCGGGGTGGCGATGGCGGTCGCCCTGGTGCGGCGGCGCTGGGTGCTCGCGCTGCAGGTCGCCGTGCTGGTCGGGGGAGCCAACCTGACCACCCAGGTGCTCAAGCACCAGCTCCTCGAGCGTCCGGACCTGATGCCCAGCGTGTGGAACACGGGCAACACGCTGCCCTCCGGCCACACGACGGTGGCGGCGTCGGTGTCGGTGGCGCTGCTGCTGGCCACCCCGCGCGCCTGGCGCCCCGTGGTGGCGCTCGCGGGCGCCGCGTACACGGGGGCGACGGGCGTCTCCACGCTGGTGGGCCAGTGGCACCGGCCCTCGGACGTGGTGGCGGCCCTGCTGGTGGTGCTGGCCTGGGGTGCGCTGGTGTGCGCGACGACGCCGGCGAGCTCGCTGGACGTGGCCCCGCGGCGTCGTCGGCTCCCGTCGGGTGAGCCCCGCCGCACCGCCTTCGCGACGCCGGGGTCCTCGGTGGTGGCCGGGCTGATGCTGCTCGCGGCGACGGCGGCGGGGGTGCTCGCGGGTGCCGGGGGGCTACGGCTCCTGGAGGGGGCGGACGTCGGGGTGTCCGACAACGTCGCCGCTTATGCGGTGGGCGTCCTCGGGACGGTGGCGGCCACCGCGGTGACCTTCGCGCTGCTCCTGCTGCTGCGGCAGGCGACGGCACGCCCTCGCTGAMNGDTRELSAATPAAGDAGPGPAAVAPRPAAPRTVPPGAPQHAPSVPVARVPAPPRPQVRVGAQVTAALVALVAAFGVWATYRVFVMTVPGQRLDELARDGALYGQDSLWRVAEPVLDVVSVSFVVLGIGVAMAVALVRRRWVLALQVAVLVGGANLTTQVLKHQLLERPDLMPSVWNTGNTLPSGHTTVAASVSVALLLATPRAWRPVVALAGAAYTGATGVSTLVGQWHRPSDVVAALLVVLAWGALVCATTPASSLDVAPRRRRLPSGEPRRTAFATPGSSVVAGLMLLAATAAGVLAGAGGLRLLEGADVGVSDNVAAYAVGVLGTVAATAVTFALLLLLRQATARPRNANANANANA
AK018_028792025Beta-galactosidaseATGGCCGTCACCGGCACCTGGCCCACCGGGCGCACCCTCGGCTACGGGGGTGACTACAACCCCGAGCAGTGGCCCCGGGAGACCTGGGACACCGACGTCGAGCTGATGGCCGAGGCCGGCGTCAACTTCGTCAGCGTCGGCATCTTCGCCTGGGCCATGCTCGAGCCGCGCGAGGGCGAGTACGACTTCGCCTGGATGGACGAGCTGCTCGACCTGCTGCACGCGCACGGCGTCATGGTCGACCTCGCCACCCCCACCGCCGCCCCGCCCGCCTGGTTCTACGCGACCTACCCCGAGGCCCGCGTCGTCACCCGCGACGGCGTCCCGATGGGCCCGGGCTCGCGCGGCGCGTGCTCGCCGTCGCACCCGGCCTACCGCGCCGCGGCCCGCACCATCGCCGGCCGCATCGCCGAGCGCTACGCCGACCACCCCGCCGTCGTCATGTGGCACGTGCACAACGAGTACGGCGCCCCCGTCGGCGAGGACTTCTCCGACGCCGCGGTCGCGGCCTGGCGCACCTGGCTCCAGGACCGGTACGGCACCCTCGACGCGCTCAACGATGCCTGGGGAACGCTGTTCTGGGGCCAGGTGTACGGCGAGTGGGAGCACGTCCAGGCCCCCGGCCCGACGCCGGCCACCGTGAACCAGGCGCAGCAGCTCGACTACGCCCGGTTCACCGACCACCAGCTCCGCTCGCTGTTCGTCGCCGAGCGCGACGCCATCCGCGAGCACTCCGACAAGCCGGTCACCACCAACTTCATGGCCAACGAGTGCCCCACCACGGACCTGTGGGCCTGGGCGCGCGAGGTCGACGTCGTCTCCAACGACCACTACCTCACCGCGGCCGACCCGCGCGGCCACGTCGGGCTGTCCCTGGCCGCCGACCTGACGCGTTCGGTCGCCGACGGCACGCCGTGGATCCTCATGGAGCACTCCACCTCCGCGGTGAACTGGCAGGGCCGCAACGTCGCCAAGCGCGCCGGGGAGATGGCCCGCAACTCCCTGACCCACGTCGCGCGCGGCGCCGACGTCGTCGGCTTCTTCCAGTGGCGTGCCTCCCGGTTCGGCGCCGAGAAGTTCCACTCCGCGATGCTGCCCCACGCCGGCACCGACTCGCGCGTGTGGCGCGAGGTCGTGGCGCTCGGCCAGGACGTCGCCGCGCTCGCCGAGCTGCAGGGGTCCACCGTGCGCGCCGACGTCGCGATCCTGTGGGACACCGAGTCGTTCTGGGCCCAGGACCTGCCGTGGCGCCCCTCGGACGACCTGCGCCACCGCGAGCGGGTGCGCGCCTACTACGAGCGGCTCTGGCGCGACGGCCTCACCGTCGACTTCGTCCACCCCGACGCGGACCTGTCCGGCTACCGCCTGGTCGCGGCACCGGCGTCGTACCTGATGACCGCCCGCTCCGCCGCGAACCTGACACGCTACGTCGCGGCCGGCGGGACGCTGGTGGTGTCCTGCTTCGCGGCGGTCGTCGACGAGCACGACGCCGTGCACCACGGCGGGTACACCGCGCCGCTGCGCGAGGTGCTCGGCCTGCGCGTCGAGGAGTTCCTGCCGCTGCGCGCCGGGGAGTCCGTCGCGGTGGAGTGGACGCACGACGGCACGACGGCGGACCTGACGGCGCCGTACTGGGCCGAGGACCTCGCGGTCGAGACCGCGCAGGTCGCCGCCCGGCACGCCGACGGGCCGGCCGCCGGCGGACCCGCCGTCACCCGGCACCACCACGGCGACGGCACGGCCTGGTACGTGTCGGTCCCGCTCGGCACCGCGGACCTCACCCCCGTGCTCGGCGCCGCCTACGTCGACGCCGGGCTGACGCCGTCCGAACTGCCCGAGGACCTCGAGGTCGTCGTGCGCCACGGCGACGACGCCGACTACGTCGTCGCGATCAACCACACCGACGCCTCGGCGACGCTCCCCGGCGTCACCGGGACCGAGCTGCTGACCGGCGCCGACGCCGCCCCGCAGCTCACCGTGCCTGCCGGTGGTGTCGCCGTCGTGCGGACGACGCCCGCTGCCTGAMAVTGTWPTGRTLGYGGDYNPEQWPRETWDTDVELMAEAGVNFVSVGIFAWAMLEPREGEYDFAWMDELLDLLHAHGVMVDLATPTAAPPAWFYATYPEARVVTRDGVPMGPGSRGACSPSHPAYRAAARTIAGRIAERYADHPAVVMWHVHNEYGAPVGEDFSDAAVAAWRTWLQDRYGTLDALNDAWGTLFWGQVYGEWEHVQAPGPTPATVNQAQQLDYARFTDHQLRSLFVAERDAIREHSDKPVTTNFMANECPTTDLWAWAREVDVVSNDHYLTAADPRGHVGLSLAADLTRSVADGTPWILMEHSTSAVNWQGRNVAKRAGEMARNSLTHVARGADVVGFFQWRASRFGAEKFHSAMLPHAGTDSRVWREVVALGQDVAALAELQGSTVRADVAILWDTESFWAQDLPWRPSDDLRHRERVRAYYERLWRDGLTVDFVHPDADLSGYRLVAAPASYLMTARSAANLTRYVAAGGTLVVSCFAAVVDEHDAVHHGGYTAPLREVLGLRVEEFLPLRAGESVAVEWTHDGTTADLTAPYWAEDLAVETAQVAARHADGPAAGGPAVTRHHHGDGTAWYVSVPLGTADLTPVLGAAYVDAGLTPSELPEDLEVVVRHGDDADYVVAINHTDASATLPGVTGTELLTGADAAPQLTVPAGGVAVVRTTPAAPGPT0017815_993DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_028802748topA_2COG0550DNA topoisomerase 1ATGCCTCAGGCCCGCAAGCTCGTGATCGTCGAGTCCCCGACCAAGGCTCGCAAGATCCAGGGCTACCTCGGCGACGACTACGTCGTCGAGGCCAGCGTGGGCCACATCCGCGACCTCCCGCAGCCCTCGGACCTGCCGGCGGAGATGAAGAAGGGGCCGTACAAGAAGTTCGCTGTCGACGTCGACAACGGGTTCGACCCTTACTACGAGGTCTACGCCGACAAGAAGTCCAAGGTGCGCGAGCTGAAGTCCGCGCTCAAGGGTGCCGACGAGCTCTTCCTCGCCACCGATGAGGACCGCGAGGGCGAGGCCATCGCCTGGCACCTGATCGAGGCGCTCAAGCCCAAGGTGCCGGTGCACCGCATGGTGTTCCACGAGATCACCCGCGAGGCCATCACCCGCGCCCTGGAGAACACCCGCGAGCTCGACCAGGACCTCGTCGACGCCCAGGAGACCCGCCGCATCCTCGACCGCCTCTACGGCTACGAGGTGTCCCCGGTGCTGTGGCGCAAGGTCCGCCAGGGACTGTCCGCGGGGCGCGTGCAGTCCGTCGCGACGCGGCTCGTCGTCGAGCGGGAGCGCGAGCGCATGGCGTTCGTGCCCGCCGACTACTGGGACGTCACCGGGTCGTTCGCTCCCACGGCCGGGGACGACGCCGGACAGCTGTTCTCCGCACGACTCACCGGTCTGGGCGGGGACCGCGTCGCCGCCGGCCGCGACTTCGACGACCTCGGGCGCCTCAAGGTGCGCACCGGCGTCGCGCACCTCGACGAGGCGGCGGCGACCGCCGTCGTCGCCGGGCTGGACGGTGCCGACTTCGCGGTGCGGTCGCTGGAGACCAAGCCGTACTCGCGCAAGCCGGCCGCACCGTTCACCACCTCGACGCTGCAGCAGGAGGCCTCGCGCAAGCTGCGCATGGCCTCGCGTGCCACCATGCGCACGGCGCAGGCGCTGTACGAGAACGGCTACATCACCTACATGCGGACCGACTCGCCCGCGCTGTCGGCCGAGGCCACGGACGCCGCGCGCCGGCAGGCCGCCGAGCTGTACGGCGCCGAGTACGTGCCCGGTGCGGCGCGGATGTACGCCTCCAAGAACAAGGGCGCCCAGGAGGCGCACGAGGCGATCCGCCCCGCCGGCGACTCGTTCCGCACGCCCGCCCAGGTGGCCGGCGAGATCTCCGGCGACCAGTTCAAGCTGTACGAGCTCATCTGGAAGCGCACCGTGGCCTCCCAGATGGCCGACGCGAAGGGGTCGACGGCGTCCGTGCGCCTCGGCGCGACGCTCGGCTCCGCGGCGGGGGACCACGCCGGGTCCGACGCCGTGTTCTCGGCGTCCGGCACCGTGATCACGTTCCGCGGGTTCCTCGCCGCGTACGAGGAGTCCAAGGACGTCGAGACGCCGGAGGGCGGGGGCGCCGCCCCGTCCGGGCCCAAGGAGACGCGCCTGCCCCGCATGGCTGAGGGTGACGCGCTGGCCGGCACCGACCTGGCCGCGGACGGGCACAGCACCTCGCCGCCCGCCCGGTACACCGAGGCGTCGCTGGTCAAGGCGCTGGAGGAGCGCGGCATCGGCCGCCCGTCCACGTACGCCGCGACGATCTCCACGGTCCAGGACCGCGGCTACGTGCGCACCAAGGGCCAGGCCATGGTGCCCACCTGGTTGGCGTTCGCCGTCGTGCGGCTGCTCGAGGAGCACTTCACGTGGCTGATCGACTACGACTTCACGGCCGAGATGGAGGCGGACCTCGACCAGATCGCCGCCGGTGAGCGGGAGCGGGTCGGCTGGCTGACGCGGTTCTACTTCGGTGACGGCTCGGGCGACTCGGAGGGCTGGGGTCTGCGCGACCTGGTGGCGGACCTCGGCGAGATCGATCCCGTGGCGATCAACTCCGTCGAGATCGGCGAGGGCATCCGGGTGCGGGTCGGGCGCTACGGCCCCTATCTGGAGGACCTGGACGCCGAGCCCGACAAGGAGGGCAAGGCGCCGCGCACCTCGGTCCCCGAGGACATCGCGCCCGACGAGCTCACGGTCGCCAAGGCGCGCGAGCTGCTCGCCGCCGGGGCCGACGACGGCCGCGTGCTCGGCGTCGACCCGGACTCGGGGAACGAGATCGTGGCGAAGAACGGCCGGTTCGGCCCGTTCGTCACCGAGAAGCTGGACCTGCCGGAGATCGACCCGGACCTGTCGGCCGCCGCGAAGAAGAAGGCGAAGGCAGCCCAGCCCAAGCCCCGCACGGGTTCGCTGCTGAAGTCGATGGCGCTGGACACGGTGACCCTCGAGGACGCCCTGAAGATCCTGTCGCTGCCGCGCGTGGTCGGCACGGACCCGGAGTCGGGCGACGAGATCACCGCCCAGAACGGCCGTTACGGGCCCTACCTGAAGAAGGGCACCGACTCGCGCTCGCTGGAGTCCGAGGAGCAGCTCTTCACCCTGACGCTCGACGAGGCCCTGGCGATCTACGCCCAGCCCAAGCGTCGCGGCCGGGCCGCCGCGGCGCCGCCGCTGAAGGAGCTCGGCGACGACCCGAACTCGGGCAAGCCGATCGTGGTCAAGGACGGCCGGTTCGGGCCGTACGTGACCGACGGCGAGACCAACCGCACGCTGCCGCGCGACGCCACGCCGGAGTCGATCACCGCCGAGCGGGCGATCGAGCTGCTCGCCGAGAAGCGGGCCCAGGGTCCGAAGAAGCGCAAGGCGCCCGCCAAGAAGAAGGCCCCCGCCAAGAAGTCGACGGCCAAGAAGTAGMPQARKLVIVESPTKARKIQGYLGDDYVVEASVGHIRDLPQPSDLPAEMKKGPYKKFAVDVDNGFDPYYEVYADKKSKVRELKSALKGADELFLATDEDREGEAIAWHLIEALKPKVPVHRMVFHEITREAITRALENTRELDQDLVDAQETRRILDRLYGYEVSPVLWRKVRQGLSAGRVQSVATRLVVERERERMAFVPADYWDVTGSFAPTAGDDAGQLFSARLTGLGGDRVAAGRDFDDLGRLKVRTGVAHLDEAAATAVVAGLDGADFAVRSLETKPYSRKPAAPFTTSTLQQEASRKLRMASRATMRTAQALYENGYITYMRTDSPALSAEATDAARRQAAELYGAEYVPGAARMYASKNKGAQEAHEAIRPAGDSFRTPAQVAGEISGDQFKLYELIWKRTVASQMADAKGSTASVRLGATLGSAAGDHAGSDAVFSASGTVITFRGFLAAYEESKDVETPEGGGAAPSGPKETRLPRMAEGDALAGTDLAADGHSTSPPARYTEASLVKALEERGIGRPSTYAATISTVQDRGYVRTKGQAMVPTWLAFAVVRLLEEHFTWLIDYDFTAEMEADLDQIAAGERERVGWLTRFYFGDGSGDSEGWGLRDLVADLGEIDPVAINSVEIGEGIRVRVGRYGPYLEDLDAEPDKEGKAPRTSVPEDIAPDELTVAKARELLAAGADDGRVLGVDPDSGNEIVAKNGRFGPFVTEKLDLPEIDPDLSAAAKKKAKAAQPKPRTGSLLKSMALDTVTLEDALKILSLPRVVGTDPESGDEITAQNGRYGPYLKKGTDSRSLESEEQLFTLTLDEALAIYAQPKRRGRAAAAPPLKELGDDPNSGKPIVVKDGRFGPYVTDGETNRTLPRDATPESITAERAIELLAEKRAQGPKKRKAPAKKKAPAKKSTAKKNANANANANA
AK018_02881219hypothetical proteinGTGGGACTGTTCCGTCGCCGCCCTGGAGACGACCGCACGTGGGGCATGCGGTTCACCGAGACGTTCCTGCCGATCTTCGGCCCGGCGTCGATCCGCCGGACGCCGCCCGTGCCTCCGACCGCCGAGGACCTGGCCCGCGAGGCGCGCCTGCGCGGCACCTACGAACGCGTCACCGGACCCGACGGCCACAGCTACGTCGTCGAGCGCCGGGACGACTGAMGLFRRRPGDDRTWGMRFTETFLPIFGPASIRRTPPVPPTAEDLAREARLRGTYERVTGPDGHSYVVERRDDNANANANANA
AK018_02882474ohrR_3Organic hydroperoxide resistance transcriptional regulatorATGGACCGTCCCGAGGATCCCCTGGCGCTCGAGGCGCAGGTCTGCTTCGCGTTGTCGGCCGCGGCGCGCGCGATGGTCGCGCTGTACCGACCGGTGCTCGAGCCGCTCGGCCTCACCCACCCCCAGTACCTGGTCATGCTGGGCCTGTGGGAGGACGCGGGGGCGGGCCGGACGACGACGGCCACCGACCTCGCCGACCGCCTCCTCCTCGACCCCGGCACGCTCTCCCCGCTGCTGCGGCGGCTGGAGGAGCACGGCCTGCTGGTGCGGCGGCGCTCGCGCAGCGACGGTCGCGTCGTCGAGGTGCACCTCACCGACGCCGGCACCGACCTGCGGCGTGCAGCCGTCGAGGTGCCGGGCAAGGTCGTCGCGGCGTCGGGCCTCGAGCTCGACGAGCTCGAGCGGGTCCGGGCGGCGTCCGCGGCGGTCATCGCCGCCGCCCACGGCGACCGCGCGGATACGGTGGGGCCATGAMDRPEDPLALEAQVCFALSAAARAMVALYRPVLEPLGLTHPQYLVMLGLWEDAGAGRTTTATDLADRLLLDPGTLSPLLRRLEEHGLLVRRRSRSDGRVVEVHLTDAGTDLRRAAVEVPGKVVAASGLELDELERVRAASAAVIAAAHGDRADTVGPPGPT0013155_166DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
AK018_028831074iolU_2COG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolUATGACCGACCCCACCGCCGCCGTCGACCCGTCCACCTACGCCGCACGCCTGACCTCCGCCGACCTGGGCGCCACGGTGCCCGACCTGCTCGCCGCCCCCGCGATCCGCTGGGGCGTCATCGGTGCCGGGAACATCGCCGGCTCGTTCTCCGACGGGGTGCGCGACCGCACCGCCGCGCGGGTGACCGCCGTCGGCTCCCGCTCGGTGGCGAAGGCCCAGGAGTTCGCCGACGCCCACGCGCCCGGAGCGCGGGCGCACGGGTCCTACGAGGACCTGGTCGCCGACGACGAGGTGGACGTCGTCTACGTCGCCACCCCGCACTCGCACCACCTGGAGCACACGCTGCTGGCGATCGAGGCGGGCAAGCACGTGCTCGTCGAGAAGCCCCTGACCCGGTCCGTCGCCGAGTCCCGCACGCTGCTCGACGCCGCCCGCGACGCCGGGGTGTTGTGCATGGAGGCCGTCTGGACCCGGTTCCTGCCGCACATCGCGGCGATCCGTGGGGCGATCGCCCGCGGCGAGATCGGCGAGGTGCGCACCGTGATCGCCGAGTTCGCGATCCAGAAGGAGTACGACCCCACCCACCGGCTGTTCGCCCCGGAGCTCGCCGGCGGCGCCCTGCTCGACCTCGGCATCTACCCGATCACGCTGGTCCACGACCTGCTCGGGGCGCCCGACACCGTGCTGGCCCACGGCACCCAGGCCCCCACCGGCGTCGACGACCACGTCAGCATGATCTTCGGCTACGACTCCGGCGCGCAGGCCGTGCTGCACACCTCGTCACGCGTCCCGGGCGTCGCGGGAGCGCGGATCATCGGCACCCGGGGCCACATCGAGATGCCCGGCGGGTTCTTCACCCCCACGGGCTTCGAGGTGGTGCGCGACGACGGTACCCGCTGGTCGTTCACGTCCCCGGCGGGGGAGGGCAAGGCCTACGAGGCCGCCGAGGTCGCGCGCTGCGTGACGGCGGGGCTCACCGAGAGCCCGCGGATGCCCTGGTCGGACACGCTCGAGGTCATGGGCATCCTCGACGACGTGCGCGCCACGCTCGGGGTCGTCTACCCGGGCGAGTGAMTDPTAAVDPSTYAARLTSADLGATVPDLLAAPAIRWGVIGAGNIAGSFSDGVRDRTAARVTAVGSRSVAKAQEFADAHAPGARAHGSYEDLVADDEVDVVYVATPHSHHLEHTLLAIEAGKHVLVEKPLTRSVAESRTLLDAARDAGVLCMEAVWTRFLPHIAAIRGAIARGEIGEVRTVIAEFAIQKEYDPTHRLFAPELAGGALLDLGIYPITLVHDLLGAPDTVLAHGTQAPTGVDDHVSMIFGYDSGAQAVLHTSSRVPGVAGARIIGTRGHIEMPGGFFTPTGFEVVRDDGTRWSFTSPAGEGKAYEAAEVARCVTAGLTESPRMPWSDTLEVMGILDDVRATLGVVYPGENANANANANA
AK018_02884399hypothetical proteinATGACCGGGCAGGCGACCATCACGACGCTGACGACCGAGGAGTGCTGGGAGGTGCTCGCCGACCGTCCCGTGGGACGCCTGGCGACCGCCGCGGGCGGCGATCCGGAGATCTTCCCGGTGTCGTTCGGCGTGGCCGACGGGCACGTGTACTTCGTGACGAAGCCGGGCAGCAAGCTCGTCGAGCTCGTGGTGAACTCCCGGGTCGCGTTCGAGGCGGACGAGTGGACCGAGCAGGCCGCCGTGAGCGTGGTCGTCAAGGGCACCGCCGAGATGCTCGAGACCGATGCCGACCTGGCGCAGGCCGAGGCGATCGGCATCATCCCGTTCGTCGACGACGGCAAGAACGTCTGGGTGCGCATCACGCCGTCCGAGGTGACCGGCCGCCGCCTGACCCGCTGAMTGQATITTLTTEECWEVLADRPVGRLATAAGGDPEIFPVSFGVADGHVYFVTKPGSKLVELVVNSRVAFEADEWTEQAAVSVVVKGTAEMLETDADLAQAEAIGIIPFVDDGKNVWVRITPSEVTGRRLTRPGPT0028780_2541DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-5-NITROIMIDAZOLE_ANTIBIOTIC_RESISTANCE-AZOMYZIN,PGPT0028780-nimD-K07005NANA
AK018_02885687tmk_2Thymidylate kinaseGTGTGGGCACCCCCGGCTAGGGTGTGGCGCGTGAGCAGCGCACCCGGGTACTTCGTGTCGTTCGAGGGCGGCGACGGCGCCGGCAAGTCGACCCAGGCGCGGCTGCTCGGCGCGTGGCTCGAGGAGATCACCGGCCGGGAGGTCGTCCTGACCCGGGAACCGGGCGGCACCGCGCTCGGCCGCGAGATCCGGCGGCTGGTGCAGCACGGCGAGCACGTCGACCCACGGGCCGAGGCGCTGCTGTACGCCGCCGACCGCGCGCACCACGTCGCCACGCTCGTGCGTCCCGCGCTGGAACGCGGTGCCGTCGTCATCACCGACCGCTACCTCGACTCGTCCGTGGCCTACCAGGCCGGCGGTCGCGAGCTGGCCGAGGCCGACGTCGAGGGGCTGTCGCTGTGGGGCACCGGAGGGCTGCTGCCGGACGTCACCGTGCTGCTCGACGTCGACCCCGCGGTCGCGGCGGCGCGCCGCACCGGCGACCCCGACCGCCTGGAGCGGGCCGGCGACGAGTTCCACCGGCGCACCCGGGACGCGTTCCTGCGCCGCGCTGCCGCCGCGCCGGGTCGCTGGCTCGTCCTGGACGGCTCCGGCGCGGTCGACGACGTCCAGTCGCAGATCCGGGTCGACCTCGCCTCCCGGCTGGGTCTGACGCCGGGTCTCGTCGCCGGTGAGGGGGCGTCGTGAMWAPPARVWRVSSAPGYFVSFEGGDGAGKSTQARLLGAWLEEITGREVVLTREPGGTALGREIRRLVQHGEHVDPRAEALLYAADRAHHVATLVRPALERGAVVITDRYLDSSVAYQAGGRELAEADVEGLSLWGTGGLLPDVTVLLDVDPAVAAARRTGDPDRLERAGDEFHRRTRDAFLRRAAAAPGRWLVLDGSGAVDDVQSQIRVDLASRLGLTPGLVAGEGASPGPT0021395_569DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021395-tmk-K00943NANA
AK018_028861158hypothetical proteinGTGAGCGTCTGGGACGACGTCGTCGGGCAGCCCGAGGCCGTCGGCGTGCTGCAACGGGCCGCCGCCGACCCGGCCGCGATGACCCACGCCTGGCTGCTGACCGGACCGCCGGGGTCCGGTCGTTCGGTCGCGGCACGCGCGTTCGCCGCGGCGCTGCAGTGCACCGGCGGCGGAGCTCCGGACGGCGTGCGCGGGTGCGGCCGGTGCCAGGCGTGCCGCACCACGCTCGCCGGCACCCACCCGGACCTGACCGTCGTGGCCACCGAGAAGGTCGTCATCCAGATCCGCGAGGTGCGCGACCTGATCGCCACCGCCGCGCGCACCCCCTCCGTCGGGCGCTACCGGGTCATCCTCGTCGAGGACGCCGACCGCATGGCCGAGCGCACCACCAACGTGCTGCTGAAGGCCGTCGAGGAGCCGCCGCCGCACACCGTCTGGGTGCTCTGCGCCCCGTCCGTGCAGGACGTGCTGCCCACCATCCGGTCCCGGTGCCGCGGCGTCGTGCTGCGTGTCCCGCCGCCCGACGCGGTCGCCGACCTGCTGGTGCGCCGCGACGACGTCGAGCCCGGCGTCGCGCTGCAGGCGGCCCGCGCCGCGCAGTCCCACGTCGGGCTGGCCCGTCGGCTCGCCCGCGACCCGGAGGCCCGCGCCCGTCGTGCCGAGGTGCTGGACGTCGCCCGTCGCGTCCGGGGTGTCCCCGACGCGGTGCTCGCCGCCGCAGAGCTGGTCGACGTCGCCAAGGCGGAGGCGGCCGCGGCCACCGTGGAGCGCGACGCCGCCGAGAAGGCCGAGCTGCTGCGTGCCCTCGGCGTCGCCGAGGGCGAGACCCTCCCGCCCAAGCTGCGCTCCCAGCTCAAGCAGCTCGAGGACGACCAGAAGCGCCGCGCCACCCGACGCCAGCGCGACGTGCTCGACCGGTCCATGGTCGACCTGCTGTCGCTGTACCGCGACGTGCTCGTGGTCCAGCTCGGCGCCGACGTCGAGCTGGTCAACAGCGAGCACGCCGGGACGGTGCGCGCCCTGGCGCGGGACTCGACGCCGGAGCAGACGGTGCGGCGCATGGACGCCGTCGGGCAGGCTCGCGAGCGTCTCGAGGGCAACGTGGCACCGCTGCTGGCCCTCGAGGCGATGACGGTGGCGCTGCGGCCGCAGGGTTGAMSVWDDVVGQPEAVGVLQRAAADPAAMTHAWLLTGPPGSGRSVAARAFAAALQCTGGGAPDGVRGCGRCQACRTTLAGTHPDLTVVATEKVVIQIREVRDLIATAARTPSVGRYRVILVEDADRMAERTTNVLLKAVEEPPPHTVWVLCAPSVQDVLPTIRSRCRGVVLRVPPPDAVADLLVRRDDVEPGVALQAARAAQSHVGLARRLARDPEARARRAEVLDVARRVRGVPDAVLAAAELVDVAKAEAAAATVERDAAEKAELLRALGVAEGETLPPKLRSQLKQLEDDQKRRATRRQRDVLDRSMVDLLSLYRDVLVVQLGADVELVNSEHAGTVRALARDSTPEQTVRRMDAVGQARERLEGNVAPLLALEAMTVALRPQGNANANANANA
AK018_028871503caeA_2Carboxylesterase AGTGGTGGCGGCTGTCGCGCTGCTGGCGGCCTGCACGGCTCAGGCGCCGGAGAAGACGGCGACGCCCGTCGAGGACGCCACGGGTGCGGCGACGGGTGCCGAGAGCGCTCCCGAGGGTTTCGAGGAGTTCTACGGGCAGGACCTGGAGTGGGAGACCTGCCGCAGCGGGTTCGAGTGCGCCACGGCGACCGCCCCGCTGTCGTGGGACGACCCCGAGGCCGGCAGCATCGAGCTGGCGCTGATGCGCAGCCGCGCGTCCGGCGAGAAGGTGGGCTCGCTGCTGGTCAACCCGGGCGGGCCGGGCGGGTCCGGCGTCGACTACCTCGAGTCCGCCGTCGAGACGTACGGCGAGCCGCTGCGGGAGTCGTTCGACGTCGTGGGCTTCGACCCGCGCGGCGTCGAGGACTCCTCGGCGGTGGAATGCTACGGCGACGCGGAGAAGAACGAGTACCTCGCCGAGGACTTCGACCTGTCGACCGAGCAGGGGCTGGAGAACGCGCGGCGGTCGAGCGCCGCCTGGGCGGAGGCGTGCGGCGAGAACACCGGTGAGCTGCTCGGCGAGGTCGACACGCAGAGCGCCGCCAAGGATCTGGACATGCTGCGCGCCGCCCTCGGCGACTCCCAGCTGCACTACCTGGGCTTCTCCTACGGCACGAGCCTGGGTGCTACGTACGCGGGGCTGTTCCCGGACCGGGCGGGTCGGCTCGTGCTGGACGGCGCGATCGACCCGACCCTCGACGACGGCGAGATGTCCGAGGGGCAGGCCGTCGGGTTCGAGAACGCCCTGCGCGCCTACGTCACCGACTGCCAGGCCGGCTCGGACTGCCCGCTGACCGGGTCGGTCGACGAGGGCATGCAGCAGGTGCGCGGCGTGCTGGATGCCGCCTACGACCGCCCGTACCCGACCAGCGGCGAGCGGGAGGTGACCCAGTCGCTGGCGTTCTACGGCGTCGCGGTGACCCTGTACGCCGAGCAGAACTGGCCGATCCTGACCCAGGCGCTCGACGAGGCGATCAACGCCGGCACCGGTGACACGCTGCTCTACCTCGCCGACTTCTACCACGACCGCAACGCCGACGGATCCTTCTCGACGAACTCGACCGAGGCGTTCAGCGCCGTGAACTGCCTGGACAGCCGCAGCAGCGACGACGTCGACGAGATGCGCGCCCAGGCCGCCGAGATCGAGGAGGCGGCGCCGACGATGGGCACGTTCTTCACCTACGGCGGCCTCGCGTGCGCGTCCTGGCCGTACCCCGAGGTGGAGCAGGAGTACGACGTCGCGGCCCCCGGCGCCCCGCCGATCGTGGTCATCGGCACCACGAACGACCCGGCCACGCCGTACGTGTGGTCCGAGGGCATGGCAGACACCCTCGAGTCCGGCGTCCTGGTCACCTACGAGGGCGAGGGGCACACCGCCTACGGCCGGTCGAACGACTGCATCGCCGGCGCCGTCGAGGACTACCTCGTCGAGGGCACCGTCCCGGAGGACGGCCTCACCTGCTGAMVAAVALLAACTAQAPEKTATPVEDATGAATGAESAPEGFEEFYGQDLEWETCRSGFECATATAPLSWDDPEAGSIELALMRSRASGEKVGSLLVNPGGPGGSGVDYLESAVETYGEPLRESFDVVGFDPRGVEDSSAVECYGDAEKNEYLAEDFDLSTEQGLENARRSSAAWAEACGENTGELLGEVDTQSAAKDLDMLRAALGDSQLHYLGFSYGTSLGATYAGLFPDRAGRLVLDGAIDPTLDDGEMSEGQAVGFENALRAYVTDCQAGSDCPLTGSVDEGMQQVRGVLDAAYDRPYPTSGEREVTQSLAFYGVAVTLYAEQNWPILTQALDEAINAGTGDTLLYLADFYHDRNADGSFSTNSTEAFSAVNCLDSRSSDDVDEMRAQAAEIEEAAPTMGTFFTYGGLACASWPYPEVEQEYDVAAPGAPPIVVIGTTNDPATPYVWSEGMADTLESGVLVTYEGEGHTAYGRSNDCIAGAVEDYLVEGTVPEDGLTCNANANANANA
AK018_028891404gadACOG0076Glutamate decarboxylaseATGGCACTGCACTCTTCGGACACCCCGACCTTCCTGGACTTCGAGCGGCTCGCGATCGCCCCGCTCTACGCGCGCCCGCGGGCGACGCACGGCATGCCCTCCGAGACCGTCCCGGACGACGGGATGGACCCGTCGGTCGCCTACAGCATGATCCACGACGAGCTGATGCTCGACGGCAACTCGCGCCAGAACCTGGCCACGTTCGTGACGACGTACATGGACCACGAGGCGAGGCTGCTGTTCGCGGAGACGTCCGACAAGAACATGATCGACAAGGACGAGTACCCGCAGACGGCCGAGATCGAGGGCCGGTGCGTGCGGATGATCTCGGACCTGTGGAACGCTCCCGACGGCGAGAACGCGACGGGCACGTCGACGACGGGTTCGAGCGAGGCGGTGATGCTCGGCGGTCTGGCGCTGAAGTGGCGGTGGCGCGAGCGGCGCCGGGCGGCGGGGGAGCCGACGGACCGCCCGAACCTGGTCATGGGGATCAACGTGCAGGTCGTGTGGGAGAAGTTCTGCCGGTACTGGGACGTGGAGCCGCGGTACGCGCCGATCGAGGAGGGCCGGCTGCAGCTGAACGCGGAGGAGGCGCTGAAGCTGGTGGACGAGAACACCATCGGCGTGGTCGCCATCCTGGGGTCCACGTTCGACGGGTCGTACGAGCCGGTGGAGGCCATCGCGTCGGCGTTGGACGAGCTCGCCGCCTCGGGAGGTCCGGACGTCCCTGTCCACGTCGACGCGGCGTCGGGAGGGTTCGTCGCTCCGTTCATCGACCCGGACCTGCGGTGGGACTTCCGGGTGCCGCGGGTGCGGTCGATCAACGCCTCGGGGCACAAGTACGGGCTGGTGTACCCAGGGGTGGGGTGGATCGTCTGGCGCACCCCGGAGGACCTGCCCGAGGACCTCGTGTTCCACGTGAACTACCTCGGCGGGGACATGCCGACGTTCGCGCTCAACTTCTCCCGCCCGGGTGCGCAGGTGATCGCCCAGTACTACAACCTCGTCCGGCTGGGTCGCGAGGGCTACCGGGAGATCCAGCAGGCCTGCCGGGACACGGCGACGTACCTGTCGGGCTCGATCGCGCAGATGGGGCCCTACGAGCTGCTGTCCGACGGGTCAGAGCTGCCGGTGTTCTTCTTCCGGCTGAAGCCCGAGGTGTCGAACTACACGGTCTACGACGTCTCGGCGAAGATGCGGGAGCGCGGGTGGCAGGTCCCGGCGTACACGCTGCCGGAGAACCTCACCGACGTGTCGGGACTGCGGGTCGTGGTCCGCAACGGGCTGTCGCGCGACATGGCCGAGCTGTTCCTCGCGGACCTGGCCCGGTCGACGGAGTTCCTCGAGAGCCTGGAGACCCGCCTGCCGCACGACCCGAGCCACACGGAGTCGTTCCGGCACTGAMALHSSDTPTFLDFERLAIAPLYARPRATHGMPSETVPDDGMDPSVAYSMIHDELMLDGNSRQNLATFVTTYMDHEARLLFAETSDKNMIDKDEYPQTAEIEGRCVRMISDLWNAPDGENATGTSTTGSSEAVMLGGLALKWRWRERRRAAGEPTDRPNLVMGINVQVVWEKFCRYWDVEPRYAPIEEGRLQLNAEEALKLVDENTIGVVAILGSTFDGSYEPVEAIASALDELAASGGPDVPVHVDAASGGFVAPFIDPDLRWDFRVPRVRSINASGHKYGLVYPGVGWIVWRTPEDLPEDLVFHVNYLGGDMPTFALNFSRPGAQVIAQYYNLVRLGREGYREIQQACRDTATYLSGSIAQMGPYELLSDGSELPVFFFRLKPEVSNYTVYDVSAKMRERGWQVPAYTLPENLTDVSGLRVVVRNGLSRDMAELFLADLARSTEFLESLETRLPHDPSHTESFRHPGPT0007630_1529DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007630-gadA|gadB-K01580NANA
AK018_02890906hypothetical proteinATGCGCGCGCTGTGGACGTACCTGGGGATCTCGTTCGGCGTCTCCTGGCTGGTGGCCCTGCCGCTCTGGCTCGGCGACGGCATCGACGAGCCGCTGCTGCCCGTCCTGGCGGTCGCCATGATGTTCACCCCGGCGCTGGCCGCGCTCGTGGTGGTGCGGTTCGTCGAGCGACGTCCGCTCGCCCGGGCCCTCGGCCTGACGCCCGTGCGACCGTGGGGCCGGTTCCTCGGCTGGCTGGGCATCGCGCTGGTGGTGCCCGTCGCCCTGGTCGCGGTGGCGCTGCCCGTCGCCTCGGTGCTCGGCCTCTACGAGGCGGACCTGGTCGAGTTCTCCGGGTTCCGCGAGACGCTCGACGCCCAGCTCGCGGCCGTCGGCGGGGCGCCGCTCGACATCCCCGTGCAGGTGCTCGTGATCGCCCAGCTCGCGAGCATCGTCCTCGGTGCCGTGATCAACACCGTGCCCGCCCTCGGCGAGGAGATCGGCTGGCGAGGCTGGCTGCTGCCCACGCTCGTCGACCGCTACGGCACCGCGGCCGCCGTCGTCGTCTCCGGCGCGATCTGGGGGCTGTGGCACGCACCCCTGGTGCTGCTCGGCTACAACTACCCCGACGCGTCGCCGCTGCTCGCGCTCGTGATGATGGTCGGGTTCTGCACCGTCGTCGGGGCCGTGTTCTCGTGGCTGCGGATCCGCAGCGGCAACGTCTGGGCGCCCGCGCTCGCGCACGGTGCGCTCAACGCGGCCGCCGGGATGCACCTGCTGTTCGTCGCCGCCGGCACCACCGTGGACACCACGCACGCCACGATCCTGGGCTGGAGCGGATGGATCGTGCCGCTGGCGCTGGTCGCGGTGCTCGCCGCGACCGGACAGTTCCGCGCGCGGCAGCCGGAGCCGACGGCAACGCCCTGAMRALWTYLGISFGVSWLVALPLWLGDGIDEPLLPVLAVAMMFTPALAALVVVRFVERRPLARALGLTPVRPWGRFLGWLGIALVVPVALVAVALPVASVLGLYEADLVEFSGFRETLDAQLAAVGGAPLDIPVQVLVIAQLASIVLGAVINTVPALGEEIGWRGWLLPTLVDRYGTAAAVVVSGAIWGLWHAPLVLLGYNYPDASPLLALVMMVGFCTVVGAVFSWLRIRSGNVWAPALAHGALNAAAGMHLLFVAAGTTVDTTHATILGWSGWIVPLALVAVLAATGQFRARQPEPTATPNANANANANA
AK018_02891687def_2Peptide deformylaseATGCCTTGGACGTTCGGCCGACGGCGGCCCACCACCTATCTGCTGGGCGAAGCCGTCGACCCGTACCCGGCGCAGGCGCCGGAGTCGGTGCGGGGCCGCGCGCTGCGCATCACGGAGATCGGCGAGCCGGTGCTGCACGCCCCGGCGCGGACGGTGGAGCGGTTCTCCACACCGGAGCTCGCGCGGCTGGTGGACGACCTGTTCGCCACGATGGACGTGGCCCAGGGGGTCGGCCTGGCGGCCCCTCAGGTGGGGGTGGACCTGCGGGTGTTCGTCTACGACGTCACCGACGACCGTGGGGACCGGCACGTCGGCCACGTGGTCAACCCCGAGCTGACGGTCGACACGTCGGCCGAGCTCGTGACCGAGGACGAGGGCTGCCTGTCCGTGCCGGGCGCGTACGAACCGCTGGCGCGGCGGGAGGCGGCGACGGTGCGGGGCGTCGACCAGCACGGCGGCCCGGTGGAGCTGCACGGCACCGGGTTCCTGGCCCGGGCTTTCATCCACGAGTGCCAGCACCTGGACGGCACGCTCTACTGGGACCATCTCTCGAGCGAGCTGAAGCAGGACGCGCTGCGGCAGCGGGACGCCGAGCGTGCCGACGTGCTGGCCACGCGCCGGGAGATCGCGATCGAGCTGGGCAAGCGTCCGGCCGACTACCCGGCGGCGCCGGCCGGCGGACGCTAGMPWTFGRRRPTTYLLGEAVDPYPAQAPESVRGRALRITEIGEPVLHAPARTVERFSTPELARLVDDLFATMDVAQGVGLAAPQVGVDLRVFVYDVTDDRGDRHVGHVVNPELTVDTSAELVTEDEGCLSVPGAYEPLARREAATVRGVDQHGGPVELHGTGFLARAFIHECQHLDGTLYWDHLSSELKQDALRQRDAERADVLATRREIAIELGKRPADYPAAPAGGRNANANANANA
AK018_02892798hypothetical proteinGTGCCCGCACCCCGTGCCGTCCGAGCCGTGCTCGCCGGTGCCCTGGGCACGGGGCTCGCCCTGGCCGCCCTCCCGGCGGCCGCGGACGACGACGACCTGACCGTCACCGTCGACGGCGTCTCCTACCACGACCGGGACCGCGACCGCGGCGACTGGGACACGGTCGGCTACTCGATCCGCAGCCTCGAGGGCTGGGACTACGAGTGGCTCCAGGAGCCCCTGCCCCGCGGCCGGTCCGGGAACGTGCGATTCAGCGCGGCATGGTCGACCATGCCGGACGGCTACTGCGTGGTCTACGTCCGCGTGCCGGGCGTCGGGGACTGGGACGAGGAGTCCGGCGGCAGCCGCTGCACGCCGGCGCCCGCACCGACGTCGTCGGCACCCGCACCCTCCACGTCGGCTCCGGCCGAACCCACCGCCACCCCCGCGCCGGAACCCGAGCCCGAACCCGCACCGGAGACCACGGCGCCGTCGCAGCCCGCACCCGAGCCGACCTCGCCGAGCCCCGAGGCCCCGCCCCCGCCCGCACCGTCCCCGAGCCCGTCCACCGCGACCCCCTCGCCGTCCGGCTCCCCCACCGCGAGCTCCGCAGCGCCGGTCGCCCCGACGCCGGAGCCGTCGCCGAGCCCGTCGTCCGCAGCCCCCGCCGTCGCGGCCGGCGCCGCCGCGGAGAGCACCGGCAACGCCGAGGACACCGCCCTGCGCGGGCAGATGTGGGCCGTGGTCGGGTTCGGGCTCGCGGCCGTCGGCGTCGCCGTGGGGGGCGTCGTGGCCTGGCGCGGACGGCACGGCGGCTGAMPAPRAVRAVLAGALGTGLALAALPAAADDDDLTVTVDGVSYHDRDRDRGDWDTVGYSIRSLEGWDYEWLQEPLPRGRSGNVRFSAAWSTMPDGYCVVYVRVPGVGDWDEESGGSRCTPAPAPTSSAPAPSTSAPAEPTATPAPEPEPEPAPETTAPSQPAPEPTSPSPEAPPPPAPSPSPSTATPSPSGSPTASSAAPVAPTPEPSPSPSSAAPAVAAGAAAESTGNAEDTALRGQMWAVVGFGLAAVGVAVGGVVAWRGRHGGNANANANANA
AK018_02893579hypothetical proteinATGGCCATCACCTCCGCGCCCGCAGGCCTCCTCCTGACCCCCGGGGCCGGCGCCGACCGCGACCACCCCACGCTGCGCTCCGTCGAGGACCGCCTGGCCCGGCACGACCCGCCGCTGCCCGTCACCCGCGTCGACTTCCCCTACCGCATCGCCGGCAAGCGCGCCCCCGACCGCCCGAACGTCGCCGTCCCCCACGTGCGCGCCGAGGCCGAGACGTTCGCCGGACGGATCGGCGTCACGACCGACCGCCTCCTGCTCGGCGGCCGGTCCTACGGCGGACGCATGTGCTCGATGGCGGTGGCCGACGGACTGCCCGCCGCCGGGCTCGTCCTGCTCAGCTACCCGCTGCACCCGCCCGGCAAGCCCGAGAGGCTGCGCGTCGACCACTTCGGGGCCCTGGACGTCCCCGTGCTGTTCGTCAGCGGCGACCGCGACCCGTTCGGCAGCCCCGACGAGCTCGCCGCGCACACCGCGGCGATCCCCGGACCGGTCACGCGCATCACCCTGCCCGGGACCCACGACATCAAGGACCTCGACGCGATCTCCGACGCCGTCGCCACCTGGGTCGACGGCCTCTGAMAITSAPAGLLLTPGAGADRDHPTLRSVEDRLARHDPPLPVTRVDFPYRIAGKRAPDRPNVAVPHVRAEAETFAGRIGVTTDRLLLGGRSYGGRMCSMAVADGLPAAGLVLLSYPLHPPGKPERLRVDHFGALDVPVLFVSGDRDPFGSPDELAAHTAAIPGPVTRITLPGTHDIKDLDAISDAVATWVDGLNANANANANA
AK018_028941047COG3940Extracellular exo-alpha-(1->5)-L-arabinofuranosidaseATGACGGACCACGCTCAGGTCGCGCCCAACCCGATCGTTCTGCAGCGCGCCGACCCCCACGTCCTGCGCCACGACGGCCAGTACTACTTCACCGGCTCGTATCCCGCCTACGACCGCATCGTCCTGCGCCGCGCCGAGCGCCTCGAGGACCTCCAGGCCGCCGAGGAGGTCACGGTCTGGACCCGGCACGCCAGCGGTCCGCAGTCGCACCTGATCTGGGCCCCCGAGATCCACCGGGTCGACGACGCCTGGTACATCTACTACGCGGCCGCCCCGAACGACCACGGCACCGTCGACGCCCCGAGCGAGAACGAGACGTTCAACCACCGCGTGTTCGTCCTGGAGTGCACGGCCGCCGACCCGCTGACGGGCGAGTGGGTCGAGCGCGGTCAGGTCGACACCGGCTGGGAGTCCTTCGCGCTCGACGCCACGACGTTCGTCCACGGCGGCCACCAGTACCTCGTCTGGGCGCAGGAGGACCTCGAGGTCTACGGGCACTCCAACCTCTACATCGCGCGGATGGCGAACCCCTGGACGCTCGCCACTCCGGCCGTGGAGCTCACCCGACCGGAGTTCGACTGGGAGACCAAGGGCTTCTGGGTCAACGAGGGCCCGTCCGTCCTGATCCGCGGCGGCCGCGTCTTCCTCACCTACTCCGGCGCCGCCACCGGCATCGACTACGCCATGGGCGTGCTCACCGCCGACGCCGACGCCGACCTGCTCGACCCGGCCTCCTGGACCAAGTCCGTCGAGCCGGTGTTCGTCTCCGACCCGTCCGTCGGCCAGTACGGCCCCGGCCACAACTCGTTCACCGAGACGCCCGACGGCGAGACCGTGCTGGTCTACCACGCCCGCACGTACACCGAGATCGTCGGCGACCCGCTGTGGGACCCGAACCGCCAGGCACGCGCCCAGCTCCTGCCGTTCGACGCCGACGGCAACCCCGTGTGGGGCACCCCGGTGCCCGACACCCGACCCACCCCCACGACGACCGAGGTCCTGCCGCCCTCCGGTCTCGCGCACGACCTTGAGGAGGCGGCACTGTGAMTDHAQVAPNPIVLQRADPHVLRHDGQYYFTGSYPAYDRIVLRRAERLEDLQAAEEVTVWTRHASGPQSHLIWAPEIHRVDDAWYIYYAAAPNDHGTVDAPSENETFNHRVFVLECTAADPLTGEWVERGQVDTGWESFALDATTFVHGGHQYLVWAQEDLEVYGHSNLYIARMANPWTLATPAVELTRPEFDWETKGFWVNEGPSVLIRGGRVFLTYSGAATGIDYAMGVLTADADADLLDPASWTKSVEPVFVSDPSVGQYGPGHNSFTETPDGETVLVYHARTYTEIVGDPLWDPNRQARAQLLPFDADGNPVWGTPVPDTRPTPTTTEVLPPSGLAHDLEEAALPGPT0019091_648DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NANANA
AK018_028951341rafB_1Raffinose permeaseGTGAGCACCACCACCAACCAGGGACAGACCGGCAAGCTCCACGCGTTGTCGTCGCTGAAGAAGCCGACGTTCTGGAACGTCGGCGGGCTGTTCTTCTTCTACTTCGCCGTCTGGCAGCTCGTCCAGACCAACTTCAGCATCTGGGCCGAGGACGCGGCCGGGATGTCGAACTCCAGCATCGGCCTGATCTTCTCGATCGTCGCCGGTGTGGCCTTCTGCCTGCAGCCGTTCTACGGCTACATCCAGGACCGCCTGGGCTTTCGCAAGCACCTGTTCGCCTGGGTGGTGCTGTGCGCGGCGATGATCGGGCCGTTCTTCGCCTTCGTCTTCGTGCCGATGGCCGAGTCCAACGAGATCCTCGCCGCGGTCGTCGCAGGCGCCTACCTCGCCCTCGTGCTCAACGGCGGCGTCGGCGTCGTCGAAGCCTTCAACGAGCGCAACGCGCGGGCCAACGGCATCGAGTACGGCCACGTCCGGCTCTTCGGGTCCCTCGCCGGAGCGACCGCCTCGTTCGTGGGCGGCATCATCTGGGCTGCCAACCCGGACAACATCTGGTGGGCCGGGACGTTCTCGGCGATCGTGCTCGGCGTCCTGCTGTTCGTCCTGCGCACCCCCAAGCCGGGCGACCCGGGCTACGCCGCCATCGGCAAGGAGGCCGCCGAGGCCGGCTCCACGGCGCCCCAGTTCGACAAGGCCGCCGTGGGCCGGCTGTTCAAGGACCGTTCGTTCCTCGGCTTCATGCTCCTGATGTTCGGGACCGCGGCGCTCTACGACGTGTTCGACCAGCAGTTCGCGATCTACTTCGCCCAGCACGCCACCGAGGTCGCCGACCCGCAGGTGCTCTTCAACCAGGTCGTGGGCGTGCAGATCCTGCTCGAGGCCGCCGTGATGGTGGCCATGCCGTTCCTCATCAACAAGATCGGTGCCAAGTGGGGGCTCGTCGCCTTCGCCGCCGTCCTGGTGATCCGCGTGCTCGGCTCGGCGTTCATCGTCGAGACGGAGATGCTCATCGTGTGGCGTCTGCTCGCCGCGATCGAGATGCCGCTCATGCTGGTCTCGGTGTGGAAGTACATCACCCGCATGTTCGACGTCAGCATCTCCGCGACCGCGTACATGGTCGGGTTCAACATGGCGAAGGCCGCCGGTGTCTTCATCTTCTCCTGGGTGTTCGGCATGTTCTACGACGCCATCGGCTTCAGCGCCTCCTACATCGTCATGGGCGTCGTGGTCGCCGCGGTCACCCTCGCCGCGATGTTCCTGATGGGCGACGACCGGGGACGTCGCGACCCCGGCAAGGACGAGGTCGAGGAGGCCGAGGAGACCGGCGCCGTCACGCCCTGAMSTTTNQGQTGKLHALSSLKKPTFWNVGGLFFFYFAVWQLVQTNFSIWAEDAAGMSNSSIGLIFSIVAGVAFCLQPFYGYIQDRLGFRKHLFAWVVLCAAMIGPFFAFVFVPMAESNEILAAVVAGAYLALVLNGGVGVVEAFNERNARANGIEYGHVRLFGSLAGATASFVGGIIWAANPDNIWWAGTFSAIVLGVLLFVLRTPKPGDPGYAAIGKEAAEAGSTAPQFDKAAVGRLFKDRSFLGFMLLMFGTAALYDVFDQQFAIYFAQHATEVADPQVLFNQVVGVQILLEAAVMVAMPFLINKIGAKWGLVAFAAVLVIRVLGSAFIVETEMLIVWRLLAAIEMPLMLVSVWKYITRMFDVSISATAYMVGFNMAKAAGVFIFSWVFGMFYDAIGFSASYIVMGVVVAAVTLAAMFLMGDDRGRRDPGKDEVEEAEETGAVTPPGPT0016855_32DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_LACTOSE_TRANSPORT,PGPT0016855-lacY|MFS_transporter|OHS_family|lactose_permease-K02532NANA
AK018_02896885COG0589Universal stress protein/MSMEI_3859ATGAGCGGCATCGTGGTCGGGGTCAACGACAGCGCGGAGGCCTCCGAGGCCCTGGACTGGGCGGTCGCCGAGGCGCGGGTGAGGGCCCTGCCGCTGACGGTGGTGCAGGTCGCCCCCGAACGGGACGGCGCGGCCCTGGCCCTCGTGCTGGGCGAGCGGCGTGCAGCCCTGGCCGAGCTCGTCGCCGACGCCGAGCAGCGGCTCGGCCCGCTCGACCTGGACCAGGTGGTGGTGCCCGGTCCCGCGGCGGAGGCGCTGCTGCGGGTGTCCGTGGGCGCGGAGATGCTGGTCCTCGGCCGTCGACGGCGGGCCCGGCTCGGGCGGCGCGTCCTCGGCTCGGTCTCGACCACGGTCGTGGAGAACGCGGAGGTCCCCGTCACGGTGGTGCGGCGGGCCCACGACGGGACGGGGGAAGCGCCGTCGGACGACGTCGGCGCCCCGGTCGGGCTGCCGGCGGACCGGCCGCGCATCGTGGTCGGCGTCGACACCTCGCCGCACTCGGTGGCGGCGCTGCGCCACGCCGCCCAGGTCGCGGCGGGCACGGGCGCCGTGCTGGAGCCGGTGTTCGCCTGGCAGATCACCACGCTCGCCCCGCTGCCCGGCTCGTGGGGCTGGGCGCCGCCCATCGACGACTACGAGAGCTTCGCCCGCGACCGGCTGGGCGCCGCCGTCGAGGAGGCCGGTACCGGGTTGGGTCCCGACCGCGTGTTCGCCCACGTGGTGCACGGCCAGGCGGCCCGCGTCCTCATCACACGGGCCGCGGGTGCCGACCGGTTGGTGGTCGGCACCCCCCGCCAGGGCGGTTTCGATCGGCTGGTGCTGGGGTCGACCAGCCGGCAGGTCCTGGACCACGCCGGCTGCCCGGTCACCGTCGTCAGGGCGTGAMSGIVVGVNDSAEASEALDWAVAEARVRALPLTVVQVAPERDGAALALVLGERRAALAELVADAEQRLGPLDLDQVVVPGPAAEALLRVSVGAEMLVLGRRRRARLGRRVLGSVSTTVVENAEVPVTVVRRAHDGTGEAPSDDVGAPVGLPADRPRIVVGVDTSPHSVAALRHAAQVAAGTGAVLEPVFAWQITTLAPLPGSWGWAPPIDDYESFARDRLGAAVEEAGTGLGPDRVFAHVVHGQAARVLITRAAGADRLVVGTPRQGGFDRLVLGSTSRQVLDHAGCPVTVVRANANANANANA
AK018_02897714hypothetical proteinATGGACGACGTCGGACGCAACGCCGGTCGGGACGAGCCCGGACGCGAGCCGGAGCCGGCCGACCACCTGCCCAGACCCGCCGAGCGGCACGGGCTGCCGGCGCCCGACCCGGCCCCCGGCCGGCCCGCCGACCTGGACCCGCGTCTGGCGCAGTTCTCGGGGGTGGTCGGCGAGGTGCACGACCCGCTCACCTGGGGCCTGGACCTGGAGGACGAGGCCCTGACGGGTTGCACGGACGACGCCGACCCGACGTCGGACCGGTTCGTGCGCTCGTACCGCACGTTCGCGGGCGAGGCGTTCGAGGTCGAGACGTTCCGTCACCCCGTCACGGACGACACGGTCGAGGACGTGGTGCGGGCCGCGGCGAGCGGCGCCCTGGCCGCGCCGCTGCACGCGGACATCGCCTCGCCGGTGGAGCCCGACGTCGACCCGGCGCCGCCGCGCGGGGACTTCGCCGACGACTACGCCGACTACCGCAGCGCGATGCGCGCCATCGTGACCGAGGTGGACGCCGTGGACCTCGAGGAGTCGCGCCTGGCCGTGGACGGCACCGAGCGCGACGCGCTGCGGGTGCGAGTCCGCGACGTGTGCGCCGTGCACGTCGTCGCCGGCGGACGGGCCCTCGTGGTCACCGGTCCGGCGGACCTGGTGGAGCGCGTCGAGGTGATCACCCGGCCGATCAGGTCGCTGCTGCACCAGCAGGGTCGCCGCTGAMDDVGRNAGRDEPGREPEPADHLPRPAERHGLPAPDPAPGRPADLDPRLAQFSGVVGEVHDPLTWGLDLEDEALTGCTDDADPTSDRFVRSYRTFAGEAFEVETFRHPVTDDTVEDVVRAAASGALAAPLHADIASPVEPDVDPAPPRGDFADDYADYRSAMRAIVTEVDAVDLEESRLAVDGTERDALRVRVRDVCAVHVVAGGRALVVTGPADLVERVEVITRPIRSLLHQQGRRNANANANANA
AK018_028982505clpC1_1COG0542ATP-dependent Clp protease ATP-binding subunit ClpC1ATGCTCAACCACAACTACATCGGCACGGAGCACATCCTCCTCGGCCTCATCCACGAGGGCGAGGGCGTGGCCGCGAAGGCGCTGGAGTCGTTGGGCATCTCGCTCGACGGCGTCCGCGCGCAGGTCACCGAGATCATCGGCGAGGGCCAGCAGGCGCCCAGCGGGCACATCCCGTTCACGCCCCGCGCCAAGAAGGTCCTGGAGCTGTCGCTGCGCGAGGCGCTGCAACTCGGCCACAACTACATCGGCACCGAGCACATCCTCCTCGGCCTCATCCGCGAGGGCGAGGGCGTGGCCGCCCAGGTGCTGACCAAGATGGGCGCCGACCTGAACAAGGTCCGCCAGCAGGTCATCCAGCTGCTGTCCGGCTACCAGGGCAAGGAGCCCGTCTCCGCCGGCGGCCCCCAGGAGGGCCAGCCCTCCGGCTCGGCCGTGCTGGACCAGTTCGGGCGCAACCTGACGCAGGCGGCCCGCGAGGGCAAGCTCGACCCGGTCATCGGCCGCAAGCAGGAGGTCGAGCGGGTCATGCAGGTGCTGAGCCGCCGCACCAAGAACAACCCCGTGCTGATCGGCGAGCCCGGCGTCGGCAAGACCGCCGTCGTCGAGGGGCTCGCGCAGGACATCGTCCTCGGCGACGTCCCCGAGACACTCAAGGACAAGCAGCTCTACACGCTCGACCTCGGCGCCCTGGTCGCCGGGTCGCGCTACCGCGGTGACTTCGAGGAGCGCCTCAAGAAGGTGCTCAAGGAGATCCGCACCCGCGGCGACATTATCCTGTTCATCGACGAGATCCACACGCTCGTCGGGGCCGGTGCCGCCGAGGGCGCGATCGACGCCGCCAGCATCCTCAAGCCGATGCTGGCCCGCGGCGAGCTGCAGACCATCGGTGCCACCACGCTCGACGAGTACCGCAAGCACGTCGAGAAGGACCCGGCCCTGGAGCGCCGCTTCCAGCCGATCCAGGTCAACGAGCCCTCGATGGAGCACGCCATCGAGATCCTCAAGGGTCTGCGCGACCGCTACGAGGCCCACCACCGGGTGTCCATCACGGACTCCGCGCTGGTCTCGGCCGCGCAGCTCGCCGACCGGTACATCAACGACCGGTACCTGCCGGACAAGGCGATCGACCTCATCGACGAGGCGGGCGCGCGCCTGCGCATCCGCCGCATGACGGCCCCGCCGGAGCTCAAGGAGCTCGACGAGCAGATCGCCGAGGCACGCCGCGAGAAGGAGTCGGCGATCGACGAGCAGGACTTCGAGAAGGCCGCCGGCCTGCGCGACACGGAGAAGCAGCTCACGCAGACCCGTGCCGACAAGGAGAAGGCCTGGAAGTCCGGCGACCTCGACACAGTCGCGGAGGTCGACGACGAGCTGATCGCCGAGGTCCTCGCGATGTCGACCGGCATCCCGGTCGTCAAGCTCACCGAGGAGGAGTCCAGCAAGCTCCTGCACATGGAGGACGAGCTGCACAAGCGCGTCGTCGGCCAGGAGGCCGCGATCAAGGCGCTGTCGCAGGCGATCCGCCGTACCCGTGCCGGGCTGAAGGACCCCAAGCGTCCCGGTGGCTCGTTCATCTTCGCCGGCCCCACCGGCGTCGGGAAGACGGAGCTGGCCAAGGCGCTCGCCGAGTTCCTGTTCGGGGACGAGGAAGCACTCATCCAGCTCGACATGTCCGAGTTCTCGGAGAAGCACACCGTCTCGCGGCTGTTCGGCTCGCCCCCCGGCTACGTCGGGTACGACGAGGGCGGCCAGCTCACCGAGAAGGTCCGGCGCAAGCCGTTCTCCGTGGTCCTGTTCGACGAGGTGGAGAAGGCGCACGCCGACATCTTCAACTCGCTGCTGCAGGTGCTCGAGGACGGTCGCCTCACCGACTCCCAGGGTCGCGTGGTCGACTTCAAGAACACCGTGATCATCATGACCACGAACCTCGGTACGCGGGACATCGCCAAGGGCGTCCAGACCGGCTTCAACGCCGGCGGCGACCTGGTGACCGACTACCAGCGGATGAAGGCCAAGGTCAACGAGGAGCTCAAGCAGCACTTCCGGCCCGAGTTCCTCAACCGCGTCGACGACACCGTCGTGTTCCCGCAGCTCTCGCAGGACGAGATCATCGAGATCGTCGACCTGGAGATCGCCAAGCTGGACAAGCGTCTGCGCGACAAGGACATGGGCATCGAGCTCACGCCGACCGCCAAGTCGCTGCTCGCCGAGAAGGGTTACGACCCGGTGCTCGGCGCCCGGCCGCTCAAGCGGGCCATCCAGCGGGAGATCGAGGACCAGCTGTCCGAGAAGATCCTGTTCGGCGAGCTGTCGCAGGGCGAGATGGTGCTGGTCGACGGCCAGGGCGAGGGCATCCTCGGGGAGTTCACCTTCCGCGGGGTGCCGAAGTCCGAGCACGAGCGTGGCCCCGTCTCCGTGGGCGCCAACGCGGCGCTCGACGCCCCGACCGGCGTGTCGGTCAAGGACCTGCCGCCCACCGGACAGATGCAGGCCGGCGCGGAGTGAMLNHNYIGTEHILLGLIHEGEGVAAKALESLGISLDGVRAQVTEIIGEGQQAPSGHIPFTPRAKKVLELSLREALQLGHNYIGTEHILLGLIREGEGVAAQVLTKMGADLNKVRQQVIQLLSGYQGKEPVSAGGPQEGQPSGSAVLDQFGRNLTQAAREGKLDPVIGRKQEVERVMQVLSRRTKNNPVLIGEPGVGKTAVVEGLAQDIVLGDVPETLKDKQLYTLDLGALVAGSRYRGDFEERLKKVLKEIRTRGDIILFIDEIHTLVGAGAAEGAIDAASILKPMLARGELQTIGATTLDEYRKHVEKDPALERRFQPIQVNEPSMEHAIEILKGLRDRYEAHHRVSITDSALVSAAQLADRYINDRYLPDKAIDLIDEAGARLRIRRMTAPPELKELDEQIAEARREKESAIDEQDFEKAAGLRDTEKQLTQTRADKEKAWKSGDLDTVAEVDDELIAEVLAMSTGIPVVKLTEEESSKLLHMEDELHKRVVGQEAAIKALSQAIRRTRAGLKDPKRPGGSFIFAGPTGVGKTELAKALAEFLFGDEEALIQLDMSEFSEKHTVSRLFGSPPGYVGYDEGGQLTEKVRRKPFSVVLFDEVEKAHADIFNSLLQVLEDGRLTDSQGRVVDFKNTVIIMTTNLGTRDIAKGVQTGFNAGGDLVTDYQRMKAKVNEELKQHFRPEFLNRVDDTVVFPQLSQDEIIEIVDLEIAKLDKRLRDKDMGIELTPTAKSLLAEKGYDPVLGARPLKRAIQREIEDQLSEKILFGELSQGEMVLVDGQGEGILGEFTFRGVPKSEHERGPVSVGANAALDAPTGVSVKDLPPTGQMQAGAEPGPT0014585_1898DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014585-clpC-K03696NANA
AK018_02899669COG05465'-nucleotidaseGTGACCGCACCCCTCGTCCTGCTCGACCTCGACGGCACCCTCATGGACTCCGCGCCCGGCATCACGGCGTCGGCCGCCCACGCCTTCCGCGCGCTGGGACTCCCGGTGCCCGACGCCGGGACCCTGCGGTCGTTCGTCGGGCCGCCGATCACGGACTCCTTCCCCGCCCACGGGGTCCCGCCCGAGCGGGTGATGGAGGCGGTGACCGCGTACCGGGCCGCGTTCACGGCCGGCGGCATGTACGACAACGCCGTGTTCGACGGCGTCCCGGAGGTGCTGACCGCGCTGCGCGACGCCGGGTGCGCGCTCGTCGTGGCGACGTCCAAGCCCGAGTTGTTCGCCAAGCCCATCTGCGACCGCTTCGGCCTGACCGGGCTGGTCGACGCCGTGCACGGCGCCCCGCCGGACGAGGCACGGTCCACGAAGGCCGACGTCATCGCCGCGGCCCTCGACGCGCTCGGTCGCCGCTCCCCGGTCGCCGCGGACGACGGGCCTGTGGTGATGGTCGGCGACCGGGAGCACGACGTGCACGGCGCCGCGGCGCACGGCATCGACTGCCTGGGCGTCGCCTGGGGGTATGCGCGGCCGGGCGAGCTCGAGGCCGCAGGTGCCGTCGGGACGGTCGACGACGTCGCCGCGCTCGGGGCGGCGGTCCTCGCCCGGCTCTGAMTAPLVLLDLDGTLMDSAPGITASAAHAFRALGLPVPDAGTLRSFVGPPITDSFPAHGVPPERVMEAVTAYRAAFTAGGMYDNAVFDGVPEVLTALRDAGCALVVATSKPELFAKPICDRFGLTGLVDAVHGAPPDEARSTKADVIAAALDALGRRSPVAADDGPVVMVGDREHDVHGAAAHGIDCLGVAWGYARPGELEAAGAVGTVDDVAALGAAVLARLPGPT0001730_2922DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091NANA
AK018_029001611mppACOG4166Periplasmic murein peptide-binding proteinATGAGAACCCGGCGTACCAGACTCGCGACCATCACGATCGCCACCGCCCTCACCCTGTCCGCCTGCGGGTCCACGGACTCCGGCGAGACCGGCTCCGCCGAGAGCGCGGCGCCCGAGGACGGCGGCGGGTCGTTCTCCATGGCCGTCACGGACCCCGACCTGCTGATCCCCGGCCGGCAGAGCGTGGCGTTCGACTTCGCGATGACCGTCTGGGCACCCCTGACCTTCCTCGAGCTGGACGGTGAGCTCACCTACGTGCAGGCCGAGTCGGTCGAGAGCGAGGACCAGCAGACCTGGACCGTCACGCTGCGCGACGGGTGGACGTTCCACGACGGCTCACCGGTCACGGCGCAGGACTACGTCGACACGTGGAACACCGTCGCCTACGGTCCCCACGCCTTCGAGAACTCCGGCCAGCTGGCCGCGATCCAGGGATACGACGACCTCAACCCCGCCGACGGAGAGCCCACCACCGAGGAGATGTCGGGACTCACGGTCGTCGACGACCTGACCTTCGAGGTCGAGCTGGAGGGTCCGGACAGCCAGTTCCCGCTCCAGCTCAGCCAGGCGCAGACGGCGCTCTACCCGATGCCGTCGGAGTCGCTGGAGGATCTGGACGCCTACAACACCCACCCGATCGGCAACGGCCCGTTCGAGCTGGTCGACGACTACGTCGAGGACGAGCCGTTCGTCGTCACGGCCTACGGCGACTACGCCGGCGAGGCGCCGACGACGGACCAGATCACGTTCGTGCCGTACACGGACAACGTGACGGCCTACACCGACGCGCTCGCGGGCAACGTCGACGTCGCCTCGCTGCCCACCAGCCGCATGACCCAGGCCGCCGACGACTTCGGCGACCAGGTGTACGCGTTCGAGGCGCCGGGGATCTCGTTCCTCGGCCTGCCCCTGTGGGTCGAGCGCTACGACGACGTGCGGGTGCGGCAGGCCATCTCGATGGCGATCGACCGCGAGACCATCAACGAGGTCATCTACGGCGGGCAGTACGAGCCGGCGACCGCGTTCACCCCGGCGATCGAGCCGGGGACGCCCGAGGGCATCTGCGGCCAGTACTGCGAGTACCGCCCGGACGAGGCGGCGGCCCTGCTCGAGGAGGCCGGCGGCTTCGAGGGCACGATGGAGATCACGTACCCCGGCGGCGGCGGGCTCGACGAGTTCTACAACGCCATCGCCAACAACCTGCGCCAGAACCTCGGCGTGGACGCCGTCGCGACCCCCACTGCCGACTGGGCCGAGTTCCTCGAGGCGCGCACCGACGAGGGCATCGACGGCCCGTTCTTCTCCCGCTGGGGTGCGCTCTACCCGAGTCAGCAGGCCACGATGCGCGAGCTGTTCCTCGCCACGGGCGGCTGCACCAACTGCGTGCCGTCCTACCCGGAGGACGTCGCCGAGGCCATCGCCGCGGCCGACGCCGCACCGGACGACGGCGGGGAGTCCTACGCCGCGGTCCAGGAGCTCATCGTCGAGGACTTCCCGTCCCCGCCCCTGTTCTTCGAGACCTACGGCTACGTCACCAGCGACAAGGTCGACGAGCTGGTCACCTCGCCGATCGGCAACCCGAGGCTGACGCACATCGTCCTCGCCGGCTGAMRTRRTRLATITIATALTLSACGSTDSGETGSAESAAPEDGGGSFSMAVTDPDLLIPGRQSVAFDFAMTVWAPLTFLELDGELTYVQAESVESEDQQTWTVTLRDGWTFHDGSPVTAQDYVDTWNTVAYGPHAFENSGQLAAIQGYDDLNPADGEPTTEEMSGLTVVDDLTFEVELEGPDSQFPLQLSQAQTALYPMPSESLEDLDAYNTHPIGNGPFELVDDYVEDEPFVVTAYGDYAGEAPTTDQITFVPYTDNVTAYTDALAGNVDVASLPTSRMTQAADDFGDQVYAFEAPGISFLGLPLWVERYDDVRVRQAISMAIDRETINEVIYGGQYEPATAFTPAIEPGTPEGICGQYCEYRPDEAAALLEEAGGFEGTMEITYPGGGGLDEFYNAIANNLRQNLGVDAVATPTADWAEFLEARTDEGIDGPFFSRWGALYPSQQATMRELFLATGGCTNCVPSYPEDVAEAIAAADAAPDDGGESYAAVQELIVEDFPSPPLFFETYGYVTSDKVDELVTSPIGNPRLTHIVLAGPGPT0021015_4834DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021015-oppA|mppA-K15580NANA
AK018_029011425hypothetical proteinGTGGCACCGATCGACACCACGAAGGACCGTCCTGCCGTCCCGGCCGCGGGACCCGGCCAGGACCTGCACGACGTCCTGGACCACGTCCGAGGCTTCGCACCGCTGAACGGCTTCCCGGGCGTCGACGAGATCGTCGACCGCGCGGACCGGATCGCCGCCGCGCACCCGGGCGTCGTCGCACGACGCCGGATCGGCACGAGCCGCCTCGGCGAGCCGCTCCACGAGTACGTCGTCGGTGACGGGCCCGACGTGCTCGTCATCGGCGGCGTGCACCCCAACGAGCCCATCGGCTTCCACACCGCGCTGCAGCTCCTCGACGACCTGGCCGCGGGCGTCGGGCCCGCGGCCGCCGCCGGTGCCCGGTGGCACGTGGTGCCCTGCATCGACCCGGACGGCGCCCGGCTCAACGAGTCCTGGTTCGCCGACCCCGGCGACCGGGTCGACTACGCGCGCGGCTTCTACCGTCCCGCACCCGACGAGCAGGTGGAGTGGTCGTTCCCCCTCGACCACGGCACCGCCTACTTCGACCGGTCGATCCCCGAGGCCGTCGCCGTGGCCCGGCTCGTGGACCGGCTGCGACCGGCCATGGTCGTCGGGCTGCACAACGGCGAGCTCGGCGGCGTCTACTACTACCTGGACCGCGACGTCGACGGCGTCGTGCCCGCGTTGCAGGAGCTGCCCGCGCGGCTCGGCCTCCCCCTGGACCGCGGTGAGCCCGAGACCCCCGAGTCCGTCCCGCACGCACCCGGGGTGTTCCGGACGCTGAGCAGCGCCGGCACCCACGACTGGCTCGTCGAGCAGGGGATCGACCCAGCCGGCCACGTCAGCGGCGGAGGCCTGGCCGACTACGTGGCCCCGTACGGCAGCGTGACCTTCGTCGCCGAGCTGCCGTACTGGTCGCACGCCGACTCCGACGACGTCAGCGACGCCGGCGTGCCGTACGCCGACGTCCTGCGACGCAAGGCCGACGGCCTCACCGAGCTCGGCGCCGTGCTGACCGAGGCGCTGGACCGGGCCCGCCCGCACCTGCGGATCGACTCACCGCTGCGGAGGGCCAGCGAGGTCTTCGTGCCCCACATGGCCCTCGCCGGGCGGGCGGAGCGGGAACGCGCCGCCACGGTCGAGCCGGGGCGCTCCGCCACCGTCGCGGAGGTGTTCTCCAACGGCGACCTCGTGCGCTGCTTCCGGCTCCGCTACGGGTCGATGCTCCACCGGGCGCTCACCGCGGAGGTCGTGGCGGGGACCGCGGCCCCGCAGGTGCGCGCCGCGCGCGACGAGCTCGGCCGCCACCTCGAGGCCTGGTACGCCGAGGCGCGCTCGGTCACGGGCCTGACGACCTGGCCCGTCGAGCGGCTGGTGGCCGTGCAGTACGCGAGCACGGTTCTCGTGGCCGCGGCCACCGTGCGCGAGCGGGGCCGGGCATGAMAPIDTTKDRPAVPAAGPGQDLHDVLDHVRGFAPLNGFPGVDEIVDRADRIAAAHPGVVARRRIGTSRLGEPLHEYVVGDGPDVLVIGGVHPNEPIGFHTALQLLDDLAAGVGPAAAAGARWHVVPCIDPDGARLNESWFADPGDRVDYARGFYRPAPDEQVEWSFPLDHGTAYFDRSIPEAVAVARLVDRLRPAMVVGLHNGELGGVYYYLDRDVDGVVPALQELPARLGLPLDRGEPETPESVPHAPGVFRTLSSAGTHDWLVEQGIDPAGHVSGGGLADYVAPYGSVTFVAELPYWSHADSDDVSDAGVPYADVLRRKADGLTELGAVLTEALDRARPHLRIDSPLRRASEVFVPHMALAGRAERERAATVEPGRSATVAEVFSNGDLVRCFRLRYGSMLHRALTAEVVAGTAAPQVRAARDELGRHLEAWYAEARSVTGLTTWPVERLVAVQYASTVLVAAATVRERGRANANANANANA
AK018_02902927dppB_4COG0601Dipeptide transport system permease protein DppBATGACCCGGTTCCTGTCGCGACGGCTCGTCGAGCTGGTCGTCGTCTTCCTGGGCGTCACCTTCATCGTGTACGCGATGGTGTTCACCCTGCCCGGCGACCCGATCGCCGCGCTCGGCGGCGACCGGCCGCTGCCCGAGAACGTCGTGGCGCAGCTGCGGGCGGAGTACCACCTGGACCTGCCGCTGTGGCAGCAGTACCTGCACTACCTCGGCGGCGTGCTCACCGGCGACCTCGGCACCACGTTCACCGGCCGGCCCGTGTCCCAGGCGATGGCGTCCCGCTGGCCGGTGACGATCACCCTGGCGCTCAGCGCGTGGGCGCTCGAGATGATCGTCGGCGTCCTGCTCGGGCTGGCCGCGGGCCTGCGGCGCGGGAGCATCCTCGACCGCGGCGTCCTCCTGGGCACGGTGCTGGCGACCTCGATCCCGGTGTTCGTGCTCGGGGTCTCCGCCCAGCTCGTGTTCGGCCTCGAGCTCGGGTGGTTCCCGATCGCGGGTACCTCCGAGGGATGGCCGGCCTCCTACGTGCTGCCCGCGGCGATCGTCGCCCTGTACGGACTGTCGAGCGTGTCGCGGCTCATGCGGGGCAGCGTCGCCGACACGATGCGCAGCGACTTCGTGCGGACGCTGGTCGCCAAGGGCATGCCCCGGCACGACATCGTCGGCGTGCACGTCATGCGCAACTCGGCCGCGCCCGTGCTGACGTTCCTCGCGATCGAGCTCGGCTACCTCCTCGGCGGCACCGTGGTGATCGAGGGCATCTTCAACCTGCCCGGGATCGGCCAGCTGCTCTTCGAGTCCATCCGTACCCACGAGGGCCCCACCGTCGTCGGCGTCACCACCGCGCTGATCGTAGTCTTCCTCGTCACCAGCGTGCTGGTCGACGTGCTGTCCTCCCTGCTCGACCCGAGGATCCGTCATGAGTGAMTRFLSRRLVELVVVFLGVTFIVYAMVFTLPGDPIAALGGDRPLPENVVAQLRAEYHLDLPLWQQYLHYLGGVLTGDLGTTFTGRPVSQAMASRWPVTITLALSAWALEMIVGVLLGLAAGLRRGSILDRGVLLGTVLATSIPVFVLGVSAQLVFGLELGWFPIAGTSEGWPASYVLPAAIVALYGLSSVSRLMRGSVADTMRSDFVRTLVAKGMPRHDIVGVHVMRNSAAPVLTFLAIELGYLLGGTVVIEGIFNLPGIGQLLFESIRTHEGPTVVGVTTALIVVFLVTSVLVDVLSSLLDPRIRHEPGPT0021020_1574DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021020-oppB-K15581NANA
AK018_02903888oppC_2COG1173Oligopeptide transport system permease protein OppCATGAGTGAGCACATCGTCGCCACCGAAGCCCCCGCCGTCGTCGCCCGAGGCGTCTGGGCGACCGTCCGCCGTCGTCCGCTGTTCTGGACCTCGCTGGCCGCGCTCGGGGTGCTGCTCGTCGTCGCCGCGTTCCCCGGCCCGATCGCCGCGCTGCTCGGCCAGCCGGACCCCCGGGCCTGCGACCTGTCCCTGTCCGGGCAGCCACCCGGGGACGGCCACCCGTTCGGCACCGACATCCAGGGCTGCGACGTCCTGGCCAACGTGCTCTTCGGCACACGGACGTCCCTGTTCATCGGGCTGACGACGACGGCGCTCTGCCTCGTCGTCGCCCTGGTGCTCGGCACCGTGGCCGGCTACTTCGGCGGCCCGGCGGACCGGGTGATCGCCCGCCTGACCGACGTGTTCCTCGGCTTCCCGTTCCTGCTCGGCGCCATCGTGGTGCTGAACAGCGCCCCCGAGCGCACCCCGCTGCTGGTCGCCGTCGTCCTCGCCTTCTTCTCCTGGCCCACGCTCGCACGGCTCGTGCGCGGGTCCGTCCGGTCGGTGCGGGAGGCGGAGTTCGTCCAGGCCGCGCACGCGCTGGGCTTCTCCCACGGCCGCATCGTGCTGGGGCACGTGCTGCCGAACTCGCTCGGCCCGGTCCTGGCGATCGCCACCACCATGGTCGGCGGCGTGATCGTCGCCGAGTCGACCCTGACCTTCCTGGGGGTCGGGCTGGTCCAGCCGACCATCTCCTGGGGTCTGCAGCTGTCCACGGCGCAGACGTACTTCCAGACCGCCCCCCACACGCTGATCTTCCCCAGCCTGTTCCTCACCGTCACGGTCGTCAGCCTCATCATGCTCGGCGACATCCTGCGTGACGCCCTCGACCCGAAGGGACGTTCATGAMSEHIVATEAPAVVARGVWATVRRRPLFWTSLAALGVLLVVAAFPGPIAALLGQPDPRACDLSLSGQPPGDGHPFGTDIQGCDVLANVLFGTRTSLFIGLTTTALCLVVALVLGTVAGYFGGPADRVIARLTDVFLGFPFLLGAIVVLNSAPERTPLLVAVVLAFFSWPTLARLVRGSVRSVREAEFVQAAHALGFSHGRIVLGHVLPNSLGPVLAIATTMVGGVIVAESTLTFLGVGLVQPTISWGLQLSTAQTYFQTAPHTLIFPSLFLTVTVVSLIMLGDILRDALDPKGRSPGPT0021025_2300DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021025-oppC-K15582NANA
AK018_029041416dap_2D-aminopeptidaseATGAGTGCCGCACCCGACGCCGTCCTGCGCAGCATCGCGCCCTACCTCGCCGAGTGGGCGACCTTCCACGCCGACTACCGCGGAGCGCCGGGCCTCCAGCTCGCGGTGGCGTACCGCGGCGAGGTCCTGCTCGACGTCGCGTGGGGGCGGGCGAGCACGGAGACCGACGAACCGCTGACCACCGAGCACCTGTTCCGCGTCGCCTCGCACTCCAAGACGTTCACCGCGGTGATGGTCATGCGGCTCGTGGAGGCGGACCTGCTGCGCCTCGACGACCGGCTCGGCGAGCTCGTCGCCGACCTCGCCGGCACGGAGGCCGCCGAGCTCACCGTCCGCGAGCTGCTCGGCCACCAGGGCGGCGTCATCCGCGACTCGTCCGACGGCGACTTCTGGCAGCGGCACCGGCCGTTCCTCGACCGCGACGAGCTGATCGAGGTGGTGGGCCGCGAGGGGATCGTCTACGCGCCGAACCACACGTTCAAGTACTCGAACGTGGCCTACGGGCTCCTCGGGCTCGTCGTCGAGCGCGTGACCGGCCTGTCGTACGCCAAGGTCGCGGACGAGATGATCGTCGGCCCGCTCGGCCTGCGCCGCAGCGGCCCCGAGTACGCCGCCGACCGCGCCGCCGAGTACGCCGCCGGGCACACCGGACGTACGGCGCACGACGACGGACGGCGGGTCGTCCCGCACGTCGACACCCGGGCGCTCGCGGCGGCCACCGGCTGGTACTCCACGGCGCGGGAGATGGTGGTCTTCGGCTCGGCGCACGTGCTCGGCGACGAGACCCTGCTGGCCGACTCCAGCAAGCGGCTGATGCAGCGCACGGAGTCGGTCGTCGAGGTGCGGGGCCGGGAGATCGGCCGCTACGGGCTCGGGCTGGACCGACGTCGGATCGGCGAGCGTGAGCTGGTCGGGCACTCCGGCGGCTACCCGGGCCACATCACGCGGACCTGGATCGACCCCGTCGACGGGCTGGTGGTGAGCGCCCTGACCAACGCCATCGACGGGCCCGCCGACCCGATCGCCACCGGCGTCGTCCAGATCGTCGACCTGGCGCTGCGGGCCGCGGCCGAGGAGGCGGACCCGGTGCCGCCGGACGCACCGGTCGGCCGGTACGCCAACCTGTGGGGGGTGAACGACGTCGTCGACCTCGGCGGGATCCTGCACGTGATCGAACCGCGCCTGCCCGAGCCGGCCACGGCCCACCAGCGCCTGGTGGCCGGGCAGGACGGGCTCCGGCTCGAGCCGGTGCCCGGGTTCGGCGCCACCGGCGAGGACGTGTCCGTCGAGCGGGACGACGACGGCGCGGTCACGGCCGTCCGGCTCGGCGCCATGACGGCGTGGCCCGTGGAGACCTACCGTGCGGCGATGGCTTCCGAGGATCCCGGCGCGCGGCTCGGGAGAATGTCGCTATGAMSAAPDAVLRSIAPYLAEWATFHADYRGAPGLQLAVAYRGEVLLDVAWGRASTETDEPLTTEHLFRVASHSKTFTAVMVMRLVEADLLRLDDRLGELVADLAGTEAAELTVRELLGHQGGVIRDSSDGDFWQRHRPFLDRDELIEVVGREGIVYAPNHTFKYSNVAYGLLGLVVERVTGLSYAKVADEMIVGPLGLRRSGPEYAADRAAEYAAGHTGRTAHDDGRRVVPHVDTRALAAATGWYSTAREMVVFGSAHVLGDETLLADSSKRLMQRTESVVEVRGREIGRYGLGLDRRRIGERELVGHSGGYPGHITRTWIDPVDGLVVSALTNAIDGPADPIATGVVQIVDLALRAAAEEADPVPPDAPVGRYANLWGVNDVVDLGGILHVIEPRLPEPATAHQRLVAGQDGLRLEPVPGFGATGEDVSVERDDDGAVTAVRLGAMTAWPVETYRAAMASEDPGARLGRMSLNANANANANA
AK018_02905561hypothetical proteinATGACGACCGACGACGTGCGTTCCCCCGACCAGCCCGACGACGGCGCGGTGCCGCCCGCGCCGGACGCCCTCGACGCCGAGCGGCTCGAGTTCATCGAGAACTTCGCCTCCGCCTGGGAGGCGCAGAACGGCGCCCGGATGGACGGGCGGGTCCTGGGCCTGCTGCTGATCTCCGACGAGCCGTTCATGTCGTCGACCCGGATCGCCCGGCTGCTGCACGCCAGCGCGGGCGCCATCTCGATGTCGACGCGCGCCCTGGTGACGGTCGGCTTCATCGTCCGTCACACCGTGCCGGGGGAGCGGCGCCACTACTTCCGGGTGGAGGACGACGTCTGGGGTGCGTTCCTGGCCGGCGAGCGCGAGTACCTGCGCCGCATGGCGGCCGTGATCCGCTCGGGGCTGCAGATGGAGGTGGGTCGCCGCGAGGGGCCGCACACCCGACTGACCAACGCGAACCGCTACATGACCTGGCTGGAGGGGTACCACCGCAAGATGCTGGAGGACTGGTACGCCTACCGCGACCAGGTCGAGGCGGGGACCGACACCGAGGAGCTGCCATGAMTTDDVRSPDQPDDGAVPPAPDALDAERLEFIENFASAWEAQNGARMDGRVLGLLLISDEPFMSSTRIARLLHASAGAISMSTRALVTVGFIVRHTVPGERRHYFRVEDDVWGAFLAGEREYLRRMAAVIRSGLQMEVGRREGPHTRLTNANRYMTWLEGYHRKMLEDWYAYRDQVEAGTDTEELPNANANANANA
AK018_029061626gsiA_3COG1123Glutathione import ATP-binding protein GsiAATGACCCCGCCCGTGCTCTCGATCGACGGGCTGACCGTCGACTTCCGCACGTCCGACGGCACCGTGGTGCCTGCGGTGCGCGACGTCTCGCTGGACGTGGGTGCCGGGGAGATCGTCGCCGTCGTCGGCGAGTCCGGGTCCGGCAAGTCCGTGACCGCGATGAGCGTGCTCGGTCTGCTGCCGCCGAACGCCCGCACGGCGGGCAGCATCCGGCTCGCGGGCACCGAGCTGGTCGGCGCCGACGCGGCGCGGCTGGCCTCGGTGCGGGGGCGCCGGGTGGCCATGGTCTTCCAGGACCCCTTCGGGTCGCTGGACCCCGTCTTCACGGTCGGTTTCCAGATCCGCGAGGTGCTGCGCCGGCACCGGCCCGAGATGTCGGCCGCGCAGCGGCGGTCCCGGGCCGTGGACCTGCTGCGCCTGGTCGACGTCCCCGAACCGGAGTCCCGCGTGCGCGCCTATCCGCACCAGCTGTCCGGCGGCCAGGCCCAGCGGGTGGTGATCGCCATGGCGCTGGCTTGCGACCCCGAGGTCCTCATCGCCGACGAGCCCACCACCGCGCTCGACGTCACCGTGCAGCGCGAGATCCTCGACGTGCTGCTGCGCCTGCGCGACACGGCCGGCGTCGCGGTCCTGCTCATCACGCACGACATGGGCGTCGTCGCCGACGTCGCCGACCGCGTCGTGGTCATGCGGCACGGTGCGGTCGTGGAGAGCCAGGACGTGGGCCCCCTGTTCGCCACGCCTCGGGCCACCTACACGCGTGAGCTCCTCGCCGCGGTCCCGCGGCTGGAGGCCGCCCACCGCCCCGACCCGGAGGCCGCGGAGGCCGTGCTGACCGTGGAGGGGCTGGTCGTGGAGTACCAGCGCCGACGACGGACCACCCGCGCCGTGGACGGGGTCGACCTGCACATCGCCTCCGGCAGCGTGCTCGCGCTGGTCGGGGAGTCGGGGTCCGGCAAGTCGACGATCGGCAAGGCCGTCACAGGACTGGCCCCGGTGCACTCCGGGTCCGTCGTCGTCGACGGCGTGGACGCGGTCGACTCGCCCCGCCGGACGCTGCGTGCGTTGCGCCGGCGCATCGGCGTGGTGTTCCAGAACCCGCTCGGCGCGCTCGACCCCCGGCACACGATCGGCGAGGCCGTCGGCGAGCCGCTGCGCGTGCACCGACGGATGCGAGGCACGGCGCTGGACCGTCGGGTCGGCGAGCTGCTCGATGCCGTCGAGCTGCCGGGCCCCTGGGCGGGACGGTTCCCGCACGAGCTCTCGGGAGGTCAGCGCCAGCGCGTCGCGATCGCCCGGGCCATCGCCCTGGACCCCGTGCTGCTCGTCGCCGACGAACCCACCAGCGCGCTCGACGTGTCGGTCCAGGCGACCGTGCTCGACCTGTTCCGCCGCATCCAGCGCGAGCTGCGCTTCGCCTGCCTGTTCATCAGCCACGACCTCGCCGTGGTCGACGAGCTCGCCGACCGGGTCGCCGTCCTGCACCGGGGGCGACTGGTCGAGACCGGACCCCGGGTCGACGTGCTGACCCGACCGGCCGAGGACTACACGCGGCGTCTGCTGGAGGCCGCCCCGGTGCCCGACCCCGCCCGCTCCCGCCGCGCCGCCGCGCGGCTGGCGGGCTGAMTPPVLSIDGLTVDFRTSDGTVVPAVRDVSLDVGAGEIVAVVGESGSGKSVTAMSVLGLLPPNARTAGSIRLAGTELVGADAARLASVRGRRVAMVFQDPFGSLDPVFTVGFQIREVLRRHRPEMSAAQRRSRAVDLLRLVDVPEPESRVRAYPHQLSGGQAQRVVIAMALACDPEVLIADEPTTALDVTVQREILDVLLRLRDTAGVAVLLITHDMGVVADVADRVVVMRHGAVVESQDVGPLFATPRATYTRELLAAVPRLEAAHRPDPEAAEAVLTVEGLVVEYQRRRRTTRAVDGVDLHIASGSVLALVGESGSGKSTIGKAVTGLAPVHSGSVVVDGVDAVDSPRRTLRALRRRIGVVFQNPLGALDPRHTIGEAVGEPLRVHRRMRGTALDRRVGELLDAVELPGPWAGRFPHELSGGQRQRVAIARAIALDPVLLVADEPTSALDVSVQATVLDLFRRIQRELRFACLFISHDLAVVDELADRVAVLHRGRLVETGPRVDVLTRPAEDYTRRLLEAAPVPDPARSRRAAARLAGPGPT0004435_5620DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
AK018_02907639paiBCOG2808Protease synthase and sporulation protein PAI 2ATGCGACACACCCCGCACTACGTCCTGGACGACGTCGAGGAGGTCCGCCGCCTGGTCCGCGACAACCCGTGGGCGACCTTCGTGTCGGCGACCTCGCAGGGCCTGGTGGCCTCGCACTACCCGATCCTGCTGGACGAGCAGGCCGACGAGCTCACCGTCCTCAGCCACGTGGGCCGACCCGACGACGAGCTGCTCGAGCTCGGCTCGCACGAGATGCTGATCGTCGTCCAGGGGCCCCACGGATACGTCTCGCCGAGCTGGTACGGCGACGCGTCGCTGATCCCGACGTGGAACCACGTCACCGCCCACCTGTACGGCGTGCCGGAGATCCTCGACGCCGAGGAGAACTACGTCACGCTGTCGCGGCTGGTCGACACGTTCGAGCAGCATGTGGCCCACCCGCGCAGCCTCTCGACCGACCCCGCCTTCGCCCGCGGGGCAGCCCGTGGCACCGTCGGGTTGCGGATGCGGGTGACCCGGTTCGACGCCCGGCTCAAGCTCAGCCAGAACAAGGCCCCCGAGGTCCGCGGACGCATCCAGGACGCCCTGCACGACGACGGACCCTACGCGAACCCGGCGCTCGCGGCGGAGATGGCGCGGGTGCCGGCCCTGCCGCGCGACGCCGAGGGGGCCGAGTGAMRHTPHYVLDDVEEVRRLVRDNPWATFVSATSQGLVASHYPILLDEQADELTVLSHVGRPDDELLELGSHEMLIVVQGPHGYVSPSWYGDASLIPTWNHVTAHLYGVPEILDAEENYVTLSRLVDTFEQHVAHPRSLSTDPAFARGAARGTVGLRMRVTRFDARLKLSQNKAPEVRGRIQDALHDDGPYANPALAAEMARVPALPRDAEGAEPGPT0014760_1398DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ENVELOPE_REMODELLING_REGULATIONCE-ENVELOPE_REMODELLING_REGULATION_FACTOR,PGPT0014760-paiB|yumE-K07734NANA
AK018_029081482nfdA_5N-substituted formamide deformylaseGTGAGCCTCGCGGGGCGGCCGGCTGCCGAGCGCCTCGTCCTGGCCGGGGTCCGGGTGCACGGGCGCGGCGACGCGGTGCGCGACGTCGTCCTCGCCGACGGCCGGGTCGAGCGGTTCACCGCTCCGGGTCGGGTGCGCGACGCCGAGCGGGTCGACTGCGACGGCGCCACCCTGCTGCCTGGGCTGTGGGACCACCACGTCCACATGGAGCAGTGGGCCCTGGCGCGGCGCAGGCTCGACCTGTCCGGGACGGGCAGCGCCGCCGAGGCGGCCGCCGTCGTGCGTGCTGCGCTGGCTGATCCGCCCGCCGGGCTGGGCGCCGGTGAGCTGCTGGTGGGCTACGGGTTCCGCGACGGGCTCTGGCCGGACGTCCCGCGGGCCGCGCTGATCGACGCCGACCGGCCGGTGGTGCTGATCAGCGGTGACCTGCACTGCGCGTGGATGAACCGCGCCGCGATGTCGGTCCTGGGGGTCGAGGGGTGTCCCACGGGGGTGCTGCGCGAGGACGAGGCGTTCGCCGTCAACCGGGTCGTGTCGCGGGTGGACACCGCGACCATGGACCGCTGGGTCCTGGACGCGGCGCGGGCGGCCGCTGCGCGCGGCGTGGTCGGGGTCGTCGACCTCGAGATGGACGGCGCCGTGCCCGCCTGGGAACGCCGGGCGGCGGCGGGGAGCCCGCCGGTGCGGGTCCGCGCGGGCGTCTACCCGGACCGGCTCGAGGTCGAGGTGGCGCGCGGGCTGCGGACGGGCCTCCCGCTCGACGCGGCCGGCCGCGTCGAGGTCGGGCCGCTGAAGATCGTGGCCGACGGGTCGTTGAACACGCGCACCGCCTGGTGCCACGACCCCTACCCGGGTACCGACGGGTTCGGCCGGCCCTCGCTGGCCCCGGAGGAGCTCGAGAAGCTGCTGGTGCGGGGCAGCGAGGCGGGGTTCGTCCCGGCGATCCACGCCATCGGCGACCGTGCCCTGACGGTGGCGCTCGACGCCGTCGAGGCCGTCGGCTGCCGCGGCTCGATCGAGCACGCCCAGCTCGTCACCGCGGCCGACGTGACGCGGATGGCCCGGCTGGGGATGGTCGCGAGCATCCAGCCCGAGCACGCGATGGACGACCGTGACGTCGCCGAACGGCACTGGGCGGGACGTGAGCACCGGGCCTTCGTCGTCGGGTCGCTGGCCCGCGCGGGGGTGCGGCTCGCGCTCGGGTCGGACGCCCCGGTGGCGCCGCTCGACCCGTGGGTGTCGATGGCGGCCGCCGTCGACCGTCACCGTGACGGGCGCGAGGCGTGGCAGGCCCAGGAGGCGATCTCGGTCGATGCGGCGCTGGCCGCCTCGACGTCCACCGGCGGGGTGGTGGCGGTCGGGGACGCGGCCGACCTGGTGGTGGTGCCGGACGACCCGACCCGGCGGGCCGGCGCGGCGTTGCGCTCGACGCCGGTGCTGCTCACCCTGTGCGGCGGTGAGGTGACCGCGGACCTACGGTGAMSLAGRPAAERLVLAGVRVHGRGDAVRDVVLADGRVERFTAPGRVRDAERVDCDGATLLPGLWDHHVHMEQWALARRRLDLSGTGSAAEAAAVVRAALADPPAGLGAGELLVGYGFRDGLWPDVPRAALIDADRPVVLISGDLHCAWMNRAAMSVLGVEGCPTGVLREDEAFAVNRVVSRVDTATMDRWVLDAARAAAARGVVGVVDLEMDGAVPAWERRAAAGSPPVRVRAGVYPDRLEVEVARGLRTGLPLDAAGRVEVGPLKIVADGSLNTRTAWCHDPYPGTDGFGRPSLAPEELEKLLVRGSEAGFVPAIHAIGDRALTVALDAVEAVGCRGSIEHAQLVTAADVTRMARLGMVASIQPEHAMDDRDVAERHWAGREHRAFVVGSLARAGVRLALGSDAPVAPLDPWVSMAAAVDRHRDGREAWQAQEAISVDAALAASTSTGGVVAVGDAADLVVVPDDPTRRAGAALRSTPVLLTLCGGEVTADLRNANANANANA
AK018_029091011galE_3COG1087UDP-glucose 4-epimeraseATGACGGGTATGCCACGCACCCCGCTCGACATCCTGTTCCTCGGCGGCTCCGGCGTCATCAGCTCCGCCTCCGTGCGGCGCGCCGTCGCCCAGGGCCACCGCGTCACCGTGCTCAACCGCGGGCACTCCACCCACCGCGAGCTGCCCGACGACGTCGAACGGCTCACCGCCGACGTCACCGACGACGCCGCCGTGGACGCCGTGCTCGCCGGACGCGACTTCGACGTCGTCGCCCAGTTCCGCGCCTTCTCCCCCGACCACGTCGCCCGCGACGTCGCCCGCTTCACCGGCCGCACGGGCCAGTACGTGTTCATCTCCTCGGCGTCGGCCTACCAGACGCCGCCCGCACGCGTGCCCGTCACCGAGGCCACCCCGCTGCGCAACCCCTACTGGCAGTACTCCCGCGACAAGATCGCCGGCGAGGACCTGCTGGTGCGCGCCCACCGCGAGAACGCCTTCCCCGCCACGATCGTGCGACCCAGCCACACCTACGACCACACCCTGATCCCCACCATCGGGCAGTGGACCGACGTCGCGCGGATGCGCGCCGGCCAGCCCGTCGTCGTGCACGGGGACGGCACCACGCAGTGGACCCTGACCCACACCGACGACTTCGCCGTCGGGTTCGTCGGCCTCCTCGGCCACCCGCTCGCCATCGGCGACGCGTTCCAGATCATGGGCACCCACGCGCCCACCTGGGACCAGATCTACACCTGGCTCGGAGCCGCGGCCGGCGTGCCCGACCCCGAGATCGTGCACGTCGCCTCCGACACCGTCGCCCGGGTCCTGCCCGCCGTCGGCGACGGCCTGCTCGGCGACAAGGCGCACTCCATGGTGTTCGACTGCGCACGCCTGCAGGCGCTCGTGCCCGAGTTCGCCACCACCGTCACCTACGACGACGCCGCCCACGAGCAGATCGCCTGGTACGACGCGCACCCCGACCAGCAGTCCCGCGACGTCGCGTGGGACGAGGCGTCCGACCGGCTCGTCGAGCACGCGCGGTCGGTATGAMTGMPRTPLDILFLGGSGVISSASVRRAVAQGHRVTVLNRGHSTHRELPDDVERLTADVTDDAAVDAVLAGRDFDVVAQFRAFSPDHVARDVARFTGRTGQYVFISSASAYQTPPARVPVTEATPLRNPYWQYSRDKIAGEDLLVRAHRENAFPATIVRPSHTYDHTLIPTIGQWTDVARMRAGQPVVVHGDGTTQWTLTHTDDFAVGFVGLLGHPLAIGDAFQIMGTHAPTWDQIYTWLGAAAGVPDPEIVHVASDTVARVLPAVGDGLLGDKAHSMVFDCARLQALVPEFATTVTYDDAAHEQIAWYDAHPDQQSRDVAWDEASDRLVEHARSVNANANANANA
AK018_02910777xynR_2COG1414HTH-type transcriptional regulator XynRGTGGATCCCAGCCCCCTCGGCAGCGTCGACAAGGCCCTGCTCACGCTCGACGCCCTCGGGCACGCCGGCGCCACCGGTGCCTCGCTCGCCGAGCTCGCCGCCGAGGTCGGCGCCAACAAGTCGACCCTGCACCGCACCCTCGCGGCCCTGCGCCACCGCGGGTACGCCGAGCAGACCGACGACGGCGTCTACCGGCTCGGGCCCGCGATCCTCGCCCTGGGCAGCAGCTACCTCGCCGAGGAGAACCTGCCCGCCCTGCTGCGTCCCGCCCTCGAGGCGCTGCGCTCCGAGGTCGACGAGCTCGTCCACCTCGGCGTGCTCGCCGGCCGCGAGGTCGTCTACCTCGACAAGATCGAACCGCAGCGCCCCGTGCGCGTGTGGTCCGCCGTCGGACGGCGACGCCCCGCCTCCACCACCGCGCTCGGCCGGGCCCTGCTGGCCGCCGGGCCGCTCCGGTCCGACGACGGCACGGACGTGCCGCACGAGGCGTTCGCCGCGTACCTGGTCGAGACCACCACCGCCGACCGGCTCCGCGAGGCGCTCGCCGCGGCGCACCGCACCGGGATCGCCACCGAGACCGAGGAGAACGAGCCGGGCATCGCGTGCGCCGCCGTCGCCGTGCTGCGTGCCGGACGCCCCGTCGCCGCCGTGTCCATCACGGCACCCGTCGAACGGATGACCGGCCCCGCCCGCGACGCCCGGACCACGGCCCTGACCGAGGTGCTCCCCCGGCACCTGCCGCCAGGTCTCACGGTCGCCCGGCCCACGGCCCGCTGAMDPSPLGSVDKALLTLDALGHAGATGASLAELAAEVGANKSTLHRTLAALRHRGYAEQTDDGVYRLGPAILALGSSYLAEENLPALLRPALEALRSEVDELVHLGVLAGREVVYLDKIEPQRPVRVWSAVGRRRPASTTALGRALLAAGPLRSDDGTDVPHEAFAAYLVETTTADRLREALAAAHRTGIATETEENEPGIACAAVAVLRAGRPVAAVSITAPVERMTGPARDARTTALTEVLPRHLPPGLTVARPTARPGPT0018213_1092DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
AK018_02911639eda_1COG0800KHG/KDPG aldolaseGTGTCATCCCCCACCGTCCTGGACACCCTGGCGCAGCACCGGCTCGTACCCGTCGTCGTCGTCGACGGCGTCGAGCAGGGCCTCGGGCTCGCCGACGCCCTGATCGCCGGCGGCCTGCCCGTCGCCGAGATCACCCTGCGCACCGCCGGCGGCCTCGACGCCATCCGCGCCGTCGCCGCCGAACGGCCCGACGTCGTCGTCGGCGCCGGCACCGTCACCACCGCCGCGCAGGTCGACGACGTCGTCGGCGCCGGAGCCCGCTACATCGTCTCGCCCGGCCTCTCCCGCGCCGTCGTCGAACGCGCCCAGGAGCACGGCGTCCCCGTGCTGCCCGGCGTCGCCACCGCCACCGAGGTCATGACCGCGCTCGACCTCGGCGTCGAGACCGTCAAGCTCTTCCCCGCCTCCGTCGTCGGCGGACCCGCCGCCCTCAAGGCCCTCGCCGCGCCCTTCCCTGGCCTGCGGTTCGTGCCCACCGGCGGCGTCAGCGCCGACAACCTGCCCGACTACCTCGCCCTCAAGCCCGTGCTCGCCGTCGGCGGCTCCTGGATGGTCGCCAAGGGCCTCGTCGACGCCGGCGACTGGGCCGAGATCACCCGCCGCACCACCGAAGCCGTCGACCTCACCAAGGAGAGCTGAMSSPTVLDTLAQHRLVPVVVVDGVEQGLGLADALIAGGLPVAEITLRTAGGLDAIRAVAAERPDVVVGAGTVTTAAQVDDVVGAGARYIVSPGLSRAVVERAQEHGVPVLPGVATATEVMTALDLGVETVKLFPASVVGGPAALKALAAPFPGLRFVPTGGVSADNLPDYLALKPVLAVGGSWMVAKGLVDAGDWAEITRRTTEAVDLTKESPGPT0002060_1284DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0002060-eda-K01625NANA
AK018_029121107kdgK_12-dehydro-3-deoxygluconokinaseATGGCCAACGCCTCCCTGACCACCCGCCCCGCCGCCGAGTCCCGCTACGACGTCGTCGCCCTCGGCGAGGTCATGCTGCGGTTCGACCCGCGCGACCGCCGCGTGCGCACCACCCGCACCTTCGACGTCTGGGAGGGCGGCGGCGAGTACAACGTCGCCCGCGGGCTGCGCCGCTGCTTCGGGCTCCGCGGCGCCATCGTCACCGCGCTCGCGGACAACGAGGTCGGCCGGCTCGTCGAGGACTGCATGCTCACCGGCGGCCTCGACACCTCGTGGGTGCAGTGGCGCGACTACGACGGCATCGGCCGCGAGGTGCGCAACGGCCTGAACTTCACCGAGCGCGGCTTCGGCGTCCGCGGCGCGATCGGCACCAGCGACCGCGGGCACACCGCCATCTCCCAGATGCGGCCCGACGACGTCGACTGGGACGCGCTGTTCTCCTCCGGCGTGCGGTGGCTGCACACCGGCGGCATCTTCGCCGCCCTGTCCGAGTCCGCCGCCGAGGTCGCCGAGGCCGCGATGTCCGCCGCCCGTCGCCACGGCGTCGTCGTCTCCTACGACCTCAACTACCGGCCCTCCCTGTGGAAGGGCATCGGCGGCGTCGAGCGCGCCCGCGAGGTCAACCGCCGCCTCGCCCAGCACGTCGACGTCATGATCGGCAACGAGGAGGACTTCACCGCCTCCCTCGGGTTCGAGGTCGAGGGCGTCGACGAGGACCTCACCGACCTGGACACCGCCGCCTTCCGGACCATGATCAAGACCGCCGCGGCCGAGTACCCCAACTTCCAGGTCATCGCCACCACCCTGCGCGGCGTGAAGTCCGCGTCGGTGAACGACTGGGGCGCCATCGCGTGGTCGCGCGAGGAGGGCTTCGTCGAGGCCACCCACCGTGCCGACCTCGAGATCTACGACCGCGTCGGCGGCGGCGACTCCTTCGCCTCGGGGCTGGCCTACGGGCTCATGGAGCTCGGCTCGCTGCAGGAGGCCGTGGAGTACGGTGCCGCGCACGGCGCCCTGGCCATGACGACGCCCGGCGACACGACGACCGCCTCGCTGGCCGAGGTCGCCAAGCTCGCCTCGGGCGGCAGCGCCCGCGTCCAGCGCTGAMANASLTTRPAAESRYDVVALGEVMLRFDPRDRRVRTTRTFDVWEGGGEYNVARGLRRCFGLRGAIVTALADNEVGRLVEDCMLTGGLDTSWVQWRDYDGIGREVRNGLNFTERGFGVRGAIGTSDRGHTAISQMRPDDVDWDALFSSGVRWLHTGGIFAALSESAAEVAEAAMSAARRHGVVVSYDLNYRPSLWKGIGGVERAREVNRRLAQHVDVMIGNEEDFTASLGFEVEGVDEDLTDLDTAAFRTMIKTAAAEYPNFQVIATTLRGVKSASVNDWGAIAWSREEGFVEATHRADLEIYDRVGGGDSFASGLAYGLMELGSLQEAVEYGAAHGALAMTTPGDTTTASLAEVAKLASGGSARVQRPGPT0018060_91DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
AK018_02913672hypothetical proteinGTGACCTCACCCGACCGTCCCGCCGCGCATCCCGACGACACCGCGCCCGCCGTACGGCTGCTCGTCGTCGGGGTGCTCCTCGCGCTCACCGTGTCGCCCAGCGTGCTCCTGGCCGGGTTCCTCGGGACCGGTGCGGCCGCGGCGGCGCTGTCCGTGCTGGGGCTGGTCTTCGTCGGGCCGGCGTTCGCCGCGGCGCTGTGGGCGCTGGGCGACAAGGCCCGCGACGACGGTCTCGGCCCGGTCGCGGCGTTCGGTCGGGGATACCGGCTCAACGTCGCCGACGTCCTGAAGCTCTGGGTCCCCGGGCTGCTCCTGCTCGCGGTGCTGACCTTCACGATCGTCGACGCCGCGGGCCGGGCGCCGGCGTGGGTGGTCGGCTTCGCGATCGGCGCTGCCGTGCTCGTGCTGCTCTGGCTGGTCCAGGCCACGGTGATCGCGTCGTTCTTCACGTTCCGCGGTCGGGACACGGCCAAGCTCGGCCTGTACTTCCTCGGGAGGCTGCCGCGATCGACGCTGGTGGTGCTGGTCGCGATCATCGTGGCGGCAGCCGTGGGGTGGCTGATGTCGCCGGCGCTGCTCGCCCTGCTCGGCGTGCTGTGGGTCGCCGTGGTGCTGCGGGCGGACCGTCCCGTGCTGGCCGAGGTGCGCCAGCGCTTCGTCGAGTCGGACTGAMTSPDRPAAHPDDTAPAVRLLVVGVLLALTVSPSVLLAGFLGTGAAAAALSVLGLVFVGPAFAAALWALGDKARDDGLGPVAAFGRGYRLNVADVLKLWVPGLLLLAVLTFTIVDAAGRAPAWVVGFAIGAAVLVLLWLVQATVIASFFTFRGRDTAKLGLYFLGRLPRSTLVVLVAIIVAAAVGWLMSPALLALLGVLWVAVVLRADRPVLAEVRQRFVESDNANANANANA
AK018_029141419uxaC_1COG1904Uronate isomeraseGTGAGCGAGCCCTGGACCCTGCACCCCGACCGGGCACTGCCGGCCGACCCGACCACCCGGGAGATCGCCCGCGAGATCTACGGCGCCACCCGGAGCCTGCCGATCGTCTCCATGCACGGGCACGTCCCCGTCGAGTGGTTCGCGCAGGATTCCTCGTTCGGGGACCCCGCACAGCTCTTCGTGGTCCCCGACCACTACCTGACCCGCATGCTCGTCTCCCAGGGCGAGACCCTGCCGCGGCTCGGCGTCGGGTCCACGCCCGACGAGGCGGTGGAGACCGACCCGCGCGAGATCTGGCGCCGGTTCTGCGCCGGATGGAAGCACTTCCGCGGCACCCCGACCCGCTACTGGCTCGAGCACGCGTTCGTCGAGATCTTCGGCGTCACCGCGAAGCCGTCCGCCGAGACCGCCGACGCGATCTACGACCAGGTCGCCGCACGGATCGCTGACCCGGCCTTCCGGCCGCGCGCGCTGCTCGACACGTTCGACATCGAGGTCATCGCCACCACCGACCCCGCCTGGGCGTCGCTGGAGGACCACACCCGCCTCGCCAAGGACGGCTTCGGCGAACGCGTCCTACCGACCTTCCGTCCCGACCCGCTGCTGCACGTCGACCGCGACAGCTGGCGGGACGAGATCGCCCTGCTCGCCCGCGCCGCGGACGTCGACGTCGACTCCTACGCGAGCTACCTCGAGGCGCTGCGCGTCCAGCGACGGCGCTTCGTCGAAGCGGGTGCCCGCGCCACCGACCACGGACACCTGTGGGCGGACACCACACCCCTGGACGACGGCGAGGCCCGGCGGATCTTCGACGCCGCGCTGGCGGGCACGGTCACCGCGGCCGAGGCCCAGGCGTTCAGCGGCCACATGCTGTTCGAGATGGCGCGCATGTCGACCGAGGACGGGCTCGTCATGCAGCTGCACCCGGGCGTGCTGCGCAACCACGCGTCGGCGCCGTTCGCCGCGTTCGGGCCCGACAAGGGGTACGACATCCCCGCGGTCACCGAGTTCACGCGGTCGCTGCAGCCCCTGCTCGATGCGTTCGGCCACCACCCGGACTTCCGGTTCATCGTGTTCACCGTCGACGAGGACGTCTACTCCCGCGAGCTCGCCCCGCTGGCCGGCGTGTACCCGGCGATGAAGCTCGGTGCGCCGTGGTGGTTCCTCGACGCTCCCGACGCGATGCGCCGGTTCCGCGAGGCGGCCACGGAGACGGCCGGGTTCTCCAACATGAGCGGATTCGTGGACGACACCCGGGCGTTCTGCTCCATCCCGGCCCGCCACGACCTCGCGCGCCGCATCGACGCGGGCTACCTGGCCCGCCTGGTGGCCGAGCACCGCCTGGAGCTCGACGAGGCCGTCGAGGTCGCCGGCGACCTCGCCTACCGGTCGGCGCTGGAGTCCTACCCGAAGCCGTAGMSEPWTLHPDRALPADPTTREIAREIYGATRSLPIVSMHGHVPVEWFAQDSSFGDPAQLFVVPDHYLTRMLVSQGETLPRLGVGSTPDEAVETDPREIWRRFCAGWKHFRGTPTRYWLEHAFVEIFGVTAKPSAETADAIYDQVAARIADPAFRPRALLDTFDIEVIATTDPAWASLEDHTRLAKDGFGERVLPTFRPDPLLHVDRDSWRDEIALLARAADVDVDSYASYLEALRVQRRRFVEAGARATDHGHLWADTTPLDDGEARRIFDAALAGTVTAAEAQAFSGHMLFEMARMSTEDGLVMQLHPGVLRNHASAPFAAFGPDKGYDIPAVTEFTRSLQPLLDAFGHHPDFRFIVFTVDEDVYSRELAPLAGVYPAMKLGAPWWFLDAPDAMRRFREAATETAGFSNMSGFVDDTRAFCSIPARHDLARRIDAGYLARLVAEHRLELDEAVEVAGDLAYRSALESYPKPPGPT0018210_365DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018210-uxaC-K01812NANA
AK018_029151020degA_5COG1609HTH-type transcriptional regulator DegAATGGTCACGGTGCACGACGTCGCCCGTGCGGCCGGCGTCTCCATCTCGACGGTCTCGCGCGCGCTCGCCTCGCCCGACCGGGTCGCGGCTCCGACGCGTGAGCGGGTGCGTGCCGCCGCCGACGAGCTCGGCTACCGTCCCAACCGCGCCGCGTCGGTGCTGCGGGCCGGCCGGACCGGCGCCTACGGGCTCGTCGTCCCGGACCTCGCCAACCCCTACTTCGCGGCGGTCGCCAAGGGAGCCCAGGCGCGCGCCCGCGAGCGCGGCGCCGGGTTGTTCGTCGTGGACACCGAGGAGAACCCTGACCTCGAGGCCGAGGTCCTGACCTCGCTCGCCCCGCAGACCGACGGCGTCGTGCTCTGCTCGCCGCGCGCCGTCGACCGGGCGCTCGCCGTGCTGGGCGAGCGGCCCGTCGTGCTGGTCAACCACGAGGCCGACGGCGTCCCCGCCGTCGAGACCGACCACGCGGCGGGCATGCGACGCGCGCTGGAGCACCTGCGTGCCCTCGGTCACCGCCGGATCGCCTACGTCGGCGGGCCGGAGAGCTCGTGGAGCGACCGCCGTCGTCGTGCCGGCCTCGCCGCCGCCGCGTACGACGACGTCGACGTGGTCGCGCTGGGTGTCTTCCGCCCGCAGGTCGAGGGCGGGCAGGCCGCCGCGGACCTGGTCGTCGCCAGCGGTGCGACCGCCGTCATCACCTTCAACGACCTCGTCGCCGTCGGTCTCGTCGGGCGGTTGCGCGCCCGCGGGCTCGACGTGCCCGGCGACCTGTCCGTCGTCGGCTGTGACGACTCCTACGTCGCCTCGCTCGTCACTCCCGCGCTCACCACGTTGCGGGTCGACCTGCGCGCCATGGGTCGTGCCGCCGTCGACCTGCTCGTGGCCGACGACGGCGTCACCGCGGCGCCGCTGGACGTCGACCTGGTCGTGCGCTCGTCCACCGCGCCGCCCACCCCTGCTCCCGCGGCGGCCGCGACTGCCGCCCCGACCGAGACGCCCGTCCCTGGAGGAACCCCGTGAMVTVHDVARAAGVSISTVSRALASPDRVAAPTRERVRAAADELGYRPNRAASVLRAGRTGAYGLVVPDLANPYFAAVAKGAQARARERGAGLFVVDTEENPDLEAEVLTSLAPQTDGVVLCSPRAVDRALAVLGERPVVLVNHEADGVPAVETDHAAGMRRALEHLRALGHRRIAYVGGPESSWSDRRRRAGLAAAAYDDVDVVALGVFRPQVEGGQAAADLVVASGATAVITFNDLVAVGLVGRLRARGLDVPGDLSVVGCDDSYVASLVTPALTTLRVDLRAMGRAAVDLLVADDGVTAAPLDVDLVVRSSTAPPTPAPAAAATAAPTETPVPGGTPPGPT0017992_12649DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_029161506por_1COG0246Polyol:NADP oxidoreductaseGTGACCGACCGCCTGCACCGCGACCACCTGCCCACGAGCGTCGACGCGCCCGTCACCCCGGAGTCCGTCGGGATCGTCCATCTCGGCATCGGTGCGTTCCACCGGGCGCACCAGGCCGTGTACACCGAGCAGGCCGCACGGGCCACGGGAGACCGCCGGTGGGGGATCCTCGGGGTGACCCAGCGCTCGGCGTCGGTCCGGGACCAGCTCCGGCCGCAGGGCGGCGTGTACTCGGTGCTCACCGCCGGGGCCCGGGACAGCTCGGTGGACCTGGTCGGAGCCGTGCTCGACGTCGCCTGGCCGGCCGAGGAGACGGAGCGCGTCCTCGCGACGATCGCGGCGCCGACCACGCACCTGGTGACCCTCACCGTCACGGAGAAGGGTTACTGCCGGACCGGCTCCGGCGAGCTCGACCTCGACCGGGTGCGCCCGGACCTCGACGCGCTCGCGGCCGAGCAGGGGACCGGGGCTCCCGGTGAGCCGGTCGCGGCCGGTAGCGCGATCGGGCTCCTCGTGCGCGGGCTCGCGGCCCGGTACCGGGCCGCCTGCGAGGCGGGGGAGGCGCTGCCGCTGACCGTGCTCACCTGCGACAACATGGTCGACAACGGGCACGTCCTGGAGCGTCTGGTGCGGTCGGCGCTGGACGCGGCGCTGGCGCAGGACACCGCGCTGCGGGCCTGGCTCGACGCGCACGTCACGTTCCCCTGCTCCATGGTGGACCGCATCGTCCCGGCCACGACGCCGGAGCAGCGCGACGCCGTCGAGGGCGAGCTGGGCGTGCGGGACGAAGGGCTCGTCGTCGGCGAGCCGTTCTCCCAGTGGGTGATCGAGGACCGGTTCGCCGGACCCCGACCGGCCTGGGAGCAGGCGGGTGCGACGCTCACCGACGACGTGTCCGTGTGGGAGCGTGCCAAGCTCCGGCTGCTCAACGGCACCCACTCGCTGCTGGCCTATGCGGGCCGGCTGGCCGGTCACGTGACGATGGCCGAGGCCGTCGAGGACCCGGCGATCCGCGCGCGCGCCCGCCGGCTGCTGTTCGACGACGCGCTGCCGACGCTCACGCCGCCCGACGGCGCCGACCTCGACGCGTACGGGGAGTCGCTGCTCAAGAGGTTCGCCAACCCGGCGACGGGGCACACCACGTTGCAGGTGTCGATGGACGGCACCCAGAAGATCCCGTACCGCTGGGGTGACACGATCGCCGAGCGGCTGGCGGCGGGATCGGTGCCGCATGGTGCCGCGTACGCCCTGGCGTGCTGGTCCGAGGTCGTACGTCGGGAGGCGGTGGCCGGGCGCGCCGTCGACGACCCGCGCGGGGACGAGCTGCAGCGGGTCGTGGCCACGGTGGGCGGCGGGTCGGCGGAGGCCGCGTCACCGACCGACGTCGCCCGTGCGCTGACGGCCCTTCCCGGCCTGCTGCCGCAGGGTGCCGGGATGGACCCGGCCCTGCTCGACGCCGTCGCTGCGGAGGTCGCCGAGCTGGCGGGGGTACCGGCAGCCGGCTGAMTDRLHRDHLPTSVDAPVTPESVGIVHLGIGAFHRAHQAVYTEQAARATGDRRWGILGVTQRSASVRDQLRPQGGVYSVLTAGARDSSVDLVGAVLDVAWPAEETERVLATIAAPTTHLVTLTVTEKGYCRTGSGELDLDRVRPDLDALAAEQGTGAPGEPVAAGSAIGLLVRGLAARYRAACEAGEALPLTVLTCDNMVDNGHVLERLVRSALDAALAQDTALRAWLDAHVTFPCSMVDRIVPATTPEQRDAVEGELGVRDEGLVVGEPFSQWVIEDRFAGPRPAWEQAGATLTDDVSVWERAKLRLLNGTHSLLAYAGRLAGHVTMAEAVEDPAIRARARRLLFDDALPTLTPPDGADLDAYGESLLKRFANPATGHTTLQVSMDGTQKIPYRWGDTIAERLAAGSVPHGAAYALACWSEVVRREAVAGRAVDDPRGDELQRVVATVGGGSAEAASPTDVARALTALPGLLPQGAGMDPALLDAVAAEVAELAGVPAAGPGPT0018275_276DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018275-uxuB-K00040NANA
AK018_029171944hypothetical proteinGTGCCCGGTCTCCGACAGGGCCCACGTGATGAAGGGCGTCCCCGCGAACCCGGTCGTCACCGTGTAGCCAGCCTCGCGCACGAGCTCGGCGAGACGGTCGCCCGCCACGGCGCGGTCGGTCTCGTCGAGGACGTCGAACACGATCGCGAGGGCGTACACCGTGGTGCAGTCCGACCGCACGACGCCGTCGTCGACGTAGTGCTCGGTGAACGCGGCGCGCGTGCGGTCCGCCAGCCGTGTCCAACGGTCTGCGTCGGCCGGTTCGCCGGCGACGGCGGCCGCCTCGGCGGCGAACCGTGCTGTCCGCACGAGGCACGCCGTGGCCACGACCGAGGGGTCGGCCTTGCCGCCGCCCGGGTCCTCGGGCAGGGCGTCCGGGTCGAGCCAGTCGCCGAGCTGGTTGCCCAGGTCCCACAGACCCGTGGGAGAGATGTAGGGCTCCACGGACTCGAGGTGCAGCTTCATGGCGGGATAGTGCTCGGCGAGGCGTCCGGCGTCGCCGTACGCCGTCCACAGCGCCTGGGGGACCCAGACCGACGCGTCGCCCCAGATCGCGGTGGCGGCCCACGGCGGCAGGCTGAAGTCGTCCCCCCAGCGCGCGTACTTGAGCACGTCGGGCACGACGAGCGGCACGCCGCGGTCGGCCGAGTGCTCGGTCTCGACGCGCAGGTCGGCGAGCCAGTCGTGCAGGAAGTCGGCGGAGTCGAACTGGAAGGCTGCGGACGCGGCGTACGCGGCGATGTCCCCGGTCCAGCCCAGCCGTTCGTCACGCTGCGGGCAGTCCGTCGGGACGGACAGGAAGTTGCCCTTCTGACCCCACACCGAGTTGTGGACGAGCTGGTTCACGTCGGGGTCGGAGCAGGCGAAGGTCCCGGTGCGGGTCATCTCGGAGTGCACGACGACGGCCTCGAGGCTGTCGGTGGTCAGCTCGCCGGGCCATCCGGTCACCAGGGCGTAGCGGAAGCCGTGGAACGTGAGCGTCGGCTCGAACGCGTCGACGCCACCCGAGAGGACGAACAGGTCGCGGGCGGCGGCGCCCCGCAGCGGTCGGGTGCCGAGCTCGCCGTGCTCCAGCACCTCGGCGTGGCGGATCTCGATCTCGGTGCCGGCGGGACCCTGGACCGTGAACCGGAGCCAGCCGACGAGGTTCTGGCCGAAGTCCACGAGCGTGCCTCCGCCCGGTGCCGGCCAGATCTCGACCGGACGGAGCGTCTCCTGGCGCCGTACGGGCGGGCCCACCGGGGCGACGAGCGTCGAGCGGTCGACGTCCACCTCGTGCACCGTCAGCGGCGACGGGCGCCCGCGCAGCCGCGCGTCGATCGTCTGACCGTCGTAGAGGGAGTTGCGGGGGATCTCGGTGGTCTCGGCCGACCAGCCGTCCCCGGTGGCGACACGCTGCGTGGAGCCGTCCCGGTAGGTGAGGTCCAGGACCGCCGCGACGGCGATCTCCTCGCCGTAGTTCGCCCGCGCGTCGGCGAAGCCCAGGTCGCCCCGGTACCAGCCGTTGCCCAGCACGAGGTCGATGCGCAGCGGTCCCTCGCCGTCGGCGACCAGCGCGCGCACGTCGTGCTCCTGGTAGGCCAGCCGCCACTCGTACGAGGTCCAGCCCGGGTCCAGCACCGAGTCCGACACGGGCGATCCGTCGATGCGGGCCTCGTAGACGCCGTGGGCGGTGGCGCGCAGCACCGCACCGGTGATCTCGGTACGTGGCCGGTCGAGCTCGCGCTCGACCCAGAAGCGGGCCGCCGCCTCGCGGTCGGCGTCCGAGCCGAGGAAGCGCGCGCCGTCGAGGGGATCGGTCGTCATGGTTCTCTCCCTGGTGATGTGGCGGTCGTGGGCAGGAACGGTCAGCCGGCGGCTCGCGCCACGGCGACCGAGAGCCGCGCGAGCTCCACCGCGCGGTGGTCGGCGCCGCCGGGATGCTGCATGGGGGAGGGGACGTAGMPGLRQGPRDEGRPREPGRHRVASLAHELGETVARHGAVGLVEDVEHDREGVHRGAVRPHDAVVDVVLGERGARAVRQPCPTVCVGRFAGDGGRLGGEPCCPHEARRGHDRGVGLAAARVLGQGVRVEPVAELVAQVPQTRGRDVGLHGLEVQLHGGIVLGEASGVAVRRPQRLGDPDRRVAPDRGGGPRRQAEVVPPARVLEHVGHDERHAAVGRVLGLDAQVGEPVVQEVGGVELEGCGRGVRGDVPGPAQPFVTLRAVRRDGQEVALLTPHRVVDELVHVGVGAGEGPGAGHLGVHDDGLEAVGGQLAGPSGHQGVAEAVERERRLERVDATREDEQVAGGGAPQRSGAELAVLQHLGVADLDLGAGGTLDREPEPADEVLAEVHERASARCRPDLDRTERLLAPYGRAHRGDERRAVDVHLVHRQRRRAPAQPRVDRLTVVEGVAGDLGGLGRPAVPGGDTLRGAVPVGEVQDRRDGDLLAVVRPRVGEAQVAPVPAVAQHEVDAQRSLAVGDQRAHVVLLVGQPPLVRGPARVQHRVRHGRSVDAGLVDAVGGGAQHRTGDLGTWPVELALDPEAGRRLAVGVRAEEARAVEGIGRHGSLPGDVAVVGRNGQPAARATATESRASSTARWSAPPGCCMGEGTNANANANANA
AK018_029181149hypothetical proteinATGAGCCTCGATCTGCGGTACGGCACGTGCACCCCGGCGTTCCGCCCCGTCGCAGACCGCTTCGCGGCCCTGGTCGAGGCGGACCCGACCCTCAGCGCCCAGCTCAGCGTGCGGGTCGCCGGCGAGCCCGTCCTCGACCTCGCCGGCGGGCCGGACCTGACCGCCGGATCGGTGACCGGTGTCTACTCGGCCACCAAGGGGGTGGCCGGGCTCGTCGTCGCCCACCTCCTCGACCGCGACCTGCTCGACCCCGACCGGGCCGTCGCGGACTACTGGCCGGAGTTCGGCGCAGCGGGCAAGGACCGGGTCACCGTCCGGCAGCTGCTCTCGCACCAGGCGGGGCTCCCGCTCGTGGAACGACCGCTGGACGTCGCGGACGTCGTCGACTCCCGGACTGCCGCGGCAGACCTCGCGGCGCAGCGGCCCCTGTGGCGCCCGGGCTCGGCGTTCGGCTACCACGCGCTGACCCTCGGCATCCTCGCGGAGGAGCTCGTGCGACGGGTCACGGGACGTACGCTGCAGAGGGTGTACGAGGCGACGATCCGCGATCCTCTCGACGCCGACTTCCACCTCGGCCTGCCCGCGGGCCAGGACGGGCGCTACGCCCCGGTCCGGGACCCGGAGCTCACCGCGGAGCAGGCGGCCGAGGTCGCCGCCCGGCCGCCGGCCGACGCTGTCGCCGAGGCGGTGTTCTCGAACTTCTCCGTGCCGGACGACCGCTCGGAGACGGGCGCCAGCACGAACAATCCTGCCGTGCGCCGGGCAGGCTTCGCGGCGATCGGCGGTGTCGGCTCGGCGGCCGGCCTGGCACAAGTCTACGCGGCCGCGCTCCCGGGCGGCGGCGTGCACGTCGCCGCCCCCGAGGTCTTCGCCGAGATGGCGCAGCAGCACGCGTGGGGCACCGACCGTGTGCTCGGCGTCCCGAACTGCTTCGGCATGATGTTCATGCTGCCGCAGCCGCGGCAGCCGTTCGCCGACCTCGGCGCGTTCGGCCACGACGGCGCCGGCGGCGCGCTCGCGTTCGCCGATCCCCGCACGGGAGTCGCCTTCGGCTACGTCCCCTCCCCCATGCAGCATCCCGGCGGCGCCGACCACCGCGCGGTGGAGCTCGCGCGGCTCTCGGTCGCCGTGGCGCGAGCCGCCGGCTGAMSLDLRYGTCTPAFRPVADRFAALVEADPTLSAQLSVRVAGEPVLDLAGGPDLTAGSVTGVYSATKGVAGLVVAHLLDRDLLDPDRAVADYWPEFGAAGKDRVTVRQLLSHQAGLPLVERPLDVADVVDSRTAAADLAAQRPLWRPGSAFGYHALTLGILAEELVRRVTGRTLQRVYEATIRDPLDADFHLGLPAGQDGRYAPVRDPELTAEQAAEVAARPPADAVAEAVFSNFSVPDDRSETGASTNNPAVRRAGFAAIGGVGSAAGLAQVYAAALPGGGVHVAAPEVFAEMAQQHAWGTDRVLGVPNCFGMMFMLPQPRQPFADLGAFGHDGAGGALAFADPRTGVAFGYVPSPMQHPGGADHRAVELARLSVAVARAAGNANANANANA
AK018_029192472hypothetical proteinATGGACGACACGACCAGGGCACACCTGCGCACGTTGCGCGAGGCGCTCTCGCTGGACGACAAGGTGCGCCTCCTGACGGGGAAGGACTCCTGGTCCACGGTCGCCCTGCCCTCGATCGGCCTGCGTTCCATGGTGCTCTCCGACGGTCCCGCCGGCGTCCGCGGGCAGCTGTGGGACGAGCGCTCACCGTCGGTCAGCTTCCCGTCCCCCACCGCGGTCGCCGCCTCCTGGGACCGTCGGATGGTCGAACGCGTCGGGCGCGGGCTCGGCGGCGAGGCCGTCCGCAAGGGTGCCGACGTCGTGCTCGCACCGACGATCAACATCCAGCGCGCCCCGTACGGCGGCCGCCACTTCGAGGCCTTCAGCGAGGACCCGCTGCTGACGAGCGTCCTGGCGACCTGCTACGTGCGCGGCATCCAGGCGTTCGGCGTCGGCGCGACGGTCAAGCACTACGTGGCCAACGACTCCGAGACCGAACGGTTCACGGTCGACGTGCGCGTCTCGGACCGCACGTTGCGCGAGGTCTACCTCGCGGCGTTCGAGGGCCCGGTCGTGACCGGTGGCAGCCTCCTCGTCATGAGCGCCTACAACTCGATCAACGGTCGCACCGCGTCGGAGAACGACCTGCTGACCACCCCGCTGAACGACGAGTGGGAGTTCGACGGCGTCGTGGTGAGCGACTGGACGGCGGTGCGGACGCTCGAGAGCGCGCGGCACCCCCAGGACCTCGTGATGCCCGGGCCCGACGGCCCGTGGGGTGCCGAGCTGGTCCGCGCCGTCGACGAGGGACGGATCCCCGTCGAGACCGTCGACCGGAAGGTCGACCGGCTGCTGGCCCTCGCAGCCCGGGTGGGTGCGCTCGAGAGCCTGCCCGCCCCGGTGCGGCCGCCGGCCGACGACGCCCCCGCGACGGCGCACGCCGCCTCGGTCGCCGGGACCGTCCTGCTGCGCAACGACGGGCTCCTGCCCCTCGCGTCGCCCCGCACGATCGCGCTCGTCGGCGAGGGCGCACGCGTCGCACGCACCCAGGGCGGCGGGAGCGCGACGGTGATCCCGCCGTCGGTCAGCACGCCGGTCGACGGCATCGCGCGACGCTGGCCGGACGCCGACGTCACGTGGTCGCTCGGCGCCGTCGTCCAGCGCGGTGTCGCGGACCTGCCGAGCGAGGACGTCACGACCCCGGACGGCGAGCCGGGCATCACGGTGCGCTACCTCGACGCCGACGGCGGCGTCATGCTGGAGGAGGACCGCCGGGCGTCCCGCCTGGTCGGCTTCGCGTGGGACTCGCCGGTGGTCCAGGCCGACCGTGTCGAGATGAGCTTCCGCTGGCGCACGGACGACGCCGTGACGCGGCTCGGGATCGTGGGCGTGGCCGCCTACCGCGTGTCGGCGGACGGCGTCGAGGTCGCCGCCGGCGAGCAGCACCTCCGGCCCGGGGACGATCCGGCGGCCACGGTCCTGCACCCCCCGGGCGAGGCGGTCGAGATCCCCACCCCGGCGCCGCGTACGCTGATGACCGTCACCTTCCGCCCCTTCGCCGAGGGCATCCCCGACGCGCTCACGCTGGGTGTCGGCGTGCCGCCCACCGCCCGCGACGCGGACGTCCTGATCGCCGAGGCGGCGACCGCAGCGGCCGAGGCGGAGGTCGCCGTCGTCGTCGTCTCGACGTCCGGCGAGGTCGAGTCCGAAGGATTCGACCGGGACTCCCTGTCGTTGCCCGGACGGCAGGACGACCTCGTGCGCGCCGTGGCCACCGCGAACCCGCGGACCGTCGTCGTGGTCAACTCCGGGGCGCCGGTGCTGCTGCCCTGGCGCCACGAGGTGGCCGCGATCCTGGTCAGCTGGTTCCCGGGACAGGCGTTCGGCGACGCCCTGGCGGACGTCCTCAGCGGTGACGCCGAGCCGGGAGGTCGTCTGCCGGTGACGTGGCCGGACGTCGAGGACGAGGTGCCGGTGTGGGACACCCGCCCCGTGGACGGTGTCCTCGAGTACGCCGAGGGCGTGCACGTCGGCAGCCGCGCATGGCTGAGGGCCGGTGCCACGCCCGCGTACCCGTTCGGTCACGGGCTGGGGTACACCGCCTGGAGGATCGACCACGTCGACGCGCCCGCCCGGCTCACCGCCGGCGACGACGCCGTGCTGCGCGTCGGTCTGACCAACCGGGGCGACCGCGCGGGCAAGACCGTGGCCCAGGTCTATCTCGAGCGCTCGACACCGTCCGCGGTCGACCGCCCGGTGCGTTGGCTGGGCGGCTTCGCGACGGCGACGGCCGCGCCGGGCGAGACCGTCGAGGTCGAGGTACCCGTCGCGGCGCGCGCCTTCCAGCACTGGGACGACGGCTGGCGCACCGAGCCCGGCACGTTCGTCGCACACGCAGGCTTCTCGGTCGAGAACCTGTCCACCGCGGTCGACATCCGCGTCGCCCCGTCGGACGCACCGGACGCCCCGGTGGCCGTCGAGGCCGCCGGATGAMDDTTRAHLRTLREALSLDDKVRLLTGKDSWSTVALPSIGLRSMVLSDGPAGVRGQLWDERSPSVSFPSPTAVAASWDRRMVERVGRGLGGEAVRKGADVVLAPTINIQRAPYGGRHFEAFSEDPLLTSVLATCYVRGIQAFGVGATVKHYVANDSETERFTVDVRVSDRTLREVYLAAFEGPVVTGGSLLVMSAYNSINGRTASENDLLTTPLNDEWEFDGVVVSDWTAVRTLESARHPQDLVMPGPDGPWGAELVRAVDEGRIPVETVDRKVDRLLALAARVGALESLPAPVRPPADDAPATAHAASVAGTVLLRNDGLLPLASPRTIALVGEGARVARTQGGGSATVIPPSVSTPVDGIARRWPDADVTWSLGAVVQRGVADLPSEDVTTPDGEPGITVRYLDADGGVMLEEDRRASRLVGFAWDSPVVQADRVEMSFRWRTDDAVTRLGIVGVAAYRVSADGVEVAAGEQHLRPGDDPAATVLHPPGEAVEIPTPAPRTLMTVTFRPFAEGIPDALTLGVGVPPTARDADVLIAEAATAAAEAEVAVVVVSTSGEVESEGFDRDSLSLPGRQDDLVRAVATANPRTVVVVNSGAPVLLPWRHEVAAILVSWFPGQAFGDALADVLSGDAEPGGRLPVTWPDVEDEVPVWDTRPVDGVLEYAEGVHVGSRAWLRAGATPAYPFGHGLGYTAWRIDHVDAPARLTAGDDAVLRVGLTNRGDRAGKTVAQVYLERSTPSAVDRPVRWLGGFATATAAPGETVEVEVPVAARAFQHWDDGWRTEPGTFVAHAGFSVENLSTAVDIRVAPSDAPDAPVAVEAAGPGPT0019110_1993DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_02920624betI_1HTH-type transcriptional regulator BetIATGGCTAGCCGTGGTCCCTACGCGAAGGGTCTCGCCAAGCGCGAGGAGATCCTCGACGTCGCCCTCAAGGAGTTCGCGCGCCGGGGCTACGACCGCACCTCGATGCGTGAGATCGCCAGGCAGTCCGGTCTCAGCCAGGCGGGCCTGCTGCACTACTTCAGCGCCAAGGAGGAGCTCTTCCTCGCCGTGCTGCGCCGGCGCGACGACCGGGCCGCCGACTCCGACGAGTTCAGCCATGTCCACTCGGTCAGCCGGCTGCTCCAGGCCGTCGAGCGCAACGCCGGCGAGCCGGGCCTCGTGCGCCTCTTCGTCTCGATGTCGGCCGAGAGCGCCACCCGTGACGGCAGCATCGCCCACGACTTCTTCGTGGAGCGCTACCGGTGGCTCATCGAGGAGATCGCCGGCGACATCCGGGCGCAGCAGGCCTCCGGAGAGTTCTCGTCGGCGATCGACGCCGAGGACGCAGCCTCGATGCTCGTCGCCGTCGCCGACGGTCTGCAGCTCCAGTGGCTGCTGCGCCCCGAGAGCGTCGACATGGGAGCCCGGATCGGCGCCTTCTGGTCGGCCCTGAAGTCCGGGTCGTCGGCTCCGAGCCCTCGACCTCCCGAGGCCACGGATCTCTAGMASRGPYAKGLAKREEILDVALKEFARRGYDRTSMREIARQSGLSQAGLLHYFSAKEELFLAVLRRRDDRAADSDEFSHVHSVSRLLQAVERNAGEPGLVRLFVSMSAESATRDGSIAHDFFVERYRWLIEEIAGDIRAQQASGEFSSAIDAEDAASMLVAVADGLQLQWLLRPESVDMGARIGAFWSALKSGSSAPSPRPPEATDLNANANANANA
AK018_02921669hypothetical proteinGTGGCCCCAGCGCAGCAGAAGTCTCCCGCCCCGCCCGTCGTCGACCCCGTCGAGCCCGCCGACCTCGAGCCCGGCCCCGCGAGCGAGCTCGCGCCCGGCGCCGATCTCGAGGGCAGGGAGCACACCGACGTCGAGGTCGACCGGCTCGAGCTCCGTGGCGCGCAGGTGCACTCCTCCCGGCTGGACCGTCTGCGGGCCGCCGAGGCCGACCTGCGAAACCTCACGCTGACCGAGGTGGCCATGTCCCGCGTGGACGTCCCGTCCGTGCAGGGCGTCCGGGGGCGCTGGCGGGACGTCGAGCTGACCGACGCGCGCATCGGGTCCGCCGAGCTCTACGAGTCGCAGTGGCAGTCGGTGCGGTTCGTGGGCTGCAAGCTCGGGTACGTGAACCTGCGCGGAGCGACCCTGCAGGACGTGGTGTTCACCGACTGCCAGGTCGACGAGCTGGACCTGGTCCAGGTGCGGGCCACGCGGGTGGCGTTCGAGGGGACGAGCGTCCGCCGGCTCGACGTGCAGGCCTCCACCCTGTCCGACGTCGACCTGCGCGGCGCCGACCTGACCGAGCTCGTGGGCACCGACGCGCTGCGGGGGACCACGATCACCGCCGACCAGCTCCTGCTGCTGGCGCCGATGCTCGCCGCCAACCTCGGCATCACGGTCGACGGGTGAMAPAQQKSPAPPVVDPVEPADLEPGPASELAPGADLEGREHTDVEVDRLELRGAQVHSSRLDRLRAAEADLRNLTLTEVAMSRVDVPSVQGVRGRWRDVELTDARIGSAELYESQWQSVRFVGCKLGYVNLRGATLQDVVFTDCQVDELDLVQVRATRVAFEGTSVRRLDVQASTLSDVDLRGADLTELVGTDALRGTTITADQLLLLAPMLAANLGITVDGNANANANANA
AK018_029221041hypothetical proteinGTGAGCGTTCCGCCGCAGGACGACCGCCCGGACGGGGACGTCCGTCCGGACGGGGAGGACCGCCCGGACACGGGCGGACGCGACGGGAAGCGGTGGGCCTGGACGACGCGGGCCCTGGCCGCCGCCGCGCTCGCCGTCGTGGCCTGGGCGTGCCTGACCTCCTGGGGCGCGATCGTCCACGGGCATCCCGCGTACGGCGTGCTGCTGGCGGTGACGACGTTCGCCGCGGTCGCCCTGCTGTGGCGCAGCACCCTGCCCCGGGGCGCCGTGTCCGGGTGGCACCGGGCACGGCGGGTCGTCGGCCTGGTCGGGGCGGTCGCGTGGATCGCGGCGATCGCCTGGCTGCGGCCCTTCGACGCCGTGGAGCCGGCGCTCTCGGCGCTGGAGCCCGACGACGCCGTCACCGTCACCGAGTCGGCCACCACGATCGAGCTCGCCCCGACCGGCGAGCCCAGCGGGACCGCGCTGCTGTACCAGCCGGGCGCCAAGGTCGAGGCTCGCGCGTACGCCGCCGTGCTGCGGCCTCTTGCGGGGGCGGGGCACACCGTCGTCGTGGTGCAGCAGCCCCTCGGGATCGGCTTCCTCGCCACGGGCGCGTTCGACGACGCCCGGGACGCCCACCCGGAGGTCGAGCGGTGGGTGCTGGGCGGCCACTCCCTGGGCGGCGTCGTCGCTGCCACGCAGGCCGACGACGCGTCCGACGACGGCACGAGCGGGGACGAGGACGCCGTCGCCCCGGTCGTCGGCCTGCTGCTGCACGCCTCCTACCCGGCCGGCGACGTCAGCGACACCCACACCGCCGCGGTGGCGTCCGTCTCGGGCTCCGAGGACGGCCTCACCACTCCCGCCGCGATCGAGGACTCGCGCGCCGACCTGCCCGCGAGCACCACGTTCACCGTGGTCGAGGGCGCCGTGCACGCGTTCTTCGGCGACTACGGTCCGCAGCCCGGTGACGGCACGCCCACGATCGACCGCGACGACGCCCGGCAGCAGATCTCCGCGGCGAGCCTGCGGTTCATGGCCGCCGTCGCGGCCGGGTGAMSVPPQDDRPDGDVRPDGEDRPDTGGRDGKRWAWTTRALAAAALAVVAWACLTSWGAIVHGHPAYGVLLAVTTFAAVALLWRSTLPRGAVSGWHRARRVVGLVGAVAWIAAIAWLRPFDAVEPALSALEPDDAVTVTESATTIELAPTGEPSGTALLYQPGAKVEARAYAAVLRPLAGAGHTVVVVQQPLGIGFLATGAFDDARDAHPEVERWVLGGHSLGGVVAATQADDASDDGTSGDEDAVAPVVGLLLHASYPAGDVSDTHTAAVASVSGSEDGLTTPAAIEDSRADLPASTTFTVVEGAVHAFFGDYGPQPGDGTPTIDRDDARQQISAASLRFMAAVAAGNANANANANA
AK018_02923681arlRCOG0745Response regulator ArlRGTGCAGCTGCTGGTCGTGGAGGACAACGAGCACGTCGCCGGGGCGCTCGTCGCCGTGCTCGGCAAGCACGGGTACGAGGTGACCCGGGCCGCCGACGGCGCCGCCGCCCTCGCGGCCCTGGGGCCGCGGACCGACCTCGTGCTGCTCGACCTCGCCCTGCCGGACATGGACGGGTTCGAGGTCTGCCGCCGGATCCGCAAGGTCTCCGACACACCGATCATCATGGTCACCGCCCGCACCCAGCTCGAGGCGCGCATCCGTGGCCTGGAGCTCGGCGCCGACGACTACGTCACCAAGCCGTACGACATCCGCGAGGTCCTCGCTCGGATCGACGCGGTGCTGCGCCGCGGGCGGCCGCGCGAGTGGGACGGGCGGGCCGACGTCGCGCAGGTCGACGTCGGCGGCGTCGAGATCGACCTCGCCGCGCGGCAGGTGCGGCGCGACGACGGCGCGATCGTCTCTCTGACCCGCAAGGAGTACGACCTGCTCGCCCTGCTGGTGCGGCACCGCGGGACGGCGCTGTCGCGCGAGCGGATCCTGCGGGAGGTCTGGGGGTCGAGCTGGAAGGGCCTGGGCAGGACCCTGGAGGTCCACGTCGCGTCGCTGCGCCGCAAGATCGACCGGCCCGACGTCGTCGAGACGGTCCGCGGGGTCGGGTACCGCGTCGCCGGGCAGAGCTGAMQLLVVEDNEHVAGALVAVLGKHGYEVTRAADGAAALAALGPRTDLVLLDLALPDMDGFEVCRRIRKVSDTPIIMVTARTQLEARIRGLELGADDYVTKPYDIREVLARIDAVLRRGRPREWDGRADVAQVDVGGVEIDLAARQVRRDDGAIVSLTRKEYDLLALLVRHRGTALSRERILREVWGSSWKGLGRTLEVHVASLRRKIDRPDVVETVRGVGYRVAGQSPGPT0002675_228DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
AK018_029241362sasA_9Adaptive-response sensory-kinase SasAATGCGCTCGCGGCTCGCAGCCCTGCTGTTCGTCCCCATCGCCCTGGTCCTGCTGCTGCTCGGCGTCCTCTACGCCGGCACCGTCACGCGCGCCCAGCAGCAGGAGGCGTTCCTCGACCGGGCGCGGGACGCCAACTACCTCGTCATCTCGGCGCGGCAGGCGATCCTGGCGGACGACCCGGACATCGTCGCGGTCGATCTCGAGCGGTACGCCGAGGTGTACGGGGTCGGTACCGCCGTCGTCGACCAGGCCGGCGAGGAGTTCGCCGCGGTGGACCTGGACGTGGCCGACGTGCCCGAACGCGAGGTCGCGGTCGCCGGCCGCGCCAGCGAGCCCCGCCAGAGCTTCTGGCCCTGGGAGGTCGACCGGATCGTCCTGGCCGAGCCCGTGTTCCACGGCGGGGACGTCGTCGGTGCGCTCGTGACGTCGTCGGACGCCTCCGCGGTGCGGCGCAGCATGTGGAACAGCTGGGGGCTGCTGCTCGCGGCGGGCGCCGTGCTGGCCATGGTCGCCGTGGTGATCGCCGACCGGACGGCCGGCTGGGTGCTGCGGCCGGTGCGCGCGGTGGACCGTGCCATGACGAACATGGGCGGCGGCCGGCTCGACGAGCGCATCCCGCCGTCGGCCGGGCCGCCCGAGCTGCGCCAGATCATCGAACGGTTCAACGACATGGCCGAGCGCGTCGAGCACCTCATGCACCGCCAGCAGGAGTTCGTGGCCAACGCCTCCCACGAGCTGCGCAACCCGCTCAACGCGCTGATGCTGCGGGTCGAGGCGCTCGCGCTGACCGTCCCGTCCGAGCACGCCGCCGACGTCGAGCACGTCCGCGCCGAGGCGCTGCGGATGGCCCAGATCCTCGACTCCCTGCTGCTGCTCGCCGACGGCGTCACGCTGGGCTCCGCGCAGCCGGTCGACCTCGTCGACGTCGCCGGGCGGCGCGTCGAGGCGCGACGTGCCGCCGGCATCGGCCGGGAGATCCGGGTGACCGCCCCGGGGGAGGAGGTGTGGGCCACCGTCGACCCGACGGCCCTGGAGACCGCGTTCGACACCGTCGTGGACAACGCGGTGAAGTTCGCGCCCGCCGGCACCCCGCTGGACGTCGCCGTCCGCGAGGGGACCGACGGGCCGGAGATCGTGATCCGCGACCACGGCCCGGGGGTGCCTGCCGACGAGCTCGACCACCTGACCGAACGCTTCTGGCGCAGTCCCGGGCACAGCGCCGTCACGGGATCCGGCCTGGGTCTGGCCATCGCGTCCGAGCTGCTCGCGGCGGGCGGCGGCGCGCTGCGACTCGAGCTGCCCGACGACGGCGGGTTGCGCGCCCGTCTGCAGGTCCGGCCGTGGCAGGAGGAGGCGTCGTGAMRSRLAALLFVPIALVLLLLGVLYAGTVTRAQQQEAFLDRARDANYLVISARQAILADDPDIVAVDLERYAEVYGVGTAVVDQAGEEFAAVDLDVADVPEREVAVAGRASEPRQSFWPWEVDRIVLAEPVFHGGDVVGALVTSSDASAVRRSMWNSWGLLLAAGAVLAMVAVVIADRTAGWVLRPVRAVDRAMTNMGGGRLDERIPPSAGPPELRQIIERFNDMAERVEHLMHRQQEFVANASHELRNPLNALMLRVEALALTVPSEHAADVEHVRAEALRMAQILDSLLLLADGVTLGSAQPVDLVDVAGRRVEARRAAGIGREIRVTAPGEEVWATVDPTALETAFDTVVDNAVKFAPAGTPLDVAVREGTDGPEIVIRDHGPGVPADELDHLTERFWRSPGHSAVTGSGLGLAIASELLAAGGGALRLELPDDGGLRARLQVRPWQEEASNANANANANA
AK018_02925963hypothetical proteinGTGAGGAGACTCGCCGCGGCGGTGGCCGCCCTGCTGCCGGCCGTTCTCGTCCTGGGCGCGTGCTCGCCGTCGGACGACGACGCCTGGACCGAGCAGCTCCCCGAGACGGTCACGATCGCGACCGGCGGGACGACGGGGATCTACCACGCGTACGGCACGGCGCTCGCGGCGCAGCTCGAGGAGCGGCACGGTGTCGAGGTGGAGGTGCTCTCGACGGGCGGGTCGATCGAGAACCTGCACCTGCTCGCCGAGGGGACGGCGCAGATCGCGTTCAGCGCCGCGGACGCCGCCGGCGACGCCGTCGACGGGACGGGGGAGTTCGACGCACCCATGGACGTGCGGTCCCTGGCCCGCGTCTACGACGACTTCGAGCACGTGGTGGTCCCGGCCGACTCCCCGGTGGAGGCCCTCGAGGACCTGCGGGGACTGCGGGTCTCGATCGGGGCGCGCGACTCGGGGACCTCGCTCATCGCGCACCGCGTCCTCGCCGCGGCCGAGATGGACGCCGCCGACCTGCGGCCGGTCGAGCTCGGGATCACCGAGTCGATCGAGGCGTTGGAGGCCGGGCGCATCGACGCGTTCTTCTGGTCCGGGGGGCTCAGCACGCCCGGCCTCGTCGACCTGTCGGACCGGATGGAGCTGCGGCTGGTGCCCCTGCAGCGGGTCGTCGACGAGCTGCGCGTGCAGCACGGCCACGAGTACCGGCCGGGCAGGGTGCCTGAGGGGACCTACGGGCTGCCGGAGGACGTGGACACCCTCGCCGTGCCCAACGTGCTCCTCGTCGGCGCGGACATGCCGGACGACGTCGCCCGCGGGCTGGTGGAGCTGCTCTTCGGGACCCGCAGCCAGCTCACCGAGACCGTCGGCGCCGCATCGGTGCTGGATCTCTACCGGGCGATCTACACCGCCCCCATCGAGCTGCACCCCGGCGCGCGGGAGTTCTACCGCGCCACCAAGTCCTGAMRRLAAAVAALLPAVLVLGACSPSDDDAWTEQLPETVTIATGGTTGIYHAYGTALAAQLEERHGVEVEVLSTGGSIENLHLLAEGTAQIAFSAADAAGDAVDGTGEFDAPMDVRSLARVYDDFEHVVVPADSPVEALEDLRGLRVSIGARDSGTSLIAHRVLAAAEMDAADLRPVELGITESIEALEAGRIDAFFWSGGLSTPGLVDLSDRMELRLVPLQRVVDELRVQHGHEYRPGRVPEGTYGLPEDVDTLAVPNVLLVGADMPDDVARGLVELLFGTRSQLTETVGAASVLDLYRAIYTAPIELHPGAREFYRATKSNANANANANA
AK018_029261101galE_4COG1087UDP-glucose 4-epimeraseATGCGTGTCCTGGTGACCGGCGGTGCCGGCTATCTGGGCTGCCACGTCGTGCTCGCGCTGCTCACGGCCGGTCACGACGTGGACGTCGTCGACGACTTCACCCGCGGCACACCGGCCTCCCTCGCGCGGGTCGAGCACCTCGCCGGTCGTCACGTCACCACGCATGCCGCCGACGTCGCCGACATCGACGCCGTCGAACGCATCTTCGCCACCGGTCGGTTCGACGCCGTGGTGCACCTGGCCGGGCTGCGCTCCACCGACGAGTGCCACGACCGCGTCCTGGACGCCTACGAGACCAACCTCGCCACCACGTTCGCGCTCCTGCGGTGCATGGCCTGGTACGGCGTCCAGCGCTTCGTGCTCTCCTCCTCAGCCGCGGTCTACGGCGGGTCCGACGACGGCACGCCCCTGGCCGAGTCCGCGCGCATCGTGCCGAGCTCGCCCCTCGGACGCAGCATGGCCACCAACGAGCACCTCCTGACCGACCTCGCGGCCGCGGGCGCGGTCCGGGTCGCCGTGGTGCGCTGCTTCACCACCGCGGGCGCCCACCCCTCCGGCCGCATCGGCGAGCTCGCGAAGGTACCGGGGGCCGGCCTCGTCGCCCGGATCGGCGAGGTCGCTGCCGGGCAGCGCCCCCACCTGGCCGTGCACGGCGGGGACCATCCCACGCACGACGGCACCCCGGTGCGTGACATCGTGCACGTCGCCGACGCCGCCGAGGGCCACGTCGCCGCTCTCGAGGGGCTGGACGACACCTCGCGGGCCGTGACCACGTGGAACCTCGGCACCGGTGTGCCCACCAGCGTCCTCGACGTGCTCCGCCGCGTCGAGCGCGTGCTCGGCCGCGAGATCCCGCACCGGATCGTCGACGCCCCGGCCCGGACCGTGGCGAGCGTCGTGGCCGACGTGACGCGCACGACGACGGAGCTCGGGTGGGCGGCCCGCCGCACGCTGGACGACGTGGTCCGCGACCACTGGCGCTGGCACCAGAGCAACCCGCAGGGCTACCCGCCCACCGTCACCCCCGAGACCCCGTGGCGCGGCGGCGTCGGGCACCGCCTACGGCTGGTGCCCCCGCCCGCGGCCGTCAACCCGAACTGAMRVLVTGGAGYLGCHVVLALLTAGHDVDVVDDFTRGTPASLARVEHLAGRHVTTHAADVADIDAVERIFATGRFDAVVHLAGLRSTDECHDRVLDAYETNLATTFALLRCMAWYGVQRFVLSSSAAVYGGSDDGTPLAESARIVPSSPLGRSMATNEHLLTDLAAAGAVRVAVVRCFTTAGAHPSGRIGELAKVPGAGLVARIGEVAAGQRPHLAVHGGDHPTHDGTPVRDIVHVADAAEGHVAALEGLDDTSRAVTTWNLGTGVPTSVLDVLRRVERVLGREIPHRIVDAPARTVASVVADVTRTTTELGWAARRTLDDVVRDHWRWHQSNPQGYPPTVTPETPWRGGVGHRLRLVPPPAAVNPNNANANANANA
AK018_02927420hypothetical proteinATGATCAGACTCCTCGCGCGCACCGTGATCTTCCTGCTCGGAGCCGCCATCGGCATCGTGCTGACCGACCTGCTGTTCTCCGCGTTCGACTGGCAGACGTTCGACGTCGTGTGGGGCAACCCGCTGGCGTTCGTGCTCGCCGTGGTGATCTTCGCCCTCGCCCAGGCGATCCTGTCGCCGTTCCTGGCCAAGGTGGCACGCAACAACGCGCCGACGCTCGTCGGCGCGGTCGGGCTGATCAGCACCTACGTCGCGCTGCTCATCGCGACGCTCGTCGCCCCCGAGGGCCTGGACATCGCCGGCTGGCAGGGCTGGATCATCGCGCCGATCATCGTCTGGCTGGTGACGATGCTGGCCACCTTCCTGCTGCCCGCCGTCATGCTCAAGGAGGCGCTGGAGAACCGGCGCGACGGCGACTGAMIRLLARTVIFLLGAAIGIVLTDLLFSAFDWQTFDVVWGNPLAFVLAVVIFALAQAILSPFLAKVARNNAPTLVGAVGLISTYVALLIATLVAPEGLDIAGWQGWIIAPIIVWLVTMLATFLLPAVMLKEALENRRDGDNANANANANA
AK018_029281467qacACOG0477Antiseptic resistance proteinATGAGCGCCCCGGGCAGGACCCGTGCCACCGGCCCGGCGTCCATGACCGTCGTCGTCGGCCTCCTCGCGTTCGTCGAGCTCACCAGCGGTGTCATCCAGGGCTACTACACGCCGCTGCTCACCGACGTCGCCCGCCACCTCGGCGTGCACGACGCCGACGTCAACTGGCTCGAGGGCAGCCAGCTCATGCTCTCCGCGCTCGTGGTCCCGGTCCTGGCCAAGCTCGGGGACATGGTCGGGCACCGCCGCATCCTGCTGTGGTCCACCGCCCTCACGGCGGCCGCCTCCCTGGCGCTGCCGTTCACCGACTCGTTCGCGGTGTTCCTCGTGGCCTGGGCGCTGCAGGGCTTCTACGTGGTGTGGCTGCCGCTGGAGATCGCGCTCGTCTGGCTGCGCACCCGCGACCTGCCGGACCGGTCGGCCACCACCGCCAAGGCTGCCGGCGTCCTGGTGGCCGCGCTGCAGACCGGGGCGATCGCCGGCGCGCTGGCCGGCGGTGCACTCGTGGACGTGCTGCCGCTGTGGATCGTGCTCCTGGTCCCGGCGCTGATGGTGTGCGCGTGCTTCGTCGTGATCCTGCTCGGCGTCGCGGAGACCCCCGACCCGGTCGGCGGGCGGCTCGACACCCGCGGGCTCGTGCTCATCTCGATGTCGCTGCTCGCCTTCACCGGTGGGCTGAGCCTGCTGCGGCTTGAGGGCGTCGCCTCGCCGGTCGCGTGGGCCGCCGTCGCGCTCGGCCTGGCGCTGCTGTGGCCGTTCGTGCGCGCCGAGCTGCGTCACCCCGACCCGCTGATCGACGTGCGGATGTTCCGCTCCCCCGCGCTGGCCCCCGTGTTCCTCACCGCCGGGCTGTTCGGCGTCTCCGTGCTCGGCGCCCAGGCACCGCTGTCCACGTTCGCCCGCACCGACCCCCAGGTGTACGGGTACGGGCTGGGCACGTCCGGGTTCCAGACGTCGCTGCTCATCGGCGTGTACCTGATCGCCATGATCGTCGGGGCGCTGTGCTTCCCGCGGGTGGCGGCACTGGTCTCGCCGCGGCTCACGCTGTTCGTCGCCGCCCTGTCCGTCGCGGTCGGGTTCGGCCTGTTCCTGCCGCTGCACGACACCTACGTCCAGGTCGCGACCAACATGTTGATCGTCGGGCTGGGGTCGGGCACGCTCGTCGCGGCCCTGCCCGCCGCGGCCGCCGCGGCGGCCCCGCCGACGCAGACCGGCGTGGCCACGGGACTGACCAACTCGGTCAAGACGGTCGGCGGGGCGATCGCGTCCTGCGTGTTCGGCATCGCGCTGCTCGGTACGGCCGGGGCGAACGCCGCCGAGACCGTGACCGGCACGGCCGGCACCCTCGCGGGGTACATGACCGTGTGGATCGTGTGCGGCGGCACCGCCCTGGTCGCGGCAGCGCTGCTGCTCGTCGTCCCGAAGGAGGCGTTCACCGACCGGGCCGCACACGCGCCGGCGGTCTGAMSAPGRTRATGPASMTVVVGLLAFVELTSGVIQGYYTPLLTDVARHLGVHDADVNWLEGSQLMLSALVVPVLAKLGDMVGHRRILLWSTALTAAASLALPFTDSFAVFLVAWALQGFYVVWLPLEIALVWLRTRDLPDRSATTAKAAGVLVAALQTGAIAGALAGGALVDVLPLWIVLLVPALMVCACFVVILLGVAETPDPVGGRLDTRGLVLISMSLLAFTGGLSLLRLEGVASPVAWAAVALGLALLWPFVRAELRHPDPLIDVRMFRSPALAPVFLTAGLFGVSVLGAQAPLSTFARTDPQVYGYGLGTSGFQTSLLIGVYLIAMIVGALCFPRVAALVSPRLTLFVAALSVAVGFGLFLPLHDTYVQVATNMLIVGLGSGTLVAALPAAAAAAAPPTQTGVATGLTNSVKTVGGAIASCVFGIALLGTAGANAAETVTGTAGTLAGYMTVWIVCGGTALVAAALLLVVPKEAFTDRAAHAPAVNANANANANA
AK018_029291356dapE_4COG0624Succinyl-diaminopimelate desuccinylaseATGCATCGACCTGAGGTGGCGCCCGTCACACCACGCCCGGGCGTCGCGGGGCGGCTGTCCCGCCTGATCCAGCTCCCCACGGTCTCCGCCGAGCTGGAGCAGCGCGGGCCCGAGCCGTTCGAGGCGCTCGTGGAGCTGCTCGCCGAGCAGTACCCGCTGGTCCACGCCCACCTCGAGCGCGAGCGGATCGGCGACCTCGGGCTCCTGTACCGCTGGCCGGGACGTGGCGGCGACGACGACGGACCGCTGGTGCTCATGGCCCACTTCGACGTCGTCCCCGTCGACGCCTCCGACGACTGGACCTACCCGCCCTTCGAGGGTCGGATCGCCGACGGCTGGGTCCACGGACGCGGCGCGCTCGACGACAAGGGTCCCCTCGTCGTCGTCCTCGAGGCGGTCGAGAACCTGCTGGCCGCCGGCTTCACGCCGGCGCGGGACGTCTACCTCTCCTTCGGCGGCGACGAGGAGTGCCACGGTCCCTCCGCGGAGACGATCGCCGCGACCCTCGAGGCGCGGGGCGTCGTGCCGTGGCTGGTGCTCGACGAGGGCGGCGCCGTCGTCGACTCCCCGCTGCCGATGGTCTCCGGCACCGCCGCGATGGTCGGCGTCGGCGAGAAGGGCGTCCTCACCGCACGGCTGACCACGCGCGGCGACGGCGGGCACGCCTCCATGCCGCCGACCACGACGGCCGTGCGGCGGATCGCCCGCGCCGTCGAGCGCCTGGGACCGCGCACGTTCCCCGCACGCACCCCGCGGGCCGTGACCGAGATGCTGCGCCGGTTCTCCGAGCGGGCCACCGGCCCGGGTCGCGCCGCGCTGCGCGCGCTGGCCGCCGCCCCGGCCGCGACGGCCCAGGCGTTCGTCGCCCGCGGCGGGGAGACCGCCGCTCTCGTGCGGACCACCGTGGCCGCGACCATGCTCGACGGCGGCACCGCGGCGAACGTGCTGCCCTCGCAGGCGTCGGCCACCCTCAACCTCCGCATCGCCCTGGGCGAGACCGTCGACGGCACCGTCGCACGGATCCGCCGCCGGATCGCCGACGAGCAGGTGGAGGTCGAGGTGGTCGAGGCGAGCGAACCCTCGCCCGAGTCCCCCACCGACGACGACCGGTTCGCGCTGATCGCCTCCGCCGTCGGCGCCTCCCACCCGGACGCCGCGACCGTGCCCTACGTCGTCTTCGCCGCGACGGACTCGCGGTACTTCCACCGGTTCTCGCCCGCGGTCTACCGGTTCGCGCCGCTCACGATGTCGGCGGCGCAGCGCGCCACCATCCACGGCGTGGACGAACGGGTCGAGATCGCCGAGCTGGAGCGCGGCGAGGTCTTCCACCGCACGCTGCTGGAGCGTCTCGGATGAMHRPEVAPVTPRPGVAGRLSRLIQLPTVSAELEQRGPEPFEALVELLAEQYPLVHAHLERERIGDLGLLYRWPGRGGDDDGPLVLMAHFDVVPVDASDDWTYPPFEGRIADGWVHGRGALDDKGPLVVVLEAVENLLAAGFTPARDVYLSFGGDEECHGPSAETIAATLEARGVVPWLVLDEGGAVVDSPLPMVSGTAAMVGVGEKGVLTARLTTRGDGGHASMPPTTTAVRRIARAVERLGPRTFPARTPRAVTEMLRRFSERATGPGRAALRALAAAPAATAQAFVARGGETAALVRTTVAATMLDGGTAANVLPSQASATLNLRIALGETVDGTVARIRRRIADEQVEVEVVEASEPSPESPTDDDRFALIASAVGASHPDAATVPYVVFAATDSRYFHRFSPAVYRFAPLTMSAAQRATIHGVDERVEIAELERGEVFHRTLLERLGNANANANANA
AK018_029301008hypothetical proteinGTGACGGCTCAGCAGCCGGGCGAGCAGCAGGATCCCCGCCGCCGCACCGGCTCCGAGCAGGGTGAGCGCGATCCGCTCGAGGGCGCCGGTGGCCGGCGCGTCGCCCGCCGACGTCCCGACCACCGTGAGCGTGAGGAAGATCGTGTAGACCCAGTACGGGGCGACCAGCGTGGTCACGACGCACCCCACCACGCCGACGACCACGACGGCCGACATCAGCCAGGGCGGTGCGCCCAGCGCGACCAGCACCACCACGGCGAGGCCGCCCACGACGGTGCCGCCTGCCCGGGCGACCGCACGATCGGTGATGTCACCTGTCCGCGGGACCATGACCATGTAGAACGTCAGCAGCAGCCACCACGAGTGGGTGTCGGGAAACCAGGTCATGGCCCACCAGGTCCCGACGGCCGTGACGAGGGTCAGGGCGACCACGTAGAACACGGACTCCGGGCCGGTCAGGGGATCCCGGCGGCGGCGGACGACACCGCGCGTGAGCAGCGTGAGGACCAGCGCTGTGACGAGCCCGCCGGCGAGCACCACGACGGCGAGCGGCCAGGCGCCGGCCAGCGCACGCGGGTCGGCGCCCCCGAGGGCCGGGGGCGCGACCGTCAGGGCGGCGATGCTCGCCGCAGCAGGCGCGCCGCCGGAGGTCCACGCTCGGCGGGCCGACCATCCCAGCGCCGCCGCGACGAGCGTCATGAGCACCACGGCGGTCCAGACACGAGCGCCCGCCAACGGGGCGACGAGAGCGAGGACGCCGGTCAGCGCGGCGAGCGCCCACGCCCGGCGCAGCGAGGCGAACGCCGCGACGACGGTGGGCAGCAGGCCCAGGAAGTACGGCGTCGACAGCTCCGGGGCGATGACGATCAGCACCACGAGGGGCGCGACGGCGAGCAGACCGGCGAGGAGCAGACGGCGTCGCGACGAGTCCATGCCGCCCAGCCTGACCAGACGCGGCCGAGCGCGCACGGCCAGAGCCAGCGACCGCGACGAAGTCTCACTGGTTGAMTAQQPGEQQDPRRRTGSEQGERDPLEGAGGRRVARRRPDHREREEDRVDPVRGDQRGHDAPHHADDHDGRHQPGRCAQRDQHHHGEAAHDGAACPGDRTIGDVTCPRDHDHVERQQQPPRVGVGKPGHGPPGPDGRDEGQGDHVEHGLRAGQGIPAAADDTAREQREDQRCDEPAGEHHDGERPGAGQRTRVGAPEGRGRDRQGGDARRSRRAAGGPRSAGRPSQRRRDERHEHHGGPDTSARQRGDESEDAGQRGERPRPAQRGERRDDGGQQAQEVRRRQLRGDDDQHHEGRDGEQTGEEQTASRRVHAAQPDQTRPSAHGQSQRPRRSLTGNANANANANA
AK018_02931735hypothetical proteinATGGGCACCCGTCCCGGGACCGGCACGACGCATCCCGACGAACCGCACGCGGCGGCCGGCCTGGCGCAGCGTCTCAACTGGCTGCGTGCCGGGGTGCTGGGCGCCAACGACGGCATCGTGTCGGTGGCGGCCGTCGTCGTCGGCGTCGCAGCGGCGACCACGGCGCAGGCCGCAATCCTCACGGCGGGGCTCGCCGCGCTCGTCGGCGGGGCGATCTCCATGGCGCTGGGCGAGTACGTCTCGGTGTCGTCCCAGTCCGACACCGAGAAGGCCCTCATCGCCAAGGAACGCCACGAGCTGGCTACCATGCCGGACGAGGAGCTGGACGAGCTCACCGAGGCCTACCGGGACCGGGGGCTCTCCGAGGAGACCGCGCGTCGGGTGGCCGTCGAGCTGACCGAGCACGACGCCCTCGGGGCCCACCTGTCCACCGAGCTGAACCTCGCCGCCGACGACGTCGTCTCACCGTGGCACGCCGCGATCGCCTCGTTCGTCGCGTTCACCATCGGCGGCCTGCTGCCGTTCGTCACCGTGCTGCTGGTGCCGGAGCCCGCCAGGGTGGTGGCGACCTTCGGCGCCGTCCTCGTCGCGCTGGCCCTGACCGGTGGCACGGCCGCCGTGCTCGGCGGCGCCCGCGTGGCCCGGGCGGTCCTGCGGGTCGTGGTCGGCGGCGCCCTGGCCCTCGGGGCGACCTTCGCCGTCGGGTCCCTGCTCGGCAGCACCGGCGTCGTCTGAMGTRPGTGTTHPDEPHAAAGLAQRLNWLRAGVLGANDGIVSVAAVVVGVAAATTAQAAILTAGLAALVGGAISMALGEYVSVSSQSDTEKALIAKERHELATMPDEELDELTEAYRDRGLSEETARRVAVELTEHDALGAHLSTELNLAADDVVSPWHAAIASFVAFTIGGLLPFVTVLLVPEPARVVATFGAVLVALALTGGTAAVLGGARVARAVLRVVVGGALALGATFAVGSLLGSTGVVNANANANANA
AK018_029321008degA_6COG1609HTH-type transcriptional regulator DegAATGCCTGAGCCGACGGCGACCATCCACGACGTGGCCCGCCACGCCGGGGTGTCGGCCGCGACCGTCTCCAACTTCTTCAACTGGCCCGACAAGCTGTCGGACCGGATGAAGGAGCGCGTGGGCGCGGCCGTGGACGCGCTGGGGTTCGTGCCGAACATGCCGGCCCGGCAGCTGCGCCGCCAGCACAGCGGCATCGTCGGCCTGAGCGTCGTCAACGCCTCCAACCCGTTCTTCGCGGGGCTGGCCACCGCCGTCGAGCAGGTCGCCGAGGACGCGGGGCTGTCGGTCGTGGTGGGGTCGTCCCACGAGTCGCCCGTGCAGCAGGAGAAGTTCCTCACCCTGTTCGAGCAGCTCCGCTTCGACGGCGTGGTGGTCACCCCGACCGACGACGAGCTCGAGCCGTTGCGCCGCCGCCGCGACCGGGGCACGCCGGTGGTGCTCGTGGACCACGAGGACCCCGACGGGCGGCTGTCCTCGGTCAGCCTGGACCACCGCGAGGGTGGCCGGCTCGGGGCGCGGCACCTGGTCGACTCGGGCCGCCGTCGGCTCCTGTTCGCCGCCGGTCACGAGGGCGTGCGGCAGGTCGCGCGGCGCCTGGAGGGCTGCCGCGAGGTCGTGGCCGCCGCCGAGGGGGTGCACCTGGAGGTGGTGCGCTCCGAGGACCTGGACCTCACCGTCGGTGAGGAGACCGGGACGTGGATCGCGTCGCTGGACGCCGACGAGCGTCCCGACGCCGTGTTCGCCGGGAACGACCTGCACGCCATCGGGCTGGTCGGCGCGCTGCTCGCCGGCGGGCTGCGGGTCCCCGAGGACGTCGCCGTGCTGGGGTACGACGACATCCCCTTCGCCGCGCGGGCGTCGGTCCCGCTGACGACGGTCCGGCAGCCGATCGCGGAGATGGGCCGGGCGGCGGCGCGGCTGCTGCTGGACGAGATCCGCACGCCGGGCAGCGCCCCGCGCGACGTCGTCTTCCCGCCCGAGCTCGTGGTGCGCGCGTCGGCACCCTGAMPEPTATIHDVARHAGVSAATVSNFFNWPDKLSDRMKERVGAAVDALGFVPNMPARQLRRQHSGIVGLSVVNASNPFFAGLATAVEQVAEDAGLSVVVGSSHESPVQQEKFLTLFEQLRFDGVVVTPTDDELEPLRRRRDRGTPVVLVDHEDPDGRLSSVSLDHREGGRLGARHLVDSGRRRLLFAAGHEGVRQVARRLEGCREVVAAAEGVHLEVVRSEDLDLTVGEETGTWIASLDADERPDAVFAGNDLHAIGLVGALLAGGLRVPEDVAVLGYDDIPFAARASVPLTTVRQPIAEMGRAAARLLLDEIRTPGSAPRDVVFPPELVVRASAPPGPT0017992_12478DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_02933969czcD_2Metal cation efflux system protein CzcDGTGCGCCGCCGGTCCCCCGCCGTCGGGCACCGTGCCGTCGGGCACCGCCGCCTGAAGCCGCCGATGCCCCACGACCACGCGCACGCGCACGAGACCCACCGCGGACGGCTCGCGACCGCCTTCGCGATCACCTCGACGGTGGTCCTCGCCCAGGTGGTCGGCGCGTGGCTCACCGGCTCCCTCGCCCTGCTCGCCGACACGGTGCACCTGCTGGTAGACGCCTCCGGGCTGGCGATCGCGCTGTTCGCCGCGCACGTCTCGCGCCGGCCGCCCACGTCCCGGCGGACCTGGGGGCTGCGCCGGGTCGAGGTGCTCGCGGCCCTCGCGCAGGCCACCGTCCTGCTCGGCGTCGGGGTGTTCGTGCTCGTCGAGGCCGTGCAGCGGCTGCGACGACCGCCCGAGGTCCCCGGCGAGGAGCTGATCTGGTTCGGCGTCGTCGGGCTGGTGGGCAACCTGGCCGCGCTCGCCGTCCTCGCCGGCCGCCGCAGCGCGAGCCTCAACCTGCGTGCGGCGTTCCTCGAGGTGCTCAACGACGCGCTGGGATCCGTGGCCGTGATCGTCGCCGCCGTCGTCCTCACCACCACCGGCTGGCCGTACGCGGACACGGTCGCCGCCCTGGCCATCGGCGCGCTGATCCTGCCCCGCGCCCTGCGGCTCATGCGCGACACCGCCGCCGTGCTCCTGGAGTCCACGCCGCCGGGCCTGGACATCGACGACGTGCGCCGCCACCTGCTCGACGTCGAGCACGTGCGCGAGATCCACGACGTGCACGCCACCCTCGTCGCGACCGGGCTCCCCCAGCTCTCCGCCCACGTCGTCGTGGACACGGGGTGCTTCCGCGACGGGCACGCCGGGCGGATCCTCGACGAGCTGCAGGACTGCGTGCGGGACCACTTCGGCGTCGAGCACACGACGTTCCAGGTCGAGCCCGACACCCACCCGGAGCACGAGCACCCCACGCACGCGTGAMRRRSPAVGHRAVGHRRLKPPMPHDHAHAHETHRGRLATAFAITSTVVLAQVVGAWLTGSLALLADTVHLLVDASGLAIALFAAHVSRRPPTSRRTWGLRRVEVLAALAQATVLLGVGVFVLVEAVQRLRRPPEVPGEELIWFGVVGLVGNLAALAVLAGRRSASLNLRAAFLEVLNDALGSVAVIVAAVVLTTTGWPYADTVAALAIGALILPRALRLMRDTAAVLLESTPPGLDIDDVRRHLLDVEHVREIHDVHATLVATGLPQLSAHVVVDTGCFRDGHAGRILDELQDCVRDHFGVEHTTFQVEPDTHPEHEHPTHAPGPT0004255_2252DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COBALT_RESISTANCECOBALT_RESISTANCE-COBALT_TRANSPORT,PGPT0004255-czcD|zitB|yrdO-K16264NANA
AK018_02934393cmtRCOG0640HTH-type transcriptional regulator CmtRGTGTACCGATGCTACGGTCGGCAGGTGGCCACCCTGACGCACACCGACGCCCTCGCCCGGACCGCGCACGCCCTGGGCGACCCCACCCGGGCACGCATCCTGCTCGAGCTGCGGCAGGCGCCGGCCTACCCGTCCGACCTCGCCGAACGGCTCGCCGTGTCCCGGCAGGTGATCTCCAACCAGCTCGCCTGCCTGCGCGGGTGCGGGCTCGTCGCCACCCGCCCGCAGGGCCGCCGCACCGAGTACCGGCTCGCCGACCCGCGCCTCGCGCACGCCCTCGGCGACCTGCTCGACCTGACCCTCGTCGTCGACCCCGCCTGCTGCGGGCCGGACTGCACGTGCGCCGCCGGTCCCCCGCCGTCGGGCACCGTGCCGTCGGGCACCGCCGCCTGAMYRCYGRQVATLTHTDALARTAHALGDPTRARILLELRQAPAYPSDLAERLAVSRQVISNQLACLRGCGLVATRPQGRRTEYRLADPRLAHALGDLLDLTLVVDPACCGPDCTCAAGPPPSGTVPSGTAAPGPT0004390_429DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-LEAD_HOMEOSTASIS,PGPT0004390-cmtR-K21885NANA
AK018_02935849hypothetical proteinATGGATCTCGCACCGACGCGCGCCGACGTCGCCTACGCCGCCGACTCCCCCAGCCAGCGACTGGACGTGTGGCTGCCCGAGGACGCCCAGGACGGGCCCGAGCTGCCCGCCGTGCTGTTCGTGCACGGCGGCGGCTGGTACTACGGGTCGCGCACGATGGCGGCACCGAAGGTGGGGCCGCTGCTGGCCGGCGGGTTCGTGGTCGCCAGCCTGGACTACCGGCTCTCGGGCGAGGCGCCGTTCCCCGCGGCGGTCGAGGACGTGATCGCCGCCGTGCGGTTCCTGCAGGGGCTCCCCGAGGTGGACGAGCACCGCGTCGTGCTCTTCGGGGAGTCGGCGGGCGCGAACATCGCCTGCGTCGTCGGGGCGCTGGCGGACCAGGTGCCGCCGTGGCCGGCTGCGGGGTCCGGGCATGACGACGGCACCCCGGTCCCGCGGGTCGCCGCGGTGGTCGACTGGTACGGGCCGACGGACTTCACCCTGATGGACTCCCACGCCGCCGAGATCGGCTGCGCGCCGAGCACGCACTCGGCGGACGACTCGCCGGAGTCGCGGTACGTCGGCTCTCCGCTGCGCACCGCCCCGGAGGCCGCGGCGCAGGCGGGGCCCCTGCCGCACCTGGCGTCGGCGGGCGACGCACCGCTGCCGGCGTTCGCGATCGCGCACGGCACGGCGGACTGCACGGTCGCGCCGGGGCAGGCCGAGCTGCTCGTCGACGCGCTGGAGCGGCGTGGGGACCGGCCGTGGGTCACCTGGCTGGAGGGCGCCGAGCACTCCGACGCCCGGTTCGACGCCGAGCTGCTGGCACCCACGATCGAGTGGCTTCGGGAGGTCCTGGCGCGCACCTGAMDLAPTRADVAYAADSPSQRLDVWLPEDAQDGPELPAVLFVHGGGWYYGSRTMAAPKVGPLLAGGFVVASLDYRLSGEAPFPAAVEDVIAAVRFLQGLPEVDEHRVVLFGESAGANIACVVGALADQVPPWPAAGSGHDDGTPVPRVAAVVDWYGPTDFTLMDSHAAEIGCAPSTHSADDSPESRYVGSPLRTAPEAAAQAGPLPHLASAGDAPLPAFAIAHGTADCTVAPGQAELLVDALERRGDRPWVTWLEGAEHSDARFDAELLAPTIEWLREVLARTNANANANANA
AK018_02936957hypothetical proteinGTGCCCCCGCCCGCACCCCTCGACGAGGAGGTCGGCCGGCCCACCCCCTGGGCGGCCGACGTGGCCTCCGGCGCGGCCGCGGTGCTGCTCGTCGCGCTCGTGGCGGTCTCGGCGTCCCTCGCCGTCCGCGGCGCGGCCGGGCTGCGCGACACCCTCCAGGTGCTGGCGGGCGGGCTCGCGCTGGTCACCGCGGCGGCGGCGGTCGGTGTGACGGTGCGGCGCACGCACGAGGTCGCCGGTGGTGCGACGGCGGTGCCGCGCGCGGCCGCGTCCCCTGCCGGGCACGACGACCTGGTGCACGAGCGGCTGCGCGTCGCCGGCGACCTGCACGGCGTCGTCGGCCACCTGCTGGGGCTGGTGGACCTGCACGCGGACGTCGCGGCCGAGGCGGTCGGCCGGGACGACGACGGGGCCCGGACCGCGCTGCGGCACGTGCGCGGGGCGACGGCAGCGATGCGGCACGAGCTCCGCGCCACCGCGGCGCTGCTGGGCGACCGGCCCGCGACGGACCCGACGGGCCGCGGCGCGCGGGGCGTCCTTCCCGCGGCGACCGGCCCGGCGGGGCTGTCGGCCCTGGTCGAGCCGGTGCGCTCCGCGGGCGTGCAGGTCACCACCCGGGTCGACGTCCCGACGGGCTCGATCGACGCGACGGTCGACGCCGCGGCCTACCGGATCGTCCAGGAGTGCGTGGCCGACGTGCTGCGCCGCGCGACAGCACGGCACGTGCTGGTGCGCCTCGCGGTCGCCGACCGCCGCCTGCGGATCACGGTGGCCGACGACGGCGCGGGACGGTCCGTCGTCGGGCGGTCCGTCGCGGGAGAGCCGGACCCGGCGGGCTGCGGGCCGCCGCAGGCCGTGGCGCGCGCGGTGCTGCTCGGCGGCACAGTGCAGGCGGGGCGGTCGGCCGACGGCGGGTTCGCGGTGACGGCCGTCCTGCCGGCCCGGCTCGCGGAGTGAMPPPAPLDEEVGRPTPWAADVASGAAAVLLVALVAVSASLAVRGAAGLRDTLQVLAGGLALVTAAAAVGVTVRRTHEVAGGATAVPRAAASPAGHDDLVHERLRVAGDLHGVVGHLLGLVDLHADVAAEAVGRDDDGARTALRHVRGATAAMRHELRATAALLGDRPATDPTGRGARGVLPAATGPAGLSALVEPVRSAGVQVTTRVDVPTGSIDATVDAAAYRIVQECVADVLRRATARHVLVRLAVADRRLRITVADDGAGRSVVGRSVAGEPDPAGCGPPQAVARAVLLGGTVQAGRSADGGFAVTAVLPARLAENANANANANA
AK018_02937480hypothetical proteinATGGGACTCGCCTCGCGCCTGCTGCGCACCCGCTGGCTCGTGCGTGCGCCGATCCACCTGTACCGCACCGGGCTGGGATTCCTCCTCGGTGACCGGATGCTCCTGCTGACCCATCGCGGGCGCTCGAGCGGCAAACCCCGGCAGGTGGTCCTGGAGGTCTCCGCCCGGCCGGCCGACGACCACCTGGTCGTGGTCAGCGGACTCGGCACCCGGTCCCAGTGGCTCCGCAACCTCGCCGCCGAGCCACGCGTGCTGGTCTCCACCGGGCGTCGGCGCGACGTGCGGGCGCTCGCGGGCGTCCGCGCCCCCGACGGCGCGGCCGCGATGCTGCGCGACTACGCCCGTGAGCACCCGACGAGCTGGGAGAACCTCCGTCCGGTCGTCGAGGAGTGGGCCGTGCCCCTGGCCGCCGAGCGCGGCGAGGAGGACTGGCTACGCGTCGTGCCCGTGGTGGACCTGTACCTGCTCGCCCCGTCCTGAMGLASRLLRTRWLVRAPIHLYRTGLGFLLGDRMLLLTHRGRSSGKPRQVVLEVSARPADDHLVVVSGLGTRSQWLRNLAAEPRVLVSTGRRRDVRALAGVRAPDGAAAMLRDYAREHPTSWENLRPVVEEWAVPLAAERGEEDWLRVVPVVDLYLLAPSNANANANANA
AK018_02938813hypothetical proteinATGACCGACCTGCTCACCGCGCACCGCCGCCGGATGCTGTTCGTCCCGACGGCGATCGTCGCCGCCATGGCGCTCCTCGTGGCCACCCTGACGTCCTGGGGTCCGAGCCTGTCCGCCGTCTACCGCGAGCACCGGGACCAACGCTGGGTCCCGGCGTCGTGGGTCCTGACCGTCGACGACTTCCCGGACGGTGACGCCGAGGCGATCCCTGTGCGCGAGGAGTGGCTGGCGAGGCCCTCCCGGGACGACCCGCACGGTCCGCGGACCCCCGTCCCGCACCGGCTGCCCGGGCTGGAGCTCATCACCTCGCCCGGGTACGGCTGGGACTGGTGCGGCGACCTGTGGACCACCGGCCTGCACCGCGGCGACGTCGCCGTCTCCGGTGTCCGGACGGGGGACCTGGAGGTCTTCACCCTGGCCGCCCACCCCGAGGCACCGAGGCCCGCCGCCTACCTGCTCGGGGTCAACCTGCGGGAACCCGCGGCAGGCTCGCACGTCGACCCGCAGGTCCCGCAGACGGCGCTGCTCTGCGACGGGCCTGCACCCGCCGAGGTCGCCCCGCTCGGCGACCGCATCGTGCCCGGCCCCGGCGGCTCCCCCGTCGAGCTGCGGGGCGACCGCGGCTGGGCGGGGCTCACGGGTCCGTCGCCGTCGGGGAGCGCCGCCGGGTCCCGGCAGGTCGCCGCCGCCGTGGCCTGGTTCGACGACCGCGTGGTGCTGCTCGGGGTGACGGCACCGGCCGGGGCGACCGTGGACTGGGAGGCGGAGATCGACCGGCTCATTGCGGCAGCCACGCCCGCGACCACCGTGTGAMTDLLTAHRRRMLFVPTAIVAAMALLVATLTSWGPSLSAVYREHRDQRWVPASWVLTVDDFPDGDAEAIPVREEWLARPSRDDPHGPRTPVPHRLPGLELITSPGYGWDWCGDLWTTGLHRGDVAVSGVRTGDLEVFTLAAHPEAPRPAAYLLGVNLREPAAGSHVDPQVPQTALLCDGPAPAEVAPLGDRIVPGPGGSPVELRGDRGWAGLTGPSPSGSAAGSRQVAAAVAWFDDRVVLLGVTAPAGATVDWEAEIDRLIAAATPATTVNANANANANA
AK018_029392061hypothetical proteinATGACGGACGTCCCGTTCACCCCGCTGGCGGGCTCTCCCCCGCAGCTGGAGGGCCTCTCCGCCGCCGCGGCACGCGCAGCCGCGGCTCTGGCGACGACCCGGACCGACCTGGACCGGCTTCGGCGCGGTCTTGAGCAGCACCGCTCCGACGCCGTCGACGCCGCACGCCAGGTCACCGACGCCCTCGGGGCCGAGGCGGACGTCGTCGGCACGGTGCTGCGGCACGCCGCCACCGTCCTGACGGGCCGCGCCGCGGACCTGGCGAGCGAACGGCGGGAGGCCGCGCTGGCGCTCGAGCGCCGCGCCGTCGCGACCGCCCGGCTGCGGCACGCGGAGGCGGACGAGGCCGAGGCCTGGCAGCAGGACGCGCTGACCGCCGACCCGGCGACCACCGCCACCCGGTTGTGGGAGGCCCGGCGACGCGCCGAGCGGGCGCGCCAGGACGTCGCGGCCGCCGAGGCCGACTGGTACCGGGCCCGCGAGGCCAAGGAGTCCGGGTCCCGGCTGGCCGCCGCGCGGCTCGGGGGCCTCGACCGCACCGGAGCCCTGCGCCTGGCCGCCGCGTCCGGGAGCTCCCTGGCGCGGTACCGGGCCGGGTGGGACCGGGGGGTGCGGCTGGCCGCGATGCTGGCGACGACGTTCCCCGACGGCTCGCGCGAGGACCGGGCCGCCGCCCGCGCCGACCTGGCCGCCGCGATCCGTGCCGCCAGCGACGACCCCGTCGTGTGGACCGCGTTCTGGCAGCACGTCACCCCGGCACAGGTCGCCCGGGTCTTCGGCTCCGGGTCCGGCGCCCCCGTGCAGGAGCTGGCCGACGGCCTCGCGGCGTGGGCCGGCACGGCGACGGCGACGGAGCAGCGGGAGCAGGGCGCGGCGCTGGTCGCGGCGCTCGGGGACTCCACGCTCGGGATGGACGACCGGGCGCAGTTCGTCGCCGGCCTGTTCGCGGGTCTCCCGCTCCCGGTGTTCGTCGGCGCGTCCGACGCGCTCGGCGCCCGCCACGGCCACGAACCTCGCGACGACCTCTTCGTGGCAGGGTCGGGGCCCGTGGTCGTCGCGGTCGCGACCGGACTGTCCGCCGACCCCGACGCGGCGCTCGACCACCTCGCACCCGACGACGCCGATCTCGCCGCCGTGCGGATCCGGTCCTGGTTCGGCCGGGTGCCGCCGGACGGCTGGCCCGACGGCGGGGCCGCGGTGGCAGGTCTGCTCGCCGTGGCCGTCCGGCACGGCAGCGCGTCGTCGGACTCCGCGACGCAGACCCGGGCCGCGCTCGTGGTGGAACGCGCCACGCCGGAGCTCGTGGGTCATCGCGGGCTGCTCGGCCCCCACTCCGCGGTCCCCGACGAGGCCGCACGGCACGTCGCGCTCGCGTACGAGCCGTACATCCCCGTCTTCGAGGAGATCGAGGACCCCGAGCTGGACGACGGGACGACGCCGGGCACGGCGACCTGCGTGCAGCCTCGGCTGGACGCGTTCGAGCTGCGCCGGCTCATCGGCGTGACGTCGGGCACCCCGGTGGCGGCCGACCACTGGCTGGGTGCCGCCGACCGCTACGTGGCACGGGTGGCGGACGGCATGGGCGCACCGCTGGACGCCTCGGGCCGGACCGCCGCGGCGCAGGACACCGTCGGGGACACCGGGGTCGTCGCCGGTGCCACCCGCTCGCCGATCCTGCTCGAGGCCCGCGCCGACCAGGCCCGCACGGAGGCGGCGACGGGGTGGCTCAACACGGGCCTCGGCCTGTCGACGGCGACGGCACGGCCGGCCGCCTCCGTGATCACGACCGGCGCGGGTCTGCTGCTGCCGCCCCTGCTGCCCGACCAGGTGGCCGAGGCGCGCGAGACCGTCCTGCGCGACGAGTCGCTGCTGCGCGAACGGTTCGCCGCCCCGTTGCACGAGGCGGCCACGGAGGCCGACGCGGCCGCCGGCCTCGACCCGGAGGCCGCCCCTGCCCGGCTCGACCAGCTCGATCCCGACTCGCACGCGATCGGGAGCCGCTTCGACGAACGCTACGGGGTCTACTCCGACCTCCGCCGCACCCTGGGAGACTCCTCATGAMTDVPFTPLAGSPPQLEGLSAAAARAAAALATTRTDLDRLRRGLEQHRSDAVDAARQVTDALGAEADVVGTVLRHAATVLTGRAADLASERREAALALERRAVATARLRHAEADEAEAWQQDALTADPATTATRLWEARRRAERARQDVAAAEADWYRAREAKESGSRLAAARLGGLDRTGALRLAAASGSSLARYRAGWDRGVRLAAMLATTFPDGSREDRAAARADLAAAIRAASDDPVVWTAFWQHVTPAQVARVFGSGSGAPVQELADGLAAWAGTATATEQREQGAALVAALGDSTLGMDDRAQFVAGLFAGLPLPVFVGASDALGARHGHEPRDDLFVAGSGPVVVAVATGLSADPDAALDHLAPDDADLAAVRIRSWFGRVPPDGWPDGGAAVAGLLAVAVRHGSASSDSATQTRAALVVERATPELVGHRGLLGPHSAVPDEAARHVALAYEPYIPVFEEIEDPELDDGTTPGTATCVQPRLDAFELRRLIGVTSGTPVAADHWLGAADRYVARVADGMGAPLDASGRTAAAQDTVGDTGVVAGATRSPILLEARADQARTEAATGWLNTGLGLSTATARPAASVITTGAGLLLPPLLPDQVAEARETVLRDESLLRERFAAPLHEAATEADAAAGLDPEAAPARLDQLDPDSHAIGSRFDERYGVYSDLRRTLGDSSNANANANANA
AK018_02940372hypothetical proteinGTGGACGACGCCGGCAGCGTCCCGGCCCCCGCCGCTAGCGTCCCGGTCATGGCCCACCTCGACCTCGACACCAGCGACCTCACCGCGGCAGCACGGCAGGCCGGACGCGCCGCGGACGCCCTCGAGGCCGTCGCGCACGACCCCGTGACCGCGGGGGGCGGACAGGCCGATGCCCGCGCCGCCGCCGGCGACCCGGTGCTCGCCGCGGCCGTGACCGACCTGCTGGACGCCTGGCGCCCCGCGCACCGCGACCTCGTCGCCACGCTCGCCGGCCTCGCCGACCGCCTGGGGGCGGCGTCGACCGCGTTCGAGCAGGCCGAGGTCGCGGCCGTCGAACGCCTCGCGCGGGCGGTGACCGGGGACGGGTCATGAMDDAGSVPAPAASVPVMAHLDLDTSDLTAAARQAGRAADALEAVAHDPVTAGGGQADARAAAGDPVLAAAVTDLLDAWRPAHRDLVATLAGLADRLGAASTAFEQAEVAAVERLARAVTGDGSNANANANANA
AK018_02941681hypothetical proteinGTGCCCGCTCCGACCGACTCGCCCGGCCGCGCCGACGCGCGCGTCAGCGACCCGCCGCGCCGACCGGGGGAGGCGCCCCCGCTGCCCCGCCGCCGGTTCACCCATCCCGAGCTCGTCGACCTGCGCACCGCGTGGCTGGCCGAGCAGCGGCTCGCCGCCGACCGGGACCACTCGTGGTGCCCCGACCGGCACGGGTGGATGCTCCGCGACGGCCTCGACGCGGTGCTCGAACCCGTGGTGCTGCCGGACACCTGGGGCGCGACGTCGTTCTACCGGTTCACCGAGCTGGACGCGCCCGTGGCCGCCGACCTGCTGGAACGCCTCCCCGAGGAGTACCTGCGCACCGAGCGGCAGAACGACGGGCCGAGCCTCGGCGCCGTGCTGCGCGCCGTCGTCGCCCACCCCGACCGGCTGCGCGCGCACGGCTACCTCGTGGGTCCGGGCCGCTGCGACGAACGGATCACCGTCGAGGGGGTGCTGGTGCGCACCGACCACGAGTTCGTGCTCGGCGACCACCACGGGCCCGGGTGCCAGTGCGACCACCTGGAACGGTTCGTCGCAGGGCTCGGCGTCGACGACGCGCTGGTCCCGCCGCACGAGGTCGGCCGGTGGTGGGGCCTGGGCACGGGGCGCGGCCCCGCCGAGCCGGAGCAGTACTGGTACCGGCTGTGGTGGGACTGAMPAPTDSPGRADARVSDPPRRPGEAPPLPRRRFTHPELVDLRTAWLAEQRLAADRDHSWCPDRHGWMLRDGLDAVLEPVVLPDTWGATSFYRFTELDAPVAADLLERLPEEYLRTERQNDGPSLGAVLRAVVAHPDRLRAHGYLVGPGRCDERITVEGVLVRTDHEFVLGDHHGPGCQCDHLERFVAGLGVDDALVPPHEVGRWWGLGTGRGPAEPEQYWYRLWWDNANANANANA
AK018_02942471hypothetical proteinATGTCTGACACGACCTCGCGACCCGCGCCGCGCACCTACCCGACGAGCCCGTCCAGCGAACCGGTGAGCGACGAGCTCCTGGTGGTCCACCTCGCCGACCGCCCCACCGAGTACTTCCGGCGCCCCGGTCTCGAGCGGTTCGAGGTGATCGACGGCGTCCTGGCCGTCCGCCTCGCGCCCGACGGCGAGACGCCGCGCCGCACCCGGCACTTCCCGCTGGAGCAGGTCGTCGAGTACGTGCTCGAGGACCCGAGCCCCGCCTACGAGCGGGCCTTCGACGCCTGGACGCAGGCCGAGTTCGGCGTGGACGCCGAGACGTACCGGTCGATGAGCGACGCCACCCAGGACGTCACGATGGCCGAGAAGATGCGCCGCCAGATCGCCGAGGGGCTCGGCGTCGACCCGGACTCGGTGCACTTCGGCGGGTCCTTCACCATCGAGGAGCCCGACGACTGGGAGGACGACGAGTAGMSDTTSRPAPRTYPTSPSSEPVSDELLVVHLADRPTEYFRRPGLERFEVIDGVLAVRLAPDGETPRRTRHFPLEQVVEYVLEDPSPAYERAFDAWTQAEFGVDAETYRSMSDATQDVTMAEKMRRQIAEGLGVDPDSVHFGGSFTIEEPDDWEDDENANANANANA
AK018_02943891hypothetical proteinATGACCAGCGACACCGACGGCCCCACCACCCGCACGCTCGACGTCCCCGGTGCCGAGATCGCCTACGACCTCCGTCCCGGCACCGACGCCGGGCAGTGCCCCCTGTTCGTGCTCGGCAACCCGATGGCGGCCGACGACTTCGCGCAGCTCGTCGCCGAGCTCGGCGACCGCACCGTCCTGACCTACGACCCGCGCGGCGTCGGACGCTCCACGTTGGCCGACGACGGCGGCACCGCGGTCGGCGACCACGCCGCGGACCTGCACGCCGTGGTCCACGACGCCGCCCTCGGCCCCGTCGACGTGCTGGGCTCCTCCGGCGGCGCCGTCACCGCGCTCGCCTGGGCCGCCGCCCACCCCGACGACGTGCGCCGCGTCGTCGCCCACGAACCGCCCCTGACCGCGCTGCTCGAGGACCGCGACGTCGCCGTCCGCGCCCAGACCGACATCGTCGCCACCTACGCCGAGCGCGGGTTCGGCCCGGCGATGGCGAAGTTCCTCCGGCTCGTCTTCGCCACCGAGCCCCTCACGCCCGCGTTCCTCGCCGCACCCGACCCCGACCCGGCGCAGTTCGGCCTGCCCACCGCCGACGACGGCCGCCGCGACGACCTGCTGCTCGGCCGCACCCTCGCCACCATGCCGCTGTGGGAACCACCCGTCGAAGCCCTGCGCGCCCTGACCCGGGACGGCGTCGTCCGGATCCTGCCCGCCCTCGGTGCCGCCTCGCCGCCCGGGGCCCTCGCCACCCGCGGCGCGGCCGCCATTGCCGACGCGCTCGGCACCCGGCCCGTCGTGTTCCCCGGCGACCACGGCGGGTTCGTGCGCACCGAGTGGTCCCCGGACAACGACCCCGCGGCGTTCGCCGCCCGGCTGCGCGAGCTGCTGTCCTGCTGAMTSDTDGPTTRTLDVPGAEIAYDLRPGTDAGQCPLFVLGNPMAADDFAQLVAELGDRTVLTYDPRGVGRSTLADDGGTAVGDHAADLHAVVHDAALGPVDVLGSSGGAVTALAWAAAHPDDVRRVVAHEPPLTALLEDRDVAVRAQTDIVATYAERGFGPAMAKFLRLVFATEPLTPAFLAAPDPDPAQFGLPTADDGRRDDLLLGRTLATMPLWEPPVEALRALTRDGVVRILPALGAASPPGALATRGAAAIADALGTRPVVFPGDHGGFVRTEWSPDNDPAAFAARLRELLSCNANANANANA
AK018_02944912rbsK_2COG0524RibokinaseATGACCTCCATCGTGGTCGTCGGCTCGGTCAACGCCGACCTCGTCGCACCCGTGCCCGCCCTGCCCGAACCCGGCGAGACCGTGCTCGCCGAGTCCATGACCGTGCTGCCCGGCGGCAAGGGCGCCAACCAGGCGGTCGCCGCCGCCCGCCTCGGCGCCGACGTCGCCCTGGTCGGTGCCGTCGGGTCCGACGCGTTCGCCGAGGCGGCCCTCGCCGGCGTGCGCCGCGACGGCGTCTCGCTCGACGCCGTCGACGTCGTGCCCGGTCCGACCGGCGTCGCGCTCGTCGTCGTCGGCGCCGAGGGCGAGAACTCCATCGTGGTGGTGCGCGGGGCGAACGCCGCCGTCGGCCCCGCCGTCGTCGACCGGCACCGCGACCTGCTCGGGGGCGCCGACGTCGTCGTCGTGCAGGGCGAGATCCCCGTGCCCGGCATCGAGGCGGCCGTGCGGGCCGCCCGCGGACGCGTCCTGCTCAACCTGGCCCCCGTCGTCGACGTCGCACCCGACGTGCTGGCGCTCGCCGACCCGCTCGTCGTCAACGGCGGCGAGGCCGAACGGCTCCTCAGCGACGCCGGCCGTCCCGTCGCAGACGCACCGTTCGCCGTCGTCGAGGAGCTCCTGGGCCTCGGCCCGCGCTCCGTCGTGCTGACCATGGGCGGCGCGGGTGCCGTCGTCGCCGGTGCCGACGACGACGGACCCGTCGTGGTGCCGTCCCCGCGCGTCGCGGCCGTCGACACCACGGGCGCCGGGGACGCGTTCGCCGGCGCGCTCGCGACGCGCCTCGCCGCCGGTGACGACCTGGTCGCCGCCGCCCGCACCGCCGTGCGGGCCGGGGCCTTCTCCGTCGTGACCCCCGGCGCCCAGCCGTCGTTCCCGCGGCTCGGCGAGGAGCTTCCCGTCACCGGGCCGTGAMTSIVVVGSVNADLVAPVPALPEPGETVLAESMTVLPGGKGANQAVAAARLGADVALVGAVGSDAFAEAALAGVRRDGVSLDAVDVVPGPTGVALVVVGAEGENSIVVVRGANAAVGPAVVDRHRDLLGGADVVVVQGEIPVPGIEAAVRAARGRVLLNLAPVVDVAPDVLALADPLVVNGGEAERLLSDAGRPVADAPFAVVEELLGLGPRSVVLTMGGAGAVVAGADDDGPVVVPSPRVAAVDTTGAGDAFAGALATRLAAGDDLVAAARTAVRAGAFSVVTPGAQPSFPRLGEELPVTGPPGPT0017405_3459DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
AK018_02945702hypothetical proteinATGACCCCACGCCTGACCCGCTCCGCCGGGATGCCTGCTCTCGCCCTGGCCGCCGTGCTCGCCCTGACGGGGTGCACTGGCGACGACGACGCGACGCCGGGAGAGGCGGTGACGTTGCCGTCGGCGTCCGGGAGCGCCGGCGAGCAGACCGCCGAGGAGTCGAGCGCCGAGGACGGTGCGGCCGACGAAGACGGTTCTGACGACGGCGGTGCCGACGACGACGACTCCGACGACTCCGACGGCGGCGGGGGCGGGGACGACTCCGGCGGCGGCGCGGGCGGGGACGACTCCGCCCCGACGGACCGCACCACCACGGGCCTGTCGGCGATCGCGCTGGCCGAGGCCGAGACGGGTGGCGCTGCCTACGCGCTCGACGACGAGGACGGCGGCTGGCAGGTCGACGTCGCGGACGGCGACCGGTCGGTCGAGGTGACGACGAACGGGGCCGGCACCGAGGTGACCGGCACGGAGTCCGGGGACCTGGACGGCGAGGACCGCGACGCGCTGGACGCCACGCAGGTCAGCATGTCCGAGGCGGTCCAGCGTGTCGTCGGGCAGTCCGGTGGTGCGCTGCAGGACGCCGAGCTCGACGTCGACGACGGCGCCGCGCACTGGTCCGTGGGCGTCACGCTGCCCGAGGGCGGCGACCAGGACTTCACGGTCTCGCTCGAGACCGGGGAGGTCTCGCAGGACGACGACTGAMTPRLTRSAGMPALALAAVLALTGCTGDDDATPGEAVTLPSASGSAGEQTAEESSAEDGAADEDGSDDGGADDDDSDDSDGGGGGDDSGGGAGGDDSAPTDRTTTGLSAIALAEAETGGAAYALDDEDGGWQVDVADGDRSVEVTTNGAGTEVTGTESGDLDGEDRDALDATQVSMSEAVQRVVGQSGGALQDAELDVDDGAAHWSVGVTLPEGGDQDFTVSLETGEVSQDDDNANANANANA
AK018_029461398putative proteinATGGCGGACCTGGAGACGGACTACCTCGTGATCGGCGCCGGCGCGTCGGGGATGGCGTTCACCGACGCGGTGCTCGACGGCGGCGACGCGCACGTGACCCTGGTCGACCGGCGTGACGACGTCGGCGGGCACTGGCGCGACGCCTACCCGTTCGTGCGCCTCCACCAGGCCTCCCCCTTCTACGGGGTGGCCTCCACCCCGTTCGACACCGGCGTGCAGAGCACCGGGCCCGAGGCGGGCCTGGGCGGGCGCGCCACAGGAGCGGAGGTGCGCGGCTACTACGAGGGGGTCCTGCGCGACCGGTTCCTGCCGAGCGGCCGGGTCAGGTTCCTCGGCGGTCACGAGGCACGGCTGCCGGAGTCCGGGGGTGGCGGCACGTGCACCCTCGTCGAGGCCGCCACGGGTGCCGAGCACGAGGTGCGGGTGCGCCGTCGAGTGGTGGACGCCCGCTACCTGTCGCCCGAGATCCCGGCCCTCACGCCCCCGCCGTTCGCCGTGGACGACGACGCGACGTGCGTCCCGGTGGGCGACCTCCCCGCGGTCGCGGACGACGCCGGGGCCTTCGTGGTCGTCGGGTCGGGCAAGACCGCCACCGACGCGATCGTGTGGCTCCTGCAGCGCGGCACCGCCCCGGACGCGATCTGGTGGGTGCGCCCGCGCGACCCGTGGATGCTCGACCGGGCCGTGGTCCAGCCCGACCCCGCCGTCTTCCTGTCGATGGCGACGGCCGTCATGACCGCCGGCGCGACGGCGTCCTCGGTGGACGACCTCTTCCTGCGGCTCGAGGACGACGGCGTCATGCTGCGCCTCGACCCCGACGTCACGCCCACGATGGCCCGCGTTCCGACGCTGGGCCGGTGGGAGCTGGACCTGCTGCGCACCGTGACCCGCGTGGTGCGGCACGGGCACCTGCGGCGGGTCTCGGCGGGCCTGCTGCGCTGCGACGACGGCGACGTCGCCGTGCCCCGCGACGCCGTCGTCGTGCACTGCGCCGCCGACGGGTTGCGCGTGCGGCCGCCCGTCCCGGTGTGGTCGCCCGGACGGATCGTCGTCCAGCCGGTCCGGGCCGGCTTCCCCTGCTTCGGCGCGGCCCTGACCGGACACGTCGAGGCCACCCGCGGCGACCGGGACGACGACGAGCTCAACGCCCTGTGCGCGCCCACGCCGCTGTTCTCCACGCCGCGGGACTGGGTCGCGGCGCAGGGCGCCGGCGCGCTCTCCTCGGCGGCGTTCATGGCGGACCCGGACCTGGCCCGCTGGGCGCACTCCACGTCGCTCAACCCGGCCCGGGTGCGGCCCGCGGACCGCGAACGCCCCGAGGTCCGCGCGGTGCTCGGCCGGCTGCGCGACGTCTCCGCGGAGGGGGCGCGCGGCCTGCTGCGGCTCGGGGCCGCGTGAMADLETDYLVIGAGASGMAFTDAVLDGGDAHVTLVDRRDDVGGHWRDAYPFVRLHQASPFYGVASTPFDTGVQSTGPEAGLGGRATGAEVRGYYEGVLRDRFLPSGRVRFLGGHEARLPESGGGGTCTLVEAATGAEHEVRVRRRVVDARYLSPEIPALTPPPFAVDDDATCVPVGDLPAVADDAGAFVVVGSGKTATDAIVWLLQRGTAPDAIWWVRPRDPWMLDRAVVQPDPAVFLSMATAVMTAGATASSVDDLFLRLEDDGVMLRLDPDVTPTMARVPTLGRWELDLLRTVTRVVRHGHLRRVSAGLLRCDDGDVAVPRDAVVVHCAADGLRVRPPVPVWSPGRIVVQPVRAGFPCFGAALTGHVEATRGDRDDDELNALCAPTPLFSTPRDWVAAQGAGALSSAAFMADPDLARWAHSTSLNPARVRPADRERPEVRAVLGRLRDVSAEGARGLLRLGAANANANANANA
AK018_02947756linC_2COG10282,5-dichloro-2,5-cyclohexadiene-1,4-diol dehydrogenaseATGACGTTCGACGGCAAGGTGGCGCTGGTGACCGGCGGCGGTTCGGGCATCGGCGAGGCCATCAGCAAGGACCTCGCGGCGGCCGGCGCGCAGGTGGTGGTCACGGACATCCAGCTCGACTCCGCCCGGCGCGTGGTGGACGAGATCACGGCCGCGGGCGGGACCGCCGCCGCCGTGCAGCAGGACACGGCGAGCAAGGACGACGCGACGAAGGTCGTGGACTTCGCGAAGGAGACGTTCGGCGGCCTGCACCTCGCTGTCAACAACGCGGGGATCGGGGGCAAGCAGGCGCCCGCCGGCGAGCTCGACCTCGACGACTGGGACAAGGTCATCGACATCAACCTCAACGGCGTGCTCTACGGGCTGCGCGCCCAGATCCCGGCGATGCTGGCCCAGGGTTCCGAGGACTGCGCGATCGTCAACATGGCGTCCATCCACGGCACGGTGGCGGCGATCGGCAACGGCGCCTACACGGCCGCCAAGCACGGCGTCGTCGGCATCACCAAGAACGCCGCCGCGGAGTACGGCGTGCAGGGCCTGCGGATCAACGCCGTCGGCCCGGGGTACATCGAGACCCCGCTCGTGGAGTCGTCGCTGTCCACGGAGGTGCTCGAGGCCCTGCAGGGCAAGCACATGCTCGGTCGGCTCGGTACCCCCGCCGAGGTCGCGAACGTCGTGCGCTTCCTGCTGTCGCAGGACGCCTCGTTCGTCACGGGAGCGTACTGGCTCGTCGACGGCGGCTACACGGCCGTGTGAMTFDGKVALVTGGGSGIGEAISKDLAAAGAQVVVTDIQLDSARRVVDEITAAGGTAAAVQQDTASKDDATKVVDFAKETFGGLHLAVNNAGIGGKQAPAGELDLDDWDKVIDINLNGVLYGLRAQIPAMLAQGSEDCAIVNMASIHGTVAAIGNGAYTAAKHGVVGITKNAAAEYGVQGLRINAVGPGYIETPLVESSLSTEVLEALQGKHMLGRLGTPAEVANVVRFLLSQDASFVTGAYWLVDGGYTAVNANANANANA
AK018_02948465hypothetical proteinATGACGATCCGGATCGAGAAGCGCAAACCCTGCGGTGCCGTGCGCGGCCGGTGGCGGGCCGACGTCCTCGGGTTCGACGAGTGGGGCGACTGGTTCGCCGTGCACGACGGCGGCGTCCTGCTGCTCCCGCTCGCCGACCCGTGGGCCGCCTGGTTCGCTGCCGACGGCAGCGTCCGGGTCGACGTCGCCACCCAGGTGACCGCCGCCGCCCCCGTCAGCTCGTTCGTGGACCTCGACCTCGACGTCGAGCGGGACGCCGACGGCACCGTCCACGCCCTGGACCGCGAGGACTTCCTGCAGCGGTCGCCGTCGTACCCGTCGGTGTGGGTGGACCTGGCGTGGGCCGCCTGGCACGAGGTGCAGACGGACGTCTCCGGGTTCGCGGAGCCGTTCGGGACGGCGTCGGACCGGTGGCTGGCCGAGGCCGCCGCGCGTACGCCCGTGTCGCTGCCCGTCCCCGCCTGAMTIRIEKRKPCGAVRGRWRADVLGFDEWGDWFAVHDGGVLLLPLADPWAAWFAADGSVRVDVATQVTAAAPVSSFVDLDLDVERDADGTVHALDREDFLQRSPSYPSVWVDLAWAAWHEVQTDVSGFAEPFGTASDRWLAEAAARTPVSLPVPANANANANANA
AK018_02949600hypothetical proteinATGACCCCGGGCGGTGCCCTCGACACGGCGATCCGGCTCGTCGTGCTCCTCCTGCTGATCACCGGTGTCGCCGTCTCGGTGTCCCTGACCTCCCGGCGCAGCGTTCCGCCCGGCCGAGGGTCGGTCCGCCGGCCGCTGGCCCCCGTGCCGACCGCCGTGCGTGCGCTGCTGTCCTTCGTCGCCCTGGGGCTGCTGGGCGCCACTCTGCCCGCCGTTCCCGTGGGCGGTGGCGGCGGGTGGCTCCCGCTCGGCCTCGGCGTCCTGGCCGTCGGGCTCCTGTGGTGCACCCTGGCGCCGCTGCTGCGCGACGTCCTGGACGCGGTCCGGCCCCGAACCGTGGTGGGGACGGTCACCGACCGGCGCCGGTCGGTGCACGGCGCACTCGACGACGGCGGGGTGCGGCGGGTCGCGGAGTGCTTCGTGCGGGTGGTCGACGACGGCGGCACCAGCCGGGAGTACCGCGTGCGGCCCGAGCTGTTCGGCCGTGTCGGCCGCGGTGACCAGGTGCAGCTGTCGGTCGCGGCGCGGTCCGGCTACGTGCACGCGATCACGCCGGCCGGCACGGTCGCGAGGGGCGTCGCCTCAGACCTGCGCTCCTGAMTPGGALDTAIRLVVLLLLITGVAVSVSLTSRRSVPPGRGSVRRPLAPVPTAVRALLSFVALGLLGATLPAVPVGGGGGWLPLGLGVLAVGLLWCTLAPLLRDVLDAVRPRTVVGTVTDRRRSVHGALDDGGVRRVAECFVRVVDDGGTSREYRVRPELFGRVGRGDQVQLSVAARSGYVHAITPAGTVARGVASDLRSNANANANANA
AK018_029501332hypothetical proteinATGAGAACCACGATGGTCACCGGCACCGACGCGCCCCGCACCCGGTCCGCGGCCGACGTGCCGGGCCACCTGCCCGACCGGCTCGCGATCACTCTGTGGGACTTCTCGTGGGCGGTGCGCTCCGGACCGGGCGAACCGTTCGAGGACCTCGACGCGGCGTTCCTCGAGGCGGCCGACCGCGGCTACAACGCCGTACGCATCTGCGCGATGCCGTTCCTGCTGTTCCGCAGCGGCCTCGACACCACGGCCTTCCGGTTCGGTCCGATCGGCGGCGGCTACGCCTCCCGGGTGCGGTGGTACGACGTCGTCGCACCCACCACGATCGACGTCCGCGCCCGCCTGCTGGACCTCTTCCGCGCCGCCGACCGCCACGGGTTCGTCGTGATCGCCTCGTCGTGGGAGTACCAGCAGACGCCGGCGTTCGCGACCGACCGCGCCTGGTACGACGCCCTGCAGGCGGTTCCGCCCGAGGACCGCGCCGTGGTGCTCGCCGAAGCGCTCGCCGACCTGGTCGACCTGCTCGTCGCCGAGGGGCTGGACCGCACGCTGGCGTTCGTCGAACCGCACAACGAGGTCCAGGCCGGTCACCTCACCGACGGGCTGCCGGGCGTCGAGGACCCGGTGGTGGAGCTGCGCGGCCGCCTGGAGGCGGCCATCGACGCGTTCGCGGCCCGCCACCCGGACGTGCTGTGCGGACCCAACTACGCGGCCGTGCCGGTCACGGCGATGCGCGGCGTCCCCCGCAACGCCCAGGTCCTCGGCGTGCACCCGTACGTCTACGGGGTCCTCGACGCCCTGGTGGACGAGTTCGCGCTGCGGGGCGACCCGGCGGACTTCCCGCAGGACCGCGCCGACGCCGAGCTGCTGCGCCCGGGCGCCCCACGCCTCGGCGAGTGGGCACCGCCACCGGACGAGGAGTGGAAGCGCCACGCCTCGATCGTCGGGCACGCCGAGATCTACGTACACGACTGGTGCGACCCGGAGGCGGTGGACCGCTGGCTGTACTCGCGGTACGGCGAGCACCGGATCGCGATGGACGTCCGGCTGCGGGAGTGGATCGGCGTGGCCGCCGACGCCGCAGCGCAGCGCGGCATCCCGCTGGTCCTCGGCGAGGGCTGGGTCGGCTACACCCCGCGTGCCACCCGGTTCGAGGAGGGGCCGGTCGGGGCGCAGATCTGCCGCGACGCGGTGCGGCTCGCCGACGCCGTGGACGCCTGGGGTGCGGTGGTGTGCTCCAACGCGGCGCCCCACCACGCCATGTGGCAGGACGTGGAGATCCAGCGCGAGTGCACGGCGGTGATCCGCGGGCAGGACTCAGGAGCGCAGGTCTGAMRTTMVTGTDAPRTRSAADVPGHLPDRLAITLWDFSWAVRSGPGEPFEDLDAAFLEAADRGYNAVRICAMPFLLFRSGLDTTAFRFGPIGGGYASRVRWYDVVAPTTIDVRARLLDLFRAADRHGFVVIASSWEYQQTPAFATDRAWYDALQAVPPEDRAVVLAEALADLVDLLVAEGLDRTLAFVEPHNEVQAGHLTDGLPGVEDPVVELRGRLEAAIDAFAARHPDVLCGPNYAAVPVTAMRGVPRNAQVLGVHPYVYGVLDALVDEFALRGDPADFPQDRADAELLRPGAPRLGEWAPPPDEEWKRHASIVGHAEIYVHDWCDPEAVDRWLYSRYGEHRIAMDVRLREWIGVAADAAAQRGIPLVLGEGWVGYTPRATRFEEGPVGAQICRDAVRLADAVDAWGAVVCSNAAPHHAMWQDVEIQRECTAVIRGQDSGAQVNANANANANA
AK018_029512301hypothetical proteinATGAGCGACATCTCGATCACCCCCACCTGCCTGGTCCGTGACGGCCGGCCGTGGTTCCCGGTGACCGGTGAGATCCACTTCGCGCGGATCCCGCGGGACCGCTGGGCCGACGTCCTCGAGCACGCCCGCGCCGGCGGTCTGACGTCGGTGGCGACCTACGTGTTCTGGCAGGCGCACGAACCCGAGCCGGGGGCGTTCCGGTGGGACGGGAACCGGGACCTGCGGGCGTTCGTCGAGCTCGCCGGGGCGCACGGCCTCGAGGTGGTGGTGCGGCTGGGGCCGTGGGCGCACGGCGAGGCGCGGCACGGCGGCTTCCCCGACTGGCTGACGGAGCGTTCCGACCTGGTGCCGCGCACGGACGACCCGGCCTACCTGGACCTCGTGCGGCGGCTGTACGGGCAGATCGCCGACCGGCTGGTGGGGCTGACGCTCGCCGAGGGCGGCCCGGTGATCGGCGCGCAGGTGGACAACGAGCTGGCCGACCAGCCCGAGCACCTGGCGACGCTACGGCGGATCGCCGAGGAGTGCGGGCTGCGCGTCCCCCTGTGGACGGCGACGGGCTGGGGCGGCGCGCAGGTGCCCGACACCCTGCTGGACGTGTACAGCGGCTACGGGGACGGCTTCTGGGCCGAGGCGGAGGACGGCTGGCCGGCCTGGGCGGCGCAGCACTTCCGGTACTCGAGCGTGCGGGACGACCTGGGCGTGGGCGCGGACGTGCAGGCCGCGCTGGAGGCCACGGCGTCCGACGGCGGGACCACGGCGAGCACCGGGGGTCACGGGACCGCGGGTCCCGGGACCGAGGCCCGCACGACGCCGTTCGCGACGTGCGAGCTCGGCGGCGGCATGCACGTGGCCTACCACCGCCGTCCGCTGGTGACGCCGCGGGACGTCGCGGCGCTCGCCCTGGCCAAGCTGGGCAGCGGGTCGGTGTGGCAGGGCTACTACATGTACGCCGGGGGCACGCAGCGCGTGGGCACGACCGGCACGGAGCAGGAGTCCCAGGCCACCGGCTACCCGAACGACGTGCCGACCCTCAGCTACGACTTCGGTGCCCCGATCGGCGAGCACGGGCAGGTCCGCGACCACCATCACCTGCTGCGTTGCCAGCACCTGTGGCTGGCGACCGACCCGGCGCTGGCCGCGATGCCGGCCACGATCCCGTCCGACGACCCGGGCGACCCGGGAGGGCTGCGTCGGTCGGTCCGGTCGGACGGGCGGCGCGGCTACGTGTTCGTCTCCACCTACCAGCCGTCGCACTCCCCCCTGCCGGCGCAGCCCGGGGTGCAGGTCACGGTCGACCTGGACGACGGTCCGGTCACCGTCCCGTCCCGTCCCGTCGACCTCCCGTCCGGCGTCTCGGTGGTCTGGCCGGTGCGCTACCCGCTGACGGCCGGCCTGGTGCTGCGCAGCGCGACGGCCCAGCTCGTCACGCGCCTCGACGACGCCGGGCCGGACGGCGGACCCGTCGTCGTGCTCGCCGCGAGCGACGGCGTCCCGGTCGAGCTGGTCCTCGACGGCGCCGTCTCGGCCGACGGCCCGGTGACGGCCGCACCGCACGACGGCGGCACCCGCGTCACGCTCACCGCGCCGCCCGGGCGGGACACCGCCGTCGACCTGCCCGGGGTACGGGTGCTCGTGCTCGACGAGGACACCGCCGACCGGCTCCACCGCCCGGTCGTCGACGGCGTGCCACGGCTCGTGCTGAGCGACGCCCCGCTGACCGTCGCCGCCGACGGGCGGACCGTCGTCGTGCGGACCGAGGCGCCGGCACCGACGGTGTCGTGGTGGCGCGACGGCGGCTGGTCCCCGCGGACCCTCGACGTCCCGCGGGGGGGACACCACCGGATCGCCGCCGACCTCGCACCCGACGCCCCGGCGCCCCCCGCACCGCGGCGCGGCGGACCGGCCGACCGGCTCGCCGCGCCGACCGACTTCTCCGGTGCGGCCCGCGTCCACCTCGACGTCCCCGAGGAGCTGCTGGACGCCGCACCCGGCGACCGCGTCCTGCTGCGGATCGCCTGGACCGGCGACGTCGGCCGGGCCGTCCTCGCCGACGGCGCGGTGATCGGCGACCACTTCTGGCACGGCCGCGACTGGGACGTCGACCTCACGCCCTGGCGCGAGGAGGTCGCCCGCCACGGGCTCACCCTCGAGCTGCTGCCGTGGCGGCGCGCCACCGGCGTGCACGTCGACCCGTCCGTGCGGGACGTCCCCGACGGCATCCGCCTGCGCACCGCCGACGTGGTCCGCGTCGTCCGCCACCCCCTCACCCCCGACGAGCTCTGCGAGGACACGGCATGAMSDISITPTCLVRDGRPWFPVTGEIHFARIPRDRWADVLEHARAGGLTSVATYVFWQAHEPEPGAFRWDGNRDLRAFVELAGAHGLEVVVRLGPWAHGEARHGGFPDWLTERSDLVPRTDDPAYLDLVRRLYGQIADRLVGLTLAEGGPVIGAQVDNELADQPEHLATLRRIAEECGLRVPLWTATGWGGAQVPDTLLDVYSGYGDGFWAEAEDGWPAWAAQHFRYSSVRDDLGVGADVQAALEATASDGGTTASTGGHGTAGPGTEARTTPFATCELGGGMHVAYHRRPLVTPRDVAALALAKLGSGSVWQGYYMYAGGTQRVGTTGTEQESQATGYPNDVPTLSYDFGAPIGEHGQVRDHHHLLRCQHLWLATDPALAAMPATIPSDDPGDPGGLRRSVRSDGRRGYVFVSTYQPSHSPLPAQPGVQVTVDLDDGPVTVPSRPVDLPSGVSVVWPVRYPLTAGLVLRSATAQLVTRLDDAGPDGGPVVVLAASDGVPVELVLDGAVSADGPVTAAPHDGGTRVTLTAPPGRDTAVDLPGVRVLVLDEDTADRLHRPVVDGVPRLVLSDAPLTVAADGRTVVVRTEAPAPTVSWWRDGGWSPRTLDVPRGGHHRIAADLAPDAPAPPAPRRGGPADRLAAPTDFSGAARVHLDVPEELLDAAPGDRVLLRIAWTGDVGRAVLADGAVIGDHFWHGRDWDVDLTPWREEVARHGLTLELLPWRRATGVHVDPSVRDVPDGIRLRTADVVRVVRHPLTPDELCEDTAPGPT0017815_60DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_029523417hypothetical proteinATGGAGTCCCGGATCGTCCTGCCGCCCGCCCCGGCCGACCTCGCCGACCGCCCGGTCCGCGTCTGGCGCGAGCCGGTCACGATCGACACCTACGCCGTCGCCGACCCGGACCGGTTCCCCGCCTACCTCGACCAGCGCGTCTACCAGGGCTCGTCGGGGGCGGTGTACCCGATGCCGTTCGTGGAACGGGTGGCCGAGACCTCGGAGCCGCGCGCCTGGGACGCGATCCACCTGGAGAACGCCTACGTGCGGCTGATGATCCTGCCGGAGCTGGGCGGGCGGATCCACGTCGGGCTGGACCGCACGCGCGGGTACGACTTCTTCTACCGCAACGACGTCATCAAGCCCGCGCTGGTGGGGCTCACGGGACCGTGGGTCTCCGGCGGGGTCGAGCTGAACTGGCCGCAGCACCACCGGCCCGCCACGGCGCTGCCCGTCGAGACGTGCATCGACCCCGCCGACGACGGCTCGGTGACCGTGTGGTGCTCCGACCACGACCCGCTGCAGCGCATGCAGGGGATGCACGGCATCCGGATCGCCCCCGACAGCGCGCTGATCGAGCTGCGCGGCCGCCTGGTGAACCGCACGGACGACGTGCAGACGTTCCTGTGGTGGGCGAACGTCGCCGCCGCGGCCGGGGACGACTACCAGGCGTTCTTCCCCACCGACGTCACCGTCGTCGCCGACCACGCCAAGCGGGCGGTCACCACGTTCCCCGCGGCCTCAAGCCGCTACTACGGCGTCGACTACCCGGCACGGCGCACGGCGGACGACCCGCTCGCCGACCGGCTGGACCGGTACCGCAACATCCCGGTGCCGACGTCGTACATGTGCCTCGGGTCGCGCGACGACTTCTTCGGCGGATACGACCACGGCGCCCGCGCCGGGTTCGTGCACTGGGCGGACCACCGCATCGCTCCCGGGAAGAAGATGTGGACGTGGGGGAACGCGCCGTTCGGCTGGGCGTGGGACCGCCACCTGACGGACACGAACGGCCCGTACGTGGAGCTTATGGCGGGCGTCTTCACCGACAACCAGCCGGACTTCGCGTTCCTCGCGCCGGGCGAGACCAAGGAGTTCTCGCAGTACTGGTACCCGATCCAGGACATCGGCCCGGCCCACCAGGCCACCCGGGAGGCAGCGGTCAGCCTGGTCGTGCCGGGCACCGGGGACGACGGCGGCTCCGGGGACGACGGCGGCACCCCGGACGCCGCCGACGGCCGGGTCCGCGTCGGCGTGGCGGTGACCCGGCCGCGCCCCGGCGCCCGCGTCACCCTGCGGGCCGGGGACGAGCTGCTGCTGGACGAGACCGTCGACGTCGCCCCCGGCACGCCGCTGGTGCGGGAGCTGAACACCGCTCCGGGACTTCCGGCGACCGCCTACGAGCTGGTGGTGACGCACGACGGCGAGGACCTGGTGTGCTGGCGTCCCCGGTCGAGCACACCCCCGGCGGACCCGGAGGCGGCCGCCGCCGACGTCGTCGCCACCGCACCGCCGGCGCCCGCGGAGATCGGGTCGGTCGACGAGCTGTACGTCACCGGCCTGCACCTGGAGCAGTACCGCCACGCCACCCGCTCCCCCGAGCCGTACTGGCGCGAGGCGCTGCGCCGCGACCCCGACGACGCCCGCTGCTGCACCGCGCTGGCGGCCCGACGGTCGCGTGCGGGTCTGCTGACCGAGGCCGAGGAGCTGCTGCGCCGGGCCACCGCTCGGCTCACCCGCCGCAACCCCAACCCGCGCGACGGGGAGGCCCACTACCGGCTCGGCGTCGTGCTGACCCGGCAGGGGCGGACCGCCGAGGCCCGCGAGGCGTTCGGCACCGCGCTGTGGGACCACGCCTGGCGGGACGCCGCGACGGTGGCCACGGCGCGCCTCGACCTGGCGGCCGGCCGGGACCGGGACGCGGCCGAGGACCTCGATGCGCTGCTGACCCGCAGTCCCGGCCACACCCCGGCCCGGAACCTCGCGACCGTCGCCGCCCGTCGTCGTGGCGACGACGCCACGGCGCGCGACCTGGTGCGCGGCACCCTCGCGGTCAACCCGCTCGACGCCTGGGCCCGCGACCTGGCGGCCCGCCTGGGCGTCACCGGCACCAACGGCACCACCGGTGACGGCACCACCGGCACCACCGGCGAGGCGACCACGCCCACCGTCGACCCGACGGCTGCCCTCGACGTCGCGCTCGAGCACGCCTCGGCCGGTGAGCACGACCTCGCCCGGGAGCTGCTGAACCAGATCGCCGCGGCCCCGACCCTGCCCGGGCGGCGCAACGTGGCGCCGCTGGCGCTGCTGCACCGGTCCGCCCTCGAGCTCGCCGCCGGCGCCGAGGAGTCCGCCCGCGCGACCGTGGACGCGGCCGCCGACCTCGATCGGCGGTGGTGCTTCCCGGACGCCCGCGACCTCGACGTCCTCACGCGGCTGCGGCAGACCTGGCCCCGCGACCCGTTCCTCGCGGCGCTGGCCGGTCACGTCCTGTACGCCGTGGGCCGGCGGCACGAGGCGATCGCGGCGTGGCAGGTCTCCGCCGACCGGGACGGCACCGACCCCGTCGTGCTGCGCAACCTCGGGGTCGCGGCCCACAACGTGCTCGGCGACGTCGACCGGGCGGCGGCCTGCTACGCCACGGCCCGCGCGCTGGCCCCGCACGACGCCCGGCTGCTCTTCGAGTCCGACCAGCTCGCGGCCCGCCGGGGTGCCACCGCCGCCGAACGGCTCGCCGTGCTCCGCGAGCGCCCCGCCCTGGTCGCCGAGCGGGACGACCTGTCGGTCGGGCTGGCCGAGCTGCTGACCGCCGTCGGGCGTCCCGCGGAGGCGCTGGACGTGCTGACCGGCAGGTCGTTCCAGCCGTGGGAGGGTGGCGAGGGTCGGGTGCTGGCCGCGTGGGAGGACGCGCACCTGGTGCTGGGCCGCCGGGCGCTGGACGACGGCGACGCCGCGGCCGCCGTCGGGCACGCCCGGTCCGCGCTGGAGGTGCCGCCGAACCTGGGTGAGGCCCGGCACCCGCTGGCCAACACGGCCGACCTGCACCTGCTCCTCGGTGACGCGCTGGCCGCGGACGGTGCCGACGCAGACGCCCGGCGGGCGTGGACGACGGCGGCCGAGCAGCAGGGCGACTTCGAGGTGATGCAGGTGCAGGACTTCTCCGAGCGCACGGCCGCCTCGGTCCGTGCGCTGCGCCGCCTCGGACGGGTCGCCGACGCGGACGGGCTGCGCGACGGGCTGGCCGCGTACGTCGACGAGGAGGCGGGGCGGACGGCGACGGTCGACTACTTCGCGACGTCGCTGCCCACGATGCTGCTGTTCACCCAGGACGTGCAGGCGGCGCACGACGCCCGCGTGGACCGGTTGCGCGATCAGCTGGAGGAGCTGGACGCCGCACCGGGGCCGCTCCCCGCGACGACGGAGGCGACCGCATGAMESRIVLPPAPADLADRPVRVWREPVTIDTYAVADPDRFPAYLDQRVYQGSSGAVYPMPFVERVAETSEPRAWDAIHLENAYVRLMILPELGGRIHVGLDRTRGYDFFYRNDVIKPALVGLTGPWVSGGVELNWPQHHRPATALPVETCIDPADDGSVTVWCSDHDPLQRMQGMHGIRIAPDSALIELRGRLVNRTDDVQTFLWWANVAAAAGDDYQAFFPTDVTVVADHAKRAVTTFPAASSRYYGVDYPARRTADDPLADRLDRYRNIPVPTSYMCLGSRDDFFGGYDHGARAGFVHWADHRIAPGKKMWTWGNAPFGWAWDRHLTDTNGPYVELMAGVFTDNQPDFAFLAPGETKEFSQYWYPIQDIGPAHQATREAAVSLVVPGTGDDGGSGDDGGTPDAADGRVRVGVAVTRPRPGARVTLRAGDELLLDETVDVAPGTPLVRELNTAPGLPATAYELVVTHDGEDLVCWRPRSSTPPADPEAAAADVVATAPPAPAEIGSVDELYVTGLHLEQYRHATRSPEPYWREALRRDPDDARCCTALAARRSRAGLLTEAEELLRRATARLTRRNPNPRDGEAHYRLGVVLTRQGRTAEAREAFGTALWDHAWRDAATVATARLDLAAGRDRDAAEDLDALLTRSPGHTPARNLATVAARRRGDDATARDLVRGTLAVNPLDAWARDLAARLGVTGTNGTTGDGTTGTTGEATTPTVDPTAALDVALEHASAGEHDLARELLNQIAAAPTLPGRRNVAPLALLHRSALELAAGAEESARATVDAAADLDRRWCFPDARDLDVLTRLRQTWPRDPFLAALAGHVLYAVGRRHEAIAAWQVSADRDGTDPVVLRNLGVAAHNVLGDVDRAAACYATARALAPHDARLLFESDQLAARRGATAAERLAVLRERPALVAERDDLSVGLAELLTAVGRPAEALDVLTGRSFQPWEGGEGRVLAAWEDAHLVLGRRALDDGDAAAAVGHARSALEVPPNLGEARHPLANTADLHLLLGDALAADGADADARRAWTTAAEQQGDFEVMQVQDFSERTAASVRALRRLGRVADADGLRDGLAAYVDEEAGRTATVDYFATSLPTMLLFTQDVQAAHDARVDRLRDQLEELDAAPGPLPATTEATANANANANANA
AK018_02953912rhaR_4HTH-type transcriptional activator RhaRATGGGCGATTCCCTGGGGCGCATGGACGAAACGATGGTCGACGGCGAGTCGGCGCTGCCCGACGGGTTCACCGGCCAACGCATGGTCGTGGTGCCCGCACCGGCGGTGCGCTCGGCCCACCGGCGACCGGTCACCGACCGGCTGCTCGTCACCGACGCCGGAGTCTTCCCGCACGCTGCCCGGCACGGGAGGTCCCGACCCACCGGTGCCGGCGAGCACGTGCTCCTGGTCTGCACGGGCGGCGCGGGCTGGAGCCGCACCCCCGATGGACGATCCGCCGTCGGACCGGGGGACGTCGTCCTGCTGCCGGCCGGGGTGGCGCACGAGTACGGCGCCGCCGCGGACGACCCGTGGACGGTGTGGTGGCTGCACGCCGTCGGCCCGGACGCCGACGCGCTGGTCGCCGCGGTCAGGGACGCCGCCGGCGGCTCCGTCGCCCACCTGCAGGACCCCGCCCCGGTGGCCAGCCTCGTCGCGCGGACGATCGACGCCCTCGACACCGCCACCGTCGGCGGGCTCGTCCAGGCGGCCGGGTGCGCCTGGCACGCCCTCGCGCACGTCGCCGCGGTCGGACGGCGTCGGCCCGGACCCGCCCCCGACCCGGTCGAACGAGCGGTCGAGCACCTGCGGGCGACGACGCCGCGACGCACCTCGGTCACCGAGCTCGCCGCCCTGGTCGGCCTCAGCCCGTCCCAGCTCGGGGCCTCGTTCCGCCGGCGGGTCGGCTCGTCGCCGCTGCGCTACCAGACCGACCTGCGGATGGCCCGCGCCCGCGAGCTGCTGGACGCCACCACGACCCCCGTGGCCGCCGTCGGGCAGCGGTGCGGGTACGACGACCCGCTGTACTTCTCCCGGCAGTTCTCCCGGGTGCACGGGCTCTCGCCCACGGCGTACCGCGACCGGCCGCGGTGAMGDSLGRMDETMVDGESALPDGFTGQRMVVVPAPAVRSAHRRPVTDRLLVTDAGVFPHAARHGRSRPTGAGEHVLLVCTGGAGWSRTPDGRSAVGPGDVVLLPAGVAHEYGAAADDPWTVWWLHAVGPDADALVAAVRDAAGGSVAHLQDPAPVASLVARTIDALDTATVGGLVQAAGCAWHALAHVAAVGRRRPGPAPDPVERAVEHLRATTPRRTSVTELAALVGLSPSQLGASFRRRVGSSPLRYQTDLRMARARELLDATTTPVAAVGQRCGYDDPLYFSRQFSRVHGLSPTAYRDRPRPGPT0017485_397DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017485-araC-K02099NANA
AK018_029542094copBCopper-exporting P-type ATPase BATGACGTCGTCGCACGCCGAGCACGCGAACCACACCGAGCACGCGAACGAGGCCGACCAGCAGGGGCACGAGGTCCACCACGAGCACAGCGGACACGAGGGCCACGGCGGCCACGCCGATCACGTCGCCCAGTTCCGGCGTCTCTTCTGGATCATGCTCGCCCTCGCCGTCCCCACGGTCGCCCTGTCGGGCACGTTCGCGATGCTGCTCGGGTACGACCTGCCCGACGCCGCGTGGGTCGGCTGGGTCTCCCCCGTGCTCGGCACCGTGATCTACCTCTGGGGCGGTCGCCCGTTCCTCACCGGCGCCTGGAGCGAGCTGCGCGGCCGGTCCCCCGGCATGATGCTGCTCATCGGGCTGGCCATCACGGTCGCCTACCTGGCTTCCCTCGGCGCGAGCCTGGGGGTGCTCGACGGCGGACTCGACTTCTGGTGGGAGCTCGCCCTCCTGGTCGTCATCATGCTGCTCGGCCACTGGGTCGAGATGCGGTCCCTGGCCCGCACCAGCTCCGCCCTGGACTCCCTGGCCGCCCTGCTGCCGGACGAGGCCGAGCGCGTCACCGACGACGGCACCGAGACCGTCTCCCCCGCCGACCTCGCCGCCGGCGACGTCGTCCTGGTCCGCCCCGGCGGCAGCGTCCCCGCCGACGGCGACGTGGTCGACGGTCGCGCCGAGATGGACGAGTCCATGGTCACCGGCGAGTCGCGCACCGTCACCCGCACCGAGGGCGACCACGTCACCGCCGGCACCGTGGCCACCGACTCCGCGCTCCGCGTCGAGGTCACCGCCACCGGGGACGACACCACGCTCGCCGGCATCCAGCGGCTGGTCAGCCAGGCCCAGGAGTCCAGCTCCCGCGCCCAGCGACTCGCCGACCGCGCCGCGGCCTGGCTGTTCTGGTACGCGCTCGGCGCCGCCGCGCTCACCGCCGTCGTGTGGTCCGCGATCGGCAGCCCCGACGAGGCCGTGGTGCGCACCATCACCGTGCTCGTCATCGCCTGCCCCCACGCCCTCGGGCTCGCGATCCCGCTGGTCGTCGCGATCGCCACCGAACGCGCGGCCCGCGGCGGCGTCCTCATCACGGACCGTCTGGCCCTGGAGAGCATGCGCACCGTCGACACCGTCCTGTTCGACAAGACCGGCACGCTGACCCGCGGCGAGCCGGCCCTCGTCGACGTCGCCGCCCGGCCCGGGGCCGGCGGCACCGCCCCGGACACCGACACCGTGCTGGCGCTCGCGGCCGCCGCCGAGGCCGACAGCGAGCACCCCCTGGCCCGCGCGATCGTCGCCGCCGCCCGCGACCGCGGCGTGGACGTGCCGCGAGCCCACGAGTTCTCCTCCGAGCCCGCCCTCGGCGTGACGGCGACGGTCGACGGCCACGAGATCCGCGTCGGCGGGCCGCGTCTCCTCGAGGAGACGGGCGCCGCGGAGGTCGACGAGGCCGCCGGATGGCGCGACGACGGCGCGACCGTGCTGCACGTGCTGCGCGACGGCGACACCCTGGGGGCCGTGCAGCTGGCCGACGAGGTGCGCCCCGAGTCGGCCGACGCCGTCGCGGCCCTGCACGAGCGCGGCGTCCAGGTCGTCATGATCACGGGCGACGCGGAGGCCGTGGCCCGGTCCGTGGCGGACGAGCTCGGCATCGACCGGTACTTCGCCGGCGTGCGCCCGGAGGACAAGGCCGACCGCGTGTCCACGCTGCAGGACGAGGGCCGACGCGTGGCGATGGTCGGCGACGGCGTCAACGACGCCCCGGCCCTCGCGCAGGCCGATGTGGGCATCGCGATCGGCGCGGGCACCGACGTCGCGATCGCCTCGGCCGGCGTGGTGCTGGCCGGCGACGACCCGCGTTCCGTGCTGTCCGTCATCGACCTGTCCCGGGCCACGTACCGCAAGATGAAGCAGAACCTCTGGTGGGCGGCGGCCTACAACCTCGCCGCCGTGCCGCTGGCCGCCGGGGTGCTCGCGCCGGTCGGGTTCGTGCTGCCGATGTCGGTCGGTGCGCTGCTCATGTCCGCCTCGACGGTGGTCGTGGCGCTCAACGCCCAGCTGTTGCGCCGCCTCGACCTGCGGCCGGGCGGCACGGCGGACTGAMTSSHAEHANHTEHANEADQQGHEVHHEHSGHEGHGGHADHVAQFRRLFWIMLALAVPTVALSGTFAMLLGYDLPDAAWVGWVSPVLGTVIYLWGGRPFLTGAWSELRGRSPGMMLLIGLAITVAYLASLGASLGVLDGGLDFWWELALLVVIMLLGHWVEMRSLARTSSALDSLAALLPDEAERVTDDGTETVSPADLAAGDVVLVRPGGSVPADGDVVDGRAEMDESMVTGESRTVTRTEGDHVTAGTVATDSALRVEVTATGDDTTLAGIQRLVSQAQESSSRAQRLADRAAAWLFWYALGAAALTAVVWSAIGSPDEAVVRTITVLVIACPHALGLAIPLVVAIATERAARGGVLITDRLALESMRTVDTVLFDKTGTLTRGEPALVDVAARPGAGGTAPDTDTVLALAAAAEADSEHPLARAIVAAARDRGVDVPRAHEFSSEPALGVTATVDGHEIRVGGPRLLEETGAAEVDEAAGWRDDGATVLHVLRDGDTLGAVQLADEVRPESADAVAALHERGVQVVMITGDAEAVARSVADELGIDRYFAGVRPEDKADRVSTLQDEGRRVAMVGDGVNDAPALAQADVGIAIGAGTDVAIASAGVVLAGDDPRSVLSVIDLSRATYRKMKQNLWWAAAYNLAAVPLAAGVLAPVGFVLPMSVGALLMSASTVVVALNAQLLRRLDLRPGGTADPGPT0004090_6014DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004090-copA|ctpA-K17686NANA
AK018_02955759tipA_2HTH-type transcriptional activator TipAATGAGCCGTTCCATCCAGGACGTCGCCCGCCTCGCGGGTGTCTCGAGCCGCACCCTGCGGCACTACGACCGCATCGGCCTGCTGCCGCCGTCGGGCACCGGGCACGGCGGGCTGCGCCACTACGACGACGGAGCGATCCGCCGCCTGCAGCGCATCCTGCTGCTGCGCGACCTCGGACTGCCCCTGGCCGAGATCGCCGACGTCCTGGACGCCCAGACCGACGAGACCACCGCGCTGCGGCGCCATCTCGACGTGCTGCACGACGAGCGCCGCCGGATCGACCGGCAGATCGCCTCGGTGGGACGCACGCTCACCGCACTGACCGAGAGGAGGCCGATCATGGCCGAGGAGATGCTGGACGGGTTCGACCACACGCAGTACCGCGACGAGGTCACCGAACGCTGGGGAGCCGACGCCTACCGGACGTCCGATGCCTGGTGGCGCGGGCTGGGTGCAGACGGTCAGGCCGACTGGAAGGCCCGGGCCGACGCGCTGGGCCGAGCCTGGACGGAGGCCGCCGCACGCGGCGTCGACCCGACGTCCGACGAGGGGCAGGCGCTCGCGGCCCGACATGCCGAGTGGCTCGGGTCGATCCCCGGGACGCCCGGGTCCGACGTCGGGCGCCCGCCGAAGGAGTACGTCGTCGGGCTCGCCGAGATGTACGCCGCCGACGAGCGGTTCGCCGCGAACTACGGCGGCGTCGAGGGGGCGACGTTCGTGCGCGACGCGCTGCTGGCCTACGCCGAGCGCGAGCTCTGAMSRSIQDVARLAGVSSRTLRHYDRIGLLPPSGTGHGGLRHYDDGAIRRLQRILLLRDLGLPLAEIADVLDAQTDETTALRRHLDVLHDERRRIDRQIASVGRTLTALTERRPIMAEEMLDGFDHTQYRDEVTERWGADAYRTSDAWWRGLGADGQADWKARADALGRAWTEAAARGVDPTSDEGQALAARHAEWLGSIPGTPGSDVGRPPKEYVVGLAEMYAADERFAANYGGVEGATFVRDALLAYAERELPGPT0003175_15DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003175-mta|ywnD-K21743NANA
AK018_02956441hypothetical proteinATGAACGACGACTGGGCCCGGCAGCGCACCGAGGCCGCCCACGAGCACGCCGCCCGGCTGGCCGCCCGGCAGGACGCCGAGCACCGGCAGGCCGAGGAGCTGCTCGCACGGTTCGTCGTCGCCGCCCGCACCGCGGACCTGCCGACCGCGCCGCTGCAGGTCAAGGGATACGGCGGACGCGGGACCGCCCGGACGCCGCTGCACGGGTGGTACCTGCGTGCCGACCGGACGGCCGCCGTCGCCACCGACGGCGACTTCTACGTGCTCACCGCCCCCCTGAGCCTGCTCGACCGGGTCCGTGGCGTGCGTCCCGAGCCGAAGCGGCCCCCGCTCGTGCTCGGGGCGGGCGGCAAGGACGGCGACTCGATCGACCTCGTCGACGCCCTCGAGCGACTGTTGCCCGGCTGGAACGCTCTGCGGGGCTCAGCCGGGGATTCCTAGMNDDWARQRTEAAHEHAARLAARQDAEHRQAEELLARFVVAARTADLPTAPLQVKGYGGRGTARTPLHGWYLRADRTAAVATDGDFYVLTAPLSLLDRVRGVRPEPKRPPLVLGAGGKDGDSIDLVDALERLLPGWNALRGSAGDSNANANANANA
AK018_02957429hypothetical proteinGTGAACGACACCGATCCTCGGGAACGCCGCGGACGGTTCGAGCACGCCGCTGCACCGCCGGTCGCTGCTGACACCGGCGCGGACGCCGAGCAACGACGCACCGACCGGCACCTGCACGACCTCGCCGAACGGGCCGAGGACGCCGCGTTCACCGCGTCCGTGGGCAGGGAAGCCTTTCTCGCCGAGGGCACGGCAGGACGACAGACCCGTCGAAGCGCACGGATGCTGATCGTCGAGGTCTCCACGATCCTCCACGAGAGACTGCCGCAGTCGTATCGCGACGCCCACCCCGACGTGCCGTGGCGGGAGATCGCCGGCATGCGCAACCGAGCCACCCACGTCGATGACGGCATCGACGACGAGATCGTCTGGGACGTCCTCACCGTGGAGATCCCGGCGCTCGTGCGACTGCTAGGAATCCCCGGCTGAMNDTDPRERRGRFEHAAAPPVAADTGADAEQRRTDRHLHDLAERAEDAAFTASVGREAFLAEGTAGRQTRRSARMLIVEVSTILHERLPQSYRDAHPDVPWREIAGMRNRATHVDDGIDDEIVWDVLTVEIPALVRLLGIPGNANANANANA
AK018_02958480hypothetical proteinGTGGCACACCGAGGACTGCGCGAGGACTACGGGGCATGGGTGCGCGCCCGGCGCACCCTGCTCGGGATGTCCCAGCGCGACCTCGCCCGTGATTCCGGGGTACCGCAACCACACGTGTCCGCGATCGAGTCGGGAAAGCGCCCGGCCGGTGCGTCCGTGCGAGCACGCCTCGACGAGGCACTCGCGATGTACCCGTCCTACGCTCTCGAACGACGCCGGGCCGACGTCGTCGGCGCCTTCACGCGGCGTGGCCACCAGTCGCCGCGGGTCTTCGGTTCGATCGCCCGCGGCGAGGACACCAAGACGTCGGACGTCGACCTCATCGCGGAGCTGCGGCACCCGTCCGGCTACCTGGCCCTGACCGAGATGCTGGACGAGCTCGAAGCACTCCTGACGTTCCCTGTGGACGTCGCCGACGACTCACCCCGCGTCTCCTCCCGCGCCCTTGATCAGGCCCGGCACGAGGCCGTTCCGCTGTGAMAHRGLREDYGAWVRARRTLLGMSQRDLARDSGVPQPHVSAIESGKRPAGASVRARLDEALAMYPSYALERRRADVVGAFTRRGHQSPRVFGSIARGEDTKTSDVDLIAELRHPSGYLALTEMLDELEALLTFPVDVADDSPRVSSRALDQARHEAVPLNANANANANA
AK018_02959903hypothetical proteinGTGACCCACCTCGTCCTGCTGCCCGGCCGGGACACCGGCGGCCTCGACCCCGAACGGCTCGAGGCCGCCTGGCTCGCCGCACTGAACACCGGGCTCGACGCCGCCGGGTCGACGCTGCGCCTCGCCGACGACGACGCCACCTTCGTGTCCTACGGAGACACGCTCGACGCCGTCGTCGGCGGGGACGAACCACCGCTGATCACCACCCACGGCCTGCCCGGACTGAGCGAGGACGCCGCCCGGTTCACGCTCGGGGTGGCGCGCGAGGTGCTCGGCGCCGCCGGAGCACTGACCGCACCGCCCGCCGTCGCGCCCGCAGCGCTCAGCGGCGGGTCGCTGTGGGCGGCGCTCGCCGCAGCGTTGGCCGCGATCGACCGGTTCGTGCCCGGACTGAGCAGCGCGATCCTGCTGCTGTTCGTGAGAGACGTGTACGTCTACCTGCACGACGCCGACGCGCGGACCACGATCGACGCCGGCGTGGCCGCAGCGTTCCGCGGCGACGGACCGGCCGTGATCGTCGCCCACTCGCTGGGGTCCGTGATCGCCTACGACGTGCTGCGGTCCACGGACCCCGGGGCCGACGACGTGCCGCTGCTGGTCACGCTCGGCTCACCGCTGGCCATCACGGCGGTCCGCGACGCGGTCGAGGCGATCGCACCGTTGACGTGGCCGGCACCGGTCGAGCGCTGGGTGGCGCTGCGGGACCCCCGCGACCTGCTCACCCTGCGCGACCTCGACGCCGACGGGTTCCCGCTGCCCGGCCCGCTGACCATCGAGAACGCGCACGTGGTCAATCCGGTGCCGGGGCACCACGCCGCGGCGACCGAGCTCGACGGGGTGCCGGCGGGCTACGCAGCCGTCGTCGAGGTCGGGCGGCTGCTCGACGAGGCGCTGCAGCCGTGAMTHLVLLPGRDTGGLDPERLEAAWLAALNTGLDAAGSTLRLADDDATFVSYGDTLDAVVGGDEPPLITTHGLPGLSEDAARFTLGVAREVLGAAGALTAPPAVAPAALSGGSLWAALAAALAAIDRFVPGLSSAILLLFVRDVYVYLHDADARTTIDAGVAAAFRGDGPAVIVAHSLGSVIAYDVLRSTDPGADDVPLLVTLGSPLAITAVRDAVEAIAPLTWPAPVERWVALRDPRDLLTLRDLDADGFPLPGPLTIENAHVVNPVPGHHAAATELDGVPAGYAAVVEVGRLLDEALQPNANANANANA
AK018_02960909aao_2COG0665putative D-amino-acid oxidaseATGGCGGACGTGACGGTGGTCGGGGCCGGGGTGATGGGGCTGACCTGCGCGGCCCGGCTCCTGGAGGGCGGACACCGGGTCGAGGTGCTCGCCCGCGACCTGCCGCGGGACACCACCTCCGCGGTCTCGGCGGCGCTCTGGTACCCCTACCTCGCCTTCCCGCAAGACCGGGTCACCGCCTGGTTGGCCCGGTCGTTCTCGACGTTCACCGACCTCGCCGCGACGGACCCCGGATCCGGCGTCCGGATGCGCGCCGGCACCGAGGTCTTCACCGAGCGACCGGCCGACCCGTGGTGGCGCGACGCCGTCGGCGAGCTGACCCGCACGGCCGACGTGCCGCCGTCGTACACCGACGGCTGGACCTTCACCTCCCCCGTGATCGACATGCCCGTCTTCCTGGCGTGGCTCGCAGCGCGCGTCGCGGCGCTCGGCGGGACCATCACCCAGCGGGACCTGACCGCGATGCCCGAGAGCGGCGTCGTGGTCAACACGACCGGCCTCGGGGCGCGCGACCTGATCGGCGACGAGACCGTGCACCCCGTGCGCGGGCAGGTCGTGATGCTCGAGCAGTGGGGGCTGGACCGCTGGTGGCTCGACGCCGCCGGACCGACCTACGTGGTGCCACGCCTGGGTGAGGTGGTGGTCGGAGGTACCGACGACGACGGCGCGTGGGACCGCGAACCGTCGCCGGACACCGCGGCGGACATCCTCGAGCGCGCCGCCCGGCTCGCACCCGAGGTGCGCGAGGCGCGGGTGCTGCGGCACGTCGTCGGGCTGCGCCCCGCGCGCCCGCAGGTGCGGCTCGAACGCGAGGGCCGGGTCGTGCACTGCTACGGGCACGGCGGCGCCGGCGTCACGCTCAGCTGGGGCTGCGCCGACGAGGTGCATGCGCTGGTGGAGGACCTGTGAMADVTVVGAGVMGLTCAARLLEGGHRVEVLARDLPRDTTSAVSAALWYPYLAFPQDRVTAWLARSFSTFTDLAATDPGSGVRMRAGTEVFTERPADPWWRDAVGELTRTADVPPSYTDGWTFTSPVIDMPVFLAWLAARVAALGGTITQRDLTAMPESGVVVNTTGLGARDLIGDETVHPVRGQVVMLEQWGLDRWWLDAAGPTYVVPRLGEVVVGGTDDDGAWDREPSPDTAADILERAARLAPEVREARVLRHVVGLRPARPQVRLEREGRVVHCYGHGGAGVTLSWGCADEVHALVEDLPGPT0020475_857DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020475-aao-K00273NANA
AK018_02961807tcyC_2COG1126L-cystine import ATP-binding protein TcyCATGTCTGAGGCACCGCTGCTGACCGCCACCGGGATCCACCTGTCCTTCGGCGAGAACCACGTGCTGCGCGGCGTCGACCTGTCCGTACGCCGCGGCGAGGTCGTCGCGCTCATCGGCCCGTCCGGCTCCGGCAAGACCACCCTGCTGCGCTCGCTGAACGGCCTCGCCACGCCCGACGCCGGCCGCATCGTGGTCGACGGCGGCCCCGGCGAGCAGGTCGACCTGACCTTCGAGGGCGGACCCCGGCGTGCCTGGGGACGTGCCGGACGCCGGGCCCGCGCCGAGCGGGAGTCGCTGCGCGACCGGTCGGCGATGGTGTTCCAGCACCACCACCTGTTCCCGCACCTGACCGTGCTGCAGAACGTCGTCGAAGGACCGGTGCAGACGCGCGGCGTGCCGCGCGCCGAGGCCGAGTCCCGGGCGCTGGAGCTCCTGGACAGGGTGGGGCTCGCGGACAAGCGCGACGCCTACCCCCGCGAGCTGTCCGGCGGGCAGCAGCAGCGCGTCGGCATCGTGCGGGCGCTCGCCCTGCAGCCCGACCTGCTGCTCTTCGACGAGCCGACGTCGTCGCTGGACCCGGAGCTCGTCGGCGAGGTGCTGACCGTCATGAAGGAGCTCGCCGACGAGGGCTGGACGATGGTCGTGGTCACCCACGAGCTGGAGTTCGCCCGCGCCGTCGCCGACGAGGTGCTGTTCCTCGACGACGGCGTCGTGGTCGAGCGAGGTGCGCCCTCGGCGATGTTCGCCGCGCCGCGCCGGGCGCGGACCCGGGAGTTCCTGCACCGGATCCTGCACCCGCTCGACTGAMSEAPLLTATGIHLSFGENHVLRGVDLSVRRGEVVALIGPSGSGKTTLLRSLNGLATPDAGRIVVDGGPGEQVDLTFEGGPRRAWGRAGRRARAERESLRDRSAMVFQHHHLFPHLTVLQNVVEGPVQTRGVPRAEAESRALELLDRVGLADKRDAYPRELSGGQQQRVGIVRALALQPDLLLFDEPTSSLDPELVGEVLTVMKELADEGWTMVVVTHELEFARAVADEVLFLDDGVVVERGAPSAMFAAPRRARTREFLHRILHPLDPGPT0020720_36DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0020720-tcyC|yecC-K10010NANA
AK018_02962654tcyB_2COG0765L-cystine transport system permease protein TcyBATGGACGTCCAGCTCTTCGCCGACTCGTTCTGGCCGCTCGTCCGCGGCGGTCTGGTGGGAACGATCCCGCTCGCGCTCTCCTCGTTCGCGATCGGGCTCGTCCTCGCCCTCGGCGTCGCGATGCTGCGCCTCTCGGCCCACCCGGTCCTCGCCTGGGTGGGCCGGGCGTACGTCTCGGCCATCCGCGGCACGCCCCTGCTCGTGCAGCTCTTCGTCATCTTCTACGGGCTGCCGTCGCTCGGGCTCACCATCGACCCCTGGCCCAGCGCCGTCGTCGCGTTCTCGCTCAACGTCGGCGGGTACGCCGCCGAGGTGATCCGCGCCGCCATCCTCTCGGTGCCCACCGGCCAGTGGGAGGCCGGGTACGTCGTCGGGATGTCCCGCCGTCGGACGCTGCGCCGCATCATCCTGCCGCAGGCCGCCCGCGTGTCCGTGCCACCGCTGTCCAACACGTTCATCTCGCTGGTCAAGGACACCTCGCTCGCCTCGCTCATCCTGGTGACCGAGCTGTTCCGCGAGGCGCAGGAGATCGCCGCGTTCACCAACGACTTCCTGCTGATCTACACCGAGGCGGCGCTCGTCTACTGGATCTTCTGCACCGTGCTGTCGTTCGGCCAGACCCGTCTCGAGAGGAAGCTGGAGCAGTATGTCTGAMDVQLFADSFWPLVRGGLVGTIPLALSSFAIGLVLALGVAMLRLSAHPVLAWVGRAYVSAIRGTPLLVQLFVIFYGLPSLGLTIDPWPSAVVAFSLNVGGYAAEVIRAAILSVPTGQWEAGYVVGMSRRRTLRRIILPQAARVSVPPLSNTFISLVKDTSLASLILVTELFREAQEIAAFTNDFLLIYTEAALVYWIFCTVLSFGQTRLERKLEQYVPGPT0020715_1370DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0020715-tcyB|yecS-K10009NANA
AK018_02963813COG0834putative amino-acid ABC transporter-binding proteinATGCGACGCCCCCTGCTCGTCACCGCCACGGCCACCCTGACCGCGCTGGCGCTCGCGGCCTGCGGCTCGTCCGACGACGGCGCGTCCGAGGGCAGCACCGCCGCCGGGGGCTCCGGCGACCTGAACCTCGTCGCGGACGGCACCCTGACCGTCGCCACCGAGGGCACCTACCGGCCGTTCACGTACCACGACTCCACGGGCGAGCTCGTGGGCTACGACGTCGAGGTGGCCGAGGCCGTCGCCGACGAGCTCGGGCTGGAGATCGAGTTCGCCGAGACGCAGTGGGACGCGATCTTCGCCGGGCTGGACGCCGGCCGCTTCGACACGATCGCCAACCAGGTCTCCATGACCCCGGAGCGCCTCGAGGACTACGAGTTCTCCCAGCCGTACACCGTCTCCCGCGGCGCCGTCGTCGTGCCCGAGGGCGACACCTCGATCACGAGCTTCGACGACCTGGACGGCAAGACCGCCGCACAGTCGCTGACCAGCAACTGGCGGACGCTCGCCGAGGAGTCCGGCGCGCAGATCGAGGCCGTCGAGGGCTGGGCCCAGTCCGTCGAGCTGCTCGGCACCGGCCGCGTGGACGCCACGATCAACGACACGCTGACCGTGCTCGACTACCAGGCCGAGCACCCGGACGCGCCGATCGAGATCGCCGCCGAGACCGAGGAGACCTCCGAGATGGGGTTCGTCGTCACCCCCGAGCGGGCGGCGCTGGCCGAGGCGATCGACGGCGCGCTGGACACCCTGCGTGAGGACGGCACGCTCGCCGAGCTCTCGCAGGAGTACTTCGGGGCCGACGTCACGAGTTGAMRRPLLVTATATLTALALAACGSSDDGASEGSTAAGGSGDLNLVADGTLTVATEGTYRPFTYHDSTGELVGYDVEVAEAVADELGLEIEFAETQWDAIFAGLDAGRFDTIANQVSMTPERLEDYEFSQPYTVSRGAVVVPEGDTSITSFDDLDGKTAAQSLTSNWRTLAEESGAQIEAVEGWAQSVELLGTGRVDATINDTLTVLDYQAEHPDAPIEIAAETEETSEMGFVVTPERAALAEAIDGALDTLREDGTLAELSQEYFGADVTSPGPT0015635_721DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0015635-fliY|tcyA|yckK-K02424NANA
AK018_02964483hypothetical proteinATGACTGCTGAGGACGCCGCCGCCCTGGTCGCCGAGATCGAGGAGGTCGAGCGCGAGCTCGTCCTGCCCCGCTTCACCCACGACGACGCGTGGAGGCTGGGTTGCCTGCTCGTCGAGCTCGCGACCGACCGGGACCTGCCCGTCACCATCGACATCCGCCGGGGCACCCAGCAGGTGTTCCACGCGGCCCGCGAGGGCACGACGCCGGACAACGACTCCTGGGTGGAGCGCAAGGTGCGCGTCGTCTACCGGTTCGGGGCGTCGTCGTACCTGGTGGGCCGGCGGGCGGCCGCGACGGGCCGCGACTTCAACGACGCCCACCAGCTGCCCCTGCAGGAGTACGCCGCGCACGGCGGCGCGTTCCCGATCCGGGTCGACGGAGCAGGGATCGTGGGTGTCGCCACCGTCTCAGGGCTGGCGCAGGGTGACGACCATGCGCTCGTCGTCGAGGCGTTGCGCGCGTTCGCGGCATCCAGCGCCTGAMTAEDAAALVAEIEEVERELVLPRFTHDDAWRLGCLLVELATDRDLPVTIDIRRGTQQVFHAAREGTTPDNDSWVERKVRVVYRFGASSYLVGRRAAATGRDFNDAHQLPLQEYAAHGGAFPIRVDGAGIVGVATVSGLAQGDDHALVVEALRAFAASSANANANANANA
AK018_029651551nfdA_6N-substituted formamide deformylaseGTGTGCGGGGTGACCGTCCTGCACCTCGTGAACGCCCGCCTCGCCGGGCGCCCCGACCGCCCGGTCGACGTGCTGCTCGACGCCGGCCGGGTGGCCGCCGTGCTCTCCGCCGGGGCGGACAGGCCGGCCACGGTGCCGCCGTCGGGCACCCCCGAGCGCATCGATCTCGAGGGCCGCACCCTCGTCCCGGGTCTGTGGGACGCGCACACCCACCTCACGCAGTGGGCGATGGTGCGCCGCCGCCTCGACGTCTCGGATGCCACCGGCCCGGCGCACGCCGCCGCCCTGGTCGGTGCCGCCCTGACCGACCCGGCCCGCCACCCCGCACCCGGGCGGCCGTTCGTCGGGTTCGGCTTCCGCTGGGCCACCTGGGACGACGAACCCACCTCCGACGTGCTGGACGCCGTCGCCGGCGAGATCCCCGTCATCCTGCTCTCCGGCGACCTGCACTCCGCGTGGGCCTCCACCGCCGGGCTGCGCTACCTCGGCATCCACCACCACCCCACCGGGCTGCTGCGGGAGGAGGAGTGGATGCCGGCCTCGCCCGCGATCGTCACCGCCACCGACGCCGAGACCGACGAGCTCGTCGCCGACGCCGCCCGCGCCGCGGCCGCCCGGGGCGTGGTCGGCGTCGTCGACTTCGAGGTCGCCGACAACCTCACCTCCTGGCGGCGCCGCGCCGGCCACGGCTGGGACCGGCTGCGCGTGCGGGCCGCCGTCTGGGAGCAGCACCTCGACGCCGTCGTCGACGCCGGGCTGCGGCACGGCGACCCGCTCACCGGCCACGACCAGGACCTCGTCACCCAGGGCCCGCTCAAGGTCATCTCCGACGGCTCCCTCAACACGCTCACGGCGTTCTGCTTCGAGGACTACGTCGGGTTCCACGGCCCCGACGCGCACGGCATCCTCAACGTCGCCACCGACCATCTCGTGCCCCTCATGGCCCGCGCCCACGACGCCGGACTGCGCTGCGCCATCCACGCCATCGGCGACCACGCCAACGCCCTCGCGCTGGACGCCTTCGCCGCCTCCGGCGCCCGCGGGTCCGTCGAGCACGCCCAGCTGCTGCACCCCGACGACGTCGCCCGGTTCGCCGCGCTCGGCATCACCGCCAGCGTGCAGCCCGAGCACGCCATGGACGACCGCGACGCCTCCGACGAGCTGTGGGCCGGCCGCACCGACCGCGCCTTCCGACTCGCCGACCTGCACGCCGCCGGGGTGCCGCTCGCCCTCGGCTCCGACGCGCCCGTCGCCCCGCTCGACCCCTGGTACGCCGTCGCCTCGGCCGTCACCCGATGCCGCGACGGCCGCGACCCGTGGCACCCCGAGCAGCGCATTGACGTCGCGACGGCGCTCGCGGCCTCCACCGACGGGCACGGCACGCAGGTGCGGCCCGGCGGGCCCGCGGACCTGGCGGTGCTGGACGTCGACCCGCTGTCTCTGCCCGACGACGGCACCCCGGCCGGGGCGGTCGGGCTCGCCGAAGCGCTGCGGGAGCTGCCGGTGGCGGGGACGCTCGTGGCCGGCCGGTGGACCCACCGGGGTTTCTGAMCGVTVLHLVNARLAGRPDRPVDVLLDAGRVAAVLSAGADRPATVPPSGTPERIDLEGRTLVPGLWDAHTHLTQWAMVRRRLDVSDATGPAHAAALVGAALTDPARHPAPGRPFVGFGFRWATWDDEPTSDVLDAVAGEIPVILLSGDLHSAWASTAGLRYLGIHHHPTGLLREEEWMPASPAIVTATDAETDELVADAARAAAARGVVGVVDFEVADNLTSWRRRAGHGWDRLRVRAAVWEQHLDAVVDAGLRHGDPLTGHDQDLVTQGPLKVISDGSLNTLTAFCFEDYVGFHGPDAHGILNVATDHLVPLMARAHDAGLRCAIHAIGDHANALALDAFAASGARGSVEHAQLLHPDDVARFAALGITASVQPEHAMDDRDASDELWAGRTDRAFRLADLHAAGVPLALGSDAPVAPLDPWYAVASAVTRCRDGRDPWHPEQRIDVATALAASTDGHGTQVRPGGPADLAVLDVDPLSLPDDGTPAGAVGLAEALRELPVAGTLVAGRWTHRGFNANANANANA
AK018_029661272hypothetical proteinATGGTCTACCGACGGCGCCTCGTCGACGACGCGCTCGACGAGCTCTTCCCTCACCTCGCTGCGATCGCGCTGGAGGGCGCCAAAGGTGTCGGCAAGACCGCGACCGCGAGCCAGCGCGCCACGACGGTCGTGTCCCTGAACGTCCCCCGGCAACGTGAGATCCTCGCCGGCGACCTCGACTACGTCGTCCACGCAGAGCCACCGGTCCTGATCGACGAGTGGCAGCTCGAGCCGTCAGTCTGGGATCGCGTACGCACAGCGGTTGACGACGACCGCACCGGTGGCAGATTCCTCCTGGCAGGTTCGGCCGACGTCGCACCCGGAGTCCGTATCCATTCGGGCGCCGGTCGCATCGTCAGCCTCACGATGCGACCGCTCTCGATGGCCGAACGTGGGCTGAGCGAGCCGACCGTCTCGCTCAGCGAACTGCTGTCCGGGAGCAGACCGACCATCGGGGGACGGTCTGACGTCAGGCTCGCGGCGTACACCGACGAGATCCTGAGATCCGGATTCCCTGGCATCCGAGACCTTCCGGACCGAGCGCGCAGAGTCCAGCTCGACAGCTACCTCACCCGGATCGTCAACAAGGAACTGCCAGAGAACGGCGCGGTCGTCCGCCGCCCCGAGACGGTGCGAAGCTGGTTGGCGGCCTACGGATCAGCCACCTCGACCGACGCCACATACACGAAGATCCTCAACGCCGCGACGGCGGAGCACGTGAACAAGCCCGCCCGCGCGACGGTGGACGGCTACCGGGACCACCTGTCGCGGATCTTCGTCCTCGACCCGATCGAGGCATGGGTCCCAGTCTTCAATCCGCTCAAGCGCCTCACCCACGCACCCAAGCACCACCTCGTCGATCCTGCGCTGGCAGCCCGGCTGGTCGGCGTGGGCAAGCAGGGCCTGCTGCGGGGCGACGGCAACCGGGTCGCCGGAGCAACCGGAACGTGGCTCGGCGCCCTGTTCGAGTCTCTCGCCGCGCAGAGCGTGCGGGTCTACGCCGAGGCTGCCTTCGCACGAGTCGGACACCTCCGGACGAGGGACACGGAACGCGAGATCGACCTGATCGTCGAAGGCGAGGACCGCCGCGTCGTCGCGATCGAGGTCAAGTTGAGCGAGACCGTCTCTGACAAGGACGTTCGCCACCTCAACTGGCTGCACGACAAGCTGGGAGTCCGCCTGGCCGACCGTGTCCTGATCACGACCGGCGAGTTCGCCTATCGGCGCAAGGACGGGGTTGCCGTCGTCCCGCTGGCGCTGCTCGGTCCGTGAMVYRRRLVDDALDELFPHLAAIALEGAKGVGKTATASQRATTVVSLNVPRQREILAGDLDYVVHAEPPVLIDEWQLEPSVWDRVRTAVDDDRTGGRFLLAGSADVAPGVRIHSGAGRIVSLTMRPLSMAERGLSEPTVSLSELLSGSRPTIGGRSDVRLAAYTDEILRSGFPGIRDLPDRARRVQLDSYLTRIVNKELPENGAVVRRPETVRSWLAAYGSATSTDATYTKILNAATAEHVNKPARATVDGYRDHLSRIFVLDPIEAWVPVFNPLKRLTHAPKHHLVDPALAARLVGVGKQGLLRGDGNRVAGATGTWLGALFESLAAQSVRVYAEAAFARVGHLRTRDTEREIDLIVEGEDRRVVAIEVKLSETVSDKDVRHLNWLHDKLGVRLADRVLITTGEFAYRRKDGVAVVPLALLGPNANANANANA
AK018_02967405dksA_4RNA polymerase-binding transcription factor DksAATGCAGATGGCCGAGGCTTTCGTGTCCCAGGGTGTCCCGACAGGAGGATCAGAGGTGTCCGACGACGGTGGTGCCGGTCCGCTGGCCACGCTGCGGGAGCGCTTGGCAGCGGCGGACGAGCGGATCGCCCGGCAGCGCGCCGTCGTCGACGGGATCGTCGACTCGGTACGGGGCGAGAACGTGGACGACGAGCACGATCCCGAAGGGGCGACGCTCGCGTGGGAACGGCAGCAGGCCGGGGCGCTGCTCGCCGAGGCGCAGGCGGAACGCGACGCGGTGCGTGCCGCGTTGGACCGGGTCGACGCCGGCACCTACGGCCGGTGCGAGGCGTGCGGGCGGGCCATCCCGGCTGCGCGGCTGGAGGCTCGGCCGACCGCCACTCGGTGCGTCGAGCACGCCCGATGAMQMAEAFVSQGVPTGGSEVSDDGGAGPLATLRERLAAADERIARQRAVVDGIVDSVRGENVDDEHDPEGATLAWERQQAGALLAEAQAERDAVRAALDRVDAGTYGRCEACGRAIPAARLEARPTATRCVEHARPGPT0014560_3680DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204NANA
AK018_02968639hypothetical proteinGTGACGACCACGACCACCCGGCCTGCGCCGTCGGCCGGTGCCGTGCAGCGTCGCGGCACCGGGCGGCGGCCCGGTCGTCCCCGGGCCGCTGGGCACGACGAGAAGATCCTCGCCGCCGCCGTGGAGCTGCTGGAGCGCGGCCAGGACGTCACCGTGTCCCGCGTCGTCGAGGTCAGCGGGGTGTCGCGGGCCGCGATCTACCGGCGCTGGCCGTCGATGACGGACCTCGTCGCCGCCGCGCTGGACGTGGGGCGCGAGCCGTACACCATCTCGCTCGAGGGCGACCTGCTCACGAACCTCCTGGCCGCCCTGTCCCCCGACACGAGGGCGGCCGGCCGCGACTACCCGGAACGGCGCTTCCGCCTACGGCTGCGCCTGGCCCTGTCCGACCGGCGGCTCGCCCAGGCGTACTGGCGCTCCCACGTCGCCCGACGCCGGTCCGGGCTCGTCGCCGTGCTGCGCGAGGGCATCGCACGGGGCGAGCTGAGGGACGACCTGGACCTCGAGGCGAGCATGGACCTGATCACCGGCGTCTTCTATTACCAGTACGTGGTGCGCGGGGAGTCCCTCACCGACCCCGTCGTGGCGGACCGGTGCCGGGAGGCGGTGCGGACGGCGTGGCGCGGGATGCTGACGTAGMTTTTTRPAPSAGAVQRRGTGRRPGRPRAAGHDEKILAAAVELLERGQDVTVSRVVEVSGVSRAAIYRRWPSMTDLVAAALDVGREPYTISLEGDLLTNLLAALSPDTRAAGRDYPERRFRLRLRLALSDRRLAQAYWRSHVARRRSGLVAVLREGIARGELRDDLDLEASMDLITGVFYYQYVVRGESLTDPVVADRCREAVRTAWRGMLTPGPT0014530_210DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
AK018_02969843hypothetical proteinGTGACCACGCTCGACACCACCCTGCCCGACTCCCCTACCGCCCCGCGGATCCCCCTGACCGCGCCGGTCAACCTGCGCGACCTCGGCGGGATCGCCGTCGACGGCGGCACGGTGCGCACCGGCGTCGCGCTGCGGGCCGACGACCTGTCCACCGCGGACCAGGACACCGTCGACGCGCTGGTGGCCGGCGGGCTGCGCGCCGTCGTCGACCTGCGCTCCGCCGACGAGGTCGCCGTCACCGGTCGCGGCCCGCTCGCCACGCGGTCCGAGGTGACCTACCACCACGTGCCGTTTCTGGCCGACATCGGCCACGCCGCCGTCGGCACTGACGGCACTGACGGCACCGACGGCGCACCCGACCCGGCCGAGATGATGGACCAGTCCCGGTTCGGTGCGATGTACCTGCGGATGTTCGAGGGCGCCGCGGCGCAGATCGTGACCGCACTGGCCGTCGTCGCCCACTCCCCCGGGGCGGTCGCGTTCCACTGCGCAGCCGGGCAGGACCGCACCGGCGTCCTCGCCGCCGCCCTGCTGCTCGCCCTCGGCGCGGACGAGGCGGCGATCGTGGCGGACTACGCCCGCACGGGCGAGAGCTCCGCCGCGATCCAGGAGCGGCTCGCGCCGGTCATGGCGCCGCTGCTGGCCCGGTTCGGGTTCGACCTCGACGACGCCGCCCGCGCCGCGCTGCGCACCGGCTTCTCCCGCGAGCCGATGCGCGAGCTGCTCGCCGCGCTGGCCGAGCGGCACGGCGACCCGCTCACCCCGCTGCGCGCGGCCGGGCTGACCGACGGCCTCGTGGCGCGGTTGCGCGAGCGTGCCCTGGTCGGCCCGGGAGCGGCGTGAMTTLDTTLPDSPTAPRIPLTAPVNLRDLGGIAVDGGTVRTGVALRADDLSTADQDTVDALVAGGLRAVVDLRSADEVAVTGRGPLATRSEVTYHHVPFLADIGHAAVGTDGTDGTDGAPDPAEMMDQSRFGAMYLRMFEGAAAQIVTALAVVAHSPGAVAFHCAAGQDRTGVLAAALLLALGADEAAIVADYARTGESSAAIQERLAPVMAPLLARFGFDLDDAARAALRTGFSREPMRELLAALAERHGDPLTPLRAAGLTDGLVARLRERALVGPGAAPGPT0014530_910DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
AK018_02970858phnECOG3639Phosphate-import permease protein PhnEATGACCAGCACTGACACCCGCCAGCGCCCCGGTGGCGGGCGCCGCGAGCACGCCGCCGAACCGTTGACGACGGCGGAGCGGGACCGACTCGAACGGGCCTTCAACATCCCGCGCGCCCGGTTCCTGCTGGGCGTGCCCGTCGCCCTGGCGATCCTGTACTGGTCCGCCGTGGGCGCCCAGTTCGACTTCGCGAAGCTCGGCGAGGGTGCGGCCAACATGGCCGAGTTCCTCACCCGCATGTTCCCGCCAACGTGGGACGAGCTCGACGTCATCGTCGACCAGCTCGTCGAGACGCTGCAGATGGCGATCGTCGGCACGGCCTTCGGCGCCGGGCTGTCCCTGTTCATGGCGTTCGGCGCCGCGTCGAACATCGCCCCGCGCTGGGTGTACTACCCGTGCCGCTGGACCATGAACGTCATCCGGTCCCTGCCGGACCTGGTGTTCGCCCTGATGTTCGTCTCCGCCGTCGGGCTCGGGCCGTTCGCCGGCATCCTCGCCATGACGATCGGCTCGGTCGGATCCATCGGCAAGGTGTTCGCCGAGGCCATGGAGGCCGTCGACACCGGCCCCGTGACCGCTATGCAGTCCGTCGGCGCCTCGAAGCGCCAGGTCGTGCAGTACGGGATCCTGCCGCAGGCCGGCCCGCTCCTCGTGTCCTACACGCTCCTGCTGTTCGAGGGCAACGTCCGCGGCGCCACCATCCTGGGGATGGTCGGCGCGGGCGGCATCGGCCTCGAGCTCACCACCGCCATGAAGATGTACGACTACGGGCACCTGTCCGCGATCGTCATCTGCATCATCGTGCTGGTCACGGTCATCGACCAGATCAGCGCCGTCATCCGGAGGAAGATCACGTGAMTSTDTRQRPGGGRREHAAEPLTTAERDRLERAFNIPRARFLLGVPVALAILYWSAVGAQFDFAKLGEGAANMAEFLTRMFPPTWDELDVIVDQLVETLQMAIVGTAFGAGLSLFMAFGAASNIAPRWVYYPCRWTMNVIRSLPDLVFALMFVSAVGLGPFAGILAMTIGSVGSIGKVFAEAMEAVDTGPVTAMQSVGASKRQVVQYGILPQAGPLLVSYTLLLFEGNVRGATILGMVGAGGIGLELTTAMKMYDYGHLSAIVICIIVLVTVIDQISAVIRRKITPGPT0002530_1423DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042NANA
AK018_02971849phnC_1COG3638Phosphate-import ATP-binding protein PhnCATGACCACGACGATCCACCGACCCGCGCGGACCACCGTGTCCCCGGGGCTCGCCGCGACCACCGCGAGCGCGGCGTCGTCGGCCGACTCCCTCGTCACCGTCCGCGGGCTGCGCGTCGCCTACGGCGACGGACCCGTGGTGCTCGACGGCGTCGACCTCGACCTCGCCCCCGGCGAGACGGTCGCGCTGCTCGGGTCCTCGGGCTCCGGCAAGTCGACGCTCATGCGGGCGCTGACAGGCTTCGCGCCGGTCGTCGCGGGCAGCGTCGACGTCGCCGGCCACGACCTGACGCGGCTGCGCCGGGGCGAGCTGCGGCGCGTGCGTGCCGACGTCGGGCAGGTGTTCCAGCAGTTCAACCTGGTCGGGCGCCTGTCCGTGCTCACCAACGTGCTCACCGGCGCCCTGCACGACGCCGGTCCGGCGAACTGGGTGGGTGGGTTCGGCTCGGCGCACCGCCGGCGGGCGATGGCCCTGCTCGACCGCGTCGGCATCGCGCACAAGGCGAACGACCAGGCCCGCACCCTCTCCGGCGGGCAGCAGCAGCGCGTCGCGATCGCCCGCGCGCTGATGCAGCAGCCGCGGGTCGTCCTCGCCGACGAACCGGTCGCGTCCCTCGACCCCAGGATGTCGCACTCGGTGCTCGAGCTGCTGCAGGAGATCGCCCGCGAGGACGGCATCCCCGTGCTGGTGAGCCTGCACGTGCTGCCGCTCGCGCTGGAGCACTCCGACCGCGTCGTCGGGCTGCGCCACGGCGAGGTCCTCGTCTCCGCCCCGACGGCGTCCCTGGACGCCGAGACGCTCGCCGTCGTCTACGAGGGCGTCGAGGAGGAGACCGATGACCAGCACTGAMTTTIHRPARTTVSPGLAATTASAASSADSLVTVRGLRVAYGDGPVVLDGVDLDLAPGETVALLGSSGSGKSTLMRALTGFAPVVAGSVDVAGHDLTRLRRGELRRVRADVGQVFQQFNLVGRLSVLTNVLTGALHDAGPANWVGGFGSAHRRRAMALLDRVGIAHKANDQARTLSGGQQQRVAIARALMQQPRVVLADEPVASLDPRMSHSVLELLQEIAREDGIPVLVSLHVLPLALEHSDRVVGLRHGEVLVSAPTASLDAETLAVVYEGVEEETDDQHPGPT0002520_591DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002520-phnC-K02041NANA
AK018_02972927hypothetical proteinATGCGCGCCCGCGCCCTGCCCGCCCTCGCCCTCCTCGGCCTCGGATCCCTGGTCCTGACCGCCTGCTCGGCCGACGCCGAGGCCGACGACGCCGTCGCGGCGTCGGATCCCGACGCGCCGATCACGTTCGCGACGACCCCGCTCGGGGACGACCCGGGCGCGGAGAACCCCATCGAGGCCTTCGCCGAGCTCGTCACCGCCGAGACCGGCCGCGAGGTCGAGATCGTCGACGTGCCCGACTACACCGCCGTCGTGGAGGCGCTGCGCAACCACCACGTCGGCATCGGCTTCATGAGCGGCTTCCCGTCCGCGCTGGCGGTCAACACCGGCGAGGTCGACTCCCTGATCGCCTGGCCCGGCAACGACGACCCGGTCTCCACCTGCCTGGTGATGGACGACTCCGAGCTGCAGTCCCTGGAGGACGTCACCCCCGAGACGGTCGTCGCGTTCGCCGACCCGGCGTCGAGCTCCGGCTACTTCATGCCCACGGCCATGCTCCACGAGGCAGGCCTGGAGCAGGACGTCGACTACACGTCGATGTTCTCCGGCGGCCACGACATGTCGTTCATCGCGCTCGCCGAGGGCCAGGTGGACGTCGCCTGCACCTCGACGATCTTCCCGACGATGGCCGGGCAGGACAACCCGATGTTCCCGTTCGACGAGGGCGAGACCCGGTCCATCGGCGTCAGCGGCTCGATGCCCGTCGCGGTCACCGTGCTCGCCGACCAGCAGCTCGCGGACGACAAGCGCGCCGACCTGCTCGAGGCGCTGCCGACCGTGTTCACCGAGGAGAACGCCGACCAGCTCGGCGCCATGCTCGAGGCGATGCAGGGCACCGAGCCGATCCTCGAGCCCGACGACGAGATCTTCCAGCCGTTCGTGGACATCGCCGCGATCGCCGACGTCGACATCTCGGACCTGGGCTGAMRARALPALALLGLGSLVLTACSADAEADDAVAASDPDAPITFATTPLGDDPGAENPIEAFAELVTAETGREVEIVDVPDYTAVVEALRNHHVGIGFMSGFPSALAVNTGEVDSLIAWPGNDDPVSTCLVMDDSELQSLEDVTPETVVAFADPASSSGYFMPTAMLHEAGLEQDVDYTSMFSGGHDMSFIALAEGQVDVACTSTIFPTMAGQDNPMFPFDEGETRSIGVSGSMPVAVTVLADQQLADDKRADLLEALPTVFTEENADQLGAMLEAMQGTEPILEPDDEIFQPFVDIAAIADVDISDLGPGPT0002525_1564DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002525-phnD-K02044NANA
AK018_02973618hypothetical proteinATGCGGGTGGAGCCGGTCACGTACGACGCCGCGGTGGCCCGTGTGGTCGATCGCGTCGTGGACCGCGGCCCCGGCCCGGTCCGGGTGCTGGTCGACGGCCACCCCTCCACCGGACCCGGACGGTTCGCCGACGCGGTGGCCGACCCGCTGCGGGTGGCCGGGCGACCGGTCGCCCGGGTCGCGGTCCGCGACTTCCTGCTGGCGCGGTCGCTGCGCCTCGAGACCGGTCGACGGGACCCCGACGCCCTGCTGGACACCTGGATCGACGTCGGTGGCCTCAACCGTGAGGTGCTGCGCTCCGTCGTGGACCGCGGCCGCTGGCTCCCGAGCCTGCGGGACCCCGACACCGGGCGGTCGACCCGCGCGCCCTACCGGGACGCGCCGCCCGGCACCGTGGCCCTGCTCGACGGATCGCTCGCCGTCGGCCGGGGGCTCGACGTCGACCTGGTGGTGCACCTGGCCCTGAGCCCCGCGACCGAGACGCGCCGCACCGACCTGACGGACGCCTGGCAGCTCGCCGCGTACGGCCGCTACCGGCGCGAGGCCGCTCCGGAGCGGCGTGCCGACGTCGTCGTCCGCCTCGACCATCCCGACCGCCCGGCGCTGCTGCGGCAGTGAMRVEPVTYDAAVARVVDRVVDRGPGPVRVLVDGHPSTGPGRFADAVADPLRVAGRPVARVAVRDFLLARSLRLETGRRDPDALLDTWIDVGGLNREVLRSVVDRGRWLPSLRDPDTGRSTRAPYRDAPPGTVALLDGSLAVGRGLDVDLVVHLALSPATETRRTDLTDAWQLAAYGRYRREAAPERRADVVVRLDHPDRPALLRQNANANANANA
AK018_02974744hypothetical proteinATGGATGCGACCGCACCGGCCTCGGCCGGACCCGCGGGGACGGTCGGCGCGCTCGTGCTCGACACCCCCGACCCGCAGGGGTCGGCGGCGTTCTGGCGCGACCTGACCGGCGGGACCGTGGAGCAGACCGACGACGACGGCTGGATCACGCTCGCGCTGCCCGACGGCTGGTCGCTGGCCTTCCAGCCCGCCCCGGACCTCGTGGCACCGCGATGGCCCGGGCAGGAGCGTCCGCAGCAGCTCCACCTGGACCTGCTCGTGCCCGACGTCGCCGTGGCCGTGGCACGGGCGGAGGCGCTGGGGGCGACGGTGCTGCGCGAGAACGAGCATTGGACGACGCTCGCCGACCCGTCCGGCCACCCCTTCGACCTCTGCCTCGCCGAGGACGTCGGCAGCCTCACCGTCATGGGGGTGACCTTCGACGTGCCGGACGCCTCCGTCGCGGCGGCGTTCTGGGCCCGTCTGCTCGGGGCGGAGGTGGTCCACGACGCGGACGGCATGGCGATGCTCTCGGGTCCTCGCACGCTGCTGTTCCAGCAGGTCGCCGACTACGCGCCGCCTCGCTGGCCGGACCCGGCGGCGCCTCAGCAGGGACACCTGGACCTGTCGATCGGCCCGCTGAGCCAGGACGAGGCGCAGGAGCGCGCCCTGGCGGCGGGGACCACCCGGCGGCCCGGCGAGGGCCGGGCGTTCCGCGTCTTCGCCGACCCCGCCGGCCATCCGTTCTGCCTGTGCCAGTTCTGAMDATAPASAGPAGTVGALVLDTPDPQGSAAFWRDLTGGTVEQTDDDGWITLALPDGWSLAFQPAPDLVAPRWPGQERPQQLHLDLLVPDVAVAVARAEALGATVLRENEHWTTLADPSGHPFDLCLAEDVGSLTVMGVTFDVPDASVAAAFWARLLGAEVVHDADGMAMLSGPRTLLFQQVADYAPPRWPDPAAPQQGHLDLSIGPLSQDEAQERALAAGTTRRPGEGRAFRVFADPAGHPFCLCQFNANANANANA
AK018_029751398pcaB_2COG00153-carboxy-cis,cis-muconate cycloisomeraseATGATCGTCGCGCCGTTCGGACGCTTCACCGAGGGTCGGGTCCCCGACCCCGGGATCGCGGCGCTGTTCACGCGGGAGAACCGGTGGCAGGCCCGGCTCGACGTCGAGGCGGCGCTCGCCCTGGCGGAGGCCGACGCGGGGGTGATCCCGAAGGAGTCGGCCCGGGCGATCGCCCTGACGGCGCGGATCGAGAAGCTCGACATCAAACGGGTCCTCGAGGCGACGGCGTCGGCGAGCCACCCGCTGGTGCCGCTCATCGAGGAGTTCGCCCGCACCGTCGGCTCCAAGCACGGCGGCTGGGTCCACTGGGGCGCCACGACGCAGAACATCACCCAGACCGCGGACGTCCTGGTGCTGCGGGACGCCCACCGCGCGATCCTGCAGCAGCTCGGCCGCGTGCTGCGGTCCGCGGCGGTGCTCGCCGACGACTCGGCCGACCTGCCGATGGCGGGGCGCACCCACTCCCAGCACGCGGTGCCCGTGACCTTCGGGTTCAAGGTGGCCGTGTGGATCGACCAGCTCGTGGCGCACACCGAACGCCTCGAACGACTGGACGACCGGCTGTTCTGCGTGCTCATGGGCGGTGCCGCGGGGACGTTCGCGTCGTTCGGGGACGCCGGCCGGGTCATCGAGGCCGGGGTGGCGCACCGGCTCGGCCTGCACCCGATGCGAGTGCCGTCGCGGTCCGTCAACGACGGCATCGTCGAGCTCGTGCTCGTCCTGGCGCAGCTCGCCGGCACGATCGGCAAGATCGGCAAGGACGTGTACGCCCTCATGCAGCCGGAGTTCGGCGAGGCGTCGGAGCCGGTGCCGGAGGGCACCGTCGGGTCCTCGACGATGCCGCACAAGCGCAACCCGCAGCTCGCCCTGGACCTGCTGACCATGTCCGCCGAGCTGCGGGCGCTGGCCGCGCCCGCGCTGGAGTCGATGCTGCACGACCAGGAGGCGAACGGCGCGATGACGGCGCTGCTCGAGGACGTCTCGGCGTCGGCGGCGGTGCTCGCGGGCGACATGCTCGCCCGGCTCGAGGTGATCGTGTCGGGCCTCGAGCTGAACCCGGCACGCATGCGCGCCAACATCCGCCTGTCCGAGGGGATGATCGGCTCGGAGGCCCTCATGCTCGCGCTCGGGGAGGAGATCGGGCGCCAGAAGGCGCACGACATCGTCTTCGAGGTGGCTCAGGCCGCGCCGCAGAGCGGCAAGCCGTTCCTGGAGCTGCTGCAGGCCGACCCCGTCGTGGGTGCCGCGTTCACCGAGTCCGAGCTGCGCGAGCTCATCGATCCGGCCGCCTACCTGGGGCTGAGCCAGCAGATCGCCCGCGAGCTCGCGGGCTGCGCCGTCCGCACCTCCGACCGGCTCCGACGGCTCCCCGAACGGACCCCGGTGATGACGCGCTGAMIVAPFGRFTEGRVPDPGIAALFTRENRWQARLDVEAALALAEADAGVIPKESARAIALTARIEKLDIKRVLEATASASHPLVPLIEEFARTVGSKHGGWVHWGATTQNITQTADVLVLRDAHRAILQQLGRVLRSAAVLADDSADLPMAGRTHSQHAVPVTFGFKVAVWIDQLVAHTERLERLDDRLFCVLMGGAAGTFASFGDAGRVIEAGVAHRLGLHPMRVPSRSVNDGIVELVLVLAQLAGTIGKIGKDVYALMQPEFGEASEPVPEGTVGSSTMPHKRNPQLALDLLTMSAELRALAAPALESMLHDQEANGAMTALLEDVSASAAVLAGDMLARLEVIVSGLELNPARMRANIRLSEGMIGSEALMLALGEEIGRQKAHDIVFEVAQAAPQSGKPFLELLQADPVVGAAFTESELRELIDPAAYLGLSQQIARELAGCAVRTSDRLRRLPERTPVMTRPGPT0005000_157DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005000-pcaB-K01857NANA
AK018_029761689hypothetical proteinATGACGCGCACCAGCGCTGCGACGCAGGCACGGCGCCTGCCGCGCTGGTCCCTGCGCGCCCTCGGGGTGGCGCTCGGCGCCGTGACCACCACCTTCTGCCTGGCGTCCACCGCCGCCGCCGACGACCGCTCCGGCGAGGAGTCGGGCGGTCTGCTCAGCGGCGTGGTCGAGACCGTCGGCAAGACCACCGAGGCCGTCACCAAGCCGGTCACCGAGGTGACCGAGCAGGTCGCGGACTCCGTCGAGAAGACCGCCGACCGGGTCCAGGAACGCCGCGAGGCGCGTGCCGAGCAGCGCCGCGACCGCGTCGAGAAGGCCCAGGACGCCGTCGAGAAGGTTGTCGAGCCCGCTCCTCGACCCGAGAAGCCCGCGAAGCCCGCCCCGGAGAAGGCCGACCCAGCGAAGCCGGCCCCGGAGAAGGCGGCAGAGAAGGTCCCTGCCAAGGCCGCCGACAAGGCCGACCGGCCCGCGAAGCCGTCGAAGCCGACGCCCGAGCAGGCCGAGCAGCCCGAGAAGAAGGCCGCGAAGCAGCCGGCGAAGGCCCCGGACGAGGCGGACCCGGAGCGCGACGGCGACCGTCCTACCGACGGCACGACGTCGGCGGCATCCGGTGAGGAGTCGGAGACGGCGTCCGGGTCCGGGGGGACCCTGGGCCGCACGCTCGGGCAGGTCACGGACGTGGCCGCCGAGCCGGTCGCCGGGGTCGCCGAGTCCGTCGCGCCGACGACGTCGGCGGTGGGTTCCGCCGTCGAGCAGGTCGTCGCACCCGTCGGGGCGGTCACGACGCCCGTCGGGGAGACGGTCGGAGGGCTCGTGGGCGGGCTCACGGGCCCGCTGGCCGAGCCGCTGGATACCGTGGGCGGGACCGTCGGTGCCGTCACCGGGCCCCTGAAGCCCGTCGTGGCACCGGTCGGCGAGGCGGTCGCGCCGGTGACGGGCGCCGTCGGCGCCGTCGTCGCTCCCGTCACGGAGGCGGCCGGGCCGGCGGTCGGCGTGCTGGGCCCGGTCCTGGAGCCGCTCGGCCCCGTCGTCGGCGGGGTGACCGACCCGGTCCTGGGTTCGCTCGACCCTGTGCTGGACCCCGTCCTCGACCCGTTGGACCCTGTGCTCGACCCGGCCGACCCGGTGGTCGACGTCGTCCGTCCGCCCGACGACGGCGACGACGACGGCGCGACGGGTGGCTCGGACGGCAGCACGCCCGGCGTCCCCGGGAGAGTCGCCGAGCCCGGCGCCGTCGCCCCGGCCGAGCCCGCCGTGCCCGGCGGGTCGACGTCCGACAGCTCGACCGACTCGACGCCGTCCTCGCCCCTCGCCGACGACCCCGCCGAGCAGGCGGCCCCGGCAGCGGCGCTCGAGACCTCCGCGACCGACGGCTCGGTCGTCCTCGGCCCGCAGCTCTCCGTCGCGGACACGGCCGAGGCGGAGTCGATCTCGGCAGCCGACGCGGAGTCGTCCACGGCGTCCTCGGCGACGTCGTCCGACGGCGGTGCGCCGGCCGCCGACGCGGCCCAGGTGGCCGCCTCCGGCGGGTCCTCCGGGTCGGCCCGGGGCGCTTCCGGCGCCGGTGACGCCGGCGCAGAGCTGGGGGGCGGGCCGGACGCCGGTGCCGTGCACTGGCTGGTCCCCGCCGAGGACACCTTCGTCCACCTTCCGGTTCCCCACTTCGAGATCCCTGTCTCTCCTGCCTGAMTRTSAATQARRLPRWSLRALGVALGAVTTTFCLASTAAADDRSGEESGGLLSGVVETVGKTTEAVTKPVTEVTEQVADSVEKTADRVQERREARAEQRRDRVEKAQDAVEKVVEPAPRPEKPAKPAPEKADPAKPAPEKAAEKVPAKAADKADRPAKPSKPTPEQAEQPEKKAAKQPAKAPDEADPERDGDRPTDGTTSAASGEESETASGSGGTLGRTLGQVTDVAAEPVAGVAESVAPTTSAVGSAVEQVVAPVGAVTTPVGETVGGLVGGLTGPLAEPLDTVGGTVGAVTGPLKPVVAPVGEAVAPVTGAVGAVVAPVTEAAGPAVGVLGPVLEPLGPVVGGVTDPVLGSLDPVLDPVLDPLDPVLDPADPVVDVVRPPDDGDDDGATGGSDGSTPGVPGRVAEPGAVAPAEPAVPGGSTSDSSTDSTPSSPLADDPAEQAAPAAALETSATDGSVVLGPQLSVADTAEAESISAADAESSTASSATSSDGGAPAADAAQVAASGGSSGSARGASGAGDAGAELGGGPDAGAVHWLVPAEDTFVHLPVPHFEIPVSPANANANANANA
AK018_029771845hypothetical proteinATGCGTACGAACGCGCGCCGAGTGCTGCAGACGGCACTCGTCACGAGCGGCCTGCTGGTCGCCGGGGCCTGGTCGGCCCACGCTGCCGAGGACGACGTCGTCGACGTCGAGATCGGCGAGAACACCTCGGTCGAGGCGAACCTGTCCGAGGTCACCGAGGAGGCGAACGACGCCTCCCTCGACACCCCGATCGACCTGCCCGAGGTCGACACCGAGCCCGTCGAGGACGTCGTCGACGACCTGGTCGGCGAGGACGGCCCGGTCGACGACGTGGTCGGCGCCGACGAGCCCACCGAGACCACGACGGACGACGTCGTGGACCACGTCGCGGAGGACGTCAGCCAGACCGTCGAGGACGCCACCGCGGGTGACGTCGAGGCGGTCGTGGAGGACGTCGCCGGCGACGACGGGATCGTCGACGACGTGATCGAGGACGGCGGGTCCGACCCTGCCGCCGAGACCACGGCCGACACGGTCACCGAGGCCGTCGAGGACACCGCCGAGACCGTCACGGAGGCCGCGGAGTCGGCCGACGAGGCCACGGGGTCCGACGGCGAGCCGTCGGGCACCGTCGACGCCGTGCTCGGTGAGGACGGGATCGTCGACGACGTCGTGGGGGCCGACGAGCCCTCGGAGGGCGTGACCGACGAGGTCGTCGAGGAGACGGTCGACAACGTCGAGACCACGGTGGACGACGCCCTGGAGGGTGACGTCGATGCCGTGGTGGACGACGTCGTCGCCGACGACGGCGTGGTCGACGAGGTCCTCGAGGACGGCGGGGTCGATGCCGCGCTGGACGAGGTCGACGCCGTGGTCACGGACGTCGACGGTGCGCTCGGCGCCGACGGCGGCCTGTCGGGCACGGTCGATGCCGTGGTCGGTGAGGACGGGATCGTCGACGACGTCGTGGGGGCCGACGAGCCCTCGGAGGGCGTGACCGATGAGGTCGTCGAGGAGACGCTCGACAACGTCGACGGGACCCTCGACGAGCTGCTCGAGGGTGACCTCGACGGTGTGGCCCGCGAGGTCCTCGACGAGGACGGTGTCGTGGACGACGTCCTGGAGGACGGTGGCGTCGACACGGTCGTCGCCGACGTCGTGGACTCCACGGGCACGGTCGACGACCTGCTCGGCACCGGTGATCTGGTCGGCGGCACCGTCGACGGCATCGCCGGCGAGGACGGTCTGGTCGACGACATCGTCGGCCCGGACGAGCCCGAGGAGGGCGTCACCGACGGCCTGCTCGACGAGCTGCGCAACGACCTGAACGAGACCGTGACGGAGCTGCTCGAGGGTGACCTCGTCGGCGTCGTCGACTCGGTGCTCGCCGAGGACGGCCTGGTCGACGACGTCCTCGAGAACGGCTCCGGGGACGGCAGCGACGGGTCCGACGGGAACGACGGATCCGACGGTTCGGACGGGTCTGACGGTTCGGACGGCTCCGACGGCTCCGACGGTTCGGACGGCACCGATGGCAGCGACGGGTCCGACGGCACCGACGGTTCGGACGGCACCGACGGCACCGACGGGAACGACGGGAACGACGCCACCGACGGCTCGACCGACGGTTCTGACGGCTCCGGCAGCACGACCGACGGCGGGACCGTCGTCGTCCGCACGGTGTCGGCCGGCGGTGCTGCTTCCGACGGGTCCTTCGGGCGCTTCGGGAGCCTGACGGGCTCGTCGCCGGTGACGGCGTCGGGCGCGGGGACGACCACGCTGCCGACGACGGGTCCGGCGTCGGCTCCGCTGGGGCTGGCCGTGCTGCTGATGGCGTGCGGTGCGGCGCTGGTCGTCGCTCGTCGCCGGCTGCGCGCTGCTCCGGCGGCTGCTCGGGTCGGCTGAMRTNARRVLQTALVTSGLLVAGAWSAHAAEDDVVDVEIGENTSVEANLSEVTEEANDASLDTPIDLPEVDTEPVEDVVDDLVGEDGPVDDVVGADEPTETTTDDVVDHVAEDVSQTVEDATAGDVEAVVEDVAGDDGIVDDVIEDGGSDPAAETTADTVTEAVEDTAETVTEAAESADEATGSDGEPSGTVDAVLGEDGIVDDVVGADEPSEGVTDEVVEETVDNVETTVDDALEGDVDAVVDDVVADDGVVDEVLEDGGVDAALDEVDAVVTDVDGALGADGGLSGTVDAVVGEDGIVDDVVGADEPSEGVTDEVVEETLDNVDGTLDELLEGDLDGVAREVLDEDGVVDDVLEDGGVDTVVADVVDSTGTVDDLLGTGDLVGGTVDGIAGEDGLVDDIVGPDEPEEGVTDGLLDELRNDLNETVTELLEGDLVGVVDSVLAEDGLVDDVLENGSGDGSDGSDGNDGSDGSDGSDGSDGSDGSDGSDGTDGSDGSDGTDGSDGTDGTDGNDGNDATDGSTDGSDGSGSTTDGGTVVVRTVSAGGAASDGSFGRFGSLTGSSPVTASGAGTTTLPTTGPASAPLGLAVLLMACGAALVVARRRLRAAPAAARVGNANANANANA
AK018_02978324hypothetical proteinATGGATGTCGATGCGTGGCAAGATGAGGGCATGACCGCGACCCCCGACGTCGACCGAGCGCTGGAGCTCGCCCCCGTGTTCAAGGCGCTCGGCGACCCGACCCGGGTCCGGCTGCTGTCCGTCGTGGCCGCAGCTGACGGCGGCGAGGCCTGCGTCTGCGACCTCACCGCACCGGTCGGCCTCAGCCAGCCGACCGTCAGCCACCACCTCAAGCTGCTCGTGGAAGCCGGCCTGCTCACCCGCACCCAACGCGGCCGGTGGGCCTACTACGCCGCCGTCCCCGGCGCCCTCGACCGCCTCGCCGAGAGCCTGCGCACCCTCTGAMDVDAWQDEGMTATPDVDRALELAPVFKALGDPTRVRLLSVVAAADGGEACVCDLTAPVGLSQPTVSHHLKLLVEAGLLTRTQRGRWAYYAAVPGALDRLAESLRTLPGPT0004735_1062DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
AK018_029791365hypothetical proteinATGGGGACGACGGCGGAGCTCCCGGTCGTGGTGATCGGCGCGGGCCCGGTGGGGCTCGCGGCTGCCGCGCACCTGCTCGAGCGCGGTCTGGAGCCGCTCGTGCTCGAGGCCGGCGACGGTCCGGGGGCGGCCGTCGCGCAGTGGGGCCACGTGCGGCTCTTCTCGCCGTGGCGCTACTGCCTCGACCCGGCGTCGCGACGGATCCTCGACGCCTCCGGGTCCTGGACCGCCCCGGACCCGGAGGCGCTGCCGACCGGCGCGGACCTGGTCGGGGAGTACCTCGAGCCCCTCGCCGCCACCGCGGCGCTGCGGGACCGCATCCGCTACGGCACGCGGGTCACCGCCGTCGTCCGTGACGGCGCCGACCGGACCCGTTCCCTCGGGCGCGAGCGCCGGCCGTTCCGGGTGCGCACGCGCGGGTCCGACGGCGGCACGCGGGACGTGCTCGCCCGCGCGGTCGTCGACGCGTCGGGCACGTGGACGCACCCCAACCCCGTCGGTGCCCACGGCATCCCCGCCGTGGGCGAACCGGAGGCCCACGGGTACCTCACCGGTCCGCTGCCGGACGTCCTGGGCGCCGAGCGCGAGCGGTTCGCCGGTCGGCACACCCTGGTCGTCGGGATGGGGCACTCCGCCGCGAACACGCTGCTCGCCCTGACCGCGCTCGCCGAGGAGGTGCCGGGCACCCGCGTCACCTGGGCGATCCGGGGCGGGTCCCCACGCCGACTGTTCGGCGGCGGCACGGACGACGAGCTGCCGGCGCGCGGGCTCCTCGGCCACCGGCTGCGCGACGCCGTCGACGCCGGCCGCCTCGAGCTGGTCACCCGCGCCTCGATCGACGAGCTCGCCCCGGCGGACGGGTCCGTCGTCGTGCGCGGCACGGGTCGGCGGGACGGTACGGACGGGTCGCTCGACCTCGCCGTGCACCAGGTCGTGGGTGCGACCGGTTTCCGGCCGGACCTCGACCTCCTGCGCGAGATCCGCCTCGACCTCGACCCGGTGGTGGAGGCTCCGGCCCGGCTGGCGCCGCTCATCGACCCGAACCTGCACTCCTGCGGGACGGTCGAACCGCACGGCGAGTCCGTCCTGGCGCACCCCGAGGAGGGTTTCTACCTGGTGGGCATGAAGTCCTACGGTCGGGCGCCCACCTTCCTGCTGGCGACCGGGTTCGAGCAGGTGCGCTCGGTCGCGGCGGCGCTGGCGGGCGACCGCGCCGCGGCGGACGCCGTGCAGCTCGACCTGCCCGCCACGGGTGTCTGTTCAACGGACGTCGACGCGGCGGACGGTGCCGAGGGCGCGGCGTGCTGCGGGACGACGGCGGAGCCCGGGCCGCAGCCGGTGGGGCTAACGCTCCCCCCGCGCTGAMGTTAELPVVVIGAGPVGLAAAAHLLERGLEPLVLEAGDGPGAAVAQWGHVRLFSPWRYCLDPASRRILDASGSWTAPDPEALPTGADLVGEYLEPLAATAALRDRIRYGTRVTAVVRDGADRTRSLGRERRPFRVRTRGSDGGTRDVLARAVVDASGTWTHPNPVGAHGIPAVGEPEAHGYLTGPLPDVLGAERERFAGRHTLVVGMGHSAANTLLALTALAEEVPGTRVTWAIRGGSPRRLFGGGTDDELPARGLLGHRLRDAVDAGRLELVTRASIDELAPADGSVVVRGTGRRDGTDGSLDLAVHQVVGATGFRPDLDLLREIRLDLDPVVEAPARLAPLIDPNLHSCGTVEPHGESVLAHPEEGFYLVGMKSYGRAPTFLLATGFEQVRSVAAALAGDRAAADAVQLDLPATGVCSTDVDAADGAEGAACCGTTAEPGPQPVGLTLPPRNANANANANA
AK018_029801020acdS_21-aminocyclopropane-1-carboxylate deaminaseGTGACGCTCGACGACTTCCCCCGCTACCCGCTCACCTTCGGCCCGAGCCCCCTGCAGCACCTGAAGCGGCTGTCCCAGCACCTCGGCGGCGCCCAGGTCTGGGCCAAGCGGGAGGACGTCAACAGCGGTCTCGCGTTCGGCGGCAACAAGGTCCGCAAGCTGGAGTACATCGTCCCGGACGTGCTCGCCTCGGGGGCGGACACGCTGGTGTCCATCGGCGGGTACCAGTCCAACCACACCCGCCAGGTCGCGGCCGTCGCCGCCCACCTCGGCCTGAAGGCCCGGCTGGTGCAGGAGAAGTGGGTCCCGTGGGACGACCCGACCAACGACAAGGTGGGCAACCTCCTGCTGTCCCGCATGATGGGGGCGGACTCCCGGCTGGACGACGCCGGGTTCGACATCGGCATCCGCGACTCCTGGAAGTCCGCGCTGCGCGAGGTCGAGGAGGCCGGCGGCACGCCCTACCCGATCCCGGCCGGCGCCTCCGAGCACCGACTCGGCGGCCTCGGCTTCGCGAGCTGGGCGTTCGAGGTCGCCCAGCAGGAAAAGGAGCAGGGCGTCTTCTTCGACACGATCGTGGTGTGCACCGTGACGGGGTCCACGCACGCGGGCATGATCGCCGGGTTCGCGGCCCTCGAGGAGCTCACCGGCGTGCGCCGCCGCGTGCTCGGGATCGACGCCTCGGCCACCCTCGACAAGACCCGCGACCAGGTCGGCCGGATCGCCCGGCACACCGCCGAGCTCATCGAGCTGGGCCGGGACCTGCGGGACGACGAGATCCAGGTCCTCGACGGCTGGGCCGGCGACCTCTACGGCATCCCCGTGGAGTCCACCGAGATCGCCATGCGGCTCGGGGCCGAGCTGGAGGCGATGATCACCGACCCCGTCTACGAGGGGAAGTCCCTCGCCGGGCTGATCGACCTCGTCGGCAGCGGCGAGATCCCGCGCGACTCCACGGTGCTCTACGCGCACCTGGGCGGGCAACCGGCGCTCAACGCCTACCACTCGCTCTGGTCGTAGMTLDDFPRYPLTFGPSPLQHLKRLSQHLGGAQVWAKREDVNSGLAFGGNKVRKLEYIVPDVLASGADTLVSIGGYQSNHTRQVAAVAAHLGLKARLVQEKWVPWDDPTNDKVGNLLLSRMMGADSRLDDAGFDIGIRDSWKSALREVEEAGGTPYPIPAGASEHRLGGLGFASWAFEVAQQEKEQGVFFDTIVVCTVTGSTHAGMIAGFAALEELTGVRRRVLGIDASATLDKTRDQVGRIARHTAELIELGRDLRDDEIQVLDGWAGDLYGIPVESTEIAMRLGAELEAMITDPVYEGKSLAGLIDLVGSGEIPRDSTVLYAHLGGQPALNAYHSLWSPGPT0002000_176DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002000-cuyA-K17950NANA
AK018_02981735hypothetical proteinATGAGCTTCGCGCGCCTCGACCCTCGCCCGCTCGACTCCGCGCGCCGCGCCGTGCTCGAACGCCGGGTCCGCTGGATCGTCGCGGCGACGATCGCCTACAACGTCGTCGAGGCGACGGTCGCGCTGACCGCCGGGCACGTGGCCTCGTCGGCGGCACTGGTCGGGTTCGGCCTCGACTCCCTCGTCGAGGTGCTGTCCGCCGCCGCGGTGGCCTGGCAGTTCGCCGCTCCCGACCCGCACCGGCGCGAACGGGTGGCGCTGCGCGTCATCGCGTTCTCGTTCTTCGGGCTCGCGACCTTCGTGACCGTCGACGCCGTGCGCACCCTGCTCGGGGCGGCCGAACCCGACCACTCGACGGTGGGGATCGTGCTCGCCGCCGTCAGTTTGGCGATCATGCCCCTGCTGTCCTGGTTCGAGCGGCGCACCGGCCGCGAGCTCGGCTCCGCCTCCGCCGTCGCCGACTCGAAGCAGACCCTGATCTGCACCTACCTCTCGGCCGTGCTCCTGGTGGGTCTCGTGCTCAACTCGGCGCTCGGCTGGACCTGGGCCGACCCGCTCGCGGCACTCGTCATCGCCGGCTTCGCGGTCCGCGAAGGACTCGAGGCATGGCGCGGGGACGCCTGCTGCACGCCGGTCGCAGCGATGGTCTCCGAGGGCACCGGGGCCGAGACCCCCGAGGGGCCGGCGGACGGCGCCTGCGACTGCGGGGACGACTGCTGCGGTCCGGAGCGCTGAMSFARLDPRPLDSARRAVLERRVRWIVAATIAYNVVEATVALTAGHVASSAALVGFGLDSLVEVLSAAAVAWQFAAPDPHRRERVALRVIAFSFFGLATFVTVDAVRTLLGAAEPDHSTVGIVLAAVSLAIMPLLSWFERRTGRELGSASAVADSKQTLICTYLSAVLLVGLVLNSALGWTWADPLAALVIAGFAVREGLEAWRGDACCTPVAAMVSEGTGAETPEGPADGACDCGDDCCGPERNANANANANA
AK018_02982987sphXCOG0226Protein SphXGTGCTCAAGAACCACAAGCGTGCGGCCGCGACGATCGGAGCGGTCGGACTGGCGCTCGTGCTCGGCGCGTGCAGCGGGTCTGAGACCGCGGGCGGCGAGTCCGACGACTCGATGACGGAGAACGGCGAGAGCATGGACATGTCCGGCTCGGTCGTCATCGACGGGTCCTCCACCGTGGCACCCAACACCGAGGTCGCTGCCGAGCTCTTCGCGGAGGACTATCCGGACGTGCGCGTCTCGGTCGGAGTCTCCGGTACCGGCGGTGGCTTCGAGAAGTTCTGCAACGGGGAGACGGACATCTCCGAGGCCTCGCGGCCCATCGCCGACGACGAGGCCCAGCGGTGCGCCGACGCCGACATCTCCTACGCCGAGCTGGGTATCGCGAACGACGGCCTGGCCGTCGCGGTCAACCCGGAGAACGACTGGGCGCAGTGCCTCACCATCGAAGAGGTCAGCTCGATGTGGACCCCGGAGAACCCGGTCGACTCGTGGGCGGACGTGCGGGACGGGTTCCCGGACGAACCGATCACCCTGTACGGCCCCGGCTCCGACTCGGGGACGTTCGACTTCTTCACCGAGGAGGTCAACGGTGAGAGCGGTGCGATCCGTGCCGACTACAACGACATCGGTGAGGACGACTTCGGCGCCGTGCAGGGGGTCGAGGGCTCGACCGGGGCCACGGCCTTCATCCCGCTGTCGTTCGTCGAGGAGGCCGGCGACGCCGTCCGTGCCGTCGAGATCGAGAACGAGGCCGGTGAATGCGTCGCGCCGTCGCTCGACACGGTCATGGACGCCTCCTACAACCCGCTCGGTCGACAGCTGTACATCTACCCGAGCGACACCGGGCTCGAGAAGCCCGAGGTCCAGACCTTCATCGAGTTCTACATCGAGAACCAGGCTCAGATCGCCGAGGAGGCGGGTTTCATCCCGCTGAACCCGGAGCAGGAGCAGGTCGCGACCGACGCCCTGGCCGAGCTGGTCGGCTGAMLKNHKRAAATIGAVGLALVLGACSGSETAGGESDDSMTENGESMDMSGSVVIDGSSTVAPNTEVAAELFAEDYPDVRVSVGVSGTGGGFEKFCNGETDISEASRPIADDEAQRCADADISYAELGIANDGLAVAVNPENDWAQCLTIEEVSSMWTPENPVDSWADVRDGFPDEPITLYGPGSDSGTFDFFTEEVNGESGAIRADYNDIGEDDFGAVQGVEGSTGATAFIPLSFVEEAGDAVRAVEIENEAGECVAPSLDTVMDASYNPLGRQLYIYPSDTGLEKPEVQTFIEFYIENQAQIAEEAGFIPLNPEQEQVATDALAELVGPGPT0002625_4292DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
AK018_02983972hypothetical proteinGTGGCCGCTACCTCCCTCCCGCCACCCGCTCCGCCGGCGGAGCCGTCGATCAGTCTCGAGTCGTCCAGCCGGCGCCTCGGAGAGAAGGTGGTCGCTGCCTGGCTCTTCGCTGCCGCTGCGTTGGCGGTGCTGATCACGATCGGCATCGTCCTGGCCATCATCGGCCCCACCATCGAGTTCTTCCGTGAGGTGCCGTTCTCCAGGTTCTTCTCCGCAGAACCGTGGGCGCCGAACTTCGTGCCCGACGGTTTCGGCGTCTACAACATCCTCGCCGGGACCGCCGCCATCGTCCTCTACTCGTGCGTGATCGCCCTGCCGGCCGGTCTCGGGGCGGCGATCTACCTCAACGAGTACGCCAGCCACCGCGCACGGCGGATCCTCAAGCCGGTGCTCGAGGTCCTGGAGGGCATCCCCACGGTCGTCTACGGGCTCTTCGCCCTGGCTTTCGTCGCCCCCGTCCTGCAGACGGTCTGGCCCGAGTTCCTCCCGGGCAAGCTGGGCGAGCCTCCGGGCTTCCAGTTCGTGCTCAGCGCCGGAGTGGTCCTGGGGATCATGATCATCCCGACGGTGGCCTCCGTCTCCCAGGACTCCATGAGCGCGATACCGCACGGGCTGCGGGAAGCGGCGTACGGGCTCGGCAGCTCGAAGATGCAGGTCGCCACCAAGGTCGTGGTTCCCGCGTCCTTCTCCGGGATCATCGCCTCGTTCGTCCTGGGCCTGTCCCGGGCCGTCGGCGAGACCATGGTCGTCCTCATGGCCGCCGGTGCGATCGCGAACCTGACGCTCTGGCCGAACGACCCGGTCCTGACCATGACGGCGTTCATCGGGCGGACCGCCACCGGGGACGTCTCGACCGGGACGATCACCTACTACACCGTCTTCGCCGTGGCAGCGCTCCTGTTCGTGATCACGCTCGTCGTCAACATGATCAGCATCGCTCTGGTGCGCAAGTTCCGGGAGGAGTACGAATGAMAATSLPPPAPPAEPSISLESSSRRLGEKVVAAWLFAAAALAVLITIGIVLAIIGPTIEFFREVPFSRFFSAEPWAPNFVPDGFGVYNILAGTAAIVLYSCVIALPAGLGAAIYLNEYASHRARRILKPVLEVLEGIPTVVYGLFALAFVAPVLQTVWPEFLPGKLGEPPGFQFVLSAGVVLGIMIIPTVASVSQDSMSAIPHGLREAAYGLGSSKMQVATKVVVPASFSGIIASFVLGLSRAVGETMVVLMAAGAIANLTLWPNDPVLTMTAFIGRTATGDVSTGTITYYTVFAVAALLFVITLVVNMISIALVRKFREEYEPGPT0002620_2334DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002620-pstC|phoW-K02037NANA
AK018_02984921pstACOG0581Phosphate transport system permease protein PstAATGAGGCAGTCGGGCCGGACACGGATCGCCGTCGAGGCGGCACGTGTCGACGTCGGGGCGTTGCAGCGCCGCGGCGTGGACGTCAAGGGGGAGCTGTTCCGGGCACTGCTGCTGCTGTGCATCGTGGTCGGCGTCGTGATGCTCGCGACGTTGCTCGTCTACGTCACCGTGGCGGGGTGGCCCCGGCTGGACCTCGACCTGTTCACGCAGATGCCGTCGACGCGAGACCCCGAGACGTCGGGTTTCCTCCCGGCGATCGTCGGGACGATCTACGTCATGTTCGGCGTCCTGATCACGACCGTCCCGATCGGGGTCAGCGCCGCGATCTATCTCGAGGAGTACGCCGACCCGAAGCGCTGGTACAACCGGGTCATCGAGATCAACATCCAGAACCTGGCCGCGGTGCCCTCCATCGTCTTCGGGATCCTGGGACTCGCCTTCGTGGTCCGCGGCCCCTGGGGCCTCGGGTTCGTCGCCTTCGCCGGGTCCCTCACGCTCATGATGATGGTCCTGCCCACGGTGATCATCGCCTCGCGCGAGGCGATCCGCGGTGTGCCGAGCACCCTGCGTCATGCCTCCTACGGCCTGGGCGCCACACGCTGGCAGACCGTGTCCCGCCAGGTCCTGCCGGTCGCGTTCCCCGGAGTGCTGACGGGGACGATCCTGGCGATGTCCCGCGCGATCGGGGAGACCGCTCCGCTGCTTCTCGTCGGAGCGACCACGTTCGTGCGATTCCTGCCCGAGGGACTGTTCGACGGGGCCTACTCCGTGATCACGGTGCAGATCTTCCAGTGGGCCATGCGGCCGCAGGACGAGTTCAGGACGCTAGCGGCGGCCGGCTCCCTGGTCCTCGTGGCGCTGCTGCTGCTCATGAACTCCGTGGCCATCTGGCTGCGCAACAGGTACAGCAATGCGTACTGAMRQSGRTRIAVEAARVDVGALQRRGVDVKGELFRALLLLCIVVGVVMLATLLVYVTVAGWPRLDLDLFTQMPSTRDPETSGFLPAIVGTIYVMFGVLITTVPIGVSAAIYLEEYADPKRWYNRVIEINIQNLAAVPSIVFGILGLAFVVRGPWGLGFVAFAGSLTLMMMVLPTVIIASREAIRGVPSTLRHASYGLGATRWQTVSRQVLPVAFPGVLTGTILAMSRAIGETAPLLLVGATTFVRFLPEGLFDGAYSVITVQIFQWAMRPQDEFRTLAAAGSLVLVALLLLMNSVAIWLRNRYSNAYPGPT0002610_2243DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038NANA
AK018_02985843pstB3COG1117Phosphate import ATP-binding protein PstB 3ATGACCGAGCAGTCCACCCGACTCGGGGCCCCAGCCGGGTCGGAGACGCACGCCGAGCCACCGGAACCCGTGTTCTCCACCCGGGACCTGAACGTCCACTACGGGGCGTTCCACGCGGTGACGGACGTGTCGATGGACTTCGGACGGAACGAGATCACCGCACTCATCGGGCCGTCCGGCTGCGGCAAGTCGACGGTGCTGCGGTGCCTGAACCGGATGAACGACCTCGTCCCGACCGCCCGGGTGTCAGGTGAGGTGCGGTACCACGGCATCGAGCTCTACGGCCCGAAGATCGATCCGATCGAGGTCCGTCGCCGCATCGGCATGGTCTTCCAGAAGGCGAACCCCTTCCCGAAGTCGATCTACGACAACATCGCCTACGGGCCCAAGGTGACGGGCATGCGAGTCGACAGCATGGACGACCTGGTCGAGCAGACGTTGCGGCGCGCCGCCTTGTGGGACGAGGTCAAGGACAAGCTCAAGCAGAACGCCTACGGACTCTCGGGCGGCCAGCAGCAGCGCCTCTGCATCGCGAGGGCCATCGCCACCAGCCCCGACGTCGTCCTCATGGACGAACCCTGCTCGGCGCTCGACCCGATCGCGACCCTGCGCATCGAGGAACTGATGGCCGAGCTGCGCGACAAATACACGATCGTGATCGTCACCCACAACATGCAGCAGGCAGCCCGCGTGTCGGACCGTACGGCCTTCTTCACGGTGCAGGTCAACGAGTCGACAGGCGACCGCACCGGCGGGCTCGTGGAGTACGCGCCGACCTCCACGATCTTCGAGAACCCGAAGGACGAGCGCACCGAGGGGTACATCAGCGGACGGTTCGGATGAMTEQSTRLGAPAGSETHAEPPEPVFSTRDLNVHYGAFHAVTDVSMDFGRNEITALIGPSGCGKSTVLRCLNRMNDLVPTARVSGEVRYHGIELYGPKIDPIEVRRRIGMVFQKANPFPKSIYDNIAYGPKVTGMRVDSMDDLVEQTLRRAALWDEVKDKLKQNAYGLSGGQQQRLCIARAIATSPDVVLMDEPCSALDPIATLRIEELMAELRDKYTIVIVTHNMQQAARVSDRTAFFTVQVNESTGDRTGGLVEYAPTSTIFENPKDERTEGYISGRFGPGPT0002615_244DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002615-pstB|phoT-K02036NANA
AK018_02986801hypothetical proteinGTGATCCGGGCGGTGCTCGTCGACGCGGAGCTCGACGGTGCGGAACGACTGACGGCGCGGCTGCGCGAGCGGGGCGTCGTCCTGGACGTCTACAGCGAGCCGTTGCGGGCCCTGGCTCATCTGGGTCGCGGTGGGTGGGACGCGGTCGTCATCGCTGCCCGGTCCGGCGTCGCGACGGCCACCCAGGTCACCTCGGTCGTCCGGGACGAGCTCAACCTTCCGGTGCTGCTCGCGCACGACGGGGCGGACGTCGACCTGATCGGCCCGCCCGTCCTGGCCGGCGCGCGCCCCTTGGTCGGCCTGCCGTACGACGCCGCAGAGCTCAGCCGTGTGCTGGGCGAGGTGTGCCCGTCGCCGTCGACGGTCGAACCGACGCGGATCGGGGTGCTGCGCCTGGATCCCGCCGGGTGCGACGCCCGTATCGACCGTCAGGGGCTCGATCTTTCCGCTCTCGAGTTCGAGGTGCTGCACGTTCTGGCCGAGAACGTCGACCACGTGGTGGAGCGCGGCGCGCTGATGAGCCGGTGGCCGGACTCCGCCGATCCTGACGACAAGCTCGTCTCGGTGGTCGGCAGGTTGCGCCGCAAGCTCGGGCGACTGGGGTGGCCCGGCGTGATCCACACCGTGCGCGGGCTCGGGTACCGCTTGGAGTCGCGGGCGCTCGAGTCGTCCGCGGTCGCTCATCCGTCGGCGTCGATCTCTTCGATCAGCTCGTCCACCCGGGACAGGATCTCGTCGATGATGCGTGCGACCTCGTCCGCGGACCGACCCCTGGGATCCGTGATCGGCCAGTCGCGATAAMIRAVLVDAELDGAERLTARLRERGVVLDVYSEPLRALAHLGRGGWDAVVIAARSGVATATQVTSVVRDELNLPVLLAHDGADVDLIGPPVLAGARPLVGLPYDAAELSRVLGEVCPSPSTVEPTRIGVLRLDPAGCDARIDRQGLDLSALEFEVLHVLAENVDHVVERGALMSRWPDSADPDDKLVSVVGRLRRKLGRLGWPGVIHTVRGLGYRLESRALESSAVAHPSASISSISSSTRDRISSMMRATSSADRPLGSVIGQSRNANANANANA
AK018_02987933arsC_2Arsenate reductaseATGACCACACTGACGCCGGCCGGCCGACGTCTCCAGCAGATCCGGGCGCTCGCCGACCCGCAGCGTGTCCAGCTCCTCTGGGCGGCCGTCACCGACCCCAGCGGTGAACCTACCCTGGAGGCGCTCGGAGCGCCGCGCGCCCCGGGTCTCAGCACGCACGTCGAGGCCTTGGTCGACGCCGGCCTGCTCGCCCGGCTCGGGCACGGCCCCGGGGCACGGTTCCGCCCTACGCCCGACGCACTGGCTCGGTTCGGAGGGTCGATGCTCGGTCTGCCGGGTCCTGCGGACACTCCGACCCGGGTCGACGACGAGCACGCCACCCGGCTCCGCCACATCGCCGACGACCTCGCCGAGCAGTTCTCCGACAGCTTCGGGCGCGAGACGGTCGACCGGTATGTCCTGGAGAGCTACGAGCTGCTCGCGTCGCGGGCACGGGTGCGTCAGCACCTCCCCGCCCTGACCGCCCGGTTCGCGGCCGAACGCCTCGGTGCACTGGTGGCAGGTGACGACACGACGCACCGTCCGATGGACGACCGGCACAGCGTGCTGTTCGTCTGCGTCCACAACTCCGGCCGCTCGCAGGTCGCCGCGGCCGCCCTGCGATACGCCGCCGGCGACCGCTTCCGTGTCCGGACCGCCGGCTCCACACCGGCCGGTTCCCTCGATGCACAGGTCCGCGGTGAGCTGGAACGACGCGGGCTCGGCGCGTTGACCGAGTTTCCGCGTCCGCTCACCGACGAGGTCGTCCTGGCGGCCGGGACCGTCGTCACCATGGGATGCGGCGAGGCCTGCCCCGTGCTGCCGGGACGTCGTTATCGCGACTGGCCGATCACGGATCCCAGGGGTCGGTCCGCGGACGAGGTCGCACGCATCATCGACGAGATCCTGTCCCGGGTGGACGAGCTGATCGAAGAGATCGACGCCGACGGATGAMTTLTPAGRRLQQIRALADPQRVQLLWAAVTDPSGEPTLEALGAPRAPGLSTHVEALVDAGLLARLGHGPGARFRPTPDALARFGGSMLGLPGPADTPTRVDDEHATRLRHIADDLAEQFSDSFGRETVDRYVLESYELLASRARVRQHLPALTARFAAERLGALVAGDDTTHRPMDDRHSVLFVCVHNSGRSQVAAAALRYAAGDRFRVRTAGSTPAGSLDAQVRGELERRGLGALTEFPRPLTDEVVLAAGTVVTMGCGEACPVLPGRRYRDWPITDPRGRSADEVARIIDEILSRVDELIEEIDADGPGPT0004705_2951DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325NANA
AK018_02988342hypothetical proteinATGTCCCCGGTGCCAGCAGAGCCGAGCCACGGTTCGCCCGCGCCGTCTCCCGGCCTCCGGGTCGCGCTCAGCCGTGACGTCGCCGAGTCCACGGCGGCCGTCCTGCGCGTGGTCTCCGACCCGACGCGTCTGCAGATACTCAGCCTCGTCCACGCGGCCTCGGACGGCAGGGCCCGGGTCGCCGACCTGACGGAAGCACTCGGTCTGCGCCAGCCCACCGTCTCCCACCATGTCAAGGTGCTCGCCGAGGCGGGCATCCTGACCAGGGAGCCGTCCGGGCGCGAGGTCTGGTACGCCGTCGAACCGACCCGGATCGCCTCCATCGCCGACCTGCTGCGATGAMSPVPAEPSHGSPAPSPGLRVALSRDVAESTAAVLRVVSDPTRLQILSLVHAASDGRARVADLTEALGLRQPTVSHHVKVLAEAGILTREPSGREVWYAVEPTRIASIADLLRPGPT0004735_1236DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
AK018_02989903hypothetical proteinGTGCCGGGACGTGACGTCGTGGACGCCCACCACCACCTCTGGGTGCGCTCGCGGACGCCGCAGGACTGGATCGACCCGCTGACCATGGCAGCGATCGACGCCGACTTCGAGCCCGCCGACCTGCCCGCCGCTCGGCACGATGTCGCCGCTACCGTCGTCGTCCAGTCCGCGAGCAGGTGGCAGGAGTCGGTCGACCTCCTGCGGTGCTGCGTCACCCCCGATGGTGCCGCCGCCGGGCTGGCGGGAGCGGTGGTCTGGGCCGACCTGCACGCAGCGGACCTCTCCGATCGACTGAGTGCACTGCACGAGGGCCCCGGGGGGAGCCACCTCGTCGGTGTGCGGACGATGGTCCAGGCCGAACCCGACCCCGGCTACCTCGACCGGGGAGATGTCCGGCGGGGCATCGCCGCCGTCGGCTCCGTGGGCCTGCCCTTCGATCTGGTGCTCCATGACCAGCAGATCCGGGCCGCGGCCCGCCTCGCCGCGGCGCTGCCCGAGGTGACCTTCGTGCTCGACCACCTCGGCAAGCCCCGACTCGATCGCCATGCCGAGGGCACCGGGGACGAGCTGATCGCCTGGAAGGCCGCCCTCTCCGACCTTGCCGCGTGCCCCAACGTGGTCGCCAAGCTGTCGGGCCTCGTGACCGAGGCGCACTGGGACACCTGGTCGATCGACGATCTGCGCCCCGCTGTCGACCACGCCCTGGCCGCCTTCGGCCCCGACCGCCTGATGTTCGGCTCCGACTGGCCGGTCTGCCTCCTGGCCAGCGACTACGGCCGTTGGATCGATACCGTTCGAGAGCTCTTGGCGCCCCTGTCCGACACCGAGCAGGACGCGGTGTGGGCTCGGACGGCCCGTCGCGTCTACTCCCTGCCGTCCCCCGCGAAGGAGACCTCGCCGTGAMPGRDVVDAHHHLWVRSRTPQDWIDPLTMAAIDADFEPADLPAARHDVAATVVVQSASRWQESVDLLRCCVTPDGAAAGLAGAVVWADLHAADLSDRLSALHEGPGGSHLVGVRTMVQAEPDPGYLDRGDVRRGIAAVGSVGLPFDLVLHDQQIRAAARLAAALPEVTFVLDHLGKPRLDRHAEGTGDELIAWKAALSDLAACPNVVAKLSGLVTEAHWDTWSIDDLRPAVDHALAAFGPDRLMFGSDWPVCLLASDYGRWIDTVRELLAPLSDTEQDAVWARTARRVYSLPSPAKETSPNANANANANA
AK018_02990777bacCDihydroanticapsin 7-dehydrogenaseGTGACCACCAGTACATCAGCCCGCGAGCTCGACGGGGTGCGCGCCGTCGTCACGGGCGGCGCCTCCGGTATCGGCGCCGCGGTCGTGGCGGCCATGCTCGCGCGTGGCGCACGCGTCGCGTCCCTCGACCGGACCGCCGACGGCGTCCCCGAGGGTGCGCACGCCGAGATCGCCGACGTCGTCGACGACGCCGCGGTCCGGCGCGCGGTCGACGGAGCGGCCGCCGCCCTCGGCGGAATCGACGTCGTCGTCAACAACGCCGGCATCGGTGCTCAGGGCACGGTCGCCGACAACGACGACGCCGAGTGGCTCAGGGTCCTCGACGTCAACGTCCTCGGCATCGTCCGGGTCACCCGTGCCGCGCTCCCGTACCTGCGGCACTCCGACTGCGGCGCCGTCGTCAACACCTGCTCCATCGCGGCGTGGACGGGACTTCCTGCCCGTGCGCTCTACTCCGCCTCCAAGGGCGCCGTGCAGTCCCTCACGCTGGCGATGGCGGCCGACCACGTGCGCGAGGGTATCCGCGTCAACTGCGTCAACCCCGGCACGGTGGACACGCCGTGGATCGGACGGCTGCTCGACCAGGCCGACGACCCGGCCGCGGAGCGCGCCGCGCTCGAGGCGCGCCAGCCCACCGGTCGCCTCGTCAGCCCCGAGGCCGTGGCCCACGCCGTGTGCTACCTCGCCAGCCCGCTCGCCGCGGCGACCACGGGTGAAGCGCTGGCCGTCGACGGCGGGATGCACGGCCTGCGCGTCCGTCCACCGAGCAGCTCATGAMTTSTSARELDGVRAVVTGGASGIGAAVVAAMLARGARVASLDRTADGVPEGAHAEIADVVDDAAVRRAVDGAAAALGGIDVVVNNAGIGAQGTVADNDDAEWLRVLDVNVLGIVRVTRAALPYLRHSDCGAVVNTCSIAAWTGLPARALYSASKGAVQSLTLAMAADHVREGIRVNCVNPGTVDTPWIGRLLDQADDPAAERAALEARQPTGRLVSPEAVAHAVCYLASPLAAATTGEALAVDGGMHGLRVRPPSSSPGPT0008190_497DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008190-budC-K18009NANA
AK018_029911020fdhD-threo-aldose 1-dehydrogenaseATGCCCGAGACCCCACCGACCGCCCTGCCGGCGCGCCAGGTCCGTGACACCCCCGTCCACCTGACGTCGCTGGGCTACGGGGCGGCGCAGGCCGGCAACCTCTACCGCACGAGCACCGACACCGAGACCGCCGCGGCGTTCGACCTCGCCTGGGACCTCGGCGTCCGGTACTTCGACACCGCCCCGCACTACGGCCTCGGTCTGTCCGAGTGCCGCCTCGGCGACGCGCTCCGGGACCGCCCTCGCGAGGAGCTCGTCGTGTCCACCAAGGTCGGACGGCTTCTCGAACCGTCTCCGGAGACGGCGCACCTGCGCGACACCGAGGGGTTCGACGTCCCCGCCGGCACCCGGCGGGTGTGGGACTTCTCTCGCGACGGCGTGCTGCGCTCACTCGAGGCCAGCCTGGAACGCACCGGACTGGACCGCCTCGACGTCGTCTACCTGCACGACCCGGACGAGCACTGGGAGGCCGCCTCCCGCGAGGCCGTGCCCGCGCTCGTCGAACTGCGCGACCAGGGCGTGATCGGGGCCATCGGCGCGGGGATGAACCAGTCGGCCATGCTGGCCCGGTTCGTCCGCGAGACCGACGTCGACGTCGTCATGTGCGCCGGACGGTTCACCCTCCTGGAGCAGCCCGCGCTCGGCGACCTGCTGCCGGCCGCCGCGGAGCGCGACGTCGCCGTCGTCGTCGCCGGCGTCTACAACTCGGGGCTGCTCGCCCGCGAAACGCCTCCCGACGACGCCACCTACAACTACACCCAGGCGCCCGCCGAGCTCATCGAGCGCACCCGGCGGATCGCCGCCGTCTGCGGCGAGCACGGCGTCACCCTGCCCGAGGCGGCGCTCTCCTACGTCCGGACGCACCCGTCCGTGGCCAGCACCGTCATCGGGGTGCGCAACCCCGACCAGGTGCGCCAGTCCGTCGAGCGCCATGCCGCCACCGTTCCCGACGAGCTGTGGACGGCGCTCGTCGAGAAGGGGTTGCTGGCCGAGGACGCCGCCCCGGACGCCCTGCGCTGAMPETPPTALPARQVRDTPVHLTSLGYGAAQAGNLYRTSTDTETAAAFDLAWDLGVRYFDTAPHYGLGLSECRLGDALRDRPREELVVSTKVGRLLEPSPETAHLRDTEGFDVPAGTRRVWDFSRDGVLRSLEASLERTGLDRLDVVYLHDPDEHWEAASREAVPALVELRDQGVIGAIGAGMNQSAMLARFVRETDVDVVMCAGRFTLLEQPALGDLLPAAAERDVAVVVAGVYNSGLLARETPPDDATYNYTQAPAELIERTRRIAAVCGEHGVTLPEAALSYVRTHPSVASTVIGVRNPDQVRQSVERHAATVPDELWTALVEKGLLAEDAAPDALRPGPT0017915_141DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017915-pld-K00064NANA
AK018_02992849Ureidoglycolate lyaseATGCACCTGCTCCGCCTGGGCCCTGCCGGCCAGGAGATCCCCGCCGTCGAGGCCGACGGCACCATCTACGACCTGCGAGAGGTCACCGCCGACATCGACGGGGACTTCCTCGGCGGCGACGGCGTGGCCCGCGTGCGCGCCGCGCTGGAGGACGGCGCCCTGCCTGTGCTCGACGGCGCCGCCGACCTGCGTCGCGGTGCGCCGGTGACCCGGCCGACCGCCGTGATCTGCATTGGGCAGAACTACGCGGCGCACGCCGCCGAGTCCGGCGCCCAGCCGCCGTCGGCACCGATCGTGTTCTTCAAGCACCCCAACACCGTTGTCGGCCCCGACGACACGGTCCCGGTGCCGCCCGGCGCCGAGAAGCTCGACTACGAGGTCGAGCTCGGTGTCGTCATCGGGCGACGTGCGAGCCGCCTGGCCTCGACGCAGGAGGCACTGGGGCACGTGGCCGGCTACACCGTGGTCGACGACGTCAGCGAGCGCACGTGGCAGATCGAGGACTCGCTCGGCCAGTGGTCCAAGGGCAAGTGCGGGCCGGCGTTCGCCCCGACGGGCCCGGCCCTGGTGCCGGCCGACGAGCTCGACGGCTCGGGTCTGTCGCTGCGGTCCTGGGTCAACGGTGAGGCCCGCCAGGACTCGACGACGGCCGACATGATCTTCGACGTGGCCACTATCGTCCAGCACCTGTCGCAGTACATGGATCTCGAGCCGGGCGACCTGATCTGCACCGGCACGCCGGAGGGCGTCGCCTTCTCCGGGCGGTTCCCGTTCCTGCGCGACGGGGACGTCGTGGAGGTCGAGATCGAGGGCATCGGGCGCCAGCGGCACGTGGTTCGCGACGCCTGAMHLLRLGPAGQEIPAVEADGTIYDLREVTADIDGDFLGGDGVARVRAALEDGALPVLDGAADLRRGAPVTRPTAVICIGQNYAAHAAESGAQPPSAPIVFFKHPNTVVGPDDTVPVPPGAEKLDYEVELGVVIGRRASRLASTQEALGHVAGYTVVDDVSERTWQIEDSLGQWSKGKCGPAFAPTGPALVPADELDGSGLSLRSWVNGEARQDSTTADMIFDVATIVQHLSQYMDLEPGDLICTGTPEGVAFSGRFPFLRDGDVVEVEIEGIGRQRHVVRDAPGPT0001745_132DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336NANA
AK018_02993702lutR_1COG2186HTH-type transcriptional regulator LutRATGTCACGCACCGACCAGGTCGTCGACGGCATCCGACGGATGATCCTCGACGGCGAGCTCGGCCCCGGTGACCGCCTCCCCGTGGAGAAGGAGCTCGCCGAGACCCTCGACGTCTCGCGCGGGTCCCTGCGCGAGGGCGTGCGCGCCCTGTCGGTCCTCGGCATCGTCGACACCCGCCAGGGGGACGGCACCTACGTCACCAGCCTGGATCCGGCCCGTCTGCTCTCCCCGATGGGGTTCGTCGTGGACCTCCAGGGCGACGGCAGCGCCCGCCCCTTCCACGGCGTGCGCCGGATCCTCGAGACGGAGGCCGCGGCGCTGGCCGCCACCCGCATCACCCCCGAGGCGCTGGCCGAGGCCCGCGACGTCCTCGACACGGTCGACGACATCCTGCGCCAGCCCGACGTCGACCACGAGGGTTTCATCGAGGCCGACATCGCGTTCCACCGGATCATCGCCGCCCACACGGGCAACCCCGTGATGGCCGCCCTCATCGAGTCCCTCGCGACCCGCACGGTGCGCGAACGACTCTGGCGCGGTCTGCACGAGGAAGGCGCCGAGGAACGCACCCACGGCGAGCACCGTGCCATCTGGCGCGCGCTGTCCGCCGGTGACCCGGAGAGCGCACGGATCCGCATGGCCAACCATCTGCTCGGCGTGCAGGAGGCCCTCCCGGCGATCCCCGCCGACGACGGCGCCTGAMSRTDQVVDGIRRMILDGELGPGDRLPVEKELAETLDVSRGSLREGVRALSVLGIVDTRQGDGTYVTSLDPARLLSPMGFVVDLQGDGSARPFHGVRRILETEAAALAATRITPEALAEARDVLDTVDDILRQPDVDHEGFIEADIAFHRIIAAHTGNPVMAALIESLATRTVRERLWRGLHEEGAEERTHGEHRAIWRALSAGDPESARIRMANHLLGVQEALPAIPADDGANANANANANA
AK018_029941335COG4948L-fuconate dehydrataseATGGCGAGGATCACCAGCGTCGAGATCGAGGACGTCCGCTTCCCGACGTCGCTCGAGAAGGACGGCTCGGACGCGATGAACAAGGACGCGGACTACTCCGCGGCCTACGTCGTCCTGCGCACCGACGACATCGACGCCCACGACGAGCCGCTGGCCGGGCACGGCCTGACGTTCACCATCGGCCGCGGCAACGACATCGTGGCCGAGGCCGCCCGCCAGCAGGCGTCCACCCTCGTGGGCCGCGACGTCGACGAGATCGCCGGCGACATGGGCGGCCTCTACCGCGAGCTGACCTCCGACTCCCAGATGCGCTGGCTCGGCCCCGAGAAGGGCGTCGTCCACCTGTCGCTCGCCGCCGTCCTCAACGCCGCCTGGGACCTCGTCGCACGCCGTGCCGACAAGCCGCTGTGGCGCCTGCTCGCCGACATGACGCCCACCGAGCTCGTCGCCGTCGCCGACCTGCGCTACCTGTCCGACGCCCTCACCACCGACGAGGCCGTCGCCCTGCTCGAGGCCAGGGCGGACACCAAGGCCGAGCGCATCGCCCACCTGGAACGCACCGGCTACCCGGTCTACACGACGTCGGCCGGCTGGCTCGGCTACGGCGACGACAAGCTGGAGCGGCTCTGCCAGGAGGCCGTCGACGAGGGCTACGGGCACATCAAGCTCAAGGTCGGCGCCGACCTCGACGACGACGTGCGGCGCCTGTCCATCGCGCGGCGCGTCATCGGCCCGGACCGCAAGCTCATGATCGACGCCAACCAGGTGTGGGACGTCCCCCAGGCCGTCGAGTGGATGCAGGCCCTCGCGCCGTTCGAGCCGCTGTGGATCGAGGAGCCCACCTCCCCCGACGACGTGCTCGGGCACGCCGAGATCCGCCGCTCCGTGGCCCCGGTCGGCGTCGCCACCGGCGAGCACTGCCACAACCGGGTCATGTTCAAGCAGTTCCTGCAGGCCGACGCCATCGACTTCTGCCAGCTCGACACCGGCCGCCTCGCCAGCATCAACGAGATCGTCGCCGTGCTGCTCCTCGCGGCGAAGTTCGGCGTCCCGGTCTGCCCCCACGCCGGCGGGGTCGGCCTCTGCGAGATGGTCCAGCACGTCTCCGTGCTCGACTTCGTCGCCGTCGCCGGCGACCTCGACGGACGCGTGACCGAGTTCGTCGACCACCTGCACGAGCACTTCACCGACCCCTGCGTGGTCACCGACAACGGTGCCGGCAGCGGGTACGTGCTGCCCTCGCGCCCCGGCTACTCCACCCAGATGCACGAGGCCTCGGTGGCGCGCTTCCGCTACCCCGACGGGACCTACTGGGCCGACGCCGCCCCCCGGTGAMARITSVEIEDVRFPTSLEKDGSDAMNKDADYSAAYVVLRTDDIDAHDEPLAGHGLTFTIGRGNDIVAEAARQQASTLVGRDVDEIAGDMGGLYRELTSDSQMRWLGPEKGVVHLSLAAVLNAAWDLVARRADKPLWRLLADMTPTELVAVADLRYLSDALTTDEAVALLEARADTKAERIAHLERTGYPVYTTSAGWLGYGDDKLERLCQEAVDEGYGHIKLKVGADLDDDVRRLSIARRVIGPDRKLMIDANQVWDVPQAVEWMQALAPFEPLWIEEPTSPDDVLGHAEIRRSVAPVGVATGEHCHNRVMFKQFLQADAIDFCQLDTGRLASINEIVAVLLLAAKFGVPVCPHAGGVGLCEMVQHVSVLDFVAVAGDLDGRVTEFVDHLHEHFTDPCVVTDNGAGSGYVLPSRPGYSTQMHEASVARFRYPDGTYWADAAPRPGPT0017495_63DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017495-fucD-K18334NANA
AK018_02995699hypothetical proteinATGACCCGATCAGCGCTGATCGTCCGGGGCGGTTGGGAGGGCCACCACCCCGTGGCGACCACGGAGCTGTTCCGGCCGTTCCTGGCGGAGCAGAGGTTCGCGGTAGAGGTCCACGACTCGCCGGAGGTCTACGCGGACGCCGACCGGATGGCACGGACCGACCTGGTCGTCCAGAGCGTCACCATGTCGGAGATCTCCGCCGACGCCGTGGCGGGGCTGCGTGCCGCCGTCGCGGCCGGCACCGGGCTGGCCGGGTGGCACGGCGGCATCGCGGACTCGTTCCGGGCCAGCAACGACTACCTGCAGCTCGTCGGAGGCCAGTTCGCGGCGCACCCGGCCAGACCGGTGGGCGAACACGTCGGCACGGAGGCTGACAACTTCCTCGAGCACTCCGTGGAGATCACGGAGCTCGGCCGGTCCCACGAGATCACCGACGGCCTCGCCGACTTCTCGCTGCACACCGAGCAGTACTGGGTGCTGCACGACGACCTCATCGACGTGCTCGCCACGACCACGCACCCGGTCCGAGCGGACCAGCCGTGGCAGCGTCCCGTCACCTCGCCCGCGGTCTGGACCCGGTCCTGGGGCCAGGGCAGGGTCTTCGCGGCAACACCGGGCCACGACGTCGAGACTCTGCAGGTCCCTACGCTCCGGACGATCGTCGAGAGGGGGATGCTGTGGGCAACCCGCACCGCGTAGMTRSALIVRGGWEGHHPVATTELFRPFLAEQRFAVEVHDSPEVYADADRMARTDLVVQSVTMSEISADAVAGLRAAVAAGTGLAGWHGGIADSFRASNDYLQLVGGQFAAHPARPVGEHVGTEADNFLEHSVEITELGRSHEITDGLADFSLHTEQYWVLHDDLIDVLATTTHPVRADQPWQRPVTSPAVWTRSWGQGRVFAATPGHDVETLQVPTLRTIVERGMLWATRTANANANANANA
AK018_029961089iolG_2Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseGTGGGCAACCCGCACCGCGTAGGCATCGTCGGTCTCGGCGTGATCTCCGGGGCCTACCTCGAGACGCTGCGCGCGGCGTCGAACCTGCGGATCGTCGCGGTCGCGGACCTCGACCGGGATCGCGCCGCCGAGGCCGCGGCGGCCCTGCCAGGGTGCCGTGCCCTCGCTCCGGACGACCTCCTCGACGCCGACGACGTCGACACCGTGCTCAACCTGACCGTCCCTTCGGCGCACGCCGACGTGGCCCTGAGGGCGATCGCCGGTGGCAAGCGCGTCTACGGCGAGAAGCCGCTGGCGGCGGACCTGTCGCAGGCGCGGCGCGTCATGGATGCGGCCGGCGCCGCGGGCCTCTCGGTGGGGTGTGCTCCCGACACCGTGCTCGGCACGGGCGTGCAGACCGCCCGGGCGGTGGTCGACGGCGGAGAGATCGGCACGCCGGTCTCGGCCGCGGCGATGTGGGTCTCGCCGGGGCACGAGGGGTGGCATCCCCAGCCGGACTTCTACTACCAGCCGGGTGGAGGGCCCCTGTTCGACATGGGGCCGTACTACCTCACCTCGCTGGTGCAGCTGCTGGGGCCGGTGACCGCGGTGTCCGCAGCGTCGTCGCGTTCCCGGGACACGCGCGAGATCGGCACGGGGCCGCGTGCCGGGGACCGTGTGGGGGTGGAGGTCGACACGCATCTGGCCGGGATCCTGCAGCACGCGTCCGGAGCGATCTCGACCCTGACCGTCAGCTTCGACGGGGTGGCGACCACGGCGGCGCCGATCGAGGTGCAGGGGACGGGCGGCGCGTTGTCGGTGCCCGACCCGAACGGCTTTGCGGGCGAGGTGGTCCTGCGGCCGCTCGGCGGCGAGCCACGCGTCGTCGAGCCGCGTGCGGGCTACGTGGACGCCTCCCGGGGTGCGGGGCTGCTCGATTTCGTCGCGGGGTACGAGCGCGCCGGCGGCGCGCTGGCGCTGCACGTGCTCGAGGTGATGAGCGCGTTGCAGGGCGCGGCGGGGTCCGGTGACCGGGTGCGTCCGTCGACGACGGCCGAACGTCCGGCACTGGTGCCGCTGACGCCGGCGCAGGTGTGGTCGGCCTGGTAGMGNPHRVGIVGLGVISGAYLETLRAASNLRIVAVADLDRDRAAEAAAALPGCRALAPDDLLDADDVDTVLNLTVPSAHADVALRAIAGGKRVYGEKPLAADLSQARRVMDAAGAAGLSVGCAPDTVLGTGVQTARAVVDGGEIGTPVSAAAMWVSPGHEGWHPQPDFYYQPGGGPLFDMGPYYLTSLVQLLGPVTAVSAASSRSRDTREIGTGPRAGDRVGVEVDTHLAGILQHASGAISTLTVSFDGVATTAAPIEVQGTGGALSVPDPNGFAGEVVLRPLGGEPRVVEPRAGYVDASRGAGLLDFVAGYERAGGALALHVLEVMSALQGAAGSGDRVRPSTTAERPALVPLTPAQVWSAWNANANANANA
AK018_029974047hypothetical proteinATGGCCGTCGGGCTCGCGGTGGCCGTGATGCCGCCGGCGGCCGCCGAGGAGCCCGAGAGCGAGACCACCGCGCTCGCGCCGACCGCCGACCTCTTCGTTCAGGGAGGTGACGCACAGATCACCGAGTCCCTGCTCGCGGGGCGTGGGCGCGAGACGCTGATGCGCTTCGACCTGGCCGAGATCTCCGACGACGTCGTGGTCACGGCCGCGACACTCGACCTGACCAAGTACCACGGTTCCGGCAACACGATCGTCCTCAGTGACGTGGTCGGCGCCTGGGACGAGACGGTCTCGCGGGACTCGATGCCTGAGCTCGGCGCCGAGATCGGGCGTGGCGACGTGCCGAGCGGCCAGGCCGAGGTCTCGTTCGACCTGGCCGATCCCGTCGCCGAGGCGGTCGCCGCCGGGCAGGACGACTTCGACGTGCATCTCGATCAGCTGGGCGAGTGGGCCTCCGAGTTCCGGTCCACGCGGTACGGCGTCGAGGACGAGCGTCCGATGCTGTCGGTCACGACGATGACCACCGACACTCTCGTCGAGGCGGATGCCGCGGACCTCGCGTCGTTGGTGAACAACCCGGTTTACACCGATGTCGAGCTGCCCGGCACGGGGGAGCGCGGCTCGCAGATCACCTGGACCAGCAGTGCCCCCGACATCGTGGCCGCTGACGGCACCGTCACCCGCCCGGCGGCCGCGGAGGACGCCACCGCGGTCCTGACCGCCGAGGTGACCTACGGCGACTCACGGGTCTCCGTGGACGTCGAGGTCGTCGTGCGCGGGGTGTACGACGTCGAACCCCAGCACCCGCAGGTCCTGGCCGGCCAGGAGACGGACCAGCGGGTCGAGGACCTGGTGGCCAGCGAGGGCTGGGCCGCCGAGTCGTTCGACGCCATCGTCGAGAAGATCGAGCCTTACGCCGACCGACACCAGGACGACCCCGAGTGGATCCTCTCGCGCATGGCGATGTTCTGGGAGGAGGGCGAGCGGTACACGCAGGTCTACATCAAGGACCAGCGTTTCGACTACGCCGAGGGCAATGCCCCGGTGCCGACGCTGCGCTTCCCGGCGATGCGCATCTGGAACGACAACAAGAACGCGCCGCTGGAGGAACGCCTGCCGTACAGCGAGGACGGCTCGATGGTCAACCAGGACGGCGAGGTCGTCCCCTACGAGGAGACCGGCCACATGATTCGCCTCAACAACGAGGAGATCCTGTCCCTCGCCGAGGAGGCCGCGTTCCTCTACCACCACACCGGTGAGCAGAAGTACGCGAAGTTCGGCGCCGACATCTACTGGCAGTGGCTCATGGGTGTGTACTACATGAACCCTGCGCTCGACCCGGGAGAGTCCATGGGAGGACCGGGCGGCTACGCGCCGGGCGGCAACATGGGCTACTACGAATACGAGGTCATCCACGACCCGATGGGCGGCCAGGCGGCGATCGTCTACGACTACCTGTTCGACTACCTGCAGGAGAACCCGGACCCGCACCTGGACGTCATCGGTGAGGACATGGTCGACGTGTCCAGCGAGGTGTTCAAGCGGTTCATCGACATCGGGATGGTCCGTGGCGCCCAGTCCAGCAACTGGAACGTCAACGGCTGGAAGTGCATCCTCGACGCGATCCTCGCGCTCGAGCCGAACGACTACTACGCCGACGGCAAGGGCCGGGAGCACTACCTGCATTACTACACGACCGAGACCACGCAGTACCACAACGCGTTGCCCGAGATCTTGCAGGAGTACGACCAGACCACCGGCCTGTGGCCCGAGTCCTCCGGCTACGCCACCGGCATGGTCGGGGCGCTGCTCGACTTCGCGGCGCCCGTCTACAACAACGGCGTCGACACCATCGGGGAGAACCCGATGCTCGAGAAGGCGGCGCTGGCCGTCGGCGCCTGGCTGGACGACCGCGGCAACCTGGTCGTCTTCGGTGACGGGCGGGGCGGGCAGCCGAGCTACTCGCCGTTCGAGCGGCTGAACTGGTACTACCAGGAGGTCGGCGACGCCGAGGGCGCGGCCGCCGCGTCGACGGTGATCCGCAACGCCATCGAGGCGGGGGTGTACGAGCGCTCGTCCATGTCCTACCTCGACCTGCAGTACTCGGCCCCGCTCGTCGAGTCCACGGGTGCGGGGACGGACGTGTCGCAGATGGCGTACTCGCCGCACCATCGCCACCTCGTGCAGCGCAACGGCCAGGGCGCCGAGAACGCCCTGATGGCGACGTTGTACGGCGGCTGGAGCGGCAACTACCACCTGACGGCCAACGGTCTGGCCGCGCAGATCTACGGCAAGGGCTGGGCCACCGGACCGCAGGCCAAGTCGTACGAGTCCTACTGGTCGGACGACATCACGTACTCGCGTCACGAGGCGGGTGCCAACACGGTCGTCCCCGGCTACAACCACGGGGAGATCACCGTCAACGCCCTCGACCCCGAGGTGCCGGACGACGCGCTGACCAACGTGGACACGGTCTCGCCGTGGAACTCGTTCAGCGACGTCTCGGCGAACGACCACCGCCGGCAGCTCGCGATCGTGCGGACCTCGCCGACGACCGGCTACTACGTCGACGTGTTCCGTGCGGACCAGGAGGAGTCCGACTACCTCTGGCACAGCCTCGGCGACCGCGTCGAGCTGACCGGGGCGGAGGGCGAGCCGCTCGAGCTCGCCGCGGCGGACGACCTCGGGTCCCCGGTGCCGACGTACCGGTTCTTCAGCGATCCGGCCAAGGTCGCCCACGACGAGGACCTCCGTGCTCGGTGGACCGTCGACGACGGCGTGTCCGACGGCGTGGACCTGGTCACGGACATGTGGATGGCCGGAGGTGAGGGCCGCGAGGTCTACACCGTGACGGCGCCGCCGACCACGGCCCGCGACAACATCACGCCGGGCAACGTCAACGCGCACGACGACCCGACCGAGGCCGTGGTCGTGCGGCAGAACGGGACGAACGCCGCCGAGACGCCGTTCGCGGCGGTGTTCGAGTCGACCGGTTCCGACGAGCTCAGCGTCACCGACGTGGACGAGTTCGGCGACGCGGCCGGCTTCACCGGTCTGGAGGTCCTCAGCGCGGACCTGGACGGGCGCTCCGACCGCGTGTTCACCAGCACCGGTGGCGGTGCGGTCGAGCCGGTCGAGGGTGCCGAGTTCGCCGGCCTGTACGGCGTGCACTCCACCGACGACGACGGCTTCGTGAGCCTGTACCTCGGGTCGGGCACGCAGCTGGTCGACGGCGGCACGGGTGTCACGCTCGACGAGTCCGGCGCCGCGTGGCTGGACACGACCGAGGGCGGGTACACCTACACCGCGACGCAGCCGGGCACGCTCCGGCTGCCGCTGGGGACGCCGGACGGCGAGGCGACCGTCGAGATCGACGCCGGCGACGGTTGGACGTCCGTCGACTCGGCGGTCGACGGGGACAGCCTGCTGGTCGACGTGCCGGCCGGTGAGGAGCTGCAGCTCCGCGTCACCGCGCCGGAGCCGCAGGACTCCGAGCGTCCGGTGGTCGAGCTGGTGTCGCCGTCGTCGGCGGGTCCGTTCTCGCAGGTGTCGGTGCAGGTGGATGCCACCGATGACACCGGGCTGAAGCGGATCGTGGCGAACATCTACCGGGACGGCGAGCTCGTCAAGAGCACGCAGTCGGCGGTGGCCGACGGCGCGACCTCGGGATCGCACTCCGCGCAGGTGTCGCTGCCGGACGGGGACTACTCGATGAAGTACAACGCCGAGGACCTGGCGGGCAACATCGCTCGCACGGGTCGGGTGGAGTTCTCGATCGACGGCACGGCGCCGCGGGCGACGGTCAAGTCCGGCGAACGGTTCACGGTCGGTGCCGGTCCGTACGACAAGGTGTCGTTCAAGCTGTTCGACGCCGGCAAGGTCGATCGGGTCGAGATCAACGGTGTGGTCAAGAACCTGTCGGACAACAAGTGGTCGGACGTGAACTTCCTGACGCCGGGCACGTTCGGTGCCGTGCAGGGGGCCAACGTGCTGGAGGTGTTCGACGTGGCGGGCAACTCTGCCACGGTGGAGTTCACCTTGAACTGAMAVGLAVAVMPPAAAEEPESETTALAPTADLFVQGGDAQITESLLAGRGRETLMRFDLAEISDDVVVTAATLDLTKYHGSGNTIVLSDVVGAWDETVSRDSMPELGAEIGRGDVPSGQAEVSFDLADPVAEAVAAGQDDFDVHLDQLGEWASEFRSTRYGVEDERPMLSVTTMTTDTLVEADAADLASLVNNPVYTDVELPGTGERGSQITWTSSAPDIVAADGTVTRPAAAEDATAVLTAEVTYGDSRVSVDVEVVVRGVYDVEPQHPQVLAGQETDQRVEDLVASEGWAAESFDAIVEKIEPYADRHQDDPEWILSRMAMFWEEGERYTQVYIKDQRFDYAEGNAPVPTLRFPAMRIWNDNKNAPLEERLPYSEDGSMVNQDGEVVPYEETGHMIRLNNEEILSLAEEAAFLYHHTGEQKYAKFGADIYWQWLMGVYYMNPALDPGESMGGPGGYAPGGNMGYYEYEVIHDPMGGQAAIVYDYLFDYLQENPDPHLDVIGEDMVDVSSEVFKRFIDIGMVRGAQSSNWNVNGWKCILDAILALEPNDYYADGKGREHYLHYYTTETTQYHNALPEILQEYDQTTGLWPESSGYATGMVGALLDFAAPVYNNGVDTIGENPMLEKAALAVGAWLDDRGNLVVFGDGRGGQPSYSPFERLNWYYQEVGDAEGAAAASTVIRNAIEAGVYERSSMSYLDLQYSAPLVESTGAGTDVSQMAYSPHHRHLVQRNGQGAENALMATLYGGWSGNYHLTANGLAAQIYGKGWATGPQAKSYESYWSDDITYSRHEAGANTVVPGYNHGEITVNALDPEVPDDALTNVDTVSPWNSFSDVSANDHRRQLAIVRTSPTTGYYVDVFRADQEESDYLWHSLGDRVELTGAEGEPLELAAADDLGSPVPTYRFFSDPAKVAHDEDLRARWTVDDGVSDGVDLVTDMWMAGGEGREVYTVTAPPTTARDNITPGNVNAHDDPTEAVVVRQNGTNAAETPFAAVFESTGSDELSVTDVDEFGDAAGFTGLEVLSADLDGRSDRVFTSTGGGAVEPVEGAEFAGLYGVHSTDDDGFVSLYLGSGTQLVDGGTGVTLDESGAAWLDTTEGGYTYTATQPGTLRLPLGTPDGEATVEIDAGDGWTSVDSAVDGDSLLVDVPAGEELQLRVTAPEPQDSERPVVELVSPSSAGPFSQVSVQVDATDDTGLKRIVANIYRDGELVKSTQSAVADGATSGSHSAQVSLPDGDYSMKYNAEDLAGNIARTGRVEFSIDGTAPRATVKSGERFTVGAGPYDKVSFKLFDAGKVDRVEINGVVKNLSDNKWSDVNFLTPGTFGAVQGANVLEVFDVAGNSATVEFTLNNANANANANA
AK018_02998732hypothetical proteinGTGACCGTGTGGAACGAGAACTGGCACGAGCAGCACGAGGAGCACGTCTCCGCGATCTACCCCGACGGGATCCACGGGGCTGTCGCCGACGGCCTGCGGGCCGAGCTGGGTGACGCCGTCGTCGTGCGCACCGCGACGCTCGACGACCCGGAGCACGGTCTGAGCGAGGAGGTGCTCGCCGAGACCGACGTGCTCCTGTGGTGGGGGCATCAGCGGCACGGGGATGTCTCCGACGACGTCGTGGACCGGGTCATCGACCGCGTGCACGCCGGGATGGGGTTCGTGGTGCTGCACTCGGGGCACTACTCCAAGCCGTTCATCCGGCTGATGGGCACCACCTGCTCGCTGCGTTGGCGTTCGGCGGACGACCGGGAGCTGGTGTGGACGGTGGATCCGACCCATCCGCTCGCGCAGGGCGTCCCGCACCCGATCGTCATCGACCAGCAGGAGATGTACGGCGAGCAGTTCGACGTGCCGGCTCCGGACGAGCTGGTGTTCCTGAGCACGTTCACCGGTGGTGAGGTGTTCCGTAGTGGTTGCACCTACCGGCGGGGCAACGGTCGGATCTTCTACTTCAGCCCGGGGGACCAGGACTATCCGGTCTACCACCACCCGGACATCCGTCGGGTGCTGGCCAACGGCGTGGTGTGGGCGCGTCCGGCGGGATCGCAGGGGGTGCCGGAGCTCCTGGAGAGCCACACCGGCTGGTTCGAGAACGGGGTCTCGGCATGAMTVWNENWHEQHEEHVSAIYPDGIHGAVADGLRAELGDAVVVRTATLDDPEHGLSEEVLAETDVLLWWGHQRHGDVSDDVVDRVIDRVHAGMGFVVLHSGHYSKPFIRLMGTTCSLRWRSADDRELVWTVDPTHPLAQGVPHPIVIDQQEMYGEQFDVPAPDELVFLSTFTGGEVFRSGCTYRRGNGRIFYFSPGDQDYPVYHHPDIRRVLANGVVWARPAGSQGVPELLESHTGWFENGVSANANANANANA
AK018_029991062iolG_3Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACGGCCGCGGGGTACTTCGCGCCGGTGACCGGTGTGGCGCCGGTGCGGATCGTGCTCGTGGGCGTCGGCGTGATGGGACGGCGCTGGTTGGAGGTGGTCGAGGCGCACCCGGACGCCGAGCTCGTGGGTGTGGTCGACCTGGACGCCGACGCGGCGGCGTCCGCGGCGGCCTCGGCGCACGGTGAGGTCGCCTCGGGGGCCGACGTGACCGAGGTGGCGCGGCGGACGGCGGCCGACGCCGTGGTCAACGTGACGAGCGTGGCCGCGCACCATCCGGTGACGACCCAGGCGTTGGAAGCAGGCCTGGCGGTGCTGGGCGAGAAGCCGTTGGCTGCCGGTCTCACGCAGGCAGCCGATCTGGTCGTGCAGGCGCGGCGTCACGGCCGGCTGTTCATGGTGAGCCAGTCGCGCCGGTACCACCGGGGGCTGCACACGCTGCGGGCGGCCACGGAAGGTCTGGGGCCGGTGGCGGACGCGACCGCGATGATGTTCCGGGCGCCGCGGTTCGACGGCTTCCGCGTCGAGATGGACAGCCCGCTGATCGTGGACATGGCGATCCACGCGTTCGACGCCGCCCGCTTCGTCCTGGGCCAGGACCCGGTGGCGGTCTACGCCGAGGAGCACAATCCGCAGTGGAGCTGGTACCGCGGCGCGGCGAGCGCCACGGCGATCTTCACGATGTCCGGCGGCGCCCGGTTCACCTTCACGGGGAGCTGGTGCACCCCGGGGATGCCGACGTCGTGGAACGGGCAGTGGCGTGTCAACGCCCGCGACGGCGCCGCCGTCTGGGACGGCGAGGACTCCGTCCGCACGGGACGGGGCGAGGAGCCGGGTGACGAGGTCGCGATCGGCGGGACGCCGGACCGCGAGGACATCGCCGGTGCGCTGGACGAGTTCTTGGGAGCCCTGCGGAGCGGCGCGACGCCGGACGGGGACGCGGGGGAGAACATCGCCTCGTTGGCGATGGTCGCCGGGGCGGTGGAGTCGGCCCGCACGGGTCGACGGGTCGACCTGGTCCACCTGCTCGACGAGGCACGGCGCGAGGGTCAGGCCTCCTGAMTAAGYFAPVTGVAPVRIVLVGVGVMGRRWLEVVEAHPDAELVGVVDLDADAAASAAASAHGEVASGADVTEVARRTAADAVVNVTSVAAHHPVTTQALEAGLAVLGEKPLAAGLTQAADLVVQARRHGRLFMVSQSRRYHRGLHTLRAATEGLGPVADATAMMFRAPRFDGFRVEMDSPLIVDMAIHAFDAARFVLGQDPVAVYAEEHNPQWSWYRGAASATAIFTMSGGARFTFTGSWCTPGMPTSWNGQWRVNARDGAAVWDGEDSVRTGRGEEPGDEVAIGGTPDREDIAGALDEFLGALRSGATPDGDAGENIASLAMVAGAVESARTGRRVDLVHLLDEARREGQASNANANANANA
AK018_030002196rafA_1Alpha-galactosidaseGTGGACGAGTCCAGCGGGCAGCCCACGACCATCCATCACCTGCGTGCCGCCGGCACGAGCCTGGTGCTCGACGCCCGCGGCACGGCCGTGCCCGTCGTCGTCCACTGGGGGGCGGACCTCGGACCGCTCGACGACGTCGCGCTCGCGGCCCTGGCCGACGCCCAGACGCCGACCGTGCCACCGGGCTCGATCGACACGCCACGGCGCAGCCGCCTGGTCCCGCTGCCCGCCGACGGGTGGCCCGGCCGTCCGGGACTCAGCGGATGGCGTCCGACCGCGGACGCGGGCGCCGACACCCGCCGGCCAGGGCTGTCCCTCGACGCCGTGACCGCCGAACGGGGGGCCACGGACGCCGGCGGCCGCCTGACCGTCACGCTGCGCGACGACACGGCGCAGCTGGCCGTCGAGGTCCGGCTCACGCTGGACCGACACGGGATGCTCGAGATCGTGGGATCGGTGACCAACCACGCCTCGGGCCCGTACGCGCTGGACGGGCTGCACTCGACGCTGCCGCTCCCCGCCCGGGCCGCCGAGGTGCTCGACCTGTCGGGACGCTGGAGCAGCGAGCGACGGCCACAGCGCCAGGCGCTGCGCGACGGCGTCTGGCAGCGCGCCGCCCGCCACGGCCGCCCGGGCCACGACGCGCCGTTCGCGACGGTCGTCGGCACCCCCGGGTTCGACTTCCGGCACGGCGAGGTCTGGGCGCTGCACCACGCCTGGAGCGGGGACTCCGACGTGCGGGTCGAGCACCACTCCACCGGGCACACGGTGTTCGGCGCCGGGGAGCTGTGGGGCCCGGGCGAGGTCGTCCTGGCCCCCGGGGAGTCGTACACCACGCCGCGCACACTCGCCGCCTGGTCGGCGGACGGGCTCGACGGCATCTCCGCGCGCTTCCACGGCTGGGTGCGCAGCAGACCCGGACGAGCGAACCGACCACGACCGTTGACCCTCAACACGTGGGAGGCCGTGTACTTCGACCACGACCTCGACCGTCTGCGCCGGCTCGCCGACACCGCCGCGGAGATCGGCGTCGAGCGTTTCGTTCTCGACGACGGATGGTTCCACGGTCGCCGCGACGACACGAGAGCGCTCGGCGACTGGACCGTCGACGACGCGGTGTGGCCCGACGGCCTGCACCCGCTGGTCGACCACGTCCGGTCCCTCGGCATGGAGTTCGGCCTGTGGGTCGAACCGGAGATGGTCAGCCTGGACTCCGACCTGGCCCGGGCCCACCCGGAGTGGGTGCTGCAGGGGGCCGCGGACCGGATGCCGTTGTCGGGGCGCCACCAGCAGGTGCTCGACCTGACCGTGCCCGACGCGTACGCGCACGTGCGCGACGCGCTGGTCGCGCTGCTGGACGAGTACCCGATCGCCTACCTCAAGTGGGACCAGAACCGCGACGTCCTCGACGGCCCCTCCCGGGGCCAGGTGCTCGCGACACGCCGCCTCATGGCCGAGCTGCGGTCCCGGTTCCCGGGACTGGAGATCGAGTCCTGCTCGGCCGGCGGTGGCCGGGTGGACCTCGACGTGCTCGACCACGCGGACCGGGTCTGGGCGTCGGACACCAACGACGCGCTCGAGCGACAGGCGATCCAGCGCTGGACCGGGCTGCTGCTCCCGCCCGAGCTCGTCGGCAGCCACGTCGGCGAGGCGCACTCGCACACCACGGGCCGCACCCACGACCTGGGGCTGCGCCTGATCACCGCCCTGTTCGCCCACGCCGGGATCGAGGCGGACGTCTCCCGGACCGACGAGTCCACCCGGGAGGCGTTGCGGGCCTGGGCAGAGCTCGTCCACGCGGTCCGAGGTCTGGTCGCCACCGGCACCACGGTGCGGTCCGACCGCCCCGACGACACCTGGGTGCACGGTCTGGTCGCCCCCGACCGGGACGAAGCCCTGTTCGCCGTCGTCGGACGGACCGCCAGCCCCGACACGACCCCCGCACCGCTCCTCCTGCCGGGTCTGGACGACGGGCGCACCTACCGGGTCGAACGCGTCCACGTCGGCTCCGAACCCGTCGTCGTCCAGGACGCCGCACCCCCGTGGTGGACCGCGAGGGGCGGCGAGCTACCGGGCCTCGAACTGCCGGGCGTCGCGCTGCGGGAGGTCGGTCTGCCACTACCGTGTCTCGCCCCGGAACAGGCGGCACTGCTGCGCGTCACCGCCGTCGGACCCACCCGGTCTCAGGAGGCCTGAMDESSGQPTTIHHLRAAGTSLVLDARGTAVPVVVHWGADLGPLDDVALAALADAQTPTVPPGSIDTPRRSRLVPLPADGWPGRPGLSGWRPTADAGADTRRPGLSLDAVTAERGATDAGGRLTVTLRDDTAQLAVEVRLTLDRHGMLEIVGSVTNHASGPYALDGLHSTLPLPARAAEVLDLSGRWSSERRPQRQALRDGVWQRAARHGRPGHDAPFATVVGTPGFDFRHGEVWALHHAWSGDSDVRVEHHSTGHTVFGAGELWGPGEVVLAPGESYTTPRTLAAWSADGLDGISARFHGWVRSRPGRANRPRPLTLNTWEAVYFDHDLDRLRRLADTAAEIGVERFVLDDGWFHGRRDDTRALGDWTVDDAVWPDGLHPLVDHVRSLGMEFGLWVEPEMVSLDSDLARAHPEWVLQGAADRMPLSGRHQQVLDLTVPDAYAHVRDALVALLDEYPIAYLKWDQNRDVLDGPSRGQVLATRRLMAELRSRFPGLEIESCSAGGGRVDLDVLDHADRVWASDTNDALERQAIQRWTGLLLPPELVGSHVGEAHSHTTGRTHDLGLRLITALFAHAGIEADVSRTDESTREALRAWAELVHAVRGLVATGTTVRSDRPDDTWVHGLVAPDRDEALFAVVGRTASPDTTPAPLLLPGLDDGRTYRVERVHVGSEPVVVQDAAPPWWTARGGELPGLELPGVALREVGLPLPCLAPEQAALLRVTAVGPTRSQEAPGPT0018835_1598DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
AK018_030011581xynBBeta-xylosidaseATGGTCGATCTCCGCGCCGCCGCGGACGGACCCGGCGCTCGCTTCGCCCACCACTGGAACCTCGTGGTCGGTGCGGGCCGCGCGAACGAAGGGCTCCGGGCCGACTGGCAGGGTCAGCTCCGCGAGGTCGTCGACGTCCACGGCTTCCGCTACGTGCGCTTCCACGGACTGTTCCACGATGACATGTTCGTCTACCGCGAGAACGCCGACGGCGACGTCGAGCCCTCCTTCCAGTACGTCGACGTCCTGTTCGACGCCATCCTGGACGCCGGCATCCGGCCCTTCGTCGAGCTCGGCTTCATGCCGCGCGAGATCGCCACCGAGACCGCCACCGCGTTCTGGTGGGGAGCCCACGGCTCGCCCCCCACCGACCTCGACAAGTGGGAGCAGCTCGTCGCCCGCACCGTCGCGCACTGGCGCGACCGCTACGGCATCGACGAGATCCGCACCTGGTACTACGAGGTCTGGAACGAACCGAACCTGCGCCCGTTCTTCCGCGGCACCAGGTCGCAGTACATGGACATGTACCGCACCGCCGCGCGGGCCGTGAAGAGCGTCGACGACCAGCTGCGCGTCGGCGGGCCGGCCACCAGCAACTTCGTGCCCGACACCCGGTTCGACGGGGAGACCGAGGACACCTCCGCCCAGGCCGACACCCTGTCGGCCGCCGCCCTGGACGACCTCGACTGGCAACCCGTGTGGCTGCAGGAGTTCCTCGACGTCGCCCACCGCGACGGACTGCCCGTCGACTTCGTCTCCACGCACCCCTACCCCACCGACTGGGCGTTCGACGAGCACGGTCAGGGAGCACGCCTCACCCGCGGGGTCGACGCCACCGCGACCGACCTCGCCCTGCTGCGCCGCCTCGTCGACGCCGGCCCCTTCCCCGCCGCCGAGATCCACCTGACCGAGTGGTCGTCGTCGTCCAGCTCACGCGACCGCACCCACGACTACCCCCAGGCCGCGACCTACGTGGTCAAGGCCAACCTCGACTCCATCGGCCTGGTCGACTCGCTGTCCTACTGGACCTTCACCGACATCTTCGAGGAGGCCGGTGGCGGGCAGCTGCCGTTCCACGGCGGCTTCGGGATGCTGAACCACCACGGGATCCCCAAGCCCACCTACCACGGCTACCGGTTCCTGGCCGCGCTCGGCGACGAGCTCCTCGCACGCACCGACGTCGGCGTCGTCACCCGGCACACCGGCGACCAGCGCCTCAGCGCCGTGCTCTACCACTACCCGGCCGAGGTCGCCCAGACCGTCCCCGCCTCGATCGACACCCGTGAGCACGCCGACCGGACCCTGGCGACCGGCTCTGCGCGCACCGTCCGGCTCCAGGTCGACGACGTCGCCCCCGGCACCCGGTTCCGCGTCGAGACCGTCTCCCCCGAGTCGGGCGACGTCGTGTCCGCCTGGCACGCCCTCGGCTCCCCGGTGAACCTGCGCCGCGACGACGTCACCGCGCTCACCGAGCACGGGCGGAACCTGGCCACGACCGAGCTCGTCGCCGGCGACGACGGCCTCTCGGCCGAGATCACGCTGCCCGCCTGGGCCGTCACCCTGATCGACCAGGTGGCCTGAMVDLRAAADGPGARFAHHWNLVVGAGRANEGLRADWQGQLREVVDVHGFRYVRFHGLFHDDMFVYRENADGDVEPSFQYVDVLFDAILDAGIRPFVELGFMPREIATETATAFWWGAHGSPPTDLDKWEQLVARTVAHWRDRYGIDEIRTWYYEVWNEPNLRPFFRGTRSQYMDMYRTAARAVKSVDDQLRVGGPATSNFVPDTRFDGETEDTSAQADTLSAAALDDLDWQPVWLQEFLDVAHRDGLPVDFVSTHPYPTDWAFDEHGQGARLTRGVDATATDLALLRRLVDAGPFPAAEIHLTEWSSSSSSRDRTHDYPQAATYVVKANLDSIGLVDSLSYWTFTDIFEEAGGGQLPFHGGFGMLNHHGIPKPTYHGYRFLAALGDELLARTDVGVVTRHTGDQRLSAVLYHYPAEVAQTVPASIDTREHADRTLATGSARTVRLQVDDVAPGTRFRVETVSPESGDVVSAWHALGSPVNLRRDDVTALTEHGRNLATTELVAGDDGLSAEITLPAWAVTLIDQVAPGPT0018665_1373DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-XYLOSIDASE,PGPT0018665-xynB-K01198NANA
AK018_030021509COG3119N-acetylgalactosamine-6-O-sulfataseATGAGCAGTGTCACCGCCGCGCGACGACGCGCACGACCGAACGTCGTCCTGATCCTGGCCGACGACATGGGATGGGGCGACCTCGGGTGCTACGGAGCCACCGCGATCCCCACGCCGCGCATGGACGCGATGGCACGCGACGGCGTCCGGTTCGACGACGCGCACTCCTCCTCGGCGGTGTGCACCCCCAGCCGCTACTCGATCGTGACCGGCCGCTACGCCTGGCGCAGCCCGCTCAAGCAGCACGTCCTGCACAGCCACGCCCCGGCCATCATCGAGTCCGAACGCCCCACCGTCGCCTCCGAGCTGCGCGAGCACGGCTACGCCACCGGCGTCTTCGGCAAGTGGCACCTCGGCCTGGACTGGACCCGCAAGGACGGCACCCGCGTCACCGCGTTCGGCGCGGACGCCGACGACGACATCCTCGACAAGCCCGACCAGTACCCGGCCGACGAGATCGACTACACCCAGCCGTTCGCCGGCGGGCCCTGCGACCTCGGATTCGACCGCTACTTCGGCATCGCCGGATCGTTGAACATGCCGCCGTCGGCCTTCCTCTCCCAGGACCGTGTCGTCGGAGTGCCGTCCCTCGAGCGCCCCGTATACCAACCCGGGATCAACCCGGGACTGATGACGGAGGGCTGGCGTGACGACGAGGCGGACGTCCGGTTCACCCAGGAGGCGGTGGGCTGGCTGAAGGAGCAGGCCGAGGCCGAGCAGCCCTTCTTCCTCTTCCTCTCCACCGCCGCTCCGCACCGCCCCTGCGTTCCTCCGGAACAGTTCCACGGCATGTCGCAGGCCGGCCTGCGCGGCGACGCCGTCTGCCTGGTCGACTGGATGGTCGGTCAGATCGACGACGCGCTGGCCGAGACCGGCGTCGCCGACGACACGGTCGTCATCATCACCAGCGACAACGGGGCGCCGACCATGTTCCCCGAGGACGGGGACACCGAGCACCACCGACCCAACGGCCCCTACCGCGGACAGAAGGGCGACATCTGGGACGGCGGCCACCGCGAACCGTTGATCATCCGCTGGCCCGCCGGGCTCGCCGCCGGCCAGGTCCGCGAGGACCTGGTGTGCCTGACCGACCTGTATCCGACGATCCTCTCCGCCGCGGGGCTCGACCCGACGCCCGGAGCCGCCGAGGACGCCGTCGACATCCTTGCCCGCCTCGACAGTCCCGAACCCACCCCGCGCGGCGTGCCCGTCGTCCACCACTCCATGGGCGGATCGTTCGGGCTGCGCATGGACCGCTACAAGGTGAACTTCTGCACGGAGTCGGGCGGCGGGTTCTCGGCCCGCGTGCGCGACGACGACGGCACCACCTTCGGTGCCGAGGCGCCGATCGGCCGCATCTACGACCTCGAGACCGACCCGGCCGAGACCACCGACCTGTGGGACAGCCGGCCCGACCTCGCCGCCGCCGCCCACGAGGCCCTGCGCCACCTCACGGCCGGGGCGGAGGCCGGGTTCGCGCGCGATGTCGTCCCCGAACCCAGCGCATGAMSSVTAARRRARPNVVLILADDMGWGDLGCYGATAIPTPRMDAMARDGVRFDDAHSSSAVCTPSRYSIVTGRYAWRSPLKQHVLHSHAPAIIESERPTVASELREHGYATGVFGKWHLGLDWTRKDGTRVTAFGADADDDILDKPDQYPADEIDYTQPFAGGPCDLGFDRYFGIAGSLNMPPSAFLSQDRVVGVPSLERPVYQPGINPGLMTEGWRDDEADVRFTQEAVGWLKEQAEAEQPFFLFLSTAAPHRPCVPPEQFHGMSQAGLRGDAVCLVDWMVGQIDDALAETGVADDTVVIITSDNGAPTMFPEDGDTEHHRPNGPYRGQKGDIWDGGHREPLIIRWPAGLAAGQVREDLVCLTDLYPTILSAAGLDPTPGAAEDAVDILARLDSPEPTPRGVPVVHHSMGGSFGLRMDRYKVNFCTESGGGFSARVRDDDGTTFGAEAPIGRIYDLETDPAETTDLWDSRPDLAAAAHEALRHLTAGAEAGFARDVVPEPSANANANANANA
AK018_03003687hypothetical proteinATGAGCGTGGTGGCGGTCCACGGACGGGTCGCCGAGGGCTACGAGGAGCTCGCCGAGGCGTTCGCCACCCCGGTCGTCGACCCCGACCGCACCGGAGCGGCCCCGCTGCCGCGCGAGGTCGTGCTCGACAGCCGCGCCTGGGCCGGGACGATCGCGCAGCAGGAGCCCCTGCGGGGCCCCGGCACCGCGCACGCGTACCACGCCCTCACCCTGGGCCCCCTGGTGGCGGAGATCGTCCGCCGCAGCACCGGGACCGAGCTCGCCGATGTCGTTCGCTCCCGCCTCGCCGCGCCCCTGGGAGCCGCGACCACGTTCGCCCCCACCGCCGCCGACCTGGCGGCCGTCGCCCGCATCGAGACCTCCGACCGGTGGGACGAGGCCGCCCGCACCGCCGACGACGAGCGCGTGGCCCGGGCGGCGACCCTCGCGGCGCTGTGCCACCCGCGGTCCTCGGGGCCCTGGGTCTTCGCCACCCCCGGTCCCCACCCGACCTGGGGCGCGGGGGTCCAGCTGGTCTCCGACGCCTTCCCCGGACCGTCGCCGTCGTCGTTCGGCCACGGCGGCGCCGGCGGGCAGGTGGCGCTCGCGGACCCCGATCGTCGGATCGGGCTGGCCTACGTCCGCAACCGCATGGACACCGAGAACCCGGCGCCCGCGCTGACCCGAGCCCTGGAGGACCTTCGATGAMSVVAVHGRVAEGYEELAEAFATPVVDPDRTGAAPLPREVVLDSRAWAGTIAQQEPLRGPGTAHAYHALTLGPLVAEIVRRSTGTELADVVRSRLAAPLGAATTFAPTAADLAAVARIETSDRWDEAARTADDERVARAATLAALCHPRSSGPWVFATPGPHPTWGAGVQLVSDAFPGPSPSSFGHGGAGGQVALADPDRRIGLAYVRNRMDTENPAPALTRALEDLRNANANANANA
AK018_030041371SulfataseATGAACACCACGCCGCTCGACGAGGGGCCGACGCCTCGCCCGAACGTCGTCCTGGTGTTCATGGACGACATGACGCACTGGTCGCTGCGCAGCGAGCAGGTGGCCACTCCCCATCTCGAGCGTCTGCGCGAACGCGGTGTGACGTTCACCCAGGCGTACACGCAGGGCTCGCTGGAACCTGCGGTGTGCATCCCGGCCCGGCGGATGCTGCTGACCGGACTCACGCTGTTCGAGTCCCAGCCGCGGTTCATGGAGGTGGAGCGGCTGGGCCGGGCGCTGACCTCCCTGGGATACGACACGTTCTTCACCGGCAAGTGGCACAACGAGGCGGCGGCGCTGCCCGAGGACTACGAGACGGTGGGTCCCTGGGCGGGCGGGATGCTGGGCACGATCGACGGCGAGGACGAGGCGTACGGGCGTCCGCGTCGGGACGACCGGTGGGACCCGGCCGACGAGGGGCGCGGCGGTCACTGGATGACGCTGCCGGACGGGCGCGTCCAGCACTCGTCGGAGCGCTGGACGGACGCGGCGCTGTCGCACCTGGCCCGGTCCGACGGTGACCGGCCGGTCTTCGTCCACGTGGCCTACCACGCGCCGCACGACCCGCGGCAGGCGCCCCGCGAGTACCTCGACCGGTACCCGTCGGAGACGATCGCCGTGCCGCCGAACGCGTTGCCGCGCCACCCGTTCGACAACGGCGCCCTGGACATCCGCGACGAGCTGCTCGCCCCGCACCCGCGCACCGACGACGCCGTGCGGCTGCACCGGCGCGAGTACTTCGCGATGATCACGCACGTCGACCAGCAGATCGGTCGTCTCCTGGACGAGGTCGACCGCGTCGAGGCGGACACGGGCCGACCGACGATCGTCGTCTTCTCGGGCGACCACGGCCTCGCACTGGGCGAGCACGGACTGATGGGCAAGCAGAACGTCTACGAGCACAGCACACGGGTGCCGCTGGTGGTGGCCGGACCCGGGCTGCCGGGAGGTGCGACGCGTGAGCAGTGCGTGTACGCGGGGAGCATCTACCCGACCGTTCTCGATCTGCTCGGCGGGGAGCCGCCGGCTCATCTGCAGTTCCGGAGCCTGCGCGAGGTCCTCGTCGAGGATGCTCCGGGCGAGCCGGAGATCTTCACGGCCCACGCAGGGAACCAGCGTGCGCTGCGTCGTGGGCGCTGGAAGCTCATCCGGTACGCCGGCGACGAGCGCCACGATCAGCTCTTCGACCTCGACACCGATCCGTGGGAGCTCGACAACCGCATCGACGATCCAGCGGTCGGCGCGGTGGCCGCGTCGCTGGCCGCGGGGCTCGAGACCGCGCAGCGCACCCTGGGAGATCCGGGACGGAGACCCGAGAGATCCGATGCCTGAMNTTPLDEGPTPRPNVVLVFMDDMTHWSLRSEQVATPHLERLRERGVTFTQAYTQGSLEPAVCIPARRMLLTGLTLFESQPRFMEVERLGRALTSLGYDTFFTGKWHNEAAALPEDYETVGPWAGGMLGTIDGEDEAYGRPRRDDRWDPADEGRGGHWMTLPDGRVQHSSERWTDAALSHLARSDGDRPVFVHVAYHAPHDPRQAPREYLDRYPSETIAVPPNALPRHPFDNGALDIRDELLAPHPRTDDAVRLHRREYFAMITHVDQQIGRLLDEVDRVEADTGRPTIVVFSGDHGLALGEHGLMGKQNVYEHSTRVPLVVAGPGLPGGATREQCVYAGSIYPTVLDLLGGEPPAHLQFRSLREVLVEDAPGEPEIFTAHAGNQRALRRGRWKLIRYAGDERHDQLFDLDTDPWELDNRIDDPAVGAVAASLAAGLETAQRTLGDPGRRPERSDANANANANANA
AK018_030051086ccpA_6COG1609Catabolite control protein AGTGGCGAACATCCGGGACGTCGCGCGTCACGCGGCGGTGGCGCCCATGACGGTCTCGCGGGTGCTCAACCAGCCCGATGCGGTGTCCGCCGAGACCCGGGCGCGTGTCGAGGCCTCGATCGCTGAGCTCAAGTACGTCCCGAACATGGTGGGTCAGGGGTTGCGCAAGCGCCGGACCATGGCCCTCGGGCTCCTGGTCAGCGACATCACCAACCCGTTCGCCATCCAGCAAATCCAGGGTGTCACCCGGGCGGCCCGCCACGGCGGCTACACCGTGATCTTCGGTCACACCGAGTCGAGCGCCGACGAGGAGATGCGGCAGCTCCGCTCGCTGGTCGAACGCCGCGTCGACGGGATCCTGCTCTCACCGGTGTACAACACCCCGGACGCCGTCGAGTTCATCCAGGGCCAGCAGCTGCCGATCGTCGTGCTCGACTACGCGATGCCTGACGCTGATGTCGACGTCGTCCGCTGCGACACGTGCGTCGCGAGCCGCGACCTCACCCGTTACCTGCTCGAGGGCGGCCATCGCCGGATCGCGATGCTGAGCGGGGACGAGGCCATCATCACCGCGAGGGACCGCGCCGAAGGCTTCCGGCAGGCGATGGCGGAGGCGGGGTTACCCGCGCGGGTCTCCTTCGGGCGTTACACCCCGGAGTCGGGGCGCGAGCAGGCACATGCTGCGCTTGCCGCGCCGGACCGCCCGACCGCGCTCGTGACGGCCAGCAACTTCCTGGCGATGGGGGCCGCGGAGGCTGCCGGCGACCTGGGGCTGTCGGTACCCGACGAGCTGTCCATCGTGACCTTCGACAACGCGCGCACGGACATGGTGCACGACCCGTTCTTCACCGGCGTGGTGCAACCGGTCACCGAGATGTCCAGCGCGGCGGCGCGCATGCTTCTCGACCGGACCATGGGCCGTTACGACGGACCCGGTCGCGACCTGATCTTCCCGACCGACTTCGAGGTGCACCGTTCGACCGCACCGTGGGGAGGGAGAGGGGATGCGTCAGCGTGCATCCCGGATGCTGCGCCCAGCCGAGAGCGCGGCCATCACGATGAAGTGAAAGGAAGCACAGCATCATGAMANIRDVARHAAVAPMTVSRVLNQPDAVSAETRARVEASIAELKYVPNMVGQGLRKRRTMALGLLVSDITNPFAIQQIQGVTRAARHGGYTVIFGHTESSADEEMRQLRSLVERRVDGILLSPVYNTPDAVEFIQGQQLPIVVLDYAMPDADVDVVRCDTCVASRDLTRYLLEGGHRRIAMLSGDEAIITARDRAEGFRQAMAEAGLPARVSFGRYTPESGREQAHAALAAPDRPTALVTASNFLAMGAAEAAGDLGLSVPDELSIVTFDNARTDMVHDPFFTGVVQPVTEMSSAAARMLLDRTMGRYDGPGRDLIFPTDFEVHRSTAPWGGRGDASACIPDAAPSRERGHHDEVKGSTASPGPT0017992_10790DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_030061338hypothetical proteinATGACTATGCGCAGAGCTCTGATCACCCTCGGCGGGGCTGTCTCCGCCGTGGCTCTGGCCGCCGGGTGCGGCTCGTCGGGAGGCGTCGGCGGGTTCGAGGAGACCGAGCCGGTCGAGCAGGACACGAGCGAAGAGGTCGAGCTGACCTACTGGACCTGGTTCCCGCCGGAAGACACCCTGAACGCGGCCATCGCGGCGTTCGAGGAGGAGAACCCGAACATCTCGATCGACCTCCGGGTCTTCGTCAACACCGACTACCAGCAGCAACTGCCGCTGGCGCTCAGCGGCGACGAAGACCTCGACGTGGTCGGAGTCCAGGTGGCTGCGATGACCGACAGCGTCCGCGAGTTCCTGCTGCCGGTGGACGACTGGGCCGGGGACTGGCTGGACGAGCTCAACGAGCCGATGCGCCAGCAGACCCAGGACATCGCCTCCGACGATGTCCTCTACTCGGTCCCGATGGGGTCGATCGCCTCACCGATCATGTACTACAACGCCGACATGCTCGACGAGGCCGGTGCGGAGGTGCCGACCACGGTCGACGAGTGGAAGACCGCGGTCGACGCCGTCTCCGCCACGTTCCCCGACGTCACGCCGGTCGTCTTCCAGGGGGAGCCCTACTGGCAGTCCGAGATGCTCTTCGGGTTCGCCGAGCAGACGTCTCCCGGGTTGTCGGACGACATCAACCTCGACGGCGGGTCGTGGGACCAGCCCGGCGTCATCGACGGGCTGAACGCGTACAAGTCGATCTTCGACGCCGGCGTCGTCGACACCGACGTGCTGAGCCTTCTCGGGACACGGCCGAGCGAGATGTTCTCCGCGGGCGAGGCGGCGTTCTACATCGACGGGTCGTGGCAGGACTCGCTGCTGTCGCAGCCGTTCCGCGAGGAGAACGGCATCTCGGTGACGGACGTCGGCGCTGCGGCCCTGCCGCTGGCCGACGGCGGGTCGCACACCGTCCGCGCGTTCGCCGAGGGCGGTCTGGCCATCCCGAGCTCGTCGGACAACGTCGCGGCGGCATCGACCTTCATCGAGTTCATGGTCGGGGAGTCGGGAGCCGACGTCTGGGCACCCGACCTGGTGCTGGTGCCCAGCCTCAAGGGCTACGAGCTGCCGGACACGGTGCTGGCGACGGAGGCCTCGCAGCAGGGCTACTCCGAGGTCGCCGAGCTCATCGGCGACCCGAGCTCTGCGCGGACGGCGCAGCCGGACTTCAACCCCGTGATGGGCAACATGATCCTCGACATGCTGCGGGGCGAGGCCACCGTCGAGGAGACGGCAGCCGACATGCAGGAGGAATGGACCTCGGGCCGCTACCCACAGGGTGGCGAGGGGTGAMTMRRALITLGGAVSAVALAAGCGSSGGVGGFEETEPVEQDTSEEVELTYWTWFPPEDTLNAAIAAFEEENPNISIDLRVFVNTDYQQQLPLALSGDEDLDVVGVQVAAMTDSVREFLLPVDDWAGDWLDELNEPMRQQTQDIASDDVLYSVPMGSIASPIMYYNADMLDEAGAEVPTTVDEWKTAVDAVSATFPDVTPVVFQGEPYWQSEMLFGFAEQTSPGLSDDINLDGGSWDQPGVIDGLNAYKSIFDAGVVDTDVLSLLGTRPSEMFSAGEAAFYIDGSWQDSLLSQPFREENGISVTDVGAAALPLADGGSHTVRAFAEGGLAIPSSSDNVAAASTFIEFMVGESGADVWAPDLVLVPSLKGYELPDTVLATEASQQGYSEVAELIGDPSSARTAQPDFNPVMGNMILDMLRGEATVEETAADMQEEWTSGRYPQGGEGNANANANANA
AK018_03007861lacF_3Lactose transport system permease protein LacFATGCGGGGACCGTGGTTCGCGGTCCTGTTCCTCGCGCCGCTGGTGCTGTTCTACAGCGTCTACTACCTCTACAGCTTCGGCGTCCTGGGCGTGGTGAGCACCCAGACCGTCGGGCTGACCTTCACCAACGCGGTGGACGTCGGTCTGCAGAACTTCGAGCTGGTGATCACCGACCCGTCGTTCCAGCGTTCGCTGTTCAACACGATCTTCTTCGCGCTGTTCCTCGTCGGGATGTCGCTGACTCTCGGCTACTTCCTCGCGATGCTGATCGCGTCCGGCGTCCGGATGCGCCGGTGGTACTACACGATCTTCCTTCTTCCCTCGCTCATCCCGATGTCGCTGTTCGCGACCGTGTTCGGCCGGATGCTCGAGACGAGCGACGGCGCGATCAACGAGATGCTGCGCACCGTCGGCCTCGGATTTCTCGCGCAGGACTGGCTCGGCGACCCGACCGCCGCCTACCTGGCGGTCCTGGTGCTGATCACCTACACGATCGGGCTGCCGATCATGTACTACACCACCGACGTCGGGCAGGTGAACACCTCCGTCATCGAGTCCGCCACCCTCGACGGCGCGTCGGTGTGGCAGATCTACCGCATCATGCTCTACCCGTTGCTGAAGTCCACCCACATCACGGTTCTGCTGTCCGTCATCCTGGGCAGCTTCCGGGCGTTCGACATCATCTTCTTCTCCACCGCCGGACAACCTGGGGGCCGCACCGACATCACCGGGACGTACATCTACACCGCCACTCTCGGTGTGGACCGTGTCGGCTTCGCGGCGGCAGCATCCATCATCGTGCTCGTGATCGCGCTGGCGATCTCGATCATCCAGATTCTCGTGCGGCGGAGGATGAGCTGAMRGPWFAVLFLAPLVLFYSVYYLYSFGVLGVVSTQTVGLTFTNAVDVGLQNFELVITDPSFQRSLFNTIFFALFLVGMSLTLGYFLAMLIASGVRMRRWYYTIFLLPSLIPMSLFATVFGRMLETSDGAINEMLRTVGLGFLAQDWLGDPTAAYLAVLVLITYTIGLPIMYYTTDVGQVNTSVIESATLDGASVWQIYRIMLYPLLKSTHITVLLSVILGSFRAFDIIFFSTAGQPGGRTDITGTYIYTATLGVDRVGFAAAASIIVLVIALAISIIQILVRRRMSPGPT0016335_1349DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_03008840lacGLactose transport system permease protein LacGATGGCCACACACACGCAGGAAGAACGTCTTCCCCTCCACCTGCGTCGCCTCGACCGTGTCCTGATCTATGCGCTCCTCACGGTCTTCGCACTGGGCTTCGCCTGGCCGCTCATCCATGCCGTGCAGATGTCGGTGGCCGTCGGGGGCATCGGGAACTACTGGACCGTCCTGACCCGGGACCTCAACGGGATCTCCATCCCGTTGACGTTCGTCAACAGCGCCGTCATTGCGGTCATGCACGCCGGGCTCGTCTGCGGGATCGGCGTGCTCGCGGCCTACGCGTTCTCCTTCATCGAGTTCCGCGGCCGCGAGGCCCTGTACTACGGCGTCCTGCTCTTCCTCGCGGTGCCGGCGACCGCCATCCTGGTCCCGGTCTACTTCCTGAGCGGCACGCTCGGCCTGTTCAACACCCACATCGGCGTCGCCCTGCCCGAAGCTGTGCTGACCTTGCCGTTCGCCGTGCTCCTGCTGCGCAACCGGATGGACGACATCCCACGACAGCTCGTGGAGGCCGGAGTGATCGACCGTGCCCACCACGGGCATCTCTTCTGGCACATCGCCCTGCCGCTCACACGTGGTCCGCTCGCCAACCTCGCCGCGTTGAGCATCATGTGGTCGCTGCAGGACTTCATCTTCCCCTCGGTGCTGCTGAGGTCGCCCGAGCTGACGACGGCGGCTCAGGCGGTCCAGAACATTCGGAGCGCCTTCGCCCCGACGCCGCTCGAGTCGTCCCAGTACTTCGCTGCCCTGGTCCTGCTGGGTCTCCCGGCGCTGGTCATCATCTTGTTCGCGTTCCGGTTCGTGACGAAGGGGCTGACCGGAGGCGGCCTGAAGGAGTGAMATHTQEERLPLHLRRLDRVLIYALLTVFALGFAWPLIHAVQMSVAVGGIGNYWTVLTRDLNGISIPLTFVNSAVIAVMHAGLVCGIGVLAAYAFSFIEFRGREALYYGVLLFLAVPATAILVPVYFLSGTLGLFNTHIGVALPEAVLTLPFAVLLLRNRMDDIPRQLVEAGVIDRAHHGHLFWHIALPLTRGPLANLAALSIMWSLQDFIFPSVLLRSPELTTAAQAVQNIRSAFAPTPLESSQYFAALVLLGLPALVIILFAFRFVTKGLTGGGLKEPGPT0016340_1779DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_030092022hypothetical proteinATGCATCGCGCTGCGTCGGTGGCCACGCGGACGGCACCCGGCGGTGCCTACCTCCCGCACCGCTCGGTCCACCTGGACTTCCACACCTCGCCGCTGATCACCCCGATCGCGCAGGAGTTCGACCCCGAGGAGTTCGCGGCACGGTTCGCCCGCCTCGGTGTGGACTCGGTGACCCTGTTCGCCAAGTGCCACCACGGCCGGCTCTACTACGACACGGCACGCGAGGAGCGGCACCCGGGTCTGGGCGGTCTGGACCTGCTGCGCTCGCAGGTCGAGGCGCTGCGTCCGCTCGGCATCCGCACCCCGATCTACGTCAGCGTGCTGTTCGACGAGCACGCCGCCACCACCCATCCGGAGTGGGTGGCCCTCGACGCCGAGGGCGCACCGGTGCGCGTCCGCCCGCACGGCGTGCCCGGGTGGCGCATCCTCGACATGACGAGCGACTACCGCCACTACCTCGCCGACCAGGTCACCGACGTCCTGGAGCACTTCGACGACGCCGACGGCTTCTTCTTCGACATCTGCTTCGACCAGCCGGGTTTCACCAGCACGGCCCGTGCCGCGGCGAGGGCGGCGGGGTTCGACCCGGACACGGAGTCCGGTCGTCTCGGCGCCTCGCGCGCCGTCTCGCACGAGTACATGGCCCGACTGCGCGACATGGTCGCCGGTCCGGGGCACGACGGCGTCCCGCGCAGCGTGTTCTTCAACTCGCGCCCGCGGCTGCTGCTGGCCGACGAGCTGGGCTTCAGCACGCACGACGAGATCGAGGCGCTGCCCACCGGCGGGTGGGGCTACGCGTACGCCCCGACCGTGGCGCGCAGCGTCCTGCCCGTCCAGCCGCGGGCGATGGGGATGACCGGCCGGTTCTTCGGCAGCTGGGGCGACAGCGCGAGCCTGCATCCCACGGCGGCGCTGTCGTACGAGTCGCTGCAGATGGTCTCCCTCGGCATCGGGATCAGCATCGGGGACTCGCTGCCGCCGGCCGGACGCTCGCACGACGCCGTCACCGACCGCCTGGAGCGGACCTTCCGCGTGGTGCGCGAGGTGCAGGAGGCCACCGCGGGCGCGGAGCGCGTGGCCGAGGTCGCCGTCGTGCGCCCCGGTGGTGCCGCCTCCGGCGAGGTCATGGACGCCGACGCGCCCGGCGCCGGAGAGCTGGCGGCGTTGCGCCTGCTGACCTCGCGGGGCGTGGACTTCGACTTCGTGGCCCCGGGGGACGACCTGGCCGGCTATCGTGCCGTCGTCGTGCTCGCGGACGTCGACCTGGACGACGCGACGGTCCGGGCCCTGACGGCGCACGTCGCGGCGGGAGGGTCGTTGCTGCTGTCGGGGCTGTCCCGCGGGGCGGACGCGCTCGCTGGCCTGACCGGTCTGGAGCCGACCGGTGAGTCCGGATGCCGCCGTGAGTTCGCCCGGCCCGCGCCCGTCACCGGGCTGCCCGACTTCGACCACGTCCTGCCCGGTGGCGTGCCCCGGATGCGGGCTGCCGACGACGTCCAGGTGCTCGCCACGGTGACCGAGCCGTACTTCGACCGGACCGAGGACCGGTTCAGCGGCCACGAGTACACGCCGGCGGGCCGTGCGACCGACCACCCGGCCGTGGCCGTCCGGGGTCGCGTGGCGACGGCGGCCTTCCCGTTGCTGGAGGCCTTCGGTTCCACGGGTGTCCCGGAGCTCGCCGAGCTCGCCGGGGCCGCGTTCGCGGGCGCCTACCCGCGTCCTGCCCTGCGGGTCGACGGTCCAGCGCACCTGGAGGCCACGCTGCAGCGCCGGGGGACGACGGCGTTCGTGCACCTGCTCAGCTATCTGCCGTCCCGCCGGACCCAGGCGGACGTGGAGACGGTGCTCGACCCGGTGCCCGTGGTCGGCGCGGAGGTGGCCGTCAGGGTCGACGGCGCGACACCGCGCCGGGTGCGCACGCTCGCGGGCGCCGAGCTCCCGTTCGAGGTCACGGACGGCTATGTTCGCTGCACCGTGTCGTTCGACGCCGGGCACTGCCTCGTCGTCGTTGAAGGGGAGTGAMHRAASVATRTAPGGAYLPHRSVHLDFHTSPLITPIAQEFDPEEFAARFARLGVDSVTLFAKCHHGRLYYDTAREERHPGLGGLDLLRSQVEALRPLGIRTPIYVSVLFDEHAATTHPEWVALDAEGAPVRVRPHGVPGWRILDMTSDYRHYLADQVTDVLEHFDDADGFFFDICFDQPGFTSTARAAARAAGFDPDTESGRLGASRAVSHEYMARLRDMVAGPGHDGVPRSVFFNSRPRLLLADELGFSTHDEIEALPTGGWGYAYAPTVARSVLPVQPRAMGMTGRFFGSWGDSASLHPTAALSYESLQMVSLGIGISIGDSLPPAGRSHDAVTDRLERTFRVVREVQEATAGAERVAEVAVVRPGGAASGEVMDADAPGAGELAALRLLTSRGVDFDFVAPGDDLAGYRAVVVLADVDLDDATVRALTAHVAAGGSLLLSGLSRGADALAGLTGLEPTGESGCRREFARPAPVTGLPDFDHVLPGGVPRMRAADDVQVLATVTEPYFDRTEDRFSGHEYTPAGRATDHPAVAVRGRVATAAFPLLEAFGSTGVPELAELAGAAFAGAYPRPALRVDGPAHLEATLQRRGTTAFVHLLSYLPSRRTQADVETVLDPVPVVGAEVAVRVDGATPRRVRTLAGAELPFEVTDGYVRCTVSFDAGHCLVVVEGENANANANANA
AK018_03010738lutR_2COG2186HTH-type transcriptional regulator LutRATGTCGCAGACCGACAATGCGATCGACGCCATCAAGCGGATGATCCAGTTCGGCGAGCTGCGTCCGGGGGACCGGCTGCCCCCCGAGCGGGAGCTCGGCGAGCGGCTGGGCGTGTCGCGCAACTCGCTGCGCGAGGCCGTGAAGTCGCTGGAGACGATCAACGTCCTCGCGGTGCGACGCGGGGACGGCACCTACGTGACCAGTCTCGAACCGAGCCTGCTGCTGGAGGGCATCGGCTTCCTCGTCGACATCCACGACGACGCCACCCTGTTGGAGATGTTCGGCGTGCGGCGGATCCTGGAGGCCGCCGCCGCGCGCACCGCGGCGACCCGTGCGACCCCGGAGCTGATCGGCCGCCTCGAAGCCGTCGCGGAGAGCTCCCGGCACGCGACGACGGTGGACAGCCTGGTGGACCACGACACCGAGTTCCACCGGGAGGTCGCCTCGGCGGCGGAGAACCGGTACCTGTCCGGGATGCTCGACACGCTCTCGTCCTCCACGGTGCGGGCGCGCGTGTGGCGGGGGCTCTCGCAGGGCGGGGCGGTGGAACGCACGCTCGCCGAGCACCGCGCCATCCTGGACGCGGTGCGTGCGGGGGACGCCGAGCTGGCCTCGGCCCTGATGACCGCGCACATCGCGGGGGTCGAGACGTGGCTCCGTGGGGCGGCCCGGGGCTGGCACCCCGATCACGAGGACGACGGTGACGACGAGGAGGGGAACACCGATGACGACGTCTGAMSQTDNAIDAIKRMIQFGELRPGDRLPPERELGERLGVSRNSLREAVKSLETINVLAVRRGDGTYVTSLEPSLLLEGIGFLVDIHDDATLLEMFGVRRILEAAAARTAATRATPELIGRLEAVAESSRHATTVDSLVDHDTEFHREVASAAENRYLSGMLDTLSSSTVRARVWRGLSQGGAVERTLAEHRAILDAVRAGDAELASALMTAHIAGVETWLRGAARGWHPDHEDDGDDEEGNTDDDVNANANANANA
AK018_03011396rhaM_1L-rhamnose mutarotaseATGACGACGTCTGAGGACGCGCGGGAGACCCAGGACGTGAGCCCCACGGACGGGCCCCAGGACGGCGCGACGGTCCGCCGTGTCGCCTCGGTGATCGGGCTGCCGCCCGAGCACCGCGAGGCCTACGAGCGCTACCACGCCGAGGCGTGGCCCGGCGTGCTCGCTGCGCTGCGGCGCCACCGGGTGCGCAACTATTCGATCTACCGCTACGGCGACCTGCTGTTCTCCTACCTCGAGTACGTGGGGGACGACTTCGAGGCGGACATGGCGGGCATCGCCGCCGGCCCGGTGACGCAGGAGTGGTGGTCGGTGGTGAACCCCCTGCAGCGTCCCCTGGACGACCGGGCCGATGGCGAGTGGTGGCACGAGATCCCGGAGATCTTCCACACCGACTGAMTTSEDARETQDVSPTDGPQDGATVRRVASVIGLPPEHREAYERYHAEAWPGVLAALRRHRVRNYSIYRYGDLLFSYLEYVGDDFEADMAGIAAGPVTQEWWSVVNPLQRPLDDRADGEWWHEIPEIFHTDPGPT0017795_743DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017795-rhaM|rhaU|yiiL-K03534NANA
AK018_030121374atsA_2COG3119ArylsulfataseATGCCCACCCGGCCGAACATCATCCAGATCGTCGTGGACGACATGGGAGTGGGAGACCTCTCCTGCGAGAACGCCGGAGCGTCCTCGACCCCACGGCTCGACACCCTCGTCGAGGAGGGGGTCCACCTGCAGCAGCACTACTCCGGCTCCCCCGTCTGCGCGCCCGCCCGTGCCGCCCTCCTGACCGGCCGTTACCCGCACCGCACCGGCGCCATCGACACCACCGAGGCGCGCGGGCTCGACCGGCTCGGCGTCGGCGAGACGACCCTGGCAGACGACCTGCGGGCCGGCGGCTACGCCACCGGGCTCGTCGGCAAGTGGCACAACGGGGCCTTCGACGCCGCCTACCACCCTCGGTCCCGCGGGTTCGACGAGTTCACCGGGTTCCAGGGCGGCTGGCGCGACTACTGGGACTGGCGTATCGAACGTGGCGGCACCGTGCTCGACGCCGACGGTCGCCACCTCACCCAGGTCTTCACCACCGAGGCGATCGACTTCGTCCGACGCCACCGCGACGACCCGTTCTTCCTCCACCTGGCCTACAACGCCCCGCACTACCCGCTCCAGGCACCCGAGCACCTCGTGCAGCGATTCCTCGCCCCGGGGCGCACCCGCGCCGTCGCCACGATCTACGCGATGCTCGCGATGGTCGACGAAGGCGTCGAGCGTGTGCTGACCGAGGTGGACCGCCTCGGGCTGACCGACCACACGATCGTCATGTTCACCAGCGACAACGGCCCCGAGGCCAACGGCGTCGGCGAGGACGCCACCCACCGGTTCAACGTCGGCATGCGCGGCTCCAAGACGCACGTGTTCGAGGGCGGCATCCGGGTCCCGCTGATCATGCGCTGGCCGGACGGCCTGCCGGCCGGTATCGAGTCCAGCGACCTGGTCCACTTCGTGGACTGGCGTCCCACGCTCGCCGCGGCCGCGGGCGTGGGGCGGGCCGGTGACCGGGAGCTCGACGGCTCCGACGCCTGGGACCGGCTGCGCGGCGAGGGGACCGACCCCGGGGCGCGGTTCTGGCAGTGGACCCGGTACGTGCCGGAGCGCGAGTCCAACTGCGCCATGCGGGACGGCCGCTGGAAGATCGTGTGGCCCGACTGGCCCGGTTCGTTGGACGTCACCCCCGAGGACGCCCGACGGGACGTGGAGATCAAGACCACGCCGCCGACCACCCTCGACACCACCCCGTATCCGCAGGTCCCGCGACCCGACCACGTCGCACCGCTGCTGTTCGACCTCGAGGCCGACCCGCACGAGACCACCGACCTCGCCGCGACGCACCCCGAGCGGGTCCGCACCATGACCGACGCCGTCCGCACCTGGTTCGACGACGTCGAAAGATCCCGGCACGCCGGGGCGGCCGCCTGAMPTRPNIIQIVVDDMGVGDLSCENAGASSTPRLDTLVEEGVHLQQHYSGSPVCAPARAALLTGRYPHRTGAIDTTEARGLDRLGVGETTLADDLRAGGYATGLVGKWHNGAFDAAYHPRSRGFDEFTGFQGGWRDYWDWRIERGGTVLDADGRHLTQVFTTEAIDFVRRHRDDPFFLHLAYNAPHYPLQAPEHLVQRFLAPGRTRAVATIYAMLAMVDEGVERVLTEVDRLGLTDHTIVMFTSDNGPEANGVGEDATHRFNVGMRGSKTHVFEGGIRVPLIMRWPDGLPAGIESSDLVHFVDWRPTLAAAAGVGRAGDRELDGSDAWDRLRGEGTDPGARFWQWTRYVPERESNCAMRDGRWKIVWPDWPGSLDVTPEDARRDVEIKTTPPTTLDTTPYPQVPRPDHVAPLLFDLEADPHETTDLAATHPERVRTMTDAVRTWFDDVERSRHAGAAANANANANANA
AK018_03013609hypothetical proteinGTGGACGCCTCCGACACCCCCGACCGCCGACGATCGCGACCGACCCTGCTCGGGGTCTTCACCGTGGTCGGCGATCTCCTGACCATCTCTCTGCTGCTCCTGGTTCTCTCGATCCCCCTGGTCACCGCGGCACCCGCGGCGGCGGCGGCCATGGAGGCACGGGCCGCCGTCGACCCCGGCTACCCCTCGAACCCCGCCAGGACGATCCTCACGGGGGTGCGCTTTCGTTTCCGCAGCTCGTGGTACGTCGGTCCCGCCGTCCTGGCCCTCGGCGTGGCCGGTTGGGTCGCAGTCGCCTTCTGGATCACCGCGCCCGCACCGCTGAGCGTCGCCATGCTGGCGCTCGTGCTGGCGATCGTCATGTGCGCCGCCCTGCTGACCCTCGCCCTGCCGACGGCGATGACCCGCACCGTCGGGACCCGGGCGGCGCTCGTCGAGGCGGCGCGACTGGTGGCCTCCGGCCCGTGGCGGAGCGTCGTCGCGCTGGCCGCGGCGGGGGCCGCCGTCGTCCTGGCCCGGACATACCCGACATTCGGCATCGCGCTGCTGGGCGCCGCACTGGTCGAGATCGCCTGGCGGACGTGGAACAACCCCGCGCAGCAAAGGTAAMDASDTPDRRRSRPTLLGVFTVVGDLLTISLLLLVLSIPLVTAAPAAAAAMEARAAVDPGYPSNPARTILTGVRFRFRSSWYVGPAVLALGVAGWVAVAFWITAPAPLSVAMLALVLAIVMCAALLTLALPTAMTRTVGTRAALVEAARLVASGPWRSVVALAAAGAAVVLARTYPTFGIALLGAALVEIAWRTWNNPAQQRNANANANANA
AK018_030141272hypothetical proteinGTGGGTACACGCAAGAAGGCCATGGCGGCCGTTGCGGCGATCAGCGCGACCGCGCTGACCATTGCTGGTTGCTCGGGCGGCGGGGATGCCGGTTCCGAGGAGAGCTCGACCGAGGCTACGGGCACCCTGCGCGTCCTGACCCCGGGATATCCCGCCTCGAACGAGGGGACCGAGGCGTTCGACGCCGTCGTCGCCGCGTTCCAGGAGGAGTACCCGAACGTGGAGGTCGAGCCCGACTTCGCCACGTTCGGCAACCTGAACGAGAAGATCTCCACATCGCTCGCCGGTGGCCAGCCCTACGACATCATCGTCACGGGGATCGGCTGGGTCCCGCCGTTCGCGTCCCAGGGGGCCTTCCTCGACCTGGCCGAGTTCGGCGTCGACCAGGACACGGTCTCCGAGGCGACGACTCCGGCCGCCGTGCCGGCCGTCACCTACGACGAGAGCGTGTACGCCTGGCCGCTGATCATGGGCGCCAAGCCGGCCGCGCTGAGCAAGTCGGCCTTCGAGGAGGCGGGACTCGACCCGAACTCGCCGCCGGAGACGCTCGACGAGCTCATGTCCGTGGCCGAGCAGCTCACCGAGTACGACGACAACGGCACGGTCACCCGCGCCGGGTTCGACTTCTGGGGAGTGGGCTACCGACACGTGTTCACCACGCTCCTCGGTGCGCTCGGCCCGGACCTGTACGAGAACGGCGAGCCGGGCTTCGCCGGACCCGAGGGGGAGGAGGCGCTGCAGTGGATGGTGGACGCCGTCAACGACTCGCACGTGACCGAGTACGGCCTCGAGTCGGCCTCGGGCGCGCCGCTGATGTACTCCGGTGAGGCCGCGATGGGTCTCGTGGGTGGCCACATCGACTGCGAGGACGTCGGTCAGGACGTCTGTGACGACATGGTCTTCTTCAGCGTCACCGACGAGCAGCCCTCGATGTTCACCGGTGGTCAGGTTGCCTCGATCGGGGCGGGCACCGAGCTGCCGGACGCCGCGTGGGCCTTCATCGAGGCCATGTCGACGCCGGAGGCCGAGGCCGAGATGGCTGCCATGAACTTCGCGGTCCCGGCGATCGCCGGGTCGGAGGACTCGGAGGCCGTGACTGGCAATCCGGCCAGCACGTTCGTCTACGAGAACCTGGACGACGTCGTCTTCGAGGGCGGTGCGGCCAACTGGCTCGACTTGCGCGGGGACTTCGACACCGAACTGCAGCGGGCGCTCCTGGAGGAGGCCACTCCGGCCGAGGTGCTCGAGACCCTGGCTGCCCAGTCAGAGTGAMGTRKKAMAAVAAISATALTIAGCSGGGDAGSEESSTEATGTLRVLTPGYPASNEGTEAFDAVVAAFQEEYPNVEVEPDFATFGNLNEKISTSLAGGQPYDIIVTGIGWVPPFASQGAFLDLAEFGVDQDTVSEATTPAAVPAVTYDESVYAWPLIMGAKPAALSKSAFEEAGLDPNSPPETLDELMSVAEQLTEYDDNGTVTRAGFDFWGVGYRHVFTTLLGALGPDLYENGEPGFAGPEGEEALQWMVDAVNDSHVTEYGLESASGAPLMYSGEAAMGLVGGHIDCEDVGQDVCDDMVFFSVTDEQPSMFTGGQVASIGAGTELPDAAWAFIEAMSTPEAEAEMAAMNFAVPAIAGSEDSEAVTGNPASTFVYENLDDVVFEGGAANWLDLRGDFDTELQRALLEEATPAEVLETLAAQSEPGPT0016545_7853DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_03015981melD_8COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACGAAGAGCATGCACACGACGGCTGAGTCGGCCGACGCGGCCGGACCGGCCGGGCCGACCACGCCACCCCAGGAACCCGCACCGCGGCGCCGGCGGGGCACGAACGGCATGATGCGCGCACAACGACGCGCGGGTCTGATCATGATGGCGCCGGCCCTGCTCAACGTCTCGATCTTCCTCGGCATCCCGCTGGTGCTGGCGTTCGTCCTCAGCTTCACCGACTACGGCTTCTTCGCCTCGCCGCAGTTCATCGGCCTGGACAACTACACCGAGATGTTCGCCGACCCGGACTTCCAGATCGCCGTGGTCAACACGATCATCTACACCCTCCTGGTGGTCCCGTTCGCCATGGGGCTGGCCCTCATCGTCGCGCTCGCGCTCAACATGCCGATCCGCGGTCGCGGCGTCTACCGCGTGATGTTCTACGTCCCGGTCGTGACCGCGACCGTGTCGGTGGCCACGGTCTGGCTGTGGATCCTCAACCCGAGCTTCGGGCTCGCGAACCAGATCCTCGGCCTGTTCGGCCTGCCGCCCTCGCAGTGGCTCACGGACCCGGACACCGCCCTGGTCAGCCTCGCGATGGTCGGGATCTGGCAGGGGCTCGGCACCAAGATGGTGATCTACCTCGCCGCCCTGCAGGGCGTCGACCCGGCGCTCGTCGAGGCGGCACGTCTCGACGGGGCGAACCGGTGGCAGGTCTTCTGGAACGTCACCTGGCCGTCGCTCGGTCCCGCGCACTTCTTCGTGTTCATCACGTCGATCATCGCCTCGTTCCAGGTCTTCGACCTCGTCTACGTCACGACGGAGGGCGGACCGGCGAACGCGACCCGGGTTCTCGTGTACGACATCTACCAGAACGCCTTCTCGCGCCTCGACCTCGGTTATGCGTCGGCGGAGTCGGTGTTCATGTTCGGCCTGATGGCGGTCTTCATCGCGGCCGGACTGTACCTGCAGAGGAGCAGCTCCGATGGCCGCTGAMTKSMHTTAESADAAGPAGPTTPPQEPAPRRRRGTNGMMRAQRRAGLIMMAPALLNVSIFLGIPLVLAFVLSFTDYGFFASPQFIGLDNYTEMFADPDFQIAVVNTIIYTLLVVPFAMGLALIVALALNMPIRGRGVYRVMFYVPVVTATVSVATVWLWILNPSFGLANQILGLFGLPPSQWLTDPDTALVSLAMVGIWQGLGTKMVIYLAALQGVDPALVEAARLDGANRWQVFWNVTWPSLGPAHFFVFITSIIASFQVFDLVYVTTEGGPANATRVLVYDIYQNAFSRLDLGYASAESVFMFGLMAVFIAAGLYLQRSSSDGRPGPT0016535_4597DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_03016918araQ_3COG0395L-arabinose transport system permease protein AraQATGGCCGCTGAGACGACGCGGTACCTGGTTACCACCACGAAGCGCAAGAAGAAGTCTCCTGCCGCCAGGGTCGGATGGGCCCTGTTCTACGTCGTGCTGACGCTGGCTGCTGTCGCGATGGTCGTGCCCTTCGTCTGGATGGTGCTGACGTCGCTGAAGTCGCCGGACGAGGTGAACACCTTCACCTGGCTGCCCTCGGAGCTGCACTGGGAGAACTACGTCGACGCCATGTCGGCGGCCCCGTTCGTCACCTACTTCCGCAACAGCTTCATCCTGGCGATCTCGCAGACGCTGCTCGCGATCGTGTTCGCGACCGCGGCCGGCTACTCCATCGCCAAGCTGCCGATCCCGGGCAAGAAGTATGTCCTGTGGTACGTCATCACGCTGCTGATGGTGCCGTTCCAGGTCGTGATCGTGCCGCTGTTCCTCGTGGTCAAGTCGATCCCGCTGGCCGGTGGCAACGACATCCTCGGTCAGGGCGGCAACGGGTGGCTCGACACCTGGGCCGGTCTGATCATCCCGCTGTCGATGGGTCCGCTGTTCATCTTCCTGTCGCGCCAGTTCTTCACCTCGTTGCCGAGCGAGCTCGCCGAGGCGGCGCGGATCGACGGCGTGAGCGAGTACGGGATCTTCGGCCGCATCATGCTGCCGCTGGTCAAGCCGGCGCTCGTGACCATCGCGGTGTTCCAGATCGAGGCGGCGTGGAACAGCTTCCTGTGGCCCCTGATCGTGACCACCTCGCCGGACCTGCGCCCGCTCCAGCTGGGCCTGGCGATCTTCTCCCAGGACGAGCTCAACGTGCAGTGGAACTACCTGATGGCCGGCGCCACACTGGCGACGGTACCGATGATCCTGCTGTTCATCGTGGCCCAGCGCTACTTCGTGCAGGGACTGGCGAGTTCGGGGCTCAAGGGATGAMAAETTRYLVTTTKRKKKSPAARVGWALFYVVLTLAAVAMVVPFVWMVLTSLKSPDEVNTFTWLPSELHWENYVDAMSAAPFVTYFRNSFILAISQTLLAIVFATAAGYSIAKLPIPGKKYVLWYVITLLMVPFQVVIVPLFLVVKSIPLAGGNDILGQGGNGWLDTWAGLIIPLSMGPLFIFLSRQFFTSLPSELAEAARIDGVSEYGIFGRIMLPLVKPALVTIAVFQIEAAWNSFLWPLIVTTSPDLRPLQLGLAIFSQDELNVQWNYLMAGATLATVPMILLFIVAQRYFVQGLASSGLKGPGPT0016540_2051DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_030171062Formate dehydrogenase, mitochondrialATGACCCGGCTGGATCTGCCGAGCGTCCCGGCTGGTACCGCCCCGGCCCTCGACGGCCCGGACGGCGACACCGCGCTCGGGCGGTACGCCCTGGCCATGTCGTCCGACGACCTGGCGCGGCGGCTCTTCGGCGCCGACCTGGAGCTGCTGCGCGACGTCCCCGGGACGGCGGCGCTGCCGGTCGTCTCGCGGTTCGACGACGCCACGCTGGACCGCATCGCCGACGTCGAAGCGCTCGTGACGGGCTGGGGGACGCCCCAGGTCACTGCCGAGGTGCTGGAGCGACTGCCGCGGTTGACCACCGTCATCCATGCGGGCGGCAGCACCGAGTCGGTGATCGCGGCCGATGTCCGGCCGCGGCTGCAGCGGTCGAACGCCGGGGCGGTGAACGCCGTCCCGGTCGCCGAGTACTCGCTCGCGATGATCCTGCTCGCCTGCAAGCAGGTGTTCGCCGCGCAGCGGATCTACCGGCAGCGTCGCGAACGGATCGACCGGGAGGAGGCGTTCCCCGACGCCGGGGTCTTCGGTCAGACCGTGGGGATCGTCGGCGCCTCGCGCATCGGGCGCCGCACGCTGGAGCTCCTGCGTCCGTTCGACCTGCGGATCCTGGTGTCCGACCCGTTCGTCTCGGCGGAGGAGATCGCCGCCCTGGGCGCCGAGAAGGTGTCGTTGGCGGAGCTGCTCGGCCGCAGCGACGTCGTCTCGATCCACGCGCCGCTGAACGAGGCGACCCGCGGGATGATCGGCGCGGACGAGCTCGCACTCATGCCCGCCGGTGCGACGTTGCTGAACACCGCCCGTGGCGGGGTCGTCGACCTTCCGGCGTTGGAGACCGAGCTGGTCTCCGGCAGGCTCGAGGCGATCCTCGACGTGACCGACCCGTTCGAGCCGTTGCCGGCCGACTCCCCGCTGTGGGAGTGCGAGAACGTGGTGATCACGCCGCACGTCGCCGGGTCGATGGGGACCGAGCTGCAGCGCATGGGCCGCCACGTGGCCGCGGAGCTCGGGCGGGCGCTCCGGGGGGAGCCGCTCGCGGTCAGCGAGTCGTCGGCGGGGCGCTGAMTRLDLPSVPAGTAPALDGPDGDTALGRYALAMSSDDLARRLFGADLELLRDVPGTAALPVVSRFDDATLDRIADVEALVTGWGTPQVTAEVLERLPRLTTVIHAGGSTESVIAADVRPRLQRSNAGAVNAVPVAEYSLAMILLACKQVFAAQRIYRQRRERIDREEAFPDAGVFGQTVGIVGASRIGRRTLELLRPFDLRILVSDPFVSAEEIAALGAEKVSLAELLGRSDVVSIHAPLNEATRGMIGADELALMPAGATLLNTARGGVVDLPALETELVSGRLEAILDVTDPFEPLPADSPLWECENVVITPHVAGSMGTELQRMGRHVAAELGRALRGEPLAVSESSAGRPGPT0009155_4970DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
AK018_030181044degA_7COG1609HTH-type transcriptional regulator DegAATGGAGCATCGTTCCGCCCGGCTGGTCGACGTCGCCCGGGCCGCCGGGGTCTCGACCGCCACCGCGTCGAGGGCTCTCAACCCGAGCAGCCGATCCGTGCGCGACGCGAACCGCGCACGGGTGCTCGCCGCCGCCGAAAAGCTCGGCTACACGACGAACCTCGCGGCCCAGACCGTGGCGCGCGGCCGGACGCGCGGCGTAACCCTGCTGCTCAAGACCATGCCGGAGGACTACGCAAACCCGATGGTCGCCGGCGTGGTCAACGCCGCACACCGGGAAGGACTCCCGATCAACCTGGTCGTCGCAGGATCGGGGGCACAGGACCTCGTCCGGGAGGTCGACGCCGCTCGCGGCCAACGCACCCAGATCCTCATGACCATGGGCGGCCGCGCCATCGACGACCGAGGGACCCCCGACCTGGTCACCGCGCTGCAACGCTACGAGGCCGACGGCGGCCGCGTCGTGCTCATCACCCAACCCGGCCTTCCGTTCGACACGGTCGCCTACGCCAACCGGGAGGGCGCCCGCGAGCTCGCCCGCGAGCTCGTCGGCCTGGGGTACGAGCACTTCGCGATCCTTGCCGGGTACGCCAACGGGATGACACAGCGGGACCGCACCCAGGGGTTCGTCGAAGGACTTACGTCGTGCGGTGTCGAGATGTCCGCCGACCGCGTGGTCACCGGCGACTTCAGCCGCGACGCCGCCTACGCCGCGGCAGGCGACCTCCTACGGCGCGGCATCCGGCTCGACGCGATCTTCGCCGTCAACGACGCGATGGCGCTCGGCGCCCTCACCCTCCTCCGCGACGCCGGCCCCCGCGGCCGGGGTGTCGCCGTGGCCGGGTTCGACGACATCAAGGCCCTCCGCGACGTCACCCCCGGGCTGACCACCGTGCACCTGCCCTGGGACGACGTCGCCGCCGAGGCGCTCCGCCTCGCCCTGAGCGAGCGCCCCGACGAGCCTCGCGTCAGCATCATCGAGGGGCACGTCGTCGTGCGCGAGAGCACCCCCGACCGACACATGGCACCCGCACTGCAGCCCTGAMEHRSARLVDVARAAGVSTATASRALNPSSRSVRDANRARVLAAAEKLGYTTNLAAQTVARGRTRGVTLLLKTMPEDYANPMVAGVVNAAHREGLPINLVVAGSGAQDLVREVDAARGQRTQILMTMGGRAIDDRGTPDLVTALQRYEADGGRVVLITQPGLPFDTVAYANREGARELARELVGLGYEHFAILAGYANGMTQRDRTQGFVEGLTSCGVEMSADRVVTGDFSRDAAYAAAGDLLRRGIRLDAIFAVNDAMALGALTLLRDAGPRGRGVAVAGFDDIKALRDVTPGLTTVHLPWDDVAAEALRLALSERPDEPRVSIIEGHVVVRESTPDRHMAPALQPPGPT0017992_5236DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_03019363hypothetical proteinATGAGTGCCGAGACACGATTTCCCCGGTCCGTGTACGACGTGGGGACCGAACCCGATCCGCGATTCAGCCTGGCCAACGAACGCACCTACCTGGCGTGGGTACGCACGGCGATCGCGATGTTCGCCGCCGGGGTGGCGCTCGAGGCCCTGGCGGTGCCCGTCGCCGCCGGGTTCCGGCTCGCGTCGGCCGGCGTCTTCGTGCTGCTCGGCCTCCTCGCTCTCGTCCAGGGATTCCGCAACTGGGTGCGCACCGAGCGGGCCCTGCGCCGTCACCGCACATTGCCCGGCCCGTCGATCGGGATCCTCCTCGGCTCGGGGACCGGGCTCGCGATGCTCCTGCTCGTGGCGGGAGTGTTCGTGTGAMSAETRFPRSVYDVGTEPDPRFSLANERTYLAWVRTAIAMFAAGVALEALAVPVAAGFRLASAGVFVLLGLLALVQGFRNWVRTERALRRHRTLPGPSIGILLGSGTGLAMLLLVAGVFVNANANANANA
AK018_03020339hypothetical proteinGTGACGGCAGGCCCCCCCTTCGACCCGGGTCTGCAGCCCGAACGGACACTGCTCGCCTGGCGTCGGACCTGCCTGGCGTTCGGCGTCGCGGTCGCCATAGCCGTCCGGTTCGCCGCCGAGGTGCTGGGCCCCTGGATCGCCGTGCTCGGTGCCGCAGGGCTGGTCACGGCCGTGGCGGCGTATCTGGTCGCGGCCCGGCGCTACCGTGTCGCCCATGACCGGCTGACGGCGGGCGGGGACCTTCCGGTCGACGGGACCGCTCTGGGCCTGCTCACCGTGACCGGCCTGGTCGTCGGCCTGGCCAGCGCAGCTTTCGTGACGGGAGCGATGTGGAGATGAMTAGPPFDPGLQPERTLLAWRRTCLAFGVAVAIAVRFAAEVLGPWIAVLGAAGLVTAVAAYLVAARRYRVAHDRLTAGGDLPVDGTALGLLTVTGLVVGLASAAFVTGAMWRNANANANANA
AK018_03021963COG1262Formylglycine-generating enzymeATGACAGCAGACGCGACGACCCGCGGCACGACGGCGGACCTTGTCCGCGTCGACAGCGCCACCTTCCGCATGGGGTCCGAGCGTTTCTACCGCGAGGAGGCGCCCGTGGTGGAGGTGACGGTCGACGCCTTCGAGATCGCGCGCACCCAGGTCACCAACGCCGAGTTCGCCCGTTTCGTGGCCGAGACCGGCTACGTGACCACCGCCGAGCGACGGCTGGACCCGGCCGAGTTCCCCGGCGCCGACCCGGCGATGCTCGAACCCGGTTCGCTGGTCTTCACCCCGACGACCGGGCCGGTCGACCTGCGCGACTGGCGGCAGTGGTGGCGGTGGCAGCCGGGAGCGTGCTGGCACCGGCCCGCCGGGCCCGGGTCGGGCCTCGACGGGCTCGACGATCATCCGGTCGTGCAGGTCTCGTTCGACGATGCCGCCGCCTACGCCGACTGGGCGGGGCTGCGGCTGCCCACCGAGGCCGAGTGGGAGCTGGCCGCCCGCGGGGGACTCGACGGCGCGACCTACACCTGGGGCGAGGAACCGCAGGACGGGACCCGGGCCAACACCTGGCAGGGCGCCTTCCCCTACCGGAACACCGGTGCCGGTACGGGCCGCTGGGTCGGGACGTCTCCCGTCGGGGCGTTCGCGCCGAACGGGTTCGGTCTCGCGGACATGGCGGGCAACGTCTGGGAGTGGACCACGACGCCGTGGAGCGCCGGCCACCGGCGGCCGGCGACACCGTTGCCGACCGAGGGCCCCGCCTGCGCCTGCGGGTGCAGCCCGGACCCGGCGGGGGCCCGTGACGGCCGGAGCGCCGGACCCGCGGACGTACCTCGGCAGCAGCGTGTGCTCAAGGGAGGTTCCCACCTCTGCGCCCCCGAGTACTGCCTGCGCTACCGGCCTGCGGCGCGGTCGCCTCAGACGCCGGACTCCGCGACCACGCACCTCGGGTTCCGCTGCGCGCGCTGAMTADATTRGTTADLVRVDSATFRMGSERFYREEAPVVEVTVDAFEIARTQVTNAEFARFVAETGYVTTAERRLDPAEFPGADPAMLEPGSLVFTPTTGPVDLRDWRQWWRWQPGACWHRPAGPGSGLDGLDDHPVVQVSFDDAAAYADWAGLRLPTEAEWELAARGGLDGATYTWGEEPQDGTRANTWQGAFPYRNTGAGTGRWVGTSPVGAFAPNGFGLADMAGNVWEWTTTPWSAGHRRPATPLPTEGPACACGCSPDPAGARDGRSAGPADVPRQQRVLKGGSHLCAPEYCLRYRPAARSPQTPDSATTHLGFRCARNANANANANA
AK018_030221293COG0531putative transporterATGAGCACCGTGGACGGACTCGCACGACGACTCGGTACGCGGGACGCCGTCGCGATCGGGCTCGGTTCGATGGTGGGAGCGGGCATCTTCGCGGCCTTCTCCCCCGCCGCCCGCGCAGTGCTGCCCACCGGGACCGGGTGGGCGCTGCTCGGGGCGCTGGCGCTGGCTGCCCTGGTCGCCTACGCGAACGCGACGTCGTCGGCGCAGCTCGCCGCGCAGTACCCGGTGGCCGGCGGCACCTATGTCTACGGTCGCGAACAACTCGGCCCCTGGTGGGGGTACCTCGCCGGGTGGGGGTTCGTCATCGGCAAGACGGCGAGCTGTGCCGCGATGGCGCTGACCGTCGCCGCCTACGCCGCACCGCCCGGCTGGGAACGCCCGGTCGCCGCTGTCGCGATCGTCGCGCTGGCCGCGGTCAACTATCGGGGCGTGACGCGGACCGCCCGGCTGACCCGGTGGATCGTGGCGCTCGTCCTGCTTGTGCTGGCGACGTGGACGGCGTTGGTGTGGTCCGGGGTGGCCGGGCCGGTCGGAGTGCCACTGTCCGACGGCGGAGCCACGGCCGGGACGGGATGGACCGCGGCGTACGGGGTGCTGCAGGCGGCCGGGTTGCTGTTCTTCGCGTTCGCCGGGTACGCCCGCATCGCCACGATGGGTGAGGAGGTCCGCGACCCCCGGCGCACGATCCCCCGGGCGATCCTGCTCGCGCTGGCCGGCGCCGTCGTCGTGTACGCGGTCGTGGCCGTCACACTGCTGGGTTCGCTCGGCCTCGAGGGCGTCGCGGGGACGACGGCGCCGCTCGCCGCGGCCGTCGAGAGCTCGCCCTGGGCCGGCGTCGTGGTGCGCGTCGGGGCCGCGGCGGCCTCGCTGGGGGCGCTGCTAGCGCTCGTGGCCGGCATCGGGCGCACGTCGCTGGCGATGGCGCGCGAGGGCGACCTGCCGCGACGCCTGGCAGCGGTGCACCCCCGGTTCGGCGTGCCGCACCGGGCCGAGGTGGCTCTGGCGGCGGTCGTCGTCGTGCTGGTGCTCACCGTCGACCTGCGGGGAGCGATCGGGTTCTCGAGCTTCGGGGTGCTCCTGTACTACGCGGTCGCCAACGCCGCGGCGTGGACGCAGACGGGGACGGACCGGCTGTACCCCCGGGCGCTGCAGGCGTTCGGGCTGGTCGCGTGCCTGGTGCTGGTGGTGACTCTGCCGCTCGAGGCCGTCGTCGTGGGCGCGGGAGTGTTCGCCGTCGGGATCCTCGTCCGGGCGGTCCGACTGCGACAGAGGCCGACAGAGCAGCGGCGCTGAMSTVDGLARRLGTRDAVAIGLGSMVGAGIFAAFSPAARAVLPTGTGWALLGALALAALVAYANATSSAQLAAQYPVAGGTYVYGREQLGPWWGYLAGWGFVIGKTASCAAMALTVAAYAAPPGWERPVAAVAIVALAAVNYRGVTRTARLTRWIVALVLLVLATWTALVWSGVAGPVGVPLSDGGATAGTGWTAAYGVLQAAGLLFFAFAGYARIATMGEEVRDPRRTIPRAILLALAGAVVVYAVVAVTLLGSLGLEGVAGTTAPLAAAVESSPWAGVVVRVGAAAASLGALLALVAGIGRTSLAMAREGDLPRRLAAVHPRFGVPHRAEVALAAVVVVLVLTVDLRGAIGFSSFGVLLYYAVANAAAWTQTGTDRLYPRALQAFGLVACLVLVVTLPLEAVVVGAGVFAVGILVRAVRLRQRPTEQRRPGPT0020810_6223DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
AK018_030231713cdr_2Coenzyme A disulfide reductaseATGGCCGAGCGGCTCAAGATCGTCGTCGTCGGGTCGGTGGCCGCCGGCACCTCCGCCGCGGCCAAGGCCCGCCGCGGCTCGGAGGACGCCGAGATCGTCGTCTACGAGCGCGACACCGACATCTCCTACTCCGGCTGCGGCCTGCCGTACTACCTGGGCGGGCGGGTCGAGACCATCGACGAGCTCACCCCGCGCGACGCCGCCTGGTTCGCGAAGCGATACGGCATCGACGTGCGCACGGGGCACGAGGTGACCGGGGTGGATGCCGCGGCACGGACCGTCACCGTCCGCGACCTCGCCTCGGGCGAGACCTTCACCGACGACTACGACGAGCTCGTCCTCGCCACCGGGGTCTCCCCCGTGGTGCCCCCGCTGCCCGGTGTCGACGCCGACGGCGTGTTCACGCTGCGCAACCCCTCGGACGCGACCGCGATCCGCGAGTGGATCGAGAACCGTGGCGCCCGGCGGGCGGTCATCGTGGGCGCCGGGTACATCGGCCTGGAGACCGCCGAACAGCTCACCGAGCGCGGCCTCGACGTCACCGTGGTGGAGATGGAGGCGCACTCCATGCCCCGGATGGACGCCGACGTCGCCGACCGCGTCGACGACGAGCTGCGCAGCCGCGGCGTCGAGCTGCTCACCCGTGCCCGGGTCACCTCGATCGAGACGTCCGACGACGGCGCGGCGCGGGCCGTGCGCGTCGAGGCCGGCGCCGGGCCGGGGTCGGGCGACGCTGAACGCACCATGGAGACCGACCTCGTGGTCGTGGCCGTGGGGGTCCGACCCAACCTGGACCTGGCCCGCGCGGCCGGCGTGCGCGTCGGCGAGACCGGTGCGATCGCCGTCGACCCGGCGGGCCGCACCTCCGCCGACCACGTGTGGGCCGTCGGGGACGTCGCCGAGAGCTTCGACCTGATCACCGGCGATCCGGCCTGGGTGCCCCTCGGCTCGACCGCCAACAAGACGGGTCGCATCGCCGGGGACGCGCTGACCGGCGGGGACCTGGAGCACCGCGGGATCCTGGGCACGTCGATCGTACGGGTCTTCGACCTGGCCGTCGCCCAGACCGGACTCACCGAGGACCGGGCACGAGCGGCCGGGTTCGACCCCGTCGTCGTGCACAACATCAAGCCCGACCGCCCCGTCTACCTCGGCGGGCAGGAGATGCTGATCAAGGCCGTCGCCGACCGGCGCACCGGGCGCCTCCTCGGGGCGCAGGCCGTCGGACCGTCGGGCGTCGACAAGCGGATCGACGTCCTCGCCACCGCCATCACCTTCGGGGCGAAGGCCGAGGATCTGTTCCACCTCGACCTCGCCTACGCCCCCACCTACGCGACCACCAAGGACCCGGTGCACTACACGGGCATGGCGCTCGACGGCGCGATCGAAGGCCGAGCTCCCCTGATCTCCGCGAGCGAGCTGGATCGTCGCCGCGGCGACGGCGAGAAGATCCAGGTCGTGGACGTCCGGTCGGCCAAGGACCGCGCGAAGTCCGCCGTCGACGACTCCGTCCACATCCCCCTGGCCGAGCTGCGGGCCCGGGCCGACGAACTCGACCCCACCCTGCCCACGGTGACCTACTGCAACAAGGGAGTCACCGGCAACGCCGGGCAGAACGTGCTGCGGGGCCGCGGGTTCGCCGACGTCGCGAACCTCTCCGGCGGGAACAAGACCTACCAGCGTCACGCACGGGGCCGCGACCTGCCAGGATGAMAERLKIVVVGSVAAGTSAAAKARRGSEDAEIVVYERDTDISYSGCGLPYYLGGRVETIDELTPRDAAWFAKRYGIDVRTGHEVTGVDAAARTVTVRDLASGETFTDDYDELVLATGVSPVVPPLPGVDADGVFTLRNPSDATAIREWIENRGARRAVIVGAGYIGLETAEQLTERGLDVTVVEMEAHSMPRMDADVADRVDDELRSRGVELLTRARVTSIETSDDGAARAVRVEAGAGPGSGDAERTMETDLVVVAVGVRPNLDLARAAGVRVGETGAIAVDPAGRTSADHVWAVGDVAESFDLITGDPAWVPLGSTANKTGRIAGDALTGGDLEHRGILGTSIVRVFDLAVAQTGLTEDRARAAGFDPVVVHNIKPDRPVYLGGQEMLIKAVADRRTGRLLGAQAVGPSGVDKRIDVLATAITFGAKAEDLFHLDLAYAPTYATTKDPVHYTGMALDGAIEGRAPLISASELDRRRGDGEKIQVVDVRSAKDRAKSAVDDSVHIPLAELRARADELDPTLPTVTYCNKGVTGNAGQNVLRGRGFADVANLSGGNKTYQRHARGRDLPGNANANANANA
AK018_03024414arsC2_2COG0394Arsenate-mycothiol transferase ArsC2ATGCCCACCGTCCCGTCCGCCCTGTTCGTCTGCGTCCACAACGCCGGCCGCTCCCAGATGGCCGCCGGGTTCCTGCGCGCTCTCGGCGGCGGTGCCGTCGAGGTGCGCTCCGCGGGTTCCGCCCCGAAGGACTCGATCAACCCCGTGGCCGTCGAGGCGATGGCCGAGCGCGGGATCGACATCGCGTCCGAGCAGCCCAAGGTGCTCACCGACGACGCCGTCCAGGCGTCCGACGTCGTGATCACCATGGGGTGCGGCGACGCCTGCCCCGTCTACCCCGGCAAGCGGTACGAGGACTGGGAGCTCGACGACCCCGCCGGTCAGGGCATCGAGGCCGTCCGCCCCATCCGGGACGAGATCGAGCGGCGCGTGCGCGCCCTGCTGGTCTCCCTCGACGTCGAGGCGGTGGCCTGAMPTVPSALFVCVHNAGRSQMAAGFLRALGGGAVEVRSAGSAPKDSINPVAVEAMAERGIDIASEQPKVLTDDAVQASDVVITMGCGDACPVYPGKRYEDWELDDPAGQGIEAVRPIRDEIERRVRALLVSLDVEAVAPGPT0004715_1927DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004715-arsC-K03741NANA
AK018_030251071arsC_3Arsenate reductaseATGACCACGCTCACCCCCGCCCCGGACGACGCCGCGTGCGCACCGCGGCACACCGCCGCGGACCACGCCATCGGTACCGACGCCGCCGACGCCGTCGCCGCCGCGCTCAAGGCGCTCGCCGACCCGCTGCGGCTGCGCATGCTGTCCGCCGTCGTCACCTCCCCCGACGGCCAGGCCTGCGTCTGCGACCTTGCCGAGCTCACCGACGTCTCCCAGCCCACCGTCTCCCACCACCTCAAGGTGCTGCGCGACGTCGGCATCCTCACGTCGCAGCGACGCGGCACCTGGGTCTGGTACCGCGTCGCTCCCGCCTACCGGGGCGCCGTCACCACGCTGCTCGACCGGTTCGCCCCCGCGGCGCTCGCCGTCGACCCCGACGCCGGCTCCCGCCCGACGCTCATGACCGGCCTCACCGACGTCGACCCCGCGCTGGACCGGCTCGCCGACTCCCTCGCCGCACGGCATCCCGACGTCCCGGCGGGCGAGGTCCGGCGCATCGTGCGCGAGTCCTACACCGGCCTGGCCCGCCGCGGAGGCATGCCGTTGCACCTGCTCGCGCTCACCGAGCACTTCGCGGGGCAGCGCCTCGCCGACGTCGAACGCGCCACCGGCGACCACGGTCCGCGGAGCGCCGCCGCGCGGCCGCCGCAGGTGCTGTTCGTGTGCGTCGGCAACGCCGGACGCTCCCAGCTCGCCGCCGCGCTGCTGCACCGGTACGCCGGCTCGCGGGTCGTGGTGCGCTCGGCCGGGTCGATGCCGGCCGCGGACGTCCACGACACCGTCCGTCCGCTGCTCGCCGAGCTCGCCCGTGCGAGCGACAGCGGCGACGACAGGACGGCGATCTTTCCCAAGCCGCTGACCGACGACGCCGTGCGCGCCGCCGACGTCGTGGTCACCATGGGGTGCGGCGACGCCTGCCCCGTGCTGCCCGGCAAGCGGTACGAGGACTGGGTGGTGGGTGACCCCGCCCTCGCCTCGGACCAGGGCGCGCGCGCCATCCGGGACGAGATCGACCGCCGCGTCCGCGCGCTGCTCGCCGACCTCCTGCCCGACCTCGACCTGCCGAACTGAMTTLTPAPDDAACAPRHTAADHAIGTDAADAVAAALKALADPLRLRMLSAVVTSPDGQACVCDLAELTDVSQPTVSHHLKVLRDVGILTSQRRGTWVWYRVAPAYRGAVTTLLDRFAPAALAVDPDAGSRPTLMTGLTDVDPALDRLADSLAARHPDVPAGEVRRIVRESYTGLARRGGMPLHLLALTEHFAGQRLADVERATGDHGPRSAAARPPQVLFVCVGNAGRSQLAAALLHRYAGSRVVVRSAGSMPAADVHDTVRPLLAELARASDSGDDRTAIFPKPLTDDAVRAADVVVTMGCGDACPVLPGKRYEDWVVGDPALASDQGARAIRDEIDRRVRALLADLLPDLDLPNPGPT0004705_1938DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325NANA
AK018_030261134acr3_2COG0798Arsenical-resistance protein Acr3GTGTCGACCACCCCGACGGACGCCCCCGTCCGCGCCCGCCTGTCCACCCTCGACCGCTGGCTGCCGCTGTGGATCGGTCTCGCCATGGTCGGCGGGCTGCTGCTGGGCCGCTACGTCCCCGCACTCGGCCACACCCTCGAAGCCCTCGAGATCGCCGGGATCTCCCTGCCGATCGCGCTCGGCCTCCTCGTGATGATGTACCCGGTGCTCGCCGGGGTGCGCTACGACCGCATGGCCGCCGTCACCGGGGACACGAAGCTGCTCGTGAGCTCCCTGGTGCTGAACTGGCTCGTCGGTCCGGCGCTGATGTTCACCCTGGCGTGGATCTTCCTGCCCGACCTGCCCGAGTACCGCACCGGCCTCATCATCGTCGGGCTCGCCCGCTGCATCGCCATGGTGGTCATCTGGAACGACCTCGCCTGCGGCGACCGGGAGGCCGCCGCCGTCCTCGTGGCGATCAACTCCGTGTTCCAGGTCGTCATGTTCTCCGTGCTCGGGTACTTCTACCTGACCGTGCTCCCCGGCTGGCTGGGACTCGACACCGCCGGACTCGACGTCTCGGTCGGGCAGATCGCCCTCAACGTGCTCGTCTTCCTCGGGATCCCGCTGGCCGCAGGATTCGCCTCCCGCGCGATCGGCGAACGCACCCGCGGCCGCGACTGGTACGAGGACACCTTCCTGCCGCGCATCGGCCCCTGGGCGCTGTACGGGCTGCTGTTCACGATCGTGCTGCTCTTCGCCCTCCAGGGCGAGCAGGTCTCCGAGAACCCCGCCGACGTGGCGCGCATCGCCCTACCCCTCCTGGCCTACTTCGGCTTGATGTGGGCGATCGGCATGGTCACCGGCAAGCTGCTCGGCCTCGGCTACGCCCGCACCGCGACACTGGCCTTCACCGCCGCCGGCAACAACTTCGAGCTCGCCATCGCCGTCGCCATCGCGACCTTCGGCGCCACGTCCGGCGAGGCCCTCGCCGGCGTCGTCGGGCCGCTCATCGAGGTCCCCGTCCTCGTGGGCCTCGTCTACGTCACCCTGTGGGCCGGCCGCCGGTGGTTCGGCGTCGACCCGCGCGTCACCCCGGACCGCAACGTCGCACCCACCGGGGTCACGCCGTCGGACACGGAGGTCCGTCCATGAMSTTPTDAPVRARLSTLDRWLPLWIGLAMVGGLLLGRYVPALGHTLEALEIAGISLPIALGLLVMMYPVLAGVRYDRMAAVTGDTKLLVSSLVLNWLVGPALMFTLAWIFLPDLPEYRTGLIIVGLARCIAMVVIWNDLACGDREAAAVLVAINSVFQVVMFSVLGYFYLTVLPGWLGLDTAGLDVSVGQIALNVLVFLGIPLAAGFASRAIGERTRGRDWYEDTFLPRIGPWALYGLLFTIVLLFALQGEQVSENPADVARIALPLLAYFGLMWAIGMVTGKLLGLGYARTATLAFTAAGNNFELAIAVAIATFGATSGEALAGVVGPLIEVPVLVGLVYVTLWAGRRWFGVDPRVTPDRNVAPTGVTPSDTEVRPPGPT0004705_522DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325NANA
AK018_03027732hypothetical proteinATGAGTTCAGCCAGCGCTGGCCCGAGGTCGACGACGCCGGACGCCCGGCCGCCGTCGGACGGCGGCACCCGCGACCGGATCCGCGACGCCGCGGTGCTGCGGTTCGCGCGGTCCGGCTTCGACGCGTCCGTCCGTGCCGTCGCCGCGGACGCCGGGGTCAGTGCTGCGCTCGTCATCCATCACTTCGGGTCCAAGGACGCCCTGCACCGCGCCTGCGACGAGCACGTGCTCGCCTGGATCGTGGCGTCCAAACGGCACAACATGGGACGGGCCACCGGCGGTCAGCTGCTGCAGGTGCTCGCCGAGTCCGACGAGTACGCGCCGCTGCTCGGGTACGTGATGCGGTCCCTGCAGAGCGGCGGCGACGTCGCCCGGGCGTTCGTGCAGCACATGATCGACGACGCGCGGGTCTACGTCCGCGAGGCCGTCGCCGACGGCATCGCCAAGCCGTCGGTGGACGAGGACGCGCGGGCCCGCTACCTCACGCTCTCGGCGCTGGGCACCCTGTCCCTGTCGTTGACGCTCGACCCCCCGGACGACCCCGAGAACTTCAGCGCCACGCTGCGGACCTTCCTGGCCGAGCAGTACCTGCCGATGATCGAGATGTTCGCCCAGGGGTTCCTCACGAGTCGTCGCATGCTCGACGACTATCTCCTGTACCTCTCCGACCCTCCGACCGGCGGCCACCCCGACGACGCACCAGCCACCACGACAACGAACGAGGGACCATGAMSSASAGPRSTTPDARPPSDGGTRDRIRDAAVLRFARSGFDASVRAVAADAGVSAALVIHHFGSKDALHRACDEHVLAWIVASKRHNMGRATGGQLLQVLAESDEYAPLLGYVMRSLQSGGDVARAFVQHMIDDARVYVREAVADGIAKPSVDEDARARYLTLSALGTLSLSLTLDPPDDPENFSATLRTFLAEQYLPMIEMFAQGFLTSRRMLDDYLLYLSDPPTGGHPDDAPATTTTNEGPPGPT0029255_634DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029255-cecR|ybiH-K23777NANA
AK018_030281014COG1131Multidrug efflux system ATP-binding proteinATGACCACCACCGCCGCGACGGGCACGCCGGGAGCCGGCGCACCCGCGATCGAGACCCGCGACCTGCACAAGCACTTCGGTTCCACCCGCGCCCTGGACGGCCTCGACCTGACCGTCGCCGAGGGCGAGGTCGCCGGCTTCCTCGGCCCCAACGGCGCCGGGAAGTCCACCGCGATCCGCGTCCTGCTCGGCCTGCTGCGCCCCACCTCCGGCAGCGCCCGCCTGCTCGGCGGCGACCCCTGGACCGACGCCGTCGCGCTGCACCGCCGGCTCGCCTACGTGCCCGGCGACGTCACCCTGTGGCCCAACCTCACCGGCGGCGAGGCCATCGACTTCCTCACCCGGCTGCGCGGCACCCCCGACGCCCGGCGCAAGCGCGAGCTGCTGGAGGCCTTCGAGCTCGACCCCACCAAGAAGGCCGGCACCTACTCCAAGGGCAACCGGCAGAAGGTCGCGCTCGTCGCCGCGTTCGCCACCGAGGTGCCCCTGCTGATCCTCGACGAACCCACCTCCGGTCTCGACCCCCTCATGGAGGCCGTGTTCACCGAGCAGGTCCGCCGGGCCAAGGACCGCGGCACGTCGGTGCTGCTCAGCAGCCACATCCTGTCCGAGGTCGAGAAGGTCTGCGACACCGTCACCATCATCCGGTCCGGCCGCGCCGTCGAGTCCGGCACCCTCGACGAGCTGCGGCACCTGACGCGGTCCAGCGTGACCGCCGTCGTCGAGGGCGACCCGGCGTCCGTGGCACGGCTCGACGGCGTCCACGACCTCGTCACCGCCGACGACCCCGAGGGCACCCGGCTCACCTTCGACGTCGACAACGCCGCGATGGGAGCCACCCTGACCGAGCTGTCCCGGCTCGGGGTGCACTCGTTCAGCGCCGCCCCGCCGTCGCTCGAGGAGCTGTTCCTGCGCCACTACGGCGACGACGTGTCCGACGACGGCACGCCGGCCGGCGACGGTCGGCCCGGCGGCCGGCACGCGGCCGAGGCCAGCGGGGCAGGTGCCCGATGAMTTTAATGTPGAGAPAIETRDLHKHFGSTRALDGLDLTVAEGEVAGFLGPNGAGKSTAIRVLLGLLRPTSGSARLLGGDPWTDAVALHRRLAYVPGDVTLWPNLTGGEAIDFLTRLRGTPDARRKRELLEAFELDPTKKAGTYSKGNRQKVALVAAFATEVPLLILDEPTSGLDPLMEAVFTEQVRRAKDRGTSVLLSSHILSEVEKVCDTVTIIRSGRAVESGTLDELRHLTRSSVTAVVEGDPASVARLDGVHDLVTADDPEGTRLTFDVDNAAMGATLTELSRLGVHSFSAAPPSLEELFLRHYGDDVSDDGTPAGDGRPGGRHAAEASGAGARPGPT0006725_12463DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_030291608COG3559Multidrug efflux system permease proteinATGCTGACCGGGACGGGTGCGCTGGTCCGGTTCGTGCTCCGTCGCGACCGGGTGCGCCTCGCCGTGTGGGCCGGATCCATGGTGGCGTTCTACGCCTACTTCACCTTCGCGCTGGACACCGTCTTCGCCGACGAGGCCGCCCAGCAGGGCCGCGCCGCCATCATGGAGACCCCCTCCGGCATCGTCATGGGCGGACCCGGCTACGGCCTCGACCACTACACGACCGGCGTGGCCATGGCGAACGAGGGCATCACCTGGGTCGTCCTCGCCCTGGCGATCTTCTCCGTCCTGCACATGGTCCGGCACACCCGGGCCGAGGAGGAGACCGGACGCTCCGAGCTCGTGCGGGCCGCCGTCGTCGGACGGCACGCACCCGCCGTCGCCGCCCTCACCACCCTCGTGGTCGCCCAGGCCGTCATCGCCGTCCTCTCGGCGTTCGCGATGGTCGCCGTCGGGGACCTCGCCGTCGTCGACTCGCTGGCCATGGCGGTCGGGTCCGCGCTGAGCGCGATGGTCTTCGGCGCCGTCGCGCTCGTCGCGTGCCAGGTGTTCGCCGCAGGCCGGGCAGCCGTCGGCGCCTCGCTCGCCGTGTTCGGGGCCGCATTCGTCGTGCGAGCCGCCGGCGACATGCGCGAGACCGGCGGCTCGGCGCTGTCCTGGTTCTCGCCCATCGCCTGGGTCCAGCAGATGCGGGCCTTCGTCGACCTGCGCTGGTGGCCCGCGCTGCTCTCCGTCGTCGCCCTCGTCGTGCTCGTCGTCGTCGCCTCCGCCCTCGCCTCCCGGCGCGACTTCGACGGCGGGCTCGTCGCCGGACGGCCCGGCCGGGCCGACGCGCGCGCGTCGCTGCGCTCGCCGTTCGCGCTCGCCTGGCTACAGCAGCGCGGCGCCCTGCTGTGGAGCTGCCTAGGCCTGGGCCTGCTGTGGTTCGCCTCCGGCACCCTCCTGCCCGAGGTCGGCTCGATGATCGGCGACCTCGTCGCCGAGAACCCCGCGATCGCGCAGGTCTTCGGCGCCGACGGCACCGAGCTGTCCGTCGCGTTCGTCGCCGTGATGATCCTGTACGCCGCCCTGTGCTGCGCGGGCTACGCCGTCGTCATGGCCCAGCGCCCCAAGGCCGAGGAGACCTCCGGCCGCGCCGAGGTCGTGTTCTCCCACCCCGTGTCCCGGTACCGCTGGCTCGGCGCGCAGGTCCTCGTCGCCGGGCTCGGCACCGCCGTGCTGCTCGCCGTCAGCGTCTACGCCACCTGGCTCGGTGCCGTGGCCGTCGGGTGGGACGACCAGACCTTCGGCGACTACACGACCGTCGTGTGGACGTACCTGCCGGCGCTCGCGGTGTTCCTCGGGCTGGTCGTGGCGCTCTACGGCTGGGTGCCGCGCCTGACCGGGCTCGCCTGGGCGCTGCTGGCCTACACGTTCGTCATCGGGATGTTCGGCGGCCTCTTCGACCTGCCCGACTGGGCGTTCCGGCTCTCCCCGTTCGACTGGGTGCCGGCCGCGTTCAGCGGGGAGTTCTCCGCCGGGGACGTCGCCGTCCTCTGGGGGGTCGCGATCGTGCTCGGGGCGCTGGGGTTCATCGGCTTCCGGCGTCGCGACCTGGTCACGGGCTGAMLTGTGALVRFVLRRDRVRLAVWAGSMVAFYAYFTFALDTVFADEAAQQGRAAIMETPSGIVMGGPGYGLDHYTTGVAMANEGITWVVLALAIFSVLHMVRHTRAEEETGRSELVRAAVVGRHAPAVAALTTLVVAQAVIAVLSAFAMVAVGDLAVVDSLAMAVGSALSAMVFGAVALVACQVFAAGRAAVGASLAVFGAAFVVRAAGDMRETGGSALSWFSPIAWVQQMRAFVDLRWWPALLSVVALVVLVVVASALASRRDFDGGLVAGRPGRADARASLRSPFALAWLQQRGALLWSCLGLGLLWFASGTLLPEVGSMIGDLVAENPAIAQVFGADGTELSVAFVAVMILYAALCCAGYAVVMAQRPKAEETSGRAEVVFSHPVSRYRWLGAQVLVAGLGTAVLLAVSVYATWLGAVAVGWDDQTFGDYTTVVWTYLPALAVFLGLVVALYGWVPRLTGLAWALLAYTFVIGMFGGLFDLPDWAFRLSPFDWVPAAFSGEFSAGDVAVLWGVAIVLGALGFIGFRRRDLVTGNANANANANA
AK018_03030819ucpA_3Oxidoreductase UcpAATGACCATCACGTTCCGAGGATCCACCGCCGTCGTGACCGGGGCGAGCTCCGGCATCGGCGCCGTCGTCGCCGCACGGCTCGCCGCCCGCGGCGCCGACCTGCTCCTCGTCGCCCGCCGCGAGGACCGCCTCGCCGAGCTCGCCCAGCGGCTGCGCGACGATCACGGGGTCCGGGCCACGGTCGTCGCCGCGGACCTCGCCACGCCCGACGGCGTCACCGCCGTCGTCGAGGCCGCGCGCGCCACCGGCAGCCCTGTCGGCACGCTGGTCAACAACGCCGGCTTCGGCACGTACGGCGACCTCGTCACCGAGGACCCGGACCGCCTCGGCACCGAGATCGCCCTCAACGTGCGCGCCCTGACGGCGCTCACCCGCGCCCTGCTGCCGGACCTGCTCGCCCACGGCAGCGGCGCCGTCGTGAACGTCGCCTCCACGGCGGCGTTCCAGCCGGTGCCCCGCATGGCCGTCTACGGCGCCACCAAGGCGTACGTCCTGAGCTTCACGGAGGCTCTGTCGGTCGAGCTGCGCGGCAGCGGCGTGCACGCGATCACCCTGTGCCCGGGAGCCACGCGCACCGAGTTCTTCGACGTCGTGGGCACCGAGGACGCCGCCGTCGGACGGTTCGAGACGCCGGAGCAGGTCGCCGACACGCTGTTCCGGGCGCTCGACCGGCGTCGTCCGCCGGCGACCGTCGTCTCCGGGCGCGCCAACGCCGCCGCCGCGGCCCTGGCCGGGATCCTGCCCCGCCGGCTCGTGCTCGCCGTGAGCGCCCGGTTGACGTCCGGGCGCCCATACGGCGCCGTGTCCGTCAGCCCGTGAMTITFRGSTAVVTGASSGIGAVVAARLAARGADLLLVARREDRLAELAQRLRDDHGVRATVVAADLATPDGVTAVVEAARATGSPVGTLVNNAGFGTYGDLVTEDPDRLGTEIALNVRALTALTRALLPDLLAHGSGAVVNVASTAAFQPVPRMAVYGATKAYVLSFTEALSVELRGSGVHAITLCPGATRTEFFDVVGTEDAAVGRFETPEQVADTLFRALDRRRPPATVVSGRANAAAAALAGILPRRLVLAVSARLTSGRPYGAVSVSPPGPT0030485_2452PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-OXIDOREDUCTASE_ACTIVITYPUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
AK018_03031597tetR_2Tetracycline repressor protein class HATGGGCTACCACCACGGCAACCTGCGCGACGCGCTGCTCGACCGCGCCGAGCAGGTGCTGGCCACGGACGGCGTCGACGGGCTGTCCCTGCGTGCGCTCGCCCGCGACCTCGGCGTCAGCCACGGCGCCCCCGCCCGGCACTTCCGCGACAAGCAGGCGCTTCTCGACGCCCTCGCGCTCGCCGGGTTCCGGCGGCTCGAAGCGGCGCTCGCGGCGTGCCCGGGCAGCTGGTCGGACCGGCTCCGCGGCATCGCACGGGCCTACCTCGACTTTGCCGCCGCGAACCCCGCCCTCCTGGCCGTGATGTACGACGTCAAGCACCATCCCGAGGCGTCGGCCGACCTGCGGGCCGAGGCCGAGCGCGGTCTCGGCCAGGTCGTCGATGCGGTCCGCGACGGCCAGCGCGCCGGCGAGGTGGTCGACGGCGACCCTGGCGAGCTCGCGACCGCGCTCTTCGCCGCCGTCCACGGCGTGGTGCAGCTCGCCCTGGGCAATCTGCTCGAACCCGACGAGACGGACCGCGCGCTCGTGACAGTGCTCACGATCAGCCTGCGGGGGCTGTCCCCGAGCCCGGGACCTGCGCGCCCGGCGGGCTAGMGYHHGNLRDALLDRAEQVLATDGVDGLSLRALARDLGVSHGAPARHFRDKQALLDALALAGFRRLEAALAACPGSWSDRLRGIARAYLDFAAANPALLAVMYDVKHHPEASADLRAEAERGLGQVVDAVRDGQRAGEVVDGDPGELATALFAAVHGVVQLALGNLLEPDETDRALVTVLTISLRGLSPSPGPARPAGNANANANANA
AK018_030321401gabP_2COG1113GABA permeaseGTGACGACCTCTCCCGAGCTCCCCGCCGAGCCGCTCGCGCACGGCCTGCGCACCCGGCACCTGACGATGATGGGCCTCGGGTCCGCCATCGGCGCGGGCCTGTTCCTGGGATCCGGCGTCGGCATCGCGACCGCCGGCCCCGCCGTGCTCGTCAGCTACGCCATCGCCGGGGCGCTGGTGGTGCTCGTCATGCGCATGCTCGCCGAGATGGCCGCGGCCCTGCCCGCCAGCGGGTCGTTCTCCGTGTACGCCGAGACCGCGCTCGGACGCTGGGCGGGCTTCCTGCTCGGCTGGGTGTACTGGTTCATGCTGATCATGGTGCTCGGCGTGGAGGTCACTGGGGTCGCCGAGATCGTCCACGGCTGGTGGCCGGCCGTGCCCCAGTGGGCGGCGGCCGCCGTCGTGGTCGCCGTGTTCGGCGCGGTCAACCTGGTCGGCGTGCGGCACTTCGGCGAGGCTGAGTTCTGGTTCGCCCTGATCAAGGTCGCTGCCATCGTCGGGTTCCTGGTGGTGGGCGTGCTCATCGTGGTCGGGGTGATCCCGGTGAGCGGGTCCGTGCTCGGCGACTGGGCCGCGCACGGCGGGTTCGCCCCCGCCGGCTGGGCGGGGATCGCCGCCGGGCTGCTCACCGTCGTCTTCGCGTTCGGCGGCATCGAGATCGTGACGATCGCCGCGGCCGAGGCGCGCGACCCGGCCACCGCCGTCGTCAGCGCCACCCGCACCATCCTGTGGCGCATCCTCGCGTTCTACATCGGTTCGGTCGCGATCATGGTGGCGCTCATCCCGTGGGACGACGCCGGATCCCTGACCTCGCCGTTCGTCACGGTCCTGGAGATGGCCGGGTTCGACGGCGCCGCCCGGCTCATGGAGGTCGTCGTCGTCATCGCGCTGCTCAGCGCCTTCAACGCCAACATCTACGGCACCTCGCGGATGCTCTTCTCGCTCGCCGAACGCCGCGACGCCCCGGCCGTCGCGGCCCAGGTCTCGGGTCGCGACGTCCCCTGGGTCGCCGTGTGCGTCTCGGTCGCGTTCGGCGTCGTGGCGGTGCTGCTGAACTGGCTGTTGCCGGAGACGCTCCTCGCCGTCCTGCTCAACGCCGTCGGCTCCGCGCTGCTCGTGGTCTGGGTGCTGGTCGCCGTCTCCCAGCTCGTGCTGCGCCCCCGCCTGGAGGCGGCCGCCCGCGAGCGCGGCGAGCCCATGGCCCTGCGCGCGTGGGGCTACCCCTGGCTGACGTGGGCCACGCTCGTGGCGCTCGCCGCCCTGGTGGTGCTGATGCTGTCCGACGACGCCGCCCGCGCCCAGCTCACGGCCACGGCCGGGCTGGTGCTGTTCGTCCTGGCGGTCTACGCGGTGCGGGCGCGGGTGCTCCGACGTCGTGCCACGGCGCCCGCGGCCGGGTGAMTTSPELPAEPLAHGLRTRHLTMMGLGSAIGAGLFLGSGVGIATAGPAVLVSYAIAGALVVLVMRMLAEMAAALPASGSFSVYAETALGRWAGFLLGWVYWFMLIMVLGVEVTGVAEIVHGWWPAVPQWAAAAVVVAVFGAVNLVGVRHFGEAEFWFALIKVAAIVGFLVVGVLIVVGVIPVSGSVLGDWAAHGGFAPAGWAGIAAGLLTVVFAFGGIEIVTIAAAEARDPATAVVSATRTILWRILAFYIGSVAIMVALIPWDDAGSLTSPFVTVLEMAGFDGAARLMEVVVVIALLSAFNANIYGTSRMLFSLAERRDAPAVAAQVSGRDVPWVAVCVSVAFGVVAVLLNWLLPETLLAVLLNAVGSALLVVWVLVAVSQLVLRPRLEAAARERGEPMALRAWGYPWLTWATLVALAALVVLMLSDDAARAQLTATAGLVLFVLAVYAVRARVLRRRATAPAAGPGPT0020806_34DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020806-ycgH-K16237NANA
AK018_03033669hypothetical proteinATGGGTGAGGTCCTCGCGGTGTGCCGTGTCCACCAGCTGCTGCCCGACGTCGGGCCGGTCGGCGTCACGGCGATCGACAAGCGCCCGGTGGCCGGGCGGGTCCGCGCCGGCCGCTACGGTCTGTACGCCGACGTGCAGGCCGACCGGGCGAACCACGGCGGCGAGGACCAGGCGGTGTACGCCTACGCCGCCGAGGACGCCGCGTTCTTCGAGCCGGAACTGGACCGGGAGGTCACACCGGGGCTGTTCGGGGAGAACCTGCGGACCGGCGGTCTGGACGTGTCGGGCGCGCTGGTCGGGGAGCGGTGGCGGATCGGCTCGGCCGTGCTCGAGGTGACGCAGCCCCGCACGCCGTGCGCGACGTTCGCGCGGCGGCTGGGCTCGCCGCCGCGCTGGGTGCGCCGGTTCACCGAGGCGGGTCGTACGGGCGCCTACCTGCGGGTGGTCGAGCCGGGCGACCTCGGGGCGGGGGACGCCGTCGAGCTGGTCTCCTCACCGGGGCACGGGGTGAGCGTGGCGGGCTGGTTCGCGGCGTGGAACGCCGGACCGTCCGGGTTCGCCGAGGCGGCGCGGCTGGCCGGGGCGCTGCGGGCGGCGGCCGACGACGGCGAGCTCCGGCTGAGCCCGGACATGGAGTCGCGCACGGCGAAGGCCGTCGCGCGGGCATGAMGEVLAVCRVHQLLPDVGPVGVTAIDKRPVAGRVRAGRYGLYADVQADRANHGGEDQAVYAYAAEDAAFFEPELDREVTPGLFGENLRTGGLDVSGALVGERWRIGSAVLEVTQPRTPCATFARRLGSPPRWVRRFTEAGRTGAYLRVVEPGDLGAGDAVELVSSPGHGVSVAGWFAAWNAGPSGFAEAARLAGALRAAADDGELRLSPDMESRTAKAVARANANANANANA
AK018_03034603idi_3COG1443Isopentenyl-diphosphate Delta-isomeraseATGAGCCTCCACGCCCCCGTCGTCGCCGACCACGTCGTGACCTGTGACGAGGCAGGCAACCGCCTCGGCACCGTGCCGCGCGCCGAGGTGCACACGACCGACACCCCGCTGCACCTGGCCTTTTCCTGCTACCTCCTGGACGCCGCGGACAACCTGCTGATCACCCGGCGCGCGCTCGTCAAGCGGACCTGGCCGGGGGTGTGGACCAACTCGTTCTGCGGCCACCTGCGCTGGACCGAGTCCCCGGAGGACTCCCTGGTGCGGCACGCCGAGCACGAGCTCGGCGCCGAGGTGTCGGACGTCCAGGTGGTGCTGCCGGAGTTCCGCTACCGCGCCGTCGACGCCTCCGGGGTCGTGGAGAACGAGATCTGCCCGGTGTACGTGGCCCGCGTCGTCGGCGACGTGGCGCCGAACCCGGCCGAGGTCGCCGAGCACGTCTGGGCGCCGGCGACGGCGGTCCGGGCCGCGGTGGAGGCGACCGGCTGGGCGTTCAGCCCGTGGATGGGATGGCAGCTCGGCGACGTCGCCGGGGTGCCGGCCACGGAGCGGACCGCCGGTGGGCAGGTGCTCGCGGGAGCGCTGGGGCTCGACGCGCAGCGCTGAMSLHAPVVADHVVTCDEAGNRLGTVPRAEVHTTDTPLHLAFSCYLLDAADNLLITRRALVKRTWPGVWTNSFCGHLRWTESPEDSLVRHAEHELGAEVSDVQVVLPEFRYRAVDASGVVENEICPVYVARVVGDVAPNPAEVAEHVWAPATAVRAAVEATGWAFSPWMGWQLGDVAGVPATERTAGGQVLAGALGLDAQRPGPT0007530_2240DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007530-idi-K01823NANA
AK018_030351707hypothetical proteinATGTTCGAGAACGACGCTTCCCTCCCGGTGCACGACGCCGCCGGGCCTCGTCGTGCTCGGACCTCGGGGGCCGGTGCAGCCAGTGCCCCGGCTGCACCGGCCCCGACCACGAACGGTGACGCCGGGCTCCTGGAACGCGCTCTGGTCACCCTCGTGGCCGGCTCCGTCGCGGGCTGTGCCGAGATCGTCGGCGCCGGTCGTGCGGCCGTCGACCGCGGGGCCCGGCATCGCACGGTTCGCTCCGGTTCCCTGGACATGTCGTGGTCCGGGCAGGGCTCACGCCCTCGCATCCCGGAAATCCTGCGGGCCGGCCCGGGAGCTGCGGGACGTGACGGTGCGGGGGCCGTGGCGCTCAGCCGGCCGGGCGACCTCGGTCCCGTGCTCGAGGACGCACCCGGTCCCGAGGTCGCCGCCGGGCTCGCCGATCTCGACCCGGCGGATCTCGACGACCTCGCCCTGGTCGAGTCCCTGGCGGCGTGGGAGCGGCTGGCGGCGTGGGCGCAGGCAGGCTCGGCGCGGATGCTCGCCGAGCTCCTGGACCGGGCGCGGGGATCGGCCCGGCACGAGTTCGTCGTCGACGAGGTGGCCGCCCGCCTCGGACTGAGCCGACCGGCCGCCGCCCGGCACGTCACGGTGGCGCACGGCGCGCGGCAGCTCCCGGAGGTCGCCGACGCGATGGCGTCCGGCGAGGTCGATCGGCGCAAGGCCGAGGCGCTCGTGGCCACGGGGAGGCTCCCGGACGAGGTGCGGCGGGACGTCGTGGCGCAGCTGCGGCCCGACCTCGAGCAGCTGACGGTGCGCCAGATCCGCGACCGGCTGCGCCGCGCCGAGATCGCCGAGGACCCGGACGGTGCGGAGGATCGCCGGCGTCGCGCGCGCCGGGAACGTTCGGTGACGCTGGAACCGGTCGACGACGCGATGGCCTACCTGACCGCGTACCTCCCCGCCGACGACGCGGCCCGTGCCTTCGCCGCCGTCGAGGGGCCCGCACTGGCGCAGCGCAGGACTCCCGGCGAGGAGCGGCGCCTCGACGAGTGCCGCGCCGACACCCTCGTCGCCCTGCTGACCGGACGGATGGCCGCGACGGGCGAGGTGTCAGCCGGTCGCGAGGCGGCGGGCCGGACGTCCGATGCCGGTCACGGCCCCGTGCCCGTGCAGGTCACGGTCGCCGCGTCGACGCTGCTCGGGACGGACGACCTCCCGGCGATCCTCGCGGGCTACGGTCCGATCCCCGCGGAGATGGCGCGCTGCCTCGCCACCGACCCGGAGGCCACCTGGCAGCGGCTGCTCACCGACCCGCAGACCGGGGTGCTGACGGACCGGTCCTCGCGCGCTTACCGCCCGTCCGCGCGGTTGCGCGCCGCCGTCACCGCCCGTGACGCCACCTGCACCTTCCCCGGGTGCCAGGTGCCCGCCCGCCGCGGCGACCTGGACCACGTCGACCCCTTCGACCCCGCCGCCGACCGGCCGCAGACGCACGGCGACAACCTCCACGCTCTCTGCCGCACCCATCACCGCGCCAAGACCATCGGCGGATGGGACGTCGAACGGGACCCCGACTCCGGGGTGACGGTGTGGTCCCCGCCGAGCGGTGGCCGGTACGTCCGCACACCGCACCCGGCGCACCCCGCGCACCCTGCGCACCCGGCGCCCGGCCGTCCGCCGGACGCCACGCCGCCCCGGGACACGGGCCCGCCACCGTTCTGAMFENDASLPVHDAAGPRRARTSGAGAASAPAAPAPTTNGDAGLLERALVTLVAGSVAGCAEIVGAGRAAVDRGARHRTVRSGSLDMSWSGQGSRPRIPEILRAGPGAAGRDGAGAVALSRPGDLGPVLEDAPGPEVAAGLADLDPADLDDLALVESLAAWERLAAWAQAGSARMLAELLDRARGSARHEFVVDEVAARLGLSRPAAARHVTVAHGARQLPEVADAMASGEVDRRKAEALVATGRLPDEVRRDVVAQLRPDLEQLTVRQIRDRLRRAEIAEDPDGAEDRRRRARRERSVTLEPVDDAMAYLTAYLPADDAARAFAAVEGPALAQRRTPGEERRLDECRADTLVALLTGRMAATGEVSAGREAAGRTSDAGHGPVPVQVTVAASTLLGTDDLPAILAGYGPIPAEMARCLATDPEATWQRLLTDPQTGVLTDRSSRAYRPSARLRAAVTARDATCTFPGCQVPARRGDLDHVDPFDPAADRPQTHGDNLHALCRTHHRAKTIGGWDVERDPDSGVTVWSPPSGGRYVRTPHPAHPAHPAHPAPGRPPDATPPRDTGPPPFNANANANANA
AK018_03036543hypothetical proteinATGGCCCTCCACGAGCGGAACCTGACGGGCGACGAGCACGTCGTCCTCGAGCTGCGCGAGCACCCCAAGGCCCTCGTCTGGCCGACGGTCGTGCTGGTCGGCGTCCTGGTCGCGGCGGTCGCGGTCGCCGTCCTCGTCCCGGCCGGCGCCGGCCGGTGGGTCGGCTGGGGAGTCCTCGCGTTGGTCGCCGTGGTGTGGGTCCTGGTCCCGTGGCTGCGGTGGCGCACGACGTCGTTCACCGTCACCAACCAGCGCATCGCCATGCGGACGGGCATCACGACTCGTGTCGGCCGCGACATCCCCCTCTACCGGATCAACGACGTCGGCATCGAGATCGGCCTGATCGACCGGTTCTTCGGGTGCGGCACGCTGATCGTCTCGGACGCCACCGAGAAGGCGGGCATGCGACTGCCGGACGTCCCCGACGTCGAGGCCGTGCACCGCGAGCTGCAGGAGCTGTTGTTCCGCGCCGACGACGGGTCCGACGACGGCGAGTGGCCGCCCGGCGAACCGCCGCGGCGTGGAGCGCGCCGGCGACCCTAGMALHERNLTGDEHVVLELREHPKALVWPTVVLVGVLVAAVAVAVLVPAGAGRWVGWGVLALVAVVWVLVPWLRWRTTSFTVTNQRIAMRTGITTRVGRDIPLYRINDVGIEIGLIDRFFGCGTLIVSDATEKAGMRLPDVPDVEAVHRELQELLFRADDGSDDGEWPPGEPPRRGARRRPNANANANANA
AK018_03037660gpm2_2COG0406Acid phosphataseATGGAGCTGCCGGTCTCGGACTCGCCCCGACTCGTGCTGCTGCGCCACGGCGACACCGCCTGGGCGGCCGCGGGGCGCCACACGGGCCGCACCGACGTCCCCCTGACCCCGGCGGGCGAGGCGGAAGCCCGCCGGGCGGGCGACCGGCTCCACGGCCTCGATCCGGCGCTCGTGCTGTGCTCGCCGCTGCAGCGCGCCCGCCGGACGGCGGAGCTCGCCGGGTATCCGGATGGCGTCGTCGACGCCGACCTGGCCGAGTGGGACTACGGCCACGTCGAGGGGCGCACCTCCGCCGAGGTCGGCGCGGTGCTCGGGCGGCCGTACGAGATCTTCCGCGACGGGGTCGCCGTCCCCGGGCTCTCCGTCCCCGGGCTCTCCGTCCCCGGGCTCGCCGCGCCGCCGTCGTCCGGCGAGAGCCTCGCCCAGGTGCGCGCCCGGGCCGAACGGGTGCTCCAGCGGGTGCGCCCCGTCCTGGCCGACGGCGGCACCGTGCTGGCCGTCGCACACGGTCATCTGCTGCGCGTCCTCGCGACGGCCTGGCTCGAGGTCGACGCGACGTTCGGCGCCCACCTCGAGCTGGGGTGCGCCGCCGTCTGCGCACTCGGACGATCGCACCACCTGCCGACCATCGAGGCCTGGAACCTCGTCGACGCCGGGTAGMELPVSDSPRLVLLRHGDTAWAAAGRHTGRTDVPLTPAGEAEARRAGDRLHGLDPALVLCSPLQRARRTAELAGYPDGVVDADLAEWDYGHVEGRTSAEVGAVLGRPYEIFRDGVAVPGLSVPGLSVPGLAAPPSSGESLAQVRARAERVLQRVRPVLADGGTVLAVAHGHLLRVLATAWLEVDATFGAHLELGCAAVCALGRSHHLPTIEAWNLVDAGNANANANANA
AK018_03038471hypothetical proteinGTGCTCGTCTTCGCCCTGATCGGTGCGGCCGGTCTCGTGCTGCTCCTGCTGTCGCTCGTGGTCGGGGAGATCCTCGATCTCGGCGACGGCGCCCTGTCCGGGACGTCGCTCGGCATCGGCGCCGTCGTCTTCGGAGCGGTCGGCGCCATCACCACGGTCAACGGCATGGACGCCTGGATCGCCTACGCGGGCTCGGCGCTCGTCGGTCTGGTCGCCGTGGTCGTCGCCCAGCTGATGATCCGGCGCCTGAGCGCCACCGAGGACAACGCCCGCGTCGACCTCGTCGGCGTGCAGGGCACCGCGATGACGGACATCACCCAGTCGTCCGGCGAGGTGTCCCTGGACGCGGTGAGCGAGCTCGAGCGGCGACTCGCGTGGTCGCTCGAGCCGATCACCGTGGGGACCCGCGTCGTCGTGCTGGAGCACCAGCCCAACAGCGTGCGGGTGGGACCGTACCGGCCGGACGCCTGAMLVFALIGAAGLVLLLLSLVVGEILDLGDGALSGTSLGIGAVVFGAVGAITTVNGMDAWIAYAGSALVGLVAVVVAQLMIRRLSATEDNARVDLVGVQGTAMTDITQSSGEVSLDAVSELERRLAWSLEPITVGTRVVVLEHQPNSVRVGPYRPDANANANANANA
AK018_030391458yqiK_2COG2268Inner membrane protein YqiKATGCTCTCCTCAGCCAGCCTCGTGACCACGATCTCCGTGGTCGCACTCGCCGTCGCCTTCCTGGCGGTCGGCGTCTTCATCGCCCAGCGGATCCGACGGGTCCCGCCGAACCAGGCCCTCGTGATCGTCGGCCGCGGCGCCGGCCGCAAGGACATGGCCGGCCAGAAGGTCGTCATCGGGGGCCGCACGTTCGTGTGGCCGATCCTGCAGCAGGGCTACCCCATCTCGCTCGAGCAGCGCCAGATCGGCATCACGGTCGAGGGCGTCGACTCGAACCGCATCAAGATCGCCATCAAGGCGTCGATCAACTTCAAGGTCCGCGGCGACGACGAGGGCGTCCGTCGGGCGGCCCAGCGCTTCATGTCGCAGCAGGAGACCCTGACGGACATCATCGCCGAGTCCCTCGAGGGCTCGCTGCGCTCGATCGTCGGCGACATGTCGATCGAGGAGATCATCTCCGACCGCAAGGGCCTGTCGGACCGGGTCGTGGAGTCGACCAAGAAGGACCTCGCCGAGCAGGGCCTGCAGGTCGACATCCTCAACATCTCCGACATCTCCACGCCGGGCTCCGACTACCTGGAGAACCTGGGCCGTGCCGAGTCGGCGCGGGCCCGCCAGGTCGCGGAGGTCTCCGAGGCGGAGGCCCGCCGGGCCTCGGAGTTCGCGGTCATCGAGGCCGCCGAGCAGATCGCCGAGCGGCAGAAGGCGCTCGACCTGCGCAAGGCCTCGATCAAGGCCGAGACCGACAAGGCCCAGGCGGAGGCCGAGGCCTCGGGTCAGCTCGCCCGCGCCGAGCAGGACCGGCTCGTGGCGCAGCAGGAGCGTGAGGCGCTGTCGGAGAAGGCGCGCGTCGAGCAGGAACGCCTCGACATCGAGGTGCGCAAGCCCGCCGAGGCCCAGGCCTACGCCGAGGTCCAGGAGGCCACCGCCCGCCGCGACTCGCAGAACGCCGCGACCGAGGCCGAGGCGTTCAAGCGCACCACGATCGCCGAGGCCAACAAGAAGGCCGCCATCCAGGACGCCGAGGCGGCCGCGGAGGCCGTGCGCCGCGCCGGTGAGGCCGACCGCGACAAGCAGGTCGCGATGGCCGCCGGTATCCGGGCCGAGGGTGAGGCCCGGGCCGCGGCGACCGAGGCCGAGGGTCGCGCCGAGGCGGCCGCGACGGACGCCAAGGCCGAGGCGCTCAAGAAGTACGGCGAGGCCGCGCTGGTCCAGGAGCTCATCGAACGGCTGCCGGAGATCGTCCGGGCCGCGGCCGAGCCCATCGCGTCCATCCAGGGCATGACCGTGGTCTCCACCGACGGGGCGTCCGCCATCACCAAGAACGTGTCCGACGTCCTCGGCGAGGGTCAGGCCGTCGTCAAGGAGCTCACCGGCATCGACATCAACCAGCTCCTCGCCGGACTCACCGACCGGCAGGAGGCGGGCACGACCGTGACCCACAGCAGCTCGAACTGAMLSSASLVTTISVVALAVAFLAVGVFIAQRIRRVPPNQALVIVGRGAGRKDMAGQKVVIGGRTFVWPILQQGYPISLEQRQIGITVEGVDSNRIKIAIKASINFKVRGDDEGVRRAAQRFMSQQETLTDIIAESLEGSLRSIVGDMSIEEIISDRKGLSDRVVESTKKDLAEQGLQVDILNISDISTPGSDYLENLGRAESARARQVAEVSEAEARRASEFAVIEAAEQIAERQKALDLRKASIKAETDKAQAEAEASGQLARAEQDRLVAQQEREALSEKARVEQERLDIEVRKPAEAQAYAEVQEATARRDSQNAATEAEAFKRTTIAEANKKAAIQDAEAAAEAVRRAGEADRDKQVAMAAGIRAEGEARAAATEAEGRAEAAATDAKAEALKKYGEAALVQELIERLPEIVRAAAEPIASIQGMTVVSTDGASAITKNVSDVLGEGQAVVKELTGIDINQLLAGLTDRQEAGTTVTHSSSNNANANANANA
AK018_03040606rnhA_2Ribonuclease HGTGATCATTGTCAGCACCGACGGCTCCAGCCCGGCCGGCACCGGCGGGGCGATCGGCTGGGCGTGGGTCGCCCACGGCTCCGGTCGCTTCGACTCCGGTGGCGCCGCGGACGGCTCTGCCCAGGTGGCTGACCTGACGGCGTTGTGCCACGCCGTCGAGGCGCATCCGGGCGACGAGCCGTTGTTCGTCGAGTCGGGCTCGCAGTACGCGATCCGGTGCGCCGCCGAGTGGCTGCCCGACTGGAAGGCCCAGGGCTGGCGGACGGCCTCGGGGGCTGCGGTCCAGCACCTGGAGACGGTGCAGCGGCTGGACCGGGCCATCACGGCCCGTTCCGGTCCGGTGCGGTTCCGCTGGGCGCGCGGACACGTGGACAGCCCGTTCAGCGAACGGGCTCGGGAGCTCGCCGGGCTGGCGGCCGACGACTGGGCGGCCGGCCGTGGCGACCTGGACGGCGCGCTCCTGGACGAGTCGCTCCTGGACGTCGAGTCCGAGGAGGTCCGGCGCGAGCCGGAGCCGGTGGGGGCGCGTGCGGCACGCCGTGAGGAGTCCCGCACGACGCCGCCCACCTCGGGGCCCGACTGGGAGCTGGGCACCCTGTTCGACTGAMIIVSTDGSSPAGTGGAIGWAWVAHGSGRFDSGGAADGSAQVADLTALCHAVEAHPGDEPLFVESGSQYAIRCAAEWLPDWKAQGWRTASGAAVQHLETVQRLDRAITARSGPVRFRWARGHVDSPFSERARELAGLAADDWAAGRGDLDGALLDESLLDVESEEVRREPEPVGARAARREESRTTPPTSGPDWELGTLFDNANANANANA
AK018_030411152hypothetical proteinATGGGAGCCATGGACACGCCACCGCCCGCGCGCACCCCCGCCGAGATCCGTCGCTGGCGGCGCTACCTCGCCGCCGAGCGTGCGGAGGCGGCCGTCTACCGCGACCTCGCGTCGCGACGCAGCGGGCAGGAGCGGGAGATCCTCCTGGCGCTCGCCGCCGCCGAGAAGCGGCACGAGCAGCACTGGCTCGACCTGCTGGGCGACGACGTCGGCATGCCCCTCCAGGGTGACCTGCGCACCCGGTTCCTCGCCTTCCTCGCCCGGCGGTTCGGCGGCGTGTTCGTCCTCGCGCTCGTGCAGCGTGCCGAGTCCCGCTCCGACTACGCCGACGACGAGCACGCCACGGCCCGGATGGCCGCCGACGAGCAGATCCACGAGGAGGTCGTGCGCGGCCTCGCGACCCGTGGCCGGCAGCGGCTGTCGGGATCGTTCCGCGCCGCCGTGTTCGGGGCGAACGACGGCCTGGTCTCCAACCTGGCGCTGGTGCTCGGCATCGGGGCGTCCGGGGTGGCCACGGGCACGGTGCTCGTCACCGGGCTGGCCGGCCTGCTCGCCGGAGCGCTGTCCATGGGGGCCGGGGAGTTCGTGTCCGTGCGGTCCCAGCGCGAGCTGCTGGAGGCGTCCACCCCCGACCCGGGGGCCACCCACGCCCTGCCGCATCTGGACGTCGACGCCAACGAGCTGGCGCTGGTCTACCGTGCCCGCGGCATGGAACCCGACGACGCCCAGACCCGCGCCGACCAGGTGCTCGCGCGGTTCGGGCCCCCCGGTGGGCGGCCGGCGCCCCACGGGGCCGACCCCGACGACGGCTTCGGTGCCCGCGGACCGGCCGGCGACGACCCGACAGCACCGGACGTGGACGAGCACGAGTCCCACGGCACGGCCTGGGGCGCGGCCGCCTCGAGCTTCTGCTTCTTCGCCTCCGGCGCGATCGTGCCCGTGCTGCCCTACCTGCTGGGCATGGACGGCCGGGCCGCCGTCGTCGTCGCGTGCCTGGCCGTGGGCGTCTGCCTGGCGGTGACCGGAGCGGTCACCGGCCTGCTCTCGGGCACCTCGCCCGTCACGCGCGCGCTGCGCCAGCTCGCGATCGGTTTCGGGGCCGCGGCCGTCACCTACCTGCTCGGCCTGGCGTTCGGCACCTCGCTCGCGTGAMGAMDTPPPARTPAEIRRWRRYLAAERAEAAVYRDLASRRSGQEREILLALAAAEKRHEQHWLDLLGDDVGMPLQGDLRTRFLAFLARRFGGVFVLALVQRAESRSDYADDEHATARMAADEQIHEEVVRGLATRGRQRLSGSFRAAVFGANDGLVSNLALVLGIGASGVATGTVLVTGLAGLLAGALSMGAGEFVSVRSQRELLEASTPDPGATHALPHLDVDANELALVYRARGMEPDDAQTRADQVLARFGPPGGRPAPHGADPDDGFGARGPAGDDPTAPDVDEHESHGTAWGAAASSFCFFASGAIVPVLPYLLGMDGRAAVVVACLAVGVCLAVTGAVTGLLSGTSPVTRALRQLAIGFGAAAVTYLLGLAFGTSLANANANANANA
AK018_03042336hypothetical proteinATGACTGGTCAGCTCGACGTCGACATCGTCCAGGACCTCGCCGGGTCCCGCTACGAGGCGCACGTCCGCACGGGCCACGGGGCGGCGGTCGCCGGTGTGCTGCGGTACGTCGACCAGGAGCACGTCAGGGTGGTGCCGAGCACGGTCGTGATGCCGGCGCACCGCCACCAGGGGATCGCGTCCGCCCTGGTCCGCCGGATGCTCGACGACGCCCGGGAGCAGGGCGTCCAGGTCGACCCGCGCTGCTGGTACGTCGACGAGTGGCTCGACCAGCACCCCGAGTACGCCGACGTGCGCTGGCAGGGACCGCCGTCGGGCACCACCATGGGTCGATGAMTGQLDVDIVQDLAGSRYEAHVRTGHGAAVAGVLRYVDQEHVRVVPSTVVMPAHRHQGIASALVRRMLDDAREQGVQVDPRCWYVDEWLDQHPEYADVRWQGPPSGTTMGRNANANANANA
AK018_03043297hypothetical proteinATGACCGATCAACCGAACGTCGACGTCCGTGACGACGTCGAGCGCCAGGCCTTCGTCGCCGTGCTCGACGACGGCACCGAGGCGGGGTTCGCCGCCTACCGCCGCGCCGACGGCGTCGTGACCTTCACCCACACCGAGGTGCCCGACGAGTTCGAGGGGCAGGGGATCGGGTCACGGCTCGTCGCCGGCGCCCTGCAGCAGGTGCGCGACGACGGCGACCGGGTCGTGGCCCGGTGCCCGTTCGTCCACGCCTACATCGAGCGGCACCCGGAGCACCAGGACCTGCTCGCGGCCTGAMTDQPNVDVRDDVERQAFVAVLDDGTEAGFAAYRRADGVVTFTHTEVPDEFEGQGIGSRLVAGALQQVRDDGDRVVARCPFVHAYIERHPEHQDLLAAPGPT0019980_7DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911NANA
AK018_030441692pgm_2COG0033PhosphoglucomutaseATGCACCCCCGCGCCGGCCAGGTGGCCCAGCCCGACGACCTCATCGACGTCGACCAGGTGGTCGGCGCCTACTACGACCGCACGCCCGACGTCGCCGACCCCGCCCAGCAGGTCGTGTTCGGCACGTCCGGGCACCGCGGGTCCTCGCTGGACGCCGCCTTCAACGAGGCGCACATCGCCGCGATCACGCAGGCGATCGTGGAGTACCGCGCGTCGCAGGGCACGGACGGCCCCCTCTACCTGGGGCGGGACACGCACGCCCTGTCCCTGCCGGCCTGGCAGACGGCGCTCGAGGTGCTGGCCGCCGCCGGGGTGACGGTGATGATCGACGCCCGCGACTCGTACACCCCGACGCCCGCGGTGTCGCAGTCGATCCTCGTCCACAACGGTGCCGCGTCGGACGAGGGCGTGCGCACCTCCGGTCCGGGCCTGGCCGACGGCATCGTGGTGACGCCGTCGCACAACCCGCCCCGCGACGGCGGCTTCAAGTACAACCCCCCGCACGGCGGCCCGGCCGGGTCGGAGGCGACCGGCTGGATCGCCGACCGCGCGAACCAGCTGCTGCGCGACGGCGGCCTGTCCGGCATCCGCCGTGTCTCCCTGGACAACGCCCTGGACGCGGCGACCACGCACAAGCACGACTTCCTGTCCACGTACGTCGACGACCTCGCCAACGTCCTCGACCTGGAGGCGATCCGCGGCGCGGGCGTGCGCATCGGCGCCGACCCGCTGGGCGGCGCGGCCGTGGAGTACTGGGGGGCGATCGGCGAGCGGTACGGCCTGGACCTGACGGTCGTGAACCCGCAGGTCGACCCGCGCTGGGCGTTCATGACCCTGGACTGGGACGGCAAGATCCGCATGGACTGCTCCTCGCCGCACGCGATGGCCTCCCTCGTGTCCCAGATGCGGCCCGACGGCGGGGGTGGCGCACCGTACGACGTCGCCACCGGCAACGACGCCGACTCCGACCGCCACGGCATCGTCACGCCGGACGCCGGGCTGATGAACCCCAACCACTACCTCGCGGTCGCGATCCACTACCTGTTCGGCGGCGCCCGCCCGGGCTGGCCGGACACGGCCGCGATCGGCAAGACGCTGGTCTCCTCCGCCCTGATCGACCGGGTCGCCTCGGGTCTCGGGCGCCGGATGACGGAGGTGCCGGTGGGCTTCAAGTGGTTCGTCCCGGGCCTGCTGACCGGCGAGGTCGCGTTCGGCGGGGAGGAGTCCGCGGGGGCGTCGTTCCTGCGCACCGACGGCCGGGTGTGGTCCACCGACAAGGACGGCATCCTGCTGGCCCTGCTGGCCTCGGAGATCCTCGCGACCACGGGACGCTCGCCGTCGCAGCACCACGCCGACCTGGTCGCCGAGCACGGCGAGTCCTGGTACGCCCGCGTGGACGCCCCGGCCACCCGCGAGCAGAAGGCCACGCTGGCGGGCCTGTCGCCCGAGCAGGTGACCTCCATGTCGCTGGCCGGCCAGGACATCACCGCCAAGCTCACCGAGGCGCCCGGCAACGGGGCGAAGATCGGCGGCCTGAAGGTGACGACGTCGGACGCCTGGTTCGCGGCGCGACCCTCCGGCACGGAGGACGTCTACAAGATCTACGCCGAGTCGTTCGTCTCGGCCGAGCACCTGAGCCAGGTGCAGGACGCGGCCAAGCAGGTCGTCGGGGACGCCCTCGACGGGTCGTGAMHPRAGQVAQPDDLIDVDQVVGAYYDRTPDVADPAQQVVFGTSGHRGSSLDAAFNEAHIAAITQAIVEYRASQGTDGPLYLGRDTHALSLPAWQTALEVLAAAGVTVMIDARDSYTPTPAVSQSILVHNGAASDEGVRTSGPGLADGIVVTPSHNPPRDGGFKYNPPHGGPAGSEATGWIADRANQLLRDGGLSGIRRVSLDNALDAATTHKHDFLSTYVDDLANVLDLEAIRGAGVRIGADPLGGAAVEYWGAIGERYGLDLTVVNPQVDPRWAFMTLDWDGKIRMDCSSPHAMASLVSQMRPDGGGGAPYDVATGNDADSDRHGIVTPDAGLMNPNHYLAVAIHYLFGGARPGWPDTAAIGKTLVSSALIDRVASGLGRRMTEVPVGFKWFVPGLLTGEVAFGGEESAGASFLRTDGRVWSTDKDGILLALLASEILATTGRSPSQHHADLVAEHGESWYARVDAPATREQKATLAGLSPEQVTSMSLAGQDITAKLTEAPGNGAKIGGLKVTTSDAWFAARPSGTEDVYKIYAESFVSAEHLSQVQDAAKQVVGDALDGSPGPT0017710_2135DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835NANA
AK018_030451593hypothetical proteinATGATCGAGTCCTACCCGGTGCTGACGCTCGTGCCGCCGCTGCTGGCGATCACGCTGGTCATCGTCACCAAGAAGGTGCTGATCAGCCTCGGCGCGGGCGTCCTCGCGGCGGCGCTGCTCGTCGCGGACCTGAACCCCCTCGAGACGCTCCGGCTGATGTGGGACTCGTTCGCCGTCATCTTCTGGACCGACGGCGCCGTCAACACCTGGTACGTCTACATCCTCGCGTTCACGCTCATGCTCGGCGTCATCGCGGCGTTCATCATGATGTCGGGCGGCACGCGGGCGTTCGCCGACTGGGCCGTGGAACGGATCCGCACCCGCCGGGGCGCGCAGGTCCTCCCGGCCGTCATGGGCATCGTCATCTTCATCGACGACTACTTCAACGCCCTGGCCGTGGGGCAGGTGTCCAAGCCGGTCACGGACCGGCACCGCGTCTCGCGCGCCAAGCTGGCGTACATCATCGACTCGACGTCGGCACCGGTCGCCGTCCTGGCGCCCTTCTCGAGCTGGGGCGCCTACATCATGGGCATCCTCTCCCCCATCGTGGCGGCGTCGGCCCTCGGCATCTCCAGCGTGCAGGCGTTCCTCGGGGCCGCGGCGGCGAACTACTACGCGATCGCCGCCGCGCTCACGGTGTGGCTGGTCGTGCTGCTGCGGCTCGACGTCGGACCGATGCGCGCCGAGGAGTCCCGAGCGGTCCACGACGGGCAACCGCACGACCCGGACGCGGAGATCCCCGGCCGGCTCTCCGAGGACCTGCCCGTGCACCAGCCCGGGGCGATGCGCGCCCTGATCGTGCCGTTCGTGCTGCTCGTGGCGGGGGTCTTCGCCGGCATCGTGTGGACCGGCTACGCGGCGGCGGGGACGTGGGACGTGGTGGACATCCTGGCCGAGACCGACACCAGCGCCGCGCTGATGGTCGGCGGCGTCCTCGGGCTGGCCGCGGCCATCTTCTACTACGTGCGCTACACGGGCTCCAACCCCCGCTTCAGCGCCCGCCAGTTCGGGCAGGGCTGGGTCGAGGGGCTGCGTTCCATGTGGCCCGCGGTGAGCATCCTGGTGCTGGCGTGGATGCTCACCGGGCTCATCGACCAGCTCGGCACCGGCGCCTACCTCGGCGGGCTCGTGGAGGACGCGGACCTCGGCGCCGGGTGGCTGATCCCCGTGACGTTCGTGCTCGCCGCCGCCATGGCGTTCGCGACGGGCACGTCGTGGGGCTCGTTCGCGCTGCTGCTGCCCCTGGTCGGCGGGATCATGAACACCCTGGACGAGCCGGACCTGCTGCTGCCCGCCCTCGGCGCGGTCCTGGCCGGTGCGGTGCTCGGCGACCACAGCTCGCCGATCTCGGACACCACCATCCTGTCGTCCACCGGGGCGGGGTCCAACGTCATCACCCACGTGCTCACCCAGCTCCCGTACGCCGGCATGGCGGCCGTGGCCGCCCTGGTGGGCTACGTCGTCGTGGCGCTCGGCGCCGGGACGGCCGTGGGCCTGCTCGTCACGGTCGCCGTGCTGGTCGGCGGCGTCCTGGCGACGCGCGCCGCGAGCCGACCGGTGGAGGAGGCGGCGGCACCGACCCGTCCGGAGTGAMIESYPVLTLVPPLLAITLVIVTKKVLISLGAGVLAAALLVADLNPLETLRLMWDSFAVIFWTDGAVNTWYVYILAFTLMLGVIAAFIMMSGGTRAFADWAVERIRTRRGAQVLPAVMGIVIFIDDYFNALAVGQVSKPVTDRHRVSRAKLAYIIDSTSAPVAVLAPFSSWGAYIMGILSPIVAASALGISSVQAFLGAAAANYYAIAAALTVWLVVLLRLDVGPMRAEESRAVHDGQPHDPDAEIPGRLSEDLPVHQPGAMRALIVPFVLLVAGVFAGIVWTGYAAAGTWDVVDILAETDTSAALMVGGVLGLAAAIFYYVRYTGSNPRFSARQFGQGWVEGLRSMWPAVSILVLAWMLTGLIDQLGTGAYLGGLVEDADLGAGWLIPVTFVLAAAMAFATGTSWGSFALLLPLVGGIMNTLDEPDLLLPALGAVLAGAVLGDHSSPISDTTILSSTGAGSNVITHVLTQLPYAGMAAVAALVGYVVVALGAGTAVGLLVTVAVLVGGVLATRAASRPVEEAAAPTRPEPGPT0027895_149DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-TETRACYCLINE_RESISTANCE,PGPT0027895-tet35-K18218NANA
AK018_030461182hypothetical proteinGTGGTGCTGCTGACGGCGTTGGCCGTCGCCGTCACACCGACGTTCGTGCAGGTGGCCGCCCCGCCGCCGGCGCAGGCCGCGACCCGGCTCGCGGCGCCCCTGAAGAACGACACCTACGTGCTCAGCTCCTACTACGGGCCGCGCTGCATGCCCGTGCGCGGCTCCTCGACGTACCACCTCGGGCAGGACTTCGGGGCTGCCAGCGGCACCGACGTGCGTGCGGTCGCCGCGGGGAAGGTGACCCGCGCCGGTGCGATCAGAGGTTTCGGGCAGTGGGTCGTCATCGACCACGTCGTCGACGGCGTGAAGTTCTCCTCGCTGTACGCCCACCTCATCGACGGCGACGGGCGGGTGAAGGCGGGCCAGAAGGTCAAGAAGGGCCAGCACATCGGCGACGTCGGCTCGACGGGCACGTCCACGGGCCCGCACCTGCACCTCGAGATCTGGCGGGGCGGCTACGGGTCGGGCAAGGCCGTCGACCCGCTGAGGTTCCTGCGCAAGCGGGGCGTCGACCTCAAGGCCCGCTCGATCCGCAACTATCCGCGCACCGTGCCGTCGTCGTGCACCTACTACACGGCCGCGAAGGTCAACTTCCGGACGGGCCCCGGGACGGGCTACTCCAAGATCCGCACGATCCAGGCGAACCTCAAGCTCACCGCCGAACCGGGCGCGGGCAGCGGGGAGTGGCGCCAGGTGACGCGCCGGGGGCGCACCGGGTGGATCCACCGCGACTACGTGTCGCCGTCGTACACCTCCCACGGGACGCGGTACGTGCTGCCCAGCTCCCTCAACCTGCGGTCCGGGCCCTCGACGTCGAAGAAGGTCCGGGTGCGTCTGCCCCACGACGCGCGGCTGATGCTGCTGCGTGACGGCTACAGCAACGGCGTGTGGCAGCGGGTGCGGTACGGCAGCAAGAACGGGTGGGTCTCGGCCCGCCACATCGCGCTGGACCGTGACGGCGCCCAGATCGTGCCCGACCGCACCGGCAAGACCTTCGCGTGGGTCGACCCGAAGACCCTCAACCTGCGCAAGGGCCGGTCCGCGTCGACGGATCGGGTCCTGAAGCTGCGGCGGGACGAGCGCGTGCGCCAGCTCGGGCGCGTGAGCAACGGGTGGGTCAAGGTCCGCCACGACGGGCGGACGGGCTACGTCTCGGCGGTGTACCTGCGCTCGAGACGCTGAMVLLTALAVAVTPTFVQVAAPPPAQAATRLAAPLKNDTYVLSSYYGPRCMPVRGSSTYHLGQDFGAASGTDVRAVAAGKVTRAGAIRGFGQWVVIDHVVDGVKFSSLYAHLIDGDGRVKAGQKVKKGQHIGDVGSTGTSTGPHLHLEIWRGGYGSGKAVDPLRFLRKRGVDLKARSIRNYPRTVPSSCTYYTAAKVNFRTGPGTGYSKIRTIQANLKLTAEPGAGSGEWRQVTRRGRTGWIHRDYVSPSYTSHGTRYVLPSSLNLRSGPSTSKKVRVRLPHDARLMLLRDGYSNGVWQRVRYGSKNGWVSARHIALDRDGAQIVPDRTGKTFAWVDPKTLNLRKGRSASTDRVLKLRRDERVRQLGRVSNGWVKVRHDGRTGYVSAVYLRSRRNANANANANA
AK018_03047789yfcA_2COG0730putative membrane transporter protein YfcAATGCCGATCGTGCTCGACCTCGACCCCACCACCATCGCCCTGCTCGTGCTGGCCGGACTGGCCGCCGGCTGGGTCGACGCCGTGGTCGGCGGAGGCGGGCTCATCCAGCTCCCGGCGCTGCTGCTCGTGCCGGGGATGTCGCCGGTGCAGGCGCTGGCGACCAACAAGCTCGGGTCGATCATGGGAACGTCGGTCAGCTCGATCACCTACTACCGACGTGTCCACCCCGACCTGACCACGGCCGGGCCGATGGCGGCCGCGGCGCTGGCGGGCGCCGTCGGGGGAGCGGCACTGGCGGCGCAGATCCCCGCCGAGCTGTTCACGCCGATCATCCTGGTGGTCCTGATCGGCGTCGCGGTCTTCACGATCGCCAAGCCGCAGCTCGGCCAGTACGACGACCTGCGCTGGGAGGGCAACCGGCACCGGTGGACGGCGGCCGGGATCGGCCTCGTCATCGGCGCCTACGACGGCCTGCTCGGGCCGGGCACCGGCACCTTCCTGGTGATCTCGTTGGTGAGCGTCCTCGGGTACGCGTTCCTGCCGGCGTCGGCCCTGGCGAAGATCGTGAACTTCGCCACGAACCTGGGCGCGCTGATCTTCTTCGTGCCTGCCGGCGCGGTGGTGTGGGGCCTCGGGCTGGCGATGGGTCTCGCCAACCTCGTCGGCGGGTACATCGGCGCCCGGATGGCGGTGTCGAAGGGCAGCCGCTTCGTGCGCGCGGTCTTCGTCGTCGTGGTCGGGGCCCTCATCTGCACGCTCGGGTACGACGTCGTCACGGGCGCCGCGTAGMPIVLDLDPTTIALLVLAGLAAGWVDAVVGGGGLIQLPALLLVPGMSPVQALATNKLGSIMGTSVSSITYYRRVHPDLTTAGPMAAAALAGAVGGAALAAQIPAELFTPIILVVLIGVAVFTIAKPQLGQYDDLRWEGNRHRWTAAGIGLVIGAYDGLLGPGTGTFLVISLVSVLGYAFLPASALAKIVNFATNLGALIFFVPAGAVVWGLGLAMGLANLVGGYIGARMAVSKGSRFVRAVFVVVVGALICTLGYDVVTGAAPGPT0027725_1573DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-AbrB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027725-antitoxin_abrB-K07120NANA
AK018_030482325hypothetical proteinGTGCCCCGTCGTGGCATCCGTCCCTCGCTCACCCGTGCCGGCGCGGCAGCGCTCGGCCTCACCCTGTGCGGCTGTCTGCTCGCACCGCCCGCCCAGGCGTCCGTCGTCGACGACCTGATCGGCACCGCCGCCGACGACGCCGCGATCGACCTGCGCCCGCTGGGCTCGTACGAGACCGGCGTGTTCGACGAGTCGGCCGCCGAGATCGTCGCCTTCCACCCCGGCTCGCAGCGCCTGTTCTCGGTCAACGCCCACGTCGGCGAGGTGACGGTCCTCGACGTCGCCGACCCGGCCGTGCCGACGCAGCTCTTCGCCGTGCAGACCACCGGCGTCGCGTCCGCCGACGGCTCCACCGTCCCGGCCGGGGCCGTGGCCAACTCCGTCGCGGTGCGCGGCGACGGGCTCGGCGTCGTCGCCGTGGAGTCCGACGTGAAGACCGACGCCGGCTGGCTGGTCTTCTTCGACGCCGCCGGTGACGGGACCGCTCTCGGCGCCGTGCGCGTCGGGTCGCTGCCCGACATGGTCACGGTCACGCCCGACGGTGCCCGCGCCGTCGTCGCCGACGAGGGCGAGCCGAACGACGACTACACCGTGGACCCCGAGGGCGACGTCGCCGTCGTCGACCTGCCCGCCGAGGTCGCCGCGCCGGCGCAGGACGCCGTGCGCATCGCCGACTTCCACGCGTTCGAGGCCGAGGGCGCCCTCCCGGAGGGCGTGCGCGTCTTCGCGGGGATCGACGGCATCGACCACCCCGTCTCGCGCAACCTCGAGCCCGAGTACGTGTCCGTCTCCGGCGACTCGGCCACCGCCTACGTCGCGCTGCAGGAGAACAACGCCGTGGCCGTCGTCGACCTGGCCGACGCCGAGGTCACCGAGATCTGGCCGCTGGGCGCCAAGGACCACTCGCTGGAGGGCCAGGGCATCGACCCGTCCGACGAGGACGGCCCGGACGGCGAGGGCGTGATCGACATCCGGACCGTCCCGGTCAAGGGGCTGTACATGCCGGACGGCATGGACGCCTACACCGCCGGCGGCGAGACCTACCTGGTCACCGCCAACGAGGGCGACGCCCGCGAGTTCGGCGACTACGAGGAGCCGGCCCGCATCAAGGACCTCGGCGAGGACGGCATCGCGCCGATCTGCGCCGACCACCCCGCTGCGGACCGCACCGACGACGCCGACCTGGGGCGCCTCGACGTGTCGCTGGCCTCCGGGCTCCGGGCCGACGGCGAGTGCTACGACGAGCTGTACTCGTTCGGCGGCCGGTCCTTCTCCATCTGGACCACCGACGGCGAGCGGGTCTTCGACTCCGGCGACGACTTCGAGCAGATCACCGCGCAGGTCGCGCCCGAGTACTTCAACTCGAACAACGACGAGTCCTCGTTCGAGTCGCGCTCGGACAACAAGGGACCCGAGCCGGAGAGCGTCGTCGTCGGCGTTGTCGACGGGCGCCGCTACGCCTTCGTCGGCCTGGAGCGTGTCGGCGGGATCATGGTCTACGACGTGACCGACCCGGCCGCCGCGGAGTTCGTGCAGTACGTCAACAACCGCGACTTCTCCGTCTCGGTGGAGGACCTGGTCGACGCCGGCACGAGCACGGCCGACGCCGTGGCCGCCGCCGGCGACCTCGGTCCCGAGGGTCTGGCGTTCGTCGCCGCCGAGGACTCCCCGACCGGTGAGCCGATGCTCGCCGTCGGCAACGAGGTGTCCGGCTCCACGACGCTGTACGCGATCGACGGTCCGGCGCCCACCGAGGTCCCGGCCCGCGGCGTCATCTCCGACGACAACGCTCACGACGGCGTCCGTGGCGGCGACTACACCGTCTCGGTCGACCTGTGGTGGGGCCAGAACGCCACGCTGGTGCGCCTGCTGGAGGACGGCGAGGTCGTCGCGACGCGCAACCTGGTCGACGCCTCGCCGGCGGCCCAGCACGTGGAGTTCGCCCTGACGGGTCGCGCGGACGGCACCTACACCTACACCTGCGAGCTGGTGAACGCTGCCGGTGTCACCGACTGCCGCGACCACCGGGTCAGGGTCACCGACGCCGCTCCGGCGACGCCGAAGCTCAACCACGACAACCACGACCGGGACGGCTCCTACACGGTGAGCGCCGACCTGTGGTGGGGCACCAACGCCACGGCGTGGACGCTGTACGAGGACGACGTCGAGATCGCCGCGGGCGAGCTCGAGGCCGCCACGCCCTCGGCCCAGCACGTCGACGTGCCGGTCACCGGCCGCGAGCCCGGCCGGTACACCTACCGCGTCGTGCTCGCCAACGACCTCGGCGCCACGAGCTCGAAGGAGCTCATGGTCCGCGTGAAGTAGMPRRGIRPSLTRAGAAALGLTLCGCLLAPPAQASVVDDLIGTAADDAAIDLRPLGSYETGVFDESAAEIVAFHPGSQRLFSVNAHVGEVTVLDVADPAVPTQLFAVQTTGVASADGSTVPAGAVANSVAVRGDGLGVVAVESDVKTDAGWLVFFDAAGDGTALGAVRVGSLPDMVTVTPDGARAVVADEGEPNDDYTVDPEGDVAVVDLPAEVAAPAQDAVRIADFHAFEAEGALPEGVRVFAGIDGIDHPVSRNLEPEYVSVSGDSATAYVALQENNAVAVVDLADAEVTEIWPLGAKDHSLEGQGIDPSDEDGPDGEGVIDIRTVPVKGLYMPDGMDAYTAGGETYLVTANEGDAREFGDYEEPARIKDLGEDGIAPICADHPAADRTDDADLGRLDVSLASGLRADGECYDELYSFGGRSFSIWTTDGERVFDSGDDFEQITAQVAPEYFNSNNDESSFESRSDNKGPEPESVVVGVVDGRRYAFVGLERVGGIMVYDVTDPAAAEFVQYVNNRDFSVSVEDLVDAGTSTADAVAAAGDLGPEGLAFVAAEDSPTGEPMLAVGNEVSGSTTLYAIDGPAPTEVPARGVISDDNAHDGVRGGDYTVSVDLWWGQNATLVRLLEDGEVVATRNLVDASPAAQHVEFALTGRADGTYTYTCELVNAAGVTDCRDHRVRVTDAAPATPKLNHDNHDRDGSYTVSADLWWGTNATAWTLYEDDVEIAAGELEAATPSAQHVDVPVTGREPGRYTYRVVLANDLGATSSKELMVRVKPGPT0013395_65DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013395-nucA|ushA|yhcR|yfkN-K01081NANA
AK018_03049579hypothetical proteinATGAGCACCGTGTCAGAGATCTCCGCAGACTCCGAGCTCCGCGAGGTCGCCGACCAGATGTCGACCCAGGCGCGCACGTTCCTGTCCACGACGTCGCAGGTCGCCGGGGGAGGGTTCCCCGGCGCCGAGCTGTCGCTGCTGATCCTGGCCACCTCGGACCTGCTGGCCGCCGGCGCACGGTTGGCGGCCATCGTCGACGTCGTGCCCGCGCAGCGGTTCGAGCCGGACGCCGGGCGGGAGACCGACGTCGACCCGCTGCGCGTCGCGCTGGCGCAGATGTTCGACGGCTTCGACGACTACGTCGAGGTCGTCGACCCGGTGCTCGGCACCGAGCTGGGGCAGGCCTCGCTCTCCGGCGACCTGGCCTGCGTCACCGAGGAGATCGCCAAGGGGCTGCAGCACTTCGACGACGGCCACGAGCTCGAGGGGCTGTGGTGGTGGCAGTTCTCCTACCTGTCGAGCTGGGGCGAGCGCGCCTCCTCGGCGCTGCGACTGCTGCAGTCGGTGCTCGCGCACCTGCGCCTGGACGTCGAGGCCGACGTCGCCGCCGAGGCGGAGTACGACGCCCTGCACTCCTGAMSTVSEISADSELREVADQMSTQARTFLSTTSQVAGGGFPGAELSLLILATSDLLAAGARLAAIVDVVPAQRFEPDAGRETDVDPLRVALAQMFDGFDDYVEVVDPVLGTELGQASLSGDLACVTEEIAKGLQHFDDGHELEGLWWWQFSYLSSWGERASSALRLLQSVLAHLRLDVEADVAAEAEYDALHSNANANANANA
AK018_030501140hypothetical proteinGTGCGAGTGCCCCGACCCCGACTCCTCTGCGCGGCGGGCCTGGTGTGCCTCGTGCTCCCGGGCTGCGGACCGCCCGGCCCCGGTGCACCGGCGGACGGCCCGCCCGACGACCCGCCTGGGTCAGCGACCTCGGCCGACACCGGCTACTCCGAGGCCGAGCGGTCCGACCTGACGGGCTCGGCCCGGTCGTCCGCCGAGCGGAACGGTTACTCCGGGTCGGGGTTCGTCGAAGGCCTGCGTGCGGTCGGCGACGGTGTCTCGTTCACCGTCACCACCGAGGAGGCGGGTCCGCAGCCGGTGAACCTGCGCTACGCCAACGGCCCCACCCCGTTCGAGGGCGCCAAGTCCGTCTCGGTGTCCGTGAACGGCAGCGCGGCGGAGCAGTGGGTACTGCCCAGCACCGGCGACCGGGAGAGCTGGGACGTCGCCACGCGCGACCTCGTGCTGGAGGCCGGGACGAACACGATCACGGTGCAGCGCGGTGAGCGCGACGACGGCCACGTGGCCCTCGATGTGCTCTCGCTCGGCGCGGACCCGGACCTGTGCTCCCCGGCGGAGCCCGACCCCGGCTACACCGCGCTGTTCGACGGCACGCTCGCGAGCTTCGACGACTGGCGCCTCGCCGGCGCGGGCTCGTTCGGCCGCCGGGACGACTGCACCCTGGAGACCACGGGCGGTCTGGGACTGCTCTGGCACACCGACGAGCTGGAGGGTCCCTACAGCCTCCGGCTCGAGTGGAGGCTGGTCGACGACGACAACGGCGGGGTCTTCGTCGGGTTCCCCGACCCGGGCGACGACCCCTGGATCGCCGTCGACCAGGGCTACGAGATCCAGATCGACGCCAGCGACGAGGCCGACCGCACCACCGGTGCGGTCTACACGTTCCAGGGAGCCGACCCGGAGGCCGTGGCCGAGGCGCTGAACCCGGTGCCCGCATGGAACGCGTACGACATCCGCGTCGCGGACGGCACCGTCCGGGTGTTCCTCAACGGGACGCCGGTCAACGACTTCACGGGCACCGACCCGGCACGGGACCTGTCCTCCGGGTTCGTGGGCGTGCAGAACCACGGTCCGGGCGACCGGGTCTCCTACCGGAACATCCAGGTCGCGCCGCTCGATGACCGGCCGGACTCCCCATGAMRVPRPRLLCAAGLVCLVLPGCGPPGPGAPADGPPDDPPGSATSADTGYSEAERSDLTGSARSSAERNGYSGSGFVEGLRAVGDGVSFTVTTEEAGPQPVNLRYANGPTPFEGAKSVSVSVNGSAAEQWVLPSTGDRESWDVATRDLVLEAGTNTITVQRGERDDGHVALDVLSLGADPDLCSPAEPDPGYTALFDGTLASFDDWRLAGAGSFGRRDDCTLETTGGLGLLWHTDELEGPYSLRLEWRLVDDDNGGVFVGFPDPGDDPWIAVDQGYEIQIDASDEADRTTGAVYTFQGADPEAVAEALNPVPAWNAYDIRVADGTVRVFLNGTPVNDFTGTDPARDLSSGFVGVQNHGPGDRVSYRNIQVAPLDDRPDSPNANANANANA
AK018_03051600recR_2COG0353Recombination protein RecRGTGTACGAAGGTGCGGTCCAGGACCTGATCGACGAGCTCGGCCGGCTGCCCGGTGTCGGGCCCAAGAGCGCGCAGCGCATCGCGTTCCATCTGCTCGCCACGGATGCCGCCGACGTGCGGCGGCTCGTGGACGCCCTGACCGAGGTCAAGGCCCGCGTGCAGTTCTGCGAGACCTGCGGGAATGTCGCCGAGTCGGCGACGTGCCGGGTGTGCGCCGACCCGCGTCGCAGCGACGAGGTGATCTGCGTCGTCGAGGAACCCAAGGACGTCGTCGCCATCGAGCGCACACGGGAGTTCCGCGGCAAGTACCACGTGCTCGGCGGGGCCATCAACCCGCTGGAGAACGTCGGGCCCGACGACCTGCGGATCAGCGAGCTCATGTCCCGGCTGGCCGACGGCGCGGTCACCGAGGTGATCATCGCCACCGACCCGAACGTGGAGGGCGAGGCGACGGCGACGTACCTCTCACGGCTCATCGGGCCGATGGGTGTGACGGTGTCGCGCCTCGCGTCCGGGCTGCCGGTCGGGGGAGACCTGGAGTACGCGGACGAGGTCACCCTCGGTCGCGCGTTCGAGGGGCGTCGCGTCGTCGGCAGCTGAMYEGAVQDLIDELGRLPGVGPKSAQRIAFHLLATDAADVRRLVDALTEVKARVQFCETCGNVAESATCRVCADPRRSDEVICVVEEPKDVVAIERTREFRGKYHVLGGAINPLENVGPDDLRISELMSRLADGAVTEVIIATDPNVEGEATATYLSRLIGPMGVTVSRLASGLPVGGDLEYADEVTLGRAFEGRRVVGSNANANANANA
AK018_03052546yfcDputative Nudix hydrolase YfcDATGATGCGAGTCATGGACTCCGACCCGGCCGACGAGACCGTCGCGCTGTTCGACGACGCCGGCGCGCCGTGCGGCACCGCCCCGCGCCACCGTGTGCGGGCCGAGAACCTGCGCCACGCGGCCACCGCCGTCGTCGTCCGCAACGCCGCGGGCGAGGTCTACGTGCACCGGCGTACCGACACCAAGGACGTCTACCCCGGGCGCTACGACTTCTGCGCCGGCGGGGTGCTGCGCGCCGGCGAGTCCCCGCTGCAGTCCGCGCGCCGCGAGGTCGCCGAGGAGCTCGGCGTCGAGGGCGTGCCGCTGCTGCGGCTCGGCGAGCGCGACTACGCCGACGACCACACCCGGTACCGCGCGTTCCTGTTCACCTGCACCTGGGACGGGCCCGTGCGCTGGCAGCCCGAGGAGATCGCCTGGGGTCGGTGGGTGTCCCCGCGACGGCTCGTCGAGATGGTCGACCAGCACGCGTTCGTGCCCGACTCGGTCGCGGTGCTGGACCGCTGGCTCGACGCCCTGCGTGCCGCCGGCTCGCGCGGCGCGGTCTGAMMRVMDSDPADETVALFDDAGAPCGTAPRHRVRAENLRHAATAVVVRNAAGEVYVHRRTDTKDVYPGRYDFCAGGVLRAGESPLQSARREVAEELGVEGVPLLRLGERDYADDHTRYRAFLFTCTWDGPVRWQPEEIAWGRWVSPRRLVEMVDQHAFVPDSVAVLDRWLDALRAAGSRGAVNANANANANA
AK018_03053831hypothetical proteinATGTCGACGCAGGACGCCGAGCACCGGCCGCCCGCCGGGACCGTCGACGACCGGCCGCGCGGGCTGACCGGCTGGGCCGCGGCGCACCCGGTGGCCGCCTTCGTGGTGCTCGCCTACGCGATCTCCTGGACGCTGTGGGTGCCCGTCGTGGTCGGTGCCGGCGGGGCCGTCGCCCAGGTGCTGTTCGTGGTGGGCGGACTGGGCCCGGCGGTCTCGGCCCTGCTCGTCACCCGCCGCATCGGGGCGCCGCTGGGCCCGTGGGCCCGGCAGATCGTCCGGTGGCGCGTCCCGCTGCGCTACTACCTCTACGCGCTCGGCCTGCCCGCCCTGCTGTTCGCCATCGTCGACGTCGAGCTGGCGATCGTCGGCCAGGAGATCGACCTCGCCCTGCTCGGGGACCGGCTGCCCGCCTACCTCATGACGTTCCTGGCCGTGGCCACGATCGGCGGCGGGTTCGAGGAGCCCGGCTGGCGCGGGTTCGCGTTGCCCCGGCTGCAGGAGCGCTTCGCCCCGCTGGCCGCGACCTGCCTCCTCGCCCTGGTCTGGGGAGTCTGGCACCTGCCCCTCTACGGGCTCGGGTTCGTCGGCCCGATGGTCTTCGCCTTCTACTACACGTGGCTCTACAACCGCACCGGCAGCGTGCTGCTGTGCATCCTGCTGCACGGGAGCTTCACGCCCGCCCTCGACCACCTCGTGCTGCGTGCGGACAACCTCGCGGTCGACGTCGCCATCGGCGCCACCCTCGTGGCCGGTGCGGTCGTGCTCGTCGTCGTCACCAAGGGGCGCCTCGGCTTCGACGCCGCGAGGAACGGCGCCTACCGCACGGGCTGAMSTQDAEHRPPAGTVDDRPRGLTGWAAAHPVAAFVVLAYAISWTLWVPVVVGAGGAVAQVLFVVGGLGPAVSALLVTRRIGAPLGPWARQIVRWRVPLRYYLYALGLPALLFAIVDVELAIVGQEIDLALLGDRLPAYLMTFLAVATIGGGFEEPGWRGFALPRLQERFAPLAATCLLALVWGVWHLPLYGLGFVGPMVFAFYYTWLYNRTGSVLLCILLHGSFTPALDHLVLRADNLAVDVAIGATLVAGAVVLVVVTKGRLGFDAARNGAYRTGNANANANANA
AK018_030541509hypothetical proteinGTGACGACGACGTACCGCCTGCCCCGTGCCACCCCGGCGTCCCAGGGCGTCGACCCGGAGTCCCTGCGGCGGCTGGTCGCCGCGCTCGACCAGGTCCGCGACGTGCACAGCCTCATGGTGCTGCGGCACGGCCACGTGGTCGCCGAGGCGTGGTGGGACCCGTTCGCCCCGGACGAGCCGCACCAGATGTTCTCCGTGTCCAAGGCGGTCACCGCCACCGCGGTCGGGATGGCCGTGGACGAGGGTCTGCTGAGCATCCACGACCGGGTCGTCGACCTGCTGCCCGACGACGCGCCGTCGGACCCGGGCGAGCACCTGGCGGCGATGACGGTGCGGCACCTGCTGACGATGACCAGCGGGCACGGCACCGACACGATGAACTTCACGCTGCGCAACCTCCACCGCCCGGGCGGCAGCTGGGCGCGGGACATCCTCGCGTCCCCGGTGGTCCACGCCCCGGGCACCCGGTTCGTCTACAACACCGGGGCGACCTACCTGCTCTCGGCGATCCTGCACCGGCTCACCGGGGATCGGCTGCTGGACTGGTTGACCCCGCGGATGCTCGACCCGCTGGGCATCTCGGGCGCCACCTGGGAGCAGTGCGAGCAGGGCATCGACGTCGGCGGGTACGGGCTGACCCTGACCACCGAGGACCTCGCGTCGCTCGGCCAGCTCTGGCTGCAGCGCGGCAGGTGGGGCGAGCAGCAGCTCGTCCCGGCCGCGTGGGTCGACGAGATGACCTCCGCCCAGGTGGACAACGGCCCGGACGAGAAGCCCGACTGGGAGCAGGGGTACGGCTACCAGTTCTGGCGGTGCCGGCACGGCGCCTCCCGGGCCGACGGCGCCTTCGGGCAGTTCGCCGTCGTCTGGCCCGAGCACGACGCCGTGGTCGTGCTGACCAGCGGGACGACGGACACCGCCGCCGAGCTCGACGCGATCTGGGACACGCTCGGTGGTGCGTTCGGCCCGGTGCCGGGCGCCGGGACGTCCGACGCCGGGGACGGTCCGACGTCGTTCGCCCCGGACGACCTCGCGGTCGCCGTGCCGGAGGGGCGCGCGCACGTCGTGCTCGAGGACTTCGTGCGGGGTTCCCGGTTCGTGCTGACGCCCGAGTCCGGGCACGACGCCGCGAGCCCCGGCGGGCCGCTCCTGCACTGGCACGCGATCTCGGTGGACCGTGTCGACGACGAGCTCACCCTGACCTGGGAGGCCGACGCCGGTGGTGCGGCGCGCACCGTGCGGTGCGGCACCGGGCGCTGGGTGACCGGGCGGGCCGGGCTCGAGCCCGGCGAGGAGGTCGCCGTGGCCGGGGCGGCCGCCTGGACCGGGGCGCACGAGCTGACGCTGCGCCTGGTCCGCCGCGGCACGCCGTTCGTCCTCGAGGTCCGGCTGGCCTTCGGCGGCGACGGCGAGGGCCGCTGGGTGGAGGTGGCGGCCGACCAGCCGGTGTCGTTCGGCCGGACCGATCTGCTGCGCGCTACCGGGCTCGGGGTGGGCGCCGGGGTGTGAMTTTYRLPRATPASQGVDPESLRRLVAALDQVRDVHSLMVLRHGHVVAEAWWDPFAPDEPHQMFSVSKAVTATAVGMAVDEGLLSIHDRVVDLLPDDAPSDPGEHLAAMTVRHLLTMTSGHGTDTMNFTLRNLHRPGGSWARDILASPVVHAPGTRFVYNTGATYLLSAILHRLTGDRLLDWLTPRMLDPLGISGATWEQCEQGIDVGGYGLTLTTEDLASLGQLWLQRGRWGEQQLVPAAWVDEMTSAQVDNGPDEKPDWEQGYGYQFWRCRHGASRADGAFGQFAVVWPEHDAVVVLTSGTTDTAAELDAIWDTLGGAFGPVPGAGTSDAGDGPTSFAPDDLAVAVPEGRAHVVLEDFVRGSRFVLTPESGHDAASPGGPLLHWHAISVDRVDDELTLTWEADAGGAARTVRCGTGRWVTGRAGLEPGEEVAVAGAAAWTGAHELTLRLVRRGTPFVLEVRLAFGGDGEGRWVEVAADQPVSFGRTDLLRATGLGVGAGVNANANANANA
AK018_03055120hypothetical proteinGTGCTGGCCACGGACGCCGACAACGGCGCCTTCGGCCGGCCGGCCGCCGCACGGCTCGCCCTGCTGCGCGAGATCACCGCGGTCGACCGCACCGGCTACCTCGACGGCGTCCCGGGCTGAMLATDADNGAFGRPAAARLALLREITAVDRTGYLDGVPGNANANANANA
AK018_03056435nudGCOG0494CTP pyrophosphohydrolaseGTGACGGTCCCGGCGACCACCACTCTGTACATCGTCTCCGCCGTCGTCCGGCGCGACGGCCGGTGGCTCGTGGTGCGCAAACGGCACACGGAGACGTTCATCCAGGTGGGCGGCAAGATCGAGCCGGGAGAGAGCCCCCGGGACGCGCTGGTGCGCGAGTGCCACGAGGAGATCGGCCTGGAGGTCGACCCGCCGCGGGTACGGGCGCTCGGCCACCACCACGCGGTCGCCGCGAACGAGCCGGACCACGTGGTCGACGCCCACGCGTTCGAGGTCGAGCTGCCGCCGGGCTTCGAGCCGGAACCGCGGGCGGAGCTGGCCGAGGTGAGGTGGATCGACCCGGAGCACCCGGTGACCCCGTACCCGCTGGCGCCGCTGTCGCGGGCGCTGATCGCCCGCTTCGGCGCGGATCAGCCCGGGACGCCGTCGAGGTAGMTVPATTTLYIVSAVVRRDGRWLVVRKRHTETFIQVGGKIEPGESPRDALVRECHEEIGLEVDPPRVRALGHHHAVAANEPDHVVDAHAFEVELPPGFEPEPRAELAEVRWIDPEHPVTPYPLAPLSRALIARFGADQPGTPSRPGPT0021230_1524DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876NANA
AK018_030572826hypothetical proteinATGTTCCTGTCGGCCCCGACGTCTACAGTTGCAGGGGTGACCACCGCTCTGTACCGCCGCTACCGGCCCGAGACGTTCGCCGAGGTGATCGGCCAGGACCACGTCACCGCGCCCCTGCGGCAGGCGCTGCGCACCGGTCGCGCCAACCACGCCTACCTCTTCTCCGGACCGCGCGGCTGCGGCAAGACGACGTCCGCGCGGATCCTGGCGCGCACGCTCAACTGCCACCGCAACACCCCCGAGAAGCCGCTCGACACCCCGTGCGGCGAGTGCCCCTCGTGCGTGGAGCTGGCCCGCGGCGGTCCCGGCTCCCTCGACGTCGTCGAGATCGACGCCGCGAGCCACAACGGCGTCGACGACGCCCGTGACCTGCGCGAGCGTGCCACGTTCGCCCCCGCGCGGGACCGGTACAAGATCTTCGTGCTCGACGAGGCCCACATGGTGACCTCGCACGGCTTCAACGCGCTGCTCAAGATCGTCGAGGAGCCGCCGGAGCACATCAAGTTCGTGTTCGCGACGACGGAGCCGGACAAGGTCATCGGCACGATCCGCTCGCGCACCCACCACTACCCGTTCCGCCTGGTCCCGCCGGACGTGCTCGGGCCGTACCTCGAGCAGCTCTGCGCGGCCGAGGGCATCGAGCTCGGCGCCGGGGTGGTGCCGCTGGTCACGCGGGCCGGCGGGGGATCGGTGCGCGACACCCTGTCGGTGCTGGACCAGCTCATCGCCGGGTCGTCCGGCACGGTCGAGTACGACCTCGCGGTGAGCCTGCTCGGCTTCACCCACGCGACGCTGCTGGACGACGTCGTGGACGGGATCGCCGCCCGTGACGGCGCCTCCATCTTCCGCGTGATCGACCACGTCATCGCCACCGGTCACGAGCCGCGCCGGTTCGTCGAGGACGTCCTGGAACGGCTGCGCGACCTCATCGTCATCGCGGTCTCCGGCGAGGCCGCCGACGCCGTGCTGCGCGACCTGCCCGCCGACCAGCTCGAGCGGATGCGCCACCAGGCCGCCCACCTCGGTTTCTCGGAGCTCTCCCGCGCCGCCGACCTGGTCAACACCGCCCTGACCGAGATGACCGGCGCCACCTCGCCCCGGTTGCACCTCGAGCTGCTGTGCGCCCGCCTGCTGCTGCCGGGCGCCGACGACGGCACGGAGGGTCTCGCCGCCCGCCTCGACCGGCTCGAGCGCGGGGCGGTCGCGGCCGGCCCCGTCGGTGCGGCGCCGGGCACCACGGCGGCACCCGCCGACGGTGCCGAGGAGCAGGCTGCCGCCGAGCCGGCAGCCGCCGCGTCCGGGACGTCGGGGCTGTCCGGCGCCGCCGCGGCCCGAGCCGCCCTGGCCCGGAGTCGCCGGCCGGTGGCAGAGGTCTCCCCGCCGGCGCAGACCCCCGCCGCGCCGCCCGAGCCGGCACCGCAGGCGACGACGGAGCCGGCACCGTCGGCGTCCGACCCCGCACCGCCGTCGGTGGCCGTGTCCCAGCCCGCCCCGGAGGCGGGGGCCGAGGCGGACACCGAGGCCGAGCCGACGTCGGCACCCGAGCCGCCCGCGCCGGTCGAGGACGCCGCGGTGCCGGCGGCGCCCGTCGTCGGCCCGGACGCCGAGTCCGACGCCGCAGAGCACGCGGCCGCGGAGCCCCCGGCCGAGGAGCCTCCGGCTCAGGAGCCCACGGCCGAGGAGCTTCCGGCCGAGGAGCCTCCGGTCGAAGCGCCCGAGGACTTGGCGCCGGAACCCGTGGAGCCCGCGGCCCCGGCGTCGGAACCTCGGGACCCGCGCCCCGCAGCACCGCCGGCGCCCGCGTCGCCGACCGGGCACACCCCGGAGCCGGCGAGTGCGAGCGGTCCGACGGCGGAGGACCTGCGCCGCCGGTGGGAGGAGATCGTCGCCAACCTCGGCAGTCCCGTGACGCGGGCCCTGGTCGAGCAGAACGCCCAGATCGGTGCGCTGTCCGGGGACCGGCTCCAGCTCAGCTTCCAGACCGAGGGGCTGGCGCGGAACTTCTCCCAGCCGCGGCACACCGAGGCGTTCGCCGAGGCTGTCTACCAGACGCTGGGTCTGCGGGCCCAGATCGAGGTGACCGTCGGGGCGCCCGGGCCGGCCGACCCGCCGGCGTCGGGGCCGACGTCCGAGTCGGGCCCGCGTCGCGAGCCGCCGGCCGACCGGCCGTCCGCTCCGGAGCCGCCGCGGGGTGCCTCGCACGGGCCGCACGGTGGCGGGCACGCTGCGGCGTCGCAGGTCTCCGCCGCCTCGGCGGGACAGGGCGGCCTGGCCGTCGCCGAGCGCGTCGACACCGCGCCGGCCGACGCAGTGCCCGGACCGTCGCCCGACGCAGCGCCCGACACCGCGCCCGACACCGCGGCCGCCGACGCGGCCGACGCCGCTTGGCTCGCCGGGGCCTCGGCCGCGACCTCGCAGAGCGCGGCGTCCGCCGCCTCCGCCGCGCCCGGCCGTGCACCGGCCCGCCCGGAGCCCGCGCGAGCGGTCGCCGCGACCGTCGCCCCGCCGCAGCCGCCGTCGGAGGCCACGGGGTCCCCGGCCGCGCCCGCACCGTCGACACCCCCCTCGTCCGCGCCGTCGTCGCCCTCCACGGCGTCGGCGGACGCCTCGGCTCCCGCCGCGGAACCGGACCCGTGGCCGCACCGGATGCGCTCGGCGCCGCAGGAGACGGCGTCGGCACCGGACACGGCACCACGCGCCACCGACGGCTACGACGACGCCTCGGACAGCGACCCGGAGCTCGTGTCGTCGGGCCTGGTCGGCGTCCCGCTCGTGGTCAAGATGCTCGACGGCACGATCATCGACGAGACGACGGACGGCCCGTGAMFLSAPTSTVAGVTTALYRRYRPETFAEVIGQDHVTAPLRQALRTGRANHAYLFSGPRGCGKTTSARILARTLNCHRNTPEKPLDTPCGECPSCVELARGGPGSLDVVEIDAASHNGVDDARDLRERATFAPARDRYKIFVLDEAHMVTSHGFNALLKIVEEPPEHIKFVFATTEPDKVIGTIRSRTHHYPFRLVPPDVLGPYLEQLCAAEGIELGAGVVPLVTRAGGGSVRDTLSVLDQLIAGSSGTVEYDLAVSLLGFTHATLLDDVVDGIAARDGASIFRVIDHVIATGHEPRRFVEDVLERLRDLIVIAVSGEAADAVLRDLPADQLERMRHQAAHLGFSELSRAADLVNTALTEMTGATSPRLHLELLCARLLLPGADDGTEGLAARLDRLERGAVAAGPVGAAPGTTAAPADGAEEQAAAEPAAAASGTSGLSGAAAARAALARSRRPVAEVSPPAQTPAAPPEPAPQATTEPAPSASDPAPPSVAVSQPAPEAGAEADTEAEPTSAPEPPAPVEDAAVPAAPVVGPDAESDAAEHAAAEPPAEEPPAQEPTAEELPAEEPPVEAPEDLAPEPVEPAAPASEPRDPRPAAPPAPASPTGHTPEPASASGPTAEDLRRRWEEIVANLGSPVTRALVEQNAQIGALSGDRLQLSFQTEGLARNFSQPRHTEAFAEAVYQTLGLRAQIEVTVGAPGPADPPASGPTSESGPRREPPADRPSAPEPPRGASHGPHGGGHAAASQVSAASAGQGGLAVAERVDTAPADAVPGPSPDAAPDTAPDTAAADAADAAWLAGASAATSQSAASAASAAPGRAPARPEPARAVAATVAPPQPPSEATGSPAAPAPSTPPSSAPSSPSTASADASAPAAEPDPWPHRMRSAPQETASAPDTAPRATDGYDDASDSDPELVSSGLVGVPLVVKMLDGTIIDETTDGPNANANANANA
AK018_03058708rhgT_2COG2755Rhamnogalacturonan acetylesterase RhgTATGACGATCCATCTCGCCGGCGACTCGACCGTCGCCCCCACCGACCACGGCGCCACCTCGGGGCACGCCGGGATCCCGCTGCTGGGCTGGGGGGACGAGCTCGTCCCGCTCGTCGCGGACGACGTGCACAACGCCGCGATCGGCGGGGCCACGACGAAGTCGTTCCGCGACGAGGGCCACTGGGCGCGCGTGATCGGCGCCGTGCGCCCCGGGGACACCGTGATCATCCAGTTCGGGCACAACGACCAGAAGGAGCCCGACGAGCTCGCCGCGGACGGCGGGTACCGGCGTCGGCTCGACGAGTTCGTCACCGAGGTGCGGGAGCTCGGGGCCCGACCGGTCCTCGCCACGAGCGTCGAGCGCCGGTGGTTCGCCGACGACGGCTCGCTGCGCTGGTCCCACGGCGCCTACCCCGCGACCGTGCGGGCCCTGGCCGCCGAGCGCGACGTCCCGCTCATCGAGCTGACGGTGTTCACGCGCTGGCTGTACGCGTGGCTCGGCGTCGAGGCCTCGGCCGCGCTGTTCCCGCACGGCGCAGCCGCCGCGGCCGGTCTCGAGGTGCCGGAGGCCATGCAGCAGGACAACACCCACTTCACCACCGCCGGTGCGCGGTACGTGGCGCAGTACGTCGCCGAGGCGCTGGTCTCCCTCGACGGCGTGCACGACGCCGAGACGCCCGTGGGGCTGGAGATCGCCGCGCGATGGTGAMTIHLAGDSTVAPTDHGATSGHAGIPLLGWGDELVPLVADDVHNAAIGGATTKSFRDEGHWARVIGAVRPGDTVIIQFGHNDQKEPDELAADGGYRRRLDEFVTEVRELGARPVLATSVERRWFADDGSLRWSHGAYPATVRALAAERDVPLIELTVFTRWLYAWLGVEASAALFPHGAAAAAGLEVPEAMQQDNTHFTTAGARYVAQYVAEALVSLDGVHDAETPVGLEIAARWPGPT0027780_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0027780-dndE-K19172NANA
AK018_03059849gltC_2HTH-type transcriptional regulator GltCATGCGCTACGTCCTGGCCGTCGCGGAGACGGGCAGCTTCACCCGGGCCGCCGAGCGGTGCTTCGTGGTGCAGTCCGCGCTGAGCCACCAGGTGGCCGCGCTGGAGCGCGAGCTCGGGGTGCGGCTGTTCGCGCGCACGAGCCGCCGGGTCGAGATCACCGCGGCGGGGGAGGCGTTCCTCCCCGCGGCGCGACGCGCGCTGGAGGCGGCGGACCGGGCGGGCGCCGACGCCGCCGCTGCTGTCGGCCAGGTCCGCGGCACGCTGCGGCTCGGCATCATCCCGTCGGTGACCGCGTTCGACGTGCCGGCGGTCCTGCGACGCTTCCGGGAGGCGCACCCGCAGGTCGGGGTGTCCCTGCGGGTGGACTCCAGCGTCGAGCTCGTGGCAGCCGTGCGGGCGGGCGAGACCGACGTCGCGGTGCTGGGGCTGGCCCAGGGGGAACCGCCGTCGGGCGTCCGGCACCGCGAGCTCGTCCGCGAGCGGCTGGTGGCGGCCGTCGCGTCGGACCACCCGCTCGCGGGGCGTCAGCGGACCGGCCTCGCTCGGCTCGCGGACGAGACCTTCGCGGACTTCCCGACCGGGTCACCGGGCCGGGCGCAGAGCGACCGGGCGTTCTCCGCGGCCGGCCTGCGGCGCGAGGTGGCCTTCGAGGTGCCGACCACCGACCTGCTCCTCGGACTGGTCCGCGAGGGCCTCGCCGTGGCGATGCTGTCCGAGCCGCTGGTGACGGGGGCCGACGGCGTGACGGCCGTCCGCGTGACGCGCGGCCCGCAGCGGGTCCAGTACGTCGTGTGCGACGACCTCAACCCGAGCCCGGCGGCACTGGCGTTCGTCGACCTCGTGCCGTGAMRYVLAVAETGSFTRAAERCFVVQSALSHQVAALERELGVRLFARTSRRVEITAAGEAFLPAARRALEAADRAGADAAAAVGQVRGTLRLGIIPSVTAFDVPAVLRRFREAHPQVGVSLRVDSSVELVAAVRAGETDVAVLGLAQGEPPSGVRHRELVRERLVAAVASDHPLAGRQRTGLARLADETFADFPTGSPGRAQSDRAFSAAGLRREVAFEVPTTDLLLGLVREGLAVAMLSEPLVTGADGVTAVRVTRGPQRVQYVVCDDLNPSPAALAFVDLVPNANANANANA
AK018_03060975hypothetical proteinATGACCACCACCGCTCCGGCGTCACCCGCGACGGCGCCTCCTCACCCTCCGGCCGCGGCGCACGTCGGCACGGTCGCCCTGACCGCGATCACACCGGTCGTGTGGGGCACCACCTACCTGGTGACCACCGAGCTGCTCCCTCCGGGTCACCCGCTGTTCGCCGCCGCCGCGCGCGCCCTGCCCGCCGGGCTGCTCGCCCTCGCGATCGCGCGGACGCTGCCGCGCGGATCCTGGTGGTGGCGGGCAGCGGTCCTCGGCGTGCTGAACATCGGGGCGTTCTTCCCGCTGCTCTTCGTCGCCGCCGAACGCCTGCCCGGCGGGGTCGCCGCGACGCTCGGCGCCGCCCAACCGCTGGTCGCCACCGTCCTGGCCGTCGTCGTCCTCGGCGACCGGTGGTCCGCGTGGCGCCTCGCCTGGGGCGTCGTCGGGGTGCTCGGGGTCGGGCTCGTCGTGCTCGGGCCCGAGGCCGCCCTCGACCCGGTCGGCCTCGCCGCGGGCGTCGGCGGCGCCGGCGTCATGGCGCTCGGCGTCACGCTGACCAAGAGGTGGGGCCAGCCACCCGGCGTCGGCGCCACGGGGTTCGCCGGATGGCTGCTCACCGCGGGCGGGCTGGCCCTGGTGCCGTTCGCGCTGCTCGAGGGCGGTGTCCCGACGGGCGTCGACGCCCCGGCCGTCGGTGGCTACCTCTGGCTCGGGATCGTCGGCGGGCTCGTGGCGTACACGCTGTGGTTCGCCGGGATCCGCCGGCTCTCCGTCGTGGCAGTGGCTTTCCTGGGGCTGCTGTCCCCGCTGACCGCCGCCCTCCTCGGTGCCACGGTGCTCGGGGAGTCGATGGGGCCGGCCCAGCTCGCCGGATTCGGTCTGGCGATGCTGGCGCTGGTCGCGGGGCAGCTCGTCCCCCGACGCCGACGAGTCAGCGCCGCAACGCCCGCCGCGCCAGGGAGTTCCCCAGCCACTGCACGAGCTGGACGATGAMTTTAPASPATAPPHPPAAAHVGTVALTAITPVVWGTTYLVTTELLPPGHPLFAAAARALPAGLLALAIARTLPRGSWWWRAAVLGVLNIGAFFPLLFVAAERLPGGVAATLGAAQPLVATVLAVVVLGDRWSAWRLAWGVVGVLGVGLVVLGPEAALDPVGLAAGVGGAGVMALGVTLTKRWGQPPGVGATGFAGWLLTAGGLALVPFALLEGGVPTGVDAPAVGGYLWLGIVGGLVAYTLWFAGIRRLSVVAVAFLGLLSPLTAALLGATVLGESMGPAQLAGFGLAMLALVAGQLVPRRRRVSAATPAAPGSSPATARAGRNANANANANA
AK018_03061654metP_2COG2011Methionine import system permease protein MetPATGAACCCCGACCTCGTGCCCGTACTGTGGCAGGCGTTCGGCGAGACCGTCTTCATGGTGCTGATCACCCTGGCCGTGGGCGGTGTCTGCGGGCTCGCGCTCGGTCTCGGGCTCTACCTGACGCGGCCCGGCAACCTGCTGGAGCACGGCGGCGTGTTCGCGGTGCTGAACGTGGCCGTCAACGTCGTGCGTCCGATCCCGTTCCTCATCTTCCTCGTGGCGCTGGGCCCCGTGACCCGCGCCGTGGTCGGGACGACGATCGGGACCGGGGCGTTCACGTTCGCGATGTGCGTCATGGCGTCGTTCGTGTTCGCGCGGCTGGTGGAGCAGAACCTCGTCTCGATCGACCCCGGCGTCATCGAGGCGGCCCGGGCGATGGGCGCCTCGCCGCTGCGGATCGTGCGCACCGTCGTCGTCCCCGAGGCGCTGTCCCCGCTGATCCTCGGCTACACCTTCCTGTTCGTCGGGGTGCTCGACATGTCCGCGATCGCCGGGTACCTCGGGGCCGGCGGGCTGGGCGACTTCGCCATCGTGTACGGCTACCGGCAGTACGACTGGGCGCTGACGGCGCTGGTCGTGGTGATCATCATCGTCATCGTCCAGCTCGTGCAGTGGCTGGGGAACTCCCTGGCGCGGCGGGCGTTGCGGCGCTGAMNPDLVPVLWQAFGETVFMVLITLAVGGVCGLALGLGLYLTRPGNLLEHGGVFAVLNVAVNVVRPIPFLIFLVALGPVTRAVVGTTIGTGAFTFAMCVMASFVFARLVEQNLVSIDPGVIEAARAMGASPLRIVRTVVVPEALSPLILGYTFLFVGVLDMSAIAGYLGAGGLGDFAIVYGYRQYDWALTALVVVIIIVIVQLVQWLGNSLARRALRRPGPT0020515_3522DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020515-metI-K02072NANA
AK018_030621095metN2_2COG1135Methionine import ATP-binding protein MetN 2GTGAGCGAGCCGATCATCAGCTTCCGCGACGCGGTCAAGGAGTTCCCCGCCGCCCGCGGACCCCGTCGTCGGCAACGCGGACGACGCGGCGCCCCCGTCCGCGCCGTCGACGGCGTCACGCTCGACGTCGTCGCCGGCGAGATCTTCGGCGTCATCGGCTACTCCGGAGCCGGCAAGTCCACCCTGGTCCGGCTGGTGAACGCGCTGGAGACGACGACGGCGGGAGCGGTCGTGGTGGACGGCACCGACCTGACGGGGCTGAGCGAGGCACGGCTGCGTCCCGTCCGCGCCGGGATCGGCATGATCTTCCAGCAGTTCAACCTGCTGGCCTCCCGCACAGTCGCCGGGAACGTCGCCTACCCGTTGGAGGTGGCCGGCTGGTCGCGCGCCGACCGGGACTCCCGGGTGCGCGAGCTGCTCGACTTCGTCGGCATCGGCGACAAGGCCCACGTCCACCCCGCGCAGCTGTCCGGCGGCCAGAAGCAGCGCGTCGGCATCGCCCGGGCGCTGGCGACCAGCCCCCGGATCCTGCTCGCGGACGAGGCCACCAGCGCGCTCGACCCGGAGACGACGGCGGACGTGCTCGCCCTGCTGCAGCGCGTCAACCGCGAGCTCGGCATCACGGTCGTGGTGATCACCCACGAGATGGAGGTCGTGCGCTCGATCTGCCACCGTGTCGCCGTCATGGAGGCCGGTCGCGTGGTCGAGCTGGGCGACGCCTACCGGGTGTTCAGCGCACCGCAGCACCCGGTCACGCGCCGGTTCGTCGCCTCCGCGCTGCGGGACGTCCCGTCGCCGGCCGTGCTGGACCGGCTGCGCGAGCGCCATCCCGGCCGGGTCGTCACCGTCCGGATCGACGAGGTGGCCGGGTCGTCCGCGCAGGTCACGCGGGTCCTGGCCGAGCACGGCGTGGACGGCACGATCGTCTACGGCGGCATCACCGAGGTCGCCGAGCGCCCCTACGGCTCGCTCACGCTCGAGCTCGTCGGGGACGACGCCGCTGTACAGGCCGCGCTGGACGGCCTGCGGGCCGCCACGACCGTCGTCGACCACGGCACCGCCACCCGACCCGCCGCCGACAGGAGCGACCGATGAMSEPIISFRDAVKEFPAARGPRRRQRGRRGAPVRAVDGVTLDVVAGEIFGVIGYSGAGKSTLVRLVNALETTTAGAVVVDGTDLTGLSEARLRPVRAGIGMIFQQFNLLASRTVAGNVAYPLEVAGWSRADRDSRVRELLDFVGIGDKAHVHPAQLSGGQKQRVGIARALATSPRILLADEATSALDPETTADVLALLQRVNRELGITVVVITHEMEVVRSICHRVAVMEAGRVVELGDAYRVFSAPQHPVTRRFVASALRDVPSPAVLDRLRERHPGRVVTVRIDEVAGSSAQVTRVLAEHGVDGTIVYGGITEVAERPYGSLTLELVGDDAAVQAALDGLRAATTVVDHGTATRPAADRSDRPGPT0020520_22DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071NANA
AK018_03063888metQ_2COG1464putative D-methionine-binding lipoprotein MetQATGACCCTGCGCTCCACCCTGCTCACCACCGGCGCCGCCGCCTCCGTCCTGGCCCTGGCCGCCTGCTCCGGCGACGCCGCCGCGACCGCGAGCGGTACCGCCGAGGACCCCGTCCGCATCGGCGTCGTCTCCGCCGGCGAGGCCTACTGGGACACGTTCGCCGAGGCCGCCGCGGCTGAGGGCATCGAGGTCGAGATCGTGAACTTCTCCGACTACCAGCTCCCCAACCAGGGGCTGTCCGACGGCGACCTCGACCTCAACCAGTTCCAGCACCTGCAGTTCCTCGCCGGATACAACGTGGCCCGCGGCGACGACCTCACCCCGATCGGCGCCACCGCCGTCTACCCGCTGGGTCTGTACTCGACCGCTCACGCGAGCCTCGACGAGATCCCGGACGGCGGCCAGGTCGCGATCCCCAACGACGAGACGAACCAGGCGCGGGCGCTGCTCGTGCTGCAGGACGCCGGGCTGCTCACCCTGCGCGACGGCGGGAACTCGTTCTCCACGCCGGCCGACGTGGTCGCCGAGGAGTCCCGCGTGTCGGTGACGCCGGTCGACGCGGCGCAGACCGCGATCGCCCTGGCGGACGTCGACGCGTCGATCATCAACAACGACTTCGTGGGCGACGCCGGCCTGGCCGAGGACGACGCGATCTTCACCGACGACCCGGACTCCGCGGCGGCCGAGCCGTACATCAACGTGTGGGTGGCCCGGTCCGCCGACGCCGAGGACGAGACGCTGGCCCAGCTCGTGGACATCTACCACTCGCCCGAGATCGAGGCCCAGGTCCTCGAGGCCTCCGGCGGCACGGGTGTGATCAAGGACAACGACCCGGCCGACCTGCGGGCGATCCTCGACGACATCGAGACGAACCTCGCCGCCGAGTGAMTLRSTLLTTGAAASVLALAACSGDAAATASGTAEDPVRIGVVSAGEAYWDTFAEAAAAEGIEVEIVNFSDYQLPNQGLSDGDLDLNQFQHLQFLAGYNVARGDDLTPIGATAVYPLGLYSTAHASLDEIPDGGQVAIPNDETNQARALLVLQDAGLLTLRDGGNSFSTPADVVAEESRVSVTPVDAAQTAIALADVDASIINNDFVGDAGLAEDDAIFTDDPDSAAAEPYINVWVARSADAEDETLAQLVDIYHSPEIEAQVLEASGGTGVIKDNDPADLRAILDDIETNLAAEPGPT0020510_372DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073NANA
AK018_030661800bga_2Beta-galactosidaseATGCCACGCTTCGACATCGGTGACGAAGACTTCCTGCTCGACGGCGAGCGCCTGCAGATCGTCAGCGGCGCGCTGCACTACTTCCGGGTGCACCCCGACCAGTGGGCCGACCGGATCCGCTCCGCCCGGCTCATGGGGCTCGACACCATCGAGACGTACGTGGCGTGGAACCACCACTCCCCCGCACCCGGCGAGTTCCGCACCGACGGCCGCCGCGACCTCGCCCGCTTCCTCGACCTCGTCGCCGCCGAGGGGATGCACGCGATCGTGCGTCCCGGCCCGTACATCTGCGCCGAGTGGACCGGTGGCGGCCTGCCCGCCTGGCTGCTGGCGGACCCCGCCGTCGGCGTCCGGCGCGCCGAGCCGCGCTTCCTCGCGGCGATCGGCGACTACTACCGCGCCGTGGCCGCGATCGTCGCGCCGCGGCAGGTCACCCGGGGCGGCTCGGTGCTGATGATGCAGGTCGAGAACGAGTACGGCGCCTACGGCGACGACCCCGTCCCGGTGCGCCAGGAGTACCTGCGCACGCTGGCCGGGATGCTGCGCGACGCCGGGATCGAGCTCCCGCTGTTCACCTCCGACCAGGCCGACGACGAGCACCTGTCCCGCGGCAGCCTGCCCGAGCTGCACACGACGGCGAACTTCGGCTCCCGCAGCCCCGAACGGCTCGCCCTGCTGCGCCGCCACCAGCCCACCGGGCCCCTGATGTGCATGGAGTACTGGAACGGCTGGTTCGACTCGTGGGGTCTGCACCACCACACGACGGCGCCCGACGCGACGGCGCGAGACCTCGACGCCCTGCTCTCGGCCGGCGCGTCGGTGAACCTGTACATGGTCCACGGCGGCACGAACTTCGGCCTCACCTCCGGCGCCAACGACAAGGGCGTGTACCGCCCCATCACCACGTCCTACGACTACGACGCCCCGCTGGCCGAGCACGGAGCACCGACCGCGAAGTACCGGCTCCTGAAGGAGGTCGTCGCCCGGCACCGGGACGTGCCGCCCGAGTCGCCCGCCGCGGTTCCGCCGGCCCCGCAGCTCGCCGTCACGCTGGACCGGGCCGTCCCGCTCGACGACGTGGCCGGGCTGCTCGGTGACACGCACCGGAGCGAGCACCCGCCGACCCACGACGACCTCGGGGCGTGGGACGGGTTCGTGCGCTACACGACGCAGGTCCGCGCCGACGACGCCGTCGTCACCGTCCAAGGGGTCCGCGACCGCGCGCTCGTCGCGCTCGACGGCGAACCCGTCGGGCTGCTCGACCGCACGGCGGGCATCCACGCGGCCGCCCTGCCTGCTCGCGCCGGGGAGCTCACGCTCCTCGTCGAGGACCAGGGCCGTGTGAACTACGGCTCCCGGATCGGGGAGCCCAAGGGCATCCTCGGCCCGGTCCGCACGGCGACGCGTGAGCTCACCGGCTGGGAGACCACGCCGCTGCGGTTCGACGACGACGGCGGCGCGCTCCGCACCGCGGTCACCGACACCCTGCGTGCCACGCCGCCGTCCGAGGTGACGCCGCCGGGCCGCCCGCTGGCCGGCCCCGCCCTCGCTCGCGGCACCTTCGCGAGCGAGGCCGGGGTCGACCACTTCCTGCGCCTCGACGGCTGGACCAAGGGCGTGGTGTGGGTCAACAGCTTCTGCCTGGGCCGGTACTGGAACGCCGGGCCGACGCGCACGCTCTACCTGCCCGGGCCGGTGGTCCGGGCCGAGAACGAGATCGTCGTGCTCGAGCTGCACGGGGCCACGACGCGCACCGTGCGGTGCGTGCCGGGCCCCGACCTCGGGCACACCGAGGAGTAGMPRFDIGDEDFLLDGERLQIVSGALHYFRVHPDQWADRIRSARLMGLDTIETYVAWNHHSPAPGEFRTDGRRDLARFLDLVAAEGMHAIVRPGPYICAEWTGGGLPAWLLADPAVGVRRAEPRFLAAIGDYYRAVAAIVAPRQVTRGGSVLMMQVENEYGAYGDDPVPVRQEYLRTLAGMLRDAGIELPLFTSDQADDEHLSRGSLPELHTTANFGSRSPERLALLRRHQPTGPLMCMEYWNGWFDSWGLHHHTTAPDATARDLDALLSAGASVNLYMVHGGTNFGLTSGANDKGVYRPITTSYDYDAPLAEHGAPTAKYRLLKEVVARHRDVPPESPAAVPPAPQLAVTLDRAVPLDDVAGLLGDTHRSEHPPTHDDLGAWDGFVRYTTQVRADDAVVTVQGVRDRALVALDGEPVGLLDRTAGIHAAALPARAGELTLLVEDQGRVNYGSRIGEPKGILGPVRTATRELTGWETTPLRFDDDGGALRTAVTDTLRATPPSEVTPPGRPLAGPALARGTFASEAGVDHFLRLDGWTKGVVWVNSFCLGRYWNAGPTRTLYLPGPVVRAENEIVVLELHGATTRTVRCVPGPDLGHTEEPGPT0017815_2131DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_030671296celBCOG5297Endoglucanase E-2ATGTCCCGCCACCTCCGCACCCGCGCGGCCCTGGCCACGGCCGCTCTCGCCGCCACGACCGTCGCGGCGCTCTCCGTCGGACCCGCCCTCGCCGACCCGCCACCCCCCGACGACCCGCGCCTCTGGGTGAACCCCGAGAGCTCGACGCTCGAGCACGTCGCCGAGCTCGGACTCGTGGGGGACGCGCGGGCCGACGCCGTCGCCCTCGCCGCGGTCCCCACGGCGACCTGGTTCACCGGCGGCACGCCGGTCGAGATCAAGCAGGACGTCAAGGACGTCGTCGTGCACGCCCACGCCGCCGACGAGATCCCCGTGCTCGTCGCGTACAACCTGCCGTTCCGGGACTGCGCCCAGTACTCCGCCGGGGGCGCGACGAGCCAGGCCGAGTACGAGGCGTGGATCGACGGGTTCGCCAAGGGGATCGGGAACAAGCAGGCCGTCGTGGTCCTCGAGCCCGACGGGCTCGGCATCATCCCCTGGTACACCACGTTCGAGGGCACGCAGGAGTGGTGCCAGCCCGACGAGGCCGATCCCGAGACCGCCGCGGACGAGCGGTTCGCGATGCTGAACTACGCCGTCGACGCCCTCGGCGAGCTGTCCGGCACGCGGGTCTACCTCGACGCCGGCCACAGCGGGTGGCTCAACGTCGGCGACAACACCGACCGGCTCCTGAAGGCGGGCGTCGAGCGCGCGGACGGCTTCTTCCTCAACGCGTCCAACTACCAGTACACCGCCAACTCCGTGGCGTACGGCCGATGGATCAGCTCGTGCCTCGCGCTGGTCACCGAGGTCGGCGGGGCCCTGGGCGACTGCGGCAACCAGTACTGGAACGGTGGTCCCGCGACCGACTGGCAGGGCGCGGCCATGACGCCCTACGCGCAGTGGACGAGCGGCCCCGTCGACGAGGTGCCGCTGGAGCAGAACACGATCGGGATCGACTCGCGGTACGCCGCCGCCCTCGGCGACGTCGAGCCGAGCGTGTCGTTCGTCGTCGACACCTCCCGCAACGGCCAGGGGCCCTGGGACCCCGCGACGTCGGAGAACACCTACAGCGACTCGGAGGACTGGTGCAACCCGCCCGACCGCGGCCTGGGCGAGCGCCCGACGCTCGACGTCGCCGACCCGCTCGTGGACGGCTACCTGTGGATCAAGGTGCCGGGCGAGTCCGACGGGCAGTGCTTCCGCGGCACCGGCGGCCCGCTCGACCCGGAGCGCGGGATCGTCGACCCGCCGGCCGGGGAGTGGTTCGTCGAGCAGGCCGACGAGCTGATCGACCTGGCGGTCCCGGCGCTCTGAMSRHLRTRAALATAALAATTVAALSVGPALADPPPPDDPRLWVNPESSTLEHVAELGLVGDARADAVALAAVPTATWFTGGTPVEIKQDVKDVVVHAHAADEIPVLVAYNLPFRDCAQYSAGGATSQAEYEAWIDGFAKGIGNKQAVVVLEPDGLGIIPWYTTFEGTQEWCQPDEADPETAADERFAMLNYAVDALGELSGTRVYLDAGHSGWLNVGDNTDRLLKAGVERADGFFLNASNYQYTANSVAYGRWISSCLALVTEVGGALGDCGNQYWNGGPATDWQGAAMTPYAQWTSGPVDEVPLEQNTIGIDSRYAAALGDVEPSVSFVVDTSRNGQGPWDPATSENTYSDSEDWCNPPDRGLGERPTLDVADPLVDGYLWIKVPGESDGQCFRGTGGPLDPERGIVDPPAGEWFVEQADELIDLAVPALPGPT0018620_4320DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-CELLULASES,PGPT0018620-celJ|eglA|eglS-K01179NANA
AK018_03068297hypothetical proteinATGATCTTCAAGGCCGTGGGCGACGGGCGCCCCTACCCCGACCACGGGCGCGAGGAATCCATGGACTGGTCGGACGTCCCTCCTCGGCAGGTGCGCCTGGACGAGCTGGTCACCACCAAGCGCACTCTGGACCTCGACGCCCTGCTCGCCGAGGACTCGACGTTCTTCGGGGACCTCTTCGCGCACGTCGTCGAGTACCGCGGCATCCTGTACCTGGAGGACGGCCTGCACCGGGCCGTCCGCGCCGCCCTGCAGCAGCGGCCCATCCTGCACGCCCGTGTCCTGACGGTGGGCTGAMIFKAVGDGRPYPDHGREESMDWSDVPPRQVRLDELVTTKRTLDLDALLAEDSTFFGDLFAHVVEYRGILYLEDGLHRAVRAALQQRPILHARVLTVGNANANANANA
AK018_03069675hypothetical proteinGTGACCTCACCAGCCCAGGACCCGGCGCGCGTCACTCGTCGCCGCCGCAAGCACGAACGGCAGGCCGTCGTCTTCGGTCTCCTCATCGCCCTGCTGGTGGTCCTGGGCCTGGGAGCGCTCGCCGTCTACACCGACACGATCGAGGCGCCCTTCAGCGAGCCCATCCACACGCCGAGCGCCGCCGCGGCGACCATCGAGCCCGCCTGCCTGCCGGTGAACGAGAGGTGGCCGGACGGCGCCCCGCCGATGCAGTACAACAACGTCAACGTCCGCGTGTACAACGCTGCCGACATCAACTTCAACCTGGCCGGCGCCAACGCGGACGTGCTCACCGAGCGCGGCTTCAACGTCCGCGACACGGGTGACTTCACCTACGAGATCGAGGGCCGGTCCGAGATCCGCTACGGCCTCAAGGGGATCCGCGAGGCGTACACGCTCGCCGCGCAGTACGCGGACGTGCGCCTCGTGCTGGACGACCGTCCCGGGGAGTTCGTCGACCTGCTCGTCGGCCAGGAGTGGCGCGAGCCGCTGCCGGTCGAGGAGGTCCCCCTGGAGAACGGTGAGCCGATGGCCAACCTGCCCGGCTGCCTCCCGGCCGAGGAGATCGACCCCATCCCGCGCGAGTACGGCTACCAGCGGGGTCCGAACGCGGACGACAGCTCCGAGGAGGCCTGAMTSPAQDPARVTRRRRKHERQAVVFGLLIALLVVLGLGALAVYTDTIEAPFSEPIHTPSAAAATIEPACLPVNERWPDGAPPMQYNNVNVRVYNAADINFNLAGANADVLTERGFNVRDTGDFTYEIEGRSEIRYGLKGIREAYTLAAQYADVRLVLDDRPGEFVDLLVGQEWREPLPVEEVPLENGEPMANLPGCLPAEEIDPIPREYGYQRGPNADDSSEEANANANANANA
AK018_030701326rutG_2COG2233Putative pyrimidine permease RutGATGCAGCTGGGCTGGACGAAGCACGGCGACGGCGCGAGCATCTCCCCGGGCGCGGTCGTCGCCCCGGGCGAACGGCTCACCTGGCCCCGGACGATCGGGGTGGGGCTGCAGCACATCGTCGCGATGTTCGGGGCGACCTTCCTCGTGCCGCTGCTGACCGGGTTCCCGCCGTCGACGACGCTGTTCTTCTCCGCGATCGGGACGATCGGCTTCCTGCTGATCACCGGGAACCGGCTGCCGAGCTACCTGGGGTCCAGCTTCGCGTTCATCGCGCCGATCAGCGCCGCCACGGCCTCGGACGGGCAGGCGGCTGCCGTCGGCGGCATCTTCGTCACGGGCGTCCTGCTGGCGGTCGTCGGTGTGGTCGTCCACCTGGCGGGGTCGCGGTGGATCGACCTGGTCATGCCGCCGGTCGTCACCGGGGTGATCGTCGCCCTCATCGGGCTCAACCTGGCACCGGCCGCCTGGGGCAACTTCCAGGTCGCGCCGGCCACGGCCGTGGTGACCCTGGTCGCGGTCGTGCTGGTCTCGGTGCTGTTCCGCGGCATCCTCGGACGGCTGGCGATCCTCGTGGGCGTCCTCGTCGGGTACGCCTTCGCCGCCGTGCGCGGCGAGGTGGACTTCACCGCGGTGCAGGACGCGAGCTGGTTCGGGGCCCCCACGTTCACGGCCCCGAGCTTCGAGCCGGGCGTGCTCGGCCTGTTCCTCCCCGTGGTGTTCGTCCTGATCGCCGAGAACGTCGGCCACGTGAAGTCGGTCGCGGCGATGACGGGGCAGAACCTCGACGACCGGATGGGCCGCGCGCTGCTGGCGGACGGTGTCGCCACGACCCTGGCCGGCACCGGCGGCGGGTCCGGCACGACGACGTACGCCGAGAACATCGGCGTGATGGCGGCCACGCGCGTCTACTCGACGGCCGCCTACTGGGTGGCCGGGATCGGCGCCCTGCTGCTGTCGTTCTCGCCGAAGTTCGGCGAGGTGATCAACACGGTGCCGCCGGGGGTGCTCGGTGGGGTGACGACCATCCTGTACGGGATGATCGGCGTGCTGGGCTTCCGCATCTGGGTGCAGAACCGCGTCGACTTCGGCGACCCGGTGAACCTGACGACGGCGGCGGTCCCGCTGGTCATCGCCATCGCGAACTACACGTGGGCGGTCGGCGACCTCGCCTTCGAGGGCATCGCCCTCGGTACAGCGGCGGCGCTCGTCCTGTACCACGGGATGCGGTGGATCGGCCGGTGGCGGGGGACGACGCCGGACGTGGCGTCGCCGGCCTCGGCCGCGCCGCCCGCGGAGACGGACGAGACCGCAGACCGGTCGTCCTGAMQLGWTKHGDGASISPGAVVAPGERLTWPRTIGVGLQHIVAMFGATFLVPLLTGFPPSTTLFFSAIGTIGFLLITGNRLPSYLGSSFAFIAPISAATASDGQAAAVGGIFVTGVLLAVVGVVVHLAGSRWIDLVMPPVVTGVIVALIGLNLAPAAWGNFQVAPATAVVTLVAVVLVSVLFRGILGRLAILVGVLVGYAFAAVRGEVDFTAVQDASWFGAPTFTAPSFEPGVLGLFLPVVFVLIAENVGHVKSVAAMTGQNLDDRMGRALLADGVATTLAGTGGGSGTTTYAENIGVMAATRVYSTAAYWVAGIGALLLSFSPKFGEVINTVPPGVLGGVTTILYGMIGVLGFRIWVQNRVDFGDPVNLTTAAVPLVIAIANYTWAVGDLAFEGIALGTAAALVLYHGMRWIGRWRGTTPDVASPASAAPPAETDETADRSSNANANANANA
AK018_030712136hypothetical proteinGTGACACGTCGGGCGATCGCCCTGCTGCTCGCCGTGGGCCTGGCCGCGGCCGGGTGCACGACGGCGGAGCCTGCCGGGACGGACGCCTCGTCCGGTTCCGCCCCGCGCACCGGCTCTCTGGCGGGTGCCGAGGCACCGGCGGTCGACCCCGGGGTGCTCCCGACGGTCGAGCGCGAGCCCGGCACGCTGCGGCTGGCCGAGGAGCTGCCGCCGCCGACCAACCGGTGGTTCTCCGGCCTCGTGTTCGGCGACGAGGCGCAGCCGGTGTTCCCGCTCCCGCTCGCCGTCGGGCTCACCGCCTCCGGGTTCGCCTACGGGCTGCCCGAGGTCCGGGCCGACGGCACGCTGGTCGCCGGGGCGTACGCCCCGCAGGTCGAGATCGACCTCGGGGAGGGCGTGACCGGCGTCGTGACCGCGTACGACGCCGCGACGGTGTCGGTCGACCTGGTGGCCGGCGACGAGTCCGTCCGGGGCACGCTGGACCTGACCCGCGGGTCCCCGGTCGTGCGGTACACCGCGCGGGCCGCGCACCCCGTGGGGCTGAGCCGGGCGTTCGGCGTCGACCCGAGCGCCGACCTGCCCGAGGACACCGCCACCACCGATGTCGACGGGCGCTCCCACGTGCTGACCGGCGTCGAGGGGACCGACGTCGGCGCCGCGCTCGACGGAGCCGGCACGACCCTGGAGCTCGACGCGGGGGAGTCGGTCGCCTGGCTGGTCGCCCCGGACGCCGCCGAAGGTGCCGAGTCGCTGGGGGGCCTGGTGGAGGCGGCCTCGGATCCCGTCGAGGCGTCCACCGTCGGCTACGCGACGGACCCGGACGCCGTGACCACCTCGGTCGGGTACGCGACGGCGTCGGGCGGCCCGGCCGTCGTCGTGCGCTTCCCGCACCAGCGCGACGTGGCCGACGACGCCACCTGCGGTCTCGGGACGTACGCCACCGTGCTCGGCACGGTCGACGTCTGCCTCGGTTCGGAGCTGTCGTGGCGGTCGACGGCCCGCGACCCGGTGGTCGGCCTGGACCTGTCCGGGATCGACGGGTCCGCCCGCGAGGAGCTCGTCGACCAGGTCGCCGCCGACGCCGAGCGCGTGCTCGACGAGACCCGCCCGGCCGACACGTACTTCGGCGGCAAGGCGCTGGCGCGCGACGCCAACCTGTGGACCCTCGCCCGGGACCTCGGTCTGGACGACGTCGCCGCCGACCTGCGCGAGAGCCTGCTGACCGACCTGCGGCTGTGGACCGACCCCGACGGCTGCGCCGAGCGTCCCGAACGCTGCTTCACCTGGGAGCCGACGCTGCGGACCGTCGTCGGGCAGGCCACGTCGTTCGGTTCGGAGGAGGGCAACGACCACCACTTCCACTACGGCTACTTCCTCTACGCGGCGGGCGTGCTGGCCGCCGACGACGCGGCGCTGGCCGAGGAGGTCGCCCCGGTCGCCGACCTGCTCGCCGCCGACGTCGCCGCCGCGGCCGACGTGCCGGCCGAGGACGGGCCGCCGATCCCGGCGCTGCGGACCCTGGACGTCGTCATGGGGCACTCCTGGGCGTCCGGCCCGTCGCCGTTCGGGGACGGCAACAACCAGGAGTCCGCCTCCGAAGCGGTGTCGGCGTGGCACGGGCTGGCGCTGTGGGCGGACGCTCGCGCGGCCGCCGGGCTGGAGGACCGGGGCCTGACGGCGCAGGCCCGGTGGATGCTGTCGCTGGAGGCGGCGTCGGCCCGGGCCTACTGGACGGACTTCGACCGGTCCGATCCGGCCACCGAGGGACTGGAGGCCGACGTGACCTCGCTGGTGTGGGACGGCAAGCGCGAGCGGGCGACCTGGTTCTCCGCCGAGCAGAGCGCCGCGCTCGGGATCGTCGTGCTGCCGGTGACCGGGGCGTCCGCCTACCTCGGGGACGACCCGGAGCGCGTGCGGGACAACCTGGCCGAGGCGCTGGGGACCGACGACCTGTGGGCGCAGGAGTCGGCGTGGGACGTGATGTTCGGCGACCAGCTGCTCATGTACGCCGGGCTGCTCGGACCCGACGACGCGGCGTCCGCCCTCGAGGTGGCACGCGAGCTGCCGGCCGAGCGCGTCGACGACGGCTCGACACGGTCCTGGATGCTGGCCTGGCTGCACCAGCAGTCCACGTGAMTRRAIALLLAVGLAAAGCTTAEPAGTDASSGSAPRTGSLAGAEAPAVDPGVLPTVEREPGTLRLAEELPPPTNRWFSGLVFGDEAQPVFPLPLAVGLTASGFAYGLPEVRADGTLVAGAYAPQVEIDLGEGVTGVVTAYDAATVSVDLVAGDESVRGTLDLTRGSPVVRYTARAAHPVGLSRAFGVDPSADLPEDTATTDVDGRSHVLTGVEGTDVGAALDGAGTTLELDAGESVAWLVAPDAAEGAESLGGLVEAASDPVEASTVGYATDPDAVTTSVGYATASGGPAVVVRFPHQRDVADDATCGLGTYATVLGTVDVCLGSELSWRSTARDPVVGLDLSGIDGSAREELVDQVAADAERVLDETRPADTYFGGKALARDANLWTLARDLGLDDVAADLRESLLTDLRLWTDPDGCAERPERCFTWEPTLRTVVGQATSFGSEEGNDHHFHYGYFLYAAGVLAADDAALAEEVAPVADLLAADVAAAADVPAEDGPPIPALRTLDVVMGHSWASGPSPFGDGNNQESASEAVSAWHGLALWADARAAAGLEDRGLTAQARWMLSLEAASARAYWTDFDRSDPATEGLEADVTSLVWDGKRERATWFSAEQSAALGIVVLPVTGASAYLGDDPERVRDNLAEALGTDDLWAQESAWDVMFGDQLLMYAGLLGPDDAASALEVARELPAERVDDGSTRSWMLAWLHQQSTPGPT0019140_388DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019140-eng1-K01180NANA
AK018_03072732hypothetical proteinATGACCTGGACCACGCGGATCAAGCTCGCCGTCGGCGTCGTGCTCGTGCTCGTGCTCTGCGCGACGCTCACCCTGGTGCTCAACCGGCGCGAGAGCCAGGCCACCTCGGCCCAGGCCACGATCGTGGCCGAGGAGGTCGCCGTCGGGACCGACTACGCCGGCACCATCGTCGAGTCCTACGTGGAACCCGGCGACGCCGTCGACGAGGGCGACCCGGTCTTCACCATGCGCAGCCTGCTGCTCGCGCACGACCTGTCGATCGGGGTCGTCTCGCGCCAGGCGACGACGTACGAGGTCACCGACGCCGGCGAGATGACCGTCGTCGCACCCTCGGACGGCACGGTCGCCGAGATCAGCTCGACCCCCGGCGGGTTCGTCCAGGCGGGGGACGTCATCGCCCGGCTGCACCGCGAGGGGTCCACCACGGTGGACGCCAAGCTCCTGCTCGACCCGGCGGACTTCGCCCGGATCGCCCCGGGCGCCCCGGTGAGCATCACGATGCCGGACCAGCGCGAGGTCCCGGGCGAGGTGGAGTCGATCTCGGTGGCCAACACGCGCAACCGCGCCGAGGCGACCGTCGTCATCGACAGCGCCACGCTCGAGCAGCAGGCCGGTGACGGCCTGGTCCTGCCCGGGACGCCGGTGGTGGCGAGCGTGGAGCTGCACGACGAGGGAGCGATGGCCGACGTCGACCTGGCGTTCCAGCGGTTCCTGCAGAGGATCGGTCTGTGAMTWTTRIKLAVGVVLVLVLCATLTLVLNRRESQATSAQATIVAEEVAVGTDYAGTIVESYVEPGDAVDEGDPVFTMRSLLLAHDLSIGVVSRQATTYEVTDAGEMTVVAPSDGTVAEISSTPGGFVQAGDVIARLHREGSTTVDAKLLLDPADFARIAPGAPVSITMPDQREVPGEVESISVANTRNRAEATVVIDSATLEQQAGDGLVLPGTPVVASVELHDEGAMADVDLAFQRFLQRIGLNANANANANA
AK018_030731749hypothetical proteinATGACCACGCTGGACCCTCGAGCCCCGGAGCTCCCGCCTCCGGCCGGCCCCTCCGCCACCCCGACGACGACCATCCAGGGAGACCCCCGCGCCGCCGCCCGCCGCCGCGACGCGAACGCCGCCGCCCACTCGCCGTCGCTCATGCTCATCATGCTGCTGGCGACCCTCGGCGCCGTGGCGTACGCGGTCTTCCTGCTCAATCCCGACAACCGCGGCGACTGGCTGCCCTACTCGCTGGTCCTCGTCGCCGAGTCCGTGCTGCTCATGCTCGCCCTGCTGGCGATGTGGACGGTGCTCTCCTCCGGCTACGACCCGCGCGACTTCCCCTACCACCAGGCCAGGGAGCGGCTGTTCGACGCCCCGGAGATCCTGCGCGACGGCGCCACCGACGAGCCGACACGGTGGCGGATGTTCCTGCACGACCGCCCGGTGACCGTCGACATCTTCATCACCACGTGCGGCGAGGACGTCGACACCATCGCCCGCACCGTCCGCGCCGCGGTCGCGGTGCACGGCGAGCACCGCACCTGGGTGCTCGACGACGGACGGGACGACGAGGTCCGCGACCTCGCGGCCACGCTCGGGGCCCGGTACATCCGGCGCCTGTCCAGCGGCGGCCAGAAGGCCGGCAACGTCAACCATGCGCTGAGCATCGCCAAGGGCGACTACTTCGTCATCCTCGACGCGGACTTCGTGCCCCGCACGGACCTGCTCACCGAGACGGTGCCGTTCTTCGTCCGCGACGAGGTCGCGTTCGTCCAGTCGCCGCAGACCTACGGGAACATGAACTCGCTCATCTCCCGCGGCGCCGGCTACATGCAGGCGGTCTTCTACCGCTTCGTCCAGCCGGGCCGGAACCGCTTCAACGCGGCCTTCTGCGTCGGCACGAACGTCGTCTTCCGCCGCGAGGCCATCGACGACATCGGCGGCATGTGCACGGACTCCAAGTCCGAGGACGTCTGGACGTCGATCCATCTGCACGAGCGCGAGTGGCGGTCGATCTACATCCCGCAGACGCTCGCCGTCGGGGACACCCCGGAGACGATCGTGTCCTACGCCAAGCAGCAGCTGCGCTGGGCCACCGGCGGGTTCGAGATCCTCCTGCAGCACAACCCGCTGTCCCCGCGACGCAACCTCACCGTCGACCAGCGGCTGCAGTACTTCGTGACCTCGACCCACTACCTGTCGGGGATCGCGCCGCTGCTGCTCCTGCTCGTGCCGCCGCTGACGATCTACCTGGACCTGACCCCGATGCAGCTCGACGTGTCGGTGGGCACCTGGGCGCTGTACTACCTGGGCTTCTACGGCCTGCAGATCGCCCTGGCCTTCTTCACCCTCGGGTCCTTCCGGTGGGAGGTGCTGCTGCTGGCGGCCGTGTCGTGGCCGATCTACGTCAAGGCGTTCTGGAACGCCCTGACCGGCAAGCAGCAGGCCTGGTCGGTCACCGGACGCGCGGGCGGGGCCACCTCCCCGTTCGAGGTGATCATCCCCCAGACGCTCTGCTTCGTGTTCCTGGCGGTGACCTCCGTGGTCGGGTTCTGGAAGCACTGGGGCGACCCGGTGCCGAACCTGTCCCTCGCCTGGAACCTCACCAACACGATCATCCTCGGCGGCTTCCTCGTCACGGCCGCCAAGGAGCACCGCGAGGCGATGGGCGCCCGACGCAGCGCCCGCCGCGCGCACCGTCGGCACGCCCGTCGGGCCGCCGGCTCTCCCGCCCGGACCCTCACCGTCGGAGGTGCCGCATGAMTTLDPRAPELPPPAGPSATPTTTIQGDPRAAARRRDANAAAHSPSLMLIMLLATLGAVAYAVFLLNPDNRGDWLPYSLVLVAESVLLMLALLAMWTVLSSGYDPRDFPYHQARERLFDAPEILRDGATDEPTRWRMFLHDRPVTVDIFITTCGEDVDTIARTVRAAVAVHGEHRTWVLDDGRDDEVRDLAATLGARYIRRLSSGGQKAGNVNHALSIAKGDYFVILDADFVPRTDLLTETVPFFVRDEVAFVQSPQTYGNMNSLISRGAGYMQAVFYRFVQPGRNRFNAAFCVGTNVVFRREAIDDIGGMCTDSKSEDVWTSIHLHEREWRSIYIPQTLAVGDTPETIVSYAKQQLRWATGGFEILLQHNPLSPRRNLTVDQRLQYFVTSTHYLSGIAPLLLLLVPPLTIYLDLTPMQLDVSVGTWALYYLGFYGLQIALAFFTLGSFRWEVLLLAAVSWPIYVKAFWNALTGKQQAWSVTGRAGGATSPFEVIIPQTLCFVFLAVTSVVGFWKHWGDPVPNLSLAWNLTNTIILGGFLVTAAKEHREAMGARRSARRAHRRHARRAAGSPARTLTVGGAAPGPT0022275_1473DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CELLULOSE_METABOLISMCE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0022275-bcsA|yhjN|celA-K00694NANA
AK018_03074924fgd_7F420-dependent glucose-6-phosphate dehydrogenaseATGACGCTCGACCTGCGCATCTTCACCGAACCCCAGCAGGGCGCCTCGTACGACACCCAGCTCGCCGTCGCGCAGGCGACCGAGCAGCTCGGGTTCAGCGCCTTCTTCCGGTCCGACCACTACCTCGCCATGGGTGGGGACGGCCTGCCCGGCCCCACCGACTCGTGGACCACGCTCGCCGGCATCGCCCGCGAGACCTCCACGGTGCGCCTCGGCACCCTCGTGTCGTCCGCGACGTTCCGCCTGCCCGGGATCCTCGCGATCCAGGTCGCCCAGGTGGACCAGATGTCCGGCGGTCGGGTCGAGCTCGGCCTGGGCACCGGGTGGTTCGCCGCCGAGCACGCGGCCTACGGGATCCCGTTCCCGGACAAGCGGTTCGGCCTGCTCGAGGAGCAGCTCGAGATCCTCACGGGCCTGTGGGGCACGCCGGTCGGGGAGACCTTCGACTTCGCCGGTGAGCACTACACGCTCACCGACTCCCCGGCGCTGCCCAAGCCCGCCCAGGCGCAGATCCCGCTGATCGTCGGCGGCGGCGGGCCGAAGCGCACGCCGCGGATCGCGGCGCGGTTCGCGACCGAGTACAACCAGTCCTTCCCCGAGATCGACGCCATCGGCCCCCGCATCCGGGTCATCGAGAAGGCGCTGGCCGACGCCGGGCGCGACTCCGACTCGCTGACCCAGTCGGTGGCGCTGGTGCTCGCCGTCGGCAAGGACGAGGCGGAGTTCACCCGCCGTGCCGACGCGATCGGGCGCGAGCCGGCCGAGCTGCGCGAGCACGGCATCGCGGGCACCGTCTCCGAGGCCGTCGACCGGCTGGCGTCCCTGCGCGAGCAGGGCGTCGAGCGGGTGTACCTGCAGGTCCTGGACCAGCAGGACCTCGACCACCTGGAGCTCGTGGCGCGGGAGATCGCCCCGCAGGTCTGAMTLDLRIFTEPQQGASYDTQLAVAQATEQLGFSAFFRSDHYLAMGGDGLPGPTDSWTTLAGIARETSTVRLGTLVSSATFRLPGILAIQVAQVDQMSGGRVELGLGTGWFAAEHAAYGIPFPDKRFGLLEEQLEILTGLWGTPVGETFDFAGEHYTLTDSPALPKPAQAQIPLIVGGGGPKRTPRIAARFATEYNQSFPEIDAIGPRIRVIEKALADAGRDSDSLTQSVALVLAVGKDEAEFTRRADAIGREPAELREHGIAGTVSEAVDRLASLREQGVERVYLQVLDQQDLDHLELVAREIAPQVNANANANANA
AK018_03075669Thioredoxin-like reductaseATGCCGCACGATGCCCTCGAACCGATTCGGGTGCCCGGTATCGTGCCGGTGATGACTTCCTCCGACACCACGCCCGTCGTCGACGTCTACATCGACCCCACCTGCCCCTTCGCCTGGGTGACCTCGCGCTGGGCGCTGGAGGTGGCGCAGCACCGCGACGTCGACCTCACGTTCAAGCTGATGAGCCTGTACCTGCTCAACAAGGACAAGGACATCCCCGCCGAGTACCGCGCGCTGGTCGAGGCAGGCCGCGCGCAGGGCCGCGTGGCCGCCGCGGTGCAGACCGACCACGGCCACGACGCCCTGTCGGCGTACTACACGGCCTTCGGCACCCGTTGGCACGACCAGGACGTCAAGGACGTCGACGTCGTGATCCGCGAGTCCCTCGCCGAGGCCGGCCTGCCCGCCGAGCTGGCCGACGCCGCCACCAGCGACGCGTACGACGAGGCGCTGGCGGCCTCCCACCACGCCGGCATGGACCCCGTCGGCCAGGAGGTCGGCACCCCCACGCTGCACGTCGACGGCGTCGCGTTCTTCGGCCCGGTCCTCACCCGCGTGCCGCGCGGCGAGGAGGCGACCCGACTGTTCGACGCCGCCGTCGCGATGGCCGGCAACCCCCACTTCTTCGAGCTCAAGCGGTCCCGCGACGAGCACCCGGTCCACGCCTGAMPHDALEPIRVPGIVPVMTSSDTTPVVDVYIDPTCPFAWVTSRWALEVAQHRDVDLTFKLMSLYLLNKDKDIPAEYRALVEAGRAQGRVAAAVQTDHGHDALSAYYTAFGTRWHDQDVKDVDVVIRESLAEAGLPAELADAATSDAYDEALAASHHAGMDPVGQEVGTPTLHVDGVAFFGPVLTRVPRGEEATRLFDAAVAMAGNPHFFELKRSRDEHPVHANANANANANA
AK018_03076231hypothetical proteinGTGCTCTCGATCGTGCGCAACGTCCGCTGGGCGAGCGTCCTGACCGTCGTCGTGGCGGGGGCGTTCACGCTGGTCGCCCTCTTCGCCGCCCTGCGGGGACGACCGTGGGCCTGGGTGATCTTCGGGCTCTCCGCGGCCGTGCTGATCCGCGAGGTCCGGTACTTGCAGCGGGATCGACGGCGGCACGTCGGCTTCGACGCCCCCGACCGCCGCGACAACCCGCCGACGTAGMLSIVRNVRWASVLTVVVAGAFTLVALFAALRGRPWAWVIFGLSAAVLIREVRYLQRDRRRHVGFDAPDRRDNPPTNANANANANA
AK018_03077573hypothetical proteinATGTCGTCGTTGACCACCCGCTACCTCATGACCTGCGCCGCCATCGGCGCGGCCGTGGGGGTGCTGCTCGTCCCCGCGAACTTCGTCAGCGCCCCGCTGGCGGCCACCGCCCCGCTCGCCTACGCGCCGCTGGTCGGCCTGTGGGTGATCGGTCCGGTGCTCGCCCTGGCGCTGATCCGCCGCCCGGGCGCCGCCGTGCTGACGACGTTCGTCGCGGGGGTCATCAGCTCCGCCTCCCCGGTGGGCGCCTGGTCGATCGTCACCTGCCTCATGGCCGGCGTCGCGGTCGAGCTGGCCTTCCTCGTGACCCGTTACCGGGTGTGGCGGCCGTGGCTGTTCTACGTCGACGCCCTGGTGTTCGGCGCCGCCTACGTGGCGTCCGGCTGGGTGGCGTTCGGCATGGAGACCATGAGCCCGGCCGTGCTGGTGGCGTTCGTGGTGCTGATGATGGGCAGCTTCGTGCTGTTCACCGGCGTCGGGCTGATGCTCGCGAAGCGGCTCGCCCGGGCGGGCGTCGCCCGCGGGCTCGCCCCGGCGTCGGACCGCGAGGTGTCCGAGGTCCTGTCGAGGTAGMSSLTTRYLMTCAAIGAAVGVLLVPANFVSAPLAATAPLAYAPLVGLWVIGPVLALALIRRPGAAVLTTFVAGVISSASPVGAWSIVTCLMAGVAVELAFLVTRYRVWRPWLFYVDALVFGAAYVASGWVAFGMETMSPAVLVAFVVLMMGSFVLFTGVGLMLAKRLARAGVARGLAPASDREVSEVLSRNANANANANA
AK018_03078765ykoC_2Putative HMP/thiamine permease protein YkoCATGAGCGTGCTCGACCTGTGCACCGTCAACCCGCTGGTCAAGGTGCTCGGCCCGATCCCCGTGATGATCTACGTCGTCACGACCCGCGACGTGCTCACCCCGGCGCTCGTCGGGCTGCTCGCCTTCGCCCTCCTGGCGCTGCTGGGTCACCAGCGTCCGCGCGTGCTCGTCGCCGTTGCGCTCGGCACCGTGGGGCTCGTGGCGGTCATGACCGTCTCGTTCGGCCTGCTGACCGACCCGGCGACCGTGGACGACACCACCCTGCTGGCCCGGGTGGGTCCGCTCGAGGTGTGGTCCGGCGCGCTGGCCACGGGTCTGGCCACCGCCGTGCGGACCGCCGCCCTGCTGCTGCTCGTGCTGCTCGGCGGGCTGACGACGTCGGGCGCGGACCTCGTGCGGGCCATGACCCAGCAGCTGCGGCTGCCGTACCGCGTCGGGTACGCGGCGCTCGCGGCCCTGCGGTTCGTGCCGCGGTTCTCCCACGAGCTGGAGGTCGTCCGCGGCGCCCACCGGGTGCGCGGGGTCACCGCGGGACGTGGGCCGGTCGGCGCCGTGCAGCGCCAGGCCGGGTACGTCGTCCCGCTGCTGGCCGGCGGCATCCGGCACGCCGAACGGGTCTCCCTGGCGATGGAGTCCCGCGGGTTCGGCGCGCACCCGACCCGGACCGAACGGGTCGCGGTGCCCTTCGGTGCGCGCGACGTCGTCCTGCTCGTCGTCCTGTGGGCGGGGGCCGCCGCCTGCGTCCTGCTCGCCGCCTCCGTCTGAMSVLDLCTVNPLVKVLGPIPVMIYVVTTRDVLTPALVGLLAFALLALLGHQRPRVLVAVALGTVGLVAVMTVSFGLLTDPATVDDTTLLARVGPLEVWSGALATGLATAVRTAALLLLVLLGGLTTSGADLVRAMTQQLRLPYRVGYAALAALRFVPRFSHELEVVRGAHRVRGVTAGRGPVGAVQRQAGYVVPLLAGGIRHAERVSLAMESRGFGAHPTRTERVAVPFGARDVVLLVVLWAGAAACVLLAASVPGPT0004015_1269DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0004015-fmnA|ecfT-K16785NANA
AK018_030791776ykoD_4COG1122Putative HMP/thiamine import ATP-binding protein YkoDGTGACCCACCCCCTGCTCGACGTGCGCGGCCTGCGCGTGCGGCACCACGTGCCGCACGACGACGGCGGCCACACGCTCGGCGCGCCCGCGCCCGACGCCGTGGACCTCGCCGTCGCGCCCGGGGAGGTCGTGCTGCTCCTCGGGCCGTCCGGCTGCGGCAAGTCCACCCTCGCGCTGGCCACCAACGGGCTCGTGCCGCACGTCGTGCCCGCCGAGGTCACCGGGACCGTCACCACCGCGGGCCGCGACGTCGCCACGACCCGGACCCCCGAGCTCGCCGGGGACGTCGCGATGGTCTTCCAGGACCCCGACGCCCAGGTCGTCACCGGCTCCGTGCTCGACGAGGTCTGCTTCGCCCCGGAGAACCTGTGCCGGCCCGCCGACGAGGTGCTCGCCCGCGCCGAGACCGCGCTGCGGCAGGTCGGGCTGTGGGAGCGGCGCGGCGACGACCCCGCCGTGCTGTCCGGCGGCGGGCGGCAGCGGCTCGCGATCGCCTGCGCGCTCGCCGCCGGGGCCCGGATGCTCGTCCTCGACGAACCCACCGCCAACCTCGACCCCGCCGGCGTCGAGGAGGTGTACGCCGTCCTGCGCTCCGTCGTCGCTGCGGGGGACCGGGGCGTGCTGCTCGTCGAGCACGACCTCGACGTCGCCGCGGCGTTCGCCGACCGGGTCGTGGTGCTCGACGGCGCCGGCCGGCCGGCCGCCGACGGCCCCGCGCGCGAGGTGCTCACCGGACAGGCCGAGCGACTGGCCGCCCTCGGCGTGTGGCTGCCCACCGCGACCCTCGCCGGCCTGCGGCTGCGCGCCGCCGGGGTCGGGCTCGACCCGCTGCCCCTGACCCCCGACGAGCTCGCCACCGGGCTCGAGCGCCTCGACACCGCCGGGCGGCTGCCCGCCCCGGCGACCGCCGTCCCCCCGACCGCCGCCGCCCCGGAGCCGGTCCGCGACACCGTGCTCGCCGTCGACCACCTCACCGTCCGCCGCGGTGGACGCACCGTCCTGGACGACGTGTCCCTCGCCGTCGGCCGCGGCGAGCTCCTCGCCGTCGTCGGCGCCAACGGCGCCGGCAAGAGCACCCTGGCCCAGCTCGCCACCGGCGTGCTGCGCCCCCGGCGCCGCGACGTGGCCGGCACCGTCCGGGTCGCCGGGCTCGACCCCCGGCGCGCCGACGTGCGCGACCTCACCGACGCCGTCGGCTTCGTGTTCCAGAACCCCGAGCACCAGTTCGTCACCGGCCGCGTCGACGACGAGCTCGCCGTCGGGCTCCGCGCCCGCGGCCTGCCCGCGGACCAGGTCGCCGACCGGGTCGACCAGGTCCTCGACCGCCTCGGCCTGACCGCCCTGCGCGACCGGCACCCGTTCTGGCTCTCCGGCGGACAGAAGCGCCGGCTGTCCGTCGGCACTGCGCTGGTCTGTCGCCCCGAGGTGCTCGTCCTCGACGAACCCACCTACGGCCAGGACCGCGAGCGCGCCGTCGAGCTCCTCGACCTGCTCACCGCGCTGCACGACGACGGCACCACCGTCGTCGTGGTCTCCCACGACATGCAGCTCGTGGCCGAGCACGCCACCCGCGTCGTGGCGCTCGCGGACGGTCGCGTCGTGGCCGACGGACGTCCCGACGTCGTGCTCGGCCGGCCCGACGTGCTCGCCGCCGCCGGGCTGCGCCCCCCGCCGCTGGGCCGCGCCACCCGCGACCTGCGCGACCCCGCCTGGCGGGCCGTGACCCGGCTCGCGGACCTGCCGCTCACCCCCGCCCTGGCGGAGGTGGGCCGATGAMTHPLLDVRGLRVRHHVPHDDGGHTLGAPAPDAVDLAVAPGEVVLLLGPSGCGKSTLALATNGLVPHVVPAEVTGTVTTAGRDVATTRTPELAGDVAMVFQDPDAQVVTGSVLDEVCFAPENLCRPADEVLARAETALRQVGLWERRGDDPAVLSGGGRQRLAIACALAAGARMLVLDEPTANLDPAGVEEVYAVLRSVVAAGDRGVLLVEHDLDVAAAFADRVVVLDGAGRPAADGPAREVLTGQAERLAALGVWLPTATLAGLRLRAAGVGLDPLPLTPDELATGLERLDTAGRLPAPATAVPPTAAAPEPVRDTVLAVDHLTVRRGGRTVLDDVSLAVGRGELLAVVGANGAGKSTLAQLATGVLRPRRRDVAGTVRVAGLDPRRADVRDLTDAVGFVFQNPEHQFVTGRVDDELAVGLRARGLPADQVADRVDQVLDRLGLTALRDRHPFWLSGGQKRRLSVGTALVCRPEVLVLDEPTYGQDRERAVELLDLLTALHDDGTTVVVVSHDMQLVAEHATRVVALADGRVVADGRPDVVLGRPDVLAAAGLRPPPLGRATRDLRDPAWRAVTRLADLPLTPALAEVGRNANANANANA
AK018_030802001ubiB_2protein kinase UbiBATGTCCTGGCTCTCGGGTCTGTTCGCGCTGGTCGTCACGCTCGCCTCCGGGCTGCTCCTGGCGGCCGCCGCCCGGCGCACGCTGGACGCCCCCGTGGGATGGATGCGCTCGATCGCCACGACGCTCGTCGTGTTCGGCCTCGGTTCCGCGCTGCTGGAGACCGGCACCGACGCGTTGGCGGTGGACATCACCAGCACCGGGTCGGCGCTCGGCATGGGACTGCTGCTCCTGGTCGCCTGGGCCTGGATGTTCGCCGTCGCGCTCGGCGTGCTGCTCGTCCTCGAGGTCCTGGTGCCGACCGGGCGGCTGCCCACCCCGCTGCAGGCGCTGCGCGGCCTGCGCGAGGGACGGCAGGAGTCCCGCCGGTACGCCCAGGTCGTGACGATCCTCGTCCGGCGCGGCCTGGGCGGGTTCCTGCGCCGCGGGGCCGACGGCGAGACCGAGCGCTCGGCCGGCGCGCTCGCCGCGCACGCCCGGTCGTTGCGCCTGGCGCTCTCCGACGCCGGCGTGACCTACGTGAAGTTCGGCCAGATGCTCTCCAGCCGCCGCGACCTCGTGCCCGACGTCGTCGCCGACGAGCTCACCCAGCTGCAGGCCCGGGTGCCGCCCGAGTCCTGGGAGACGGTGCGTGCCGCCGTCGACGACGCCCTCGGCCGTCCCCTGGAGGAGGCGTTCGCCCGGTTCGACGAGACGCCGCTCGCCAGCGCCTCGGTGGGCCAGGTGCACTCCGCCCGGTTGCTCGACGGCCGGGAGGTCGTGGTCAAGGTGCTGCGGCCCGGCGCCCGCGCCCAGGTCGAGGTGGACCTGCGCATCCTCGGCCGGCTCGCCCGGCGGCTGGAGCGGGACACCCAGTGGGCCCGCTCGCTGGGCGTCGTGGGCCTGGTCGCGGGCTTCGCGGCGTCGCTGAGCGAGGAGCTCGACTACACCGTCGAGCTCGGCAACACGCTCAACCTCGACCGGGCGCTGGCGGCGACGTCGGGGGGCGTCGACCCCCGCGTCCGGCTGCCCGTCATGCACCCGGAGCTCTCCGGCCCGACGTTGCTCGTCATGGACCGTATGGAGGGGGTCCCGCTCGGCGAGGCCGCCGACGTGCTCGCCGCGATCGACGCCGAGGAGCGCCGGCACATGGCGGACTCCCTGCTCGGCAGCGCGATGCGCCAGCTCGTGGTCACCGGCGTCTTCCACGCCGACCTGCACCCCGGCAACATCCTCGTGCGCCCGGACGGCACGCTCGGCCTGCTGGACCTCGGCGCCGTGGGCCGCATGGACGAGTCCGAGCGCATGGCGCTGGGCGCGTTCCTGCTCGCCGTCCAGGGCGACGACTCGATCGCGGCCCTCGACGCGCTGCGCGAGCTGCTCGACCAGCCCGGCCACCTGGACGCCCGCGACGTCGAACGGCGGCTCGGCGCGATCATCGTCCGGTTCCGGCACGGCACGGGGCCGTCCGGCTCCGGCGACCTGTTCGGCGCGATGATCTCCCTGTTCGCCGACGCCGGCATGACGGTCCCGCCCGGCCCGGCCGCGGCGCTGCGCACGATGGCCTCGCTGGAGGGAGCGCTCGCCCTGGTCGCGCCGGGCTACGACCTCGTCGCGGCGGCGCAGGAGATCGGCGCGCCGCTGCTGAGGTCCACGACGGGCCCCCGCGCCGTCCGGGATCGGGTGACCCGCCAGCTCGCGGGCATGGCGCCGTCGCTGCAGCGCCTGCCACGACGCCTGACGCAGGTCGTCGAGGACCTCCAGGACGGGAACCTGACCGTCACGGTGCGCTCCTTCGCCCACCCCGAGGACCGCACGTTCCTCACCTCGTTGGTCCAGCAGCTCGTCACCGCGGTCATCGCCGCCGCCTCGCTGGTGGGCGCCGTCCTGATGATCGTCTCGCCCACCGGACCGATGCTGATGCCCGGCATCGACCTGTACTGGGTGCTCGGCGCCGGCCTGGCCTTCGTCGGCACGCTGCTCAGCGTCCGGGTCCTGGTCTTCGCGCTGCGCGCGCGGCGGTGAMSWLSGLFALVVTLASGLLLAAAARRTLDAPVGWMRSIATTLVVFGLGSALLETGTDALAVDITSTGSALGMGLLLLVAWAWMFAVALGVLLVLEVLVPTGRLPTPLQALRGLREGRQESRRYAQVVTILVRRGLGGFLRRGADGETERSAGALAAHARSLRLALSDAGVTYVKFGQMLSSRRDLVPDVVADELTQLQARVPPESWETVRAAVDDALGRPLEEAFARFDETPLASASVGQVHSARLLDGREVVVKVLRPGARAQVEVDLRILGRLARRLERDTQWARSLGVVGLVAGFAASLSEELDYTVELGNTLNLDRALAATSGGVDPRVRLPVMHPELSGPTLLVMDRMEGVPLGEAADVLAAIDAEERRHMADSLLGSAMRQLVVTGVFHADLHPGNILVRPDGTLGLLDLGAVGRMDESERMALGAFLLAVQGDDSIAALDALRELLDQPGHLDARDVERRLGAIIVRFRHGTGPSGSGDLFGAMISLFADAGMTVPPGPAAALRTMASLEGALALVAPGYDLVAAAQEIGAPLLRSTTGPRAVRDRVTRQLAGMAPSLQRLPRRLTQVVEDLQDGNLTVTVRSFAHPEDRTFLTSLVQQLVTAVIAAASLVGAVLMIVSPTGPMLMPGIDLYWVLGAGLAFVGTLLSVRVLVFALRARRPGPT0009520_25DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009520-ubiB|aarF-K03688NANA
AK018_03081783hypothetical proteinATGACCGCCGCACGGACGCAAGCTCACGCCCAGGCCGTCGACGCCGCCATCGACCTGTTCTCCCGCCAGGGTTACGAGCGGACCACCGTCGAGGAGATCGCCGACGCCGCGCAGGTCAGCCGGGCCACGTTCTTCCGGCGGTTCCGGTCCAAGGAGGACGTGGTCTTCGCCGACCACGAGCTGCTGCTGGAGGAGGTCGTGGTGATGCTCGCCGCGACGCGTCCCGAGGCCCGGGCCAGCGAGGAGTCCAACAACCGCGACGCCGCGTGGGACCCCGCCGTCGACCCGTACCTGGAGGTGTGCCGGGCCGCGCGCCTCGTGTTCGACCACCACGTCGGCCAGCGCGAGACCTCCCTGGCCCGGCACCGGCTGCTGCAGCAGGTCCCGGCCCTGCGCGACCGCGAGCTCGTCACCACCCACCGCTACGAGCGGGCGTTCACCGCCTACCTGCGCGACACCCTGCCGGCCGAACGGTCGTCGTCGACGATGTCGATCGCCTTCGCCGCCTCGGTGGTCGCCGTCCACAACGCGGTGCTGCGCCGCTGGCTGCGCAACCCGTATCTGGACCTGCGACCCGACCTGGAGGAGGCGTTCGCGGACCTGCGCCGCGTCGCCGCCGCGCCGTCGGAGGCGACCGCCGACCCGGCCGCGCTCGCCCCGTCGGAGGCTCCCCCGGAGCCGGACGGCCGCGGACCGGGCAGCAAGCGCGTGGTCGTGGCCGTCCTGGAGGAGGGCGCCGGGCCGGACGACGTCGCCCGCGCCGTCCGCGACGTGCTGGCCTGAMTAARTQAHAQAVDAAIDLFSRQGYERTTVEEIADAAQVSRATFFRRFRSKEDVVFADHELLLEEVVVMLAATRPEARASEESNNRDAAWDPAVDPYLEVCRAARLVFDHHVGQRETSLARHRLLQQVPALRDRELVTTHRYERAFTAYLRDTLPAERSSSTMSIAFAASVVAVHNAVLRRWLRNPYLDLRPDLEEAFADLRRVAAAPSEATADPAALAPSEAPPEPDGRGPGSKRVVVAVLEEGAGPDDVARAVRDVLANANANANANA
AK018_03082699ribM_2Riboflavin/roseoflavin transporter RibMATGATCGAGTGGTTGTTCGACGCCACCTTCACGATCGGCGCCGAGCAGATCCTCTGGCGCGAGGTGATCGGCAACGCCTTCGGGCTGGCGTCGGCCCTCGGCGGGATGCGCCGCAAGGTGTGGGCCTGGCCGGTGGGCATCGTCGGCAACGTGCTGCTGCTGACCGTGTTCCTCGGGTCGGTGTTCGGCGACGCGAGCCGGGCCGACATGCTCGGCCAGGCCGGCCGGCAGGTGATGTTCATCGCCGTGTCCGTCTACGGCTGGATGCGGTGGCGCGAGACCCGGCGCCAGGACCTGGAGGTCCGCGCGGACGGCAAGGTGCCGTCGTCGGGCGCCGAGGGGGTGCACCCGCACTGGGCGACGTGGCCGCAGCGGGCGTTCCTCGTCGGGGCGATGGTCGTCGGCACGCTGGCGCTGACGCCGCTGTTCCGGGCGCTGGGCTCCTACGAGCCGGTGTGGGCCGACGCGTGGATCTTCATGGGCTCGCTCCTGGCCACCTACGGCATGGCCCGCGGCTGGGTGGAGTTCTGGCTGGTCTGGGTCGCCGTCGACCTGGTCGGGGTCCCGCTGCTGTGGTCGGCCGGCTACTTCGCGACGTCGCTGATGTACGTGTTCTACGGCGCGTTCACCCTGGTCGGCTTCTTCGTGTGGTGGCGGGTGCACCGCCGCGAGCAGTCGGCCGTGCCCGAGCCGGGCTGAMIEWLFDATFTIGAEQILWREVIGNAFGLASALGGMRRKVWAWPVGIVGNVLLLTVFLGSVFGDASRADMLGQAGRQVMFIAVSVYGWMRWRETRRQDLEVRADGKVPSSGAEGVHPHWATWPQRAFLVGAMVVGTLALTPLFRALGSYEPVWADAWIFMGSLLATYGMARGWVEFWLVWVAVDLVGVPLLWSAGYFATSLMYVFYGAFTLVGFFVWWRVHRREQSAVPEPGNANANANANA
AK018_03083690hypothetical proteinATGCTCATCGCCGAGGACCTGCTGCTGCTCACCTACGACGACGACGCCGGCACCCCGGACGCCTGGGTGACGAACCTGGACTACCGCCTCGGCGGCGCGCTGCTGCTCGAGCTCGCCCTGGCCGGTCGCGTGGACGTGGCCGGACCGGGCACGACGACGGCGGCGGGCTCGGCCGCGCGGGCCGGCACCGTCGTCGTGGTGGACCGCTCCCCCACGGGCCACCCGGTCCTGGACGGGGCGCTCGCCGTCGTCGGACGCCGGCCCCGCAAGCCCAAGAACCTCGTCGCGCCGCTGTCGAAGGGCGTGCGACGGTCCCTCCTGGCCGGGCTGGCCGAGCAGCGGGTGCTGCGGCGCGAGGAGGGTCTCGTGCTGGGGATCTTCCCGCGGACGACGTGGCCGGCCGCGGACTCCTCGCACGAGCTGGCGCTGCGCGCCGAGTGCGAGGCGGTGCTGCTCGGAACCCGGCAGCCCCGCCCGGAGACGGCCGGACTGCTCGCGGTGGCGCAGGGGACGTCGCTGGTGAAGCGGCTCGTGCCGCGTGAGCGTCGCCGCGAGGCCGAGGCGCGCGCGAAGCAGCTCGTGAGGTCGTCCTGGGCGCACGAGGCCGTGAAGAAGGCCGTGGACGAGATCAACGCGGCGGTGATGGCCGCGGTGGTCATCCCAGCCGCGATCACCGCGGGCGGGAGCTGAMLIAEDLLLLTYDDDAGTPDAWVTNLDYRLGGALLLELALAGRVDVAGPGTTTAAGSAARAGTVVVVDRSPTGHPVLDGALAVVGRRPRKPKNLVAPLSKGVRRSLLAGLAEQRVLRREEGLVLGIFPRTTWPAADSSHELALRAECEAVLLGTRQPRPETAGLLAVAQGTSLVKRLVPRERRREAEARAKQLVRSSWAHEAVKKAVDEINAAVMAAVVIPAAITAGGSNANANANANA
AK018_030841260mmgC_3COG1960Acyl-CoA dehydrogenaseATGAGCCGCCCGGCACCCACCCAGATCGGCGTCACCGCGCCCGACTACGACCTCTCGGCGCCCTCGGACGTCGACTACGCCCGCGCGTTCGCCGACGTCGCCCCGGAGGTGCGCGAGCACCAGCTCCGCGCGCGCCGGTTCGTCCAGGACGAGGTGCTGCCGGTCATCGACGGGTACTGGGAGCGCGCCGAGGTGCCGTTCGACCTCGTCAAGAAGCTCGCCGAGCACGACCTGCTGCGCGACGGCGTCGACGTCGCCGGCCGCCCGACGATCTCCCTCATGGCCGAAGGTCTGGCCAGCATGGAGATCTCCCGCGGCGACGGCTCCGTCGCGACGATCTGCGGCGTGCAGGGCGGGCTGGCGCTGCGCTCCATCGTCATGCACGGCTCGCCCGAGCAGGTCGAGCGGTACGCCGAGCCGATGGCGCGCGGCGAGATCCTCGGCGCCTTCGCCCTGACCGAGCCCACGCACGGCTCCGACTCGGTCTCCCTGGAGACGACGGCGCGGCGCACCGTCCGCGACGGGGTCGAGGGCTACGTGCTCGACGGCGAGAAGAAGTGGATCGGGTTCGGCTCCTGCGGCGACATCACCGTGGTGTGGGCCCGCCTCGTCGACTCCGCCGACGGCGCCGGGGACGGCGACGGCCAGGTGCACGGCTTCATCGTCCCGCAGGACGCCCCCGGGTACACCGGCACCACCATCGAGGGCAAGATGTCGCTGCGTGCCATCTGGCAGGCGCACATCGAGCTCGACGACGTGTTCGTCCCCGCCGACGCCGCCCTGCCCGGTGCCACCTCGTTCAAGGCGACCTCCGCCGTGCTGTTCGCGACGCGGCTGACCGTCGCGTGGTCCGCCCTCGGGCACGCCGTCGCCTGCTACGAGGCGGCGCTGGCCTACTCCACGCAGCGGGTCCAGTTCGGCAAGCCGCTGGCCGCCAAGCAGATGGTCCAGGAGCGGCTGACCCGGATGCTGTCCACCGTGACCCAGCTGCAGCTGCTCGTGGGGCGCCTGACCGAGCTCGCCGAGGCCGGCGAGCTCACCGGCGAGCAGGCGTCGCTGGCCAAGTACACCTGCACCCGCGGCGCCCGCGAGGTCGCCTCGATCGCCCGCGACATGCTCGGCGGCAACGGCATCCTGCTGGGCAACCGCGTGGCGCGGCACTTCGCCGACATCGAGGCGCTGCACACCTACGAGGGCACCGAGTCGATGAACGCGCTGATCATCGGCCGCGACCTCACGGGGATCTCCTCCTTCGCCTGAMSRPAPTQIGVTAPDYDLSAPSDVDYARAFADVAPEVREHQLRARRFVQDEVLPVIDGYWERAEVPFDLVKKLAEHDLLRDGVDVAGRPTISLMAEGLASMEISRGDGSVATICGVQGGLALRSIVMHGSPEQVERYAEPMARGEILGAFALTEPTHGSDSVSLETTARRTVRDGVEGYVLDGEKKWIGFGSCGDITVVWARLVDSADGAGDGDGQVHGFIVPQDAPGYTGTTIEGKMSLRAIWQAHIELDDVFVPADAALPGATSFKATSAVLFATRLTVAWSALGHAVACYEAALAYSTQRVQFGKPLAAKQMVQERLTRMLSTVTQLQLLVGRLTELAEAGELTGEQASLAKYTCTRGAREVASIARDMLGGNGILLGNRVARHFADIEALHTYEGTESMNALIIGRDLTGISSFAPGPT0021815_501DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
AK018_030851314mntHCOG1914Divalent metal cation transporter MntHATGAGCTCGCGTACCGCCTCGTCCCGGGGTGTCCGACGCCGCCTGCGCGTCCTGGCCCTGCTCGGGCCCGCCTTCGTCGCCGCCATCGCCTACGTGGATCCCGGCAACGTCGCGGCCAACCTCACCGCGGGCGCCGAGTTCGGCTACCTGCTGGTGTGGGTGCTGGTCATGGCCAACGCGATGGCGGTGCTCGTGCAGTACCTGTCGGCCAAGCTCGGCGTCGTCACGGGGCGCTCGCTGCCCGAGGTGCTCGGCGACCGCATGTCCCGCCGGGGACGGATCGCGTACTGGCTGCAGGCCGAGGCCGTCGCGATGGCCACCGACCTGGCGGAGGTCATCGGCGGCGCCCTGGCCCTGCGTCTGCTCTTCGACGTGCCCCTGCTGCTCGGCGGTCTGATCACCGGGGTGGTCTCGATGCTGGTCCTGGCGATCCAGCAGCGTCGCGGCCAGCGGGTCTTCGAGACGGTCGTGCTGACGATGCTCGGGGTGATCGTCGTCGGGTTCTGCGCCGGGCTGCTCGTCGCCCCTCCGGACCCGGCCGCCGTCGTCGAGGGGCTCGTGCCACGGTTCGCCGGCACCGACTCCGTGCTGCTGGCGGCCTCCATGCTCGGCGCCACGGTCATGCCGCACGCGATCTACCTGCACAGCTCGCTCGCCCGCGACCGGGTGCGGCACGACCTCGCCGTGCGGCGCGCGATCGCCGACGTCGCCGGATCCGACGCCCGGTCCGACGGCGGGGCCGACGCGGCGCCCGACGAGGCGATGGTGCGGCGCCTGCTGCGGGCCACCCGGGTCGACGTCGTGGCGGCGCTGATCATCGCCGGCGGGGTCAACATCGCGATGCTGCTGCTCGCCGCGGCCAACCTGCCCGGACGGACCGGCACCGACACGATCGAGGGGGCGCACGCCGCTATCGCCGACGCCCTCGGGCCCGTCGTGGCGGTGCTGTTCGGCGTGGGACTGCTCGCCTCGGGGCTGGCGTCCACGGCGGTGGGCGCTTATGCGGGCTCGGAGATCATGGCCGGGCTGCTGCACGCCCGCATCCCCCTCGTCACGCGGCGGGTGGTCACGCTGGTACCCGCGCTGCTCCTGCTCGCGACGGACGTCTCGCCGACGTACCTTCTCGTCCTCAGCCAGGTGGTGCTCAGCTTCGGCATCCCGTTCGCGATGATCCCGCTGGTGCGCGTCACCGCCGACGCGGGACTGCTCGGCCGGTTCCGCAACACCCGTGCCACGCAGGGCGCGGCCTGGCTTGTCGCCGCGATCATCGTGGCGCTCAACGTGGCGCTGCTCTGGCTCACGATCGTGGCGTGAMSSRTASSRGVRRRLRVLALLGPAFVAAIAYVDPGNVAANLTAGAEFGYLLVWVLVMANAMAVLVQYLSAKLGVVTGRSLPEVLGDRMSRRGRIAYWLQAEAVAMATDLAEVIGGALALRLLFDVPLLLGGLITGVVSMLVLAIQQRRGQRVFETVVLTMLGVIVVGFCAGLLVAPPDPAAVVEGLVPRFAGTDSVLLAASMLGATVMPHAIYLHSSLARDRVRHDLAVRRAIADVAGSDARSDGGADAAPDEAMVRRLLRATRVDVVAALIIAGGVNIAMLLLAAANLPGRTGTDTIEGAHAAIADALGPVVAVLFGVGLLASGLASTAVGAYAGSEIMAGLLHARIPLVTRRVVTLVPALLLLATDVSPTYLLVLSQVVLSFGIPFAMIPLVRVTADAGLLGRFRNTRATQGAAWLVAAIIVALNVALLWLTIVAPGPT0004370_1709DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT_TRANSPORT_SYSTEM,PGPT0004370-mntH-K03322NANA
AK018_030861347hypothetical proteinGTGGCCGTGCCCGACGCCGCGGACCCCCGCTCGCCCGAGACGCCGCCCACCCCGACACCGGCCCCGCCGGCCGACCGCGGCGGGCGCCTGCTCGCCTCGCCCTGGCTGCTCGCGCTCGCCTTCGTCGTCGTGCACGCCCGGCTCGTCCACGAGGCGATCACGTGGCAGAACACGATCTTCGGCGACGTCACCCTCTACGAGTGGTGGGCCCGCCACGGCCTGGCGAACGGCGACTGGCCCGTCCTGGACTACGCGTGGGTCTACCCGGCCGGCGCGCTCGTCCCCGTCGGGCTGCCCGGGGTGTTCACCGACGACCTGCTCGGCTACGAGATCGCCTGGACGGCGATGATCGTGCTGCTCGACGCCGTCGCGACCGTGGTGCTGGTGCGCATGACGCCGCGCGGCGTCCTCGGCGCCTGGTGGTGGCTGCTGTTCCTGCTCGCCCTCGGCCCGATCTTCCTCGGCCGGCTCGACGGCGTCGTCGCCCCGATGATCCTCGTCGCGCTGGTCGTGGCACGCCGCCACCCGCGCGTCGCGGTCGCCGTCGCCACGGCGGGCGCGTGGGTGAAGATCGCCCCGGGCGCCGTCGTCGTCGCGATCGCCGCTACCCGCCGCAGCCTGCGCGACCTGCTGCGCACCGTCGTCGTCCCCGGGGCCGCCGTGAGCGCCGTCGTCGTCGGGCTGGCCCTGGCCGGCGGCGCGGGGGTGCGCGCGCTGAGCGTGTTCGGCGAGCAGGGCAGCCGCACGCTGCAGGTCGAGTCCGTGGCCGCCACGTGGTTCTCCGTCGCCCGCTGGTGGGACCCCGGCGTGCGCATCGAGTACAACGACGAGATCTTCACCTACGAGGTCCTCGGCGACGCCGCCCGCGCCGTGGCGAACACGCTCGACTGGCTGCTGATCCTCGCCGTCCTGGCCGTCGCCGCGCTGACCTGGTGGGCCGCGCGGCGCCACCCGGAACGGATGTACGAGATCCTGCTGCTCTCGGCCGCGGCACAGCTCGTCGCCCTCATCGTGTTCAACAAGGTCGGCTCGCCGCAGTTCGTCGCCTGGCTCGGCCCCGCCGTCGCCGTCGCCCTGGCGGCCCTGCCCGAGGGGCGGTCCCAGCAGGCGTGGTGGCCGCCGGCCCTCGGCATGATCCTCGTCGCCTACGCCACCTACCTCGTCTACCCGGTGGCCTACGGGCCGTTCCTCGGCGGCGAGACCTGGATCGTCGTCGTCGAGGCGCTGCGCAACCTCGCGCTCGTCGTGCTCCTGGCCGGCGCCGTCTGGCAGCTCGTGCGTCTCGGCCGGCAAGACCCCGGGGCCCGGGTCGCGGCCCCGTCGCCCGGCGGCGCCCGGTCCGCGTAGMAVPDAADPRSPETPPTPTPAPPADRGGRLLASPWLLALAFVVVHARLVHEAITWQNTIFGDVTLYEWWARHGLANGDWPVLDYAWVYPAGALVPVGLPGVFTDDLLGYEIAWTAMIVLLDAVATVVLVRMTPRGVLGAWWWLLFLLALGPIFLGRLDGVVAPMILVALVVARRHPRVAVAVATAGAWVKIAPGAVVVAIAATRRSLRDLLRTVVVPGAAVSAVVVGLALAGGAGVRALSVFGEQGSRTLQVESVAATWFSVARWWDPGVRIEYNDEIFTYEVLGDAARAVANTLDWLLILAVLAVAALTWWAARRHPERMYEILLLSAAAQLVALIVFNKVGSPQFVAWLGPAVAVALAALPEGRSQQAWWPPALGMILVAYATYLVYPVAYGPFLGGETWIVVVEALRNLALVVLLAGAVWQLVRLGRQDPGARVAAPSPGGARSANANANANANA
AK018_030871125mgtA_2COG0438GDP-mannose-dependent alpha-mannosyltransferaseGTGAGGGTAGCGATCGTCGCAGAGTCCTTCCTTCCGCAGGTCAACGGGGTGACGAACTCCGTCCTGCGGGTCCTCGAGCACCTCCGGCGCACCGGGCACGACGCGCTGGTCCTGGCTCCCGACACCGACGACGGCGAGATCCCGCCGTTCGTGCACGGCGCCCCCGTCGTCGAGGTGCCGTCCGTCGGTCTGCCAGGTTATCCCGACGTCCGGGTCGTCCTCGGCCAGCGCACCCGGATCGAGCGCACGCTCGCCGCGTTCGAGCCCGACGTCGTGCACCTGGCTTCCCCGTTCACCCTCGGGTGGCGCGGCATGCAGGCGGCCGAGTCCCTGGGCGTGCCGACGGTGGCGATCTACCAGACCGAGGTCCCGAGCTACGCGGCCCGGTACGGGATGCGCCACTTCGAGCCGCTGCTGTGGCGACGGGTGCGCACCCTCCACGAGCGTGCCACCGTCACGCTCGCGCCGTCGACCCCCACGATCGACCACCTCAGGGCGCGCGGCATCCCGCGGCTGCATCGCTGGGGACGGGGTGTGGACACCGAGCTGTTCCGCCCCGGTGCGCGCGACGTCGCCTGGCGGCGCGACGTCGGCGCCGGCCGGCCGCTGCTCGTCGGGTACGTCGGGCGGCTCGCCGCGGAGAAGCAGGTCGAGGCGCTGCGGGTGCTGCACGACCGTCAGGACGTCCGGCTCGTCGTCGTCGGCGAGGGACCCGAACGGCCGCTGTTGGAGGGCCTCCTGCCGGACGCCCACTTCACCGGGCTGCTGCGCGGCGAGGAGCTGGCGCGGGCCATGGCGAGCCTGGACGTGTTCGTCCACCCCGGCGAGCTGGAGACGTTCGGCCAGACGCTGCAGGAGGCGCACGCCTCCGGGGTGCCCGTCGTCGCGCCGGCCGCGGGCGGGCCGATCGACGTCGTCGCGCATTCGCACACGGGCTGGCTCTACCCGCCCGGCGACCATCGGGCGCTGCGCGCGCACGTCGACGACCTGCTCGGCGACCACCGCAAGCGCCGGGCCTTCGGTGCGGCCGCGCGGGAGCGGGGGCTGGGACGCACCTGGGCGAAGGTCTGCCACGAGCTCACCGAGCACTACGAGGCGGCGGTCCGGGTCCGTTCGGGGGTGTGAMRVAIVAESFLPQVNGVTNSVLRVLEHLRRTGHDALVLAPDTDDGEIPPFVHGAPVVEVPSVGLPGYPDVRVVLGQRTRIERTLAAFEPDVVHLASPFTLGWRGMQAAESLGVPTVAIYQTEVPSYAARYGMRHFEPLLWRRVRTLHERATVTLAPSTPTIDHLRARGIPRLHRWGRGVDTELFRPGARDVAWRRDVGAGRPLLVGYVGRLAAEKQVEALRVLHDRQDVRLVVVGEGPERPLLEGLLPDAHFTGLLRGEELARAMASLDVFVHPGELETFGQTLQEAHASGVPVVAPAAGGPIDVVAHSHTGWLYPPGDHRALRAHVDDLLGDHRKRRAFGAAARERGLGRTWAKVCHELTEHYEAAVRVRSGVPGPT0017895_539DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_MANNOSE_METABOLISM|DEGRADATION,PGPT0017895-mgtA-K12583NANA
AK018_030881278pimCGDP-mannose-dependent alpha-(1-6)-phosphatidylinositol dimannoside mannosyltransferaseATGCGGATCGTGCACGTGGCCAACGCCTACGCGCCGCGGTCCGGCGGGATCCGCACGGCGATGCACGCGCTGGCCGGCGAGTACCTCGCGCACGGTCACGAGCCGGTGCTCGTCGTCCCGGGTCCGACGGCGCAGGTCCGGTGGGTGGGAGGCGTGCGGGTCGTGCAGGTCCCGGCCCCGCGGGTTCCGGGTGTGCCGGGCTACCGGATGGTCACCCGACCCGGGCTGGTGCGGGCGGTCCTGGACGACCTGGCACCCGACCGGGTGGAGGTCTCGGACCGGGCCTCGCTGACCGGCGTCGGGCTGTGGGCGCGCGAGGCCGGGGTGCCGTCGCTGCTCGTGCTGCACGAGCGTCTCGACGGTGTGCTGTCCTCCTTCTGGCCGGGCGCCGGGCGCGGCGCGCGTCCCGGGGCGGCGCGGGGTGCGGCCACGGCGCTCGCCGACGGGTGGAACCTGCGCACGCTGTCCCGGTTCGACCGGCTGGTGGCCACCACCGGGTTCGCGGCCGGCGAGGTGACGCGGCTCGTCGAGCAGCGGCCCACGACAGCGCTGCCGCCGCTGCACCGGGTGCCGCTCGGCGTCGACCTGGAGCGGTTCACCCCGGACCGGTTCGACGGCGCGGTGTCGCGTCGGCTGGCGCCGTCCGGCGAGGCGACGGTGCTGGTGATGAGCCGGCTGTCCACGGAGAAGCGGGTCGACCTGGCCGTCGACGCCGTCGCACGGCTGACCACGGAGGGCGTCCGGGTGCGGCTCGTCGTCGCCGGCAGCGGACCGCGGCTGTCCTCGCTGCGCGACCGTGCCGAGCGGCTCGGGATCGCGCAACGGTTCTGCGGCTTCGTGCCCGACCGGGACGTGGTGGCGGCGATGCTGGCCAGCGCCGACGTCGTGCTGGCCCCCGGCCCGATCGAGACCTTCGGGCTGGCCGCGCTGGAGGCCCTGGCGTCCGGCACGCCGGTGGTGTGCAGCGACACCAGCGCGCTGCCCGAGGTGGTCGGCGCGGCCGGGGCGTCGGCCGCTCCCGAGCCCGACGCGCTTTCCCTGGCCCTGGCCGACGTGCTCTCCCGGCCGGTGGCCGAGCGCCGGGAGGCGGCGCGCGGGCGGGCCGAGCTGTTCCCCTGGTCGGCGACGGGGCGCGCGATGCTCACCCTGCACGGCGCGGCACCCCCACCCGCTGCGCCCCCACCGGCTGCTCCCCCACCTGTTGTGGGCATGAAATCTGCAGTGTCGACCCCGGTTCGGCCTGCAGATTTCATGCCCACAACCGGAGGTGTGCGATGAMRIVHVANAYAPRSGGIRTAMHALAGEYLAHGHEPVLVVPGPTAQVRWVGGVRVVQVPAPRVPGVPGYRMVTRPGLVRAVLDDLAPDRVEVSDRASLTGVGLWAREAGVPSLLVLHERLDGVLSSFWPGAGRGARPGAARGAATALADGWNLRTLSRFDRLVATTGFAAGEVTRLVEQRPTTALPPLHRVPLGVDLERFTPDRFDGAVSRRLAPSGEATVLVMSRLSTEKRVDLAVDAVARLTTEGVRVRLVVAGSGPRLSSLRDRAERLGIAQRFCGFVPDRDVVAAMLASADVVLAPGPIETFGLAALEALASGTPVVCSDTSALPEVVGAAGASAAPEPDALSLALADVLSRPVAERREAARGRAELFPWSATGRAMLTLHGAAPPPAAPPPAAPPPVVGMKSAVSTPVRPADFMPTTGGVRPGPT0024305_86DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024305-pimC-K14335NANA
AK018_03089930hypothetical proteinATGAGCGCGGGACCCGTCGTCGTCGGCCTCGGCGACTCCATCACGGCCGGGGTCGGCGACGCCATCACCGCCGACGCCCCCTACGGTCCCGGCTGGGCGGCGCACCTGGCCACGCTCGCCGGGGCGGCCCGTTTCACCAACGTAGCCCGGAACGGGGCGCGAGCCCATCTCGTCGTGGCCGAACAGCTCGACGCGGCGCTGGCCGTGCAGGCCGACGTCGCCACCCTCGTCGTGGGTGGCAACGACGCGCTGCGGACCGAGTTCTCACCGGTCGACGTCGGCCGCCACCTGTCCACCTGCGTGCGGGCGCTGCGGGCCCGGGGCACCGCCGTCGTGCTGGCGACACTGCCGCCGATCGGCCTGTTCGAGCTGTTCCCCGGCCGGGCCCGGAAGGTCATGCGCGCACGCATGGACGCCGTCAACGCCATGGTGCGCGCCACCGCGGCGCGCGACCAGGGCACCCGCGGGCCGTCCGTGGTGCTGTTCGACATCGCCGAGGCCGTCCGGCCCGCTGGGCTCGGGGCCTGGTACGTCGACCGGGTCCACCCCTCGCCGCTCGGGCACCGGCACATCGCCGCGGCGGGCTGCGCTGCCCTGCGGACGGCGCTGCCGGAGCTCACCGGACCCGCTAGCGTCGGTGGCGCTCAGGGTGCGCCGGTTACCGAGCGGGAGACATGCCGCGTGCTGCTCGACCGGCTCCCCGTACCTCCACCACCGCCGTCGGCCTGGCAACGGGCCGCCTGGCTGACGATCGCCGGCGTCCCCTGGGCGGTGCGGCGCGGGCACGACTTCCTGCCCGGGCTGATCCGCGCCGTGCTCGACGACCTGCGCGGTACCGCCGTAGGCCCGGTCGACCTGGACCTCCCGGCGTTGTCCGACGTCGGGGCTCCGGAGTCGGCGACCGCGGACGCGCTGCTGCCCGGGCGCTGAMSAGPVVVGLGDSITAGVGDAITADAPYGPGWAAHLATLAGAARFTNVARNGARAHLVVAEQLDAALAVQADVATLVVGGNDALRTEFSPVDVGRHLSTCVRALRARGTAVVLATLPPIGLFELFPGRARKVMRARMDAVNAMVRATAARDQGTRGPSVVLFDIAEAVRPAGLGAWYVDRVHPSPLGHRHIAAAGCAALRTALPELTGPASVGGAQGAPVTERETCRVLLDRLPVPPPPPSAWQRAAWLTIAGVPWAVRRGHDFLPGLIRAVLDDLRGTAVGPVDLDLPALSDVGAPESATADALLPGRNANANANANA
AK018_03090438hypothetical proteinATGACTGAGATCTTCGAGGCGCTCTCAGGAGACCCCACCGCCCAAGCGGAGAAGCGACTCACGGCACTGCCCGGCGACTTCGTGCACGCGCCGACAGGCACGTTCGTCGAGATCGACGAGTCACAGCACTTCACCTCGCATCGCTTGACGACGCTCGACCTGTACCCCGCCGGTGCACCACTGGCGTTCGATCTCGAGCAGTACCGCGACCTTTGCGTCCGATGGGCGCCACGGTCGGACAGGTACTTCGCGTCGAAGGCAGCCGTCGCCTTCGGACCAGGCGGGCGCCAGCGACAGCGCGCGTATCACGACGCGCTCCGCGACCTCGCGACCCCACCGATGGGTCACCCGCCGGTCGTGCGCGTTCCCGCTCCCGACCGGGACGGTGTCGCGGCCTATGCACGGGTCCGTCAGCAGCTGCGTTCGCTGATCCGCTGAMTEIFEALSGDPTAQAEKRLTALPGDFVHAPTGTFVEIDESQHFTSHRLTTLDLYPAGAPLAFDLEQYRDLCVRWAPRSDRYFASKAAVAFGPGGRQRQRAYHDALRDLATPPMGHPPVVRVPAPDRDGVAAYARVRQQLRSLIRNANANANANA
AK018_03091513hypothetical proteinATGCTCATCGCGCGGCCGTTCACCTCGGCAGCCATCAAGCTCCATCCGTTCGACTGCGGAGAACCGGAGCTCAACGAATGGCTCGCTCGCTACGCCGGCCAGAGCGAGAAGAAGGACAACGTCCGCACCACTCTGCTGCTCGACGAGGAAGCCCAGCGCGTCGCCGGCTACTTCTCCATGCGCACCTTCGAGCTGTCAGCGGCCGATGGCGAGTCAGCGATGGGACTCAGGTGTCGCTACCCGGTGCCGGCGATGCTCCTTGCGCGGCTCGCTGTCGACAACGACTACAAGGGTCAGGGCGTCGGCAAGCTGCTGCTCGTCGACGCCCTCCAACGGCTGCTAGCAGCGGCGGACAACGTCGGCTTCGAGGTCGTCGTCGTGCACGCGCTCCACGAGGACGCTGCCTGCTTCTACCTCAAGCACGGCTTTCGCCGGTTTCTGGACCACGAGCTCAGTCTGTTCCTCACGACGAAGGACCTGCGAGCGACGTTCGCTGCAGCGCAATCCAGTTGAMLIARPFTSAAIKLHPFDCGEPELNEWLARYAGQSEKKDNVRTTLLLDEEAQRVAGYFSMRTFELSAADGESAMGLRCRYPVPAMLLARLAVDNDYKGQGVGKLLLVDALQRLLAAADNVGFEVVVVHALHEDAACFYLKHGFRRFLDHELSLFLTTKDLRATFAAAQSSNANANANANA
AK018_03092309hypothetical proteinATGCCTACCGCCAACGCGCGGTCAGAGCGTCTGCACATGCGCCTGTCGCCCGATTCTCTCGCGACCATCCGTGAGGCCGCCGCGGCGCAGCAACAGGACGTGTCGGCATTTGTGCTCGGGGCGGCTATGGAGCACGCCCGTGAGGTCCTGCTACGTGACCGCGTCCTGCAGCTCACCCCTCGCGAGCTCGACCAGGTCGACAGCGCGCTCGACGCCGAGCCTCACGTGGTCCCGGAACTTGCCGCGCTGATCGCTGCGGTCCGACGGGACACGCCGCAGCACGGCAAGCAGGAGCTGACGTCGCACTGAMPTANARSERLHMRLSPDSLATIREAAAAQQQDVSAFVLGAAMEHAREVLLRDRVLQLTPRELDQVDSALDAEPHVVPELAALIAAVRRDTPQHGKQELTSHNANANANANA
AK018_03093807hypothetical proteinGTGACCTACCGTAACTTCGTGCGTCCGGCCGTGGCTGAGCGCAGGCAGAACGCTGCGTTCTGGATGGCCTGGATGGAAGAGCAGGGCGACATTCTGGTTCCCGTCGCCCCGCACCAGCCGCTAAGTTGCTTGCACTGTTACGGCGCGTCCCGCTTTCGAGAGAACGGCAGCACGTGGCCAACCTGCTGGGAGTGCGGCCACACGTACGGCGAGGCCGTGGACACCTTCGTGCCCATTACCTACAGCCTGGACGGCGGCCTTGAGTCGATGCTCCACCAGTACAAGGACGGAGCGGCGCGATGGCTGCGGCAGCCCCTGGCCTCACTGTTGACGTTGTTCGTTCACCAGCACGCCGACTGCATCGACCGCAACGCTCGCGGGATCGATGTAGCTACGGTCGTGCCGGCGAATAGCCAGCATCGTTCATTCAACCATCTCGATCGGCTACTCCGGGGGGCGGTTGTCGACGACCCCATCGTCAAGCGGTTCAGTTGGAGCCTTGACGCCATCGCCCGCGACCGGTCCACCGAGCGACCTCGGCGACGTGAACTGAAGCCCGAGTCCTACACTGTGGACTCCAGCGCGGTCTCCGGAGCAGCAGTGCTCCTGCTCGATGACACCTGGACGTCTGGCGCTTCGTCGGCCAGCGCCGCTGCGGCACTCAAGGCTGCGGGCGCGCACCACGTAACCGTCCTCACACTCGGGCGGCAGCTCAACCCGAACAGCCAGTTCGGGAGTACGGAGGCCATCTACGCCGACCGCCACGCCGCAGAGTGGAGCCTCGATGCCTGCGTCCTCTGCACCTGAMTYRNFVRPAVAERRQNAAFWMAWMEEQGDILVPVAPHQPLSCLHCYGASRFRENGSTWPTCWECGHTYGEAVDTFVPITYSLDGGLESMLHQYKDGAARWLRQPLASLLTLFVHQHADCIDRNARGIDVATVVPANSQHRSFNHLDRLLRGAVVDDPIVKRFSWSLDAIARDRSTERPRRRELKPESYTVDSSAVSGAAVLLLDDTWTSGASSASAAAALKAAGAHHVTVLTLGRQLNPNSQFGSTEAIYADRHAAEWSLDACVLCTNANANANANA
AK018_03094954hypothetical proteinATGAAGAGCATCTCGCCGAGACTGACCTACGCTGGCCACATGACCACAGCCACAGAGGAGCATGTCGCGCTGGTCGCGCTACTCCGCACCCTCGGCCGAGGTGAGCGGTGGGCCTCCGTAACCGAGCAGGTGCTTGAGCGAGGCAGCGCCATCGCAGCCTGGGAGGACAAGGCGGGCGAATCGCTCTTGCCTGACCCCGACCTTGCCGCGGCCTTTGACCGGGCCAACGCAGACGTGAAGGCGTGGGCTACCGCCGGCTACTTGATGGTCGGAATTCTCGACTCAGACTACCCCGTACGCCTCCGCGAGATCCACCAAGCACCCCCGTTTCTCTTTGCGGCAGGTGAACTCCGTGCTGATGACCCTGCGATTGCCGTCGTCGGCTCCCGCAAGGCGTCGGCTCGCGGGCTAGGCATTGCCACAGCGATCGCCAGAGAGCTCGCAGTGATGAGAGTCACGGTCCTCTCCGGCCTTGCGGCTGGTATCGACACCGCGGCACATACTGCCGCGCTAGCAGCTGGCGGGCGCACGGTCGCCATCATCGGCACCGGGATCAGCAAGCAATATCCCGCGTCGAACCGGCCCTTGCAGCAGCAGATCATGGAGCAGGGGCTCGTCCTCTCGCAGTTCTGGCCGGATGCACCACCGCAGCAGCACAACTTCATAATGCGGAACGGCGTCATGTCGGGATACGGGCGCGCAACGGTCGTCGTCGAGGCAGGCGAGAAGAGCGGCGCCCGCGCACAGGCTCGCATGGCTATCGAGCATGGACGACCGGTTATCCTCACGGACCATGTGGTAGCCGTAAACGAATGGGCGAAAGCACTAGTTGGCCGCCCTGGCGTGCACGTGGCCGATGGACTCGACGGCGCTATGGATCAGATCAGGGCAATTCTTGACACGGAGAACGAGGTAAATCGACTCCTGAACGGTCTCTTGGGTTCTGGTCTGTGAMKSISPRLTYAGHMTTATEEHVALVALLRTLGRGERWASVTEQVLERGSAIAAWEDKAGESLLPDPDLAAAFDRANADVKAWATAGYLMVGILDSDYPVRLREIHQAPPFLFAAGELRADDPAIAVVGSRKASARGLGIATAIARELAVMRVTVLSGLAAGIDTAAHTAALAAGGRTVAIIGTGISKQYPASNRPLQQQIMEQGLVLSQFWPDAPPQQHNFIMRNGVMSGYGRATVVVEAGEKSGARAQARMAIEHGRPVILTDHVVAVNEWAKALVGRPGVHVADGLDGAMDQIRAILDTENEVNRLLNGLLGSGLNANANANANA
AK018_03095765hypothetical proteinGTGACAATCCCCCGCGTCGCTCAGGTGCAGCAGACCCTCGCGGCAACTGCAGGGGGATTTCTGCGCAATCCCGTGCAGGAAGGCACTTGCAGTCACTGCTTCACCCCGACCCAGTCGCGACCACTCTGCGGCCGTTGCCGCACACTGATCTCATTCGACGGCGGCCCAAACCTCCTCGGGGTGATGGCCTACGCCAGTTACCTGGCCCCGATCACCCAATCTGGACACCTGATGCGCGGATACAAGAACCCGCACATCCTGTCCGGTTTCCACCGGCAGACGGTTGCGCTGATGGCGGCACTCGGGCTGATCGGCCATGTCTCCTGCCCAGGCACACTTGCCGGAGCCCCTGTCTCGGCCTGGGCGACGGTCCCGTCACTGCCGCCGAAACCTGGTTCCCCTAAACACGCCCTGAACGACATCGTAAGCAAGCTGGCGAGGCCTTCTGCCGTCGAGGTCACGCTCACTGCTGCGGCGTCCCCTCAAGACCCACGCGGAGTCAGCGCCGACCACTTCACCGCGAGTGCGACCGCCGCCGGAATGCACGTCTTGGTCATCGACGACACCTGGACGGGCGGTGGACACGCCACCTCTGCGGCGCTCGCCGTGCGAGCCGCGGGGGCAACTCATGTCTCTGTTCTCGTGCTCGCACGCTGGCTTTCAGACGGCTGGGAGCAGACGACGCCACACTGGGTAAGGCATCGGTTGTCCACGCCTGACTTTGACCCTGATATCTGTCCATGGACCCAAGGCTCGTGTCCCTGAMTIPRVAQVQQTLAATAGGFLRNPVQEGTCSHCFTPTQSRPLCGRCRTLISFDGGPNLLGVMAYASYLAPITQSGHLMRGYKNPHILSGFHRQTVALMAALGLIGHVSCPGTLAGAPVSAWATVPSLPPKPGSPKHALNDIVSKLARPSAVEVTLTAAASPQDPRGVSADHFTASATAAGMHVLVIDDTWTGGGHATSAALAVRAAGATHVSVLVLARWLSDGWEQTTPHWVRHRLSTPDFDPDICPWTQGSCPNANANANANA
AK018_030963066hsdRType I restriction enzyme EcoR124II R proteinATGACGGAGACGACGTACCGGTTCGAACCCATCGCGCTGTCGTCGGAGTCGACGGTGGTCGCGGAGTTCGAGGCCGACCCGGCCGAAGCGACGCGGTACCAGTCGGAGGCCGAGCTGGAGGCCGAGCTGGTCCGGCTGCTGCGGGAGCAGGCGTACGAGTACCTGCCGATCACCTCCGAGGCGGACCTGGTCGCGAACCTGCGCACCCAGCTCGAAGCGCTGAACCACATCAGGTTCAGCGATGACGAGTGGCGGCGGTTCTTCTCGACGGTGATCGCGTCGGCGAACGCCTCCGTCAAAGAGAAGACGGTCCGCGTCCAGGAGAACCACGTCGAGGCGTTCCGGCGGGACGACGGGTCGACGAAGAACATCGCGCTGATCGACAAGGCGCACATCCACAACAACCGGCTGCAGGTCATCAACCAGTACGAGGTCCAGGGCGCACCGTCGTCGGACGGTGTCCCGGCGCAGCGCGCGAACCGGTACGACGTGACGATCCTGGTCAACGGTCTGCCGCTGGTGCACGTCGAGCTCAAGCGGCGCGGGGTGGACATCCGGGAGGCGTTCAACCAGATCAACCGCTATCAGCGTGACTCGTTCTGGTCCGGGTCGGGCCTGTTCGAGTACGTCCAGCTCTTCGTCATCTCCAACGGGACGCTGACGAAGTACTACTCCAACACCGTGCGTGCCGCGCACCTCGACGAGCAGGCGAAGCGCAAGGCGTCGGCGAAGCGCACGTCGAACTCGTTCGAGTTCACGTCGTGGTGGGCGGACGCGACCAACCGGTCGATCACTGATCTGGTCGGGTTCACCAAGACGTTCTTCGCCAAGCACTCCCTGCTGAACATCCTGACGAAGTACTGCGTGCTCACGGCCGACCGGATGCTGCTGGTGATGCGGCCGTACCAGATCGCCGCGACGGAGCAGATCCTGACGAGGATCGAGACGTCGTCGAACCAGAAGCGGTTCGGAACCCTGTCGGCGGGCGGGTATGTGTGGCACACGACCGGCTCGGGCAAGACCCTCACCTCCTTCAAGACCGCGCAACTCGCGTCGAAGATGGAGGGGCTCGAGAAGGTGCTGTTCGTCGTCGACCGCAAGGACCTCGACTACCAGACCATGCGCGAGTACGACCGGTTCCAGAAGGGCGCGGCCAACTCCAACTCCTCCACCGCTGTGCTCAAGCGGCAGCTGGAGGACCCGGGCGCCAGGATCATCATCACCACGATCCAGAAGCTGTCGACGTTCATCAAGCAGAACGCCGGGCACGCAATCTACAGCGGGCACGTGGTGATCATCTTCGACGAGTGCCACCGCTCCCAGTTCGGGGACATGCACACCGCGATCACCAGGGCGTTCAAGCGGTACCACCTCTTCGGGTTCACCGGCACGCCGATCTTCGCCGAGAACGCCGGCACGGGCGGTGCCCCGACGCTGCGCACCACGGCCCAGGCGTTCGGCGACAAGCTGCACACGTACACGATCGTGGACGCGATCAACGACAAGAACGTGCTGCCGTTCCGCATCGACTACATCAACACCGTCAAGGTGCGCGACGGGCTCAGCGACAAGGAGGTCGCGGCGATCGACACCGACGCCGCCCGCCTGGATCCCCGGCGCATCCGCAACAACGTCGAGTACACCCTGGACCACTTCGACCAGAAGACCCGCCGCAACACCACCTACCGGCTCAGGGACCGGCGGGTGGCGGGGTTCAACGCCCTGTTCGCGACCGAGTCGGTCCAGGCAGCGAAGATCTACTACAACATGTTCGCTCGCGTCCAGGAGGAACGCGGCCTGCCCGACGCCAAACGGCTCAAGGTCGGGCTGATCTTCTCCTACGCCGCCAACGAGTCGGCCGCCGAGGAGGCTGGCGGGCTGCTGGGCGAGGAGGAGTTCGAGACCGACGGCCTCGACGCCTTGTCGCGGGACTTCCTGGAGGACGCGATCCAGGACTACAACGACATGTTCGGCACGTCGTTCGACACGTCCGCTGACAAGTTCCAGAACTACTATAAGGACCTGTCGTTGCGGATGAAGAACCGCGAGATCGACCTGGTCATCGTCGTCAACATGTTCCTCACCGGGTTCGACGCGACCACGCTGAACACGCTGTGGGTGGACAAGAACCTGCGCGCCCACGGGCTCATCCAGGCGTACTCGCGGACCAACCGCATCCTCAACTCGGTCAAGACGTACGGCAACATCGTCTCGTTCCGGAACCTCGAACAAGAGACCCAGGACGCGCTGGCGCTGTTCGGGAACAAGGACGCCACCGGCACCGTGCTCCTCGCGCCGTACGCGGAGTACTTCGGCGAGTACGCCAACAAGGTCACCGAGCTGCACGAGCAGTTCGCCCCCGGGCAGATGCCGGTCGGTGAGCAGGCCGCGAAGGACTTCATCGCCCTGTTCGGCGCGATCCTGCGGCTGCGCAACATCCTGGTGTCGTTCGACGAGTTCGCCGGGGCCGACGTCCTGTCCGAGCGGGACCGGCAGGACTTCCAGAGCGTCTACCTGGAGCTGTGGAACGCCCGGCGCGGTGGGCAGGCCGCAGAGCGAGAGTCGATCACCGACGACGTCACCTTCGAGATCGAGCTGATCAAGCAGGTCGAGATCAACGTCGACTACATCCTCATGCTCGTCGAGCAGTACCGGGCTGCACGCGGTGACGGCGAGGACAAGGAGATCAAGGCAAGCATCGACCGCGCCATCGACTCCTCGCCGACCCTGCGCAACAAGAAGGACCTCATCGAGGAGTTCGTCGACCGGATCTCCCTCGACGAAGACGTTGCCGACGAGTGGCGTGCGTACGTCGCGGCCAAGCGGGAGGCCGAGCTGATGAGGATCATCGTCGAGGAGAACCTCAAACCTGAAGCCACGCGCGCGTTCGTCGACGCCGCCTTCCGCGACGGAGCGGTGCGCGCGACCGGCACCGCGATCACCAAGGTCCTGCCGCCTGTGTCCCGGTTCGGCCGGGGCGGCGCTGGCGGCGGCCACGGGGTCAAGAAGCAGAACGTAATCGACAAGCTCACCGCGTTCTTCGAGCGGTTCTTCGACCTGACGTGAMTETTYRFEPIALSSESTVVAEFEADPAEATRYQSEAELEAELVRLLREQAYEYLPITSEADLVANLRTQLEALNHIRFSDDEWRRFFSTVIASANASVKEKTVRVQENHVEAFRRDDGSTKNIALIDKAHIHNNRLQVINQYEVQGAPSSDGVPAQRANRYDVTILVNGLPLVHVELKRRGVDIREAFNQINRYQRDSFWSGSGLFEYVQLFVISNGTLTKYYSNTVRAAHLDEQAKRKASAKRTSNSFEFTSWWADATNRSITDLVGFTKTFFAKHSLLNILTKYCVLTADRMLLVMRPYQIAATEQILTRIETSSNQKRFGTLSAGGYVWHTTGSGKTLTSFKTAQLASKMEGLEKVLFVVDRKDLDYQTMREYDRFQKGAANSNSSTAVLKRQLEDPGARIIITTIQKLSTFIKQNAGHAIYSGHVVIIFDECHRSQFGDMHTAITRAFKRYHLFGFTGTPIFAENAGTGGAPTLRTTAQAFGDKLHTYTIVDAINDKNVLPFRIDYINTVKVRDGLSDKEVAAIDTDAARLDPRRIRNNVEYTLDHFDQKTRRNTTYRLRDRRVAGFNALFATESVQAAKIYYNMFARVQEERGLPDAKRLKVGLIFSYAANESAAEEAGGLLGEEEFETDGLDALSRDFLEDAIQDYNDMFGTSFDTSADKFQNYYKDLSLRMKNREIDLVIVVNMFLTGFDATTLNTLWVDKNLRAHGLIQAYSRTNRILNSVKTYGNIVSFRNLEQETQDALALFGNKDATGTVLLAPYAEYFGEYANKVTELHEQFAPGQMPVGEQAAKDFIALFGAILRLRNILVSFDEFAGADVLSERDRQDFQSVYLELWNARRGGQAAERESITDDVTFEIELIKQVEINVDYILMLVEQYRAARGDGEDKEIKASIDRAIDSSPTLRNKKDLIEEFVDRISLDEDVADEWRAYVAAKREAELMRIIVEENLKPEATRAFVDAAFRDGAVRATGTAITKVLPPVSRFGRGGAGGGHGVKKQNVIDKLTAFFERFFDLTPGPT0027170_2921DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027170-hsdR-K01153NANA
AK018_03097834hypothetical proteinATGGCGCAGGTGATCCCGGTCAACGTTCAGGTTCCAGCGGCGTCGACAGCCCCGCTCGTGGCGGACTTCGTCTCGCACGCCCTCCGAGTCGCGTATGCCGCGCGACGCGACGTCGACCGACTCTCCAGCGACGAGTGGGGAGTGCCCGGCATCTACGTCCTGCTGACGGATGACGGGAGTCACCACCTGTACGTCGGCCAGGCCGTCGACCTGCGCAAGCGACTCTTGCAGCATCGGTCGAGGCCGAAGTTGTCCTGGGTCCGGGCTGTGGCGATCAAGCGGGACACCTCCCACGGGTTCAACTCCGCCGAGATTGGCTACCTGGAAGGGCGGGTGGCTGCCGAGGTCGCCGCGATCCCGGGTGTCACCGTCATCGAGGGCAAGCGTGACCAGGACACGACGTTGCCTCCGCACATGCTGCTGTCGCTCGATGAGTTGCTCTCGAGCTTGCTCGCCGCTCTCCGGCTCGCAGGCGTGGATACCCACAAAGAGGCCGATGAGCCCGAAGGCAAGGCCTTCAGCGCCAGCCGACGCAAGCGCCCGACTGCGAAGAATGGCACGGTGGCTGATCTCCTGTCCGCCGGACTCCTGAGGGCAGGAGCTGAGGTCCACCTGAGTCAGGGCGGGCGCTCCGCGAGCGGCACGGTGACGACGTCGGGAGAGATCGTGGTCGCGGGTGTCGCCTACGCCTCGCCGAGCAAGGCTGCCCAGCAGGCCCTGGGGCTGCAGTCCTCGAACGGCTGGACCACCTGGCATGTCGGTGACCTACGAGGGCCGACGCTTGACGCGTTGCGCGACCGGCTCGCAGTGGTCGATGGGGAGGAGTCGGCATGAMAQVIPVNVQVPAASTAPLVADFVSHALRVAYAARRDVDRLSSDEWGVPGIYVLLTDDGSHHLYVGQAVDLRKRLLQHRSRPKLSWVRAVAIKRDTSHGFNSAEIGYLEGRVAAEVAAIPGVTVIEGKRDQDTTLPPHMLLSLDELLSSLLAALRLAGVDTHKEADEPEGKAFSASRRKRPTAKNGTVADLLSAGLLRAGAEVHLSQGGRSASGTVTTSGEIVVAGVAYASPSKAAQQALGLQSSNGWTTWHVGDLRGPTLDALRDRLAVVDGEESANANANANANA
AK018_030981200hypothetical proteinATGAGCCGCATCGACGACCTCATCAAGCAGTACGCGCCCGACGGCGTACCGCGCCGTGCGCTCAGCGACGTGGGCACGTTCATTCGCGGGCGACGTTTCGTCAAGGACGACATGGTCAAGTCAGGCGTCCCAGCGATCCATTATGGCGAGATCTATACGCACTACGGCACATCTGCGACAAGGGCTATCTCGCACGTCCGGGAAGAGATCGTGGGGACGCTGAGATTCGCTGAACCGGGCGATGTCGTCATTGCTGGTGTCGGTGAGACTGTCGAGGATGTCGCTAAGGCAGTCGCGTGGCTCGGCACCACCAGGGTTGCTATCCATGACGATTCGTTCGCGTTCCGGTCATCCGAGGATCCGGCATACATCGCATACATCATGCAAACGGCTGACTTTCATGCACAAAAGGAGAAGTATGTAGCTCGCGGGAAGGTGAAGCGAGTTGGCGGAAAGAATCTTGGAAACATCGTCGTTCCGATGCCGCCTCTTGAGATTCAGCGGGAAATTGTGAGAGTATTAGATGCCTTCACGGAGCTGGAGGATGAGCTGGAGGCGGAGCGTCGCCTCCGGCGCGAGCAGCGGACTGCAGTGATCAACAATGAGTTTATTGCACTGGCCCAGACAGAACGCGTTCCACTGGGAGAACTTGCCACGCAGTTCGTAGAGCCGCTTCGGGTTGAACCAGACCAGGAGTACATCAATCTTGGCGTGAAGTGGTACGGCGAAGGCGCATTCGCGCGAGAGGCGAAGTTTGGTCGTGAGATCAAAGGAAAGACCCTTTACAAGGTCCGGTCGGGGCAGTTCATCTACAACCGCATGTTCGTGACCGAAGGGTCCTTTGGAGTCGTTACGCCAGATATCGCGCACGGCGTTGTGTCGAACGAGTTTCCGGTCTTCGAGCTCGATGCGAGCCGGATCCTGCCTGAGTGGCTCTACCTGAAGTTCCGCGATCCATACATCGTATCTGTGGTGGCCGGTCAGGCTTCGGGCGGGACAAAGAGCCGGCGGCGATGGCGTGAGGACCAATTCAGGGCATTCTCGATAGATCTGCCGTCTCTCGAGGACCAGCGAGAGATGGTCCGGGTTCACAACCAGTTCCTAGGACTGGAGTCGGCGATCACGGCGGAACTCGAGGGGCGCCGTCACCAGTTCGCGTACTACCGGGATCGGTTGTTGTCGTTCGAGGAGGCGGCCTGAMSRIDDLIKQYAPDGVPRRALSDVGTFIRGRRFVKDDMVKSGVPAIHYGEIYTHYGTSATRAISHVREEIVGTLRFAEPGDVVIAGVGETVEDVAKAVAWLGTTRVAIHDDSFAFRSSEDPAYIAYIMQTADFHAQKEKYVARGKVKRVGGKNLGNIVVPMPPLEIQREIVRVLDAFTELEDELEAERRLRREQRTAVINNEFIALAQTERVPLGELATQFVEPLRVEPDQEYINLGVKWYGEGAFAREAKFGREIKGKTLYKVRSGQFIYNRMFVTEGSFGVVTPDIAHGVVSNEFPVFELDASRILPEWLYLKFRDPYIVSVVAGQASGGTKSRRRWREDQFRAFSIDLPSLEDQREMVRVHNQFLGLESAITAELEGRRHQFAYYRDRLLSFEEAAPGPT0027175_2535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027175-hsdS-K01154NANA
AK018_030991092yhcG_2COG4804Putative nuclease YhcGGTGAGCATAGAGGTTTCCGTCCCGGGTCTGCCCGACGACGGCGGTGGCGGCAAGCGTGTCGAGGCGCCCGACGCGGCGGCGGCCTCGGCTTTCGGTGACATCCGCGCGATCCTGGACGCGGCACGTGGTCGCGTCAAGAAGGTCGTCAACGACGAGATGCTCCTCGCCTACTGGGACGTGGGCCGCCGGATCGTCGAGACCCAGGGCGAGCGTGCCACGTACGGCAAGCGATTCCTTCGGTACCTGGCACAGGAGCTGACCGACGAGTTCGGCCCGGGGTTCCGTGAGTCGAACCTGCGCAACATGCGCCAGTTCCACCTGGCGTTCCCGAACCGCTACGCACTGCGTAGCGAATTGAGCTGGACGCACTACCGCGCGCTGATGAGGGTCGCCGACCAGCGCCAGCGCGAGTTCTACGAGCGCGAGGCCGCGCAGTCGGGATGGAGCGCACGCCAGCTCGACCGGCAGATCTCGACCCAGTACTACGAACGCCTGCTCTCGACGCGCAAGGAGCACCGCGGCGAGGTCGAGGCTGCCGCCGTCGAACGGGACCCGGCGACGACGGCGGACGACCTGCTCAAAGACCCGTACGTCTTCGAGTTCCTGGGCATCCCCGAAGATCGCAGCGCGCACGAGCGCGACATCGAACAGGGGCTGATCGACAAGCTCCAGGAGTTCCTCCTCGAGCTCGGGCGGGGGTTCTCCTTCGTGGCACGCCAGAAGCGGGTCACCGCCGAAGGCCGGCACTACTGGGTTGACCTGGTCTTCTACAACTACATTCTCAAGTGCTTCGTCCTCGTGGACCTGAAGATCGGTCGCCTGTCCCACCAGGACGTCGGGCAGATGGATTTCTACCGGCGCATCTTCGACGACATGGTCAAGCCGCCCGAGGACAACCCGTCCATCGGCGTCGTCCTCGCTTCCGACAAGGACGAGGCCGTGGCCAAGTACTCGATCCTCGCCGACAACGCCGGCCTCTACGCCGCCAAGTACACGACCTACCTCCCGACGGAGGACGAGCTGCGCGCCGAACTTGAGCGCGAACGCAACCTCATCGAGCGGGCCATCGACCGCGAGGAAGGCCAGGCATGAMSIEVSVPGLPDDGGGGKRVEAPDAAAASAFGDIRAILDAARGRVKKVVNDEMLLAYWDVGRRIVETQGERATYGKRFLRYLAQELTDEFGPGFRESNLRNMRQFHLAFPNRYALRSELSWTHYRALMRVADQRQREFYEREAAQSGWSARQLDRQISTQYYERLLSTRKEHRGEVEAAAVERDPATTADDLLKDPYVFEFLGIPEDRSAHERDIEQGLIDKLQEFLLELGRGFSFVARQKRVTAEGRHYWVDLVFYNYILKCFVLVDLKIGRLSHQDVGQMDFYRRIFDDMVKPPEDNPSIGVVLASDKDEAVAKYSILADNAGLYAAKYTTYLPTEDELRAELERERNLIERAIDREEGQANANANANANA
AK018_031001575hypothetical proteinATGAATCGTGAGACCCAGAGGGCCGAGCTGCACAAGACCATCTGGAGGATCGCGAACGACCTGCGCGGGTCGGTGGACGGGTGGGACTTCAAGCAGTACGTGCTCGGGTTCTTGTTCTACCGGTACATCTCGGAGAACCTCACCGCCTACCTGAATGCCGGCGAGCACGAGGCAGGCAACGAGGGCTTCGACTACGTCAAGGTTCCCAACGCCGAGGTATCCGATCCGGACCTGGTGCGCGACATCGTGGCGGAGAAGGGGTTCTTCATCCGCCCGAGCGAGCTGTTCGCCAACGTCCGCGCTCGCGCCCCGCGCGATGCGAACCTGAACGAGACCCTGGAGCGGGTCTTCGCCAACATCCAGTCCTCGGCGGTCGGGGCCGACTCGGAGGACGACCTCAAGGGGCTGTTCGACGACGTCGACGTCAACTCGAACAAGTTGGGCCCGACGGTGGCGAGGCGCAACGAGAAGCTGGTCAGGCTGCTGGATGCGATCGGTGAGCTGGACCTCGGCAACGGGACGTTCTCCGAGAACAAGATCGACGCGTTCGGTGACGCGTACGAGTACCTGATGCAGATGTACGCCTCGGCGGCGGGCAAGTCGGGCGGGGAGTACTACACCCCGCAGGAGGTTTCCGAGCTCCTGGCCCGCATCACCGTGGTGGGCAAGACGAGCGTGAACAAGGTGTACGACCCGGCGTGCGGGTCGGGGTCGCTGCTGCTGAAGTACCGCAAGGTGCTCGGCAAGGACGGGGTGCGGCAGGGGTACTTCGGCCAGGAGATCAACCTGACCACGTACAACCTGTGCCGGATCAACATGTTCCTGCACGACGTGAACTACGAGCAGTTCTCCATCGCGCACGGCGATACCCTGATCGACCCGGCGCACTGGGACGACGAGCCGTTCGAGGCGATCGTGTCCAACCCGCCCTACTCCATCAAGTGGGAGGGCGACGCTAACCCTCTGCTCATCAACGACCCCCGGTACGCCCCGGCCGGTGTGCTCGCCCCGAAGTCGAAGGCGGACCTGGCGTTCACGATGCACATGCTGTCGTGGCTGGCCGTCAACGGAACCGCGGCGATCGTCGAGTTCCCCGGGGTGCTCTACCGCGGTGGGGCTGAGCGGAAGATCCGCAAGTACCTCATCGACAACAACTACGTCGACACGGTGATCCAGCTCCCGCCGGACCTGTTCTTCGGCACCACGATCGCCACGTGCATCATCGTGCTCAAGAAGTCCAAGAACGACAACGGCGTGCTGTTCATCGACGCGTCGGCCGAGTTCGTGCGCGGTGGCAACAAGAACAAACTGACCGACGCAAACCAGGCCAAGATCCTGGAGGCGTTCACCGCGCGCGAGGACGTCGATCACTTCGCCACGCTCGTCGACAACGAGGCCATCACCGAGAACGACTACAACATCTCCGTGTCGTCGTGGGTCGAGGCCGAGGACACCCGCGAGGTCGTCGACATCACCGAGCTCAACGCCCGCATCGAGGGGATCGTCAAGCGGCAGGCCGCGCTGCGTGAGCAGATCGACGCCATCGTTGCGGACCTGGAGGGATCGGCGTCGTGAMNRETQRAELHKTIWRIANDLRGSVDGWDFKQYVLGFLFYRYISENLTAYLNAGEHEAGNEGFDYVKVPNAEVSDPDLVRDIVAEKGFFIRPSELFANVRARAPRDANLNETLERVFANIQSSAVGADSEDDLKGLFDDVDVNSNKLGPTVARRNEKLVRLLDAIGELDLGNGTFSENKIDAFGDAYEYLMQMYASAAGKSGGEYYTPQEVSELLARITVVGKTSVNKVYDPACGSGSLLLKYRKVLGKDGVRQGYFGQEINLTTYNLCRINMFLHDVNYEQFSIAHGDTLIDPAHWDDEPFEAIVSNPPYSIKWEGDANPLLINDPRYAPAGVLAPKSKADLAFTMHMLSWLAVNGTAAIVEFPGVLYRGGAERKIRKYLIDNNYVDTVIQLPPDLFFGTTIATCIIVLKKSKNDNGVLFIDASAEFVRGGNKNKLTDANQAKILEAFTAREDVDHFATLVDNEAITENDYNISVSSWVEAEDTREVVDITELNARIEGIVKRQAALREQIDAIVADLEGSASPGPT0027180_3219DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027180-hsdM-K03427NANA
AK018_03101354hypothetical proteinGTGCGAGCGCTCGCGCGCGACCACCGCGACCGACGTCGTGACCGCGCGCTGACCTCCCACCTCCAGGCACTCATCAAGGACGCCGACGACCGCATCCGCCAGCTCGAGGCCGGCACTGCCGCCATCGCGCGTGAGAACGCCGAACTCGCCGAGATCGCAGCAGGACACGAGGCTGCCGCGCGCGACCTCGCCAAGACGCTGTGGCAGCTCGCCTGCACCTACGGCGACAGCATCGTCGACCACGAGCGTGTTCGCACCTACCTCATGCACTACCTCCCCGAGCTCCGCCGGCCCGACTACGTAGAGCCTGAGCCCGCGCCAGATCCCTACGGGCATCCGTGGGGTGAGGGGTGAMRALARDHRDRRRDRALTSHLQALIKDADDRIRQLEAGTAAIARENAELAEIAAGHEAAARDLAKTLWQLACTYGDSIVDHERVRTYLMHYLPELRRPDYVEPEPAPDPYGHPWGEGNANANANANA
AK018_03102231hypothetical proteinATGAGCACGACGACGAGCGTGGGAGACGTCCACAGCACGACCGTCAGGCCGCGCCTGTGGACGCCGGAGGAACTGGCCGAGTACCTCGGCGTCACACTGCACTGTGTGTACGCGTGGTCGAGCAAGGGCGGTGGTCCACGGGTGCTGCGGGTCGGCGCGCGGCTGCGCTATCGACCCGCCGACGTCGACGAGTGGCTCGACCGGGCCACCAGCAACGAGGAGGAGGGCTGAMSTTTSVGDVHSTTVRPRLWTPEELAEYLGVTLHCVYAWSSKGGGPRVLRVGARLRYRPADVDEWLDRATSNEEEGNANANANANA
AK018_031031215COG0582Putative prophage phiRv2 integraseATGCCACGCGTTCCGCTCGAACCCGGCCGGTGGGGCAAGGTCTGGAGGCGCGAGATCAAGCCGGGGCGTTGGGTCGCGCAGGCCCGGTACCGCGACTTCGCGGGCGTCATCCACCTGATGGAGGCTCGCGGCCCATCGGGTGCTGCGGCCGAGCGTCGACTGGAGGACAAGCTCCACAACCTCACGGCCGATGCCGGCGGCGCACTCACGCCCATCGCGCCGACGACCAAAATGACGGTCGTCTTCGATCAGTGGATCGCCGAGAAGCGCGCCGAGGGTCAGGTCACCGAGCAGTCGATGACCACCTACCTGGGCATTCTCGAACGTAACCTGAGGCCCGCGTTCGGCGAGCTCCGTGTCCGCGAGGTGACGCCCGTCGCCGTCAACCGCGTGCTCATGGCACTGAGCACAGCCCGGAAGTTCGACACCGCCCGCCAGGCCCGCAACGTCATGTCCCAGGTCATGATGTTGTGCGTCCGCTACGGAGCCGCGCCGTTCAACCCGGTCCGCGATGCCGTCACCGTCCGCAAGCCCCAGCGCGACGAGGTCCGCACGATCGGGCTCGAGGACATCGCCCTGCTCCGCAAAGCGGTGCGCGAGTGGGAGGACCGCCCCGCCCTGCCCCGTGGACGGCGCAACGTCACGCTGCTCCCGCAGATCGTCGACACGATGCTCGGGACCGGGCTGCGTATCGGCGAGTGCCTCGCGCTGCGCGAGGCGGATCTCGACCTCGACGGCCCCGTCCCCACGCTCACCGTGAACGGCACCGTCGTGCGGTCGGGCGGGAAACTCATCCGGCAGCCCAAGCCGAAGTCCGCCTCGTCGCGCCGCACGATCTCGCTGCCCGACTTCGTCGTGACCGCGATCGACGAGGCACTCAGCCTCGGGCTCGACGGCGGACCCGACGATCTGGTGTTCCCCTCGACCCAGGGCACACCCCGGTCACCAGGACGCGTGCGCGACCAGCTCCGCAAGGCCCGAAAGAACCTCGGCATGGCGGTCACGCCGCACGACTTCCGGCGGACCGTCGCCACCCAGGTCGCCAACACCACGGGCCTCGGCAACGCGACGGCACTCCTCGGTCACGCTGACGAGGCCACCACGTCGAGACACTACGTCCGACGCACCCACGCCGCTCCGGACCTGCGCGAGGTCATCGACCAGCTCGTCGCGCCACCGACGGTCGACGACGACGTCGGCCCCTCGATCGCGTAGMPRVPLEPGRWGKVWRREIKPGRWVAQARYRDFAGVIHLMEARGPSGAAAERRLEDKLHNLTADAGGALTPIAPTTKMTVVFDQWIAEKRAEGQVTEQSMTTYLGILERNLRPAFGELRVREVTPVAVNRVLMALSTARKFDTARQARNVMSQVMMLCVRYGAAPFNPVRDAVTVRKPQRDEVRTIGLEDIALLRKAVREWEDRPALPRGRRNVTLLPQIVDTMLGTGLRIGECLALREADLDLDGPVPTLTVNGTVVRSGGKLIRQPKPKSASSRRTISLPDFVVTAIDEALSLGLDGGPDDLVFPSTQGTPRSPGRVRDQLRKARKNLGMAVTPHDFRRTVATQVANTTGLGNATALLGHADEATTSRHYVRRTHAAPDLREVIDQLVAPPTVDDDVGPSIANANANANANA
AK018_03105858yghA_3putative oxidoreductase YghAATGGCCGAGAACGCCTTTCCGCCGCAGCAGCAGGAGCCACCGGGCTGGACCGCGCAGATGGACCCGGTCCCGGACCACGGCGAGGACTCCTACCGGGGCAGCGGCAAGCTCGCGGGCAAGTCGGCGCTCATCACCGGGGGCGACTCGGGGATCGGACGGGCCGTGGCGATCGCGTTCGCCCGTGAGGGCGCCGACGTCGCGATCGGGTACCTGCCCGAGGAGCAGGAGGACGCCGAGGAGACGGCGCGCTGGGTGCGCGGGACGGGTCGGACGGCGGTGCTGCTGCCCGGTGACCTGACCGACGAGGCCACGGCCCGGGCGCTGCCCGGGAAGGCCGCGTCCGAGCTGGGCGGTCTCGACGTGCTCGTCAACAACGCGGGCTTCCAGATGGCGCGGCGCGAGTCCTTCGAGGACGTCACGACCGACGAGATCGACCGGATCCTCAAGACCAACCTGTACGCGCTGATGTGGGTGACGCAGGCGGCCCTGGAGCACCTGAACGAGGGCGCCAGCATCATCAACAACTCCTCGATCCAGGCGTACCAGCCCTCGACGTCGCTGGTGGACTACGCCTCGACCAAGGCGGCGATCAACAACCTCACCGTGAACCTGGCCGCCGAGCTGGGGCCGCGCGGGGTGCGGGTCAACGCCGTGGCACCGGGTCCGATCTGGACGCCGCTGCAGCCCTCGACGCAGCCGGAGGGCAAGCTGGAGGCGTTCGGGCAAGACACCCCGTTGGGTCGCGCCGGGCAGCCGGCCGAGGTCGCCCCCGCGTTCGTGTTCCTGGCCTCCTCGACCGACGCGAGCTACGTCTCGGCCACGGTGCTGGGCGTCACGGGCGGCAAGCCGGTCTTCTGAMAENAFPPQQQEPPGWTAQMDPVPDHGEDSYRGSGKLAGKSALITGGDSGIGRAVAIAFAREGADVAIGYLPEEQEDAEETARWVRGTGRTAVLLPGDLTDEATARALPGKAASELGGLDVLVNNAGFQMARRESFEDVTTDEIDRILKTNLYALMWVTQAALEHLNEGASIINNSSIQAYQPSTSLVDYASTKAAINNLTVNLAAELGPRGVRVNAVAPGPIWTPLQPSTQPEGKLEAFGQDTPLGRAGQPAEVAPAFVFLASSTDASYVSATVLGVTGGKPVFNANANANANA
AK018_03106618hypothetical proteinATGACACCTGCCCTGCTCTACGCGATCGACGCCCTCGCCGTCACGATCCTCGTCTTCGCCCTGTACTTTCCCCGGCACCGCCGTCGCGACCTCGTCGTCGCCTACCTGGGGGTGAACGTCGGCGTGCTGGCCGTGGCGACGGTCCTCGCGCAGAGCAGCGTCGGAGCCGGCCTCGGGCTGGGCCTCTTCGGCGTGCTGTCGATCATCCGGCTCCGGTCCCGCGAGCTGTCCCAGCACGAGGTCGCCTACTACTTCGCCGCCCTCGCCCTGGGACTGCTCGGCGGACTCGGATCCTCGGTCGGGTGGCTGGCGGTGGCCGGCATGGCCCTGGTCGTCCTCGTCATGGCGATCGCGGACCACCCCCGGCTCTTCGCCCGGCACCGCACTGCCCAGATCGTCGTCGACCGGGCCCTGCCCGACCACGACACCCTCGTGGAGCATCTCGAACAGCTCCTCGGCGCCCGGATCCACGGAGCATCGGTGCTCAAGCTCGACCTGGCCAACGACACGACCGTCGTCGACGTCCGCTACCGGGTCGCCCCGGGCACGACGGCGGTACGCCCGACGGCGGCACCGGCCGCGGCCGGGCGGTCCCGCGCCCTGGAGACGACCCGATGAMTPALLYAIDALAVTILVFALYFPRHRRRDLVVAYLGVNVGVLAVATVLAQSSVGAGLGLGLFGVLSIIRLRSRELSQHEVAYYFAALALGLLGGLGSSVGWLAVAGMALVVLVMAIADHPRLFARHRTAQIVVDRALPDHDTLVEHLEQLLGARIHGASVLKLDLANDTTVVDVRYRVAPGTTAVRPTAAPAAAGRSRALETTRNANANANANA
AK018_03107771hypothetical proteinATGAGCACCGTGGAGCACCTGGTGCCGATCACCCTCGACGAGCTGAACGCCGAGGCCGCGCTGCAGACCCGGGTCGACCGCAAGTACGTCCTCACCGCCGACGAGACCCGCGGCCTCCTGGCTGCGCTCGACCCGGCCACCCGGGTGCTGGAGATCGGCGGCACCCGGACCTTCACCTACTCCTCGACCTACTTCGACACCCCCGACCTCGTGACGTTCCACCAGGCCGCGCGCCGTCGGCGGCGGCGGTTCAAGGTCCGTACCCGCACCTACGTCGACACCGGCGGGACGTTCCTCGAGGTCAAGACCCGCGCCGCGCGCGGCGTCACCGTCAAGGAGCGGTGCCCCGCCGACCCGACGGCGAGCACCCTCGACGACGACGCCGTCGAGTTCGTCGACGACCGGCTGGCGGACGCCCGGCTGGCCGCCCCGCCGTCGTCCGGGCTGGCACCGGTCCTGCGCTCGCGCTATCGGCGCACCACCCTGCTGACGCCGGACGCCCGCGTCACGCTCGACACCTCCCTGACGTGGCGGCACCTCGCGCCCGACGGCGGCGGGCACGACGGCGCCCGGGACCGCGCCGACATCGGCGACCTGGTGGTCGTCGAGACCAAGGCCGGCACCGCGCCGTCGTCCGTCGACCGCCTCCTGTGGCGCTCGGGCCACCGCCCCGACCGCCTCTCCAAGTACGCGACGGGACTCGCCGTCCTGCGCCCCGACCTGCCCGACCATCCCTGGCGACGCGTGCGCCGCGAGCGCCTGGCCGCCTGAMSTVEHLVPITLDELNAEAALQTRVDRKYVLTADETRGLLAALDPATRVLEIGGTRTFTYSSTYFDTPDLVTFHQAARRRRRRFKVRTRTYVDTGGTFLEVKTRAARGVTVKERCPADPTASTLDDDAVEFVDDRLADARLAAPPSSGLAPVLRSRYRRTTLLTPDARVTLDTSLTWRHLAPDGGGHDGARDRADIGDLVVVETKAGTAPSSVDRLLWRSGHRPDRLSKYATGLAVLRPDLPDHPWRRVRRERLAANANANANANA
AK018_031081617hypothetical proteinATGAACCCCACGACCCTGCCCCGCCGAACCCGTTCGACCTGGTCGAAGGCCCTGGGAGGAGCTGCCGCCGCGGCGCTGGCCGTCGGCGCGCTCGGCGCCTGCGGCACCACCTCCGAGGAGGCCGCCGCAACGACGACCTCCGAGAGCTCGACCACCACCGAGGACTCGACCTCCTCCGACGACTCCACAGTCCTCACCGCCTCCTCCGCCGGCCTGACGGCCGCGGAGGTGCTCGCCGAGAACCTCGACGCCTCGGAGACCGTGGCCCTGGCCGACAGCTCGTGGGACTCCGCCGACGAGATCGCGATCGACCTGTCCTCGCCGAGCGCCGCCGACGGGGTCGAGGTGGACGGTGACACGGTCACCATCACCCGGCCGGGGACCTACCGGCTCTCCGGTGAGCTCGCCGGCCAGGTCGTCGTCGAGTCCGAGGACGACGGCGTGGTGCGGCTCGTGCTCGACGGCACGGACGTCACGTCCTCCACGGGCGCGGCGATCGACGTCCAGGACGCCGACCAGGTGTCGGTGGTGCTGGCCGACGGCTCGACGAACCGACTCGAGGACGCGGCGGACTACGAGGAGACGGAGGCCGACAACGCGGCCAACGCCGCCCTGTACTCGACCGCCGACCTGGCGATCTCCGGCGCCGGCTCCCTCGAGGTCGTCGCCAACAGCAACGACGGCATCACGGGCAAGGACGGGCTGGCGATCACCGCGGGCGACATCACGGTCGACGCGGTCGACGACGCGGTCCGCGGCAAGGACTACCTGGTCGTCACCGGGGGCACGATCGACGTCACCGCCGGCGGCGACGGCCTGAAGTCCGACGAGGACTCGGACGCCACCGCCGGGTACGTCGCGCTGCTGGACGGCGAGGTGACCGTCGCGGCCGGCTCGGACGGCGTGCAGGGCTTCACCGACGTCGCGGTCGCCGGCGGGACGCTGAGCGTCACCGAGTCCGAGGAGGGCCTCGAGGCCGCCGTCATCGCGATCTCGGGCGGCACCGTCGGTGTCGCCGCTTCCGACGACGGGCTCAACACGACGGTCAAGGAGGCCGACGACGACACCGAGGACACCGCGTCGACCGAGGAGTCGACCGAGATGGCCCGCCCCGGCGGGGGCGGGGGCGGCGAGGTCGTCCAGGCGGGCGCCTCCCTGACGGTCACCGGCGGGTCCGTGACGGTGGCGGCCGGCGGTGACGGCCTCGACTCGAACGGGGTCATCGACGTCACCGGTGGCGAGATCGTCATCGCGGCCGCCGCGAACGGCGGCGAGGGCCCGGTCGACGCCAACGGCACGGTGACGAGCGCGAACGGCTGGCTCACGCTGGACGGCTCGGCCGACGCCGGGTCGACGATCACCGTGCTCGACGCCGACGGCCAGGAGGTCGCCTCGGTCCTGGCCGGGCAGTCGCTGTCCTCCCTTCACCTCACCGCCGACGGGATCACCATCGGGGAGAGCTACACCGTGCAGGTCGACGGCCAGGACGTCGGCACGGCGACCGCCGTGGAGTCGATCGCCACGCAGATGGGCGGCCCCGGCGGTGCTCGCGGCGGCGGCCCCGGCGCCCCGGGCGAGGGTCAGATGCCCGGGAGCGGTCGGCCCGACGGAGCATGAMNPTTLPRRTRSTWSKALGGAAAAALAVGALGACGTTSEEAAATTTSESSTTTEDSTSSDDSTVLTASSAGLTAAEVLAENLDASETVALADSSWDSADEIAIDLSSPSAADGVEVDGDTVTITRPGTYRLSGELAGQVVVESEDDGVVRLVLDGTDVTSSTGAAIDVQDADQVSVVLADGSTNRLEDAADYEETEADNAANAALYSTADLAISGAGSLEVVANSNDGITGKDGLAITAGDITVDAVDDAVRGKDYLVVTGGTIDVTAGGDGLKSDEDSDATAGYVALLDGEVTVAAGSDGVQGFTDVAVAGGTLSVTESEEGLEAAVIAISGGTVGVAASDDGLNTTVKEADDDTEDTASTEESTEMARPGGGGGGEVVQAGASLTVTGGSVTVAAGGDGLDSNGVIDVTGGEIVIAAAANGGEGPVDANGTVTSANGWLTLDGSADAGSTITVLDADGQEVASVLAGQSLSSLHLTADGITIGESYTVQVDGQDVGTATAVESIATQMGGPGGARGGGPGAPGEGQMPGSGRPDGANANANANANA
AK018_031093735hypothetical proteinATGACACCGACAGGCAAGCGCATCCGCTCGTCGCTGGCCGTGCTGACGGCCGCGGCCCTGACTGCGACGGGGGCGGTGACCGCAGCCGCGGTCGGACCCGCCACCGCTCTGAACGCCGACGACCTGACCCCCGGCGACTTCACGGCCGACTTCGTGGCCACCGAGGACTTCACCGTCCGGGCCACCGAGGCCAAGAAGGTGACCGTCGGCGACACCGACCGCCTCTCCGACCGCGGGGAGGTCTACACCCAGCGGCTCAAGCTGAACGGCTCGGGCAGCGCGGAGTACCGGTCGATCCATTTCACGGCCGAGGGGCCCACCGAGCTCGTCGTCCAGACCCGCAGCAGCTCCGGCAGCAGCGACCGGGTCCTGGCGCTGCACGACGCCACTGGCGAGATCGCCCAGATCCCGGCGCTCGCGGACGACAGCGGCGAGCCGATCGTCACCGAGACCGTCGACATCCCCGCCGCCGGCGACTACTTCCTCACCTCTCCGAGCTCCGGGGTCAACGTCTTCTACGCCCAGCTCGGCGCGAGCGACCCGGTCGAGCGGGCGCCCTGGGCCGACGTCGCGGCGCCGGTGATCGACGGCGTCGCCCTCGACTCCGAGGACCCCGCCGACCTGGAGGTCGACTACACCGGCCTGCTCGGCGACGACGGCGGCGACGTCGCCTACGCGACCCTCTACGACGCCACCGGCGCGAAGGTCGACCAGGCGATCACCGGCGCCGACGGTCCGGGCGGCACCCTGAGCCTGACCCCGCCGGCCTCCGGCGACTACGAGGTCGAGGTGCGGCTCACCCGCGCCGGCGAGGCCGAGCCGAAGACCTCCGTGCGCGCCGGGTTCAGCGACTTCTCCCTGCCGCTGGTCGGACCGGAGATCACCGGTGCGCTGACCTCCGCCGTCGACGGCACCGACGCCACGGTGAGCCTCGAGTGGACCGCCACCGACGAGGCCGAGACCTACTCCGTCGAGACCAGCCAGGGCGGGGCGGACTTCGCCACGGCCGTCGACGGCGTGACGAGCACGGCCGCCGACGTGCCCGGCTTCACCGCCGGTGAGACCTACCAGGTCCGCGTCGTCGCGCACCGCGGTGCGGACGCGGCGACGGGTCCGGCGACGGACGTCGAGGTCGCCACCTCCGTGGAGCGCTGGCAGATCGCCGACGTCGGCTCCAACGCCGGCTCCGGGGGCCAGGTCGTCGACGACGGCGACGGCACCATCACGTTCGACGCCAAGGAGAGCTCGACTAAGTTCGCGAGCTCCGAGGACGGCTTCCAGTACTACTTCACCGAGATCGACCCGGAAGAGGAGAACTTCACGCTGAACGCCACCTTCGAGGTGGTCGACGGCTCCACGAAGGACAACCAGTCCGGGTTCGGCATCATCGCCATCGACGACCTGGTCGCCGAGTCCTCCCCGCACCGCTACTTCAACTCGGCCGGCGCCGTCGTCACCCGCTACAACGGAGGCACGGACGACGTCGTCAACGGCACCCCGGGCGCCCGGTTCATCCAGGGCTACACGGGAGCCACCGACGACAACACCGCCGGCTCGCGTGACGACAGCGACTCCGAGGAGTTCGACCCGTCGTACCGCGACGAGATCACCTCGGGCCCGAAGTTCGCCGAGGGGGACGTCTACGAGTTCACGCTGCGCCGGTCCAACACCGGGTTCCACGCGATCTGGCGCGGCGCCGGGGACGGCGGCGAGGACATCGAGGTCATCCAGTACGACCCCGACATGCTGCTGCAGCAGAACCCCGACACCTTCTACGTCGGCATGGCCACGGCGCGCAAGATCGTCGTCGACGTCACCTCGTGGGACTTCACCACGATCCACCCGGACGACGACGAGCCCGCCCAGGAGCCGCCGACGGAGTACGTGCCGACGAACCTGTCGGTCGACGTCACCCGGACGACACCGGAGCAGCAGCTCGACGTCCCGCTCGTGGCCGACTTCCACGGCACCGGGCAGATCCTCGACGCGGCCGGAGACGTCGTCGTCGACGGGCTGGAGCTCGCTCCGGGCGAGCAGGCCCTCGGCACCGTCGATCTCGAGCCGGGCGTCAACGAGCTCACCGCGCGGGCCACGCCGGAGGGCGACCAGCCGCAGCTCGGCGAGTACGAGGAGCTGGATTCGTTCGACCCGGTCGACGTCCCGCTCTCGATCACCGTGGACTCCTACGGCGCGCCGGGCGAGTCGATCTGGGTCGCGCCCGACGGCACCGCCGACGGCGCGGGCACGCAGGACGACCCGCTGGACCTCCACACCGCGGTCGACTTCGCGCAGGCCGGTCAGCAGATCGTGCTGGCGGGCGGCACGTACACGCCGCAGCACAACATCGTGGCCGAGCGGGGCCGCGACGGCACCCCCGACGCCCCGATCACCCTCATGTCCGAGCCGGGCTCGCGCGCGGTGCTGGACCTCGGCGAGTCGCCCGACGGCGGCCTGGTGATCCGCGGTGACTGGTGGCACGTGTACGACCTGGAGATCACCGGGTCGGCCGACAAGGCCAAGCCGATGCTCGTCCAGGGCCACCACAACGTCGTCGAGCGCGTGGAGTCGCACCACAACAAGGACACGGGTATCCAGATCTCGGGGCTCTCCGCCGAACCGCCGTCGATGTGGCCCTCGCACAACACGATCCTGTCCTCGGTGTCGCACAACAACGCGGACACCGGCGGGAACGACGCCGACGGCTTCGGGGTCAAGCTCACCGTCGGCGAGGGCAACGTGCTGCGGTACAACATCGCCCACCACAACATCGACGACGGCTGGGACCTGTACGCCAAGTCCACCACCGGCCCGATCGGCACCGTCGTCGTCGAGGACTCCGTGGCCTACGCCAACGGGTTCCTCGAGGACGACCCGACGTGGACCGGCGAGGGCAACGGGTTCAAGCTCGGCGGCGAGTCCATGCCGGGCGACCACCTGCTGCGCAACGCGCTCAGCTACGGCAACCTCGCCACCGGCGCGACGTCGAACTCGGGCCCGGACGTCCGGCTCGACGGCGTCACCTCCGTCGACAACGAGCGGGGCGTGCGGCTGGAGACCAACGCCGGCACCACCGCGTACGAGGCGAGCGGCGTCATCTCCTGGCAGAACCCGGACTCCGACGCCCTCGGGCTGAAGCAGGACGACACGTCGCTGCTGACGGACCCGTCCAACTACTTCGACGGCACGACGGCGGACGCGTCCGACGGGCGGCCCGCCTCCGTCGGCGCGGACTGGTTCGTCTCCGTCGACGCCTCGGCCGTGACGCCGGAGATCGCGGCGGACGGCTCGATCGAGATGCACGGCCTGTACGAGCTCACCGACGTGGCGCCGTCGGACACCGGGGCGCGGTTCACGCCGAACCCGGACCCGACGACCATCGAGCTGCTGCCCGAGGTGTCGGGCGGCGAGCCCGGTCCGAGTCTCTGGTACGCCAGCGCCGCCTACATGGCGGGCGATGTCGTGCAGCACGAGGGCACGGTCTACGAGGCCCGGTGGTGGACCCGCAACCAGGAGCCCGGTGCTTCCGAGTGGGGACCCTGGACCGAGGTCGGCCCCGCCGGGGCCGCTCCGGCGGTCGCCGAGTGCGTCGAGCCGTGGGACGCCTCGACGGTGTACGTCGGCGGCGACCTGGTGTCGTCCGACGGCGTCACCTACCGGGCGCTGTGGTGGACCCGCGGGCAGGAACCCGGCGACAGCGTCTGGGGCCCCTGGACCGCGGTGGAGCAGTGTGCCTGAMTPTGKRIRSSLAVLTAAALTATGAVTAAAVGPATALNADDLTPGDFTADFVATEDFTVRATEAKKVTVGDTDRLSDRGEVYTQRLKLNGSGSAEYRSIHFTAEGPTELVVQTRSSSGSSDRVLALHDATGEIAQIPALADDSGEPIVTETVDIPAAGDYFLTSPSSGVNVFYAQLGASDPVERAPWADVAAPVIDGVALDSEDPADLEVDYTGLLGDDGGDVAYATLYDATGAKVDQAITGADGPGGTLSLTPPASGDYEVEVRLTRAGEAEPKTSVRAGFSDFSLPLVGPEITGALTSAVDGTDATVSLEWTATDEAETYSVETSQGGADFATAVDGVTSTAADVPGFTAGETYQVRVVAHRGADAATGPATDVEVATSVERWQIADVGSNAGSGGQVVDDGDGTITFDAKESSTKFASSEDGFQYYFTEIDPEEENFTLNATFEVVDGSTKDNQSGFGIIAIDDLVAESSPHRYFNSAGAVVTRYNGGTDDVVNGTPGARFIQGYTGATDDNTAGSRDDSDSEEFDPSYRDEITSGPKFAEGDVYEFTLRRSNTGFHAIWRGAGDGGEDIEVIQYDPDMLLQQNPDTFYVGMATARKIVVDVTSWDFTTIHPDDDEPAQEPPTEYVPTNLSVDVTRTTPEQQLDVPLVADFHGTGQILDAAGDVVVDGLELAPGEQALGTVDLEPGVNELTARATPEGDQPQLGEYEELDSFDPVDVPLSITVDSYGAPGESIWVAPDGTADGAGTQDDPLDLHTAVDFAQAGQQIVLAGGTYTPQHNIVAERGRDGTPDAPITLMSEPGSRAVLDLGESPDGGLVIRGDWWHVYDLEITGSADKAKPMLVQGHHNVVERVESHHNKDTGIQISGLSAEPPSMWPSHNTILSSVSHNNADTGGNDADGFGVKLTVGEGNVLRYNIAHHNIDDGWDLYAKSTTGPIGTVVVEDSVAYANGFLEDDPTWTGEGNGFKLGGESMPGDHLLRNALSYGNLATGATSNSGPDVRLDGVTSVDNERGVRLETNAGTTAYEASGVISWQNPDSDALGLKQDDTSLLTDPSNYFDGTTADASDGRPASVGADWFVSVDASAVTPEIAADGSIEMHGLYELTDVAPSDTGARFTPNPDPTTIELLPEVSGGEPGPSLWYASAAYMAGDVVQHEGTVYEARWWTRNQEPGASEWGPWTEVGPAGAAPAVAECVEPWDASTVYVGGDLVSSDGVTYRALWWTRGQEPGDSVWGPWTAVEQCAPGPT0018240_22DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_MEMBRANE_POLYSACCHARIDE_DEGRADING_FUNCTIONSPLANT_MEMBRANE_PECTATE_LYASE|ESTERASE,PGPT0018240-pelX-K22994NANA
AK018_03110909cobB_2COG0846NAD-dependent protein deacetylaseGTGGAACCCGCCGTCCGACCACTCGCCCCGACGTACCAGGACCGTCGCTGGGAGCTCCCGCCGGACGCGGTGATCCACCACGGCACCGTCGACGACGCCGCCCGCATCCTGACCGGCTGCACGTTCACCGTGCTCACCGGCGCCGGCATCTCCACCGACTCCGGCATCCCCGACTACCGCAGCCCCGACTCGCCCCCGCGCAACCCGATGACGTTCCAACAGTTCGTCGGCGACCCGGACTTCCGCCGCCACTACTGGGCCCGCAACCACGTCGGCTGGCAGCACGTGCACCGCACCCACCCCAACGCCGGGCACCGCACCCTCGCCGAGCTGGAACGACGCGGCCTCGTGCGCGGCGTCATCACCCAGAACGTCGACCTGCTGCACGAGGACGCCGGCCAGCGCATCGTCATCGACCTGCACGGCCGCTACGACCGCGTCGTCTGCCTGCAGTGCGGGCGCGTCATCTCCCGCACCCACCTCGCCGAACGACTCGACGCGCTCAACCCCGGCTTCATCGAGTCCGTGCTCGACGGCGGCACCACCGTCGCGGACATCGAGGTCGCCCCGGACGCCGACGCCGTCATCGCCAAGACCTCCCACTTCCACCCGGCCGACTGCGAGTTCTGCGGCGGGGTCCTCAAGCCCGAGATCGTCTACTTCGGCGAGAACGTGCCCCGCGAACGGGTCGACCGGGCGTTCGCGCTCGTGGAGTCCGCCGACGCGCTGCTCGTGGCCGGCACCTCGTTGACCGTGATGAGCGGGCTGCGGTTCGTGCGCCGTGCCGCCAAGAACGGCCAGCCCGTCGTCATCGTCAACCGCGGCGAGACCCGCGGCGACCCTCTGGCCACGGTCAAGGTCGACGCCGGGGCGACCGAGACGCTGACGGCGCTCGCCGGACGGCTCTGAMEPAVRPLAPTYQDRRWELPPDAVIHHGTVDDAARILTGCTFTVLTGAGISTDSGIPDYRSPDSPPRNPMTFQQFVGDPDFRRHYWARNHVGWQHVHRTHPNAGHRTLAELERRGLVRGVITQNVDLLHEDAGQRIVIDLHGRYDRVVCLQCGRVISRTHLAERLDALNPGFIESVLDGGTTVADIEVAPDADAVIAKTSHFHPADCEFCGGVLKPEIVYFGENVPRERVDRAFALVESADALLVAGTSLTVMSGLRFVRRAAKNGQPVVIVNRGETRGDPLATVKVDAGATETLTALAGRLNANANANANA
AK018_031112085hypothetical proteinGTGTCCACACCGTCCTCCCCGCGGACCGACATCCAGGGTCTGCGGGCCGTCGCCGTCGCCGCCGTGCTCGGCTTCCACCTGTGGCCCACCGCGGTCACCGGCGGGTACGTCGGCGTGGACGTCTTCTTCGTGGTCTCCGGGTTCCTCATCACCAGCCACCTGCTGCGCCGCCCGATCCGCAGCGGCCGCGACCTGCTCGACTTCTGGGGACGCCGGGTGCGCCGCCTCATCCCGGCGGCCAGCCTCGTGCTGCTGGCCACGCTGCTCGCCGCCGCCGTCTGGCTGCCGGTCACCACGCTGCCGTCCGTCGGCCGCGAGGTGCTCGCCTCGGCGCTGTACGTCGAGAACTGGGTGCTGGCCGCCACCGAGACGGACTACCTCGCGGCCGAGGAGCTCCACTCCCCCGTGCAGCACTACTGGTCGCTGTCCATCGAGGAGCAGTTCTACCTGCTGTGGCCGGTCCTGTTCGCCGCGGTCGCCTCGCTCGGTCTGCGCCGCAGCCGACGCACCGGCCGCGACGGCGGACGCCCGACGGCGGTGCTCGCCGTCGGGCTGACCGCGACGGTGGTCGTGGCGTCCCTCGGCTGGTCCGTGCGGGCCACGAGCACCGAGCCGGCCGCGGCCTACTTCGTCTCCACGACCCGGTTCTGGGAGCTCGGGCTGGGCGGCCTGCTCGCCGCGGTGCTCGCCGTCCGCGCCGGCACGTCGAGCATGCTGCTGCGCCACGACGGGCTCCGGGCGGCGACGGCGTGGCTCGGTCTGACGATGATCGTCGCGGCGGTCCTCACCTTCGACGCCGCCACGGCGTTCCCCGGCTACGCCGCGCTGCTGCCGACCGTCGGCGCCGCGCTCGTCATCGCCGCCGACGCCGACGACACCCGCGCCGGCCCGGGCGCGGCGCTGCGGTGGCGGCCGGTGCAGTGGCTCGGCGACAGCTCCTACTCGGCCTACCTGTGGCACTGGCCGCTGGTGGTCATCGTGCCGTTCGCGATCGGACGCGACCTGACCGCGCTCGACATGGTGGCCGTCCTGGCCGCCACGCTGGTGCTGGCGGGCCTGTCCCGGCGGCACGTCGAGGAGCGCCTGCGCTGGCAGCCGCTGCTCACCCGCCGCCTGGCCGCCACCTTCGTGCTGCTGGCCGGGTGCGTCGTCGTGGTCGGCGGAGGTGCCGTCGTCGTGCAGCAGCAGGCGGTCGCGGCGGAACGCCAGGCCGTGACCGAGGCCCGCGCCGCCGTCGCCGCGGCCGCGCCCTGCGTGGGTGCCGCCGTCGTGCGCGACGACACCTGCGACGACCCGGGCCTGGTGTGGCCGCCCGAGGCGGCGGCCGAGGACAAGCCGGCCGTGTACGTCGACGGATGCTGGAACAACGCCCCCTTCACCACGCGGAACACCTGCACCTACGGCCGCGAGGACGGGGAGCCGACGGCGCGGATCGCCCTGGTCGGCAACTCCCACGCCGGGCACTGGCTGCCGGCGCTCCAGGACGCGATCGACACCGAGGGCTGGCGGCTCGACACCTACCTGCAGTCCGTCTGCTACACCGTGGACCAGCCGATCGAGTTCCCGGGCGACGGGGAGTCCGAGGCCTGCCGGGACATCAACCGGTGGGCCGTGGACAGCATCGTGGCGGGCGACTACGACCTCGTGGTCATGTCCGACCGCACGCACCAGCCGCTGGCCGGCGTGGCGCCGTCGGACCAGGAGGCGGCGGCCCAGGAGGCCTACGCCGAGACGCTGACGCGGTTCACCGACGCCGGGATCGGCGTCGTCGTCCTGCGGGACACGCCCGCGATGCCCGAGAACGTGCCCGAGTGCCTGCAGCTCCACCGGGACGCGGAGGCCTGCGGCGCGCCGCCCGCGACGGCGCTGGAGCCGGACCCGCTCGCCGCGGCCGCGAGGGCCGACACCACCGGCGCGGTGCACGTCACGAGCGTCGAGGACCTGATGTGCGACGACGTCTGCCACCCGGTCGTCGGCGGGGTGACGGCGTACTTCGACCACGGGCACCTCACGGCGACGTTCGCCCGCACCCTGGCCCCGGAGGTGACCGGAGCCGTGCGCGCGGGGCTCGACCGGTCGCCCTAGMSTPSSPRTDIQGLRAVAVAAVLGFHLWPTAVTGGYVGVDVFFVVSGFLITSHLLRRPIRSGRDLLDFWGRRVRRLIPAASLVLLATLLAAAVWLPVTTLPSVGREVLASALYVENWVLAATETDYLAAEELHSPVQHYWSLSIEEQFYLLWPVLFAAVASLGLRRSRRTGRDGGRPTAVLAVGLTATVVVASLGWSVRATSTEPAAAYFVSTTRFWELGLGGLLAAVLAVRAGTSSMLLRHDGLRAATAWLGLTMIVAAVLTFDAATAFPGYAALLPTVGAALVIAADADDTRAGPGAALRWRPVQWLGDSSYSAYLWHWPLVVIVPFAIGRDLTALDMVAVLAATLVLAGLSRRHVEERLRWQPLLTRRLAATFVLLAGCVVVVGGGAVVVQQQAVAAERQAVTEARAAVAAAAPCVGAAVVRDDTCDDPGLVWPPEAAAEDKPAVYVDGCWNNAPFTTRNTCTYGREDGEPTARIALVGNSHAGHWLPALQDAIDTEGWRLDTYLQSVCYTVDQPIEFPGDGESEACRDINRWAVDSIVAGDYDLVVMSDRTHQPLAGVAPSDQEAAAQEAYAETLTRFTDAGIGVVVLRDTPAMPENVPECLQLHRDAEACGAPPATALEPDPLAAAARADTTGAVHVTSVEDLMCDDVCHPVVGGVTAYFDHGHLTATFARTLAPEVTGAVRAGLDRSPNANANANANA
AK018_031121551hypothetical proteinATGGAGGACGTGGTCGTCGTCGGATCAGGACCCAACGGGCTGGCAGCCGCCGTGACGCTGGCCCGGGTCGGGCTGTCCGTGACGGTGCTCGAGGCGCGGTCGACCGCCGGCGGCGGCGCGCGCACGCTCGACCTGGACCTGGCGCCCGGACTGCGGCACGACGTCTGCTCGGCCGTGCACCCGATGGCGTGGGCGTCGCCGTTCTTCCGCGCGTTCGACCTGCCCGCCCACGGGGTCGAGCTGCTGACCCCCGAGGTCTCGTACGCCCAGCCCCTGCCGGACGCGCGGGCGGGGATCGCCTACCGCGACCTGGAGCGCACGGCCGAGCGGCTCGGGGCCGACGGCGGGGCGTGGCGGTCGCTGCTCGGTCCGCTGGCCGCACGGTGGGAGGCCGTGGTCGCCGTGGGGATGAGTGACAAGCGGTCGATGCCGCGGGGCGTGTCCGACGTCGGCGGCCTGCTGGGGGCGGCCCGGTTCGGCGCCGCCATGCTCGAGCAGGGCACCGGGGCGTGGGGGGCGCGGTTCCGCACCGAGGAGGCGGCCGCCCTGCTGACCGGCGTCGCGGCGCACACGATCGCGCCGATGCCGTCCCTGGGCGCCGCGGGGACCGCGCTGCTGCTCGGGGCGCTCGGTCACGCCACCCCTCCCGAGCGTTGTGGGCGTGAAATCTGCAGCTCCACCACGGTCCAGGACCGCAGATTTCACGCCCACAACGAGGGTGGGGGCGGGTTCGACGGCGGCTGGCCGATCCCGCGCGGCGGCTCGGGGGCGATCGCGGCGGCACTGCTGGCCGACCTCGAGGCGCACGGCGGCACGGTGGTCACCGACCATCCCGTGCGCGTCTGCGCCGACCTGCCCTCGGCGCACGTCTACCTGTTCGACACCCCCGCCAGCACCCTGGTCGACGTCATCGGTGACGCCCTGTTCCCCACCTGCCACCGCGCGCTGTCCCGGTTCCCCACCGGCAACGCCGCCGCCAAGGTCGACCTGGTCACGGACGGACCGATCCCCTGGGCGGACCCCGAGGTCGCCCGGGCCGGCACCGTGCACGTGGGCGGCACCCGGGCCGAGATGGCGCGCGCCGAGTCCGCCGTCGCCGCCGGGGAGCACGCGGAGGCGCCCGTCTGCCTGGTCAGCGACCCGGTCGTCGTCGACCCGGACCGCGAGGTCGGGGGCCGGCGACCGGTGTGGGCGTACACGCACGTGCCGTCCGGGTCGACGGTGGACGTCACCGAGACGGTGCTGGCCCAGCTCGAGCGGTTCGCGCCCGGGGTGCGGGACGCCGTCGTCGCGACGCGGTGCACCCCCGCGGCCGAGCTGGCGGGCCACAACCTGAACCTCGTCGACGGCGACATCGCGGGCGGGCGGACGACCCTGTGGCGGATGATCGCCCGACCGACCGCCGCGGCGAACCCGTACCGGCAGGCCGGGCACGTGTACCTGTGCTCCGCGTCGACGCCGCCGGGCCCCGGCGTGCACGGGATGTCCGGCTGGCACGCGGCCCGCCGGGCGGCGTACGAGGTCTTCGGGATCCGCGTCCCCGCGCTCTGAMEDVVVVGSGPNGLAAAVTLARVGLSVTVLEARSTAGGGARTLDLDLAPGLRHDVCSAVHPMAWASPFFRAFDLPAHGVELLTPEVSYAQPLPDARAGIAYRDLERTAERLGADGGAWRSLLGPLAARWEAVVAVGMSDKRSMPRGVSDVGGLLGAARFGAAMLEQGTGAWGARFRTEEAAALLTGVAAHTIAPMPSLGAAGTALLLGALGHATPPERCGREICSSTTVQDRRFHAHNEGGGGFDGGWPIPRGGSGAIAAALLADLEAHGGTVVTDHPVRVCADLPSAHVYLFDTPASTLVDVIGDALFPTCHRALSRFPTGNAAAKVDLVTDGPIPWADPEVARAGTVHVGGTRAEMARAESAVAAGEHAEAPVCLVSDPVVVDPDREVGGRRPVWAYTHVPSGSTVDVTETVLAQLERFAPGVRDAVVATRCTPAAELAGHNLNLVDGDIAGGRTTLWRMIARPTAAANPYRQAGHVYLCSASTPPGPGVHGMSGWHAARRAAYEVFGIRVPALNANANANANA
AK018_03113894hypothetical proteinATGAGCCACGACCTCTCGACCACGCAGCCGCGACGCAGCGGCGCCGCCCGGGTGCTCCTCGCGCTCGGCCTCGCCGTCGGCGTGCTGATGGTCGCCTGGGGCGCCCTGCACCTGGTCGACTGGGCGCTGTCCGAGACGCGCACCAGCCAGGAGTCCTACGACGCCGCCGCGCGAGTGGAGCTGGTCGCCGACGGTGACGTGACCGTACGGGCCGACGACGACGCCACCGGGGTGAGCGTGGAGGTCGTCTCCCGCGAGGGCCTGGCCAGGCCGGAGTACTCGGTCGCGACCGGTGACGGGTCGCTGGTGCTGGAGAACACCTGCCCGGACCGGGTGTGGTGGTCGTGGACCTGCGCCGGTGAGCTGCACGCGGTCGTCCCCGCCGACACGGTGGTGCGGGTCGACACGGCGAACGGCGAGGTGCGGGCCGAGGGGCCGACCGGGGTGGGCGCCCTGGGGCCGCCCAAGGGTGCGGGGGGCGGGGCGGACCGGGGGGGGTGGTGGGCGGTCCGGCCCCCCAACGGCGAGATCGACGCGACGCGGGTCGGCGGGGACGTCGACGCGCAGACCTCGAACGGTCGGATCGATGTCGCCGACGTCGCCGGCGGGGCCGTCGCCCGGTCCTCCAACGGCGACGTCGAGCTGCGGGACGTCCGAGGGGACGCCGAGGCGAGGACCTCGAACGGCGAGGTCGACGTCGCGGGTGCCGCCGGCGACGTCTTCGCCCGGTCGAGCAACGGCGACGTCACCGTGGTCGGCGACGGCGAGCCGGTGGCGCTGACCATCGAGACGTCGAACGGCGAGCAGATCATCGAGGGGCCCACCGACCCGGCGGCCTCCCGGACCGTGGAGATCCAGAGCTCGAACGGGGACGTGGCCTACCGGGTCCCGTGAMSHDLSTTQPRRSGAARVLLALGLAVGVLMVAWGALHLVDWALSETRTSQESYDAAARVELVADGDVTVRADDDATGVSVEVVSREGLARPEYSVATGDGSLVLENTCPDRVWWSWTCAGELHAVVPADTVVRVDTANGEVRAEGPTGVGALGPPKGAGGGADRGGWWAVRPPNGEIDATRVGGDVDAQTSNGRIDVADVAGGAVARSSNGDVELRDVRGDAEARTSNGEVDVAGAAGDVFARSSNGDVTVVGDGEPVALTIETSNGEQIIEGPTDPAASRTVEIQSSNGDVAYRVPNANANANANA
AK018_03114660lnrK_3COG2197Transcriptional regulatory protein LnrKGTGCGCATCGTGATCGCCGAGGACTCCGTCCTGCTGCTGGACGGGCTGACCCGGCTGCTGCAGACCGAGGGGCACGACGTCGTCGGTCACCGCACCGCCGAGGAGATGGTCGCCGCCCTGACCGCGCCGGGCTCCTCGCTGCCGGACCTGGTCGTCACCGACGTGCGGATGCCGCCGTCGCACACCGACGAGGGGCTGCGCGCCGCGGTGCACCTGCGCAGCCTGCACCCCGAGCTGCCGGTGCTGGTGCTCTCGCAGTACGTCGAGCAGCGGTACGCCGCCGAGCTGTTCACCCACGGCACCCGGTCGGTGGGGTACGTCCTCAAGGACCGCGTGGCCGACGTCGACGAGTTCCTCGACGCCGTCGAGCGGGTCGCCGCCGGCGGCACCGTCCTCGACCCCGAGGTCGTCTCGCAGGTGCTCGCCCGGTCCCGCCACGACCTGGACGAGCTGACCGCACGGGAGCGCGAGGTGCTCGGGCTCATGGCCGAGGGGCTGTCCAACACCGCGATCGCGGACCGGCTCGTGGTCGGGTCCGCAGCCGTGGAGAAGCACGTGACCAACATCCTCACCAAGCTGGGGCTGCCCGTGGACGCGGACACCCACCGCCGCGTCCTGGCGGTGCTGCGCTGGCTGGACCGGAACGGAGACGCACGATGAMRIVIAEDSVLLLDGLTRLLQTEGHDVVGHRTAEEMVAALTAPGSSLPDLVVTDVRMPPSHTDEGLRAAVHLRSLHPELPVLVLSQYVEQRYAAELFTHGTRSVGYVLKDRVADVDEFLDAVERVAAGGTVLDPEVVSQVLARSRHDLDELTAREREVLGLMAEGLSNTAIADRLVVGSAAVEKHVTNILTKLGLPVDADTHRRVLAVLRWLDRNGDARNANANANANA
AK018_031151350hypothetical proteinATGACCAGCACACCTGCGGCACCGCGCGACACCGCGCCGGCCGTCACGAGCCTGCCGGGACTGCTGCGTGCACCCTGGGCGGCGGCCACGTGGCGGGGCCTCGCCCAGCTCGCGCTGGGCTACCTCTGGCTCGTCTCCGTCGGGCTGGTGGTCTTCGACCTCGTGCTCGTGGCGGCCTCCCTGGTGCCCGCGCTCGGGCTCGGGCTCCTCCTGCTGCCGCCGACCCTGTGGGTGGCCCGGTGGTTCGCCACCGCCGAGCGCGCTCGCCTCGCCGCGCAGACCGGCATCGCGCTGCGCGACCCGGGACGACGACGCCCGACCCGGCCCGGCTGGTGGGGGTGGACGACGGCCGAGCTCACCGACCGGCGCGGCTGGCTCGCCACCGCGTACACCCTGGCCGGACTGGTCGTGGCGACCGTGTTCCTCACGCTCGCCGTGGCCGCGGCGAGCGGCGCCGTCGCCGCCGCCGTCCTCGGAGTGCGCCGCGCGGCCGACACCGACCTCTCCGCGCTGTGGGCGCTCCCGATCGCCGTCGTGCTCGCCTGGCTCGCCGCCGTCCTGGCCCAGGTCGGCACGCTCGCCACGACCGCGCTGGCCCAGGCGATGCTCGGCGTCTCCCCGGCGGCCGAGGCCCGCGCCGCCCAGCGTGCCGCCGAGGCAGAGGCGCGTGCCGCCGAGACGGACGCCGCCACGGCCCGGCAGCGCGCCGTCGAGCTCACCGCCACCCGGGCCGCCGCCCTGGAGGCCGCGGACGCCGAACGACGCCGCATCGAGCGGGACCTTCACGACGGCGCCCAGCAGCGCCTCGTCGCCCTCGGCGTCGCGCTCGGTGCGGCCCGCCGTGCCGCCGACCGCGACCCCGCCGCCGCGGTCACCGCCGTCGAGCACGCGCACACGGAGGTCAAGGAGACGCTCGCCGAGCTGCGCGACCTCGTGCGCGGCATCCATCCCGCGGTGCTGGCCGACCGCGGCCTCGACGACGCCCTGTCGGCGCTGGCGGCCCGCAGCCCCGTGCCGGTCCGGGTGGAGGCCGGCCCCGACCTCGACAGCGCGGGGGCCGGGGTGCAGGCCGCCGCCTACTTCGTCGTCGCCGAGGCGCTGACCAACGTCGCCCGGCACGCCGGGGCGACCCGCGCCCACGTGCGTGCCGACGTCGTCCCCGCTGCCGAAGGCACGGACCGCCTGCTGATCGAGGTGTCCGACGACGGCCGCGGCGGTGCCGAGGCACGATCCGGTTCCGGGCTCGCCGGCCTGCGGGGCCGTGTCGCAGCCCTCGACGGCACGTTCGACCTGACCAGCCCGCCCGGTGCGGGGACACGCCTGCGAGTGGAGCTGCCGTGCGCATCGTGAMTSTPAAPRDTAPAVTSLPGLLRAPWAAATWRGLAQLALGYLWLVSVGLVVFDLVLVAASLVPALGLGLLLLPPTLWVARWFATAERARLAAQTGIALRDPGRRRPTRPGWWGWTTAELTDRRGWLATAYTLAGLVVATVFLTLAVAAASGAVAAAVLGVRRAADTDLSALWALPIAVVLAWLAAVLAQVGTLATTALAQAMLGVSPAAEARAAQRAAEAEARAAETDAATARQRAVELTATRAAALEAADAERRRIERDLHDGAQQRLVALGVALGAARRAADRDPAAAVTAVEHAHTEVKETLAELRDLVRGIHPAVLADRGLDDALSALAARSPVPVRVEAGPDLDSAGAGVQAAAYFVVAEALTNVARHAGATRAHVRADVVPAAEGTDRLLIEVSDDGRGGAEARSGSGLAGLRGRVAALDGTFDLTSPPGAGTRLRVELPCASNANANANANA
AK018_03116522tadA_2tRNA-specific adenosine deaminaseGTGGACGAGCGTGGCCTGGCCCTGCCGTGGGCGGAGGACGCCTTCCCCCCGCGCACCCTGAGCGAGCGCCGCGCCGTGTGGGGGCACCTCATGGGCATCGCGCTGCACGAGGCGACCCACGCCCTGGCGACCGACGACGTCCCGGTCGGCGCCGCCGTCGTCTCCCCGGACGGGCGGCTGCTCGGGCTGGGGCACAACCGCCGCGAGGAGACCGGGGACCCCACCGCCCACGCCGAGGTGCTGGCGCTGCGGCAGGCCGCCGTGAGCTGGGGGGAGTGGCGGCTGACGGACTGCACGCTCGTGGTCACCCTGGAGCCGTGCGTGATGTGCGCGGGCGCGCTCGTCGCGGCCCGTGTCGGTCGGCTGGTGCTCGGCGCCTGGGACCCGAAGGCGGGGGCGACCGGGTCCGTGTGGGACATGGTGCGCGACCAGCGCGCCCTGCACGAGGTCGAGGTGATCGCGGGCGTACGGGCCGACGAGTGCGCCGCCGTGCTGCAGGAGTTCTTCGCGGCCCGTCGTTGAMDERGLALPWAEDAFPPRTLSERRAVWGHLMGIALHEATHALATDDVPVGAAVVSPDGRLLGLGHNRREETGDPTAHAEVLALRQAAVSWGEWRLTDCTLVVTLEPCVMCAGALVAARVGRLVLGAWDPKAGATGSVWDMVRDQRALHEVEVIAGVRADECAAVLQEFFAARRPGPT0006855_48DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROPROPENE_DEGRADATION,PGPT0006855-dhaA-K01563NANA
AK018_031171704hypothetical proteinGTGCGCGCCGTCCTGCCGAAGGGATCGATCACCATCGTGAAGAAGCTGCTCGCGAGCGTCGCGACCTCGACGCTCGCGCTCGGAGGGCTCCTCGTCGCCACCGCGACGCCCGCCTCCGCCCACACTCCCGACATCGACGCCACCTGCGACTCGCTCGCGGTCGACCTGCGCTCCTACTCCGGCGCACAGGTCACGGTCACCGTCGACGACGAGACCCGCGACGACTCGACCTTCACGTCGAGCTACGCCGCGACGTTCACGCTCGACGACAGCGTCGCGCACACCTGGCACGTCGACGTGGACGCCCACGACGACGACCAGTGGGACCGGGAGTGGTCCGGGCTGACGGAGCCCTGCACCACCGACGTCGAACCCGCCGACGAGCTCGTCACCGGCCTGTACCTGTACGAGAAGGTGCATCCGGACCAGCCGGCCGCGTGGCACAACTCCGGTCCGCAGGAGCTGATCGTCCAGCGGGGCGGGCACAGCTTCTGGGACGCCGACGACTTCCCCGTCGAGGAGCTCCCGCAGGAGGTCTGCGGCACGGGCTGGGGCGTCCAGCAGGACGTCGCCGACGTCACGGACGGGTTCGAGATCCCCTTCCGGATCGTCTGGCCGGAGGGCGGCTTCGACGGCCACCTCGTGGACTGGCGCCACGACGACCTGACCGACGTCGTCGAGGTCCCCGCGTGCGACGCGCCGGAACCGGTGACGCTGCCCGCGCCCACCCCCGTCGAGGAGTGCGACGCCGAGGCCCGCGTGGACCTCCCCTCCTCCGAGCTCGCGGACTACTCCACCACCTGGACCGACGACCGTTCCGAGGCCGTCGTCACGGCGACCCCGGCGGAGGGCGTGGTGCTCGCCGACGGTGCGCAGACCTCGTGGACCTTCGCGTTCACCGGGGCCGAGTGCGACGTCGAACCGGTCCTCGTCGTGCCCGAGCCGCCCACCGTCGTCGACGTCTGCGGCACCGAGAACGACGAGCTCGTCGTCCCGCAGGACAGCGAGCAGGTCACCTACTCCTCCACGAACGAGGGTGTCGTGGCCACGGCCGCCGAGGGCGCCGTCTTCGGCGACCTGCCGGACGGGTACACCGCGGTCGACGACACGACGGCCCGCTACCCCGTGGACGGGACGACCTTCACCGACGCGTCGTGCGAGCTCGTGCCGGGCGACGTCGCCGCCGTCTGCGAGGGGGAGGTCCCGTTCCTCGCCTACGAGATGAACCTGCCCGAGGGCGTCGAGGCCGACGGCGAGACGCCGCTGACCGTGTCGTTCCTCCACCCGGGCGACGGTGACGACGTCGTGCTCACCGACCAGCCGCTCGCCGGACGCGTGGTGTGGCCCGGAGCGTCGACCACCGAGCCGCTGCAGTGGCCGGGCTGGGAGCTCCAGGAGGACGGCACCTACGTCGAGACCGAGGGCAACTACGCCTGGACCCGCGACGGCGTCCGGGTGCTGTTCGAGGTCAACCCGGACCACTCGACCGTCGTCGAGTACCCGGCGGCGTCGGACACCTGCGCGAACCCGCCGTCGGACGACGGCGCCGAGGTCCCCGCGGAGACCGTCGCCGAGGGCGGCGCTCCCGAGGCCGAGCTGCCGCGTACCGGCGCCACGGTGGGCGTGGTCGCCGGCGTCGCCGCGCTGCTCGTGGCGGCGGGCGTGAGCCTGTTCGTCGCGCGCCGCCGCCTGCACCGGGGCTGAMRAVLPKGSITIVKKLLASVATSTLALGGLLVATATPASAHTPDIDATCDSLAVDLRSYSGAQVTVTVDDETRDDSTFTSSYAATFTLDDSVAHTWHVDVDAHDDDQWDREWSGLTEPCTTDVEPADELVTGLYLYEKVHPDQPAAWHNSGPQELIVQRGGHSFWDADDFPVEELPQEVCGTGWGVQQDVADVTDGFEIPFRIVWPEGGFDGHLVDWRHDDLTDVVEVPACDAPEPVTLPAPTPVEECDAEARVDLPSSELADYSTTWTDDRSEAVVTATPAEGVVLADGAQTSWTFAFTGAECDVEPVLVVPEPPTVVDVCGTENDELVVPQDSEQVTYSSTNEGVVATAAEGAVFGDLPDGYTAVDDTTARYPVDGTTFTDASCELVPGDVAAVCEGEVPFLAYEMNLPEGVEADGETPLTVSFLHPGDGDDVVLTDQPLAGRVVWPGASTTEPLQWPGWELQEDGTYVETEGNYAWTRDGVRVLFEVNPDHSTVVEYPAASDTCANPPSDDGAEVPAETVAEGGAPEAELPRTGATVGVVAGVAALLVAAGVSLFVARRRLHRGNANANANANA
AK018_03118636upp_2COG0035Uracil phosphoribosyltransferaseATGCGCCTGCACATCGCCGACCACCCGCTCGTCGCCCACAAGCTGTCCGTGCTGCGCGACGAGTCGACGCCGTCCCCGATCTTCCGGCTGCTGGTCGACGAGCTCGTGACCCTGCTCGCCTACGAGGCGACCCGGCACGTGCGGACCGAGCCGAAGGAGATCACCACCCCGGTCACCACGACCACCGGGGTCCGGATGAGCCACCCGAGCCCGATCGTCATCCCGATCCTGCGCGCCGGACTCGGCATGCTCGACGGCCTGACGCGGCTGCTGCCGACGGCCGAGGTCGGGTTCCTCGGGCTCCAGCGCGACGAGTCGACGTTCGAGGCCGTCACGTACGCCAACCGGCTGCCGGACGACCTCACCGACCGGCAGGTCTTCCTCCTGGACCCGATGCTCGCGACCGGCGGCACGCTGGTGGCGGCGATCGACTACGCCCTGGAGCGCGGCGCACGCGACGTGACCGCGGTGTGCCTGCTGGCCGCGCCCGAGGGGCTGCAGGTCGTCCAGGAGGCGATCGGCGAGCGCGCCGACGTCCAGGTCGTGGTGGCCGCCGTCGACGAGCGGCTCAACGAGCACAAGTTCATCGTGCCGGGACTCGGCGACGCGGGCGACCGCCTCTACGGCGTGGTCTGAMRLHIADHPLVAHKLSVLRDESTPSPIFRLLVDELVTLLAYEATRHVRTEPKEITTPVTTTTGVRMSHPSPIVIPILRAGLGMLDGLTRLLPTAEVGFLGLQRDESTFEAVTYANRLPDDLTDRQVFLLDPMLATGGTLVAAIDYALERGARDVTAVCLLAAPEGLQVVQEAIGERADVQVVVAAVDERLNEHKFIVPGLGDAGDRLYGVVPGPT0021240_1917DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021240-upp-K00761NANA
AK018_031194095hypothetical proteinGTGACCGACGTCTACGTGGGATCAGACGGAACAGCTCCCAGCGACGGGGAGTTGATCCTCGAGGTGCGCGGCGGCAGCCTCGACGCGTACGGCGCCCTCTACGAGCGGCACAGCGGAGCCGCCCGGGTCCTGGCCCGGCAGTACGTCCGGTGCGACGGCGACGCGGACGACGTCGTCTCCGACGCCTTCCAGCGCGTCCTCGGCATGCTCCAGCAGGGCAACGGCCCCGACACGCACTTCCGCGCCTACCTCTTCACCGTGGTGCGACGCCTGGCCGCCGACGTCGCGCACGGGGCACGCCGGACCCGCCCGACCGCCGACGACGGCACGTTCGAGCACGCCCTCGGGCCGTCGGCGTCGCCGGAGGACCCGGCACTGGCCGGGTTCGAGAACTCGGTGGTCGCCCGCGCCTACGAGTCGCTGCCCGAACGGTGGCAGGCCGTGCTCTGGTACACCGAGGTCGAAGGGCTCTCCCCGGCCGAGGTCGCGCCCATCCTCGGGCTGACGCCGAACGGTGTCTCGGCGCTGGCCTACCGGGCTCGCGAGGGTCTGCGGGTCGGCTACCTGCAGCAGCACCTGAGCAGCGAGCCCGCCGACTCGTGCCGCGTCGTCAACCCGCTGCTCGGCGGGTACGTGCGCGGCAGCCTGGCCCGCCGCGAGATCACCAAGGTCGACCGCCACCTCGAGGTGTGCGCCGAGTGCCGCACGCTGGTGCTCGAGCTCGGTGACGTCGCCCACGGCATGCGGGCCGTCGTGGCCCCGCTCGTGGTGGGCCTGGCCGGCACGGCGATCCTCGGGGCGCTCCCGCTGGGTGCGGCGACGTTCGGTGCTGGTGCTGGTGCTGGTGCCGGCGCGGGTGCTGGTGCTGGTGCGGGTGCCGGGGCGGCCGGGGCGGGGGCCTCCGGAGCGGCCGGCACGGGCGCTGCCGCGGGCACTGGGACCGGTGCTGCGGGCGCTGGTGCGGGTGCTGCGGGCGCCGGGACCGGTGCTGCGGGCGCCGGCACGGGGACGGCGGTCGGGACCTCGGCCGCCACCGGCGCTGCGGGCGCGGGGGCCACCGGAGCCGGTGCCGCCGGCGCAGGTGCGGGAGCTGCCGGTGCCGGTGCCGGTGCCGCGGGGGCGGGCGCGGGGGCAGGAGCCGCCGGGGCCGGTGCGGGAGCTGCCGGGGCCGGTGCCGCGGGGGCGAGTGCGGGAGCTGCCGGTGCCGGTGCGGCGACGGCCGCGACGGGGACCGCGGCGACGGCCGCCGGAGCCACGGCTGCCGGAGCCACCGCCGCCGGTGTGTCCGGGGCGACGGTCGCCGCGTCCACCGGGGCCGTCGCCGCCGCCACGGTCGGCGTCGTCTCCGTCCTGGGCGCGATCGGCGACGCGGACGACACCCATGACGTCCCGGACGGCCCGCTCCTGGCCGTCGAGTCGACGCCCTGGCCCACCACCGACGGTGACGAGGCCGCGGCATCGCCGGCGCCGAGCCCGGAGCCCAGCGAGGACCCCACGGACCCGGCGAACGTGCTCGTGGACCCGTCGGCGCAGGACGAGCTCGCTGTGGTGGACCCGGCGGTCGTCAGCGTGCTCGTGCCGCAGGCCGCCGAGGAGCTCCGGCCGCGGGCGACCGAGTACCTCACCTTCCAGGTGACCAACCCGGGCGGCCGTCCTGCCGTCGACGCCCACGTCCGGCTCACCCTGCCGGCCGGCATGCAGCACGCCCCGGCCGCGACCGTCCGCGGTGCCGCGCCGGTGCCGCGCCCCCTGACGCTCGAGACGCTGCCCTGCACCGCGACCGCGCAGCCGCAGGAGGTGCTCTGCCGGCTCGGCACCATCGAGGCCGACGAGCTCGCCACGGTGCGGGTGCCCGTGTTCGTGCGCGACGGCGGCTCCTACGACGTCGTGGCCGAGGTCTGGGCGGAGGGGCTGGAGGCGCGCCGGCTGGCGCTGCCGCCCACCCGCGTCGACACGTTCGGCCCGGAGCTGACGACGCGGGCCGCCGACGTCGAGGTGGCGGCCAACCCCGGGCTGGCGGCTGTGCCGTTCTCGGTCCGCAACACCGGGGACCAGGCGACCGCCGACGACTGGGCCGTCCGCGTCCACGTCCCGGCCGGCCTCGTCCCGCACTCGGTGACCGGGGGGCTGGGGTGCGAGGTGGCCGACGTCGGCGCGTGGCTCTGCACAGGCGGTGCGCTGCAGCCCGGCGAGGTCGTCGAGGCGACCGCGACGGTGGTCGCCGACGGCCGCACCGCGGCGGGCACCTACGCCGTCGCGGTCGAGCCCACGGCGGCCGGGGGGCCGACCATCTCCTCGGCGTCCTCGGTCGAGGTGCCGAGGGGCTGGGCCGGTGTCCTCGCCGGCGTCAGCGGGATCCGGGCCGAGTGCCGCGCCACGGGTGGCGTCGGGGAGGCCGACGCCGTGGTGATCGGCAGCTACACGAACACGACGGGGCGGACCGTCACCGCGGTGCTGCGTGCCGCCGGGTCCACGGCGTCGAAGAGCCCGGAGCTGGCACCGGGGGAGCGGGCCACGCTCACGGTCCCCGACGGACTGCGCGTGCCGGCGGGCAGCGGCACCTGGACGGTCTCGACGACCGTGGCGGGCGTGACCTACAGCCGCACGGTGGGCTCCGGGACGCACGGTGCGGCCGAGTGCTACGACCCGCGCTGGGACGTGGAGACCTCCGCCCGGGTGATCAACGACGGCGGCCGCGTGACGGTCCAGGGCACGATCGTGAACCGGGGCGACGAGCCGATGCAGGCCGGGATGTCGGCGCTCGGATCCGAGGCCGACCGCATCCGGCTCGACGCCGGCGAGCGCAGCACGTTCTCCGTCGCCACCGGCGGCACCAGCACGGACGCGGGAGAGGTGTCCTTCGACCTGTACCGGTGGGTCCTCGACGCCGACGGGGACCAGCCCGCCGCGGGCGTCGTGCCGGCCACCACGCCGACCGCGGCGTTCCCGGCGGCGACGATCTCCCCGGCGGCGGGCAAGGTCGTGCCCGCCGGTGCCTGCCGCTACGACCCGGTCGCCGAGACGTCCACGCGCACCTTCACCGTCCCGCTCGACAACCGGGACTCGACGCTGCCGGTGATGTTCACGATCGATCTCGGCGACCACGTCGAGGAGGTCCGGCTCGCCGGCGGCGAGTCCGCCCGGGTGGACGTGGACGTGCCGTGGGGCACGGGCGAGGCGAAGGTCCTGGCCGACGGTCGGCCGCTGGCCACGGTCGACCTGGAGTTCGCGGGTTGCTCGACCGCCCCGGACTGGCCCGACGCCGAGATCGAGGCGGCGCCGCAGTGCGAGGGCGGCGACGCGCGGCTCGTGGTCGACCTGGTCGCCGACGGCGGGCGCACGTGGCGGGCGACGCTGCTGCGCGACGGCGACGCGGTCACGACCCGGAAGCTGCCGGCCGACGGCGCGGTCCGGTTCGTCGACGCCGCCGGCGGGGCGCGGCTCGGTGCCGGAGCGGTCACCGTGCGCCTGACCCGGACCATCGAGGGCACCGCGTACACCGTGCAGCGGACGGTCGAGCACGAGGGCACCTCGTGCATCGTCGTCGCCCCCGGGGCGTCGCTCGACGAGAGCGCCGTCCAGATGGACCGCTACGGCGACTACGTGAAGTCCTGGCGGGAGGTCGGCGTCGTCCTCGACAACACCGCGTCGACCGTGGACGTCGTCTTCCACGTCCACGGTCCCCGAGGGCTGGACACCGACGTGGAGGTGTCGGCCGGGACGACCCGTACCGTCGAGCCGCGACGGATCGACGGTCGCCAGGGCGGACGGTGGACCGTGTCCGCCGGGAGCTGGTCGACCTCTCTCGAGGCCGACACGTTCACTGCCGCCGAGGCCGGCTGGTGCAGCCCGCGCATCGCCTGGGGCGAGCGCTACGAGGCCGGTGACGTGCGCTCCTGGAACGGCTTCGACTACCGCTACGAGGGCTGGGACGACGAGGGGCTGCCCGCGGCGGACCGGAGCCGTGCCGCGGAGAAGAAGGGGCACGGCCGGGGCGGCGCCGACGAGTCGTGGTACGACGCCGCCGAGTGGGAGGGCGTCTGGATGGGCCAGTGGCGCCAGTGGGAGCGGGTCGGGCTCTGCGAGTACCGCTGAMTDVYVGSDGTAPSDGELILEVRGGSLDAYGALYERHSGAARVLARQYVRCDGDADDVVSDAFQRVLGMLQQGNGPDTHFRAYLFTVVRRLAADVAHGARRTRPTADDGTFEHALGPSASPEDPALAGFENSVVARAYESLPERWQAVLWYTEVEGLSPAEVAPILGLTPNGVSALAYRAREGLRVGYLQQHLSSEPADSCRVVNPLLGGYVRGSLARREITKVDRHLEVCAECRTLVLELGDVAHGMRAVVAPLVVGLAGTAILGALPLGAATFGAGAGAGAGAGAGAGAGAGAAGAGASGAAGTGAAAGTGTGAAGAGAGAAGAGTGAAGAGTGTAVGTSAATGAAGAGATGAGAAGAGAGAAGAGAGAAGAGAGAGAAGAGAGAAGAGAAGASAGAAGAGAATAATGTAATAAGATAAGATAAGVSGATVAASTGAVAAATVGVVSVLGAIGDADDTHDVPDGPLLAVESTPWPTTDGDEAAASPAPSPEPSEDPTDPANVLVDPSAQDELAVVDPAVVSVLVPQAAEELRPRATEYLTFQVTNPGGRPAVDAHVRLTLPAGMQHAPAATVRGAAPVPRPLTLETLPCTATAQPQEVLCRLGTIEADELATVRVPVFVRDGGSYDVVAEVWAEGLEARRLALPPTRVDTFGPELTTRAADVEVAANPGLAAVPFSVRNTGDQATADDWAVRVHVPAGLVPHSVTGGLGCEVADVGAWLCTGGALQPGEVVEATATVVADGRTAAGTYAVAVEPTAAGGPTISSASSVEVPRGWAGVLAGVSGIRAECRATGGVGEADAVVIGSYTNTTGRTVTAVLRAAGSTASKSPELAPGERATLTVPDGLRVPAGSGTWTVSTTVAGVTYSRTVGSGTHGAAECYDPRWDVETSARVINDGGRVTVQGTIVNRGDEPMQAGMSALGSEADRIRLDAGERSTFSVATGGTSTDAGEVSFDLYRWVLDADGDQPAAGVVPATTPTAAFPAATISPAAGKVVPAGACRYDPVAETSTRTFTVPLDNRDSTLPVMFTIDLGDHVEEVRLAGGESARVDVDVPWGTGEAKVLADGRPLATVDLEFAGCSTAPDWPDAEIEAAPQCEGGDARLVVDLVADGGRTWRATLLRDGDAVTTRKLPADGAVRFVDAAGGARLGAGAVTVRLTRTIEGTAYTVQRTVEHEGTSCIVVAPGASLDESAVQMDRYGDYVKSWREVGVVLDNTASTVDVVFHVHGPRGLDTDVEVSAGTTRTVEPRRIDGRQGGRWTVSAGSWSTSLEADTFTAAEAGWCSPRIAWGERYEAGDVRSWNGFDYRYEGWDDEGLPAADRSRAAEKKGHGRGGADESWYDAAEWEGVWMGQWRQWERVGLCEYRPGPT0022155_2244DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_V_SECRETION_SYSTEMSCE-T5c_TRIMERIC_AUTOTRANSPORTER_ADHESINS-SECRETION,PGPT0022155-ata|sadA|emaA-K21449NANA
AK018_03120762hypothetical proteinATGAGCCTGCCCACCGGCGACACCTTTGCCGTCGACACGCGCGAACGCTGGCGCACCATGAGCCTGACCGAGGTCTGGCTGCGCCCGGGCGACTGGTACCACCCCGCGGTGGACGCCGTGGTCGAGGCGATCATCGACGGCAGGTCGCCCGAGGCTCCCGCGCACCGGCTCGGCGGGGCACGCAGCGCCGCCGGCATCGGCCTCGACGAGACCCTCGAGGACGTCGCCTGCCTGTACCGCACGGTGGGCGCCCCCGTGGACGTCGACGTGATCCGCGGCGCGGCGCTGGGCTGGGTGCAGGGCCGCGACGGCCGCCCCACCCTGAGCGGGGTGCGCGACCCGGCGACCGGTCTGCCGACCGCCGACTACCTCGGTGAACGGCTCCGCGAGACCTACGGCCGGGCGACGCGGGACACCGTCGCGGTGTCCGACTCGCACTGCCTCGTCGTCGTCGACGTCGCGGTCGAGGCACTCGACCCGTGGCAGCGCATGGCGCGGGCCGCCTCGGTCGGCCGGACGCTGGACCAGGTCTTCGGCGACGGGCACCCCATGGCCTCGTTGAGCGACGGCGTCTTCGCCGTGCTGTGCGAACGCACGCCCGACATCCCCCGCCTGTCCCAGAGCGTGCGCCGCATCATCGAGCGCAACGCCCAGATCCTCGGGGTCGCCGAGACGATGCGGCGGCCGGTCCGGGTGTGGATGGAGCGGCTGCCGCAGGACCACGCGGCGGCGCTGGACCTGCTCGAGCACCTGCGGCGCTGAMSLPTGDTFAVDTRERWRTMSLTEVWLRPGDWYHPAVDAVVEAIIDGRSPEAPAHRLGGARSAAGIGLDETLEDVACLYRTVGAPVDVDVIRGAALGWVQGRDGRPTLSGVRDPATGLPTADYLGERLRETYGRATRDTVAVSDSHCLVVVDVAVEALDPWQRMARAASVGRTLDQVFGDGHPMASLSDGVFAVLCERTPDIPRLSQSVRRIIERNAQILGVAETMRRPVRVWMERLPQDHAAALDLLEHLRRNANANANANA
AK018_03121309hypothetical proteinATGACCACGCTGATGGAGATGCCCGAGGTCACCGAGTGTTCGGTGGACGGCTGCAGCTACAACCACGACCACGACTGCCACGCGGGTGCCGTCACCATCGCCGGGGTCCCCGGCGACGCCGCCTGCGCGACGTTCATCCCGCTGGGCACCAAGGGTGGCCTCGACAAGGTCGTCGCCCACGTCGGCGCGTGCCAGCGTCTCGACTGCGTGCACAACAAGGACCTCGAGTGCTCGGCCTCGGCGATCCGCGTCGGCGCCGGGCCGCAGGACGACCACCATGCCGACTGCCTGACGTTCAGCCAGGGCTGAMTTLMEMPEVTECSVDGCSYNHDHDCHAGAVTIAGVPGDAACATFIPLGTKGGLDKVVAHVGACQRLDCVHNKDLECSASAIRVGAGPQDDHHADCLTFSQGNANANANANA
AK018_03122468hypothetical proteinATGGTCACCGACGACGCACCCGTGCTCACGGTCTCGCAGGCCGCGCAGCTCTCCGGCATGCACCCCCAGACCCTGCGGCAGTACGACCGGCTCGGACTGGTGGTCCCCCGGCGTGCCCGGGGGAGGGGTCGGCGCTACTCGCGGCGCGACGTCGCGCGGCTGCTCGAGGTGCAGCGCCTCGCCCAGGAGGAGGGCATCAACCTCGCCGGGATCAAGCGGATCCTCGACCTGGAGCACCAGGTCGTCCAGCTCGAGCGGCGGCTCTCCGAGCTCGCGGGGCTGATCGCCGCCCGCGAGGAGGCGGAGGGGCGCGTCTTCGCCGCCGGGTCCGGCGGCGACGTCGTGGCCGTCCCGCTGGGTCGGCGGGTGCGGCGCTCCGAGCTGCGGCTCGACGTCGACACCCGCCGTGAGCGCGGCGGCGCTCTCGTGCTGTGGCGACCCTCCGGCGGGCGCGGTCGGTCCTCGTGAMVTDDAPVLTVSQAAQLSGMHPQTLRQYDRLGLVVPRRARGRGRRYSRRDVARLLEVQRLAQEEGINLAGIKRILDLEHQVVQLERRLSELAGLIAAREEAEGRVFAAGSGGDVVAVPLGRRVRRSELRLDVDTRRERGGALVLWRPSGGRGRSSPGPT0014625_224DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014625-hspR-K13640NANA
AK018_031231005cbpA_2COG2214Curved DNA-binding proteinGTGACCGGCCAGGACTGGATCGAGAAGGACTTCTACGCCGCGCTCGGCGTTCCCAAGGACGCCGACGAGGCAGCCCTGAAGAAGGCGTACCGCAAGCTGGCGCGCCAGTACCACCCGGACCAGAACCCGGGTGACGCCGCCGCCGAGGCGAAGTTCAAGGAGATCGGCGAGGCCTACGCCGTGCTCTCCGACCCCGAGCAGCGTCAGCAGTACGACGCGCTGCGCTCCATGGCCGGCGGCGGCGCCCGGTTCGCCGGCGCCCCCGGAGGCGGCGCCGGTCAGGCCGGGTTCGAGGACGTCTTCAGCTCGATGTTCGGCGGCGGCGCCGGTCGGGCCGGCGGCCCCGGCGGGCCGCGGGTGCAGTACCAGCAGACCGGCGGGTTCGAGGACATCCTCGGCTCGATGTTCGGCGGCGGCATGGGCGGGCGCGCGGCCGGTTTCGGCGGCCCGCAGCGCCAGAAGGGTGCCGACGTCGAGACCCGCGCGACCCTGCCCTTCCGCGCCGCGGTCGAGGGCACGACGGTCGAGCTGACCGTCGACGGCCGGACGATGACCGCACGGATCCCCGCGGGCGTGCACGACGGGCAGAAGATCCGTCTGCGCGGCAAGGGCCGTCCCGGCATGAACGGCGGGCCCGACGGCGACCTGCTGATCGCCGTGCACGTCGAGACCCACCCCGTGTTCACGATGGACGGCGTCAACCTGCGCATGACCCTGCCGGTCACGTTCGCCGAGGCGGCGCTGGGCACGACCGTCGAGGTTCCCACCCTCTCGGGCGAGACGGTGCGGCTCAAGGTCGCGGCCGGGACGCCGTCGGGCCGGGTGCTGCGGGTCAAGGGCCGGGGCGTCGGGACGAAGAAGCGCACCGGTGACCTGCTCGCCACGATCCAGGTCGTGGTGCCGCAGAAGCTCAGCCGCTCGGCGAAGAAGGCGCTGGAGGAGTTCGCCGCGGAGGTCGACACGGGGGACGTCCGCGCCGAGCTCGCCGCCAAGGCCGCGCAGTAGMTGQDWIEKDFYAALGVPKDADEAALKKAYRKLARQYHPDQNPGDAAAEAKFKEIGEAYAVLSDPEQRQQYDALRSMAGGGARFAGAPGGGAGQAGFEDVFSSMFGGGAGRAGGPGGPRVQYQQTGGFEDILGSMFGGGMGGRAAGFGGPQRQKGADVETRATLPFRAAVEGTTVELTVDGRTMTARIPAGVHDGQKIRLRGKGRPGMNGGPDGDLLIAVHVETHPVFTMDGVNLRMTLPVTFAEAALGTTVEVPTLSGETVRLKVAAGTPSGRVLRVKGRGVGTKKRTGDLLATIQVVVPQKLSRSAKKALEEFAAEVDTGDVRAELAAKAAQPGPT0014545_6318DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686NANA
AK018_03124657grpE_2COG0576Protein GrpEGTGACGTCCGACGAGACGCAGGGCACCCCCGAGCCGGAGGAGAACGCCGGCTCGGGGGACACCCCCTTCCACTTCAGCGACAAGCGCAAGGTCGACCCCGCCACGGGCCACAAGCGCGAGACGACCGAGGGCGGGACGCCTGCCGACGACGCCGCGGCGTCGTCGGGTGAGGGCGACCCGCTGGAGGCGCTCGACTTCGAGCCGGCCGGCGAGGCCGCCGAGGACTCCGAGCTGCTGGCGGCCAAGGCCGAGGCGGCCGAGAACCTCGACGCGCTCCAGCGCGAGCGGGCGAGCTTCACGAACTACCGCAACCGGGCGCTGCGCGACCAGGAGGCCGCGCGCACCCAGGGCACGCAGGACGTCCTGGCGGCCCTGCTGCCGGTGCTCGACGACATCGAGCGTGCCAAGGCGCACGCCGAGCTGTCGGGCCCGATGGCGGCGATCGCCGAGAAGCTCGACGCGACGCTCGGCAAGTTCGGCATCGAGCGGTTCGGTGCCGTGGGCGAGGAGTTCGACCCGACCGTGCACGAGGCACTCATGCACAACACGGACGCCGACGCGCAGTCCACCACGGTCAACCTGGTGGTCGAGCCCGGCTACCGCATCGGTGACAAGGTGGTCCGCGCCGCCCGCGTGGGCGTCGTCGGCCCCGAGTGAMTSDETQGTPEPEENAGSGDTPFHFSDKRKVDPATGHKRETTEGGTPADDAAASSGEGDPLEALDFEPAGEAAEDSELLAAKAEAAENLDALQRERASFTNYRNRALRDQEAARTQGTQDVLAALLPVLDDIERAKAHAELSGPMAAIAEKLDATLGKFGIERFGAVGEEFDPTVHEALMHNTDADAQSTTVNLVVEPGYRIGDKVVRAARVGVVGPEPGPT0014650_2201DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0014650-grpE-K03687NANA
AK018_031251890dnaK_2COG0443Chaperone protein DnaKATGTCCCGTGCTGTCGGTATCGACCTCGGCACCACCAACTCGGTGGTCGCCGTCCTGGAGGGTGGCGAGCCCACCGTCATCGCCAACGCCGAGGGCGCCCGCACGACCCCGTCGGTCGTCGCGTTCTCCAAGACCGGTGAGGTCCTCGTCGGCGAGGTCGCCAAGCGCCAGGCCGTCACGAACGTCGACCGGACCATCTCCTCGGTCAAGCGCCACATGGGCACCGACTGGTCCACCGAGATCGACGACAAGAAGTACACCGCGCAGGAGATCAGCGCCCGCATCCTGGGCAAGCTGAAGCGCGACGCCGAGGAGTACCTGGGCGAGCCCGTCACCGACGCGGTCGTCACGGTCCCGGCGTACTTCAACGACGCCGAGCGCCAGGCCACCAAGGACGCCGGCCAGATCGCGGGCCTGAACGTCCAGCGCATCGTCAACGAGCCGACCGCGGCCGCGCTGGCCTACGGCCTGGACAAGTCCAAGCAGGACGAGCTCATCCTCGTCTTCGACCTCGGCGGCGGCACCTTCGACGTCTCCCTGCTCGAGGTCGGCAAGGACGACGACGACTTCTCGACCATCCAGGTCCGCGCCACCTCCGGCGACAACCGCCTCGGTGGTGACGACTGGGACCAGCGCGTCGTCGAGCACCTCATCAAGCAGGTGAAGAACACCGAGGGCGTCGACCTGTCCAAGGACAAGATCGCCCTGCAGCGTCTGCGCGAGGCGGCCGAGCAGGCCAAGAAGGAGCTCTCCTCCGCGACGAGCACCAACATCTCGATGCAGTACCTGTCGATGAGCGAGAACGGCCCCGTCCACCTGGACGAGAAGCTGACCCGCGCGCAGTTCCAGCAGATGACGCAGGACCTGGTCGACCGCACCAAGGAGCCGTTCCACGCCGTCATCCGCGACGCCGGCATCTCCGTCTCGGAGATCGACCACGTCGTGCTCGTCGGCGGCTCGACCCGCATGCCGGCCGTGGCCGACGTCGTGCGCGAGCTCACCGGTGGCAAGGACCCGAACAAGGGCGTCAACCCGGACGAGGTCGTCGCCGTCGGCGCCGCCCTGCAGGCCGGTGTCATCGGCGGTGAGCGCAAGGACGTGCTGCTCATCGACGTCACCCCGCTCTCCCTCGGCATCGAGACCAAGGGCGGCGTGATGACCAAGCTCATCGAGCGCAACACGGCCATCCCGACCAAGCGCAGCGAGATCTTCTCCACGGCCGAGGACAACCAGCCCTCGGTGGCGATCCAGGTGTTCCAGGGCGAGCGCGAGTTCACCCGGGACAACAAGCCGCTGGGCACCTTCGAGCTCACCGGCATCGCCCCGGCCCCGCGCGGCGTCCCGCAGATCGAGGTCACCTTCGACATCGACGCCAACGGCATCGTGCACGTGTCCGCCAAGGACCGCGGCACCGGCACCGAGCAGTCGATGAAGATCACCGGCGGCTCCGCGCTGCCGCAGGAGGACATCGACCGCATGGTCAAGGACGCCGAGGAGCACGCCGAGGAGGACAAGAAGCGTCGCGAGGAGGCCGAGACCCGCAACCAGGCGGAGTCCTTCGCCTACTCGATGGAGAAGCAGATCGCGGACAACCGCGACAAGCTCCCCGCCGACGTCGTCTCCGAGGTCGAGGGTGACATCGCCGCGGTGAAGACCGCCCTGGAGGGCGAGGACGCCGAGGCCATCAAGTCCGCCTACGAGAAGCTCGGCGCCTCCTCGCAGAAGATCGGCGAGGCGCTGTACTCGGCCGAGCAGGCCGCGGGGGCGGACGCGGGCGCCGAGGGTGCCACCGCCGGCGACGCGCCGACGTCGGAGCAGGAGAGCTCCGACGAGGACGTCGTCGACGCCGAGATCGTGGACGACGAGGACGACAAGAAGGACTCCAAGTGAMSRAVGIDLGTTNSVVAVLEGGEPTVIANAEGARTTPSVVAFSKTGEVLVGEVAKRQAVTNVDRTISSVKRHMGTDWSTEIDDKKYTAQEISARILGKLKRDAEEYLGEPVTDAVVTVPAYFNDAERQATKDAGQIAGLNVQRIVNEPTAAALAYGLDKSKQDELILVFDLGGGTFDVSLLEVGKDDDDFSTIQVRATSGDNRLGGDDWDQRVVEHLIKQVKNTEGVDLSKDKIALQRLREAAEQAKKELSSATSTNISMQYLSMSENGPVHLDEKLTRAQFQQMTQDLVDRTKEPFHAVIRDAGISVSEIDHVVLVGGSTRMPAVADVVRELTGGKDPNKGVNPDEVVAVGAALQAGVIGGERKDVLLIDVTPLSLGIETKGGVMTKLIERNTAIPTKRSEIFSTAEDNQPSVAIQVFQGEREFTRDNKPLGTFELTGIAPAPRGVPQIEVTFDIDANGIVHVSAKDRGTGTEQSMKITGGSALPQEDIDRMVKDAEEHAEEDKKRREEAETRNQAESFAYSMEKQIADNRDKLPADVVSEVEGDIAAVKTALEGEDAEAIKSAYEKLGASSQKIGEALYSAEQAAGADAGAEGATAGDAPTSEQESSDEDVVDAEIVDDEDDKKDSKPGPT0014555_4610DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043NANA
AK018_03126930hypothetical proteinGTGCACCAGGGAACTGTCCGATGGTTCGACGCCGACCGAGGGTTCGGTTTCATCGACCGCGGGAACGACGCCGAGGACCTGTTCGTGCACGCGTCCGAGATCGTCGGCGACGACGGTCCGAAGCAGCTGCGCGAGGGGCAGGCCGTCGAGTTCGAGGTGAAGGACAGCGACCGGGGTCCGCAGGCCCGCCGCGTCCGGGTCACGGGCGACCAGCCTGCCGACGCGGCCCTGGGCGTGCTCGGCAGCGTCAACTGGTACGAGCCCACCAAGGGCTACGGGTTCGTCACGCCCGACGACGGTCGCGGCGAGATCTTCGTCCACAGCTCGGCCATCGTCACCGGCGGCGTGATCGCGGAAGGGCAGCGTGTGGCGTTCCTCGTCGTCGACGGCGAGAAGGGGCCGCAGGCGGACCACCTGCTCCCGCTCGCCGCGGAGGCCGCACGGTCGGCCTCGGACGGCGCGGACGGCACGGTGTCCTTCTTCGACGAGTCCAAGGGCTTCGGGTTCATCGTCCCCGACGCGGGCGGCGAGGACCTCTTCGTCCACGCCAGGGCGCTCGGCCCGGGCATGACCTCGCTGGCCGAGGGCTCGCGGGTGACCTACGACGTCGTCGACGGCGACCGGGGGCCGAACGCCCGCGACGTGCGGCTCGTGCGCGGCTCCGGGGGAGCGCGCGCTGGCGCCGACCGTGGTCGCTCGAACCGTCCCGCCCGGTCCGGTGGGCCGGTGCGCGGGGGCGAGGGCACCGTCGCGCGCTACGACGCGGACCGTGGCTTCGGATTCATCACGCCCGACGCCGGCGGTGACGACCTGTTCGTGCACGTGTCGGTCGTGCGGGGCGAGGACTACCTGGAGGAGGGCGACCGGGTCCGGTACACGGTGCGCCAGAGCGACCGGGGGCCGCAGGCCGACAAGGTCGAGCTGCTCTGAMHQGTVRWFDADRGFGFIDRGNDAEDLFVHASEIVGDDGPKQLREGQAVEFEVKDSDRGPQARRVRVTGDQPADAALGVLGSVNWYEPTKGYGFVTPDDGRGEIFVHSSAIVTGGVIAEGQRVAFLVVDGEKGPQADHLLPLAAEAARSASDGADGTVSFFDESKGFGFIVPDAGGEDLFVHARALGPGMTSLAEGSRVTYDVVDGDRGPNARDVRLVRGSGGARAGADRGRSNRPARSGGPVRGGEGTVARYDADRGFGFITPDAGGDDLFVHVSVVRGEDYLEEGDRVRYTVRQSDRGPQADKVELLPGPT0014675_33DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_031271071hypothetical proteinATGACTTCCGCCGCACTGCGCGCCGACAACCCTGTCACCAGCACCTATGCCGCCCTGTCCCGCACGGTGCGGGACGCCGGGCTGCTGCGCAAGACCCCCCGCTACTACCTGTGGACGCTCGGTGTGCTCACCGCGGCGCTCGGCGGGATCGTCACGGGCTTCGTCCTGCTGGGCGACTCCTGGCTCCAGCTCCTCATGGCCGGCGCCCTGGGCCTGGTCCTGACCCAGTTCTCGTTCGTGGCGCACGAGGCGGCGCACAAGCAGGTGTTCGCCTCCGGCCCGGTGAACGACCGCGTCGGACGGTTCCTCGCCAACGGCGTGGCCGGCATCAGCTACTCGTGGTGGATGACCAAGCACACGCGCCACCACGCCAACCCGAACAAGGTCGGCAAGGACCCGGACATCGCGATGGACACCATCGCGTTCACCGAGGACCAGGCCCGGGAGCAGAAGGGCTTCCTGTCGCTGATCCACCGCTACCAGGGCTGGTTGTTCTTCCCGCTGCTGACCCTGGAGGGCCTGAACCTGCACGTCACGTCGATCCGGTCGCTCTTCACCGGCAAGCCGGACACGCTGCGCGCCCGGATCAACGAGCTCGTCGTCATCGGCCTGCGCCTGAGCCTGTACCTCGCGGTGCTGTTCGTCTTCCTGCCGGTCGGGCTGGCCTTCGCCTTCCTCGGCGTCCAGATGGCCGTGTACGGCGTGTACATGGGGGCCTCGTTCGCGCCGAACCACAAGGGCATGAAGCTGATCCCCGCGGACAGCAAGCTGGACTTCCTGTCCAAGCAGGTGCTGACCTCGCGCAACATCCGCGGTGGATGGTGGATGAACATCCTCATGGGGGGCCTGAACTTCCAGATCGAGCACCACCTGTTCCCCTCGATGCCGCGCCCGCACCTGGCCCGCGCCCGGGAGATCGTGCGCGAGAACTGCGCCCACCTGGGGATCCCCTACACCGAGACGAGCCTGATCGCCTCGTACGGCATCGTCGTGCGCTACCTGAACCGGGTGGGCCTGCAGGCCCGCGACCCGTTCGACTGCCCGATGTTCCACCAGCTGCGCAAGCTCTGAMTSAALRADNPVTSTYAALSRTVRDAGLLRKTPRYYLWTLGVLTAALGGIVTGFVLLGDSWLQLLMAGALGLVLTQFSFVAHEAAHKQVFASGPVNDRVGRFLANGVAGISYSWWMTKHTRHHANPNKVGKDPDIAMDTIAFTEDQAREQKGFLSLIHRYQGWLFFPLLTLEGLNLHVTSIRSLFTGKPDTLRARINELVVIGLRLSLYLAVLFVFLPVGLAFAFLGVQMAVYGVYMGASFAPNHKGMKLIPADSKLDFLSKQVLTSRNIRGGWWMNILMGGLNFQIEHHLFPSMPRPHLARAREIVRENCAHLGIPYTETSLIASYGIVVRYLNRVGLQARDPFDCPMFHQLRKLNANANANANA
AK018_031281101hypothetical proteinATGAGCCACCCTGCGGACCACGTCGCGACCGGACGCGGGTCGACCCTGCTGCGCTGGGGACGCAAGGCCTGGGCACTGGTCGGCATCGCCCTCGCCGCGGTCGCGGTCTACCTGCTGACCGGTGCGGTCTCCGGGCTGTTCATCCCGTTGCTCGTCGCCCTCGTGGTCGGCGCGCTGTTCGCCCCGCTGTGCGCGGTCCTCGCCCGCCGGGTGCCCCGCTGGTTGGCGGCGCTCGTCGTCCTGGCCGGACTCCTCGCCGTCGCCGTCGGCACGGTCTGGATGGCGGTCCGCGGCGTCGTCCAGCAGGCCACGGAGATCGGGGCCCAGCTCACCGAGGGGTTCGAGGCGGTCCAGGGGTGGGCCCAGGAGCTCGGCCTGGCGCTGCCGAGCCTCACCGACACCACCGACGGGCTCCCCGAGTGGGGCACCGCGCTGCTGTCGGGCTTCACCGCCCAGCTCGGGACGGTGTTCTCGGGCACGGCCGCGCTGGTCATGGGCACCTTCGTCGGGGTGTTCCTGCTCTACTTCATCCTCGCCGACTGGGACCTGCTGATGCGGTGGACCTCCCGCAACATCGGCGTGGACCCGCAGGTGGGGGCGGGCATCATCGACGACGGCACCTGGGCGATGCGCCGGTACTTCCTCGCGCTGACGGCCTCCAGCATCGTGGTGTCGATCATCGTGGGGCTCGCCGCTTGGCTGCTGGGCCTGCCGCTCGCGTTCACCATCGCCGCGATCACCTTCATCACGTCCTACGTGCCGTTCCTGGGCGCGATCGTCTCGGGGGCGTTCGCGGTCCTCATCGCCCTGGGATCCGGCGGGCTGTTCGACGCCGTGGTCATGCTGGCGGTCATCCTCATCGCCCAGAACGCGGTGCAGACGATCATCCAGACGTTCATGACCCAGGGGGCCCTCAAGCTGCACCCGATCGTCATCCTCGGCTCCACGATCGCCGGCGGCGCCCTGTTCGGCCTGCTCGGCGCGGCCCTGTCGACACCGGTCGTCGCGATCGTCATCAAGATCGTCGAGCGGTTCCGCAGCCTGGGCACGGAAGCGGGCCCGCCGACGTCGGCCCCGGGCACCGGGCCCGCGCCCGGCTGAMSHPADHVATGRGSTLLRWGRKAWALVGIALAAVAVYLLTGAVSGLFIPLLVALVVGALFAPLCAVLARRVPRWLAALVVLAGLLAVAVGTVWMAVRGVVQQATEIGAQLTEGFEAVQGWAQELGLALPSLTDTTDGLPEWGTALLSGFTAQLGTVFSGTAALVMGTFVGVFLLYFILADWDLLMRWTSRNIGVDPQVGAGIIDDGTWAMRRYFLALTASSIVVSIIVGLAAWLLGLPLAFTIAAITFITSYVPFLGAIVSGAFAVLIALGSGGLFDAVVMLAVILIAQNAVQTIIQTFMTQGALKLHPIVILGSTIAGGALFGLLGAALSTPVVAIVIKIVERFRSLGTEAGPPTSAPGTGPAPGNANANANANA
AK018_03129684COG4122Catechol O-methyltransferaseATGATCGAGAGCATGACGAGCGCGGAGCAGGCTTGGTCCGGGGTCGACGCCTACCTGGTCGACGAGGTCGTGGGCGAGGACGACGTCCTCGCCGCGGCGCGTGCGCGCGGGCGGGAGCGGGGTCTGCCGCCGATCGACGTCACGCCGAACCAGGGGGCGTTCCTCGCCCTGGTCGCGCAGCTCGCCGGCGCGCGGCGCGTGCTCGAGCTCGGCACGCTCGCCGGATACTCCACGATCTGGCTCGCCCGGGCCGTGGGGACCGCGGGCCACGTGACGACGGTCGAGCGCGATCCCCGGCACGCCGAGGTGGCGCGGGAGAACCTCGACGAGGCGGGCGTGGGGGAGCGGGTGCGCATCGAGGTCGGTGCGGCGCTGGATGTCCTGGCCGGGCTCGCCGACGCCGGGACCGAGCCCTACGACCTGGTGTTCGTCGACGCCGACAAGGCGAACATGCCCGCCTACCTGGAGCTGGCGCTGCGGCTGACGCGGTCCGGCAGCGTGATCGTCGGAGACAACGTGGTCCGTCGCGGCGCGGTCGTCGACCCGTCGGACCAGAGCCCGGACGTCGCCGGCGTGCGGGCGTTCCTGCACGAGCTGGGGACGGACCCGCGCCTGGAGGCGACCGTGCTGCAGACGGTCGGGTCGAAGGGCTGGGACGGGTTCGCGATCGCCCGCGTGCGCTGAMIESMTSAEQAWSGVDAYLVDEVVGEDDVLAAARARGRERGLPPIDVTPNQGAFLALVAQLAGARRVLELGTLAGYSTIWLARAVGTAGHVTTVERDPRHAEVARENLDEAGVGERVRIEVGAALDVLAGLADAGTEPYDLVFVDADKANMPAYLELALRLTRSGSVIVGDNVVRRGAVVDPSDQSPDVAGVRAFLHELGTDPRLEATVLQTVGSKGWDGFAIARVRPGPT0011950_32DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSTUMORICIDAL_COMPOUNDSTUMORICIDAL-ANSAMITOCIN_P-3_METABOLISM,PGPT0011950-asm17-K16028NANA
AK018_03130576hypothetical proteinATGCTCACCTCGCTCCGTCGCGGCATCGCGCGCCTGTACTGGCTGATCAGCCGCTGGCGGCTGCGGTCCACCCCGGCTCCCGACCGCGCCGGCATCCTCATCGGTGCTCCGCACACGTCGAACTGGGACTTCGTGCTGATGCTCGCCATCGCCTGGCGGCTGGGGATCGACGTGCGCTGGTTGGGCAAGCACACCCTGTTCGCCGGCTGGAAGGGCCCGGTGATGCGGGCGCTGGGGGGCATCCCCGTCGACCGCCGCGACCCGTCGCGCGTCGTGGCCGACATCCTCGCCCGCGTGGCCGCCGGCGAGACCTTCCACCTGGTCATCACCCCCGAGGGCACGCGCTCCGGCGACGGCTGGAAGTCCGGCTTCTACCGGATCTCGCGCGAGGCCGACCTGCCGGTCACCCTCGGCTACGTCGACCGCACCACGATGACGACCGGCCTCGGACCGACCCTCGAGATGACGGGCGACGTCACCGCTGACATGGATCGCATCCGCGCCTTCTACGCCGACAAGGCCGGCGTGAACCCCGAGCTGCGCACGGAGCCCCGGCTGCGGTCCGAAGAAGGCTGAMLTSLRRGIARLYWLISRWRLRSTPAPDRAGILIGAPHTSNWDFVLMLAIAWRLGIDVRWLGKHTLFAGWKGPVMRALGGIPVDRRDPSRVVADILARVAAGETFHLVITPEGTRSGDGWKSGFYRISREADLPVTLGYVDRTTMTTGLGPTLEMTGDVTADMDRIRAFYADKAGVNPELRTEPRLRSEEGNANANANANA
AK018_03131594hypothetical proteinGTGAACGCTTCCTCCGACGACGACGCCGCCTCGGTCCCGCCGGACGACGCCGCAGCCTCTCGGTTGGCCGCCCTGTGGGACGACCACGCCGTGCGCGTGCACGCCTACCTGCTGCGGCACACCGACCCGGACACCGCCCAGGACCTGCTGTCCGAGACCTTCCTGGTGGCATGGCGCCGCCTGGAGGACGTCCCCGACGACGCCCTGCCCTGGCTGCTGGTGGTGGCCCGCAACCTGCGGAACAACAGCCTGCGCGCCCAGGTCCGCCGACGCGAGCTCGACGCCGAGCTGACCCGCCTGGAGGCCGCGGCGCCGGGGGTCGAGAACGCCCCGGAGGCGCTGGCCACCGAACGGGACGACCTGCTGCGCGGGCTCGCCGCCCTGACCGAGCGGGAGCGCGAGGCGATCCTGCTCGTCGCCTGGGACGGCCTCTCGCCGGCGCAGGCGGCCGACGTCGCCGAGTGCAGCACCGCCGCCCTGCACGTCCGCCTGCACCGGGCACGACGACGGCTCGCGGCCGCCGTCGACGACTCCGGCACCGCATCCACCGCGCGCCGCACGAGCGACGCCCCGTCCTCGAGGAGGTCGGCATGAMNASSDDDAASVPPDDAAASRLAALWDDHAVRVHAYLLRHTDPDTAQDLLSETFLVAWRRLEDVPDDALPWLLVVARNLRNNSLRAQVRRRELDAELTRLEAAAPGVENAPEALATERDDLLRGLAALTEREREAILLVAWDGLSPAQAADVAECSTAALHVRLHRARRRLAAAVDDSGTASTARRTSDAPSSRRSAPGPT0014960_8271DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_031321350hypothetical proteinATGAGCACCCACGACATCGACTCCCGCCTCGCCCGGCTCGCCCCGACCGGGTCTCCCGACCCGGAGCGCTTCGACGCGGCCCGCGCCGAGCTCGAGGCCGCGATCGCCGACCCGCACGGTCCCACCGCGGCCCGGTCCGCTCCCACCACGCCCGGTACGAGCGGCGCGTCGCACCGCCTGGACCTCGACGAGGACCAGATCGACGTGGTCACCCCCCTCGACACCGTCCAGCAGGCCCGCCGGCGACGCGGACGACGCTGGACCCTCGCCGCAGCCGTCGCAGGCGTCGTCGCCGTGACCGGCACGGCCGTCGTCCTCTCCCCGGTCGGACCCGACGTGGCCCCGGCGTGGCTGTCGTCCCCCGAGCAGTCGTGCGCGGATCAGGTCCCGGAGATCGCCGACCTGGAGGAGCTGACCGGTGACATCGTGTGGCGGACCATCGCGCGGTCGTCCGCAGGCGCCGACGTCGAGATCGTGACCGATCCCGAGAGCCGGGTTGCCGGCGTCTGCCTCACGTCCCACGACGACGGCACGGTCACCACGGGGTACTGGACGCTGCCGGGCGACACCCCGGACGCCGACGAGGTCCGACCGCAGGGGCAGGTCACCGAACGGGGGATCTTCGTCTGGGGGTTCGCCGGGCAGGACGTGACGTCGGTCGATGTGGAGGCCCGCTGGCGCGACCGCGATCGCGGTGCCGTCATCGAGGCTTTCCTCGACGACGGCGCCTGGTGGGCCCACTACGTCGAGGCGGAGGAGATTCCGGAGGACGCGGAGATCCAGGTGCACGCAACCCTCGACGACGGCACCACGACGACCGTCTCGCTCGACGACGCCTGGCCGGGCGCGGACTCGTGGAACCCGCTCGCCGAGGCACGCCGTGCAGAGTGCCGCTCGGTGCGGGACTGGGAGACCGGAGAGCGGGTCTCCCCCGTCCTGGAGGACCGGCGCGGCGATCTCGGCCTGGCCCTGTACGCCGATGTGGACAGCCGCACGATGAGCGCATGCATCCAGGAGGCGGACCCGCCGTACGAGAAACTCTCGTTCACCAGCGCGTCCGAAGCATCGCTGAATCCCGCCGACAACGAAGCCTGGGCAGTGTCCGCTGGTGGATCCGGCCCGCACCAGATCGCGGTCGGCGTCGCCGGCGACGACGTCGAGAGCGTCGAGGTCACCACCGGTACCGGGGACGTGCTGGAAGCGAACGTCTCGAACGGCTACTGGGCGGTCTGGGCCCCCGACAGCTCGAGCAGCGGGAGTGTCGACCCGGCGGACCTCTGGCAGGACGCCACGATCCAGTGGCAACTCACGGACGGGTCACGCAGCCTGACCGGACCGCTGTTCCCCTAGMSTHDIDSRLARLAPTGSPDPERFDAARAELEAAIADPHGPTAARSAPTTPGTSGASHRLDLDEDQIDVVTPLDTVQQARRRRGRRWTLAAAVAGVVAVTGTAVVLSPVGPDVAPAWLSSPEQSCADQVPEIADLEELTGDIVWRTIARSSAGADVEIVTDPESRVAGVCLTSHDDGTVTTGYWTLPGDTPDADEVRPQGQVTERGIFVWGFAGQDVTSVDVEARWRDRDRGAVIEAFLDDGAWWAHYVEAEEIPEDAEIQVHATLDDGTTTTVSLDDAWPGADSWNPLAEARRAECRSVRDWETGERVSPVLEDRRGDLGLALYADVDSRTMSACIQEADPPYEKLSFTSASEASLNPADNEAWAVSAGGSGPHQIAVGVAGDDVESVEVTTGTGDVLEANVSNGYWAVWAPDSSSSGSVDPADLWQDATIQWQLTDGSRSLTGPLFPNANANANANA
AK018_03133918COG0589Universal stress proteinATGAACAGCACACGAGTGATCGTCGGCGTGGACGGCTCGAGCGCCGGGGAGCAGGCCCTGGACTGGGCGGCTGCCGAGGCCGTGCGCCGACAGGGAACCCTGACGGTGGTGAGCGCCTACACGGTCGCGTCGACGCCGGCCGACGCCGGCTTCGGGCTCGGCGAGCAGGCGGTCCGCGAGCGGGCGGAGGAGGGCGTGGCGAGCGCGGCCGAACGGCTCGTGGCGCTGCGCGAGCTGCGGCCGACGGCGGCCCCCGCCGTCGACGACGTCTCCTGGGAGGTCGTGTCCGGCACGCCGGCCGGCGTGCTCGTGGGACACACCGGAGCCGACAGCCTCGTGGTCGTGGGGCAGCGCGGCCTGGGCGGCATCGACCGGGTCGTCCTGGGCTCGGTCTCCTCGGCCGTGGCGGCGATGGCCCACGGGTCCGTCGTCGTGGTCCCGAGCGACCCCGTCGCGCAGCACTCCGTCGGCGCCAACGACCGGGTGGGACCGATCTGGCGGGTCGTGGCGGCGGTGGACACCGACGAGCAGGCCGACCGGGTCCTGGAGCAGGCGTTCGCCGAGGCCGACTTCGCCGCCTCGCCGCTGCACGTGGTGCACGCCGTCCACCCGGACTTCATCGCCGGCCCGTACGCCATGGCCAACGCGCTGTCGCAGGAGTACCGCGACGAGGCGCGGTCGTCCATGCACGACATCATGGCGCGCTGGACCGAGAAGTTCCCGGACGTCGAGGTCACCACGGAGGTCGTGACCGGCGTGCCGATCGACGTCCTGCAGCAGCGCCTCAACCGGCACGACCTCGCCGTCGTCGGCGGGCGCAAGCACTCGCCGATGGTGGGTCGCGTGCTCGGTTCCATGCCGGACCGGCTGGTGCACCACGCACCCTGCCCGGTCCTCATCGCCCACGAGCCGGCGTAGMNSTRVIVGVDGSSAGEQALDWAAAEAVRRQGTLTVVSAYTVASTPADAGFGLGEQAVRERAEEGVASAAERLVALRELRPTAAPAVDDVSWEVVSGTPAGVLVGHTGADSLVVVGQRGLGGIDRVVLGSVSSAVAAMAHGSVVVVPSDPVAQHSVGANDRVGPIWRVVAAVDTDEQADRVLEQAFAEADFAASPLHVVHAVHPDFIAGPYAMANALSQEYRDEARSSMHDIMARWTEKFPDVEVTTEVVTGVPIDVLQQRLNRHDLAVVGGRKHSPMVGRVLGSMPDRLVHHAPCPVLIAHEPANANANANANA
AK018_031341626devS_2COG2203Oxygen sensor histidine kinase response regulator DevS/DosSGTGCGCGACGACGACGTGGACCTGCTGCTCGCAGCGGTGGTCTCGGTCGGGCGCGGCCTCGACCTCGAGAGCACGCTGGAGCGCCTGGTGCAGGCCGCGACCGACGTCGTCGACGCGCGCTACGGGGCCCTGGGGGTGCTCGGCGACGACCGCCAGATCTCCCGGTTCCTCACGGTCGGGCTGACACCCGAGGAGATCGAGGCCATCGGCCCCTACCCCCGCGGCAAGGGGCTGCTCGGCGAGCTGATCCGCCACCCCGAGCCGCTGCGCCTGGCGGACCTGTCGAGCGACGCGCGCTCGGTCGGTTTCCCTCCCCACCACCCGCCGATGCGTTCCTTCCTCGGGGTGCCGCTGCGGGTCCGCGGCCGCCCGTTCGGCAACCTGTACCTCACCGAGAAGCGGGGCGGCGGGCAGTTCACCGCCCGTGACGAGCACCTGGCCGAGGCGCTGGCCTCGGCCGCGAGCGTCGCCGTCGAGAACGCCCGGCTGTACTCCGCGGCCCGGCTGCGCGAACGCTGGGCGCGCGGGAACCACGCGATCTCGCGACTCATCGCGTCGGGCTCGTCCCCCGAGTCCCTCATGGACGTGGTCGCCCAGGAGGCGATGAACGTCGCCGAGGCCGACACGGCCGTCCTGGCCACCCGGGCCGACGACGCCGACCAGCTGGTGATCCGTTCCGTCTGCGGCGCCGGCGTCGACGGCCTCGTCGGCACGACCCTTCCGACCCGGGGGACCTTCGCCGCCGACGCCTACATCTCCGGTCAGCCGGTGATGACCGCGGACGCCGCCACGGACGACCGGACGACGCTCGCCTTCCGCCCGGTCGACATCGTGGGGCCGTTGGCCGCGGTCCCCCTCGGCGGGCCGGGACAGACGATCGGGGTCCTGTCGGTCGGCCGACGCCGCCACACGCCGCCCTTCTCCAGCGTGGTCATCGACTCGCTGCAGGCCTTCGCGGCCCAGACGGCGGTGGCCCTCGAGCTGGCGCAGCGCCGTCTGGACGGCGAGCGCCTGGCGGTGGTCCGCGAGCGCGACCGCATCGCGCGCGACCTGCACGACCTGGCGATCCAGCGGCTGTACGCCACCGGGCTGAGCCTGCAGGGCGTCGGACGGCGTCTGGACGCCGACGGCACCGCCGCCGACGCCGACCGGGTGGGCCGCGCCGTGGACGACCTGGACGAGACCATCAGCCTCATCCGCACCACGATCCGCGGTCTGCGCGAGGCCGACGAGCCGGATCGCCGCACGGGGGTGCGGGCCCGGCTGATCGCCGAGTCGGACGCCGCACGCCGGTTGTTGGGGTTCCCGCCGGCGCTGCACCTGTCCGGCCCGATCGACGCCGTCGTGCCCGGCGCGACCGCCGACCAGCTCGTGGCGGTGCTGCGCGAGGCGCTGTCCAACGTGGCCCGGCACGCGGCGGCGCGGCACGTGACCATCGACGTCACGGCGACGGACGGCCATCTCGTGCTCTCGGTGCGCGACGACGGCCACGGCATCCCGGACGGGGTGGCGCCGAGCGGGCTGCGCAACCTGGAGCAGCGGGCCGTCGACCTGGGCGGATCGTTCGACGTCGAGACCGCGAGCAGCGGGACGGCGCTGCGCTGGCAGGTCCCGCTCGGCGCGTGAMRDDDVDLLLAAVVSVGRGLDLESTLERLVQAATDVVDARYGALGVLGDDRQISRFLTVGLTPEEIEAIGPYPRGKGLLGELIRHPEPLRLADLSSDARSVGFPPHHPPMRSFLGVPLRVRGRPFGNLYLTEKRGGGQFTARDEHLAEALASAASVAVENARLYSAARLRERWARGNHAISRLIASGSSPESLMDVVAQEAMNVAEADTAVLATRADDADQLVIRSVCGAGVDGLVGTTLPTRGTFAADAYISGQPVMTADAATDDRTTLAFRPVDIVGPLAAVPLGGPGQTIGVLSVGRRRHTPPFSSVVIDSLQAFAAQTAVALELAQRRLDGERLAVVRERDRIARDLHDLAIQRLYATGLSLQGVGRRLDADGTAADADRVGRAVDDLDETISLIRTTIRGLREADEPDRRTGVRARLIAESDAARRLLGFPPALHLSGPIDAVVPGATADQLVAVLREALSNVARHAAARHVTIDVTATDGHLVLSVRDDGHGIPDGVAPSGLRNLEQRAVDLGGSFDVETASSGTALRWQVPLGANANANANANA
AK018_03135645devR_2COG2197DNA-binding transcriptional activator DevR/DosRATGGGCGATACCGTGCGTGTGTTCCTCGTGGACGATCACGAGATCGTCCGTCGCGGCGTCGCCGACCTCATCGAGGCCGAACCGGACCTCGAGGTGGTCGGCGAGGCCGGCACCGCGGCCCAGGCCCTCGCCCGCATCCCCGCTCTCACCCCGGACGTCGTCGTGCTGGACGTGCGCCTGCCCGACGGCGACGGGGTGACCGTGTGCCGGGATCTGCACTCCCGCATGGACGTCGCCTGTCTGATGCTGACGTCGTTCGACGACGACGAGGCCCTGTTCGACGCCATCATGGCCGGGGCCGCCGGGTACGTCCTCAAGCAGGTCCGCGGCACCGACATCGTGGCCGCCATCCGCACCGTCGCCGCCGGCGGGTCCACGCTCGACCCGCGCACCACCGCCGCCGTGATGGAGCGGATGCGCGCCGAGCAGCGCCACGACGACGACCCGCTGGCGGTGCTGACCGAGCAGGAGCAGCGCGTGCTCGCCCTCATCGGCCGGGGGATGACCAACCGGCAGATCGGTGCCGAGCTGTTCCTGGCCGAGAAGACGGTGAAGAACTACGTCTCCAGCGTGCTGGCCAAGCTCGGGCTGGAGCGTCGGGTGCAGGCCGCGGTGCTCGCGACCCGCCTCGAGGACCGCCACTGAMGDTVRVFLVDDHEIVRRGVADLIEAEPDLEVVGEAGTAAQALARIPALTPDVVVLDVRLPDGDGVTVCRDLHSRMDVACLMLTSFDDDEALFDAIMAGAAGYVLKQVRGTDIVAAIRTVAAGGSTLDPRTTAAVMERMRAEQRHDDDPLAVLTEQEQRVLALIGRGMTNRQIGAELFLAEKTVKNYVSSVLAKLGLERRVQAAVLATRLEDRHPGPT0014870_95DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
AK018_03136540hypothetical proteinATGACCACCGCCTCCGCGCACCAGGCCTCGGCCCCCACCGTGCGCGAGACCTCGTTGTCCCCGGTCGCGGCGTTCACGTTCGCGATCGTGCGGCTTCTGCTGGCCGTCGAGTTCCTCTGGGCGTTCTTCGACAAGACGTTCGGCCTGGGCATCGCGACGCCGGCCGAGCGCGCCTGGATCTCGGGCGGCTCGCCCACCACCGGATACCTGGCCAACTCCGAGGGGACGTTCGGCGGCTTCTTCAGCTCGCTCGCCGACAACGTGTTCATCGACTGGCTGTTCATGCTCGGTCTGCTCGGCATCGGCCTCGCGCTGCTGCTCGGCATCGGCATGCGCATCGCCGCGGTCTCCGGCGCCGTCCTCATGCTGCTCATGTGGCTCGCCTCGCTGCCCCTGGCGAACAACCCGTTCGTGGACTACCACCTGGTCGACGCCGTGCTGCTGATCGGCCTCGCCGCCATCCTCGCCGGCGACACGCTGGGACTCGGCAAGCGCTGGGCCTCGACCGACCTGGTGCAGCGCTTCCCCTGGCTGCGCTGAMTTASAHQASAPTVRETSLSPVAAFTFAIVRLLLAVEFLWAFFDKTFGLGIATPAERAWISGGSPTTGYLANSEGTFGGFFSSLADNVFIDWLFMLGLLGIGLALLLGIGMRIAAVSGAVLMLLMWLASLPLANNPFVDYHLVDAVLLIGLAAILAGDTLGLGKRWASTDLVQRFPWLRNANANANANA
AK018_031372124hypothetical proteinGTGACACCGAAGGACCGGACCGCACGGATCGACCGGGGGCGGCCGGTCCGTCGCGCCGCCTCCGCCCTGCTCGCCACGGCGCTGGCCCTCGCCGGGCTGGTCGTGCCCGCCGCCGTGCCGACGGCCCTGCCGACCGCCGCCGCCGACACGGCCGGCCTCACCGAGGAGGGGCACGCCCGCTACACCGTCCGCGCGAAGGGGGCGGTGACGGCCGAGGTCACGTCGACGATCACGAACGTCCTGCCCGACCGGGGCGGCCGCTCCTACTACTGGGACTCCTACGGCATCGTGCTGCCGACCAGCGCACGGGACGTCACGGCGACCAGCGGCGGCTACCCGCTGACCGTCCGGTTCGAGGACGGCACGGACGCGACGACGCACGTCGCCGTCGCCTCCTTCGCGCCGCTGCGCTACGGCCGGACGCGGACCATCGAGTGGCGCTATGACATCGCCGGGGACCCGGTCCGCTCCGAGTCCTGGACCCGGGTCGGCCCCGGCTACGCGACCTTCGCCGCCGTGGCGCCCGGCGACGAGGGACGGGCGACCCTGGAGATCGTCGCGCCGCGGTCGATGCAGCTCGACACCCCGGCCGACGTCCGGCGCGACCGGGACGGCAAGCGGGTGGTGTACACGCTGGCCGCGGACGAGGACGGCGTCGCCTGGGCGCCGGTGTCGTTGCGCGACCCGGACCGGGCCGACACCCGCGACGTGCGCGTCGGCGACCACGTCATGACGGTGCACGGTTTCCGCGGGGACACGGAGTGGTCGCGGTTCGCCGCCGAGCAGGTCGAGGTCGGCATCCCCGTGCTGGAGGACCTCGTGGGCGCCGACTGGCCGGCGAACGTCCACCGGGTGCGCCAGGACTCGTCGCCGAACGTGCTGGGCTACGGCGGCTGGTTCAGCCGGTACGAGCGCGAGATCGTCGTCGACGAGAGCCTCGACGTCGGTCTCCTGCTGCACGAGCTGACCCACGCCTGGTTCAACCACGCCACGCTCGACGACCGTTGGCTCATCGAGGGGGTCACCGAGGTCGTCTCGCAGCGCGCCGTGGAGCGCACCGGCGCGGAGTCCACGGCGCGCGAGGCCCCGCGCCGGAAGTCCGACGCCGCCTTCCCGCTCGCCACCTGGGAGCCCGCCTTCACGCTCGACGACGACGCCGAGGCCTACGGCTACGACGCGGCCTACACCGTCGTGCAGCGGCTGACGGCCGACCTCGACGACGACGCGTTCCGCGCGCTGATGTCCGACGTCCACGACGGTGCCAGCCGGTACGCCGCGCCGGACCGTCCGGGGCAGTTCCGCGGCATCACCGACTGGAGGAGGTTCCTCGACCTCCTCGAGGCGCACGACGTCGGCGAAGGAGCCGAGAAGACGCTGCGGCGCTGGGTGCTGGACCGCCGTGGCAAGGAGGTCCTCGGGGACCGTGCCGAGGCGCGGGAGGCCTACACGGCGCTCGACGCGGCCGACGGCGACTGGCTGCCGCCCCAGGGACTCCGGTCGACGATGACGTGGTGGAGCTTCGGCGCCGCCGAGCAGGCGGTCGAGGCGCTGGGGGACGCGCCGCGCCAGGCCGCCGAGGTCCACCAGGCCGCCGGGGACACCGGGCTGCCGGTGCCGGACGGCGTCCGGGAGGCCTACGAGACCGCCAGGGACGCCGAGGCGTACGAGGCGCTCGCGCCGCGGCTGGCCGAGACCGAGCAGGCCCTCCGGACCGTCGCGCGGGTCTCCCGGGCGGTCGGCGCCGAGCAGGACCCGGTCACCGAGCTCGGCGAGACGGTCCTCGAGGTCGAGTCCCTGGCGGCGGATGCGCGCGAGGCGCTCGCCGACGGCGAGCTCGACCGGGCGCTGGCGCTCGCCGCCGAGACCACCGGTCAGGCCGAGCGGGCGCTGCGGACCGGGCTCGCCGTCGTCGGCGGTGCGCTCCTCGTCCTCGGGCTGCTCGTGCTCGTGCCGTGGCTGGTCGTCCGGGGGGTGCGCCGTCGTCGGCGTCGCCGGGCGGTGCTCACCGCGTCCCGGGTCGTCGCCGTGGTCGCGGCACCGACCGCCGGGCCGGGCCCGGACGCCGCGACGGAGCCCGTCGCCGACCGCGAGCGGGACGCCGACACCGAGGACGCGATGTCCTGAMTPKDRTARIDRGRPVRRAASALLATALALAGLVVPAAVPTALPTAAADTAGLTEEGHARYTVRAKGAVTAEVTSTITNVLPDRGGRSYYWDSYGIVLPTSARDVTATSGGYPLTVRFEDGTDATTHVAVASFAPLRYGRTRTIEWRYDIAGDPVRSESWTRVGPGYATFAAVAPGDEGRATLEIVAPRSMQLDTPADVRRDRDGKRVVYTLAADEDGVAWAPVSLRDPDRADTRDVRVGDHVMTVHGFRGDTEWSRFAAEQVEVGIPVLEDLVGADWPANVHRVRQDSSPNVLGYGGWFSRYEREIVVDESLDVGLLLHELTHAWFNHATLDDRWLIEGVTEVVSQRAVERTGAESTAREAPRRKSDAAFPLATWEPAFTLDDDAEAYGYDAAYTVVQRLTADLDDDAFRALMSDVHDGASRYAAPDRPGQFRGITDWRRFLDLLEAHDVGEGAEKTLRRWVLDRRGKEVLGDRAEAREAYTALDAADGDWLPPQGLRSTMTWWSFGAAEQAVEALGDAPRQAAEVHQAAGDTGLPVPDGVREAYETARDAEAYEALAPRLAETEQALRTVARVSRAVGAEQDPVTELGETVLEVESLAADAREALADGELDRALALAAETTGQAERALRTGLAVVGGALLVLGLLVLVPWLVVRGVRRRRRRRAVLTASRVVAVVAAPTAGPGPDAATEPVADRERDADTEDAMSNANANANANA
AK018_03138261hypothetical proteinATGCAAACCGATGCCGGAGCCACGACGATCGCACTGCTGACGGCCTGCGCGGAGCCCGACCTCGGGATCCGTTCGGCGATCGTCCAGGAGCTGCTCGACGAGGCGAGCCAGGACCCGCGCCTCGCCCGCCAGGTGATGACCACGATGCTCACGGCCTCGGTGATGTCCCTGCAGGCCTACTCCGATGCCGCCCACCGGGACCCCCACGACGTGCTGCAGGCGCTCGGGATCTCCTGGTCGCAGCGGTCCCTCGGCGTCTGAMQTDAGATTIALLTACAEPDLGIRSAIVQELLDEASQDPRLARQVMTTMLTASVMSLQAYSDAAHRDPHDVLQALGISWSQRSLGVNANANANANA
AK018_031391119hypothetical proteinATGGTGAGCGAACGGATCCAGGCCCTGCTGGCCGAGCATCCCGTCTGGGACGGCCACAACGACCTGCCGTGGGAGGCGCGCGAGCAGGCCGGCTACGACTGGGACGTGCTCGACATCGCCGGGCCGACGGCGGACCGCACCCACACCGACATCCCCCGGCTGCGGGCCGGGGGAGTCGGGGCGCAGTTCTGGTCGGTCTACGTGCCGACCACGATCACGGGGGCCGACGCCGTCGTCGCGACGCTCGAGCAGATCGACGGCGTGCACCGCATGGTCGAGCGGTACCCGGACCAGCTCCGGCTCGCCACCACGGCCGCCGAGGTCGAGGACGCCTGGGCCGCCGGGCGCATCGCCTCCCTGATGGGGGCCGAGGGCGGGCACTCGATCGACGGGTCCCTCGGTGTGCTGCGCATGTTCCACGCCCTCGGCGTGCGGTACATGACGCTGACGCACAACGACAGCACCCCGTGGGCCGACTCGGCCACGGACGCCCCGAGCGAGCACGGGGGTCTGAACGCGTTCGGCCGCGAGGTCGTGCTCGAGATGAACCGCCTGGGGATGCTCGTCGACCTGTCCCACGTCGCCACGGGCACGATGCACGCCGCGCTCGACGTCACGGACGCACCGGTCGTGTTCTCGCACTCCAGCGCCCGCGCCGTCTGCGACGTGCCGCGCAACGTGCCCGACGACGTCCTGGGACGCCTGGCCACGAACGGCGGCGTCTGCATGGTCACGTTCGTGCCGCAGTTCGTCACGCCCGCCGTGGCCGTGTGGAAGGAAGAAGCCGCCGAGGCCGCCGCCGCGCAGGGGATCCGCGCCACCGACTACCTGGCGTTCAGCGGGTTCCTCGCCGACTGGCGCGAGACGCACCCGGCCCCGCCCACGCGGCTGTCCGACGTCGTCGCGCACGTCGAGCACGTGCGCGAGGTCGCCGGGATCGAGCACGTCGGCCTCGGGGGCGACTACGACGGCGCCACGGGGTTCGCCCCCGAGCTCGCGGACGTCTCGGGGTACCCGGCGCTGCTGGCGGCGCTCGCGGACCGCGGCTGGTCCGACGCCGACCTCGGCCTGCTCACCAGCGGCAACGTGCTGCGGGTGCTACGCGACGCCGAGCGCTGAMVSERIQALLAEHPVWDGHNDLPWEAREQAGYDWDVLDIAGPTADRTHTDIPRLRAGGVGAQFWSVYVPTTITGADAVVATLEQIDGVHRMVERYPDQLRLATTAAEVEDAWAAGRIASLMGAEGGHSIDGSLGVLRMFHALGVRYMTLTHNDSTPWADSATDAPSEHGGLNAFGREVVLEMNRLGMLVDLSHVATGTMHAALDVTDAPVVFSHSSARAVCDVPRNVPDDVLGRLATNGGVCMVTFVPQFVTPAVAVWKEEAAEAAAAQGIRATDYLAFSGFLADWRETHPAPPTRLSDVVAHVEHVREVAGIEHVGLGGDYDGATGFAPELADVSGYPALLAALADRGWSDADLGLLTSGNVLRVLRDAERPGPT0020950_1416DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020950-acdP-K01273NANA
AK018_031401584dauA_2COG0659C4-dicarboxylic acid transporter DauAGTGTCGAACGACCTGCGTGCCTCCCTGCCCGATCCGGCCCCCGAGCCCCAGCCCGTCACCGGCGCCCCCGAGGCCACCTCCACGGGGTCCTTCCGGGCCGCCTTCAGCTCGATGACGCGGCTGCGCACCGAGGTCCTCGCCGGCCTCGTCGTCGCGCTCGCCCTCATCCCCGAGGCCATCGCCTTCTCGATCATCGCGGGCGTCGACCCGAAGATCGGCCTGTTCGCCTCGTTCACGATGGCCGTCACCATCGCCTTCGTCGGCGGCCGCCCGGCGATGATCTCCGCCGCCACCGGCGCGATCGCCCTGGTCATCGCCCCCGTCGTGCGCGACCACGGGCTCGACTACCTCATCGCCACCGTGATCCTCGGCGGGCTGATCCAGGTCGTGCTCGGCCTGGTCGGCGTCGCGCGGCTCATGCGGTTCATCCCGCGCTCGGTGATGGTCGGGTTCGTCAACGCGCTGGCGATCCTCATCTTCACCTCGCAGATCCCGCACCTGTTCGGCGACGCGGTGCCCTCCGAGCAGCGGTGGACGGTCTTCGTGCTGGTGGCCGCCGGCCTGGCGATCATGGTGTTCTTCCCGCGCCTGACCAAGGTCGTGCCCGCCCCGCTCGTGGCCATCGTGCTGCTGACGATCGTCACCGTCGTGGCCGCGATCGCCGTGCCCACCGTCGGCGACCAGGGCGACCTGCCCGACTCGCTGCCGGCCCTGTTCTTCCCGGACGTGCCCCTGACCCTCGAGACGCTGCAGATCATCGCGCCCTACGCGTTCGCCATGGCGCTGGTCGGCATCATCGAGTCGCTGCTGACGGCCAAGCTCGTCGACGACGTCACCGACACCCACTCGAACAAGACCCGCGAGACCTGGGGCCAGGGCGTGGCCAACCTGGTCACCGGGTTCTTCGGCGGCATGGGCGGCTGCGCCATGATCGGCCAGACCATGATCAACGTGAAGGTCTCCGGCGCCCGCACGCGGTTGTCGACGTTCCTGGCGGGCGTCTTCCTGCTGATCCTCGTGGTCACCCTCGGCGACGTCGTCTCCATCATCCCGATGGCGGCCCTGGTCGCCGTGATGATCATGGTCTCCGTGGCCACGTTCGACTGGCACTCGATCCAGCCCTCCACGCTGCGCAACATGCCCGTCCCGGAGACGGCCGTCATGCTCGCCACGGTGGTCGTGACCGTGTGGACGCACAACCTGGCCTACGGCGTCGTCGCCGGTGTCGTGGTCGCCGCGGTGCTGTTCGCCCAGCGCGTCGCCCACCTGACGACGGTCACCCGCCTCGACGCGAACCCTGGCAACGAGGCCGAGGACGCTGTCCGCACCTACGCGGTCGACGGCGAGCTGTTCTTCGCCTCGTCGAACGACCTCGTCTACCAGTTCGACTACGCGGGCGACCCGCGCCGGGTCGTCATCGACATGTCGAACGCCCACATCTGGGACGCCTCGACGGTCGCCGCGCTGGACGCCGTCGAGCACAAGTACGCCGCGCACGGCAAGACGGTCGAGTTCCGGGGGCTCAACGAGGACAGCCGCGAGCGCCTGGACCGGCTCGCCGGGAAGCTCGGCGCCGAGCACTGAMSNDLRASLPDPAPEPQPVTGAPEATSTGSFRAAFSSMTRLRTEVLAGLVVALALIPEAIAFSIIAGVDPKIGLFASFTMAVTIAFVGGRPAMISAATGAIALVIAPVVRDHGLDYLIATVILGGLIQVVLGLVGVARLMRFIPRSVMVGFVNALAILIFTSQIPHLFGDAVPSEQRWTVFVLVAAGLAIMVFFPRLTKVVPAPLVAIVLLTIVTVVAAIAVPTVGDQGDLPDSLPALFFPDVPLTLETLQIIAPYAFAMALVGIIESLLTAKLVDDVTDTHSNKTRETWGQGVANLVTGFFGGMGGCAMIGQTMINVKVSGARTRLSTFLAGVFLLILVVTLGDVVSIIPMAALVAVMIMVSVATFDWHSIQPSTLRNMPVPETAVMLATVVVTVWTHNLAYGVVAGVVVAAVLFAQRVAHLTTVTRLDANPGNEAEDAVRTYAVDGELFFASSNDLVYQFDYAGDPRRVVIDMSNAHIWDASTVAALDAVEHKYAAHGKTVEFRGLNEDSRERLDRLAGKLGAEHPGPT0003020_4104DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321NANA
AK018_03141387hypothetical proteinATGCACCACATCGGAGCCGTCGCCGAGCGGACCGGGTTGTCGCTGCGCACGCTGCGCCACTACGACGAGGTCGGCCTGCTGCGCCCGTCGGCGCGGTCCGAGGGCGGGTTCCGCCTGTACACCGAGTCCGACGTGGAGCGGCTGCTGCTCATCCGTCGGATGAAGCCGCTCGGCTTCTCCCTGGACGAGATGGCCGACCTGCTGCGGGTCGCCGACGAGCTCGGCGACGAGGGCGCGGGGCAGGACGGCGTCGGCGCGGACGAGGGGCACCCCGCGGCCCGGGGCCGGCTCGCCGCGTACGTGGCGGCCGCCGAGGAGCGCCGGGCCGACCTGGCCCGCAAGCTGGAGATGGCCGACGAGCTGATCGCCCTGCTGCACCGCCTCTGAMHHIGAVAERTGLSLRTLRHYDEVGLLRPSARSEGGFRLYTESDVERLLLIRRMKPLGFSLDEMADLLRVADELGDEGAGQDGVGADEGHPAARGRLAAYVAAAEERRADLARKLEMADELIALLHRLPGPT0004135_2076DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexPQ-OpmE,PGPT0004135-cueR-K19591NANA
AK018_03142360hslR_2COG1188Heat shock protein 15ATGCGGATCGACATCTGGTTGTGGGCCGTCCGGCTGTTCAAGAGCCGGTCGGTCGCGGCCTCGACGTTGCGCTCGGGCAAGGTGCGCGTCAACGGCACCGTCGCCAAGCCGGCGACGCAGGTCCAGGTCGGCGACCGCGTGACCTGGCAGGACCCGTTGCGGCAACGCGTCGTGGTGGTGCGCGAGCTGCTGCCCAAGCGCGTCGGGGCGCCGCTGGCGGTCAGGGCCTACACCGACCAGAGCCCGCCGGTGCCGACGCGCGAGGAGCGCGCCGCCGTCGGTCTGCGCGAGCGGGGTGCCGGGCGGCCCACCAAGAAGGAGCGCCGCGAGATCGACAAGCTCCGGGGCCGACGGCGGTAGMRIDIWLWAVRLFKSRSVAASTLRSGKVRVNGTVAKPATQVQVGDRVTWQDPLRQRVVVVRELLPKRVGAPLAVRAYTDQSPPVPTREERAAVGLRERGAGRPTKKERREIDKLRGRRRPGPT0014620_2219DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014620-hslR|yrfH-K04762NANA
AK018_03144894ngcG_2COG0395Diacetylchitobiose uptake system permease protein NgcGGTGATGACCACGTCGACTCAGACACCCGCCGCGCCGACGACGGCGGTCCGACGCCGTCGCCGCGGGAGCGCGGGCAGGTTCCAGGGCGGCAACCCGGTCGTGTACGCGGTCGCGTTCGTGGTGGTCTGCGCGACCCTCGGGCCGGTCGTCTACGGCGTGCTCGGCGGGTTCCGCAGCAACGCCCAGCTCGCCGAGTCCCCGGCGTCGCTGCCCGACCCGTGGGTCGTCAGCAACTACACCGGCGTCGTCACCAACCCGGACTTCTGGCAGTACACGCTCAACTCGGTCGTCGTCGCCGTCGTCACGACGGCGCTGGTCGTCGTCTTCGGCGTCATGGCGGCCTACCCCCTGGCGCGGTACGCGTTCAAGGGCCGCGAGGTGCTGTTCATGGTGTTCGTCGCGGGGCTGCTCTTCCCCGCGACCGTGGCCGTGGTGCCCCTGTTCATCCTGCTCACCCAGAACTTCGGGCTGGGCAACACCTGGTGGGGCGTCGCGCTGCCCCAGGCGGCGTTCGCCCTGCCGATGACGGTCGTCATCCTGCGCCCGTTCCTCCAGGCGCTGCCGAAGGAGCTCGAGGAGGCCGCCCAGCTCGACGGCACCAGCCGGATCGGCTTCTTCTGGCGGATCCTCCTGCCGCTGTCCGGTCCGGGCATGGTCACCGTCGGCGTGCTCGCCTTCGTCGGGTCGTGGAACGCCTACCTCCTGCCGCTGCTGCTGCTGCAGGGCGACATGAAGACGCTCCCGCTCGGCGTCGCGGACTTCTCGTCCGAGCACTCGTCCGACACGGCCGGCGTCTTCGCCTTCACCACCCTCGCCATGATCCCGGCGCTGGTGTTCTTCCTCGCGATGCAGAAGCGCATCGTCAACGGTCTGCAGGGCGCGGTGAAGGGATGAMMTTSTQTPAAPTTAVRRRRRGSAGRFQGGNPVVYAVAFVVVCATLGPVVYGVLGGFRSNAQLAESPASLPDPWVVSNYTGVVTNPDFWQYTLNSVVVAVVTTALVVVFGVMAAYPLARYAFKGREVLFMVFVAGLLFPATVAVVPLFILLTQNFGLGNTWWGVALPQAAFALPMTVVILRPFLQALPKELEEAAQLDGTSRIGFFWRILLPLSGPGMVTVGVLAFVGSWNAYLLPLLLLQGDMKTLPLGVADFSSEHSSDTAGVFAFTTLAMIPALVFFLAMQKRIVNGLQGAVKGPGPT0016340_233DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_03145849lacF_4Lactose transport system permease protein LacFGTGACGCCGGCCCTGGCGATGCTCGCCGTCTTCGTGGTGTGGCCGATCCTCACCGCCGTCCAGATGTCGGCGTACCGGTGGAACGGCCGCGGGCCGATGGAGGACTTCGTCGGGATCGGCAACTACGTCTCGGTGCTCACCGACGACGTGTTCCTCGACTCCCTGCTCAACAACCTGTTCATCGTGGCCGCGTCGATCGCCATCCAGCTGCCGCTCGGCCTCGCGATCGCGCTCCTGCTCAACCGCAAGATGTGGGGCCAGGGTGCGCTGCGCACGATCATCTTCGTGCCGTACGTCCTCGCCGAGGTCGTCGCCGGCGTCATCTGGTTCCAGCTCCTGCAGCCGCAGTACGGCCTGCTCGACACGCTGATCAGCGCCGTCGGCCTCGAACCGCCGGCCCAGGGCTGGCTCGGGGACGTCGACCTGGCGCTGTGGACCGTCATGGGCATCCTGACGTGGAAGTTCATCGGCCTCGCCGTGATCCTCTTCCTCGCCGGTCTCCAGGGCGTGCCCGAGGAGCTGTACGAGGCCGCCCAGCTCGACGGTGCCTCGTGGTGGCAGGTGCAGCGCAGGATCACGATCCCGCTGCTCGGCCCGACGATCCGGACCTGGGCCTTCCTGTCCATGATCGGGTCGCTGCAGCTCTTCGACATGGTCTGGATCCTCACCAAGGGCGGTCCGGCCAACGCCACGAGCACCATGGCGATCTTCCTCGTGAACGAGGGCACCCGGAGCAACAACTTCGGGATCGCCGGCGCCGCCTCCGTGGTCCTCTTCGTGATCGCGCTCGTGATGGCGGTGCTCTACCAGCGACTCTTCCTCAGCCGAGACGCCAAGGGGGTGGCGTGAMTPALAMLAVFVVWPILTAVQMSAYRWNGRGPMEDFVGIGNYVSVLTDDVFLDSLLNNLFIVAASIAIQLPLGLAIALLLNRKMWGQGALRTIIFVPYVLAEVVAGVIWFQLLQPQYGLLDTLISAVGLEPPAQGWLGDVDLALWTVMGILTWKFIGLAVILFLAGLQGVPEELYEAAQLDGASWWQVQRRITIPLLGPTIRTWAFLSMIGSLQLFDMVWILTKGGPANATSTMAIFLVNEGTRSNNFGIAGAASVVLFVIALVMAVLYQRLFLSRDAKGVAPGPT0016335_89DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_031461335hypothetical proteinATGACGAGAACAACGCGAGGAGCATCTGCCGTCGCTCTGGGTGCGAGCGTCGCGCTGCTGGCCGGTGCCTGCGCCGGCCAGGGCACGGCCGACCAGGAGTCGACCGACGACGGCGGCTCTGCCGCCGCCTCCGACGGGGGAGAGGTCACCCTCGAGTGGTGGCACAACTCCAACACCGGTGAGGGCAAGGAGTACTACGACCAGGTCGCCGCGGACTTCTCCGAGGTTAACCCCGGCGTCACCGTCCAGGTCGAGGCCATGCAGCACGAGGACATGGTCACCAAGCTCCAGGCCGCCATGCAGGCCGGGACCGACGTCCCGGACGTCTTCATGAGCCGTGGCGGCGGTGAGCTGCAGAACGACGTCGACGCCGGGCTGCTGCGCGACCTCAGCGACGACGCCGCCGAGACCATCGACACCATCTCGGGCTTCACCGGCCAGTACACGATCGACGACGGCGTCTACGCCCTGCCCTTCTCCATGGGCATCGTCGGGTTCTGGTACAACGAGGACCTCTTCGCCGAGGCCGGCATCGACGAGGTCTCCCCGGCCCCCACGTTCGAGGAGTTCTCCGGCTACGTCGAGCAGCTCCAGGCGGCGGGGATCGACGCGATCTCCGTCGGCGCCGGGGACAAGTGGCCCGCCGCGCACCACTGGTACTACGGCGTCGTGCGGGAGTGCGAGTTCGAGACCGTCGAGGCCGCCATCGAGTCCGGCGACTACTCGGACGAGTGCTTCGTCGAGGCCGGCGAGCACGTCCAGGCGATCCTCGACCTGGAGCCCTTCAACCCGGGCTTCCTGGCCACGGCCGCGCAGTCCGGGCCGACGTCCGCGTCCGGCCTGCTCGCCGCCGAGAAGGTGGGCATGGAGCTCGCCGGCCACTGGGAGCCCGGTGTCGTCGGCGGCCTGCGCGAGGACGAGCAGGTGCCCGACTGGATGGGCTGGTTCGCCTTCCCGACCTTCGAGGGCCAGGCCGGCGACCCGGCGGACCAGATGGGCGGCGGCGACGCCTGGGCGGTGTCCGCCGACGCTCCGGACGAGGCGGTCGACTTCGCCGCGTACCTGGTCTCCGACGAGGTCCAGCAGGGCTTCGCCGAGCTCGACATGGGTCTGCCGACGAACCCGGCCGCGACGGACTCGCTGTCCAACGAGACGCTGGCACAGCTCATCCCCGTCCGCGACGGCGGCGGCGAGACCCAGCTCTACCTGGACACCCGCCTCGGCCAGTCCGTGGGTGGCGCGATGAACGACGAGATCGCCCTGCTGTTCGCCGGCGAGGCGGGCCCGCAGGACGTCGTCGACGCCATCGAAGAAGCCGCGGCGTCGCAGGGGTGAMTRTTRGASAVALGASVALLAGACAGQGTADQESTDDGGSAAASDGGEVTLEWWHNSNTGEGKEYYDQVAADFSEVNPGVTVQVEAMQHEDMVTKLQAAMQAGTDVPDVFMSRGGGELQNDVDAGLLRDLSDDAAETIDTISGFTGQYTIDDGVYALPFSMGIVGFWYNEDLFAEAGIDEVSPAPTFEEFSGYVEQLQAAGIDAISVGAGDKWPAAHHWYYGVVRECEFETVEAAIESGDYSDECFVEAGEHVQAILDLEPFNPGFLATAAQSGPTSASGLLAAEKVGMELAGHWEPGVVGGLREDEQVPDWMGWFAFPTFEGQAGDPADQMGGGDAWAVSADAPDEAVDFAAYLVSDEVQQGFAELDMGLPTNPAATDSLSNETLAQLIPVRDGGGETQLYLDTRLGQSVGGAMNDEIALLFAGEAGPQDVVDAIEEAAASQGPGPT0016330_2023DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
AK018_031471005cytR_2COG1609HTH-type transcriptional repressor CytRGTGACGATCTCCGACGTCGCGCGCGCCGCCGGCGTCTCCGTCGCGACCGTGTCCAAGGTCGTGAACAACCGCTACGGGGTCTCCCCCGCCACCGCGGAGCGGGTCCTCGGCGTCGTCGCCGAGCTGGGGTACGAGTCCTCCCTGGTCGCGCGCAGCCTGCGGCAGCAGTCGACCAACGTCGTCGGTGTGCTGGTCGCCGGGTTCGAGCCGTACTCCACCGAGCTGCTCAAGGGGATCTCCAGCGCCGTGGAGGGCACCGGCTACGAGCTGCTCGCCTACTCCGGCGGGTCCGACGGCGGGTCCATGGTGGGCTGGGAGCGCCGGTCGCTGTCCCGGCTGGCCGGGACGCTCATCGACGCCGCGATCGTCGTCACCCCGACCCTGGTGCTGACCGAGGCGCAGGGCATCCCCGTCGTCGCCATCGACCCGCACACGGGCCCGGAGGGCACACCGACCGTCGACAGCGACAACACCTCCGGCGCGCGGGAGGCCGTCGAGCACCTGATCGGGCTCGGGCACCGCCGCATCGCCCACCTCGGGGGCCGCACGGACCTGGAGTCCGCACGGCTGCGCGAGCTCGGCTACCGGCAGGCGCTCGCGGCGGCCGGGATCGAGGTCGACCCGGACTGGGTCCGGGTGGGCGGCTACTGGCCGGAGACCGCCGACGCCCCGGCACGTGAGCTCCTGGACCCGCCGTCCGGCGAGCGCCCCACCGCGGTCTTCGCGGCCAACGACCAGTCCGCGATCCACGTGCTGGAGGTGGCGGCCGAGAAGGGGCTGCGCGTCCCGGAGGACCTGTCCGTGGTCGGGTTCGACGACATCCCCGAGTCCGCCTCGTGCACCCCGCCGCTGACCACCGTCGCCCAGCCGCTGCACCGCATGGGCGCCGAGGCGCTGCGCATGGTGCTCGACCTGCTGCAGGGCACGCCGCGCGAGCAGCACCTGCGGCTGCCGACGTCGCTCGTCGTGCGGTCCAGCACGGGCCCCGCCCCCTCGCCGAGGTAGMTISDVARAAGVSVATVSKVVNNRYGVSPATAERVLGVVAELGYESSLVARSLRQQSTNVVGVLVAGFEPYSTELLKGISSAVEGTGYELLAYSGGSDGGSMVGWERRSLSRLAGTLIDAAIVVTPTLVLTEAQGIPVVAIDPHTGPEGTPTVDSDNTSGAREAVEHLIGLGHRRIAHLGGRTDLESARLRELGYRQALAAAGIEVDPDWVRVGGYWPETADAPARELLDPPSGERPTAVFAANDQSAIHVLEVAAEKGLRVPEDLSVVGFDDIPESASCTPPLTTVAQPLHRMGAEALRMVLDLLQGTPREQHLRLPTSLVVRSSTGPAPSPRPGPT0017992_4101DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_03148657copRTranscriptional activator protein CopRATGAGCAGGATCCTGGTGGCCGAGGACGAGGACCGCATCGCGCAGTTCGTGCGCAAGGGGCTCCGGGCGCACGGGTTCGTGCCCACGGTGGTCTCCGACGGCCTGTCGGCGGTGCAGCACGCGCTGGGTGGTGAGTACGACCTGATGGTGCTCGACATCGGGCTGCCGGGGCTCGACGGCTTCGAGGTGCTGTCCCGGCTGCGCGGCTTCGGGTCCACGATGCCCGTCGTCATCCTCACCGCGCGGGACTCCATCACCGACCGGGTCACCGGGCTCGAGGGCGGCGCGGACGACTACATGGCCAAGCCCTTCGGGTTCGAGGAGCTGCTGGCGCGGATCCGGCTGCGGCTGCGGGACCCTGGGCGCAGCGACCGGGAGGTGCTGGAGCACGGCGGCCTGCACCTGGACCTGGCCTCCCGCCGGGTGTCGGTGGACGGCCGGGAGATCGACCTGTCGGCGCGGGAGTTCGCGCTGGCCGAGGTGTTCCTGCGCAACCCCGGGCGGGTGCTCTCGCGGGAGCAGCTGTTGTCGCGGGTGTGGGGGTACGACTTCGACCCCGGGTCGAACGTGGTGGACGTGTACGTGCGTTACCTGCGCAAGAAGGTGGGTGCGGAGCACATCGAGACGGTGCGCGGCATGGGCTACCGGCTCGTCTGAMSRILVAEDEDRIAQFVRKGLRAHGFVPTVVSDGLSAVQHALGGEYDLMVLDIGLPGLDGFEVLSRLRGFGSTMPVVILTARDSITDRVTGLEGGADDYMAKPFGFEELLARIRLRLRDPGRSDREVLEHGGLHLDLASRRVSVDGREIDLSAREFALAEVFLRNPGRVLSREQLLSRVWGYDFDPGSNVVDVYVRYLRKKVGAEHIETVRGMGYRLVPGPT0003915_1693DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003915-pmrA-K07666NANA
AK018_031491467sasA_10Adaptive-response sensory-kinase SasAGTGCGGACGAAGGTCGTCGTGTCGGTGCTGCTCCTGTCCGCCCTGGGGATGGCGGTGGCCTGGGCGGTGACGGACGCGATCCACGCCCGGGCGGTGCTGGACCGCATCGACGGCGAGCTGGACCAGGAGGTCGAGGAGTTCCGCGTGCTGGCCGAGCGAGGCATCGACCCCGACACGGGCGAGCCCTTCGCGGGGGTCGAGCAGCTGCTGCGGGTCGCGATCGAGCGCAACGTGCCCGGCGCCGACGAGATGCTGGTGACCTTCGTCGACGGCGAGGCCGACCTGTACTCGCCGTCGTGGGCCTCCGCGGTGGTCGACGACCCCGACCTGGTGGCGCTCGTGGACGAGCTCGGTCCCGGGGCCGGCAGCGCGGTCGAGGGGTGGATCCCCACCGCCGTGGGCGAGATGCACGTCGTGGCCGTCCCGGTGCACGCGGCCGACGACTCGCAGCACGGCACCTACGTCGTCGCGGTGGGCACGGATCTCGCCCTGGCCTCGCAGCAGGAGCTGCGCCGCACGTTCGCCCTGGTCTCCCTCGGCACCCTCGTCCTCGTCGGGGGCGTGGGCTGGTGGGTGGTGGGCAGGCTGCTGCGACCGCTGGAGCTGCTCGCCACGACCGCGCAGCAGGTGGGCGGCGACGACCTGACCCGCCGCGCCCCGGTGCACGGCGAGGACGACGTCGCCACGCTCGGCCGCGCGTTCAACACGATGCTGGACCGGCTCGCCGCCGCCTTCGACGCCCAGCGGCAGTTCCTGGACGACGCCGGACACGAGCTGCGCACCCCGTTGACGGTGCTGCGTGGTCACCTGGAGCTGTTGGACCCGACCGACCCCGACGACGTGGCGGAGACCCGGACGCTGCTGCTGGACGAGACCGGCCGGATGAGCCGGATCGTCGAGGACCTGGTGCTGCTGGCCAAGTCCGAGCGCCCCGACTTCGTGCGGCCCGGCCTGGTCGACCTCGGGCCGCTGACCGACGACCTGTTGGACAAGGCGCGCGCGCTGGGTGACCGTACCTGGTTGGTCGACGCCCGTGCCGAGGGGGTGGTGCCTGGTGACGAGCAGCGACTCACCCAGGCGGTGCTGCAGCTCGCCGACAACGCGGTGAAGTTCACCCGGCCGGGGACGCGCATCGCCGTGGGGAGCGCCGTCGTCGGCTCCACCGCCAGCCTGTGGGTGCGGGACGAGGGTCCGGGCGTGCCGGCGGCGGACCGGTCGAGGATCTTCGAACGGTTCGTGCGGGTCGCCGGCCCGGACGTGCGAGGCTCAGGGCTCGGGCTGGCGATCGTGGCCGCCGTCGCGCACGGGCACGGTGGTGCGGTGGCGGCCGACGCCGGGGTCGCCGCCGGGGCGGGTGTCGTGGCCGACGACGGCGACGGAGCGGCAGAGCACGGTCTGCAGGTCACGCTGGTCTGGCCGGTCGACGTGGCGCCTGCCGACGACCGGGCCGAGAAGGAGGACGGATGAMRTKVVVSVLLLSALGMAVAWAVTDAIHARAVLDRIDGELDQEVEEFRVLAERGIDPDTGEPFAGVEQLLRVAIERNVPGADEMLVTFVDGEADLYSPSWASAVVDDPDLVALVDELGPGAGSAVEGWIPTAVGEMHVVAVPVHAADDSQHGTYVVAVGTDLALASQQELRRTFALVSLGTLVLVGGVGWWVVGRLLRPLELLATTAQQVGGDDLTRRAPVHGEDDVATLGRAFNTMLDRLAAAFDAQRQFLDDAGHELRTPLTVLRGHLELLDPTDPDDVAETRTLLLDETGRMSRIVEDLVLLAKSERPDFVRPGLVDLGPLTDDLLDKARALGDRTWLVDARAEGVVPGDEQRLTQAVLQLADNAVKFTRPGTRIAVGSAVVGSTASLWVRDEGPGVPAADRSRIFERFVRVAGPDVRGSGLGLAIVAAVAHGHGGAVAADAGVAAGAGVVADDGDGAAEHGLQVTLVWPVDVAPADDRAEKEDGPGPT0004100_923DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
AK018_031501212hypothetical proteinATGGCACAGAACGACCTGGACCTGCTGACGGGCGAGGAGGCGACCGAGCTGCTCGCGACCGCGGTCTCCACCGCGGGCGGAGAGCTCGTCGACTGGTCGGTCCGGCAGGTGGACCACCGCCCGGGCCGTTCGACGACGGTCGCCTACCGCGCGCGGGTGCGCTGGGCGGACGGCGCGGACCCGGGACGCGTGCGCACGGAGACGCTCGGGGCCTCGCTCGGGCGGCCGGGGGACCAGCAGGTCCCCGGCGTGCTCACGCTGGACGACGGCGAGCACGCGGTCGCGGTGTGGCGGTTCCCGGGCGACCCGGCGCTGCCGGCGCTGGCGACCGCCTACGACGCCGAGGCGGTGGCGACCCTGCTGGGGGACCTGGGCGTCCCCGAGGTGGCGCGGGGCCCGGTGACGCTGAAGGTGCGGGCCTACCGTCCGACCCGCCGCGCGGTCATCGAGGCCAGCACGCCGGGTGCGCGTGTCTTCCTCAAGGTGGTGCGCCCCGAGAAGGTCGACGACCTGCACGCCCGGCACGCGCTCCTCGCCGGGGCGGGTCTGCCGGTGCCGAAGCCGCTGGGCCGCAACGCCGACGGCCTGCTGGTCATCGCCCCGCTGACGGGGGAGTCGATGCGGCACGCCGTGCGCGACGGGGGGCCGGTGCCGACGGCGGCCGAGGTGGTCGCGATGCTCGACCGGCTGCCGGACAGCGTCGCCGAGCTGCCGCTGCGCACGTCGTGGAGCGAGAACGCGGGCCACTACGCCTCGGTCATCGCCGCGGCCATGCCCGCGGAGGCGGAGCGTGCCCTGCACCTGGCGGAGACGATCGTGACCCGGATCGCCGACCAGCGGGCCGAGGACCCGACGCACGGCGACCTGTACGAGGCGCAGATCATGCTCGCCGGCGGTCGCATCACGGGGTTGCTGGACGTGGACTCGGCCGGCCCCGGACGGCGGGCGGACGACCTGGCCTGCCTGGTCGCGCACGTCGAGACGCTGTCGCTGCTGCGGGGGTGGGACAGCGAGCGCCTGCACGCCCTGGCGATCGAGTACGCGGCCGGGTTCGCGGGCGTGGTGGACCCGGTCGAGCTCTCGGCACGGGTCGGCGGTGTCCTGCTGTCCCTGGCCACGGGTCCGCACCGCGTCCAGGAGGCCGACTGGCCGCACCAGACCTCCCGCCGGCTGGACGCCGTCGAACGCTGGCTGGGCGGGGTGCCGGGGTGAMAQNDLDLLTGEEATELLATAVSTAGGELVDWSVRQVDHRPGRSTTVAYRARVRWADGADPGRVRTETLGASLGRPGDQQVPGVLTLDDGEHAVAVWRFPGDPALPALATAYDAEAVATLLGDLGVPEVARGPVTLKVRAYRPTRRAVIEASTPGARVFLKVVRPEKVDDLHARHALLAGAGLPVPKPLGRNADGLLVIAPLTGESMRHAVRDGGPVPTAAEVVAMLDRLPDSVAELPLRTSWSENAGHYASVIAAAMPAEAERALHLAETIVTRIADQRAEDPTHGDLYEAQIMLAGGRITGLLDVDSAGPGRRADDLACLVAHVETLSLLRGWDSERLHALAIEYAAGFAGVVDPVELSARVGGVLLSLATGPHRVQEADWPHQTSRRLDAVERWLGGVPGNANANANANA
AK018_03151429hypothetical proteinATGAAGCCGTCCGTGAAGAAGCGCTGGATCGTCGTCGGGACCGCCGCGGCCCTGGGGGTCGGCGTCGCCGGCGCGGCAGCGGTCGGGCTCGACGACCAGGTCGACCCCGTCGAGAGCGTCGACGCCGTGACCCTGACCGGGCAGGACGACCCCTCCGGCGAGCCGTCGGCGGACCACTCCTCGGGTACCACGGGCCCCGCGTCGACCGACGTCACCGACCCGTCGCCGGAGACGGCCGGATCGCCGGACGACTCCGCCGTCGACTCGGCGGACTCGGCGGACGGCGCGTCCGGGCAGAGCGCTCGGAGTGCCGAGACGGCCGCACCGGCGCCCCAGCAGGTGCAGAGCGCCCAGTCTGCGCAGACCGCGGGAGACGCCGATGACGACCGCTCGGCGCAGAGCGCCCGGTCCGCCGACTCAGGGCGCTGAMKPSVKKRWIVVGTAAALGVGVAGAAAVGLDDQVDPVESVDAVTLTGQDDPSGEPSADHSSGTTGPASTDVTDPSPETAGSPDDSAVDSADSADGASGQSARSAETAAPAPQQVQSAQSAQTAGDADDDRSAQSARSADSGRNANANANANA
AK018_03152486hypothetical proteinATGGCCATGTTCACCGTCTGGAAGTTCGACGACCCGGAGGGCGCCGGCAAGGCCGCCCGCATCGTCAAGGATGCCGCCTCGGAGGGCCTGATCACGCTGGTCGACCACGCGGTCGTCGAGTGGCCCGAGGGCGAGAGCCACCCGAAGACCCACGGGGTGAACGACGACGCCGCGAGGTCCGGGGGCTGGGGCGCGCTGTGGGGCCTCCTGATCGGCGCCCTGTTCTTCATCCCCGTCGTCGGTGCCGTCGCCGGTGCCGCGATCGGCGGGCTCAGCCGCGCCCTGTCGAGCACCGGCATCACGAAGGACGACCTCGAGCGGATCCGGGCCGAGATCGTGCCCGGGACCTCCGGCCTGTTCCTCATCTCCGAGCAGGGCGACCCGGACCGTTTCCGCGAGCGCCTGCACGGTCTCAAGGCGACCCTGATCAGCTCCAACATGTCGGACGCCGAGACCCGCGAGCTCAAGGAGATGTTCGGTTCCTGAMAMFTVWKFDDPEGAGKAARIVKDAASEGLITLVDHAVVEWPEGESHPKTHGVNDDAARSGGWGALWGLLIGALFFIPVVGAVAGAAIGGLSRALSSTGITKDDLERIRAEIVPGTSGLFLISEQGDPDRFRERLHGLKATLISSNMSDAETRELKEMFGSNANANANANA
AK018_031531710pgi_2COG0166Glucose-6-phosphate isomeraseATGACGACCTCCCCTGTCGACGCCACCACCACGCCCGCCTGGGGCGAGCTGCTGCGCCACCACCAGGAGTTCCGGGGTGACCTGCGCGGATGGTTCGCCGCCGACCCGGGGCGCGCCGAACGGTTCAGCCACACGACGGGCGACCTGCTGGTCGACCTGTCCAAGAACCTGGCGACCGACGAGACGTTCGAGCTGCTGGTCCGGCTCGCCCGGGAGGTGAACCTTCCTGATCGCATCGAGGCGATGTTCACCGGCGAGCACATCAACGTCACCGAGGACCGCGCCGTGCTGCACACCGCCCTGCGCCGCGCGCCCGGTACCGAGCCGCCGCTCGTCGTGGACGGTCAGGAGATCGACGTCGACGTCGCCCGCGAGCTCGAGAAGGTCGCCGCGTTCGCCGAGCAGGTGCGCTCGGGCGAGTGGAGCGGCGTCACCGGCAAGCCGGTGCGCACGGTCGTCAACATCGGCATCGGCGGCTCCGACCTCGGGCCGGTCATGGTCTACGAGGCACTGAAGCCGTACGGACGCGAGGACCTCGAGGTCCGGTTCGTGTCCAACATCGACCCGACGGACCTCGCCCAGAAGACCGCCGACCTGGACCCCGAGACGACGCTGTTCATCGTCGCCTCCAAGACCTTCGGCACCCTGGAGACCCTGACCAACGCGCGCATGGCCCGCGCCTGGCTGTGGGACCGGCTGCACGCCGTCGGCGCCATCGAGGACGACCACGACGCCCAGCAGGCCGCCGTGCGCGCCCACTTCGTGGCCGTCTCCACCGCGCTGGACAAGGTCGAGGCGTTCGGCATCGACCCGGCGAACGCGTTCGGGTTCTGGGACTGGGTCGGCGGCCGCTACTCCGTCGACTCCGCGATCGGCACGTCGCTGGCCGTCGCGTTCGGCCCGGACGTCTTCCGCGAGCTGCTCGCGGGCTTCCGCGCCGTCGACGAGCACTTCCGCAGCACGCCGCTGGAGCAGAACGTGCCCGCGCTGATGGGTCTGCTCAACGTCTGGTACACGAACTTCCTCGGCGCGCACACCCACGCGGTGCTGCCCTACGCCCAGCAGCTGCACCGGTTCCCCGCCTACCTGCAGCAGCTCACCATGGAGTCCAACGGCAAGTCGGTGCGCTGGGACGGCTCGGACGTGACGACGCAGACCGGCGAGGTCTTCTGGGGCGAGCCGGGCACCAACGGCCAGCACGCCTTCTACCAGCTCATCCACCAGGGCACCCGGACGATCCCCGCGGACTTCATCGCCTTCGCCACGCCCGCCTACCCCCTGACCGACGACGCCGGCGACGGCAAGGCCGTGGCCGCCGGCGCCGACGTGCACGAGCTGTTCCTCGCGAACTTCTTCGCGCAGACCAAGGCGCTCGCCTTCGGCAAGACCGCCGACGAGGTCCGGGCCGAGGGCACCGCCGAGGAGCTGGTCAGCGCCCGCACCTTCTCCGGCAACCGGCCCACGACGTCGATCATGGCGCCCGCGCTCACGCCGTCCGTGCTGGGGCAGCTCGTCGCGCTGTACGAGCACATCACGTTCGTCGAGGGCGTCGTGTGGGGCATCGACTCCTTCGACCAGTGGGGCGTCGAGCTCGGCAAGAAGCTCGCGCTGGAGGTCGCTCCCGCCGTGTCCGGGGACGACGCCGCGCTGGCGGACCAGGACGCCTCGACGCGCCGCCTCGTGGAGTACTACCGCGCCCACCGCGCCTGAMTTSPVDATTTPAWGELLRHHQEFRGDLRGWFAADPGRAERFSHTTGDLLVDLSKNLATDETFELLVRLAREVNLPDRIEAMFTGEHINVTEDRAVLHTALRRAPGTEPPLVVDGQEIDVDVARELEKVAAFAEQVRSGEWSGVTGKPVRTVVNIGIGGSDLGPVMVYEALKPYGREDLEVRFVSNIDPTDLAQKTADLDPETTLFIVASKTFGTLETLTNARMARAWLWDRLHAVGAIEDDHDAQQAAVRAHFVAVSTALDKVEAFGIDPANAFGFWDWVGGRYSVDSAIGTSLAVAFGPDVFRELLAGFRAVDEHFRSTPLEQNVPALMGLLNVWYTNFLGAHTHAVLPYAQQLHRFPAYLQQLTMESNGKSVRWDGSDVTTQTGEVFWGEPGTNGQHAFYQLIHQGTRTIPADFIAFATPAYPLTDDAGDGKAVAAGADVHELFLANFFAQTKALAFGKTADEVRAEGTAEELVSARTFSGNRPTTSIMAPALTPSVLGQLVALYEHITFVEGVVWGIDSFDQWGVELGKKLALEVAPAVSGDDAALADQDASTRRLVEYYRAHRAPGPT0017735_303DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017735-pgi-K01810NANA
AK018_031541116hypothetical proteinGTGTCCGTGCCGCTCGACCCCCGGGCGATCCTCGCGGGACGTCCCACCGCCCGCCCCTCGGTCGGCGTCGTGGTCACCGTCGCGGTGTCGTCGGCGTGCCTGCTCGTGGCCCTGGTGCTCCTGCTGCACGACGGCGCGACCGGCGTGGCGACCGCCGTCGTGCTGGCGCTCGTCCCCCTGCCGTTGCTGCTGGCCGGCATCCTCGCGCTGGACCGCCTCGAGCCCGAGCCGCCCGACGCCCTGGTCGCCGCGTTCGGCTGGGGGTCGGGCGTCGCCGTCCTGCTCGCGACCGTCGTCAACACCGCCGGCCTCGACCTGGTGTGGCGGCCGATGCTCGGCGCCGAGCTCGGGCTGTACGCCACGGCGTCGCTCACTGCGCCCGTGGTCGAGGAGCTGGCCAAGGGCGCGGTGCTCGTCGGGCTGCTGTGGTTCCGCCGCCACGAGCTGAACGGCCCCACCGACGGGATCATCTACGGGTCCATGGTCGCGCTCGGGTTCGCCACCGTGGAGAACATCAGCTACTACGCCTTCGCCCCGGAGGGCGCCCTGGCGTGGACGTTCGTCCTGCGCGGCGTCGTCTCCCCGCTGCTGCACCCCCTGTGCACGGCGCTGATCGGCGTGGGCGTCGCGACGGCGGCGCTGCGGCCGCGGGGCCGGCGCGTGCTGCCGGTCGTGGCCGGGTTCGCGGGGGCCGTCGCGCTGCACGCCGTGTGGAACGCCTCGACCGCGGCCGGCCTCGTCGGCGTCGGGCTGGCCTACCTGCTCGGCGTCGGGGTGCTCGTGGGACTCGGTGTGGTGCTGCACCGCGACCGGCGCCGCATCGTCGGCCTGGTGCAGCAGCACCTGCCCCAGTACGCGGCGCTCGGCGTCGTCGCCCCCGGTGACCTCCGCATGCTGTCGTCGTTGCGGACCCGGCGTCTCGCGCGCGAGCAGGTGCGCAGCACCCGAGGCCACGGCCCGGCCCGCGCGCTGGCGGACTACCAGCAGGCCGCGACCGAGCTGGCGATGCTGCACCGCCGGTACGGCCTGGGTCTGGTGCCCGACGACGAGTTCGTGGCCCGGCGCGACCCCTTGCTGCTGCTCATGGGGCACGCGCGCGCCGTCTTCGTGCGCTGAMSVPLDPRAILAGRPTARPSVGVVVTVAVSSACLLVALVLLLHDGATGVATAVVLALVPLPLLLAGILALDRLEPEPPDALVAAFGWGSGVAVLLATVVNTAGLDLVWRPMLGAELGLYATASLTAPVVEELAKGAVLVGLLWFRRHELNGPTDGIIYGSMVALGFATVENISYYAFAPEGALAWTFVLRGVVSPLLHPLCTALIGVGVATAALRPRGRRVLPVVAGFAGAVALHAVWNASTAAGLVGVGLAYLLGVGVLVGLGVVLHRDRRRIVGLVQQHLPQYAALGVVAPGDLRMLSSLRTRRLAREQVRSTRGHGPARALADYQQAATELAMLHRRYGLGLVPDDEFVARRDPLLLLMGHARAVFVRNANANANANA
AK018_03155747cysA_2COG1118Sulfate/thiosulfate import ATP-binding protein CysAATGGCCGGGGCCGAGGGCCTGACCGTGCGCGACGCCGTCGTGCGCTACGAGGGCACGCGCCGCGACGCGGGGACGACGGCGGTCGACCACGTCTCCCTCGACGTCGCGGTGGGGGAGATCGTCGCGCTGCTCGGCCCCAGCGGCTGCGGCAAGTCGTCCCTGCTGCGCGCGGTGGCCGGACTCGAGCCGCTGGCCGCCGGGACCGTGTCGTTCGCGGGACAGGACCTGGCTCGTGTGCCGGTGCACCGGCGCGAGTTCGGGCTGCTCTTCCAGGACGGCCAGCTGTTCCCGCACCGGGACGTCGGGCGCAACGTCGCCTACGGCCTCGAGATGCAGGGTGTGCCGGCCGCCGAGCAGCGGGCGCGCGTGGCCGAGCTGCTCGAGGACGTCGGGCTCGCCGGCTACGGGCGCCGCGCCGTGGCGACGCTGTCCGGCGGGGAGAAGCAGCGGGTGGCGCTGGCCCGGGCGCTGGCCCCGCGACCGCGGCTGCTGCTGCTCGACGAGCCGCTGTCCGCCCTGGACCGGCAGCTGCGCGAGAAGCTCGCGATCGACGTGCGGGACACGCTGCGCTCCACCGGGACGACCGCGGTGTTCGTCACGCACGACCACACCGAGGCGTTCACCGTGGCCGACCGTGTCGCCGTCATGGACGCCGGCCGGCTGCTGCAGGTCGACACTCCCGACACCTTGCGGGACCGTCCGGCGTCGGACCGGGTGGCGGAGTTCCTGGGGCTCGCCGGCGCCTGAMAGAEGLTVRDAVVRYEGTRRDAGTTAVDHVSLDVAVGEIVALLGPSGCGKSSLLRAVAGLEPLAAGTVSFAGQDLARVPVHRREFGLLFQDGQLFPHRDVGRNVAYGLEMQGVPAAEQRARVAELLEDVGLAGYGRRAVATLSGGEKQRVALARALAPRPRLLLLDEPLSALDRQLREKLAIDVRDTLRSTGTTAVFVTHDHTEAFTVADRVAVMDAGRLLQVDTPDTLRDRPASDRVAEFLGLAGAPGPT0009110_404DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009110-thiQ-K02062NANA
AK018_031561737hypothetical proteinGTGACGTCCCCCGCCAGCGGCGGGGCGTCCGTGCGGGCGCCCCGCCGTCGACCGGCCCCGGGGACCTGGCTGTGGTGGGCCCTCGCCGCAGGGCTGCCCCTGCTGTTCCTCGGGGTCTTCTTCGCGTGGCCCGTCGCGGCCCTGGTCGTCCAGGGCTTCTTCGCCGACGACGGCGGCACGCGGGTGCTCGACCTGTCCGGGTTCGGGGAGGTCCTGTCCCAGCCGCGCACGTGGCGCGTGGTGGGCCAGACGCTGGCGCAGGCGACCGTCGGCACCGCCCTGGCCGTCCTGCTCGGGCTGCCCGGCGCCTACGTGCTGTACCGGTGCCGGTTCCCCGGCCGGACGCTGGTCCGCGGGCTGGTGACCGTGCCGTTCGTGCTGCCGACCGTCGTCGTCGGCGTGGCCTTCCGGGCGCTGTTCGCCCCTGGGGGCACGTTCGGCTGGCTCGGCGTCGAGGAGTCGTTCGCCGGGGTCGTGATCGCCCTGGTGTTCTTCAACTACGCCGTCGTGGTGCGCACGGTCGGCGGGCTCTGGGAACGGCTCGATCCGCGTGCCGAGCAGGCGGCCCGCTCCCTCGGCGCCAGCCCCTGGCGGGCGTTCCGCACGGTGACGCTGCCCGCCCTCGGGCCCGCGATCGCGTCCGCGGCCGCCGTGGTGTTCCTGTTCTGCGCGACGGCGTTCGGCGTCGTCCTCGTCCTCGGCGGGATGCGCTACGGCACGATCGAGACCGAGATCTGGATCCGCACCACCCAGTTCCTCGACCTGCGCGCGGCCGCGGTGCTCAGCATCCTGCAGCTCGTCGTCGTCACCGGGGCGCTGCTGGTCAGTGCCCGGCTGCGCGCCCGGCGCGAACGCGCCCTGCACCTGAGCAGCGACCGCTCCGCCGCTCACCGGTTCTCCTGGCGCCGGGCCTCCGACGCCGTGCCGGCCCTGGCGACGCTCGTCGTGGTCGGCCTGCTGGTCGTGACGCCGCTGGCGGGTCTGGTGGCCCGTTCGCTGCGCGCCCCGGACGGCAGCTGGGGGCTGGACAACTACGTCGCGCTGGGGACGACCGGCGGCCGCAACGCGCTGTCGGTGACGGTGTGGGAGGCGACGGCGAACTCGCTGCGCACGGCCGCCGTCGCGGCCGTCGTCGCCGTCGTCGTCGGCGGGCTGGTCGCGCTCGTCGTCTCGCGCCGGCCCCGATCGCGCGGGCTGCGCCGCGCCGTCGGGACGCTCGACGCCGTGTTCATGCTGCCGCTCGGCGTCTCGGCCGTGACGGTCGGCTTCGGGTTCCTCATCACCCTGGACCGCCCGCTCGGGTTCGACGTCGACCTGCGCACCTCCGGGCTGCTGGTGCCGATCGCCCAGGCCGTCGTGGCGATCCCGCTGGTGGTGCGCACCGTCCTGCCCGTGCTGCGAGCCATCGACCCCCGGCTGCGGGAGGTCGCCGCCACGCTGGGGGCCGCGCCGGGTCGGGTGCTGCGCACCGTCGACGGGCCTCTGACGGCCCGTTCGCTCGGGCTGGCCATCGGGTTCGCGTTCGCTGTGTCGCTGGGCGAGTTCGGCGCGACGTCGTTCCTCGCCCGCCCGGACACCGCGACGCTGCCCGTGGTCATCTACCGGCTCATCGGGCAGCCGGGCGCGGAGAACTACGGCATGGCGCTCGCGGCGTCGGTCGTGCTCGCGGTGCTCACCGCGACGGTCATGATGGTGGCGGAGCGCCTGCGCGGTGACGCGGGCGGAGGGGAGTTCTGAMTSPASGGASVRAPRRRPAPGTWLWWALAAGLPLLFLGVFFAWPVAALVVQGFFADDGGTRVLDLSGFGEVLSQPRTWRVVGQTLAQATVGTALAVLLGLPGAYVLYRCRFPGRTLVRGLVTVPFVLPTVVVGVAFRALFAPGGTFGWLGVEESFAGVVIALVFFNYAVVVRTVGGLWERLDPRAEQAARSLGASPWRAFRTVTLPALGPAIASAAAVVFLFCATAFGVVLVLGGMRYGTIETEIWIRTTQFLDLRAAAVLSILQLVVVTGALLVSARLRARRERALHLSSDRSAAHRFSWRRASDAVPALATLVVVGLLVVTPLAGLVARSLRAPDGSWGLDNYVALGTTGGRNALSVTVWEATANSLRTAAVAAVVAVVVGGLVALVVSRRPRSRGLRRAVGTLDAVFMLPLGVSAVTVGFGFLITLDRPLGFDVDLRTSGLLVPIAQAVVAIPLVVRTVLPVLRAIDPRLREVAATLGAAPGRVLRTVDGPLTARSLGLAIGFAFAVSLGEFGATSFLARPDTATLPVVIYRLIGQPGAENYGMALAASVVLAVLTATVMMVAERLRGDAGGGEFPGPT0009105_90DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009105-thiP-K02063NANA
AK018_031571104thiB_2COG4143Thiamine-binding periplasmic proteinATGAATCGTCGTACCCGCCGCACGCTGGCGACCACCGCCGTCGTCGCCCTGCTGCCCGCGCTGGCGGCCTGCACGGGCGAGGACACGCCGGGCGAGGCGCAGAGCTCGCCCACGACGTCCGCGAGCGAGAGCGGCACCCCGGAGCTGTCCGGGACCGTCACGCTCGTCACCCACGACTCCTTCGCCCTGAGCGAGGGCCTGCTGGAGTCCTTCGAGCAGGAGACCGGTCTGACGGTGGAGCAGGCCGCCGCCGGCGACGCCGGCACGCTGGTCAACCAGCTCGTGCTGACGGCCGACAGCCCGCTCGGCGACGTCGTCTACGGGGTCGACAACACGTTCGCCTCGCGCGCCGTCGAGGCCGGCGTGTTCGAGCCGTACACCCCGGACGAGCTCGACCCGTCCGTGACCGACCTCGTCGACCCCGCGCTCGAGGGCCTCACCCCGATCGACAAGGGCGACGTCTGCCTCAACGTCGACACCGCCTGGTTCGAGGACGAGGGAGTCGAGCCGCCGAGCACGCTCGAGGACCTCACCGACCCGGCCTACGAGGACCTCACGGTCGTGACGAACCCGGCGACCTCCTCGCCCGGGTTCGCGTTCCTGCTCGCCACCGTCGACGCCTTCGGCGAGGACGGCTGGGAGCAGTACTGGGCCGACCTCTCCGACAACGGCCTCAAGGTCACCGACGGCTGGTCGGACGCCTACTACGTCGACTTCTCCGGCGCCGGGGAGGGCGGTGAGCGGCCGATCGTGCTGTCGTACGCGACCTCGCCCGCGTTCACGGTCACCGAGGACGGCAGCGAGACCACGACGGCGGCGCTGCTGGACACCTGCTTCCGCCAGGTCGAGTACGCGGGCGTCCTGGCCGGGACCGACAACCCGGACGGTGCCCGCGCCCTGGTGGACTTCCTCGCCTCCGCGGAGGTGCAGGCCGACATCCCGCCGAACATGTACATGTACCCGGCCGACGACAGCGTCGAGCTGCCGACCGAGTGGGAGCAGTTCGCCCCGCTGGCCGAGGACCCGTTCGACGTCGCGCCGGCCGAGATCGACGCGCACCGCGACGAGTGGATCGAGCAGTGGACGGCGACGGTCATCGGGTGAMNRRTRRTLATTAVVALLPALAACTGEDTPGEAQSSPTTSASESGTPELSGTVTLVTHDSFALSEGLLESFEQETGLTVEQAAAGDAGTLVNQLVLTADSPLGDVVYGVDNTFASRAVEAGVFEPYTPDELDPSVTDLVDPALEGLTPIDKGDVCLNVDTAWFEDEGVEPPSTLEDLTDPAYEDLTVVTNPATSSPGFAFLLATVDAFGEDGWEQYWADLSDNGLKVTDGWSDAYYVDFSGAGEGGERPIVLSYATSPAFTVTEDGSETTTAALLDTCFRQVEYAGVLAGTDNPDGARALVDFLASAEVQADIPPNMYMYPADDSVELPTEWEQFAPLAEDPFDVAPAEIDAHRDEWIEQWTATVIGPGPT0009095_185DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009095-thiB|tbpA-K02064NANA
AK018_03159285hypothetical proteinGTGGAGCAGTCCGAGAGCACCGAGCCGACGCTGGCCGTCAAGGTCGGGACGATGGCGGCGACGCTCGCTGCCGGTTGGGTGGCCCAGAAGCTCATCAAGACGATCTGGGAGAAGTCCACGGGCAAGGACGCGCCCACCGACCTCGACGCGGACGACATCCCGATCCTCCAGGCCATCACGTTCGCCGCCGTCACCGGTGGCGTCGCGGTGCTCGCGAGGCGGCTCGCCCGCCAGGGTGTCGCCAAGGCCGTCGACCGGCGCGCGCACCAGGTCTCGACGGTCTGAMEQSESTEPTLAVKVGTMAATLAAGWVAQKLIKTIWEKSTGKDAPTDLDADDIPILQAITFAAVTGGVAVLARRLARQGVAKAVDRRAHQVSTVNANANANANA
AK018_03160729hypothetical proteinATGAGCTCGCCGTCGTCGTCGCGGACCATGAGGGGCTCTGCGCTCTCGAGCGTCACCGACGCCCTGTCCACCGGTACCCAGCTCGTCGTGGGCCGCTATCGCATCGACGCACCCTCGGGTGCGGTCTGGTGGTCGGACGAGGTCTATCGCATGTACGGCTGCGAACCCGGTGACATCACGCCGACGGTCGATCTCATCCGCGCGCGGACCCACCCGGACGACCGGGCCCGCGTCTCCCGCACCGCCATCGTCTCCCTGCGCGCGGGTCGGCCGTTCAGCAGTGCCCACCGCATCGTCGACCCGCACGGCAAGGCGCGCACCGTCGTCGTCACGGGTCGCGGGCAGGTCGCCGACGACGGCACGATCGCGCAGGTGGGCGGCTACGTCCTCGACGTGAGTCCGGTCGCCCGCGAGACCCTGGAGCGCGAGACGCACCGCGCCGTGGGACGGGCCATGGTCTCGGCCGCCGCCGTCGAGCAGGTCAAGGGGTCGTTGATGGTCGTCCGCGGAGTCGACGAGTCGGCGGCCGCCGAGCAGATCAGCGAGGTCGCGGCACGCGCCGGGATCCCGGTGCAGGCGGCGGCGGCACAGGTCGTCGCGGCGCTCCGGTCCGCGACCGGCGAGCCCGACGACCGTCTGCGGACCGCCCTGGAGTCCGTGCACAGCGTGGACCGGCCGCACGGGCACGAGGCCCAGCTGGCGCGCCGGCGCCAGAGCAGCTCGCGCTGAMSSPSSSRTMRGSALSSVTDALSTGTQLVVGRYRIDAPSGAVWWSDEVYRMYGCEPGDITPTVDLIRARTHPDDRARVSRTAIVSLRAGRPFSSAHRIVDPHGKARTVVVTGRGQVADDGTIAQVGGYVLDVSPVARETLERETHRAVGRAMVSAAAVEQVKGSLMVVRGVDESAAAEQISEVAARAGIPVQAAAAQVVAALRSATGEPDDRLRTALESVHSVDRPHGHEAQLARRRQSSSRNANANANANA
AK018_03162843rpsC_1COG009230S ribosomal protein S3GTGGGGCAGAAGATTCACCCGCACGGGTACCGCCTCGGCATCACCACCGACCACCGGTCGCGCTGGTTCGCCGACAGCACCAAGCCTGGTCAGCGGTACCGCGACTACGTCCGCGAGGACGTCGAGATCCGCAAGCTCATGAGCACCGGCCTCGAGCGGGCCGGCATCTCCAAGGTCGAGATCGAGCGCACCCGCGACCGCGTCCGCGTGGACATCCACACGGCGCGTCCGGGCATCGTCATCGGCCGGCGCGGTGCCGAGGCCGACCGCATCCGCGGCCAGCTCGAGAAGCTCACGGGCAAGCAGGTCCAGCTCAACATCCTCGAGGTCAAGAACGCCGAGATCGACGCGCAGCTGGTCGCGCAGGGCATCGCCGAGCAGCTCGCGAGCCGCGTCTCCTTCCGTCGCGCCATGCGCAAGGGCATCCAGTCCGCGCAGCGCGCCGGCGCGAAGGGCATCCGCGTGCAGGTCGCGGGTCGTCTCGGCGGCGCCGAGATGAGCCGGTCGGAGTTCTACCGCGAGGGTCGTGTGCCGCTGCACACGCTGCGCGCGAACATCGACTACGGCTTCTTCGAGGCCCGGACGACGTTCGGCCGCATCGGCGTGAAGGTCTGGGTCTACAAGGGCGACCTCACCGAGAAGGAGTTCGCCGCGCAGCAGGCCGCCGCCGCTCCCCGTCAGGGCCGTGGTGGCCGTGGTGGCGAGCGTCGCGGTCCGCGTCGCAACGACCGCAACGAGCGTCAGTCGCAGCCGAAGCAGTCCACTGCCGAGGCGCCCGCAGCGTCCGACGCGCCGGCCCCGGCCGACCAGGCCGCGGCCCCCGAGTCCGGAACGGAGGCCTGAMGQKIHPHGYRLGITTDHRSRWFADSTKPGQRYRDYVREDVEIRKLMSTGLERAGISKVEIERTRDRVRVDIHTARPGIVIGRRGAEADRIRGQLEKLTGKQVQLNILEVKNAEIDAQLVAQGIAEQLASRVSFRRAMRKGIQSAQRAGAKGIRVQVAGRLGGAEMSRSEFYREGRVPLHTLRANIDYGFFEARTTFGRIGVKVWVYKGDLTEKEFAAQQAAAAPRQGRGGRGGERRGPRRNDRNERQSQPKQSTAEAPAASDAPAPADQAAAPESGTEANANANANANA
AK018_03163369rplV_1COG009150S ribosomal protein L22ATGGAAGCCAAGGCGCAGGCGCGGTTCGTCCGTGTCACGCCCCAGAAGGCCCGGCGCGTCGTGGACCTCATCCGTGGCAAGCAGGCCGCCGAGGCCGTCGCGGTGCTGAAGTTCGCGCCGCAGGCCGCGAGCGAGCCGGTCCGCAAGGTCGTCGAGTCCGCTGTGGCCAACGCACGGGTGAAGGCCGACCGCGCGAGCGAGCGCTTCGACGAGACCGACTACGTGGTCTCCGAGGTGTACGTGGACGAGGGCCCGACCCTCAAGCGGTTCCGTCCGCGTGCTCAGGGGCGTGCCAGCCGGATCCTCAAGCGCACCAGCCACATCACCGTGGTCGTCGCACCGCGTGAGCAGAAGGAAGGGGCCCGATAGMEAKAQARFVRVTPQKARRVVDLIRGKQAAEAVAVLKFAPQAASEPVRKVVESAVANARVKADRASERFDETDYVVSEVYVDEGPTLKRFRPRAQGRASRILKRTSHITVVVAPREQKEGARNANANANANA
AK018_03164282rpsS_1COG018530S ribosomal protein S19ATGCCTCGTAGCCTGAAGAAGGGCCCCTTCGTCGACGACCACCTGCAGAAGAAGGTGGACGTCCAGAACGAGAAGGGGACCAAGAACGTCATCAAGACCTGGTCCCGTCGGTCGGTCATCACGCCCGACTTCCTCGGTCACACCTTCGCCGTGCACGACGGCCGCAAGCACGTCCCGGTCTTCGTGACCGAGGCGATGGTCGGCCACAAGCTGGGCGAGTTCGCCCCCACGCGGACTTTCCGCGGCCACGTGAAGGACGACCGGAAGGGCCGTCGCCGCTGAMPRSLKKGPFVDDHLQKKVDVQNEKGTKNVIKTWSRRSVITPDFLGHTFAVHDGRKHVPVFVTEAMVGHKLGEFAPTRTFRGHVKDDRKGRRRNANANANANA
AK018_03165837rplB_1COG009050S ribosomal protein L2ATGGGAATCCGTAAGTACAAGCCGACGACGCCCGGCCGCCGCGGCTCCAGCGTCGCCGACTTCGTCGAGGTCACGCGCTCGGAGCCGGAGAAGTCGCTGGTCCGCCCGCTGTCCAAGAGCGGCGGCCGCAACAGCTCCGGCCGGATCACCACCCGGCACAAGGGTGGCGGTCACAAGCGCGCCTACCGCGTGATCGACTTCCGTCGTCACGACAAGGACGGCGTGCCGGCCAAGGTCGCGCACATCGAGTACGACCCGAACCGCACGGCGCGCATCGCGCTGCTGCACTACGCGGACGGCACCAAGCGCTACATCATCGCGCCGAACAAGCTGTCGCAGGGCGACACCGTCGAGGCCGGTCCCGGCGCCGACATCAAGCCCGGCAACAACCTGCCGCTGCGCAACATCCCGACGGGTACCGTCATCCACGCCGTCGAGCTCCGCCCCGGTGGCGGCGCCAAGATCGCCCGTTCCGCGGGCGCCTCGGTGCAGCTCGTCGCGAAGGACGGCCCCTACGCGCAGCTGCGCATGCCGTCCGGCGAGATCCGCAACGTCGACCTGCGCTGCCGCGCCACGGTCGGCTGGGTCGGCAACGCCGAGCAGTCGAACATCAGCTGGGGCAAGGCCGGCCGCATGCGCTGGAAGGGCGTCCGCCCGACCGTGCGCGGTGTGGTCATGAACCCGGTCGACCACCCGCACGGTGGTGGTGAGGGCAAGACCTCCGGTGGTCGCCACCCGGTCAGCCCGTGGGGCCAGCCCGAGGGCCGGACCCGCCGTCCGAACAAGTCCAGCGACCGGATGATCGTCCGCCGTCGTCGCACCGGCAAGAAGCGCTGAMGIRKYKPTTPGRRGSSVADFVEVTRSEPEKSLVRPLSKSGGRNSSGRITTRHKGGGHKRAYRVIDFRRHDKDGVPAKVAHIEYDPNRTARIALLHYADGTKRYIIAPNKLSQGDTVEAGPGADIKPGNNLPLRNIPTGTVIHAVELRPGGGAKIARSAGASVQLVAKDGPYAQLRMPSGEIRNVDLRCRATVGWVGNAEQSNISWGKAGRMRWKGVRPTVRGVVMNPVDHPHGGGEGKTSGGRHPVSPWGQPEGRTRRPNKSSDRMIVRRRRTGKKRNANANANANA
AK018_03166303rplW_1COG008950S ribosomal protein L23GTGACCGCCGTGACGAAGGACCCGCGCGACATCCTGATCGCGCCGGTCGTCTCCGAGAAGTCCTACAACCTCCTCGACGAGGGCAAGTACACCTTCGTCGTGGCCCCGGACGCCAACAAGACCGAGATCAAGATCGCGGTCGAGCAGGTGTTCGGCGTCAAGGTCGCCTCGGTGAACACGATCAACCGCAAGGGCAAGGCGCGTCGGACGCGCTACGGCCTGGGCAAGCGCAAGGACACGAAGCGTGCGATCGTCACCCTCCGCGAGGGTTCGATCGACATCTTCGGCGGTCCGGTCGGCTGAMTAVTKDPRDILIAPVVSEKSYNLLDEGKYTFVVAPDANKTEIKIAVEQVFGVKVASVNTINRKGKARRTRYGLGKRKDTKRAIVTLREGSIDIFGGPVGNANANANANA
AK018_03167699rplD_1COG008850S ribosomal protein L4ATGGCTAACCTGACCGTCGACGTGCTCGACGCCTCGGGCAAGAAGGCCGGCACCGCCGAGCTCCCGGCCGAGGTGTTCGACGTCGCCACGAACGTCCCCCTGATCCACCAGGTGGTCGTCGCCCAGCGCGCTGCGTCGCGCCAGGGCACCGCGGCCACCAAGACCCGCGCCGACGTGCGCGGTGGTGGCAAGAAGCCGTACAAGCAGAAGGGCACCGGCCGCGCCCGTCAGGGTTCGACCCGCGCCCCGCAGTTCGCCGGTGGTGGGACCGTCCACGGCCCGCAGCCGCGCTCGTACGACCAGCGCACCCCGAAGAAGATGAAGGCCGCCGCCCTGCGTGGCGCCCTGTCGGACCGGGCGCGCGCCGGCCGCGTGCACGTCGTGTCGGGCTTCGGGCTCGACGGCGTGCCGTCGACCAAGACCGCTCTCGGCACGCTCTCCGTGCTGACCGACAGCACCCACGTGCTGGTCGTGACCGAGCGCTCGGACGAGGTGACGATCAAGTCGCTCCGCAACGTCGAGCAGGTCCACCTGCTGACCGCGGACCAGCTGAACACCTACGACGTGCTCGTCTCCGACGACGTCGTCTTCACGCAGGGCGCGCTGGACGCGTTCCTGGCGGGCCCGGCCACGGGCAAGTCCGTGAAGGCCGTCGCCACCGAGGGTGAAGCAGCGACCGCCAAGGAGGCCGCCAAGTGAMANLTVDVLDASGKKAGTAELPAEVFDVATNVPLIHQVVVAQRAASRQGTAATKTRADVRGGGKKPYKQKGTGRARQGSTRAPQFAGGGTVHGPQPRSYDQRTPKKMKAAALRGALSDRARAGRVHVVSGFGLDGVPSTKTALGTLSVLTDSTHVLVVTERSDEVTIKSLRNVEQVHLLTADQLNTYDVLVSDDVVFTQGALDAFLAGPATGKSVKAVATEGEAATAKEAAKNANANANANA
AK018_03168654rplC_1COG008750S ribosomal protein L3ATGACCAACCAGCAGAAGAACGTGACCGCGGTGCTCGGCACCAAGCTCGGCATGACGCAGGTCTGGGACGAGTCCGGCAAGGTCGTCCCCGTCACCGTCGTGTCCGTCCCCACCAACGTGGTGACGCAGGTCCGCGACGCAGAGGTCGACGGCTACGCAGCCGTCCAGCTCGCCGCCGGCCAGATCGACCCGCGCAAGGTCACCAAGCCGCTCAAGGGCCACTTCGAGAAGGCCGGCGTCACGCCGCGCCGTCACGTGGCCGAGATCCGTACCGACGACTCCGGCGAGTACACGCTCGGCCAGGAGATCACCGCCGAGGCCTTCGAGGCCGGTGCCGTGGTCGACGTCGTCGGTACCACCAAGGGCAAGGGCACCGCCGGTGTGATGAAGCGTCACGGCTTCGCCGGCGTCGGAGCCTCCCACGGTGCGCACCGCAACCACCGCAAGCCGGGCTCGATCGGCGGCGCTTCGACGCCGTCGCGCGTCTTCCGCGGCATGCGCATGGCCGGTCGCATGGGCAACGCCCGCAAGACCGTCCAGAACCTGACCGTCCACGCGGTCGACGCGGAGAAGGGTCTGCTGCTCGTCAAGGGCGCCGTCCCGGGCCCCAAGGGCGGCATCGTCCTCGTCCGTACCGCCGCGAAGGGAGCCTGAMTNQQKNVTAVLGTKLGMTQVWDESGKVVPVTVVSVPTNVVTQVRDAEVDGYAAVQLAAGQIDPRKVTKPLKGHFEKAGVTPRRHVAEIRTDDSGEYTLGQEITAEAFEAGAVVDVVGTTKGKGTAGVMKRHGFAGVGASHGAHRNHRKPGSIGGASTPSRVFRGMRMAGRMGNARKTVQNLTVHAVDAEKGLLLVKGAVPGPKGGIVLVRTAAKGANANANANANA
AK018_03169309rpsJ_1COG005130S ribosomal protein S10ATGGCGGGACAGAAGATCCGCATCCGGCTCAAGTCCTACGACCACGAGGTCATCGACAGCTCGGCGCGCAAGATCGTCGACACGGTGACCCGCGCTGGTGCGACGGTCGTGGGCCCGGTGCCGCTGCCGACGGAGAAGAATGTCTTCACCGTCATCCGGTCGCCTCACAAGTACAAGGACAGCCGTGAGCACTTCGAGATGCGTACTCACAAGCGGCTGATCGACATCATCGACCCCACGCCGAAGGCCGTCGACTCGCTGATGCGCATCGACCTGCCGGCCGACGTGAACATCGAGATCAAGCTCTGAMAGQKIRIRLKSYDHEVIDSSARKIVDTVTRAGATVVGPVPLPTEKNVFTVIRSPHKYKDSREHFEMRTHKRLIDIIDPTPKAVDSLMRIDLPADVNIEIKLPGPT0015245_5632DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
AK018_031701197tuf_1COG0050Elongation factor TuGTGGCTAAGGCCAAGTTCGAGCGGACCAAGCCGCACGTCAACATCGGCACGATCGGTCACGTCGACCACGGTAAGACGACGCTGACCGCCGCGATCTCGAAGACCCTTGCGGAGACCTACCCGGACCTGCCGGCGAACACTCTCAAGAACTTCGACGAGATCGACGCCGCGCCGGAGGAGAAGCAGCGCGGTATCACGATCAACATCGCGCACATCGAGTACGAGACGCCGAACCGTCACTACGCGCACGTCGACGCTCCCGGTCACGCCGACTACATCAAGAACATGATCACCGGTGCCGCCCAGATGGACGGCTCGATCCTGGTGGTCGCCGCGACCGACGGCCCGATGGCCCAGACGCGCGAGCACGTCCTCCTGGCCCGCCAGGTGGGCGTCCCCTACCTGCTCGTGGCGCTGAACAAGGCCGACATGGTCGACGACGAGGAGATCCTCGAGCTCGTCGAGATGGAGGTCCGCGAGCTGCTGTCGTCGCAGGACTTCGACGGCGACAACGCCCCGGTGATCCGCGTCTCCGGTCTGAAGGCCCTCGAGGGTGACCCCGAGTGGACCAAGAAGATCCTGGAGCTCATGGAGGCCGTGGACGAGAACGTCCCGGAGCCGCAGCGCGACCTCGACAAGCCGTTCCTCATGCCGGTCGAGGACGTCTTCACCATCACCGGTCGCGGCACCGTCGTCACCGGCAAGGTGGAGCGTGGCGCCCTCGACATCAACTCCGAGGTCGAGATCGTCGGCATCCGTGCCGCCCAGAAGACGACCGTCACCGGTATCGAGACCTTCCACAAGCAGATGGACCAGGCCCAGGCGGGCGACAACACCGGTCTGCTGCTGCGCGGTCTCAAGCGTGAGGACGTCGAGCGCGGCCAGGTCGTCGTGAAGCCGGGTTCGATCACCCCGCACACCAACTTCGAGGCCCAGGTCTACATCCTGGCCAAGGACGAGGGCGGCCGTCACAACCCGTTCTACTCGAACTACCGTCCGCAGTTCTACTTCCGGACCACGGACGTCACCGGCGTCATCACGCTGCCCGAGGGCACCGAGATGGTCATGCCCGGCGACAACACCGAGATGTCGGTCGAGCTGATCCAGCCGATCGCCATGGAGGAGGGCCTCGGCTTCGCCATCCGTGAGGGTGGCCGCACGGTCGGTTCCGGCCGCGTCACCAAGATCACCAAGTGAMAKAKFERTKPHVNIGTIGHVDHGKTTLTAAISKTLAETYPDLPANTLKNFDEIDAAPEEKQRGITINIAHIEYETPNRHYAHVDAPGHADYIKNMITGAAQMDGSILVVAATDGPMAQTREHVLLARQVGVPYLLVALNKADMVDDEEILELVEMEVRELLSSQDFDGDNAPVIRVSGLKALEGDPEWTKKILELMEAVDENVPEPQRDLDKPFLMPVEDVFTITGRGTVVTGKVERGALDINSEVEIVGIRAAQKTTVTGIETFHKQMDQAQAGDNTGLLLRGLKREDVERGQVVVKPGSITPHTNFEAQVYILAKDEGGRHNPFYSNYRPQFYFRTTDVTGVITLPEGTEMVMPGDNTEMSVELIQPIAMEEGLGFAIREGGRTVGSGRVTKITKPGPT0015245_1653DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
AK018_031712103fusA_1COG0480Elongation factor GGTGGCACTCGACGTGCTGACCGACCTGAAGAAGGTCCGCAACATCGGCATCATGGCCCACATCGATGCCGGCAAGACCACCACCACCGAGCGCATCCTGTACTACACGGGTGTGAACTACAAGATCGGTGAGACGCACGACGGCGCGTCGACGATGGACTGGATGGAGCAGGAGCAGGAGCGCGGCATCACGATCACGTCCGCCGCGACGACCTGCTACTGGAACGACAACCAGATCAACATCATCGACACCCCGGGGCACGTCGACTTCACGGTCGAGGTGGAGCGCTCGCTGCGCGTCCTCGACGGTGCCGTCGCCGTGTTCGACGGCAAGGAGGGCGTCGAGCCCCAGTCGGAGACCGTCTGGCGTCAGGCCGACAAGTACGACGTCCCGCGCATCTGCTTCGTCAACAAGATGGACAAGCTGGGTGCCGACTTCTACTTCACGGTCAAGACGATCGTCGAGCGCCTCAAGGCCAAGCCGCTGGTCATCCAGCTGCCGATCGGCTCCGAGAACGACTTCACCGGCGTCGTCGACCTGCTGAGCATGAAGGCGTTCGTCTGGCACGGCGAGACCAAGCTGGGCGAGACCTACGAGATCGAGGAGATCCCGGCGGACCTGCAGGCCAAGGCCGAGGAGTACCGCAACGAGCTCATCGAGGCCGTGGCCGAGTCCGACGAGGACCTGCTCGAGAAGTACCTCGGTGGCGAGGAGCTCACGGTCGACGAGATCAAGGGCGGCATCCGCAAGCTCACGATCAACTCCGAGGCCTTCCCGGTGCTGTGCGGCTCGGCGTTCAAGAACAAGGGCGTCCAGCCCATGCTCGACGCCGTGATCGACTACCTGCCCTCCCCGCTCGACGTCCCGGCCGTCGAGGGTCACGACGTCAAGGACGAGGAGAAGGTCATCGAGCGTCACTCGGACGCCACGGAGCCGTTCTCGGCCCTCGCGTTCAAGGTCGCCGTGCACCCGTTCTTCGGCAAGCTCACCTACGTCCGGGTCTACTCCGGCAAGGTCGAGACCGGCGCCGCGGTGCTCAACACCACCAAGGGCAAGAAGGAGCGCGTCGGCAAGCTGTTCCAGATGCACTCCAACAAGGAGAACCCGGTCCCCGAGGCGCAGGCCGGCCACATCTACGCGTTCATCGGGCTGAAGGACGTCACCACGGGTGACACCCTCAGCGCCGCGGACTCCCCGGTCATCCTCGAGTCGATGACCTTCCCGGAGCCCGTGATCGACGTGGCGATCGAGCCGAAGACCAAGGCGGACCAGGAGAAGCTCTCGACGGCGATCCAGAAGCTCGCCGACGAGGACCCGACGTTCCGCGTCAAGCTGGACGAGGAGACCGGCCAGACCGTCATCGGCGGTATGGGCGAGCTCCACCTCGACATCCTGGTCGACCGCATGAAGCGGGAGTTCAAGGTCGAGGCCAACGTCGGCAAGCCGCAGGTCGCGTACCGCGAGACGATCCGTCGCAAGGCGGAGAAGATCGACTACACGCACAAGAAGCAGACCGGTGGCTCGGGTCAGTTCGCGAAGGTCATCGTGAACTTCGAGCCGCTGGAGACCACCGAGGGCGAGCTCTACGAGTTCGCCAACGAGGTCACCGGTGGTCGTGTGCCGCGCGAGTACATCCCGTCGGTGGACGCTGGTATCCAGTCGGCCATGCAGCAGGGTGTCCTGGCGGGCTTCCCGGTCGTCGGCGTCAAGGCCACGCTCCTCGACGGTGCGTACCACGACGTCGACTCCTCGGAGATGGCGTTCAAGATCGCCGGATCCATGGTGTTCAAGGAGGGCGTCAGGCGGGCCGACCCGGTGCTGCTCGAGCCCATCATGGCCGTCGAGGTGCGCACGCCCGAGGAGTACATGGGCGACGTCATCGGCGACATCAACTCGCGGCGTGGGCTGATCCAGTCCATGGAGGACGCCACCGGCGTCAAGGTCGTCAAGGCCCAGGTGCCGTTGAGCGAGATGTTCGGGTACATCGGTGACCTGCGTTCCAAGACGCAGGGCCGCGCGGTGTACTCGATGCAGTTCGACAGCTACGGCGAAGTCCCCAAGGCCGTGGCTGACGAGATCATCCAGAAGACCCGGGGCGAGTGAMALDVLTDLKKVRNIGIMAHIDAGKTTTTERILYYTGVNYKIGETHDGASTMDWMEQEQERGITITSAATTCYWNDNQINIIDTPGHVDFTVEVERSLRVLDGAVAVFDGKEGVEPQSETVWRQADKYDVPRICFVNKMDKLGADFYFTVKTIVERLKAKPLVIQLPIGSENDFTGVVDLLSMKAFVWHGETKLGETYEIEEIPADLQAKAEEYRNELIEAVAESDEDLLEKYLGGEELTVDEIKGGIRKLTINSEAFPVLCGSAFKNKGVQPMLDAVIDYLPSPLDVPAVEGHDVKDEEKVIERHSDATEPFSALAFKVAVHPFFGKLTYVRVYSGKVETGAAVLNTTKGKKERVGKLFQMHSNKENPVPEAQAGHIYAFIGLKDVTTGDTLSAADSPVILESMTFPEPVIDVAIEPKTKADQEKLSTAIQKLADEDPTFRVKLDEETGQTVIGGMGELHLDILVDRMKREFKVEANVGKPQVAYRETIRRKAEKIDYTHKKQTGGSGQFAKVIVNFEPLETTEGELYEFANEVTGGRVPREYIPSVDAGIQSAMQQGVLAGFPVVGVKATLLDGAYHDVDSSEMAFKIAGSMVFKEGVRRADPVLLEPIMAVEVRTPEEYMGDVIGDINSRRGLIQSMEDATGVKVVKAQVPLSEMFGYIGDLRSKTQGRAVYSMQFDSYGEVPKAVADEIIQKTRGENANANANANA
AK018_03172471rpsG_1COG004930S ribosomal protein S7ATGCCCCGCAAGGGTCCGGCCCCCAAGCGGCCGCTCATCGTCGACCCGGTGTACGGGTCCCCCGTCGTGACGCAGCTCATCAACAAGGTGCTGCTCGACGGCAAGAAGTCCACCGCCGAGGCGATCGTCTACGGCGCCCTCGAGGGCGTCCGGGCGAAGACCGACCAGGACCCGGTCGTCGTCCTCAAGCGCGCGCTCGAGAACGTCCGCCCGGCCCTCGAGGTCCGCTCCCGCCGTGTCGGTGGTGCGACCTACCAGGTGCCGGTCGAGGTGCGCCCGTCGCGCTCGACGACCCTCGCGCTGCGCTGGCTCACCGACTTCTCGCGGGCCCGCCGCGAGAAGACGATGACCGAGCGGCTCATGAACGAGATCCTCGACGCCTCGAACGGTCTCGGTGCCGCGGTCAAGCGCCGCGAGGACATGCACAAGATGGCCGAGTCCAACAAGGCCTTCGCGCACTACCGCTGGTGAMPRKGPAPKRPLIVDPVYGSPVVTQLINKVLLDGKKSTAEAIVYGALEGVRAKTDQDPVVVLKRALENVRPALEVRSRRVGGATYQVPVEVRPSRSTTLALRWLTDFSRARREKTMTERLMNEILDASNGLGAAVKRREDMHKMAESNKAFAHYRWNANANANANA
AK018_03173375rpsL_130S ribosomal protein S12GTGCCTACGATCCAGCAGCTCGTCCGCAAGGGCCGGACCTCGAAGGCCGGGAAGTCGAAGACTCCGGCGCTCAAGGGTTCCCCGCAGCGGCGCGGCGTGTGCACCCGTGTGTACACCACCACCCCCAAGAAGCCGAACTCGGCGCTCCGCAAGGTCGCGCGTGTGAAGCTCTCCTCCGGTATCGAGGTGACCGCCTACATCCCCGGTGTGGGCCACAACCTCCAGGAGCACTCGATCGTGCTCGTCCGCGGCGGTCGTGTGAAGGACCTGCCCGGTGTCCGGTACAAGATCGTGCGCGGCGCCCTCGACACCCAGGGTGTCAAGGGCCGCCAGCAGGCGCGTTCCCGGTACGGCGCGAAGAAGGAGAAGGCCTGAMPTIQQLVRKGRTSKAGKSKTPALKGSPQRRGVCTRVYTTTPKKPNSALRKVARVKLSSGIEVTAYIPGVGHNLQEHSIVLVRGGRVKDLPGVRYKIVRGALDTQGVKGRQQARSRYGAKKEKANANANANANA
AK018_031743882rpoC_1COG0086DNA-directed RNA polymerase subunit beta'TTGCTCGACGTCAACGTCTTCGACGAGCTGCGCATCGGCCTGGCCACGGCCGAGGACATCCGTTCCTGGTCGCACGGTGAGGTGAAGAAGCCCGAGACCATCAACTACCGCACCCTCAAGCCCGAGAAGGACGGACTCTTCTGCGAGAAGATCTTCGGTCCGACCCGGGACTGGGAGTGCTACTGCGGCAAGTACAAGCGGGTGCGCTTCAAGGGCATCATCTGCGAGCGCTGCGGCGTGGAGGTCACCCGCTCCAAGGTGCGCCGTGAGCGCATGGGCCACATCGAGTTGGCCGCCCCGGTCACGCACATCTGGTTCTTCAAGGGTGTGCCGTCCCGCCTCGGTTACCTGCTCGACCTCGCGCCGAAGGACCTGGAGAAGGTCATCTACTTCGCGGCCTACATGATCACGTGGGTCGACGACGAGGCGCGCCAGGAAGACCTCCCCAACCTCCAGAACGAGATCGACCTGGAGAAGAAGGAGATCACCGACCGCCGCGACAACGACATCAACGCCCGCGCCACGCGGCTCGAGGCCGACCTGGCCGAGCTCGAGGCCGAGGGTGCCAAGGCCGACGCGCGCCGCAAGGTGCGCGACTCGGCCGAGCGGGAGATGGCCCAGCTGCGCAAGCGCGCCGACCAGGACCTGGACCGCCTCGAGCAGGTCTGGGACCGGTTCAAGAACCTCAAGGTCGCCGACCTCGAGGGCGACGAGATGCTGTACCGCACTCTCGTCGACCGCTACGGCACCTACTTCGAGGGCTCGATGGGCGCCGACGCGATCCAGAAGCGCCTCGAGAGCTTCGACCTGGACGCCGAGGCCGAGGCGCTGCGCGAGATCATCCGCACCGGCAAGGGCCAGCGCAAGACCCGTGCCCTGAAGCGGCTCAAGGTCGTCAACGCGTTCCTGACGACGACGAACTCGCCGACGGCCATGGTGCTGGACGCGGTGCCGGTCATCCCGCCGGACCTGCGCCCGATGGTGCAGCTCGACGGCGGCCGCTTCGCGACGTCGGACCTGAACGACCTGTACCGCCGCGTCATCAACCGCAACAACCGCCTCAAGCGGCTGCTGGACCTGGGCGCGCCGGAGATCATCGTCAACAACGAGAAGCGGATGCTGCAGGAGGCCGTCGACTCGCTGTTCGACAACGGCCGCCGCGGCCGTCCGGTCACCGGGCCGGGCAACCGTCCGCTGAAGTCGATCTCCGACATGCTCAAGGGCAAGCAGGGCCGGTTCCGCCAGAACCTGCTCGGCAAGCGCGTCGACTACTCGGGCCGTTCGGTCATCGTGGTCGGTCCGCAGCTCAAGCTGCACCAGTGCGGTCTGCCCAAGCAGATGGCGCTGGAGCTGTTCAAGCCGTTCGTCATGAAGCGGCTCGTCGAGCTCAACCACGCGCAGAACATCAAGTCCGCCAAGCGGATGGTCGAGCGCACCCGGCCCGTGGTGTGGGACGTCCTCGAAGAGGTCATCACCGAGCACCCGGTGCTGCTCAACCGTGCGCCCACCCTGCACCGCCTGGGCATCCAGGCGTTCGAGCCGCAGCTCGTCGAGGGCAAGGCCATCCACCTGCACCCGCTCGTGTGCGGCGCGTTCAACGCCGACTTCGACGGTGACCAGATGGCGGTCCACCTGCCCCTGAGCGCGGAGGCGCAGGCCGAGGCCCGCATCCTGATGCTCTCGAGCAACAACATCCTCAAGCCGTCGGACGGCCGTCCGGTGACCATGCCCTCGCAGGACATGATCATCGGTCTGCACCACCTGACGGCGGAGCGTCCCGGCGCCCAGGGCGAGGGTCGCGTGTTCGGCACGCAGGCCGAGGCCATCATGGCGTTCGACCGCGGCGAGCTGGACATCAACGCCACGATCAAGATGCGCATGTCCGACCTCGTGCCGCCGCTGCGCGGCTTCGAGGCGCCCGAGGGCTGGGAGCCCGGGCAGCAGCTGCTGTTCGAGACCACCCTGGGCCGCACCCTGTTCAACGAGGCGCTGCCGACCGACTACCCGTTCCAGAACGAGGTCGTCGGCAAGAAGGAGCTCTCGGCGATCGTCAACGACCTCGCCGAGCGGTACCCGAAGGTCGACGTCGCCACGTCGCTGGACGCTCTCAAGGACGCCGGCTACCGCTGGGCGACCCGCTCGGGCGTGACCATCGCGATCTCCGACGTCGCCATGCCGGTGAACAAGGACGAGATCCTCGACGAGCACGAGGCCCGCGCCCTGAAGGTCCAGGGCCAGTACGAGACCGGTCTGATCACCGACGACGAGCGCCGCCAGGAGCTCATCGAGATCTGGACGCAGGCCACGGACAAGATCGCTGCGGCGATGCGTGACAACCTCGAGAACGACCAGCGGAACACGCTGTACCGCATGGTGTCGTCGGGTGCGCGCGGTAACTGGATGCAGGTCCGTCAGATCGCCGGTATGCGCGGTCTCGTGGCGAACCCGAAGGGCGAGATCATCCCGCGCCCGATCAAGTCCAACTACCGTGAGGGCCTGTCCGTCCTCGAGTACTTCATCGCCTCGCACGGTGCCCGCAAGGGTCTGGCCGACACGGCGCTGCGTACCGCGGACTCCGGCTACCTGACGCGTCGTCTCGTCGACGTCTCGCAGGACGTCATCATCCGCGAGGAGGACTGCGGGACCGAGCGCGGCCTGCCGCTGCCGGTCGCCGAGCGCATCGGCGACCAGCTCGTGCCGCACGACCGCGTGGAGACCTCGATCTACTCGCGCACGTTCGCCACGGACGTCGTCGGCCCCGACGGCACGGTGCTGGCCGAGGCCGGCTCGGACGCGGGCGACCTGGTGATCAACGAGGTCATCGCGGCCGGGATCGAGGAGGTCAAGGTCCGTTCGGTCCTGACCTGCGAGTCGCGCGTCGGGACCTGCGCCAAGTGCTACGGCCGCTCCCTGGCCACCGGCAAGCTGGTGGACATCGGCGAGGCCGTCGGCATCATCGCCGCGCAGTCCATCGGTGAGCCGGGCACGCAGCTGACGATGCGGACCTTCCACACCGGTGGTGTCGCCTCCGCGGAGGACATCACCCAGGGTCTGCCCCGTGTGACCGAGCTCTTCGAGGCCCGTACCCCGAAGGGTGAGGCTCCGATCGCGGAGTACACCGGCCGGGTGACCATCGAGGACTCCGACCGCACGCGGCACATCGTGCTGACCCCGGACGACGGCGGCGAGGAGATCAAGTACCCGGTCACCAAGCGTGCCCGGCTCCTGATCGCCGACGGCGACCACGTGGCGGTCGGCACCCAGCTCGTCCAGGGCGCCGTCGACCCGAAGAAGGTGCTGCGCATCCTCGGCCCGCGCGCTGCCCAGAAGCAGCTCGTGGACGCGGTGCAGGAGACCTACCGCTCGCAGGGCGTGGACATCCACGACAAGCACATCGAAGTCATCGTGCGCCAGATGCTGCGCCGCGTGACCGTGCTCGACGCCGGTGACGCCGACCTGCTGCCGGGTGAGCTCTCCGAGCGCACGCGGTTCGAGGACGCCAACCGCAAGGCCGTGGCGGAGGGTGGCCAGCCGGCCGCCGGCCGTCCCGAGCTGATGGGTATCACCAAGGCCTCGCTCGCCACCGACTCGTGGCTCTCGGCCGCCTCCTTCCAGGAGACGACCCGGGTGCTCACCGAGGCGGCGATGAGCGGCCGGCGCGACCCGCTGCTCGGCCTCAAGGAGAACGTCATCATCGGTAAGCTCATCCCGGCCGGCACCGGCCTGGCGCGCTACCGGAACATCGACGTGGAGCCGACGGAGCAGGCCAAGGCGGAGCTCTACCCGAGCTTCGGCTACGACGAGATCGACTTCCCGACGCTCGGCATGGGCTCGGGCGAGGCGATCCCGCTGGAGGACCTGGACTTCGGCGACTTCCGCTGAMLDVNVFDELRIGLATAEDIRSWSHGEVKKPETINYRTLKPEKDGLFCEKIFGPTRDWECYCGKYKRVRFKGIICERCGVEVTRSKVRRERMGHIELAAPVTHIWFFKGVPSRLGYLLDLAPKDLEKVIYFAAYMITWVDDEARQEDLPNLQNEIDLEKKEITDRRDNDINARATRLEADLAELEAEGAKADARRKVRDSAEREMAQLRKRADQDLDRLEQVWDRFKNLKVADLEGDEMLYRTLVDRYGTYFEGSMGADAIQKRLESFDLDAEAEALREIIRTGKGQRKTRALKRLKVVNAFLTTTNSPTAMVLDAVPVIPPDLRPMVQLDGGRFATSDLNDLYRRVINRNNRLKRLLDLGAPEIIVNNEKRMLQEAVDSLFDNGRRGRPVTGPGNRPLKSISDMLKGKQGRFRQNLLGKRVDYSGRSVIVVGPQLKLHQCGLPKQMALELFKPFVMKRLVELNHAQNIKSAKRMVERTRPVVWDVLEEVITEHPVLLNRAPTLHRLGIQAFEPQLVEGKAIHLHPLVCGAFNADFDGDQMAVHLPLSAEAQAEARILMLSSNNILKPSDGRPVTMPSQDMIIGLHHLTAERPGAQGEGRVFGTQAEAIMAFDRGELDINATIKMRMSDLVPPLRGFEAPEGWEPGQQLLFETTLGRTLFNEALPTDYPFQNEVVGKKELSAIVNDLAERYPKVDVATSLDALKDAGYRWATRSGVTIAISDVAMPVNKDEILDEHEARALKVQGQYETGLITDDERRQELIEIWTQATDKIAAAMRDNLENDQRNTLYRMVSSGARGNWMQVRQIAGMRGLVANPKGEIIPRPIKSNYREGLSVLEYFIASHGARKGLADTALRTADSGYLTRRLVDVSQDVIIREEDCGTERGLPLPVAERIGDQLVPHDRVETSIYSRTFATDVVGPDGTVLAEAGSDAGDLVINEVIAAGIEEVKVRSVLTCESRVGTCAKCYGRSLATGKLVDIGEAVGIIAAQSIGEPGTQLTMRTFHTGGVASAEDITQGLPRVTELFEARTPKGEAPIAEYTGRVTIEDSDRTRHIVLTPDDGGEEIKYPVTKRARLLIADGDHVAVGTQLVQGAVDPKKVLRILGPRAAQKQLVDAVQETYRSQGVDIHDKHIEVIVRQMLRRVTVLDAGDADLLPGELSERTRFEDANRKAVAEGGQPAAGRPELMGITKASLATDSWLSAASFQETTRVLTEAAMSGRRDPLLGLKENVIIGKLIPAGTGLARYRNIDVEPTEQAKAELYPSFGYDEIDFPTLGMGSGEAIPLEDLDFGDFRNANANANANA
AK018_031753513rpoB_1COG0085DNA-directed RNA polymerase subunit betaTTGGCTGCCTCGCGCACCCCTTCTGCTCCGTCCGCCGACGCCATCGCGAACCGCACCGCTTCCCGCCGCGTCTCCTTCGCCCGGATCCACGAGCCGCTCCAGGCACCCGACCTCCTCGGGCTGCAGGTCGAGAGCTTCGACTGGCTCCTCGGCAACGAGGCCTGGCAGGCCCGCATCGAGGCCGCCCTCGAGGCCGGCCGCCACGACGTCCCCGAGGCCTCGGGCCTGGAGGAGATCTTCGAGGAGATCTCCCCGATCGAGGACTTCGGCCAGTCGATGTCGCTCTCGTTCTCGAACCACCGCTTCGAGCCCCCGAAGTACACGGTGGACGAGTGCAAGGAGAAGGACTTCACCTACGCGGCCCCGCTGTTCGTCACGGCGGAGTTCGTCAACTACACCACCGGTGAGATCAAGAGCCAGACGGTCTTCATGGGCGACTTCCCGCTCATGACCGACCGCGGCACCTTCGTCATCAACGGCACCGAGCGCGTCGTCGTCTCGCAGCTCGTGCGGTCCCCGGGTGTCTACTTCGAGCGCACCCCCGACAAGACCTCCGACAAGGACGTCTTCTCGGCGAAGATCATCCCGTCGCGCGGCGCGTGGCTCGAGTTCGAGATCGACAAGCGCGACGCCGTCGGCGTGCGCGTCGACCGCAAGCGCAAGCAGCCCGTCACCGTGCTGCTCAAGGCGCTCGGCCTCACCGAGTCCGAGATCCGCGAGGAGTTCGCCGACTTCCCGACGATCCTCGACACCCTGGAGAAGGACCACGTCCACACCCAGGACGAGGCCCTCGTGGACCTGTACCGCAAGATCCGTCCGGGCGAGCCGCCCACGGTCGAGGCGGGTCGCGCGCTGGTGGAGAACTTCTACTTCAACCCCAAGCGCTACGACCTGGCGAAGGTCGGCCGCTACAAGCTGAACAAGAAGGTCGGCGTCACCGCCGAGCTCAGCGACAGCACCCTGTCGGTGTCCGACGTCGTGGCCACCATCAAGTACCTGGCCGCGCTGCACGCCGACAAGACGTCCATCCCGGGCACCCGCGACGGCGAGCCGTACGACGTGCGCGTCGAGACCGACGACATCGACCACTTCGGCAACCGCCGTATCCGTGCCGTCGGCGAGCTCATCCAGAACCAGGTGCGCACCGGCCTGTCCCGCATGGAGCGCGTCGTGCGCGAGCGGATGACGACCCAGGACGTCGAGGCGATCACGCCGCAGACCCTGATCAACATCCGCCCGGTCGTGGCCTCGATCCGTGAGTTCTTCGGCACCTCGCAGCTGTCGCAGTTCATGGACCAGAACAACCCGCTGGCCGGCCTGACGCACAAGCGTCGCCTGTCCGCGCTCGGCCCGGGCGGTCTGTCCCGCGACCGTGCCGGCATGGAGGTCCGTGACGTCCACCCGTCGCACTACGGTCGCATGTGCCCGATCGAGACGCCGGAAGGCCCGAACATCGGTCTGATCGGTTCGCTCGCGTCGTTCGGCCGCATCAACCCGTTCGGCTTCATCGAGACCCCGTACCGCAAGGTGCTCGCGGGCAAGGTGACCGACGAGGTCGTCTACCTCACGGCCGACGACGAGGACTCCTACGTCATCGCCCAGGCGAACACCACGCTGAACGAGGACGGCTCCTTCGCCAACGACCGCGTGCTCGTGCGCACCAAGGGCGGCGAGACCGACGACGTGCCGGCCTCCGACGTCGACTTCATGGACGTCTCACCGCGCCAGATGGTCTCCGTCGCCACGGCGCTCATCCCGTTCCTCGAGCACGACGACGCCAACCGCGCCCTCATGGGCGCCAACATGCAGCGTCAGGCCGTGCCGCTGGTCCGCTCCGAGGCGCCGCTGGTCGGCACCGGCATGGAGCGGCGCGCGGCGGTCGACGCCGGCGACGTTATCACCGCGGACAAGCCCGGTGTCGTCACGCAGGTCTCGGCCGACCTCATCACGGTCGAGAACGACGACGCGACGACGTCGACGTACCGCGTGGCCAAGTTCCGCCGCTCGAACCAGGGCACCAGCTACAACCAGCGCGTGCTCGCCGAGGCGGGGCAGCGGGTCGAGGTCGGCTCCGTGCTGGCCGACGGCCCGGCGACCGACGAGGGCGACCTCGCGCTCGGCCGCAACCTGCTCGTGGCGTTCATGTCGTGGGAGGGCCACAACTACGAGGACGCGATCATCCTGTCGCAGCGCCTCGTGGAGGACGACGTCCTGTCCTCGATCCACATCGAGGAGCACGAGGTCGACGCCCGCGACACCAAGCTCGGGCCCGAGGAGATCACGCGGGACATCCCGAACGTCTCCGAGGACGTCCTGGCGGACCTCGACGAGCGCGGCATCATCCGCATCGGCGCCGAGGTCGGCGCGGGCGACGTGCTGGTCGGCAAGGTCACCCCGAAGGGTGAGACCGAGCTGACCCCGGAGGAGCGCCTGCTGCGCGCCATCTTCGGCGAGAAGGCCCGCGAGGTGCGCGACACCTCGCTGAAGGTGCCCCACGGCGAGTCCGGCACCGTCATCGGCGTGCGCGAGTTCAACCGGGAGGACGGCGACGAGCTGCCCGCCGGCGTGAACCAGCTGGTGCGCGTCTACATCGCCAACCGCCGCAAGATCACCGTCGGTGACAAGCTCGCCGGCCGTCACGGCAACAAGGGCGTCATCTCCAAGATCCTGCCGCAGGAGGACATGCCGTTCCTGCCGGACGGCACGCCCGTGGACATCATCCTCAACCCGCTCGGCGTGCCCGGCCGCATGAACGTCGGCCAGGTCCTCGAGACGCACCTGGGCTGGGTCGCCAGCCGCGGGTGGGACATCGAGCTGGCCGAGGGCGACGACCTGTCGTGGCGGGACGAGCTGCCCGAGCACGCGCACCGCTCGGAGCCCGGCCGCCCGGTCGCCACGCCGGTGTTCGACGGCCTGGAGGAGCACGAGCTGCGGGGCCTGATCTCGACGACGCTGCCCAACCGCGACGGCGACCGCATGGTCGGCCTCGACGGCAAGGCGGCGCTGTTCGACGGGCGCTCCGGCGAGCCGTTCCCGGACCCGGTCGCGGTCGGCTACATGTACATCCTCAAGCTGCACCACCTGGTCGACGACAAGATTCACGCGCGCTCGACCGGTCCGTACTCGATGATCACCCAGCAGCCGCTGGGCGGTAAGGCGCAGTTCGGCGGTCAGCGGTTCGGTGAGATGGAGGTGTGGGCGCTCGAGGCGTACGGCGCCGCGTACACCCTCCAGGAGCTGCTCACCATCAAGTCCGACGACATCCCCGGCCGCGTCAAGGTCTACGAGGCGATCGTCAAGGGCGAGAACATCCCCGACTCGGGCATCCCGGAGTCGTTCAAGGTGCTCCTCAAGGAGATGCAGTCGCTCTGCCTGAACGTCGAGGTGCTCTCGAGCGACGGTGTCTCCATCGAGATGAAGGAGTCCGACGACGAGGTCTACCGCGCGGCGGAGGAGCTCGGCATCGACCTCTCCCGCCGCCCGAACTCGGCCGCCACCATCGACGAGGTCTGAMAASRTPSAPSADAIANRTASRRVSFARIHEPLQAPDLLGLQVESFDWLLGNEAWQARIEAALEAGRHDVPEASGLEEIFEEISPIEDFGQSMSLSFSNHRFEPPKYTVDECKEKDFTYAAPLFVTAEFVNYTTGEIKSQTVFMGDFPLMTDRGTFVINGTERVVVSQLVRSPGVYFERTPDKTSDKDVFSAKIIPSRGAWLEFEIDKRDAVGVRVDRKRKQPVTVLLKALGLTESEIREEFADFPTILDTLEKDHVHTQDEALVDLYRKIRPGEPPTVEAGRALVENFYFNPKRYDLAKVGRYKLNKKVGVTAELSDSTLSVSDVVATIKYLAALHADKTSIPGTRDGEPYDVRVETDDIDHFGNRRIRAVGELIQNQVRTGLSRMERVVRERMTTQDVEAITPQTLINIRPVVASIREFFGTSQLSQFMDQNNPLAGLTHKRRLSALGPGGLSRDRAGMEVRDVHPSHYGRMCPIETPEGPNIGLIGSLASFGRINPFGFIETPYRKVLAGKVTDEVVYLTADDEDSYVIAQANTTLNEDGSFANDRVLVRTKGGETDDVPASDVDFMDVSPRQMVSVATALIPFLEHDDANRALMGANMQRQAVPLVRSEAPLVGTGMERRAAVDAGDVITADKPGVVTQVSADLITVENDDATTSTYRVAKFRRSNQGTSYNQRVLAEAGQRVEVGSVLADGPATDEGDLALGRNLLVAFMSWEGHNYEDAIILSQRLVEDDVLSSIHIEEHEVDARDTKLGPEEITRDIPNVSEDVLADLDERGIIRIGAEVGAGDVLVGKVTPKGETELTPEERLLRAIFGEKAREVRDTSLKVPHGESGTVIGVREFNREDGDELPAGVNQLVRVYIANRRKITVGDKLAGRHGNKGVISKILPQEDMPFLPDGTPVDIILNPLGVPGRMNVGQVLETHLGWVASRGWDIELAEGDDLSWRDELPEHAHRSEPGRPVATPVFDGLEEHELRGLISTTLPNRDGDRMVGLDGKAALFDGRSGEPFPDPVAVGYMYILKLHHLVDDKIHARSTGPYSMITQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQELLTIKSDDIPGRVKVYEAIVKGENIPDSGIPESFKVLLKEMQSLCLNVEVLSSDGVSIEMKESDDEVYRAAEELGIDLSRRPNSAATIDEVNANANANANA
AK018_03176393rplL_1COG022250S ribosomal protein L7/L12ATGGCGAAGCTCAGCACCGAAGAGCTCCTGTCCGTCTTCGAGGAGCTGACCCTCATCGAGCTCTCCGAGTTCGTGAAGGCCTTCGAGGAGAAGTTCGACGTCACCGCTGCCGCTCCGGCCGCCGTGGCCGTGGCCGGTGGCGCCCCCGCCGGTGGCGGCGAGGCCGAGGCCGCTGAGGAGCAGTCGGAGTTCGACGTCGTCCTCACCGCCGCCGGTGACAAGAAGATCCAGGTCATCAAGGAGGTGCGCGCGCTCACGTCCCTCGGTCTCAAGGAGGCCAAGGACCTGGTCGACGGCGCCCCGAAGCCGGTCCTGGAGGGTGTCGACAAGGAGGCCGCGGACAAGGCCAAGGAGGCCCTCGAGGGCGCCGGCGCGTCCGTCGAGCTCAAGTGAMAKLSTEELLSVFEELTLIELSEFVKAFEEKFDVTAAAPAAVAVAGGAPAGGGEAEAAEEQSEFDVVLTAAGDKKIQVIKEVRALTSLGLKEAKDLVDGAPKPVLEGVDKEAADKAKEALEGAGASVELKNANANANANA
AK018_03177531rplJ_1COG024450S ribosomal protein L10ATGGCGAGGCCGGACAAGGCAGCCGCTGTCGCAGCGATCGCGAACAGGCTTCGCGACTCCAACGCGGCCGTGCTGACCGAGTACCGCGGGCTCTCCGTCTCGCAGCTCCAGGAGCTGCGGCGGTCGCTGCGCGGCAACGCAACCTACGCCGTGGTGAAGAACACGCTGACCACCATCGCGGCCAAGGAAGCCGGTGTCGAGGGTCTCGACGCCGACCTCCAGGGTCCCTCCGCGATCGCGTTCGTGACCGGTGACCCGGTCGAGGCCGCGAAGGGTCTGCGTGACTTCGCCAAGGCGAACCCCGCACTGGTCATCAAGGGCGGTGTCCTTGACGGGAACGCCCTGACCCCTGCGGAGATCACGAAGCTCGCGGACCTCGAGTCCCGCGAGGTTCTGCTGGCCAAGGCGGCCGGCGCGATGAAGGCCAAGATCAGCCAGGCTGCCTACGCCTTCAACGCCAAGCCGACCCAGGTCGCCCGAGTCATCGATGCCCTGCGTCAGAAGCAGGAATCGGCGGGCGCTGCCGCCTGAMARPDKAAAVAAIANRLRDSNAAVLTEYRGLSVSQLQELRRSLRGNATYAVVKNTLTTIAAKEAGVEGLDADLQGPSAIAFVTGDPVEAAKGLRDFAKANPALVIKGGVLDGNALTPAEITKLADLESREVLLAKAAGAMKAKISQAAYAFNAKPTQVARVIDALRQKQESAGAAANANANANANA
AK018_031782592hypothetical proteinGTGGCAGACAGATCGACGTTCGACGAGCGACTTCGCGAGGCGCAGGAGCTGAACGCCGCCTCGCGGATCCGGCCCGCCGCGCACGCCTACCGGGCTCTCCTGCGGGACGTCGGTCCCCTGGACCCGGGCCGTGAGGGGCGCTGGGTGGTCGAGATGCGCGTCCGTGCTCTCGTCGGTCAGGCGGCCTGCGTCCATGCCCTGACCGGGAACCTCGCCGAGGCGGAACGGGTCGTTGACGAGGCGCTTGCCGTGGCGACGGAGTTCGCGGACGAGCGTCTTGCCGCTCTGGCGCACGGTCAGCGTGGCCTGCTGCTCGTGCGCGCAGGCCGGGGAACGGCTGCTCTCGGGGCCTTCGATCGAGCGCTGGAGGTCGCCGCGTCTGACAACCATCGAGACCTGGCGGTGCTGCACATCAACCGAGCCGCCGCCGCGCTCGAATGCGGCTATCTCGACGAGGTCGTCGCCGATCAGGAGCGGGCGCTAGCGCACGCGCAGGCGATCGGGAGTGACCGCTACGCGGCGTTCGCCCTCTTCAACCTAGGATTCGTGCGCTATCGCCAGGGGAACTTCCCCGCAGCGCTGACCGAGATGGAGAAGGCAGCTCGCCTTCAGCCCGGAGGGCCCGACGGTTGGTCAGAGGCGACCAGGGCGCAGGTCCTGCTCGACGCCGGGCTCGTCACGGAGGCGGAGAAGGTGCTGGCGGACTCAGCCGACCTGCTCTCGGCTGAGGACCTGACGGGTGAGATGGCGGACGCGCTGCTCGCCCGGGCTCGATGCGCAATAGTCCTGGGCCACCCGGACGACGCTCAGCGGTGGGCACGTGGTGCACGGCGCGTGTTCGTGCAGATCGGGAACGACAGCTGGGCATTGCAAGCGGAGGTCGTCGTGCGCGAGGCACGGCTGGAGCTGGACCGACGCCGGGCCGCGCCACGACGGATGTCGCTTCTCCGGTCGAGCGAACAGGCGTTCGCGCTTGCCGGCGATGACGACGGCTCGTCGGCGGGCCGTGAGTCGAGGACGGCGGCTCGGCTGCTCGCGGCGGAGTGGGCGCTGCTCGCGGGCGACGTCGAGCGTGCGCAGACGATCGTGGCGGGCGTCCGGCGTCTGACCACCTGTCCCCTCCCGCTGCGCATCCACCACGAGTCGGTCCGTGCGCAGGTCGCGTTCGCGGCGGGGGACCGCCGCCGGGGTCTGCTCGCCGTGCGTCGCGGCCTGCGGGTGCTCGCGGACCATCGGGCGCGCCTCGGTTCGGTGGACGCCGTCACGGCCGCCGCCGCGCACGGGTCCCGTCTGGCACGGGTCGACGTCGAGGCGGCGTTGGCCACGGGCCGTGCCGCGGCGGTGTTCGACGCCACCGAGCGCGGGCGCGCCGCGTACGCCGGGGCCGCCCGGGTGCGACCGCCTCAGGACGAGGAGCTCGCCGAGCTGCTGACCCGGGCCCGCACCGCCGCCGAGGAGGCCCGCGAGCTGGCCGGCAGCGCCGACCCGAAGGACCGTGCGGCGGCCGATCGCGGCACGAAGGAGGCACGCCGGCTGCAGGACCAGGCGCGTCGGCGGTCCTGGCAGCTCTCGGGACCGGGGGAGGGCCTGGTGCCGGAACCCACCACGGCGCGGGCGGTGACCGCCCGGCTGCGGTCGGCGTCGTCGGGCATGACGGTGGTGTCGTACCTCTTGACCGACCAGGTGCGGGCGGTGCGTGTCGACGCCACGGGTGCACGGCTGCTCGAGCTCGGGCCGCTGTCCGAGGTGACGGAGCTCGCCCGGCGGGTGCGGCAGGACGTCGAGGTGCTGGCCAACGCGCTCATCCCGGCGCCGATGCGGGAGGTCGCCGCGACCTCGGCTCGCCGTTCGCTCGCCCGCCTGGACGACCTGCTGCTGCGACCGGTCGCCGTGGACGGACCGCTGCAGGTCGCGGCACGCCGCGAGCTGCTCTCGGTGCCGTGGGCCTCGCTCCCGTCCCGGGAGGGCGTGGCGACCGGCGTCGACTCCTGGCTGAGCTGGCGCGACGACGAGTCCCGGTCCGGTGCCGGCCCGTCCCGCGCCGTCGTCGTCGCCGGGCCCGGCCTGCGTGCCGCCGAGCTGGAGGCCCGCCTCGTCGCCGCGACGTGGGGGGAGGTGACGACGTTGTCCGGGGCGGCGGCGACCTGTGCGGCCACGACGGCGGCGATCGCCGGGGCGGACGTGGTCCACCTCGCCGCGCACGGCGTGCACGAGCCGGACAACCCGTTGTTCTCCTGCGTCCGGCTCGCCGACGGGCCGCTGTACGCGCACGAGCTGGACGGTGTCGACCTCTCGGGCGCCGTCGTCGTGCTGTCCGCCTGCGAGACCGGACGCGCCTCGGTGCGGCTCGGGGGAGAGCCGCTCGGCATGACGAGCGTCCTGCTGCGGCTCGGCGCCCGAGCCGTGGTGAGCGCGGTCGCACCGCTGCGGGACGACGTCGCCGCGCGCGTCATGCCGCACCTGCACGCCGAGCTGCGGGCGGGGACCGACCCCGCTGCGGCGCTCGCCCGTGCCGTCGCCGCGGAGTCCGAGCCGGTACCGCTGGTGTGCTTCGGGCCGCTCTCCGTGGACGGTCGCCCTGCCGCCGTGTGAMADRSTFDERLREAQELNAASRIRPAAHAYRALLRDVGPLDPGREGRWVVEMRVRALVGQAACVHALTGNLAEAERVVDEALAVATEFADERLAALAHGQRGLLLVRAGRGTAALGAFDRALEVAASDNHRDLAVLHINRAAAALECGYLDEVVADQERALAHAQAIGSDRYAAFALFNLGFVRYRQGNFPAALTEMEKAARLQPGGPDGWSEATRAQVLLDAGLVTEAEKVLADSADLLSAEDLTGEMADALLARARCAIVLGHPDDAQRWARGARRVFVQIGNDSWALQAEVVVREARLELDRRRAAPRRMSLLRSSEQAFALAGDDDGSSAGRESRTAARLLAAEWALLAGDVERAQTIVAGVRRLTTCPLPLRIHHESVRAQVAFAAGDRRRGLLAVRRGLRVLADHRARLGSVDAVTAAAAHGSRLARVDVEAALATGRAAAVFDATERGRAAYAGAARVRPPQDEELAELLTRARTAAEEARELAGSADPKDRAAADRGTKEARRLQDQARRRSWQLSGPGEGLVPEPTTARAVTARLRSASSGMTVVSYLLTDQVRAVRVDATGARLLELGPLSEVTELARRVRQDVEVLANALIPAPMREVAATSARRSLARLDDLLLRPVAVDGPLQVAARRELLSVPWASLPSREGVATGVDSWLSWRDDESRSGAGPSRAVVVAGPGLRAAELEARLVAATWGEVTTLSGAAATCAATTAAIAGADVVHLAAHGVHEPDNPLFSCVRLADGPLYAHELDGVDLSGAVVVLSACETGRASVRLGGEPLGMTSVLLRLGARAVVSAVAPLRDDVAARVMPHLHAELRAGTDPAAALARAVAAESEPVPLVCFGPLSVDGRPAAVNANANANANA
AK018_031791764hypothetical proteinGTGAGCGAGACGACCATCGCCGACGCCGCGGGGGGTCGGCGGCCCGTCCGGCACCTGGACCCCGAGCGGGTTCGCCGGAGTCCGGGGGCCTCCCGGGTCCGGGAGACCGACTACGTGGCCGACCGGCTCATCGTTCGCGGTGCGCTGCCTGATGACTTGCGCCGCCGTGTCGTCCCGCAGGCCGAGGCGCTCGGTGCCGGCGGCGAGAGAGCGGTGGTCGCCCTGGACGGCTGGACCGAAGAGGGCGAACCGACGAACTGGCTCGATGGCGTGCGGCGGATCGCAACCGAGATGGGGTACCGCGTCGTCTACGACGGGACGCTCGGTGACCTGGCCGGGGACCAGGTCGACGACGAGACCTTCGGCTTCGCGCTACGCCTCGTCCCGCTGCGTGACGACGACGTGGAGGTTGACGTCTGGCAGGTCCTGGAGCGAGTCACCGCCGAGCTGGGCGACCTGGATGGACCGGATTCCAGCGACGAGGGAGAACGCCCGACTCCTCGGGTCGGGCTCGACCACGTGCTGCGCGCCCAGCGGGGCAAGACGACGCCACTGCCGTTCGTCCCGGTCGCCCGCCCCCGGTCGACGCCGCTGCCGGTGAGTGCTGTCGACGAGTACGGCGTACCGGGGACCGGCGGGCTGACGCCCGTGCGATACCTCGGGGGCCCGCCGCGGCGGACCCTCGCCAACGGCCCGACGCCGTGGGAGGCCGCGGACGGCACGCGTCGGCCCGTCGTCGCCGTGGTCGACACGGGCGTCGGGTCGCATCCCTGGTTCGGCGACTACGACCCGCAGGACCCCCACGACAGCCCTGTCGTCGTGCGCACGGCTGCGCTCGACGGGCGACCGGTCGGTACGTTCCCCGTACCCGAGATCTCGTCCGAGGACGCGGAGTTCGGCGGGCTCAGCGTGGACCCTCTGACTGGGCCGCTCGACCCGGTGGCCGGGCACGGCACGTTCATGGCCGGCGTCGTGCATCAGGTGTGCCCGGATGCCGTCATCATGGCGGTCCGGGCTTTCGGCGGATCCGGCGACATCCTGGAGTGGGAGCTGCTGAATACGCTGTGGCGGCTCCTGCGCTACCACCGTCGGGGGGTTGCCGGCGACGATGGCTACCACCGTGTCGACGTCGTCGTCCTGGCCATGGGCTACTACCACGAGCAGCCGGAGGACTACGGCTATGACGGGCCGTTGCGCCGTGTGCTGCGCTCGCTGCGTCGCGCCGGGGTGGTCGTCGTCCTCGCTTCGGGTAACGACGGGACCACCCGGCCGATGTTCCCCGCGGCGTGGGCCCCGCGCGTGGCCCGGGTCGCCGACGGGACGGTGCCCGTCGACGACCGCCAGCTCACAAGCTCCCACCCGCCCCTGCTCGTTGCCGGAGCCACGAACCCGGACGGCACCACTGCGGTCTTCAGCAACGACGGGCGATGGGTCACCTGCGTTCGCCCCGGTGCTGCGGTGATGTCGACCATGCCGACCACGATCGACGGGCCCGAGACGCCGGAAGCTCGGCTCCCCGAACGGTTGCGACCCGGCGTCCGGGCGACGGTCGACCCGGACGACTTCACCGGCGGCTATGCCACGTGGAGCGGAACGTCCTTCGCTGCCCCCTACCTCGCGGCCGAGGTCGCCGAGCAGATGCTGCGAGGCTGCGGTGCGCCCGCGGGAGCAGGAGTCGTCGAGGTGGCGTGGGATGCTGTCACCGGGGTGACTGCCTTGGCCGTCGGCGCGACAGCCGGGGGGAGCGACGGCACCGAGGTCTAGMSETTIADAAGGRRPVRHLDPERVRRSPGASRVRETDYVADRLIVRGALPDDLRRRVVPQAEALGAGGERAVVALDGWTEEGEPTNWLDGVRRIATEMGYRVVYDGTLGDLAGDQVDDETFGFALRLVPLRDDDVEVDVWQVLERVTAELGDLDGPDSSDEGERPTPRVGLDHVLRAQRGKTTPLPFVPVARPRSTPLPVSAVDEYGVPGTGGLTPVRYLGGPPRRTLANGPTPWEAADGTRRPVVAVVDTGVGSHPWFGDYDPQDPHDSPVVVRTAALDGRPVGTFPVPEISSEDAEFGGLSVDPLTGPLDPVAGHGTFMAGVVHQVCPDAVIMAVRAFGGSGDILEWELLNTLWRLLRYHRRGVAGDDGYHRVDVVVLAMGYYHEQPEDYGYDGPLRRVLRSLRRAGVVVVLASGNDGTTRPMFPAAWAPRVARVADGTVPVDDRQLTSSHPPLLVAGATNPDGTTAVFSNDGRWVTCVRPGAAVMSTMPTTIDGPETPEARLPERLRPGVRATVDPDDFTGGYATWSGTSFAAPYLAAEVAEQMLRGCGAPAGAGVVEVAWDAVTGVTALAVGATAGGSDGTEVNANANANANA
AK018_03180501hypothetical proteinATGGACATGACCGAGTTCGACGACGTGCCGGGCGCCGACCAGGCGTTCGACGCGTCCGACGCCGCGCTGCTCGCGCGGGTCGCGGCGCTGGACGAGCGCCTGGATCCCGTGCCGGACGGTCTGACCGAGCGGTCCCTGTTCGCGATGACGCTGGCCGGGCTGGAGGCCGAGGTCATGGAGCTGCAGGTCGTCGAGGCCCCGGTGGGCTCGGTGCGCAGCGACGCCCCGGTCGAGACCCGCACCATCACCTTCACGCACGAACGACTCACCGTCATGATCGCGCTGTCCGCCGGCGGTGACCGGGACACCGTCCGCGTCGACGGCTGGCTGGCCCCGGCGGCACCGCTCGCGATCGAGCTGCGTCGCCCCGACGAGGATCCGCGCACCACGACGTCGGACGAGGACGGGCGCTTCGTGATCGACGACGTCCCGCGCGGCCCGGCCAGCCTGCTGATCCGCCAGGGCGAGACGCCGGTGACGACGCCGGTCGTCGAGCTCTAGMDMTEFDDVPGADQAFDASDAALLARVAALDERLDPVPDGLTERSLFAMTLAGLEAEVMELQVVEAPVGSVRSDAPVETRTITFTHERLTVMIALSAGGDRDTVRVDGWLAPAAPLAIELRRPDEDPRTTTSDEDGRFVIDDVPRGPASLLIRQGETPVTTPVVELNANANANANA
AK018_03181708hypothetical proteinATGGGTGGCAGGCCGGGCAGCCGCGGGTGGCGGGACGCCACCCTAGGCTCGGTGCGTCCACCCGAGTCCGGGTACGTCGCCGGAGCCGCACGAGGAGCCATGAACCGTCCTGCCGAGACATCGAGCCTGGGTGACCGGGCCGCCGAGGCCCTGCTCGCCTTCCGGGAGGGCCGGCCGGACGCGATGAGCGGGTTCGTCCGCGAGGCGAACCCGCTGCTGTGGCGCACCGTCCGTTCGCAGGGCGTGGCACGCGAGGCGGCGGACGACGTCGTGCAGCAGACGTGGGCCGCCCTGGTGCGGCACGCCGACTCCATCGACGAGCCGAAGGCCACGCTCAAGTGGCTCCTGGTCACGGCGCGGCGGGCCGCGTGGGAGGCGGTGCGCAAGGACCGCACCGACGACATGCGGCGCACCGAGCTACCGGACGACGACGCCGAGACCACGACGACGTTGCCGGACCCGGCCCCCGGGCCGGAGGCCGAGGTGCTGCGCAACGAGCGGGACCGCGCGCTGTGGGCGGCACTGGCGGAGCTGCCGGAGCGCTGCCGTGAGCTGCTCCGGCTCGTCTCGCTCGCCGACCGCCCGGACTACCGCTCCATCTCCGCCGCGATCGGCATGCCGGTCGGGAGCATCGGCGCCACGCGGGGGCGGTGCCTGGCCAAGCTGCGCACCGTCCTCACCGAACGAGGGGAGACCTCATGGACATGAMGGRPGSRGWRDATLGSVRPPESGYVAGAARGAMNRPAETSSLGDRAAEALLAFREGRPDAMSGFVREANPLLWRTVRSQGVAREAADDVVQQTWAALVRHADSIDEPKATLKWLLVTARRAAWEAVRKDRTDDMRRTELPDDDAETTTTLPDPAPGPEAEVLRNERDRALWAALAELPERCRELLRLVSLADRPDYRSISAAIGMPVGSIGATRGRCLAKLRTVLTERGETSWTNANANANANA
AK018_03182708rplA_1COG008150S ribosomal protein L1ATGGCACAGCGCAGCAAGGCGTACCGCGCCGCCGCGGCGAAGATCGACCGCGACACCCTGTACACCCCGCTCGAGGCCGTGAAGCTGGCCAAGGAGACGGCGTCGACCAAGGCCGACGCGACCGTCGAGGTCGTCTTCCGCCTGGGCGTCGACCCCCGCAAGGCCGACCAGCTGGTCCGCGGCACGGTCAACCTGCCGCACGGCACCGGCAAGACGTCCCGCGTGATCGTCTTCGCCAACGGCCCGAAGGCCGAGGAGGCCGCCGCGGCCGGTGCCGACGAGGTCGGTGGCGACGAGCTCATCGCGAAGGTCGCCGGCGGTTACACGGACTTCGACGCCGCCGTCGCGACGCCGGACCTCATGGGCAAGGTCGGTCGTCTCGGTAAGGTCCTCGGTCCCCGTGGCCTCATGCCGAACCCGAAGACCGGCACCGTGACCATGGACGTCACCAAGGCCGTGTCCGACATCAAGGGCGGCAAGATCGAGTTCCGCGTCGACAAGCACGCGAACCTGCACTTCATCATCGGCAAGGCCTCGTTCGACGAGTCCGCGCTGGTGGAGAACTACGGCGCCGCGCTGGACGAGGTCCTGCGTCTGAAGCCGTCGTCCTCGAAGGGCCGCTACATCACCAAGGCGACGCTGACGACGACGTTCGGCCCGGGCATCCCGCTCGACCAGTCGAAGACGGCGAAGCTCACGGAGGCCTGAMAQRSKAYRAAAAKIDRDTLYTPLEAVKLAKETASTKADATVEVVFRLGVDPRKADQLVRGTVNLPHGTGKTSRVIVFANGPKAEEAAAAGADEVGGDELIAKVAGGYTDFDAAVATPDLMGKVGRLGKVLGPRGLMPNPKTGTVTMDVTKAVSDIKGGKIEFRVDKHANLHFIIGKASFDESALVENYGAALDEVLRLKPSSSKGRYITKATLTTTFGPGIPLDQSKTAKLTEANANANANANA
AK018_03183432rplK_1COG008050S ribosomal protein L11ATGCCTCCCAAGAAGAAGGTCGCCGGCCTCATCAAGCTCCAGATCCAGGCGGGTGCCGCGAACCCCGCCCCGCCGATCGGCCCCGCGCTGGGTCAGCACGGCGTGAACATCATGGAGTTCTGCAAGGCCTACAACGCCGCGACCGAGTCGCAGCGCGGCAACGTGGTGCCGGTGGAGATCACGGTCTACGAGGACCGCTCCTTCACCTTCATCACCAAGACCCCGCCGGCCGCCGAGCTCATCAAGAAGGCCGCCGGTGTGGCCAAGGGCTCCTCGACCCCGCACACCGTCAAGGTCGCGCAGCTCACCCAGGACCAGGTCCGTGAGATCGCCGAGACCAAGATGCCGGACATCAACGCGAACGACCTCGACGCCGCGAAGAAGATCATCGCCGGCACCGCCCGTTCGATGGGCATCACCGTCCAGGACTGAMPPKKKVAGLIKLQIQAGAANPAPPIGPALGQHGVNIMEFCKAYNAATESQRGNVVPVEITVYEDRSFTFITKTPPAAELIKKAAGVAKGSSTPHTVKVAQLTQDQVREIAETKMPDINANDLDAAKKIIAGTARSMGITVQDNANANANANA
AK018_03184831nusG_1COG0250Transcription termination/antitermination protein NusGGTGTCCCAGGATCCTCTGGAGCAGACGGAGAACGTCGACCCCACGCAGCCCGACGCCACCGGCGCCGAGGCCGACCTCGACGTGCCCGCCGACGCGGACGCCACGGAGCAGGACGAGCAGTCCGAGGTCGAGCAGGACGTCGAGAGCGGCGAGGACGACGCCACCGACGAGGCGGCGGACGCCGAGGCGCCCGTCGACGCGGAGATCGAGGACCCGGCCGAGGAGCTGAAGCGCACGCTGCGCGGCCAGCTCGGCGACTGGTACGTCATCCACTCCTACGCGGGGTACGAGAACCGGGTGAAGGTCAACCTGGAGAACCGCACCCAGAGCCTCAACATGGAGGACTACATCTTCCAGGTCGAGGTCCCCATGGAGGAGGTGACCGAGATCAAGAACGCGCAGAAGAAGACCGTCCGCCGCGTCCGGATCCCGGGTTACGTCCTCGTGCGCATGGACCTCACCGACGAGTCGTGGGGCGCCGTGCGCCACACCCCGGGCGTCACCGGGTTCGTCGGGCACACCCACCAGCCGGTGCCGCTGTCGCTGGACGAGGTCTTCAGCATGCTCGCCCCGACCATGCTCGAGCAGGCGCCGGCCAAGCAGACCGCCGCCGCGGCCGCCGGTGGTTCGTCCGACGCCGCAGCGCGTCCCGCGATCGAGGTCGACTTCGAGGTCGGCGAGTCGGTCACCGTCACCGACGGTCCGTTCGACACGCTGCCCGCCACGATCTCCGAGATCAACGCCGAGGCCCAGAAGCTCAAGGTCCTCGTGTCCATCTTCGGCCGGGAGACCCCGGTCGAGCTGTCGTTCAACCAGGTCGCCAAGATCTGAMSQDPLEQTENVDPTQPDATGAEADLDVPADADATEQDEQSEVEQDVESGEDDATDEAADAEAPVDAEIEDPAEELKRTLRGQLGDWYVIHSYAGYENRVKVNLENRTQSLNMEDYIFQVEVPMEEVTEIKNAQKKTVRRVRIPGYVLVRMDLTDESWGAVRHTPGVTGFVGHTHQPVPLSLDEVFSMLAPTMLEQAPAKQTAAAAAGGSSDAAARPAIEVDFEVGESVTVTDGPFDTLPATISEINAEAQKLKVLVSIFGRETPVELSFNQVAKINANANANANA
AK018_03185255secE_1Protein translocase subunit SecEGTGAGCGAGTCGCCGGCCGAGGCCTCTGGGGCGCACGGCGCCGGAACGGACACGGAACGCCGTGGCTTCTTCGGTCGCATCGCCCTGTTCGTCCGCCAGGTCGTGGGTGAGCTCCGCAAGGTCGTCACGCCGACCCGTTCGGAGCTGATCAACTACACGATCGTCGTCATCGTGTTCGTCACGGTGGCGATGCTGTTCGTCACGGCGCTCGACTACGTCCTCGGGCTCGGGGCCTTCTGGCTCTTCGGGGCCTGAMSESPAEASGAHGAGTDTERRGFFGRIALFVRQVVGELRKVVTPTRSELINYTIVVIVFVTVAMLFVTALDYVLGLGAFWLFGAPGPT0025715_2024DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025715-secE-K03073NANA
AK018_031871017COG1816Aminodeoxyfutalosine deaminaseGTGCGCGACCTGGCCCTCCTCCCGAAAGCCCACCTCCACCTGCACTTCACCGGCTCGCTCCGGGTGTCGTCGCTGCGCGAGATGTCGGCGGCGCACGGGATGCGGCTCCCGCACGCCCTGACCGACGGCGTCGCCCTGCGGGTGCCCGCCGACGAGCGCGGCTGGTTCCGGTTCCAGCGGCTGTACGACGCCGCCCGGCACTGCGTCCGCTCCGAGGCCGACATGCGCCGCCTCGTGGACGAGGCCGCGGCCGACGACGCGGCGGAGGGGTCGGGACGCCTCGAGATCCAGGTGGACCCGACCTCCTACGCCCCGTTCGTCGGCGGCATCACGCCCGCGCTCGAGATCGTGCTGGACGAGGCGCGGTCCGCGAGCGCCCGGCACGGCGTGGAGGTGGCGGTCATCGTCGCGGCGTCGCGGATGCGCCACCCGCTGGACGCGCGCACCCTGGCGCGGCTGGCCGCCCGGTACGCCGGCGACGGGCCGGGCGAGGTGGTCGGGTTCGGGCTCAGCAACGACGAGCGCCGCGGGGACACGTCCGCGTTCGCGCACGCGTTCCGGATCGCGCAGCGGGCCGGGCTGGCGTCGGTGCCGCACGGCGGGGAGCTGCTCGGCCCGGGGCACGTGCGCGAGGTGGTCGGTGCGCTGGCACCGGACCGGCTGGGGCACGGCGTGCGGTCGATCGAGGACCAGAGCCTGCTGGCATCGCTCGTGGAGTCGGGGGTGGCGCTGGAGGTGTGCCCCGCCTCCAACGTCTCGCTCGGCGTCTACTCCCACGACGAGGACGTGCCGTTGCGCGAGCTGTTCGACGCCGGTGCCCAGGTGGCGCTCGGCGCCGACGACCCGCTGCTGTTCGGCTCGCGCCTGCTGGACCAGTACGAGACGGCGCGCACGGTGCACGGCTTCAGCGACGCCGAGCTGGCCGACCTGGCACGGTCCTCGATCCGGGCGTCCCGGGCCTCCGAGGGCACCAGGAAGCGGCTGCTCGACGGTGTGGACGACTGGCTGGCCGCGTGAMRDLALLPKAHLHLHFTGSLRVSSLREMSAAHGMRLPHALTDGVALRVPADERGWFRFQRLYDAARHCVRSEADMRRLVDEAAADDAAEGSGRLEIQVDPTSYAPFVGGITPALEIVLDEARSASARHGVEVAVIVAASRMRHPLDARTLARLAARYAGDGPGEVVGFGLSNDERRGDTSAFAHAFRIAQRAGLASVPHGGELLGPGHVREVVGALAPDRLGHGVRSIEDQSLLASLVESGVALEVCPASNVSLGVYSHDEDVPLRELFDAGAQVALGADDPLLFGSRLLDQYETARTVHGFSDAELADLARSSIRASRASEGTRKRLLDGVDDWLAAPGPT0021520_1527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488NANA
AK018_03188996hypothetical proteinATGACCACGACGACGACGCGCCGTCGCTGCGCCGCGGCGACGATGGCCGCACTGCTGCTGCTCCTGCCCGGGTGCGCAGCCCTGTCCGAGCTGACCTCGGCCGACCCGGCGTCCGGTTCGTCCCCGTCGACGGCGGAGTCGCCGACCCCTGCCGCGTCCGTGCCGGCCTCCCCGACGCCGGAGCCCACGGCGCCGGCCGACCCCACGCCGTCGGACACCCCGACGCCGGAGCCCACCCCGAGCGCGGAGGCCACGCCGTCGCCCAGCCCGACGCCGACCGCGTCCGCACCGGCCGAGGAGCCCGAGGCAGAGGGCACGGACGACGCCGCGAAGAAGGACCAGAAGAAGAAAGACGAGAAGAAGCAGAAGAAGGCCCCCGAGCCGGAGCCCGAGCCGCAGTACCTGCAGGTCGGCGCCACGGGCGCCGAGGTCAGCGCGCTGCAGGAGCGCCTGGTCGAGCTGGGCTACTACCTGCCGGGCGTGGACGGCGTGTTCGGACCGATGACGCAGCAGGCGGTGTGGGCGCTGCAGAAGTCGGCCGGCCTGTACCGCGACGCCGTCGTCGGCCCGAACACCGAGGCCGCGCTGGACGACGGCGTCCGGCCGTCACCGGTGTCGTCGTCGGGCAAGGTCGTCGAGATCGACCTGGACCGCCAGCTCCTGCTCGCCGTCGAGGACGGGCGCGTGGTGCGCACGTTCAACGCGTCGTCGGGCAACGGTGAGACGTTTGAGGCCAAGGGCCGCACCTACCGGGCGACGACGCCGACCGGGACGTACGCCGTCTACATGGAGCGCGACTACCTGCACGAGTCGACCCTCGAGCTCGGGTCGATGTACCGGCCCAAGTACTTCACGGGCGGCATCGCCGTCCACGGGTCCGGGTCGATCCCGCCGTACCCGGCGTCGCACGGCTGCATCCGGGTGTCGAACTCGGCGATGAACTGGCTCTGGGACTCCTGGGGGATGCCGCAGGGCACGACCGTCGTCGTGCACTGAMTTTTTRRRCAAATMAALLLLLPGCAALSELTSADPASGSSPSTAESPTPAASVPASPTPEPTAPADPTPSDTPTPEPTPSAEATPSPSPTPTASAPAEEPEAEGTDDAAKKDQKKKDEKKQKKAPEPEPEPQYLQVGATGAEVSALQERLVELGYYLPGVDGVFGPMTQQAVWALQKSAGLYRDAVVGPNTEAALDDGVRPSPVSSSGKVVEIDLDRQLLLAVEDGRVVRTFNASSGNGETFEAKGRTYRATTPTGTYAVYMERDYLHESTLELGSMYRPKYFTGGIAVHGSGSIPPYPASHGCIRVSNSAMNWLWDSWGMPQGTTVVVHNANANANANA
AK018_031891179murB_1COG0812UDP-N-acetylenolpyruvoylglucosamine reductaseGTGAGCCAGACCGCCGCGAAGCCCGCCGGGGCCGCCCGTCCCGCCCTGGGCCCGGACGCCTCCCCGAACCTGTCCGACCTGACGACGCTGCGCGTCGGAGGCCCGGTGGGCCGGTACGTGGAGGCCACCTCCGAGGCCGAGCTGATCGACGCCGTGCGCGCTGCCGATGACGCCGAGACGCCGTTGCTGGTGGTCGGCGGCGGTTCCAACCTGCTGGTCTCCGACGAGGGGTTCGACGGCGTCGTGGTGCGGGACGTGCGTTCCGGCCTGGACGCGGACCTGTCGGCCTCCTGCGAGCTGGAGGGCCCGGCCTGTGGCGGCGCGAACCTCACCCTGCCGGCCGGTCAGGACTGGGACGCGTTCGTCGCCGAGGCGGTCGCCAACGAGTGGATCGGGGTCGAGGCGCTCTCCGGCATCCCCGGGACGCTGGGCGCGGCCCCGGTGCAGAACATCGGCGCCTACGGCCAGGAGGTGTCCGGCGTGATCGCCTCGGTGCGCACCTGGGACCGGGCCACGGGTCGACGGCGGACGCTCACCCTGAGCGAGCTCGGGTTCGGCTACCGCACGAGCGTCCTCAAGCGGTCGATGCGCGCCTCCACGTCGCCCGACGGCGAGGTCTGGTACCCGACCCCCCGGTACGTGGTGCTGGAGGTGAACCTGCAGATGCGCATCGGATCGCTGTCCGAGCCGGTCGTCTACCCCGAGCTGGCACGCCGCCTCGGCGTCGAGGTCGGGCAGCGTGCGCCGTCGTCGGACGTGCGTGCGGCCGTGCTGGAGCTGCGCGGCGGCAAGGGGATGCTGCTCGACGGCGTCGGGGGAGCGGCCGCGCCGGACCACGACCGCTGGTCGGCGGGCTCGTTCTTCACCAACCCGGTCCTTCCGGCGGCGGACGCCGAGGCCCTGCCGGCCGGGGCGCCGCGGTTCCCGGCGGGCGACGGTCAGGTCAAGACGTCGGCGGCGTGGCTGATCGACCGCGCCGGGTTCGACAAGGGGTTCGGCGTGGCCGGTGAGCACTCCCCGGCGCGGCTGTCCACCCGCCACACCCTCGCGCTGACCAACCGCGGGGGAGCGACGGCGCAGGATCTCGTGGCGCTAGCCCGCACGGTCCGCGCCGGGGTGCGTGAGACGTTCGGCGTCGACCTGGAGCCCGAGCCCGTCCTGGTGGGCGTCGCGCTCTGAMSQTAAKPAGAARPALGPDASPNLSDLTTLRVGGPVGRYVEATSEAELIDAVRAADDAETPLLVVGGGSNLLVSDEGFDGVVVRDVRSGLDADLSASCELEGPACGGANLTLPAGQDWDAFVAEAVANEWIGVEALSGIPGTLGAAPVQNIGAYGQEVSGVIASVRTWDRATGRRRTLTLSELGFGYRTSVLKRSMRASTSPDGEVWYPTPRYVVLEVNLQMRIGSLSEPVVYPELARRLGVEVGQRAPSSDVRAAVLELRGGKGMLLDGVGGAAAPDHDRWSAGSFFTNPVLPAADAEALPAGAPRFPAGDGQVKTSAAWLIDRAGFDKGFGVAGEHSPARLSTRHTLALTNRGGATAQDLVALARTVRAGVRETFGVDLEPEPVLVGVALPGPT0024115_87DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024115-murB-K00075NANA
AK018_03190432hypothetical proteinGTGAGCCGCGCGGAACGCCTCGCCGAGCACGTGGCAGCGGACCTGGCCGACCTCGGCGAGACGCTCGAGGCGTGCTCGACCCTCGTGGCGAGGGGGAGGGAAGCGTTCGACGCCGACGAGATGCTCCGCTACGCGGCCGAAGCGTTGTGCAACCGGATGGGTGAGGCCGTCCAGCGGCTCGATCCTGCGTGGCGGGCCACGAGGCCGGAGGTTCCGTGGCGTGCCATGCGGGACAACCGCAACGTCGTTGTCCATGCCTACCGAGGGATCGACCACGACGAGCTGTGGCGGACGCTGGCTCACGATGTGCCGCGTGTGTCCGAGCGGCTGCGTACCGTCGTCGGGCAGGCGCGTCAGCAGCTCGTCGAGGACGCTCGTGAGCGACGGCGCTCCGGCGAGGCGCCCGACGACGGAACGCTACCTACCACCTGAMSRAERLAEHVAADLADLGETLEACSTLVARGREAFDADEMLRYAAEALCNRMGEAVQRLDPAWRATRPEVPWRAMRDNRNVVVHAYRGIDHDELWRTLAHDVPRVSERLRTVVGQARQQLVEDARERRRSGEAPDDGTLPTTNANANANANA
AK018_03191537hypothetical proteinATGGTGACGGTCCAAGACCGCGACCGCACGCGGCACGACGGCTCCTCCGCCCACGACGCAGCCTCGCTGCTGCGTGAAGCGCGCGCCCGCCGGGGCCTCACCCAGCGGGCCCTCGCGGAACGAACCGGGGTCGCGCAGACGACGATCGCGAGGATCGAGTCGGGGCGTCACCAGCCGAGCCTCGCCACGCTCTCCCGGCTGCTCGCAGGCGCCGGTTTCCGGGCGACGCTCGGTCTGGAGAACTCCGTACCGCCGTCAGTGCTCCTGTCGCAGCACCGGGGTGCGGTCCTGGACGCGGCGCGACGCCACAAGATGGCCCGCGTGCAGGTCTTCGGATCTGTCGCTCGTGGCGACGACGGGCCGTCGTCCGACCTCGACCTGCTCGTGACGCCGCAGGACGACGCGACGCTGTTCGATCGCTCGACGTTCGCGACGGAGGTCTCGGAGCTTCTCGGAGTTCACGTCGACGTCGTGAGCTCCACGGCGTTGCAGCCGCCGCGCGACGTCTACATCCGACGCGACGCCCGCGACCTGTGAMVTVQDRDRTRHDGSSAHDAASLLREARARRGLTQRALAERTGVAQTTIARIESGRHQPSLATLSRLLAGAGFRATLGLENSVPPSVLLSQHRGAVLDAARRHKMARVQVFGSVARGDDGPSSDLDLLVTPQDDATLFDRSTFATEVSELLGVHVDVVSSTALQPPRDVYIRRDARDLNANANANANA
AK018_031921278ybjJ_1Inner membrane protein YbjJGTGACCACCTCTGCCTCCGCACGGCCCGACGCGCGTCACCTGCGTGCCGCCGTCGTCGCCGTCTACGGCGTCTTCGTCGCCGCCGGGTTCGGCATTGCGACCTGGGCCTCGCGCATCCCCGCCGTGCGGGACGGTCTTGGGTTCAGCGAGGCCCAGATGGGCGTCCTCCTGCTCACCGCGTCGATCGGCTCGATCTGCGCCCTGCCGCTGTCCGGGATGATCGCCTCCCGCCTCGGCGCGGCGCGCACCGTCCTCGGGTTCGCCGTGCTCGCCGCCACCGGTTTCACCGTCGCCACCGTGGCCATCGACGTCGACCTGCCCTGGCTCGTGCGCGTCGGCCTCTTCCTCGGCGGCATGGGCATGGGCGTCTGGGACGCCGCGATGAACCTCGAGGGCGCCGTCGTCGAGCAGAAGCTCGGCAAGGCGATCATGCCGCGCTTCCACGCCGCGTTCTCCTTCGGCACGGTCGCCGGCGCCGGTGTCGGCGCGCTCGCCGCCTGGGCGCAGGTACCGCTCACCGCCCACCTGACCACCGTCGTCGTCCTCGACGCCCTCGCCGTGGCGCTGTGCGTCCGGGCCTTCCTGCCCGCGCACGACGCCGGACCCACCGTGTCGCAGCCCGGCGCGCAGGACGTGGTCGCCGACCCGGCCACCGCCGTCGAGCCGTCCCACGGACACACCGTCAAGGACACGCTCGCCACGTGGCGCGAGCCGCGCACGCTGCTCATCGGGCTCGTCGTGCTCGCCGCCGCCCTCACCGAGGGCGCCGCCAACGACTGGGTGGGCCTGGCCACCGTCGACGGGTTCGGGACCGGGGACGGCATCGGGGCGGTGGCGCTCGCGGTGTTCCTCGTCGCGATGACCGTGACCCGCCTGGTCGGCACCGAGATCATCGACCGGTTCGGCCGCGTCCCCGTGCTGCGCGCCAGCGGCGCCTGCGCCCTGGTCGGCGTCTCGCTGTTCGCGCTCGTGCCCAGCCTGCCGCTCGCGCTCCTGGGCGTGTTCCTGTGGGGCGTGGGCTCCGGGCTCGGCTTCCCGATGGGGATGTCGGCGGCGTCCGACGACCCGCGGCGCGCCGCCCTGCGCGTCGCCGTCGTCTCGACCGTCGGCTACTCGGCGTTCTTCGTCGGCCCGGCGCTCATCGGCTTCCTCGCCCACTACACGGGCTACCGGCTCGCTCTGCTGGTGCTGGCCCTGCCCGTGGTGGTCGGGATGTTCGTCGCGGGCGCGGCCCGGCCCCTGCGCGGGGACGACGAGGGTCGGAGCGTGGCGCGGTAGMTTSASARPDARHLRAAVVAVYGVFVAAGFGIATWASRIPAVRDGLGFSEAQMGVLLLTASIGSICALPLSGMIASRLGAARTVLGFAVLAATGFTVATVAIDVDLPWLVRVGLFLGGMGMGVWDAAMNLEGAVVEQKLGKAIMPRFHAAFSFGTVAGAGVGALAAWAQVPLTAHLTTVVVLDALAVALCVRAFLPAHDAGPTVSQPGAQDVVADPATAVEPSHGHTVKDTLATWREPRTLLIGLVVLAAALTEGAANDWVGLATVDGFGTGDGIGAVALAVFLVAMTVTRLVGTEIIDRFGRVPVLRASGACALVGVSLFALVPSLPLALLGVFLWGVGSGLGFPMGMSAASDDPRRAALRVAVVSTVGYSAFFVGPALIGFLAHYTGYRLALLVLALPVVVGMFVAGAARPLRGDDEGRSVARNANANANANA
AK018_031931080ipsA_1HTH-type transcriptional regulator IpsAATGGGTCGCACACCGAGCAGCCGACCGACGTTGGCGCGCGTCGCCGAACGCGCCGGGGTGTCCGTCTCGACCGCGTCCCTCGCGTTCTCGGGATCGGGCCCCATCACCCCGGAGACCCGGGACAAGGTGCTCGCCGCCGCCTCCGAGCTCGGGTACACCGGACCCAACCCCCTCGGACGCCAGCTGCGCCGCGGGCGGTCCGGCATCGTCGGCGTCGTCATCGGCGACCACCCGGGCCGGGCCTTCCGGGACCCCGTGGCCGTGCAGGTGCTGGACGGGCTGGTCGACGTGCTGGGCACCGAGGGGCTCGGCGTGCTGCTGATCCCGGGGGTGGACCTCGGCCAGGACGCCGTCGACCCGCTGCTCGAGACCGCCGCGATGGACGTCGCCGTCCTGGTGTGGGGGGTCCTCAGCGAGGACCCGACCCTCAACGCGCTGCAACGCCGCAACGTCCCCGTCGTCGTCGGCGAGGGCCGTGCCGTGGAAGGGGCACCGCTCGTCGCGCTGGAGGACCGCGCCGGTGCCGCTGAGGCCGTGCGCCACCTCGTCGAGCTCGGGCACACACGGATCGCCGAGATCTCCCTGCCGTTCGGCCGGGGTGAACGGTCCGGACCCGCCGACGCCGAACGCCTGGCGTGCGCCGACCGCACCCCCACCGCGCACCGCATGGCCGGGATCCGCGACGTCGTCGACCCGGTCATCACGTGGGAGACCCCCGCCTCGCTCGTGGAGCACGGCCGCGACGCCGCCACGGAGATCCTCGGCACGTGGGTGCCGGCGTCGGAACGGCCCACCGCGATCGTGGCGCACTCCGACCTGCTGGCCGCGGGTGCCGTCATCGCGGCGCGCGAGCTCGGCCTGAGCATCCCCGAGGACGTCTCGATCGCCGGGTTCGACGGGCTCGACCTGCCCTGGCTCTCCCCCGACGTGCTCACCAGCGTCCACCAGCCGCTGCGGGAGAAGGGCGCCCGGCTCGGCCGGGCGGTCATCGACCTGCTGGCCGGCGAGGAGCCCACGTCGATCTCGCTGCCCGTCGGGCTCGTCCCCGGGACGACCACCGGCCCGGTGCCCCGGACGTAGMGRTPSSRPTLARVAERAGVSVSTASLAFSGSGPITPETRDKVLAAASELGYTGPNPLGRQLRRGRSGIVGVVIGDHPGRAFRDPVAVQVLDGLVDVLGTEGLGVLLIPGVDLGQDAVDPLLETAAMDVAVLVWGVLSEDPTLNALQRRNVPVVVGEGRAVEGAPLVALEDRAGAAEAVRHLVELGHTRIAEISLPFGRGERSGPADAERLACADRTPTAHRMAGIRDVVDPVITWETPASLVEHGRDAATEILGTWVPASERPTAIVAHSDLLAAGAVIAARELGLSIPEDVSIAGFDGLDLPWLSPDVLTSVHQPLREKGARLGRAVIDLLAGEEPTSISLPVGLVPGTTTGPVPRTPGPT0014791_72DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_03194615hypothetical proteinATGACGGAACGACTGCTGACGGGGGAGCCCGGGTCCGAGGTGTGGCGGTCCGGCGCGATCTCGGTGCACGCGCTCGACCCCGCGGCCGACGTCGACGTGCTGCACGCCTGGGTGACCGGCCCGAACGCGGCGTTCTTCGGGCTCGGTGCGCTGACCCGGGTCGAGCTGCGCGAGACCTACGAGTTCGTGGCGTCCCTGCCGACGCACCACGCCTACCTGGTGCGGGACGCGGGGGAGCCCGTGGCGATGGTCCAGCTCTACCACCCGGAGGACGACCCGGTGGCGGCGGCCTACGACGTCGAGCCCGGTGACGTCGGGGCGCACTTCTTCCTGGGGTCGCGGCGGTCCGGGTGGCCGGCGCTCGGTCCGGCGCTGCTGGCGTTCGGATTCGCGCTGCCGGCCGTGCGACGGATCGTGGTCGAGCCAGACGTGCGTCACCGCGCGGCGATCGCGCGGATGGTCGCGATGGGGTTCGAGCCTGCCGGGGAGATCCACTTCGAGTCACCGCACGGACCCAAGGACGCGATGCTCGCCTTCCTCACCCGGGAGCGCGCGCTCGCCCGCTCGCGAGGTAGGCCGACCTCCCGTGAGGTAGGCAATTCCACCGCGAGGTAGMTERLLTGEPGSEVWRSGAISVHALDPAADVDVLHAWVTGPNAAFFGLGALTRVELRETYEFVASLPTHHAYLVRDAGEPVAMVQLYHPEDDPVAAAYDVEPGDVGAHFFLGSRRSGWPALGPALLAFGFALPAVRRIVVEPDVRHRAAIARMVAMGFEPAGEIHFESPHGPKDAMLAFLTRERALARSRGRPTSREVGNSTARPGPT0028075_35DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
AK018_031952172acyII_1Penicillin acylase 2 proenzymeGTGACGTTCGAGGTCTTCCGCGACACCTGGGGCGTGCCGCACGTGCGTGCCGCCGGCGAGCTGGACCTGGCCCGTGGGCAGGGCTACGTCACGGCCCGGGACCGGGGCTGGCAGCTCGAGTCCGACCGGTGGCGCGCCGAGGGGCGCCTCGCCGCGCGGTTCGGGCCGGGCGGGCTGACGTGGGACCGGTTCGCCGTCCGGGTGCGCCTGGCCGACACGGCACGACGCGTCCACGCGGCCCTGACCGAGCCCGAGCGGGCGTGGCTCGCGGCGTACACCGAAGGCGTCAACGCCGGCCTGTCCGACGGCGGCCGCGACGTTCCCGAGATGGACGCCCTGGCCGCGGCCCCCGGTGAAATGCCCGAGCACGAGCCGTGGCCGGACTGGATGCCGCTCGGCGTGTTCCTGACCAACCACGTCCTCTTCGGCACCTGGCCGCACCTGCTGTGGCGCGAGCACGTGGTCCGGACGCTCGGGGCCGGTCATCCCCTGACCGCCGTCCTGTCCGGGGCCGACGACGGCGCGGGGTCGGGGTCGAACGCCTGGGCGTTCGCCGGGACACGGACGGCGAGCGGGCTCCCGCTGCTGGCCGGCGACCCGCACCGGCTCCTCGAGCTGCCGGGCGTCTACCAGCAGGTCCGGCTCGCCTGCGACGCCTACGACGTCGTCGGCTTGGCGTTCCCCGGCGTGCCCGGGGTGCTGCACTTCGGTCAGGTGCAGGTGCCCGACGACGGCGGACCCGGCGCGGGCGGTTCGGTGGCGTGGGGGATCACCAACGCCCTGGCGCACGCCGCCGAGCTGTTCGTCGAGACCCCTGAGTCCCTCGACGGGTCCGGCGGGCCGGTCGGGACCGGCGTCGACGTGGTACCCGTGCGTGGTGGCGACCCCGTCGAGGTCGCCTGGACCGAGACGCCGCGCGGACCGCTGGTCACCGACACCCACGCGCTGCGCTGGCCGGTGCGGGCCGACGCCGACCTGGGCGTCGCGTCCTGGCGGGCGCTGCAGCGGGCGCGGTCGGCCGACGACGTCGCGGCGGCGCTCGCCGGGTGGGTCGAGCCGGTCAACCGCGTGCTGGCCGCCGACTCCGACGGGACCGTGCTCAGCGTGACGGCCGGCCGGGTGCCCGCCCGGCCGCGCGACGAGCGGGTGCTGCCCCACGCCGTCGGGCGCGACGCCGGCCGGGCCGGGACGCTGCCGCCGTGGCGACCGGCGTCGGACCCGGTGGTGGTGCCCGACCTGGCCGTCGACGCCAACGAACGCCCCGACGGTGCGCGGGTGCCGGACCTCGGACTGACGTACGCACCCCACCGCGCGGACCGGATCCGTGAGCTCCTGGCCACGCCACCCGACGGCGGCGAGCTCGCGGCGGAGCAGGCACGGGTGCACGGCGACGTGTCCGACCCCGGGGCCGCCGGACTGGTGGGATGGCTGGACCACGTCGTCGGACCGGGCATCGGCCCGGCGGCCGCCCGGCTGCGGACCTGGGTCGCCCGCGGTGCGCGCATGGACGCCGACTCGGGCGAGGCGGCACTCTTCGCCGTCTGGCGCGACGCCCTGGCCCGGCGCGTCGCGGCGCACCCCGCGCTCGCGGCGGTGCGCGAGCCCCACGGCGCTCCGGGGGTGCTGGCTCCCTGGTTCGACGTGCCGGCCCGGGTGGGGCAGGTGCTCGGCGCGCTGCTGGCCGCGGGGGAGTCGCTCACACCGGCGCTGGACGCCCGGGCCGAGGCGCGGGACGCCCTCGTGACCGCCCACGCGGAGCTCACCGGGGCCGCCGACGGCCGCCGTGGTCGTTCGTCGGCGTCGGACACCTGGGGCCGGCGACACCCGGTGCTGCCCCTGCACGCCCTGGCCGACGCGACCGGCGTCGACCCCTCGGCGGTGCCCCGTGTGCCGCGCGCGCTGCGCGTCCCGGTCTCGGGCGCCGCGGACACCGTGCGGTGCACGGGCTCGGTGCCGGGCGTGTCCACCGCGTCCTGGCGCGGGTCGGTGGCGCGCTGGGTGTGGGACCTGGCCGACCGGCGGCGCAGCCGGTGGGGAGTCCCGTTCGGTGCTGCCGGCGACCCGCGGTCGGTGCACTTCGCCGACCAGCACGGCGAGTGGGCACGCGCCGCGACGCACGAGATCGAGACCGACTGGACGCGCCTGCGGCGCGAGACCTGGGAGGCCCCATGAMTFEVFRDTWGVPHVRAAGELDLARGQGYVTARDRGWQLESDRWRAEGRLAARFGPGGLTWDRFAVRVRLADTARRVHAALTEPERAWLAAYTEGVNAGLSDGGRDVPEMDALAAAPGEMPEHEPWPDWMPLGVFLTNHVLFGTWPHLLWREHVVRTLGAGHPLTAVLSGADDGAGSGSNAWAFAGTRTASGLPLLAGDPHRLLELPGVYQQVRLACDAYDVVGLAFPGVPGVLHFGQVQVPDDGGPGAGGSVAWGITNALAHAAELFVETPESLDGSGGPVGTGVDVVPVRGGDPVEVAWTETPRGPLVTDTHALRWPVRADADLGVASWRALQRARSADDVAAALAGWVEPVNRVLAADSDGTVLSVTAGRVPARPRDERVLPHAVGRDAGRAGTLPPWRPASDPVVVPDLAVDANERPDGARVPDLGLTYAPHRADRIRELLATPPDGGELAAEQARVHGDVSDPGAAGLVGWLDHVVGPGIGPAAARLRTWVARGARMDADSGEAALFAVWRDALARRVAAHPALAAVREPHGAPGVLAPWFDVPARVGQVLGALLAAGESLTPALDARAEARDALVTAHAELTGAADGRRGRSSASDTWGRRHPVLPLHALADATGVDPSAVPRVPRALRVPVSGAADTVRCTGSVPGVSTASWRGSVARWVWDLADRRRSRWGVPFGAAGDPRSVHFADQHGEWARAATHEIETDWTRLRRETWEAPPGPT0028075_1765DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
AK018_031962529hypothetical proteinGTGACCGCGGTGACCGACACCCGCGCGAGCGCCACGGGCGGGGACACGGCCTCGTCGACCAGCACGTTCACCGTGCGGACCCGCCTCGGCGTGCTCGAGCTCGGCCCGGTCTCCCCGGCCCGCGACGCGGCGACCGTCCAGGGCTGGCTCGCCCACCCGGCGTCGTCCGCCTGGCACATGGCCGACCTCGACGTCGACGACGTGCGCGACTACCTGGACGCCCTCGAGGCCGACGACGCGCAGGACGGGTGGCTCGTCCACCTCGACGACGCGCCGGTCGCCTACGTCGAGACCTACGACCCGGCCCGCGTACTGCTCACCGAGGTCCACGACGCACTGCCCGGGGACGTGGGCATGCACCTGCTCGTCGCACCCGCCCCCACCGACCCGGCCGAGCGGCGCCCGGGCCTGACGGACGCGATCATGTCCGCCGTCGTGCGCTGCTGCCTCACCGACGCCGCGGACGGCGGACGCGGGGGAGAGCGCGTCGTCGTCGAACCCGACGTGACGGGCGCGAAGATCGCGGCGAAGAACGCCGCGGCCGGGTTCCGGGTGCTGCGCGAGGTCGAGGTCACCGACGGCGGCCACACGAAGACCGCGGCGCTGAGCGTGTGCACCCGCGACGACTTCGCCGCCTCGCCGCTCGGCACCGGGGTGGACCCGGCACCGCACCTGCGCGGGGACCTCGCCGAGCACGCCCACCGCCACCTGGTCGCCAAGGCGCTGGCCGAGCTGACCCACGAACGACTCTTCGCACCGGTCGCCGACGGTGCCGCCGAGGGCCCCCTCGGAGCAGACGGGTCGACGCGGTACCGCCTCGACCTCGACGGCGTCACCTACCGCTTCGCCGCGCAGACGTTCGCGCTCGAGCACTGGGTGATCGACCCCGCCTCCATCAGCCGCACCGCGGACTCCGGCGATCAGGACGGCACCGCGCTGCCCGGCGACGCCCTCGAGCTGATCGCCGAGCTGCAGCCGTCGCTGCAGATCCCCGACGACCTGCTCGCCACCTACCTCGAGGAGCTCTCCAGCACCCTCGCGGCCGCCATGGCCAAGCGGGACCGCGAGCTGTCCGGACTCACCCCTGACGTCACGCGTCTGGTCGCGGGACTCACCGCTCCGGCACCCGAGGCGGCGCATCAGGACCCGGCCGACCAGGCCGAGGACCGCCGTCGGACCGCCGAGACGTTCCAGGCCGTCGAGGCCGCGATGTCCGAGGGGCATCCTGGCTTCGTCGCGAACAACGGCCGCATCGGCTTCTCCCTGCCGGACTACGAGGCGTTCGCCCCCGAACGCGGCGGCCGGCTGCGGCTGCAGTGGGTCGCCGCCCGGCGCGAGCACACCCACCTGGCGCTCGCGGACGACCAGACGGAGTCCGGGCTGTACGACGCCGAGCTGTCCGGCGCCGAGCGGGCGGCGTTCGCGGACCGGCTCGCCGGGCGCGGGCTGGACCCGGCCGACTACCTGTTCCTGCCGCTGCACCCGTGGCAGGCCGAGCACCGGCTGCCGATCACGTTCGCCGCCGACGTCGCCCGCGGCGACCTCGTGCCCCTCGGGCCCGGCGCGGACGAGTACACCCCGCAGCAGTCGATCCGCACGATGTTCAACCGGACCCGCCCGGAGCGGCACTACGTGAAGGTGGCCCTCGCCATCCAGAACATGGGGTTCCTGCGGGGACTGTCCCCGGCGTACATGCGGGCGACCCCGGCGATCAACGACTGGGTCGCCGACCTGGTCGACGGGGACCCGACCCTGGGGAGCGCCGGCTTCGGCGTGCTGCGCGAGCTCGCAGCGGCCGGGTACACCGGCGACGTCTACCACCGCACCGGTCGCCCCAACGCCCACCGCAAGATGCTCGCGGCGCTGTGGCGGGAGTCCCCGCTGCCGCGCACCGGCCCCGGCGAGCGGTTGGCCACCATGGCGTCCCTGCTGCACCGCGACGCGGGCGGCCGGGCCCTGGTCACCGAGCTGGTGCGGGCCTCCGGCATCGACCCCGCCGACTGGGTGCGTGCCTACCTGGACGCCTACCTCTACCCCCTGGTGCACTGCCTGCGCGCCCACGACCTGGCGTTCATGCCGCACGGGGAGAACCTTGTGCTCGTGCTGCGCGACGGCGTCGTGCGCCGGGCGTTCATGAAGGACATCGGCGAGGAGGTCGCCCTGCTCTCGGACCGGTCGCTGCCCGAGCAGGTGGCCCGGATCACCGCCCCGGTGGACGACGCCGAGAAGGCGCTGGCGATCTTCACCGACGTCTTCGACGGCGTGCTGCGCCACCTGGCCGGCATCCTCGCGGTCGACGGCGTGCTGCGCGAGGACCGGTTCTGGGCGCTGGTCGGCGAGTGCCTCGACCGGCACGAGGCCGAGCACCCGGACCTCGAGTCCGGCGTCGACCTGCGGGCCGCGCGGTTCGCCCACTCGTGCCTCAACCGGCTGCAGCTGCGCAACACCCTGCAGATGGTCGACCTCGCCGACCAGTCGAGCTCGCTCATCTACGCCGGCACGCTGGCGAACCCGGTGGCGCGCACGTGAMTAVTDTRASATGGDTASSTSTFTVRTRLGVLELGPVSPARDAATVQGWLAHPASSAWHMADLDVDDVRDYLDALEADDAQDGWLVHLDDAPVAYVETYDPARVLLTEVHDALPGDVGMHLLVAPAPTDPAERRPGLTDAIMSAVVRCCLTDAADGGRGGERVVVEPDVTGAKIAAKNAAAGFRVLREVEVTDGGHTKTAALSVCTRDDFAASPLGTGVDPAPHLRGDLAEHAHRHLVAKALAELTHERLFAPVADGAAEGPLGADGSTRYRLDLDGVTYRFAAQTFALEHWVIDPASISRTADSGDQDGTALPGDALELIAELQPSLQIPDDLLATYLEELSSTLAAAMAKRDRELSGLTPDVTRLVAGLTAPAPEAAHQDPADQAEDRRRTAETFQAVEAAMSEGHPGFVANNGRIGFSLPDYEAFAPERGGRLRLQWVAARREHTHLALADDQTESGLYDAELSGAERAAFADRLAGRGLDPADYLFLPLHPWQAEHRLPITFAADVARGDLVPLGPGADEYTPQQSIRTMFNRTRPERHYVKVALAIQNMGFLRGLSPAYMRATPAINDWVADLVDGDPTLGSAGFGVLRELAAAGYTGDVYHRTGRPNAHRKMLAALWRESPLPRTGPGERLATMASLLHRDAGGRALVTELVRASGIDPADWVRAYLDAYLYPLVHCLRAHDLAFMPHGENLVLVLRDGVVRRAFMKDIGEEVALLSDRSLPEQVARITAPVDDAEKALAIFTDVFDGVLRHLAGILAVDGVLREDRFWALVGECLDRHEAEHPDLESGVDLRAARFAHSCLNRLQLRNTLQMVDLADQSSSLIYAGTLANPVARTPGPT0031210_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-DESFERRIOXAMINE-BIOSYNTHESIS,PGPT0031210-desD-NANANA
AK018_031971434iucD_1COG3486L-lysine N6-monooxygenaseATGAGGACCTACGATTTCGTCGGCATCGGTATCGGACCCTTCAACCTGGGCCTCGCGGCGCTCGCGGACCCGCTGGACGACGTGGACGCGGTGTTCCTCGACCAGCGGTCGGGGTTCTCCTGGCACCCGGGCATGATGCTCGAGGGCGCCACCATCCAGGTGCCGTTCCTGGCGGACCTGGTCACGATGGCCGATCCGACCTCGCCGTACTCGTTCCTGGCCTTCCTCAAGGACACCGGTCGGCTCTACCCGTTCTACATCCGCGAGTCGTTCTACCCGCTGCGCGCCGAGTACGACCAGTACTGCCGCTGGGTGGCGGGTCGCCTGGACACCCTGCGCTGGGGTCGACGCGTCGTCGCGGTGGAGCACGACGCGGCGAGCGACATGTACGTCGTCACGGCCGAGGTGTCCGACGGCGGTGCTGCGGCGGACGGCACGGCCTCCGACGGCGGCATCCGCCGCGAGCAGTACCGCGCCCGGCACGTCGTGCTCGGCGTGGGCACCTCGCCACGGCTGCCGGCCCCGCTCGCGGACCTGGCGGACCGGTCCGAGAGCGCCGCCGGCCTCGCGGACGCCGGACCCGTGATCCACACCGCGGACTACCTGACGCACCGGGACGCCCTGCAGGCGTCCGGCGCGGTGACGGTCGTGGGCTCGGGCCAGTCCGCGGCGGAGGTGTACCGGGACCTGCTCGAGGACGCTGGCACGTACCGGTTGGACTGGGTGACGCGTTCGCCGCGGTTCTTCCCGATGGAGTACACCAAGCTCACCCTGGAGATGACGTCCCCGGAGTACACGGCGCACTTCCACGGCCTGCCCACCGCGCTGCGCGACCTGGTGGGGCGCGAGCAGCGCAACCTGTACAAGGGGATCAGCGCCGACCTGATCGACGACATCTACGACACGCTCTACCGGCGCACGGCCCTGGGCCGCGACGTGCCGACCACACTGCTCAGCGACACCGAGGTGGTCGCCGCCCGCGCGGAGCGGGCCGACGACGGCAGCACGGAGTACGTGCTGACCCTGCGGCACGGCCAGCTCGGCACGACGGCGGAGCACCGCACGCGCGCGGTCGTCGCCGCGACGGGCTATGCGGCCGGGGTCCCGACCGTGCTCGACCCGGTGCGCGGCCGCCTGCTCCTGGACGACCAGGGGCGGTTCGCCGCGACGGCGGACTACACGGTCAGCTCGGACGGACGGATCCACACCCTCAACGGCGAGGAGCACTCGCACGGGGTCACCGCCCCGGATCTCGGCTTCGGCCCGTGGCGCAACTCCGTGGTGCTCGCGAAGATCACCGGCCGTGAGCCGTACCCGATCGAGCGGCGGATCGCCTTCCAGGAGTTCGGGCTGCCGGGCGGGGTCCCGGCGCAGCGGTCCGACGGCGGCACCCCGGCCGACGGGGCAGCTCCGGCCGAGGAGGTGGCCCGGTGAMRTYDFVGIGIGPFNLGLAALADPLDDVDAVFLDQRSGFSWHPGMMLEGATIQVPFLADLVTMADPTSPYSFLAFLKDTGRLYPFYIRESFYPLRAEYDQYCRWVAGRLDTLRWGRRVVAVEHDAASDMYVVTAEVSDGGAAADGTASDGGIRREQYRARHVVLGVGTSPRLPAPLADLADRSESAAGLADAGPVIHTADYLTHRDALQASGAVTVVGSGQSAAEVYRDLLEDAGTYRLDWVTRSPRFFPMEYTKLTLEMTSPEYTAHFHGLPTALRDLVGREQRNLYKGISADLIDDIYDTLYRRTALGRDVPTTLLSDTEVVAARAERADDGSTEYVLTLRHGQLGTTAEHRTRAVVAATGYAAGVPTVLDPVRGRLLLDDQGRFAATADYTVSSDGRIHTLNGEEHSHGVTAPDLGFGPWRNSVVLAKITGREPYPIERRIAFQEFGLPGGVPAQRSDGGTPADGAAPAEEVARPGPT0031000_4DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEALCALIGIN_IRON_RESISTANCE_METABOLISM,PGPT0031000-alcA-NANANA
AK018_031981566ddc_1COG0076L-2,4-diaminobutyrate decarboxylaseGTGTCCACCACGCCACCCGATACCACGCTGACCAGCACCGACACCCTCCTGACCGGTGCGACGGCGAGCGCGTACGCTCGCACGGTCCACCGGGTGGTCGACGACGTCGCGGCCCGGCTCGCCGCGGTCGACCAGCCCTGGAGCGGCGCGAGCCGCGCGGAGCTCACCGCGCTCGTCGACGCCGTCGACCTCGACAGCCCGGGCATCGGGACCGGCGGCGCCCTGCGCGAGACCGCCGACCTGTACGCCACCCACGCCGTCTGGTTCCACGACCCGGCCTACGCCGCGCACCTCAACTGCCCCGTCGCGATCCCCGCCGTCGGCGCCGAGGCGATGCTCGCCGCGATCAACACGTCCGTGGACACCTACGACCAGTCGACGGTCGCCACCCTCATGGAACGCCGCCTGATCGCCTGGACCACCGAGCGCATCGGTCTCACCGCGGGCGACGGCGTCTTCACCTCGGGCGGCACCCAGTCCAACCTGCACGCGCTGCTCGCCGCCCGGGAACGTGCGCTGACCGGCCCGGACGGCGTCCGCCTCACCGGCGCCGCGCGGCACGGCCTCCAGGGGCGGCTGCGCATCCTGGCCACCGCCGCCAGCCACTTCTCGGTCGCGAAGTCCGCGATGATCCTCGGCCTCGCCGACGAGGCCGTCACCTCGGTCGCCACGGACGCCGCCGGCCGCATGGACCCGGCCGCTCTCGCGGACGCCCTCGCCGCGACGGAGCGGGCGGGGGAGGTGGCGATGGCCGTTGTCGCCACCGCCGGCACCACCGACCGCGGCACCGTCGACCCGCTCGCCCGCGTCGCCGAGCTGTGCGACGCGACCGACACCTGGCTGCACGTCGACGCCGCCTACGGCGGGGGCCTCCTCGTCTCGCCGACCCGGCGCCGCCTGCTCGCCGGTATCGAGCGGGCGCGCAGCGTGACGGTCGACTTCCACAAGACGTTCTTCCAGCCGGTCTCGGCCAGCGCGGTCCTGTTCCGCGACGCCGCCGACCTGGCGCGCACCGCGTGGCACGCCGACTACCTCAACCCGGTCGAGGACGCCGCCGAGGTCAACCAGGTGGACCGTTCGCTGCAGACCACCCGACGCTTCGACGCGCTGAAGATGTGGACGACCCTGCGTGCGATCGGCCCGGACGGCATCGGCGCGATGGTCGACGCCGTGTGCGACCTGGCGGCGGCCGTGCACGCCGACCTGGCGGACGACGCCGAGCTCCGCCTGGTGTGCGGCACGGACCTGTCCACGGTGATCTTCCGCTACCAGCCCGACGGCGTCACGGACGCCGAGGCCGACGCCCTGGTGCCCGCGGTGCGCCGGGTGCTGTTCGACTCCGGCCGGGCGAGCGTCGCCAAGACCGTGATCGACGGCCGTCCCTGCCTCAAGCTCACGCTGCTCAACCCGGACGTCACCCTCGACGACGTGCGCCGCGTGCTGACCCTGGTCCGCGACGCCGCGCACGGTCTGCTCGCCGGTCGCGAGCTCGCGGACCTGGCCGCACCGCCCTGCCGGGACGTCCACCCGCACCTGGCCCGCACCACGACCGGAGATCCGCGATGAMSTTPPDTTLTSTDTLLTGATASAYARTVHRVVDDVAARLAAVDQPWSGASRAELTALVDAVDLDSPGIGTGGALRETADLYATHAVWFHDPAYAAHLNCPVAIPAVGAEAMLAAINTSVDTYDQSTVATLMERRLIAWTTERIGLTAGDGVFTSGGTQSNLHALLAARERALTGPDGVRLTGAARHGLQGRLRILATAASHFSVAKSAMILGLADEAVTSVATDAAGRMDPAALADALAATERAGEVAMAVVATAGTTDRGTVDPLARVAELCDATDTWLHVDAAYGGGLLVSPTRRRLLAGIERARSVTVDFHKTFFQPVSASAVLFRDAADLARTAWHADYLNPVEDAAEVNQVDRSLQTTRRFDALKMWTTLRAIGPDGIGAMVDAVCDLAAAVHADLADDAELRLVCGTDLSTVIFRYQPDGVTDAEADALVPAVRRVLFDSGRASVAKTVIDGRPCLKLTLLNPDVTLDDVRRVLTLVRDAAHGLLAGRELADLAAPPCRDVHPHLARTTTGDPRPGPT0013725_159DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-1|3-DIAMINOPROPANE_BIOSYNTHESIS,PGPT0013725-ddc|dfoJ|desA-K13745NANA
AK018_031991767thiC_1COG0422Phosphomethylpyrimidine synthaseATGCACCACGACGCACCGTCGCGCGCGCTCGCCGTCGAGCGGGACGCCCAGTCCGGGATCACGGTCCCGGTCACCGAGATCACCCTGGCCGACTCGCCCGACGGGTCGGCCAACGCCCCGGTGCGGGTCTACCGCACCGAGGGCCCCGGCGGGGACCCCGCCCGCGGTATCCCCGCGCTGCGCGAGGCGTGGATCGCCGAACGCGGCGACACCGAGGAGTACGACGGCCGGGACCGCACCCTGGCCGACGACGGCCGCGGGGCCGCCCGCCGCGGAGCCGCCTCCGCCGAGTGGCAGGGGGCCCGCCGTCGCCCCCGCCGCAGCGCCACCGGCGATCCGATCACCCAGATGGCCTACGCCCGTCGTGGCGAGACCACCCCGGAGATGCGGTTCGTCGCGGTCCGTGAGGGTGTCGACGTCGAGCTCGTGCGCTCCGAGGTCGCTGCCGGCCGGGCGATCATCCCGAACAACGTCAACCACCCCGAGTCGGAGCCGATGATCATCGGCAAGGCGTTCACCGTGAAGGTCAACGCCAACATCGGCAACTCCGCCGTGCACTCCTCGATCGCCGAGGAGGTCGAGAAGCTGCAGTGGGCCACGAAGTGGGGCGCCGACACGGTCATGGACCTGTCCACCGGCGACGACATCCACACCACCCGCGAGTGGCTGCTGCGCAACGCCCCGGTGCCGATCGGCACCGTGCCGATCTACCAGGCGCTCGAGAAGGTCGACGGCGACGCCTCCCGGATGACCTGGGAGATCTACCGCGACACGATCATCGAGCAGTGCGAGCAGGGCGTCGACTACATGACCGTCCACGCGGGGGTGCTGTTGCGCTACGTCCCGCTCACGGCCAACCGCGTGACCGGCATCGTCTCGCGCGGCGGCTCGATCATGGCCGGCTGGTGCCTGGCCCACCACCAGGAGAACTTCCTGTACACGCGGTTCGACGAGCTGTGCGAGATCTTCGCGGCCTACGACGTCGCGTTCTCCCTCGGTGACGGGTTGCGGCCGGGGTCGATCGCGGACGCCAACGACGCCGCCCAGTTCGCCGAGCTCGACACCCTCGCCGAGCTGACCAAGCGCGCCTGGGAGCACGACGTGCAGGTCATGGTCGAGGGTCCCGGGCACATCCCGCTGCACCTGGTGCGCGAGAACGTCGAGCGCCAGCAGGAGCTGTGCGACGGCGCCCCCTTCTACACGCTGGGGCCGCTGGTCACCGACATCGCGCCGGGCTACGACCACATCACCTCGGCCATCGGGGCGACGGAGATCGCCCGCTACGGCACCGCGATGCTCTGCTACGTCACGCCCAAGGAGCACCTCGGGCTGCCGAACCGCGACGACGTGCGCACCGGCGTCGTCACCTACAAGATCGCCGCGCACGCCGCCGACGTCGCCAAGGGGCACCCCGGCGCGACGGCGCGCGACGACGCGCTGAGCAAAGCCCGCTTCGAGTTCCGGTGGCGCGACCAGTTCAACCTGTCGCTCGACCCGGAGCTGGCCGAGTCCTACCACGACGAGACGCTGCCGGCGGAGGCCGCCAAGACGGCGCACTTCTGCTCCATGTGCGGACCGAAGTTCTGCTCGATGCGGATCTCGCAGGACATCCGCGACGAGTTCGGCGACGCCGCGGCCCAGCGTGAGCGGGTCGCCGACGCCGAGGCCGGCATGGCGGAGAAGGCGGCGGAGTTCCGTGCCGCCGGGGGAGAGGTCTACCTGCCCACCCCCACCGTGGGAGCCGCCCCCACCGCCCCCGCGAGGTAGMHHDAPSRALAVERDAQSGITVPVTEITLADSPDGSANAPVRVYRTEGPGGDPARGIPALREAWIAERGDTEEYDGRDRTLADDGRGAARRGAASAEWQGARRRPRRSATGDPITQMAYARRGETTPEMRFVAVREGVDVELVRSEVAAGRAIIPNNVNHPESEPMIIGKAFTVKVNANIGNSAVHSSIAEEVEKLQWATKWGADTVMDLSTGDDIHTTREWLLRNAPVPIGTVPIYQALEKVDGDASRMTWEIYRDTIIEQCEQGVDYMTVHAGVLLRYVPLTANRVTGIVSRGGSIMAGWCLAHHQENFLYTRFDELCEIFAAYDVAFSLGDGLRPGSIADANDAAQFAELDTLAELTKRAWEHDVQVMVEGPGHIPLHLVRENVERQQELCDGAPFYTLGPLVTDIAPGYDHITSAIGATEIARYGTAMLCYVTPKEHLGLPNRDDVRTGVVTYKIAAHAADVAKGHPGATARDDALSKARFEFRWRDQFNLSLDPELAESYHDETLPAEAAKTAHFCSMCGPKFCSMRISQDIRDEFGDAAAQRERVADAEAGMAEKAAEFRAAGGEVYLPTPTVGAAPTAPARPGPT0008905_2374DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BACIMETHRIN|CF3-HMP_DETOXIFICATION,PGPT0008905-thiC-K03147NANA
AK018_032011503hypothetical proteinATGCCGCAGTCGACACGCCCGTACGCCGCCCCGACCGACCTGGACGGTCCCGCCCGCACCGCACGAGCCGACGTCGCACCGCTCGACGCCCGCACGCTCAGTCGCCGCAGCCTCCTCGTCGCCGGTGCCGCCGGCGCGCTGACCCTCGCCGCGGGAACCGAGGCGTGGGCCGGGGGACGAGGGCACGGTGACGAACGGTGGCACGACGGCCGCGGTCCCCACCACGGGGGTCAGCGTTCCCTGCGGTCCTCGGTGCGGCGTGCCGACGACTTCCTCGGCGTCATGACCGCCGCGTACCCCGAGGTGAACGCGGGGCCGCGGATGGCGCAGTCCTACGCCGACCAGCTCGGCCTGTTCTCCACCGCGTTCGTCTACGACGTCGCCCTCACGATCTGCGCGTCCCTCGCCGTCGGGCAGGTGGACCGCGCCGCGACCCTCGCCGACGGGCTCGTCCTCGCCCAGGAGCACGATCCGGCGTACGACGACGGCCGCCTGCGCCAGGGCTACAACACCGGCCCGTACACGTTCTACGACGGCTCGCCGCAGCCGTACGGTCTCGAGCTGCCCGACGGCACCGCCAACATCGGGTGGCAGTTCGGGTTCCTCGGCACCGCCGTCGGGGACATGGCCTGGCCCGGCGTCGCGCTCCTGCACACCTACGCCGCCACCGGAGAGGCGCGCTACCGCGACGCCGCGGTCCGCATCGGCGAGTGGATCCTCGACAACACGTGGTCCGAGCGCACGCTCGGGGGCTTCTCGTTCGGCGTCGACGGTGGGAACACGCCGATCCCCAACGGGTCGACCGAGCACAACGTCGACTGCATCGCGTTCTTCCGCCAGCTCGAGGCCCTCGCCGGTGGGCGACGCTGGCGCCGGGCCCGCGACCACGCGCGCGAGTTCGTCGACCTGATGTGGGACCGTCGCGGCGGGTTCTTCTACACGGGGACGAACGACGGCGAGGAGATCAACCGTTCGCCGCTCCCGCTCGACCCCGCGACCTGGGGGTGGCTCGCCATGCGGGAGAACCGCTACGGCCGTGCCCTCGACTGGGCCGACGACGCCCTCGCCGCCCGGGACGTGGCGGGCACCGGCAACTCCCAGCTCCCCGAGGGTGTGACGATCTCCGGCGTGACGTTCTCCAGCGCCAGCCTGGAGTCCACGGCGTCGTACAACGGACTGCCCGTGCACCAGGACGGCGTGTGGCTGGAAGGCACCGCGCAGCTCGCCTGCGCCCTGGCCGACCGCGGCCGGGGGGCCCGGGACTCGCGCCGCACGCGAGTGCTGCTGGGCCAGGTGCTGCGGACCCAGGAGCTCGTCGGCGCGGGGCAGACCGTCGGTGGCGAGGCGCTCCCGGAGCGCTCCGGCGTCGTGGCGGCCTCCAGCCTGATCGACTCCGGGTTCGGTTTCGGCTACTTCCAGGTGCAGCACACCGGTGCCACGTCCTGGTACGTCATGGCGGCCGAGGGCGTGAACCCGCTGCAGGTGGGCGGTCTCGGCGTCTGAMPQSTRPYAAPTDLDGPARTARADVAPLDARTLSRRSLLVAGAAGALTLAAGTEAWAGGRGHGDERWHDGRGPHHGGQRSLRSSVRRADDFLGVMTAAYPEVNAGPRMAQSYADQLGLFSTAFVYDVALTICASLAVGQVDRAATLADGLVLAQEHDPAYDDGRLRQGYNTGPYTFYDGSPQPYGLELPDGTANIGWQFGFLGTAVGDMAWPGVALLHTYAATGEARYRDAAVRIGEWILDNTWSERTLGGFSFGVDGGNTPIPNGSTEHNVDCIAFFRQLEALAGGRRWRRARDHAREFVDLMWDRRGGFFYTGTNDGEEINRSPLPLDPATWGWLAMRENRYGRALDWADDALAARDVAGTGNSQLPEGVTISGVTFSSASLESTASYNGLPVHQDGVWLEGTAQLACALADRGRGARDSRRTRVLLGQVLRTQELVGAGQTVGGEALPERSGVVAASSLIDSGFGFGYFQVQHTGATSWYVMAAEGVNPLQVGGLGVNANANANANA
AK018_03202426hypothetical proteinATGACGCGCCCCGTGCTCGAGGAGCTGACCGTCGGCGACGTCGTCGCGACGCGCACGGTGCAGATCGACCGCGCCACCCTGGTGCGCTACGCCGGCGCGAGCGGCGACTTCAACCCGATCCACTGGGACGAGCGCTTCGCCCGCGAGGTCGGCCTGCCGGACGTCATCGCGCACGGGATGTGCACGATGGGCACCGTCGTCGACGTCGTGACGGACTGGGTCGGCGACCCGGGTGCGGTCGTGCGCTACGGCACCCGCTTCACCAAGCCCGTCCCGGTCCCCGCCCGGGGCGCGGCCTCCGTAGAGGTCACCGCGACCGTGGGCGCCCTCGACGTCGAGGCGCGCACGGCCCGCATCGACCTGGCCGTCACCCACGACGGCGCCAAGGTGCTCGGCCGGACGCAGGCCGTCGTGCGGCTCGACTGAMTRPVLEELTVGDVVATRTVQIDRATLVRYAGASGDFNPIHWDERFAREVGLPDVIAHGMCTMGTVVDVVTDWVGDPGAVVRYGTRFTKPVPVPARGAASVEVTATVGALDVEARTARIDLAVTHDGAKVLGRTQAVVRLDNANANANANA
AK018_03203480hypothetical proteinGTGGCGAGCACTCCCGACCCCGCGTACGCCGGGCGTGAGTACCCGGCCACGGGTCCGTACGCCGTCGGCCGCGAGAAGATCCGCGAGTTCGCCTCCGCCGTCGGAGCCTCTCACCCCGCGCACCACGACACCGTGGCGGCGCGGGGTCTCGGCTATCCGGACCTCGTCGCGCCGCCCACCTTCGCCGTGGTGATCGCCCAGCGCGCCGAGTCGCAGTATGTCGCCGACCCCGCTGCCGGGGTCGACTTCTCCCGCGTGGTGCACGCCGACGAGGGCTTCACGCACCACCGGCCGATCGTCGCCGGCGACGAGCTGGTCACCGTCCTGCACGTGGACTCGGTGACCCAGCGAGCCGGGATCTCCATGATCAGCACCCGGTGCGAGCTCTACGCCGCCGGTCCCGACGGCGAGGCCGACACCGACGACCACGTCGCCACCGTCACCTCCAGCCTGGTGGTGCGCCCGGAGGAGTCCGCATGAMASTPDPAYAGREYPATGPYAVGREKIREFASAVGASHPAHHDTVAARGLGYPDLVAPPTFAVVIAQRAESQYVADPAAGVDFSRVVHADEGFTHHRPIVAGDELVTVLHVDSVTQRAGISMISTRCELYAAGPDGEADTDDHVATVTSSLVVRPEESANANANANANA
AK018_03204171rpmG2_1COG026750S ribosomal protein L33 2ATGGCTTCCAAGAGCGCGGACGTCCGCCCGAAGATCACGCTCGCCTGCGTGGACTGCAAGGAGCGGAACTACATCACGAAGAAGAACCGCCGGAACAACCCGGACCGTCTTGAGATGGCGAAGTTCTGCCCCCGCTGCGGCAAGCACACCGCGCACCGCGAGACTCGCTGAMASKSADVRPKITLACVDCKERNYITKKNRRNNPDRLEMAKFCPRCGKHTAHRETRNANANANANA
AK018_03208936rarD_1COG2962Protein RarDGTGACGTCCACCGCCCCGGACCACTGGGGCCTCCCGCTCGGACTCGGCGCCTTCCTCCTGTGGGGCGCCATGCCGCTGTTCTTCCCCTTGCTGGAGCCCGCCGGCGCCCTGGAGATCATCGCCCACCGCATCGTGTGGTCGCTCGTCTTCTGCCTGGTGCTGCTCGCCGCGACGCGCTCGCTCGGGGCGTTCGCCGCCGTGCTGCGCAACCCGCGCGCGCTCGGGCTCTTCGCGATCGCCTCGGCGCTGATCATCGTCAACTGGACCACCTACGTCTACGCGGTCCTGACGGGGCACGTGCTGGACGCCGCGCTCGGCTACTTCATCAACCCCCTGCTGACGGTGCTGCTCGGCATCGTGGTGCTGCGCGAACGGCTGCGCCCCGCACAGTGGGTCGCGCTCGGGCTCGGGGCCGCCGCCGTCGTGGTCATCTCGACAGGCGTGGGCGGCCTGCCCTGGATCTCGCTGGTGCTGGCCGGCGCGTTCGGGCTGTACTCCCTGGTCAAGAACCGCGTCGGGCGCGGTGTGGACGCGCTGCCCGGGCTCGCCGCTGAGACCGCCGTCGCCACCCCGTTCGCCCTCGCCTTCCTGGGCTGGCTCGCCGTCACCGGCGCCGGCACGTCCAGCACCCAGGGCACGGGCCACGCCCTGCTGCTCATGGCGTGCGGCGTCGTCACCGGGCTGCCGCTGCTGCTGTTCTCGGCGGCGGCCCGGCGCCTGCCGCTCAGCGTGGTCGGCATGCTGCAGTACCTCACCCCGGTGCTGCAGTTCCTGCTCGGCCTGCTCGTGTTCGACGAGCACATGCCCACCACCCGGTGGGTCGGCTTCGCCCTGGTGTGGGTCGCGCTGGTGGTCCTGACCGTCGACGCCACCCGGGCGTCCCGCGCCGCCCGCCTGGCCGCCGTCGGACGCACTACCGTGGACCCAGCACTCTGAMTSTAPDHWGLPLGLGAFLLWGAMPLFFPLLEPAGALEIIAHRIVWSLVFCLVLLAATRSLGAFAAVLRNPRALGLFAIASALIIVNWTTYVYAVLTGHVLDAALGYFINPLLTVLLGIVVLRERLRPAQWVALGLGAAAVVVISTGVGGLPWISLVLAGAFGLYSLVKNRVGRGVDALPGLAAETAVATPFALAFLGWLAVTGAGTSSTQGTGHALLLMACGVVTGLPLLLFSAAARRLPLSVVGMLQYLTPVLQFLLGLLVFDEHMPTTRWVGFALVWVALVVLTVDATRASRAARLAAVGRTTVDPALPGPT0003906_400DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786NANA
AK018_03209495hypothetical proteinGTGGCCGACTCGTCGTTCGACATCGTCTCCAAGGTGGACCGCCAGGAGGTCGACAACGCCCTCAACCAGGCCGCCAAGGAGATCAATCAGCGCTACGACTTCCGCGGCGTCGGCGCCTCCATCTCCTGGAGCGGCGAGTCGATCCTCATCGTCGCGAACAGCGCCGAGCGCGTGAACGCCGCCCTCGACGTGTTCCAGACCAAGCTCGTCAAGCGCGGCGTCTCGCTCAAGGCGATCGACACCGGCGAGGGCGAGCCGCAGCCGTCCGGCAAGGAGTACCGCCTCGGCGCCTCGCTCAAGGAGGGCCTGTCCGGCGAGAACGCCAAGAAGATCACCAAGCTGATCCGCGACGAGGGACCCAAGGGCGTCAAGACGCAGATCACCGGCGACGAGGTCCGCGTGACCTCCAAGAGCCGCGACGACCTGCAGTCCGTGATCGCCCTGCTCAAGGGCGCCGACCTCGACGTCGCCCTGCAGTTCGTCAACTACCGGTGAMADSSFDIVSKVDRQEVDNALNQAAKEINQRYDFRGVGASISWSGESILIVANSAERVNAALDVFQTKLVKRGVSLKAIDTGEGEPQPSGKEYRLGASLKEGLSGENAKKITKLIRDEGPKGVKTQITGDEVRVTSKSRDDLQSVIALLKGADLDVALQFVNYRPGPT0012210_275DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0012210-yajQ-K09767NANA
AK018_032102769pacLCOG0474Calcium-transporting ATPaseATGAGCGAGAACGTCTCCGTCACGACCCAGACCCCTGAGCAACCGTGGCACTCGCAGACGGCCGAAGCAGTCGTCGAGGCGCTCGGATCCGACCGCTCGACGGGCCTGGCAGCAGAGGAGGTCGAGCGGAGAAGATCCCGGTGCGGGCCCAACGTGATCACCAGCGAGCGCCCGCCCTCCCTGTGGGCCGTCGCTGTCGCGCTGCTGCGCGATCCGATGAACCTCATGCTCGTCGCCGTCTCCGTCGTGAGCTTTGTCATCGGAGAGATCTCGACAGCTCTCATCGTTGCGCTGCTCGTCGCTCTCAATGTCTTTCTCGGATCCCGGCAGGAGCTCAGGGCGCGAGAGAGTGTCGACGCGCTCTCGAGCATGCAGGTGCCGACGGCACGTGTTCTGCGCGGCGGACGGGTGTCGTTGGTCCCCGCCGTCGACCTGGTGCCGGGGGACGTGATCATGCTCGAGGCCGGTGACATCGTGCCGGCCGACGGACGGATCGTGCGCTCCGCGACGGTCGAGACCCAGGAGGCGGCTCTCACCGGTGAGAGCACCCCTGTGCCGAAGGCCGCCGCTGCTCTCCCAGCCGACGACGTCGCTCTCGGGGACCGGTCCAACATGCTCTTCCAGAACACATCGGTGACGCGGGGCACTGCCACCCTGGTCGTGACCGACACCGGGATGAGTACGCAGATGGGGCGGATCGCCACGATGCTGACCCAGGTGAACCGGTCCCGCAGCCCTTTGCAGCGGGAGCTCGACAGCCTGACCAAGGTGCTCGGGATCATCGCCTGGGGTGCCGTGGCGCTCATCATCGTCGCGGGGCTCCTCCGCGGTACGGACGCCCAGAACCTCTTCCTCCTGGGCACCGCCATGGCCATCTCGGCGATCCCGACCGGACTGCCCGCCTTCGTCTCGGGACTGCTTTCGATGGGCGCCAAGCAGCTGGCAGAAGCCAGGGCCGTCGTGAAGAACCTCACCGACGTGGAGACGCTCGGTGCGACGAGCGCCATCAACTCCGACAAGACGGGCACACTGACCCTGAACGAGATGATGGTGTCGACGGCCTACACGAACGGCTCGTGGTTCGAGGTCGAGGGCGAGGGCTACCGCAAGAGCGGGGCCATCCTCGGTGTGGCCGGGTCCCCGGTCCCCGACTTCTCACGGCTCGCCCTCGGTCTGGTGCTCGACAGCGACGCGACCGTCAGCGACGACGGCGCGGTGATCGGTGACCCCACCGAGGCTGCCCTCGTCGTGCTCGCCGCGAAGCTCGGGGTCAGCGCGGAGGAGACCCGTCGGGCGTACCCCCGGCTCGCCGAGGTGCCGTTCGACTCGGAGTACAAGTTCATGGCGACGTTCCACCGGATGCAGATCGACGGCGTGGAGCGGATCGTCGAGTTCGTGAAGGGTGGGCCCGACGTCGTACTTGCCCGGTGCACCCGGGCCGGCGGCCCGCTCCGCAGCGAGTCCGTGCCGATGCCGGAAGTTCGCAAGGATGTCGAGCAGGCGAATGCGCGGATGGGCGAACGTGGCCTCCGTGTCCTCGCCTTCGCCTATCGCTTCGTCGAGGAGAGCGACCTCGATCGAATGGCGAGCGACCCGATGGCGCTGGTGGACGATCTCGAGTTCGTCGGGATGGTCGGCATCATCGACCCGCTGCGCCCGTCCTCCCGGGAAGCGGTCCGGATCGCTCGACGGGCCGGCATCGACGTCCGCATGATCACCGGCGACCATACGGGGACCGCGCGTGCGATCGGGGCCGACCTCGGGCTTGGTCCGGGTGCCATCAGTGGCACCGAGCTGGCCCGGCTCTCGGACGAAGAACTCCGTGAGAGGCTTCCACGGCTCCATGTCTTCGGCCGCGTGACCCCCGAGGACAAGTTGCGTCTAGCGCGCGTCATGCAGGAGACCGGTCTCGTCGTCGCGATGACCGGGGACGCGGTCAATGACGCTGCCGCACTCAAGCAGGCCGATATCGGTGTGGCGATGGGCAGCGGGAGCGAGGTGACGAAGCAGGCCGGCAGGATGATCCTCACGGACGACAACTTCGGAACCCTCGTGCACGCCGTCGAACTCGGCCGCCGGGTCTACGACAAGGTCGCCGCCTACATCCGATATCAGATGACCCAGTTGTTGTCCCTCATCATGTTGTTCGTCGCAGCGACGATCTTCGATATCAACGGCGGTGTCGCGCTCACCCCGTCCATGATCCTCTTTCTGCTGTTCGTCTTCACGTCGGCGGGCGTCGTCATGATCGCGGTCGACCCAGGTGATCCTGAGATCATGGACCGAAGGCCACGTGATCCGAGGGTGCCGATCGCCAGCCGCAACGCCATCCTGTCGTGGTTGCTGTACGCAGCCGTCCTCTTCGTCGCCGCCCTGGTCCCGCTGGTGGCCGGACCTGATGAACCGAGCGTCACGGCGGCGAGCACGTCCATGACGATGACGTTCGTCGTCATGGGCCTGGGCACCGTTCTCAACGCGCTGGTCAATCGCCGTGATCCCAGCAGCGGTCTCGCCGCGCCGGTGCTCAAGGCGCTGGCGATCGGCCTGGTGCCGGTGGCCGTCCTGATGCTCTCGACCCAGTTGCCGTCGCTACGGTCGGCGTTGTCCACCGTGCCCCTCACCGGAGGCCAGTGGCTCGCGTCGATCGGTCTCGCGCTCCTGCTGCCTCTCGCCATCGAGGGAAACAAGTGGGTGCGCCGACGTCGCGGGGCGACGCGGGGTGCTCGACTCGACGTCGGATCAGCGACCGCTCAGCGCACCTCTGAGTAGMSENVSVTTQTPEQPWHSQTAEAVVEALGSDRSTGLAAEEVERRRSRCGPNVITSERPPSLWAVAVALLRDPMNLMLVAVSVVSFVIGEISTALIVALLVALNVFLGSRQELRARESVDALSSMQVPTARVLRGGRVSLVPAVDLVPGDVIMLEAGDIVPADGRIVRSATVETQEAALTGESTPVPKAAAALPADDVALGDRSNMLFQNTSVTRGTATLVVTDTGMSTQMGRIATMLTQVNRSRSPLQRELDSLTKVLGIIAWGAVALIIVAGLLRGTDAQNLFLLGTAMAISAIPTGLPAFVSGLLSMGAKQLAEARAVVKNLTDVETLGATSAINSDKTGTLTLNEMMVSTAYTNGSWFEVEGEGYRKSGAILGVAGSPVPDFSRLALGLVLDSDATVSDDGAVIGDPTEAALVVLAAKLGVSAEETRRAYPRLAEVPFDSEYKFMATFHRMQIDGVERIVEFVKGGPDVVLARCTRAGGPLRSESVPMPEVRKDVEQANARMGERGLRVLAFAYRFVEESDLDRMASDPMALVDDLEFVGMVGIIDPLRPSSREAVRIARRAGIDVRMITGDHTGTARAIGADLGLGPGAISGTELARLSDEELRERLPRLHVFGRVTPEDKLRLARVMQETGLVVAMTGDAVNDAAALKQADIGVAMGSGSEVTKQAGRMILTDDNFGTLVHAVELGRRVYDKVAAYIRYQMTQLLSLIMLFVAATIFDINGGVALTPSMILFLLFVFTSAGVVMIAVDPGDPEIMDRRPRDPRVPIASRNAILSWLLYAAVLFVAALVPLVAGPDEPSVTAASTSMTMTFVVMGLGTVLNALVNRRDPSSGLAAPVLKALAIGLVPVAVLMLSTQLPSLRSALSTVPLTGGQWLASIGLALLLPLAIEGNKWVRRRRGATRGARLDVGSATAQRTSEPGPT0013990_3230DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CALCIUM_TRANSPORT,PGPT0013990-yloB|ctpA-K01537NANA
AK018_03211930yitUCOG05615-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YitUATGGCAGTCGACCAAGAACCAGAGGCCGGACCCGACCGCAGGCCTCGCCTGGTCGCGTCCGACCTGGACGGGACGCTCCTGCGCTCGGACGGCACGGTCTCGGACCGCACGCGCTCCGCGCTGCGCGCGGCGGAGGACGCGGGCATCGAGGTGGTCCTCGTCACGGCGCGCCCGCCCCGCTGGCTGAGCGGCCTGGCCGACTGCGTCGGTACTCACGGCCGCGTGGTCTGCCTCGGCGGGGCGGCCGTGTGGGACCTGGCCTCGGGGCAGGCGCTGGAGGTCGACGGGTTCGCCGACGACGCCGTCCGCGGGCTCGCCGCCGACCTGCGCGACGCCGTGCCGGACGTCGCCCTGGCCTTCGAGCGCACCGACGGCCCGGCGTTCGACCCCTGGTTCCCGAAGGACGAGCCCGGCCTGCCCGACCATGTGCGTGCCGTCCCCGTGGAGCAGACGCTGCCCGACGGCGGCCCCCCGGTCGGCGAGGCGACGGACGTCGGGCGCAGGGCACCGGTCGGCAAGCTGCTCGCCGTCCGACCGGGCTCGGCACCTTCGACCCGCGTCGGCGACGTGCAGCGAGGCGACGTCGCGGACGCCGCTCAGGAAGCGTTCTTCGCGACGGTGCGTGACGTCGTCGGGCAGCGGGCCCACCTGGCGTTCTCCGGCGCGGCGGGCCTGGCCGAGCTGCTCGCCCCGTCGGTGACCAAGGACGTGGCGCTGGCCCGCTGGTGCGACCGGCTCGGGATCGACGCCGCCGGTGTGTGGGCGTTCGGGGACATGCCCAACGACCTGCCCATGCTGCGCTGGGCCGGGTGGGGTCTCGCCGTCGCGAACGGTCACCCCGACGTGCTGGGCTGCGCCGACGAGGTCGTGGGCGCCAACGACGACGACGGCGTCGCCGTCGCACTCGAGGCCGTGCTCGCGCAGTCCTGAMAVDQEPEAGPDRRPRLVASDLDGTLLRSDGTVSDRTRSALRAAEDAGIEVVLVTARPPRWLSGLADCVGTHGRVVCLGGAAVWDLASGQALEVDGFADDAVRGLAADLRDAVPDVALAFERTDGPAFDPWFPKDEPGLPDHVRAVPVEQTLPDGGPPVGEATDVGRRAPVGKLLAVRPGSAPSTRVGDVQRGDVADAAQEAFFATVRDVVGQRAHLAFSGAAGLAELLAPSVTKDVALARWCDRLGIDAAGVWAFGDMPNDLPMLRWAGWGLAVANGHPDVLGCADEVVGANDDDGVAVALEAVLAQSPGPT0017726_3DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017726-yigL-NANANA
AK018_03212861hypothetical proteinATGACCGACCACACCACGCCGCCCCGCGCCTTGTCCCCGGCCCTGGACGAGGACCCTCGCGTCGCCGAGTGGGAGCGGCGCACCGAGTGGCCGCTGATCGCGGCCGCCGGGGTCTTCCTGGTCGCCTACGCCGTCCCGATCGTGTGGCCCACGGCCCCGAGCACGGTCCACAGCGTGTGCCAGTGGGTGGTGCTGGGTTCCTGGCTCGTCTTCGTCGTGGACTACGCCGCCCGTCTGCTGCTGTCCGAGCGGCGCTGGTGGTTCGTGCGCCACAACCTGCTCGACCTGGCGATCGTCGCGGTGCCGCTGCTGCGGCCGTTGCGGCTGCTGCTCCTGGTCAAGGCGATCAAGCGGCTCAACCGGGCCGGGGCGACGGCCATGCGCGGCAAGGTCGTGCTCTACGCCGCCGCGGGGTCGGCGCTGCTCGTGCTGGCCGGCGCCCTGGCGGTCACCGACGCCGAGCGGGGTGCCCCGGACAGCACCATCCAGAACGTGGGCGACGGCTTCTGGTGGGCGCTGGTGACGATGGCGACGGTCGGGTACGGCGACACCTACCCGGTGACGGTCACCGGCCGGTTCGTGGCGGTCGGCATGATGCTGGGCGGCATCGCGGTGCTGGGTGTCGTGACGGCGACGCTGTCGTCGTGGCTCGTGCAGAACGTCGAGGAGCGCTCGGACGAGGAGCGCGCCGAGCGCCGGGACTCCACGGACGACCTGTGGGCCCGGCGCGGCGACGTGGAGGGCCTGGTCGCCGAGGTCCGTGCCCTGCGCGAGGAGGTGTCGCGGCTGCGGCCCGACGGCGGCACGACCGCCGTGGCGGAGGCGCCGCCCACGCCGTCGGACACACCGCCGGCCCGCTGAMTDHTTPPRALSPALDEDPRVAEWERRTEWPLIAAAGVFLVAYAVPIVWPTAPSTVHSVCQWVVLGSWLVFVVDYAARLLLSERRWWFVRHNLLDLAIVAVPLLRPLRLLLLVKAIKRLNRAGATAMRGKVVLYAAAGSALLVLAGALAVTDAERGAPDSTIQNVGDGFWWALVTMATVGYGDTYPVTVTGRFVAVGMMLGGIAVLGVVTATLSSWLVQNVEERSDEERAERRDSTDDLWARRGDVEGLVAEVRALREEVSRLRPDGGTTAVAEAPPTPSDTPPARPGPT0002715_4519DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002715-kch|trkA|mthK|pch-K10716NANA
AK018_03213894htpX_2COG0501Protease HtpXGTGGGTCATCGCCACTTCAACGGTCTGAAGACCGTCCTGCTGTTCGGTGTGCTGTGGGCGGTACTGCTCGGTCTGTGGGCGGTGTTCTTCCGCGGCAGCCAGGGCATGCTGTTCCTCTTCACGGCCATCGGTCTGATCGGGACGTTCGTCGGGTACTGGAACTCCGACAAGATCGCGATCAAGGCGATGCACGCCTACCCGGTGACCGAGCTCGAGGCACCGGAGATGTACCGGATCGTGCGCGAGCTGTCCACGGTGGCCCGCCAGCCCATGCCGCGGCTGTACATCTCGCCCACCCAGGCGCCCAACGCGTTCGCCACCGGCCGCAACCCCAAGAACGCCGCCGTGTGCTGCACCGAGGGCATCCTGCGCATCCTCGACGAGCGTGAGCTGCGCGGCGTGCTGGGCCACGAGCTGATGCATGTCTACAACCGCGACATCCTCACCTCTTCGGTCGCGTCCGCGTTGGCGGGCGTCATCACGTCGCTCGCGCAGTTCCTGCTGATCTTCGGCGGCGGGGACCGTCGCGAGGGCGGCAACCCGCTGGCCGCGATCGCCCTGGCGATCCTCGCGCCGTTCGCGGCGATGCTCATCCAGATGGCCATCTCCCGCACCCGCGAGTACGACGCCGACGAGGACGGCGCCAAGCTCACCGGCGACCCGATGGCGCTGGCCTCCGCGCTGCGCAAGCTCGAGCAGGGCACCAAGGCGGCCCCGCTGCCGCAGACGCAGTCGCTGGAGAACGTGTCCCACCTGATGCTCGCCAACCCGTTCCGCGGTGGCGGCATGGCCAAGCTGTTCTCCACCCACCCGCCGATGGACGACCGCATCGCCCGGCTGGAGAAGATGGCCGGCGGCACCGGGTTCGGCCCGGGCGGCATCACCCGGTACTGAMGHRHFNGLKTVLLFGVLWAVLLGLWAVFFRGSQGMLFLFTAIGLIGTFVGYWNSDKIAIKAMHAYPVTELEAPEMYRIVRELSTVARQPMPRLYISPTQAPNAFATGRNPKNAAVCCTEGILRILDERELRGVLGHELMHVYNRDILTSSVASALAGVITSLAQFLLIFGGGDRREGGNPLAAIALAILAPFAAMLIQMAISRTREYDADEDGAKLTGDPMALASALRKLEQGTKAAPLPQTQSLENVSHLMLANPFRGGGMAKLFSTHPPMDDRIARLEKMAGGTGFGPGGITRYPGPT0014605_1839DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014605-htpX|ykrL-K03799NANA
AK018_032141407fprA_1COG0493NADPH-ferredoxin reductase FprAGTGAGCAGCACCCGACCTCTGCGCGTCGCGATCGTCGGCGCAGGCCCCGCGGGCATCTACGCCGCGGACATCCTGTCCAAGACCGACCTCGACGTCAGCATCGACCTCTTCGAGCGGCTGCCGGCCCCCTTCGGCCTCGTGCGCTACGGCGTCGCCCCCGACCACCCGCGGATCAAGGGCATCATCGGTGCCCTGCACAAGGTGCTGTCCCGGGGTGACGTGCGTCTGCTGGCCAACGTCAACTACGGCGTGGACCTCAAGCTGGAGGACCTGCGGCAGTACTACGACGCCGTCGTCTTCTCCACGGGCGCCATCAAGGACGCCGAGCTGCCGATCCCCGGCATCGACCTGGACGGGTCCTACGGCGCCGCCGACTTCGTCTCCTGGTTCGACGGGCACCCCGACGTGCCGCGCACCTGGCCGCTGGAGGCCCAGCACGTCGCCGTTCTCGGCGCCGGCAACGTGGCACTGGACGTCTCACGCATCCTGGCCAAGCACCCCAAGGACCTGATGTCCACGGAGATCCCGGCCAACGTCCAGGCGGGCCTCGAGGCCTCGCCGGTCACCGACGTGCACGTCTTCGCGCGCCGCGGCCCGGCCCAGGTGAAGTTCTCGCCGCTGGAGCTGCGCGAGCTCGGCCACGTGCCGGACGTCGACATCGTGGTCTACCCGGAGGACTTCGACTTCGACGAGGGCTCGATGGCCGCCATCGAGGCCACGAACCAGACCAAGCAGGTCGTCAAGACCCTCACGGACTGGACCCTGGTCGAGCCGTCCCAGCAGACGGCGTCGCGGCGCATCCACCTGCACTTCCTGCAGGCCCCGTCCGAGGTGCTCGGCGAGGACGGCAAGGTCGTCGGGCTGCGCACCGAGCGCACGGCGCTGCAGGGCGACGGCACGGTCAAGGGCACCGGCGAGTTCCACGACTGGCCGGTCCAGGCCGTCTACCGCGCCGTCGGCTACTTCGGCTCCCCGCTGCCGGAGATCCCCTTCGACGACCTCAAGGGCGTCATCTCCAACCGCGAGGGACGCGTCGTCGACCTCGACGGCGAGCACCTGCCCGGCGTGTACGCCACCGGCTGGATCAAGCGCGGACCCGTGGGCCTCATCGGGCACACCAAGTCCGACGCCTCAGAGACGATCCGCCACCTGGTCGAGGACGTCACCGGCGTCGGCGACGGCGGCGACGTGGCCGACGGGTCGCTCGACGGCGGCCGCACCGCCCCGCACGGCGAGCCGGCGCAGATCGTCGACTTCCTCGTCGAGCGCGGCGTCGACGTGATCACCTGGGACGAGTTCACGCTGCTGGACGCCCACGAGCTCGGTCTCGGCGAGACCGCCGGTCGCGAGCGCGTCAAGGTCGTCCCGCGCGAGGAGATGATCGACATCGCCAAGGGTCGCGCCTGAMSSTRPLRVAIVGAGPAGIYAADILSKTDLDVSIDLFERLPAPFGLVRYGVAPDHPRIKGIIGALHKVLSRGDVRLLANVNYGVDLKLEDLRQYYDAVVFSTGAIKDAELPIPGIDLDGSYGAADFVSWFDGHPDVPRTWPLEAQHVAVLGAGNVALDVSRILAKHPKDLMSTEIPANVQAGLEASPVTDVHVFARRGPAQVKFSPLELRELGHVPDVDIVVYPEDFDFDEGSMAAIEATNQTKQVVKTLTDWTLVEPSQQTASRRIHLHFLQAPSEVLGEDGKVVGLRTERTALQGDGTVKGTGEFHDWPVQAVYRAVGYFGSPLPEIPFDDLKGVISNREGRVVDLDGEHLPGVYATGWIKRGPVGLIGHTKSDASETIRHLVEDVTGVGDGGDVADGSLDGGRTAPHGEPAQIVDFLVERGVDVITWDEFTLLDAHELGLGETAGRERVKVVPREEMIDIAKGRAPGPT0013215_564DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
AK018_03215612hypothetical proteinGTGGCGGGACGGATTCCGAGGAACGGGGCCACGACAGCTCTCGTGGCTGTGGCCGCGCTCCTGATGCTGAGCTTGCTGCTCGACCTGACCGGTGGCGGCGCCGGGGCGACGATGCTGGGGTTCGCGCTGCTCGTCGCGGCCGCTGTCGTGGTCGCCGTCCTGTGGGGTGCGCGCCGGCGTGTCGTCGCCTGTGCCCGCAACGCTGCGCGCCACCGCCCGGGAGCCGTCGTGGTCCCTGGCGTGACGACCGCGGAGATGCCCGCGATCGCCCGGCACCAGGGGTCGGCCCGTGGCTGGTCGTCGGCGGGCGGCAGTGCGGTCGCCGTCGTGGTGTCGCCGACGGAGCTGGAGGTGTGGGGCCGGCGGGACACCGCGCCCCGCTGGGTGGTGCAGCGCACCCGTGACGGCGTCACGAGCAACACCGCCACGTTCGGTGGCCGGGAGGTTCCGGCCGTGTGGGCGCACGACGGTCTCGCGGCGGTGGTGTTCGTCCCCGCCTATCGGCCCCTGCGGGCCAGTGCGGGGATGGTGGGGGACGACGTGGGGCGGGCTCTGGTCGACCTCGGTGCCGACCCCGGCGGACGATCCGCCGACGATGATGTCATGATGTGAMAGRIPRNGATTALVAVAALLMLSLLLDLTGGGAGATMLGFALLVAAAVVVAVLWGARRRVVACARNAARHRPGAVVVPGVTTAEMPAIARHQGSARGWSSAGGSAVAVVVSPTELEVWGRRDTAPRWVVQRTRDGVTSNTATFGGREVPAVWAHDGLAAVVFVPAYRPLRASAGMVGDDVGRALVDLGADPGGRSADDDVMMNANANANANA
AK018_03216435hypothetical proteinATGACCGATGTGACCGACACGGCGGCCTTCGGCGCGCTGACAGTGGTCGCGGCCCTGCTGGTCTCGGCCGGGTGCGCGGTGTACGTGGTGGTGACGTGGCGCCGGCAGCGGGCCTACGCGAAGGGTGTGCGGGGCACCGCCGTGGTGGTCGGTGTCGAGGCCACGCCCTGGGCGGTGCGGCACAACCACTTCGCCCGGGCGACCGAGACGGTCACGGTGGCGACCCACCAGCGCCCGCACGGCGTCCGGCAGGAACGGATCCCGCCCGGGCAGTACGTGGTGGGGCAGGTGGTCGACGTGGTGCAGCCGGTGGGCCGCCCGGACCTGGTGCGCCTCGATCGTACCGACGTCGTCGGGATGCCTCGCCTGGTGTGGGGGTTCGCGGCCATGGCGGTCCTGGCCCCGGTCATCGCGCTGCGCGGCCTGGCGTCGTGAMTDVTDTAAFGALTVVAALLVSAGCAVYVVVTWRRQRAYAKGVRGTAVVVGVEATPWAVRHNHFARATETVTVATHQRPHGVRQERIPPGQYVVGQVVDVVQPVGRPDLVRLDRTDVVGMPRLVWGFAAMAVLAPVIALRGLASNANANANANA
AK018_03217543hypothetical proteinGTGAGCGGCCCCTACTCCCGGGCGAACCGCCGGGCAGCTCTCACAGGCTTCGGCTATCTGGCGCTCGTCGGTGGCCCGCTCGCCCTGCTGATGGCCGTGGTCATGGGGCTCGGCATCTGGCCGCCGGTCGACGACGGAGCGGTCGACGTCGCGGCGTCGGCACCGGCGGGGGACTCGCTCGAGATCGACGAGTTCGACCCGATCGTGGTGTGGGGCGTGCCGGCCGACGTCGATCTGACGGACGTCGTGTGCGCGGAGGAGGACGGTCCGGTCGCGGTGGACGGTGCGCCGGACGCGGACGGTCCGGCGCAGCGGCCGAACAGTGAGGGCGCGACGATGACGAGGCTCCTGGTGAGCGAGTACGACGAGATGATCTCGTGCAGCGGTGGGGGGCTGACCGAGTTCGGCTACGAGGTGCTCGACGGTCCGGACCGCGGGCAGGGTGCACTGTTCTTCGGGATCTGGGGAGTGATCATCACGGTGGCCGGCCTGCTGGCACGGCGCCTGACGCGCGAGCCCACCGGTCGCCGGGAGGACGGATGAMSGPYSRANRRAALTGFGYLALVGGPLALLMAVVMGLGIWPPVDDGAVDVAASAPAGDSLEIDEFDPIVVWGVPADVDLTDVVCAEEDGPVAVDGAPDADGPAQRPNSEGATMTRLLVSEYDEMISCSGGGLTEFGYEVLDGPDRGQGALFFGIWGVIITVAGLLARRLTREPTGRREDGNANANANANA
AK018_032181587ompAOuter membrane protein AATGGCGACGAACCTTCGATCCCGCAGTCTCAAGATGTCCTGGGGGGCACTCGTGGCTGTGCTTCTGGCAGCGTCGACCGCGGCCTGCGACGACTCCCCGGACGAGACCGTCGGGCCGACGCCGCGGGCCGACGTGTCCGCGGCTCCGGCGACCGACCTGTCGGCGCCCGCCGAGACCGTGGACCTCGTCGTGGGCGGCGCCGAGGTGACGGCGGAGGTGTTTCCGCTGGTCCGGTCCGGCGAACACATCGTCCTGACCCTGGACCTGGCGACCGACGCCACGGAAGACGTCACCCTGGGGAGGATCTTCCGCGGTGAGGTGGTGGACGCTCCCGTGGAGGGCGGTGGTATCCGATTGGTCGACCTGGAGGAGAAGCAGGTCTACCTGCCAGGGCTGGACGCTCACGGTGATCCCGTCGGTACCGGGGAACGACTGGGATTCCTGGACCCCGCGGGCATGCGGGTCCAACGGGTGTACACGGCACCGGACGGGCCGGCGGACTCGCTGGGCGTGCTGCTGCCCGGGGAATACCTGACTGAGGTGCCCGTGGCCGACGGTGAGATACCTGGGCCGGCCCTGACGAGCGCGGAGGACGTCTCCGCGGAGCCCGTCGAGGCGACAGATCCGTCCGAGGTCGCCGAGGCTCCCGTCCTGTCCCTGGAGTCGTTCACGGCCGAGCTGGACGGAGCTGTCAGGGTGCTGGAGTCCACCGAGGAGGTCACGGTCAACCTGGGCGGCGACGTGCTGTTCGACTCGTCGTCGGCGGAACTGCGCCCGGATGCGCAGGCCGCGATCGACGCCTCGGCGCGGCGCATCGAAGAGCGGGCCCCGGGCACGGTGTCCGTCGTGGGCCATACGGATGACGTAGACGGCGAGGCGTCGAACCAGAAGCTGTCCCAGCGCCGCGCCGACGCGGTTGCCGATGCCTTGAGCGAGCGGCTCGACGCATCGGACTATCCGCTGGAGACGTCCGGACGGGGAGAGAGCGAGCCGCTGGTGGCCAACACGACGGACGAGAACCGCCAGCTGAACCGACGGGTGGCGATCAGGCTGGTCTCCGAGGTGACGACGACGTCCGAGGTGGCGGCTGAGGGTGAGCTCCCCTCGTTCGAGGACGGCCCGGTCGGGACCGGTGCCGAGGGTGTGGTGGTCGACGGGACCCGTCCGTGGCGCTACACCGTGCCGGAGGCGCGGCGTGTGGGTGATTCCGTGGTGGTGGATCTGCAGGTGACGGCCGAGGACGACGAGGTCGAGTCCGGTTTCGGACCGGGGAACCTGGCCGGCTACTGGTCATACCGCGGTGACGACGTGTCCGTTCCGAAGAACATGCTGGGTCTCACGGTCCTCTCCGGCACGTCTGCCGTCTACCCGTACGACTACAAGATCCGTGAGGACGAGGACATCGAGGTCTGGAACCCTCTGGGCGAGCTCGACACGCTGCGCCGGGTCGACGGCGGCGAGACGGTCACGTTCACGGCGGTCTATCCCGGATTCGAGGATGTCGAGACCATCACCGTCCAGCTCAACCACAACGCCGGGGCCATGCCCTTCCGTCTGACCGACATCCCCGTGGTCGGAAGACGGTGAMATNLRSRSLKMSWGALVAVLLAASTAACDDSPDETVGPTPRADVSAAPATDLSAPAETVDLVVGGAEVTAEVFPLVRSGEHIVLTLDLATDATEDVTLGRIFRGEVVDAPVEGGGIRLVDLEEKQVYLPGLDAHGDPVGTGERLGFLDPAGMRVQRVYTAPDGPADSLGVLLPGEYLTEVPVADGEIPGPALTSAEDVSAEPVEATDPSEVAEAPVLSLESFTAELDGAVRVLESTEEVTVNLGGDVLFDSSSAELRPDAQAAIDASARRIEERAPGTVSVVGHTDDVDGEASNQKLSQRRADAVADALSERLDASDYPLETSGRGESEPLVANTTDENRQLNRRVAIRLVSEVTTTSEVAAEGELPSFEDGPVGTGAEGVVVDGTRPWRYTVPEARRVGDSVVVDLQVTAEDDEVESGFGPGNLAGYWSYRGDDVSVPKNMLGLTVLSGTSAVYPYDYKIREDEDIEVWNPLGELDTLRRVDGGETVTFTAVYPGFEDVETITVQLNHNAGAMPFRLTDIPVVGRRPGPT0022215_442DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-SURFACE_ATTACHMENTSURFACE_ADHESIONOTHER_SURFACE_ADHESION_PROTEINS,PGPT0022215-ompA_ompF_porin|oprF-K03286NANA
AK018_03219594hypothetical proteinGTGCGAACGGTCGTCGTGGGAATGGTCGTCGCGTCGATGTTGGCGGTCGCGGGCTGCGGCGCGCACGGGCCCGAGGAAGGTGCCGGCTCGCAGTCGTCGCCGACGGAGGACACGGCAACCGCGTGGTCCGTCGCGCCGGCGGCGGCGATCGACGCCGCGAGCCCCGCCACCCAGGACGGGATCACGGTCCAGGTACCCGATGGTTGGGTCACGGATCGTTCTGAGGTCGAAGGGGCCGTCCAGATCGTGGTGTTCGACCCGGCCGACGAGCTGAACCCTGTCGCGATCACGGTCAGCGCGGACGCGAGCGACGAGGCGGTGGACGTTCAGACGGACGTGACGTGGACACAGCTCGGGGCGGCCGGGGCGACCGAGCTCGAGCGCCACCCTGTCGAGTGGACGACCTGGCCGTACGCGCAGGCGATCACCGGCGTGGTCCAGCGCGAGGACGGTGCCAGTTCGACGTTCCTCTCGATCAGCGCGCGGGACGAGTCGGAGTCGATCATGGTGAGCGTGTCGGCGCAGACTGCCGAGGGTGATCTCGAGGAGTCGCTGCAGTACCAGGTGCTGCAGACGGTGGAGCCCGCGTCGTGAMRTVVVGMVVASMLAVAGCGAHGPEEGAGSQSSPTEDTATAWSVAPAAAIDAASPATQDGITVQVPDGWVTDRSEVEGAVQIVVFDPADELNPVAITVSADASDEAVDVQTDVTWTQLGAAGATELERHPVEWTTWPYAQAITGVVQREDGASSTFLSISARDESESIMVSVSAQTAEGDLEESLQYQVLQTVEPASNANANANANA
AK018_03220591hypothetical proteinATGGACGATCCCGTCACCGCGCCCTGGGGGGCACGTCTCCAAGCGGAGATCGCCCCGCATCGTCGTGCGGCCACCGTCGGCGCCCTGCCCGCCGTGCTCTGGGCCGTCTGGGTCAGCGGTCCCGGGTGGACGGCCCCGGCGCTCGCGGTCGCTGCGGTCGCGGGAGTCGCCCTGTTCGCCATCGACGTGCGCACCCACCGCCTGCCGAACGCGCTGACCTACCCGACGACCGCCGTCGTCGCGCTGCTCCTGCTCGGCGCGGGCCTGCTGGGCGGGGACTGGGACGCCGTCGCACGATCCGCCCTCGGAGCCCTCGCGCTGGGCGCTGGGTATCTCCTGCTGCACGTGATCAACCCGAGCGGCCTCGGCTTCGGGGACGTCAAGTTGGCCCTCCCCCTCGGCATGGTGACGACGTGGTTCGGATGGCCCGTCCTCTGGGCCACCGCGCTGCTGCCCTTCCTGCTGGGCGGGCTGCTCGCCGTCGTCCTGCTCGTCACCGGCCGCGCGACCCGCAGGACCGCCATCGCCTTCGGCCCGTTCATGCTGGCGGGTGCCGCCGTCGCGCTGACGGCGGCACGCGTGCTGGCCTGAMDDPVTAPWGARLQAEIAPHRRAATVGALPAVLWAVWVSGPGWTAPALAVAAVAGVALFAIDVRTHRLPNALTYPTTAVVALLLLGAGLLGGDWDAVARSALGALALGAGYLLLHVINPSGLGFGDVKLALPLGMVTTWFGWPVLWATALLPFLLGGLLAVVLLVTGRATRRTAIAFGPFMLAGAAVALTAARVLAPGPT0015925_2674DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654NANA
AK018_032211047hepT_1COG0142Heptaprenyl diphosphate synthase component 2GTGACAGGTCCTCACTCCGCTCCGGCTGCCGCCGCCGTGCCGACGTTCCCGACCGGCGTGCCGCTGAAGGACGCCGCTCTGGCCGACCGTATCGGCGGGCGCCTCGCGCAGGTCGACGCCGTGCTCGACGAGGCCGTGGCCTCGACCGACGCCCTGGCCGACGACGCCGGCCGGCACCTGGTCGCGGCCGGCGGCAAGCGGTTCCGTCCGCTGCTGACGCTGCTCGCCGGCGAGCTCGGGGACGGCGCGAACCCCCAGCTCGTGGATGCTGCCGTCGTCGTCGAGCTGACGCAGGTGGCCTCGCTCTACCACGACGACGTCATGGACTCCGCGCCCGTGCGCCGGGGTGCGCCCGCCGCGCACACCGTGTGGGGCAACACGGTCGCCATCCTCGTCGGCGACCTGCTGTTCGCCCGGGCCTCCGCCCTGGTCGCCGGTCTGGGACCGGAAGCCGTGGTGCTGCAGTCGCGGACCTTCGAGCGCATGTGCCTCGGCCAGCTCCACGAGACCACCGGCCCGGGTGCCGGCGACGACCCGGTCGAGCACTACCTGCAGGTGCTCAGCGACAAGACCGCCTCGCTGCTGTCCACCTCGGCACGCCTCGGCGCGATGTTCGGCGGCTGCCCGGAACCCGTGGTCGAGGCCGCCGCGGCCTACGGCGAGAAGGTGGGTCTGGCGTTCCAGCTCGCCGACGACGTGCTCGACATCGCCTCGTCCGGCACGGAGTCCGGCAAGACCCCCGGGACGGACCTGCGCGAGCACGTGCCGACCATGCCGGTGCTGCTGCTGCGTCAGCGCGTGGACCGCGGCGAGGGGACGGCGTCGGACACCGACCTGCTCGCGCGCCTGGACGGCGACCTGTCCGACGATGCGGCGCTGGCGGCCGTCGTCGCCGACCTGCGCGAGCACGCGGTCCTCGCCGAGACCCGCGAGCTCGCGGTGCGCTGGGCCCGCGAGGCGGCCGCCGAGCTCGAGCCGCTGCCCGACGGACCCGTCAAGGAGGCGCTCACCGACCTCGCGACGGCGCTGGCCGACCGGACCGTCTGAMTGPHSAPAAAAVPTFPTGVPLKDAALADRIGGRLAQVDAVLDEAVASTDALADDAGRHLVAAGGKRFRPLLTLLAGELGDGANPQLVDAAVVVELTQVASLYHDDVMDSAPVRRGAPAAHTVWGNTVAILVGDLLFARASALVAGLGPEAVVLQSRTFERMCLGQLHETTGPGAGDDPVEHYLQVLSDKTASLLSTSARLGAMFGGCPEPVVEAAAAYGEKVGLAFQLADDVLDIASSGTESGKTPGTDLREHVPTMPVLLLRQRVDRGEGTASDTDLLARLDGDLSDDAALAAVVADLREHAVLAETRELAVRWAREAAAELEPLPDGPVKEALTDLATALADRTVNANANANANA
AK018_032221731nuoN_2COG1007NADH-quinone oxidoreductase subunit NGTGAACGAGTTCGTCGCACCGGAGATCGACTGGATGGTCCTCACGCCCGTCCTCGTCGTGCTCGGCGCGGGCGCGGTCGGGGTGCTCGTCGAGGCGTTCGTCCCGGCCCGGGCCCGCCGCACCACCCAGCTCGTGCTCACGCTCGCCGCCCTGCTCGCCTCGCTGGCCTGCGTCGGGCTGCTGTGGGACCAGGTGACCACCGACGGCTTCGCGCTCGTCGTCGACGGCACGTTCCTGCTGACGCCGTTCACGCTGGGTGTCCAGGCCGTCGTCGGCGTGCTCGCGATCCTCGGCGTGCTGGTCATTGCCGACCGGACCCGGACCGGGCAGGACGCGTTCGCCCCCACGGCGGCCGCCGTGCCGGGCACCGCCTACGAGGACGCCGCCGAGCGCGCCGGCCTGGAGCAGACGGAGATCTTCCCCCTGGCGCTGTTCGCGACGGGCGGGATGCTCCTCTTCCCCGCCACGGACAACCTGATCGTGCTGTTCATCGCGCTCGAGGTGCTGTCCCTGCCGCTGTACGTGCTGTGCGCGACGGCCCGTCGTCGTCGCCTGCTCAGCCAGGAGGCCGCGTTCAAGTACTTCCTGCTCGGCTCGTTCGCCAGCGCCCTGATGCTGTTCGGCATCGCCCTGATCTACGGGTTCGCGGGAACGGTCAGCCTGGAGACGGTCGGGTACGTGCTGCAGCACCCCAACAGCACGGTGCTCGCCGACATGCCCGAGCTGGTCCTGGCCGGTGTGCTGCTGGTGACCGTCGGGCTGCTGTTCAAGATCGGCGCCGCGCCGTTCCACACGTGGACGCCGGACGTCTACCAGGGCGCGCCCACGCCGGTCACGGCGTTCATGGCGGCCTGCGTCAAGGCGGCCGCGATCGGCGCGATGGTGCGCGTGGTCTTCACGCTCGCCGCGGGCCTCGACGAGCCGCTGCGCGCCGACCTCGAGGCCGCGCTGTGGGTGGTGGCGATCCTGACCATGCTGGTCGGCACCGTCGCCGGTGCCGTGCAGACCGACGTCAAGCGGATGCTCGCCTACTCCTCGATCGCGCACGCCGGGTTCCTCGTGGTGGCGATGGTCGGCTTCTCCGAGGTCGGCTCAGCGGCGGTGCTGTTCTACGTGCTGGCCTACGGTCTGGCGACGCTCGGCGCGTTCGCCGTCGTGACACTGGTGCGCGAGCAGGACCGGGACGGCGTCGTCCTCGGGGAGGCCACGCACCTGTCGCAGTGGGCCGGGCTCGGCCGCCGCTCGCCCTGGCTCGCGGCGGCGTTCTCGGTCTTCCTGCTGTCGATGGCCGGCATCCCGCTGACCGCCGGGTTCATCGCGAAGTTCGAGGCGTTCTCGGCGGCCGTCGACGCGGGCGCATGGCCGCTGGCGGTCATCGGCGTCCTCGCCTCGGCGGTGGCGGTGTTCTTCTACGTCCGGCTCATCGTGCTCATGGTGCTCACCCCGCCGGTGGAGGACGGGGAGGTCCTCGCGGCACAGGCGGCGTCCGACGGCGGTGCTCCGGCGGGCGGCGCGTCCGACGACGGCGGTGCTCCGGCGGAGGGCGGTGCCGGGACGCTGACCGCGGCCCGCGAGGCCGTCCGGGCGTCGGTCGTCGTCGTGTCGTCCCGCGGGCCCGCCGTGGTGGCGATCACGCTCTGCGTGGTCGGCGTGGTGCTGCTGGGCCTCCTGCCGGGGCCGGTGCTGGACTGGGCGCAGCAGGCGGCGACGTTCCGACCGATCGCTCCGTGAMNEFVAPEIDWMVLTPVLVVLGAGAVGVLVEAFVPARARRTTQLVLTLAALLASLACVGLLWDQVTTDGFALVVDGTFLLTPFTLGVQAVVGVLAILGVLVIADRTRTGQDAFAPTAAAVPGTAYEDAAERAGLEQTEIFPLALFATGGMLLFPATDNLIVLFIALEVLSLPLYVLCATARRRRLLSQEAAFKYFLLGSFASALMLFGIALIYGFAGTVSLETVGYVLQHPNSTVLADMPELVLAGVLLVTVGLLFKIGAAPFHTWTPDVYQGAPTPVTAFMAACVKAAAIGAMVRVVFTLAAGLDEPLRADLEAALWVVAILTMLVGTVAGAVQTDVKRMLAYSSIAHAGFLVVAMVGFSEVGSAAVLFYVLAYGLATLGAFAVVTLVREQDRDGVVLGEATHLSQWAGLGRRSPWLAAAFSVFLLSMAGIPLTAGFIAKFEAFSAAVDAGAWPLAVIGVLASAVAVFFYVRLIVLMVLTPPVEDGEVLAAQAASDGGAPAGGASDDGGAPAEGGAGTLTAAREAVRASVVVVSSRGPAVVAITLCVVGVVLLGLLPGPVLDWAQQAATFRPIAPPGPT0026860_37DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026860-nuoN-K00343NANA
AK018_032231608nuoM_1COG1008NADH-quinone oxidoreductase subunit MATGTCGACATTTCCCTGGCTGACGGCGCTGGTGGTCTGGCCGCTGGTCGCGGCGCTGGCCACGGTGCTCACCGGCGTCGGGCGCGGGCGTCCGGCGTCGGGCGCCGCCACCGGTGGCGGGACTTTCAGCGCCGGGACCGCGCGCACGGTCGCCCTGACCGGTGCGCTGGTCGAGGCGGCCCTGCTGGTGGGCGCGTTCCTCGCCTTCGACACGGGGGCGGCGGGCACCCACCAGCTCACCGAGACGTACTCGTGGATCCCGGCGCTCGGCGCGAGCTACGCCGTCGGCGTCGACGGGGTGGCGCTGCTGCTGGTGGCCCTGTCGGTGGGCCTGGTGCCGCTGGTGATCCTCGCGGCGTGGCACGAGCAGGGCGGCGACCACGTGCGGCTGCGCCGCTACCTGGCGACCGTGCTGGTGCTGCTGAGCTTCATGGTGCTGGTGTTCACCGCGCGCGACGTGTTCCTGTTCTACGTCGTGTTCGAGGCGATGCTGATCCCCGCCTACTTCCTGGTCGGCGGGTTCGGGCAGGGCTCCCAGCGCCGGTACGCCGCGGTGAAGTTCCTGATCTTCTCCTTGGCGGGCGGGCTCGTCATGCTGGCCGCCGTCATCGCCCTGTACCTGCAGGTGCCGGTGGACGCCGCGACGGGGCTGCGGCCCGAGGACGCTTTCCTCACCGACAACCTGACGGGGCTGGCGCTCGACCCGACGGCCGAGCGACTGATGTTCTGCGCGTTCTTCCTCGCCTTCGCGATCAAGGCGCCCATGTTCCCGGTGCACACCTGGCTGCCGGACGTCACCCAGAACGCCACGCCGGGCACGTCGACGCTGCTGATCTGCGTGCTGGACAAGGTCGGCACGTTCGGGATGCTCACCTTGTGCCTGCCGCTGTTCCCGGAGGCCAGCCGGTGGGCCGCGCCCTTCGTGGTGGTGCTCGCCGTCATCTCGATCCTCTACGGCGCGGTCCTGGCGATCGGGCAGACCGACGTGCTGCGGCTCATCGGCTACACCTCGGTGTCCCACTTCGGGTTCATCATCCTGGGGATCTTCACCTTCACCTCGCTCGGCATCTCCGGGTCGAGCTTCATGATGCTCAACCACGGCATCTCCACCGGGGCGCTGTTCCTGCTCGCCGGGTTCGCCATCGCCCGGCACCCGCGCCGCAGCCAGCAGATCGCCGACTACGGCGGCATGAAGACCGTGGCCCCGGTTCTGGCCGGCACGTTCCTGGTGGCCGGCCTCTCCGCCCTGGCCCTGCCCGGTCTGGCCACGTTCGTCTCGGAGATCATGGTGTTCCTGGGCTCCTACGGCCGTTGGCCGGCCGCCGCGATCGTCGCCGTGCCCGCCGTCGTGCTCGCCGCCGTCTACGTGCTGCTGACGTACCAGCGCATGTTCACCGGGCCCCTGGGTGCCGACCTCGTCGGCGCGAAGGACCTGGGTGGCCGTGAGAAGACGGTCGCCGGCGTGCTGGTGGCCGCGCTGGTCGTGCTGGGCCTGGTGCCCGGGCCGGCGCTCGACTACGTCCGTGAACCCGCGTCGGTCTCCGTCGAGCTCGTCGGCGCGACCGATCCGGAACCCGTGCTCGGCGCGGTAGAGGGGAGCGAGCAGTGAMSTFPWLTALVVWPLVAALATVLTGVGRGRPASGAATGGGTFSAGTARTVALTGALVEAALLVGAFLAFDTGAAGTHQLTETYSWIPALGASYAVGVDGVALLLVALSVGLVPLVILAAWHEQGGDHVRLRRYLATVLVLLSFMVLVFTARDVFLFYVVFEAMLIPAYFLVGGFGQGSQRRYAAVKFLIFSLAGGLVMLAAVIALYLQVPVDAATGLRPEDAFLTDNLTGLALDPTAERLMFCAFFLAFAIKAPMFPVHTWLPDVTQNATPGTSTLLICVLDKVGTFGMLTLCLPLFPEASRWAAPFVVVLAVISILYGAVLAIGQTDVLRLIGYTSVSHFGFIILGIFTFTSLGISGSSFMMLNHGISTGALFLLAGFAIARHPRRSQQIADYGGMKTVAPVLAGTFLVAGLSALALPGLATFVSEIMVFLGSYGRWPAAAIVAVPAVVLAAVYVLLTYQRMFTGPLGADLVGAKDLGGREKTVAGVLVAALVVLGLVPGPALDYVREPASVSVELVGATDPEPVLGAVEGSEQPGPT0026850_421DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026850-nuoM-K00342NANA
AK018_032241923nuoL_2COG1009NADH-quinone oxidoreductase subunit LATGACGACGCAGACCTTGTCCCTCGCGCCCTGGCTGGTGGCGACACCGCTGCTCGGGGCGGCGCTGCTGCTGCTCGTGGGCCGCCGCAGCGACCGCTGGGGCCACTGGATCGGCGTGCTGGCCTCGACGGCGACGTTCGTGATCGGCCTGGTGATCCTCCTGGCGATGCTGGCCCTGCCGGCCGAGGAGCGCACCGCCGACCACGTGGTCACGACCTGGCTGGACGCCGGCGGACTGAGCGTGGACCTGGGCTTCCGGGTGGACCCGCTGTCGATGACGTTCGTGATGCTGGTGACGTTCGTCGGCACGCTCATCCACGTGTACTCGGTGGCGTACATGTCGCACGACCGCGACCGGCGCCGGTTCTTCGCCTACCTGAACCTGTTCGTCGCGGCGATGCTGCTGCTGGTGCTGGCCGACAACTACCTGCTGCTGTTCGTCGGCTGGGAGGGCGTGGGCCTGGCCTCGTACCTGCTCATCGGGTTCTGGGACCACCGGCTGCCCAACGCGGTCGCGGGCAAGAAGGCGTTCCTCATGAACCGTGTCGGCGACATGGGGCTGATCGTGGCGATGATGCTCATGGTCGCGACCTTCGGGACCCTGAGTTTCGCGGGGGTGCACGAGGCAGCCTCCGGTGCGAGCCAGGGCACGACGACGGCGATCGGCCTGATGCTGCTGCTCGCGGCCTGCGGCAAGTCGGCCCAGCTGCCGCTGCAGGCGTGGCTCGGGGACGCGATGGCCGGCCCGACGCCGGTCTCCGCGCTGATCCACGCCGCCACGATGGTCACCGCGGGCGTCTACCTGCTGGTCCGGTCGGGGCCGATCCTCGAGGCCGCCCCGGACGCCCAGCTCGTGATCGCGATCGTCGGCACGCTCACCCTGCTGTTCGGGGCGATCGTCGGCTGCGCGAAGGACGACATCAAGAAGGCGCTCGCCGCCTCGACGATGTCGCAGATCGGCTACATGATGCTGGCCGCCGGGCTGGGACCGGTCGGGTACGCGTTCGCGATCTTCCACCTGGTCACCCACGGCTTCTTCAAGGCCGGGCTGTTCCTCGGCGCCGGCTCGGTGATGCACGCGATGGACGACGACGTCGACATGCGCCGGTTCGGCGGTCTGGCCCGGCTGCTGCCGGTCACGGCGATCACGATGGGGCTGGGCTGGCTGGCAATCCTCGGGGTGCCGCCGTTCTCCGGCTTCTACTCCAAGGACAAGATCATCGAGACGGCGTTCGTCGGCGAGGGCTGGCAGCCGTGGGTGTTCGGCTTCGCCGCCTTGCTCGGCGCGGGGATCACCGCGTACTACATGTCGCGGCTGGTGTTCATGACGTTCGCGGGACGACGCCGGTGGTCCGGCGAGTCCGGCGGCGACCTGCCCGAGCGGCACCCGCACGAGTCCCCGGCGCTGATGACGTGGCCGATGATCATCCTGGCCGTCGGTTCCGTCGGCCTCGGTTTCTTCCTGAACGCGGGGGACCGGCTGGTGCACTGGCTGGAGCCTGTCACCGGCCACGCCGAGCACCACGAGCCGGTGCTGGCGGTGCCGGTCATCATGACGCTCACGCTGGTGCTCGTGGTCGTCGGTGCCGCGCTGGCGTTCTGGCAGTACGCCACGCGCCCCGTGCCGACCGAGCCGCCGGCCGCCCCGGCACTGGTGCGGGCCGCGCGGGTGGACCTGCACCAGGACGACGTCAACGAGACGTTCGTGATGCTGCCCGGGCAGTACCTGACGCGGTCGATGGTGTTCGCCGACCGGACCGCGGTGGACGCCGGCTGGCTGGGGCTGGCGGGCGGCATCGGCCGGCTCGGGAGCTGGCTGCGCGGGATGCAGTCGGGGTACGCGCGGCAGTACGCGGCGATCACGCTCGGCGGGCTCGGGGTGATCGTGCTGGTGGTCTGGCTCGTGTCGGGCACGGCGAGCTGAMTTQTLSLAPWLVATPLLGAALLLLVGRRSDRWGHWIGVLASTATFVIGLVILLAMLALPAEERTADHVVTTWLDAGGLSVDLGFRVDPLSMTFVMLVTFVGTLIHVYSVAYMSHDRDRRRFFAYLNLFVAAMLLLVLADNYLLLFVGWEGVGLASYLLIGFWDHRLPNAVAGKKAFLMNRVGDMGLIVAMMLMVATFGTLSFAGVHEAASGASQGTTTAIGLMLLLAACGKSAQLPLQAWLGDAMAGPTPVSALIHAATMVTAGVYLLVRSGPILEAAPDAQLVIAIVGTLTLLFGAIVGCAKDDIKKALAASTMSQIGYMMLAAGLGPVGYAFAIFHLVTHGFFKAGLFLGAGSVMHAMDDDVDMRRFGGLARLLPVTAITMGLGWLAILGVPPFSGFYSKDKIIETAFVGEGWQPWVFGFAALLGAGITAYYMSRLVFMTFAGRRRWSGESGGDLPERHPHESPALMTWPMIILAVGSVGLGFFLNAGDRLVHWLEPVTGHAEHHEPVLAVPVIMTLTLVLVVVGAALAFWQYATRPVPTEPPAAPALVRAARVDLHQDDVNETFVMLPGQYLTRSMVFADRTAVDAGWLGLAGGIGRLGSWLRGMQSGYARQYAAITLGGLGVIVLVVWLVSGTASPGPT0026845_1883DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026845-nuoL-K00341NANA
AK018_03225300COG0713NADH-quinone oxidoreductase subunit 11ATGGAGCTGACCAACTATCTCTACCTCGCGGTGATCCTGTTCGCGCTGGGGGCGACGACGGTGCTGCTGCGGCGCAACGCCATCGTGGTGTTCATGGGCATCGAGCTGATGCTCAACGCCACCAACCTGGCCCTGGTGACGTTCGCGCGGATGCACAGCGACATCACGGGGCAGGTGCTCGCGTTCTTCGTCATGGTGGTGGCCGCCGCGGAGGTCGTGGTGGGTCTGGCGATCATCGTGACGATCTTCCGTGCCCGGCGGTCGGCCTCGGTCGACGACGCGAACCTGCTGAAGAGCTGAMELTNYLYLAVILFALGATTVLLRRNAIVVFMGIELMLNATNLALVTFARMHSDITGQVLAFFVMVVAAAEVVVGLAIIVTIFRARRSASVDDANLLKSPGPT0026840_2550DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026840-nuoK-K00340NANA
AK018_03226837hypothetical proteinATGACCGTCTCCGGCGGCGAGACCGTCCTGTTCTGGGTGATCGCCCCGCTCATGGTGATCGCCGCGTCGGGACTGCTCGTGGTGCGTCGCGCGGTGCACGCCGCCGTCTGCGTCGTGTTCGTCATGATCTCCCTGGCCGTGCTGTACGTGGCCCAGGAGGCGCCGTTCCTCGGAGCGGTGCAGGTGGTCGTCTACACCGGCGCCGTGATGATGCTCTTCCTGTTCGTCCTGATGCTGGTCGGCGTCGACTCGGCCGACTCCCTGACCGAGACCATCCGGGGGCAGCGCTGGATCGGGCTGCTGCTCGGCCTCGGGCTCGCCGTCGTGCTCTGCGGGGTGGTCGCGAGCGCGACGTTCCGCCAGCCGGTCGGGCTGGCCGAGGCCAACGCCGTGACCAACCCCGTGGCCCTCGCCCGGGTGCTCATGGAGCACTACGTGGTGGCGATGGAGGTGGTCGGCATCCTGCTGGTCACCGCAGCCCTCGCCGGGCTGGTGCTCACCCACCGCCGTCGGCTCGGCGCGAAGCCCAGCCAGAAGGCGCTCGCGGAGGCCAAGGTCGCCGAGGTGGCGCGCGGCCGCACGCTCACCCCGCTGCCGGCGCCCGGCGTGTACGCCCAGCACAACGCGATGGACGCCCCGGCGCTCGACCCGGAGGGCCGGCCCATCGAGAAGTCCGTCTCGAGGGTGCTGCGCATCCGCGGGCAGGAGCGCTCGGCCACCGAGCTGCTCACGGCGGAGGAGACGCTGGTGCGCCGCGAGCTGGAGCGGCCCGACGACCCGGTGCCGAGCGTCGGGCCGGCCAGCGGTACCGACGGCGACGGGGGAGGGGCCCGCTGAMTVSGGETVLFWVIAPLMVIAASGLLVVRRAVHAAVCVVFVMISLAVLYVAQEAPFLGAVQVVVYTGAVMMLFLFVLMLVGVDSADSLTETIRGQRWIGLLLGLGLAVVLCGVVASATFRQPVGLAEANAVTNPVALARVLMEHYVVAMEVVGILLVTAALAGLVLTHRRRLGAKPSQKALAEAKVAEVARGRTLTPLPAPGVYAQHNAMDAPALDPEGRPIEKSVSRVLRIRGQERSATELLTAEETLVRRELERPDDPVPSVGPASGTDGDGGGARPGPT0026835_329DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026835-nuoJ-K00339NANA
AK018_03227780ndhI_1NAD(P)H-quinone oxidoreductase subunit I, chloroplasticATGACCGAGCCGTACGAGTCGCAGCGACCCAAGAAGGGGCCGATCGGCGAGCTGTTCGCGCCGGTGGCCGGGTTCGGCGTGACGTTCTCGTCGATGTTCAAGCCGACCGTCACCGAGCAGTACCCGCGCAGGAAGACCCCGCCGCAGACCCGGTACCACGGGCGACACCAGCTCAACCGGTACGCCGACGGGCTCGAGAAGTGCATCGGCTGCGAGCTGTGCGCGTGGGCGTGCCCCGCCGACGCCATCTACGTCGAGGGAGCGGACAACGCCGAGGCCGTCGCCGGCTCGCCCGAGGCGCACATGAGCCCCGGCGAACGCTACGGCCGCGTCTACCAGATCAACTACCTGCGCTGCATCTTCTGCGGGCTCTGCATCGAGGCGTGCCCCACCCGCGCGCTGACGATGAGCAAGGACTACGAGATCGCCGGTCCGACCCGCGCGGGCATGATCTACGAGAAGCAGGACATCCTCGCGCCGCTCGCCGAGGGCATGCTCGCCGCGCCGCACCCGATGGTCGAGGGCACCACCGACACCGAGTACTACCGCGACGAGATCTCCGGCCCCACCCAGGAGCAGGTCGACTGGGTGCGGGAGCACCGGCCCGACGACGACACGCTCGCCGCGGCCGCCGCCGTCGTCACCGGGGACGCCCCGAAGCCCACGCCGTCCCAGCACGAGCTGCGTCCCGACCAGGACCGTGCCGTGGCCACCCGGGCCGCCGCCACGCAGTCGTCCGTCGACGTCCGCCCGGTGCAGACCGAGGAGGCCCGCCCATGAMTEPYESQRPKKGPIGELFAPVAGFGVTFSSMFKPTVTEQYPRRKTPPQTRYHGRHQLNRYADGLEKCIGCELCAWACPADAIYVEGADNAEAVAGSPEAHMSPGERYGRVYQINYLRCIFCGLCIEACPTRALTMSKDYEIAGPTRAGMIYEKQDILAPLAEGMLAAPHPMVEGTTDTEYYRDEISGPTQEQVDWVREHRPDDDTLAAAAAVVTGDAPKPTPSQHELRPDQDRAVATRAAATQSSVDVRPVQTEEARPPGPT0026830_30DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026830-nuoI-K00338NANA
AK018_032281347nuoH_2COG1005NADH-quinone oxidoreductase subunit HATGATCCCCGGGGTCGCCGCCGACTTCTCCGCCGACGCCGTGTGGGTGTCGGCGATCAAGGCCGTGCTCATCATCGTCTTCCTGCTGACCAGCGTCCTCTTCGCGATCTGGTTCGAGCGCAAGCTCGTGGCGCGCATGCAGCTGCGCCCCGGCCCCAACTGGCACGGCCCGTTCGGGCTGCTGCAGTCCCTGGGCGACGCGATGAAGCTGCTGCTCAAGGAGGACGTGACCGTCACGAACGCCGACCGGCGCGTTTACCTGCTCGCCCCGATGATCTCGGTGCTGTGCTCGCTGCTGGTGTTCGCCGTCATCCCGTTCGGGCCGAACGCGACGATCCCGTTCACGGACTTCAGCACGCCGCTGCAGCTCACGGACTTCCCGGTCGCCGTGCTGTACGTGCTGGCGTGCGCCTCGATCGGCGTGTACGGCATCGTGCTGGGCGGCTGGTCCTCGGGCTCCACGTACCCGCTGCTGGGTTCGGTGCGCTCCAGTGCCCAGGTCATCAGCTACGAGCTGGCCATGGGCCTCAGCCTGGTCAGCGTGTTCATCATGGCGGGGTCGATGTCGACCTCCACCATCGTGGAGTCCCAGACGAGCATCTGGTGGTTCGTCCCGCTGGCACCGGCGTTCGTCATCTACATCATCTCCATGGTCGGCGAGACCAACCGGCTCCCGTTCGACCTGCCCGAGGCCGAGGGCGAGCTGGTCGGCGGGTACATGACCGAGTACTCGTCGATGAAGTTCGCCTGGTTCTTCCTGGCGGAGTACATCGCCATGATCAACGTCTCCGCCGTGGCCACGACCCTGTTCCTCGGTGGCTGGCGGGCACCGTGGCCGCTGTCGCTCATCAACGACGGCATGTTCAACACCGGCTGGTGGCCGCTGCTGTGGTTCCTGGCCAAGGTGTGGCTGCTCATGTTCTTCTTCGTGTGGGTGCGCGGCACGCTGCTGCGGCTGCGCTACGACCAGTTCATGGTGTTCGGCTGGAAGGTGCTCATCCCGGCCGGACTGGTCTGGGTGGTCGTCCTCGCCGGATTCCAGTACGCGGGCCTCGTCGGGATCACGCGCACGCAGATGATCGTCGCGATCGTCGTGGCCGCCGCCGTTGTGCTGGCCCTGCTGTGGCTGTGGCCCGAGAAGAAGCAACCCGAACCACCCGGTGGGACGGGCGCCGACGGCGGATTCGACGCGTTCGCCGGCGGGTACCCCGTGCCGCCCCTGCCCGGGCAGTCGCTGCCGCCGTCGCCCCGCGCGCGGCGCAGCGTGGCGCCGGCCGAGGACGCCGGAGCAGCCACCGCCACCCGGGTCGCACCCGACGCCGTCGACGAGGACGAGGAGACGCGATGAMIPGVAADFSADAVWVSAIKAVLIIVFLLTSVLFAIWFERKLVARMQLRPGPNWHGPFGLLQSLGDAMKLLLKEDVTVTNADRRVYLLAPMISVLCSLLVFAVIPFGPNATIPFTDFSTPLQLTDFPVAVLYVLACASIGVYGIVLGGWSSGSTYPLLGSVRSSAQVISYELAMGLSLVSVFIMAGSMSTSTIVESQTSIWWFVPLAPAFVIYIISMVGETNRLPFDLPEAEGELVGGYMTEYSSMKFAWFFLAEYIAMINVSAVATTLFLGGWRAPWPLSLINDGMFNTGWWPLLWFLAKVWLLMFFFVWVRGTLLRLRYDQFMVFGWKVLIPAGLVWVVVLAGFQYAGLVGITRTQMIVAIVVAAAVVLALLWLWPEKKQPEPPGGTGADGGFDAFAGGYPVPPLPGQSLPPSPRARRSVAPAEDAGAATATRVAPDAVDEDEETRPGPT0026825_121DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026825-nuoH-K00337NANA
AK018_032292589nuoG_1COG1034NADH-quinone oxidoreductase subunit GATGACCGCCACCACCGACAAGCCGGCGGCCGCACCCCCGGTCGAGACGGTGACCTGCACGATCGACGACGTCGAGGTCACCGTCCCGAAGGGCACGCTGGTCATCCGCGCCGCCGAGCAGGTGGGCATCCAGATCCCGCGGTTCTGCGACCACCCGTTGCTCGAGCCGGCCGGCGCGTGCCGCCAGTGCCTGGTCGAGGTGTCCATGCCCGACCGGGAGGGCAACCTGCGCGCCATGCCGAAGCCGCAGGCCTCGTGCACGATGACGGTCACGCCCGGCATGGTGGTCCGCACCCAGCACACCTCGCACGTCGCCGACAAGGCGCAGCAGGGGGTCATGGAGCTGCTGCTCATGAACCACCCGCTGGACTGCCCGGTGTGCGACAAGGGCGGCGAGTGCCCGCTGCAGAACCAGGCGATGACCAACGGGCGCGGCGACACGCGGTTCGTCGACGTCAAGCGCACCTTCCCCAAGCCCATCGAGGTCTCCTCGCAGATCCTGCTGGACCGGGAGCGCTGCATCCTGTGCCAGCGCTGCACCCGGTTCAGCGAGGAGATCGCCGGCGACGTCTTCATCGACCTGCAGGAGCGCGGCGCGGAACAGCAGATCGGCCGCTTCGACGAGGAGATCCTCGACTTCGCGCCGCCGTCCGGTCAGGACCGTGCCGACTCCGCGGTCGACGTCCCGCAGGGCGTGGCCCTGCCCGACACCTCGGGTCAGCCGTTCGCGTCGTACTTCTCGGGCAACACGGTCCAGATCTGCCCGGTCGGGGCGCTGACCGGCGCGAAGTACCGGTTCCGGTCGCGGCCCTTCGACCTGGTCTCCTCGCCGGCGGTCGGGGAGCACGACGCCTGCGGCTCGGCGATCCGCGTGGACCATCGGCGCGGCAAGGTGATGCGCCGGCTGTCGGGGAACGACCCGGCGGTCAACGAGGAGTGGATCACCGACAAGGATCGGTTCGCCTTCACCTGGCAGGCCGCGGACGACCGGATCACGACGCCGATGGTCCGCGAGGACGGCGCACTGCGCCCCGCCTCGTGGGTGGAGGCGCTCGAGGTGGCGGCCCGCGGGCTCGCCGCGGCGCGGGACTCCGGCGGCGTCGGCGTGCTGCCCGGCGGACGGCTCACGGTCGAGGACGCGTTCGCCTGGTCGCGGTTCGCGCGCACCGTGCTGGGCACCGACGACGTCGACCAGCGGGTGCGGGTGCACTCGGTCGAGGAGGTCGACTTCCTGGCCCACGCGGTGGCCGGCACCGGCGTCGGCGTGACGTTCGCCGACCTGGAGAAGGCGCCCGCCGTGCTGCTGGCCGGGCTGGAGGCCGAGGAGGAGGCCGGGGTCACGTTCCTGCGGCTGCGCAAGGGCGTCAAGGCCGGTGCCCGGGTCTTCTCGGTCGCCCCGTTCACGTCCCGCGGCCTGGCCCGGCTCGACGGCACCCTGCTGCCGGCCGCACCCGGGACCGAGGCCGAGTGGCTCGGCACGCTGGCCGCGCAGGCCGCCGGCGACCTGGTCCCGGCGTCGGCGGACCGCGAGACGCTGGAGGACGTCGCCGGTGCGCTCGGCGCCGAGGGCGCCGTCGTGCTGGTGGGCGAACGGCTGGCCGGCGCGCCGGGAGCCTACGCCGCGGCGCTGCGGCTCGCCGAGGCCACCGGGGCGCGGATCGCCTGGATCCCCCGTCGCGCGGGGGAGCGCGGCGGTGTCGAGGCGGGCCTGCTGCCGGGTCTGCTGCCCGGTGGACGTCCCCTGACCGACGCCGGGGCCCGCGCCGAGGTCGCGGCCGCGTGGGGGGTGGACGACGCCGCCCTGCCGCGGGCCCGCGGCCTGGACACCATGGGCATCCTCGATGCGCTGAGCGTCGGACAGCTCGCCGGCGCGCTGGTCGGCGGCGTCGAGCTCGCCGACATGCCCGACCCCGAGCACGCCCGCCGGGCGCTGCGCGCCGCCGGGTTCGTCGTCTCCCTGGAGGTGCGGGCCTCGGAGATCACCGAGCTGGCCGACGTCGTCCTCCCGGTCGCCCCGCCCGTGGAGCGTGCCGGGTCGTACTGGAACTGGGAGGGCCGGGTGCGTCCCTTCGCCGCGGCGCTGGACTCCACCGCGCTGACCGACCACCGGGTCCTGGACGCGCTGGCCGCCCAGCTCGGCGCCACGCTCGGCGCCGCCGACCCGGTGCAGGCGCACCGGGCGATCGCGGCGCTGCGACCCTGGCACGGGGAGCGGGCGCCCGCCCCGCAGCAGACCACCAGCGACCCGCCCGCCGTGCCGGCCGGCACCGCGGTGCTCGCCGGCTGGCGCCTCCTGCTCGACGACGGTCGGATGCAGGACGGCGAGCCGTTCCTGGCCGGTACCGCCAAGACGCCGGTGGCGCGGATGAGTGCCGCGACCGCCGCCGGGTTCGACGTCTTCGACGGCGACCGGGTCACGGTGTCCACCGACCGGGGAGCGATCACGGTGGCGGTCGCCATCACCGAGATGGTCGACCACGTCGTGTGGCTGCCCCTCGCCTCGCGGGGCTGCCGGGTGCACGACGCCCTCGGCGTCAGCCCCGGCCAACCGGTCCGGGTCGCCCCCGCCGAGAAGGGAGGGGACGCATGAMTATTDKPAAAPPVETVTCTIDDVEVTVPKGTLVIRAAEQVGIQIPRFCDHPLLEPAGACRQCLVEVSMPDREGNLRAMPKPQASCTMTVTPGMVVRTQHTSHVADKAQQGVMELLLMNHPLDCPVCDKGGECPLQNQAMTNGRGDTRFVDVKRTFPKPIEVSSQILLDRERCILCQRCTRFSEEIAGDVFIDLQERGAEQQIGRFDEEILDFAPPSGQDRADSAVDVPQGVALPDTSGQPFASYFSGNTVQICPVGALTGAKYRFRSRPFDLVSSPAVGEHDACGSAIRVDHRRGKVMRRLSGNDPAVNEEWITDKDRFAFTWQAADDRITTPMVREDGALRPASWVEALEVAARGLAAARDSGGVGVLPGGRLTVEDAFAWSRFARTVLGTDDVDQRVRVHSVEEVDFLAHAVAGTGVGVTFADLEKAPAVLLAGLEAEEEAGVTFLRLRKGVKAGARVFSVAPFTSRGLARLDGTLLPAAPGTEAEWLGTLAAQAAGDLVPASADRETLEDVAGALGAEGAVVLVGERLAGAPGAYAAALRLAEATGARIAWIPRRAGERGGVEAGLLPGLLPGGRPLTDAGARAEVAAAWGVDDAALPRARGLDTMGILDALSVGQLAGALVGGVELADMPDPEHARRALRAAGFVVSLEVRASEITELADVVLPVAPPVERAGSYWNWEGRVRPFAAALDSTALTDHRVLDALAAQLGATLGAADPVQAHRAIAALRPWHGERAPAPQQTTSDPPAVPAGTAVLAGWRLLLDDGRMQDGEPFLAGTAKTPVARMSAATAAGFDVFDGDRVTVSTDRGAITVAVAITEMVDHVVWLPLASRGCRVHDALGVSPGQPVRVAPAEKGGDAPGPT0026820_637DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026820-nuoG-K00336NANA
AK018_032301335nuoF_1COG1894NADH-quinone oxidoreductase subunit FATGACTGAGCTGATGGCGGCCCTGACCGACACCTGGGACGCCGAGAACTCCTGGAAGCTGTCCACCTACGAGGCCGCCGGCGGCTACGAGGGTCTGCGCCGAGCCCTGCAGACCGACCCGGCCGACCTGGTCCAGATGGTCAAGGACTCCGGCCTGCGCGGCCGCGGCGGCGCGGGCTTCCCCACCGGCATGAAGTGGGGGTTCCTGCCCGAACCCGACGGCGGCCCCCGTTACCTCGTGGTCAACGCCGACGAGTCCGAGCCGGGCACCTGCAAGGACATCCCGCTGATGATGGCCAGCCCCCAGCACCTGGTCGAGGGCGTCGCGATCACGAGCTTCGCGATCGGCTGCCACCACGCGTTCATCTACGTGCGCGGCGAGGTGCTGCACGTGTACCGGCGGCTGCTCGCCGCCGTGCGCGAGGCGTACGCCGCCGGGCACCTGGGTCGCGACATCCACGGTTCCGGCTACGACCTCGAGGTCACCGTGCACGCCGGGGCCGGCGCCTACATCTGCGGCGAGGAGACGGCGCTGCTCGACTCCCTGGAGGGTCGCCGCGGCCAGCCGCGCCTCAAGCCGCCCTTCCCCGCCGTCGCCGGCCTCTACGCCCGCCCGACGGTGGTCAACAACGTCGAGTCCATCGCCTCCGTCCCGGGCATCGTGACCCACGGAGCCGACTGGTTCTCCTCCCTCGGCACCGAGAAGTCGTCCGGGCACGGACTGTTCTCCCTGTCCGGTCACGTCACCCGTCCGGGGCAGTACGAGGCCCCCCTGGGCATCACGCTGCGCGAGCTGCTTGACCAGGCCGGCGGCGTCCGCGCCGGCCACCAGCTGAAGTTCTGGACCCCCGGCGGCTCGTCCACGCCGATCTTCACCGACGAGCACCTCGACGTCCCCCTCGACTACGAGTCCGTCGGCGCCGCCGGCTCCATGCTCGGCACCCGCGCGCTGCAGATCTTCGACGAGACCACCTGCGTGGTGCGGGCCGTGAGCCGCTGGACCGACTTCTACGCCCACGAGTCGTGCGGCAAGTGCACCCCGTGCCGCGAGGGCACCTACTGGCTCAAGCAGGTCCTGCACCGCATCGAGGCGGGCAACGGCGAGGAGACGGACCTCGACCTCCTGCTCGACCTGTGCGACAACATCCTCGGCCGGGCGTTCTGCGCCCTGGGGGACGGGGCGACGTCGCCCATCACCTCGTCCATCCAGTACTTCCGGGCCGAGTACGAGGCCCACCTGGGCGGGCGAGGCTGCCCGTTCGACCCGGCCCGGTCCACCCTGTTCGACGACACGCCCCAGGCGCCCCCGGCGCTCGCGGGCGCGGGAGGCCACTGAMTELMAALTDTWDAENSWKLSTYEAAGGYEGLRRALQTDPADLVQMVKDSGLRGRGGAGFPTGMKWGFLPEPDGGPRYLVVNADESEPGTCKDIPLMMASPQHLVEGVAITSFAIGCHHAFIYVRGEVLHVYRRLLAAVREAYAAGHLGRDIHGSGYDLEVTVHAGAGAYICGEETALLDSLEGRRGQPRLKPPFPAVAGLYARPTVVNNVESIASVPGIVTHGADWFSSLGTEKSSGHGLFSLSGHVTRPGQYEAPLGITLRELLDQAGGVRAGHQLKFWTPGGSSTPIFTDEHLDVPLDYESVGAAGSMLGTRALQIFDETTCVVRAVSRWTDFYAHESCGKCTPCREGTYWLKQVLHRIEAGNGEETDLDLLLDLCDNILGRAFCALGDGATSPITSSIQYFRAEYEAHLGGRGCPFDPARSTLFDDTPQAPPALAGAGGHPGPT0026815_1403DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026815-nuoF-K00335NANA
AK018_03231852hypothetical proteinATGACGGCCGAACCGGTGGGCGCGCGCTCGCGCACGGGGTACGACGCCGAGACGCTGGCCGCGCTGGTGGCCGACGCGGAGCAGATCCTGGCCCGCTACCCGGACCCGCGCTCGGGCCTGCTGCCGCTGCTGCACCTGGTGCAGTCGGTGGACGGGTACGTCAGCCGGGACGGGATCATCTTCTGCGCCGAGCAGCTGGGGATGACGGCGGCCGAGATCTCCGCGGTGGCGACCTTCTACACCCAGTACAAGCGGCACCCGAACGGCGAGTACACCGTCGGGGTGTGCACCAACACGCTGTGCGCGGTGATGGGCGGGGACGCGATCTTCGACCGCCTGTCCGACCACCTCGGCGTCGGGCACGACGAGACCACGCCGGACGGCTCCGTCACGCTGGAGCGCGTCGAGTGCAACGCCGCCTGCGACTACGCACCCGTGGTCATGGTCAATTGGGAGTTCTTCGACAACCAGACCCCGGACTCGGCCGCCGAGCTGACCGACCGGCTGCGCGCCGGCGAGACCGTCGCCCCGACGCGCGGCGCCGCCTCGGTGTGCTCCTTCAAGCAGATGTCCCGCGTGCTCGCGGGGTTCGACGACGGCCGCGCCGACGAGGGCGTCGGGGCCGGCGGACCCACGCTGGAGGGCCTGCGGCTCGTGCGGGCGGCCGCGGCCGTCGACGACGCGCCCGGCACGCCGGGCACGCCCGCCGCGGCGACCTCGGACCGGCCGGGCGCCGAGGTGCCGCCCGAGACCGGCACCGAGCAGTCGAGCGCCGAGCGCAGGCCGACGACGCCGTCGGACGACACGGGACCGGCGGGCCCGGCCGACCCGGAGGAGGGTGACGATGACTGAMTAEPVGARSRTGYDAETLAALVADAEQILARYPDPRSGLLPLLHLVQSVDGYVSRDGIIFCAEQLGMTAAEISAVATFYTQYKRHPNGEYTVGVCTNTLCAVMGGDAIFDRLSDHLGVGHDETTPDGSVTLERVECNAACDYAPVVMVNWEFFDNQTPDSAAELTDRLRAGETVAPTRGAASVCSFKQMSRVLAGFDDGRADEGVGAGGPTLEGLRLVRAAAAVDDAPGTPGTPAAATSDRPGAEVPPETGTEQSSAERRPTTPSDDTGPAGPADPEEGDDDPGPT0026810_214DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026810-nuoE-K00334NANA
AK018_032321353nuoD_1COG0649NADH-quinone oxidoreductase subunit DGTGACCGCACCCGCCCACGACGCCCCGCACGCGACGCGGCCGGCGGCCGACGACTACGGACCCGGGGTGGCCGGGTTCGAGGCCTCGGGCGGCGACTGGGACGAGATCGCCCGCGAGGCGATCGGCGAGGAACGCATCGTCGTCAACATGGGGCCCCAGCACCCGTCCACGCACGGGGTGCTGCGGCTGATGCTGGAGATCGACGGCGAGACGGTGACCGAGGCGCGCTGCGGCATCGGCTACCTGCACACCGGCATCGAGAAGAACATGGAGTTCCGCACCTGGACGCAGGGCACCACGTTCTGCACCCGCATGGACTACCTGGCGCCGCTGTACCAGGAGGCCGCCTACTGCCTGGGCACGGAGCGCCTGCTGGGCATCACCGACGACGTCCCGGAGCGCGCGAACGTCATCCGTGTGCTGATGATGGAGCTCAACCGGGTCGCCTCCCACCTGGTGTGCCTGGGCACGGGCGGCAACGAGATGGGCGCGACGACGATCATGACGTTGTCGTTCACGGCCCGCGAGGAGATCCTGCGCATGTTCGAGGCCGTGACCGGCCTGCGCATGAACCACGCGTACATCCGCCCGGGCGGTGTGGCCCAGGACGTCCCGGAGGACTTCACCGAGCACATCCGCGAGCTGCTGCCGAGCCTGCGCAAGTACCTGGCGATGCTGGGCGACCTGATGCTCGCCAACCCGATCTTCAAGTCCCGCCTGACGGGTGTCGGCGTGCTGAACCTTGCGGGGTGCTTCGCGCTCGGCATCACGGGGCCGGTGCTGCGCTCGGCCGGGCACCCGTACGACGTGCGCAAGGCGTTCCCGTACTGCGGCTACGAGGACTACGACTTCGACGTCCCGACCGACACGGCGGCCGACTGCTACTCGCGGGTGGTGCTGCGCATCGAGGAGTGCTACCAGTCGCTGCGCATCGTCGAGCAGTGCATGCGGCGGCTGGACGAGACGCAGGGCGCCCCGGTGATGGTGGCGGACAAGAAGATCGCCTGGCCGGCCCAGCTCGCGGTGGGCCACGACGGGCAGGGCAACTCGCTGGACCACATCCGCCACATCATGGGCACCTCGATGGAGGCCCTGATCCACCACTTCAAGCTGGTGACGGAGGGCTTCGGGGTGCCCGCGGGGCAGGCGTGGCAGACGGTGGAGCACCCGCGCGGCGAGCTCGGCGTGCACCTGGTGTCCGACGGCGGCACGCGGCCGTACCGGGCGCACTTCCGCGACCCGTCGTTCAACAACCTGCAGGCCGTGTCGGTGATGTGCGAGGGCGGCCAGGTGGCCGACGTCGTCGTCTCCGTCGCGTCCCTGGACCCGGTGCTGGGAGGGGTGGACCGATGAMTAPAHDAPHATRPAADDYGPGVAGFEASGGDWDEIAREAIGEERIVVNMGPQHPSTHGVLRLMLEIDGETVTEARCGIGYLHTGIEKNMEFRTWTQGTTFCTRMDYLAPLYQEAAYCLGTERLLGITDDVPERANVIRVLMMELNRVASHLVCLGTGGNEMGATTIMTLSFTAREEILRMFEAVTGLRMNHAYIRPGGVAQDVPEDFTEHIRELLPSLRKYLAMLGDLMLANPIFKSRLTGVGVLNLAGCFALGITGPVLRSAGHPYDVRKAFPYCGYEDYDFDVPTDTAADCYSRVVLRIEECYQSLRIVEQCMRRLDETQGAPVMVADKKIAWPAQLAVGHDGQGNSLDHIRHIMGTSMEALIHHFKLVTEGFGVPAGQAWQTVEHPRGELGVHLVSDGGTRPYRAHFRDPSFNNLQAVSVMCEGGQVADVVVSVASLDPVLGGVDRPGPT0026805_114DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026805-nuoD-K00333NANA
AK018_03233768nuoC_1COG0852NADH-quinone oxidoreductase subunit CGTGAGCGAGGATCGGGGCCCGCAGGAGGGCGCGACGACGAAGGTCGACCGTCCGGGCGGCGGTCCGACGGCGGAGGTCGTCGGCGAGCGCACCGGCATGTTCGGGGTGCACGGCTCGGGCGACACCTCGGGGTACGGCGGCCTGACCCGTCTCGTGACGATGCCGCCGGCGGCGACGCGCCCGTACGGGAGCTGGTTCGATGACGCGGTGGACGTGCTGGCCGAGGTGCTCGCCGAGGCGGGCGTGGCGTTCGACGACGCGGTCGAGCGGGTGGTGGTCACCGACCCGCGCCGTCCGGTCGAGGGGGATGGCCCCAGCCGGGACGCGGAGCTGACGCTGCACGTGGCCCGGGAGCACGTGGTGGCCGTGTGCCGTGCGCTGCGCGACGACCAGGACCTGCGTTTCGAGCTCTCCCTGGGCGTCTCGGGCGTGCACTACCCGGAGGACGCGGGCCGTGAGCTGCACGCGGTCTACCACCTGACGTCGGTGACGCACGGGCGGCGGCTGCGCCTGGACGTGGCCTGCCCGGTCGCGGACCCGCACCTGCCGACGACGACGGCGGTGTACCCGGCCAACGACTGGCACGAGCGCGAGACGTGGGACTTCTTCGGCATCGTGTTCGACGGGCACCCGGCGCTGGCCCGCATCGAGATGCCGGACGACTGGCCCGGTCACCCGCAGCGCAAGGACTACCCGCTCGGTGGGATCCCCGTGGAGTACAAGGGCGCCACGGTGCCGCCGCCGGACGAGAGGAGGCGGTACTCGTGAMSEDRGPQEGATTKVDRPGGGPTAEVVGERTGMFGVHGSGDTSGYGGLTRLVTMPPAATRPYGSWFDDAVDVLAEVLAEAGVAFDDAVERVVVTDPRRPVEGDGPSRDAELTLHVAREHVVAVCRALRDDQDLRFELSLGVSGVHYPEDAGRELHAVYHLTSVTHGRRLRLDVACPVADPHLPTTTAVYPANDWHERETWDFFGIVFDGHPALARIEMPDDWPGHPQRKDYPLGGIPVEYKGATVPPPDERRRYSPGPT0026790_398DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026790-nuoC-K00332NANA
AK018_03234552nuoB_1COG0377NADH-quinone oxidoreductase subunit BATGGGACTGGAGGAGGCTCCGTCGGGTTTCCTGCTGACGACGATCGAGGATCTCGCGGGATACCTGCGCAAGTCGTCCGTGTGGCCCGTGACGTTCGGTCTGGCGTGCTGCGCCATCGAGATGATGGCGGCGGGCGCCTCGCGCTTCGACCTGTCGCGGTTCGGCATGGAGGTGTTCCGTGCCTCGCCGCGGCAGGCGGACCTGATGATCGTGGCGGGCCGGGTGAGCCAGAAGATGGCCCCGGTGGTGCGTCAGGTCTACGACCAGATGAGCGAGCCGAAGTGGGTGCTGTCGATGGGGGTGTGCGCCTCCAGCGGCGGGATGTTCAACAACTACGCGATCGTCCAGGGCGTGGACCACGTGGTGCCGGTCGACATCTACCTGCCGGGCTGCCCGCCGCGGCCGGAGATGCTGATCAACGCGATCCTGGCGCTGCACCAGCAGATCCAGGACTCGCCGATGGGCGTCAACCGGGTCGAGGCGGCGCAGGCGGCCGAGGCAGCGGCGATGGAGGCGACGCCGACGTCGCAGATGCTGGGGATGCTGCGGTGAMGLEEAPSGFLLTTIEDLAGYLRKSSVWPVTFGLACCAIEMMAAGASRFDLSRFGMEVFRASPRQADLMIVAGRVSQKMAPVVRQVYDQMSEPKWVLSMGVCASSGGMFNNYAIVQGVDHVVPVDIYLPGCPPRPEMLINAILALHQQIQDSPMGVNRVEAAQAAEAAAMEATPTSQMLGMLRPGPT0026785_1691DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026785-nuoB-K00331NANA
AK018_03235363nuoA_1COG0838NADH-quinone oxidoreductase subunit AATGAGCAACCCGTACGTCCCGGTGCTGATCCTGCTGGGGATCGGCGCGGTGCTGGCCCTGGGCGGCGTGGCGGCGAGCGCCGTCATCGGACCGAAGCAGTACAACCGCGCCAAGCTCGACGCCTACGAGTGCGGGATCGAGCCGACGCCGCACGCGACGGGCGGCGGCCGGCTGCCCATCAAGTACTACCTGGTCGCGATGACGTTCATCGTCTTCGACATCGAGGTCGTGTTCCTCTACCCGTGGGCGGTGGACTTCGCGGTCCTGGCCGGGTTCGGGCTGGCGGCGGTGCTGATCTTCCTGGTGCTGATCACCATCCCGTTCGTCTACGAGTGGCGGCGCGGCGGGTTCGACTGGGTCTAGMSNPYVPVLILLGIGAVLALGGVAASAVIGPKQYNRAKLDAYECGIEPTPHATGGGRLPIKYYLVAMTFIVFDIEVVFLYPWAVDFAVLAGFGLAAVLIFLVLITIPFVYEWRRGGFDWVPGPT0026780_2164DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026780-nuoA-K00330NANA
AK018_032361314menJ_1COG0644Menaquinone reductaseGTGCGAGCAGGCCAGCGCGACGATGCCGACGTCATCGTCGTCGGTGCAGGTCCGGCCGGGGCCTCGACCGCTCATTGGTGCGCCTCCGCCGGCCTCGACGTGCTCGTGCTCGAGAAGTCCGCGTTCCCGCGCGACAAGGTGTGCGGCGACGGGCTCACGCCCCGGGCCGTGGCCGAGCTCGCCCGCATGGGTGTGCCCACGGACCCCGACGACGGCTGGATCCGCAACGAGGGCCTGCGTGTCGTCGCCGGCGGCCGTTCCTGGGAGCTGGCCTGGCCCGAGCTGACCACCTACCCGGGCTACGGCATGGCCCGGTCCCGGATGTCGTTGGACCACCGGCTGGCCCAGCACGCGCAGGCCTCGGGCGCCAAGGTCGTCGAGCGGACCAAGGTCACCGGTCCGGTCCTCGACGAGCGCACCAGCCGGGTCGTCGGTGTGACGGCGCAGCCGTTGGACGGCCGGGGTCGTGCCGACGGTCCGGGCCGCACCTACCGGGCTCCCGTCGTCGTCGCGGCCGACGGCGTCTCCTCGCGGTTCGCGACGGCGCTCGGCATCGTGCGCCGCGACGACCGCCCGCTGGGGACCGCGGTGCGCACCTACTTCCGCACCGAGGGCACGGCCCGCCAGGACGACTCCTTCATGGAGTCCCACCTGGAGCTGTGGGACGGCGCGCCCGGCGCGTCGAACCTGCTGCCCGGCTACGGCTGGATCTTCGCGCTCGGCGACGGCACGGCGAACGTGGGTCTGGGCTCGGTGAGCTCCTCGCCGGCCCGGCAGTCGGCGAACGGGCACGACTACCGCGGGCTCCTGCAGACATGGATGCGCAACACCCCGGCCGAGTGGGGTTTCACGGACGAGAACCAGGTGGGACCCGTCCGCGGGGCAGCACTGCCCATGGGTTTCAACCGCACGCCGATGTACCGCGACGGGGCACTGCTCGTCGGGGACTCGGCCGGGATGGTCAGCCCGTTCAACGGCGAGGGCATCGCCTACGCCCTGCAGGCCGGCCGGGTCGCCGCGGAGGCGATCGCGCAGGCCCGCACGCGCCTGGGCGACGACGCCCGCGAGCGCACCCTGGAGTCCTACACCGACCGGATGCGGGCGGACCTGGGCGGGTACTACACGCTGGGCCGGTGGTTCGTGCGGCTCATCGAGCACCCCGCGGTGATGCGGGTGTGCGTGCGTTACGGCCTGCCGCGCCCGGTGGTGATGCAGTTCGTGCTCAAGCTGCTCTCGGACTGCTACGAGCCGCACGGTGGCGACTGGGTGGACCGGGTGATCGCGGGCCTGACGAGGGTGGTGCCGAAGGCGTGAMRAGQRDDADVIVVGAGPAGASTAHWCASAGLDVLVLEKSAFPRDKVCGDGLTPRAVAELARMGVPTDPDDGWIRNEGLRVVAGGRSWELAWPELTTYPGYGMARSRMSLDHRLAQHAQASGAKVVERTKVTGPVLDERTSRVVGVTAQPLDGRGRADGPGRTYRAPVVVAADGVSSRFATALGIVRRDDRPLGTAVRTYFRTEGTARQDDSFMESHLELWDGAPGASNLLPGYGWIFALGDGTANVGLGSVSSSPARQSANGHDYRGLLQTWMRNTPAEWGFTDENQVGPVRGAALPMGFNRTPMYRDGALLVGDSAGMVSPFNGEGIAYALQAGRVAAEAIAQARTRLGDDARERTLESYTDRMRADLGGYYTLGRWFVRLIEHPAVMRVCVRYGLPRPVVMQFVLKLLSDCYEPHGGDWVDRVIAGLTRVVPKANANANANANA
AK018_03237171hypothetical proteinATGAAGGCGTTCACCGCACTGGTCGCCGGCCTCGCCCTGGGGTACTACCTCGGCACCGAGAAGGGTCGCGAACAGTTCGAGCAGGCCAAGCAGCTCGCGGTCGACACCTGGAACGACCCGCGCGTCCAGGAGAAGGTCACCGAGGTCCAGGAGAAGGTCGCCAAGGCCTGAMKAFTALVAGLALGYYLGTEKGREQFEQAKQLAVDTWNDPRVQEKVTEVQEKVAKAPGPT0015027_248DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0015027-ytxH-NANANA
AK018_03238699menG_1COG2226Demethylmenaquinone methyltransferaseATGTCCCGCGCCAGCCTGGAGAAGAAGCCCGCCGAGGTCGCGTCGATGTTCGACGGCATCGCCGAGCGCTACGACCTGACGAACGACCTGATCTCCCTGGGCCAGGACCGGCGCTGGCGTCGCGCCACGGTGGCGGCGGTGGGTGCCGGCCCGGGTGACCGGGTGCTGGACCTGGCGGCGGGCACCGGCACGTCGAGCGAGCCGTTCGCGGACGCCGGCGCCGTCGTCGTGCCGTCCGACTTCTCCCAGGGCATGCTCGCGGTCGGCAAGTCCCGCCGCCAGGACCTGCCCTTCGTCGCGGGGGACGCGACCCGGCTGCCGTTCGCGGCGGCGTCGTTCGACGCGGTGACGATCAGCTTCGGGCTGCGCAACGTGGTCGACACCGCCGCGGCGCTGCGGGAGATGCTGCGCGTGACCCGGCCGGGCGGCCGGGTGGTGATCTGCGAGTTCTCGCACCCGACGTGGGCGCCGTTCCGGACCCTGTACATGGAGTACCTGATGCGGGCGCTGCCCGCCGTGGCCGGGACGGTCACCCGGGACAAGGGCTCCTACGACTACCTCGCCGAGTCGATCCGCGCCTGGCCCGACCAGGAGGCGCTGGGCCGGCTGCTGCTGGAGGCCGGCTGGGGACGGGTCTTGTACCGGAACCTGTCCGGCGGGATCGTGGCGCTGCACCGGGCGACACGCCCGCGCGACTGAMSRASLEKKPAEVASMFDGIAERYDLTNDLISLGQDRRWRRATVAAVGAGPGDRVLDLAAGTGTSSEPFADAGAVVVPSDFSQGMLAVGKSRRQDLPFVAGDATRLPFAAASFDAVTISFGLRNVVDTAAALREMLRVTRPGGRVVICEFSHPTWAPFRTLYMEYLMRALPAVAGTVTRDKGSYDYLAESIRAWPDQEALGRLLLEAGWGRVLYRNLSGGIVALHRATRPRDPGPT0009535_3419DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009535-ubiE-K03183NANA
AK018_032391371pchA_1COG1169Salicylate biosynthesis isochorismate synthaseATGTCCGCCACGCCCTACCCGGCGCCGGTCCCGTCGTCGGGCGCGTCCGCCGGCACGCCGTCCCCCGCCGTCGAGCCACGCCCGCTCGTGGTGCGGACCACCCGCATCGACCCGCTGCCCGGCGGCCCGACCGCCCTGGTCGACCTGCTCCCCGACACCCGCCCGCTGACGTGGGTGCGCCGCGGGGACGGCCTGGTGGGCTGGGGCGAGGCGCTGCGGCTCGACACATTCGGTCCGGGCCGGTTCGCCGACGCCGAGGAGGCCTGGCGCGCCACGCTCGCCCACGCCGTCGTGCGCGACGAGGTCGGCCTGCCCGGCACCGGACCGGTCGCGTTCGGCACGTTCGCATTCGACGACGGCGGCACCGGCGAGTCGTTCGACGGCGCCCGGCCGCAGGGCTCGCTCGTCGTCCCCCGCGTCGTCGTCGGGCGCCGCGGGCGGGTCACCTGGCTGACCACCATTTCGCCCGGCGGCACGCTCGACGCGCCCGGCGCGGCCGTGCTGGACCGGACCGACCGCGCGCCCGTGACCTCCCCGGGGCGCGTCGAGATGCGCGACGGCGCCGTCGACGCCCGCGACTGGCCCGAGGTCGTCGCCGAGGGCATCGCCCGCATCCGCGCCGGCGAGCTGGAGAAGGTGGTCCTGGCCCGCGACGTCGTGGCGACCACCGAGCGGCCCGTCGACCCGCGCTGGCTGCTCGGCCGCCTGGCCGAGTCCTACACCTCGTGCTGGACGTTCTCGGTGGCCGGGATGGTGGGCGCGACGCCGGAGCTGCTGGTGCGCAGCGAGAAGGGGCTGGTCACCTCTCGCGTGCTCGCGGGCACCATCCGGCGCGAGGCGGGGATGAGCGACGACGACGCGCTGCTGCACGCGGCGCAGCTCGCCCGGTCCTCGAAGGACCTCGAAGAGCACGAGTTCGCGGTGTCCTCCGTGGCTCGCGCCCTGGAGCCGTTCTGCTCCTCGATGAACGTCCCGGACGCCCCGTTCGTCCTGCACCTCCCGAACGTCATGCACCTGGCGTCCGACGTGACCGCCGTCCTGGACCCGGGTGCCCGGTCGAGCTCGCTGACGCTCGCCGCCGCACTGCACCCCTCGGCGGCGGTGTGCGGCACCCCCACGGTCGCGGCCCGCGACCTCATCCGCGAGATCGAGGGCATGGACCGCTCCCGGTACGCCGGGCCGGTGGGCTGGGTCGGCGCGGACGGCGACGGCGAGTGGGGCATCGCGCTGCGGTCCGCCGAGCTGGCCGACGACCCGCACCACGTGCGGCTGTTCGCCGGGTGCGGGATCGTCGCGGCCTCGGACCCGGCGGCGGAGCTGGCGGAGTCGGAGGCGAAGCTGGTCCCCATGCGCTGGGCCCTCGGCGGGTGAMSATPYPAPVPSSGASAGTPSPAVEPRPLVVRTTRIDPLPGGPTALVDLLPDTRPLTWVRRGDGLVGWGEALRLDTFGPGRFADAEEAWRATLAHAVVRDEVGLPGTGPVAFGTFAFDDGGTGESFDGARPQGSLVVPRVVVGRRGRVTWLTTISPGGTLDAPGAAVLDRTDRAPVTSPGRVEMRDGAVDARDWPEVVAEGIARIRAGELEKVVLARDVVATTERPVDPRWLLGRLAESYTSCWTFSVAGMVGATPELLVRSEKGLVTSRVLAGTIRREAGMSDDDALLHAAQLARSSKDLEEHEFAVSSVARALEPFCSSMNVPDAPFVLHLPNVMHLASDVTAVLDPGARSSSLTLAAALHPSAAVCGTPTVAARDLIREIEGMDRSRYAGPVGWVGADGDGEWGIALRSAELADDPHHVRLFAGCGIVAASDPAAELAESEAKLVPMRWALGGPGPT0009360_485DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009360-menF-K02552NANA
AK018_032401572hypothetical proteinATGAGCACCGACAACAACACCGCACCGCAGCAGCCGTCGGACCCGCAGCACCCCGTCGACCACCCCACCACGCCGATCGCCGGTGGCCCGTCCGCCGGACCGGAGCAGGCGGCCCCCGCACCGCAGGCAGCGGCTCAGCAGCAGGCGACGTTCGCCCAGCCCGCGCCCCCGCAGCACGGTTACGGCGCGCCCGCTCCGACGTCGTACCCGCCCTACCAGCAGGACTGGTCCCACCAGTACGCCGCGCAGCCCGAGCAGCCGAAGCAGCGCACCCGCTGGGTGCCGCTCGTCGCCGTCGCCGCGGGTGCCGCCGTCATCGCCAGCACCGCGACCGCCGGGCTCATCACCGTGCTCGACGACGGCACCACCACGTCCTCGCTCGCCGGGGTCGGGTCCTCGGAGCAGTCCGACGCCGCACCCGTGGCCAGTTCCACCAGCGAGAATCCCGACTGGCAGGCCGTCACCTCGGCCGTCGCCCCGTCCGTCGTCGCGATCCAGGTGACCAGCCAGGCCGGCGGGTCCGAGGGCTCCGGCGTCGTCATCGACGAGGCCGGGCACGTGCTGACCAACAACCACGTCGTCTCGGGTGCCGCGAACGACACCGTCCAGGTGACCCTGTCCGACGGTCGCCTGTACGAGGCGACCATCGTCGGCACCGACCCGACCACGGACCTCGCGGTCGTGCAGCTCACCGACCCGCCGGAGGACCTGCAGCCGGCGGCCTTCGGCGACTCCGACAGCGTCCAGGTGGGCGACTCCGTGCTCGCCGTCGGCAACCCGCTCGGCCTCGCCAACACCGCCACCACCGGCATCGTCTCGGCGCTCGACCGTCCGGTGGCCGCCTCCGGCGAGGACGGCAGCGACGTGGTCGTCACCAACGCCATCCAGATCGACGCCGCCGTGAACCCCGGCAACTCCGGCGGGCCGCTGTTCGACGCGCAGGGTCGCGTCATCGGCATCACGTCGTCGATCGCCACGATGTCGAGCGGCATGAACAGCTCGTCCGGGTCGATCGGCCTCGGCTTCGCGATCCCCGTCAACCTGGCGACGAACGTCTCCGACCAGCTCATCGAGGACGGCACCGCCGAGCATGCTTTCCTGGGCGTCTCCCTGACCGACGCGACCGCCGCGGCCGACGGCGTGACCCGCCGGGGCGCCGAGATCGTCGAGGTCACCTCCGGCTCCCCCGCCGCGGAGGCCGGTCTGCAGGCCGGTGACGTCATCGTCGCCGTCGACGACGACTCGGTGAACGGCGCCGAGTCCCTGACCGCCTACGTCCGTGAGCGCGCGGCGGGGGAGTCGGCCACGATCACCTACGTCCGTGACGGGCAGACCGGATCCGTCGACGTCTCGTTCGCGGTGCGCGAGGAGACCGTCTCGGACTCCGGGTCCTCCGGGTCCGAGGAGGGCTCCCAGGACCAGCTCCCGGGCGACGGCGGCGGCGAGGGCACCTGGCCGGGCCAGGACGGCACCCGGCCGGGTCAGGAGCAGGACGGCTCGGACGACTCCGGCACGGACTCGACGCAGCCGGACAACATCCCCGAGTGGCTCCAGGAGCTGTTCGGCAGCTGAMSTDNNTAPQQPSDPQHPVDHPTTPIAGGPSAGPEQAAPAPQAAAQQQATFAQPAPPQHGYGAPAPTSYPPYQQDWSHQYAAQPEQPKQRTRWVPLVAVAAGAAVIASTATAGLITVLDDGTTTSSLAGVGSSEQSDAAPVASSTSENPDWQAVTSAVAPSVVAIQVTSQAGGSEGSGVVIDEAGHVLTNNHVVSGAANDTVQVTLSDGRLYEATIVGTDPTTDLAVVQLTDPPEDLQPAAFGDSDSVQVGDSVLAVGNPLGLANTATTGIVSALDRPVAASGEDGSDVVVTNAIQIDAAVNPGNSGGPLFDAQGRVIGITSSIATMSSGMNSSSGSIGLGFAIPVNLATNVSDQLIEDGTAEHAFLGVSLTDATAAADGVTRRGAEIVEVTSGSPAAEAGLQAGDVIVAVDDDSVNGAESLTAYVRERAAGESATITYVRDGQTGSVDVSFAVREETVSDSGSSGSEEGSQDQLPGDGGGEGTWPGQDGTRPGQEQDGSDDSGTDSTQPDNIPEWLQELFGSPGPT0021000_163DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021000-pepD-K08372NANA
AK018_032411806menD_1COG11652-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylate synthaseATGAGCGACAGCCCCGCCGTCGACGCGGCCCGTGCGCTCGTCGCCGACCTCGCGGCCCAGGGCGTGCCCGACGTCGTCCTCGCTCCCGGCTCGCGGTCCGCACCCCTGGCCTACGCGCTCGCCGAGGCCGACGCCGCCGGCCTCCTGCGGCTGCACGTGCGCATCGACGAACGCTCGGCGGCGTTCCTCGCGCTCGGGCTGTCCCGCGGGTCGGGCCTGCGCCCGGCCGACGGCGGTACCCCGACGGATGCCGCGCCCGTCGCGGTGGTGACGACGTCGGGCACCGCCGTGGTCCACCTGCACCCCGCCGTGCTCGAGGCCTCCCACGCCGGGCTGCCGCTGGTGCTGCTCACCGCCGACCGCCCCCACGAGCTGCGCGGCACGGGCGCCTCCCAGACCACCGACCAGGTGGGGGTCTTCGGCGCCGCCGTCCGGCACGCCGCCGACGTCCCCGCCCCGGACGGTCGCCCCGGGGAGACCGAGGATCTCCTGGCCACCGCCCGGCGGGCGCTCGCGGCCGCGCGAGGTCTGCGGGACCGGCACCCCGGCCCCGTCCACCTCAATCTCGCCTACCGCGACCCCCTGCACCCGTCCCACCCGGCCGGCGCCCCGACGACGCCGCGGCCGGGCGTCACGGTGGTGCCGCCGTCGCCCGGTCCCGGCGCCGACCCGGACCTGCCCGGCGATCCCGCGCGGACCGTCGTCGTCGCCGGCGACGGGGCGGGTCCCGCGGCGCGCCGCCTCGCCGAGGCGCAGCGCTGGCCGCTGCTCGCCGAACCCACCTCGGGGGCGTGCGGCGGCCCCCAGGCCGTGGCCGCCTACCGGTCCGTGCTCGGCGCCGACGACATCGCCGCCGACGTCGCGCACGTCGTCGTCCTCGGCCGCCCCACGCTGTCCCGGCCCGTGCAGCGGCTGCTCGCGCGGCCCGACGTGACCGTCACCGTCGTGGCACCCGGTGGCGGCCCCTGGCCCGACGCCGCCCGCAACGCCGCCCGCGTGGTCGAGCGGCTCGCCGACCGCTGGTTCGCCGGGCCCGGGCCCGACGGCGGGGCGCCCGACGGCGGTGCGGCCGACGGCGGTGCGTTCGCCGCGCGGTGGCGTGCGGCGAGCGCGGCGGCCGCCACCCAGGTCGACGCCGTGACGCGCGACGTGTCCGCCCTCGCCACCGCCCCGTACGCGGCGCTCGCCGTCGCCCGGTCGGTCGTCGCCGCGACCGGTCCCGACGACGTCCTCGTGGTCGGCGCGTCCAACCCGGTGCGCGACGTCGACCTCGTGACCGGTCTCGACGCCGCCGTGGACGACCCGCCACCGCGGATCGTCGCCAACCGGGGGCTCGCCGGGATCGACGGCACGGTCGCGACCGCCACCGGTGTGGCGCTCGCCGCCGCCCGGCGCCGGCTGCGCACGCGGGCCCTCGTCGGCGACCTGACCTTCCTGCACGACGTCGGCGGGCTGCTGCGCGGCCCTGGCGAGGCCCCGGTGGACCTGCAGGTCGTGGTGGTGAACGACGACGGCGGCTCGATCTTCGCGACGCTCGAGCACGGGAGCCTGGCGCGGTCCGGCCCCGCCGCGGCCGCCACCTTCGAACGCGTCTTCGGCACGCCCCACGGCGCCGACCTCGGGGCGCTGTGCGCCGGGTACGGCGTCGAGCACCGGCGGGCCGAGGACGTCGACGCGCTCCGGGCGGCGCTCGCCGACCCGCCGCCCGGTGTGAGCGTCGTCGAGGTGCGGGTGCCGCGCGCCGACCGCCTCGTGGAGTCCCGCGCGCTCGCGGACCGGATCGTGCGGGCGGTGCAGCGCCGCTGAMSDSPAVDAARALVADLAAQGVPDVVLAPGSRSAPLAYALAEADAAGLLRLHVRIDERSAAFLALGLSRGSGLRPADGGTPTDAAPVAVVTTSGTAVVHLHPAVLEASHAGLPLVLLTADRPHELRGTGASQTTDQVGVFGAAVRHAADVPAPDGRPGETEDLLATARRALAAARGLRDRHPGPVHLNLAYRDPLHPSHPAGAPTTPRPGVTVVPPSPGPGADPDLPGDPARTVVVAGDGAGPAARRLAEAQRWPLLAEPTSGACGGPQAVAAYRSVLGADDIAADVAHVVVLGRPTLSRPVQRLLARPDVTVTVVAPGGGPWPDAARNAARVVERLADRWFAGPGPDGGAPDGGAADGGAFAARWRAASAAAATQVDAVTRDVSALATAPYAALAVARSVVAATGPDDVLVVGASNPVRDVDLVTGLDAAVDDPPPRIVANRGLAGIDGTVATATGVALAAARRRLRTRALVGDLTFLHDVGGLLRGPGEAPVDLQVVVVNDDGGSIFATLEHGSLARSGPAAAATFERVFGTPHGADLGALCAGYGVEHRRAEDVDALRAALADPPPGVSVVEVRVPRADRLVESRALADRIVRAVQRRPGPT0009365_459DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009365-menD-K02551NANA
AK018_032421113menC_1COG4948o-succinylbenzoate synthaseATGGTCGTACTCGACGCCGCCGGACGACTTCACGGACTGACGGCGCGGCCCGTCCGAGCCGTGGGCGCTGCCCCGCGGCCGGGTACCTCCTACCCTGAGGGCGTGCCCGACTCCCTGTCCGCGACGACGCAGCGCCGGTTCGCCTGGTCGACGCCGCTGCGCACCCGCTTCCGGAACCTGGACTCCCGCGACGGCCTGCTGCTGCGCGGCGACGCCGGCTGGGGCGAGCTGAGCCCGTTCTGGGAGTACGACGACGGCGAGTCCGCCGCGTGGCTGCGTGCGGCCCGCGAGGCGGCCGACGTCGGCTTCCCCGCCCCGGTGCGCGACGTCGTGCCCGTCAACGTCACGGTGCCGGCCGTCGGCCCCGACCAGGCCCGGCAGATCGTGCTCGCCTCGGGCGGCTGCACGACGGCGAAGGTCAAGGTGGGCCAGCGCCTCGCCCACGGCGCGGTGGAACCCGTCGAGGCGGAGCGCGAGCGCGTCGCCGCGGTCCGGGCGGCCTTCGACGAGCTCGGGACGCCCGGTGCCGCGATCCGCGTCGACGTCAACGGCACCTGGACCGTGGACGACGCCCTGCGGCGCGTGCCGCTGCTGGACGCCGCCGCCCGCGGGCTGGAGTACGTGGAGCAGCCCTGCGGCACCGTCGAGGAGCTCGCGGCCGTGCGCCGTGGCGTCGACGTGCCGGTCGCGGCCGACGAGTCCATCCGCCGCGCCGCGGACCCCCTGCGCGTGGTGCGGGCCGAGGCGGCCGACGTCGTCGTCCTCAAGGTCCAGCCGCTCGGCGGCGTGCGCGCCTGCCTGGACCTCGCCGAGCAGGTGGGGCTGCCCGTCGTGGTCTCCTCGGCGCTGGAGTCGTCCGTCGGGCTGGCCGCCGGGGTGGCGCTCGCCGCGGCCCTGCCGGAGCTGCCCTACGCCTGCGGGCTGGCCACCTCCCAGCTCCTGACCCGGGACGTCACCGACCGACCGCTGCTGCCCGAGGGCGGCGCGCTGCCGGTGCGGCGCGTGGCACCGGACCCGGGGGCCCTCGCCGCCGTCGCGCCGTCCGCCGAGCTCGAGCAGCGGTGGTTCGCGCGCCACGACCGGCTCGCCGACCTGCTGGACGCCGCCGCATGAMVVLDAAGRLHGLTARPVRAVGAAPRPGTSYPEGVPDSLSATTQRRFAWSTPLRTRFRNLDSRDGLLLRGDAGWGELSPFWEYDDGESAAWLRAAREAADVGFPAPVRDVVPVNVTVPAVGPDQARQIVLASGGCTTAKVKVGQRLAHGAVEPVEAERERVAAVRAAFDELGTPGAAIRVDVNGTWTVDDALRRVPLLDAAARGLEYVEQPCGTVEELAAVRRGVDVPVAADESIRRAADPLRVVRAEAADVVVLKVQPLGGVRACLDLAEQVGLPVVVSSALESSVGLAAGVALAAALPELPYACGLATSQLLTRDVTDRPLLPEGGALPVRRVAPDPGALAAVAPSAELEQRWFARHDRLADLLDAAAPGPT0009375_1073DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009375-menC-K02549NANA
AK018_03243183hypothetical proteinATGGACACGACGAACCAGATTCGATCTGAGGTCGCCGACCCGGACGAGGTCGTCGACGAGCTCATCGCCTACGACGCCGCCGAGGTGCGCCGCGCCACCGCCACGACCCAGTCCGTGCCGGTCGCGACCGTCCGTCGCGCGGGATGGTCGTACTCGACGCCGCCGGACGACTTCACGGACTGAMDTTNQIRSEVADPDEVVDELIAYDAAEVRRATATTQSVPVATVRRAGWSYSTPPDDFTDNANANANANA
AK018_03244987menB_1COG04471,4-dihydroxy-2-naphthoyl-CoA synthaseGTGAACGACGCCGCCCTCCCCCGCCAGGTCTCCGCCACGTTCGACCCGACCCGATGGCGCACCGTCGCCGGGTTCGAGGACCTGAGCGACCTCACCTACCACCGTGGCGTGCAGCGCACGCTCGCCGACGACGGCACGGAGCAGGTGCGGGACCTGCCCGTGGTGCGGGTCGCGTTCGACCGTCCCGAGGTGCGCAACGCGTTCCGCCCGCACACCGTCGACGAGCTGTACCGGGTGCTCGACCACGCCCGCATGACCTCCGACGTCGGCACGGTGCTGCTCACGGGCAACGGCCCGTCCCCCAAGGACGGCGGCTGGGCGTTCTGCTCCGGCGGGGACCAGCGCATCCGCGGCCGGTCCGGCTACCAGTACACGACGGCCGACGACGCCGGACGGCTCGGTGAGGGCGCCGACGCCGTCGACCCGGCGCGTGCCGGACGGCTGCACGTCCTCGAGGTGCAGCGGCTGATCCGCACCATGCCCAAGGTGGTGATCGCCGTCGTCGACGGGTGGGCCGCCGGGGGCGGGCACTCGCTGCACGTCGTGGCCGACCTGTCCATCGCCTGCCGCGAGCACGGCAAGTTCAAGCAGACCGACGCCGACGTCGGCTCGTTCGACGGCGGATACGGCTCGGCCTACCTCGCCAAGCAGGTGGGCCAGAAGCGGGCACGGGAGATCTTCTTCCTCGCCCGGGAGTACTCCGCCGACGACGCCGAACGGTGGGGCGGGGTCAACGAGGTCGCCGATCACGACGACCTGGAGGCCCTAGGGCTGGACTACGCGCTGACGATCGCCGGCAAGTCGCCGCAGGCGATCCGGATGCTGAAGTTCGCGTTCAACCTGACCGACGACGGCCTGGTGGGCCAGCAGGTGTTCGCCGGGGAGGCCACGCGACTCGCCTACCTCACCGACGAGGCCGTCGAGGGCCGCGACGCGTTCCTCGCCAAGCGCGATCCCGACTGGTCGCGGTTCCCGTACGCCTACTGAMNDAALPRQVSATFDPTRWRTVAGFEDLSDLTYHRGVQRTLADDGTEQVRDLPVVRVAFDRPEVRNAFRPHTVDELYRVLDHARMTSDVGTVLLTGNGPSPKDGGWAFCSGGDQRIRGRSGYQYTTADDAGRLGEGADAVDPARAGRLHVLEVQRLIRTMPKVVIAVVDGWAAGGGHSLHVVADLSIACREHGKFKQTDADVGSFDGGYGSAYLAKQVGQKRAREIFFLAREYSADDAERWGGVNEVADHDDLEALGLDYALTIAGKSPQAIRMLKFAFNLTDDGLVGQQVFAGEATRLAYLTDEAVEGRDAFLAKRDPDWSRFPYAYPGPT0009385_176DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009385-menB-K01661NANA
AK018_032451068yerB_1Putative lipoprotein YerBATGGCTCGACGCACGGTCCGCGGCGCAGCGGTGACGGCCGCGCTCGCACTGGTCCTGACCGCCTGCTCCGGAGGCGACCCGGCCCCGGCGCCGACGACGACGGTCCAGGCGTCGGTCTCCGCGGCCAAGGCCTCGCCCCCGCAGCCGGACGCGCCGACCGTGTGGCCGCTCACCGGGGTCGAGACCGAGCAGGTCGCCGACCGGCCGGCGCTGGGCATCAAGGTCGAGAACTCGCCGCAGGCCCGCCCCCAGACCGGCCTGGAGGACGCCGACGTGGTGTGGGAGGAGGTCGTCGAGGGCGGGATTTCCCGGTTCCTGGCCGTCTACCACTCGACGATCCCGGACGCCGTCGAGCCGGTGCGTTCCGTGCGGCCGATGGATCCGGCAATCGTGGCCCCGCTGGACGGGATCCTGGCCTACTCGGGCGCGCAGCAGCCCTTCATCGCGGACGTGCGTGCCTCGGGGACGCAGTCGGTGATCATGGACGCCGGCGACCCGGGGTTCAGCCGCGACCCCGTCCGGCCCGCGCCGCACGACGTGATCGGCGACCCGCAGACGTTCCTCGACCAGTCCGACGGCGAGCGGAGCGTGCCCCCGCCGGCGCAGTTCACGTTCGCGCGCGACGCCCGGCGTGCCACCGCCGCGGCCGACGAGGCCTCGGACGCGGAGCTGGAGGTGCGCCTGTCCCCGGCGCAGACGACGCGCTGGGCCTGGGACGCCGACTCCGCCGCGTGGCTGCGCAGCGAGGGGTCGAGCCCGTCGATGTCCACGTCGGGCGTGCAGCACGCGGCGACGAACGTCGTCGCGCTGCAGGTGGAGGTGGTGAACACCTCCTACCGGGACGCCTCCGGCGCGGCGGTGCCGGAGACGCAGCTCGTCGACTCCGACGGCGTCGCCCTGGTCGCCAGCGCCGGCGGGTGGGTGGAGGCGCAGTGGTCCAAGGGCGCGCTCGGCGACCCGGTCGAGCTGACCCACGACGGCGAGCCGGTGGAGCTGGCTCCGGGCAGCACCTGGGTCGAGCTGGTGCCGCGCGACGGCGGGTCGTGGACCGCCGGTCCGGCTCAGTAGMARRTVRGAAVTAALALVLTACSGGDPAPAPTTTVQASVSAAKASPPQPDAPTVWPLTGVETEQVADRPALGIKVENSPQARPQTGLEDADVVWEEVVEGGISRFLAVYHSTIPDAVEPVRSVRPMDPAIVAPLDGILAYSGAQQPFIADVRASGTQSVIMDAGDPGFSRDPVRPAPHDVIGDPQTFLDQSDGERSVPPPAQFTFARDARRATAAADEASDAELEVRLSPAQTTRWAWDADSAAWLRSEGSSPSMSTSGVQHAATNVVALQVEVVNTSYRDASGAAVPETQLVDSDGVALVASAGGWVEAQWSKGALGDPVELTHDGEPVELAPGSTWVELVPRDGGSWTAGPAQNANANANANA
AK018_032461080yerB_2Putative lipoprotein YerBATGCGACGCACGGGCCGGGTGGTCGCGGCGGTGGTGGCCGCGACGCTGGCGCTCGCCGGTTGCGGCCCCCAGGAGGCTCGCCCGGCCGCGCAGGTCACGGTGGCGCCCGAGACGGCCCGCGCCAAGATCGCCCCGCCCGCCCCGGTGGTCCCGCCCCCGCCGGAGCCGAAGCCGGAGCCGGCCCGCTGGCCCCTGACCGGCGTGAAGACAGGCACGAAGAAGGTCCCGGCACGTCCGGCGGTGTCGGTCAAGATCGAGAACTCGGCGGCCTCCCGCCCGCACACGGGGCTGCACCGGGCCGACATCGTATGGGAGCAGGTGGTCGAGGGCGGCATCAGCCGGTTCGTGGCCACCTACCACTCGGACCTGCCGCGCGAGGTCGGCCCGGTCCGCTCCGTACGGCCCATGGACCCGGCCACGGTGGCCCCGCTGCGCGGCATCCTGGCGGCGTCGGGCGGGCAGGGACCGTTCCTGCGGGCGGTGGAGCGCAGCGGCACCCAGCTGCTCACCAACGACGACGGCGACCGCGGGTTCTGGCGGTCCTCGGCCCGGTACGCGCCGCACAACGTGTACGGCGACGTGCACACGTTCGCGCGGCAGGCCGACAAGCGGCGCGCCGAGCCGCCGAAGGCGCAGTTCGCCTACGCCACGACGGCGAGGAAGGCGACGGCGCGGCAGCACGGCTCGCGCGGACGGGTCGCGGACGTGCGGCTCTCCCCGGCGCAGCGCACCACCTGGACGTGGCGCGGCGGTGCCTACCGGCGCAGCGACGACGGCCGGGCGTCGATGTCGTCCGGCAAGCGCGTCTCGGCACGCAACGTGCTGGTGCTGAGCGTGCGGGAGACGAACACCCGCTACCGCGACCCGAGCGGTGCGCCGGTGCCGAAGGCCGAGCTGGTCGGGCGCGGCAAGGGCGTCCTGCTCGGCGGGGGCAAGGTGGTGAAGGTCCGCTGGTCCAAGCAGGGCGCGCGCAAGCCGTTACGGCTCGAGCGGCCGAACGGCAAGCAGGTGCTGCTCGCGCCGGGGACGACCTGGGTCGAGCTGGTTCCTCGTGGTGACGGTTCGTGGCGGGTGACCTGAMRRTGRVVAAVVAATLALAGCGPQEARPAAQVTVAPETARAKIAPPAPVVPPPPEPKPEPARWPLTGVKTGTKKVPARPAVSVKIENSAASRPHTGLHRADIVWEQVVEGGISRFVATYHSDLPREVGPVRSVRPMDPATVAPLRGILAASGGQGPFLRAVERSGTQLLTNDDGDRGFWRSSARYAPHNVYGDVHTFARQADKRRAEPPKAQFAYATTARKATARQHGSRGRVADVRLSPAQRTTWTWRGGAYRRSDDGRASMSSGKRVSARNVLVLSVRETNTRYRDPSGAPVPKAELVGRGKGVLLGGGKVVKVRWSKQGARKPLRLERPNGKQVLLAPGTTWVELVPRGDGSWRVTNANANANANA
AK018_032471209menE_2COG0318putative 2-succinylbenzoate--CoA ligaseGTGCGCTGCCCCGGGCACGGGCGCGCGGCCTATCGTGTGCCCGTGAGCACCGACCTCGACGACCTCGTCGGCGCCGTCCGCGACGCCCTGGACGGCGGGCCCGCCGTCGTCCCGCTGCCGCTGCTGTCCGCGCAGGCTCCGCCGTCGGGCACCGCCCTGGTGGTGCGCACCTCCGGGTCCACCGGGACGCCGCGGGAGGTGCTGCTCGGTGCGGCAGCATTGCGGGCCTCCGCCGCGGCGACCCACGCCCGGCTCGGCGGCCCGGGACGCTGGGTGCTCACGCTGCCGCCGACGCACGTCGCGGGGCTGCAGGTGATCGTGCGGTCGCTGCTCGCCGGGACGCCCCCGGACGTCGCACCGCCCGGGGGGTTCTCCCCCGACGGCCTCGCCGCCGCGCTGCGCGCACCGCTGGCCGGCGCCGACCCCGTCTACGTCTCGCTGGTGCCCACGCAGCTGCACCGCGTCGTCGACGCGGCCGACGGCGGCGCACCGGCCGCCCTGCAGGCCCTCACCCGGTGCGGCGGGGTCCTGCTGGGCGGCGCCGCCACCCCGCCGCGGCTGCGCGAGCGCGCCCTCGACGCCGGGGTGCCGGTGGTGCGCACCTACGGCATGTCCGAGACCGCGGGCGGGTGCGTCTACGACGGCGTCCCCCTGGACGGCGTCCGGCTGCGGATCGCGGCCACGGGCGTCGTGGAGATCGCCGGGCCGGTCCTCGCCACCGGGTACCTCGCCGACGAGGCCGCCACCGCCGCGGCGTTCCACGACGGACCCGACGGGCGCTGGTTCCGCACGTCCGACCTCGGCACCCACGACGACGGCGTGCTGACCGTCCTGGGGCGGGCCGACGACGTCATCGTCACCGGCGGGGTCAACGTCGCGCCCGCCGCGGTCGAGGCGGTGCTGAGCGAGGCGCTCGGCGCCGAGGTGTGCGTCGTCGGCGTCCCCGACCCCGAGTGGGGGCAGCGGGTCGTCGCGGTCGTCGCCGGGGACGCCGGTGCCCCGGCCGGGCCCGCCGGTGCTCCGGAGGGCGGCGACGGCACGCAGGGCACCGACGACGAGCTCGATCGGATCCGTGACGTCGTCGCGGCTAGGCTGGGCCGCGCTGCCGCCCCACGACAGGTGCACCGGGTCGCCGCGCTCCCCCTGCGCGGACCCGGCAAGGTCGACCGGGCCGCCGTCGTCGACCTGGTGCGCGACCGCACCCGCTGAMRCPGHGRAAYRVPVSTDLDDLVGAVRDALDGGPAVVPLPLLSAQAPPSGTALVVRTSGSTGTPREVLLGAAALRASAAATHARLGGPGRWVLTLPPTHVAGLQVIVRSLLAGTPPDVAPPGGFSPDGLAAALRAPLAGADPVYVSLVPTQLHRVVDAADGGAPAALQALTRCGGVLLGGAATPPRLRERALDAGVPVVRTYGMSETAGGCVYDGVPLDGVRLRIAATGVVEIAGPVLATGYLADEAATAAAFHDGPDGRWFRTSDLGTHDDGVLTVLGRADDVIVTGGVNVAPAAVEAVLSEALGAEVCVVGVPDPEWGQRVVAVVAGDAGAPAGPAGAPEGGDGTQGTDDELDRIRDVVAARLGRAAAPRQVHRVAALPLRGPGKVDRAAVVDLVRDRTRPGPT0009380_1408DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009380-menE-K01911NANA
AK018_03248870menA_1COG15751,4-dihydroxy-2-naphthoate octaprenyltransferaseATGGCCACGCCCGCCGAATGGGTCGCCGGGGCCCGCCCCCGCACGCTGCCCGCCGCGGCCGCCCCCGTGCTGGTCGGCTCCGGAGCCGCAGCCCAGGTGGACGCGTTCGCCTGGCTACCCGCGGTGCTCGCGCTCGGGGTGGCCCTGGCGCTGCAGATCGGCGTGAACTACGCCAACGACTACTCCGACGGCGTCCGTGGCACGGACCTCGACCGGGTCGGGCCGCTGCGGCTGACGGCGTCGGGCATCGCCCCGCCACGGCGGGTCAAGGGCGCGGCCTTCTCGGCGTTCGGCGTGGCCGGGCTGCTGGGGCTCGGGCTCTGCGTCGTGTCCGGGCACTGGTGGCTGATCGCCGTCGGGGCGCTGTGCATGCTGGCCGCCTGGTACTACACGGGCGGGAAGCGGCCCTACGGCTACTCGGGGCTCGGCGAGGTCGGTGTCTTCGTGTTCTTCGGCCTCGTGGCCACGCTCGGCACCACGTACACCCAGGCCGACCGTCTCACCTGGCCCGCCGTGCTCGGCGCCGTGGGCGTGGGACTCATCGCCTGCGCCCTGCTGATGGTCAACAACATCCGCGACATCCCGACCGACGTCGTCGCCGACAAGCGGACCCTCGCCGTGCGGGTCGGGGACCACCGGGCGCGGCGGCTGTTCGCGCTGTGGATCGTGGTGGCCGTGCTGCTCGGGTTGGCGTGCGCGATCTGGAACCCGTGGGCGTTCCTCACCGCCGTGCTGCTGCTGCCGACCGTGCTGCTCGTGCTGCCGGTCCTGGCCGGGGCGCACGGGCGTGCGCTCGTGCCGGTGCTGGCCGGCACGGGGATGTTCGAGCTGGCCTACGGCGTGCTGCTGGGGCTCGGCCTGGCGCTCTGAMATPAEWVAGARPRTLPAAAAPVLVGSGAAAQVDAFAWLPAVLALGVALALQIGVNYANDYSDGVRGTDLDRVGPLRLTASGIAPPRRVKGAAFSAFGVAGLLGLGLCVVSGHWWLIAVGALCMLAAWYYTGGKRPYGYSGLGEVGVFVFFGLVATLGTTYTQADRLTWPAVLGAVGVGLIACALLMVNNIRDIPTDVVADKRTLAVRVGDHRARRLFALWIVVAVLLGLACAIWNPWAFLTAVLLLPTVLLVLPVLAGAHGRALVPVLAGTGMFELAYGVLLGLGLALPGPT0009395_2543DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009395-menA-K02548NANA
AK018_03249333hypothetical proteinGTGCCTCTCGTCGTTTACACCGTGCTGCGCCTGGGGATCTTCGCGGGCGCGATCGGGCTGGGCTACCTCGCCGGGCTGCGCGGGCTCCTGCTCCTGCTGCTCGCCGTCGTGGTGGCGTTCGCCGTCTCCTACCTGGCGCTGCCGCGGCAGAAAGACGCCGCGGCGGCCTGGCTCGCCGAGCGGGCCCAGCGGCGCGCGGACGCCAAGGGCGGTGGCAAGCAGGGCATCGACCGCGTCATCGACGAGGACGCCGCGGCGGAGGACGCCGCGTTCGACGACCCCGCGCCCCGTGACCCGGCGGTCGACGACCCCGCCTCGCGGGGCGAACGCTAGMPLVVYTVLRLGIFAGAIGLGYLAGLRGLLLLLLAVVVAFAVSYLALPRQKDAAAAWLAERAQRRADAKGGGKQGIDRVIDEDAAAEDAAFDDPAPRDPAVDDPASRGERNANANANANA
AK018_03250360hypothetical proteinATGTTCCGCGTCGTGGTGGGCCTCGTCGTCGTCGGCCTGATGGTCTACAGCCTCGCCGACCTGTCCGGGTCCGAGGAGGAGGATCGCGGCGGTCTGCCCACGTGGTTGTGGGTGCTGATCATCGTGCTCCTGCCCGTGTTCGGGCCGATCACCTGGATCGTCACCAGGCGCGCACGACGGCGGGGCAACGGCGGGCGCACCGCTCGGCCGGGTCGCGGGCCGCGACGCCCCTCGGGTCCGGTCGCCCCGGACGACGACCCCGACTTCCTGTGGCGGCTCGAGCAGGAGAAGCGCCGCCAGGAGCGCCGCGACCGCGGCGACGGCGACGGACCCGCGAGCCCCGGCGACGGCGCCCGCTGAMFRVVVGLVVVGLMVYSLADLSGSEEEDRGGLPTWLWVLIIVLLPVFGPITWIVTRRARRRGNGGRTARPGRGPRRPSGPVAPDDDPDFLWRLEQEKRRQERRDRGDGDGPASPGDGARNANANANANA
AK018_03251972ccsA_1Cytochrome c biogenesis protein CcsAATGGAGATCGCCGAGCTGAGCGACCTGCTCGTGTGGGCGGCGGCGACGACGTTCGCCATCGCGATGATCGCGTTCGCGATCGACCTGGGCCGACGCGGCGACGAACGCATCGAGGCCCGCTCGGAGGCCCGTGCCGCCGTCGTGCCGGCAGGGTCCGCCGCCGATGCCGAGGTGCTGGCCGCGGGCGCCGGTGACGTGCCGGCCGCGCCGCGCCGTCGGGCCGCCGGCATCGGGGTCTCGACGTCCTGGCTCGGCACCGGCTTGCTGCTGCTCGGGATCGTGCTCCGCGGTGTCGCCGCCAGCCGCACGCCCTGGGCCAACATGTACGAGTTCACGCTCGTCGGGTCGTTCATCGCGATGGTCGTGTTCCTCGTGCTGAACCTGCGCCGCGACGTGCGGTTCCTCGGCGCGTTCGTGACCGGCATCGTCACCCTGTTCCTGGTGGTCGGCCTCAACTCGTTCCACGTCGCGGCCACCGGCGTGCAGCCGGCGCTGCAGAACTACTGGCTGGTGCTGCACGTCGGCGTCGCCATCGCCGCGACCGGCATCTTCACCGTCTCGTTCGTGATGTCCGCGCTGCAGCTGCTGCGCGACGGGCGGGACTCCGGCACCCCGTTCCTGACACGGCCCGGCTTCCGCTGGCTGGACCGGATGCCCACGCCCGGCACGCTGGAGTCGATGTCCTTCCGGCTCAACGCCGTCGGGTTCGTGATGTGGACCTTCACGATCATCGGCGGCGCCATCTGGGCCGAGGACGCCTGGGGCCGCTACTGGGGCTGGGACCCCAAGGAGGTCTGGAGCTTCGTCATCTGGGTGGTGTACGCGGCCTACCTGCACGCCCGCACCACGCGCGGCTGGTCCGGGCGGCGGGCCGCATGGTTCGTCGTCGTCGGCTACGCCTGCGTGCTGTTCAACTTCACCGGCGTGAACCTGATCTTCAACGGCAAGCACTCGTACTCGGGCATCAGCTGAMEIAELSDLLVWAAATTFAIAMIAFAIDLGRRGDERIEARSEARAAVVPAGSAADAEVLAAGAGDVPAAPRRRAAGIGVSTSWLGTGLLLLGIVLRGVAASRTPWANMYEFTLVGSFIAMVVFLVLNLRRDVRFLGAFVTGIVTLFLVVGLNSFHVAATGVQPALQNYWLVLHVGVAIAATGIFTVSFVMSALQLLRDGRDSGTPFLTRPGFRWLDRMPTPGTLESMSFRLNAVGFVMWTFTIIGGAIWAEDAWGRYWGWDPKEVWSFVIWVVYAAYLHARTTRGWSGRRAAWFVVVGYACVLFNFTGVNLIFNGKHSYSGISNANANANANA
AK018_032521779ccs1_1Cytochrome c biogenesis protein Ccs1ATGAGCGGGCAGACCTATCGTCCCGAGGGGATCGCGGACGACTTCACCACCGGCGAGACCGCCGCGGACCGCGCCGACGCCGCGACCGGCGCTGCGGCCGGGACGAGCGCGACCGGGCCCGGAGACGGCGCCGGACGTCCGCCGTCGGGCACCCCGAAGGCACCCCGTCTCGGCTGGCGGGGCATGCTGCGCTGGACCTGGCGCCAGCTCACCTCGATGCGCGTGGCGCTCATGCTGCTCATGCTGCTCGCCGTCGCCGCGGTTCCCGGGTCGGTGTTCCCGCAGCGGCCCCAGGACCCGGCCGCCGTGGTCGAGTACCTCGGCGAGCACCCCACCGCGGGGGAGTGGCTCGACCGGTTCGGGTTCTTCGACGTCTACTCCTCGCCGTGGTTCTCGGCGATCTACCTGCTGCTGCTCGTGTCCCTGGTGGGCTGCATCGTGCCGCGCACGATCTCCCACGCCAAGGCGCTGCGGAACCGTCCCCCGCGCACGCCGGCACGGTTCGAGCGGTTCCCGGCCACGGCGTCGGGCACGACGGCGGCCGCCCCGGACGAGGTGACCGGCGCGGTCGCCGCCCACCTGCGCGGACGCGTGCGCCTGCTGCCGACCTTCCGCGTGGACACCGGCACCGAGGACGCCCGGCCGGCCCGCGGCAAGGTGCCGGCCCGTCCGGCGTCGCGCACCGTGGCCGCCGAGCGCGGCTACCTGCGCGAGACCGGCAACCTGCTGTTCCACCTCGCGCTCGTCGGGCTCGTGATCTCCGTGGGGATCGGCCACCTCATGCAGTACCGCGGCCAGGCGATCATCACCGAGGGGCGCGGGTTCGCCAACGCCGTCGTCGACTACGACACGTTCGAGTCCGGCGCCTGGTTCGACCCCGAGTCGCTGGTGCCGTTCTCCATGACGCTCGACGCGTTCACCTCGGAGTTCGCCACCGACTCGGTGGCGTTCGCCCAGTCGCGCGACTTCACCGCCGACGTGACCGTCACCGAGCCGGACGGCTCGTCCTCCGAGCACCAGATCAAGGTCAACCACCCGCTCGAGATCGACGGCGCCAAGATCTACCTGCAGGGCAACGGCTACGCCCCGGACATCACCGTGACCGACGCCGAGGGGGCCACGGCCTTCAGCGGCCGGGTGCCGTTCCTGCCCGAGGACCAGCTCTACACCTCGCGCGGGGTCGTCAAGGTCCCGGACGTCTCCGAGGGGCTCGACCAGATCGGGCTCATCGGGTATTTCCTGCCGACCGCCGTCATCAACGACGACGGCACCGCCGAGTCGGTGTTCCCGCTGCCCACGGACCCGCTGCTCGTGCTCGAGGTGTACCGCGGCGACCTGGGCCTCGACGAGGGCGTGCCGCAGAACGTCTACCGCCTCGACACCGCCGACCTCGAGGCGTCGGTGGACGAGGACGGCGAACGCGTCACCCTGCTGCTCGAACCCGGCGACTCCGTCGAGCTGCCCGACGGCCTCGGCACCGTCGCGCTCGGCGAGGACGTGCCGCGGTTCGTCGCCCTCGACCTGCGCCACGACCCCTCCCTGGCCTGGGTGCTGAGCTTCTCGCTGCTCGCGCTGGTCGGCCTGACCGGGTCGCTGTTCCTGCCCCGTCGCCGGATCTGGGTGAGAACATGGACGTCCGACGGCGTCACCCGCGTCGAGGTCGCCGGCCTCGCGCGGGGGGACGACGCCGGGCTGTCCGGCGAGGTGGAGCGCACCCTGGCCGCGGTCCCCGGCATCGAGACCGACGACCGTCCTGCTGACGAGAACACGGAAGGCTGAMSGQTYRPEGIADDFTTGETAADRADAATGAAAGTSATGPGDGAGRPPSGTPKAPRLGWRGMLRWTWRQLTSMRVALMLLMLLAVAAVPGSVFPQRPQDPAAVVEYLGEHPTAGEWLDRFGFFDVYSSPWFSAIYLLLLVSLVGCIVPRTISHAKALRNRPPRTPARFERFPATASGTTAAAPDEVTGAVAAHLRGRVRLLPTFRVDTGTEDARPARGKVPARPASRTVAAERGYLRETGNLLFHLALVGLVISVGIGHLMQYRGQAIITEGRGFANAVVDYDTFESGAWFDPESLVPFSMTLDAFTSEFATDSVAFAQSRDFTADVTVTEPDGSSSEHQIKVNHPLEIDGAKIYLQGNGYAPDITVTDAEGATAFSGRVPFLPEDQLYTSRGVVKVPDVSEGLDQIGLIGYFLPTAVINDDGTAESVFPLPTDPLLVLEVYRGDLGLDEGVPQNVYRLDTADLEASVDEDGERVTLLLEPGDSVELPDGLGTVALGEDVPRFVALDLRHDPSLAWVLSFSLLALVGLTGSLFLPRRRIWVRTWTSDGVTRVEVAGLARGDDAGLSGEVERTLAAVPGIETDDRPADENTEGNANANANANA
AK018_03253795hypothetical proteinATGGGGGAGCTCTTCGCGAACACCGCGGTGAGCGGCTCGATGCTGCTGGCCGTCCCGGTCGCGCTCGTCGCGGGCATCGTCTCGTTCGCCTCGCCGTGCGTCCTGCCGCTCGTGCCCGGCTACGTCGGGTACGTCGGCGGCATGGCGGCGGCCAACGCGGGAGCGGCGTCATCCGGCGCGGGCGGGACGACGACGGCGGCACCGCCCGTCGCACCGTCACGTGCCCGCGTGGTCACGGGCGTCGGCCTGTTCGTGCTGGGGTTCACGGCCGTGTTCGTGGCCCTCATGGCCGCGGCCGGCGCTGTCGGATCGGTGCTGGTGCGCTACGAGGACGTGCTCACCCGGGTGCTCGGCGTGGTCGTGATCCTCATGGGGGTCGCGTTCCTCGGCGGCATCGGGTTCCTGCAGCGCGAGCGGCGCCTGTACGTCAGCCCGCGCGCCGGCCTGTGGGGCGCACCGCTGCTCGGCGTGGTCTTCGGCCTCGGCTGGACCCCCTGCCTGGGGCCGACGCTGGCGGCCGTGCAGTCCCTCGCCCTGGACGAGGCGTCCGCGACCCGCGGGGTCGTGCTCGGCATCGCCTACTGCGTCGGGCTCGGCGTGCCGTTCCTGCTCGTGGCGCTCGGGCTGCAGTCCTCCCGGCGGATGCTCACCGTCCTGCGGCAGCACCGCCTCACGATCATGCGCGTCGGCGGCGGGCTGCTGATCGCCATCGGCCTGGCCATGGTGACCGGGCTGTGGGGCACGGCGACGAGCATGCTGCAGAGTTGGATCAGCGGATACACGACGGTGGTGTGAMGELFANTAVSGSMLLAVPVALVAGIVSFASPCVLPLVPGYVGYVGGMAAANAGAASSGAGGTTTAAPPVAPSRARVVTGVGLFVLGFTAVFVALMAAAGAVGSVLVRYEDVLTRVLGVVVILMGVAFLGGIGFLQRERRLYVSPRAGLWGAPLLGVVFGLGWTPCLGPTLAAVQSLALDEASATRGVVLGIAYCVGLGVPFLLVALGLQSSRRMLTVLRQHRLTIMRVGGGLLIAIGLAMVTGLWGTATSMLQSWISGYTTVVNANANANANA
AK018_03254582resA_3Thiol-disulfide oxidoreductase ResAATGTTCCGCCGCCGGGTCGCGGGCCTCGCGCTCGCCGCAGCGACCGCCGTCGGCCTGGCCGGCTGCGCGGCCGAGTCCGGCGCGGGCGACGTCGTCGGGCAGGGGTTCGTCTCCGGCGACGGCACCGTGCAGCAGTGGGAGCCGGACGAGCGGGACCGGTCGGTCGTCGTGGAGGGCACGACGTTCGAGGGGGACGACGTCTCCACCGCCGAATGGGCCGGCGACGTCGTCGTGCTCAACACCTGGTACGCCGGGTGCGCACCCTGCCGTGCCGAGGCGCCCGACCTGGTCGAGATCGCCACCGAGCGCGCCGACGAGGGTGTGCACCTGCTCGGCATCAACACCGAGGACGACGCCGGGGCAGCACTGGCGTTCCAGCGCACCTTCGACGTCCCCTACCCGTCCATCGAGGACCGCAGCGGGCAGGTCGTGGCCGGGCTGTCCGGCGTCGTGCCGCTGCAGGCCGTCCCGTCGACCGTCGTGCTGGACGGCGAGGGTCGGGTCGCGTCCCGCGTGGTGGGCGAGGTGGCCGGCTCCACGCTGGACGCCCTCATCGACGACGCCCTCGGGGACCCGGCCTGAMFRRRVAGLALAAATAVGLAGCAAESGAGDVVGQGFVSGDGTVQQWEPDERDRSVVVEGTTFEGDDVSTAEWAGDVVVLNTWYAGCAPCRAEAPDLVEIATERADEGVHLLGINTEDDAGAALAFQRTFDVPYPSIEDRSGQVVAGLSGVVPLQAVPSTVVLDGEGRVASRVVGEVAGSTLDALIDDALGDPANANANANANA
AK018_03255645COG0406putative proteinATGGCCAGAACCACCGTCCATCTCCTGCGGCACGGCGAGGTCCACAACCCCGACGGCGTCCTGTACGGACGCATCCCGGGATATCGCCTCTCGGAGCGCGGGCAGCAGATGGCCCACCGGGTCGCCGGGCACCTGTCCGACGCCGGTCGTGACGTCGTGGGCGTCGTCGCGAGCCCGTTGCAGCGGGCACAGGAGACGGCGCGGCCCACGGCCGCGGCGTTCGACCTCGAGCTGGCCACCGACGACCGTCTCGTCGAGGCCGGCAACCGGTTCGAGGGCTCCACGATCGGCAGGAACCCCGGTCAGCTCCTCAACCCGAGGTACTGGGCGCTGCTGTGGAACCCGCTGCGACCGTCCTGGGGCGAGTCGTACGCCGACCAGGTCACCCGGATGCGGGCCGCCGTGGAGGACGCCCGTCGGGCCTTCGACGGCCACGAGGTCGTGCTGGTCAGCCACCAGCTGCCCGTGTGGGTGACGCGCCTGTCGTACACGGGCCGCCGCCTGGCCCACGACCCGCGCCGCCGCGAGTGCTCGCTGGCCTCCCTGACGTCGCTGACGTTCGACGGCGACCGGTTCGTCCGGATGCACTACACCGAGCCGGCCGCCGACCTGCTCGCCGGCGCGAACCCCGTGGCGGGCGCGTGAMARTTVHLLRHGEVHNPDGVLYGRIPGYRLSERGQQMAHRVAGHLSDAGRDVVGVVASPLQRAQETARPTAAAFDLELATDDRLVEAGNRFEGSTIGRNPGQLLNPRYWALLWNPLRPSWGESYADQVTRMRAAVEDARRAFDGHEVVLVSHQLPVWVTRLSYTGRRLAHDPRRRECSLASLTSLTFDGDRFVRMHYTEPAADLLAGANPVAGANANANANANA
AK018_03256999hypothetical proteinGTGAGCACTCCCGCCCCCGCGATCCATGCCCTGCACGAGAACCCCGAGTGGTTCGGCGTCTTCGCCGAGGCCCTCGACGCGGAGGGGCTGCCGTGGGTGGAGTGGCAGCTCACCGACGGCACGCTCGACCTGGCCGCCGCCCCGCCGGAGGGGATCTTCTGGTCCCGCATCTCGGCGTCGTCCCACACGCGCGACCACGGGCTGTCCAAGGACTACTCGCGGGCCGTGCTGTCGTGGCTGGAGGCGCACGGGCGCCGCACCGTCAACGGGCGCCGGGTGCTCGAGCTGGAGATGAGCAAGGTGGACCAGCTCACGGCCCTGCGCGCCGCGGGCATCGAGGTGCCGCGCACGGTGGCCGCCGTCGGACGCGACCGCGTGGTCGAGGCGGCCCGACGGTTCACCGACACCGTGCCCGGCCCGTTCGTGACCAAGCACAACCAGGGCGGCAAGGGGCTGGGCGTGCTGAAGTTCTCCTCGGTGGACGACCTGGCCGACCACGTCGCCTCGGCGGACTACGACGAGCCCGTGGACGGCATCACGCTGATCCAGGAGTACGTGGCCGCGGCCGACGGCGGGATCACGCGCGTCGAGATCGTCGGCGGCCGGATGATCTACGCGGTGCGCGGTGACACCGAGCGCGGCGGGTTCCAGCTCTGCCCGGCCGACGCCTGCGAGATCGACCCGACGACGGGACGCCCGGTCATGCCGCCGGGCGCGACGATCCAGATGGCGCCCGACGACGCGAGCAGCCTGTTCTCGCTGCGCGAGGGTTACGACGACCCCGTGGTGGAGCGGTACCTGTCGTTCGTGGGCGACCTCGGGATCGAGGTCGCGGGGATCGAGAACATCCGCACCGCCGACGGGCGGGTGCTGACCTACGACGTCAACACGAACACGAACTACAACTCCGGCGTGGAGCTCTCGGCACCGGCATCCGGCCCGCGGGAGATCGCCCGGCACCTCGGCCGCGTGCTGCGCGAGGCGTACCCCGACGCCTGAMSTPAPAIHALHENPEWFGVFAEALDAEGLPWVEWQLTDGTLDLAAAPPEGIFWSRISASSHTRDHGLSKDYSRAVLSWLEAHGRRTVNGRRVLELEMSKVDQLTALRAAGIEVPRTVAAVGRDRVVEAARRFTDTVPGPFVTKHNQGGKGLGVLKFSSVDDLADHVASADYDEPVDGITLIQEYVAAADGGITRVEIVGGRMIYAVRGDTERGGFQLCPADACEIDPTTGRPVMPPGATIQMAPDDASSLFSLREGYDDPVVERYLSFVGDLGIEVAGIENIRTADGRVLTYDVNTNTNYNSGVELSAPASGPREIARHLGRVLREAYPDANANANANANA
AK018_03257549yceI_1Protein YceIATGGCCACGCCGCTGCCCGCAGGACTGACCGCCGGGACCTACACGATCGACCCCTCGCACTCGACGGCCTCGTTCGTCGTCCGCCACGCCGGGATCTCCAAGGTCCGCGGCACCGTCGCCATCTCCGCCGGCACCATCACCGTCGGCGAGGACCTCGAGTCCTCCGCCGTGAACGTCGAGCTCGACGCCACCTCCGTCTCCACCGGTGACGAGAACCGCGACGGCCACCTCAAGAGCGCCGACTTCTGGCACGCCGAGGAGCGCCCCACCTGGTCCTTCGCCTCCACCGGCGTCTCCGCGGGCACCGACGGCCACGTCGTCACCGGCGACCTGACCATCAACGGCGTCACCCAGCAGGTCGACCTGCCCGTCGAGTTCGAGGGCGCCGCCCAGGACCCGTTCGGCAACGACCGCGCCGGGTTCGAGTCCGAGCTGGAGATCAACCGCAAGGACTTCGACCTCACCTGGAACGCCGCGCTCGAGACCGGCGGCTTCCTGGTCGGCGACAAGGTCAAGATCGCCCTGGACGTCTCGGCCATCCAGAACTGAMATPLPAGLTAGTYTIDPSHSTASFVVRHAGISKVRGTVAISAGTITVGEDLESSAVNVELDATSVSTGDENRDGHLKSADFWHAEERPTWSFASTGVSAGTDGHVVTGDLTINGVTQQVDLPVEFEGAAQDPFGNDRAGFESELEINRKDFDLTWNAALETGGFLVGDKVKIALDVSAIQNNANANANANA
AK018_03258723rex_1COG2344Redox-sensing transcriptional repressor RexGTGATCGAGATCGGAGAGGTGACGGTGCCCGCGGCGACGGTGGCGCGGCTGCCGTACTACCTGCGCGCGCTGCGGGACCTGACGCGCGAGGGGGTGGACACGACGTCGTCGTCGGAGCTCGCCGAACGCTCGGGGGTGGGCTCGGCGCAGCTGCGCAAGGACCTGTCCTACCTGGGCTCGTTCGGCACCCGCGGCGTGGGGTACGACGTCGAGTCGCTGTCGTCGTACATCGCGGCGGCACTGGGGCTCGGGTCGGAGCACCGGCTGGCGATCGTCGGGGTGGGCAACCTGGGGCACGCCCTGGCGAACTACTCCGGGTACGCCGCGCGGGGCTTCTGCCTGGTGGCGCTGCTCGACGCGGACCCGTCGGTGGTGGGGCGGGAGGCCGCGGGGCTCGTGGTCGAGCACGTGGACGAGCTCGAGCGGGTGCTGGGCGAGCGGGACGTGTCGATGGTCATCCTGGCCACGCCGGGCTCGGCGGCGCAGGCCGTGGCCGAGCGGGTCGTGGCCTGCGGGGTGCGCGAGATCCTGTCGTTCTCGCCGGTGGCGCTGCAGCTGCCCGACGACGTCGTCGTGCGCAGCGTGGACGTGGCCGGCGAGCTGCAGATCCTGGCGTTCCACGCCGCGGCCCGCAACGCCCAGCAGGGCGACGGCGTCGCGCGGCCGGAGGGGCCCTCGGCGCCCCGCGCTCCCGCCGAGGTAGGCAAGAACTCCGCGAGGTAGMIEIGEVTVPAATVARLPYYLRALRDLTREGVDTTSSSELAERSGVGSAQLRKDLSYLGSFGTRGVGYDVESLSSYIAAALGLGSEHRLAIVGVGNLGHALANYSGYAARGFCLVALLDADPSVVGREAAGLVVEHVDELERVLGERDVSMVILATPGSAAQAVAERVVACGVREILSFSPVALQLPDDVVVRSVDVAGELQILAFHAAARNAQQGDGVARPEGPSAPRAPAEVGKNSARNANANANANA
AK018_03259249hypothetical proteinGTGGTGATGTACAGCCGGGCCGGCTGCCACCTGTGCGACGACGCGCGGGGGGTGGTCGCCGCGGTGTGCGCGGACGCGGGGGAGGCCTGGCGGGAGGTCGACATCGACGCCGACCCGGGCCTGGTGGAGCGGTACGGCGACTACGTGCCCGTCGTCGAGGTGGACGGCGTGCAGCAGGGTTTCTGGCGGGTCGACGCGGCGCGGCTGGCGCGGCGGCTCGATCGGGGCCCGGGAGGGAAGCGGACGTGAMVMYSRAGCHLCDDARGVVAAVCADAGEAWREVDIDADPGLVERYGDYVPVVEVDGVQQGFWRVDAARLARRLDRGPGGKRTNANANANANA
AK018_03260816serB1_1COG0560Phosphoserine phosphatase SerB1ATGTCGTCCCACGCCGAGCTTCCGGAACGCCCCCGGACGGCCGCGTTCTTCGACGTCGACAACACGATCATCCGCGGCGCCAGCGCGTTCCACCTGGCCAGAGCGCTGTACCAGCGGAAGTTCTTCGGTACCGGCGACCTGGTGCGGTTCGCATTCATCCAGGCGAAGTACCTGCTGTTCGGCGAGTCCCGCTCCCAGATCGAGACCGTGCGCAACAAGGCGCTGTCGCTCATCGGGGGCCGGTCCGTCGCGGAGATCACCGCCGTCGGCGAGGAGGTCTACGACACCGTCCTCGAGCTGCGCATCTTCCCGGGCACCAAACGACTCCTCGACGAGCACATGGCGGCCGGCGACGAGGTCTGGCTGGTGACCGCCACGCCGGTGGAGATCGGTGGCCTCATCGCCCGCCGCCTCGGTGCCACCGGCTGCCTCGGCACCATCGCGGACCACGAGAACGGCTACTACACCGGTGCGCTCGTCGGCGACCTCATGCACGGCGAGGCCAAGGGGGCGGCGGTGCGGGAGCTGGCCGAGCGCGAGGGCATCGACCTCGGCGGGTCGTACGCGTACGGCGACTCGCTCAACGACCTGCCGATGATGCGGTCGGTGGGCCACCCCTGCCCGATCAACCCGGACGTGCGGCTGCGCCGGTTCGCCAAGGACGTCGGCTGGCCGATCCGGGAGTTCCGGGGTCGCAGCCAGCGTGTGGCGGGGCGCGGTGTGCGCACGGCCTCGTGGGCCGGCGCGGCCTGGGTGGCGGGCCTGGTGCTGCGTGCCGCTCAACGGGGGGTCCGACGGCGGCTGCGCGGCCGCTGAMSSHAELPERPRTAAFFDVDNTIIRGASAFHLARALYQRKFFGTGDLVRFAFIQAKYLLFGESRSQIETVRNKALSLIGGRSVAEITAVGEEVYDTVLELRIFPGTKRLLDEHMAAGDEVWLVTATPVEIGGLIARRLGATGCLGTIADHENGYYTGALVGDLMHGEAKGAAVRELAEREGIDLGGSYAYGDSLNDLPMMRSVGHPCPINPDVRLRRFAKDVGWPIREFRGRSQRVAGRGVRTASWAGAAWVAGLVLRAAQRGVRRRLRGRNANANANANA
AK018_0326199hypothetical proteinATGGGCTCCGTCATCAAGAAGCGCCGCAAGCGTATGGCGAAGAAGAAGCACCGCAAGCTGCTTCGCAAGACTCGTCACCAGCGTCGCAACAAGAAGTGAMGSVIKKRRKRMAKKKHRKLLRKTRHQRRNKKNANANANANA
AK018_032621176acuC_1Acetoin utilization protein AcuCATGTCCGTCGCCCGGTTGCTGTGGATCCCCGAGCTCCTGCGCTACGACTTCGGCCACGGGCATCCCATGGCGCCCGCCCGGCTCGACCTGACGATGCGGCTCGTGGAGGCCTTCGGCCTGCTGCGCGAGCCCACCCTCGAGGTGGTCGAACCCGTCCCGGCGAGCGACGCCGTCGTGCAGACCGTGCACGACGCCGAGTACGTCGCCGCCGTCCGCCGTGCGGCGGCCACGGGCGAACCGGACCCCGCGCGAGGGCTCGGCACCGAGGACGACCCGATCTTCCCCGCCATGCACGACGCCGCGGCCCACCTGGTCGGAGCGTCCGTCGCCGCGGCGGACGCCGTCTGGACGGGTGCGGCGCAGCACGCGCTCAACATCGCCGGCGGCATGCACCACGCCCAGCGGGGCGCGGCGTCGGGGTTCTGCATCTACAACGACGCCGCCGCGGCCGTGCAACGCCTGCTCGACCACGGGGCCGAGCGGGTGGCCTACGTGGACATCGACGCCCACCACGGCGACGGCGTCGAGGCGATCTTCTGGGACGACCCGCGGGTGCTGACCTTCTCGGTGCACCAGGACGGGCACACCCTGTTCCCCGGCACCGGCAACCCGGCCGACACCGGGCCGTGGGCCACGCACTGCGCGGCGGTCAACATCGCGCTGCCGCCGCGCACGGACTCGGCCCGTTGGCTGCGCGCCGTCGACGCCGTGCTGCCCACGGTGCTCCGCGAGTTCGCCCCGGACGCGATCGTCTCCCAGCACGGCGCCGACGCGCACGGCAACGACCCGCTGACGGACCTGTCGGTGGGCGTCGAGGCGCAGCGGACCGCCGCCCGCTGGATCCACGACCTCGCCCACGAGCTGTGCGACGGGCGGTGGGTGGCGCTCGGCGGCGGTGGCTACGCCGTCGTCGACGTCGTGCCGCTGGTGTGGTCGTCGCTGGTGGCCGAGGCGGCCCACGTGCCGCTGGAGGCGAAGGTGCCGTTGCCGGAGTCGTGGCGGCAGGCCGCCGAGGAGATGTCGGGGCTGCCCGCCGCGCGCACCCTCGGCCGCGGCGCCGTCCCCTGGCAGCGGTGGTCCGAGGGCTACGACCCCTCCGACGCCACCGACCGCGCGGTCCTGGCCACCCGCCGTCACGTCTTTCCCGAGATCGGTCGGGACCCCTACCTGGACTGAMSVARLLWIPELLRYDFGHGHPMAPARLDLTMRLVEAFGLLREPTLEVVEPVPASDAVVQTVHDAEYVAAVRRAAATGEPDPARGLGTEDDPIFPAMHDAAAHLVGASVAAADAVWTGAAQHALNIAGGMHHAQRGAASGFCIYNDAAAAVQRLLDHGAERVAYVDIDAHHGDGVEAIFWDDPRVLTFSVHQDGHTLFPGTGNPADTGPWATHCAAVNIALPPRTDSARWLRAVDAVLPTVLREFAPDAIVSQHGADAHGNDPLTDLSVGVEAQRTAARWIHDLAHELCDGRWVALGGGGYAVVDVVPLVWSSLVAEAAHVPLEAKVPLPESWRQAAEEMSGLPAARTLGRGAVPWQRWSEGYDPSDATDRAVLATRRHVFPEIGRDPYLDPGPT0008225_309DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008225-acuC-K04768NANA
AK018_032631395ktrB_3COG0168Ktr system potassium uptake protein BGTGGCTCGATCGCTGCAGGACCGCGCGACGTCGCTGCGCGAGTGGGTGGACCGCACCGCCCGCGAGTACCCCGCCCGCCTCGCGATGACCGTGTTCGCGGCCGTCATCACCCTGTTCACCCTGCTACTCCTGCCGCCGTGGGCCACGTCGACCGGGGAGGGTGCACGGTTCGTCGACGCGCTGTTCACCGCGACGTCGGCCGTGTGCATCACGGGACTGACCGTCGTCGACACGGCGCTGTACTGGTCCGAGTACGGCCGGGCCGTGATCCTCGTGGGCATCAAGGTCGGCGGGCTCGGCGTGATGACGCTGGCCTCGCTGCTCGGGCTGGCGGTGTCGCGGCGCATCGGCCTGACGCAGAAGCTGCTGACGGCGTCGGAGACCAAGACGGGCACCACACGGCTGGGCGAGGTCGGTTCGCTGATCCGCCTGATCATCGTGGTCTCGACGTCGATCGAGCTGGCCATCGCCGTGATCCTCCTGCCGCGGTTCATCGCCCTCGACGAGAACCTGGGCCTGGCGGTGTGGCACTCGGCGTTCTACGGCGTCTCGGCGTTCAACAACGCGGGCTTCGTCCCGACGGCGGACGGCCTGCTGCCCTACGCCTCCGACTGGCTGGTGATCATCCCGATCACGCTCGGTGTGTTCGTCGGTGCGCTGGGTTTCCCCGTGATGTTGAACCTGCTGCAGGCGCGTCGGTACGGCCGGCGCTGGGTCCGGCACCTGTCGCTGCACACCAAGCTGACGATCACCACGAGCGTGGGCCTGCTGGTCGCCGGGTTCGTGACGATCGGCGCGATGGAGTGGGCGAACCCGGCGACCCTGGGCGGGCAGGACCTGCACACCAAGTTCCTGTCGGCGCTGTCGGCGTCGGTGATGCCGCGCTCGGGCGGGTTCAGCACGTTCGACGTCGGGGAGATGCGCTCGGAGTCCTGGCTGATCACCGACGCGCTGATGTTCGTGGGCGGCGGGTCGGCGTCGACGGCGGGCGGCATCAAGGTGACGACCCTGGCGGTCATGCTGCTCGCCATCGTGGCCGAGGCCCGCGGCGACCGGGACATCGACGTGTTCGGCCGGCGCATCCCGCGCGACACGCTGCGGCTGTCGATCGCGGTGGTCTTCATCGGCGCGACGATGGTGCTCGTGTCGTGCATCGCCCTGGTGCGGATGACGGACTTCTCGCTGTCGGAGATCTTGTTCGAGGTGATCTCGGCGTTCGCGACGGTGGGGCTGTCGACGGGCATCACGCCCGACCTGCCCGACGGCGGCAAGTACTGGCTGTGCGCGCTGATGTACCTGGGGCGCGTGGGCACCATCTCCGTCCTCGGCGCGCTCGCCCTGCGGGACCGGCGCCGCGTCGTACGCTTCCCCGAGGAGCGCCCGATCATCGGTTGAMARSLQDRATSLREWVDRTAREYPARLAMTVFAAVITLFTLLLLPPWATSTGEGARFVDALFTATSAVCITGLTVVDTALYWSEYGRAVILVGIKVGGLGVMTLASLLGLAVSRRIGLTQKLLTASETKTGTTRLGEVGSLIRLIIVVSTSIELAIAVILLPRFIALDENLGLAVWHSAFYGVSAFNNAGFVPTADGLLPYASDWLVIIPITLGVFVGALGFPVMLNLLQARRYGRRWVRHLSLHTKLTITTSVGLLVAGFVTIGAMEWANPATLGGQDLHTKFLSALSASVMPRSGGFSTFDVGEMRSESWLITDALMFVGGGSASTAGGIKVTTLAVMLLAIVAEARGDRDIDVFGRRIPRDTLRLSIAVVFIGATMVLVSCIALVRMTDFSLSEILFEVISAFATVGLSTGITPDLPDGGKYWLCALMYLGRVGTISVLGALALRDRRRVVRFPEERPIIGPGPT0002735_3394DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498NANA
AK018_03264672ktrA_1COG0569Ktr system potassium uptake protein AGTGGCAGACAAGAAGGCACGTGAGCGCGACGCGGGCGTGCTCGTCATCGGACTCGGCCGGTTCGGCTCGTCCCTGGCGACGACGCTGGACCGGCTCGGGCAGGACGTGCTGGCCGTCGAGACGGACGACCGTCTGGTCACGCAGTGGTCGGGTCGGCTGCCGCTGGTGCAGGCGGACGCCTCGAACCCGGAGGCGCTCGAGCAGCTGGGGGCCACCGACTTCGGTGTGGCCGTGGTGGGTGTCGGCACGGAGCTGGAGGCCTCGGTGCTCATCACCGGCAACCTGGTGGACCTGGGCACCCCGCAGATCTGGGCCAAGGCGATCTCCGCCGAGCACGGCCGCATCCTGACCCGGATCGGCGCGCACCACGTGGTCTACCCGGAGTCCGACGCCGGGTCGCGGGTGGCGCACCTCGTCAGCGGCAAGATGCTCGACTACATCGAGGTCGAGGACGGCTTCACGATCGTCAAGATGCGCCCGCCGCGGGAGATGCAGGGGTTCACCCTCGCCCAGTCGGACATCCGCAAGAAGTACGGGATCACGGTGATCGGCGTGAAGTCGCCGGGCGTCGAGTTCGCGTACGCGACGCCGGAGACGCGGGTCAGCGCCAACGACCTGCTGGTCTGCTCCGGGCACGCGGACCTGCTGGAGCGCTTCTCCGCGCGGCCGTGAMADKKARERDAGVLVIGLGRFGSSLATTLDRLGQDVLAVETDDRLVTQWSGRLPLVQADASNPEALEQLGATDFGVAVVGVGTELEASVLITGNLVDLGTPQIWAKAISAEHGRILTRIGAHHVVYPESDAGSRVAHLVSGKMLDYIEVEDGFTIVKMRPPREMQGFTLAQSDIRKKYGITVIGVKSPGVEFAYATPETRVSANDLLVCSGHADLLERFSARPPGPT0002710_3509DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
AK018_032651062ybhSCOG0842putative multidrug ABC transporter permease YbhSGTGCGTGCCATGATCGTCAAGGAGTTCCGCGAGCTGCGCCGCGACCGGCGCACGGTCGCGATGCTCGTCGCCCTGCCGCTGCTCATGCTGGTGATCTTCGGCTACGCCGCGAACTTCACCGTCGACGAGCTCAAGGTGGCCGTCGTCGGCGACCAGGCGGAACAGGCCGAGCAGCAGATCACCGAGCAGATCCCGGCCGACGCCCCGGCCACGCTGGACCTGGTCGACGTCGACCCGGACGCCACCGCCGCCGACGCCCGTGACCAGCTCCAGGACGACCGCGTCGACCTCGCGATCCTCACCGGGGAGGCGACCGAGACCGACGACGGCCGCCCCACCGTGCTCATCGACGGGTCCAACCTGTTCGCCGCACAGAGCGCCTCGGTCCTGGTCGCCCAGCTCGGTGACCGGGTCGACTCCGAGATCCTCTACAACCCCGACCTCGAGACGTCCTGGGTCATGGTGCCGGCCATCATCGGCCTGATCCTGACGTTCATCGGCACGATCATCACCAGCATCGGCCTGGTCCGCGAACGCGAGGCGGGCACCCTCGAACAGCTCGCCGTCATGCCGTTGTCCCCCACCTCGGTGGTGCTCGGCAAGATCACGCCCTACTTCCTGCTCGCCTGCTTCGACATGGTGCTGGTCACGCTGCTCGGCGTGTGGCTGTTCGGCGTGCCGTTCAACGGGTCGGTGCTGCTCTTCGCCGTCGGGGCGGCCATCTTCCTCTTCGCGGTGCTCGGCATCGGGGTGCTGATCTCGACCGTCTCGCAGACCACCGGACAGGCCGTGCAGGTCGCGCTGATGACGATGCTGCCGCAGATCCTGCTGTCCGGGATGATCTTCCCCCTCGACGCCATGGCCGCCGGGGTGCGCTGGATCGGGTACGTGCTGCCGCTGACCTGGTTCGTCGAGCTGTCCCAGGGCGTCATGCTGCGTGGCGCCGGATGGGACTCGCTGTGGCTGCCCGTGGCGATCCTGGCCGTGATGGCCACCGTGGTGTTCGGCGTCGCGGTGCTGCGCCTGCGCCGCGACATCGCTCCGGCGAAGGCGGCCCGCTGAMRAMIVKEFRELRRDRRTVAMLVALPLLMLVIFGYAANFTVDELKVAVVGDQAEQAEQQITEQIPADAPATLDLVDVDPDATAADARDQLQDDRVDLAILTGEATETDDGRPTVLIDGSNLFAAQSASVLVAQLGDRVDSEILYNPDLETSWVMVPAIIGLILTFIGTIITSIGLVREREAGTLEQLAVMPLSPTSVVLGKITPYFLLACFDMVLVTLLGVWLFGVPFNGSVLLFAVGAAIFLFAVLGIGVLISTVSQTTGQAVQVALMTMLPQILLSGMIFPLDAMAAGVRWIGYVLPLTWFVELSQGVMLRGAGWDSLWLPVAILAVMATVVFGVAVLRLRRDIAPAKAARPGPT0006730_7485DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_03266813btuD_13Vitamin B12 import ATP-binding protein BtuDATGGCCGGGGTCCGCGACCTCACGGTCGAGCTGGGCGGCACGACGGCGCTGGCCGGCATCAGCGTCGAGGTACCGCCGGGAGAGGTCACCGCCCTGGTCGGCGGGGACGGCGCCGGCAAGACGACGCTGCTGCGCGCCATGCTGGGCCGCGTGGCCGCGAGCCGCGGCACGGTCGATGTCCCGCCCGCCGCGCGGATCGGCTACGAGCCGTCCACCTCCGGCGTGTGGCCCACCCTGACCGTCCAGGAGAACGTCGAGTTCGTCGGCGCCGCGTACGGCATGTCCGACGGCGCCGTCCGCTCCCGCGCCGACGAGCTGCTGACCACCGCCGGCATCGCCGACGCCCGCACCCGCCTCGGCCGGGACCTGTCCGGCGGGATGCGCCAGAAGCTCGGCTTCTGCCTGGCGATGCTGCACTCCCCCGACCTGCTGCTCCTCGACGAGCCGTCCACCGGCGTCGACCCCGTCAGCCGGATCGAGCTGTGGCGGCTCGTCACCGCCGCCGCACAGGGCGGGGCCGCTGTGCTCATGACCACCACCTATCTCGACGAGGCCGAACGGGCCGCCACCGTCGTGGCCCTCCAGGACGGCGAGGTGCTCGCCGCCGGCGACCCGGCCACCGTCGTCGACGCCGTGCCGGGCACCGTGTCCGTGAGCGACTCCCCTCCGGGCGACGGACGGACCTGGCGCCGGGGCCGCACCTTCCACACCTGGACCCCGGCCGACGGCGAGGTCCCGGGACGGGCCGTCACGCCCGACCTCGAGGACTGCCTCGTCGCCCTGACGCTCGCCCGGACGGAGGAGACCCGATGAMAGVRDLTVELGGTTALAGISVEVPPGEVTALVGGDGAGKTTLLRAMLGRVAASRGTVDVPPAARIGYEPSTSGVWPTLTVQENVEFVGAAYGMSDGAVRSRADELLTTAGIADARTRLGRDLSGGMRQKLGFCLAMLHSPDLLLLDEPSTGVDPVSRIELWRLVTAAAQGGAAVLMTTTYLDEAERAATVVALQDGEVLAAGDPATVVDAVPGTVSVSDSPPGDGRTWRRGRTFHTWTPADGEVPGRAVTPDLEDCLVALTLARTEETRPGPT0006725_273DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_03267879btuD_14Vitamin B12 import ATP-binding protein BtuDATGACCACGCTCGTCGCCGCCGACGGCGTCACCAAGCAGTTCGGGGCTTTCACCGCCGTCACCGACGTGTCCCTGTCCGTCGCACCCGGCGAGATCGTCGGACTGCTCGGGTCCAACGGCGCCGGCAAGACCACGCTGCTGCGGATGCTCCTCGGACTCGAGGCCGCCACCAGCGGGCACGTGGAGGTCTTCGGCGAGACGCCGGCCGACGCCGACCGCCACGCCCTGGGCTACGTCCCCCAGGGGCTCGGCCTGTCCCAGGCCCTGAGCGTGCGGCAGAACGTCGAGTTCGTGGCCGCCACGTTCTCCGCGCGCAGCGTGCCCGACCTCCCGCCGGCGCTGGCCGCCGTCGCCGACGAGCCGGTGGGCCGGATCGGGCTCGGCCGGCAGCGCCAGCTCGCCTTCTACTGCGCGCTGCTGCACTCCCCGCGCCTGCTGGTGCTCGACGAACCGACGTCCGGCGTCGACCCGCTGGCCCGGGCCCGCCTGTGGGACACCATCCACGCGCAGGCCGACGCCGGGACCGGGGTGCTGGTGACGACGCACTACATGCAGGAGGCCGAGCAGTGCGACCGTCTGGTGATCATGTCCCGCGGACGGGCCGTCGCCCGCGGCACCGTGGAGGACATCACGGCGTCCACGCGCACCGCCGTCGTGCACGCCGAGGACTGGGCGGCGGCCTTCGCCGCGCTGGACGACGCCGGGCTCCCGGTGATGCTCACCGGGCGGACCAGCCGGGCGGCGGGGACGGAGCCCGACGTCGTGCGTCGCGTCCTGGAGGAGGCGGCGGTGCCCGCGGAGGTCACCGAGCAGCCGGCCACCCTGGAGGAGACCATGGTGCTCATCGAGCAGGAGGCACGGGCGGGAGGTCACCGGTGAMTTLVAADGVTKQFGAFTAVTDVSLSVAPGEIVGLLGSNGAGKTTLLRMLLGLEAATSGHVEVFGETPADADRHALGYVPQGLGLSQALSVRQNVEFVAATFSARSVPDLPPALAAVADEPVGRIGLGRQRQLAFYCALLHSPRLLVLDEPTSGVDPLARARLWDTIHAQADAGTGVLVTTHYMQEAEQCDRLVIMSRGRAVARGTVEDITASTRTAVVHAEDWAAAFAALDDAGLPVMLTGRTSRAAGTEPDVVRRVLEEAAVPAEVTEQPATLEETMVLIEQEARAGGHRPGPT0006725_273DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_03268615hypothetical proteinATGACCGACCAGCCGCGCCGCGGCCGCCGTCCCGCGGGCCAGAGCACCCGCAGCGTCGTGCTGGACGCCGCCCGCGCGGAGTTCGACGAGCGCGGCTACGAGGCCGTGTCCCTGCGGGGTGTGGCGCGCCGGGCCGGCGTCGACCCGGGGACGGTGCGGCACTGGTTCACCGACAAGGCCGAGCTGTTCGCGGCGACGCTCGGGCTGGTCGACATCGACCCGTCGGCCGTCGCGCGCGCCGCCGCGGACGGGCCCGTCGAGGGACTCGGCGAACGGCTGGTGCGGTCCGTCACGCAGATGTGGGACGCGGACGGCGGGGCCACCGTGCGCGTCGTGGTGCCGGCGATCATGGCCGACCCGGGGCTGCGGACGCTGCTGCAGCACTTCCTGGGCGCCGAGGTGCTGGGACCGATCGTGCGCCGGCTGGAGGTCTCCGACGCCGAGCTGCGCTCGGCGCTCGCCGGGTCCCAGGTGGCCGGGCTGATGATGCTGCGCTACGTGGTGGGCGTCGAGCCCGTCGCCAGCCTGCCGGCCGACGACCTGGCCGTGCTCGTGGGCCCCAACCTGCAGCGCTACCTCACCGGTGACCTCCCGCCCGTGCCTCCTGCTCGATGAMTDQPRRGRRPAGQSTRSVVLDAARAEFDERGYEAVSLRGVARRAGVDPGTVRHWFTDKAELFAATLGLVDIDPSAVARAAADGPVEGLGERLVRSVTQMWDADGGATVRVVVPAIMADPGLRTLLQHFLGAEVLGPIVRRLEVSDAELRSALAGSQVAGLMMLRYVVGVEPVASLPADDLAVLVGPNLQRYLTGDLPPVPPARNANANANANA
AK018_03269828proC_1COG0345Pyrroline-5-carboxylate reductaseGTGAGCACGCAGATCGCCGGGACCCGGGTCGCGTTCCTCGGCACCGGCACCATGTCCGAGGCGGTGCTCTCCGGAGCGCTGTCGTCCGGGCTGGCGCCGTCCGACGTCGTCGCCACCGTGCGCCGCCCCGCCCGCGGCGAGGAGCTGGCCGAGCGGTACGGCGTCGGCACCACGACGGACAACGCCGCGGCCGTGCGCGACGCCCGGATCGTCGTCGTCGGCGTCAAGCCCAAGGACGTCGCCACGATGCTCGACGCCGTCTCCGACGCCCTCGCCCCCGACGCCGTCGTCGTCTCGGTCGCCGTCGGCCTGCCGCTGTCGCTGTACGCCCGCCACCTGCCCGCGGGCCAGCCCGTGGTGCGCACCATGCCCAACACGCCGGCCCAGGTCGGCGCGGGCGTCACCGCCGTCGTGCCCGGCGAGACCGCCGGCGAGGACGACGTCGCGCTCGTCGAGGCCCTGCTCGCCGGCACCGGGCGCACGCTGCGCATCACCGAGAAGGAGATCGACGCGTTCGGGGCGCTCGCGGGATCCGGGCCGGCGTACGTGTTCTACGTGGTCGACGCGATGGCCGAGGCCGGCGTGCTGCTCGGCCTGACCCGGGACGTCGCCCGGAGCCTTGCCGTCCAGACGGTGCTCGGCGCCGGCCGCCTGCTGGACGAGACCGGCGAGCACCCCGCGATCCTGCGCGAGAAGGTCTCCTCGCCCGGCGGCACCACCATCCAGGCGCTCAAGCGGCTCGACGACGGCGGCGTGCGCGCCGCGTTCCTCACCGCGCTCGAGGCGGCGCGCGACCGTTCGCGCGAGCTGGCCGACGGGCTCGGCTGAMSTQIAGTRVAFLGTGTMSEAVLSGALSSGLAPSDVVATVRRPARGEELAERYGVGTTTDNAAAVRDARIVVVGVKPKDVATMLDAVSDALAPDAVVVSVAVGLPLSLYARHLPAGQPVVRTMPNTPAQVGAGVTAVVPGETAGEDDVALVEALLAGTGRTLRITEKEIDAFGALAGSGPAYVFYVVDAMAEAGVLLGLTRDVARSLAVQTVLGAGRLLDETGEHPAILREKVSSPGGTTIQALKRLDDGGVRAAFLTALEAARDRSRELADGLGPGPT0014225_2001DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014225-proC-K00286NANA
AK018_03270666hypothetical proteinATGGTCGACCAGAGGCCGGGGTACATGTCCCCCGGATTCCGGACCCCGGGGGAGCGCGTGCACCAGAAGAACTCACGAGCCGCCGTCGTGCGCCGTCGCAAGGTCGTCGCCGTGCTCGCGCTGGTGCTGATCGCCGCGATCGCCGTCGTCACCGCGTTCTGGTGGCCCGGGTTCGCCCGCCCCGAGCCGGAGCCGCTGCCGGACGTCACCGTCACCGCGGCGCCGCCCACCCCCACCGCCGACGCCGAGCCGCTGCCCGAGGGTGCCACCGACTTCGTGTCCGCCATGCCGGACTCCGCGCTGGCGCTCGTGCGCGGCGAGCCGGCCGAGAACACCGAGTGGGTCGAGGACGCCGGCGCCGTCGAGGCCTGGGACGTGCCCTACACGGACGGGTCCGACGGCGGGGAGCAGGTCGCGCTCACCGCCGGGCAGTGGGTGGACGCCGACGAGGCCGCCGAGGCCCACACCGCGATCCTGGACTCTGTCGCCGAACCGACCGTCGAGGGGGACGTCACGGTCGGCGGGGAGACCGTCGGCCCCTACGCCGTCTCCCCGGGAGAGCCTGCCGGCACGTCCGTGGTGACCTGGCGCAACGACACGGCCGTGTTCCAGGCCACCGGCCCCGACCAGCTCGTCCAGGACTTCTACGAGACCTTCCCGATGTGAMVDQRPGYMSPGFRTPGERVHQKNSRAAVVRRRKVVAVLALVLIAAIAVVTAFWWPGFARPEPEPLPDVTVTAAPPTPTADAEPLPEGATDFVSAMPDSALALVRGEPAENTEWVEDAGAVEAWDVPYTDGSDGGEQVALTAGQWVDADEAAEAHTAILDSVAEPTVEGDVTVGGETVGPYAVSPGEPAGTSVVTWRNDTAVFQATGPDQLVQDFYETFPMNANANANANA
AK018_032711449radA_1COG1066DNA repair protein RadAGTGCCCCGCGTGAGCACCACGACCTCGGCCCGCGCCTCCCGCAAGTCCGCCAAGCCCACCTTCCGGTGCAGCGCGTGCGGCTGGACCACCGTGAAGTGGGTGGGGCGGTGCGGGGAGTGCCAGGAGTGGGGCACGGTCTCCGAGGACGGTCCGGCGTCGGCGGGGCCGCGCACGACGGCGGTGCACCCGGTGCGTTCCGCGGCCCGGCCGATCGCGGAGATCGACGTCGACACGGCGCGCGCCACCCCGACGGGCGTGACGGAGCTGGACCGGGTGCTCGGCGGCGGGCTCGTGCCCGGCGCCGTGGTGCTGCTCGCCGGGGAGCCCGGCGTCGGCAAGTCGACGCTGCTGCTCTCGGTGGCCTCCGGCATGGCGCGGGGGGCCGACGGCGGTCCGCGCCCGGTCCTGTACGTCACCGGGGAGGAGTCGGCCGGGCAGGTGCGGCTGCGCGCCGAGCGCATCGGGGCGCTGGCGCCGTCGCTGCTGCTGGCCGCCGAGACGGACCTGGCCACGGTGCTGGGGCACCTCGAGGCCGCCGATCCGGCCCTGCTGGTGGTCGACTCGGTGCAGACCATCGCGTCGGCGGAGGTCGACGGGCTGCCGGGCGGGGTCAGCCAGGTGCGGGAGGTGGCGGGTGCGCTCATCGCCGCGGCCAAGGAGCGTCAGGTCCCGGTGCTGCTGGTCGGGCACGTCACCAAGGACGGCACGGTGGCCGGGCCGCGCACGCTCGAGCACCTGGTCGACGTGGTGTGCCAGTTCGAGGGCGACCGGCACTCGCGGCTGCGCATGGTGCGCGCGGTCAAGAACCGGTTCGGGCCGACCGACGAGGTCGGCTGCTTCGACCTGTCCGAGTCGGGGATCGAGGGCCTCAGCGACCCGAGCGGGTTGTTCCTGTCGCACCTGGGTGCGGGCGTGCCCGGCACGTGCGTGACGGTGACCCTCGAGGGTCGGCGGCCGCTGGCGCTCGAGATCCAGTCGCTCGTGGCGCCGTCGCCCCTGGCGAACCCGCGGCGCGCCACCAGCGGCGTGGAGTCGCAGCGCCTGGCGATGATCCTGGCCGTACTGCACCGGCACGCCGGGCTGCGGCTGGCCGATCACGACGTCTACGCCTCCACCATCGGCGGCGCCCGGGTGACCGAGCCGGCCGCGGATCTCGCCACCGCGCTGGCCATCGTCTCGGCACGGTCCGGCGAGGCGCTGCCGTCGGGCACCGTCGCCGTGGGCGAGGTCGGCCTGGCCGGGGACATCCGGCCAGTGACGGGCCTGGAGCGGCGGCTCACGGAAGCGGCCCGGCTCGGCTTCACCCGCGCCGTCGTGCCCGCAGGGACCGCGGCCAAGGCCCCCGCCGGGCTGCACGTCGCCGAGGCCCGGCACATCGCCGAGGCCGTCGAGCTCGCCGCCGCGCCGACCGGGGCGGACGGGTCCGCCCGTAGCCGTGGCCGGAACTGAMPRVSTTTSARASRKSAKPTFRCSACGWTTVKWVGRCGECQEWGTVSEDGPASAGPRTTAVHPVRSAARPIAEIDVDTARATPTGVTELDRVLGGGLVPGAVVLLAGEPGVGKSTLLLSVASGMARGADGGPRPVLYVTGEESAGQVRLRAERIGALAPSLLLAAETDLATVLGHLEAADPALLVVDSVQTIASAEVDGLPGGVSQVREVAGALIAAAKERQVPVLLVGHVTKDGTVAGPRTLEHLVDVVCQFEGDRHSRLRMVRAVKNRFGPTDEVGCFDLSESGIEGLSDPSGLFLSHLGAGVPGTCVTVTLEGRRPLALEIQSLVAPSPLANPRRATSGVESQRLAMILAVLHRHAGLRLADHDVYASTIGGARVTEPAADLATALAIVSARSGEALPSGTVAVGEVGLAGDIRPVTGLERRLTEAARLGFTRAVVPAGTAAKAPAGLHVAEARHIAEAVELAAAPTGADGSARSRGRNPGPT0014905_543DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014905-radA-K04485NANA
AK018_032721086disA_1COG1623DNA integrity scanning protein DisAGTGGCTCCGTCCTACCCGCACCCCGACGCCCGACTCCGGGAGACCCTCGCCGCGGTCGCGCCCGGCACCGAGCTCCGCGACGGCCTCGAGCGGATCCTGCGGGGCCGTACCGGCGCGCTGATCGTGCTCGGGCTGGACCGCACGGTCGAGGAGATCTGCTCCGGCGGGTTCGTCCTCGACGTCGAGTTCTCCGCCACCCGGCTGCGCGAGCTGTCCAAGATGGACGGCGCCGTCGTGCTCGACCGGGACGCCACCCGCATCCGGCGTGCCGCCGTCCAGCTCCTGCCGGACCCCACGATCGAGACCAGCGAGTCCGGCACCCGGCACCGCACGGCCGAGCGCGTCGCCAAGCAGACCGGGCTGCCGGTGGTCTCGGTCAGCCAGTCCATGCGCATCGTCGCCATCTACATCGGCGGCATGCGGCACGTCCTCGAGGACTCCGACACCATCCTCGGACGCGCCAACCAGGCGCTCGCCACGCTCGAGCGGTACCGCTCCCGCCTCGACGAGGTCTCCGGGACGCTGTCCGCGCTGGAGATCGAGGACCTCGTCACCGTCCGGGACGTCTGCGCCGTCGTGCAGCGCCTGGAGATGGTGCGCCGCATCTCCGACGAGATCGACGGCTACGTCGTGGAGCTCGGCACCGACGGCCGGCTGCTCGCCCTGCAGCTCGACGAGCTCATCGGCGGCATCGGGTCCGACCGCGACTTCGTGGTGCGCGACTACGTCGACACCGAACGTTCCGGGCGCAGCATCGCCGACGTGCACGCCGACCTCGCCAAGCTCGACTCGGCCCAGCTGCTCGACCTGTCCCAGATCGGGCGCATGCTCGACCTGCCGGGCTCCGGCGTCGCCCTCGACGCGGCCGTCGCGCCGCACGGGTACCGCCTCCTGTCGAAGGTCCCGCGCCTGCCGTCCACGATCATCGACCGGCTCGTCGCCCACTTCGGCGGGCTGCAGAAGCTCCTCGCCGCCAGCGTCGACGACCTCATGAGCGTCGACGGCGTCGGGGACCAGCGGGCACGCGCCGTGCGCGAAGGGCTGTCGCGGCTGGCCGAGTCCAGCATCCTCGAGCGCTACGTGTAGMAPSYPHPDARLRETLAAVAPGTELRDGLERILRGRTGALIVLGLDRTVEEICSGGFVLDVEFSATRLRELSKMDGAVVLDRDATRIRRAAVQLLPDPTIETSESGTRHRTAERVAKQTGLPVVSVSQSMRIVAIYIGGMRHVLEDSDTILGRANQALATLERYRSRLDEVSGTLSALEIEDLVTVRDVCAVVQRLEMVRRISDEIDGYVVELGTDGRLLALQLDELIGGIGSDRDFVVRDYVDTERSGRSIADVHADLAKLDSAQLLDLSQIGRMLDLPGSGVALDAAVAPHGYRLLSKVPRLPSTIIDRLVAHFGGLQKLLAASVDDLMSVDGVGDQRARAVREGLSRLAESSILERYVPGPT0014770_217DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-SPORULATION_SIGNALLING,PGPT0014770-disA-K07067NANA
AK018_03273750hypothetical proteinATGGGACTTCGACTCGTGCAGGTGAACGTCAAGGCCGGAGACGAGGCGACCCTGGGCCGGTTCTGGGCCGAGGCCCTGGGCTGGGGGACCTCGGTGGAGGCGCCGGGTGTCGTCAACGTCGAGCCTGTCGGCTTCGCCTGGCCGGACCCGACCGCGCTGGTCGTCGACGTCGTCCGGGTACCGGATCCCGGGACGGTCCGCCACCGCGCCCACCTCGACCTGGCGACCACCTCCCGGGAGCACCAGGCGAAGCTGGTCGCGCGCCTGGTCGGGCTCGGTGCCACGCCGGCCGACGTCGGCCAGGGTGAGGTGCCCTGGACGGTGCTGGCGGACCCGGAGGGCAACGTGTTCTGCGTGCTGGAGCCCCGCGACGTCTACCGCGACACCGGGCCGGTCGCGGCGGTCGTGGTCCACTGCCGCGACCCGCGGACGCTGGCCCGGTTCTGGGGCGAGGCGTCGGGCTGGGGCGTGCACGAGGCGTCCGAGGACCTGGTGCGCCTGCGCTCGCCGGCCGGCGTCGGCCCGTACCTTGAGCTGGTCCGCGCGGACGACCTGGGCGGGGTGCGCAGCCGCACCCACCTGGACCTGCTGCCGGAGCCGGGCGCCGACCAGGCGGCGGAGGTCGCTCGGTTGCGCGCGCTGGGCGCGACGGAGGCCGACGTCGGCCAGGGGGACGTGCCGTGGGTGTGCCTCGCGGACCCGGAGGGCAACGAGTTCTGCGTGCTGGGCGCGCCGCCGCGTCCCGCCTGAMGLRLVQVNVKAGDEATLGRFWAEALGWGTSVEAPGVVNVEPVGFAWPDPTALVVDVVRVPDPGTVRHRAHLDLATTSREHQAKLVARLVGLGATPADVGQGEVPWTVLADPEGNVFCVLEPRDVYRDTGPVAAVVVHCRDPRTLARFWGEASGWGVHEASEDLVRLRSPAGVGPYLELVRADDLGGVRSRTHLDLLPEPGADQAAEVARLRALGATEADVGQGDVPWVCLADPEGNEFCVLGAPPRPANANANANANA
AK018_03274831hypothetical proteinGTGCTCGTGCTGCTGGTGGTGGGGCTGCTGGTCGGAGCGGGTGCGGGGGCCGGGTACGGCATCGGACGAGCGGTGGACATGGTCCGTTCCGCCTGGCCGGAGCCGACCCCGGTGCTCGAGGCGGCCAAGGAGGCGCCGCCGACGCCGCTGGACCCGGCCGGCCCGGCGAACACGTGCGACCCGTCCATGGTGTCGCTCGACCTCGGCAGCCCGACCGCAGGGTTCACCCTGGGCGACTCGATCCCGTTCACGATGCGCGCGACGAACGTCGGCCGGGTGCCCTGCCTGCTGGACGGGCACCGGTCGAGCATGCAGGTCACGGTGACGGCGGCCGACGGGGACAAGCAGCTCTGGTCCTCGGCCGACTGTGCGGGGACGGGTGAGGAGCTGCTCCTCCTCGGCCCGGACGAGGTGTGGGAGGCGACGGCCCGGTGGACGGGTTCGCGGTCCGCTCCGGGGTGCGGCGGGTCGGGGAAGGTCCCGGCGGGCGAGTACGCCGCGACGCTGACGCTGCCCGACGTCGGGGCGTCCAGCGATCCGTTCGAGGTCACGGTGGCCGCAGCACCGGAGCCCGAGCCGGAGCCCGAGTCGAAGAACGAGGGCGAGGCCGACGGCGGGGCGGACCAGAGCTCGGACAAGAGCACGGAGAAGAAGTCGGACGAGCAGTCCGACGAGAGCTCCGACCAGCCGGCGGAGGACGCGGAGAAGTCCTCGGGCGACAAGAAGTCCTCGGATGAGAAGAACTCATCGAACGACAAGAAGTCGTCGCGAGGCCAGGACGAGGACGGCGGCGGCGACAAGGGTCCCGCGAAGGACTCCTCGGGCGCCTAGMLVLLVVGLLVGAGAGAGYGIGRAVDMVRSAWPEPTPVLEAAKEAPPTPLDPAGPANTCDPSMVSLDLGSPTAGFTLGDSIPFTMRATNVGRVPCLLDGHRSSMQVTVTAADGDKQLWSSADCAGTGEELLLLGPDEVWEATARWTGSRSAPGCGGSGKVPAGEYAATLTLPDVGASSDPFEVTVAAAPEPEPEPESKNEGEADGGADQSSDKSTEKKSDEQSDESSDQPAEDAEKSSGDKKSSDEKNSSNDKKSSRGQDEDGGGDKGPAKDSSGANANANANANA
AK018_03275870mutY_1COG1194Adenine DNA glycosylaseGTGGAGGCACTCGTCGAACCGGTCACCGCCTGGTACGGCCACGCCGCGCGAGACCTGCCCTGGCGGCGTCCGGACCGCACCCCGTGGGGGGTGCTGGTCAGCGAGGTGATGCTGCAGCAGACGCCCGTCGTGCGCGTCGAGCCGGTGTGGCGCGAGTGGACGGCACGCTGGCCACGACCCGCGGACCTGGCCGCCGCGCCGACGTCGGACGTGCTGCGCGCCTGGGGACGCCTCGGCTACCCGCGCCGCGCGCTGCGGCTCGCCGACTGCGCACGGGCGCTCGTCGAGCGGCACGACGGCCAGGTGCCGGCCGACGAGGAGCAGCTGCGGGCCCTGCCGGGGGTCGGCGAGTACACGGCGGCGGCGGTGCGGGCGTTCGCTTTCGGGCGACGGTCCGTGGTGGTCGACACCAACGTGCGCCGCGTGCAAGCGCGGGCGGTGACCGGCGTCGCCCTGCCCGCGCCGTCGTACACCGCGGCCGAGCGCGCCCTGGCCGTGTCGCTCACCCCGCCCGGCGACGCGGACGCCGCACGCTGGGCGGCGGCGTCCATGGAGCTCGGCGCCCTGGTGTGCACCGCGCGGGTGCCGCGCTGCGGGGTGTGCCCCGTGCGAGACCGGTGCGCGTGGCGGGCGGCCGGGTTCCCGCCGGACGAGCACGCGGCACGACGGCGGACCCAGGCGTGGCACGGCACCGACCGGCAGGTGCGCGGCCGGGTCATGGCGGCGCTGCGCGGCGCCGACGGGCCGGTCCCCCGGGCGCTGCTCGCCGACGCCGGACCGGAGGCACAGCTCGACCGGTGCCTCGCCGGGCTGATCGAGGACGGCCTCGCCGAGACCGACGAGGCGGGACGCTACCTGCTGCCCGCCTGAMEALVEPVTAWYGHAARDLPWRRPDRTPWGVLVSEVMLQQTPVVRVEPVWREWTARWPRPADLAAAPTSDVLRAWGRLGYPRRALRLADCARALVERHDGQVPADEEQLRALPGVGEYTAAAVRAFAFGRRSVVVDTNVRRVQARAVTGVALPAPSYTAAERALAVSLTPPGDADAARWAAASMELGALVCTARVPRCGVCPVRDRCAWRAAGFPPDEHAARRRTQAWHGTDRQVRGRVMAALRGADGPVPRALLADAGPEAQLDRCLAGLIEDGLAETDEAGRYLLPAPGPT0014770_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-SPORULATION_SIGNALLING,PGPT0014770-disA-K07067NANA
AK018_03276561argA_1COG1246Amino-acid acetyltransferaseGTGAAGCGCCGCCGCGAGCCGGCACGTAGTGTGGCCGACGTGCCAGGTGACACCTCCGCGTCCTTCCACGTCCGGGCCGCGCTGCCGGCCGACGTGCGTGCCGTGCACGACCTCGTCCAGCCCTACGCGGCCGACCGCATCCTGCTGGCCAAGGAGTGGGTCGCCTACTACGAGTCCGTCCAGGAATTCGTGGTGGCCGACGGCGGCGCGGAGACGGGGGTGGTCGGCTGCGGTGCGCTGCACGTGATGTGGGCCGACCTCGCCGAGATCCGCACCGTCGCGGTGGACCCCCGGTGGACCGGCCGGGGTGTCGGGCACGCGCTGGTCGAGGAGCTGATCCAGCGCGCCCGCGCCATGGGGCTGCGGCGACTGTTCTGCCTGACCTTCGAGGTCGACTTCTTCGCGGGCCACGGGTTCCGGGAGATCGACGGGACGCCCGTGACGCACGAGGTCTACGGCGAGCTGCTGCGCTCGCACGACGACGGCGTCGCGGAGTTCCTGGACCTCGCCCGGGTGAAGCCGAACACCCTGGGGAACACGCGGATGCTGCTCGACCTCTGAMKRRREPARSVADVPGDTSASFHVRAALPADVRAVHDLVQPYAADRILLAKEWVAYYESVQEFVVADGGAETGVVGCGALHVMWADLAEIRTVAVDPRWTGRGVGHALVEELIQRARAMGLRRLFCLTFEVDFFAGHGFREIDGTPVTHEVYGELLRSHDDGVAEFLDLARVKPNTLGNTRMLLDLPGPT0014241_319DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014241-argA-K00619NANA
AK018_03277951deoR_2COG2390Deoxyribonucleoside regulatorGTGACGGACGCTCGCGAACGCGACCTGGTGATGGCCGCGACGATGTACTACCTGCAGGACATGACGATGGAGACCATCGCGCGTCACCTGCGGACTTCCCGCTCCACGGTCTCGCGCCTGCTGAAGCGGGCCCGGGAGACCGGAGTGGTGGAGATCACCCTGCGGCCCGCGCACACCCGTGCACCGGGCCTCGGCCGCCAGCTCGCTCTCGCCCACGGCATCGAGGCCTACGTGGTCCCGGTGCCGGACGGCGCCGACGACGACGAACGGCTCGACCAGGTCGCCCGGACCTCCGCCCGCCTCGTGTCGCGCTGGTTCGACTCCGACATGGTGCTCGGGATCGCGTGGGGCACCACCGTGGCTGCCGTGTCCGGCTACCTGACGGCCAAGCCTACCCGGGGTGCCGCCGTCGTGCAGCTCAACGGGGCCGCCAACACCCGGACCTCCGGCGTCGCGTACGCGGGGGAGATCCTCGACCGCTTCGCCAGCGCCTTCGAGGCGCACCCCCACTATTTCCCGGTCCCGGCGTTCTTCGACTACGCGGCGACCCGCGACGCCATGTGGCGGGAGCGTTCCGTGCGACGGGTGCTCGACGTCCAGGCGCGCACCGACGTGGCCCTCTTCTCGGTCGGGGCGCTGACCGGGCTGCCGTCGCACGTGTACTCGGCCGGATACCTGGACCCCGGCGACATCGCCGCCCTGGACGAGGACGGCGTCGTCGGGGACGTGTGCACGGTGTTCCTGCGCAGGGACGGCACGCACCGGGACATCGGCGTCAACGCGCGGGCCACCGGTCCGACGCCGGAACAGCTCGCGCGCTACCCGCGCCGGTTGTGCGTGGTGGCCGGGGACAACAAGGTCGCCCCGCTGCGCGCCGCGCTGGCCGCCGGCGCGGTGACCGACCTGGTCATCGACGAGCTCACGGCCTCGCGGCTCGTCCGCGGCACGTGAMTDARERDLVMAATMYYLQDMTMETIARHLRTSRSTVSRLLKRARETGVVEITLRPAHTRAPGLGRQLALAHGIEAYVVPVPDGADDDERLDQVARTSARLVSRWFDSDMVLGIAWGTTVAAVSGYLTAKPTRGAAVVQLNGAANTRTSGVAYAGEILDRFASAFEAHPHYFPVPAFFDYAATRDAMWRERSVRRVLDVQARTDVALFSVGALTGLPSHVYSAGYLDPGDIAALDEDGVVGDVCTVFLRRDGTHRDIGVNARATGPTPEQLARYPRRLCVVAGDNKVAPLRAALAAGAVTDLVIDELTASRLVRGTNANANANANA
AK018_032781743glpD2_1COG0578Glycerol-3-phosphate dehydrogenase 2ATGGCCTCCCGACTCACTGCCGAGTCACGCACGCGCGCCCTGGCAGCGCTCGAGAGCTCGCAGGACCCCGCCACCGAGCTCGACGTCCTCGTCATCGGCGGCGGCGTCACCGGCGGCGGCATCGCCCTCGACGCCGTCACCCGCGGGCTCTCCACCGCGATCGTCGAGGCCCAGGACTGGTCCGCGGGCACCTCGAGCTGGTCCAGCAAGCTGGTCCACGGCGGGCTGCGCTACCTGCAGATGCTCGACTTCTCCCTGGTCCACGAGGCGCTGACCGAACGCGACCTCCTGCTCAAGGAGCTCGCCCCGCACCTGGTCAAGCCGGTCCCGTTCCTCTACCCGCTCGAGCACCGCGTGTGGGAGCGGGCCTACGTCGGCGCCGGCATCGCCCTCTACGACACCCTCGCCTCCGTCGCGCCCGGCAAGCGAGCCATGCCGCTCCACCGGCACCTGTCGCGGCGCCAGATCGCCCGCAAGTTCCCCGACCTGGCGCACGAGGCCGCCATCGGCGCCGTGCAGTACTGGGACGCGTCGGTCGACGACTCCCGGCTCGTGGCCACCCTGGTGCGCACCGCCGTCGACTACGGCGCCCACGCCGCGCCCCGCACCCAGGTCGTCGAGCTCACCAAGAGCGCCACCGGTGCCGTCAACGGCGCCGTCGTCGTCGACCTCGAGACCGGACGGGAGATCACCGTCCGCGCCCGGCACGTCATCAACGCCACCGGCGTGTGGACCGAGGACACCGAGGCGCTCGCCGGCGACGAGGGCGGCCTGAAGGTCCTCGCCTCCAAGGGCATCCACATCGTGGTGCCCCGCGAGCGCATCAAGGGCAAGGTCGGCCTGATCCTGCAGACCGAGAAGTCCGTGCTGTTCATCATCCCGTGGTCGCGCTACTGGATCATCGGCACCACGGACACCCCCTGGGAGCAGGACCTGGTCCACCCCGTGGCCACCGCCGCCGACATCGACTACGTGCTCGACCACGCCAACGCCGTGCTCGCCCACCCGCTGTCGCGCGACGACGTCATCGGCACCTACGCGGGCCTGCGCCCCCTGCTGCAGCCGGGCACCAAGGAGGGCACCAGCTCGGCCAAGGTGTCCCGCGAGCACACGGTCGCCTCCCCCGCGCCCGGCCTGACCGTCATCGCCGGCGGCAAGCTGACGACCTACCGCGTCATGGCCAAGGACGCCGTCGACTTCGCCATCGGGCAGCGGGCGCACGCCCTGCCGTCGGTGACCGACCAGATCCCGCTCGTCGGCGCCGTGGGCCTCTCCGCGGTGCGCCGCCAGGCCCGCTCCTGGGCGCAGCGCTACGGCTGGAGCCCGGCCATGGTCGACCACCTGCTGCACCGCTACGGCTCCGCGCTGCGCGAGCTGGTGACGCTGTGCGAGGAAGACCCGTCGCTCGCGACACCCCTGGAGCACGCACCGGCCTACCTGCGCGCGGAGATCCACTACGCCGTCAGCCACGAGGGCGCCCTGCACCTCGAGGACGTCCTGGTCCGCCGGACCCGCCTCGTCTACGAGGTTCCCGACAAGGGGCGTGCCGCGCTCGACGAGATCGCCGACATCGTCGGCCCGCTGCTCGGGTGGAGCTCCGAGACGAGGCAGAACGAGGTCGACAGCTATCGCGCGCGGGCCGACGCCGAGGACGCCGCCGCGGAGGCGCCCGACGACGCCGCGGCCGGCGAGGCCCGCGGACGCGTGGGGGACGTCGCCACGATGCAGCCGCTGCGCACCTGAMASRLTAESRTRALAALESSQDPATELDVLVIGGGVTGGGIALDAVTRGLSTAIVEAQDWSAGTSSWSSKLVHGGLRYLQMLDFSLVHEALTERDLLLKELAPHLVKPVPFLYPLEHRVWERAYVGAGIALYDTLASVAPGKRAMPLHRHLSRRQIARKFPDLAHEAAIGAVQYWDASVDDSRLVATLVRTAVDYGAHAAPRTQVVELTKSATGAVNGAVVVDLETGREITVRARHVINATGVWTEDTEALAGDEGGLKVLASKGIHIVVPRERIKGKVGLILQTEKSVLFIIPWSRYWIIGTTDTPWEQDLVHPVATAADIDYVLDHANAVLAHPLSRDDVIGTYAGLRPLLQPGTKEGTSSAKVSREHTVASPAPGLTVIAGGKLTTYRVMAKDAVDFAIGQRAHALPSVTDQIPLVGAVGLSAVRRQARSWAQRYGWSPAMVDHLLHRYGSALRELVTLCEEDPSLATPLEHAPAYLRAEIHYAVSHEGALHLEDVLVRRTRLVYEVPDKGRAALDEIADIVGPLLGWSSETRQNEVDSYRARADAEDAAAEAPDDAAAGEARGRVGDVATMQPLRTPGPT0006775_1022DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0006775-glpA|glpD-K00111NANA
AK018_03279777glpF_1COG0580putative glycerol uptake facilitator proteinGTGCGCCAGACAACGAAGTCCGACAAGAAGGTGAGTACGACGATGTCAAGCTGGGAGATCTTCGTCACCGAGTTCCTCGGGACCATGATCCTGCTGCTCGGTGGTGCCGGCGTGGTCGCCAACGCCATCCTGCCCAAGAACAAGGGCTTCAACGGTGGCTGGCTGATGATCAACTTCGGATGGGGCCTCGCGGTGTTCGCCGGCGTGTACGTCGCCTTCAGCACGGGCGCCCACATCAACCCCGCCGTGACGTTCGGCATCTGGGCCAGCGGTGCCTCGGAGTTCGGCCCCGGGATCCCGGTGACGTTCCTGAACGGCGTCATCTACATCTCCGCGCAGCTGGTCGGTGCCGCCGTCGGTGCCACCCTGGCGTTCCTCGCCTACAAGAAGCACTTCGACGAGGAGGCGCCCGCCGCGGTCAAGCTCGGCGTGTTCTCCACCGGGCCGGAGATCCGCTCCTACGGCTGGAACTTCGTCACGGAGGTCATCGGGACGTTCTTCCTGGTCTTCCTGGTGCTCTCCTTCGGCAACTACCCGGGCGACCTGGGCCCGCTCGCCGTCGCCCTCATCGTGGTCGGCATCGGCGCCAGCCTCGGTGGCCCCACGGGGTACGCCATCAACCCGGCCCGTGACCTCGGCCCCCGCGTCGCCCACGCCCTGCTGCCGATCAAGGGCAAGGGATCCAGCGACTGGTCGTACTCGTGGGTCCCCGTCCTCGGGCCCATCGTCGGCGGCGTGCTCGCCGGTCTGCTCGCCCCTGCCGTCGCCTTCGGGTGAMRQTTKSDKKVSTTMSSWEIFVTEFLGTMILLLGGAGVVANAILPKNKGFNGGWLMINFGWGLAVFAGVYVAFSTGAHINPAVTFGIWASGASEFGPGIPVTFLNGVIYISAQLVGAAVGATLAFLAYKKHFDEEAPAAVKLGVFSTGPEIRSYGWNFVTEVIGTFFLVFLVLSFGNYPGDLGPLAVALIVVGIGASLGGPTGYAINPARDLGPRVAHALLPIKGKGSSDWSYSWVPVLGPIVGGVLAGLLAPAVAFGPGPT0004760_2079DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLYCEROL_UPTAKE,PGPT0004760-glpF|pduF-K02440NANA
AK018_032801515glpK_1COG0554Glycerol kinaseATGGCTGACTACGTCCTCGCCATCGACCAGGGCACGACGAGCTCGCGTGCCATCGTCTTCGACCACGCGGGACGCAACGTCTCGACCGGTCAGCTCGAGCACGACCAGATCTTCCCGCGAGCGGGCTGGGTGGAGCACAACGCCGAGCAGATCTGGAACAACGTCCGCGAGGTCGTCGGGCTGGCCCTAACCCGCGGCAACATCTCGCACGAGGACCTCGCCGCCGTCGGCATCACGAACCAGCGCGAGACCGCCGTCGTCTGGGACAAGAACACCGGCAAGCCCGTGTACAACGCGATCGTCTGGCAGGACACCCGTACCCAGGCGATCGCCGACGAGCTGGCCGGCGACGAAGGTCCCGACAAGTACAAGGCGATCTGCGGCCTGCCGCTCGCCACCTACTTCTCGGGGCCCAAGATCAAGTGGATCCTCGACAACGTCGAGGGAGCCCGCGAGGCCGCCGAGAAGGGCGACCTGCTGTTCGGCAACACCGACACCTGGGTGCTGTGGAACATGACGGGCGGCACCGAGGGCGGGGTGCACGTCACCGACGTCACCAACGCCTCGCGCACCATGCTGATGGACCTCGACACCCTGTCCTGGAGCGAGGAGGTCGCCTCGGACATGGGCATCCCCCTGTCGATGCTCCCGGAGATCCGCTCCTCGTCCGAGGTGTACGGGCGCGGGCGGCCGCGCGGCATGGTGCCGGGGGTGCCGATCGCCGGCATCCTCGGCGACCAGCAGGCCGCCACGTTCGGCCAGGCGTGCTTCGAGGTCGGCACCGCGAAGAACACCTACGGCACCGGCAACTTCATGCTGCTCAACACCGGAACGGAGAAGGTGCCCAGCGAGAACGGGCTGCTGACGACCGTCTGCTACAAGATCGGCGACGCCGACGCGGTCTACGCGCTCGAGGGCTCCATCGCGGTGACCGGCTCGCTGGTGCAGTGGCTGCGCGACAACCTGGGCCTGTTCGACGACGCCCCGGACGTCGAGTACTACGCGAGCAAGGTCGACGACAACGGCGGGGCGTACTTCGTGCCCGCGTTCTCGGGACTGTTCGCGCCGTACTGGCGTCCCGACGCCCGCGGTGCGCTGGTGGGCCTGACCCGGTTCGTGAACCGCAACCACATCGCCCGCGCCGCGCTGGAGGCCACGGCGTTCCAGACCCGTGAGGTCATGGACGCCATGAACGCGGACTCGGGCGTGGACCTCACCGAGCTGAAGGTCGACGGCGGCATGGTCGCCAACGACCTGCTCATGCAGTTCCAGGCGGACCAGCTCGGGGTCGACGTGGTGCGCCCGGAGATCGCCGAGACCACCGCGCTGGGGGCCGCGTACGCCGCGGGCATCGCCGTCGGGTTCTGGCAGGGCGAGCAGGACGTGCGCGACAACTGGGTCGAGGGCCACCGCTGGTCCCCGTCGATGCCGGAGGACGAGCGCGAGCGCCTCTACCGCGAGTGGAAGAAGGCGGTCACGAAGACCTTCGACTGGGTGGACGCCGACACGAAGTAGMADYVLAIDQGTTSSRAIVFDHAGRNVSTGQLEHDQIFPRAGWVEHNAEQIWNNVREVVGLALTRGNISHEDLAAVGITNQRETAVVWDKNTGKPVYNAIVWQDTRTQAIADELAGDEGPDKYKAICGLPLATYFSGPKIKWILDNVEGAREAAEKGDLLFGNTDTWVLWNMTGGTEGGVHVTDVTNASRTMLMDLDTLSWSEEVASDMGIPLSMLPEIRSSSEVYGRGRPRGMVPGVPIAGILGDQQAATFGQACFEVGTAKNTYGTGNFMLLNTGTEKVPSENGLLTTVCYKIGDADAVYALEGSIAVTGSLVQWLRDNLGLFDDAPDVEYYASKVDDNGGAYFVPAFSGLFAPYWRPDARGALVGLTRFVNRNHIARAALEATAFQTREVMDAMNADSGVDLTELKVDGGMVANDLLMQFQADQLGVDVVRPEIAETTALGAAYAAGIAVGFWQGEQDVRDNWVEGHRWSPSMPEDERERLYREWKKAVTKTFDWVDADTKPGPT0018435_2060DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018435-glpK-K00864NANA
AK018_03281195rpmF_1COG033350S ribosomal protein L32GTGGCTGTTCCCAAGCGCAAGATGTCGCGCAGCAACACCCGCGCGCGCCGCTCGCAGTGGAAGACCACCGCAGCGCCGCTCGCCACCTGCCCGAGCTGCAAGGGCCAGAAGCTGTCCCACACCGCGTGCCCGACCTGCGGTGCCTACAAGGACCGCCAGTACGCCGAGGCGCTGCGCACCGAGCACGCGGGCTGAMAVPKRKMSRSNTRARRSQWKTTAAPLATCPSCKGQKLSHTACPTCGAYKDRQYAEALRTEHAGNANANANANA
AK018_03282774rnc_2COG0571Ribonuclease 3ATGCACCCGCGCGGCACCCGGGACCGACCGGAGCCGACCGCTCTTCTCGAGAAGCTCGGGGTCCACCTGGATCCCGAGCTTCTCGTGCTTGCCCTGACCCATCGGTCGTTCGCGCACGAGGCCGGCGGCATCCCCACCAACGAGCGCCTGGAGTTCCTCGGGGACACCGTGCTCGGGCTGGTGGTGACCGAGGCGCTGTACCGCCGGCACCCGGACAAGCCCGAGGGCGAGCTCGCCAAGATGCGTGCGGCGACCGTCTCCCAGCGTTCCCTCGCGGCGGTGGCGCGCCGTCTCGAGCTGGGCGGCTACGTGCTGCTCGGCAAGGGCGAGCTGCGCACCCGCGGGTACGACAAGGACTCGATCCTGTCCGACACGGTGGAGGCGCTGCTGGGCGCCACCTACCTGTCCCACGGCCTCGAGGTGGCCCGCGACCTGGTGCACCGCCTGGTCGACGCCACCATGGACGCCGCCGCGGACCTCGGTGCCGGCCTGGACTGGAAGACCTCGCTGCAGGAGGCGGCGGCGGAGCGCGGCTTCGAGGCCCCCCGCTACGAGGTCACCGGTGAGGGCCCGGAGCACGCCCGGCGCTTCTCGGCACAGGTCACGACGGGTCCCGTGGTGGGCCTGGGTGAGGGCACCGCGAAGAAGCACGCCGAGCAGGCGGCCGCCGAGCAGGCCTACCGCGCCGTCGTGGCCCTGCCGGTCCCGGGTGAGGACGCGACGGGGACGTCGGCCAGCGGCACGGCCGGCGCGGAGCAGCCCGCCGGTGCCTGAMHPRGTRDRPEPTALLEKLGVHLDPELLVLALTHRSFAHEAGGIPTNERLEFLGDTVLGLVVTEALYRRHPDKPEGELAKMRAATVSQRSLAAVARRLELGGYVLLGKGELRTRGYDKDSILSDTVEALLGATYLSHGLEVARDLVHRLVDATMDAAADLGAGLDWKTSLQEAAAERGFEAPRYEVTGEGPEHARRFSAQVTTGPVVGLGEGTAKKHAEQAAAEQAYRAVVALPVPGEDATGTSASGTAGAEQPAGANANANANANA
AK018_03283942fpg1_2COG0266Formamidopyrimidine-DNA glycosylase 1GTGCCTGAGCTGCCCGAGGTCGAGACCGTCCGCGACGGCCTCGACCGGCTGGTGACCGGCGCCGTCGTGCGGGACGTCGAGGTCTTCCGCGACTACTCCGTGCGTCGGCACGACGGCGGTCCGGCGGGCTTCGTCGACCAGCTCCGGGGGCGTCTCCTCGCCGGGGCGGCCCGCCGCGGCAAGTACCTGTGGCTCCCCCTGACCGACGTCGCGCCCACGGGTCACGCGGTGCCGGCCGCCGCGCTGCTCGCCCACCTGGGCATGTCCGGTCAGCTGCTGGTGCGTGACCCGGCGGTCGCGGGGGAGTGGGAGCACCCGCACCTGAGGGTGCGCATCCACCTGGACGGCGCTCCGTCGGGCGCGCGGTACCTGGACTTCGTCGACCAGCGCACGTTCGGGCACCTGTCGGTCACGGACCTGGCGCCGACGCCGGACGGTGCGCCGGGCGGCCGCGGCAGCCCGCTGCCCGCCGTCCCCGAACCGGTCGCGCACATCGGTCGCGACCTGCTCGACCCCGCCCTCGACCGGCCCGCGCTGGTCGAACGCGTCCGCCGTCGTCGGACGGGGATCAAGCGGGCGCTGCTGGACCAGACGGTCGTGTCCGGTGTCGGCAACATCTACGCCGACGAGGCGCTGTGGCGGGCGCGCGTGCACTACGCCCGCGCGACGGACCGGATGACCAGACCCGTGGTGGGTCGGGTGCTCGACGCCGCCACCGAGGTCATGACCGAGGCGCTGGGGCAGGGCGGCACGAGCTTCGACGACCTGTACGTGGACGTCAACGGCGAGTCCGGCTACTTCTCGCGCTCCCTGGCCGTCTACGGGCGGCTCGGCGAACCGTGCCGGCGGTGCGCGACGCCGGTGCGTCGCGACGAGTTCATGAACCGTTCGTCGTTCACGTGCCCGGTGTGCCAGCCGCGTCCGCGGAACGGCCGCTGGTAGMPELPEVETVRDGLDRLVTGAVVRDVEVFRDYSVRRHDGGPAGFVDQLRGRLLAGAARRGKYLWLPLTDVAPTGHAVPAAALLAHLGMSGQLLVRDPAVAGEWEHPHLRVRIHLDGAPSGARYLDFVDQRTFGHLSVTDLAPTPDGAPGGRGSPLPAVPEPVAHIGRDLLDPALDRPALVERVRRRRTGIKRALLDQTVVSGVGNIYADEALWRARVHYARATDRMTRPVVGRVLDAATEVMTEALGQGGTSFDDLYVDVNGESGYFSRSLAVYGRLGEPCRRCATPVRRDEFMNRSSFTCPVCQPRPRNGRWNANANANANA
AK018_03284306hypothetical proteinGTGCTCGACGCCGACATGATCGGCTCCATGATGACGTTCGCCGGGCCGACGGCCGCGTCGTTCCTGACCACCCGGTACTGGGCCGCCCGGGAGGACGCCGACCCCCGCCGCCACGCGTGGTTCGTGCTGTACCTCGCCGTCGTGCTCGCCCTGCTGGTGGCGGTCCTGGCGACGGCGGCCCCCGAGGACCGGCTGAAGACCGTGGGCCTCTTCTTCGTGGTCACGATCCTCGCCACCGCGCTCCAGGAGCGGCGGGCTCGCCGAGCGCGTCGCATCAACGACGCGGACCGCGGCACCCCGGAGTAGMLDADMIGSMMTFAGPTAASFLTTRYWAAREDADPRRHAWFVLYLAVVLALLVAVLATAAPEDRLKTVGLFFVVTILATALQERRARRARRINDADRGTPENANANANANA
AK018_03285945hprACOG1052Glycerate dehydrogenaseGTGAAGATCCTGGTGCCGAGCAACGTGCCCTTCGACCTGACGATCGACGTCGAGGGGGTGGACGTCGCGCCCTACGTCATGCGCGACGAGATCCCCGACCAGCACACGGACGCCGAGGCGATCGTCACGTGGGCCAGCCCGCAACGCGTCATGGACGACGCGGCGCGCCGGCTGCCGAACCTGCGGTGGGTGCAGACCCTCAACGCCGGACCCGACCAGGCGCTCGCGACCGGGTTCTCCCCCGAGGTCGTCATCGCCTCCGGGCGCAGCCTGCACGACGCCACCGTCGCCGAGCACACCCTCGCCCTGCTGCTGGCCTCCGTTCGCCGCATCGACCGCACGCTCGACGCGCAGCGCCGGCACGAGTGGGACCGTGACCTCGGCCGCGAGCAGGCCCGTGACGAGCGGTCGTTCACGCTGCACGGCGCGCACGTGGTGGTCTGGGGGTTCGGCTCGATCGCGGCACGCCTCGCCCCGCAGCTGGAGGCCCTGGGCGCTCGGGTGACCGGGGTGGCGTCGTCGGACGGCGAGCGGTACGGCTACCCCGTGGTCGGCGGCGACCGGCTGGCCGAGGTGCTCCCCACCGCCGACGTCCTGATCTCGCTGCTGCCCGCCACCGAGGCCACCCACCACGCGCTCGACGCCGACGTCCTGGCGCTCCTGCCCGCCCACGCGAGGTTCGTCAACGCCGGGCGCGGCGCCACGGTCGACGAGGCGGCGCTGGCCGCGGCCCTGCGTGCCGGCACGCTCGCGGGGGCGGCGCTCGACGTCACCGAGACCGAGCCGCTGCCGGCCGACTCGGAGCTGTGGGACACGCCCGGGCTGATCCTCACGCCGCACGTGGCGGGCGGGCGGCCGCAGGGTGCGGCGGCGTTCGTCACCGCGCAGGTGCGCCGTTGGCTCGAGGGCGGGGCGGAGGCGCTGGAGAACGTCGTCGCGCGCTGAMKILVPSNVPFDLTIDVEGVDVAPYVMRDEIPDQHTDAEAIVTWASPQRVMDDAARRLPNLRWVQTLNAGPDQALATGFSPEVVIASGRSLHDATVAEHTLALLLASVRRIDRTLDAQRRHEWDRDLGREQARDERSFTLHGAHVVVWGFGSIAARLAPQLEALGARVTGVASSDGERYGYPVVGGDRLAEVLPTADVLISLLPATEATHHALDADVLALLPAHARFVNAGRGATVDEAALAAALRAGTLAGAALDVTETEPLPADSELWDTPGLILTPHVAGGRPQGAAAFVTAQVRRWLEGGAEALENVVARNANANANANA
AK018_032861632COG1233putative proteinATGACTGCCATGGAGCCATCGCGTCCCACCGCCGCCCGCTACGACGTCGTGATCGCCGGAGGCGGGCACAACGGTCTGACGGCCGCCGCCTACCTGGCCGGGGCGGGCCGGTCGGTGCTGCTGCTGGAACGCCTCGACCACGTCGGCGGGGCGTCGGTCTCGGCACCGGTGTTCGATGGCGTCGACGCGCGGCTGTCGCGCTACTCCTACCTCGTCTCCCTCATGCCGCGGCAGGTGGTCGACGAGCTCGGCCTTGCGCTGCGCCTGGCCCGGCGCCGGTACTCCTCCTACACGCCGGTGGGTGACCGCGGCCTGCTGGTGGACACCGGGTCCGCCGCCGCGACCCGCGCCGCGTTCGACGCCGTCGGTGCCTCCGGGGACCACGCCCGCTGGCAGGAGCTGTACGCCGGGCTCGAGCGCCTGGCGGGCCGGGTCTTCCCCTCGGTCACCGAGCCGCTGATCACGGCCGCCGAGATGCGCGCGAGGGTGGACGACGACGCCCTGTGGCGCGCCGTCGTCGAGCAGCCGCTCGGCGAGACGCTGCGCGAGCGGTTCTCCTCCGACGTCGTCCGCGGCGTCGCGGCCACCGACGGGCTCATCGGCACCTTCGCCGACCTGGACGAGGCCTCGCTCATCCAGAACCGCTGCTTCCTGTACCACGTGGTCGGCGGTGGCACCGGGGACTGGGACGTGCCCGTGGGCGGGATGGGCGCCGTCTCCGGGGCGCTGCGCGACGCGGCGCTCGCCGCCGGGGCCACCCTCGTCACCGGCGCCGAGGTGACGGCGATCGATCCCGGGCTGCACACGGGCGACGCCGAGGTCACCTGGACCGACGACGCCGGCCGTCCCCACGGGGCACGGGCCGGCGCCATGGTCTGCGGGGCGGCTCCCACCGTCCTGGACGCGCTGCTGGACGCCGGTGGTGCCACGCCGTCGGGCCGCGCCACGCCCGGGGCGCCCGAGGGCGCCCAGCTCAAGGTCAACATGCTGCTGCGTCGTCTGCCGCGGCTGCGCGACGACGTCGACCCGGTCGCGGCGTTCAGCGGCACGTTCCACGTCCACGAGTCCTTCGACGAGCTGCAGACGGCCCACGTCCGGGCCGCGGCGGGCCGGATCCCCGACGTGACGCCCTGTGAGATCTACTGTCACTCCCTGACCGACGACTCGATCCTCGGCCCCGACCTGCGCGCCGCCGGCGCGCACACCCTCACCCTGTTCGGGCTGCACATGCCCGCCCGGTCGTTCCGCGACGACCCCGACGGCGCACGCGAGGAGGCGCTCGCGGCCACGCTGCGCTCCCTGGACTCCGTGCTCGCCGAGCCGATCGAGGACGTGCTGTGGCGCGGCCCCGACGGGGAGCCCTGCCTCGAGGCCCGCACGCCTGTCGACCTGGAACGCGACGTCGGGCTGCCGGGCGGGCACATCTTCCACCGCGACCTGTCGTGGCCCTGGGCGTCCGACGGTCCGGCGGACGCGGATCCGCACGGCCTGGACGCCCCGGGCACGTGGGGCGTGGAGACGCTGCACCCGCGGGTGCTGCTCGCCGGCGCCGGGGCGCGGCGCGGCGGGGGAGTGAGCGGCATCCCGGGGCGGGCCGCGGCGATGGCGCTGCTGGCAGCACCGACGCCGTAGMTAMEPSRPTAARYDVVIAGGGHNGLTAAAYLAGAGRSVLLLERLDHVGGASVSAPVFDGVDARLSRYSYLVSLMPRQVVDELGLALRLARRRYSSYTPVGDRGLLVDTGSAAATRAAFDAVGASGDHARWQELYAGLERLAGRVFPSVTEPLITAAEMRARVDDDALWRAVVEQPLGETLRERFSSDVVRGVAATDGLIGTFADLDEASLIQNRCFLYHVVGGGTGDWDVPVGGMGAVSGALRDAALAAGATLVTGAEVTAIDPGLHTGDAEVTWTDDAGRPHGARAGAMVCGAAPTVLDALLDAGGATPSGRATPGAPEGAQLKVNMLLRRLPRLRDDVDPVAAFSGTFHVHESFDELQTAHVRAAAGRIPDVTPCEIYCHSLTDDSILGPDLRAAGAHTLTLFGLHMPARSFRDDPDGAREEALAATLRSLDSVLAEPIEDVLWRGPDGEPCLEARTPVDLERDVGLPGGHIFHRDLSWPWASDGPADADPHGLDAPGTWGVETLHPRVLLAGAGARRGGGVSGIPGRAAAMALLAAPTPNANANANANA
AK018_032871734COG1132putative ABC transporter ATP-binding/permease proteinGTGCCTGAGAACCGGCGTCGCCGTGCGGCCCGGGACCCGCTGGTGCGGCTGCTCCCCCTGCTGGAGGTCTCGTGGGGCCGCGTCGCCCGCGCCGTCGGCCTCGGCACCCTGACGCTCGTGTGCGCGATCGGGCTCGCCGCTGCCGCGGCCTGGCTGATCGCGCGGGCCTCGCAGATGCCGCCCGTGCTGACCCTGTCGGTCGCCGCCGTCGGCGTGCGGGCGTTCGGCACGGGCCGGGCGTTCTTCCGGTACCTCGAACGGCTCGCCTCCCACGGCGTCGCGCTGCGCGGCATGGCGGCGCTGCGGGCCAACCTCTACGACCGGCTGGCCCGCGGCGGCGCCGACGTCGTGGCGCTGCGCCGCGGCGACCTGCTCGCGCGGGTCGGGGGCGACGTCGACGACGTGGGTGACGTGGTCGTGCGTGCGCTGATCCCGGCCGGGGTGGCCGTCGTGGCGGGGCTCGGCTCGGTGCTGCTGGTGGGCGTCTTCCTGCCCGCGGCGGGCGCCGTGCTGCTGGCCTGCCTGCTGCTGACCGGCGTCGTCTCCCCCTGGTTGGCGTCACGCGCCTCGGCGTCGGTGGAGCAGCGCGGGGCCGAGGCGCGCGGCGACGTCACGGCCCGCACCCTGGAGCTGCTCGAGGACGGCCAGCAGCTGCGCGTCGCCGGCCGGCTCGCCGACCGCACGGCGGGGCTGCGGGCGGCGGACCGTCGGCTCGCTGCCACGACCGACGACGGCGCCCGCGTCTCCGGGCTGTCGGCCGCCGTCGAGGCCGGCGCCCAGACCCTGGCGGTGCTCGGCTGCCTGCTGCTCGGCGTCCCGGCAGCCCTGGCCGGCGACCTGGCGGCGACCGAGCTCGCGGTCGTCGTCCTCACCCCGCTGGCCGTGTTCGAGGCGACCACCGCGCTGCCCGCAGCCGCGGTGCAGCTGCGACGCTCCCGCGCGGCGGCCCGCCGGCTCGTGGACCTGCTTCCCGAGAGCACGGGGTCGCGCCACGCGCCCGAGGCGGCGCCCACCGGCACGCTGCTGGAGCTCGACCACGTCGCGGCGGGCTGGTCGACGTCGGCACCCGTGGTCCGCGACGTCGACCTCACGCTGCGGCCCGGTGCCGTCGTCGCCCTCGCGGGCGCCTCCGGCGTCGGCAAGACGACCCTGCTGCTCACCGCCGCGGGGCTGCTGGACCCCGCGGCGGGCGCGGTCCGGGGAGAGGGCCTGTTCGTCGCCGAGGACGGCCACGTGTTCGGCACGACCGTGCTGGAGAACCTCCGTGTGGCCCGTGCGGACGTCACCGACGACGACGCCCGCGAGGCGCTGGCCGCCGTCGGGCTCGCGGACTGGCTGGGCGGCCTGCCGGGCGGGCTCGGGACCACGCTCGGTACCGGTGGCACGGACGTCTCCGGAGGCGAGCGCCGGCGACTCCTCGTCGCTCGCGCCCTGCTGGCCCCGCACCGGGTCCTGCTCGTGGACGAGCCCGCCGAGCACCTCGACGCCGCGACGGCGGACGCGGTGGTGGGCACGCTCGCCGGCGTGGCCCGCACGTCCGGACGGGCCGTCGTCGTCGCCTCGCACCGCCTGACGCCCTTGGACGTCGCCGACGAGGTGATGCTGCTCGACGCCGAGACACCGGGCGCTCCGGCCCGCGTGCTCGCCCGCGGGACGCACACCGCGCTGCTGGACTCCGTACCGGCCTACCGGTGGGCGGCCGACCAGGAGGATCCGGCCCCGATCGACGTCTGAMPENRRRRAARDPLVRLLPLLEVSWGRVARAVGLGTLTLVCAIGLAAAAAWLIARASQMPPVLTLSVAAVGVRAFGTGRAFFRYLERLASHGVALRGMAALRANLYDRLARGGADVVALRRGDLLARVGGDVDDVGDVVVRALIPAGVAVVAGLGSVLLVGVFLPAAGAVLLACLLLTGVVSPWLASRASASVEQRGAEARGDVTARTLELLEDGQQLRVAGRLADRTAGLRAADRRLAATTDDGARVSGLSAAVEAGAQTLAVLGCLLLGVPAALAGDLAATELAVVVLTPLAVFEATTALPAAAVQLRRSRAAARRLVDLLPESTGSRHAPEAAPTGTLLELDHVAAGWSTSAPVVRDVDLTLRPGAVVALAGASGVGKTTLLLTAAGLLDPAAGAVRGEGLFVAEDGHVFGTTVLENLRVARADVTDDDAREALAAVGLADWLGGLPGGLGTTLGTGGTDVSGGERRRLLVARALLAPHRVLLVDEPAEHLDAATADAVVGTLAGVARTSGRAVVVASHRLTPLDVADEVMLLDAETPGAPARVLARGTHTALLDSVPAYRWAADQEDPAPIDVNANANANANA
AK018_032881680cydD_2COG4988ATP-binding/permease protein CydDGTGAGACCGCTCGACCCCCGGCTGCTGCGGCAGGCCCGGGCAGCCCGCTCCTACGTCCTGCTCACCACCGTCCTCGGCGTGGCCTCGGCCGCTCTCGTGGTGGTGCAGGCCTTCGCGATCGCCAACACGCTGGGTCCCGCGATCGTCGCCACGAGCCCCGGCGGGGACGGCGCGCTCGACCGGGCCGGGATCGTCCGGTGGCTCGCGGTGCTGGCGGGTGCCGCCGTCGGGCGCGCCGCCGTCGCCTGGGCGCAGGAACGCTACGGACGCCGCGCGGCCACCCGGGTGGTCGCGGACCTGCGCGAGCAGGTGGTCGAGCACGCCGTGACCCTGGGGCCCCGACCACCCGCCGGGGCGACGCCGTCGGACGTCGCGACCCTGGCCACGCGCGGGCTGGACGACCTGGAGCCGTACCTGGTGCGGTTCCTGCCGCAGCTGCTGCTCACGGCGCTCGTCACGCCCGCCACGGTGCTCGTGGTCCTCGGGCTCGACTGGGTCTCCGCGCTGATCGCGGTCTGCACGATCCCGTTGGTGCCGTTCTTCATGTGGCTGATCGGCACCATGACGGCCGGCACGTCCGAGCGGCGCCTGGCCACGGTGGAGCGGCTCGGGTCGCAGGTGCTCGACCTGATCGCCGGGCTGCCCACCCTGCGGGCGTTCGGTCGGGAGATCGGCCCCGCCGCCCGGGTGCGCGCCCTGGGCGAGTCGTCCCGGCGCGCCACCCTGGGCACGCTGCGGGTCGCGTTCCTGTCCGGCGCGGTCCTGGAGCTGCTGACCACCCTGTGCGTCGCGATCATCGCCGTCGGGGTCGGCCTGCGGCTGGTGCACGGGGGCATCGAGCTGGTGCCCGCGATCGCCGTCCTGGTGCTGGCCCCGGAGATCTTCCTGCCGCTGCGCCGCGTCGGGTCCGAGTTCCACGCGTCCACCGACGGGGTGGCGGCGACGCAGCGCGCCTTCGCCGTCCTGGACCTGCCGGCCGTCGCCGCGGGCGGCGAGGACGCGCCGACCGCCGCCCGTCCCGGACCCACGCTCGTGCTCGAGAACGTCACCGTGCGGGCGCCGGGACGCGGCGTCGAGGCCCCGGCCGGGCTGTCCGCACGGATCCTGCTGGGGACCGGCGTCCCGGGTGGCGGCCGCGTGATCGCGCTGCGCGGGCCGAGCGGGAGCGGCAAGTCCACCCTGGTGCTGGTGCTGCTCGGGCTCCTGCGCCCGGACGCCGGCACCGTGTCCTCGACCCTGCCGTGGGAGCAGGTGGCCTGGGTGCCGCAACGCCCCGCGATCGGACCGGGGACCGTGCACGACGTCGTCACCGACGGCCGTGAGGTCGCCCCGGAGACGCTCGCGGCGGCCGCGGCGACCACCGGCCTCGACGCCGTGCTCGCCGACCTGCCGGACGGGTGGGAGTCCCCGGTGGGGCTGGGCGGCGTCGGCCTCAGCGTCGGGCAGCGGCAACGGGTGGCCCTCGCCCGCACGCTCGTCGCCGGCGCCGACCGCCCCGTCGTGGTGCTGGACGAACCGACCGCGCACCTCGACGCCCGCGGCGAGCAGGTGGTGCTCGAGACCGTGCGCACCTGGCGCGACGCCGGCCGTACCGTCGTCGTGGTGGCGCACCGTGCCTCGCTCCTGGCCGTGGCCGACCAGGTCGTCGACGTCGAGGCCCGGGAGGTGGCCCGTGCCTGAMRPLDPRLLRQARAARSYVLLTTVLGVASAALVVVQAFAIANTLGPAIVATSPGGDGALDRAGIVRWLAVLAGAAVGRAAVAWAQERYGRRAATRVVADLREQVVEHAVTLGPRPPAGATPSDVATLATRGLDDLEPYLVRFLPQLLLTALVTPATVLVVLGLDWVSALIAVCTIPLVPFFMWLIGTMTAGTSERRLATVERLGSQVLDLIAGLPTLRAFGREIGPAARVRALGESSRRATLGTLRVAFLSGAVLELLTTLCVAIIAVGVGLRLVHGGIELVPAIAVLVLAPEIFLPLRRVGSEFHASTDGVAATQRAFAVLDLPAVAAGGEDAPTAARPGPTLVLENVTVRAPGRGVEAPAGLSARILLGTGVPGGGRVIALRGPSGSGKSTLVLVLLGLLRPDAGTVSSTLPWEQVAWVPQRPAIGPGTVHDVVTDGREVAPETLAAAAATTGLDAVLADLPDGWESPVGLGGVGLSVGQRQRVALARTLVAGADRPVVVLDEPTAHLDARGEQVVLETVRTWRDAGRTVVVVAHRASLLAVADQVVDVEAREVARANANANANANA
AK018_032891050cydB_2COG1294Cytochrome bd-I ubiquinol oxidase subunit 2GTGGACCTCGCGATCCTCTGGTTCGTCATCATCGCCGTGCTGTGGACCGGCTACCTCGTGCTCGAGGGCTTCGACTTCGGCGTCGGCATGCTGCTGTCGATCCTGCCCCGCGGCGACAAGGAGCACCGCGAGAAGGAACGGCGCGTGCTCGTCAACACCATCGGCCCCGTCTGGGACGGCAACGAGGTGTGGCTGCTCACCGCGGGCGGCGCCACCTTCGCGGCCTTCCCGGAGTGGTACGCCACGATGTTCTCCGGGTTCTACATCCCCCTGCTGCTCATCCTCGTCGGGCTGGTGGCCCGCGGCGTCGCGTTCGAGTACCGGGGCAAGATCGCCGACCGGGTCTGGGCCCGCCGCTGCGACCAGGCGATCCAGCTCGGATCCTGGATCCCCGCGGTGCTCTGGGGCGTGGCGTTCGGCAACCTGGTGCGCGGCCTCCTGCTCGACGCCGACCACCAGTACGTCGGCGGCTTCTGGGCCCTGCTCAACCCGTTCGCCCTCGTCGGCGGCCTGACCACGGCGGTGCTGTTCCTGCTGCACGGGTCGGTGTTCGTCGCGCTGAAGACGGACGGCGACATCCGCGAGCGCGCCGCCCGCCTGGCGTCCGGCCTGTCGGTGGCGGCGCTCGTCGTGGCCGGCGGCTGGGCGATCTGGGCGCAGGTCGCCTACTCGGTGACCTGGACGTGGGCGGCCGTGGCCGTCGCCGCCCTGGCCCTGCTCGGCGTCGTGGCCGCGACCCGTGCCCGCAGGGAGGGCACGGCGTTCACCCTGTCGGCCGTGACCATCGTGGCGGCCGTGGTGCTGATCTTCGGATCCATGTACCCCGACGTCATCCCGGCCCTCGACGGCGGCGAGGCCCTGACGATCGCCGAGGCCTCCTCGACCGACTACACGCTCACGGTCATGTCGTGGGTCGCGGTGGTCCTGACCCCGCTGGTCATCGCCTACCAGTCGTGGACGTACTGGGTCTTCCGGCGCCGGCTGTCCACGAAGGACATCCCCGCACCCGCGGGCCTGAGCTGGCAGAAGATCAAGGACGCGGCGTTCTGAMDLAILWFVIIAVLWTGYLVLEGFDFGVGMLLSILPRGDKEHREKERRVLVNTIGPVWDGNEVWLLTAGGATFAAFPEWYATMFSGFYIPLLLILVGLVARGVAFEYRGKIADRVWARRCDQAIQLGSWIPAVLWGVAFGNLVRGLLLDADHQYVGGFWALLNPFALVGGLTTAVLFLLHGSVFVALKTDGDIRERAARLASGLSVAALVVAGGWAIWAQVAYSVTWTWAAVAVAALALLGVVAATRARREGTAFTLSAVTIVAAVVLIFGSMYPDVIPALDGGEALTIAEASSTDYTLTVMSWVAVVLTPLVIAYQSWTYWVFRRRLSTKDIPAPAGLSWQKIKDAAFPGPT0026705_1759DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026705-cydB-K00426NANA
AK018_032901500appC_2COG1271Cytochrome bd-II ubiquinol oxidase subunit 1GTGGAAGCCCTGGACCTGGCTCGGTGGCAGTTCGCCATCACCACCGTCTACCACTTCATCTTCGTCCCGCTGACGATCGGGCTGGCACCGATCGTCGCAGGGATGCAGACCGCCTGGGTCGTCACGAAGAACGAGCGCTGGCTGCGCCTGACCAAGTTCTTCGGCAAGCTGCTGCTCATCAACTTCGCCCTCGGCGTGGTGACGGGCATCTGGCAGGAGTTCCAGTTCGGCATGGCGTGGAGCGAGTACTCCCGGTTCGTCGGCGACGTGTTCGGTGCTCCGCTTGCCATGGAGGCCCTGGCGGCGTTCTTCGTCGAGTCGGTGTTCCTCGGGGTGTGGATCTTCGGGTGGGACCGGGTGTCCAAGAAGATCCACCTGGCCTCGATCTGGCTCTTCGCGCTCGCCACCAACCTCTCGGCGTTCTTCATCCTCGCGGCCAACTCGTGGATGCAGCACCCGGTCGGCGTGATCTACAACGAGGAGACCGGCCGTGCCGAGATGGAGTCCATCTGGGCGGTCCTGACCAACAACACGCTGCTCGCGGCGTTCCCCCACACCATCACGGCCGCCTTCCTGACGGCCGGGACGTTCGTCACCGGCATCGCCGCCTGGTGGATGGTCCGCCTCGCCCGCACCAAGAAGCCCGAGCACGTCGAGACCGCGCGGAACGTCTACCGCCCGGCCGTGCTGGTCGGCGTGTGGGTGATGATCTTCGCCGGCATCGGCGTCATCTGGTCCGGCGACGTGCAGGGCAAGCTCATGTACGAGCAGCAGCCCGGCAAGATGTCGTCGGCGGAGGCGCTCTGCGAGGGCACCGAGTCCGCCGAGTTCTCCATCCTGGCCATCGGTCCGCTCTACGCCGGCTGCGAGGACGTCAACCACGTCATCTCCCTGCCCGGCCTCACCAGCTACCTCGGGACGGGGCAGTTCTCCGGCGAGGACTCCTACCTGCCGGGTGTCTACGACGTCCAGGAGGAGTACACCGAGCGCTACGGGGACGTCACGGCCGACGGCGAGCCGGTCGTCTACACCCCGCCGCTGGCGATCACGTACTGGTCGTTCCGCCTCATGATCGGCTTCGCCGCGTTCTCGGTCGCCCTGGCGCTGGCCGCGCTGTGGCTGACCCGCAAGGGCCGCGTCAGCGACAACGTCTGGCTCGGCCGGCTCGGCATCCTGGCCATCCCGATGCCGTTCGTCGCCTGCTCGTTCGGCTGGATCTTCACCGAGGTCGGCCGCCAGCCCTGGGTCGTCGCACCGAACCCGACCGGCATCGACCAGGTGCGGCTGCTCACCGAGCGCGGCGTCTCCACCGCGGTACCGCCCGGCGTCATCCTCACCTCGATGATCGTCCTCACCGTCATCTACGCGATCCTCGCCGTCGTCTGGTACCGGCTCATGCACCGGTACACGATCGAGGGCGTCCCGGACTCCGTCCGCGACGAGTCGCCGGAGGCGCAGGACCCCGACGACACCGACCGCCCCCTGTCCTTCGCGTACTGAMEALDLARWQFAITTVYHFIFVPLTIGLAPIVAGMQTAWVVTKNERWLRLTKFFGKLLLINFALGVVTGIWQEFQFGMAWSEYSRFVGDVFGAPLAMEALAAFFVESVFLGVWIFGWDRVSKKIHLASIWLFALATNLSAFFILAANSWMQHPVGVIYNEETGRAEMESIWAVLTNNTLLAAFPHTITAAFLTAGTFVTGIAAWWMVRLARTKKPEHVETARNVYRPAVLVGVWVMIFAGIGVIWSGDVQGKLMYEQQPGKMSSAEALCEGTESAEFSILAIGPLYAGCEDVNHVISLPGLTSYLGTGQFSGEDSYLPGVYDVQEEYTERYGDVTADGEPVVYTPPLAITYWSFRLMIGFAAFSVALALAALWLTRKGRVSDNVWLGRLGILAIPMPFVACSFGWIFTEVGRQPWVVAPNPTGIDQVRLLTERGVSTAVPPGVILTSMIVLTVIYAILAVVWYRLMHRYTIEGVPDSVRDESPEAQDPDDTDRPLSFAYPGPT0026700_1758DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026700-cydA-K00425NANA
AK018_032913633rne_2Ribonuclease EGTGACGTCCGATACCCCAGACCAGTCGACCGGGACGAGCGGGACGGCTCCCCGCCGCGCGACCCGCCGTCGCGTCACCCGCCCCACGTCCGCGCCGCAGGCTCCGCCCGAGCCGATCGTCGTGCCGCAGGCCGCGCCCGACGCGGCGGAACCGGAGCAGCCGGTCACGAGCGCCGCCCCGCAGCGGGCCACGAGCACGGAGCCCGCCGCGTCGACGCCGGCACGCCGGCCGCGCCGCGCCACCCGCCGCACCGCCGGCCCCGCGGACGCACCGGTCGAGACCGCGTCGACCGAGACCGCTTCTCAGGACGTGCCCGGGACCGAGCCCGCCGAGGTCGCACCTGCCCCGACCGCCGCGGCCGGTGACAGCGCGGCGTCCGCGACCGATGCCGACGCCGGCGCGAGCAGCATCTCGCTGCCGCCGGCGGCCGCGGCCTCGGACACCGACACCACCGAGGCCCGGCTCAGCCTGGACGACATCGTCCTGCCGGGCGGCCCGGCGTCCGAGCGCCGCCCCGGCGACGGCGAGGAGGAGTCGGCTGCTCCGCGTCGGAGCCGGCGCTCCGGCACGAAGAGCGCGACCTCGAAGAGCGCGACCTCGAAGAGCGCGGCCTCGAAGGGCGCCACGAAGGGCGCCACCTCGAAGAGCAAGACCTCGAAGACCGACGAGGCGGCGGACGCCACGTCGAAGGACTCCACCGAGGAGACCGCGGCTGCGCCGACGGCGGGGGCCGAGGCTGCCTCGACCACCCGCGGCTCGCGCCGTGCGTCGACCAGGAACGCGCGCACCGAGAGCACGAAGGAGTCCTCGACGGCGGGCCAGGCGGGTACGCCGCGCCTGGCCACGACCGCTCTGCTGTTCCAGGCGCCGGACCTGACCGGCACGCGGGCGTCGCGGCGGGCCCAGGCGCCGGCCGGCCCCGCCCGTCCGCACGACGAGCCCGCGTCGGACGGCCCTGCCGAGGACACGACGTCGGCGGCCCCGGCGGCGGACGCTGCCGAGCCGACCCGCGAGACACCCGGCGGCGGTGCGGCGAAGGGCACGGAGAAGCCCGCGAAGAAGGCCACGTCCAAGTCCCGGAAGCCGGCGCGGGACCAGGCGACCGGCTCGGGCGGCGCTGCCGCCCGGACGACCACCGAGACCCCGGCCACGCCCGAGGCCGGTCCCCTCGACCTCGGCGAGGCCGACGTCGCGGCCGTCGACGAGCTCGAGGTGATCGAGTCCGAGCTCACCGCCGAGGGCCTGGAACTGGTCGAGCTCGGCCCGGAGGACTTCCGCGAGGACGGTGACGAGGGGGACATCCGTCCGCGTCGCCGCCGCCGTCGTGGCGGCCGCGGCCGTCGTGGCGGCCGCCGAGGCGATCGCCCCCAGGGCAGCGACAGCGCCACGTCGGGCGACGACGACGAGAGCACGGACGGTCCTCGGGGCGACGAGTCCGAGGGCGACCGCCCCCAGAACGGTCCTGCCGAGCCCGGGGACGGTGAGACCGTGCCCGAGGACGCCTCCTCGACGCCGTCGGGCTCCACGTCGTCCGGCGAGCAGTCCTCCGGCGAGCAGTCCTCCGATGACGGGGACGAGTCGGACGACCGCTCCTCCTCGAGCCGCCGTCGCCGACGCCGCCGTCGTGGCGGGCGCGGCGGGGATCGCGAGGCGGGCCGTCCCGGCCGCGCCGAGGACGAGGTCGTCGCCCTCAAGGGCTCGACCCGTCTCGAGGCCAAGCGGCAGCGGCGGCGCGAGGGTCGCGACGCGGGCCGCCGCCGGCAGGTCATCACCGAGGCCGAGTTCCTGGCCCGGCGCGAGTCCGTCTCGCGGTCGATGATCGTGCGCGAGCAGGACGCCCGGACCCAGATCGCCGTGCTCGAGGACGGCGTGCTCGTCGAGCACTACGTCTCCCAGCAGGCGCAGGCCTCGATGGTGGGCAACGTCTACCTCGGGCGGGTGCAGAACGTGCTGCCGTCGATGGAGGCCGCCTTCGTCGACGTCGGCAAGGGCCGCAACGCCGTGCTGTACGCGGGCGAGGTCAACTGGGACGCCGCGGGGATCGAGGGCCAGCCGCGCCGCATCGAGGAGGCCCTGAAGTCGGGCGACTCGGTGCTCGTGCAGGTCACCAAGGACCCGATCGGGCACAAGGGCGCCCGCCTGACCTCCCAGATCACGCTGGCCGGCCGCTACCTCGTGTTCGTGCCCGGCGGCGGGATGACGGGCATCAGCCGCAAGCTCCCGGACACGGAGCGCAACAGGCTCAAGAAGATCCTGCGCGACGTCGTCCCGGACGGCGCGGGCGTCATCGTGCGGACCGCCGCGGAGGGCGCCTCGGAGGAGGAGCTGCGCGCCGACGTGGAGCGCCTGCAGTCGCAGTGGCAGTCCATCAACGACAAGGCCGCCAAGTCCTCGACGTCGGCTCCCGCGCTGCTCCAGGGCGAGGCCGACATGGCGATCCGCGTGGTGCGCGACATCTTCAACGACGACTTCGCCTCCCTGGTGGTGGAGGGCGACCGGGCCTGGTCCGAGATCTCGACCTACGTCGAGGAGCTCGCGCCGGACCTGCGCGAGCGGGTCTCGCGGTGGACCGGTGCGCAGGACGTCTTCGCCGTGCACCGAGTCGACGAGCAGCTCGCCAAGGGCATGGACCGCAAGGTCTGGCTGCCCTCCGGCGGCTCGCTGGTCATCGACCGCACCGAGGCGATGACCGTCGTCGACGTCAACACGGGCAAGTTCACCGGCAGCGGCGGCACCCTCGAGGAGACGGTCACCCGCAACAACCTCGAGGCGGCCGAGGAGATCGTCCGGCAGCTGCGCCTGCGCGACATCGGCGGCATCATCGTCATCGACTTCGTCGACATGGTGCTCGAGTCCAACCGCGACCTGGTGCTGCGCCGGCTGGTGGAGTGCCTGGGTCGTGACCGCACCAAGCACCAGGTGGCCGAGGTCACCTCGCTCGGCCTGGTCCAGATGACGCGCAAGCGTGTCGGTCAGGGCCTGGTCGAGGCGTTCAGCTCGACGTGCGAGCACTGCAAGGGCCGTGGGTTCATCGTCCACGAGCACCCGGTCGAGAAGAGCCCGGCGCCCGCCGGCGAGGGCGACGGCGGCTCCAAGCGGTCGCGACGCAAGCGCGGCGGCGCGAAGAAGGGCGCGGAGGAGTCGTCGGGCTCCGACGTGCCCAAGCTCCCGGACGACAAGTCCAAGGAGCGTGCGGCCGTGAAGGCCACGCTGGCGACCATCGCGGCCGCTGCGGCGCACGCCCACGAGCACGAGGACGAGGACCGCTCGGCCGCGTCGGGTGCGGAGGCCGCCGACGCGTCGGCCGCCGCCACGGCCGACGTCCCGGAGCCGACCCCGGTGTTCCCGGACCCGGAGGCCCCCGAGCCCACGGTCCCGGTGGCCGAGGCCCCGGCGGACGCGCCGCAGGCGGGGTCGACGCCGGACGTCGTCGAGCCGGTGCCGGCCGCCGAGCCGGAGACCGCCGCCGAGCCGGAGCTGGCCGACGCCGACGCCGCGCAGCCCGCGGCGGAGCCGGCCGACCCCCCGCGGTCCGAGCCGGCCCGAGCCGACGAACCGGCGAAAGGAGCCGGGGCCGAAGAGGCTCCTGAGCAGGTTGAGGGCGAGGCTGCGGCGGTGACCGAGAAGGGCTGAMTSDTPDQSTGTSGTAPRRATRRRVTRPTSAPQAPPEPIVVPQAAPDAAEPEQPVTSAAPQRATSTEPAASTPARRPRRATRRTAGPADAPVETASTETASQDVPGTEPAEVAPAPTAAAGDSAASATDADAGASSISLPPAAAASDTDTTEARLSLDDIVLPGGPASERRPGDGEEESAAPRRSRRSGTKSATSKSATSKSAASKGATKGATSKSKTSKTDEAADATSKDSTEETAAAPTAGAEAASTTRGSRRASTRNARTESTKESSTAGQAGTPRLATTALLFQAPDLTGTRASRRAQAPAGPARPHDEPASDGPAEDTTSAAPAADAAEPTRETPGGGAAKGTEKPAKKATSKSRKPARDQATGSGGAAARTTTETPATPEAGPLDLGEADVAAVDELEVIESELTAEGLELVELGPEDFREDGDEGDIRPRRRRRRGGRGRRGGRRGDRPQGSDSATSGDDDESTDGPRGDESEGDRPQNGPAEPGDGETVPEDASSTPSGSTSSGEQSSGEQSSDDGDESDDRSSSSRRRRRRRRGGRGGDREAGRPGRAEDEVVALKGSTRLEAKRQRRREGRDAGRRRQVITEAEFLARRESVSRSMIVREQDARTQIAVLEDGVLVEHYVSQQAQASMVGNVYLGRVQNVLPSMEAAFVDVGKGRNAVLYAGEVNWDAAGIEGQPRRIEEALKSGDSVLVQVTKDPIGHKGARLTSQITLAGRYLVFVPGGGMTGISRKLPDTERNRLKKILRDVVPDGAGVIVRTAAEGASEEELRADVERLQSQWQSINDKAAKSSTSAPALLQGEADMAIRVVRDIFNDDFASLVVEGDRAWSEISTYVEELAPDLRERVSRWTGAQDVFAVHRVDEQLAKGMDRKVWLPSGGSLVIDRTEAMTVVDVNTGKFTGSGGTLEETVTRNNLEAAEEIVRQLRLRDIGGIIVIDFVDMVLESNRDLVLRRLVECLGRDRTKHQVAEVTSLGLVQMTRKRVGQGLVEAFSSTCEHCKGRGFIVHEHPVEKSPAPAGEGDGGSKRSRRKRGGAKKGAEESSGSDVPKLPDDKSKERAAVKATLATIAAAAAHAHEHEDEDRSAASGAEAADASAAATADVPEPTPVFPDPEAPEPTVPVAEAPADAPQAGSTPDVVEPVPAAEPETAAEPELADADAAQPAAEPADPPRSEPARADEPAKGAGAEEAPEQVEGEAAAVTEKGNANANANANA
AK018_03292579tdk_2COG1435Thymidine kinaseATGTTCGCGGGCAAGACCTCGGAGCTGGTGCGACGGGTGGAGCGCGCGCGGATCGCCGGCCTGGAGGTCCTGGTCGTGGCGCACGAGGTCGACACGCGCAGCGGCCCGGGCCGGCTGGTGACGCACTCCGGGCTCGAGGTCGCCTCCCGCGCCGTCGGCGAGGCGACCGAGATCCCGGGGCTGGTCGTGCCCGGGACGCGGATGGTCGCCGTGGACGAGGCGCAGTTCTTCGGCGCGGATCTCGTCGCCGTGGTCCAGCGGCTCGCGGACGACGGCGTCGACGTCGTGGTCGCCGGGCTGACGGTGACGTTCGACGGTCGGCCGTTCAGCCCGGTCCCGGAGCTCATGGCTCTGGCCGAGCACGTGGTCCGGCTGACGGCGGTGTGCTCGGTCTGCGGGCGCGAGGCCGCGTACCACGTCCGGACACCGGGCGGCGGGCGGTCGGGTGACGCCCTCACCGCGATGTCCGCGCACGTGGGCGGCGCCGAGGCCTACCAGGCGCGCTGCCGCAGGCACCGGGTCGTGGACGGTCCCGGCCCGGACGCGGGTCAGTCCTCGACGAGCGGGACGAAGCTGTAGMFAGKTSELVRRVERARIAGLEVLVVAHEVDTRSGPGRLVTHSGLEVASRAVGEATEIPGLVVPGTRMVAVDEAQFFGADLVAVVQRLADDGVDVVVAGLTVTFDGRPFSPVPELMALAEHVVRLTAVCSVCGREAAYHVRTPGGGRSGDALTAMSAHVGGAEAYQARCRRHRVVDGPGPDAGQSSTSGTKLPGPT0021390_3145DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857NANA
AK018_03293615pcm_2Protein-L-isoaspartate O-methyltransferaseATGACGCCAGCCCTGCCGCCGGCCGGCGCCGGTTCCGCGAACGGCACGCCCGACGCCGTCACGGCGGCGATGCGTGCGGTCGACCGCCGCGGGTTCCTCCCCCGCGCCCAGCACCGGTGGGCGGCCGACGACCGCCCGCTGCCCATCGGGTACGACCAGACATGCTCCCAGCCGTCGACCGTGGCGGCCATGCTCAGGCTGCTCGGCGTCGGACCGGGGATGCACGTGCTGGACGTCGGTGCCGGGTCCGGGTGGACGACGGCGCTGCTCGGACGGCTGGTCGGGCCGACGGGGTCCGTCCTGGGCGTCGAACGGATCGCCGAGATCGCGGCGTGGGGCGCGGCCAACGTCGCGCGGGCCGGGCTGCCGTGGGCCCGTGTGCGGACCGCGCGCCGTGGCGAGCTGGGCGCCCCGCGCCCGGACGGCTGGGACCGGGTGCTGGTCTCGGCCGCGGCCGCCAGGATGCCCGCGGCGCTCGTCGACCAGGTCGCGCCCGGCGGCCGGATGGTGGTGCCCGTCGTGCACGTCATGACCGTCGTCGACCGCGATCCGGACGGCACCGTCCGCACCACCGAGCACGGCACCTACAGCTTCGTCCCGCTCGTCGAGGACTGAMTPALPPAGAGSANGTPDAVTAAMRAVDRRGFLPRAQHRWAADDRPLPIGYDQTCSQPSTVAAMLRLLGVGPGMHVLDVGAGSGWTTALLGRLVGPTGSVLGVERIAEIAAWGAANVARAGLPWARVRTARRGELGAPRPDGWDRVLVSAAAARMPAALVDQVAPGGRMVVPVVHVMTVVDRDPDGTVRTTEHGTYSFVPLVEDNANANANANA
AK018_03294309rplU_2COG026150S ribosomal protein L21ATGGTGTACGCGATCGTCAAGGCCGGTGGCCGTCAGGAGAAGGTGTCCGTCGGGGACATCGTCGTCATGGACCGGCTCGAGAGCTCGGCCGGTGACACCGTCGAGCTCCCCGCGATCCTGCTCGTGGACGGGGAGAAGGTGACCACCGACGCCACCAAGCTCGCGAAGGTGAAGGTCACCGCCGAGGTCGTCAAGGACGCCAAGGGTCCGAAGATCTCGATCCAGAAGTACAAGAACAAGACCGGTTACAAGAAGCGCCAGGGTCACCGTCAGCAGCTGACCCGCCTGAAGGTCACCGGCATCAAGTGAMVYAIVKAGGRQEKVSVGDIVVMDRLESSAGDTVELPAILLVDGEKVTTDATKLAKVKVTAEVVKDAKGPKISIQKYKNKTGYKKRQGHRQQLTRLKVTGIKNANANANANA
AK018_03295252rpmA_2COG021150S ribosomal protein L27ATGGCACACAAGAAGGGCGCGAGCTCCTCGCGCAACGGCCGCGACTCGAACGCCAAGTCCCTCGGCGTCAAGCGCTTCGGCGGCCAGGTGGTCGGCGCGGGCGAGATCATCGTCCGCCAGCGCGGCACCCACTTCCACCCGGGCGAGAACGTCGGCCGCGGTGGCGACGACACGCTCTTCGCTCTCGCGGCGGGCGAGGTCGCCTTCGGGACGCGTCGCGGCCGCAAGGTCGTCGACATCGTCTCGGCCTGAMAHKKGASSSRNGRDSNAKSLGVKRFGGQVVGAGEIIVRQRGTHFHPGENVGRGGDDTLFALAAGEVAFGTRRGRKVVDIVSAPGPT0019510_13DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019510-icd2-K00030NANA
AK018_032961524obg_2COG0536GTPase ObgATGGCCAGCTTCGTCGACCGTGTCGTGCTGCACGCCTCCGGGGGTGACGGCGGGCACGGGGTCGCCTCCGTGCGCCGCGAGAAGTTCAAGCCGCTCGCCGGGCCCGACGGCGGCAACGGCGGTGACGGCGGCAGCGTGCGGCTGGTCGTGGACGCCCAGACCACCACGCTGCTCGAGTACCACCACTCGCCCCACCGGCGTGCGCCCAAGGGCGGTCAGGGCATGGGTGACGACCGGGACGGCGCCAAGGGTGAGGACCTCGTCCTGCGCGTCCCGGACGGCACGGTGGTCAAGGACCGGGACGGCAACGTGCTGGCCGACCTGGTCGGTGACGGCGCCGAGCTCGTGGTCGCCGCCGGCGGCCGCGGCGGGTTGGGCAACCGTGCCCTCGCCTCGCCGCGCCGCAAGGCGCCCGGGTTCGCCCTGCTCGGGGAACCCGGCGAGGAGCGCGACGTCGTGCTCGAGCTCAAGACGATCGCCGACGTGGCGCTCGTGGGCTTCCCCAGCGCCGGCAAGTCCTCGCTGATCGCGGCGGTCTCCGCCGCGCGTCCGAAGATCGCCGACTACCCGTTCACCACGCTGATCCCGAACCTGGGCGTCGTGCAGGCGGGGTCGTCGCGGTTCACCGTCGCGGACGTGCCGGGCCTGATCCCCGGGGCGAGCGAGGGCAAGGGGCTCGGTCTGGAGTTCCTGCGGCACGTCGAGCGCACCGCCGTCATCGTCCACGTCCTGGACTGCGCGACCCTGGAGCCGAACCGGGACCCGATCACGGACCTCGAGGTGCTCGAGGCCGAGCTCGCCGCGTACGCGGGCGACCTCGGCATCTCCGGCGGGCGGGTACCGCTCACCGAACGTCCGCAGCTCGTGGTGCTGAACAAGATCGACGTGCCGGAGGCCCGCGAGCTCGCGGACTTCGTGCGTCCCGATCTCGAGGCGCGCGGCCTGCGCGTCTTCGAGATCTCCACGGCCTCCCACGAGGGCCTGCGCGAGCTGACGTTCGCCCTCGCCGAGCTCGTCGAGCAGGCCCGCGCGGCCGCGCCCCCGCCGGAGCCGGCGCGCGTGGTCATCCGACCGCAGGCCGTCGACGACGCCGGATTCACGGTGACGCGCCGCCACGACGACCGCACCGGCGGCGTGTACTACCTGGTCCAGGGGCGCAAGCCCGAACGCTGGGTGCGCCAGACCGACTTCAACAACGACGAGGCCGTCGGCTTCCTCGCCGACCGGCTGGCCAAGCTCGGCGTCGAGGAGAAGCTCTTCGCCACGGGCGCCGTCGCCGGCGACGAGGTCCGCATCGGCACCGTGGACGACGCCGTCGTCTTCGACTGGGAGCCCACGCTGTCCACCGGCGCCGAGCTGCTCGGCGCCCGCGGCAGCGACCTGCGCCTCGAGGAGGCCGCGCGACCGACCCGTGCGGACAAGCGGCGTGAGTTCACCGAGCGGATGGACGCCAAGACGGCGGCGCGCGAGGAGCTGTGGACCGAGCGCGAGGCCGGCCACTGGGCGGACCCCACCGACGAGTGAMASFVDRVVLHASGGDGGHGVASVRREKFKPLAGPDGGNGGDGGSVRLVVDAQTTTLLEYHHSPHRRAPKGGQGMGDDRDGAKGEDLVLRVPDGTVVKDRDGNVLADLVGDGAELVVAAGGRGGLGNRALASPRRKAPGFALLGEPGEERDVVLELKTIADVALVGFPSAGKSSLIAAVSAARPKIADYPFTTLIPNLGVVQAGSSRFTVADVPGLIPGASEGKGLGLEFLRHVERTAVIVHVLDCATLEPNRDPITDLEVLEAELAAYAGDLGISGGRVPLTERPQLVVLNKIDVPEARELADFVRPDLEARGLRVFEISTASHEGLRELTFALAELVEQARAAAPPPEPARVVIRPQAVDDAGFTVTRRHDDRTGGVYYLVQGRKPERWVRQTDFNNDEAVGFLADRLAKLGVEEKLFATGAVAGDEVRIGTVDDAVVFDWEPTLSTGAELLGARGSDLRLEEAARPTRADKRREFTERMDAKTAAREELWTEREAGHWADPTDENANANANANA
AK018_032971155proB_2COG0263Glutamate 5-kinaseGTGAACGCCCGGACCCGCTCTGCCCTGCCCGCCGCCCGCCGCGTCGTCGTCAAGATCGGCTCGTCCTCGCTGACGAGGCCCGACGGCCACCTGGACCTGGACGCCCTGCGCGCCCTCGTGGACGTGCTCGCCGCGCGGCGCGCGGCCGGCGGGGAGGTCGTGGTGGTGACCTCGGGCGCCATCGCCGCCGGGATCGGACCCGCCGGCCTGACCTCGCGGCCCCGCGACCTCGCCACCATGCAGGCGTGCGCCATGCTCGGGCAGGGTGAGCTCGTGGCGCGCTACTCCGAGGCGTTCGCCCGGCACGGCATCCGGGTGGGCCAGGCGCTCCTGACGGCCGAGGACACGGTGCGCCGTGCCCGGTACCGCAACGCCCAGCGCTCCCTGGAGAAGCTGCTGGCGCTCGGCGTCGTCCCGGTGGTCAACGAGAACGACGCCGTGACGGTCGACGAGCTGCGGTTCGGCGACAACGACCGGCTCGCCGCGCTCGTCTCCCACCTGGTCCGCGCCGACGCCATGGTGCTGCTCACCGACGTCGACGGCCTGCACGATGCGCCGCCCAGCCGGCCGGGTGCCCGGCGCATCGGGCACGTCGAGGACCTCGCGGACGTCGCCGGCGTGGAGGTCACCGCCCGGGGCAGCGCCGTGGGGACCGGGGGCATGGTCACCAAGCTCGAGTCGGTGCGGATCGCGACCTCCGCCGGGGTACCCGTCGTGCTGACCGCCGCAGGCCGGGTCGCCGACGCGCTCGCGGGCCGGGACGTGGGCACCTTCTTCGCCGCGGGGGGCCGCCGGACCACGGCCCGGCGCCTCTGGATCGCGCACGCGGCACGGCCGGAGGGACGCCTCCACCTGGACGCCGGAGCGGCCCGCGCCGTCCTCGGCGGGCGCGCCTCCCTGCTCCCGGCAGGGATCACGCGCGTCGAGGGCGACTTCGAGGCCGGTGACCCCGTCGAGCTGGTCGCGCCGGACGGCACGGGGGTCGCCCGCGGGCTGGTCGCCTACGACTCCGGCGAGATCCCGACCCTGCAGGGCCGGTCCACCTACGAGCTGCGCGCCGAGCTGGGCGAGGGGTACGACCGTGAGGTCGTGCACCGCGACGACCTCGTGCTCGAGGGGCGGAACGGCCTGTCCTCACCGACCACGGCGTCGTAGMNARTRSALPAARRVVVKIGSSSLTRPDGHLDLDALRALVDVLAARRAAGGEVVVVTSGAIAAGIGPAGLTSRPRDLATMQACAMLGQGELVARYSEAFARHGIRVGQALLTAEDTVRRARYRNAQRSLEKLLALGVVPVVNENDAVTVDELRFGDNDRLAALVSHLVRADAMVLLTDVDGLHDAPPSRPGARRIGHVEDLADVAGVEVTARGSAVGTGGMVTKLESVRIATSAGVPVVLTAAGRVADALAGRDVGTFFAAGGRRTTARRLWIAHAARPEGRLHLDAGAARAVLGGRASLLPAGITRVEGDFEAGDPVELVAPDGTGVARGLVAYDSGEIPTLQGRSTYELRAELGEGYDREVVHRDDLVLEGRNGLSSPTTASPGPT0014220_701DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014220-proB-K00931NANA
AK018_032981326proA_2COG0014Gamma-glutamyl phosphate reductaseATGACCACGACGTACGAGTCCACTCCCGCGCCGACCCACGACGGGTCCGGGCGACCGGGGGACGACGTCGTCGCCGCGGTGCGCGACGTCGCCCGGAACGCGCAGGTCGCCTCCCGGACCCTCGCCACCGCCACCCGCGCGACCAAGGACGCCCTCCTGCACGCCCTCGCCGACGCACTGGTGGCGGCCGACGAGGAGATCGTGGCGGCCAACGCCGACGACCTCGAACGGGGCCGCGACGCCGGGATGGCCGAGGGGCTGCTGGACCGCCTCGCCCTGACCCCGGAACGCGTCGCCGCGATCGCGGGCGCCCTGCGCGAGCTCGCCGGCCTGCCCGACCCGGTCGGGGAGGTGGTGCGGGGACAGACCCTGCCCAACGGGCTGCGGGTACGCCAGCTGCGGGTGCCGATGGGCGTGGTCGGGATGATCTACGAGGCCCGTCCGAACGTCACCGTCGACGCCGCCGGCCTCGCGCTCAAGTCCGGCAACGCCGTCGTCCTGCGCGGCGGCTCCGCGGCCGCGTCGTCCAACACGGTGATCGTTGACGTCATGCGCCGGGCCCTGGAGGCGGAGGGACTGCCGGCCGACCTCGTGCAGTCGATCGACGGGTTCGGCCGCCCCGGCGGCGTGGCGCTCATGCAGGCCCGCGGCCTGGTGGACCTGCTCGTCCCGCGCGGCGGCGCCGACCTGATCCGCACCGTCGTGGAGCAGTCGACCGTGCCCGTCATCGAGACGGGTACCGGCAACGTGCACGTGTACGTCGACGCGACCGCCGACGTCGCGTCCGCGGTCGAGATCGTGATGAACGCCAAGACGCAGCGCGTCGGCGTGTGCAACGCCGCCGAGACGCTGCTCGTGCACGCCGACGTGGCCGACCGGTTCCTGCCCGCGGCGCTCGCGGCCCTGGGCGGCGCCGGGGTGGTGCTGCACGCCGACGACCGCACCGTGTCCCACGCGCCCGAGACCGTCGAGATCGTGCCCGCCACCGAGGACGACTGGGCCACCGAGTACCTGGCCGCCGAGCTCGCCGTGCGGGTGGTCGATTCGCTCGACGAGGCCATCGAGCACATCCGCACCTGGACGTCCGGCCACACCGAGGCGATCGTCACGCAGGACCTGGCGGCCTCGGAGCGGTTCGTGGCCGAGCTGGACTCCGCCGCGATCATGGTCAACGCCTCCACCCGCTTCACGGACGGCGGCCAGCTTGGCATGGGTGCGGAGGTGGGCATCTCCACCCAGAAGCTCCACGCCCGGGGGCCGATGGGCCTCGCCGAGCTGACCACGACCAAGTGGGTGGTGCACGGGGACGGGCACGTGCGGCCCTGAMTTTYESTPAPTHDGSGRPGDDVVAAVRDVARNAQVASRTLATATRATKDALLHALADALVAADEEIVAANADDLERGRDAGMAEGLLDRLALTPERVAAIAGALRELAGLPDPVGEVVRGQTLPNGLRVRQLRVPMGVVGMIYEARPNVTVDAAGLALKSGNAVVLRGGSAAASSNTVIVDVMRRALEAEGLPADLVQSIDGFGRPGGVALMQARGLVDLLVPRGGADLIRTVVEQSTVPVIETGTGNVHVYVDATADVASAVEIVMNAKTQRVGVCNAAETLLVHADVADRFLPAALAALGGAGVVLHADDRTVSHAPETVEIVPATEDDWATEYLAAELAVRVVDSLDEAIEHIRTWTSGHTEAIVTQDLAASERFVAELDSAAIMVNASTRFTDGGQLGMGAEVGISTQKLHARGPMGLAELTTTKWVVHGDGHVRPPGPT0014215_323DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014215-proA-K00147NANA
AK018_03299153hypothetical proteinGTGCTGCACACCGTCGTCCTGGCCGCCGAGGAGGCCGCCGAGCACTCCGGATACGCCATCTCGCCCATCGCGCTGGGCGTCCTCGCCTTCGGCGGGTTCGTCGTCGCCCTGCTGGCGACGTACGCGTTCCGCAACGCCGGCAACAAGCACTGAMLHTVVLAAEEAAEHSGYAISPIALGVLAFGGFVVALLATYAFRNAGNKHNANANANANA
AK018_03300573nadD_2COG1057putative nicotinate-nucleotide adenylyltransferaseATGGGTGGGACGTTCGACCCGATCCACCACGGGCACCTGGTGGCCGCGAGCGAGGCCGCAGCACTCCTCGACCTCGACGAGGTCGTCTTCGTGCCCACCGGCAAGCCGACGTTCAAGCAGGACACCCGGGTCTCCTCCGCGGAGGACCGCTACCTGATGACGGTGATCGCCACCGCGTCCAACCCGCGGTTCACCGTCAGCCGCGTGGACATCGACCGGCCCGGCCTCACCTACACGGTCGACACGCTGCGGGACCTGCGCACGGCCCGCCCGGACGCCGATCTGTACTTCATCACCGGCGCCGACGCTATCGAGCAGATCCTCACGTGGAAGGACGCCGACGAGCTCTGGCGCAAGGCGCACTTCGTGGCGGTGACCCGACCCGGTCACCCGCTCACGGTCGAGGGTCTTCCCCGGGACGGTGTGACGACGCTCGAGGTGCCGGCGCTGGCGATCTCGTCGACGGACTGCCGTCGTCGGGCCGCCGCGGGTCAGCCGGTCTGGTACCTGGTGCCGGACGGCGTCGTCCAGTACATCGCCAAGCACGGTCTGTATCGAGGTCTCGATGAGTGAMGGTFDPIHHGHLVAASEAAALLDLDEVVFVPTGKPTFKQDTRVSSAEDRYLMTVIATASNPRFTVSRVDIDRPGLTYTVDTLRDLRTARPDADLYFITGADAIEQILTWKDADELWRKAHFVAVTRPGHPLTVEGLPRDGVTTLEVPALAISSTDCRRRAAAGQPVWYLVPDGVVQYIAKHGLYRGLDEPGPT0013435_2951DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969NANA
AK018_033011311hypothetical proteinATGAGTGACAACACGTCCCGGCCCCTGACACGCCGGGAGATCCGCGAACGCGAGCGTGCCGCGGCGGCCGCGCAGGAGGCGTCGGCCGGCTCGGCGCCGTCACCGGGCGTCCGTCCGTCCGCGTTCGGCAGCGGCGCCCCCGCGAGCCCGCCGGTGCCCGCGCCGGCCCCCGCCCCCGCCACTGGCGGCCCGGGCGGCCCGGGGCGTCCGGCCGCCGCGCCGTCACGACGTTCGCTGCGCGAGCAGTCCGACCCGCCCGCCGCACCGTCGCCGGCGCCGACCGTCCGCCCGCCCAGCACGTCCGGCGGGGTGCGGGGCCTGGACGAGACCGGACGGCTGACGCCGGTCCAGCGACCGGGAGGCTCCACCGGCCCCGGCTCCGGCGACGGCTCCGCGCCCGCCTTCCCGTCGACCGGTGGTTCCAACGGTGCTCCGCCGCGCCGCACGGCGACCCGCGCCGGGGCGGGCGGCGCGACCGCGCGCCCCTCGGCCTTCGGCGGTGGCCCGACGGCGGCGCCGGGCACCGGGCGAACTACAGCACCCGCGGCGGGGGACAGCGGTCCGGGTGCCCCCGCACCTGGCACCGGAGCACCCCCGGCACGCTCGCCGTTCGGTCCGACGGCGGGGTCGTCGGAGCCGACGGGCCCGGGGGAGGGCACGACCCCGTCGGCACCCCGAGCCGAGGCCTCGCCGGCGCCCGCGCCGTCGTCGCCGTTCGCCGGCTCCGCCCCGGGCCGCCGCTCGGCGTTCTCCGCCCCGTCGGCGAGCGCCGGCGCCCAGGCACCCGCTCCCGGTCCGGCGGCCGGAGGCACGACCGCTCCGCCGTCACCCTTCGGCGCCGGCCCCGGCGCCACGTCGGCGGGGGCCGTCGAGAGCGCCGACGCCTCGGCGCCGCCCGCGTGGCCGGCTGCGACCGGCAGCGCCCCCTCGGCGGCCACGAGCGGTGCGAGCGCGCCGCCGTCGTTCCCCTGGGGAGGCGGTGCCCCCGCGGAGGGCGCGGGCGCCGTCCAGCCGGCGGCGGGCGCGTCGCCGTTCGGCGCCGTGGTCGGGGACGCTCCGGCCGGCGCGGGAGCGCCGGGAGCGCTCGCCGTGCCGATCTCCGAGGAAGAGGACGACGACTGGGAGGAGTCCGAGCCGTCGTACACGTGGTTGCACTACATCGTGCTGGTGGTCGTCGCGTTCGTGCTGGGCATGCTGATCTGGAACCTGCTGCTCAAGGAGCCGGACCCGGACGACTTCGGCACGGAGGAGGCGGCGCCCGCGGTGGCCGTCGCCGTCGCACCCGTTCCCGGCGCCGGAGGAGCACGATGAMSDNTSRPLTRREIRERERAAAAAQEASAGSAPSPGVRPSAFGSGAPASPPVPAPAPAPATGGPGGPGRPAAAPSRRSLREQSDPPAAPSPAPTVRPPSTSGGVRGLDETGRLTPVQRPGGSTGPGSGDGSAPAFPSTGGSNGAPPRRTATRAGAGGATARPSAFGGGPTAAPGTGRTTAPAAGDSGPGAPAPGTGAPPARSPFGPTAGSSEPTGPGEGTTPSAPRAEASPAPAPSSPFAGSAPGRRSAFSAPSASAGAQAPAPGPAAGGTTAPPSPFGAGPGATSAGAVESADASAPPAWPAATGSAPSAATSGASAPPSFPWGGGAPAEGAGAVQPAAGASPFGAVVGDAPAGAGAPGALAVPISEEEDDDWEESEPSYTWLHYIVLVVVAFVLGMLIWNLLLKEPDPDDFGTEEAAPAVAVAVAPVPGAGGARNANANANANA
AK018_03302444rsfS_2Ribosomal silencing factor RsfSATGACCGCGACCGACCACGCCGTGGAGATGGCCGTCGTCGCGGCCCGGGCGGCCTCGGACCGCAAGGCGCAGGACGTCGTCGCGCTGGACGTGAGCGACCAGCTGGTGCTGACGGACGTGTTCGTCATCGTCTCCGGCACCAACGAGCGCCAGGTGGTCGCCGTCGTCGACGCGGTCGAGGAGGCGATGCACCGTGCCGGCGCAACGGCGACGCGTCGCGAGGGCAAGGCGGAGGGCCGCTGGGTGCTGCTCGACTTCGGCGACGTCGTCGTGCACGTCCAGCACGCCGAGGACCGCACCTACTACGCCCTGGAACGGCTGTGGAAGGACTGCCCCGCGGTCCCGCTGCCGGCCGACGCCCGCGGTGAGGACCCGGCCGCGGCGCGCGCCGAGTTCGGCGACGGTCCCGGCGACGCCGCGATCCGCCTGACCGGGGAGATGTGAMTATDHAVEMAVVAARAASDRKAQDVVALDVSDQLVLTDVFVIVSGTNERQVVAVVDAVEEAMHRAGATATRREGKAEGRWVLLDFGDVVVHVQHAEDRTYYALERLWKDCPAVPLPADARGEDPAAARAEFGDGPGDAAIRLTGEMPGPT0013435_149DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969NANA
AK018_03303687gpgP_2COG0406Glucosyl-3-phosphoglycerate phosphataseGTGACCGCCGGTACCGTCGTCCTGCTGCGGCACGGACGGACCGCCTACAACGCGACCCTGCGGCTGCAGGGCCAGATCGACATCCCGCTGGACGAGGTCGGACGGTGGCAGGCCGAGCAGGGGGCGGTGGCGCTGTCGGCCTCGCACCGCGCGGCGCGCGTCGTCTCGTCGGACCTGGAGCGTGCCTCCGACACGGCGGCCGCCTACGCCGACCAGGTGGGCGTGCCCGTGGAGACCGACCCGCGGCTGCGCGAGCGGTCGTTCGGCGTGTGGGAGGGGCTGACGTCCGAGGAGATCGCCGAGCGGTGGCCCGCCGAGCACGGCGAGTGGCGCCGGGGCGGGGAGCCCGCCGGCGTGGGCGCGGAGACCAAGGCGGACGTGGCGGAGCGCATGGCGAGAGCCGTGCGGGAGCACGCCGAGGCGTTGAGCAGTGACGAGTGTCTCGTCGTCGTCTCGCACGGCGCCGCGATCTCCCTGGCCATCACGGGCCTGCTCGAGCTGGACGCCACGGCCTGGCGGGGCATCTCCGGGATGCACAACGTGCACTGGTCCCACCTGCACCGATCCGCTCCGGGCGCCGTGCCGGGCTGGCGGCTCGTGGCCCACAACGTGGGTGCGGGCTACCCGCTCGACCGGTGGCGGGCGGGTCCGCACGCGGATTTGGAACCTGAGCCGAAGTCTGCCTAAMTAGTVVLLRHGRTAYNATLRLQGQIDIPLDEVGRWQAEQGAVALSASHRAARVVSSDLERASDTAAAYADQVGVPVETDPRLRERSFGVWEGLTSEEIAERWPAEHGEWRRGGEPAGVGAETKADVAERMARAVREHAEALSSDECLVVVSHGAAISLAITGLLELDATAWRGISGMHNVHWSHLHRSAPGAVPGWRLVAHNVGAGYPLDRWRAGPHADLEPEPKSANANANANANA
AK018_03305333hypothetical proteinATGGCGAACGTGGACGACCTCGTGGAACGGCACCTGGCGGCGGCGAGGACGGACGCCCACGGGCGCAGCGCCGAGGTGGTGGTGCACGACGGCCCCTTGCGGCAGACCGTCCTGGCGCTGAGCGCCGGCACGGAGCTCGGCGAGCACAACTCACCGCCCGCCGCCTCGGTCCTGGTCCTGCACGGCAGCATCCGGGTGACCGCCCTGGACGGCGAGGTCGTGCTCGCCGGTCAGCTCCGCGTCCTGACCCATCAGCGGCACTCCGTGGTCGCGCTGGAGGACTCGGCGTTCCTGCTCACGACGGTCACGAGCATCCCGCACCAGGCCGACTGAMANVDDLVERHLAAARTDAHGRSAEVVVHDGPLRQTVLALSAGTELGEHNSPPAASVLVLHGSIRVTALDGEVVLAGQLRVLTHQRHSVVALEDSAFLLTTVTSIPHQADNANANANANA
AK018_033061245ectB_3Diaminobutyrate--2-oxoglutarate transaminaseATGGAGGCGTTCGAGAAGTGGGAATCAGAGATCCGTGGGTACAGCCGGACATATCCGACCGTCTTTGCGTCGGCGTCCAACGCGCGGCAGACCGATGAGTCCGGACGGAGCTTCATCGATTTCTTCGCCGGTGCGGGAGTGCTGAACTTCGGGCACAACAATCCGCGCATGAAGCGGGCCATGATCGATTTTCTCGAGGCGGACGGCGTCGCGCACAGCCTCGACATGGCCACGACGACGAAGCGGGACTTCATCGAGAAGTTCGCCGAGACCGTCCTGGCCCCCCGGGACATGTCCGTGCGGATGCAGTTCATGGGCCCGACGGGGACGAACGCGGTCGAGGCCGCGCTCAAGCTCGCCCGGCGCGTCACGGGACGGCGTGACGTGGTGGCCTTCACCAACGGGTTCCACGGCATGACCCTCGGCTCGCTGGCGCTGACGGCCAACGACTACTTCCGTGCCGCGGCCGGGGTTCCGCTGGACCACGTGGTGCGCCTGCCGTTCGAGACGGCGCCCGGAGGCGGCCTGGAGCAGCTCGCGGACTTCCGCGCCCTGCTCGAGGACTCCTCGAGCGGCATCCTGCCGCCGGCGGCGTTCGTGGTCGAGGTGATCCAGGCCGAGGGCGGGGTCCACGTGGCCAGCGCCGAGTGGCTGCGCGAGGTGCAGCGGCTCGCGCACGACGTCGGGTCCCTGTTCGTCATCGACGACATCCAGGTGGGCTGCGGCCGCACGGGCAGCTACTTCAGCTTCGACGGCATGGGGCTCGACCCCGACATCGTGTGCCTCGCCAAGGGCATCGGCGGGTTCGGGACGCCGCTGGCGATGAACCTCGTCAAGCCCGAGCACGACGCGCACTGGTCGCCCGGCGAGCACACCGGGACCTTCCGGGGCCAGGGCCTGTCCTTCGTCGCGGGCCGCGAGGCCCTGACCTACTTCGACGACGACGCGCTCATGGACCGGGTGCACGCCCGCAGCGAGGTGATGGTCGCCGCGCTGACGCGGATCGCCGATGAGGCGGACGCCGGGTTCGACGTGCGCGGGCGAGGCATGATCCAGGGCCTCGACGTCGGCGACGGCGCCCTGGCCAAGGCCGTCACCAAGGCGTGCTTCGACGACGGCCTGCTCATCGGGCCGTGCGGGACCGGTGGCCGCGTGCTGAAGCTCATCCCGCCGTTGACCATCGACGACGAGGATCTCACCGAGGGTCTGCAGATCCTCACCTCCGCCGTCCACAGCACCATCTGAMEAFEKWESEIRGYSRTYPTVFASASNARQTDESGRSFIDFFAGAGVLNFGHNNPRMKRAMIDFLEADGVAHSLDMATTTKRDFIEKFAETVLAPRDMSVRMQFMGPTGTNAVEAALKLARRVTGRRDVVAFTNGFHGMTLGSLALTANDYFRAAAGVPLDHVVRLPFETAPGGGLEQLADFRALLEDSSSGILPPAAFVVEVIQAEGGVHVASAEWLREVQRLAHDVGSLFVIDDIQVGCGRTGSYFSFDGMGLDPDIVCLAKGIGGFGTPLAMNLVKPEHDAHWSPGEHTGTFRGQGLSFVAGREALTYFDDDALMDRVHARSEVMVAALTRIADEADAGFDVRGRGMIQGLDVGDGALAKAVTKACFDDGLLIGPCGTGGRVLKLIPPLTIDDEDLTEGLQILTSAVHSTIPGPT0014050_1577DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836NANA
AK018_033071233doeA_2COG0006Ectoine hydrolaseTTGAAGCAGCGCGACGACATGACCTTCCCCTTCGAGGAGTACCAGCGGCGGCTGGACGAGCTGCGCGGGCGCATGGCCGACCGCCTGCTCGACGCGGTGGTGATCACCGACCCCGAGAACCTGATGTACCTCACGGACTACCAGACCTCGGGATATTCGTTCTTCCAGGCACTCGTCGTGCCGCTGGAAGGCGAACCCTTCATGATCACCCGTGCGATGGAGGAGTCGAACGTCTATGCCCGGACGTGGGTGGAGATGACCCGCCCCTATCCGGACACCGGCGACGCCATCCAGTCGCTCGTGCAGTCCTTGCGGGAATTCGGGCTGCACACGAAGGACGTGGGTTACGAGCGCAACAGCTACTACTTCCCGGCCTATCACCAGGACTACATCCACACCGCGTTCACCGAGGGGCGGCTCCTCGACTGCTTCGGCATCGTCGAGGAAGGGCGGTTGTGCAAGTCCGAGGTCGAGATCGAGATCATGGGCAAGGCCGCGGCGGCGACCGAGGCCGGCATGAGCGCCGGGATCGAGGCCTGCGCGGCCGGGGTCAGCGAGAACGAGATCGCGGCGGAGATCAGCGCCGCGATGTTCCGCGCGGGCGGGGAGTTCCCGGCCGTGATGCCCTACGTCACCTCCGGGCCGCGCAGCATGATCGGGCACGCCACCTGGGAGGGGCGTGTCGTCCAGCCGGGCGAGCACGTGTTCCTCGAGGTGGGCGGGTGCTTCCGGCGCTATCACACGGCCATGATGCGCACCGTGCTGCTCGACGAGCTGTCGCCGTCGATGCATGCCGCCCAGGAACGCATGAAGCTGGCCCTGGCGGAGGTCAAGGCGGCGATGCGTCCCGGTCTGACCGTCTCGGACGCCGACAACATCGTGCGCAGCATCATCACGGACAACGGGGTGGGTGCCCGGCTGGTCACCCGCTCGGGCTACTCGATCGGCATCGCGTTCCCCCCGAGCTGGGACGAGGGCTACATCGCCAGCCTCAACCAGGGCAACCCGACGATCCTGCGCGAGGGCATGACGTTCCACATCATCCCGTGGATGTGGGGCGTCGACGGGGACAAGACCGTCGGGATCTCGGACACGGTCCACGTCACCGCGCGCGGGTGCGAGTCCTTCTTCACGATGGGCGAGGACTTCACGTGCAAGCCGGAGCACGCCGCGAGCCGGGCGTCCACCGACGTCGACGGCGCCACGCCCATCCGTCCCGACGTCGTCGCCTGAMKQRDDMTFPFEEYQRRLDELRGRMADRLLDAVVITDPENLMYLTDYQTSGYSFFQALVVPLEGEPFMITRAMEESNVYARTWVEMTRPYPDTGDAIQSLVQSLREFGLHTKDVGYERNSYYFPAYHQDYIHTAFTEGRLLDCFGIVEEGRLCKSEVEIEIMGKAAAATEAGMSAGIEACAAGVSENEIAAEISAAMFRAGGEFPAVMPYVTSGPRSMIGHATWEGRVVQPGEHVFLEVGGCFRRYHTAMMRTVLLDELSPSMHAAQERMKLALAEVKAAMRPGLTVSDADNIVRSIITDNGVGARLVTRSGYSIGIAFPPSWDEGYIASLNQGNPTILREGMTFHIIPWMWGVDGDKTVGISDTVHVTARGCESFFTMGEDFTCKPEHAASRASTDVDGATPIRPDVVAPGPT0006760_908DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006760-opaA|pepQ-K01271NANA
AK018_033081383sad_3COG1012Succinate semialdehyde dehydrogenase [NAD(P)+] SadATGCTGACTGCCACCGATCCGACCACCGGACGCGTCGTGCGCGAGGTGGAGCCGTTGGACGCAGAGGGGGTCGAGGCCGTCCTCGCCGCGGCCGAGGCCGCCCGCCCCGCCTGGGAGAGGCTGGGCCTGGCGGGCCGGGCCGAGGTGCTGCGGGCCGTGGCCGCCCGGCTGCGCGAGCGGACCGAGGAACTGGCGCCGCTGATGACCGAGGAGATGGGCAAGCCGATCTCCGAGGCGCGGGGCGAGGTCGCGAAGGCGGCGTGGTGCCTGGAGCACTACGCCGACCACGGCGCCGAGTACCTGGCTGACCAGGTGCTGGAGTCGGACGCGTCCCGCAGCTACGTGCAGCACCTGCCGCTCGGCACCGTCCTGGGGGTGCTGCCCTGGAACGCCCCGTTCTGGCTGGCCTCGCGGTTCGCGGCGCCGGCGCTCATGGCGGGCAACACGGCGCTGATGAAGCACGACCCGCACGTGCCCGGGTGCGCGGCCGCGATCGGTGCGGCGTTCGCCGACGAGATCGAGCGCGCCGGGCTACCGGCGGGGGTGTTCGCGAACCTGCCGCTCGAGACGCCGCAGGTCGAGGCCGTGATCCGCGACCCCCGTGTCGACGCGGTCTCGTTCACGGGGTCGGCGCGCGGTGGGTCGGCGGTGGCGAGCATCGCCGCCAGCGAGATCAAGCCGACCGTCCTGGAGCTCGGCGGGTCCGACCCGAGCATCGTGCTGTCCGACGCGGACCTGGACGTCGCCGCGGACACCATCACGCTGTCGCGCATCATCAACGCCGGCCAGTCGTGCATCGCGGCCAAGCGGATCATCGTCGAGGAGTCGGTGTACGAGTCGTTCGTGGACCGGCTCAAGGTCCGGCTCGAGAAGCTGACCCTGGGCGATCCTGCCGCGGAAAGCACCGACGTCGGGCCCATCGCGCGCGCCGACCTGCGCGAGGAGCTGCACCGGCAGGTGACCGAGACGGTCGACGCCGGGGCGCGGCTGCTGCTGGGCGGTCGGCTCCCGGACGGCGACGGCTACTTCTACCCGGTGACGATGCTCGCGGACGTCGGCGAGTCGATGGCGGCGTGCCGGGAGGAGACGTTCGGGCCGGTGATGGCCGTGATGCCCGCGGCCGACGCGGAGGAGGCCCTGGCGATGGCCAACCGCACGCAGTACGGTCTCGCGGCCGCGGTGTGGTCGACGCCGGAGCGCGGCGAGGCGATGGCCCGTCGGATCCAGGCGGGTCAGGTGGCGGTGAACGGCATCGTCAAGACCGACCCCCGCCTGCCGAGCGGCGGGATCAAGCGGTCCGGGTACGGCCGTGAGCTCGGTCCCCACGGGATCCGCGAGTTCGTCAACGCCCAGCAGGTGTGGGTCGGCCCGCGGCGGGACTGAMLTATDPTTGRVVREVEPLDAEGVEAVLAAAEAARPAWERLGLAGRAEVLRAVAARLRERTEELAPLMTEEMGKPISEARGEVAKAAWCLEHYADHGAEYLADQVLESDASRSYVQHLPLGTVLGVLPWNAPFWLASRFAAPALMAGNTALMKHDPHVPGCAAAIGAAFADEIERAGLPAGVFANLPLETPQVEAVIRDPRVDAVSFTGSARGGSAVASIAASEIKPTVLELGGSDPSIVLSDADLDVAADTITLSRIINAGQSCIAAKRIIVEESVYESFVDRLKVRLEKLTLGDPAAESTDVGPIARADLREELHRQVTETVDAGARLLLGGRLPDGDGYFYPVTMLADVGESMAACREETFGPVMAVMPAADAEEALAMANRTQYGLAAAVWSTPERGEAMARRIQAGQVAVNGIVKTDPRLPSGGIKRSGYGRELGPHGIREFVNAQQVWVGPRRDPGPT0001580_6183DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
AK018_03309654hypothetical proteinGTGACCAGCACGGGACGGCCCGCCGACGCAGCGCTGCGCGTCGTGCGGGCCGTCGTGCTCGCCGCCACGACGCTGGCATGCGCCGTCGCTGCGCACGGTGTCGCCGGGGGTTCCGTGCCGGGGGCGGCCGGCCTGATGCTGCTCGGTGCACTCACGCTCGCGGTCACGACCGTCCTCGGTCGTTGGCGGCTGAACCCCTGGACGCTGGCCCCCACATTGGCCGGGCTCCAGGTCGTGCTGCACACCGGATTCGGGTGGACGGCCGGCACGGCGACGGCGCCACCGGCGGCGGTGCAGGGAGTCCACGCGGCGCACCACGGCCACCAGGCGATCGCGGGGACGGCGCCCCTGAGCACGTCCGCGGCGCTGGCGCCGGCGATGGAGCACCACGTCCACCAGCATCCGGCGATGATCGCCGCCCACGTCCTCGCCGTCGTGGTGACCACGGCCCTCGCGGTGGGCACGGAGCGCGCGATGGCGCGCACGGCGCGTCAGGTCGTGGTCGTGCTGCGCCACCTGCTGCAGTCGATCCCGCCCGTCGGGCCACGGCCTCGACCGGTGGTACCCGTCGTGCGGGTCCGCCTGCTCGTGACCCGCGCGCTCCTGTCGGCGCGGCCCCACCGGGGTCCGCCGCTGGTCGCCCGCACCGCCTGAMTSTGRPADAALRVVRAVVLAATTLACAVAAHGVAGGSVPGAAGLMLLGALTLAVTTVLGRWRLNPWTLAPTLAGLQVVLHTGFGWTAGTATAPPAAVQGVHAAHHGHQAIAGTAPLSTSAALAPAMEHHVHQHPAMIAAHVLAVVVTTALAVGTERAMARTARQVVVVLRHLLQSIPPVGPRPRPVVPVVRVRLLVTRALLSARPHRGPPLVARTANANANANANA
AK018_033101467hypothetical proteinATGACCACCGCACCACCGACCGGGACGACGCACGCCACGTCTCCCGACCCGACGTCGGCCCCGAACGACCCGCCGCCGGGTCCCCAGGGGTCGCGCCTCTGGGCCGCCCTGCACCCGATCCTGCTGCGGCTGCACTTCTACGCCGGCATCCTCGTCGGCCCGTTCCTGCTCGTCGCCGCGACGACGGGCCTGCTGTACACGCTCGCGCCGACGATCGAGCGGGTGATGTACGGCGACCTGCTGGTGGTCGAGGACGTCGGCGCCACGGCGGCGCCGCTGTCGGAGCAGGTCGGGTCGGCCCGGCAGGCACACCCCGAGGGCACCGTCAGCGTCGTGGAGGTGGCGGGCGACCCGGAGACCACCACCCGCGTCACGCTGGCGGTCGACGGGCTGCCCGAGGGCGCCGCGCGCACGGTGTTCGTCGACCCGTACACCGCCGAGGTGGCCGGGAGCGAGCTCACGTACGGACCCTGGTTGCCCGCACGGGAGTGGATTGAGACGCTGCACTCCTCGCTGCACCTGGGTGCCGTCGGCACCTACTACAGCGAGCTGGCCGCCTCGTGGCTCTGGGTCGTCGTGCTCGGCGGCCTGGCCATGTGGATCGCTCGCGCCGTGCGCAGGAAGCGCACGGCCCGCGCGCTCCTCGTGCCGGAGAAGGTCCGGCCCGGGCGGCGGCGGACGCTGTCCTGGCACGGCGTCGTCGGGATCCTCGCCGCGACGGGGCTGATCGTGCTGTCGATCACGGGTCTGACCTGGTCGGAGCACGCCGGCGCCCGCATCGGGGACCTGCGGGCGGCCGTCACGCCGGCGGCGCCCGCCCTCGACACCAGCCTGGCCGGCGAGCCCGCCGGCGGCGGGGGCCACGACCACGACGCGGTCGGGGCGGGGCTGCCCGACGACCACCTGGCCCACGGCGCCTCCTGGGACGGGATGACGGCGGCCGCGCAGGCCGAGGGCCTGGTCGCGCCCTACGACGTCACCCCGCCCACCGGGACCGACCAGGCGTGGACCGTCACCGAGGCGGCGGTGTCGTGGCCGATGGACAACGACTCGATCGCGGTCGACGGGCACTCGGGTGCCGTCGTCGACCGGGTCGACTTCGAGGACAAGCCGCTGCTGAGCAAGCTGACCACGTGGGGCATCTACTTCCATCTGGGCAGTCTCTTCGGCCCGGTGAACCTGGTCTTCCTGGGGGCGACGGCGATCGGCCTGATCGTGCTCGTGGTGCTCGGCTATCGCATGTGGTGGCAGCGTCGGCCCACGCGACAGGCGGGTCGCGGGCCCGGGCCGCTCGTGCGCCGGGGCGCGCTGCGGCGCTCGCCGTGGTGGCTGACCGCCGTGCTGTTCGCCGTGGCCGGCCTGGCCGCCTGGTACGTCCCGCTGTTCGGCGTCACCCTGCTCGGGTTCCTCGTGGTGGACGTCCTGCTCGGGCTGCGCGCCCGCCGTCGTGCAGCTTCTGCCGCCTGAMTTAPPTGTTHATSPDPTSAPNDPPPGPQGSRLWAALHPILLRLHFYAGILVGPFLLVAATTGLLYTLAPTIERVMYGDLLVVEDVGATAAPLSEQVGSARQAHPEGTVSVVEVAGDPETTTRVTLAVDGLPEGAARTVFVDPYTAEVAGSELTYGPWLPAREWIETLHSSLHLGAVGTYYSELAASWLWVVVLGGLAMWIARAVRRKRTARALLVPEKVRPGRRRTLSWHGVVGILAATGLIVLSITGLTWSEHAGARIGDLRAAVTPAAPALDTSLAGEPAGGGGHDHDAVGAGLPDDHLAHGASWDGMTAAAQAEGLVAPYDVTPPTGTDQAWTVTEAAVSWPMDNDSIAVDGHSGAVVDRVDFEDKPLLSKLTTWGIYFHLGSLFGPVNLVFLGATAIGLIVLVVLGYRMWWQRRPTRQAGRGPGPLVRRGALRRSPWWLTAVLFAVAGLAAWYVPLFGVTLLGFLVVDVLLGLRARRRAASAANANANANANA
AK018_03311429hypothetical proteinGTGGAGCGGACCACCGAGGACGTGGAGGCCTTCCTCGAGGCGCAGGGGCCGACGTCGGACCTGGCCCGCACGGACGCCCTCGTCCGCGCCGCGCTGCCGGACCTCTCCCGCACCCTGTGGCGCGGGGTGTTCTGGGGCGGCACCGAGCAGGCGATCGTCGGCTACGGCGACATCGTCCAGTCCCGGCCGCGGGGGCCGGACGTCGAGTGGTTCCTCGTCGGGCTGGCCCGGCAGAAGCGACACCTGAGCCTGTACGTCAACGCGGTCGACGACGGCGCCTACCTCACGCGGCAGTACGCGGACCGGCTGGGCCGCGCCAGGGTCGGTGCGGCGGCCATCACCTTCTCCCGGCTCGACGACGTCGACACGGCGGCACTCCACGAGCTCCTGGTCCGTGCGGGGCGCACCCTCGGCGACACCTCCGGCTGAMERTTEDVEAFLEAQGPTSDLARTDALVRAALPDLSRTLWRGVFWGGTEQAIVGYGDIVQSRPRGPDVEWFLVGLARQKRHLSLYVNAVDDGAYLTRQYADRLGRARVGAAAITFSRLDDVDTAALHELLVRAGRTLGDTSGNANANANANA
AK018_033121599pntA_2COG3288NAD(P) transhydrogenase subunit alphaGTGCAGATCGGTGTCCCCCGAGAGTCGCGCGAGGGCGAACGGCTCGTCGCCGCGACGCCCGCGACCGTCCGCGGCCTGACGTCGCTCGGCTACGACGTCGTCGTCGAGTCCGGTGCCGGCGAGCGTGCCAGCATGCCCACCCCGGCGTACGTCGAGGCCGGCGCCCACGTCGGCAGCCGGGAGGACGTGTGGCGGTCCGACGTCGTCACCTGCGTCAACGCCCCGAGCCCGGACGAGCTGGACCTGCTGCGTCCGGGTGCCGTCCTGGTCTCCCAGCTGGGCCCGGGCGGGCGGCCCGAGCTCGTCGAGGCCCTCGCCGAGCACCGCGTGACCGCCCTGGCGCTCGACGCGGTGCCCCGCATCTCCCGCGCCCAGGCGCTCGACGTGCTCTCCGCCCAGTCGAACGTCGCCGGCTACCGGGCCGTGGTGGAGGCTGCCGAGGAGTTCGGCGGCATGTTCACCGGCCAGGTGACCGCGGCGGGCACGACGCCGCCCGCGACGGTGTTCGTCATCGGCGCCGGCGTGGCCGGGCTCGCGGCGATCGGCACCGCCTCCTCCCTGGGGGCGAAGGTGCGGGCCTTCGACGTCCGCCCCGAGGTGGCCGAGCAGATCGAGTCGCTCGGCGCCACGTTCGTCCGCGCGGAGGGCGCCTCCCAGGAGGTCTCCGCGGACGGCTACGCCCGCGAGCTGTCGACCGACCAGGAGGCCGCCACCCGGGCCACCTACGCCGCCGAGTCCGCCGGAGCGGACGTCGTCGTCACGACCGCGCTGGTCCGCGGTACGGCACCCACCACCATCACCGCGGAGATGGTCGCCGCCATGAAGCCCGGCTCGGTGGTCGTCGACCTCGCCGCACCCGGCGGCGGGAACTGCGAGCTCACGGTCCCGGGGGAGCGCATCGTCAGCGACAACGGCGTGATCGTGCTGGGTTACACTGACCTGCCCGGCCGCATGCCGCAGCACACCTCCCAGCTCTTCGGGACCAACGTCGTCAACCTGCTGACCCTGATGACACCGGGCAAGGACGGCCGGCCCGAGGTCGACCTCGACGACGTCGTCGTGCGGGGCATGACCGTGGCCCACGAGGGCGAGATGCTCTGGCCGCCGCCCCCAGTACAGGTCTCGGCGGCACCCGCACCCGCCCCGGCCGCCGAGCCGACCGCGGAACCCGGACCGTCCCCGGAGGAGCTGGCCGCCGAGCGGCGGCGCCGCTCGCGGCGTCGCACCGTGCTCGCCGGCCTCGGCGCCATCGTGGGCGGTCTGGCGATCGCGTCCTCACCACCGGACGCCGTGGGCCACTTCACGGTGTTCGCGCTGGCCGTCGTGGTGGGCTTCTACGTGATCTCCGCGGTCACCCACGCCCTGCACACCCCGCTGATGGCCCAGACCAACGCGATCAGCGGCATCATCCTCGTGGGCGCGCTGCTGCAGATCGGCGTCGACGACTGGCTGGTCACGGCGCTCGCGGTCGTGGCCGCCACCGTGGCGAGCATCAACGTGTTCGGAGGGTTCCTCGTCGCCAACCGCATGATCCGCATGTTCCGCAAGGGGGCCCCGGCCCCGCACGTCGCCGCGCCCCGGCAGGGGGTGGCCCGATGAMQIGVPRESREGERLVAATPATVRGLTSLGYDVVVESGAGERASMPTPAYVEAGAHVGSREDVWRSDVVTCVNAPSPDELDLLRPGAVLVSQLGPGGRPELVEALAEHRVTALALDAVPRISRAQALDVLSAQSNVAGYRAVVEAAEEFGGMFTGQVTAAGTTPPATVFVIGAGVAGLAAIGTASSLGAKVRAFDVRPEVAEQIESLGATFVRAEGASQEVSADGYARELSTDQEAATRATYAAESAGADVVVTTALVRGTAPTTITAEMVAAMKPGSVVVDLAAPGGGNCELTVPGERIVSDNGVIVLGYTDLPGRMPQHTSQLFGTNVVNLLTLMTPGKDGRPEVDLDDVVVRGMTVAHEGEMLWPPPPVQVSAAPAPAPAAEPTAEPGPSPEELAAERRRRSRRRTVLAGLGAIVGGLAIASSPPDAVGHFTVFALAVVVGFYVISAVTHALHTPLMAQTNAISGIILVGALLQIGVDDWLVTALAVVAATVASINVFGGFLVANRMIRMFRKGAPAPHVAAPRQGVARPGPT0013500_54DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324NANA
AK018_033131407pntB_2COG1282NAD(P) transhydrogenase subunit betaATGACCGTGCTGTCCGCCGTCCAGGCCACCTACGTCGTCGCCGGCGTCCTGTTCATCCTGTCCCTGGCGGGCCTGTCGAAGCAGGAGTCGGCCCGGCGCGGCAACGTCCTCGGCATGATCGGCATGGTGCTGGCGCTGGTCGCCACGGTCGTGCTCGCGCTGGAGAGCTCGGCGCGCCCCTGGCAGGTCACCGCCGCGCTGATCCTGCTGGTCTTCGTGGTCGGTGCGGGGGTGGGCGTCTGGCGCGTTCGCCGCGTCGAGATGACGCAGATGCCCGAGCTCATCGCCCTGCTGCACTCGTTCGTGGGCCTGGCCGCCGTGCTCGTGGGCTTCGGGTCGTTCCTCTCCGAACCGCAGTCCGACACGGTCCACCTGGTCGAGGTGTTCCTGGGGGTGCTGATCGGTGCGGTGACGTTCACCGGGTCGATCGTCGCCAACCTCAAGCTGTCCGCGAAGATCAAGTCGGCACCGTTGATGTTGCCGGGGCGGCACTGGCTGAACCTCGCGATGCTCGTCGCGTCGGCGGGCCTCCTGGCCTGGTTCGTCACGGCCGCCCACGACGGCGCCGACGGGGCGGCGCTCGCGGCGCTGCTGGCGCTGACCGTGGTCGCGCTCGCGCTCGGGTGGCACCTGGTGGCCTCGATCGGCGGCGGTGACATGCCGGTCGTCGTCTCGATGCTGAACTCCTACTCCGGGTGGGCCGCCGCGGCCGCCGGCTTCATGCTCGGCAACGACCTGCTGATCATCACCGGTGCCCTGGTGGGCTCCTCCGGCGCGATCCTGTCCTACCTGATGTGCCAGGCCATGAACCGGTCGTTCGTGTCGGTGATCCTCGGCGGGTTCGGCGCCGAGCCGGGCAGCGCCGCCGCGGCCGGCGTCGACGGCGAGCACCGCGAGACCTTTGCGGCCGACGTCGCCGAGCAGCTCGCGGGAGCACGTTCCGTCATCGTGGTGCCGGGCTACGGGATGGCGGTGGCGAAGGCCCAGTACCCGATCGCGGAGCTGACGGAGATGCTGCGGGACCGGGGCGTGGAGGTGCGGTTCGGGGTCCACCCGGTGGCCGGCCGCCTGCCCGGCCACATGAACGTGCTGCTCGCCGAGGCCAAGGTGCCCTACGACGTCGTCCTCGGCATGGACGAGATCAACGGCGACTTCGCGGACACCGACGTCGTCCTCGTGATCGGTGCCAACGACACGGTGAACCCGGCGGCCCAGGAGGACCCGGGCTCACCCATCGCCGGCATGCCGGTCCTCGAGGTCTGGAACGCCCGGGACGTCGTCGTGTTCAAGCGGTCGATGGCCACCGGGTACGCGGGCGTGCAGAACCCGCTGTTCTTCCGGGAGAACACCACGATGCTGTTCGGCGACGCCAAGGACCAGGTGCAGAGGATCATCCAGGCCCTCTGAMTVLSAVQATYVVAGVLFILSLAGLSKQESARRGNVLGMIGMVLALVATVVLALESSARPWQVTAALILLVFVVGAGVGVWRVRRVEMTQMPELIALLHSFVGLAAVLVGFGSFLSEPQSDTVHLVEVFLGVLIGAVTFTGSIVANLKLSAKIKSAPLMLPGRHWLNLAMLVASAGLLAWFVTAAHDGADGAALAALLALTVVALALGWHLVASIGGGDMPVVVSMLNSYSGWAAAAAGFMLGNDLLIITGALVGSSGAILSYLMCQAMNRSFVSVILGGFGAEPGSAAAAGVDGEHRETFAADVAEQLAGARSVIVVPGYGMAVAKAQYPIAELTEMLRDRGVEVRFGVHPVAGRLPGHMNVLLAEAKVPYDVVLGMDEINGDFADTDVVLVIGANDTVNPAAQEDPGSPIAGMPVLEVWNARDVVVFKRSMATGYAGVQNPLFFRENTTMLFGDAKDQVQRIIQALPGPT0013505_2308DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013505-pntB-K00325NANA
AK018_033141569mqo_2COG0579putative malate:quinone oxidoreductaseGTGACTTCGCGCGCAACGGCCTCCAGCACCGCCTCCTCCGACGCCGTCGACGTCGTCCTCATCGGCGGCGGCGTCATGAGCGCCACCCTCGGCACGCTGCTTCAGCAGCTCGAGCCGACGTGGTCGATCCGTATCGTCGAACGCCTCGACGACGTGGCGCTCGAGTCGTCCAACCCGTGGAACAACGCGGGCACCGGGCACGCCGCGCTGTGCGAGCTCAACTACACCCCGGAGAAGGCCGACGGCACCGTCGACATCTCCAAGGCCGTGACCATCAACGAGCAGTTCCACACCTCGCGCGAGCTGTGGCACCACCTGCTCGCCACCGGCACGCTCGCCGACTCGTCGTTCATCCACCGGACCCCGCACATGACGTTCGTGCGCGGCAGCGAGAACGTCGACTACCTGCGCCGCCGCTACGAGGCCCTGCGGGCCCACCCGCTGTTCCGCGACCTGGAGTTCTCGACCGACCGCGCCGAGATCTCCCGTTGGGCCCCGCTGCTCACCGCCGCCCGGGACGCCGACGAGCCCGTCGCCGCGACCCGCTCCGCAGCCGGCACCGACGTCGACTTCGGCAACCTGACCCGCCAGATGATCGACGGCCTGGTCTCCCACGGCGCCGAGCTGCAGCTCCAGCACGAGGTCCGCTCGATCAAGCGCACCAAGGACGGCCGCTGGCGGCTGCGGCTCAAGGACCGCTCCTGGAACGCCCGCCCGCGCACGTCGACCGTCACGGCCCGGTTCGTGTTCGTCGGTGCCGGCGGCGGCGCGCTGCCGCTGCTGCAGTCCGCCGGCATCCCCGAGATCAAGGGCTTCGGCGGGTTCCCCATCTCCGGCGAATTCCTGCGCACCGACAACCCCGAGGTCGTCGCCCAGCACCACGCCAAGGTCTACGGCAAGGCCGACGTCGGCGCCCCGCCGATGTCCGTGCCCCACCTGGACACGCGCGTCGTGAACGGCAAGAGCTACCTCATGTTCGGCCCGTACGCCGGGTTCAGCCCCAAGTACCTCAAGCAGGGCAAGTACCTGGGCCTGATCACCTCCCTGCGCGCGAACAACATCACCTCGATGCTGGGTGCCGGCCTGAAGAACATGGACCTCACCCAGTACCTGGTCGGCCAGCTCGCGGCGGCGCCGGAGACCAAGTTCCACGCGCTGCAGCAGTTCATGCCCACCGCGCACCCGAAGGACTGGGAGAAGATCACCGCAGGCCAGCGCGTCCAGGTGATCAAGCGCGACGCCGACGGCAAGGGCGTGCTGCAGTTCGGCACCGAGGTCGTCACGGCCGCGGACGGCTCGATCGCCGGTCTCCTCGGCGCCTCCCCCGGCGCCTCGACCGCCGTGTCGGCGATGGTCGACGTCCTCGAGCGCTGCTTCCCGACCGAGTTCCCGCAGTGGCGCTCGCACCTGGCCACCATGATGCCCAGCCTCGACGGCGGCCCCACGGACACCCGCGAGATCGACACCACCGCCAGCGCAGCCGGCGAGCCCGCCGCTCCTCTGCCCGACGCGGTCGACGGCGTCCTGCCCGCCAGCGTCTACGAGGACCAGGCCGACTCGAGGCTCTGAMTSRATASSTASSDAVDVVLIGGGVMSATLGTLLQQLEPTWSIRIVERLDDVALESSNPWNNAGTGHAALCELNYTPEKADGTVDISKAVTINEQFHTSRELWHHLLATGTLADSSFIHRTPHMTFVRGSENVDYLRRRYEALRAHPLFRDLEFSTDRAEISRWAPLLTAARDADEPVAATRSAAGTDVDFGNLTRQMIDGLVSHGAELQLQHEVRSIKRTKDGRWRLRLKDRSWNARPRTSTVTARFVFVGAGGGALPLLQSAGIPEIKGFGGFPISGEFLRTDNPEVVAQHHAKVYGKADVGAPPMSVPHLDTRVVNGKSYLMFGPYAGFSPKYLKQGKYLGLITSLRANNITSMLGAGLKNMDLTQYLVGQLAAAPETKFHALQQFMPTAHPKDWEKITAGQRVQVIKRDADGKGVLQFGTEVVTAADGSIAGLLGASPGASTAVSAMVDVLERCFPTEFPQWRSHLATMMPSLDGGPTDTREIDTTASAAGEPAAPLPDAVDGVLPASVYEDQADSRLPGPT0001440_569DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001440-mqo-K00116NANA
AK018_03315699pdxH_2Pyridoxine/pyridoxamine 5'-phosphate oxidaseATGACCACCTTCCGCGAGAGGCTCCGCGCCCTGCCGGTGCTGCCCGACGGGCTCGAGGGCTGGCAGGTCGACGACGTCGCCGCGCTGCCGCCGGACCCGCACGAGCTGTTCGCACGGTGGTTCGAGGACGCGGTCGCGCGGGGAGCGCTCGCGCCCCAGGCGATGACGTTGTCGACGGCGGACGCGGAGGGCACGGTGAGCGCCCGCACGGTCATCCTCAAGGACCTCGACGACGCCGGCTGGTGGTTCGCCGGGCACGCGACCAGCCCGAAGGCGCAGGACCTGCAGGCCAACCCGCGGGCGGCGCTGACGTTCCTGTGGCGCGAGACGGGCCGCCAGGTCCGGGTCGCCGGGGCGGTGACGTCGCGGCCGGACGTCGGTGCCGCGGACTTCCGGGCCCGTCCCGACGCGTCACGCGCGACGGGACTGGTCGGCCACCAGAGCGAGGAGCTCGGGTCGCTCGCCGAGCACCGGGCGGCGTGGGCGGCCGCGCTGGAGCAGGTGCGGGCAGAGCCCGACCTGGTCGCGCCGACGTGGACGGCGTGGTGCCTCGAGCCGCGCGAGGTGGAGTTCTGGGGGTCCGGTGCGGGCACCGGACAGACCCGCGTGCGGTACCGCCGCGCGGCCGACGCCGGAGCTCCCGGAGCCGGGGCCGGCAGCGCGCAGGGCGGTTGGCAGCGTGCCCTGCTGTGGCCCTGAMTTFRERLRALPVLPDGLEGWQVDDVAALPPDPHELFARWFEDAVARGALAPQAMTLSTADAEGTVSARTVILKDLDDAGWWFAGHATSPKAQDLQANPRAALTFLWRETGRQVRVAGAVTSRPDVGAADFRARPDASRATGLVGHQSEELGSLAEHRAAWAAALEQVRAEPDLVAPTWTAWCLEPREVEFWGSGAGTGQTRVRYRRAADAGAPGAGAGSAQGGWQRALLWPPGPT0009115_617DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009115-pdxH-K00275NANA
AK018_03316708hypothetical proteinATGACGCACGAACACCACCAGCCAGGACGCCACCGCTCCGGCGGGCGGATCGTGCGGCGCGACGCCGTGGACCCCGGCCCCGTCACCTCCGTGACGACGCTCTTCGCGCCCGCGCCCGCCGCGACAGGGCCGGTGCCGTCCGTCCCGCCGGCCCCGCGGACCGAGACCCGTCCCTGGCAGACCGTGCTCATCGTCGCCGCCCTCGTGGTGGCGCTCGCCGCGTCGGTCGGCGTGGCCGTCCTGTGGGCGGCGAACCGGAAGCTGACGGCCGAGGTCGAGGCCGCCGTCGCGCAGGTCGAGGCAGCGCAGGCCGACACCGCCGCGGTGCGGACCGCCCTCGAGGCGGTGCCCGACGCCGCCACCGTGGACGCCCTCGCCGCACGCGTCGACGGCGTCGAGTCGTGGACCGGCCTGCCCGAGGGCGGGATCACCGACCAGGACGACCTGCAGACGCGGCTGCTGGAGGTCTCCACCGGGATCGAGAGTCTGCAGGACAACCTGCAGGACGGGCTCGGCACCGTACGCAACGACATCGCCTCGGTCCGCACGGACCTCGCCGCCGACGACGGTGACGCCGACCGCGCGGAGGTCGACGCCGTGCGGAGCGACCTCGACGCTCTGCGGTCCGCCGTCGCCGACGTCCGTCGGGACGTCGGCGTGCTCTGCTGGGCGCTCGGCTACCGCAAGGACGTGGCGGCCTCCTGCTGAMTHEHHQPGRHRSGGRIVRRDAVDPGPVTSVTTLFAPAPAATGPVPSVPPAPRTETRPWQTVLIVAALVVALAASVGVAVLWAANRKLTAEVEAAVAQVEAAQADTAAVRTALEAVPDAATVDALAARVDGVESWTGLPEGGITDQDDLQTRLLEVSTGIESLQDNLQDGLGTVRNDIASVRTDLAADDGDADRAEVDAVRSDLDALRSAVADVRRDVGVLCWALGYRKDVAASCNANANANANA
AK018_033171356stp_3Multidrug resistance protein StpGTGGCCGTCGTGGTGGACGCACCCCTGCAGCGACGTGTGCTGATCGTCGCGATCCTCGCCTCGTTCGTGTCGTTCCTGGACGGCACGGTGGTCAACGTGGCCCTCCCGGCGATCGCGGACGAGCTCGGCGGCCCCGGGGAGGCCGGGCTGACGCTGCAGCAGTGGGTCGTCGACGGGTACCTGGTCACCCTCGGCTCGTTCATCCTGCTCGCCGGGTCGCTGTCCGACGTGCACGGCCGCCGCCGGGTCCTGGTGATGGGCCTCGCCGGGTTCGCCGCGACGTCCGTGCTGTGCGCGCTCGCCCCGACCGGACCGGTGCTGGTCGTGGCGCGCCTGCTGCAGGGCGTCGCGGGAGCGCTGCTCGTGCCGAGCTCCCTGGCGCTGATCATCTCCACCTTCGACGGTCCCGCCCAGGGGCGGGCCATCGGGCGCTGGACCGCCTGGACCGGCACCGCGATGATCGTCGGGCCGTTCGTCGGCGGGGGGCTCGTGGACCTGATCTCCTGGCGTTGGGTGTTCTGGATCAACGTACCCGTCGTCGCGGTCACGCTCCTGCTGCTGCGCCGCGTGCCGGAGGCGGAGGCGACGGTGCAGCGGCGGATCGACGTCCCCGGAGCCCTGCTCGCCGCGGTCGGCCTGGCGGCCGTCGTCCTCGGGCTCATCGAGCAGTGGTGGCCCGTGGTGGGTGTCGGCGCGGGGCTCCTGGTCGCGTTCGTCGTCGTCGAGCGACGCGCGCCGGACCCGATGCTGCCGCTGCGGCTCTTCGGCGCGCGCACCTTCGCGTGGGGCAACGTCGCGACCTTCGCGGTGTACGGGGCGCTGGCGTTCGGCGGGTTCGTCCTCACCCTGTTCCTCCAGCAGGTGGCCGGGTACTCGGCCACCGCGGCCGGGGTGGCGCAGCTGCCGACGACGTTCGCGATGCTGGCGCTGTCGACGCGCTTCGGCACGCTCGCCGGCCGGTACGGCGCACGATGGTTCATGACGGTCGGCCCGATCGTGGCCGGGTGCGGGTTCCTGCTGATGCTGACCATGGACGAGCAGGCCACGTACCTCACCCAGGTGCTGCCCGGCATCCTCGTGTTCGGGCTCGGACTGGCGATCACGGTCGCCCCGCTGACGGCCGCGATCCTCGGCGCGGTGCCGGCCACCGACGCCGGGATCGCCTCGGCCGTCAACAACGCGATCTCGCGCGTCGCAGGACTCGTCGTGATCGCGTTCGCGGGCGTCATCCTCGGTGGCGCGCTCGACGTCGAGTCGTTCCACCGCTCGCTCGTGGTCACCGCCGCGCTGCTCGTGGCCGGAGGGCTGGTCAGCATGGTCGGCATCGGTGACACCCGGGTGCGCACCGCGCCATAGMAVVVDAPLQRRVLIVAILASFVSFLDGTVVNVALPAIADELGGPGEAGLTLQQWVVDGYLVTLGSFILLAGSLSDVHGRRRVLVMGLAGFAATSVLCALAPTGPVLVVARLLQGVAGALLVPSSLALIISTFDGPAQGRAIGRWTAWTGTAMIVGPFVGGGLVDLISWRWVFWINVPVVAVTLLLLRRVPEAEATVQRRIDVPGALLAAVGLAAVVLGLIEQWWPVVGVGAGLLVAFVVVERRAPDPMLPLRLFGARTFAWGNVATFAVYGALAFGGFVLTLFLQQVAGYSATAAGVAQLPTTFAMLALSTRFGTLAGRYGARWFMTVGPIVAGCGFLLMLTMDEQATYLTQVLPGILVFGLGLAITVAPLTAAILGAVPATDAGIASAVNNAISRVAGLVVIAFAGVILGGALDVESFHRSLVVTAALLVAGGLVSMVGIGDTRVRTAPNANANANANA
AK018_03318987hypothetical proteinATGAGACTCCTCGTGCTCGGCGGGACCGGGTTCCTGTCCCGTGCGGTCGCCGCGACGGCTCTCGCTCGCGGCCACGACGTCACCGCCGTGCACCGCGGGCGCACCGGGACCGTGCCCGACGGCGTGACCCAGGTGCTCGCCGACCGCGGCGACCCGATCCCCCCCGACCTGGCCGGCGCGTCGTTCGACGCCGTCGTCGACGTCTCGTCCACCCCCTCGCACGTGCGCCGCGCCGTGGCCACCTGGCCGGACAGCCACTGGGTGTTCGTGTCGACGGTCAACGTCTACGCCGACGACTCCGACCCCGGCGGCCCGGGGATCGGCCTGCTGCGGGAACCCGAGACGGACGACGTCGGGCCGGCGTCGAGCCCGGACGCCTACGGGCGGATGAAGGTCGCCTGCGAGCAGGCCGTGCTCGACGGCATGGCGAGCGCCGCCGTCGTGCGCCCGGGCCTCATCGTCGGCCCCGGTGACCCGACCGGACGCTTCACCTACTGGCCCGTCCGGATGCTGCGCACCCTCGACGGCGACGACGCCGACGTCCTCGCGCCCGGAGAGCCCTCCGACCCCGTCCAGGTGATCGACGTGCGGGACCTGGCGGCCTGGATCGTCACGCTGGCCGAACGGCGCACCACCGGGGTGCTCGATGCGGTCGGGCCCGTGACCCCGATCGGCGACGTGCTCGACGCGGTGGCCCGCGGCTGCGGAGCCGCGCCGCGGTGGCGGTGGGCCGACGGCGTGCGCCTCACGGCGCTCGACGTGCGGCCGTGGGCGGGCGAGCGGTCGCTGCCATTGTGGCTGCCCCGTCCGGACTACGCCGGGATGGTCGCGCACGACGCCGGGCCGGCGCTCGCGGCCGGCCTCGAGGTGCGGCGGGTCGAGGACACGGCGCGCGACGTGCTGGCCTGGTTGCGGAGCACGCCGGACGCCCCGGTCAGCGGTCTCACGGCCGCACAGGAGGCCGAGGTGCTCGCGGCGCTCCGGTGAMRLLVLGGTGFLSRAVAATALARGHDVTAVHRGRTGTVPDGVTQVLADRGDPIPPDLAGASFDAVVDVSSTPSHVRRAVATWPDSHWVFVSTVNVYADDSDPGGPGIGLLREPETDDVGPASSPDAYGRMKVACEQAVLDGMASAAVVRPGLIVGPGDPTGRFTYWPVRMLRTLDGDDADVLAPGEPSDPVQVIDVRDLAAWIVTLAERRTTGVLDAVGPVTPIGDVLDAVARGCGAAPRWRWADGVRLTALDVRPWAGERSLPLWLPRPDYAGMVAHDAGPALAAGLEVRRVEDTARDVLAWLRSTPDAPVSGLTAAQEAEVLAALRNANANANANA
AK018_033191536hypothetical proteinATGATAGGGGCGACGACGGCGGGTTCCGAGGACGTCGCATCCGTCGCGCGCCGGGTCCTGGACATGGTCGCCGTGCTCGACCCCTGCCGCCCCGGTTCCCCGCAAGTACGTCCGCCCACGCTGGCCGATCTCGACGCCACCCTGACGGCCGTGGAGTCCACGCAGGCCGCCGTCAACGCGCTCGAAGGTGTCCGCGCCCTGCTCGTCGACCGCTACCGCCAGCAGGCCGAGGGCCTCGACCGGTCGCTGCTCGACCCGGTCGACCCCACCGTCGGCACGGCGTCCGCCCGGCGCCGTCGCGAGCTGGCTCACCGGGCCGCCGTCGCCGATCTCGCGACGTCGCTGCACGTGGGCGAGAGCACGGCGCAGACCCTCGTCGACCACTCCGCCACGATCACGCAGAACGCCCCGCGGCTGCTCGACGCCGTGCTGGCCGGTTCCGTCTCGTGGCGGCACGCCGACGTCGTCGCGCGGCAGATCGACGACCTGCCCTCCCAGGACGCCGCACGGGTCGAGGCGAGCGTCCTCCCGGCAGCACGCGGGTGCACCCCGTCCCAGCTGCGGGCCCGCGCTCGGCGCGCCCGGGAGACCGTGCACCCGACACCACCGGACGTCCGGCACGCCGAGGCAGCGACCCGCAGGGACGTCTGGCTCGACCCGGGACGCGACGGCATGGCATGGCTCACCGCTCACCTGCCCGCACCGTTCGCGCACGCCGCCCACGACCGGTTGACGAGCACGGCCACCCGGCTGCGCGCCGACGGCGAGGCCCGGACCGTGGGTCAGCTCCGGGCCGACGTGCTGGCCGATCTCCTGCTCGACGACGGCACGCTCGACGTCGGAGCGGACTCGATGCTGCCCCGGTCGGACGTCATACCACCCGACGGCACACGCAGCACAGGCAGCACACGCAGCACAGGCAAGGGCATCGAACCCGACCGCACGGGTGGCCCGCGACCGGCCCGGCCCGTGGGATCCCTCGCACCCGTCGCCCGCGCGATCCGGCCTCGCGTGAACGTCACCGTGCCGGTGCTGTCGCTGCTCGGCGTCGTGGACGCTCCGGCCAGCCTCGACGGTCACGTCCCCATCGACGCGGAGACGGCTCGTGCGCTGTGCGCCCACGCTCCGTCCTTCCGCCGGATCCTGACGGACCCCGAGACCGGCGCGGTGCTGTCCGTGGGCCGCTCCGCGTACCAGGCACCGGCCGACCTCAAGGCGGTGCTGGCCGAGCGGGACACCACGTGCCGGTTTCCCGGCTGCACCCGTCCCGTCGCCCGCACCGACCTGGACCACACCGTCGCCTGGGCCGACGGCGGCACCACCGACGTCGAGAACCTCGCGCACCTGTGCCGCCGGCACCACGTGGTCAAGCACCAGACACGATGGCGGGCCGAACAGCAGGGCGACGGGGCGCTGCGGTGGACCTCCCCCACGGGCAGGGTCCGCCACACCGCACCGGAACCCGTCGAGTCGACGCGACATCGCGCCCCGCCGTCGGCAGCGGCCCCGGCCGACCCCGGGCCGCCACCGTTCTGAMIGATTAGSEDVASVARRVLDMVAVLDPCRPGSPQVRPPTLADLDATLTAVESTQAAVNALEGVRALLVDRYRQQAEGLDRSLLDPVDPTVGTASARRRRELAHRAAVADLATSLHVGESTAQTLVDHSATITQNAPRLLDAVLAGSVSWRHADVVARQIDDLPSQDAARVEASVLPAARGCTPSQLRARARRARETVHPTPPDVRHAEAATRRDVWLDPGRDGMAWLTAHLPAPFAHAAHDRLTSTATRLRADGEARTVGQLRADVLADLLLDDGTLDVGADSMLPRSDVIPPDGTRSTGSTRSTGKGIEPDRTGGPRPARPVGSLAPVARAIRPRVNVTVPVLSLLGVVDAPASLDGHVPIDAETARALCAHAPSFRRILTDPETGAVLSVGRSAYQAPADLKAVLAERDTTCRFPGCTRPVARTDLDHTVAWADGGTTDVENLAHLCRRHHVVKHQTRWRAEQQGDGALRWTSPTGRVRHTAPEPVESTRHRAPPSAAAPADPGPPPFNANANANANA
AK018_03320660hypothetical proteinGTGCTGACGTCCGGCGAGGTGGACCTCGAGGTGTCGGCGCCTGCCGGAGCCGACCCGGCGCCGGCGACCGACGTCCGGGCGATCGGGGACGGAGCGGGCCTCCTCCAGGTCGTGATCGCCGGAGCCGATCCCGACGCCGGCGACGTCGCCCCGGTGCGGCTCACGCTGCGCACTCCCGGGACGCTCGAGGTCAATGCCGATGGCACGGTCACCGTCGTCGACACCGACGGCGACACCGCGATCGGAGGCCTCACCGCCCCCACGGGTACAGCGCGGTGGACCGCCGTCGGCCCCGAGGCCGTCGACCTGGTGCCGGCTCCGGCCGACGACGGGTCCACCACCCCGAGGCCGCCGGAGGTGACGGCGGTGCTGGGCACCTCGGGCGTGGTGAGCGCCCGGTGGGGAGACCGCGAGGGTGGCCGGTCGCTCGCGGTCGACGCGACCTCCTGGGCGAGAGACGCCGGCGAGGCGGGCGTGGACGTGGTGTGGTCCGAGCTGGTCGCCGACGACCCCGAGATCGACAGCGCCACGATGCACGACCAGCTCGTCTGCCACTCGATCGGCGCGCCCGACAAGGAGACCTGGAACCTGGAACCGTGGCGCCCCGACGTCGGGCTGCTGGCGGTGCTGGCGGAGCGCTGCAACCCGACCATCGAGTGAMLTSGEVDLEVSAPAGADPAPATDVRAIGDGAGLLQVVIAGADPDAGDVAPVRLTLRTPGTLEVNADGTVTVVDTDGDTAIGGLTAPTGTARWTAVGPEAVDLVPAPADDGSTTPRPPEVTAVLGTSGVVSARWGDREGGRSLAVDATSWARDAGEAGVDVVWSELVADDPEIDSATMHDQLVCHSIGAPDKETWNLEPWRPDVGLLAVLAERCNPTIENANANANANA
AK018_03321837COG2375putative proteinGTGCTCCTGGCCGAGGTGGTCTCGACCAAGCAGATCTCGCCGCACCTGGTCCGCGTGACGCTGGGCGGCGAGGCGATCGGCCGGCTCACGCTCCAGGGCCGCGACCAGTGGTTCCGGCTGTTCCTGCCGCGCCCCGGGCAGGACGCGCTGCGCCTGCCCACCCGCACGTCGGGCCTGGGCTGGTACGCCCAGTACCTCGCGACGCCGCGGGCGAGGCGACCCTGGGTACGCAGCTACACGATCCGGTCCGCGCGGCCCGAGCTGCGGGAGATCGACGTGGACTTCGTGCTGCACGGCACGGACGGCACCGACGGCGTCCACGGCGCCGACGGACTCCACGGCACCGACGAGGCCGGGGACCACGGACCGGGTACCACGTTCGCCGCGACCGCCCGGCCGGGGGACACCGTGGGGATCCTCGACCAGGGCGTCGGCTACCACCCCCGCCACGAGCACGACTGGACCCTGCTCGTGGCCGACGAGTCGGGCCTGCCGGCGGTCGCCGGCGTCTGCGAGTCGCTGCCCGACGACGCCCGCGGCGTCGCGATCGTCGAGGTCCCGACGGCGGACGACCGGCAGGACTTCCGGGTCCCGGACGGGATCGACCTGCTCTGGGTCGAGCGCGACCGTGCCGGGTCCGACCCGGTGCCCGGCCGGACCGCGCTGCAGGTGCTGCGCGACGCCCAGCTCCCGTCCGGGACGGTCTACGCTTTCGCGGTGGGGGAGTCGGGGCTCGCGACCGGCGCGCGGCGCCACCTGGTGAACGACCGCGGCGTGCCGAAGACGCACGTCGACTTCGTCGGCTACTGGAAACACGGCCGCGCCGCGGCGAGCTAGMLLAEVVSTKQISPHLVRVTLGGEAIGRLTLQGRDQWFRLFLPRPGQDALRLPTRTSGLGWYAQYLATPRARRPWVRSYTIRSARPELREIDVDFVLHGTDGTDGVHGADGLHGTDEAGDHGPGTTFAATARPGDTVGILDQGVGYHPRHEHDWTLLVADESGLPAVAGVCESLPDDARGVAIVEVPTADDRQDFRVPDGIDLLWVERDRAGSDPVPGRTALQVLRDAQLPSGTVYAFAVGESGLATGARRHLVNDRGVPKTHVDFVGYWKHGRAAASNANANANANA
AK018_03322939qorA_3COG0604Quinone oxidoreductase 1GTGGTTGCCGGGGGTATGCGAGCCATCACCTATGCGAAGTACGGCGACGCCGACGTCCTCGAGCTGACCGAGCAGCCGGACCCGCACCCGGGTGCCGACGCCGTGGTCGTCCGCGTCAAGGCGGCCTCGGTGAACCCGGTCGACTGGAAGGTCCGCCAGGGCCACCTCGACGGCCTGCTCGACGCCGAGTTCCCGGTCGTCCCGGGCTGGGACGTCGCCGGCGTCGTCGAGCAGGTCGGCCTGGACACCCCCGAGCTCCGGGTCGGCGACGAGGTGTTCGGCTACGTGCGCAAGGACTGGGTGCACGGCGGCACGTTCGCCGAGTTGGTCTCCGCCCCCGTGCGCACCCTCGCACGCAAGCCGTCGACGCTGTCCTTCACCGAGGCCGCCGCGGTGCCGCTCGCCGGCCTCACGGCGTACCAGACGATCCGTCGCGCAGGGGTCCGCGCCGACCACACCGTGCTCGTGCACGCGGCGGCCGGTGGCGTCGGGTCGTTCGCCGTGCAGATCGCCCGGGCTCTGGGCGCCCGCGTGATCGGGACGGCGAGCGAGGCCAACCACGACTACCTGCGTTCGCTCGGCGTCGAGCCCGTGGAGTACGGCGAGGGACTGGCGGAGCGGGTCCGGGACCTGGCTCCCGGCGGTGTGGACGTCGCCCTCGACTACGTCGGCGGCGACGCCGTGGCGGTCAGCGCCACCGTGCTCGCCCCCGGCGGCACGATCGCGTCGATCACCGATCCCGCGGCCCGTGACGAGCACGGCGGGCACTACGTGTGGGTCCGCCCGTCCACCGAGGACCTCGAGGAGGTCGGGGCGATGATCGACGAGGCCAGCATCACGGTCGAGGTCGCCCAGGTGTTCGACCTGGAGCACGCGGCGGACGCCCACCGCGCCAGCGAGACCGGGCACGTGCGCGGCAAGATCGTCGTCGGGGTCTGAMVAGGMRAITYAKYGDADVLELTEQPDPHPGADAVVVRVKAASVNPVDWKVRQGHLDGLLDAEFPVVPGWDVAGVVEQVGLDTPELRVGDEVFGYVRKDWVHGGTFAELVSAPVRTLARKPSTLSFTEAAAVPLAGLTAYQTIRRAGVRADHTVLVHAAAGGVGSFAVQIARALGARVIGTASEANHDYLRSLGVEPVEYGEGLAERVRDLAPGGVDVALDYVGGDAVAVSATVLAPGGTIASITDPAARDEHGGHYVWVRPSTEDLEEVGAMIDEASITVEVAQVFDLEHAADAHRASETGHVRGKIVVGVPGPT0013255_9664DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_033232505ligD_3COG1793Multifunctional non-homologous end joining DNA repair protein LigDGTGACCGTCGAGGGCCGCACGCTGACGCTGTCCAACCTCGACAAGGTGCTGTACCCCGCCACCGGGACCACCAAGGGTGAGGTGCTGCACTACCTCGCGACGGTGGCCCCCGCCCTGCTGGCGCACGCCTCGCACCGGCCCGCCACCCGCAAGCGCTGGCCCGACGGCGTCGAGAGCAAGCCGTTCTTCCAGAAGAATCTCGACGCCTCGACCCCCGCCTGGGTGCCACGCCGCACCATCCGGCACACGTCGTCGTCCAACGACTACGTCCTCGTCGACGACCTCGCCACGCTCACCTGGCTCGGGCAGACAGCCACTCTGGAGATCCACGTGCCGCAGTGGCGGTTCGGTCGCACCGGCAACCCCCTGCCGCCGGACCGCCTCGTGCTCGACCTCGACCCCGGTCCCGGCGTCGGCCTGCCCGAGTGCGCCGAGATCGCCCGCCACGCCGGCGACATCCTCGTCGGCATGGGACTCGAGCCCCTGCCCGTGACCAGCGGCTCGAAGGGCATCCACCTGTACGCCGCCCTCACCGGGCCGCACGGCGAGCTCACCTGCGACGCCGTGTCCGCCGTCGCCAAGGAGCTCGCCCGCCACCTGGCCGCCGAGCACCCCGACACGGTCGTGTTCGAGATGAAGCGGGCGCTGCGCGAGGGCAAGGTCTTCGTCGACTGGTCGCAGAACAACGGCTCCAAGACCACGATCGCGCCCTACTCCCTCCGCGGCCTCGAGCGCCCCACGGTCGCGGCCCCCCGCACGTGGGACGAGCTCGACGACCCGGACCTGCGCCACCTCGAGATCGACGAGGTCGTCGAGCGCTTCGAGCGTGACGGCGACCTGCTCGCCCCGCTGCTCGCCGGGCACCTGGACCGCCTGGAACCGACGCCGCAGCGGCTGGCGACGTTCACCCGGCTCGGCACGTACCGGGCCAAGCGGGACCCGGGACGCACCCCGGAGCCGTTCGGCCCGGACGAGGCCGGATCCGACAGCACCGAGGAGACGCCCGGCGCGCCGTCGTTCGTCATCCAGGAGCACCACGCCCGGCGCCTGCACTGGGACTTCCGGCTCGAGCACGAGGGTGTCCTGGTGAGCTGGGCGCTGCCGAAGGGCGAACCCACCGATCCCGGACGCAACCACCTGGCCGTCCAGACGGAGGACCACCCTCTCGAGTACGGCACGTTCGAGGGCTCGATCCCGGCCGGCGAGTACGGGGCCGGGGAGGTCACCATCTGGGACGCCGGCACCTACGAGCTCGAGAAGTGGCGCGAGGACGCCGAGGTGATCGTCACGCTGCACAGCGACCGCCGCGGCCCGCGCCGCCTGGCCCTCATCCGCACCGGCGGCCGGGACGGACAGGACGCGAACTCCTGGCTGATCCACCGCACCAAGGCCCAGCCCGACGACGCCGGCACCCCCGCGCCGCCCGAGGAGGCCGCACCGTCGTCGGCCGGCCGCGCGCCGACATCGCCCGGGCGCGCGCCGCGCCCCATGCTGGCCACGACGGCCTCGACCGGCGAGCTCGACCGCCTCGACCCCGAGCGGTGGGCGTTCGAGGTCAAGTGGGACGGCTTCCGCGCGGTGGTGACGGTCAGCGCGGGCCCGGACGGCGATCCACAGGTCCGGCTGACCTCCCGGTCCGGGCAGGACCTCACCCCGACGTTCCCCGAGCTGACGGCCCTGGGCGAGATGGTCCGGCCCGCCGACCTGCCGCTGGTCCTGGACGGCGAGATCGTGGCGCTGGACGGGCAGGGGCGGCCGAGCTTCCGCCGCCTGCAGCAGCGCGCGAACCTGGTCAAGCCGCGCGACGTCGAGCGGGCACGACGCCGGGTCACCGTCGACCTGGTCCTGTTCGACGTGCTCGAGGTCGCCGGGAGCCCGGTCGTCGACCGTCCCTGGACCGCACGGCGGGCCACCCTCGAGGGCGTCGTGTCACCGCGCCCGCCCGTGCACGTCCCGGCGCCGCTGGAGGGGACGCTCGCGGAGGCGCTCGCGGAGTCGCGGCGCCTCGGTCTGGAGGGGGTCGTGGCGAAGCGGCGCGACGCCGGGTACCGGCCCGGGCGCCGTTCGCACGACTGGTTCAAGGCCAAGCACGCCCGCACGCAGGAGGTGGTCGTGGTGGGCTGGCGTCCGCTCCATGCCGGGGCGCCCGGCGAGGACGTCCGGACCGCCGGGTCGCTGCTGCTGGCGGTGCCCGACGGCGGCACGTGGCGCTACGTGGGCAAGGTCGGCACCGGGTTCCGGGATCGTGACCGGCGTGACGTCGTCGCCGCGCTGCAGGAGGTGCCGTCCACGCCCCTCGAGGGCGTGCCGGCCGTCGAGGCGCGCCACGCCCGCTGGGCCACGCCTGAGCGGGTCGCCGAGGTGGGGTTCGCCGGCTGGACGTCGGTGGGGGCGGGCGGCGCGGAGGCGCGGTTGCGGCACGCCGTGTGGCGGGGCTGGCGCCCGGACAAGGCGCCGGCGGACGTCGTCGTCGAACCGGAGTCCGGTGCGGCACGGAATTCCTGAMTVEGRTLTLSNLDKVLYPATGTTKGEVLHYLATVAPALLAHASHRPATRKRWPDGVESKPFFQKNLDASTPAWVPRRTIRHTSSSNDYVLVDDLATLTWLGQTATLEIHVPQWRFGRTGNPLPPDRLVLDLDPGPGVGLPECAEIARHAGDILVGMGLEPLPVTSGSKGIHLYAALTGPHGELTCDAVSAVAKELARHLAAEHPDTVVFEMKRALREGKVFVDWSQNNGSKTTIAPYSLRGLERPTVAAPRTWDELDDPDLRHLEIDEVVERFERDGDLLAPLLAGHLDRLEPTPQRLATFTRLGTYRAKRDPGRTPEPFGPDEAGSDSTEETPGAPSFVIQEHHARRLHWDFRLEHEGVLVSWALPKGEPTDPGRNHLAVQTEDHPLEYGTFEGSIPAGEYGAGEVTIWDAGTYELEKWREDAEVIVTLHSDRRGPRRLALIRTGGRDGQDANSWLIHRTKAQPDDAGTPAPPEEAAPSSAGRAPTSPGRAPRPMLATTASTGELDRLDPERWAFEVKWDGFRAVVTVSAGPDGDPQVRLTSRSGQDLTPTFPELTALGEMVRPADLPLVLDGEIVALDGQGRPSFRRLQQRANLVKPRDVERARRRVTVDLVLFDVLEVAGSPVVDRPWTARRATLEGVVSPRPPVHVPAPLEGTLAEALAESRRLGLEGVVAKRRDAGYRPGRRSHDWFKAKHARTQEVVVVGWRPLHAGAPGEDVRTAGSLLLAVPDGGTWRYVGKVGTGFRDRDRRDVVAALQEVPSTPLEGVPAVEARHARWATPERVAEVGFAGWTSVGAGGAEARLRHAVWRGWRPDKAPADVVVEPESGAARNSPGPT0014910_441DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
AK018_033241659hypothetical proteinATGCGTGACATCCAGCCCGCCCCCGAGGCGCCGACGGGCGCCCACCCGCCCGACCGGACACCCGGCACGACGCGACTGCGGAGGACGCTCGCCGCGCTCGCCGCCACCGCGCTGTGGGCGGTCGGCCTCACCGTCGCGGCCGCACCGGCCCACGCGGCCACCATCGACACGTCCGCCGAGTACGTGCTGGTCAACCGGCACAGCGGCCTCGCCGCCGACGTGCTCGACGCCTCGACGCAGAACGGCGCCGAGATCATCCAGTGGCACCGGCTCGCCGACGCCCCGTGGCAGCGGTGGCGGTTCCAGGACATGGGAGACGGCTACTACCGCATCGTCTCGGTGCACTCCGGCAAGGCGATCGACGTCTGGGAACGGTCCACCGCCGACGGGGCCGAGATCCGCCAGTACACGGCGAACGACGGCTGGAACCAGCAGTTCCGCCCCGTGGACACCGCCGGCGGGGTCCAGCTGGTCAACCGCCGAAGCGGCAAGGCGCTCGAGGTCTGGGACTGGTCGACGACGGCGGGCGGCCGCCTGAGCCAGTACACCTCCCACGGGGGCACGTCCCAGGTGTGGGACCTCGTCGAGGCGGGGAACGGCGCCGGCACCGGCGAGTGCGGCACAGGCACCTTCACCACCGAGGTGACACGCTCGGGATCGACGTGGACCGCGCGCCGGGGCTCCACCACGCTGTACTCCGGCGGTGACCTGGCCTCCGCGATGCGTGCCGCCGTCGGCGGCCTCACCGCCGGGCGCACCTCGCAGGAGCGCGTCGTCGTCCGCGGGTCGGGCACCATGTCCGCCGGCACCTCGGTGGACCTGCCGAGCCACACGTCGTTGGAGGTCTGCGGCACCATCGACGTCACCGGCACACCCACCGGGAACAACGCTCCGATCCGCATCCGCCACGCCCAGGACGTGTCCGTCCCGCACCTGTCCCTGACGGGCAACCCCTACTTCGGCATCTGGGTGCGCACCTCCTCGGACGTCCACCTCGGCCAGATCGACCTGCGCCTGAACGGCGGCCTCGGCATCCGCATCGACTCGCGCGACGACGACAGCGTGCGCGAGGCCCGCGACATCCGCCTCGACGACGTCTACGTCTCCGGCACGTCCAACCACGGCGTCGAGACCTACGGGGTCGACGGGCTGACGATCGGCACCGTCACTGCCCGGGACACCGGGTACTCCGGGCTGCTGCTCAACGACACGGTCAACGCCACGGTGGGCCGGGTCGACGCCGAGGGCGCCGGCACCGGGACCGGCTACGCCGCGTTCCGCATGGCCAACCGCAACGGGTCGCTCGGCGGCTCCTACCCGACCAACGTCCGGGTCGGGGAGGTCGTCGCCCGCGGCGGCGGTCGCGGCGTCTTCTGCGTCTCGCAGTCCGGCGGCGCCGTCATCGACCGCGTCGACATCGCCGACACCGGCTCCAACGCGGTCCTCATCGAGAACTGCTACGGCGTCACCATCGCCGGCGGCACGATCGCCGGGCCGGGGACCGTCCGCATCGCGGCCCGCAGCGAGTTCCCGAACACGCGTGACGTGACGTTCGAGAACCTGACGCTGCGCGGCACCACCCTGCGCGAGTCGCCGTGCGGCACCGACACCACCGTCCGCAACATCACCTGGGAGAACAGCAGCGACCAGACCTGCTGAMRDIQPAPEAPTGAHPPDRTPGTTRLRRTLAALAATALWAVGLTVAAAPAHAATIDTSAEYVLVNRHSGLAADVLDASTQNGAEIIQWHRLADAPWQRWRFQDMGDGYYRIVSVHSGKAIDVWERSTADGAEIRQYTANDGWNQQFRPVDTAGGVQLVNRRSGKALEVWDWSTTAGGRLSQYTSHGGTSQVWDLVEAGNGAGTGECGTGTFTTEVTRSGSTWTARRGSTTLYSGGDLASAMRAAVGGLTAGRTSQERVVVRGSGTMSAGTSVDLPSHTSLEVCGTIDVTGTPTGNNAPIRIRHAQDVSVPHLSLTGNPYFGIWVRTSSDVHLGQIDLRLNGGLGIRIDSRDDDSVREARDIRLDDVYVSGTSNHGVETYGVDGLTIGTVTARDTGYSGLLLNDTVNATVGRVDAEGAGTGTGYAAFRMANRNGSLGGSYPTNVRVGEVVARGGGRGVFCVSQSGGAVIDRVDIADTGSNAVLIENCYGVTIAGGTIAGPGTVRIAARSEFPNTRDVTFENLTLRGTTLRESPCGTDTTVRNITWENSSDQTCNANANANANA
AK018_03325210hypothetical proteinGTGCTCTGGTCCGTCGTCCTGCTCGTCGCCGCGGTATGGAACCTGGTGGTGTGGCCGCAGTTCTGGCGGCGCGTGACCAAGGATCCCCGGGCCCGCGACGACGCCGGCCGTCCGACCCGGTTCTACACGGTGCACGCGGTGCTGGTCGGGGTCTCCGTGCTGCTCGCGGTGCTGGTGGGTGTGGTCGGGGTGCTCGGCCTGCTCGGCTGAMLWSVVLLVAAVWNLVVWPQFWRRVTKDPRARDDAGRPTRFYTVHAVLVGVSVLLAVLVGVVGVLGLLGNANANANANA
AK018_03326846ku_2COG1273Non-homologous end joining protein KuATGAGGGCGATCTGGAAGGGTGCCGTGACGTTCGGTCTGGTGAACGTCCCGGTCAAGCTGTACAGCGCCACCGAGGACCACGACGTGCCGCTGCACCAGGTGCACGACGCCGACGGCGGACGCATCCGCTACCGGCGAGTGTGCGAGGTGTGCGGCGAGACGGTGCCGTTCGAGCACATCGACAAGTCCTACGACGACGGCGAGCAGGTCGTGGTGCTGACCCGGTCCGACCTCGGGGCGCTGCCCGCGGAGTCGGACCGGGAGATCGAGGTGGTCGAGTTCGTGCCGAGCGACCAGGTCGACCCCATCCTGTTCGACAAGACCTACTACCTGGAGCCCGACTCGAAGAGCCCGAAGGCGTACGTGCTGCTGCGGCGGACGCTGGAGGAGACCGAGCGCACGGCGATCGTGAAGTTCGCGCTGCGCCAGCGCACCCGGCTCGCGGCGCTGCGGGTGCGCGACGAGGTCCTGACCCTGCAGACGCTGCTGTGGGCCGACGAGGTCCGGGAGGCGGAGTTCCCGGCCCTGGACGGCTCGCCGACGGTCAGCGACAAGGAGCTCGCGATGTCGGCCCAGCTCGTGGCGAGCTACGAGGCGGACTTCGCGCCCGAGGACTACACGGACGACTACCAGGTCCAGCTGCGGCAGCTCATCGACGCCAAGATTGAGCAGGGCGACACCCTCGATCCCGCCGAGACGTTCGGGGAGGCCGAGGAGTCCGAGGGGGCCGAGGTGGTCGATCTCATGGACGCGCTGCGTCGTTCCGTCGAGTCGTCGAAGGGCTCGAAGGGCTCGAAGAGCTCCGGGGGCTCGACGTCGAAGAAGTCCACCAAGAAGGCCGGCTGAMRAIWKGAVTFGLVNVPVKLYSATEDHDVPLHQVHDADGGRIRYRRVCEVCGETVPFEHIDKSYDDGEQVVVLTRSDLGALPAESDREIEVVEFVPSDQVDPILFDKTYYLEPDSKSPKAYVLLRRTLEETERTAIVKFALRQRTRLAALRVRDEVLTLQTLLWADEVREAEFPALDGSPTVSDKELAMSAQLVASYEADFAPEDYTDDYQVQLRQLIDAKIEQGDTLDPAETFGEAEESEGAEVVDLMDALRRSVESSKGSKGSKSSGGSTSKKSTKKAGNANANANANA
AK018_03327531betI_2HTH-type transcriptional regulator BetIATGCCTCCCCCACCCGCGGCCCGCGCCAAGGTGCTGGCGGCCTTCACCGAGATCCTCGTGACCACCGGCGAGCGCGCGGCCACCCTCGACGCCGTCGCCGACCGCGCCGGCGTCTCCAAGGGGGGCCTGCTGTACCACTTCGGGTCCAAGGACGCCCTGGTCGACGGGCTCGTGGAGCACCTCACCGAGCTCATCACCGCCGACGTCGCCACCATGCGCGCCGCCCCCGAGGGGCCCGTCGCGTACCTCCTGCGCACCTCGTCCGACGTCGACGCCGAGTTCGACCGCTCCTACCTGGCCGTCGCCGAGCTCGCCCGCGGCGCCTACCCGCACGCCCGCGGCGCCCTCGACACCGCCGAACGCGCCTGGACCGACGCCGTGACCGAGGCCGTCGGGGACCCCACGGTGGCCCGCGCCGTCGTCCTGCTCAGCGACGGGATCTACCACCGCACGTCGCTCGGGGCGGCGCCGCCCGAGCTCGACGAGCTGCTCGAGCTGGTCCGGCGTCTCGGCTCGACGCCCGCGGCCTGAMPPPPAARAKVLAAFTEILVTTGERAATLDAVADRAGVSKGGLLYHFGSKDALVDGLVEHLTELITADVATMRAAPEGPVAYLLRTSSDVDAEFDRSYLAVAELARGAYPHARGALDTAERAWTDAVTEAVGDPTVARAVVLLSDGIYHRTSLGAAPPELDELLELVRRLGSTPAANANANANANA
AK018_033281527lfrA_2COG0477Multidrug efflux pump LfrAATGGTCCAGCTGCCCACGGCACCGGGTCCGACGACGGCACGCGCCACCGCTGCACGCCGCTGGGTCGCGCTCGCCGTCCTGATGCTCCCGGTGCTCCTCGTCTCCATCGACAACACCGTCCTGTCCTTCGCGCTGCCGCAGATCTCCGCGGCGCTGGCACCCACCGGCACCGAGCTGCTGTGGATCGTCGACGTCTACCCGCTCGTGCTCGCGGGCCTGCTCGTGCCCATGGGCTCCATCGCCGACCGCGTCGGCCGTCGGCGTCTCCTGCTCATCGGCGCGGTGGGCTTCGCGGCCGTCTCGGTGGCCGCGGCGTTCGCGCCCAGCGCCGAGGCGCTGATCGCCGCCCGGGCCGGCCTGGGCTTCTTCGGCGCCATGCTCATGCCGTCCACGCTGTCCCTGCTGCGCAACATCTTCACCGACCGCACCGAGCGACGGCTCGCGATCGCGATCTTCGCCTCCGGCTTCGCGGCGGGCGCCGCCATCGGACCCGTCGTCGGCGGCGTGCTGCTCGAGCACTACTGGTGGGGCTCGGTGTTCCTGCTCGCGGTGCCCGTCCTCGCCCTGCTGCTGGCGCTGGCACCGGCCTACGTGGCCGAGTCCCGCGACCCCGCACCCGGACCGATCGACCCCGTCTCGATCGGCCTGGTGATGGTCGCGATGACCACGCTGGTGGCCGGGCTGAAGACCCTCACCAAGGACGACCCGCGTCTCGCGGCCACGCTGCTCGCCGCCGGGCTGGTCGCCGGCACCCTGTTCGTGCGGCGCCAGCTGCGCCGGCCGGAGCCCATGCTGGACGTGCGGCTGTTCACCATCCCCGCCTTCTCGGGCAGCGTCGCGGTCAACCTCCTGTCCGTTTTCTCGCTGGTCGGCTTCGTGTTCTTCGCCTCCCAGGACCTGCAGCTCGTCATCGGGCTCTCGCCCGTGCAGGCCGGGCTCGTCCTGCTGCCCGGGACGGTCGCGATGGTCGTGGCCGGGCTCACCGTGGTGCGGGTGGTGCGACGGGTGCGGCCGGCCCACGTCGTCGCCGCCGGGCTCGCCGTCTCCGCGACGGGCTACCTGCTGACCGCGCTCGTCGCTGGCCGCGGCGAGGCCGTGTGGGTCGGCGTCGCGTTCGTCGCGCTCTCGCTCGGCATCGGCATGGCCGAGACCATCTCCAACGACCTGATCGTCTCGACCGTCCCCGCCGAGAAGGCCGGTGCCGCCTCGGCGATCTCCGAGACCGCCTACGAGGGCGGCTCGGTGCTCGGCACGGCCGTGCTCGGGAGCATCCTGACGGCGTCCTACCAGGCGCACGTCGTGATGCCCGACGGCGTCCCCGCGGCCGACGCGGGCGCGGCGGCCGAGACCCTGGGCGGTGCGACGAGCGTCGCCACCGGTCTGTCCGCCGGGCAGGCCCACGCCCTGCTGGAGTCGGCGCACGCCGCGTTCGCCGACGGTGTGACGATCACCGCCGGTATCGGCTGCGTCGCCGTGCTGGCGGCCGCCGTCGTGGCGCTCGTCACCCTGCGTCGCGTCGAGTCCTGAMVQLPTAPGPTTARATAARRWVALAVLMLPVLLVSIDNTVLSFALPQISAALAPTGTELLWIVDVYPLVLAGLLVPMGSIADRVGRRRLLLIGAVGFAAVSVAAAFAPSAEALIAARAGLGFFGAMLMPSTLSLLRNIFTDRTERRLAIAIFASGFAAGAAIGPVVGGVLLEHYWWGSVFLLAVPVLALLLALAPAYVAESRDPAPGPIDPVSIGLVMVAMTTLVAGLKTLTKDDPRLAATLLAAGLVAGTLFVRRQLRRPEPMLDVRLFTIPAFSGSVAVNLLSVFSLVGFVFFASQDLQLVIGLSPVQAGLVLLPGTVAMVVAGLTVVRVVRRVRPAHVVAAGLAVSATGYLLTALVAGRGEAVWVGVAFVALSLGIGMAETISNDLIVSTVPAEKAGAASAISETAYEGGSVLGTAVLGSILTASYQAHVVMPDGVPAADAGAAAETLGGATSVATGLSAGQAHALLESAHAAFADGVTITAGIGCVAVLAAAVVALVTLRRVESPGPT0028045_84DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167NANA
AK018_033291638hypothetical proteinATGACCGGACGAACCCCGCCCCGCTGGCTGCGGTGGACCCTCGTGGTCGCCACCGCCGTCGCCGCCTGCGTCGCGTTCGGCGTGACCACGGCGACGGCCACCCTGAGCCTGGGCCCGCACGAGGCCGTCTACGAGGTGGACACCGACGGGCTCGTCGTGGCCGATCTCGGCCCGCTCGGCACCATCGAGATCGACTCTCCGCTGCCGCTCGGCCTCGGTGTGGATGTCACCGTCAAGGAGATCCCCGCCGACCTCACCGCCGTCGAGGGTGCGTCGACCCTCGACCGGCTGGTCGGCGACCTCGACCAGTACCTGCAGTTCTACAACACCCCCGAGGTGACGATCGAGGCCGTCGCCCGGGCGCTGGCGGGGGACGCCGTCCGCCGCACGCTCGTGGCGCTCGCCGTCGTCGCGCTGGCCGGCTGGGGCGTGCGCGTCCTGCTGGGCGCGGCGCGGCGGCGCGAGCTCGCGGAGTGGGCCGCGCCGCGCACCTGGCGTCTGGCCGCCGGGACCGCCGTCGTCGCGCTCGTGGCCACGACGGTGGTCTCCGGTGACGTCGACCCGCCGCGGGCCGGACGTCCGGCCACGGAGGTCTTCGCCGGGACAGCGCTCGAGGGGGCGCGGATCACCGGGCGCCTCGCGGGCGTGGTGGACGACTACGGCGGTCAGCTCACCGCGCTGTACGACGAGAACGAGGCGTTCTACGCCGAGGCCCGCGACGAGCTGTCCACCGCGTGGGACTCCTGGGACATCCGCCACGCCGTGCGCACCAACCTCGGCCAGGAGGCCGCCGACGGCGAGGACGTCGTCTCGATGCTCATCGTGTCCGACCTGCACTGCAACACCGGGATGTCCGGCCTCATCGAGGAGTCCGCGGTGCGCTCCGGCTCCGACGTCGTGCTCAACGCCGGCGACACGACGATGAACGGCACGGCCGTGGAGAAGACCTGCGTGGACTCGTTCGCCGCGGCGGTGCCCGAGGGGGTGCCGATGGTCGTCGCGGACGGCAACCACGACTCGGTGCTGACCTCGCAGCAGGAGGCCGCGCACGGCCAGATCATCCTCGACGGCGGGGTGGTCGAGGTGGCCGGCGTGCGGATCCTCGGCGACCGCGACGTGCTGGAGACGCGGATCGGGGAGGGCACCTCGGTCGCCCGCGAGCGCACCCCGGCGGAGCAGGCGGCCGAGCTGGCGGAGACCGCGTGCGCCGAGAACGGCGTGGACCTGCTGCTCATCCACACCCCGCCGGTCGGGACGCCGGCCCTGGAGACCGGGTGCGTCCCGTTCCAGGTCTCGGGGCACACGCACCGGCGGGCCGGTCCGGAGCAGGTCGGTCAGGGGATCCGGTACGTGTCGTCCAGCACCGCCGGGGCGGCCTCCGGGCAGCCGACCGTGGGTCCGTTGCGCGGTACCGCCGAGATGACGGTGCTGCGCTTCGACCCCGACACCCGGGAGATGCTCGACACCCAGCTCGTCGAGGTCACGCCCGACGGGCGGGCCGTGGTCCACGACCGCGTGCCCGTCCCCGGCGTGGTGCCGCCGGTCGGGGAGCTCGAGGCCGGGGTGCCGGGGACGGGGCCGTCCGCGCCGTCGTCGGACGCGCCGGCGACCGTCTCGCCCGGGCCGACGGCGCCGTGAMTGRTPPRWLRWTLVVATAVAACVAFGVTTATATLSLGPHEAVYEVDTDGLVVADLGPLGTIEIDSPLPLGLGVDVTVKEIPADLTAVEGASTLDRLVGDLDQYLQFYNTPEVTIEAVARALAGDAVRRTLVALAVVALAGWGVRVLLGAARRRELAEWAAPRTWRLAAGTAVVALVATTVVSGDVDPPRAGRPATEVFAGTALEGARITGRLAGVVDDYGGQLTALYDENEAFYAEARDELSTAWDSWDIRHAVRTNLGQEAADGEDVVSMLIVSDLHCNTGMSGLIEESAVRSGSDVVLNAGDTTMNGTAVEKTCVDSFAAAVPEGVPMVVADGNHDSVLTSQQEAAHGQIILDGGVVEVAGVRILGDRDVLETRIGEGTSVARERTPAEQAAELAETACAENGVDLLLIHTPPVGTPALETGCVPFQVSGHTHRRAGPEQVGQGIRYVSSSTAGAASGQPTVGPLRGTAEMTVLRFDPDTREMLDTQLVEVTPDGRAVVHDRVPVPGVVPPVGELEAGVPGTGPSAPSSDAPATVSPGPTAPNANANANANA
AK018_03330687mntR_2HTH-type transcriptional regulator MntRGTGAGCGACACCAGCACCGACCTGACGCCCGTGGCCCAGGACTACCTCAAGGCGATCTGGTCCGCCCAGGAGTGGAGCGACGAGAAGGTCACGACGGGGCTCCTGGCCGACCGGCTCGGCGTGGGACCGTCCACGGTGTCCGAGACGGTGCGCCGGCTGACGGCGCAGGGTCTGCTGGGTCACGAGCCCTACTCGGGCGTCTGGCTCACCGACGACGGCCGCCGGCACGCGCTGACGATGGTGCGTCGGCACCGGCTGATCGAGACGTGGCTGGTGCGTGAGCTCGGATACACCTGGGACGAGGTGCACGACGAGGCCGAGGTCCTCGAGCACGCCGTCTCGGACCGGCTGGCCGAACGGATCGACGCGCGTCTGGGCCACCCGGTGCGGGACCCGCACGGCGACCCGATCCCGACGGCGGACGGACGGGTGGTGCGACCGGACGCGGTGCCGCTGGTGGACCTGGCGGCGGGGGACCGGGGGGTGGTGGCGCGGATCTCCGACGCGGACCCCGAGGCGCTGCGCTACCTGGCCGGGCTGGGGCTGGAGCTGGACGTGGAGGTGGCGGTGGCGGACCGCCGCGACTACGCCGGGACCCTCTCCGTGGAGTTCGCCGGGCCGGACGGGCCGGTCGCGGTGGACCTCGGGCATCTCGCGGCCTCGCGCGTGCGGGTCGTCCGCGCGTAGMSDTSTDLTPVAQDYLKAIWSAQEWSDEKVTTGLLADRLGVGPSTVSETVRRLTAQGLLGHEPYSGVWLTDDGRRHALTMVRRHRLIETWLVRELGYTWDEVHDEAEVLEHAVSDRLAERIDARLGHPVRDPHGDPIPTADGRVVRPDAVPLVDLAAGDRGVVARISDADPEALRYLAGLGLELDVEVAVADRRDYAGTLSVEFAGPDGPVAVDLGHLAASRVRVVRAPGPT0003890_480DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003890-troR-K03709NANA
AK018_033311209ydhP_2COG2814Inner membrane transport protein YdhPGTGACCGTCGCCCCGCCCCGCCCGTCGACCGCCCCCGCCCGTGCCGCCGGCGTCGGATGGGCCCTGCTGGCCCTGGCCCTGGGTGGGTTCACCATCGGGACCACCGAGTTCGCCACCATGGGCCTGCTGCCGCAGATCGGCGCCGACCTGGGCGTGAGCGACCCCGTCGCCGGGCACGCCATCACCGCCTACGCCGTCGGCGTCGTCGTGGGTGCCCCGCTGCTGACCGTGGCCGCCGCGCGCATGTCCCGGCGTCGGCTCCTGCTGGTCCTCATGGGGTTCTACACGCTGGCCAACGTCGCCTCGGCCGCGGCGCCGAGCATCGAGTGGCTCGTGGCCGGGCGGTTCCTCGCCGGGCTCCCGCACGGCGCGTTCTTCGGCGTCGGGGCCGCCGTCGGCGCCTCGGTGGCCGGACCGGGCCGCCGGGGGCACGCCGTGGCGATGATGATGACGGGCCTGACGGTCGCGAACGTGGTCGGCGTCCCGCTGTCCACCGCCGTCGGGCAGGCCATGGGATGGCGGGCGGCCTTCGTGCTCATCGGGGTCCTCGGCGCCGCCGCGCTCGCCGGGCTGTGGTGGTTCGTGCCCGAGCGCGGCCCCGTCGAGTCCTCCGTGCGCCAGGAGATCGGCGCGCTGGCCAACGGTCCGCTGTGGGTCGCGTTCGTCGCCGGCTCCATCGGGTTCGGCGGGCTCTTCGCCGTCTACACCTACGTCGCCCCCACCGTGACCCGCGTCTCCGGCATGGCCGAGAGTTCCGTGCCCTGGGTCCTGGCCGTGATGGGCGTCGGCATGACCGTGGGGACCCTGCTGGGCGGGCGGCTGGCGGACCGCTCCGTGCTGGGCACGGTGATCGGCGGCTTCGTGGCGACCGGCGGCTCGCTCGTGGTCTTCGCCCTCGCCGCCGGCACGCCGGTCGGCGCCGTCGCGGGGCTGTTCCTCCTCGGCGTGACCTCGCAGGTGCTGGGGCTGGCGATGCAGACCCGGCTCATGGACCTCTCGCCGCGCGCGGAGTCGCTCGGAGCCGCCCTGTGCCACTCGGCGCTCAACCTCGGCAACGCGAGCGGCGCGTTCTTCGGCGGGCTCGTCATCGCCGCCGGATGGGGTTACGTGGCCCCGGCCTGGACCGGCCTGGCCCTGACCGTGGTCGGCCTGGCGATCGTGCTCGCGACCGCCCGGTGGCGCTCCGCCGGGCGCGCGGGGACCGCCTGAMTVAPPRPSTAPARAAGVGWALLALALGGFTIGTTEFATMGLLPQIGADLGVSDPVAGHAITAYAVGVVVGAPLLTVAAARMSRRRLLLVLMGFYTLANVASAAAPSIEWLVAGRFLAGLPHGAFFGVGAAVGASVAGPGRRGHAVAMMMTGLTVANVVGVPLSTAVGQAMGWRAAFVLIGVLGAAALAGLWWFVPERGPVESSVRQEIGALANGPLWVAFVAGSIGFGGLFAVYTYVAPTVTRVSGMAESSVPWVLAVMGVGMTVGTLLGGRLADRSVLGTVIGGFVATGGSLVVFALAAGTPVGAVAGLFLLGVTSQVLGLAMQTRLMDLSPRAESLGAALCHSALNLGNASGAFFGGLVIAAGWGYVAPAWTGLALTVVGLAIVLATARWRSAGRAGTAPGPT0028991_735DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
AK018_03332660hypothetical proteinGTGCGGTACCGTGCGCGCGTGACCGACACGACGGTGAGCACCGACGGCGACCGGGCCGACCTCGCGGCCGGCGGCCCCCGGCCCCTGTCCACCCGTGCCTTCGGCACGCTGCTCGTGGCGCTCGGCGCCGTCGGGTTCGGCGGGTCGGTGTGGTTGGCGATCGAGAAGGTCCTCAAGCTCGCGGACCCCGACCGGGTGACCTCGTGCTCGATCAACCCGTTCCTCGACTGCGGCGTGGCGATGGGGTCCTGGCAGGGTTCGCTCCTCGGGTTCCCCAACCCGTTCCTCGGCGTCGCGGCGTTCCCCGTCGTGATCACCACCGGCGTCGTGCTGCTGGCCGGCGCCCGGCTGCCCCGCTGGTTCCACCTGTGCCTGCTCGGCGGCACGGTGCTGGGCCAGGCACTGATCTTCTTCCTGATGTGGACGAGCTTCTACGCGCTTTTCGCCCTCTGCCCGGCCTGCATGGTGGTGTGGACCATCATGTGGCCCCTGCTGTGGTTCCAGGTCGTGCACGCCGTCCAGGAGGGCCACCTGCGCGTCGGCGACGGGCTGCGCGGCCTGGTGCTGGGCTACCGCGGCGTGATCCTCGTCATCGGGTACGTCGTGGCCGTCGCGTGGATCCTGTTCGCCGTCGGACCTGCGCTGATCGCCTCGTTCTGAMRYRARVTDTTVSTDGDRADLAAGGPRPLSTRAFGTLLVALGAVGFGGSVWLAIEKVLKLADPDRVTSCSINPFLDCGVAMGSWQGSLLGFPNPFLGVAAFPVVITTGVVLLAGARLPRWFHLCLLGGTVLGQALIFFLMWTSFYALFALCPACMVVWTIMWPLLWFQVVHAVQEGHLRVGDGLRGLVLGYRGVILVIGYVVAVAWILFAVGPALIASFNANANANANA
AK018_033332991leuS_2COG0495Leucine--tRNA ligaseGTGAGCACGCCAGAGACCGACACGCAGCGACCCGACCAGCCCCAGCACCGGTACACGCCCGCCCTCGCGCAGGAGATCGAGCTGCGCTGGCAGGACCGCTGGGAGGAGCGCGGCACGTTCCACGCCGCGAACCCGACGGGCGAGCTCACCGGCGCCGACGGCTCCGCACCCGCCGGCGAGCCGTTCTTCATCATGGACATGTTCCCGTACCCCTCGGGGGCCGGCCTGCACGTCGGCCACCCGCTGGGGTTCATCGCCACCGACGTCGTCGGTCGCTTCCGCATGATGTGCGGCGACAACGTGCTGCACGCCATGGGCTTCGACGCGTTCGGCCTGCCCGCCGAGCAGTACGCCGTGCAGACCGGTGAGCACCCGCGCCTGGTCACCGAGCGCAACATGGTCACCTACCGGCGCCAGCTGCGGCGCATGGGCCTGGGTCACGACCCGCGGCGCTCCTTCGCCACCATCGACAGCGACTACGTGCGCTGGACGCAGTGGATCTTCCTGGAGATCTTCGACTCCTGGTACGACGCCGACGCCGAGCCGGCCGGGAAGCCGGTCGAGGGCGGCACGCAGCGCGGCCGGGCGCGCCGGATCTCCGAGCTGCGCGACGAGCTGGCCGCGGGGACCCGCCCCGTGCCCGGGCACGACGGCGACAACACCGGCGGCGCGGTCTGGTCCGCCCTGGACGCGGGCGAGCAGCGCGACGTGCTCGACGCCCAGCGCCTGGCGTACGTCGACTCTTCGCCCGTCAACTGGTGCCCCGGCCTGGGCACGGTCCTGGCCAACGAGGAGGTGACCGCCGAGGGGCGCTCCGAGCGGGGCAACTTCCCGGTGTTCACCAAGAACCTGCGCCAGTGGAAGATGCGGATCACCGCCTACGCGGACCGTCTGGTCGACGACCTGGAGCTCATCGACTGGCCGGACAAGGTCAAGGCCATGCAGCGCAACTGGATCGGCCGGTCCACGGGTGCGAACGTGCTGTTCGACGTCGTGGGCGCCGGTGACGCCGACGTCGACGCGGCGGGCGCCGGCGGTTCGATCGAGGTCTTCACCACCCGGCCGGACACCCTGTTCGGCGCCACGTTCATGGTCGTGTCCCCGGAGCACCCGCTGCTGGACGAGGTCCCTGCCACCTGGCCCGACGGCACGCGCGACGTGTGGACCGGCGGGCACGCGTCCCCCGTCGAGGCCGTGGCCGCGTACCGTCGCGAGGCCGCCGCGAAGACCGCCGTCGAACGGCAGGCCGACGCCGGCAAGAAGACCGGCGTCTTCACCGGTCACCTGGCCGTCAACCCCGTCAACGGCGAGACCGTGCCCGTCTTCACCGCCGACTACGTGCTCATGGGCTACGGCACCGGCGCGATCATGGCCGTCCCCGGCGGCGACGACCGCGACCACGCGTTCGCCGAGGCCTTCGAGCTGCCGATCGTGCACACCGTGGAACCCGCCGGCGGGCTGCCGGAGGGCCACGAGGGCGCCTGGACCGGCGACGGCGTGACGGTGCGCTCGGCCAACGACGAGATCTCGCTGGACGGGCTGGGCGTCGCCGACGCCAAGGCCAAGATCGTCGACTGGCTGGAGGCGCGGGGCGCGGGGCGCGGCACCACCACGTACCGCCTCAACGACTGGCTGTTCAGCCGGCAGCGGTACTGGGGCGAGCCGTTCCCCATCCTGTGGGACGCCGAGGACCGCCCGGTCGCCATCCCCGCGGACGCGCTGCCCGTCGACCTGCCGGAGGTGCCGGACTACGCACCGCGCACCTTCGACCCGGACGACCGCGACTCCGAGCCCGAGGCGCCGCTGGGCCGCAACGACGACTGGGTGCACGTCACCCTCGACCTGGGCGACGGCCCGCAGCGGTATCGCCGCGACACCAACACCATGCCGAACTGGGCCGGGTCGTGCTGGTACTACCTGCGCTACCTGGACCCCACCTGGGGCACCGACGACGGGGCCGCCGGCGGCGAGGGGCGTCCCGTCGTCGACCCGGAGCTGGAGCGGTACTGGATGGGACCGCGCCACAACGACACGTCCGGCCCGGCCGGCGGCGTCGACCTGTACGTCGGCGGCGTCGAGCACGCCGTGCTGCACCTGCTGTACGCGCGCTTCTGGCACAAGGTGCTGCACGACCTGGGCCACGTCAGCTCGATCGAGCCGTTCGGCAAGCTGTTCAACCAGGGCTACATCCAGGCCTACGCCTTCACCGACGACCGCGGCACCTACGTCCCCGCGGCCGAGGTCGAGGGCGACGAGCAGGCCGGGTGGACGTACCAGGGCCAGACCGTCGAGCGCGAGTACGGCAAGATGGGCAAGTCGCTGAAGAACGTCGTCACCCCCGACGACATGTACGCCGAGTACGGCGCCGACACCTTCCGCGTCTACGAGATGGCCATGGGGCCGCTGGACCTGTCCCGGCCGTGGAACACCCGCGACGTCGTCGGTTCGCAGCGGTTCCTGCAGCGGCTCTGGCGCAACGTCGTCGACGAGACCGACGGTTCGCTGGTCGTCACCGACGACGAGCCCACGACGGACACCCTCAAGGCGCTGCACCGCACCATCGCGGACGTCCGCGTCGAGATGGAGGGCATGCGCCCCAACACGGCCATCGCCAAGCTCATCACCTACAACAACCACCTCACCGGTCTGGACGCCGTGCCGCGCGCCGCCGTCGAGCCGCTGGTGCTCATGGTGGCGCCCATCGCGCCCCACATCGCCGAGGAGCTGTGGGAGCGCCTCGGGCACACCGCGTCGCTGGCCCGCGAACCCTTCCCGGAGGCGGCCGAGGAGTACCTGGTGGCCGAGACCGTCACCTGCGTCGTGCAGGTCAAGGGCAAGGTGCGCGGACGCCTCGAGGTCGCGCCGTCGATCTCCGACGACGACCTGACCGCCGCGGCGCTGGCCGAGCCCAACGTGCTGCGCGCCATCGACGGCGCCGAGATCCGCAAGGTGATCGTGCGGGCGCCGAAGCTCGTCAACGTTGTCGTCTGAMSTPETDTQRPDQPQHRYTPALAQEIELRWQDRWEERGTFHAANPTGELTGADGSAPAGEPFFIMDMFPYPSGAGLHVGHPLGFIATDVVGRFRMMCGDNVLHAMGFDAFGLPAEQYAVQTGEHPRLVTERNMVTYRRQLRRMGLGHDPRRSFATIDSDYVRWTQWIFLEIFDSWYDADAEPAGKPVEGGTQRGRARRISELRDELAAGTRPVPGHDGDNTGGAVWSALDAGEQRDVLDAQRLAYVDSSPVNWCPGLGTVLANEEVTAEGRSERGNFPVFTKNLRQWKMRITAYADRLVDDLELIDWPDKVKAMQRNWIGRSTGANVLFDVVGAGDADVDAAGAGGSIEVFTTRPDTLFGATFMVVSPEHPLLDEVPATWPDGTRDVWTGGHASPVEAVAAYRREAAAKTAVERQADAGKKTGVFTGHLAVNPVNGETVPVFTADYVLMGYGTGAIMAVPGGDDRDHAFAEAFELPIVHTVEPAGGLPEGHEGAWTGDGVTVRSANDEISLDGLGVADAKAKIVDWLEARGAGRGTTTYRLNDWLFSRQRYWGEPFPILWDAEDRPVAIPADALPVDLPEVPDYAPRTFDPDDRDSEPEAPLGRNDDWVHVTLDLGDGPQRYRRDTNTMPNWAGSCWYYLRYLDPTWGTDDGAAGGEGRPVVDPELERYWMGPRHNDTSGPAGGVDLYVGGVEHAVLHLLYARFWHKVLHDLGHVSSIEPFGKLFNQGYIQAYAFTDDRGTYVPAAEVEGDEQAGWTYQGQTVEREYGKMGKSLKNVVTPDDMYAEYGADTFRVYEMAMGPLDLSRPWNTRDVVGSQRFLQRLWRNVVDETDGSLVVTDDEPTTDTLKALHRTIADVRVEMEGMRPNTAIAKLITYNNHLTGLDAVPRAAVEPLVLMVAPIAPHIAEELWERLGHTASLAREPFPEAAEEYLVAETVTCVVQVKGKVRGRLEVAPSISDDDLTAAALAEPNVLRAIDGAEIRKVIVRAPKLVNVVVNANANANANA
AK018_033341503hypothetical proteinGTGGCCCCGCCGTCCCAGCCGGCCGGGCCACGGCTCGCCGGGGTGCTCGCCGGGGTGGAGCGCGCCTTCGCGACGCCGACGCTCGGGCTGCTGCACAAGGCCGAGGCGCCGCTCGTCGTGGCCGTGCTGAGCAGCGTGTTCACGCCGGACCGGCCGACGGTGGCGACCGAACAGCTCCACGTGGAGGTCGACGACCTGCTGGCCGGGCTGCGTGGCGCCGGGGACGCCGTGGTGCCGCCGGAGCCGGCGCGCGTGCTGTGCACCCGGTGGGTGCGCGAACGCTGGCTCGTGCGTTCCCTGGACGACGACGGCGCCGAGCGCTACCAGCTGTCCAGCTACGCCACGGAGGCGCTGGACGTCATCGCGCGGACCCAGGGCGGGCGCGGACTGGTCAGCGAGTCGCGCATCCGGACGCTGCTGGTCGCGCTCGACGACCTCGCCCGTGACGCGCACCCCGACCGCGAGGCGCGGATGCGGCGCCTGCGCGCGCGCATCGACGAGGCGAGCAGCGAGCTGGCCCGGCTGGAGGCCGGGGGAGAGGTCGAGCCCGTCCCCGACGACCGCCTCACCGAGCAGTACGACCACCTGCTGTTCCTGGTGCGTGAGCTGCCGGCCGACTTCGCGCGCGTCGCCGAGTCCCTGAGCGTGCTCCAGCGCGACCTCGTCTCGCGGTTGCGGCACGACGAACGGTCGGCCGGGGTGGTCGTCGAGGAGTACCTGGACGCCTCCGAGAGCCTGCTGGAGGGCACGACCGAGGGGCGGGCGTTCTCCGGCGCGATGGAGCTGCTGGGCGACCCGGACCTGCTGGACTCGCTCGAGCAGCGGGTCGGGGAGATCCTCGAGCACCCGTTCGCCGCCGACCTGCCGCCCGCGCGCCGGGCCGCGCTGGCGAACCTGCGATCCCAGCTCGTGGCCGCCATCGAGGTGGTCCTGGCGGCCCAGACCCGGGTCTCCCGGACCGTGACCGCCCAGATCCGCCACCACAACCCCCTGCGGGACCGCGAGGTCGACACCGCGCTGCGCGAGGCGACCGCGGCGATGGCCGACTGGTTCCCGACGAGCGGCCGTGCCGCGCGGGTGGAGCCGCTGCGCTGGTTCGAGCGGGCCGCGCCCGGCAGGCTGCGCACCACGTTGCACGACCTGCACCCCGAGACGCCCCCGGCACAGCTCGAGTCCTGGGCCGACGACGGCGACGGCGGCGAGGACGAGATCGACGACCTGCGCGCGATGGGCGGCCCGCACCACGGCGAGCTCCTCGCCCGCCTGGCGGCGCTGGAGGCGCCCGCCACCGTCGCGTCGGTGTTCGCCGACGGTCCTGCCGCGCTGCGCCGCCCGGTCGAGCTCCTCGGCTACCTGGACCTGGCGGGCGACGGCGGGCCCGAGGCCACCCGCAGCGGCGACGTCCCCGCGCAGGACGTGGAACGCGTCCTCGCCGTGCGCGCCGACGGCACCGCCCGCGAGTTCGCGCTGCCCCGCACCCCGATCTGGAGGACCGATGACTGAMAPPSQPAGPRLAGVLAGVERAFATPTLGLLHKAEAPLVVAVLSSVFTPDRPTVATEQLHVEVDDLLAGLRGAGDAVVPPEPARVLCTRWVRERWLVRSLDDDGAERYQLSSYATEALDVIARTQGGRGLVSESRIRTLLVALDDLARDAHPDREARMRRLRARIDEASSELARLEAGGEVEPVPDDRLTEQYDHLLFLVRELPADFARVAESLSVLQRDLVSRLRHDERSAGVVVEEYLDASESLLEGTTEGRAFSGAMELLGDPDLLDSLEQRVGEILEHPFAADLPPARRAALANLRSQLVAAIEVVLAAQTRVSRTVTAQIRHHNPLRDREVDTALREATAAMADWFPTSGRAARVEPLRWFERAAPGRLRTTLHDLHPETPPAQLESWADDGDGGEDEIDDLRAMGGPHHGELLARLAALEAPATVASVFADGPAALRRPVELLGYLDLAGDGGPEATRSGDVPAQDVERVLAVRADGTAREFALPRTPIWRTDDNANANANANA
AK018_03335726hypothetical proteinATGACTGACGTCACCGAGGCCGACCCCGTCACGCGGGACGACGACGGCGGTCAGGTGCCGCCGTCGGACACCTTCGTGGAGTCGGTCCCCCTGGAGGACGAGGACACCGCGCTGTTCGCCGGCGACACCGGCGTGCTGTCCGTCGAGGCGCGTCGCGTCCTGGCGCTGGTGCTGCAGCGCCGGTACGTCTCCGCCGCGGAGCACCCGGCCGACTGGACGGCGCTGCTCACCCACCAGCAGGTGCTGTCCTCGCGGCTGCACGACATCTTCGTCGAGCTGGTCGTGGACCGCGACCACGAGATCGCCTACAAGCGCCAGGTGCGGTCGGACGGCCTCACGATCCCGGTGCTGCTGCGCGACGAGCCGTTCAAGCGCGTCGAGACGCTGCTGATGCTCTACGTGCGCAACCGGTACCACCAGGAGCAGGGGGCGGGGCACCCGGCGGCCTACGTGGATGCCGAGGAGATGACGGCGTACGCGCTCGGGTTCCTGTCCCACGACGAGACGAACCTCGCCGCGCGGCACCGCGAGATCGACAACGCGGTGGCCGCGCTGGTGCGCGAGCGGGTGCTCGACGAGGTCGCCGCCGGTCGCTACCGCGTGGGCCCGGTCGTCGAGATCCTGCTGCCGGTGGACCGGCTGCGCGAGCTGACGGCCTGGCTGCAGGACGGCGAGGGTTCCGCGGACCTGGCCGACGGGACGCCGCAGACGGAGGAGACCCCGTGAMTDVTEADPVTRDDDGGQVPPSDTFVESVPLEDEDTALFAGDTGVLSVEARRVLALVLQRRYVSAAEHPADWTALLTHQQVLSSRLHDIFVELVVDRDHEIAYKRQVRSDGLTIPVLLRDEPFKRVETLLMLYVRNRYHQEQGAGHPAAYVDAEEMTAYALGFLSHDETNLAARHREIDNAVAALVRERVLDEVAAGRYRVGPVVEILLPVDRLRELTAWLQDGEGSADLADGTPQTEETPNANANANANA
AK018_033363366smc_4Chromosome partition protein SmcGTGACCGTGACCTCGAGCGCGCGCATGACCGACTCGCTGTTCGGGCTGATTCCCGCGGCGTCGGACGGCCGCCAGTGGATCGCCACGTCCATGCAGCTGGTGAACTGGGGCGGCTACCACGGGCACCACGAGGTGCGGTTCTCGCCGCGGGCCACGCTGCTGTCCGGCGCGTCCGGCTCGGGCAAGTCCACCCTGCTGGACGCCTACATCGCCCTGATGATGAGCCACACGACCCCGTTCAACGGGGCGTCCAACGGTGCCGCGGCCGGCCGGGCCCGGGGCCGCGAGCAGCGCAACGTGCTGTCCTACGCCCGGGGCAAGCTGGACGAGTCGCGCGCGGACGGCGCCACGAGCCGCGAGCAGGTGCTGCGCGGCGACGGCGTGGACACGTGGACCGCGGTCGCGATGTCGTGGTCCGACCAGTCCGGCGGGTCGTTCACGGCGCTGCGTGCCTGGTACGTGCCCCGTGGGGCCACCCGCAACGAGGAGTGTGTCGTCGTGCGGGCCACCGCCGACGCCGCGTTCGACCTGCGCACGCTGGAGGACCTGGCCCCCGGCCGCTTCGCGCGGGCCGGGCTGACCGAGGCCGGACTGACGCTGTTCGACACGGACATCGCGTTCGCCACCCGGCTGCACGCCGCCCTCGGCATCGGCGCGGCCGGCGACGGGCACAAGGCCATGCAGCTCCTGGGCCGCATCCAGGCCGGTCAGGCGATCACCACCGTCGACGCGCTCTACAAGGCGATGGTGCTCACCGAGCCGGAGACGCTCGAGATCGCCGACCGTGCCGTGGAGCACTTCGACGAGCTCAGCGCCGTGCGCACCGAGATGCTCACCGCGTCGCGCCAGGTCGAGGTGCTGCGTCCGATGCGCGGGCTGCGCGAGCAGGTCGACGACGCCGAGGCGACGGTCGCGCTGCTCGACTCGCTCGGCGCGTCGGGCGGGCCGGCGTCCGACACCACGCCCTTCGCGGTGTGGCGCGACGCGCGGCGCCTGGACCTGGTGCGGGCCGAGGAGGAGGTCAACCGCACCGCCCACCGCGCCGCCGAGGAGCGGCGGACCACGGCCGCGTCCCGCATCGCCGCCACCGAGTCGGACCTGGAGGAGGTCCGCACCACGCTGCGTCGGCAGGGCGGGGACGCGGTGGAGTCCGCCGAGCGGGAGGTCCGGCGCCGCGCCGAGGAGCTGGAGCGGGCGCGCACCGCGCGGGCCGCGCTGGACACCCACCTCGCCGTGCTCGAGGCCGACGTCGCCGGACGGCGCGACCTCGACCGGGTCCGACGTCGGGCGCAGGAGATCGTCGACGGCCGCACCGAGCAGGCCGCGAGCCTCGAGGACGACGTCTTCGCCGCGCGGCAGGCCGTGTCCGACGCCGAGCAGCGGCTCGCCCGCCTGGAGCAGGAGCAGGCCTCGCTGGCGCAGCGCCGCGGCAACGTCGGTGCCGAGGACCACGCGGCGCGGGTGGCGCTCGCGGAGGCCGCCGGCATGACGGTCGACGAACTGCCGTTCGTCGGCGAGCTGCTCGAGGTGCGCGGCGAGTACGAGCCGTGGCGGGACGCGATCGGGCTCGCCCTCGGCGGGTTCGCGACCACGCTGCTCGTCGACGCCGACCGGCTCGCCGCCTTCCGGGCCGCCATCGACACCGTGCCGCTGCGCCGACGCCTGCGGTTCGAGGGGGTGCCCACGCACCTGCCCCTGGACGACGACGCGGACCCGGCCACGCTGCCCGGCCGCGTGGAGATCAAGGCCGGCCCGTTCGGCGGCTGGCTGGCGGAACGGCTCGAGCAGCGGTTCGACCACGTGTGCGTCGACGACCCGCGCGAGCTGCGCCGGCACCGACGTGCCCTGACGCGGACCGGCCAGATCGCCGACGGCGAGCGCGGCGCCCACGGTGGCAGCCCGCGCGGATCCGTGCTCGGGTTCTCCAACGCGAGGCGCCGCGAGAAGCTCGTCGCCGACGTCGAGGCCGCCCGCAGCGCCCTGCACGACGCCGGCGCCCGCCTCGAGGGGGCGCGGCTGCGGCAGGCGGCCCACACCGACACGTTCGTCGCCGCGGGCCAGGTCCTCAAGGTCGCCTGGGAGGACGTGGACGTCGACGGTGCGGCCGAGGCCCTGGCCGACCGCGAGGATCGGCTCGCCGCGCTGCGCGACGGCTCCGACGTCGTGCGTGCGCTGACCGCCGACGAGCAGCGGCTGCGCGACCGGCTCACCGAGCTGTACCGCGAGCGCGCCGACGCCGAGAACCGGGTGCGAGAGCTGGGCGAGCAGTGGGCGGCGATCACCGACCTGGTCGACCAGGTCACCGACGCGGTCGAGCGGGCCGAGGCCTCGGGAGCCGTGTGCACCGAGGCGCAGCGCCGTCGGCTGGACGCGACGCTGGCCGCCGTGGCCCCGTCGGACCCGGACCACCTGCCGCTCGCCTCGCTCGACCAGGCGATCACCGCCGTCGGGCGCGAGCTCGCCCGCGACCGCGAGAGCGCGGTGGCCACCGCCGAGTCCGCCCGCGCCGGCCTGCGCGGACTGTTCGAACGGTTCTGCGACGCCTGGCCCAACCCCAACCTCGGCACCGACCCGGACGCCTCCTACGACGACTACTCGCGCATCCTGGCCGAGATCGAGGACCAGCGCCTGTACGAGCTGACCGAACGGTGGTCCCGGACGCTGGGCCGGCTCAGCGGACACGACCTCACGCTGCTGGGCAACGTGATGAGCCGGTCGATCGCGCAGATCCGCGAACGCATGGAACCCGTCAACGCGATCCTGTCCACGCTGCCCTTCCGGGACGACTCCCACCGGCTGCGCATCAGCGCCCAGGTCACCGAGGCGCGCGACGTCACCTCGTTCCGCCGCCGGCTGCGCGAGCTCGCCGCCGACCCCGGCGTGCTCGCGCCGGCCGAGCGGCAGCGCCGCTACGAGCGCATGGCCCGGCTGATCGACCGGATCCGACCGGACTCGCCGGAGCGGCGGCGGCTGGTCGACGTGCGCGAGCACGTGCGCATCAGCGCCGAGTGCGTCGACCTGGACGGCCACCACGTGTCCGTCTACGACCACATCGCCGGCAAGTCCGGCGGGGAGTCGCAGGAGCTCGTGGCGTTCATCGTCGGCGCCGCCCTGCGCTACCAGCTCGGCGACGCCGGAGCCGAACGGCCCCGGTACGCGCCGGTGTTCCTCGACGAGGCGTTCATCAAGGCCGACGCCCGGTTCGCCGGGCGTGCCGTGGGGGCGTGGCAGGGGCTCGGCTTCCAGCTCGTCGTCGGGGCGCCGCTGGACAAGGTCAGCGCACTGGAACCGCACGTCGACGTGGTGCTGCAGGCCGTCAAGGACCCGGCGGGGCGCTCGAGGCTGGTGACGTTGGTCGGTTCCTGAMTVTSSARMTDSLFGLIPAASDGRQWIATSMQLVNWGGYHGHHEVRFSPRATLLSGASGSGKSTLLDAYIALMMSHTTPFNGASNGAAAGRARGREQRNVLSYARGKLDESRADGATSREQVLRGDGVDTWTAVAMSWSDQSGGSFTALRAWYVPRGATRNEECVVVRATADAAFDLRTLEDLAPGRFARAGLTEAGLTLFDTDIAFATRLHAALGIGAAGDGHKAMQLLGRIQAGQAITTVDALYKAMVLTEPETLEIADRAVEHFDELSAVRTEMLTASRQVEVLRPMRGLREQVDDAEATVALLDSLGASGGPASDTTPFAVWRDARRLDLVRAEEEVNRTAHRAAEERRTTAASRIAATESDLEEVRTTLRRQGGDAVESAEREVRRRAEELERARTARAALDTHLAVLEADVAGRRDLDRVRRRAQEIVDGRTEQAASLEDDVFAARQAVSDAEQRLARLEQEQASLAQRRGNVGAEDHAARVALAEAAGMTVDELPFVGELLEVRGEYEPWRDAIGLALGGFATTLLVDADRLAAFRAAIDTVPLRRRLRFEGVPTHLPLDDDADPATLPGRVEIKAGPFGGWLAERLEQRFDHVCVDDPRELRRHRRALTRTGQIADGERGAHGGSPRGSVLGFSNARRREKLVADVEAARSALHDAGARLEGARLRQAAHTDTFVAAGQVLKVAWEDVDVDGAAEALADREDRLAALRDGSDVVRALTADEQRLRDRLTELYRERADAENRVRELGEQWAAITDLVDQVTDAVERAEASGAVCTEAQRRRLDATLAAVAPSDPDHLPLASLDQAITAVGRELARDRESAVATAESARAGLRGLFERFCDAWPNPNLGTDPDASYDDYSRILAEIEDQRLYELTERWSRTLGRLSGHDLTLLGNVMSRSIAQIRERMEPVNAILSTLPFRDDSHRLRISAQVTEARDVTSFRRRLRELAADPGVLAPAERQRRYERMARLIDRIRPDSPERRRLVDVREHVRISAECVDLDGHHVSVYDHIAGKSGGESQELVAFIVGAALRYQLGDAGAERPRYAPVFLDEAFIKADARFAGRAVGAWQGLGFQLVVGAPLDKVSALEPHVDVVLQAVKDPAGRSRLVTLVGSNANANANANA
AK018_033372499malP_2COG0058Maltodextrin phosphorylaseGTGGGTAGTGTCGGCCAGGTGAGCGAGACGACACCGCTGATCGCCAGCCCGGAACACTCCGTCGAAGGATTCGTGCGTGAATACCTGCGCGAGCTGAACTTCACCCAGGGGACGGTGCTGGAGCGTGCGAGCACCAACGACGAGTACCTGGCCCTGGCCCGCACCGTGCGGCACTACCTCATGTCGCGCTGGATCGAGACCACCACCGAGTACTACCGGACGCAGCCCAAGGGCGTCGCCTACCTGTCGGCGGAGTTCCTCCTGGGCCGCCAGCTCGGCAACGCGCTGCTGGCCGCCGACCTGACCGACATCGCCACCGAGGCGCTGGCCTCGCTGGGCATCGACATCGCCGAGCTCGCCGAGGCCGAGGTGGAGCCCGGGCTGGGTAACGGGGGGCTGGGACGGCTGGCCGCCTGCTTCATCGACTCGCTGGCGACCATGGGCGTGCCCGCCATCGGCTACGGGATCCGCTACGAGTACGGGATCTTCCGGCAGAACTTCGTCGACGGCCGGCAGGTCGAGGAACCCGACCACTGGCTGGACAACGGCTCGCCGTGGGAGTTCGCCCATCCGGAGCACGAGGTCACCGTCTCGTTCGGGGGCAGCACCGAGCGGTACACCGACGGCGAGGGCGACGACGCCGTCGAGCGCACCCGCTGGACGCCGGGCTGGCAGGTGCTCGGCGTGCCGTACAACTACATGGTGCCGGGCTACCGCAACCAGCAGGTCAACACCCTGCGGCTGTGGAGCGCCCGCGCGACCCACGCGTTCGACCTGAAGATCTTCAACTACGGCGACTACGCCGAGGCCGTCCGCGCCCAGACCTTCGCCGAGAACATCTCCAAGGTGCTCTACCCCGAGGACTCCACGCCCCAGGGCAAGGAGCTGCGCCTGCAGCAGCAGTACTTCTTCGTGGCCTGCTCGCTGCGCGACTTCATCGACCGGCTGCTCCCGGGCGGGTTCGACCTGCGGCGCCTGCCCGAGCGCATCTGCTTCCAGCTCAACGACACCCACCCGGTCATCGCGATCCCCGAGCTGCAGCGCATCCTCGTCGACGAGGAGGGGCTCGACTGGGACGAGGCCTGGGACATCACCCGCCAGTGCTTCGCCTACACGTGCCACACGCTGCTGCCCGAGGCGCTGGAGGTCTGGCCCGTCGAGCTGCTGGGCCGCCTGCTGCCGCGCCACCTGGAGATCATCTACCGGATCAACGACGACTTCCTCGCCGAGGTCCGCGAGTCCCGGGGTGACGACGAGCTGTTGGTGCGGCGCATGTCGATCATCGCCGAGCACCCGCAGCGAGCCGTGCGCATGGCCCACCTCGCCACCGTCGCCGCCACCAAGGTCAACGGCGTCGCCGAGCTGCACTCCCAGCTCCTGCGCGACAAGGTCCTGGCCGACTTCGCGACGCTGTGGCCCGAGAAGTTCACCAACGTCACCAACGGCGTCACCCCGCGCCGGTTCGTGCGGCTGGCCAACCCGGGGCTCTCCGGGCTGATCACCGAGGCGATCGGTGACGGGTGGGTGACCGACCTCGACCGGCTGCGCGAGCTCGAGCCCCTGGCGGACGACCCCGAGTTCCGCCGCCGCTTCCGCGAGGTGAAGTCGGCGAACAAGGACCGGCTGGTCGAGCTGCTGGCCCGGCGCGACGGCATCGACATCGACCCCGGCACCATGCTGGACGTCATGGTCAAGCGCCTCCACGAGTACAAGCGCCAGACCCTCAAGCTGCTGCACGTCATCACGCTCTACGACCGGCTGCGCTCCGGCGAGCTGGACCCCGCCGACACCGTGCCGCGCACCGTCGTCTTCGGCGCCAAGGCCGCGCCGGGCTACGTGATGGCCAAGGAGATCATCGCGCTGATCAACCACGTCGGCGCCGTCATCAACGCCGACCCCGAGATCTCCCGCGTGCTGCGGATCGCCTTCCCCGCGAACTACGACGTCACGGTGGCCGAGACCCTCATCCCGGCCGCCGACCTGTCCGAGCAGATCTCCCTGGCCGGCAAGGAGGCCTCGGGGACCGGCAACATGAAGTTCGCCCTCAACGGCGCCCTCACGGTCGGCACCGACGACGGAGCGAACGTCGAGATCCGCCAGCTCGTCGGCGACGACCACTTCTTCCTGTTCGGCCTGACCGAGCCGGAGGCGGCCGCCGTTGCCGAGGGCGGGTACCGCCCGTCGGCGTACTACGAGGAGAACGCCTCCCTGCGACGCGCGCTCGACCTCGTGGCCCGCGGGGAGTTCTCCGGCGGCGACCGGTCCACGTTCGAGCCCGTGGTGTCCAACCTGCTGGGCGAGGACCGGTTCATGGTGCTGGCCGATTACCAGTCCTACCTCGACGCGCAGGAGCGGGTGGAGGCCGCCTACCGCGACCCGGACGCCTGGAGCCGTTCGGCGGTGCTCAACGTCGCGCGCACCGGGTTCTTCTCCTCCGACCGGTCCATGCGCGACTACCTCGACCGCATCTGGCACGCCGAGCGCCTGGGCGGCGCCTGAMGSVGQVSETTPLIASPEHSVEGFVREYLRELNFTQGTVLERASTNDEYLALARTVRHYLMSRWIETTTEYYRTQPKGVAYLSAEFLLGRQLGNALLAADLTDIATEALASLGIDIAELAEAEVEPGLGNGGLGRLAACFIDSLATMGVPAIGYGIRYEYGIFRQNFVDGRQVEEPDHWLDNGSPWEFAHPEHEVTVSFGGSTERYTDGEGDDAVERTRWTPGWQVLGVPYNYMVPGYRNQQVNTLRLWSARATHAFDLKIFNYGDYAEAVRAQTFAENISKVLYPEDSTPQGKELRLQQQYFFVACSLRDFIDRLLPGGFDLRRLPERICFQLNDTHPVIAIPELQRILVDEEGLDWDEAWDITRQCFAYTCHTLLPEALEVWPVELLGRLLPRHLEIIYRINDDFLAEVRESRGDDELLVRRMSIIAEHPQRAVRMAHLATVAATKVNGVAELHSQLLRDKVLADFATLWPEKFTNVTNGVTPRRFVRLANPGLSGLITEAIGDGWVTDLDRLRELEPLADDPEFRRRFREVKSANKDRLVELLARRDGIDIDPGTMLDVMVKRLHEYKRQTLKLLHVITLYDRLRSGELDPADTVPRTVVFGAKAAPGYVMAKEIIALINHVGAVINADPEISRVLRIAFPANYDVTVAETLIPAADLSEQISLAGKEASGTGNMKFALNGALTVGTDDGANVEIRQLVGDDHFFLFGLTEPEAAAVAEGGYRPSAYYEENASLRRALDLVARGEFSGGDRSTFEPVVSNLLGEDRFMVLADYQSYLDAQERVEAAYRDPDAWSRSAVLNVARTGFFSSDRSMRDYLDRIWHAERLGGAPGPT0018545_2567DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0018545-glgP-K00688NANA
AK018_03338915degVCOG1307Protein DegVATGCGCGACGTTCCCGCCGTGCGAGTCGTCACCGACTCGACCGCCAGCCTGCCCCGTCCCGGACACGCCGCCGTCGCGGACGTCCTGACCAGCCCTGACGTCGCCCCGACGGTCGTGCCCCTGCACGTCCTCGTCGACGACGAGGTGCGGCGCGAAGGGGTCGAGATCACGGCCGCGGAGGTCGCCGAGCGCATCTCGCGCGGCGAGCGGCTCACCACGTCCCAGCCATCGACCCAGGAGCTCGCGGAGGCCTACCGGGACCTCGCCGCGCAGGGCGCCCGCGCCATCGTCTCGGTGCACCTGTCCGGCAAGCTGTCCGGCACCGTCGCGACCGCGGAACGGGCCGGGCAGCGCGCCATGCTGCCCGTGCGCGTGGTCGACTCGGGGACGGCCGCCATGGCGCTCGGCTTCGCGGCCGTCGAGGCCGCGCGGTGCGCCGCCGCCGGGTGCGACGCCGACCACGTGGCCCGCCGTGCCGAGCAGGTCGCGGCCTCGGCACGCGCCCTGCTCCTCGTCGACTCCCTCGACCACCTGCGCCAGGGCGGTCGCCTCTCCGGACCTGCCGCCGCGCTCGGCCAAGCCCTCGGCGTGCGGCCCCTGCTCGGCATCGAGGACGGCACCGTGGACCTGGTCCAGCGGGTGCGCACCCGCAAGGCCTCCGTCGGCCGGCTCCTCGCGCTCGCCGAGGAGCACGCGGACCTGGCCACGCGCCCCGTGGTGGCCGTGCACCACCTCGGGGCCGAGGACCGCGCCGAGGAGATCGCCGCGGCCCTGACCGAGCGGATCGGGGTGCGGCCCGTCGTCACCCCGGTCAGCGCGGTGCTCGGCACGCACGTGGGCCCCGGGGCGCTCGCCGTCGTCGTCGCCGACCGCGGCGGGCACGTGCACGACCTGGAGCCGGGCGGGCCCTGGTAGMRDVPAVRVVTDSTASLPRPGHAAVADVLTSPDVAPTVVPLHVLVDDEVRREGVEITAAEVAERISRGERLTTSQPSTQELAEAYRDLAAQGARAIVSVHLSGKLSGTVATAERAGQRAMLPVRVVDSGTAAMALGFAAVEAARCAAAGCDADHVARRAEQVAASARALLLVDSLDHLRQGGRLSGPAAALGQALGVRPLLGIEDGTVDLVQRVRTRKASVGRLLALAEEHADLATRPVVAVHHLGAEDRAEEIAAALTERIGVRPVVTPVSAVLGTHVGPGALAVVVADRGGHVHDLEPGGPWNANANANANA
AK018_033391041hypothetical proteinGTGACGACCACCACGCCCCGGCACCGTCCGGGACCGACGCCCGACCCGGCCGCCGACGTCGCGCCGCACGACGAGCCCGAGCACGGCGACGCGCGCGGCACGACGGCGCGGCTCGCGGCGCTGCGTGCCGCCCTGGCCGACCACGACCCGGCCGCGGCGGCCACCGGGCCGGACTCGACCACCGGGCAGGAGGCGACGACCGCGGCGGCCGACGAGCTGGCCGACCGGCTCGTCCGACGACGGTCCGCCGGCCACGTCGCCGCCGCGTACAGCGCGGCCCACGGGCACCCGACGTCGGCGCACGAGCGCTCGGGACGTCGTCGCTGGGCGCTGACCACCCCGGTGGCCGTCATCGCCTCGGCCGCCCTGACGGTGCTCGCCCTCGGAGTGCTCGTGGTCGCGTCGTGGCCCCAGCCGATGGTCCCCGCCGTCCCGGCCGCGGACGTGCAGCTCGACGGTTCGACAGGTCCGGCGGCTCCCGTCGAGAGCGTCGTCGCCGAGCCGCCGGTGGACGACGGATCCGACGCGGAGGAGGCGTCGACGTCCGACGGCGGCGGCCCGGCCGGCTCGGTGCCGACTCCCGTGGCCGGTTCCGCCGGGGTGGAGGTCGTCGTGCACGTCGTCGGGCAGGTGGCCCGACCGGGTCTGGTCGGGCTGCCCGCCGGGGCCCGTGTCGCCGACGCCGTCGAGGCCGCCGGGGGAGCGGGCGACGGCGCGGATCTCGCCGCGCTCAACCTCGCACGGACCGTGACCGACGGCGAGCAGGTCTACGTGCCCTCGCCCGGGGAGGAAGTGCCCGCGCCGCCGCCGACCGGTGGCGCCGGAGGCGGTGCCGCCGAGGAGCCGACCGCCCCCGTGCGGGTGAACGAGGCCGACGCCAGCACCCTCGCCACGCTGCCCGGTATCGGCCCGGTGCTGGCCGAGCGGATCGTCGCCCGGCGGGACGAGAACGGCCCGTTCACCCAGGTGGACCAGCTCGCCGAGGTCTCGGGCATCGGTCCGGTGCTCCTGGACGAGCTGCGCGACCTCGTCACGGTGTGAMTTTTPRHRPGPTPDPAADVAPHDEPEHGDARGTTARLAALRAALADHDPAAAATGPDSTTGQEATTAAADELADRLVRRRSAGHVAAAYSAAHGHPTSAHERSGRRRWALTTPVAVIASAALTVLALGVLVVASWPQPMVPAVPAADVQLDGSTGPAAPVESVVAEPPVDDGSDAEEASTSDGGGPAGSVPTPVAGSAGVEVVVHVVGQVARPGLVGLPAGARVADAVEAAGGAGDGADLAALNLARTVTDGEQVYVPSPGEEVPAPPPTGGAGGGAAEEPTAPVRVNEADASTLATLPGIGPVLAERIVARRDENGPFTQVDQLAEVSGIGPVLLDELRDLVTVPGPT0029410_96DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029410-comEA-K02237NANA
AK018_033402400hypothetical proteinGTGACCGTCGACCTGCGCCTGGCGCCGACCGTGCTCGCGGCCTGGGTCGGAGCCTGGGCGCTCACCGGTGCCCACGGACCTGCTGCCGGACACGTCGCCGCGGCCGCCACGCTGCTGGTGCTCGGCGCCGTCGTCCTCGGCCTGCGCGTCGGCGCCCGTCCCGGCCACCGGCCCCGGCTCCGGCAGGTGGCGGCGCACGCGGTGCTCGCCGGGACCTGCCTGGCGGCGGTCGCGGCATCCGTGCACGTCCAGCAGGCGGCCCGCGAGCCGCTGCCGGCGCTCGCGGAGCAGGGCGCCGTCGTCACGGTCGTGGGCGCCGTCGCCTCGTCCGACCGGCCCGACACGTTCGGCGGCCGGCGCTGGGTCCTGGACGTCGCACGGGTCGAGCACCGCGGTGTGACCAACCCGGTGCGCGCCCACGTCGCCGTGACGGCCCCGGGTCCCGCGCCCCGGTTCGGGGCGTCGGTCGTCCTGCGGGCGCGGCTCGCCCCACCGGGGATCGGCGCCGGCGTGGTCGCGGCCGCCGACGCGGACGACCCGGTGGCCGAGGTCGCGCCGCCGGGAGCGACGGGACGGCTGACCCACCGGATGCGCACCGCTCTGCTCGAGGTGACGGACCCGATGTCGCCGCAGGCCCGGGGTCTGGTGCCCGGAGCCGCCGTGGGGGACACCTCGCGGCTGCCCGACCCTCTCGACGAGGCGATGCGCACGACCGGTCTCACCCACGTCACCGCCGTGTCGGGCAGCCACTTCGCGGTGGTGCTCGCCGCGGCGACCGCGCTGTGCGTGGCCGTGCGGGTCCCGCGGGCGGTGCGCGTGGTCGTGCTGGCCGCCGTCGCGGTCGGGTTCGTCCTGCTGGTGCGGCCCGAACCCAGCGTGCTGCGGGCGGCGTGGACGTGCGCGGTGGGGCTGCTCGCCCTCACGCTCGGCCGTCCCGCCGCGGGTCCGGCCGCCCTCGCGACGGCCGCCACCGTCCTGCTCGTCGTCGACCCCTGGCAGGCGCGGTCGTTCGGCTTCGCGCTCTCCTGCGCGGCGACGGCGGGGATCGTGCTGCTCACCGGGCCGCTCGTTCGGAGACTGGCCCCCTGGTGCGGGCGGGCGGGGGCCTTCGCGCTCGCCGTGCCGCTGGCGGCCCAGGCGGCGTGCGGTCCGATCCTGGTGCTGCTGGACCCGGTGGTGCCCACCACCGCGGTCGTGGCCAACCTGCTCGCCGCCCCGGCGCTCGTGCCCGCCACCGTGCTGGGACTGGTCGCCACGCTGCTCGCGCCGTGGGCCCCGGTCGTGGCGGCGGCGGTGGCGTGGACGGCGGGGCTGGCCACCGCATGGATCGCGGGGGTCGCGACCTTCTTCGCGGGGCTGCCCGGCGCGCGGATGCCCTGGACGGAGGGTGTCCCGGGCGCCCTGCTGCTGGCCGCCGTCACCGGCGTCGCGCTGCTCCTCGTGCTGCTCCGACCCCCGGGGGACGGGTGGCCGGCGGACCGGGCGGGAGCGGTGCTGCGACGGCTCCGCTCGCCGCGTGGTGGCGCACGGTCGTGGAGCCGGCCCGTGGCCCGGCTGCTGGTCGTCCTGCTCGCCCCGGCCCTGGCCACCGGCGCCGGGCTGCTCGTGCTGCGTCCCGGGACGTCCGACCTGCCGGCGGACTGGCAGGTCGTGGCCTGCGACGTCGGACAGGGCGACACCCTGGTGGTGCGGACCGGTGCGCGGTCCGCCGTGGTCGTGGACGTCGGTCCGCCCGGGGACGCCGCGGCCACCTGCCTCGACCGGCTCGGCGTCGAGCACGTCGACGTGCTGGTGCTCAGCCACTTCCACACCGACCACGTCGGCGGCCTCGAGCCCGTCCTGGCCGGACGCACGGTCTCCGCGGCGCTCGTCTCGCCCCGGGACGAGCCGGCCGGCCCCGCCGCCCGGACCCGTGCGGTGCTGTCGGACGCGGGTGTGCCGGTCACCGTGGCCACACCGGGCTCTCGGGCCAGCGCGGGGACCACGCAGTGGCAGGTGCTCGCCGCGCACGCCGGCACGCCGGGCGGCGACACGGCGAACGACGCGAGCGTCGTGCTGTGGCTGCGCACCGCGGCCGGGCTCGACGTCGTGACGCTGGGTGACCTCGAGGAGGCCGGTCAGCGGGCGCTGCTGGACACCCTGCCCGCCTCGGGGCTGCCGGCCGGAGGTCTCGACGTGGTCAAGATGGCCCACCACGGCTCGGCCGACCAGTCCGCGGCGCTGGCCCATCGGTTGTCGCCGCGGCTGGTGCTGGTACCGGTCGGGGAGAACGACTACGGGCACCCGACCAGCAGCGCCCTGGACCTGTACGCGGAAACGGGGGCGCGGGTGCTGCGCACGGACCGGTGCGGGGCGGTCGCCGTGGTGGTGCGCGACGGTGCGCCGGCCGCGACCTGCTGAMTVDLRLAPTVLAAWVGAWALTGAHGPAAGHVAAAATLLVLGAVVLGLRVGARPGHRPRLRQVAAHAVLAGTCLAAVAASVHVQQAAREPLPALAEQGAVVTVVGAVASSDRPDTFGGRRWVLDVARVEHRGVTNPVRAHVAVTAPGPAPRFGASVVLRARLAPPGIGAGVVAAADADDPVAEVAPPGATGRLTHRMRTALLEVTDPMSPQARGLVPGAAVGDTSRLPDPLDEAMRTTGLTHVTAVSGSHFAVVLAAATALCVAVRVPRAVRVVVLAAVAVGFVLLVRPEPSVLRAAWTCAVGLLALTLGRPAAGPAALATAATVLLVVDPWQARSFGFALSCAATAGIVLLTGPLVRRLAPWCGRAGAFALAVPLAAQAACGPILVLLDPVVPTTAVVANLLAAPALVPATVLGLVATLLAPWAPVVAAAVAWTAGLATAWIAGVATFFAGLPGARMPWTEGVPGALLLAAVTGVALLLVLLRPPGDGWPADRAGAVLRRLRSPRGGARSWSRPVARLLVVLLAPALATGAGLLVLRPGTSDLPADWQVVACDVGQGDTLVVRTGARSAVVVDVGPPGDAAATCLDRLGVEHVDVLVLSHFHTDHVGGLEPVLAGRTVSAALVSPRDEPAGPAARTRAVLSDAGVPVTVATPGSRASAGTTQWQVLAAHAGTPGGDTANDASVVLWLRTAAGLDVVTLGDLEEAGQRALLDTLPASGLPAGGLDVVKMAHHGSADQSAALAHRLSPRLVLVPVGENDYGHPTSSALDLYAETGARVLRTDRCGAVAVVVRDGAPAATCPGPT0029415_962DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029415-comEC-K02238NANA
AK018_033412211hypothetical proteinGTGGACCACCCGCATGCCGACGCACCTCCCCTGCCCGCTCGCCGACCTCGCCTCCTGGGACGGGACCGGGAGGTCCACGAGGTCCTCGCCGCGGTCGACGCCGCGGCCCAGTCGGTCGTCACCGTCACCGGCACGGGCGGCAGCGGCAAGACGGCCCTGGCCCTCGAGGTCTGCCACCGTCTGACCGTGCAGTTCGGGCGCCGCTGGTTCGTGGACCTGACCCGCGTCGAGCATCCTGACGACGTGGCGGTGCACGTCTCCCACCGGCTCGGCCTGCGCCCCGGACGGCTGGACCCCGACCAGGTGCTCGTCGACGAGCTGCGCCGAGGTCCGGCCCTGCTCGTGCTGGACAACTGCGAGCACGTGCTGGACGCGGTCGCCGAGCTGGTCGGGCACCTGACCGCGGGATGCCCGGAGCTCACCGTCCTGGCCACCAGCCGCCGCCCCCTGGACGTGCCCGCGGAGCGCACCGTCCCGCTGGCCCCGCTGAGCGTGACCCGACCCGACGGCTCGCCCGGGGCCGCCGTGGACCTGCTGGTCGAGCGGGCCCGTGCGGCGGGCGCCGACGTCGTCGTCGACCCCCGCACCACCCCCGCCCTGATCGAGATCTGCCGCCGTCTCGACGGACTGCCCCTGCCGGTGGTCCTGGTGGCGCACCGCCTGCGCGGCGCCGGACCCGCCGAGGTCGCCGAGCAGCTGGCGACCGACCTGACGCTGCCATCCCTGCGCGGCGGCGCCGTGCACCAGCGCACGATGACGGCCTCCCTCGACTGGAGCCTCGACCTGCTGGCCGCGCCCGAGCGGGACCTCCTCCTGCGTGCCGGGGTGTTCGTCGGCACGTTCGACGCCGAGGACTGCCGTGCCGTGTGCCTGCCGGACGCCGCACCGGCAGCGGCGCGGGACCTGCTCGCCCGGCTCGTCGACCACTCGCTCCTGGTCGCCGACACCACGACCGACCCGACGCGGTACCACCTGCTCGCCGTCGTCCGCGAGCACGTGCGCCGACGGACCGGTCCCGCGCTGCACGTCGAGACCGTCGCCGCCCACCGCCGCCACCTTGTCGGCACCGTCGGCGTCGCCGCCCGCACCACGCCCTTCTTCACCCAGATCGACGTCCGGCGCATCGAGATCATGCACGACGACGCCGTCGCAGCGCTCGACCGGGCCGTCGACGACGGCGACACGACCGCCGTCGTGCACCTGCTGATGGCGCTCATGCGGTTCTGGCGCGTCACCGGCCGGATCCGCTTCGGCGTCGAGCGGATCGCGGCATCCACGCCCGGCCTGGACGGGGTCGAGCTCGCGCTGGTACGACTCATCCGCGCCGACCTCGAACGGGTCCTCGGTCTGCTCGACGACGCCGAGAAGCACGCCCGCGCCGCCCTGGCCACCATCCGCTCGGCCGGGCCCGCCCTCGCCCCCGCGCTGCCGACCGCGACGGGCATCCTGGGCACCGTACTCGCCGACCGCGGGCAGTACGACCAGGCCCGCGACCTCTTCACCGAGGTCTTCGGGCTCTACGACCCCGCCGAGGACCGGCGTCTGCACGCCGTGTGGTGCGCCACCCTCGGCGACATCGAGCTGCGGGCCGGCCGCCACGACGCCGCCCGGACCCTGCTGCTCGAAGCCCGCGACGTGTTCTCCGGCCAGCACGACCAGCCGCAGGTGTGGCTGGCGGGACGCGTGCACGGACAGCTCGGCGTGCTCGCCCGGCACCGCGGCGAGCTCGCCGAGGCCCGCGAGCTGCTCGTGACGGGCCTGGACGAGCTCGCGGCCTACGGGGCGCTCGCGGAGGCTGCCCCGCTCGTCGAGGAGCTGGCCGAGATCCTCGCCGCGACCCGCCGCGAGGGCGACGCCGCCGAGTGCCGACGCGCGGCGGCCGGGATGCGACGCCAGGTCGGCTCGCCGCACGCCGGCGACGACGATGGCGACGAGGGCGACGAGGTGTCCCTGGGCATCGCGGCCGTGGTGCGGCTGGTGCGCGACGGCGCCGCGCCGGCGGGCGACGAGGTGCTCACCCCGCGCGAGGACGAGGTCGCCGAGCTCGTCGCCGAGGGGCTGACCAACCCCCAGATCGCTGCCCGGCTGGTCATCTCCCCCGGCACCGCGCGCACGCACGTCGAGCGGATCCGCACCAAGCTCGGGGTGTCCACGCGCGTCCAGGTCGCCCGGTGGGTCATGGACAGATACGTCGATCGACGGACGCGCTGAMDHPHADAPPLPARRPRLLGRDREVHEVLAAVDAAAQSVVTVTGTGGSGKTALALEVCHRLTVQFGRRWFVDLTRVEHPDDVAVHVSHRLGLRPGRLDPDQVLVDELRRGPALLVLDNCEHVLDAVAELVGHLTAGCPELTVLATSRRPLDVPAERTVPLAPLSVTRPDGSPGAAVDLLVERARAAGADVVVDPRTTPALIEICRRLDGLPLPVVLVAHRLRGAGPAEVAEQLATDLTLPSLRGGAVHQRTMTASLDWSLDLLAAPERDLLLRAGVFVGTFDAEDCRAVCLPDAAPAAARDLLARLVDHSLLVADTTTDPTRYHLLAVVREHVRRRTGPALHVETVAAHRRHLVGTVGVAARTTPFFTQIDVRRIEIMHDDAVAALDRAVDDGDTTAVVHLLMALMRFWRVTGRIRFGVERIAASTPGLDGVELALVRLIRADLERVLGLLDDAEKHARAALATIRSAGPALAPALPTATGILGTVLADRGQYDQARDLFTEVFGLYDPAEDRRLHAVWCATLGDIELRAGRHDAARTLLLEARDVFSGQHDQPQVWLAGRVHGQLGVLARHRGELAEARELLVTGLDELAAYGALAEAAPLVEELAEILAATRREGDAAECRRAAAGMRRQVGSPHAGDDDGDEGDEVSLGIAAVVRLVRDGAAPAGDEVLTPREDEVAELVAEGLTNPQIAARLVISPGTARTHVERIRTKLGVSTRVQVARWVMDRYVDRRTRNANANANANA
AK018_033421149pimB_2COG0438GDP-mannose-dependent alpha-(1-6)-phosphatidylinositol monomannoside mannosyltransferaseGTGCCCCGGACCCTCGTCGTCACCAACGACTTCCCACCGCGCCAGGGCGGCATCGAGACGTTCGTGCACGCCATGACCTCCCGGTTCGACCCCGACGACGTCGTCGTCTACACCTCGTCCACGCCCGGCCAGGACGCCTCCGACCGCGCGCTGCCCCACCAGGTGGTGCGGGCCCGCACCCGGATGCTGCTGCCCACCCCGGCCCGGACCCGCGACGTCGTCCGGCTCGCCACCGAGCACCGGTGCGAGGCGGTCTGGTTCGGCGCCGCTGCTCCCCTCGGGCTCATGGCCCCGGCCCTGCGCCGACGCACCGGCGTGCGCCGCATCGTGGCCACCACGCACGGCCACGAGCTCTGGTGGGCGCGCGTGCCCGGCACGCGGGCCGCCCTGCGCCGCATCGGCCGGCACGTCGACCACCTCACCTATCTCTCGGACCGCACGGTCGGCACGCTGGCCGACGCCGTGGGCCCCGACGCCGCCGCCCGTGCCGTCCGCCTGTCCCCCGGCGTCGACCCGTCGGCGTTCACGGGCACCGACCCCGCCGGGGGGCGCGCCGTCCGCGAGCGCTACGGCATCCCCGCCGACGCGCCGGTGGTGCTGTGCGCCGCCCGGATCGTCGCGCGCAAGGGCCAGGACACGCTCGTGCGCGCGATGCCCGCCGTCCTGCGCGAGGTGCCCGAGGCACGGCTGCTCGTAGTCGGCGACGGCCCCTACGCCGAGCGAGTGCGGCGGCTCGTCGACGAGCACGACGTCGCCCACCGGGTCGTGCTCGCCGGCGGGCACCCGCACGCGGCGATGCCGGCGTTCTACGGCGCCGCCGACGTCTTCGCCGGCCCGTCGCGCACCCGACGCGGCGGACTCGAGGTCGAGGGCCTGGGCATCGTCTACCTGGAGGCGCAGGCCGCCGGGCTGCCCGTCGTCGTGGGCGACTCCGGCGGCGCCCCCGACGCCGTGCGCGACGGCGTCACCGGGTACGTCGTCGACGGCGCCGACCCGGCCGACGTGGCGCGACGGCTGGTCACCCTGCTCGGCGACGAGCCGCTGCGCCGGCGCATGGGCGCCGCGGGACCCGGGTTCGTCACGGACTCCTGGACCTGGGACGAACGCTTCGAGATCCTGCGCCGCCTGCTCACGGCCGACGACACCTGAMPRTLVVTNDFPPRQGGIETFVHAMTSRFDPDDVVVYTSSTPGQDASDRALPHQVVRARTRMLLPTPARTRDVVRLATEHRCEAVWFGAAAPLGLMAPALRRRTGVRRIVATTHGHELWWARVPGTRAALRRIGRHVDHLTYLSDRTVGTLADAVGPDAAARAVRLSPGVDPSAFTGTDPAGGRAVRERYGIPADAPVVLCAARIVARKGQDTLVRAMPAVLREVPEARLLVVGDGPYAERVRRLVDEHDVAHRVVLAGGHPHAAMPAFYGAADVFAGPSRTRRGGLEVEGLGIVYLEAQAAGLPVVVGDSGGAPDAVRDGVTGYVVDGADPADVARRLVTLLGDEPLRRRMGAAGPGFVTDSWTWDERFEILRRLLTADDTPGPT0024300_504DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024300-pimB-K13668NANA
AK018_033433159cenCEndoglucanase CGTGCAGACCAGACAGCAACGACGCCGTCCGGTGGTCGCCGTGGTGAGCGTCGCGCTGGCGTCCGCGGGCGCCCTGGCGCCGACGACGGCGCAGGCCGATGAGCCCGACGTGAACCTCGTGGCCAACGGGACGTTCGACCCGGGAGTCCACGGCCAGTGGTGGGGCGTCACCGACGACGACGTCACCGACGGCGAGCTCTGCCTCGACGTCCCGGCGACCGAACGCTTCGGCAACTTCGTCGACCTCGGCCTCGAGGCCGGCACGGACTACCGTCTCGGGTTCACCGTCCACGGCGACCCGGGCACGGCCGGTCTCGAGGCACGGGTGCAGGCGGACGGGGCGTCCGGCCCCGAGGGGTTCGACGTCGCCGAGACGTTCACCGCGGGTCCGGAGCCCCAGCAGCACGAGTGGGGCTTCACGGCCACCGGCGACGCCCAGCGTGTCCAGTTCGAGCTCTCCGGGGCGGACCCGGGCAGCAGCGTCTGCCTCGACGACGTCTACGTCACCCCGGTCGCGCACGTCGCGCAGAACCCGCGGTTCGACGGGCTCGCCCCGTGGTGGACGACGCCGAACCTCGACCTGGTGCCGGCCGACGGACGGATGTGCGGCACGGTCCCCGCCGGCGGCAACCAGTGGGACGTCATCCTCGGCCAGGGCGGGATCGCGCTCGAGGCCGGACGCCCCTACACGGTCACGGTGACCGCCTCCGGGGCACCCGAGTCCGCCGTGCGGCTGCTCGTCCCGCAACCCGGCACCGACTGGCCGCCCGCGTACTTCGCCGACCTCACGCTGCGGGCCGACGGGCAGTCCTTCGGCGAGACCTTCGAGGTCGACGAGGACATCGCGACCGAGATCCAGCTCCAGCTCGGCGGCAACCCCGAGCCCTTCGAGCTGTGCCTGGACGAGGTCTCGCTGACCACGGGCGGCACGGTCGAGGAGTTCGAGCACGACACCGGGCCGCGGGTCCGGGTGAACCAGCTCGGCTACATGCCCGACGGGCCCAAGCGCGCGACCGTGGTCACCGAGGCCACCGACCCCCTGCCGTGGGAGCTGCACGACGCCGGGGGCGCCGTCGTCGCCGCGGGCGAGACGACGCCGGCCGGGCTCGACGAGTCCGCCGGGCTGGAGGTGCACACGGCGGACTTCACCGACGTCAGCGCCGTCGGCGAGGGCTTCCGGCTGGTGGCCGACGGCGAGGAGTCCTACCCGTTCGCGATCGCCGCCGACCTGTACGAGCCGCTGCGCGACGACGCGCTGGGCATCTACTACACCCAGCGCTCCGGGTACGAGATCACGCCGGTCGAGATCGACGGCGAGGAGCACAAGACCGAGTACGTCCGCCCGGCCGGGCACGTGAGCGAGTTCGGGGCCGACGACGTCAACCAGGGCGACCTGGGCGTGCCCTGCCTGCCACCGGACGGTGCGGTGAACCACGAGGGGGCGCCGCAGCTCGGCGCGGACGACCACTACGGCGCCGACGGCTGGGTCTGCCCGGACGGGTACGCCGTCGACGCCGCCGGCGGCTGGTACGATGCCGGCGACCACGGCAAGTACGTCGTCAACTCCGGCATCGCCGTGTACCAGCTGCTGTCGACCTACGAGCGCAGCCTGCACGCCGGCACCGTGAACGACGGCGCCCTGGGCGACTCGACCCTGGTGGTCCCCGAGCGGGACAACGGCGTGCCGGACGTCCTGGACGAGGTGCGCTGGAACCTCGAGTGGATGCTGCGCATGCAGGTCGCCGACGGCGTGACTATGACGATCGACGGCGACCAGGTCGACGCCGGCGGGCTCGTGCACCACAAGCTGCACGACATCGCGTGGACCGGGCTGAACACGCTGCCGCACGAGGACCCGATGCCGCGGTACGTGCACCGGCCCTCCACGGCGGCGACCCTCAACCTGGCCGCGGCGGCGGCGCAGGGCGCCCGGCTGTACGCCGAGCACGACGAGGCGTTCGCCGACGAGCTGCTGGCCGCCGCCCGCGCGGCCTGGGAGGCGGCGGGTGAGCACCCGGAGATCTACGCGCCGAACACCAACGACCTCGACCCGAACCCGGGGGGCGGTCCGTACGACGACACGGAGGTCGGCGACGAGCTCTACTGGGCGGCCGCACAGCTGTTCCTCACCACGGGCGAGGACGAGTTCGCCGCGGCCGTGCTCGGCTCGCCGTACCACGTCGGCGGGGAGCAGGCCGACGTCTTCTCGCCGACCGGCTACGACTGGGGCCGCACCGCGGTGCCCGCGCGGCTGGATCTCGCCACGGTGCCGAACACGCTGCCCGGGCGGGCCGACGTCGTCGACTCGGTGCTGGCCGGGGCCGACGGCTACGTCACGACCCAGGAGAGCCAGCCGTTCGGGCACGCCTACGCGCCCGGCGACTACGAGTGGGGCTCGACGGCGCAGGTCATCAACAACGCGGTCGTGCTCGCCACCGCCTACGACCTGTCCGGCGACGTCGCCTACCGGGACGCCGCCCTGGAGACGTTCGACTACATCCTGGGGCGCAACGCGATCAACAACTCCTACGTCACCGGGTACGGCTCGCACTTCTCGCAGCAGATGCACAGTCGGTGGTACGCCTCGGCGGACCGCCTGCCGCCGTTCCCGGAAGGCAAGATCGCCGGCGGGCCCAACTCCGGTCTCCAGGACCCGGTCGCACAGGCGAATCTGCAGGGGTGCGCCCCGCAGGCCTGCTACATCGACCACGTCGACTCGTGGTCGACGAACGAGACGACGATCAACTGGAACGCGGCGCTCGCGTGGTACGCCTCCTGGGCCGCCGACATGGGGTCGGCGTCCCCGGACGACTGGGCTCCGCCGACACCGACGTGCGCCGTGGACTACACCGTGCACGGCTCCTGGCCCGGCGGGTTCGTCGCGCAGGTGTGGGTGACCAACCTGGGCCCGGGCGACCGCGACGGCTGGGAGCTGGGCTGGCGGTTCGACGGCGACCAGGGCATCCGCGACGTCTGGGGCGGCGACGTCGCCCAGGACGGCGCCGCGGTGACGCTGACGAACGCACCCTGGAACGCGCGGATGGACGACTCCGGATGGAGCGCGACCCGGACCTTCGGGTTCGTCGGCCGCTCCGCCGGTGCGACCGACCACGTGCCGCAGGCGTTCACGCTCGACGGGATGTGGTGCGCCGTGAGCTGAMQTRQQRRRPVVAVVSVALASAGALAPTTAQADEPDVNLVANGTFDPGVHGQWWGVTDDDVTDGELCLDVPATERFGNFVDLGLEAGTDYRLGFTVHGDPGTAGLEARVQADGASGPEGFDVAETFTAGPEPQQHEWGFTATGDAQRVQFELSGADPGSSVCLDDVYVTPVAHVAQNPRFDGLAPWWTTPNLDLVPADGRMCGTVPAGGNQWDVILGQGGIALEAGRPYTVTVTASGAPESAVRLLVPQPGTDWPPAYFADLTLRADGQSFGETFEVDEDIATEIQLQLGGNPEPFELCLDEVSLTTGGTVEEFEHDTGPRVRVNQLGYMPDGPKRATVVTEATDPLPWELHDAGGAVVAAGETTPAGLDESAGLEVHTADFTDVSAVGEGFRLVADGEESYPFAIAADLYEPLRDDALGIYYTQRSGYEITPVEIDGEEHKTEYVRPAGHVSEFGADDVNQGDLGVPCLPPDGAVNHEGAPQLGADDHYGADGWVCPDGYAVDAAGGWYDAGDHGKYVVNSGIAVYQLLSTYERSLHAGTVNDGALGDSTLVVPERDNGVPDVLDEVRWNLEWMLRMQVADGVTMTIDGDQVDAGGLVHHKLHDIAWTGLNTLPHEDPMPRYVHRPSTAATLNLAAAAAQGARLYAEHDEAFADELLAAARAAWEAAGEHPEIYAPNTNDLDPNPGGGPYDDTEVGDELYWAAAQLFLTTGEDEFAAAVLGSPYHVGGEQADVFSPTGYDWGRTAVPARLDLATVPNTLPGRADVVDSVLAGADGYVTTQESQPFGHAYAPGDYEWGSTAQVINNAVVLATAYDLSGDVAYRDAALETFDYILGRNAINNSYVTGYGSHFSQQMHSRWYASADRLPPFPEGKIAGGPNSGLQDPVAQANLQGCAPQACYIDHVDSWSTNETTINWNAALAWYASWAADMGSASPDDWAPPTPTCAVDYTVHGSWPGGFVAQVWVTNLGPGDRDGWELGWRFDGDQGIRDVWGGDVAQDGAAVTLTNAPWNARMDDSGWSATRTFGFVGRSAGATDHVPQAFTLDGMWCAVSPGPT0018620_127DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-CELLULASES,PGPT0018620-celJ|eglA|eglS-K01179NANA
AK018_033441020hypothetical proteinGTGCCGTCCGCTCCCCGCTCCCGCTCGCGCAGCCCGAAGTCACCCGCGAACGCCCGCCCGTGGAGCGACCCGGTCCTGGCGCCGGTGGTCCTGGTCCGTGGGCCGGAGGACCTGCTCGCCGAGCGTGCGGTGGACGGCGTGGTGGGCCTCGCGCGGGAGCGCGACCCCGAGGTGGAGAAGGTCGAGCTGCAGGGTGCCGACTACACCGCGGGCGAGCTCACCGTGGCCGCCAGTCCGTCTCTGTTCGGCGAGGCCAAGGTGGTGGTGGTCCGCGGGGCGGAGGCGTGCACCGACGACCTGGTGGCCGACGTCGTCGACTACGTGGCAGCGCCCGACGGCGAGACCACGGTCGTCGTCGTGCACGGCGGCGGCAACCGCGGCAAGAAGATGCTGGACGCGATCACCCGGTCCGGCGCCCCGGTGCTGCAGTGCGACGCGATCACGCGCGACGCCGACAAGACCTCGTTCGTCGCGGGGGAGTTCAAGGCCGCCCGGCGTCGCGCCGAGCCGGCCGCGGTGCGGGCCCTGGTCGACGCCCTCGGGGCCGACCTGCGCGAGCTCGCGTCGGCCTGCGCCCAGCTCGTGGCCGACACCTCCGGGACGATCGGCGAGGACGTCGTGGACCGGTACTACGGCGGCCGGGTGGAGGCGACCGGATTCAAGGTGGCCGACGCCGCGGTGGCCGGTGACGCCGGCGGGGCAGTGGCGCTGTTGCGGCACGCCCTGGCGACGGGCGCCGACCCCGTGCCCGTGGTGGCGGCCCTGGCGCTGCGTCTGCGCACCCTCGCCCGGGTCGCGGCGATCCGGGGCGGGACGACGACGGCCCGTGAGCTGGGTCTGCAGGACTGGCAGGTGCGCAACGCCAACCGGGACCTCGCGCGGTGGACGCCGGAGGGGCTCGCCGCGGCGATCACCGCCGTCGCGCAGGCCGACGCCGACGTCAAGGGCGGCGGGCGCGACCCGGTGTACGCCGTCGAGCGGGCCGTGCTGACGATCGCGCGCTCCCGCGGCACCCGCTGAMPSAPRSRSRSPKSPANARPWSDPVLAPVVLVRGPEDLLAERAVDGVVGLARERDPEVEKVELQGADYTAGELTVAASPSLFGEAKVVVVRGAEACTDDLVADVVDYVAAPDGETTVVVVHGGGNRGKKMLDAITRSGAPVLQCDAITRDADKTSFVAGEFKAARRRAEPAAVRALVDALGADLRELASACAQLVADTSGTIGEDVVDRYYGGRVEATGFKVADAAVAGDAGGAVALLRHALATGADPVPVVAALALRLRTLARVAAIRGGTTTARELGLQDWQVRNANRDLARWTPEGLAAAITAVAQADADVKGGGRDPVYAVERAVLTIARSRGTRPGPT0029415_7DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029415-comEC-K02238NANA
AK018_03345261rpsT_2COG026830S ribosomal protein S20GTGGCAAACATCAAGTCTCAGATCAAGCGCATCCAGACCAACGAGAAGGCGCGCCTGCGCAACCGTTCGGTCAAGTCCGAGCTGAAGACGCACGTGCGCAAGGTGCACGCGGCCGTCTCCGCCGGTGACAAGGAGGCCGCTCTGGCCGCCCTGCAGACCGCGTCGCGCAAGCTCGACAAGGCCGTCTCCAAGGGCGTCATCCACGCCAACCAGGCGGCGAACCGCAAGTCGGCGATCGCCAAGGCCGTCGACTCGCTCTGAMANIKSQIKRIQTNEKARLRNRSVKSELKTHVRKVHAAVSAGDKEAALAALQTASRKLDKAVSKGVIHANQAANRKSAIAKAVDSLNANANANANA
AK018_03346540hypothetical proteinGTGACGACGCACCGCCTCTCCCACCTGCTGCGGGGCGCCGCCCGCGCCATCGGCCGGACCCTCACCCGTCCCGGCGCGCGCCGCGGTGCACCGACCGGCCCGCGAGCCGCCGGGCGCACGGACCACCGCGACACTCGATACCCGGGCGACTACACCGGCGTCGTGCGCCCGGTGTACGCCCCGCACCTGGACGGCGACCCGGACCCCGGCGAGATCGTGTGGACGTGGGTGCCCTTCGAGGAGGACCACGCGCGCGGCAAGGACCGTCCCGTGCTGCTGGTGGGGCACGACGGGCCGTGGCTGCTGGCGCTGCAGCTCACGAGCAAGGACCACGACCGCGACGCCGCCCAGGAGGCCCGGTACGGCCGGCTCTGGATGGACATCGGGTCGGGCCCGTGGGACGCGCGCGGCCGGCCGAGCGAGGTGCGGATCAACCGTGTGGTGCGGGTCGAGCCGGGTGCGGTGCGCCGCGAGGGCGCCGTGCTGGACCGCCGCACGTTCGACGCGGTCGTGGAGGCGATGGGACGCGCCCGCCGCTGAMTTHRLSHLLRGAARAIGRTLTRPGARRGAPTGPRAAGRTDHRDTRYPGDYTGVVRPVYAPHLDGDPDPGEIVWTWVPFEEDHARGKDRPVLLVGHDGPWLLALQLTSKDHDRDAAQEARYGRLWMDIGSGPWDARGRPSEVRINRVVRVEPGAVRREGAVLDRRTFDAVVEAMGRARRNANANANANA
AK018_033471641COG2308putative proteinATGGCGGACCTCTTCGACGACTACCCGCTGGGCGCGGCGTTCGACGAGCTGTTGGACCGGGACCGCGCGGTGCGCCCCCGGTACGGCCCGGTGCAGGACACCCTGGCCTCGCTGCGGCCGGACGAGGTCTCGGCGCGGGCCGAGGCCCTGGGTCACTCCTACCTGGCACAGGGGATCACCTTCGACGTCGCCGGCGAGGAGCGGCCGTTCCCGCTCGACGTGGTCCCTCGGGTGGTCGAGCCCGGCGAGTGGGACCGGATCACCCGCGGCGTCCAGCAGCGCGTGCGCACCCTCGAGGCGTTCCTCGCGGACGTCTACGGCCCTCAGGAGGCGGTGCGCGACGGCGTGGTGCCCCGCCGGCTCGTCCTGTCCAGCCGGGAGTTCCAGCGCGAGGCGCACGGCATCGAGCCGCCGAACGGCGTCCGCTGCCACGTGGCCGGCGTGGACCTGGTCCGCGACGAGGCCGGCGAGTTCCGCGTGCTCGAGGACAACGTCCGCGTGCCCTCCGGGGTGAGCTACGTGCTGGCCAACCGGCAGGCGATGGTGCGCACCTTCCCCGAGCTGTTCTCCCAGCTGCGGGTGCGCAGCGTCGTCGACTACCCGCGCCGGCTGCGCGCCGCCCTGATGGCCGCCGCGCCGGACCAGGCACCGGACCCGACCGTCGTCGTGCTCACCCCCGGCGTCTACAACTCCGCCTACTACGAGCACGCGCTGCTGGCCCGGCTCATGGGCGTCGAGCTGGTCGAGGGCCGGGACCTGTACTGCGCGTCCGGCCGCGTCTACATGCGCACGACGGCGGGACCGCAGCGCGTGGACGTCGTCTACCGGCGGGTGGACGACGTCTTCCTCGACCCGGTGCGCTTCCGCGCCGACTCCGTGCTGGGCGTGCCCGGGCTGGTGGACTGCACCCGCCGGGGCACCGTGACGCTGGCCAACGCGATCGGCAACGGCGTCGCGGACGACAAGCTCGTGTACAGCTACCTGCCCGACCTGACCCGGTACTACCTCGGGGAGGAACCCGTGCTGGCGAACGTGGACACCTGGCGTCTCGAGGAGCCCGGCGCCCTGGCCGAGGTGCTGGACCGGCTCGACGAGCTGGTCGTCAAGCCCGTGGACGGCTCCGGCGGCAAGGGCATCGTCGTCGGCCCCGACGCGAGCCGTGCCGAGCTGGCCACGCTGCGCGGCCGGCTCATCGCGGACCCGCGCGGCTGGGTGGCCCAGCCGCTGATCCAGCTCTCGACGGCGCCCACCTACGTCGACGGCGCCTTCCGCCCCCGGCACGTCGACCTGCGACCGTTCGCCGTCAACGACGGCGAGGACGTGTGGGTGCTGCCCGGCGGACTGACGCGGGTGGCGCTCGCGGAGGGCCAGCTCGTGGTGAACAGCTCCCAGGGCGGCGGGTCCAAGGACACCTGGGTGCTCGAGCCCCGCCGCAGCCCGCTGACCGGGGAGCTCGCCGTGGGCCGGGACGACCCGGAGGCGCAGGAGGTGCCGGACGGCGGGGCCGACCCGGCCGACGCGGGCGTGCCGATCGACGCGCACCCGGCCGACGTGGCCGGGGTCCGCGAGCAGCAGCGACAACAACAGCAGCAGCGCGCGCGAGAACCCCGGCAGCCGGTCGGGGAGGTGGGCCCGTGCTGAMADLFDDYPLGAAFDELLDRDRAVRPRYGPVQDTLASLRPDEVSARAEALGHSYLAQGITFDVAGEERPFPLDVVPRVVEPGEWDRITRGVQQRVRTLEAFLADVYGPQEAVRDGVVPRRLVLSSREFQREAHGIEPPNGVRCHVAGVDLVRDEAGEFRVLEDNVRVPSGVSYVLANRQAMVRTFPELFSQLRVRSVVDYPRRLRAALMAAAPDQAPDPTVVVLTPGVYNSAYYEHALLARLMGVELVEGRDLYCASGRVYMRTTAGPQRVDVVYRRVDDVFLDPVRFRADSVLGVPGLVDCTRRGTVTLANAIGNGVADDKLVYSYLPDLTRYYLGEEPVLANVDTWRLEEPGALAEVLDRLDELVVKPVDGSGGKGIVVGPDASRAELATLRGRLIADPRGWVAQPLIQLSTAPTYVDGAFRPRHVDLRPFAVNDGEDVWVLPGGLTRVALAEGQLVVNSSQGGGSKDTWVLEPRRSPLTGELAVGRDDPEAQEVPDGGADPADAGVPIDAHPADVAGVREQQRQQQQQRAREPRQPVGEVGPCPGPT0026300_22DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
AK018_03348936hypothetical proteinGTGCTGAGCCGCATCGCCGAGTCGCTGTTCTGGATCGGCCGGTACGTGGAGCGGGCCGACGACACCGCCCGGATCCTCGACGTGCACGTCCAGCTCCTGTCCGAGGACCCGTGGGCCGAGGAGTCGCTGGCCTGCCGCTCCCTGCTGGCGATCATGGACCACCCGACCCCGCCGGAGTCCGGCCCGGTGGGACGCCAGACGGTGCTGCAACTCCTCGCGCGCGAGCGGACCAACCCGTCGTCGATCACCGGCGCGCTCGTCGCCGCCCGGGAGAACGCCCGCCGGGCCCGTGAGATCGTCTCGACCGAGCTGTGGGAGACCCTGAACACGACCCGCAACGAGGTCGAGCAGGTGGCCCGGCGTACGGGGCCGCACGAGTTCTTCTCCTGGGTGCGGCAGCGGGCCGCCGTCGTCGCCGGCCTCATGGAATCGGCCACCCCGCACGACGCCACCTGGCACTTCATGGTGCTCGGGCAGTCGATCGAGCGGGCCGACATGACCGCGCGCCTCATCACCACCCAGGCACGGCTCGGCGCGTCCGGGCCGGGATGGACCACGCTGCTGCGGTCCTGCGGAGCCCACGAGGCCTACCTGCGCGCCCACCGCGGCCGCACCTCCGACGTGGACGCCGCCGGGTTCCTCGTGCTCGACCGGCTGTTCCCCCGCACGATCGTCTACGCGCTGGGCGTCGCCGACCGCGCGCTGCGGGCCCTCGAACCCGTCGAGGGGCGCCGCGAGGTCAACGACGAGGCCGTGCGCGAGCTCGGCATCGTGCGCGCGCGGCTGCAGTACACGCGGCGCGCCGACACCCTCGAGGACCTGCCGGCGGTCATGGAGCAGGTCCAGCAGGCGTGCTCGCGCGCGAGCGAGGCGATCCGAGACCGGTACTTCCCGTCGCCGGCGAACGCGACGGCCTGGGTGGGGGAGGCTCTGTGAMLSRIAESLFWIGRYVERADDTARILDVHVQLLSEDPWAEESLACRSLLAIMDHPTPPESGPVGRQTVLQLLARERTNPSSITGALVAARENARRAREIVSTELWETLNTTRNEVEQVARRTGPHEFFSWVRQRAAVVAGLMESATPHDATWHFMVLGQSIERADMTARLITTQARLGASGPGWTTLLRSCGAHEAYLRAHRGRTSDVDAAGFLVLDRLFPRTIVYALGVADRALRALEPVEGRREVNDEAVRELGIVRARLQYTRRADTLEDLPAVMEQVQQACSRASEAIRDRYFPSPANATAWVGEALNANANANANA
AK018_03349840COG1305putative proteinGTGAGCCTGCTGAGAGTGGTGCACACCACGAGCTTCGACTACACCGACGCGGTGACGGCGTCGTACAACGAGGCGCGGATGACGCCGGTCGACGACACCCGCCAGGTGGTGCGATCGGCGCACGTCGACGTCCGGCCGCACACCTGGACGGACTCCTACCGCGACTACTGGGGCACGGAGGTGACGATCTTCGAGGTGCTGCGCCCGCACGAGCGTCTCGACATCGTGGCGACCGCGACGGTCGAGGTCGCGTCCGCCGGGCCGGCGCGCTCGGGAGCCGGCTGGGACGTCCTGGGCGGCGAGGAGGCCAGCGACGCGCACTCGCCGTTCCTGGCCGAGACGCCGACGACGGTGGTGCCCGACGACGTGGCGGCGCTCGCGCTGGAGACCGCGGCCGGCCTGGACCCGGACGCCGCCGCCGAGGCGGTGTGCCTGGCGGTGCGCGACCGTCTCGAGTACGTGTCCGGGGTGACCACCGTGCACAGCCCGGCGGCGGACGCGTGGGCGGCCCGGGAGGGCGTCTGCCAGGACATGGCGCACCTCGGCATCGGCGCGCTGCGCTCGGTGGGCGTCCCCGCGCGGTACGTCTCGGGCTACCTGCTGCCGCAGTCGGACGCGGCCGTCGGGGAGGCGGTGCACGGGGAGTCGCACGCCTGGCTCGAGTGGTGGGCGGGGCAGTGGGTGGGCTACGACCCCACCAACCGTCGGTTCGTCGGGGAGGACCACGTGGTGATCGGCCGCGGCCGAGAGTACGCGGACGTGCCGCCGCTGAAGGGCGTGTTCGCGGGGGCCGGGGCGAGCTCGCTCGACGTCACCGTGGAGATGACCCGGCTGGCGTAGMSLLRVVHTTSFDYTDAVTASYNEARMTPVDDTRQVVRSAHVDVRPHTWTDSYRDYWGTEVTIFEVLRPHERLDIVATATVEVASAGPARSGAGWDVLGGEEASDAHSPFLAETPTTVVPDDVAALALETAAGLDPDAAAEAVCLAVRDRLEYVSGVTTVHSPAADAWAAREGVCQDMAHLGIGALRSVGVPARYVSGYLLPQSDAAVGEAVHGESHAWLEWWAGQWVGYDPTNRRFVGEDHVVIGRGREYADVPPLKGVFAGAGASSLDVTVEMTRLANANANANANA
AK018_03350852paaGCOG10241,2-epoxyphenylacetyl-CoA isomeraseGTGTCGTCAGCGCCCGTGGAGGTCTCCGTCAGCGGAGCCGTCGCCGAGGTGACCCTGAACCGCCCCGAGGCCCGCAACGCGCTGGACCTGGCGCTCAAGCAGGCGCTGCTGGAGGCCCTGACCGACGTCGGCTCCGACCCGGGCGTCCGGGCCGTGCTGCTCGCGGGTCGCGGCCCGGCGTTCTGCGTCGGCCAGGACCTGCGCGAGCACGCCGACGCCCTGGCGACCGGCGAGTGGGCCGAGCAGCGCACGGTCGAGCGCCACTACAACCCGATCGTCCAGGCGCTGGCCACGATGCCGAAGCCGGTGGTGGCCGCCGTGCACGGTGCGTGCGTCGGTGCCGGGCTCGGGCTGGCCCTCGCGGCCGACCTGCGGGTGCTGGCCGAGGACGCCGTGCTGGGCACCGCCTTCACGGGGATCGGCCTGACGTTCGACACCGGCCTGTCCGTCACCCTTGCCCGCGCCGTCGGCAGCGCCCGCGCCCGCGAGCTCGTGCTGCGCGGGGACACCGTCGACGCCGCCACCGCCGTCGCCTGGGGCGTGGCGGGCGAGGTGGTGCCGCCGTCGGACGTCCTGGATCGCGCACGCGAGCTGTCCGCGCGCCTGGCGGCCGGGCCGACGCAGGCCTACGCCGCGTCCAAGCGTCTCCTGGCCGACGGCCCCGAGCGTCCGCTGACGCAGACCCTGGCGGCCGAGGCCCGCGCGCAGGACTCGCTCGTGCGCACCGGGGACCACCGCGGCGCCGTCGAGGCCTTCCTGGCGAAGCGCACCCCGCGGTTCGACGGCGGCGTGCGGGCCGGCACCGACGCCACCGGCGACCCGACTACGCCAGCCGGGTCATCTCCACGGTGAMSSAPVEVSVSGAVAEVTLNRPEARNALDLALKQALLEALTDVGSDPGVRAVLLAGRGPAFCVGQDLREHADALATGEWAEQRTVERHYNPIVQALATMPKPVVAAVHGACVGAGLGLALAADLRVLAEDAVLGTAFTGIGLTFDTGLSVTLARAVGSARARELVLRGDTVDAATAVAWGVAGEVVPPSDVLDRARELSARLAAGPTQAYAASKRLLADGPERPLTQTLAAEARAQDSLVRTGDHRGAVEAFLAKRTPRFDGGVRAGTDATGDPTTPAGSSPRPGPT0006070_931DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006070-paaG-K15866NANA
AK018_03351786hypothetical proteinATGACCACCAGCACCGACGCCGTCGACCCCGCGACCGGACGCCGCGGCCCCGACGTCGACGACCTGGACCGGCTCAGCCTGCTCAGCGCCGTGCAGGCCGAGTTCGCGGCCCGGATCCCCGCCGCCGACCCGGAGGCACCCGTGCCCGCCTGCGGGCGGTGGCGGGTGCGGCACCTGGTGGTGCACCTGGGACGCATCCACCACTGGGCGGCCGGCCAGGCACGGCGCCGCCAGGAGACGCCCCTGGGGCGCGGCCCGTTCGACCTCGGCCCGTTCTACGCCGCCCAGGCGGCCGAGCTGCGCGAGACGCTGACCGCGCTCGGGCCCGACGCCACCGCGTGGACGCTGCTCGGCACCGGTCCGGCGTCGTTCTGGCACCGGCGTCAGCTCCACGAGACGCTGGTGCACCTGCACGACCTGCGCGCCGCCGGACTGGCCTCCGGCCCCGACGCCGCACGGGAACCGGTCGACGTGCCCGCCGCGGTCTGGGCCGACGGTGTCGACGAGGTCGTGCGGATGTTCCAGCCCCGCCAGGTCCGCCTGGGACGCGTCGACCCGCTGCCGCGCACCGTCCGGCTCGTCGCCTCCGACGTCGGTGAGCGCTGGACGCTCGGCGCGCACGAGGACGGCCGCCGTCCGGAAGCCCCCGCCGCGACGCTCACGGCGCCCGCCCGCGAGCTCGCGCTGCTGCTGTGGCGCCGGCTGACCACGGCCGAGTCGGGCGTGCGGCTCGACGGGGACGAGGCAGCGGTGCGCGCGGCGCTGGCGCCCGGCGTCGTGCCCTGAMTTSTDAVDPATGRRGPDVDDLDRLSLLSAVQAEFAARIPAADPEAPVPACGRWRVRHLVVHLGRIHHWAAGQARRRQETPLGRGPFDLGPFYAAQAAELRETLTALGPDATAWTLLGTGPASFWHRRQLHETLVHLHDLRAAGLASGPDAAREPVDVPAAVWADGVDEVVRMFQPRQVRLGRVDPLPRTVRLVASDVGERWTLGAHEDGRRPEAPAATLTAPARELALLLWRRLTTAESGVRLDGDEAAVRAALAPGVVPNANANANANA
AK018_033521878lepA_2COG0481Elongation factor 4TTGCCCATCCCGTCTGCCGCGCTGAGCGAGCGCATCCAGCCCAACGCGACCGCGCCCGAGCTGATCCGCAACTTCTGCATCATCGCCCACATCGACCACGGCAAGTCGACGCTGGCCGACCGCATGCTGCAGCTCACCGGCGTCGTGCAGCCGCGGGACGCCCGCGCGCAGTACCTCGACCGGATGGACATCGAGCGTGAGCGCGGCATCACGATCAAGTCCCAGGCCGTGCGCATGCCGTGGCAGCTCGGCGAGGAGCCGTACGCGCTCAACATGATCGACACCCCCGGGCACGTGGACTTCACCTACGAGGTCTCCCGTTCCCTCGCGGCGTGCGAGGGTGCCGTGCTGCTGGTGGACGCGGCCCAGGGCATCGAGGCCCAGACGCTGGCGAACCTGTACCTCGCCATGGAGCACGACCTGGAGATCATCCCGGTCCTGAACAAGATCGACCTGCCCGCCGCGCAGCCGGAGAAGTACGCGGCCGAGCTGGCCGGCCTGGTCGGCGGGGAGCCCGAGGACGTGCTGCGGGTCTCGGGCAAGACCGGCGAGGGCGTCGAGGAGCTCCTGGACCGGATCGTGCACCGCGTCCCGGCGCCCGTCGGCGACCCGGACGCGCCGGCCCGCGCCATGATCTTCGACTCCGTCTACGACACCTACCGCGGCGTGGTGACGTACGTCCGCGCGGTCGACGGCGACCTGAACCCGCGCGAGCGGATCCAGATGATGTCGACCAAGGCCACCCACGAGCTGCTCGAGATCGGGGTCATCTCGCCCGAGGCGATCAAGACCAACGGCCTCGGCGTCGGGGAGGTCGGCTACCTGATCACGGGCGTCAAGGACGTGCGCCAGTCCAAGGTCGGCGACACGGTCACGGCGGCGAACAAGCCCGCCGCGGAGCCGCTGGGCGGCTACGAGGACCCCAAGCCGATGGTGTTCTCCGGGCTGTACCCGATCGACGGCTCGGACTACCCGACGCTGCGCGACGCGCTGGACAAGCTCAAGCTCAACGACGCCGCCCTGAACTACGAGCCGGAGACGTCCGTGGCCCTCGGGTTCGGGTTCCGCGTCGGGTTCCTCGGGCTGCTGCACCTCGAGATCGTGCGCGAGCGACTGGAGCGCGAGTTCGACCTCGACCTGATCTCGACGGCCCCGAACGTCGTCTACGACGTGACGATGGAGGACGGCACCGAGGTCAAGGTCACCAACCCCTCGGAGTTCCCGGGCGGCAGGATCAAGGACGTGCGCGAGCCGATCGTCAAGGCGACCGTGTTGACGCCCAGCGAGTTCGTCGGGGCCGTCATGGGCCTGTGCACGGACCGGCGCGGCCAGCTCGACGGGATGGACTACCTGTCGGAGGACCGGGTCGAGCTGCGCTGGACGCTGCCGCTGGCCGAGATCGTCTTCGACTTCTTCGACGCGCTCAAGTCGCGCACCCGCGGCTACGCGTCGCTCGACTACGAGCCCTCCGGCGACCAGGCCGCCGACCTGGTGAAGGTCGACATCCTGCTGCAGGGCGACCAGGTGGACGCCTTCAGCGCGATCGTGCACAAGGACGCCGCCTACGAGTACGGCGTGAAGATGACCGCCAAGCTCAAGGAGATCATCCCGCGCCAGCAGTTCGAGGTGCCGATCCAGGCGGCCGTCGGCGCACGCATCATCGCCCGCGAGACGGTGCGGGCGATCCGCAAGGACGTGCTCGCCAAGTGCTACGGCGGCGACATCTCCCGCAAGCGCAAGCTCCTCGAGAAGCAGAAGGAGGGCAAGAAGCGCATGAAGAACATCGGGTCCGTGGAGGTCCCGAAGGAGGCGTTCATCTCCGCGCTGTCCTCCGACGGCGCCGGGGGCAAGGACGGCGGCAAGGACAAGAAGAAGTAGMPIPSAALSERIQPNATAPELIRNFCIIAHIDHGKSTLADRMLQLTGVVQPRDARAQYLDRMDIERERGITIKSQAVRMPWQLGEEPYALNMIDTPGHVDFTYEVSRSLAACEGAVLLVDAAQGIEAQTLANLYLAMEHDLEIIPVLNKIDLPAAQPEKYAAELAGLVGGEPEDVLRVSGKTGEGVEELLDRIVHRVPAPVGDPDAPARAMIFDSVYDTYRGVVTYVRAVDGDLNPRERIQMMSTKATHELLEIGVISPEAIKTNGLGVGEVGYLITGVKDVRQSKVGDTVTAANKPAAEPLGGYEDPKPMVFSGLYPIDGSDYPTLRDALDKLKLNDAALNYEPETSVALGFGFRVGFLGLLHLEIVRERLEREFDLDLISTAPNVVYDVTMEDGTEVKVTNPSEFPGGRIKDVREPIVKATVLTPSEFVGAVMGLCTDRRGQLDGMDYLSEDRVELRWTLPLAEIVFDFFDALKSRTRGYASLDYEPSGDQAADLVKVDILLQGDQVDAFSAIVHKDAAYEYGVKMTAKLKEIIPRQQFEVPIQAAVGARIIARETVRAIRKDVLAKCYGGDISRKRKLLEKQKEGKKRMKNIGSVEVPKEAFISALSSDGAGGKDGGKDKKKPGPT0015105_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771NANA
AK018_033531290hemW_2COG0635Heme chaperone HemWGTGCCCGCCCTGCCCGACGGAGAACCCGTCCCGCCCGACGGGACGCTGCCGGCGGCGGTGGCCCGCACGGCGCACGACGGCGGCACCCCGGCGACCGGGCCGGCTCCCGCGGGCCGGTTCGGGGTGTACGTGCACGTGCCGTTCTGCTCGGTGCGCTGCGGCTACTGCGACTTCAACACCTACACCGCCGCCGAGCTCGGCGGCGGCGCCTCCCAGGTGGCGTACGCCGGCACGGCGCTGCGCGAGGTGGACCTGGCGGCCCGCGTGCTGGCCGACGCCGGCCTGGAGGGACGGCAGGTCTCGACCGTGTTCGTCGGCGGCGGCACGCCGACGATGCTGCCGGCCGGCGACCTGGGCCGGATCGTGCGCCGCATCGATGCCACCTGGGGCCTGGCCGAGGGGGCGGAGGTCACCACGGAGGCGAACCCCGACTCGGTGACCCCCGAGTCGCTGGCGGTGCTGGCCGACGCCGGGTTCACCCGGGTCTCGTTCGGGATGCAGTCGGCGGTGCCGCACGTGCTGGCCACGCTGGAACGTACCCACGACCCGGACCGCATCCCCGACGTCGTGCGCTGGGCGCGTGACGCCGGCCTCGACGTCTCGCTGGACCTCATCTACGGCACGCCGGGGGAGTCGCTCGCCGACTGGCGCACCTCGGTGGAGACGGCACTGGCCACCGGGGTCGACCACGTCTCGGCGTACGCCCTCGTGGTCGAGCCGGGCACCAAGATGGCGGCCCAGGTCCGCCGCGGCGAGCTCACGCTGCCCGACGAGGACGACCAGGCGGCCAAGTACGAGCTCGCCGACGACCTGCTGACCGCCGCCGGTCTCGACTGGTACGAGGTGAGCAACTGGGCCCGCGGGGCCGAGCACGCCTGCCGGCACAACCTCGCCTACTGGCGGGGCGACGACTGGTGGGGCATCGGCCCGGGCGCGCACTCGTACGTGGGTGCGCCCGCCGGCGGACCGGCCGACGGCGTGGCGGGCGTGCGCTGGTGGAACGTCAAGCACCCGCGGCGCTACGCCGCGCTGCTGGAGGACGGGCGCTCGCCCGGTGCCGGGCGCGAGCTCCTCACCACGTCCGAGGCCCACCTGGAGCGCGTGATGCTGGGGGTGCGGCTGGCCGAAGGGCTCGACCTCGACGTGCTGGAGGCCGACGGCCGCCGCGCCGTGGCCGGACTGGTGGCGTCCGGGCTGCTCGACGGGGCGGCCGCGGTCCGTGGTCGGGCCGTCCTCACGCGGCGCGGCCGGCTGCTGGCCGATGCCGTCGTGCGGGACCTGACGGTCTGAMPALPDGEPVPPDGTLPAAVARTAHDGGTPATGPAPAGRFGVYVHVPFCSVRCGYCDFNTYTAAELGGGASQVAYAGTALREVDLAARVLADAGLEGRQVSTVFVGGGTPTMLPAGDLGRIVRRIDATWGLAEGAEVTTEANPDSVTPESLAVLADAGFTRVSFGMQSAVPHVLATLERTHDPDRIPDVVRWARDAGLDVSLDLIYGTPGESLADWRTSVETALATGVDHVSAYALVVEPGTKMAAQVRRGELTLPDEDDQAAKYELADDLLTAAGLDWYEVSNWARGAEHACRHNLAYWRGDDWWGIGPGAHSYVGAPAGGPADGVAGVRWWNVKHPRRYAALLEDGRSPGAGRELLTTSEAHLERVMLGVRLAEGLDLDVLEADGRRAVAGLVASGLLDGAAAVRGRAVLTRRGRLLADAVVRDLTVPGPT0003200_2931DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003200-hemN|hemZ-K02495NANA
AK018_03354426hypothetical proteinATGACGTTCATGGAGGTTGCCGTGACCGAACCCACCCCGCACCAGACGACCCCGTCGCCCCAGGCACCGCTCGCGCCGCAGGACGAGCGGACCTGGTCGGTCCTCGCCCACGTGAGCGGCGTCGTCCTGTCCGTCGTCGGCCCGCTGGTCGTGTGGCTGGTGTTCCGGGACCGCAGCGCGCGCGTCGACCACCAGGGCAAGCAGGCGCTGAACTTCCAGCTCACGCTCCTGATCGGCTACGTGGCCGTCTGGGTCGTCTTCGGCGTCGTCGCGATGATCCCGATCATCGGGTTGCTCGCGTTCCTCGGCGGCGTCCTCGCGTTCGGCATCTGGGTGTGCTCGCTGGTCTTCAGCATCCTCGGCGCCGTGGCCGCGTCGCGCGACGAACGCTACGAGTACCCGTTCGCCGTCACGTTCGTGCGCTGAMTFMEVAVTEPTPHQTTPSPQAPLAPQDERTWSVLAHVSGVVLSVVGPLVVWLVFRDRSARVDHQGKQALNFQLTLLIGYVAVWVVFGVVAMIPIIGLLAFLGGVLAFGIWVCSLVFSILGAVAASRDERYEYPFAVTFVRNANANANANA
AK018_03355402hypothetical proteinATGACACAGACACCTCCCCCACCGGGCGCCGGCGGGTTCGAAGGACCGCGTCCGCTGTCCCGGTCCGACGAGCGGACCTGGGCGATCTTCGCCCATCTGGGCCCGCTCCTGGTCGGCGTCCTGACCGTGGGCTGGCTCGCCTTCGTCGCGCCGCTGGTGATCTGGCTGGTCCTGCGCGACCGCAGCACCTACGTGGCGAACCAGGCCAAGGAGGCCCTGAACTTCCAGCTCACGCTGCTCATCGGCACCGTGCTCGGCTATCTCCTCACCTGGATCCTGGTCGGGTTCCTGATCCTGGGCGTGGTGTGGGTCTTCGGGATCGTCTTCGCGATCATCGCGGCGCTCGCCGTCAACCGGTACGAGGACTTCGAGTACCCGTTGACGCTCCGCCTGGTGAAGTAGMTQTPPPPGAGGFEGPRPLSRSDERTWAIFAHLGPLLVGVLTVGWLAFVAPLVIWLVLRDRSTYVANQAKEALNFQLTLLIGTVLGYLLTWILVGFLILGVVWVFGIVFAIIAALAVNRYEDFEYPLTLRLVKNANANANANA
AK018_03356537hypothetical proteinATGAGCGAGAACCCGCCGAACCAGCCCGGGCGCCCCGAGGACCCGTACGGCGAGGAGCCCACGCAGCCGACGCCGCCCCAGCAGCCCTACCAGCAGCCGCCGTCGTACCAGCAGCAGCCGCCCGCCCAGCCGTACCAGCAGCAGCCGCACCACGAGCAGCCGGGCAGCGGCGGCCAGCAGCCGTTCTACGCGAACGCCGCCTCGTCGGCGGCTGGCGTGGCCCGCGACGACACGAAGGGTCTGCTCGGCTCGCTGTTCGACTTCTCGTTCGCGAACTACGTCACCCCGAAGATCGTCAAGATCGTCTACGTCATCGTGACGATCCTGCTGGCCCTCGTCTGGCTGGGCTGGTTCATCTTCGGCGTCGTGACGCTGTTCTCGGACCAGTGGTACATCGGGCTGTTCACCATCCTGTTCGGATGGATCGTCGCCCTCGTCTACCTGGCGGTCTACCGGATCGGCCTCGAGGTCTTCCAGGCGGTGGTGAACATCTCCGAGAAGGTCAACCGCTACGCCGAGCGCGACGGGATCGTCTGAMSENPPNQPGRPEDPYGEEPTQPTPPQQPYQQPPSYQQQPPAQPYQQQPHHEQPGSGGQQPFYANAASSAAGVARDDTKGLLGSLFDFSFANYVTPKIVKIVYVIVTILLALVWLGWFIFGVVTLFSDQWYIGLFTILFGWIVALVYLAVYRIGLEVFQAVVNISEKVNRYAERDGIVNANANANANA
AK018_03357870hypothetical proteinGTGCACGATCGCTACGGTTCCGACGTCCTGTCCTCCTCCCCCGGCGCGCCGGACGGGTCCGCCCACCACCGCCGTCGGCCCACGTCGACGCCCGTGCCGGCCGAGACCGGCCTGGTGGTCGAGGAGGTCGGCTCCGGCTGGGTCGGGGCCGTGACCCGGGTGGAGAAGTCCGGCGGGGTGCACCTGGTGGTCCTCGAGGACCGCCGCGGCAAGGTGCGGTCGTTCCCCCTCGGCCCGGGCTTCTGGGTCGACGGGCAGCCTGTCGAGCTCACCGCCCCCGTCACCTCCCGGGCCCCGGCCGCCCCGACGCGCACCGCGTCGGGCTCGGTGGCCGTGCACGGCGCCCGCGCGCGCGTGGCCCGCGGCTCGCGCATCTGGGTGGAGGGCAAGCACGACGCCGAGCTCGTGGAGAAGGTCTGGGGCGACGACCTGCGCATCGAGGGGGTCGTGGTCGAGATGCTCGACGGCGTCGACCACCTCGCCGAGGCGCTCGCGGAGTTCGACCCCACGCCGGACCGGCGGGTCGGTGTGCTGGTGGACCACCTGGTGCCCGGCGCCAAGGAGCAGCGGATCGCCGCCGACGCGCTGCGCACCGTGCCCGACGGCACGGTGCTGGTGCTCGGGCACCCCTACGTGGACGTCTGGCAGGCGGTCAAGCCGGCACGGGTGGGGCTGGACGCCTGGCCCACGATCGACCGGGGCACGGAGTGGAAGCGCGGCATCCTGGCGGAGCTGGGCTGGCCGGCGGACACGACCGCCGACGTCGGCCGGGCGTGGCAGCGGATCCTGGCCTCGGTGCGCGACTTCAGAGACCTCGACCCGGCCCTGCTGGGCCGGGTCGAGGAGCTCATCGACTTCGTGACGGCGTGAMHDRYGSDVLSSSPGAPDGSAHHRRRPTSTPVPAETGLVVEEVGSGWVGAVTRVEKSGGVHLVVLEDRRGKVRSFPLGPGFWVDGQPVELTAPVTSRAPAAPTRTASGSVAVHGARARVARGSRIWVEGKHDAELVEKVWGDDLRIEGVVVEMLDGVDHLAEALAEFDPTPDRRVGVLVDHLVPGAKEQRIAADALRTVPDGTVLVLGHPYVDVWQAVKPARVGLDAWPTIDRGTEWKRGILAELGWPADTTADVGRAWQRILASVRDFRDLDPALLGRVEELIDFVTANANANANANA
AK018_033581041hrcA_2COG1420Heat-inducible transcription repressor HrcAGTGAGCGAGGTCCGCAGGCTCGAGGTGCTGCGCGCCATCGTCGAGGACTACGTCACGACGCGCGAACCGGTGGGCTCCCGCATGCTCACCGAGCGCCACCGTCTCGGCGTGTCCCCGGCCACGATCCGTAACGACATGGCCGCCCTGGAGGAGGCCGGGTACATCGCCCAGCCGCACACCTCGGCCGGGCGGGTGCCCACGGACGCCGGCTACCGGGTGTTCGTCGACCGCCTCGCCGAGGTGCGTCCCCTCAACGTCCCGCAGAAGCGCGCCATCGAGACCTTCCTGTCCGAGGCCGTCGACCTCGACGACGTCCTGACCCGCGCCGGGCGGCTCATCGCCCAGCTCACCGGGCAGGTCGCCGTGGTCCAGTACCCGTCGCTGCGACGGTCCGGGCTGCGGCACCTCGAGCTCGTCCCGGTGGCCGAGGGGCGTCTGCTCGTCGTCGTCATCACCGACACCGGCCGCGTCGAGCAGCGCTTCTGCGAGCTGCCGCTGCGCCCGGACGGCACCGACGGCGGGATCGTGCTCGACGACATCACGCTCGGCGAGCTGCGAGCGCGCTTCAACGCGGCTGCCGCGGGCAAGCGCCTGCGCGACCTGCCGACGGCGTTCGCGGGCGTCGTCGAGGCCGTCGGGCCCGAGCTCGGCGGCGTCGCCCAGGCCGTGGCCGACCTCGTCGTGGACACCCTCGGCGAGGAGGGCGAGGAGCGGATCGTGCTGGCCGGCACCGCCAACCTGGCCCGGTCCGAGGCCACCTTCGAGCAGGGGCTCAGTCCCGTGCTGGAGGCCCTCGAGGAACAGGTCGTGCTGCTCGGTCTGCTCACCGAGATGGCCGGCGACGGCGTCGGGGTGCGCATCGGGCACGAGAACCGCCTCGACGGCCTCACCGAGACGTCCGTCGTGGCCTCCGGCTACGGTACCGACGGCGACACGGTCGCCTCGCTCGGATCGATCGGCCCCACCCGCATGGACTACCCCGGCACCATCGCCTCGGTGCGTGCCGTGGCCCGCTACCTCTCCCGGGTCCTGCCGAACTGAMSEVRRLEVLRAIVEDYVTTREPVGSRMLTERHRLGVSPATIRNDMAALEEAGYIAQPHTSAGRVPTDAGYRVFVDRLAEVRPLNVPQKRAIETFLSEAVDLDDVLTRAGRLIAQLTGQVAVVQYPSLRRSGLRHLELVPVAEGRLLVVVITDTGRVEQRFCELPLRPDGTDGGIVLDDITLGELRARFNAAAAGKRLRDLPTAFAGVVEAVGPELGGVAQAVADLVVDTLGEEGEERIVLAGTANLARSEATFEQGLSPVLEALEEQVVLLGLLTEMAGDGVGVRIGHENRLDGLTETSVVASGYGTDGDTVASLGSIGPTRMDYPGTIASVRAVARYLSRVLPNNANANANANA
AK018_033591122dnaJ2_2COG0484Chaperone protein DnaJ 2GTGACCGACTACTACGAGATCCTCGGCGTCGAGCGCGACGCCTCGCCCGAGCAGATCAAGAAGGCCTACCGCAAGCTCGCCCGCACGCTGCACCCGGACGTCGCCGGGGCGGAGGGCGAGGAACGCTTCAAGGACGTCGCCCGCGCCTACGAGGTGCTCTCCAACCCGGAGAAGCGTCAGCAGTTCGACATGGGGGTGGACCCCAGCGCCCCGGGTGGTGCCGGCGGCGGGTTCGGCCAGGGCTTCGGCTTCCAGGACATCTTCGAGACGTTCTTCGGGGGCGGCGGGCAGCCGTCCGGCCCCGTCCCGCGCGCCCGCCGCGGCCAGGACGCGCTCGTGCGCCTCGACATCGACCTCGCCGAGGCGACGTTCGGCGCCAAGCGCGAGCTGCAGGTCGACACCGCCGTGGTGTGCGGCACCTGCAGCGGCAACGGCTGCCGGCCCGGCACCGTCGTGCGCACCTGCGAGGTCTGCCAGGGACGCGGCAACGTCCAGCGCGTCGCCCGCTCCTTCCTCGGCCAGGTCATGACCACCGCTCCCTGCGCCGCCTGCCAGGGCTTCGGCACCGTCATCCCCGAGCCCTGCGCCGAGTGCTCCGGCGACGGCCGCGTCCGCTCGCGCCGCACCCTGAGCGTCAACGTCCCCGCCGGCGTCGACACCGGGACCCGCATCAAGCTGTCCGCCCAGGGCGAGGTCGGCCCCGGCGGCGGCCCCGCCGGTGACCTCTACGTCGAGATCCGCGAGAAGGCCCACGACACGTTCGTGCGCCGGGGCGACGACCTGCACTGCACCCTGCAGGTCCCCATGACCGCCGCCGCCCTGGGCACCGTGCTCGAGCTCGCCACGCTCGACGGACCCGAGGAGATCGACCTGCGTCCCGGCACCCAGCCCGGCCAGATCGTCACCCTCAAGGGCCTCGGCGTCGGCCACCTGCACGGCAACGGGCGCGGCGACCTCAACGTCCACGTCGAGGTCACCATCCCCACCTCGCTGGACGATGAGCAGGGCGAGCTGCTGCGCAAGCTCGCCGCCGCACGCGGCGAGGAGCGCCCCGAGCCCCGCCTCACCGCCGCCCACCCCGGCGTGTTCTCCCGGCTGCGCGACAAGTTCGGCGGCCGGTGAMTDYYEILGVERDASPEQIKKAYRKLARTLHPDVAGAEGEERFKDVARAYEVLSNPEKRQQFDMGVDPSAPGGAGGGFGQGFGFQDIFETFFGGGGQPSGPVPRARRGQDALVRLDIDLAEATFGAKRELQVDTAVVCGTCSGNGCRPGTVVRTCEVCQGRGNVQRVARSFLGQVMTTAPCAACQGFGTVIPEPCAECSGDGRVRSRRTLSVNVPAGVDTGTRIKLSAQGEVGPGGGPAGDLYVEIREKAHDTFVRRGDDLHCTLQVPMTAAALGTVLELATLDGPEEIDLRPGTQPGQIVTLKGLGVGHLHGNGRGDLNVHVEVTIPTSLDDEQGELLRKLAAARGEERPEPRLTAAHPGVFSRLRDKFGGRPGPT0014545_4929DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686NANA
AK018_03360780rsmE_2COG1385Ribosomal RNA small subunit methyltransferase EATGAGCGCACCCGTCTTCCTCGTCGACGACGGCGCACCGCCCCTGACGGTGCAGCCCGGCGGCACGTACGTGCTCACCGGGCCCGAGGGCCGGCACGCCGCCGTCGTCCAGCGCCGCGGACCCGGCGAGCGCGTCGACGTCGTCGACGGGGCCGGCACCCGGCTGCACGGCGTCGTCGCGTCGGTCGACGGCCACGACCTGCACCTCACGGTCGAGGACGTCACCCACGAGGCGGCGCCCACGGTGACCGTCACCCTCGCCCAGGCCCTCGCCAAGGGCGACCGCGACCACCAGGCCGTCGAGGCCGCCGTCGAGCTCGGCGTCGACCGGGTCCTGCCCTGGCAGGCCGACCGGTCCGTCGTCGTCTGGCGCAGTCCGCGCGCCGCCAAGTCCCACGCCAAGTGGGAGGCCACGGTGCGCTCCGCCGTCAAGCAGTCCCGCCGGGCCCGGCTGCCCGCCGTCGACCAGCACGTGACCACGCGCGGCCTGGCCGCCCGCACCCGGGACGTCGCCGCAGCCGGGGGCACCGTCGTCGTCCTGCACGAGGAGGCCACGACGGCGCTCGCGGACGTCGTGCTGCCCGCCCCCGCGTCCGGGGCGCCCGCACCCGAGCTGCTGGTGGTCGTCGGGCCCGAGGGCGGCATCGGCGCCGACGAGCTCGACGTCCTGACCGGCGCCGGCGCCGTCACCGCGCGGCTCGGACCTCACGTGCTGCGCACCTCGACGGCGGGGCCCGTCGCCGTGGCGCTCCTGAGCGACCGGCTGGGCCGGTGGCGGTAGMSAPVFLVDDGAPPLTVQPGGTYVLTGPEGRHAAVVQRRGPGERVDVVDGAGTRLHGVVASVDGHDLHLTVEDVTHEAAPTVTVTLAQALAKGDRDHQAVEAAVELGVDRVLPWQADRSVVVWRSPRAAKSHAKWEATVRSAVKQSRRARLPAVDQHVTTRGLAARTRDVAAAGGTVVVLHEEATTALADVVLPAPASGAPAPELLVVVGPEGGIGADELDVLTGAGAVTARLGPHVLRTSTAGPVAVALLSDRLGRWRNANANANANA
AK018_03361354COG0537Purine nucleoside phosphoramidaseATGACGGACACCGCCGAGACGGACTGCCTCTTCTGCAAGATCGTCGCCGGGGACCTGCCGGCCGACGTCGTGGAGACGACCGAACGGGTCGTCGCCTTCCGGGACATCGATCCGCAGGCGCCCGTGCACGTGCTGGTCGTGCCCAAGGAGCACCACGGCGACGTGTCGGTGCTCGCCGCCGCCGACCCGACCCTGCTCGCGGAGGTCGTCTCGGTCGCGGACACCGTGGCCCACGACCTGGCCGACGGTCAGTACCGGTTCATCTTCAACTCCGGCCCCCGCGCGGGCCAGAGCGTCTTCCACGTGCACGGCCATGTGATCGCCGGCACCCAGCTGGGATGGAGTCCCGCCTGAMTDTAETDCLFCKIVAGDLPADVVETTERVVAFRDIDPQAPVHVLVVPKEHHGDVSVLAAADPTLLAEVVSVADTVAHDLADGQYRFIFNSGPRAGQSVFHVHGHVIAGTQLGWSPANANANANANA
AK018_033621083COG1702PhoH-like proteinATGGAGTCCCGCCTGAGCATGACGTCCTCCGTACCGTCGTCCCACCCGGCCGCGTCCACGCCGTCGGGCACCCACAGTGCCGAGCACCGGGTCGTCGTCCCGCCGCACGTGCCGATGGTGGCGCTGCTCGGCAGCGGCGACGCCGTGCTGCGTGCCGTCGAGGACGGCTTCCCCGCCGTCGACGTGCACGCCCGCGGCAACGAGATCGCCGTCCGCGGCCCCTCGCAGGACGTGGGGCTGGTCTCCCAGCTGCTCGACGAGCTCGTCGAGGTCGCCGAGTCCGGAGCCCAGCTCACGCCCGAGGTCGTGTCCCGGTCGGTCGCGATGCTCACCGCCGCGACCGTGCACCGCCCCGCCGAGGTGCTCACCCACCAGATCCTGTCCAGCCGGGGCCGCACGATCCGACCCAAGACGGTCGGGCAGAAGTCCTACGTCGAGGCCATCGACGCCAACACCATCACGTTCGGCATCGGCCCCGCCGGCACCGGCAAGACCTACCTCGCGATGGCGAAGGCCGTCCAGGCGCTGCAGGCCAAGCAGATCAACCGGATCGTGCTCACGCGCCCCGCCGTCGAGGCCGGGGAGAAACTCGGCTACCTGCCGGGCTCCCTCAGCGACAAGATCGACCCCTACCTGCGGCCGCTGTACGACGCGCTGCACGACATGCTCGACCCCGACGCGATCCCGCGGCTGGTCGAGTCCGGCACGATCGAGGTCGCCCCGCTGGCGTACATGCGGGGACGAACGATCAACGACTCGTTCATCATCCTCGACGAGGCGCAGAACACCTCCGCCGAGCAGATGAAGATGTTCCTCACCCGGCTCGGGTTCGGCTCCACGATGGTGATCACCGGCGACGCCACCCAGGTCGACCTGCCGGGCGGGACCGCGTCCGGGCTGCGGGTCGTCGAGGACATCCTCACCGGCGTCGACGACGTCGAGTTCTGCCGCCTGGGCAGCGGCGACGTCGTGCGCCACCGGCTCGTCAGCGACATCGTGGACGCCTACGCACGGTGGGACAGCACCCGCCCGGCCGACGACCGCCGTCGTCCCGGCCGCCACGACCGAGGAGGACGCCGGTGAMESRLSMTSSVPSSHPAASTPSGTHSAEHRVVVPPHVPMVALLGSGDAVLRAVEDGFPAVDVHARGNEIAVRGPSQDVGLVSQLLDELVEVAESGAQLTPEVVSRSVAMLTAATVHRPAEVLTHQILSSRGRTIRPKTVGQKSYVEAIDANTITFGIGPAGTGKTYLAMAKAVQALQAKQINRIVLTRPAVEAGEKLGYLPGSLSDKIDPYLRPLYDALHDMLDPDAIPRLVESGTIEVAPLAYMRGRTINDSFIILDEAQNTSAEQMKMFLTRLGFGSTMVITGDATQVDLPGGTASGLRVVEDILTGVDDVEFCRLGSGDVVRHRLVSDIVDAYARWDSTRPADDRRRPGRHDRGGRRPGPT0002700_582DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217NANA
AK018_03363453ybeY_2COG0319Endoribonuclease YbeYGTGAGCATCGAGGTCAACAACGAGTCCGGCGTCGACGTCGACGAGGCCGAGTTCGCGGCACTGGCCCGGTTCGCCCTGGACGAGCTGCACGTGCACCCGCAGGCCGAGCTGTCCATCCTGTTCGTCGACGTCGAGGCCATGACCGACCTGCACGTGCAGTGGATGGACGAACCGGGACCCACCGACGTGCTGTCGTTCCCGATGGACGAGCTGCGCCCCGGGCGCGAGGGCGAGGAGACCCCGCCCGGCACGCTCGGCGACATCGTGCTGTGCCCCGAGGTCGCCGCGACCCAGGCGCAGGCCGCCGGGCACTCCACCGTCGAGGAGATGCTGCTGCTGACCACGCACGGGATCCTGCACCTGCTCGGCTACGACCACGCCGAACCGGACGAGGAGGCCGAGATGTTCGGCCTCCAGCGCCGGCTCCTGCTGACCTTCCTGGCCGGGCGGTGAMSIEVNNESGVDVDEAEFAALARFALDELHVHPQAELSILFVDVEAMTDLHVQWMDEPGPTDVLSFPMDELRPGREGEETPPGTLGDIVLCPEVAATQAQAAGHSTVEEMLLLTTHGILHLLGYDHAEPDEEAEMFGLQRRLLLTFLAGRPGPT0002700_49DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217NANA
AK018_033641308hypothetical proteinGTGGAGGCTCCTGACGCCCTGCTGTGGGTGGTGCTCGTCGGCGCGGTCGCGATCTCCGCCGTGCTCAGCGCCGGCGAGGCGGCCGTCCTGCGCGTGACGCGGGTGTCGCTCGCCGTCGCCCTCGAGGAGGTCGGCAACGAGGGCCCCCCGGCACGACGACGGCGGATCGAGCGTGCGCAGGCGCTCGCGGCCGACCCCGACGCCGCCGGGTCGTTCGCGCTGGTGCGCGTGCTCGCCGAGACGGTGTCGGTCGCCAGCGCGACCCTGCTGCTGGCGCACTGGTTCGGCCGCTGGTGGGAGGTGCTGCTCGGGGTCCTCGTCGTCGGCGTCGTGGCGGGACTGCTCGTGGTGCGGCTCAGCCCGCGCACGTGGGCGCACCACCGGCCCACCCAGGCCCTGGTCGGCCTCGCGGGTCCGCTGACCGTCGTCCACCGTGCCGTGGCGTGGGTGCCCCGTCCCCGCGCGGGCGGCGAGACCCCCGGACAGGACGCCGACGAGCTGCGCGAGATGGCCGACCGCGTGCGGGAGAACGAGGCGATCGAGGAACCCGAGCGCGAGCTGCTGCGCTCGGCGCTCGAGCTCGGCGACACCCTCGCCCGCGAGGTGATGGTGCCGCGCACCGACATGGTCACCACCGGGTCCGCCACCCCGCTGCGCAAGGCGATGCGCCTGTTCCTGCGCTCCGGGTTCTCGCGGGTGCCCGTGGTGGGGCGGACCGTGGACGACCTGGTCGGCGTGGTGTACCTCAAGGACGTCGCACGCCTGCTCGACGCCGACCCCCGCGCCGAGGACCGGCCCGTCGGCGACGTCGTGCGCGAGGCGATCTTCGTGCCCGAGTCCAAGCCGGCCGACGACCTCCTGCGGGACATGCAGGCCCGCCGCTCCCACATCGCGATCGTCGTCGACGAGTACGGCGGCGTGGCCGGCCTGGTCACCGTCGAGGACGTGATCGAGGAGCTCGTCGGCGAGCTCACCGACGAGCACGACACCGCGCCCGAGCCCGAGCCGGAGGAACTGGACCACGGCACGTGGCGGGTCCCCGCACGGCTGCCGGTGGACGAGCTGGGCGAGCTGTTCGACCTGCGCCTAGACGACGACGACGTGGACACCGTCGGCGGCCTGCTCGCCAAGGCGCTCGGCAAGGTCCCGCTGCCCGGCTCCGCCGCCGACGTCGGCGTGCTGCGCCTGGAGGCGGAACGGGTCGAGGGGCGCCGCAAGCAGCTCTCGAGCATCCTGGTGCGACGCACCGCCGTCGAAGCAGCGGACGGGGACGCCCTCGTGCCGCACGATCAGAAGGACTCCGCATGAMEAPDALLWVVLVGAVAISAVLSAGEAAVLRVTRVSLAVALEEVGNEGPPARRRRIERAQALAADPDAAGSFALVRVLAETVSVASATLLLAHWFGRWWEVLLGVLVVGVVAGLLVVRLSPRTWAHHRPTQALVGLAGPLTVVHRAVAWVPRPRAGGETPGQDADELREMADRVRENEAIEEPERELLRSALELGDTLAREVMVPRTDMVTTGSATPLRKAMRLFLRSGFSRVPVVGRTVDDLVGVVYLKDVARLLDADPRAEDRPVGDVVREAIFVPESKPADDLLRDMQARRSHIAIVVDEYGGVAGLVTVEDVIEELVGELTDEHDTAPEPEPEELDHGTWRVPARLPVDELGELFDLRLDDDDVDTVGGLLAKALGKVPLPGSAADVGVLRLEAERVEGRRKQLSSILVRRTAVEAADGDALVPHDQKDSANANANANANA
AK018_03365951era_2COG1159GTPase EraATGACCACCCCCGAGGACCACCGCTCCGGTTTCGCCTGCCTCGTCGGCCGGCCGAACGTCGGCAAGTCGACGCTCACCAACGCGCTGGTCGGCCAGAAGGTCGCCATCATGTCGGCGCGGCCGCAGACCACCCGGCACACGATCCGCGGCATCGTCCAGCGCGACGACGCCCAGCTCGTGCTCGTCGACACCCCGGGGCTGCACCGACCCCGCACGCTGCTCGGCGAGCGGTTGAACACCCTGGTGGTGGACACCCTCAGCGAGGTCGACGTGGTCGCGTTCTGCCTGCCCGCCGACCAGAAGATCGGCCCCGGCGACCGGTACATCGCCAACCAGCTCGCCCCGCTGATGGAGGGCCGGCGCGCCGTCCCGGTGGTCGCAGTGGTCACCAAGTCCGACCTGGTCGGCAAGGGCGAGCTCGCGGAGCACCTCATGGCCGTGGACCAGCTCGCCCGCTCGCTGGACCGGGACTGGTCGGCGATCGTGCCGGTCTCGGCCAAGGGCGGTTACCAGGTCGACGAGCTCACCGACGTGCTGATCGCGCACCTTCCTGAGGGACCCGACCTCTATCCCGGGGGCGAGCTCACCGACGAGCCCGAGGAGACGATGATCGCCGAGCTCGTGCGCGAGGCGGCCCTCGAGGGGGTCCGCGACGAGCTGCCCCACTCGCTGGCGGTCGTGGTCGAGGAGATCGTGCCCCGCGAGGGCACCGAGGACGAGTCCACGGGCCGGCCGCCGCTGCTGGACGTGCGCGTGAACCTGTTCGTCGAGCGCGAGAGCCAGAAGGGCATCATCATCGGGCGCGGCGGGTCGCGGTTGCGGGAGGTGGGCTCCCAGGCCCGTGAGGGCATCGAGAAGCTGCTCGGCGCGCGCATCTACCTGGACCTGCACGTCAAGGTCGCCAAGGACTGGCAGCGCGACCCGAAGCAGCTGCAGCGGTTGGGCTTCTGAMTTPEDHRSGFACLVGRPNVGKSTLTNALVGQKVAIMSARPQTTRHTIRGIVQRDDAQLVLVDTPGLHRPRTLLGERLNTLVVDTLSEVDVVAFCLPADQKIGPGDRYIANQLAPLMEGRRAVPVVAVVTKSDLVGKGELAEHLMAVDQLARSLDRDWSAIVPVSAKGGYQVDELTDVLIAHLPEGPDLYPGGELTDEPEETMIAELVREAALEGVRDELPHSLAVVVEEIVPREGTEDESTGRPPLLDVRVNLFVERESQKGIIIGRGGSRLREVGSQAREGIEKLLGARIYLDLHVKVAKDWQRDPKQLQRLGFNANANANANA
AK018_033661596hypothetical proteinGTGGTGTTCCGGACGATCGCGACCAGCCTGGCCCTGCTGGTCGGGCTGGCGGTGATCGGGTCGGTCGCCGGGCCGCAGTGGCACCCCGTGCCGGTCCGCGACCACATCACGCCGTCGACGGCGGACACGACCGTGGACACCTCGGGCCCGGCCGTGCTGGTGCCCGGGGAGATCGGCGAGGTCGGGGACCTCGCGGTGCGCACCACGCCCGTGACGGTGGAGCTCGACGGCGCGGAGGTCGGCGGTCTGCTGCGCCGCCCGGTCGGACCCGACGGGTCGCTCCTGACCGGCCGGCCGGGCCTGGTGTTCGTGCACGGTGCGGGAACCGGCAGCGCCGACGAGGCGTTCGTCGACACCGCGGAGCTGCTCGCGAGCGCGGGTGTGGCGACGCTCGTGCCGGACAAGCGACTGGACACGTACTCCACGCGCGACCGCGACTACGTGGCGATGGCCGACGACTACCTGCGCTCGGTGGACCTGCTGCGGTCGTCCGAGGGCGTCGACCCGGGGCAGGTGGGGGTCTACGGGGAGTCGGAGGGCACGTGGGTGGCTCCGGTGATGCAGGTCGCGGACCCGCGGATCGCCTTCACGGTCCTGGTGTCGGCCCCGGTCGTGCCCCCGCGCGAGCAGGCCGCGTTCGCCGTCGACAACTACCTGCGCAACACCGAGGTGCCGGACCAGGTCTTCCGCGCGATCCCGCGCGCCGTCGGCATGCAGCTCCCTGGCGGGGGGTTCGACTACGCGGACTTCGACGTCCGGCCCTGGCTGGAGCAGCAGACGGCACCGGTGCTCGTCGTGTACGGCACGGCCGACCCGTCGATGCCCATCGAGCAGGGCGTGCGGCTCATCGCCGCCGACACCGCCGTGGGGGCCGGCGCCCCGGTCACGGTCCGGTACTACGGGGCTGCGGACCACGGCATCCGGCTGCGTGACGAGCTGCCCGAGGGTGCGCCCGAGGACCTCGAGGCGCCGCTGCACCCCGACTTCCCGCGGGACATGGCCGCCTGGATCCAGGGCATGCCGGGTACGGCCGATGCCGAGCCCCACGTCGCCGGGGCCGAGCCCGAGCAGCTCTACCTGGCCGCGCCCGTGCCGCAGCCGCGATGGTGGGGCAACGGCGACGTCGTGCTCGCCGTCGTGGTGGCGGGGACCGGGCTGGTGGTGCTGTCCCTGGTGGCCTGGGGGGTGACCGTGCTCGCCCGGCGCGCCACGCACCGGCCCGGTCGGACCCGCCTCAAGCGGTTCGCGCCCGGCGTCGGGCCGCCGCTCGTCGCCCTCGGGCTCTTCGCGACGGTCACCGTGGTGGCGCTGACTGTCTACCTCGCCGCGGTCGCGCGTCTGGCCATCGACTACGAGCGCGACGCCCTCGTCGTCCAGGGTGGATGGATCGCCGTGCGGCTGCTCGGGGTGGGCGCCGCGGTCGCCGCTGCCGTCCTCCTGCAGCGGGTCGTGGACGCCCGGTCGCGCCCGCGCGAGGACGCCGGGCCCGTCGCGCGGGGTGCCGTCGCTCACGTCACCCTGTGGGCCGTCGTCGTCGGCTCGGCGTTGTTGCTGGTCACGGTCGCGTACTGGGGGGTGTACCAGCTCGGTCTGTGAMVFRTIATSLALLVGLAVIGSVAGPQWHPVPVRDHITPSTADTTVDTSGPAVLVPGEIGEVGDLAVRTTPVTVELDGAEVGGLLRRPVGPDGSLLTGRPGLVFVHGAGTGSADEAFVDTAELLASAGVATLVPDKRLDTYSTRDRDYVAMADDYLRSVDLLRSSEGVDPGQVGVYGESEGTWVAPVMQVADPRIAFTVLVSAPVVPPREQAAFAVDNYLRNTEVPDQVFRAIPRAVGMQLPGGGFDYADFDVRPWLEQQTAPVLVVYGTADPSMPIEQGVRLIAADTAVGAGAPVTVRYYGAADHGIRLRDELPEGAPEDLEAPLHPDFPRDMAAWIQGMPGTADAEPHVAGAEPEQLYLAAPVPQPRWWGNGDVVLAVVVAGTGLVVLSLVAWGVTVLARRATHRPGRTRLKRFAPGVGPPLVALGLFATVTVVALTVYLAAVARLAIDYERDALVVQGGWIAVRLLGVGAAVAAAVLLQRVVDARSRPREDAGPVARGAVAHVTLWAVVVGSALLLVTVAYWGVYQLGLNANANANANA
AK018_033671758hypothetical proteinATGTCCGACGTCGTCAACGCGTCCCGCCGCTCGCCGTTCACGGGCGTGCCGCCCCGGGACGTCGTGCGCGACGTCGTCGCCGCCGTCGCGCTGCTCGTGGCCCTGCCCCTGCCGTGGGAGATCGGGCACCGCGGCAGCGACCTGCTGTGGGTGGTGCTCACGACGGTGCTCGCGCTCGTGGCGATCGTCGCGCCGTACGCCGAGCGGGCCGGTGTCCTCGCCGGCGGCTGGGGGCGGCTGGTCGACCCCGCCACCCGGCTGCTCTGCCTCATGCCGTACGGACTGGTGGCCCTGCTGTACCTGGTGCTCGACGTCGCCCGCACCGCCGGTGACGCCGGCGCTGTCGGGGGCGGCCTCGCCGTCGGCCTGGCCGGCGTGGTGCTGGCCGCCGCCGTGCCCGGCCCGCGGCCCGTGATCGTCAGTGCCGTCGTGGTGGCACTCGGGGCCGTCGTGACGCCGGTGCTCGCGATGCTCGGCGGTGGGTCGTGGTCGGCGGTGGTCGGTGCCCTGCTGGCGGCGGTGCTGGTCCTCGGCGTCCTGTGGCTGACGGTGCGGCGCTTCCTGCGCGACGACGAACCCGCGGGCATCGTGCTGATCGTCGTGGGTGCGGCGGTGGCGCTGGAGATCGTGTTCCTCGGTGGCGGGTCCTCGGCCTGGTTCGAGACCCTGCACGGCGGCCGCTACGGGCTGCTCCTGCTGCCGGTGGTGGCCGCGGCCGCGGTGCCGGTGGCGTTCGACCGGGCGGCCGCCGCCGTGGGCGAACCGGGGGAGCGGAGCGCGCACCGGTGGGTCGCCGTGGCGGTCCAGGCGTTCGAGCTGATGATGCTCGTCGGCGGGTTCGTCGCCGCCGTCGCGGTGCTGCGGCTGGTGGACCGCGAGCCCTTCTCCGGCGGGCTGGTCGAGGCGGTCCTGCGACTGGTCGTCGGTGTGCTGGTGGTGGTCCTGGCTCTCCTCGCCCGGCGCGCCCTGCTGCGCGACCCGCGGGCCGGGCACTCGACGGCGGTGGGCGCCGCCTGCCTGGTCGTGGTCCTCGGCGTCGTGATCCTGGTCGCGCGTGCCGGGATCGGGACGGCGTCGCGCGTCGAGGAGCTGCTGCTGGCGCTCGCGCTCCCGGCGCTGGTCCTCGGCGCGCTGCTGCTGCCGCCGTCCGTGCGCGCGCTCGTCGGCGCGGCTCCCGCCGACGGATCCGCGTCGGGTCCGGCCGAGACGCCCGGCGAGCGGCCGTGGGAGGCGCAGGCCCCCGCCGGCTACTACCAGGGCCGGGACGAGGAGGGCCGGCGGCCCGCCGCGCAGGAGACGGCGGTCCAGCAGCCGGTAGTGCCGGAGCGCAGCTGGCAGGAGCCCGCGGCCCAGGAGCACGCGGACGAACCGCAGGGGACCGGCCACGGCTCGCGCTGGCGCGGGACGTGGGCCGCCGGGACGGACGCCACCCAGCAGATGGCACCGGTGCGCACCGACGTCGCCGAGCAGCCCGCACCGTCCGCGCAGCCCGAGTCGTCGGCGCCCGAGCCGGTGGGGCACGCCGCGCACCAGACCCAGGTGCTGCCGCCCGTGGCGGACGTGCCCGGCAGCCGCTGGACGGCGGACCAGGCCCTGGACCCGAGCACCCCGCTGGAGTCGCTGGCCGTCATCGTCCAGGAGGCGCCGCACCTGCGGCCCCACGTCGCGGCGAACCCGTCGACCTACCCGGCGCTGCTGGACTGGCTCGGCGCGCTCGGCGACCCCGCGGTCGACGCCGCCTTGCGCACCCGCCGCTGAMSDVVNASRRSPFTGVPPRDVVRDVVAAVALLVALPLPWEIGHRGSDLLWVVLTTVLALVAIVAPYAERAGVLAGGWGRLVDPATRLLCLMPYGLVALLYLVLDVARTAGDAGAVGGGLAVGLAGVVLAAAVPGPRPVIVSAVVVALGAVVTPVLAMLGGGSWSAVVGALLAAVLVLGVLWLTVRRFLRDDEPAGIVLIVVGAAVALEIVFLGGGSSAWFETLHGGRYGLLLLPVVAAAAVPVAFDRAAAAVGEPGERSAHRWVAVAVQAFELMMLVGGFVAAVAVLRLVDREPFSGGLVEAVLRLVVGVLVVVLALLARRALLRDPRAGHSTAVGAACLVVVLGVVILVARAGIGTASRVEELLLALALPALVLGALLLPPSVRALVGAAPADGSASGPAETPGERPWEAQAPAGYYQGRDEEGRRPAAQETAVQQPVVPERSWQEPAAQEHADEPQGTGHGSRWRGTWAAGTDATQQMAPVRTDVAEQPAPSAQPESSAPEPVGHAAHQTQVLPPVADVPGSRWTADQALDPSTPLESLAVIVQEAPHLRPHVAANPSTYPALLDWLGALGDPAVDAALRTRRNANANANANA
AK018_033681791leuA_2COG01192-isopropylmalate synthaseATGAACACCGAGCACCCGCACGTCACGAACGGCATCGCCGCGCACAACCCGCAGCGCCCCTCGCAGATGCCGTACCACCGGTACGTCCCCTTCCACGAGCAGATCCGCGTGGACCTGCCGGACCGCACCTGGCCCGACCGCCGTATCGAGAAGGCCCCCCGCTGGTGCGCCGTCGACCTGCGCGACGGGAACCAGGCCCTCATCGAACCGATGAACGCCGAGCGCAAGCTGCGCATGTTCGAGCTCCTGGTCCAGATGGGGTACAAGGAGATCGAGGTCGGCTTCCCGTCGGCCTCGCAGACGGACTTCGACTTCGTGCGCACCCTCATCGAGTCCGGGCGGATCCCCGACGACGTCGTCATCCAGGTGCTGACCCAGTGCCGCGACCACCTCATCGAGCGCACCTTCGACGCGATCCGCGGCGCCAAGCAGGCGATCGTGCACATCTACAACTCCACCTCGATCCTGCAGCGCGAGGTCGTCTTCCGCACCGACCAGGACGGGATCGTCGACATCGCCCTGCAGGGCGCGCGGCTGTGCCGCAAGCTCGAGGAGACCGTCCCGGAGACCACCGTCTACTACGAGTACTCGCCGGAGTCCTACACGGGCACCGAGCTGGAGTACGCCGCCCGCATCTGCAACGAGGTGCTCGAGGTCCTGGAGCCGACGGCGGAGCGCCCGGTGATCGTCAACCTGCCGGCCACGGTGGAGATGGCCACGCCGAACGTGTACGCCGACTCGATCGAGTGGATGAGCCGCCACCTCAACCACCGCGAGCACGTGGTGCTGTCCCTGCATCCGCACAACGACCGCGGCACCGCCGTCGCGGCGGCCGAGCTGGGCTACCAGGCCGGCGCCGACCGCATCGAGGGCTGCCTGTTCGGCAACGGCGAGCGCACCGGCAACGTGGACCTGGTGACGCTGGGCATGAACCTGTTCGGCCAGGGCATCGACCCGCAGATCGACTTCACCGTCGGCGGCGGGATCGACGCGATCCGTCGCACGGTCGAGTACTGCAACCAGCTCCCGGTGCACGAACGGCACCCCTACGCCGGCGACCTGGTGTTCACGGCGTTCTCCGGGTCGCACCAGGACGCGATCAAGAAGGGCTTCGAGCACATGGCCGGCCGCGCCGAGGCGGAGGGCAAGGCCGTCGACGAGCTCACCTGGGGCGTGCCGTACCTGCCGATCGACCCGAAGGACCTGGGGCGCTCGTACGAGGCCGTGATCCGCGTGAACTCGCAGTCCGGCAAGGGCGGCGTGTCGTACCTGCTCAAGACGGAGCACCACCTGGAGCTGCCCCGCCGCCTGCAGATCGAGTTCTCGGGCGTGGTGCAGAAGTACTCCGACACCGCGGGCAGCGAGGTCACCGGCGCCGACATCTGGCGCATGTTCGCCGACGAGTACCTGCCCGCCGAGGAGAACGACGGCCAGGACCTGCAGCCGTGGGGCCGGCTCAAGCTGCGCGAGATCCGCACGCGGGCCGTCGAGGACGGCACCACCACCCTCGAGGTGGACGTCGTGGACCAGGGCGCCGAGCAGACCCTCGTCGGGACCGGCAACGGCCCGCTGGACGCGTTCGTGACGGCGATCGCCGGCGTCGGTGTGGACGTGAAGGTCCTCGACTACACCGAGCACGCGATGAGCGCCGGCGGTGACGCGAAGGCGGCCGCCTACGTGGAGTGCGCGGTGGGCGACGACGTGCTGTGGGGCGTCGGCGTCGACCCGTCGATCACGACGGCCTCGCTCAAGGCGATCGTCTCGGCCGTCAACCGCGCCGAGCACGGCTGAMNTEHPHVTNGIAAHNPQRPSQMPYHRYVPFHEQIRVDLPDRTWPDRRIEKAPRWCAVDLRDGNQALIEPMNAERKLRMFELLVQMGYKEIEVGFPSASQTDFDFVRTLIESGRIPDDVVIQVLTQCRDHLIERTFDAIRGAKQAIVHIYNSTSILQREVVFRTDQDGIVDIALQGARLCRKLEETVPETTVYYEYSPESYTGTELEYAARICNEVLEVLEPTAERPVIVNLPATVEMATPNVYADSIEWMSRHLNHREHVVLSLHPHNDRGTAVAAAELGYQAGADRIEGCLFGNGERTGNVDLVTLGMNLFGQGIDPQIDFTVGGGIDAIRRTVEYCNQLPVHERHPYAGDLVFTAFSGSHQDAIKKGFEHMAGRAEAEGKAVDELTWGVPYLPIDPKDLGRSYEAVIRVNSQSGKGGVSYLLKTEHHLELPRRLQIEFSGVVQKYSDTAGSEVTGADIWRMFADEYLPAEENDGQDLQPWGRLKLREIRTRAVEDGTTTLEVDVVDQGAEQTLVGTGNGPLDAFVTAIAGVGVDVKVLDYTEHAMSAGGDAKAAAYVECAVGDDVLWGVGVDPSITTASLKAIVSAVNRAEHGNANANANANA
AK018_03369735recO_2COG1381DNA repair protein RecOGTGCCCCTGTACCGAGACGACGCGATCGTGCTGCGCACCCACAAGCTGGGTGAGGCCGACCGCATCATCACGTTCCTGACGCGCGAGCACGGCAAGGTCCGCGCGGTCGGGCGCGGCGTGCGGCGCACGTCCTCGAAGTTCGGCGCCCGGCTGGAGCCGTTCATGATGGTGGACGTCCAGCTCTACACCGGCCGCAACCTCGACTCGGTGACGCAGGTCGAGACGATCGGCGCCTTCGCCCGCCAGATCAGTGCCGACTACGCCCTGTACACGGCAGGTGCCGCGATGCTGGAGACCGCGGACCGCCTGGTCGCGGCCGAGCACGAGCCGGCCGTCCAGCAGTACTGGCTGCTGGTGGGCGCGCTGCGGGCCCTGTCCGAGCGGGCGCACACCCCGGGCCTGGTGCTGAACTCCTACCTGCTGCGCGCGCTGGCGGTGGCCGGGTGGGCGCCGTCGTTCACGGAGTGCGCGCGCTGCGGCGAGCCGGGCCCGCACCACTCGTTCGCCGTCGCGCAGGGCGGCGCGGTGTGCTCGCGGTGCCGTCCGCCGGGCAGCGCGTCGCCGGCGCCCGAGACCTTCGACCTGCTGGCGGCGCTGCTCGCGGGCGACTGGGAGGTGGCCGACGCCGCCGAGCGCCGTCACCGCAGCGAGGCGGACGGCCTGGTCGCCGCGTACTCGCAGTTCTACCTGGAGCGCACCCTGCGCTCGTTGCGCATGATCGAGAGAGAGGCCTGAMPLYRDDAIVLRTHKLGEADRIITFLTREHGKVRAVGRGVRRTSSKFGARLEPFMMVDVQLYTGRNLDSVTQVETIGAFARQISADYALYTAGAAMLETADRLVAAEHEPAVQQYWLLVGALRALSERAHTPGLVLNSYLLRALAVAGWAPSFTECARCGEPGPHHSFAVAQGGAVCSRCRPPGSASPAPETFDLLAALLAGDWEVADAAERRHRSEADGLVAAYSQFYLERTLRSLRMIEREANANANANANA
AK018_03370792COG0020Trans,polycis-polyprenyl diphosphate synthase ((2Z,6E)-farnesyl diphosphate specific)ATGCCCACCGCACCCCGGCAGTACGCCGAGCCGTACCCGCACCCGTCCGGCGCCACCCCGCCACGGATCCCGGCACAGTTCGTGCCGAACCACGTCGCCGTCGTCATGGACGGCAACGGCCGGTGGGCCAACGCGCGGGGCCTGTCCCGGATCGAGGGGCACAAGGAGGGCGAGAAGTCCCTGCTCGACGTCGTGGCGGGCGCCGTGCAGATCGGGGTGAAGCACGTCTCCGCGTACGCGTTCAGCACGGAGAACTGGAAGCGGTCGCCGGAGGAGGTGCGCTTCCTGCTGGGGTTCAACCGGGACGTGATCCGACGACGGCGCGACGAGATGGCGTCGTGGGGCGTGCGGATCCGCTGGGCCGGGCGTCGCCCGAAGCTGTGGGGCTCGGTGATCGACGAGCTCGAGAAGGCCGAGGAGATGACCAGGGGCAACGACCGCTGCACCTTGACGATGTGCGTGAACTACGGGGGGCGCGCCGAGATCGCGGACGCCGCTGCCGCCATCGCCCGGGACGCCGTGGCCGGGAAGGTGAACCCGGCGCGTGTCACGGAGAAGACCGTGCAGAAGTACCTGGACGAGCCCGACCTGCCGGACGTGGATCTGTTCCTGCGTTCGTCGGGCGAGCAGCGCACGAGCAACTTCATGATCTGGCAGGCCGCCTACGCCGAGATGGTGTTCCTGCCCGAGCCGTGGCCGGACGTCGACCGTCGGCACCTGTGGCGTGCGGTCGAGGAGTTCGCGCGGCGGGACCGGCGGTACGGGGGAGCGGTGGACGCGCCGACAGCCTGAMPTAPRQYAEPYPHPSGATPPRIPAQFVPNHVAVVMDGNGRWANARGLSRIEGHKEGEKSLLDVVAGAVQIGVKHVSAYAFSTENWKRSPEEVRFLLGFNRDVIRRRRDEMASWGVRIRWAGRRPKLWGSVIDELEKAEEMTRGNDRCTLTMCVNYGGRAEIADAAAAIARDAVAGKVNPARVTEKTVQKYLDEPDLPDVDLFLRSSGEQRTSNFMIWQAAYAEMVFLPEPWPDVDRRHLWRAVEEFARRDRRYGGAVDAPTAPGPT0024180_641DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024180-uppS|ispU-K00806NANA
AK018_033711068hypothetical proteinGTGCGTCTTCGCCGCTCCCTGAGCACCGCCGTCGGCCTCGCCGCGGCCACCGCCCTCACGCTGACCGCGTGCGCCTCCGAGTCGGAGCCCGACACCTCCGGCGAGGAGTCGACCACCGAGGAGTCCGCCGCGCCGGAGGGCGCCACCGACGAGTTCCCCGTGACCATCACGCACGCGCTCGGCGAGACCACCGTCGAGTCCGAGCCGCAGCGCGTCGCCACCTGGGGCTGGGGCTCCACGGAGGCCGCCCTCGCGGTCGGCGTCGCCCCCGTCGGCGTCGCCGAGCAGGTCTTCACCGTCGGCGAGCAGGCCCTGCTGCCGTGGGTCGCCGAGGAGTACGAGGCGCTCGGCGCCGAGGACCCCGTGATCTTCAGCGACGCCGAGGCCGGCGCGACCGTCCCCTACGAGGAGTTCGTCGAGGCCGACCCCGACCTCATCCTCGCCCCGTACTCGGGTCTCACCGAGGAGCAGTACGACCTGCTCACGGAGATCGCGCCGGTCGTCGCCTACCCCGAGGCCCCCTGGACCACGCCGTGGGACGACATCATCACCGTCACCGCCGAGGCGCTCGGTCGCACCGACGCAGGCGAGCAGGTGCTGAACGACGTCGACACGTACTTCGCCGACCTGGCCGCGGAGCACCCCGAGTTCGAGGGCAAGACGTTCGCCGCCATCAAGGACTCGCCCACCGAGGGGCTCGTGTACGTCTACACGCCGGCCGACCCGCGGGTCAGCATCCTCGAGGGCCTCGGCGTCGTCTCGGCCCCGTCCGTCGAGGAGCTGGACAGCTCCGACGGCGGCTTCTACTACACGCTCTCCTACGAGGAGCTCGACAAGCTCGAGGCCGACTTCGTCGTCACGTACCTGTACGACGGCGAGGAGCCCGAGGCCTTCACCGGTTCCGAGGAGCTGCAGGCCGTCCCCGCGGTCGCCGACGGCCACGTCGTCATGATCGAGGGCAACGTCGCCACCTCGTCCGTCTCGCCGCCCACCGCGCTGTCCTACGACTGGGAGACCGGCGTGCCCGCCCTCGTCGAGCAGCTCGCCGGCATCTACGGCGAGAGCTGAMRLRRSLSTAVGLAAATALTLTACASESEPDTSGEESTTEESAAPEGATDEFPVTITHALGETTVESEPQRVATWGWGSTEAALAVGVAPVGVAEQVFTVGEQALLPWVAEEYEALGAEDPVIFSDAEAGATVPYEEFVEADPDLILAPYSGLTEEQYDLLTEIAPVVAYPEAPWTTPWDDIITVTAEALGRTDAGEQVLNDVDTYFADLAAEHPEFEGKTFAAIKDSPTEGLVYVYTPADPRVSILEGLGVVSAPSVEELDSSDGGFYYTLSYEELDKLEADFVVTYLYDGEEPEAFTGSEELQAVPAVADGHVVMIEGNVATSSVSPPTALSYDWETGVPALVEQLAGIYGESPGPT0003765_2819DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
AK018_03372876yusV_2COG1120putative siderophore transport system ATP-binding protein YusVATGATCGACACCCCGCACCGCGCACCACGGACCGCCACCCGCGGCGACCTGGTCGCGCACGGCGTCTCCATCGGGTACGACGGGCACCGGGTGATCGAGTCGCTCGACCTGACGCTGCCCGAGGGCAAGGTCACCGCCGTCGTCGGCCCCAACGCCTGCGGCAAGTCGACGCTGCTGCGCGGGCTCGCCCGGCTGCACCCGCTGGAGGCCGGGCGGGTCACGCTGGGCGACCTCGACGTGACCGCGATGCCGCGCAAGGAGCTGGCACGGTCCGTCGGCGTGCTGCCGCAGTCGTCCGTGGCCCCGGACGGGGTGCGGGTCGCCGAGCTGGTCGGCCGCGGCCGGTACCCGCACCAGGGGTGGTTCGGCCGGCACAGCAGCGACGACGACGCCGTGGTGATGCGGTCGCTCGAGGCCACCGGGGTCGCGGACCTGGCCGACCGGCCCGTGGCCGAGCTCTCGGGCGGGCAGCGTCAGCGCGTGTGGGTGGCGATGGTGCTCGCCCAGGAGACCGACATCGTGCTGCTCGACGAGCCGACGACGTTCCTGGACGTCACCCACCAGATCGAGCTGCTGGACCTGCTGGCCGACCTGAACGCCGAGCGGGGCACCACCGTGGTCATGGTGCTGCACGAGCTCAACCTCGCCGCCCGGTACGCGGACCACCTGGTGGTCATGTGCGCGGGTCGCGTGGTGGCGCAGGGCGCTCCGCAGGACGTGCTCGACGAGCGCACCGTCCTCGAGGCGTTCGGTCTGGACGCGAGGGTCGTGCCGGACCCGGTGTCGGGGACGCCGATGATCGTGCCGGTCGGGCGGCACCGCCGTGCGGACGGTTCGCTCGCACCGGACGGCTCGGCCGAGCCGCGCGGTGAGTGAMIDTPHRAPRTATRGDLVAHGVSIGYDGHRVIESLDLTLPEGKVTAVVGPNACGKSTLLRGLARLHPLEAGRVTLGDLDVTAMPRKELARSVGVLPQSSVAPDGVRVAELVGRGRYPHQGWFGRHSSDDDAVVMRSLEATGVADLADRPVAELSGGQRQRVWVAMVLAQETDIVLLDEPTTFLDVTHQIELLDLLADLNAERGTTVVMVLHELNLAARYADHLVVMCAGRVVAQGAPQDVLDERTVLEAFGLDARVVPDPVSGTPMIVPVGRHRRADGSLAPDGSAEPRGEPGPT0003760_415DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_033731065yfhACOG0609putative siderophore transport system permease protein YfhAATGACGACACGCCCCGTGGCCGCACCCGCGCCCGGCACCGCCTCCGCCGCCCCGGTGACGGCGCTGCGCCGTCACCGCCGTCGCCGCCTCCTCCTGGTCCTCGCCGTCCTGGCCGGCCTGATCGTCGCCCTCGCCACTCTCGCCCTCACGCTCGGCGCCGCCTCGCTCCCGCCGGGACGCGCGCTGCTCGCCCTGCTCGGCGTCGGCGACGACGGCGACCTGTTCATCGTCCAGCGCCTGCGCCTGCCCCGGCTCCTCGCCGCCCTGCTGGCGGGCGCCGCCTTCGGGCTCGCCGGCGCGCTGTTCCAGTCGACGCTGCGCAACCCGCTGGCCAGCCCCGACATCCTCGGCATCGCGACCGGCGCCTCGGTCGGCGCGGTCACCGTGATGCTGGGCCTCGGCCTGACCGGCCTCGCGGTCTCCGCCGGCGCGTTCGCCGGGGCGTCGGTCATCGCGCTGCTCATCTGGTTCTTCGCGTGGCGCCAGGGACTGCACTCCATCCGCTTCGTCCTGGTCGGCGTCGGCTTCGCCTACCTCGCCTCGTCGATCCTGGCGTGGCTGCTCGCGAGCGCCGACCAGCGCGAGGCCGCCTCGGCGCTCGTGTGGACGGTCGGCAGCGTGGCGGACGTCCGCGGCACGGAGCTCGCCGTCCTCGGGCTCGGGCTCGCCGTGCTGGCGCTCGTGGTCGCGTCGATCGCCCGCTGGCAGGCGCCGCTCGGCCTGGGCGACGACCACGCCCGCGGTCTCGGCGTGCCCACCGACGCCGCCCGTGTCGGTTCGCTGCTCGCAGCCGTCGCCCTGGTCGCGCTCGCCACCTCCGTCGTCGGGCCGCTGGCGTTCGTCGCGCTCGTCGCACCGGCCATCGCCCGGCGGCTGGTGGACGACGGCGGAGCGGCGCTGACCGTGTCCGTCGCCACGGGTGCCGCGCTGGTGCTCGCGGCCGACGTCGTCGCCGAGAACGGCCTGCTCGGCGTCACCGCCCCCACCGGCATCGTCACCGGCCTCGTCGGCGCGCCGTACCTGCTGTGGCTCCTGGCCACCCACGAGAAGAGAGCCCGCGCATGAMTTRPVAAPAPGTASAAPVTALRRHRRRRLLLVLAVLAGLIVALATLALTLGAASLPPGRALLALLGVGDDGDLFIVQRLRLPRLLAALLAGAAFGLAGALFQSTLRNPLASPDILGIATGASVGAVTVMLGLGLTGLAVSAGAFAGASVIALLIWFFAWRQGLHSIRFVLVGVGFAYLASSILAWLLASADQREAASALVWTVGSVADVRGTELAVLGLGLAVLALVVASIARWQAPLGLGDDHARGLGVPTDAARVGSLLAAVALVALATSVVGPLAFVALVAPAIARRLVDDGGAALTVSVATGAALVLAADVVAENGLLGVTAPTGIVTGLVGAPYLLWLLATHEKRARAPGPT0003770_2978DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_033741038yfiZ_2COG0609putative siderophore transport system permease protein YfiZATGCTGACCTCCCCCGCCGCGGTGCCCACCAGCGCCGCCGAGCAGGTCGCCCGCCGCAGCCGGCGACGGGTCCTCGCCTGCGTGCTGGCCCTCGTCGCCCTCGCCGTGGTGGTCGTGGCCAGCCTGGTGCTCGGGGTGCGCGACGTGTCGCTGCCGGTCGTGTGGCAGGCGCTCACGGACCCCGTCGCCGGCGACGTCAATCACCAGGTCATCGCCGGCCAGCGCGTCCCGCGTGCCCTCGTGGGCCTGGCCGCCGGTCTCGCGCTCGGTGTCGCCGGCGCGGTGATCCAGGGCGTCACCCGCAACCCGATCGCCGACCCCGGTCTCCTCGGGCTGAACTCCGGCGCGTCGCTGGCCGTCGTCTGCGCCGTCTGGCTGCTCGGCCTGTCCGCGCCGTCGCAGTTCGTCTGGTTCGCGTTCCTCGGCGCCGCGGCGGCCGCAGCCCTGGTGTTCTCGATCGGCGCCGGGCAACCGGTCAAGCTGGCGCTCGTCGGCGCCACGGTCACCGCGCTCATCACGCCGATGATCACGCTCGTGCTGCTGCGCGACCAGCAGGCGTTCAACCTCTACCGGTTCTGGGCCGTCGGGTCGCTCACCGGACGCGGGCTGGACACGCTGGTCGTCGTGCTGCCGTTCATCGCCGTCGGCGCCGTCCTCGCGGCAGGGCTCGCCCACCGGCTCAACATGCTCGCCCTCGGCGACGACATCGCCCGCGGCCTCGGTCAGCGGGTCGGGGTCACCCGGGCCGTGGCCGGGCTGACCATCGTGCTCCTCGCCGGGGCCGCGACGTCCCTCGCCGGACCGATCGCGCTGGTGGGTCTCGCCGTCCCCCACGCCGCCCGCCGCCTGGTCGGCACGGACTACCGCTGGGTGCTGCTGCTGTCCGCGCTGCTCGGGCCCGTCATGCTGCTCGGGGCGGACGTGATCGGCCGCCTGATCCTGCCGCACGGCGAGCTCGAGGCCGGCGTCGTCGCCGCCGCGATCGGCGCCCCCGTGCTCGTCGCGGTCGCCCGCGGCAAGAAGGTCTCGGGGGTCTGAMLTSPAAVPTSAAEQVARRSRRRVLACVLALVALAVVVVASLVLGVRDVSLPVVWQALTDPVAGDVNHQVIAGQRVPRALVGLAAGLALGVAGAVIQGVTRNPIADPGLLGLNSGASLAVVCAVWLLGLSAPSQFVWFAFLGAAAAAALVFSIGAGQPVKLALVGATVTALITPMITLVLLRDQQAFNLYRFWAVGSLTGRGLDTLVVVLPFIAVGAVLAAGLAHRLNMLALGDDIARGLGQRVGVTRAVAGLTIVLLAGAATSLAGPIALVGLAVPHAARRLVGTDYRWVLLLSALLGPVMLLGADVIGRLILPHGELEAGVVAAAIGAPVLVAVARGKKVSGVPGPT0003770_2979DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0003770-feuB|feuC|chuU|yfhA|hmuU|ABC_FEV_P|fatC|fatD-K02015NANA
AK018_03375546hypothetical proteinATGATCACCGCCCCGCTGCTCGCCGCCGCGTCCTCCGACGCCGAGCGGCACGGCGTGTTCACGCTCGAGGGCTTCCCGTACTGGATCGTGTACGTCGCCGCGTTCGGCATCGTCATGGTCCGCGCCCAGGCCACGTACTGGCTGGGGCGCGGGGTCGCGCGCGGCATGGGCGGCACCCGCGTCGCGCACGTGCTGGCCTCCCCGCGCGCCACCCAGGTCATCGACCGCATCCACCGCTGGGGCCCTCCCGCGGTGACCTTCTCGTTCTTCACCGTCGGGGTGCAGACCGTGGTCAACCTCGCCGCCGGGTACCTGCGCATGCCGTTCGGCCGCTACCTGGTGGCGCTCACGTTCGGCTGCCTCGTGTGGGCCGCGATCTGGACCACCGTCGGGACCGCCGTCGTCTGGGGCGCCGTCCTGCTGTTCCTGCACCACCCCGCCGTGCTCGCCGCGCTCGTCGTCCTCGCGCTGGGCCTGACCGCCTGGCTGGTGCACCGCCGTCGGACACGCACCGACGCGGCGCAGCCGACGCCCGAGGAGGTGTGAMITAPLLAAASSDAERHGVFTLEGFPYWIVYVAAFGIVMVRAQATYWLGRGVARGMGGTRVAHVLASPRATQVIDRIHRWGPPAVTFSFFTVGVQTVVNLAAGYLRMPFGRYLVALTFGCLVWAAIWTTVGTAVVWGAVLLFLHHPAVLAALVVLALGLTAWLVHRRRTRTDAAQPTPEEVNANANANANA
AK018_03376411zur_2COG0735Zinc uptake regulation proteinATGAACCAACCGCTGCGCATGACCAAGCAGCGGGCCGCCGTCGCCGAGGCCCTGCATGTCAGCGACGAGTTCCGCAGCGCCCAGCAGCTCCACGAGCTCCTGCGGGACCGCGGTGACGCCGTCGGGCTCGCCACCGTCTACCGCACGCTGCAGGCGCTGGCCGACGGCGGCGACGTGGACGTGCTGCGCACCGACGACGGCGAGGCCCTGTACCGCCGGTGCGCCCGGACAGAGCACCACCACCACCTGGTGTGCCGCTCGTGCGGGCGCGCGGTCGAGATCGACGGCCCGACCGTCGAGGCCTGGGCCGCCGAGGTGGGCGCCACGCACGGGTTCGCCGACATCGAGCACACCGTCGAGCTGTGGGGCACCTGCGCCGCCTGCCGCGCGTCCGCCGACCGGGCGAGTTAGMNQPLRMTKQRAAVAEALHVSDEFRSAQQLHELLRDRGDAVGLATVYRTLQALADGGDVDVLRTDDGEALYRRCARTEHHHHLVCRSCGRAVEIDGPTVEAWAAEVGATHGFADIEHTVELWGTCAACRASADRASPGPT0003880_4910DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711NANA
AK018_03377930znuB_2COG1108High-affinity zinc uptake system membrane protein ZnuBATGAGCGAGATCACCTCCATGCTCACCGACCCGCTGATGCAGCGGGCGCTGCTGGCCGCGCTGCTGGTCGGCGCCGCTGCCCCGGTGGTCGGCACGTACCTGGTCCAGCGACGCCTGGCGCTGCTCGGTGACGGCATCGGGCACGTCGCGCTGACCGGCGTGGCGCTCGGCTGGCTCATCGGGTCGGCGATGGGTCTGGTGCCGAACGACTTGTTGGCCATCCCGGGCGCCGTGGTGACCGCCGTCATCGGCTCCGTCCTGATCGAGGTGGTCCGACGGCGGGGACGCACCTCGGGCGACCTGGCCCTGGCGATCATGTTCTACGGCGGCATCGCCGGGGGCGTGCTCATCATCGGTATCGCGGGCGGCTCGTCCGGCAGTCTCATGGCGTACCTGTTCGGGTCGATCTCGACGGTCACGACGACCGACCTGGTCCTCACGGTCATCCTGTGCGCGCTGATCCTGGCCGTGGGCGTCGGTCTGCGGGCCGCGCTGTTCTCGGTCAGCCACGACGAGGAGTTCGCGATCTCCTCGGGGCTGCCGGTCTGGGCGCTGAACATGGCGGTGGCCGTGCTGGCGGCCCTGACCGTCACGGTGGCGATGCGGGTGGTCGGGCTGCTGCTGGTCTCGGCGCTGATGATCGTGCCGGTCGCGATCGGCCAGCTCGTCACCCACTCGTTCCGCCGCACCATGGCGGTCGGGTCGGTGATCGGCGTCCTCGTGTGCGTCGTCGGGCTGAGCGTCACCTACTGGTACCCGGTCTCCCCCGGCGCTCTCATCGTGGTCCTCGCCATCGCGGTCTACGCCGTCGTGGCAGGGTTGCACCCGTTGCTCGCGCGCCGTCGGCCCGCCGGCGACCCGCACCCCGACATCCCCGACGACGTCGAGGTTGCCCCGAGAGCGTCCGCCCAGGGAGACTGCACACCATGAMSEITSMLTDPLMQRALLAALLVGAAAPVVGTYLVQRRLALLGDGIGHVALTGVALGWLIGSAMGLVPNDLLAIPGAVVTAVIGSVLIEVVRRRGRTSGDLALAIMFYGGIAGGVLIIGIAGGSSGSLMAYLFGSISTVTTTDLVLTVILCALILAVGVGLRAALFSVSHDEEFAISSGLPVWALNMAVAVLAALTVTVAMRVVGLLLVSALMIVPVAIGQLVTHSFRRTMAVGSVIGVLVCVVGLSVTYWYPVSPGALIVVLAIAVYAVVAGLHPLLARRRPAGDPHPDIPDDVEVAPRASAQGDCTPPGPT0004225_173DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004225-znuB-K09816NANA
AK018_03378807btuD_15Vitamin B12 import ATP-binding protein BtuDGTGACGACACCCGCCATCGACGCCCGCGGCGTCCACGTCCACCTGGGCGCCAGCCACGTCCTGCGCGGGGTCGACCTGCGGGTCGACGCCGGCGAGGTCGTCGCCCTGCTCGGCGCCAACGGATCCGGCAAGTCCACGCTGGTGCGCACCGTCGTCGGGATCCTGGAGCCCAGCCGCGGAGAGGTCGACCTGCTCGGCCACCGCCTCGGCAACCACGTGCCCTGGCAGCGCATCGGGTACGTGCCCCAGCGCATCAGCGCGGCCGCCGGCGTGCCCTCGACGGCGAGCGAGGTCGTCGCCTCCGGCCTCCTGCACGGCCGGCGTCTGTCGCTCCCCCGCGGCTGGCGGACGCTCGCGCGCGAGGCGCTCGCCCAGGTCGGCCTGGCCGACCGCGCCAGGGACGCCATCGGCCAGCTCTCCGGCGGCCAGCAGCAGCGGGTCCTCATCGCCCGCGCCCTGGTGCGCCGACCCGAGCTGCTGGTGCTCGACGAGCCGGTCGCCGGCGTCGACCGCCCCAGCCAGGAGGCGTTCGCCGCGACCATGACCCGACTGGTCGACGGCGGCCTCACCGTCCTGGTGGTGCTGCACGAGCTGGGCGAGCTCGCCGACCTCATCACGCGCGCCGTCGTCCTGCGGCACGGCCAGGTGGTGCACGACGGCGCTCCCCCGCGCCCGCACGCCAGCCACGACGCCGCCGAGCACGAGCACCTGCACCCGCACACCTCGGAGCTGCCGGCGCTCGACGCGCGCCACGTCGGCCTGAGCGACGGACCCCTGGACGCCGGCGACCGGGAGGCCCGCCCATGAMTTPAIDARGVHVHLGASHVLRGVDLRVDAGEVVALLGANGSGKSTLVRTVVGILEPSRGEVDLLGHRLGNHVPWQRIGYVPQRISAAAGVPSTASEVVASGLLHGRRLSLPRGWRTLAREALAQVGLADRARDAIGQLSGGQQQRVLIARALVRRPELLVLDEPVAGVDRPSQEAFAATMTRLVDGGLTVLVVLHELGELADLITRAVVLRHGQVVHDGAPPRPHASHDAAEHEHLHPHTSELPALDARHVGLSDGPLDAGDREARPPGPT0004230_279DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004230-znuC-K09817NANA
AK018_033791020znuA_2COG0803High-affinity zinc uptake system binding-protein ZnuAATGACTCCTCGTGCCCGCCTCGGCCTCGCCGCCGCGCTCCCCCTCGGCCTCGTCCTGACCGCCTGCGCCACCGACGCCGGCAGCGACGACGCGGCCGCCGACGGCGTGCAGGTCCTCGCCTCGTTCTACCCCCTGCAGTACGTGGCCGAGCAGGTCGGCGGCGACCTCGTGAGCGTCGACAACCTCACTCCCCCGGCCGCCGAGCCGCACGACCTCGAGCTCGCCCCGGCCCAGGTGCGCGAGATCGGCTCCGCCGACCTGGTCGTCTACCTCACCGGCTTCCAGCCGTCCGTCGACGAGGCCGTCGAGGCGCGCGCGCCGGAGCACGTCGTCGACGCCGCCGATGTCGTGACCCTCGAGGAGAGCCCCGGCACCGTCGAGCACATGGACGAGGCCGAGGACGCCGACGAGCACGACCACGAGGGCGAGACCGCGGAGGAGCACGCCGAGCACGAGGAGGAGCACGCGGAGGACGACGGCCACGACCACGGCACGCTCGACCCGCACTTCTGGCTCGACCCGACCCTGCTGGAGCCGGTCGCCGACGCCGTCGCCGCCGAGCTCTCCGCGGCCGACCCGGACAACGCCGACACCTACGCCGCCAACGCCGAGACGCTGAAGGCCACCCTGGACGACCTCGACGCCGAGTACGCCACGGCGCTGGAGCCCTGCGTCGGCGAGACGCTCGTGACGAGCCACGCCGCGTTCGGGTACCTGGCCGAGCACTACGGCCTGACCCAGATGGGCATCTCCTCGATCGACCCGGAGGCCGAGCCGTCCCCGGCGCGCCTGCGCGAGATCGGCGAGGTCGTCGAGGCGAACGACGTGCAGACCATCTTCACCGAGACGCTGACCAGCCCGAAGGTCGCCGAGACCCTGGCGGACGACCTGGGCGTCGCCACCGCGGTGCTCGACCCGCTCGAGGGCCTGTCGACCGAGGCCGAGGACGCCGGCGACGACTACGTTGCGGTCATGGAGAACAACCTGGCCGCGATGACCGAGGGCCTGGGCTGCGCGTGAMTPRARLGLAAALPLGLVLTACATDAGSDDAAADGVQVLASFYPLQYVAEQVGGDLVSVDNLTPPAAEPHDLELAPAQVREIGSADLVVYLTGFQPSVDEAVEARAPEHVVDAADVVTLEESPGTVEHMDEAEDADEHDHEGETAEEHAEHEEEHAEDDGHDHGTLDPHFWLDPTLLEPVADAVAAELSAADPDNADTYAANAETLKATLDDLDAEYATALEPCVGETLVTSHAAFGYLAEHYGLTQMGISSIDPEAEPSPARLREIGEVVEANDVQTIFTETLTSPKVAETLADDLGVATAVLDPLEGLSTEAEDAGDDYVAVMENNLAAMTEGLGCAPGPT0004220_998DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINROOT_COLONIZATION-ZINK_TRANSPORT_LIPOPROTEIN,PGPT0004220-znuA-K09815NANA
AK018_033801395glyQS_2COG0423Glycine--tRNA ligaseGTGGCAGCACCGTCCGCGAGCGCCAAGCTCGACGCCGTCGTCTCCCTCGCCAAGCGGCGGGGATTCGTCTTCCAGTCCGGCGAGATCTACGGCGGGACGCGCTCCGCGTGGGACTACGGCCCCCTGGGCGTGGAGCTCAAGGAGAACATCAAGAAGCAGTGGTGGAAGGCGATGACCCGGCGTCCCGACGTGGTCGGCATCGACTCGTCGGTCATCCTGCCCACCCCGGTCTGGAAGGCCTCCGGCCACCTCGGCGCGTTCACCGACCCGCTGACGGAGTGCCTGAGCTGCCACAAGCGGTTCCGCGAGGACCAGATGATCGAGGAGTTCACCGAGCGCAAGGGCCGCGAGCCCGAGGGCGGCCTCGCAGAGATCGCCTGCCCCAACTGCGGCACCCGCGGGCAGTGGACCGAGCCGCGTGACTTCAACATGATGCTCTCGACCTACCTCGGCGCGATCGAGGACGAGTCCGGCAAGCATTACCTGCGCCCGGAGACCGCCCAGGGCATCTTCGTGAACTTCGCCAACGTGGCGGCCGCGGCGCGGCAGAAGCCGCCGTTCGGCATCGCGCAGATCGGCAAGTCGTTCCGCAACGAGATCACGCCGGGCAACTTCATCTTCCGCACCCGAGAGTTCGAGCAGATGGAGATGGAGTTCTTCGTCGAGCCGGGCAGCGACGCCGAGTGGCACCAGTACTGGATCGACACCCGCATGGCCTGGTACACGGGTCTGGGCATCGACCCGGAGAACCTGCGCCTCTACGAGCACCCCGAGGACAAGCTGTCCCACTACTCGACGCGCACGGTGGACATCGAGTACCGCTTCGGCTTCACCGGCGGGGAGTGGGGCGAGCTCGAGGGCATCGCCAACCGCACCGACTTCGACCTCTCGACGCACGCGGAGCACTCCGGCAAGGACCTGCAGTACCGCGACCCGGTGACCAACGAGAAGTACTTCCCGTACGTCATCGAGCCGGCCGCCGGCCTGACCCGGTCCCTCATGGCGTTCCTGGTCGAGGCGTACGCCGAGGACGAGGCGCCCAACACCAAGGGCGGCGTTGACAAGCGCACCGTCCTGCGCCTGGACAAGCGGCTCGCCCCGGTCAAGGCCGCCGTGCTGCCGCTGTCCAAGAGCTCCGAGCTGCTCCCGACGGCGGAGAAGCTCGCCGCGGACCTGCGCCAGTACTGGAACGTCGACCACGACGTCACCCAGGCGATCGGCAAGCGGTACCGCCGCCAGGACGAGATCGGCACGCCGTACTGCGTCACCGTCGACTTCGACACGCTGGACGACCAGGCCGTGACCATCCGCGACCGCGACACCATGTCCCAGGAGCGCGTCACCCTGGACAAGGTCGCCGGCTACCTCGCCGAGAAGATGCCCGGGGTCTCCTGAMAAPSASAKLDAVVSLAKRRGFVFQSGEIYGGTRSAWDYGPLGVELKENIKKQWWKAMTRRPDVVGIDSSVILPTPVWKASGHLGAFTDPLTECLSCHKRFREDQMIEEFTERKGREPEGGLAEIACPNCGTRGQWTEPRDFNMMLSTYLGAIEDESGKHYLRPETAQGIFVNFANVAAAARQKPPFGIAQIGKSFRNEITPGNFIFRTREFEQMEMEFFVEPGSDAEWHQYWIDTRMAWYTGLGIDPENLRLYEHPEDKLSHYSTRTVDIEYRFGFTGGEWGELEGIANRTDFDLSTHAEHSGKDLQYRDPVTNEKYFPYVIEPAAGLTRSLMAFLVEAYAEDEAPNTKGGVDKRTVLRLDKRLAPVKAAVLPLSKSSELLPTAEKLAADLRQYWNVDHDVTQAIGKRYRRQDEIGTPYCVTVDFDTLDDQAVTIRDRDTMSQERVTLDKVAGYLAEKMPGVSNANANANANA
AK018_03381405vapC_1tRNA(fMet)-specific endonuclease VapCGTGATCGTCGCCGACGCGAACGTCGTCATCGCGGCGACCGACCCCGGACACGTCCATCACTCCCAAGCGCAGGACATCGTCTGCGCCTACGGGCGCCGCAGCATCGTGCTGCATTCGCTGACCCTGGCCGAGGTCCTGGTCGGACCGGCCCGCGCCGGAGCACAGGCCGAGGTGCGGGCACGACTCGAACGCGCCGGCTTCACGTCGTCACCCGGCGGCGATCCGGATCCGGAGGCCCTCGCCCTGGTCCGGGCCACCACGTCGTTGAAGATGCCCGATGCCTGCGTGCTCGCGACGGCGGAGCAGCTGGGTGCGAGCATCGCGACGTTCGACCGCCGCGTCGCCCGTGAGGCCCGCGCACGCGGCACCACCGTGCTCGGGGCACCGGATCCCCCCGCCGGCTGAMIVADANVVIAATDPGHVHHSQAQDIVCAYGRRSIVLHSLTLAEVLVGPARAGAQAEVRARLERAGFTSSPGGDPDPEALALVRATTSLKMPDACVLATAEQLGASIATFDRRVAREARARGTTVLGAPDPPAGPGPT0027605_870DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-VapC-VapB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027605-toxin_vapC_like-K07064NANA
AK018_03382123hypothetical proteinGTGGAGCAGCAGTCGTCCGCACTCGACCGCGAGCACGAGCTCGCCGTCCAGGACCTGACGCGGCTGGCGAGGTACTACCCGGACGGCTACCTGGACGACGTGCGCGCCGGGTGGGACGAGTGAMEQQSSALDREHELAVQDLTRLARYYPDGYLDDVRAGWDENANANANANA
AK018_03383177hypothetical proteinATGCCCCTCTGGCTCATCCTCATCATCATCGGTGTCGTACTCCTCATCCTCGGCCTCACCGGGATCGCGGAGTTCCTGCTCTGGATCGGCGTCGCCGTGCTGGTGGCCCGCCGGGTCCGGCCCCTGGGGAGCCGGGCGAAGTCGCGACCTGTTCGTCCACCTGGAGGCACCGGGTAAMPLWLILIIIGVVLLILGLTGIAEFLLWIGVAVLVARRVRPLGSRAKSRPVRPPGGTGNANANANANA
AK018_03384195hypothetical proteinGTGCTGGCATTCTGGCGCAACCCCGACGAAAGGAAACTCATGGCCCTCTGGCTGATCCTCATCATTGCCGGTCTCGTCTCGCTGATCCTCGGCCTGGTCGGACTCGGACAGTTCTTCATCTGGGCCGGTGTCATCGCCATGGTGGTCGGTGTGGTGCTCGTGCTGGTCAACCGCGGGAACCGCAAGGTCGGCTGAMLAFWRNPDERKLMALWLILIIAGLVSLILGLVGLGQFFIWAGVIAMVVGVVLVLVNRGNRKVGNANANANANA
AK018_033851251dus_2COG0042putative tRNA-dihydrouridine synthaseATGGCGAGTGTGACCTCCACGCTCGACCCGACACGTACGACGCCGCAGCCCGCCACCGCACCGGGCGCCCCGACGTCGGGCACCCGTGTGCTCCCGCCGCTGCAGATCGGCCCGATCACCGTGGGCACGCCGGTCGTGCTCGCGCCGATGGCCGGCGTGACCAACCGGGCGTTCCGCACCCTGTGCCGCCAGGCCGGGCAGTCCACCGGGTTCGACCCGGGCCTGTACGTGGCCGAGATGGTGACCTCGCGCGCCCTCGTGGAGCGCAACACCGAGGCGCTGCGCATCGTCACCTTCGGAGCGGACGAGACGCCCCGCTCGGCGCAGGTGTACGGCGTCGACCCCGCCACCGTCGGCGAGGCGGTGCGCATCATCGCCCGTGAGGACCGGGCCGACCACGTCGACCTGAACTTCGGGTGCCCCGTGCCCAAGGTGACGCGCAAGGGCGGCGGGGCGGCCGTGCCCTGGAAGCGTGAGCTGTTCGCCGGCATCGTGCGTGCCGCCGTCGACGCGGCCGAGCCGTACGGCATCCCGGTCACCGTCAAGATGCGCAAGGGCATCGACGACGACCACCTGACCTACCTGGAGGCGGGCCGGACCGCCGAGTCGCTCGGTGCCGCCGCCGTCGCGCTGCACGCCCGCACCGCCGCGCAGCACTACTCCGGCACCGCCGACTGGACCGCGATCGCGCGGCTGAAGGAAGCGGTCCGGACGGTGCCCGTGCTCGGCAACGGCGACATCTGGGCCGCCGAGGACGCGGTCCGCATGGTCCGCGAGACGGGCGCGGACGGCGTCGTCGTGGGTCGCGGCTGCCAGGGTCGGCCGTGGCTGTTCGCGGACCTCGCTGCGGCGTTCAACGGGTCGGACGCCCGGGTGCGGCCCGGGCTGCGGCAGGTCGCCGACACGATCTACCGCCACGGCGAGCTGATGATCGAGTACTACGACGGCGACGAGGACAAGGGCACGCGCGACCTGCGCAAGCACATGGCCTGGTACCTCAAGGGGTACGCGGTCGGCGGCGACGCCCGGCGCGGGCTGGCGATGGTCTCGAGCCTCGCCGAGCTGCGCGAGCGCCTCGACGCCCTCGACCTGTCCCTGCCCTACCCGGGTGAGGACGCCGAGGGGCCGCGCGGTCGTGCCGGGTCGCCCAAGAAGCCGCACCTGCCGTACGGCTGGCTCGACTCGCGCGAGCTGGACGAGGAGTTCGAGCAGAAGCTGCGCGAGGCCGAGCTCAGCGTCTCCGGCGGCTGAMASVTSTLDPTRTTPQPATAPGAPTSGTRVLPPLQIGPITVGTPVVLAPMAGVTNRAFRTLCRQAGQSTGFDPGLYVAEMVTSRALVERNTEALRIVTFGADETPRSAQVYGVDPATVGEAVRIIAREDRADHVDLNFGCPVPKVTRKGGGAAVPWKRELFAGIVRAAVDAAEPYGIPVTVKMRKGIDDDHLTYLEAGRTAESLGAAAVALHARTAAQHYSGTADWTAIARLKEAVRTVPVLGNGDIWAAEDAVRMVRETGADGVVVGRGCQGRPWLFADLAAAFNGSDARVRPGLRQVADTIYRHGELMIEYYDGDEDKGTRDLRKHMAWYLKGYAVGGDARRGLAMVSSLAELRERLDALDLSLPYPGEDAEGPRGRAGSPKKPHLPYGWLDSRELDEEFEQKLREAELSVSGGNANANANANA
AK018_033861815malL_2COG0366Oligo-1,6-glucosidaseATGGCCACCACCGAGCAGACCACCCCGACTCCGGACGCCCTGCAACCGGGCACCACCGTCCACGTCGGGACCGACACCGCCCGCGAGTGGTGGCGCGACGCCGTCATTTACCAGGTCTACCCGCGCTCGTTCGCGGACGGCAACGGGGACGGCATCGGCGACATCCCCGGCATCACCGCCCGGCTCGACCACCTCGAGGCCCTCGGGATCGACGCCGTCTGGCTCTCGCCGTTCTACCGCTCCCCGCAGAACGACGCCGGCTACGACGTCGCCGACTACCGCGACGTCGACCCGCTGTTCGGCACCCTGGCCGACTTCGACAAGATGCTCGCCGGCGCCCACGAGCGCGGCATGCGCGTCATCGTCGACCTCGTGCCGAACCACACCTCCGACCAGCACGCCTGGTTCCAGGAGGCGATCGCCGCCGCCCCCGGCTCGCCCGAGCGGGCCCGGTACATCTTCCGTGACGGCCGGGGCCCCGACGGGACCGAGCCGCCCAACAACTGGCACTCCATCTTCGGCGGACCGGCCTGGACCCGGCTCGCCCCGTCGAGCACGGCCGACGGTGACGCCTACGACGAGCCCTCGCCGCAGTGGTACCTGCACCTGTTCGACTCCACCCAGCCCGACCTCGACTGGAACCGGCCCGAGGTCCGGTCCGAGTTCGAGGACGTGCTGCGGTTCTGGCTCGACAAGGGCGTCGACGGGTTCCGCGTCGACGTCGCCCACGGCATGGTCAAGGCCGACGGTCTGCCCGACTGGCACGGCCACGTCTCCATGGTCGACGGCGGCACCGCCGACGAGGAGTCCGACCCCGGTGCGCCGGAGGACGGCTCCACCGGCGCCGGCAACTCCGGGCCGATGTTCGACCAGGACGGCGTGCACGAGATCTACCGGGACTGGCACCGCGTGCTGGCCGAGTACGACGGCGACCGCTGCCTGGTGGCCGAGGCCTGGGTCGAGCCGTTGTCCCGCCTGGCCCGGTACGTCCGCCCCGACGAGATGCACCAGGCGTTCAACTTCTCCTTCCTGACCACCGGCTGGGACGCGGCGGCGCTGCGGCGCGTCATCGCGGCGTCGTACCGCGCGAACGACGAGGTCGGCGCGCCCACCACCTGGGTGCTGTCCAACCACGACGTGGTCCGGCACGTCACCCGGCTCGGGCTGCCGGACCCCGGCGTGCGCCCCAACGGCGTGTTCGCCACGGACCCGCAGCCCGACGAGGAGCTCGGCCTGCGCCGCGGTCGCGCCGCGACGGCGCTCATGCTGGGTCTGCCCGGGTCCGCCTACCTCTACCAGGGCGAGGAGCTCGGGCTGCCCGAGCACACCACGATGCCGAACGACGTGCGTCAGGACCCGGCACACTTCCGCACCCAGGGCGCCGAGGCGGGCCGCGACGGCTGCCGCGTCCCGCTGCCCTGGTCCGCCGACGAGCCGGGCCTCGGGTTCGGGCCGACCGGCCGGACCTGGCTGCCGCAGCCGGAGTCGTACGCGCGCTACGCCGCCGACGTCCAGGCCGGCGTCGAGGGGTCGACGCTCGAGCTGTACCGGTCCGCGCTGGCCGTGCGGCAGGCCGAGCGCCTCGGCTTCGGTGCCCTGTCCTGGCTGGCCGGCTGGGAGGACTCGGCCGACGTCGTCGCGTTCCGCAACGGTGACGTCGTCGTCGTGGCGAACCTGGGCACAGAGTCCGTCGAGGTGCCCGCGAACGTGCCCGGCGCCGGGGAGCTGCTGCTCGCCTCCGGGCCGCTGGCTCCCGCGCTGGACGAGGGGACCGTCGTCGTGCCCGCCGACACGACGGTGTGGCTGCGCGCCTGAMATTEQTTPTPDALQPGTTVHVGTDTAREWWRDAVIYQVYPRSFADGNGDGIGDIPGITARLDHLEALGIDAVWLSPFYRSPQNDAGYDVADYRDVDPLFGTLADFDKMLAGAHERGMRVIVDLVPNHTSDQHAWFQEAIAAAPGSPERARYIFRDGRGPDGTEPPNNWHSIFGGPAWTRLAPSSTADGDAYDEPSPQWYLHLFDSTQPDLDWNRPEVRSEFEDVLRFWLDKGVDGFRVDVAHGMVKADGLPDWHGHVSMVDGGTADEESDPGAPEDGSTGAGNSGPMFDQDGVHEIYRDWHRVLAEYDGDRCLVAEAWVEPLSRLARYVRPDEMHQAFNFSFLTTGWDAAALRRVIAASYRANDEVGAPTTWVLSNHDVVRHVTRLGLPDPGVRPNGVFATDPQPDEELGLRRGRAATALMLGLPGSAYLYQGEELGLPEHTTMPNDVRQDPAHFRTQGAEAGRDGCRVPLPWSADEPGLGFGPTGRTWLPQPESYARYAADVQAGVEGSTLELYRSALAVRQAERLGFGALSWLAGWEDSADVVAFRNGDVVVVANLGTESVEVPANVPGAGELLLASGPLAPALDEGTVVVPADTTVWLRAPGPT0018560_2890DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_033871044degA_8COG1609HTH-type transcriptional regulator DegATTGTCCCCTACGATCGCAGGCGTGCGTACCCGTCTGAGCGACCTGGCCGAGCAGGCCGGAGTCTCCACCGCGACGGTGTCGCGCGTGCTCAACGGCAAGCCCGGCGTCGCCAGCTCCACCCGCCAGGCCGTGCTCGCCGCGCTCGACGTGCTCGGCTACGAGCGCCCGTCGGCGCTCAGCGGCCGGTCCGCCGGACTCGTCGGCCTCGTGGTGCCCGAGCTCACCAACCCCGTCTTCCCCGCGTTCGCCCAGGCCATCGAGTCGATCCTGGCCCAGCGCGGCTACACCCCGCTGCTGTGCACGCAGGCGCCCGGCGGCACCACCGAGGACGAGTACGTCTCCACGCTCGTGGACCACTCGGTGGACGGCATCGTGTTCGTCTCCGGCCTGCACGCCGACAGCCGGGCGAGCCACCGCCGCTACGAGCTCCTCAGCGGCCAGGGCGTCCCGATCGTGCTGGTCAACGGTTACGCCGAGGACGTCGACGCGCCCTTCGTCTCCCCCGACGACGCCGAGGCCGTCGACGTGGCGGTCCAGCACCTGGTCACGCTGGGACACCGCGAGATCGGCCTCGCCATCGGCCCGGAGCGCTACGTCCCGGCCCGCCGCAAGCTCGGCGCGTTCCTGAAGGCCCTGGTGCGGCACGGCCTGGCCGCGGACACCGCCGACGCACGCCGGCACGCCATCAGCACGCTGTACACGCTCGAGGGCGGGCAGGCGGCCGCGGCCGAGCTGTACGCGGCGGGGCACACCGCCGTCGTCTGCGGCTCCGACCTCATGGCGCTCGGCGCTGTGCGCGCCGCCCGCTCGCAGGGCCTGCGCGTGCCGGACGACGTCTCGATCGTCGGGTACGACGACGCCCCCCTGATCGCGTTCACCGACCCGCCGCTGACCACGGTCCGCCAGCCGGTCGACGCCATGGCCCACGCCGCCGTGAGCGCGCTGCTCACGGAGATCGGCGGCGACCGCGCCCCGCGCACGGAGCTGCTCTTCTCCCCCGAGCTCGTGGTCCGCGGATCCACCGGTCCGGCCCCGCGGGGCTGAMSPTIAGVRTRLSDLAEQAGVSTATVSRVLNGKPGVASSTRQAVLAALDVLGYERPSALSGRSAGLVGLVVPELTNPVFPAFAQAIESILAQRGYTPLLCTQAPGGTTEDEYVSTLVDHSVDGIVFVSGLHADSRASHRRYELLSGQGVPIVLVNGYAEDVDAPFVSPDDAEAVDVAVQHLVTLGHREIGLAIGPERYVPARRKLGAFLKALVRHGLAADTADARRHAISTLYTLEGGQAAAAELYAAGHTAVVCGSDLMALGAVRAARSQGLRVPDDVSIVGYDDAPLIAFTDPPLTTVRQPVDAMAHAAVSALLTEIGGDRAPRTELLFSPELVVRGSTGPAPRGPGPT0021075_240DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
AK018_033881257cycBCOG2182Cyclodextrin-binding proteinATGCGACGGAGCATCCTTCTCGCCTCCGCCCTGGTCACCACGCTCGCCCTGTCGGCGTGCGGGTCGGACGACGCCGCCGAGCCGGCCGAGGGCAGCACCGACGACGCCACCGCGACGGAGGGTGAGGACGCCGGCGACGACATGGCGACCGGCTCCCTGACCGTCTGGGTCGACGAGACCCGCCAGGCGGCCGTCGAGTCCGCCGCCGAGGACTTCACCGCCGAGACCGGCACCGAGGTCGAGCTGGTCCTCAAGCCGTTCGAGGACATCCGCACCGACTTCATCGCCCAGGTCCCCACCGGTGAGGGGCCCGACGTCACCGTCGGCGCCCACGACTGGCTGGGCGAGCTCATCACCAACGGCGTCGTCGCCCCGGTCGAGCTGGGTGACACCACCCCGCAGTTCGAGGACGTGGCCGTCGAGGCGTTCACCGCCGACGGCGCCGTCTACGGCATGCCGTACGCCATCGAGAACATCGCCCTCATCCGCAACACCGAGCTGGCGGACTCCGCTCCCGCCACCTGGGACGAGGCCATCGCCGCGGGCGAGGACGCCGGGACCAAGTACCCGCTGCTGATCCAGACCGGCGTCGAGGGCGACCCGTACACCTACTACCCGTTCCAGACGTCGTTCGGCGCCCCCGTGTTCGAGCAGAACGAGGACGGCTCCTACTCCCCGGAGATCGCCATGGGCGGCGACGCTGGGACGGCGTACGCCGAGTGGCTCGCCGAGCAGGGCGAGTCCGGTGCCCTGACCACGGACATCACCTACGACATCGCCGTCGAGGCCTTCGCCAAGGGCCAGTCGCCGTTCATCGTGGGCGGTCCGTGGATGCTCGAGCAGTTCGCCGACCTGGACCTGGCGATCGACCCGATCCCCGCCGCGGGTGACGAGGCCGCCCAGCCGTTCGTGGGCGTGCAGGGCTTCTACGTCAGCGCCCAGAGCGAGAACGCGCTGCTGGCCAACGACTTCCTCGTGAACTACCTGTCCACCGAGGAGGCGCAGACCGCGCTGTTCGAGGCCGGCGGCCGCCCGCCGGCGCTCACCGCCGCGGCCGACGCCGCGTCGTCCGATCCGATCGTGGCCGGCTTCCGCGAGGTCGGGGCCGAGGCCGTCCCGATGCCGTCGATCCCCGAGATGGGCTCGGTCTGGGCCTTCTGGGGCGTGACCGAGGCCAACATCATCTCCGGCTCCGCCGACCCGGCGAAGGCCTGGGACAAGATGATCGCCGACATCGAGGGTGCGCTCGACTCCTGAMRRSILLASALVTTLALSACGSDDAAEPAEGSTDDATATEGEDAGDDMATGSLTVWVDETRQAAVESAAEDFTAETGTEVELVLKPFEDIRTDFIAQVPTGEGPDVTVGAHDWLGELITNGVVAPVELGDTTPQFEDVAVEAFTADGAVYGMPYAIENIALIRNTELADSAPATWDEAIAAGEDAGTKYPLLIQTGVEGDPYTYYPFQTSFGAPVFEQNEDGSYSPEIAMGGDAGTAYAEWLAEQGESGALTTDITYDIAVEAFAKGQSPFIVGGPWMLEQFADLDLAIDPIPAAGDEAAQPFVGVQGFYVSAQSENALLANDFLVNYLSTEEAQTALFEAGGRPPALTAAADAASSDPIVAGFREVGAEAVPMPSIPEMGSVWAFWGVTEANIISGSADPAKAWDKMIADIEGALDSPGPT0016315_942DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016315-cycB|ganO-K15770NANA
AK018_03389639hypothetical proteinATGACCACGCCGCCCGCACCCGCCGACCAGCCGACCGCCCCCACCGCCGTCAAGCACACCCCGTTCGAGGACGCCCTCGGCATCCTGACCGGCACCTTCGTGGTCTCCCTCGGGCTGTTCCTGCTCGAGTCCGTCTCCGCCGTCACCGGCGGCACCGCCGGACTGTCGCTGCTGGTCAGCTACGTCGCCCCGCTGCCCTTCGCCGTGCTGTTCGCCGCGGTGAACCTGCCGTTCTTCCTGCTGGCGATCACCAAGAAGGGCTGGAGCTTCACCCTGCGCACCGGCGCCGCCATCGCGCTGGTCTCCGGCTTCTCCGTGCTGCACCCGGCCGTGTTCGGGACCGTGGACCTGCCGCCGCTGTACGGAGTCCTGGCCGGCAACGCCCTGGCCGGGGTCGGCCTGCTCATCCTGTTCCGGCACCGCTCCAGCCTCGGCGGGTTCAACATCGTCGCGCTCATCGCCCAGGAGCGCCTCGGCTGGCGCGCCGGGTACGTCCAGATGGCCCTGGACACCGCTGTCGTGCTGGCCGCCTTCGCCGTCGTGCCGGCCACCACCGTGCTGCTGTCCGCCCTCGGCGCCGTGCTGCTCAACCTCGTGCTGGCCATGAACCACCGCCCCGGGCGCTACACCGGCTACTGAMTTPPAPADQPTAPTAVKHTPFEDALGILTGTFVVSLGLFLLESVSAVTGGTAGLSLLVSYVAPLPFAVLFAAVNLPFFLLAITKKGWSFTLRTGAAIALVSGFSVLHPAVFGTVDLPPLYGVLAGNALAGVGLLILFRHRSSLGGFNIVALIAQERLGWRAGYVQMALDTAVVLAAFAVVPATTVLLSALGAVLLNLVLAMNHRPGRYTGYNANANANANA
AK018_03390444hypothetical proteinATGACCCGCCGCGCCGCCGAGGAGCACCTGGCCGACCTCGCGCTGCTGCGCCGCGTGCGCGACCGCATCGACCGCGACCACGCCCAGCCGCTGGACGTGCCGGCGCTCGCGGCCGGGGTGGGCATGTCGGCGGGGCACCTGTCGCGCCGGTTCAAGGAGACCTACGGCGAGTCGCCCTACAGCTATCTGATGACCCGGCGCGTGGAGCGGGCGATGGCGCTGCTGCGCCGCGGCGACCTGAGCGTGACCGAGGTGTGCCTCGCCGTCGGCTCGTCCTCGCTGGGCACCTTCACCACCCGCTTCACCGAGCTCGTGGGCATGCCGCCGGGCGAGTACCGTCGCCGGGCCCGCACCGCGCCGGCCGGCGAGCTGCCCTCGTGCGTGACCAGGCAGGTGGACCGGCCGATCAGGAATCGAGAAGCGCCGCCGTCGCCGGATGTCTAGMTRRAAEEHLADLALLRRVRDRIDRDHAQPLDVPALAAGVGMSAGHLSRRFKETYGESPYSYLMTRRVERAMALLRRGDLSVTEVCLAVGSSSLGTFTTRFTELVGMPPGEYRRRARTAPAGELPSCVTRQVDRPIRNREAPPSPDVPGPT0016790_5DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375NANA
AK018_03391429hypothetical proteinATGTCTAGCGTGACCGGTATGGACATCCGCATTCACACCACGTTCCTGCCGCACACCCGCCCCGAGGCGTCGCTGGCCTTCTACCGCGACCTGCTGGGCTTCGAGCTCGTCCAGGACGTCGGCTCCGGCGAGATGCGCTGGCTCACCCTCGTGCCGCCGTCCCAGCCCGACGTACGCCTGGTGCTCGCCCCGCCCGCCGCGGACCCGGGCATCAGCGACGACGAGCGCCGCACCATCACCGAGCTGATGGCCAAGGGCAGCTACCAGTCGATCATCCTGGCCACCTCGGACCTCGACGCCACCTTCGCCCGGATCGCCGGCGCGGCGGTCGAGGTCGTCTCGGAGCCGGCCGAGCAGCCGTGGGGCGTGCGCGACTGCGCCTTCCGCGACCCCGCGGGCAACATGGTGCGCATCGACGAGGTCGGCTGAMSSVTGMDIRIHTTFLPHTRPEASLAFYRDLLGFELVQDVGSGEMRWLTLVPPSQPDVRLVLAPPAADPGISDDERRTITELMAKGSYQSIILATSDLDATFARIAGAAVEVVSEPAEQPWGVRDCAFRDPAGNMVRIDEVGNANANANANA
AK018_033922397uvrA_3UvrABC system protein AATGGCGACCCGCACCGGGACCACCGCCGCCGGCGTCCACCCGGCCGACGCCCACGACGTCATCCGCGTGCGCGGCGCCCGCGAGAACAACCTGCGCGAGATCGACGTCGACATCCCCAAGCGCCGTCTGACGGTGTTCACCGGCGTGTCCGGGTCGGGCAAGAGCTCGCTGGTGTTCGCCACCGTCGCGGCCGAGTCACGGCGCCTGATCGACGAGACCTACTCGACGTTCCTGCAGGGGTTCATGCCGTCCCTGCCGCGTCCGGACGTCGACGACCTGTCGGGCGTCACCACCGCGATCCTGGTGGACCAGGAGCGGCTCGGGGCCAACGCACGCTCGACCGTGGGCACCGTGACCGACGCCCACGCGATGCTGCGCCACCTGTTCAGCCGTCTCGGCGAGCCCTACGTCGGCCCGCCGACGGCGTTCAGCTTCAACGTGCCCACCTCGAGGGCCAGCGGCGTGATGACGACCGACCGGGCCGGCGGCACGACCGAGAAGACCGTGGTCCGCGACCAGGTCTACCTGGGCGGCATGTGCCCCGAGTGCGAGGGCCGCGGCACCGTCTCCGACCTCGACCTGTCCGTCATCGTCGACGAGTCCCGTTCGCTCAACGAGGGCGCCATCCTCGTGCCCGGCTACAAGGCCGACGGCTGGATGGTGCGCGGCTTCTCCGAGTCCGGCTTCGTCGACCCCGACAAGCCGGTGCGCGACTACAGCGACACCGAGCGGCACGACTTCCTGTACCGGGACAAGGGCAAGATCAAGGCCCTGGGCATGAACATGACCTATCAAGGCCTCATCCCGAAGCTGCGCGAGTCGATGTTCTCGCGCGACCCCGCCTCGCTGCAGCCGCACGTGCGCCGCTTCGTCGAGCGCGCCGCCGTGTTCGGCCCCTGCCCTGCCTGCGAGGGCACCCGACTCAACGAGGCAGCCCGCTCGGCCACCGTGCACGGCGCCACCATCGCCGACGTCGCCCGGATGCAGATCACCGACGCCGCCGACTGGGTGCGCGGCGTCGACGAGCCCGGGGTCGCACCTCTGGTCGCCCACCTGGTGGCCCTGCTCGACTCCGTCGTCCAGATCGGGCTCGGCTACCTCTCGCTCGACCGGCCCGCCGGCACCCTGTCCGGGGGAGAGGCGCAGCGCGTCAAGATGATCCGCCACCTCGGCTCGGCCCTGACGGACGTCACCTACGTCTTCGACGAGCCCACCATCGGCCTGCACCCGCACGACATCGCCCGCATGAACGAGCTGCTGGTCGACCTGCGCGACAAGGGCAACACCGTGCTCGTCGTCGAGCACAAGCCCGAGGCCATCGCCGTGGCCGACCACGTCGTCGACCTCGGGCCCGGGGCCGGGTCCGACGGCGGCACGCTCTGCTACGAGGGCACCGTGGACGGGCTGCGCGCCAGCGACACCCTCACCGGCCGCCACCTCGACGACCGCGCCCGCCTCAAGGACACCGTGCGCGAGCCCACCGGCGCCCTGGAGATCCGCGGGGCGAGGCAGAACAACCTGCAGGGGATCGACCTGGACATCCCCACCGGGGTGCTGACCGTCGTCACCGGCGTCGCCGGGTCGGGCAAGAGCTCGCTGATCCACGGCAACCTCGCGGGCCGTGACGGCGTCGTCGTCGTCGACCAGGGCGCCATCAAGGGCTCGCGGCGCTCCAACCCCGCCACCTACACCGGCCTGCTCGAACCGGTCCGCAAGGCCTTCGCCAAGGCCAACGGCGTCAAGCCCGCCCTGTTCAGCGCCAACTCCGAGGGCGCCTGCCCCACCTGCAAGGGCAACGGGCGCATCTACACCGAGCTCGGCTTCATGGAGACCGTCGAGACACCCTGCGAGGACTGCGGCGGGCGCCGCTTCATGGCCGAGGTGCTCGACCACACCCTGGGCGGCAAGAACATCGCCGACGTCCTCGACCTGTCCGTCACCGAGGCCCACGCGTTCTTCTCCTCCGGCGAGGCCCGGGTCCCGGCCGTCGCGACGACCCTGACCCACCTGCGCGACGTCGGACTCGGCTACCTGCACCTCGGCCAGCCGCTGAACACCCTGTCCGGGGGAGAGCGCCAGCGGCTCAAGCTCGCCATGCACAAGGGGGACTCCGGCGGCACCTACGTGCTCGACGAACCCACCACCGGACTGCACCTGGCCGACGTCGAGAACCTCCTGGCGCTGCTCGACCAGCTCGTCGACGCCGGCAGGACCGTCGTCGTCATCGAGCACCACCAGGCCGTCATGGCGCACGCCGACTGGATCATCGACCTCGGCCCCGGCGCCGGGCACGACGGCGGCCGCATCGTGTTCGAGGGCACCCCGGCCGAGCTGGTCGCCGACGGGTCCACCCTGACCGGGCAGCATCTGGCCGACTACGTCGGGGCCGACCGGTAGMATRTGTTAAGVHPADAHDVIRVRGARENNLREIDVDIPKRRLTVFTGVSGSGKSSLVFATVAAESRRLIDETYSTFLQGFMPSLPRPDVDDLSGVTTAILVDQERLGANARSTVGTVTDAHAMLRHLFSRLGEPYVGPPTAFSFNVPTSRASGVMTTDRAGGTTEKTVVRDQVYLGGMCPECEGRGTVSDLDLSVIVDESRSLNEGAILVPGYKADGWMVRGFSESGFVDPDKPVRDYSDTERHDFLYRDKGKIKALGMNMTYQGLIPKLRESMFSRDPASLQPHVRRFVERAAVFGPCPACEGTRLNEAARSATVHGATIADVARMQITDAADWVRGVDEPGVAPLVAHLVALLDSVVQIGLGYLSLDRPAGTLSGGEAQRVKMIRHLGSALTDVTYVFDEPTIGLHPHDIARMNELLVDLRDKGNTVLVVEHKPEAIAVADHVVDLGPGAGSDGGTLCYEGTVDGLRASDTLTGRHLDDRARLKDTVREPTGALEIRGARQNNLQGIDLDIPTGVLTVVTGVAGSGKSSLIHGNLAGRDGVVVVDQGAIKGSRRSNPATYTGLLEPVRKAFAKANGVKPALFSANSEGACPTCKGNGRIYTELGFMETVETPCEDCGGRRFMAEVLDHTLGGKNIADVLDLSVTEAHAFFSSGEARVPAVATTLTHLRDVGLGYLHLGQPLNTLSGGERQRLKLAMHKGDSGGTYVLDEPTTGLHLADVENLLALLDQLVDAGRTVVVIEHHQAVMAHADWIIDLGPGAGHDGGRIVFEGTPAELVADGSTLTGQHLADYVGADRPGPT0014915_6944DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701NANA
AK018_03393360hypothetical proteinGTGAGCGCGGTGGTCGACGACGAGCTCTGGTCCGCGGTCGGCGACCCGACCCGGCGCCGGATGCTCGACCTGCTGGTCGCCCAGGGTGCCGGCACCGCGACCAGCCTGGGTGCCCAGCTGCCCGTGACGCGGCAGGCCGTGGCCAAGCATCTGCTCGTGCTGACCCGCGCCGGGTTGGTGCACGCCGCCCGGTCCGGTCGCGAGCGGACCTACCGCGTCGACGCCGAGCAGCTGGGCCGCGCCGTGGCCCAGCTGGCCGCTGTCGGCGACGCCTGGGACGCCCGTCTGCGCCGGATCAGGGCCCTGGCCGAGTCGGTCGAGCGCGAGCGGGCGACCGCGGCGGACGACGACGCGTCGTAGMSAVVDDELWSAVGDPTRRRMLDLLVAQGAGTATSLGAQLPVTRQAVAKHLLVLTRAGLVHAARSGRERTYRVDAEQLGRAVAQLAAVGDAWDARLRRIRALAESVERERATAADDDASPGPT0004390_361DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-LEAD_HOMEOSTASIS,PGPT0004390-cmtR-K21885NANA
AK018_03394462hypothetical proteinATGGAGATGGGAACGATCGAGCGCGACCTGTACATCGACGCCTCGCCCGAGGTGGTCTACGAGGTCGTCAGCGACCCGCAGCACGTGCGTCGCTGGTGGCCCGACGACGCCGACTACCCCGTCGAGGCGGGAGGCTCGGGGCACATCCTCTTCGAGAGCAAGGGCGAGGCTCCCACCCGGGTGCGGCTGACCGTCGTCGAGCACCGTCCGCCGCAGCGGTTCGCCTTCCGCTGGACCCATGCCGACGGCGAGACGGCCGCCGCGTACAACTCGTTCCTGGTGGTCTTCGACGTGGCGCCGGAAGGTTCCGGGACGCGTCTGCGCATGACCGAGTCCGGGTTCCGCGAGCGCGGCTGGTCCGAGGCGGAGGTCGCCGCTGCCCACGCCGACCACGTCGAAGGCTGGGACCACTTCCTGGCCCGGCTGCCGCAGTACGCCGAGCAGGTCGGGGCTCGCGCGTGAMEMGTIERDLYIDASPEVVYEVVSDPQHVRRWWPDDADYPVEAGGSGHILFESKGEAPTRVRLTVVEHRPPQRFAFRWTHADGETAAAYNSFLVVFDVAPEGSGTRLRMTESGFRERGWSEAEVAAAHADHVEGWDHFLARLPQYAEQVGARANANANANANA
AK018_03395396hypothetical proteinATGAATCCACCCCAGGTCCGCGCCGCCGTGCTCGACGACGTGCCCGCCATCGCCCGGACGCACGTGCGCTGCTGGCAGCAGACCTACCGCGGACTGATGCCCGACGACGTGCTCGACGACCCCGGGTTCGTCGACGCCCGCGCACGGCTGTGGACCCACGTGCTGGCGGTCCAGGACGACCGCGGACACCGCACGGCCGTCGCGACCGCCGACGACGAGATCGTCGGCATCGCGATGTCCGGTCCACCCGTGGACGACGACGCCGCCTGGTCGCGGCAGCTGTTCGTGCTCTACGTCGACGCCGCCCACCACAAGCAGGGCTTCACCCCCGACGGTGCCACCACCGTCGAGGACGGCGTCACCGAGCTGCGCATGGTGCGCACCCCGGAGGCGTGAMNPPQVRAAVLDDVPAIARTHVRCWQQTYRGLMPDDVLDDPGFVDARARLWTHVLAVQDDRGHRTAVATADDEIVGIAMSGPPVDDDAAWSRQLFVLYVDAAHHKQGFTPDGATTVEDGVTELRMVRTPEANANANANANA
AK018_03396861hypothetical proteinGTGGCGCACGAGACCCGCTACGCACGACCCGACCAGCCGACGTTGGACGCCCTGGTCGCCGCGGCGCTCGCGGACGTCGGCCCGCCGGCGCGCGACGTCGAGTGGGTCGAGCACGGGTCCAACACCCTGGTGGCGCTGACCGACCGCGCGGCGGTCCGCATCGCACGACAACAGCAGGCCGGCGGAGAGGTGCTCCGGGCGCAACGACTCGTGGACGCCCTGCCCGACCTGCCGTTCGACGTGCCCCGGTCACTCGCCGCGCCCGTCACGATCGACGGATACACCGCCCTCGCGACCCACCGCCTGCACGGCAGCCCCCAGCCGACCACCCGCCCCGACGCCGGCGCCCTGCGCGAGGTGCTCGACGCCGTGCACGAGATCGACGCAGACCCGCTCGAGCCGCACCTCGCGCCGCGTCGGGCGTTCTGCGGGGGAGAGGACTGGGAAGCGACCCTCCGCGACCGCGTCGTCCCCCTGCTCGACGCCGACCTGCAGGGCGACGCCGTCCGACGCATCGACGCGTTCGCCGCCGTCGAGCACGCGCCCCGCACGGTGAACCACGGCGACCTCGGCAGCACCAACGTGCTGTGGCACGGAGACCGGATCGGTGCGGTGCTCGACTGGGACCTCACCGCGCGCGAGGACCCCGCCGAGGACGTCGCGACCGTGGCGATGTCGTTCGGCCTGTGGCCCGCGGCCGCGGCGCTCGCGGACCCGGACACCGTGCGCCGCGCCCGGAGCTTCGCCGGCACCTTCCCGCTGCAGGTCGTCGCCTTCGCCCTGCTCCAGGACCGACCGGACGACGAGCTCGCCCGGACCGTGGCGCGGGCGCAGCGTGCGCTGCGCCGGAGTGGGGCGTGAMAHETRYARPDQPTLDALVAAALADVGPPARDVEWVEHGSNTLVALTDRAAVRIARQQQAGGEVLRAQRLVDALPDLPFDVPRSLAAPVTIDGYTALATHRLHGSPQPTTRPDAGALREVLDAVHEIDADPLEPHLAPRRAFCGGEDWEATLRDRVVPLLDADLQGDAVRRIDAFAAVEHAPRTVNHGDLGSTNVLWHGDRIGAVLDWDLTAREDPAEDVATVAMSFGLWPAAAALADPDTVRRARSFAGTFPLQVVAFALLQDRPDDELARTVARAQRALRRSGANANANANANA
AK018_03397372hypothetical proteinATGGACCTCGGAGCCTTCTCCGTCAGCCTCGCCGTGCAGGACCTGGACGCCTCTCGGCACTTCTACGAGCGGCTCGGATTCACCGTCTTCGGCGGCGACGCCGAGCAGGACTGGCTCATGCTGCGCAACGGTGACCATGTGATCGGGCTGTTCCAGGGCATGTTCGAGCGCAACATCCTGACTTTCAACCCCGGATGGGACCAGCAGGCACGTCCCGTGGACGAGTTCACCGACGTGCGCGAGCTGCAGCGCCAGGTGCGGGAGGCCGGGGCCGAGCTCGAGACCACGGCCGACGAGGCGACGACGGGGCCGGCGAGCTTCGTGCTCATCGACCCCGACGGCAATCCCGTGCTCGTCGACCAGCACGTCTGAMDLGAFSVSLAVQDLDASRHFYERLGFTVFGGDAEQDWLMLRNGDHVIGLFQGMFERNILTFNPGWDQQARPVDEFTDVRELQRQVREAGAELETTADEATTGPASFVLIDPDGNPVLVDQHVPGPT0013300_5819DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BLEOMYCIN_RESISTANCE,PGPT0013300-gloA|ywbC-K01759NANA
AK018_03398294hypothetical proteinGTGGCCGAGGACCTCTACAAGGCGCTGGCCGACCCGACGCGGCGCACGATCCTGGACGAGCTCGCCGAGCAGTCCGGACAGACGCTGTTCGAGATCTGCACGCGGCTGACCATGAAGCACGGGCTGTCGATGTCCCGCCAGGCGGTCTCGCAGCACCTGGCCGTGCTCGAGTCGGCGGGGCTCGTCACCACGCGCCGCGAAGGTCGGTACAAGTTCCACGACCTCGACACCTCACCGCTGCGACAGATCGTCGAGCGGTGGCCCGTGCCCGACGAGCGGAAGGACGCATCATGAMAEDLYKALADPTRRTILDELAEQSGQTLFEICTRLTMKHGLSMSRQAVSQHLAVLESAGLVTTRREGRYKFHDLDTSPLRQIVERWPVPDERKDASPGPT0004735_2763DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
AK018_03399390hypothetical proteinATGAGGATCCACCTGACGAGCATCTTCGTCGACGACCAGGAGGTCGCCCGCCGGTTCTACACCGACGTTCTCGGCTTCGTCGTCCGGCACGACGTCCCGATGGGGGAGAACCGCTGGCTCACCGTGGCGTCGCCACAGGATCCCGACGGCCCCGAGCTGCTCCTGGAGCCGTCCGACCACCCCGCCGTCGGGCCGTTCAAGGCCGCCCTGGTGGCCGACGGGATCCCCGCGGCCCAGTTCGCCGTGGACGACGTGCATGCCGAGCACGAGCGCCTGCGCGACCTCGGTGTGCGCTTCACCCAGGAGCCGCTGTCGATGGGCCCGGTGACGACGGCCGTCCTGGACGACACCTGCGGCAACCTGGTCCAGATCGCGGCGATGGACGTCTGAMRIHLTSIFVDDQEVARRFYTDVLGFVVRHDVPMGENRWLTVASPQDPDGPELLLEPSDHPAVGPFKAALVADGIPAAQFAVDDVHAEHERLRDLGVRFTQEPLSMGPVTTAVLDDTCGNLVQIAAMDVNANANANANA
AK018_03400432hypothetical proteinATGCAGCGGCTCGACGGGTTGACCGGGACCTGGCGGACCACGATGCACGACGCGTGGTTCCTGGAACCCACCGAGCAGCCCGTCGTCGGCACCACGACGATCGAGTGGTGGCACGACGCCTTCGTGCTCTGCCGCTGGACCACCCCGGGTGGCGACGGCGCGACCGGTAGCGCGATGAGCCTGGCCCTCGGGCACCACGACGTGCGCGACGCCTACACGGCGCTCTACCACGACGAGCGCGGCGTCAGGCGCGTCTTCGCCATGGACGTCGACGACGGGCGCTGGACGCTGAACCGCGAGGACGACGACATGTTCCAGCGGTTCGTCGCCGCGGTCGCGCCGGACCGGATCACCGGTCGCTGGCAGGCGTCGGACGACGGCGGCACCACATGGCGCACCGACTTCGTGCTCGACCTCGCACGGGCCGGCTGAMQRLDGLTGTWRTTMHDAWFLEPTEQPVVGTTTIEWWHDAFVLCRWTTPGGDGATGSAMSLALGHHDVRDAYTALYHDERGVRRVFAMDVDDGRWTLNREDDDMFQRFVAAVAPDRITGRWQASDDGGTTWRTDFVLDLARAGNANANANANA
AK018_034011458hypothetical proteinATGTCAGGCAGAAAGTCACTCAGGGCGGCTACCGCGGCCCTCATGGTGGGCGGGCTCCTTCTCGGAGGGGCCTCGGTCGCCGGGGCACACCCCGGCCACGACTTCAGCGGCGACAGCAAGCCGTTCAAGGAGCGCTACTTCGACAACGGCGTCGTGGGCGACGTCAGCCCCGGCGGTGTGCCCATGGAGGCGCTGTCGGGCGCGCGGTGCGAGGACGGCATGGCTGCCGACCTCTTCCCGTGCCACAAGGTCGACCTGGCCTCCTTCACCCCGCTGCAGGACCTGGACTCCACGTTCCTCAACGACCTGTGGGGCTGGGAGGACGAGGTCACCGGCATGCAGCTGGCGATCGTCGGCACGTACGAGGGCACCGCGTTCGTCGACGTCACCGACGGCGAGAACCCCGTCCTGCTCGGCACCCTGGGCGCGGTGGACCCGGGCGACTCGGGCAACACCTGGGGCGACGTCCGCGTCTTCGAGGACACGGCCTACATCGTCACCGAGTCGATCGACCTCAGCACCTATGACCCGGCCACCGGTTACCTCGAGGGCAACGGCGTCCAGATCGTCGACCTGACCCAGTTCCGCGGGGTGACCGAGGAGATCGAGGTGGTCGAGGAGCCGCGGATCACCGACTTCACCCAGAGCCACAACGTCTCGATCAACACCGAGACGGGGCGGATGTACGTCGTCGGCGCGGTGTACTCGGTCAAGAACGAGTGCGCCACGGCGGAAGGAACCGTGTACAGCGGCTCCGGCGGCGCGATCGTCTACGACCTCAACGGCGACCCGGCCGCGCCCAGCCTCATCGGCTGCCTCAACGAGGACGGGTACACCCACGACATCCAGTGCGTGGTCTACGAGGGCCCGGACGAGGACTACCAGGGCCGCGAGATCTGCATCGGGTCCAACGAGGACACCGTCACGCTGTACGACGTCACGGACATCGACAACCCCGTGGTGCTTTCCCGGCTCGACTACGAGGCCGCCGCCTACACCCACCAGGGCTGGCTCAGCGAGGACCACCGGTTCTTCTTCCTCGGTGATGAGCTCGACGAGCTCTACGGCACCACCCCGGAGCGCACCACCTACATCTGGGACTTCAGCGACCTCGACGACGCCGAGCTCATCGGCATCCACGGCGACGGCAACTCGTCGATCGACCACAACATGTTCGTCAAGGACGGGCTGCTGTACCAGTCCAACTACACGTCCGGACTGTGGATCTACGACACCTGGAAGGCCGACCAGGGTCGGGTGACGTCGCGGGGCTACTTCGACATCTTCCCGGCCGACGACCGGACGGCGTTCTTCGGCACCTGGGGCAACTACCCCTACTTCGGTGACGGGAAGGTCGTCGTGACCAGCAGCGACGAGGGCCTCTTCGTCCTGCAGTCGCGGGCCAAGAGCTCCTCGCAGAACAACGGCAAGGGAGCGTCGCCGGCGTCCAAGGTGTGAMSGRKSLRAATAALMVGGLLLGGASVAGAHPGHDFSGDSKPFKERYFDNGVVGDVSPGGVPMEALSGARCEDGMAADLFPCHKVDLASFTPLQDLDSTFLNDLWGWEDEVTGMQLAIVGTYEGTAFVDVTDGENPVLLGTLGAVDPGDSGNTWGDVRVFEDTAYIVTESIDLSTYDPATGYLEGNGVQIVDLTQFRGVTEEIEVVEEPRITDFTQSHNVSINTETGRMYVVGAVYSVKNECATAEGTVYSGSGGAIVYDLNGDPAAPSLIGCLNEDGYTHDIQCVVYEGPDEDYQGREICIGSNEDTVTLYDVTDIDNPVVLSRLDYEAAAYTHQGWLSEDHRFFFLGDELDELYGTTPERTTYIWDFSDLDDAELIGIHGDGNSSIDHNMFVKDGLLYQSNYTSGLWIYDTWKADQGRVTSRGYFDIFPADDRTAFFGTWGNYPYFGDGKVVVTSSDEGLFVLQSRAKSSSQNNGKGASPASKVNANANANANA
AK018_03402606hypothetical proteinATGCCGCACCAGGACCCCGGCTCGACGACGATCAAGGCCCTGACCCCGGACACCTGGCCGCTGTTCGCCGCGCTCGTCAAACGCCACCACGGCATCTTCGGCGGGTGCTGGTGCACCAACTTCCATCCCGACCGGGACGACCGTGGCCCGGGCTACGACGGCAACCGGGCGTTCAAGAAGCGCCTCGTCGACGAGGGTGTCGCCCACGCGGCGCTCGTGGTCCGTGAGGGCGACGACGGCGACGAAGCGGTCGCCTGGGCCGAGTACGGGACACCGGCGGAGCTGCCCCGCCTCCACCACCTCAAGCAGTACCTCGCCGAGCAGGACCTCGAGCCGGACTACCGGATCACCTGCCTCTTCGTCGACAAGCGGTTCCGCCAGCACGGCCTGGTGACCGTGGCGCTGCAGGGCGCCCTCGACCTGATCGCACGGGACGGCGGAGGGATCGTCGAGGGCTACCCGCACATCCCCGGCGAGCGCCGCCTCTCCTCGTCGTTCCTGTACAACGGGACCAAGGCCGTCTACGAGCGCGCCGGCTTCGACTTCATCCGGCCCAAGGGCATGAAGAACACGGTGATGCGCCGCAGCGTGGCGCCGTCGCGCTAGMPHQDPGSTTIKALTPDTWPLFAALVKRHHGIFGGCWCTNFHPDRDDRGPGYDGNRAFKKRLVDEGVAHAALVVREGDDGDEAVAWAEYGTPAELPRLHHLKQYLAEQDLEPDYRITCLFVDKRFRQHGLVTVALQGALDLIARDGGGIVEGYPHIPGERRLSSSFLYNGTKAVYERAGFDFIRPKGMKNTVMRRSVAPSRNANANANANA
AK018_03403315gdx_1COG2076Guanidinium exporterATGTCCTGGGTTCTTCTCGTGCTCTCCGGCGTGCTGGAAGCCGTGTGGGCGACCGCGCTGGACCGGTCGGACGGATTCAGCCGACTCGTGCCGTCGATCGTCTTCGGCGTGGCGCTGGCGGCCAGCATGGCCGGCCTGGCGTACGCGCTCCGCGAGCTGCCGGTCGGCACGGCCTACGCCGTCTGGGTCGGTATCGGCGCGGCGCTGACGGCCGGCTACGCCATGGCGACGGGCGCCGAACCGGTCACCGTGGTGCGCATCGCGCTGATCCTGGGGATCGTGGCCTGCGTCGCCGGGCTGAAGATCACCACCTGAMSWVLLVLSGVLEAVWATALDRSDGFSRLVPSIVFGVALAASMAGLAYALRELPVGTAYAVWVGIGAALTAGYAMATGAEPVTVVRIALILGIVACVAGLKITTPGPT0028785_2274DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUATERNARY_AMMONIUM_COMPOUND_RESISTANCE_,PGPT0028785-sugE-K11741NANA
AK018_03405318hypothetical proteinGTGCTCGACCTCGCCGTGGACGAGGTCGAGCTCGCCCACGTGGCCGACGAGATCGTCGGTATCGACCGGGTCGCCGTGTTCCTGAACCGACCGCTGTCCACCGAGCGGACGGGCTGGGTCGTCAGCCTGGACTGGAGCCTGCTGGGGGAGGTGGCCGGGGACGGAACGGTGACGTGGCCGGTGCTGACCGCGGCGCGCGCGGCGGAGGAGGAGCGCCGCGACGGCGAGGCGCTACCGCCGCAGCGGCAGGGCAGGACGCCGGGCAGCCTTCCGGTCGACGTGGCCACGCTGGCCGAGCTCCGGGCCGAGGCCGAGTGAMLDLAVDEVELAHVADEIVGIDRVAVFLNRPLSTERTGWVVSLDWSLLGEVAGDGTVTWPVLTAARAAEEERRDGEALPPQRQGRTPGSLPVDVATLAELRAEAENANANANANA
AK018_034061107xerD_3Tyrosine recombinase XerDGTGGTCGCACCGCCCCGCCCCGAACGGGTCACCGTCGTCGACGCCGCCGAGCGCTACCTCGCCACCGTCCGCGTGGAGACCGTGCGCGGCGTGCTCTCCGCCGCCACCGAACGCTCCTACCGTCGCGACGTGCGCGAGCTCGTCGACCTGCTCGGGCCGGACCGGGTGCTCGACGACGTCACCGGCGACGACGTCGACGCCGCGCTCGTGCGCTACCAGGCCGGACCCGACGGCCGCTTCACCGACCCCGCCCGCAAGACCGGCCCCGGCCGCTCCACGGCCACCGTGAACCGGTTCCGCCAGTCGGTGACCCGCTTCTTCTCCCACGCCGCCCGCCACGCCTGGGTCCAGGCCGACCCGATGCAGTGGGCCGCTCCCCCGGCCAAGGTCCGCGAACGCGTCCGGGTCCAGCGCACCGCCCTGTCGGCCTCGGCCGCCGAGGCCCTGCTCGGCACCGTCCAGCAGGAGGCCACCGACCCCACGCAAAGCACCCGCCACGACCAGGCGCTCGCGGCCCGCGACCGCCTCGTGGTCGCGCTGCTGATGGTCCTCGGCCCCCGTGTCTCGGAGCTCGTGCGCGCCGACGTCGCCGACTTCCGCCGCGAGCCGGACCAGACGTCCTGGCGGATCCTCGGCAAGGGCGGCGGCACGCGGACCGTCGCCCTGACGGCACCCCTGGCCGGGGCGCTGGAGACCTACCTGTCCACGCTGCGGCCACGGCTGGCCGAGCGCCGTCCCGACGACGCGGACGCCCAGGACGCGCTGCTGCTGTCCTGGCGGGGCCGCCGCCTGGACACCCAGGCGGTGCGGTCCCTGCTCGCCCGGGCGGTGGCCCGCATGCCCGAGCCCTACCGTCGCCCCACGACGCCGCACGCCCTGCGGCACACCACCGCCACGCTGCTCGTCGCCGACGGCTGGGACGTCAAGGTCGTGGCCGAGCTGCTCGGCCACTCCTCCATCGCGACCACCGACGTCTACCTCGACCGCATCGACGGCGAGCTGGCCGCCGCGCTGCGCACCCACCCCCTGGCACGCTCCCTGGAAGGCGCCCCACGAGGCGACCTGTCCGATTCGCCGGGCAGATCCTCCGAGTCGTCGCTACGGTGAMVAPPRPERVTVVDAAERYLATVRVETVRGVLSAATERSYRRDVRELVDLLGPDRVLDDVTGDDVDAALVRYQAGPDGRFTDPARKTGPGRSTATVNRFRQSVTRFFSHAARHAWVQADPMQWAAPPAKVRERVRVQRTALSASAAEALLGTVQQEATDPTQSTRHDQALAARDRLVVALLMVLGPRVSELVRADVADFRREPDQTSWRILGKGGGTRTVALTAPLAGALETYLSTLRPRLAERRPDDADAQDALLLSWRGRRLDTQAVRSLLARAVARMPEPYRRPTTPHALRHTTATLLVADGWDVKVVAELLGHSSIATTDVYLDRIDGELAAALRTHPLARSLEGAPRGDLSDSPGRSSESSLRNANANANANA
AK018_034071281clsA_3COG1502Major cardiolipin synthase ClsAGTGCCCGATGGATCCTTCCGCTCCGCCCTTCCCGTCGACATCCAGGTGGACTGGCGCCGAGTCCTGCGACTCGCCGGCCGTGCCGCGGCCGTGGCCGCCGCGATCCCCGTGACCGCCGGCGCGGCCGTGATGGCGATCGACAAGGTGCGCGGCCAGCGCCACCCGCTGGACGCCCACTTCCCCACCGCCAGACCGTCCACCACGGACGTCGAGGGGTCGGACGCCACGCTCTACACCTTCGGCGCCGACCTGTACGAGGACATGATCGAGGCGATCGAGTCCGCCGAGGACACGGTCATGCTCGAGTCCTACATCTGGAAGGGCGACCGCACGGGCGAACGGTTCAAGCAGGCCATCGCCGACGCCTGCGCCCGCGGGGTCCAGGTCTACGTCGTCTACGACGGGTTCGCGAACCTCGTCGTGCCGCCGTCGTTCTTCGTCTTCCCGCCCCAGGTGCACGTCCTGCGCTTCCCCGCGTTCCGTGCCGGGCTGATGACGCTCAACATCCGCCACTCGGGTCGTGACCACCGCAAGATCCTCGTCGTCGACGACCGGGTCGCCTTCGTGGGCGGGTACAACATCGGCGACCTGTACGCCACGCAGTGGCGCGACACCCACCTGCGCATCGAGGGCCCCGCGGTGTGGGAGCTGCGCAACGCCTTCGTCGACTTCTGGAACCGGTGGCGCGGCCCGCGGCACCCGGTCCTGCAGGACAAGGGCGCCGAGCACTGGCAGCCCGCGCTGCGCGCGGCGCGCAACGCCCCCAGCGACCTGGTGTTCCCCATCCGCGGCATCTACCTCGACGCGATCGACCGCGCGACCAGCCACATCTACATCACCCAGGCCTACTTCATCCCGGACCGCGACATCCTGCAGGCCCTGCTGGCCGCGGCCGCCCGCGGCGTCGACGTGCGCGTCCTGGTGCCCGAGCGGTCCAACCACGCGCTCGCGGACTGGCTCGCCCGGGGCCGCTACACCAAGCTGCTGCGCGGCGGGGTGCGGATCATGCTGTACCAGGGTGCGATGGTGCACGCCAAGACCGCGACGATCGACGGCCGGTGGGCGACGGTCGGCACGGCGAACATCGACCGGCTGAGCCTGACCGGCAACTACGAGATCAACCTCGACATCGTCGACCAGGGGCTCGCCGCCCGGCTCGAGGACGTGTTCCGCATGGACGAGTCGAACTCGCGGGAGCTGACCTACGAGGAGTGGCTGGGCCGCTCGTTCGTCAACAAGGTCGCCGAGCGCGTGCTGGAACCGCTCGAGCCGCTGCTCTGAMPDGSFRSALPVDIQVDWRRVLRLAGRAAAVAAAIPVTAGAAVMAIDKVRGQRHPLDAHFPTARPSTTDVEGSDATLYTFGADLYEDMIEAIESAEDTVMLESYIWKGDRTGERFKQAIADACARGVQVYVVYDGFANLVVPPSFFVFPPQVHVLRFPAFRAGLMTLNIRHSGRDHRKILVVDDRVAFVGGYNIGDLYATQWRDTHLRIEGPAVWELRNAFVDFWNRWRGPRHPVLQDKGAEHWQPALRAARNAPSDLVFPIRGIYLDAIDRATSHIYITQAYFIPDRDILQALLAAAARGVDVRVLVPERSNHALADWLARGRYTKLLRGGVRIMLYQGAMVHAKTATIDGRWATVGTANIDRLSLTGNYEINLDIVDQGLAARLEDVFRMDESNSRELTYEEWLGRSFVNKVAERVLEPLEPLLPGPT0007725_3944DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-CARDIOLIPIN_SYNTHESIS,PGPT0007725-clsA_B|ybhO|ywiE-K06131NANA
AK018_03408588COG0789putative HTH-type transcriptional regulatorGTGGACAGCAGTGGCGAGGCCAGCGCCTCGGTCGACCCCACCCCGGCAGGCGCCCAGGGCCTCCTGTTCGGCGAGGACCTCACGGAGCAGGACGCCGGGACCGGCTACCGCGGGACCACGGCCTGCCGCGTCGTGGGCATCACCTACCGCCAGCTCGACTACTGGGCCCGCACCGGGCTGGTCGAGCCGTCCATCCGTGCCGCCACCGGGTCGGGGACCCACCGGCTGTACAGCTTCCGCGACGTGCTCGTGCTCAAGATCGTCAAGCGGCTGCTGGACACCGGCGTCTCGCTGCAGCAGATCCGCACCGCGGTGACCCACCTGCGCGAACGCGGCGTCGAGGACCTGGCGCAGATCACCCTGATGAGCGACGGCGCGTCGGTGTACGAGTGCACCTCTCCCGACGAGGTCGTCGACCTCGTCCAGGGAGGCCAGGGCGTCTTCGGCATCGCCGTCGGACGGGTGTGGCGCGAGATCGAGGGCACCCTGTCCCAGATGCCGACCGAGTCCCTCGAGCAGGACGACCCGGAGGCCGTGCGGGCCGGCGACGAGCTCGCCGCCCGGCGTCGCGCGCGCACCGCCGGCTGAMDSSGEASASVDPTPAGAQGLLFGEDLTEQDAGTGYRGTTACRVVGITYRQLDYWARTGLVEPSIRAATGSGTHRLYSFRDVLVLKIVKRLLDTGVSLQQIRTAVTHLRERGVEDLAQITLMSDGASVYECTSPDEVVDLVQGGQGVFGIAVGRVWREIEGTLSQMPTESLEQDDPEAVRAGDELAARRRARTAGNANANANANA
AK018_03409540COG1259putative proteinGTGGAGAAGGTGGACAGAGACGAGGGCGCGCAGGCGCCCATGGTGCCCGTCGAGGTGCTCGGGGTGCGCCAGCAGCAGAACGACCAGGAGATCGTCGTGCTGCTCCTGGACACCTCCGCCGAGCTCGCCGTCCCCATCGTCATCGGTGCCCGCGAGGCCTCGGCCATCGCCATGGCGCAGGCGGGCGTGGCCACCCCGCGACCCATGACCCACGACCTGCTGCGCGACCTGCTCACCGCCGTCGGGGTCGAGCTCGACCAGGTCGAGATCGTCGCCCTGGACGGCGGCATCTTCTTCGCCGAGCTCGTGCTGTCCAACGGCACCCGGCTCGACTCGCGCGCGTCGGACGCGATCGCCCTGGCGGTGCGCACCGGCAGCCCGGTGCTGTGCTCGGCCGAGGTCGTGGCCGCCGCCGGCGTGGAGGTCGTCGACCTCGCCCAGCAGCGCGAGGTCGAGAAGTTCCGCGACTTCCTCGACCACGTCAACCCCGAGGACTTCACGGCGTCGGAGGGGGAGGACAGCCCCGACACGCCACCTTGAMEKVDRDEGAQAPMVPVEVLGVRQQQNDQEIVVLLLDTSAELAVPIVIGAREASAIAMAQAGVATPRPMTHDLLRDLLTAVGVELDQVEIVALDGGIFFAELVLSNGTRLDSRASDAIALAVRTGSPVLCSAEVVAAAGVEVVDLAQQREVEKFRDFLDHVNPEDFTASEGEDSPDTPPPGPT0013260_2DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013260-rnfA|rsxA-K03617NANA
AK018_03410744COG0789putative HTH-type transcriptional regulatorGTGACAGCCGGTTCCGGGGCGGCCTCGGCTCCGGAGCCCGACGCGCCCGAACCGTGGCCGCGGGGCATCTCGCGGCACGCGGGCATGCGCATCTCCGACGTGCTGAACCACCTGCGCGGGGACTTCCCGCACGTGTCGCACTCCAAGCTGCGCTTCCTGGAGGACCAGGGGCTCATCACGCCGGTGCGCACCCCGGCCGGGTACCGGCAGTACAGCCCCGCCGACGTCGAGCGGCTGCGGTTCGTGCTGGCCGAGCAGCGCGACTCCTACCTGCCGCTGAAGGTCATCAAGGAGCGCCTCGCCGCCATGGACGCCGGGGAGCCCGCGCCCGCACCCTCGCCGCGCCTGGCCGCCTCCGCCGGGGCGCCGGGGGAGTCGCGGCGGCGCTGGACCGTGGAGTCGGTCGCCGAGACGACCGGCACCAGCGTCGAGCTGGTGCGGTCCCTGGTCACGTCCGGCGTGCTGCACACCACCCCGGACGAGGCCCTGGACGGTTCGGCCGCCGAGGTGGTCCGGATCGTGCAGCGCCTGACCGAGCACGGCATCGAGCCGCGCCACCTGCGCCCGCTGCGTTCCTCGGCCGACCGCCACGTCGCGCTCGTCGACCAGGCCGTGGCCCCGTACCGCAGCCAGCAGCGCGGCAACGGTGCCGAGGCCGCCGCCGACCTGGCCGCCGAGCTCGGCGAGCTGCTGGCCCGCCTGCACACCACCTGGGTCCGTCAGGGCACCCGGGGCACGGACTGAMTAGSGAASAPEPDAPEPWPRGISRHAGMRISDVLNHLRGDFPHVSHSKLRFLEDQGLITPVRTPAGYRQYSPADVERLRFVLAEQRDSYLPLKVIKERLAAMDAGEPAPAPSPRLAASAGAPGESRRRWTVESVAETTGTSVELVRSLVTSGVLHTTPDEALDGSAAEVVRIVQRLTEHGIEPRHLRPLRSSADRHVALVDQAVAPYRSQQRGNGAEAAADLAAELGELLARLHTTWVRQGTRGTDNANANANANA
AK018_03411477hypothetical proteinATGACGGACCCGCGCTCCAAGCCGCCGCACGAGGCCGGCGTGGACACCACCGCGCACCTCGGCCGGATCGGTGGCTCGACGGAGGAGCAGACCCCGCGCGTCCCGCTGACCGCCGAGGAGTCGGCCGCCGTGTCCGCGCTGCCCCGGCACTCCGCGCTGCTGGTCGTGCAGTACGGTTCCGGCGCCGTGGGCGAACGGTTCCTGCTCGACACCGACCGCACCGTGGCGGGTCGCAGCGAGCACGCCGACATCTTCCTCGACGACGTCACCGTCTCCCGCAAGCACGCCGAGTTCGTCCGTGAGGGCGACCGCTTCGTCGTGCGCGACATCGGTTCGCTGAACGGCACCTATCTCAACCGGGACCGGATCGACGCGGCCGTGCTCACCACCGGTGACGAGGTCCAGATCGGCAAGTTCCGCATGTCGTTCCACGCCAGCCCGCAGGCGCCCCGGGACATCCAGGCGCCGGGGTCGTGAMTDPRSKPPHEAGVDTTAHLGRIGGSTEEQTPRVPLTAEESAAVSALPRHSALLVVQYGSGAVGERFLLDTDRTVAGRSEHADIFLDDVTVSRKHAEFVREGDRFVVRDIGSLNGTYLNRDRIDAAVLTTGDEVQIGKFRMSFHASPQAPRDIQAPGSPGPT0026005_186DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0026005-roeA-K21022NANA
AK018_034121047hypothetical proteinATGAACGACAAGAACGAGCGCGAGGAGCCGGTGCAGCCGCGCGAGGACACCCCGGAGGCGCCCGAGGCCGGGGAGGGGCTGCAGCCGGCCGTGGACCCGCTGGACCGTTCGGTCCCCGTGGAGCGCCTGGCGGACCCCGCACGGGCGCAGGCCGCGGACGCCCCCGAGGTGCCCGCGGAGGGCACCGACGGGGCCGAGAGCCGGCCTGGGACCTCCGAGCCCGACCACACGCCGCCCGAGCACACCTCGCCGGAGGACTCCGAGGACACCGCCGCGAGCGCCGCTGCCGCGGACGGGCCCGCCCCCGCCGAGCAGGCAGCGACCCCGGCCACCGGGTGGCGCGCGCTCGGCGAGGCCATGCACCCGCGCGGCAACCGGTCCCAGCTGCTGGCGGCCGTGCTGTGCGCGGCCCTGGGCTTCGCGCTGGTGGTCCAGGTCCAGCAGTCGTCCCAGGACCCGTTGTCCTCGGCCCGCCAGGACGACCTGGTGCGTCTGCTGGACGAGGTGACGCAGCGCGCCGAGCAGCTCGGCGACGAGGTGGCCGACCTGACCCGGACGCGCGACGAGCTGGCCTCAGGCACCGGGCAGGCCCAGGCCGCCCTGGAGCTGGCCGAGGACCGCGCGACGTCGGAGGGCATCCTGTCGGGCCGGCTGCCCGCCGTCGGGCCGGGGCTGGAGATCCGCATCAGCGACCCGCAGCGCGTCCTGGCGGCGTCGAAGCTGTTCAACATGCTCGAGGAGCTGCGCAACGCCGGCGCGGAGGTCGTGGCCGTCAACGACGTGCGGCTGGTGACCTCCACGTGGTTCATGGACGGCGAGGGCGGCGTCATCGTCGACGGCCGGCTGATCGAGCCGCCCTACCGGTGGCAGGTCATCGGCGACCCGGCGACGTTGACGCCCGCGCTGGAGATCCCCGGCGGTGCGCTGGCCGCCGTGCGCAACGACGGGGCGGAGGCCACCACCGTCGAGCGCGACGAGGTCGAGATCTCCGCCGTGCGGGTACCCAGCGAACCGCAGTACGCGACGCCGCAGCGTCCCGAGGAGTAGMNDKNEREEPVQPREDTPEAPEAGEGLQPAVDPLDRSVPVERLADPARAQAADAPEVPAEGTDGAESRPGTSEPDHTPPEHTSPEDSEDTAASAAAADGPAPAEQAATPATGWRALGEAMHPRGNRSQLLAAVLCAALGFALVVQVQQSSQDPLSSARQDDLVRLLDEVTQRAEQLGDEVADLTRTRDELASGTGQAQAALELAEDRATSEGILSGRLPAVGPGLEIRISDPQRVLAASKLFNMLEELRNAGAEVVAVNDVRLVTSTWFMDGEGGVIVDGRLIEPPYRWQVIGDPATLTPALEIPGGALAAVRNDGAEATTVERDEVEISAVRVPSEPQYATPQRPEENANANANANA
AK018_03413333hypothetical proteinATGATCGCCGTCGTCGGGCTCGTGATCGGCGTGGTGGCCGGTCTGCTGCTGGAGCCGACCGTGCCGGTGGCTCTGCAGCCGTACCTGCCCATCGCGGTGGTGGCGGCGCTGGACGCGTTGTTCGGCGGTCTGCGCGCCAAGCTGGACGGGCTGTTCGACGACAAGGTCTTCGTGGTCTCGTTCCTGTCGAACGTGCTGGTGGCGGCGTTCATCGTGTTCCTGGGCGACCAGCTCGGGGTCGGGTCGCAGCTGTCGACCGCGGTGGTGGTCGTGCTGGGCATCCGGATCTTCTCGAACGCGGCCGCGATCCGACGGCACCTGTTCAAGGCGTGAMIAVVGLVIGVVAGLLLEPTVPVALQPYLPIAVVAALDALFGGLRAKLDGLFDDKVFVVSFLSNVLVAAFIVFLGDQLGVGSQLSTAVVVVLGIRIFSNAAAIRRHLFKANANANANANA
AK018_03414855hypothetical proteinATGAGTGTTCCGACGCAGCGGCGCCCCGACGAGTCGATGACGCTCCTGGTCGAGGTGATGGCGCGCCCGCTGGACCCCGGGTACGCGCAGGCGGCCGAGCGCCGGGCGGCCGGCGAGCGCCCGAGCCGTGCGACCTGGCTCCTGCTCGGTCTGGTGGCGGTGCTGCTGGGGCTGATGACGGTCGCCGCCGCGCAGCAGCTGCGAGCGCCGGTGGAGGGTGTCTCCGCCCGCGAGGTGCTCGAGGAGGAGATCACCGAGCGCCAGGCGATCGCCGACGACCTGCGGGAGCGGTCGGCGTCGTTGTCCGCGGAGATCGCGACGCTGAACGAGGAGGCGCTGGCGGCGCAGGACGCCGAGCTGCTGGACCGGGTGCGGCTGGACGGGGTGACGACCGGGTCGGTGCCCGTCTCCGGGCCCGGGCTGGTGGTGACGCTCAGCGACGGCGCCGCGGGCACGATGCCGGACGGCACGGCGTCGTCGGCGCCGGTGCAGGCCGTGGACCTGCAGCGGGTGGTCAACGCGCTGTGGGCCTCGGGTGCCGAGGCCATCAGCGTGGGAGGCGAGCGCCTGACGTCGGTGTCGGCGATCCGGCACGCGGGTCAGGCGATCATGGTCGACCTGGTGCCGCTGCCGGGACCGAGCTACGAGGTGCGGGCGATCGGTGACCCCGAGGCGATGCAGACCGCGTACGCTCGGACCGACGCGCCGGCCTACACCCAGCTGCTGTCGTCCCAGTACGGCATCGCGTCGTCGGTCTCGACGGCGGACTCGTTGGACCTGCCCGGCGTGGGCAGCCAGTTGTTGCGGTACGCGGAGCCGGTGGGTCCGGACGCAGACCAGGAGGGGAACTCATGAMSVPTQRRPDESMTLLVEVMARPLDPGYAQAAERRAAGERPSRATWLLLGLVAVLLGLMTVAAAQQLRAPVEGVSAREVLEEEITERQAIADDLRERSASLSAEIATLNEEALAAQDAELLDRVRLDGVTTGSVPVSGPGLVVTLSDGAAGTMPDGTASSAPVQAVDLQRVVNALWASGAEAISVGGERLTSVSAIRHAGQAIMVDLVPLPGPSYEVRAIGDPEAMQTAYARTDAPAYTQLLSSQYGIASSVSTADSLDLPGVGSQLLRYAEPVGPDADQEGNSNANANANANA
AK018_03415705pgsA2_3COG0558Putative cardiolipin synthaseGTGGGCAGTGCCCGGTCCGGTGAGTTTGCCCACTACGTCATGCGGTGGCCGCCGGTGCGTAGGATGTGCGGGGTAGCAGCCCGGTGGACGCAGGCGGTGAACGTGCAGGCAGGTCGGCAGGCCGACTCGGCGGTGTGGACGGTGCCGAACGTCGTCAGCATGCTCCGGTTGGCGCTGGTCCCGGTGTTCGCGGTCCTCATCGTCACGGGCGAGGACCTGTGGGCGCTGGTGGTGCTGGCCGTGTCCGGAGCGACGGACTGGCTCGACGGCGTGCTGGCGCGCCGGCTGAACCAGGTGACGAAGCTGGGCCAGATGCTCGACCCGGCCGCGGACCGGCTGTTCATCCTGGTGACCCTGGTCGGCCTGGCGTGGCGCGAGGTCATCCCGTGGTGGGTGCTGGCCGTCATCGTGTCGCGGGACGTCATGCTGGCCTTCCTGGTGCGGCCGCTGGCACGCCGGGGGTACGGTCCGGTGCCGGTGACCTTCGTCGGCAAGGCCGGCACGTTCGCCCTGCTGTACGCGTTCCCGCTGCTGCTGCTGGCTTCGATGCCCGGTGGCGTCGGTGCGGTGGCGCACGTGGTCGGCTGGGCCTTCGCCTGGTGGGGCATCGGCCTGTACTGGTGGGCAGGTCTGCAGTACGTGCGTCATGTGCGCCGGCTGGTGGACGACGACCGAGACGACGCGCGGACGGAGGGTGCGGCATGAMGSARSGEFAHYVMRWPPVRRMCGVAARWTQAVNVQAGRQADSAVWTVPNVVSMLRLALVPVFAVLIVTGEDLWALVVLAVSGATDWLDGVLARRLNQVTKLGQMLDPAADRLFILVTLVGLAWREVIPWWVLAVIVSRDVMLAFLVRPLARRGYGPVPVTFVGKAGTFALLYAFPLLLLASMPGGVGAVAHVVGWAFAWWGIGLYWWAGLQYVRHVRRLVDDDRDDARTEGAAPGPT0007735_1689DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CARDIOLIPIN_SYNTHASE_ACTIVITY,PGPT0007735-pgsA-K08744NANA
AK018_034161812deaD_3COG0513ATP-dependent RNA helicase DeaDATGAGCACCCCTGACTCCACGCTGCCCACCGACGCCCAGCCCACCTTCCGCGACCTCGGCCTGCCTGTGCCGCTGCAGAGCGCCGTCGACGACCTGGGCTTCACCACGCCCTCGCCCATCCAGGCCGAGGCCGTCCCCGCGCTCCTCGCCGGCCGCGACATCACCGGTGTCGCCCAGACGGGCACCGGCAAGACCGCCGCCTTCGGCCTGCCCCTGCTGGCCGCCCTCGACCCCGGCGCCGACGTCTCCCGCGGCCACGTGCAGGCGCTCGTACTCGCCCCCACCCGTGAGCTCGCCATGCAGGTCGCCGAGGCCGTCGAGTCCTTCGCCACCCACCTGCCCGGCGTGCAGGTCCTGCCCGTCTACGGCGGGGCCCCCTACCAGCCGCAGCAGCGCGCCCTGCGCGACGGCGTCCACGTCGTCGTCGGCACCCCCGGCCGCGTGATGGACCACCTCGACCGCGGCGCGCTCCACCTCGACACCGTGAAGTTCCTCGTGCTGGACGAGGCCGACGAGATGCTGCGCATGGGCTTCGCCGAGGACGTCGAGACCATCTTCGGCCAGGCCCCCGCCGAGCGGCAGGTGGCCCTGTTCTCCGCCACCATGCCGCCTGCCATCCGCCAGGTCGCCGACACCCACCTCACCGACCCCGTGCAGATCGCCGTCAGCCGGCAGTCCAGCACCGTCACCACCGTCGAGCAGACCTACGCCGTGGTGCCGTTCCGCCACAAGGTCGGCTCCCTGGTCCGCGTCCTGGCCACCTCCGACGCCGACGCCACGATCGTCTTCACCCGCACCCGTGCGGCTGCCGAGGAGGTCGGCGTCGCCCTCGTCGAGCGCGGCGTCTCCGCCGCCACCATCTCCGGGGACGTCGCCCAGAAGGAGCGCGAGAAGATCGTCGAGCGCCTGCGCAGCGGCGCCCTCGACGTCCTGGTCGCCACCGACGTCGCCGCCCGCGGTCTCGACGTCGACCGCATCGGCCTCGTCGTCAACTTCGACCTGCCCCGCGAGGCCGAGGCGTACGTCCACCGGATCGGCCGTACCGGCCGCGCCGGCCGCACCGGCAAGGCCCTGTCCTTCGTGACCCCCCACGAGCGCGGCAAGCTCAAGCACATCGAGCGCACCATCCGCACCCGCCTCGTCGAGGCCGAGATCCCCTCCCCCCGGGACGTCTCCGCCCACCGGGCGCGCACCATCCTCTCGACGGTGCCCACCCGCCTCGAGGCCGGCCGGCTCGACCTGTACACCCAGCTCCTCGCCGAGCACCTGACCCCCGGCGAGGACGGCACCACGCCCGACCCCGCCCAGGTGGCGGCCGCCCTGCTGGCGCTCGCGGTCGGCGACGACGGTCCGCAGCACCTCGCCGCCCAGGCCGAGCACGAGAAGGAGCGTGCCGAGGTCAAGGGCGGACGCACCCGCGAGACGAATCGCGCCGAGCGCTCGGACCGCGACGGGGACCGTACCCGGCGCCACCCCCGCGCCGACCGCGACGGGGACCGCCCCCGCGGCATCCGTCGGCCCGCCGAGGGCACGCGCTACCGGGTCGCCGTCGGCCACGCCCACGGCGCCCAGCCCCGCGGCATCGTCGGCGCGCTGACGAACGAGGGTGGCCTGCGCGGTGCCGACATCGGCAAGATCGACATCTTCGGCAGCTTCTCGCTGGTGGACATCACCAAGCCGCTCGACGACGCGGCCATGAACAAGATCGGCCGGGCCAACGTGGCCGGCCGCCAGCTGCGCATCGCCCCGGACAAGGGGGCGCCGGCGGCTCGCGCCCCGCGCAGCGAGCGTCGCCCCGCGCACACGGCCTGAMSTPDSTLPTDAQPTFRDLGLPVPLQSAVDDLGFTTPSPIQAEAVPALLAGRDITGVAQTGTGKTAAFGLPLLAALDPGADVSRGHVQALVLAPTRELAMQVAEAVESFATHLPGVQVLPVYGGAPYQPQQRALRDGVHVVVGTPGRVMDHLDRGALHLDTVKFLVLDEADEMLRMGFAEDVETIFGQAPAERQVALFSATMPPAIRQVADTHLTDPVQIAVSRQSSTVTTVEQTYAVVPFRHKVGSLVRVLATSDADATIVFTRTRAAAEEVGVALVERGVSAATISGDVAQKEREKIVERLRSGALDVLVATDVAARGLDVDRIGLVVNFDLPREAEAYVHRIGRTGRAGRTGKALSFVTPHERGKLKHIERTIRTRLVEAEIPSPRDVSAHRARTILSTVPTRLEAGRLDLYTQLLAEHLTPGEDGTTPDPAQVAAALLALAVGDDGPQHLAAQAEHEKERAEVKGGRTRETNRAERSDRDGDRTRRHPRADRDGDRPRGIRRPAEGTRYRVAVGHAHGAQPRGIVGALTNEGGLRGADIGKIDIFGSFSLVDITKPLDDAAMNKIGRANVAGRQLRIAPDKGAPAARAPRSERRPAHTANANANANANA
AK018_03417459hypothetical proteinATGTCCGACGACGGTACCGGTCCGGCGTACCGCACGTTCCGTCCGTTCTGGGCGAGGGTGTCGGTGGCGGTCACGGGTGCCGTCGCGGCCGGGGGCAGCCTGCTGGTCGGGCTCTTCGCACCGACGGGTGTCCTCCTGGGGGAGGGCACCCGGCTGACGTTCGTCCTCTTCGCCATGTTCGTCGTCTGGCTGCTCTGGCGGCTGGGCGGCGTGCACGCCCGGCCCGACGACGACGGACTGACCGTCCGCAACGTCGTCCGCACCCGGCGGGTGGCCTGGCCGGAGATCGTCGCCGTGCGGATGACCCCGAACGACCCGTGGGTCGTCCTGGACCTGGCCGACGGCGGCACGCTCGCGGTCATGGGGATCCAGCGCGCCGACGGCGAACGGGGCATGGCCGAGGCGCGGCGCCTGCAGGCCCTCGTGCAGGAACGCGGCGAGGCGCCCGACGTCGACTGAMSDDGTGPAYRTFRPFWARVSVAVTGAVAAGGSLLVGLFAPTGVLLGEGTRLTFVLFAMFVVWLLWRLGGVHARPDDDGLTVRNVVRTRRVAWPEIVAVRMTPNDPWVVLDLADGGTLAVMGIQRADGERGMAEARRLQALVQERGEAPDVDNANANANANA
AK018_03418849hisG_2COG0040ATP phosphoribosyltransferaseTTGCTCCGCATCGCCGTCCCCAACAAGGGTTCGCTGTCCACGCCCGCCACCGAGATGCTGCGCGAGGCCGGCTACCGCCAGCGCCGCGACAACCGTGAGCTGGTGCTCACCGACGTCGACAACGACGTCGAGTTCTTCTTCCTGCGTCCTCGCGACGTGGCCGTGTACGTCGGTGCCGGCACCGTCGACGTCGGGATCACCGGCCGCGACCTGCTGCTGGACTCCGGCGCCGAGGCGGTCGAGCACCTGCCGCTCGGGTTCGCCGGCTCCACCTTCCGCTTCGCCGCGCCGGCGGGCAGCGCGACCCAGGTCGAGGACATCGCCGGCAAGCGCGTCGCGTCGTCGTACACGACGCTCGTCGCGGGCTACCTGGCCCGTCAGGGCATCGAGCCGTCGGCGATCGTCCACCTGGACGGAGCGGTGGAGAGCTCGGTCCGGCTCGGCGTCGCGGACGTCATCGCCGACGTCGTCGAGACGGGCAGCACGCTGCGCGCCGCGGGCATGGAGGTCTTCGGCGAGCCGATCCTGCGCTCCGAGGCCGTGATGATCCGTCGGGCGGACGCCGACGAGCCCGCTGGCCTCGACGTCCTGACCCGCCGTCTGCAGGGCGTGATCACCGCCCGCGAGTACGTGCTGCTGGACTACGACGTGCCCATGGAGCTCGTCGACGCCGCGGTCGCCGTCACGCCGGGCTTCGAGTCGCCCACCGTGTCCCCGCTGCACAACGGCCACTCGGCCGCCGTACGGTCCATGGTGCGTCGCGCCGACACCAACCGCGTGATGGACGCCCTCTACGAGGTCGGCGCCCGCGGGATCCTGGTGACCTCGATCCTGGCCTCGCGCCTCTGAMLRIAVPNKGSLSTPATEMLREAGYRQRRDNRELVLTDVDNDVEFFFLRPRDVAVYVGAGTVDVGITGRDLLLDSGAEAVEHLPLGFAGSTFRFAAPAGSATQVEDIAGKRVASSYTTLVAGYLARQGIEPSAIVHLDGAVESSVRLGVADVIADVVETGSTLRAAGMEVFGEPILRSEAVMIRRADADEPAGLDVLTRRLQGVITAREYVLLDYDVPMELVDAAVAVTPGFESPTVSPLHNGHSAAVRSMVRRADTNRVMDALYEVGARGILVTSILASRLPGPT0017400_2098DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017400-hisG-K00765NANA
AK018_03419264hisE_2COG0140Phosphoribosyl-ATP pyrophosphataseGTGAAGACCTTCGACTCCCTGTTCGCCGAGCTGTCAGCCAAGGCCGAGTCCCGTCCCGCCGGGTCGGGGACCGTCGCGCAGCTGGACGCGGGCGTCCATGCGATCGGCAAGAAGATCGTGGAGGAGGCCGCCGAGGTGTGGATGGCGGCCGAGCACGAGTCCGACGAGGCGGCCGCCGAGGAGATCTCGCAGCTGCTCTACCACCTGCAGGTGCTGATGCTGGCCAAGGGCCTCACGCTGGAGGACGTCTACACCCATCTGTGAMKTFDSLFAELSAKAESRPAGSGTVAQLDAGVHAIGKKIVEEAAEVWMAAEHESDEAAAEEISQLLYHLQVLMLAKGLTLEDVYTHLNANANANANA
AK018_03420483hypothetical proteinATGACGACGTTCTCCCGCGTTCTGTGTGTCCTGGCAGCCGTCGCGGTCGTGCCCGTGGCGGCGTGCGCGCCGCCACCGAGCGGCGAGACGTGCCTCGACTGGGTCCTGTTCGAGACGCCTGCGCAGGCTGCCGACGGGGCGCTCGTGCTGCGTGGGGACGTGCTCGGTCCGGCCGAGCACCACCTGCGGATGTGGGGGACCGAGGCGACCCGCTGGGACCTCGAGGTCGACGAGGTGCTGGCCGGACGGGGCGTGGCCGACGGTGAGCGGATCGAGGTGCTGTCGTCGCCGCTGACGTGCCACGGCGGCAGTGGGGGATACCCACGGGGCGACCCGCTGGACGTCGAGGGCCCGGTGGTGCTGATCCTGCACGACGACGCCGAGCACGGACTGCGCACGATCACCCCGTACGACGGCGTGGTCGCACCGGCGTCGGACGGAGGCCTCCCGGAGCGGTGGCCGGCCGGTCATCCCCGTCCGTGAMTTFSRVLCVLAAVAVVPVAACAPPPSGETCLDWVLFETPAQAADGALVLRGDVLGPAEHHLRMWGTEATRWDLEVDEVLAGRGVADGERIEVLSSPLTCHGGSGGYPRGDPLDVEGPVVLILHDDAEHGLRTITPYDGVVAPASDGGLPERWPAGHPRPNANANANANA
AK018_03421663rpe_2COG0036Ribulose-phosphate 3-epimeraseATGCCTGCGCTGATCCACCCCAGCATCCTGTCGGCCGACTTCGCGAACCTCGAGCGCGACCTGCACGCCATCGCGACGGCGGACGCCGCGCACGTCGACGTCATGGACTACCACTTCGTGCCGAACCTGACGCTCGGCCTGCCGGTCTTCGAGCGGCTCGTGGAGGTGTCCCCGGTGCCGGTGGACGGCCACCTGATGATCGCCGACCCCGACCGCTGGGCGCCGGCGTACGCCGAGGCGGGTGCGGCGTCGGTGACGTTCCACGCCGAGGCGGCCCAGGCTCCGGTGCGCCTCGCCCGCGAGCTGCGCCGGCTGGGTGCGCGTGCCGGGGTGGCGCTGCGTCCGGCGACGCCCGTCGAGCCCTACCTCGACCTGCTCGCCGAGGTCGACATGATCCTCGTGATGACGGTCGAGCCCGGGTTCGGCGGCCAGTCGTTCATCGACGGCACGCTGCCCAAGATCCGCCGCGCCCGGGCGGCGATCAGCGAGCAGGACCTCGACGTGCACATCCAGGTCGACGGGGGAGTGTCCCGCTCCACGATCGAGCGGGCGGCCGAGGCCGGGGCGAACGTCTTCGTGGCCGGCTCTGCGGTCTACGGGGCGGACGACGTCCCGGCCGAGATCGAGACGCTGCGGGCGATGGCGAACCAGCACGCGCATTGAMPALIHPSILSADFANLERDLHAIATADAAHVDVMDYHFVPNLTLGLPVFERLVEVSPVPVDGHLMIADPDRWAPAYAEAGAASVTFHAEAAQAPVRLARELRRLGARAGVALRPATPVEPYLDLLAEVDMILVMTVEPGFGGQSFIDGTLPKIRRARAAISEQDLDVHIQVDGGVSRSTIERAAEAGANVFVAGSAVYGADDVPAEIETLRAMANQHAHPGPT0017425_4248DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017425-rpe|cbbE-K01783NANA
AK018_03422546barPhosphinothricin N-acetyltransferaseGTGGCTGACCTCCCCTCCCCCGACGACGCCTCCGCGACGGTGACGCGCCCGCACGTGCGGCGCGCCACGGCGGCCGATCTCGACGCCGTCGCCGCGGTCCTCGCCCCGTACGTGGCGCGCACCGCCGTCACGTTCGACGAGCAGCCGCCGACCGACGCCGACTGGCGCGGCCGCCTGGCCGAGGCCGACGCCCGCGGCCTGCCGTTCCTCGTCGCCGAGCTCGACGGCGAGGTGGTCGGCTACGCCTACGCGGCGCCGTGGCGGCCGAAGGCGGCATACCGGCACACGGTCGAGGACACGATCTACCTGGCGCCGGCGGCCCAGGGCCGGGGCGTCGGGACCCGGCTGCTGTCGGCACTGCTCGACGCCTGCACGGTCGCCGGCGTACGCCAGGTGGTCGCCGTGATCGCCGACGACCCGGCCGCCGCGGGCTCGGTGCCGCTGCACCGCCGCCTCGGGTTCGAGGTCGTCGGGGTGCTGCGCGACGTCGGGGTGAAGCACGGCCGCGAGGTGAGCACGATGCTCATGCAGCGCACGCTGCACTGAMADLPSPDDASATVTRPHVRRATAADLDAVAAVLAPYVARTAVTFDEQPPTDADWRGRLAEADARGLPFLVAELDGEVVGYAYAAPWRPKAAYRHTVEDTIYLAPAAQGRGVGTRLLSALLDACTVAGVRQVVAVIADDPAAAGSVPLHRRLGFEVVGVLRDVGVKHGREVSTMLMQRTLHNANANANANA
AK018_034231281hipA_2COG3550Serine/threonine-protein kinase toxin HipAATGACCGCGCCTGAGCTGGACGCGTGGCTCTACGGCACACGCATCGCCCGGTTCTCCGCGCGGGACACCGGTCGCGGTGCCCCGCGCGTGGAGCTCGAGTGGGATCCGGGCGCCGTCGACCGCTGGGGGTACGGGTCGCGGGTCCTGTCCCACCTGCTCCCCATGGATCCCGACGGTGCGCCCGCGCCGGCCCGCGTGACGGCCTGGCTCGACGGGCTCATGCCCGAGGGGCGCGTCCGTGACCACATGGCCATGGGCGCCGGTGTCGACCCGGACGACCCGGTCGGCTTCTTCGGCGCCTACGGCGGGGACACCGTCGGTGCGCTCCGGTTCGTCGCCGTGGGGGCCGAACCGCGAGAGCACGACCGCGAGGCGGTGCACCTCGACGACGCCGGCGTCGCGGACCTGCTGCGCGCGAGCATCGCCCGCGCCGGGGGACAGGCGCGCAGCCAGCGCCTCACGAGCTCGTTGCCCGGGATGGAGCCGAAGATCGGGCTCGTGCGCGACGACGGCGTCTGGTGGCGCGCCGCGCCCGACGAGGCGACCACGCACATCCTCAAGGTCGCCCGCGACGCCGCCTCGCCGACGGCCGACCTCGTGGACACCGAGGCGGCCGCCATCGACCTCGCCCGCAGGATCGGCCTCACCACGATCCAGGCGCACGTCGAGACGTTCGAGGACGTGCGCTGCCTCGTGGTGTCCCGCTACGACCGCGTCCCCGACGACGACGCCCCCGGCGGGCTGCGCCGCATCCACCAGGAGGACGCCGCCCAGGCGCTCGGGATCAACACCCGTGACCCCGAGCGCAAGTTCCAGCACGGCCGGTCGATCCCGTCGCTGCGGGCGATCGCCCAGGTGTTGCGCGACGACGGCACCCGTCCCGACCGTCTGCTCGCCCTGACGGCGCTCAACCTGGCCCTCGGCAACACCGACGCCCACGCCAAGAACGTCTCGATGCTCCGCCGGGCCGACGGCACGGTATCGCTGGCACCGGCCTACGACATCTCCATGCACCTGCACCACGACCACGCCTCGCGGATCTTCGCCATGGACGTCGCCGGACGGCGGCACATGGACGCGATCACCGGCACCGACCTCGTGGACGAGGGCGTCTCGTGGGGCCTGCCGCGCCGCCGGGCGGCCCGCGTCGTCGCCACCACGCTCGACGACTTGCGCACGGCGCTGGGCGAGATCGACCGGGACGTGCACCCGGGCGTGGGAGCGGCGGCGTGGAGAACCGTAGAGGCGCGCACCGACGAACTGCGCGGCGACCTGGCCTGAMTAPELDAWLYGTRIARFSARDTGRGAPRVELEWDPGAVDRWGYGSRVLSHLLPMDPDGAPAPARVTAWLDGLMPEGRVRDHMAMGAGVDPDDPVGFFGAYGGDTVGALRFVAVGAEPREHDREAVHLDDAGVADLLRASIARAGGQARSQRLTSSLPGMEPKIGLVRDDGVWWRAAPDEATTHILKVARDAASPTADLVDTEAAAIDLARRIGLTTIQAHVETFEDVRCLVVSRYDRVPDDDAPGGLRRIHQEDAAQALGINTRDPERKFQHGRSIPSLRAIAQVLRDDGTRPDRLLALTALNLALGNTDAHAKNVSMLRRADGTVSLAPAYDISMHLHHDHASRIFAMDVAGRRHMDAITGTDLVDEGVSWGLPRRRAARVVATTLDDLRTALGEIDRDVHPGVGAAAWRTVEARTDELRGDLAPGPT0027480_1440DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027480-toxin_hipA-K07154NANA
AK018_03424246hypothetical proteinATGGCCACGGACCGCTGGACCCACGCCCGCGGCCCCCGCGACCTCGGCCGCTTCGTCCAGCAAGCCCGCAAGCAGCACGGACTCAGCCAGGCGGCGCTCGCGGACGAGCTCGGCCTGACGCGCCAGTACGTCTCCGAGGTCGAGTCCGGCGTCGGGAACCTCTACATCACGCGGCTCTTCGAGATGTTCGACGAGCTGGGGATCGAGGTCCGCCTCGAGCAGCGGGGCAGCGATGACCGCGCCTGAMATDRWTHARGPRDLGRFVQQARKQHGLSQAALADELGLTRQYVSEVESGVGNLYITRLFEMFDELGIEVRLEQRGSDDRAPGPT0027485_781DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027485-REGULATION_hipB-K15773NANA
AK018_034251551COG0144Putative methyltransferaseATGAACGCGGACCGCCAGGGCACCGGTAACGGCCGCAGGGACGACCGTCGCAACGACCGCGGCCGCCAGCGCGGCGCCGCCCGCAGCCGCGGGCAGGGCCACCGCAGCAACCAGGCACCCTCGCAGCGCCGCCGGTCCACCGACCCGGCCCGCACCGCCGCCTACGACGTGCTGCGCGAGGTGGACGGCTCGGACGCCTACGCCAACCTCGTGCTGCCCCCGCTGCTGCGTGAGCGGGGTCTGAGCGGCCGCGACGCCGGCTTCGCCACCGAGCTCGCCTACGGCACCCTGCGCCTGCGCGGCCGCTACGACGCGATCCTGGCGCGCTGCGTCAGCCGCCCCCTGGACCAGCTCGACCCCGAGGTGCTCGACGTGCTGCGCCTGGGCGCCCACCAGCTGCTCGGCATGCGGGTGCCCGCCCACGCGGCGGTCTCCGAGACCGTGGGGCTGTGCCGCGACCGCGTCGGGGCCGGACCGGCCCAGATGGTCAACGCCGTGCTGCGCGCCGTCGGACGCCGCCCGCTCGCCGAGTGGCTCGACGACCTGCGGACCGACGCCCCCGACGCCGTGACCGGGCTCGCCCGGACCGGCTCGCACCCGGTGTGGATCACCCGCGCCCTGCGCGAGGCCCTGCACGGGCACGGCCGCGACGCGGGCGAGATCGCCGACCTGCTCGAGGCGGACAACACGCCCCCGCGCGTCACTCTGGTGGCCCGGCCCGGCCTCGTCGCAGCGGACGCGCTCGACGACGGCGCACCGCACGAGGTGCGCCTGGAGCCCGGTGCCTGGGCACCGACCGCGCGCGTGCTCGCCGCCGGCACCGACCCCGCCGAGCTGCCCGCCGTCGCCGACGGCCGCGCCGGCGTCCAGGACGAGGGCTCCCAGCTGGTCACCTTCGCCCTGGCCGCGGTGCCCCTGGACGGTCCCGACGCGCGCTGGCTGGACCTGTGCGCCGGTCCCGGGGGCAAGGCGGCGCTGCTGGCGGCGCTGGCCGCGCAGCGCGACGCCCGCCTGGTCGCCAACGAGGTGCAGCCGCACCGTGCCCGGCTCGTGCGCCGCGGGGTGCGTGCCGCCCCCGAGGGGGTCGTGGAGCAGGTGCGCACCGGTGATGGCCGCGAGGTCGGCACCGAGGAGCCGGGCGCCTACGACCGGGTGCTGGTCGACGCCCCCTGCACGGGACTGGGGGCGCTGCGTCGCCGCCCCGAGTCCCGCTGGCGCCGCACGCCCGCCGACCTCGGGGTGCTCACCCGGCTGCAGGGCGAGCTGCTCGCCTCGGCCCTGGACGCCGTCCGGCCCGGGGGAGTGGTCGCCTACGTGACCTGCTCGCCGCACCTGGCCGAGACCCGGCTCGTCGTCGACGACGTGCTGCGCCGCCGCGACGACACCGAGCGGATCGACGCCAGGGCGGCCCTGCGCGACGTGCTCGTGCCCGGGGCGCAGATCGACCTCGGGGCCGACGACGGCGGCGCGGACGGCCTGGACGTCCAGCTGTGGCCGCACGTGCACGGCACCGACGCCATGCACCTGACGCTGCTGCGGCGAGCTGCCTGAMNADRQGTGNGRRDDRRNDRGRQRGAARSRGQGHRSNQAPSQRRRSTDPARTAAYDVLREVDGSDAYANLVLPPLLRERGLSGRDAGFATELAYGTLRLRGRYDAILARCVSRPLDQLDPEVLDVLRLGAHQLLGMRVPAHAAVSETVGLCRDRVGAGPAQMVNAVLRAVGRRPLAEWLDDLRTDAPDAVTGLARTGSHPVWITRALREALHGHGRDAGEIADLLEADNTPPRVTLVARPGLVAADALDDGAPHEVRLEPGAWAPTARVLAAGTDPAELPAVADGRAGVQDEGSQLVTFALAAVPLDGPDARWLDLCAGPGGKAALLAALAAQRDARLVANEVQPHRARLVRRGVRAAPEGVVEQVRTGDGREVGTEEPGAYDRVLVDAPCTGLGALRRRPESRWRRTPADLGVLTRLQGELLASALDAVRPGGVVAYVTCSPHLAETRLVVDDVLRRRDDTERIDARAALRDVLVPGAQIDLGADDGGADGLDVQLWPHVHGTDAMHLTLLRRAANANANANANA
AK018_03426963fmt_2COG0223Methionyl-tRNA formyltransferaseGTGCGTCTGCTGTTTGCCGGAACTCCCGAACCCGCCGTGCCCGCCCTGAAGGCACTGATCGACTCCGACCACGAGGTCGTCGCCGTGCTGACCCGCGCCGACGCCAGGGCCGGACGCGGGCGCCGGCTCGTGCCGAGCCCGGTGCGCGTGGCCGCCGAGGAGGCCGGCATCGAGGTGATCACCGACGTCCCGCGCGGCGAGGAGTTCGTGTCCCGGCTGCGCGACCTCGACGTCGACGCCGCCCCCGTGGTCGCCTACGGTCACCTGCTGCGCCCCGACGTGCTCGCCGTGCCGCGCCTGGGCTGGGTCAACCTGCACTTCTCCGTGCTGCCCGCCTGGCGCGGCGCCGCCCCCGTCCAGCACGCGGTCCTCGCGGGCGACGAGGTCACCGGCGCCACCACGTTCCTGCTCGACGACGGCATGGACACCGGCCCCGTGCTCGGCACCGCCACGGAGACCGTCCGGCCCCGCGACACCTCCGGCGACCTGCTCGACCGTCTCGCCGGCTCCGGTGCCGGGCTGCTCGTGGCCACGCTGGACGCCCTGGAGGCCGGCACCCTGTCCCCGCAGCCCCAGAGCCCGGACGGCGCCTCCTACGCCCCGAAGATCACCGCTGAGGACGCCCTGGTGCGCTGGGACGCCCCGGCGCTCGCGGTCGACCGGCGCATCCGGGCGGTCACCCCGGCCCCGGGGGCGTTCACGACCCTGCCCGACGCCGACGACGGCACGCCGGGTGCCCGGCTCGGCCTCGGCCCGGTGCGCCCGCGACCCGACGTGGCCGACCTCTCCCCGGGGCAGGTGCGCGCCTCCAAGTCCGAGGTGCTGGTGGGCACCGCCACGCACGCCGTCGAGCTGGGTGAGGTACGCCCCGTGGGCAAGAAGCCCATGGCGGCGGCCGACTGGGCGCGCGGCGCCGGACGCGCCGTCGTCGAGGCCGACGCCCCGCTGGGAGGCAGCCGATGAMRLLFAGTPEPAVPALKALIDSDHEVVAVLTRADARAGRGRRLVPSPVRVAAEEAGIEVITDVPRGEEFVSRLRDLDVDAAPVVAYGHLLRPDVLAVPRLGWVNLHFSVLPAWRGAAPVQHAVLAGDEVTGATTFLLDDGMDTGPVLGTATETVRPRDTSGDLLDRLAGSGAGLLVATLDALEAGTLSPQPQSPDGASYAPKITAEDALVRWDAPALAVDRRIRAVTPAPGAFTTLPDADDGTPGARLGLGPVRPRPDVADLSPGQVRASKSEVLVGTATHAVELGEVRPVGKKPMAAADWARGAGRAVVEADAPLGGSRPGPT0008125_3543DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604NANA
AK018_03427741hypothetical proteinATGCGACGTGACGAGCACCGCCGCGAGGGCGCGGCAAACGGGACGAGGATCGCCCCGGCGGTGGCGGGGCTCGTGGGGGTCGTGCTCGTGGCGGGTGCGTGCGCCGGGCCCGAGGGAGCGTTCGCCGAGCCGATGGCGGAGCACGCCCTGTTCGGCGACGTCGCGTTCTCCCCGGCCTCGGTCACCGCCGCGCTCCCCCAGGTGACCTACCGCGTCGGCTCGTCCGCCACGACGGTCTCGGACCTCGTCGTGGCCGGGGAGATCACCGGCTGGCAGCGCGGCCGGTCCACCGACTGGTCCACGGACGCCGGGCGCGAGGTCGCCTGGTCCGACGACGCCGACAGCCGCCAGGTCGTCGTGGTCGTCGATGTCGGTGAGGTCGTGGCGGCAGGTGACGACGACCTGGACGGCGTCGACGTCGCACCCGGGGACACGATCGAGGTCGTGGCCACGCTGGGCGGGGACGCCGACGCCGACGCCGCGGGGGACGCGCTGGCCGGGCTCGGTGACGTCGTCGTCCTGGTCGCCCACGGTCCCGGGGAGCACCGGGACGAGTGGTGGGTCGGCCTGAGCGGGATCCTGCTCGGCGACCTGGACGACGGCGACCTGACCTGGCCCGTGCTCGAGGCCGCCGGTCGGGACCTCGATGTGCGCGACGACGTCGCCGACCTCGACGCGCTGCGTCGCGCGGCGGCGGCCGCACCGCGGACCGTCATCGTCGGCGACTCCTTGACGCCGTGAMRRDEHRREGAANGTRIAPAVAGLVGVVLVAGACAGPEGAFAEPMAEHALFGDVAFSPASVTAALPQVTYRVGSSATTVSDLVVAGEITGWQRGRSTDWSTDAGREVAWSDDADSRQVVVVVDVGEVVAAGDDDLDGVDVAPGDTIEVVATLGGDADADAAGDALAGLGDVVVLVAHGPGEHRDEWWVGLSGILLGDLDDGDLTWPVLEAAGRDLDVRDDVADLDALRRAAAAAPRTVIVGDSLTPNANANANANA
AK018_03428786hypothetical proteinATGACCCGTGCATCCCGAGCGTTCCGGATCGGCTCCTGGACCGCGCTGGCCGCTGTCGTCGTCGCGGCGAGCCTGACCGTGGCCGCGGCCGTCGCCGGCGCGCTGGCACTGTCCGGCAAGGCCAGCTACCCCGTCGAGCACAGCCTGGGCCCGTTCCACTACCAGGACACGCTCTCGGTCCAGGTGATGAACGTGTCGCCGGTGTGCCAGGAGTTCGACATCATGGAGCTCCTGCCGAACGAGTACCCGGGAGACGGCAGCTTCTGCTACAAGTTCGTCCAGGACGGCGGCGAACAGCTCATCCGCGACGGCGTGGTGTACCAGGACCCGAGTCTCCGGCCGACGCAAGCGGTGCTCACCGGTCAGGTGCAGCTGACCACGACGGGTGACTGGAACCCCTGGGTGGCGGCCCAGGTCGTCCGGGAGGTGATCGCCGGGACGGTGGTCACCGTGTGGCTCGTCCTGCTGTGGCGGCTGCTCGCGGCGGCGGCCGCCGGCAACGGGTTCAGCACGCGAACCGTGCGCTCCCTGCGTGCCCTGGGCTGGCTGACGATCGCCAGCGCCGCGCTCGCGCCGGCGCTGGAACACTTCACCAGCATGTACGTGGTCGACGGAATGCATTTCGCCTCGTACGGGATGCCGGCGCTCCAACCGTGGAGCACCTATGACGGCTACCCGGACGGGATCGACCTCGTCCAGGTCGCCCTCGGCGGTCTGGTGCTCCTCGTGGCCGAGGTCTTCCGGCACGGCGCCGACATCGAGGACGAACGCAGGCTGACGGTCTGAMTRASRAFRIGSWTALAAVVVAASLTVAAAVAGALALSGKASYPVEHSLGPFHYQDTLSVQVMNVSPVCQEFDIMELLPNEYPGDGSFCYKFVQDGGEQLIRDGVVYQDPSLRPTQAVLTGQVQLTTTGDWNPWVAAQVVREVIAGTVVTVWLVLLWRLLAAAAAGNGFSTRTVRSLRALGWLTIASAALAPALEHFTSMYVVDGMHFASYGMPALQPWSTYDGYPDGIDLVQVALGGLVLLVAEVFRHGADIEDERRLTVNANANANANA
AK018_03429231hypothetical proteinATGCCGATCGAGATCCGGCTCGACCGCATGCTCCTCGAGCGCCGCATGACCCTGACCGAGCTCGCCGACCGGGTCGGCATCACCGTGGCGAACCTGTCGATCCTCAAGACCGGCAAGGCCAGGGCCGTCCGGCTCGAGACGCTGGACGCCATCTGCCGCGAGCTCGACTGTCAGCCCGGCGACCTGCTCGCCCACGTCGAGCACGACGACGGCCGCGAGCGCCGCCGGTAGMPIEIRLDRMLLERRMTLTELADRVGITVANLSILKTGKARAVRLETLDAICRELDCQPGDLLAHVEHDDGRERRRPGPT0014940_386DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014940-yozG-K07727NANA
AK018_03430630gph_7Phosphoglycolate phosphataseATGCCCGCTGCCGCCCGCCCCGCCGCGGACGCCGTGGTCTACGACCTCGGCAACGTCCTGGTCGGCTGGGACCCCTACGGCGCCTTCGCCGGTCTCGACCGGGTCGAGGTGGACCGGTGGATGGACGCCGTCGACTTCGGCGCCTTCAACCACGCCCAGGACGCCGGACGCACCTGGGACGAGGCCGTCGCCCACCTGGAGGCCACCCGGCCCGAGCTGGCCCCGATGGCGGCCCGGTACGCCCGTGACTACGCCGGCACCCTGTCGGCAGGGCCCGTGCCCGGGTCCGCCGAGCTCGTCGCCGAGCTGCACGCCGCCGGGGTGCCCTTGTACGGGCTGACCAACTGGGCCGCCGACACCTTCGACGCCGCCGAGCCCGCCGCCCCCGCCATCGGGCTGCTGCGCGACGTGCTCGTCTCCGGACGCGTCGGACTGGCCAAACCCGACCCGGCGATCTTCCGCCTCGCCGCCGAGCGCTTCGACCTGGCCCCCGCCCGCACCGTGTTCGTCGACGACACGCTGCGCAACGTCCGCGCCGCCCGGGAGGTCGGCTTCCACGCCGTGCACTTCACCGGCACGCCGGCGCTGCGTCGGGCGCTCGCGGACCTCGGGCTGCCCGTGGCGACCTGAMPAAARPAADAVVYDLGNVLVGWDPYGAFAGLDRVEVDRWMDAVDFGAFNHAQDAGRTWDEAVAHLEATRPELAPMAARYARDYAGTLSAGPVPGSAELVAELHAAGVPLYGLTNWAADTFDAAEPAAPAIGLLRDVLVSGRVGLAKPDPAIFRLAAERFDLAPARTVFVDDTLRNVRAAREVGFHAVHFTGTPALRRALADLGLPVATPGPT0006885_2698DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
AK018_034312220priA_2COG1198putative primosomal protein N'GTGACCTCCCCGGACGAGCCCGAGCAGGGCGCCCTGCTCGGGCTCGACGATGTCCCGGCCGCCCCGCGCCGCGGCCGCGCACCCGGGCGCAAGCCGGGCCGAGAGCCCGCCGCCGTCGACCCGGTGGCCCGCGTGGTGCTCGACCTGGCCCCGGCCCACCTGGACCGCGAGTTCGACTACCTGGTGCCGGCGGCGCTGGCCGACGACGCGGTGCCCGGGGTGCGGGTGCGCACCCGGTTCGGCCCGCAGGACGTGGCCGGGTTCGTCGTCGCCCGGGCCGCGACCTCCGAGCACGAGGGCCGGCTGCAGCCGCTGCGCCGCGTCGTCTCGCCCGACCCGGTGCTGACCCCGGAGGTGCTCGACCTGGCCCGCCGGGTCGCCGCCCGCTACGCCGGGACCGTCGCCGACGTGCTGCGCCTGGCGGTGCCGCCGCGCCACGCCCGCGTCGAGGCCGAGGTGCTCGCCGACCTGGCCCACCCGGCCGCGGCCCCCGCCGAGGCGGCTGCCGTGGCGGACGAGGCGGCCGACGCCGACGACGCCGGGCAGGACGGGGCTGCCGCGTCGGCGACGGCCGGCGCACCCGTGGTGCCGCCGCCGTCGCCCCCCGGCGGAGAGGGCTGGCCGGACGTGTGGGCGCCCTACCGCACCGGGGAGGCCTTCTGCCGCCACCTGCTGGGTGGCCAGGCCCCCCGGGCGGTGTGGAGCCCGTTGCCGGGGCTGCAGGCGCCCGTCGGGCAGGAGGCCACGGCGCGCGTCCCGCACTGGGCCGCCGCGATCGCCGAGGCGGTGCGCGCCACCCTGGCCGGCGGACGGCGCGCCCTGGTCGTGGCGCCGGACGCCCGCGACGTCGAGCGCGTGTGCGCGGCGCTGGCGGCCGCCGGGGTCGACGCGGTGCGCCGGCTGCAGGCCGACGACGGCCCGGCACCGCGCTACCGCGCGTTCCTGCACGCCCGGCACGGCCTGGCGTCGGCGATCGTGGGTACCCGGGCGGCGATGTTCGCCCCCGTGCCGGACCTGGGGCTGGTCGTGCTGTGGGGCGACGGCGAGGAGACCCTCGACGAGCCGCACGCCCCCTACCCGGCGGCCCGCGAGGTCCTCGCGATGCGCTCCGAGGCCGAGGGTGCGGGGTTCCTGCTGGGCTCGCCCGGCCGGACCGTGCAGGCCCAGGCGATGCTGGCGCGCGGGTGGGCGGCCGAGATCGCCGCGACGCGCGACGTGGTGCGCTCGCAGGCCCCGCGCGTGCGCGCCCTGACGTCGGTCGAGCTCGCCGCCGAGGGGCCCGGCGCCGCCGCCCGGCTGCCCACCGCCGCCTGGCGCACCGCCCGGGCGGCCCTGGAGCGCGGCCCGGTGCTGGTCCAGGTGCCGCGCACCGGCTACCTGCCGGTGGTGGCGTGCGCCGCCTGCCGCACCGCGGCCCGCTGCACGCACTGCCACGGGCCGCTCGGCCTGCGCGGGGCGCGCGGCACCCCGCAGTGCACCTGGTGCGGACGCCTGGCGGGCGCCTGGCGCTGCGAGGAGTGCGGTCACGACCGGGTGCGCGCCGTGCGCGTGGGATCCGAACGCACCGCCGAGGAGCTCGGCCGCGCGTTCGCCGGCGTGCCCGTGCGGGTCTCGGCGTCCTCGGCCCCCGGGGGGATCCTGGCGAGCGTGGCCGCCGACCCCGCCCTCGTGGTGGCCACCCCGGGCGCCGAACCCGTGGCCGAGGACGGGTATGCCGCCGCGCTGCTGCTCGACGCCGCGACCGCCACGGCCGGCACCGACCTGGCGATGGCCACCCGCGCCCTGCACCGCTGGATCGCCGCGGCCGCGCTCGTGCGCCCCGGCCCGGACGGTCAGGTGCTGCTGGTCGGAGACGCCGCCCCGGCACCCACCGGCGCGCTGGTGCGGTTCGACCCGGCCGGCCTGGCCGAGCGCGAGCTCGACGAGCGCCGCGAGCTCGACCTGCCGCCCGCCGTGCGCATCGCCGCCGTGACCGGCGACGCCGACGCCGTGCGCGCCGTCGTCGACCGCGTCGAGCTCGCCACGCCCGAGACGGTGCTCGGACCCGTGGAGCTGCCCGTCGACGACCGTCTCGAGGCCCGGGTGCGCGTCGTGGTGCGCGTCCCCCCGGCCGCCGGCGCCGAGCTCGCCGCCCAGCTGCGCGCCTCGCTCGCCGTGCGCTCCGCCCGCCGCGAGGGCGGGACCGTCCGCGTGCAGGTCGACCCCCAGGAGATGCTCTGAMTSPDEPEQGALLGLDDVPAAPRRGRAPGRKPGREPAAVDPVARVVLDLAPAHLDREFDYLVPAALADDAVPGVRVRTRFGPQDVAGFVVARAATSEHEGRLQPLRRVVSPDPVLTPEVLDLARRVAARYAGTVADVLRLAVPPRHARVEAEVLADLAHPAAAPAEAAAVADEAADADDAGQDGAAASATAGAPVVPPPSPPGGEGWPDVWAPYRTGEAFCRHLLGGQAPRAVWSPLPGLQAPVGQEATARVPHWAAAIAEAVRATLAGGRRALVVAPDARDVERVCAALAAAGVDAVRRLQADDGPAPRYRAFLHARHGLASAIVGTRAAMFAPVPDLGLVVLWGDGEETLDEPHAPYPAAREVLAMRSEAEGAGFLLGSPGRTVQAQAMLARGWAAEIAATRDVVRSQAPRVRALTSVELAAEGPGAAARLPTAAWRTARAALERGPVLVQVPRTGYLPVVACAACRTAARCTHCHGPLGLRGARGTPQCTWCGRLAGAWRCEECGHDRVRAVRVGSERTAEELGRAFAGVPVRVSASSAPGGILASVAADPALVVATPGAEPVAEDGYAAALLLDAATATAGTDLAMATRALHRWIAAAALVRPGPDGQVLLVGDAAPAPTGALVRFDPAGLAERELDERRELDLPPAVRIAAVTGDADAVRAVVDRVELATPETVLGPVELPVDDRLEARVRVVVRVPPAAGAELAAQLRASLAVRSARREGGTVRVQVDPQEMLNANANANANA
AK018_034321206metK_2COG0192S-adenosylmethionine synthaseATGACCGATGCGCTGCGCCTCTTCACGTCCGAGTCCGTGACCGAGGGCCACCCGGACAAGGTGTGCGACCAGATCTCGGACGCGATCCTGGACGCGCTGCTCGCCCAGGACCCGCGCTCGCGCGTCGCGGTGGAGACGATGGTCACCACCGGGCTGGTGCACGTGGCCGGGGAGGTCACCACCGAGGCCTACGTCGAGATCCCGCAGATCGTGCGCGAGGTGGTGCGCGGCATCGGGTACACCTCGTCCTCCATCGGCTTCGACGGCGACTCGTGCGGGGTGTCGGTCTCCATCGGTCAGCAGTCGCCCGACATCGCCCAGGGCGTGGACACGGCCTTGGAGAGGCGCACCAACGCCGCCGACGTCGACCCGTACGACGCCCAGGGCGCCGGCGACCAGGGCCTGATGTTCGGCTACGCCACCGACGAGACGCCGTCGCTGATGCCGCTGCCGATCTTCCTGGCCCACCGGCTCGCCGAGCGGCTGGCCGAGGTGCGCCGCACCGGCGAGGTGTCCGGCCTGCGCCCTGACGGCAAGACGCAGGTCACCGTCGGCTACGACGGGGACCGGCCGGTCAGCCTGGACACCGTGGTGCTGTCCACCCAGCACGACGCCGACCTGGAGCAGGACAAGCTCGCCCAGGAGATGCGCGCCCACGTCATCGACCCCGTGGTGGCCCAGGTCGCCTCGGCCTCCGGCATCACCACCGACGACGTGCGCGTCATCGTCAACCCCACCGGGCAGTTCGTCATCGGCGGCCCGCAGGGCGACGCCGGGCTGACCGGCCGCAAGATCATCGTGGACACCTACGGCGGCATGGCCCGTCACGGCGGCGGGGCGTTCTCCGGCAAGGATCCCTCGAAGGTGGACCGCTCGGCCGCGTACGCGATGCGGTGGGTCGCCAAGAACGTCGTCGCCGCGGGTCTGGCGCGCCGCTGCGAGGTGCAGGTCGCCTACGCGATCGGCAAGGCCCAGCCGGTGGGGCTCTACGTCGAGACCTTCGGCACCGAGACCGTCGACCCGGCACGGATCGAGGCCGCCATCCGCGAGGTCTTCGACCTGCGCCCGGCGGCGATCATCCACGACCTGGACCTGCTGCGCCCCGTCTACGCCGCCACGGCCGCCTACGGCCACTTCGGCCGCGAGCTGGAGGCGTTCACCTGGGAGCGCACCGACCGCGTCGAGGCGCTGCGCGCCGCGGTCTGAMTDALRLFTSESVTEGHPDKVCDQISDAILDALLAQDPRSRVAVETMVTTGLVHVAGEVTTEAYVEIPQIVREVVRGIGYTSSSIGFDGDSCGVSVSIGQQSPDIAQGVDTALERRTNAADVDPYDAQGAGDQGLMFGYATDETPSLMPLPIFLAHRLAERLAEVRRTGEVSGLRPDGKTQVTVGYDGDRPVSLDTVVLSTQHDADLEQDKLAQEMRAHVIDPVVAQVASASGITTDDVRVIVNPTGQFVIGGPQGDAGLTGRKIIVDTYGGMARHGGGAFSGKDPSKVDRSAAYAMRWVAKNVVAAGLARRCEVQVAYAIGKAQPVGLYVETFGTETVDPARIEAAIREVFDLRPAAIIHDLDLLRPVYAATAAYGHFGRELEAFTWERTDRVEALRAAVPGPT0020000_1931DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-AI-2_BIOSYNTHESIS,PGPT0020000-metK-K00789NANA
AK018_034331236coaBC_2COG0452Coenzyme A biosynthesis bifunctional protein CoaBCATGAGGATTCTGCTCGGGGTCTCCGGCGGCATCGCCGCCTACAAGGCGGTGCTGCTGCTGCGCCTGCTGCGCGAGCAGGGCCACGTCGTGCGCGTGGTGCCGACGACGGCTGCGCTGCGGTTCGTCGGCGCCCCGACCTTCGAGGCGCTCTCCGGGGAGCCGGTGAGCACCGAGGTGTTCGACGACGTCGAGAACGTCCAGCACGTGGCGCTCGGCCAGGGCGCGGACCTGGTGATCGTCGCCCCGGCGACGGCGGACCTGCTCGCCCGGGCCGCCGCCGGACGGGCGGACGATCTGCTCACCTCGAGCCTGCTCGTGGCGCGCTGCCCCGTGGTGATGGCCCCGGCGATGCACACCGAGATGTGGGAGCACCCGGCCACCCGCGCCAACGTCGCGACGCTGCGCGCCCGCGGGGTGCACGTCGTCGAGCCGGCCTCGGGTCGGCTGACCGGCACCGACACCGGCCCGGGCCGGCTGCCGGAGCCGGAGGAGATCGCCCGGGTCGCCCTGGCCGTGGCCGCCGGCCCGGCCGAGGAGGTGCGGGTCCGGGACCTGGCCGGGCGCCGCGTCGTCGTCTCCGCGGGCGGCACCCGTGAGCCGATCGACCCCGTGCGGTTCATCGGCAACCGTTCCAGCGGCCGCCAGGGCGCGGCGCTGGCGGCCGCGGCCCGCGCGCGCGGGGCCGAGGTGACCCTGGTCGCTGCGCACCTGGACGCCCCGCTGACCGACCCGCTGGTGGCCGACGGCGTGGACGTGGTGGCGGCGTCCACCACGGCCGAGCTGCGCGACGCCGTCCGACGGGCGGCGGCCTCGGCCGACGCGGTCGTCATGGCGGCCGCGGTGGCGGACTTCCGGCCGCTGGCCGCACCGGAGACGAAGATCAAGAAGGTCGCCGGGCAGTCGCCGCCGGCGATCGAGCTGGCGGAGAACCCGGACGTGCTGGCCGAGCTGGCCGCCGACCGGGTCCGTGCCGGGCAGGTCGTGGTCGGCTTCGCGGCCGAGACGGGCGACGGGACCGGCAGCGTGCTGGAGCACGGCCGGGCCAAGGCGCGCCGCAAGGGTGCCGACCTGCTGGCGGTCAACGCCGTCGGCCCGGACCGCGGGTTCGGCACGGAGGTCAACGAGGTCACGCTGCTGGACGAGCGCGGTGACACGGTGGCCAAGTCCGCCGGGTCCAAGCGGGAGGTCGCCGACGCCATCTGGGACGCCGTGGCGCCCCGAATGACCGCATCATGAMRILLGVSGGIAAYKAVLLLRLLREQGHVVRVVPTTAALRFVGAPTFEALSGEPVSTEVFDDVENVQHVALGQGADLVIVAPATADLLARAAAGRADDLLTSSLLVARCPVVMAPAMHTEMWEHPATRANVATLRARGVHVVEPASGRLTGTDTGPGRLPEPEEIARVALAVAAGPAEEVRVRDLAGRRVVVSAGGTREPIDPVRFIGNRSSGRQGAALAAAARARGAEVTLVAAHLDAPLTDPLVADGVDVVAASTTAELRDAVRRAAASADAVVMAAAVADFRPLAAPETKIKKVAGQSPPAIELAENPDVLAELAADRVRAGQVVVGFAAETGDGTGSVLEHGRAKARRKGADLLAVNAVGPDRGFGTEVNEVTLLDERGDTVAKSAGSKREVADAIWDAVAPRMTASPGPT0008815_1299DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008815-coaBC|dfp-K13038NANA
AK018_03434339rpoZ_2COG1758DNA-directed RNA polymerase subunit omegaATGGCAGGAACGACGCCGCAGCCGATCGGCATCACCGACCCGCCCATCGACGACCTGCTGCAGCACAGCGAGTCCAAGTACGGCCTCGTGCTGTACGCGGCCAAGCGTGCCCGCCAGATCAACGCCTACTACGCCCAGCTCAACGAGGGCCTGCTGGAGAACGTCGGCCCGCTGGTCGAGGCGCGTCACCAGGAGAAGCCGCTGTCGATCGCGATGCGCGAGATCAACGAGGGTCTGCTGACGGCCGAGCCGGCCCCGGAGCCGAGCGAGCTCACCGCCGCCACGCCGGCCGACCCGACCGCGGAGTCCGAGCACGCGGCCGGCGACGAGATCGTCTGAMAGTTPQPIGITDPPIDDLLQHSESKYGLVLYAAKRARQINAYYAQLNEGLLENVGPLVEARHQEKPLSIAMREINEGLLTAEPAPEPSELTAATPADPTAESEHAAGDEIVNANANANANA
AK018_03435657gmk_2COG0194Guanylate kinaseGTGCCGGCACCCCGCGACGCCGCCGAGACCGACGACCCGCGAGGCCCGGCACGGTTGACCGTGCTCGCCGGGCCCACGGCCGTGGGCAAGGGAACGGTCTCGTCCGACATCCGCACCCGTTATCCCGAGGTGTGGCTGTCCGTGTCCGCGACCACCCGGCCCCCGCGCCCGGGAGAGGAGCACGGCGTGCACTACCTGTTCGTCTCGCCGGCGGAGTTCGACCGGATGGTCGCCGACGGCGAGATGCTCGAGTGGGCGGTCGTGCACGGTCGACACCGGTACGGCACGCCGCGCGGGCCGGTGCAGGAGCATCTGGCTGCTGGACGTCCGACGCTGCTCGAGATCGACCTGCAGGGGGCTCGACAGGTCCGTGACGCGGTGCGGGGCAGCGACCTGGACGCGCAGTTCGTGTTCCTGTCGCCCCCCAGCACCGAGGAGCTGGTGCGTCGCCTGGTGGGGCGCGGCACCGAGGACGCCGAGGAGCGCGCCCGTCGGCTGGCCACGGCCGAGGTCGAGATGGCCGCCGAGCCGGAGTTCGACGTGACCATCGTCAACGACGACGTCACGCGCGCCACCGACGAACTGGCCGGCCTGCTCGGCGTGCCCGGGGCGCGGGGTGAGCGACGTCGCCCCGAGGCCTCGCACGGCGGGCGGTAGMPAPRDAAETDDPRGPARLTVLAGPTAVGKGTVSSDIRTRYPEVWLSVSATTRPPRPGEEHGVHYLFVSPAEFDRMVADGEMLEWAVVHGRHRYGTPRGPVQEHLAAGRPTLLEIDLQGARQVRDAVRGSDLDAQFVFLSPPSTEELVRRLVGRGTEDAEERARRLATAEVEMAAEPEFDVTIVNDDVTRATDELAGLLGVPGARGERRRPEASHGGRPGPT0021475_1701DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942NANA
AK018_03436312hypothetical proteinGTGGCCCTCCCTCCCCTCACCCCGGAACAGCGTGCGGCGGCTCTCGAGAAGGCGGCCGAGGCGCGTCGGGTGCGCGCCGAGATCAAGAACCGTCTGAAGTACTCCCAGGGGTCCCTCAAGGAGGTGATCGAGCAGGGTCAGACGGACGACGTCGTGGGCAAGCTCAAGGTCGTCTCCCTGCTCGAGTCCCTGCCCGGAGTCGGTAAGGTGAAGGCCCGGGCGATCATGGAAGAGATCGGGATCGCCGAGACCCGCCGGGTCCGTGGTCTCGGACCGCACCAGGCCCAGGCGCTGATCGAGAGGTTTGGCTGAMALPPLTPEQRAAALEKAAEARRVRAEIKNRLKYSQGSLKEVIEQGQTDDVVGKLKVVSLLESLPGVGKVKARAIMEEIGIAETRRVRGLGPHQAQALIERFGPGPT0021475_392DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942NANA
AK018_03437861pyrF_2COG0284Orotidine 5'-phosphate decarboxylaseATGAGCGCACCGGCGCCGTTCGGCGCCCGCCTCGCGGCGGCCATGGACGACCACGGGCCGCTGTGCGTGGGCATCGACCCGCACGCGGCGCTGCTGGAGGCGTGGTCCCTGCCGGACGACGCCTCCGGCGTGCGCGAGTTCGGGCTGCGCGTCGTCGACGCCCTCGGGGGTCGGGTGGCGGCGCTCAAGCCGCAGGCGGCCTTCTTCGAGCGGCACGGCTCGCGCGGCCTGGCGGCCCTGGAGGACGTCCTGGCCGCCGCGCGGGCGGCGGGGACCCTGACGGTCGTGGACGCCAAGCGCGGCGACATCGGCTCGACGATGGCCGGCTACGCCGAGGCGTTCCTGGCCGACGCCTCGCCGCTGGCCGGCGACGCCGTCACGCTGACGCCGTACCTGGGCGTCGGGTCGCTGCGCCCGGCGCTCGACCTGGCCGCGGCCACGGGCCGCGGGGTCTTCGTGCTGTGCCTGACGTCCAACCCCGAGGGGGCGGCGGTCCAGCACGCCGTCGGCCCCGACGGGCGCAGCGTCGCCGCGTCCGTCGCGGCCCACGCCGCGACGCTCAACGCCGGTGCGCAGCCGCTGGGTTCGGTCGGTCTCGTGGTCGGCGCGACCGTGGGCGACGCGGCGCGCACCACGGGCACGGACCTGCCGGCGGTCAACGGCCCGCTGCTGGCGCCCGGCGTGGGTGCCCAGGGCGCGGGGGAGCGCGAGCTGGCAGCCGTGTTCGGCGCCGCGCGGGGCCAGGTGCTGGCCTCGTCCTCGCGCGGCGTGCTGGCCGCCGGGCCGGACGCCGCGGCGTTGCGCGGGGCGGCGGCGTCGGCGGCCGCCGAGGTGACCGCGGCGCTGCGTCCGGCGCGCTGAMSAPAPFGARLAAAMDDHGPLCVGIDPHAALLEAWSLPDDASGVREFGLRVVDALGGRVAALKPQAAFFERHGSRGLAALEDVLAAARAAGTLTVVDAKRGDIGSTMAGYAEAFLADASPLAGDAVTLTPYLGVGSLRPALDLAAATGRGVFVLCLTSNPEGAAVQHAVGPDGRSVAASVAAHAATLNAGAQPLGSVGLVVGATVGDAARTTGTDLPAVNGPLLAPGVGAQGAGERELAAVFGAARGQVLASSSRGVLAAGPDAAALRGAAASAAAEVTAALRPARPGPT0014965_542DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0014965-pyrF-K01591NANA
AK018_034383381carB_3COG0458Carbamoyl-phosphate synthase large chainATGCCCCGCCGTTCCGACCTCTCCTCCGTCCTGGTCATCGGGTCCGGCCCGATCGTCATCGGCCAGGCCTGCGAGTTCGACTACTCCGGCACCCAGGCCTGCCGCGTGCTGAAGGAGGAGGGCCTGCGCGTCGTCCTGGTCAACTCCAACCCGGCCACGATCATGACCGACCCGGAGTTCGCCGACGCCACCTACGTCGAGCCGATCACCCGCGAGGTGCTGACCTCGATCATCGCCAAGGAGCGTCCCGACGCCCTGCTGCCCACCCTCGGCGGGCAGACGGCTCTCAACGCCGCCATCGAGCTGCACGAGGCCGGCGTGCTGGACGAGTACGGCGTCGAGCTCATCGGCGCCAACATCCCCGCCATCCGCAAGGGCGAGGACCGCGAGGAGTTCAAGGAGGTCGTGGAGGTCTGCGGCGGCGAGTCCGCCCGCTCGCGCATCATCCACTCCATCGACGGCGCGCTCGAGGCCGCCGAGGACCTCGGCTACCCGATGGTCGTGCGCCCCTCGTTCACCATGGGCGGGCTCGGCTCGGGCCTGGCCTACGACGAGGCGGACCTGCGCCGCATCGTCGGCCAGGGCCTGCACTACTCGCCGGTCACCGAGGTGCTCCTCGAGGAGTCGATCCTCGGCTGGAAGGAGTACGAGCTGGAGCTGATGCGCGACAAGAACGACAACGTCGTGGTCGTGTGCTCCATCGAGAACGTCGACCCGGTGGGCGTGCACACCGGCGACTCGGTCACCGTCGCCCCGGCGATGACCCTCACCGACCGCGAGTACCAGACGCTGCGGGACATCGGCATCGCGGTCATCCGCGAGGTCGGCGTCGACACCGGCGGCTGCAACATCCAGTTCGCCGTCGAGCCGGACACCGGGCGCGTGGTGGTCATCGAGATGAACCCCCGCGTGTCGCGCTCCTCGGCGCTGGCCTCCAAGGCCACGGGCTTCCCGATCGCGAAGATCGCGGCCAAGCTCGCCGTCGGGTACACGCTGGACGAGATCCCCAACGACATCACCCAGGTCACCCCGGCCAGCTTCGAGCCGACGCTCGACTACGTCGTGGTCAAGGTGCCGCGGTTCGCCTTCGAGAAGTTCCCCGCGGCGGACGACACGCTGACCACCACGATGAAGTCGGTCGGCGAGGCGATGGCGCTGGGCCGCAACTTCACCGAGGCGCTCGGCAAGGCGCTGCGCAGCATCGACAAGGGCGGCGTCGACTTCCACTGGTCCGGCGAGGCGCCGTCCGGCGAGGAGCTGACGGCGCTGCTGGAGTCCCTGCGGCGACCCACCGAGCAGCGGCTCGTCGGGGTCCAGCAGGCGCTGCGCGCCGTCGAGGCGGGGCACGCGACCCTGGAGCAGGTCTTCGACGCGACGAAGATCGACCCGTGGTTCCTCGACCAGATCCTGCTGATCAACGAGGTCGCCGCCGAGGTGGCCGCCTCCGAGACGCTGACGGCCGACGTGCTGCGGACCGCCAAACGCCACGGGATCTCCGACGTCCAGATCGCCGCGCTGCGCTCGATGGGGCCCGGGGGAGAGGCCGGCGTGCGCGAGACGCGCCACGCCCTGGGCGTGCGGCCGGTCTACAAGACGGTCGACACCTGCGCCGCGGAGTTCGCCGCGCGCACCCCGTACCACTACTCGTCCTACGACACCGAGACCGAGGTCTCCCCGCGTGAGCGCGAGGCCGTCATCATCCTGGGCTCGGGACCGAACCGCATCGGCCAGGGCATCGAGTTCGACTACTCGTGCGTGCACGCCGCCCTGACGCTCAAGGACGACTACGAGACCGTCATGGTCAACTGCAACCCGGAGACGGTCTCGACCGACTACGACACCTCCGACCGGCTGTACTTCGAGCCGCTGACGTTCGAGGACGTCCTGGAGGTCTACGAGGCCGAGCTCGCCGCGGGCCCGGTCAAGGGCATCATCGTCCAGCTCGGCGGCCAGACGCCGCTGTCGCTGGCGCAGCGGCTGTCCGACGCCGGGCTGCCGATCCTGGGCACCTCGCCCGAGGCGATCGACGCCGCCGAGGACCGCGGGCTGTTCGGCCAGGTGCTCGCCGAGGCGGGTCTGCCCGCCCCGGCGTTCGGCACCGCCCGCTCCCTGGGCGAGGCGCGCGACGTCGCCGACCGGATCGGCTACCCGGTGCTGGTGCGCCCGTCCTACGTGCTCGGCGGGCGCGGCATGGAGATCGTGTACTCGGCCGAGCAGCTCACCGGCTACGTCGAGCGGGCCCTGGAGGCGGCGGCCGCCCACGCGGTGTCCTCCCGCGCTCCCGGGGTGCTGCCGGCGCCGCTGCTCATCGACCGCTTCCTCGACGACGCGATGGAGATCGACGTCGACGCCCTGTTCGACGGCGACGAGCTGTTCCTCGGCGGCGTCATGGAGCACATCGAGGAGGCCGGCATCCACTCGGGCGACTCGGCCTGCGTGCTGCCGCCGGTGTCCCTGAGCCAGGCCGAGGTCGAGCGCATCCGCCGCTCGACCGAGGCCATCGCCCGGGGTGTGGGCGTGCGCGGTCTGCTCAACGTCCAGTACGCCCTCGTCTCTGACGTGCTGTACGTCCTGGAGGCCAACCCGCGCGCCTCGCGCACCGTGCCGTTCGTGTCCAAGGCCACGGGGGCGTCGCTGGCCAAGGCCGCCGCGCGCGTGATGGTCGGCGAGTCGATCGCGGACCTGCGCGCCGAGGGCGTCCTGCCGCCCACGGGCGACGGCGGCACCCTCGACCTGGGGGCGCCGCTGGCCGTCAAGGAGGCGGTGCTGCCGTTCAAGCGGTTCCGCACCGCCGAGGGGCACGTGGTGGACACGGTGCTCGGTCCGGAGATGCGCTCGACCGGCGAGGTCATGGGCTTCGACAAGGACTTCCCGCACGCGTTCGCCAAGTCCCAGGCCGCGGCCTACGGCGGGCTGCCGACGGCGGGCACCGTGTTCGTCTCCGTGGCCGACCGGGACAAGCGCTCGATCGTCTTCCCGGTCCAGCGCCTGGCGGACATCGGCTTCGAGGTGCTGGCCACGGCCGGCACCGCCCAGGTGCTGGCCCGCAACGGCATCGCGGCCACCACGGTGCGCAAGTACTCCGAGGGTCCGGGGGCGGACGGCGAGCCGACCGTCGTCGACCTGATCGGCGAGGGGAAGGTCGACCTGGTCGTCAACTCCCCGTCCGGCCAGGGTGCCCGAGCCGACGGCTACGAGATCCGCGCGGCCACCACCGCCGCGGACCGGCCGATGGTCACCACTGTCGACCAGCTCGCCGCGGCGGTGCAGGGCATCGAGGCGGTGCGCGGTGGGCCGTTCGACGTCGCGAGCCTGCAGGAGCACACCGCGGCCACGGTGGCCCGCCGCGAGACGGGCGGGGCCGTCGGGGTGGGCGCATGAMPRRSDLSSVLVIGSGPIVIGQACEFDYSGTQACRVLKEEGLRVVLVNSNPATIMTDPEFADATYVEPITREVLTSIIAKERPDALLPTLGGQTALNAAIELHEAGVLDEYGVELIGANIPAIRKGEDREEFKEVVEVCGGESARSRIIHSIDGALEAAEDLGYPMVVRPSFTMGGLGSGLAYDEADLRRIVGQGLHYSPVTEVLLEESILGWKEYELELMRDKNDNVVVVCSIENVDPVGVHTGDSVTVAPAMTLTDREYQTLRDIGIAVIREVGVDTGGCNIQFAVEPDTGRVVVIEMNPRVSRSSALASKATGFPIAKIAAKLAVGYTLDEIPNDITQVTPASFEPTLDYVVVKVPRFAFEKFPAADDTLTTTMKSVGEAMALGRNFTEALGKALRSIDKGGVDFHWSGEAPSGEELTALLESLRRPTEQRLVGVQQALRAVEAGHATLEQVFDATKIDPWFLDQILLINEVAAEVAASETLTADVLRTAKRHGISDVQIAALRSMGPGGEAGVRETRHALGVRPVYKTVDTCAAEFAARTPYHYSSYDTETEVSPREREAVIILGSGPNRIGQGIEFDYSCVHAALTLKDDYETVMVNCNPETVSTDYDTSDRLYFEPLTFEDVLEVYEAELAAGPVKGIIVQLGGQTPLSLAQRLSDAGLPILGTSPEAIDAAEDRGLFGQVLAEAGLPAPAFGTARSLGEARDVADRIGYPVLVRPSYVLGGRGMEIVYSAEQLTGYVERALEAAAAHAVSSRAPGVLPAPLLIDRFLDDAMEIDVDALFDGDELFLGGVMEHIEEAGIHSGDSACVLPPVSLSQAEVERIRRSTEAIARGVGVRGLLNVQYALVSDVLYVLEANPRASRTVPFVSKATGASLAKAAARVMVGESIADLRAEGVLPPTGDGGTLDLGAPLAVKEAVLPFKRFRTAEGHVVDTVLGPEMRSTGEVMGFDKDFPHAFAKSQAAAYGGLPTAGTVFVSVADRDKRSIVFPVQRLADIGFEVLATAGTAQVLARNGIAATTVRKYSEGPGADGEPTVVDLIGEGKVDLVVNSPSGQGARADGYEIRAATTAADRPMVTTVDQLAAAVQGIEAVRGGPFDVASLQEHTAATVARRETGGAVGVGAPGPT0021150_585DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021150-carB-K01955NANA
AK018_034391275carA_2COG0505Carbamoyl-phosphate synthase small chainGTGAGCACCACCACCCGCAGCACCGAACCGGCGATCCTCGTCCTGGAGGACGGCACCGTCGCCCGTGGCACCGCCTACGGCGCCCGCGGCGCCACCGTCGGCGAGATCGTCTTCTCCACCGGCATGACCGGGTACCAGGAGACCCTCACCGACCCGTCCTACCACCGCCAGATCGTCGTGATGACCGCCCCGCACGTGGGCAACACCGGCATCAACACCGACGACCCCGAGTCGCTCCGCATCTGGGTCGCCGGGTACGTCCTGCGCGACCCGGCGCGGCGCCCCTCGAACTGGCGCGCCACCGGCAGCCTCGACGACGACCTGGCCGCCCAGGACGTGGTGAGCATCGCCGGCGTCGACACCCGGTTCCTGACCCGGCACCTGCGCGAGCTCGGGGTCATGCGCGCCGGGATCTTCTCCGGCGAGGCGCTGGTGGAGGACGGCGTCGAGCGCGACGTCGCCGACCTCGTCGCCGAGGTCAAGGCCGCCCCGCCCATGGCCGGCGCCGACCTGGCCCGCGAGGTCTCCACGGCCGAGACCTACACCGTCGAGCCCGCCGGCGACTTCGCCGGCGCCGAGCCGGTGGCCACCGTCGTGGCCGTCGACCTCGGCATCAAGGCCATGACGCCCGCCCGGCTCGCCGAGCGCGGCGTGCGCGTGCACGTCGTGCCGCAGTCGGCCTCCTTCGACGACGTCGCCGCGCTCCTGCCCGAGGACGCGCCCGGCGGCGTGTTCTTCTCCAACGGTCCCGGCGACCCGTCCGCCACCACCGCGGAGATCGACCTGCTGCGCGAGGTGCTGGACCGCCGCATCCCGTTCTTCGGCATCTGCTTCGGCAACCAGCTCCTCGGCCGTGCCCTCGGCTACGGCACCTACAAGCTCGGCTACGGTCACCGCGGCATCAACCAGCCCGTCCTGGACCGCACGACCACCAAGGTCGAGGTCACCGCGCACAACCACGGCTTCGCCGTCGACGCCCCCGTCGAGACCGTCAGCACCGCGCCGCACGACGCCGAGCGGGACGACGACGTGCGCTACGGGCGCGTGATCGTCTCCCATGTCGGCCTCAACGACCGGGTCGTCGAGGGCCTGACCGCCCTGGACCTGCCCGCCTTCTCGGTGCAGTACCACCCCGAGGCGGCCGCCGGGCCGCACGACAGCGCCTACCTGTTCGACCGCTTCGTCGAGCTCATGACCACCCGCCAGCCCGTGGCCGTCCCCGACAGCGCGCTCGCCGCACTGGGCGGCGCCACCTCCGGCGAGAAGGAGAACTGAMSTTTRSTEPAILVLEDGTVARGTAYGARGATVGEIVFSTGMTGYQETLTDPSYHRQIVVMTAPHVGNTGINTDDPESLRIWVAGYVLRDPARRPSNWRATGSLDDDLAAQDVVSIAGVDTRFLTRHLRELGVMRAGIFSGEALVEDGVERDVADLVAEVKAAPPMAGADLAREVSTAETYTVEPAGDFAGAEPVATVVAVDLGIKAMTPARLAERGVRVHVVPQSASFDDVAALLPEDAPGGVFFSNGPGDPSATTAEIDLLREVLDRRIPFFGICFGNQLLGRALGYGTYKLGYGHRGINQPVLDRTTTKVEVTAHNHGFAVDAPVETVSTAPHDAERDDDVRYGRVIVSHVGLNDRVVEGLTALDLPAFSVQYHPEAAAGPHDSAYLFDRFVELMTTRQPVAVPDSALAALGGATSGEKENPGPT0021155_311DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021155-carA-K01956NANA
AK018_03440555hypothetical proteinATGAACCTGCCCCTGCCCGTCGCCGTCGCGATCTGGGTCGTCGTCGGCCTCGCGCTGCTCCTGCTCGTCCTGACCGGCCGCCGCCGGCTGGCCACCCGCACCCGCCACCTCGTGCCCGCCCCGCCGCAGCCGCCGCTGACCGAGGGCGAGCTCGGCGAGCTGGTCGTCGGCCCGGTCGAGGCCGTCTACGTCTCCAGCACGCTGCACGGCGACTGGCTGGCCCGCCTCGGCGCCCACGGCCTCGGCGACCGGTCGCACGCCGAGGTCGGCGTGTACGCCGGCGGCGTCGTGGTCGACCGGGACGGCGCCGAGCCGCTGCTGCTGCCCGCCGCGGCGCTGCGTGCCGCCGGCACGGCGCCCGGCATGGCCGGCAAGTACGTCGGCCGCGACGGCCTGGTCGTGCTGACGTGGCAGGTGCCGAGCGACGGCGCCGTCGAGGCCACGACCGTCGACACCGGCCTGCGCACGCGTCACCGCGCCGACAGCGACCGCCTCCTGGAGGCCGTGCGGCCCCTCATCATCCCGTCCGAGCCGAGCGCGAAGGATCACCCGTGAMNLPLPVAVAIWVVVGLALLLLVLTGRRRLATRTRHLVPAPPQPPLTEGELGELVVGPVEAVYVSSTLHGDWLARLGAHGLGDRSHAEVGVYAGGVVVDRDGAEPLLLPAAALRAAGTAPGMAGKYVGRDGLVVLTWQVPSDGAVEATTVDTGLRTRHRADSDRLLEAVRPLIIPSEPSAKDHPNANANANANA
AK018_034411338pyrC_2COG0044DihydroorotaseGTGAGCCTGGAGTCCACCACCTACGTCCTGCGGGGGGCACGCCTCCTGGGCGGCGACGCCGCCGACGTCGTGCTGCGCGACGGCGTGATCGCCGAGATCACGGCCGCGGGCACGGCCGACACCACCGGTGCCGAGGTCGTCGACGCCGCGGGGCAGGTCCTGCTGCCCGGTCTGGTCGACCTGCACACCCACCTGCGCGAACCCGGCCGCGAGGACGCCGAGACCGTGGCGTCGGGGACGCGCGCCGCCGCGGCCGGCGGGTTCACCGCCGTGCACGCGATGGCCAACACCTCCCCGGTGGCCGACACGGCCGGCGTCGTCGAGCAGGTCTACCGGCTGGGGCAGGAGGCCGGCTGGGCCGACGTCCACCCCGTCGGCGCCGTGACGGTCGGGCTCGACGGCGAACGGCTCGCCGAGCTGGGGGCCATGGCCGACTCGGCGGCGCACGTGCGCGTCTTCTCCGACGACGGCAGGTGCGTCGCCGACCCCGTGCTGATGCGCCGCGCCCTGGAGTACGTCAAGGCCTTCGACGGCGTCGTGGCCCAGCACGCGCAGGAGCCCCGGCTGACCGAGGGCGCCCAGATGAACGAGGGGATCGTCTCCGCCGAGATCGGCCTGACCGGCTGGCCCGCCGTCGCCGAGGAGGCGATCATCGCCCGCGACGTGCTGCTCGCCGAGCACGTCGGCTCGCGGCTGCACGTGTGCCACCTGTCCACCGCCGGCTCGGTGGAGATCGTGCGGTGGGCCAAGTCCCGCGGCATCGACGTCACCGCCGAGGTCACCCCGCACCACCTGATCCTCACCGACGACCTCGCCCGCAGCTACGACCCGACGTTCAAGGTCAACCCGCCGCTGCGCACCGCCGCCGACGTCGAGGCCGTGCGCGAGGGCCTGGCCGACGGCACCATCGACATCGTGGCCACCGACCACGCCCCGCACAGCCGCGAGGACAAGGACTGCGAGTGGGGCGCGGCCGCCTTCGGGATGACCGGGCTGGAGACGGCGCTGAGCGTCGTGCAGGAGACCATGGTCGACACCGGCCGCCTGACCTGGTCCGACGTCGCCCGCGTGCTGTCCGCCGCACCCGCCCGGATCGGCCGCGTCGACACCGGCCCCGCCGCGCAGGGACGACCCGTCGCGGTCGGCGAGCCCGCCAACCTGACCCTGGTCGACCCGGCCGCCCGCCGGACCGTCGACGGCGGCACGCAGGTCACCGCCAGCGGGAACACCCCGTTCCGGGGCCGCGAGCTGCCCGGTCAGGTCCGCGCGACGTTCCTGCGCGGCCGCGCGACCGTGCTGGACGGCACCCCGGTCGTGGCGGGGGAGGCGGTCCGATGAMSLESTTYVLRGARLLGGDAADVVLRDGVIAEITAAGTADTTGAEVVDAAGQVLLPGLVDLHTHLREPGREDAETVASGTRAAAAGGFTAVHAMANTSPVADTAGVVEQVYRLGQEAGWADVHPVGAVTVGLDGERLAELGAMADSAAHVRVFSDDGRCVADPVLMRRALEYVKAFDGVVAQHAQEPRLTEGAQMNEGIVSAEIGLTGWPAVAEEAIIARDVLLAEHVGSRLHVCHLSTAGSVEIVRWAKSRGIDVTAEVTPHHLILTDDLARSYDPTFKVNPPLRTAADVEAVREGLADGTIDIVATDHAPHSREDKDCEWGAAAFGMTGLETALSVVQETMVDTGRLTWSDVARVLSAAPARIGRVDTGPAAQGRPVAVGEPANLTLVDPAARRTVDGGTQVTASGNTPFRGRELPGQVRATFLRGRATVLDGTPVVAGEAVRPGPT0021145_1776DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021145-pyrC-K01465NANA
AK018_03442990pyrB_2COG0540Aspartate carbamoyltransferaseATGAAGCACCTGCTCTCGACCGCCGACCTGAGCAAGGACGAGGCGGTCCTGCTGCTGGACACCGCGGCGCAGATGGCCGCGACCCAGTCGCGCGAGATCAAGAAGCTGCCGACGCTGCGCGGCCGCACCGTGGTCAACCTGTTCTTCGAGGACTCCACCCGCACCCGCATCTCCTTCGAGACCGCGGCCAAGCGGTTGTCGGCCGACGTCATCAACTTCTCGGCCAAGGGCTCGAGCGTGTCCAAGGGCGAGTCGCTCAAGGACACGGCACTGACGCTGCACGCGATGGGCGCCGACGCCGTGGTCGTGCGGCACTGGGCCTCCGGCGCCCCGTACCAGCTCGCGCACGCCGGCTGGCTCGACGCGGGCGTGCTGAACGCCGGCGACGGCACCCACCAGCACCCGACCCAGGCGCTTCTGGACGCCTACACGATCCGCCGTCACCTCGTGGGTCTCCGCGGCGGTGCCGGGGAGGGTGTCGGCGCGGACCTGGCCGGGCTGCGGGTCGCGATCGTCGGCGACGTGCTGCACTCCCGGGTCGCACGGGCGAACGTGGCGCTGCTGCACACCCTCGGCGCCGAGGTCACGCTCGTCGCCCCGCCCACGCTGGTGCCCGTCGGCGTGGAGACGTGGCCGTGCGCCGTGTCGTACCACCTCGACGAGACGCTGGCCGAGTTCCGGCCCGACGCCGTGATGATGCTGCGCGTCCAGCGCGAGCGGATGTCGGGCGGCGCCGGCGGGTTCTTCCCGAGCCCGCTGGAGTACACCCGCTACTACGGACTGGACGCCCGGCGCCTGGCGCGCCTGGCCGACCACGCGATCGTGCTGCACCCCGGCCCCATGAACCGCGGCCTGGAGATCTCCGCCGAGGCGGCGGACTCCGACCGCGCCGTCATCGTCGAACAGGTCGCCAACGGCGTCGCGGTGCGCATGGCGGCCCTCTACCTGCTGATGGCCGGGGAGGACTCGGCGGAAGGGAACGACCTGTGAMKHLLSTADLSKDEAVLLLDTAAQMAATQSREIKKLPTLRGRTVVNLFFEDSTRTRISFETAAKRLSADVINFSAKGSSVSKGESLKDTALTLHAMGADAVVVRHWASGAPYQLAHAGWLDAGVLNAGDGTHQHPTQALLDAYTIRRHLVGLRGGAGEGVGADLAGLRVAIVGDVLHSRVARANVALLHTLGAEVTLVAPPTLVPVGVETWPCAVSYHLDETLAEFRPDAVMMLRVQRERMSGGAGGFFPSPLEYTRYYGLDARRLARLADHAIVLHPGPMNRGLEISAEAADSDRAVIVEQVANGVAVRMAALYLLMAGEDSAEGNDLPGPT0021160_1175DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021160-pyrB-K00609NANA
AK018_03443606pyrR_2Bifunctional protein pyrRTTGCGCCCTGGACCTGTCCTGCCCGCAGACCCGCACCCGGACGGCACCACCGTCCTCGGCGCGAGCGACGTCGCTCGCGCCCTGACCCGCATCGCCCACGAGATCGTCGAACGCGCCAAGGGCGCCGACGACGTGGTGCTCCTCGGCATCCCGACCCGCGGGGTGACGCTCGCCCACCGGCTCGCCGAGCGGCTGTCGGCCATCGAGCCCGCCTTCGACGCCGTCGCGAGCACCGGCGAGCTCGACGTGACGATGTACCGCGACGATCTGCGCCGCCAGCCCACGCGCGCCGTCGGTGTGACCCGCCTGCCGCGGGCCGGGATCGAGGGACGCACCGTCGTCCTCGTCGACGACGTGCTGTACTCCGGGCGGACCATCCGCGCCGCGCTGGACGCGATCGGCGACCTCGGCCGGCCGCGGGCCGTGCGCCTGGCCTGCCTGGTCGACCGCGGGCACCGCGAGCTGCCCATCCGCCCGGACTTCGTGGGCAAGAACCTGCCGACCTCCACCTCGGAGCGCGTGCGCGTCCTGCTGAGCGAGGTCGACGGCGTCGAGGACGCCGTGGTCATCTCCGGCCGCGAGGACACCGAGGGGGACGCGCGATGAMRPGPVLPADPHPDGTTVLGASDVARALTRIAHEIVERAKGADDVVLLGIPTRGVTLAHRLAERLSAIEPAFDAVASTGELDVTMYRDDLRRQPTRAVGVTRLPRAGIEGRTVVLVDDVLYSGRTIRAALDAIGDLGRPRAVRLACLVDRGHRELPIRPDFVGKNLPTSTSERVRVLLSEVDGVEDAVVISGREDTEGDARPGPT0021245_183DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021245-pyrR-K02825NANA
AK018_03444417nusB_2COG0781Transcription antitermination protein NusBGTGGGAGCACGGACCAAGGCGCGCAAGCGCGCCGCCGACATCCTCTTCGAGTCCGAGCAGCGCCAGATCGACCCGCTGGTGCTCCTCGCGGACCGCGTGATCGAGCCGCACGCCGAGGCGAGCGTGCCGCAGTACACGGTCGAGCTCGTCGAGGGCGTCGTCGCTCACCGCGAGCGCATCGACGAGCTGCTCGAGACCTACTCGCACGACTGGACGCTGGCGCGCATGCCGGCCGTGGACCGGTCGCTGCTGCGCGTGGGCGCCTACGAGCTGCTCTACAACGACGACGTGCCGGACGCCGTCGCCGTCGACGAGGCGGTGGACCTGGCCGGCCAGCTGTCCACGGACGACTCGCCGAGCTTCGTCAACGGCGTCCTGGGCCGGCTGATGGACATCAAGCCGACGCTGCTGGACTGAMGARTKARKRAADILFESEQRQIDPLVLLADRVIEPHAEASVPQYTVELVEGVVAHRERIDELLETYSHDWTLARMPAVDRSLLRVGAYELLYNDDVPDAVAVDEAVDLAGQLSTDDSPSFVNGVLGRLMDIKPTLLDNANANANANA
AK018_03445564efp_2COG0231Elongation factor PGTGGCTACCTCCAACGACATCAAGAACGGCACCGTGCTGCGCATCGACGGCCAGCTCTGGTCCGTTCTCGAGTTCCAGCACGTCAAGCCGGGCAAGGGTGGCGCGTTCGTCCGCACCAAGCTCAAGAACGTGCTCTCGGGCAAGGTGGTCGACAAGACGTTCAACGCCGGCGCGAAGGTCGAGACGGCCAACGTCGACCGCCGCGACTACCAGTACCTGTACATGGACGGCGAGGACTTCGTCTTCATGGACACCGACACCTACGACCAGATCCCGGTCTCCGCCACGGTCGTCGGCGGCGCCCAGGACTACATGCTCGAGGGCATGAGCGTCATGGTGGCCATGAACGAGGGTGTCCCGCTGTACGTCGAGCTGCCCCCGTCGGTCGTCCTGGAGATCACCTACACGGAGCCGGGCCTGCAGGGCGACCGCTCGACGGGCGGCACCAAGCCCGCCACGCTGGAGACCGGTGCCGAGGTCCAGGTCCCGCTGTTCCTCGACCAGGGCACCAAGGTCAAGGTCGACACCCGCGACGGGTCGTACCTGGGCCGCGTGAACGACTGAMATSNDIKNGTVLRIDGQLWSVLEFQHVKPGKGGAFVRTKLKNVLSGKVVDKTFNAGAKVETANVDRRDYQYLYMDGEDFVFMDTDTYDQIPVSATVVGGAQDYMLEGMSVMVAMNEGVPLYVELPPSVVLEITYTEPGLQGDRSTGGTKPATLETGAEVQVPLFLDQGTKVKVDTRDGSYLGRVNDPGPT0016205_2963DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-SWARMING_REGULATOR,PGPT0016205-efp-K02356NANA
AK018_03446375hypothetical proteinATGGACGTGTGGTGGACGGTCGGCATCTGGGCGGCCACGCTCGCCCTCAGCGTCGGGCTGGGTGCCTGGCTCGTCCCGCTCGTGCTGCGGCACGCCGAGTCGCGCACCGCGGCGCAGGCGCAGGCCGAGGCGCTGGCGGTGCTGGGCAACGGGACCTGGATCGGGCTGCTGGAGCGGTTCGCGATCAGCGGCACGCTGCTGGCCGGCTACCCGGAGGGTGTCGCCGTCGTGGTGGCGGTCAAGGCCCTGGGCCGGCTGCCCGAGCTGCGCGAGCACCCCGTGGCCGGCGAGCGCTTCGTCGTGGGCAGCCTGGCGTCGCTGGTGTGGGCAGGGTCGCTCGGGATGGCGGGGCAGGCGCTGCTGGTGTCCCTGTAGMDVWWTVGIWAATLALSVGLGAWLVPLVLRHAESRTAAQAQAEALAVLGNGTWIGLLERFAISGTLLAGYPEGVAVVVAVKALGRLPELREHPVAGERFVVGSLASLVWAGSLGMAGQALLVSLNANANANANA
AK018_03447681hypothetical proteinATGATCGTCCTGACCGTCGACCAGCGCGACAGCACCTCGCGCGGCGACCTGGTGCCGCAGGTGCTCGAGCTGCTCGGCGACCGCACGACCGACGACGGCCGCCCGCGGGCCGGGGTCCGGGTCGCGTTCGACCGCACGGTCGGAGACGAGGTCCAGGGGGTGCTCGACGGCGACGACGGGGCGGCCCTGGCGGTGGCCGTCGTGGCCGACCTCCTGCGCGAGGGAGGCTGGTCGGTCGGCGTCGGGGTCGGCGTCGTGCACGAACCGCTGCCCGCCGCGTCCCGGGCGGCCTCCGGCCCCGCCTTCGTCCGGGCGCGCGAGGCCGTCGAGGACGCCAAGCGTCGCGGGCACGTCGTCCCGGTCGCCGTCGTGGGGACGCCGGAGGAGCCGGGGGTCACCATCGCCGCGGACGCCCAGGCGCTGCTGCGGCTGCTGGGTGCGGTCGCGGCGCGTCGGTCCGCGGCCGGCTGGGAGGCCGTCGATACGCTCGGGCGGCACGAGGCGTCGGCGGCGCCGCAGCGGGAGACGGCGGAGGCGTTGGGCGTGAGCGAGCAGGCGGTCAGCCAGCGGTTGCGCACCGCCCTGTGGGCCGAGGAGCAGGCGGTCCGCCCGCTGGCGGCCCGGCTGCTGCGGGCGGCCGACGCGGCGGCGGGCGCGGCCGACGGCGCGGGGGAGGACTGAMIVLTVDQRDSTSRGDLVPQVLELLGDRTTDDGRPRAGVRVAFDRTVGDEVQGVLDGDDGAALAVAVVADLLREGGWSVGVGVGVVHEPLPAASRAASGPAFVRAREAVEDAKRRGHVVPVAVVGTPEEPGVTIAADAQALLRLLGAVAARRSAAGWEAVDTLGRHEASAAPQRETAEALGVSEQAVSQRLRTALWAEEQAVRPLAARLLRAADAAAGAADGAGEDNANANANANA
AK018_03448456yqhSCOG07573-dehydroquinate dehydrataseATGACTGACACGCCGCACGTGATGATCCTCAACGGCCCCAACCTCGGTCGGCTCGGCGTCCGCGAGCCGGAGATCTACGGCCACGCGTCGATGGCGGACCTGCGCGTCGAGTCCGACGGGTGGGGGACCCGGCTGGGCCTGGACGTCGAGGTGCGGCAGACCGACGACGAGGCGGAGCTCGTGCGGTGGCTGCACGAGGCGGTGGACACGCGGTCGCACGTGGTGCTGAACCCGGCGGCCTTCACGCACTACAGCTACGCGCTGCGGGACGCGGCCGCCCAGGTGACGACGTCGTCGCTGCTGCTGGTGGAGGTGCACCTGTCGAACCCGGCCGCCCGGGAGTCGTTCCGGCACTACTCCGTCGTCGCCGGGATCGCGACGGGCACGGTGGCGGGGTTCGGCTTCGACTCCTACCGTCTGGCCCTCGAGGCCGTGGCGCACAAGCTCTCACGCTAGMTDTPHVMILNGPNLGRLGVREPEIYGHASMADLRVESDGWGTRLGLDVEVRQTDDEAELVRWLHEAVDTRSHVVLNPAAFTHYSYALRDAAAQVTTSSLLLVEVHLSNPAARESFRHYSVVAGIATGTVAGFGFDSYRLALEAVAHKLSRPGPT0012905_1025DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_QUINATE_CATABOLISM,PGPT0012905-aroQ|qutE-K03786NANA
AK018_03449435hypothetical proteinGTGCCGACCCTCGACGCCGAGACCTGCCGTCGCCGGTTCGCGGCGGAGCGTCGCGCCGTCCTGGCCACGTCGGCCGGGGACGTCCCGCACCTCGTGCCGGTGACCTTCGCGCTCGCGCCCGGACTCGACGGCGATCCCGAGCGGGTCGACGTCGTCACCGCCGTGGACCACAAGCCGAAGCGGTCGACCGACCTGCGCCGGCTGCGCAACCTGCGGGCCAACCCGCGCGCGGCGATGCTCGTCGACCGCTACGACGACGACTGGGACCGGCTGTGGTGGGTCCGGGTCGACGGCGCCGTGCGCCTGGACGGCACCGGTCGCGAGGAGGCGCTCGACGCGCTGGCGCAGCGGTACGCCCCCTACCGCCGGTGGCGACCCGAGGGCCCGGTGGTCCGGCTCGTGCCGACGCGGTGGAGCGGCTGGTCGGCGCGGTGAMPTLDAETCRRRFAAERRAVLATSAGDVPHLVPVTFALAPGLDGDPERVDVVTAVDHKPKRSTDLRRLRNLRANPRAAMLVDRYDDDWDRLWWVRVDGAVRLDGTGREEALDALAQRYAPYRRWRPEGPVVRLVPTRWSGWSARNANANANANA
AK018_03450366hypothetical proteinATGGGAGAGGTCAGCGCGTACGTGGAGTCGTTGGACGGCCCGGACCGGGAGGCGGTCGCCGACGTCCTGGACCGTGCCCGCCGGACGGTCCCGGAGGCCACCGAGGGCAGGAGCTACGGCATGCCCGCCCTGCGGTACCGCGACAGCCCGCTGCTCAGCGTCGTCGCCACGGCCCGGCACGTCGGGGTGTACCCGTTCAGCCCGGCGGTGATCGCGGCGCTCGCGGACCGGCTCGAGGGCTTCCGGGTCACCAGGGGATCGATCGGGTTCCGTCCCGGGCATCCGCTGCCCGACGACGTCGTGGAGCGCCTCGTGGTGCTGCGTCGCGAGGAGATCGACGCGATGCACGCCGGGCGACCGGGCTAGMGEVSAYVESLDGPDREAVADVLDRARRTVPEATEGRSYGMPALRYRDSPLLSVVATARHVGVYPFSPAVIAALADRLEGFRVTRGSIGFRPGHPLPDDVVERLVVLRREEIDAMHAGRPGNANANANANA
AK018_034511377hypothetical proteinATGAGCGACCCCACACCGGCGGCACCCTCGGGCCACGACGCCTCGGCCGCGTTCGCCGCGCTGCCCCCGACCGAGCGCCGCCGCCGGGTGGTGGCCTGGGCGCTGTGGGACTGGGCGACCCAGCCGTTCAACACGGTGATCGTCACCTTCGTGTTCACGGCCCTGTACCTGACCAGCGACGCCTTCCTGGACCCCGACGCCGCGGCGCTGGCCGCCGACGACCCGGCCCGCGACAGCGCCCTGGCCACGCTGTCCAGCGGGCTGGGCGCCTGGATCACCGTCGGGGGAGTGCTGGTCGCGCTGCTCGCCCCGGTCCTCGGCCGTCGCGCGGACGTCACCGGGCGCCGCAAGGCCTGGCTCGCCGGCGGCACCGTGGTGCTCGTCGCAGCCATGTTCGGCCTCGGCTTCGTGCGGGCCGACCCGGCGTACTTCGCGCTCGGGGCCGCGCTGGTGTCGCTGGGCAGCGTGGCGGGGGAGATCGCCGGGGTGAACTACAACGCCATGCTCACCCAGGTCTCCACCCGCGACACGGTCGGTCGGGTCTCCGGGCTCGGCTGGGGACTGGGGTACGTGGGCGGCATCGTCGCGCTGGTGCTGGTCGTCGTGGCCGACGGCGCCGACTTCTTCGGCATGGACACCTCCGACGGCTGGGGCTACCGCGCCATCGCCCTCGGGTGCGGCCTGTGGGCCGTGGCCTTCGCCTGGCCGTTGTTCCGCCGCGTGCCGGAGGCGCCCGCCGCCGCCGACCGGCCGCGGGTGGGGTTCTTCGCCGGGTACGTCGAGCTGTGGCGCGACGTCGTCGACCTGTGGCGGCACGCCCGCACCACCTTCTGGTTCCTGCTGGCCAGCGCCGTCTACCGCGACGGACTCGCCGGGGTGTTCACGTTCGGCGCGATCGTCGCCGCCGTCTCCTACGGGTTCGACGACACCGAGGTCATCGTCTTCGGCATCGCCGCGAACCTCATCGCCGGGGTGAGCACCATCGTGGCCGGGCTGTTCGACGACCGGCTCGGGCCGCGGACCGTCATCCTGTGGTCGCTGGCGGCCCTGGTGCTGTGCGGCACCGTCATCGTGGCGCTCTACCCCCTGGGCACCGGCGTGTTCTGGGTCGCCGGCCTGGCCCTGACCGCGTTCGTCGGACCGGCACAGTCCGCCTCCCGGTCCTTCCTGGCACGCGTCACCCCGGCTGGCCGCGAGTCCGAGGTGTTCGGCCTGTACGCGACCACCGGGCGCGCCGTCTCCTTCCTCACCCCGGCGCTGTGGACCGCCGTGATCGCCCTGACCGGCGCCACCCTCTGGGGCACGCTGGCGATCGTCGCCGTGCTCCTGGCCGGGCTCGTGCTCATGCTCGTGGTCACCGACCCCGCCGAGCGCTGAMSDPTPAAPSGHDASAAFAALPPTERRRRVVAWALWDWATQPFNTVIVTFVFTALYLTSDAFLDPDAAALAADDPARDSALATLSSGLGAWITVGGVLVALLAPVLGRRADVTGRRKAWLAGGTVVLVAAMFGLGFVRADPAYFALGAALVSLGSVAGEIAGVNYNAMLTQVSTRDTVGRVSGLGWGLGYVGGIVALVLVVVADGADFFGMDTSDGWGYRAIALGCGLWAVAFAWPLFRRVPEAPAAADRPRVGFFAGYVELWRDVVDLWRHARTTFWFLLASAVYRDGLAGVFTFGAIVAAVSYGFDDTEVIVFGIAANLIAGVSTIVAGLFDDRLGPRTVILWSLAALVLCGTVIVALYPLGTGVFWVAGLALTAFVGPAQSASRSFLARVTPAGRESEVFGLYATTGRAVSFLTPALWTAVIALTGATLWGTLAIVAVLLAGLVLMLVVTDPAERNANANANANA
AK018_03452876hypothetical proteinGTGCGATCTCCCCTGCGCAGCCTCCAGCGCCGAGCCGGCCGCCTGCTGTTCGAACAGGTCTCCGGCGGCAGCGCCGGGCGCGACGCGCGCGAACGCATCCACACCAGCCCCGGGCCACGCTGGTTCGCCGACGACTCCGCCGTCGCCCGCGTGCACGGCGACGCCTCGATGTTCGTCGGCGGGGTCCGCGCCCTGCTGCTGCAGTCCCTCCACCCCCTGGCCATGGCCGCCGTCGCCGACCACTCCGGCTACCGCGGCGACCCGTGGGGACGCCTCGGGCGCACCAGCACCTTCCTCGCCGAGACCACGTTCGCCACGGCCGACGACGCCCAGCAGGCCGTCGACGTCGTCCGCGCCGTGCACGCCCGTGTCCGCGGCGTCACCCCCGACGGCCGCCCCTACGCCGCCGACGACCCGTGGCTGCTGCGCTGGGTGCACGTCGCCGAGGTCGACAGCTTCCTCGCCGCCCACCAGCGCTACGGACGCCGCCCCCTCGACCGCGCCGGCTGCGACGCCTACCTCGCCCAGACCGCGACCGTCGCCGACCGGCTCGGCGCCGAGCGTCCGCCGCGCACCCTCGCGGCGCTGCGTGCCGCCCTCGGCGAGTACCGCGACGAGCTCGAGGCCACCGACGCCTCCCGCGACGTCGCGCGCTTCCTGCTGTCCGAGCCGCCCCTGCCGCGCCTCGCCCGCGCCCCCTACGCCCTCCTCGGCGCCGCCTCGTACGCCTCGATGCCGCGCTGGGCCCAGGAGCTGACGCCCGCCCCCTGGCCGCTGCACGGCGAACCCGCCCTCGTGCGTGCCGGCGGGCACGTGGCCACCCGGGCGATCCGCTGGGCGCTCGCCGGTGACCCGCCGCCGCGCCGGCCGGCCTGAMRSPLRSLQRRAGRLLFEQVSGGSAGRDARERIHTSPGPRWFADDSAVARVHGDASMFVGGVRALLLQSLHPLAMAAVADHSGYRGDPWGRLGRTSTFLAETTFATADDAQQAVDVVRAVHARVRGVTPDGRPYAADDPWLLRWVHVAEVDSFLAAHQRYGRRPLDRAGCDAYLAQTATVADRLGAERPPRTLAALRAALGEYRDELEATDASRDVARFLLSEPPLPRLARAPYALLGAASYASMPRWAQELTPAPWPLHGEPALVRAGGHVATRAIRWALAGDPPPRRPANANANANANA
AK018_03453945hypothetical proteinGTGGCGACGACCTGGCGGCGCGACGACCTGCTGGGCGCGCCGTTCGAGAGCACGGCGCTCGGCGCGGCGACCCTGGTGCGCTCGGCGCACGCCCCGGCGCGGCCGCGGGCGGTGGTGCTGCACGTGCACGGCTACAACGACTACTTCTTCCAGGACCACCTCGCCCGCGCCCTCGAGGAGCGCGGGCACGCCCTGGTGGCCGTGGACCTGCCGGGGGCGGGACGCTCGCTCGTCGAGGGCCGGGTCCCGCACTTCGTGACGGACCTGCGCGAGCAGGGGCCCGCGCTGACGGCGGCGGTCGGCGCCGCGCGCGAGCTGGCCGGCGGCGCCCCGGTGGTGCTGCACGCCCACTCCACGGGCGGGCTGCTGGCCGCGCTGTGGGCGCACGCGCACCGCGGCCGGGGCGAGATCGACGCCCTGGCGCTGGACAGCCCGTTCCTGGACCTGCACGCCTCGTGGCTGCAGCGCACCCTGGGCACCTGGGTGCTCGACGCCGTCGGGCCGTGGTCGCCGACGGCGGTGCTGTCGGCGACGCCGTCGGTGTACGCCACCCACCAGCTCACGGCGCACGGCGGCCGGTGGGAGTTCGACGTCCGGCTGAAGAAGCCGGGCGGCGAGCCGGTGCGGGCGGGCTGGCTGCGGGCGGTGCGCCGCGGTCAGGCCCGCGTGGCACGCGGGCTGGCGATCGACGTGCCGGTGCTCGTGGCCCGCTCGGACCGGTCGGGGCCGGACTCCGTGGCCAACCCGGACCTCGACGTCCAGGACACGGTCCTGGACGTCGCCCAGATCGCCCGGCTGGCCCCGCGGCTGGGCGACCGCGTCGACATGCTGACGGTGCCGGGCGGCGTGCACGACCTCCTGCTGTCCCGCGAGGAGCCCCGGCTGCGCTACCTCACCGGTCTGATGGGCTGGGTGGACGACGTCGTGGCAGGGTCGGGGGCATGAMATTWRRDDLLGAPFESTALGAATLVRSAHAPARPRAVVLHVHGYNDYFFQDHLARALEERGHALVAVDLPGAGRSLVEGRVPHFVTDLREQGPALTAAVGAARELAGGAPVVLHAHSTGGLLAALWAHAHRGRGEIDALALDSPFLDLHASWLQRTLGTWVLDAVGPWSPTAVLSATPSVYATHQLTAHGGRWEFDVRLKKPGGEPVRAGWLRAVRRGQARVARGLAIDVPVLVARSDRSGPDSVANPDLDVQDTVLDVAQIARLAPRLGDRVDMLTVPGGVHDLLLSREEPRLRYLTGLMGWVDDVVAGSGANANANANANA
AK018_03454921hypothetical proteinATGACCCGCAGCCACAGCACGCACCCGTACTTCGATCCGCACCCGGGATCCGCCGGCCGGGGGGTCGTCGCGCTGGCGCACCGGGGCTTCTCCCACGAGCGGCAGAACCTCGAGAACTCGATGGCGGCGTTCGCCGCGGCCGTCGACCTCGGCTACGGCTACGTCGAGACCGACGCCCACGGCACCCGCGACGGCGTGGCGGTGGCCCTGCACGACTCGTCCCTGGACCGCACGACGGACAGCTCCGGCGAGGTCGCCGACCTGACCTGGCAGCAGGTCTCCCGGGCCCGGATCGGTGGCGAGGAGCCGGTCCCCCGGCTGGACGACCTGCTGGGCACCTGGCCGGACCTGCGCGTCAACATCGACGTCAAGGGCGACTCGAGCATCGAGCCCGTGGCCGAGGCGATCGAACGCACCGCGAGCCACGAGCGGGTGTGCGTCACCTCGTTCTCGCCGGGCCGGCGCCGGCGGACCCTGGCCAGGATGTCGCGGCCGGTGGCCACCAGCGCGGGCACGAGCGAGGTGCTCGGGTTCCTCGCGGGAGCCCGGCTGCGCGTCCCCGGCCTGGTGCAGCGGGCGCTGCGCGACGTCGCCGCCCTCCAGGTGCCGCCGGCCCAGGGCGGCGTGACGGTCGTGGACGCCGCCACCGTCGCCGCGGCGCACCGGGCGGGCCGGCACGTGCACGTCTGGACGATCGACGAGCCGGACGAGATGCGCCGGCTGCTCGACCTCAACGTCGACGGGATCGTCACCGACCGCGCCGACCTGCTGCGCGCTGGGCTGCGCGCGCGCGACCTGTGGCCCGGCCGACCGATACCGCCCGTTGTGGGCATGAAATCTGCAACCCCGAACGGGTTCGGGTTGCAGATTTCATGCCCACAACGAGCCGGCGGGCGGGTCAGGCGCCGAGCTGGACGGTGAMTRSHSTHPYFDPHPGSAGRGVVALAHRGFSHERQNLENSMAAFAAAVDLGYGYVETDAHGTRDGVAVALHDSSLDRTTDSSGEVADLTWQQVSRARIGGEEPVPRLDDLLGTWPDLRVNIDVKGDSSIEPVAEAIERTASHERVCVTSFSPGRRRRTLARMSRPVATSAGTSEVLGFLAGARLRVPGLVQRALRDVAALQVPPAQGGVTVVDAATVAAAHRAGRHVHVWTIDEPDEMRRLLDLNVDGIVTDRADLLRAGLRARDLWPGRPIPPVVGMKSATPNGFGLQISCPQRAGGRVRRRAGRPGPT0018470_5377DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
AK018_034551143aroB_2COG03373-dehydroquinate synthaseATGACGGTCCGCGTGACCGTGTCCGGCGCCCAGCCCTACGACGTCGTCGTGGGCCGCCACCTGCTCGGGGAGATCCCCACGCTGCTCGGCGAGGGGGTGCGCCGCGTGCTGGTGATGCACCCGGCGTCGCTGCAGGCCACCGGCGAGACCGTGCGCGAGGACCTGGCCGCCCAGGGCTACGAGGCCTTCGCCGCCGAGCTGCCGGACGCCGAGGAGCAGAAGACCGCCCAGGTCGCGGCGTTCTGCTGGCAGGTCATGGGCCAGGCGGACTTCACGCGCTCCGACGCGATCGTGGCCGTCGGCGGCGGTGCGACCACGGACCTGGCCGGGTTCGTCGCGGCCACCTGGCTGCGCGGCATCAAGGTCGTGCACGTGCCCACCACGCTGCTGGCCATGGTCGACGCGGCCGTCGGCGGCAAGACCGGCATCAACACCGCCGAGGGCAAGAACCTCGTCGGCGCGTTCCACCCGCCGGCCGGGGTGCTGTGCGACCTCGCGGCGCTGGAGTCGCTGGAGCGCTGGGACCTCGTGGCCGGCATGGCCGAGGTGATCAAGACGGGCTTCATCGCCGACGAGCGCATCCTCGAGCTCGTCGAGGAGCACGCCGACGCGATCCGCGAGTGGGCCGGCCCGGACGCCACCGAGGTGACCTGGGCGGTGCTGACCGAGCTCATCGAGCGGTCGGTGCGCGTCAAGGCACGCGTCGTGGGCGAGGACCTCACCGAGCAGGGTCTGCGCGAGATCCTCAACTACGGGCACACCCTCGGGCACGCCGTCGAGCTCGTCGAGCGTTACCAGCTGCGGCACGGCGCGGCGGTCGCCGTGGGCATGGTCTTCGCCGCCGAGCTCGGCCGGCTCGGCGGCAAGCTGGACGACGCCGTCGTGGACCGCCACCGGGAGATCCTCACCGCCGTCGGGCTGCCGACCACGTACCGCGGGGACCGGTGGGACCAGCTGCTGGCCGCGATGCGCCGCGACAAGAAGGCGCGCGGCGACCTGCTGCGCTTCGTCGTCCTGGACGACGTCGCCAAGCCCGTGCGGCTCGAGGGCCCGGACCCCACCGTGCTGGCCGCCGCCTACGCGGAGATCTCCAAGGAGCCGCCGTCGGGCAGCCCCGGGGTCACCGTCCAGCTCGGCGCCTGAMTVRVTVSGAQPYDVVVGRHLLGEIPTLLGEGVRRVLVMHPASLQATGETVREDLAAQGYEAFAAELPDAEEQKTAQVAAFCWQVMGQADFTRSDAIVAVGGGATTDLAGFVAATWLRGIKVVHVPTTLLAMVDAAVGGKTGINTAEGKNLVGAFHPPAGVLCDLAALESLERWDLVAGMAEVIKTGFIADERILELVEEHADAIREWAGPDATEVTWAVLTELIERSVRVKARVVGEDLTEQGLREILNYGHTLGHAVELVERYQLRHGAAVAVGMVFAAELGRLGGKLDDAVVDRHREILTAVGLPTTYRGDRWDQLLAAMRRDKKARGDLLRFVVLDDVAKPVRLEGPDPTVLAAAYAEISKEPPSGSPGVTVQLGAPGPT0012865_482DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012865-aroA-K01735NANA
AK018_03456528aroK_2COG0703Shikimate kinaseATGACGGCGACACGTCCGCGGGTGGTGCTCACGGGCCCGCCCGGCAGCGGCAAGACCACCGTCGGCACCCTGCTGGCCCAGCGCCTCGGCGTGGCGTTCCGGGACACCGACGCCGACGTCGAGGCGACCGCGGGCAAGCCGGTCGCCGACATCTTCGTCGACGACGGCGAGCCGCACTTCCGCGACCTGGAGCGCGAGGCCGTCACCACGGCGCTGGCCACCCACGACGGCGTGCTCGCCCTCGGCGGCGGCGCCGTCATGGACACCCACACCCAGAGCGCGCTGGCCGGGTACGCCGCCGACGGCGGCACGGTCGTCTTCCTCGACGTGTCCCTGGCCCAGGCCGCGCCCCGCGTCGGGTTCAACCGCTCCCGGCCGCTGCTGGTCGGCAACCCGCGCGCCCGGTGGGCCGAGCTGATGCAGGCCCGCCGCGCCACGTACGAACGGCTGGCCACCGTGGCGGTGCTGTCCGACGACCGCACCGCCGCCGAGGTCGCCGACGAGATCCTTCAGGAGGTCCGCTCATGAMTATRPRVVLTGPPGSGKTTVGTLLAQRLGVAFRDTDADVEATAGKPVADIFVDDGEPHFRDLEREAVTTALATHDGVLALGGGAVMDTHTQSALAGYAADGGTVVFLDVSLAQAAPRVGFNRSRPLLVGNPRARWAELMQARRATYERLATVAVLSDDRTAAEVADEILQEVRSPGPT0012900_2225DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012900-aroL|aroK-K00891NANA
AK018_034571218aroC_2Chorismate synthaseATGCTGCGCTGGTTGACCTCGGGAGAGTCGCACGGTCAGGCCCTGGTGGGCCTCATGGAGGGCCTGCCCGCCGGGGTGGAGATCGTCACCTCGGACATCCAGGACGCCCTGGCCCGGCGTCGTCTCGGCTACGGCCGCGGCGCCCGGATGAAGTTCGAGAAGGACGCGGTCCGCGTCCTGGGCGGGCTGCGCCACGGTGTGACCCAGGGCGGTCCGCTGTCGATCGAGATCGCGAACACCGAGTGGCCCAAGTGGGTGGACGTGATGTCCGCCGACCCGGTGCCCCGGGAGGCGCTGCTGCGCGACGCCGGCACCGGCGACGAGCGCGAGATCGCCCGCAACCGCCCGTTGACGCGGCCCCGTCCCGGGCACGCGGACCTGGTGGGCATGCGCAAGTACGGCTTCGACGACGCCCGGCCGGTCCTGGAGCGGGCCAGCGCCCGGGAGACCGCCACGCGCGTGGCGCTCGGCACCGCCGCGGCGAAGTTCCTCGAGCAGGCGCTCGGCATCCGGCTGGTCAGCCACGTCACCGCGATCGGCCCGGTCGAGGTCCCCGAGGACGCCGACCTGCCCACGCCCGACGACGTCGCCGCGCTGGACGCGGACCCGGTGCGGTGCTTCCACGGGCCCACCAGCGAGGCGATGGTGGCCGAGATCGACGCCTGCCGCAAGGACGGCGACACCCTCGGCGGGGTCGTGGAGGTGCTGGCCTACGACGTGCCGACCGGCCTGGGCACGTACACCCACTCCGACCGTCGGCTGGACGCCCGCCTCGCCGGTGCCCTCATGGGTATCCAGGCGATCAAGGGCGTCGGGGTCGGCGACGGCTTCCGCACCGCGCAGCGCCGGGGCTCGTCCGCGCACGACGAGATCGCGCGGGACGCCGAGGGCCGCATCGTGCGCCGCTCCAACCGGGCCGGCGGGATCGAGGGCGGCATGACCAACGGCGAGGTGCTGCGGGTCTCGGCCGCCATGAAGCCGATCTCCACCGTGCCGCGCGCCCTGGCGACCGTGGACGTCGCCACCGGCGAGGAGGTCACCGCCCACCACCAGCGCTCGGACGTGTGCGCGGTGCCGCCGGCCGCCGTCGTCGCCGAGGCGATGGTCGCCCTGGAGCTGGCGCAGGTCGTCCTGGAGAAGTTCGGCGGCGACTCGGTGGCCGAGGTGCGACGCAACGCCGAGTCCTACCTCGCGTCGATCCCCGAGCTGCTGCGATGAMLRWLTSGESHGQALVGLMEGLPAGVEIVTSDIQDALARRRLGYGRGARMKFEKDAVRVLGGLRHGVTQGGPLSIEIANTEWPKWVDVMSADPVPREALLRDAGTGDEREIARNRPLTRPRPGHADLVGMRKYGFDDARPVLERASARETATRVALGTAAAKFLEQALGIRLVSHVTAIGPVEVPEDADLPTPDDVAALDADPVRCFHGPTSEAMVAEIDACRKDGDTLGGVVEVLAYDVPTGLGTYTHSDRRLDARLAGALMGIQAIKGVGVGDGFRTAQRRGSSAHDEIARDAEGRIVRRSNRAGGIEGGMTNGEVLRVSAAMKPISTVPRALATVDVATGEEVTAHHQRSDVCAVPPAAVVAEAMVALELAQVVLEKFGGDSVAEVRRNAESYLASIPELLRPGPT0012875_476DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012875-aroB-K01736NANA
AK018_03458882aroE_2COG0169Shikimate dehydrogenase (NADP(+))ATGACCGCGACGCGTCGCGCGGCCGTCCTGGGGCACCCGGTCGCGCACTCGCTCTCGCCCACCCTGCACGGCGCCGCCTACGAGGCGCTCGGCCTGGACGGGTGGCGGTACACGGCGATCGACACCACCGTCGAGCAGCTGCCCGACCTCGTGCGCGGCCTGGACCTCTCCTGGGCGGGCCTGAGCGTGACGATGCCGCTCAAGCACGCGGTCATGGAGCTGGTCGACCACGTCGACCCGCTGGCCCGCGCCGTCGGTGCCGTGAACACGGTGCTGGTGTCGCCCGCGCAGTGCGGGGTGAGCCTGACGGGCACCAACACCGACGTGCACGGACTGGTCCAGGCCATCCGCGAGGGCCTCGCCGAGCGCCACGGCACACCGGCGGCCCCGGTGCGGCGCGCCGTCGTGCTCGGCGGGGGGGCGACCGCCGCCTCGACGCTGGCCGCCCTCGGCGAGCTCGGCTGCACCGCGCCGCGCGTGCTCGCGCGCAACCTGGCCCGCACGGCCACGCTGCAGGAGGCGGCGGCGCGCATGGGCGTCACGCCCCGCTACGAGGTGCTCGACGCCGGCACGGCCCCCGAGGTGCTCGCCGGCGCGGACGTGGTCGTCTCGACCATGCCGGCCTACGCCGCCGACCCCGTGGCCGCGTCGCTGCGCTCCCAGGGCGTGCGCACCGGCGGGGTGCTGCTCGACGCCGTCTACGACCCGCGGCCCACCGCGCTGTCCCAGGCCTGGGCCGCGGCCGGCGGCACCGTCGTCGGCGGCGAGCGGATGCTGCTGCACCAGGCCGTGGAGCAGGTGCGCCTGATGACCGGCCGACCCGGACCGGTGGACGCCATGGACGCGGCGCTGCAGCAGGCCCTCGGCGCCGAGGCGGCCTGAMTATRRAAVLGHPVAHSLSPTLHGAAYEALGLDGWRYTAIDTTVEQLPDLVRGLDLSWAGLSVTMPLKHAVMELVDHVDPLARAVGAVNTVLVSPAQCGVSLTGTNTDVHGLVQAIREGLAERHGTPAAPVRRAVVLGGGATAASTLAALGELGCTAPRVLARNLARTATLQEAAARMGVTPRYEVLDAGTAPEVLAGADVVVSTMPAYAADPVAASLRSQGVRTGGVLLDAVYDPRPTALSQAWAAAGGTVVGGERMLLHQAVEQVRLMTGRPGPVDAMDAALQQALGAEAAPGPT0012890_764DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014NANA
AK018_034591158mltG_2Endolytic murein transglycosylaseGTGACGGAACTCTTCGAGCCCACCACCGCCCAGCGGCAGGCACCGCCGCCGTCACCGTCGCGGGCGCGTTCGGCGGCGAGCAAGCGGGCCGCGCGCAAGCGCCGACGGCAGCGTCAGCGCCGCACCGCGATCATCCTCGTCGTGCTGCTCGGCGTGCTCGGCGTCGGCGGCTACCTGCTGATCGACCGGGTCGGCGGCATGCTGTCCGGCTTCGAGCTCTTCGACTCCGCGCCCGAGGACTACGCGGGGCCGGGGGTGGAGCCCGTGCAGATCGAGATCCCCGAGGGCGCGACCGGGTCGATGATGGGGTCGGTCCTCGAGGAGGCCGACGTCGTGGCCAGCGTGGGCGCCTTCAACGAGGCCTTCGAGTCCACGCCGGGCGCCTCGGGCATCCAGCCGGGCACCTACGAGCTGTACACCCAGATGAGCGCCGCGGACGCGGTGCAGTCGCTGGTCGCGAACGAGAAGGTCGAGACCAACGTGACGATCCCGGAGGGGTACACGGTCGAGCAGATCATCGACAAGGTCGCCTCGGTCACGCCGATCACGCGGGACGAGATGGAGGCCGCGCTGGGCACCCCGAAGAAGATCGGGCTGCCGGGCCAGGCCGACGGCGACGCCGAGGGCTGGCTGTTCCCGAAGACCTACGCGGTCCAGCCCGGCGACACGGCCGAGGACCTGCTGTCGACGATGATCGACCAGACCAAGGCCGAGCTCGACTCGCTCGGCGTGGACAACGGCGACCGTCAGGACGTCCTGATCAAGGCGTCCCTGGTCGAGCGCGAGGCGCGGGCGGCCGAGGACCGGCCGAGGATGGCCCGGGCCATCGAGAACCGGCTCGACGTCGACCAGCGCCTGCAGATCGACGCCGCCGTGGCCTACGGGCTGGGGATCCCCGGCACGGAGCTGACGCGGGACGACACCAACGACCCGAGCAACCCCTACAACACCTACCAGCACGCCGGCCTGCCGCCGGGGCCCATCGCCAACCCGGGAGCGGCCTCGGTCGAGGCGGTCGTCGACCCCGCCGACGGCGACTGGATCTTCTGGACGACGGTGAACCTCGACACCGGCGAGACCAAGTTCGCCGAGACGTTCGACGAGCACCAGCAGAACGTCGCCGAGCTGCGTGCCTGGCAGGAGGAGAACGGCTACTGAMTELFEPTTAQRQAPPPSPSRARSAASKRAARKRRRQRQRRTAIILVVLLGVLGVGGYLLIDRVGGMLSGFELFDSAPEDYAGPGVEPVQIEIPEGATGSMMGSVLEEADVVASVGAFNEAFESTPGASGIQPGTYELYTQMSAADAVQSLVANEKVETNVTIPEGYTVEQIIDKVASVTPITRDEMEAALGTPKKIGLPGQADGDAEGWLFPKTYAVQPGDTAEDLLSTMIDQTKAELDSLGVDNGDRQDVLIKASLVEREARAAEDRPRMARAIENRLDVDQRLQIDAAVAYGLGIPGTELTRDDTNDPSNPYNTYQHAGLPPGPIANPGAASVEAVVDPADGDWIFWTTVNLDTGETKFAETFDEHQQNVAELRAWQEENGYNANANANANA
AK018_03460522COG0816Putative pre-16S rRNA nucleaseGTGCCTGAGGCCCTTCCTCGGGGCGCCCGCCTCGGCGTGGACGTCGGCAAGGCCCGCATCGGGCTGGCCGGGTCCGACCCGGACGGGCTGGTCGCCACGCCCGTCGAGACGGTGCCGCGGGTGCTCGCCGTCCCCACGGACGACGACGGGGCACCCGCGGTGACGGCCGACGTCGCGCGGATCGCCGCCGAGGTCGACGACCGGCTCGCGGCGGTCGTCTACGTCGGCCTGCCGCGCCACCTGTCGGGGCACGAGGGCGCCGCGACGGCGGACGCCCGGGCGTTCGCGGACCGCCTGGCCGCCCGGGTCGCCCCGGTGCCGGTCCGGCTCGTCGACGAACGGATGACGACGGTGACGGCCCACGCCCAGCTCCGCTCGGCGGGCCGGAAGACGGCGAAGCACCGTCCTGTCATCGACCAGGCCGCAGCCGTTATCATTCTGCAACACGCTCTCGAGGCAGAACGGGCCGCGGGGGACCGGGTCGGCGAACTCGTCGAGCGAGCGTGGCATCATGACCAGTGAMPEALPRGARLGVDVGKARIGLAGSDPDGLVATPVETVPRVLAVPTDDDGAPAVTADVARIAAEVDDRLAAVVYVGLPRHLSGHEGAATADARAFADRLAARVAPVPVRLVDERMTTVTAHAQLRSAGRKTAKHRPVIDQAAAVIILQHALEAERAAGDRVGELVERAWHHDQNANANANANA
AK018_034612697alaS_2COG0013Alanine--tRNA ligaseATGCGCACCGCCGACATCCGCCAGCGTTGGCTGGACTACTTCCGCTCGAAGGACCACGAGATCGTCCCGAGCGTCCCGCTGGTCTCGCCGGACCCGTCGATCCTGTTCACGATCGCCGGCATGGTGCCGTTCATCCCGTACATCCTGGGGACCGAGGCCGCGCCCTGGCCTCGCGCCGCCAGCGTGCAGAAGTGCATCCGCACCAACGACATCGAGAACGTCGGCCGCACCACCCGGCACGGCACGTTCTTCCAGATGAACGGCAACTTCTCGTTCGGCGACTACTTCAAGCGCGAGGCCATCGACTTCGCGTGGGAGCTGCTGACGTCCGAGCAGTCCGCCGGCGGCTACGGCTTCGACGGCGACCGCCTCTGGGTCACCATCTGGGAGCAGGACACCGAGGCCTTCGACGCGCTGACGAACGGCATCGGCCTCGACCCGAAGCACGTCGTGCGGCTGCCGCGCGAGGAGAACTTCTGGGACACGGGTCAGCCCGGCCCCGCGGGCCCCTGCGCGGAGTGGCACTACGACCGCGGCCCGGCCTACGGACCCGAGGCCGAGGGCGGCACCGTGGACCCCGGCGGCGACCGCTACTTGGAGATCTGGAACCTCGTCTTCGACGAGTTCGTCCGCGGCGAGGGCCAGGGCAAGAACTACCCGCTGCTCGGCGAGCTGGACCACAAGAGCATCGACACCGGGGCCGGCCTCGAGCGGATCGCCTACCTGCTGCAGGGCAAGGAGAACCTCTACGAGATCGACGAGGTGTACCCCGTCATCGCCACCGTGGAGGAGATGACCGGCAAGCGCTACGGCGCGAACCTCGAGGACGACGTGCGCATGCGCGTCGTCGCCGACCACGTGCGCTCGGCCCTGATGGTCATCGGGGACGGCGTCCGCCCGGCCAACGAGGGGCGCGGCTACGTGCTGCGCCGCCTGATCCGTCGCGCCGTGCGCGCCGTGCGGCTCCTCGGCGTGGACGAGGTCGCCCTGCCGGCGCTGCTGCCGGTGTCCAAGGAGGCCATGAAGGCGTCGTACCCGGAGCTGGAGACGGACTTCGGCCGCATCGCCGACGTCGCCTACGGCGAGGAGGACGCCTTCCGCCGCACGCTCGCCGCCGGGACCACGATCCTGGACACGGCGGTGCAGCGTGCGAAGAAGAGCTCCGACGGCGGGCCGGTCGTCCTCGGCGGCGACCAGGCCTTCCAGCTGCACGACACCTACGGCTTCCCGATCGACCTCACCCTCGAGATGGCCGCCGAGCAGGGCGTCCAGGTCGACGAGAAGGCCTTCCGCGACCTCATGGCGGAGCAGAAGCAGCGGGCCCGGGCCGACGCGCTGGCGAAGAAGACCGGGCACGGGGACCTGCGCGCCTACGAGACGCTGGCCCAGCAGCTCACGGCTCCGGTGGAGTTCCTCGGGTACGGCGACCACCAGGCCTCGGTGCACGTCGAGGGCCTGCTCGTCGACGGCGCCCCGGCCCCGGCGGCCACCGCCCCGGCCGACGTCGAGGTGGTCCTGGACCGCACGCCGTTCTACGCCGAGGCCGGCGGCCAGCTGGCCGACCAGGGCACCATCACCCTCGACTCCGGCGCCACGATCGAGGTCGACGACGTCCAGCGCCCGGTGGCGGGGCTGTCCGTGCACCGCGGTCGCCTCACCGAGGGCACGGTGGCGCTCGGGGACCCGGGCACGGCCGCGATCGACTCCGGCCGGCGGGTGGCGATCAGCCGCGCGCACTCGGCGACGCACATGATCCACAAGGCGCTGCACGAGATGGTCGGCGAGGACCGCACCCAGGCCGGGTCGGAGAACGCGCCGAGCCGGGTGCGGTTCGACTTCCGCTCGCCCACGGCCGTCTCGTCCGCCCAGCTCAGCGAGATCGAGGAGCGGGTCAACGAGCGGCTCACCGAGAACCTCGAGGTCACCGACGCGGTCATGTCGCTGTCGAAGGCCAAGGAGCTGGGCGCGATGGCGCTCTTCGGCGAGAAGTACGGCGAGAACGTCCGTGTCGTCTCCATCGGCGGGGAGTGGTCGCGCGAGCTGTGCGGCGGCACGCACGTCGGCGCGACCGGCGAGGTCGGCCGGGTGGCGCTGCTCGGCGAGTCCTCCATCGGTTCCGGGGTGCGCCGCGTGGACGCGCTGGTCGGCGCGGGCGCCTACGGCTTCCATGCGAAGGAGCACGCGCTGGTCGGTCAGCTCACCGGCATGCTCAACGCGCGTCCCGAGGAGCTCACGGACCGCGTCGGCTCGCTCATGAGCCGCCTGCGGGAGACCGAGAAGGAGCTCGCGACCCTGCGGCAGGGCCAGCTGCTGGCCCAGGCCGCCACGCTCGCCGCCGAGGCGCCCCGCGAGGGCGACGTGCGGGTCGTGGCGCACGACGCCGGCGAGGTCGGCTCGGCCGACGACCTGCGCACCCTCGCGCTCGACGTGCGGGGCCGGATGGGCGAGGGCGACGCCGCGGTCGTGGCCGTCGCCGGTGCGGCGAACGGCCGTCCGCTCGTCGTCGTCGCCACGAACGCCGCCGCCCGGGACGCCGGCCTGCGGGCGGGCGACTTCGTCAAGGCGGCGGCCCGGACCCTCGGTGGTGGGGGCGGCGGCAAGCCGGACCTCGCCCAGGGTGGCGGGTCGGACGTCGCGGCCGTGGCGGCCGCGCTCGAGGGCGTGCGCACCCAGGTGCGTGAGGCCGCCGGTGCCTGAMRTADIRQRWLDYFRSKDHEIVPSVPLVSPDPSILFTIAGMVPFIPYILGTEAAPWPRAASVQKCIRTNDIENVGRTTRHGTFFQMNGNFSFGDYFKREAIDFAWELLTSEQSAGGYGFDGDRLWVTIWEQDTEAFDALTNGIGLDPKHVVRLPREENFWDTGQPGPAGPCAEWHYDRGPAYGPEAEGGTVDPGGDRYLEIWNLVFDEFVRGEGQGKNYPLLGELDHKSIDTGAGLERIAYLLQGKENLYEIDEVYPVIATVEEMTGKRYGANLEDDVRMRVVADHVRSALMVIGDGVRPANEGRGYVLRRLIRRAVRAVRLLGVDEVALPALLPVSKEAMKASYPELETDFGRIADVAYGEEDAFRRTLAAGTTILDTAVQRAKKSSDGGPVVLGGDQAFQLHDTYGFPIDLTLEMAAEQGVQVDEKAFRDLMAEQKQRARADALAKKTGHGDLRAYETLAQQLTAPVEFLGYGDHQASVHVEGLLVDGAPAPAATAPADVEVVLDRTPFYAEAGGQLADQGTITLDSGATIEVDDVQRPVAGLSVHRGRLTEGTVALGDPGTAAIDSGRRVAISRAHSATHMIHKALHEMVGEDRTQAGSENAPSRVRFDFRSPTAVSSAQLSEIEERVNERLTENLEVTDAVMSLSKAKELGAMALFGEKYGENVRVVSIGGEWSRELCGGTHVGATGEVGRVALLGESSIGSGVRRVDALVGAGAYGFHAKEHALVGQLTGMLNARPEELTDRVGSLMSRLRETEKELATLRQGQLLAQAATLAAEAPREGDVRVVAHDAGEVGSADDLRTLALDVRGRMGEGDAAVVAVAGAANGRPLVVVATNAAARDAGLRAGDFVKAAARTLGGGGGGKPDLAQGGGSDVAAVAAALEGVRTQVREAAGANANANANANA
AK018_03462348hypothetical proteinGTGACCCGCCGGCTGTTCTGGGTCGGTGTCGGGGTGACGATCACCGTCGTGGTCATCCAGCGGGGGCGCCGGCTGGTCGCGCGGTACACCCCGGAGGCCGTCGCCGAGCGCGCGGGGGACCTGGGCCGTGACGTCTCCCGGCGAGCCGGGACCTTCCTGACCACGTTCCGCAGCGAGTTCGCCGCCGCTCGCGTCTCGCGCGAGGACGAGCTGGTCGCCGCGCTGCTCGCCGAGGGCCAGCCGCACCCGGACGACGTCGAGCGGACCCGGCGCGGCCGGCACGCCGCCGCTCTCGACCCGGAGGCCGCCACCCGCGCCGACGAGGACGAGCTGGGCTACTCGTTCTGAMTRRLFWVGVGVTITVVVIQRGRRLVARYTPEAVAERAGDLGRDVSRRAGTFLTTFRSEFAAARVSREDELVAALLAEGQPHPDDVERTRRGRHAAALDPEAATRADEDELGYSFNANANANANA
AK018_03463384hypothetical proteinATGTCCGTGGGGGACGTGGCGGGACTGATCGCCGCCGTCGCATTCGTGCTGCTGGTCGGCCTGCTGGCCGTGCCGCTGGTCAAGCTCGGGCGCACGCTCGACGAGACCTCGCGCAGCATCCGTGAGCTCACGGAGCACTCCGTGCCGATCCTCGACGAGGCCGCGACCACGGTGTCCTCGACGAACGACCAGCTGGTCAAGGTCGACACCATCACCACCGCCGCGGCCCAGGTCAGCGAGAACGTCTCCGCCCTGTCGGGGCTGTACGCCTCGACCCTGGGGCGTCCCCTGGTGAAGGTCGCCGCGTTCTCCTACGGGGTCCGCCAGGGGCTCAGCAAGGCCTGGCACCGCTCCTCCTCGCCCGAGGGCGGTGCGTCCCGGTGAMSVGDVAGLIAAVAFVLLVGLLAVPLVKLGRTLDETSRSIRELTEHSVPILDEAATTVSSTNDQLVKVDTITTAAAQVSENVSALSGLYASTLGRPLVKVAAFSYGVRQGLSKAWHRSSSPEGGASRNANANANANA
AK018_03464627rpsD_230S ribosomal protein S4GTGACTGCAGTCCGCAAGTCGCGCCGCCAGGTGCGCCTGAGCCGCAAGCTCGGTCTGGCCCTCACCCCGAAGGCCGTCCGCCACTTCGAGAAGCGTCCGTACCCCCCGGGTGAGCACGGCCGCGCCCGCCGCCGCACCGAGTCCGACTACGCGGTGCGTCTGCGCGAGAAGCAGCGTCTGCGCGCCCAGTACGCGCTGCGCGAGAAGCAGCTCCTCAAGGTCTACGAGAACGCCCGCAAGCACCCGGGCCTGACCGGTGAGGTCATGGTCGAGGACCTGGAGACGCGCATCGACGCGCTGGTCCTGCGCGCCGGCTTCGCCCGCACGATCCTGCAGGCCCGCCAGGCCGTCACGCACCGCCACGTCATGGTGGACGGCAAGATCGTCGACCGCCCGTCGTTCCGCGTCAAGGCCGGCCAGACCCTGCAGATCAAGCCGAAGTCGCAGACCACGACGCCGTTCCAGGTCGCCGCCGCCGGTGCCCACCGCGACGTGCTGCCCGAGGTCCCGGGCTACCTGGACGTCAACCTGGAGAAGCTGTCGGCCACGCTGACCCGCGACCCCAAGCGCGCCGAGGTCCCCGTGACCTGCGACGTCCAGCTGGTCGTCGAGTACTACGCCCGCTGAMTAVRKSRRQVRLSRKLGLALTPKAVRHFEKRPYPPGEHGRARRRTESDYAVRLREKQRLRAQYALREKQLLKVYENARKHPGLTGEVMVEDLETRIDALVLRAGFARTILQARQAVTHRHVMVDGKIVDRPSFRVKAGQTLQIKPKSQTTTPFQVAAAGAHRDVLPEVPGYLDVNLEKLSATLTRDPKRAEVPVTCDVQLVVEYYARNANANANANA
AK018_03465948hypothetical proteinGTGTACCGCGCGACCCGCGAGCGCGAGACCGAGACGCGTCGTCGACGACGCCGGGGTGACCTGGTGCGGGTCAGGCCCGGGATCTACGCGCCGCCGGACCGGCCGGCGACGGACTCGCCGGCCGTGCGGCGTGAGCACGCTCACCTGGTCCGGCTCGCGGCGGCGCTCGCGGGTCTGCGCACGCCGGTCTGGGCGAGCCACACGAGCGCGGCGCTGCTCTGGGGCTGCTGGACCTACCGCCTGGGCACGACGGCGCACGTCACCCAGCTGGCCCCTCCCGACGTGCGCCGGGGCCGCGGCGGGCTGCGCCGGCACTGGACCGACCTGTCTCCGCGGGACCGGACGACCCTCGACGGCGTTCCCGTGACGACGCTGGAGCGGACCGCGGTCGACTGCGCCCGCGCGCTGCCCGGCGAGCAGGCGGTCGTCGTCGTCGACTCCGCGATGCGGCTGGGTGCTGACCCGGACGTCGTGGGGACGCTCCTGGCGGAGTCGGCCGGCACGCGGGGCATCCGCTCCGCGCGACGCGTCATGGCGGTGGCCGACGGGCGCGTGGAGTCCCCGGGTGAGTCACGGTTGCGCTGGATCCTGGCCGACGCGGGGCTCGCGGCTCCCGAGGCGGCCGTACCCGTGGCGACGTGGATGGGGACCCGGTGGGTCGATCTCGGGTGGCCGGAGCTGAAGGTGGGGTTCGAGTTCGACGGCAGGGGAAAGTACGCCGCGTCGGGCACGGTGCGTGCTGATCAGGCCGTCTACGACGAGAAGCGTCGGCACGACGCCCTGCGTGAGGCCGGGTGGCTCGTGCTGAGGGTCTCGTGGGCCGACCTGGAGGACCGCGAGGTCTTGCTCGAGCGTGTGCGACGGGTGCTGGCCCGGTCCGGCCACCCTGCGCCGAGATGCCGACCCGTCGCCGACGTACCGGTGGATCGACGTGCCGGACGGCGATGAMYRATRERETETRRRRRRGDLVRVRPGIYAPPDRPATDSPAVRREHAHLVRLAAALAGLRTPVWASHTSAALLWGCWTYRLGTTAHVTQLAPPDVRRGRGGLRRHWTDLSPRDRTTLDGVPVTTLERTAVDCARALPGEQAVVVVDSAMRLGADPDVVGTLLAESAGTRGIRSARRVMAVADGRVESPGESRLRWILADAGLAAPEAAVPVATWMGTRWVDLGWPELKVGFEFDGRGKYAASGTVRADQAVYDEKRRHDALREAGWLVLRVSWADLEDREVLLERVRRVLARSGHPAPRCRPVADVPVDRRAGRRNANANANANA
AK018_034661392COG2256putative AAA domain-containing proteinATGGACCTGTTCAACGCCGCGACCACCGGTGAGCACGGCACGCCGGTGACCGCGCGCCGCGGGGCCGGCGCCCCGCTCGCCGTGCGCATGCGCCCGGCCTCGCTCGACGAGGTGACCGGCCAGGGGCACCTGCTCGTGCCTGGCTCGCCGCTGCGCCGGCTCGTGGAGCCCGCCGACGACGCCGCCCGCCGTGCCGCCCCCGGATCCGTGATCCTGTGGGGCCCGCCCGGCGTCGGCAAGACGACCCTGGCCTACCTCGTGGCCACCACCTCCGGGCGACGGTTCGTCGAGCTGTCCGCCGTCACCGCCGGCGTCAAGGAGGTCCGCCAGGTCATCGAGGACGCCCGCCGTCGCCTGGCCACCGGCGGCGAGGAGACCGTGCTGTTCATCGACGAGGTGCACCGTTTCTCCAAGACCCAGCAGGACGCCCTGCTGCCCAGCGTGGAGAACCGGTGGGTCACCCTCGTGGCGGCCACGACCGAGAATCCCTCGTTCTCCGTCAACTCCCCGCTGCTGTCCCGCTCGCTGCTGCTGACCCTGCGACCGCTCACGGGCGAGGACGTGCGCGGTCTCGTGCGCCGCGCCCTCGCCGACGAGCGCGGGCTCGACGGTGCGGTCACGCTCGCCGACGACGCCGAGGACCAGCTCGTGCGCATGGCCGGCGGCGACGCGCGCAAGGCCCTGACCGTGCTCGAGGCCGCCGCCGGGGCAGCCCTCAGCGACGCCCGCGACGAGGTCGCGCCCGAGGGGCCCGTCACCGTCGACCTCGACACCGTCGAACGCGCGGTCGACGTCGCCGCCGTGCGCTACGACCGCGACGGCGACCAGCACTACGACGTCGTCTCCGCCTTCATCAAGTCGATCCGCGGCTCCGACGTCGACGCCGCGCTGCACTACCTGGCCCGCATGGTGGCCGCGGGGGAGGACCCGCGGTTCATCGCGCGCCGCCTGGTGATCTCCGCCGCGGAGGACGTCGGCATGGCCGACCCGTCGGCGCTGCAGACCGCCGTGGCGGCCGCGCAGGCCGTCCAGCTCATCGGGATGCCCGAGGGGCGCATCGTGCTCGCCGAGGCCGTCGTCCACCTCGCCACGGCCCCGAAGTCCAACCGTGCCTACGCCGGGATCGGGGCGGCGCTCGCGGACGTCTCGGCCGGCCGGGTCGGGGTGGTGCCCGCCCACCTGCGCGACGCCCACTACGCCGGCGCGGAGAAGCTCGGTCACGGCACCGGGTACCGGTACGCCCACGACGAGCCGCACGGCGTCGCCGCGCAGCGCTACCTGCCCGAGGAGCTCGCGGGTCGGCGCTACTACGAGCCCAGCGACCGCGGGTTCGAGCGCCAGGTGTCCGAGCGGCTGGACCGGATCCGGCAGATCCTCGACTCCGCCGACTGAMDLFNAATTGEHGTPVTARRGAGAPLAVRMRPASLDEVTGQGHLLVPGSPLRRLVEPADDAARRAAPGSVILWGPPGVGKTTLAYLVATTSGRRFVELSAVTAGVKEVRQVIEDARRRLATGGEETVLFIDEVHRFSKTQQDALLPSVENRWVTLVAATTENPSFSVNSPLLSRSLLLTLRPLTGEDVRGLVRRALADERGLDGAVTLADDAEDQLVRMAGGDARKALTVLEAAAGAALSDARDEVAPEGPVTVDLDTVERAVDVAAVRYDRDGDQHYDVVSAFIKSIRGSDVDAALHYLARMVAAGEDPRFIARRLVISAAEDVGMADPSALQTAVAAAQAVQLIGMPEGRIVLAEAVVHLATAPKSNRAYAGIGAALADVSAGRVGVVPAHLRDAHYAGAEKLGHGTGYRYAHDEPHGVAAQRYLPEELAGRRYYEPSDRGFERQVSERLDRIRQILDSADNANANANANA
AK018_034671776hypothetical proteinGTGACGCTGGACGCTTGGCTGACGCTGGCCGTCGTGCTCGGGGTGCTGGCCACCCTGGTGCGCGGGCGGGTCTCTCCCGCCGTGACCGTGTTCGCCGGCGCGGTGGCGGTCATGATCCTCGGCGTGGTGCCGGCGCAGGACGCCTTCTCCGGCTTCTCGAACGCGGCGCCGATCACGGTGGCGGCCCTGTACGTGCTGGCGGCCGGGATCGAGAAGACCGGTGCCCTGACGCCGGTGATGCAGAGCACGCTGGGTGAGAACGGCTCCTACCGACGTCCCCTGATCCGCACGCTCGCGCCGACGATGGCGGCCTCGGCGTTCCTCAACAACACGCCGATCGTGGCGATGCTGGTGCCGCAGGTGACCGCCTGGGCGAACCGTCGCCGGCTGGCCGTGTCCAAGATCCTCATGCCGGTGTCGTTCGCGGCGGTGCTCGGCGGGCTGCTGACGGTCATCGGCACCTCGACGAACCTGGTGGTCTCCGGCCAGATGTCGACGCTGGGCCTGGAGCCGATCGGGTTCTTCGAGATCGGCAAGGTGGGCCTGCCGATCTCGCTGGTGGGCTTCGTCGCGCTCATCGCCCTGTCGCCCGTGCTGCTGCCGGACCGGCGTTCGGCCCGGGCGGAGATGGAGCAGGAGGGCCGTCGGTTCTCCTTCGAGATGATCGTCGAGCCCGGCGGTCCGGTCGACGGGCGCACCGTCGAGCAGGCACGCCTGCGCGACCTGTCCGGGCTGTTCCTGGCGTCCGTGGACCGCGGCGACACCACGATCGCCCCGGTGCGGCCCGACACCGTGCTGCGCGGCGGCAACCGCCTGCACTTCGTCGGCCCGCTGGACCGGGTGGTCAAGCTGCAGGAGATGCGGGGGCTGCGCTCGGCGGAGATGGAGCACGTGCTCGACCTCGCCGAGCCGTCGGTGCGCTACTACGAGGCGGTCGTCGGGAGCCGCTCCCCGCTGGTGGGACGCACGCTGAAGGACGTGGGCTTCCGCGCCGCCTACCAGGCGGCGGTGCTCGCGATCCACCGGTCGGGCCAGCTCGTCGAGAGCCGGCTGGGCACCGAGCGCATCCGGCTGGGCGACACGCTCATCCTGGTCAGCGACCCCGACTTCCGCGAGCGGTGGCGCGACCGGGCCGACTTCCTGCTGGTGGCCGAGCTCGACGGCAGCCCGCCGTCGGCGACGTCGCGTGGCTGGGTCCCCGTGGGGCTGCTGGCGGCCGTGGTCGTCCTGGCCGCGACGGGGCTGGTGCCCATCCTGCACGGCTCGCTCGTGGCGGCGATCGCCCTGGTGGCCACGAAGGTGCTCTCCCCGCTCGAGGCCCGCCGGGCGATCGACGTCGAGGTGATCGTCGTCATCGCCTCGGCGTTCGGGCTGGCCGCGGCGATGGAGGCGTCGGGTCTCGCCCAGGTGGTGGCCGACGGGATGGTGGGGCTGTTCGGCGGGTTCGCACCCTACGGGGTGCTGCTGGGGCTGGTGCTGGCCACGGTGCTGCTCACCGAGCTGGTGACCAACAACGCGGCCGCCCTGCTGATGCTGCCGGTGGCGGTCAGCACCGCCGGGGCAGCAGGCCTCGACCCGCGCGGCGCGGCGATCGCCGTCGCCGTGGCGGCGTCGGCGTCGTTCCTGTCCCCCATCGGCTACCAGACCAACATGATGGTCTACGGCCCGGGCGGCTACCGGTTCACCGACTACGCCCGGCTGGGATGGATCCTGACGCTGGTGACGGTCGTGGCCACCGTCCTGCTGGTGCCGACCCTGTGGCCGGCACCAGCCTGAMTLDAWLTLAVVLGVLATLVRGRVSPAVTVFAGAVAVMILGVVPAQDAFSGFSNAAPITVAALYVLAAGIEKTGALTPVMQSTLGENGSYRRPLIRTLAPTMAASAFLNNTPIVAMLVPQVTAWANRRRLAVSKILMPVSFAAVLGGLLTVIGTSTNLVVSGQMSTLGLEPIGFFEIGKVGLPISLVGFVALIALSPVLLPDRRSARAEMEQEGRRFSFEMIVEPGGPVDGRTVEQARLRDLSGLFLASVDRGDTTIAPVRPDTVLRGGNRLHFVGPLDRVVKLQEMRGLRSAEMEHVLDLAEPSVRYYEAVVGSRSPLVGRTLKDVGFRAAYQAAVLAIHRSGQLVESRLGTERIRLGDTLILVSDPDFRERWRDRADFLLVAELDGSPPSATSRGWVPVGLLAAVVVLAATGLVPILHGSLVAAIALVATKVLSPLEARRAIDVEVIVVIASAFGLAAAMEASGLAQVVADGMVGLFGGFAPYGVLLGLVLATVLLTELVTNNAAALLMLPVAVSTAGAAGLDPRGAAIAVAVAASASFLSPIGYQTNMMVYGPGGYRFTDYARLGWILTLVTVVATVLLVPTLWPAPANANANANANA
AK018_034681782aspS_2COG0173Aspartate--tRNA(Asp/Asn) ligaseGTGCTCCGCACCCACACGGCCGGCTCATTGCGGGCCGAGCACATCGGCCAGACCGTCACCCTCACGGGCTGGGTCGATCGTCGCCGGGACCACGGGGGAGTGGCCTTCATCGACCTGCGTGACGCCTCCGGCATCGCGCAGGTCGTCATCCGCGACGAGGAGGTCGCCCACCCGCTGCGCGCCGAGTTCGTGCTGCGCGTCACCGGTGAGGTCTCCCGCCGCCCCGAGGGCAACGCCAACGCGAACCTCGCCACCGGCGACATCGAGGTCATCGCCAGCGACGTCGAGGTCCTCAACACCTCCGAGGCGCTGCCCTTCCAGGTCTCCACCGCGCTCGCGGACACCGAGACCATCGGCGAGGAGGCGCGTCTCAAGCACCGCTACCTGGACCTGCGGCGTCCCGCGCCCGCGCATGCCATGCGGCTGCGCGCGAAGGTGAACGCCGCGGCGCGCCGGGTGCTGGACTCCCACGAGTTCGTCGAGGTCGAGACCCCGACGCTGACCCGCTCCACCCCCGAGGGTGCGCGCGACTTCCTGGTGCCCGCGCGGCTGTCGCCGGGTTCCTGGTACGCCCTGCCGCAGTCGCCGCAGCTGTTCAAGCAGTTGCTCATGGTCGGCGGCCTGGAGCGCTACTACCAGATCGCGCGCTGCTACCGCGACGAGGACTTCCGCGCCGACCGGCAGCCGGAGTTCACCCAGCTGGACGTCGAGATGAGCTTCGTCGACCAGGACGACGTGCTCGCCCTGACCGAGGACCTGCTCGCCGAGATCTGGCAGCTCGTCGACGTCGAGCTCCCGCGGCCCTTCGAGCGCATCACCTTCGCGGACGCGATGCGCCTGTACGGCACGGACAAGCCGGACCTGCGCTACGGCAACCCGCTGGTCGAGCTCACGGAGTACTTCGCCGACACCACGTTCCGGGTCTTCCAGAACGAGTACGTCGGTGCGGTCGTCATGCCGGGCGGGGCCTCGCAGCCGCGGCGCCAGTTCGACGCCTGGCAGGACTGGGCCAAGCAGCGCGGCGCCAAGGGTCTGGCCTACGTCACGTTCGCCGAGGACGGCACGCTCGGCGGCCCGGTCGCCAAGAACCTGTCCGAGAGCGAGCGCGAGGGCCTCGCGGAGGTCACCGGTGCCCAGCCGGGTGACGCGGTGTTCTTCGCCGCCGGGAAGACGACGGACTCGCGCGCCCTGCTCGGCGCGGCCCGCGTGGAGATCGCCCACCGCACCGGCCAGATCGACGAGGACGCCTGGTCCTTCGTCTGGGTCGTGGACGCCCCGCTGTTCAAGCCCGCGGGGGAGGCCGCCGACGACGGGGACGTGGCACTGGGCACGTCGGCGTGGACCGCGCTGCACCACGCCTTCACGTCCCCGAAGCCGGAGTGGCTCGACTCCTTCGAGTCCGACCCGGGCAACGCGCTGGCCTACGCCTACGACATCGTCTGCAACGGCAACGAGATCGGCGGCGGCTCCATCCGTATCCACCGCCGCGACGTCCAGGAGCGCATCTTCGAGGTCATGGGCATCGGTCACGAGGAAGCGCAGGAGAAGTTCGGCTTCCTGCTCGACGCCTTCAAGTTCGGCGCTCCGCCGCACGGCGGCATCGCCTTCGGCTGGGACCGCATCGTCGCGCTGCTGACCAAGGCGCCGTCGATCCGCGACGTCATCGCGTTCCCCAAGTCCGGCGGCGGCTACGACCCGCTGACGGACGCGCCGGCGCCGATCACGGCCGAGCAGCGCCAGGAGGCCGGCGTGGACGCCGAGCCCGAGGGCGCCGAGGGCTGAMLRTHTAGSLRAEHIGQTVTLTGWVDRRRDHGGVAFIDLRDASGIAQVVIRDEEVAHPLRAEFVLRVTGEVSRRPEGNANANLATGDIEVIASDVEVLNTSEALPFQVSTALADTETIGEEARLKHRYLDLRRPAPAHAMRLRAKVNAAARRVLDSHEFVEVETPTLTRSTPEGARDFLVPARLSPGSWYALPQSPQLFKQLLMVGGLERYYQIARCYRDEDFRADRQPEFTQLDVEMSFVDQDDVLALTEDLLAEIWQLVDVELPRPFERITFADAMRLYGTDKPDLRYGNPLVELTEYFADTTFRVFQNEYVGAVVMPGGASQPRRQFDAWQDWAKQRGAKGLAYVTFAEDGTLGGPVAKNLSESEREGLAEVTGAQPGDAVFFAAGKTTDSRALLGAARVEIAHRTGQIDEDAWSFVWVVDAPLFKPAGEAADDGDVALGTSAWTALHHAFTSPKPEWLDSFESDPGNALAYAYDIVCNGNEIGGGSIRIHRRDVQERIFEVMGIGHEEAQEKFGFLLDAFKFGAPPHGGIAFGWDRIVALLTKAPSIRDVIAFPKSGGGYDPLTDAPAPITAEQRQEAGVDAEPEGAEGNANANANANA
AK018_03469474F420H(2)-dependent reductaseATGGCCCGCCAGATTGCGACGAACACCACGGTGGAGCGCGACGAGCTCACGGAGTTCTTGCGCAGCCGCCACAACGGAGTCCTGGTGACCACCCGCGACGACGGGCGCCCCCAGCTCAGCCCCGTGACCTACGGCGTCGACCCGGACGGCCGCGTCGTCGTCTCGACCTACCCCGAGCGGGCCAAGGCCGTGAACCTGCGCAAGCGTCCGCAGGTGTCGTTCATGGCCCAGGGCGACGACTTCGGCGACGCCTGGGTGCAGGTCGACGGCACCGCGGAGGTGCTGGACATGCCCGAGGCGTTGGAGCCGCTGGTGGAGTACTTCCGGGCGGCCGCCGGCAAGGAGCACCCGGACTGGGACGAGTACCGCGAGGCGATGGCGAAGCAGGACAAGTCCGTGATCCGGATCACCGTCGAGCGCTGGGGCCCGATCGCGACGGGCGGGTTCCCGGCCCGGCTGGTCGAAGAGGGCTGAMARQIATNTTVERDELTEFLRSRHNGVLVTTRDDGRPQLSPVTYGVDPDGRVVVSTYPERAKAVNLRKRPQVSFMAQGDDFGDAWVQVDGTAEVLDMPEALEPLVEYFRAAAGKEHPDWDEYREAMAKQDKSVIRITVERWGPIATGGFPARLVEEGNANANANANA
AK018_034702142hypothetical proteinGTGCGATGGGACGGGCAGGCGACGACCGCCGACGACGGCGCGCTGCCCGGTCTGGAGCGCCCGGGGCTGGCCCGGCTCGGCCTCGTGCGCAGCACGCGCACCCCGGAGTTCGCCGGCATCACCTTCCACGAGGTGATGGCCAAGAGCGCGTTGTCCAAGGTGCCGGCCGCCTCGCGCATGCCGTTCCGGTGGACGATCAACCCCTACCGTGGCTGCTCTCATGCCTGCGCCTACTGCGTCTCTCCGTCCACGCTGGTCCTGATGGCAGACGGCACGCAGAAACCGATCAGCCAGGTCTCGGTCGGTGACCGGATCGTCGGCACGCGCCGCCAGGGGACCTACCGACGGTTCGTCGGGACCACGGTCCTGGCTCGATGGACGTCGGTGAAGCCCGCCTACCGGGTGATCCTGCGCGACGGCACCGAGATCGTGGCGAGCGCCGAGCATCGGTTCCTGGCGCGTGGTCGCGGATGGAAGCACGTCGCGGCCGGGCCACCGGGCAAGCAGCGCCCGTACCTCACGACGAACGACTCGTTGATGGGGTTCGGTACCGGCCGCCCGGCGGCCGACACGGGGAGTACCGAGTCGCCCGACTACCGGCGCGGTTATCTCACCGGGATGATCCGGGGTGACGGGATGGTCTTCGAGAAGACCTATCCGAGGACATCGCGGGGCGGTGCCCGCGTGTGCATGTTCCGCCTCGCCCTGGCCGACCGGGAAGGGCTCGACCGGACCGCTCGATACCTCGCCACCGAGGGGATCGTGACGAGACGTCGTCCGTTCGTGGCCGCGTCGGAGACACGTCGCGCCATGAGTGCACTGCACACCGCACGGACGGCAGACGTCGATGCGATCAGAGGGCTGGTCGAGTGGCCGGCGGTGCCGAGTGCGGAGTGGTCGAGGGGATTCCTGGCAGGGATCTTCGACGCCGAGGGCTCCTGCTCCCGGGGGATCTTGAGGATCTCCAACAAGGACGAGGAGATCCTGTCCCGGGTAGCCGATGCCCTCCGGCGGTTCGACCTGGACAACACGCTCGAGCCTCCACGACCGAACGGCGTGACGTGCGTGCGTGTGCGAGGCGGTCTCGCGGCGCGGGAGCGGTTCTTCCACCTCGTCCGTCCGGCGATCGTCCGTAAGCTCTCCGTGACAGGTATGGCGCTGAAGACCTCCGTCGACCTCGGTGTCGTGACGGTCGAAGCCTGTGGATTCGACGAGGAGATGGTCGACATCACGACGGGTACGGGCGACTTCGTCGCCAACGGTGTGGTCGCTCACAACTGCTTTGCGAGGCCGACGCACGAGTACCTCGACCTGGACGCGGGGGAGGACTTCGACTCCCAGGTCGTCGTCAAGACGAACGTCGACCAGGTGCTGCGCGCCGAGCTCGCCAGGCCCTCGTGGCGGCGCGAGCCCGTCGCGCTGGGCACCAACACCGACCCCTACCAGCGCGCCGAGGGTCGCTACCGGCTCATGCCGGGGATCATCACGGCGCTCGCGGACGCGCGGACGCCCTTCTCGATCCTCACCAAGGGCACGCTGCTGCGCCGCGACCTGCCGCTGATCGCCGACGCCGCCGACCGGGTCGAGGTCGGCCTCGGCGTGTCGCTGTCGTTCGCCGACGTCGAGCTCCAGCAGTCGGTCGAGCCCGGCACGCCGATGCCGAAGGCGCGCCTGGACCTGGTGCGCGCGATCCGGGCCGCGGGTCTGCCGTGCGGGGTGATGGTCGCCCCGGTGCTGCCGTGGCTGACGGACTCCACGGACCACCTGACGCGGCTGCTGGACGCGATCGCCGACGCCGGAGCGACCGGGGTGACCGTCGTCCCGCTGCGGCTCAAGCCCGGGGCCCGCGACTGGTACCTGCGCTGGCTCGCCCGGGAGCACCCCGAGCGGGTGGCGGGGTACCGCCGGGTCTTCGCCGGCGGCGCCGACGCGCACGACGGGTACCGGGACTGGCTGTGGCAGCGGGTGCGGCCCCTGCTGGAGGAACGGGGCTTCGTCGGTTCCGCGCACCGGGCCGCCTCGGGGGCGACCGGCCGGTACGACGACGACCTGCGCCCGCACGGCGACGCCGACTACCCCGCCGGGTCGATGGTCGTTGCCGCGCCGGCGGAGGAGCCGGGGCGCACGGCGACGCTGTTCTGAMRWDGQATTADDGALPGLERPGLARLGLVRSTRTPEFAGITFHEVMAKSALSKVPAASRMPFRWTINPYRGCSHACAYCVSPSTLVLMADGTQKPISQVSVGDRIVGTRRQGTYRRFVGTTVLARWTSVKPAYRVILRDGTEIVASAEHRFLARGRGWKHVAAGPPGKQRPYLTTNDSLMGFGTGRPAADTGSTESPDYRRGYLTGMIRGDGMVFEKTYPRTSRGGARVCMFRLALADREGLDRTARYLATEGIVTRRRPFVAASETRRAMSALHTARTADVDAIRGLVEWPAVPSAEWSRGFLAGIFDAEGSCSRGILRISNKDEEILSRVADALRRFDLDNTLEPPRPNGVTCVRVRGGLAARERFFHLVRPAIVRKLSVTGMALKTSVDLGVVTVEACGFDEEMVDITTGTGDFVANGVVAHNCFARPTHEYLDLDAGEDFDSQVVVKTNVDQVLRAELARPSWRREPVALGTNTDPYQRAEGRYRLMPGIITALADARTPFSILTKGTLLRRDLPLIADAADRVEVGLGVSLSFADVELQQSVEPGTPMPKARLDLVRAIRAAGLPCGVMVAPVLPWLTDSTDHLTRLLDAIADAGATGVTVVPLRLKPGARDWYLRWLAREHPERVAGYRRVFAGGADAHDGYRDWLWQRVRPLLEERGFVGSAHRAASGATGRYDDDLRPHGDADYPAGSMVVAAPAEEPGRTATLFNANANANANA
AK018_034711371hisS_2COG0124Histidine--tRNA ligaseATGGCTCGCGTCACCCCTCTCTCCGGTTTCCCCGAATGGCTCCCCGACGGTCGCGTGGTGGAGCAGCACGTCCTGGACGTGCTGCGTCGCACCTTCGAGCTGCACGGGTTCGCCGGCATCGAGACGCGCGCGGTCGAGCCGCTCGACCAGCTGCTGCGCAAGGGCGAGACGTCCAAGGAGGTCTACGTCCTGCGGCGTCTGCAGGAGGAGGGTGACGACGTCGCGACGAGCGACGGCGGCGCGCGCTCCGAGAAGCAGCTCGGGCTGCACTTCGACCTCACGGTGCCGTTCGCGCGGTACGTGCTGGAGAACGCCGGTCGCCTCGCCTTCCCGTTCAAGCGCTACCAGATCCAGAAGGTCTGGCGCGGCGAGCGGCCCCAGGAGGGCCGGTTCCGTGAGTTCGTCCAGGCCGACATCGACGTCGTCGGGGCCGGCGACCTGCCGTACCACTACGAGGTCGAGCTGCCGCTGGTCATGGCGGAGGCGCTCGGTGCGCTGCGCGGGGTCGGGCTGCCGCCGGTCCGTGTGCTGGTCAACAACCGCAAGGTGGCCGAGGGCTTCTACCGCGGGCTGGGCCTGACCGACGTCGAGGGCGTGCTGCGCCAGATCGACAAGCTCGACAAGATCGGCGTGGAGAAGGTCGCCGAGCTGCTCGTCGCCGAGCAGGGCGCCACGCCCGAGCAGGCCGCGGCCTGCCTCGACCTGGCCGCGATCCACGGCAGCGACACCACCGTGGTCGACGACGTGCGCACGCTCGCCGCGCGCTACGACGCCGGCACGGACCTGCTCGAGACCGGCCTGGCGGAGCTCGGCGCGCTGATCGAGGCGGCGGGTGCCCGCGCACCCGGCGTCGTGGTGGCCGACCTCAGGATCGCCCGCGGGCTCGACTACTACACGGGATCCGTCTACGAGACGGTGCTGGTCGGGCACGAGCAGCTCGGCTCGATCTGCTCCGGCGGCCGGTACGACACCCTCGCCTCGGACGGCAAGAACACCTATCCCGGCGTCGGGCTGTCCGTCGGGGTCTCGCGGCTGGTCTCGCGCCTGCTCTCCGTCGGCCTGATGACCGCGACCCGGGGTGTGCCGACCGCGGTGCTCGTGGCCGTGACCGACGAGGAGCACCGCGCGCAGTCCGACGCGGTGGCCGCCGCCCTGCGGGCCCGCGGCATCCCCACGGACGTCGCGCCCACGGCGGCGAAGTTCGGCAAGCAGATCAAGGTCGCCGACCGCCGCGGCATCCCGTTCGTCTGGTTCCCGGGCGAGGAGCACCAGGTCAAGGACATCCGCTCCGGCGAGCAGGCCGCCGCGGACCCCGCCACCTGGTCGCCGTCCGCCGAGGACCTGCACCCCCGCGTCGTGCCGGGGGAGTGAMARVTPLSGFPEWLPDGRVVEQHVLDVLRRTFELHGFAGIETRAVEPLDQLLRKGETSKEVYVLRRLQEEGDDVATSDGGARSEKQLGLHFDLTVPFARYVLENAGRLAFPFKRYQIQKVWRGERPQEGRFREFVQADIDVVGAGDLPYHYEVELPLVMAEALGALRGVGLPPVRVLVNNRKVAEGFYRGLGLTDVEGVLRQIDKLDKIGVEKVAELLVAEQGATPEQAAACLDLAAIHGSDTTVVDDVRTLAARYDAGTDLLETGLAELGALIEAAGARAPGVVVADLRIARGLDYYTGSVYETVLVGHEQLGSICSGGRYDTLASDGKNTYPGVGLSVGVSRLVSRLLSVGLMTATRGVPTAVLVAVTDEEHRAQSDAVAAALRARGIPTDVAPTAAKFGKQIKVADRRGIPFVWFPGEEHQVKDIRSGEQAAADPATWSPSAEDLHPRVVPGENANANANANA
AK018_03472729putative proteinATGGACGTGCATGTGGTCGTCGCCCCGGTGTTCGGCACCAACTGCTGCGTGGTCGTGGCCGACGCCGCGCACCCCGACGGCCGGCGCGACTGCGTCGTGGTCGACGCGGGGGCCGGGACCGCGGGCCCCGTCACGGATCTGGTGGCCGAACGGTCCCTGCTGCCACGGGCCGTGCTGGCCACCCACGGGCATGTCGACCACACGTGGGACGCCGCCGCGCTGTGCCACCGCTTCGACGTGCCGCTGCGCCTGCACGCCGCCGACGTCTACCGGATCGCCGACCCGTTCGGCACGATCGGCCGCGGCGACGGCTCGGCCGCCGCGACCAGCGTCAGCGACGCGCTGGTGCAGGCGCTCGACGGTTTCGGCTGCACGCCGCGCGACTACGCCGCCCCCGGGCGGATCGAGCCGTTCGACGGCCCCGAGGCCGAGATCGTCGCCGGTGACGTCACCCTGCACGCCCGGCACGCCCCGGGCCACACCGAGGGCTCGACCCTCTACCTCGTCGACGGGTCCGACGCCGGCACCGGCGTCGTGCTCAGCGGGGACGTGCTCTTCGCCGGCGGGGTGGGGCGCACCGACCTGCCGGGCGCCGACGTCGAGGCGATGCTGGCCACGTTGCGCCAGGTCGTGCGACCGCTCGACCCGGCCCTCGGCGTCGTGCCGGGCCACGGCCCGACGACCACGGTCGGGCGCGAGCTCGCCACCAACCCGTTCCTGCCGGCCTGAMDVHVVVAPVFGTNCCVVVADAAHPDGRRDCVVVDAGAGTAGPVTDLVAERSLLPRAVLATHGHVDHTWDAAALCHRFDVPLRLHAADVYRIADPFGTIGRGDGSAAATSVSDALVQALDGFGCTPRDYAAPGRIEPFDGPEAEIVAGDVTLHARHAPGHTEGSTLYLVDGSDAGTGVVLSGDVLFAGGVGRTDLPGADVEAMLATLRQVVRPLDPALGVVPGHGPTTTVGRELATNPFLPAPGPT0001770_4404DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
AK018_03473798hypothetical proteinGTGGCGCCCAGCAAGCGCGAGCGCGAGTACGCCCGCAAGCGCGAGGCCAAGTGGGACGAGCGGCGACGCGCCAAGCAGGAGCGCCGCCGCCGGATCGGCGTGATCGTGGCGATCGTGACGATCTTCGGCCTCGTCGCCGGTGGCGCGTTCGTCGCGGGCCTGACCTCCTCCGACGACCCCGCGCCGGCGTCCGGCGCGCAGGACGAGCAGGCGGCCGCCAGTGCGTGCCCGCCCGGCGCGACCGAGGCGCGCGACGGCGGCGAGGTGCCCGACCCCGCGGTGGCCGAGGACCGCGCCTGGACCGCGTCGGTCGACCTCTGCGTCGACGGGGCCACCGAGACCGTCGAGCTCGAGCTGGTCGGCACCGAGGCGCCGCAGGCGGTGGCGAGCTTCGTGTCCCTGGCCCAGCAGGGCTACTTCGACGGCACGCAGTGCCACCGGCTGACCACGCAGGGCATCCACGTCCTGCAGTGCGGCGACCCGACCGCCACCGGCACCGGCGGCCCCGGCTACTCGTTCGGGCCGGTGGAGAACGCCCCCGCCGACGACGTCTACCCGGCCGGCACCCTGGCCATGGCCCGTCGGGGCGGCGACGCCGCATCGATGGGCTCGCAGTTCTTCCTCGTCTACGAGGACTCGACCATCCCGTCCGACGCAGCAGGCGGGTACACGGTGTTCGGCACCGTGACGTCCGGCCTGGACACGATCCAGGCAGTCGCTGACGCGGGCACGGCGGACGGAGCCGGCGACGGCTCCCCGGCGAGCCCCGTCATCATCGAAGGAGTGGAGACCCAGTGAMAPSKREREYARKREAKWDERRRAKQERRRRIGVIVAIVTIFGLVAGGAFVAGLTSSDDPAPASGAQDEQAAASACPPGATEARDGGEVPDPAVAEDRAWTASVDLCVDGATETVELELVGTEAPQAVASFVSLAQQGYFDGTQCHRLTTQGIHVLQCGDPTATGTGGPGYSFGPVENAPADDVYPAGTLAMARRGGDAASMGSQFFLVYEDSTIPSDAAGGYTVFGTVTSGLDTIQAVADAGTADGAGDGSPASPVIIEGVETQPGPT0015111_939DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015111-ppiB-K03768NANA
AK018_034741533hypothetical proteinGTGAGCGAGAGCACCCCCGGCTCGACCGGCCCCGAGGACGTCGAGGCCACCGAGCAGGCACAGGCCGAAACTCCTGGCGCCGGGACCGAGGAGTCCGCGACCCCGCCGCCCGCACCCGCCCCGGCAGCGCCCGCGCCGAAGCCGTCGGCCCCCAAGCCGGCCCCGCCGCGCCCGGGAGCGCCCAAGCCCTCGGCGCTCAAGCGGCCGACGCCGGCCACGGCGCCGACGCCCACGGCTCCGGCCGCGCCCGTCCCGCCCGTCCACGACGCGGCGGAGTCCGCGGCGGCCGCCGCGTTCGGCCGCGTGGACGACGACGGCACCGTGCACGTGCGCGACGGCGACACCGAGCGCGTCGTGGGCCAGTACCCGGGCGTGTCCACCGAGGAGGCGCTGACCCTGTACGTGCGGCGCTACCTGGACCTCGTGGCGAAGGTGGCCCTGTTCGAGACGCGCCTGGACAGCGCGGACCTGTCGATCCGCGAGATCGACCAGACGCTGGGCAAGCTGGCCGACGAGACCACCGAGCCGGCCGCCGTCGGCGACCTCGACGCCCTGCGCCGCCGCGTGGAGCACGCGCGCACCCGGGCGGCCGAGCGCCGTGCCGCGCTCGAGGCCGAGCGCGTCGCCGCCAAGGAGCGCGCGGTCGAGGCCCGCACCGAGATCGTCGAGGCCGCGGAGAAGATCGCCGGCACCGACCCGGACAAGATGCAGTGGCGTCCCGCCGGGGAGGAGCTGCGCCACCTGCTCGAGCGCTGGAAGGAGTCCCAGCGCAACGGGCCGCGCGTCGACCGCCCGACCGAGGAGGCCCTCTGGAAGCGGTTCAGCCAGGCGCGCACCGCCTTCGACCGCGAGCGCCGGCACTTCTTCGCCGAGTTGGAGCAGCGCAACGCCGCGGCCAAGGTCACCAAGGAGAAGATCGTCGCCGAGGCCGAGGCCCTGCAGCACTCCACGGAGTGGGGGCCCACGACGCGGGAGTACCGCGAGCTGATGAACCGCTGGAAGGCGGCAGGCCGGGCGCACCGCAAGGACGACGACGCCCTGTGGGCGCGGTTCCGGGCGGCGCAGGACGTGTTCTTCGGCGCGCGGGACGAGGCGAACGCGGCGATCGACGCGGAGTACGGCGAGAACCTCCAGGTCAAGGAGGCGCTCCTCGCCGAGGCGGAGGCGCTGCTGCCCGTGCGGGACGTCGACGCCGCCAAGGAGGCGCTGCGCGGGATCCAGGACCGCTGGGAGGAGGCCGGCAAGGTGCCGCGGGGAGACCTGTCGCGCATCGAGGGGCGCCTGCGAGCGGTCGAGAGCGCGGTCCGCGACGCCGAGGACGACAAGTGGCGCCGCACGAACCCCGAGACGCAGGCGCGTGCCGAGGGCGCGGCCGCTCAGCTCGAGGAGGCGATCACGGCCATGGAGTCCGAGCTCGCCGACGCCGAGTCCTCCGGTGACACGCGGTCCGCCGAGGAGCTGCGGGGCGCCATCGCGGCGCGCCGGGCGTGGCTCGAGCAGGTCGTCAAGGCGGCGGAGGACTCCCGCGGCTGAMSESTPGSTGPEDVEATEQAQAETPGAGTEESATPPPAPAPAAPAPKPSAPKPAPPRPGAPKPSALKRPTPATAPTPTAPAAPVPPVHDAAESAAAAAFGRVDDDGTVHVRDGDTERVVGQYPGVSTEEALTLYVRRYLDLVAKVALFETRLDSADLSIREIDQTLGKLADETTEPAAVGDLDALRRRVEHARTRAAERRAALEAERVAAKERAVEARTEIVEAAEKIAGTDPDKMQWRPAGEELRHLLERWKESQRNGPRVDRPTEEALWKRFSQARTAFDRERRHFFAELEQRNAAAKVTKEKIVAEAEALQHSTEWGPTTREYRELMNRWKAAGRAHRKDDDALWARFRAAQDVFFGARDEANAAIDAEYGENLQVKEALLAEAEALLPVRDVDAAKEALRGIQDRWEEAGKVPRGDLSRIEGRLRAVESAVRDAEDDKWRRTNPETQARAEGAAAQLEEAITAMESELADAESSGDTRSAEELRGAIAARRAWLEQVVKAAEDSRGNANANANANA
AK018_03475639hypothetical proteinGTGCCCGCTGCCGCCACGACGGCCGCGCGACCGCTGCGCGAGCTGCTGCACGGTCCCGGCGGGGACGCCACGGTCGTGCGTCCGGCGGACGTGGGCGGCGCCGCCGCCTGGCAGACCCTGGTGCGCGAGGGCGCGCTGCGGGTACTGCGCGGCGGGGCCGCCTGCCCCGCGGACCGGGTCGTCGACGCCGGGCTGCGCGGCGCGGTGCTCGCCGCCGACGTCCCGCACGGCGCCGTGGTCACGGCCCGCACGGCCACCTGGGTCCGCACCGGCTGCGGCCGCCCGGACCCCCTCGACCTGACCTACCCGGCGGGCCGCCACCGGCCCGACCGGCCGCCCGGCGCCCGGTTGTGGCAGGCCCGCCTGCTGGGCCCGGACGTCCGCGACGTCGGCGGCGTGCCCGTGACCACGACGCAGCGGACGCTGGTCGAGCTGGTGCTGCACGGCACCGATCCCGCCGAGACGGTGGACCTGGCCGTCGCCCTGCTGCGGGCCGGCGCGCGGGTCGAGGAGGCGCACGGCAGCATCTCGGCCCGGACCCGTGTCGCCGCCCGCGCTCGCGCCCACGATCTGCTCGCCGCGGCCGCCGCGGTCCTGGCCCCCGACAGCGCCCGCGCACCGGCGGGCTGCCCGGCGTAGMPAAATTAARPLRELLHGPGGDATVVRPADVGGAAAWQTLVREGALRVLRGGAACPADRVVDAGLRGAVLAADVPHGAVVTARTATWVRTGCGRPDPLDLTYPAGRHRPDRPPGARLWQARLLGPDVRDVGGVPVTTTQRTLVELVLHGTDPAETVDLAVALLRAGARVEEAHGSISARTRVAARARAHDLLAAAAAVLAPDSARAPAGCPANANANANANA
AK018_034761083ligD_4COG1793Multifunctional non-homologous end joining protein LigDATGCCTTCCGCGCGAGCAGTCGAGGTCGACGCCGCCGGGCGCTCCGTGCGGGTGTCCAGCCCGGACCGGGTCGTGTTCACCGACCTGGGGGTCACGAAGCTGGAGGTGGTCGAGTACTTCCTCACCGTCGGCGTCGGCATCCTCGGTGCCCTGCTGGACCGCCCCACGACGCTCGAACGCTGGCCCAAGGGCTACTCCCCCGACGCCGTGATGGCCACCCGCACGGACTCCCACGGCGACGCCTTCTACCAGAAGCGGGTCCCGAAGGGAGCACCCGACTACGTGCGCACGGCGCGGATCGCGTTCCCGTCGGGGCGCACCGCGGACGAGGTCGCCCCGAGCGAGCTCGCCGTGGTCGCCTGGGCCGCCCAGCTGGGCACGCTGACCTTCCACCCCTGGCCCGTGCGCCGCGACGACGTCGAGCAGGTGGACCAGCTGCGCATCGACCTCGACCCGCAGCCCGGCACCGACTACGCCGACGCGGCCCGGGTGTCGCTGACGCTGCGCGAGGTCCTCGGCGAGCTCGGCCTGGTCGGGTACCCGAAGACCTCCGGCGGACGGGGCCTGCACGTGTTCGTCCCGGTCGCACCACGGTGGAGCTTCGTCCAGGCGCGGCGGGCGACCATCGCGATCGGCCGCGAGCTGGAGCGTCGGCTGCCCGGGACGGTCACCACCCGCTGGTGGAAGGAGGAGCGCGGCGAGCGGATCTTCGTCGACTACAACCAGATGGCACGCGACCGCACGATGGCGTCGGCCTACTCCCTGCGACCCAACCCGCGCGCGACGGTCTCGACCCCGCTGGACTGGGACGAGGTGACCGAGGTGCACCCGGACGACTTCACGCTGCGCACGGTGCCGGACCGGTTCGCCGAGCGCGGCGACCTGCACGCGGCGCTGCGCGCCGATCGCGACCCGGCGCTCGACTGCTCGCTCCAGGCGGCGCTGGACCTGGCCCGGCGCGACGAGGAGGAGCACGGGCTGGGCGACCTGCCGTACCCGCCGGAGTACCCGAAGCAGCCCGGTGAGCCCAAGCGGGTCCAACCCTCGCGGGACACCGACCGTCCCCGGACGGCGGACGGCTGAMPSARAVEVDAAGRSVRVSSPDRVVFTDLGVTKLEVVEYFLTVGVGILGALLDRPTTLERWPKGYSPDAVMATRTDSHGDAFYQKRVPKGAPDYVRTARIAFPSGRTADEVAPSELAVVAWAAQLGTLTFHPWPVRRDDVEQVDQLRIDLDPQPGTDYADAARVSLTLREVLGELGLVGYPKTSGGRGLHVFVPVAPRWSFVQARRATIAIGRELERRLPGTVTTRWWKEERGERIFVDYNQMARDRTMASAYSLRPNPRATVSTPLDWDEVTEVHPDDFTLRTVPDRFAERGDLHAALRADRDPALDCSLQAALDLARRDEEEHGLGDLPYPPEYPKQPGEPKRVQPSRDTDRPRTADGPGPT0014910_1126DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
AK018_03477558hypothetical proteinATGGGAACGCTTCTGTACTCGACGACCTGCTCGATCGACGGGTTCGCGGCCGACGCCGACGGCAGCATCGACTGGACGGCCCCGAGCGACGAGCTGCACGCCTTCTTCAACGACCGGCTGCGTGACGTGGGCACCTACGTGATGGGCCGCCACATGTTCGCCACGATGCGGGTGTGGGACACCTGGCCCGCCGGGCAGAGCGCGGTCGCGGACGACTACGCCGCGATCTGGGCCGCGGCGGACAAGATCGTCTGCTCCGACCGCCTGGCGGCCACGGGCGTCGACGCCCCTCGGACCACGGTGGAGCCCCGCCTGACGACCCGGCGGCTGGCGCAGATCGTCGCCGACGCCGACGGGACGGTCGAGGTCTCCGGGCCGACGACGGCCGCCGACGCGTTGCGGTCCGGCATGGTCGACGTGCTGCAGCTGTTCGTGGCGCCGCGCGCCCTGGGCGGCGGTCTGCGCGCCCTGCCCGCGGGCATGGACCTGGCCCTGGAGCTCGCCGAGACGCGCCGGTTCGACAACGGGACCGTGCTGCTGCGGTACGAGCGCGCCTGAMGTLLYSTTCSIDGFAADADGSIDWTAPSDELHAFFNDRLRDVGTYVMGRHMFATMRVWDTWPAGQSAVADDYAAIWAAADKIVCSDRLAATGVDAPRTTVEPRLTTRRLAQIVADADGTVEVSGPTTAADALRSGMVDVLQLFVAPRALGGGLRALPAGMDLALELAETRRFDNGTVLLRYERANANANANANA
AK018_034781170ligC_2COG1793DNA ligase CATGGATCTGCCGCTCAGCCCGCCGGTCCGGCCCATGCTGGCCCGGTCGGTCGCCTCGGTGCCCGACCAGCCCGACGACGGTGCCGGCTGGGTCTACGAACCCAAGTGGGACGGCTTCCGTGCGATCGTCTACCGCGACGGCACCGAGATCCGGATCGACTCGCGCAACGCCCGCCCGATCCAGCGCTACTTCCCCGAGCTCGTCGAGGCCGTGCTGGACGTCCTGCCGCCCCGGTGCGTGGTCGACGCGGAGATCGTCGTGGCCCGCCCACCGGACGGCGACCGCGACGCCGCCCACCTCGACTTCGACACGCTGAGCCAGCGCATCCACCCGGCGGCCTCGCGGGTCGAGATGCTCGCCGGCGAGGTGCCGGCCAGCCTCGTCGTCTTCGACCTCCTGGCGCTCGACGACGAGGACCTGACCTCCCGACCGCTGACCGAGCGGCTGGCCCGGCTGGACGGGCTCGGCCTCTCCGGACCCCAGGTGCACGCCACCTCGCGCACGGCCGACGCCGGGACCGCGCGCGAGTGGTTCGCCGCCTTCGAAGGCGCCGGCCTCGACGGTGTGGTGGCCAAGACCGCCGACGGGGTCTACGAGCCGAACAAGCGCGGCTGGCTCAAGATCAAGCACGCGCGCACGGCCGACGTCGTCCTCGCCGGGGTGCGCGAGCACAAGACCTCGACCCCGGACCGCCCGCTGGTGGGGTCGCTGCTGCTCGGGCTGTACCGCGCGGCCGACGGTGACGACGTCGGCCCCTCGCTGCAGTTCGTCGGCGTCGCCGCCTCCTTCCCGGCGGCCCGGCGCGCCGCGCTGTACGACGAGCTCGCCCCGCTGCAGGTCGCCCCCGGCAGCCCGGAGGCCGTGGCCCACCCCTGGGCCGACTGGCAGGACCCCGCGGTGGCGGACGGCAGCGCGGGGGAGCGGCGGCCCGGTGCGCAGTCGCGGTGGAGCGCGGGCAAGGACCTGTCGTTCACCCCGCTGCGCGTCGAGCGGGTCCTCGAGGTCGGCTACGACCACATGGAGGGCGCCCGGTTCCGCCACACGGCCCAGTTCAAGCGGTGGCGCCCCGACCGCGAGCCGGCGTCGTGCACCTACGACCAGCTCGTCGAACCGGTCGGCTACGACCTGGCGGAGATCCTGCCGGGAGCTCCCGGCGTCGTGGACCGATGAMDLPLSPPVRPMLARSVASVPDQPDDGAGWVYEPKWDGFRAIVYRDGTEIRIDSRNARPIQRYFPELVEAVLDVLPPRCVVDAEIVVARPPDGDRDAAHLDFDTLSQRIHPAASRVEMLAGEVPASLVVFDLLALDDEDLTSRPLTERLARLDGLGLSGPQVHATSRTADAGTAREWFAAFEGAGLDGVVAKTADGVYEPNKRGWLKIKHARTADVVLAGVREHKTSTPDRPLVGSLLLGLYRAADGDDVGPSLQFVGVAASFPAARRAALYDELAPLQVAPGSPEAVAHPWADWQDPAVADGSAGERRPGAQSRWSAGKDLSFTPLRVERVLEVGYDHMEGARFRHTAQFKRWRPDREPASCTYDQLVEPVGYDLAEILPGAPGVVDRPGPT0014910_1126DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
AK018_034792352relA_2COG0317Bifunctional (p)ppGpp synthase/hydrolase RelAGTGAGCGACGACACGCAGGTCCGGTCTGCGGACGAGGCGCCCCGGCCCGCGTCCAACGGCGCCGGCAGGGGCGTGCGCAACCGGCTCGTCCGCCTCGGCGTGCGCGGCGCGACGCCGTCGACTCCCGCCCTCGAACCGCTGCTGCAGGCGGTGCGCACCAACCACCCCAAGAGCGACCTGAGCGTCCTGGAGCGTGCCTACGGCATCGCGGAGAAGGCGCACCGCGGTCAGCAGCGCAAGTCGGGCGACCCCTACATCACCCACCCCGTCGCGGTCGCCACGATCCTGGCCGAGCTCGGGTTCGACGGCGCGACGCTGGCCGCCGCGCTGCTGCACGACACGGTCGAGGACACCGAGTACTCCCTCGACGACCTGACGCGTGACTTCGGCAGCGAGATCGCGATGCTCGTCGACGGCGTGACGAAGCTGGACAAGGTCACCTACGGCGACGCGGCCCAGGCCGAGACCGTGCGCAAGATGGTCGTGGCCATGGCCAAGGACATCCGCGTGCTGGTCATCAAGCTCGCCGACCGACTGCACAACGCGCGCACCTGGAAGTACGTCTCGGGGTCGTCGGCGTCCCGCAAGGCGCGCGAGACGCTGGAGATCTACGCCCCGCTGGCGCACCGCCTGGGCATGAACACGATCAAGTGGGAGCTGGAGGACCTGTCCTTCCAGACCCTGTACCCCAAGGTGTACGACGAGATCGTCCACCTGGTCGCCGAGCGCGCGCCGGCCCGCGAGGAGTACCTCGGCGTGGTGCGCGAGCAGATCGCGGCGGACCTGCGCGGGGCGAAGATCCGGGCCACGGTGACCGGACGTCCGAAGCACTACTACTCGATCTACCAGAAGATGATCGTGCGCGGCCACGACTTCACGGAGATCTACGACCTGGTCGGTACCCGCGTCCTGGTGGACTCGGTACGCGACTGCTACGCGGCGCTCGGTGCGCTGCACGCGCGGTGGAACCCGGTGCCCGGCCGGTTCAAGGACTACATCGCGATGCCGAAGTTCAACATGTACCAGTCGTTGCACACGACGGTCGTGGGCCCCGGCGGCAAGCCGGTCGAGATCCAGATCCGCACGCACGACATGCACCGCCGCGCCGAGTACGGCGTCGCCGCGCACTGGAAGTACAAGGAGACGGCGCGCGCCGGCAAGGCCGGGTCGGACGACCCGCGGGCCAACGACATGACCTGGCTGCGCCAGCTCGTGGACTGGCAGCGCGAGACCGCCGACCCGGGGGAGTTCCTCGACTCGCTGCGCTACGAGATCGGCGCGGCCGAGGTCTACGTGTTCACGCCCAAGGGCGAGGTCATGGCCCTGCCGGCCGGGGCCACCCCGGTCGACTTCGCCTACTCGGTGCACACCGAGGTCGGACACCGCACCATGGGCGCGCGCGTCAACGGCCGGCTCGTCCCCCTCGACTCGCCGCTGCAGAACGGTGACGTCGTCGAGGTGCTCACCTCCAAGGCCGAGACCGCCGGCCCGTCGCACGACTGGCTGAACTTCGTGAAGTCCGGCCGGGCGCGCAACAAGATCCGGCAGTGGTTCACCAAGGAGCGCCGCGACGAGGCGATCGAGCGCGGCAAGGACGCGATCACGCGGGCGATGCGCAAGCAGAACCTGCCGATCCAGCGGTTGCTGAGCCACGAGGCGCTCGTGGGGCTGGCCAACGAGCTGCGCTACGACGACGTCTCCGCGCTGTACGCCGCGGTGGGGGAGAACAACGTCTCCGCCCAGCACGTCGTCGAGACGCTCGTGAAGTCCCTCGGCGGCGAGGACGGCACGGCCGAGGACACCGCCGAGGTCGCCCGGCCCGGGCAGGCCGTGCGGCGGTCGCGCTCCACCGGGGACCCCGGGGTCGCGGTCAAGGGCATGGACGACATCTGGGTCAAGCTCGCCAAGTGCTGCACGCCCGTGCCGGGCGACGACATCGTCGGGTTCGTCACCCGCGGGGCCGGTGTGAGCGTGCACCGGTCGGACTGCGCGAACCTCGCCCAGCTGCGCGAGCAGCCCGAGCGCATCGTGGACGTCTCCTGGACCACGGGCGCGAACACGATGTTCCTGGTCCAGATCCAGGTCGAGGCGCTGGACCGGTCGCGGCTGCTGTCGGACGTCACGCGGGTGCTGTCCGACCACCACGTCAACATCCTGTCGGCGACCGTGTCGACCTCGACCGACCGCATCGCCATCTCGCGGTTCGTCTTCGAGATGGCCGAGCCCGCGCACCTCCAGCAGGTGCTGGCCGCCGCCCGCAAGATCGACGGCGTCTTCGACGTGTACCGCATCACGGGCACGAAGGCCGACGAGGTCGGGTCCACCGCACCGGAGGCCCCGGTCGACGCCTGAMSDDTQVRSADEAPRPASNGAGRGVRNRLVRLGVRGATPSTPALEPLLQAVRTNHPKSDLSVLERAYGIAEKAHRGQQRKSGDPYITHPVAVATILAELGFDGATLAAALLHDTVEDTEYSLDDLTRDFGSEIAMLVDGVTKLDKVTYGDAAQAETVRKMVVAMAKDIRVLVIKLADRLHNARTWKYVSGSSASRKARETLEIYAPLAHRLGMNTIKWELEDLSFQTLYPKVYDEIVHLVAERAPAREEYLGVVREQIAADLRGAKIRATVTGRPKHYYSIYQKMIVRGHDFTEIYDLVGTRVLVDSVRDCYAALGALHARWNPVPGRFKDYIAMPKFNMYQSLHTTVVGPGGKPVEIQIRTHDMHRRAEYGVAAHWKYKETARAGKAGSDDPRANDMTWLRQLVDWQRETADPGEFLDSLRYEIGAAEVYVFTPKGEVMALPAGATPVDFAYSVHTEVGHRTMGARVNGRLVPLDSPLQNGDVVEVLTSKAETAGPSHDWLNFVKSGRARNKIRQWFTKERRDEAIERGKDAITRAMRKQNLPIQRLLSHEALVGLANELRYDDVSALYAAVGENNVSAQHVVETLVKSLGGEDGTAEDTAEVARPGQAVRRSRSTGDPGVAVKGMDDIWVKLAKCCTPVPGDDIVGFVTRGAGVSVHRSDCANLAQLREQPERIVDVSWTTGANTMFLVQIQVEALDRSRLLSDVTRVLSDHHVNILSATVSTSTDRIAISRFVFEMAEPAHLQQVLAAARKIDGVFDVYRITGTKADEVGSTAPEAPVDAPGPT0014310_513DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014310-spoT-K01139NANA
AK018_03480588apt_2Adenine phosphoribosyltransferaseGTGACGCGGCGCGTGACCGACGACATCTCGCTGGTCGCCCTGGCCGGGCTCGGCCCGGCCAGGGCGACCGAGATCCGGGACCTGATCCACGACGTCCCGGACTACCCGCACCCGCCGATCGTCTTCCGCGACATCACGCCGCTGCTGGCGGACGGTGCGGCGCTGGCCGACGTGACCGACGCCTTCGCGGCGCTGGTCGAGGCCGACGGCGGGGTCGACGTGGTCGCCGGGATGGAGGCGCGCGGGTTCCTGCTGGGTGCGCCGCTGGCCACCCGGCTCGGTGTGGGCTTCGTGCCGCTGCGCAAGGCCGGCAAGCTGCCCCCGCCGGTCGAGCGAGAGGACTACGAGCTCGAGTACGGCCACGCGTCCATCGAGCTGCGCCGGGGAACACTGGCACCCGGTGCACGTGTTCTGGTGGTCGACGACGTGCTGGCCACGGGCGGGACCGCACAGGCCGCGGCGCGGCTCGTCGAACGCAGCGGCGCCACCGTGGTGGCGCTGGCGTTCCTGCTCGAGCTCGCCGGTCTGGGTGGTCGTGCACGGCTCGCCGACCACACGGTCGAGACCCTGCTGCGGGTGGAGACGTAGMTRRVTDDISLVALAGLGPARATEIRDLIHDVPDYPHPPIVFRDITPLLADGAALADVTDAFAALVEADGGVDVVAGMEARGFLLGAPLATRLGVGFVPLRKAGKLPPPVEREDYELEYGHASIELRRGTLAPGARVLVVDDVLATGGTAQAAARLVERSGATVVALAFLLELAGLGGRARLADHTVETLLRVETPGPT0021455_673DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021455-apt-K00759NANA
AK018_034811101secF_2COG0341Protein translocase subunit SecFATGGCCGGCAGCATGACCTTCGCCCAGTGGGGCAACGACCTGTACACGGGCCGTCGCTCCTACCCGATCGTCGCCAAGCGGCGCGTCTGGTTCTCGATCGTCGGCGTCCTCGGGATCGCCTCGATCATCATCCTGCTCACCAAGGGCCTGACCCTGGGCATCGACTTCCGCGGTGGCTCGGAGTTCACGGTGACCAGCGCGACCACCACGGAGCAGTCCGTGGCTGTCGACGCCGTGCAGGAGGTCCTGCCCGAGGACGAGCCGCGCGTGGCGGTCGTGGGCGGCGAGGCCGTCCGCGTGCAGACCACGCAGGTCTCCGGCGCGGAGCAGACCGCCGTCATCGAGGCCCTCGCCGAGGGCTACGGGGTGGACCCGGCGGACGTCGACGCCTCGTTCGTGGGGCCGACGTGGGGCTCGGCGGTGTCCGAGCGCGCCCTGTGGGGCGTGGTCGTCTTCGTCCTGCTCGCCGCCGCCTTCATGGCCGTCTACTTCCGGGCCTGGCGCATGTCGGTCGCCGGCATCCTCGCGATGCTCAGCGACCTGCTGATCTCCGCCGGTGTGTACGCGCTCATCGGCTGGGAGGTGACGCCCTCGACGATCATCGGCTTCCTGACGATCCTCGGCTTCTCGCTGTACGACAAGATGGTCGTGTTCGACAAGGTCCGGGAGAACACCACCGGCGTGCTGGACCAGTCCCGCAACACCTACGGCGAGCGGGCCAACCTGGCCGTCAACCAGACGCTGGTGCGGTCCATCAACACCTCCGTGGTGGCGCTGCTGCCGGTGGCGGGGATCCTCTTCCTCGGCGCGTTCGTGCTCGGTGCGGGCACGCTGCGGGACCTGTCCCTGTCGCTGTTCGTGGGGATCGCCGTCGGCGCGGCCTCGTCGATCTTCCTGGCCACCCCGCTGGACGTGTCCCTGCGCGAGCGGGAGCCGAAGATCCGTCAGCACACCGCCGAGGTCCTGGCCGAGCGCGAGCGCCTGGCCACGGAGGGCGGGCACGAGGCCGAACTCGCCGCCGTCGCGGCCGGCCGGTCCCAGCTCATCCCCGGTCACCACCAGGGTCACGGGTCCCAGCCCCGGCGCAAGCGCGGCCGGTGAMAGSMTFAQWGNDLYTGRRSYPIVAKRRVWFSIVGVLGIASIIILLTKGLTLGIDFRGGSEFTVTSATTTEQSVAVDAVQEVLPEDEPRVAVVGGEAVRVQTTQVSGAEQTAVIEALAEGYGVDPADVDASFVGPTWGSAVSERALWGVVVFVLLAAAFMAVYFRAWRMSVAGILAMLSDLLISAGVYALIGWEVTPSTIIGFLTILGFSLYDKMVVFDKVRENTTGVLDQSRNTYGERANLAVNQTLVRSINTSVVALLPVAGILFLGAFVLGAGTLRDLSLSLFVGIAVGAASSIFLATPLDVSLREREPKIRQHTAEVLAERERLATEGGHEAELAAVAAGRSQLIPGHHQGHGSQPRRKRGRPGPT0029265_559DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0029265-secF-K03074NANA
AK018_034821944secD_2Protein translocase subunit SecDGTGGCCAACTCCAGCACGCGGCGCTCGCGTCCGGTACGCACGCTCGTGGTCTTCGCGCTCCTGTCGATGGTGGTGCCGTTCGTGGCACTCCTCGTCGGGACGTACCTGGACCCCAAGAGCGACGAGAACCCCGGCGGCGCCAGCCTGGCACCCGGACTCGCTCTCGACCTGCAGGGCGGGACCCAGATCATCCTGACCCCGACGTCCACGGATGGTTCGGAGCTGACCCCGGAGGCGATCGACGAGTCGATCAACGTCATCCGGCAGCGCATCGACTCCTCCGGCGTCGTCGAGGCCGAGATCGTCAACCAGGGCGGGGAGAACATCGTCGTCTCCATCCCCGGTGAGGTGGACCAGGCGACGATCGACCTCGTCTCCCAGCCCGCGCAGATGCGCTTCCGGCCGGTCCTGACCTACGAGCTCGGCCTCCCGGCCCAGGAGCCGTCGGCCGAGGCCTCGGCCGACGCCGAGGGGTCCGCCGACGGCGACGCCGAGGGCGAGGCGACCGAGGACGAGGCTCCGCAGGGCGCCACGCAGGAGGAGCTCGCCGCGTTCGACGAGCAGATCGCCGCCGAGGCCCAGGACGTCGACCCCACCGACGCCTCCGATCTCGCGCAGATCACGCCCGCCGTGCAGGAGAAGTTCGCCGCGCTCGACTGCACCGACCCGGCCAACCTGGTCGGCGGCGGCGGCGCGAACCCGGACCAGGTGCTCGTGACCTGCTCCAACGACGGCAGCCTGCTCAAGTACGTCCTCGGCCCGGTCGAGGTCGACGGCACGAGCCTGTCGAACGCCAGCTCCGGCCTGGTGCCGGGCCCGAACGGCTCGGTCACCAACGAGTGGGGCGTCTTCATCGAGTTCGACGACCAGGGCACCACGGAGTTCCGCACGGTCACCGAGCGCCTGCAGGGCCTGGAGCCGCCGCGCAACCAGTTCGCGATGGTGCTCGACGGTCTCGTGATCTCGGCACCGTCGCTGGACCCCGGCGTCATCATCACCGACGGCCAGGCCACGATCTCGGGCAACTTCACGCGCGACTCTGCGGCCACGCTGGCCAACCAGCTCAGCTTCGGCTCGCTGCCGATCGCCTACGAGGTGCAGAGCCAGGAGACGATCTCGGCGACGCTCGGCTCGGAGCAGCTGCGCAACGGTCTGATCGCCGGTCTGATCGGTATGGCCCTGGTCGTGGTGTACTCGCTGTTCCAGTACCGCACGCTGGGTCTGGTGACCGTGGGCTCGCTGCTCATCGCCGCGGCGATCACCTACGTGTCCATCGCGCTGCTGTCCTGGACGATCGACTACCGCCTGTCCCTGGCGGGCGTCGCCGGTCTGATCGTGGCCATCGGGTTCACCGCCGACTCGTTCATCGTGTACTTCGAACGCATCCGCGACGAGATGCGCGACGGGCGCTCGATGGCGATGGCGGTCGAGCGCGGGTGGCGCCGGGCCAAGCGCACGGTGCTGGCCGCGAAGTCCGTCACCCTCATCTCCGCGATCGTGCTGTACTTCCTCGCCGTCGGCGGGGTGCAGGGCTTCGCGTTCACCCTGGGTCTGACGACGATCATCGACATCGCCGTGGTGTTCTGGTTCACCCACCCGACGCTGCAGTTGCTGACCAAGGTGCCGTTCTTCCGCGACGGGCACTCCCTGTCGGGGCTGTCGCCCGAGCGGCTGCGCAGCACCGGCGGCCCGCGGTACGTGGGCGCCGGCCGGGTGGCCCGGCCGTCGCCCGACCCCGAGACCTCCGAGGAGCCGGTCCCGGCCATGGCGGGCGCGGCGTCCTCCCCGGCACCGACGACGGACGACTCCGGTCGCCGGCTGACGATCGCCGAGCGTCGTGCGGCGCAGCGGCGTGCGGCCGCGGCCGACGGACCGCCGGACGACCCCGGGACCGACGACCGCAGCCACGACGCCGTCCCCGGCGAGAACGAGGAGAGCCGCTGAMANSSTRRSRPVRTLVVFALLSMVVPFVALLVGTYLDPKSDENPGGASLAPGLALDLQGGTQIILTPTSTDGSELTPEAIDESINVIRQRIDSSGVVEAEIVNQGGENIVVSIPGEVDQATIDLVSQPAQMRFRPVLTYELGLPAQEPSAEASADAEGSADGDAEGEATEDEAPQGATQEELAAFDEQIAAEAQDVDPTDASDLAQITPAVQEKFAALDCTDPANLVGGGGANPDQVLVTCSNDGSLLKYVLGPVEVDGTSLSNASSGLVPGPNGSVTNEWGVFIEFDDQGTTEFRTVTERLQGLEPPRNQFAMVLDGLVISAPSLDPGVIITDGQATISGNFTRDSAATLANQLSFGSLPIAYEVQSQETISATLGSEQLRNGLIAGLIGMALVVVYSLFQYRTLGLVTVGSLLIAAAITYVSIALLSWTIDYRLSLAGVAGLIVAIGFTADSFIVYFERIRDEMRDGRSMAMAVERGWRRAKRTVLAAKSVTLISAIVLYFLAVGGVQGFAFTLGLTTIIDIAVVFWFTHPTLQLLTKVPFFRDGHSLSGLSPERLRSTGGPRYVGAGRVARPSPDPETSEEPVPAMAGAASSPAPTTDDSGRRLTIAERRAAQRRAAAADGPPDDPGTDDRSHDAVPGENEESRPGPT0029260_145DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0029260-secD-K03072NANA
AK018_03483432hypothetical proteinGTGGATTTCTCGATCATCATCCTCTTCGCCGTGCTCGCGGCCCTCATGCTCTTCATGAGCTCGCGCACGCGCAAGCAGCAGAAGAAGCAGTCCGAGTTCCGGTCCTCGCTCGCCCCCGGCCAGGAGGTCATGACCGGCTCCGGCCTCGTCGGCACCGTGATCGAGGTCGACGAGGAGTCGGACATCGTCACCCTCGAGTCCACTCCGGGCTCGCGCACCCGCTGGCTCCGTGCCGCCGTCGTGAAGCGGATGGACGAGCCGGTCGAGGAGGCCGAGGAGACCGAGGTGACCGAGGACACGTCGGAAACCGGTAGCATCGCCCCGGCAGACGGTCCCGTCGAGGTCCCGGACGACCTGTCGGAGTTGGACACCGCGGAGCGGAAGGTCCAGGAGGACAAGCGCCGGGAGCACGGCGAGACCGACGACAAGTGAMDFSIIILFAVLAALMLFMSSRTRKQQKKQSEFRSSLAPGQEVMTGSGLVGTVIEVDEESDIVTLESTPGSRTRWLRAAVVKRMDEPVEEAEETEVTEDTSETGSIAPADGPVEVPDDLSELDTAERKVQEDKRREHGETDDKPGPT0025730_380DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025730-yajC-K03210NANA
AK018_034841104ruvB_2COG2255Holliday junction ATP-dependent DNA helicase RuvBATGGCTGACGGCGCGATCGACCCCCAGGACCTCGGCGAGCGCCTCGTCGGCGCGGGCGCCGACGAGGTCGAGCGGGCCGCGGAGGCGGCGCTGCGGCCCAAGAAGCTCGACGACTTCGTCGGGCAGCGGATCGTGCGCGACCAGCTCTCGCTGGTGCTGCAGGCCTCCATCGGCCGGGACACCTCCCCGGACCACGTGCTGCTGTCCGGACCGCCGGGGCTGGGCAAGACGACGCTGGCGATGATCATCGCCGCCGAGCTCGGCACCTCGCTGCGGGTCACCAGCGGCCCCGCGATCCAGCACGCCGGCGACCTCGCCGCCGTGCTGTCCTCCCTGGAGGAGGGCGAGGTGCTGTTCATCGACGAGATCCACCGCCTCGCCCGCCCGGCCGAGGAGCTGCTCTACGTCGCCATGGAGGACTTCCGCGTCGACGTCGTCGTCGGTAAGGGCGCGGGCGCCAGCGCCATCCCCCTGACCCTGCCGCCGTTCACGGTGGTCGGGGCGACCACGCGGTCGGGGCTGCTGCCGGCGCCGCTGCGCGACCGGTTCGGGTTCACCGGGCACCTCGACTTCTACGAGGCGGACGAGCTGGAGCGCGTGATCCTGCGCTCGGCGGGGCTCCTCGGTGTGGACATCCGCCACGAGGCCGCGCACGAGATCGCCGGGCGCTCGCGCGGCACCCCCCGGATCGCCAACCGGCTGCTGCGCCGCGTGCGGGACTGGGCGCAGGTACGGGGCGACGGCGTGCTCGACCTGCGCGCGGCCCGTGCCGCGCTGGAGGTCTACGAGGTCGACCCCATCGGCCTGGACCGGCTGGACCGCGCCGTCCTGACGGCGCTGTGCCGCCGGTTCGGTGGGGGACCGGTCGGCCTGACGACCCTGGCCATGACGGTCGGGGAGGAGTCGGACACCGTCGAGACGGTGGCCGAGCCCTACCTGGTCCGCGAGGGGCTCGTGGCGCGCACGCCGCGGGGCCGGGTCGCGACCGCGGCCGCCTGGGAGCATCTGGGCATCGAGCCGCCGGCCGGGACGTGGGCCGCGCCGGCCCCGACGACCGGTGGGGGAACCGGGACGACGTCGCGGACGTTGTTCGACGAGGCCTAGMADGAIDPQDLGERLVGAGADEVERAAEAALRPKKLDDFVGQRIVRDQLSLVLQASIGRDTSPDHVLLSGPPGLGKTTLAMIIAAELGTSLRVTSGPAIQHAGDLAAVLSSLEEGEVLFIDEIHRLARPAEELLYVAMEDFRVDVVVGKGAGASAIPLTLPPFTVVGATTRSGLLPAPLRDRFGFTGHLDFYEADELERVILRSAGLLGVDIRHEAAHEIAGRSRGTPRIANRLLRRVRDWAQVRGDGVLDLRAARAALEVYEVDPIGLDRLDRAVLTALCRRFGGGPVGLTTLAMTVGEESDTVETVAEPYLVREGLVARTPRGRVATAAAWEHLGIEPPAGTWAAPAPTTGGGTGTTSRTLFDEANANANANANA
AK018_03485624ruvA_2COG0632Holliday junction ATP-dependent DNA helicase RuvAATGATCGCCTCGCTGTCCGGCACCGTGGCCCAGGTCGCCCTGGACCGCGCCGTCGTCGACGTCGGTGGGGTGGGCTACCTGGTCCACGCGACCCCGGCGACCCTGGCCGGGCTGCGCGTCGGCGAGCAGGCGCTCCTGCACACCACCCTCGTGGTGCGGGAGGACTCGATGACGGTCTACGGCTTCGCGGACACCGAGGAGCGCGAGGTGTTCGAGACCGCGCAGTCCGTGTCCGGCGTCGGGCCCCGGATCGCGCTGGCGATGCTGGCCGTGCTCACCCCGTCCGCCCTGCGCCGCGCCGTCGACCAGGAGGACATCGCCGCGCTGCGGCGGGTCCCGGGCATCGGCGCCAAGAGCGCGCAGCGCATCGTGCTGGAGCTGTCGGGCCGTCTGGGAGCGCCCGGGCCCGACGACGGCGCCGCCTCCGGTGCGGCGACCTCCGCGGCGGGCGACGAGCGCGACCAGGTCGTCGAGGCGCTCGTCGGCCTGGGCTGGGCCGCCAAGGTGGCCGAGGGCGCGGTGGACAAGGCGCTGGCGGAGGCGGGCACCGACCGTGTGGGCCCCACCGAGGTGCCGTCGACCCTGCGGGCCGCGCTGCGACAGCTGGGGCCGCGTCATGGCTGAMIASLSGTVAQVALDRAVVDVGGVGYLVHATPATLAGLRVGEQALLHTTLVVREDSMTVYGFADTEEREVFETAQSVSGVGPRIALAMLAVLTPSALRRAVDQEDIAALRRVPGIGAKSAQRIVLELSGRLGAPGPDDGAASGAATSAAGDERDQVVEALVGLGWAAKVAEGAVDKALAEAGTDRVGPTEVPSTLRAALRQLGPRHGNANANANANA
AK018_03486582ruvC_2Crossover junction endodeoxyribonuclease RuvCGTGGATCCGGGGCTGACCCGGTGCGGTGTCGGGGTCGTGGACTCCCGGCGCGGGCGCCGGGCGGCCCTCGTGGGTGTGGGTGTGCTGACGTCGGCGCCGGGGACGAGCACGGACCTGCGCCTGCTCGAGATCGCCGACGGGCTCGAGGGCTGGCTGGAGGAGCACACCCCGGACGTGGTGGCGGTCGAGCGGGTCTTCGCCCAGAACAACCGCGGCACCGTCATGGGCACGGCCCAGGTCGCCGGGCTGGCGATGGTCGCCGCCGCCCGCCGCGGCGTGCCGGTGGCCATGCACACCCCGAGCGAGGTCAAGGCGGCCGTGACGGGGTCGGGTCGGGCGGAGAAGGCCCAGGTCCAGCGCATGGTGGCTTCCATCCTGCGGCTGGACACCGCGCCCAGCCCCGCGGACGCCGCCGACGCCCTCGCCCTGGCCATCACGCACCTGTGGCGCCCGGCGGGCGCCCTGCAGGGCGGCGACCGCCACGAGCTCACCCCGGCGCAGCGCGCCTGGGCCGCCGCCGAGCACCGTGCGCGGGGTGCCCAGCGCGGTCCGCGCACCCCACGGAAGGAGACCGTCCGATGAMDPGLTRCGVGVVDSRRGRRAALVGVGVLTSAPGTSTDLRLLEIADGLEGWLEEHTPDVVAVERVFAQNNRGTVMGTAQVAGLAMVAAARRGVPVAMHTPSEVKAAVTGSGRAEKAQVQRMVASILRLDTAPSPADAADALALAITHLWRPAGALQGGDRHELTPAQRAWAAAEHRARGAQRGPRTPRKETVRNANANANANA
AK018_03487762COG0217putative transcriptional regulatory protein/MSMEI_2866ATGTCCGGTCACTCGAAGTGGGCCACGACCAAGCACAAGAAGGCGGCGATCGATGCCAAGCGCGGCAAGCTCTTCGCGAAGCTGATCAAGAACATCGAGGTCGCGGCCCGTACCGGCGGCGGCGACCCGACGGGCAACCCGACGCTGTTCGACGCCATCCAGAAGGCCAAGAAGTCCTCGGTGCCGAACGACAACATCGACCGCGCGGTCAAGCGCGGCTCCGGTGAGGGCGCCGACGCCGTTGACTACCAGGTCATCATGTACGAGGGCTACGGCAACAACGGCATCGCCGTGCTCGTGGAGTGCCTCACCGACAACAAGAACCGCGCCGCGGCCGAGGTGCGCACCGCGTTCACCCGCAACGGCGGGTCGCTGGCCGACCCGGGCTCGGTGTCCTACCTGTTCTCCCGCAAGGGCCAGGTCGTCGTCCCCAAGGCCGAGGGCGTCACCGAGGACGACGTGATGCTGGCGGCGCTGGACGCCGGGGCCGAGGAGGTCACCGACCAGGGCGACTACATCGAGGTGCTGTCCGAGGCGACCGACCTGGTCGACGTGCGCAGCGCGATCGTCGACGCCGGCATGGAGTACGACTCGGCGGACTCGATCTGGCACCCGTCGATGCAGGTGGAGGTCGACGTCGAGGGGGCGCGCAAGATCATGCGTCTCATCGACGCGCTCGAGGACAGCGACGACGTGCAGAACGTCTACGCGAACTTCGACGCGACCGACGAGGTCATGGCCGCGCTCGACTCCGACGACTGAMSGHSKWATTKHKKAAIDAKRGKLFAKLIKNIEVAARTGGGDPTGNPTLFDAIQKAKKSSVPNDNIDRAVKRGSGEGADAVDYQVIMYEGYGNNGIAVLVECLTDNKNRAAAEVRTAFTRNGGSLADPGSVSYLFSRKGQVVVPKAEGVTEDDVMLAALDAGAEEVTDQGDYIEVLSEATDLVDVRSAIVDAGMEYDSADSIWHPSMQVEVDVEGARKIMRLIDALEDSDDVQNVYANFDATDEVMAALDSDDNANANANANA
AK018_03488633pdxT_2COG0311Pyridoxal 5'-phosphate synthase subunit PdxTGTGACCACGACGATCGGAGTACTCGCCCTGCAGGGTGACGTGCGCGAGCACACCCGGGCCCTCGAGGGCGCCGGTGCGCGCGTCGTCCGCGTCCGTCGCCGCTCCGAGCTGGAGGCGGTCGACGGGCTGGTCCTGCCCGGCGGGGAGTCCACCACGATGGACAAGCTGTTGCGGGTGTTCGAGCTGCGGGACCCGTTGCGGACCGCGATCGCCGAGGGGCTGCCCGTGTACGGCTCGTGCGCCGGCATGATCCTGCTCGCCGACCGGATCACCGGCGGCATCGAGGGCCAGCAGACCCTCGGCGGCATGGACGTCACCGTGCAGCGCAACGCGTTCGGTCGCCAGGTCGACTCGTTCGAGGCGGACCTGGCGATGCAGGGCATCGAGGGCGGTCCGGTGCGCGCGGTGTTCATCCGCGCCCCCTGGATCTCCACGGCGGGGCCCGACGTCGAGGTCCTCGCCCGCATCCCGGAGCGGTCGACCGACGGGACCGGCCTCGGCGTGGCCGCCGGTAAGATCGTGGCAGCCCGTTCGGGGCGACTGCTCGCGACCGCGTTCCATCCGGAGGTCACCGGGGACTGGCGGGTGCACGCGCAGTTCGTCCGTGAAGTCAACGCCACGCGAAGGAGTTAGMTTTIGVLALQGDVREHTRALEGAGARVVRVRRRSELEAVDGLVLPGGESTTMDKLLRVFELRDPLRTAIAEGLPVYGSCAGMILLADRITGGIEGQQTLGGMDVTVQRNAFGRQVDSFEADLAMQGIEGGPVRAVFIRAPWISTAGPDVEVLARIPERSTDGTGLGVAAGKIVAARSGRLLATAFHPEVTGDWRVHAQFVREVNATRRSPGPT0009185_344DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009185-pdxT|pdx2|yaaE-K08681NANA
AK018_03489567hypothetical proteinGTGCCCTCGGCGTCCGCGTCGCTGGGTCCCGACTGGGTCCCCGGCCCGGACGGCCTGCGACACCGGCGGGCGGCCCGCGTCATCCTCCTGGACGACGGGGGCCGGGTGCTGCTGGTGCGCGGGCACGACGCCGACGACCCGGACCGGTCCTGGTGGTTCACCGTCGGCGGCGGCATCGACGACGGTGAGACCGAGGTCGAGGCCGCGCTGCGCGAGCTGCACGAGGAGGCGGGGCTGACGCTGGCGGCCGAGGACCTGGTGGGCCCGGTGATGACCCGTGCCGGGATCTTCCGCTTCCTGGCCGAGACCTGCCGGCAGGACGAGGTGTTCTTCCTGGCGTGCGTGGACGGTGGCCACGAACCCAGCGACCACGGCTGGACCGACGACGAGCGCGACGTCCTCGACGAGATGCGTTGGCTCACCCCCGACGAGCTGCGCGCCGAGACGCGCGAGGTGTTCCCCCGCGTCCTGCCCGACCTCGTCGACCACCTGGTCCGGGGCTGGGACGGCGTGGTCCGGCACCTCGGTGAGGAGAACGACGACGAGCTGCTCGCGTCCGCCGACTGAMPSASASLGPDWVPGPDGLRHRRAARVILLDDGGRVLLVRGHDADDPDRSWWFTVGGGIDDGETEVEAALRELHEEAGLTLAAEDLVGPVMTRAGIFRFLAETCRQDEVFFLACVDGGHEPSDHGWTDDERDVLDEMRWLTPDELRAETREVFPRVLPDLVDHLVRGWDGVVRHLGEENDDELLASADNANANANANA
AK018_034902505hrpB_2COG1643ATP-dependent RNA helicase HrpBGTGCCCGGTGCGGACCTGCCTGTCCGGGCGGTGCTTCCTGCCACGACCGAGGCGGTGCGCTCGCACGGTGCCGCCGTGCTGGTCGCACCCCCCGGATCGGGCAAGACCTCGCTGCTGCCGCTCGCGCTGGCCGACGCGCTCGAGGGGACGGTCGTCGTCGCCGAGCCGCGTCGGATGGCGACCCGCGCGGCCGCGACGCGGTTGGCGGCGCTGACGGGCGAACCTCTCGGGACGCGGGTCGGCTATGCCATGCGCGGTGAGCGCCGCGGCGGGAAGGACCTGCGCGTCGAGGTCGTGACCACCGGGCTCCTCGTGCGCCGTCTGCAGCAGGACCCGGAGCTGCCGGGCGTCGCGGCGATCGTGATCGACGAGTGCCACGAGAGACATCTCGACGCCGACCTGCTCCTCGCGTTCTGCGCCGACGTCCGGGAGAACCTGCGGGACGACCTGGTGGTCGTCGCGACGTCGGCCACCGCGGACACGGTCCGGCTGAGCCGGGTCCTGGGTGCGGACGCCCCGGCGCCCGTGATCACCGCGACGGCCACGGCGTTCGACGTCGAGGTCGAGTGGGCGCCCCCGCCGGTCGCGGCCCCGCTGCTCCCCGGCGGGCGGGTCGACCCCCGCCTGCTCGACCACGTGGCGGCCGTCGTCGAGCGTGCCCTGACCGAGGACGACGGCGACGTCCTCGTGTTCGTCCCGGGGGAGGCAGAGATCGGTGGTGTGACCCGCCGGTTGGCGGGTCACAACGTCCTGCCCCTGTTCGGGCGCCAGTCACGGTCCGAGCAGGACCGCGCGCTGGCGCCGTCCGACGAGCGACGGGTCGTGGTCACGACGTCGGTCGCGGAGAGCTCGCTCACCGTGCCCGGCGTCAGGGTCGTCGTGGACTCCGGGCTCTCCCGGGAGCCGCGGACCGACCAGTCCCGTGGCCTCGGCGCGCTGGTCACCTGCCGGGTCTCGAGATCCTCGGCCGAGCAGCGGGCGGGTCGCGCGGGGCGGGAGGCGCCCGGCCGGGTCTACCGGTGCTGGTCGCGGACCGACCACGCGCGCCTCGAGGACCATGCCGCGCCCGAGATCGCGATCGCGGACCTGGCGGCCTTCGCCCTCGACCTGGCGGCCTGGGGCGCGCCCGGCGGTGACGGCCTGGCCCTGCTCGACGCGCCACCGACGCCGGCGATGTCCGCGGCCACCGCGCTGCTGCGCAGCTTCGGCGCGCTGGACGACGGCGGCCGGATCACCGAGTGGGGACGGCGGATGGCCCGGTTCGGGGTGCACCCACGCCTGGCGCGCGCGCTGCTCGACGGCGCGCCGCGGGTCGGTGCCGCCCGGGCGCGCGAGGTCGTCGCCCTGCTGTCGGACGACACCGGCGGCGGGGCCGGGGACGACCTGCCGGCGCGCTGGCGCGCCCTGCGCCGCGGCGAGGACCGCGGGGCCACCGACCGCTGGCGCCGCGAGGTGGAGCGCCTGGGCCGGGGAGCGCCCGACGACGTGGCGCGCGGCGGGCGGGCTCTGCACCGTGGGGACGAGGTGCCGGACGACCTCGCGGCGGGGATCGTCGTGGGGCTGGCGTACCCGGACCGGATCGCGCGGGCCCGGGGGACCGGCTCGGTGTCCTACCAGATGTCCGGGGGGACGGGCGCCGCGCTGGACGCGCGCTCGCCGTTGCGGCCGGCGACCTGGCTGGCCGTCGCCGTCGCCGACCGGGCGCCTGGTCGCGCGGACGCCAGGATCCGTTCCGCGGCACCGATCGACGAGGCGACCGCGCGAGAGGTCGCGGCCGACCTCGTGGAGACCTCCGACCGGATCCGCTGGGACGAGGACCGGGTCGTGACCCGGCGGGTCGAGTCGCTCGGCGCCATCGTGCTGAACGACGTCCCGCTGGCACGGCCGGACCCGTTGCTCGTCCAGGCCGCCGCCCGCGACGGCCTGCGGCGCAGCGGTCTTTCCGTGCTGCGCTGGTCGCAGGGGGCGCTTGCTCTGCGGGAGCGCCTCGCGTTCTGCCACGCCCACCTCGGCGCCCCGTGGCCCGCGGTGGACGACGACGCGCTGCTGGCCGGGCTCGACGACTGGCTCGGTCCCGAGCTCGCCGCGGTGCGCGACGGGCGGGACCTGGCCCGCATCGACGTGCTGGCGGGGCTGCGGCGACTGCTGCCGTGGCCCGCGGCGACCCGGCTCGACGAGCTCGCGCCCGAGCGGCTCCGCGTCCCGTCGGGCTCTCAGGTGCGGCTGACGTACGACGGTGCCGAGCCGCCGGTCCTGGCGGTGAAGCTCCAGGAGGTGTTCGGCTGGACCACCACGCCCGCCGTCGCGGACGGGAGGGTCCCCGTCGTGCTGCACCTGTTGTCGCCCGCGCGGCGCCCGGTCGCGATCACGAGCGACCTCACCTCCTTCTGGCAGCAGGGCTACTCCCAGGTCCGGGCCGACCTGCGGGGCCGCTACCCGCGCCATCCGTGGCCGGAGGACCCCCTCGCCGCCGCTCCGACCGCGCGTCCGACGCGCCGTCGGTGAMPGADLPVRAVLPATTEAVRSHGAAVLVAPPGSGKTSLLPLALADALEGTVVVAEPRRMATRAAATRLAALTGEPLGTRVGYAMRGERRGGKDLRVEVVTTGLLVRRLQQDPELPGVAAIVIDECHERHLDADLLLAFCADVRENLRDDLVVVATSATADTVRLSRVLGADAPAPVITATATAFDVEVEWAPPPVAAPLLPGGRVDPRLLDHVAAVVERALTEDDGDVLVFVPGEAEIGGVTRRLAGHNVLPLFGRQSRSEQDRALAPSDERRVVVTTSVAESSLTVPGVRVVVDSGLSREPRTDQSRGLGALVTCRVSRSSAEQRAGRAGREAPGRVYRCWSRTDHARLEDHAAPEIAIADLAAFALDLAAWGAPGGDGLALLDAPPTPAMSAATALLRSFGALDDGGRITEWGRRMARFGVHPRLARALLDGAPRVGAARAREVVALLSDDTGGGAGDDLPARWRALRRGEDRGATDRWRREVERLGRGAPDDVARGGRALHRGDEVPDDLAAGIVVGLAYPDRIARARGTGSVSYQMSGGTGAALDARSPLRPATWLAVAVADRAPGRADARIRSAAPIDEATAREVAADLVETSDRIRWDEDRVVTRRVESLGAIVLNDVPLARPDPLLVQAAARDGLRRSGLSVLRWSQGALALRERLAFCHAHLGAPWPAVDDDALLAGLDDWLGPELAAVRDGRDLARIDVLAGLRRLLPWPAATRLDELAPERLRVPSGSQVRLTYDGAEPPVLAVKLQEVFGWTTTPAVADGRVPVVLHLLSPARRPVAITSDLTSFWQQGYSQVRADLRGRYPRHPWPEDPLAAAPTARPTRRRNANANANANA
AK018_03491951pdxS_2COG0214Pyridoxal 5'-phosphate synthase subunit PdxSGTGCTCGAAGAACTCTGTGAGGTTGCGTTGAGCGAGACCACCGGGACACCTGCCCCCTCCACGGGCGTCGGCGAGGTGGGCACGGCCCGCGTCAAGCGCGGGATGGCCGAGATGCTCACCGGGGGCGTCATCATGGACGTCGTCACCCCCGAGCAGGCGAAGATCGCCGAGGACGCCGGCGCCGTCGCGGTCATGGCGCTCGAGCGGGTCCCCGCGGACATCCGCGCCCAGGGCGGTCTGGCGCGGATGAGCGACCCGGACATGATCGAGGGCATCATCGACGCGGTGTCCGTGCCGGTCATGGCGAAGGCCCGCATCGGCCACTTCGTCGAGGCGCAGGTGCTGCAGTCCCTCGGCGTCGACTACGTCGACGAGTCCGAGGTGCTGTCGCCGGCCGACTACACCAACCACATCGACAAGTGGCAGTTCACCGTGCCGTTCGTGTGCGGGGCGACCAACCTGGGCGAGGCGCTGCGCCGCATCACCGAGGGTGCGGCGATGATCCGCTCCAAGGGCGAGGCCGGCACCGGAGACGTGTCCAACGCCACGACCCACATGCGGCAGATCCGCCAGGAGATCCGGCGGCTGACGTCGCTGCCCACCGACGAGCTGTTCGTCGCCGCCAAGGAGCTGCAGGCGCCCTACGAGCTGGTCGCCGAGGTGGCGCGGACGGGCAAGCTCCCCGTGGTGCTCTTCACCGCCGGCGGGATCGCCACCCCGGCCGACGCCGCGATGATGATGCAGCTCGGCGCCGAGAGTGTCTTCGTCGGGTCCGGGATCTTCAAGTCGGGCGACCCGGCCTCGCGTGCCAAGGCCATCGTGCAGGCCACCACCTTCCACGACGACCCGGACGTCATCGCCCAGGTCTCGCGAGGGCTGGGGGAGGCCATGGTCGGCATCAACGTCGAGGAGGACCCCGAGCCGGTGCGGCTCGCCGAGCGCGGCTGGTGAMLEELCEVALSETTGTPAPSTGVGEVGTARVKRGMAEMLTGGVIMDVVTPEQAKIAEDAGAVAVMALERVPADIRAQGGLARMSDPDMIEGIIDAVSVPVMAKARIGHFVEAQVLQSLGVDYVDESEVLSPADYTNHIDKWQFTVPFVCGATNLGEALRRITEGAAMIRSKGEAGTGDVSNATTHMRQIRQEIRRLTSLPTDELFVAAKELQAPYELVAEVARTGKLPVVLFTAGGIATPADAAMMMQLGAESVFVGSGIFKSGDPASRAKAIVQATTFHDDPDVIAQVSRGLGEAMVGINVEEDPEPVRLAERGWPGPT0009180_540DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009180-pdxS|pdx1|yaaD-K06215NANA
AK018_03492600hypothetical proteinATGACCTGGAGCTGGTCCGAGACGGCGCTGCTCGTCGTCGTCCTCCTCGGGCTCGTGCTGTGGCTGGTCTGGCTCACGGCCTCACGCCTGGACCGGCTGCACCGCAAGGTCGTCGCCTCCCGGCACGCGCTGCAGGCACAGCTGGACCGCCGCGGGCGGGTGTGCGTGGACCTGGCCTCCTCGGGGCTGCTGGATCCGGCCAGCGCGGTGCTGCTCGCCGACGCCGCCCTGGCCGCGCTCGACACCCCGGACCGCCCCGCCGAGCCGCGACCCAGCGAGGCGTTCGCCCTGACGGGCCTCCCGGCGGAGCGCGAGCGCGCCGAGTCTGCGCTGTCCATGACGCTGCGCTCCGTGCTCGAGGACCCCTCAGACGTCGCCGAGCTGCGGAGCACGGCCACCGGGGACGACCTGGTCGACGACCTGTCCTCGTCCTGGTACCGGGCCCAGCTCGCCCGGAGGTTCCACAACGAGGCGGTGGCCCAGGCGCGGCGTGCCCGCCGTCCGCGCGCCGTGCGCTGGCTGCGCCTCGCGGGCCGGGCGCCGCTGCCGCGCACGGTGGAGCTCGACGACCAGATGCCGGCCGGGCTCGAGGGGGCCTGAMTWSWSETALLVVVLLGLVLWLVWLTASRLDRLHRKVVASRHALQAQLDRRGRVCVDLASSGLLDPASAVLLADAALAALDTPDRPAEPRPSEAFALTGLPAERERAESALSMTLRSVLEDPSDVAELRSTATGDDLVDDLSSSWYRAQLARRFHNEAVAQARRARRPRAVRWLRLAGRAPLPRTVELDDQMPAGLEGANANANANANA
AK018_034931221pimA_2COG0438Phosphatidyl-myo-inositol mannosyltransferaseATGCGGCCCCTGCGCGTGGGCATCGTGTGCCCCTACTCCTTCGACGCCCCCGGCGGCGTGCAGTTCCACGTGCGCGACCTCGCCGAGGCGCTGCGCGACGGCGGCCACGAGGTCTCCGTCCTGGCCCCGGCCGACGAGGACACCGAGGTGCCCGACGTCGTCACCCCGGCCGGCCGCGCGGTCCCGGTGCGCTACAACGGCTCGGTCGCGCGCCTGGCCTTCGGGCCCCGCGCCGCCGCGCGCGTGCGGCGCTGGATTGACGCGGGACAGTTCGACGTGCTGCACCTGCACGAACCCATGACCCCGTCGCTGTCCATGCTGGCCCTGTGGGTCGCCGACGGCCCCGTGGTGGCGACCTTCCACACCTCCCAGGTGCGGTCGCGCGCCCTGCAGATCGCCCACCCGCTGCTGCGCCAGTCGCTGGAGAAGATCTCGGCGCGCATCGCGGTGTCCGAGGACGCGCGCCGCACGCTGGTCGAGCACCTCGGCGGGGACGCCGTCGTGGTGCCCAACGGGGTGTACGTCGACGACTTCGACGTGCCGCCCGCGCCGCACTGGCAGGGCACGCCGGAGGCGCCCACCGTGGCGTTCCTCGGCCGGCTCGACGAGCCGCGCAAGGGGCTGCAGGTCCTGGCCGCCGCCGCCCCGCGGATCCTGGCCGAGGTGCCGGGCGCGCGCTTCCTCGTCGCCGGGCGCGGCGACGAGGGTCGTGCCGACGCCGAGGCCGCCCTGGGCGAGCACGCCGGCGCGTTCGAGTGGCTCGGCGGCGTCAGCGACGCCGACAAGGCCACGCTGCTGGCGTCCGCGGACCTCTACGTCGCCCCGCAGACGGGCGGCGAGAGCTTCGGCATCGTCCTGGTCGAGGCGATGAGCGCCGGCGCCGGCGTCGTCGCCAGCGACCTGGGCGCGTTCCGCCGCGTGCTCGACGACGGTGCGGCCGGACGCCTGTTCCGCACCGGCGACCCGGAGGACCTCGCCGCCACGGTCCTGGCGGCGCTCGCGGACCCGGACGGCACCGAGGAGCGCCGACGGCGGGCCCGCCGGTTCGTGCGGGGCTTCGACTGGTCGCAGGTCACCGCCCGGGTGCTGGCGGTGTACGAGATGGCCGTCGCCGCCTCCGAGGCGCTCGGCGACGGCGCGGTGCGCCAGGACCTGCTCGCCGGGCGGGCCACGTGGCTCCTGGGCCGCGGTCCGCGCCTGCGCGGAGGGGAGGACCGATGAMRPLRVGIVCPYSFDAPGGVQFHVRDLAEALRDGGHEVSVLAPADEDTEVPDVVTPAGRAVPVRYNGSVARLAFGPRAAARVRRWIDAGQFDVLHLHEPMTPSLSMLALWVADGPVVATFHTSQVRSRALQIAHPLLRQSLEKISARIAVSEDARRTLVEHLGGDAVVVPNGVYVDDFDVPPAPHWQGTPEAPTVAFLGRLDEPRKGLQVLAAAAPRILAEVPGARFLVAGRGDEGRADAEAALGEHAGAFEWLGGVSDADKATLLASADLYVAPQTGGESFGIVLVEAMSAGAGVVASDLGAFRRVLDDGAAGRLFRTGDPEDLAATVLAALADPDGTEERRRRARRFVRGFDWSQVTARVLAVYEMAVAASEALGDGAVRQDLLAGRATWLLGRGPRLRGGEDRPGPT0024295_28DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024295-pimA-K08256NANA
AK018_03494951COG1560Phosphatidylinositol mannoside acyltransferaseATGGACGTCGCCGCGCTGTACACGTTCGCCTGGCGGCACGCCCACCGGGTGCCCGAACCGGTGCTGCGGGCGGCCGCCACCCTGGCCGCGGACCTGACCTGGGTGCGCCACGGCGCCGGGGTGCGCCGGCTGGAGGCGAACTACGCCCGCATCCGGCCCGACCTGGACGACCGGGCCGTACGCCGGCTGTCCCGCGAGGGGATGCGTCGCTACCTGCGCTACTTCCGTGAGGCGTTCACGCTCCAGGGCGCCGACGCCGACCAGCTCGCCGCCCGCGTGCGCGCCGAGGGCGAGGAGAACGTCCGGCCGGTGCTCGACGACGGCGGCTCGGTGGTGCTGGCGCTGACGCACGCGGGCAACTGGGACCTCGCCGGCGCGTGGGCGACCCCGCACCTGGCGCCCGTGCTGACGGTGGCCGAACGGCTCGAGCCCGCCGCGCTGTTCACCGAGTTCGTCGCGTTCCGCCGCTCGATCGGCATCGACGTGCTGGCCCTGGGCGACGACGGGGTCTTCCGCGACCTCGTGCGTGGCGCCGAGGACGGCCCCCGGCTCGTCCCGCTGCTGGCCGACCGGGACCTGACGGCCCGGGGCGTCGAGGTCGACCTGCGCGGTCACCGCGCGCGCGTCGCGGCGGGCCCCGCCGCTCTCGCCCTGGCGGCCGACGCCCCGCTGGTCCCCGTGGGCGTCTTCCACGAACGGCTGCACGGCGAGCGTCGTCGGCGGGCCGGGTCGGCCTGGGGGATCGTCATCCGGTTCCTGCCGCCGGTCCCGGTGCCCGACGCCGGCGACCGCCGCACCCAGATCGCCCGACTCACCCAGGGCTGGGTGGACGCCGTGGGAGAGTTCCTCGCAGAGCGCACGGCCGACTGGCACATGCTGCAGAAGGTGTTCGTCGACGACCTCGACCCCGAGCGCTACGCCCGGACCAGGGCGCGGGCGGGGGAGATCTGAMDVAALYTFAWRHAHRVPEPVLRAAATLAADLTWVRHGAGVRRLEANYARIRPDLDDRAVRRLSREGMRRYLRYFREAFTLQGADADQLAARVRAEGEENVRPVLDDGGSVVLALTHAGNWDLAGAWATPHLAPVLTVAERLEPAALFTEFVAFRRSIGIDVLALGDDGVFRDLVRGAEDGPRLVPLLADRDLTARGVEVDLRGHRARVAAGPAALALAADAPLVPVGVFHERLHGERRRRAGSAWGIVIRFLPPVPVPDAGDRRTQIARLTQGWVDAVGEFLAERTADWHMLQKVFVDDLDPERYARTRARAGEIPGPT0024265_242DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_PIM_ANCHOR,PGPT0024265-ptfP1-K22311NANA
AK018_03495639pgsA2_4COG0558Phosphatidylinositol phosphate synthaseATGTTCGGCCGCCTGCGGGCCACCATGCAGCGACTGTTCACCCCGCTGGCGCACCTGCTGCTCCGTCGGGGCGTGTCCCCGGACGCGGTGACCGTCGCCGGGACCGTCGTCGTGACCGTGCTCGCCCTGACCCTGCTGCCGACCGGTCACCTGCTGCTCGGCGGGATCCTCATCGGGCTGTTCGCCCTGACCGACTCGCTCGACGGCGTGATGGCGCGCCTCAGCGGGCGGACCGGCCCGTGGGGTGCGTTCCTGGACTCGACGCTGGACCGGATCTCCGACGGCGCCGTCTTCGCGGGCATCACGCTGTGGTTCGTGCTGCACCCCGAGGTGCCGTACGCCACCTGGGGCACGACGGCCGCCCTGGCCTGCCTCGTGCTGGGCTCGGTGGTGCCGTACGCGCGGGCGCGCGCCGAGTCGGTGGGGGCGACGGCGGACGTCGGGATCGCCGCACGCACCGACCGCCTGGTGATCGCCCTGGCGCCCATCGCGTTCGTGCAGGTCGGGCTGCCCGTCCTGGTGGCCGTGGTGGTACTGACCCTGCTGGCGGCGGCGAGCCTGCTCACCGTGGTGCAGCGCATCGCGACGGTCCGCCGCCAGATCCACCTGGGCGGGCGCCCGGACCTCGAGGAGGCCTGAMFGRLRATMQRLFTPLAHLLLRRGVSPDAVTVAGTVVVTVLALTLLPTGHLLLGGILIGLFALTDSLDGVMARLSGRTGPWGAFLDSTLDRISDGAVFAGITLWFVLHPEVPYATWGTTAALACLVLGSVVPYARARAESVGATADVGIAARTDRLVIALAPIAFVQVGLPVLVAVVVLTLLAAASLLTVVQRIATVRRQIHLGGRPDLEEAPGPT0007705_1963DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995NANA
AK018_03496564COG0537AP-4-A phosphorylaseGTGACGGACCCGGAGACCGGACCCGAGCTGGTGCCGGCGGACCGGTTCGGCCCGCCGGAGGACGACATGGCGCGGCTGTGGACGCCGCACCGCATGGTCTACATCGGTGGGCAGGACAAGCCGGCCGACTCCTCGGTGGCGCAGTGCCCGTTCTGCCGCATCCCGGCGGGCGACGACGCCGACGGCCTCCTCGTCGCCCGGGGGACGACGTGCTACGTGGTGCTCAACCTGTACCCGTACAACAGCGCCCACCTGATGGTGCTGCCGTACCGGCACGTCTCGGACTACCCGGACCTGACGCCGGAGGAGACGCTCGAGCTGGCCGAGCTGACGCAGACGGCGATGCAGGTCGTGCGGCAGGTCTACGCCCCGGCCGGGTTCAACCTCGGGATGAACCAGGGTGAGGTCGCCGGGGCCGGCATCGCCGCGCACCTGCACCAGCACGTGGTGCCCCGCTGGCTCGGCGACGCGAACTTCCTGCCCGTGGTCGGGCGGACGAAGTCGCTGCCGGAGCTCCTCGCGGACACCCGGGAGCGCCTCGCCGCGGCGTGGCCCGCCGCCTGAMTDPETGPELVPADRFGPPEDDMARLWTPHRMVYIGGQDKPADSSVAQCPFCRIPAGDDADGLLVARGTTCYVVLNLYPYNSAHLMVLPYRHVSDYPDLTPEETLELAELTQTAMQVVRQVYAPAGFNLGMNQGEVAGAGIAAHLHQHVVPRWLGDANFLPVVGRTKSLPELLADTRERLAAAWPAAPGPT0021690_498DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021690-hit-K19710NANA
AK018_034972016thrS_2COG0441Threonine--tRNA ligaseGTGTCCGACGTCGTCGCGAACCCCACCCGGCCCTCTGATGCGGTGACGGTGGAGACCACGACCACGGGCACCGAGCTCTTCGCCGACCGGCGCGAGGTGGTGGTGATGCGCGTCGACGGCGAGCTGCTGGACCTGTCCCGCGAGCTCGCGGCCGGTACCGTCGTCGAGCCCGTGACCGTCGACTCGCCGGACGGCCTGGCGGTGCTGCGCCACAGCGCGGCGCACGTGCTGGCCCAGGCGGTGCAGCAGGTGAACCCCGACGCGCGGCTCGGTATCGGCCCACCGGTGACCGACGGCTTCTACTACGACTTCGACGTCGTCGAGCCGTTCACCGCCGAGGACCTCAAGAAGCTCGACAAGGCGATGGCCCGCATCGTCAAGGAGGGCCAGACCTTCCGCCGTCGCGTGGTGACCGAGGACGAGGCACGCGCCGAGCTGGCCGCCGAGCCGTACAAGCTCGAGCTCATCGGGCTCAAGGGAGGCTCCTCCGACGAGGACGGATCGTCGGTCGAGGTCGGCGGCGGCGAGCTGACCATCTACGACAACGTGCGCGGCGCCGGTCGCGACAGCGAGCAGGTCGTCTGGTCCGACCTGTGCCGGGGGCCGCACCTGCCCTCGACGAAGCTCATCGGCAACGGCGTGCAGCTCATGCGCTCGGCAGCGGCCTACTGGCGCGGCAGCGAGAAGAACCCGCAGCTGCAGCGGGTCTACGGCACCGCCTGGCCGAGCAAGGACGAGCTGAAGGCCTACCTCGAGCGCCTCGCGGAGGCCGAGCGCCGCGACCACCGCCGCCTGGGCAGCGAGATGGACCTGTTCAGCTTCCCCGACGAGATCGGCTCGGGGCTGGCGGTGTTCCACCCCAAGGGCGGCATCGTGCGCACCGAGATGGAGGACTACTCCCGGCGCAAGCACGTCGAGGGCGGCTACTCGTTCGTGGCGAGCCCGCACATCACCAAGGGACGGCTGTTCGAGACCTCTGGGCACCTGGACTGGTACGCGGACGGGATGTACCCGCCGATGCACCTGGACGCCGAGCTCGACGACGACGGCACCGTGCGCAAGCCCGGCCAGGACTACTACCTCAAGCCGATGAACTGCCCGATGCACAACCTGATCTTCGACTCGCGCGGTCGCTCCTACCGCGAGCTGCCGCTGCGCCTGTTCGAGTTCGGGACCGTCTACCGGTACGAGAAGTCCGGCGTCGTGCACGGGCTGACCCGCGCCCGCGGCTTCACCCAGGACGACGCGCACATCTACTGCACCCGCGACCAGATGCGCGACGAGCTCGCCACCACGCTGACCTTCGTCCTGGACCTGCTCAAGGACTACGGCCTGGACGACTTCTACCTCGAGCTGTCCACCCGCGACCCGGAGAAGTCGGTCGGCCACGACGAGGCCTGGGAGGAGGCGACCCGCACCCTGGAGGAGGTCGCCACCGCCTCCGGCCTGGACCTCGTGCCGGACCCGGGCGGAGCCGCCTTCTACGGCCCGAAGATCTCGGTGCAGGCCAAGGACGCCATCGGCCGCACCTGGCAGATGTCGACGATCCAGCTCGACTTCAACCTGCCGGAGAAGTTCGACCTGGAGTACACCGCCGCGGACGGCACCCGGCAGCGCCCGGTGATGATCCACCGCGCGCTCTTCGGCTCCATCGAACGGTTCTTCGCCGTCCTGCTCGAGCACTACGCCGGGGCCTTCCCGGCCTGGCTCGCCCCCGTGCAGGTGCTGGCCGTGCCGGTGGCCGAGGCCTTCGACGACTACCTGGGCGACGTGGTGGCCAGGCTGCGGGCCCAGGGCATCCGGGCCGAGCTCGACGTCTCCGACGACCGGTTCGGCAAGAAGATCCGCAACGCTGCCAAGCAGAAGGTGCCGTTCGTCCTCATCGCCGGCGGCGAGGACGCCGAGGCCGGTGCCGTGTCCTTCCGGTTCCGCGACGGGACCCAGGAGAACGGCGTGCCGGTGGACCAGGCCGTCGAGCGCATCGTGACCGCGGTCCGCGAGCGCGAGCAGGTCTGAMSDVVANPTRPSDAVTVETTTTGTELFADRREVVVMRVDGELLDLSRELAAGTVVEPVTVDSPDGLAVLRHSAAHVLAQAVQQVNPDARLGIGPPVTDGFYYDFDVVEPFTAEDLKKLDKAMARIVKEGQTFRRRVVTEDEARAELAAEPYKLELIGLKGGSSDEDGSSVEVGGGELTIYDNVRGAGRDSEQVVWSDLCRGPHLPSTKLIGNGVQLMRSAAAYWRGSEKNPQLQRVYGTAWPSKDELKAYLERLAEAERRDHRRLGSEMDLFSFPDEIGSGLAVFHPKGGIVRTEMEDYSRRKHVEGGYSFVASPHITKGRLFETSGHLDWYADGMYPPMHLDAELDDDGTVRKPGQDYYLKPMNCPMHNLIFDSRGRSYRELPLRLFEFGTVYRYEKSGVVHGLTRARGFTQDDAHIYCTRDQMRDELATTLTFVLDLLKDYGLDDFYLELSTRDPEKSVGHDEAWEEATRTLEEVATASGLDLVPDPGGAAFYGPKISVQAKDAIGRTWQMSTIQLDFNLPEKFDLEYTAADGTRQRPVMIHRALFGSIERFFAVLLEHYAGAFPAWLAPVQVLAVPVAEAFDDYLGDVVARLRAQGIRAELDVSDDRFGKKIRNAAKQKVPFVLIAGGEDAEAGAVSFRFRDGTQENGVPVDQAVERIVTAVREREQVNANANANANA
AK018_03498474hypothetical proteinATGACCACCATCGACCGCACCACGACCACCAGCACCACCGGCAACCGCGCGGTGCGCATCGTCGGCATCCTCGGCCTCGTCGCCGGGCTGGTGATGATCGTCGCCGGCGCCGTCACCTGGGCCACGGTCAGCTCGCAGCTCAGCGCCCAGAACATCACCGTCTCCGAGGACGCCGCGTTCCTCGGCGGGGACGTCGTCGACGGCCCGTTCTCCGCCTACGCCCAGGCGCAGATCATCGACGAGCACGCGCTGGCCGCGACGGACGGGCTCACCTACGCCGAGCTCGACCGCGAGGACCCGCTGCGCGACACCGCGATGAACGCCTCCTTCCTGCGGGCGTCGCTGTTCACCTCGGTCGTCGCCTACGGCGTGAGCGCGCTGGTCATCGGTCTCGGCGTCGTGGTCGGGGTCTTCGGCTGGTCGCTGCGCTCGCTGGCCGCCGAGCCGGCCGCGAAGCCCACCGCCACCGCCTGAMTTIDRTTTTSTTGNRAVRIVGILGLVAGLVMIVAGAVTWATVSSQLSAQNITVSEDAAFLGGDVVDGPFSAYAQAQIIDEHALAATDGLTYAELDREDPLRDTAMNASFLRASLFTSVVAYGVSALVIGLGVVVGVFGWSLRSLAAEPAAKPTATANANANANANA
AK018_03499807udgB_2COG1573Type-5 uracil-DNA glycosylaseGTGGAGACCTCCGACGGATCCGGCGGCCCGCCCGCGGCGGCCCGGACGGCCCCTACCCTCGACGAGCTCGACGAGCTCGTCGTCTCGTGCCGCGCCTGCCCTCGCCTCGTCGCCTGGCGCGAGCAGGTGGGCCGGGAGAAGCGCGCGGCGTTCCGCGACCAGACCTACTGGGCCCGCCCGGTCCCGGGCTTCGGCGACACCCGCGCCGCCGTCGTCGTCGTGGGACTCGCCCCCGCCGCCCACGGCGCGAACCGCACGGGCCGCATGTTCACCGGCGACCGCAGCGGGGACTTCCTGTTCGCCGCCCTGCACCGGTGCGGGTTCGCGAACCAGTCCACCTCGACCGGGCGCGACGACGGCATGGTCCTCGACGGCGTGCGCCTGGTGGCCCCGGTGCGGTGCGTCCCGCCCGACAACCGGCCCACCCCTGACGAGCGCCGCCGGTGCGCGCCCTTCCTGGCGCGCGAGCTGGAGCTGCTGGCGCCGACGCTGCAGGTCGCGGTCGCGCTCGGCGCCCTCGGCTGGAACGCGCTGCTCGCCGCCCTGGCCGGCCAGGGCTGGGCGGTGCCGCGGCCACGACCGCGGTTCGGGCACGGGGCCGCGATCGATCTCGCACCGGTCGACGGCGGACCGGGACGCCTCACGGTGCTCGGCAGCTACCACGTGTCCCCGCACAACACCTCGACGGGTCGGCTGACCCCCGCCATGCTCGACGCCGTGCTGGACCGGGCGGCGGCGCTCACCGGCCGGGGTCGTCGCCCGGATCCACCGGCTGCCCCGCCGACGGTGCGGCAGCCACCGCGGTGAMETSDGSGGPPAAARTAPTLDELDELVVSCRACPRLVAWREQVGREKRAAFRDQTYWARPVPGFGDTRAAVVVVGLAPAAHGANRTGRMFTGDRSGDFLFAALHRCGFANQSTSTGRDDGMVLDGVRLVAPVRCVPPDNRPTPDERRRCAPFLARELELLAPTLQVAVALGALGWNALLAALAGQGWAVPRPRPRFGHGAAIDLAPVDGGPGRLTVLGSYHVSPHNTSTGRLTPAMLDAVLDRAAALTGRGRRPDPPAAPPTVRQPPRNANANANANA
AK018_03500540hypothetical proteinGTGCTGCGTCGGCGCGACACGGGCGGCCGCAACCACGGGGCGCCGGTCGTGAGCACGCCGGCCGGCGGGTCGGGTGCCGCTCCGCTCGTGTACCGGGTCTCGGCGCGATCCGTCGCCCGGGGCGAGGCGGAGGTCGTCGCGGGCGGGATTGCCGTGCCGTTGGACGCGGCCTGGGCGTCGCCGCCGACCGGGGCGCCCGGTCCGGCGGACCTGCTCGGCGGGGCCTTCGCCGCCTGCCTGCTCAAGAACCTGGCGCGGTCCGGGGCGCTGCTGGACTTCGCCTACGACGCGGCCGCCGTCGACGTCGAGCTCCGGCGCCAGGACTCTCCGCCGCGGTTCGTGGCGATCCGCTACGACCTGCGGGTGGTCACCGAGGAGCCTGCCCGCCGGGTGGAGCTGGTGCACGCCAACCTGCGCAAGTTCGGCACGGTCTACAACACCCTGGCCGCGGTGTGCGAGGTCAGCGGCACCGTCACCGCGGTGGCTGCCGCACCGTCGGCGGGGCAGCCGGTGGATCCGGGCGACGACCCCGGCCGGTGAMLRRRDTGGRNHGAPVVSTPAGGSGAAPLVYRVSARSVARGEAEVVAGGIAVPLDAAWASPPTGAPGPADLLGGAFAACLLKNLARSGALLDFAYDAAAVDVELRRQDSPPRFVAIRYDLRVVTEEPARRVELVHANLRKFGTVYNTLAAVCEVSGTVTAVAAAPSAGQPVDPGDDPGRNANANANANA
AK018_035011335yfeO_2Putative ion-transport protein YfeOGTGACGACCGAGAACCAGGGAGCGCCGGCGCCGCCGTCCGAGGAGACGCTGTCCGACGAGCAGCAGGCGGCCCGCACGCGCGGGTACGTCGGCGTGCTCCTGCTCGCCGCCGGGATCGGCATCCCGGTGTCGCTCGTCGCCTTCGGCTTCCTGGCCCTGCTGCACGCCCTGCAGCACACCGTCTGGGTCACCCTGCCCGAGGACCTGGGATACGCCGACGTGCCGTGGTGGTGGGCCGTGCCGTGGCTCCTCCTCGGTGGCGTGCTGGTCGGCGTGGCGATCACGTGGCTCCCGGGCCGCGGCGGCCACGTCCCCATCGACGGGCTGGGTATCGACCCGGTCGCCGCGCGCGCCGTGCCGGGGATCCTCCTGGCCGCCCTCGGCGGTCTGCCGCTGGGTGTGGTCCTGGGCCCCGAGGCGCCGCTGCTCGCCCTCGGCTCCGCCGTCGCCCTCATCGTCGTGCGCCCGCTGGCCGCGCTCGAGGAGCCGGCCGCCCGGGCGCTGATCACCCTCGCCGGTGCCGCGGCCGCGCTGGCCGCGATCTTCGGCAGCCCGCTGGTGGCCGCGATCTTCGTGCTGGAGGCCGCGGGGCTCGGCGGCCCCAGGCTGGCACGGGTGGTGCTGCCCGCCCTGCTGTCCTCCGGCGTCGGCTTCCTCGTCTTCACCGGGATGGGGTCCTGGACGGGTCTGGAGATCGCCTCGCTGTCGCTCCCGCCGCTCGACGGCCCCGCCCGTCCGGACCTGGGCGACGTGCTGTGGACCGTGCCGTTCGCCGTCGCGACGGCCTTCGCCGTCCGGCAGGTGCACCACCTGGGCCGGTGGACCCGCACGCTCGCGTCGTCCCGTCCGATGGCGGCCGCGGTCGGCGCCGCGCTGGTCGTCGGCCTGAGCGCCGCCGCCTACTCGCTGCTCACCGGGCGCTCGCCCGAGGAGGTCACGCTCAGCGGCCAGGGCATGCTCGCCCCGCTGGCCTCCGACCCGGCGGCCTGGTCCGTCCCGGTGCTGATCGCGCTGATCGCGTTCAAGTCGCTCGGCTACGGGGTGTCGCTCGGGGCGCTGCGCGGCGGGGCGATCTTCCCCGCCGTGCTCCTCGGCGCTGCCGCGGGTGTGCTGGTGTCGGGCCTGCCCGGCTACGGGGTGATCCCGGCCATGGCGGCCGGGATGGGCGCCGCGACCGCCGCGGTGCTGCCCTACCCCGTGGCGTCCGCGGTGCTGGTGGTCATCCTGCTGGGTTCGAACGCCGCCGCGATGACGCCGGTGGTCCTGATCGCCGTCGTCGTGGCCTTCGTCTCGGAGCAGATCATCGCCACCCAGCGCGGCCGGCGCCCCGCCTGAMTTENQGAPAPPSEETLSDEQQAARTRGYVGVLLLAAGIGIPVSLVAFGFLALLHALQHTVWVTLPEDLGYADVPWWWAVPWLLLGGVLVGVAITWLPGRGGHVPIDGLGIDPVAARAVPGILLAALGGLPLGVVLGPEAPLLALGSAVALIVVRPLAALEEPAARALITLAGAAAALAAIFGSPLVAAIFVLEAAGLGGPRLARVVLPALLSSGVGFLVFTGMGSWTGLEIASLSLPPLDGPARPDLGDVLWTVPFAVATAFAVRQVHHLGRWTRTLASSRPMAAAVGAALVVGLSAAAYSLLTGRSPEEVTLSGQGMLAPLASDPAAWSVPVLIALIAFKSLGYGVSLGALRGGAIFPAVLLGAAAGVLVSGLPGYGVIPAMAAGMGAATAAVLPYPVASAVLVVILLGSNAAAMTPVVLIAVVVAFVSEQIIATQRGRRPANANANANANA
AK018_03502360hypothetical proteinATGGTCAGGAGAGTCGGCCGTCCGGGGCTGATCGGCACGATGGCGCGCACCGCCGTGATCGCCGGTACGGCGAACGCCGTGAGCCGGGGCATGAACAACCGTGCCGATGCCCGGGCCACCCAGCAGGCCTCGGCGGAGGCGTACAACGCCCAGCAGGCCCAGCTGGCCCAGCAGCAGCAGATGCAGCAGCTGCTCGCCCAGCAGGCCCAGCAGATGCAGCAGGCCCAGCCTGCGGCCCCGTCACCGTCGGGCACCGGCAGCGACACGATGTCCCAGCTGCAGCAGCTCGGCGACATGCGCTCGGCGGGGTTGCTGACCGACGCCGAGTTCGCCGCCGCCAAGGCCAAGATCCTCGGCTGAMVRRVGRPGLIGTMARTAVIAGTANAVSRGMNNRADARATQQASAEAYNAQQAQLAQQQQMQQLLAQQAQQMQQAQPAAPSPSGTGSDTMSQLQQLGDMRSAGLLTDAEFAAAKAKILGNANANANANA
AK018_03503420hypothetical proteinATGAAAGTCACCGCACCCGTGGAGCTCCTTCTGGTCGAGTTCCCGCACACCGAGTTCACCGGCGAGATCCTCGCCGAGCTGACCCGCCTGCAGGACGCCGGGACGATCAACGTCCTGGACGCCCTGGCGATCCGTCGGGACGTCGACGGCGACGTGGAGTGGCTCGAGGCCGTCGACGCCGGCTCCGAGCTCGGCGACCTCGTCGGCGAGCCCGCCGGCCTGCTCGCCGAGGACGACGTCGACGCCATCGCCGAGGACCTGGCACCGGGCAGCGCCGTCGGCATGCTGGTGTTCGAGCACACCTGGGCGACCGGGCTGGCCGGCGCCGTCCGCGACGCCGGCGGACGCCTGATCGACATGACGACCGTGCCCGCGGCCGCGATCGAGGAGCTCGCGGCCGCTCTGAGCGAGGAGGACTGAMKVTAPVELLLVEFPHTEFTGEILAELTRLQDAGTINVLDALAIRRDVDGDVEWLEAVDAGSELGDLVGEPAGLLAEDDVDAIAEDLAPGSAVGMLVFEHTWATGLAGAVRDAGGRLIDMTTVPAAAIEELAAALSEEDNANANANANA
AK018_03504213hypothetical proteinGTGCCCCGCGACGACACCCCCATCTACGACGCCCTCGCCCGCGAGTTCGAGTCCGGGCGCCCGCTGCTGCACGTGGCGCGCGCGCTCGGCGGTGACCCCCTCGGCGACCCCGCGGCGCGGACGCGGGCCACCGAGGTGCGGTTCACCTCCGAGGACGCGGACCGCCTGCCCCGTCGGTCGCGCCGGACCCGCCGGAGCGACGCCCGCGACTGAMPRDDTPIYDALAREFESGRPLLHVARALGGDPLGDPAARTRATEVRFTSEDADRLPRRSRRTRRSDARDNANANANANA
AK018_03505846hypothetical proteinATGCGTACGACCCGAACCACGGCCGCGATCGGGGCCACCGCGCTGGCCGCCGTCGCCGGCACCGCCTTCGCCCTGCCCGCCTCCGCCGACGGACATGCCGCGATGCTGTCCGTCCTGCACGGCGTGCCCGACACGACCGTGGACGTGTACGTCGACGGTGACCTCACCCTGGACGACTTCGAGCCCGGCGACCTGGCCGGCCCCCTCGAGCTCGACCCGGACACCTACACGGTGGCCATCACCGCCGCGGACGCCGAGGACGACTCCGACCCGGTCATCGGACCGGTCGACCTCCCGCTCGAGGGCGGCATGAGCTACACGGCCGCCGCGCACCTCGACGCCGAGGGATCGCCGACGGCGACGCTGTTCACGAACGACACCTCGGAGATCGCTGCCGGCGAGGGACGCCTGACCGTCCGGCACGTGGCGGCGGCCCCGGCCGTGGACGTCCTGGCCGGCGAGGACCCGGTCATCGAGGGCCTGGAGAACCCGGACGAGGCCGTGCTGGACCTGCCGGCCGGCACGGTGCCCGCCGCCGTGGCCGCCGCCGGGACCACCGACCCGGTGCTCGGGCCGGCCGACGTCGACGTCGCCGAGGGCGTCAACACGATCGTGTACGCCTGGGGTTCGCTCGAGGACGACTCGCTGGCCCTCGCGACGCAGACCGTCGAGGGCATGCACTCCGCTCCGGACGGCGTGGACGCCGGGACCACCGGCGCGGCCGCGACCGACCACCACGGGTTCTTCACGCCGTTCACCATCGGCGCGATCATGAGCCTGCTGGCCGGCTTCGTCATCGTGGTCGCTCTCCGGGAGGGCGTCCGGGCGCACCGGGCACGCCGGTGAMRTTRTTAAIGATALAAVAGTAFALPASADGHAAMLSVLHGVPDTTVDVYVDGDLTLDDFEPGDLAGPLELDPDTYTVAITAADAEDDSDPVIGPVDLPLEGGMSYTAAAHLDAEGSPTATLFTNDTSEIAAGEGRLTVRHVAAAPAVDVLAGEDPVIEGLENPDEAVLDLPAGTVPAAVAAAGTTDPVLGPADVDVAEGVNTIVYAWGSLEDDSLALATQTVEGMHSAPDGVDAGTTGAAATDHHGFFTPFTIGAIMSLLAGFVIVVALREGVRAHRARRNANANANANA
AK018_03506765hypothetical proteinGTGACACGCACGCACCGCACCGCGGCGGGCCGGGCCGTGCGCCCGGTCCGCCGCATCGCGGTCGCATCGGTGGTCGCCCTCGTCGTCTCGACGCTCGCCGGGGTCCTGCTGGTCACCGGCGACGACACGGCGACGGTCGGGGCCGACGTCCCTCGGGCCGACGCGACGACGGTCACGACTCCCCCGGCGTCGTCGGCCCCGGCCATGCCGTCCGCGACACCCGAGCCCGCGCAGCAGGACGGGGCGGACAGGGCGCCGGACCGCAGCGGGCTCGACCTGCCGGACGTCCCCGTCGCGTCGGCCGCGCTGACCGAGACTGCTCCCGCGCCGCCACCCGACCGGCTGGTGGTCCACGGACTGCTGGAGACACCCGTCCGCCCGGTGGGGGTGGACCCCGACGGCACGATGGAGCTCCCGGAATCGGGCGACGTGGCGGGCTGGTACCGCTTCGGCCCCGCACCGGGAGACCCGCAGGGCGCGACGGTCCTCGCGTCCCACGTCGACACCCAGGACGGCGTCGGGCAGTTCGCCCGGCTCACCGAGGCCTCGGCGGGCGACGACATCACGGTGACCGACGTCGACGGGACCCGGCACCGCTACACCGTCACGGACATCACGCGCTACTCGAAGGAGGCGGTGCCCCTGGATGAGTTCTTCGACCGCTCGGGCGAGCGACGACTGGTGCTGGTCACCTGCGGCGGCCGCTGGGACGCCGAGGCCGGGCACTACGAGGACAACCTGGTGGTCACGGCCGTGGCGACATGAMTRTHRTAAGRAVRPVRRIAVASVVALVVSTLAGVLLVTGDDTATVGADVPRADATTVTTPPASSAPAMPSATPEPAQQDGADRAPDRSGLDLPDVPVASAALTETAPAPPPDRLVVHGLLETPVRPVGVDPDGTMELPESGDVAGWYRFGPAPGDPQGATVLASHVDTQDGVGQFARLTEASAGDDITVTDVDGTRHRYTVTDITRYSKEAVPLDEFFDRSGERRLVLVTCGGRWDAEAGHYEDNLVVTAVATNANANANANA
AK018_03507594rpoE_2COG1595ECF RNA polymerase sigma factor RpoEGTGACCACTGGGGCCGAAGACGCCGCGCCGGCGGCCGCCGACCCCGACGCAGACGTCCAGGCCGCGTTCGCGGCCGGGACCGAGGACGGCCTCGCGGCGGCCTACCGTCGCTGGTCGGCCCTCGTGCACACGGTCGCGCTGCGGTCACTGGGCGAGGCGTCGGACGCCGAGGACGTCACGCAGCAGGTGTTCGTCGCCGCCTGGCAGGCCCGTGCTTCGTTCGACCCCGGCCGGGCCAAGCTGTCGACGTGGCTGCTCGGCATCGCGCGGCACAAGATCGCCGACGTGCACGCCTCGCGCGAGAGGCTCCGGCGGCAGCGCCAAGCCGCCGAGGCGTTCACGCCGAACCCCGTGGGAGAGAACGATCCCGTCGGCTCTCCCGTGGTGGACCGCGCGATCGTCGCCGATGAGCTGGACCGTCTCGGCGACCCGGCCGGTACGATCCTGCGGCTCGCGTTCTACCGGGACATGACGCACACGCAGATCGCCGAAGAGCTCTCCCTGCCCCTCGGCACCGTCAAGAGCCATGTCAGACGAAGTCTGACCCGGCTACGGACACGATTGGAGGTGGATGGTGCAGCACGTCGACCCTGAMTTGAEDAAPAAADPDADVQAAFAAGTEDGLAAAYRRWSALVHTVALRSLGEASDAEDVTQQVFVAAWQARASFDPGRAKLSTWLLGIARHKIADVHASRERLRRQRQAAEAFTPNPVGENDPVGSPVVDRAIVADELDRLGDPAGTILRLAFYRDMTHTQIAEELSLPLGTVKSHVRRSLTRLRTRLEVDGAARRPPGPT0014960_3907DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_03508762hypothetical proteinGTGCAGCACGTCGACCCTGAGCTCCTCGCGCTCCTCGCGCTCGGGGAGCAGGACGCGGTCTCCGACGACGAGCGCGCCCACCTCGAGGTGTGCCCGACCTGCCGGGCGGACCACGACGGCCTCGCCCGGGTGGCGACGACCGCGCGTGACCTCGGCCCCGTCGAGCTGGTGGCGCCGCCGCCGGCGGTGTGGGACCGGATCCGCGCGGAGATCGCGGAGCCGGAGACCGCTGACGCCGGGCCCACGGCCCAGGACGTCGAGGCCGCCGAGGCCGAGGTCGTCGACCTGGCCTCGCGCCGACGTCCGGCGGCTCTCTGGGCGGCGGCCGCGGCGAGCGCAGCCCTGGTCGTGGGCGTCGGCGGCGGTGTCGCCTGGGAACGCGCGCGCGGTCCGCAGGAGACCCCGGCACCCACGCCCGTCGCGGTCGCGGAGGCCGAGCTCGAGGCGTTGCCCGACTGGCCCGGCTCCACGGGCAGCGCCACGGTCGCACAGGCCGCCGGCGGCGAGCGGGAGATCGTCGTCTCCGTCGCGGGGGCCGACGGGTCCACCGCGGACGCGTACCGCGAGGTGTGGCTCATCGCCGACGACCTGAGCGGCATGATCAGCCTCGGCGTGCTCGAGGGCGACTCCGGCACGTTCCCGGTCCCCGAGGGCCTCGACCTGGAGCGCTACTCCCTGGTGGACGTCTCGGAGGAACCGTTCGACGGCGACCCGACGCACTCGGGCGACTCCATCGTGCGCGGCGGCCTGACGCAGGCCTGAMQHVDPELLALLALGEQDAVSDDERAHLEVCPTCRADHDGLARVATTARDLGPVELVAPPPAVWDRIRAEIAEPETADAGPTAQDVEAAEAEVVDLASRRRPAALWAAAAASAALVVGVGGGVAWERARGPQETPAPTPVAVAEAELEALPDWPGSTGSATVAQAAGGEREIVVSVAGADGSTADAYREVWLIADDLSGMISLGVLEGDSGTFPVPEGLDLERYSLVDVSEEPFDGDPTHSGDSIVRGGLTQANANANANANA
AK018_035091041adhTAlcohol dehydrogenaseATGAAGGCTGTCCAGTACCGCGCCATCGGATCTCGACCGGAGGTCGTCGAGATCGACCGCCCGGACCCTGCTCCGGGCGAGGTCCTGCTCAAGGTGACCGCGTCCGGCCTGTGCCACTCCGACGTGTTCGTCATGGAGATGCCCGAGGAGGCCTACACCTACGGGCTGCCGCTCACGCTGGGGCACGAGGGCGCCGGCGTGGTCGAGGCCGTGGGCGAGGGCGTCGACCCCGACCTGGTCGGGACCAGCGTCGCGGTCTACGGCCCGTGGGGCTGCGGCACCTGCTACCGCTGCGCGGCGGGCGAGGAGAACTACTGCGAGCGCGCCACCGAGCTGGGGATCGCCCCGCCCGGGCTCGGCTCCCCCGGCTCGATGGCCGAGTACATGATCGTCGACTCCCCGCGGCACCTGGTGCCGATCGGTGACCTCGACCCGGTGCAGGCCGCGGCACTGACCGACGCCGGGCTGACGCCGTACCACGCCGTCAAGCCCGCGCTGCCGCGTCTGGTGCCGGGTTCCACCGCCGTCGTCCTCGGCGTCGGCGGCCTCGGCCACCTCGGCATCCAGATGATCAAGGAGCTCTCGGGCGCCCAGGTCGTCGCTCTCGACGTCACCGAGGACAAGCTGCAGCTCGCCCGCGACGTCGGCGCGGACCACGCGATCATGTCCGACGACGATGCGGTGCAGAAGGTCTCGGAGCTCACCGGAGGACGCGGGGCCGGCCTCGTCGTGGACTTCGCCGGCGCCCAGGCGACCATCGACCTCGGCCAGCAGATGCTCGGGGTCGGCGGACGGTTCACACTCGTCGGCATCGCCGGCGGCGGACCCGCCGCCCAGGTCGGGTTCTTCCAGGTGCCGTTCGAGTCGGAGTTCGTGGTGCCCTACTGGGGCTACCGGGAGGAGCTCTTCGAGGTCCTGCGCCTGGCCCGGCAGGGACGGTTGACCGTCCACACCGAGGAGTTCGCGATCGACGACGCACCGGCCGCCTACGACAAGCTCTGGGACGGGACCCTGCGAGGTCGCGCCGTCGTCCGGCTCTGAMKAVQYRAIGSRPEVVEIDRPDPAPGEVLLKVTASGLCHSDVFVMEMPEEAYTYGLPLTLGHEGAGVVEAVGEGVDPDLVGTSVAVYGPWGCGTCYRCAAGEENYCERATELGIAPPGLGSPGSMAEYMIVDSPRHLVPIGDLDPVQAAALTDAGLTPYHAVKPALPRLVPGSTAVVLGVGGLGHLGIQMIKELSGAQVVALDVTEDKLQLARDVGADHAIMSDDDAVQKVSELTGGRGAGLVVDFAGAQATIDLGQQMLGVGGRFTLVGIAGGGPAAQVGFFQVPFESEFVVPYWGYREELFEVLRLARQGRLTVHTEEFAIDDAPAAYDKLWDGTLRGRAVVRLPGPT0006365_1376DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953NANA
AK018_035101644ksdDCOG10533-oxosteroid 1-dehydrogenaseATGGTCAACAGCTTCGACGACACCTACGACGTCGTCGTCGTCGGGTCGGGTGCCGCAGGTCTCACGGCCGCGCTGGGCGCGGTGGACGAGGGGCTCACCGTGCTGGTCGTGGAGAGCACCGGGAAGTGGGGCGGCAGCACGGCGATGTCCGGCGGCGGGCTCTGGCTGCCCGACAACCCGGTGATGCGGCGCCAGGAGGTCGGCGACTCCCGGGCGGAGGCGCTGGACTACCTCGAGCGGACCGTGGGCGACGAGGGCACCAGCACGTCGCGCGCCCGCAAGGAGGCGTTCCTGGACGGGGTCCAGGACTACGTCGACACCGCGGAGAAGTACGGCGTGGAGTTCGTCCGCGCACGCAACTATCCGGACTACTACCCCGAGACCCCCGGCGGGAAGATCGGCCGCGCCGTGGAGGTCAAGCCCTTCAACGCCCGCCGGCTCGGCCCCCTCGCCCGGACCCAGCGCGCGCTGCTCCCCCTGCCGGCCATGACCGACGACGTCTGGCAGCTGCAGCGCGCCTGGTCCACGTTCGACGGGTTCCTCCGGGGGGCGCGGTTCACCTTCCGCACCCTCGGCGCCCTGCTGACCGGGCAGCGGAAGATGGGCATCGGCGGAGCCCTGACCGGCGCCCTCGGGCACGCGGTCTTCGTCGAGCACGGCGTCCCGCTGTGGATGTCCTCCCCCGCCCAGCGACTGCTCACCGACAGCGGCGCCGTCGTCGGCGTGGAGGTGCTCCGCGACGGTTCCCCGGTACGCATCGAGGCCCGCCGGGGCGTCGTGCTCGCCACCGGCGGCTTCGACCACAACGCCCCGTGGCGGCGCAAGTACCACGGCGTCGAGAGCCACCCCTCGGGCAACCCCGGCAACCTCGGTCAGGGGCACGAGATGGCCGAGGAGGTCGACGCCGCGTTCGAGCTGATGGACGACGCGTGGTGGGGAGCGTCGGTTCGCCCGCCGGAAGGGCACCCCGCCTCCTTCCTGGTCGGCGAACGCTCGCTGCCGTACTCGATCATCGTCGACAGCGAGGGCCGGCGTTTCACGAACGAGGCGGAGTCCTACGTCGACCTCGGACACAGGATGCTCGAGCACGACGCCGACGGCACCTACTGGTTCGTCCTCGACCGGCGCTTCGTCCGCCGCTACCTGCGGGCCTTCGCCATGGACCCCCGCGCGACGCGCGCCATGAAGGAGCAGGGCATCATCGTCGAGGCGGACACCCTCGCCGAGCTGGCCGACACCCTGGGCTTCGACCACGACGTGTTCCGCACCACCGTGCAGCGCTTCAACGGGTTCGCCCGCAGCGGCCGGGACCAGGACTTCGGTCGCGGGGACTCGGCCTACGACCGGTACTACGGCGACCCGACGGTCCGGCCCAACCCCTGTCTCGGCCCGCTGGAGAAGGGCCCGTTCGTGGCCTACGAGGTCGTGATCGGCGACCTCGGGACCAAGGGCGGCGTCGTCACCGACACCGAGGGCCGCGCGCTGCGCGAGGACGGCTCCGTCATCGCCGGGCTCTACGCGGCGGGGAACGCCTCGGCCTCCGTCATGGGCCGGACCTACCCGGGCCCCGGCTCCACGATCGGCCCGGCCTCGGTGTTCGGCCTGCGGGCCGCGCGCGACATGGGGCGGCGCGCGACCGCCTGAMVNSFDDTYDVVVVGSGAAGLTAALGAVDEGLTVLVVESTGKWGGSTAMSGGGLWLPDNPVMRRQEVGDSRAEALDYLERTVGDEGTSTSRARKEAFLDGVQDYVDTAEKYGVEFVRARNYPDYYPETPGGKIGRAVEVKPFNARRLGPLARTQRALLPLPAMTDDVWQLQRAWSTFDGFLRGARFTFRTLGALLTGQRKMGIGGALTGALGHAVFVEHGVPLWMSSPAQRLLTDSGAVVGVEVLRDGSPVRIEARRGVVLATGGFDHNAPWRRKYHGVESHPSGNPGNLGQGHEMAEEVDAAFELMDDAWWGASVRPPEGHPASFLVGERSLPYSIIVDSEGRRFTNEAESYVDLGHRMLEHDADGTYWFVLDRRFVRRYLRAFAMDPRATRAMKEQGIIVEADTLAELADTLGFDHDVFRTTVQRFNGFARSGRDQDFGRGDSAYDRYYGDPTVRPNPCLGPLEKGPFVAYEVVIGDLGTKGGVVTDTEGRALREDGSVIAGLYAAGNASASVMGRTYPGPGSTIGPASVFGLRAARDMGRRATAPGPT0006680_683DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006680-kstD-K05898NANA
AK018_03511405hypothetical proteinGTGGGAGGCGTGGAACGCTTCGAGGCGTCGGCGCTGACCCACATGCTGGTCGTGGCCGACGTCGAACGCAGTCGCGACTGGTACGTCCGCGTGCTCGATGCTCGAGTGGTCGGCGAGTACGGGGGGACGTCGGTCGTGCTCCAGCTGCTGGAGAGCTGGATCCTGCTCGTGACGGGAGGAGGTCCCGACCCAGGGAAGCCGACCGTGACCCTGGCCCCGCCCGCCGATCCTGACCGCCCCAGCGCCCAGCTCATCTTTCGCGTCGACGACTGCCGGGGGCTCTACGACCTCCTGTCGAGCCGTGGCGCAGACCTCTTGGCCGCACCTGACGTTCGTGACGGCGAGACCCGCGCGTTCTTCCGCGACCTCGACGGTCATCTGTTCGAGATCTCCGAGCTCACCTGAMGGVERFEASALTHMLVVADVERSRDWYVRVLDARVVGEYGGTSVVLQLLESWILLVTGGGPDPGKPTVTLAPPADPDRPSAQLIFRVDDCRGLYDLLSSRGADLLAAPDVRDGETRAFFRDLDGHLFEISELTPGPT0013300_1750DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BLEOMYCIN_RESISTANCE,PGPT0013300-gloA|ywbC-K01759NANA
AK018_035121035hypothetical proteinATGAGCGCGATGTCAGGGGCGCCGGCCCCGGTCGCCACGGCCCGCAATGCTGCCGCGACCTATCACTATCTCCGTGTGTCCGTCATCTCGATGACAGCCATGCTCGTCTTCGCCGTCCTCCTCGAGGACGCCGACCCCGCGAGCGGGGAGCGGCTCGGGTCCATCAGCGCCGCGTGGTACACGCCCGCGCAGAGCGTCTTCGTCGCGGTTCTTGTCGCCACCGGAGCTGCGATGATCGCGATCCGTGGGCGGGGAGCGCAGGAGCCGTTGCTCAACCTCGCAGGCTTCCTGGCACCGGTGGTGGCCTTCGTCCCTACCCCTGAGCCCGTGCGCGAGGCGTGCTTCGGGCGTCCGACGCCAGACTCGCTCGTCGCGGAGCAGCCGCCCGTCGGCGGCGGACCGTGGGACGCCCAGGCGTGCGCGGAGTGGACCGACCAGGTGGAGAGCTCCCTGGAGGCGTACTTCTACGTCTCGTCGGCCGCCCTTCTGCTCCTGCTGTTCTTCGTCGTGCGTCGCGACCGGCCTCGAGAGCCGCTCGCGTCGCCCGGCGGCTCGAGGTGGCGCAGATTGCTGGACACGGCGTACAGGGAACCCTCCCGGAATGAGGAAGTCTTCGGGACGCTCGTCGTCATCGGTCTGTGGCTGGCAGGTCTTGCGGTCTACCTGACCCTGCCCGAATGGTTCCTGCTGAATGCCCACGCAGTCGCGGCCATCTTCGTGTTCACACCGATGGCGCTGGTCGCCCTGATCGGGGGGTTCGGCGCTCGGCGGCACCCCGGACGTGGCGACCGTGCGTACCGCGGGATCTACGTCCTCGTCGCGATCGCGATGGTGTGTGGCATCGCGGGGACGGCGGGCTTCAAGCTCCTTGACTGGGTGGGTGATGACTCTCGCTGGTTCTACGTGCTCGAGTTCGTCATCGTCGGCGGGTTCCTGCTCTTCTGGACCACCCAGACGGTCGAGGAACGGGGGGCCTCGACGGGTGGTGCAGGACGCCACGACCGAAGCGAGGTCACGCCGTCAGAGCTCAGGTGAMSAMSGAPAPVATARNAAATYHYLRVSVISMTAMLVFAVLLEDADPASGERLGSISAAWYTPAQSVFVAVLVATGAAMIAIRGRGAQEPLLNLAGFLAPVVAFVPTPEPVREACFGRPTPDSLVAEQPPVGGGPWDAQACAEWTDQVESSLEAYFYVSSAALLLLLFFVVRRDRPREPLASPGGSRWRRLLDTAYREPSRNEEVFGTLVVIGLWLAGLAVYLTLPEWFLLNAHAVAAIFVFTPMALVALIGGFGARRHPGRGDRAYRGIYVLVAIAMVCGIAGTAGFKLLDWVGDDSRWFYVLEFVIVGGFLLFWTTQTVEERGASTGGAGRHDRSEVTPSELRNANANANANA
AK018_03513825hypothetical proteinGTGAGTGATCTGCGCGCGAGCACGCACGCTGCGGCGTGCGCTGTCGTCCGCGGCGGGGTATCGCTGGACTCGCTGCTGACCCGCGCAGAGCAGCGGTGCCTGGTGCGCGGGGCCCGCGACTGGTACCTGGACACTTATGCCGGGAACGTCACGCGCCAGGGCACCTGCGTGGTCGCCACGGCTGGGCCGCCTGGGGCGGGCAAGTCCTCGATCCTCCCCGCCGCGGTCCCGGATCTCGGCTCCCGGTTGGTGATCGACCCGGACAGTGTCAAGGACTACCTCGCCCGCTGGTGCTCCGAGCACGCAGGGTTCTACGACGACCTGCTGGCCACGGCTCTGCCCGACGGCGGCACCGTGCGTCCTCTGGAGCTGTCGCCGCTGCTGCAGACCATGTCCACCGAAGTGGCCAACGCGGTGCGCCGCGACGCCCTCGGCCAGCGCATGGACATCGTCGTCGAGGCCACCATGGCGTCACCCGCGTACGGGGAGCGGCTCCTGCTGTCCCTCGCGAAGGCCGACTATCAGGCGCTGCTCATCGTGTCCGTCGAGACGGACCAGCGGACCGCGCACGCCCGCGCGGTCGAGCGGTGGTGGAACGGCCGCCAGACCGAGCCCGAGCGCGGCGGACGCCTCGTCTTGCCCGAGACCATCGACGCCGCCTACCCCGACACCAGGTCGGCCAGCGCCTGCCGCATCAACGCCCGCAACCTCGCCGCGACGATCCGCGCCGGCGGCACCGCGATCGAGCACGTCACCATCGCCGAGTACGACGACGGCGCGCTCGCCCGACTCGACGCCGACCCGCCACGCACACTCGACGCCTGAMSDLRASTHAAACAVVRGGVSLDSLLTRAEQRCLVRGARDWYLDTYAGNVTRQGTCVVATAGPPGAGKSSILPAAVPDLGSRLVIDPDSVKDYLARWCSEHAGFYDDLLATALPDGGTVRPLELSPLLQTMSTEVANAVRRDALGQRMDIVVEATMASPAYGERLLLSLAKADYQALLIVSVETDQRTAHARAVERWWNGRQTEPERGGRLVLPETIDAAYPDTRSASACRINARNLAATIRAGGTAIEHVTIAEYDDGALARLDADPPRTLDANANANANANA
AK018_03514426hypothetical proteinATGTCTGCTGCTACTGTCGCCGCGCATGAGCCGAGCCTGCGGCTGTCCTATGCCCGCGCTCGCTTGGCTGAGATCGATCGGATGCGACAGGTGTACCTGGCGTCGCTGGACGGGGTGTCGCAGCGGGACATCGCTGCGGCGGTGCACCTGTCTCAGGCCAGCGTGCACCGGATGATCGTCCGGGCACGAGCGTTGGGTGTGGAGCACGAGTCGGTCGAGGAGGTCGTGCTGCAGCGGTTCGTCGGGCAGATCTCTACCGCGCAGATGCTCGAGCGGCTGGCCTCGATCGAGTCTTGGGTGCCGCGCGTGGTCGACCCGGTCGACGGTGTTCTGCCCGGCGACTCTCAGGCCGACCTGGACGAGCTGTGCGAGGACGGGCTGATCAGCGGGGACGAGGTCGACCAGGTTCTTGACGCCCGTGAGTGAMSAATVAAHEPSLRLSYARARLAEIDRMRQVYLASLDGVSQRDIAAAVHLSQASVHRMIVRARALGVEHESVEEVVLQRFVGQISTAQMLERLASIESWVPRVVDPVDGVLPGDSQADLDELCEDGLISGDEVDQVLDARENANANANANA
AK018_035151251xerC_5Tyrosine recombinase XerCATGACGAAGATCGGCCCTGGGGGACGCCAGCGTCGGCCTCGCGGTGACTATGGCGTGCGGTACGACAAGTCGCGTGACCGCTACATCGCCACCGCGACGGTCGGATACGACGGGCGCGGCAAGCGCATCTACAAGAAGGCCAGTGGCAAGTCGGAGACGGCTGCCCTCAAGGCACTGAAGCAGCGGATCAAGGAGTACGAGGACGGGCTCGTCGTCGGAGCCGACCGGTACACGGTGAAGGCCGCCGTCGAGGACTGGCTGGAACTCGGTCACGGTCGCGTCGGCGACCGAACCACGGAGAAGGACGCGTATCTCTCGCGGCACGTCGTCGAGCACCTCGGGGCGCGCAAGCTCAAGGAGCTCACGGCCAATGAGGTCGAGAAGTGGCTGCTAGGGCTCGCCCTGACGATGACCACCCGGACACTCGCCGACATCCGGTCGGTGCTCAATCGCTCGGTGAACCGCGCGATGGCACGCGGGTTGGTCACCCGCAACGTCGTTGAGTTGGTCCAGACGCCACGCGGCAAGGGCGGTCGTGGCACCAGGTCGCTCACCCTCGACCAGGCGATCGATGTCCTGAATCTGACCAAGGGTCACTGGATGTACCCGTACATCGTCGTCTCACTCGCCGTCGGGCTGCGAACCGAGGAGGTCCGGGCCCTGACCTGGGAGCGGGTCGACCTGAACGGCGACGAGGCGCGGGGCCGGCCGTCGTCGGTCCAAGTCTGGCGGTCGGTGCGCAAGGGTGGGGACACCAAGACCAAGAAGTCCCGCAGGACCCTCGGCCTGCCTGACCTCGCGGTGTCCGCACTGCGTCGGCAGCGTGACTGGCAGGGAGCGCAGCGAGGTAAGGCGGGGGAGAACTGGCAGGAGACCGGTCTCGTCTTCACTACGACGCTCGGTACGGGCCTCGACGCGGCGAATGTGCGCCGGGCATTCCGCGACGCACTCGCCCTCGTGCCCGGCATCGAACCGACACAGTGGACGCCTCGCGACCTGCGGCACTCTTTCGTCTCGCTCATGTCCGCTGAGGAGATCCCTCTCGAAGAGATATCACGGCTCGTAGGCCACTCAAGCACCCAGGTCACCGAGCAGGTCTACCGGCAGGAGCTCCGACCCGTACTTCAAGCTGGCGCCAAGGTCATCGACCGAGTCTTCTCCGATGTCGCGGACGATGTCGAATGGACCATGGACCCACTGATACCGGCCTCCGCAGTGCTGGGGCATCGGGACAGGAGTAACTCTCCTTGAMTKIGPGGRQRRPRGDYGVRYDKSRDRYIATATVGYDGRGKRIYKKASGKSETAALKALKQRIKEYEDGLVVGADRYTVKAAVEDWLELGHGRVGDRTTEKDAYLSRHVVEHLGARKLKELTANEVEKWLLGLALTMTTRTLADIRSVLNRSVNRAMARGLVTRNVVELVQTPRGKGGRGTRSLTLDQAIDVLNLTKGHWMYPYIVVSLAVGLRTEEVRALTWERVDLNGDEARGRPSSVQVWRSVRKGGDTKTKKSRRTLGLPDLAVSALRRQRDWQGAQRGKAGENWQETGLVFTTTLGTGLDAANVRRAFRDALALVPGIEPTQWTPRDLRHSFVSLMSAEEIPLEEISRLVGHSSTQVTEQVYRQELRPVLQAGAKVIDRVFSDVADDVEWTMDPLIPASAVLGHRDRSNSPNANANANANA
AK018_03516207hypothetical proteinATGGAACCCGAAGTCACCCCTGCTGGCGTCACCCCGGTTGTGTACCGGGTGGAGGAAGCTGCCAAGGCCCTGCGTGTCTCGCGGGACTCGATCTACGAACTCATCCGGTCCGGCGAGCTGCGGACCATCAAGGTTGGTGCTCGCCGACTGGTTCCCGTTTCCGCGCTCACCGAGTACGTCGAGTCCTGCCTTGGGAGCGCGTCATGAMEPEVTPAGVTPVVYRVEEAAKALRVSRDSIYELIRSGELRTIKVGARRLVPVSALTEYVESCLGSASNANANANANA
AK018_03517234hypothetical proteinATGAGGACCCAGAACACCAGGGGGTTGCCGTTCACGCGCCGTTGCGACTCGTGCGACGCCGCCGCCGTCGGGACCATCACCTTTATCGCCGTCGACCGCGAGCACCGTTACGCCGTCTGTCTCGACTGCGCCACCGACGCGCTCACCCACCCCGCCAGGTACGTCCGTCTGCGCTTCACCGTCGCCCGAACCGGCGCCGAGGTCACCCGAGGTGTGAGCGGCGGTGCCGCATGAMRTQNTRGLPFTRRCDSCDAAAVGTITFIAVDREHRYAVCLDCATDALTHPARYVRLRFTVARTGAEVTRGVSGGAANANANANANA
AK018_03518267hypothetical proteinATGAGCACGCCCACCTTCAGTACGGCAGACGTCCTGGCAGCGCTGGCGCGCATGACCAGCGATCAGCGCACCGAGTGGGTCGCGCTGGTCAAGTCCGCTTCGGTGCACTTGTCGAACGCCGAGTACGCGTTCACCGGCAACGTCCCCGATGCGCAGCCCGACCCGGACACGTGGGCGGCCGACTCCTTCTGGCTCGGCACCTGCCAGCTCGGCCGCGCCGTCGAGCAGGTCATGTCGGACCCGAACACCGGGAGGTTGGAGGCATGAMSTPTFSTADVLAALARMTSDQRTEWVALVKSASVHLSNAEYAFTGNVPDAQPDPDTWAADSFWLGTCQLGRAVEQVMSDPNTGRLEANANANANANA
AK018_035191149hypothetical proteinATGACCGCTCCTGCTGCACTGCGGCGTGACGGATCCGAGATCCTCGACGACGTCCGCGACGCCTTGGCCCGCTACTGCATCCTCCCGAGCCGCCACGCATACACCGCGGTCACGCTCTTCTGCGCGTATACCCACGCCGCCGCGGTGTTCGACTTCGCCCCACGCCTGGTGCTGACCAGTCCGGAGAAACGCAGCGGCAAGACGCGCTGCTTGGAGATCATCCACCAGCTGGCCCACAAGCCGCTATCGACGGCGAACGCCTCGACCGCCGCGCTGTACCGCTCGCTCGCCGAGCCTCGAACCGTCCTGCTCGACGAGGCCGACACCGTCTTCGGCACCCGGCTCAAGGCCGAACAGCACGACGACCTGCGCGGCCTGCTCAACGCCGGGTTCCAACGCGGCACCCCCGTCGTGCGCTGGGACGCATCCAAGCGCGAGGTCGAACAGTTGCACACCTTCGCCCCCGTCGTGCTCGCCGCCATCGGACGGCTGCCCGACACCATCACCGACCGGGCCATCAACATCGCCATGCGACGGCGCAAGCCCGCCGAGAGGGTCGAGCCGTTCCGCATCTCCCGCGACGCCGAACCGCTCAGAGCCCTCGCGTACGAGCTGTGCGTGTGGATCGAGGACAACGCCGCGGCCCTCAAGCGGGCGCGACCCGGCATGCCTGTCGTCGACCGTGCCGCCGACCTGTGGGAACCCCTGATCGCGGTGGCCGACCTCGCCGCCGGGCCCTGGCCCGACTCTGCGCGGGGGGCCGCCGTCGCGCTCACCGAAGACGCCGCTCACGCCGATGCCGACCACTCCGCCGCGCACGAGCTGCTCGCCAACGCCCGCGACGTTCTGGCCACGACTCGTGGAGAGTTCGTCGCCACCGAGACCCTCATCGCCGCACTGGTCGCCCTGCCCGAGTCCCGTTGGGCCGACGAGGGACTGACCGGCCGGCGCCTGGCGATGATGCTCAAGGGCTACGGCGTGCCCGTGGGCCGCAACCCCTCGACGTCCAAGCGCGAGCGCGGGTACCGACGCGCCGACTTCACCGACGCGTTCGAGCGCTACCTCAAGCCCACCGAGAACCCCGCCGAGAACCGAGATCCGGGTACCCATGCGTCCGAACCCGTCCGATCCGGCCCACACCCCTCGTGAMTAPAALRRDGSEILDDVRDALARYCILPSRHAYTAVTLFCAYTHAAAVFDFAPRLVLTSPEKRSGKTRCLEIIHQLAHKPLSTANASTAALYRSLAEPRTVLLDEADTVFGTRLKAEQHDDLRGLLNAGFQRGTPVVRWDASKREVEQLHTFAPVVLAAIGRLPDTITDRAINIAMRRRKPAERVEPFRISRDAEPLRALAYELCVWIEDNAAALKRARPGMPVVDRAADLWEPLIAVADLAAGPWPDSARGAAVALTEDAAHADADHSAAHELLANARDVLATTRGEFVATETLIAALVALPESRWADEGLTGRRLAMMLKGYGVPVGRNPSTSKRERGYRRADFTDAFERYLKPTENPAENRDPGTHASEPVRSGPHPSNANANANANA
AK018_03520357hypothetical proteinATGCTCGGGGTGCGGCTGCTCATGCTCGTCACGCTCGCTGGCGCCGGCGTGGCCGTGATCTGGGCTGCACGAGCCGCAGCGAGCGGGCGGCTCCGGCGCAACCAGGTCGCGGGAATCCGAACGCCCGCGACCTTGGCCTCAGACGAGGCGTGGCTGGCCGCCCACCGCGTGGCCCGGGTCCCGACGGAGATCGCCGGCTGGGGTTCCATCGTGGCGGGCATCGCATGCTTCGCCGTCGGCGGCACGATCCGCGGGTTCCTCGCCACGACGATCCTCGGGCTCGTCGCCCTGCTCAGTGGTGTTCTCGCCGGCGCGGCGCGCGGGATCAAGGCGGCTCGGACAGTCCCGCGGCAGTAGMLGVRLLMLVTLAGAGVAVIWAARAAASGRLRRNQVAGIRTPATLASDEAWLAAHRVARVPTEIAGWGSIVAGIACFAVGGTIRGFLATTILGLVALLSGVLAGAARGIKAARTVPRQNANANANANA
AK018_03521870hypothetical proteinATGACGACACTGACCCAAACCCCACCCGCCGACGCGGCGCCTTCGATGTGCGACGACGAGGTCGGCGCCTGCGTGCTCGGCCTGGCTGCCGACGTCGAGGGCTATGTTCACCGGCGCCTTCGCACCGCCGGAACCACCGCCGTCGTGCGCGACGAGCTCGGCGACCTGGTCAGTGCCACGAGCGAGGTAGTCGGCGAATTCGTCGAGATCCTGTGGATCAAGCGCGACCAGTGGACCGCCCTGTGCGGCGAGGACCAGCGGCGCTGGACGTTCGCCGTCGCCCGCAACCTCGTCGCCCGACGCGTGAAGAAGGCCTACGCGACCCACGTGCACAGGAGCGAGCTCGTCCCGCTCCTGGACGGCACCGGCGAACCGGCTGCTGTCGACCCGCGACTGGCCGCGCTCGCCGAGCTACGCCTGCACGTCGAGTCGCGGCTCGGTGACGCGGCGTGGGCGAGGATCGCTGCAGCCATCGGCCGCAACCACTCAACGCACTTGCGCGCCGACGTCGCCGCCGCGCTCGGGGCGGTGGCTGCGGGGCGTGTGCCGTCGATCCGAGCCATCGTGCGTCGCTGCCGCGTCGACTGGCGGCCCTGGGCCCTGGAACGCCTCGACGCAGGCCAGGCGCTGCGCCCAACCGATGCCGTCGATCTCGGCCTGTTCGCGACCCTCACCGAGGCGACGGCGACCCTGTCGAGGTGGTGGGTCGAGCAACGCGCCGCGTTCGACCAGCCCATCGACGTCGCCACGCTTGTCGCTTCGGGCCTGGTCGATCACCTCAGCCGAACAGAACAGGCCCGCCGTGAGGCCGCGTCCGACCTGCTCGTGTGGATCTCGACAACGGGCACTCGTGCCGCGGCCGCGGCATGAMTTLTQTPPADAAPSMCDDEVGACVLGLAADVEGYVHRRLRTAGTTAVVRDELGDLVSATSEVVGEFVEILWIKRDQWTALCGEDQRRWTFAVARNLVARRVKKAYATHVHRSELVPLLDGTGEPAAVDPRLAALAELRLHVESRLGDAAWARIAAAIGRNHSTHLRADVAAALGAVAAGRVPSIRAIVRRCRVDWRPWALERLDAGQALRPTDAVDLGLFATLTEATATLSRWWVEQRAAFDQPIDVATLVASGLVDHLSRTEQARREAASDLLVWISTTGTRAAAAANANANANANA
AK018_03522768hypothetical proteinGTGAGCGGGCGCCGACCCCTGGCGGGTGCGTTGTGGCCGGGGGTGCTGCTGTGCACGGTCGCGGCGGTCATGGCGTTCACGCTGTCGTTCAACGCGCTGCGCGCGGTCGGCGTCGCGTCGGGCATCACTCCGCCGCTGGCGTGGATGTTCCCGCTGACGATCGACACCGTCATCCTGTTCGGCACGTGGGCGGCGTTCCGGTTCCGCGCCCGCGGCGCGGCTGGCACCTGGTACGCCTGGGTGCTTCTGGTCGTGTTCGCTGCCGCCTCGTGGACCGGCAACTTCCTGCACGCCGAACCGGTCCCCGTCGGGGACATGGAGCTCTCCCGGCCGGTCGCGTCGTTGTTCTCCTCGGTGCCGTCACTGTCGCTGCTGCTAACCACTCACATGCTCGTCCTGATCGCCGTGCGGCGCGGTGAGGAACGCGACCATGAACCCGCCGCCGAACCGGTCGCCGTCGCCGTCTCCGCGCAGTCCGAGGAGTCGAACGTTCCCGCGCGGGCGCAGATCGCCGCCGGTGACACCAGCGACATGCCCTCGGGCGCCCTCGCCGCGCCGGTCGAGGACCCGTCGGACACCGACGTCGAACCGGCTGGCGGCAAGGCCAACGGCTTCGCCGCGTGGGTGGCTGCCCAGGAGAAGGCTGGGGTTCGCCCGACCGGACGGATGGCCGTCGAAGCCGGGTTCGCCGGCTCCGAGGCGACCGGGCGGCGATGGCTACGAAACCTGCGATCGCAGATGGCACACCGCAAGGAGGCCGAGACATGAMSGRRPLAGALWPGVLLCTVAAVMAFTLSFNALRAVGVASGITPPLAWMFPLTIDTVILFGTWAAFRFRARGAAGTWYAWVLLVVFAAASWTGNFLHAEPVPVGDMELSRPVASLFSSVPSLSLLLTTHMLVLIAVRRGEERDHEPAAEPVAVAVSAQSEESNVPARAQIAAGDTSDMPSGALAAPVEDPSDTDVEPAGGKANGFAAWVAAQEKAGVRPTGRMAVEAGFAGSEATGRRWLRNLRSQMAHRKEAETNANANANANA
AK018_03523450hypothetical proteinATGGCCTCGACCGAACTGCGAGAGCAGATCCACGCGCTGCTCGCCGCCGGGCTGAAACAGCGGCAGATCGCCGTGTACCTGGGGATCGGCCAGGCGACCGTCTCGGACCACAAGCGCGCTCTGGTCGCGGCCGGACGCCTGCCGGCCCGCCCGCCTGTCGGGTCGCGCGGCACGGGCGGCGCCGTCGTCGACCTGGTCCCAGCAGATCCGACGTCCAGACGATCCAGGGTCGAGATCCTCCTGGAGCATGCCGAGCTGAAGGCATCGACGCTGCGCTCCACGGCACGTACGTTCGCCGAGCACATCGTCGGCGCCGACGAGTGGGTCACCGATGCGGTCTACCGCGAGCGGGTGCGTGGCATCGCGGCGGATGCCGTGGGTGAGGCGATCGCCGACCTCGAGCGGATCGCCGTCGACCTCGGCCTTCGAGTTGCAGGGTCGGCGCGGTGAMASTELREQIHALLAAGLKQRQIAVYLGIGQATVSDHKRALVAAGRLPARPPVGSRGTGGAVVDLVPADPTSRRSRVEILLEHAELKASTLRSTARTFAEHIVGADEWVTDAVYRERVRGIAADAVGEAIADLERIAVDLGLRVAGSARNANANANANA
AK018_03524903hypothetical proteinGTGCGACGGCCGGTCATCCCGGCTCGACGAAGAGCCCGATGTTCAAGAACGGAGTGTGACCACGCATGTTCTCCACGCACGTCATCCCCGCCCCCTGCGCACCGTCGGTGCCCAGGGAGGCTGTCGCCCCCATGGAGGTGGGTCGACCATGAACCGCATCGTCCGAGGTTCGATCGTCACGGCCGCGGCCGCGGCGCTCACCATCCCGCTCGCCACCGTGCCGGCCTCCGCCGCCCCTGGCGACTATCCGGTCACCGTCTCCGGACTCAGCGTCGACGGACGCGACGACGGACCGCTCGACGTCGGCACCGACAGGCCGACCTTCTCCTGGATGATGTCGTCCGAGGACGTCGCCGGGAACCCCTGCTACGACGGCTCGGCCGGCGGGACCTGCGCCCTCGATGCGCAGACCGCGTACGAGATCGAGGCGGCGTCGTCGGTGGCGGATCTCGAGTCCGGCGACCTGCTCTGGGACACGGGCAAGGTCGACTCCGGTCGTCAGCTCAACGTCGCCTACGGCGCCGACGAGCCGCTCGGGTCGCGCGACACCGTGGCGTGGCGGGTCCGTGTCTGGGACGCGCTCGGGCACCCCTCGTCCTGGAGCGACCCGGCGACCTTCAAGGTCGGCCTGCTGGAGCAGGACGACTGGGGCGACGCCCGGTGGATCGAGCAGGTGGACCGCGACCCGGCGGACCCGTTGCCGATCTTCGCGCGGCAGTTCGACGTGGCCGAGGACAAGGAGGTCGCCTCGGCGCACCTCTACGTCTCGGGTGCCGGCCTGCACCACGCGACGATCAACGGCGAGGACGTCACCGACGAGCACCTGGCGCCGGGCAACACCAACTACCAGCTCTCGACCGAGTACCGCACCTACGACGTCTCCTCGGTGCTCGAGGCCGGTGAMRRPVIPARRRARCSRTECDHACSPRTSSPPPAHRRCPGRLSPPWRWVDHEPHRPRFDRHGRGRGAHHPARHRAGLRRPWRLSGHRLRTQRRRTRRRTARRRHRQADLLLDDVVRGRRREPLLRRLGRRDLRPRCADRVRDRGGVVGGGSRVRRPALGHGQGRLRSSAQRRLRRRRAARVARHRGVAGPCLGRARAPLVLERPGDLQGRPAGAGRLGRRPVDRAGGPRPGGPVADLRAAVRRGRGQGGRLGAPLRLGCRPAPRDDQRRGRHRRAPGAGQHQLPALDRVPHLRRLLGARGRNANANANANA
AK018_035251056lsrB_1Autoinducer 2-binding protein LsrBATGTTCTCCATCAAGCACCGCGCCCGGCGCGGAGCCGCGCTGACAGCCCTGGCTGCCAGCACCGCGCTGGTCCTGTCCGCCTGCTCCGGGGGTGACGACGCCGGGGGCGACGGCTCCGACGGCGGCTCCGACGGTGGCGGGGAGGCCGCCTCGATCACCTTCCTGCCGAAGAACCTGGGCAACCCCTACTTCGAGACGTCCAACTCCGGCGGCCAGACGGCCGTCGAGGAGCTCGGCGGCACCTTCGAGGAGGTCGGGCCCTCCGAGGCGAGCCCGACGTCGCAGGTCAGCTTCATCGAGACCGCCGCCCAGCAGGGCGTCGACGCGCTCGTCGTCTCGGCGAACGACCCCGAGGCGATCTGCGACGCCCTGAACGAGGCGCGCGACGTCGGCGTCGCCGTCGTCACCTTCGACTCGGACACCAACCCCGACTGCCGCGACCTGTTCGTCAACCAGGCGACCTCCGAGGGCATCGCCCAGGCGCAGGTGGACCTGATCACCGAGCAGATCGGTGACTCGGGCCAGATCGCGATCCTGTCCGCGTCGGCGAACGCCACGAACCAGAACGCCTGGATCGAGCTGATGGAGGCCGAGCTCGACGCCAACCACCCGGACGTCGAGCTGGTCGAGGTCGCCTACGGCGACGACGACGACCAGACCTCCTTCGACAAGACGGCGGCGCTGCTGCAGACCTACCCCGACCTGAAGGGCATCGTCTCGCCCACCACCGTGGGTATCGCGGCGGCCGCCCGCTACCTGTCCACCTCGGAGTACCAGGGTGAGGTCGCCCTGACCGGCCTCGGTACCCCGAACCAGATGCGCGAGTACATCGAGGACGGCACGGTCGAGGCGTTCGCGCTGTGGAACCCGGCCGACCTCGGCTACCTGTCCGCCTACGCCGCCAACGCCCTGGCGACCGGCGAGATCGCCGGCGAGGCCGGCGACACGTTCGAGGCCGGCGACCTGGGGTCCTACGAGGTCGACGAGGACGGCACCGTGCTGCTCGGCGACCCGTTCGTGTTCGACGCGGACAACATCGACGACTTCGACTTCTAGMFSIKHRARRGAALTALAASTALVLSACSGGDDAGGDGSDGGSDGGGEAASITFLPKNLGNPYFETSNSGGQTAVEELGGTFEEVGPSEASPTSQVSFIETAAQQGVDALVVSANDPEAICDALNEARDVGVAVVTFDSDTNPDCRDLFVNQATSEGIAQAQVDLITEQIGDSGQIAILSASANATNQNAWIELMEAELDANHPDVELVEVAYGDDDDQTSFDKTAALLQTYPDLKGIVSPTTVGIAAAARYLSTSEYQGEVALTGLGTPNQMREYIEDGTVEAFALWNPADLGYLSAYAANALATGEIAGEAGDTFEAGDLGSYEVDEDGTVLLGDPFVFDADNIDDFDFPGPT0016700_140DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016700-rhaS-K10559NANA
AK018_035261056lsrDAutoinducer 2 import system permease protein LsrDATGACCGCCACCTCCGAGGCCGCGGCGCCCCGGACGTTCGCCGCGCACGCCCACCCGCTCTGGCGTCGCCTCCTCGTGACCCGGGAGGCGTCGATCATCGGGCTGCTGCTCGCCGTGATCGCCGTGGCGATGGCGACCGTCCCGAACTTCGACAGCCCGCTGACCGTCACCTACCTGCTGCGCGAGATCGCGCCGATCCTGCTCATCGCGCTGCCGATGACGCTGATCATCATCACCGCCGAGATCGACCTGTCCGTGGCGAGCGTCCTGGGCCTCGCGAGCGTGGTCACAGGACTGGGGGTCCAGGCCGGGTGGCCCGTGCCCGTCGCGATGGTCGTGGCGATCGGCGTCGGCGCACTGGCCGGGGCGATCAACGGTGCGCTCGTCACGGTCGTCGGGCTGCCCTCGCTCGCGGTGACCATCGGTACGCTCGCGCTGTTCCGCGGCATCGCCGTCGGACTCCTCGGCACCACGGCCATCAGCGACTTCCCCGACGCCTGGACCGACCTGGCGCGCACCAACATCCCCGGGACCCCCGTCCCGGTCATCATCATCGCGTTCGCCGTGCTGGCTCTCGTGTTCGCCGTCCTGCTGCACTTCACCCCCTTCGGCCGCTCGCTCTACGCGATCGGGCTGAACAAGGAGGCCGCGGCGTTCTCCGGCATCAACGTGGGCCTGTCCAAGTTCTGGCTCTTCGTGATGAGCGGGACCGTCGCGGGGTTCGCGGGCGTCTACTTCACGCTGCTGTACAACAACGCCCGCGGTGACAACGCCATCGGCATGGAGCTGCAGATCATCGCCGCCGTGCTGCTTGGCGGCGTGTCCATCTTCGGCGGCCGCGGTGCCCTGCACGGCGTGATCGCCGGCGTCCTGCTGATCGGCACCCTGGCCAGCGCGCTCCGCCTGGCCGGGGTCACCAGCGACATCATCAACGTCCTGACCGGCCTGCTGCTCGTCCTGTCGGTCGTCTCGGCCAGCTTCCTGAACTGGTTCCACCAGCGTCGGGTCGCTGCCCTGGGACGCCGGCGAGGCCGGTCGCCCGGGACCTCGTCCTGAMTATSEAAAPRTFAAHAHPLWRRLLVTREASIIGLLLAVIAVAMATVPNFDSPLTVTYLLREIAPILLIALPMTLIIITAEIDLSVASVLGLASVVTGLGVQAGWPVPVAMVVAIGVGALAGAINGALVTVVGLPSLAVTIGTLALFRGIAVGLLGTTAISDFPDAWTDLARTNIPGTPVPVIIIAFAVLALVFAVLLHFTPFGRSLYAIGLNKEAAAFSGINVGLSKFWLFVMSGTVAGFAGVYFTLLYNNARGDNAIGMELQIIAAVLLGGVSIFGGRGALHGVIAGVLLIGTLASALRLAGVTSDIINVLTGLLLVLSVVSASFLNWFHQRRVAALGRRRGRSPGTSSPGPT0016695_41DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016695-rhaQ-K10561NANA
AK018_035271029lsrC_1COG1172Autoinducer 2 import system permease protein LsrCATGACCACCACCACCGCCGCACCGGCGCACCCCGTCCTGGCCGGCCTCGGACGGCTGGCCCGGGCGCGCGAGACCGGCATCGCGATCGCGATCGTCGCCGTCGTCGCGCTGGCCACGGTCCTCAACCCCAGCTTCGTCTTCTCGAACGACGGCTTCCGGGACCTGCTGCTGACCCCGTCCCTGCTCATGGTCGTCGCCATCGGGCAGGCGATCGTCATCATCACCCGCAACGTCGACCTGTCGGTGGGCTCCGTCGTGGGGCTGACCGCCTACCTGACCGGGAGCCTGTTCGCGGACGTCCCCGGTCTGCCGATCGTCGTCGTGTTCGTCGCAGGCATCGCCCTCGGCGCCGTCCTCGGGCTGATCAACGGTGCGCTCGTCGCCTTCGCGAAGGTGCCGGCCCTGGTGATCACCCTCGGCACGATGTACATCTACCGCGGCATCAACGTGGCCTGGACCGGTTCGGACCGGATCAACGCCTCGGACCTGCCGGCCGCGTTCCGCGAGCTGGGCACGGGCACCGTCCTGGGCATCCCGTTCCTGTTCCTCCTCGCGGTGCTGGTGCTCGTGTACGCGGCATGGCACCTGCGCAACCTGCGCAGCGGGCGCGAGCTCTACGCGATCGGGTCCGACCCGGCGGCCGCACAGCTCTACGGTCTGCGCGTGACCCGTCGCGTCCTGGCGGCCTTCGTGGTCAGCGGGTCGGCGGCCGGCCTGGCCGGCGTCCTGTACGCCGCGCGGTACGGCACCGTCAGCTCCAACGCCGGGTTCGGGTGGGAGCTCGAGGCCATCGGCTCCGCCGTCATCGGCGGTGTGGCGATCTTCGGCGGAGTCGGCACGGTCTGGGGCGCCGCCCTCGGCGCGTTCCTGCTGCTCACCATCAACCGGGCGTTGCCGATCATCGGCGTCGACGACTTCTGGCAGCGCGCCGTGGTCGGCGTCCTCATCATCGGCGCGATCGTCCTCGACCGCATCGCGGCGCAGCGCCAGCACCGACGACTCGTCGCCCAGAGGGAGGAGACCCGATGAMTTTTAAPAHPVLAGLGRLARARETGIAIAIVAVVALATVLNPSFVFSNDGFRDLLLTPSLLMVVAIGQAIVIITRNVDLSVGSVVGLTAYLTGSLFADVPGLPIVVVFVAGIALGAVLGLINGALVAFAKVPALVITLGTMYIYRGINVAWTGSDRINASDLPAAFRELGTGTVLGIPFLFLLAVLVLVYAAWHLRNLRSGRELYAIGSDPAAAQLYGLRVTRRVLAAFVVSGSAAGLAGVLYAARYGTVSSNAGFGWELEAIGSAVIGGVAIFGGVGTVWGAALGAFLLLTINRALPIIGVDDFWQRAVVGVLIIGAIVLDRIAAQRQHRRLVAQREETRPGPT0016690_138DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016690-rhaP-K10560NANA
AK018_035281524rbsA_1COG1129Ribose import ATP-binding protein RbsAGTGCAGTCGGACACCACGTCGGCGACGACGCCAGCGCTCGAGCTGTCGCGTGTCGTCAAGTCGTTCGGTGCCGTGGTGGCGTTGCGATCGGGGAGCCTGCGGCTCGAGAACGGATCGATCCATGCGCTCATCGGTGAGAACGGGGCCGGGAAGTCCACCCTGGTCAAGATCATCGCCGGTCTCTACCGGCGTGACGGCGGCGACTTCCGCCTCCGCGGCGAGGAGGTGGACTTCCACACCACCGCCCAGTCGAAGGCGAACGGCATCGCCGTGATCTACCAGGAGCCCACGCTCTTCCCCGACCTGTCGGTGGTGGAGAACATCTTCATGGGGCGTCAGCCCACCGGCCGGCTCGGCCGGATCGACCGGGCCGCGATGCACGCGGAGGCGACCGAGATCTTCGACCGCCTCGGGGTGCGGATCGACCCCGACCGCCCCACCGACGGTCTCTCGATCGCGGACCAGCAGATCATCGAGATCGCCAAGGCGATCTCGCTGGACGCGAGCGTCCTGGTCATGGACGAGCCCACCGCGGCGCTCAGCGGCGTCGAGGTGGACCGGTTGTTCTCCGTGGCGCGGAGCCTGCGCGACGAGGGCCGCGCACTGGTGTTCATCTCCCACCGCTTCGACGAGGTCTTCGACCTCTGCGACACCGTCACCGTGATGCGGGACGGCGCGCACGTGGACACGATGCCCATCTCCGACACCACCGTCGACGACCTGGTGCGCATGATGGTGGGCCGCGACGTCACCGAGATGTTCCCGAAGCTCCCGGCCGAGATCGGTGACGAGGTGCTGACGGTCGACGGGCTCACCCAGCCCGGCGTGTTCCACGACGTCTCCTTCTCCGTGCACGCCGGGGAGATCGTCGGGCTGGCCGGGCTCGTCGGCGCCGGGCGCAGCGAGGTGGCCCGCGCGGTCTTCGGCGTCGACCCCTACCGGGACGGCTCCGTGCACGTCGACGGGGCGCCGCTGCCGAAGTCGCGACCGAACGCCGCGATGGCCCGCGGCCTCGCGCTCGTGCCGGAGGACCGCCGTCGTCAGGGGCTCGTGCTCGACCTGCCCGTCACGCGGAACATCACGCTCGCCGTGCGGAGCCGCCTCGCCCGGTTCGGCCTGATCTGGGGCGCACGGGAGAACGAGTCGGCCCGGGTGTGGGCCAGCCGGCTCGAGGTCAAGACGGCCGCGCTCGACACCGAGTCCGGGACGCTCAGCGGCGGCAACCAGCAGAAGGTCGTGCTGGGCAAGTGGCTCGCGACCGACCCGAAGATCCTCATCGTCGACGAACCCACGCGCGGGATCGACGTCGGGACCAAGGCCGAGGTGCACCGGCTCCTGTCCCAGCTCGCCCAGCAGGGGATCGCGATCCTCATGATCTCGTCCGAGCTGCCCGAGGTGCTCGGCATGGCCGACCGCGTCCTGGTGATGCGCGAGGGGCGACTGACCGGGGAGTTCAAGCGCGAGCAGGCGACGCCCGAGGCCGTGATGCTGGCCGCGACCGCCGACGAGGAGGCCGCACGATGAMQSDTTSATTPALELSRVVKSFGAVVALRSGSLRLENGSIHALIGENGAGKSTLVKIIAGLYRRDGGDFRLRGEEVDFHTTAQSKANGIAVIYQEPTLFPDLSVVENIFMGRQPTGRLGRIDRAAMHAEATEIFDRLGVRIDPDRPTDGLSIADQQIIEIAKAISLDASVLVMDEPTAALSGVEVDRLFSVARSLRDEGRALVFISHRFDEVFDLCDTVTVMRDGAHVDTMPISDTTVDDLVRMMVGRDVTEMFPKLPAEIGDEVLTVDGLTQPGVFHDVSFSVHAGEIVGLAGLVGAGRSEVARAVFGVDPYRDGSVHVDGAPLPKSRPNAAMARGLALVPEDRRRQGLVLDLPVTRNITLAVRSRLARFGLIWGARENESARVWASRLEVKTAALDTESGTLSGGNQQKVVLGKWLATDPKILIVDEPTRGIDVGTKAEVHRLLSQLAQQGIAILMISSELPEVLGMADRVLVMREGRLTGEFKREQATPEAVMLAATADEEAARPGPT0016705_252DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016705-rhaT-K10562NANA
AK018_035291017rbsR_3COG1609Ribose operon repressorGTGGGAAGCGTGAGCATTCGCGACGTCGCGCGGCACGCCGGGGTGTCCGTCGGGACGGTGTCGAACGCTCTCAACAAGCCCGACGCCGTCTCCCCGGACGCGCTGGCGCGTGTCCGCCTCTCGATCGAGGCCCTCGGCTACGTGCGCAACGAGGCCGCACGGAACCTGCGTTCCGGGGTCACGGCGAGCATCGGGCTGATCGTCGTCGACAGCCAGGCACCGTTCTTCCAGGACGTCGGGCGCGGCGCCGCCGACGAGGCAGCCGAACGCGGCATCGCGCTCCTGTACGGCAGCGCGGCCGAGGACCCCGCCCGAGAACGCATGTACCTGGACCTGTTCGAGGAGCACCGCGTCCGCGGCCTCCTCATCGCCCCCGTCGGTGACGTCAGTCGCCGCCTCCGCGCGCTCCGGGACCGCGGCATCCGCACCGTGCTCGTCGACCGCTTCAGCGGCGAGGAGCTGTTCTCCTCCGTCTCCGTCGACAACGTCGCCGGCGGACGCATGGCCGTGGACCACCTCCTGGCCACCGGTCGCCGCCGGATCGCCTTCGTCGGTGGACCGCTGACCCTCCGTCAGGTCACCGACCGGCTCGACGGAGCCCGTGTGGCGGCCGACGAGAGCGGGCTGCCCGTCTCCGTCGAGGTCGTGGCCACCCCGACGATGAGCGTGGCCGCGGGCGTCGTCGCGGGTGAACGCATCCTGGCCCGGCCGCCGTCCGAGCGCCCGGACGCGGTGTTCGCCGCGAACGACCTTCTCGCGCTGGGGCTCCTGCAGTCGTTCGTCGGCGACGGGCGCCTGCGCGTGCCCGACGACGTCGCCATCATCGGCTTCGACGACATCTCCTTCGCCGCCGCCGCCGCGGTCCCCCTGTCCTCGATGCGGCAGCCGAGCACGACCATCGGCGCCACGGCCCTGCGCATCCTGCTGGAGGAGGCCGAGCAGGACGACCCCGTGCCCCGGCAGACCGTCTACCAGCCCGAGCTCGTGGTGCGCCGCTCGACGGACCCCTCGGCCTGAMGSVSIRDVARHAGVSVGTVSNALNKPDAVSPDALARVRLSIEALGYVRNEAARNLRSGVTASIGLIVVDSQAPFFQDVGRGAADEAAERGIALLYGSAAEDPARERMYLDLFEEHRVRGLLIAPVGDVSRRLRALRDRGIRTVLVDRFSGEELFSSVSVDNVAGGRMAVDHLLATGRRRIAFVGGPLTLRQVTDRLDGARVAADESGLPVSVEVVATPTMSVAAGVVAGERILARPPSERPDAVFAANDLLALGLLQSFVGDGRLRVPDDVAIIGFDDISFAAAAAVPLSSMRQPSTTIGATALRILLEEAEQDDPVPRQTVYQPELVVRRSTDPSAPGPT0017992_10531DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_035302316bglB_2COG1472Thermostable beta-glucosidase BATGACCGCCTCCACCCACGCGCCGCTGACCCTCGGCGACGTCCCCCGCCTGCTCAGCGAGCTGACGCTCGAGGAGAAGGCGTCGCTGTGCTCCGGCCAGGACTTCTGGAACACGCAGGCGGTCGAGCGGCTCGGCGTCCCTGCCGTGATGGTCACCGACGGCCCCCACGGGCTGCGCAAGCAGGCCGGCGCCGCCGACCACGTCGGCCTCAACGACTCGGTCCCCGCCACCTGCTTCCCGACCGCGGCCGGGCTCGCGTCCACCTGGGACCGCGGCCTGGTCCGGCGGGTGGGCGAGGCGCTCGGCGTCGAGACCCGCGCCAACGACGTCGCCGTGCTGCTCGGCCCGGGCGTCAACATGAAGCGCAGCCCGCTGTGCGGCCGCAACTTCGAGTACTTCAGCGAGGACCCGCACCTCGCCGGCGAGCTCGCCGCCGACCTCGTGGACGGCATCCAGTCCCAGGGCGTCGGCACCTCGCTCAAGCACTTCGCCGCCAACAACCAGGAGACCGACCGCATGCGCGTCTCGGTCGAGGTCGACGAGCGCACGCTGCGCGAGATCTACCTGCCCGCCTTCGAGACGGTCGTCACGCGCGCCCAGCCGTGGACGGTCATGTGCGCCTACAACAAGATCAACGGCGTCTACGCCTCGCAGGACCCCTGGCTGCTCACCCGCGTCCTGCGCGACGAGTGGGGCTTCGAGGGGCTCGTCGTGTCCGACTGGGGCGCCGTCGACGACCGGGTCGCCGGCGTCGACGCCGGGCTCGACCTGGAGATGCCGTCCTCGGGCGACGTGAACGACGCCCGCATCGTGGCCGCCGTGCGCGCGGGCGAGCTCGACGAGGCAGTCGTGGACCGGGCCGCCGGTCGGGTCCTGACCATGGTCGCCCGGGCCCTCCAGCACAGCGACGCCGTCACGTTCGACGCCGCCACCCACCACGCGCTGGCCCACGAGGTGGCCACCCGGACCGCCGTGCTGCTGAAGAACGACGCCGACGTACTGCCCCTCGACCCCGCGACGGCGGGGGACCTCGTCGTCGTCGGGGAGATGGCCCGCACCCCGCGCTACCAGGGCGCAGGATCCTCGCAGGTGAACCCCACCCGGCTGGTCAGCGCGCTGGACGCGTTGGCCGAGCGGGACCTCGACGTCGACTTCCACCCCGGCTACGTGCTCGCCGAGGCCGCCGGGAAGCCCGGGCAGGACCGCGACGACGCCGCGCTGCGGGCCGAGGCGGTCGCCGCGGCCGCCGGCAGGACCGCCGTCGTCTTCGCGGGTCTGCCCGCCGCCCACGAGTCCGAGGGCTACGACCGCGACCGCATGGAGCTTCCTGACGCGCACGTGGCGCTGATCCGCGAGGTCTCCGCCGTCGCCGCGCGCACCGTCGTCGTGCTGTCCAACGGCTCGGCCGTGACCGTCTCCGGCTGGCAGGACGCCGCCGACGCGATCCTGGAGACGTGGCTCGGCGGTCAGGCGTCCGGCTCCGCCGCCGTCGCGCTGCTGCTCGGCGAGGCCGCGCCGTCGGGCCGGCTCGCCGAGTCGATCCCCGTCGCGCTCGCCGACGTGCCCGCCCAGCTCAACTTCCCGGGCGAGCACGGCACCGTCCGGTACGGCGAGGGGCTGTTCATCGGCTACCGCGGGCTCGACGCCACCGGAGCCGCGGTGTCCTACCCGTTCGGGCACGGACTGACCTACACCTCGTTCGCCTACACCGACCTGGTGGTCGACGCCGAGGAGGTGACCGCGACGACGGCGCAGGGGGCCGGCGTCGTGCGCGCCACCTTCACCGTGACCAACACGGGCCCGCGCGAGGGTGTCGCGGTGCCGCAGCTCTACGCCGGCCGGCCGCGGTCCGTCGTCGCCCGTGCGCCGCGTGAGCTGCGCGGGTTCGCCAGCGTGCCGCTGCAGCCCGGCGAGTCGCAGCAGGTCGAGCTGACGCTCACGCGCCGCGACCTGTCGCACTGGGACACCGAGCTCCACGGCTGGGTCGTCGAGCCGGGCGCCCTCGAGGTCGCGGTGGGCGCCTCGTCCCGCGACCTGCCGCTCGTCGCGACGGTCGACCTCCCCGCGCCGACACCGGTCGCCCCGCTGCACCGCTACTCCACCGTGGCCGAGTGGCGCGCCCACCCGCAGGCGTGGGACGCGCTCGTCGCGGCGATCGGCCCGGCGGCGCAGATGTTCGACGAGTCCGCGGGGGACCCGGCGCACGCCGCGATGTTCTCGGCGATCCCGGTGATCAAGGTGACCACGATGGGGTTCTCGGAGGGGCTCACCCCGGAGCGGTTCGAGGAGCTGCTGGCCACCTACGGCGAGGCCTGAMTASTHAPLTLGDVPRLLSELTLEEKASLCSGQDFWNTQAVERLGVPAVMVTDGPHGLRKQAGAADHVGLNDSVPATCFPTAAGLASTWDRGLVRRVGEALGVETRANDVAVLLGPGVNMKRSPLCGRNFEYFSEDPHLAGELAADLVDGIQSQGVGTSLKHFAANNQETDRMRVSVEVDERTLREIYLPAFETVVTRAQPWTVMCAYNKINGVYASQDPWLLTRVLRDEWGFEGLVVSDWGAVDDRVAGVDAGLDLEMPSSGDVNDARIVAAVRAGELDEAVVDRAAGRVLTMVARALQHSDAVTFDAATHHALAHEVATRTAVLLKNDADVLPLDPATAGDLVVVGEMARTPRYQGAGSSQVNPTRLVSALDALAERDLDVDFHPGYVLAEAAGKPGQDRDDAALRAEAVAAAAGRTAVVFAGLPAAHESEGYDRDRMELPDAHVALIREVSAVAARTVVVLSNGSAVTVSGWQDAADAILETWLGGQASGSAAVALLLGEAAPSGRLAESIPVALADVPAQLNFPGEHGTVRYGEGLFIGYRGLDATGAAVSYPFGHGLTYTSFAYTDLVVDAEEVTATTAQGAGVVRATFTVTNTGPREGVAVPQLYAGRPRSVVARAPRELRGFASVPLQPGESQQVELTLTRRDLSHWDTELHGWVVEPGALEVAVGASSRDLPLVATVDLPAPTPVAPLHRYSTVAEWRAHPQAWDALVAAIGPAAQMFDESAGDPAHAAMFSAIPVIKVTTMGFSEGLTPERFEELLATYGEAPGPT0019110_3078DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_03531681hypothetical proteinGTGCCGAGCCCCTCCTCCCTGCAGCGCCGCCCCGGGCGCCCTCGCGCCGGCAGCGAGGACAAGCGCGCCCGGATCCTCGCCGAAGCCTTCCGACTCTTCGCCGAGAAGGGGTTCGCCGCCACGTCGCTGGGCGACGTCGCCGCAGCCGCCGAGATCTCCAAGGCCGGGCTGCTGCACCACTTCGGGTCCAAGGAAGGCCTCTACACCGCCGTCCTCGAGCAGCGCGACGCCGACGACTTCGTCGGCATGACCGACATCGGCGACGACGTCTGGGCCTACCTCGACACGTGGGTCGACCTGGCCCGCGACAACGCCCGAGCCCCCGAGATGGTGCGCCTGTACAGCGCGATGGCGGTCGACGGCGTCGAGGCCGACCACCCCGCGCACCGCTGGTTGCACCAGCACTTCGCCCGAGCGGTCGAGGCCACCGCCGACGCCTTCGAGCAGGGCAAGGCGGCCGGCACGGTGCACCCGGACGCCCCGTCCCACGAGCTGGCCCGCACCGTCGTCGCGCTCTCGGACGGCATGCAGCTGCAGTGGCTCTGCGCACGGGCCGACGCCGCCGCCGACGGCCGGGAGGTCACGGCCACCCCCGACCACACCGGCGTCCCGCTCGACCTCGCAGCCCAGATGCGTCTCGTCGTCGACCTGATCGCCGCGCGCTGGCGCCGACCCGCCTGAMPSPSSLQRRPGRPRAGSEDKRARILAEAFRLFAEKGFAATSLGDVAAAAEISKAGLLHHFGSKEGLYTAVLEQRDADDFVGMTDIGDDVWAYLDTWVDLARDNARAPEMVRLYSAMAVDGVEADHPAHRWLHQHFARAVEATADAFEQGKAAGTVHPDAPSHELARTVVALSDGMQLQWLCARADAAADGREVTATPDHTGVPLDLAAQMRLVVDLIAARWRRPANANANANANA
AK018_03532864ybjI_1COG05615-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YbjIATGCCCGTCGACGTCGGCGATCATGGAGCCATGCCCCTCCCCCCGACACCCGCCCTGGCCGACGTGCGCCTCGTCGTCACCGACATGGACGGCACGCTGCTCGACGCCGACGGTCGCGTCCCCGACGACCTGTGGCCGGTCCTGGCCGGGCTGCACGACGCCGGGATCGTCGTCGTGCCCGCCTCCGGACGTCAGCACGCCACCATCGCCGCCGACTTCCCCGCCGACCGGACCCCCGGGCACGACGAGCTCGTGATCATCGCCGAGAACGGCACGCTGGTCACCCGCGGCGGCAACCCGGTCTCCACCGACGCCCTCTCGCCCGACGCCGTCACCGCCGTCGTGCACGCCGTCCGCAGCATCGAGCCCGTCCGCGGCGGCGCCGTCGTCGCCGGTCTGCGCGGTGCCTACGTCGAGCGCGCCGACGCCGCGTTCGTCGACCACGTACGCACCTACTACGCCGAGCTCGAGGTCGTCGACGACCTGACGCGCGTCGACGACCAGGTCCTCAAGGTCGCCGTCCACGACGACGTCGACTCCGCCACCGGCACGTTCCCCGCGCTCGCCCACCTGCAGGACTCGCTGCAGGTGGTGGTCTCCAGCCCGCACTGGGTCGACGTGATGAACCCCGGCGTGAACAAGGGCGTCGCGCTGCGCCGGCTGCAGGAGCTGGCCGGGATCGGACCCGAGCAGACGATGGTGTTCGGCGACTACCTGAACGACCTCGAGATGCTCGACGCCGCCCACTGGTCCTACGCCATGGCCGGCGCGCACCCGGACGTCATCGCCCGCGCCCGGTACGTCGCGCCGTCGAACGCCGAGCACGGCGTCGTCCGGGTGCTCGAGGCGATGCTCGGGCGCTGAMPVDVGDHGAMPLPPTPALADVRLVVTDMDGTLLDADGRVPDDLWPVLAGLHDAGIVVVPASGRQHATIAADFPADRTPGHDELVIIAENGTLVTRGGNPVSTDALSPDAVTAVVHAVRSIEPVRGGAVVAGLRGAYVERADAAFVDHVRTYYAELEVVDDLTRVDDQVLKVAVHDDVDSATGTFPALAHLQDSLQVVVSSPHWVDVMNPGVNKGVALRRLQELAGIGPEQTMVFGDYLNDLEMLDAAHWSYAMAGAHPDVIARARYVAPSNAEHGVVRVLEAMLGRNANANANANA
AK018_035333735hypothetical proteinGTGGGGCGGGCCGCGGCGCGCCTCGGTGCCGTCGCCGTCGCCCTCGGGCTGGTGGGCGCGGTGTCCGTCGCCCCCGCCCAGGCCGTCGTCGAGCGGTACGACCCGTTCGAGGTCAACCAGGGCTTCTCCGCGATGGCGACGGGCGACATGGCTCTCAACAACGGGGAGTTCGAGGGCTCCGTCGCGGCCTTCGGGAGCCTCTCGACGACGAGCCAGAACTACCCCTTCATCCATCAGGCCGCCGGCAATCCGGACTACACGGTGCCCACGATCGACGGGGACCCGGTGCGGGTGCTCGCCGACCGGTTCGTCGGCACGGGCGAGTTCGACGTCACCGACCGCGACGACTCGGGCACCATCGCCCCCGACTCGCCCGAGGCCAACGCGATCGCGAAGTTCGCCGACCTGGGCGGCGTCTCGGCCACGGAGCGCGGCTCCGGGTACACCCGGCTGACCAACGCCGACGGCGGGATCTTCGACCTCGAGGAGCTGCCGTTCGACGCGGCGACCTGGCAGGACGACGTCCAGACCGCGCAGCCCGCGGTCGCGGACTACTTCGAGGACCTCGACGCCCACGTGGCGCAGACCAACCAGTGCCTGGCCGACATGTACGGCGACCCGGAGCTGGCCAACGAGGTCACCGTCACCGGGGACGCGAACCAGAAGTTCGTCTCCGGATTCTCGACGACGATCCCGAACTGGATCGACTACGAGGACGTGGCCGGTGCGGTCATCAAGCTCGACCAGGCCGGCGGCTACCTGCCGACGGCGCAGGCCCCGCTCGTCGTGCGCGTCTCCGACCCCACCACGACGGTCGGGCCGCTGAATTTCGAGGGCTGGAACGACCAGGACCTGTCGTCCTTCATCATGCTCGACCTGTCCGAGGCGACCGGCCCGGTGACGATCGACGGCCTGGAGTACGGGGCCGTCTGGGCGCCCGGCGTGGACGTGGTCTACACCTCGTCGCGCACCACGAACGGGCAGTGGTTCACCGACGACTTCACCACCGGTGGCGAGAACGGCGGTGGCGGCGGCGAGATGCACCACCACACCTTCCGCGGTCAGCTCCTGTGCGACGTCGACGCCGCGCCGGACATCACCTCCCAGGCGGCCGTCGCCGACTCCGAGGACGGACTCCTGCCGACCGACGGCGGCACCGTGGTCGACACCGTGTCCTACACGGGGCTCGAGCCCGGCACCGAGTACACCGTGACCGCGACCGTCATGACCGCCGACGGCACGGACACCGGGATCACCGCGACCACGACCTTCACGCCGGTCGCCGCCAGCGGCAGCGTCGACGTGCCCGTCGAGGTCACGGCCGAGCAGGCCGTGCTCTACGCGGGGCAGGACCTGGTGATCTTCCAGGTCGTGACGCTCGGCGGGGCCGAGGTCGCGGTCCACGAGGACCTGGAGGACCCGGACCAGACGTTCTCCGTGGCGCCGATCCCCGCCACCGGCGGGTTCGACGTCGCCAAGGTCGTCGACGGCAGCGGTGCGGCGCAGGTCGACCCCGAGACCACGTTCACCGTCGAGTGGGAGGTCGTCGAGGGGCCGTCGGCACCGCGGTCCGGCACCCTCGAGGTGCAGGCCGACGGCGTCGTGGTCTCCGGTCCGGACGACCTGGCCGAGGGTGATGTCGTCGAGTTCTCCGAGCCCGCGGGCCCGGACGTCGAGAACGCCTCGTGGGCCGGGGCGTCCATCGACCCGGAGTCGATCACCATCGACCCCGCGGCCCCGATGACACCCGTCATCACGGTGACCAACACCTACGAGGCCGACGAGGCGGGCTTCACCATCGTCAAGGAGCTCAGCGGCGACGCGCAGGACCTCGTCCCGGCCGACACCGAGTTCACCGTCAGCTGGGAGGTCACCGCCGGCCCGGACGCCGGGCAGAGCGGGGACGTGACGCTGACCGTCGGCGACGAGGAGACGGTCGGTGGCCTGTCGCACGGCGACTCGATCACCTTCACCGAGATCGATGTGCCCGAGGTCGACGATGTCATCTGGGGCACCCCGACCATCACGCCCGACCCCCTGGTCCTGGACGCGGACGAGACCGCCGAGGTCGTCGTCACCAACCGTGCCGGTGCCACCCGCGGTGAGGGCGGCTCGCTCTCCATCGCCAAGTTCCTCGACGGCGAGGGCGCCGCCCTCATCTGCGGCGACGACGGCAACAACGGGGGCGGCAACGGCGAGGAGTGCGCCGACCCGCCGACGTACGCGTTCAGCTGGACGGTGACCGACTCCGAGAACCAGGACAACGTCGGACGGACCGGCACCGTCGAGGTCGTGGCGGACGGCAGTGCGGTGGACATCCCCGGCCCCGGCGAGGAGCCCTTCGACATCGGTGACGTCGTGGAGCTCGGCGAGCTGGACTGCGTCGACGGCTGTCCGGACGGCGGCGTGGACCTGTCCGGGGTGTCCTTCTCCCCGGCGCAGGTGGTGGTCGTGCAGGACACCGCGGACATCACCGTCGACGTCACCAACACCTACGACATCGCCGACGCGACGTTCACCGCGCACAAGGAGCTCGCGGGGCCGGGCACCGACCTGGTCCCGGCCGACGCCGAGTTCTCCCTGCACTACGAGGTGGTCGACGGACCCTCGACCGGAGCCGCCGGCACGCTGGACCTGCCCGCCGACGGGACGGTCGTGGACGGCCCGACACTCAAGGACGGTGACGTCCTCGAGCTCTCCGAGGCGACCCCGCCCGTGATCGACGGCATCACCTGGGGGCAGGTGACGATCGACCCGAGCGAGCTGACCCTGGACTCCGGTGCCGAGACCGTCGACGTGACCGTCACGAACACCGCCGAGCTGGTGCCGACGCTGTCATCGCAGGTCGCCGTCCTCGACCAGACCCGGGCGGGCCGCCTCACCTACTCCGGCGGGACGGTCGTGGACACGATCACCTACACCGGTCTGGAACCGGGGGTGGAGTACACCGTGGCCGGGCTGCTGGCGATGCCGGACGGCACGTCGACCGGCATCACGGGCGGTCCGGTGACGTTCGTCCCGGAGTCCTCGAGCGGCACGGTCGACGTCACCTTCGAGCTCACGCAGCAGCAGATCGACGAGTACGCCAACCAGCAGCTCGTGGCCCTGCAGGCCGTGTGGCTCGACGGCGAGGTCGTGGCGGTCCACGCCGACCCGACCGACGAGGCGCAGACGTTCACGGTGGCGGTCACCCCGACCCTCTCCTCGCAGGTGACGGTCGTCGGCTCCGACGGGGGGACCGTGGGCGTGCGTGGCGCCACCGTCGTGGACACCATCACCTACACCGGCCTGACGCCGGGGCTCGAGTACACGGTCGCCGGTGCGGTGGTCACCGACGGGCCGGCCTCCGTCGGCCCGGTCGGGGCCACGGCGTTCGTCCCGGACCGCCCGGACGGCACCGTGGACGTGACCTTCGAGGTCACGGCGGCGCAGGCCGCCGCGTACGCGGGGGAGTCGCTGGTCGCGTTCCAGGCGGTCTTCCTCGACGGAGAGCTCGTCGTCGGGCACGCCGACCCGGCCGACGAGGCGCAGACCTTCGACATCGCGGTCCCGCGGCCCACGCCGTCGCCCAGCCCGAGCACCCCGGCGCCCACGCCGAGCCCGAGCACACCCGGCGGCGGCGAGCTGCCGGTGACCGGGCCGGAGATCGTCGGCGCGCTACTAGCGGTCGCGGTCTTCAGCCTGATGGCCGGTGCGTCGCTCCTGTGGTGGCGCCGTCGGTCGACGCTCGGCTGAMGRAAARLGAVAVALGLVGAVSVAPAQAVVERYDPFEVNQGFSAMATGDMALNNGEFEGSVAAFGSLSTTSQNYPFIHQAAGNPDYTVPTIDGDPVRVLADRFVGTGEFDVTDRDDSGTIAPDSPEANAIAKFADLGGVSATERGSGYTRLTNADGGIFDLEELPFDAATWQDDVQTAQPAVADYFEDLDAHVAQTNQCLADMYGDPELANEVTVTGDANQKFVSGFSTTIPNWIDYEDVAGAVIKLDQAGGYLPTAQAPLVVRVSDPTTTVGPLNFEGWNDQDLSSFIMLDLSEATGPVTIDGLEYGAVWAPGVDVVYTSSRTTNGQWFTDDFTTGGENGGGGGEMHHHTFRGQLLCDVDAAPDITSQAAVADSEDGLLPTDGGTVVDTVSYTGLEPGTEYTVTATVMTADGTDTGITATTTFTPVAASGSVDVPVEVTAEQAVLYAGQDLVIFQVVTLGGAEVAVHEDLEDPDQTFSVAPIPATGGFDVAKVVDGSGAAQVDPETTFTVEWEVVEGPSAPRSGTLEVQADGVVVSGPDDLAEGDVVEFSEPAGPDVENASWAGASIDPESITIDPAAPMTPVITVTNTYEADEAGFTIVKELSGDAQDLVPADTEFTVSWEVTAGPDAGQSGDVTLTVGDEETVGGLSHGDSITFTEIDVPEVDDVIWGTPTITPDPLVLDADETAEVVVTNRAGATRGEGGSLSIAKFLDGEGAALICGDDGNNGGGNGEECADPPTYAFSWTVTDSENQDNVGRTGTVEVVADGSAVDIPGPGEEPFDIGDVVELGELDCVDGCPDGGVDLSGVSFSPAQVVVVQDTADITVDVTNTYDIADATFTAHKELAGPGTDLVPADAEFSLHYEVVDGPSTGAAGTLDLPADGTVVDGPTLKDGDVLELSEATPPVIDGITWGQVTIDPSELTLDSGAETVDVTVTNTAELVPTLSSQVAVLDQTRAGRLTYSGGTVVDTITYTGLEPGVEYTVAGLLAMPDGTSTGITGGPVTFVPESSSGTVDVTFELTQQQIDEYANQQLVALQAVWLDGEVVAVHADPTDEAQTFTVAVTPTLSSQVTVVGSDGGTVGVRGATVVDTITYTGLTPGLEYTVAGAVVTDGPASVGPVGATAFVPDRPDGTVDVTFEVTAAQAAAYAGESLVAFQAVFLDGELVVGHADPADEAQTFDIAVPRPTPSPSPSTPAPTPSPSTPGGGELPVTGPEIVGALLAVAVFSLMAGASLLWWRRRSTLGNANANANANA
AK018_03534951hypothetical proteinATGCGCAAGAACACCACCCGGCGCCTGTTCGCCGGCACGGCGGCCGCAGCCCTCATGGCGACCGGCCTGTTCGCCGGCAGCACCTCGGCCGCCACCGCGGCCCCGCAGAGCGACAAGGCCAACGGCGCCGCCCAGTGCGCCGGTCGCAGCGTGCCCGCCAGCAAGATCTCGATCCAGCTCTTCAGCTACCTGGGCTGGCAGAGCCAGATCGGCATCGACGGCGTGCTCTCCGAGCTCGACGAGATCGGTTTCAAGAACGTCGAGCCGTTCGGGTCGCCCGGCGGCTTCGGCTCGTACGGCGACTACTCGGCCGACGAGTTCCGCGACGTGCTCAAGGGCTACGGCCTCAAGGCGCCGAGCTCGCACGGCAGCACGAACGAGGCGTCGTTCGACGGCACGCTCGAGAACGCCAAGGACCTGGGCCAGAAGTACGTCGGGTCCGGCGGCTTCGCCGCTCCCGGCATCGGCGGCGGCTACGAGAACGTGATCGCCACCGCCGACACCATGAACCGGCTCGGGGAGCGGTCGGTCAAGAACGGGACCGGCAAGTTCTTCGGCCACAACCACCAGTCGGAGTTCACGACCCAGTACACCGTCCCCGAGACCGGTGAGACGAAGAGCGCCTGGGAGATCCTGGTCGAGAACACCGACCCGCGGTACGTGACCTTCCAGCTCGACACCTTCTGGGCCGCCGACGCCGGTATCGACGTGGCCGACCTGCTCGAGGAGCACGGCGACCGCGTCGAGCTCCTGCACATCAAGGACGGCGACCTCAACGGCGACGACCGGGGCATCCCGGGCAACGTCGGTGACGGCGACATGGAGTGGGGCCCGATCCTGGAGGCCGCGCAGGGCAAGGTGAAGCTCTACGTGCTCGAGCGCGACGGCGCCCCGGCGAACGCCGACTTCGCTCGGGAGAGCTTCGAGTTCCTCACCTGCTTCTCGTACTGAMRKNTTRRLFAGTAAAALMATGLFAGSTSAATAAPQSDKANGAAQCAGRSVPASKISIQLFSYLGWQSQIGIDGVLSELDEIGFKNVEPFGSPGGFGSYGDYSADEFRDVLKGYGLKAPSSHGSTNEASFDGTLENAKDLGQKYVGSGGFAAPGIGGGYENVIATADTMNRLGERSVKNGTGKFFGHNHQSEFTTQYTVPETGETKSAWEILVENTDPRYVTFQLDTFWAADAGIDVADLLEEHGDRVELLHIKDGDLNGDDRGIPGNVGDGDMEWGPILEAAQGKVKLYVLERDGAPANADFARESFEFLTCFSYNANANANANA
AK018_035353312hypothetical proteinGTGAATTCTAGGCGTTCACGGCTGGTCGCCGCTCTGGCGGCGACCTTCGCCCTGGCCCTACCAGCGGCGTCGGCCACCGCTCACGACGGTGTCGACCACGGGTCCGAGGAGGGCGCCGACGCGGCGCTCGACTGGTCCAACTACGAGAAGATCCTGCTCACCAAGAACACCGGTGAGCCCATCGCCATGGCCGTGATGCCCGACGGGTCGGTGCTGCACACCGCCCGCGACGGCGCGATCCGGCACACCGACCCCAGCACCGGCGTCACCGAGGTGGTCAACACCGTCGACGTCTACGCCAACTCCGAGGACGGCATGCAGGGCATCGCCCTGGCCCCGGACTTCGCCGAGTCGGGCTGGGTCTACCTGTACTACGCACCCCGCGTGATGGAGGGCGACTACCCCGAGACGACGCCGTCCGGGTCCGCGCCGAACTCGCTGCCCGAGGGCGAGGACGAGTCGTACTGGGACCAGTGGAAGGGCTACAACCAGCTCTCCCGCGTGCAGTGGGACGCTGACGCCGGCGCCCTCGACATGAGCACCGAGCAGGACATCCTGCAGGTCGAGGTCCAGCGCGGGCAGTGCTGCCACGTCGGCGGTGACATCGACTTCGACGCCGAGGGCAACGTCTACCTGTCCACCGGTGACAACACGCCGGCCGGCACCCCGGGCGCCAACGGGTTCGCCCCGATCAACAACGCACCCGGCATGAACCCCGGCTTCGACGCCCGCCGCGGCGCCGGCAGCACGAACGACCTGCGCGGCGCGATCCTGCGGGTCAGCGTCGAGGAGGACGGCAGCTACACGATCCCCGAGGGGAACCTGTTCGAGCCCGGCACCGAGGGGACGCGACCCGAGATCTTCGTCATGGGTCTGCGCAACCCGTTCCGCATCGACGTCGACGACGTCACCGGCGCGGTGAGCTGGGGCGACTACGGGCCCGACTCCGGCGTCGCGAGCGACGAGCGCGGCCCGATGGGCTACGTGGAGTGGCAGAGCACCACGCAGCCGCTCAACGGCGGGTGGCCGTACTGCCACGGACCCAACGCGAACTACAACGAGTGGGACTACGCCACGCAGACCCAGGGCCCCTGGTTCGACTGCGAGGCCGGCGCCGAGAACAACTCGACGTGGAACACGGGTCTCGACGTCCTGCCCCCGGCGACCGCGCCGCAGGTCTACTACGGCGACAACCCGGGCGACCAGCCGTTCGACGAGTTCGTCGAGTTCGACGCCCAGGGCGGTCAGGGACCGATGGGTGGACCCACGTTCGCCCACGACCCGGAGGGCCCGGACACGCAGTGGCCCGAGTACTGGGACGGCAAGGCCTTCTTCTACGAGTTCTCCCAGGACTACATCGCCGGTCTGACCATCCCGGACCGTGACGGCGAGGTCACCCACGTCGAGCACGTGCTGCCCAACGCCGCGCTGACCGACAACGTCCAGGCCATCACCGACGGTCCGATCGACATGGAGTTCGGTCCGGACGGGTCGCTCTACATCCTCGACTACGGCAACGGTTTCTTCCGGCAGAACCCGGAGGCGGGCCTCTACCGCGTCGACTACGCCGAGGGCAACAAGGCCCCGACCGCGGTGATCGCGGCCGACCCGATCTCCTCCTCCGAGGCGCCGCTGACGGTGACCCTCGACGGCTCGGGATCGAGCGACCCCGAGGGCGCCGAGCTCACCTACGAGTGGGACACCGACGGCGACGGCACGTTCGACGAGACCGGCGTCGAGGTCACCACGACCTACACCGAGCTCGGCCAGTACACCGCCCGGCTGCGGGTCACCGACCCGGCCGGCCGGATCAGCCTGACGTCGCAGCTCATCACCGTCGGCAACGTGGCACCCACCCTGACGGCCGACTACCCGGCGGACGGCTCGTTCTTCGCCTGGGGCGACGCCGTGCCGTACGCGTTCTCCACCTCCGACCCGGAGGACGGCGACGAGACGGACTGCTCGAACCTGTCCTGGACGTTCGGGCTGGGCCACGACACGCACGCCCACCCCGAGGTGCTCGGCAGCGGGTGCTCCGGCGCCTGGGTCACCCCGGCCGACGCCCCCGAGCACGGTGCGACCGAGAAGCTGTACGGCGTCGTCGTGGCGACCTACACCGACCAGGGCAACGGGGACATCCCGCCGGCCCAGGACGAGGTGTCGCTGCTGCTCAACACCTTCACTCAGGAGGCCGAGCACGCCGACACGCTCGAGGGTGTGGAGGTCGTCGAGGACTCCACCGCGGGCGCCCTGTCCAAGGTCGTGTCCTTCGACGCCGGTGACCACCTCGCCTGGGACCCGGTGAACTTCGCCGGGATCGAGGGCGTCGACGTCACCGGTGCCGGGACGGGCACCATCGCGCTGCGCTGGGGTGCCGCCGACGCCGAGCCGTTCGCCACGGCGGACCTCGACTCCGACGGCTGGTCCACGGTGACCGCGGACGTGTCCGCGTTCCCCGAGGGCACCGGCGAGCTGTTCGTCACCTCGACCGGTGGCGTGGACCTGGACACCCTCGTGTTCGACGGTCCGGGCGTCACCGACGTCACCCCGCCCGAGGCGAGCCACACGCTCGACCCGGCCGAGCCGACCGGCGAGAACGGCTGGTACACCGGCGAGGTCGACGTGGAGGTCTCCGGTACCGACGACGGCGAGATCGGCGACGCCGAGGTCTCCACCGACGGCGGGGAGACCTGGCAGAGCCTGAGCCACCCGTGGTTCGGCATCCAGCCCCTCACCCTCTCCGAGGACGGGGTGCACGAGGTGCTCTACCGCGTCACCGACACCGGCGGCAACGTCTCCGAGGTCGGCGAGGTGACCGTGTCCATCGACGCCACGGCCCCCGAGGTCACGGTGACCGGGGTCGCCGACGGCGACGAGGTCGGTTCCTCCCAGGTCCTCGACCTGGGTGTCGAGGCCACGGACGCCACCTCCGGCGTCGCGTCGTCGAGCCTGACGCTCGACGGCGAGACCGTGGAGGCGGGCGAGATCGACCTGTGGACGATCGAGCTCGGCGAGCACCAGGTCGTGGCGACCGCCACCGACGAGGCGGGGAACACGACCGAGTCGACGGTGACGTTCACCGTCACCACCTCGGCCGAGGACCTCGCCGCGCACCTCGAGCGCCTCGAGGACGCCGGGGAGCTCTCGAGCTCCGAGTCGGCACGCCTGAACGCCTACCTCGGCCAGGCGGAGCGGCACGCCGACGCCGGCCGCTACCGGCAGGCCACCGCCGCGCTCGAGCGCTTCATCGGCGCGACCGACGAGGAGGTGCTGATCCGCGACGCCGAGGCGCTGATCGACCAGCTCGGCTGAMNSRRSRLVAALAATFALALPAASATAHDGVDHGSEEGADAALDWSNYEKILLTKNTGEPIAMAVMPDGSVLHTARDGAIRHTDPSTGVTEVVNTVDVYANSEDGMQGIALAPDFAESGWVYLYYAPRVMEGDYPETTPSGSAPNSLPEGEDESYWDQWKGYNQLSRVQWDADAGALDMSTEQDILQVEVQRGQCCHVGGDIDFDAEGNVYLSTGDNTPAGTPGANGFAPINNAPGMNPGFDARRGAGSTNDLRGAILRVSVEEDGSYTIPEGNLFEPGTEGTRPEIFVMGLRNPFRIDVDDVTGAVSWGDYGPDSGVASDERGPMGYVEWQSTTQPLNGGWPYCHGPNANYNEWDYATQTQGPWFDCEAGAENNSTWNTGLDVLPPATAPQVYYGDNPGDQPFDEFVEFDAQGGQGPMGGPTFAHDPEGPDTQWPEYWDGKAFFYEFSQDYIAGLTIPDRDGEVTHVEHVLPNAALTDNVQAITDGPIDMEFGPDGSLYILDYGNGFFRQNPEAGLYRVDYAEGNKAPTAVIAADPISSSEAPLTVTLDGSGSSDPEGAELTYEWDTDGDGTFDETGVEVTTTYTELGQYTARLRVTDPAGRISLTSQLITVGNVAPTLTADYPADGSFFAWGDAVPYAFSTSDPEDGDETDCSNLSWTFGLGHDTHAHPEVLGSGCSGAWVTPADAPEHGATEKLYGVVVATYTDQGNGDIPPAQDEVSLLLNTFTQEAEHADTLEGVEVVEDSTAGALSKVVSFDAGDHLAWDPVNFAGIEGVDVTGAGTGTIALRWGAADAEPFATADLDSDGWSTVTADVSAFPEGTGELFVTSTGGVDLDTLVFDGPGVTDVTPPEASHTLDPAEPTGENGWYTGEVDVEVSGTDDGEIGDAEVSTDGGETWQSLSHPWFGIQPLTLSEDGVHEVLYRVTDTGGNVSEVGEVTVSIDATAPEVTVTGVADGDEVGSSQVLDLGVEATDATSGVASSSLTLDGETVEAGEIDLWTIELGEHQVVATATDEAGNTTESTVTFTVTTSAEDLAAHLERLEDAGELSSSESARLNAYLGQAERHADAGRYRQATAALERFIGATDEEVLIRDAEALIDQLGNANANANANA
AK018_035361191nagC_1COG1940N-acetylglucosamine repressorATGACAGCGACGTCGGGGCCCGAGGAGATCGCCCCCCTGCTCAGCACCCTGCGCGACGGCCGCCCACGCACCCGGGCGGAGCTCGCCAGGCAGTTCGGGCTGTCGCGCTCCACGATGACCAACCGCATCGACGACCTGCTCGCGCTCGGACTGGTCACCCCCACGGGCGATGCCGGCTCGACCGGCGGGCGGCCCGCGTCCACCTTCACGTTCGACCCGGCCGTCCGCGTCGTGGCCGGCGTCGACCTGGGCGCCACCCACGCCCGGGTCACCGTGACCGACCTCGCCGCGGAACCGCTCGCGGACCACCGCACCGAGCTCTGCATCGCCAACGGCCCGGGACCCGTGCTCGACCAGGTCGCCGAGATCCTCGAGGGTCTGCTGCGCCGTGCAGGGCGCCGCCCGGACGAGCTCGTCGGCATCGGCGTCGGCCTGCCCGGCCCCGTGGACCACGCGACCGGGCGCCCCACGAAGCCGCCGATCATGCCCGGCTGGGACGGCTACGACGTGCCCGGCCACCTCAGCGCTCGCCTTGGGAGCGTTCCCACGCTCGTGGACAACGACGTCAACCTCATGGCCCTCGCCGAGCACTCGAGCGCGCTGACCGACGTCGGCCACCTGCTCTACGTCAAGGTCGCCACCGGCATCGGCGCCGGCATCGTCGCCGAGGGGCACATCTACCGCGGCGCGCAGGGCAGCGCCGGGGACCTGGGTCACGTGGCCGTCCCCGGCGGCGACCCGGTGCCGTGCACCTGCGGCAACACCGGCTGCCTCGAGGCGATCGCGGGCAGCGGCGCCGTCGCCCGGGCGATCGCCGCGCAGGGGCTGGAGGCCGCGACCACCGACGACGTCGTCCGCCTCGTCCGGGAAGGCTCCACCGTCGCCGCCCACGCCGTGCGCGACGCCGGACGGTCCGTCGGGTCCGTCCTCGCGAGCTGCGTGAGCCTGCTCAACCCGTCCGCGATCGTCGTCGGCGGGTCCATGTCCCGGGTGGGCGAGCACCTCGTCGCCGGGATCCGGGAGGTCGTCTACGCACGCTCCCTGCCGCTGGCCACCCAGCACCTGCGGGTCATGACCAGCCGCACCGGCCCGCACGGCGGAGCGCTGGGCGGCGCGTGGCTGGCCATCGAGCACGCCTTCGCCCGGCCCGGATGCTTCCTCACGCCCGCACCGGCTCCCCTACCAGGCTGAMTATSGPEEIAPLLSTLRDGRPRTRAELARQFGLSRSTMTNRIDDLLALGLVTPTGDAGSTGGRPASTFTFDPAVRVVAGVDLGATHARVTVTDLAAEPLADHRTELCIANGPGPVLDQVAEILEGLLRRAGRRPDELVGIGVGLPGPVDHATGRPTKPPIMPGWDGYDVPGHLSARLGSVPTLVDNDVNLMALAEHSSALTDVGHLLYVKVATGIGAGIVAEGHIYRGAQGSAGDLGHVAVPGGDPVPCTCGNTGCLEAIAGSGAVARAIAAQGLEAATTDDVVRLVREGSTVAAHAVRDAGRSVGSVLASCVSLLNPSAIVVGGSMSRVGEHLVAGIREVVYARSLPLATQHLRVMTSRTGPHGGALGGAWLAIEHAFARPGCFLTPAPAPLPGNANANANANA
AK018_035371374hypothetical proteinGTGAACCGGATGCTGGTCCTCGACGTGGTCGGGCTGACGCCCCGGCTGCTGGAGCACATGCCGCACCTGCAGGCGGTGGCCCGCAGCGGGTGGCAGGCCGAGCTCGGCACGGTGCTGCCGGCGGTGACCTGCTCGGTGCAGTCCACGTTCCTGACGGGCACGCTGCCGCGCGAGCACGGCATCGTGGGCAACGGCTGGTTCTTCCGGGACCTGGGCGAGCCGCTGCTGTGGCGCCAGCACCACCGCCTGGTCGCGGGGGAGAAGGTGTGGGAGACGATCCGTCGCGAGCGGCCGGACTACCGGGTGGCGAACGTGTGCTGGTGGTACGCGATGGGGTCGACGGCGGACACGACGGTCACGCCGCGGCCCGTGTACCACGCGGACGGCCGCAAGGACCCGGACTGCTGGACGTGGCCGCCGTCGTTGCACGACGAGCTGGAGGCCGAGCTCGGCCCGTTCCCGCTGTTCACGTACTGGGGTCCGACGGCGGGCATCGCGTCGTCGCGGTGGATCGTGGGGGCGGCGCGTCGGCTGCTGCCGGAGCACGACATGACGCTGGTGTACGTGCCGCACCTGGACTACGACCTGCAGCGGTACGGGCCGGACGCCCCGGAGGCGGTGGCGGCGGCGCGGGAGCTGGACGGGGTGCTGGCGCCGCTGCTGGCGGACGCCGCGGCGTCCGGGACCACGGTGGTGGCGCTGAGCGAGTACGGGATCACGGCGGCGCGGCGTCCGGTGGACGTCAACCGGGCGCTGCGGCGGGCCGGGCTGCTGCACGTGCACACCAACGCGACCGGCGAGCTGCTGGACCCGTGGACGTCGCGGGCGTTCGCGGTGGCGGACCACCAGGTGGCGCACGTGTACGTCCACGACCCGCAGGACCTGGCGGAGGTCCGTGCGCTGCTGGCCGACCTGCCGGGGGTGGACGAGGTGCTGGACGCCGAGGAACGACGCCGGTACGGGCTGGACCACGACCGGGCCGGGGACCTGGTGCTGGTCGCGGAGCGGGACGCGTGGTTCACGTACTACTACTGGCTCGACGACGACCGCGCCCCGGACTTCGCCCGGTCGGTGGAGATCCACAAGAAGCCGGGGTTCGACCCGGCCGAGCTGTTCTGGGACCCGGCCGACCGGTGGGTCAAGCCCCGGGCGGGCCTGCACGTGCTGCGCAAGAAGCTGGGGATCCGCTCCACGCTGCGGGTGGTGCCGCTCGACCCGGCTCCGGTGGGCGGGACGCACGGGCGGCTGCCGGCGTCGCCCGAGGACGGGCCGGTGCTGCTGTGCTCCCGCCCGGACGGCGCGCGGGGGCGGCTGGAGGCGACGGAGGTGCGGGACCTGCTGCTCAGCCTGGTAGGGGAGCCGGTGCGGGCGTGAMNRMLVLDVVGLTPRLLEHMPHLQAVARSGWQAELGTVLPAVTCSVQSTFLTGTLPREHGIVGNGWFFRDLGEPLLWRQHHRLVAGEKVWETIRRERPDYRVANVCWWYAMGSTADTTVTPRPVYHADGRKDPDCWTWPPSLHDELEAELGPFPLFTYWGPTAGIASSRWIVGAARRLLPEHDMTLVYVPHLDYDLQRYGPDAPEAVAAARELDGVLAPLLADAAASGTTVVALSEYGITAARRPVDVNRALRRAGLLHVHTNATGELLDPWTSRAFAVADHQVAHVYVHDPQDLAEVRALLADLPGVDEVLDAEERRRYGLDHDRAGDLVLVAERDAWFTYYYWLDDDRAPDFARSVEIHKKPGFDPAELFWDPADRWVKPRAGLHVLRKKLGIRSTLRVVPLDPAPVGGTHGRLPASPEDGPVLLCSRPDGARGRLEATEVRDLLLSLVGEPVRANANANANANA
AK018_035381179hypothetical proteinGTGCGGCTGCGACACCCCGACGGCACCGTCCTGCACGTCTCCTACGGCACCAACGTCCATCCCGCCCAGGACGTGACCGGGCTGCACGACCAGCTGCGCCGCTACGCCGGCCCGGTCCGACGTCGGCTCGGCACCGACCGGCTCGGGCTCGGGCTGTGGCTGCCCGCCCGGGCCGTCCACGAGCTCGCCGCCGACCCGCGGCAGACCGCCGCCCTGCGGGCCGCCCTCGACGCGGAAGGCCTCGAGGTGGTGACCGTCAACGCGTTCCCGTACGGCGACTTCCACGCCCCCGTCGTCAAGAAGGCCGTCTACCGGCCCGACTGGACCCAGGACGCCCGCTCCGACTACACGCTCGACGCCGCCCGGGTGCTCGCCGGTCTCCTGCCCGACGACGTCACCACCGGCAGCATCAGCACCCTGCCCCTCGCCTGGCGCAGCCCGTGGGACGGCGGCCGCGCCGACGCCGCCCGCAAGCGTCTCGACCGGCTCACCCACGGGCTCGCCGACGTCGAGGCGACCACCGGGCGCCGCATCCGTGTCGCCGTCGAACCCGAGCCCGGATGCGTCGGCGAGACGGCCACCGGCCTGGTCGAGCACTTCGCCGACCTCGACGCCGCACGCCTCGGCGTCTGCCTCGACCTGTGCCACCTGGCCACCGAGTTCGAGGAGCCCGCCGCGGCGCTCGCCGCAGTGCAGGGGGCTGGCCTCGACGTCGTCAAGACGCAGGTCTCCGCCGCGCTGCACGCCCCCGACCCGGCCGACCCGGAGGCGCTCGCGGCGCTCGAGGAGTTCGTCGAGGGGCGGTTCCTGCACCAGACCCGGGTGCGGCGCGCGGGCGGGGTCGATCGCCGCGACGACCTGCCGGACGCGCTCGGCCGGGTCGACGACGTGCCCGCGCTGGACACCGACGGCCCCTGGCGGGTGCACGTGCACGTGCCGCTGCACGCGCAGCCGCGTCCGCCGCTGCGCAGCACCACGGACGTGCTCGACGACGCCCTCGACCGGCTGGTCGGCGGGGAGCGGCCGCTCGTGGAGCACCTGGAGACCGAGACGTACACGTGGTCGGTGCTGCCGGACCACCTGCGGCCCCGCGACGACGACGGACTGGTCGCCGGGATCGCCGCCGAGCTGGACTGGACCCGCCGCCGGCTCGTCGCACGAGGGATGGAGGCGCTGTGAMRLRHPDGTVLHVSYGTNVHPAQDVTGLHDQLRRYAGPVRRRLGTDRLGLGLWLPARAVHELAADPRQTAALRAALDAEGLEVVTVNAFPYGDFHAPVVKKAVYRPDWTQDARSDYTLDAARVLAGLLPDDVTTGSISTLPLAWRSPWDGGRADAARKRLDRLTHGLADVEATTGRRIRVAVEPEPGCVGETATGLVEHFADLDAARLGVCLDLCHLATEFEEPAAALAAVQGAGLDVVKTQVSAALHAPDPADPEALAALEEFVEGRFLHQTRVRRAGGVDRRDDLPDALGRVDDVPALDTDGPWRVHVHVPLHAQPRPPLRSTTDVLDDALDRLVGGERPLVEHLETETYTWSVLPDHLRPRDDDGLVAGIAAELDWTRRRLVARGMEALNANANANANA
AK018_03539870hypothetical proteinGTGCGCATCTTCGACCCCCACATCCACATGACCTCCCGCACCACCGACGACTACGAGGCGATGCACGGCGCCGGGGTGCGCGCCGTCGTCGAACCGGCGTTCTGGCTCGGCCAGCCCCGCACCTCGGTGGGCTCGTTCGTCGACTACTTCGACGGGCTGCTCGGCTGGGAACGGTTCCGCGCCGCCCAGCACGGGATCGCCCACCACGCCACCATCGCGCTGAACCCCAAGGAGGCCAACGACCCGCGCTGCCGCGGCGTCCTGGACCTGCTGCCCCGCTACCTGGAGAAGGACGGCGTCGTCGCCGTCGGCGAGGTCGGGTTCGACTCCATGACCCGTGAGGAGGAGGACGTGTTCGTCCGCCAGCTCGAGCTGGCCGGTGAGCACGACCTGCCCGTCCTGGTGCACACCCCGCACCGCGACAAGGCCGCCGGCACCCGACGCACCCTGGAGATCGTGGCGCAGGTCGGGATCGCGCCCGAGCGCGTCGTCGTGGACCACCTCAACGAGGTCACCGTGGACGTCGTCGACGACGCCGGCTGCTGGGCCGGGTTCTCCGTCTACCCCGACACCAAGATGGACGAGGCCCGCATGGTCCGGATCCTGCAGCGGCGCGGTCTCGAGCGCGTCATGATCAACTCCGCAGCCGACTGGGGCCGCTCCGACCCCCTCAAGACCTGGCGCACCGGCCAGGCGATGCTCTCCGCCGGGTTCACCGAGCACGACGTCGACCACGTCCTGTGGCGCAACCCGGTGGCGTTCTACGGCCAGAGCGGGCGGCTGCTGCTCGACGACGTCGACGCCGGCGCCGACTACGCGGGCAACACCCTGCAGCGCGGCGAACCCCTCACCCCGGCGGCGCAGGGCTGAMRIFDPHIHMTSRTTDDYEAMHGAGVRAVVEPAFWLGQPRTSVGSFVDYFDGLLGWERFRAAQHGIAHHATIALNPKEANDPRCRGVLDLLPRYLEKDGVVAVGEVGFDSMTREEEDVFVRQLELAGEHDLPVLVHTPHRDKAAGTRRTLEIVAQVGIAPERVVVDHLNEVTVDVVDDAGCWAGFSVYPDTKMDEARMVRILQRRGLERVMINSAADWGRSDPLKTWRTGQAMLSAGFTEHDVDHVLWRNPVAFYGQSGRLLLDDVDAGADYAGNTLQRGEPLTPAAQGNANANANANA
AK018_03540618hypothetical proteinATGACGCCCGACCCTGCCCCCACCGCCACCCGGGCCCGCCTCGCGCCCGGCGCCGAGGCGCGGCTCGAGGAGCTGATCACCGAGGTCCGCCGGGACCCGGGCCGCCTGTCCCGAGCCGTCGCCCGAGCGGCGCGGGTCGTCGGTCGCGGACCCGGCCCCGACGGGCACCGCGTCGAGGACGTCGCCCGCGCCCGGCTGGTCGCCGCGGCCGCAGAGGCGACCGGTCCGGCCGGTGCCTCCGCCGTCGTCGAGGACGCCTACCGCACCGGGGACGCCGACGAGCGCCGCGCCGTGCTCCTCGCCCTGCCCGACCTCGACCTCGAGGCCGCTGCGCTGCCGCTCGTCGAGGACGCGCTGCGGACCAACGACGCCCGGCTCGTCGCCGCCGCCATGGGCCCCTACGCGGCAGCCCACCTGCCGGCCGAGGCGTGGCGGCACGGCGTGCTCAAGTGCCTGTTCGTCGGCATCCCCCTGACGGCCGTCGCCGACCTGGAGCACCGCCGGGACGCCGAGCTCGACCGCATGGTGGCCGCCTACGCCGCCGAGCGGGAGGCCGCCGGCCGCGACGTCCCCGCCGACGCCCGCACCCTGCTGGACCGGACTCCCTCGAACCCCTGAMTPDPAPTATRARLAPGAEARLEELITEVRRDPGRLSRAVARAARVVGRGPGPDGHRVEDVARARLVAAAAEATGPAGASAVVEDAYRTGDADERRAVLLALPDLDLEAAALPLVEDALRTNDARLVAAAMGPYAAAHLPAEAWRHGVLKCLFVGIPLTAVADLEHRRDAELDRMVAAYAAEREAAGRDVPADARTLLDRTPSNPPGPT0017530_12DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATIONPLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017530-ulaE|sgaU|sgbU-K03079NANA
AK018_03541900ulaEL-ribulose-5-phosphate 3-epimerase UlaEGTGACCACCCTCGCCTACGGCACCAACGGGCTGGCCGACCACCGCCTCGCCGACGCCGTGCCCTACCTCGCCGACCTCGGCTACGGCGGCATCGCGCTCACGCTCGACCACATGCACCTGGACCCGCTGGCACCGGGCCTGGCCCGGCGCACGGCCGACGTGGCCGCGCTGCTCGACCGGCACGGGTTCGGCGTCGTCGTCGAGACGGGCGCGCGCTACGTGCTCGACCCGCGGCGCAAGCACGAACCGACGCTGGTGTCCGACGTCGGACGCGATCGCCGCCTGCACCTGCTGCGGACCGCGGTGGACGTCGCGGCGGACCTCGGGGCCCCGGCGGTGCACCTGTGGTCCGGCGTGCTCCCGGCCGGCACCTCGGCGGCCACCGGCCACGACCGGGTGCTGGCCGGGCTGACCGAGCTGCTCCCGGTGGCCGACGCCGCGGGCGTCGACCTGGCCTTCGAGCCCGAGCCGGGGATGCTCGTCGAGCGCGTGGACGACGTGCTCGCCCTGCGGCGCGCGCTCGGCGACCCGGCGCGGCTGCGCCTCACCGTCGACGTCGGGCACCTGACCTGCGTGGAGGACGAGCCCGGGCCGGACGTGATCCGGCGGACGGGTGAGCACGTCGCCCACGTCCAGGTCGACGACATGGTCCGCGGCGTGCACGAGCACCTGCAGCTCGGGCAGGGGACCGTCGACCTGCCCGGCGTGCTGACGGCGCTGGACGACGTCGGCTACGCCGGTCTGGCCGCCGTCGAGCTGCCGCGCCACTCCCACGCCGCCGCACGCGTCGCGGCCGAGAGCCTCACCGCCCTGCGCGACGCCGCGGCCACCGCCGGGGTCCCGGTGCGGCCCGCGCCCGCTCCCGTCCCGACCGCGCCCACCCCGGAGGTCGCCCGATGAMTTLAYGTNGLADHRLADAVPYLADLGYGGIALTLDHMHLDPLAPGLARRTADVAALLDRHGFGVVVETGARYVLDPRRKHEPTLVSDVGRDRRLHLLRTAVDVAADLGAPAVHLWSGVLPAGTSAATGHDRVLAGLTELLPVADAAGVDLAFEPEPGMLVERVDDVLALRRALGDPARLRLTVDVGHLTCVEDEPGPDVIRRTGEHVAHVQVDDMVRGVHEHLQLGQGTVDLPGVLTALDDVGYAGLAAVELPRHSHAAARVAAESLTALRDAAATAGVPVRPAPAPVPTAPTPEVARPGPT0017530_343DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATIONPLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017530-ulaE|sgaU|sgbU-K03079NANA
AK018_03542852cyoE_1Protoheme IX farnesyltransferaseATGAGGTGGCGGGACCTCGCCGAGCTGGTCCGGCTGCCCGCCGCGCTGACGGTGCCCGGGGACACGCTGGCCGGTGCCGCGGCCGCGGGGTGGCCGTGCGGCCGCCGCACCGCCGCGCTGCCGGTCGCCTCAGCCTGCCTGTACTGGGCGGGCATGGCGCTCAACGACTGGGCCGACCGTGACCTCGACGCCGACGAGCGCCCCGAGCGCCCGATCCCGTCCGGTCGGGTCCGTCCCGACCAGGCCCTCGGCGTCGCGGGAGCGCTCACGACGGCGGGGCTGGCGGCCGCCGCGGTCGCCGGCCTCCGCCCGGCCGCGATCGCCGCGGCGCTCGCCGGAGCCGTGTGGGCGTACGACGTCGTCGCCAAGCCGACGCCGTTCGGCCCCGTGGTCATGGCGTCCACCCGGTTCCTCGACGTGCTGATGGGCGGCGCGGGCCACCGCGCGGCCCTGGCCCCGGCGACGACGGTGGCCGCCCACGTCCTCGCGGTCACCCTGGTCAGCCGCGGCGAGGTGCACGGCACGACGTCGGACCTCGGCCGGGTGGCGGTGGCCACTACCGCCGGGGTCGGGCTGGCCGCGGCCGCCTCGGGGCGGGGCGCGCCGTCGACGCTGGTCACCGGGACAGCGCTCGCCGCGACCTTCGCGGGCACGGTGCTGCCGGCCCAGCTCGACGTCGTGCGCACCCCGGACGCGGCGACGGCCCGGCGGGCGACCGGCGTCGGGCTGCGTGGTCTGGTCCCGCTGCAGGCCGCCCTCCTCGCCGGCCGGGGTGCCTACCGGGCCGCGGCCGGGGTGCTCGCCGCCGTCCCGCTGGCCCGTCTCGGCGCCCGGGTGGTGAGCTCGACGTGAMRWRDLAELVRLPAALTVPGDTLAGAAAAGWPCGRRTAALPVASACLYWAGMALNDWADRDLDADERPERPIPSGRVRPDQALGVAGALTTAGLAAAAVAGLRPAAIAAALAGAVWAYDVVAKPTPFGPVVMASTRFLDVLMGGAGHRAALAPATTVAAHVLAVTLVSRGEVHGTTSDLGRVAVATTAGVGLAAAASGRGAPSTLVTGTALAATFAGTVLPAQLDVVRTPDAATARRATGVGLRGLVPLQAALLAGRGAYRAAAGVLAAVPLARLGARVVSSTNANANANANA
AK018_035431239hypothetical proteinATGGTTTCTGACGACGACGTCAACCGTCCCGAGCGACGCCTCGGCCTCTGGTTCATCGGCGCCCGCGGTTCGGTCGCCACCACCGCCACCGTCGGCGCGCTGGCCCTCGCCCGCGGCGAGGCACCGGTGACCGGCCTGGTCACCGAGCTGCCCGAGGTCGCCCGCGCCGGCCTCCCCGCCCTGGACACGCTCGTCGTGGGCGGCCACGACGTGTCCGGCAGCATGGTCGACCGGGCGCACGAGCTGGCCGCCTCCGGGGTGATCCCGCCGCCCACCGTCGCCGCCGTCGCCGACGACCTCGCCGCCGTCGACGCCCGGGTGCGTCCCGGCACCGACGGCACCGCCGACCGCGCCACCGTCGACCGCCTTGAGCAGGACCTGCGCGACTTCCGGGCCGCGCACCACCTCGACGACGTCGTGGTCGTCGACGTCTCCAGCACCGAGCCCCCCGCTCCCGAGGCGGACACCGTCGGCACGCTCGCCGAGCTCGAGTCGCTGCTCGACGCCGGCACCGCACCCCTGCCGCCCTCCTCGCTGTACGCCTACGCGGCCTTCCGTGCGGGTGCACCGTTCGTCGGGTTCACGCCGTCCACCGGGCCGCGCACGCCCGCGCTGGAGGAGCTCGCCAAGACCCAGCACCTGCCCTGGGCCGGCCGGGACGGCAAGACCGGCGAGACGCTGCTCAAGACGACGCTCGCCCCGATGTTCGCCACCCGGGCGCTGGCCGTGCGCTCCTGGTCGGCGTTCAACATCCTCGGCGGCGGCGACGGCCGCACCCTCGCCGACCCGGCGGCCGCTGCGAGCAAGACCGCGACCAAGGCGATGGCCGTCCAGGCCATCCTCGGCTACCCCGTCGAGGGGCCCGTCCGGATCGACCACGTGGCCGACATGGGGGACTGGAAGACGGCGTGGGACCACGTCACCTTCGACGGCTTCCTCGGCACGCGCATGCGGATGCAGGTCACCTGGGAGGGCTGCGACTCCGCCCTCGCGGCCCCGCTCGTCCTGGACCTCGCCCGGCTGGTCGCCCGCGCCCACGAGGCCGGGCTCTGCGGCCCGCTGGCCGAGCTCGGGTTCTTCTTCAAGGAGCCCCTCGGCGGTACCGAGCACGCCCTGGCCGACCAGTGGCAGACGCTGGTCCGCTGGTGCGCGGACCTGGTGGCGCCGTCCGCCGCGACACCCGCGGCGCCCGCAGGGCCGTCCGGCGAGTCGTCCGCCGATCCTACCGACCGCCCATGAMVSDDDVNRPERRLGLWFIGARGSVATTATVGALALARGEAPVTGLVTELPEVARAGLPALDTLVVGGHDVSGSMVDRAHELAASGVIPPPTVAAVADDLAAVDARVRPGTDGTADRATVDRLEQDLRDFRAAHHLDDVVVVDVSSTEPPAPEADTVGTLAELESLLDAGTAPLPPSSLYAYAAFRAGAPFVGFTPSTGPRTPALEELAKTQHLPWAGRDGKTGETLLKTTLAPMFATRALAVRSWSAFNILGGGDGRTLADPAAAASKTATKAMAVQAILGYPVEGPVRIDHVADMGDWKTAWDHVTFDGFLGTRMRMQVTWEGCDSALAAPLVLDLARLVARAHEAGLCGPLAELGFFFKEPLGGTEHALADQWQTLVRWCADLVAPSAATPAAPAGPSGESSADPTDRPNANANANANA
AK018_03544324hypothetical proteinATGGCACGACCGTCCCCCAGGCACACCATCGCCCACGCCGCCGGAGCCGCGCTCCTGGTCAACGCCGTGCCGCACACCGTGCACGGCCTGTCGGGCGAGCCGTTCCCCAGCCCGTTCGCCGACCCGCCGGGCGTCGGGGACTCCACGCCCGCCGAGAACATCGTCTGGGGCGGGCTCAACGCGGTCGCCGGCGGCGCGCTCCTGCTCGGCGTCGGACGGTTCCGGCCGGGCGCGAACCTGGGGACGGCCGTGACCGTGGCGGCCGGCCTGGCCGCCGCGTTCGGCATCAGCCGGCACTTCGCCGGGGTGCGCGGCGGGACCTGAMARPSPRHTIAHAAGAALLVNAVPHTVHGLSGEPFPSPFADPPGVGDSTPAENIVWGGLNAVAGGALLLGVGRFRPGANLGTAVTVAAGLAAAFGISRHFAGVRGGTNANANANANA
AK018_03545231vapBCOG4456Antitoxin VapBATGCGTACGACCGTCTTCCGCACCAACCGCACCCAGGCCGTCCGGATCCCGAAGGCCGTCGCCCTGCCGGACGACGTCCGTGAGGTCGACATCCGCGTCGTGGGGCGCTCCCGGGTGATCGAACCCTCCGGGTCCGGGTGGGACGAGTGGTTCGACCACGGACTCCGGGTCGAGCCGGACTTCCTCGTCGACCGCGACCAGGGCGTCGCCGAGGAGCGCACCGGCCTGTGAMRTTVFRTNRTQAVRIPKAVALPDDVREVDIRVVGRSRVIEPSGSGWDEWFDHGLRVEPDFLVDRDQGVAEERTGLPGPT0027600_689DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-VapC-VapB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027600-antitoxin_mvpT|vapB-K18829NANA
AK018_03546414vapC_2COG1487tRNA(fMet)-specific endonuclease VapCGTGACCACGCTCTATCTCCTGGACACCGACGTCCTCGTCGCGCTGCTGCGCGGCAAGGCCGAGGTCGCACGGTCTCGACTCCGAGAGGCGTCCGGCCGCGTCGCGGTCTCCACCATCAGCGAGATGGAGCTCGAGTACGGCGTCGAGCGTTCCGCGCATCCCGGACGGAACCGACAGGCCCTGGACGAGCTGCTCTCGCTCGTGGAGGTCGTGCCCTTCGAGACGACGGCGGCGATGCATGCCGGGCGGGTCCGCGCCGCCCTGGCCGCTCGCGGCACGCCGATCGGCCCCTACGACTCCTTGCTCGCCGGGCACGCGAGGTCGCTGGGCCTCGTGCTGGTCACCCACAACACCGCCGAGTTCTCGCGGGTGCCGGGGCTGGAGATCGAGGACTGGCTCGCCGCACCGGTGTGAMTTLYLLDTDVLVALLRGKAEVARSRLREASGRVAVSTISEMELEYGVERSAHPGRNRQALDELLSLVEVVPFETTAAMHAGRVRAALAARGTPIGPYDSLLAGHARSLGLVLVTHNTAEFSRVPGLEIEDWLAAPVPGPT0027595_247DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-VapC-VapB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027595-toxin_mvpA|vapC-K18828NANA
AK018_035472253hypothetical proteinGTGTCCGAGCAGGGGTTCCTCGCGCCCGGTGAGGCCGTCGACCTCGACAACTGCGCCCGCGAGCCCATCCACATCCCCGGCCGGATTCAGCCGCGCGGGCTGCTCCTCGCGCTGCGCACCGACGACGCCGTGGTGACCCAGTGCTCGGAGAACGTCGCCGACGTGCTCGGCACCGGTCCCGACGACGTCCTGGGGGCGCCGCTCGGCCACGTGCTCGGCACCGACGCGGCGCGCACCCTCCTCGACCACGTCGCCGCCGTGGACGACCCGCGGCTGCGCAACCCGGTCGAGGTCACGATCCCCGTGGACGGCACCGCCGAGCGCTTCGAGGCGGTGCTCCACCACGCCCCGGGCTCCGCCACGCAGACCCGCCCGGCCGTGCTCGTCGTCGAGCTCGAACCGTTCTCCGGGCACGCGGCCCTGAGCTACACCAGCACCTACGAACCGGTGCGCGACGCCCTCACGCAGCTCGACCGGGCCACCTCGCTGCAGGAGCTCTACGACGTCGCCGTCGACCGCGTGCGCGAGCTCACCGGGTTCGACCGCGTGATGCTCTACCGATTCGACGCCGACTACAACGGCGAGGTCGCGGCGGAGGCCCGGAGGGAGGACCTCAACCCCTTCCTGGGGCTGCACTACCCGGCGTCCGACATCCCTCCGCAGGCCCGGGCGCTGTACGAGAAGAACTGGATCCGCCTCATCTCCGACGTGGACTACCGGCCGGTCGCCGTCGTGCCGACCGACGACCCGGTCGGTGGCGCCCCCCTGGACCTTACGTACGGCACGCTGCGCAGCGTCTCGCCGATCCACGTCGAGTACCTGCAGAACATGGGCGTCGGCGCCTCCATGTCCATCTCGCTGCTGCGCGACGGGCGGCTGTGGGGCCTGATCGCCTGCCACCACTACTCGGGCGCGCACGCGCCGTCGTACGCCGCCCGGGCCGCCGCGGAGTTCCTCGGCTCGACACTGTCGGCCCGGCTGGTCACACAGGCCGAGGACGACCGCGCCTCGGCGGCACGACGCTCGGCCGGCGTGCTGGCGCGGCTCGTGGCGGCGACGCGCGACGACGACGTCCCGCTGACGGACGCCCTCACCGGCACGCCGGGCCTGCTGGACCTGGTGGACGCCGACGGAGCCTTCGTAGCCGCCGAGCACCGGGTGGGCCGGCTCGGCGACGCCCCCGAGGAGGAGACGTGCCTGCGGCTGGCGCGGGCCCTGGCCGAGCTGGACGTCGAGGTGCTCGTGACCGACCGGCTGGCCGAGGAAGAGCCCGAGCTGGCACGGATCGTCCCCGACGCAGCGGGCCTGCTTGCCCTCGTCGTCCCGGACGGCGCGGTCACCGTGTGGCTGCGGCGCGAGGTCGTGCAGAGCGTCGACTGGGGCGGCGACCCCCGCAACAAGGCCATCGCGCGGCGCGAGGGCGACACGGTGCGGCTGTCGCCCCGCAAGTCGTTCGCGCGCTGGCGCGAGATCGTCCGCGGCACCAGCGAGCCGTGGACCGACGACCAGGTGGACGTCGCGACGTCGCTGCGCTCCTACCTGGCCGAAGGTCTGCTGCTGCGCGGCCGCCGGGACATCCGCGCCGCGGCGACCCTGCAGCGCAGCCTCCTGCCCACCGCGCTGCCGCAGGTCGACGGCTGGGAGATCGACGCCGTCTACGAGCCGACCGGCGGGGGCCTGGCCGGCGGCGACTGGTACGACGCGCTGGTGCTCGACGACGGTCGCCTGGCCGCGGTGGTCGGGGACGTCAGCGGCCACGGCCTGTCAGCCGCCGCCACGATGGGGCAGCTCCGCAACGCCCTGCGGGCTCTCCTGCTGACCGGCAGCCCTGCCGTGCGCGCCGTCGAGCAGGTCGACCAGCTGCTGCGCTCCACGATGCCGGGGCAGGTCGCCACGCTCGTGGTCGCCGTCGTCGACCCGGCCACGGGAGCCGGTGAGTACGTGACCGCGGGCCACCCGCCGCCCGTCGTCGTCGGGCCCGACGGCGGCGCGATCGCCGCGATGCTCGGCACGCCCCCGCTGGGCGTGGGCCGGCGCACCAACCGTTCCGGGACGCTGCAGGTCGAGCCCGGCGGCGGTCTCGTGCTGTTCAGCGACGGGCTCGTGGAGCGGCGCGAGGAGTCGATCGTCGACTCCCTCGAACGCCTGCGGCAGGCGACCGGCACCGTGACGGGCGCCGCCGCGCTCGTGGCCGCCGTGCGCGACCCGGCGTCGGACGACGACGCGACGGTCGTCGTCGTGCGCCGGGCCTGAMSEQGFLAPGEAVDLDNCAREPIHIPGRIQPRGLLLALRTDDAVVTQCSENVADVLGTGPDDVLGAPLGHVLGTDAARTLLDHVAAVDDPRLRNPVEVTIPVDGTAERFEAVLHHAPGSATQTRPAVLVVELEPFSGHAALSYTSTYEPVRDALTQLDRATSLQELYDVAVDRVRELTGFDRVMLYRFDADYNGEVAAEARREDLNPFLGLHYPASDIPPQARALYEKNWIRLISDVDYRPVAVVPTDDPVGGAPLDLTYGTLRSVSPIHVEYLQNMGVGASMSISLLRDGRLWGLIACHHYSGAHAPSYAARAAAEFLGSTLSARLVTQAEDDRASAARRSAGVLARLVAATRDDDVPLTDALTGTPGLLDLVDADGAFVAAEHRVGRLGDAPEEETCLRLARALAELDVEVLVTDRLAEEEPELARIVPDAAGLLALVVPDGAVTVWLRREVVQSVDWGGDPRNKAIARREGDTVRLSPRKSFARWREIVRGTSEPWTDDQVDVATSLRSYLAEGLLLRGRRDIRAAATLQRSLLPTALPQVDGWEIDAVYEPTGGGLAGGDWYDALVLDDGRLAAVVGDVSGHGLSAAATMGQLRNALRALLLTGSPAVRAVEQVDQLLRSTMPGQVATLVVAVVDPATGAGEYVTAGHPPPVVVGPDGGAIAAMLGTPPLGVGRRTNRSGTLQVEPGGGLVLFSDGLVERREESIVDSLERLRQATGTVTGAAALVAAVRDPASDDDATVVVVRRANANANANANA
AK018_03548441hypothetical proteinGTGGACCTGAGGATCACCGCAGCGCCGGCCCCGGACGGATTCCACGAGGTGCGGTCCTGGCCGCTGCTCACGCTCGACCAGCTCGCGCTGCTCCGGAACGACCTGGGAGCGGCACTCCCCGCCGGCGGGGACAACCTCGAGGACGTGCCCGAGTGCGTCCTGCTCGTCGCCAGCGAGCTGGCCACCAACGCGATCGAGCACGGGGGCGGACCGGCGACGGTCCGGCTGCTCGCGCGCGACGGCGAGTACCTCCTCGACGTCGCCGACCGCTCACCGCAGCACCGCCCGCAGATCTCCAGCACACCGGGGGGCGACGGCGGGTTCGGCCTGATGCTCGCCGCTCGGCTGGCCGACGCGGTGGGCTGGTACGCGACGCGGGCGGGCAAGCACGTGTGGGCCCGGTTCGCCGTGCAGAACGACGCCCCGCCGCTGCCCGCCTGAMDLRITAAPAPDGFHEVRSWPLLTLDQLALLRNDLGAALPAGGDNLEDVPECVLLVASELATNAIEHGGGPATVRLLARDGEYLLDVADRSPQHRPQISSTPGGDGGFGLMLAARLADAVGWYATRAGKHVWARFAVQNDAPPLPAPGPT0014950_1497DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014950-rsbW-K04757NANA
AK018_03549315hypothetical proteinGTGAAGGATGACGAGAACCACGGCGGGGTCCGGATCGACCCCGACCGTGCCCACTGGACCATGTGGGGAGAGGTCGACGCCGCGGTGCAGGCCCGTGACTCGGGCCGGCTGGCGGCCCACCTTCGCGGTCGGGGTGACGAGACCCTGACGGTCGACCTCGAGCAGGTGACGTTCATCGACTCCGGCGGGCTGCGGCTGCTCTACCACGCCGCCGAGACCACGGCGTCGCCCCCGGTGCTCGTCCGGACCCCGCCGAAGGTCCGCGACCTGCTCCGACTGAGCGGCGTGGACACGATGTTCGTCCTCGCGGACTGAMKDDENHGGVRIDPDRAHWTMWGEVDAAVQARDSGRLAAHLRGRGDETLTVDLEQVTFIDSGGLRLLYHAAETTASPPVLVRTPPKVRDLLRLSGVDTMFVLADPGPT0014350_1228DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
AK018_035501128hypothetical proteinATGATGCGCAGATCACGGTGGGCGGCCGGCGGACGCGGGTACCGGACGACGGCGGTCGCCGCCCTGCTGGCTCTCGCGCTGGGCGGGTGCACCGCCTCGGGCGGACCGGACAGCGGTGCCGACGGCCCGGACGGCGCCGGCCCCGGGAGCGCCGCGAGCGCCCTGCCCGCCTCCCCGACGGGCGCGCGTTCCGTCGTCACCTCGGGCCTGGCCGCCCCGTGGTCGGTGACGTTCGTCGGCGAGGTCCCGCTGGTCAGCGAGCGCGACTCGGCCCGCGTCCTCGAGCTGGTCGACGACGGGACCGTGCGTGAGGTGGGCGTGGTCGAGGGGGTCGTCACCGGCGGTGAGGCCGGGCTGCTCGGGCTGGCGGCGGACGACGCCGGTCGGCTGTTCGTGTACTCGACCGGCGCGGACGGCAACCGGATCGAGCGCTACGACCTGGAGGGATCCCCGGGCTCGTTCGCGCTCGGCGACTCGACCACTCTGGTCGAGGGGATCCCGGCGGCGAGCAACCACGACGGTGGTCGCCTCGCGCTCGGTCCGGACGGGATGCTGTGGGCCACCACGGGGGACGCGGGTGACCCGTCGCGGTCGCAGGACCCGGAGTCCCTGGCGGGCAAGATCCTGCGGATGACGCCCGACGGCGAGGCCCCGGACGACAACCCGTTCCCGGGCTCGCTCGTGTACAGCCTGGGCCACCGCAACGTCCAGGGGCTGGCGTGGACGGACGACGGCACGCTGTTCGCGACGGAGTTCGGGCAGAACACGTGGGACGAGCTGAACGTCGTGGAGCCGGGCGCGAACTACGGCTGGCCGGAGGTCGAGGGGATCGCGGGAGCCGAGGGGTTCGTCGACCCGGTCCAGCAGTGGCGACCCGGCGAGGCGAGCCCGTCGGGGATGGCGCACGTGGACGGCACGCTGTTCGTGGCGAACCTGGGCGGCGAGGTGCTGCGGGCGGTGCCCGTCGAGGCACCGTCGACCTCCGCCGTCGTCGTCGAGGACGAGGGCCGGCTGCGCGACGCCGTCGTCACGCCGGACGGCGAGCTGTGGATCGTCACCAACAACACCGACGGGCGCGGGTCGCCGGGGCCGGACGACGACCGGATCCTGCGCCTCGACCTGGACTAAMMRRSRWAAGGRGYRTTAVAALLALALGGCTASGGPDSGADGPDGAGPGSAASALPASPTGARSVVTSGLAAPWSVTFVGEVPLVSERDSARVLELVDDGTVREVGVVEGVVTGGEAGLLGLAADDAGRLFVYSTGADGNRIERYDLEGSPGSFALGDSTTLVEGIPAASNHDGGRLALGPDGMLWATTGDAGDPSRSQDPESLAGKILRMTPDGEAPDDNPFPGSLVYSLGHRNVQGLAWTDDGTLFATEFGQNTWDELNVVEPGANYGWPEVEGIAGAEGFVDPVQQWRPGEASPSGMAHVDGTLFVANLGGEVLRAVPVEAPSTSAVVVEDEGRLRDAVVTPDGELWIVTNNTDGRGSPGPDDDRILRLDLDPGPT0017700_901DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_ALDOSE_DEGRADATION,PGPT0017700-yliI-K21430NANA
AK018_035511089hypothetical proteinATGGTGACCACGAACGCCGCCGGGACGCGCTCCCGGCAGATCGCGCAGACCCACCGCCGCCTGTCGCGCGCCGCCGGACGGCGCCCGGGCCTGCCGGAACCGCAGGTGCTGGTCGACTCCCCGACGGTCCGCCTGGAGCGCGGCGACCTGCAACGCCCGTTCCACGTGGCGAGCATCGGCAAGCTCGTGACGACGGCGCTGGTGCTGCAGCTGGTCGACGCCGGGCGCCTGACGCCGGACACGCCGCTCGGCGCGCTGCTGCCGTCGTCGGACCTGGCCGGGCTGCCGGCCGCACCCGGCGTCGACGTGGCCCGCGACGTCACCGTGGAGCACCTGCTCACCCACACCTCCGGGCTGCCCGACTACGCCGAGCCGCCGCGCGGCCACGCGAGCGCCGCCGCCGTGACCGCCCTCGCCGACGACCCCGACCGCCGCTGGACGCCCGCCGCCGTGCTCGACGAGGCGCGCCGGCTGCCCGCCGTCGGACGTCCCGGCGAACGATTCCGCTACGGGGACACCGGGTTCGTGCTGCTGGGACGCGTCGTCGAGGAACGCCACGGCCAGGCGTTCCCCGCCGTCGTGCAGCGACAGGTCTTCGACCCGAGCGGCATGGAGCACGCCTCGATGCCCTACGCGTCGGCCCGCACGCCGGGCGACCTGGCCGACCTCGACGTCGCCCCGTTCTGGATCGGGACCGACGAGGTCAGCCGGGCGCTCGCCGTCTCCCTGGACTGGGCCGGCGGGGGAGTGGTGGCCACCGCCGGCGACCTCGTGCGGTTCTCCGCCGCGCTGCACGGCGGGCGGCTCGTGCCACCGGACCTGCTGCGCGACGCCGCGCGGGTCCGCCACCGGTTCCGGCCCGGCATCCACTACGGCGCCGGCACGATGACGCTCCGGTTCGGCGGGTTCTCACCCCTCCTGCGGGGCTTGCCGGAACCCGTCGGGCACCTCGGCATCCTGTCGACGCACCTCTTCCACTACCCGCAGCAGCAGGCGCACGTGGTGCTCAACCTGCACTCCACCCGGCAGATGCGGCGCAGCGTCATGATGCACGTCCACCTCGCCCGGCTACTGGCCGAGCAGGGTTAGMVTTNAAGTRSRQIAQTHRRLSRAAGRRPGLPEPQVLVDSPTVRLERGDLQRPFHVASIGKLVTTALVLQLVDAGRLTPDTPLGALLPSSDLAGLPAAPGVDVARDVTVEHLLTHTSGLPDYAEPPRGHASAAAVTALADDPDRRWTPAAVLDEARRLPAVGRPGERFRYGDTGFVLLGRVVEERHGQAFPAVVQRQVFDPSGMEHASMPYASARTPGDLADLDVAPFWIGTDEVSRALAVSLDWAGGGVVATAGDLVRFSAALHGGRLVPPDLLRDAARVRHRFRPGIHYGAGTMTLRFGGFSPLLRGLPEPVGHLGILSTHLFHYPQQQAHVVLNLHSTRQMRRSVMMHVHLARLLAEQGNANANANANA
AK018_03552543hypothetical proteinATGGCCCACGTCATCCTCGGCCTGCTACTCCTGGCGCCGCAGAGCCTCTACGACCTCGTCAAGAGCTTCGAGGCCGGAGTCTCGCTCTTCTACTCCGCCAGCACCGGCAGCATCAAGCGCGCCCTGGACCGGCTGCTCGCCGAGGGCCGCATCGAGGTGGCCAGCACCGACACCGGCGCCCGGGGCCGCAAGGTCTACCGGGTCACCCACACCGGGCGAGCGGCGTTCCGCACATGGATGACCGGCGAGCTCACCGGCCCGGACCCGGAGACCGCCGCCCTGTCGCGGCTGTACTTCCTCGGGCTGCTCGACCCGGCGGAGCGGCCCGGCGTGCTGCGCCGCACGGCCGAGCGCATCGAGGCCGACCTGGACCGCCTCACCACGCTGGCGGGCAACCTCGACACGGTCGAGGTGCCCCCAGGGCTCGAGGACGTGGCCCGGTACCAGCGCGCCACCCTGGACTACGGCGTCGCCGCCCACCGCCAGGCGCTCGACTGGTTCCGCGCCGCGCTCACCCGCGAGGAGGGCGCGGACGAGCGCTGAMAHVILGLLLLAPQSLYDLVKSFEAGVSLFYSASTGSIKRALDRLLAEGRIEVASTDTGARGRKVYRVTHTGRAAFRTWMTGELTGPDPETAALSRLYFLGLLDPAERPGVLRRTAERIEADLDRLTTLAGNLDTVEVPPGLEDVARYQRATLDYGVAAHRQALDWFRAALTREEGADERNANANANANA
AK018_03553462hypothetical proteinATGACCACCACCGCCACGGAGAAGGACCTCGGTCGGCTCCCGCTCGCCGGCACCGCCCGTCTGGTCGGGCCGGGTGCCTCGGTCGGCGCGTGGCTCGTCCGGTTCGACGGCGCGCTGTACGCCCGGTCCGCCGCGCCGCGGTCTGCCGTCGTCGACCGACGCGGCCGCGGGCGCATGCGGATGGACGGGCAGGACCACGCCGTCGTCCTGAGCGAGGTGGCACCCGAGATGCACGAGCTCCTCGACGACGCCTACCGCGCCCGGTACGGCCGGTGCCGTCCGGAGCAGGTGGACGCCATGGTGTCCGACGACGCCGCGGCCGCCACGTTCCTGGTCCGGTCCCGGTCGCTGAGCTGGGGCGAGCGCGCGGCGCACGTGGTCGCGGCGTGGCGCGAACGATTCTCCGCCCCCGCGGCGTCGACCGGTCGGGGCGACGCGCCCTGCCCGTGCCCAGGCTCCTGAMTTTATEKDLGRLPLAGTARLVGPGASVGAWLVRFDGALYARSAAPRSAVVDRRGRGRMRMDGQDHAVVLSEVAPEMHELLDDAYRARYGRCRPEQVDAMVSDDAAAATFLVRSRSLSWGERAAHVVAAWRERFSAPAASTGRGDAPCPCPGSNANANANANA
AK018_035541008COG1063putative zinc-binding alcohol dehydrogenaseATGTACGGCGCCGGCGATGTCCGGGTCGAGGAGATCCCCGACCCGACCATCGTCGAGCCCACCGACGCGATCATCCGCGTCACCCTGGCCTGCGTGTGCGGCTCCGACCTGCACCCGTACCACTCGATGCCGGCCTCCGAGGACGGCACCCCGATGGGCCACGAGGCCATCGGCGTCGTCGAGGAGATCGGCGACGACGTCACGGGCGTCGCCGTCGGCGACCACGTGATCGTCCCGTTCGCCTACGCGGACAACACGTGCGCGATCTGCCGCGACGGCTTCCAGACCGCCTGCGCGCACGGCGGGTTCTTCTCCGGCGCGCAGGCGGAGAAGCTCCGCGTCCCGCAGGCGTCCGGCACCCTGGTGTCGTTCCCGGCGGACACCGACGAGTCGCTCCTGCCGAGCCTGCTGACCCTGTCCGACGTCTACCTGACGGGCTACCACGCGGCCTACATGGCGGGCGTGCAGCCGGGCCAGACCGTCACGGTGATCGGTGACGGCGCCGTCGGGCTCTCCGCGGTCCTCGCCGCGAAGCAGATGGGCGCGGGCAAGATCATCCTCATGGGCCGCCACCAGGACCGCACCGACCTCGGTCGGCAGTGGGGCGCCACCGACGTCGTCGCCGAGCGCGGCGAGGAAGGCGTCGCCCAGGTCCTGGAGCTCACCGGCGGCGAGGGCTCGCACGTCGTGCTCGAGGCCGTCGGCCACATGCCCGCCTACGAGCAGTCGTACGGCGTGGTGCGCGCCGGCGGGGTCATCTCCCGCGTCGGCGTCCCCCAGTACGAGAAGGCCCCCGTCGGCTTCATGTCGCTGTTCGGCAAGAACGTGACCCTGAACGGCGGACCGGCACCGGTGCGCGCCTACCTCGAGGCCGCGATCCCGCAGGTCCTCGACGGCACCATCGACCCCGGCCGGGTCTTCGACCGCGAGGTCTCCCTGGACGACGCCCCCGAGGGCTACCGCCTCATGGACTCCCGCGAGGCGCTCAAGGTGCTCGTGCGTCCGTGAMYGAGDVRVEEIPDPTIVEPTDAIIRVTLACVCGSDLHPYHSMPASEDGTPMGHEAIGVVEEIGDDVTGVAVGDHVIVPFAYADNTCAICRDGFQTACAHGGFFSGAQAEKLRVPQASGTLVSFPADTDESLLPSLLTLSDVYLTGYHAAYMAGVQPGQTVTVIGDGAVGLSAVLAAKQMGAGKIILMGRHQDRTDLGRQWGATDVVAERGEEGVAQVLELTGGEGSHVVLEAVGHMPAYEQSYGVVRAGGVISRVGVPQYEKAPVGFMSLFGKNVTLNGGPAPVRAYLEAAIPQVLDGTIDPGRVFDREVSLDDAPEGYRLMDSREALKVLVRPPGPT0006375_884DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
AK018_03555774hypothetical proteinATGGCCTACTTCCGACGCACCGGCGCCTCGACCTTCGACCCCACCGAGCACACCGGCGGGGCGTGGCGCACCGACGAGCAGCACGTGGCACCCACGTTCGGCCTGCTCACCCACCTGGTGGAGACCGACCGGGTCGCTCGCGGGCGCGACGAGCTGACCCCCGTCCGGCTCACCTTCGACGTCTGGGGCCCCTACCCCCTGGCCCCGATGGACACCTCCGTGCACGTCGTCCGTCCGGGTCGCGGCGTCGAGCTGGTCGAGGCCGCGGTCACCTGCGCGGGGCGGACCGTCGCCACGCTGCGGGCCTGGCTCGCGGCGGCCGGGGACACGGCGGCGCTCGCAGGCGGTGATCCGCCGTCGATCCCCGGCCCGGACGAGACGCCCGCCTGGGACCCGACGACGGACTGGCCGGGCGGGTTCGTCGCCTCGATCGACGTGCGGCGTACCCTCGCGGAACCGGGCCGGGGCACGGTCTGGGTGCGCACCGACCACCCGCTCGTCGAGGACGAGGACGTCGCGCCGCTCGCGCGCACCGCCGGTCTGCTGGACCTCGCCAACGGGATGAGCGTGCGCGCCGATCCGCGCCGGGTCGCGTTCCCCAACCTGGACCTGACGACGCACCTGTTCCGTGCGCCGGCCGGCGGGTGGCTCGGCCTGGACACCACCGTCACGTTCGGCCCCGCCGGCGCCGGGGTCACCTCGACGGTGCTGCACGACACCGACGGCCCGTTCGGCCGCCTGGTGCAGTCGCTCGTGGTGCGCCCCCTCGGCTGAMAYFRRTGASTFDPTEHTGGAWRTDEQHVAPTFGLLTHLVETDRVARGRDELTPVRLTFDVWGPYPLAPMDTSVHVVRPGRGVELVEAAVTCAGRTVATLRAWLAAAGDTAALAGGDPPSIPGPDETPAWDPTTDWPGGFVASIDVRRTLAEPGRGTVWVRTDHPLVEDEDVAPLARTAGLLDLANGMSVRADPRRVAFPNLDLTTHLFRAPAGGWLGLDTTVTFGPAGAGVTSTVLHDTDGPFGRLVQSLVVRPLGNANANANANA
AK018_035561818nhaA_3Na(+)/H(+) antiporter NhaAATGACCCTGAACCTCGCCCGGCGCCTGCGCACCGACTCCGGTGCCGCCGTCCTGCTGCTGTCGGTCACGCTGTTCGCGCTGCTGTGGGCCAACTCGCCCTTCTCGGAGGCATACACCCACCTGTGGGAGATCCCGATCAACGTCGACATCGGGGACCTCGCGTTCGACATGGACCTGCACCACTGGGTCAACGACGGGCTGATGGTGGTGTTCTTCTTCGTGGTCGGCCTCGAGGTGCGCCAGGAGCTCACCATCGGCTCGTTGCGACGACGCAGCCAACGGCTCGTCCCGCTCGTCGCCGGCACCGCCGGGGTCGTGGTCCCCGCCCTGATCTACCTCGCGATCGCCGGGGGCACCGCACCCCACGGCTGGGGCGCCGTCGTCGGCACCGACACGGCGTTCCTGCTGGGTGTCCTGGCGCTGGTGGGGCCCGCGATGTCCAACCAGCTCAAGGTGTTCCTGCTGACCCTGTCCGTGGTGGACGACTTCCTGGCCGTCACGATCATCGGCGTCGTCTACTCCGAGGACGTCCGGATCACCCCACTGCTGGTGGCCGGCGCGTGCCTGGCCGCCCTCTGGCTGCTCGGGCGCATGCGGGAGTGGCGCAGCACCCCCTACCTGCTGGTCGTGGTGGTGCTCTGGGGCGCCACGGTGCAGGCGGGCATCCACCCGTCCATCGCCGGGATGCTCGCCGGCCTCCTGGTGCCCGCCGCGCTGACGCAGCGGGCCGACGTCGTGCGCACCAAGGACCTGTACCGGGCCTACTGGCAGTCCCCCAGCGCCGGCGTCGCCCGCGAGGTGCACCTGGGGCTGTCGCGGTCCATCTCCGTCAACCAGCGGCTGCACGAGGTGCTCAACACCCCCGTCAACGTCGTCGTGGTGCCCCTGTTCGCGCTCGCCAACGCCGGGATCGACCTGCGCGGCGGGGCGCTCGGCGAGGCGCTGGGCTCCTCGATCACCTGGGGCGTGGTCGCCGGTCTCGTGCTCGGCAAGCTCGTGGGCATCAGCCTCGGCACGTGGGCGGCCGTCAGGGCCGGGCTCGGCACGCTGCCCGACGGCGTGGGGCCCGGCAGCGTGCTCGGCGGCGCCGCGCTGTGCGGCATCGGGTTCACGGTGTCGCTGCTGGTGATCGACCTCGCCTTCGACGACGAGGCACAGGTGCAGGCCGCGACCGTCGGCGTGCTGCTGTCGCTCGTCCTCGCCTCCCTGGTGGCGTGGGCCCTCTTCCGCCTGGCCCGCGTGCGCTGGGGCGAGGAGAGCGCCGACCTGCCCATGGCGCTGGACCCGCCTGTCGACACCCGGCATGACCACCTGCGCGGCGACCCGGACGCCCCGCACACCATCGTGGAGTACCTCGACTTCGAGTGCCCCTTCTGCATGCGGGCCACCGGGATGTGGCGAGAGCTGCAGGCCGAGCTCGACGGCCGGGTGCGCTACGTCGTCCGCCACCTGCCGCTCGACGACGTGCACCCCCACGCCCGCCTCGCCGCCGTCGCCGCGGAGGCCGCCGCCCGCCAGGGCCGGTTCTGGGAGATGCACGACGTGCTGTTCGAGAACCAGACGGCGCTCGAGGCCGAGGACCTGCGGGCGTACGCCGCGTCGCTCGACCTCGACGCCGAGCAGTTCGAGGCCGACCTCGCCGACGACGCCCTGCACGCCCGGGTCGCCGACCACGCCGAGAGCGCCCGGGCCAGCGGTGCCCAGGGCACGCCGACGTTCTTCCTCGACGGGGTCCGCCACCAGGGGCCGCACGACGCCGCCACGCTGATCGCCGCGATCGAGGCGCTGGAGGCGGCGGAGCCGGACGAGGCGCGGTAGMTLNLARRLRTDSGAAVLLLSVTLFALLWANSPFSEAYTHLWEIPINVDIGDLAFDMDLHHWVNDGLMVVFFFVVGLEVRQELTIGSLRRRSQRLVPLVAGTAGVVVPALIYLAIAGGTAPHGWGAVVGTDTAFLLGVLALVGPAMSNQLKVFLLTLSVVDDFLAVTIIGVVYSEDVRITPLLVAGACLAALWLLGRMREWRSTPYLLVVVVLWGATVQAGIHPSIAGMLAGLLVPAALTQRADVVRTKDLYRAYWQSPSAGVAREVHLGLSRSISVNQRLHEVLNTPVNVVVVPLFALANAGIDLRGGALGEALGSSITWGVVAGLVLGKLVGISLGTWAAVRAGLGTLPDGVGPGSVLGGAALCGIGFTVSLLVIDLAFDDEAQVQAATVGVLLSLVLASLVAWALFRLARVRWGEESADLPMALDPPVDTRHDHLRGDPDAPHTIVEYLDFECPFCMRATGMWRELQAELDGRVRYVVRHLPLDDVHPHARLAAVAAEAAARQGRFWEMHDVLFENQTALEAEDLRAYAASLDLDAEQFEADLADDALHARVADHAESARASGAQGTPTFFLDGVRHQGPHDAATLIAAIEALEAAEPDEARPGPT0013935_23DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313NANA
AK018_03557471hypothetical proteinATGCTCCGGTTTCGCAACATCGACGCCAGCCCCGAGGACCCGGTGTCGACCTGGGGGGTCGAGGGGCTGGCCACCGCCCTGGAGCGTGGGTACCTGCCGCACTGGCAACGCATCGCGCGAGCGGTCCGCGCCGAACCGCACGGCACCGTCGCCCGTCAGCTCGAGACGGCGCTCGCCGTCGTCGAGCCGAACGGGGCCACCGCTCTGCTGTCGGACGTGCTCGTGCAGGCTCGGGAGAGCGACCGGGCGGCCGTCGCCCGGGGGCTTCGCGAGGACGTCCGCCGTTCCGGGCTCACCGCCCGGGAGTTCGCGGCGGCCGTCGGCACGTCGCCGTCCCGGCTGTCGACCTACCTCTCGGGCCGAGTGGTCCCGTCGGCCGTCATCGCGCGGCGAATCGAGCGTGTCGCCGAGGAGCACGCGCGCCGTGGCCGGATCCACCCTGGTGGCGCGCTCGGCAAACCCGCCGCCTGAMLRFRNIDASPEDPVSTWGVEGLATALERGYLPHWQRIARAVRAEPHGTVARQLETALAVVEPNGATALLSDVLVQARESDRAAVARGLREDVRRSGLTAREFAAAVGTSPSRLSTYLSGRVVPSAVIARRIERVAEEHARRGRIHPGGALGKPAANANANANANA
AK018_03558702COG2409Heme uptake protein MmpL11ATGCCTACTGACGGGGACACCGCAGGCCCGCACGACGTCCCGACCCTCGAGGAGCTCGTGGAATCGGCCGCGAGACTGCAGGAGATCGTCCCCGACGCCGTCCTCGTCGGTGGCACTGCCGCAGCGCTGCACGCCCGGCATCGACTCTCCGTCGACCACGACCATGTGCTCGTCGACCTGCGTGACCGCTTCGACATCATCCTCGACGCTCTCGAACGGGAGGGTGAGTGGCTGACCAACCGGGTCCGTCCGGGAAAGATCATCCTCGGCGAGCTCGGCGGCATCGAGTCCGGACTACGCCAGCTCATCCGCACCCGGCCGCTCGAGACCGAGCAGGTCCGGCTGCCTTCGGGTCGCACCCTGACCGTTCCGACCTTCGACGAGATCCTGCGCATCAAGGCCTTCCTCGTCGTCAAGCGGAACCAGGTGCGCGACTACCTCGACGTCGCGGCACTCGCCGCGGCGGCTGGAACCGATCACGCCGCCCGCGTGCTGATCGGGATCGACGACTACTACGCCGACCTGATGCACGACGAGTCCCCCGTCGCCACCCAGGTCGCCGCTCAGCTCGCCGCTCCGGAGCCGAAGGACGCCGCCGTCATCCCCGAGCTCCCTCGCTACAAGGGCCTGGCGAAGCGGTGGTGGAAGTGGGACGACGTGACGGCGACATGCGCCGAGCTGGCGCGCGCCATGGTGACCTGAMPTDGDTAGPHDVPTLEELVESAARLQEIVPDAVLVGGTAAALHARHRLSVDHDHVLVDLRDRFDIILDALEREGEWLTNRVRPGKIILGELGGIESGLRQLIRTRPLETEQVRLPSGRTLTVPTFDEILRIKAFLVVKRNQVRDYLDVAALAAAAGTDHAARVLIGIDDYYADLMHDESPVATQVAAQLAAPEPKDAAVIPELPRYKGLAKRWWKWDDVTATCAELARAMVTPGPT0027691_5908DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_AbiEii_TOXIN-ANTITOXIN_SYSTEM,PGPT0027691-toxin_AbiEii-naNANA
AK018_03559426hypothetical proteinATGCCGCGACGATGCAGAGCCCTGACCGCCGCCGCCCTGTTCGCCCTGGTCGCCACCGGGTGCGCCGCACCCGACGACGGCAGCGCCGCCGCCTGCGCCGCTCCTCGGCTGACGTGGGACGCGAACACCGCCGCCGCGGGCGACGCCGTCGCCATGCACGGCGAGGGCCTGCACACCGGCTGCGAGGACGGGTCCGGGGACACCGAGAAGCCCTTCGAGATCACCGCCGCGAGGCTGGTCGTGGACGGCGAGCCGGTCGAACCCGGGCCGGCGATCGACGGCACGCTGACGGCGGCCGACGACGGCACCCTCGACATGCAGGTCGCCCTGCCACCCGACCTCCCCGAGGGGGCACGGGTCATCTTCGAGCTGACCGTCACCGGGAGCGAAGCAGTGGTCTCCGACGAGCTGACGATCGGCGAGTAGMPRRCRALTAAALFALVATGCAAPDDGSAAACAAPRLTWDANTAAAGDAVAMHGEGLHTGCEDGSGDTEKPFEITAARLVVDGEPVEPGPAIDGTLTAADDGTLDMQVALPPDLPEGARVIFELTVTGSEAVVSDELTIGENANANANANA
AK018_03560228hypothetical proteinATGACCTCGATGACTTCCCTCCGCGTCTCGACCGAGCTGCGCGACAAGATCCGTGACGGCGCGCAGCGCCATCACGAGACGCAGGCCGAGTACGTCGCGCGCGCCCTGCGTGAGCTCGAGCAGGCCGAGTTCCTCCGGGCGGTCGCCGCCGGGCGGTACGACGACGAGGACCTCGACGAGGCGACCGACTGGCTCGACGCCGACCTCACCTCCGGACCGACCGGATGAMTSMTSLRVSTELRDKIRDGAQRHHETQAEYVARALRELEQAEFLRAVAAGRYDDEDLDEATDWLDADLTSGPTGNANANANANA
AK018_03561333mazFCOG2337Endoribonuclease toxin MazFATGACGGTCGCTGCCGGCGACATCCTCTGGGTCGACCTCTCGCCGACGAAGGGTCACGAGCAACGAGGGCACCGACCGGTGCTCGTCATCTCCGAGACGCCGACCAACCACACGTTCGCGATCGTCGTCCCGTTGACCAGCCGGGAGAAGGGCTACCCGACGTCGCACCGGCTCCGGACCGAGGACCCCGAGCAGGTCAGCGTCGCGCTCTGTCAGCAGGTCCGCACCATCGACGTCCGCCAGCGGGTGACCGGTCGGCTCGGGGCCGCCACCCGCGACGACCTCGACGCAGTCCGCGACATCGTGGCTCGACTCATCGGCCGGTACACGTAGMTVAAGDILWVDLSPTKGHEQRGHRPVLVISETPTNHTFAIVVPLTSREKGYPTSHRLRTEDPEQVSVALCQQVRTIDVRQRVTGRLGAATRDDLDAVRDIVARLIGRYTPGPT0027390_2418DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-MazF-MazE_TOXIN-ANTITOXIN_SYSTEM,PGPT0027390-toxin_mazF|ndoA|chpApemK-K07171NANA
AK018_035621248arcA_1COG2235Arginine deiminaseGTGACGGACTCGAACCCGGCCCTCGGGGTGCACTCGGAGGTGGGGCGGCTGCGTAAGGTCCTGGTCTGCCGGCCGGGTCTGGCGCACGAGCGGTTGACGCCCTCCAACTCCGACGACCTGCTGTTCGACGACGTGATGTGGGTCGAGGCCGCCCAGCGCGACCACGCCGACTTCGTCCACCAGCTGACCGACCGGGGGGTGGAGGTCGTCGAGCTGCACGACCTGCTCGCCGAGACGATGGCGGACCCGCGCGCCCGCTCGTGGCTGCTGGACCGCAAGGTGATCCCGAACCGGGTGGGCCTCGGCCTCGTGGAGCCGGCCCGGGCCTACCTCGACGGCCTGGCACCGGCCGAGCTGTCCCGCTACCTCCTCGGCGGGCTCTCCACCGCCGACCTGCCCGACGACTACCGCACCGGCTACGTGTCGCTGGCGCACGAGTCGCCGGACTCCCGCGAGTACCTGCTCGCGCCGCTGCCCAACACGCTCTACACCCGGGACACCACGTGCTGGGTCTACGGCGGGCTCACGCTCAACCCGCTGTACTGGCCGGCGCGCAAGGAGGAGACGCTGCTGATGAAGGCGATCTACTCCTTCCACCCGGACTACGCCGACGCGACCGTGTGGTGGGGCGACCCGGAGGTCGACTGGGCCCAGGCGTCCCTGGAGGGCGGCGACGTCATGCCGGTGGGCGACGGCGTCGTGCTGGTCGGGATGAGCGAGCGCACCTCGCGGCAGGCCATCAGCCAGCTCGCCAAGGCCCTGTTCGACGCCGGTGCGGCCCGGCAGGTGGTCGTGGCCGGCATGCCGCGCCTGCGGGCCGCGATGCACCTGGACACGGTGTTCACGTTCGCCGACCGCGACCTGGTGACCGTCCACCCTCGCATCGTCGACGACATCCATCCCTACGTGCTGTACCCGAGCGACCGGTCACCCGGCATCGACGTGGTCGACGCGCGGGGCAAGTCGTTCGTCGACGTCGTCGCCGACGCGATGGGGCTGCCGCGCCTGCGGGTCGTCGAGACCGCCGGAGACGTCTACGCCTCCGAGCGTCAGCAGTGGGACTCCGGCAACAACGCCGTCGCCGTCGAACCGGGCGTGGTGTTCACCTACGACCGCAACACCCAGACCAACGCCGCGCTGCGGAACGCCGGGGTGCAGGTCGTCGAGATCGTCGGGGCGGAGCTGGGGCGGGGCCGCGGCGGCGGGCACTGCATGACGTGCCCGATCGTGCGGGACCCGCTCGACTGAMTDSNPALGVHSEVGRLRKVLVCRPGLAHERLTPSNSDDLLFDDVMWVEAAQRDHADFVHQLTDRGVEVVELHDLLAETMADPRARSWLLDRKVIPNRVGLGLVEPARAYLDGLAPAELSRYLLGGLSTADLPDDYRTGYVSLAHESPDSREYLLAPLPNTLYTRDTTCWVYGGLTLNPLYWPARKEETLLMKAIYSFHPDYADATVWWGDPEVDWAQASLEGGDVMPVGDGVVLVGMSERTSRQAISQLAKALFDAGAARQVVVAGMPRLRAAMHLDTVFTFADRDLVTVHPRIVDDIHPYVLYPSDRSPGIDVVDARGKSFVDVVADAMGLPRLRVVETAGDVYASERQQWDSGNNAVAVEPGVVFTYDRNTQTNAALRNAGVQVVEIVGAELGRGRGGGHCMTCPIVRDPLDPGPT0020075_168DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020075-arcA-K01478NANA
AK018_03563405hypothetical proteinTTGATCGCTGCCGGACTCGTGCTGGTCACGCTGGCCGCCGCCCTGCACGTCTACATCTTCTGGCTGGAGTCGTTCGCGTGGACGACGCGCGCCCGGGCGGTCTTCGGCACGACGGCGGACGAGGCGGCGGCGACCCGCGAGCTCGCGTTCAACCAGGGCTTCTACAACCTGTTCCTCGCGGTCATCGCTCTCGCCGGCGTCGTCCTGACACTGCTGACCGGGGCGTTCGACAGCCCGCGCCCCCACCTCGCCGGTGCCTCGCTGATGCTCGCGGGCACCGGCGCGATGCTCGCCGCGGCGCTCGTGCTGCTCGCCTCGTCCCCGGACAAGTGGCGGGCCGCCGTCGCGCAGGGCACGCTGCCGCTGCTCGCCGTCGTGACGGTCACCGCGACACTCGTGCCCTGAMIAAGLVLVTLAAALHVYIFWLESFAWTTRARAVFGTTADEAAATRELAFNQGFYNLFLAVIALAGVVLTLLTGAFDSPRPHLAGASLMLAGTGAMLAAALVLLASSPDKWRAAVAQGTLPLLAVVTVTATLVPNANANANANA
AK018_03564867mntB_1Manganese transport system membrane protein MntBGTGACCCTCCTGGACCTGATCCTCGAACCGTGGACCTACGACTTCATGGTCCGGGCGTTCCTCACCACGACGTTCGCCGCCGTCGTCGCCGCGCTGCTGTCGTGCTGGCTGGTGCTCATCGGCTGGTCCCTCATGGGCGACGCCGTCTCGCACGCGGTGCTGCCCGGCGTCGTCATCGCCTACGTCCTGGGCGTGCCGTTCGCCCTGGGCGCGCTGGTGTTCGGCGGGCTGGCCGTGGTGCTCATCGGCGCCGTCCGGGACACCGGGCGCGTCAAGGAGGACGCCGCCATCGGCATCGTGTTCACCACGCTGTTCGCCCTCGGCCTCGTGCTGGTGTCCGTGACCCCCAGCCAGACCGACCTGAGCCACATCATCTTCGGCAACGTCCTGGGCGTCTCCACCGCCGAGCTGGTGCAGGTGGCCGTGCTCGCCGTCGTCGGGGCGGCCGTGCTCCTGGTCAAGCGGCGCGACCTGGTGCTCTTCGCGTTCGACCCCACCCATGCACACGCCATCGGGCTGTCCACCCGGCGGCTGTCCGCGCTGCTCCTCGGGGTGCTCGCGCTGACCGCCGTGGTGACGCTGCAGGTGGTGGGCGTGATCCTCGTCGTGGCGATGCTCATCATCCCCGGTGCGACGGCGTCGCTCCTGACCCGGCGCTTCGGCCGGATGCTGGTGCTGGCGCCGATCGTCTCGGCGCTGTGCTCGATCACCGGCATCTACCTGTCGTACTGGCTCGACGCCGCCTCGGGCGGGATGGTCGTCCTGGTGCAGGGGGCGGTGTTCGCCGTCGTGCTGCTGGCCGGTCCGCGTTCCGCGCTGCTGCGCGGGCGCGCACGGAGGCGCGTCAGGGCACGAGTGTCGCGGTGAMTLLDLILEPWTYDFMVRAFLTTTFAAVVAALLSCWLVLIGWSLMGDAVSHAVLPGVVIAYVLGVPFALGALVFGGLAVVLIGAVRDTGRVKEDAAIGIVFTTLFALGLVLVSVTPSQTDLSHIIFGNVLGVSTAELVQVAVLAVVGAAVLLVKRRDLVLFAFDPTHAHAIGLSTRRLSALLLGVLALTAVVTLQVVGVILVVAMLIIPGATASLLTRRFGRMLVLAPIVSALCSITGIYLSYWLDAASGGMVVLVQGAVFAVVLLAGPRSALLRGRARRRVRARVSRPGPT0004345_44DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004345-mntB1-K11602NANA
AK018_03565771mntB_2COG1121Manganese transport system ATP-binding protein MntBGTGAGCGGCACCGGCACCCCCGCGATCGAGGTCGACGGCGTCACCGTCCGGTACGGGGACGTCCTCGCCCTGGACGGCGCGACGCTGCGCCTGGACGCCGGGACGGTCTGCGGCCTGGTCGGCATGAACGGCTCCGGCAAGTCCACCCTGTTCAAGGCCGTCATGGGCATGGTCCCGGTCACGTCAGGCACCGTGCGGGTCGACGGCGGTACCCCGGCTCGCGCTCGGCGTCGCGGGACGGTGGGCTACGTGCCGCAGACCGAGGCCGTCGACTGGGACTTCCCCGTGTCCGTGCGGGACGTGGTCGCGATGGGGCGGTACGGCCACCTCGGGATCACGCGCCGCCCCCGCGCCGCCGACCGTGCCGCCGTCGAGCATGCCCTGGAGCGCGTCGAGCTGACCGACCTGGCCGACCGGCAGATCGGGCAGCTGTCCGGCGGGCAGCGCAAGCGGGCGTTCGTCGCCCGCGGGATCGCGCAGGACGCCCGCGTGCTGCTGCTCGACGAACCGTTCGCCGGCGTGGACAAGCGCTCGGAGGCCACCATCGTGCGGCTGCTGCGCGAGCTCGCCGCGGACGGCCGCACCGTCCTCGTGTCCTCGCACGACCTGCACGCCCTGCCGCGACTCGCCGACGAGGCGGTGCTGCTGCTGCGCCGGGTGCTTGTCCACGGCACGGGGGCGGCGGCGGGGGACGCGGCGAACGGGGCCGGGTCGTCCGGCCTCGACGTCGAGGCCGCGCCCCTGGACGGTCCCGGCGGTGAGGCCGCGTGAMSGTGTPAIEVDGVTVRYGDVLALDGATLRLDAGTVCGLVGMNGSGKSTLFKAVMGMVPVTSGTVRVDGGTPARARRRGTVGYVPQTEAVDWDFPVSVRDVVAMGRYGHLGITRRPRAADRAAVEHALERVELTDLADRQIGQLSGGQRKRAFVARGIAQDARVLLLDEPFAGVDKRSEATIVRLLRELAADGRTVLVSSHDLHALPRLADEAVLLLRRVLVHGTGAAAGDAANGAGSSGLDVEAAPLDGPGGEAAPGPT0004340_122DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004340-mntA1-K11603NANA
AK018_03566939COG0803putative periplasmic iron-binding proteinATGCCGAAACCTTCGACACGGATCGCCGGATCCCTGCTGCTCACGGCCTCGGCCGCGGGCCTGCTGGGCGCCTGCAGCACGGACGGGTCGGCCGCCGAGGCGGACGACCGCCCGCTCGTCCTGACCACCTTCACCGTGCTCGCCGACATCGCGGAGAACGTCGCCGGCGACCACCTGCGGGTCGAGTCGATCACGAAGGTCGGCTCCGAGATCCACGGCTACGAGCCCACCCCCGGCGACCTCCGCACGGCCTTCGACGCTGACCTGATCCTCGACAACGGCCTCAACCTCGAGGCGTGGTTCGCCCAGTTCGTGGCCGACGTCGACGCTCCCCACGTCGTCGTCTCCGACGGCGTCGAGGTCGTCGACATCACCTCCGACGCGTACGCGGGCACCCCGAACCCGCACGCCTGGATGAGCCCGCTGAACGTGCAGACGTACGTGGACACCATGGTCGAGGCGTTCTCGGACCTCGCCCCCGAGCACGCCGAGGACTTCGCCGCCAACGCCGACGCGTACGACGCCGAGCTGCAGCAGGTGCAGGACGATCTGGTCGCCGAGGTCGAGTCGCTGCCCGCCGAGCAGCGGGCGCTCGTCACCTGCGAGGGCGCCTTCTCCTACCTGGCGCGCGACGCCGGGCTCACCGAGCAGTACCTGTGGGCCGTCAACGCCGAGCAGCAGGCCACCCCCCAGCAGGTGGCCGCGGTGATCGAGTTCGTCCGGGATAACGACGTGCCCGCGGTGTTCTGCGAGTCCACGGTGTCCGACGCCGCGATGCAGCAGGTCGTCGACGCCACCGACGCGACGTTCGGCGGCACCCTGTACGTCGACTCCCTCTCCGAGCCGGACGGCCCGGTACCCACCTACCTGGACCTGATCCGGCACGACGCCGACCTGATCGTCGCCGGACTGACCGGCCGGGAGGTCGACGACACGTGAMPKPSTRIAGSLLLTASAAGLLGACSTDGSAAEADDRPLVLTTFTVLADIAENVAGDHLRVESITKVGSEIHGYEPTPGDLRTAFDADLILDNGLNLEAWFAQFVADVDAPHVVVSDGVEVVDITSDAYAGTPNPHAWMSPLNVQTYVDTMVEAFSDLAPEHAEDFAANADAYDAELQQVQDDLVAEVESLPAEQRALVTCEGAFSYLARDAGLTEQYLWAVNAEQQATPQQVAAVIEFVRDNDVPAVFCESTVSDAAMQQVVDATDATFGGTLYVDSLSEPDGPVPTYLDLIRHDADLIVAGLTGREVDDTPGPT0004350_101DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004350-mntC1-K11601NANA
AK018_03567261hypothetical proteinATGACCGTGTCCGGGATCATCACTGCCATCGTCGTGGGCGCCATCATCGGGGCGCTGGGGCGTCTCGTGCTGCGCGGCAAGCAGAACATCTCGATCATCGCGACGATCCTCGTCGGGATCGTCGCGGCGCTGATCGGGACCTGGCTGGCGAGCCTGGTCGGGGTGGCGGACACCGGCGGCATCGACTGGATCGAGCTGGCCTTCCAGGTCGGTCTCGCCGCCGTGGGCGTCTCGATCGTCGCGGGTTCCTCGCGGCGCTGAMTVSGIITAIVVGAIIGALGRLVLRGKQNISIIATILVGIVAALIGTWLASLVGVADTGGIDWIELAFQVGLAAVGVSIVAGSSRRNANANANANA
AK018_035681017yfmJCOG2130Putative NADP-dependent oxidoreductase YfmJATGTCCGACGTCGTCTCCACCCAGATCCAGCTCGCCGAGCGGCCGACCGGCTGGCCCACCGCCGACACGTTCCGCACCGTGCAGGTCACCTACGGCGACCTCGCGCCGGGGCAGGTGCGCGTCGTCAACGAGTTCGTCTCGGTCGACCCGTACATGCGCGGGCGCATGAACGACGTGCGGAGCTACGTGCCGCCGTTCGGGCTGGGCGAGACCATGACCGGCGCGGCGGTGGGCCGCGTCGTGGAGTCCGCGTCCGACGACGTCCCGGTCGGCGCGGCGGTCCAGCACCAGTACGGCTGGCGCGACGTGGTCCAGGAGGACGCCCGCGGGTTCCAGGTGGTCCCGGAGATCCCCGGTGCGCCCCTGTCGCTCTACCTGGGGATGTTCGGGGTGACGGGGCTGACGGCCTACGTGGGCCTGACCGAGATCGCCGGGCTCCGCGAGGGCGACACGGTGTTCGTCTCGGGCGCTGCGGGTGCCGTCGGCACGGCCGTGGGGCAGATCGCCCACCTGCTCGGTGCCGGACGGGTCGTCGGGTCCGCGGGCACGGCCGAGAAGGTCGCGCTGCTCACGGAGCGCTACGGGTACGACGGCGCCGTGAACTACAAGGACGCACCGATCCGCCGGTCGTTGCGCGAGATCACCCCCGACGGCGTGGACGTGTACTTCGACAACGTGGGCGGCGACCACCTGGAGGCGGCGCTGGACCGGATGAACGACGGCGGCCGGCTCGCGCTGTGCGGGGCCATCTCGCAGTACAACGACACCGAGCGGACGCCGGGTCCGGACAACCTCGCCAACGCGGTGACCCGCGGCCTGACGCTGAAGGGGTTCACGCTGCCGAGCTACATGCACCTGGCGGACGAGTTCCGGCAGCGCATGAGCGAGTGGTTCGCGGCCGGGAGGATCGCCTACGACGAGACCGTCGTGGACGGCATCGAGAACGCCCCGCAGGCCTTCCTGGACATGATGCGCGGCGGCAACGTCGGCAAGATGGTCGTCCGCGTGGGCGACTGAMSDVVSTQIQLAERPTGWPTADTFRTVQVTYGDLAPGQVRVVNEFVSVDPYMRGRMNDVRSYVPPFGLGETMTGAAVGRVVESASDDVPVGAAVQHQYGWRDVVQEDARGFQVVPEIPGAPLSLYLGMFGVTGLTAYVGLTEIAGLREGDTVFVSGAAGAVGTAVGQIAHLLGAGRVVGSAGTAEKVALLTERYGYDGAVNYKDAPIRRSLREITPDGVDVYFDNVGGDHLEAALDRMNDGGRLALCGAISQYNDTERTPGPDNLANAVTRGLTLKGFTLPSYMHLADEFRQRMSEWFAAGRIAYDETVVDGIENAPQAFLDMMRGGNVGKMVVRVGDPGPT0023605_495DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_CURCUMIN_RESISTANCEADAPTION_TO_PIS-CURCUMIN_DEGRADATION,PGPT0023605-curA|yncB-K23256NANA
AK018_035691692cdr_3Coenzyme A disulfide reductaseATGAAGATCGTCATCGTGGGTGGAGTCGGCGGCGGCATGAGTGCCGCCGCCCGGGCACGGCGCCTCGACGAGAGCGCCGAGATCGTGGTCCTGGACCGCGGCGAGCACGTGTCGTACGCGAGCTGCGGGCTGCCGTACCACGTGGGCGGCGAGATCCCGGACGCCGACGGCCTCCTCGTCCAGACCCCCGAGCGGCTCCGCGCCGCCCTGAACCTCGACGTGCGCACCCGCCACGACGTCGTCGGCCTCGACACCGCGGCGCGCACCCTGACCGTCCGCACGGACGACGGCGAGTCCACCGTCACCTACGACGCCCTCGTGCTCTCCCCCGGCGCCCGGGCCGTCCGCCCGCCGATCGACGGGCTGGACTCGCCCCGCGTGCGCACCCTGCGCACCGTCGCCGACGCCACCGCCCAGCGCACACGGGTCGACGACGGCGCCCGCCGAGCCGCCGTGCTCGGCGGCGGGTTCATCGGGCTCGAGGCCGCCGAGGCGCTCGCCCGTCGCGGCCTCGACGTCACCGTCGTCGAGCTCGCCGACCACGTGCTGCCGCCGCTGGAGCACGAGACGGCGGCCCTGGTCACCGACGAGCTGGTGCGGCTCGGCGTCACCGTGCGGGCGGGGGTCGCGGCCGCGGCCGTCGAACCCGGCACCGACGCCGACGTGGTCGTGCTGGCCGACGGGACCCGGGCCCCCGCGGACCTCGTGGTGCTGTCGACGGGCGTGCGCCCGGACACCGAGGTCTTCGCCCGCGCCGGGATCGAGACCGACCGCGGCGCGATCGTCGTCGACGACCACGGACGCACCAGCGCCGAGGGGGTGTGGGCCGTCGGCGACGCCACCGTCTCCACGGACGCCGTCACCGGCGTGCGCCGCCCCGTCGCCCTGGCCGGACCCGCCAACCGGGCCGGCCGGCTCGTCGCCGACGACGTCCTGCGTCCCGGCCGGGCCCGCCCGGTGCCGTCCACGCTCGGCACCGCCGTCGTGCGCGTCGGTGACCTCACCGCCGCCACGACCGGCGCGAACCGGGAGTCCCTGACCGCGGCCGGGATCGTCTTCCACACGCTGCACCTGCACGCCGGCCACCACGTGGGCTGGTTCCCCGGGGCCGAACCCGTGCACCTGGTCGTCCACTTCCGGGCCGACGACGGTCTGCTGCTGGGCGCCCAGGCCGTCGGACGCGCCGGGGTCGACAAGCGCATCGACGTGCTCGCCACCGCGCTGCGCGCCGGTATGGGCGCCGCCGACCTCATCGACCTCGACCTCGCCTACTCCCCGCAGTACGGCGCCGCCAAGGATCCGGTGAACCTCGCCGGCATGGCGGCGAGCAACGTCCTCGACGGCACGCTGCGGATCTGGCACGCGGACGAGCTCGACGAGGTCCGCCGCGACACCCTGGTGCTCGACGTCCGCACCCGCGACGAGTTCGCCGGCGGGCACGTGCCCGAATCCCTCAACGTCCCGCACACCGAGCTGCGCGACCGTCTCGACGAGGTCCGGGACGCCGCCGACGGCCGACCCGTGCGCGTGCTGTGCGGCTCCGGCGTCCGCTCCCACATCGCCCACCGGGTCCTCGCCCAGGCCGGGTACGACTCGGCGTCGCTGTCCGGCGGGATGCTGACCCTGCGGGCCGCCCTGGGGTCGCGCGCCGCGGACGTCCTCGTCGCCGACGAGCCCGTGCCCGCCGCCTGAMKIVIVGGVGGGMSAAARARRLDESAEIVVLDRGEHVSYASCGLPYHVGGEIPDADGLLVQTPERLRAALNLDVRTRHDVVGLDTAARTLTVRTDDGESTVTYDALVLSPGARAVRPPIDGLDSPRVRTLRTVADATAQRTRVDDGARRAAVLGGGFIGLEAAEALARRGLDVTVVELADHVLPPLEHETAALVTDELVRLGVTVRAGVAAAAVEPGTDADVVVLADGTRAPADLVVLSTGVRPDTEVFARAGIETDRGAIVVDDHGRTSAEGVWAVGDATVSTDAVTGVRRPVALAGPANRAGRLVADDVLRPGRARPVPSTLGTAVVRVGDLTAATTGANRESLTAAGIVFHTLHLHAGHHVGWFPGAEPVHLVVHFRADDGLLLGAQAVGRAGVDKRIDVLATALRAGMGAADLIDLDLAYSPQYGAAKDPVNLAGMAASNVLDGTLRIWHADELDEVRRDTLVLDVRTRDEFAGGHVPESLNVPHTELRDRLDEVRDAADGRPVRVLCGSGVRSHIAHRVLAQAGYDSASLSGGMLTLRAALGSRAADVLVADEPVPAANANANANANA
AK018_03570273hypothetical proteinATGGCCACCCCCGACCCCGCCGCCCAGCGCAAGATCGCCAACCGGCTCAAGCGCGCCCGCGGTCAGCTCGACGCCCTCATCACCGCCGTCGAGGAGGGCAGGCCCTGCCGCGACGTCGTCACCCAGCTGTCCGCCGTCTCCAGCGCGCTCGACAAGGCGGGCTACGCCGTCGTCGCCACCGCGATGCAGGACTGCCTGGCCGACCCCGAGCAGAAGACCGACGACGGCCTGACCGCCGACGAGCTCGAGAAGCTCTTCCTCACCCTCGCCTGAMATPDPAAQRKIANRLKRARGQLDALITAVEEGRPCRDVVTQLSAVSSALDKAGYAVVATAMQDCLADPEQKTDDGLTADELEKLFLTLAPGPT0004175_1363DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600NANA
AK018_03571171hypothetical proteinATGTGCCACGCCACGACCTGCCGGATCTGCGGCAAGACCACCTGGAACGGCTGCGGCCAGCACGTCGCCGACGTCCGCCGGACCGTCCCCGCCGCGCAGTGGTGCGACGGCCACGACGACGCCCCCGCCGACTCCGGCGGCGGGTTCTTCTCGCGCCTGTTCGGACGCTGAMCHATTCRICGKTTWNGCGQHVADVRRTVPAAQWCDGHDDAPADSGGGFFSRLFGRNANANANANA
AK018_035721062hypothetical proteinGTGCACCGTGATGCGCATCAGCGTGGCCCGCACGACGTCGCCGGTCGCGAACGCGTCGTCGAGGTCGTCCGGGCGGAAGCCGGCCACCCGGTTCCACAGGGCGAGGTAGGGGCCGGCGGGCTCCTGGGCCTGCAGCGCACCGGCACGGGCGACGGCGTCGGGCACGGTCAGGTCGGCCCGGTCCAGCAGGAGCTGGCGGGCGAGCGTGGCACGGCCGAGCCCGGCCTGCGTCAGGCGCACGCTCCGAGACTGGCCCGGTCCGCCGTCGTCGGCAATCTCACGGCCCCGGTTGCCGACGGTGGACGCCGTGGCGACCGTGGACCGATGGAACCCACGGAGCTGACCACCGCGGACTTCCCGTCCTGGGCCGTGACCCTGTCGACCGTGCTGGTCGCGCTCGGCCTGCTGTGCGCCCTCGCCCTGTGGATCGACGTGGTGCGGCGCCCGCAGCCGATGCGGGTGATGAACGTCGTGTGGCCGGTGACCGCCCTGTTCGGCTCGCTGGTCTGGAGCGCGGCCTACCTGCGCTGGGGGCGCGCCCCGCGGCGCGGGGCGGGGTCCCACCACGAGCACGGCACCACGCCCATGCCGGTCGCCGTCTTCAAGGGCACCTCCCACTGCGGGGCCGGGTGCATGCTCGGCGACCTGCTGGTGGAGTGGACGGTCGTCGTCCTGCCGGTCCTGACGGTGTTCGGCGGGTACGAATGGCTCTTCGACGACCAGATCTTCGCCGTCTGGGTGCTGGACTACGTGGCCGCCTTCACCATCGGCGTCGCCTTCCAGTACTTCGCGATCGCGCCGATGCGTGGTCTCGGGCGCCGTGCCGGGTTGCGCGCCGCGGTCAAGGCGGACGCGTTGTCGATCACGGCGTGGCAGGTGGGCATGTACGGCACGATGGCGCTCGTCCAGCTGTGGTGGCTGCCGGAGCTCCTCGGGGGCAGGGCTGCCGTGACGACGCCCGTGTTCTGGGCGGCGATGCAGGTCGCCATGGTGGTCGGCTTCCTGACCAGCGCCCCCGTGAACTGGTACCTGATCCGGGCGGGCATCAAGGAACGGATGTAGMHRDAHQRGPHDVAGRERVVEVVRAEAGHPVPQGEVGAGGLLGLQRTGTGDGVGHGQVGPVQQELAGERGTAEPGLRQAHAPRLARSAVVGNLTAPVADGGRRGDRGPMEPTELTTADFPSWAVTLSTVLVALGLLCALALWIDVVRRPQPMRVMNVVWPVTALFGSLVWSAAYLRWGRAPRRGAGSHHEHGTTPMPVAVFKGTSHCGAGCMLGDLLVEWTVVVLPVLTVFGGYEWLFDDQIFAVWVLDYVAAFTIGVAFQYFAIAPMRGLGRRAGLRAAVKADALSITAWQVGMYGTMALVQLWWLPELLGGRAAVTTPVFWAAMQVAMVVGFLTSAPVNWYLIRAGIKERMNANANANANA
AK018_03573681hypothetical proteinGTGCACCTGCTGCGCCGTTACCTCGCGGCGTACGGACCGGCGTCGGAGGCGGACTTCGCGCAGTTCACGATGCTGCGCCGCCCGTGGACCCGGCCCGCCGTCGAGGCGCTGCGGCCGGAGCTCGTGGAGGTCGAGGGACCGGACGGCGCCGCGCTGCTGGACCTGCCGGACGCACCCCGACCGGATCCGGACCTCCCCGCTCCCCCGCGGCTGCTGGGGATGTGGGACAGCGTGCTGCTCGCGCACGCGGACCGGTCGCGCGTGCTGCCGGACGCCCTGCGCGGCCACGTGATCCGACGCAACGGCGACACCCTGGCGTCCGTGCTGGTGGACGGCCGGGTGGTGGGCCTGTGGAGGGCGACGGCCGACGGCGTCGACGCGGCGGCGTTCGAGCCGCTGCCGACGGCGGCCTGGGAAGAACTGCACGCCGAGGCGGCGCGGCTGCAGAGCCTGCTCGCCGACCGGGAGCCGGAGTCTTCCGGCGGTACCGCCGCTGGTGGGAGCAGCTCCCGGACGTCGAGATCCGGCGGCTGGCGGACCGGCGTGACGCCGGGGGCTGAGCCTGCTGTCGCTCGGTGCGCGCAGCGTCTCGGGTCCCTGATACAGGAAGCGAGGCGCGCATCGCTCGCGGTCGCGACGGCCAGGACTTCGACCCCGCACCAGATATTGGCAATCAGTTGAMHLLRRYLAAYGPASEADFAQFTMLRRPWTRPAVEALRPELVEVEGPDGAALLDLPDAPRPDPDLPAPPRLLGMWDSVLLAHADRSRVLPDALRGHVIRRNGDTLASVLVDGRVVGLWRATADGVDAAAFEPLPTAAWEELHAEAARLQSLLADREPESSGGTAAGGSSSRTSRSGGWRTGVTPGAEPAVARCAQRLGSLIQEARRASLAVATARTSTPHQILAISNANANANANA
AK018_035741269hypothetical proteinGTGCGCTACTCTCCGGCCGCCGGGTACGCGGGTGCCGTATGGACGGGGAGTGTGACCGTCGTGGACGGGACCGTGCCGACAGAGATCTCTGTGTCCGCGCCCTCGGGCGTCGAGTACCAGGACACCGAACTCATCGAGGTGGAGGTGTCCGCCGAAGCGGCTACACCCGAGGGCAAGATCGGTGTGTACTGGGGTGATTCCACGACCCCCAGCCCGCACGAGCTGGTCGATGGCCGGGCTTCGTTCCCCACGGTCCATGGGCAGCTGGGCGACGTCGTCGGCTACGAGGTCGTCTACTTCAGCAGGGGTGGTATGCAGTCGTCGCGGACATCGGGTTCGTATACGATCGACCGCCTCGAACGCGAGCTGGAGATCTGGGACGACACCAACCAGGATGGTGTGCTCCAGGTTGCCCGGCAGCCGTGGGAGGTCGCTGTCTATGTTCCGGACCTGCGGTCGGGGCTGCGTGACGGGACCATGTCCTTGTACGTCGATGGGGAGTTGCTCGAGTCGAGGAGCTTTCCGAACCCTGGTGCCGACTACATCGTCACCACCTTCGAGCTCGGCTCGGCAGAGCTGGCGGTCGGTCGCCACCGGCTCCGGGCCGAGTTGACGGACGCGACGTACATCCAAGACACCAGCACGTCCTGGACCGTCGACGTCAAGAAGAACGCGACGAAGATCTACGTTGGCCATGGGGCGGGCCGCAAGCTGCGCTGGGGCCAGAAGCACAAGGTCAGCATGGTCGCGGAGCCGGTGCGTCGGATCGACGCGGACCCTGACATGACAGGCTCCATAACTGTCCGGAAGGGGTCGACGACATTTCGTCGCTTGGTGGTGGACGGTCGGGGCCACGCCTCGATGAGCATCGGTGGCAAGAGTCTTCCGCTGGGCCGGCACACCTTCCACTACGCCTACCCGGGCGACACCTACTACGGGGCCTCGAGCGCCACGCGAACGCCGCGGGTCTACAAGGCGCGCTCTCAGCTGAGGGCGACGCTTGTGGACAGAATCGTCGATCGGCCACAGGTCGCAAAGGTGAAGATCCGAGTGACGTCACCTTCGAACGTGGGCCTCACGGGACGGCTGAAGGTGAAGGTCGATGGTCGGGTTGTCAAGACCCCGTGGCTGTGGCGTAGCGACCACGGTCGCAAGACGGTCACGTTGCCGAAGCTCGACTACGGCGACTACAAGGTCAGGGTCGTGTACGCGGGGAAATCCAAGGTTGCACCGTCGGGTGACAACACCGTGGAGCTCCACGTCAACTGAMRYSPAAGYAGAVWTGSVTVVDGTVPTEISVSAPSGVEYQDTELIEVEVSAEAATPEGKIGVYWGDSTTPSPHELVDGRASFPTVHGQLGDVVGYEVVYFSRGGMQSSRTSGSYTIDRLERELEIWDDTNQDGVLQVARQPWEVAVYVPDLRSGLRDGTMSLYVDGELLESRSFPNPGADYIVTTFELGSAELAVGRHRLRAELTDATYIQDTSTSWTVDVKKNATKIYVGHGAGRKLRWGQKHKVSMVAEPVRRIDADPDMTGSITVRKGSTTFRRLVVDGRGHASMSIGGKSLPLGRHTFHYAYPGDTYYGASSATRTPRVYKARSQLRATLVDRIVDRPQVAKVKIRVTSPSNVGLTGRLKVKVDGRVVKTPWLWRSDHGRKTVTLPKLDYGDYKVRVVYAGKSKVAPSGDNTVELHVNNANANANANA
AK018_035751671mdtD_1Putative multidrug resistance protein MdtDATGAGCTCGCACGACGGCCCGGTCCGACCCGCCGACGAGGGACACGCACCCGCAGACACCGCCCTCGCGAACCGCTGGCGCGCCCTCGTCGTGCTCTCGGTCGCGCTGTCGATGGTGGTCATCGACGGCACGATCGTCGCCGTCGCCATCCCCGACATCGTCGCGGACCTCGGTCTCGACCTCTCCGCCGCGCAGTGGGTCAGCGCCTCCTACGCCGTCGTGCTCGCCGGCCTGCTGCTGACCGCCGGGCGGCTCGGTGACCGCCTCGGACGCCGGCGCCTCCTCGTGGCCGGCGTGGTCCTGTTCCTCGCCGGGTCCCTCCAGGCCGCGGCGGCCAACGATAGCGGCACGCTGATCGGAGGACGGCTCGTCCAGGGCCTCGGCGCGGCCGCGATCCTGCCCACCACCCTGTCGACCGTCAACGCGACGTTCCGCGGCAAGGACCGTGCGGCGGCGTTCGGCGTGTGGGGCGCCGTGATCTCCGGCGCCGCCGCGATCGGCCCGCTGCTCGGTGGCTGGCTGACGACATCGTTCACCTGGCCGTGGATCTTCCTGGTCAACCTGCCCGTCGGCGCGGCCGTCGTCGTGGGTGCCTGGCTGTGGGTTCCCGAGACCCGCGCACGCATCGACGTGCCGGGCCTCGACGTCGTCGGCCTGCTGCTGTCCGCTCTCGGGTTCGGGGCGCTGGTGTTCGGTCTCATCGAGGGCGAGACCCTCGGCTGGTGGACCCCGCAGACGGACTTCGCCGTGCTCGGCGCGACCTGGCCGGCGTCGGCCCCGGTCTCGCCCGTGCCGGTGCTCCTCGCGCTCGGCCTGGCCCTGCTCGTCGGGTTCGTCCTGTGGGAGCACCGCCGGGCCAGGGTGCGGCGCTCCGCGCTGCTGGACCTCGAGCTCTTCCGCCTGCCCACGTTCCGGTGGGGCAACGTCGCCGCCGCCACCGTCGCCGTCGGCGAGTTCGGGATCATCTTCGTGCTGCCGCTGTTCCTGGTGAACGTGCTGGCCCTGTCCACCATGTCCGCCGGCCTGGTGCTGGCCGCGATGGCGCTGGGGGCGTTCTTCGCCGGGGCCTCGGCGCGGCACCTCGCCGCCCGGATCGGTGCCCCGCTGGTCGTGGTCGTCGGGCTCGTGCTCGAGGTGGCCGGCGTCGCCGCGGTCGCTCTCGTCGTCTCGGACACCGTGGCGCCCTGGCTGCTGGCCCTGGTCCTCGTCGTCTACGGCGTCGGCCTGGGCCTGGCCTCCGCGCAGCTCACCAGCACCACGCTGGCCGACGTCCCGCCCGCCGAGTCCGGCCAGGGCTCGGCCACCCAGTCCACGGTCCGCCAGGTCGGCTCCGCGCTCGGCACCGCCGTCGTCGGCTCGGCGCTGGCCGTGCTGCTCGCCTCGACGGTGCCGTCGGCGCTGGACGGCTCCGGTCTCCCGTCCGCGCAGGTCGACCAGCTCGCGGACGCCACCAGCGGCTCGGCCGGGGGCGTCATCTCCCAGCTCCGCGACCAGAGCACCGGTGGTGACCTCGGCGACCAGGGGCCCGCCGTCGTCGACGCGCTGTCCGCCGGGTTCGCAGACGCCACCCAGGGCGCCCTGCTCGTCGCCGGGGCATTCCTCGTGCTGGGGCTGCTCGCGTCCCTGCGGGTCGTGGCGGCGGCACGGCGGTCAGCACCTGCGGGCGGCTGAMSSHDGPVRPADEGHAPADTALANRWRALVVLSVALSMVVIDGTIVAVAIPDIVADLGLDLSAAQWVSASYAVVLAGLLLTAGRLGDRLGRRRLLVAGVVLFLAGSLQAAAANDSGTLIGGRLVQGLGAAAILPTTLSTVNATFRGKDRAAAFGVWGAVISGAAAIGPLLGGWLTTSFTWPWIFLVNLPVGAAVVVGAWLWVPETRARIDVPGLDVVGLLLSALGFGALVFGLIEGETLGWWTPQTDFAVLGATWPASAPVSPVPVLLALGLALLVGFVLWEHRRARVRRSALLDLELFRLPTFRWGNVAAATVAVGEFGIIFVLPLFLVNVLALSTMSAGLVLAAMALGAFFAGASARHLAARIGAPLVVVVGLVLEVAGVAAVALVVSDTVAPWLLALVLVVYGVGLGLASAQLTSTTLADVPPAESGQGSATQSTVRQVGSALGTAVVGSALAVLLASTVPSALDGSGLPSAQVDQLADATSGSAGGVISQLRDQSTGGDLGDQGPAVVDALSAGFADATQGALLVAGAFLVLGLLASLRVVAAARRSAPAGGNANANANANA
AK018_03576894valGCOG0463Validoxylamine A glucosyltransferaseTTGTCGAACACGCCCGCGATCAGTGTCGTCATTCCCACCTACAACCGCAGCCGCCTCCTGCACCACACCCTCGACGCGCTGCGCCGCCAGACCCTGCCGGCCGACATGTTCGAGGTCGTCGTGGTCGACGACGGCGGCAGCGACGACAGCGAGGCCGTCGTCCGGTCCTTCGCCGACGAACTCGACATCACCTACTTCTGGCAGCCCGACGCCGGCTTCCGCGCCGGCAAGGCCCGCAACATCGGCACCGCCATCGCCTCCGGCCGGTACGTCGTCTACGTGGACACCGGCGTCCTGCTGGCCACCACGACACTGGCCACGCACCTGCGCATCCACACCGAGTCGGCCTACCCCACCGCCGTCGTCGGCTACGTGTACGGGTTCGAGGTGGACCCGTCCAAGGACGCCGTCATGGCGAACCTCAACCCCGCCGACGTCGACGCCGCCATCGCCGACCTGCACGCCCACGGTGCGCTCGACGTCCGCGAGCGCCAGTACGCCGACCTGGGGGAGAACATCACGAGCTGGCCCGCGCCGTTCGACATCTTCTGGACGTGCCACGCCTCGGCCGAGCGGGAGGCGCTGTTCGCGGCCGGCCTGTTCGACGAGTCCTTCACGGGGTGGGGCGGCGAGGACGTGGACCTGGGGGTGCGGCTGTTCCGGCAGGACAACGTGTTCGTCATGGACCGTGCGGCCCGGTCCCTGCACTGGCCCCACGCCAAGGAGGTCGCGGATCTGAAGGAGTCGTCGGCGACGGCGGCCGAGCGCATCCACCGCAAGTACGACCTGTGGACGACGAGCTTCTACGGCAAGGACCTGCAGAACGAGAAGTACTCGTTGAACAAGGTCATCCAGCTCTCCGCGTCGCGGCGCGAGGCCGAGGGGGCCGTCTGAMSNTPAISVVIPTYNRSRLLHHTLDALRRQTLPADMFEVVVVDDGGSDDSEAVVRSFADELDITYFWQPDAGFRAGKARNIGTAIASGRYVVYVDTGVLLATTTLATHLRIHTESAYPTAVVGYVYGFEVDPSKDAVMANLNPADVDAAIADLHAHGALDVRERQYADLGENITSWPAPFDIFWTCHASAEREALFAAGLFDESFTGWGGEDVDLGVRLFRQDNVFVMDRAARSLHWPHAKEVADLKESSATAAERIHRKYDLWTTSFYGKDLQNEKYSLNKVIQLSASRREAEGAVNANANANANA
AK018_03577648dapH_12,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferaseATGCCGGTCGCCTACGAGAACCTCTATCCCACCCGGCCCGACTGGCCGCTGACGGGCGGGGTCGCGGAGGCGCTGCGGGCGCACGGCGTGGCGGTCGGCGAGGGCACCGTGTTCTGCGACGTGCCCCGGGTGGCGTTCACGCGCGCCGTCGACGCCGAGCTCGGCCCGCTGCCTCTCCGGGCGGAGGACTTCCGCGGCGCGATCCGGGTCGGGTCGGGGTGCTACGTCGAGTCGGGCGTGGCGCCCGCCTTCCACAGTCAGCCGGTCAAGCTCACGTCGGTGCAGGTCAACGACGGCGCACCCGGCCGGATCCGCATCGGCGACCGGGTCTCGCTGCAGGGCGTGGCGGTCGTGGCCTACGACCTGGTCGAGGTGGGCGACGACGTGATGTTCGGCCCGCTGGTGACGATCATGGACTCCAGCGGTCACCCGCTGCGGGGCCGCGGCGCGGCCGGGGAGGCGGCCCGCACGACGGCGGCACCCGTGCGCGTCGGGGACGGCGCCTGGATCGGGACCGGCGCGACGATCCTCAAGGGTGTGGACATCGGTGACGGTGCCGTGCTCGGGGCGCAGAGCGTCGCCGACGAGTCGGTGCCGGCCGGGGCGGTCGCTGTCGGCAACCCCGCCCGCGTCATCAAGCAGCTGTGAMPVAYENLYPTRPDWPLTGGVAEALRAHGVAVGEGTVFCDVPRVAFTRAVDAELGPLPLRAEDFRGAIRVGSGCYVESGVAPAFHSQPVKLTSVQVNDGAPGRIRIGDRVSLQGVAVVAYDLVEVGDDVMFGPLVTIMDSSGHPLRGRGAAGEAARTTAAPVRVGDGAWIGTGATILKGVDIGDGAVLGAQSVADESVPAGAVAVGNPARVIKQLNANANANANA
AK018_035781362mdtKCOG0534Multidrug resistance protein MdtKGTGATCACGGCGCTGCGCGGCCCGGCCGGCCGGTCCCTGCTGCGGATCGCCGTCCCGGTGACGCTGCAGACGGTGGTGTTCTCCTCCAAGAGCATCGTCGACGCCATGATGCTCGGTGCGCAGACTGAGATCGACGTCGCCGCGATCGGCATCGCGTCCAAGGCGACGTTCGTCGTGTCGATCTTCCTCATCGGGTTCACGATCGGCGGCGCGCAGATCGGCGCCCAGCTGTGGGGTAGCGAGCGCCCCGACCCGGCCGTGCGGCTGCGCCAGACGGTGTGGCTGACCTGGGCGACCTCCACGGTCTGCGCGCTGGCGGCGTTCGTCACCTTCGCCGTCGTCCCGGAGGCCGTGATCGGCCTCGGCACGGACTCGGCCGCCGTCGTCGAACGGGGCGCCGCGTTCCTGCGGATCGTCAGCCCCACCTTCCTGCTGTTCTGCTACACCTCCGCGGTGGCCGCCGGGCTGCGGGTGATGCTGCAGCCGACGATCAGCACGGTCTACGCCGTCGTCGGGGTGGTGCTGAACGTGGTGCTCAACGCGGTGCTGATCTTCGGGCTGCTCGGTGCGCCCCGGCTGGGCGTCGTCGGTGCGGCGTACGGCACGCTGGTCAGCGCCGTCGTCGAGACCGGGCTGCTCGCCGTACACCTGCTCACCACGCGGCACGTCCTGGCACGGTTCCCGCGCGCCGAGCTGGGTCTCGTCACGCGGGCGCAGACCGTGGCGCTGCTGCGCCTGTCCGTCCCGGCGGCGTGCAACAGCACCATCTGGGCCCTGGGTTCCTTCGCGTTCTACGCCGTGATCGGCAGCACGGGCGTCTCGGCCGCCGCCGCCCTGGCGATCCTGTCCCCCGTGGAGTCGCTGGCGCTGGCCCTCACCATCGGGCTCGCGAACGCCGCGGCCGTGGTGGTCGGCTCCACGATCGGCGCCGGGCGCGTCGAGGACGCCTACGGCCAGGCGTGGGCGCTGGTCCGGCTCGGGCTCCTGGTCGGGGTGGCCACCTGCGTGGTCACGTGGGCCGCGCAGGACGTGGTGCTGGGGATGTTCGGTGCGATCACGCCCGCGACCCGAGCACTCACCGAGACCCTGTTCGCGGTGCTGGTCGTCTCGTTCGTGCTCAAGAGCGTCAGCATGGTCATGGTGCTGGGCGTGCTGCGGGCCGGTGGGGAGGTGCGCTTCTGCCTGCTGCTCGACGTCGGGGCCCAGTGGGTGCTGCTGCTGCCCGGCGCTCTGCTGCTGCGCGACGTCGTCGGCGTCGGACCGGTGGTGGTGTTCGCGCTCGTGCTGGTGGAGGAGGCCGTACGGATCGGTGTGGCCGGGTGGCGCATCCGGTCGCGGCGGTGGCTCAACGACCTGACGTGAMITALRGPAGRSLLRIAVPVTLQTVVFSSKSIVDAMMLGAQTEIDVAAIGIASKATFVVSIFLIGFTIGGAQIGAQLWGSERPDPAVRLRQTVWLTWATSTVCALAAFVTFAVVPEAVIGLGTDSAAVVERGAAFLRIVSPTFLLFCYTSAVAAGLRVMLQPTISTVYAVVGVVLNVVLNAVLIFGLLGAPRLGVVGAAYGTLVSAVVETGLLAVHLLTTRHVLARFPRAELGLVTRAQTVALLRLSVPAACNSTIWALGSFAFYAVIGSTGVSAAAALAILSPVESLALALTIGLANAAAVVVGSTIGAGRVEDAYGQAWALVRLGLLVGVATCVVTWAAQDVVLGMFGAITPATRALTETLFAVLVVSFVLKSVSMVMVLGVLRAGGEVRFCLLLDVGAQWVLLLPGALLLRDVVGVGPVVVFALVLVEEAVRIGVAGWRIRSRRWLNDLTNANANANANA
AK018_03579996COG1816Adenine deaminaseATGACCGACACCCCGCTGCCGTTCGCCGAGCTGCACCTGCACGTCGAGGGCACCCTCGAACCCGAGCTGGTGATGGCGCTCGCGGAGCGCAACGGCGTGACCCTGCCGTACGACGGCGTGGACGCCCTGCGCCGCGCGTACTCGTTCACGGACCTGCAGTCGTTCCTGGACCTGTACTACGCGAACATGGCGGTGCTGCGCACCCCCGAGGACTTCGCGGACATGACCCGCGCCTACCTGACGCGGGCCGCGGCCGGCGGGGTGCGGCACGCCGAGATCATGGTGGACCCGCAGGCGCACCTGGTGCGTGGCGTGCCCCTCGAGGTGGTGCTGGAGGGCGTCGCCCCGGTGCTGGCCACCAGCGAGGCCGAGCACGGCGTCTCGACCCTGCTGTTCGCGGCGTTCCTGCGGGACCGCCCCGAGGACGAGGCGCTCGAGGTGCTGGACCGACTGGTCGCGGCGGGTGCCCCGATCGCGGGGATCGGGCTGGACTCCGCCGAGGTCGGCCATCCGCCGTCGGACTTCACGCGCCTGTACGACCGTGCCCGGGCCGAGGGCCTGCGGCTGATCGCCCACGCGGGGGAGGAGGGACCGGCGTCGTACGTCACGGATGCCCTGGACCTGCTGGGCGTGCAGCGCGTCGACCACGGCATCCGCTCCCTGGACGACGACGCCGTGGTCGAGCGCCTGGTCGCCGAGCAGGTGCCGCTGACCGTCTGCCCGCTGTCGAACGTCGCGCTGCGCGCCGTCGACCGGATCGAGGACCACCCGGTGCTCGCCATGCTGGACCGCGGGCTCAACGTCACCGTGAACTCCGACGACCCGGCGTACTTCGGCGGCTACCTCGACGACAACCTCGCGGCCCTCGAGCGTTCGCTCGGGATGACGGCGGACCAGCGGGCCCGGCTGGCGGCGAACTCGGTCCGGTCGTCGTTCCTGCCGGCCGCCCGCCGTGACGCCCTGCTCGCCGAGATCGCCCACCCCTCCGCGAGGTAGMTDTPLPFAELHLHVEGTLEPELVMALAERNGVTLPYDGVDALRRAYSFTDLQSFLDLYYANMAVLRTPEDFADMTRAYLTRAAAGGVRHAEIMVDPQAHLVRGVPLEVVLEGVAPVLATSEAEHGVSTLLFAAFLRDRPEDEALEVLDRLVAAGAPIAGIGLDSAEVGHPPSDFTRLYDRARAEGLRLIAHAGEEGPASYVTDALDLLGVQRVDHGIRSLDDDAVVERLVAEQVPLTVCPLSNVALRAVDRIEDHPVLAMLDRGLNVTVNSDDPAYFGGYLDDNLAALERSLGMTADQRARLAANSVRSSFLPAARRDALLAEIAHPSARPGPT0021520_2006DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488NANA
AK018_035801197mdtHMultidrug resistance protein MdtHGTGACGGGCGGGGAGCCACGGTCCTCGAGAACCGCGCTGTGGGTGCTGTACGGCGACACGCTGACGATGGCGGTCGGCTTCTACATGCTGGTGCCGCTGCTCGCCTACCACTACCTGCAGAACATCGGCCTGACGGTCGCGGTGGTCGGGGTGCTGACGGCGGTGCGGTCCGCGGCGCAGAACGGCGTGATGCCGATCTCCGGTTGGGTCGCCGACCGCATCGGCTACCGGCGGGCGATCGCCGGGGGCGTGCTGATCCGCGCGTCCGGCTTCGCCGTGCTGGGTGCGGTCTCGAGCCTTCCGCTGCTCGTGCTCGGGTCGGTGCTCGCCGGGCTCGGTGGGGCACTGTTCCACCCGGCGTCGTACGCGGCGTACTCGGCGCTCGCCGTCGGGCGCGACTCGGTGCGCGTGTACTCGACGCGGGAGCTGTTCTCCAACGTGGGGTTCGTCCTCGGCCCCATGATCGGGGGCCTGCTCGCCGGGCTGGACTTCCAGTGGGTGGCGTTCGGCTCGGCCGGGCTGTTCCTCGTGGCGTTCTTCCTCACCGTGATCGGTCTGCCCCGGGTGCTGCTGGCCACGGACACCAAGCGGGCACGGTTCGGCGAGGCGCTGCGGGACCGGTCGTTCCGGCGCTACCTCGTGGTCGTTGCCGCCCTGTGGATGCTGGTGACCCAGCTCTACCTGGTGGTGCCGGTGCGGGCGGCCGACGTGCTGCCGGGAGCGATCGGCGTCGGTGTCGTCTACACCGCGGCCGCGGTGTTCATGGTGGTCACGATGCTGCCGTTGACCGGCTTCATGTCGCGCCACCTGCCGGCCCCGCGGATCCTCGCCCTCGGGTCGGTGTCCCTCGGGACCGGGGTGGCGGTGATGGGGTTGTGGGACTCCGTCGCCGGGCTCGTCGCCGGCGTCCTGACCTTCACGCTGGGCCAGATGCTCTCGCAGCCGGTGATGAACGCCGTGGTCTCCGAGCTGGCCGACGGGCGGGCCGTGGCGTCCTACTTCGGGGCGATGGGGCTCGCGCAGGCGGTCGGCGGGATCACCGGCAACCTGGCCGGTGGTGCGCTGTACACGCTGGCCGGGACGGACTCCCCGTGGGCCGATGCCACGTGGTTCGTGTTCCTCGCCGCGGGACTCGCGATCGCCGCGGTCTTCTGGTTCCGGGGACCTCGCCCCGACGGCTCCTCGTCCGGTCCGTGAMTGGEPRSSRTALWVLYGDTLTMAVGFYMLVPLLAYHYLQNIGLTVAVVGVLTAVRSAAQNGVMPISGWVADRIGYRRAIAGGVLIRASGFAVLGAVSSLPLLVLGSVLAGLGGALFHPASYAAYSALAVGRDSVRVYSTRELFSNVGFVLGPMIGGLLAGLDFQWVAFGSAGLFLVAFFLTVIGLPRVLLATDTKRARFGEALRDRSFRRYLVVVAALWMLVTQLYLVVPVRAADVLPGAIGVGVVYTAAAVFMVVTMLPLTGFMSRHLPAPRILALGSVSLGTGVAVMGLWDSVAGLVAGVLTFTLGQMLSQPVMNAVVSELADGRAVASYFGAMGLAQAVGGITGNLAGGALYTLAGTDSPWADATWFVFLAAGLAIAAVFWFRGPRPDGSSSGPPGPT0029190_327DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029190-mdtH-K08162NANA
AK018_03581636hypothetical proteinGTGGCGGCCCGGCCGGAGCACCGCGAGCGCTGGGAGACCCGCACCCTGCGCGCCCTGATGGTGCCCGCCAACCTCGTGCTGGGTGGCCTGGTGGCGTTCCTGGTGGCACTGCCCGGGGTGACGCTGCTGCCCGCGCTGGTCGCTCTCGGCCGGGCCTTCTCGCAGTGGCACGACGACGGGGACGACGCGGTGGTCACCTCCCTGCTGCGCGAGCTGCGGGCGACGTGGCGTCGGACGTGGCGGGCGGGGATCCTCGCGGGGATCGTCGTGTGGCTGCTCGTCGTCGACGTCCTGTTCCTGCTGGCCCAGCTCGGCACGGCGTCGGCCGGGTTCGCCGTCGTCCTCGGCGGGGCCACGGTTCCGGTGGCCGCCGTCGTCGGGCTCGTCCTGCTGCTGGTCCCGGTGGCCGCTGCGCGGCAACGTGACGGGACGTTCCGTGACTGGCTGCGCGCCGCCGCGACGTTCGCCGCCGGGCGCCCGGTGGGCACGCTCGCGCTGCTGCTGCTCGGTGCGGCGGTGCTGGCCACCTGCGTGGTGCTGCCCACCCTGGCGCCGTTCGTGGCACTCTCCGTGCCGCTGTATCTCGCGGTCCGGGCCTGGCCGCCGTCGGCCGGCCCTGCGGACGCGGGCTCGTGAMAARPEHRERWETRTLRALMVPANLVLGGLVAFLVALPGVTLLPALVALGRAFSQWHDDGDDAVVTSLLRELRATWRRTWRAGILAGIVVWLLVVDVLFLLAQLGTASAGFAVVLGGATVPVAAVVGLVLLLVPVAAARQRDGTFRDWLRAAATFAAGRPVGTLALLLLGAAVLATCVVLPTLAPFVALSVPLYLAVRAWPPSAGPADAGSNANANANANA
AK018_035821992hypothetical proteinATGACCCGACCGCTGCTGATCGCCGACCGTGAGGAGACGCTGCGCGCCGAGCTGCACGACGTGCGCCGTCCGCAGCTGCGCCGCCTGGTGGACGAGTGCGAGCGCCTGACCTCCCTCGAGCTGCCCGACGAGCACCCCCTGGCGTCCATCACCTACCTGGGGGCCGGTGCCGCGAACCTGGCGCTGGCGTACCGGCTGACCGGCCAGGAGCACTACCTGACCGAGCTGCGGCGCTGGCTCGTGCCGTCTCTGTCGTTCCCGCACTGGGGCCGCGCCAACATGCCGGACCACGACCTGGACGCCGGCTGGATCCTCCACGGCCTCGGTCAGGCCTACTCCTGGGCCGGAGACGCACTGCCGGACGACGAGCGCGAGGCCCTGCGCGACAAGCTGATCCTGCAGGGCACCCGGTTGTACGAGTTCGCGGTGGAGTCCGAGGGCGGCTGGTGGTCGTCGTCGTACTGGCAGAACCACAACTGGATCTGCTACGCGGGACTCGCCACCGCCGGGTACGCGCTGCGCGACGACCACGAGCCGGCCGCGCTCTGGACGGAGCGGGCCAAGGAGAACTTCGACACCGTCCTGGACATGCTGCCCGAGGACGGGTCCAACAACGAGGGAGTCGTCTACTGGCGGTACGGCGTGCCGTGGATCGTCACCTACCTGGACCTGCTCAAGGCCGAGGAGGGTATCGACTGGTTCGCGCGCAGCGACTACCTGCGCGAGACGTTCTGGTACCGGCTGTACCAGGCGGCGCCCGACCTGGAGCGGATCATCGACCACGGTGACTGCCACGACCGACGCAGCGGCCACCCGGTGGCGATGTACTACAAGCTCGCCGCCGAGTACCGGATCCCGCAGTGCCAGTGGCTCGCCGAGAAGGTGGCCGACGACTTCTTCTGGCGCGAGGCCTACGAGAGCGGCGTCCGGCCCGGGGTGCGCGCCGAGGCCTACCAGGAGCTGCTGTGGTTCGACCCGGAGGCGCCCAGCGCGGACCCGTACGACCTGCCGACGAGCCGGTGGTTCCGCGACCTGGGTCTCGTCGTCGGCCGCACGTCCTGGGACGCCGACGCCGTCATGGTCTCGTTCAAGGCGTCCCCGGGCGGCGGGCACAAGGCGTGGGAGACGGCGCACCGCATCAAGGCGGAGAAGGGCTGGACCACCCTGAACGCCGGGCACCACCACCCGGACTCGGGCACCTTCACGCTGCTGGGGCACGGCGCCTACCTGGCGCTCGACGAGGGGTACTCGTCGCGCAAGCGCACCGCGCACCACAACGCGGTGCTCGTCGACGGCAACGGGTTCGTCAACGAGGACCGGTACCACGTCTTCGAGAACCTGCCCTACGAGCACCAGGCGAGCATCCTGACCGCCACGCTGGCGGACGGCTGGGTGCACGCCGTGAGCGAGACCGCGGCGATGTACGACCCGACTCTCGACGTCGAGCGTGCCCGCCGCCACCTGGTGCTGACCCCGAGCGGTGCGCTCGTGGTCCTGGACGACCTGCGTGCCGCCACGCCGCGGACCTGGACGTTCCTGCTGCAGACCGAGCACCCGGCCCGCGCCGAGGGCGACGGTCACTGGGTCGCCGAGGCCGGGACGGGACGACTGCGCGTCACGGCGCTGGACGACGCGGACGACGTCGAGACGGTGCCGACGCCGGTGCACGCCAACCCGACGTCGTCGACCCCGAGCCTGGCGATCGAGAAGACGCTGCACACCCTGCGGCGCTCGACCGCGCCGACCACCCGCGGCCGTTTCCTGACCGTGCTGGAGCCGCGAGCCTGGCACGACGAGGCACGCGCGGAGGTGTCCGTCGAGGACTCGGGTGACACGGTCACGGTCCACGTCGACCACGACGGCGTCCGCGAGACGGTGACGCTGGATCTCGAGCTCGGCACGCCGGCGGGCGCCGGGACGAGCGGGCCCGGGTTCGCGGCCCGCGTCGACGTCGCCGCGACGGCCGGTGCCGGGGCCGGCACGACGGAGTGAMTRPLLIADREETLRAELHDVRRPQLRRLVDECERLTSLELPDEHPLASITYLGAGAANLALAYRLTGQEHYLTELRRWLVPSLSFPHWGRANMPDHDLDAGWILHGLGQAYSWAGDALPDDEREALRDKLILQGTRLYEFAVESEGGWWSSSYWQNHNWICYAGLATAGYALRDDHEPAALWTERAKENFDTVLDMLPEDGSNNEGVVYWRYGVPWIVTYLDLLKAEEGIDWFARSDYLRETFWYRLYQAAPDLERIIDHGDCHDRRSGHPVAMYYKLAAEYRIPQCQWLAEKVADDFFWREAYESGVRPGVRAEAYQELLWFDPEAPSADPYDLPTSRWFRDLGLVVGRTSWDADAVMVSFKASPGGGHKAWETAHRIKAEKGWTTLNAGHHHPDSGTFTLLGHGAYLALDEGYSSRKRTAHHNAVLVDGNGFVNEDRYHVFENLPYEHQASILTATLADGWVHAVSETAAMYDPTLDVERARRHLVLTPSGALVVLDDLRAATPRTWTFLLQTEHPARAEGDGHWVAEAGTGRLRVTALDDADDVETVPTPVHANPTSSTPSLAIEKTLHTLRRSTAPTTRGRFLTVLEPRAWHDEARAEVSVEDSGDTVTVHVDHDGVRETVTLDLELGTPAGAGTSGPGFAARVDVAATAGAGAGTTENANANANANA
AK018_035831749hypothetical proteinATGACGACGGTCCCCACGGCGCCGGGCGGCTGGTGGCACGACTACGTCTGCCCCACGCACCACGTCGAGCTGTCCGGCTCCGCCCCCGGGGGCCACGGGTGCCCCCGGGGGTGCGTGGTCGCCGGTGAGAAGTACGACGCCGCACTGCGCACGTTGGACCACCAGCGCTGTGCCCGCGAGGTGCGACGCCTGGCCCGGACCGGGGACGCCGCCGACCGGCGCCGCGCCGTCGCCCTGCTCGGCGAGATCGCGAAGGTCTACGGCGACGTCGTCGGACCGGGCTGGAACGACGCCGCCGAGTCCTGGATGCTCCGCGGCAGGATGTTCGCCCAGGCGCTCACGGAGGCGCAGTGGGCGGTGCAGGTCGCCGACGCCGTGCTGGTCCTCGGGCCCGAGGCGCACGTCGCGGGCGTGGACGACCTCCTCGAAGGCCTCCTCGCCACCTTCGAGCAGGCCTACGGCGTCCTGGTCGACGAGCGGCAGGACGAGCGCAACAACTACACGGCGTGGCTGTGCGCCGCCGGCGCGCTGGCCTCGCGCGCCCTCGACGCTCCGCACGAGGTGGTCGCCACGTGGCACACCCGGGCGCTCGCCCACCTCGAGATCGCCGTCGGCGACGACGGCTGGGAGTGGGAGGGGTCCACCTACTACCACCTGTTCGTGCTGCGCGCCTACCTCCTGACGTTGCGGGACGCCGTCCCTGCGGACCTTCCCCGGCCCGCGGTCGAACGCCTCGCCGCGATGGTGCGGGTGCTCGCCGAGGTGGCGGCTCCGGACGGTGCCCTCCCGGCGATCCACGACGGCCCCTACGATCGGGTGCCCATGCACCACGAGGTGCTCGAGATCGCCGCCATGGCCCGTGGTGTGCTGGCCCCGGCCGGGCTCGAGGCGGTGGCGACGGCGGCCAGGGCACGGCTGGGCCGGACGGATGACGGCCTCGACCGGCTGCTCGACGGCTGGTTCGGCGGGCCGCCGGTGCAGGTCCCCGCGCCGACACGGGGCAGCGTGTACTTCCCGCAGGTGGGCTATGCCGTCCTGCGGGACGACGCCGACACGTGGCAGGCCGTCGTGGACGCCGGACCGCACGGGGGATCCCACGGCCACCACGACAAGCTGGCCCTCTACCTGTACGGCACCGCGCCGTGGCAGCCCGCACCCGGGGTGCCGCCCTATGCGAGCCCGTTGCGGCGTGGTCACTACGCCCGAACCCTCGCGCACCCGACCCTCCGTGTCGACGGCCGGGACCAGGACGAGACGACCGGCCGTGTGGAGCGCTGGGCGCCCGAGGCCGGGCTGGTCGTGACCAGCGCCGAACCGTACCCCGGGGTCCGGGTGCGCCGCGCGACGCGCCTGACCGACGGTGTCGTCACGGACGTCGTCACGGTGGAGGCCGACGAGCCGCACGAGTTCGTCCTCGCGCTGCGGCCCGCCGTCGACCTGACCGTCCGGCACGAGCCGGACGGTGCCCGGACCACCTGGACGGCCGACGACGGCGCTAGCCTGCACGGCACGCACGTCGCCTCTCCCGGTGCCGCGCTCGCCGTCGTGCCCGGCCGGGGACCGTCGGACGACCCGGCCGCTGTCCGGCCGGTCGCCGACTGGACCGTGACCGGTGACGGCGCGGTCTTCGCCTCCTTGTTCCAGCAGGGCCCGGATCCCGCGCCGGCCCGCATCGACCTCGCGCCCGACGGCGCCACCTTCCACCTGACCACTCCCGACGGGGAGAAGACCATCGAGGGAGCACCATGAMTTVPTAPGGWWHDYVCPTHHVELSGSAPGGHGCPRGCVVAGEKYDAALRTLDHQRCAREVRRLARTGDAADRRRAVALLGEIAKVYGDVVGPGWNDAAESWMLRGRMFAQALTEAQWAVQVADAVLVLGPEAHVAGVDDLLEGLLATFEQAYGVLVDERQDERNNYTAWLCAAGALASRALDAPHEVVATWHTRALAHLEIAVGDDGWEWEGSTYYHLFVLRAYLLTLRDAVPADLPRPAVERLAAMVRVLAEVAAPDGALPAIHDGPYDRVPMHHEVLEIAAMARGVLAPAGLEAVATAARARLGRTDDGLDRLLDGWFGGPPVQVPAPTRGSVYFPQVGYAVLRDDADTWQAVVDAGPHGGSHGHHDKLALYLYGTAPWQPAPGVPPYASPLRRGHYARTLAHPTLRVDGRDQDETTGRVERWAPEAGLVVTSAEPYPGVRVRRATRLTDGVVTDVVTVEADEPHEFVLALRPAVDLTVRHEPDGARTTWTADDGASLHGTHVASPGAALAVVPGRGPSDDPAAVRPVADWTVTGDGAVFASLFQQGPDPAPARIDLAPDGATFHLTTPDGEKTIEGAPPGPT0019410_231DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019410-alyA3|alg17C-K20525NANA
AK018_03584765fabG_23-oxoacyl-[acyl-carrier-protein] reductase FabGATGCAGCACGTACTCAGCGGGCGCACGGCGCTCGTCACCGGCGGCGGCCACGGGATCGGCGCCGCCCTCGCCCTCGGACTCGCCGAGGCGGGCGCCGACGTCGCGGTGCACTACGCGCACTCCGGTGACGCCGCGGCCAACGTCGTCGACAAGATCACCGGCATGGGGCGGCGCAGCATCGCCGTCCAGGGCGACCTCACCGACCCCGAGGCGGCGCGCACCGTCGTCGAGTCGGCCGCGGGCGAGCTCGGCGGCCTGGACGTCCTGGTCAACAACGCCGGACACCTGGTCGGCCGCGCCACCGTGGCGGAGATGACCGACGAGCACTGGGCCAAGGTCTGGAACGTCAACGTCTCCAGCACCTTCTACGTCACCCGTGCCGCGGTGGGTCACCTGAAGGCGAGCAGCGCCGGACGCGTGGTCACGATGGCGTCGCTCGCGGCGGAGAACGGCGGCGGACCGGGGTCCGTGGCCTATGCCGCGGCCAAGGCCGGCATCGTCGGGTTCACCCGGGGTCTCGCCAAGGAGCTCGCCGGTGACGGTGTCACCGTCAACGCGCTCGCTCCCGGGTTCATCGGGGACACCCCGTTCCACGACGCGTTCACGCCGCCGGAGGCGCAGGCCAACATCGTGGCGGGCATCCCGCTGGGGCGTGCCGGTACCGTGGACGACGTCGCCGCGGTGACCACGTTCCTCGCCTCCGACGCCGCCGGCTACGTGACCGGCCAGGTCCTCGACATCAACGGGGGGCTCAACTTCCGATGAMQHVLSGRTALVTGGGHGIGAALALGLAEAGADVAVHYAHSGDAAANVVDKITGMGRRSIAVQGDLTDPEAARTVVESAAGELGGLDVLVNNAGHLVGRATVAEMTDEHWAKVWNVNVSSTFYVTRAAVGHLKASSAGRVVTMASLAAENGGGPGSVAYAAAKAGIVGFTRGLAKELAGDGVTVNALAPGFIGDTPFHDAFTPPEAQANIVAGIPLGRAGTVDDVAAVTTFLASDAAGYVTGQVLDINGGLNFRPGPT0003180_8248DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_03585933araQ_4COG0395L-arabinose transport system permease protein AraQATGGCTCTCCTCAATCCCCGGACCTCCACGAGCCCGTCGGCGAACCGGACCGTCCGCACGACGAACCAGTCGTCCGTCCGGCGACGCAACAAGCTCATCCTGCACCTGCTGCTGATCATCGGTTCGGTCACGATGGTGATCCCGTTCGTCTGGATGCTCTTCACCTCGGTGAAGAGCCCGGCCGAGCTGGCGCAGTTCCCTCCGACCTTCTTCCCCCAGGAGTGGCACTGGTCCAACTACGCGGAGGCGCTCGACGCCGCGCCGTTCGACAAGTACTTCCGCAACTCGCTCATCATCGCCACCGGGCACACCCTCATCACGCTGGTCATCGGCTCCATGGCCGGGTACTCGCTGGCGCGGATCCGGTTCCGCGGGCGGGAGATCATCTTCCTGTCCATGGTCGCGATGCTCATGATCCCGACCTACACGAAGATCGTCCCGCAGTTCCTCATCGTGAAGTTCATGCCCCTGTTCGGCGGCAACGACATCACGGGACAGGGCGGCAGCGGCTGGCTGGACAGCTGGTGGGCCCTGCTCATCCCCGGCGGCCTGAGCGCGATGTCGATCTTCCTGTTCCGGCAGTTCTACCTGACCCTGCCCAAGGAGCTGGAGGAAGCGGCGCGACTGGACGGTCTCGGCGAGTTCCGGATCTTCGCGCAGATCTACACCCCGCTCATGAAGCCGGCCGTCGCGACGGTCGCCCTGCTGACCTTCCAGGAGAGCTGGAACAACTTCCTGTGGCCGCTGCTGGTCACGACCTCGGACGACCTGCGGGTGATCCAGGTCGGCCTGGCGGTCTTCCAGCAGGTGGAGGCCACCGCCTGGCAGTACCTGATGGCCGGCACCACCTTGGCCACCGTCCCGATGGTGCTGCTGTTCGTCATGGCGCAGAAGTACTTCATCCAGGGATTCACCAACTCGGGCATCAAGTGAMALLNPRTSTSPSANRTVRTTNQSSVRRRNKLILHLLLIIGSVTMVIPFVWMLFTSVKSPAELAQFPPTFFPQEWHWSNYAEALDAAPFDKYFRNSLIIATGHTLITLVIGSMAGYSLARIRFRGREIIFLSMVAMLMIPTYTKIVPQFLIVKFMPLFGGNDITGQGGSGWLDSWWALLIPGGLSAMSIFLFRQFYLTLPKELEEAARLDGLGEFRIFAQIYTPLMKPAVATVALLTFQESWNNFLWPLLVTTSDDLRVIQVGLAVFQQVEATAWQYLMAGTTLATVPMVLLFVMAQKYFIQGFTNSGIKPGPT0016540_1083DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_03586942araP_1COG1175L-arabinose transport system permease protein AraPATGACAAGCACCGAGACCCCAGCGGGGGCCGGACTCGCCGCGCGCAACCCCGCACCGGTCCGACGCCGCAAGTACTCGCGGGCGGAGCGCAAGCTGCGACGCACGGGTTGGCTGATGATCACGCCGGCCCTGCTGCACCTCGCCCTGTGGACCGCCATCCCGGTGGTCGCCACCTTCGCGCTCGGGTTCACCAACTACAACGTGTTCTCCCCGCCCCAGTGGGTCGGGTTGCAGAACTACGTCGAGATCGTCCAGGACCCGGTCTTCCGCAAGGCCACCTGGAACACCATCGTCTACACCTTCTGGACCGTGCCGGTCTCGATGGCCATCGCGCTCGTCATCGCCGTGGCCCTCAACCAGGGCCTGCGGTTCCAGAAGTGGTACCGCACCGCCTTCTTCCTGCCCCAGGTCACCGCGACCGTCGCGATCGCCATGGTGTGGCTGTGGATCTTCAACCCGCAGCAGGGCCTCCTCAACGCCTTCCTCGGCCTCTTCGGCATCCCCGGGCAGGCCTGGCTCGCCGACCCCGACTGGGCGTTGTGGTCCGTGATCCTCGTCGGCGCGTGGCAGGGCATCGGGATCAAGATGCTGATCTACATCGCCGCGCTGCAGAACATCGACGGGAGCCTGTACGAGGCCGCCTCGGTCGACGGCGCGTCCACCGTGCGCAAGTTCTTCGCCATCACCGTCCCGATGCTGAAGCCCGCCACGTTCTTCGTGCTGGTCATCTCGATCATCAACGCGTTCCAGGTCTTCGACCAGATCTACGTGCTCACCAACGGCGGCCCCGCCAACGCGACCACGATGATGACCTACGAGGTCTACCGGTCCGCGTTCGAGGAGTTCCGCATGGGGATGGCCTCCGCGCAGTCGGTCGTCCTGTTCATCTTCCTGCTCTTCATGACGCTCGTCGGTCGACGTGCCACCCGAGAGGACCACTGAMTSTETPAGAGLAARNPAPVRRRKYSRAERKLRRTGWLMITPALLHLALWTAIPVVATFALGFTNYNVFSPPQWVGLQNYVEIVQDPVFRKATWNTIVYTFWTVPVSMAIALVIAVALNQGLRFQKWYRTAFFLPQVTATVAIAMVWLWIFNPQQGLLNAFLGLFGIPGQAWLADPDWALWSVILVGAWQGIGIKMLIYIAALQNIDGSLYEAASVDGASTVRKFFAITVPMLKPATFFVLVISIINAFQVFDQIYVLTNGGPANATTMMTYEVYRSAFEEFRMGMASAQSVVLFIFLLFMTLVGRRATREDHPGPT0016535_1964DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_035871314hypothetical proteinATGATCATCAAGAGTCAGTCCCGTCGACGGTTCACGGGCGTCGCCGCCCTGGCCGCCGTCGCACTGGGGATCACCGCCTGCAGCTCGGGCACGAGCTCGGGCACCGACGCCGAGGGCGGCAGCGGTGACGTCTCCGGCGACATCACGCTGCTCACCCCGATCTTCGAGGGCACCGACGGCCAGCAGCTCCTCGAGGACGAGCTGCTCCCGCAGTTCTACGAGGACTACCCGGACGTCACCGTGTCCGTGGACTACACGACCTACGGCAACCTCAACGAGAAGCTCACCACCGCCGCGGTGTCCGGGGCGGTGCCCGACGTCATGATGATGGGCGTCGGCTGGATCGAGGGCTTCGCCGACCGGGGTCTGCTGGCCGACCAGAGCGAGCTCGGCAACACCGAGGAGAAGCTCCTGGAGACCTACACGCCGGCGATCGTCGACGCCGGGACGTGGGACGGCGGCGTCTACGGCATGCCGATCATGCTCGACACCCGGTACGGGGTCGCCAACATGGAGCTGCTGGAGGAGGCCGGCTACGACGCGCCGCCGTCGTCCTGGGACGAGCTCGTCGAGATCTCCGAGGCCCTGACGGTCCGCGCCGACGACGGCACGCTGGAGCGTGCCGGCTTCGACCTGCTCTCGAACGACCCGCGCCAGGTCTTCGAGACGTTCCTCTTCTCCGCCGGGGGCGACCTCTTCAACGAGGACGTCACCGAGCCGACGTTCAACGGGCCGGAGGGTGTGTCGGCGCTGCAGCTCATGACCGACCTCATCAACGAGTACGAGGTCGAGGACATCGGCTTCTCCTCGCCGGACGCCGCCGTCAACCCGCTCCTGAACGGACGGGCCGCGATGGGCCTCGCTCACAACAACCTGTGGACGCAGGGACTCGAGGCGGACCCCGAGATGCTCGAGAACCTCGAGCCCTTCGTGATCCAGGGCGAGGGCGAGGGCATGTTCTTCGGCGGCACGTTCGCCACCCGTTCGGCCACGTCCCAGCACCCCGAGGCCGCCCAGGCGCTGCTCGAGTTCCTGGCGAGCCCCGGGCCGGCGCTGGCTGCCAACGAGCAGCGCGGCAACGTCCCCGCGCTGACCGAGCTGCTCGACAGCGACTACGTGCAGTCCAACCGGTTCGTCCAGTTCTCGATGGAGAACCTCGACGTGGCCAAGCGTGAGGGCGGCCCGCCCTCGTGGCTCGAGGTCCGCGGCGACTTCGCGCCGGCCATCGAGTCGGCACTGCTCGGTCAGGCCGAGCCGCAGGCAGCCCTCGACGACCTCGCCGCGCTCGTCGACGAAGCGATGGCCCGCCAGTAGMIIKSQSRRRFTGVAALAAVALGITACSSGTSSGTDAEGGSGDVSGDITLLTPIFEGTDGQQLLEDELLPQFYEDYPDVTVSVDYTTYGNLNEKLTTAAVSGAVPDVMMMGVGWIEGFADRGLLADQSELGNTEEKLLETYTPAIVDAGTWDGGVYGMPIMLDTRYGVANMELLEEAGYDAPPSSWDELVEISEALTVRADDGTLERAGFDLLSNDPRQVFETFLFSAGGDLFNEDVTEPTFNGPEGVSALQLMTDLINEYEVEDIGFSSPDAAVNPLLNGRAAMGLAHNNLWTQGLEADPEMLENLEPFVIQGEGEGMFFGGTFATRSATSQHPEAAQALLEFLASPGPALAANEQRGNVPALTELLDSDYVQSNRFVQFSMENLDVAKREGGPPSWLEVRGDFAPAIESALLGQAEPQAALDDLAALVDEAMARQPGPT0016545_5910DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_035881086degA_9COG1609HTH-type transcriptional regulator DegAGTGGCACGCGTGACGATCCAGCAGGTCGCAGCAGCCGCTGGGGTCTCGCCCAGCACCGTCTCTAACCTGCTGAACGGCCGCACCAACCGCATGGTGCCGGCCACCAAGGAGCGCATCGAGCGCGCCATCGCCGAGCTCGGCTACCGACCCAACCGTGCGGCTCGCCAGCTGCGCACGGGACGCACGCAGACGGTGGGGCTCATCGTGCCGTCCGTCGGCAACCCGTTCTGGGGAGCGTTCGCCCGGGAGCTCGAGGTCGCGGCCCTGGCCGTCGGGTGCAACGTGCTGCTGTGCAACAGCGAACGCGACCCCGACCGCGAGCGCCGGTACGTCGAGGAGCTGTGGGAGGACGGGGTGCGCGGCATCGTCCTGTGCTCCTCCCTGCCGACGCTCGACCACCTCGCCGACATCGTCCGGCGGGGCCTGCGGCTCGTGACGTTCGACCGACCGGCGCAGGCCGGTGACCCGGAGGAGGTCGTCAGCGTCAGCATCAACAACCACGTGGGCGGCTTCCTCGCGACCTCCCACCTGACCGAGCTCGGCCACGAACGGTTGACCTTCGTCTCCGGGTCGCTCGCGGCGGTCAACCGCACCGGCCGCTTCCGCGGGTTCTGCACGGCGCTCGAGGGGGCTGACCTGGACCCGGCGGCGATGCCGACGTGGACGGCGGGTGGCGGCGCGCCGTTCGGGGACGTGGAGGCCGCCCAGGTGGGCCGGCAGGCCGCGCACGACCTGTTCTCCGGGACCGTCGAGCCGCCCACGGGCGTCGTGGCGATCAACGACATGACCGCGCTCGGCTTCTGCCGCGGCCTGCGTGACCAGGGCCTGCACGTCGGCAAGGACGTGTCCGTGGTCGGCTTCGACGACATCATCCTCGCGGAGCTGTACGACCCGCCACTGACGTCGGTGCGCCAGCCCATCTCACGGATGGCGTCGTTGAGCCTCGAGGAGGCGCTGAAGGAGGACGACCGCGAGCCCGGGCGGTCGGTGCTGCTGCGCCCCGAGCTGGTGGTGCGGGACTCGACCGCGTCTCCGGCGGGGGCCACGGTGCCGGTCGTGGCCGACGAGGACGGGGTGCTGCAGTGAMARVTIQQVAAAAGVSPSTVSNLLNGRTNRMVPATKERIERAIAELGYRPNRAARQLRTGRTQTVGLIVPSVGNPFWGAFARELEVAALAVGCNVLLCNSERDPDRERRYVEELWEDGVRGIVLCSSLPTLDHLADIVRRGLRLVTFDRPAQAGDPEEVVSVSINNHVGGFLATSHLTELGHERLTFVSGSLAAVNRTGRFRGFCTALEGADLDPAAMPTWTAGGGAPFGDVEAAQVGRQAAHDLFSGTVEPPTGVVAINDMTALGFCRGLRDQGLHVGKDVSVVGFDDIILAELYDPPLTSVRQPISRMASLSLEEALKEDDREPGRSVLLRPELVVRDSTASPAGATVPVVADEDGVLQNANANANANA
AK018_03589858Ureidoglycolate lyaseGTGAAGCTCGCACGCCTGGGGCCGGTCGGCGCCGAGCGGCCGGCCGTCGTCGTCGGCCCCGACGCCTACGTCGACGTCGGCGACCTGGTGCCCGACATCGACGCCACGACGATCCCCGACGGGTTCGGATGGCTGGCGGAACGCGTCGAGTCCCGGGTGACAGCAGGTCTCGTCGAGGCGCTCGGCGCACGGCGGGTCGGGCCGCCCGTGGCGCGTCCGCACCAGATCCTGTGCGCCGGCCTCAACTATCGCGACCATGCCGCCGAGATCGGCGCGGAGGTACCGGCCCTTCCGCTCGTGTTCTCGAAGTCCCCGAACACGCTCGTCGGGCCGTACGACGACGTCCGGGCGCCGCGAGGCTTCTCCCGCCTGGACTGGGAGGTGGAGCTGGGACTCGTCGTGGGCCGCCGGACGAGCTACCTGGACAGCCCCGACCAGGCGCGTGACCACGTCGCGGGGTTCGTCGTCTGCAACGACGTGAGCGAGCGCGCGTTCCAGGACGAGCACGGGGGCCAGATCCTCAAGGGCAAGTCCGCCGAGACGTTCAACCCGTGCGGTCCCTGGCTGGTCACTCCCGACGAGGTCGGCGACGTCTCGGCCCTGGGCATGTGGCTCGACGTCTCCGGTGCGCGCCGCCAGTCGGGCAGCACGGGCACGATGGTGTTCGACCCGTACGAGCTCCTGTGGCACCTGAGCCAGTACATGGTGCTCGAACCGGGCGACCTGGTGAACACGGGCACCCCGCCCGGCGTGGCCAACGGCATGGCCGAACCGGCGTGGCTGCAGCCCGGCGACGTGATGGAGCTCGGCATCGACGGGCTGGGTTCGCAGCGCCAGCGCGTGGTCGCACCGCGATGAMKLARLGPVGAERPAVVVGPDAYVDVGDLVPDIDATTIPDGFGWLAERVESRVTAGLVEALGARRVGPPVARPHQILCAGLNYRDHAAEIGAEVPALPLVFSKSPNTLVGPYDDVRAPRGFSRLDWEVELGLVVGRRTSYLDSPDQARDHVAGFVVCNDVSERAFQDEHGGQILKGKSAETFNPCGPWLVTPDEVGDVSALGMWLDVSGARRQSGSTGTMVFDPYELLWHLSQYMVLEPGDLVNTGTPPGVANGMAEPAWLQPGDVMELGIDGLGSQRQRVVAPRPGPT0001745_253DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336NANA
AK018_03590954kdgK_22-dehydro-3-deoxygluconokinaseATGACGGCCCCCGGTCCCGTCCTCACCGTCGGTGAGACCATGGTGCTGGTGGGCAGCACCCGTCCGGAGCCGCTGCAGCACAGCACGCTGATGTCGCTCGGGATGGGCGGTGCGGAGAGCAACGTGGCGATCGGGCTGCGTCGCCTCGGTGCGCCGGCGGCCTGGATCGGCCGCGTCGGCGCGGACTCCGCCGGCGACCTGGTCGAACGGCTGCTGCGCGGGGAGGACGTGGCGACCACGTGCCTGCGCGACGACGGGGCACCCACGGGCCTGATGCTCAAGGAGCGGCGCTCCACCATGGAGACGCGCATCTGGTACTACCGCGCCGGGAGCGCCGGTTCGAGGCTCGGGCCCGAGGACGTCCCCGACGACGCGGTGCGGTCGGCGAGCATGCTCCACCTGACCGGGATCACTCCTGCGCTGTCGCCGTCGGCCCGCGCCCTCACCCTGGACCTCGTCGACCGTGCCGTCGCGTTCGGCGTCCCGGTCTCGTTCGACCTCAACTATCGGTCGTCCCTGTGGTCCGCGGACGACGCACGACGCCTCTACGCGCAAGTCGTCCCCCGGTGCGAGATCGTCTTCGCCGGCCTGGACGAGGCTGCGCTGCTCGGGTGCGACGAGCACGACGCCCCGACGGCCGCGCGGCAGCTGCGCGACCTCGGCGCGCGGACCGCCGTCGTCAAGCGGGGGGCGCAGGGGGCTGTCGCGGCGAGCGGGGGCGGCGAGTTCTCCGCTCCAGGGGTGCCGGTCGACGTCCGGGACACCGTGGGAGCCGGCGACGCGTTCGTCGCCGGGTTCCTCGCCGACGCGCTGGCGGGTCGGGACGTGTCGACGGCGCTGGCGACCGCGACCGCCGTCGGCGCCTACGCCTGCACCGGTGACGGCGACTGGGAGGTCCTGCCCCGGCGCTCCGAGCTCGCCAGGCTGTCCTCCAGCGAGCCCGTCACCCGCTGAMTAPGPVLTVGETMVLVGSTRPEPLQHSTLMSLGMGGAESNVAIGLRRLGAPAAWIGRVGADSAGDLVERLLRGEDVATTCLRDDGAPTGLMLKERRSTMETRIWYYRAGSAGSRLGPEDVPDDAVRSASMLHLTGITPALSPSARALTLDLVDRAVAFGVPVSFDLNYRSSLWSADDARRLYAQVVPRCEIVFAGLDEAALLGCDEHDAPTAARQLRDLGARTAVVKRGAQGAVAASGGGEFSAPGVPVDVRDTVGAGDAFVAGFLADALAGRDVSTALATATAVGAYACTGDGDWEVLPRRSELARLSSSEPVTRPGPT0018060_2514DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
AK018_035911977hypothetical proteinATGATCCAATGGCGAATCGTTGCACCAAAGGTGGCGGCCACGTCCGCCGCCGCCCTCCTCCTCGGTCTCCTCGGCGGTCCGGCCGCCGCGCAGACCCTCCCGTCCGCACCGACGGACCCCGTCCGGGCCGACGTCGTCGACCCGCCCGCGCACTGGACCGTCGACTCGGCACGCGCGCTGAGCAGCGACGGCAACCTGCCCGAGTTCGCGATCGACGACGACCCCACGACCCGCTGGTCGTCCCTCACCTCGTCCCCGGACGAGCCCCAGTGGCTCCAGCTCGACCTCGGTGAGGAGCGTTCCGTCGGATACCTCGGCGTGGCGTGGCACAAGGGCGACGAGCGACAGTCGCTCTTCGGCGTCGAGCTCTCCACCGACGGGACCACCTGGCGCTCCGCCGCGACCGACCAGGCCAGCTCGGGAACGTCGTCGAACCTCGAACCCGTCACGCTCGAGGACGACGCCACCACCGGCTCGCAGGCCCGGTACGTGCGCTACCTGGGCTACGGCAACAGCGTCTCGGGCTGGAACAGCGTCACGGAGGTCCGCGTCTACCCGCCGAACCCGCAGGGGGCCGTGGTCGACGACCTCTCCGACCTCCTGCCCGCACCGGACCCGGACGCGGAGCCCTGGACCGAGCCCGGACTCGTCGAGCCCGACGGTACGCGGTACCGCCCGGCCGAGCCCGGTGCCGTGACCGGCCGCACCGTGGACGTGCGCGACCACGGCGCGGACCCGGCTGCAGGCACCGGCGACGACGCCGCCGCGATCCGCGCCGCCCTGGACGCCGCCCAGCCGGGGGACGAGGTCTACCTTCCGGCCGGTACCTACGACCTGCTCACCACCGAACCGGCCGACCCCACCACCAACGTGGCCCTGCGTTCCGGCATCGACCTGCGCGGGGACGGAGCCGGCTCCGTGCTCGAGTCCGCACTGACCCCCGCGACGCAGTCCGGCAAGGTGCTGCGCGGCTACGGCGTCCAGGACGTCGCCGTCAGCGACCTCACCGTGAGCTCGACGTACGACGGCCCCCTGTCGACCGACCACCAGGACACCAACGCCGCCGGGGGCCCGGCGTACGGCGTCGTCGTGGCCAACCTCGGATCCCGCGCGAGCCGACAGGTGCTGGTCGAGGACGTCGTCATCGAACGGTTCCAGAAGATGGGCGTGCGGATCGAGAAGAGCCGTGACGTCACGGTGCGCGGCAGCACGTTCCGCGACGCCACAAGCGTGGGGGGCGGCGGCAACGGCTACGGCATCTCCATCCAGGGCACGGCCGGCAAGGACCGCTACGCGTACACCGACGACTCGCGGCACAACGCGGTGGTCGGCAACGTGTTCGAAGGGACGCACCTGCGCCACGCGATCCTGCTGCAGTACTACACCCACAACAACCTCGTCGCCGGAAACACCATCCGTGGCGGCGTGCTCGACGCCATCGACCTGCACGGCGAGGACGAGTACCTCAACGAGATCCGGTACAACACCGTCAAGGACGTCCGCGCCGCCGCGATCGCGCTGGGCAACACCGGTGGCACGGCCACCCAGCACGACGCCGCCGGCCCGGGGAACTGGATCCACGGCAACGTCCTGAAGAACAACCGAGAAGGCATCCTGCTCATCCTGGGCACCCCCGACACCGTCGTGGAGCGCAACGTGGTGACCGGCGGCCGGGGCGACCACGTGCGGTCGGGCATCGAGGTGCGCAACGCACCGGGGACCGTGGTGCGGCACAACACCGTGCTGGCCAACCGCGCGGAGGACTTCTGGGGCATCCACCTGGCCGAGGACCCCGGCGACGACGGTCACGCGAGCGGCGTGCCGACCGACGTTCTGGTGAAGCGGAACCTGGTGGTCGCCAACTCCGGAGGGGTCCGGGTCGACGCGGGCGAGGACGTCCGGTTGGTCGACAACACCGTCCGGGGCAACCGGGAGAACACCCGGATCGCCGAGGGAGCCGGGGTCACCGTCGAGTAGMIQWRIVAPKVAATSAAALLLGLLGGPAAAQTLPSAPTDPVRADVVDPPAHWTVDSARALSSDGNLPEFAIDDDPTTRWSSLTSSPDEPQWLQLDLGEERSVGYLGVAWHKGDERQSLFGVELSTDGTTWRSAATDQASSGTSSNLEPVTLEDDATTGSQARYVRYLGYGNSVSGWNSVTEVRVYPPNPQGAVVDDLSDLLPAPDPDAEPWTEPGLVEPDGTRYRPAEPGAVTGRTVDVRDHGADPAAGTGDDAAAIRAALDAAQPGDEVYLPAGTYDLLTTEPADPTTNVALRSGIDLRGDGAGSVLESALTPATQSGKVLRGYGVQDVAVSDLTVSSTYDGPLSTDHQDTNAAGGPAYGVVVANLGSRASRQVLVEDVVIERFQKMGVRIEKSRDVTVRGSTFRDATSVGGGGNGYGISIQGTAGKDRYAYTDDSRHNAVVGNVFEGTHLRHAILLQYYTHNNLVAGNTIRGGVLDAIDLHGEDEYLNEIRYNTVKDVRAAAIALGNTGGTATQHDAAGPGNWIHGNVLKNNREGILLILGTPDTVVERNVVTGGRGDHVRSGIEVRNAPGTVVRHNTVLANRAEDFWGIHLAEDPGDDGHASGVPTDVLVKRNLVVANSGGVRVDAGEDVRLVDNTVRGNRENTRIAEGAGVTVENANANANANA
AK018_03592606comRHTH-type transcriptional repressor ComRATGGGCGTGCAGGAGAAGACTCCCGCCGGGCGCCCGCGGTCGTTCGACGAGGAGTCGGTCCTCGCGGAGCTGACGGCGCTCTTCTGGCGGCAGGGCTACGGACAGACCTCGATGTCCGACATCGTGGCGGCCAGCGGCGTCCACAAGCCGAGCCTGTACCGCGCCTTCGGGGGCAAGGACGAGCTGTTCACCACGGTGCTGCGCCGCTACCTGCAGGAACGCATGGAGATGTTCACGCGGCTGATCGCCGAGGCCGGTCCGGGCGTCGACGGCGTGCACCGGTTCCTGGACCTCGTCGGCGTCGACGCCGCCTCCGAGCGCGGACGGGACGGGTGCCTGATGGTGATGTCGTCCAACGAGCTGCGCGGCACGCTGGGCGACTACGACTTCGGCGCCGACTACCGACGGCAGATGCACGAGGTGCTGGGCACCCTCGTCCGGCGCACTCTTCCGGGCGCGCCGGACGACGACGTGGTGCTGCGGCTCCGCACCGACCTGCTGACGACCCACCTGCTCGGTCTGCACGTCGTGATGCGGTCCGGGGCCTCGTCCGAGGAGATCGGACGCTGCCTCGCCGCCATGCACCACGTCGTCGACACGTGGTGAMGVQEKTPAGRPRSFDEESVLAELTALFWRQGYGQTSMSDIVAASGVHKPSLYRAFGGKDELFTTVLRRYLQERMEMFTRLIAEAGPGVDGVHRFLDLVGVDAASERGRDGCLMVMSSNELRGTLGDYDFGADYRRQMHEVLGTLVRRTLPGAPDDDVVLRLRTDLLTTHLLGLHVVMRSGASSEEIGRCLAAMHHVVDTWPGPT0004136_327DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004136-comR|ycfQ-K22041NANA
AK018_03593567hypothetical proteinATGGTCGACTTCACGCTGCACGACGAGAACACGGCCCCGGCCGAGAGCCAGGACCTGCTGGCCGCCTCGAAGCAGAACTTCGGGCGGATCCCCGGGCTGCACGCGGTGATGGCGGAAGCCCCCGGTCTGCTCGAGGGCTACCAGAAGCTCCACGGCCTCTTCCAGAGCTCCACCAGCTTCGACGCCGACGAGATCACGGTCGTCTGGCAGTCGATCAACGTCGAGCACTCCTGCCACTACTGCGTGCCCGCTCACACGGCGATCGCCAAGGGCATGGGGGTCGACGACGAGGTCATCGACGCGCTGCGCGACGGCACCCCGCTGCACGACCCGCACCTCGAGGCGTTGCGGACGTTCACGCTGGCCATGGTCCGTCAGCGCGGCGAGGTCGACGACGCGACCGTGCAGACGTTCCTGGACGCCGGCTTCACCCAGCGTCAGGTGCTGGAGATCGTCCTGGGCCTCGCCCAGAAGGTGATGTCCAACTACACGAACCACCTGGCCCAGACCCCGGTCGACGAGCCCAACCGCAAGTACGAGTGGAAGGGCACCGTCGTCCCGAGCTGAMVDFTLHDENTAPAESQDLLAASKQNFGRIPGLHAVMAEAPGLLEGYQKLHGLFQSSTSFDADEITVVWQSINVEHSCHYCVPAHTAIAKGMGVDDEVIDALRDGTPLHDPHLEALRTFTLAMVRQRGEVDDATVQTFLDAGFTQRQVLEIVLGLAQKVMSNYTNHLAQTPVDEPNRKYEWKGTVVPSNANANANANA
AK018_03594771hypothetical proteinATGAGACTCCACCGCAAGCACGGCATCGCCGCCGCCATGCTGGCCACGACCCTCGTCATGGCCGGCCAGCTCGCCGGGGTCGGCAGCGCCACCGCCGCCGCACCCTGCGACTACCCGGCCCAGCAGCTCGACCTGACCGACTGGAAGGTCACCCTGCCCACGGGCTCGGGCAACTCGCCCACCGAGATCCTGCAGCCCGACCTCGCCGACTTCTCGGTCGCGCCGTGGTTCCAGGTGAACAGCAAGTGCACCGGCATCCAGTTCCGTGCCGCCGTCAACGGCGTCACCACCTCCGGGTCCGGCTACCCCCGCTCCGAGCTGCGCGAGATGACCGACGACGGTCAGGAGCGTGCTTCGTGGTCCTCCACCTCGGGGACCCACACCATGACGTTCCGCACCGCCGTCAACCACCTGCCCGAGGACAAGCCGCACGTGGTCGTCGGTCAGATCCACGACGGGGACGACGACGTCACCGTCTTCCGCGTCGAAGGGAACAACCTCTACATCACGAAGGGCAACGACACGCACCACAAGCTGGTGACCAGCAACTACCGGCTGCACCAGGTGTTCGAGGGCAAGTTCGTGGTCAGCGGCGGCAAGATCAAGGTCTACTACAACGGCACGCTCCAGACCACGATCGACCACGCGAAGTCCGGCAACTACTTCAAGGCCGGCGCCTACACCCAGGCCAACTGCGGCAACTCCTCGCCGTGCAGCACCTCGAACTACGGTCAGGCCACGCTCTACAAGCTCGACGTCTCACACTCCTGAMRLHRKHGIAAAMLATTLVMAGQLAGVGSATAAAPCDYPAQQLDLTDWKVTLPTGSGNSPTEILQPDLADFSVAPWFQVNSKCTGIQFRAAVNGVTTSGSGYPRSELREMTDDGQERASWSSTSGTHTMTFRTAVNHLPEDKPHVVVGQIHDGDDDVTVFRVEGNNLYITKGNDTHHKLVTSNYRLHQVFEGKFVVSGGKIKVYYNGTLQTTIDHAKSGNYFKAGAYTQANCGNSSPCSTSNYGQATLYKLDVSHSPGPT0019417_522DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NANANA
AK018_035951554hypothetical proteinGTGACCACCGAAAGGATCCGCACGACGATGAGACTTCACCGCAAGCACGGCCTCGTGGCCGCCCTGGTAGCCGGGACGGTGTTCGCCGCGAGCTCCGCCGTGGCGATCGCCGCCACCGCGGACGGCGAGCAGTGCGAGTACCCGGCCCAGCAGATCGACCTGACCGACTGGAAGGTCACCCTGCCCACCGGCTCGGACAACTCCCCCACCGAGATCCTGCAGCCCGACCTCGCCGACTTCTCCGCAGCACCCTGGTTCCAGGTCAACGACAAGTGCACCGGCATCCAGTTCCGCGCACCCGTCGACGGCGTCACCACCTCCGGATCCGGCTACCCCCGCTCCGAGCTGCGCGAGATGACCGACGACGGCACCGAGAAGGCCTCCTGGTCCACCACCTCCGGCACCCACACCATGACCTTCCGCACCGCCTTCAACCACCTGCCCGAGGACAAGCCCCACCTCGTCGGCGCCCAGATCCACGGCGGCGGCGACGACGTCACCGTCTTCCGCCTCGAAGGCACCGAGCTCTACATCACCGACGGCGACGACTCCCACCACCACCTCGTCACCGACGACTACCAGCTCAACACCGTCTTCGAAGGAAAGTTCGTCGCGGCCAACGGCCAGATCGACGTCTACTACAACAACGAGCTCCAGACCACCATCGACAGCGACGAGGACGAGAACTACTTCAAGGCCGGCGCCTACACCCAGGCCAACTGCAGCAACTCCTCACCCTGCAACGACACCAACTACGGCCAAGCCACCCTCTACAAGCTCGACATCACCCACTCCGACTCCGACCAGAGCCCGGAACCCGAGCCGACCGAGACGGCCACGCCGACCCCGACACCCTCGCCCACCCAGACAGCCACCCCCGGCGAGCAGTGCGAGTACCCGGCCCAGCAGATCGACCTGACCGACTGGAAGGTCACCCTGCCCACCGGCTCGGACAACTCCCCCACCGAGATCCTGCAGCCCGACCTCGCCGACTTCTCCGCAGCACCCTGGTTCCAGGTCAACGACAAGTGCACCGGCATCCAGTTCCGCGCACCCGTCGACGGCGTCACCACCTCCGGATCCGGCTACCCCCGCTCCGAGCTGCGCGAGATGACCGACGACGGCACCGAGAAGGCCTCCTGGTCCACCACCTCCGGCACCCACACCATGACCTTCCGCACCGCCTTCAACCACCTGCCCGAGGACAAGCCCCACCTCGTCGGCGCCCAGATCCACGGCGGCGGCGACGACGTCACCGTCTTCCGCCTCGAAGGCACCGAGCTCTACATCACCGACGGCGACGACTCCCACCACCACCTCGTCACCGACGACTACCAGCTCAACACCGTCTTCGAAGGAAAGTTCGTCGCGGCCAACGGCCAGATCGACGTCTACTACAACAACGAGCTCCAGACCACCATCGACAGCGACGAGGACGAGAACTACTTCAAGGCCGGCGCCTACACCCAGGCCAACTGCAGCAACTCCTCACCCTGCAACGACACCAACTACGGCCAAGCCACCCTCTACAAGCTCGACATCACCCACTCGTGAMTTERIRTTMRLHRKHGLVAALVAGTVFAASSAVAIAATADGEQCEYPAQQIDLTDWKVTLPTGSDNSPTEILQPDLADFSAAPWFQVNDKCTGIQFRAPVDGVTTSGSGYPRSELREMTDDGTEKASWSTTSGTHTMTFRTAFNHLPEDKPHLVGAQIHGGGDDVTVFRLEGTELYITDGDDSHHHLVTDDYQLNTVFEGKFVAANGQIDVYYNNELQTTIDSDEDENYFKAGAYTQANCSNSSPCNDTNYGQATLYKLDITHSDSDQSPEPEPTETATPTPTPSPTQTATPGEQCEYPAQQIDLTDWKVTLPTGSDNSPTEILQPDLADFSAAPWFQVNDKCTGIQFRAPVDGVTTSGSGYPRSELREMTDDGTEKASWSTTSGTHTMTFRTAFNHLPEDKPHLVGAQIHGGGDDVTVFRLEGTELYITDGDDSHHHLVTDDYQLNTVFEGKFVAANGQIDVYYNNELQTTIDSDEDENYFKAGAYTQANCSNSSPCNDTNYGQATLYKLDITHSNANANANANA
AK018_03596750hypothetical proteinATGTACCAGTTGCTCGAAGCGATAGTTGCTGGTACCAGCAGTGCTGCCGAGGGCGGCGCGGACCTCGTCCCGACGACCGTCGCAGGCGGGCTCGCGCTCGGCGCCCTCGTCGGTGCCGCCTGGCTCGTGCTGCGGCGCACGGGGCGGCGACCCCACCCCGACCGGGGCGGCCGAGGCTGGGCCCCGCGCGGCGTCGACGGACTGATGCCCCCGCGTGCCCTCGACGCCGACCCGCCGCCTGAGCGACCGATGAGTCCGGTGGAGCACTGGTTGCTCGCGCTGCCCGCCCCGTTCGTGGAGCAGGCGGACCTCGACCACACCGCCTGGTCGCTGGCCCCGGCGGCCGCCGACCACGCGTGCCGGCGGCGCGTCGAGGCCGCCGTGGTGGGCGCCGGACTGCGGGAGCGCGACGCCTGGCGTGCCCGTCGGGAGGCCGCGCAGCAGCAGGTGAACGCGGCGACGACGGCCGCGCAGCGCGCCTATGCGGTCGCCTGGGCGGCCTGGGTGCTGCGCCTCGGCGTCGCGGCCGGTCACCTGCGGACCTACCACGCCCGCGAGGATCTGCTGCGCACCGTCGGTGCCGTCGTCGGGCGGTACGGCGACTGGCCGACCTTCGGCGACGACTTCCTCGAGGAGGTCGCCCGGCGGGCGACGCCGCAGCAGGCCGAGGCGCTGCGCACCGCCGTCGGCCGGCTCTGCCGCCCCGGTGGTGCCTGGGGCGGGCGGCACTGGCCGGTCGAGGCGCTCTGAMYQLLEAIVAGTSSAAEGGADLVPTTVAGGLALGALVGAAWLVLRRTGRRPHPDRGGRGWAPRGVDGLMPPRALDADPPPERPMSPVEHWLLALPAPFVEQADLDHTAWSLAPAAADHACRRRVEAAVVGAGLRERDAWRARREAAQQQVNAATTAAQRAYAVAWAAWVLRLGVAAGHLRTYHAREDLLRTVGAVVGRYGDWPTFGDDFLEEVARRATPQQAEALRTAVGRLCRPGGAWGGRHWPVEALNANANANANA
AK018_035971008ccpA_7COG1609Catabolite control protein AGTGGCGGCCGAGAAACCAGACGTGCCGCTCGCGGTCGTGGCCGCCGAGGCGGGTGTCTCGGTGCCGACCGTGTCGAAGGTGCTCAACTCCCGCACCGACGTCGCCGGGGCGACGCGCGAACGGGTCGCCGCCGTGCTGCACCGGCACGGCTTCACGCTGCGCCCGCGCCGACGGCGTGCCACCGGGATGATCGACGTGCGCATCGTCGACCTCGAGGGCACCTGGTCCGAGGCGGTGGTGCGCGGCGCGGTCACCGGCGCTCGGCGCCTCGGGCTCGACGTCGTCCTCGCCGTCGAGCCCGACCCCGACGACTGCAGCTCCTGGGTGCGCCACGCCCTCGAGCGCGGCACCGACGGCCTGGTCAGCGTCGTGGCGGTGCCCGACGCCGAGGCGCGGCGGGCGCTCGCCGACTCCGAGACGCCGCTCGTCGTCGTCGACCCCCGGCAGCGGCCGCCCGAGGGCATGCTGTCGGTCAGCGCCACCAACTTCCAGGGCGGCCTCGAGGCCACCGCCCACCTGCTCGCGCTCGGGCACCGCCGGATCGCCACCATCACCGGTGCTCTGGAGCAGGACAACGCCATCGCCCGCCTGGCCGGCTACCGGGCCGCGCTGCTCCAGGCTCGCGTCGAGGTGGACGACGACCTCGTCGTCGACGGCCCGTACGGCGTGACCGCCGGGTACGACGGCGTGCAGCGGCTCCTCGAGCTCGCCGACCCGCCGACGGCGATCTTCGCCAGCAGCGACGACACCGCGCTCGGGGCCCTGCACGCACTGCGGGAGCGGGGCCTGTCGGTACCCCACGACGTGTCGCTCGTCGGGTTCGACGACCTGCCGGTGGCGCCCTGGATCGACCCGCCGCTGACCACCGTGCGGCAGCCGCTGGCCGAGATGGGGGCCACCGCCGTCGACCTGGTGCACCGGGCGCGCAGCGGTACCGGCCACACGCTGCGCACGGAGCTCGCGACGAGCCTGGTGGTCCGCGAGTCGGCGGTGGCTCCGTCGGCCTGAMAAEKPDVPLAVVAAEAGVSVPTVSKVLNSRTDVAGATRERVAAVLHRHGFTLRPRRRRATGMIDVRIVDLEGTWSEAVVRGAVTGARRLGLDVVLAVEPDPDDCSSWVRHALERGTDGLVSVVAVPDAEARRALADSETPLVVVDPRQRPPEGMLSVSATNFQGGLEATAHLLALGHRRIATITGALEQDNAIARLAGYRAALLQARVEVDDDLVVDGPYGVTAGYDGVQRLLELADPPTAIFASSDDTALGALHALRERGLSVPHDVSLVGFDDLPVAPWIDPPLTTVRQPLAEMGATAVDLVHRARSGTGHTLRTELATSLVVRESAVAPSAPGPT0017992_9498DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_035981287dasA_3COG1653Diacetylchitobiose binding protein DasAGTGATCATCACCTCGCGCCGCGCCGCCGCGGCGACAGCATCGACGCTCGTCCTGACCGTGGCCCTGACGGCCTGCGGGCGCGACGACGGCGACACCGGCTCGGGCGGCACCGACGACGCCGGCACCCAGGTGTCCGAGGGCCCCGCCACCGGCACCGTCGAGGTCTGGGCCATGGGGACCGAGGGCGAGCTGCTGCCCGAGCTGGCCGAGCAGTTCGAGGCCGACAACCCCGACGTGACCGTCGAGGTGACGCCCGTGCCCTGGGAGTCCGCCGTCCAGAAGATCAACACCGCGATGGCCACGGGCGAGGTCCCGGACGTCCTGCAGGCCGGCACCACCCTCATGAGCGGGTTCGTCGAGCTCGGCGGGCTGGCCGAGACGCCCGACAGCATCGACTCCGAGGCCTTCTTCCCCGGCGCCTGGGACACCACCGTCGTCGACGGCACGTCCTACGGCGTCCCCTGGTACGTCGAGACGCGGGTGCTGTACTACCGGACCGACCTCGCCGAGCAGGCCGGCGTCGACGAGCCGCAGACCTGGGACGAGCTCAAGGAGTTCGCCGCCGGCATGCAGGACGCCGGCGCCGAGCACGGCATCGCCCTGCAGACCAACGGCGACGGCACCGCGCTGATGTACTTCCCGTTCTACTGGCAGGCCGGCGGCGAGATCGTCGACGACGCCGGCGAGTTCACGCTCGCCGACGACGCCCAGGTCGAGGCGCTCGACTTCTACTCCTCCTTCATAGCCGACGGACTGGCCCCGCAGACCCTCGTCGAGGACGAGAAGGTCCAGGACTTCATCGACGGGGAGCTCGGTGCGTTCGTCTCCGGTCCGTGGGAGCGGTCGAACCTGCTCACGACCGCCGGCGACGACTTCGCCGACAAGTTCGCCGTCACCGCACTGCCCCCGGACGAGCAGGACGCCTCGTTCATCGGCGGCTCCAACCTCGCCGTGACCGCCGAGGCCGCCAACCCCGACGCCGCGTGGAAGTTCGTCGAGTTCGCCACCGACCCCGAGGTCCAGGTGGACTGGTTCGAGATCTCGAACGACCTGCCCGCCGTCCAGGCCTCCTGGGACGACGAAGCCCTGGCCGGGGACGAGTCGCTCGCGGTCTACGGCGAGGCGCTCGAGACCGCCCGCTCCACGCCCGCGCTGCCCACCTGGTCCGAGATCGAGCACGAGCTGAACCTCGTGATCGAGCAGGTGGTCAACGGCCAGCTCGAGCCCGATGAGGCCGCCCAGCAGATGCAGGACGCCGCCACCTCCATCGGCGACGGGCTGGGCTGAMIITSRRAAAATASTLVLTVALTACGRDDGDTGSGGTDDAGTQVSEGPATGTVEVWAMGTEGELLPELAEQFEADNPDVTVEVTPVPWESAVQKINTAMATGEVPDVLQAGTTLMSGFVELGGLAETPDSIDSEAFFPGAWDTTVVDGTSYGVPWYVETRVLYYRTDLAEQAGVDEPQTWDELKEFAAGMQDAGAEHGIALQTNGDGTALMYFPFYWQAGGEIVDDAGEFTLADDAQVEALDFYSSFIADGLAPQTLVEDEKVQDFIDGELGAFVSGPWERSNLLTTAGDDFADKFAVTALPPDEQDASFIGGSNLAVTAEAANPDAAWKFVEFATDPEVQVDWFEISNDLPAVQASWDDEALAGDESLAVYGEALETARSTPALPTWSEIEHELNLVIEQVVNGQLEPDEAAQQMQDAATSIGDGLGPGPT0016545_7474DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_03599948lacF_5Lactose transport system permease protein LacFGTGGCCCTGCGCACCGACGCGCCGCCGGCCCCCGGCGGCCCCGCGACGCGGGGCCGCCGCCCGGAAAGCGCCCGACGACGACGCCGCGGGTACGCGGCCTGGGGCTTCGCCCTGCCGTTCACCGTCCTGTTCGCCGTGTTCATGATCCTGCCGGTGGGCGCCTCGCTGTACATGGCGTTCACCGACATGCGCGGCGCCGACCTGCGGTCCCCGCTGGCGGTGAACTTCATCGGCCTCGACAACTTCGTCGCGGCCGTCACCGACCCGCAGTTCCAGCAGGCCGCCGGCAACACGGTGTACTTCGTCGGGGTGGCGATGCCCCTCACCCTCGGCATCGCGCTGCTGCTCGCCGCACTGCTGAACTCCGGGCTCACCTGGTTCCGGTCGGTGTTCCGCGTCGGGTTCTACGCCCCGGTGGTGACCTCGATCGTCGCGGTCGCCGTCGTCTGGCGCTTCCTGCTGCAGCCCGACTTCGGGCTCATCAACTCCGCGCTCGGGCTGGTCGGGATCGACGGCCCGGACTGGCTCACCGACCCGACCTGGGCGATGCCGTCGCTGATCATGCTCGCCGTCTGGCGCAACGTCGGCTTCTCGATGGTCATCCTGCTCGCCGGCCTGCAGGGCATCCCCAAGGACCTGTACGAGGCGGCGTCGCTCGACGGCGCCGGTGCGGTGCGCACCTTCCGCTCCGTGACCGTGCCGCTGCTGCGCCCCACGCTGCTGTTCTGCGCCGTCATGACCGGCATCGCCTACCTGCAGTTCTTCGAGGAGCCGTTCGTGATGACCCAGGGCGGCCCGCTCGGCGCCACCAACTCGGTGGCCTACGAGATCTACAACCAGTTCGGGTTCGGCGACTACGGCCTGTCCGCCGCGATGAGCTACCTGCTGTTCGTGGCCATCGCGATCCTGTCCTTCCTCCAGTTCCGCCTGCTGCGGCCCAAGAACTGAMALRTDAPPAPGGPATRGRRPESARRRRRGYAAWGFALPFTVLFAVFMILPVGASLYMAFTDMRGADLRSPLAVNFIGLDNFVAAVTDPQFQQAAGNTVYFVGVAMPLTLGIALLLAALLNSGLTWFRSVFRVGFYAPVVTSIVAVAVVWRFLLQPDFGLINSALGLVGIDGPDWLTDPTWAMPSLIMLAVWRNVGFSMVILLAGLQGIPKDLYEAASLDGAGAVRTFRSVTVPLLRPTLLFCAVMTGIAYLQFFEEPFVMTQGGPLGATNSVAYEIYNQFGFGDYGLSAAMSYLLFVAIAILSFLQFRLLRPKNPGPT0016535_2502DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_03600918araQ_5COG0395L-arabinose transport system permease protein AraQGTGACCACCACACCCCTGCCCCCGGCGACGACCAGCGCCGCACCGGGCACCGACACCGCGACCGAGTCCGAGCAGCGCACCCGCGGCGACCGCCGTCGTCTGTTCACCCCCCGCGCGCTGCTGCTCAACGGCGCCCTGCTCGTCGGGCTCGTCGCCTCGCTCGGCCCGCTCGTCTGGATGGTCCTGTCCTCGGTGAAGCCCGAGAGCGAGATCCGCCAGTTCCCGCCCACCCTGATCCCCCAGGACGTCACGCTGGAGAACTACACCCAGCTGTTCGACCGCCTGAACTTCCCGCAGTTCTTCTTCAACTCCGTGGTCGTGGCGCTGGCCGTCACCGTCGGGGCGGTGCTGTTCAGCGCGATGGTCGGCTACGCCCTGGCCAAGATCGACTTCCCCGGCCGCAGGGCGCTGTTCCTGCTGATCATGGCCACGCTGATGGTGCCCGGCACCATCACGTTCGTGCCGCTGTTCGTGCTGGTCGCGAACCTCGACCTGGTCAACACCTACGCCGCACTCATCCTGCCGTTCCTCGCCGCACCGTTCGGCGTGTTCCTCATGCGGCAGTTCATGCTCGACATCCCCGACGAGCTGCTGGACGCCGCGCGGGTCGACGGCGCCGGGGAGTTCCGCACGTTCTTCCGCATCGTGCTGCCCCAGACCGGCCCCGCGCTCGCCACGCTCGGGATCCTGACCTTCCTCGGCTCCTGGAACAACTTCCTGTGGCCGCTCGTGGCCGTGCAGTCGGCCGACATGTACACCCTGCCCGTCGCCCTCGCCCTGTACTCCACCGGCCAGAACACCGTGCAGTACGGCCTGCTGCTCGCCGGCGCGACCGTCATCGTGACGCCGATCCTCGTCGTCTTCCTCGTGCTGCAGCGCCGCATCATCCAGGGCATCGCCACCACCGGCATCAAGTAAMTTTPLPPATTSAAPGTDTATESEQRTRGDRRRLFTPRALLLNGALLVGLVASLGPLVWMVLSSVKPESEIRQFPPTLIPQDVTLENYTQLFDRLNFPQFFFNSVVVALAVTVGAVLFSAMVGYALAKIDFPGRRALFLLIMATLMVPGTITFVPLFVLVANLDLVNTYAALILPFLAAPFGVFLMRQFMLDIPDELLDAARVDGAGEFRTFFRIVLPQTGPALATLGILTFLGSWNNFLWPLVAVQSADMYTLPVALALYSTGQNTVQYGLLLAGATVIVTPILVVFLVLQRRIIQGIATTGIKPGPT0016540_7804DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_036011191bglABeta-glucosidaseGTGACCGACACGATCACGCTGCCCGCCGCACCCGACTTCCTGTGGGGCGCCTCGACGGCGGCGCACCAGATCGAGGGCGGCAACGTCAACAGCGACTGGTGGGCCAAGGAGCACCAGCCCGGCACCCTGTGCGCCGAAAGCTCCGGCGACGCCGTCGACAGCTACCACCGCTACGGCGAGGACGTCCGCCTGCTGGCCGACGCCGGGCTCAACGCCTACCGCTTCTCCGTGGAGTGGGCGCGCATCGAGCCCGCCGAGGGCGAGTTCTCCCGCGCCCAGCTCGACCACTACCGCCGCATGATCGACACCTGCCTCGCCGCCGGCGTCACCCCGATCGTCACGCTGCTGCACTTCACGCTGCCGCGCTGGTTCGCCGAGCGGGGCGGCTGGCTCGCCCCCGACGCCGTCGACACCTACACCCGCTACGTCGAGACCGTCGCGACGATCCTCGACGACGTCCACCAGGTCGTCACCATCAACGAACCCAACATCACCTCGATGATGCTGGGCGCGAGCCGCCGCACCAACCTCGACGCCGCCGGCCTGGCCGCACCGGACCAGGAGGCCTCCGAGGTGCAGGCCAAGGCGCACCGCCGCGCCGTGGAGATCATGCGGTCGCTCGGGCACGTGCGCGCCGGCTGGTCGATCGCCAACCAGGTCTTCCAGGCCGCACCCGGCGCCGAGGAGGCCCGCGACGCCTACGCCTGGCCCCGCGAGGACTTCTTCCTCGAGGTGGCGCGCGACGACGACTTCGTCGGCGTGCAGAGCTACCTGCGCACCATCATCGGGACCGACGGCGAACCCGTCCCCTTCGGCGACGACGTCGAGAAGACGCTGACCGGCTGGGAGTACTACCCCCAGGCGCTCGGCGAGGCCCTCGAGTACTCCCACCGCATCACCGGTGGCGTTCCCATGCTCGTCACCGAGAACGGCATGGCCACCGCCGACGACGCGCGCCGCATCGACTACACCCGCGACGCCCTGGCCGGGATGGCCCGCGCCATGGACGCCGGCTGCCGCGTCGAGGGATACCTGCACTGGTCGCTGCTCGACAACTACGAGTGGATGTCCGGCTTCCGCCCGACCTTCGGGCTGATCGCCGTCGACCGGAGCACGTTCGTGCGCACCCCCAAGCCGAGCCTCGCCTGGCTCGGACGGGTGGCACGGACCGGAAGCCTCCCGGCCTCCTGAMTDTITLPAAPDFLWGASTAAHQIEGGNVNSDWWAKEHQPGTLCAESSGDAVDSYHRYGEDVRLLADAGLNAYRFSVEWARIEPAEGEFSRAQLDHYRRMIDTCLAAGVTPIVTLLHFTLPRWFAERGGWLAPDAVDTYTRYVETVATILDDVHQVVTINEPNITSMMLGASRRTNLDAAGLAAPDQEASEVQAKAHRRAVEIMRSLGHVRAGWSIANQVFQAAPGAEEARDAYAWPREDFFLEVARDDDFVGVQSYLRTIIGTDGEPVPFGDDVEKTLTGWEYYPQALGEALEYSHRITGGVPMLVTENGMATADDARRIDYTRDALAGMARAMDAGCRVEGYLHWSLLDNYEWMSGFRPTFGLIAVDRSTFVRTPKPSLAWLGRVARTGSLPASPGPT0019165_3009DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
AK018_036021614hypothetical proteinATGACCAGACGACGGACCACCGTGGCCGCGCTCGCGGCCGCCGGCGTGGCGCTCGCCGCGAGCACCACGATCCCGGCGAGCGCGACGAGCACCGCCGGACCGGCCGCCGCCGAACGGGCCGCGCACGACCGCGGCGACGACGACCGCGGCAAGGACCGGGGCAAGGGCAAGCACCAGCGGCTGCTGGAGCGGTGGACGCAGGACACGTGGACCTCGTTCGAGGCCCTCGTGGTCGACGAGACCGGCCTGCCCGACGACAACATCGGCGGCGACCTGAGCCCCGAGAGCCGCGGCGGGTACACCTCGCCGACGAACATCGGCGCCTACCTGTGGAGCACCGTCGTCGCCCGGGACACCGGGCTGATCGACGACACCGAGGCCCGCGACCGCATGGCCACCACGCTGGAGTCGGTGGCCGGGCTCGAGAAGCACGAGCCGAGCGGCATGTTCTACAACTGGTACGACCCGGCCACGGGCGCCAAGCTCGACGCGCTGGGCGAGGACGACCCGGTCGAGCCGTTCCTGTCCAGCGTGGACAACGGCTGGCTGGCCACCGGTCTGCTGCTGGCCTCGAACGCCGAGCCGTCGCTGGCCGACGAGGCGGACGCCGTGCGCGAGCAGATGGACTTCGGCTGCTTCTACGACCCGGAGGTCAACCAGATCCGCGGCGGCTTCTGGGACACCGACCAGGACGACCCGAACCTGCCCGCCGACGACTACTGCGGCATGGGCACCGACGTCTGGTACACCGGCCACCACTACGGCGCGTTCAACACCGAGCCGCGCATCGCGTCCTACCTGGGGATCGCCGAGGGGCAGATCCCGGCCGAGCACTACTTCGGTCCGGTGCGCACGTTCGAGCCGACCTGCGACTGGTCGTGGACGGAGACGGACGCCTCCGGGGAGTGGAGGAGCTACCTCGGTGTCGACGTCTTCGAGGGGACGCTCCCCTACCGCGGCATGGACATCGTGCCGACCTGGGGCGGCAGCATGTTCGAGGCGCTGATGGTGCCGTTGTTCGTCCCCGAGGAGGAGTGGGGCCCCGACTCCTGGGCCGTCAACCACCCGCTGTACGTCCAGGGCCAGATCGAGCACGGTCTGAAGGAGGCCGACTACGGGTACTGGGGCTTCTCGCCGTCGAACGACCCGGCGGGCGGCTACCGCGAGTACGGCGTCGACCAGCTCGGCATGGACGGTCCGGGGTACACCTCCGACCAGGAGCGCACCTCGGTGGACCAGCCGTACGAGGGCTGCCGCGAGGGTTCCGAGGCGCCCACGGAGTACGGCGACGGCGTCGTCACCCCGCACGCCTCCTTCCTCGCGCTGCGGTACGCGCCGCAGGAGGCGGTCAAGAACCTGCGCAGGATCGCCCGCGACTTCGACGCCTACGGCCCCGGCGGCTTCTACGACGCCGTCGCCGTGCGCAGCGGTCAGGTGTCCGAGCGCTACCTCGCCCTCGACCAGGGCATGATCATGGCCGCGCTCGGCAACGCGCTCGACCACGACTCCGTGCGCGGCTACGTCTCCGACGGCGCCGTCGAGGACTCGCTGCGGCCGCTGATGGAGATGGAGGAGTTCGGCTCCTCCGGCCGGGGTCCGTCGCACGGGAAGTGAMTRRRTTVAALAAAGVALAASTTIPASATSTAGPAAAERAAHDRGDDDRGKDRGKGKHQRLLERWTQDTWTSFEALVVDETGLPDDNIGGDLSPESRGGYTSPTNIGAYLWSTVVARDTGLIDDTEARDRMATTLESVAGLEKHEPSGMFYNWYDPATGAKLDALGEDDPVEPFLSSVDNGWLATGLLLASNAEPSLADEADAVREQMDFGCFYDPEVNQIRGGFWDTDQDDPNLPADDYCGMGTDVWYTGHHYGAFNTEPRIASYLGIAEGQIPAEHYFGPVRTFEPTCDWSWTETDASGEWRSYLGVDVFEGTLPYRGMDIVPTWGGSMFEALMVPLFVPEEEWGPDSWAVNHPLYVQGQIEHGLKEADYGYWGFSPSNDPAGGYREYGVDQLGMDGPGYTSDQERTSVDQPYEGCREGSEAPTEYGDGVVTPHASFLALRYAPQEAVKNLRRIARDFDAYGPGGFYDAVAVRSGQVSERYLALDQGMIMAALGNALDHDSVRGYVSDGAVEDSLRPLMEMEEFGSSGRGPSHGKNANANANANA
AK018_036031632dexBCOG0366Glucan 1,6-alpha-glucosidaseATGGCCGGCACGAACCCGGACCGCGGCACCACGGCGCCGGTCGCCGATCTGGCGGACCGCCTCGACCGCACGGTGCTCTACCAGATCTACCCGCAGAGCTTCGCGGACGCCGACGGCGACGGCATCGGCGACCTGCGCGGTATCGCCGACCGCCTGGACTACCTGGCCTGGCTCGGGGTCGACGCGATCTGGATCAGCCCCTGCTTCGTCTCCCCGTTCGCCGACGCCGGCTACGACGTCGCCGACTTCCTGCGCATCGCACCGCGGTACGGCAGCAACGCCGACCTGGAGCACCTCACCGAGCAGGCCGCCCGGCGCGGGATCGCGGTGCTGCTCGACCTCGTGGCGGGCCACACCTCGGACCAGCACCCCTGGTTCCGTGCCGCAATCGACGACCCGGACGACGACCGGTACGTGTGGAGCGACGTGCCCGTCGACGGGTTCGAACCCGGGCCCGGTCGGCGCGGCGGGTACTACCGGCCCAACTTCTTCCCCGTGCAGCCCGCCCTCAACTACGGGTACGCGCGCCTCGACCCGGCCGAACCGTGGCGGCAGCCCGTCGACGCACCCGGCCCGCAGGCCAACCGCTCCGCGCTGCGCGAGATCCTGGCGTTCTGGTTCGACCGCGGCGTCGCCGGCTTCCGCGTCGACATGGCGGCCTCCCTGGTCAAGGACGATCCCGGGCTCGCCGAGACGCGACGCCTCTGGCAGGAGATGCGCGCCTGGCTGGACCGCACCTATCCCGGCCGGGTCCTGATCAGCGAGTGGGGCGACCCGAAGGTCGCCGTGCCCGCGGGCTTCCACGCCGACTTCCTGCTGCAGTTCGGCGGGGACGACGACGGCCTGCCGCTGCGCTCGCTGTGGAACAACGGCGCCGGCACCACCCAGCCCACCTGGGGTGACGTGCCCGCGTGGGCCGACGCCGAGGCGCGCGGCGACGCCGCCACGTTCGTCCGGGAGTGGTCGGCGGCGACCGACGCGATCGACGCCGCCGGGCGGGGCGGCGTCGTGGGGCTGCCGACGTCGAACCACGACTTCACGCGGCTCGTCGCCGGCCCGCGCGACGCCGAGCAGGCGCGGGCAGCCCACGTGCTGGTGATGACCTGGCCCGCCCTGCCGTCGGTGTACTACGGCGACGAGATCGGGATGCGGTACGTGCCGGACGCCCCGACCACGGAGGGCTCCCGGCTCGGGCCCACCTACGACCGCGCCGGGTCGCGCACCCCGATGCCGTGGGGCGACATGCCCGCCGACGGCTTCGGGCCGGGGACGCCCGCGACGTCGTCGTACCTGCCCCTCGACCCCGACCCGGGCCGTCCCACCGTGGCCGACCAGGTCGACGACCCCGGCTCCCTGCTCCACCTCGTCCGCGAGCTGATGGCGCTGCGCCACGGTGACCGGCGGCTCGACGTCGGCTCGCCTGTCGAGGTGCTGGCCACCGGCTACCCGATGGCCTACCTGCGCGGCGGCACCCTCGCCGTCGTGCTCAATCCCGGTCGGGTCGCGGTCGAGACGGTGCTGCCCGGCGCCGACGGCGCCCGGCCGGTGCTGGCCCGCGGGCTGCGGGTCGACGAGGACGCGGTTCACCTCGACGGCTTCGGCTACGCCGTCCTCGACGTGGACCCGCGGTAGMAGTNPDRGTTAPVADLADRLDRTVLYQIYPQSFADADGDGIGDLRGIADRLDYLAWLGVDAIWISPCFVSPFADAGYDVADFLRIAPRYGSNADLEHLTEQAARRGIAVLLDLVAGHTSDQHPWFRAAIDDPDDDRYVWSDVPVDGFEPGPGRRGGYYRPNFFPVQPALNYGYARLDPAEPWRQPVDAPGPQANRSALREILAFWFDRGVAGFRVDMAASLVKDDPGLAETRRLWQEMRAWLDRTYPGRVLISEWGDPKVAVPAGFHADFLLQFGGDDDGLPLRSLWNNGAGTTQPTWGDVPAWADAEARGDAATFVREWSAATDAIDAAGRGGVVGLPTSNHDFTRLVAGPRDAEQARAAHVLVMTWPALPSVYYGDEIGMRYVPDAPTTEGSRLGPTYDRAGSRTPMPWGDMPADGFGPGTPATSSYLPLDPDPGRPTVADQVDDPGSLLHLVRELMALRHGDRRLDVGSPVEVLATGYPMAYLRGGTLAVVLNPGRVAVETVLPGADGARPVLARGLRVDEDAVHLDGFGYAVLDVDPRPGPT0018560_5342DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_03604795hypothetical proteinATGACGCACATCGACCCCACGACGGACGACTACGCGGTGCTGCGCGACATCCTCGATCTGGCCGATCCGCGGCGGCATCCGCCGACCGTCGACGTGGTGGGCGAGATCCTGCGGCACCTCGAGGCGTTGCTGCGGTCCGATGGCGTGGCCTTTCACGCGATGGACGTACGCGACTTCTCCCTCCAGCACGCGCAGGAGTCGTTCATGGGTGAGCTCTCCGTGGCCGGGCCGGAGGAGCTGGGCCCACCGGACGTCGAGGCCGACGGGTGCCAGGTCCTCCTCGACCACTGGTGGACCTCGACGTGCAGCCTCATCGAGCGCACGGCGGCGCCCGTGGCGACGAGCATCCGGGAGCACTACAGCGAGCGGCGCTGGGCGCAGCATCCGGTGCGCCGGGACTACCTACCGTACGACGACGAGATCCTCCTCGGCTACCCGGACGGGCCGTGGAAGTCCCTGCGCCTGCTGGCCGGGCGCGAGGGCGGCCCGATCTTCTCCGACCGCGAGCTGACGATCTGCCGGCTCCTGCTGCCCTGGCTGCGTGATGTGCTCGCCGCCGTCGTCGTCCCGCCCCCGCCGCCGGCCGGCTGCCTGACCGAGCGGCAGGTGGAGATCCTGCGCCTGGTCGAGCTGGGCATGTCGAACGCGGAGATCGGCGCGGCGCTGACGATCTCGCCCACGACCGTGCGTACCCACCTGGAGCACGTGTTCGAGCGGCTCGGTGTGACCACGCGGATGGCCGCGGTCGCCGCGGCGTTCGGGGGAGCCCCGGCGCGCGAGGTCGCGCCGGCGTGAMTHIDPTTDDYAVLRDILDLADPRRHPPTVDVVGEILRHLEALLRSDGVAFHAMDVRDFSLQHAQESFMGELSVAGPEELGPPDVEADGCQVLLDHWWTSTCSLIERTAAPVATSIREHYSERRWAQHPVRRDYLPYDDEILLGYPDGPWKSLRLLAGREGGPIFSDRELTICRLLLPWLRDVLAAVVVPPPPPAGCLTERQVEILRLVELGMSNAEIGAALTISPTTVRTHLEHVFERLGVTTRMAAVAAAFGGAPAREVAPANANANANANA
AK018_03605639hypothetical proteinATGACCACCGCCGGACCCCGCACCACCCCGCTGGCCCACCGCCGCCGTCGTCCGGCGACGCTCCTCGCCGCGCTCCTCGTGGCCACGACCGCCGCACCCGCCGCGGCGGACCCGTCGTCGGACCTCGTGCCCCAGGTCGAGGACGCCCCGCCGCCGATCGGCATCGAGGTGCTCTCCGGGCACGCCGACTTCCCCGACGACGTCGCCGTGACGATCCGCCGCAAGCTCCCCGGCGAACGCCGCGACCGGATCCGCCTGAAGGACGCCGGGACGATCGTCGTCGCACGACTCACCGTGCAGCCCGGCGCACGCTTCCCGTGGCACACCCACCCCGGACCCGTCGTGGTCTCCGTCGTCGACGGCGACCTCGTCTACCAGCAGGCCTCCGACTGCGTCGAACGCGACTACACCAGCAGCGAGGCGTTCGTGGACCCGGGCGACGAGGTCCACACCGCGTGGAACCCCGGCGACGCACCCACCGTGCTGATGGCCACGTTCTACGGCGTGCCCGACGGCGGCCCGGTCACGATCCCCGTCACCGACCCGCCGGACTACTGCAACGCCCGCGCCCGTGACAACCACGGACCGCGCAAGCCGCGCACCGCCCGCCCGGTCCCGGGATGGTTCAGCGTGCGGTGAMTTAGPRTTPLAHRRRRPATLLAALLVATTAAPAAADPSSDLVPQVEDAPPPIGIEVLSGHADFPDDVAVTIRRKLPGERRDRIRLKDAGTIVVARLTVQPGARFPWHTHPGPVVVSVVDGDLVYQQASDCVERDYTSSEAFVDPGDEVHTAWNPGDAPTVLMATFYGVPDGGPVTIPVTDPPDYCNARARDNHGPRKPRTARPVPGWFSVRNANANANANA
AK018_036061572lutP_1COG1620L-lactate permeaseGTGCTGACGCTCCTGGCGGCACTGCCCATCGTCGCGATCCTCGTGCTGATGGTCGCGGTCAAGTGGTCCGCCGCCGCGGCGGGCGCGACCGCCGCCGTCGGCGCCATGGTGCTCGCCCTGACCGCGTTCGACTTCGGCGGGGCCGACTTCGCGTTCGGCCCCGTCGAGGGCGTCGTCGGGGTGCTCGCCCGTGCGGCCTGGGTGGCGCTCACCGTCATGCTGATCATCGGCCCGGCGCTCGGTATCCACCACCTGCAGCAGGCCACCGGCGCCACCAAGGCGCTCGAGGCCGGGCTCGCCCGGATCACCCCCGACCCGCGGGTCGCCGCCCTGCTCATCGTGTGGTTCTTCTGCCTGCTCATCGAGGGCGCCGCCGGGTTCGGTACCCCCGTGGCGCTCGCGGCCCCGTTCCTCGTGGCCGCCGGGTTCAAGCCGGTCACCGCCGTCGTCGGCGCCATGCTCGGGCACGCCTCCGCCGTGCCGTTCGCCGCCGTCGGTACGCCGACCCTCGCCCAGCTCGCCATCGTCGACTACGCCCCGCGCGAGCTCTCCTGGGCCGTCGCGCCCTACATGGCGCTCGCCGGGCTGGTGCTCGCCCTCATGGTGGCCCGCCTCGTCGGCACCCTGCTGCCCACCGCCGGCCCGCCCTGGGGGTGGATGGCCGTCGCCTACGTCGCGTTCTTCGTGCCCAACCTGCTCATCGCGCGGTTCGTGGGCCCCGAGCTGCCCTCGCTCGTCGGGTCGATCGGCGGCGCGATCGTGTTCGTCCTGGTCGTGCGCGCGGTCGTGCGACGGCGGTCCTTCGTCTCCCGGCCCGCCGCGGCCGGTGAGCAGCCGGCCGAGGCCGCGGCCGAGGAAGCCGTCACCGGGGCCGCCGACGCCGAGCGGGCACCCCGGATGTCCTTCCTCGCGGCCACCGCGCCCTACCTCGTCCTCGTGGTGCTCGTGCTGATCACCCGCCTGGTCGTGCCCGTCAAGGAGGCCGCCCAGTCGGTGGTGTGGGAGTGGGAGCTGTTCGGCCACTTCTCCGAGAGCATCGAGCCGCTCTACCACCCCGGGCTCCTGCTCGCCCTGGCCTACCTCGCCGGCGCGCTCTGGCAGCGGGCCTCCCTGGCCGACGTCGGCACCGCGTTCCGCCGCGCCACCTGGCAGGTCGTGCCCGTGTTCGTCGCGCTCGTCGCCATGGTGACCGTCGCCTTCACCATGTCCGAGGCCGGCATGACCACCCAGCTCGCCGTCGCCGCCGCGAGCGCCGGCGCCCTGTGGCCCGTGCTGTCCCCGTTCGTCGGCGCGCTCGGCACGTTCATGACCGGGTCGGCGACGGCGTCGAACATCCTGTTCACCGAGTTTCAGGACCAGACGGCGCTCGCGGCCGACCTGGACCCGGTGCCGCTGCTGGGTGCGCAGGGTGCCGGGGCGGCGATCGGCAACGTCATCTGCCCGCACAACGTGGTCGCGGCGGCGGCGACGGTGGGCCTGGGCGGCCGGGAGGGCCAGGTGCTGCGGCAGGCCCTGCCGGTCGCCGCGGTGTGCCTGGTGCTCATCGGCGCGATGGCGTGGGTGATCGTCTGAMLTLLAALPIVAILVLMVAVKWSAAAAGATAAVGAMVLALTAFDFGGADFAFGPVEGVVGVLARAAWVALTVMLIIGPALGIHHLQQATGATKALEAGLARITPDPRVAALLIVWFFCLLIEGAAGFGTPVALAAPFLVAAGFKPVTAVVGAMLGHASAVPFAAVGTPTLAQLAIVDYAPRELSWAVAPYMALAGLVLALMVARLVGTLLPTAGPPWGWMAVAYVAFFVPNLLIARFVGPELPSLVGSIGGAIVFVLVVRAVVRRRSFVSRPAAAGEQPAEAAAEEAVTGAADAERAPRMSFLAATAPYLVLVVLVLITRLVVPVKEAAQSVVWEWELFGHFSESIEPLYHPGLLLALAYLAGALWQRASLADVGTAFRRATWQVVPVFVALVAMVTVAFTMSEAGMTTQLAVAAASAGALWPVLSPFVGALGTFMTGSATASNILFTEFQDQTALAADLDPVPLLGAQGAGAAIGNVICPHNVVAAAATVGLGGREGQVLRQALPVAAVCLVLIGAMAWVIVPGPT0001800_1938DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_LACTATE_TRANSPORT,PGPT0001800-lctP-K03303NANA
AK018_03607501hypothetical proteinATGAACCCCCTGACCGAGAAGCAGATCCGCGCGTCCTTCGTCAACGCCTCCAAGCGCGAGGCCGCCCAGGCCACGCTGCCCGACCTGGCCGCGACCGACTGGGAACGCCTCGACTACCTGGGCTGGCACGACCGCAAGGCGCCCCTGGCCGCCTACGTCGTCCTCGAGATCGACGGCGTGCCCGTCGGCGTCCGCCTGCGGGCCGCCGACGCCAAGTCCGGCCGCGGCCGCCACGGCCTGTGCGCCTGGTGCGAGGACGTGATCGACGACGCCGAGGTGTCGCTCTACGTGGCCCGGCGCGGCGGCGCGTCCGGCAAGAACGGCAACTCCATCGGCACGCTCGTGTGCACCGACTTCGGCTGCTCGCGCAACGTGCGCCGGGCGCCCGCACCCTTCGAGGTGGTCGACCCGGCCGAGCGTGAGGAATTCGTCCGACGCCGGACCGCGGCGCTGCGCGAACGCTCCGCCCGGTTCGTGGCCGAGGTGCGCAGCACCCGCTGAMNPLTEKQIRASFVNASKREAAQATLPDLAATDWERLDYLGWHDRKAPLAAYVVLEIDGVPVGVRLRAADAKSGRGRHGLCAWCEDVIDDAEVSLYVARRGGASGKNGNSIGTLVCTDFGCSRNVRRAPAPFEVVDPAEREEFVRRRTAALRERSARFVAEVRSTRNANANANANA
AK018_036081266ybjJ_2Inner membrane protein YbjJATGAGCGACGTGCCCACCACGCCCCACCCGGCGCCGGCCGCCCGCCGGGCGCGCGCCGCGGTGTCCGCGCTGTTCCTGACCAACGGCGCCCTGTTCGCGAACCTGGTGCCCCGGTATCCGGAGATCAAGGCGTCCCTGGAGCTCAGCAACACGGCGTACGGGCTGGCGGTCATCGCGTTCCCCGCCGGGGCGATCGCCTCCGGCCTCGCCGCCGGCGCCCTCGTGCGGCGGATCGGCTCGGCGCGCACCGCCGTGTTCGGCACGGTGCTGACCGCGCTCGGCGTGCTGGGGGCCGGCCTCGCCCCGAGCCTGGGCCTGTTCGTCCTGGCGCTGCTGCTCGGCGGTGCGATGGACGCGCTGACCGACGTCGGGCAGAACGCGCACGGGCTGCGCGTGCAGCGCCGCTACGGCCGCTCCATCTTCAACGCGTTCCACGCCCTGTGGTCGATGGGGGCCATGGTCGGCGGCGCGATGGCGGCCGCCGCGATCGCCCTGGACGTCCCCCTCGGCATCCACCTGGCGGTGTCCGGTGCGCTGTTCGTGACGGTGGCGCTGGTCGCCCTGCGCTTCTGCCTGCCGGGGCTCGACGGCGAGGCGCGCGCGGCGGACGTCGCCGCCTCCGGCGTGCACGACGGAGGGACGGTCGAGGGCGGCCGGCCCGACGACGGCGCGCCCGGACCGGCGCGCGCGGGCTCCCGGATCCTGTGGCTGCTGGTGGCGCTCGTCGTGGTGGCGATCTCCGGGGCCGTCGTCGAGGAGGCGACCGGGTCGTGGGCCGCCGTCTACCTCGCGGACGCCCTCGACGCCCCGGGCGCGGTCGCCGCGACGGCGTTCATCGCGTTCATGGCCGCGCAGTTCGTGGGTCGGGTGACCGGTGACCGGGTCGTGGACCGGTTCGGGCAGCGGGCCGTGGCCCGGGCCGGCGGGGTGCTCGTCGCCCTCGCGACCGGCGTCATGCTGGCGTTCCCGTCGCTGCCGGGCACGGTGGTCGGGTTCGCCGTCGCCGGGTTCGGCGTCGCGACCGTCATCCCCGCGGCGATGCACGCCGCCGACGAGCTGCCCGGCCTGCGGGCCGGCACCGGGCTGACGGTTGTCACATGGCTGATGCGCCTCGGTTTCCTGCTCACCCCGCCGGTCGTGGGGGTGATCGCCGACGCCACGCAGCTGCGGGTCGGGCTGCTGGTGCTGCCGCTGGCGGGGATCGCGATCGTGCTCGCGGGGGCCGCGCTGCAGGGGCGGCGGACGGTCAGCCTCCCGGACGCCTGAMSDVPTTPHPAPAARRARAAVSALFLTNGALFANLVPRYPEIKASLELSNTAYGLAVIAFPAGAIASGLAAGALVRRIGSARTAVFGTVLTALGVLGAGLAPSLGLFVLALLLGGAMDALTDVGQNAHGLRVQRRYGRSIFNAFHALWSMGAMVGGAMAAAAIALDVPLGIHLAVSGALFVTVALVALRFCLPGLDGEARAADVAASGVHDGGTVEGGRPDDGAPGPARAGSRILWLLVALVVVAISGAVVEEATGSWAAVYLADALDAPGAVAATAFIAFMAAQFVGRVTGDRVVDRFGQRAVARAGGVLVALATGVMLAFPSLPGTVVGFAVAGFGVATVIPAAMHAADELPGLRAGTGLTVVTWLMRLGFLLTPPVVGVIADATQLRVGLLVLPLAGIAIVLAGAALQGRRTVSLPDANANANANANA
AK018_03609600rcdACOG3226HTH-type transcriptional regulator RcdAATGAGCGCCGCTCACCCGCCGCCGGCCGGCCGCACCGACCCGGCGCCGTCGTCCCGCCGTCGCCGGCACGACCCCGACCGGCGTGACCGCATCGTCGCTGCCTGCCTCGACGTCCTGGCCGAGCACGGTGTCGCCGGGACGTCGCACCGCCGCGTCGCGGCTGCCGCCGACGTCCCGCTGGGTTCCATGACCTACCACTTCGACGGCATGGATGACCTGCTGCGGGCGGCGTTCGGACGGTTCGCAGAGGAGGCGGCCGCCGCGTTCGAGCGACGCATGACGGCGGCCCGCGACCTGGACGAGGCCCGTGCGGCGGTGGTCGCGCTCATCACCGAGGACGTCTTCGCGACCCGCCGCGACCTGGTGCTCACCCACGAGCTCTACACCCTCGCGGCCCGCGAACCCGCGTTCCGCACCCTGACGAACGCGTGGATGCGTCGCAGCCGCCGCGCGCTCGAACGGCACTTCGACCCCACCACCACGCGCCTCGTCGACGCCTTCATCGAGGGGGTCACCATCCACCGCGCCCTGGACACCGAACCGGCCGACGACGCCGACGTGCGTGACGCCGTCGCGCGGCTGACGGCGGGAGCCGCATGAMSAAHPPPAGRTDPAPSSRRRRHDPDRRDRIVAACLDVLAEHGVAGTSHRRVAAAADVPLGSMTYHFDGMDDLLRAAFGRFAEEAAAAFERRMTAARDLDEARAAVVALITEDVFATRRDLVLTHELYTLAAREPAFRTLTNAWMRRSRRALERHFDPTTTRLVDAFIEGVTIHRALDTEPADDADVRDAVARLTAGAAPGPT0014935_142DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014935-rcdA-K23778NANA
AK018_03610624hypothetical proteinATGGACGCGCGCGAGTCGACGTATCTGCCCGGGCGTCGGCACACCCGTGGCTGGGTGTTCGGCAGCATGCTCGTCTCGGCGCTGATCAGCCTCACCGCGTCGCTCGTGCTGTCGATCGACGCCGTCGTCCTCGCCGCCGACGCCGGCACCGACCTGGCCTGCGACATCAACGCCGTGATCTCGTGCGGCACCGTCGCCCTGTCCTGGCAGGCCCAGCTCCTCGGGTTCCCCAACGCGTTCCTCGGGCTCATCGCCGAACCCGTGGTCATCACGCTCGCCGTGGCGAGCCTCGGCGGGGTGACGTTCCCCCGCTGGTTCATGGCCGCCGCCCAGGGCGTCTACACGATCGGGCTGCTGTTCGCGTACTGGCTGTTCGCCCAGTCCTACCTGGTGATCAACGCGCTGTGCCCGTGGTGCCTGCTCATCACCCTGTCCACCACGGTGGTCTGGGTCTCGCTGCTGCACTGGAACGTCATGGAGGACAACCTCTACCTGCCGCGCGGCCTGCAGCGCCGCGCGGTGGCGATGGTGCGCATCGACGCCGACGTCTACCTCACCGCGGCCTGGCTGATCCTGCTGGTGGCCGCCGTCGTGTGGAAGTACGGGGCCGCACTGGTCGGGTGAMDARESTYLPGRRHTRGWVFGSMLVSALISLTASLVLSIDAVVLAADAGTDLACDINAVISCGTVALSWQAQLLGFPNAFLGLIAEPVVITLAVASLGGVTFPRWFMAAAQGVYTIGLLFAYWLFAQSYLVINALCPWCLLITLSTTVVWVSLLHWNVMEDNLYLPRGLQRRAVAMVRIDADVYLTAAWLILLVAAVVWKYGAALVGNANANANANA
AK018_03611309hypothetical proteinATGAGCAAGTCCGTCAGCACCGCCAAGGCCGGCGCGAAGCGCGGCCCGAGCCTGCTCAAGATGGTGATGTTCGCGCTCGTCGTCGCGGCCGTCACCAAGGAGCTCCAGAAGGACCCCGAGGACCGGGAATGGCACGGGACGGTCGCCGGGTTCGTGCCCTACGAGTTCCGCGTCCCCACGCTCGAGCGCTTCAAGGAGCGCGTGTGGGACCCGGACGGCGAGCACCTCCTCAGCCCGCACGTGTGGGGCGTGGGCTGGACGGTCAACGTCGGCCGCGTCGTCTCCCTCGTCCGGGGCCTCGGCAGCTGAMSKSVSTAKAGAKRGPSLLKMVMFALVVAAVTKELQKDPEDREWHGTVAGFVPYEFRVPTLERFKERVWDPDGEHLLSPHVWGVGWTVNVGRVVSLVRGLGSNANANANANA
AK018_03612564yfkM_1COG0693General stress protein 18ATGGCTACCCACGACCTCACCGGACGGACCGTCCTGGCGATCGTGACGAGCTACGGCGTGGAGCAGGACGAGCTCGTGGTCCCGCTCGAGCACCTGCGCGAGCACGGCGCCGTCGTGACCGTCGCCTCCCCCGGTGCGCAGGACGTCGCCACCCTCGTCGGCGACAAGGACCCCGGTCAGACCGTGCCCGCCGACGTGTCCCTCGACGACGTCGAGGCCGAGGGCTTCGACCTTCTGCTGATCCCCGGCGGCACCCTCAACGCCGACACCCTGCGGCTCGAGGAGGCCACCACGCGGCTCGTGCGGACGTTCGCCGACTCCGGGCGCCCGATCGCCGCGATCTGCCACGGTCCCTGGGCGCTCGTCGAGGCCGGCGTGGTCGAGGGCAAGACCCTCACCTCGTACCCGTCCCTGCGCACCGACATCCTCAACGCCGGCGCGGCCGAGTGGCGCGACGAGTCCGTCGTCGTGTGCACCGCGCAGGACCGCACCCTCATCACGTCGCGCACGCCGAAGGACCTCGACGACTTCCTGGGCGCCGTCGACGACGCGCTCGTCTCCTGAMATHDLTGRTVLAIVTSYGVEQDELVVPLEHLREHGAVVTVASPGAQDVATLVGDKDPGQTVPADVSLDDVEAEGFDLLLIPGGTLNADTLRLEEATTRLVRTFADSGRPIAAICHGPWALVEAGVVEGKTLTSYPSLRTDILNAGAAEWRDESVVVCTAQDRTLITSRTPKDLDDFLGAVDDALVSPGPT0015010_1535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0015010-yfkM|pfpI|yraA-K05520NANA
AK018_03613825dkgB_12,5-diketo-D-gluconic acid reductase BTTGCCGCACACCACCGAGCACCTGACCCTGCCCGACGTCGGGTTCGGCACCTACCGACTCAACGGTGCCGACGGCGTCGAGACGATCAGCCGCGCCCTGCAGGGCGGCTACCGGCTGCTGGACTCGGCGTTCAACTACGAGAACGAGGGGGCCGTGGGCGCGGCGGTGCGCTCCGGCGTCGTGCCCCGCGAGGAGGTGATCGTCACCTCCAAGCTGCCCGGACGCCACCACGCCCACGACCAGGCCCTGGCCTGCATCGAGGAGTCCGTCTACCGCACCGGCCTGGACCACCTCGACCTCTACCTCATCCACTGGCCCAACCCCGCCCGCGACCAGTACGTCGAGGCCTGGCAGGCACTGATCGAGGCCCGCTCACGCGGCCTGGTCCGCGAGATCGGCGTCTCCAACTTCCTGCCCGAGCACATCGACCGACTCATCACCGAGACCGGCGTCACCCCGGCCGTCAACCAGATCGAGCTGCACCCCTACTTCCCCCAGGCCGAACAACGCGCCTACGACACCGCCCACGGCATCGTCACCCAGGCCTGGAGCCCCCTCGGGCGGGCCAACAGCCTGTTCACCGAGCCGGTGCTCACCGAGATCGCCGCCGCGCACGGGGTGGGCGTGCCCGCGGTGATCCTGGCCTGGCACGCCCGCCTCGGCGTCCTGCCGATCCCCAAGGCCAGCAGCACCGACCGCCAGCGCCAGAACCTCGCCGCCCTCGAGGTCACGCTCACCGACGCCGAGGTCGACCGGATCTCGGGCCTGGGCCGCCCCGACGGGCGTACCGCCGACCAGGACCCGGCGGTCTACGAGGAGCTGTGAMPHTTEHLTLPDVGFGTYRLNGADGVETISRALQGGYRLLDSAFNYENEGAVGAAVRSGVVPREEVIVTSKLPGRHHAHDQALACIEESVYRTGLDHLDLYLIHWPNPARDQYVEAWQALIEARSRGLVREIGVSNFLPEHIDRLITETGVTPAVNQIELHPYFPQAEQRAYDTAHGIVTQAWSPLGRANSLFTEPVLTEIAAAHGVGVPAVILAWHARLGVLPIPKASSTDRQRQNLAALEVTLTDAEVDRISGLGRPDGRTADQDPAVYEELPGPT0001320_1359DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
AK018_03614468ddn_1Deazaflavin-dependent nitroreductaseATGACGTTCACCCACCCCCAAGGCACCCGGGGCGCCGCACCGCCCGGACGGTTCCTGCGCTGGATGAACAAGCTCGTCACACCCCGCGCCCGCCGCAGCGACAAGCCCTTCATGGGGATGGACGTGCTCGTCCTGGTCACCGTCGGGCGGACCTCGGGTCAGGAGCGCAGCACGCCGGTGGCCTGGTTCGGCGACGACCGGCCCGACGGTCGGGCCGGCTGGCTCGTGGTGGCCTCGGCCGGCGGCGCGGCGTCGAACCCCGACTGGTACCGCAACCTGGCCGCCCACCCCGATCAGGCCGCCGTCGAGCTCGGCGGGCGCAGGGTTCCCGTGACGGCCACCGAGCTCCACGGCGACGAGCGCGCGGCCGCCTGGACGCGCATCACCGAGCAGGCGAAGCAGTTCGCCGGCTACGAGCGCAAAACCGACCGCCTCATCCCCGTGATCCGGCTGACCCCGCACTCATGAMTFTHPQGTRGAAPPGRFLRWMNKLVTPRARRSDKPFMGMDVLVLVTVGRTSGQERSTPVAWFGDDRPDGRAGWLVVASAGGAASNPDWYRNLAAHPDQAAVELGGRRVPVTATELHGDERAAAWTRITEQAKQFAGYERKTDRLIPVIRLTPHSNANANANANA
AK018_03615813dkgB_22,5-diketo-D-gluconic acid reductase BATGAGCACCCTGACGCTGCCCGCGATCGGGTTCGGCACCGGCAGCCTGCACGGGGGCGAGGCGGCACGCCTCGTGGAGTCCGCCCTGCACGCCGGCTACCGCCTGATCGACTCCGCGTTCCGGTACGAGAACGAGGGGGCCGTGGGCGCGGCGGTGCGCTCCGGCGTCGTGCCCCGCGAGGAGGTGATCGTCACCTCCAAGCTGCCCGGACGCCACCACGCCCACGACCAGGCCCTGGCCTGCATCGAGGAGTCCGTCTACCGCACCGGCCTGGACCACCTCGACCTCTACCTCATCCACTGGCCCAACCCCGCCCGCGACCAGTACGTCGAGGCCTGGCAGGCACTGATCGAGGCCCGCTCACGCGGCCTGGTCCGCGAGATCGGCGTCTCCAACTTCCTGCCCGAGCACATCGACCGACTCATCACCGAGACCGGCGTCACCCCGGCCGTCAACCAGATCGAGCTGCACCCCTACTTCCCCCAGGCCGAACAACGCGCCTACGACACCGCCCACGGCATCGTCACCCAGGCCTGGAGCCCCCTCGGGCGGGCCAACAGCCTGTTCACCGAGCCGGTGCTCACCGAGATCGCCGCCGCGCACGGGGTGGGCGTGCCCGCGGTGATCCTGGCCTGGCACGCCCGCCTCGGCGTCCTGCCGATCCCCAAGGCCAGCAGCACCGACCGCCAGCGCCAGAACCTCGCCGCCCTCGAGGTCACGCTCACCGACGCCGAGATGGACGCCGTGGCCACGCTCGCGCGCCCGGACGGCCGCAACAAGGGTCAGGACCCGGCCGTCGTCGAACAGCTCTGAMSTLTLPAIGFGTGSLHGGEAARLVESALHAGYRLIDSAFRYENEGAVGAAVRSGVVPREEVIVTSKLPGRHHAHDQALACIEESVYRTGLDHLDLYLIHWPNPARDQYVEAWQALIEARSRGLVREIGVSNFLPEHIDRLITETGVTPAVNQIELHPYFPQAEQRAYDTAHGIVTQAWSPLGRANSLFTEPVLTEIAAAHGVGVPAVILAWHARLGVLPIPKASSTDRQRQNLAALEVTLTDAEMDAVATLARPDGRNKGQDPAVVEQLPGPT0001320_1359DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
AK018_03616633hypothetical proteinATGACCGTGCTGATCGAACCTGCAGGTGAGGCGGACATCGAGGCCGGCGCCCGGCTGATCGCCGAGGCGTTCCGCGACGACGTCGTGGTGCGCCGGGTCGTGCCGGGCGACCACGACAGGGTCGACCGGCTGACCGACGTCTACACCGCGGCGCTGCGGACGGGAGCCTGCGTGTCGGGGGCGGTCGACGTCGCGCGGGCCGGTCCGGGCGGGCCGATCCTCGGGGTGGCCGCGTGGGAGGGGCCGCACGGTCGCCGCCACGTGCTGACCGAGCTGCGCGAGGTTCCGCGGTACCTGCGGGCGCTCGGGCTGCGGTACGTGCCGGCGGTCAGGGCCCGCCTGGCCCGGTGGGCGCGAGCCCGGCCGACGACGGCGCACTGGTACCTGGCGGATCTCGCCGTGACTCCTGCGGCCCGGGGGCGTGGTGTCGGGTCGGCGCTGCTGGAGCACCGGTTGCGGGCCGTCGACGCCGAGGCCCGGCCCGCCTACCTGGAGGCCACCGGCCCCGGCAACCAGCGTCTCTACGAGCGTTTCGGGTTCCGGGACCAGGGGCCGCTGGACGACGACGGCACCCCGGTGGCGATGTGGCGTCCGGCGGGCGGTCAGAGCTGTTCGACGACGGCCGGGTCCTGAMTVLIEPAGEADIEAGARLIAEAFRDDVVVRRVVPGDHDRVDRLTDVYTAALRTGACVSGAVDVARAGPGGPILGVAAWEGPHGRRHVLTELREVPRYLRALGLRYVPAVRARLARWARARPTTAHWYLADLAVTPAARGRGVGSALLEHRLRAVDAEARPAYLEATGPGNQRLYERFGFRDQGPLDDDGTPVAMWRPAGGQSCSTTAGSNANANANANA
AK018_03617312hypothetical proteinATGCCACTACCTGACTGGCGGCATCGCAGCGAGCACATCCGCACGCGCACCGACCGGTATGGGCCAGGCGAACAGAACATCGAACCTGCGTGGGCCAACGAGGCATACGCGGACCTCTACGCGGTGGAGTTCCGACCCGACTTCGCCAGCACGAGCGGCCAAAGCGTCCGGACTATCGGCTGGTCAGACACGGCGGGCTTCCTGATCACAGTGATCACCGTGGAGGACAGCGAGAACCTTTGGGGCGCCACCGCGTGGAAGTCCGACACCGGCGACCAGCGCCGATACACGGGCGAGGACGGGAAGGAGTGAMPLPDWRHRSEHIRTRTDRYGPGEQNIEPAWANEAYADLYAVEFRPDFASTSGQSVRTIGWSDTAGFLITVITVEDSENLWGATAWKSDTGDQRRYTGEDGKENANANANANA
AK018_03618366hypothetical proteinATGGATGACGCACGAGACCTGATCGCTGCCGAGGCGGACGCCGCCGAGGAGTCGAGGCACGAGCCGTTGCCAGCCGATGCAGTGGGCACGCGCCGCACCCCGGGGACGCCGCCGAAGGTGCTGTCGGTGCGTTTGGACGCCGAAGTGTTCGCCGACCTGTCCTCGCAGGCGGAGCGCCTCGGTATCCCCGTCTCGACTCTGGCACGGATGCTCATCGTGCAGGGCCTGGGCGCGAAGGAGGCCCAGCCTGCCGTCCCCAAGACACTGGAGCTCCTGAGCGGCTTCCTGGACGACAGGATCAGACGCTCGGTGCGGTTCGAGCTGTCACACCTGGTGCGCCCGGAGTTCCTGCGCGAGCCGACGTGAMDDARDLIAAEADAAEESRHEPLPADAVGTRRTPGTPPKVLSVRLDAEVFADLSSQAERLGIPVSTLARMLIVQGLGAKEAQPAVPKTLELLSGFLDDRIRRSVRFELSHLVRPEFLREPTNANANANANA
AK018_036191617hypothetical proteinATGACCAGCGGTTTCACCGCCCTCACCCGCACCGTGGCGATGGCGGTCGCCACCGCGCTGGGCCTCCTCACGATGCTCGTGGCCCCCGCCTCCGCGGCCGACGGGGGCGACCCCGTCGAGACGACTCTCCAGGTCGCCCAGGTCGGGACGTGGCGGCCCGGCGGGCCCCTGGTGCTCGACATCTCGGCCACCGGGCCCGACGGTGAGCCTGTGGGCGCCGGGTTCCTCAGGGCCGGGGTCGGCGGGGTCACGGTCGATGACGCGAAGACCCTCACCGGCGAGAGTTCGACGGTCCGCTGGGTCGTCCCGACACCCCCGATGGCTGCGGGCCCGCAGAAGGTGTCGATCACCTACGTGGGTACCTACGAGCACGCCTGGCAGCACTGGGTCGGCACCCTGCACGTCGAGGAGGGCACGGGGTCGACGACGATGACCGTCGATCCGCCGCCGCAGGCCACGTACGGCGACTGGGTGACCTTCGTCGTCGACGTCGAGACGCCGCCCGACCTGCCCGCCGACGCACCCGAGGGCCAGGTGGCGGTCAGGTGGGACGACGCGTCCATGAGGACCTGGACGGCCCCGGTGTCCGGGGGAGAGGCGCACGTGCAGGTGTGGGCCGAGGCGCCCGGACTGCACCACTACGAGGTCACCTTCTACAGCTCGGGTGAGGCCCGGACCGTCGCGGTCGGCGGGACGCTGACCGTGGCCAAGGCCCGTCCCGAGCTGCGGGTCTGGTCCAACGACGTCCAGCAGGGGGTCATGAACACCGCCGGGGGTGCCTGGGAGGTGGCAGCGCGCCTGGACTTCCCGTGGCGGGTCGACGGGACGATGTCGCTGTACGACGGCGACCGGAGGCTCGCGACCCGGGACGTCGCGAGCACGGCCTCCCGGGCCGCGGTCTTCACGCTCGCTCCCGATGCGGTCCCCGCCGGCCGGCAGCGGTTGACGGTCCGTCTGACCGACTCGCCGTTCGTGGCGGACACCAGCGCCTCCCTCGACCTCGAGATCGTGAAGAACCCCGCGTCGATCAGGGTGGAGCGGGCCACGGATCGGACGCTGCAGTGGGGCAGGCCGCACAAGCTCCGCATCGATGTCCGCAGCGGGGGGCAGTACTGGCCCGATCAGACACCCACGGGCACGGTGAAGGTCTATCGGGGGACGAAGAAGGTCGGCGCAGCGACGCTGGGCCGTTCCGGCGACGTGGTCGTGCGGATCAAGGGCAAGAAGCTCCCCGTGGGGCGGACGAAGCTCCGCTTCGTGTACTCCGGCGACACCGTCTACGAAGCCAGGACGAAGTACCGCACGGTCAAGGTTCACAAGGCCACGACGAAGGTGCGGGCCAAGATCCTCGACAAGACCGTGCACCGTCCCCAGCGTGTCAAGGTCCGGTTGCGCCTGACCTCGCCGTCCGACGTGGCCCTGACCGGCAAGGTCCGGCTCAAGGTGGACGGCAGGACGGTCAAGACGGTGCGGCTGAAGAAGAAGCACGACGGCTCGCGCACCGTCTCGCTGCCGCGCTCCGTGGGACCGACGCACCACCACCTCAAGGTGGTCTACCGCGCGACGCCCACCAAGAAGAAGTCGGTCAAGGTGCCGCTGTACTTCAGGGTGTTCTGAMTSGFTALTRTVAMAVATALGLLTMLVAPASAADGGDPVETTLQVAQVGTWRPGGPLVLDISATGPDGEPVGAGFLRAGVGGVTVDDAKTLTGESSTVRWVVPTPPMAAGPQKVSITYVGTYEHAWQHWVGTLHVEEGTGSTTMTVDPPPQATYGDWVTFVVDVETPPDLPADAPEGQVAVRWDDASMRTWTAPVSGGEAHVQVWAEAPGLHHYEVTFYSSGEARTVAVGGTLTVAKARPELRVWSNDVQQGVMNTAGGAWEVAARLDFPWRVDGTMSLYDGDRRLATRDVASTASRAAVFTLAPDAVPAGRQRLTVRLTDSPFVADTSASLDLEIVKNPASIRVERATDRTLQWGRPHKLRIDVRSGGQYWPDQTPTGTVKVYRGTKKVGAATLGRSGDVVVRIKGKKLPVGRTKLRFVYSGDTVYEARTKYRTVKVHKATTKVRAKILDKTVHRPQRVKVRLRLTSPSDVALTGKVRLKVDGRTVKTVRLKKKHDGSRTVSLPRSVGPTHHHLKVVYRATPTKKKSVKVPLYFRVFNANANANANA
AK018_03620168rpmF_250S ribosomal protein L32ATGGCCGTCCCCAAGCGCAAGATGTCCCGATCCCGCACCCGCAGCCGTCGCGCGCAGTGGAAGGCGTCCCCGCCTGCGCTCGTCCCGGTCGACGCCGGTGGTCGCGTCGTGCAGGTGCCGCCCCGGCTGGCGCGCGCGGTCCGCGAGGGGCGGATCGACGTGCCGTGAMAVPKRKMSRSRTRSRRAQWKASPPALVPVDAGGRVVQVPPRLARAVREGRIDVPNANANANANA
AK018_03621123hypothetical proteinATGAAGGTCCGTTCGTCGCTGCGGTCCCTGAAGAACCAGCCGGGATCCAAGGTCGTGCGCCGCCGCGGGCGCACCTACGTCATCAACAAGCTCAACCCCAAGTTCAAGGCCCGCCAGGGCTGAMKVRSSLRSLKNQPGSKVVRRRGRTYVINKLNPKFKARQGNANANANANA
AK018_03622279rpmE2_1COG025450S ribosomal protein L31 type BATGAAGAAGGACATCCACCCCACCTACGGCCCCGTCGTGTTCCGCGACGCCGCCGCCGGCTTCTCGTTCCTGACCCGCTCCACGCTGGCCGGGGACACCCCGGCAGGTCCCGGGCGGCCCGCCGCCACGGTCGAGTGGAGCGACGGCCGCACCTACCCCGTGATCGACGTCGAGATCTCCAGCGCCTCCCACCCGTTCTGGACGGGCGGCTCCCGGGTGGTCGACACCGCCGGTCGCGTCGAGAAGTTCCGCCGCCGCTACGGCAAGGCGGGTGCGTGAMKKDIHPTYGPVVFRDAAAGFSFLTRSTLAGDTPAGPGRPAATVEWSDGRTYPVIDVEISSASHPFWTGGSRVVDTAGRVEKFRRRYGKAGAPGPT0014325_395DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909NANA
AK018_03623306rpsN_1COG019930S ribosomal protein S14ATGGCCAAGAAGTCCAAGATCGCGGCCGACAAGCGGCGCCGGGAGGTCGTCGAGCGGTACGCCGAGCGCCGCGCAGAGCTCAAGCGGATCGTCGCCTCGCCGTCGTCCACGCCCGAGGAGCGTGCCGTCGCCGTCATGGAGCTGCAGCGGCAGCCCCGCGACGCCAGCGCCACCCGGCTGCGCAACCGCGACGTCGTCGACGGGCGACCGCGCGCCTACCACCGCAAGTTCGGGCTCTCCCGCATCCGCCTGCGCCAGATGGCGCACCGCGGCGAGCTGCCCGGCGTCACCAAGTCGAGCTGGTGAMAKKSKIAADKRRREVVERYAERRAELKRIVASPSSTPEERAVAVMELQRQPRDASATRLRNRDVVDGRPRAYHRKFGLSRIRLRQMAHRGELPGVTKSSWNANANANANA
AK018_03624168rpmG2_2COG026750S ribosomal protein L33 2ATGACCTCCCGCACCGACCTGCGCCCCATCGTCAAGCTGCGCTCCACGGCGGGCACCGGGTTCACCTACGTGACCCGCAAGAACCGCCGCACCACCCCCGACCGGCTCGTGCTGCGCAAGTACGACCCCGTCGTCCGCCGCCACGTCGAGTTCAAGGAGACCCGCTGAMTSRTDLRPIVKLRSTAGTGFTYVTRKNRRTTPDRLVLRKYDPVVRRHVEFKETRNANANANANA
AK018_03625237rpmB_1COG022750S ribosomal protein L28ATGTCTGCCCACTGCCAGGTGCTCGGCACCTCGCCGGGGTTCGGGCACTCGATCTCGCACTCCCACGTGCGCTCGAAGCGCCGGTTCGACCCCAACATCCAGACCAAGAGCTACTGGGTGCCCAGCCTGGGCCGCACCGTCCGGCTCCGGGTCAGCGCCCGGGGCATCAAGACCATCGACCGCCGCGGCATCGACGCGGTCGTCGCCGACATCGTCGCCCGAGGGGAGAAGATCTGAMSAHCQVLGTSPGFGHSISHSHVRSKRRFDPNIQTKSYWVPSLGRTVRLRVSARGIKTIDRRGIDAVVADIVARGEKINANANANANA
AK018_036261137COG0523putative proteinATGCCCGACTTCCGCACCTCGCTCAGCGTCCTGGTCGGCGTCGACCCCGTGCTGCGGGACAGCGCCCTGACCGGCCTGGTCTTCGACGCCCCGAGCACCGTCACGGTCAAGCACGACCTGCACGTGGCCGACAACACGCTGCGGCGCGTCGTCGTCGACGTCACCGGCGTCATCGAGGACGAGACGATCCCGCTGGAGCACGCCTGCGTCTCCTGCTGCGTGCGCGAGGACGCCGTCCCCACGCTCGCGCGGCTGGCCGACGCCGGCCGCTGGACGGACATTGTGCTCGCGCTACCGGTCACGGCCGAGCCGCTGCCCGTCACGCGCGGACTGGCGGCGTGGTGCCGCCCCGGCGAGGAGCTGGCAGCGCTGCACCTGACGAGCACCGCCGTCGTCGTCGACGTCGACGCGGTCGAGCCCGACCTGCTGGGTGACGACTGGTGCGCCGAGCGGGGCCTCGCCCTGACCGACGACGACGAGCGCGGCGTCGGCGAGGCGCTCGCCACCCAGCTCGAGCAGGCCGACCTGGTGGTCACCACCGGTGACGACGCCACCGGGTCCGGGCTCGTGGAGCGGCTCCGCGCCGCCGACTCCCGCCGGGTCGACGGTCTGCACGCCCTGAGCATCGACCAGCTCGCGGCATTCGCCCACCGCACCGAGGACGCCGAGCGGCGCGCTCACCCGCTGGGAGCTCGGGGCGCTCTCCTGCCCGGATCCCCGGCCCGGACCGCCGGCGTCGACCGGAGCTGGAGCCTGGAGCTGTCCTCACCGCGCCCGTTCCACCCGGACCGGCTCCTCGAGCAGGTCGAGGCACTCGGCACCGGCGAGATGCGCGCTCGCGGAGCGTTCTGGGTGGCCAACCGCCCCGACTCGCTGTGCCTGTGGGACGGCGCCGGCGGGCAGCTGTGCATCGCCGACCTCGGCACCTGGGACGAGGTCGCCGCGGGCCGCGAGCCGCACACCCGCGTCGTCGTCGTCGGGGCGGGCACGATCGCCGAGGGCGAGTCGGCGCGCGCCCGGCTCACGGCGGCGTTCCGGGCCGCGCTGGCGACGGACGAGGAGCTCGCCGACGGCGGCCTGGCCTGGCTGGGCGGCGAGGACGTGCTGGCGCCCTGGTTGGGCCTGCGGCACGTCTGAMPDFRTSLSVLVGVDPVLRDSALTGLVFDAPSTVTVKHDLHVADNTLRRVVVDVTGVIEDETIPLEHACVSCCVREDAVPTLARLADAGRWTDIVLALPVTAEPLPVTRGLAAWCRPGEELAALHLTSTAVVVDVDAVEPDLLGDDWCAERGLALTDDDERGVGEALATQLEQADLVVTTGDDATGSGLVERLRAADSRRVDGLHALSIDQLAAFAHRTEDAERRAHPLGARGALLPGSPARTAGVDRSWSLELSSPRPFHPDRLLEQVEALGTGEMRARGAFWVANRPDSLCLWDGAGGQLCIADLGTWDEVAAGREPHTRVVVVGAGTIAEGESARARLTAAFRAALATDEELADGGLAWLGGEDVLAPWLGLRHVNANANANANA
AK018_03627450hypothetical proteinATGAGCACGCCGCTGGATGCCGAGCTGCCGAACACGCCGCCGGCCGCCCACTTCACCGAGATCGCCCGGTGGACCCTGACCGACGTCGAGGAGGTCGCCGACCTGCGGTCGGACCTCCAGTCGCGGCTCGGCACCGACGGCGCCGGCGACCTCGAGTCGACGGCGGAGAAGCTCGTGCTCGTGGCCTCCGAGCTCGCCACCAACGCGATCCGGCACGGACTGCCGCCCACGGTCGTGCGCCTGATGGTGGGCGACGGCGCGTTCCTGCTGGACGTCGCCGACCACGACATCTCGTCCGCACCTCTGCTCGCCCCGGACCGCGACGCGGGACACGGCGGCCTCGGCCTGCGGATCGCCCGGCGGCTCGCCCTCGCCGTCGGGTGGTACACGACGACGACGGCCAAGCACGTCTGGGCCACAGTGGCGGGGCCGGCGGAGCCCGGCGCCTGAMSTPLDAELPNTPPAAHFTEIARWTLTDVEEVADLRSDLQSRLGTDGAGDLESTAEKLVLVASELATNAIRHGLPPTVVRLMVGDGAFLLDVADHDISSAPLLAPDRDAGHGGLGLRIARRLALAVGWYTTTTAKHVWATVAGPAEPGAPGPT0014950_2183DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014950-rsbW-K04757NANA
AK018_03628327hypothetical proteinGTGAATGCAGGTTCCCCGAGCGGGGGCGTGAAGGTCGCGCGCGACGGTGCGCTGTGGGTGATGTGGGGTGAGGTGGACTTCAGCGTCACGCACCAGGTGCGGGACGAGCTGGCCGCCACGCTCGACGGACGCCCCAAGACCATCGATCTGTCCGAGGTCACCTTCATGGATTCCTCGGGACTGCACCTGATCCTGATGAAGGTGACCCCGGAGACCCGCCCGCGGCTCGTCGGCACCCCCGAGGCCGTGCTCGAGCTGCTGGAGATCAGCGGTGCGCGCGAGCTCGTCGAGCTCGTCGACGATCAGCCGCCGGAGGAGACGTCATGAMNAGSPSGGVKVARDGALWVMWGEVDFSVTHQVRDELAATLDGRPKTIDLSEVTFMDSSGLHLILMKVTPETRPRLVGTPEAVLELLEISGARELVELVDDQPPEETSPGPT0014350_2591DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
AK018_036291164hypothetical proteinATGAGCACACGACACCGCGCGGCCCGCTGCACCGTGGCAGCGACCGCCACCGCCACCCTCACGCTCGGCCTGGCCACCGTGGCTGCGCCGGCATCCGCCGACGGCCCCGAGGGCGACGTCGACCTCGACAGGATCCTGGTGGTCGGCAAGACCCTCGGGTTCCGCCACTCCCACATCGACGAGACGACGCACGCCCTCATCGACCTCGGCGACGAGCACGGCTACGACGTCGACGTCTGGGACCCGCCGAACGACTCCGGGGGCTGGTGGGGCCCCGGGTCCCCCGGCCAGCCCGAGCTGACCATGGACTCCACCCCGTTCACCACCGCCGACGACCTCGAGCAGTACGACTCGATCGTGTTCGTCTCGCCGGTGGACAACACGAACAACCTCGACCCGGCCCAGCCCCGGCTCCTCGACGACGCCGAGCTCACCGCCCTGCAGGGCTACGTCCACGACGGCGGCGGCGTCGTCGGGATCCACGCGGCCACCGACACGATGCACACCTCGAGCTGGTTCACCCAGCTCATCGGCGGCGGCGCACGGTTCGCCGGGCACCCGCAGCAGCAGACCGCCACCATGCGCGTCGAGAGCCCCGCCCACCCCTCCATGCAGGGCGTCCCGCTCGAGTGGGAGCGCTGGGACGAGTGGTACAACTACACGCTCAACCCGCGCGGCGACGTCCACGTCCTTATGACGCTGGACGAGTCCACCTACTCCGGCGGCACCATGGGTGAGGACCACCCGATCGCCTGGTGCCAGAACTTCGAGGGCGGCCGCTCCTGGCATCAGGGCGCCGGCCACGTCGACGAGTCGTGGTCCGACCCGACGTTCCTGACCTCCGTGCTGCGCGGCATCCGCTGGACCGCCGGCGACCTGGACGGCGGCGGCAACTGCGTCACCTGGTCCGAGGTGGACGGCCTCGTCGACGAGCTCCCCGACGCCTCCGGTCGCGACCGCGCCGCCGTGCGGATCCTGGAGCGGCGTCTCGACCGCGCTCAGGAGGCCGCCGACGCCGGTGACCCGCGGAAGTCGGCACTCATCCTGCGCCCGACGGCGGTGCTCGCGGACGCGCTCGTGCGTGGCGACGCCGGCGACGAGCTCGAGGACAAGATCGACGACCTCGTCGACTGGCAGAAGGGCCTGGCGAAGGCCGGCCTGTAGMSTRHRAARCTVAATATATLTLGLATVAAPASADGPEGDVDLDRILVVGKTLGFRHSHIDETTHALIDLGDEHGYDVDVWDPPNDSGGWWGPGSPGQPELTMDSTPFTTADDLEQYDSIVFVSPVDNTNNLDPAQPRLLDDAELTALQGYVHDGGGVVGIHAATDTMHTSSWFTQLIGGGARFAGHPQQQTATMRVESPAHPSMQGVPLEWERWDEWYNYTLNPRGDVHVLMTLDESTYSGGTMGEDHPIAWCQNFEGGRSWHQGAGHVDESWSDPTFLTSVLRGIRWTAGDLDGGGNCVTWSEVDGLVDELPDASGRDRAAVRILERRLDRAQEAADAGDPRKSALILRPTAVLADALVRGDAGDELEDKIDDLVDWQKGLAKAGLNANANANANA
AK018_03630423hypothetical proteinATGGCGGAGCAGACCCCCACCACGACCTGGCTGCACGCCACCGCGGAGTACATGCCGCCCCTCGAAGGGCCCGCCGGCACCGCGGAACGTCTACTGCTGCACGTGCACTACGGCATCGACTGGACGGCCGGCTGGGTCGGCCAGTACCGCAAAACCTACTGGGCCACGCTCCTGCCAGACCGTGTCATCTGCGCCACCTACCGCGCCTCCAACCTGCGCCGCTGGTGGCGCGACGTCGCCGACGAACTCGGCTCCGCACCCCGCACGCCGGCGGAACGCGCCGAACTCGAAAAGCTCCTGCGCGCCGAACCGATGCCCGTGCTCGAGGTGCTCCGGTTCGAGACCGAAGCCCTGCTGCTACGCACCCGCATCGTGGCCGACGCAGTCCGCGAGCGCCGGCTTGAGCACGCCGAGGTGGTCTGAMAEQTPTTTWLHATAEYMPPLEGPAGTAERLLLHVHYGIDWTAGWVGQYRKTYWATLLPDRVICATYRASNLRRWWRDVADELGSAPRTPAERAELEKLLRAEPMPVLEVLRFETEALLLRTRIVADAVRERRLEHAEVVNANANANANA
AK018_03631105hypothetical proteinGTGGACGGGGCCACGGTCGAGAACCCCGCCGACGTCGAGTGCCAACGCTGCCTGCACTGCGCCCCGGCCTTCATGGGCCTGCCCTCTTACGAGGTGACCCTGTGAMDGATVENPADVECQRCLHCAPAFMGLPSYEVTLNANANANANA
AK018_03632504hypothetical proteinGTGACCCTCTACCACCCAGTCGAACCGCTGGCGCAACACCACAATGTCGACGACTTCGCCTGCGGGCACGAGTCGATGGACAAGTGGCTGCGCAAGCGGGCGAGCAGCAACGAGGCCAGCGGCTCGTCGCGCACGTTCGTCACGACGGATGACGGCGCCGCCGTGGCCGGCTACTACAGCCTCGCCGCCGGCGCCGTCGTCCGTGCCGACCTGCCAGGAAAGATGCGGCGAAACGCCCCCGACCCGCTGCCCGTTCTCGTACTCGGCCGACTCGCCGTCGACCTCGACCACGCCGGGCACGGCCTCGGCAAGGGCCTCGCCGCCGACGCCCTCGTCCGCGCCGCACGCGCCTCCTCCAGCGTTGGATTCGTTGCTGTCGTCGTCCACCCCGTTGACGACACCGCGCACGACTGGTGGATGCGCCGCGGATTCCTCGAGGCGCCCACCACCGAACCCATGCTCTACATGCCCCTTGCCGCTGTCATCGAGCACGCCACCGGCTGAMTLYHPVEPLAQHHNVDDFACGHESMDKWLRKRASSNEASGSSRTFVTTDDGAAVAGYYSLAAGAVVRADLPGKMRRNAPDPLPVLVLGRLAVDLDHAGHGLGKGLAADALVRAARASSSVGFVAVVVHPVDDTAHDWWMRRGFLEAPTTEPMLYMPLAAVIEHATGNANANANANA
AK018_03633291hypothetical proteinATGACCGTACGCACCCCCGCCAAGGCCGAGCGCATCGCGCTCCGAGTCACGCCCGAGCAGAAGCAGACCATCGAGTCCGCCGCGCGGGCCACCGGTCGATCCGTGACCGACTTCGCCGTCCACGCCGCCGTGGCCAGCGCAGAGGACGCGATCGCCGACCGGCGCGTCTTCCGTGTCTCCGACGAGCAGTGGGAGAGCTTCGTCGACACGCTCACCGCGCCACTGCCCGCCGCCAACGCCGAACGCCTCATGGACACCCTCAACGCCCGGTCGGTGTTCAAGCAGCCGTGAMTVRTPAKAERIALRVTPEQKQTIESAARATGRSVTDFAVHAAVASAEDAIADRRVFRVSDEQWESFVDTLTAPLPAANAERLMDTLNARSVFKQPNANANANANA
AK018_03634225hypothetical proteinGTGACGCGCTACGACCACATCCTGTCTGGGACCTTCCAGGTCAGCGCCGGCGACACCGTCACCGCCGGACAACAGATCGCCTCCGTCGGTGGCGACCAAAGCATCGACCCCGCCGGGGCAGGGACCTCCACAGGCTGCCACCTGCATTTCGAGGTCCAGCGCGACGGCGAAGCCATCGACCCCGGACCCTTCAGGACCCAGCACGGCGTGACTCTCGGATCCTGAMTRYDHILSGTFQVSAGDTVTAGQQIASVGGDQSIDPAGAGTSTGCHLHFEVQRDGEAIDPGPFRTQHGVTLGSPGPT0006070_3059DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006070-paaG-K15866NANA
AK018_03635540hypothetical proteinATGTGGCAGTGGATCACCGGGATCGTCGGGGGCGCGCTGGCGCTCGCGGTCGCCGCCGGCGTCGGCCTCGTCGTCACGATGCGGACGAAGTGGGACCCGGGCCTGCGCCTGGTTCGCCGCGTCAACAAACAGTTCACCAATCCTCGGGTGCTGGGCAGCGCGGGCGGGTCGGGGGAGTCGACGGCGGTGATCCACCACGTCGGACGCCGGTCCGGGCGGGAGTACGCCACCCCGATCGGCCCGGCGCGCACCGACCGCGGCCTGCTGGTCACGCTGCCCTACGGTCCGACGACGGACTGGGTGCGCAACGTGCGTGCGGCCGGCTCGGCCCGGCTCGACCTGGACGGGGAGACCCTGCGCGTGACGGACCCGCGCCTCGTCGACCTCGACGAGGCGGCACCGCTGCTGCCTGCGGGGGAGCGGCGGGTCGCCCGGATCTTCGGCGCGACCGACTTCCTGCTGCTGACGGTCGCCCCGCCGGCCAGACCGGATACGCCGGCGGCAACGCAATCCTCATCGACCACGGCGCCGGCATCGTGAMWQWITGIVGGALALAVAAGVGLVVTMRTKWDPGLRLVRRVNKQFTNPRVLGSAGGSGESTAVIHHVGRRSGREYATPIGPARTDRGLLVTLPYGPTTDWVRNVRAAGSARLDLDGETLRVTDPRLVDLDEAAPLLPAGERRVARIFGATDFLLLTVAPPARPDTPAATQSSSTTAPASNANANANANA
AK018_036361515COG3507Non-reducing end alpha-L-arabinofuranosidase BoGH43AATGACCGCCGACGACGTCCCGTCCGCTCCCCCGCACGCCGTCCGTCCGGTCGTCAGCGGGTTCCACCCGGACCCGACCGTGTGCCGCGTCGGCGACACCTACTACCTGGCCTGCTCCAGCTTCGAGTACGTCCCCGGCGTCCCCGTGTTCCGCTCGACCGACCTGGTGCACTGGGAGCAGGTCGGCTCCGCGCTCGACCGGGGCTCCCAGCTCCCGGCCGGCGCTCCGCCGTCGGGCGGGATCTACGCCCCCACGCTGCGCCACCACGACGGCCGGTTCTGGCTGGTCACCACCAACGTCTCCGACGGCGGCGGACACCTGATCGTCACCGCCGAGGACCCCGCCGGACCCTGGTCGGAGCCGGTGCGCATCGCCGACGCCGGCGGGATCGACCCCGACCTGGCCTGGGACGACGACGGCACCTGCTACCTGACCTGGTCCGAGCACGGGATCCGGCAGGCCGAGCTCGACCCCGCCACCGGCCGGCTCCTCACCGCACCCCGCCGCCTGTGGAGCGGCACCGGCGGGCACGCCCCCGAGGGACCGCACCTCTACCGGGTCGGGGACACCTGGTACCTGCTGATCGCCGAGGGCGGCACCAGCCTGGGCCACGCCGTCACGATCGCGCGCGGCCCCACGCCGTCCGGACCATTCGAGCCCAGCCCGCACAACCCGCTGCTGACCGCCCGCGGCACCTCGGACACCGTGCAGAGCACCGGGCACGCCGACCTCGTGCAGCGACCCGACGGGACCTGGGCCGCCCTCTACCTCGGAGTCCGTCATCGCGGGACCTTCCCGGGCTGGCACGTGCTCGGACGCGAGACGTTCGGCACCGAGATCGTCTGGACCGACGGATGGCCCCGGCGGGGCGCCGCCCTCGAACCTCTCACCGGGGACGGCGCCGACAGGGTGCCGGACACCGCGCTGCCGGACCCTGCGCATCCGGACACCGCGCTGCCCGGGGTCCGGCTCGGCCCGGAGTGGGTCGGGGTCGGCGCGTACCCCGGCCAGGCGCTGCGGCCCGGCCCGGACGGCTGGGTGCTCACCCGGCCCGACGACGTCACGGGGCCCGTGTTCGTCGGACGGCGCCAGCAGCACACCGACGCCACCGTCACGGCCCGGCTCGACGTGCCCGACGGGCGCGGGGCGCTCGAGATCCGCATCGACCCGCGCCACGCCGTCGCGCTCGAGGTCACCGGCGACCAGGTGCGAGCCGTCGCGCGGGTGGGATCGCTCGAGCAGATCCTGGGCACCGCCCGGCACGACGCCGCGACGACGCTGGAGCTGCAGACCCGGCCACCGGCGTCGTCGACCCTCCCGCGCGAGCGCGGACCGGACGAGATCCTCGCCGTCGTGCACGGACCCGACGGGACGCTCGAGCTCGGCCGCCTCGACGGCCGCTACCTCTCCACCGAGGTGGCCGGCGGGTTCACCGGCCGCACCGTCGGCATCAGCGTCACCACCGGCAGCGTCACCGTGCGCGAGCTGCGCTACCGCGGCGAGGAACCCACCTGAMTADDVPSAPPHAVRPVVSGFHPDPTVCRVGDTYYLACSSFEYVPGVPVFRSTDLVHWEQVGSALDRGSQLPAGAPPSGGIYAPTLRHHDGRFWLVTTNVSDGGGHLIVTAEDPAGPWSEPVRIADAGGIDPDLAWDDDGTCYLTWSEHGIRQAELDPATGRLLTAPRRLWSGTGGHAPEGPHLYRVGDTWYLLIAEGGTSLGHAVTIARGPTPSGPFEPSPHNPLLTARGTSDTVQSTGHADLVQRPDGTWAALYLGVRHRGTFPGWHVLGRETFGTEIVWTDGWPRRGAALEPLTGDGADRVPDTALPDPAHPDTALPGVRLGPEWVGVGAYPGQALRPGPDGWVLTRPDDVTGPVFVGRRQQHTDATVTARLDVPDGRGALEIRIDPRHAVALEVTGDQVRAVARVGSLEQILGTARHDAATTLELQTRPPASSTLPRERGPDEILAVVHGPDGTLELGRLDGRYLSTEVAGGFTGRTVGISVTTGSVTVRELRYRGEEPTPGPT0018665_1856DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-XYLOSIDASE,PGPT0018665-xynB-K01198NANA
AK018_036371446bmr3_5Multidrug resistance protein 3GTGATCGACGTGCCCTCGACGACGACCTCGGTCGGTCTGCGCTCCGAGCGCGGCCCCATCCTGCTGTCCCTCATGCTGTCCACGGCGCTCGTCGCCCTGGATGCGACGATCATCGCGACGGCGTCGGCGACGATCGCGAGCGAGCTGGGGGCGTTCGAGCAGGTGCCGTGGCTGTTCTCGTCCTACCTGCTCGCCCAGGCGGTGAGCACCCCGTTGGCCGGACGCCTCTCGGACATCTTCGGGCGCAAGCGCCTGATCCTGGCCGGTGTCGGGCTGTTCCTCGTCGGGTCGATCCTGTGCGGTGCGGCCTGGTCGATGGGCGCGATGATCGCCGGGCGGGTGCTCCAGGGGCTCGGCGCGGGCGCCGTGATGCCGGTCTCGCAGACCATCGCCGCCGACATCTACACCCTGGAGGAGCGCGCGAAGACGCAGGGCTACCTGGCCTCGGTGTGGGCGATCTCGTCCGTGGTGGGCCCGACGCTCGGCGGCGTCTTTTCCGAGTTCGTGTCGTGGCGCTGGATCTTCTGGATCAACATCCCCCTGTGCGCGGTGGCCGCCTGGATGCTGATCCGGCGCTACCACGAGTCCCCGCTGAACGGTGAGCGCGAGCCGATCGACTACGTCGGCGCCGTCCTGCTGACCGGCGGCAGCACCCTGCTCCTGCTGGGCCTGCTCGAGGGCGGCACCACGTGGGCCTGGGCATCGGTGCCGTCCGTCGTGATCCTGACGACCGCCGTCGTGCTCACGGCAGCCTTCGCCTGGCACGCCCTGCGCGCCACGCACCCGATCCTGGACCTGCGGCTGCTGCGCCGCCGAGTGATCGGCGTCGCCACCGCGATCTCCCTGGTCGTGGGCATGGTGGTGCTCGGCCTGGCCACGTATGTGCCGATCTACGCCCAGGGTGTCCTCGGCTTCGGGCCGCTCATGGCGGGCTTCGCGCTGGCGGCCATGATGGTGGGCTGGCCGCTCTCGGCGTCGAATGCGGGGCGGTTCTACCTGCGTCTGGGGTTCCGGCTGACGGCGATGATCGGCTCGGTGCTGGTGATCCTGGGGACGGCGCTGACGCTGCTGCTGGGCGACGCGTCCCCGCTGGTGGCCGTCATGGGCACGACGTTCCTGGTGGGCACGGGGATGGGGCTGACGGCGGTGCCGACGCTCATCGCGGCGCAGTCGTCGGTGGGGCACACCATCCGCGGTGCTGTGACCGGCGTGAACATCTTCGCCCGCTCGCTCGGTTCGGCCCTCGGGGTGGCGGTCTGCGGCGCGATCGTCAATGCGGTCGCCACCGTCGGCCCGGACGGCGAGCCGACGGGTCCGGCTCTCATGGACGCCATCCACCTGGTGTTCTGGGTGGTCGCGGTGTGCGGCGGCGTGATCGCCGCGCTGTCGGTGTTCATGCCGGCCGACCGGCAGGCGGCCCGGGAGCGGCGTGCCTCGCTGCGGTAAMIDVPSTTTSVGLRSERGPILLSLMLSTALVALDATIIATASATIASELGAFEQVPWLFSSYLLAQAVSTPLAGRLSDIFGRKRLILAGVGLFLVGSILCGAAWSMGAMIAGRVLQGLGAGAVMPVSQTIAADIYTLEERAKTQGYLASVWAISSVVGPTLGGVFSEFVSWRWIFWINIPLCAVAAWMLIRRYHESPLNGEREPIDYVGAVLLTGGSTLLLLGLLEGGTTWAWASVPSVVILTTAVVLTAAFAWHALRATHPILDLRLLRRRVIGVATAISLVVGMVVLGLATYVPIYAQGVLGFGPLMAGFALAAMMVGWPLSASNAGRFYLRLGFRLTAMIGSVLVILGTALTLLLGDASPLVAVMGTTFLVGTGMGLTAVPTLIAAQSSVGHTIRGAVTGVNIFARSLGSALGVAVCGAIVNAVATVGPDGEPTGPALMDAIHLVFWVVAVCGGVIAALSVFMPADRQAARERRASLRNANANANANA
AK018_03638228hypothetical proteinATGCACGCCGGTCTGGACGAGCAGGCCGAGGAGGGCTACTCCCTGGAGACCCTGCTGCGCGCCGGCGCCGAGGCCGGGGTGCCGTTCTCCGTCGCCGGGGGCGTGTCGGCGGACTCGGTCGCCGCCGTGCAGGACTCCGGTGCCCAGGTCGCCGTCGCGGGCAGCTCGATCTACAGCGCGGACAACGTCGCCGCCGCGGCCGCCGCGCTGCGTGCCGCCATCGCCTGAMHAGLDEQAEEGYSLETLLRAGAEAGVPFSVAGGVSADSVAAVQDSGAQVAVAGSSIYSADNVAAAAAALRAAIAPGPT0013295_501DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-FORMALDEHYDE_FIXATION,PGPT0013295-hxlA|yckG-K08093NANA
AK018_03639726atpD_1ATP synthase subunit betaATGGCGGAGTACTTCCGCGACGTCAAGAAGCAGGACGTGCTGCTGTTCATCGACAACATCTTCCGCTTCACGCAGGCGGGTTCCGAGGTCTCCACGCTGCTCGGCCGCATGCCGTCCGCGGTGGGCTACCAGCCGAACCTCGCCGACGAGATGGGTCTGCTCCAGGAGCGCATCACCTCCACGCGTGGTCACTCGATCACTTCGCTGCAGGCGATCTACGTCCCGGCGGACGACTACACCGACCCGGCGCCGGCGACGACGTTCGCCCACCTCGACGCGACCACGGAGCTCTCCCGTGAGATCGCCTCGCAGGGTCTGTACCCGGCGATCGACCCGCTGACCTCGACCTCGCGCATCCTCGACCCGCGCTACGTGGGCCAGGAGCACTACGACGTCGCGACGGCGGTCAAGCAGATCCTGCAGCGCAACAAGGAGCTGCAGGACATCATCGCCATCCTCGGTGTGGACGAGCTCTCCGAGGAGGACAAGACGCTGGTCGCGCGTGCGCGCCGCATCCAGCAGTTCCTCTCGCAGAACACGTACATGGCGAAGAAGTTCACCGGTGTCGAGGGTTCCACGGTCCCGCTGAGCGAGACCGTCGAGGCCTTCAAGAAGATCACCGAGGGCGAGTACGACCACGTGGCCGAGCAGGCCTTCTACAACATCGGTGGTCTCGAGGACCTCGAGCGCAACTGGGCGAGGATCCAGAAGGAGTACGGGGCCTGAMAEYFRDVKKQDVLLFIDNIFRFTQAGSEVSTLLGRMPSAVGYQPNLADEMGLLQERITSTRGHSITSLQAIYVPADDYTDPAPATTFAHLDATTELSREIASQGLYPAIDPLTSTSRILDPRYVGQEHYDVATAVKQILQRNKELQDIIAILGVDELSEEDKTLVARARRIQQFLSQNTYMAKKFTGVEGSTVPLSETVEAFKKITEGEYDHVAEQAFYNIGGLEDLERNWARIQKEYGAPGPT0014296_621DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014296-atpD-K02112NANA
AK018_03640288atpC_1COG0355ATP synthase epsilon chainATGGCAGAGCTGAACGTCGACCTGGTCGCGGCCGACCGCAAGGTCTGGTCCGGAGCGGCCCGCGAGGTCAGCGCCCCGTCCGCCGACGGTCAGATCGGCATCCTCGCCGGCCACACCCCGCTGCTCGCGGTGCTGCGGCCGGGCACGATCAAGGTCTCGACCGCGCCTCGAGAGGTCGCCGTCGAGGTCCAGGTCGACGGTGGGTTCCTCTCGGTGGACGACGACGTCGTGACGATCGTCGTCGACTCGATCACCGAGGTCTCCGGACGCGAGTCCACGCTGGCCTGAMAELNVDLVAADRKVWSGAAREVSAPSADGQIGILAGHTPLLAVLRPGTIKVSTAPREVAVEVQVDGGFLSVDDDVVTIVVDSITEVSGRESTLAPGPT0014295_4016DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014295-atpC-K02114NANA
AK018_03641420hypothetical proteinGTGGGGTACGTGCTCTGGACGGTCCTCGCCGTCGCGCTCGTCCTCGCCCTCGTGCTCGTCGTCGGGACCTCCCGGCTGCGGACGCTGTCGCACCGCGTCGGCTCGTTCCAGTGCGGTGCCCGCCCCGGCGGCAGCCCGCAGGCCCCCTGGTCGGCGGGCATCGCCCACTACGGCGTCGGCCGGATCGACTGGTGGCGCTGCTGGTCGCTGGCACCGCGACCGGCGCGCAGCTGGCGGCGCGACCGCCTCGAGGTGACCGGCCGGGCTCCGCTCGACCTCGCCGGCCAGGCCGACCATTACCTGGTGCGGTGTCGCTACGACGGCACCGACTTCGAGCTGACGATGTCCGCGGACGCCTACGCCGGACTCGCCTCGTGGCTGGAGTCCGCCCCGCCCGGACGACGCGACCTCGTCGTCTGAMGYVLWTVLAVALVLALVLVVGTSRLRTLSHRVGSFQCGARPGGSPQAPWSAGIAHYGVGRIDWWRCWSLAPRPARSWRRDRLEVTGRAPLDLAGQADHYLVRCRYDGTDFELTMSADAYAGLASWLESAPPGRRDLVVNANANANANA
AK018_03642696nucS_1COG1637Endonuclease NucSGTGAGACTCGTCGTCGCCCGCTGCTCGGCCCGTTACACGGGCCGGCTGACCGCCCACCTGCCCCTGGCCACCCGACTGCTGGTGGTCAAGGCCGACGGCAGCGTCCTGCTGCACTCGGACGGCGGCTCCTACAAGCCCCTGAACTGGATGAGTCCGCCGTGCTCCACGGTGACGGCCGCTCCGGACGACGACGCCGTCGCCCGCGGCGTGACCGAGGTCTGGACGGTCCAGCACCAGAAGTCCGACGACCGGCTCGAGATCGACCTGCACGAGATCGTGCACGACTCCGAGCACGACCTGGGCGTGGACCCGGGCCTGGTCAAGGACGGCGTCGAGGCGCACCTGCAGGAGCTGCTGGCCGCCCAGATCGAGCTCCTGGGGACCGGCCACTCGCTGGTGCGGCGCGAGTACATGACGGCGATCGGTCCCGTGGACATCCTGGCCCGCGACGCCGACGGTGGCACCGTGGCGGTCGAGATCAAACGGCGCGGCGAGATCGACGGCGTCGAGCAGCTGACGCGCTACCTGGAGCTGCTGAACCGCGACCCGTTGCTGTCGCCGGTCCGCGGGGTCTTCGCGGCGCAGGAGATCAAGCCGCAGGCCCGGGTGCTCGCCGGGGACCGCGGGATCGACTGCCTCGTCCTGGACTACGACGCCATGCGCGGTGTCGACGACGCCGACTCACGCCTCTTCTAGMRLVVARCSARYTGRLTAHLPLATRLLVVKADGSVLLHSDGGSYKPLNWMSPPCSTVTAAPDDDAVARGVTEVWTVQHQKSDDRLEIDLHEIVHDSEHDLGVDPGLVKDGVEAHLQELLAAQIELLGTGHSLVRREYMTAIGPVDILARDADGGTVAVEIKRRGEIDGVEQLTRYLELLNRDPLLSPVRGVFAAQEIKPQARVLAGDRGIDCLVLDYDAMRGVDDADSRLFNANANANANA
AK018_036431266nagA_1COG1820N-acetylglucosamine-6-phosphate deacetylaseATGGTCACCGATCCCGCCGATGCCCAGGACAGCCCGCGACCGCCGTCGGTCTTCGCCCTGCGGGGCGACGTCGTCACACCGGACCGGCTGATCCACGACGGCGCCGTCGTCGTGGCCGACGACCGCATCGTGTGGGTCGGACCCCTCGAGGAGGCGGCTGCCGCCGGCGTGGGCGACGAGGTGGCGCGTGCCGACGAGCCGACACCGGGGGCCTACGTGCTGCCCGGCCTGGTCGACCTGCACAACCACGGCGGCGGGGGAGCCAGCTTCCCGGACGCGAGGTCCGTCGACGACGTGATGACCGCGGTGCTGGAGCACCGCCTGCACGGCACGACGACCCTGCTGGCCTCCCTCGTGACCGCCGACCGCGAGACGTTGCTGGACCGGACCCGCCTGCTGGCCGAGGTCGCGGACCGGGGCGAGATCGCCGGGATCCATGCCGAGGGCCCGTTCCTGTCGGCCGTGCGGTGCGGGGCCCAGGACCCGCACCGGCTCGTGCCGGGCGACGTGACCCTCGCGCGCGAGCTCGCCGGGGCCGCGCGAGGGCACCTGCGCACCATGACCGTCGCGCCCGAGGTCGACGGCGTCGCCGGTCCCGGGGGCGCCGCCGCCGCGCTGGTGCGGTCCGGGGTGATCCCGTCGCTCGGACACACCGACGCCTCGGCCGAGGACGCCGAGGCCCTCCTGCGCCAGGTCGCCGCGGACCTGGGCCGGGGCGAGGGTGCCACCGGCCGGATGACGGCCACGCACCTGTTCAACGGGATGCGTCCCCTGCACCACCGCGACCCGGGCCCGGTCGCGGCGTGCCTGGCCGCGGCCTCGCGCGGTGACCTCGTCGTCGAGCTCGTCGGCGACGGCGTCCACCTCGACCCCGCCACCGTGCGGACGGTGATGCAGACCGTGGGGGTGGACCAGGTCGCGCTCGTGACCGACGCCATGGCAGCCGCCGGGATGGCCGACGGCGACTACGACCTCGGCCCGCAGTCCGTGGTCGTGCGTGACGGCGTCGCGCGGCTGGCCGACCCGGACCAGCCCGAGGGAGGGGCCATCGCGGGCAGCACCGCCCACCTCCTCGACGTCGTGCGCCGCACGGTCCTGGCCGGCGTCCCCCTGGTCCCCGCCGTCCGCTGCGCCTCGTGGGTGCCCGCCGGCGTGCTCGGGATGACCGACGTCGGGGGACTGGTGGCCGGCCGGCGGGCCGACGTCGTGGTCACCGACCGGGACCTGACGGTGCAGCACGTCTGCCGGGGCGGCCGGCCGGTCTGAMVTDPADAQDSPRPPSVFALRGDVVTPDRLIHDGAVVVADDRIVWVGPLEEAAAAGVGDEVARADEPTPGAYVLPGLVDLHNHGGGGASFPDARSVDDVMTAVLEHRLHGTTTLLASLVTADRETLLDRTRLLAEVADRGEIAGIHAEGPFLSAVRCGAQDPHRLVPGDVTLARELAGAARGHLRTMTVAPEVDGVAGPGGAAAALVRSGVIPSLGHTDASAEDAEALLRQVAADLGRGEGATGRMTATHLFNGMRPLHHRDPGPVAACLAAASRGDLVVELVGDGVHLDPATVRTVMQTVGVDQVALVTDAMAAAGMADGDYDLGPQSVVVRDGVARLADPDQPEGGAIAGSTAHLLDVVRRTVLAGVPLVPAVRCASWVPAGVLGMTDVGGLVAGRRADVVVTDRDLTVQHVCRGGRPVPGPT0018860_213DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018860-nagA-K01443NANA
AK018_03644243nrdH_1COG0695Glutaredoxin-like protein NrdHATGAGCGTCACGGTCTACAGCAAGCCGTCCTGCGTCCAGTGCGACGCGACCTACCGGGCCCTGGACCGCAAGGGCGTCGAGTACTCCGTCGTGGACATCACCGAGGACGCGCAGGCGCTCGAGATGGTCCGTGAGCTCGGCTACCTCCAGGCTCCCGTCGTCGTCGCGGGCGACACCCACTGGTCGGGCTTCCGTCCCGACCAGATCAGCGCCGTCGCGGCGCAGCAGGCCGTCTCGGCCTGAMSVTVYSKPSCVQCDATYRALDRKGVEYSVVDITEDAQALEMVRELGYLQAPVVVAGDTHWSGFRPDQISAVAAQQAVSANANANANANA
AK018_03645432nrdI_1COG1780Protein NrdIATGAGCTCGCTCGTGTACTTCTCCAGCGTCTCGGAGAACACGCACCGCTTCGTCCAGCGCCTCGGGCTCGAGGAGCGCGGCATGCCGGTGCACCGCATCCCGTTGCGGCCGGCCGACGGCTTCCTCACCGTCGACGAGCCCTACGTCCTCCTGGTCCCCACCTACGGCGGGGGCAACGAGGGCGGTGCGGTGCCCCGCCAGGTGCGGAAGTTCCTCGGGGACGAGGGCAATCGGTCGTTGATCCGCGGCGTCATCGCGGCGGGCAACACCAACTTCGGCGCTGCGTACTGCATCGCCGGTGACATCATCGCGGCGAAGTGCCAGGTCCCGTACCTGTACGCCTTCGAGCTGCTCGGCACGACCGAGGACGCCCAGCGCGTCCGTGACGGATTGGGACGATTTTGGCAACGACAGTCACTGATCTCGGCGTGAMSSLVYFSSVSENTHRFVQRLGLEERGMPVHRIPLRPADGFLTVDEPYVLLVPTYGGGNEGGAVPRQVRKFLGDEGNRSLIRGVIAAGNTNFGAAYCIAGDIIAAKCQVPYLYAFELLGTTEDAQRVRDGLGRFWQRQSLISAPGPT0021340_1491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525NANA
AK018_036462169nrdE2_1COG0209Ribonucleoside-diphosphate reductase subunit alpha 2GTGAGCGCCACGACCGCCGAGGCCCCGCAGTCGACCGCGGGCGCCTCTCTGCAGCAGAGCGACATGGACTACCACGCGCTCAACGCGATGCTGAACCTGTACGGGCCCGACGGCGAGATCCAGTTCGACAAGGACCGCGAGGCCGCCTCGGCGTACTTCCGGCAGCACGTGCTGCCCAACACCATCGAGTTCGACACCCTCGACGCCAAGCTCGACCACCTGGTCGAGAACAAGTACTACGACCCGGTCGTCCTCGACAAGTACTCGCGCTCCTTCGTCAAGGAGCTGTTCCAGCGCGCCTACGCCGCGGGGTTCCGGTTCGAGTCGTTCCTCGGTGCCTTCAAGTACTACACCTCGTACACGCTGAAGACGTTCGACGGCAAGAAGTACCTGGAGCGCTTCGAGGACCGCGTCTCGATGGTGTCCCTCGGCCTGGCCGACGGTGACGAGCAGCGTGCGCGCGACATCCTCGACGAGATCATCGCCGGTCGGTTCCAGCCGGCCACGCCCACGTTCCTCAACGTCGGCAAGGCCCAGCGCGGCGAGCCGGTCTCCTGCTTTCTGCTGCGCATCGAGGACAACATGGAGTCCATCGCGCGCAGCATCAACTCGGCGCTGCAGCTCTCCAAGCGCGGCGGCGGCGTCGCGCTGCTGCTGAGCAACGTGCGCGAGCACGGCGCGCCGATCAAGCACATCCAGAACCAGTCCTCCGGCGTCATCCCCGTGATGAAGCTGCTCGAGGACTCGTTCTCCTACGCCAACCAGCTCGGGGCGCGCCAGGGCGCCGGTGCGGTGTACCTGCACGCCCACCACCCCGACATCATGCGGTTCCTCGACACCAAGCGCGAGAACGCCGACGAGAAGATCCGCATCAAGACCCTCTCGCTCGGCGTCGTCATCCCGGACATCACGTTCGAGCTGGCCAAGCGCAACGAGGACATGCACCTGTTCAGCCCGTACGACGTCGAGCGCGTGTACGGCAAGCCCTTCGCGGACGTCTCGATCTCCGAGAAGTACGACGAGCTGGTCGCCGACGAGCGGATCACGAAGACGACGATCAAGGCGCGCGACTTCTTCCAGACGATCGCGGAGCTGCAGTTCGAGTCCGGCTACCCGTACGTGATGTTCGAGGACACGGTGAACCGGGCCAACCCGATCGCCGGACGGATCACGCACTCCAACCTGTGCTCGGAGATCCTGCAGGTCTCCACCGCCTCGACCTTCCACGAGGACCTGTCCTACGACGAGATCGGCCGGGACATCTCCTGCAACCTCGGGTCGCTGAACATCGCCAAGACGATGGACTCGCCGGACCTCGGCAAGACCATCGACACGGCGATCCGGGCGCTGACCGCCGTGTCGGACCAGACGAGCATCGAGTCGGTGCCGTCGGTGAAGAAGGCGAACGAGATGGGCCACGCGATCGGCCTCGGGCAGATGAACCTGCACGGCTACCTCGCCCGCGAGCGGATCCACTACGGGTCGGCCGAGGGCGTGGACTTCACGAACATCTACTTCTACACGGTCGCCTACCACGCGATCGCGGCGTCGAACCGGCTCGCCATCGAGCGCGGTCGGGCGTTCGGCGGCTTCGCCGACTCGACGTACGCCTCGGGGGAGTACTTCGACAAGTACACCGAGTCCGCGTGGACCCCGGCCACGGAGCGGGTGGAGCGCCTGTTCGCCGACGCCGGCGTGCACGTCCCGACGCAGGACGACTGGCGGGCGCTCAAGGCGTCGGTCATGGAGCACGGCATCTACAACCAGAACCTCCAGGCCGTGCCGCCGACCGGCTCGATCAGCTACATCAACTACTCGACCTCGTCGATCCACCCGGTGGCGGCGAAGATCGAGATCCGCAAGGAAGGCAAGCTCGGCCGCGCCTACTACCCGGCGCCGTACATGACGAACGACAACCTGGAGTACTACCAGGACGCGTACGAGATCGGGTACGAGAAGATCGTCGACACCTACGCCGCGGCGACGCAGCACGTCGACCAGGGGCTGAGCCTGACGCTGTTCTTCCCGGACACCGTGACGACCCGCGACGTCAACAAGGCGCAGATCTACGCCTGGCGCAAGGGCATCAAGACGCTGTACTACATCCGCCTGCGCCAGCTGGCGCTCGAGGGCACCGAGGTCGAGGGGTGCGTCAGCTGCATGCTGTGAMSATTAEAPQSTAGASLQQSDMDYHALNAMLNLYGPDGEIQFDKDREAASAYFRQHVLPNTIEFDTLDAKLDHLVENKYYDPVVLDKYSRSFVKELFQRAYAAGFRFESFLGAFKYYTSYTLKTFDGKKYLERFEDRVSMVSLGLADGDEQRARDILDEIIAGRFQPATPTFLNVGKAQRGEPVSCFLLRIEDNMESIARSINSALQLSKRGGGVALLLSNVREHGAPIKHIQNQSSGVIPVMKLLEDSFSYANQLGARQGAGAVYLHAHHPDIMRFLDTKRENADEKIRIKTLSLGVVIPDITFELAKRNEDMHLFSPYDVERVYGKPFADVSISEKYDELVADERITKTTIKARDFFQTIAELQFESGYPYVMFEDTVNRANPIAGRITHSNLCSEILQVSTASTFHEDLSYDEIGRDISCNLGSLNIAKTMDSPDLGKTIDTAIRALTAVSDQTSIESVPSVKKANEMGHAIGLGQMNLHGYLARERIHYGSAEGVDFTNIYFYTVAYHAIAASNRLAIERGRAFGGFADSTYASGEYFDKYTESAWTPATERVERLFADAGVHVPTQDDWRALKASVMEHGIYNQNLQAVPPTGSISYINYSTSSIHPVAAKIEIRKEGKLGRAYYPAPYMTNDNLEYYQDAYEIGYEKIVDTYAAATQHVDQGLSLTLFFPDTVTTRDVNKAQIYAWRKGIKTLYYIRLRQLALEGTEVEGCVSCMLPGPT0021340_4530DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525NANA
AK018_03647981nrdF2_1COG0208Ribonucleoside-diphosphate reductase subunit beta nrdF2ATGGCACCGACCGGACAGCTCAAGCTCATCGACCGCGTCACCGCGATCAACTGGAACCGCCTGCAGGACGAGAAGGACCTCGAGGTCTGGGACCGCCTGGTCGGCAACTTCTGGCTGCCCGAGAAGGTGCCGGTCTCCAACGACATCCAGTCGTGGAACACCCTGTCCGAGGCCGAGAAGCTCATGACGACCCGGGTGTTCACCGGTCTGACGCTCCTGGACACCATCCAGGGCACCGTCGGCGCGGTCTCGCTCATCCCCGACGCGCTGACCCCGCACGAGGAGGCGGTGTACACCAACATCGCGTTCATGGAGTCGGTGCACGCCAAGAGCTACTCGTCGATCTTCTCCACGCTGATCTCCACCAAGGAGATCGACGACGCGTTCGCGTGGTCGGAGGAGAACCCGCACCTGCAGCGCAAGGCGGAGATCGTCCTCGAGTACTACCGCGGCGACGACCCGCTCAAGCGCAAGGTCGCCTCGACGATGCTCGAGTCGTTCCTGTTCTACTCCGGCTTCTACGCCCCGATGTACTGGTCCAGCCGGGCCAAGCTGACGAACACTGCCGACCTCATCCGCCTCATCATCCGCGACGAGGCGGTGCACGGGTACTACATCGGGTACAAGTTCCAGAAGGGGCTGGCCAAGCTCACCCAGGCCGAGCAGGACGAGATGAAGGCCTACACCTTCGACCTGCTCTTCGAGCTCTACGAGAACGAGGTCGAGTACACCGAGTCGCTCTACGGCGAGCTGGGGCTCACCGAGGACGTCAAGAAGTTCCTGCGCTACAACGCCAACAAGGCGCTGATGAACCTCGGGTACGAGGGCCTCTTCCCCAAGGACGAGACCGACGTCAACCCGGCGATCCTCGCGGCGCTGAGCCCGAACGCGGACGAGAACCACGACTTCTTCTCGGGCTCCGGCTCCTCGTACGTCATCGGCAAGGCGGTCGAGACCGAGGACGACGACTGGGACTTCTGAMAPTGQLKLIDRVTAINWNRLQDEKDLEVWDRLVGNFWLPEKVPVSNDIQSWNTLSEAEKLMTTRVFTGLTLLDTIQGTVGAVSLIPDALTPHEEAVYTNIAFMESVHAKSYSSIFSTLISTKEIDDAFAWSEENPHLQRKAEIVLEYYRGDDPLKRKVASTMLESFLFYSGFYAPMYWSSRAKLTNTADLIRLIIRDEAVHGYYIGYKFQKGLAKLTQAEQDEMKAYTFDLLFELYENEVEYTESLYGELGLTEDVKKFLRYNANKALMNLGYEGLFPKDETDVNPAILAALSPNADENHDFFSGSGSSYVIGKAVETEDDDWDFPGPT0021345_3015DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021345-nrdB|nrdF-K00526NANA
AK018_036481029hypothetical proteinGTGGCCCGCAGCGACAACTATCCGACCCTTGAGCAGCTGCTTGAGGAAGCCCGACGGCGCATCCAGGTCGCCCCCGGGGAACTCGACGAGGCGAAGCGGCGGCGGAGCGCCGTGCGAGCCGCGCTGCTCAAGGAGTTCGCCGGCTCTCGGATCTATTACAACGGATCAGTCGCCCACGGCGACGCCCTGACGCCCTTGACCGACGTCGATCTGGGCGTCGTGGTCCCGGACCCGGACCATGAGTACGGTCCCGGGAAGCGAGGCCCCCGTGAGCTCCAGGACCGCGCCGCCAACGCGGTAAAGCGCCAGCTGAAGGCCGAGTTCGGTGACCTGCGGGTAGAGGTCGAGGGCCGTAAGCGCTCGATCCTGGTGCGGTTCAACGACCCGGTGCGCGACGGCTGGGACGACTTCACCGCCGACATCATCGTGGCACTCGACAACCCGTACGGAGCTGGCCTTTACATCCCCCGGTACGACAACTGGGACCGATCGCACCCTGAGAAGCACACCGCGCTAGTGCGCAACGCGATCGAGTCGTCGAAGGTCCGGTACGCGCGTGCTGTGCGCCTGCTCAAGCACTGGAACCGCAACTGGTCCGAGCCTGCCGTGTGCACTTGGCACATCAAGGTCCTCGCCTTCGGATCTCTCACCGAGCCTGGCCGCATCCTGCCCGGGTTGATCGACTGGTTCGAGTACGCAGCCGAGCAGATCGACGCCGGACCCACCCCCGACCCGGCCAACGTTGGGCCGGACATCAAGCCCGCGATCAGAAAGGTCGACGCCGTCCGGCGACTGCGCGTCGCGGCTGAAAAGCTCGCACGGGCTCAGGCGCTTGAACAGGACGGGTGGCCGGTCCTCGCCCACGCGAAGCTGGCCGAGGTGTTCAAGGATCCGGACCTGTTGCCTGCACCACCGGACGACTCCGTGCGGCTTCAGGAAGCGGAGCGTCTCCGGCAGCGCAAGCCGGCCACCGGGCCGGCACTCGCGGGAGCAGTCCCGCCGGTGCGGTCGTGGTCGTGGAAGAGGTGAMARSDNYPTLEQLLEEARRRIQVAPGELDEAKRRRSAVRAALLKEFAGSRIYYNGSVAHGDALTPLTDVDLGVVVPDPDHEYGPGKRGPRELQDRAANAVKRQLKAEFGDLRVEVEGRKRSILVRFNDPVRDGWDDFTADIIVALDNPYGAGLYIPRYDNWDRSHPEKHTALVRNAIESSKVRYARAVRLLKHWNRNWSEPAVCTWHIKVLAFGSLTEPGRILPGLIDWFEYAAEQIDAGPTPDPANVGPDIKPAIRKVDAVRRLRVAAEKLARAQALEQDGWPVLAHAKLAEVFKDPDLLPAPPDDSVRLQEAERLRQRKPATGPALAGAVPPVRSWSWKRNANANANANA
AK018_03649546hypothetical proteinATGAGCGGCGGTGCGGCAGCAACGTGGTCGGCTCTCGGGTGGAGCGCCAGCGACTGGGCGGTAATCGTCGGACCCGTCGCAGCCGCGTTCGTCGCGGCCCTCGTCGCCGTCGGCGGCTACTTCGCGCAGCAGTGGATCGCACGGCGAGAGCGACGGCACACGGTCTACGCGGAGGCGCTTCGCGCCGTCGAGGACTACCTCGAAGCGCCGTATCTGGTCGCACGTCACGATGGCTCCGCGGCCACCCGGCGAGTACTGGTGCGGCACATCAGCGAGGTTCAGTCACGCCTCAACTACTACTGCGGACTCTTGCGCCTCCAAGCACCAAAGCGGGTCCATGAAGCCTACGGTGAGTATGTGTCGATCGCACGTCGCGAAGCAGGCGAGCAGATGACCGCCGCATGGCGTGCCAAGCCGATCAAGCGAGACCGCGACGTGCCACGCGGGTCTGGGTATTCACGGAATGATTCCTTCGCGGCCCGGGCCCGAGTCATCAGAGTGATGAAGTACCCGATATCTGCCCGGCGGTTGAATGGGTCGGGGTAGMSGGAAATWSALGWSASDWAVIVGPVAAAFVAALVAVGGYFAQQWIARRERRHTVYAEALRAVEDYLEAPYLVARHDGSAATRRVLVRHISEVQSRLNYYCGLLRLQAPKRVHEAYGEYVSIARREAGEQMTAAWRAKPIKRDRDVPRGSGYSRNDSFAARARVIRVMKYPISARRLNGSGNANANANANA
AK018_036501827yfkN_1COG0737Trifunctional nucleotide phosphoesterase protein YfkNGTGTCCACACCCCGCAGCCGCCTGCTCCCCGCCACCGCGGCCCTCGGCGTCGTCGCCCTCACGGCCGGGCTCGCGTCGCCGGCCGCCGCCGGCGACGGCGACCAGCGCCACGGCCCCGGCAACGGCGACTTCACCCTGACGATCCTGCACAACAACGACGGCGAGTCCAGCCTGCTGCCGACGGCGGTGGACACCGACGCGGACGGCACGGACGACGCCGAGTACGGCGGCATCGCCCGGTTCGTCGGCAAGGTCGACGCGCTGCGCCGGGCCGCCTACGTCGACGGCGACCGCGGCAAGCCGACCAAGCGCGGCGTCGTGACCCTGAACTCGGGGGACAACTTCCTGGCGGGCACGACGTTCCAGGCCTCGCAGCAGGAGGGTGCCCCGTTCTACGACGCCCTCGCGCAGAACCTGGTCCGCTACGACGCCCTCGGCGTGGGCAACCACGAGTTCGACTTCGGCCCCGCGGTGTTCGGCGAGCTCGTGGAGGACGTGAAGCGCACCCCCTTCGTCTCGGCCAACCTGGACTACTCCGCCGAGGAGTCCCTGGACGGGCTGGAGCAGCTCGTCCCCAGCACCGTCGTCCGGGAGCGCGGCCAGGAGATCGGCGTGGTCGGGCTGACGACGCCGTCGCTGCCGACCATCTCGTCCCCGGGTGACGTCGAGGTCCTCACCGACCTGGCCGGCATCGCGCAGGAGCAGGTCGACCTGCTCACCGAGCAGGGCATCGACAAGATCGTCCTCGTCTCGCACCTGCAGGGGCTGAGCAGCGAGATCGAGCTCGTCGGTTCTCTGACGGACGTCGACGTGGTCGTGGGCGGCGGCGGTGACGAGATCCTCGCCGACGGCTCGACCCAGCTGTTCCCGGGCGACGCGGACGACGTCTACGGCGAGTACCCCCAGATCGCCACCGACGCGGACGGCGTCGAGGTGCCCGTGGTGACCACGCCCGGCAACTACCGGTACGTGGGTCAGCTCGCGGTGACCTTCGACGCCGACGGTGTCGTCGTCGACGTCGCCGACGACTCGGGCATCAAGGTCGTCACCGACACCGGTGCCGAGGCCGTGGGCACGAACCGCAAGGCCGAGCGCACCATCGAGCAGCCGGTCGCCGACTTCGAGGCCGCCCTGGCCGAGGAGATCGTCGCCACGAGCGAGGTCGTCCTCGACTGCGAGCGGAGCGAGGTGCGCGGCGTGGAGGCGAACTGCGGCAACCTGATCGCCGACGCCCACCTGTGGACGGCGCAGGAGGCGGCGGCCGACTTCGGTCTGGACACCCCGCAGGTCGCCATCCAGAACGGCGGCGGCATCCGTGGCGAGATCGACCAGGAGGCCGGGTCCGTCTCGGTCGCCGACACGTTCCGCCTGCAGCCCTTCGGCAACTTCGTGGCCATCGCCGAGGACGTGCCCGTCGAGACGTTCCGCCAGATCCTGGAGGAGGGAGCGTTCCGGCTCCCCGAGTCCGGGGACGGCGCCTTCGTCCAGGCTGCGGGCTTCAGCTACACCGTCGACACCTCGTACCCGGCCCGCGACGCGGACCAGAGCACCGGTGAGCAGTTCGCACCGGGCGAGCGGGTGCGCTCGGTCGTCCTGGACGACGGCACCGTCCTCGTCGAGGACGGCGTGTCGGTCGACGGCACGGTGGACGTCGCCGGGCTGAACTTCTCGCTCAACGGCGGGGACGCCTACCCGACGCTCGAGAACACCACGATCGGTGTCTCCGACCAGCAGTCCCTGGAGAACTTCCTCGTCGACGGTCTCGGCGGGGTCGTCAGCCAGGCCGACTACCCGCGGGGCGGTGAGGGCCGGATCACGATCATGTGAMSTPRSRLLPATAALGVVALTAGLASPAAAGDGDQRHGPGNGDFTLTILHNNDGESSLLPTAVDTDADGTDDAEYGGIARFVGKVDALRRAAYVDGDRGKPTKRGVVTLNSGDNFLAGTTFQASQQEGAPFYDALAQNLVRYDALGVGNHEFDFGPAVFGELVEDVKRTPFVSANLDYSAEESLDGLEQLVPSTVVRERGQEIGVVGLTTPSLPTISSPGDVEVLTDLAGIAQEQVDLLTEQGIDKIVLVSHLQGLSSEIELVGSLTDVDVVVGGGGDEILADGSTQLFPGDADDVYGEYPQIATDADGVEVPVVTTPGNYRYVGQLAVTFDADGVVVDVADDSGIKVVTDTGAEAVGTNRKAERTIEQPVADFEAALAEEIVATSEVVLDCERSEVRGVEANCGNLIADAHLWTAQEAAADFGLDTPQVAIQNGGGIRGEIDQEAGSVSVADTFRLQPFGNFVAIAEDVPVETFRQILEEGAFRLPESGDGAFVQAAGFSYTVDTSYPARDADQSTGEQFAPGERVRSVVLDDGTVLVEDGVSVDGTVDVAGLNFSLNGGDAYPTLENTTIGVSDQQSLENFLVDGLGGVVSQADYPRGGEGRITIMPGPT0013400_414DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013400-ushA-K11751NANA
AK018_03651831rhaDRhamnulose-1-phosphate aldolaseATGTCCGACGACGACCGTGCCCGACCCGAGCTCGACGAGATCCTGTCCTCCATGGGATCCGGCGGCGCTCGCATCTGCGAGATCGACGCCTCCGAGGCCGGGGCCGGCAACATCTCCGTGTGCCTCGGGTGGGAGGTCGACGTCTCGCGGCGGTTCCCCCGCACCGAGCAGATCACGCTGCCGCTCGAGGCCCCGGCCCTGGCCGGCCGGACCCTGCTCGTGACGGGCTCCGGGCGACGGCTGCGCCAGATCCACGAGGACCCGGAGGCCGCCGTCGGCGCGGTCGTGGTGCACCCCGGCGGGCGCGAGGCGACGCTGCACACGTCGCCGCGCCGGCTGTTCGCCCAGCTCACCAGCGAGTTCAACTCGCACCTGGCGGTCCACCAGGATCAGGTCGCCCGACGCGGTGTCGACTTCCAGGCCGTCGTCCACGCTCAGCCGATCCACCTGACCTACCTGTCGCACGTCCCCGCCTACGACGACACGGCCGCGATGAACGCCCGGATCCTGCGCTGGGAGCCGGAGTCGATCGTGGCGCTCTCGGCCGGGGTCGGCGTCCTGGAGTTCATGGTCCCCGGGTCCGAGCAGCTCATGGCCGCGAACGTCGAGGGCCTGCGGGACTTCGAGATCGTGCTCTGGTCCAAGCACGGGGTGATGGCGCGGTCCGACCTGTCCGTGACCCGCGCCGTCGACCGCGTGGAGTACGCCGAGACCGGGGCGCGCTACGAGTACATGGACCTCGTCGCCGGCGGGCGCGCCCAGGGCCTCACCGACGCCGAGATGTCCTCTGTCGCTCGGGCGTTCGACGTCGACTCGCCCTGGGTGCGCTGAMSDDDRARPELDEILSSMGSGGARICEIDASEAGAGNISVCLGWEVDVSRRFPRTEQITLPLEAPALAGRTLLVTGSGRRLRQIHEDPEAAVGAVVVHPGGREATLHTSPRRLFAQLTSEFNSHLAVHQDQVARRGVDFQAVVHAQPIHLTYLSHVPAYDDTAAMNARILRWEPESIVALSAGVGVLEFMVPGSEQLMAANVEGLRDFEIVLWSKHGVMARSDLSVTRAVDRVEYAETGARYEYMDLVAGGRAQGLTDAEMSSVARAFDVDSPWVRPGPT0017790_212DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017790-rhaD-K01629NANA
AK018_03652495gpt_1Xanthine phosphoribosyltransferaseATGAGCGACGAGCAGCGTGAGGTCCTGACCTGGTCCGACTTCGCCGCGGGGGTGCGACGGCTCGCCGAGCAGGTCGTGGCCGACGGGTTCCGCCCCGACGTGGTGGTCGCCGTGGCGCGTGGCGGCCTGGTGCCCGGCGGTGCCGTGGCCTACGCCCTGGGCACCAAGGGCGTCGGCACGATGAACGTGGAGTTCTACACCGACATCGGTCGCACCCTGCGCGACCCGCGCGTCCTGCCGCCGCTGATGGACACCGCCGAGCTGCCCGGGTCGCGCGTCCTCGTGGTCGACGACGTCGCGGACTCGGGCCGCACGCTCGAGCTGGTGATGCGGATGCTCGCCGAGCAGGGGGCCGACGCCCGGGCCGCCGTGCTGTACACGAAGCCGCGCTCCGTCTACCGGCCGGAGTACTCGTGGCGCGAGACGGACCGGTGGATCACGTTCCCGTGGTCGGCCGAGCCTCCTGTCCCGGGGGCCGTCGACTCCCCCGCCTGAMSDEQREVLTWSDFAAGVRRLAEQVVADGFRPDVVVAVARGGLVPGGAVAYALGTKGVGTMNVEFYTDIGRTLRDPRVLPPLMDTAELPGSRVLVVDDVADSGRTLELVMRMLAEQGADARAAVLYTKPRSVYRPEYSWRETDRWITFPWSAEPPVPGAVDSPANANANANANA
AK018_03653978hypothetical proteinGTGAAGCTCCGTACCCCCGCCGCCCTCGGCGTCGTGCTCGCCGCCGCCCTCGTGCTGGGTGGCTGCAGCGACGACGGCGACGCTCCCGACGGCGCGGAACCGTCGGCGTCCGCCTCCGCCGACTCCTCGGCCTCCGCCACCGCACCGGCGCAGGCCGACCCGACCGACGAGGACATCGCCGCCCTGGAGGCCGTCGAGGTCTCCGGAGAGCCCGGGTCCGAGCCGGAGCTGTCCTTCGAGGAGATCGAGGTCTCCGTGCCGACGCACCGGGTCGTGGACGAGGGCGACGGCGACGAGCTCGTCGAGGGCATGAAGGTCCGCATGCAGTACGTGACCTACGACGCCGCCGGCCAGCGGGTGAGCTCGACGTGGGAGGTCGACTCCCCGCAGAGCTTCGTGCTCGGCGACCCCCAGTTCGACCTGCTGACCGAGCCGCTCGTGGGCCAGTCCGTCGGCACCCGCGTGCTCCTGGCGAACCCGATCGTGGACCAGGAGAACAACCCGACCACGGCCGTGAACCTCATCGAGGTCGTCGAGGCGTACGAGATCCCCGACCGCGCCGAGGGCGAGACGGTCGAGCCCGCCGAGGGCCTGCCGACCGTGACGCTGGGCGAGGACGGCGCGCCGTCGATCGAGATCCCCGGCGGCTACGAGGGGCCCGAGCAGCTGGTCGCCCAGACGCTGATCCGCGGCGACGGCGCCGAGGTGTCGGCCGAACAGACGGTGACCGCGCACTACACGGGCTGGACGCTGGACGGCGAGGTCTTCGACTCGTCCTGGGAGCGCGGCGAGCCCGCCTCGTTCTCCCTGCAGCAGGTGATCCCGGGCTGGACCGACGGCCTGTCGGGCCAGACGGTCGGCAGCCAGGTGCTGCTGGTCATCCCGGCCGAGCAGGCCTACGGCGCCGAGGCCGTCGAGGGCAACGAGCTCGCCGGCGAGGACCTGATCTTCGTCGTCGACATCCTCGACGTGGAGTGAMKLRTPAALGVVLAAALVLGGCSDDGDAPDGAEPSASASADSSASATAPAQADPTDEDIAALEAVEVSGEPGSEPELSFEEIEVSVPTHRVVDEGDGDELVEGMKVRMQYVTYDAAGQRVSSTWEVDSPQSFVLGDPQFDLLTEPLVGQSVGTRVLLANPIVDQENNPTTAVNLIEVVEAYEIPDRAEGETVEPAEGLPTVTLGEDGAPSIEIPGGYEGPEQLVAQTLIRGDGAEVSAEQTVTAHYTGWTLDGEVFDSSWERGEPASFSLQQVIPGWTDGLSGQTVGSQVLLVIPAEQAYGAEAVEGNELAGEDLIFVVDILDVENANANANANA
AK018_03654300hypothetical proteinATGCCGTCCCGTCGTCCCTCCCGCAAGCGCCCCTGGGGTGCGCAGCACCAGCCCCTCGACATGGATCGCGCGCTGGGTGGCGTCCGGCACGAGACCGCCGCGGACGGCGAGTGGACGGTCCGGCGGGTGCGGGGCGGCGACAAGCCCTACGTGTGCCCGGCCTGCCGGCAGCAGATCCCGCCCGGGACGGCGCACGTGGTCGCCTGGCAGCGGGACGCCTGGGGTGGCGAGGCGGCGGGCCTCGCCGACCGTCGGCACTGGCACGCCTCCTGCTGGCAGCGTCGCGAACGTCTGCGCTGAMPSRRPSRKRPWGAQHQPLDMDRALGGVRHETAADGEWTVRRVRGGDKPYVCPACRQQIPPGTAHVVAWQRDAWGGEAAGLADRRHWHASCWQRRERLRNANANANANA
AK018_03655780hypothetical proteinATGAACGAGGACACCGCCACCGGCCACCAGATCCGCTCGATGACCGTCCTGCCCGCGCGGCGCGAGGACGTCGACCTGCACACCGCGGACGGGCTGACGCTCGTCGGCGAGCTCGCCCTGCCGGCGGACCGTGACCCGGTGGCCACGCTGCTGACGTTCCACCCGCTGCCCACCCACGGCGGATACATGGACTCGCACGTCTACCGCAAGGCGGCGTGGCGCCTCCCCGAGCTGGCCGACCTGGCGGTCCTGCGCTTCAACACGAGGGGCACCTCGTCGTCGCGGGGAACCTCCGAGGGCTCGTTCGACGGCGGGGAGTCCGAGCAGTACGACGTCGCGGCGGCGCTCGAGCTCGCCGAGTTCCGCGAGCTGCCGCGCCCGTGGCTGGTCGGCTGGAGCTTCGGGACCGAGCTCGTCCTCAAGCACGGCGCCGACCCGAGCATCGAGGGCGCGATCCTGCTCTCCCCGCCGCTGCACCGCGCGACGGACGCCGATCTCGACCGTTGGGCGGAGTTCGGCAAGCCGCTCGTCGTCCTGGTCCCCGAGCACGACGACTACCTGCGTCCCGACGAGGCCCGTGCCCGGTTCGCCCGCGTGCCCCAGGCCGAGGTCATCGGTGTCGACGGTGCCAAGCACCTGTGGGTGGGCGAGCCCGCGGTGCGCCGCGTCCTCGACGAGATCGTCCAGCACGTCCTGCCCGGCCACGCCCCCCTGCCGACCCGCTACGCCGGGGAGGTCGAGCACGCCTCGGACCTCCCCTCCGCCCCCACGAGAGGATGAMNEDTATGHQIRSMTVLPARREDVDLHTADGLTLVGELALPADRDPVATLLTFHPLPTHGGYMDSHVYRKAAWRLPELADLAVLRFNTRGTSSSRGTSEGSFDGGESEQYDVAAALELAEFRELPRPWLVGWSFGTELVLKHGADPSIEGAILLSPPLHRATDADLDRWAEFGKPLVVLVPEHDDYLRPDEARARFARVPQAEVIGVDGAKHLWVGEPAVRRVLDEIVQHVLPGHAPLPTRYAGEVEHASDLPSAPTRGNANANANANA
AK018_03656795carC2-hydroxy-6-oxo-6-(2'-aminophenyl)hexa-2,4-dienoic acid hydrolaseATGACGCCCACCCCCCTGGCGACGCACGTCCTGCACGACGGGGCGGGCGTCCCGCTGGTCCTGATCCACGGCTTCCCGCTCGACCATCGGATGTGGAGCCCCGTGGTCGCCGAGCTGCCCCCCGGGCTGCGGGTCGTCGCCGTCGACCTGCCCGGCTTCGGCCACAGCGACCTCGGTCACACCCCGCCGACCCTGGAGGCCGCCGCCGACGCCGTGCACGCCGCGCTGCGTCACGCCGGGGAGGGCAACGGCGCGGTCGTCGGCCTGTCGATGGGCGGCTACGTCGCCCTGACGCTCGCCGAGCGCCACCCCGAGGTCGTCCACGGCCTCGGCCTGGTGGACACCAAGTCCACGGCGGACACCGAGGAGGCGCGGGCCGGACGGCTGGCGACCGCGCGCGCCGTCGAGGACACGCAGACCCTCGACGCGGTGATGGGGATGCCGGACAAGCTGCTCGGTCCGACGAGCAAGATGGAGCGCCGCAGCCTCTACCCGACGGTCGACCACTGGATCCGGTCGCAGTCCCCGTCCGCCGTGGCGTGGGCCCAGCGCGCGATGGCGGCACGACCCGACCGCACCGACGTGCTGCACCGGTTCGCCGGCCCCGTGGCCGTCGTGGTCGGGGCGGAGGACAGCATCACCCCGATCGACGAGGCCAAGCACATGGTCGACGCCGCGTCGGACGCGACGCTGCACGTCGTGGCGAACGCCGCGCACCTCAGCACCCTCGAGGAGCCCGCGGCCGTGGCGCAGGCGCTCGCCGAGCTGCACGAGAGGGTCGTCGAGCAGCTCTGAMTPTPLATHVLHDGAGVPLVLIHGFPLDHRMWSPVVAELPPGLRVVAVDLPGFGHSDLGHTPPTLEAAADAVHAALRHAGEGNGAVVGLSMGGYVALTLAERHPEVVHGLGLVDTKSTADTEEARAGRLATARAVEDTQTLDAVMGMPDKLLGPTSKMERRSLYPTVDHWIRSQSPSAVAWAQRAMAARPDRTDVLHRFAGPVAVVVGAEDSITPIDEAKHMVDAASDATLHVVANAAHLSTLEEPAAVAQALAELHERVVEQLNANANANANA
AK018_036571524hypothetical proteinGTGTCCGACGAGCGCACGCTCTTCCCGATCACCATGCGCGGCTACGACCGCGCCGCGGTCGAGAGCCAGATCTCCCGTCTCGAGCAGGCCGTGGAGGAGGCGCGCCGCAACGTCGAGGCCACCGACGCGCGGGCGATGCAGCTCTCCTCCGAGCTCGCCGACGCCCACCGCCAGCTGCGCGAGAACGACAAGCCGTCCTACGCCGGCCTCGGGGCCCGTGCCGAGCGGCTGCTGCGGTCGGCGGACGAGCAGTCGGCGGAGGTCCTCCGGCAGGCGAACCAGCAGGCGTCCGACATCATGGCTCGCGCCAAGCTGTCGGCCGGGCAGGTCCGGCAGCGCGCCGAGTCCGAGGCCTCGGAGCTGCTCGCCAGCGCGCGCCGCGAGGCCGAGGAGATCCGGTCCACCACCGCGGCGGAGGCCGAGGGCACGCTGCAGGGCGCCCAGCGCCGCGCCGAGGAGCTCGTCGGTTCCGCCGAGCGCGAGGCCGCGCTGATCACCAGCACCCTCGCCACCGAGGAGAGCGAGCGCCGCGCCGGTCTCGAGCGCGAGGTCGGCACGATGCGCACGACGGCGGAGCGCGAGGTGACCGAGGCCCGCGTCGAGGCCGACCGCGAGATCGCCCAGATGCGCGCCGCGGCCGCCGCCGAGTCGGCCGCCCTGCGCGAGGAGGCCGAGCGCGAGGCCAACGACCTCATGGAGCGCACCCGCAACGAGGCCGCGCGGATCGTGGCCGACGCCAAGCACCAGGCGGCCGAGTCCGCCCACGCGGTCACCTCCGAGCTCGAGGATCTGCGGGAGCAGGCTCGGGCCACGCTCGCCGACGCCGAGCTGCAGGCCGCGCAGACCCGGGAGCGCGTCGAGACCGACGCGGCCGAGCGGCACGAGGCGGCACGAGCCGAGACCGAGCGCGTGGTGCGCGAGGCGGAGGAGCACGCCGCCGAAGCCGAGAAGCGGGTCGCCGCGGCCCTGCAGCAGGCCGACCGCGTCCGCTCCGAGTCGGACGCCTACGTCAAGGAGCTCGTCGCCGACGCCAGACGGACCGCGGACTCCATCGTCTCGGAGGCACGGACCTTCGCCGAGCAGACGGTCTCCGACGCCCAGGCCGAGGCCGACCAGAGCCGCACGTCCGCAGAGCGCCAGCTCGAGGACCTCACCCGCCGTCACGACTCGATCAACTCCTACCTGGAGGAGCTGCGGGGGCTGCTCGGCAGCGAGAAGGTCGCCGACATCGCGGAGGAGGCACCGGTCGACACGGGCGACGACGCCGAGGCCGTGACCCCGGCCGCGGCCTCCGCCACGTCCTCGGCCCCGGCCGAGTCGCCCGCCGGTGACGCCGTCGATGGCGAGGCGGCGGAGGCCGACCGGGCCGCGCTGGACCAGACGCCGGCGCAGGCCGCTCGTGCCGCCTCGACCCAGTCCGCCGCGGCGGACGACTCGGCGTCGGCCGACTCGGGCAGTGCCGCCTCCCCGCCCGCGCCCAGCGACTCGCCCACGGCGGAGAGCTCGACGACGTCGCGGGCCTGAMSDERTLFPITMRGYDRAAVESQISRLEQAVEEARRNVEATDARAMQLSSELADAHRQLRENDKPSYAGLGARAERLLRSADEQSAEVLRQANQQASDIMARAKLSAGQVRQRAESEASELLASARREAEEIRSTTAAEAEGTLQGAQRRAEELVGSAEREAALITSTLATEESERRAGLEREVGTMRTTAEREVTEARVEADREIAQMRAAAAAESAALREEAEREANDLMERTRNEAARIVADAKHQAAESAHAVTSELEDLREQARATLADAELQAAQTRERVETDAAERHEAARAETERVVREAEEHAAEAEKRVAAALQQADRVRSESDAYVKELVADARRTADSIVSEARTFAEQTVSDAQAEADQSRTSAERQLEDLTRRHDSINSYLEELRGLLGSEKVADIAEEAPVDTGDDAEAVTPAAASATSSAPAESPAGDAVDGEAAEADRAALDQTPAQAARAASTQSAAADDSASADSGSAASPPAPSDSPTAESSTTSRANANANANANA
AK018_036581545hypothetical proteinGTGCTGCAACGCATTCTGGGTGTCGTCCTGGTCCTCGCCGGACTGGGCGCCATCGCGTTCGGGGTCGCGACCGCGACCGTCCTGCGCGAGTCCGACACGGTCGCCGCGACGGCCACGCCGACCGGGGACGGGACGTTCGTCGTCACCGACCCGGGGGTGCTCGACCTCGTCGACTCCGAGGTGACCGTCACGGCCTCCGTGCCCGCAGGGCAGCAGGTCGCCGTGGTCGTCGGCCGGGACGTCGACGTCACCGGGTGGATCGGTGACGACCCGTACACACGCGTCACCGGGCTCACCGACTGGGACACCCTGAGCACCGAGCAGGTCGCCGGGTCCGCCGAGGAGGACGCCGACGCCGAGGCCTCGGAGGACGCGGAGGGGGAGGAAGCGGCCGAGCCGCCGCCGACCCCGGCCGGTTCCGACATGTGGGACACCGAGCTGGTGGACGCCGAGCAGGTCACCCTGCGCTGGACGGACCGCCCCGGCCGGTGGGTCCTGCTCGCCGCGGCGACGGGTCCCGCTCCCGTCGAGGAGGCCGAGGGCGAGGAGGGCGAGCAGGCCGACGCCGAGGAGGCCCCGACCGACGTCGAGGCGCCGACCCTCGAGCTGACCTGGGACCGCGAGGTCTCCACGCCGCTGCTGTGGCCCGCCGTCGGCGCGGGTGGCGTGCTGCTCCTGGTGGGCGTGGTGCTGCTGCTCGCCGGCCGCCGGTCGCGCAAGAAGGCGCGCACCCGCCGCGCGGCCGTCGCCGCCTCGTCGTCGTCCGCCTCCGCCTCGCCCGCCAGGTCGCCCGCCACGTCGCCCACCGTCGGCGACCCCGGCACCGGGTCCGGCGCGTCCGGCTCCTCGGCCGCGTCGCCCTTCGCGCCGACCACCGGGGCCGCCGCCGGTGCGGCGGGCGCTGCCGGCACTGCCACGTGGCGTACGGGCGGGTCGTGGCCCGAGACGGTGAGCACCTCGTCCGACGACGCCGCGACCTCGGCGCAGGACGACGCCACGGTCCCGGAGTCGCAGGACGACGACTCGACCGGCACGGCCCCGGTCCCGGTCGCCGGCCGGTTCCGTCGGCGGTCGCGGCTGCGACGCGACACCGCCCCGGCCGAGGACACCGCGAGCCCGTCCGCCCCGGCCCCCGAGGCGCCGTCCCCTGATGCGCCGGCCGCCGGCGCGCCGGTCCCGGCACCGGCGCCCGCGCTGCCGACCGCTCCGGCCGGTCCGGAGAGCTCGGCGGACGCCGACGCGACGTCGGCCGACACCGCCGGCCGGCCGCTGACGCGCCGCGAGCTGCGGCGCCGCGAGGAGGAGCGCCGGGCCGCCGGCCCGTCGGGCATGGGGCGCGCGCTGCGTGCTCTGACCGGCCAGACCCCCGTGGTGCCGGGGCCCGGCGGGACGACCGGCCCGCAGGCCCCCACCGAGCCCGGGGAGGCGCCGTCGGCCGAGAGTCGTCGGGCCTCCGCGTGGCGGGAGACCTGGGGCTTCGGCGGCACGACCGGTGGCACGACGACCGCGGCGGACGACGACACGACTGACGAGGACACGCGATGAMLQRILGVVLVLAGLGAIAFGVATATVLRESDTVAATATPTGDGTFVVTDPGVLDLVDSEVTVTASVPAGQQVAVVVGRDVDVTGWIGDDPYTRVTGLTDWDTLSTEQVAGSAEEDADAEASEDAEGEEAAEPPPTPAGSDMWDTELVDAEQVTLRWTDRPGRWVLLAAATGPAPVEEAEGEEGEQADAEEAPTDVEAPTLELTWDREVSTPLLWPAVGAGGVLLLVGVVLLLAGRRSRKKARTRRAAVAASSSSASASPARSPATSPTVGDPGTGSGASGSSAASPFAPTTGAAAGAAGAAGTATWRTGGSWPETVSTSSDDAATSAQDDATVPESQDDDSTGTAPVPVAGRFRRRSRLRRDTAPAEDTASPSAPAPEAPSPDAPAAGAPVPAPAPALPTAPAGPESSADADATSADTAGRPLTRRELRRREEERRAAGPSGMGRALRALTGQTPVVPGPGGTTGPQAPTEPGEAPSAESRRASAWRETWGFGGTTGGTTTAADDDTTDEDTRNANANANANA
AK018_036591089hypothetical proteinATGAAGGACTTCACCCGCCGGCCCGGACGCCGGGCCGCGGCCGCCGCCGGTGCGGCGACCACCGTCGTCCTGCTGGCCGGCTGCGCCGACGAGCTGCCGACGCCCGTCGCCGACGACCCGTTCACGGGACCCGCGCTGACCGCTGCCCAGCAGACGCGTGTCGTCGAGGAGGTGGCCGCGTCGCTCGACCGGGCGAGCAAGAACGAGCAGCCGAAGCGGCTGCGCCCCCGCGTGGAGGGGCCGGCCTTCGAGGTCCGGCGCAGCCAGATCAGGGTCGCCGAGGAGCGGGGCGACGACTCGCTCGTGACGAACATCCCGACCGATCTCGAGGCGATGATCCTGCCGACGACCGAGTCGTGGCCCCGGGTCAGCTTCACCATCACCCAGCCGACCGAGAACCTCGAGGTTCCGCGTCTGGTGGCGTACCAGCAGGACTCCGCCCGCGACAACTACAAGCTCTGGTCCTGGGTGCAGCTCATCCCGGGCACCACCCTGCCGAACTTCGCCGACCCCGAGGCGATCGGCTCGGACGCCGTGGCGCCCGACGACGAGTCCCTCGTCGTGACGCCCAGCACCGCGCTCGCGCGCTACGCCGACCTCGTGGCCGAGGGGCCCGACGACGCCGAGCACGCAGACGCCTTCGAGCTGCCCGGCGAGAGCCAGGACCTGGTCAAGCGGGTCCAGGCGGACGCGCGCAACGTGCGCGGTGCCGAGGCGTTCGAGGAGGCCGACGGCGAGTACCGGCTGACGTTCGCCTCGCGCGACGACCAGGTCGTCGCCGTGCGCACCTCGGACGGCGGTGCCGTCGTCATGGGTGTGCTGGACGGCAACATCCGGGTGACGGTCGAGGAGGACGGCGAGATCGGCCCGCTGACCGAGACCCAGAAGGCCCTCATCGGGGACGAGGACAACACCAACGAGCTGTACGTGGAGTACACCGACCAGGTGGCGCTCTACGTGCCGCCCGAGGGGTCCGACGAACCGATCCGGCCGCTGGGCTACTCGCACGTCTCCACGGACGCGGCGACCTCGATCCCCGGCGACCGCAACACCGACCGGAAGTCGAACGACGACGGGTCCGACGGCTGAMKDFTRRPGRRAAAAAGAATTVVLLAGCADELPTPVADDPFTGPALTAAQQTRVVEEVAASLDRASKNEQPKRLRPRVEGPAFEVRRSQIRVAEERGDDSLVTNIPTDLEAMILPTTESWPRVSFTITQPTENLEVPRLVAYQQDSARDNYKLWSWVQLIPGTTLPNFADPEAIGSDAVAPDDESLVVTPSTALARYADLVAEGPDDAEHADAFELPGESQDLVKRVQADARNVRGAEAFEEADGEYRLTFASRDDQVVAVRTSDGGAVVMGVLDGNIRVTVEEDGEIGPLTETQKALIGDEDNTNELYVEYTDQVALYVPPEGSDEPIRPLGYSHVSTDAATSIPGDRNTDRKSNDDGSDGNANANANANA
AK018_03660942COG3118putative proteinATGAGCACTCCCACGCCCGAGCCGAGCTTCAGCCCGCGCGGCGCCGTCGACCTGTCGGCCCTGAACCGACCCCAGTCCCCGCCCCCCGGGGAACCGGGCGGCGCACCGACGGCCGGGGGGTTCGTCGTCGACCTGACCGACGCGAACTTCCAGCAGGTCGTCCAGGACTCGACGACGTACCCCGTCGTGGTCCTGCTGTGGATGCCCACGGACCAGGCGAACGCCGACCTCGGCACCACGCTGGGCCGGCTCGCCGACGAGTACGCCGGACGCTTCCTGCTGGGACGCGTCGACGCCGACGAGTACCCGCAGATCGCGGCGGCGTTCCAGCCGCAGGGCGTCCCCACCGTCGTCGCCGTGCTGCAGGGGCAGCCGCTCCCGCTGTTCGCGGGAGCCGCCTCCGAGGAGCAGATCCGCGGTGTGCTGGACCAGGTCCTCGCCGCCGCCGAGCAGAACGGCGTGACGGGCCGCGTCCCCGGTGCCGGCGCCGAGGAGCCGGAGCAGCCCGCCGAGGAGCCGGAGGAGCCGCTGCCGCCGCTGCACCAGGAGGCCTACGACGCCATCGAGCGCGACGACCTCGACGCCGCGGCGACCGCCTTCTCCCGGGCGGTCACCCAGGACCCCACCGACGCCCAGGCCGTGGCGGGTCTCGCCCAGGTGCGCCTCATGCAGCGCACCCGCGGTGCCGACCTGCAGCAGGTGCGCACCGCTGCGGCGGACGCACCGGCCGACGTCGACGCCCAGCTCGCCGTCGCCGACATGGACATGCTCGGCGGGAAGGTCGACGACGCGTTCGACCGGCTGCTGCAGCTCATGCCCGGCGCCGACGCGGACGACAAGGAGAAGCTGCGCGCGCGGCTCGTCGACCTGTTCGAGGTCGTCGGGACGTCCGACTCCCGGGTCGTCAAGGCACGCAAGAAGATGATGATGTTCCTGTACTGAMSTPTPEPSFSPRGAVDLSALNRPQSPPPGEPGGAPTAGGFVVDLTDANFQQVVQDSTTYPVVVLLWMPTDQANADLGTTLGRLADEYAGRFLLGRVDADEYPQIAAAFQPQGVPTVVAVLQGQPLPLFAGAASEEQIRGVLDQVLAAAEQNGVTGRVPGAGAEEPEQPAEEPEEPLPPLHQEAYDAIERDDLDAAATAFSRAVTQDPTDAQAVAGLAQVRLMQRTRGADLQQVRTAAADAPADVDAQLAVADMDMLGGKVDDAFDRLLQLMPGADADDKEKLRARLVDLFEVVGTSDSRVVKARKKMMMFLYNANANANANA
AK018_036612220glgB_2COG02961,4-alpha-glucan branching enzyme GlgBATGACGTCCGTGCCATCTGCTGTCGACCCGGAACTCCTCACCGCCGTCGCGCGCGGCACCACGCACGACCCGCACGCGGTGCTCGGGGTGCACCTGCTGCCCGTCGACGAGGACGGTCCGCCGTCGGCGGTGGTGCGGGTGCTGCGCCCCCTGGCCGACGAGGTCGTCGTCGTCGCGGGCGGACCCGACGGGGACGTCGAGCAGCCCGCGACCCACGAGGCCGGCGGGGTGTGGAGCGCGGTCGTCCCGGCCCTCGCGGACGAGGACGGCACCCGGCACGTGCCCGACTACCGGGTCCGGACCCGCTACGGCGACGACGTCCAGACCGCCGACGACCCGTACCGCTTCCTGCCCTCGCTGGGCGCGGTCGACCTGCACCTGGTGGGCGAGGGCCGCCACGAGGAGCTGTGGCGGGTGCTCGGCGCGAACCGGCACGTCTATCCCAGCGCGCGCGGCGACGTCGTCGGCACCTCCTTCGCGGTGTGGGCGCCCAACGCCCGCGGCGTGCGCCTGGTCGGCGACCACAACCGCTGGACGTCGGTGCACCCGATGCGCTCCCTCGGCTCCAGCGGCGTGTGGGAGATCTTCGTGCCCGGCGTCGGTCCCGGCACCCGCTACAAGTACGAGATCTGCGGCCCGGACGGCACCTGGCGCGCCAAGGCCGACCCGCTGGCGAAGGCGACGGAGGTGCCGCCCGCGACCGCCTCCGTCGTCGTGCACAGCGACTACACCTGGGACGACCACGACTGGATGACCCGACGGGCGTCCCGGGACCAGCACGGCGGCCCGATCAGCGCCTACGAGGTGCACCTCGGCTCCTGGCGCCCCGGCCTCGGCTACCGCGAGCTCGCCGAGCAGCTCACGGAGTACGTCGTCGAGCAGGGCTTCACCCACGTCGAGCTGCTGCCCGTGGCCGAGCACCCGTTCGGCGGGTCGTGGGGCTACCAGGTCACGAGCTACTACGCGCCGACGTCGCGGTTCGGCTCCCCGGACGACTTCCGGTTCCTGGTCGACCGGCTGCACCAGGCCGGCGTCGGCGTCATCCTCGACTGGGTGCCCGCGCACTTCCCCCGGGACGACTTCGCCCTGGCGCGGTTCGACGGCACCCCGCTGTACGAGCACGCCGACCCGCGACGTGGCGAGCAGCCCGACTGGGGCACCTACGTCTTCGACTTCGGCCGGCGCGAGGTGCGCAACTTCCTCGTCGCGAACGCCACCTACTGGTTCGAGGAGTTCCACGCCGACGGCCTGCGCGTCGACGCCGTGGCGTCGATGCTCTACCTCGACTACTCGCGCAACGAGGGCGAGTGGACCCCGAACGTCCACGGCGGGCGCGAGAACCTCGAGGCGATCAGCTTCATCCAGGAGGCCAATGCGACCGCCTACCGCCGCACCCCCGGCGTGCTGATGATCGCCGAGGAGTCCACGGCCTTCCCCGGGGTCACCCGGCCCACCGACGCCGGCGGTCTCGGATTCGGCCTGAAGTGGAACATGGGCTGGATGAACGACACGCTGCAGTACGTCGCCAAGGACCCGATGTACCGCAGCCACCACCACGGCGAGCTGACGTTCTCGCTAGTCTACGCGTTCTCCGAGCAGTACGTGCTGCCCATCAGCCACGACGAGGTCGTGCACGGCAAGGGCTCGCTGCTGCGCAAGATGCCCGGCGACCGGTGGCAGCAGCTCGCCGGGGTGCGCTCCTTCCTCGCCTACCAGTGGACCCACCCGGGCAAGCAGCTGCTGTTCATGGGCAGCGAGTTCGCCCAGGAGGCCGAGTGGAACGAGGGCACCGGTCTGGACTGGTGGAGCCTGGACGACGCCGGGCACGCGGGCGTGCAACGCCTGGTGCGGGACCTGAACCACCTCTACCGCGCGACGCCGTCGCTGTGGGAACGCGACTTCGACGGGTCCGGCTTCGAGTGGATCGAGGCCGGGGACGCCGGCCGCAACCTGCTGGCCTACGTCCGGCGGGCGGCCGACGGCTCACCGGTCGTGGTCGTCGTGAACTTCGCGGGCGTGCCGCACGAGGGCTACCGGCTCGGTCTGCCCGACGGCGGCGCCTGGACCGAGGTGCTGAACACCGACGCGGTCGAGTACGGCGGCTCCGGCGTGGTCAACGTCGGCGACGTCGTCGCCGAGGAGACCCCCTGGCACGGCCGCGCGCAGTCGGCGGCCCTGCGGGTCCCGCCGCTGGGCGCCCTGGTCCTCGCCCCGCGCTGAMTSVPSAVDPELLTAVARGTTHDPHAVLGVHLLPVDEDGPPSAVVRVLRPLADEVVVVAGGPDGDVEQPATHEAGGVWSAVVPALADEDGTRHVPDYRVRTRYGDDVQTADDPYRFLPSLGAVDLHLVGEGRHEELWRVLGANRHVYPSARGDVVGTSFAVWAPNARGVRLVGDHNRWTSVHPMRSLGSSGVWEIFVPGVGPGTRYKYEICGPDGTWRAKADPLAKATEVPPATASVVVHSDYTWDDHDWMTRRASRDQHGGPISAYEVHLGSWRPGLGYRELAEQLTEYVVEQGFTHVELLPVAEHPFGGSWGYQVTSYYAPTSRFGSPDDFRFLVDRLHQAGVGVILDWVPAHFPRDDFALARFDGTPLYEHADPRRGEQPDWGTYVFDFGRREVRNFLVANATYWFEEFHADGLRVDAVASMLYLDYSRNEGEWTPNVHGGRENLEAISFIQEANATAYRRTPGVLMIAEESTAFPGVTRPTDAGGLGFGLKWNMGWMNDTLQYVAKDPMYRSHHHGELTFSLVYAFSEQYVLPISHDEVVHGKGSLLRKMPGDRWQQLAGVRSFLAYQWTHPGKQLLFMGSEFAQEAEWNEGTGLDWWSLDDAGHAGVQRLVRDLNHLYRATPSLWERDFDGSGFEWIEAGDAGRNLLAYVRRAADGSPVVVVVNFAGVPHEGYRLGLPDGGAWTEVLNTDAVEYGGSGVVNVGDVVAEETPWHGRAQSAALRVPPLGALVLAPRNANANANANA
AK018_036621365mak_1MaltokinaseATGATCGACGTCTCCGTCCAGCACGCAGCCCCCGACCCGAGCGTCGGTGAGCTGCTCGCGGCCTGGCTGCCGACGCAGCGCTGGTTCCCCGGCGGTACGTCGGTGCGCGCCGAGCCCTGGTTGGCGGTGACGTTCGACCAGGAGGGGGCCGACGTCGCGGGGGGCGGCGGCGCGCACGGCGACGTCGTGCTGCTGCTCACGCGCCTCGTGGGGCCCGATCTGCCCGGCGGCGAGCTCCTCGCCCAGGTGCCGCTCGTGCTCAGCGACCCCGAGCACGTCGGCCTGGGGCACATCGGCACGGTGGAGACCGCCTCGGGCGAGGTCGCCGTGCACGACGGCGGCGCGAACCCGGCCTGCTGGGTGCTGCTGCTGCGTGCCATGGGGATCACCGGGGACGCCGCGACCTTGACCGAGCGCGGTCGGGTCCTGGCCGGCGAGCAGTCGAACACGTCGGTGATCCTGCCGGGCGTACCCTCCCCCGGAGGCGCGGGCGGGATGCTCAAGATCCTGCGCACCATCGCCGACGGGCCCCACCCCGACGTCGTCGTGCCCCAGGCGCTGACGGCCGACGGCTGGGAGGGCGTCCCGCGGTTCCTCGGCGCGCTGGAGATCGACGCCGACGACTCGACCGAGAGCTCGGTGCACCTGGCGATCCTGTCCGAGCTGGTGCCGCACGCCGAGGACGGGTTCGAGCTGGCCTGCGACCTGGCCAGCCGCGGCGAGTCCTTCGCCGAGCACGCCGGCGACCTGGGACACCTGGTGGCCGAGCTGCACCAGCGGATGGCCACGCTGCTGCCGGTCGGCCCGCCGCTGGACGCCACGTGGTTCGTCGCCGGGCTGCGCCGGCGCGCCGACCGCGCCGTGGCCGAGGCCGACGTGCTCGCCCCGCGGGCGGCGGAGATCTCGGCGCTGCTGGACGACCTCGAGCAGCGGCTGGCGGCCCTGCCGGAGCCGGTCGCGACCCAGCGCATCCACGGCGACCTGCACCTGGGCCAGACGCTGTTCGGCGCGGGCTGGAAGGTCCTCGACTTCGAGGGCGAGCCGCAGCGCTCGGTCGACGAACGGACCGCACCGGACCTGCCCCTGCGCGACGTGGCGGGCATGCTGCGGTCCTTCGACTACGCCGCAGCGGTCGCCGAGGCGCCCGACCCGGCGACGTGGCAGGCGGAGGCGGCCGAGGCGTTCCTCGCCGGGTACCGCGACGCGGCCCTCGCCCCGTCCGGCCTCGACGCCGAGACCGCCGCGACGGTGCTCGACGCCCTCGTGCTGGACAAGGCGCTGTACGAGGTGGTCTACGAGTCCCACCACCGGCCCACCTGGCTGCCCATCCCGCTGGGCGCGGTGGACCGGCTGCTGCGGGACTGAMIDVSVQHAAPDPSVGELLAAWLPTQRWFPGGTSVRAEPWLAVTFDQEGADVAGGGGAHGDVVLLLTRLVGPDLPGGELLAQVPLVLSDPEHVGLGHIGTVETASGEVAVHDGGANPACWVLLLRAMGITGDAATLTERGRVLAGEQSNTSVILPGVPSPGGAGGMLKILRTIADGPHPDVVVPQALTADGWEGVPRFLGALEIDADDSTESSVHLAILSELVPHAEDGFELACDLASRGESFAEHAGDLGHLVAELHQRMATLLPVGPPLDATWFVAGLRRRADRAVAEADVLAPRAAEISALLDDLEQRLAALPEPVATQRIHGDLHLGQTLFGAGWKVLDFEGEPQRSVDERTAPDLPLRDVAGMLRSFDYAAAVAEAPDPATWQAEAAEAFLAGYRDAALAPSGLDAETAATVLDALVLDKALYEVVYESHHRPTWLPIPLGAVDRLLRDNANANANANA
AK018_036631785treS_2COG0366Trehalose synthase/amylase TreSATGAACGCCTCCGCGCAGACCGGTGGCGTGGACGTCCCGCGCCCCATCACCCGCCAGATCCCGGTCCAGGCGCTGCCGCCGCGGCGCCAGCCGGAACCCCCGCCGCTGCCGAAGCCCGGCCTGGTCGAGGACCCGGACTGGTACCGCAAGGCGGTCTTCTACGAGGTGATGGTCCGCAGCTTCACCGACTCCGAGGGCGCCGGGTCGGGAGACCTGCGCGGGGTGATGGACCGGCTCGACTACCTGCAGTGGCTCGGGGTCGACTGCCTGTGGCTGCCGCCCTTCTACCCGTCCCCGCAGCGCGACGGCGGCTACGACGTCGCGGACTTCACCGCGATCGCCCCGCAGTACGGGTCGCTGCAGGACTTCGGCCGGCTCATCGAGGCGGCGCACGCGCGCGGCATCCGGATCATCATCGACCTGGTCATGAACCACACCAGCGACCAGCACCCCTGGTTCCAGGCCTCCCGCTCCGACCCCGAGGGCCCGTACGGCGACTTCTACGTGTGGGCGGACGACGACTCCGGCTACCAGGACGCGCGGATCATCTTCGTCGACACCGAGACCTCGAACTGGACCTTCGACCCGGTGCGCCGCCAGTACTACTGGCACCGGTTCTTCAGCCACCAGCCGGACCTGAACTACGAGAACCCGAAGGTCGCCGAGGCGATGTTCGACGTCGTCCGGTTCTGGCTGCGCTCCGGCGTGGACGGCTTCCGGCTCGACGCGGTGCCGTACCTGTACGAGGAGGAGGGCACCAACTGCGAGAACCTGCCGCGCACGCACGAGTTCCTGCGGCGGGTGCGGGCGATGATCGACGAGGAGTTCCCCGGCCGGATCATGCTGGCCGAGGCCAACCAGTGGCCGCACGACGTCGTGGACTACTTCGGGACCAGCGAGGACCCGGAGTGCCACATGTGCTTCCACTTCCCGGTGATGCCGCGCATCTTCTACGCCCTGCGCGACCAGCGAGCCACGCAGCTCCTGGACATCATGGCCGACACCCCGGAGATCCCGGCCGCCGGCGGGCAGTGGAGCACGTTCCTGCGCAACCACGACGAGCTCACCCTCGAGATGGTCTCCACCGAGGAGCGCGCCGCGATGTACGGGTGGTACGCCAACGACCCGCGCATGCGCGCCAACGTGGGCATCCGCCGTCGGCTCGCGCCGCTGCTGGACAACTCCCGCAAGGAGATCGAGCTCGCCCACGCCCTGCTGCTGTCCCTGCCGGGCAGCCCGTGCCTGTACTACGGCGACGAGATCGGCATGGGCGACAACATCTGGCTGCCCGACCGCGACGCCGTGCGCACGCCCATGCAGTGGACGCCCGACCGCAACGCCGGGTTCTCCACCGCCGACCCGGGCAAGCTGTACCTGCCGCTGAACCAGTCGCTGGTGCACCACTACCACCACATCAACGTGGAGGCACAGCTCGCGCAGCCCACCTCCCTGCTGCACTGGGTGCACGGCATGCTGGGCGTGCGGCGGCTGCACCCGACGTTCGGCACCGGCGACTTCCGCGCCTGCGAGGTGGACGACGAGGCGATCCTCGCCTACGTGCGGTCCGGCGACGAACAGCTCGTGGTGGCCGCCAACCTGTCCACGACGGCGCGGTCGGCCACGGTCTCGCTGCCCGGCATGGAGGGCTGGACGCTGACGGACCTCTTCGGCGGCGGCCGGTTCCCCCGAGTGTCCTCCGACGGCACGGTCCAGCTGTCCTGGGGCTCGCGCGACTTCTACTGGCTCCTCGCCACTCCCCCGGACCCGAGCGACGACGAAGGGTAGMNASAQTGGVDVPRPITRQIPVQALPPRRQPEPPPLPKPGLVEDPDWYRKAVFYEVMVRSFTDSEGAGSGDLRGVMDRLDYLQWLGVDCLWLPPFYPSPQRDGGYDVADFTAIAPQYGSLQDFGRLIEAAHARGIRIIIDLVMNHTSDQHPWFQASRSDPEGPYGDFYVWADDDSGYQDARIIFVDTETSNWTFDPVRRQYYWHRFFSHQPDLNYENPKVAEAMFDVVRFWLRSGVDGFRLDAVPYLYEEEGTNCENLPRTHEFLRRVRAMIDEEFPGRIMLAEANQWPHDVVDYFGTSEDPECHMCFHFPVMPRIFYALRDQRATQLLDIMADTPEIPAAGGQWSTFLRNHDELTLEMVSTEERAAMYGWYANDPRMRANVGIRRRLAPLLDNSRKEIELAHALLLSLPGSPCLYYGDEIGMGDNIWLPDRDAVRTPMQWTPDRNAGFSTADPGKLYLPLNQSLVHHYHHINVEAQLAQPTSLLHWVHGMLGVRRLHPTFGTGDFRACEVDDEAILAYVRSGDEQLVVAANLSTTARSATVSLPGMEGWTLTDLFGGGRFPRVSSDGTVQLSWGSRDFYWLLATPPDPSDDEGPGPT0014120_749DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0014120-treS-K05343NANA
AK018_036642109glgE2_1COG0366Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase 2GTGTCCGGGCATGTTGACGCGCACTCCCCGGCCCGTCTGACTAGCGTGGGGGGCGTGACGTCGCCCAAGCCCGCCCCGCCCCATCCCATCGGTCGCATCCCCGTCATCGAGGTCTCCCCGGTCGTCGAGGGCGGACGCTGGCCCGCGAAGGCGACGCCCGGCGAGGTCGTCCCGGTCGAGGCCACCGTCTTCCGCGAGGGTCACGACGCCGTCAGCGCCACCGCCGTGCTGTTCACCCCCGACCGGCGGCTGCACTCGTGGGCCCCCATGCGGGACGTCGCCCCCGGGCTCGACCGGTTCCAGGGATTCCTGCAGCCCGACGCCCCGGGCGACTGGTCGTTCCGCGTCGAGGCATGGTCGGACCCGTACGCCACCTGGGCCCACGACGCCACGATCAAGGTCGCGGCCGGGCAGGACGTCGACCTCATGCTCGCCGAGGGCGCGCTGCTGTTCGAGCAGATCGTCGCCCCGCGCCTGCAGCAGCGCCGCACCGCCGAGGACGCGGAGCTCCTGGACCGCGTGGCCCGGGAGCTGGCCGACACCACGCGCCCCGCCGAGGCCCGCCTCGCCATGGCCACCCAGCACACCGTGCGCGACGCCCTGCGGCACATCCCGCTGCGCCGCCTGGTCTCGGCGAGCGCCACCTACCCCCTGCAGGTGGACCGCCGGCTGGCCCAGACCGGCGCCTGGTACGAGATCTTCCCCCGGTCCGAGGGGGCCACCCGCGACGCCGACGGCACCTGGCGGTCCGGCACCTTCGCCACCGCCGCGGAGCGGCTGCCCGCCATCGCCGCGATGGGGTTCGACGTCGTCTACCTCACCCCGGTCCACCCCATCGGCACGACGTTCCGCAAGGGCCGCAACAACACCCTCGAGGCCGAGCCCGGGGACCCCGGCAGCCCCTACGCGATCGGCTCGCCCGACGGCGGGCACGACGCGATCCACCCGGACCTGGGCACCGCGGAGGACTTCACCGCCTTCGTGGACGCCGCGCGCGGCCAGGGTCTCGAGGTCGCCCTGGACCTGGCGCTGCAGTGCTCGCCCGACCACCCGTGGGTCGCCGAGCACCCGGAGTGGTTCACCGTCCGCGCGGACGGGTCCATCGCCTACGCGGAGAACCCGCCGAAGAAGTACCAGGACATCTACCCGCTGAACTTCGACACCGACCCGGTCGGGCTCTCCCACGAGGTGCTGCGCATCGTGCGGCTGTGGATCGACCGCGGCGTCACGCTGTTCCGGGTGGACAACCCGCACACCAAGCCGTTGGACTTCTGGGAGTGGCTGCTGGCGGAGGTCCGCGCCACGAACCCGGAGGTGATCTTCCTGTCCGAGGCGTTCACCAAGCCCGCCATGATGCAGACGCTCGGGCGGATCGGGTTCCACCAGTCGTACACGTACTTCACCTGGCGCAACACCGGCGAGGAGATCACGGAGTACCTGGCCGAGGTCTCCGGCGAGCAGGGCGCCGTCATGCGGCCCGCGTTCTGGCCGACGACGCACGACATCCTGCCGCCGTACCTCCAGCACGGCGGCGTCGCCGGGTTCGCCGTGCGGGCCGTGCTCGCGGCGACCGGCAGCCCCACGTGGGGCATCTACTCGGGCTACGAGCTCGTGGAGAACGTGCCCCGCCCGGGCGTCGAGGAGCAGATCGACAACGAGAAGTACGAGTACCGGCCGCGCGACTGGTCGGCCGTCGACGACATCGGCATCGCGACGCTGCTGCGGCGGCTGAACGAGATCCGTCGCGACCACCCGGCCCTGCAGCAGCTGCGCAACCTGACCGTCCATCCCACGACCAACCCCCAGGTGATCGCCTACTCGCGGCGCGTCCGCGCCGAGCACCTGCCCGCGGCCGGCCGTCCGGGGTCCGGCCACGACGACGTCGTGCTCGTGGTGATCAACCTCGACCCCCACCACCCCCAGGAGTCGACCGTGCTGCTCGATCTCGAGGCCCTCGGCCTGGACGCTCCCGACGACGTCGAGGACCAGGCCTTCTTCACCGTCCACGACGAGCTGTCCGGTGTCAGCTATCCGTGGGGGCGCCATCCCTACGTCCGGCTCGAACCGCAGGTGCAGGTGGGTCACGTGCTGAAGGTGGTGCCCGCATGAMSGHVDAHSPARLTSVGGVTSPKPAPPHPIGRIPVIEVSPVVEGGRWPAKATPGEVVPVEATVFREGHDAVSATAVLFTPDRRLHSWAPMRDVAPGLDRFQGFLQPDAPGDWSFRVEAWSDPYATWAHDATIKVAAGQDVDLMLAEGALLFEQIVAPRLQQRRTAEDAELLDRVARELADTTRPAEARLAMATQHTVRDALRHIPLRRLVSASATYPLQVDRRLAQTGAWYEIFPRSEGATRDADGTWRSGTFATAAERLPAIAAMGFDVVYLTPVHPIGTTFRKGRNNTLEAEPGDPGSPYAIGSPDGGHDAIHPDLGTAEDFTAFVDAARGQGLEVALDLALQCSPDHPWVAEHPEWFTVRADGSIAYAENPPKKYQDIYPLNFDTDPVGLSHEVLRIVRLWIDRGVTLFRVDNPHTKPLDFWEWLLAEVRATNPEVIFLSEAFTKPAMMQTLGRIGFHQSYTYFTWRNTGEEITEYLAEVSGEQGAVMRPAFWPTTHDILPPYLQHGGVAGFAVRAVLAATGSPTWGIYSGYELVENVPRPGVEEQIDNEKYEYRPRDWSAVDDIGIATLLRRLNEIRRDHPALQQLRNLTVHPTTNPQVIAYSRRVRAEHLPAAGRPGSGHDDVVLVVINLDPHHPQESTVLLDLEALGLDAPDDVEDQAFFTVHDELSGVSYPWGRHPYVRLEPQVQVGHVLKVVPAPGPT0018610_584DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018610-glgE-K16147NANA
AK018_036651683COG3573KsdD-like steroid dehydrogenaseATGACAGACGCCGACGTCATCGTCATCGGAGCGGGCCTGTCGGGCCTGGTCACCGCGACCGAGATCACGGCGGCCGGGCGCCGGGTGATCCTGCTGGACCAGGAGCCGGAGGCCTCTCTCGGCGGGCAGGCCTGGTGGTCCTTCGGCGGGCTGTTCCTCGTGGACTCCCCCGAGCAGCGCCGGCTCGGCGTGCACGACTCCGCCGAGCTCGCCTGGTCCGACTGGCTCGGGTCCGCGCGGTTCGCCCCCGGCGCCGAGGACGGCGAGGGTCCCGACCGGCACGGGTACGCCTGGGCCAAGCACTACGTGGAGGCCGCGGCCGGCGACCTGCGCTCGTGGCTGCACGCCAAGGGGGTGCGCTGGTTCCCGCTGGTGCAGTGGGCCGAGCGCGGCGGGTACACCGCCGGCGGTCACGGGAACTCCGTCCCGCGGTTCCACGTCACCTGGGGCACCGGCCCGGCCGTCCTCGCACCGTTCGTCGCCGCGGCGCTGGAGGCGCGGTCGGCCGGGCTGCTCGACCTGCGCTTCCGCCGGCGGGCCACCGGGCTGGTCGTCACCGACGGCCGCGTCACGGGCGTGCGCACCGAGATCCTGGCCGACGACGGCGCCCTGCGCGGCGAGCCGTCCTCGCGCGAGGTGGTCGGCGGCGAGGAGCTCACCGCCGGGGCCGTCGTGGTGGCCTCCGGCGGCATCGGGGCCAACCACGACCTGGCGCGCGAGCACTGGGACCCGGGGCACGGGGAGCTGCCGGCCCGGATGCTCTCGGGTGTGCCCGACTCGACCGACGGCCTGATGCTCGGCCACGCCGCCCACGCAGGGGCGGCGCTGGTGCACGAGGACCGCATGTGGCACTACCCGGAGGGCATCGCCAACCACTCGCCCGTCTGGACGAACCACGGCATCCGCATCCTGCCCGGGCCGTCCTCGCTGTGGCTGGACGCCGACGGCGGTCGGCTGCCGGCGCCGTTGTTCCCCGGGTTCGACGCCCTCGGAGCGCTGCAGCACGTCACGGGGCGCGGGGACGACCACTCCTGGTTCGTGCTGAACCGGGCGATCATGGAGACCGAGTTCGCGCTGTCCGGCTCCGAGCAGAACCCGGACCTGACCGGCAAGGACGTCCGCCTGCTCGCCCAGCGGGTGCTGCCCGGCGCCGTCGGACCCGTGGCCCGGTTCGCCGAGTCCTCCCCCGAGTTCCTGTGGGCGGACTCCCCCGAGGAGCTCGCGGGCCGGATGAACGCGCTGACCGCGGCGACCCCGGGCTCGGGCGGGCACGTCGACCCGGCCCGGCTCGCCGCCGTCGTCCGCGCCCGCGACGCCCAGGTCGCCTCCGGCCTGGGCAAGGACCCGCAGGTGGTGGCCACCCGCGCCGCCCGCGACTTCCGCGTGGACCGGATGATGCGCGTCAGCCCGCCGCGGCCGCTGACGACCCCGAAGGACGGCCCGCTGCTCGCGGTGCGGCTGTCCGTGCTGACCCGCAAGACGCTCGGCGGGCTGTGGTGCGACCCGTCCGGGCGGGTGCTGCGCGAGGACGGGTCCGTGCTGGACGGGCTCTGGGCGGTCGGGGAGGCCGCCGGGTTCGGGGGCGGCGGCATGCACGGTCACCGGACCCTGGAGGGCACGTTCCTGGGCGGGTGCCTGCACACCGGCCGCGTCACCGGCCGGGCGCTGGCCGCGGACCGGTGAMTDADVIVIGAGLSGLVTATEITAAGRRVILLDQEPEASLGGQAWWSFGGLFLVDSPEQRRLGVHDSAELAWSDWLGSARFAPGAEDGEGPDRHGYAWAKHYVEAAAGDLRSWLHAKGVRWFPLVQWAERGGYTAGGHGNSVPRFHVTWGTGPAVLAPFVAAALEARSAGLLDLRFRRRATGLVVTDGRVTGVRTEILADDGALRGEPSSREVVGGEELTAGAVVVASGGIGANHDLAREHWDPGHGELPARMLSGVPDSTDGLMLGHAAHAGAALVHEDRMWHYPEGIANHSPVWTNHGIRILPGPSSLWLDADGGRLPAPLFPGFDALGALQHVTGRGDDHSWFVLNRAIMETEFALSGSEQNPDLTGKDVRLLAQRVLPGAVGPVARFAESSPEFLWADSPEELAGRMNALTAATPGSGGHVDPARLAAVVRARDAQVASGLGKDPQVVATRAARDFRVDRMMRVSPPRPLTTPKDGPLLAVRLSVLTRKTLGGLWCDPSGRVLREDGSVLDGLWAVGEAAGFGGGGMHGHRTLEGTFLGGCLHTGRVTGRALAADRNANANANANA
AK018_036662241glgX_1COG1523Glycogen operon protein GlgXATGGAGGCCGCCCGACCGAAGGTCACACCGCTGACCCGACCCACCCGCACGCGCAGCCACGTCCCCCCGCTGGGGGTGCGCACGACCCCCGACGGCGGCATCGACGTCGCGGTGCTCGCGTCGCACGCCCACGGCGTGGAGCTGTGCCTCGTCGACGTGGTCGCGCCGGAGAAGGACCAGCACGACCCGGCGCGGTACCGCGAGCGCCGTGTCGCCCTGGACGGCCCGACCTACGGCGTCTGGCACGGCCACGTCGGGGACGTCGCCCCGGGCCAGCGCTACGGGTTCCGGGTGCGCGGCCCGTGGGACCCGGGCGCCGGCATGCTGCACAACCCGGCCAAGCTGATCCTCGACCCGTACGCCCGCGGCATCGAGGGCGACCTGGCCTACGTCCCGGCGACGCTGCGCGGCGGCGCGGACGACGACGGCGGGCCGGACCCGGAGGACTCGCTGCCGTTCGTGCCGCACGCCGTGGTGACCCCCGAGCTGCCCGACCTGCCGCGGATGTCCCGGCCACGGGTCCCCTGGGCCGACACCGTGGTCTACGAGGCGCACGTGCGCGGGCTGACGCTGCAGCACCCGGGGGTGCCCGAGGAGCTGCGCGGCACCTACGCCGGGCTGGCGCACCCCGCCGTGATCGAGCACCTGAAGGCGCTCGGCGTGACGACGCTGGAGCTGCTGCCCATCCACGCCTCGACGGCGGAGCCCTGGCTGGCCGGTCGCGGCCTGACGAACTACTGGGGCTACTCCACGATGGGCTTCTTCGCCCCGCACGCCGCCTACGCCACGGCCGCCGCCCGCGAGGCGGGCGCCGCGGCGGTGGTGGACGAGGTGCGCGGCATGGTGCAGCTGCTGCACGAGGCCGGGATCGAGGTCCTGCTGGACGTCGTCTACAACCACACCTGCGAGGGCGGAGACGACGCGCTGCACCTGTCCTGGCGCGGCCTGGACAACACGCTGTACTACCTGCACGACGGCGGCACCCCGGCCCGGCTGGCCGACGTCACCGGCACGGGCAACACCCTGGACTTCCGCCGCACCCGCGTGGTGCAGATGGCCCTGGACTCCCTGCGGTACTGGGCCGAGGTGATCGGCGTGGACGGCTACCGGTTCGACCTCGCCGTCACCCTCGGGCGCGACCACGACGGGTACACGCCCGACCACCCGTTCCTGTCCGCGCTGCGCACCGACCCCGTGCTGTCCGGGCTCAAGCTGGTGGCCGAGCCCTGGGACGTCGGCCCGGGCGGATGGCAGACCGGGCGGTTCCCCGCCCCGATGGCGGAGTGGAACGACCGCTTCCGCAACGCGACGCGCTCGTTCTGGCTGGAGTCCGCCCGGGCCGGGTCGCACGGCGCGCCGATGCACGGCCTGCGTGAGCTCACCACCCGGCTGGCCGGCTCGGCGGACCTGTTCGGGCACTCGGACCCGCCGCTGATGCGCGGGCCGGTCGCGTCGATCAACTACGTCACCGCCCACGACGGCTTCACCCTCGCCGACCTGGTCTCGTTCGACCACAAGCACAACCAGGCCAACGGCGAGGACAACCGCGACGGCACCGACGACAACCGGTCGTGGAACCACGGGATCGAGGGGCACGCCCCCGAGGGCGACGACGCCACCACCGAGCCGTGGTCCGCCGTCGTCCCCCTGCGTCGGCGCTCGCAGCGCAACCTGCTGGCGACGCTGCTGCTGGCCGCCGGCACCCCGATGATCACCGCCGGGGACGAGATGGGCCGCACCCAGGGCGGGAACAACAACGCCTACGCCCAGGACACCGAGATCTCCTGGGTCGACTGGGACCTGGACACGGCGAACTCCGAGCTGCTGGCCACGGCGCGCTACCTGGTCGGCCTGCGCGCCGAGCACGCGGCCCTGCGGGCGGAGTCGTTCTTCCTCGGCTCGCCCCGACCCGGCGAGGAGCACCCCGACCTGCTCTGGTACGACGCCGACGGCGCCCCCATGGACGGCGAGGCGTGGTCCCACGAGGGACGGCGCATCATCCAGATGCTGCGTCCCGGCCCGGGCGCGGACGAGGCCGACGTGCTGTGCGTGCTGCACGGCGGGCTGGAGGACGCCGAGCTCACGCTGCCCGAGACTCTCGACGGGGCAGGACCGTGGCAGCGCGTGTGGAGCTCGACGTGGGACGCCCCCGAAGGGCCCGAGCAGGCGGACGAGGAGGAGGCCCCGGGCACGGCGCTGGTGGAGTCGTTGAGCGTGGAGGTGTTCGTGGCACGGCGCTGAMEAARPKVTPLTRPTRTRSHVPPLGVRTTPDGGIDVAVLASHAHGVELCLVDVVAPEKDQHDPARYRERRVALDGPTYGVWHGHVGDVAPGQRYGFRVRGPWDPGAGMLHNPAKLILDPYARGIEGDLAYVPATLRGGADDDGGPDPEDSLPFVPHAVVTPELPDLPRMSRPRVPWADTVVYEAHVRGLTLQHPGVPEELRGTYAGLAHPAVIEHLKALGVTTLELLPIHASTAEPWLAGRGLTNYWGYSTMGFFAPHAAYATAAAREAGAAAVVDEVRGMVQLLHEAGIEVLLDVVYNHTCEGGDDALHLSWRGLDNTLYYLHDGGTPARLADVTGTGNTLDFRRTRVVQMALDSLRYWAEVIGVDGYRFDLAVTLGRDHDGYTPDHPFLSALRTDPVLSGLKLVAEPWDVGPGGWQTGRFPAPMAEWNDRFRNATRSFWLESARAGSHGAPMHGLRELTTRLAGSADLFGHSDPPLMRGPVASINYVTAHDGFTLADLVSFDHKHNQANGEDNRDGTDDNRSWNHGIEGHAPEGDDATTEPWSAVVPLRRRSQRNLLATLLLAAGTPMITAGDEMGRTQGGNNNAYAQDTEISWVDWDLDTANSELLATARYLVGLRAEHAALRAESFFLGSPRPGEEHPDLLWYDADGAPMDGEAWSHEGRRIIQMLRPGPGADEADVLCVLHGGLEDAELTLPETLDGAGPWQRVWSSTWDAPEGPEQADEEEAPGTALVESLSVEVFVARRPGPT0019225_778DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ISOAMYLASE,PGPT0019225-ISA|treX-K01214NANA
AK018_03667804etfB_2COG2086Electron transfer flavoprotein subunit betaGTGCGCATCGTCGTTCCCGTCAAGTACGTGCCGGACATCAACGCCGAACGGAAGTTCGCGGACTGTCGGGTGGACCGCGACCCGGCCGTGGGGACCCTCAACGAGCTCGACGAGAACGCCCTGGAGGCCGCGCTGCGGATCGTCGAGGCGCTCGACGAGGCCGAGCAGGGGACGAGCGAGATCGTCGCGCTGACCGTCGCCCCGCCCGAGGGCGACGTGGCGCTGCGCAAGGCGTTCCAGATGGGGGTCGACCGCGGCGTGCGGGTCTCCGACGACGCGCTCGCCGAGTCCGACTACTCCGGCACGACGGCGGCGCTCGCGGCCGCGGTGCGACGGCTGGAGTCCGAGGGGCCGGTCGACCTGGTGATCACCGGGATGGCGGCCCTGGACGGTCTGGGCTCGGTGGTGCCGGCGCTGCTGGCCGCGACGCTGGGCCGACCGTCGGTGACGTTCGCCAAGACGGTCGCCGTGGCCGACGGCACGCTGGAGGTCACGCGCGAGACGGACGAGGCCACCGAGTCGCTCACCGCGCCGCTGCCGGCCGTGCTGTCGGTGGCCGACACCGCCAACCGGCCGCGGTTCCCGAACTTCAAGCTCATCATGGCGGCTCGTTCCAAGGAGATCGAGCAGTGGACGGCGGCCGACCTGGGCCTGGAGCCCGGGGCCGTCGGCACGGCCGGCGCCCGGACCGAGACCACGCTGGCCGCGCCGCGCCCGGAGAAGCCGCCGGTCGAGCTCGTCCAGGACAAGGGTGAGGGCGGCAAGGCCCTGGCCGAGTACCTCATCCGCCACGAGCTGGTCTGAMRIVVPVKYVPDINAERKFADCRVDRDPAVGTLNELDENALEAALRIVEALDEAEQGTSEIVALTVAPPEGDVALRKAFQMGVDRGVRVSDDALAESDYSGTTAALAAAVRRLESEGPVDLVITGMAALDGLGSVVPALLAATLGRPSVTFAKTVAVADGTLEVTRETDEATESLTAPLPAVLSVADTANRPRFPNFKLIMAARSKEIEQWTAADLGLEPGAVGTAGARTETTLAAPRPEKPPVELVQDKGEGGKALAEYLIRHELVPGPT0001035_638DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
AK018_03668978etfA_2COG2025Electron transfer flavoprotein subunit alphaATGACGAACCGCACCGTCCTTGTCCTCCTCGACCCCGCCGGCGAGGTCCGCCCCAGCGTCCTGGAGCTGCTGACCATCGGCCGCACGCTGGGCCGCGTCGAGGCCGTCACGCTGGAGGCACCGAGCGTCGAGGCGCTCGCCCAGCTCGGCGCCTACGGCGTCGAGACCGTCCACCAGGCCGAGCTGCCCGCCGACCTGCGCGGGGACGCCCGGCACCTGTCCGCCGTCGTCGCCGCCGTGCTGACCGCCGCCGTGCGGCTCACCGACGCCGACGTCGTGCTGGCGCCCTCGACCTTCGGCGCCAAGGAGGCCGTGGCCCTGGCCGGGCACGCGCTGGGCGCCGGTGTCATCATCGACGCTGCCGGCGTGGCCGAGGACGACGCCGGGCACGTCGTGGGCACCAAGCGGGTCTTCGCCGGATCGTGGGACACCGTCAGCCGGGTCACCACCGACGTGGCCGTGCTGACCGTCCGGGCCAACGCCGTCGTGCCCCAGCCCGCCGAGGCCGCGGTGGCCACCGAGGTCGAGGGCTTCGCCGTCGCGGTCGACGCCGTGCTGCCGGCCGTCACCGCGCGCACGGAGAAGGTCCGCGACTCCGACCGCCCGACGCTCGAGGAGGCCGCGGTCGTGGTGGCCGGCGGCCGCGGCACCGAGGGCGACTTCGGGCCGGTCGAGGCGTTCGCCGATGCCGTCGGCGGGGCCGTCGGCGCGACGCGCGACGCCGTGTTCGAGGGCTGGTTCGACCGCTACATCGGGCAGACGGGCGTGACGATCGCCCCGCGCCTGTACGTCGGCGCGGGCGTCTCCGGCGCTCCGCACCACCGCGGCGGCATGCAGGCCTCGCAGGTCATCGTCGCGGTGAACAACGACCCCGAGGCGCCGATCTTCGAGATCTGCGACTTCGCCGTGGTGGGCGACCTGTCCGACGTGCTGGGCCAGGCGGCCGAGGTCATCCGGGCCCACAAGCAGCAGGCCTGAMTNRTVLVLLDPAGEVRPSVLELLTIGRTLGRVEAVTLEAPSVEALAQLGAYGVETVHQAELPADLRGDARHLSAVVAAVLTAAVRLTDADVVLAPSTFGAKEAVALAGHALGAGVIIDAAGVAEDDAGHVVGTKRVFAGSWDTVSRVTTDVAVLTVRANAVVPQPAEAAVATEVEGFAVAVDAVLPAVTARTEKVRDSDRPTLEEAAVVVAGGRGTEGDFGPVEAFADAVGGAVGATRDAVFEGWFDRYIGQTGVTIAPRLYVGAGVSGAPHHRGGMQASQVIVAVNNDPEAPIFEICDFAVVGDLSDVLGQAAEVIRAHKQQAPGPT0001040_1911DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
AK018_03669243hypothetical proteinGTGCTGGAGCTGCGCTACTTCGCGGCGGCCCGGGCGGCGCTGGGCCGCTCCGCCGAGACGCTGACGGTGGACGACGGCGCGACGGTCGCCGACGTCGTCGGCCGGCTGAGCGCGGGGGCACCCGAGGCGGCGGCGGTGCTGTCCCGCTGCTCGGTGCTGCTGGACGGCCGCCGGGCCGCGCCGGACGACGTCGTGCCCGACGGCGCCACGCTCGACCTGCTGCCGCCGTTCGCCGGCGGCTGAMLELRYFAAARAALGRSAETLTVDDGATVADVVGRLSAGAPEAAAVLSRCSVLLDGRRAAPDDVVPDGATLDLLPPFAGGNANANANANA
AK018_036701083moaA_1GTP 3',8-cyclaseATGACGCTCGTCGACCTGGGCATCCCCCGCCTGCCGACCTCGTGGCGCGACGCGACGCTGCCCGCCGACCGGCCGGACACCCCGGGTCTGGTGGACACCTTCGGCCGGGTCGCCACCGACCTGCGGGTCTCGCTCACCGACCGGTGCAACCTGCGCTGCACGTACTGCATGCCGGCCGAGGGACTGCCCTCCCTGGCGCGCGAGAAGGTGATGACGCGTGCCGAGATCGCCCGGCTGGTCGGCGTCGCCGTCCGGGACCTCGGCGTGCGCCAGGTCCGGTTCACCGGGGGCGAGCCGCTGTTGCGGGGCGACCTCGCGGAGATCGTCGCCGACGTCGCAGCCCTCGACCCGCGCCCGGAGATCAGCCTGACCACCAACGCGATCGGGCTCGACTCCCGCGCCGAAGGGCTGCGCGCCGCGGGCGTGAACCGCATCAACGTCTCCCTGGACACGCTCGACCCGGACACGTTCGCCCGCCTGGCCCGCCGCCCCTACCTGGAGCGCACGCTGGCCGGCATCGAGGCGGCGGCCCGCGTGTTCGACCTGGTCAAGATCAACGCGGTGCTGGTGCGCGGCGTGAACCTGGACCACGCCGCCGACCTGCTGTCCTGGTGCCTGGACCGCGGCTTCGAGCTGCGGTTCATCGAGCAGATGCCGCTGGACGCCGACCACGCCTGGGACCGCACGGCGATGGTGACGGCCGCCGAGGTGCGCGGCCTGCTGGGCGAGCGCTTCGACCTCGGCCCGGACGCCGAGCCGCGCGACGGCGCCCCGGCCGAACGGTTCGTCGTCCGCTCCCGCGAGACGGGCGAGCGGCTCGGACGGGTCGGCATCATCGCCTCGGTGACCGAGCCGTTCTGCGGCGACTGCCGCCGCACGCGCCTGACCGCCGAGGGCGGCATCCGCGACTGCCTGTTCGCGCACACCGAGACCGACCTCCTCGGTCCGCTGCGCGAGGGCGCCTCCGACGCGGTGCTGGCCGATCGGTGGCGGACCGCGATGTGGGGCAAGCGGGCCGGGCACGGGATGGACGACCCGTCGTTCGTGCAGCCGGACCGTACGATGAGCGCGATCGGGGGCTGAMTLVDLGIPRLPTSWRDATLPADRPDTPGLVDTFGRVATDLRVSLTDRCNLRCTYCMPAEGLPSLAREKVMTRAEIARLVGVAVRDLGVRQVRFTGGEPLLRGDLAEIVADVAALDPRPEISLTTNAIGLDSRAEGLRAAGVNRINVSLDTLDPDTFARLARRPYLERTLAGIEAAARVFDLVKINAVLVRGVNLDHAADLLSWCLDRGFELRFIEQMPLDADHAWDRTAMVTAAEVRGLLGERFDLGPDAEPRDGAPAERFVVRSRETGERLGRVGIIASVTEPFCGDCRRTRLTAEGGIRDCLFAHTETDLLGPLREGASDAVLADRWRTAMWGKRAGHGMDDPSFVQPDRTMSAIGGPGPT0008410_684DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008410-moaA-K03639NANA
AK018_03671882mobA_1Molybdenum cofactor guanylyltransferaseATGAGGTACGACGCCGTCGTCCTCGCCGGCGGCCGCGCCACCCGGCTGGGCGGTGCCGCCAAGCCGGAGGTCGTCGTCGGCGGCACCCGCCTGCTCGACCACGTGCTGGCCGCGACGACCGGCGCCGACCGCACCGCCGTCGTCGGCCCGGCCGACCTGCGCTCGCTCACCGAGCGGGACGACGTCGTCGTGACCCGGGAGGACCCGCCCTTCGGCGGCCCGGTCGCCGGGCTGGCCGCCGGACTGGCCGTGCTGGACCGGCCCGACGCGCCGAACTGGACCCTGGTGCTCGCCGTGGACGTGCCGGGGGCGGCGGCCGCTGTCGGCCCGCTGGTCGAGACCGCCGACGGGTTCACGAACCTCGACGGCGTGCACCTGGAACACGCCGGGCGTGCCCAGTGGCTGACCGGCCTGTACCGCCGCGCGGCGCTGACCCGCGCGCTCGACGGACTCGACCCGCACGGGGCGTCCGTGCGCCGACTCGTGGCTCGTCTCGACCTCCTCCCGCTGCCCGACGAGACAGGGATGAGCGACGACGTCGATACCTGGGACGATGTGAACAGGCTCTCGGCGCGCCCGGACCGGAGCCGCATCGAGGAGGAGACCCCCATGACCGACGACGTCCCCACCGTGCTCGCCAGCTGGGTGTCCGCCGTCGAGCGGGACCTGCAGCTGCCCGCCGACAGCATCGACGTCACGGAGGTGCTCGACCTCGCCCGCGACGCCGCCCACCACGTCGCGCGGCCCGCCGCGCCGGTGACGACCTACCTCGTCGGCTACGCCCGCGGGCTCGCCGCCGCGGCGGGCAAGGCCGCACCCGACGACGACACCGCCGAACGCACCGCCCGCCTGGCCCTGGGCTGGCGGCCCGAGACGACCTGAMRYDAVVLAGGRATRLGGAAKPEVVVGGTRLLDHVLAATTGADRTAVVGPADLRSLTERDDVVVTREDPPFGGPVAGLAAGLAVLDRPDAPNWTLVLAVDVPGAAAAVGPLVETADGFTNLDGVHLEHAGRAQWLTGLYRRAALTRALDGLDPHGASVRRLVARLDLLPLPDETGMSDDVDTWDDVNRLSARPDRSRIEEETPMTDDVPTVLASWVSAVERDLQLPADSIDVTEVLDLARDAAHHVARPAAPVTTYLVGYARGLAAAAGKAAPDDDTAERTARLALGWRPETTNANANANANA
AK018_036721371moaE2_1COG0303Molybdopterin molybdenumtransferase 2ATGACCAGCGGACCGCGCACGATCGCCGAGCACACCGCGGCGGCGCTCGCGCGCGTGCGGCCGGTGGCCGCCGCGTCCGTGCGGGTCGACGACCCCGCCGTGGTGGGCCTGGTCCTCGCCGCGGACGTCGCCGCCGCCGCCGCTGTGCCGGCCTTCGACCATGCGGCGATGGACGGGTACGCGGTGCGGTCCGCCGACCTGCCCGACGACGGCTCGTCGGTGACGCTGGCGGTCCGGGGCGACCGGCGACCCGGCGTCCCCTCCCCCGCGGCCGCCGCAGATGCTGTGGGCATGAATTCTGCAGCTCCGGGCGGGTCCGGAGCTGCAGAATTCATGCCCACAACGACCGACGGCGGAGCAGCCGACGGCGGAGCCGTCCGGATCATGACCGGAGCACCCGTGCCCGACGGGTTCGACGCCGTCGTCCCGGTCGAACGGACCTCCACGAGCCGCTTCGTGGCCGGGGGTCCGACGACGGAACGCACCGTCACCCTGGGACGCCAGGCCCGCGACCACGTCCGGCGCGCGGGCACGGACCTGCGCCGTGGCGACCCGATCGCCCGCGCCGGGGACGTCGTCGGCCCGGGTCTGGTCGCCACCGCGGCCGCCGCCGGGCTCGTCGAGCTGCCGGTGCGCCGTCGTCCCCGGGTCGCCGTGCTGTCCACGGGCTCCGAGCTCGCCCCGCTCGGGACCACCGAGGCCGGCACGATCGCCGACTCCAACTCCCTCATGCTCGCCGCGCTCGTGCGCGCCGCCGGCGCCGACGTGGTGCGCATCGGCGCGGTCCCGGACGACGCGGACGCCCTGCGCGCCGCCCTGGACCACGTTGTGGGCGTGAAATCTGCAGGTCCGGACCGCCACGATCCTGCAGATTTCATGCCCACAACGGGAGGGGTGGACCTGATCGTCACCTCCGGCGGGGTGTCCGCCGGGGCGAGCGACGTCGTGCGCGAGCTGCTCGCCTCCGGGGCGGCCACCGACGTCGACGTCGCCACCGTCGCCATGCGTCCCGGCAAGCCGCAGGCCCTGGCCTCCTGGCGCGGCGCCCTCTGGATCGCCGTCCCCGGCAACCCCGTCAGCGCCTTCGTCTCGACCGTGCTGTACGCCCTGCCCGCGGTGCGACGCCTCGCCGGCCGTCCGGACCGACCCGCCACGACCGTCCGCGCCGCCACCGGATGGTCCAGCCCGCCTGGCAAGGAGCAGGTGGTCCCCGTGGTCACCCGGCCCGACGGCGTCACACCGGCCGGTCGCGACGGCCACCAGCTCTCCGCCCTCGCCCACGCCGACGCGCTCGTCGTCGTCCCCGCCGAGGTCGCCCACGTCGCCCCCGGCGACCCGCTCCCCCACGTCCCGCTCCCGGAGGCCCGATGAMTSGPRTIAEHTAAALARVRPVAAASVRVDDPAVVGLVLAADVAAAAAVPAFDHAAMDGYAVRSADLPDDGSSVTLAVRGDRRPGVPSPAAAADAVGMNSAAPGGSGAAEFMPTTTDGGAADGGAVRIMTGAPVPDGFDAVVPVERTSTSRFVAGGPTTERTVTLGRQARDHVRRAGTDLRRGDPIARAGDVVGPGLVATAAAAGLVELPVRRRPRVAVLSTGSELAPLGTTEAGTIADSNSLMLAALVRAAGADVVRIGAVPDDADALRAALDHVVGVKSAGPDRHDPADFMPTTGGVDLIVTSGGVSAGASDVVRELLASGAATDVDVATVAMRPGKPQALASWRGALWIAVPGNPVSAFVSTVLYALPAVRRLAGRPDRPATTVRAATGWSSPPGKEQVVPVVTRPDGVTPAGRDGHQLSALAHADALVVVPAEVAHVAPGDPLPHVPLPEARPGPT0008430_1918DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
AK018_036731386narK_1COG2223Nitrate/nitrite transporter NarKATGGTTGCTCCGACGAGTGGCACCACCGAGACCGAGCCGGTGCCCACCGGCCCGGGCACCGACACTGCCGGGGCGCCCGCGCGCCCGGTCCACCGCTCCGGGCGCTGGATCGACCACTGGGACCCCGAGGACCCGGTCTTCTGGCGCAACGGTGGGCGGACCATCGCGCGTCGCAACCTGTGGATCTCCATCTTCGCGGAGTTCCTCGGGTTCTGCGTCTGGGCCATCTGGTCGATCGTCGTCCCGCAGCTCCCCGACGCCGGCTTCGCCCTGACCACCGACCAGATGTTCTGGCTCGTCGGCGTGCCGGCCCTGGTCGGTGCGTCCTTGCGCGTCCCCTACACACTGGCCGTGCCGGTGTTCGGCGGGCGCAACTGGACGATGATCTCCGCCGCGCTGCTGCTGATCCCGACGCTGTCGCTGGTGTGGGTCGTCCAGCGGCCCGAGACCTCCTTCGGCGTCCTGCTGGCCATCGCGGCGCTCGCGGGCTTCGGCGGCGGCAACTTCGCCTCCTCGATGGCGAACATCTCGTTCTTCTTCCCCGAGAAGGAGAAGGGTGCCGCCCTCGGCTGGAACGCCGCCGGCGGCAACATCGGTACCGCGGCCGTCCAGTTCGTCGTGCCGGTGGTCATCGTCACCGCGGCCGGTGTCTCCCTGCCGCGGGCGGGATGGGTGTTCATCCCCTTCATCCTGCTGGCCGTGCTCCTGGCCTGGCGCTTCATGGACAACCTGTCCACCGCCAAGGCCGACCCCCGCTCCTTCGGCACCGCCGCCCGGGAGAAGCACACCTGGCTGATCTCCTTCATCTACATCGGCACGTTCGGCAGCTTCGTCGGGTTCGCAGGCGCCTTCCCGACCCTGCTCAACCGGGAGTTCCCCGAGGTCACGCTGTCGCTGGCGTTCATGGGCGCCCTGATCGGCTCGGTCACCCGCCCGCTCGGCGGCTGGATCGCCGACCGCACCGGTGGCGCCGTGATCACCGTGGCGAGCTTCGCGGTGATGATCGTCGGTGCCTTCGGTGCCATCCAGGCGCTCGGCAGCGGCTCCTTCGGGCTGTTCTTCGGATCGTTCATGCTGCTGTTCGTCGCCACCGGCGTCGGCAACGGGTCGGTCTACCGCATGATCCCGGCCACCTTCCGCATCGCCAACGTCGCCGGCGGCGGTGCCGCGACGGCGAAGGCCGCGGCGGGCTGCATCGGGATCGCCGGTGCCGTCGGTGCCTTCGGCGGGTTCCTCATCCCGCGCGGGTTCGCGATGTCGAACACCGCCACCGGCTCCCTGGTGCCGGCCCTGTGGGCGATCATCGGCGTCTACGTGGTGATGGCCCTGCTCACCTGGGCCGTCTACGGTCGCCGCAGCAGCGAGCTGGGGGCTGCTCGGGTATGAMVAPTSGTTETEPVPTGPGTDTAGAPARPVHRSGRWIDHWDPEDPVFWRNGGRTIARRNLWISIFAEFLGFCVWAIWSIVVPQLPDAGFALTTDQMFWLVGVPALVGASLRVPYTLAVPVFGGRNWTMISAALLLIPTLSLVWVVQRPETSFGVLLAIAALAGFGGGNFASSMANISFFFPEKEKGAALGWNAAGGNIGTAAVQFVVPVVIVTAAGVSLPRAGWVFIPFILLAVLLAWRFMDNLSTAKADPRSFGTAAREKHTWLISFIYIGTFGSFVGFAGAFPTLLNREFPEVTLSLAFMGALIGSVTRPLGGWIADRTGGAVITVASFAVMIVGAFGAIQALGSGSFGLFFGSFMLLFVATGVGNGSVYRMIPATFRIANVAGGGAATAKAAAGCIGIAGAVGAFGGFLIPRGFAMSNTATGSLVPALWAIIGVYVVMALLTWAVYGRRSSELGAARVPGPT0000300_1388DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000300-narK|nrtP|nrt|narU-K02575NANA
AK018_036742283nasC_1COG0243Assimilatory nitrate reductase catalytic subunitATGAGCAGCTCGACCGCCGCTCCGGCAGCGCCCGCTGCGACGCACTGCCCCTACTGCGCCCTGCAGTGCGGCATGGAGCTCACGCCCGTCGAGGGAACGGCGTCGTCGACGCCGGCCCCCGGCGGGCGTGAGCCCCTGCCCGTGACCGTGAACCCGCGCGACTTCCCCACGAACGCCGGGCGGCTGTGCCAGAAGGGCTGGACCGCCGCCGCGGTGCTGGACGTCCCGGACCGGATCACGACCCCGCTCGTGCGCGGCGCCGACGGCGAGCTCGCCCCGGCGACCTGGGACGAGGCGCTCGAGCTGATCACCGCCCGGGTCCGCGCGATCCAGGCCGAGCACGGACCCGAGGGCGTCGCGATCTTCGGCGGCGGCGGGCTCACCAACGAGAAGGCCTACGCGCTCGGCAAGTTCGCGCGCACGGTGCTGCGCACGCCGAACATCGACTACAACGGCCGGTTCTGCATGTCGTCCGCGGCGGCCGCGGGCAACCGCGCCTTCGGCGTCGACCGCGGCCTGCCGTTCCCGCTGACGGACCTCGGCGGCGCCGAGGCGATCCTGCTGCTCGGCTCCAACCCCGCCGAGACCATGCCGCCGTTCGTCCAGCACCTGGCCGGTGCCCGCGGCGCCGGCGGCCTGGTCGTCGTCGACCCGCGGCGCTCGGCCACCGCCCGGCTCGCCGAGGACGGCCAGGGTGAGCACGTCCAGCCCGTCCCCGGGACCGACCTCGTGGTGCTGCTGGCCCTGCTGCACGTCGTGATCGCCGAGAAGCTCGTCGACACCGCCTACCTGACCGAGCGGACCACCGGGTACGACGCCGTCGTGCGGTCCGTCTCCGCCTGGTGGCCGGAGCGCGCCGAGACCGTCTGCGGCGTCCCCGCCGAGGAGCTGCGGCGGCTGGCGCGGCGGCTCGCGGCCGCCTCCCCGGCGCGCGGCGGTCGCGGTGCGTACGTGCTCACCGGCCGTGGGGTCGAGCAGTCGGCCCAGGGCACCGCGACGGTGACCGCGGCGATCAACCTCTCCCTCGCGCTCGGCCTGGTCGGTCGCGAGGGTTCCGGCTACGGGTGCCTGACGGGCCAGGGCAATGGCCAGGGCGGTCGTGAGCACGGTCAGAAGTCGGACCAGCTGCCCGGCTACCGCAAGATCGACGACCCGGCCGCCCGCGCCCACGTCGCCTCCGTCTGGGGCGTCGACCCCGACACCATCCCGGGGCCGGGCAAGCCCGCCGTGGCGCTGCTGAACTCCCTGGCCGCACCCGGCGGGCCGCAGGCGCTCTTCGTGCACGGCTCGAACGTGCTGGTCTCGGCGCCCAACGCCGACCGCGTCCGCGAGCGCCTGGAGGCGCTGGACCTGCTGGTGGTGTGCGACTTCGTCCCCTCCGAGACCGCCCGGATCGCCGACGTCGTCCTCCCGGTGACGCAGTGGGCCGAGGAGGAGGGCACGATGACGTCCCTGGAGGGGCGCGTCATCCGGCGGCGGCAGGCCGTGGACGCGCCGGGCCAGGCGCGCTCGGAGCTGTGGCTGCTGGCCGAGCTGGCCCGACGTCTCGGCTCGGACGTGCACTTCGGCACGGACCCGGCCGAGGTCTTCGACGAGCTCGCACGGGCCTCCGCCGGGGGGCCGGCGGACTACTCCGGGCTGTCGCACGCCCGGCTGGACGCCCACGAGGACGGTGGCGGCGCCGGGCTGTACTGGCCGTGCCCGGCCCCCGCCCACGCGCCCGCCGACGCCTCGGGCGACGGGCGTGCCGGATCACCGGCCGGCGGCGAGCACCCCGGGACGCCCCGGATGTTCCTGGACTCGTTCGGCACCCCGGACGGCCGGGCCCGCATGGTGCCGGTCGACCACGGCGGCCCGGCCGACGACGTGCGCGGCGACGCCCCGACCTACCTGGTCACCGGCCGCGTCCTGCAGCACTACCAGTCCGGCGCCCAGACGCGCCGGGTGCCCGACCTCGACCGGCTGGTCCCCGAGCCCTACGTCGAGCTGCACCCGCAGCTCGGCCTGCGCGTCGGTGTCGCGGACGGCGACCGGGTCCGGCTGACCTCGACCCGCGGCGTGGTCGAGGCGGTCGCCCGCTGGACCGACGCCGTGCGGCCCGAGGTCGTGTTCATGCCGTTCCACTGGGGCGGCCTCGGCGGCGTCAACCGGATCACCAGCGACGCCGTCGACCCGATCAGCTCCATGCCCGAGTTCAAGGTGTGCGCGGTCCAGGTGACCCCTGCCGGGCCCGCCACCGCGTCCACGCAGGACGACCACGACACCCAGGAGGTGCCGGTATGAMSSSTAAPAAPAATHCPYCALQCGMELTPVEGTASSTPAPGGREPLPVTVNPRDFPTNAGRLCQKGWTAAAVLDVPDRITTPLVRGADGELAPATWDEALELITARVRAIQAEHGPEGVAIFGGGGLTNEKAYALGKFARTVLRTPNIDYNGRFCMSSAAAAGNRAFGVDRGLPFPLTDLGGAEAILLLGSNPAETMPPFVQHLAGARGAGGLVVVDPRRSATARLAEDGQGEHVQPVPGTDLVVLLALLHVVIAEKLVDTAYLTERTTGYDAVVRSVSAWWPERAETVCGVPAEELRRLARRLAAASPARGGRGAYVLTGRGVEQSAQGTATVTAAINLSLALGLVGREGSGYGCLTGQGNGQGGREHGQKSDQLPGYRKIDDPAARAHVASVWGVDPDTIPGPGKPAVALLNSLAAPGGPQALFVHGSNVLVSAPNADRVRERLEALDLLVVCDFVPSETARIADVVLPVTQWAEEEGTMTSLEGRVIRRRQAVDAPGQARSELWLLAELARRLGSDVHFGTDPAEVFDELARASAGGPADYSGLSHARLDAHEDGGGAGLYWPCPAPAHAPADASGDGRAGSPAGGEHPGTPRMFLDSFGTPDGRARMVPVDHGGPADDVRGDAPTYLVTGRVLQHYQSGAQTRRVPDLDRLVPEPYVELHPQLGLRVGVADGDRVRLTSTRGVVEAVARWTDAVRPEVVFMPFHWGGLGGVNRITSDAVDPISSMPEFKVCAVQVTPAGPATASTQDDHDTQEVPVPGPT0000390_1147DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000390-nasA|nasC|narB-K00372NANA
AK018_036751692nasD_1COG1251Nitrite reductase [NAD(P)H]ATGACGCTCAACGTGCCGACGAAGATCGTCGTCGTCGGGAACGGCATGGTCGGTTCCCGGTTGGTCGACGAGCTGGTGCGCCGCAGTGCGGGCGCCTTCGACATCACGGTGCTCGGCGCCGAGCCGTACGAGCCGTACAACCGGGTGCTGCTCAGCGACGTCGTCGCGGGCCGCACCGACGTGGCCGCGATCTCCATGCCGGACGTCGGCGGCGACCACGTCACGGTGCTGCGCGGCGTCTCCGCGGCGTCCGTCGACCGGGTCCGGCGCACGGTCACCGACGACGCCGGCGCCGTGCACCCGTACGACCACCTCGTGCTGGCCACCGGCTCCCGGGCGCGCATCCTGCCGCTGCCGGGTCTGCGGGACGACGACGGCGCCCCGCACCTGCCCGGCGGCGTGCACGCGCTGCGCACGCTCGACGACGCCCGGGACATCGTGGCGGGCAGCGTCAACAGCTCGCGCGCGGTCGTCGTCGGCGGCGGTGTGCTCGGGGTGGAGTCCGCCTACGGGCTGGCCGCCCGCGGGCTCGCGGTCACGCTGGTGGACACCGGTGCGGCGCCGATGAACCGGCAGCTCGAGACCGAGGCCGGGGCCGTGCTGGCCGCGGGGCTGGAGTCGCACGGCGTCACGGTCCGCTCCGGTGTGCGGCCCAGCGAGGTGCTGGTCGCCGGCGGCCGGGCGGTCGGCGTGCGCGTCGACACCGGCGACGGGGGTGACGGGGAGGTGCTGGCCGCCGGGCTCGTCGTCCTGACCACCGGCACGGTGCCGGAGACCGGGATCGCGGCCGACGCCGGTCTGCCCACGGACCGGGGCGTCGTCGTCGGGCACGACCTGGCCAGCCCGGCCGACCGGCGCGTCTTCGCGATCGGCGACTGCGCCCAGCCGCCGCAGGGGTCGCGGGGGCTGGTGGCCGAGGGGTGGGACCATGCGCGTCGTCTCGCCGACCACCTGGCCTCCCTCGTGGCTGCTCGGGAGGACGCCTCCCGGCGGGCGGCGGACCGGCCGCGCGAGCACCTGCGGTTCCCGCACGAGGGCGAGCGGCCCTCGATGGCGGTGCGGCTCGGCACGCTGCTCGCGACGCGGGCGGCCACCGACGAGGGTGTCGACACGCGCGGCACGGACGTCGTGAAGGTCAAGGCCGGGCCGTTGAGCGTCGTCTCGATGGGCGCGGCCGGCACGGGCCGTGCGACGCGCCCCGGCGAGCGGGCCGTCCGGCTCGCGGACCCGGCCGGCGGGCGCTTCGTCGAGGCCGTCGTGGCCGACGGGCTGCTGGTGGGCGCGACCTGCGTGGGTGACGCCCGGGTCGCGGCCGACCTGACCGCGGCCTACACGCGTCGCACGCCCGTTCCCGTGGACCCGGCGTTCCTGCTCCTGACACCGGTGATGCCGAGCGCGGAGCCCGCCACCTCGCCCGAGCACATGCCCGACGACGCGATGGTGTGCCGCTGCAACGGCGTCTCCAAGCACGACATCACGGCGTGCTGGGACGACGGCGCCCGGAGCGCGGACGACATCGCCGCCGCCACCCGCGCGACCACCGGGTGCGGCAGCTGCACCGAGGCGGTGTGCGGCCTCGCGGACTGGCTCGGGTCGACCCGCGGCGGCGACCCGTCCGGGGCCGAGCCGGCCTCGGAGTCAGACGCGGAGGCCGACGCGGAGCCCGAACCGGCCGGGCTCGCCACGGTGTGAMTLNVPTKIVVVGNGMVGSRLVDELVRRSAGAFDITVLGAEPYEPYNRVLLSDVVAGRTDVAAISMPDVGGDHVTVLRGVSAASVDRVRRTVTDDAGAVHPYDHLVLATGSRARILPLPGLRDDDGAPHLPGGVHALRTLDDARDIVAGSVNSSRAVVVGGGVLGVESAYGLAARGLAVTLVDTGAAPMNRQLETEAGAVLAAGLESHGVTVRSGVRPSEVLVAGGRAVGVRVDTGDGGDGEVLAAGLVVLTTGTVPETGIAADAGLPTDRGVVVGHDLASPADRRVFAIGDCAQPPQGSRGLVAEGWDHARRLADHLASLVAAREDASRRAADRPREHLRFPHEGERPSMAVRLGTLLATRAATDEGVDTRGTDVVKVKAGPLSVVSMGAAGTGRATRPGERAVRLADPAGGRFVEAVVADGLLVGATCVGDARVAADLTAAYTRRTPVPVDPAFLLLTPVMPSAEPATSPEHMPDDAMVCRCNGVSKHDITACWDDGARSADDIAAATRATTGCGSCTEAVCGLADWLGSTRGGDPSGAEPASESDAEADAEPEPAGLATVPGPT0000395_17DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000395-nasB-K00360NANA
AK018_036762787nasD_2COG1251Nitrite reductase [NAD(P)H]ATGGGTCCGGCTTCTCTCACGCCGGCCCGGGCCGGCGTGAGCAAGATGTTCCCGTCGGGTAACCCCTCCCTGACGGTCCGGTCACGGTGGCTCCCTAGTGTCGACGACATGAGCAGCGAGCCCACTCCCCGCAGCACCCGGCACGTCGTCGTCGTCGGCGGCGGCCCCGTCGCACAGCGCTTCGTCGAGGCGCTGCGTTCGCGCGACACCGACGGCGCGTGGCGCATCAGCGTCTTCGCCGACGAGCCGCGCAAGCCCTACGACCGCGTCGGGCTGACCCGCTACTTCGAGGTCAGCGACCCCGAGGAGCTCACCCTGGGCGACCCGGCGCTGTGGGACGACCCTCTGGTGGAGCTGCACGCCGGCTGCCTCGTCGCGTCGATCGACCGGGAGAACCGGACGGTCACCGACCAGCTCGGCCGCGTGCACCCCTACGACGAGCTCGTGCTGGCCACCGGGTCGAACGCGGCGATGCCGCCGATCCCCGGGAACGACCTGCCCGGTGTCTTCGTCTACCGCACCATCGACGACGTGGCCGCCCTGCGCGGCTGGGTCGAGTCCAAGCGCGAGGCGGGCCGGGTCGAGACGCGCGGTGGCGTCGTCGAGAAGCCGGTGCGCGGCGCCGTCATCGGCGGCGGCCTGCTCGGGCTGGAGGCCGCCGGCGCGCTCAAGGCGCTCGGCGCCCAGGCCACCGTCATCGAGTTCGGCACCCACCTCATGGGCGTGCAGTGCGACCTCGGCGGCGGGCAGGCGCTCAAGCGCCTCATCAACGACAAGGGCATCGCCGTGCGTCCCGAGACGGCCACGAAGCAGATGGCTCCCCACCACCGCACCGGCGACGTCGGGCACCTGGACTTCAACGACGGCGGGCGCCTCGACGTCGACGTCGTCGTGGTGGCCACCGGTGTGCGTCCCCGGGACGAGCTCGCCCGGGCCGCCGGCCTGCCGGTCGGCGAGCGCGGCGGCGCCGTCGTCGACCTGACCTGCCGCACCGAGGACCCGAACGTCTGGGCCATCGGCGAGGTCGCCTGCATCGAGGGCCGGTGCCTCGGGCTGGTCGCGCCCGGCAACACGATGGCGGAGGTCGTCGTGGACCGCCTGCTCGGCGGCGGGGCCGAGTTCCCCGGCGCCGACACCGCCACCAAGCTCAAGCTCTCCGGCGTCGACGTCGCCTCCTTCGGCGATGCCCACGGCCGCACCGAGAACTGCGTCGAGGTGGTCTGGGCCGACCCGACCGCCGGCGTCTACAAGAAGCTCGTGCTCTCGGACGACGCCACGACCCTGCTCGGCGGCGTGTTCGTCGGCGACGCCACGCCGTACGCCTCCCTGCGCCCCATGCTCGGCGCCGAGCTGCCGGGGGACCCGGCCGCGTTCCTGCTGCCCGAGGGTGCCGGCGCCGCGCCGGACATCGAGCTGCCCGACGACGCGAACGTCTGCTCGTGCAACAACGTCTCGGCCGGCACGATCCGCGGGGCGGTGACCGACCACGACTGCACCTCGGTCGGCGACGTCAAGAGCTGCACCAAGGCCGGCACCACCTGCGGGGCCTGCCTGCCGCTGGTCAAGAAGATCACCGAGACCGAGATGGAGCGCGCGGGCATCGAGGTGTCGACCGCGCTGTGCGAGCACTTCGCGATGACGCGCGCCCAGCTCTTCGACGCCGTGCGCGTGGCCGACCTGCACTCCTTCAGCGACATCATCGAGCGCTTCGGCACCGTGCCCGAGGGCGCGAGCAGCGCGGGCCGCGGCTGCGACATCTGCAAGCCGGTGGTCGCCTCGATCCTGGCCAGCCAGGGCAACGGGCACATCCTGTCCGGCGAGCAGAGCGCTCTGCAGGACACCAACGACCACATGCTCGCCAACATGCAGAAGGACGGCACCTACTCCGTCGTCCCGCGTGTCCCCGGCGGCGAGATCACCCCCGAGGGCCTCATCGTCATCGGGCAGGTCGCGAAGGACTTCGGCCTGTACACGAAGATCACCGGCGGGCAGCGCATCGACATGTTCGGCGCGCGTGTCGAGCAGCTGCCGGAGATCTGGAAGGTGCTCGTCGAGGCCGGGTTCGAGTCCGGCCACGCCTACGGCAAGTCGCTGCGCACGGTGAAGTCCTGCGTCGGGTCGACGTGGTGCCGGTACGGCGTGCAGGACTCGGTCGGCATGGCCGTCGAGCTCGAGCTGCGCTACCGCGGTCTGCGCAGCCCGCACAAGCTCAAGCTCGGCGTCTCCGGATGCGCCCGCGAGTGCGCGGAGGCCCGCGGCAAGGACGTCGGCGTCATCGCCACCGACAAGGGCTGGAACCTCTACGTCGCCGGCAACGGCGGCCAGACGCCGAAGCACGCCCAGCTCCTGGCCGAGGACCTGGACTCCGCCACGCTGCTGCGCACCATCGACCGGTTCCTCATGCTCTACATCCGCACCGCGGACCGCCTGCAGCGCACGGCCCCGTGGGTGGAGGAGTACGAGGGCGGGCTCGAGGCGATCCGCGCGGTCGTCCTGGAGGACTCCCTCGGCATCGCCGAGGACCTCGACGCCGCGATGGCCCAGCACGTCGGCGCCTACGAGGACGAGTGGAAGGCCGTCCTGGAGGACCCGGACAAGCTGGCCCGCTTCGGCTCCTTCGTCAACGCGCCGACGACGCCGGACCCGGACCTGGCCTACGTCGCCGAGCGCGGCCAGAAGCGCCCGGCCACGCCCGAGGAGATCGCCGCCGGCCCCGCCGGCCCGGTCGACCCCGACCTCTCCGGCCCGGTCCTGGTGACCGGTCCCACGCTGGAGGTCCGCGCGTGAMGPASLTPARAGVSKMFPSGNPSLTVRSRWLPSVDDMSSEPTPRSTRHVVVVGGGPVAQRFVEALRSRDTDGAWRISVFADEPRKPYDRVGLTRYFEVSDPEELTLGDPALWDDPLVELHAGCLVASIDRENRTVTDQLGRVHPYDELVLATGSNAAMPPIPGNDLPGVFVYRTIDDVAALRGWVESKREAGRVETRGGVVEKPVRGAVIGGGLLGLEAAGALKALGAQATVIEFGTHLMGVQCDLGGGQALKRLINDKGIAVRPETATKQMAPHHRTGDVGHLDFNDGGRLDVDVVVVATGVRPRDELARAAGLPVGERGGAVVDLTCRTEDPNVWAIGEVACIEGRCLGLVAPGNTMAEVVVDRLLGGGAEFPGADTATKLKLSGVDVASFGDAHGRTENCVEVVWADPTAGVYKKLVLSDDATTLLGGVFVGDATPYASLRPMLGAELPGDPAAFLLPEGAGAAPDIELPDDANVCSCNNVSAGTIRGAVTDHDCTSVGDVKSCTKAGTTCGACLPLVKKITETEMERAGIEVSTALCEHFAMTRAQLFDAVRVADLHSFSDIIERFGTVPEGASSAGRGCDICKPVVASILASQGNGHILSGEQSALQDTNDHMLANMQKDGTYSVVPRVPGGEITPEGLIVIGQVAKDFGLYTKITGGQRIDMFGARVEQLPEIWKVLVEAGFESGHAYGKSLRTVKSCVGSTWCRYGVQDSVGMAVELELRYRGLRSPHKLKLGVSGCARECAEARGKDVGVIATDKGWNLYVAGNGGQTPKHAQLLAEDLDSATLLRTIDRFLMLYIRTADRLQRTAPWVEEYEGGLEAIRAVVLEDSLGIAEDLDAAMAQHVGAYEDEWKAVLEDPDKLARFGSFVNAPTTPDPDLAYVAERGQKRPATPEEIAAGPAGPVDPDLSGPVLVTGPTLEVRAPGPT0000450_218DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362NANA
AK018_03677447hypothetical proteinGTGACCCCCTTCGCCGTCGCCGACACCCCGACCGACCCCGTCACTCCCACGGAGGCCACCATGACCGCGATCGACACCGCCGCGCCGACCTGGACGGCCGTGTGCCGGCTCACCGACCTGGCGCCCGAGCGGGGTGCCGCCGCCCTGCTGGAGCGTGCCGACGGCTCGCCGGTGCAGGTCGCCGTGTTCCGGCTGCTGGACGACTCCGTCCACGCCGTCCAGCAGCTCGACCCGTACGCCGCCGCGAACGTCATGTCCCGCGGCATCGTGGGCACGCGCGGCGGCGAGCCGACCGTGGCCTCGCCGGTCTACAAGCAGGTCTTCGCGCTGCGCACCGGCGAGTGCCTCGACACCGGCGGCAAGGACCCGAAGGCCGGGCTCGGTGAGCACCTGGAGTCCTTCGCGACCGAGGTGCGCGACGGCGTCGTGCACGTGCGGGCGACCTGAMTPFAVADTPTDPVTPTEATMTAIDTAAPTWTAVCRLTDLAPERGAAALLERADGSPVQVAVFRLLDDSVHAVQQLDPYAAANVMSRGIVGTRGGEPTVASPVYKQVFALRTGECLDTGGKDPKAGLGEHLESFATEVRDGVVHVRATPGPT0000455_337DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363NANA
AK018_03678795cysG_1COG0007Siroheme synthaseATGGCCGCGCACCCCGGACGCGTCACGCTCGTCGGGGCCGGCCCCGGCGCGGCCGACCTGCTCACCTACCGGGCCTGGCGGGCGATCGCCCGGGCCGACGTCGTCGTCCACGACCGCCTGGTCCCGCTGGAGGTCCTCGAGGACCTGGGCCCCGACGTCGAGGTGATCGACGTCGGCAAGGCCCCGGGCAAGCACAAGGTGCCGCAGCCCGGGATCAACGACCTGCTGGTCGAGCACGCCCGCCGGGGGCGCCGCGTGGTGCGGCTCAAGGGCGGCGACCCGTTCGTGTTCGGCCGCGGCGGCGAGGAGTACGCGGCCTGCCGTGCGGCCGGGGTCGACGTCGACGTCGTCCCGGGGGTGTCCTCGGCTCTGGCCGTCCCTGCCCTGGCCGGGATCCCGTTGACCCACCGGGGGACGACGACGGCGTTCCACGTCGTCACCGCGCACACGCGCACGGGCGAGCAGCAGCTCGACGACACCGCCGTGTCCTGCGTCACGGACCGGACGGCTACGCTGGTGGTACTCATGGGAGTGTCCTCGCTCCCGGCGATCGTGACCAGGTTGCTCGACGCCGGGGCGGACCCGGACATCCCCGTGGCGATCGTGGAGCGAGGCTCGACACCTGACCAGCGGGTCACCCGGACGGGGCTGGACCTGGCGGCCAAACGGGCCGAGGAGGTCGGGGTCCGAGCGCCCGCCGTGATCGTGATCGGTGACGTGGCGGCACGAGGACTGTTGGAGGGGACGACCAGTGGCGAGCCCGGAGACCCCGTCGTGGGGGACGCGCGTGGCTGAMAAHPGRVTLVGAGPGAADLLTYRAWRAIARADVVVHDRLVPLEVLEDLGPDVEVIDVGKAPGKHKVPQPGINDLLVEHARRGRRVVRLKGGDPFVFGRGGEEYAACRAAGVDVDVVPGVSSALAVPALAGIPLTHRGTTTAFHVVTAHTRTGEQQLDDTAVSCVTDRTATLVVLMGVSSLPAIVTRLLDAGADPDIPVAIVERGSTPDQRVTRTGLDLAAKRAEEVGVRAPAVIVIGDVAARGLLEGTTSGEPGDPVVGDARGPGPT0003685_1385DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0003685-sirA|ylnD|cysG|cobA-K02303NANA
AK018_036791173hypothetical proteinGTGGCGAGCCCGGAGACCCCGTCGTGGGGGACGCGCGTGGCTGAGACCGCGACCCGACCCGCCCTCGGCCAGGTCATGGCCGGATGCACCGTGCTCGTCACCGCCGACCGCCGCTCCGGCGAGCTGGCCGCCGCCCTGGAACGCCGGGGCGCGACGATCCGCCACGCCCCCGCGCTGAGCATGGTCCCGCACGTGGACGACGACGCGCTCATCGCGGCGACCGCGGCTTTGGTGGAGGACCCGCCCGACGTCGTCGTGGCCACCACCGGCGTCGGGTTCCGGGCGTGGATCGAGGCGGCCGACGCCCACGGGCTGGCCGACGACCTGCTGCGCGTCCTCGGCGAGGCCCGCATCGTGGCCCGCGGACCCAAGGCGCGTGGCGCCGTGCAGGCCGCCGGGCTGGCCACCGACTGGGTGGCGGAGTCCGAGACCTCCGCCGAGGTGGCCGAGGTGCTGCTCAGCGAGGGCGTCACCGGCCAGCACGTCGCGATCCAGCACCACGGCGCCGGGGCGGACGGCCTGGACGAGGTGTTCGCCAAGTCCGGGGCCCGCGTCTCCCCGCTGATCGTGTACCGCTGGGGTCCGGCTCCCGACCCGGAGGCCGTCGAGTCCTCGGTGCAGGCCGCCGCGGAGGGCGAGATCGACGCCGTCGTCTTCACCTCCGCCCCCGGGGCCGAGGCGTGGATGGAGTCCGTGGAGAACGCCGGCGTGCTCGACGAGGTGGTCTCCCGGTTCACCACCGGCGAGATGGTCGCCGCCTCCGTCGGCCCGGTGACGTCCCGTCCGCTGGCGGCGCGCGGCGTGACGTCGCTGGAGCCCGAGCGTGGCCGGCTCGGGGCGCTGGTGCGCACGCTCGTCGGGCACTACGAGCACATCGACTCCGTCGCGCTGGGCACCGTGGCCGGCCCGCTGGTCATCCGGGCCCGTGTCGCGGTCCTGGACGGCCAGGTGCTGCCGCTGTCGCCGACCGGCGTCGAGGTGCTCCGGCTGCTCGCCGCGGCCGGCGGGGACGTCATCACCCGTGACCAGGTGCTCGAGGTGCTGCCGGGCGTGTCCCGCGACGGGCACGCCGTGGAGGTTGCGATCGCCCGGCTGCGCGAGGCCACCGGACGCAAGGACCTCATCAAGACGGTCGTGAAGCGCGGCTACCGGCTGGAGCTGGCGCACCGCTGAMASPETPSWGTRVAETATRPALGQVMAGCTVLVTADRRSGELAAALERRGATIRHAPALSMVPHVDDDALIAATAALVEDPPDVVVATTGVGFRAWIEAADAHGLADDLLRVLGEARIVARGPKARGAVQAAGLATDWVAESETSAEVAEVLLSEGVTGQHVAIQHHGAGADGLDEVFAKSGARVSPLIVYRWGPAPDPEAVESSVQAAAEGEIDAVVFTSAPGAEAWMESVENAGVLDEVVSRFTTGEMVAASVGPVTSRPLAARGVTSLEPERGRLGALVRTLVGHYEHIDSVALGTVAGPLVIRARVAVLDGQVLPLSPTGVEVLRLLAAAGGDVITRDQVLEVLPGVSRDGHAVEVAIARLREATGRKDLIKTVVKRGYRLELAHRPGPT0003665_108DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003665-hemD-K01719NANA
AK018_036801323mprBSignal transduction histidine-protein kinase/phosphatase MprBGTGACCGACCACCGGACCGCGCCCCGGGGCCTGTCGCTGCGGCTGCGGCTCACCCTGGTCGCCGCCGGGCTGACCGGCGCCGCCCTCGTCCTCGGTGCGTTCGCGCTGACCTCGGTGGTCTCGCAGAGCAGGATCGCCGCCACCGACGACGTGCTGCGCGGCACGGCCGAGCAGGTGACCGCGCTCGTCGCCGAGGACCGCCTGCCCCGCGTGCTCGCCGCCGACGAGCCCGGGCAGATCGTGCAGCTCGTCGACGCCTCGGGCCGCGTCGTGGCGTCCTCGCCCAACGCGAGCCGGACCCTGCCCGTGCTGGCCCCCGCCACCCTCACGGAGACGGCCGACGGCGCCTCGACCCGCCAGGACTCGGCCTACGGGTCCGGGCCGGCCCGCGTGCTCGTCGACACCCTGCCCACCGGCGAACGCGTCGTCACCGCACTCCCCCTGGCCACCGTCGAGGGGGTGCTCACCGCGCTACGACTGTCCCTCGGCGTCGTCGTCCCGCTGCTGACCCTCGCGCTGGGGCTGGTGACGTGGGTGCTGCTCGGGCGCGCGCTGCGGCCCGTCGAGGAGCTGCGCGCCGCCGCGGACCGGGTCAGCGGCGTCGGCGGCCCCGGGACGCTGCCGGTGCCCCGCGCCCGTGAGCTGGCCGCGCTGGCGCAGACCCTCAACGCGATGCTCGACCGGCTGGACACCGCGGCGCGGCGCCAGACCGACTTCGTGGCCGACGCCGCGCACGAGCTGCGCTCCCCCGTCGCCGCGCTGCGCACCAGCATCGAGGTCGCCGCCGAGCACCCCGAGGCCTACGAGACGGGCGAGCTGATGGCCGACCTCCAGCACGAGGTCGTCCGCCTGCAGGCGCTCGCCGACGACCTCCTCGTCCTGGCGCGGGTCGGCGCCTCCCCGCCGGAGGTGCGCGACGTCGACCTGCGCGACGTCGTCCGCCACGCCGCGGGGCACGTCGACCTGCACGGCCAGGGGCGCGCCGTCATCGACCCGTCCGCCGTCGAGCGGGTCGTGCGCAACCTGGTGGAGAACGCCCGCCGGTTCGCGGCGGACCAGGTGCGCGTCGAGGTGGGCGACGGCGTCGTGACGGTCGACGACGACGGGCCCGGTATCCCGGCGGCGGACCGCGAGCGCGTGTTCGACCGGTTCACGCGGCTCGGGTCCGCGCGGGAGCGCGACGGCGGCGGGACCGGGCTGGGTCTCGCCATCGCGCGGGAGATCGCCCGGGAGCACGGCGGCGAGGTGACGTTGGACGACGGTCCGCTCGGTGGCCTGCGGGCCACGGTGACGCTGCCGACGGCGGCCGAGCAGCAGGACTGAMTDHRTAPRGLSLRLRLTLVAAGLTGAALVLGAFALTSVVSQSRIAATDDVLRGTAEQVTALVAEDRLPRVLAADEPGQIVQLVDASGRVVASSPNASRTLPVLAPATLTETADGASTRQDSAYGSGPARVLVDTLPTGERVVTALPLATVEGVLTALRLSLGVVVPLLTLALGLVTWVLLGRALRPVEELRAAADRVSGVGGPGTLPVPRARELAALAQTLNAMLDRLDTAARRQTDFVADAAHELRSPVAALRTSIEVAAEHPEAYETGELMADLQHEVVRLQALADDLLVLARVGASPPEVRDVDLRDVVRHAAGHVDLHGQGRAVIDPSAVERVVRNLVENARRFAADQVRVEVGDGVVTVDDDGPGIPAADRERVFDRFTRLGSARERDGGGTGLGLAIAREIAREHGGEVTLDDGPLGGLRATVTLPTAAEQQDNANANANANA
AK018_03681657tcrA_1COG0745Transcriptional regulatory protein TcrAGTGCGCATCCTGGTGGTGGAGGACGAGGCGGTGCTGTCGCGGGCCCTGCGCCGGGGCCTGCAGGCGGAGGGATTCGCGGTCGACGTGGCCGCCGACGGGGAGACCGGCCTGGAGGCCGCGCTCGAGGGCGACCACGACGTCGTCGTCCTGGACCTCATGCTCCCGCGCCGGTCCGGTCTGGAGGTCCTGCGCGAGATGCGGCGCGCGGAGATCTGGACTCCGGTGCTCGTACTCAGCGCCAAGGACTCCGACGACGACGTCACCCGCGGCCTGGACGTGGGCGCCGACGACTACCTGGCCAAGCCGTTCGCGTTCTCCGTCCTGGTCGCCCGGCTGCGGGCGCTGCTGCGCCGCGGCGCCCCGCCGCGCCCGGCCGTGCTGGAGGCCGGGCGTCTGACCCTCGACCCGGCCAGCCGCGAGGTGCGCCAGGACGGTTCGCTCGTCGAGCTCACCACCCGCGAGACGGCGCTGCTCGAGCACCTCATGCGCCGACCCGGCGAGGTGCTGACCAAGGTCGAGCTGCGCGACCACGTGTGGGACGCCGCCGGCGACGACCTCAACGTCGTCGAGGTCTACGTGGGGTACCTGCGCCGCAAGCTGGGCAAGGGCGCGATCGAGACGGTGCGCGGCGCCGGCTACCGGGTGGTCGGGCGGTGAMRILVVEDEAVLSRALRRGLQAEGFAVDVAADGETGLEAALEGDHDVVVLDLMLPRRSGLEVLREMRRAEIWTPVLVLSAKDSDDDVTRGLDVGADDYLAKPFAFSVLVARLRALLRRGAPPRPAVLEAGRLTLDPASREVRQDGSLVELTTRETALLEHLMRRPGEVLTKVELRDHVWDAAGDDLNVVEVYVGYLRRKLGKGAIETVRGAGYRVVGRPGPT0004105_1307DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
AK018_036821221hypothetical proteinATGACCACCACGCGCAGCCTCTCGCCCCGGGCGCGGTGGGCGGTCCCGGCCGTCGTGGCCGGCGCCGTCGCCGCCGCCTTCGCCGTCCCCGCTACCGTCGGCGCCGTCGCGAGCGACGACCTGCCGGCCGTCACCGCCGACGAGCTGGTCGACCGCGTCGCGAACGCCGAGCCGGTCCCCGTCTCCGGGACCGTCGTCTACACCGCGCGCCTCGGCCTGCCGGACGTGACCGTCTCCGAGCTGCAGGGTGCCGGACCGCTGGACCTGCTCGGCGGCAGCACGACGATGCGCGTGTGGTCCGACGGCGAGGACTCCTCGCGGGCCGCGCTGCTCGGCGACGTCTCGGAGTACTCGGTGGTGCGCTCCGGCGCGGAGGCGTGGACCTACTCCAGCGCCGACGACGAGGCCGTGCACTACGTCCTCGACCCGGCGGACCAGGAGCGGTACGACGAGCTGGCGCAGCAGGCGCTCGAGCCGGACGTCGAAGGCGACGTGCCGACGCCGTCGGAGCTGGCGGACGTGGCCCTCGCCCAGGCACGCCTCTCCACCGACGTCGAGACCACCGACCCCGTCGAGGTCGCCGGGCGCGCCGCGTACCAGGTCGAGCTGACGCCGCAGACCGACGCCACCCTGGTCGACCGGATCCGCGTCGCCGTCGACGCCGAGACCTGGGTGCCGCTGCGTACCCAGGTGTGGAGCGTGCAGGACGCCGAGGCCCCGGCGCTCGAGGTGGGCTTCACCGACGTCTCCTTCGACGCCCCCGAGGCCAGCGTCTTCGAGTTCTCCGCCCCGGCGGGCGCCGAGGTGCGCGAGGTCGTGGTCCCGCTGCCCGAGCCCGGCACCATGGAGAAGCCGAGCAGCTCCGCGCTGGGCGAGGACGCGGACGTCGCGGTCTCCGGCACCGGCTGGGAGACCGTCGTCGAGGTCTCCGAGGTGGACGTCGAGGCGATCCTCGGCGCGACGGCCGAGGGTCGGCTGCCCGAGGGCAGCACCGGGTCCAGCGGCGCCGACGACCTGTTCGAGGAGTTCACCGACGCCGAGGAGGGCGAGCTGCCGGGCATCCCCGAGCTCGACACGCAGGCGCTGTACGAACAGCTCACGACGCCGGTCGACGGCGGGCGGCTGCTGACCTCGGCGCTGCTGTCCGTGCTGGTGACCGACGACGGCCAGGTCCTGGCCGGGGCGGTGCCGCCGGCGGTGCTCGAGGAGCTCGCCGGATGAMTTTRSLSPRARWAVPAVVAGAVAAAFAVPATVGAVASDDLPAVTADELVDRVANAEPVPVSGTVVYTARLGLPDVTVSELQGAGPLDLLGGSTTMRVWSDGEDSSRAALLGDVSEYSVVRSGAEAWTYSSADDEAVHYVLDPADQERYDELAQQALEPDVEGDVPTPSELADVALAQARLSTDVETTDPVEVAGRAAYQVELTPQTDATLVDRIRVAVDAETWVPLRTQVWSVQDAEAPALEVGFTDVSFDAPEASVFEFSAPAGAEVREVVVPLPEPGTMEKPSSSALGEDADVAVSGTGWETVVEVSEVDVEAILGATAEGRLPEGSTGSSGADDLFEEFTDAEEGELPGIPELDTQALYEQLTTPVDGGRLLTSALLSVLVTDDGQVLAGAVPPAVLEELAGNANANANANA
AK018_03683960bcrA_2Bacitracin transport ATP-binding protein BcrAATGACGGCAGGCGTGCCCGCCGTCCAGCCGGCGGTGCGCACCGGTGGGCTGACGAAACGGTTCCGGTCGGGGCAGGTCGGCGTCGACGCGATCGACCTGCACGTGCCGCGCGGCGCCGTCTACGGGTTCCTCGGGCCGAACGGGTCGGGCAAGACGACGACGATCCGGATGCTCCTCGGGCTGGTGTCGCCCACGGCGGGGTCGGTGGAGCTGCTGGGTGCGCCGATGCCGCAGGCGGGCCCGGCGGTGCTGCCGCGGGTCGGGGCGCTCGTCGAGGGCCCCGCCTTCCACCCGTACCTGTCCGGGGAGGCGAACCTGCGCCGGCTGGACGCCGCGGACGCCACGGCGTCGCCGGCGAGCCGCGCGGGCCGGGTCGGCGCGGCGCTGGAACGCGTCGGGCTGACGGCGGCCGCCGGCAAGAAGTACCGGCAGTACTCGCTCGGCATGAAGCAGCGCCTCGGGCTCGCGGCGGCGCTGCTGCGTCCGCGGGACCTGCTGCTGCTCGACGAGCCCACCAACGGGCTCGACCCGCAGGGCACGCGGGAGGTGCGGGCGCTGGTGCGCGAGCTGGCCGACGGCGGAGCCACCGTGCTCGTCTCGTCGCACCTGCTCAGCGAGATCGAGCAGGTGTGCTCCCACGTCGGGATCATGTCGCAGGGGCGGCTGCTCGCCCAGGGTCCGCGCGCCGAGATCGCCGACGACGGCGCACCCGAGGTGCGCGTGGCGACGCGGTCCGACCAGCGCGGGCACCTGGCACGGGTCCTGACCGGGCTCGGGATGACGGACGTGCGGGTCGACGGCGAGGTCGTGGCCGCGTCCCTGGGCAGCGTCGCGGTCGAGAAGGTCGCCCAGGCGGTGGTCGGCGACGGCGTCGACCTGCTCGGCCTCGAGGTCCGGCGGCCGACGCTGGAGGACGTGTTCGTGCGGCTGACGGGGGAGGGATTCGATGTCGCTCGCTGAMTAGVPAVQPAVRTGGLTKRFRSGQVGVDAIDLHVPRGAVYGFLGPNGSGKTTTIRMLLGLVSPTAGSVELLGAPMPQAGPAVLPRVGALVEGPAFHPYLSGEANLRRLDAADATASPASRAGRVGAALERVGLTAAAGKKYRQYSLGMKQRLGLAAALLRPRDLLLLDEPTNGLDPQGTREVRALVRELADGGATVLVSSHLLSEIEQVCSHVGIMSQGRLLAQGPRAEIADDGAPEVRVATRSDQRGHLARVLTGLGMTDVRVDGEVVAASLGSVAVEKVAQAVVGDGVDLLGLEVRRPTLEDVFVRLTGEGFDVARPGPT0006725_5685DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_03684867hypothetical proteinATGTCGCTCGCTGAGGCTCCCGTGGCGGAGGCGCCGGCGGCACCCGCCCGCGCGACGGTCCGGCTGCTGCGCAGCGAGCTGCGCCTGGTGTTCGGCCGCGTGCGCAACATCGTGCTGCTGGCGGGCCTGGCGGCCGTCCCGCTGCTCATCGGCACGATCCTGTTCATCACCCAGGACACGCCCGCGGCCGGGCAGGGGCCGCCGTTCCTGGACCGCGTGACCGGCAACGGCGTGTTCCTCGTGTTCGCGGCGCTGGTGAGCTGTCTGCCGTTCCTGCTGCCGCTGTGCGTGTCGATCGTGTCCGGCGACGCGATCGCGGGGGAGGCCGGTGCCGGCACCCTGCGGTACCTGCTGGTGGTGCCCGTCCCGCGCACCCGGCTGCTGCTGGTCAAGGCGGTCGCCGCCCTGGCGTACGCGGGGGCCGCCGTCGCGGCGATCGCCGTCGTCGGGCTGGTCGCCGGCGCCGCCTTCTTCGGGGTGGGCGACGTCGTGCTGCTCTCGGGGGACACGATCCCGCTGGCCGAGGGAATGGTGCGCACGCTCGGCGTGGTCGGCTACGTCATCGCGTCGCTGACCGGGCTGGTCGCCGTGGGCCTGTTCCTGTCGACCCTCACCGAGGTGCCCGTGGCGGCGATGGCCTCGACGGTGGTCGTGGCGATCGTCAGCGGCGTGCTCGACGCGCTGCCGCAGCTCTCCGCGATCCACCCGGCGCTGCTCACGCACCACTGGCTGGACTTCGGGGAGTTCCTGCGCCTCGAGGTGGACGGCTCGACGCTGCTGGCGGGGCTGGCCGTGCAGGCGGCCTGGGTCGCGATCTTCGGGGCGCTGGCCTGGAGCCGGTTCACGACGGCGGACGTGTCGTCCTGAMSLAEAPVAEAPAAPARATVRLLRSELRLVFGRVRNIVLLAGLAAVPLLIGTILFITQDTPAAGQGPPFLDRVTGNGVFLVFAALVSCLPFLLPLCVSIVSGDAIAGEAGAGTLRYLLVVPVPRTRLLLVKAVAALAYAGAAVAAIAVVGLVAGAAFFGVGDVVLLSGDTIPLAEGMVRTLGVVGYVIASLTGLVAVGLFLSTLTEVPVAAMASTVVVAIVSGVLDALPQLSAIHPALLTHHWLDFGEFLRLEVDGSTLLAGLAVQAAWVAIFGALAWSRFTTADVSSPGPT0006730_10671DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_03685195hypothetical proteinGTGAGCCACAGGACCGACCAGCGCATCACCGACATCATCGATGCTCACCCGGAGATCCCGTGGCCACAGATCCGTGGCTTCCGGAACGTCCTCGTCCATCACTACTTCGGTGTGGACCTCGACGTCGCCCGCGATGCGATCGAGTCCCACCTGCCGCCGCTCGCCGACGCGCTGGGCGGACCGGACGACGGCTGAMSHRTDQRITDIIDAHPEIPWPQIRGFRNVLVHHYFGVDLDVARDAIESHLPPLADALGGPDDGNANANANANA
AK018_03686111hypothetical proteinATGGAAGAAACCAGAGCCCTGTTCGGCCGCGAGGACGTCGACGTGTTCCCGGTCCAGCTGCTCAAGCAGCCGATCTCGCAGACCGCGCTCCAGGACGCGGTCACGCTGTGAMEETRALFGREDVDVFPVQLLKQPISQTALQDAVTLNANANANANA
AK018_036871053modC_1COG1118Molybdenum import ATP-binding protein ModCATGACGTTCGAGCTCACCGCCACCGTGCCGTCGCGCGGCCTCGACATCCGCCTCGACGTCGCCGAGGGCCGCACGCTCGCGCTGCTCGGACCCAACGGGGCCGGCAAGTCCACCGCCCTCGGCCTCGCCGCCGGGACGCTGCGCCCGCACGACGGCGCGATCACGCTGGACGGCCGCGCGCTCGCCGCCGCACGGGACGGACGCCGCACGGCGTGGGTTCCCCCGCACCGCCGTCGGGTCGCGCTGCTCGCCCAGGACCCGATGCTGTTCCCGCACCTCAGCGTGCGCGAGAACATCGCCTTCGGGCCCCGCTCCCAGGGCACCGGGCGCCACGAGGCCGCCGCGCGGGCCGATCGGTGGTTGGACGCGATCGACCTCGCGGATCTGGCCGACCGGCGTCCGGCCGCGCTGTCCGGCGGGCAGGCGCAGCGCGTCGCGATCGCCCGGTCGCTGGCCGCGGAACCCCGGCTGCTGCTCCTGGACGAGCCGATGGCGGCCCTCGACGTCGACGCCACCCCCGCGCTGCGCCAGCGGCTGCAGCACCTGATCGCCGAGCAGACGACGATCCTGGCGACCCACGACGTCCTGGACGCGCTGCTGCTCGCGGACGAGGTCGCCGTCGTCGACGGCGGGCGCGTCGTCGAACGCGGCCCGACGGCGGAGGTGCTGTCCCGCCCGCGCAGCGCCTTCGCCGCGTCGATCGCCGGCCTCAACCTGCTGTCCGGGACCTGGACGTCGGACGGCGTCGCCACCGCGGGCGGCGAGGTGGTGCACGGGCACAGCGCCCCCGACGTGGCCCTCGGCGCCGCGATGATTGCCGTGTGCCGCCCGGCAGCCGTCGCCGTCCACCTCGAGCCACCGCACGGCTCGCCCCGCAACACGTTCCGCGCCACGGTGCGGTCCCTCGCGCCCCACGGCGACCTCGTCCGCGTGCGCACCGACCGGCTCGCCGCCGACGTCACGCCCGGATCCGTGGCCGAGCTCGGGCTGGTTCCCGGCCGGGACGTCTGGCTGGCGGTCAAGGCCGCCGAGGTCGACGTCTATCCGGTGTGAMTFELTATVPSRGLDIRLDVAEGRTLALLGPNGAGKSTALGLAAGTLRPHDGAITLDGRALAAARDGRRTAWVPPHRRRVALLAQDPMLFPHLSVRENIAFGPRSQGTGRHEAAARADRWLDAIDLADLADRRPAALSGGQAQRVAIARSLAAEPRLLLLDEPMAALDVDATPALRQRLQHLIAEQTTILATHDVLDALLLADEVAVVDGGRVVERGPTAEVLSRPRSAFAASIAGLNLLSGTWTSDGVATAGGEVVHGHSAPDVALGAAMIAVCRPAAVAVHLEPPHGSPRNTFRATVRSLAPHGDLVRVRTDRLAADVTPGSVAELGLVPGRDVWLAVKAAEVDVYPVPGPT0008445_2106DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008445-modC-K02017NANA
AK018_03688849hypothetical proteinATGAGCGCCCCGGCCACCAGCGAGCGCGCCGCGACCACCCGCACGCGATGCGACCCGGCCGAGGTCCCCGCCGGCCTCCCCCGCTGGGCCTACCTACCCGCCGTCGTCGGCGGCCTGTTCGTCGTCCTGCCCCTGGTCGCGATGGGCACCCGCGTCGACTGGTCGAACTACTGGGGGCTGGTCACCAGCGAATCGGCCCGCGCCGCCCTGGCGCTCAGCCTGCAGACGGCGACGGCGAGCACGCTGCTCTGCCTGGTGCTCGGCATCCCGATGGCGCTCGTGCTGGCCCGTGGCCGGTTCCCCGGCCAGCACCTGCTCCGCTCGCTCGTCCTCGTCCCGCTGGTGCTCCCGCCCGTGGTCGGTGGCGTCGCGCTGTTGTCCACGTTCGGCCGCCGCGGGCTGCTCGGGGAGTCGATGGAGGTGCTCGGCCTGCAGATCGCCTTCTCGACGACGGCGGTGGTGCTCGCCCAGAGCTTCGTCGCCCTGCCGTTCCTCGTCGTCAGCCTGGAGGGAGCCCTGCGCACGGCCGGCGAGCGGTACGACGTCGTGGCCGCGTCCCTCGGCGCGAGCCCGACCACGGTGCTGCGCCGCGTCACCCTGCCGCTGGTGTGGCCGGGTCTGCTGTCCGGGACGGTGCTCGCGTTCGCACGGGCGCTCGGCGAGTTCGGCGCCACCATCACCTTCGCCGGCAGCCTGCAGGGCGTCACCCGCACGCTCCCGCTGGAGGTCTACCTGCAGCGCGAGACCGACCCGGACGCGGCCGTCGCGCTGTCGCTGCTGCTGGTGGCCGTCGCCGTCGTCGTCATCGCCGCCACGCACCGCCGGGGCGCTGGAGGTGCCGTGCGATGAMSAPATSERAATTRTRCDPAEVPAGLPRWAYLPAVVGGLFVVLPLVAMGTRVDWSNYWGLVTSESARAALALSLQTATASTLLCLVLGIPMALVLARGRFPGQHLLRSLVLVPLVLPPVVGGVALLSTFGRRGLLGESMEVLGLQIAFSTTAVVLAQSFVALPFLVVSLEGALRTAGERYDVVAASLGASPTTVLRRVTLPLVWPGLLSGTVLAFARALGEFGATITFAGSLQGVTRTLPLEVYLQRETDPDAAVALSLLLVAVAVVVIAATHRRGAGGAVRPGPT0008440_378DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008440-modB-K02018NANA
AK018_03689807modA_1COG0725Molybdate-binding protein ModAATGACGACGGCACTCCCCCGCCGCACGATGCGCACCGCCGCAGCACCGGCCGTCGCCGCGAGCGCCGCCGTCGTGCTCGCCGCGTGCAGCACCGGTTCGGCGGCCACGTCGGACGGCGCCGCAGACACCTCGTTGACCGTCTTCGCCGCCGCTTCCCTGACCGCGGCGTTCGAGGAGATCGCCGCCGACTTCGAGGCCGACCATCCCGGCGTCGACGTCCGGCTCAGCCTCGCCGGGTCGTCCAGCCTGGTCGCGCAGGTCCAGCAGGGGGCCCCGGCCGACGTCGTCGCCACCGCCGACACCTCGACCATGGACACGCTCGTCGCGGACCATCTGGTCGGCACCCCCCAGGCCCTCGCCACCAACACGCTCGAGATCGCCGTCCCGCCCGGCAACCCGGCCGGTGTCACCAACCTCCAGGACCTGACCGATCCGGGCCTCAACCTCGTGGTCTGCGCCCCGGAGGTGCCGTGCGGCGCCGCCACGACCGCCGTCGTCGACCATGCCGGCCTCACGCCGCAGCCGGTCAGCGAGGAGCAGAGCGTCACCGACGTCCTCGGCAAGGTGAGCGCGGGCGAAGCCGACGCCGGGCTCGTCTACGTCACCGACGTCGCCCGCGCCGGCGACCGGGCCGAGGGCATCGCGTTCGACGAGTCCGACGCCGTCGTGAACACCTACCCGATCGCCACCGTCGACCGAACCGGGCAGAGCCCCGGCCAGGCCGACCTCGCCCAGCAGTTCGTCGACGCCGTCCTCTCACCCGACGGCCAAGCCGTGCTCGCCGACCTCGGCTTCGCCGCACCATGAMTTALPRRTMRTAAAPAVAASAAVVLAACSTGSAATSDGAADTSLTVFAAASLTAAFEEIAADFEADHPGVDVRLSLAGSSSLVAQVQQGAPADVVATADTSTMDTLVADHLVGTPQALATNTLEIAVPPGNPAGVTNLQDLTDPGLNLVVCAPEVPCGAATTAVVDHAGLTPQPVSEEQSVTDVLGKVSAGEADAGLVYVTDVARAGDRAEGIAFDESDAVVNTYPIATVDRTGQSPGQADLAQQFVDAVLSPDGQAVLADLGFAAPPGPT0008435_1291DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008435-modA-K02020NANA
AK018_03690408hypothetical proteinATGCCGCAGATGAGGATCAGTGAGGCCGCCGTCTACCTCGGCGTCAGCGACGACACCGTGCGCCGCTGGGTCGACCGCGGGCTGCTCACCGCCGACCGCGACGACTCCGGACGCAAGGTCGTCGACGGCTACGAGGTGGCGATGGTCGCCCGTGAGCACGCCACCCCGCCCGGGCTCCCCCGCGGCATGAAGAGCTCGGCCCGCAACCGGTTCGTCGGGCTGGTCACCGACCTGCAGGTCGACACCGTCATGGCGCAGGTCGAGCTGCAGTGCGGGCCGTTCCGCGTGGTGTCCCTCATGAGCAGCGAAGCGGTCCGCGACCTCGGGCTGGAACGCGGTTCCGTCGCGGTGGCGACCATCAAGTCGACGAATGTCGTCATCGAGACCCCCGAGCGAGGCCCCGCATGAMPQMRISEAAVYLGVSDDTVRRWVDRGLLTADRDDSGRKVVDGYEVAMVAREHATPPGLPRGMKSSARNRFVGLVTDLQVDTVMAQVELQCGPFRVVSLMSSEAVRDLGLERGSVAVATIKSTNVVIETPERGPANANANANANA
AK018_03691867hypothetical proteinGTGATCACCGAGCTCAACCGACTGGTCGACCTCGTCGAGAGCCATCTCTGCGACGACATCGACGTCGAGCACCTGTCCACCGACCTCGGCACGACCGAGTACCACCTGCGCCGGATGTTCTCGTCGCTGGCCGGCATGCCGCTGTCCGACTACGTGCGACGTCGACGCATGACCGTCGCCGCGACCGACATCGTCGCCGGGGACCCCGTCCTCGACGTCGCGGTCCGCTACGGGTACGGCTCCGCCGAGGCGTTCGGCCGGGCGTTCCGCGCGGTGCACGGGACCCGGCCCGCCGATGTCAGGACGCACGGCGGCCCCCTTCGATCACAACCACAGCTCAGGTTCCGCCTGACCGTCGAAGGGAGCTCCTCCATGGACACCCGCCTCACCGATCGCCCGGCCTTCCGGCTCGTCGGCCACGCCGCCCGTGTGCCGCTGATCCACGAGGGCGTGAACCCGCACATCCAGGCGCACGTCGCGTCACTGCCCGCCGCCGAGCATGCGCGCCTCCGGGCGCTCGGGGACACCGAACCCGCCGGTCTGCTCCAGGTGAGCGCCGACGTCGACCCGGACTACACGGAGGGCAGCGAGCTCACGTACCTGCACGGGGTCGCCGTCGACGTCGGCACGCACGCCCCGGCGGACCTCGACGTGATCGAGGTCCCCGCGGGGACCTGGGTCGTCTTTCGCAGCTCGGGCGCGTATCCGACCGTGCTGCAGGAGACGTACGCGGCCTCGGCGACGCAGTGGTTCCCGTCGAACCCGTGGCGGCTGCGTCCCGGACCTTCGATCGTGGCGGTCCTGGAGCGGTCAGACGACTTCAAGACCGCCACGACTGAGCTCTGGCTGCCCGTCGAGCGGGCCTGAMITELNRLVDLVESHLCDDIDVEHLSTDLGTTEYHLRRMFSSLAGMPLSDYVRRRRMTVAATDIVAGDPVLDVAVRYGYGSAEAFGRAFRAVHGTRPADVRTHGGPLRSQPQLRFRLTVEGSSSMDTRLTDRPAFRLVGHAARVPLIHEGVNPHIQAHVASLPAAEHARLRALGDTEPAGLLQVSADVDPDYTEGSELTYLHGVAVDVGTHAPADLDVIEVPAGTWVVFRSSGAYPTVLQETYAASATQWFPSNPWRLRPGPSIVAVLERSDDFKTATTELWLPVERANANANANANA
AK018_036921212moaE2_2COG0303Molybdopterin molybdenumtransferase 2GTGGCGCGGCGCGCCGAGGCGTGCGATCTGGCCGAGGAGCTTGCCGCGGCCGGTCGCGGTTCCGCGGCCGGTGCCCGTGTCGCAGCGGCCGACGTCGCCGCCGCCATCGACCTCCCGGGCTTCGACAACTCGCAGATGGACGGGTACGCCGTCCGCGCTGCCGACCTGACCGGAGCGGCGCCGTCGGACCCGGTCGAGCTGCCGGTCGCGGCGCCGGTCCCGGCGGGCACCCGGCCGCCGCCGCTCGCGCCCGGCACCGCGGCCCCCGTGATGACCGGCGCCCCGATCCCGGACGGCGCCGACGCCGTCATCACGATCGAGGAGGCCGACCCGCCGGCGTTCCCCGAGCCGGGCGCCACCGCGACGGTCCGGTTCACCGCACCGGTGGCGCCGGGCACCTTCGTCCGCCGCGTGGGTTCCGACGTCGCCGCCGGTGACGTCGTCGTCCCCGCGGGCACCCGGCTCGGTCCGGCGCAGCTCGGCGTCCTCGTCGCCGCGGGCGTCACCGAGGTCGAGGTCGCCGAGCCGCCGCACGTGCTCCTGATCTCCACGGGGTCCGAGCTCGTCCCGGCCGGCGAGCCGCTCGGCCCGGCACAGCTCTACGACGCCAACGGCGCCGCGCTGACCGCCGCCCTGGCCGAGGTGGGGTGCCGTGTCACCCACCGCGTGGTCCCGGACGACCCGGCCGCCCTGCGCACCGTCCTGGCCGAGGCGCCGGACGACGTCGCGCTCGTCGTCACCAGCGGCGGCGTCTCCGCGGGCGCCTACGAGGTGGTGCGCCAGACCCTCACGGACGCCTGGTTCGGGCACGTCGCCGTCCAGCCCGGCGGGCCGCAGGGCCTCGGCACGATCACGTTGGGTGATCCGACCGCGCCGCGCGACGTGCCCCTCGTCGCGTTCCCCGGCAACCCGGTCAGTGCCCTGGTCTCCTTCGAGCTGTTCCTGCGCCCCGTGCTCGCGGAGGCCACCGGCGCGGTGCCCGCGCATCGACCTCGCGGCCGGGCGCCGCTCGCCGAGGCGATCGACTCACCCGAGCACCTGCACCAGGTCCGCCGCGGCCGCCTCGACGCCGACGGCCGTGTCGAGATGGTCGGCGGGCCGGGGTCCCACCTCCTGGCCCATCTCGCGATGGCTACGCTGCTGGTACACGTGCCACCCGGCGTCGGGCACCTCGACACGGGGGACGACGTCGACTACTGGGAGATCCGATGAMARRAEACDLAEELAAAGRGSAAGARVAAADVAAAIDLPGFDNSQMDGYAVRAADLTGAAPSDPVELPVAAPVPAGTRPPPLAPGTAAPVMTGAPIPDGADAVITIEEADPPAFPEPGATATVRFTAPVAPGTFVRRVGSDVAAGDVVVPAGTRLGPAQLGVLVAAGVTEVEVAEPPHVLLISTGSELVPAGEPLGPAQLYDANGAALTAALAEVGCRVTHRVVPDDPAALRTVLAEAPDDVALVVTSGGVSAGAYEVVRQTLTDAWFGHVAVQPGGPQGLGTITLGDPTAPRDVPLVAFPGNPVSALVSFELFLRPVLAEATGAVPAHRPRGRAPLAEAIDSPEHLHQVRRGRLDADGRVEMVGGPGSHLLAHLAMATLLVHVPPGVGHLDTGDDVDYWEIRPGPT0008430_1552DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
AK018_03693489moaC2_1COG0315Cyclic pyranopterin monophosphate synthase 2ATGAGCGACCTGTCCCACTACCGCGACGACGGCGCCGCCCACATGGTCGACGTCACCGCCAAGGACGTCACCAAGCGCCGCGCGACCGCCCGCGGCCTGCTGCGCACCCGGGCCGACGTCGTCGACCGGATCGCCTCCGGCGACCTCCCCAAGGGCGAGGCGATCGCGACCGCCCGCATCGCGGGGATCATGGGCGCCAAGCGCACCCCGGACCTCGTGCCGCTGTGCCACCCGCTGCCGATCTCCGGTGTCGACCTCGACGTCACCCCGGCCGACGACGGTTCCGGGACGGTCGAGATCACCGCGACCGTGAAGACCACCGGCCGCACCGGCGTCGAGATGGAGGCGCTGACCGCCGTCACCGTCGCCGGGCTCACGCTGTACGACATGATCAAGGCCGTCGACAAGGCCGCCGCGCTGACCGACATCGAGGTCGTGGCCAAGTCCGGCGGGAAGTCGGGCGACTGGACCCGGGAGGAGCAGGCATGAMSDLSHYRDDGAAHMVDVTAKDVTKRRATARGLLRTRADVVDRIASGDLPKGEAIATARIAGIMGAKRTPDLVPLCHPLPISGVDLDVTPADDGSGTVEITATVKTTGRTGVEMEALTAVTVAGLTLYDMIKAVDKAAALTDIEVVAKSGGKSGDWTREEQAPGPT0008405_2017DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637NANA
AK018_036941044hypothetical proteinATGAGGGCCGCGATCGTCGTCGCCTCGCAGCGTGCCGCCGCCGGCGTCTACGAGGACCGTTCCGGACCGGCCGCCACCGAGTGGTTCACGACCCGGGGCTGGGAGGTGCTGCCCGTCGTCGTCGTGCCCGACGGCGAACCCGTGCGGGACGCCCTGCTCGAGCTGGTCGAGGGGGACGACGCCGCCCCGGACGTCATCATCACCTCCGGCGGGACGGGCATCTCGCCGACGGACGCCACCCCCGAGGCCACGCGCGCCGTGCTGGACCGCGAGGTGCCCGGCCTCGCCGAGCTCGTGCGCGCCCGGTCGCTGGCGCCCACGGACCCGGCGAAGAAGGCCGCCCCGGGTGCCGCCCTTTCCCGCGGGGTCGCCGGGGTCGCCGACCGCACGCTGATCGTCAACCTGCCGGGGTCGGTCGGGGGAGTGGTCGACGGGCTCGACGCCCTGGCCGACGTGCTGCCGCACGCCGTCGAGCAGCTCGCCGGGCGCGACCACGAGCGTGCCGGGCATCACGGGCATCATGAGCGCCACGAGCACGACCCGCACCACGAACAGACTGCGCACCCGGAGCCCCGGCCCACCGAGACGTCGACGAGCAACGCGACCGTCCTGCACGCCGACGTGCTCGACACCCCGCTCGACAGTCTGCTCGTCGAGCTGAGCGACCTCGTGCGCGACGACACCTGCGGTGCCGTCGCCACGTTCGTCGGGCATGTCCGCGACCACGACGAGGGCCGCGGCGTGACCGCGCTGCACTACGAGGCGCACCCGCTGGCCGCCGAAATCCTCCGCGAGGTCGCCGAACGGGTGACCACCCGGACGGCCACGGTCACCGGCGACATAGTGCGCACCGCCGTCGTGCACCGCATCGGCGACCTCCAGGTCGGCGACGTGGCCGTCGTGGCCGCCGTCGCCTCCGGGCACCGCCAGGCCGCGTTCACGTGTGCGAGCGACCTCGTCGAGGAGCTGAAGGCCGAGGTGCCCATCTGGAAGGAGCAAGGGTTCACCGACGGCTCCAGCGAGTGGGTGGCGTCGCTCGGCTGAMRAAIVVASQRAAAGVYEDRSGPAATEWFTTRGWEVLPVVVVPDGEPVRDALLELVEGDDAAPDVIITSGGTGISPTDATPEATRAVLDREVPGLAELVRARSLAPTDPAKKAAPGAALSRGVAGVADRTLIVNLPGSVGGVVDGLDALADVLPHAVEQLAGRDHERAGHHGHHERHEHDPHHEQTAHPEPRPTETSTSNATVLHADVLDTPLDSLLVELSDLVRDDTCGAVATFVGHVRDHDEGRGVTALHYEAHPLAAEILREVAERVTTRTATVTGDIVRTAVVHRIGDLQVGDVAVVAAVASGHRQAAFTCASDLVEELKAEVPIWKEQGFTDGSSEWVASLGNANANANANA
AK018_036952244hypothetical proteinATGACGATCACGCCCGAGTCCCGCCCGCAGCTTCCCGTGGTGTCCACGCCCCACTACGCCCGGGGCAAGCGCGCCGCAGCGACCTGCCACTTCAAGTGCGCCGACGCCTGCGCGCACCCAGCGCCGAACCTCAGCGCGAACGAGTACTTCCGTGACATCGCCTCGCGTGCGCTGAGCCGCCGCGTGATGCTGGGTGGTGCCGCCGCCGCGGCCGCCGCCGTCGTCGTCGGCGCCCAGGCCATCGGTGCCCAGCCCGCCGCCGCGGCCCCGGTGGCCGGCAAGAAGCCGGTCAAGGGCCTCGCCTTCGGCGCCATCGCCGCGCAGCCCATGGAGCAGGACGACGTCATCGTGCCCGAGGGCTACGCGTGGTCGCCGATCATCCGGTGGGGCGACCCGATCCTGCCGGGCGGACGCGCCTTCGACCCCGCGCACCAGACCCCCGAGCAGCAGGCCAAGCAGTTCGGCTACAACTGCGACTACCTGGACATCCTGCCCGAGGACCCGAAGCACATCCGGTCCATGGTGGAGACCCGCCGCGGCACGAAGGGCGTGCTCGTGTCCAACCACGAGTACACCAACCCGCACATCATGTTCGACGCCTCGTACGACGACGTCACGCGGCGGGCGATCGAGCGGGCCGCGCACGGCATGTCCGTGGTCGAGGTGACCCGCGAGAAGACCGGCATGCCGTGGGACTACTCCCGCATCGCGCCGCTGAACCGCCGCATCCACCTGGGCACCGAGTTCACGATCGACGGCCCCGCCGCCGGCGACGACCTGCTCAAGACCGTCGACGACCCGACGGGCACGAAGGTCTTCGGGACGCTGAACAACTGCGCCGGCGGCACGACCCCGTGGGGCACCGTCGTCTCCGGCGAGGAGAACTTCCACGGGTACCTGCGCGTGAACGGCCAGGACCCCCGCGACGCCCGCTACGGGCTGCGCGACGCGGCCACCCGCTACGGCTGGGAGCTGGACGACCCGCGCTTCGACGGCAACAATCCCGGCTACGAGAACGAGAACCGCCGCTTCGGCTGGGTCGTCGAGATGGACCCGTACGACCCGACCGCCGCGCCCGTGAAGCACACCGCGCTCGGCCGGTTCAAGCACGAGGGCGCGAACGTCATCATGGCCGACGACGACCGCGCCGTCGTCTACATGGGCGACGACGAGCGCTTCGACTACGTCTACAAGTTCGTCTCGACCGACCGCATGCGCCACGGCAACAGCGACGCCGCCCGCGCGCACAACACCACGCTGCTCTCCTCGGGCGACCTGTACGTCGCGCGGTTCGACGGCGACTCGCCGGCCTCGGAGATCGACGGCTCGGGCGCGGTGCCCTCCGACGGCGCCTTCGACGGCACCGGCGAGTGGCTGCCGCTGGTGCTCGACGGCGCCTCGCAGGTGGACGGCATGTCGCTGGCCGAGGTGCTGGTCTTCACCCGCGTGGCGGCCGACACCGTCGGTGCCACCAAGATGGACCGCCCCGAGGACGTCGAGCCGAACCCGTTCACGGGCCGCATCTACGTCGCCTGCACCAACAACTCCAACCGCGCCCGCGACGGCTACCCGGGCGTCGACGAGGCCAACCCGCGTGGTTCCAACCGCGACGGCCACGTCGTGGAGATCATCGAGGACGGTGGCGACCAGACGGCGACCACGTTCACCTGGAACCTGCTCCTCGTGGCCGGCGACCCCGAGGTCAACGACTCGACCTACTTCTCCGGCTTCCCGGCCGACAAGGTCTCGCCGATCTCCTGCCCGGACAACGTCGCCTTCGACGCCGACGGCAACCTGTGGATCTCCACCGACGGCCAGCCGTCGTCGATCCAGAAGAGCGACGGGCTGTTCAAGGTGACGCTCGACGGGTCGCAGCGCGGCCGGGTGGAGCAGTTCCTGGCCGTGCCGCGTCGGGCCGAGACGTGCGGTCCGGTCGTCGACGTGCGGGACTCGATGGCGTACGTCAACGTCCAGCACCCGGGCGACGACGGCAGCTGGGGCGCGCAGACGTCGTACTTCCCGGACTACCTGGCCGAGGGTGAGACGGTCCCGGCCGGAGCCTGGCGCGGGCCCCGGCCGTCGACCGTCCAGGTCTTCCCGGCCGGTGCCGGCGAGCACCCTGGACGCGGGAAGGACTCCGAGCACCAGGGTCCCGGGCCGTTCCCGTCCTCCCGCGGGGGCCGGGGCCGTGGCTCGCAGAACCGTCCGACCTTCGCCGGGACCGGCGACCAGTTCCGCGGCTGAMTITPESRPQLPVVSTPHYARGKRAAATCHFKCADACAHPAPNLSANEYFRDIASRALSRRVMLGGAAAAAAAVVVGAQAIGAQPAAAAPVAGKKPVKGLAFGAIAAQPMEQDDVIVPEGYAWSPIIRWGDPILPGGRAFDPAHQTPEQQAKQFGYNCDYLDILPEDPKHIRSMVETRRGTKGVLVSNHEYTNPHIMFDASYDDVTRRAIERAAHGMSVVEVTREKTGMPWDYSRIAPLNRRIHLGTEFTIDGPAAGDDLLKTVDDPTGTKVFGTLNNCAGGTTPWGTVVSGEENFHGYLRVNGQDPRDARYGLRDAATRYGWELDDPRFDGNNPGYENENRRFGWVVEMDPYDPTAAPVKHTALGRFKHEGANVIMADDDRAVVYMGDDERFDYVYKFVSTDRMRHGNSDAARAHNTTLLSSGDLYVARFDGDSPASEIDGSGAVPSDGAFDGTGEWLPLVLDGASQVDGMSLAEVLVFTRVAADTVGATKMDRPEDVEPNPFTGRIYVACTNNSNRARDGYPGVDEANPRGSNRDGHVVEIIEDGGDQTATTFTWNLLLVAGDPEVNDSTYFSGFPADKVSPISCPDNVAFDADGNLWISTDGQPSSIQKSDGLFKVTLDGSQRGRVEQFLAVPRRAETCGPVVDVRDSMAYVNVQHPGDDGSWGAQTSYFPDYLAEGETVPAGAWRGPRPSTVQVFPAGAGEHPGRGKDSEHQGPGPFPSSRGGRGRGSQNRPTFAGTGDQFRGNANANANANA
AK018_036961248iscS_1COG1104IscS-like cysteine desulfuraseATGACCGTGACAGCCCCCCAGGCGCCCGGCGCCTACCTCGACCACGCGGCCACGACCCCCATGTCGTCGGCGGCGCTCGAGGCCTACGTCGCCGAGGCCTCCGCTACCGGGAACGCCTCGTCCCTGCACTCGGCCGGCCGTGCCGCCCGCCGCACCGTCGAGGAGTCGCGCGAGACCGTCGCCGCCGCCCTCGACGCCCGCCCCAGCGAGGTGATCTTCACCGGCGGCGGCACCGAGTCCGACAACCTCGCCGTCAAGGGCATCTTCTGGGGCCGGCGCTCGCAGGACTCGCGCCGACGCCGCGTGCTGATCTCCGCCGTCGAGCACCACGCCGTCCTGGACCCGGCCTTCTGGCTGGCCGGGCACGCCGGCGCCGAGATCACCCTGCTCGACGTGGACGACGAGGGCCGCATCGACCTCGACGCGCTCAAGGCCGAGCTCGCCGTCGCCCCCGAGGAGATCGCTCTCGTCTCGGTCATGTGGGCGAACAACGAGGTCGGCACCGTCCAGCCGATCCGCGACGTCGTCCGTCTCGCCCACGCCCAGGGCATCCCCGTGCACACCGACGCCATCCAGGCCGTCGGGCAGGTCGAGGTCGGGTTCGCCGCCTCGGGCGTGGACGCGCTGACCGTCACCGGGCACAAGCTCGGCGGTCCGGTCGGCGTCGGTGCGCTGCTGGCCCGGCGCGACCTGCCGCTGGAGGCCGTCTCGCACGGTGGCGGCCAGGAGCGCGGCGTGCGGTCCGGCACGCTCGACGGTGCCGCCATCCGCTCCTTCGCCGTCGCGCTGCACGACGCCGTCACCCGCCGCGCCGAGCGCGCCGCCCGGTTCGCCGGGCTCCGCGACGCGCTGGTCGAGGGTGTCCGCGCGGCCGTGCCCGACGCCGTCCTGCGCGGCCCCGACCCGGCCGCGGTCACGCCGTCGGGCGCCCCGGCACGGCTGCCCGCCAACGCCCACTTCACGTTCCCCGGCGCGGAGGGCGACTCGCTGCTGTACCTGCTCGACTCCGCCGGGGTGCACGCCTCCACCGGCTCGGCCTGCCAGGCGGGGGTGCCGCAGCCCAGCCACGTGCTGCTCGCCATGGGCGTCGACGAGGCCGACGCCCGCGGCGCACTGCGTTTCTCCCTGGGCGACACGTCCACGCGCGCCGACGTCGACCGGCTCTGCGAGGCGCTGCCCGGAGTCGCGGACCGTGCCCGCGCCGCCGGGCTCGTCTCGACCCGCCCGCTGACCGGAGGTACCGCATGAMTVTAPQAPGAYLDHAATTPMSSAALEAYVAEASATGNASSLHSAGRAARRTVEESRETVAAALDARPSEVIFTGGGTESDNLAVKGIFWGRRSQDSRRRRVLISAVEHHAVLDPAFWLAGHAGAEITLLDVDDEGRIDLDALKAELAVAPEEIALVSVMWANNEVGTVQPIRDVVRLAHAQGIPVHTDAIQAVGQVEVGFAASGVDALTVTGHKLGGPVGVGALLARRDLPLEAVSHGGGQERGVRSGTLDGAAIRSFAVALHDAVTRRAERAARFAGLRDALVEGVRAAVPDAVLRGPDPAAVTPSGAPARLPANAHFTFPGAEGDSLLYLLDSAGVHASTGSACQAGVPQPSHVLLAMGVDEADARGALRFSLGDTSTRADVDRLCEALPGVADRARAAGLVSTRPLTGGTAPGPT0000065_1049DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
AK018_036971149mnmA_1COG0482tRNA-specific 2-thiouridylase MnmAATGAGGGTCCTGGCCGCCATGTCCGGGGGAGTGGACTCCGCCGTCGCCGCCGCGCTCGCCGTCGAGGCCGGGCACGAGGTCGTCGGGGTGCACATGGCCCTGAGTCGCAACCGTGACCAGTTCCGCACCGGCTCGCGGGGCTGCTGCTCCATCGAGGACGCCGGGGACGCCCGCCGCGCTGCCGACGTGCTCGGCATCCCGTACTACGTGTGGGACCTCTCCGAGACCTTCGAGGAGACCGTCGTCGCGGACTTCCTGTCCGAGTACTCGGCCGGCCGCACGCCGAACCCGTGCGTGCGCTGCAACGAGCACATCAAGTTCACCGCCCTGCTGGACAAGGCCACCGCGCTGGGCTTCGACGCCGTCGCCACCGGCCACTACGCGCGCATCGAGCACGGCCCGGACGGCCCCGAGCTGCACCGCTCGCCCAACGACGCCAAGGACCAGTCCTACGTGCTGGCCGTCATGGGGCCGGACCGCCTCGCCCGCTCGGTGTTCCCGCTGGGCCACTTCGCCACCAAGGACGAGGTGCGTGCCGAGGCCGAGCGCCGCGGGCTCTCGGTCAGCGCCAAGCCGGACTCCTACGACATCTGCTTCGTGGCCGACGGCGACACGAGCGGGTTCCTGCGCGACCGGCTCGGCGAGCAGCCCGGCGACGTGGTCGACACCGACGGCACGGTCGTCGGGGAGCACCGCGGCGCCTACGCCTACACGATCGGCCAGCGCAAGGGCCTCGGACTGGGCCGCCCCGCCGCCGACGGCAAGCCCCGCTACGTCGTCGACGTCGACACCACGTCCAACACGGTGCTCGTCGGCCCGTCCGAGCTGCTCACCGTCGACCGCATCGACGCCGGGCAGGCGATCTGGCTCGTGGACGCGCCGGCGGACTGGACCGACGTCACCGTCCAGGTGCGTGCGCACGGCCGCGCCGTCCCCGCCCAGGTCCGTGCGACGTCCGACGACGGCGCCCCGGCCCTGGAGGTCCGCCTCGGCGAGCCGCTGCGAGGGATCGCGTCGGGGCAGTCGATCGTCGTCTACCGCGGCACGCAGGTGCTGGGTCAGGGCACCGTCGCCGGCGCCCGCCGCGAGGGTGCGTCAGCCGCCGCCACGTCAGCCGCCGCCACGACGGCCGCTGCGGCGCACGCATGAMRVLAAMSGGVDSAVAAALAVEAGHEVVGVHMALSRNRDQFRTGSRGCCSIEDAGDARRAADVLGIPYYVWDLSETFEETVVADFLSEYSAGRTPNPCVRCNEHIKFTALLDKATALGFDAVATGHYARIEHGPDGPELHRSPNDAKDQSYVLAVMGPDRLARSVFPLGHFATKDEVRAEAERRGLSVSAKPDSYDICFVADGDTSGFLRDRLGEQPGDVVDTDGTVVGEHRGAYAYTIGQRKGLGLGRPAADGKPRYVVDVDTTSNTVLVGPSELLTVDRIDAGQAIWLVDAPADWTDVTVQVRAHGRAVPAQVRATSDDGAPALEVRLGEPLRGIASGQSIVVYRGTQVLGQGTVAGARREGASAAATSAAATTAAAAHANANANANANA
AK018_036981038hypothetical proteinATGACGGCGGTCAGCGGGCGCGGGCCGTGGCCCGGGGGAGAGCGGGACGTGCTGGAGGCCCAGCAGACCGTGCTGGGCGACCTGTCCGAGCTGCCCACCGGCGTCCAGGCGGTCCCGTTCCTCGTCCAGCTCACCGGCCGCGGTCCGGGCGCGGGGGCGACCGCCCGCACCGCGCTGCTGCTCGCCGAGCACGCCGTCGAGCTCGGTCCGCACGGTTGGAAGCTCGCCGACCACGAGGGCGTCGACGCCCGGCGCGCCCGCTCGCTGCTGGCCGAGGACCTCGGCGCCCTGGCGATCGCCACCCACGGGTACGCCGGCCCGTTCACCGTCGAGGTGACCGGCCCGTGGACGCTCGCCGCCGAGCTGTGGTCCGCCCGGGGCGACCGCGTGCTGGCCGACGTCGGTGGCCGGGCTGCTCTCACCGAGGCGCTGGCCGTGGGCCTGGCCGACCACGTCGCCCAGGTGCGCGACCAGGTGCCCGGCGCGGACGTCGTCGTGCAGCTCGCCGAACCGCTGCTGGGACAGGTGCACGCCGGGGTGCTGCCGACGTTCTCGGGCTACTCGCGCCTCCGCGGGGTGCCGGGTCCGGAGATCGTCGAGGGTCTGCGCCCGGTGATCCAGGCGGTGCACGACGCCGGTGCCCGGGTCGTCGTGCACCTCGGCGGCACGTGGGTGGGGATCCCGCCGGTGGTGCTCGCCGGTGCCGACGCCGTCGGGCTGGACCTGGCCGAGATGGGCCCCGAGGGCTGGAACGAGCGGGCCTGGGAGCTGGTCGCCCGGGCGACCGAGCGGGAGGTCGGGCTCTGGGCCGGGTTGCCGCCGGCCACCGTGTCGCAGTGCGCGGGGCCGGAGCTGGGCGGGCTCGTGCGGCTCGTCGCCGAGCCGTGGCGCCGCATCGGGCTGCCGGCCACGGGCCTCGACGGGGTCACCGTGCTGGCCGCACCCCGCCGCACGCTCGCCTCCGTGGACGACCACCGGGCGGGTCTGGCGAACCTCGGTCGGGTGGCCGAGACGCTGGCGGAGCGCGCCGAGTCCTGAMTAVSGRGPWPGGERDVLEAQQTVLGDLSELPTGVQAVPFLVQLTGRGPGAGATARTALLLAEHAVELGPHGWKLADHEGVDARRARSLLAEDLGALAIATHGYAGPFTVEVTGPWTLAAELWSARGDRVLADVGGRAALTEALAVGLADHVAQVRDQVPGADVVVQLAEPLLGQVHAGVLPTFSGYSRLRGVPGPEIVEGLRPVIQAVHDAGARVVVHLGGTWVGIPPVVLAGADAVGLDLAEMGPEGWNERAWELVARATEREVGLWAGLPPATVSQCAGPELGGLVRLVAEPWRRIGLPATGLDGVTVLAAPRRTLASVDDHRAGLANLGRVAETLAERAESNANANANANA
AK018_036992730adhECOG1012Aldehyde-alcohol dehydrogenaseATGAGCACCGACACCACCACGAGCACCGTCGCAGAGGCCGCGCGGACCGACGTCCCGGCACCCGCGAGCGACGCCCCCGCACCGGAGGTCGCCGTCGACGCGATGGTCCAGCGCGGACTGAAGGCACTGGCCGCCTACGCGGTACTGACCCAGGAGGACGTCGACCGGATCGTCAAGAAGGCCTCCGTCGCGGCGCTGCACGAGCACGGCAACCTCGCCCAGCTCGCCGTCACCGAGACCGGGCGCGGCGTCTTCGAGGACAAGGCCACCAAGAACATCTTCGCCTGCGAGCACGTCACCCACTCGATGGCCGACCTCAAGACGGTCGGCGTCGTCGGACGCGACGAGCTGCGCGGCATCGTCGAGATCGCCGAGCCGGTCGGCGTGGTCGCCGGCGTCACCCCGGTGACCAACCCGACCTCGACCGCGATCTTCAAGAGCCTCATCGCGCTCAAGACCCGCAACCCCATCATCTTCGCGTTCCACCCGAACGCCCAGCACTCCTCGTCGGAGGCCGCGCGCATCGTCCGTGACGCGGCGATCGAGGCCGGCGCCCCCGAGGACTGCATCCAGTGGGTCACCGAGCCCAGTCTCGCGGCGACCAGCGCGCTCATGCACCACGACGGCGTCTCGCTCATCCTGGCCACCGGCGGCAACGCCATGGTCCGCGCCGCCTACTCGGCCGGCAAGCCCGCCCTCGGCGTCGGCGCCGGCAACGTGCCCGCCTACATCGAGTCCACGGCGAAGATCGGCCGCGCGGTCAACGACGTCGTGCTCTCCAAGGGCTTCGACAACGGTGTGGTCTGCGCCTCGGAGCAGGCCGCGATCGTCGACGACGAGATCTACGACGAGGTGATGACCGAGTTCCAGCGGATGCACGCCTACGTGGCCACGCCCGCGGAGAAGGCCCTGCTCGAGGAGTACCTCTTCGGCGCGTGCGCGGACTCGGCGGCGTGCAGCGGGGCGAAGCTCAACGCCGCCGCGGTGGGCAAGTCGGCGCACTGGATCGCCGAGCAGGCCGGCTTCTCGGTCCCCGAGGACACCTCGGTGCTGCTGGCGGAGATCTCCGGCGTCGGCCCCCAGGAGCCGCTGAGCCGGGAGAAGCTGTCGCCCGTGCTCGCCGTGCTGCGCTCGCGCAGCACCGACGAGGGCGTCCGCCTGGCCGAGCAGATGGTGGAGTTCGACGGCCTCGGGCACTCCGCGGCGATCCACACCACAGACGCCGCGCTCGCCGAGCGGTTCGGGCACGCCGTCAAGGCGGTCCGCGTGCTGTGGAACCAGCCGAGCGCCCTGGGCGGCATCGGCGACATCTACAACGCGCTCGTGCCCTCGCTGACGCTCGGCTGCGGCTCCTACGGCCGGAACTCGGTGTCCAACAACGTCAGCGCCGTCAACCTGGTGAACATCAAGCGGGTCGCGCGGAGGAACAACAACATGCAGTGGTTCAAGGTGCCGCCCAAGACCTACTTCGAGCCGAACGCGATCCAGTACCTGGTCGACATGCCCGAGGTCGAGCGCGTCACCGTCGTCACCGACCGGGTCATGTCCCAGCTCGGCATCGTCGACAAGGTGCTCGACGTGCTGCAGCGCCGCGCCACCAAGGTCGCCGTGCAGATCATCGACACCGTCGAGGCCGAGCCGAGCGTCGAGAGCGTCGAGCGCGGTGCGCTGCTCATGCACGACCACCGTCCGGACACGATCATCGCGATCGGCGGCGGCTCGCCGATGGACGCCGCCAAGGTGATGTGGCTCAAGTACGAGCACCCCGAGGTCGCGTTCAGCGACCTGCGCGAGAAGTTCTTCGACGTGCGCAAGCGGGCCTTCCGCTACCCGCAGCTCGGGGAGAAGGCCCAGCTGGTCTGCATCCCGACCTCGTCGGGCACCGGGGCCGAGGTGACGCCGTTCGCCGTCATCACCGACAACTCGACCGGATTCAAGTACCCGCTGGCCGACTACGCGCTCACCCCGTCCGTGGCGATCGTCGACCCGGTGCTCACCGCCACGATGCCGGCGAAGCTCGCCGCGGACTCCGGCATGGACGCGCTGACCCACGCCACCGAGGCGTTCGTGTCGGTCTACGCGAACGACTTCACCGACGGCCTGGCGCTGCACGCCATCAAGCTGGTGTTCGAGAACATCGCTGCCTCCGTCAACGAAGGCGGCGAGGCGCCCGAGGCGCGGGAGAAGATGCACAACGCCGCGACGATGGCCGGCATGGCCTTCGGCAACGCGTTCCTCGGCATCGTGCACGCGATGTCGCACACGGTCGGGGCCACCTTCAAGCTGGTCCACGGCCGCACCAACGCGATCTTCCTGCCGCACGCGATCCGCTACAACGGCCTCATGCCGGGCAAGGTCACCGGCTGGCCGAAGGCGGAGAAGTACGTCGCCCCGGAGCGGTACCAGCAGATCGCGCAGCACCTGGGCCTGCCGGCCGCGACCCCGGCCGAGGGCGTCGAGTCGTACGCCCGGGCCGTCGAGGAGCTGACCCGGAGCATCGGCATCGAACCGTCCTTCCAGGCGCAGGGCGTGTCCGAGCAGGCGTTCGTCGGAGGCCTCGACACCCTGGCGATGCGGGCCTACGAGGACCAGTGCGCCCCGGCCAACCCGCGCCTGCCGATGCTGCAGGACATGAAGGACATCATGGTCGCGGCGTACTACGGCACCACCCAGCAGGCGGCCGCCGAGGCGCGGAAGTCCGACGGCGGGTACACCTCGCTCGGTCGCTGAMSTDTTTSTVAEAARTDVPAPASDAPAPEVAVDAMVQRGLKALAAYAVLTQEDVDRIVKKASVAALHEHGNLAQLAVTETGRGVFEDKATKNIFACEHVTHSMADLKTVGVVGRDELRGIVEIAEPVGVVAGVTPVTNPTSTAIFKSLIALKTRNPIIFAFHPNAQHSSSEAARIVRDAAIEAGAPEDCIQWVTEPSLAATSALMHHDGVSLILATGGNAMVRAAYSAGKPALGVGAGNVPAYIESTAKIGRAVNDVVLSKGFDNGVVCASEQAAIVDDEIYDEVMTEFQRMHAYVATPAEKALLEEYLFGACADSAACSGAKLNAAAVGKSAHWIAEQAGFSVPEDTSVLLAEISGVGPQEPLSREKLSPVLAVLRSRSTDEGVRLAEQMVEFDGLGHSAAIHTTDAALAERFGHAVKAVRVLWNQPSALGGIGDIYNALVPSLTLGCGSYGRNSVSNNVSAVNLVNIKRVARRNNNMQWFKVPPKTYFEPNAIQYLVDMPEVERVTVVTDRVMSQLGIVDKVLDVLQRRATKVAVQIIDTVEAEPSVESVERGALLMHDHRPDTIIAIGGGSPMDAAKVMWLKYEHPEVAFSDLREKFFDVRKRAFRYPQLGEKAQLVCIPTSSGTGAEVTPFAVITDNSTGFKYPLADYALTPSVAIVDPVLTATMPAKLAADSGMDALTHATEAFVSVYANDFTDGLALHAIKLVFENIAASVNEGGEAPEAREKMHNAATMAGMAFGNAFLGIVHAMSHTVGATFKLVHGRTNAIFLPHAIRYNGLMPGKVTGWPKAEKYVAPERYQQIAQHLGLPAATPAEGVESYARAVEELTRSIGIEPSFQAQGVSEQAFVGGLDTLAMRAYEDQCAPANPRLPMLQDMKDIMVAAYYGTTQQAAAEARKSDGGYTSLGRPGPT0006360_11DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006360-adhE-K04072NANA
AK018_03700741COG0637putative proteinATGCCTGCCCTGCGTGCCGTCCTGTTCGACCTCGACGGGGTCCTCACCCCGACCGCCGAGGTGCACATGCGGGCCTGGGAGCGGCTCTTCGCCCCGTGGACCTCGCAGCACGGCCTGGAGCCCTACACGGCGGCCGACTACTTCGCCCACATCGACGGCAAACCGCGCTACGACGGCGTCGCGGCGTTCGTCGGGTCCCGCGACGTCAGGCTCCCGTGGGGCGCGGACGGCGACGCTCCGGGCGAGGGCACGGTGTGCGCGCTCGGCAACCGCAAGGACGAGATCGTCAACCGGATGTTCGTCGAGGAGGGCATCGAGCCGTACGCCGGGTCGGTGCGGTTCCTCGACGCCGTGACCGGCGCGGGCGCGCAGGTCGCCGTCGTCTCGTCGTCGCGCAACGCGGCGGCCGTGCTCGCCGCCGCGGGCCTGGCCGACCGGTTCGACGTCGTCGTGGACGGCAACGTCGCGACCCGGGAGGGCATCGCGGGCAAGCCGGCCCCCGACACGTACGTGCGCGCCGCCGAGCTGCTCGGCGTGCCCGTGGGGGAGTCGGTGGTCGTGGAGGACGCGATCTCCGGCGTCCGGGCCGGTGCGGCCGGCGCCTTCGGTCTCGTCCTGGGCGTCGATCGCGGCGTGGGGGCCGAGGCGCTGCGCGCGCACGGTGCCCACCTGGTCGTGGCCGACCTGGACGAGCTCGACGCGTCGGTGCTCGACGCGCCGCGGGCCGGGGGCGCCGCGTGAMPALRAVLFDLDGVLTPTAEVHMRAWERLFAPWTSQHGLEPYTAADYFAHIDGKPRYDGVAAFVGSRDVRLPWGADGDAPGEGTVCALGNRKDEIVNRMFVEEGIEPYAGSVRFLDAVTGAGAQVAVVSSSRNAAAVLAAAGLADRFDVVVDGNVATREGIAGKPAPDTYVRAAELLGVPVGESVVVEDAISGVRAGAAGAFGLVLGVDRGVGAEALRAHGAHLVVADLDELDASVLDAPRAGGAAPGPT0014080_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-TREHALOSE_METABOLISM,PGPT0014080-treP-K05342NANA
AK018_037012478trePAlpha,alpha-trehalose phosphorylaseGTGAGCCCGAAGACCCCCGACGAGCAGAGCACCGTCGACCGGCGGCGATTCCCCGCGGACCCGTGGCGGCTCGTCGAGACGCGGTACTCGAGCGAGGACCTCGGCGTCACGGAGACGATGTTCTCGGTCGCCAACGGCTACCTCGGCATGCGGGGGAACGTCGAGGAAGGGCGCGACTCCCACGCGCACGGCACGTTCGTCAACGGTTTCCACGAGACCTGGCCGATCCGTCACGCCGAGGACGCCTACGGTTTCGCGAAGGTCGGCCAGACGATCGTCAACGTGCCCGACACCAAGGTGATCCGGTTGTACGTCGACGACGAGCCGCTCCTGCTGCCCGTCGCCGACCTGCTCGAGTACGAACGGTCGCTCGACCTGCGCGACGGGATCCTGCGCCGTGAGCTGCTGTGGCGCACGCCGTCGGGCAAGCGGGTGCGGGTCCGCTCGGACCGCATGGTCTCGTTCGTCGAACGGCACCTCGCCGTGATGTCCTTCGAGGTCACGCTCCTCGACGCGGCGGCACCGGTCGCGATCTCCTCGCAGATCCTCAACCGGCAGGACGGTGAGGACGAGTACCACGTCCCCTCCGCCGCGCTCGGCGAGGGCTTCGACCCGCGCAAGGCCGAGGACTTCACCGGGCGTGTCCTCCAGCCCCGCGGACACTGGGGCGACGACGAGCGCCTGGTCCTGTCCTACCGCTGCACCGACTCCGGGATGACGCTCGCGGTGGCGGCGGACGACCGGCTGGAGACCGAGAACGCGTGGGACGTGCGCACCCAGGTCGAGGAGGACCTCGCGAAGCACGTGTTCCGCATCCGGGCGGAGCCGGGACGTCCGGTGCGCCTGACGAAGACCGTCGCGTACCACACGTCGCGCGGCGTGCCCCCGCGCGAGCTGATCGACCGGTGCCGACGGACGCTGGACCGGGTGGCGGACGGCGAGCTCGAGGAGCTGTACGCCGACCAGCGGGCCTGGCTGGACGCCTTCTGGGCGCGGTCGGACGTCGAGATCGGCGGTCAGCAGGAGATCCAGCAGGCGGTGCGCTGGAACCTCTTCCAGCTCGCCCAGGCGACCGCGCGGGCCGAGGGCAGCGGAGTGCCGGCCAAGGGACTGACCGGGTCGGGCTACGGCGGGCACTACTTCTGGGACACGGAGATCTACGTCCTGCCGTTCCTGACCTACACGAGCCCGCGGTTCGCCCGGAACGCGCTGCGCGTGCGCTACCACATGCTCGACGCGGCGCGACGGCGGGCCACCGAGCTGTCCCAGCGCGGGGCGCTGTTCCCGTGGCGGACGATCAACGGCGAGGAGGCGTCCGCCTACTACGCGGCCGGTACGGCGCAGTACCACATCGACGCCGACATCAGCTACGCGCTGATGCAGTACGTCGTGGCGACCGACGACACGGACTTCCTGCGCCGTGAGGGGGTGGACGTCCTCGTGGAGACCGCCCGGCTGTGGGTGGACCTGGGTTTCTGGCGCGCCAACGGCGACCACTCCTTCCACATCCACGGCGTCACCGGGCCCGACGAGTACACGACGGTCGTCAACGACAACCTGTTCACGAACGTCATGGCACGGTTCAACCTGCGGGCCGCGGCGCGCGTGGTGGACGCCCTGCGCGACCGGTTCCCCGAGGACTACGCCCGCCTCGTCGAGCAGCTCGGGCTCGAGCCCTCCGAGCCGGTCGCCTGGGCCCGGGCCGCCGAGCAGATGGCCGTGCCCTTCGCGGACGAGATCGGGATCCACCCCCAGGACTCGCACTTCCTCGAGCGAGAGATCTGGGATGTCGGACGCACCCCTCCGGACCGGCGGCCGCTGCTCCTGCACTACCACCCGCTGGTGATCTACCGCTTCCAGGTGCTCAAGCAGGCCGACGTCGTCGCCGCCCTGGTCCTGCAGGGCAACCACTTCACGCCGGAGCAGAAGCTCGCCGACTTCGAGTACTACGACCCGCTGACGACCGGGGACTCGACGTTGTCCGGCGTCGTGCAGTCGATCGTCGCCGCCGAGGTCGGCTACCAGGAGCTGGCGCTCGAGTACTTCCGGTCGTCGGTGTACGTCGACCTCGCGAACCTGCACGGCAACGCTGCCGACGGCGTGCACGTCGCGTCGGCCGGCGGGTCGTGGGGAGCGGTCGCCTTCGGTTTCGGCGGCACGCGGGACCACGACGGCGACCTCACGTTCGACCCGAGACTCCCGTCGGGCTGGGACTCCCTGACGTTCCGCATCACGTGGAAGGGGTCCCGGCTGCGGGTCACCGTCCTGCCCTCGTCGCTCGAGCTCGTGGCGGAGACGGGCGAGGGGGCGACCGTCGGCGTCCGGGGCGAGCGGGTCACGGTCCGGTCCGGCGAGCCCGTGACGGTCCCGCTCGACGGTCAGGGCCCCGTCCGCGCAGGGCGACCGGGCCTCCGGGCCCTGTCGGGCAACCGCCGCGAGGACGGCACCCTCATCACGGCGATCGTCCCGCACCCCTGAMSPKTPDEQSTVDRRRFPADPWRLVETRYSSEDLGVTETMFSVANGYLGMRGNVEEGRDSHAHGTFVNGFHETWPIRHAEDAYGFAKVGQTIVNVPDTKVIRLYVDDEPLLLPVADLLEYERSLDLRDGILRRELLWRTPSGKRVRVRSDRMVSFVERHLAVMSFEVTLLDAAAPVAISSQILNRQDGEDEYHVPSAALGEGFDPRKAEDFTGRVLQPRGHWGDDERLVLSYRCTDSGMTLAVAADDRLETENAWDVRTQVEEDLAKHVFRIRAEPGRPVRLTKTVAYHTSRGVPPRELIDRCRRTLDRVADGELEELYADQRAWLDAFWARSDVEIGGQQEIQQAVRWNLFQLAQATARAEGSGVPAKGLTGSGYGGHYFWDTEIYVLPFLTYTSPRFARNALRVRYHMLDAARRRATELSQRGALFPWRTINGEEASAYYAAGTAQYHIDADISYALMQYVVATDDTDFLRREGVDVLVETARLWVDLGFWRANGDHSFHIHGVTGPDEYTTVVNDNLFTNVMARFNLRAAARVVDALRDRFPEDYARLVEQLGLEPSEPVAWARAAEQMAVPFADEIGIHPQDSHFLEREIWDVGRTPPDRRPLLLHYHPLVIYRFQVLKQADVVAALVLQGNHFTPEQKLADFEYYDPLTTGDSTLSGVVQSIVAAEVGYQELALEYFRSSVYVDLANLHGNAADGVHVASAGGSWGAVAFGFGGTRDHDGDLTFDPRLPSGWDSLTFRITWKGSRLRVTVLPSSLELVAETGEGATVGVRGERVTVRSGEPVTVPLDGQGPVRAGRPGLRALSGNRREDGTLITAIVPHPPGPT0014080_181DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-TREHALOSE_METABOLISM,PGPT0014080-treP-K05342NANA
AK018_037022172hypothetical proteinATGAGTGCCGACCCGCTCCTGCCCCCGTCCGACGCCGACCTGCCGACCCACGGCGCGGACCCGTTCGGCTGGCTCGAGGAGGTCTCGGGCGACGAGCCGCTGGACTGGGTGCGGCAGCGCAACGAGCACGCCCAGGAGACCCTCGGCGGGGACGACCTCGTCGCGACGCGGGCGGCGATCAGGGAGGTGCTGGACTCGGACGACCGCATCCCGGCGGTCTCGCGGATCGGCGACCATCTGTACAACTTCTGGCGGGACGCCGACCACGAGCGCGGGCTCTGGCGACGCACCACCCCGGACTCGTACCGCAGCGCGGACCCGGCGTGGGAGACGGTGCTCGACCTGGACGCCCTGGCGGCGGACGAGGACGAGTCGTGGGTCTGGCACGGTGCGTCCGTGCTGCGTCCGACGCCCGAGCAGCTCGCGGCCGGCGAGCCCTGGCGCCGGGCGCTGGTCGACCTCTCCCCCGGCGGCTCGGACGCCGACGTCACGCGGGAGTTCGACCTCGTCGAGAAGCGGTTCGTGCCGGCCGCCGAGGGCGGCTTCCACCGTCCGTTGGCCAAGGGCGGGCTCGCCTGGGCCGACGAGGACACCGTGTACGCGTTCACGGACCTCGGCGAGGGGACCACGACGTCGTCCGGCTACCCCCGGACCGTCGTGCTCTGGCGGCGCGGGACGCCGCTGGCGTCGGCCCCGGTCGTGTACGAGGGCTCGGTCGACGACATGTACATCATGGGCAGCCGCTCCCGGACGCCGGGCTTCGAGCGCGACCTCGTGCGGCGCTCGATCGCCTTCTACCGCTCCGAGGTGTTCCTCGTCGACGACGTCGGCACCCCCGAGCAGCGCCTGGTCCGGCTCGAGGTGCCCGAGAGCGCCGAGGTCGGTCTGCACCGCGAGTGGCTGACCGTCGAGCTGCGCGAGGACTGGCGGGCCGGCGGGCGCACCTACCCGGGCGGCTCCCTGCTCGGCGTGGTGCTCGACGACTTCCTCGCCGGCTCGCGCGACCTCACGGTGCTCTTCGAGCCCACGTCGTCGACCTCGCTGGTCGGCGCGACGTGGACGCGGCACCACCTCGTGGTCACGGTGCTCGAGGACGTCGCGCACGCTGCGCACGTCCTGACCCCGCCGGACCTGACCGGCGACGCCGACGCCCGCGCGCCCTGGGCCCGCGGCGACCTGCCCGTGGGCGGCGAGCTGCTGACGATCGGCGTCGGGGCGGTCTCCGCCGTCGACAGCGACGACGTGTGGGTGACCCGCAGCGGCTACCTGGAGCCGTCGACGCTCGGCGTCACGACCGTCGTCGGCCCCGGTGACCCGCCCCGCGAGCCCGAGGTGCTCAAGTCGGCCCCCGCGTTCTTCGACGCGGGCGACATGGTCGCCACCCAGCACTTCGCGACGTCCGACGACGGCACGCGCGTGCCGTACTTCGTCGTCGGCCGCGCCGACCTCGTGCGACCGGCGGACGACTCCGCACCGGGCGCCGCGCCCACCCTGCTGTACGGCTACGGAGGGTTCGAGATCCCGCTGCTGCCGGGGTACTCCGGCACGGTGGGCCGCGCGTGGCTCGCCCGCGGCGGGGTGTACGTCGTGGCCAACATCCGCGGCGGGGGCGAGTACGGACCGCGGTGGCACCAGGCCGCGCTGCGCGAGAAGCGGCACCGCGCCTACGAGGACTTCGCCGCCGTGGCACGCGACCTCGTCGCGCGGGGGATCACCACCCCGGAGCACCTCGGCGTCCAGGGCGGGTCCAACGGCGGCCTGCTCGCCGGCAACATGCTCACGCAGTACCCCGAGCTGTTCGGCGCCGTGGTGATCCAGGTCCCGCTGCTGGACATGCGGCGGTACTCGCGTCTGCTGGCCGGCGCCTCGTGGGTGGCCGAGTACGGCGACCCGGACGTGGCCGAGGACTGGGACTTCCTGCGGACGTTCTCCCCGTACCACCTGCACGACCCGGAGCGCCGGTACCCGCCGGTGCTGCTGACGACGTCGACCAAGGACGACCGCGTGCACCCGGGCCACGCGCGCAAGATGGCGGCGAAGATGCTCGCCGCCGGTCAGGACGTCACGTACTACGAGAACGTCGAGGGCGGCCACGGCGGCGCGGCGAACAACGCCCAGGCCGCGCACATGGCCGCCCTCGCCTGGACGTTCCTGCGCGGCCGGATCACCTGAMSADPLLPPSDADLPTHGADPFGWLEEVSGDEPLDWVRQRNEHAQETLGGDDLVATRAAIREVLDSDDRIPAVSRIGDHLYNFWRDADHERGLWRRTTPDSYRSADPAWETVLDLDALAADEDESWVWHGASVLRPTPEQLAAGEPWRRALVDLSPGGSDADVTREFDLVEKRFVPAAEGGFHRPLAKGGLAWADEDTVYAFTDLGEGTTTSSGYPRTVVLWRRGTPLASAPVVYEGSVDDMYIMGSRSRTPGFERDLVRRSIAFYRSEVFLVDDVGTPEQRLVRLEVPESAEVGLHREWLTVELREDWRAGGRTYPGGSLLGVVLDDFLAGSRDLTVLFEPTSSTSLVGATWTRHHLVVTVLEDVAHAAHVLTPPDLTGDADARAPWARGDLPVGGELLTIGVGAVSAVDSDDVWVTRSGYLEPSTLGVTTVVGPGDPPREPEVLKSAPAFFDAGDMVATQHFATSDDGTRVPYFVVGRADLVRPADDSAPGAAPTLLYGYGGFEIPLLPGYSGTVGRAWLARGGVYVVANIRGGGEYGPRWHQAALREKRHRAYEDFAAVARDLVARGITTPEHLGVQGGSNGGLLAGNMLTQYPELFGAVVIQVPLLDMRRYSRLLAGASWVAEYGDPDVAEDWDFLRTFSPYHLHDPERRYPPVLLTTSTKDDRVHPGHARKMAAKMLAAGQDVTYYENVEGGHGGAANNAQAAHMAALAWTFLRGRITPGPT0020970_858DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020970-PREP-K01322NANA
AK018_037031329hypothetical proteinATGGTGCTCTGCGTCGCCGCCCTGCCCGTGCTCGGACAGCGCGGACCCACCTGGTCCGTCTGGGTCGTCGCCGCCGCGGCGCTGGTGCTGCCGGTCGTGGCCGCCGCCCTGCTCTCCCGCACCGCGCGTCGCGAGGAGGAGGCGTTCCGTGCCCTGGTGATCGAGCGCGACGGTCTCGCGGCCGGGCTCGCCGAGGCGTCCCGCGCCCTGGAGGACGCGCACGCCGACCGTCAGCGCACGCAGGACGAACGGGCCGACGAGCGCGCCGCCGTCGAGACGGCCGTCGTCGCGCTGAGCCGCAAGGTGCAGGCGTCCGCGCACCGCGTCCAGGAAGAGGCGACGCGCATGGCCCAGCGCCACGCCGCCGACCACGACGTGCTCGAGACCTCGATGCGCATCGACCACGCGGCCGCCCAGCACGCGCGGCAGGCGCAGAGCCTCGTCGCCCTGTGCGGCCGCCGGCCCGGCCAGACCTGGGACGCCCCGCTCGCGCTGCCCGACGTGGTGCGGGCCGCCGCCGGCCGCATCACCGCCTTCGGACGCGTCGAGATCTCCGGCGACCCCGGACTGGCCGTCACCGGCCGGGCCGTCGAGCCCCTCGTGCACGTCGTGGCCGAGCTGCTCGCGAACGCCACCCAGTGCTCCCCGCCGAACACCCAGGTGCTCGTCGTCATCCGGCAGGTCCAGCGCGGGGCCGTCGTCGAGATCGACGACTGCGGGGTGGGGATGGACCCGCGCGAGCTCGCCCGCGTGCGACGCATCGCCGCCGGTGAGGACCCGGTGACGATCTCCGACCTCGGGGAGGTGCCGCAGACGGGCCTCGCCGTGGTGGGGACCTACGCCCGGTTCCTCGGTCTGCACGTCGAGCTCACGGACTCCGTCTACGGCGGGCTGCGGGCGGTCGTCCGCATCCCCGGGGAGATCACCGAGACCGTCGCCGACGTGCCCGACACGCTGGCGGCCGGCGTGGAGGAGGCGTCGCCGGTGCCCGCGCCGGCCGGTGCCGAGCCGCGGGAGCCGCTGACCGCGCCCGTGCCGGCGCCCGCCGTCGAACCGGCGTCCGGCCCGCCCGCGCTCCCGCAGCGCCGGTCGCGACGGGCCGCGATGGACCGCACCCCCACGGCCGGCCACGGCACGCCCCGCGTGCCGGAGCCCTCCGCCGGGCTGTCGGAACCCCGGCGACCGGAGCAGACGGCCGAGGAGGCGGGGGCGTGGATCGGCGCGTTCTTCGCCGCCACCGACCCCGCACCGCCGCACGACCCGGACACCCATGACCCGTCCGTCGGGACGGGACCTCGGAGGACAGATGACGACGCAGACCAGCGGTGAMVLCVAALPVLGQRGPTWSVWVVAAAALVLPVVAAALLSRTARREEEAFRALVIERDGLAAGLAEASRALEDAHADRQRTQDERADERAAVETAVVALSRKVQASAHRVQEEATRMAQRHAADHDVLETSMRIDHAAAQHARQAQSLVALCGRRPGQTWDAPLALPDVVRAAAGRITAFGRVEISGDPGLAVTGRAVEPLVHVVAELLANATQCSPPNTQVLVVIRQVQRGAVVEIDDCGVGMDPRELARVRRIAAGEDPVTISDLGEVPQTGLAVVGTYARFLGLHVELTDSVYGGLRAVVRIPGEITETVADVPDTLAAGVEEASPVPAPAGAEPREPLTAPVPAPAVEPASGPPALPQRRSRRAAMDRTPTAGHGTPRVPEPSAGLSEPRRPEQTAEEAGAWIGAFFAATDPAPPHDPDTHDPSVGTGPRRTDDDADQRNANANANANA
AK018_03704423COG2018Serine protease inhibitorATGACGACGCAGACCAGCGGTGACGCGCCGCTCGCCACGGACCACCCGGACAGCTGGATGCTCGACCTGGTCGCCGGCGTCCGCGGCGTCCGCCACGCCGTCGTGCTCAGCTCGGACGGCCTGGTCAAGGTCCGCACCGACGTCACCGACCCGGACACCGCCGACAAGGTCGCCGCGGCCTGCGCCGGGCTGGTCGCGCTCGGTATGTCGATGGGCCGTGAGTTCGGGGAGGGCGACCGGCTGCGCCAGGTGGTCGTCGAGTTCGAGGGCGGGTTCCTCTTCGTGCGCGGCGCCGGCGACGGGTCGCGGCTCGCCGTGGTGACCGACGCCGGGATCGACCCCGGTCTGGTCGCCCAGCAGATGCAGGCCCAGGTGCTCATGATCGGCGAGCGGGCGCTCGGCACGGATCCGGTCGAGGACTGAMTTQTSGDAPLATDHPDSWMLDLVAGVRGVRHAVVLSSDGLVKVRTDVTDPDTADKVAAACAGLVALGMSMGREFGEGDRLRQVVVEFEGGFLFVRGAGDGSRLAVVTDAGIDPGLVAQQMQAQVLMIGERALGTDPVEDNANANANANA
AK018_03705354hypothetical proteinATGACCGCCGAGGGGTACCACGACCACCCGGTGCGCTCGTACGTCCTGACCGGCGGGCGGTCGCACCCCACCCGCAACACGCTGCGTCCCGAGACGCTGCTGTGCACCGTCGACGACGGCCGTGAGCTGCCCGGTCACGCCGGTCGTCATCAGCACGCGCTGCTGCGCACGTGCCGCGGGACGCTGGCACTGGCCGAGGTCGCGGCCTACCTGCGCCTGCCCGTCAGCCTGGTCGCCGTGCTCGCCTCCGACCTGCTGGACGACGGCTTCCTGGCCCTGCGGTCCACCCCGACGCACGGCCTGCCGGACACCACGCTGCTGGAGGAGGTGCTCGATGGACTCCGCCGTCTCTGAMTAEGYHDHPVRSYVLTGGRSHPTRNTLRPETLLCTVDDGRELPGHAGRHQHALLRTCRGTLALAEVAAYLRLPVSLVAVLASDLLDDGFLALRSTPTHGLPDTTLLEEVLDGLRRLNANANANANA
AK018_03706630hypothetical proteinATGGACTCCGCCGTCTCTGAGCCCCCGGGCCGGGGCGCACACCGCGCGCGGCACCTGGCCGCGGCCGTCGACCGGTCGGTCAAGGTGCTGGTGGTGGGCCCCTTCGGCGTGGGCAAGACGACGCTGATCGAGGCGGTCAGCGAGATCCCGATGCTCCGCACGGAGGAGACCATCACCACGGCGAGCGTGGGGGTCGACCCGCGCGTGGGCGACAAGCGCACGACCACCGTCGCGATGGACTTCGGCCGGCTCACGGTGGGCGGGGACACCGCGCTCTACCTGTTCGGCACCCCCGGCCAGCGCCGGTTCTGGGACCTCTGGTCGGGCCTGGCCGACGGCGCGGTGGGCGCTCTCGTGCTCGTCGACACCCGGCACCTCGCGGACAGCTTCGAGGTCCTGGACCAGCTCGAGGAGCACACGCGGCTGCCGCTGACCGTCGTGGTCAACGAGTTCCCGGACGCGCCGCGGCACAGCGTCGACGAGGTGCGCACCGCCCTGGACCTGCCTGCCGACACCCCCGTCGTCGCCGGGGACGTCCGGGGGCGCCCGCAGGCCGTCGAGGCCCTGACCACCCTCGTGGCCCACGCGCTGCGGCAGCGGGAGCGGGCCGACGAGGAAGCCGCCGCATGAMDSAVSEPPGRGAHRARHLAAAVDRSVKVLVVGPFGVGKTTLIEAVSEIPMLRTEETITTASVGVDPRVGDKRTTTVAMDFGRLTVGGDTALYLFGTPGQRRFWDLWSGLADGAVGALVLVDTRHLADSFEVLDQLEEHTRLPLTVVVNEFPDAPRHSVDEVRTALDLPADTPVVAGDVRGRPQAVEALTTLVAHALRQRERADEEAAANANANANANA
AK018_037071230COG2124Cytochrome P450 107B1ATGAGCATCACCGCCGCCGGACGTGTCGTGCGGCTGGAGGACGTCGCCGACCGGCCGCTCCTGGCCGACCTCGCCCAGGCCTCCGACCCGCACGCCCGCTACGACGCGCTGCGCTCGCGCTGGGGCGCCGTCGCGCCGGTCGACCTGGAACCCGGCGTCCCTGCCTGGCTGGCGCTCGGGTACGACGAGGTCAGCGCCGTCCTGCGCGACGAGGTGCACTTCACGCGCGAGTTCGGCCGGTGGCGGTACGAGGCGGAGCGGCTGATCGCCTGGCGCTCCCCGGTCCGCGCCGTGCTCGCCGCGCGCGACGCGCTGCTCGACCGCGACGGCGCCGAGCACCGCCGCCTGCGCGGACCGGTGCAGGACGCGCTGGCGACGTTGGACGACAAGCGCCTGACGCGCACCGTCACGGTGGCGTGCACCTCGGCCCTCGACCGGGCGGCAGCGCGCGGCACGGCGGACCTCGTCGCCGACTACGCCGTCGACGTCCCCGTCCGGGTCCTCGCGGACCTGCTGGGGATGAACCTCGCCGACGCGCGCCGGATGCACGAGCTCACCGTCACGCTGGGGGCGGGGGGTGACGGCGCCGCGGACGCGGCCGACGAGACCGAGAACCTGCTGGCGACTTTCGTCGCGGCCCGGCGGGCCGAACCCGGCGACGACCTCGCCTCGCACCTCGTCGCCGATCCACGGCACCAGCACGACCTGGAGGTCATGGGTGCCGTCGGAGCGCTCTTCCGCACCGCGCACGACGCCACGATCGCGGCCTCGGCGACGGCGATCCACCGGATCGTGACCGACCCCGGGTTCGGCTCCCGCCTGCACGGTGGACGGCTGTCCCTGGAGGACGGCCTGGACGAGATCGCCCGCCGCGATCCGCCGATGCCGCACCTGCTGCCGCGGTACGCCGTGACGGACACGGTGCTGGGGAACCAGCCGATCGCGGCCGGCGACGCCGTGGTCCCGGCGGTGGCCGCCGCCAACGCGGACGACGCCGTGCAGGCCGTCGACCCGTGGGAGCAGGTCGACTCCCGGTTCCACCTGACGTGGGGGCTCGGCGCGCACGCCTGCCCCGCGCACCGCACGGCGCCGCTGATGACGCGGCTGATCGTCGGCCACGTGGTGGCACGGGTCGGCAGCATCGAGACGGCCGCGGCACCGGACGGGGTGCCGCTGGTGCGGTCCGCGTGGTTCCGCTACCCGCGCGAGCTCCCGGTCCGGTTCCGCTGAMSITAAGRVVRLEDVADRPLLADLAQASDPHARYDALRSRWGAVAPVDLEPGVPAWLALGYDEVSAVLRDEVHFTREFGRWRYEAERLIAWRSPVRAVLAARDALLDRDGAEHRRLRGPVQDALATLDDKRLTRTVTVACTSALDRAAARGTADLVADYAVDVPVRVLADLLGMNLADARRMHELTVTLGAGGDGAADAADETENLLATFVAARRAEPGDDLASHLVADPRHQHDLEVMGAVGALFRTAHDATIAASATAIHRIVTDPGFGSRLHGGRLSLEDGLDEIARRDPPMPHLLPRYAVTDTVLGNQPIAAGDAVVPAVAAANADDAVQAVDPWEQVDSRFHLTWGLGAHACPAHRTAPLMTRLIVGHVVARVGSIETAAAPDGVPLVRSAWFRYPRELPVRFRNANANANANA
AK018_037081497hypothetical proteinATGAAGATCGCCGTCGTCGGGGCCGGGTTCGCAGGACTGGCCAGCGCGAAGACCCTCCGCGAGTTCGGCCACGAGGTCGCCGTGTTCGAGAAGGCGCCCGACGTCGGCGGCGTCTGGAGCTCCACGCGGCGGTACCAGGGTCTGTACACCCAGAACAACAAGGACTCGTACTCGTTCACCGACCTGCCGATGCCGAAGCACTTCCCCGAGTGGCCCAGCGGGGAGCAGGTGCAGGCCTACCTCGAGCAGTACGTCGAGGTGAACGCGCTGACGGACTCGCTGCGACTGTCCACCGAGGTGGTGCGCGCCGAGCTCACCGAGACCGAGGACGGCTGGTTGGTCACCGCACGCCGCTCCGGGGAGGCGGTGCAGGACCCCGAGCGGTTCGACCACCTCGTCGTGGCGAACGGCATCTTCTCCGACCCCGTGATCCCCCCGTTCGAGGGCATGGCCACGCTGCTGCGCGCCGGCGGGAAGGTCGTGGCCTCCGGCCAGCTCGGGTCGGTCGAGGACGCCCGGGGCAAGCACGTCGTCGTGGTCGGCTACGGCAAGTCCGCCTGCGACGTCGCGGCCGAGATCGCGCCGGTCGCCGCCTCGACGTCCGTCGTGGCGCGCCAGCTGCTGTGGAAGCTGCCCAAGAAGCTCGGCAAGGCGCTGAACTACAAGTACCTGCTGCTGACGCGCCTCGGCGAGGCCCTGTTCCGGTACCAGACGCTCGACAGCTCGGCGGAGCGCTTCCTGCACGGCCCCGGCGACCCGGTCCGCCGCTCGATGGTCTCCAGCGTCGGCGCCGTCTCGCGCAAGCAGCTCCGGCTCGACGACCTCGGCCTCGTCCCGCGCGGCGAGTTCTCCGACATCGCCCGGTCGACGGTGTCGCTGGCCACCGACGGCTTCTACGAGCAGGTGGCCGACGGCGCCATCACCGTGCACCGCGACACCGAGATCGAGCGGTTCGCGACCGACGACGACGGCGCCCCGGTCGCCGTGCTCGCCGACGGGGACACCGTGCGGGCCGACCTGGTCGTGTGCGGCACGGGGTTCCACCAGCGCGTGCCGTTCCTCGACGCCGACCTGACGGCGCGGCTGCTCGACGATCGCGGCAACTTCCAGCTCTACCGTCAGGTGCTGCCGCACGACGTGCCGCACCTGACGTTCGCCGGGTACAACTCGTCGCTGTTCAGCCCGCTGTCGGCCGAGATGGCCGCCGTCTGGACCGCCGCCTACCTGGCAGGAGCGCTGGACCTGCCGCCGGACGAGGTCCGGCGCGAGCACGTCGCCGACCGCGTGGACTGGATGGAGAAGCGCACCGAGGGCCGGCACGCCCGCGGCACCAACGTCATCCCGTTCTCGCTGCACCAGATCGACGAGATGATGCGCGACCTCGACGTCGCGCTGCCCCGCCGTACGCAGGTGGCCCAGTGGCTGCTGCCCGTGGACCCGGCCGCCTACCGCCGGGTGTCCACCACGGTGCGCGACCGGGTCGCGGCGACGGTCTGAMKIAVVGAGFAGLASAKTLREFGHEVAVFEKAPDVGGVWSSTRRYQGLYTQNNKDSYSFTDLPMPKHFPEWPSGEQVQAYLEQYVEVNALTDSLRLSTEVVRAELTETEDGWLVTARRSGEAVQDPERFDHLVVANGIFSDPVIPPFEGMATLLRAGGKVVASGQLGSVEDARGKHVVVVGYGKSACDVAAEIAPVAASTSVVARQLLWKLPKKLGKALNYKYLLLTRLGEALFRYQTLDSSAERFLHGPGDPVRRSMVSSVGAVSRKQLRLDDLGLVPRGEFSDIARSTVSLATDGFYEQVADGAITVHRDTEIERFATDDDGAPVAVLADGDTVRADLVVCGTGFHQRVPFLDADLTARLLDDRGNFQLYRQVLPHDVPHLTFAGYNSSLFSPLSAEMAAVWTAAYLAGALDLPPDEVRREHVADRVDWMEKRTEGRHARGTNVIPFSLHQIDEMMRDLDVALPRRTQVAQWLLPVDPAAYRRVSTTVRDRVAATVNANANANANA
AK018_03709786hypothetical proteinATGGAGGACATGTCCACGACGCTCGCCGACCTGGAGATCGACGTCGACCTGCGCGTCACGCCGTGGCACTACCCGGGCCCCGCCGCCCCCACGTCGGGGCTGCTGCACGGCGGCGCGTTCGGCACGCTGCGGCACGACGGCGGCAGGTGGGAGTCCGACGACGGCACCACCCTGGACGAGCTGCTGCACCGCGCCCGGGTCGCCGGGACGCAGGACCGCCACGCCGTGGTCGCCATCGGCTCGAACGCCGCGCCGGGCGTCATGCACCGCAAGTTCACCCGGCTGGGGGTGAGCACCACGGTGCCCATGGTGCACGGCACCCTCACCGACGTGTCGGTCGGCCACATCCCCCGCGTCAACCCCGCCGGGTACGTCGCCGCGGTCCCCCGGTCCGCGCCCGACGTCCGCAGCGCCGTCGTCGTCTCGCTGCTCACGCCCGACCAGGTCGCCGCGCTCGACGTCACCGAGCACAGCTACGTGCGTCGCACCGGCACCGACGGCCTGCACCTGGCGGGGCACGACGGCGAGTGGTCGCTCTACGTCTCGGCGATCGGCGCGATCTCCGGCGACGACGGGTCGGCCGTGCCGCTGGGCACCCAGTCGGAGCTGTGGGAGCAGCTCCACCTCGACCCCGCGCTGGCGGCGCTGACCGGGCGCGGGGACCACCGCGAGGTCGCCCGCCGCCTGGCCGGCGACGAGCGGCTGCGCGAGCGCGTCCGGGCGCGCCTCCTCGAGCGCGACCGGGTCGTCGACACCGGGCTGGAGTGGCTCGACCCAGCCGCCTGAMEDMSTTLADLEIDVDLRVTPWHYPGPAAPTSGLLHGGAFGTLRHDGGRWESDDGTTLDELLHRARVAGTQDRHAVVAIGSNAAPGVMHRKFTRLGVSTTVPMVHGTLTDVSVGHIPRVNPAGYVAAVPRSAPDVRSAVVVSLLTPDQVAALDVTEHSYVRRTGTDGLHLAGHDGEWSLYVSAIGAISGDDGSAVPLGTQSELWEQLHLDPALAALTGRGDHREVARRLAGDERLRERVRARLLERDRVVDTGLEWLDPAANANANANANA
AK018_037109636hypothetical proteinATGCTCGCAGGCACCGCCCGGCAGGAGACGCGCACGGTCGCGCGTCGGTGGACGACGGCGACGGCGATGATGGCCTCGGCCGCGCTCGTGGTGACGCTCAGCGCCGCGCCCGGTACCGCCGAACCGCTCGCGGACCCCTCCGTCGGTGCGCTCGACGACGTCCCCGGCACCTCGCCGGACGACCTCGGCGGCGTCGACCTGACCGACCTCGACGACGGCGACCCCACCGAGGCGCTCTCGCTGGTCACCGAGCCCGAGCCCACCAACGCCGGCTCGCTGCAGACGTCGATCCCCGTGCTCGTGCCGCCGGGCCGGGCCGGCATCGAGCCCGACCTCGCACTCGGCTACGACTCCTCGGGCGGCAACGGGTGGCTGGGTCTGGGCTGGGACCTCGACGCCGGGGCGATCGCGGTGGACCCCACCTTCGGTGCGCCGCGCTTCTCGGCCGACGTCGAGACCGAGACGTACACGCTCGACGGTGCGCGACTGTTCCCGCACTCGATCGTGCCCGGCGGCGACCACGGCGCGCGCCAGGACGGCCCCCGCAGCGACTTCGTGCGGCAGACCGAGACCGAGTTCGAGCGCGTCGTCCGGCACGGCGACGGCCCCGGCGCCTACTGGTGGCAGGTGACCGACAAGGACGGTACCGACCGCTGGTACGGCGGCGATCCGGACGGCCAGGGCCAGGTGCTCTCCACGGCCGACGGGAACGCGTTCCACTGGCCGCTGACCTACGTCGAGGACATCTCCGGCAACGTCATGAAGTACGAGTACGACACGGCGACGGGTGTCGGGTTCGGCGGTTCGTCGACCGGCCCGGGCCTCGAGATGTACCTGCGCGAGATCACCTACACCGGGTTCGACGTCGAGCCCGGCTCGACCGACGTCGTCGACGAGCCGCCCTACAGCGTGTACTTCCTGCGCGACAGCGACGTGGGCGTCAGGACGGTCGCCTCCGGCGGCTCGGTGGACGGCCGGCCCGACGCCCTGGTCGACGCGTCCGGCGGCGCACCGGTGGTCACCGCCGACCTGCTGCGCGAGATCCAGGTGCGGCACTTCCCCACCGGCGCCCGCACGGACGACGCGCCCGGCGCGATCGACGAGACCAACCTCGGCGAGCTGCTCGGCGGGTACGTGCTCGAGTACGAGACCAACCCGTTCGACAAGTCGCTGCTGAAGCGCCTCGGCCAGTTCGGCGGCGACGGCGCGGTCGCGGCCACCCACGTCCTGCGCTGGTACGACGACGTCCCCCGCAAGAGCAACGGTGACCTGGACCTCTTCGGCGACCCCGTGCGCTGGGGTGGGACCGATGACAGCACGGGCTCGAACATCTCCGCCTCGAGCGCGCTGGCGACGTCCTTCCGCGGCGGGGCCGAGGGCGGGGCCTACATCGGCTTCAACCCGGTGGCGCCCAGCAAGATCGGGTCGTTCGGAGGGTCGTTCAACCTCTCCGGCGGCAACAGCGAGGACGTGACGACCCTCATGGACATGGACGGCGACAGCCTGCCGGACCGGGTCTGGGTCGACAACGGGGCCGTGAAGTACGCCCGCAACCTCTCCCAGCCCGGTGACGACCTGTCGGTCGACGACACCCGGTTCGGGTCGGAGCGGACGATCGACGAGGCCCAGCTCGGCACGGGGACCGACTTCGGCGTCGACCTGCACGCCGAGTTCTACCCGGTGGCCTCCATCCAGGTCGGTGGTTCCTTCGGGTTCGACTGGGCCGACCGCTACTTCTCGGACGTCAACGCGGACGGGCGGCCCGACCTCATCAAGCAGGGGTCCGACGGGTGGCAGGTGTTCTTCAACATCCTCGACCCCTCGGACGGGTCGATCGAGTTCGTCGCCTCCTCCGCGGGCACCGCGGTGCCGATGGGCGACTTCTCCTCCGAGCTCGCCGCCGCCGAACCGGAAGGGGTCGCCGCGCTGCTCGAGGCCTCGGCGCCCCGCTACGACAGCGTGCGCCGGTGGGTCGCGCCGTTCGACGGCACGGTCGACGTCACCGGCACCGCGACCCTCGCCGCCGGCAGCTACGACGGTGACGGCGTCCGCGTCATGATCGAGACGCTGGGCACCACCCCGAAGCGGCCGTTCGACGAGACGCTCGACGGCGGGAGCACGAGCGCCGCCCACGACGTCTCGGTGGCCGTCGACGCCGGCGACGAGATCTTCTTCCGCACCCACGTGATCGACGTCGGCCAGCGCGACCTCGTCGACTGGGCGCCGGCGATCGTGTACACCTCCGTCTCCTCGGGCGCGTCCACCAGCGCCCCCCTGCTGGACGCCCAGGGCCGCGACGTCTTCTCCTACGACGCCGCCGAGGACTTCACCCTGTTCGGACGCGACGGCGGCCGGACGGCGCTGTCGAACCCGGGCGAGGCGACGCTGACCGTCACCCTGGAGCGCACCGGGCTGCTCACCGACGACGTGAAGGTCGTCGCGAGCCACGGGGTCAACGCCGGGTTCGTCGAGGGCACGTCCGACGTCGTCACGCTCACCCCCGACGGCGTGGACACCGAGGAGCTGCTGGGGGCCGGACCGGCACCCGGGGACGAGCCCGTGGCGGCCGAGGGCGAGGACCCGATCGAGATCGCCCCCACCTCGGTCGAGCTCACCTACACCTTCGACGTCTCCGAGGTCGGCACGGTCGCCGAACCGTTCGGCTGCTACGACGACGGCGACGCCGAGGACTGCGACTCCGTCACGGACAACCCCGACTGGCTCGCGCTCGACATCGTCTCCGACTCGCCCGTCGACCCGCGCTCGGTGGCCCTCGACGTCCAGCTCGAGCTGGCCGACCCGGCCACGGAGTCGGGTCCGAACGGCGAGGCCACGCCGGACGACCTGCCCGCCGACGCGGTGCTGCCGTCCTCGACGGGCCCCGTGGTCATCCCCTCGGTCCGTGTCTTCTCCGTCTCCGACGAGGTCGCCGGACCGTACGTGCCGTGGTCGCCGGACGCCGACGGGACCTTCTCCCTCGAGGTCGACGTCGTCGCCGACAAGATTTGGAACTACCTCGAGGTGGAGCCCGACGACGAGGCCTGGGCGTCCTCGTCGGCCGTGGTGACCGTGAAGAGCGAGGACGAGCACGGCATCGTGGGCGTGGTCGCCAGGTCCGCGGAGCTCACCGTCGAGCACAACCACGACGACGGACCCTTCACACCGCCGGCCGAGTACCAGGTCGAGGGCTCCACCACCCTGGACTTCGACGCCGTGACCGGCCAGGACTACTGGGTCGAGGTGTCCCTGCACGACGCCCCGCTGGCGGCACACGTGCTCGAGAAGGGCGGCGTGAGCGTCCAGGCGACGTCGGACGACGACGAGGACGACAAGGGCGCCGACGACCTGACGGCCCGCCTCGTGGCCCCGGACGTCCAGTCCGTCTTCGCCTCCGGCAACCGCGGGTGGACCGCGGCCGGCTACGACGCCGACCACCCCGACGTCCCCCGCGACGAGGCCGACGAGCCCCGGGGCGACGCCCTGCTCCAGCGCGAGCACTTCGAGCTCGAGCCGGAGGGGATCGACGACTTCGACGAGGACACCGAGATCCCCGACGCGAAGCCCGCGACGGACGTCGTCGGGGAGCCCGGCGACCTGTCCGGGTCCGCGGACGAGGTGGCGGACTCGTTCGACAAGGCGCTGCCGTACTTCCCGCTGCCCGGTCCGGACGGCGGACCGGCCGACCGCTGGCGCGCGGCGAGCGAGGAAGGGCTGTTCGTCACCGCCACCGGCATCCGGTCGACCCGGATCGGCGAGGAGATCGCCGTCCTCGGCCCGGAGCCCGAGGAGGGGTCGACGAGCGCCGGCAGCAGCGGCGACGCCCGCCCGGCGCCACGCGTGCTGACCATCGACGGCGACTTCAACGCCGCACTCGGTCTCGGACCGGCCAGCCTGAGCGGCGCCATCGGCGGAGGCCGGACGGTCACCGACTTCCAGGACCTCAACGGCGACGGGTTCCCGGACATCCGCTCCGAGTCCGACGCCGACTACACCGGACCCCGCGGAGGCAGCCTCGACAGCGGCTCCGAGCTCGAGAACACCGTCTCGACCGCGGTGTCGGTCGGGGGCGGCCTGGGCGGCTCGCCGGTCTCGATCGAGGGCAGCGAGCAGACCAGGACGTCCGCGGGCAGCGCCACCGTCGGCGCGGAGAACGGGACCTCCAAGAACAAGTCCCGCGGCATGAGCATCGGCCTGGGCTTCACCGTCCAGGGGCAGTGGACCAACCCGTTCGGGGACAACACCGAGGGTCTCGACGGCGGGGTGTCCGACCTGCTGCCCGACGACGAGAGCACCGGGCAGGGCGTCCAGGTCAGCGTCGACCTCGACGACGTCAACGGCGACGGCGTGACCGACCTCGTGGAGACCTGGTCCGGGTCCGGCGTGCAGGTGGCGCTGGGTACCGGGTACGGGTACGCCGACCCCGTGAAGTGGTCCGACGGCGTGTTCGAGGCCTCCGAGAGCGTCTCCGGCGCGCTCTCCGGCGGGTTCCAGCTCAACGCCTACGAGTTCGGCGGCGGTGTCGGCGGGTCCGAGGGCGGTTCCCTCGCCGAGGCGTCCTGGGCGGACGTCGACGGCGACGGCGTCCTGGACCGCATGGTGTACGCCGACGGCGACGAGAGTGCGCCGACGACGATCTTCGGCGCGGCCGAGGGCAACGACCGCGACCCCGAGGTGCTGGGGACCTACGCGTCGCCCGACTTCGGCGTGGGGGACCTGACGATCGACAACCGCGCCGACCTCGGTCGCAGCACGTCGGTGAACGGCGGGTTCGACTTCACGGTCTCCGTGGGCCCGATCTGCCTCGTGGCCTGCTACATCATCATCAACCCCGGCGTGCACGGCGGCTACGAGCGCTCGCGGACCGTGGTCGACATGGTCGACATGAACGGTGACGGCTACCTCGACGTCGTCGAGAGCCTGAACGAGGAGCACGTCGAGGTCCGCCTCAACCAGGCCGGGCGCACCGGCCTGCTCGAGGCGGTCGAGAACCCGCTCGGCGGCACGATCCGGGTCGACTACGAGCGCACGGGCAACACTCCCGAGCAGCCGAACTCGCTGTGGGTCATGAGCGAGGTGGAGTACGACGACGGGCGCCCCGGCGACGGGACCGACGTCCAGCGGCGCGAGTTCTCCTACGACGGCAACGCCTACGACCACCTGCACCGCACGATGCTCGGCTTCTCCGAGGTGGTCCAGCACGAGATCGACGTCGACGCCGACCCGGCCGTCCCGGGAGCGGAGCTCCTGCGCATCACCCGGTGGGACTACCGCAACCAGAGCCCGTTCGACGCGGGCCTGCTCGAACGCACCCGCCTGTTCGCCCCCGATTCGGCGGGCGGCGACGGCGATCTCCTGGAGCTGACGGAGACGACCTGGGAGCACGCGCACGTCGTCGTCGGCGGTCCCGGCTCCGGCCCCGCCAACGGTGACGTCTTCACCGACGGGGTGCCCGACGTCGGCGACCCGGCCCGCACGGCGCTGTTCGACCTGGCGCTCGCGCCCCGGCTGGCGACGGAGACGTTCACCCGCTACGACGGCGACGGGGACGCCCACGCCCGCACCACGGACTTCACCTACGACGGGCTGGGCAACATCGTCCAGGTCGTCGACCACGCCGAGACGGGCACCACCGACGACGACACGACCACGGTGACGACGTACCCGCCGTGCACCACGGCCGCCCGCGACGCGGACACGTCCTGGGTCCAGGTGCCCGCCACGGTGGCGGTGCACGCCGGCACCGACGACTCCGGCGAGCTGCTCAAGTACCGCGACGGCAGCCTCGACCTGTGCGCCAACGCCGTCCCGGTCCGGATCGTCGAGACCCAGGGCCAGGACGTCTGCGGTGACGACATCCTCGCGGTCACCGAGCTGGCGTTCGAGCCCTACGGCAACTACGACGCCGTGCGGTACCCCGCGAACGTGCTCACCGGCGAGACCGACTCCTCGGCCTGCGGCGGTGCGCCGCCGGCGCTGCCCGAGGAGCCCGTGTTCGACGGCTGCGTGCCGGCGTCCGACGCCCCGGACGCGGAGAAGGCGGCCGCCCAGCAGGCGGCCGACGAGCAGCGCTACTGCGTGGACTACGTCTACGACGACCACCGCGTGACCGACATCGCGCAGGTGACGGACTCCCACGGGGTGACGTCGACCGCGACGTACGACCACACGGTCGGCCTGCCGGCGACGACCACGGATGCGAACGGCCACACCACCGAGTACTGCTACGACGCGCTCGGTCGCATCGCCGCCGTGGCGACGCCGCGGGAGTCGGGCGACTTCGCCTGCGACGGCAGCGGGTCCGGACCGGCGACCGTCACCTACGCCTACGGAGGTCTGCGCATCGGCACGAACGCCTCCGCCGGGCACGCGTGGGCCGTGGCCCGGCACCACGACGCCGTGCGCGCCGACGGGACGCCCGCGGCCGACACCCTGGACACCGCCACGTTCGTCGACGGCATGGCCCGGGTGGTCCAGCGCAAGCGGGACGCCCAGGTCGTCGCGCTCGGCGACACGCCCGCCGTCGTCGTCGAGGGCGCGGTCGACTTCGACGCCCTGGGCAAGGAGGTGCGGGAGTGGTACCCGGTCGTCGAGGAGGCCATCTACCCCGGCGGAGGAGACCTGCCTCCGCACCTGACGACCTACAACACGTTGAACTCCTCGATGGACCCGGCCGACACGCACGTGCCGCGGACGGATCCGACGATCCGTGAGTACGGGTTGCTCGGCGGCCCCACGCGCACCGAGCTGCCCGACGGCAGCGTGGTGACGTGGACCTACGACACGACCGAGCCGCCGCACCTGGACTTCAAGGTGCCCAGCACGACCGTGACCGACCCGCTCGGCCGAGCCGTGCAGCGCTTCTCGGACGTGCGCGGCGCGGTGCTGGCCGTGGTCGAGAACCCGGCACCCACCGAGGGCACGACCGACGGGCTGCTGGACGCCCTGCCGGCCGCGGGGATCGGGGACTCCCGGATCGTGGAGTCCGCCCGCACCGGGACGGACCCGCTGATCACCACCTATGCGTACGACCCGATCGCCCGGCTGACCCAGGTCACCGACACGGCGGGAGCGGTGACCGGCTACGAGTACGACATGCTCGACCTCGGCACGGCGGTCGAGACGCCCGACTCGGGTCTGCTGGAACGTGCGTGGACCCCGGCCGGCGACGTCGCGGCGACCGTCGACGAGGTGCGGCGTGCCGCGGGCACGTCCGTGGCGTACGCCTACGACTTCGACCGGCTGCGCAGCATCACCTACCCGGACGACACCGGCGACGTGGAGTACACCTACGGTGACGAACTGGGCGCCGCGGCACCGGGCAACAGCCAGGGCCGGGTCGCGCGCGAGGCCACCCCCGCGGTCGCCCGCGAGTACGCCTACGACGTCGACGGCAACGTGTCCACCGAGGCGGTGACCCGCGGCATCGACCCGTTCGGGATCGGGCAGGACGAGCCGCAGCCCACCTGGGCCACGCGGTGGCAGTACGACTCGCTGCAGCGTCTCGTCCGGCTCACCTACCCGGGCGACGACGGCGGGCACGGGGAGGTGCTGCACCACGAGTACGACCTCGGCGGCCAGGTCTCCGGGCTGTGGTCCGAGGCCCCGCAGCACGACGCCTACACGGTCGAGGGCGACCCCGTGCCCCGCGAGGACCGCGAGATCGAGTACGTGGCGCACGCCGGGTACGACGAGTTCGGCGACCTCCGCACCGTGACCACCGGTACCGGCGTCACCACCGAGCACGACTACGACCCGGACCGCCGGTTCCTCACCGGGGTCGCCACCGACGTCGCGGCGCAGGAGCAGTGGGACGGCACGACCTCGGTCGCCCGCGAGCTGCAGGAGCTGCGCTACTCCTACGACGTCGTCGGCAACGTGATCGACGTCGCCAACGCGCTCTACGACGGCGGCTCGGCCGGCACGCTGGACGAGCTCGACGACATCCCGGCGAACAACCTGCCCGGTCCGGCGCAGCAGGCCTACACCTACGACCAGCACTACCGGCTGGCCGCGGCGGAGGGCCGCTACGTCGACCGGAAGGAGGACCGCAGCTACACCTACGCGGCCGACCGGACGCCCGACGGCAACCTCGTCGACGTCTCGCAGGCGACCGTCACCGAGTCGACCACCGGCAAGGGCGGCGGCAAGGGACCGGGCCGGTCGCAGCAGAAGACGAACTCGAAGAAGGGCGACGGCTCCCTGCCCGAGGACGGGTCCACGGACGAGCCGCAGTGCGACCCGTACCGCGGGTCCGGCGGCGGCTCGGACAACCAGGACCCGGAGTCGACCTACGCGTGGCTCGACCAGCAGTTCGACCCGGACCACCCGCACCGGGTGGTGCAGGCGGGCGGCCGGACGTACACCCACGACGCCAACGGCAACGTGACCGGGTGGACCGAACCGTGCGCGAGCTCGGACTCCTCCGAGCTCGACCGTCGCATGGTGTGGGACGCCGAGGACCGCCTCGTCGAGATCGGCCAGGACGGCAACGACACCGAGTACCGCTACGACGCCGACGGCAACCGGGTCCTCGAACGGGGCCCCGGAGGCACCTACTTCTTCGTCAACGAGACCTGGCGGCTGCACAACGACGGTCACCGCTACGCGGAGATCTACCTGGGCGCCACGAAGATCGCCGGCCACCGCACGGCCCCGGCCCCGGAGCCGCCGGTGAGCTGCGACCCGCTGATGGACGAGAACTGCGTGTGCGACCCGGAGACGCAGGCCTGCGCCTGCGACGTCGGTCAGGCCGACCCGGACGGGGACGGGCTGTGCCCGCCGGTCGAGGACCTCACCGTGCAGTTCTTCCACACCGACCTGCAGGGCAGCCTGCGCGTGGTGACCGACGAGGTCGGCAGCGTCTTCCAGTACCTGGAGTACCTGCCGTCCGGGCAGAAGTGGGTGGCGGGACAGAGCCGCATCAAGGACACGCCGTACCTGTTCGCCGGCGGGTGGACCGACGCCACGTACAAGCTCACCAGCTTCGGCGAGCGGTGGTACTCGTGGCGGGACCAGCGGTTCCTGTCCACCGAGCCGCTGCTGACCGAGGACCCGGACGCGGTCGTCGCCGATCCCGGCCTGCTCTCGGCCTACACCTACGCGGCGGCCGACCCGCTGCGGTACGTCGACACGACCGGACGTGCCCCGTTGCCGGCCAGCAAGGACCCGAGCAAGAGCGACTACCAGCTGAACAAGCAGGGCACGTTCACGGTGAGCGACTCCACGCGGGCGAACCGGCCCTCGCCGGCCAAGTTCGGGCAGCTGCTGCTCAGCTACGACGAGGCGGGCCAGGCGCGCGCCGCGAAGTGGGGCAAGAAGAGCGAGAAGATCGACAAGTACACGACGTTGATCCGTCTGAAGGCGTCGGGGTCGCTGAAGAAGCCGTCGGTCAAGCTCGAGGGCATCCTCGGGTGGGACATCGGCACGTCCTCCGACTCGTCCGGTGCACCCTCCGGAGGCGGCCAGCAGGGAGGCGCGTCCACCGGACCGAACCCCGGCCCGGGCAGCTCCGGCAGCACCGGCGGCACGGGGGCACCGCCGGCGGGCAGCCAGCCCTCGGGCGGCAGCACGGCGCCGTCCACCTCGTCGTCGGGCTCGTCGTCCGGCGCCTCCTCGTTGCGGAAGCAGAAGCCGTGAMLAGTARQETRTVARRWTTATAMMASAALVVTLSAAPGTAEPLADPSVGALDDVPGTSPDDLGGVDLTDLDDGDPTEALSLVTEPEPTNAGSLQTSIPVLVPPGRAGIEPDLALGYDSSGGNGWLGLGWDLDAGAIAVDPTFGAPRFSADVETETYTLDGARLFPHSIVPGGDHGARQDGPRSDFVRQTETEFERVVRHGDGPGAYWWQVTDKDGTDRWYGGDPDGQGQVLSTADGNAFHWPLTYVEDISGNVMKYEYDTATGVGFGGSSTGPGLEMYLREITYTGFDVEPGSTDVVDEPPYSVYFLRDSDVGVRTVASGGSVDGRPDALVDASGGAPVVTADLLREIQVRHFPTGARTDDAPGAIDETNLGELLGGYVLEYETNPFDKSLLKRLGQFGGDGAVAATHVLRWYDDVPRKSNGDLDLFGDPVRWGGTDDSTGSNISASSALATSFRGGAEGGAYIGFNPVAPSKIGSFGGSFNLSGGNSEDVTTLMDMDGDSLPDRVWVDNGAVKYARNLSQPGDDLSVDDTRFGSERTIDEAQLGTGTDFGVDLHAEFYPVASIQVGGSFGFDWADRYFSDVNADGRPDLIKQGSDGWQVFFNILDPSDGSIEFVASSAGTAVPMGDFSSELAAAEPEGVAALLEASAPRYDSVRRWVAPFDGTVDVTGTATLAAGSYDGDGVRVMIETLGTTPKRPFDETLDGGSTSAAHDVSVAVDAGDEIFFRTHVIDVGQRDLVDWAPAIVYTSVSSGASTSAPLLDAQGRDVFSYDAAEDFTLFGRDGGRTALSNPGEATLTVTLERTGLLTDDVKVVASHGVNAGFVEGTSDVVTLTPDGVDTEELLGAGPAPGDEPVAAEGEDPIEIAPTSVELTYTFDVSEVGTVAEPFGCYDDGDAEDCDSVTDNPDWLALDIVSDSPVDPRSVALDVQLELADPATESGPNGEATPDDLPADAVLPSSTGPVVIPSVRVFSVSDEVAGPYVPWSPDADGTFSLEVDVVADKIWNYLEVEPDDEAWASSSAVVTVKSEDEHGIVGVVARSAELTVEHNHDDGPFTPPAEYQVEGSTTLDFDAVTGQDYWVEVSLHDAPLAAHVLEKGGVSVQATSDDDEDDKGADDLTARLVAPDVQSVFASGNRGWTAAGYDADHPDVPRDEADEPRGDALLQREHFELEPEGIDDFDEDTEIPDAKPATDVVGEPGDLSGSADEVADSFDKALPYFPLPGPDGGPADRWRAASEEGLFVTATGIRSTRIGEEIAVLGPEPEEGSTSAGSSGDARPAPRVLTIDGDFNAALGLGPASLSGAIGGGRTVTDFQDLNGDGFPDIRSESDADYTGPRGGSLDSGSELENTVSTAVSVGGGLGGSPVSIEGSEQTRTSAGSATVGAENGTSKNKSRGMSIGLGFTVQGQWTNPFGDNTEGLDGGVSDLLPDDESTGQGVQVSVDLDDVNGDGVTDLVETWSGSGVQVALGTGYGYADPVKWSDGVFEASESVSGALSGGFQLNAYEFGGGVGGSEGGSLAEASWADVDGDGVLDRMVYADGDESAPTTIFGAAEGNDRDPEVLGTYASPDFGVGDLTIDNRADLGRSTSVNGGFDFTVSVGPICLVACYIIINPGVHGGYERSRTVVDMVDMNGDGYLDVVESLNEEHVEVRLNQAGRTGLLEAVENPLGGTIRVDYERTGNTPEQPNSLWVMSEVEYDDGRPGDGTDVQRREFSYDGNAYDHLHRTMLGFSEVVQHEIDVDADPAVPGAELLRITRWDYRNQSPFDAGLLERTRLFAPDSAGGDGDLLELTETTWEHAHVVVGGPGSGPANGDVFTDGVPDVGDPARTALFDLALAPRLATETFTRYDGDGDAHARTTDFTYDGLGNIVQVVDHAETGTTDDDTTTVTTYPPCTTAARDADTSWVQVPATVAVHAGTDDSGELLKYRDGSLDLCANAVPVRIVETQGQDVCGDDILAVTELAFEPYGNYDAVRYPANVLTGETDSSACGGAPPALPEEPVFDGCVPASDAPDAEKAAAQQAADEQRYCVDYVYDDHRVTDIAQVTDSHGVTSTATYDHTVGLPATTTDANGHTTEYCYDALGRIAAVATPRESGDFACDGSGSGPATVTYAYGGLRIGTNASAGHAWAVARHHDAVRADGTPAADTLDTATFVDGMARVVQRKRDAQVVALGDTPAVVVEGAVDFDALGKEVREWYPVVEEAIYPGGGDLPPHLTTYNTLNSSMDPADTHVPRTDPTIREYGLLGGPTRTELPDGSVVTWTYDTTEPPHLDFKVPSTTVTDPLGRAVQRFSDVRGAVLAVVENPAPTEGTTDGLLDALPAAGIGDSRIVESARTGTDPLITTYAYDPIARLTQVTDTAGAVTGYEYDMLDLGTAVETPDSGLLERAWTPAGDVAATVDEVRRAAGTSVAYAYDFDRLRSITYPDDTGDVEYTYGDELGAAAPGNSQGRVAREATPAVAREYAYDVDGNVSTEAVTRGIDPFGIGQDEPQPTWATRWQYDSLQRLVRLTYPGDDGGHGEVLHHEYDLGGQVSGLWSEAPQHDAYTVEGDPVPREDREIEYVAHAGYDEFGDLRTVTTGTGVTTEHDYDPDRRFLTGVATDVAAQEQWDGTTSVARELQELRYSYDVVGNVIDVANALYDGGSAGTLDELDDIPANNLPGPAQQAYTYDQHYRLAAAEGRYVDRKEDRSYTYAADRTPDGNLVDVSQATVTESTTGKGGGKGPGRSQQKTNSKKGDGSLPEDGSTDEPQCDPYRGSGGGSDNQDPESTYAWLDQQFDPDHPHRVVQAGGRTYTHDANGNVTGWTEPCASSDSSELDRRMVWDAEDRLVEIGQDGNDTEYRYDADGNRVLERGPGGTYFFVNETWRLHNDGHRYAEIYLGATKIAGHRTAPAPEPPVSCDPLMDENCVCDPETQACACDVGQADPDGDGLCPPVEDLTVQFFHTDLQGSLRVVTDEVGSVFQYLEYLPSGQKWVAGQSRIKDTPYLFAGGWTDATYKLTSFGERWYSWRDQRFLSTEPLLTEDPDAVVADPGLLSAYTYAAADPLRYVDTTGRAPLPASKDPSKSDYQLNKQGTFTVSDSTRANRPSPAKFGQLLLSYDEAGQARAAKWGKKSEKIDKYTTLIRLKASGSLKKPSVKLEGILGWDIGTSSDSSGAPSGGGQQGGASTGPNPGPGSSGSTGGTGAPPAGSQPSGGSTAPSTSSSGSSSGASSLRKQKPNANANANANA
AK018_037112433ligA_1COG0272DNA ligase AGTGACCGACACCGACGCCACCGTCGACCCGTCCGCGCTCGACGAGGGTTCGGCCCAGCGCCGCTGGGCCGAGCTCGTCGCCCTCGTCGAGGAGGACCAGGCCGCCTACTACCAGCACGACGCCCCGAAGGTGTCCGACGCCGAGTACGACGCGCGGATGCACGAGCTCGAAGCGCTCGAGGCCGCCCATCCGGCGCTGCGCCGGCCGGACTCGCCGACCCAGCGCGTCGGCGGGCAGGCCTCGACCGCGTTCGCGAACGTCGACCATCTCGAGCCGATGCTCTCGCTCGACAACGTGTTCAGCACGGACGAGCTGCGCGCCTGGGACGCCCGCGTCGCCCGGGACCTCGACGTGCCCGGCGGTGCCGTCGGCTACCTGTCGGAGGTCAAGATCGACGGCCTGGCGATCGCGCTGCTGTACGAGCAGGGTCGCCTGGTCCGCGCCGCCACCCGCGGGGACGGCCGCACGGGTGAGGACATCACGGCCAACGCGCTGCGCATCGCACAGATCCCCCACCAGCTCGACGGTGACGAGCACCCGGACGTCGTCGAGATCCGCGGGGAGGTGTTCATCCCGACGGCGTCCTTCGCCCGGCTCAACGAGCTGCAGGTCGAGCTGCGGGACCGCGCGGTCGGCGAGGCGCGCGAGCGTGCGGCCACCCGTGAGTTCGACGAGGAGCGCGCCCGGGTGGCCGCGCTGCGCCGCTTCCCCCAGTTCGCCAACCCGCGCAACGCCGCCGCCGGCGGGCTGCGTCAGCTCCTGGACAAGAAGACCGGGCTCGAGCACGAGGCGGGGCTCGCCCGGATCGAGGCGCTGCGCCTGTACGCGCACGGCGTCGGCGCGCTCCAGTGGACGGAAGGGCAGCACGAGGAGCTGGCCAACCTCTCGGACGCCTACGACCTCTTCGCGCGGTGGGGCGTCCCGATCTCGCCGCACAACCGGGTCGTCGAGGGCGTCGACGCTGTGCTCGAGATGATCGACCACTTCGGCGAGCACCGCCACGACATCGAGCACGAGCTGGACGGCATCGTGGTGAAGGTCGACGCCCTGGCCGACCAGCGCCTCCTGGGCGCCACCAGCCGTGCGCCGCGCTGGGCGACGGCCTACAAGTACCCGCCCGAGGAGGTGAACACCCGCCTGCTGGCCATCCAGGTCGGCGTCGGACGGACCGGTCGGGCCACGCCGTACGCCGTCATGGAGCCCGTCCTGGTGGCCGGCTCCACGGTGCGGCAGGCCACCCTGCACAACCAGGACGTCGTCAAGGCCAAGGGCGTGCGGATCGGCGACATGGTGGTGCTGCGCAAGGCGGGTGACGTCATTCCCGAGATCCTCGGTCCGGTCACGGCGCTGGCCGACGACGGCTACCCCCGCGAGGACTTCGTCATGCCCGAGCGGTGCCCCGAGTGCGGCACGCCGCTGCGGCCGATGAAGTCCGGCGACGTCGACCTGCGGTGCCCGAACGCCGAGTCCTGCCCGGCGCAGGTGCGCGGGCGCGTCGAGCACATCGGTTCCCGTGGCGGGCTCGACGTCGACGCGCTCGGCGAGGTCACCGCGGCGGCGCTGACGCAGCCGCTGGAGCCGAGCGAACCGCCGCTGCGCACCGAGGCGCGGCTGTTCGACCTCACGCTCGACGAGCTCGCGCCGATCCGGGCCGTCGTACGGGACTCCGAGACCGGCCTGCCGAAGGAGTGGGACGGTCGAGGGGAGTCGGCCGAGTTCGAGATGCCGGACGGTTCCGTCCAGACGGTCAAGGCCGTGCGGCCGTTCCAGAAGAAGCGCACGCTGTCCAAGGCCGACGAACGAGCAGCCGTCGAGGCGGGGGAGTCGCTGTACGAGCCCAACGCCCAGGCCACCAAGCTCCTCGACGAGCTCGAGCGGGCGAGGACCAAGGACCTCTGGCGGATCCTGGTCTCCCTGAACATCCGGCACGTCGGGCCGGTGGCGGCCCGGGCGCTCGCGGACTGGTTCGGCTCCCTGGACGCCGTCCGGGAGGCCTCCCGGGAGGACCTCGCCGCCGTCGAGGGCGTCGGCCCGGTGATTGCGGACGAGGTCGTGGCCTGGTTCGACGTCGGCTGGCACCGCGAGATCGTCGACACCTGGGCCCGTGCCGGCGTCCGTTTCGCGACCCCGGGGCACCCCGGACCGGCGGCGATGGCCGAGCGGGCCACCGAGGAACCCACCGGCCCGCTCGCCGGGCTGACGGTCGTCGTCACGGGCTCGTTGGAGGGCTACTCGCGCGACGGCGCCAAGGAGGCCATCCTCCAGGCCGGCGGCAAGGCCGCGGGGTCGGTCTCGAAGAAGACCGATTACGTCGTGGCGGGGGAGAAGGCCGGCTCCAAGGCGGCCAAGGCCGAGCAGCTCGGCGTGCCGGTCCTCGACGAGGAGCGGTTCACGGCGTTGCTGACCGGCGGTCCGGAGGCGCTGGGCGAGTGAMTDTDATVDPSALDEGSAQRRWAELVALVEEDQAAYYQHDAPKVSDAEYDARMHELEALEAAHPALRRPDSPTQRVGGQASTAFANVDHLEPMLSLDNVFSTDELRAWDARVARDLDVPGGAVGYLSEVKIDGLAIALLYEQGRLVRAATRGDGRTGEDITANALRIAQIPHQLDGDEHPDVVEIRGEVFIPTASFARLNELQVELRDRAVGEARERAATREFDEERARVAALRRFPQFANPRNAAAGGLRQLLDKKTGLEHEAGLARIEALRLYAHGVGALQWTEGQHEELANLSDAYDLFARWGVPISPHNRVVEGVDAVLEMIDHFGEHRHDIEHELDGIVVKVDALADQRLLGATSRAPRWATAYKYPPEEVNTRLLAIQVGVGRTGRATPYAVMEPVLVAGSTVRQATLHNQDVVKAKGVRIGDMVVLRKAGDVIPEILGPVTALADDGYPREDFVMPERCPECGTPLRPMKSGDVDLRCPNAESCPAQVRGRVEHIGSRGGLDVDALGEVTAAALTQPLEPSEPPLRTEARLFDLTLDELAPIRAVVRDSETGLPKEWDGRGESAEFEMPDGSVQTVKAVRPFQKKRTLSKADERAAVEAGESLYEPNAQATKLLDELERARTKDLWRILVSLNIRHVGPVAARALADWFGSLDAVREASREDLAAVEGVGPVIADEVVAWFDVGWHREIVDTWARAGVRFATPGHPGPAAMAERATEEPTGPLAGLTVVVTGSLEGYSRDGAKEAILQAGGKAAGSVSKKTDYVVAGEKAGSKAAKAEQLGVPVLDEERFTALLTGGPEALGENANANANANA
AK018_037121149nagC_2COG1940N-acetylglucosamine repressorATGTTTCAGCTGTTCCGGGACGGTCGACCCCGCACACGAGCATCCCTGGTCGCAGCCACGGGACAGTCACGGTCCACCGTCGCCGCGCGCATCGACGCGCTGCGCGCCGTCGGGCTGCTCGCCCCCGCGGGCGAGGCCTCGAGCACCGGCGGTCGCCCGCCGTCCACCTTCGCCTTCGACCCGACCTCGCGGATCGTGCTCGGCGTGGACCTCGGCGCCACGCACGCACGGCTCGCGATCACCGACCTCGCCGGAGAGCCCATCGGCGTGCTCCAGGAGCCCCTGTCGATCGCCGACGGCCCGGCGCACGTGCTCGACTGGGTCGCCGAAGCGGGTTCCAAGGTCATCGCGCAGGCCGGTCGGCGGGTCGACGAGCTCGCCGGCATCGGCATCGGGCTCCCCGGACCCGTGGACCACACCACCGGCCGACCGGTGAACCCGCCGATCATGCCCGGCTGGGACGGCACGGACGTCCCGGCCGAGCTCTTCGCCCGACTCAGGGCCCCCGTCCTCGTCGACAACGACGTGAACATCATGGCCCTGGGCGAGCACCGCACCGTGTGCGCCTCGGTCGACGACCTGCTGTTCGTCAAGGTCGCGACCGGCATCGGGGCCGGCGTCATCATGGACGGCGAGCTACGGCGCGGTGCCCAGGGCGCCGCCGGCGACCTCGGTCACATCACCGTGCCGCGCGGTTCGGACATCCCCTGCCGATGCGGGAACACCGGATGCCTCGAAGCCGTGGCCGGTGGCGCCGCCCTCGTGGCGGACCTGCGGGCCCGCGGCGCGGACGTCAGCAGCACCAGCGACGTCGTGGACCTCGTGCGTGCCGGGGACGTCGCGGCAGGCCAGGCGGTCCGCCAGGCCGGACGCGACATCGGCAGCGTGCTGGCGGCCTCCGTGAGCCTGCTCAACCCGGCGCGCATCGTCATCGGCGGCATCCTGTCCGACGCCGGTGAGCACCTCATGGCCGGCATCCGCGAGATCGTCTACCAGCGCTCCCTGCCCCTGGCGACCCAGCACCTGCGGATCGCCACCACCGGCGCCGGCGCGCAGGCCGGCGTCGTCGGTGCCGCGTTCCTCGTCACCGAGCAGTACCTCGCGGCACCGTCGATCGACGCCCTCATCGCCTCGGCCGAGAGCGCCTGAMFQLFRDGRPRTRASLVAATGQSRSTVAARIDALRAVGLLAPAGEASSTGGRPPSTFAFDPTSRIVLGVDLGATHARLAITDLAGEPIGVLQEPLSIADGPAHVLDWVAEAGSKVIAQAGRRVDELAGIGIGLPGPVDHTTGRPVNPPIMPGWDGTDVPAELFARLRAPVLVDNDVNIMALGEHRTVCASVDDLLFVKVATGIGAGVIMDGELRRGAQGAAGDLGHITVPRGSDIPCRCGNTGCLEAVAGGAALVADLRARGADVSSTSDVVDLVRAGDVAAGQAVRQAGRDIGSVLAASVSLLNPARIVIGGILSDAGEHLMAGIREIVYQRSLPLATQHLRIATTGAGAQAGVVGAAFLVTEQYLAAPSIDALIASAESANANANANANA
AK018_037131521araG_1COG1129Arabinose import ATP-binding protein AraGATGGTCACAGAAGACCCCGCAGCGCCGCTGCTGCAGATGCAAGGGATCGTCAAGCACTTCCCGGGCGCCAAGGCCCTCGACGGTGTGGACCTCGACGTCCGTGCCGGCGAGGTGCACTGTCTGCTCGGGCAGAACGGTGCCGGCAAGTCCACGCTCATCAAGGTGCTGGCCGGGGCCCACCAGCCCACGTCCGGCACCATCCGATTCGACGGCGAAGAGATCGCCATCCCGCACCCCGACGCCGCGCTCGAGCACGGCGTGGCCACGATGTACCAGGAGCTGGACGTCGTCGACGGTCTGACCGTCGCCGAGAACATCTTCCTCGGTCACGAGCTGGCCTCGGCCGGGTTCACCAAGCGCCGCTTCGCCGCGCAGCGGACCCGAGAGCTCATGGCCCGGCTCGGGCACCCCGAGATCTCGCCGCACCGCGAGGTCGGATCGCTCTCCGCCGCGGGCAAGCAGATCGTGTCGATGGCCCGTGCGCTGTCGCGCGACGTGCGCGTGATCGTCATGGACGAACCGTCGGCCGTCCTGGACTCGGGCGAGGTGGACAACCTCTTCCGCGTCGTCGCCGAGCTCACCGACCAGGGCGTCGCCATCGTCTACATCTCGCACCGGCTCGAGGAGATCCGTCGGATCGGCGACCGGATCACCGTGCTCAAGGACGGAGTGACGGTGGGGCGCAACCTCGACGTGGCGACCACGCCGACGGACGAGCTCATCAAGCTGATGACCGGCAAGTCCATGGAGTACTCCTTCCCCGAGCGCCCCGGCGTGCCCGACGACGCCCCGTTGCGGCTCCAGGTCGAGAACCTCTCGCTGGCGGGCGTGTTCTCCGACGTGAGCCTGTCCATCCGTGCCGGGGAGATCGTCGGCCTGGCCGGTCTGGTCGGCTCGGGGCGCTCCGAGATCCTCGAGACGATCTACGGTGCGCGCCGGGCCACGCACGGCCGCGTGGAGCTGGACGGCACGAGGCTCCGCCGCGGTTCCGTGGGGGCGGCCGTGGCCGCCGACATCGGCCTCGCACCCGAGGAGCGCAAGAGCCAGGGGCTGCTGCTCGACGAGCCCGTCTACCGCAACATCACCCTGTCCTCCTTCGCGCGGACCGCCCGGGGCGGCTGGCTCGACGAGAAGGCGGAGAAGGCCGCCGCCGAAGAGCAGGCGAAGGCCCTGGACCTGCGGCCACCGGACGTCGACCGCGCCATCCGCACCCTCTCCGGCGGAAACCAGCAGAAGGCGATGCTCGCCCGCTGGCTCGTCCACGGCTGCGAGGTGCTGCTGCTCGACGAACCGACCCGCGGCGTCGACGTCGGCGCGAGGTCCGAGATCTACGACCTGGTACGACGGCTCGCCGACGCCGGCACCGCCGTGCTGGTCGTCTCCAGCGAGATCCCCGAAGTTCTGGGCCTCGCCGACCGTGTCCTCGTCATCTCCGACGGACAGGTCGTGCACGAAGGGTCCGCCGAGTCGATCGACGAGCACCAGGTGCTCGACATGGTCATGGAAGGAAGTGCCGCGTGAMVTEDPAAPLLQMQGIVKHFPGAKALDGVDLDVRAGEVHCLLGQNGAGKSTLIKVLAGAHQPTSGTIRFDGEEIAIPHPDAALEHGVATMYQELDVVDGLTVAENIFLGHELASAGFTKRRFAAQRTRELMARLGHPEISPHREVGSLSAAGKQIVSMARALSRDVRVIVMDEPSAVLDSGEVDNLFRVVAELTDQGVAIVYISHRLEEIRRIGDRITVLKDGVTVGRNLDVATTPTDELIKLMTGKSMEYSFPERPGVPDDAPLRLQVENLSLAGVFSDVSLSIRAGEIVGLAGLVGSGRSEILETIYGARRATHGRVELDGTRLRRGSVGAAVAADIGLAPEERKSQGLLLDEPVYRNITLSSFARTARGGWLDEKAEKAAAEEQAKALDLRPPDVDRAIRTLSGGNQQKAMLARWLVHGCEVLLLDEPTRGVDVGARSEIYDLVRRLADAGTAVLVVSSEIPEVLGLADRVLVISDGQVVHEGSAESIDEHQVLDMVMEGSAAPGPT0016600_2405DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016600-rbsA-K10441NANA
AK018_037141035rbsC_1COG1172Ribose import permease protein RbsCGTGAGCGAGCAGCAGACGCCGTCGAGTTCGGCGACAGAAACCCCCACGAACCACAAGGAGAGCTCCCGCTCCCGCCTGGGGCTCTCGGGAACGACGGTCCGGAACCTCGGTCTGGTCGCCGCCCTGGTCCTGCTGTGCCTGGTCGGGCTCCTCACCGGCGGCGACCGGTTCGCCAGCGTGCAGAACCTCATGATCGTGCTCAGCCTCGCGTCGGTGACCGGCGTGCTGGCGATCGGCATGACCTTCGTCATCACCACCGGCGGCATCGACCTGTCGGTCGGCTCCGTGCTCGGCCTGACCACGGTGTGGGCCTCGACCCTGGCCACGCAGACCATGGCCGACCAGTACGGCTGGATCGTCATGGTCGGCTGCGCGCTCCTGGTCGGCCTCGCCGCCGGGCTGGTCAACGGCGTGATCATCGCCTACGGCAACGTGGTGGCGTTCATCGCCACGCTGGCGATGCTGGTCGCGGCGCGCGGGCTCGCCGAGCTCATCGCCAACCGGCGCACGCAGATCGTCGACCAGCCGTCGTTCGAGAGCACCTTCCAGGGTGACCTGCTCGGCGTGCCGAAGATCGTCTGGATCTTCGTCGTCGTCGCCATCGCCGGCTGGTTCCTGCTCAACCGGACCACCTTCGGGCGCCGCACGGTGGCCATCGGCGGCAACCGGGAGGCGGCCCGGCTCGCCGGCATCAACGTCAAGCGCCACCTGCTCTACGTCTACGGCTTCTCGGGCCTGGCGGCCGGCATCGGCGGTGTGATGATGCTCGCCCGGACCGGAGCGGGGTCGTCCACCAACGGTCTCCTGATGGAGCTCGACGTGATCGCCATGGTCGTCGTCGGCGGCACCCTGCTCGCCGGTGGGCGCGGCACGATCATCGGCACGATCATCGGCGTCCTCATCTTCGCGACCCTGCAGAACGTCTTCATCATCAACAACGTCGACAGCTCGGTGCAGCAGATCGCCCGTGGCGCGATCATCGTCGCCGCCGTGCTGCTCCAGCAGCGGTTCGCCGGCCGCTCCAAGTCCAGTTGAMSEQQTPSSSATETPTNHKESSRSRLGLSGTTVRNLGLVAALVLLCLVGLLTGGDRFASVQNLMIVLSLASVTGVLAIGMTFVITTGGIDLSVGSVLGLTTVWASTLATQTMADQYGWIVMVGCALLVGLAAGLVNGVIIAYGNVVAFIATLAMLVAARGLAELIANRRTQIVDQPSFESTFQGDLLGVPKIVWIFVVVAIAGWFLLNRTTFGRRTVAIGGNREAARLAGINVKRHLLYVYGFSGLAAGIGGVMMLARTGAGSSTNGLLMELDVIAMVVVGGTLLAGGRGTIIGTIIGVLIFATLQNVFIINNVDSSVQQIARGAIIVAAVLLQQRFAGRSKSSPGPT0016590_1368DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016590-rbsC-K10440NANA
AK018_037151071hypothetical proteinATGTCCGCACGAACCATGCGCCGTCGTCTCATCGCGGCACCGCTCGCCCTGGCCGCCTCGGCTGCCCTGCTGGCCGGTTGCGTCAGCAACGAGCCTGCCGAGGAGGAGGGCACCGACTCCTCCGAGGAGATGAGCTCCGAGGGCGGGGCCGCCGGCACCGCCAACGACGAGCCGGGGGAGCCCGTCACCATCGGCTTCTCCGCCCCCGCCGCCGACCACGGCTGGATGGGTGCGATCACCTCCGCCGCCGAGGCCGAGGCCGACAACTACGAGGACGTCGAGCTCCGCGTCGCCGAGGGCACGAACGACGTCAACGTCCAGATCAGCCAGATCGAGACGTTCATCGCCGACGGCGTGGACGCCATCGTGCTCCTGCCGTTCGACGGCGCCGCGCTGACCGACGTCGCGATCGAGGCGATGGAGGCCGGCATCCCGGTCGTCAACGTCGACCGCGAGTTCACCAGCCCGTTCGCCGCCCGCACCACCGTGCTCGGCGACAACTACGGCATGGGCGTCAGCGCCGGCACCTACATCTGCGAGCAGCTCGGCGACCAGCCCGACGCGGTCATCGCCGAGATCCAGGGCATCGCCTCGCTGCCGCTGACGCAGGACCGGTCGCAGGGCTTCGCCGACGCGCTGTCCGACTGCGGCCTCGACGTCGACAACCAGGTCTCCGCGGAGTTCACCGTCCAGAGCGGTGAGCAGGTGACCGCCAACCTCCTGCAGGCGGCGCCCGAGATCGACGCCATCTGGAACCACGACGACGACCAGGGTGTCGGCGTCCTGCAGGCGATCGAGAACGCCGGTCGCGACGAGTTCTTCATGGTCGGCGGCGCCGGCTCGCTCGACGTGATGGAGCACATCCAGTCCGGTGACACCGTGCTGCAGGCCACGGTCGTCTACCCGTCGACCCAGGCGGCCGACGGCATCAAGCTGGCCCGCCTGATCGCGCAGGACAAGAACATGTCCGACCTGGCCTCGGCGGCCGTCCCGCGCACCGTGCAGCTCTTCGCGCCGGTGGTCACGGCGGACAACGTCGACCAGTACATGAGCATCGGGTTCCGTTCCTGAMSARTMRRRLIAAPLALAASAALLAGCVSNEPAEEEGTDSSEEMSSEGGAAGTANDEPGEPVTIGFSAPAADHGWMGAITSAAEAEADNYEDVELRVAEGTNDVNVQISQIETFIADGVDAIVLLPFDGAALTDVAIEAMEAGIPVVNVDREFTSPFAARTTVLGDNYGMGVSAGTYICEQLGDQPDAVIAEIQGIASLPLTQDRSQGFADALSDCGLDVDNQVSAEFTVQSGEQVTANLLQAAPEIDAIWNHDDDQGVGVLQAIENAGRDEFFMVGGAGSLDVMEHIQSGDTVLQATVVYPSTQAADGIKLARLIAQDKNMSDLASAAVPRTVQLFAPVVTADNVDQYMSIGFRSPGPT0015740_1372DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0015740-rbsB-K10439NANA
AK018_037161179iolG_4Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGGCTGCAGCAGACGGCGCTCGCCTCGGCGTCGGCATGGTCGGCTACTCGTTCATGGGCGCGGCGCACTCCCACGCGTGGCGCACCGCCCCCCGCTTCTTCGACCTGCCGCTGCGTACGGAGATGACGGCGGTCGCCGGCAGGGACCCGGAGAAGGTCGCGGCGGCGGCGGACCGGCTCGGATGGCAGTCCGCCGAGACGGACTGGCGTCGATTGCTCGAGCGTGACGACATCGACCTCATCGACATCTGCACACCGGGCAACACCCACGCCGAGATCGCCGTCGCAGCGCTCGACGCCGGCAAGCACGTGCTGTGCGAGAAGCCGTTGGCCAACTCGGTCGCCGAGGCCGAGCAGATGGTGGCGGCAGCGGACCGCGCGGCGCAGCGGGGTGTGCACGCCATGGTGGGGTTCACCTACCGGCGTGTCCCCGCCATCCAGCTCGCGCGTCAGCTCGTCGCCGACGGTCGTCTCGGCCAGGTCCGGCACGTGCGGGCCCAGTACCTGCAGGACTGGCTGTCGGACGCGTCGACTCCGCTGAACTGGCGCCTGCAGAAGGACAAGGCAGGGTCGGGTGCGCTCGGTGACATCGGTGCGCACGTCGTCGATCTCACCCAGTTCATCACCGGTGATCGGCTCACGGGCGTCGCCGGGATGCTCGAGACCTTCGTGCCCGAGCGCCCGGTGGCCACCGAGTTCTCCGGGCTGTCCGGCACGGCGGGTAGAGAGACCGGACCGGTGACGGTCGACGACGCCGCGGTCTTCTTCGGTCGCATGTCCGGCGGGGCGATGGCGAGCTACGAGGCCACGCGCTACGCCAACGGCCGCAAGAACGCCATCCGCATCGAGATCAACGGGTCGGCGGGATCTCTCGCCTTCGACTTCGAGGACATGAACGTCCTGCACTTCTACGACGCGACCGAGCCGCCGGCGACGGCAGGGTTCCGGAGGATCGTGGTCACCGAGGCCGAGCACCCCTTCGTGGCGGCGTGGTGGCCCCCGGGCCACGGCCTGGGCTACGAGCACGCCTTCACCCACCAGGTCGTCGATCTGGTGGGAGCGCTCGCAGCCGGCGAGGAGCCGGCGCCGTCGTTCGCCGAGGGGCTCGCCGTGCAGCGCGTCCTCGACGCCGTCGAGCGCAGCGCGTCCGACAAGCACCGCTGGATCGACCTCTCCTGAMAAADGARLGVGMVGYSFMGAAHSHAWRTAPRFFDLPLRTEMTAVAGRDPEKVAAAADRLGWQSAETDWRRLLERDDIDLIDICTPGNTHAEIAVAALDAGKHVLCEKPLANSVAEAEQMVAAADRAAQRGVHAMVGFTYRRVPAIQLARQLVADGRLGQVRHVRAQYLQDWLSDASTPLNWRLQKDKAGSGALGDIGAHVVDLTQFITGDRLTGVAGMLETFVPERPVATEFSGLSGTAGRETGPVTVDDAAVFFGRMSGGAMASYEATRYANGRKNAIRIEINGSAGSLAFDFEDMNVLHFYDATEPPATAGFRRIVVTEAEHPFVAAWWPPGHGLGYEHAFTHQVVDLVGALAAGEEPAPSFAEGLAVQRVLDAVERSASDKHRWIDLSNANANANANA
AK018_037171002hypothetical proteinATGACACGACCGATCAGCCTGTTCACCGGTCAGTGGGCCGACATGCCGCTCGAGGAGCTGGCGGGTCTGGCGTCCGGCTGGGGCTACGACGGACTCGAGCTGTGCTGCTGGGGGGACCACCTCGACGTGACCCGCTGGGACGACGCCGAGTACGTCCAGGGACGCAAGGACCTCATGGCACGGCACGGTCTGCAGATCGTGGCGATCTCCAACCACCTGACGGGTCAGGCGGTCTGCGACGACCCGATCGACCGGCGGCACGAGGAGATCCTCTCGCCGGAGGTCTGGGGCGACGGCGACCCGGAGGGCGTCCGGCAGCGGGCCGCCGAGGCCATGAAGGACACCGCGCGCATGGCCGCGAAGCTCGGCGTGCGCACCGTCGTCGGGTTCACCGGCTCGTCGATCTGGAAGACCGTCGCGATGTTCCCGCCGGTGCCCGCGGACATGGTCGAGGCCGGCTACCAGGACTTCGCCGACCGCTGGAACCCGATCCTCGACGTCTTCGAGGAGGTCGGCGTGCGGTTCGCCCTCGAGGTCCACCCGAGCGAGATCGCCTACGACTACTGGACCACCCAGCGCACGCTCGAGGCGATCGGGCACCGGGAGTCGTTCGGCCTGAACTGGGACCCGAGCCACATGGTCTGGCAGGACGTCGACCCCGTGGGCTTCCTCTGGGACTTCCAGGACCGGATCTACCACGCGCACTGCAAGGACACGAAGAAGCGCCTCAACGGCCGCAACGGCCGGCTCTCGTCGCACCTGGCGTGGGCGGACCCGCGGCGCGGCTGGGACTTCATCTCGACCGGTCACGGTGACGTGCCGTGGGAGGACTCGTTCCGGATGCTCAACGCCATCGGGTACGACGGACCGCTCTCGGTCGAGTGGGAGGACGCCGGGATGGACCGTCTCGTCGGGGCGCCCGAGGGCCTGGCCTTCGTGCGCCGGCTCGCGTTCGACGCCCCGGACGCGGCCTTCGACGCCGCGTTCTCCTCCAAGGACTGAMTRPISLFTGQWADMPLEELAGLASGWGYDGLELCCWGDHLDVTRWDDAEYVQGRKDLMARHGLQIVAISNHLTGQAVCDDPIDRRHEEILSPEVWGDGDPEGVRQRAAEAMKDTARMAAKLGVRTVVGFTGSSIWKTVAMFPPVPADMVEAGYQDFADRWNPILDVFEEVGVRFALEVHPSEIAYDYWTTQRTLEAIGHRESFGLNWDPSHMVWQDVDPVGFLWDFQDRIYHAHCKDTKKRLNGRNGRLSSHLAWADPRRGWDFISTGHGDVPWEDSFRMLNAIGYDGPLSVEWEDAGMDRLVGAPEGLAFVRRLAFDAPDAAFDAAFSSKDNANANANANA
AK018_037184908hypothetical proteinATGCGAATCCCTGTACCCGTTCGGAGAGCGCTTGCCGCCGTCGCGGCGGCCACGGTCTCCCTCGTCGGCCTCGTGGCGGTACCCGCCAGTGCCCACGAGGACCCGCACATCATGATCTTCTCGAAGACGGCGGACTTCCGTCACTCGTCGATCCCGACCGGTGTCGCCGCCGTCGAACAGCTCGCCACGGCGAACGGCATGACCTACGAGTCCACCGAGGACTCCGCGGCGTTCACCCCGGAGAACCTGGACCACTTCGACGCTGTCGTCTTCCTGTCCACCACCGGTGACGTGCTGGACGACACCCAGCAGGCGGCCTTCGAGGACTACATCCGTTCCGGCGGCGGGTACATGGGGATCCACGCCGCGAGCGACACCGAGTACACCTGGCCCTGGTACGGCGGCCTCGTCGGCGCCTACTTCTCGGGGCACCCGGAGCAGCAGACGGCGGACGTCCACGTGGCCGACCGCAGCCACCCGTCGACGGAGCACCTCCCGGAGGTCTGGACCCGGTTCGACGAGTGGTACAACTTCCAGGACAACCCCCGCGGGGACGTGCACGTCCTCGCCACGCTCGACGAGTCCACGTACGACGCGGGTGGCGGCGCCATGGGGGAGGACCATCCCATCGCGTGGTGCCAGTACTACGACGGCGGCCGATCCTGGTACACCGGCGGTGGCCACACCGACGAGAGCTTCTCGGAGGACCTCTTCGTCGGACACCTCGAGGGCGGACTCCTGTGGAGCGCCGGGCTCGTGGAGAACGACTGCGGCGGGACGAAGCACTCCAACTACCAGAAGGTCGTGCTGGACGACGACGTCGCCAGCCCCATGGGCCTCCAGGTCGCTCCGGACGGTCGCGTGATCTTCATCGAGCGCGCCGGCCAGATCCGGGTGATCGACCCCGAGGACAACACGACCTCCACGGCCGGCGCCCTCGCGGTGCACGACGCCCAGGAGAACGGTCTCCTCGGCATCGAGCTCGACCCCGACTTCGCCACGAACGGCTGGGTCTACCTCTTCTACACCCCCGACTCCGACGACGTCCCTGCACCGGTGCAGCGTCTGTCACGGTTCACGATGGAGGGCGACACCCTGAACATGTCGTCCGAGTCCGTCGTGCTCGAGTTCCCCCACCAGCGGCAGGAGTGCTGCCACTCCGGCGGACACCTGGACTTCGGGCCCGAGGGCGATCTGTGGATCTCCACGGGAGACGACACCTCGCCGGGTGGTGACCCGGGCGGCTACGCCCCGATCGACGAGCGTGAGGGCAACGAGGCGTTCGACGCCCAGCGCAGCTCCGCCGACACGAACGACCTGCGCGGGAAGCTGCTGCGGATCACCCCGACGGACGACGGTGGCTACACGGTGCCGGAAGGGAACCTGGTCGACACCGAGTGGGCCGCCGGTCAGGACACCGGTCTCGTCCGCCCCGAGATCTACGCGATGGGTCTGCGCAACCCGTTCCGCTTCTCCGTGGACCCGGTGGACTCGACCGTCTACCTGGCCGACTACGGCCCGGACGCCAACGCTCCCGACCCGGAGAAGGGCATCGACGGACGGGTCGAGTGGAACATCATGACCCAGCCCGGCAACTACGGCTGGCCGTACTGCCACGGCACGGGCGCGTACATCGACTACGACTACGCCACCGGGACCGCCGGGGAGGAGTTCGACTGCGAGGCGCCCGTCAACGACTCGCCGAACAACACGGGTCTGCAGGAGCTGCCGCCGAGCATCGACCCCCAGGTCGAGTACGGCCGGCTGCTGTCCCACCCCGTGGTGGGCCGCAGCGGTGCCCCGATGGGCGGCCCGGCGTACCAGTACGACCCGACCCTCGAGTCGGAGCGCCAGTGGCCCGAGTACTACGACGGGGTGCCGATCTTCTACGAGTGGGGCCAGAACCGGCTCTACGAGACGCACCTCGGCGGGGACAAGGAGCTGCTCGACGTCGTCCCGATGCTCGACGGTGCCATCGAGATGACCCGCCCGCACGAGCTCGTCTTCGGCGCCCACGACGGCGCTCTGTACGGCATCGAGTGGGGTTCCGGGTTCGGCGGCAACAACGCCGACTCGCAGGTCGTGCGCGTCGACTACACCGGCGGCAACACGAACCCGATCGCCAACGTCTCCGCCACGCCGCGCTCCGGCGGGGTCCCGCTGACCGTCGAGTTCTCCAGCGCCGGCACGTCCCACCCCCAGGGCGGTGACCTGACCTACTCCTGGGACTTCGGGGACGGTGCGACGTCGACGGAGGAGAACCCGACCCACGAGTACACGGAGGAGGGCGACTTCACCGCGATCCTGACGGTGACCGACGCGCAGGAGCGGACGGGAACCGCCAACGTCACCATCGCCGTCGGCAACACCGAGCCGGACGTCGAGATCCAGTGGCCGGCGAACGGTGCCGTCTTCACCTACGGCGACACCGTCGACTTCGCCATCGGCGTGGACGACGTCGAGGACGGGTCGACGACCACCGGTGACATCGACTGCTCCGAGATCGACGTCGAGCTCATCCTGGGTCACGACGACCACGGGCACCCGATGCAGGCCACCACGGGCTGCGAGGGGTCGTTCGTCCTGGAGCCCGACGGCGGCCACGTCGACACCGACCGCATCACGTACGCTCTCGAGGCCCGGTACACCGACGGCGGTTCGCCGGAGGGCACCGTGGCCCCGCTCGAGGGGCGCGACGTCGTCGCGATGCAGCCGAGCCGCAAGCAGGCCGAGCACTACGACATCGGTGACGGCGTGCGGTCGGAGGAGACCGAGGACCCTGAGGGCGGGCTCCTCAACATGGGCTTCATCACCGACGGCAGCTCGATGGTCTACGAGGACTTCCACTTCGCGAACATCGACGCGATGAGGTTCCGCGTGGCAGCGTCCAGCGACGGCAGCAGGATCGAGGTCCGTCAGGACTCGGTGGACGGACCGCTGCTCGGCACCGCGCAGGTGTCGGACACCGGCGGCTTCCAGAGCTGGGAGTTCGTCGAGACCGAGGTCGACGCGCCCGACGGCACGTTCGACCTGGTCCTGTCGTTCCGTGGAGGTTCCGGCTACCTGCTCAACCTCAACTGGTTCGACCTCGTCGGCGAGGGTGCGGCCCGTGGCCGGCCCGAGTTCGTCGAGGTGCCGACAGCGGCGGTCGACCCCGCCGATCCGGACGGAGCCGACGGCTGGTACACCGGCCCGGTGACGGTCACACTCGAGACGGCCGCGGGCGACGCGGTCGAGTACCGGCTCGACGGCGGGGACTGGCAGGACTACTCCGGACCGCTCGAGCTGGCCGAGGACGGCGTCCACGACGTGACCTACCGCGCCGTGCGTGCCGGGGACACGTCCAACAGGGAGTCCCTGCCGGTCCGTGTCGACGGCACGGCACCGACCACTGAGGCGGACCCGCAGGGCGTCGTCGCCGACGGGGCCTTCACGGGGGACGTCGAGGTCGGTCTCGTGGCCGAGGACGCGACGTCGGGCGTCGGCTCCACGGAGTACGTGCTCAACGGTGGGGCACCGGTCGCCTACGACGGACCCGTCCTCGTCACCGGCGGCGGCGAGCACGTCGTCCGGTACCGGTCGACCGACGTCGCCGGCAACGTCGAGCCGTGGCGGACGCTGACCTTCGCCGCGCCGACGGGGACGCCGCCGTCGATCGAGATCGGCGAGCCGCCCGTCGGGGGTGTGGTGGCTTTCGGCGACACGATCCCGTTCGAGGTCACCGTCGACGACAGCGTCGAGGTCGACTGCCGCGACGTCCGGTCGCGGCTCGTGGTCACCGACGGCGACCACGTGCACGCCGGAGAGCCGGTGGCCGGGTGCTTCGGGACGGTCCCGATGGTGCTGCCCGACGAGCACACCACGGACGACCGGCTCCGGTACGAGCTCGAGATCGACTACGTCCGCGGCGGGCACGACGCCGAGGCACCCAGCCTGGCGGCGGTCACGGAGTCGGTCCGCCTGCAGCCCACCCTGATCCAGGCGGAGCACCACGATCCGCAGGAGGACGTGCGGTACGAGGAGGCCGGTGACCCGCTCGGCGGGGGCCAGAACATCGGCTACATCCGCGACGGGTACGAGCTGCAGTACTCGGACGTCAACCTGGAGGGCATCGACAGCCTGCGCTTCCGGCTCGCGACGAGCACGGTCGGTGGCACGCTGGAGATGCGTGCGGGGTCTGCGGACGGCACGCTGCTCGGGAGCACGGAGATCACCGGGACCGGTGGCTTCCAGGCCTACGAGTGGTTCGACGCCCCTGTCGAGCAGACGCCGGAGGGCCCGTTCACCCTGAGCCTCGTGTTCCGCGCCGACGGCAGCCACTTCATCGCGAACATCAACATGTTCGAGCTCGTCGGTGACGGCGTCGGTGTCGAGCCGTTGGTCGAGGTGACGCCCGAACGCCCGACGTGGACGGACCAGTGCGGTCCGGCCAACATCACGGGTGCACCGTTGCCGGTCGTCGAGGGCGTCGAGTACGTCGAGACCCGCAAGAACGACGGCGGAGTGACGGTGGTGGCCACGCCCACGGAGGGCTACATCCTGACCGACAAGCCGTCACCCACGAAGAACGCGGACTCGTGGACCTGGACCAAGGGCGATGCGAACGAGCCCTGCTACCCGAGCTGGGAGCCGGAGGTCCGGTACGACAGGGGCGACCGCGTCGTCCTGGACGGCTCGGTCTGGGAGGCCGCGCGCCCGTCCTCGGACAAGACACCCGGTGAACGGGCCAACGGTCCGTGGCAGGAGATCGTCGAGACCGAGGACGGTTCGGCGGTGTGGACCGCGTCGCGGATCTTCACCGAGGGCGACGTGGTGCTCTTCGAGGGGGACTGGTTCGAGGCGCTCCATCGCACCCGGGGCCATGAGCCGGCGTCGTCGCCCGACCACTGGACCCTGGTCGTGGACTGAMRIPVPVRRALAAVAAATVSLVGLVAVPASAHEDPHIMIFSKTADFRHSSIPTGVAAVEQLATANGMTYESTEDSAAFTPENLDHFDAVVFLSTTGDVLDDTQQAAFEDYIRSGGGYMGIHAASDTEYTWPWYGGLVGAYFSGHPEQQTADVHVADRSHPSTEHLPEVWTRFDEWYNFQDNPRGDVHVLATLDESTYDAGGGAMGEDHPIAWCQYYDGGRSWYTGGGHTDESFSEDLFVGHLEGGLLWSAGLVENDCGGTKHSNYQKVVLDDDVASPMGLQVAPDGRVIFIERAGQIRVIDPEDNTTSTAGALAVHDAQENGLLGIELDPDFATNGWVYLFYTPDSDDVPAPVQRLSRFTMEGDTLNMSSESVVLEFPHQRQECCHSGGHLDFGPEGDLWISTGDDTSPGGDPGGYAPIDEREGNEAFDAQRSSADTNDLRGKLLRITPTDDGGYTVPEGNLVDTEWAAGQDTGLVRPEIYAMGLRNPFRFSVDPVDSTVYLADYGPDANAPDPEKGIDGRVEWNIMTQPGNYGWPYCHGTGAYIDYDYATGTAGEEFDCEAPVNDSPNNTGLQELPPSIDPQVEYGRLLSHPVVGRSGAPMGGPAYQYDPTLESERQWPEYYDGVPIFYEWGQNRLYETHLGGDKELLDVVPMLDGAIEMTRPHELVFGAHDGALYGIEWGSGFGGNNADSQVVRVDYTGGNTNPIANVSATPRSGGVPLTVEFSSAGTSHPQGGDLTYSWDFGDGATSTEENPTHEYTEEGDFTAILTVTDAQERTGTANVTIAVGNTEPDVEIQWPANGAVFTYGDTVDFAIGVDDVEDGSTTTGDIDCSEIDVELILGHDDHGHPMQATTGCEGSFVLEPDGGHVDTDRITYALEARYTDGGSPEGTVAPLEGRDVVAMQPSRKQAEHYDIGDGVRSEETEDPEGGLLNMGFITDGSSMVYEDFHFANIDAMRFRVAASSDGSRIEVRQDSVDGPLLGTAQVSDTGGFQSWEFVETEVDAPDGTFDLVLSFRGGSGYLLNLNWFDLVGEGAARGRPEFVEVPTAAVDPADPDGADGWYTGPVTVTLETAAGDAVEYRLDGGDWQDYSGPLELAEDGVHDVTYRAVRAGDTSNRESLPVRVDGTAPTTEADPQGVVADGAFTGDVEVGLVAEDATSGVGSTEYVLNGGAPVAYDGPVLVTGGGEHVVRYRSTDVAGNVEPWRTLTFAAPTGTPPSIEIGEPPVGGVVAFGDTIPFEVTVDDSVEVDCRDVRSRLVVTDGDHVHAGEPVAGCFGTVPMVLPDEHTTDDRLRYELEIDYVRGGHDAEAPSLAAVTESVRLQPTLIQAEHHDPQEDVRYEEAGDPLGGGQNIGYIRDGYELQYSDVNLEGIDSLRFRLATSTVGGTLEMRAGSADGTLLGSTEITGTGGFQAYEWFDAPVEQTPEGPFTLSLVFRADGSHFIANINMFELVGDGVGVEPLVEVTPERPTWTDQCGPANITGAPLPVVEGVEYVETRKNDGGVTVVATPTEGYILTDKPSPTKNADSWTWTKGDANEPCYPSWEPEVRYDRGDRVVLDGSVWEAARPSSDKTPGERANGPWQEIVETEDGSAVWTASRIFTEGDVVLFEGDWFEALHRTRGHEPASSPDHWTLVVDNANANANANA
AK018_03719561COG0454putative N-acetyltransferaseGTGACCGCACCATCCGTCGTCGTCCGTCCCGCCCGTCCCGACGAGGCCGCCGAGCTCGCCTGGCTCGCCGCCCTGACGTTCCCCCTCGCGTGCCCGCCGGGGACCTCCACGGCCACCATGGCCCGGCACATCGCCGAGCACCTGACGCCGGAGCGCTTCCGAGCGTGGAGCCGCGACCCCGGCTGCGCGCTGCTCGTGGCCGACGGAGGCGAGTCCGAGGAGCCCGCCGGCTACGTGCTGCTGCTGCGGGGCGAGCCGGACGGGGACGCCGAGCGAGACGTTCTGCGGTCCACGGTCGGGCCCGGTCCCTACGTCGAGCTGTCGAAGATCTATGTCCACCCTGCTCGTCAGGGAGACGGCACGGCGAACGCGCTGATGGCCGCAGCCGTCCGGACGGCTGACGAGCTCGCACCCGTTCGTCCGTTCTGGCTCGGCACCAACGGGGACAACCGGCGAGCCCAGGCTTTCTACCGCAAGCACGGGTTCACCGTCGTCGGCAGCCGCACCTACGACGTCGGGGGTGTGCAGCACGACGACGTGGTCATGCTGCACACCACCTGAMTAPSVVVRPARPDEAAELAWLAALTFPLACPPGTSTATMARHIAEHLTPERFRAWSRDPGCALLVADGGESEEPAGYVLLLRGEPDGDAERDVLRSTVGPGPYVELSKIYVHPARQGDGTANALMAAAVRTADELAPVRPFWLGTNGDNRRAQAFYRKHGFTVVGSRTYDVGGVQHDDVVMLHTTPGPT0007785_41DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007785-paiA-K22441NANA
AK018_037203015hypothetical proteinGTGCACGACGACCACGACAACCTGGTCACCCGCCTGGCGCGCTTCATCCGCGAGAGGGTCGAGCCAGCGGTCTATCCCCGCGCGACGGCGCTGGATGTCCGCCACTGGTCGGTCCCGGATGAGCCGGTCCCGTTCTCGGTCGCGCGCCGCCAGGACTACGAACCGACACCACCGGGCTGGGCCTGGGGGAGGGCTTGGAGCTCCACGTGGTTCAGGATCTCGGGGGACCTGCCGACGGGATGGGATCCACGACGCAGCGAGATTCTCGTCGATCTCGGCTTCACGGCGGAACGCCCCGGGTTCCAGGTAGAGGGACTCGCCTATCGAGAGAACGGCACGATCATCAAGGCGGTGTCGCCCCGGAGCAGCTTCGTACCGTACGAAGGAGATGTGGCAGGTTCCGTCGACATCTTCGTCGAGGCAGCTGCCAACCCCGACGTGGCGGGTGAGTACACGTTCGGGCCGACGCCTCTGGGGGACGTGACGACCGCCGGCGATCAGCCCCTCTATCGCCTGGGCTCCGTCGAGATCGCCGAACGAGACGACACTGTCTGGGAACTGCTCCAGGACATGCGGATCGTCCGTGACATGATCGACGAGCTCCCGGTGGACACCACCCGTCGGAGTGGATTGCTCAATACTGTGACGCACCTCCTGGACGTCCTCGATCCCTGCGACGTCCCCGGAACAGCGCAGGACGGTCGGGATGTCCTTGCGTCGGCCCTCTCGGCTCCGGCACATGCTTCGGCCCATCAGATCGTGGCGGTGGGACACGCTCACATCGATTCGGCCTGGCTGTGGCCCGTTCGCGAGACGGTCCGCAAGGTTGCACGGACGTTCGGGAACGTCCTCGACCTGATGGATCGCGACCCGCACTTCGTCTTCACAGCGTCCTCGGCCCAGCAGTACGCGTGGGTGCGGGACCACTACCCGGAGCTCTTCGCCCGCGTCCGCGAGAGGGTCTCCGAGGGACGCTTCGTTCCCGCCGGCGGCATGTGGGTCGAGGCCGACACGAACATGCCCGGCGGCGAAGCCCTGATCCGGCAGTTCTCCCACGGAAAACGCTTCTTCCAAGAGGAGTTCGGCGTCGAGACAGTCGAGGTCTGGCTGCCGGATTCCTTCGGCTACTCGGCCGCCCTGCCACAGATCGCCGCGGGTACGGGCAACCGGTGGTTCCTCACGCAGAAGCTCTCGTGGAACCAGACGAACCAGCTTCCCCACCACACGTTCTGGTGGGAGGGCATCGACGGCAGTCAGGTGTTCACCCACTTCCCGCCCGCCGACACCTACATCTCACAACTCACCCCCGACGAACTGCTCCACACGGAACGCAACTTCCGAGAAGCGGGGGCCGCCAAACTGTCACTCGTCCCGTTCGGTTGGGGTGACGGCGGTGGCGGACCGACGCGAGAGATGATCGCCGCAGCCGTTCGAAGCCGAGACCTCGAGGGGTTGCCACAAGTCGAGATGGGCACGCAACGCAACTTCTTCGAACGTGCCGAGAGCGAGTATCCGCATGCACCCGTCTGGCGCGGCGAGCTCTACCTGGAGAAGCACCGGGGCACCTACACCTCCCAGCTGAGGACGAAGCAAGGAAACAGGCGGTCCGAGCACCTCCTTCACGAGGCCGAGTTGTGGGCGACGACCGCCACGGTCCGATGCGGCGCCCCGTATCCGCACGAGACACTCCGCGAAGCCTGGGAAACCGTCCTCCTGCTGCAGTTTCACGACATCCTTCCGGGCAGCTCGATCGCGTGGGTGCATCGCGACGCGGAGACGGCGTACGGCACAGTGCGAGAAACGCTCGATGAGATCGTCGAGTCGAGCATCCGGCTCCTCGCAGGTAACGGCAACGACGAGTTCGTCGTGAACTCATCCCCGGACGCTCGCGAGGGAGTGCGGCCGTACTCGATCGCACCTCGACGCGTCGACGCGCGCGCCGTCACGGTGACCGAACACGACTCGGGTTCATGGACCCTGGACAACGGAACACTCCGTGCCGACATCGACAGCCATGGTCGAGTCACATCGTTGGTCGACCATGCGTCGAAGCGTGACGCCATCGCTCCGGACGGCTTCGGCAACCGGCTCGTCCTGCACCGCGACACCCCGGCCGAATGGGATGCCTGGGACATCGACGATCACTATCGACGCACCGCGCGCTCACTGGACGAGGACCCGCCCAACTCTCTCGTGGTCTCCGCGTCGGACGACGGCACTTGCACCGTGGCCACCGAACGGACTGTCGGGGCTTCCTCCATCACACAACGACTGAGCCTCGCCCCGGACGGCACATCACTCGACGTCGAGACGACCATCGATTGGCACGAGACGCAGAAGCTCCTGAAGATGAACGTCGACCTGGACGTCCATGCAGACGACACACAGTCCGAGACCCAGTTCGGGTACGCGAGCCGGCCTACGCACTCCAACACTTCTTGGGACGCCGCGCGATTTGAGTTCTGCGCCCACCGCTGGGTCTACGTCGGCGAACCGGGCTACGGTGTGGCGATCGCCAACGACTCCACGTACGGTCACGACGCTCGCGCTGCGCGTCGTGCCGGCGGAGGGCGAACCACGTCGGTGGGGCTCTCGCTCATCCGGTCACCACTATTCCCTGATCCGGTGGCCGACCAGGGCCTCCACATCACGAGAGCGACGATTCGCCCCCACGCTGAACTTCGAGACGCGGTGCGCGATGGATACGCGGTGAACCTGCCGCGGCGGACGGTGAGGGGCGACCGAGCGTCACGCTCTCTCTTCAGGGTCGACGGCGACAGCGCGGTTCCCTCCGTGGTGAAGCTCGCGGACGACGGAACCGGTGACGTCATCCTGCGGCTCTACGAGTCCCTCGGGTCCCGCACGTCGGCACGTGTCGTTCCTGACTTCCCGACGAGTGGTTGGTACCGGACCGACCTCCTGGAGCGGGTGCAGGGCACTCGGATCGCCGAGCACGACGTCGAGCTCGAGTTCGGCCCTCATGAGATCATCACGCTCCGGTTCGTTCGTCCGTGAMHDDHDNLVTRLARFIRERVEPAVYPRATALDVRHWSVPDEPVPFSVARRQDYEPTPPGWAWGRAWSSTWFRISGDLPTGWDPRRSEILVDLGFTAERPGFQVEGLAYRENGTIIKAVSPRSSFVPYEGDVAGSVDIFVEAAANPDVAGEYTFGPTPLGDVTTAGDQPLYRLGSVEIAERDDTVWELLQDMRIVRDMIDELPVDTTRRSGLLNTVTHLLDVLDPCDVPGTAQDGRDVLASALSAPAHASAHQIVAVGHAHIDSAWLWPVRETVRKVARTFGNVLDLMDRDPHFVFTASSAQQYAWVRDHYPELFARVRERVSEGRFVPAGGMWVEADTNMPGGEALIRQFSHGKRFFQEEFGVETVEVWLPDSFGYSAALPQIAAGTGNRWFLTQKLSWNQTNQLPHHTFWWEGIDGSQVFTHFPPADTYISQLTPDELLHTERNFREAGAAKLSLVPFGWGDGGGGPTREMIAAAVRSRDLEGLPQVEMGTQRNFFERAESEYPHAPVWRGELYLEKHRGTYTSQLRTKQGNRRSEHLLHEAELWATTATVRCGAPYPHETLREAWETVLLLQFHDILPGSSIAWVHRDAETAYGTVRETLDEIVESSIRLLAGNGNDEFVVNSSPDAREGVRPYSIAPRRVDARAVTVTEHDSGSWTLDNGTLRADIDSHGRVTSLVDHASKRDAIAPDGFGNRLVLHRDTPAEWDAWDIDDHYRRTARSLDEDPPNSLVVSASDDGTCTVATERTVGASSITQRLSLAPDGTSLDVETTIDWHETQKLLKMNVDLDVHADDTQSETQFGYASRPTHSNTSWDAARFEFCAHRWVYVGEPGYGVAIANDSTYGHDARAARRAGGGRTTSVGLSLIRSPLFPDPVADQGLHITRATIRPHAELRDAVRDGYAVNLPRRTVRGDRASRSLFRVDGDSAVPSVVKLADDGTGDVILRLYESLGSRTSARVVPDFPTSGWYRTDLLERVQGTRIAEHDVELEFGPHEIITLRFVRPPGPT0018760_1306DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-MANNOSIDASE,PGPT0018760-mngB|ypdB|manA-K01191NANA
AK018_03721693axeA1COG0657Acetylxylan esteraseATGACGACTCACGCGCTCGTGCTGCCCGGGGGCGGCTATCGGGCCCATGCTCGACATGAGGCGGAACCTGTCGCCGACTGGCTCGAGGGAGTCGGTGTGCCGGCGAGCGTCTTCCGCTATCCCGTGCGCACGAGGCACCCCGCGGCGCAGCTGGCGATCGCCGAACGCGTGGAATCGCTTCGGGCAGCAGGCGTCGCGAGGGTGCTACTCGTGGGCTTCTCTGCGGGAGCGCACGCCGCCGGTCTCGCCGCCCTGAGCCCTCGCCGGGCAGGTTGCCGCGTCGACGGGGTCATCGCGGGATATCCGGTCGTCTCGATGGTCTCCGACGCCCACTGGGCGAGCCGCATGACCCTCGTGGGGGACGGGGGGCGCGAGCCGGCCGAGCGGCTGTCGCTCGAGCTTCTCGTCACGGCGCAGGCGCCGCCGTTCTTCGTGTTCCACGCGATCGACGACGAGAAGGTCCCGGTGGAGCACTCGCTCCTGCTGTCCGGTGCGCTGCGACGTGCACGGGTTCCGCACGAGCTGCACCTCTACGGGTCCGGTGGGCACGGATTCGGGCTGACCGGCACTGACGGGGGATGGGAGACCGCGTGCGAGCGCTGGCTGGAGCGAGGTGACTGGCTTGGCGCGACAACGCGGGTTGACAATGCCAGCCCGGTGCGCCACGGTGATCTACGAAACTGCTTTCGCTGAMTTHALVLPGGGYRAHARHEAEPVADWLEGVGVPASVFRYPVRTRHPAAQLAIAERVESLRAAGVARVLLVGFSAGAHAAGLAALSPRRAGCRVDGVIAGYPVVSMVSDAHWASRMTLVGDGGREPAERLSLELLVTAQAPPFFVFHAIDDEKVPVEHSLLLSGALRRARVPHELHLYGSGGHGFGLTGTDGGWETACERWLERGDWLGATTRVDNASPVRHGDLRNCFRNANANANANA
AK018_037221416hypothetical proteinATGAGGAGACACGTTTGGCCGCGCCGCACCGCACTGCTCGGCGGGCTCGCTGCCGTCGCGGTGGCGGCCGGCTGCAGCAGTGGCACGTCAGAGGGAAGCGGCGTGTCGGACGACTCCGCGATGCAAGCGGAGTCCTGCGACACCGACGCCGAGGTCACGATCACCCTGGGTGAACGCCCCACGGCCGACCAGGACGCGCAGCTCAAGGCCTGGGAGAACGCGCTGTCCGAGTTCAAGGAGCTCCACCCGAACATCACGATCGAAGACGAGGAGACCAAGTACGACACGGCGACCTTCTCGGCACTTCTCGTGGGTGGCACGCTCCCGACGACGCTCCAGGTGCCCTTCACCGACATCCAGTCGCTCATCGAACGTGGGCAGGCGGCGGACATCACGTCCTATGTCGAGGACGACGAGGTACTCAGTGCCCTCAACCCGCGTCTGGCCAGCGTGACGGAGGGGGCCGACGGAGAAACCTACGGCGTCGTCCGGGCTGCTTACACGATGGGCCTGATCTACAACCGCGCCCTGTTCGAACAGGCCGGCCTCGATCCCGACGACGCTCCGACGACCTGGGACGAGGCGCGGGAGGCAGCCGCGGCGATCTCCGAGGAGACGGGTCAGACGGGATTCATCATCCCCACCACTGGGAACTTCGGCGGTTGGATGCTGACCGCGATGTCGTACTCCAACGGGAGCCTGGTCGAAGAGGTCGACGGTGACGATGCCACGGTCACTCTCGACACGCCGGGCATGCAGGCCTCGCTGGAGTTCCTCCGCGACCTGCGTTGGGAAGACAACAGTGCAGGTGACAACTACCTCTACGACGGCAACTCCATCAGGGACGATCTCGCCGCCGGCGTGATCGGCCAGAGCGTCAACGGGGCGAACCTCTACAACAGCCTTGTCGTGGGGCGCGGCATGCCGGCGGATGACTTCGGTGTCGCGCCGATCCCGGCTGCCGACGACTCCCTCGGAGTCCTCGGCGGAGGCAACATCCAGTGGTACAACCCGAAGGCCACGCCTGAGCAGCTCTGCGCCGCCATGGAGTGGACGAAGTACTACTTCCTCGACCGCTACGTCGACGAAGATGCCGCAGTTGCCTGGGCGGAGGCGCAGGTCGCCGACGACCTGCCTGTCGGTCTCCCCGAGGTCCCCGTCGTGTCTCAGGAGCAGTACGACGAGTACCTGACGTGGATCGAGCCGTACATCAACGTGCCCCGAGAGAACTACACGGCCTACCTGGAGAGCTTGGAGGACGCGACCATCGTCCCTGAGCCGGCTCAGAAGGCTCAGGAGCTCTACGCGGCGCTCGACCCCGTGGCGCAGGCAGTGCTGACCCGCGAGGACGCGGACATCAGCGAACTGCTGACGACCACCGAGCAGCAGGTTCAGGACCTCGTCGACGCCGAGTGAMRRHVWPRRTALLGGLAAVAVAAGCSSGTSEGSGVSDDSAMQAESCDTDAEVTITLGERPTADQDAQLKAWENALSEFKELHPNITIEDEETKYDTATFSALLVGGTLPTTLQVPFTDIQSLIERGQAADITSYVEDDEVLSALNPRLASVTEGADGETYGVVRAAYTMGLIYNRALFEQAGLDPDDAPTTWDEAREAAAAISEETGQTGFIIPTTGNFGGWMLTAMSYSNGSLVEEVDGDDATVTLDTPGMQASLEFLRDLRWEDNSAGDNYLYDGNSIRDDLAAGVIGQSVNGANLYNSLVVGRGMPADDFGVAPIPAADDSLGVLGGGNIQWYNPKATPEQLCAAMEWTKYYFLDRYVDEDAAVAWAEAQVADDLPVGLPEVPVVSQEQYDEYLTWIEPYINVPRENYTAYLESLEDATIVPEPAQKAQELYAALDPVAQAVLTREDADISELLTTTEQQVQDLVDAEPGPT0016545_1389DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_03723993araP_2COG1175L-arabinose transport system permease protein AraPGTGCTCATCGCTCGGGACACAGCACGTCGCGCCGACCCGCCGGTCGGCAGCACATCACCAACCCACGTGACGAGCGCCGCCGAACGGCGACGCCAGCGCGGATGGCGCGCGCGAGCCGCGGGGTGGGTCCGTGACGGCGGGCTCGCGACCCTCGTCATCTTCCTGCCGGTTCTCCTCATCTTCGGGTACTTCTCATGGTGGCCGATCCTGAAGAGCTTGATCCTGGCCTTTCAGCACACGGATCTCATCACCGAGCCCACGTGGGTCGGGTTCCGGAACTTCGAGCGTGTCCTGGCCGACCCCTTGCTGTGGACGGCGACGGGGAACACCTTGTGGTTCGCGGCACTCGCCGTGGTGATTGGATTTCCGGTCCCGATTCTTCTTGCAGTGACCATGGCCGAGATGCGGCGGAGTCGGCGACTCTCGAGCGTTCTCGCATACCTTCCGGTGATCATTCCGCCCGTCGTCAGCGTGCTTCTCTGGAAGCAATTCTACGACCCGTCACCGTCTGGTCTCTTCAATACCATGCTGGGATGGGTCGGGATCGGGCCGCTCGGCTGGCTGCAGGATCCCTATCTCGCGATGCCCAGTATCGTGGTTCAGGCGACGTGGGCGAGTGCGGGAACGGCGACAATTATCTACCTCGCCGCGCTGATGTCGATCCAGTCGGAGCTCTACGATGCGGCGGAGGTCGACGGAGCGACCATCCTTGGCCGGGCTTGGCATGTCACGCTCCCGCAGTTGCGTAGCGTTATTCTGCTCATGCTGCTACTCCAGATCATCGGAACGATGCAGGTGTTCACGGAGCCGTTCGTCATGACCGGCGGCGGGCCGGAGAACAGAACCGTGACACTCTTGATGCTCGTCTACCAGTACGCCTTCATCTCGGGCGATTTTGGAAAGGCGACCGCATTGAGCATCCTTCTCGCGGTCGTTCTGAGCCTCATCTCTGCCGTCTATCTGCGGGTCACGCGGAACTGGAGCCAATCATGAMLIARDTARRADPPVGSTSPTHVTSAAERRRQRGWRARAAGWVRDGGLATLVIFLPVLLIFGYFSWWPILKSLILAFQHTDLITEPTWVGFRNFERVLADPLLWTATGNTLWFAALAVVIGFPVPILLAVTMAEMRRSRRLSSVLAYLPVIIPPVVSVLLWKQFYDPSPSGLFNTMLGWVGIGPLGWLQDPYLAMPSIVVQATWASAGTATIIYLAALMSIQSELYDAAEVDGATILGRAWHVTLPQLRSVILLMLLLQIIGTMQVFTEPFVMTGGGPENRTVTLLMLVYQYAFISGDFGKATALSILLAVVLSLISAVYLRVTRNWSQSPGPT0016535_2775DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_03724942ngcG_3COG0395Diacetylchitobiose uptake system permease protein NgcGATGAGCGTGCTGTCAAAGGAGCGCCGTTCACCGGCACGACAGTCGATTCGGAGTGTCGCCTCGGCGGAAGACCGGACGAACGTCTCGGAGGCGGAACGCACCCGACCGCATGTCAGAGCTGGACTCGGCCTCCTGGTCGCGCTCGTGGTCGTTGCCCTGATCGTCGTCGCGCTGGGCCCGCTGGTGTGGCTCCTGAAGTCCGCCCTCTCGACCAGCCAGGACATCCTGTCGCAGCCATTCGCTTGGTGGCCGAGCGGCATCCAGTGGAGCAACATCCCGGAGGCATGGTCTCAGATCAACATCGGCGGCTACCTCCTGAACACCGTCTGGGCTGCTGGCGGTGCATGGTTCTTCGGGGTGTTGGTGGCATTGACCGGAGGGTACGGGATCTCGGTCTTGAAGCCGCGATACTCACGTGTCGTGAACGTTGCTGTTCTCGCGACCTTGTTCATCCCGGCAGTTGTGTCGCTGATCGCTCTTTACGTAACGGTCCTCGACGTTCCGTTGCTAGGCCTCAATCTGATCAACACCTACTGGGCTTTTTGGCTGCCGACAGCGGCCAGCGCGTTCAACGTTCTGGTCGTGGCCCGATTCTTCGGGCGGCTTCCGCACGACGTGTTCGAAGCTGCGCGAATCGACGGTGCTGGCGTATTCCGTGTCTTCTGGTCGATCGTTCTGCCGATGTCGAAGCCCGTGATCGGCGTCGTGTCGTTGTTGACGATCGTCGCGGCATGGAAGGAGTTTCTCTGGCCCTTGCTCGTGCTGCCGTCGCCCGATCTGCAGCCTCTTTCTGTTGGCCTGTATCGAGTCAGTGATACGGCGCCGACGGATCTGCTGATGGCGGGAATGTTCATCTCCGTCATCATTCCCATATCGCTGTTTCTGCTGTTCCAGCGACAGTTCTTGCGCAGTGCCGGACAAGCCGGCGCTGTCAAGGGATAGMSVLSKERRSPARQSIRSVASAEDRTNVSEAERTRPHVRAGLGLLVALVVVALIVVALGPLVWLLKSALSTSQDILSQPFAWWPSGIQWSNIPEAWSQINIGGYLLNTVWAAGGAWFFGVLVALTGGYGISVLKPRYSRVVNVAVLATLFIPAVVSLIALYVTVLDVPLLGLNLINTYWAFWLPTAASAFNVLVVARFFGRLPHDVFEAARIDGAGVFRVFWSIVLPMSKPVIGVVSLLTIVAAWKEFLWPLLVLPSPDLQPLSVGLYRVSDTAPTDLLMAGMFISVIIPISLFLLFQRQFLRSAGQAGAVKGPGPT0016540_1154DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_037253708hypothetical proteinATGCATAGCAAACTACGCGGAAGATCGTCCCTGATCGCCTCGGCCTTCGCGGCCAGCCTGATCGCCGTTCTTCTCGTCGCGCTCCCGCAGCGAGCCGACGCCACCCTCGCAGAGTCGGACACATTCGAGGGATGGACGTCGAACGTCAATGGCGAGCCGGACTTCAGGCTGGTCGCAGACACCGACGTCGTCCAGCACGGTTCGAGTGCGCTTCGTGTCGACTATCGGACACCGTACTCGAGCAAGTACGTCGACCTGCGGCAGAACGTCGGTACGTCGGGTGGGACGACCTACGACATGAGTGCCTGGGTGCGCACCGAGGACCTGTCGTCGTCCGGCTCCGCCTACTTCGTGCTCAGTGGTGACCACTCTCAGCGGGTGGAGCTGCCTGCGGGCACGAACGAGTGGACCCGCTTGGAGTGGACCTACACGCAGCCTGTGGGGAGCTCGACGTTCCTCGCAAGGTTCCTTGTCCGCGGTGAGGGCACCGTCTGGGTGGACGACTTCCGCATGACCGCGCAGGGATCCACGCAGAACCTTCTGGTCAACGGGTCGTTCGAGGAGCACGACCCGCCTCCCGGGACGCTGGCCTTTACCGACACGGCGTTGGTGTACGACGTCGGCGACGCCGAGGTCGGGATTGCGACCATCGCTGAGACCGTCGATTGGAGAGTCCGCGCCTCCTCTGGCCAGCGCATCGATTCCGGGACGGAGACAGCGAACGGCGGCACGGCGGCCATCGACCTGTCGAACTTCCCGGCGGGTTACTACTCCGTGACGATGTCGATCGACGCGCCCGTCGCGGTAACCCGGACGGCGAGTCTCGCCATCGTCGAAAGGGCGCAGCCTGGAGCCTCGACTCACCAGCCCGTCGGACTGGCCGTCCACGTGAACCGCTACTCGGTCGACCAGGTCGACGCGCTGATGGATCCCCTCGAGGCGGGAATGCTCCGGGAGGGGCCGCCCTGGGACCTCATCGAAACGGCACCCGGTGAGTACGAGTTCCCGGCCCACTTCGATGCACAGATCGAGGCCGCCAAGGAACGAGGCGAGCGACCGCTGGTGATCCTCGCGTACTTCAGCCGACTGTACGACGACGGCAAGACTCCGAGCTCGGAGGAGGGCATCGCCGCTTACGCCGCCTACGCTGCGGCGGCGGCCGAGCACTACGGCCCCGACGTCGACTACGAGATCTACAACGAGTTCAATCACAAGTTCAACAACGGTGCCTGCGGGATGACCGCGGACTGCTACTTCGACCTCCTCGCGCCGGCCGCGGACGCGATCCATGAGGCCGCACCGGGCGCCCGGGTCGTGGGTCCGGTCATCGCCGGAGCCGACTGGGACTTCATGGACCGGCTCTTCGAGCTGGGTGGCCTCAATTACCTCGACGTCGTGAGCTACCACACCTACGACTTTCCGGTGGCTCCGGAGGGCCGTACGGAGGCGGGCGTCGCCACGCTTCGGAGTCTGATCGACAGCTACGCTCCGGGGGCCGACATCCCGATCTGGCTGACGGAGCACGGATGGACGACGACGACCGGCGGAACCACGGAGCGCGAGCAGGCCGCATACATCGTCCGCTCGGCCGCGCTCCTCGAGGACGCAGGTGTCGACCGCACCGTCTACTACGAGCTGATCGACTCGGGGACCAACCCCGTCGAGCAGGAGCACAACTTCGGAATCGCCAGGCTGCCCGTCGACGGTGGCTCCGCGCTCACTCCCAAACCCGCGTTTCCGGCGCTCTCGACGTACAACCGCATGGTCGCTGGTCATCAGCTCGTCGACCTCACGCGCAGCGACGACTCGATCGCGGCTCGCTTCGAGAACGAGAACGGCGCACCGCTCTACATGGTCTGGGCGACGAACGGTCCGGCAACGCTGGAGTTCGAGATCGGCTCCAGCGGCCGCCTGACCAAGGGTGACGGGCGCTCGTGGCGGGTTCGACCAGATGGTCCGCTGCAGGTCACGATCGGTGACGAGCCGGTCTTCGTCAACGGAGCCGTTTCGGGCCCTGTCGCGGTGACAGACCCCGCTGCAGTTCTCGACACACCGGACGAGATCCCCGTGGACGGCGGCCCCGACGTGGATGTGACGATCGATCGGGAACAGCTGGAGGTCGTGGGCGACGTGGATGTCGTCGGTCCGGTCGGCGCCGGGACGACGCTCGACGGATCCGGCGCCATCGTGACCGGCGCGATCACCTTGGCGCCGATGCGAGAGGTCGGGGAACGCCCCGTCGGCTACACGGTCCGCAAGAACGACGGCGTCGTCGCCTTCGTCGCGGACACGACTCAGGTCGTGGAGAACCCTGTCGTGGCGCTTCAGCCGACCGTGGACGCATCGGCCGAGGTTCGGCCGAGTGTCGTGGTGGAGAACCTCCCGGGAGCTCAGCCCGTGAACGTCGAGGGTGGTTCGTGGCGCATCAGCCAGGACGAGGGCACCTTCGTCGGTTCCACGGTTGCGCCGGGAGAGTCCGCGACCTTCGGTCTGGACGCGGGCAGCCTCGAACCATGGACCGCCTACGACTACACGTTGGACGTCACGATCGACGGCGAAGCGCGGACTCAGGAAGGAAGTACGGCGCTGGCGCCCATCCCGGCCGACCCGGCCGATGCCATCGACGTCGGGTTCCACGAGCGCGGTCGCTATGTGCCGCTTGAGGGCGGGGTGCCGGGTCACGACGACCTCAGCGGCACGTTCGCCGTGTCGTGGGAGCCGGCGGGACTCCGGGTCCGGGCCGACATCACAGACGAAGAGCACGCCACGGGATCCTCCGTCGGGCGGCTTTGGGCCGGTGACTCCATCCAGTTCGCGGTCGCACGCGGACTGCCGGGACAGTACCCGCAGTCGCGTGCCGAGATCGGCGTCTATGACGGTGCAGAGGACGGTTCGGTCTACCGCTACACCAGCCCGGTCGGCGTGGTGGATGCCCACGCCGACGTGACGCGCCAGGGAACGACGACCAGCTACGACGTGCTTCTTCCCTGGGCCGAGGTGGGTCTCGACCCTGACGCCCAGCACTTCTCGTTCTCGATCCTCGTGAACGACAAGGACAACGGGAGTCGAGAAGGTTTCTACGAGTGGGGGAGTGGCATCGGCTCAGGGAAGAACGCCTCGCTGTTCCTCCCGGTCGTGCCCGTCCGCGAGGCGCCGACGGCGTCCCAGATCCTCGTGGACGGAATCCCGATCGCCGACTTCGACCCGGAACAGCTCGAATACACCGCCGAGGCGCTGGCCGGAGGACCCGTCCCGTACATCTCGGCGACTGCCAAGGAACCTGCGATGGTCGAGGTCACCCAGGCTGACTCGGCTCCGGGCGAGGCGACCGCCGTCGTGAGCCAGGAGGGTCGTCCGAGCACGACCTATACCGTGACGATCGACGTGCTTCATGGAGACGATGCCGAGATCGACGCCACTGTGAAGGGCAAGTGCCGCGACGGCGAGGCCCTGTGGCGCGTCAAGGTTCGCAATAGCGGTGATTTCGTTTCGGACATCGATGTGAGTTCCTCGTTCGACGCTGCTGAGACGACGAGGATCGCGCCGGGAAAGAAGGAAAAGATCGAACTCTTCTCCGATTCTCGCACCGTTCGACCGGGGACGGTCGACATCATCGCCACCGTGCCGTATCAGGCACCTGACCGACCAGAATCGACGATCCACGTGGAGCTGTCCGCGCCGGAGGTCGACTGCCGTGGAGGAAAGTAGMHSKLRGRSSLIASAFAASLIAVLLVALPQRADATLAESDTFEGWTSNVNGEPDFRLVADTDVVQHGSSALRVDYRTPYSSKYVDLRQNVGTSGGTTYDMSAWVRTEDLSSSGSAYFVLSGDHSQRVELPAGTNEWTRLEWTYTQPVGSSTFLARFLVRGEGTVWVDDFRMTAQGSTQNLLVNGSFEEHDPPPGTLAFTDTALVYDVGDAEVGIATIAETVDWRVRASSGQRIDSGTETANGGTAAIDLSNFPAGYYSVTMSIDAPVAVTRTASLAIVERAQPGASTHQPVGLAVHVNRYSVDQVDALMDPLEAGMLREGPPWDLIETAPGEYEFPAHFDAQIEAAKERGERPLVILAYFSRLYDDGKTPSSEEGIAAYAAYAAAAAEHYGPDVDYEIYNEFNHKFNNGACGMTADCYFDLLAPAADAIHEAAPGARVVGPVIAGADWDFMDRLFELGGLNYLDVVSYHTYDFPVAPEGRTEAGVATLRSLIDSYAPGADIPIWLTEHGWTTTTGGTTEREQAAYIVRSAALLEDAGVDRTVYYELIDSGTNPVEQEHNFGIARLPVDGGSALTPKPAFPALSTYNRMVAGHQLVDLTRSDDSIAARFENENGAPLYMVWATNGPATLEFEIGSSGRLTKGDGRSWRVRPDGPLQVTIGDEPVFVNGAVSGPVAVTDPAAVLDTPDEIPVDGGPDVDVTIDREQLEVVGDVDVVGPVGAGTTLDGSGAIVTGAITLAPMREVGERPVGYTVRKNDGVVAFVADTTQVVENPVVALQPTVDASAEVRPSVVVENLPGAQPVNVEGGSWRISQDEGTFVGSTVAPGESATFGLDAGSLEPWTAYDYTLDVTIDGEARTQEGSTALAPIPADPADAIDVGFHERGRYVPLEGGVPGHDDLSGTFAVSWEPAGLRVRADITDEEHATGSSVGRLWAGDSIQFAVARGLPGQYPQSRAEIGVYDGAEDGSVYRYTSPVGVVDAHADVTRQGTTTSYDVLLPWAEVGLDPDAQHFSFSILVNDKDNGSREGFYEWGSGIGSGKNASLFLPVVPVREAPTASQILVDGIPIADFDPEQLEYTAEALAGGPVPYISATAKEPAMVEVTQADSAPGEATAVVSQEGRPSTTYTVTIDVLHGDDAEIDATVKGKCRDGEALWRVKVRNSGDFVSDIDVSSSFDAAETTRIAPGKKEKIELFSDSRTVRPGTVDIIATVPYQAPDRPESTIHVELSAPEVDCRGGKNANANANANA
AK018_037261383iolG_5Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGTCAATCCCGAACGCTGATAGCCCACATCGACACCGCTACGCACTGATCGGCGCGGGCACCCGGGCGCAGATGTATCTCGAGGCCATGGCCGGCGAGCACCGCAACAGCTCAGTGCTCGCCGCGTGGTCAGACACCAATCAGGGGCGCCTCGACTGGAATGAACGATGGCTCGTGGATGCTGGTCTGGAACCGCCAGAGAGGTTTACGAGAGGGGACCTCGCGGCTACCGTCGCCCGTCTCGGTATTGAACGAGTCATCGTCACGGCGCCCGATTTTGTGCATGCTGACCTCGTGGTGGCCTCCTTGGAGGCCGGCGCCGACGTCATCGTCGAGAAGCCGTTGACGACGGACGAGGACGGTATCCGGCGCATCTCTGACGCGGTCGAACGCACCGGACGATCCGTGATTGTGACCTTCAACTACCGCTACTCGCCTCGTAATGCCCTGCTGAGGGAGATCGTGTCGAGCGGCGAGATCGGGGATGTCACGTCCATTCATTTTGAATGGCTGCTCGATACGTCACACGGCGCGGACTACTTCCGGCGTTGGCATCGTGAGAAGGCGAACTCCGGTGGGCTTCTCGTGCATAAGTCGTCCCATCACTTCGATCTTGTCAACTGGTGGATCTCCGACTCTCCATGGAGGGTCTTCGCGAGCGGAGGTCTGCGCTTCTACGGTGCCGAGAACGCCGCGCGTCGCGGGCTCGGTTCACGGCCCCCTCGTGGAACGACCGACCCTGCGCACACAGACCCCTTTGGCCTGGACCTTCGCTCGAACGAGCTGCTTTGCGGGCTCTTCTACGAACAAGAGCACTACGACGGGTACATTCGAGACCGCGACGTGTTCAGTGACGGAATCACGATCGAGGACAACATGTCGGTGCTCGTCGACTACGCGGCCGGTGCCAGTCTGACGTACTCGCTCAATGCGCACGCCCCGTGGGAAGGGTATGTCGTCGGCATCAACGGTACGCAGGGGCGGGCCGAGCTGACGGTCGTCGAGCGGGGTGCCCACCTTGCGGAGGGGACTCAGGTCGTGGATCCGAGCGCCAGCTCGGTGGAGGCCGAGTCATGGACGGAGCGTCCGGACGGCGAAAGGCTCCTCGTCCAGCGGCACTTCACCGAGGCGCGGCAAGTGCCCATCCCGGAGGCACGGGGTGGCCACGGTGGTGCGGACTCCGCTCTCCTCAGGGACCTGTTCGAGGGCGGGGGCGACGACGTACTGGGTCAACGTGCTACCTGGACGGACGGAGTCCGAGCCATGGCGGTCGGCGTAGCTGCCAACCGCTCGATGGATGACGGTGCGCCCCACCTGATCGGCGATGTCACCGCCATCACGGGACGTGCGGGATCCGACGCCGGAGCGACGACGCGCTCGTGAMSIPNADSPHRHRYALIGAGTRAQMYLEAMAGEHRNSSVLAAWSDTNQGRLDWNERWLVDAGLEPPERFTRGDLAATVARLGIERVIVTAPDFVHADLVVASLEAGADVIVEKPLTTDEDGIRRISDAVERTGRSVIVTFNYRYSPRNALLREIVSSGEIGDVTSIHFEWLLDTSHGADYFRRWHREKANSGGLLVHKSSHHFDLVNWWISDSPWRVFASGGLRFYGAENAARRGLGSRPPRGTTDPAHTDPFGLDLRSNELLCGLFYEQEHYDGYIRDRDVFSDGITIEDNMSVLVDYAAGASLTYSLNAHAPWEGYVVGINGTQGRAELTVVERGAHLAEGTQVVDPSASSVEAESWTERPDGERLLVQRHFTEARQVPIPEARGGHGGADSALLRDLFEGGGDDVLGQRATWTDGVRAMAVGVAANRSMDDGAPHLIGDVTAITGRAGSDAGATTRSNANANANANA
AK018_03727897axeA_2COG3458Cephalosporin-C deacetylaseATGGCGGATCCCGCCGAACTGCGTGCTGTCAAGAGCCCGCTGAGGGTCGTTGACGTCCGTGAACTCACGTTCTCCGGGCATTCCGGGGATCGCATTCACGCCTGGTATCTACGTCCCGCCGCCGTGTCCCAGGAGCTCCCGACCGTTGTGGAGTTCCTGGGATACGGGGGTGGCATCGGGCAGCCTCACGATCGCATCGATTGGGCCGCTGCTGGCTTTGCACACGTCATCATGGACACTCGGGGACAAGGCCCGGCGTCCACCGGCGACCCTCAGGGGTCGGGGCCCAGCGTGCCGGGATTCGTGACGCGGGGTATTGCTGACCCCGAGACGTACTACTACACGCGCGTCTTTACGGACGCCGTCTTGTGCCTGGATACGGTCAGGTCGCTTCCGGGCGTGGACAAGGATGGGGTGGTCGTGTATGGCGGCAGTCAAGGAGGCGGAATTGCTCTCGCCGCGGCCGGTCTCAACCATCGAATTCGAGCCGCGCTCGTCGACTTCCCGTTCTTGTGCGATATCGGAAGCGCGCTCGAGCTCTGCCGGTCCGAGCCGTACGACGAGATAGTCAGATATCTTTCAGTGCGGCGCCACGAGCGAGCCCTTGTCGCGCAGACGTTGGGGTACGTCGACGGCAAGTCGTTCGCCGCCCGGGCTGTGGCGCCGGCCCTCTTCTCCATGGGGCTCAGGGATGAAATTTGTCCCCCGTCGACGATCATGGCGGCATACGAACAGTATGCAGGGCGCAAGGAAATCGAAGTGTTCCCCTTCAACGGGCACGAGGGAGGCGGAAGCGAGCATTGGCCACGTCAGGTCGAGTTCGTCCGCGAAGTGCTCTCCAGCGAGTCGCTGCCCCGGGTCGTGTCGTCGGCGGCGTTCGCCCGACAGATAGACTGAMADPAELRAVKSPLRVVDVRELTFSGHSGDRIHAWYLRPAAVSQELPTVVEFLGYGGGIGQPHDRIDWAAAGFAHVIMDTRGQGPASTGDPQGSGPSVPGFVTRGIADPETYYYTRVFTDAVLCLDTVRSLPGVDKDGVVVYGGSQGGGIALAAAGLNHRIRAALVDFPFLCDIGSALELCRSEPYDEIVRYLSVRRHERALVAQTLGYVDGKSFAARAVAPALFSMGLRDEICPPSTIMAAYEQYAGRKEIEVFPFNGHEGGGSEHWPRQVEFVREVLSSESLPRVVSSAAFARQIDPGPT0011020_505DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-CEPHALOPORIN_METABOLISM,PGPT0011020-cah-K01060NANA
AK018_03728996ccpA_8COG1609Catabolite control protein AATGAATCGAAAGAAGGCTGTGCGCCTCAGTGACGTCGCGAAGGTAGCCGGCGTGTCGATGGCGACGGCGTCGAAATCGCTCAACAACAGCACCGAGGTTTCTGCGGAGACAAGAGAAAGGGTGCGTGAGGTTGCGCGACGGTTGGATTTCCGTCCGAATGCCTTGGCTCTCTCTTTCGCCTCTGGGCGGAGTCAGATCGTCGGAGTTCTCACTCACCGCGCGACCAGTACGTTCTCACGGCCGGTGGTGATGGGTGCGATTCTCGAACTCGGCGGCCACGAGCGCGCTGCTCTCGTCTTCGATGGCGATCGACTCGCAGGGCAAAAAATGACCGAGAGCATCGAGACGCTACGCGCCAGACGCATCGACGGCCTCTTGGTCGTTGGTGCTGGTCTCGGGTGGAGGACGCCATCGATATCTCATCACTTTGACGTCCCGGTGACGTATGCGTTCACTGCATCCGACGATCCTGCGGACCCGGTCTTCCTTCCGGACAATGAGCAGGCTGGCTACTTGGCGACGCGCCATCTCATCGAACGTGGGAGGGAGCGCATTGTTCACGTCACGGGCGACCGGGAGAATCTTGCTGTACAGCGACGCCATGCGGGAATGCGGCGCGCCGTCGAAGAGGCGGGACTCCCAGCGCTACCGGTCGTATACGGTGGTTGGCGTCAGGAATGGGGCGAAGAGGCGACGGCGTCGCTGCTTGATCGCGGTAAAGAGTTTGATGCAATATTCTGCGGCAATGACCACATCGGATTCGGTGCCCTGGACGTGCTGGAGGCCAGGGGGCGTCGAGTGCCCGACGACGTAGCGATTGTCGGCGTCGACAACTGGGAGGGGGTCATCTTGGATCAGAATCTCCGCCGACTGACGACCGTTGATCTCAATCTGATGGGTCTGGGGCGTCTTGCGGCGCGCAGCGTCGTCGAGTCGGAGCGGGCGTCCGGCGAACACTACAACGCGCCCTCGCTCGTCGAAGGCCCGTCGACCTGAMNRKKAVRLSDVAKVAGVSMATASKSLNNSTEVSAETRERVREVARRLDFRPNALALSFASGRSQIVGVLTHRATSTFSRPVVMGAILELGGHERAALVFDGDRLAGQKMTESIETLRARRIDGLLVVGAGLGWRTPSISHHFDVPVTYAFTASDDPADPVFLPDNEQAGYLATRHLIERGRERIVHVTGDRENLAVQRRHAGMRRAVEEAGLPALPVVYGGWRQEWGEEATASLLDRGKEFDAIFCGNDHIGFGALDVLEARGRRVPDDVAIVGVDNWEGVILDQNLRRLTTVDLNLMGLGRLAARSVVESERASGEHYNAPSLVEGPSTPGPT0017992_9250DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_037291020ccpA_9COG1609Catabolite control protein AATGACCGACGACGCCCCCGCCCAGACCTTGCGTCGGGGCCCCCGCGCGACCCTCGCCGACGTCGCCCGGATGGCGCGGGTGAGCCCCAAGACGGTCTCCCGCGTCGTGTCCGGCTCATCGCACGTGGCCCCGGCCACCCGCCAGGCCGTGCTCGACGCCGCCGAGAGCCTCCGGTTCCGACCCAACCGGCTCGCGGCCGGGCTGCGCGACGGCGGCGTCTCGCGCAGCGTGGGGTTCGTCGTCGGCGACCTCGGCAACCCGTTCTACGCGGCCGTCGCCGCCGGGATGGAGCGAGAGCTGTCCGCCCACGGGCTCACGCTCGTCCTCGCCGCCACCGAGGACGTCGCCGACGCCGAACGCACCGCCGTCGACGCCCTGCTCGCAGAACGGGTCCGCGCCCTGGTCGTGGTGCCCATTGCTCCCGACCAGTCCGCCCTCGCGCACGAACAACGCCTCGGCACCCCAGTCGTCGCCCTCGACCGACCCGTGCGCGGGCTGGACGCCGACACCGTGGTGCTCGACAACATCGGTGGCGCCCGCGAGGCCGTCCGAGCGCTGGCCGCGGCGGGACACCGCGACATCGCGTTCCTCGGAACGCCTGCCACCCTCGTCACGCTCCGCGAACGCCGCGAAGGGTACCGGCAGGGCCTGCGCGAGGCCGGCATCGCGACCCCGTCGGCATGGGAGCGACTCGGCGACCACGGCGACGACCGGCTGGTCGACGAGGTCCGGGCCCTCACCGACGGTCAACAACGGCCGACAGCGATCCTGGCCGCGAACAACCGGGCGAGCACCGCCGTCGTCCGTGCCCTCGGCCCTGATCCGGAGCTGGTGGTCGTCGGCTTCGACGACTTCGAGCTCGCCGATCCCCTCGGCATCAGCGTCGTCGCCTACGACGCCGCCCACCTCGGCCGAGAGGCCGCCCGCTGCGTCCTCGATCGCCTCGACACCCCCGGTGCGCCATCCCGCCGTATCGTGGTGCCGACGCAGCTGATTCGCCGCGGGCGCCTCACCCCGTGAMTDDAPAQTLRRGPRATLADVARMARVSPKTVSRVVSGSSHVAPATRQAVLDAAESLRFRPNRLAAGLRDGGVSRSVGFVVGDLGNPFYAAVAAGMERELSAHGLTLVLAATEDVADAERTAVDALLAERVRALVVVPIAPDQSALAHEQRLGTPVVALDRPVRGLDADTVVLDNIGGAREAVRALAAAGHRDIAFLGTPATLVTLRERREGYRQGLREAGIATPSAWERLGDHGDDRLVDEVRALTDGQQRPTAILAANNRASTAVVRALGPDPELVVVGFDDFELADPLGISVVAYDAAHLGREAARCVLDRLDTPGAPSRRIVVPTQLIRRGRLTPPGPT0017992_535DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_037301251yihS_1COG2942Sulfoquinovose isomeraseGTGATCACCTGGACCCGACGACCAGAGCATCGTGCCTGGCTGCTCGCCGAGCGCCACCGGCTGCTCGCCTTCGGTCGGCGGACCGCGTTGCCCGGCGGCGGGGCGGCCTGGCTCGACTCCGACGGCCTGCCCGAGCTGTCTCGGGGGGTGCAGACGTGGATCACGGGGCGCACCGTGCACACCTACGCGCTGGGTGCGCTGCTGGGCGTTCCAGGGGCGTCCGCCGTCGCCCGCGGCGCGATGGCCGGGTTGGCCGGACCCGGTGCGCCGCTGCACGACGACGAGCACGGCGGCTGGTTCGCGCAGGTCTCCGACGGCGGCGCGGTGCAGGACGCGAGCAAGCAGTGCTACCAGCACGCGTTCGTCGTCCTGGCCGCCTCGACTGCCGTCGCCGCCGGACTGGACGGCGCCCAGGGACTGTTCGGCGAGGCGACCGAGACGTTCCTCGACCGATTCTGGGACTCCGAGGCCGGGATGTGTGTCGACGCCTACGACCGGTCGTTCACCGACCTGGATCCCTACCGCGGGGTCAACGGCAACATGCACGCCGTGGAGGCGATGCTGGCCGCCGGTGACATCACCGGTGACGCGGCCTGGCACGGCCGGGCGCTACGCGTCGCACGGCGGGTGGCCGCCGAGGCCCGGGCGTGCGACTGGCGCATCCCCGAGCACTACGACGCGATGTGGACCGCCGATCTGGACCTGAACCGGGACCGTCCCGACGACCCGTTCAAGCCATTCGGCGCCACCGTCGGTCACGGGTTCGAGTGGGCGCGCCTGCTGCTGCACCTCGAGGCGAGCACCGGCGCCGACGACCTGCTCGAACCAGCCCGAGCGCTGTTCGACCGCGCCGCTGCCGACGGTTGGGCGGTCGACGGCCACGACGGGTTCGTCTACACCACCGACTGGACCGGCGCCCCGGTGGTGCGCGACCGGATGCACTGGGTGGTCGCCGAGGCGACGGCGACCGCGGCCGCCCTGCACGCCCGGACCGGCGACGACGCCTACGCGCGCTCCTACGCGACCTGGTGGGACCACGCGGCGGCCGCGTTCCGTGACCTCGACCGAGGCTCCTGGCACCACCAGCTCGACCCGTCCGGCGTCCCGACGGACACCGTGTGGCCGGGCAAGCCAGACCTCTACCACGCGGTCCAGGCGACGTTGCTGCCCGTGGCGCCGCTCGCACCAGGACTCGCCGTGGCGGCACGGGACGGACTGATCCCGTCGGACCCGACCGGGGAGAACGCATGAMITWTRRPEHRAWLLAERHRLLAFGRRTALPGGGAAWLDSDGLPELSRGVQTWITGRTVHTYALGALLGVPGASAVARGAMAGLAGPGAPLHDDEHGGWFAQVSDGGAVQDASKQCYQHAFVVLAASTAVAAGLDGAQGLFGEATETFLDRFWDSEAGMCVDAYDRSFTDLDPYRGVNGNMHAVEAMLAAGDITGDAAWHGRALRVARRVAAEARACDWRIPEHYDAMWTADLDLNRDRPDDPFKPFGATVGHGFEWARLLLHLEASTGADDLLEPARALFDRAAADGWAVDGHDGFVYTTDWTGAPVVRDRMHWVVAEATATAAALHARTGDDAYARSYATWWDHAAAAFRDLDRGSWHHQLDPSGVPTDTVWPGKPDLYHAVQATLLPVAPLAPGLAVAARDGLIPSDPTGENANANANANANA
AK018_03731909scrK_1COG0524FructokinaseATGACCGCGGACATGACCGTGACGGTGATCGGCGAGGCGCTCGTCGACGTCGTGCACCGCGCCGACGGCGCCGTCGAGGAGCTGCCCGGCGGCAGCCCCGCCAACGTGGCCCTCACGCTCGGCCGGCTGGGGAGGTCGCCCCGCCTGGTCACCTGCCTGGCCGACGACGCCCGCGGCCGCCGGGTGCAGACCTGGTTGGAGGCCTCGGACGTCGAGGTGGACACCGCACCCCTGCCGCGCACGTCGACGGCGCTCGCGCGACTCGACGCCGGTGGTGCCGCCACCTACGAGTTCGACCTGGCCTGGGACCTCGGTCAGATCGCCGTCCCGCCCGGACAGGTGCTGCACATCGGGTCGATCGCCGCCGTGCTGGAACCAGGCGGAACCGCGGTGCTGCGCGCGGTGCGTGCGGCGTCGGGCCTGGTCACCTACGACCCGAACGTGCGCCCCACCATCACCCCCGACCGGGAGGCCACCCGTGCTCGCGTGGAGGAGATCGTCGCCGCTGCGGACGTCGTCAAGGTCAGCGACGAGGACCTGGCCTGGCTGGTGCCGGGAATCGATCCGGTCGAGACCGCCTCGCGCTGGTCGCGGTCCGGACCCGCGCTGGTCGTCATGACCGCCGGAGGTGAGGGTTCGTGCCTGCTGCGCCACGGCGTGCAGGTCGCCCACGTGCCGGTGCCGTCCGTGACCGTCGTCGACACCGTCGGGGCAGGGGACACGTACATGGGCGGCCTGATCGACGGCCTGCTGACCCTCGAGCTCGACGACGCCGAACGGATCGCGGACGCCGCCGCCGACCGACTGGAGGCCGCCTGCGCCCACGCCGCCCGTGCCGCCGCGGTCACCGTCTCGCGGCCCGGAGCCGACCCGCCGCGCCGGGACGAGCTCGGCCGACCGCACATCTGAMTADMTVTVIGEALVDVVHRADGAVEELPGGSPANVALTLGRLGRSPRLVTCLADDARGRRVQTWLEASDVEVDTAPLPRTSTALARLDAGGAATYEFDLAWDLGQIAVPPGQVLHIGSIAAVLEPGGTAVLRAVRAASGLVTYDPNVRPTITPDREATRARVEEIVAAADVVKVSDEDLAWLVPGIDPVETASRWSRSGPALVVMTAGGEGSCLLRHGVQVAHVPVPSVTVVDTVGAGDTYMGGLIDGLLTLELDDAERIADAAADRLEAACAHAARAAAVTVSRPGADPPRRDELGRPHIPGPT0017625_653DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847NANA
AK018_03733831hypothetical proteinGTGTCGGTCCCGGTGCTCGCCCCGGGCGAGCGCGACCTGCGGGTCCTGCACGTCTCCGACCTGCACCTCACGCCCGGCCAGCACCGCAAGATCGAGTGGGTACGGTCTCTGGCCGCCCTGGAGCCCGACCTCGTGATCGACACCGGGGACAACCTCGCGCACCACGACGCCGTCGACCCGCTGCTCCACGCCCTGGAGCCGCTGCTCGACCGGCCCGGTGCCTTCGTCCTCGGGTCCAACGACTACTACTCCCCCACGTTCAAGAACCCGGCGCGCTACCTGCTCCCGGACGCGCGGGGGCCGGTGCGGCACACCCCTGACCTGCCGTGGGAGCGGATGGTCACGGCGATGCGCGAGGCCGGCTGGGCCGACCTCACCAACCGCCGGGACGCCGTCGACGTCCAGGGGCGTCGCATCGCCCTGACCGGTGTGGACGACCCGCACCTCGACCGGGACGTCTTCCCGGAGCCGACGGCCGGGTCGGACGACGAGCCGGCCACGCTGCGACTGGGCGTCACGCACGCCCCGTACCGGCGTGTGCTGGACCAGATGCACGCCGACGGCGCGGACACGATCATCGCCGGCCACACGCACGGCGGCCAGCTCTGCCTGCCGTTCTACGGGTCGCTGGTCACCAACTGCGACGTCGACCGCGGACGTGCCAAGGGTCTGCACGGCTGGCCCGGCCCGCGGCCCGACGCACCAGGCGGCGAGGACTCGACCTGGCTGCACGTCTCGGCCGGTGCCGGGACCTCGCCGTACGCCCCGGTGCGGTTCGCGTGCCGCCCGGAAGCGACCTTGATCACGTTCACGGCACGGGGCCGGATCTGAMSVPVLAPGERDLRVLHVSDLHLTPGQHRKIEWVRSLAALEPDLVIDTGDNLAHHDAVDPLLHALEPLLDRPGAFVLGSNDYYSPTFKNPARYLLPDARGPVRHTPDLPWERMVTAMREAGWADLTNRRDAVDVQGRRIALTGVDDPHLDRDVFPEPTAGSDDEPATLRLGVTHAPYRRVLDQMHADGADTIIAGHTHGGQLCLPFYGSLVTNCDVDRGRAKGLHGWPGPRPDAPGGEDSTWLHVSAGAGTSPYAPVRFACRPEATLITFTARGRIPGPT0022365_3831DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022365-lpxG-K07098NANA
AK018_037342388ponA1_1COG0744Penicillin-binding protein 1AATGGCGGCTCCTGACTCTCGCGACTCCCGTCGCATCACGCGGACGATCCCGGCCACGCAGATGGTCGCGCTGCTGCTCGCCTTCCTCCTGGCGGCGGGGACCGGCGGCGTGCTGGCGGCGGGCTTCGTGATCCCGGCGGTCGCCGGCGTCAACGCGATGGCCGACAGCACCGTCGAGATCTACGACGACGTGCCGGCCGAGCTCGAGCCGAGGCCGCTGTCCCAGCAGTCCCGGATCTACGCCTCCAACGGCAGGCTTCTGGCGACGTTCTACTACCAGAACCGCATCGTGAAGCCGCTCGACGAGATCTCCGAGCACATGCAGAACGCCGTGATCGCCATCGAGGACGAGCGCTTCTACGAGCACAACGGCGTCGACGCGCAGGGCATCACGCGCGCCGTGGTGAACAACCTCACCAGTGACGACACGCAGGGCGCCTCGACCCTCACCCAGCAGTACGTCAAGAACATGCTCATCGAGGCGGCGCTGCAGGACGACGACCAGTTCGGCGTCATCGCCGCCCACGAGTCGACGATCGACCGCAAGCTCCGCGAGGCGAAGATGGCGATCGCCCTCGAGGAGCGCATGTCCAAGGACGAGATCCTGCAGGGGTACCTCAACGTCGCCCAGTTCGCGGCCGCGAGCGTCTACGGCGTGGAGGCCGCGGCGCGCTACTACTTCGACAAGTCGGCCGCCGACCTGAACGTCGTCCAGGCGGCGACGATCGCCGGGATCACCAAGGCGCCCGGTCTGTTCGACCCCACGCGGAACCCCGAGCTGGCCCAGGAGCGCCGCGACCTGGTCATCCAGAACATGTACTCCCTCGGGTACATCTCGCTGGACCAGCGCGACAAGGCGCTCGACCGCCCCATCGAGAAGACCCTGAACGTCACGCCGTCCCCGGCCGGCTGCCAGACCGCGAACAACTCGGCCTTCTTCTGCGACTACGTCATCAAGGAGCTGCTGCTCGACGAGGCCTTCGGGGAGACCCGGGCCGACCGTCAGGAGCTGCTCTACCGCGGCGGACTGGACATCCACACCACGCTGGACATGAAGAAGCAGCAGGCGGCCTTCAAGACCATCAAGCAGGCCGTGCCCGCCGACGACGGGAGCAACCTCGAGGCGTCCATCGTCACCGTCGAACCGGGAACCGGCAAGATCCTCACGATGGCGCAGAACGTGCCCTACACGGGGACGCGAGCCGCCGGGAACTCGGGCCGCGACACCACGGTGAACTACAACGCCGACTACGTCCACGGCGCCTCCGGTGGCTTCCAGCCGGGGTCGAACTTCAAGCCCGTGGTGCTCTCCCAGTGGCTCAAGGAGGGAAACACGCTGCTCAACGAGGTGAACGCCACGAAGACGGAGCGCAGGGTGGGTGACTTCAACTCGCCCTGCGTCGGCGACCTCGGGAACGACACCTGGGCACCGGCCAACGCCGAGGGCGTGCTGAGCGGCAACATCCCTGTGCTCGAGGCGACCTACCTGTCGGTGAACACGGCCTACGCGTCGATGGGCTACGAGCTCGACCTGTGCGGACTGCGCGACACGGCGTGGAAGATGGGCTACCGGCCGACCAGCTCGTCCTTCGGGGACGACACGGGACCCTTGAGCCGCCCGGCGACGAAGAGCGACATCGACATCTTCGCGCCGATGATCGTCGGCACCCAGGAGACCTCCCCGATGAATCTCGCCGCCATGTACGCGACCTTCGCCTCCGGCGGCACCTACTGCACGCCCGTCGCCATCACCGGGGTCACCGGTCCGCGGGGCGAGGAGTACGAGGTCGCGCAGGCGGACTGCGATCCGAACGCTCTGCCGAGCAACATCGCCAACACGGTGGTGTACGCGATGGAGAACGTGTTCACGCGCGGCACGGCCTACCGTCTCGGCGGCCTCGCCGACGGGCGGCCCGTCGCCGGCAAGACCGGAACCTCGCAGCTGTCGACGCAGACGTGGTTCACCGGCTTCACGCCCCAGCTCTCCACCTCGGTGTGGGTCGGCACGGTCGAGAACTCGAAGGAAGACCACACGAACGGCATGTTCGTCAACGGCGACTGGTTCGACCCGTTGTACGGCTCCTCCGTCGCGGCACCGGCCTGGAAGACCTATATGGACCAGGCCATCGAGGGCATGCCGGTGGAGGACTTCGGACCCCCGGACCAGTCCATGATCGGCACGCCGCCGGCCCCGCCCGCGCCGCCGGAGTCGTCCGACGACGACTCCGAGGACGACAGCGAGGGCTCCTCGTCCGACTCCGGCAACAGCGAGGGCGGCGACTCCTCGGGCGGGGGCGACTCCTCCGGCGGTGGGGACGGCCCGGGCAACGGTGGCGGCCAGGGCGGCGGCAACGGCAACGGTCAGGACAGCGACGGGGGCGACGACTGAMAAPDSRDSRRITRTIPATQMVALLLAFLLAAGTGGVLAAGFVIPAVAGVNAMADSTVEIYDDVPAELEPRPLSQQSRIYASNGRLLATFYYQNRIVKPLDEISEHMQNAVIAIEDERFYEHNGVDAQGITRAVVNNLTSDDTQGASTLTQQYVKNMLIEAALQDDDQFGVIAAHESTIDRKLREAKMAIALEERMSKDEILQGYLNVAQFAAASVYGVEAAARYYFDKSAADLNVVQAATIAGITKAPGLFDPTRNPELAQERRDLVIQNMYSLGYISLDQRDKALDRPIEKTLNVTPSPAGCQTANNSAFFCDYVIKELLLDEAFGETRADRQELLYRGGLDIHTTLDMKKQQAAFKTIKQAVPADDGSNLEASIVTVEPGTGKILTMAQNVPYTGTRAAGNSGRDTTVNYNADYVHGASGGFQPGSNFKPVVLSQWLKEGNTLLNEVNATKTERRVGDFNSPCVGDLGNDTWAPANAEGVLSGNIPVLEATYLSVNTAYASMGYELDLCGLRDTAWKMGYRPTSSSFGDDTGPLSRPATKSDIDIFAPMIVGTQETSPMNLAAMYATFASGGTYCTPVAITGVTGPRGEEYEVAQADCDPNALPSNIANTVVYAMENVFTRGTAYRLGGLADGRPVAGKTGTSQLSTQTWFTGFTPQLSTSVWVGTVENSKEDHTNGMFVNGDWFDPLYGSSVAAPAWKTYMDQAIEGMPVEDFGPPDQSMIGTPPAPPAPPESSDDDSEDDSEGSSSDSGNSEGGDSSGGGDSSGGGDGPGNGGGQGGGNGNGQDSDGGDDNANANANANA
AK018_03735162hypothetical proteinATGGCTACCACGTGGGAGTACGCGACCATCCCCCTGTTGATCCACAACACCAAGGCGATCCTCGATCAGTGGGGCGCGGACGGCTGGGAGCTGGTCCAGGTCGTGCCGGGTCCCGACAGCGCGAACCTCGTCGCCTACCTCAAGCGCCCGTCGGGTGAGTGAMATTWEYATIPLLIHNTKAILDQWGADGWELVQVVPGPDSANLVAYLKRPSGENANANANANA
AK018_03736468hypothetical proteinGTGAGCATCGACGACCGCCTGGCCGAGCTGGGCCTCGCCCTGCCCGACGTCGCCGCACCCGTCGCGGCCTACCAGCCTGCGGTGCGCTCGGGGCAGTACGTCTACACGGCGGGCCAGCTGCCCTTCGTGGACGGCACCCTCGCGACCGTCGGCAAGGTCGGCACCGAGGACGGGCTCGTCGACCAGGCGACGGCTGCCGACCTGGCCGCGACCTGCGCCCTGAACGCGCTGGCCGCGGTGCGCAGCGTCACGGGCACGCTCGACAGGGTCCGCATCGTCAAGGTCACCGGCTTCGTGGCCAGCGACCCGTCCTTCACGGGGCAGCCCGCCGTCCTCAACGGCGCCAGCGAGCTCCTGGGCCGGATCTTCGGCGACGCGGGCACCCACGCACGCTCCGCCGTCGGCGTCGCGGTGCTGCCGCTGGACGCGCCGGTCGAGGTCGAGCTGATCGCCGAGCTCACCGACTGAMSIDDRLAELGLALPDVAAPVAAYQPAVRSGQYVYTAGQLPFVDGTLATVGKVGTEDGLVDQATAADLAATCALNALAAVRSVTGTLDRVRIVKVTGFVASDPSFTGQPAVLNGASELLGRIFGDAGTHARSAVGVAVLPLDAPVEVELIAELTDNANANANANA
AK018_03737678crp_1COG0664CRP-like cAMP-activated global transcriptional regulatorGTGGACGACACCGTCGTGCTCTCCGCCCCCCTGTTCGCCGACATGGACAGCGAGGAGTCGAAGGCGCTCTTCGAGTCGATGATCCCCGTCGAGCTGGGCCGTGGGGACGTCCTGTTCCGCGAGGGCGAACCGGGCGACCGGCTGTACGTGATCGCGCAGGGCAAGATCAAGCTGGGGCGCCGCTCCAGCGACGGTCGGGAGAACCTGCTGTCGATCCTCGGCCCGGGCGAGATGTTCGGCGAGCTGTCCCTGTTCGACCCGGGCCCCCGCACGGCCACGGCCTCGTCCGTCTCGGACGCGCTGTGCTACGAGCTGCGCCACCAGGCCCTCGTGCAGTGGGTCGCCGCGCACCCGAACGTCGCCACGACGCTGCTCGGCGCGCTCGCCCGGCGCCTGCGCCGCACGAACGAGACGCTGGCCGACCTCGTGTTCTCGGACGTCCCCGGCCGCGTCGCCAAGGCCCTGCTCGACCTCTCCCAGCGCTTCGGCGAGCCGAACGACGAGGGCGTCCGCGTCGCGCACGACCTGACCCAGGAGGAGCTCGCCCAGCTCGTCGGCGCCTCGCGCGAGACGGTCAACAAGGCGCTGGCGGACTTCGCCACGCGCGGCTGGGTGCGGCGCGAGGGCCGCGCCGTCGTGCTCCTCGACATGGACCGGCTGGAGCGCCGCGCTCGCTGAMDDTVVLSAPLFADMDSEESKALFESMIPVELGRGDVLFREGEPGDRLYVIAQGKIKLGRRSSDGRENLLSILGPGEMFGELSLFDPGPRTATASSVSDALCYELRHQALVQWVAAHPNVATTLLGALARRLRRTNETLADLVFSDVPGRVAKALLDLSQRFGEPNDEGVRVAHDLTQEELAQLVGASRETVNKALADFATRGWVRREGRAVVLLDMDRLERRARPGPT0015075_2948DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0015075-clp|crp-K10914NANA
AK018_03738729pdg_1Ultraviolet N-glycosylase/AP lyaseATGGTCGAGACGTCGCAGCAGCCTACCCCCACCGGGGAGTCCCGTCTGGCCCTCGTCCGGCGCGCACGGCGCATCGACCGCGTCCTGGCCGAGACGTATCCCGACGCGCGGGCCGAGCTCGACTTCACCACGCCCTTCGAGCTGCTCGTGGCGACCGTGCTCTCCGCCCAGACCACCGACGTGCGGGTCAACGCCACGACGCCGACCCTGTTCGCCCGCTACCCGGACGCCGCCGCGCTCGCCGCGGCAGACCCGGCGGAGGTGGAGGAGATCCTGCGGCCGCTCGGGTTCTTCCGGGCCAAGACGCGCTCGGCCGTCGGCCTGGCGCAGGCGCTGGTGGAGCGGCACGACGGCGAGGTGCCGCGTCGGCTGACGGACCTGGTCGCGCTGCCGGGCGTCGGCCGCAAGACCGCGAACGTCGTGCTCGGCAACGCCTTCGGCGTCCCCGGCATCACCGTGGACACCCACTTCGGACGGCTCGCGCGGCGGCTCGGACTCACCCGGGAGGAGGACCCGGTCAAGGTCGAGCACGCCGTCGGCGAGCTCTTCGAGCGCAAGGACTGGGTGATGCTCAGCCATCACCTCGTCTGGCACGGTCGCCGGGTCTGCCACGCGCGTCGTCCGGCCTGCGGCGCGTGCCCGGTGGCGCGCTGGTGCCCGTCGAACGGCGTCGGCGAGACCGACCCGGTGGCCGCGGCGAAGCTGCTGCGCCCCGGCCCGCGCGGCTGAMVETSQQPTPTGESRLALVRRARRIDRVLAETYPDARAELDFTTPFELLVATVLSAQTTDVRVNATTPTLFARYPDAAALAAADPAEVEEILRPLGFFRAKTRSAVGLAQALVERHDGEVPRRLTDLVALPGVGRKTANVVLGNAFGVPGITVDTHFGRLARRLGLTREEDPVKVEHAVGELFERKDWVMLSHHLVWHGRRVCHARRPACGACPVARWCPSNGVGETDPVAAAKLLRPGPRGPGPT0013735_1565DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013735-nth-K10773NANA
AK018_03739927ephA_1Epoxide hydrolase AATGTCCGACGCCGCCGACTACTCCAGCGCCCTGGTCGACGGACCGTGGCGGCACGAGTTCGTCGCCGCCAACGGCTCCCGCTTCCACGTCGCTTCCGCCGGCCCGCGGCCCACCCACGGCGACCGTGCACCGCTCGTGGTGCTGATGCACGGCTTCCCGCAGTTCTGGTGGGCCTGGCGCCACCAGATCTCCGCCCTGGCCGACGCCGGCGTCCAGGTCGCCGCACTCGACCTGCGCGGCGTGGCTGCCTCCGACAAGCCGCCGTCGGGGCGCGACGTCCCGACGCGCACCCGGGACGTCGCCGGCGTGATCCGCTCCCTCGGCCACGACCGGGCCGTCGTCGTCGGCGCGGGCACCGGTGGCGCGCTCGCCTGGGCGATGGCCGCGCTCCAGCCGGGGGTGACCGCGGGCGTGGCAGCGCTGGGCGCACCGCACCCGGCGCGGCTGCACGTGCCCGGCCGGGGCATCCTCACCCCGGCCGCCCGACGACTGTTCGTCACGGCCCAGCTGCCCGGCGTGCTCGAACGGCGGCTGCAGGACGGCGACGGCGTGCCCAGCCTGCTCGACGCGGGGTCCGACCGGCCGCTCGAGCCCGAGGCCGTCGCCCGCTACCGCGAGGTGCTGCGCATACCCTTCGCGGCACACAGCGCCGTCGACACGCTGCGCTGGCTGTCCCGGACGTCGGCGCACCCGGCGGGCCGGCGGTACCTGGCCGCGCTCCGGCGCCGGATCGACGTGCCCGTGCTGCAGCTGCACGGGGCGGCCGACGGGTTCCTCCGGCGCGAGACCGCCGACCTGGACGGCGCCGCCGTGGCGCGCGACTTCCGGTTCGAGGTCGTCGACGACGCCGGGCACTTCCTGGCCGAGGAGGCACCCGAGGCCGTGACGGGTCTGCTGCTCGACTGGCTGGCCGAGCAGCAGCGCTGAMSDAADYSSALVDGPWRHEFVAANGSRFHVASAGPRPTHGDRAPLVVLMHGFPQFWWAWRHQISALADAGVQVAALDLRGVAASDKPPSGRDVPTRTRDVAGVIRSLGHDRAVVVGAGTGGALAWAMAALQPGVTAGVAALGAPHPARLHVPGRGILTPAARRLFVTAQLPGVLERRLQDGDGVPSLLDAGSDRPLEPEAVARYREVLRIPFAAHSAVDTLRWLSRTSAHPAGRRYLAALRRRIDVPVLQLHGAADGFLRRETADLDGAAVARDFRFEVVDDAGHFLAEEAPEAVTGLLLDWLAEQQRNANANANANA
AK018_03740774hypothetical proteinGTGGCCGAACTGTTGATCCTGACGCCGGCGACCGGCGGTTCGGTCGAGGTCCTGCCCGCACTGGGTCTGCTCTCGCACAAGGTGCGCGTGCTGCCCATGGAGCCCTCGGCACTCGTGGACGCCCCCGACTCGGACGTCGTGCTGCTGGACGCCCGCCGCGACCTCGTCGCCGCGCGGACCACCTGCCGCCTGCTGCACGCCACAGGTCTGACGGTGCCGCTGGTGCTCATCCTCACCGAGGGCGGTCTGACCGTCGTCAACCACGAGTGGGGCGCCGACGACCTGCTGCTCGAGTCCGCCTCCCCCGCGGAGGTCGAGGCACGGCTGCGGCTCGTCGTCGAGCGGTCCGCGCACGGCCCGACCGAGGACTCGCCCCAGGAGATCTCCGCCGGCGAGCTGGCCATCGACGCGGGCGGGTACACGGCACGCCTGCGCGGCCGTCCGATCGACCTGACCTACAAGGAGTTCGAGCTCCTCAAGTACCTCGTGCAGCACCCGGGCCGGGTCTTCACCCGCGCCCAGCTCCTGCAGGAGGTCTGGGGCTACGACTACTACGGCGGCACCCGGACGGTCGACGTCCACGTCCGGCGGCTGCGCGCCAAGCTCGGTCCCGAGCACGAGCAGCTCATCGGCACGGTGCGCAACGTCGGCTACCGGTTCGACCCGCCCAAGGAGCCCCGCGAGGAACCCGCCGCGTCCACGGCCGGCGAGTCCTCCGGCGGCGGGACGGACCGCGACACCCCCGGCTCGCCGCAGGTGTCCTCCGGCGGCTGAMAELLILTPATGGSVEVLPALGLLSHKVRVLPMEPSALVDAPDSDVVLLDARRDLVAARTTCRLLHATGLTVPLVLILTEGGLTVVNHEWGADDLLLESASPAEVEARLRLVVERSAHGPTEDSPQEISAGELAIDAGGYTARLRGRPIDLTYKEFELLKYLVQHPGRVFTRAQLLQEVWGYDYYGGTRTVDVHVRRLRAKLGPEHEQLIGTVRNVGYRFDPPKEPREEPAASTAGESSGGGTDRDTPGSPQVSSGGPGPT0014763_19DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ENVELOPE_REMODELLING_REGULATIONCE-ENVELOPE_REMODELLING_REGULATION_FACTOR,PGPT0014763-walR-NANANA
AK018_03741735hypothetical proteinGTGACCGTGACCTCCCGTGCCGTGACGACGGCCGTGCTCGCCACGCTCGTGGCGGCGGCGGCCTACCTGGGGCCCTGGTGGACGGTCGGTGCGTGCGCGCTGCTCGTCGTGCTGCTGGCGGTCGGCTGGGCACCGCTGCTGCGGCTGCCGGCCGACGGCGCGACATCGACCGTGGTGCTGCTGGCGGGGGCCGGAGGCCTCGCCGTGACGTGGTTCACCGAGGGCGAGCCCGTGCTGCGCAACCTGCCGGCCGTGATCGCGCTGTCCCTGGTGCTGGCGTTCGTGGCGCAGATGCTCCGCAGCGGCGGGCGGCCGCGCCTGGTCGAGTCCGTCAGCGGGATGACCGCCGGCATCGTGGTCTCCGTCGCGGCCGCCGGGTGGCTGGCCACGGCGGGCACCGACGCGGGCGCCGGGCTGGTGGTGACCAGTGCCGTCGGGCTGGCCGTCGCGTCGGCCGTGGCGGCCCTGCCCGTCGCCGGTGGCTGGATCGGGTCGCTGCTCGCCGTCGCGCTGGGCGGGGCGGCCGGTGCCGGCACCGCGTCGGCGCTGCGCGAGGTGGAGCCGGTCCACGGGCTCGTGGTCGGGCTGGTGGCCGGTCTGGTCTCGGCGGCGCTGCGGCTGCTGTTCGAGCGCCAGCCTGCCCTGCAGCGGTGGCGGGCCGGCGTGGCGGCCGCTGCTGCGCCCGTGACGATCACCGGGATGCTGGTGTTCGTCGTGGGCCGCACGCTGCTGTAGMTVTSRAVTTAVLATLVAAAAYLGPWWTVGACALLVVLLAVGWAPLLRLPADGATSTVVLLAGAGGLAVTWFTEGEPVLRNLPAVIALSLVLAFVAQMLRSGGRPRLVESVSGMTAGIVVSVAAAGWLATAGTDAGAGLVVTSAVGLAVASAVAALPVAGGWIGSLLAVALGGAAGAGTASALREVEPVHGLVVGLVAGLVSAALRLLFERQPALQRWRAGVAAAAAPVTITGMLVFVVGRTLLNANANANANA
AK018_03742663hypothetical proteinATGACCGACGCCCCGACCCGGACCTGGAACGACCTGGTCATCCCGGCACCCGGCACGTACGACCTCGACGAGGGGCACAAGCGCATCGGCTTCCAGGCGATGCACATGATGGTCAGCCCCGTGCGCGGGGAGTTCAGCCGGGGCACCGCGCGCATCCAGGTCGCCGAGGACCCGCTGGCGTCGTCCGTCGGCGCGATCATCGACACGACGTCGATCACGACCCACAACGAGGACCGCGACACGCACCTGCGCAGCGCCGACTTCCTGGACGTGGAGAACCACCCGACGATGGAGTTCCGCTCCACCGGGATCGAGTGGCGCGCCGAGCCGGACCCGATCTTCTCCTGGGCGGCCCTCAAGGGGCGCTCCCCCGGGCGCAGCGCCCAGGTCGGCCCGGCCGCCGACCGCACCAGCGCGAAGTTCCTGCTGCACGGCGAGCTGACGATCCGCGGGATCACCCACCCGATCACGCTCGACGCGGAGTTCGGCGGCGCCGGCGCGGACCCGTTCGGCAACAACATCTTCGGGTTCAGCGCGACCGCGGACTTCGAGCGCGAGAAGTACGGGCTGCTGTGGAACGTCGCGCTGGAGACCGGCGGCGTGCTCGTGGCCAAGACGGTCCGGATCGAGCTGGCCGGCGAGGCGGTGCGCAAGACCTCGTGAMTDAPTRTWNDLVIPAPGTYDLDEGHKRIGFQAMHMMVSPVRGEFSRGTARIQVAEDPLASSVGAIIDTTSITTHNEDRDTHLRSADFLDVENHPTMEFRSTGIEWRAEPDPIFSWAALKGRSPGRSAQVGPAADRTSAKFLLHGELTIRGITHPITLDAEFGGAGADPFGNNIFGFSATADFEREKYGLLWNVALETGGVLVAKTVRIELAGEAVRKTSNANANANANA
AK018_03743462hypothetical proteinATGACCGCACAGTGGACAGCCCTCGTCGCGCTGCTCGTGGTGACGACCGTGCTGGGGCTGGCGTGGCGCTCGGCGCAAGGTCGGGTGCGCGCCACGGCACCGTCCGGCGCCGACGCCGCCGACGCGCGCTGGACCGACGAGCTCGCCGCCCAGGGGGTCGCCCCCGGTGAGCGCGTGACGTTCCTGCAGCTCTCGGCGGAGGTCTGCTCGGCCTGCCGGTCCACCGCCCGGACGCTCTCGTCGTTGGCCGCCGAGGAGCCGGGCGTCGTGCACCTCGAGATCGACGTCGACGACCGTCCCGACCTGGTGCGTCGCGCCCAGGTGCACCGCACCCCCACCGTGCTGGTGCTGGACGGCACCGGTGCCGAGGTCGCGCGCGCCTCGGGCGGCATGACGCCGGCGCGCGCCCGCGACGCGCTCGGTAGCGTGGACGCCGCACCCGTCCCCGGGAGGACCGCATGAMTAQWTALVALLVVTTVLGLAWRSAQGRVRATAPSGADAADARWTDELAAQGVAPGERVTFLQLSAEVCSACRSTARTLSSLAAEEPGVVHLEIDVDDRPDLVRRAQVHRTPTVLVLDGTGAEVARASGGMTPARARDALGSVDAAPVPGRTANANANANANA
AK018_03744453hypothetical proteinATGAGCCTCGAGACCTCGGCCCCGCCACGGATCGACCCGCGTGGCCCTCGCGTGGGTGCGGGCATCACCGCGGTGCTGCTGGCCGTCGTCGTGCTCCTGGGCCCGACGACGTCGGCGCTCGTGCTGCTCACCGTCGTCGCGCTGAGCTTCGTGCCCGGCGCGGTGCGCGGTCCGCAGGCCACCTGGCAGGGCTGGGTCTTCCGGACGCTGATCCGTCCGCGGCTGGCCCCGCCCGTGGAGCTGGAGGACGTCCGTCCGCCCCGCTTCGCCCAGACGGTCGGGCTCGTGGTGACCGGGGTCGGCGTCGTGGCCGGCTGGGCCGGGGCGCTCGCCGTCCTGCCGTGGGCCGCCGGGCTCGCGTTCGTCGCCGCCGCGCTCAACGCCACCGTCGGGCTGTGCCTGGGCTGCGAGCTCTACCTGCTGGGACGGCGGCTGCGCCGCGCCCCCTCCTGAMSLETSAPPRIDPRGPRVGAGITAVLLAVVVLLGPTTSALVLLTVVALSFVPGAVRGPQATWQGWVFRTLIRPRLAPPVELEDVRPPRFAQTVGLVVTGVGVVAGWAGALAVLPWAAGLAFVAAALNATVGLCLGCELYLLGRRLRRAPSNANANANANA
AK018_03745378hypothetical proteinATGACCGAGACCACAGCGCAGCGTTCCCTCGTCGTCAAGACGACGTCCGGGACGGATCGCCCGGAAGCCGCGAACCAGGCCCTGACGGTGGCCGCCGCGGCCGCCGCCGCCGGGGTGGACGTGTCCCTCTGGCTCACCGGCGAGGCGGCGTGGTTCGGGGTGCCGGGCCGTGCCGACGAGCTGGCGCTCGAGCACGCGGCCCCGGCCGCCGAGCTGCTGGAGGCGGTGCTGGCGACGGGGACCGTGACCGTGTGCTCCCAGTGCGCGGCCCGACGGGACATCGGACCGGACGACGTCCTGGACGGCGTGCGCGTCGCGGGCGCGCCCGTGTTCGTCGAGGAGTCGCTGCGCCCGGGTGCCCAGGCGCTCGTCTACTGAMTETTAQRSLVVKTTSGTDRPEAANQALTVAAAAAAAGVDVSLWLTGEAAWFGVPGRADELALEHAAPAAELLEAVLATGTVTVCSQCAARRDIGPDDVLDGVRVAGAPVFVEESLRPGAQALVYNANANANANA
AK018_03746114hypothetical proteinATGTCGATCCACGCGCTCGAGATCTTCTTCACCAGCCTGCTGGTGGTCACCGTCGGTGTGATCACCTGGTTCGCGGCCTACGTCGTCTACAAGCTCTTCCACGGTCAGCGCTGAMSIHALEIFFTSLLVVTVGVITWFAAYVVYKLFHGQRNANANANANA
AK018_03747564hypothetical proteinATGCCGTTCACCTTCCCCGAGGGGCTCGCGCCCGAGGTGTACCCGCTGGCCTGGCTGGTCGGCCGGTGGACCGGGGGCGGTGTCATCAAGTACGAGGGCATCGAGGAGACGGAGTTCCGCCAGGAGCTCGTCTTCGACCACGACGGCGGACCGTACCTGCGGTTCGAGTCGACGCTGTCCGTCCGCTCCGGCGCCGCCGCGGACGGTGAGACCACCGACGGTCAGGTCGGCGAGGGCGCCGCCTTCGACACCGTGTGGTCCACCGAGACCGGCTACTGGCGCGTCGCCTCGGAGCGCCCCGAGGGGCTGGGCGAGAACCAGCACCCCCTCGAGGTGCTCGTCACCGACGCCTCGGGGCGGCTCTCGCTCTTCCTCGGCGTCGTCGGCGACGGCCGCGTGGACCTGGCCACGGACTTCGTCGCCCGCACCTCGACGGCCGCCGAGGTCACCGCCGCCAAGCGCCTCTACGGCAACGTCGAGGGTCGCCTGCTCTGGGTCGAGGAGCTGGCCGCCTTCGGCCACCCGATGGGGTCCTACGCGTCCGGAGAGCTCGACCGCGCATGAMPFTFPEGLAPEVYPLAWLVGRWTGGGVIKYEGIEETEFRQELVFDHDGGPYLRFESTLSVRSGAAADGETTDGQVGEGAAFDTVWSTETGYWRVASERPEGLGENQHPLEVLVTDASGRLSLFLGVVGDGRVDLATDFVARTSTAAEVTAAKRLYGNVEGRLLWVEELAAFGHPMGSYASGELDRANANANANANA
AK018_037481170gcvT_2AminomethyltransferaseATGACCTACCGTAGCCCCCTGCTGAACCGCACCGGCGCCGTCGCGGCGTCCGGACCCGACGCCGGCGTCGCCTGGCACTACGGCGACCCGGTGGCCGAGCAGCGCGCCCTGGCGCGCGGCGGGGCCGTCGTCGACCAGTCGCACCTCGGCGTGGTGCGGCTGACCGGACCCGACCGCCTGAGCTGGCTGCACTCGATCACCTCGCAGGACGTCGAGCACCTGGCCCCGCGCACGTCCACCGAGCTGTTCGTGCTCTCCCCCCAGGGGCGCACGGAGCACGCCGTGGCGCTCGTCGACGACGGCACGTCGACGTGGTTCATCACCGAGCGCGACCACGTCGAGCCCCTGGTGGCGTGGCTCGAGCGGATGAAGTTCATGATGCGGGTCGAGATCGCCGACGTGACCGACTCCTACGCCGCGATCGGGGAGCCCGTCGACGCCGAGGGCACCGAGACCGAGCCGGTGACCTGGCGCGACGCCTGGCCCGAGGTCGTGGGCGGCGGCACCCGCTACGGCCCGCCCGCCGCCGAGCACCCCGGTGCCGACCGTGACTGGCGTCTGGTCCTCGTCCCGCGCGAGCAGCTCGCCGACGCCGTGGCCGAGCGGGAGGCCGCGGGCTGGCGCCTGGCCGGCACCTGGGCCACCGAGGCGCTGCGCGTGGAGGCCTGGCGGCCGCGGCTCGCCCGCGAGGTCGACGACCGCAGTGTCCCGCACGAGCTCGACTGGCTGCGCACCGCCGTCCACCTGCACAAGGGCTGCTACCGCGGGCAGGAGACCGTCGCGCGGGTGCACAACCTCGGCCGTCCGCCGCGCCGCCTCGTCATGCTGCACCTCGACGGCTCCCAGCACGTGGTGCCCGAGGCCGGCGCCGAGGTCCGCCGTGACGGCCCGGACGGCAAGGTGGTCGGGCACGTCACGACCGTGGCCCGCCACCACGAGCTCGGCCCCGTGGCGCTCGCCGTGGTCAAGCGCAACGTCCCGACCGACGCCACGCTCGCCGTCGTCGGCCCGGTGGGTGCCGGCGAGGACGCCGAGCAGATCGCCGTCGCCGCCGCCCAGGAGGTCGTGGTGCCCGGCGAGGGCGTCTCCGCCGACCGGCCCGCCGCACGCGGGGAGACGATGCGCGGGCTGTCCCCGCGCGGTACCGACGGGGCCCAGAGCCTGCTGTGAMTYRSPLLNRTGAVAASGPDAGVAWHYGDPVAEQRALARGGAVVDQSHLGVVRLTGPDRLSWLHSITSQDVEHLAPRTSTELFVLSPQGRTEHAVALVDDGTSTWFITERDHVEPLVAWLERMKFMMRVEIADVTDSYAAIGEPVDAEGTETEPVTWRDAWPEVVGGGTRYGPPAAEHPGADRDWRLVLVPREQLADAVAEREAAGWRLAGTWATEALRVEAWRPRLAREVDDRSVPHELDWLRTAVHLHKGCYRGQETVARVHNLGRPPRRLVMLHLDGSQHVVPEAGAEVRRDGPDGKVVGHVTTVARHHELGPVALAVVKRNVPTDATLAVVGPVGAGEDAEQIAVAAAQEVVVPGEGVSADRPAARGETMRGLSPRGTDGAQSLLNANANANANA
AK018_037491137hypothetical proteinGTGAGGACCGGGCCGGACCCGCGCCGGGCGGGCGCCGCCGCCGGCACGGCCGTGCGGAGCCTGCTGCGGCGGATCCGGCTCCGCCAGGGCTGGGCGCGGGTGCGGACCGGGTTCTGGCCCATCGTGCAGGCGTCGCTGGCCGCCGGTGCCGCCTACGGGATCGCGCACCTCCTGCTCGGGCACGCCCAGCCCTTCTTCGCGGCCGTGGCCGCGTGGGTCTGTCTCGGCTACTCGTTCGACCGCGAGCTGCGCCGGGTGGCCGAGGTTGCCGTCGGCGTGGCCGTCGGCGTCGGGATGGGCGAGCTCGTCGTCGAGGTCATCGGCTCCGGCTGGTGGCAGCTCACGGTGGTGCTGCTCGTCTCCGCCCTGCTGGCGCGGTTCATCGACCGCGGGCCGCTGCTCGTCACGCAGGCGGGCGTCCAGGCGATCGTGGTGGTGGGGCTGCCGCTCGCCGTCGCCGCCGACGGCGCGTTCGGCCGCTGGACCGACGCCGTGATCGGCGGTCTGGTCGCCCTGGTGGTGACCGTCGTGACGCCGGGGGACCCGCGGCGCCGGCTGCGGGCCCAGGCGGCGAACGGGACCGGTGAGCTGGCCGAGACCCTCGAGTCGATCGCCCGCGGGCTGCGCGCCCGGGACCTGGACGAGCTGGGGGCGGCGCTCGTGCGCGGCCGGGCGAGCGAACCGGTGCTGGCCGAGTGGCGTGACGGGGCGCGACGGTCCGCCGAGATCGCCCAGGTGAGCGTCAACCGCGGCCACTGGGCCGAGTTCCGGCTGCTGGCCGAGCAGGCGGTGCTCCTGGACCGTGCGATGCGCAGCGTGCGGGTGCTGGCCCGGCGCGCCCCGACCGTCGTCGGGCCGGACGGCTCCTGGCCGGACGTGACCGCCGCCGCCGATCTCGTCGAGCGCTACGCCGGCGGGGTGCGGCTGCTGTCGACGGCGCTCGGGGGCGGAGGCTCGATGGAGGACGCCCGGGCGCTGCTGCTCGAGGTCGCCGCCGCCTCGGACCCCCGGTTGGTCGGCGGGGACGACCTCGGCGTGGCCTCGTTGGCGGTGCTGCTGCGGGCTCCCGTCGTCGACACCCTGGAGGCCGCCGGCGTGCCCGCGGGAGAGGCCCGGGCCGCGCTGCCCGAGCTCTGAMRTGPDPRRAGAAAGTAVRSLLRRIRLRQGWARVRTGFWPIVQASLAAGAAYGIAHLLLGHAQPFFAAVAAWVCLGYSFDRELRRVAEVAVGVAVGVGMGELVVEVIGSGWWQLTVVLLVSALLARFIDRGPLLVTQAGVQAIVVVGLPLAVAADGAFGRWTDAVIGGLVALVVTVVTPGDPRRRLRAQAANGTGELAETLESIARGLRARDLDELGAALVRGRASEPVLAEWRDGARRSAEIAQVSVNRGHWAEFRLLAEQAVLLDRAMRSVRVLARRAPTVVGPDGSWPDVTAAADLVERYAGGVRLLSTALGGGGSMEDARALLLEVAAASDPRLVGGDDLGVASLAVLLRAPVVDTLEAAGVPAGEARAALPELNANANANANA
AK018_037502007mdtD_2Putative multidrug resistance protein MdtDGTGACGACCGCACGGACCGACGACCCGCCGGTGCTGCCCTCGTCGAGGGTGTGGGCGGTCTTCGGCGGGCTCATGCTCGCGATGCTGCTCGCGGCGCTCGACCAGACGATCGTGGCCACCGCCCTGCCGACGATCGTCAGCGACCTCGGCGGCGCCGAGCACCTGTCCTGGGTGGTGACGGCCTACATGCTCGCCACCACCGCGACCACGGTGCTGTGGGGCAAGCTCGGCGACCTGTTCGGTCGCAAGGTGCTGTTCCTGGTGTGCATCGGCATCTTCCTCGGCGGATCCATGCTGTGCGGGACCTCGGGGTCGATGGGCGAGCTCATCGCCTGGCGCGCGCTGCAGGGCGTGGGCGGCGGCGGTCTGATGGTGCTGAGCCAGGCGATCATCGGCGACGTGGTCTCCCCGCGCGAGCGCGGGCGCTACCAGGGCCTGTTCGGCGCCGTGTTCGGCGTCGCCTCGGTGGCCGGCCCGCTGCTGGGCGGCTGGTTCGTCGACAACCTGTCGTGGCAGTGGGTGTTCTACGTCAACGTGCCGATCGGGGTCGTCGCGCTGGTCGTCGTGGCCGTCGTGCTGCCGCCCATCACGCCGCGGGCCCGGCCGCGGATCGACTACGCGGGCATCGTGCTGCTCGCCACGGTGTCGACGGCGATCGTGCTCGTCACCAGCCTGGGCGGGACCGCCTGGGGCTGGGGCTCGCCGCAGGTCCTGCTCACCGGCACGGTCGCCGTCGTCGGGATCGTCGCGTTCGTGCTCGTCGAGCGCCGCGCGGCCGAGCCCGTGCTGCCGCTGCGCCTGTTCACGAACCGGGTGTTCTCGGTCGCTGCCGTCGTCGGCTTCGTCGTCGGGTTCGCGATGTTCGGCGCCATCACCTACCTGCCGCTGTACCTGCAGACCGTCAAGGGCTCCTCCCCGACCGTGTCGGGTCTGGAGATGACCCCGATGATGCTCGGGATGCTGCTGACCTCGATCGGCTCCGGCCAGCTCATCACCCGCACCGGCCGGTACAAGGGGTTCCCGGTCGTGGGGACCGCCGTGACCGCCGTCGGGCTGTTCCTGCTGTCGCTGATGGACCGCACGACCACGACCACGCAGGCCGGCCTGAGCATGTTCGTGCTCGGCACGGGGCTCGGCATGGTCACGCAGGTGCTGGTCATCGCCGTGCAGAACGCCGTCGCCTACCGCGACCTCGGCACAGCCACGTCCGGTGCCACGTACTTCCGCACGATCGGGTCCGCCGTGGGCGTCGCCGTCTTCGGCACCGTCTTCGCCGACCGGCTCGCCGCGAACCTCACCGCCGCTCCCCCGGCGGGCGCCACCGGGCCGTGCGGGCCGGCGACCCTGGAGTCGTCGGTGGAGACCCTGGCCCAGTGCCCTCCGCCGGTGCAGGAGTGGTTCCTCGACGGCTACACCGACACCCTGCAGACGGTCTTCGCGTGGGCGGTGCCGGTCGCCGTCGTCGCCTTCGCCCTGTCCTGGCTGCTGCCGCAGGTCGAGCTGCGCACCGCCACCCGCGAGGCGGACCTGACGGACGTCGCCGGGCAGGCCGCGGGGGACGCCTTCGCGCTCCCGGCCGCGCGCACCTCGCTGGAGGAGCTGCGCATGATCCTGTGGCGGCGCGTGGGGGTGCGCGACCCGCTGCGGGTCTACGCCGTCACGGCCGCCGACGCCGACCTCTCGCCCGAGGAGGCGTGGATGATCACCCGCGTCTCCCTGAAGCGCCGCCGCGCGGTCTCCGTCATGGCCGAGCGCAGCGGAGCGTCCGTCGCCACGGTGCGGCACGTCGCCACGGGGCTCGCCGCCCGCGGCCTGCTGCGGTTCGACGGGGACTCGGTCGTGGCCACGGACCAGACGGACCTCGCGGCGGAGGTGCTGCGCGAGAGCGAGCGGCGCCGGCTGCAGCAGATCGTGCGCGAGTGGCACGACCACGAGCCGGACGTCGAGGAGATCGCCGCCGAGGTCGAGTCGATCCTGTTCCACGAGGCGGCCGACCCGGCCCCCTGAMTTARTDDPPVLPSSRVWAVFGGLMLAMLLAALDQTIVATALPTIVSDLGGAEHLSWVVTAYMLATTATTVLWGKLGDLFGRKVLFLVCIGIFLGGSMLCGTSGSMGELIAWRALQGVGGGGLMVLSQAIIGDVVSPRERGRYQGLFGAVFGVASVAGPLLGGWFVDNLSWQWVFYVNVPIGVVALVVVAVVLPPITPRARPRIDYAGIVLLATVSTAIVLVTSLGGTAWGWGSPQVLLTGTVAVVGIVAFVLVERRAAEPVLPLRLFTNRVFSVAAVVGFVVGFAMFGAITYLPLYLQTVKGSSPTVSGLEMTPMMLGMLLTSIGSGQLITRTGRYKGFPVVGTAVTAVGLFLLSLMDRTTTTTQAGLSMFVLGTGLGMVTQVLVIAVQNAVAYRDLGTATSGATYFRTIGSAVGVAVFGTVFADRLAANLTAAPPAGATGPCGPATLESSVETLAQCPPPVQEWFLDGYTDTLQTVFAWAVPVAVVAFALSWLLPQVELRTATREADLTDVAGQAAGDAFALPAARTSLEELRMILWRRVGVRDPLRVYAVTAADADLSPEEAWMITRVSLKRRRAVSVMAERSGASVATVRHVATGLAARGLLRFDGDSVVATDQTDLAAEVLRESERRRLQQIVREWHDHEPDVEEIAAEVESILFHEAADPAPNANANANANA
AK018_03751297hypothetical proteinATGGACGTCCCCGTGAGCACGCTGCGCGCCGAGCTCAAGTCGTGGATCGAGAAGGCCCGCGCCGGCGAGGAGGTCATCATCACCGAGCGTGGCGTTCCCGTCGCCCGCCTCAGCGGGGTGCAGAGCGCCGACCTGGTCACGCAGCTCGTGCGCGACGGGCTGGTCTCCCCGGCGGACCAGCCGCGTCCCGAGCACCAGGTGCCGACGACGGCGGAACCGGCCGGGGCGGGCAACGGCTCGTCCCGAGCCGCCTCCGGGTCCGGTCTGTCGGGTCTCGTCCGCCGCATCCGGCGCTGAMDVPVSTLRAELKSWIEKARAGEEVIITERGVPVARLSGVQSADLVTQLVRDGLVSPADQPRPEHQVPTTAEPAGAGNGSSRAASGSGLSGLVRRIRRNANANANANA
AK018_03752423Ribonuclease VapC49ATGGCCCTCGTCTACTTCGACGCCAGCGCCCTGGTGAAGCTCTGCGTCCCCGAGGCCGGCTCCGAGCTGGCCAGCGCGCTGTGGAACCGTGCCGACCTCGTGGTCACCTCGCGGCTGGCTGACGTGGAGCTCCGCGCGACGCTGGCGGCCGGCCTGCGGGCCGGCGTGCTCGACGTCGCCGCCCACGACGAGGCCGTCGCCCGGTGGGAGGAGCTGTGGCCCGCCCTGCACCGGGTGGAGCTCACCGAGGAGCTGGCCGAGCAGGCCGCCGCGCTGGCGGCCGGGCCCGCACCCCTGCGCGGCGGCGACGCCGTGCACGTCGCCGGCGCGATCGCCGTGACCCGGGACGGCGGTCTGGTCGCCGCCTGGGACGACCGGGTGGCCGCCGCCGCGCGGAGCCACGGACTGCACGTGCTGCCGTAGMALVYFDASALVKLCVPEAGSELASALWNRADLVVTSRLADVELRATLAAGLRAGVLDVAAHDEAVARWEELWPALHRVELTEELAEQAAALAAGPAPLRGGDAVHVAGAIAVTRDGGLVAAWDDRVAAAARSHGLHVLPPGPT0027605_692DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-VapC-VapB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027605-toxin_vapC_like-K07064NANA
AK018_03753339hypothetical proteinGTGATCGCGAGCCTGCAGTTCTACGTCTTCGTCATCCTGGCGGTCGTCATCTTCGTCATCGAGGTCTTCGCCCTCGTCGACGCGGTGCGACGGCCCGCTCACGCGTACACCGCCGAGGGCAAGCTGTCCAAGCCGATCTGGCTGATCATCCTGGGTGTCGCCACGGCGCTCGGTTTCCTGGCGCTGCCCACGTCCGGCGGCGCGATCAGCTCCCTGGGGTTCCTCAGCATCGTCGCGGTGGTCGCCGCCATCGTCTACCTCGTCGACGTCCGGCCGCGGCTGAAGCCGTACGGCACCGGCCGCGGCTCCGGCCGGTCGCAGGGGTCGAACGGGTGGTGAMIASLQFYVFVILAVVIFVIEVFALVDAVRRPAHAYTAEGKLSKPIWLIILGVATALGFLALPTSGGAISSLGFLSIVAVVAAIVYLVDVRPRLKPYGTGRGSGRSQGSNGWNANANANANA
AK018_037541002hypothetical proteinGTGGTGAACGTCGCGCGCGGAGCCGTCCCCCTGGCGGAGGTCGTGCGCGGCGACCTCGTGGAGTCGGTGCACCTGGGCCACCTCGTCGTGCTGGACCCGGACGGCGCGGTCGTCCTGGCGGCCGGTGACCCCGACGTCGAGATCTGGCCGCGGTCGTCGCTGAAGCCGGTCCAGGCGCTCGCGATGCTGCGCGCCGGGCTGGAGCTCCCGCCCGAGCAGCTCGCGGTCGCGGCCGCCAGCCACGACGGGACCCCCCGACACGTCGAGGTGGCCCGCCAGGTCCTGGCCGGGGCCGGCCTGACCGAGGAGTCGCTGGCGAACACGCCGGACCTGCCGCTGGACCCCGCCACGGCCGCGACGTGGCAGGCCGCCGGGCACGGTCCGGACCGGCTCACGCAGAACTGCTCCGGCAAGCACGCCGCGATGGTGGCGACCTGCCGCGTCGCCGGCTGGCCCGTCGCGGGGTACCTGGCGGCCGACCACCCGCTGCAGCAGCAGGTGCAGGCCGCCGTCGTCGAGCTGGCCGGCCCCGGCGCGGCCCGGCACCGGACCGTGGACGGGTGCGGGGCGCCGTTGTTCTCCACCACGCTCGTGGGTCTGGCGCGGTCGTTCGGCCGTCTGGCCGCTGCGCCGGTCGGCAGCCCCGCGCAGCGGGTGGCCGCCGCGATGTCGGCCCACCCCGAGCTGGTTGCCGGGGAGCGGCGCGACGCCACCCTCGCGATGCGCGCGGTGCCGGGGCTCGTCGCCAAGGACGGGGCCGACGGCGTGTACGCCGCCGGGCTGCCGGGTGGCGCCGCGCTGGCGTTCAAGATCCTCGACGGGGCCTCGCGGCCCCGTCCCGCCGTGCTGTCCGCGGCCCTGCGGGTCGCCGGTGCGCTCGACGTGCCGGGCACCGACGAGGCGGCGCTGGACGCGCTGGGCGCCACGCCTGTGCTCGGCGGTGGTGCACCGGTCGGCGAGGTCCGCGCCACCGTGGCCGTCCCGGCGGAGGCGGCCTCGTGAMVNVARGAVPLAEVVRGDLVESVHLGHLVVLDPDGAVVLAAGDPDVEIWPRSSLKPVQALAMLRAGLELPPEQLAVAAASHDGTPRHVEVARQVLAGAGLTEESLANTPDLPLDPATAATWQAAGHGPDRLTQNCSGKHAAMVATCRVAGWPVAGYLAADHPLQQQVQAAVVELAGPGAARHRTVDGCGAPLFSTTLVGLARSFGRLAAAPVGSPAQRVAAAMSAHPELVAGERRDATLAMRAVPGLVAKDGADGVYAAGLPGGAALAFKILDGASRPRPAVLSAALRVAGALDVPGTDEAALDALGATPVLGGGAPVGEVRATVAVPAEAASNANANANANA
AK018_03755426dtd_1COG1490D-aminoacyl-tRNA deacylaseGTGAGGGCCGTGGTCCAGCGGGCGACGCGGGCGAGCGTCACCGTCGACGGCGAGGTCGTCGGGGCGATCGACCGGCCGGGCCTGGTCGCGCTCGTGGGCGTGACCCACGAGGACGGGGCGGGCGACGCGGCGACGATCGCCCGCAAGATCGCCGACCTGCGGATCCTGCGCGGCGAGCGCTCCGCGGCGGACGAGGGAGCGCCGGTGCTGGTGGTCAGCCAGTTCACGCTGTACGGCGACGCGCGCAAGGGGAGGCGGCCGACCTGGCAGGCGGCCGCACCCGGCCCCGTCGCGGAGCCGCTCGTCGACGCCGTCGTGGCGCACCTGCGCGAGCGGGGGCTGGAGGTCGCCACCGGCGCCTTCGGCGCCGACATGGCGGTCGAGCTCGTCAACGACGGCCCGGTGACCCTCCTGCTGGAGACCTGAMRAVVQRATRASVTVDGEVVGAIDRPGLVALVGVTHEDGAGDAATIARKIADLRILRGERSAADEGAPVLVVSQFTLYGDARKGRRPTWQAAAPGPVAEPLVDAVVAHLRERGLEVATGAFGADMAVELVNDGPVTLLLETNANANANANA
AK018_03756741hypothetical proteinATGAGAGCTCGACGACACGTAGGGCGTGTGCTGGGAACGGTGGTGGGCGGTGTCGCCCTCCTCCTGCCCGGCGCGGTCATCGCGAGTGCCGACGTCGAGGACGACGTCCGCGTGATCGCCGACGTCGAGGAGCCGAGCCCGGACCCGTCCGGCGAGGGCTACGAGCCGCCGCCGGAGCCGTCGATGACCCTCGACGTGCTCAGCCCGATCTGCGACGGCGACGTGCCGTACCTCGTGTACGAGGTCACCACCGAAGGGGTCGAGCCGCCTCCCTCGGACGTGCGGATCGTCTGGGTGAACCCCGGCGGGGAGGACGTCGTGCAGAGCGAGCTCCCGCTGTCCGGGCGCGTGCTGTGGCCGGGAGCCGTCGTGGACGGCTCCGGCAACCCCGTCGACTGGCCCGGCTGGCGCCTGGTCGACGGCGAGTGGGTGGTCGGCGACGAGTTCGACTGGGTCCGACCCAGCGTGCAGGTGACGTTCGAGGTGAACCCGACGGCCACCACGACGGTCGCCTACCCGCCCTCGACGCCGAACTGCTCCACCGACCCGCCGCCCGGGGAACCGCCGACCACCGAGCCCCCCGCGAGCGAGCCGCCCGCCGAGGCAGCGCCTCCGCCCGGCGGCGACACGCCGATCCTGCCCGTGACCGGTCCCCAGCTGACCGGACTCATCGCCCTGGCCGTGGGCCTCGTCGCCGGCGGTGCCGCCATCGTCCTCGTCCGTCGGCGCCGGGCCGGGTGAMRARRHVGRVLGTVVGGVALLLPGAVIASADVEDDVRVIADVEEPSPDPSGEGYEPPPEPSMTLDVLSPICDGDVPYLVYEVTTEGVEPPPSDVRIVWVNPGGEDVVQSELPLSGRVLWPGAVVDGSGNPVDWPGWRLVDGEWVVGDEFDWVRPSVQVTFEVNPTATTTVAYPPSTPNCSTDPPPGEPPTTEPPASEPPAEAAPPPGGDTPILPVTGPQLTGLIALAVGLVAGGAAIVLVRRRRAGNANANANANA
AK018_037571884hypothetical proteinATGGCTCGCCCGACCGCCGCCGAGACGTCGCGCGCGACACCGCCGGTGCCCCGCCGGCGCCGCCCCGTGCGCTGGGTGCTGCTCGGCGTCGCCGCGCTCGTCGCCGTCGTCGTCGCGTGCACCGCACTGCTGGCTCGCGACGCCCTCACGGCCCGGGACGCGCTGGAGGAGGCCGCCCTCATCGTCCCGGAGGTCGAGCAGTCGCTGCGCACCGGCCTCACCGACGCCGGCGCCGACGCCGGCGGCTCCCTGACCGACATACCCGCGCTCGCCGAGCTCCAGGAGCAGACCGGCACCGCCCGCGAGGCGACCGACGGCCCGCTGTGGCGGGTCGCCGCGCTCCTCCCGGTCGTCGGCGCGTCCGTGGACGCCGCCACGACCGTCTCCACGGTCCTGGACCAGGTCGCCGAGGTGGCGCTGCCCGCGCTCGCGACGGCCGGGGACGCCGTCGCCCGCACCGGCCGCGACGACGACGGCAGCATCGACCTGCAGCCGCTCGCCGCCTCCGCCGAGGACGTCCGCACCGCCCGCGCGGTGATCGCCGACGCCCACGCCGAGCTCGCCGGCATCGACACCACCGCGCTCCAGTCCCAGTTCGTCGAGCCCGTGACCATGCTCGAGGACCAGCTGGCCCGGCTGGACGAGCTGCTCGGCGGCGCCGAACGGGCCGCCACCCTGCTCCCCCCGATGCTCGGCGCGGACGAGCCCCGCCGCTACCTGCTGCTGGGCCTGAACAACGCCGAGCTGCGCGCCGGGGGCGGCATCGTCGGCGCCCTGACGCTGCTGGAGGCCGACGGCGGCCGCGTCGACGTCGTCCGCCAGGCCTCGAGCGGGGACGTGGGACCGTTCGCCGAGCCCGTGGTGCCCCTCGACCCCGAGGTCGAGGCCGCGTACACGACCCGCGTGGGCCGGTTCGTGCAGGACGTCACGCTCACCCCGGACTTCCCGACGTCCGCCCGCATCGCCGCGGCGATGTGGGAGCAGGACCACGCTCCCGTCGACGGCGTGCTCGCCACGGACCCGGTCGCGCTGTCGTTCCTGCTCGAGGTGACGGGCCCGGTCACGGTCGACGTCCCACGGGACATCGCGGACGCGATCGGCACCCAGCGGGTCGAGATCACCGCCGAGACCGTCGTCGACCTGCTCCTGCGCCGCGTCTACGACGCGCTCGACGGTGCGCGTGCGGACGAGTTCTTCGCGATCGTCGCCAGCGCAGTCTTCGCCCGGCTGTCCAGCGGGGACGTCGCCCCGGTGGAGCTTCTTCCCGCCCTGGAACGTTCCGCGCAGGCGCACCGTCTGCTCGTGTGGTCCGCGCGCGAGGACGAGCAGGCCCTGGTCGACGGTGCCCTCGTCTCCGGAGGCTTCAGCGCCGACCGGGCAGCGGACGCGACCGGGCTCTTCCTCGACGACACGGTCGTCGGCAAGCTCTCGGCCCACCTCGACACGACGGTCGAGCACACGGAGTCGGCTTGCACCGGTGAGGGCCGGACCGACACCGTCACCCTGCGGTTGGTCAACACCCTGGACGAGACGCTCGTCCGCGAGCTGCCGTGGTACGTCGCCGGGGCCCACGACGCCCCGGACCGCGGCACGATGTCGCTCAACGTCACGGCGTACGGCATGCGCGACGGGAGCGTGCCGGAGCTGACGCGCGACGGTGACGTGGTCGGCGGCTCGTCGACGGTCGTGCAGGGACGGCCGCGCGTCGCGGTCAACGTCAGGCTGGCACCCGGGGCGTCGACGGAGGTGACCATGACCACGAGAGCTCCTGCCGCCGTCGCCCGGGGCGGCGGGGCGCCGGCACCCGGCACGCTGGAGCTCTGGACCACCCCGACGGTCGGCACGCCGGGCCTGCACGTCGCCGAGGTCCCGGTCTGCGGGTGAMARPTAAETSRATPPVPRRRRPVRWVLLGVAALVAVVVACTALLARDALTARDALEEAALIVPEVEQSLRTGLTDAGADAGGSLTDIPALAELQEQTGTAREATDGPLWRVAALLPVVGASVDAATTVSTVLDQVAEVALPALATAGDAVARTGRDDDGSIDLQPLAASAEDVRTARAVIADAHAELAGIDTTALQSQFVEPVTMLEDQLARLDELLGGAERAATLLPPMLGADEPRRYLLLGLNNAELRAGGGIVGALTLLEADGGRVDVVRQASSGDVGPFAEPVVPLDPEVEAAYTTRVGRFVQDVTLTPDFPTSARIAAAMWEQDHAPVDGVLATDPVALSFLLEVTGPVTVDVPRDIADAIGTQRVEITAETVVDLLLRRVYDALDGARADEFFAIVASAVFARLSSGDVAPVELLPALERSAQAHRLLVWSAREDEQALVDGALVSGGFSADRAADATGLFLDDTVVGKLSAHLDTTVEHTESACTGEGRTDTVTLRLVNTLDETLVRELPWYVAGAHDAPDRGTMSLNVTAYGMRDGSVPELTRDGDVVGGSSTVVQGRPRVAVNVRLAPGASTEVTMTTRAPAAVARGGGAPAPGTLELWTTPTVGTPGLHVAEVPVCGNANANANANA
AK018_03758423hypothetical proteinATGACGTCCCGGGGACCGGCCGATCCGGCCGTGGGACGCAGCGACCGTGCGCGCGCCGTCGTCGCGCCGGAGGAGCGGCGCGTGCTGGTCTGCGCCGCGCTGGCGGTGACCGAGCGTGCCGAGGTCGTCCTGCACGCCGCGCTCGCCCGCTCGGCGCGGCGGGTCGGGGACGCGGAGTCGGCGCACCTGGTCGCCCGGGAGGCGGTCAGTCATGCCACCGGCGGGCCCGCGCCCTCCTGCTGTCCGGTCGGAGCGCCCTGTGGAGCGGACACCTCGACGACGCCGGAGCACGACCGGACCAGGTCGGGGGCCGGCGTCGTGCAAGGCTGGCCCTGCCGACGACACACACCGGGTAGGACCGGCGCGCGGACGCGACCCGCGCCGCCGGCCCGCGACCGACGACGACCGCAGGAGGCCCCGTGAMTSRGPADPAVGRSDRARAVVAPEERRVLVCAALAVTERAEVVLHAALARSARRVGDAESAHLVAREAVSHATGGPAPSCCPVGAPCGADTSTTPEHDRTRSGAGVVQGWPCRRHTPGRTGARTRPAPPARDRRRPQEAPNANANANANA
AK018_03759558hypothetical proteinGTGAGCGCCGACGAGGCGACCGAGCACGACGCCGCATGGTTCGACGCGCTGTTCGCCGCGCACGCCGGCGCCGTGCACCGGTATCTCGTGCGTCGGTTGCCAGCCGGTGACGGCCACCGCGACGAGGCCGAGGACCTCGCGGCCGAGGTGCTGGCCACGGCCTGGCGGCGCCGCGACGACGTCCCGGCCGGCGCCGAGCTGCCCTGGCTCTACCGCACCGCCGGGTACGTGCTGGCCAACCACCGCCGCAAGCACCGGGCGACGCCCGTCGCGGCCGTGCCGGAGGAGCCGGACGACGTCGACCCCGCGGCGCTCGCGGTCACCGACGACGCCGTGCGGGAGGTGCTCGGCCGCCTGAGCCCGCGCGACCGCCGCATCCTGCTGCTCGTCGCCTGGGACGGGCTGGGCGGGGACGCGCTCGCCGAGGTGCTGGGCGTCTCGCGCGGCGGCGCGGACGCCGCCCTGTCCCGCGCGCGGGCCCGGCTGCGCTCGGCCTGGCAGGAGGCCGAGGCGAACGCCGCGTCGGCGGACGACGTCGAGCAAGGGAACCGGCCGTGAMSADEATEHDAAWFDALFAAHAGAVHRYLVRRLPAGDGHRDEAEDLAAEVLATAWRRRDDVPAGAELPWLYRTAGYVLANHRRKHRATPVAAVPEEPDDVDPAALAVTDDAVREVLGRLSPRDRRILLLVAWDGLGGDALAEVLGVSRGGADAALSRARARLRSAWQEAEANAASADDVEQGNRPNANANANANA
AK018_037601443hypothetical proteinATGGACGAGCGAGACGAGGCCTTCGACCGGCTGCGCGGAGCCGACCCGGCCGCCGACGTCGACACGCGCCACGGCGTGCTGCGCGCCAAGACCGACGCGCTGCGCGACGGGCACGAGCAGCCCTCCGAGGGGGCGTCCGGCCCAGGGGCGTCCGCCGGGCGGGACGAGCTCGCCGCCCGGCGCGACCGTCGGCGGTCCGGCTGGCTGGTCGCCGCCGGCGTCGCCGGGGCGGTGGTGCTCGGCGGCGGGGGGTACGCGCTGGGCTCCGCCGACGGCTCCGGGGCGCCCGTCGCCGAGGACGGCGGCGCGCTGCCGCCGATCACGCTGGACGGCGGGTCCGGTGCTTCGGGCGCCGACGGTGCGGACGGTGCGGTGACCGAGGAGCGAGCGCTCGGGAGCGGGCCCGCGCCCGAGGCGGCCGTCGGCACCTCCGTCATGCCGGCCCCCGGGTTCGGCGGGCGCGCCACCTTCAGCCACGACGGACTGTCCACCGAGGCGGGCACCGCCACGGCGTACGCCTACGACGCCGCCGACGTCGCGACCGAGTCCGGCGCGGCGAACCTGGCCGCGGCGCTGGACGTGTCCGGTGAGCCGCGGTGGGAGTACGGGACGTGGGTGGTCGGCCCGCGCGACGGCAGCGGTCCGAGCCTGTGGCTCGCCGCCGACGGTGTCGCCTCCTTCAGCTACCAGGACCCGTCCCTGGACCCGTGGCGGTGCGAGGAGGTCGAGATCCTGCCCGAGGAGTCCACGTCCTCGGGTGCGGCCGAGCCCGGCCAGGCGATCGAGCCGGTCCCCTGCGAGCCCGCCGGGGGCGGGGACGTCTCCGCCGACGAGGCCGTCGACCGGCTGCGCGGGCTCATGGAGCAGGTCGGGGTCGACCCGGCCGGCTTCGAGATCGAGGCCACGCAGGCCCAGGGCGCGGCCCGCCGTGCCCTCGCGTCCCAGGTCGTCGAGGGGCAGCGCACCGGTGCCACGTGGAGCGCCACGGTCACGGCCGACGGCGTCGCCTGGGCCGACGGGTTCCTGGCCGGGACCGTCTCGCTGGGCTCCTACCCCGTGGTGAGCCCGGCCGAGGCCGTCGAACGCCTCGGTGACCCCCGGTTCGGCCAGCAGCTCTGGCCGGTCGCGTACGCCGACGACACCGTCTCCGGGCTCGAACCGAGCACCGACCGTCTGCCCGCCCCCGACGTCGTCGAGCCGGGGGACGGCGTCGAGCCCGGCAGCGAGCCGACCGTGCCGCCCGCTCCGCCGGCGCCGGGCAGCGACCTGCCCTGGCCCGTGCGCGACGTGACGATCACCGACGCCCGCCTGGGCCTGGCCCAGGAGTACACGGTCGACCAGGGCGTCCTGCTGCTGCCCGCCTACGAGCTCACCGACGCCGACGGCAGCACCTGGTCGGTGGTGGCGGTCGCTGACGAGGCCCTGGCGATGACCTCTCCCTGAMDERDEAFDRLRGADPAADVDTRHGVLRAKTDALRDGHEQPSEGASGPGASAGRDELAARRDRRRSGWLVAAGVAGAVVLGGGGYALGSADGSGAPVAEDGGALPPITLDGGSGASGADGADGAVTEERALGSGPAPEAAVGTSVMPAPGFGGRATFSHDGLSTEAGTATAYAYDAADVATESGAANLAAALDVSGEPRWEYGTWVVGPRDGSGPSLWLAADGVASFSYQDPSLDPWRCEEVEILPEESTSSGAAEPGQAIEPVPCEPAGGGDVSADEAVDRLRGLMEQVGVDPAGFEIEATQAQGAARRALASQVVEGQRTGATWSATVTADGVAWADGFLAGTVSLGSYPVVSPAEAVERLGDPRFGQQLWPVAYADDTVSGLEPSTDRLPAPDVVEPGDGVEPGSEPTVPPAPPAPGSDLPWPVRDVTITDARLGLAQEYTVDQGVLLLPAYELTDADGSTWSVVAVADEALAMTSPNANANANANA
AK018_03761444osmC_1COG1764Peroxiredoxin OsmCATGCCCACTCGTACCGCACGCACCGCGTGGAACGGCTCACTGACCGACGGCTCGGGGACGGTCGAGCTCGTCAGCTCGGGCACCGGGACGTTCGACGTCTCGTTCCCTCGGCGCGCCGCAGAGTCCGCCGACGGCGTGACGAGCCCCGAGGAGCTCATCGCCGCCGCGCACTCGTCCTGCTACTCGATGGCGCTGGCGGCCGAGGTCGGCGCGCTCGGCGGCACCGCCGAGCAGGTAGAGGTCACCGCCGAGGTGTCCCTGGGTGACGACCCCAACGGCGGCCACCGCATCACCTCCAGCGTCCTCACCGTGAAGGGCTTCGCGGCCGGGCTCGACGAGGCCGCGTTCCGCCAGGCGGCCGAGGCCGCGAAGATCGGCTGCCCCGTCTCCAAGGCGCTGGGCACCGTCGACGAGATCGTCCTGCAGCTCGACTACGAGCACTGAMPTRTARTAWNGSLTDGSGTVELVSSGTGTFDVSFPRRAAESADGVTSPEELIAAAHSSCYSMALAAEVGALGGTAEQVEVTAEVSLGDDPNGGHRITSSVLTVKGFAAGLDEAAFRQAAEAAKIGCPVSKALGTVDEIVLQLDYEHPGPT0013160_304DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
AK018_037621110hypothetical proteinATGCGCGTCGTCGTCATCGGAGCCACTGGAAACGTCGGGACCTCGATCCTGCGCGCCCTCGTCGACGAACCGGTGGTGACCTCGCTCGTCGGGGTCGCCCGCCGCGTGCCGCGCACCGACGGGTCCAGCACGGTCGGCCCGCCCCACGACGCCGTGCAGTGGGTGCGCGTCGACCTGGCCGACGCCGAGACCGTCGCCGACCGGCTCGACGAGGCCCTGGCCGGTGCCGACGCCGTGATCCACCTCGTCTGGGCCATCCAGCCCGCCCGCGACCCCGAGACCCTGCACCGCATCAACGTCGGCGGCACCCGCGCCGTGACCGACGCGGTGGTGCGCAACCGGGTCCCGCACCTGCTGTTCATGTCCGCCTCCGGGGTGTACTCCCCCGGCCCGGGCGACGGGTCCGACGTCGACGAGGACTGGCCCCGCGACGGCGTGCCCGGCTCGTCCTACGCCCTGCAGAAGGCCGAGGTGGAGCACCACCTGGACACCGTCGAGGAGGCGGCGCCCTGGCTGACGGTGACCCGGCTGCGCGCGGCGATCATGCTGCAGCGTGAGGCCGGGGCCGAGATCGGCCGCTACTTCCTGGGACCCCTGGGACAGATCGGGCTCAAGGTCGCGGTGGGCCCGCTGGGCCAGGCGGTCGGCGGTGCCGTGCGGGGCTGGCGGGGGCTGCCCGAGCCCGCCGAGCCGCCGCTGTTCCCGCTGGTGCCGTTCCCGGCCGGCCTGCGGCTGCAGGTGCTGCACCCGGACGACACCGCCGCGGCCGTGCGCGCCGCCGTCGTCGGCCGGCACGGCGGTGCCTTCAACCTGGCGCCCGACGGCGGCCTGACCGGCCAGGACCTGGCCGACCTGCTCGCCGCGGGCCAGCTCGTCGAGCTCCCGGTCGGCCTGCTGCGCACCGGCCTGGACCTCGCCTCGCGTGCCCACGTGGTGCCGATCGACGCCGGCTGGCTGGACATGGCGGCCGCGAACATCGTCATGGACGCCTCCCGGGCCCGCGAGGTGCTGCGCTGGCGGCCCACCCGCTCGCAGGGCGAGGTGCTGCTGGAGGTGCTGCACGGGGTGCTCGAGCGTGCGAGCGCCGACACGCCGCCGCTGCAGCGCTGAMRVVVIGATGNVGTSILRALVDEPVVTSLVGVARRVPRTDGSSTVGPPHDAVQWVRVDLADAETVADRLDEALAGADAVIHLVWAIQPARDPETLHRINVGGTRAVTDAVVRNRVPHLLFMSASGVYSPGPGDGSDVDEDWPRDGVPGSSYALQKAEVEHHLDTVEEAAPWLTVTRLRAAIMLQREAGAEIGRYFLGPLGQIGLKVAVGPLGQAVGGAVRGWRGLPEPAEPPLFPLVPFPAGLRLQVLHPDDTAAAVRAAVVGRHGGAFNLAPDGGLTGQDLADLLAAGQLVELPVGLLRTGLDLASRAHVVPIDAGWLDMAAANIVMDASRAREVLRWRPTRSQGEVLLEVLHGVLERASADTPPLQRNANANANANA
AK018_037633180COG0247putative proteinGTGCGGGTCCCGGCGCGCGGGGACGCCGACGACGCCGGGGGACGGACGGTGCGCCACACGACGCCGTCACGGTGGCACAATCGCCACGTGTCCGCCCAGACGACGACTCCAGCGCCCGGCCCGAACGGTTCGACCTCGTCGGCTCGCTCCGCCGCGTCCGGGGACGCCGCGGCGCAGGCCCGGCGGGAGGCCGAGCGCGAGGCGCAGCGACAGGCCGAGCGCGAGGCGCAGGAGGCCGCCGCCGAGGCGCGCGAGGCCGTCGCGACGGCCCTGCGCACGGTGATGACCGGCGACGTGGACACCTCCACACGTCGGCGCGCCGAGTACTCCACGGACGCGTCCAACTACCGGGTGGTGCCGGACGTCGTCGTCTACCCGCGCACGACCGACGAGGTCGTCGCCGCGCTGGGCGTGCTGCGCGAGCTCGAGGTACCCGTGACCGCGCGCGGCGCCGGAACCTCGGTGGCCGGGAACTCGGTCGGTCCGGGGGTGGTGCTCGACCTGTCCCAGCACCTGGACACCATCCACGCCGTCGACCCCGAGGCCCGCACGGCCGTCGTCGACCCCGGGGTCGTCATGTCCTCGCTGCAGCGCGAGGCCCGTCCGCACGGGCTGCGGTTCGGGCCCGACCCGTCGACGCAGAACCGCGCCACCCTCGGCGGCATGATCGGCAACAACGCCTGCGGGCCCCACGCCGTGGCGTACGGCCGCACGGCCGACAACGTAATCGAGCTCGACGTCGTGGACGGGCACGGCCGCCGGTTCACGGCCTCCCACGGCGACCCGACGTTCGCTGCCGTGCCGGGGCTGGCCGAGCTGGTCCGGGAGAACCTGGCCCTGATCCGCACCGAGTTCGGGCGCTTCGGCCGCCAGGTCTCGGGCTACTCGCTGGAGCACCTGCTGCCGGAGAACGGCTCGAACCTGGCCAGGTTCCTCGTGGGGACCGAGGGCACCCTGGTGACGGTGCTCGGCGCGACCCTCGACCTCGTGCCCGTGCCGAACGCCCCGACGCTGGTGGTGCTCGGCTACCCGGACATGCCCGCGGCCGCCGACGACGTGCCCGTGCTGCTGCAGCACGACCCGCTGGCCATCGAGGGCCTCGACGCCCGCCTGGTCCAGGTCGTCCGCGACGTCAAGGGCGCCGACGCGGTACCGGAGCTGCCCGAGGGCGCCGGCTGGCTGATGATCGAGGTCGGCGGCGGCAGCGAGAACGAGGTGCGCGAGCTCGCCGAGATGATCGTCGGGGCCTCCTCCGCCGTCGGCGCGGCCATCTACCCCGCCGGTCCCGAGGCGACGCAGATGTGGCAGATCCGGGCCGACGGCGCGGGGCTGGCCGGTCGCACCCCGGCCGGCGAGCAGGCCTGGCCCGGCTGGGAGGACTCCGCGGTGCCGCCGGAGAGCCTCGGCGACTACCTGCGCGACCTCGACGCTCTCATGGCGCGCTACGGCGTCGACGGGCTGCCCTACGGGCACTTCGGCGACGGCTGCATGCACCTGCGCATCGACATCCCGCTGGAGGCCTCCGGCTCGGTGCTGCGCACCTTCATGACCGAGGCCGCCGAGCTGGTGGCCAAGTACGGGGGGTCGCTGTCCGGCGAGCACGGGGACGGCCGGGCCCGGTCCGAGCTGCTGCCCGTCATCTACTCGCCCGAGGCCGTCGCGCTGATGGAGCAGGTCAAGGCGCTCTTCGACCCGCACGACGTGCTCAACCCCGGCGTCGTGGTCCGGCCCGCCGCCGTGGACGCGGACCTGCGCCGCCCGGCGGCCTCCGCGGTGCCCTCCACGGGCCCCGTCGGTCAGCGCGGTCTGCTCGGCTCGGGCACGCTGCGCGGGACCGCGAAGAAGACCGGGTACGCGGGGTTCAGCTTCGCCCACGACCACCACGACCTGACCACGGCCGTGCACCGCTGCGTCGGGGTGGGCAAGTGCCGCGCCGACAACCAGGCCGCCGGCGGCTTCATGTGCCCGAGCTACCAGGCGACGAAGGACGAGAAGGACGTCACCCGCGGCCGGGCCCGGGTGCTGCAGGAGGCCGTCAACGGCTCCCTCGTCGGCGGGCTGACCGCCCCGGAGGTCCGCGAGTCCCTCGACCTGTGCCTGAGCTGTAAGGCCTGCTCCTCGGACTGCCCGGCCGGTGTCGACATGGCCCAGTACAAGTCCGAGGTGCTGCACCGGACCTACAAGGGCCGGCTGCGTCCCGTCGACCACTACGCGCTGGGCTGGCTGCCCCGGTGGGCGCGGCTGGCGGGCGTCGCGCCGCGCACGATCAACAGGGTGCTCTCGGTCGACTGGATCCGCCGGGCCGTGCTGTGGGCGGGCGGCATGGACACCCGGCGCTCCGTGCCGGAGTTCGCCGAGATGCCGTTCCGGCGCTGGTGGGGCCTCGGGTACGCCACGCACGGGGTGCCCGGGCTCGCGCACCGGCAGTCGCCGGGCAAGCCCGTCGGCGGCGCGCGGCCGCAGGTCGTGCTGTGGACCGACTCGTTCAGCGACTCGATGTCGCCGTCGGTGCCGCGGGCCGCGATCCGTGTGCTCGAGGCAGCCGGCTACGACGTGATCGTCCCGCGCGGCGAGGCCTGCTGCGGGCTGACGTGGATCTCCACCGGCCAGCTCGACGGCGCCCGACGCCGGCTCGACGGCCTGCTGAAGACCCTCGGCCCGTACGCCGTGAACGGGTATCCCATCCTCGGGCTGGAGCCGTCCTGCACGGCGGTGCTGCGCTCGGACCTGCTCGACCTGTTCCCCGACGACCCGCGGGCCGCCGCCGTGGCCGGGGCGACGAAGACGCTCGCCGAGCTGCTGACCGACCCCACCACCGCGCCAGGCCCCGAGTCCGGCTGGGAGCTGCCCGACCTGAGCGACCTCACCGCCGTCGTGCAGCCGCACTGCCACCAGCACTCGGTGATGGGTTTCGCCGCCGACCGTGCCCTGCTGGCGCAGGCGGGGGCCACCGTGAACGAGCTGGCGGGCTGCTGCGGCCTGGCGGGCAACTTCGGCATGCAGAAGGGCCACTACGACGTCTCGGTCGCCGTGGCGGAGAACGCCCTGCTGCCGGCGCTGCGAGAACGCGAGGAGTCGGATGTCTTCGTTGCCGACGGCTTCTCCTGCCGCACGCAGGCCGTCCAGCTCGAGGGCGTCGAGGGCAAGGCCCTGGTCGAGGTGCTCGCCGAGCGACTCTGAMRVPARGDADDAGGRTVRHTTPSRWHNRHVSAQTTTPAPGPNGSTSSARSAASGDAAAQARREAEREAQRQAEREAQEAAAEAREAVATALRTVMTGDVDTSTRRRAEYSTDASNYRVVPDVVVYPRTTDEVVAALGVLRELEVPVTARGAGTSVAGNSVGPGVVLDLSQHLDTIHAVDPEARTAVVDPGVVMSSLQREARPHGLRFGPDPSTQNRATLGGMIGNNACGPHAVAYGRTADNVIELDVVDGHGRRFTASHGDPTFAAVPGLAELVRENLALIRTEFGRFGRQVSGYSLEHLLPENGSNLARFLVGTEGTLVTVLGATLDLVPVPNAPTLVVLGYPDMPAAADDVPVLLQHDPLAIEGLDARLVQVVRDVKGADAVPELPEGAGWLMIEVGGGSENEVRELAEMIVGASSAVGAAIYPAGPEATQMWQIRADGAGLAGRTPAGEQAWPGWEDSAVPPESLGDYLRDLDALMARYGVDGLPYGHFGDGCMHLRIDIPLEASGSVLRTFMTEAAELVAKYGGSLSGEHGDGRARSELLPVIYSPEAVALMEQVKALFDPHDVLNPGVVVRPAAVDADLRRPAASAVPSTGPVGQRGLLGSGTLRGTAKKTGYAGFSFAHDHHDLTTAVHRCVGVGKCRADNQAAGGFMCPSYQATKDEKDVTRGRARVLQEAVNGSLVGGLTAPEVRESLDLCLSCKACSSDCPAGVDMAQYKSEVLHRTYKGRLRPVDHYALGWLPRWARLAGVAPRTINRVLSVDWIRRAVLWAGGMDTRRSVPEFAEMPFRRWWGLGYATHGVPGLAHRQSPGKPVGGARPQVVLWTDSFSDSMSPSVPRAAIRVLEAAGYDVIVPRGEACCGLTWISTGQLDGARRRLDGLLKTLGPYAVNGYPILGLEPSCTAVLRSDLLDLFPDDPRAAAVAGATKTLAELLTDPTTAPGPESGWELPDLSDLTAVVQPHCHQHSVMGFAADRALLAQAGATVNELAGCCGLAGNFGMQKGHYDVSVAVAENALLPALREREESDVFVADGFSCRTQAVQLEGVEGKALVEVLAERLNANANANANA
AK018_03764606fbiB_2Bifunctional F420 biosynthesis protein FbiBATGGAGTTCCGTGACGTGGTCCGACGGCGGCGCATGGTCCGGCGGTTCGGCCCCGACCCCGTGGACCCGGCCGTGGTCGACCGGCTGGTCGAGACCGCCGTGCGGGCCCCGAGCGCAGGGTTCACCCAGGGCTGGTCGTTCCTGGTGCTCACCACGGCCGAGGAGCGCGAGCGGTTCTGGGCGGCGACCACCCCGCCGGACTCGGCGCGGGACATGTCGACCTGGCTGGCCGGGATGCGCACCGCCCCGGTGCTCGTGGTGGCGCTGGCCTCGCGGGACGCCTACGTGGGGCGCTACGCCGAGCCGGACAAGGGCTGGACCGACCGCGACGAGGCGCGCTGGCCGGTGCCGTACTGGCACGTGGACGTCGGCATGGCCTCGCTGCTCATGCTGCAGACCGCCGTCGACGAGGGGCTCGGGGCGTGCTTCTTCGGCATCTCGGCCGACCGGATCGCGGCGTTCCGCGAGGCCTTCGGCGTGCCGGCCGAGTGGGCGCCCACCGGGGTGGTCGCCGTCGGGCACCCCGAGACCGGGGGAGCGAAGGGGTCACCGGCGCGGCGCCGGCGCAAGCCGTTGGACGAGGTGGTGCACCGCGGACGGTGGTGAMEFRDVVRRRRMVRRFGPDPVDPAVVDRLVETAVRAPSAGFTQGWSFLVLTTAEERERFWAATTPPDSARDMSTWLAGMRTAPVLVVALASRDAYVGRYAEPDKGWTDRDEARWPVPYWHVDVGMASLLMLQTAVDEGLGACFFGISADRIAAFREAFGVPAEWAPTGVVAVGHPETGGAKGSPARRRRKPLDEVVHRGRWPGPT0006810_1072DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0006810-bluB|drgA-K04719NANA
AK018_03765726fbiD_1Phosphoenolpyruvate guanylyltransferaseGTGACCGCCGTCGTCCCGCTGCGCGACGGGGCGAGCGGCAAGTCGCGGCTGGCCACGGCGTTGGAGCCCGCGGCCCGACGGCGGCTCGTGGTCGCCCTGGCCCGGCACGTGCTGGGGGTGCTCGCCGACGCCGCGGCGGTGGGACGGGTCGTCGTGGTGACGGCCGACGTCGACTTCGCCCGCGAGGTGCTCGACGACGGCCCGGGTCACGTCGGCAGTTCGTCGTCGACGCGGCAGTTCGAAGTGCCGCGTCGACGACGAACTGCCGACGTGATCGCGGAGCCGCCCGGCCGCCCCGGGCTGAACGCGGCGCTGGAGCACGCCCGGCGGCACGTCGCGGGCGACGCCGACGACGCGGACGACGCGGGCGACACCGACGACGCGGACGGCCCCGACGCGGACCGGCTCCTCGTGGTGCACGCCGACCTGCCGCTGCTGACCCCGGCGGACGTCGACGCGGTCGCCACCGCGCGGGCCGACGTCGTCGTCGCCACGGACCGGCACGGTACGGGGACGAACCTGCTGGCCGTCCCCCGGGTCGGCGACCACGCCTTCCGGTTCGGCGCCGGGTCCCGCGCCGCCCACGAGGCCGAGGCCGCCCGGCACGGGCTGCGCGCCGCCGTCGTGCAGCGCCCGGGCACGGCCGCCGACCTGGACACGATCGACGACGTCGCCGAGCTCCCCCACGCCGTCCGTGACCGGCTCGTCGGCACCGTCCGCCCCTGAMTAVVPLRDGASGKSRLATALEPAARRRLVVALARHVLGVLADAAAVGRVVVVTADVDFAREVLDDGPGHVGSSSSTRQFEVPRRRRTADVIAEPPGRPGLNAALEHARRHVAGDADDADDAGDTDDADGPDADRLLVVHADLPLLTPADVDAVATARADVVVATDRHGTGTNLLAVPRVGDHAFRFGAGSRAAHEAEAARHGLRAAVVQRPGTAADLDTIDDVAELPHAVRDRLVGTVRPNANANANANA
AK018_03766939fbiA_1COG0391Phosphoenolpyruvate transferaseGTGACCCTCCTGGCCGGTGGCGTCGGCGGCGCCCGCCTCGCGCACGGTCTCGCCCGCGCGCTGCCCGACGGCGGCGCACCGGGCGCGGACGGCGGCCTGACCTGCGTGGTCAACGTCGGCGACGACACGGAGCGGCACGGGCTGCACGTGTCGCCGGACCTCGACACCGTCATGTACACGCTGGCGGGGCTCAACGACGAGGAGCGCGGCTGGGGGCTGACCGGCGAGTCGTACGCGGTGCTCGACCAGCTGGAGCGGCTCGGCGAGGACACCTGGTTCACCCTCGGCGACAAGGACCTGGCCACGCACGTGGTGCGCACGGCGCGGCTGCGCGAGGGCCGGCCCCTGAGCACCGTGACCGCCCGGCTCACCGCCTCGCTGGGCGTCGAGGCCCGGCTGCTGCCGGTCACCGACGACGCCGTGCGCACCCGGATCACGACGCCGTCGGGCGAGCTGGAGTTCCAGGAGTACTTCGTGCGGCGCCGGCACGCCGACGCCGTGCTCGACCTGACGTTCGACGGGATCGACGCCGCCCGCCCGGCGCCCGGGGTCCTCGACGCGCTGCACGGTGCCGACCTGCTCGTGGTCGCGCCGTCGAACCCGTTCCTGTCCGTGGAGCCCGTGCTCGGGGTGCCCGGGGTGCGCGAGGCGGTCCGGGCCGGCGGCCCGCGGCGCGTGGCGGTCAGCCCCATCGTCGGCGGGAAGGCGCTCAAGGGTCCCGCCGCGCAGGTGCTGGAGTCCCTCGGGCACGACGTCTCGGCGCTCGGCGTCGCCCGGCTCTACACCGGGCTGGTGGACGTCATGGTGATCGACACCGCCGACGCGGACCTGGCCGGCGAGATCGAGGACCTCGGGTTCGAGGTCCTGGTGACCGACACCGTCATGGGCGGGCCCGCGGGTCGCGAGCGCCTGGCCCGCGAGCTGCTCGCACTGGCATGAMTLLAGGVGGARLAHGLARALPDGGAPGADGGLTCVVNVGDDTERHGLHVSPDLDTVMYTLAGLNDEERGWGLTGESYAVLDQLERLGEDTWFTLGDKDLATHVVRTARLREGRPLSTVTARLTASLGVEARLLPVTDDAVRTRITTPSGELEFQEYFVRRRHADAVLDLTFDGIDAARPAPGVLDALHGADLLVVAPSNPFLSVEPVLGVPGVREAVRAGGPRRVAVSPIVGGKALKGPAAQVLESLGHDVSALGVARLYTGLVDVMVIDTADADLAGEIEDLGFEVLVTDTVMGGPAGRERLARELLALANANANANANA
AK018_03767321hypothetical proteinATGGCTGTCTTCGCGTTCTCCGTCGCTCCCCTCGGTGCCGGCGAGTCGGTCACCGACTCCGTCGCCGAGGCCGTCCGCATCGTGCGGGAGTCCGGTCTGCCGAACCGCACCACCTCGATGTTCACCGAGATCGAGGGGGAGTGGGACGAGGTGATGCCGGTGATCCAGCGCGCCACCGAGGCCGTGGGCTCCGGCGGGCACCGTGTCTCGCTCGTGCTGAAGGCAGACATCCGCCCCGGGCACACCGGTCAGCTCGAGGGCAAGGTGGCCCGGGTGGAGGAGGCGCTCGCCGAGGACGAGTCCGCCACGGGCCACGCCTGAMAVFAFSVAPLGAGESVTDSVAEAVRIVRESGLPNRTTSMFTEIEGEWDEVMPVIQRATEAVGSGGHRVSLVLKADIRPGHTGQLEGKVARVEEALAEDESATGHANANANANANA
AK018_037681737hypothetical proteinATGCCACTGTTCGAGGTCGACGCCAGCAGGCCGCTCCTCGTCCAGTCCGGGCGGACCGCGGGGTCGGTCGAACCCGGGCTGGCGACGACCGCGCACCGCGTCGTGGACTCCCACATCGACGGACTGCTGGGCGAGCAGATCTTCCCCGTCGCGCAGGGCTCCGGGCCCGACGAGCCGCACCTGCTGGCCCTGGACGCCACGGGGTCGCCCGTCGTCGTCGAGCTGGTCGCCAACCTGGACAAGGCGGCGCTGACCCGGGCCCTCGACCACGCCGGGTGGGCCGGCCGGCTGACCCGCGGCGAGCTCGCCGCCCGCTACCACGGTGGTCACAACGCGTTCCAGCGCGACATCGCCACGTTCTACGACTCGGTGCCGATCACCCGCTCCCAGCCGGGACGCTCCAGCGCTCGCCTCATCGTCATCTGCCAGGAGGCCGGCGAGGACATCCTCAACGCCGTCGACTTCCTGCGGCAGCCGACCATGCCCGTCGAGGTGCTCAAGATGGGGGTGATGCACGGGCAGGACGGCCGGCGGTTCGTCGACGTCTCGCCGCTGGTCATCCACCCCGCCTCCGAGGCGACGGCGCCGCAGCTGTCCGGGCACGGCCGCCCCGTCGGTGCGTCGCAGGCCGCCGGCGCGGAAGCCCGCACCGAGGCCGAGCCGGAGTCGTTCGCCGAGGGCGTCAAGGTCGGCATCGCGCTGACGGGGAAGAACCCGGCCGTCGCCGTCCCCGCCGGGGGCGCCGACGGGAGCGGGTCTCCCGCCCGTCCCGCCCCGGACGCCGTCGGGGACACCGCCGAGCAGCCGCCGCTGCGGCGTGGTCGTGCGGCACGACGTGCCGAGGCGGAGGCCGCGGCCGGCCCCCCGAGCCTGGCGGTCCCGTCCGTCCCGTCGGAGCAGCCCCCGGCGCCGACCCCCGCTCCTGCGCCGGCCCCCGCGACGGCGCACGCCCCGGTCCCGCCCCCGCCGCAGGACCCGCCGGCGCCGCGACGCCGGTCGCGCAGCGACCGCTTCCGGGAGGCCGGGCCCGCGCCGCAGCCGCCGCGTCCCGCCGCCCCGGCGCCCGCGCCGGCCCCCGCGCCCGAGCCCGCACCGGCGCCGGCACCGCGGCGGCCGTTCTCGGCGTCGTCGGCCGACGACCTCGACCTCGCCGGCCTCGCCCGGCGCACCACCTCTGCCGCGAGCTCCGACACCCCCTCGCTCGGCGAGGACTTCGCCCGGGCCGCCGCCCCGGCGCTGGACCGTCCCGCCCCGGCGTCGGACGCGCGGAGCTCGGACCCGCTGGACTCGTGGACGCCCTGGTCGGAGAGCACGGACCGGCCGTGGCAGCCGTCGACGCCGGAGACGTGGACCAGCGCTTCCGACGACCTGCCGCGCCTGCAGGTCCCGCCGCTGGAGGCGCCGTCGTACACCCCGCCGCCGGAGCACGGCCTGTACGACGACGCCGGGACGACCGTCCTCCAGGAGGAGGAGGTCGATGGTGACCTCATCGCGCTGGCGAGCACGCTGGGTCGGCCCACCTACCTCGAGTGGTCGCGCCCGCGCCGCCAGCAGCACTTCGAGGCGCTGCTGCACCCGGACGGTGTGATCGAGCTGCCCGACGGGTCGCGGTTCCAGCACCCCGACCACGCGGCGTCGGCCGCCTGCGGGGCGCCGACCGACGACGGCTGGAACGTCTGGCGGATCGTGCCCGACGGCGTCACGCTCCTGGACGCCTACCGCGCTCGCTTCGCCTGAMPLFEVDASRPLLVQSGRTAGSVEPGLATTAHRVVDSHIDGLLGEQIFPVAQGSGPDEPHLLALDATGSPVVVELVANLDKAALTRALDHAGWAGRLTRGELAARYHGGHNAFQRDIATFYDSVPITRSQPGRSSARLIVICQEAGEDILNAVDFLRQPTMPVEVLKMGVMHGQDGRRFVDVSPLVIHPASEATAPQLSGHGRPVGASQAAGAEARTEAEPESFAEGVKVGIALTGKNPAVAVPAGGADGSGSPARPAPDAVGDTAEQPPLRRGRAARRAEAEAAAGPPSLAVPSVPSEQPPAPTPAPAPAPATAHAPVPPPPQDPPAPRRRSRSDRFREAGPAPQPPRPAAPAPAPAPAPEPAPAPAPRRPFSASSADDLDLAGLARRTTSAASSDTPSLGEDFARAAAPALDRPAPASDARSSDPLDSWTPWSESTDRPWQPSTPETWTSASDDLPRLQVPPLEAPSYTPPPEHGLYDDAGTTVLQEEEVDGDLIALASTLGRPTYLEWSRPRRQQHFEALLHPDGVIELPDGSRFQHPDHAASAACGAPTDDGWNVWRIVPDGVTLLDAYRARFANANANANANA
AK018_03769960ccr_1COG0604Crotonyl-CoA carboxylase/reductaseATGCTCGCAGCCACCGTCGCCCTCTTCGCCCCGGACAACCCGCTCGACGGCCTGGAGGTCACCGACCGCCCGGCACCCGAGGAGCGTGAGCACTGGACCACCGTCGAGGTCCGGGCCGCGAGCCTCAACCACCACGACCTGTGGTCCCTGCGCGGCGTCGGGCTGCGCGAGGAGCAGCTCCCGATGATCCTCGGCACGGACGCGGCCGGCGTCGCGCCCGACGGCAGCGAGGTCGTGCTGCACGGCGTCGTGGGCGCGGACGGCCACGGCGTCGGGCCGCGGGAGCGCCGCACCCTGCTCAGCGAGAAGTATCCGGGCACGCTCGCCGAGCAGGTGTCGGTGCCGACCGCGAACCTCGTGCCCAAGCCGGCCGAGCTGTCCTTCGCCGAGGCCGCGTGCCTGCCCACCGCCTGGCTGACCGCCTACCGGATGCTGTTCCGCGCGGCCGACCTGCGCCCCGGCGACCGCGTGCTCGTCCAGGGCGTCGGCGGCGGCGTCGCCACGGCCGCCATCGTCCTGGGTGCCGCGGCCGGGCTGGAGGTCACCGCCACCTCCCGCGACGCGGCCAAGCGCGACCGGGCGCTCGAGCTCGGGGCGAGTGCCGTCGTCGAACCCGGCGAGCGGGTCCCGGCGCGGGTCGACGCCGTGGTCGAGTCGGTCGGTCAGGCCACCTGGGCGCACTCCGTGCGCTCCGTGCGCCCCGGCGGCACGATCGTGGTGTGCGGCGCCACGAGTGGCGACGCCCCGGCGGCCGAGCTGTCCCGCATCTTCTTCACCGAGCTGCGGGTGCAGGGCGTGACGATGGGGTCGCGCGAGGACCTGGCGGGGCTGCTGCGGTTCTGCGCGCGGACCGGGGTGCGACCGGTCGTCGACTCGGAGGTGGCACTGTCCGACGTCGGGACCGGCCTGGCGCGGCTGGCGGCGGGTGAGCAGACGGGCAAGATCGTCGTCACCCCGTGAMLAATVALFAPDNPLDGLEVTDRPAPEEREHWTTVEVRAASLNHHDLWSLRGVGLREEQLPMILGTDAAGVAPDGSEVVLHGVVGADGHGVGPRERRTLLSEKYPGTLAEQVSVPTANLVPKPAELSFAEAACLPTAWLTAYRMLFRAADLRPGDRVLVQGVGGGVATAAIVLGAAAGLEVTATSRDAAKRDRALELGASAVVEPGERVPARVDAVVESVGQATWAHSVRSVRPGGTIVVCGATSGDAPAAELSRIFFTELRVQGVTMGSREDLAGLLRFCARTGVRPVVDSEVALSDVGTGLARLAAGEQTGKIVVTPPGPT0001350_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001350-maeA|sfcA|ywkA-K00027NANA
AK018_03770420hypothetical proteinATGGCGCGGCTCAACCCCTACCTCAGCTTTCGCACCGAGGCTCGCGAGGCCCTGGAGCACTACCGGACCGCGCTCGGCGGCGAGCTCGAGATCAACACCTTCGGCTCGATGCCCGGCATGGCCGACGATCCCGCCGACCAGGAGCTGGTCATGCACGGGTCGGTCGCCACGCCGGGCGGCCTGATGCTGATGGCGTCCGACACACCGTCGTCCATGCCCTACGTCGCCCCGAACAGCGGTGTCACCGTCGCCGTGACCGGCGGCCCGGAGGACCTGGAGTACGTGCGCGGCGTCATCGCCGCCCTGTCCGACGGCGCGACCGACGTCATGCCGTTCGAGAAGGCGCCCTGGGGCGACTACTACGGGCAGCTCACCGACAAGTTCGGCATCGCCTGGCTGTTCGACGTCGGCGCCGGGTGAMARLNPYLSFRTEAREALEHYRTALGGELEINTFGSMPGMADDPADQELVMHGSVATPGGLMLMASDTPSSMPYVAPNSGVTVAVTGGPEDLEYVRGVIAALSDGATDVMPFEKAPWGDYYGQLTDKFGIAWLFDVGAGPGPT0030505_2459PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK018_037711230metXA_1COG2021Homoserine O-acetyltransferaseATGACCACGACGACACCCCACCATCCCGGTTCCGAGACCGGCTGGAAGTCGCCGCGCGGTGCGCGCCGCGCCCCGGCCGGCCCCGTCCCGGCGTCCGGCGCCTGGCGCGAGGGCGACCCCGCGGGCGCCCGCCGGTTCCTCGACGTGGGCACGTTCGACCTGGAGGTCGGGTCGCGGCTGCCCGACGTGCGGGTCGCCTACGAGACCCACGGCGAGCTCGACGCCGACGGGTCCAACGCCGTCCTCGTGCTGCACGCGCTGACCGGCGACGCGCACGTGCGCGGCCCGGCCGGCCCCGGCCACGCGACCGCCGGCTGGTGGGAGCCGATGATCGGCCCCGGCGCCCCCCTCGACACCGACCGCTACTTCGTCGTCGTGCCCAACGTGCTCGGCGGCTGCCAGGGCACCACCGGACCGGCGTCGACCGCCCCGGACGGCCGACCGTGGGGCGCACGCTTCCCGCGGATCACCACCCGCGACCAGGTCGCCGTGGAGATCGAGCTCGCCCGGCTGCTCGGCGTCCGCTCGTGGGCGACCGTCATCGGCGGCTCGATGGGCGGGATGCGCGTCCTGGAGTGGGCGCTGCTGGGCCCCGAGGCCGGGATCGACGTGCGGTCGATCGTCTCGATCGCCACCAGCGCGCAGTCCTCCGGCGACCAGATCGCCTGGGCGCACCCCCAGCTCGGCGCCATCCGCTCCGACCCGCGCTGGAACGGCGGCGACTACTACGACGCCGCCCCGGGCGAGGGCCCGCACGCCGGGCTCGGGATCGCCCGGCAGATCGCACACACCACCTACCGGACCGCACGCGAGCTCGACGAGAGGTTCGGGCGGCTCCCCCAGGGCGGCGAGGACCCGCAGACCGACGGCCGCTTCGCCGTGCAGTCGTACCTCGACCACCACGGCGACAAGCTCGCCCGCCGGTTCGACGCCAACTCCTACCTGCGGCTGACCGAGACGATGCTGACCCACGACGTCGGCCGCGACCGCGGCGGCGTGGAGGCCGCGCTGGGGCAGGTCGAGTCCCAGGCCCTCGTGGTGGCCGTGGACACCGACCGGCTGTTCCCGCCCGAGCTGTCCGACCGGATCGCGGCAGGGCTGCCGCACGCGGCCCCGACACAGCTCATCACCTCCGACTTCGGGCACGACGGGTTCCTGCTGGAGTTCGACCAGATGGGTCCGCTCGTGCGCGAGTTCCTCGCCGAGGTCGAGCGCGTCTCCCCCGCCTGAMTTTTPHHPGSETGWKSPRGARRAPAGPVPASGAWREGDPAGARRFLDVGTFDLEVGSRLPDVRVAYETHGELDADGSNAVLVLHALTGDAHVRGPAGPGHATAGWWEPMIGPGAPLDTDRYFVVVPNVLGGCQGTTGPASTAPDGRPWGARFPRITTRDQVAVEIELARLLGVRSWATVIGGSMGGMRVLEWALLGPEAGIDVRSIVSIATSAQSSGDQIAWAHPQLGAIRSDPRWNGGDYYDAAPGEGPHAGLGIARQIAHTTYRTARELDERFGRLPQGGEDPQTDGRFAVQSYLDHHGDKLARRFDANSYLRLTETMLTHDVGRDRGGVEAALGQVESQALVVAVDTDRLFPPELSDRIAAGLPHAAPTQLITSDFGHDGFLLEFDQMGPLVREFLAEVERVSPAPGPT0011520_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-CYCLOSERINE_METABOLISM,PGPT0011520-dcsE-K19726NANA
AK018_03772393hypothetical proteinATGCACGAGGCGAGGCTCCCCGTCGTCGAGATCGTCGGGGTCTACCACGCCGAGGGCAGCCTCCTCGGCGAGGCGCGGTACGTGCTCGGTCGGCTGCGCGGCACGGCGCACTGCGCGCTGTGCGACATCACGCACGGCGCGGTCCGACGGCGGCGCGCCTGGGACGCGTACGTCGCCACGCTCGACCTGCCGGTCACGCTCGTGCACCTCGACGAGATGGACGACGACGTCGCGGCCGCCGTCGCCCGCGCCGGCAGCCCCGTGGTGCTCGGCCGCACCTCCGCCGACGCCCTCGTCACCCTCCTCGACGCCGACGCCCTCGAGGACCTGGACGGCGACGTGGCCGCCTTCGGCGACGCGCTGACGGCGGCGCTGGCCGCGACCACCCGCTGAMHEARLPVVEIVGVYHAEGSLLGEARYVLGRLRGTAHCALCDITHGAVRRRRAWDAYVATLDLPVTLVHLDEMDDDVAAAVARAGSPVVLGRTSADALVTLLDADALEDLDGDVAAFGDALTAALAATTRNANANANANA
AK018_03773189hypothetical proteinGTGGACAGCGCCCCGAGCGAGCGCGTGCACATCCCGCTGGCCCAGCACTCGCTGTTCCCGGTCGGGCGCAGCGAGGCCGAGCTGGAGGAGGCAGGTCTCGTGCCGCACCTGCTGACGCCGGCCGACGTCGCCGAGGCCTACGCCGCCATGGACGAGCGCCGCGCCACGAAGGTGCTGCTGCGCCCCTGAMDSAPSERVHIPLAQHSLFPVGRSEAELEEAGLVPHLLTPADVAEAYAAMDERRATKVLLRPNANANANANA
AK018_037741332metY_1COG2873O-acetyl-L-homoserine sulfhydrylaseATGACCGACACGCCTCGCTGGTCCTTCGCGACCCGCCAGATCCACGCCGGCCAGACGCCCGACCCCGCCACCGGGGCGCGCGCGCTGCCGATCTACCAGACGACGTCGTACGTGTTCGACGACGCGAAGACCGCCGCGAACCGCTTCGCCCTGGCCGAGCTCGGCCCCATCTACACCCGCATCACCAACCCGACCCAGGAGACCGTCGAGAACCGCATCGCGGACCTCGAGGGCGGCGTGGGCGCGCTGCTGCTCGCCTCGGGGCAGGCCGCGGAGACGTTCGCGATCCTCAACGTCGCCGAGGCCGGGGACCACGTGGTGGCCAGCGCCAGCCTCTACGGCGGCACCTACAACCTGCTCAAGCACACCCTGACCCGGTTCGGCATCACCACGACGTTCGTCGAGGACGCCCACGACGCCGACGCGTGGCGCGCCGCCGTGCAGGAGAACACCAAGGCGTTCTTCGCCGAGACGATCCCGAACCCGAAGAACGACTTCCTCGACATCGCCCTGGTCGCCGACGTCGCGCACGAGGCGCAGGTGCCCCTCATCGTGGACAACACGGTGGCGACGCCGTACCTGGTGCGCCCGATCGAGCACGGGGCCGACGTCGTCGTGCACTCGGCCACCAAGTACCTCGGCGGGCACGGCACCACCGTCGCCGGCGTCATCGTGGACTCGGGGAACTTCGACTACGCGCGCTACCCGGAGCGGTTCGGTGGCTTCAACACCCCCGACCCCTCGTACAACGGGCTGGTCTACGCCCGCGACCTCGGCGTCGACGGCGCGCTGGGGGCCAACCTCGCCTTCATCCTCAAGGCGCGGGTCCAGCTCCTGCGCGACCTCGGCTCGGCGGTCTCGCCGTTCAACGCCTTCCAGATCGCGCAGGGCATCGAGACGCTCTCGCTGCGCGTGGAGCGCCACGTCGACAACGCCCAGCGGGTGGCCGAGTGGCTCGAGCAGCGCGACGACGTGCTGCGCGTGCACTACGCCGGCCTGGAGTCCAGCCCCTGGCACGCGGTCCAGCAGCGCTATGCCCCGCGCGGCGCCGGCGCCGTGCTCGCCTTCGAGCTCGACGGCGGCGCGGAGGCCGGGCAGGCGTTCGTCTCGGCGCTGCAGCTCCACTCGCACGTGGCGAACATCGGCGACGTCCGCTCGCTGGTGATCCACCCCGCCTCGACGACGCACAGCCAGCTCAGCGAGGCCGAGCAGGCCCAGTCCGGCGTCACGCCGGGGCTCGTGCGCCTCGCCGTGGGCATCGAGGACGTCGAGGACGTCCTGGCCGACCTCGAGCTGGGCTTCACCGCGGCCAAGGCGGCGCTCGACGGCTGAMTDTPRWSFATRQIHAGQTPDPATGARALPIYQTTSYVFDDAKTAANRFALAELGPIYTRITNPTQETVENRIADLEGGVGALLLASGQAAETFAILNVAEAGDHVVASASLYGGTYNLLKHTLTRFGITTTFVEDAHDADAWRAAVQENTKAFFAETIPNPKNDFLDIALVADVAHEAQVPLIVDNTVATPYLVRPIEHGADVVVHSATKYLGGHGTTVAGVIVDSGNFDYARYPERFGGFNTPDPSYNGLVYARDLGVDGALGANLAFILKARVQLLRDLGSAVSPFNAFQIAQGIETLSLRVERHVDNAQRVAEWLEQRDDVLRVHYAGLESSPWHAVQQRYAPRGAGAVLAFELDGGAEAGQAFVSALQLHSHVANIGDVRSLVIHPASTTHSQLSEAEQAQSGVTPGLVRLAVGIEDVEDVLADLELGFTAAKAALDGPGPT0001995_264DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001995-metC-K01760NANA
AK018_03775495ppa_1COG0221Inorganic pyrophosphataseGTGGAGTTCGACGTCACCATCGAGATCCCGAAGGGTCAGCGGAACAAGTACGAGGTGGACCACGAGACCGGTCGCATCCGCCTGGACCGCATGCTCTTCACCTCGACCCGATACCCGGACGACTACGGGTTCATCGAGGGCACGCTCGGTGAGGACGGCGACCCTCTGGACGCCATGGTCCTGCTCGAGGAGCCCACGTTCCCCGGCTGCCTGATCAAGTGCCGCGCGCTGGGGATGTTCCGCATGCGCGACGAGGCCGGCGGCGACGACAAGGTCCTCTGCGTACCGACCGGTGACCAGCGCGCCGCCTGGCGCCAGGACATCGACGACGTCTCGGACTTCCACCGCCTGGAGATCCAGCACTTCTTCGAGGTCTACAAGGACCTGGAGCCCGGCAAGTCCGTCGAGGGCGCCCACTGGGTCGGCCGCGAGGACGCCGAGGCCGAGATCAACCGCTCGATCCAGCGCGCCAAGGACTCCGGCTACCACCACTGAMEFDVTIEIPKGQRNKYEVDHETGRIRLDRMLFTSTRYPDDYGFIEGTLGEDGDPLDAMVLLEEPTFPGCLIKCRALGMFRMRDEAGGDDKVLCVPTGDQRAAWRQDIDDVSDFHRLEIQHFFEVYKDLEPGKSVEGAHWVGREDAEAEINRSIQRAKDSGYHHPGPT0002600_4381DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATASE_ACTIVITYP-SOLUBILISATION-INORGANIC_PHOSPHATASE,PGPT0002600-ppa-K01507NANA
AK018_037761419COG2027CarboxypeptidaseATGGGGTGGCGGCTGAGGGTCGGTGCCGCCGTGACGTCGGTCCTCACCCTGTTCGGCGGGTACCTCGTGGCCGACGCCTACGACGTCGTGCCCGGCATGGTCACCTTCGACCCGCCCCACGCCACGCCCGCGCCCTTCCCCTCCGCGCCCGGTGCCACCACCGGCCCCACGCCCCGGACCGCCGTGCCGCCGCTGTCCTCCGAGGCCCCCTCGCCGGACACCGCCGCCGTCGAGGACCTCGTGGACGGGATCGTCGACGACGAACGCCTCGGCAACCGGGTGGGCGTCGTCGTCGCCGACGCCGACACCCGCGAGACGCTCGGTGCGTCCGGACCGGACCGGCTCATGGTGCCCGCCTCCACCCAGAAGGTCCTCACCGCCGTCGCCGCCTACGCCGGCCCGGGCGGCGAGGTCACCCTGCCCACCCGGGCGATGCTGCAGGGGTCCTCGCACGTCGTGCTCGTCGGCGGCGGGGACATGATGCTCGCCGCAGACGACGGCGACCCGGACGTCGTCAACGGGCACGCGGGTCTCGGCGACCTCGCCGACCAGGTCGCCGACGAGCTCGGGCTCTCCGGCCGGGACACCGTCACCTTGTCCGTCGACGACACCCTGTTCACCGGGCCGGCGCTCGCGCCGTCCGTCCGCCGCAGCGACGCCGCCGCCGGGTACGTCGCCCCCGTGGCGGCGCTCGCCGTCGACGTCGCCCGCCTGGCCGACGAGAAGTACGCCCCGCGCCAGTCCGACCCCGCGATGGCCGCCGCCGAGACGTTCGCCGAGGCGCTGTCCGACCGCGGACTGACGGTCGCGGGCAGCGTCCGGCGCCACGAGGCGCCGTCGTCCGCCCGGGAGATCGGGCGGGTCGAGTCCGCCCCGCTCGGTGCGATCGTCGACTACTTCCTCGCCGAGTCCGACAACACCCTGACCGAGGTGGTCGGCCGGGTCGTCGCCCTGGACGCCGGGCTGCCCGGTTCGCAGGCCGCCGCCATCAGCGAGGTCGTGGCCGCCGTCGAGCGCCTGGGCGTCGACCTGTCCGGTGCCGAGCTGATGGACCTGTCGGGGCTGGGCGTCGGCTCGCTGCTGACCCCGGCCCAGGTCGTCGCCACGCTCGAGGTCGCCGCCCAGGACCCCGCGCTGCGCGAGACGCTGATCGGGCTGCCCGTCGCCGGGATGCAGGGCACGCTCGCCGACCGGTTCGGGCAGGACAACCCGGGCCGCGGCTACACCCGGGCCAAGACCGGCAGCCTGCCCGACACCCGCGCCCTGGCCGGGACCGTGGTCACCGCCGACGACCGGCTGCTGCTGTTCACCGTCATCGCCGACCGCATCCCGGACGGGCAGTCGTTCGGGGCCAACTTCATCATCGACGACTTCGTCGGCGACCTCGCCGCCTGCGGCTGCCGTCCGCAGGGCGGCTGAMGWRLRVGAAVTSVLTLFGGYLVADAYDVVPGMVTFDPPHATPAPFPSAPGATTGPTPRTAVPPLSSEAPSPDTAAVEDLVDGIVDDERLGNRVGVVVADADTRETLGASGPDRLMVPASTQKVLTAVAAYAGPGGEVTLPTRAMLQGSSHVVLVGGGDMMLAADDGDPDVVNGHAGLGDLADQVADELGLSGRDTVTLSVDDTLFTGPALAPSVRRSDAAAGYVAPVAALAVDVARLADEKYAPRQSDPAMAAAETFAEALSDRGLTVAGSVRRHEAPSSAREIGRVESAPLGAIVDYFLAESDNTLTEVVGRVVALDAGLPGSQAAAISEVVAAVERLGVDLSGAELMDLSGLGVGSLLTPAQVVATLEVAAQDPALRETLIGLPVAGMQGTLADRFGQDNPGRGYTRAKTGSLPDTRALAGTVVTADDRLLLFTVIADRIPDGQSFGANFIIDDFVGDLAACGCRPQGGPGPT0024035_2019DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024035-dacB-K07259NANA
AK018_037771128hypothetical proteinGTGACCTCCACGAGCGCCCTCGTCGACTGGCAGACCGCCGCCCAGATCGCCCGCCGCGTCGGGCGCCCCGGACCGGTCGCGCCGCGCGCCGAGCTCGACGACCTCGTCGACGGGCTGCGCACCGCGGCCCGGGACGCGGTCCCGCACGTGCTGCGGGTGACCCGGATGCGGCCCGCGGGCGCAGAGGTCGAGCGCGAGCGCGACGCCTCCGGACGGTTCACCCGCCGGGTCACCGTCAAGCGTCCCGACCTGGGCGACGTCCGGGTCGTGGACCGCGCCACCTGGGCGCGGGCCAACACCACCTCCATGGCGGCCCTGACCGACCCCGTGCTCGCCGACCTCGACGTCGGGGCGCGGCTGGGGGAGTCCTCGGCCGCCCGGCTCGCCGGCGCCGCCGAGGTCGGCGGGCTGCTGGCCCTGCTGTCGACGAAGGTGCTCGGCCAGTTCGACCCGTACGGCCCCGGACGGCCGACGCTGCTCCTCGTGGCACCCAACGTGCTCGCCGCGGAACGGGCCATGAAGGTCGACCCGCACGACTTCCGGCTCTGGGTGTGCCTGCACGAGCAGACGCACGCGCTGCAGTTCGCCGCCGCTCCGTGGCTCGCCGACCACCTCGCCGGCCGGCTCGGCGGCCTGCTGCGGGACGTCACGACCTCCTCGGTCGAGCTCAGCCACGCCCCGTGGCGGGACAAGGTGGCGCTCGTGGGACGCACCCTGCTGGACGCGGTACGCGGCGACCTCACCACCCCGGTCGACCAGGTGATGGGGCCCGAGCAGAAGGAGCAGCTGGCCGAGATCACCGCCGTCATGGCCCTGCTCGAGGGGCACGCCGACGTCATGATGGACGCCGTCGGACGGCGCGTCGTGCCGTCCGTGCGCACCATCCGGTCCCGCTTCGAGAAGCGGCGCGACGGCGAGGGCGCGCCCCGGCTCGACGTCGTGCTGCGGCGCGTGCTCGGCATGGACGCCAAGCTCGCCCAGTACCGGGACGGTGCCGCGTTCGTGCGGGAGGTCGAGAAGCAGGTCGGCCGCGACGGTCTCAACGCCGTCTGGGCCGAGCCCGCCCACCTGCCCAGCGCCCGGGAGATCGCCGACCCGCGCGCGTGGGTCCGCCGCGTGCACTCCTGAMTSTSALVDWQTAAQIARRVGRPGPVAPRAELDDLVDGLRTAARDAVPHVLRVTRMRPAGAEVERERDASGRFTRRVTVKRPDLGDVRVVDRATWARANTTSMAALTDPVLADLDVGARLGESSAARLAGAAEVGGLLALLSTKVLGQFDPYGPGRPTLLLVAPNVLAAERAMKVDPHDFRLWVCLHEQTHALQFAAAPWLADHLAGRLGGLLRDVTTSSVELSHAPWRDKVALVGRTLLDAVRGDLTTPVDQVMGPEQKEQLAEITAVMALLEGHADVMMDAVGRRVVPSVRTIRSRFEKRRDGEGAPRLDVVLRRVLGMDAKLAQYRDGAAFVREVEKQVGRDGLNAVWAEPAHLPSAREIADPRAWVRRVHSNANANANANA
AK018_037781086tilS_1COG0037tRNA(Ile)-lysidine synthaseGTGCCCCGCATCGACCCGGCGCTCGCCGCCGCCCGCACCGCGGTCCGCGCCGACCTGGCCGACCTCGGCCCCGGCGACCTCGTGCTCGTCGCCTGCTCGGGCGGCCCGGACTCGCTGGCGCTCGCGGCCGCCGTCGCGCACGAGGCGCGCCGCGTGGGCCGGTCCGTCCGCTCGCGCGGGTACGCGGTCCGCGCGGGCGCCGTCGTCGTCGACCACGGCCTGCAGCCCGGGTCGGCCGCCGTGGCCGCCCGGGCCGCCCGGCAGTGCCGCGCCCTCGGTCTCGACCCGGTCCTGGTGCGCACCGTCGACGTCGTCGTGGGTCGCGACGGGACGGAGGCGGCCGCCCGCACCGCGCGCTACGCGGCGCTGGAGGCCGCGGCCGCCGGGTCCGGTGCGGCCGCCGTGCTGCTGGGGCACACCCTGGACGACCAGGCCGAGCAGGTGCTGCTCGGTCTCGCCCGGGGCAGTGGCGCCCGCTCCCTCGGCGGCATGCCGGCCCGCCGCGGGCCCTACCGACGCCCGTTCCTGACCCTCCGGCGCGAGCAGACGCTCGCCGCGTGCGCCGCGAGCGGCATCGTGCCGTGGCACGACCCGACGAACTCCCCGGGGCCCGACGGCGGCACCCCCGCGCCGTTGCGCTCGCAGGTGCGGGGGCGGCTGCTGCCGGTGCTGGCCGAGGTCCTCGGTCCCGGGGCGGTCGAGGCGCTCGCCCGCAGCGCCGACCAGCTGCGCGACGACGCCGCCGTCCTCGAGAACCTGGGGGCGGAGCTGCTGGCCGCGGCGCGGCCCGGCGAGCAGCCGCGGGGTCCGGCCGACCCGGTGGTGCTCGACGTCGCACCGCTGGAGCAGGCGCCGGCCGCGGTACGGCGCCGCGCGCTGCGGGCGGCGGCCCTGGAGGCCGGGTGCCCCGCCGGGGCCACCACGTCCCGGCACGTCGACGCCCTCGACGCGCTCGTGGTGCGGTGGCGCGGCCAGGGGGCGGTGCACCTGCCCGCCGACGTCCGTGCGGTGCGGGACTGTGGCAGGCTGTTCCTGCGGCCGTCGGTGACGGGTCCGCGTCACCCTGCCACGCACCCCGAGGAGTAGMPRIDPALAAARTAVRADLADLGPGDLVLVACSGGPDSLALAAAVAHEARRVGRSVRSRGYAVRAGAVVVDHGLQPGSAAVAARAARQCRALGLDPVLVRTVDVVVGRDGTEAAARTARYAALEAAAAGSGAAAVLLGHTLDDQAEQVLLGLARGSGARSLGGMPARRGPYRRPFLTLRREQTLAACAASGIVPWHDPTNSPGPDGGTPAPLRSQVRGRLLPVLAEVLGPGAVEALARSADQLRDDAAVLENLGAELLAAARPGEQPRGPADPVVLDVAPLEQAPAAVRRRALRAAALEAGCPAGATTSRHVDALDALVVRWRGQGAVHLPADVRAVRDCGRLFLRPSVTGPRHPATHPEENANANANANA
AK018_03779552hpt_1COG0634Hypoxanthine-guanine phosphoribosyltransferaseGTGGACAAGTCGGACGTCGCCGGCGACCTCGCCGACATCCTGATCACCGAGGAGCAGATCGGCACCCGTCTGGACGAGATGGCGGCGCAGATCGACGCCGACTACGCCGGCAAGGACGTGCTCCTCGTCGGCGTGCTCAAGGGTGCGGTCATGGTCATGGCCGACCTCTCGCGCCGCCTCCACCACCCCCTGGAGATGGACTGGATGGCGGTGTCCTCCTACGGCTCGGGCACCAAGTCCTCCGGCGTGGTGCGCATCCTCAAGGACCTGGACTCCGACCTGACCGGTCGGGACGTGCTCATCGCCGAGGACATCATCGACTCCGGCCTGACGCTGTCGTGGCTGGTGCAGAACCTGCGCTCGCGCGGACCGGCGTCGGTGGAGATCGCCACGCTGCTGCGCAAGCCGGACGCCGCCAAGGTGGACGTCGACGTGCGGTACGTCGGGTTCGACATCCCGAACGAGTTCGTCGTCGGCTACGGCCTGGACTACGCCGAGAAGTACCGCAACCTCCCCTTCATCGGCACCCTCGCCCCGCACGTCTACTCCTGAMDKSDVAGDLADILITEEQIGTRLDEMAAQIDADYAGKDVLLVGVLKGAVMVMADLSRRLHHPLEMDWMAVSSYGSGTKSSGVVRILKDLDSDLTGRDVLIAEDIIDSGLTLSWLVQNLRSRGPASVEIATLLRKPDAAKVDVDVRYVGFDIPNEFVVGYGLDYAEKYRNLPFIGTLAPHVYSPGPT0007295_1623DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0007295-hprT|hpt-K00760NANA
AK018_037802106ftsH_1COG0465ATP-dependent zinc metalloprotease FtsHATGAACTTCAAGAAGATCTTCAGCGGACCGCTCGTCTGGATCGTGCTCGGCCTGATCCTGGTCGCGCTCGCCTTCTCGGCCTTCACCGGTGAGCGGATCGAACGTGTCGAGACGTCGCAGGGCCTCGAGCTGCTGTCCGGCGACACGGTCGACCACGCGCTCATCGTGGACGGCGACCAGCGCGTCGAGCTCGAGCTCAGCGAGCCGTACGTCACCGACTCCGGCACCGAGGACGAGCGGGACCACGGCGAGAAGGTCGACTTCTTCTGGGTCCAACCCCAGGGCGAGGACGTCGTGTCCGCCGTGGAGTCCGCCGACCTCGCCGAGGGCTACGACACCTACGTGCCGCAGCCGTCGTTCCTCGGCTCGATGCTGTCCTTCCTCGTGCCCTTCCTGATCATCCTGGTGATCTTCTGGTTCGTGCTCTCGCGGATGCAGGGCGGCGGGCGCAACGGCGTCATGGGCTTCGGCAAGTCCAAGGCGAAGATGATCTCCAAGGACACCCCGCAGGTGACGTTCGCCGACGTCGCGGGCGTGGACGAGGCCGTCGAGGAGCTCCACGAGATCAAGGAGTTCCTCTCCGAGCCGGAGAAGTTCCAGGCCGTGGGCGCCAAGATCCCCAAGGGTGTGCTGCTGTACGGTCCGCCCGGGACGGGCAAGACCCTCATCGCCCGTGCCGTCGCGGGCGAGGCCGGCGTGCCCTTCTACTCGATCTCGGGCTCGGACTTCGTCGAGATGTTCGTCGGCGTCGGCGCCTCGCGCGTGCGCGACCTGTTCGAGCAGGCGAAGAACAACTCGCCCGCGATCATCTTCGTCGACGAGATCGACGCCGTCGGCCGCCACCGCGGCGCCGGCATGGGCGGCGGTCACGACGAGCGCGAGCAGACGCTGAACCAGATGCTCGTCGAGATGGACGGCTTCGACGTCAAGACGAACGTCATCCTCATCGCGGCGACGAACCGCCCGGACATCCTCGACCCCGCGCTGCTGCGCCCGGGCCGATTCGACCGTCAGGTCGCCGTCGAGGCGCCGGACCTCAAGGGCCGCGAGCACATCCTGCAGGTGCACGCCCAGGGCAAGCCGATGGTCGAGACCGTCGACCTCGCCGCCGTGGCGCGCCGCACGCCCGGGTTCACCGGCGCCGACCTGGCCAACGTGCTCAACGAGGCCGCGCTGCTGACCGCCCGCTCCGGGGCCCAGCTCATCGACGACCGGGCGCTGGACGAGGCGATCGACCGCGTGCTGGCGGGTCCGCAGAAGCGCACCCGGGTGATGAAGATCAAGGAGCAGAAGATCACCGCGTACCACGAGGGCGGGCACGCCCTGGTGGCGGCCGCCATGCGGTACACCGACCCGGTGACGAAGGTGACGATCCTGCCGCGCGGGCGGGCCCTCGGCTACACGATGGTCATGCCCACCGAGGACAAGTACTCCACCACCCGCAACGAGCTCCTCGACCAGCTCGCCTACGCCATGGGCGGCCGCGTGGCCGAGGAGATCGTGTTCCACGACCCCACGACCGGGGCCAGCAACGACATCGAGAAGGCCACCGCCATCGCCCGCAAGATGGTGATGGAGTACGGCATGAGCGAGAAGGTCGGCGCGCTCAAGCTCGGGTCCGCCTCCTCCGAGCCGTTCCTGGGCAAGGACATGGGCCACCAGCGCGACTACTCGGAGGCCGTGGCGGGCACCGTGGACCACGAGGTCCGCAAGCTCGTCGAGGCCGCGCACGACGAGGCGTGGGAGGTCCTGTCCGAGTACCGCGACGTGCTCGACGACCTCGTCCTGCAGCTGCTCGAGCACGAGACGCTCAACCAGGAGGAGCTGGCCGCGGTCTTCGCCCCGGTGAGCAAGCGCCCCGCGCGGGACGTCTGGCTGTCCAGCACCGAGCGCACCGTCCACGACCGCGGTCCGGTGATGACCGAGGGCGAGCAGGCCGCGTACGCGACGAACGGCCATGCCGGTCTCCCGCAGGACGAGGCCGCCGTCGTGGGCAACGTCGAGGCCGAGGCCGCGGCGTCCCGTCGCCCGCACGAGCGTCCCGGGGGCGACGACGGCGCGACGGCGGAGCGCACCGACGGCCGTTCCGACGGCGAGGAGACCTGAMNFKKIFSGPLVWIVLGLILVALAFSAFTGERIERVETSQGLELLSGDTVDHALIVDGDQRVELELSEPYVTDSGTEDERDHGEKVDFFWVQPQGEDVVSAVESADLAEGYDTYVPQPSFLGSMLSFLVPFLIILVIFWFVLSRMQGGGRNGVMGFGKSKAKMISKDTPQVTFADVAGVDEAVEELHEIKEFLSEPEKFQAVGAKIPKGVLLYGPPGTGKTLIARAVAGEAGVPFYSISGSDFVEMFVGVGASRVRDLFEQAKNNSPAIIFVDEIDAVGRHRGAGMGGGHDEREQTLNQMLVEMDGFDVKTNVILIAATNRPDILDPALLRPGRFDRQVAVEAPDLKGREHILQVHAQGKPMVETVDLAAVARRTPGFTGADLANVLNEAALLTARSGAQLIDDRALDEAIDRVLAGPQKRTRVMKIKEQKITAYHEGGHALVAAAMRYTDPVTKVTILPRGRALGYTMVMPTEDKYSTTRNELLDQLAYAMGGRVAEEIVFHDPTTGASNDIEKATAIARKMVMEYGMSEKVGALKLGSASSEPFLGKDMGHQRDYSEAVAGTVDHEVRKLVEAAHDEAWEVLSEYRDVLDDLVLQLLEHETLNQEELAAVFAPVSKRPARDVWLSSTERTVHDRGPVMTEGEQAAYATNGHAGLPQDEAAVVGNVEAEAAASRRPHERPGGDDGATAERTDGRSDGEETNANANANANA
AK018_03781630folE_1COG0302GTP cyclohydrolase 1GTGACGGAGCCGGACCTGCCGCTGACGCCGGTCTCGCTCGGGATGCGGCCGGCGGCCGACGTGCCGCCCTACGACGCCGAGCGCGCCGAGGCGGCGATCCGCGAGCTGCTGCTCGCCGTCGGTGAGGACCCGGACCGCGAGGGTCTGCGCGACACCCCGGCGCGGGTGGCACGCGCCTACCGGGAGATCTTCGCCGGGCTGCACCAGGAGCCCGAGGACGTCCTGACCACCACCTTCGACCTCGGGCACGAGGAGATGGTGCTGGTCAAGGACATCGAGGTGTACTCCACGTGCGAGCACCACCTGGTTCCGTTCCACGGGCTCGCGCACATCGGCTACATCCCGAGCGCCGAGGGGCGGATCACCGGGCTGTCCAAGCTCGCCCGGCTGGTCGACGTCTACGCCAGGCGCCCCCAGGTGCAGGAGCGCCTCACCACGCAGATCGCCGACGCCCTGGTGCGGATCCTCGACCCGCGCGGCGTCATCGTCGTCGTGCAGTGCGAGCACCTGTGCATGTCGATGCGCGGGGTGCGCAAGCCCGGGTCCCGGACGGTCACCTCGGCCGTGCGGGGCGTCATGCAGACCGCCGCCACGCGGTCCGAAGCGATGAGTCTGATCCTGGGGCACTGAMTEPDLPLTPVSLGMRPAADVPPYDAERAEAAIRELLLAVGEDPDREGLRDTPARVARAYREIFAGLHQEPEDVLTTTFDLGHEEMVLVKDIEVYSTCEHHLVPFHGLAHIGYIPSAEGRITGLSKLARLVDVYARRPQVQERLTTQIADALVRILDPRGVIVVVQCEHLCMSMRGVRKPGSRTVTSAVRGVMQTAATRSEAMSLILGHPGPT0007875_1764DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007875-folE-K01495NANA
AK018_03782894folP1_1COG0294Dihydropteroate synthaseATGAGTACTCGCGACGCCGTGGTCGCCGGTCTGCCCGAGCTGTCCGGCGCCGGCCGCTGCCTCGTCATGGGCGTGGTCAACATCACGCCGGACTCGTTCTCCGACGGCGGGGAGTGGTTCGAGCCCGAGGCCGGCGTCCAGCACGGCCTCGACCTGCTCGCCGAGGGCGCGGACGTCCTCGACGTGGGCGGGGAGTCGACCCGACCCGGCGCGCAGCGGGTGACCGAGGCCGAGGAGCTGCGGCGCGTCGTCCCCGTCATCGGGCGCCTGGCCGCCGCCGGTGCGGTCGTGTCCGTCGACACCACGCGGGCCGCCGTGGCCGAGCGGGCGGTGGCGGCCGGGGCACGGTTGGTCAACGACGTCTCCGGCGGGCTGGCCGACCCGGACATGGCGGGCGTCGTGGCCGAGACGGGCGTGCCGTACGTGGCGATGCACTGGCGCGGGCACAGCGACGTCATGGACGCCCGGCAGGACTACGACGACGTCGTGACGGACGTGCGCGACGAGCTCGCCGCCCGGGTCGCGGCCCTGCACGACGCCGGGGTCGCGCACGAGCAGATCGTGCTCGACCCGGGCCTCGGCTTCGCCAAGTCCGGGGCGCTGAACTGGCCGCTGCTGGCGCACCTGGACGCTCTGCACGCCCTGGGCCGCCCCCTGCTGGTCGGTGCGTCGCGCAAGCGGTTCCTCGGTCACCTCCTCACGGGGGTGCGCGTGACCGCTGCGGACGAGCCGGTCCCGCCCGCGGCCCGGGACGACGCCACGACGGCGATCACCGCGCTGGCCGCACACGCCGGGGCGTGGTGCGTGCGCGTGCACGCCGCGCGTGCGAGCGTTGACGCCGTACAAGTGGCGGCCGCCTGGAGGCAGGCCGAGACGACGGAGGACACCGCGTGAMSTRDAVVAGLPELSGAGRCLVMGVVNITPDSFSDGGEWFEPEAGVQHGLDLLAEGADVLDVGGESTRPGAQRVTEAEELRRVVPVIGRLAAAGAVVSVDTTRAAVAERAVAAGARLVNDVSGGLADPDMAGVVAETGVPYVAMHWRGHSDVMDARQDYDDVVTDVRDELAARVAALHDAGVAHEQIVLDPGLGFAKSGALNWPLLAHLDALHALGRPLLVGASRKRFLGHLLTGVRVTAADEPVPPAARDDATTAITALAAHAGAWCVRVHAARASVDAVQVAAAWRQAETTEDTAPGPT0007915_913DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796NANA
AK018_037831506hypothetical proteinGTGACATTCGCCGACGCCGTGACGGGGTCGGACGGCCGACCCCTCGACCAGATCCGGCTGACCGGGGTGACCGCGACCGGTCACCACGGCGTGCTGCCGCACGAGCGCGCGGAGGGCCAGACCTTCCGCGCGGACGTCGTGCTGCACCTGGACGCGCGCCCCGCCGCCGGGTCGGACGACCTGGCCGCGACGGTCAGCTACGCCGAGGTCGCCGAGGACGTCCACGACGTGCTCTCGGGGTCCCCGGTGGACCTCGTCGAGACGCTCGCCGAGCGGATCGCCGCCGTCGTGCTGTCCCGGTCGGCCGTGCACGCCGTCGACGTGCGAGTGCACAAGCCGCAGGCGCCGATCCCGGTGCCGTTCGACGACGTCGAGGTCGTGGTGCGCCGCGACCGGGAGAACCCGCCCGCCGTGCCGGCCGCGACGAGCACGGACCAGCAGGTCTCCTCGGCACCGGCACCGACCCCTGCGCCGGCCCCCGCACCGGCGGCGGCTCCCGTCCCCGCGCCGCCGGTGCCGCCCCCGCCGGCGCCGCCCGAGCCGGTGGCCGCGACCCCGGTGCCCGCGGCGACCTCGCTCCCGACCCCCGCGGTCGCCGAGACGGCGGTCCCGGCGCCTCCCGCCCCGGACGAGACCACCGTCGACGCCGCACCCGTCCCGGGCCCGGAGGCCCCCGGCCCGGAGTCCGCGCCGGCGCCCCCCGCCGTCGACCCGCTCGACGAGGCCCCCGAGGCGCCCGTGGACGCGGTGCTCGCCCTCGGGGCCAACCTGGGCGACGCCCAGGGCACGCTGCGCGCCGCCGTCACCGACATCGACCGCGTCCCCGGGGTGCAGGTCATGGAGGTGTCCCCGCTCGCCCGGACCGTCGCCGTCGGACCCGAGCAGCCCGACTTCCTCAACGCCGTGCTCCTGGTGCGCACCACGCTGCCCGCGCGCGACCTGCTGGGTGCCTGCCAGGAGGTCGAGCTCCTGCACGGCCGGGTGCGGGACGAGCGGTGGGGCCCGCGCACGCTGGACGTGGACGTCGTCCAGTACGGGGACCTGACGTCGACCGCCGAGGACCTGGAGCTGCCGCACCCGCGGGCGCGGGAACGGGCGTTCGTGCTGGTGCCGTGGGCCGAGGTGGATCCCCAGGGCGTGCTCGTCGGTCTCGGCGGCGGACCGGTGGCCCAGCTCGCCGCCACCGCGCCCGACCGGTCGGGCATCCGGTGGCTCGCGCTCGACTGGCTGACCGAGCCGGCCTCGAGCGGCGCGGTCCCGGCGGCACCGTCCCCGCAGGCGCCCTCCTCGCAGCCGGTGCCCGCGGCACCGCCGTCGCACCCCTCCCCGCAGGCGCCGAGCACCGCGGCCTTCCCGGCCCAGGCGCCGCCGTCGGTGCCGGTGCCGCGTCAGGACCCGCCCGACGACGTGCCGCCGGCGCAGGAGCCGCGCGGTTTCGTGGCCGCTGCCGGCATGCACGCCCCGATCCCGCCCGCGCCGGACGCCGAGCACCCGGAACGCGCCTGAMTFADAVTGSDGRPLDQIRLTGVTATGHHGVLPHERAEGQTFRADVVLHLDARPAAGSDDLAATVSYAEVAEDVHDVLSGSPVDLVETLAERIAAVVLSRSAVHAVDVRVHKPQAPIPVPFDDVEVVVRRDRENPPAVPAATSTDQQVSSAPAPTPAPAPAPAAAPVPAPPVPPPPAPPEPVAATPVPAATSLPTPAVAETAVPAPPAPDETTVDAAPVPGPEAPGPESAPAPPAVDPLDEAPEAPVDAVLALGANLGDAQGTLRAAVTDIDRVPGVQVMEVSPLARTVAVGPEQPDFLNAVLLVRTTLPARDLLGACQEVELLHGRVRDERWGPRTLDVDVVQYGDLTSTAEDLELPHPRARERAFVLVPWAEVDPQGVLVGLGGGPVAQLAATAPDRSGIRWLALDWLTEPASSGAVPAAPSPQAPSSQPVPAAPPSHPSPQAPSTAAFPAQAPPSVPVPRQDPPDDVPPAQEPRGFVAAAGMHAPIPPAPDAEHPERAPGPT0007900_22DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007900-sulD-K13940NANA
AK018_03784456hypothetical proteinGTGCGCACGCTGGTCGCCGTCGCGGTCGGGGTCGCCGCCGTCGGGACCCTGCTGCTGCGCCTGCTCGAGACCCGGGGGGTCTACCTGCCGGGAGCGGCGTGGGTGGAGGTCGTGGCACTCGTCCTCATCGCCGGCCTCGTGCTGTGGGCCGGGTGGGCCGTCCGCGCCTACCTGCGCGGCGAGAAGCCGGACCTCGACCCGCTGCGTGCCGCCCGCACGTTCGCCATGGCCAAGGCCGCGGCGTACACGGGAGCGCTGCTGACGGGGCGCTACGCCGCGTCCGTGCTGCTCGTCCTGCCGCAGCTCGCCGTCGAGCCCCGCCGGGAGGTGGCCATCACCTCGGGCGTGGCGGCCTTGGCGGCGATCGGTCTGGCCGTCGTCGGCCTCGTCGTCGAGAAGTTCTGCGAGGCGCCCCCGCCCGAGGAGGACGAGGGCCGCGAGGCGATCCCGTCCTGAMRTLVAVAVGVAAVGTLLLRLLETRGVYLPGAAWVEVVALVLIAGLVLWAGWAVRAYLRGEKPDLDPLRAARTFAMAKAAAYTGALLTGRYAASVLLVLPQLAVEPRREVAITSGVAALAAIGLAVVGLVVEKFCEAPPPEEDEGREAIPSPGPT0007900_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007900-sulD-K13940NANA
AK018_03785504hypothetical proteinATGACACACCCCGCATCGGGTCCGGCCGACCCGTTCGACCCGCCGGACGTGACCTGGGACCGGGTGTCCCCCCGGCTGGTCCCCGCGCGACTGGTCGTCGTGGGGTTCTGGCTCGGGCTGCCGCTGCTGGTCTGCCTGGTCCTCGCGCTCGCGGTCACGGGATGGCTGTGGATCCCGGCGGCCGTCTGCGCCCTCCTGCTGCTGTGGATCGGGCTGCTCGTGCCGCGCCAGGTCCGCGCGATCGGGTACGCCGAGCGGGACGACGACCTGCTGATCCGCAAGGGCATCCTCTTCCGCGAGCTGGTCGTGGTCCCGTACGGGCGCATGCAGTTCGTCGACGTCACCGCCGGTCCGCTGGACCGCCGCCTGAACATCGCCACGGTGCAGCTGCACACGGCCTCGGCCAGCACGGACGCCGAGATCCCGGGGCTGACCCCGGACGAGGCGGAGCGGCTGCGGGACCGCCTGACGGCGCGCGGCGAGGCGAGGCTGGCCGGGCTGTGAMTHPASGPADPFDPPDVTWDRVSPRLVPARLVVVGFWLGLPLLVCLVLALAVTGWLWIPAAVCALLLLWIGLLVPRQVRAIGYAERDDDLLIRKGILFRELVVVPYGRMQFVDVTAGPLDRRLNIATVQLHTASASTDAEIPGLTPDEAERLRDRLTARGEARLAGLNANANANANA
AK018_037861647hypothetical proteinGTGAGCGCCGCGGAGCCGACGTCGGGGGCCACGGGGACGGCACCGGCGCGCGAGTGGCGACGGGTCCACCCGATCACGCCCGTCGTGCGGGGCTGGGCCGCCATCGCCGTGCTGCTGTTCGTCCTCGGGCAGCAGGCGATCGAGAGCCTCGAGTACGCCGACGAGGTCGTCGACGGCGTCACCCGGGTGTGGTGGCTCGCGGTCCTGGTGGTCCTCGTCGTCCTGGCGGTCATCTTCGGCGTCTCCGCGCTCGCCTGGCGCATGACCTCCTACGCGGTGGACGACGACGCCGCCCACCTGCGCAAGGGCATCCTGTTCCGCCAGCAGCGGCACGCGCGGCTCGACCGGCTGCAGGCCGTCGACGTCCGTCAGCCCCTGCTCGCCCGGCTGTTCGGGCTGGCCGAGCTGACCCTGGAGGTCGCCGGCGGGTCGGACTCCGGGGTGGTGATCGGGTTCCTGCGTCTCGACGACGCCAAGCAGCTCCGTGCCGAGCTGCTGGCGCGCGCCGCCGGGGTCAAGGCACGGCGGGCCGGCGGCACGGCAGGCTCGACCCCGGCCGGCTCCGCCCCGGCCGGCTCCGCCCCGGCCGGCTCCGCCCCGGCCGGCGTCACTGCGGACGGCGCCCCCGCAGGCCCGGACGTCGCCACCGAGCCGTCGCCCGCCGCGGCGACCACCGGACCGGTCGTGGCGGAGGTGCCGCCGCCGGCCGAGGAGGCCCCGGAGAACCTCGTCTACGAGGTCCCCCCGGGTCGGCTGGTCGTGTCGCTGCTGCGGCTGCCCGCCGTCTGGGTCGCCCTCGCGGTGCTCGTCGCTCTCGTGGTCTTCGTGCTGGTCACCCGCGCCGTCGGCGTGCTGGTCTCCATGCTGCCGGTGGCGTTCGGCGTCGCGACGTTCCTGTTCAACCGGTTCGCCGGGGAGTTCGGCTTCCGGGCCGCGATCTCCCCGGACGGGATCCGGCTGCGGCACGGGCTGCTGGAGACGCGCGCGCAGACCATCCCGCCCGGCCGGGTGCAGGCGCTGGAGCTCACCCAGGGCTTCTGGTGGCGCGGCAAGGACTGGTGGCGGATCAAGGTCAACGTCGCCGGGTACGGCGGCGAGGAGCAGAACGCCACCCAGAACGTGCTCCTCCCGGTCGGACCGCGGTCCGAGGCGATGGCGGCGCTGTGGCTGGTGCTGCCCGACCTCGGGGCCGAGGACGCGACCGAGCTGCTCGACGAGGCCCTGACCGGGGACGCGCGCACGGACCGTTTCTTCACCACGAGCCCGCGTCGTGCCCGGCTGCTGGACCCGATCAGCTGGCGCCGCAACGGGTTCGCCGTCGCCGACCGGGCACTGCTGCTGCGCGGCGGACGGCTGACCCGGCGACTGTCCGTCGTCCCGCACGAGCGCACCCAGTCCCTCGGCCTCGAGCAGGGGCCGTGGCAGCGGCGGCGGGGACTGACGACCTTCGCGGTGCACTCCACGCCGGGCCCGGTCACCACCCGTGCCCACCACCTCGACACCCCCGACGCGCAGCACCTGCTGGCCGAGCAGTCGGTGCGCGCCCGCGCGGCCCGGTCGCACCAGACGCCGGAGCGCTGGATGGAGCGCGTCGCGCCGCTGGCCCGCCCGGCGGCACCGGGCGACGGACCGGAGGACAGCCTGTGAMSAAEPTSGATGTAPAREWRRVHPITPVVRGWAAIAVLLFVLGQQAIESLEYADEVVDGVTRVWWLAVLVVLVVLAVIFGVSALAWRMTSYAVDDDAAHLRKGILFRQQRHARLDRLQAVDVRQPLLARLFGLAELTLEVAGGSDSGVVIGFLRLDDAKQLRAELLARAAGVKARRAGGTAGSTPAGSAPAGSAPAGSAPAGVTADGAPAGPDVATEPSPAAATTGPVVAEVPPPAEEAPENLVYEVPPGRLVVSLLRLPAVWVALAVLVALVVFVLVTRAVGVLVSMLPVAFGVATFLFNRFAGEFGFRAAISPDGIRLRHGLLETRAQTIPPGRVQALELTQGFWWRGKDWWRIKVNVAGYGGEEQNATQNVLLPVGPRSEAMAALWLVLPDLGAEDATELLDEALTGDARTDRFFTTSPRRARLLDPISWRRNGFAVADRALLLRGGRLTRRLSVVPHERTQSLGLEQGPWQRRRGLTTFAVHSTPGPVTTRAHHLDTPDAQHLLAEQSVRARAARSHQTPERWMERVAPLARPAAPGDGPEDSLNANANANANA
AK018_03787951hypothetical proteinGTGACGGCCCCGGACACCGCGACACGCCCCGGGCGCCTCGGCGTCGGCGTCGTCGGCGCCGGGCGGGTCGGCGCCGTGCTCGGCAGCGCGCTGCGCTCGGCCGGGCACGCCGTCGTCGGGGCCTCCGGGGTCTCGGACGCCTCCCGGGACCGGATCGAGACGATGCTGCCCGGCGTGCCGCACCTGGACGTGCCGGAGATCGTCGAGCGCTCCGAGCTCGTGCTGCTGGCGGTGCCCGACGACGCCCTGGAGGGCCTCGTGTCCGGGCTGGCCGACGTCGGTGCCTGGCAGCCGGGCCAGCTCGTCGTGCACACCTCGGGCCGGTACGGGGCCGAGGTGCTGGCCCCCGCCCGACGCGCGGGAGGGATCCCCCTGGCCATGCACCCGGCGATGACGTTCACCGGCACCTCGCTGGACCTGGCCCGGCTGACCGGCTGCACGTTCGCCGTGACCGCCCCGGCCGCGGTGCTGCCCATCGGCCAGGCGCTCGTCGTCGAGATCGGCGGCGAACCCGTCGTCGTGGACGAGCAGGCCCGCGGGCTGTACCACGCCGCCCTGGCGCACGGTGCCAACCACCTCGTGGTGCTGGTGGCGCAGGCGGCACAGGCCCTCGAGGCCGCCGGCGTGGAGCACCCGGGCCGCGTGCTCGCCCCGCTGCTGGGTGCCGCCCTCGACGGCGCCACGCGGGCGGCGGACCTGCGCGACGGCGAGGGGCCCGGCGCGATCGCCGCCCTGACCGGCCCGGTCGCCCGTGGTGACGCCGGCACGGTGGCCCGGCACCTGGAGGTGCTCGGCGACCTCGCGGCCGGCACGGGGGCGACCGACGTCCCGGACAGCTACACCGGGCTCGCCCGCGGCGCCGCCCGGCGCGCGCTGGCCGCCCACCGCATCGACGACGCCGCGGCGCGGGCGCTGCTGGACGTCCTCGGCGAACCGCCCAAGGAGCACTGAMTAPDTATRPGRLGVGVVGAGRVGAVLGSALRSAGHAVVGASGVSDASRDRIETMLPGVPHLDVPEIVERSELVLLAVPDDALEGLVSGLADVGAWQPGQLVVHTSGRYGAEVLAPARRAGGIPLAMHPAMTFTGTSLDLARLTGCTFAVTAPAAVLPIGQALVVEIGGEPVVVDEQARGLYHAALAHGANHLVVLVAQAAQALEAAGVEHPGRVLAPLLGAALDGATRAADLRDGEGPGAIAALTGPVARGDAGTVARHLEVLGDLAAGTGATDVPDSYTGLARGAARRALAAHRIDDAAARALLDVLGEPPKEHNANANANANA
AK018_03788966panC_1COG0414Pantothenate synthetaseATGACCGCACCTGCCGACCGTGCGACGCCGTCGTCGCCCGCCGACGGCGTCGTCGCGCACACCCGCGCCGAGCTGCGGGACGCCCTGGCCGCCTGGACGATCGGCGGCGCGGACCCCACCGACCGCCGCGCCGTGGTGATGACGATGGGGGCGCTGCACGAGGGGCACCTGGAGCTGGTCCGTCGGGCGCGTGCCGAGGTCGGCCCCGGCGGCCAGGTGGTGGTGACGATCTTCGTCAACCCGCTGCAGTTCGGCGAGGGGGAGGACCTCGACGCCTACCCCCGCGACCTGGCCGGCGACCTGGAGCGGCTGGCCGAGGTGGGGGCCGACGTCGTCTTCGCCCCGACGCCCGACGTGGTCTACCCCGACGGCGACCCGATCGTGCGGGTCTCGGCCGGACGGATCGGCGAGGTGCTGGAGGGCGCGTTCCGGCCCGGCCACCTCGACGGCGTGCTGACCGTGGTGCTCAAGCTGATGCAGCTCACGCGGCCGGACGTCGCGCTGTTCGGCGAGAAGGACGCCCAGCAGCTCCTCGCCGTGCGGCGCATGGTGCGCGACCTCGACCTGGAGGTCGAGATCGTCGGCGTGCCCACCGTGCGCGACGCGGACGGGCTGGCGCTGTCGTCGCGGAACGCGTACCTGTCCGACGGCGAACGGGACGCCGCCCTGGCGCTGTCGCGGGCGCTCCGCGGAGGGGCCGGGGAGGCTGCCGCCGGGCACGGCGCGCCGGCGGTCCTGGCGACGGCGTCGGGAATCCTCAACGCGGTCCCCGACGTTGTCGTGGACTACCTGGCACTCGTCGACCCGGATACTGTGGAGGAGGTTCCCGGTGACCGCACCGGGCCCGCCCTGCTGCTCGTCGCCGCGCGCGTGGGCACCACACGACTGATCGACAACCAGGCCGTGGACGTCGTCGCGTCCTCTGACGAGGACGAGACCGCAGGCCAGGAGGCAACCCGTGACTGAMTAPADRATPSSPADGVVAHTRAELRDALAAWTIGGADPTDRRAVVMTMGALHEGHLELVRRARAEVGPGGQVVVTIFVNPLQFGEGEDLDAYPRDLAGDLERLAEVGADVVFAPTPDVVYPDGDPIVRVSAGRIGEVLEGAFRPGHLDGVLTVVLKLMQLTRPDVALFGEKDAQQLLAVRRMVRDLDLEVEIVGVPTVRDADGLALSSRNAYLSDGERDAALALSRALRGGAGEAAAGHGAPAVLATASGILNAVPDVVVDYLALVDPDTVEEVPGDRTGPALLLVAARVGTTRLIDNQAVDVVASSDEDETAGQEATRDPGPT0008750_244DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008750-panC-K01918NANA
AK018_03789498panD_1Aspartate 1-decarboxylaseGTGACTGACCAGACTGCATCGCCCGTCGGCTCGACCCCGACGGACCGCCGGACCGGTGCGCGCCGCCCGGCGTCGTTGCAGCGCCCGATGATGATCGGCAAGATCCATCGCGCGACGGTGACGCAGGCGGACCTGCACTATGTGGGATCCATCACGGTCGACACCGACCTCATGGACGCCGCCGACCTCATCCCCGGCCAGCAGGTCGACGTCGTGGACGTCGACAACGGCGCCCGGCTCACCACCTACGTGATCCCCGGCGAGGCCGGCTCCGGCCAGATCAGCATCAACGGCGCCGCCGCGCACCTGGTGCACCCCGGCGACACCGTCATCATCATCGCCTACGGCATGCTCTCGGACGCCGACGCGCGCTCCTTCGGACCCCACGTCGTCTTCGTCGACGGCGAGAACAGGATCGTCGACGTGCACGACGACCCCGGTCAGGTCCCGGACGGCTACGGACTCGTCAGCTCCGGCATCCCCGTCGGCGCGCGGTGAMTDQTASPVGSTPTDRRTGARRPASLQRPMMIGKIHRATVTQADLHYVGSITVDTDLMDAADLIPGQQVDVVDVDNGARLTTYVIPGEAGSGQISINGAAAHLVHPGDTVIIIAYGMLSDADARSFGPHVVFVDGENRIVDVHDDPGQVPDGYGLVSSGIPVGARPGPT0008890_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0008890-panD-K01579NANA
AK018_037901677nadB_1COG0029L-aspartate oxidaseGTGAGCCCGGACCGGCTCGCCCGTTCCCTCGTCGCCCCGGCCCCGGGCTGGACGACGCGCGCGGACGCCGTCGTCGTCGGCTCCGGGATCGCCGGGCTGACGGCGGCCCTCGAGCTGCGCACCCGGGTGCCGCACGTGCTCCTGGTGACCAAGGGCGAGCTGTCCTCCGGGTCCACCGTGTGGGCCCAGGGCGGGATCGCCGCGGTGCTGCACCCGGACGACACCCCCGAGGCGCACCGCCACGACACGCTCGTGGCCGGCGGCGGCCTGAGCGACCCCGAGGCCGCCGACGTGCTGGTCACCGAGGGCCCGCAGCGGGTGCACGAGCTGGTGGCCCGCGGCGCGAGCTTCGACCGCGCCGACGACGGCGGCATCGCCCTGACCCGCGAGGGCGGCCACCGGGCCGACCGGATCGCGCACGCCGGCGGCGACGCCACCGGGGCGGAGATCTCCCGCGCGCTGGTCGCCCAGATCGAGGCCGTGCAGCACGACCCGGGGATCGAGGTGATCTCCAACGCGCTCGTGCTCGACGTGCTCACCGGCGCGCCGGACGCCTCGGGTCAGCGGCCCGTGGCCGGCGTGACCCTGCACGTGCGCGGCGCGGGGTCCCGTGACGGCGTCGGGGCCGCCCTGGCGCCCGTGGTGGTGCTCGCCACCGGCGGAGTGGGGCAGGTGTTCCGGTCCTCGACGAACCCGCCCGGGGCGACCGCCGACGGCATCGCCGCGGCGCTGCGTGCCGGTGCCGTGCTGGGCGACCTGGAGTTCGTGCAGTTCCACCCCACGGTGCTCTGGCTGGGTGCCGGCGCGCGGGGCCAGCTCCCGCTGATCAGCGAGGCCGTGCGGGGCGAGGGGGCGCTGCTGCTGGACGTGCGCGGGCACCGGTTCATGCCGGACGTGCACGAGCTGGCCGAGCTGGCCCCGCGCGACGTCGTGGCGCACGCCATCGTGCGGCAGATGGCAGCGACCTCCGCGGACCACGTGCTGCTCGACGCCCGGGCGCTCGGGGCGGACTTCCTGCGCCGCCGGTTCCCGGGGATCACCGCCCGGCTTCTCGAGCAGGGCATCGACTGGACCGAGGAGCCCGTGCCGGTCGCCCCGGCCCAGCACTACCACTCGGGCGGTGTCGTCACCGATCTGCACGGACGCACGTCGGTCCCGGGGCTGTACGCCGTCGGGGAGGTCGCGTGCACGGGGGTGCACGGCGCCAACCGGCTGGCCTCGAACTCGCTCCTCGAGGGGCTGGTCTTCGCCCACCGGGCTGCCGCCGACGTCGTGGCGCGCTTCGAGGCGGGCGAGCTGTCGTCGGCGCCCGAGCCCGTCGAGCGCCCCGGCGGCGCCGCGCTGGTCGCGGCGGCGGCACGGTCGCGGATCCAGCGGGTCACGTCCGAGGGCGCCGGTCCGATCCGCACCGCCGAGTCCCTGGCGCAGGCGGAGGCGGCCCTGGCGGACGTGACGACGTCGGCGCACGGCGACGCCGGGGTGGTAGCCGCCCCGCAGGTCGCGGAGTGGGAGACGACGAACATCCACCAGGTGGCCCGGGTGCTGGTGCGGGCTGCCGCCGAGCGCGCCGAGAGCCGCGGCGGCCACTTCCGGGCGGACTTCCCGGACCGGGACCCCGCCGGGGAGCGTCGCGTGACCGTGGCTCTGGAGGACGACGGGACCCTCGTCACGAGGTAGMSPDRLARSLVAPAPGWTTRADAVVVGSGIAGLTAALELRTRVPHVLLVTKGELSSGSTVWAQGGIAAVLHPDDTPEAHRHDTLVAGGGLSDPEAADVLVTEGPQRVHELVARGASFDRADDGGIALTREGGHRADRIAHAGGDATGAEISRALVAQIEAVQHDPGIEVISNALVLDVLTGAPDASGQRPVAGVTLHVRGAGSRDGVGAALAPVVVLATGGVGQVFRSSTNPPGATADGIAAALRAGAVLGDLEFVQFHPTVLWLGAGARGQLPLISEAVRGEGALLLDVRGHRFMPDVHELAELAPRDVVAHAIVRQMAATSADHVLLDARALGADFLRRRFPGITARLLEQGIDWTEEPVPVAPAQHYHSGGVVTDLHGRTSVPGLYAVGEVACTGVHGANRLASNSLLEGLVFAHRAAADVVARFEAGELSSAPEPVERPGGAALVAAAARSRIQRVTSEGAGPIRTAESLAQAEAALADVTTSAHGDAGVVAAPQVAEWETTNIHQVARVLVRAAAERAESRGGHFRADFPDRDPAGERRVTVALEDDGTLVTRPGPT0013355_468DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013355-nadB-K00278NANA
AK018_03791939nadC_1COG0157Nicotinate-nucleotide pyrophosphorylase [carboxylating]GTGAGCACGCCCGAGCACCCCCTCCCGGTCCACACCTCGCCGTCCGCCGTGGATCCCGCCCTCGACCCGGCGTGGATCCGCCGCGCCGTCGAGACCGCCCTGGAGGAGGACCTCGGCCCCGCACCCGGCCGGGACGTGACCACCCAGGCGACCATCCCCGCGTCCGACGTCGGCACGGCCGACCTGGTGACGCGTGAGGCCGGGACGGTGGCCGGCCTCGTCGTCGTCGACGAGACGCTGGCGCAGACCGCGACACGGCTCGGGCTGCCCGCCCCCGCGGCGACGTTCCATGCCCAGGACGGCGACGCCGTCGTGCCCGGGCAGGTGCTGGCCCGGCTGACCGGGCCGGTGCAGGTGCTGCTCGTGGCCGAGCGCACGCTGCTCAACCTGGCCTCCCGCGCGTCGGGCGTGGCCACGGCGACGGCGGAGTTCGCCCGCGAGCTGGCCGGCACCGGGGCGCTGGTGCTGGACACCCGCAAGACGACGCCGGGGCTGCGCGCCCTGGACAAGTACGCCGTGCGGGCCGGCGGCGGGACGAACAAGCGCATGGGCCTGTACGACGTCGCGATGGTCAAGGACAACCACGTGGTGGCCGCGGGCTCGGTGCGCGGCGCCGTCGAGGCCGTGCGGCGCGCCTTCCCCGACGTGCTCGTGCAGGTCGAGGCCGACACGACCGACCAGGCCCTGGAGGCGCTCGACGCCGGGGCGGACTTCCTGCTGCTGGACAACATGCCGACGCCGGTGCTCGCCGAGACGGTGACCGCGGTGCGCGCCCGGGAGGGTCGCGACGGAGTGCCGGAGCACGTCGAGCTCGAGGCCACGGGCAACCTCACCGTGGACCGAGCGCGCGAGGTCGCGAGGACCGGGGTGGACTACCTGTCCGTGGGGGCGCTGACGCACTCGGCGCCGATCCTCGACCTGGCGCTCGACCTGCGCTGAMSTPEHPLPVHTSPSAVDPALDPAWIRRAVETALEEDLGPAPGRDVTTQATIPASDVGTADLVTREAGTVAGLVVVDETLAQTATRLGLPAPAATFHAQDGDAVVPGQVLARLTGPVQVLLVAERTLLNLASRASGVATATAEFARELAGTGALVLDTRKTTPGLRALDKYAVRAGGGTNKRMGLYDVAMVKDNHVVAAGSVRGAVEAVRRAFPDVLVQVEADTTDQALEALDAGADFLLLDNMPTPVLAETVTAVRAREGRDGVPEHVELEATGNLTVDRAREVARTGVDYLSVGALTHSAPILDLALDLRPGPT0013370_300DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013370-nadC-K00767NANA
AK018_037921515lysS1_1COG1190Lysine--tRNA ligase 1GTGACCACCCCCGAGAATGTCGACTCCGCCGTGTCCGACGACCTGCCCGAGCAGCTCCGGGTCCGCCGTGAGAAGCGCGACCGGATCATCGCTTCCGGCGGCGAGGCCTACCCGGTCAACCTGCCGATCACGCACACGATCGCGCAGGTCCGCGCCGCCTACGACCACCTGGAGGCCGGTCAGGAGACCGACGACCTCGCCGGTGTCGCCGGCCGGGTCGTGTTCCTGCGCAACACGGGCAAGCTCTGCTTCGTCGCCCTCCAGGACGGCGAGGGCAACCGGCTGCAGGCCATGCTCAGCCAGAAGGTGGTGGGGGAGGAGGCGCTCACCGCGTTCAAGGGTGACGTCGATCTCGGCGACCACGTGTTCGTCCACGGTCGCGTGGGGGCCTCGCGGCGCGGGGAGCTGAGCATCTTCGCCGACTCCTGGCAGCTCGCCTCCAAGGCGCTGCGCCCGTTGCCGGTGCTGCACAAGGAGCTCTCCGAGGAGGCGCGGGTCCGTCAGCGGTACGTCGACCTCATCGCGCGCCCGGCGGCCCGGGACATGGTCCGCCTGCGTGCCGCTGTCGTGCGCTCGCTGCGCGAGAACTTTCACGCCCGCGACTTCCTCGAGGTCGAGACGCCGATGCTGCAGACCGTCGCCTCCGGTGCCTCGGCGCGTCCATTCGCGACCCACATGAATGCCTACGACATGGAGCTGTTCCTGCGTATCGCGCCGGAGCTGTTCCTCAAGGAAGCCGTCGTGGGTGGCGTGGAACGCGTCTTCGAGATCAATCGCAACTTCCGCAACGAGGGCGCCGACTCGTCGCACTCCCCGGAGTTCGCGATGCTCGAGGCCTATGAGGCCTACGGCGATTACGACACCATGGCGGCCCTCACGCAGGACCTCGTGCAGACCGCGGCGCGCGAAGCGCTCGGCACGACCGTGGTGACGCTCCCGGACGGCGAGGAGTACGACCTCGGCGGGGAATGGGCGCACATCACGATGTACGGATCCCTTTCCGAGGCGGTCGGTGAGGAGATCACGCCCGAGACCTCGGTCGAGCACCTCAACGAGCTCGCCGAGAAGGTGGACATCTCGATCGACCCGAAGCAGATGATCCACGGCAAGCTGGTCGAGGAGCTGTGGGAGCACCACGTCGGCAACCACTTGTACGCGCCGACGTTCGTGCGCGACTTCCCGGTGGAGACCTCGCCGCTGACCCGCGCCCACCGCACCATCCCGGGCGTGGTGGAGAAGTGGGACCTGTACGTGCGCGGCTTCGAGCTGGCCACCGCCTACTCCGAGCTCGTCGACCCGGTCGTGCAGCGCGAGCGGTTCGCCGAGCAGGCGCGGCTCGCCGCGGCCGGCGACGACGAGGCGATGGCGCTCGACGAAGACTTCCTCACCGCGATGGAGTACGCCATGCCGCCGGCCGGCGGCATGGGGATGGGTGTCGACCGACTTCTCATGGCTCTCACGGGGGCGGGAATCCGGGAGACGATCCTCTTCCCCCTCGTCAAGCCCACGCACTGAMTTPENVDSAVSDDLPEQLRVRREKRDRIIASGGEAYPVNLPITHTIAQVRAAYDHLEAGQETDDLAGVAGRVVFLRNTGKLCFVALQDGEGNRLQAMLSQKVVGEEALTAFKGDVDLGDHVFVHGRVGASRRGELSIFADSWQLASKALRPLPVLHKELSEEARVRQRYVDLIARPAARDMVRLRAAVVRSLRENFHARDFLEVETPMLQTVASGASARPFATHMNAYDMELFLRIAPELFLKEAVVGGVERVFEINRNFRNEGADSSHSPEFAMLEAYEAYGDYDTMAALTQDLVQTAAREALGTTVVTLPDGEEYDLGGEWAHITMYGSLSEAVGEEITPETSVEHLNELAEKVDISIDPKQMIHGKLVEELWEHHVGNHLYAPTFVRDFPVETSPLTRAHRTIPGVVEKWDLYVRGFELATAYSELVDPVVQRERFAEQARLAAAGDDEAMALDEDFLTAMEYAMPPAGGMGMGVDRLLMALTGAGIRETILFPLVKPTHPGPT0012225_3587DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012225-lysS-K04567NANA
AK018_03793165hypothetical proteinGTGGACACTTTCTGGGCAGTCGTCGCGGGTCTCGTCCCGTCGATCGGTGTCGGACTCCTCTTCTGGTTCGCCATGCGCAAGATCGTGCGGGCCGACCGGAATGAACGGGCCGCGCAGCAGCAGTTCGAGCAGGCGCGTTCCGAGCGCGCGGCGATGAATGATTGAMDTFWAVVAGLVPSIGVGLLFWFAMRKIVRADRNERAAQQQFEQARSERAAMNDNANANANANA
AK018_03794333lsr2_1Nucleoid-associated protein Lsr2GTGGTCCAGAAGACCCAGGTCGTGCTGTTGGATGACATCGACGGCACGGAGGGTGACGAGACCGTCACTTTTGCGCTGGACGGCGTCTCCTACGAGATCGACCTCACCTCGGCCCACGCGGCCGAGCTGCGGGAGTCCTTGGCGAAGTGGATCGGGCACGGCCGCAAGGCCGGCCCGAAGACCGCGACCCGCGCGGCCGGCCCCCGTCGCGGCCGCACGGACCGTGCGCAGCTGCAGAAGATCCGCGAGTGGGCACGCGAGAACGGCCACGAGGTGAACGACCGCGGCCGGATCCCGGCGCGCGTGCTGGAGGCCTACGAAGCGGCGCACTGAMVQKTQVVLLDDIDGTEGDETVTFALDGVSYEIDLTSAHAAELRESLAKWIGHGRKAGPKTATRAAGPRRGRTDRAQLQKIREWARENGHEVNDRGRIPARVLEAYEAAHNANANANANA
AK018_037951092pgl_2COG27066-phosphogluconolactonaseATGACCACTTCGAGCGCCTCCGTGCCGCTGTGGGTCGGGACCTATCCAGCGGCCGGCGCAGCCGCCGGGAGCGGCGAGGGCATCTGGCGCGTCGACCTGGACCGCGGTGACGGGTCGCTCGGCGAGCCGCGGCTCGCCACCGAGCTGGCCTCGCCGTCGTTCCTCGCCCGCCACCCGTCCGCCGCGGTCCTGTACGCCGTGACCGAGACGGCGCACGGCGCGCTCACCGCCCTGCAGGACGACGGGGACGGCGCACTGGCGGTGCTGTCGTCCGCCGGCTCCGGCGGGGACGACCCCTGCCACGTCGCCGCCGCGGACCGGACCGTGTGGGTCGCGAACTACGGCGACGGCGTCGCCGCGGCCCTGGGCCTGGCCGCCGACGGCGCGCCCACGCCGGAGCACCGCTCCCTGCACGCGGGCTCGGGCACCGGACCGGTCACGGACCGGCAGGAGGGCCCGCACGCCCACCAGGTGACGATGACCGGTCGCCGGGTGCTCGTCACGGACCTGGGCGCCGACGTCGTGCGGAGCTACCCCCTGGACCCGGCGCCCGGCGACCACGGGCTCCTGCCCGACGACGGCGGCTCGGTCGCGGCCTGGCTGCCGGCCGGCACCGGACCCCGGCACCTCGTCGTGCTGCCCGGCGGAGGGCTGGTCGTGGCCGGCGAGCTCGACGCGCGCCTGCACCTGCTGCTGCCCGTCGAGGGCGGCGCGTGGCGGCACGTGGGCAGCATCCCGGTGTCCCCGGAGGCGCCGGTCGGGGAGGCGTTCCCCGGTCACCTCACGCTCAGCGCCGACGGTCGCCGGCTCCACGTCGGCGTGCGCGGCCCGGACCTGCTGGCGGTGCACGCGGTGTCCGACGGCGAGTCCCCGCAGATCACCCACCTCGCCGACGTCGCGCTCGGCGAGGGCGGCTGGCCGCGGCACCACGAGGTCCTCGCCGGCACCGACGGGACCGAGCTGGCCGTGGTGGCCCTGCAGGGCACGAGCGAGCTCGTCACGGTGCGGATCGACGTGGCCTCCGGAGCGGGCGAGGTCGTCGACCGCACGGCCTGGGCCACGCCGCCGTCGTGCGTGCTGGAGGCCGGGTGAMTTSSASVPLWVGTYPAAGAAAGSGEGIWRVDLDRGDGSLGEPRLATELASPSFLARHPSAAVLYAVTETAHGALTALQDDGDGALAVLSSAGSGGDDPCHVAAADRTVWVANYGDGVAAALGLAADGAPTPEHRSLHAGSGTGPVTDRQEGPHAHQVTMTGRRVLVTDLGADVVRSYPLDPAPGDHGLLPDDGGSVAAWLPAGTGPRHLVVLPGGGLVVAGELDARLHLLLPVEGGAWRHVGSIPVSPEAPVGEAFPGHLTLSADGRRLHVGVRGPDLLAVHAVSDGESPQITHLADVALGEGGWPRHHEVLAGTDGTELAVVALQGTSELVTVRIDVASGAGEVVDRTAWATPPSCVLEAGPGPT0014975_1389DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014975-ykgB|pgl-K07404NANA
AK018_037961323mshA_3COG0438D-inositol 3-phosphate glycosyltransferaseGTGAGCACCGACCGCGAGGGGCCGCGGGTGGCGATGATCTCCGTGCACACCTCGCCCCTCGACCAGCCCGGTACCGGGGACGCCGGCGGGATGAACGTCTACGTCCTCGAGCTGTCCCGCGCCCTGGCCCGCCGCGGGGCCGAGGTGGAGATCTACACCCGCGCCACGTCGTCGGCGCAGCCCAAGGTGGTCGAGGCGGAGCCGGGCATCCGTGTCGTGCACGTCGCCGCGGGACCGTACGAGGGGCTCGACAAGAACGACCTGCCCGCGCAGCTGTGCTTCTTCAGCGCCGGGGTGCTGCGGGCCGAGGCGCACCGCCCCGCCGGCTGGTACGACGTCGTGCACTCGCACTACTGGCTGTCGGGGCAGGTGGGCTGGCTCGGCGCCGACCGCTGGGACGTGCCGCTGGTGCACACCATGCACACGATGGCGCGGGTCAAGAACGCCGCGCTGGCCCCGGGGGACACCCCCGAGCCGCACAGCCGGGTCATCGGCGAGGAGCAGGTCGTCGCCGAGTCCGACGCGCTGGTCGCCTCCACGACGGACGAGGCCGAGGACCTCGTGGGCCACTACGCCGCCGACCCGGACCGCGTGCACGTCGTGGCTCCGGGGGTCGACCTGGCCACCTACACGCCGCTGGAGACCGGACCGGGGGAGACGACGGCGGAGGCGCGGCGGGCGCTGCGTGAGCGGCTCGGGCTGCCTACGGACCGTCCCGTCGTGCTGTTCGCGGGCCGCGTGCAGCTCCTCAAGGGTCCGGACGTGCTGGTGCGTGCCCTGGGCGTGATGGCCGACCACGCCGCGACCGTGGCGGACCCGGATGCCCTGCGCGACGGCGGCGGGTCGCGGGTGCCGACCCTGGCGGTGCTGGGAGGCGCGAGCGGTCGCCCGACGGCGGTGCGCGAGCTGGAGGCGCTGGCCCACCAGATGGGCGTGACCGACCATCTCGTGGTACGCCCTCCGGTGTCCCGGGCGGAGCTGGCCGACTGGTACCGGGCGGCCGACGTCGTCGCGGTCCCGTCGCACAACGAGTCCTTCGGGCTGGTGGCGGCCGAGGCGCAGGCCTGCGGTACACCGGTGGTGGCGGCGGCCGTCGGCGGCCTGCGCACCGTGGTGATCGACGACGTCTCCGGGGTGCTGGTCGACGACCACAGCCCGTGGACGTGGGCGGCCGAGCTCGGCGCGCTGCTGGGTGACGAGGCGCGGCGCGAGCGGCTCGCGGCCGGGGCGCGACGCGCGAGCGAGCGGTTCTCCTGGGACCGCGCGGCGGCGGCGATGCTGGACGTGTACTCCCAGGCCGCGAAGGTCCGCCGCACCCGCTGAMSTDREGPRVAMISVHTSPLDQPGTGDAGGMNVYVLELSRALARRGAEVEIYTRATSSAQPKVVEAEPGIRVVHVAAGPYEGLDKNDLPAQLCFFSAGVLRAEAHRPAGWYDVVHSHYWLSGQVGWLGADRWDVPLVHTMHTMARVKNAALAPGDTPEPHSRVIGEEQVVAESDALVASTTDEAEDLVGHYAADPDRVHVVAPGVDLATYTPLETGPGETTAEARRALRERLGLPTDRPVVLFAGRVQLLKGPDVLVRALGVMADHAATVADPDALRDGGGSRVPTLAVLGGASGRPTAVRELEALAHQMGVTDHLVVRPPVSRAELADWYRAADVVAVPSHNESFGLVAAEAQACGTPVVAAAVGGLRTVVIDDVSGVLVDDHSPWTWAAELGALLGDEARRERLAAGARRASERFSWDRAAAAMLDVYSQAAKVRRTRPGPT0024580_257DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_GLYCOSYLTRANSFERASE_ACTIVITY,PGPT0024580-mshA-K15521NANA
AK018_03797468F420H(2)-dependent quinone reductaseATGCCCGCACCCGGCACCGATGTTGCGCGGGGCATGGCGATCACCGGAGAGTACGTCCCCAGCCCGTCCGAGTTCGTGGCGAACCACGTCGAGACCTACGAGGCCTCGGGAGGCACCGAGGGCACCACGATGCGCGACAAGCCGGTCATCATCCTGACGACCGTCGGCGCGAAGTCCGGCAAGGTGCGCAAGATCCCGCTGATGCGGGTCGAGCACGACGGTGCCTACGCCGTCGTCGCCTCGATGGGCGGCGCCCCGCAGCACCCCGTGTGGTTCCACAACCTCGTGGCGAACCCCCGGGTGGAGCTCCAGGACGGTCCCGCGAAGCACTCCTACGTGGCCCGGGAGGTCACCGGCGACGAGAAGGCCGTCTGGTGGGAGCGGGCCGTCGAGGCCTGGCCCGACTACGCGGACTACCAGCAGAAGACCGACCGCGAGATCCCGGTCTTCGTCCTCGAGCGCGACTGAMPAPGTDVARGMAITGEYVPSPSEFVANHVETYEASGGTEGTTMRDKPVIILTTVGAKSGKVRKIPLMRVEHDGAYAVVASMGGAPQHPVWFHNLVANPRVELQDGPAKHSYVAREVTGDEKAVWWERAVEAWPDYADYQQKTDREIPVFVLERDNANANANANA
AK018_03798741gpmA_1COG05882,3-bisphosphoglycerate-dependent phosphoglycerate mutaseATGACCTACACCCTCGTGCTGCTCCGCCACGGCGAGAGCGAGTGGAACGCGAAGAACCTCTTCACCGGCTGGGTCGACGTGCCCCTGTCCGAGAAGGGCACCGAGGAGGCGAAGCGTGGTGGTGAGCTCCTCAAGGAGGCCGGCGTGACGCCGGACGTCCTGCACACCTCGCTGCTGCGCCGCGCGATCATGACGGCGAACCTCGCCCTCGACACCGCCGACCGGCACTGGATCCCGGTCAAGCGCAGCTGGCGCCTCAACGAGCGCCACTACGGCGACCTGCAGGGCAAGGACAAGAAGCAGGTCCGCGACCAGTACGGCGAGGAGCAGTTCATGCTCTGGCGTCGTTCCTACGACGTGCCGCCGCCCGAGATCGAGCTGGGCTCGGAGTTCTCCCAGGATGCCGACCCGCGTTACGCCGGTGAGCCGATCCCGCGGACCGAGGCGCTCAAGCAGGTCCTCGAGCGGGCGCTGCCGTACTGGGAGTCCGCGATCGTGCCGGACCTGCAGGACGGCAAGACAGTCCTCGTCGCTGCGCACGGCAACTCGCTGCGCGCGCTGGTCAAGCACCTCGACGGCATCGACGACGAGACGATCGCCGGCCTCAACATCCCCACCGGCATCCCGCTCGTCTACGAGCTGGACCCCGAGACGCTGAAGCCGACCAACCCGGGCGGCACCTACCTCGACCCGGAGGCGGCCAAGGACGCGATCGCGGCCGTGGCCAGCCAGGGCAAGTAGMTYTLVLLRHGESEWNAKNLFTGWVDVPLSEKGTEEAKRGGELLKEAGVTPDVLHTSLLRRAIMTANLALDTADRHWIPVKRSWRLNERHYGDLQGKDKKQVRDQYGEEQFMLWRRSYDVPPPEIELGSEFSQDADPRYAGEPIPRTEALKQVLERALPYWESAIVPDLQDGKTVLVAAHGNSLRALVKHLDGIDDETIAGLNIPTGIPLVYELDPETLKPTNPGGTYLDPEAAKDAIAAVASQGKPGPT0018030_2248DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018030-gpmA-K01834NANA
AK018_03799669phoU2_1COG0704Phosphate-specific transport system accessory protein PhoUATGCGAGAGATCTTCGACGCCGAGCTGAAGCAGATCGGCGACGGTCTGGTCGAGATGAGCCGGCTCGTCGAGTCCGCGATCACGCGGGCCGGCGCGGCCCTGCTCGACGGCGAGCACCAGCTCGCACAGGACGTCATCGCCTCCGATCACGAGATCGACCGGCTCGAGCGCGAGCTGGACGAGCGGTGCGTGCACGTGCTCGCCCAGCAGGCCCCGGTCGCCACCGACCTGCGGGTGGTCATCACCGCGCTGCGCATCAGCTCCACCCTGGAGCGGATGGGCGACCTGGCGCGGCACGTCGCCGAGGTCGCGCGCGGCCGGTACCCGGCCTTCGCCGTGCCGGAGGCGGCCCGCGAGGTGTTCGTGGAGATGAACCAGTCGGCCGCTCTGGTCGCCCGACGCACCAGCGAGCTGCTCGCCACGCGGGACGTCGCGCTGGCCGAGGAGATCGAGAGTGGCGACGACGTCATCGACCGCCTGCACCAGGACACCTTCGCCGCGACGCTGTCCCCGGACTGGAGCGGCACCTCCCAGGAGACGATCGACGTCACGCTGCTGGCCCGCTACTACGAGCGGTTCGGCGACCACGGCGTGTCCGTGGCGCGCCGCATCACCTACCTGGTGACCGGCGACTTCGAGGCCGAGCAGCACGCTCCGGCCGACGTCTGAMREIFDAELKQIGDGLVEMSRLVESAITRAGAALLDGEHQLAQDVIASDHEIDRLERELDERCVHVLAQQAPVATDLRVVITALRISSTLERMGDLARHVAEVARGRYPAFAVPEAAREVFVEMNQSAALVARRTSELLATRDVALAEEIESGDDVIDRLHQDTFAATLSPDWSGTSQETIDVTLLARYYERFGDHGVSVARRITYLVTGDFEAEQHAPADVPGPT0002630_2256DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ARSENIC_RESISTANCEARSENIC_RESISTANCE-PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002630-phoU|phoY-K02039NANA
AK018_038001317sasA_11Adaptive-response sensory-kinase SasAGTGGAAGGAATCATCCAGGGTGTGACGGCCGTCGTCGCCGGGGGTCTCGGCGTCGTGGTCGGAGTCGTCGCTGCCCTGGCCTTCCGCCTCTCCGACCGCGCGCAGCAGCGGGAGGCGGAGACGGACTCGGCCGAGCTCGACCAGGGCCTGGTGCGCGTGCTCTCCGTGCTGCGCTCGGCGGCCGTCGTGATCGACGACGACGACGAGGTCGTGCGAGCCTCCCCGCCCGCGTACGCCCTGGGAGTCGTGCGCAACGACGCGCTGGCCCACGCCGCCGTCGTGGACCTCGTGCACGAGGTGCGGCGCGACGGCGTCATCCGCGAGCGCGAGCTCGAGCTGCCGCGCGGTCCCATCGGTTCCGGGACGGTGCTGCTGCAGGTCCGCGCGGCCCCGCTGGGGATGGACAAGCTGCTGGTGCTCGCCGAGGACCGCACGGAAGCGCGGCGCGTGGAGGCGATCCGCCGCGACTTCGTCGTCAACGTCTCGCACGAGCTCAAGACGCCGGTCGGTGCGCTGGCGCTGCTGGCCGAGACGGTCCAGGACGCCGCCGACGACCCCGAGGCCGTGCGCCGGTTCACCGAGCGGATGCAGTCCGAGGCCACCCGGCTCTCGGCGCTGGTGCACGAGATCATCGAGCTCTCCCGGCTCCAGGTGGCCGGCGCGCTGCAGGAGATCCGTCCGGTCGCCGTGCGCGACGTCGTCGACGAGGCGGTCGACCGCGCCCAGACCAAGGCGCAGGCCAAGAACATCGCGATCACGGTGGGCGGGGCGACCGACAGCGTCGTGTTCGGCGACCACAACCTGCTCGTCACCGCGGTCCGCAACCTGCTGGACAACGCGGTGTCGTACTCCGGGGAGAACACCCGCGTCGGCCTGGGCGTCCACGAGCGGGACGGGCTGGTCGAGATCGACGTCGTCGACCAGGGCGTCGGCATCTCCACGGAGGCCCAGCAGCGCGTGTTCGAGCGCTTCTACCGCGTGGACCCGGCCCGGTCGCGCGACACGGGCGGCACGGGCCTGGGCCTGAGCATCGTCAAGCACGTGGCCGCCGACCACGGCGGCGACGTGCGGGTCTGGTCGCAGCCCGGCAAGGGCTCCACCTTCACCTTGCGCATCCCGGCCGCGGACCTCGCGGCGGGTGCGATGGACGCCTCGGCCTCGACCCCGGACGGGGGCGCGGCCGACGGCGGTCCGCACGACGGCGCTCCGTCCGACGGTCCCGACGGCGACGTGTCCGCCGGGCCGCGCGCGGGTGGGGACGAACGTCATCAGCACGGTGCCGGCGACGGCCCGAGGAACGAGGAGGTAGGCGCGTGAMEGIIQGVTAVVAGGLGVVVGVVAALAFRLSDRAQQREAETDSAELDQGLVRVLSVLRSAAVVIDDDDEVVRASPPAYALGVVRNDALAHAAVVDLVHEVRRDGVIRERELELPRGPIGSGTVLLQVRAAPLGMDKLLVLAEDRTEARRVEAIRRDFVVNVSHELKTPVGALALLAETVQDAADDPEAVRRFTERMQSEATRLSALVHEIIELSRLQVAGALQEIRPVAVRDVVDEAVDRAQTKAQAKNIAITVGGATDSVVFGDHNLLVTAVRNLLDNAVSYSGENTRVGLGVHERDGLVEIDVVDQGVGISTEAQQRVFERFYRVDPARSRDTGGTGLGLSIVKHVAADHGGDVRVWSQPGKGSTFTLRIPAADLAAGAMDASASTPDGGAADGGPHDGAPSDGPDGDVSAGPRAGGDERHQHGAGDGPRNEEVGAPGPT0002670_164DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002670-senX3-K07768NANA
AK018_03801711regX3_4COG0745Sensory transduction protein regX3GTGACGCGCATCCTGGTGGTCGAGGACGAGGAGTCGTACCGCGACCCGCTGACGTATCAGCTGACCCGCGAGGGCTACGACGTCGTCGCGACGTCGAACGGTCACGACGCGCTCGAGCGGTTCGACGACGGCGGGGCGGACCTGGTGCTGCTCGACCTGATGCTGCCCGGCCTCAGCGGCACGGAGGTCTGCCGCGAGCTGCGCCAGCGCGGCGACGTGCCGATCATCATGCTCACGGCGAAGGACTCCGAGATCGACAAGGTCGTGGGGCTCGAGCTCGGGGCGGACGACTACGTCACCAAGCCGTACTCCTTCCGCGAGCTCCTGGCGCGCATGCGGGCGGTCATGCGCCGACGGGGCCCCGGTGGGGACCCCGGCAGCAGCCCGGACGACGACGGCGAGTCGGTGCTCGAGGTCGGCCCGGTGCGCATGGACGTCGAGCGGCACACCGTCGCCGTGCGCGGCGACTCGGTCTCGCTTCCGCTGAAGGAGTTCGACCTGCTCGAGCTGCTGCTGCGCAACGCCGGCCGCGTGCTGACCCGCGGGCAGCTCATCGACCGTGTCTGGGGCGCCGACTACGTCGGTGACACCAAGACGCTGGACGTCCACGTCAAGCGCATCCGGTCCAAGATCGAGCCGGACCCCGGAGCGCCCAGCCTGCTGCTGACGGTACGAGGACTCGGCTACAAGTTCGCCGACGCCGAGGGCTGAMTRILVVEDEESYRDPLTYQLTREGYDVVATSNGHDALERFDDGGADLVLLDLMLPGLSGTEVCRELRQRGDVPIIMLTAKDSEIDKVVGLELGADDYVTKPYSFRELLARMRAVMRRRGPGGDPGSSPDDDGESVLEVGPVRMDVERHTVAVRGDSVSLPLKEFDLLELLLRNAGRVLTRGQLIDRVWGADYVGDTKTLDVHVKRIRSKIEPDPGAPSLLLTVRGLGYKFADAEGPGPT0002675_126DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
AK018_038021143pstS3_1COG0226Phosphate-binding protein PstS 3ATGGAACGACTCGTGAACCTCAGCCGATTCACCCGTGCCGGATCTGCCGTCGCCGTCGGCGCGCTGGCCTTCAGCCTCGCCGCCTGCGGCTCGGACCCGGAGCCCGCGGGCTCCTCCGGCGACGAGACCACCGAGGCGTCGGAGGAGTCCGGCGACGACATGGAGGGCGGCCTGTCGGGCACGCTCTCCGGCGGCGGTGCTTCCTCGCAGGAGGCCGCCATGAACGCCTGGCGTGCCGGGTTCCAGGAGGCGAACCCCGAGGCGACCGTGAACTACGACCCTGTCGGTTCCGGCGGCGGCCGCACCGGCTTCGGCGACGGCTCCTACAAGTTCGCCGGCTCGGACGCCGCGCTGGACGACGAGGAGCTGGCGGCTGCCGAGGCGCAGTGCGGCGAGGGCGGCGTCATCGAGTTCCCCGGCTACGTCAGCCCGGTCGCGGTGGCCTTCAACCTCGAGGGCGTCGACACCCTGAACATGGGTCCGGAGACGATCGCCAATATCTTCCTCGGCGAGATCACCTCCTGGGACGACGAGGCGATCGCCGCCGACAACCCGGACGTCGAGCTGCCCGGCACCGCCATCACGGTCGTGCACCGCTCCGACGAGTCGGGCACCACCGAGAACTTCGAGGAGTACCTCTACACCGTCGCCCCCGACATCTGGACGGCCGAGCCGTCCGGCGTGTGGCCGGTCGAGGGTCAGGAGTCGGCGCAGGGCACCTCCGGTGTCGTCGGCGCCGCGCAGGCCGGTGAGGGCACCATCACCTACGCCGACGCCTCGCAGGTCGCCGACCTCGGCACCGTCGCGGTGGGCGTCGGTGGCGACTTCGTCGAGTACTCGGCCGAGGCCGCCGCCGAGGTCGTGGCCCAGTCGCCGCGCACCGAGGGCACCAGCGAGTACGTCTACACGATCGACCTGGACCGCGACATCGCGGGCACCTACCCGATCGTGCTCGTCTCCTACAGCCTCGCCTGCACCACCTACGCCGACGAGGAGACCGCCGAGCTGGTCAAGGGCTTCCTCGGCTACGTCGCCAGCGAGGAGGGCCAGCAGGCCGCCTCGGCCGCCGCCGGCTCCGCGCCGCTGTCGGACACGATCCGCCAGGCGATCCAGCCGGGCATCGAGTCGATCTCCGCGGGCTGAMERLVNLSRFTRAGSAVAVGALAFSLAACGSDPEPAGSSGDETTEASEESGDDMEGGLSGTLSGGGASSQEAAMNAWRAGFQEANPEATVNYDPVGSGGGRTGFGDGSYKFAGSDAALDDEELAAAEAQCGEGGVIEFPGYVSPVAVAFNLEGVDTLNMGPETIANIFLGEITSWDDEAIAADNPDVELPGTAITVVHRSDESGTTENFEEYLYTVAPDIWTAEPSGVWPVEGQESAQGTSGVVGAAQAGEGTITYADASQVADLGTVAVGVGGDFVEYSAEAAAEVVAQSPRTEGTSEYVYTIDLDRDIAGTYPIVLVSYSLACTTYADEETAELVKGFLGYVASEEGQQAASAAAGSAPLSDTIRQAIQPGIESISAGPGPT0002625_1108DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
AK018_03803984pstC2_1COG0573Phosphate transport system permease protein PstC 2GTGAGTACCACCGTCAGTCCACCCGCCCAGGGTTCCCGGCGACGCCGCAGCGGCAACACCGACCGGGGTTTCAACCGCGTCTTCCGATGGATCGCCGTCGGGGCCGGAGCCACGATCCTGGCGGTCCTGGCCGCGGTCGCGCTCTTCCTGATCTCCGAGGCCTGGCCGGCCATCATGGCCAGCCCCGAGGAGCTCGCCGAGGGCGTCCCGCGCTACCCGGAGGACACCTCCCTGCTGGCCTACCTCGGGCCGCTCATCTACGGCACGATCCTCGCCGCCGTGCTGGCGCTGTTCCTCGCGGTGCCGATCTCGATGGGCATCGCGCTGTTCATCTCGCACTACGCGCCGCGCCGGCTCTCCCAGCTCCTCGGTGCCCTGGTCGACCTGCTGGCCGCGATCCCCTCGGTGATCTACGGCCTGTGGGGCTTCTTCACGCTGGCGCCCGTGCTGACGCCGATCTGGATGTGGCTCAACGACAACCTGGGCTGGATCCCGCTCTGGGGCGGCACCGCCTCGCCGACGGGCCGGTCCATGGCCACGGTCGGCGTCGTCCTGGCGATCATGATCCTGCCGATCATCACCGCCGTCTCCCGCGAGGTCTTCCTGCAGACGCCGAAGCTGCACGAGGAGGCGGCGCTGGCCCTCGGCGCCACCCGCTGGGAGGTCGTCAAGACCGCCGTGCTGCCGTTCGGCCGCTCGGGCGTCATCTCCGCGTCGATGCTCGGTCTGGGCCGCGCGCTCGGCGAGACGATGGCGGTGCTGATGATCCTGTCGCCGGGATTCACGTACAGCCTCGACATCCTGGCCGCCGGCCAGCACCAGACCATCGCGGCCTACATCGCGGCCGACTTCCCGGAGTCGACCGGGCTCGGTGTCAACACGCTGATCGCCGCCGGCCTCGCCCTGTTCGTGATCACGCTGGCCGTCAACATGGCCGCGCGCTGGGTCGTGGCCCGCCGCAAGGACTTCTCGGGAGCCAACTGAMSTTVSPPAQGSRRRRSGNTDRGFNRVFRWIAVGAGATILAVLAAVALFLISEAWPAIMASPEELAEGVPRYPEDTSLLAYLGPLIYGTILAAVLALFLAVPISMGIALFISHYAPRRLSQLLGALVDLLAAIPSVIYGLWGFFTLAPVLTPIWMWLNDNLGWIPLWGGTASPTGRSMATVGVVLAIMILPIITAVSREVFLQTPKLHEEAALALGATRWEVVKTAVLPFGRSGVISASMLGLGRALGETMAVLMILSPGFTYSLDILAAGQHQTIAAYIAADFPESTGLGVNTLIAAGLALFVITLAVNMAARWVVARRKDFSGANPGPT0002620_2283DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002620-pstC|phoW-K02037NANA
AK018_03804960pstA1_1COG0581Phosphate transport system permease protein PstA 1ATGAGTGCCGCTACTGACCACACCTCCCCGGGCGGCAGCTCCGAGACCGCCCGTCTGCTCTCCACCGTCGACACGGGACGTCGTCGCACCGACCGTGCCATGCAGGTGCTGATCTACATCGCCTTCGCGCTGGCGATGATTCCGCTCGGCTGGCTGATCTTCACGGTCGTCGCCCAGGGTGGCGACCGGATCAGCATGGACTTCCTGATGCAGTCGATGCGCAACATCTTCGGCGGCGACCCGCGCGGCGGGATCTACCACGCGATCCTCGGCACCGTGGTCATCACGGCGCTGGCCACGGTCATCTCGGTGCCGATCGGCATCCTGACCGCGATCTACCTGGTGGAGTACGGCAAGGGCTGGCTGGCCCGCGCGGTGACGTTCTTCGTCGACGTCATGACGGGCATCCCGTCGATCGTCGCCGGTCTGTTCGCCTTCTCGCTCTTCGCGCTGATCTTCGGGCCCGCGGTCCGTATCGGGATCATGGGTGCGGTGGCCCTGTCGGTGCTGATGATCCCGGTCGTCGTGCGCTCCTGCGAGGAGATGCTCAAGCTCGTGCCGAACGAGCTCCGCGAGGCCTCCTACGCGCTGGGCGTCCCGAAGTGGCTGACCATCATCAAGGTGGTGCTGCGCACCTCGGTCGCCGGGCTGACCACCGGCGTGCTGCTCGCGGTCGCCCGCGTCATCGGTGAGACGGCCCCGCTGCTGGTCACCGTCGGCGTCACCGACTCGATCAACGCCAACCCGTTCGACGGCCGCATGATGACGCTGCCGGTGTTCGCCTATCGTCAGTACTCGCAGGGTGACGCGCCCTGCCCCGGTGGGGACTCCGCGACCTGTGTCGCCGACATCGCCTCGCAGAACGCCTGGGGCGCGGCACTCGTGCTGATCGTCATGGTCCTGGCACTCAACCTGATCGGCCGCCTGATCACTCGCTGGTTCGCCCCCAAGCTGGGCTGAMSAATDHTSPGGSSETARLLSTVDTGRRRTDRAMQVLIYIAFALAMIPLGWLIFTVVAQGGDRISMDFLMQSMRNIFGGDPRGGIYHAILGTVVITALATVISVPIGILTAIYLVEYGKGWLARAVTFFVDVMTGIPSIVAGLFAFSLFALIFGPAVRIGIMGAVALSVLMIPVVVRSCEEMLKLVPNELREASYALGVPKWLTIIKVVLRTSVAGLTTGVLLAVARVIGETAPLLVTVGVTDSINANPFDGRMMTLPVFAYRQYSQGDAPCPGGDSATCVADIASQNAWGAALVLIVMVLALNLIGRLITRWFAPKLGPGPT0002610_1998DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038NANA
AK018_03805780pstB1_1COG1117Phosphate import ATP-binding protein PstB 1ATGGCACAGCGCATCGACACCAAGGATCTGAACATCTACTACGGCGACTTCCTCGCCGTGCAGGACGTCAACATGACGATCGAGCCCAAGTCGGTCACGGCGCTCATCGGGCCGTCCGGCTGCGGCAAGTCGACCTACCTGCGCACGCTCAACCGCATGCACGAGGTCATCCCGGGCGCCCGGGTCGAGGGCCGTGTCGAGATGGACGGCGTGGACCTGTACGGCCCGAACGTCGACCCGGTCGCCGTGCGCAAGAACGTCGGCATGGTCTTCCAGCGCCCCAACCCGTTCCCGACGATGTCCATCCGGGACAACGTCCTGGCCGGGGTGAAGCTGAACAACAAGCGCATCTCGAAGGCGGAGGCCGACGACCTCGTCGAGTCCTCGCTGCACGGCGCGAACCTGTGGAACGAGGTCAAGGACCGGCTCGACAAGCCGGGTTCGGGCCTCTCCGGCGGTCAGCAGCAGCGGCTGTGCATCGCCCGCGCGATCGCGATCAAGCCCCAGGTGCTACTCATGGACGAGCCCTGCTCGGCGCTCGACCCGATCTCGACCATCGCGATCGAGGACCTCATCGGTGAGCTCAAGCAGGAGTACACGATCGTCATCGTGACCCACAACATGCAGCAGGCGGCGCGCGTGAGCGACCGGACCGGCTTCTTCAACATCGCGGGCACCGGCAAGCCGGGCAAGCTGATCGAGATGGACGACACGGCGACGATCTTCTCCGCGCCGGCCGAGAAGGCGACCGAGGACTACGTCTCCGGCCGCTTCGGGTGAMAQRIDTKDLNIYYGDFLAVQDVNMTIEPKSVTALIGPSGCGKSTYLRTLNRMHEVIPGARVEGRVEMDGVDLYGPNVDPVAVRKNVGMVFQRPNPFPTMSIRDNVLAGVKLNNKRISKAEADDLVESSLHGANLWNEVKDRLDKPGSGLSGGQQQRLCIARAIAIKPQVLLMDEPCSALDPISTIAIEDLIGELKQEYTIVIVTHNMQQAARVSDRTGFFNIAGTGKPGKLIEMDDTATIFSAPAEKATEDYVSGRFGPGPT0002615_3208DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002615-pstB|phoT-K02036NANA
AK018_03806465hypothetical proteinGTGGCTCGCTCCGCCCGCACCGCCCGTACCGCACTCGCCGCCGGCGTCGCCGTCGGGGCGCTGACGCTCGGCGCCTGCGCACCGATCACCACCGAGCTGCCCTATGCTCCGTCGGACGGCACCCGGGTCGACTTCGACGACCCGGAGGTGCGCGGGCTGAACCTGCTGGTCATCGCCACCGAGGAGGGTGGCGACGGCAACCTGCTGGGCGCGCTGGCGAACAACAGCGACGAGGACGTCGAGTTCACCCTGACCGCCAGCGGCGCGGCGCCCGTCACGGTCGCGGTGCCCGCCGAGGAGACGGTCTACCTGGGCACCGACGGCGAGGAGACCCTGCTCAGCCCGGTCGCCACGATCCCCGGCGGGACCCTCGAGGCCACCCTCGAGGTCGCCGGCCAGAGCGAGCCGTTCTACCTGCCCGTGTTCGACGGCACGCTGCCGGAGTACGCCGACTACCTGCCCTGAMARSARTARTALAAGVAVGALTLGACAPITTELPYAPSDGTRVDFDDPEVRGLNLLVIATEEGGDGNLLGALANNSDEDVEFTLTASGAAPVTVAVPAEETVYLGTDGEETLLSPVATIPGGTLEATLEVAGQSEPFYLPVFDGTLPEYADYLPNANANANANA
AK018_03807483carD_1COG1329RNA polymerase-binding transcription factor CarDATGACGTTCACAGTAGGCGAGACGGTTGTCTACCCTCATCACGGCGCCGCGCTGATCGAAGAGGTCAAGACCCGGAAGATCCGTGGCGAAGAGAAGATGTACCTCAAGCTCAAGGTCGCCCAGGGCGACCTGACGATCGAGGTCCCGGCGGACAACGTCGACCTCGTCGGGGTGCGTGACGTGGTGGACCAGGAGGGCCTGGACAAGGTGTTCGACGTGCTGCGCGCGCCGTACACCGAGGAGCCCACGAACTGGTCGCGCCGGTACAAGGCCAACCTGGAGAAGCTGGCGTCGGGCGACGTCATCAAGGTGGGCGAGGTCGTGCGCGACCTGTCCCGCCGCGACTCCGACCGTGGCCTGAGCGCCGGCGAGAAGCGCATGCTGGCCAAGGCCCGCCAGATCCTCGAGTCCGAGGTCGCCCTCGCCGAGGGCGTGGACGAGGAGAAGGCCGGCGCCATCATCGACGAGGTGCTCGCCTCCTGAMTFTVGETVVYPHHGAALIEEVKTRKIRGEEKMYLKLKVAQGDLTIEVPADNVDLVGVRDVVDQEGLDKVFDVLRAPYTEEPTNWSRRYKANLEKLASGDVIKVGEVVRDLSRRDSDRGLSAGEKRMLAKARQILESEVALAEGVDEEKAGAIIDEVLASPGPT0014830_1340DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-STRINGENT_STRESS_RESPONSE,PGPT0014830-ydeB|carD-K07736NANA
AK018_03808645ispD_1COG12112-C-methyl-D-erythritol 4-phosphate cytidylyltransferaseATGATCGCCCTGGCGGCGCGTGGCCTCGCGGCCTCCGGAGTCGTCGACGCGGTGGTGATCACCGCGCCGCCCGGACGGTCCGCGGACATGGTCGCCGCCGTCGGCCCGCTCTCGGTCCCCTGCGACGTCGTCGAGGGCGGGGCCACCCGTCAGGCGTCCGTCGCGGCCGGTCTCGACCGCGCCGACGCCGCCACCGACGTCGTCCTCGTGCACGACGCCGCCCGCCCGCTCGCCCCGCCGGCGCTCGTCGAGCGCGTCGTGACCGCGGTGCGCAGCGGACGGTCCGCCGTCGTCCCCGGGCTGCCCGTGACGGACACGATCAAGCGCGTGGTGCCCGACGGCGGCAGCCCGGTGACGCCGGGCGGGGAGACCGCCCAGCCGGTCGAGCGCGTCGTCGACACCCTCGACCGGACGGCGCTGAGGGCCGTGCAGACCCCTCAGGGCTTCGACCGCGAGCTGCTGCAGCGTGCGCACGCCGAGGGGGCGACCCGGGCGGCCGCCGAGCACCTGGCGGCGACCGACGACGCCGGGCTGGTCGAGGCGCTCGGCGTCCCGGTGCACATGGTGCGCGGCGACGCCGCCGCCCTGAAGATCACCACCGCGCACGACCTGGCGGTGGCCGAGCTGCTCCTGGAGGGCCGATGAMIALAARGLAASGVVDAVVITAPPGRSADMVAAVGPLSVPCDVVEGGATRQASVAAGLDRADAATDVVLVHDAARPLAPPALVERVVTAVRSGRSAVVPGLPVTDTIKRVVPDGGSPVTPGGETAQPVERVVDTLDRTALRAVQTPQGFDRELLQRAHAEGATRAAAEHLAATDDAGLVEALGVPVHMVRGDAAALKITTAHDLAVAELLLEGRPGPT0007590_512DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007590-ispD-K00991NANA
AK018_03809483ispF_1COG02452-C-methyl-D-erythritol 2,4-cyclodiphosphate synthaseATGATCCTGCCGCGTACCGGGATCGGCGTCGACGTGCACGCCGTCGCCCCCGAGGGCTCCGACCGCGAGCTGTGGGTCGCCGGGCTGCGCTGGCCGGGGGAGCGGGGCCTGGAGGGGCACTCCGACGCCGACGTGGCCGCGCACGCCGCCGCCGACGCGCTCTTCTCGGCGGCCGGTCTCGGCGGGCTGGGCACGCACTTCGGCACCAGCGAGCCCGAGTGGGCCGGGGCGAGCGGCGCCGTGCTGCTCGCGGAGGCCGCGCGACGGGTGCGCGAGGCCGGGTTCGAGATCGGCAACGTCGCCGTCCAGGTCGTCGGCAACCGACCGAAGATCGAACCGCGGCGCACCGAGGCCGAGGCGGCGCTGAGCGAGGCCGCCGGGGCGCCGGTCGCCGTCAGCGCGACCACCACCGACGGGCTGGGCCTGACCGGCCGCGGCGAGGGGATCGCCGCGATCGCCACCGCCCTCGTCGTCCCCCGCTGAMILPRTGIGVDVHAVAPEGSDRELWVAGLRWPGERGLEGHSDADVAAHAAADALFSAAGLGGLGTHFGTSEPEWAGASGAVLLAEAARRVREAGFEIGNVAVQVVGNRPKIEPRRTEAEAALSEAAGAPVAVSATTTDGLGLTGRGEGIAAIATALVVPRPGPT0007595_481DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770NANA
AK018_038101368COG0277L-gulono-1,4-lactone dehydrogenaseGTGAACTTCACCACCTGGGGTCGCACCTACGCCGCCGCACCCGCCCGGCACGCGGAACCGCAGGACGAGGCCGAGCTGCGCGCCCTGGTCGCCCGCGCCGCCGCGGACGGGCTGCGCGTCCGGGCGGTCGGCGCCGGCCACTCGTTCACCGACGCCGCCGTCACCGACGGTCTGATGCTCGGCCTCGACCACCTCAGCGGGCTGGAGTCCCTGCAGCGGCGGCCGGACGGCACCGCCCTCGTCACCGTCGGCGCCGGTACGCGGCTGCACCGGCTCAACCGGTTGCTCGCGTCGTGGGGACTGGCGATGCGCAACCTCGGCGACATCGACCGCCAGTCGATCGCGGGGGCGATCTCCACCGGCACGCACGGCACCGGCGCACGGCTCGGCGGGCTCGCCACGCAGGTGCGCGGGGTGCGCCTGGTGCTGCCGGACGGGTCGGTGCGGTCGGTGTCCGACGGCGACGCCCCGGGGTCGCCCGACCGCGAGCTGTTCGAGGTCGCGCGGCTCGGGCTGGGCTCGGTCGGGATCCTGTCGGCGGTGACGCTCGAGGTCGTGCCGGCCTACCTGCTGCGCTCGACCGAGCGGGTCCGTCCGTGGGACGAGGTGGTCGGCGGCATCGACGCGCTGTTCGACGGCCACGACCGGTTCGACGCCTACTGGTTCCCGGGCACCGACCGGATGCTCACGTGGAGCCACGACCGCGTCTCCGCCGCCGAGCGGGCCGAGCACGAGGCCTCCCGCCGCGGGCCGGCCGGTGCGCTCCGGACGGCCGGGGCCGCCGCCCGGTCCTTCCTCGACGACGAGGTGCTGGCCAACGGGGTCCTCGGCGGGGTGATGCAGGTGGCGGCCGCCGCGCCGCACACGGTGACCCGGCTGAACGCCGCGTGCGCCGCGGTCCTCGGCGACCGGACCCACGTGGCGCCGTCGGACCGGGTCATGGTCACGCGCCGGCGGGTGCGGTTCGCGGAGATGGAGTACGCCCTGCCGCGCGCCGCGCTGGCCGAGGTGCTGCGCGAGCTGGACCGCTGGCTGCGGGCCTCGGGCGAGCCGGTGCCGTTCCCGGTCGAGGTGCGCTGCACGGCGGCGGACGACGTGTGGCTGTCCACCGCCCGGGGCCGGGACACCGCCTACGTGGCGGTGCACCAGTACCACCGGATGCCGCGCGAGAGGTACTTCCGGGCGGCGGAGGAGATCTTCGTCGGGGCCGGCGGGCGTCCGCACTGGGGCAAGCTGCACACCCGCACGGCAGCGGACCTGGCCGACCACTACCCGCTGGACGACGTCGCGCGGGTGCGGGCCGCCGTCGACCCGGGCGGGGTGCTGCGCAACGACTACACCGACCGGGTGCTCGGTATCCCCGCCTGAMNFTTWGRTYAAAPARHAEPQDEAELRALVARAAADGLRVRAVGAGHSFTDAAVTDGLMLGLDHLSGLESLQRRPDGTALVTVGAGTRLHRLNRLLASWGLAMRNLGDIDRQSIAGAISTGTHGTGARLGGLATQVRGVRLVLPDGSVRSVSDGDAPGSPDRELFEVARLGLGSVGILSAVTLEVVPAYLLRSTERVRPWDEVVGGIDALFDGHDRFDAYWFPGTDRMLTWSHDRVSAAERAEHEASRRGPAGALRTAGAAARSFLDDEVLANGVLGGVMQVAAAAPHTVTRLNAACAAVLGDRTHVAPSDRVMVTRRRVRFAEMEYALPRAALAEVLRELDRWLRASGEPVPFPVEVRCTAADDVWLSTARGRDTAYVAVHQYHRMPRERYFRAAEEIFVGAGGRPHWGKLHTRTAADLADHYPLDDVARVRAAVDPGGVLRNDYTDRVLGIPANANANANANA
AK018_038111185hypothetical proteinATGAGGCTGACGGACCGGCTGTCCCGCGCCACCGCCGGGCTGCCCGGACCGCTCGCCGTCGTCGACCTGGACACCTTCGACGTCAACGCGGCCGACCTGCTGCGCCGGGCTGCCGGCACCCCCGTGCGCGTGGCCGCGAAGTCCGTGCGCGTGCGCGCCCTCCTCGACCGCGCGGGGGAGGCCGGGTTCACCGGTGTCATGGCCTTCTCCCTGGCCGAGGCGCTGTGGCTGGTCGGCGGCGGCACCCGGGACGTCCTCGTCGGCTACCCGACCGTCGACACCGACGCCCTCGCCCGGTGGGCTGCCGATCCCGTCGCCCGCCGCGAGATCACCCTCATGGCCGACGACGTCGCCCAGGTCGCGCTCGCGTCCGCGGCTCTGCGGGACGCCGCCGCCGCCGGACCGGCGGGCTCGGTCTGCCTCGACGTCGACTGCTCGCTCCGGCTCGGCATCGGTCCGTGGCGTGCGCACCTGGGCACCCGCCGCTCGCCGCTGCGGACGGCCGAGCAGGTCGCGGACCTGGCCGGCGCCGTCGAGTCCACCGACGGGCTGCGCGTGCGCGGGCTGATGTTCTACGAGGCCCAGGTCGCCGGGCTGCCCGACGAGAGCCCGGCGGTGCGGGCCGTGAAGCGGCTGTCGGTCCCCGACGTCGACCGTCGCCGACGTGACGTGCTCGCCGCCGTGCGGACCGCCGTCGGCCGGGACGTCGAGCTCGTCAACGCCGGGGGCACGGGGTCGCTGGAGTCCTCCGCCGCCGGCACCGGGGTCACCGAGGTGAGCGCCGGGTCGGGCCTGTTCGTCCCCGGCACGTTCGACCACTACCGGTCCTTCGAGGCGCGTCCGGCCGCGTTCTTCGGCCTCGACGTGGTGCGCACCCCCGGACCGGGCTGGGCGACGGCGTTCGGCGGCGGGTACGTCGCCTCCGGCCCCGCCGGGCCGTCCCGCCTGCCCCGGGTGGCCACGCCCGGCTGGGCGCTGACGCGCCGCGAGGGCGCCGGCGAGGTGCAGACGCCGCTGCGGCTCCGGCGCGGCGGGCGCGACCTGCGCGTCGGGGACCGGGTCTGGTTCCGGCACGCCAAGGCCGGCGAGCTGATGGAGCGGTTCGCGACGGTGCACCTCGTGCGCGGCGACGAGGTCGTCGGCACCGTCCCGACCTACCGCGGCGAAGGACAGGCCTTCGGCTGAMRLTDRLSRATAGLPGPLAVVDLDTFDVNAADLLRRAAGTPVRVAAKSVRVRALLDRAGEAGFTGVMAFSLAEALWLVGGGTRDVLVGYPTVDTDALARWAADPVARREITLMADDVAQVALASAALRDAAAAGPAGSVCLDVDCSLRLGIGPWRAHLGTRRSPLRTAEQVADLAGAVESTDGLRVRGLMFYEAQVAGLPDESPAVRAVKRLSVPDVDRRRRDVLAAVRTAVGRDVELVNAGGTGSLESSAAGTGVTEVSAGSGLFVPGTFDHYRSFEARPAAFFGLDVVRTPGPGWATAFGGGYVASGPAGPSRLPRVATPGWALTRREGAGEVQTPLRLRRGGRDLRVGDRVWFRHAKAGELMERFATVHLVRGDEVVGTVPTYRGEGQAFGNANANANANA
AK018_038121431cysS_1COG0215Cysteine--tRNA ligaseGTGACCTTGCAGCTTTTCGACACCGCCACGCGCTCCGTGCGCGAGTTCGCACCTCGGACACCCGGCAAGGTCGGCATCTACCTCTGTGGCGCCACCGTCCAGTCGGCGCCCCACGTGGGCCACCTGCGCCCCGCCGTCGCCTTCGACGTGCTGCGCCGCTGGCTGACCCGGTCGGGGCTCGACGTGACCCTGATCCGGAACGTCACCGACATCGACGACAAGATCCTCGCCAAGGCCGAGGCCGCCGGGGTGGAGTGGTGGGCGCACGCCGCCACCTACGAGCGCGCGTTCACCGCCGCCTACGACGCCCTCGGCGTGCTGCCGCCCACCTACGAGCCCCGCGCCACCGGCCACGTGCCGCAGATGGTCGCGCTCATGCAGCGGCTCGTCGAGCGCGGGCACGCCTACAGCAGCAGCCCCGGCAACGTCTGGTTCGACGTCCGTTCCTGGCCCGCCTACGGCGAGCTGACCACCCAGCGGCTCGAGGACCTCAACCCCGAGGGCGGGGACGACGCCGTCACGTCCGAGAAGCGCGACCCGCACGACTTTGCGCTCTGGAAGGCGTCCCGCCCCGGCGAGCCCGAGACCGCCGCCTGGGACACGCCCTTCGGGCGCGGACGTCCCGGCTGGCACCTGGAGTGCTCGGCCATGGCGCACCGCTACCTCGGCGAGGCGTTCGACATCCACGGCGGCGGCCTCGACCTGCGCTTCCCGCACCACGAGAACGAGCAGGCGCAGTCGCGCGCCGCCGGGTACGGGTTCGCCGACCGCTGGATGCATTCCGCCTGGGTCACCCAGCAGGGCGTGAAGATGAGCAAGTCGCTCGGCAACGGGCTGCTCATGAGCGAGCTGCTCACCCAGGTCCCGGCCGCCGTCGTGCGCTACGCCCTCGTGGCCGTGCAGTACCGCTCCATGCTCGAGTGGAGCCCGGACACGCTCGACGAGGCACGGGCCACGTGGGAGCGGCTGACCGGGTTCGTCGCCCGGGCGGGCGAGCGCGTCGGGGAGGTCCCGCGGGCAGAGGTCCTCGCCGCCGACCTGCCCGCCGGGTTCGTCACCGCGATGGACGACGACCTCAACGTGCCCGCGGCGCTCGCCGTCGTGCACGAGACGCTCAAGGCGGGCAACTCGGCGCTCGCCTCCTCCGACGACGCCGCGGCACGCGACGCGCTCGTCGGGCTGCGGGGGATGCTGGACGTGCTCGGGCTCGACCCGGCCGACCCGCAGTGGGCCAGCGCCGCCGACACGCGCGTGGCCGACGCGCTCGACGCCGTCGTGCAGGCCGAGCTCGACGCACGCTCCGCGGCCCGGGCCGCCAAGGACTACGCCACGAGCGACGCGATCCGGGACCGCCTCGCGGCGGCCGGCGTCGTCGTGCAGGACTCACCGGACGGCGCCCGCTGGACGCTGGCCGACGCGAAGGGGGAATGAMTLQLFDTATRSVREFAPRTPGKVGIYLCGATVQSAPHVGHLRPAVAFDVLRRWLTRSGLDVTLIRNVTDIDDKILAKAEAAGVEWWAHAATYERAFTAAYDALGVLPPTYEPRATGHVPQMVALMQRLVERGHAYSSSPGNVWFDVRSWPAYGELTTQRLEDLNPEGGDDAVTSEKRDPHDFALWKASRPGEPETAAWDTPFGRGRPGWHLECSAMAHRYLGEAFDIHGGGLDLRFPHHENEQAQSRAAGYGFADRWMHSAWVTQQGVKMSKSLGNGLLMSELLTQVPAAVVRYALVAVQYRSMLEWSPDTLDEARATWERLTGFVARAGERVGEVPRAEVLAADLPAGFVTAMDDDLNVPAALAVVHETLKAGNSALASSDDAAARDALVGLRGMLDVLGLDPADPQWASAADTRVADALDAVVQAELDARSAARAAKDYATSDAIRDRLAAAGVVVQDSPDGARWTLADAKGEPGPT0002985_3005DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002985-cysS-K01883NANA
AK018_03813987COG0566putative tRNA/rRNA methyltransferaseATGGCGGGGAACTCGCAGCGACCCGGTGCCAAGCGCAAGGCGGGCACCAAGAAGGGCGCGCAGGTCGGCAGCGGCGGTCAGCGCCGCAAGGGCTTGCAGGGCAAGGGGCCGACGCCGAAGGCCGAGGAGCGCACGTACCACCCGGCGTACAAGCGCAAGGTCGCGGCCGAGAAGCGTGCCGCGGCGCAGGCGCCCACGGGTGCCCGCAAGGGCGTGGCCCGGGGCACGCGCAAGGCCACCGGCGGTGCGGAGGTCGTGGCCGGCCGCAACGCCGTGCTCGAGGCGCTGCGCTCCCAGGTGCCGGTGACCGCCGTGCACCTGGCCGAGCGCATCGACCACGACGACCGCACCCGGGAGATCCTCGAGCTCGCCTCGATCCAGGGCGCCCAGGTGCTGGAGAGCTCGCGCGGGGCGCTGGACCAGCTCACCGAGGGGTCGGTGCACCAGGGGGTCGCCCTCGAGGTGCCGCCGTACGACTACGCGTCGGTCGACGACCTCCTCGACGCCGCGGCCGAGGCGGGCGAGCCCCCGCTCATCGTGGCGCTGGACTCGATCACGGACCCGCGCAACCTGGGGGCCGTGCTGCGGTCCGCCGGGGCGTTCGGTGCGCACGGCGTCCTGGTCCCGTCGCGGCGCACGGCCTCGGTGACGGCGTCGGCGTGGAAGGTGTCCGCCGGTGCCGCCGCACGGGTGCCGGTCGCCAAGGAGACCAACCTGTCGCGGACGCTCGCCGACCTGAAGAAGTCGGGGCTGTTCGTCGTCGGGCTCGACGCCGGCGGTGACGTCGCCGTGCGCGACCTGGCGTTCGCCACGGACCCGCTGGTGGTCGTGGTCGGGTCCGAGGGCAAGGGGCTCTCGCGCCTGGTGCGCGAGACCTGCGACGCCGTGGCGTCGATCCCGATCTCGTCGGACGTGGAGTCGCTCAACGCCGGTGTCGCGGCCGGGATCACGCTGTACGAGGTCGCGCAGGCCCGCGCCGCGAAGTAGMAGNSQRPGAKRKAGTKKGAQVGSGGQRRKGLQGKGPTPKAEERTYHPAYKRKVAAEKRAAAQAPTGARKGVARGTRKATGGAEVVAGRNAVLEALRSQVPVTAVHLAERIDHDDRTREILELASIQGAQVLESSRGALDQLTEGSVHQGVALEVPPYDYASVDDLLDAAAEAGEPPLIVALDSITDPRNLGAVLRSAGAFGAHGVLVPSRRTASVTASAWKVSAGAAARVPVAKETNLSRTLADLKKSGLFVVGLDAGGDVAVRDLAFATDPLVVVVGSEGKGLSRLVRETCDAVASIPISSDVESLNAGVAAGITLYEVAQARAAKNANANANANA
AK018_038141287hypothetical proteinGTGGAGCAGCTCAAGATCACCTCCGCGACCCCGAACTCCGCGCTGCTGGACCTGCCGTGGCGCCTCCCGCTGATCGACTGGCCGTCCGACGTCCTCGCGGCGCTGCCGCGGGGCATCTCGCGGCACGTCGTCCGCTTCGTCCGGCTCGACGGCCGCGTGCTGGCGATCAAGGAGATCAGCCAGGACGTCGCCTTCCGCGAGTACGGGATGCTGCGACAGCTGCGCAAGCTCGAGATCCCGTCCGTGCGCCCCGTCGGCGTCGTCACCGGTCGGACCTCCGACAGCGGTGAGCCGCTCGAGGCCGCCCTGGTCACCGAGCACCTGGCGTTCTCGCTGCCGTACCGGTCGGTGTTCAGCCAGTGGCTGCGCGACGAGACCGCGAACCGGCTCATCGACGCGCTCGCCGTCCTGATCGTGCGCCTGCACCTCGCGGGCTTCTTCTGGGGCGACGTCTCGCTGTCCAACACGCTGTTCCGCCGCGACGCCGAGCAGTTCGCCGCCTACCTCGTCGACGCCGAGACCGGCGCTCTGCACCGCGAGCTCACGCGCGGCCAGCGGGAGCACGACGTCGAGATCGCCCGCGTCAACATCATCGGCGAACTCATGGACCTGGCGGCCGGCGAGCTGCTCGACAGCGAGATCGACGAGGTGGCCTTCGGCAACTCCCTGGTCGACCGCTACCACGACCTGTGGGAGGCGCTGACCGGCGTCGAGGCCTTCGCGTCCGACGAGCGGTGGCGCGTCGCCGCCCGCATCGAGCGGCTCAACGCCCTCGGGTTCGACGTCGGCGAGCTCGACATCACCACCGACATCGACGGCACGACGGTGCGCATCCAGCCCCAGGTGGTCGACGCCGGTCACCACTCCCGCCGACTGCTGAAGCTGACCGGGCTGGACGTGCAGGACAACCAGGCGCGGCGACTGCTGAACGACCTGGACTCGTACCAGGCGGCGACGGACCGACAGGAGGACGACCCCCAGCTCGTCGCCCACGACTGGCTGCAGAACGTCTTCCACCCCACGGTCCGGGCGGTCCCCCGCGAGCTGCGGCGCAAGCTCGAACCGGCGCAGCTGTACCACGAGATCCTCGACCACCGCTGGTTCATCTCCGAGCAGTCCGGGCACGACGTCCCGATGCCGGAGACGGTGGCGTCGTACGTGAAGAACGTCCTGCGCTACCGCCCGGACGAGAAGGCGATCCTCGGCCTGGAGCCGGGCGACGAGCCCGAGGGGCCGGAGGCGGACTACTTCCACTACGCCGCGGCCGAGCCGGGCGACCGCGACTGAMEQLKITSATPNSALLDLPWRLPLIDWPSDVLAALPRGISRHVVRFVRLDGRVLAIKEISQDVAFREYGMLRQLRKLEIPSVRPVGVVTGRTSDSGEPLEAALVTEHLAFSLPYRSVFSQWLRDETANRLIDALAVLIVRLHLAGFFWGDVSLSNTLFRRDAEQFAAYLVDAETGALHRELTRGQREHDVEIARVNIIGELMDLAAGELLDSEIDEVAFGNSLVDRYHDLWEALTGVEAFASDERWRVAARIERLNALGFDVGELDITTDIDGTTVRIQPQVVDAGHHSRRLLKLTGLDVQDNQARRLLNDLDSYQAATDRQEDDPQLVAHDWLQNVFHPTVRAVPRELRRKLEPAQLYHEILDHRWFISEQSGHDVPMPETVASYVKNVLRYRPDEKAILGLEPGDEPEGPEADYFHYAAAEPGDRDNANANANANA
AK018_038151122msiK_1COG3839Diacetylchitobiose uptake system ATP-binding protein MsiKATGGCTTCGGTCACCTATGACCACGCGACGCGCGTCTACCCGGGCACGGAGCGCCCGGCCGTGGACCAGCTCAACCTGCAGGTCGAGGACGGCGAGTTCCTCGTCCTCGTCGGCCCCTCGGGCTGCGGCAAGTCCACCTCGCTGCGCATGCTGGCGGGCCTCGAGGACGTCAACGGCGGGCACATCTACATCGGTGACCGCGACGTCACCGACGTGCAGCCCAAGGACCGCGACATCGCGATGGTCTTCCAGAACTACGCGCTGTACCCGCACATGTCGGTCGCCGACAACATGGGCTTCGCGCTGAAGATCGCCGGCACCCCGAAGGCGGAGATCCGCCAGCGGGTCGAGGAGGCCGCCAAGATCCTCGACCTCACCGAGTACCTCGACCGCAAGCCGAAGGCGCTCTCCGGCGGTCAGCGTCAGCGTGTCGCCATGGGCCGCGCCATCGTGCGTCAGCCGCAGGTGTTCCTCATGGACGAGCCGCTGTCGAACCTGGACGCCAAGCTGCGTGTCCAGACCCGTACGCAGATCGCCTCGCTGCAGCGCCGCCTCGGTGTCACCACCGTCTACGTGACGCACGACCAGACCGAGGCCCTGACCATGGGCGACCGCATCGCCGTGCTCAAGGACGGTCTGCTGCAGCAGGTCGGCACCCCGCGCGAGATGTACGACACCCCGGCGAACACCTTCGTGGCGGGCTTCATCGGCTCCCCGGCGATGAACATCGGCACCTTCGAGGTCCGCGACGGCAAGGCGGTCGTCGGTCACGCGGCGGTGGCGCTCGAGCGCGACGTGCTCGACCAGCTCTCCGACGCCGACAACGGCAAGGTCGTCGTGGGCTTCCGTCCCGAGTCCCTCGACATCGCGCACGACGACTCGCAGGACGCCTTCCAGGTGAAGGTCAACCTCGTCGAGGAGCTCGGCTCCGACGCGTTCGTCTACGGCGAGCTGCTGTCGGACGGTTCGGCCGGCGACCTGCACTCCGGTTCCTCGGACCAGGTCATCGTGCGCATCGACCCGCGCGAGGTCCCGATGAAGGGCGACACCATCCACGTCACCATCAAGCAGGGCCAGGAGCACGTCTTCGCGCCGTCGACGGGTGCTCGCCTGAGCAAGTGAMASVTYDHATRVYPGTERPAVDQLNLQVEDGEFLVLVGPSGCGKSTSLRMLAGLEDVNGGHIYIGDRDVTDVQPKDRDIAMVFQNYALYPHMSVADNMGFALKIAGTPKAEIRQRVEEAAKILDLTEYLDRKPKALSGGQRQRVAMGRAIVRQPQVFLMDEPLSNLDAKLRVQTRTQIASLQRRLGVTTVYVTHDQTEALTMGDRIAVLKDGLLQQVGTPREMYDTPANTFVAGFIGSPAMNIGTFEVRDGKAVVGHAAVALERDVLDQLSDADNGKVVVGFRPESLDIAHDDSQDAFQVKVNLVEELGSDAFVYGELLSDGSAGDLHSGSSDQVIVRIDPREVPMKGDTIHVTIKQGQEHVFAPSTGARLSKPGPT0016310_2289DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016310-msmX|msmK|malK|sugC|ggtA|msiK-K10112NANA
AK018_03817828hypothetical proteinATGTCTGATCGGCACGACCAGGACCTGGCGGAGAGACTCCTCGGCGCGCTGGACCGCTTCGCCGTCGACGACGGCGCGGCCCTGCTCGTCGCCCTCGACTTCGACGGCACGCTCGCCCCGCTGATGGACGACCCGACGGCCTCGCGCATGACCCCGGCCGCCCGGGACGCCGTCGACGCCCTCGGGGCGACGGCCGCGGAGCGGGTGCGCCTGGCGTTCGTCTCCGGCCGGGACCTGGAAGACCTCGCGCTGCGCGCCGCTCCCCCGGTCGGCTCCTACCTGGTGGGCAGCCACGGCGCCCAGACGGGGCACGCGACCTCCGACGGGCTCGCGGCGGTGCCCCTGGAGCTCACGGCCGAGGAGCACGAGACGCTCACCGCGCTGCGGGCCGCCCTGGACGAGGCGGTGTCCGGCCGCGAGGGCGCCTGGGTGCAGCACAAGCCGAGCGCCGCCGTCCTGCACACCCGCCTGGCCGGCCCGCAGGACACCGAGGCCGCGGTCGAGGCCGCGGACGCGGCCGCCGCCCGGCTCGGGCTGGAGGCGATGCACGGCAAGGACGTCGTCGAGATCGCGGTGCTGCACACGTCCAAGGGCGAGGCGCTGGAACGGCTGCGCGACGTCGTCGGGCACGACGTCGGCACCGACCGCGTGCGCGTGCTGTACGCGGGGGACGACACCACCGACGAGAAGGCCTTCGCCGTGCTGGAGGCCGGGGACCTGGCGCTCAAGGTCGGCGACGGGGACACCCTCGCGCCGCACCGCGTCGCGGGAGCGGACGACGTCGCCGCGGTGCTGGACCGGCTGCGCGCGTCGTTCGCGGCGCGCTGAMSDRHDQDLAERLLGALDRFAVDDGAALLVALDFDGTLAPLMDDPTASRMTPAARDAVDALGATAAERVRLAFVSGRDLEDLALRAAPPVGSYLVGSHGAQTGHATSDGLAAVPLELTAEEHETLTALRAALDEAVSGREGAWVQHKPSAAVLHTRLAGPQDTEAAVEAADAAAARLGLEAMHGKDVVEIAVLHTSKGEALERLRDVVGHDVGTDRVRVLYAGDDTTDEKAFAVLEAGDLALKVGDGDTLAPHRVAGADDVAAVLDRLRASFAARPGPT0014140_1129DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014140-otsB-K01087NANA
AK018_038181473otsA_1COG0380Trehalose-6-phosphate synthaseTTGACAGGTCAGGGATCGTCCAGCAGCACGACCGGCAGCACCGAGTCACCCGGCTACGACCTCGTCGTCGTCGCGAACCGGCTCCCCGTGGACTTCGCCGTCGACGACCAGGGGAACCTCGACTGGAAGCGGTCGCCCGGCGGACTGGTCACCGCCCTCGAGCCGGTGATGCGGGAGAACGACGGCGCGTGGGTCGGCTGGTCCGGCGCCCCGGACCTGGCGCACGAGCCCTTCGAGGCCGACGGCATGCTCCTGGTCCCGGTGACGCTGTCGGCCAGCGAGATCAGCAAGTACTACGAGGGGTTCTCGAACGACACCCTCTGGCCCCTGTACCACGACGTCATCGCGCCGCCGACCTACCACCGGCAGTGGTGGGACGCCTACCGCAAGGTCAACCAGCGCTTCGCCGAGGCGGCCGCCGCCCAGGCCGCGCGAGGCGGCGTGGTGTGGGTCCACGACTACCAGCTCCAGCTCGTGCCGAAGATGCTGCGCGAGCTGCGTCCCGACCTGCGCATCGGGTTCTTCGACCACATCCCGTTCCCCGCCGTGGAGCTGTTCCAGCAGCTCCCCTGGCGCAAGAACATCGTCGAGGGCCTCCTCGGCGCGGACCTCATCGGCTTCCAGCGCGGCGGTGACGCCTCGAACTTCGTGCGGGCCGTGCGTCGGCTCACCGACCACCCGACCCGCGGCTCGATCATCTCGATGGGGTCCGACGACGCGACGCCGGGCCGGCGCGTCCGGGCGGCCTCGTTCCCCATCTCGATCGACACCCAGCACTTCGACGAGCTCGCCCGCAAGCCGGAGATCCAGGACCGGGCCAAGGAGATCCGCGCCGACCTGGGCGACCCCGAGGTCGTCATGCTGGGCGTGGACCGGCTCGACTACACCAAGGGCATCCGGCACCGGATCAAGGCCTACGGGGAGATCCTCCAGGACGGCCGCATCGACGCCGCGAACACCACGCTGGTGCAGGTCGCGAGCCCGTCGCGGGAGAACGTCGGCGCCTACCAGGAGCTGCGCCAGCACGTGGAGATCCTCGTCGGCCGCGTCAACGGCGAGTTCGGCGAGCTGGGCCACTCGGCCATCCACTACCTGCACCACTCCTACCCGCCCGAGGAGATGGCGGCGCTGTACCTGGCCGCCGACGTCATGCTCGTCACCTCGCTGCGCGACGGCATGAACCTCGTCGCCAAGGAGTACATCGCGGCCCGCTCCGACCTGGGCGGCGTGCTGGTGCTCAGCGAGTTCACGGGCGCCGCCGACCAGCTCGCCCCCGGGCCGCTGCTGTGCAACCCGCACGACATCGACGGGATGAAGAACATCATCGTCGCCGCGGCCGAGATGCCGGCCAAGGAGAAGCGTCGCCGCATGCGCAACCTGCGCCGCAAGGTCATGGGCGACGACGTCGCCAAGTGGTCGAAGTCGTTCCTCGGGGTGCTCACCGCCGTCCCCGCCCGCGACACCTATGTCTGAMTGQGSSSSTTGSTESPGYDLVVVANRLPVDFAVDDQGNLDWKRSPGGLVTALEPVMRENDGAWVGWSGAPDLAHEPFEADGMLLVPVTLSASEISKYYEGFSNDTLWPLYHDVIAPPTYHRQWWDAYRKVNQRFAEAAAAQAARGGVVWVHDYQLQLVPKMLRELRPDLRIGFFDHIPFPAVELFQQLPWRKNIVEGLLGADLIGFQRGGDASNFVRAVRRLTDHPTRGSIISMGSDDATPGRRVRAASFPISIDTQHFDELARKPEIQDRAKEIRADLGDPEVVMLGVDRLDYTKGIRHRIKAYGEILQDGRIDAANTTLVQVASPSRENVGAYQELRQHVEILVGRVNGEFGELGHSAIHYLHHSYPPEEMAALYLAADVMLVTSLRDGMNLVAKEYIAARSDLGGVLVLSEFTGAADQLAPGPLLCNPHDIDGMKNIIVAAAEMPAKEKRRRMRNLRRKVMGDDVAKWSKSFLGVLTAVPARDTYVPGPT0014135_549DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014135-otsA-K00697NANA
AK018_038191887pknD_3Serine/threonine-protein kinase PknDATGGCTGTGGGTGACGACGCGGAGGTACTGACCCAGGAGACGGCCGCGCCCGGACCGGACGGTGGTCTGGCCCCGGGGACGGACGTCGGCGGGTACACCGTCGTCGCCGCGCTCGGCCGCGGCGCCATGGGTGCCGTCTACGAGGCCCGGGACGGCGCGGGCGAACGGGTGGCCCTGAAGGTCCTGCACGCCCACGTCGACGCCGACCCGGCCGGACGCCAGCGCCTGCGCCGCGAGGTCGCCGCCCTGCAGCGCCTGCGGCACCCGGCCGTGGCCCAGGTGCTCGACGCCGAGTTCGAGGGGCCGCACGCGTTCGTCGTCACCGAGCTCGTCGAGGGCCTCACCCTCGAGGAGGAGATCGACGCCCGCGGCCCGCTGGACGTGTCCGACCTATTCTCCCTGGCCGACCAGCTCGCCGACGCCCTGGAGTCCGTGCACGCCGCCGGGGTCGTGCACCGGGACCTGAAGCCCTCCAACGTGATGGTCACCGGGGACGGGCCCAGCCTCATCGACTTCGGGATCTCTCAGAGCTCCGGCGACACCCGGACCACCATGACCGGCTTCGTCATGGGGACCCCCGGCTACATCGCCCCCGAGCTGCTCGACGGCGGCGACCCGGTCCCGGAGACGGACTGGTGGAGCTGGGCAGCCCTGCTCGCGTTCGCCGCGACGGGCCGGTCGCCGTTCGGGGTGCGGCCCACCGACGTCGTGCTGCAGCGGTCCCGGCAGGGTCGCGCGGACCTCGTCGGGGTGCCGGCCCGCACGGCCCGCGCGCTGGCGGGGGCCCTGCAGCCCGACCCGGCCCAGCGGTGGGGTCCCACCGACGTGGTGCGGGCGATCCGCCGCGACCTCGACGAGGGGGCCGGGGAGGTCGTCGACATCGAGGCGGACCCGCAGGCCACGCAGCGGATCGTCGTCGCGGCCGGTGCCGCGACGGCGGCGACGGCGGCGACGGCGGCCGGTGCCCTCGGCAGCGCCGGCACGCCGGAGGAGGGGTCGCCCGGGGCGGGCTCGCCGACCGCGGCGCCCGCACCCGACGAGACCGCCGTCGTCGGCCCGCCCGTGCCGCCGGCGGAGGCGCAGGCCGGCACCGCGCAGACCATGACCTCCGAGGAGCGGGCCCGCGCCGGGGCGCAGGACGGCGCCACGCGCGCGATCCCGCTCGGCGAGGTGCGGTACCGGACGTACGAGGAGATCGCGGACGCGGCCGAGGACGTCGACCCCACCCCCGAGGAACCGCAGGGCCCCTACGTCCCGCCGGTCCACCGGCGACGGTGGGGCACCGTGCTCGCGCTCGGGGTGCCGTTCGTGGTGCTCGCGGCCTTCTACCCGCTGGTGGCGTTCGGGGCCCTGTGCGGGGTGACCGTGCTGTGCCGGATCGTGGGGACGTCGTCCCAGCGGTTCCACGAGCGGCGCGAGCGGCGCGGGGTGCGGTCCTCCGACGGCTGGGTGGCCGGCCTGCTGCTGCCGTACCACGCCGTGATCGGCGCCCTCGGGGTCATCCCCGCGGCGGTGGTCGGCGGCTGCGTCGGCCTGCTGGCGATGATGGGCGGCTACTGGCTGTTCGGGGACGGCAACTGGATCGTGGCGCCGTTGGAGGACGTCGAGTCCCGGTCCGTCGGCGGACGCAACGCGCCCGTCGTCTTCGCCGGGGTGCTCGCGGGGGCCATGCTGCTCGCCGTCGTGGCGACCTGGTTCGGCCCGGCCGGTCGCACCGCCCGCGACGGCGCCCGGCGGCTGCTCAACAACCTCGCTCCCGGGCTGGTCGGGGCCGTCGTCGTGATCGCGATCTGCCTGGTCGGTTCGTGGGTGCTGTACTCCGAGCTGCTCACCGACCCCGTCGAGATCGTCTGGTGGCCGATGGACGGGCCGCCGTCACTGTTCTGAMAVGDDAEVLTQETAAPGPDGGLAPGTDVGGYTVVAALGRGAMGAVYEARDGAGERVALKVLHAHVDADPAGRQRLRREVAALQRLRHPAVAQVLDAEFEGPHAFVVTELVEGLTLEEEIDARGPLDVSDLFSLADQLADALESVHAAGVVHRDLKPSNVMVTGDGPSLIDFGISQSSGDTRTTMTGFVMGTPGYIAPELLDGGDPVPETDWWSWAALLAFAATGRSPFGVRPTDVVLQRSRQGRADLVGVPARTARALAGALQPDPAQRWGPTDVVRAIRRDLDEGAGEVVDIEADPQATQRIVVAAGAATAATAATAAGALGSAGTPEEGSPGAGSPTAAPAPDETAVVGPPVPPAEAQAGTAQTMTSEERARAGAQDGATRAIPLGEVRYRTYEEIADAAEDVDPTPEEPQGPYVPPVHRRRWGTVLALGVPFVVLAAFYPLVAFGALCGVTVLCRIVGTSSQRFHERRERRGVRSSDGWVAGLLLPYHAVIGALGVIPAAVVGGCVGLLAMMGGYWLFGDGNWIVAPLEDVESRSVGGRNAPVVFAGVLAGAMLLAVVATWFGPAGRTARDGARRLLNNLAPGLVGAVVVIAICLVGSWVLYSELLTDPVEIVWWPMDGPPSLFNANANANANA
AK018_03820870hypothetical proteinATGTCCAACAAGCAGAACAAGGCGCAGCGCCGTGACGAGGCCCGTGCCCAGGCGCTCGCCATCCAGCAGCAGCAGGCGCAGCGCGACCGCCGCAACCGGCTGATCGTCTTCGGCGCGCTCGGCGTGGCCGTCGCGGCGCTGATCGCCGTCGCCGTCTTCATCCTCATGAACGAGGCGGAGCGGACGGCCGTGGACGACGTCCCGCTCGCCGAGGTCGAGAACGTGCCCGCGACGGCGCTCGAGGGCGGCGGCATCCCCGTCGGCGCGGATCTCGTGGCCGGCGGCGAGAACGAGGGCGGGCCCGTCGTCGACGAGTACCTCGACTACATGTGCCCCATCTGCGGCCAGTTCGAGGACATCAACGGCGCCGACGTCGAGACCATGCTCACCGAGGGTGACGCGACCGTCGTCTTCCACCCGGTGTCGATCCTGGACCGGATGTCCAGCGGGTCGGACTTCTCGACGCGCTCGGCGTCGGCGGCGTACTGGGTGGCCGACCGAGCGCCGGAGTCCTTCTACGCGTTCAACGAGGCGCTGTTCGCCAACCAGCCGTCGGAGAACACCTCCGGGCTGAGCGACGACGAGATGGCCGCGATCGCCGAGCAGGCCGGCGTCCCGGCCGACGTCGCCGCCGGTATCGCCGACGGGACGGCCCGCGCCACCTTCGGCCAGTACGTGTTCTCGCTGACGAACGAGGCCTCGGCGAACGAGGACCTGTGGAACGCCAACGGCGGCTTCGGCACGCCGACCATCCTGGTGGACGGCGAGCGCTTCGAGACCTGGAACCAGCCCGGTGCGCTGCTCGCGGCCGTCCAGGGCGGCGGTGCCGCGGGCGACACGGCGACCGAGGACGAGTCCGCCGACGAGTAAMSNKQNKAQRRDEARAQALAIQQQQAQRDRRNRLIVFGALGVAVAALIAVAVFILMNEAERTAVDDVPLAEVENVPATALEGGGIPVGADLVAGGENEGGPVVDEYLDYMCPICGQFEDINGADVETMLTEGDATVVFHPVSILDRMSSGSDFSTRSASAAYWVADRAPESFYAFNEALFANQPSENTSGLSDDEMAAIAEQAGVPADVAAGIADGTARATFGQYVFSLTNEASANEDLWNANGGFGTPTILVDGERFETWNQPGALLAAVQGGGAAGDTATEDESADENANANANANA
AK018_03822849hypothetical proteinGTGCAGAATGGTCGCGTGGCTTCGCACGACAGCATCCCCCCGTGGTCCCGCTACGTCGCGATCGGCGACTCGTTCTCCGAGGGCCTGTGGGACCCGTACCCGTACGACGACGGCACCCGCGCCCCCGCCGGCACCGAGACGACCGCGGTGCAGCGCGGCTGGACGGACCGGCTCGCCGACCACCTGGCCGAGCGCCGGGGCGACGAGGGTCTGGAGTACGCCAACCTCGCGATCCGCGGCAAGAAGCTGCGCCAGATCGTCGACGAGCAGCTCGACGTCGCCCTCGCGATGCAGCCGGACCTCGTCTCGATCGTCGGCGGCGGCAACGACATCCTGCGCCCTCAGGCGGACATCGACGGCCTGACGGCGACCCTGGAGGACGCCGTGGCCCGCCTGCGCGCGTCCGGGGCGGACGTGCTGATGGGGACCGGCTTCCGGGCCGGCGGCGCCCTGAGCCTCACCAGCGGACGGGTCGGGCAGTACAACGCCACGATCTGGTCGATCGCGCGGCGGCACGGCGCGTACGTGCTGGACAACTGGGGCCTCGGCGCGCTGCACGACTGGCGCCTGTGGTCCGACGACCGCATCCACCTCACCGACGAGGGGCACCGCCGCGTGGCGAACGCCGCCCTGGTCGGGCTCGGCCTCGCGCCGGACGACGACACCTTCGACGACGCCCTGCCGGCGGCCACGGCGCGGCGCCTGCGGGAGCGGGCCCGGGAGGACGCCCAGTGGGCGCGGGCGCACGTGATGCCGTGGGTGCAGCGGCGGCTGCGCGGGACGTCCAGCGGCGACGGCCGGACGCCGAAGTGGCCGACGCCGCTGCTGTGGCCCCCGTCGGAGCGCTGAMQNGRVASHDSIPPWSRYVAIGDSFSEGLWDPYPYDDGTRAPAGTETTAVQRGWTDRLADHLAERRGDEGLEYANLAIRGKKLRQIVDEQLDVALAMQPDLVSIVGGGNDILRPQADIDGLTATLEDAVARLRASGADVLMGTGFRAGGALSLTSGRVGQYNATIWSIARRHGAYVLDNWGLGALHDWRLWSDDRIHLTDEGHRRVANAALVGLGLAPDDDTFDDALPAATARRLRERAREDAQWARAHVMPWVQRRLRGTSSGDGRTPKWPTPLLWPPSERPGPT0017895_9DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_MANNOSE_METABOLISM|DEGRADATION,PGPT0017895-mgtA-K12583NANA
AK018_03823651ung_1COG0692Uracil-DNA glycosylaseATGGCGCCCGACTGGGCCGCCGCCCTGGCCGACGTCGAGCCGCAGATCCACGCCATGGGCGACTTCCTGCGCGCCGAGGTCGCCGCCGGCCGCCAGTACCTGCCGGCCCCGGGCGACGTCTTCGCGGCGTTCCGGCGCCCGCTCGCGGACGTCAAGGTCCTCGTGGTGGGCCAGGACCCGTACCCCACGCCCGGCCACCCCATGGGACTGTCGTTCTCGGTCCAGCCGGACGTGCGGCCGCTGCCGAAGTCGCTGGCCAACATCTTCACCGAGCTCGCCGACGACGTCGGCGCACCGGCACCGAGCACCGGCGACCTGAGCCCGTGGGCGGACCAGGGCGTGATGATGCTCAACCGGGTGCTGACGGTGCAGCCGGGCCGGCCGGCATCGCACCGGGGCCACGGCTGGGAACAGGTCACCGAGGCGGCGATCAAGGCGCTGGTGGCCCGCGGCGGCCCCCTGGTGGCCATCCTGTGGGGCCGCGATGCGGCGTCGCTCACACCCTGGCTCGGCGGCACCCCGACCGTGGAGTCGGCGCACCCCAGCCCGCTGGCGGCCTACCGCGGGTTCTTCGGCTCGAAGCCGTTCTCGCGCGTCAACGCCCTGCTCGAGCAGCAGGGCGGGACACCCGTGGACTGGCGACTGCCCTGAMAPDWAAALADVEPQIHAMGDFLRAEVAAGRQYLPAPGDVFAAFRRPLADVKVLVVGQDPYPTPGHPMGLSFSVQPDVRPLPKSLANIFTELADDVGAPAPSTGDLSPWADQGVMMLNRVLTVQPGRPASHRGHGWEQVTEAAIKALVARGGPLVAILWGRDAASLTPWLGGTPTVESAHPSPLAAYRGFFGSKPFSRVNALLEQQGGTPVDWRLPPGPT0007090_2DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766NANA
AK018_03824315hypothetical proteinATGAGCGAGATGCTGGTCCACGAGGTCGACTCCACGCAGGCTCCGTCGTCGGACGCCGCCGAGGCGCTGTCCGACCGCGACCGCGAGATCCTCGCCTTCGAGAAGCAGTGGTGGAAGTACGCCGGCTCCAAGGAGCAGGCGGTGCGCGAGCTGTTCGACCTGTCCGCGACGCGCTACTACCAGGTGCTCAACGCGCTGATCGACACCCCCGAGGCGCTCGCCCACGACCCGATGCTGGTCAAGCGGCTGCGCCGCATGCGGTCGACGCGTCAGCGCGCGCGCAGCTCGCGTCGCCTCGACGGCACGCGGGGCTGAMSEMLVHEVDSTQAPSSDAAEALSDRDREILAFEKQWWKYAGSKEQAVRELFDLSATRYYQVLNALIDTPEALAHDPMLVKRLRRMRSTRQRARSSRRLDGTRGNANANANANA
AK018_03825642hypothetical proteinGTGACGAAGAGCCACTACCCGTACCCGCCCGACGAGTTCGACGTCCGCGGTCCCGAGGGGTCGCCCGTGGGCGTGCACCGCGAGCCCCGCAGCGGGTGGAGCTCTGCCTGGCCGTTCCTGCTGGTCGCCGTCGTGTTCGCCGGGCTGGCGGTCGGCATCGTGTCCTTCCTGTCCGACGGCCGGGGCACCGAGAACCCGCCGGCCGCGCAGCAGGAGTCGGCCGCGCCGGAGACCTCCGCGAGCCCGGAGGCGTCCGAGGGTGACGGCGGCGAGGGGTCCGGCGAGGGTGAGGGCTCCGGCGAGGGCGAGTCCACCGAGGAGCCCACTGAGGAGCCGACGGAGGAACCGGCCCCCGAGCCGAACTACGACGCGTTCGTCCGCGTGCTCAACGCGGTGGGCACCCCGGGCCTGGCCGGCGCCAACGCCGACGTCCTCGTCGGTGAGGGATACACCAACGTCTCGCCGGAGGACTACCCGGAGGGCCAGACGCCGCCCGAGGTCGACACGATCTGGTACGCGACGGCCGAGGACGAGGACACGGCGCTCGCGGTGGCGAACTCCTTCGGCATCCCCGCCGAGAACGTCACGGAGGTCGCCGTGGCCAGCGGTGACGTGCTCGCCATCCTGCACGAGATGCCGTAGMTKSHYPYPPDEFDVRGPEGSPVGVHREPRSGWSSAWPFLLVAVVFAGLAVGIVSFLSDGRGTENPPAAQQESAAPETSASPEASEGDGGEGSGEGEGSGEGESTEEPTEEPTEEPAPEPNYDAFVRVLNAVGTPGLAGANADVLVGEGYTNVSPEDYPEGQTPPEVDTIWYATAEDEDTALAVANSFGIPAENVTEVAVASGDVLAILHEMPNANANANANA
AK018_038262139hypothetical proteinGTGGCGCTGCGTCGTGCGCAGGTAGGCGTCGAACTCGAACATCCGCGAGAAGCCGTCCATCGGCATGGTGTAGTCCGCCGGGTAGGACTGCTTCTCACGACCCGGGCAGTCCGTGAACGTCGAGAAGATCTGCGACGCCATGGAGTAGCGGGCCATCGTGTTGATGCGGTTGATCCGGTCGTTCGACGAGTCGAACGACCCGACCTCCGGCGTCGCCGCCTGCAGGCGCAGGCCCGTGACGATGTCGGCCGTCGGGGTGTAGTCCGCGGGCAGACCCTCGATCTGGACCCACTGCATGCCGAAGTAGTTGAACATCGGCGTGCGCGACTCGCCGCCCTCGAGACCGGCGGTGATGTAGGAGTTGAACAGGTCGTTGCCGCGGAACCCGGGCCCGAGCGAGCCCTGGTCGACCGTGCCGTCCTCGGCGAGGCTCTCCGCCGGCTTGACCTTGACGACGGTGCCCTCGGGCAGCTCCGGCAGGTCCAGCTGGGCGAACCCGGCGAAGTTCTGGCCGAAGTCGAAGACCCACACGCCCTCGGCGGGGTTCGTGATGTTCTGCGGGGTGAACCGCTCGGCCTCGTAGATGCCCTCCGCCTGGCGCGCGACCAGCTCGGTGGCGAGGTTCGGCGGCGGGGCGATCCCGGCCGCGGCCCAGTTCATGGCCGACCCGTCGCGACGCTCGGCCCCGTCCGTGAGGTCGGCGCCCGGCGTGTTCCAGCCGACCTGCTCGCGGCGGGCGTCGTAGTCCTCGCCGGAGTACCAGGCGTCGGTGACGAGCGCACCGGAGGCGGCCCGCCAGTCACGGTCCGACACGACGACGTCGCTCGACCCGTCGGCGTAGGACACCTCGAGACGCGCGATCATCCGCGGGGTCACCGCGGCGCCCGCGCTGGGGTCGGTCTCGGCGATGTTGTTGCCCGACGCCGTCACGTGCGCGCCGACGGCGTGCGCCGCGTCCAGGCCCGGCTCGAACGAGATACCGGTCCCGTCCTCGCCCGCGGTGCCGATGTCGGTGATGACGCGCGACTCGAGGCGGTCACCGCCGTCGCCGGTGTCGATGTTGATCGTGCCGCCGACGTGGTAGTCCTCGGTGCTGGTCAGGAGCACGGTCGTCGCCCCGGCCTCCACCGGTGCGACGAGCTCGCCGCTGCCCTTGATCTGGCTCTGCCACCAGGCGTACGGGGAGGTGCGTCCGACCTCCTCGTTGTGGATCGAGCGCCGCACGTACGCCGTGCCGTTGCCGAGCTCGACGCCGACGGCGTTCTCCCCCGGCTCGAGCACGGACGAGACGTCGTAGGTGCGGTACTCGGTCGAGAGCTGGTAGTTGGTGTTGCCGGGGGCCAGGTGCTCCTCGGTGACCTTCTCGCCGTTGACGGTGGCGTGGTGCAGCCCCGCGCCCGACACGTAGAGGTGGGCCGAGGCGACGTCCTTGTCCTCGTCGAGGTCGAACTGACGCGCGAAGATCGGCAGCGGGTCCGCCGGGTCGCGGTCCGCCTGCTCGATCCAGCGGGCGTCGCCCCAGTCGCTCTGCTGGAGCAGCCCGATCTTGAAGGTGGCCGGCTCGCTCCACTCCGAGGGGTGACCGAGCGCGTCCCAGACGCGCACCCGCCACGCCACGCTGTCGCGGGACTCCAGCGGGTCGTCCCCGCCGTAGGCGATGTTGGCCTGCCGGTCGGAGGAGATCTTGCCCGAGTCCCAGAGCAGGTCGCCGGCCTCCAGGTCGGCGACCGAGGACGCGGCCTCGATCTCGTAGGCCGTCTGCTCGTCGATCGCGCAGGTGCCCGCGGCCGACGCGTCGTAGCAGGGGTTCCCGGGGGTGTCCTCGCTCGACATCGTCCAGCCGAGCAGCGGACGGTCGCTGTCGACGTCGAGCGGGGTGTCGTCGCGTCCGTCGACGCTCAGCCCGGAGACGGACACGGGGTGGTCGCCCGGACCGGCGGACGCCGGCACCGTGGCGAGGGGCAGGGTGAGCGCCGCGGCGGCGGCGGTGACGATGGTGGTTCGTGCGATGCGGTTCATGGCAGGGCCACCCCCGTGGGGGCGACGAGGGCACCGTGGCAGGCACGGTCCGTCGCGGTCGCGGTCCTGGACATCATGGTGAACACACTCCGATTCCTCGAGATCATGACTCGTCGTTGAMALRRAQVGVELEHPREAVHRHGVVRRVGLLLTTRAVRERREDLRRHGVAGHRVDAVDPVVRRVERPDLRRRRLQAQARDDVGRRGVVRGQTLDLDPLHAEVVEHRRARLAALETGGDVGVEQVVAAEPGPERALVDRAVLGEALRRLDLDDGALGQLRQVQLGEPGEVLAEVEDPHALGGVRDVLRGEPLGLVDALRLARDQLGGEVRRRGDPGRGPVHGRPVATLGPVREVGARRVPADLLAAGVVVLAGVPGVGDERTGGGPPVTVRHDDVARPVGVGHLETRDHPRGHRGARAGVGLGDVVARRRHVRADGVRRVQARLERDTGPVLARGADVGDDARLEAVTAVAGVDVDRAADVVVLGAGQEHGRRPGLHRCDELAAALDLALPPGVRGGASDLLVVDRAPHVRRAVAELDADGVLPRLEHGRDVVGAVLGRELVVGVAGGQVLLGDLLAVDGGVVQPRARHVEVGRGDVLVLVEVELTREDRQRVRRVAVRLLDPAGVAPVALLEQPDLEGGRLAPLRGVTERVPDAHPPRHAVAGLQRVVPAVGDVGLPVGGDLARVPEQVAGLQVGDRGRGLDLVGRLLVDRAGARGRRVVAGVPGGVLARHRPAEQRTVAVDVERGVVASVDAQPGDGHGVVARTGGRRHRGEGQGERRGGGGDDGGSCDAVHGRATPVGATRAPWQARSVAVAVLDIMVNTLRFLEIMTRRNANANANANA
AK018_038271056lsrB_2Autoinducer 2-binding protein LsrBATGTTCTCCTTCCAGCACCGTGCACGCCGCGGTCTCGCGCTGACGGCCTTCGCCGCCGGCACCGCGCTCGCCCTGTCCGCCTGCTCCGGCGGTGACGACGCCGGGTCCGACGGCGGGGACGCCGGCGGCGGCGGCAGCGAGGAGGCCGCCTCGATCACCTTCCTGCCGAAGAGCCTGGGCAACCCGTACTTCGACACGTCGAACGCCGGGGGCGCCGACGCCGTCGAGGAGCTCGGCGGCACCTTCGAGGAGGTCGGTCCCTCCGAGGCGAGCCCGACCTCGCAGGTCAGCTTCATCGAGACCGCCGCCCAGCAGGGAGTCGACGCGCTCGTGGTGTCGGCGAACGACCCGGAGGCGATCTGCGACGCCCTGAACGAGGCGCGGGACGTCGGCGTCGCCGTCGTCACCTTCGACTCCGACACCAACCCGGAGTGCCGCGACCTGTTCGTCAACCAGGCCACGGCCGAGGGCATCGCCCAGGCCCAGGTGGACCTCATCACCGAGCAGATCGACGACTCGGGCCAGATCGCGATCCTGTCGGCCTCGGCGAACGCGACGAACCAGAACGCGTGGATCGAGCTCATGGAGGCCGAGCTCGACGCCAACCACCCGGACGTCGAGCTGGTCGAGGTCGCCTACGGCGACGACGACGACCAGACCTCGTTCGACAAGACGGCCGCGCTGCTGCAGACGTACCCGGAGCTCGAGGGCATCGTCTCGCCGACCACGGTCGGCATCGCGGCGGCCGCGCGCTACCTGTCCACGTCGGAGTACCAGGGCGAGGTCGCGCTGACCGGCCTGGGCACGCCGAACCAGATGCGCGAGTACGTCGAGGACGGCACCGTCGAGGCCTTCGCGCTCTGGAACCCCGCGGACCTCGGCTACCTGTCGGCCTACGCCGCCAACGCCCTGGCGACCGGTGAGATCTCGGGCGAGGCCGGCGACACGTTCGAGGCGGGCGAGCTCGGGTCCTACGAGGTCGACGAGGAGGGCACCGTGCTGCTCGGCGACCCGTTCGTGTTCGACGCGGACAACATCGGAGACTTCGACTTCTGAMFSFQHRARRGLALTAFAAGTALALSACSGGDDAGSDGGDAGGGGSEEAASITFLPKSLGNPYFDTSNAGGADAVEELGGTFEEVGPSEASPTSQVSFIETAAQQGVDALVVSANDPEAICDALNEARDVGVAVVTFDSDTNPECRDLFVNQATAEGIAQAQVDLITEQIDDSGQIAILSASANATNQNAWIELMEAELDANHPDVELVEVAYGDDDDQTSFDKTAALLQTYPELEGIVSPTTVGIAAAARYLSTSEYQGEVALTGLGTPNQMREYVEDGTVEAFALWNPADLGYLSAYAANALATGEISGEAGDTFEAGELGSYEVDEEGTVLLGDPFVFDADNIGDFDFPGPT0016700_140DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016700-rhaS-K10559NANA
AK018_038281056hypothetical proteinATGACCGCCACCACGGAGGCAGCGGCGCCCCGCACGTACGCCGCCCACGCCCAGCCGCTCTGGCGCCGCGTCCTCGTGACGCGGGAGGCGTCCATCATCGGTCTGCTGCTCGCGGTGATCGCCGTCGCGATGGCGACGGTCCCGAACTTCGACAGCCCGCTCACGGTGACCTACCTGCTGCGCGAGGCCGCGCCGATCCTGCTCATCGCGCTGCCGATGACGCTGATCATCATCACCGCCGAGATCGACCTCTCGGTGGCCAGCGTGCTGGGCCTGGCCAGCGTCGTGACCGGGCTCGGGGTGCAGGCCGGCTGGCCGATGCCCGTGGCCATGGTGGTCGCGATCGGCGTCGGCGCCCTGGCCGGGGCGATCAACGGTGCGCTGGTGACCGTCGTCGGGCTGCCGTCCCTCGCGGTGACCATCGGGACGCTCGCGCTGTTCCGCGGCATCGCCGTGGGGCTCCTGGGGACGACCGCCATCAGCGACTTCCCCGAGACGTGGACCGACCTGGCCCGCACCAACATCCCCGGGACGCCCGTCCCGGTCGTCATCATCGCGTTCGCCGTGCTGGCGCTCGGGTTCGCGGTGCTGCTGCACTTCACCCCGTTCGGCCGGTCGCTCTACGCGATCGGGCTCAACAAGGAGGCCGCGGCCTTCTCCGGCATCGACGTCGGACGGTCGAAGTTCTGGCTCTTCGTGATGAGCGGGACGGTGGCCGGTTTCGCCGGCGTCTACTTCACCCTGCTGTACAACAACGCCCGCGGTGACAACGCCATCGGCATGGAGCTGCAGATCATCGCCGCCGTCCTGCTCGGCGGGGTGTCCATCTTCGGCGGCCGCGGCGCCCTGCACGGCGTCATCGCCGGTGTCCTGCTCATCGGGACGCTCGGCAGCGCACTGCGCCTGGCCGGCGTGACCAGCGACATCATCAACGTCCTGACCGGCCTGCTGCTCGTGCTGTCGGTCGTCTCCGCCAGTGCCCTGAGCTGGGTCCACCAGCGACGGGTCGCCGCCCTGGGCCGACGGCGCGGCCGATCGCCCGGGACCTCGTCCTGAMTATTEAAAPRTYAAHAQPLWRRVLVTREASIIGLLLAVIAVAMATVPNFDSPLTVTYLLREAAPILLIALPMTLIIITAEIDLSVASVLGLASVVTGLGVQAGWPMPVAMVVAIGVGALAGAINGALVTVVGLPSLAVTIGTLALFRGIAVGLLGTTAISDFPETWTDLARTNIPGTPVPVVIIAFAVLALGFAVLLHFTPFGRSLYAIGLNKEAAAFSGIDVGRSKFWLFVMSGTVAGFAGVYFTLLYNNARGDNAIGMELQIIAAVLLGGVSIFGGRGALHGVIAGVLLIGTLGSALRLAGVTSDIINVLTGLLLVLSVVSASALSWVHQRRVAALGRRRGRSPGTSSPGPT0016695_42DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016695-rhaQ-K10561NANA
AK018_038291029lsrC_2COG1172Autoinducer 2 import system permease protein LsrCATGACCACCACGGCCACCACCCCGACGCATCCCGTCCTGGCGGGCCTCGGCCGCCTAATCCGCGCCCGCGAGACCGGGATCGCGATCGCCATCGTCGCCGTCGTCACGCTCGCGACGCTGCTCAACCCGAGCTTCCTGTTCTCGAACGACGGCTTCCGGGATCTCCTGCTGACGCCGTCCTTGCTCATGGTCGTCGCGATCGGGCAGGCGATCGTCATCATCACGCGGAACGTCGACCTGTCGGTCGGCTCCGTCGTGGGCCTGACGGCGTACCTGACCGGCACCCTGTTCGTGCAGGTGCCCGGGCTCCCGATCGTCGTCGTGTTCGTCGCGGGCATCGCGCTCGGCGCCGTGCTCGGCCTGATCAACGGTGCCCTCGTCGCCTTCGCCAAGGTGCCCGCGCTGGTGATCACCCTCGGCACGATGTACATCTACCGCGGCATCAACGTCGCGTGGACCGGCTCCGACCGGATCAACGCCTCCGACATGCCGGCGTCCTTCCGGGGCCTCGGCACCGACACGGTGCTCGGGCTGCCCGTCCTCACCCTGCTCGCCCTGGTGGTCCTCGTGTACGCCGCCTGGCACCTGCGCAACCTGCGCAGCGGCCGTGAGCTCTACGCGATCGGGTCCGACCCGGCCGCCGCCCAGCTCTACGGGCTGCGCGTGACCCGTCGTGTCCTGGCGGCCTTCGTGGTCAGTGGCTCGGCGGCCGGGCTGGCGGGAGTCCTCTACGCGGCCCGGTACGGCACCGTCAGCTCGAACGCCGGGTTCGGCTGGGAGCTCGAGGCCATCGGTGCGGCCGTCATCGGCGGCGTGGCCATCTTCGGCGGTGTCGGCACCGTCTGGGGAGCCGCGCTCGGCGCCTTCCTGCTGCTGACCATCAACCGCGCCCTGCCGATCATCGGCGTCGACGACTTCTGGCAGCGCGCCGTCGTGGGCGTGCTCATCATCGGCGCCATCGTGCTCGACCGCATCGCCGCGCAGCGCCAGCACCGACGACTCGTCGCACAGAGGGAGGAGACCCGATGAMTTTATTPTHPVLAGLGRLIRARETGIAIAIVAVVTLATLLNPSFLFSNDGFRDLLLTPSLLMVVAIGQAIVIITRNVDLSVGSVVGLTAYLTGTLFVQVPGLPIVVVFVAGIALGAVLGLINGALVAFAKVPALVITLGTMYIYRGINVAWTGSDRINASDMPASFRGLGTDTVLGLPVLTLLALVVLVYAAWHLRNLRSGRELYAIGSDPAAAQLYGLRVTRRVLAAFVVSGSAAGLAGVLYAARYGTVSSNAGFGWELEAIGAAVIGGVAIFGGVGTVWGAALGAFLLLTINRALPIIGVDDFWQRAVVGVLIIGAIVLDRIAAQRQHRRLVAQREETRPGPT0016690_138DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016690-rhaP-K10560NANA
AK018_038301521rbsA_2COG1129Ribose import ATP-binding protein RbsAGTGCAGTCGGACACCACGTCGGCGACGCCAGCGTTGGAGCTGTCGCGCGTCGTCAAGTCGTTCGGTGCCGTGGTGGCGCTGCGATCCGGGAGCCTCCGGCTCCACGACGGATCGATCCATGCGCTCATCGGCGAGAACGGGGCCGGGAAGTCGACCCTGGTCAAGATCATCGCGGGGCTCTACCGGCGCGACGGCGGTGAGTTCCGGCTGCGCGGCGAAGACGTCGACTTCCACAGCACCGCCCAGTCGAAGGCCAACGGCATCGCCGTCATCTACCAGGAGCCCACCCTCTTCCCGGACCTGTCCGTGGTGGAGAACATCTTCATGGGGCGCCAGCCCACCGGCCGGCTCGGCCGGATCGACCGGGCGGCCATGCGCGCCGAGGCGACCGAGATCTTCGACCGCCTGGGCGTGTCGATCGATCCCGACCGTCCGACCGACGGGCTCTCGATCGCGGACCAGCAGATCATCGAGATCGCCAAGGCGATCTCCCTGGACGCCAGCGTCCTGGTGATGGACGAGCCGACGGCGGCGCTGAGCGGCGTCGAGGTCGACCGGCTGTTCTCGGTCGCCCGCAGCCTGCGTGACGAGGGCCGTGCGCTGGTCTTCATCTCGCACCGCTTCGACGAGGTCTTCGACCTGTGCGACACCGTCACGGTGATGCGCGACGGCGCCCACGTGGACACGATGCCGATCGCGGAGACGACCGTCGACGACATGGTGCGCATGATGGTCGGCCGCGACGTGACCGAGATGTTCCCCAAGCTCCCCGCCGAGATCGGCGAGGAGGTGCTCGCCGTCGACGGGCTCACCCAGCCCGGCGTGTTCCACGATGTCTCCTTCACCGTGCACGCCGGCGAGATCGTCGGCCTGGCCGGCCTCGTCGGCGCCGGTCGCAGCGAGGTCGCCCGCGCCGTCTTCGGCGTCGACCCCTACCGCGAGGGCACCGTGCACGTCGGCGGCGCACCTCTGCCCAAGGGGCGTCCACGGGCCGCGATGGCCCGCGGCCTGGCCCTCGTGCCCGAGGACCGCCGGCGCCAGGGACTGGTGCTCGACCTCCCGGTGACCCGCAACATCACCCTCGCGGTCCGCGACCGGCTCGCCCGGTTCGGGCTCATCTGGGGGAGCCGCGAGAACGAGTCCGCCCGGGTCTGGGCCAGCCGCCTCGAGGTCAAGACGGCGGCGCTCGACACCGAGTCCGGCACCCTCAGCGGCGGCAACCAGCAGAAGGTCGTCCTCGGCAAGTGGCTCGCCACCGACCCGAAGGTCCTCGTCGTCGACGAGCCCACCCGCGGCATCGACGTCGGGACCAAGGCCGAGGTCCACCGCCTGCTGTCGCAGCTCGCGCAGCAGGGCATCGCCATCCTGATGATCTCCTCCGAGCTGCCCGAGGTGCTCGGCATGGCCGACCGGGTCCTCGTCATGCGCGAGGGCCGGCTGACCGGCGAGTTCAAGCGTGAGCAGGCGACGCCCGAGGCCGTGATGCTCGCCGCCACCGCAGACGAGGAGCCCGCTCGATGAMQSDTTSATPALELSRVVKSFGAVVALRSGSLRLHDGSIHALIGENGAGKSTLVKIIAGLYRRDGGEFRLRGEDVDFHSTAQSKANGIAVIYQEPTLFPDLSVVENIFMGRQPTGRLGRIDRAAMRAEATEIFDRLGVSIDPDRPTDGLSIADQQIIEIAKAISLDASVLVMDEPTAALSGVEVDRLFSVARSLRDEGRALVFISHRFDEVFDLCDTVTVMRDGAHVDTMPIAETTVDDMVRMMVGRDVTEMFPKLPAEIGEEVLAVDGLTQPGVFHDVSFTVHAGEIVGLAGLVGAGRSEVARAVFGVDPYREGTVHVGGAPLPKGRPRAAMARGLALVPEDRRRQGLVLDLPVTRNITLAVRDRLARFGLIWGSRENESARVWASRLEVKTAALDTESGTLSGGNQQKVVLGKWLATDPKVLVVDEPTRGIDVGTKAEVHRLLSQLAQQGIAILMISSELPEVLGMADRVLVMREGRLTGEFKREQATPEAVMLAATADEEPARPGPT0016705_252DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RHAMNOSE_TRANSPORT,PGPT0016705-rhaT-K10562NANA
AK018_038311017rbsR_4COG1609Ribose operon repressorGTGGGCCAAGTGAGTGTCCGGGACGTCGCGCGGCACGCCGGCGTGTCCGTCGGGACGGTGTCCAACGCGCTGAACCGACCGGACAGCGTCTCCCCGGACGCGCTGGCACGCGTACGCGCCTCCATCGGCGAGCTCGGCTACGTGCGCAACGCGGCCGCGCGGAACCTCCGGTCCGGCGTCACGGCCAGCATCGGGCTGATCGTCGTCGACAGCCAGGTGCCGTTCTTCCAGGACGTCGGACGCGGTGCGGCCGACGAGGCGGCCGACCGCGGCATCGCCCTCCTCTACGGCAGCTCGGCCGAGGACCCCGCCCGCGAGCGCATGTACCTCGACCTGTTCGAGGAGCACCGCGTCCGCGGGCTGCTCATCGCTCCGGTCGGCGACGTGAGCCGACGCCTCCACCAGCTGCGGGAACGCGGGATCCGGACGGTCCTGGTCGACCGGTTCAGCGGGGAGGAGCCGGTCTCGTCGGTCTCGGTGGACAACGTGGCCGGCGGGCGCATGGCCGTCGAGCACCTGCTGGCGACCGGCCGGCGTCGGATCGCCTTCGTCGGCGGGCCGCTGACCCTGCGTCAGGTGACCGACCGGCTCGCCGGGGCGCGGGTCACGGCGGACGAGTCCGGCCTGCCCGTGTCGGTCGAGGTCGTCGCGACCGAGACCACGAGCGTCGCCGCCGGCGTGGGAGCCGGCGAGCGTCTCCTCGCGAGGGAGCCCGCCGACCGGCCCGACGCCGTCTTCGCGGCGAACGACCTGGTGGCGCTCGGGCTGCTGCAGGCCATCGTGGGCGACGGCCGTCTCCGGGTCCCCGAGGACGTCGCGATCATGGGGTTCGACGACATCTCGTTCGCCGCGGCCGCCGCCGTGCCGCTGTCCTCGATGCGGCAGCCCAGCACGACGATCGGCGCCACGGCGCTGCGGATCCTCCTCGAGGAGTCGGAGGACCCCGACACGATCCCGCGCCAGACCGTCTACCAGCCGGAGCTGGTCGTGCGACGCTCCACCGTCGCGAGCGCGTGAMGQVSVRDVARHAGVSVGTVSNALNRPDSVSPDALARVRASIGELGYVRNAAARNLRSGVTASIGLIVVDSQVPFFQDVGRGAADEAADRGIALLYGSSAEDPARERMYLDLFEEHRVRGLLIAPVGDVSRRLHQLRERGIRTVLVDRFSGEEPVSSVSVDNVAGGRMAVEHLLATGRRRIAFVGGPLTLRQVTDRLAGARVTADESGLPVSVEVVATETTSVAAGVGAGERLLAREPADRPDAVFAANDLVALGLLQAIVGDGRLRVPEDVAIMGFDDISFAAAAAVPLSSMRQPSTTIGATALRILLEESEDPDTIPRQTVYQPELVVRRSTVASAPGPT0017992_10531DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_038322322bglB_3COG1472Thermostable beta-glucosidase BATGGCTGTCGACACCACCGCGACGACGCGTCTCGCCGTCGCCGACGTCCCCCGGCTCGTCGCCGAGTTGACCCTGGAGGAGAAGGCCTCCCTCTGCTCCGGGCAGGACTTCTGGAACACCCAGGCGGTCGAGCGCCTCGGGATCCCGGCCGTGATGGTCACGGACGGACCGCACGGGCTGCGCAAGCAGGCCGGCGCCGCCGACCACGTCGGGCTGAACGACTCGGTCCCCGCCACCTGCTTCCCGCCCGCCGCCGGGCTCGCCTCCACCTGGGACCGCTCCGTGGTCCGCCGCGTGGGCGAGGCGCTCGGCGTCGAGACCCGCGCGAACGACGTCGGCGTGCTGCTCGGGCCCGGCGTCAACATGAAGCGCAGCCCCCTGTGCGGCCGCAACTTCGAGTACTTCAGCGAGGACCCGCACCTCGCCGGCGAGCTCGCCGCCGACCTCGTGGACGGCATCCAGTCCCAGGGCGTCGGCACCTCGCTCAAGCACTTCGCGGCCAACAACCAGGAGACCGACCGCATGCGCGTCTCCGCCGAGGTCGACGAGCGCACCCTGCGCGAGATCTACCTGCCCGCGTTCGAGACCGTCGTCACCCGCTCCCAGCCCTGGACGGTGATGTGCGCCTACAACAAGATCAACGGCGTCTACGCCTCCCAGGACCCCTGGCTGCTCACCGAGGTCCTGCGCGACGAGTGGGGCTTCGAGGGTCTCGTCGTCTCCGACTGGGGCGCGGTCGACGACCGCGTCGAGGGCGTCGCCGCCGGTCTCGACCTCGAGATGCCGTCCTCCGCCGGGATCAACGACGCCCGCGTCGTCGCCGCCGTGCGTGCCGGCGAGCTCGACGAGGCCGTCGTGGACCAGGCCGCCACCCGGGTCCTGACGATGGTCGCCCGTGCGCTGGAGGCCGCGGCCGACCCGGGCACGTTCGACGCCGCCACCCACCACGCCCTCGCGCACGAGGTCGCCACCCGCACGGCCGTGCTGCTCAAGAACGACGGCGACGTGCTGCCGCTCGACCCGTCCGCGGCCGCCGACCTCGTCGTCGTCGGCGAGATGGCGCGCACCCCGCGCTACCAGGGCGCCGGGTCCTCGCAGGTCAACCCCACCCGCCTGGTCAGCGCCCTCGACGCGTTCGCCGAGCGCGGCCTCGACGTGCCGTTCCACCCCGGCTACGTGCTGGCCGAGGCCGCCGGGAAGCCGGGGCAGGACCGCACCGACGCCGAGCTCCGGGCCGAGGCCGTCGCGGCCGCGGACGGGCGCACCGCCGTCGTCTTCGCCGGGCTGCCGGGGGTCGACGAGTCCGAGGGCTACGACCGCGAGCACATGGACCTCCCGGCCGCCCACCTCGCCCTGGTCCGCGAGGTCGCCGCCGTCGCCGCGCGCACGGTCGTCGTGCTCTCCAACGGCTCGGCCGTGACGGTCTCCGGCTGGGAGGACGCCGCCGACGCGATCCTGGAGACGTGGCTCGGCGGTCAGGCCTCCGGGTCGGCGACCGTCGCGCTGCTGCTCGGCGAGGCCTCGCCGTCCGGCCGCCTGGCCGAGTCGATCCCCGTCGCGCTCACCGACGTGCCCGCCCAGCTCAACTTCCCGGGCGAGAACGGTGCCGTCCGGTACGGCGAGGGGCTGTTCATCGGCTACCGCGGGCTCGACGCCACCGGGGCCGACGTCTCCTACCCGTTCGGCCACGGCCTGACCTACACCTCGTTCGGGTACGGCGACCTGACCGTCGACGCCGACGAGGTGACCCCGGCGACGGCCCCGGACGACGTCGTCGCGCGCGTCGCGTTCAGCGTCACCAACACCGGGTCCCGGCAGGGCGTCGCCGTGCCGCAGCTGTACGTGGGCCGTCCCGGTTCCGCCGTCGCGCGGGCACCGCGCGAGCTGCGGGGCTTCCGGACCGTCGCGCTGCAGCCGGGCGAGACGCAGCGGGTCGAGCTGGCGCTGACCCGCCGCGACCTGTCCCACTGGGACACCGCCACCCACGGCTGGGTCGTCGAGCCCGGCGCGGTCGAGGTCGCGGTCGGCGCCTCGTCCCGCGACCTGCCGCTGACCGCCGCGGTCGACCTCGTCGCGCCGGCGGCGGAGGTGCCGCTGCGCGACGACTCCACCATCGACGAGTGGCGTCGTCGGCCGGAGGCGTGGGCGGCCCTGTCGGCGGCCATGGGCGACGCCGCGCAGATGTTCGACACCGAGTCCGACCCCGCGATGGCAGCCATGCTCTCCGCGATCCCCGCGGTCAAGGTCACCACGATGGGCTTCGCCGAGGGGCTCACCCCCGAGAAGTTCTCGGAGCTGCTCGCACAGCACGGCTGGGCCTGAMAVDTTATTRLAVADVPRLVAELTLEEKASLCSGQDFWNTQAVERLGIPAVMVTDGPHGLRKQAGAADHVGLNDSVPATCFPPAAGLASTWDRSVVRRVGEALGVETRANDVGVLLGPGVNMKRSPLCGRNFEYFSEDPHLAGELAADLVDGIQSQGVGTSLKHFAANNQETDRMRVSAEVDERTLREIYLPAFETVVTRSQPWTVMCAYNKINGVYASQDPWLLTEVLRDEWGFEGLVVSDWGAVDDRVEGVAAGLDLEMPSSAGINDARVVAAVRAGELDEAVVDQAATRVLTMVARALEAAADPGTFDAATHHALAHEVATRTAVLLKNDGDVLPLDPSAAADLVVVGEMARTPRYQGAGSSQVNPTRLVSALDAFAERGLDVPFHPGYVLAEAAGKPGQDRTDAELRAEAVAAADGRTAVVFAGLPGVDESEGYDREHMDLPAAHLALVREVAAVAARTVVVLSNGSAVTVSGWEDAADAILETWLGGQASGSATVALLLGEASPSGRLAESIPVALTDVPAQLNFPGENGAVRYGEGLFIGYRGLDATGADVSYPFGHGLTYTSFGYGDLTVDADEVTPATAPDDVVARVAFSVTNTGSRQGVAVPQLYVGRPGSAVARAPRELRGFRTVALQPGETQRVELALTRRDLSHWDTATHGWVVEPGAVEVAVGASSRDLPLTAAVDLVAPAAEVPLRDDSTIDEWRRRPEAWAALSAAMGDAAQMFDTESDPAMAAMLSAIPAVKVTTMGFAEGLTPEKFSELLAQHGWAPGPT0019110_3078DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_03833837ybjI_2COG05615-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YbjIATGCCTCTCCCCCCGGTTCCCCGCCCGGCCGACGTGCGCCTCGTCGTCACCGACATGGACGGCACGCTGCTCGACCCCGACGGCCGGGTGCCCGACGGCCTGTGGCCGCTGCTGGCCCGGATGCACGACGCCGGCATCACCCTCGTGCCGGCCTCGGGACGACAGCACGCCACCATCGCGGCCGCGTTCCCGCCCGAGCGCACCCCCGGGCACGAGGAGCTGGTGATCATCGCGGAGAACGGCACCTACGTGACCCGCGGCGGGGCGGCCGTCGCGACCGACGACCTGGCCCCCGAGGCGGTCGGCGCGATCGTCCGTGCCGTGCGCGGCATCGACCCCGTCCGCGGCGGCGCCGTCGTCGCCGGACGCCGCTCGGCCTACGTCGAGCGGGCCGACCCGGGGTTCGTCGACCACGTGCGCACCTACTACACCGACCTCACGGTGGTCGACGACCTCCTCGCGATCGACGACCAGGTGCTCAAGGTGGCGGTGTACGACGACGTCGACTCCGCGACCGGCACCTACCCCTCGCTGGAGCACCTCGCCGGCACGCTGCAGGTGGTCGTGTCGAGCCCGCACTGGGTCGACGTGATGAACCCGGGCGTGAACAAGGGGGTCGCGCTGCGTCGGCTGCAGGCGGCGCTCGGGGTCACCCCGGCGCAGACGGTGGCGTTCGGGGACTACCTCAACGACCTCGAGATGCTCGACGCCGCCGACTGGTCGTACGCGATGGCCGGCGCCCACCCGGACGTGCTGGCCCGCGCCGCGCACACGGCCCCGGGCAACGCCGACCACGGCGTCGTCCAGGTACTCGCGGCGATGCTCGACGAGCGCTGAMPLPPVPRPADVRLVVTDMDGTLLDPDGRVPDGLWPLLARMHDAGITLVPASGRQHATIAAAFPPERTPGHEELVIIAENGTYVTRGGAAVATDDLAPEAVGAIVRAVRGIDPVRGGAVVAGRRSAYVERADPGFVDHVRTYYTDLTVVDDLLAIDDQVLKVAVYDDVDSATGTYPSLEHLAGTLQVVVSSPHWVDVMNPGVNKGVALRRLQAALGVTPAQTVAFGDYLNDLEMLDAADWSYAMAGAHPDVLARAAHTAPGNADHGVVQVLAAMLDERNANANANANA
AK018_038343840hypothetical proteinATGACGCCTGCTGCTCGTGAGATCCGCCGTTCCGTCCGCCGCGCGACGGCCCGGCTCGGGGCCCTCGCCGTCGCCGCGGGACTCGTGGGGGCCGCGGCGGTCGCCCCGGCTCAGGCCGTCGTCGAGCGGTACGACCCCTTCGCGGTGAACCAGGGCTTCTCCGCCGTGGCCACCGGCGACGCCCGGCTGAACAACGGCGAGCTCGAGGGGTCGGTCGCCGCGTTCGGCAGCCTGTCCACGACCAGCCAGAACTACCCGTTCATCCACCAGGCCGCGGGCAGCCCGGACTACACCGTGCCGACCGTCGACGGGGACCCGGTGCGGGCGCTCGCGGACCGCTTCACCGGCGCCGGGGCGTTCACGGTGACCAACCGCGACGACTCGGGAACGATCGCCCCGGACTCGCCCGAGGCCACCGCGACGGCGAAGCTCGTCGACCTCGCGGGCGTCTCGGCGGCCGAGCGGGGTTCGGGGTACACGCGCCTGACCAACGCCGCCGGGGGTACCTTCGACCTGGAGCGCCTGCCGTACGACGGGGCGACCTGGCAGGACGACGTGGCGACGGAGCGCGCGAGCGTCGCCGACTACTTCGACGACCTCGACGCCCAGGTCGCGCAGACCAACCAGTGCCTGGCGGACATGTACCTCGACCCGGAGCTGGGCAACGAGGTCACCGTCACCGGCGACGCGAACCTGACGTACGTCTCCGGCTTCTCGACCGCCGTCCCCAACTGGCTCGACTACGAGGCCGTGGCCGGCACGGTCATCAAGCTCGACGACGCCGGGGGGTACACGCCGACCGCGCAGGCGCCGCTGGTCGTGCGCGTCTCGGACCCGACGACGACGGTCGGGCCGCTGAGCTTCGAGGGCTGGAACGACCAGGACCTGTCGTCCTTCATCATGCTCGACATGTCCGAGGCCTCCGGTCCGGTGACCGTCGACGGTCTCGAGTACGGCGCCGTCTGGGCGCCCGGGGTGGACGTCGTCTACACGTCCTCGCGCACGACGAACGGCCAGTGGTTCACCGACGACTTCACCACCGGCGGTGAGAACGGTGGTGGCGGCGGCGAGCTGCACCACCACACGTTCCTCGGCGAGCTCCTGTGCGACGTCGACGACACCCCGGAGATCACCTCGCAGGCCGTGGTCGCGGACTCCGCGGACGGACTGCTGCCGGCCGACGGCGGCACGGTCGTGGACACGGTCTCCTACACCGGGCTGGAGCCGGAGACCGAGTACACCGTCACCGCGACCGTCATGGCCGCCGACGGCACCGACACCGGGATCACCGCGACGACGACGTTCACCCCCACGTCGTCCAGCGGCACCGTGGACGTCGCGATTCCGGTGACGCCGGAGCAGGCGGCGCTGTACGCCGGGCAGGACCTCGTCATCTTCCAGTCCGTCGCTCTGGACGGCACCGAGGTGGCCGGCCACGAGGACCTGCAGGACCCGGACCAGACGTTCGGGGTCGCCCCGATCCCGGCCACCGGTGGTTTCGACGTCGTCAAGGCAATCGACGGCAACGGGGCACCACTCGTCGACCCGACCACGACGTTCACCGTCACCTGGGAGGTCGTCGACGGCCCCTCCACCGGGCGGTCCGGCACGCTCGAGGTGCAGGCCGACGGCACCGTCGTCGCCGGACCGGACGACCTGCTCGAGGGCGACGTCGTGGAGTTCTCGGAGCTGACCGCCCCGGACGTCGAGAACGCCGACTTCTCCGACGTGACCATCGACCCGGAGTCGATCACCATCGACCCGGCGTCCCCGACGACGCCGGTCATCACGGTGACGAACACCTACGAGGCTGCCGACGTGCCCTTCTCGATCCACAAGGAGTTCGCCGAGGGCTCCGTGGTCGACGCCTCCGACTTCGAGGGTGAGTTCTTCACCGTGGAATGGGAGGTCACCGCCGGTCCGGACGCGGGTGAGTCCGGCACGCTGACCGTGCCCGCGGACGGCACGGTGGTGGACGGACCGACGCTCTCGCACGGGGACTCGGTGACCTTCTCCGAGCCCGACCTGCCGACGGTCGACGGCGTCGTGTGGGGCACGCCGACCGTCGACCCCGACCCGCTGGTGCTGTCCGCGGCAGGCGCCGTCGACGTCACGGTCACCAACGAGGCCGTCCCCGAGCAGGTCGAGGGCGGGTCCATCGAGGTCACCAAGGAGCTGACCGGTGACGGGGCCGCGGTCGTCTACCCGGACGTCGACTGCGTCCCCGACGACAACCAGGGCGGCGGCAACGACGGCGAGTGCGACGACCCGCCCACGTACGAGATCACCTGGACGGTCACCGACGGGCCCTCGGCCGGTCGCGCCGGCACGGTCACCGTGCCCGGTGACGGCAGCCCGGTGGAGATCCCTGGCCCGGGCGAGGACCCGTTCGTCGCGGGCGACGTCGTCGAGCTCGGCGAGATCGTCGGCCCGGACACCGCTGGCGCAGAGCTCACCGGCGTCACCGTCGACCCGAGCACCGTGGTGATCGTGCCCGGCCCGGGGGAGACCGTGACGGTGGACGTCACCAACACCTACGACGTCGCCGACGCCACCTTCCGTGCGCACAAGGTCGTCGAGGGACCGGGGGCGGACCTGGTCCCCGCCGACGCGACCTTCCCCCTGCACTTCGAGGTCGTCGAGGGCCCGTCGGCCGGCGCGAGCGGCACGGTCGAGCTCCCCGGCGACGGCACCGTCGTGGACGGGCCGACCCTGCGGCACGGCGACGTCGTCGAGGTCCGGGAGGGGTCGCGGCCGGTCGTCGACGGGGTGGTCTGGGGAGAGGTGACGGTCGACCCGACCGAGCTCACCCTGGACGCCGCCGCCGAGGTCGTCGACGTCACGGTCACCAACACCGCCGACCTCGTGCCGACCCTGTCCTCCGAGGTCTTCGTGACCGACCCGGCGCCGGGGGCCCGCCTCGCGTACTCCGGCGGCTCCGTCGTCGACACCGTCCGCTACACGGGCCTGGAGCCCGGCGTCGAGCACACGGTGGCGGGACTGCTCGTCACCCCCGACGGCACGTCCACGGGGATCACGGCGGGTCCGGTGACCTTCGTGCCGGACGCGGCGGACGGCACGGTCGACATCACCTTCACGCTCACCCCGCAGCAGGTCGACGAGTACGCGGACCAGCAGCTCGTCGCGCTGCAGGCCGTGCGGCGCGACGGCGCGGTCGTCGCGGTGCACGCCGACCCGACCGACGCGGCGCAGACCTTCACTATCGCCCCGGCGCCGACCCTCTCCTCGCAGGTGGCCGTGGTCGGCGCGGAGTCCGCGACCCTCGGGCCCGACGGCGGCACGGTGGTCGACACCGTCGGCTACACCGGGCTCACCCCCGGGCTCGAGTACACCGTGGCCGGAGCGCTCGTCACCGAGGACCTGGTCTCGACCGGCGTCGTGGGTGCAACGGCCTTCGTGCCCGACACCCCGGACGGGACCGTCGAGGTCGTCTTCGAGGTCACGGCGGCGCAGGCCGCCGCGCTGGCCGGGAGCCCCGTGGTCGCGTTCCAGGGCGTGTTCCTCGACGGTGAGCTCGTCGTGGCCCACACGGACCCGGACGACGCCGCACAGACCCTCGAGGTCGCGAGCCCGACGCCGACGCCGAGCCCGACCCCCACGCCCGGCCCGACCATTACTCCCCAGCCGCCCAGCCCGCAGCCTTTCCCCCTGCCCAGCCCCGACCCGACCACCCCGGCACCGGTACCGACCGCGCCCGACGGCGGCGGCGACCTCCCGGTCACCGGGCCCGGGGCGGTGGGCGCCCTCCTGGCGGTCGCGGTGCTCAGCCTGCTGGCCGGGCTGGGCCTGCTGCGGTGGCGCCGTCGGACCCTGGGCTGAMTPAAREIRRSVRRATARLGALAVAAGLVGAAAVAPAQAVVERYDPFAVNQGFSAVATGDARLNNGELEGSVAAFGSLSTTSQNYPFIHQAAGSPDYTVPTVDGDPVRALADRFTGAGAFTVTNRDDSGTIAPDSPEATATAKLVDLAGVSAAERGSGYTRLTNAAGGTFDLERLPYDGATWQDDVATERASVADYFDDLDAQVAQTNQCLADMYLDPELGNEVTVTGDANLTYVSGFSTAVPNWLDYEAVAGTVIKLDDAGGYTPTAQAPLVVRVSDPTTTVGPLSFEGWNDQDLSSFIMLDMSEASGPVTVDGLEYGAVWAPGVDVVYTSSRTTNGQWFTDDFTTGGENGGGGGELHHHTFLGELLCDVDDTPEITSQAVVADSADGLLPADGGTVVDTVSYTGLEPETEYTVTATVMAADGTDTGITATTTFTPTSSSGTVDVAIPVTPEQAALYAGQDLVIFQSVALDGTEVAGHEDLQDPDQTFGVAPIPATGGFDVVKAIDGNGAPLVDPTTTFTVTWEVVDGPSTGRSGTLEVQADGTVVAGPDDLLEGDVVEFSELTAPDVENADFSDVTIDPESITIDPASPTTPVITVTNTYEAADVPFSIHKEFAEGSVVDASDFEGEFFTVEWEVTAGPDAGESGTLTVPADGTVVDGPTLSHGDSVTFSEPDLPTVDGVVWGTPTVDPDPLVLSAAGAVDVTVTNEAVPEQVEGGSIEVTKELTGDGAAVVYPDVDCVPDDNQGGGNDGECDDPPTYEITWTVTDGPSAGRAGTVTVPGDGSPVEIPGPGEDPFVAGDVVELGEIVGPDTAGAELTGVTVDPSTVVIVPGPGETVTVDVTNTYDVADATFRAHKVVEGPGADLVPADATFPLHFEVVEGPSAGASGTVELPGDGTVVDGPTLRHGDVVEVREGSRPVVDGVVWGEVTVDPTELTLDAAAEVVDVTVTNTADLVPTLSSEVFVTDPAPGARLAYSGGSVVDTVRYTGLEPGVEHTVAGLLVTPDGTSTGITAGPVTFVPDAADGTVDITFTLTPQQVDEYADQQLVALQAVRRDGAVVAVHADPTDAAQTFTIAPAPTLSSQVAVVGAESATLGPDGGTVVDTVGYTGLTPGLEYTVAGALVTEDLVSTGVVGATAFVPDTPDGTVEVVFEVTAAQAAALAGSPVVAFQGVFLDGELVVAHTDPDDAAQTLEVASPTPTPSPTPTPGPTITPQPPSPQPFPLPSPDPTTPAPVPTAPDGGGDLPVTGPGAVGALLAVAVLSLLAGLGLLRWRRRTLGNANANANANA
AK018_03835654hypothetical proteinATGACCGAGCCAGCGTTGCGGATCGTCACGCACCACCACGCCTGCCTCGAGATCGTGGCCGACGGCGGCCGGGTCCTGATCGACCCGGGGGTGTTCGGACCCGCGCCCGACCTCGACCGGGTGGACGCCGTGCTGGTCACGCACGAGCACCCCGACCACGCCGATCCCGAGGTCCTGACCGAGGCGCTGGGGCGCGGGATCCCGGTCCTCGGACCGGCCTCGGTGCGCGCCGTGCTCGACGCGGAGACCGCCGCGCGGTGGCAGGTCCTCTCCCCCGGCGACGAGGTGTCCGTCGCGGGGCTCGACGTCGTCGTCGGAGGCGGGGAGCACGCCGCGATGCACCCCGAGACGGCCGGGCCGGAGAACCTCGCCTACTTCGTCGCCGGGACGGTCCTCGTCACCGGCGACCGGCACACACCCTGGGACGGCCCGGTCCCCGTGCTGGTCACCCCGGTCGACGCCCCGTGGCTGCGGGCCGTGGACCTCGTCCGGTACGTCCGCGAGATCGCGCCGCAGACCGTCGTCGGCGTGCACGACGGGCTGCTCAACGACACGGGCCTGTCGATCGCCGACCGCGTGCTGACCTCGCTGCAGCGCGAGGGCGTGACCCGCACGGTGCGGCCCGCCGTCGGCGAGGAGATCACGGTGCCCTGAMTEPALRIVTHHHACLEIVADGGRVLIDPGVFGPAPDLDRVDAVLVTHEHPDHADPEVLTEALGRGIPVLGPASVRAVLDAETAARWQVLSPGDEVSVAGLDVVVGGGEHAAMHPETAGPENLAYFVAGTVLVTGDRHTPWDGPVPVLVTPVDAPWLRAVDLVRYVREIAPQTVVGVHDGLLNDTGLSIADRVLTSLQREGVTRTVRPAVGEEITVPNANANANANA
AK018_03836372hypothetical proteinATGCCCGCGCCTGCCACCGCCGTCCCGCCGCTGACCGGCCTCGGCCGCCTCTTCGCCGTCGTCGCCTGGGTCGAGGCCTTCACCTGGGCCGGGCTGCTCGTGGGCATGTACCTCGAGCACGTCGCGGGCGTCACCGACCTCGGCGTCTGGCTGTTCGGACGGCTGCACGGCGGGGCGTTCGTCGCGTACGGCGTCGTCGCGCTGGTCGTCGCCGTCCGGTACCGGTGGGGGCTGTGGCGCACCCTCGTGGCGCTCGCCGCCGCGGTCCCGCCGCTGACGACGATCCTCGCCGAGGTGTGGCTGCGCCGTACCGGCCACCTGGTCGCCCCGGAGGCGCGCGTCGAGTCGCGTCGGGCGGTCAGGGCACCGTGAMPAPATAVPPLTGLGRLFAVVAWVEAFTWAGLLVGMYLEHVAGVTDLGVWLFGRLHGGAFVAYGVVALVVAVRYRWGLWRTLVALAAAVPPLTTILAEVWLRRTGHLVAPEARVESRRAVRAPNANANANANA
AK018_03837759hypothetical proteinATGGGCGTGCGGAGGGCCGGACGACGGCGGTGGCTGCGGTGGACGGCGGCGGGTCTCGGCGCGCTCGCGCTGGTGACAGGTGTGCTGGCGGTGCTGGTGTGGAACGGCGTGGTCTGGCCGAACCGGTTCCTGGTCGGCGGGTACGAGGTGCGCGGCGTCGACGTCTCGAGCTACCAGGGCGAGATCGACTGGCCGGTGCTGGCCGCCCAGGACCTCGACTTCGCGTTCATCAAGGCCACCGAGGGCTCCAGCCACGTCGACGAGCGGTTCGCGGCCAACTGGGACGGCGCACGGGGCACGGACCTGGTGGTCGGCGCCTACCACTTCCTCAGCTTCGAGAGCCCCGGGGAGCGCCAGGCGGCGCACGTCGTCTCCCAGGTGCCGGCCGACGCCGGCACGCTGCCGCCCGTGGTGGACGTGGAGTACTACGGCGAGTTCATCGCCGACCCGCCGAGCAGGGACGAGCTGCGCGGCATCCTCGACCCCCTGCTGGCCGACCTCGAGGCGCACTACGGCGCGCCGCCGATCATCTACACGACCCAGGAGCTGCGCAGCTCCTACCTCGGCGACGACTACGACCGGTACCCGCTGTGGATCCGGTCGGTCGCGCTCACCCCGGACCTGCCGCGCGAGAGCTGGGAGTTCTGGCAGTACTCCGACCGGGACCACCTGGACGGGTACGTCGGCGAGGAGGAGCACATCGACATGAACGTCTTCGACGGCTCGCTCGGCGACCTGGACGCCCTCACGCTGCCCTGAMGVRRAGRRRWLRWTAAGLGALALVTGVLAVLVWNGVVWPNRFLVGGYEVRGVDVSSYQGEIDWPVLAAQDLDFAFIKATEGSSHVDERFAANWDGARGTDLVVGAYHFLSFESPGERQAAHVVSQVPADAGTLPPVVDVEYYGEFIADPPSRDELRGILDPLLADLEAHYGAPPIIYTTQELRSSYLGDDYDRYPLWIRSVALTPDLPRESWEFWQYSDRDHLDGYVGEEEHIDMNVFDGSLGDLDALTLPPGPT0019160_1334DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-LYSOZYME,PGPT0019160-acm-K07273NANA
AK018_038382067hypothetical proteinATGGCCGACCGACTCCGTTCCGCCACGTCCCCCTACCTGAGGCAGCACGCCGACAACCCGGTCGACTGGTGGCCGTGGAGCGAGGCCGCCTTCGCCGAGGCCCGCCGTCGTGACGTGCCCGTCCTGCTCTCCGTCGGCTACGCCGCCTGCCACTGGTGCCACGTCATGGCGCACGAGTCCTTCGAGGACGACGAGGTCGCGCGGCAGATCAACGAGCACTTCGTGCCGATCAAGGTCGACCGCGAGGAGCGGCCCGACGTCGACGCCGTCTACATGGCCGCCACCACCGCGATGACCGGGCAGGGCGGCTGGCCGATGACGGCGTTCCTCACGCCGGACGCCGAGGCCTTCCACTGCGGCACCTACTTCCCGCGCGAGCAGTTCCTCGAGGTGCTCGGCGCCGTCCGCGACGCCTGGGCCGACGCCCGCGACGCCGTCACCCAGCGCGCCGGCGCCGTCACCGAGGCGATCGCACGGACCACGTCGGGCCTGCCGGCCGCCCCGCTGGACGACGCCGAGCTCGCCGCCGCCGTGCAGACCCTGCGCGGCGAGGCGGACACCACGCACGGCGGGTTCGGTGGTGCCCCCAAGTTCCCGCCGTCGATGACCCTCGACCACCTGCTGCGCCACCATGCCCGCACCGGCGACCCCGCGGCGCTGGAGATCGTCGAGCGCACCTGCACCGCGATGGCCCGCGGCGGCATCTACGACCAGCTCGGCGGCGGGTTCGCCCGGTATGCCGTCGACGCCGCCTGGGTCGTGCCGCACTTCGAGAAGATGCTGGCCGACAACGCCCAGCTCCTCGGCGTCTACGCCCGCTGGTGGCGCGCCACCGGCTCTCCGCTCGCCGAGCGCGTCGCCCAGGAGACCGCGAGCTTCATCCTGCGCGACCTGGCGACCTCCACGCGCGGCTTCGCCTCGTCCCTCGACGCGGACACGGTGGTCGACGGTCGCGGCGTCGAGGGCCTCACCTACGTCTGGACGCCCGCCCAGCTGCGCGAGGTCCTCGGGGACGACGACGGCGACCGCGCCGCGCAGATCCTCGGCGTCACCGAGCAGGGCACCTTCGAGCACGGCACCTCCACGCTGCAGATGCCGACCGACCCCGACCCGGAGTGGTGGGCCGACGCCCGGGCCCGGCTGCGCATCGCCCGCCTGGAGCGCCCGCAGCCGCACCGGGACGACAAGGTCGTCACCGCCTGGAACGGCATCGCGATCGCGACCCTCGCCGACGCCGGCGCCATGATGGACCAGCCGCTGTGGGTGGCCGCCGCCCGCCACTGCGCCTCGTTCCTGCTCGCCGAGCACGTCGTCGAGGGGCGGCTGCGGCGCGCGTCCCGCGGCGGCCTCGTCGGGGACGCGCTGGCCGTCGCCGCCGACCACGGCGACCTGGCGCGCGGACTGCTGTGCCTGCACCAGGCCACCGGGGAGGCGCAGTGGCTCGACTCCGCGGTGCAGCTGTTGGACACCGCGATCGAGCTGTTCGCGGGGGAGGACGGCAGCTTCTACGACGTCGGGTCCGACGCCGAGCGCCTCGTCGTGCGCCCCCGCGACCCCAGCGACGGCCCCGAGCCGTCGGGCCAGTCGGCGATGGCCGAGGCGCTGTTCACCGCCGCCGCCCTCACCGGGTCCGAGCGGTACCGCCGGCTCGCCGAGGACGCCGTGCGGGCCTCCGGCACCCTCGCCCGGCGCGCTCCCCGGTTCGCCGGCGGGGTCCTCGCCGCCGCCGAGGCGCTCGCGGACGGGCCGCGGCAGGTCGCCGTGGTCGGGGCGCGGGCCGGCGGCGACGGCGGTGCGCTGCGGGACGCGAGCCGTGCCGGGATCGGGGTACACCACGTGGACGACGACGTCGGGTCCGGCCGGGCGGCCGAGCTGCTGCACGCCGCACGTCGTGCGCACACCGCGGGCGCCGTCGTCGTCCCCGGAATGCCGGACATGTCCGGGGTGCCGCTGCTCGCCGACCGGCCGCTCGTGGACGGCGGACCCGCCGCCTACGTGTGCCGCGGGTTCGTGTGCGACCGGCCGGTGACCACCCCCGAGGAGCTCACCGCGGTCCTCGAGCGCTGAMADRLRSATSPYLRQHADNPVDWWPWSEAAFAEARRRDVPVLLSVGYAACHWCHVMAHESFEDDEVARQINEHFVPIKVDREERPDVDAVYMAATTAMTGQGGWPMTAFLTPDAEAFHCGTYFPREQFLEVLGAVRDAWADARDAVTQRAGAVTEAIARTTSGLPAAPLDDAELAAAVQTLRGEADTTHGGFGGAPKFPPSMTLDHLLRHHARTGDPAALEIVERTCTAMARGGIYDQLGGGFARYAVDAAWVVPHFEKMLADNAQLLGVYARWWRATGSPLAERVAQETASFILRDLATSTRGFASSLDADTVVDGRGVEGLTYVWTPAQLREVLGDDDGDRAAQILGVTEQGTFEHGTSTLQMPTDPDPEWWADARARLRIARLERPQPHRDDKVVTAWNGIAIATLADAGAMMDQPLWVAAARHCASFLLAEHVVEGRLRRASRGGLVGDALAVAADHGDLARGLLCLHQATGEAQWLDSAVQLLDTAIELFAGEDGSFYDVGSDAERLVVRPRDPSDGPEPSGQSAMAEALFTAAALTGSERYRRLAEDAVRASGTLARRAPRFAGGVLAAAEALADGPRQVAVVGARAGGDGGALRDASRAGIGVHHVDDDVGSGRAAELLHAARRAHTAGAVVVPGMPDMSGVPLLADRPLVDGGPAAYVCRGFVCDRPVTTPEELTAVLERNANANANANA
AK018_038391146hypothetical proteinATGGCATGGCACATCGTCGAGGCCCCGCACGCGGACGGCCCCGACCACCCGGACGCGTGGGCCTACCGCGGGATCGCGGAGGTCGAGCGCGCGGTCTCCCTCGCCGACCGCGGCCTCGCCGACGGCGCCCCCACGGCGCGGGAGATCGCGGTCGCCATGGCCGACCAGACCTACCGCCGCCGCCACCGCCTCGTCGCGGTGGACGACGGCGCCACACCGGCCGACGGCGGCACCCCGGCGGGTGGGCCGCGCGTCCTGGGCCACGGGGTCGTCGGCTGCGACCTGCTCGACAACGTCGACGTCGCCGATGTGCACGTCGCCGTCCACCCGGACCACCGGGGCCGCGGGATCGGTGCGGCGCTGGCGGACGCCGTCGTCGACCGCTCCCGCGCCGAGGGGCGCACCCGTCTCCTGGCCGAGGTCGAGTTCGCCGCCGAACCGGCCGCCGACGCCCCGGACGCCGTCGTCGCCCCCACCGGCAACGGCCGGATCTCGGCCGGCCTGCCCGGGCTCCGGCTCGCCCGCGCGGCCGGCCTCGACCTGAAGATGATCGCCCGCCGCTCCGTCCTCGACCTGCCCGCCGACGCCGACGTCGTCGCCCGCCTCGAGCAGGAGGCGCGCGCCGCCGCAGGGTCGGACTACCGCCTGCACGTGTGGGAGGACGACATCCCCGACCGGTGGCTCGACGGGTACGCCGCCCTCGTCGAGCGGCTGACCATCGACGAGCCCAACCCGGGTCTCGACCTCGAGCCCGAGCACTGGGACGCCGACCGGCTGCGCCACGAGATCGAGCAGGCCCGCGCCGTGGGGAGCCGGTTCGTCACCACCTGCGCCGAGCACGAGCCCACCGGCGAGCTCGTCGCGGCGACGCTGCTCGACCACGACCCGCAGCACCCGGCCTACTCCGACCAGCAGACCACCGTCGTCATGCCCGAGCACCGGGGCCACCGGCTCGGGATGCTGGTCAAGTGCGCCAACCTGCGCGAGCACGCCCGGCGGTGGCCCGCCGTCGAGCGCCTCTGGACGTGGAACAACGAGGACAACCCGCACATGCTCGCGATCAACGTCGCGATGGGGTTCCGGCCGGCGGGCGGCTCGGCGGTCCTCGACGCCGCCCTCGCCGACGTGCGCCCGCTGTCCCGTTGAMAWHIVEAPHADGPDHPDAWAYRGIAEVERAVSLADRGLADGAPTAREIAVAMADQTYRRRHRLVAVDDGATPADGGTPAGGPRVLGHGVVGCDLLDNVDVADVHVAVHPDHRGRGIGAALADAVVDRSRAEGRTRLLAEVEFAAEPAADAPDAVVAPTGNGRISAGLPGLRLARAAGLDLKMIARRSVLDLPADADVVARLEQEARAAAGSDYRLHVWEDDIPDRWLDGYAALVERLTIDEPNPGLDLEPEHWDADRLRHEIEQARAVGSRFVTTCAEHEPTGELVAATLLDHDPQHPAYSDQQTTVVMPEHRGHRLGMLVKCANLREHARRWPAVERLWTWNNEDNPHMLAINVAMGFRPAGGSAVLDAALADVRPLSRNANANANANA
AK018_03840570COG1670AcetyltransferaseGTGACCGAACCGACCGCTCCCCTGCGCGCCGTCCTGCCTGTGCGGACGAGCCGCCTGGTGCTGCGCACCTATCGGGAGGACGACGTCGAGCCGATGCTCGCGTACTACAGCGACCCGGAGGTCGCCCGGTACCTCCTCGAGGAGCCGTGGACGCGCGAGGAGGCCGAGGTCAACGTCGCACGGCGGATGCTGCGCGACGGGATCGACGAGCCGGGGTCGGCACTGGCGCTGGTCGTGGAGCACGAGGGGTCCGTCGTCGGCGACATCGCCCTGTGGACCACGGGGGACACGTCCTCGCGCGGCGAGGTCGGCTGGGCGTTCCACCCGCAGCACACCGGCCAGGGGTACGCGACCGAGGCGCTGCGGTCGCTGCTGGCGATCGCGTTCGACCGGTACCGGATGCACCGCGTGGTGGCCCAGCTCGACGCCCGCAACACCGCGTCGGCGAAGCTCTGCGAGCGCGTCGGGATGCAGCGCGAGGGGTACCTGCGCGCGGACTGGTGGTCCAAGGGCGAGTGGACCGACACCCTGGTCTACGGGATGCTCGACAGCGACTGGAAGCGTCCCTGAMTEPTAPLRAVLPVRTSRLVLRTYREDDVEPMLAYYSDPEVARYLLEEPWTREEAEVNVARRMLRDGIDEPGSALALVVEHEGSVVGDIALWTTGDTSSRGEVGWAFHPQHTGQGYATEALRSLLAIAFDRYRMHRVVAQLDARNTASAKLCERVGMQREGYLRADWWSKGEWTDTLVYGMLDSDWKRPPGPT0028650_24DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028650-aacA-K00663NANA
AK018_038411233sotB_3Sugar efflux transporter BATGAGTACTGCCGGGCCCACCGTCGACCCCCGCCGCGCCACCGTCATCCTGCTGGCGATGGCCTCCTCGACCTTCCTGTTCGTCACCCTCGAACAGCTCCCCGCGGGCCTGCTCACCCTCATGGCGCCCGACCTCGACCGCACCACGGCCGCCATCGGGCTGCTCGTGACCGTCTACGCGCTTGTCGTCCTGGTGACCTCGGTGCCGCTGGCGCACGTGACCCGGCACCTGCAGCGCCGCTGGGTGCTCGCCGCCTGCGCGGGCGTCGCCGCGGTGGCGACCCTGTGGGCCGCGCTGACGCCGTCGTACGAGCAGCTCATGGCGGCGCGCGTGGTGACCGCCATGGCGCAGGCGCTGTTCTGGGTCGCCGTCGTCCCGGCGACCGCCGGGCTGTTCCCGCCCGGCGTCCGCGGCCGGGCGATGGCCCGGCTGGCGATCGGCAACTCGCTCGGCCCCGTGCTCGGCGTGCCGGCCGGTACGTGGCTCGGCGAGGCGACCTCGTGGCGGTGGTCGTTCGCCGCCGTCGCCGCCGTGTCCGCGGTCATCATGGTCGTCGTCATCGTGCTGTTCCCGGCGGTGTCGCCGCGGTCCGGCGGGGCGAGCGAGGCGCCGTTCCCCTCGATGCGGCGGTACGTCTCGCTCATGGTCGTCACCGTGCTCGCCGTGACGGGGTCGTTCGGCATGATCACGTTCGTCACCCAGTTCCTCATCGACGTCGCCGGGTTCTCGCAGTCCGACCTGCCCGTGCTCCTGCTGCTGCAGGGCGGGGCGGGTGTCGTCGGGGCCGTGACGGTCGGGCGGTTCCTCGACCGGCGGCCCGTGGGGGCGCTCCTGGTGGGCATGATCGTGCTGGTCGTGGCGCTCGTCGGGCTGTGGACCCTCGGGTCGTGGCCCGTCGCCGCGGTGGCGTTCCTCGCGCTGTTCGGGTTCTCGTTCTCCACGGTGCCGCCCGTGCTGTCGCACCGGGTGCTGCTGATCTCGCCGCGCGGGACGAACATGGGCCAGGCGATCTCGTCGTCGCTGTTCAACCTCGGGATCGCCGGCGGGTCCGGCCTCGGGGCGCTGCTCGTGTCGCTCGTCGGGGTGCGGTCCGTGCCGCTGGTGGGGGCCGGGATCGTGGTGCTGGCCCTGGCCGTGGCGCTGTGGGAGGAGCGGACGAACCCGCCGATCGGGTCGCTCGTGGAGCGCGGGGTCGGGGAGGTTCTGGCCGAGGACGGCGGTGGCTCGCGCTAAMSTAGPTVDPRRATVILLAMASSTFLFVTLEQLPAGLLTLMAPDLDRTTAAIGLLVTVYALVVLVTSVPLAHVTRHLQRRWVLAACAGVAAVATLWAALTPSYEQLMAARVVTAMAQALFWVAVVPATAGLFPPGVRGRAMARLAIGNSLGPVLGVPAGTWLGEATSWRWSFAAVAAVSAVIMVVVIVLFPAVSPRSGGASEAPFPSMRRYVSLMVVTVLAVTGSFGMITFVTQFLIDVAGFSQSDLPVLLLLQGGAGVVGAVTVGRFLDRRPVGALLVGMIVLVVALVGLWTLGSWPVAAVAFLALFGFSFSTVPPVLSHRVLLISPRGTNMGQAISSSLFNLGIAGGSGLGALLVSLVGVRSVPLVGAGIVVLALAVALWEERTNPPIGSLVERGVGEVLAEDGGGSRPGPT0016620_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOSE_TRANSPORT_II,PGPT0016620-sotB-K08159NANA
AK018_038421452hypothetical proteinATGATCGACCGTTACGACTGGCCGCGCGTCGAGCAGTTCCGCAACCGCACCGCCGAGCTGCGCCGGATCGAGGCCTGGTGGACGGCGGACAGCCCCGAACCCCTGGCCGTCTCCGGACGTCGGCGCGTCGGCAAGTCCTGGCTGCTGCACCGCGCCGCTCACGGCAAGCCTGCCGTCATGCTCGTCGCCGACCGGATCGCCCCCGGTATGCAGCTCGACCGGCTCGCCGCCCAGCTCGCCCCGCACCTCGGCGTGACACCACGGCTGGAGAACGCCGCCGACCTCCTGCGAACGCTGTTCCGGCTGGGCCGCGACCAGAAGATCCTCGCGGTGGTCGACGAGTTCCCCTATCTCCTGGGAACGTCGGCCGCGGAGCAGGACCGTCAGCTGACCGAGGTCCAGGCCGTCCTGGAGGAGGAGCGCGACCGGTCGCGGCTGCAGCTCGTCCTCGCGGGTTCGACCCTGTCGGTCATGGAGTCGCTGCAGGCCGAGAAGAACCCGCTGCACGGGCGGACCGTGCCGCTGCGGCTGCGCCCCCTGCGGTTCGCGCACGCCGCGAAGTTCATGCCCGACGACGACCCCGAGACGCGCCTGCAGCGCTACGCCGTCGCCGGCGGGATGCCGCGCTACCTCGCAGCCCTCTCGGGACGTCCGCTGCTGGAAGCCGTCACCGATCAGGTCGTCGATCCCTACGGACCGCTCTTCAACGAGCCGTTCGCGCTGCTCTCGGCAGAGCTCCGCGAGCCCACGACCTACCTGTCGATCCTCGCCGCGCTCGCTGCCCGACCGCAGAGCGTCGGGGACGTCGCGAACGCCCTGCACACTCCCGCGCAGAGACTGAGCGAGTACCTCGCGACGCTGGAGGAGCTCCACCTGGTCTCGCGCCACCGGCCCGTCGGTGCACCCTCCCGGAGTCGCAGCACCCAGTGGCGGTGCGACGACGACTTCCTGCGGTTCTGGTTCCGGTTCGTGCACCCCCGCCGCGGAGACCTCGAGGCCGGGCTGGACCCTCGGGACTACGTCGAGACCCAGGTGTCGGCCGCGATGGCCGACCACGTGGCCCCCACCTTCGAGCGGGTGCTCCGCGACTGGATCCGTGCCCAGTGGGGGGCGGACGCCCCCGAGGTCGGCGGCTGGTGGGGACCCGCGCTCCACCCGCTGCGACGCGCCGGGACACGCTTCACCGAGGAGATCGACGGCGTCGCGCTCGCCGGCTCGTCCGTGCGCGTCGTGGCCGAGGCGAAGTGGACGTCCGCACCGATGGACGTCGACGTGCTGCGCGACCTGCGCGAGTACAAGATCCCCGCGCTGGCGCAGGCCGGCCTCGAGGTGGGCGAGGCGGAGATCGTGCTGGCCGCGCGGTCGGGATTCACCGAGCGGCTGGAGGCGGCTGCAGCGTCAGACCCCTCCGTGCGGCTCGTCCCCGCGGCCGAGGTGCTGTCCGTCGGGTGAMIDRYDWPRVEQFRNRTAELRRIEAWWTADSPEPLAVSGRRRVGKSWLLHRAAHGKPAVMLVADRIAPGMQLDRLAAQLAPHLGVTPRLENAADLLRTLFRLGRDQKILAVVDEFPYLLGTSAAEQDRQLTEVQAVLEEERDRSRLQLVLAGSTLSVMESLQAEKNPLHGRTVPLRLRPLRFAHAAKFMPDDDPETRLQRYAVAGGMPRYLAALSGRPLLEAVTDQVVDPYGPLFNEPFALLSAELREPTTYLSILAALAARPQSVGDVANALHTPAQRLSEYLATLEELHLVSRHRPVGAPSRSRSTQWRCDDDFLRFWFRFVHPRRGDLEAGLDPRDYVETQVSAAMADHVAPTFERVLRDWIRAQWGADAPEVGGWWGPALHPLRRAGTRFTEEIDGVALAGSSVRVVAEAKWTSAPMDVDVLRDLREYKIPALAQAGLEVGEAEIVLAARSGFTERLEAAAASDPSVRLVPAAEVLSVGNANANANANA
AK018_038431461uacT_2COG2233Uric acid transporter UacTATGAGCGACGCGACGACCACCACGGAACCAGCAGCTCCGCCCGGCAAGCACCCGGTGGACGAGATCCCCCGTCTTGCACGGCTCTTCCCGCTCGGGCTGCAGCACGTGCTCGCCATGTACGCGGGTGCCGTGGCTGTCCCGCTCATCGTGGGCGGCGCCCTGGGCTACTCCGCCGAGGACCTGGCGTTCCTCATCAGCGCGGACCTGTTCGTCGCGGGCATCGCTTCGATCATCCAGTCCGTCGGGTTCTGGCGGTTCGGCGTCCGGCTCCCGCTGATGCAGGGCGTCACGTTCGCCGCCGTCGGCCCGATGATCAGCATCGGCACCACCTACGACATCACCGCGGTCTTCGGCGCCACCATCGCCTGCGGGTTGTTCATGATCCTCGTCGCGCCGTTCTTCTCGGCGCTGCTCCGGTTCTTCCCGCCGCTGGTCACCGGCACGGTCATCCTCATCATCGGCGTCTCGCTCATGGACGTCGCCGCGGGCTGGATCACGAACCAGAACGAGTCCGCCGCGCCGTCAGACCTGGGCCTCGCCGCCGGCACGCTGCTGTTTATCGTGCTGATCGAGCGGTTCGCCCCGCCCGCCATCGCCCGGGTCTCGGTGCTGATCGGCCTCGTGCTGGGCACCCTCGCCGCGCTGCCGATGGGCAAGGTCGACTGGTCGGGCGTGGGCGAGGCCGGCTGGTTCGCCGTGGTCACCCCGCTGCACTTCGGCGTGCCGACCTTCCCGCCGGCCGCCGTGCTCTCGATGCTGGTCGTGGGCCTGGTGATCATGGTCGAGACCACCGGCGACATGATCGCCGTCGGCGAGATCGTCGACAAGAAGGTCAGCAAGAAGCGCCTCGCCGACGGCCTGCGCGCCGACGGTCTGTCCACCGTCCTCGGCGGCTTCTTCAACACCTTCCCCTACACGGCGTTCGCCCAGAACGTCGGCCTGGTCAGCCTCACTGGCGTCGCCTCGCGGTTCGTCGCGACGATGGCCGGCCTCATCCTCATCGTCCTCGGTCTGGTGCCGAAGGTGAGCGCCGTCGTCGAGGGCGTCCCCACCGCCGTGCTCGGCGGCGCCGGGATCGCGCTGTTCGGCATGGTCGCGGCCTCGGGCGTCCGGTCGCTGACGCGAGTCCGCTTCAACAACAAGAACATCCTGGTGGTGGCCGTCTCCCTCGGCGTCGCGATGCTCCCGACGGTCACGCCCGAGATCTACGCCGAGTTCCCCACCTGGTTCCAGCTCATCTTCGACTCCGGCATCAGCGCCGGCGCGATCACCGCGATCCTGCTCAACCTGCTCCTCAACGGTGACCAGCTCACCGAGCAGGACAGGCAGGACATGGCGCCGCACGACGCCGTCCGCGGCGTGCAGCCCGCCGTGCTGGGCCACGTCTCGCCCCCGGACCCGGCGCCTGCCGAGTCCGCCGGCGAGCCGGAGACCGCCGGCGAGACGAGCGAACGCCCCTGAMSDATTTTEPAAPPGKHPVDEIPRLARLFPLGLQHVLAMYAGAVAVPLIVGGALGYSAEDLAFLISADLFVAGIASIIQSVGFWRFGVRLPLMQGVTFAAVGPMISIGTTYDITAVFGATIACGLFMILVAPFFSALLRFFPPLVTGTVILIIGVSLMDVAAGWITNQNESAAPSDLGLAAGTLLFIVLIERFAPPAIARVSVLIGLVLGTLAALPMGKVDWSGVGEAGWFAVVTPLHFGVPTFPPAAVLSMLVVGLVIMVETTGDMIAVGEIVDKKVSKKRLADGLRADGLSTVLGGFFNTFPYTAFAQNVGLVSLTGVASRFVATMAGLILIVLGLVPKVSAVVEGVPTAVLGGAGIALFGMVAASGVRSLTRVRFNNKNILVVAVSLGVAMLPTVTPEIYAEFPTWFQLIFDSGISAGAITAILLNLLLNGDQLTEQDRQDMAPHDAVRGVQPAVLGHVSPPDPAPAESAGEPETAGETSERPPGPT0007330_273DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007330-pubX-K16169NANA
AK018_038441158hypothetical proteinGTGCCGACGATCTATCGCACTCCCGAGACCGATCTCGAGGACTCGGGTGTGGTCGCCGAGATCCGCGACCTGCGGGACTCGCTCGCCATGATGCTGCGGACGCCGCGGCGCTGGACCAGCGGCATGCGGAGGACGACGCAGGCACGAGCCATCCAGGGATCGAACACCATCGAGGGATACACCGTCTCGGACCAGGACGCGCTCGCAGCCGTGGACAACGAACCCCCGATGAGCGCCGACCAGCGCACCTGGTCCGAGATCCTCGGCTACCGACGCATGATGACGTACATCCTGCGCATGGCGCCCGATGACGGGTTCACCGTGGACTCACAGACGTTGCGGTCGCTGCACTTCATGCTGCTCGAGCACGACCTCTCCGTGGACCCGGGGCGGTTTCGCCCCGGCCCGATCTACGTCCGCGACGAGGCCGCTGACGCCACCGTCTATGAAGGACCGTCGGCGGACAACGTCCCCGGGCTGGTCGACGAACTGGTCCGCTCCCTGCGCACCGACGGAACCGACACGCTAGTCGACGCGGCGATGGCGCACTTGAACCTGGTGATGATCCATCCGTTCAAGGACGGCAACGGTCGGATGGCCCGCGCTCTGCAGACCCTCGTGCTCGCCCAGGACCGCGTGCTGGAACCCACGTTCTCCAGCATCGAGGAATGGCTCGGCAACAACACGGACGACTACTACCGCGTGCTCGCGGTTACCGGCGAGGGGTCCTGGCACCCCGAGAACGACGCGGGGCTGTGGATCAAGTTCAGTCTGCGCGCCCACCACATGCAGGCACAGACGCTGCGTCGCCGATTCGACGAGGCCGACCGGACCTGGGTCGAGCTTGACGAGCTCATCGCCCAGCACGGCCTCCATGAACGGACGGGCGACGCGCTGTTCGACGCCGTACGCGGCCTCCGCGTCGTCCGGCCGACCTACGTCAAGCAGGCCGGCATCGAGGAGCAGACGGCGAGCCGCGACCTCCGGGGGCTGGTCAGCGCCGGGCTCCTCCAGGCCCACGGGCAGACACGGGGGCGGTTCTACACCGCGAGTGGAGAGCTCCGCGCGCTGGCGGAGGAGATCCGGGCCGACCGGACGGCGCTGGTCGATCCGTACCCGTGGCTGCTCGGGGAGCTGAGGCAGCGTGTCGGGAGGTAGMPTIYRTPETDLEDSGVVAEIRDLRDSLAMMLRTPRRWTSGMRRTTQARAIQGSNTIEGYTVSDQDALAAVDNEPPMSADQRTWSEILGYRRMMTYILRMAPDDGFTVDSQTLRSLHFMLLEHDLSVDPGRFRPGPIYVRDEAADATVYEGPSADNVPGLVDELVRSLRTDGTDTLVDAAMAHLNLVMIHPFKDGNGRMARALQTLVLAQDRVLEPTFSSIEEWLGNNTDDYYRVLAVTGEGSWHPENDAGLWIKFSLRAHHMQAQTLRRRFDEADRTWVELDELIAQHGLHERTGDALFDAVRGLRVVRPTYVKQAGIEEQTASRDLRGLVSAGLLQAHGQTRGRFYTASGELRALAEEIRADRTALVDPYPWLLGELRQRVGRNANANANANA
AK018_03845882hypothetical proteinGTGGATTCTGCAGTGGAGAAGGAGCTTCGCCGGCACATCATGGCGTGGGTCGGCGAACGTGCTGAGGCCAACGGGGGCTACCTCCACCGGGCCGAACTCCTCGACTTTCGCATCGATGACAAGAAGCTGCCGGTCATCGACTACTCACGGGGGATCCGCAACCCCGCAAACTTCGCCTCGACACTGTCGATCGTGAGCGCTGCCGACGGGCCCTACGACGACACGGAGTCCGAGGACGGGCTCCTCCACTATGCCTACCGCAAGGGCGACCCGTGGAGCGGCGACAACACGAAGCTCCGTCATGCCATGACGACCGGAATGCCCCTCATCCTCTTCCGCAAGGAAGTCAAGAACATCTATACGCCCGTCTTCCCGGTGTACGTGGTGGATGACGAGCCCGAGAACCGCCAGTTCCTCATCGCTCTCGACGAGGCGTTCCGCTTCATCCCCGACCCCAGGCATCTCAGCGAACCGCAGCGTGAATACGCGGTGCGCCTCGCCAAGCAGCGGCTCCACCAGCCGGCGTTCCGCACCAGAGTTCTCGTCGCCTACGAGACGCGGTGCGCGATCTGCGAGCTCAAGCACGGTGCGCTACTCGACGCCGCTCACATCGTCCCCGATGGACATGAGCTGGGCGTCCCGACAGTCAACAACGGGCTTGCACTCTGCAAGATCCACCACGTCGCCTACGACCAGAACATGCTCGGCGTGACGCCCGACTACGAGGTGCGCATCGCGCTCGACCTGCTCGAGGAGATCGACGGGCCGATGCTCAAGCATGGGCTCCAGGAGATGCACGGCCGGCGACTCTCACTGCCTCGACACGCCGCGGACCGTCCGGACCGTGATCACTTGGCTTGGCGCTTCGACCAGTTCAGTTAGMDSAVEKELRRHIMAWVGERAEANGGYLHRAELLDFRIDDKKLPVIDYSRGIRNPANFASTLSIVSAADGPYDDTESEDGLLHYAYRKGDPWSGDNTKLRHAMTTGMPLILFRKEVKNIYTPVFPVYVVDDEPENRQFLIALDEAFRFIPDPRHLSEPQREYAVRLAKQRLHQPAFRTRVLVAYETRCAICELKHGALLDAAHIVPDGHELGVPTVNNGLALCKIHHVAYDQNMLGVTPDYEVRIALDLLEEIDGPMLKHGLQEMHGRRLSLPRHAADRPDRDHLAWRFDQFSNANANANANA
AK018_03846411hypothetical proteinATGGCGGCTGGGGCACTCGTCCTGAACCTCATCATGGTTGCGCCCGCTGTCTTCATCGGCGGGCTGACCGTTGGAGTACTCGGAGCAAAGCAGAAGTCCAAGGTCCGAGAATATGCAGCAAAGGTTGCAGTCGCCATCGAGAGCATGGAAACCGCGAAGGCGCTCCTCCAATCCATCGACACCCGGATCGGCGAGCTAAAAGCAGTGCTCGCGAGCCTGGTCAGTCGAGCAACTCTCGCACTGGACCAGCTCGAATCTCTTGAGTTTGATCCCGACAGGCACGGCGCCGAGTTTGTTCGGACCCTGCAGCTCATGACAGCGATAGGCGAAGTAATCGAGACTCCCGTGATCGACACTGAAACCGGCGAGTTGACTGATGTATCCATCAAGATTGTGGAGAAATACTCGTGAMAAGALVLNLIMVAPAVFIGGLTVGVLGAKQKSKVREYAAKVAVAIESMETAKALLQSIDTRIGELKAVLASLVSRATLALDQLESLEFDPDRHGAEFVRTLQLMTAIGEVIETPVIDTETGELTDVSIKIVEKYSNANANANANA
AK018_03847435hypothetical proteinGTGACCAAGATTCCCGATGTCTCAACGATGGGTTCGGGGGCATCCCACCTCGGCAAGGTCTCCCAGGCCCTCGACCTCGGACATGTGCTGTCCCAGATGGTGACTGCCGCCGATCAATGGGTGAAGGTCGTCCAGGAGGAGTCCACCCGACGAGAGGAAGTTCGCGGCTGGGAAGCCACGGAACGCGAGCGGATCGTCGCACAACGCGACGTTCTCATCCAGGGCCTGGAAATCACCCATGATGAACGGCGCGAGAATTTTCGGCGTCTATTCAACGGCCTCGATGTTGCGATGCAGAGCAACGACCCCGCCACGGCCGCCAACCTGCTCGATTCAATCACCGAGCTCGCCAAGTCGAGCCCTTTCCAGGATCTTGGCAACATTGAGTTCGTCGTCAACGAACTCAAACAGCAGGATCGCACCTGGAAAATCTAGMTKIPDVSTMGSGASHLGKVSQALDLGHVLSQMVTAADQWVKVVQEESTRREEVRGWEATERERIVAQRDVLIQGLEITHDERRENFRRLFNGLDVAMQSNDPATAANLLDSITELAKSSPFQDLGNIEFVVNELKQQDRTWKINANANANANA
AK018_038482073rhlE_5ATP-dependent RNA helicase RhlEATGGAGGGTGGCGCCGACCTCGACGGAGCGATCGAGTACCACGTCGTGAACTCGCTCGGTTGGGGTTCGCTGCGCCCACTTCAGGCCGCCGCGGTCCCGGCGGTGCGGTCGGGCAATGACTGCCTCCTCATCGCGCCCACGGCCGGCGGTAAGACCGAGGCAGCAGTCTTTCCCCTGCTCTCGTCCATGGTGCAGCGGGGATGGCGCGGACTGTCCGTCCTGTACGTGACGCCCTTGCGGGCACTGCTGAACAACCTCTACCCACGGATCACGGCGTATGGGGAGTGGCTGGGACGCAGCGTCGGTCTCTGGCACGGTGACGTCGGTGATCCCGAGCGGAAGAGGCTGCTTGCTGAACCGCCGGACATCCTTCTGACAACGCCCGAGTCGCTTGAGGCGATGCTGGTGTCCCGCCGTGTCGATCACGATCGCTTCTTCTCCGGGGTGCAGGCCGTCGTCGTCGACGAGCTGCACTCCTTTGCTGGCTCCGACCGCGGGTGGCACCTTCTCGGGGTCCTGGCGCGACTGGAGCGTCTTGCTGGGCATCCCATCCAGCGCGTCGGACTGTCAGCGACAGTGGGCAATCCTCAGGAAATCGGGCGGTGGCTGCAACAGGGTGAGTTCGTCTCCTCCGACGGTCAGCGGGAGCTGAGGATCGTCACGGAGCCAGGCGGGGCGAGCACACCGGAACCAGAGGTGATGCTCGACTTCGTGGGATCCGTGAGCAACGCCGCGAAGGTGATTGCCAACCTGCACCGCGGGGAGAAGCGCCTCGTTTTCTGTGAGTCACGGCGGGTCAGCGAGCAGTTGGCTTTCGACTTGCGGCAGCTCGGAGTGGAGACGTTTGTCTCTCATTCGTCCCTGTCGGCCGACGAGCGACGGCGATCCGAGCAGGCATTCGCTGAAGCGCAGAACACCGTGATCGTGGCGACCTCCACACTGGAACTCGGCATCGACATCGGTGACCTCGACCGGGTCATCCAGGTTGACGCGCCTCGGACCGTGGCGTCCTTCCTTCAGCGGCTCGGGCGAACGGGACGGCGACCCGGGACCACGCGGAACACGCTGTTCCTCGCGACCACCTCGGACGCCTTCCTCGAGGCCGCCGGCCTCGTGCTTCTCTGGAAGCGCGGCTTCGTCGAGCCCATCACGCCGCCGCCGCACCCGCGCCACCTCACCGCGCAGCAGCTGCTAGCCCTCGCACTCCAAGAGGGCGCCTTCGGTGCTAGTTCCTGGCACGAATGGTGGGGCTCTCTTGCGCTGATGGACGACGGTGAGGACGTGCTCACCTATCTTCGCGACGAAGGCTTCCTCGTCGAAGACGACGGACTCCTCATGATCGGGCCGGCCGCGGAGAGGGCGTTCGGCCGTCGGCACTTCATGGACCTGCTCTCCTCGTTCGACGCCGAGAAGGAACTGCGGGTGGTGACGGGCAACAAGGAGATCGGGTTCCTTTCCCCGCTCGGGTTGCCGCGGCAGGGGGTGGACCGTGCCGATGCCAAGCCGATCCTCATGAACGGGCGTGCCTGGCATGTGGAGGGCGTGGACTGGGATCGATTCGAGGTCACCGTCAGCCCCATCGCCGCGAAGGGCGACGTCCGATGGCATAGCGATCCCATCGCGATGTCCTTCGAGATGGTGCGGGCGCAGCGTGACGTCCTGCTTGGTGAGACTCCCGACGTCCCGCTGTCACGGCGCGCCATCGACCGGCTAGAGCTTGTGCGGAAGGTGCGGGCTGATCAGGTGGCGGCCGACCGCCTCGTCGTCCAGCGATCGGGTCACGACGTGCACCTCTGGACCTGGGCGGGCTCGAAGGCGAACGAGACTCTGCGCGCTGCCCTTGGGGGGGCCGCAGGTCAGTCGCACAATGCGGTCATGGTGCTCCGCGGTGCCGGTGACCTGGGAAGGCTCACGGCGATGACGTTCGACGAGATCGTCCCGCACGTGCCTGCAGAGATGGTCGATACGTTGAAGTTCTCGGCGGCGCTTCCTGTGCAGGTGGCCGTTCGAACACTGGCCGAACGGTTCGCTGATCGAGACGGTGCGGCACTGGTGGCGCAGCAAATCCGATAGMEGGADLDGAIEYHVVNSLGWGSLRPLQAAAVPAVRSGNDCLLIAPTAGGKTEAAVFPLLSSMVQRGWRGLSVLYVTPLRALLNNLYPRITAYGEWLGRSVGLWHGDVGDPERKRLLAEPPDILLTTPESLEAMLVSRRVDHDRFFSGVQAVVVDELHSFAGSDRGWHLLGVLARLERLAGHPIQRVGLSATVGNPQEIGRWLQQGEFVSSDGQRELRIVTEPGGASTPEPEVMLDFVGSVSNAAKVIANLHRGEKRLVFCESRRVSEQLAFDLRQLGVETFVSHSSLSADERRRSEQAFAEAQNTVIVATSTLELGIDIGDLDRVIQVDAPRTVASFLQRLGRTGRRPGTTRNTLFLATTSDAFLEAAGLVLLWKRGFVEPITPPPHPRHLTAQQLLALALQEGAFGASSWHEWWGSLALMDDGEDVLTYLRDEGFLVEDDGLLMIGPAAERAFGRRHFMDLLSSFDAEKELRVVTGNKEIGFLSPLGLPRQGVDRADAKPILMNGRAWHVEGVDWDRFEVTVSPIAAKGDVRWHSDPIAMSFEMVRAQRDVLLGETPDVPLSRRAIDRLELVRKVRADQVAADRLVVQRSGHDVHLWTWAGSKANETLRAALGGAAGQSHNAVMVLRGAGDLGRLTAMTFDEIVPHVPAEMVDTLKFSAALPVQVAVRTLAERFADRDGAALVAQQIRNANANANANA
AK018_038491335hypothetical proteinATGAGCGCCGCAGGTTCGATCAGTCCGAGGCGTCGGAAGGAGATCGTCGGAGCGCTCCGGCGCGGGACCGTGCCGCAACAGGGGCTCGACGTCATGGCGGTTGGTCTGACTCGGTTCGAACCGGCGATCGATGAGGAGCTCGAGTCCGTCCTGCAGGGCGGTGCCCAGTTCAAGGCGATCCGCGGTGAATACGGTTCGGGTAAGACGTTCTTCTCGCGGTGGCTGACGGAGCGCGCCAAGGCGAGGAACTTCGCGACGGCCGAGGTGCAGATCTCCGAGACGGAGACGCCGCTGTACAAGCTCGAGAAGGTCTACCGCCGGATCGTCGAGAGCCTCTCGACCCGGAGCACCTCGTCAGGCGCGTTCGGTGACGTGGTCAACGAGTGGTTCTATGTGCTGGGCCAGGACGCGCTCAACGCTGGAGGGGCAGGCGACCACGACCAACGGACCGACGAGCTTCTGGAGAAGCGGCTGGCTCTCGTCTCGAAGGAGGCCCCATCGTTCGCGATGGGCCTGCGGGCGTATCGGCAGATGACGGCACGGGGAAACCACCCGGAGGCCGATGCGTTGCTGGCCTGGCTCGGGGGTCAACCGCATGTGGCGGCCTCGGCTCGTCGTTCCGCGGGCGTTCGCGGAGAGCTCGACCATTTCGGTGCGCTCGGGTTTCTGCAGGGACTCCTCACGGTGTTGCGTGACGCGGACTATGGCGGACTCGTCATTGTTCTCGACGAGGTTGAAACGCTGCAGCGTATGCGCAAGGACGTTCGCGAGAAGTCGCTCAACGCCTTGAGACAGCTCATGGACGAGATCGACTCCGGCCGGTTCCCGGGCCTCTATCTCGTGATGACTGGCACGCCCGCGTTCTACGACGGACAGCAAGGCGTGCAGCGGTTGGCGCCGCTCGCGCAGCGACTCCAGACCGACTTCAGCACCGACGCGCGGTTCGATAACCCGCGCGCTACTCAGATCCGGTTGCACGGGTTCACACCGGAGTCGCTGGTGGAGCTGGGCTCACGGGTCCGCGACATCTACGCGGCCGGCGGTGGCAATGTCGACCGCCTCCACGCCGTCGTCGATGACGCCTACATTGCCGACTTGGCTGCGGCGATCGGTGGGGAACTCGGAGGCAAGACTGGTGTCGCGCCTCGACTGTTCCTCAAGAAGCTGGTGGCCGACGTGCTCGACCGAGTGGACCAGTTCCCGGACTTTGAGCCCCGACGGGACTACAGCCTGACCGTGGGCGCGCACGAACTGAGCGACGTCGAACGCGAAGCCCGCTCGCTGGGCGACCGACGTCCAGTGGCTAGCGTCGACGACATCGACTTGGATCTCTAGMSAAGSISPRRRKEIVGALRRGTVPQQGLDVMAVGLTRFEPAIDEELESVLQGGAQFKAIRGEYGSGKTFFSRWLTERAKARNFATAEVQISETETPLYKLEKVYRRIVESLSTRSTSSGAFGDVVNEWFYVLGQDALNAGGAGDHDQRTDELLEKRLALVSKEAPSFAMGLRAYRQMTARGNHPEADALLAWLGGQPHVAASARRSAGVRGELDHFGALGFLQGLLTVLRDADYGGLVIVLDEVETLQRMRKDVREKSLNALRQLMDEIDSGRFPGLYLVMTGTPAFYDGQQGVQRLAPLAQRLQTDFSTDARFDNPRATQIRLHGFTPESLVELGSRVRDIYAAGGGNVDRLHAVVDDAYIADLAAAIGGELGGKTGVAPRLFLKKLVADVLDRVDQFPDFEPRRDYSLTVGAHELSDVEREARSLGDRRPVASVDDIDLDLNANANANANA
AK018_038501395hypothetical proteinGTGGCGGTGATTCGGGCGTTCCGTCACGAGGTCAAGGGATTCGGCACGAGGCACTCGACTGACGTCGACTGCCTCTACTTCGACTTTCATGACGCCGGCGGTAAGCAGATCCTGCAACTTTCCACGCTGGGGTCGGAGCACCGTCAGAGCAAACCGAAGGTCAGTCAGACGTTCCAGATTGGGCGCGAGGGGGCTGCACAGTTGCGCAGCATCCTGGAGGAGACGTTCGCCGGGATTGCCGGCGAACAGGCCGAGGTCTCGTCGTCGCGCGCGCTGGATGCCGCACCCAACGCGGCCAACCTCGTCGAACCGGCTGATGCCCTCGAGCGCTTCGCTGCCCGTGCTGGACTCACTCGATTGCGGGATGTGGACCTCGGCGAGTCGACGGCCCGGCGGCGTACTGTCGCCCACGACGATCGGCCCCTGATTGGCGGTGCGTGGTACCTCGTCGACTTCACGAACCTCGATCTGCTGACCTATCGCGACGTCGAACGGGATCTCCGGACGGCACCTCGGGCATACCAGCGGATGGCCGTGATCGTGGTTGACCTGTCGGAGGATCTGCGACAGCATCTCGAAGGAATCCACGCGGATGTTGTGCGGGCGCAGGATCTCGGGTTGCCGTCATCTTCCGATGTAGTACCGCGACCGGAGGTCGGAGCGCGGACGGCTCGTCCGGGAACGAGACAGTCGCTGGTACCGGACCTGCAGTTCATGTGCGAGACCCTCGGCGTCGTTCTTTCAACACCCGACGATGCCTGGCCCGGGCACGGCAAGGCGGTCTACCTCCATGGTGGCGGTACCGCCTATGTCAATCGGAGCAGCATTGAGGTTCGCGCCACGCCGCAGCAGGTAGCCGTCTGGGCTCGAGCCGGGCATGGCACGGTTCGAGGGCCGCATGGCCAGTACCTGCGGATGCCGATCGGCCCTGCGGCTCGGAGCGCTGCGACGGTCCCGCGGGGTGTCGACCGTGTGTGGATCGCGCCGGCCCCCGTGTCCTCGCCCTCTCCGGCGCCAAGAACAGTGGCTGCCGGGTCGGCCCCGATGCGGCACCTTGCGGCCTCGTTCCCGTGGCTCGAGCAGCTCTTTGACGCCGAGCTCTACGCCGAACAGAAGGGCTTGGCAGGTCGGGCAACGGTTTCTGATGATGTCGTTCGCGACGTGCTCACTGCGCTCATCCGCCTGGGGTTGAGTGGGCCGATTGAGTCCGTCGAGCATGACGCTGGCTTGAGCGGGGGCGAGTTGCGGCGCATCGTTCCGCTGTTGCGCCGACTGCTCAACGTGGACGGGTACGAGACTCTCTCGTTCGGCGACGGCATTCTGGTCCTCGACGATGACCTCTTGCGTCAGCAGTTCGGGCTCACACGAGCCCATCATGATGAAGGAGAAGCGTGAMAVIRAFRHEVKGFGTRHSTDVDCLYFDFHDAGGKQILQLSTLGSEHRQSKPKVSQTFQIGREGAAQLRSILEETFAGIAGEQAEVSSSRALDAAPNAANLVEPADALERFAARAGLTRLRDVDLGESTARRRTVAHDDRPLIGGAWYLVDFTNLDLLTYRDVERDLRTAPRAYQRMAVIVVDLSEDLRQHLEGIHADVVRAQDLGLPSSSDVVPRPEVGARTARPGTRQSLVPDLQFMCETLGVVLSTPDDAWPGHGKAVYLHGGGTAYVNRSSIEVRATPQQVAVWARAGHGTVRGPHGQYLRMPIGPAARSAATVPRGVDRVWIAPAPVSSPSPAPRTVAAGSAPMRHLAASFPWLEQLFDAELYAEQKGLAGRATVSDDVVRDVLTALIRLGLSGPIESVEHDAGLSGGELRRIVPLLRRLLNVDGYETLSFGDGILVLDDDLLRQQFGLTRAHHDEGEANANANANANA
AK018_03851117hypothetical proteinGTGGTGAAACGTGTGCTCAACGTCGAGGGCTACGAAATCCTCTCGGTAGATGCCGACGGGTCGACGCTGGAGCTAGACCTCGACCTGCTCCGCGAGCAGTTTGGGGTCGACGAATGAMVKRVLNVEGYEILSVDADGSTLELDLDLLREQFGVDENANANANANA
AK018_03852516hypothetical proteinGTGGTCTGGGAAGAGCTGAGCATCGGGATCGACGGGGTCGCAGCCCTCGCCACTGCCGCCGCGGCGGTCTTCGCGGCGGTCCAGGCGCGGCATATCGTGCACGACCGGCGGTTGGACCGCCAGCTGGAGACAGATGGTGTCGTCGTGGCTTGGCGGGCACTAAAGGCTCCGCCTCGACCGGGAGAATCCGAGGCTGTCTGGAAGATCGAATACTCCGTCATCAACCCGGGCCGGTTCCCCATCACCCACATTCACATCCGAATCCAGTTCGCCGGGCCGGTGAGCAGGGTCCACTATGACGGCAGCAGGGATGGTCTCAGTGACGGGATCGAGCTTCGGCACGCTGTGCTGGCGGGCGGCGATGTCCAGCGGTGGGAACGAAGCCTGCAGGCGCCGGCCGGAGTCATCCCTGTCGCGGGGTGTTCTGCTGTCGTCGACTTCCGCGAGGTGGACGGGACCCCCCACCAGAACGTCTGGTCAGACTCGCCCGTCAGACACGGTGAGCCAGGAGCATGAMVWEELSIGIDGVAALATAAAAVFAAVQARHIVHDRRLDRQLETDGVVVAWRALKAPPRPGESEAVWKIEYSVINPGRFPITHIHIRIQFAGPVSRVHYDGSRDGLSDGIELRHAVLAGGDVQRWERSLQAPAGVIPVAGCSAVVDFREVDGTPHQNVWSDSPVRHGEPGANANANANANA
AK018_03853543hypothetical proteinATGAACGACGAGATCTCGATCGACGAGGTCACGCTCTACCGGACGAGAGGGCGCGGCAGGCTCCACGTCATGGGGTGCAGTCACCTGCCGTCGGCGGACCCGTCCGATTTCGTCGTGGCCGATGCGAAGGACCGAGCGGAGCTGCCGGTCTGCGGCGAGTGCGAGAAGGAGGTCATGGGCAGTGGACGTATCGAGTATCCGTCGCTGGACGCAGCGTTCGAGGCGCTGAGGCTACCGGTGGAGAACCGCCCGCGCATGCGAGAGATCGCTGCCGGGCTCGAGTACGAGAAGGTCTGGACCCCGCAGGCGAGCTCCTACGTAGCCGCCGGCTTCCTCGACGGCCGCCCGGTCGCCGCGTACTTCAACAAGGGTTTCGTCGACGTTCGTGTGGGCCCCAAGGACTACCGGCGCGAGGAGCTGCCCAGCTACTCGGTTCCGTCGGGCGGTCGGGGCCGCTCGTCCGCTGACGCTCCCGCACCGAGCATTTGCCCCACCTGCACGATGCAGCTGCCGGCGACCGGGATCTGCGACGACTGCGGCTGAMNDEISIDEVTLYRTRGRGRLHVMGCSHLPSADPSDFVVADAKDRAELPVCGECEKEVMGSGRIEYPSLDAAFEALRLPVENRPRMREIAAGLEYEKVWTPQASSYVAAGFLDGRPVAAYFNKGFVDVRVGPKDYRREELPSYSVPSGGRGRSSADAPAPSICPTCTMQLPATGICDDCGNANANANANA
AK018_038541737hypothetical proteinATGAATCGTCAGACCAACTCTTGGAACGTCCGCGACCTGAACCGATTCGTCGAGTACGAAGGGAGCATGCCGCGCACGTACCCCTCGACGCCCGACTTCCCGGACGACGGCGGAGCCGAGCGAGCGGTCTGGGAGGCGCTGCGCGCGGAGCTCCCGGACGACGTCGTCGTCTGTCACGGGGTGAACCTGCAGGAGTACGACCAGGAGTACGAGATCGACCTGCTCGTCGCCTGGCCCGGCGTCGGGATCGCCGTCATCGAGGTCAAGGGCGGGTACATCGAGCGGTCCGGCGGGTCCTGGTACCAGGGCAGCGGCGACGCGCGCCATCGCATCCAGCCGGTCCGGCAGGTGCAGAGCGCCCGCCACGTGCTGCAGGCGCTGCTGCGCGAGCGGGGCGAGCCGGCGTCGTCGTCGCGCACCGCGCACCTCGTGGCGTTCCCGCACCGCTACGTCTCGGGCGGGTGGGACTCGTTCGACCTGCCACGGGACATGGTGATCGGGCGCGACGACCTCGAGAGTCCCGGTGGCGCGGCGGAACGCGTCAAGCACGCGATCGAGCGGCACGGCCAGGGGTACGCCCCGCTGGACGAGGACGCGCTGGACGGGCTCGTCGCCTGCGTGGCCGGCGGGTTCCCCAGCCAGTCGGAGCACCTGACGCGCGCGCTGGAGCACGAGACCCGGCTCGAGCAGATGACCCGTGACCAGGTGCAGATCCTGCGTGCCCTGTCGCAGGTGCGGCGGATGCGGGTGGTCGGCGGCGCCGGCTCGGGCAAGACCTACCTGGCGCTGGAGCAGGCCCGACGGCGGACCCGGGCGGGGGAGCGGGTGGCGCTGCTGTGCTACTCGCGGGGCCTCGGCCGGTACTTCCAGCGGATCACCGCGACCTGGCCCCGCCGCGACCAGCCCGCCTACGTCGGGCTGTTCCACGAGCTACCGGTCTCCTGGGGTGCCGTCGGCGGGCGCGACGACGACCCCGACTACTGGGAGCGGCACCTGCCGACCGAGCTGGGGCGGCTCGCAGCGCTCCGTGGGCCGGACGAACTGTTCGACGCCGTCGTCGTCGACGAGGCGCAGGACTTCGGCGACCTGTGGTGGCCTTCTCTGCTGCGGTGCCTGCGCGACGTCGACGACGGCGGGGTGTACGTGTTCCTCGACGACGCGCAGCGGGTCTTCCCCCGCGACGGGCAGGTGCCGCTGGAGCTCACCCCGGTGACCCTGGACGAGAATCTGCGGTCCACCAAGCAGATCGCGCAGGTCTTCGGCGCGCTGTCCGACGACGTGGTGAAGCCCCGAGGGCTCGACGGGCCACCCGTGCGGGTGGTCGACGTGCCCGCCGAGGCCGCGGTCGAGGCGGCGGACGACGCCGTCGAGGCGCTGCTCGCCGAAGGCTGGGAGCCCGGCTCGGTGGCGCTGCTCGCGACCGGACGCCGGCACCCCGAGCAGGTCAACGAGGTGGAGCTCGGCGGGTACGCGGAGTACTGGGACGCGTTCTTCGCCGAGCAGGACGTGTTCTACGGGCACGTCCTCGGGTTCAAGGGGCTCGAGCGGTCCGTGGTGGTGCTGGCCGTCAACGGGGTGCGGGACCTCGAGCGGGCACGGGAGATGCTGTACACCGGGCTGTCACGGGCGCGGACGCTGCTCGTCGTGGTCGGGGACCGGGCCTGGATCGAGGAGGTCGGGGGCGAGGGTGTGCGGCGGCGGCTGGAGAAGGCGGAGATGTGTGGAGGCACGGCATGAMNRQTNSWNVRDLNRFVEYEGSMPRTYPSTPDFPDDGGAERAVWEALRAELPDDVVVCHGVNLQEYDQEYEIDLLVAWPGVGIAVIEVKGGYIERSGGSWYQGSGDARHRIQPVRQVQSARHVLQALLRERGEPASSSRTAHLVAFPHRYVSGGWDSFDLPRDMVIGRDDLESPGGAAERVKHAIERHGQGYAPLDEDALDGLVACVAGGFPSQSEHLTRALEHETRLEQMTRDQVQILRALSQVRRMRVVGGAGSGKTYLALEQARRRTRAGERVALLCYSRGLGRYFQRITATWPRRDQPAYVGLFHELPVSWGAVGGRDDDPDYWERHLPTELGRLAALRGPDELFDAVVVDEAQDFGDLWWPSLLRCLRDVDDGGVYVFLDDAQRVFPRDGQVPLELTPVTLDENLRSTKQIAQVFGALSDDVVKPRGLDGPPVRVVDVPAEAAVEAADDAVEALLAEGWEPGSVALLATGRRHPEQVNEVELGGYAEYWDAFFAEQDVFYGHVLGFKGLERSVVVLAVNGVRDLERAREMLYTGLSRARTLLVVVGDRAWIEEVGGEGVRRRLEKAEMCGGTANANANANANA
AK018_03855699hypothetical proteinATGGCCGCCATGCCGTCCTGCCCTGCTCACCACGTCGCCCCGGCCCGACGGGCGGCACGCACCAGTGCGGTCGCCGTCGCGGCAGCCCTCGGTCTCGCAGCCTGCTCCGCCGACGGGGCACCCGCTCCGGACGCCGCCACGCCGGCTACCACCCCCGCGGCGACGACGCCCAGCCCGAGCAGCACGCCGACCGAACCGTCGGCGGACCCCAGCCCGTCGCCGTCGGACACCCCGAGCCCGCAGGCCGAGGAGCCCGCGCCGACCGACACCCCCACCTACCCGTCGTTCGACCCGCACACCGACCGCGCCCTGCAGACCATCGCCGCGATGGAGGCGGCCTACGGTGCGGGCGCCTTCACGGTCGAGGGCGACGACGACGGCACGCGCTGGACGCTGGAGCTCACGCAGGGCGACGACCGGCTCAAGGTCAAGGCCGAGGCGGACGACACCGGCATCGCGACGACCGACACCAAGCGCGACGACCTCGACGACGACGACCGCGAGGCCCTCGGACGCGCGCAGGTCAGCCTGAGCCAGGCGATCGTCCGTGTCGTCGAGTCCTCGGGCGGCGTCCTGGACAAGGCCGAGCTCGAGGAGGACGACGGCATGGCCTACTGGGAGGTCGAGGTCGACCTCGGGGACGACGACGAGCACTACCGCGTCGACGTCGCCACCGGCACGCTCTCGCGGGACGTGTAGMAAMPSCPAHHVAPARRAARTSAVAVAAALGLAACSADGAPAPDAATPATTPAATTPSPSSTPTEPSADPSPSPSDTPSPQAEEPAPTDTPTYPSFDPHTDRALQTIAAMEAAYGAGAFTVEGDDDGTRWTLELTQGDDRLKVKAEADDTGIATTDTKRDDLDDDDREALGRAQVSLSQAIVRVVESSGGVLDKAELEEDDGMAYWEVEVDLGDDDEHYRVDVATGTLSRDVNANANANANA
AK018_03856291hypothetical proteinATGTTTCCCGAGCTCGACGAGCAGGTCCTCGCCCGGCTGCCCTGGGAGATCCACGAGCAGCACAGGAACTCGTACCACCTGGCGATGCTGAGCTGTGCGGTGCGCGACCAGGCCGGGCGCGGGCTGCGGTGGGTGGACCGGCACCGCCTCGCGTCGTGGCGTGGGAGTCTGCGGGAGGTCAACGCGGTCGTCGTCTACGACGGGAAGACGCCCGACGGCTTCTACGTCGTCCCGAGGCTCGAGGGCGACGGCGACCTCACGCGCCCGCCGATGGTGGGGGAGGTCGCGTGAMFPELDEQVLARLPWEIHEQHRNSYHLAMLSCAVRDQAGRGLRWVDRHRLASWRGSLREVNAVVVYDGKTPDGFYVVPRLEGDGDLTRPPMVGEVANANANANANA
AK018_03858792hypothetical proteinATGTCCGACCAGCAGCAGCATCCCGCGTGGTCTCCGCCGACCTCGCAGCAGCCCGCCCCGCAGGGCCAGGTCCCGGAGCCGCCCGTTCCTCCGGGCGGGTCCGGAGCGCCGCAGGCTCCCGAGCCGGGGCCGCAGAAGAGCTGGTTCGCGCGCCACAAGGTCCTCACCGGCCTCGGAGCGCTCGTCGGGATCGCCGTCGTCGGCGCCGCGTTCGGCGGTGGCGGCGACGAGGCGCCGGCGGACGCGGGCACGACGGCGGAGGTCGCCTCCGAGGATGCCGCGACGACCGAGGACTCCGGTCAGGACGCCGGGACCGACGACGGCGCGGCCGCGGACGGTCAGGACGTGGCCGATGCCGAGGAGCAGGCGGAGGAGCCCGCCACCGATGCCGCGGACCTGCCAGGGCTCGGCGACGCCGCGCGCGACGGCAAGTTCGAGTTCACGGTGACCGAGCTCGAGGACGGCGTGGCGCAGATCGGGAACGAGTACCTCAACACCGAGGCGCAGGGACAGTTCGTGCTCGTCCACATGGCGGTGGAGAACATCGGCGACGAGGCGCAGTACTTCGACGGCAGCAGCCAGAAGCTCGTCGACACCGAGGGCCGCACGCACTCGGCGGACTCCGAGGCGGCGATCTACCTCGACGACTCGAACAGCTTCCTCAACGAGATCAACCCGGGCAACACCGTGGACGGCGTCGTCGTCTTCGACGTCCCGACGGACGCGACGCCCGCGACGCTCGAGCTGCACGACTCGGCGTTCTCCGGCGGTGTCGAGGTCTCGGTGCAGTGAMSDQQQHPAWSPPTSQQPAPQGQVPEPPVPPGGSGAPQAPEPGPQKSWFARHKVLTGLGALVGIAVVGAAFGGGGDEAPADAGTTAEVASEDAATTEDSGQDAGTDDGAAADGQDVADAEEQAEEPATDAADLPGLGDAARDGKFEFTVTELEDGVAQIGNEYLNTEAQGQFVLVHMAVENIGDEAQYFDGSSQKLVDTEGRTHSADSEAAIYLDDSNSFLNEINPGNTVDGVVVFDVPTDATPATLELHDSAFSGGVEVSVQNANANANANA
AK018_038591455hypothetical proteinGTGCCGGGCTACCCCGGCTCCCACGAGGGAGCCGCCGCGCCCGATCCGTACGCCGGCTCGTCCGCGGCGCCCTTCCCGGCCTCGTACGCCGGCGGGGCAGCGCCGTCGCCGTACCCGCCGTCGCCCTACCCCGGCCCGACGCCGTACCCGGGTCCGATGCCGCACGCGCCCTCCCCCGGGCCCCCGCCCGCCGGACCGGCCCCGAGGCCGCCCGGCCAGGGGCGTCGCACGGCGAGCCGGTGGGGGTCGATCAGCGCCGTGGCGGTCACCTGGTTCTGCGCCGTCACGGGCGCGGCCTTCGCGGCGCCGGCCGAGCTCACGAACACCCAGGTCGCCGTCTTCCTGCTCTGGTTCGTCGTCGCGGCCGGGGTGGCGGCAGCCGTGTGGTGGCGCACCACGCACCCGGTCGCGGTCTGCCTGGCGACCGCCGCGGTCGGGATCGTCAGCCCGCTCGGCGCCGTCGCCCCGCTCCTCGCCCTGCCCTGGGTGGTGGCGCGCACCGACCTGCGGCGCAGCCTGCTGTGCGGTGGCGCGACGACGCTCGCGCTGATCGCGACGTTCTGGCGCGACGCCGCCCGCGAGGGCGAGAACGTCATCTTCTCCGCGACCGCGGAGGACGGCGGCGCGACCTCCTCCATGACGCCCCTCGGCTACCTGATCCTCGGCGTGCTGGCCCTGGGGCTCGCCGTCGGCGTCGGGCTGCTGCGCCGGGTCGCCACCCGGGCCGGGGCCGACGCCGACGCCGCCCGGTCCGTCGCCACCGCCGAGTCGCGGCGGGCTGCGACGTTCCAGGCGCGGTCCGAGACGCTGCAGACCGAGCTCTCGCGGCAGGAGGAGCGCGACCTCATCGCCCGCGAGATGCACGACACGGTGGCGCACCAGCTCTCCCTGATGTCGCTGCAGGCCTCGGCCCTGGAGGTGTCGTCGGAGGACGCCGAGACCGGCGACGCGGCCCGGTCGATGCGGTCCTCGGCGCACCGTGCGCTGGAGGAGATGCGCACGCTCATCACGTCGCTGCGCGAGGGTGCCGAGGACTATGCGGGTCGGGACTGGACCCTGGACGACCTGGCCGACCTGCTCGACGGCGCCGGGGACCGGGGCGTGGACCTGGTGGCGACGGTGTTCGTGACCGACGGTGACGCCGCGCCGCCGACCCTGACCCGCACGGTGTACCGCGTGGTGCAGGAGTCGCTGACCAACGCGGCCAAGCACGCCCCCGGCGCGCGCGTCGCGGTCAGCGTCCGGGCGCGACCGGTCGACGGCATCGACGTCTCGGTACGCAATCCGACCCTCCCGGTCGACGGGCCCGCGGCGGCGCCCGGGAGCGGCTCAGGCCTGCGCGGGATGCGGGAACGCTGCGAGGCGCTCGGCGGCACGTTCGACGCCGGCCGTCAGGACGACGACTCGTTCCTGGTCCGCGCCCACCTGCCCTGGTCGCCGACGCCGGAAGCGTAGMPGYPGSHEGAAAPDPYAGSSAAPFPASYAGGAAPSPYPPSPYPGPTPYPGPMPHAPSPGPPPAGPAPRPPGQGRRTASRWGSISAVAVTWFCAVTGAAFAAPAELTNTQVAVFLLWFVVAAGVAAAVWWRTTHPVAVCLATAAVGIVSPLGAVAPLLALPWVVARTDLRRSLLCGGATTLALIATFWRDAAREGENVIFSATAEDGGATSSMTPLGYLILGVLALGLAVGVGLLRRVATRAGADADAARSVATAESRRAATFQARSETLQTELSRQEERDLIAREMHDTVAHQLSLMSLQASALEVSSEDAETGDAARSMRSSAHRALEEMRTLITSLREGAEDYAGRDWTLDDLADLLDGAGDRGVDLVATVFVTDGDAAPPTLTRTVYRVVQESLTNAAKHAPGARVAVSVRARPVDGIDVSVRNPTLPVDGPAAAPGSGSGLRGMRERCEALGGTFDAGRQDDDSFLVRAHLPWSPTPEANANANANANA
AK018_03860669degU_2COG2197Transcriptional regulatory protein DegUATGTCGCAGGTCACCAGTAGTGTCGAGGCCGTGACACGGGTTCTGGTCGTCGACGACGACACGATGGTGCGGCAGTTCCTGCGACAGATCCTCACCGCACGCGGCCTGGAGGTCGTCGGCGAGGCGGCCGACGGGGACGAGGTGGTCGCCGCCGTCCGGGCGCACCGTCCCGACGTCGTGCTCATGGATCTGCGCATGGCACGCCTCGACGGTGTGCGCGCCACCGCCGCCGTCGTCGAGCTGCCCGACCCGCCGGGCGTGGTCGCCATGACGTCCTTCGACACGGAGTCGGCGATCCTCGACGCCGTGCACGCCGGCGCCGCCGGGTTCCTGGCCAAGGACTCCGGCCCGGACGAGCTGGTCGCGGCCGTCGAGGCCGTCGCCGCCGGGGAGGGGGCCCTGTCGCCACGGGCCGCCCGGGTGGTCGTGGAGCAGGTCGGCAAGGCGTCGGGCGCCCGAGGGCGGGACGAGGCCCGCGCGGAGCTGGCACGGCTCACCGACCGCGAGCGCGAGATCGCTCACCAGGCGGCCCGGGGCCTGACGAACGCCCAGATCGGCGCCGAGCTCTACCTCGGGGCGGCCACCGTGAAGACCCACCTCGGCACGGCCTGCCACAAGCTCGGGGTGAACCGGGTCCAGCTCGCGGTCCTCGTGGAACGGGCGGCCTGAMSQVTSSVEAVTRVLVVDDDTMVRQFLRQILTARGLEVVGEAADGDEVVAAVRAHRPDVVLMDLRMARLDGVRATAAVVELPDPPGVVAMTSFDTESAILDAVHAGAAGFLAKDSGPDELVAAVEAVAAGEGALSPRAARVVVEQVGKASGARGRDEARAELARLTDREREIAHQAARGLTNAQIGAELYLGAATVKTHLGTACHKLGVNRVQLAVLVERAAPGPT0014870_135DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
AK018_03861393hypothetical proteinGTGGACGACGCGACCCGCTGCCCCTGCCTGTCCGGCCTTCCGTACGGGGAGTGCTGCGCCCCGCTGCACCGCGGCGAGCGCACCGCCCCGACCGCCGAGGCGCTGATGCGGTCCCGCTACAGCGCCTTCGCCACCGGCGACGCCGACTACCTGAGCGCGACCTGGCACCCGCGCACCCGCCCGTCGTCGCTGGACCTGGACCCGGGCCGCCGCTGGCGGCGCCTGGACATCCTCGGCACCAGCGCGGGCGGCCCCTTCGACGACGCCGGCGAGGTCGAGTTCGTCGCGACGTTCACCGACGACGACGGCGGCCGCGGCCGGCTGCACGAGCGCAGCCGGTTCGTGCGCGAGGGCGGCACGTGGCTCTACGTCGACGGCGACGTCCGGCCCTGAMDDATRCPCLSGLPYGECCAPLHRGERTAPTAEALMRSRYSAFATGDADYLSATWHPRTRPSSLDLDPGRRWRRLDILGTSAGGPFDDAGEVEFVATFTDDDGGRGRLHERSRFVREGGTWLYVDGDVRPNANANANANA
AK018_03862333hypothetical proteinGTGTCGGAGGCCGTCGCTACCGTCGTCGGCATGACTTTCGTGAACGTCGGCACCCTCGGTGCCGCTCCCGGCAAGCGCGACGAGCTGGTCGCCCACCTGACGGCCCGCAGCGACGAGCTCGCCGACGCCGGCTGCCTGTCCTACGAGGTCGGTGTCAACGACGAGCATCCCGACACCGTCTACGTCGCCGAGATCTGGACGTCGGCGGAGGCGCACCGCGCCTCGCTGCAGCTACCCGGTGTGCAGGCGTCCATCGCGGCGGCCAGGCCGCTGCTGTCCGGGGAGATGGGCGGGTTCCGGTTCGACGTCGTCGGCTCCCCGCTGCGCGACTGAMSEAVATVVGMTFVNVGTLGAAPGKRDELVAHLTARSDELADAGCLSYEVGVNDEHPDTVYVAEIWTSAEAHRASLQLPGVQASIAAARPLLSGEMGGFRFDVVGSPLRDNANANANANA
AK018_03863420hypothetical proteinATGACTGCCACCCTGACCCGCACTCCGCTGACCGACGCGCTGTTCCGCGACCTGTGGACCCCGCGCCCGGCAGCCCCCGCCGACGCCAAGCCCGCCGCGGACGTGTACCGCGAGGGCGAGGACCTCGTCGCCCGCCTCGACCTGCCGGGCATCGACCCGGCCGAGGACGTCACCGTCGAGGTCGAGGGCCGCAAGCTCGTCGTCCGTGGCGAGCGCAAGGACCAGCGCGGCGAGGAGTCCGAGGGCCGCCGCGTCTCGGAGGTGCGCTTCGGCGCCTTCCGCCGCGTCGTCACCCTGCCGAAGGCCGTCGAGGCCGACGCGGTGACGGCGTCCTACGACGCCGGTGTCCTGACGGTCACCGTGGCCGGCGTGTTCGCCGGCACGACCCCGCAGCGCATCGAGGTCACCACCGCTGCCTGAMTATLTRTPLTDALFRDLWTPRPAAPADAKPAADVYREGEDLVARLDLPGIDPAEDVTVEVEGRKLVVRGERKDQRGEESEGRRVSEVRFGAFRRVVTLPKAVEADAVTASYDAGVLTVTVAGVFAGTTPQRIEVTTAAPGPT0014635_7792DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014635-hsp20-K13993NANA
AK018_03864330hypothetical proteinGTGAGGCGCGACGACGTCGATCACGCCCTGGAGGCGCTCGAGCACCTCGACGTCCTCGCTGCCCACCTCGAGCTGGGATCCTGGTCCGACCAGATCCTGGTCGACGCGGTCTGTCTGCGGCTCGCCGCCGCGATCGATGCGGCCTCGCGAGTGAGCGAGGGAGTTCGGTCGGAGGTCTTCGGCGACACCTGGCCCGCAGTGCGCGCGACACGCAACCGCATCGTGCACGGTTACGTGGCGGTCGATGCCGAGATCGTGCGGGCGACCGTCGAACACGACCTGAACGCGTTCCGTGCCGCGCTGACCGGCCTCGCCCGCACGGCCCCATGAMRRDDVDHALEALEHLDVLAAHLELGSWSDQILVDAVCLRLAAAIDAASRVSEGVRSEVFGDTWPAVRATRNRIVHGYVAVDAEIVRATVEHDLNAFRAALTGLARTAPNANANANANA
AK018_03865534hypothetical proteinATGGAAGGCGAGGAGTCGGCCGTCGAGCGTGCGTTCGCGGACTACCTGGCAGGTCTGGGATCCCGTGCGGACGACCTGCGCGCCGAAGCGAGCCGGACGCTGGAACGCGGTGTCCGCCAGGCGCATGATCTCGGGTGGAGCCAGCGCCGGATCGCGCGGTCGTTGGGGCGTAGCCAGCCCGAGGTCAAGCGCCTCCTGGGCCGTTCGGTCGCGTCGGAGGCCGAGGCTCTCGCTGCGGCGGGAGGCAGCACCGTGCTCGACGCGGTCCTGCGACAGCATCGGGACGACGTCGTCGACGCAGCGGCCAGGCGCGGAGTGCGTCACCTGCGCGTCTTCGGCTCCGTCGCTTCCGGCGAGGACGGCCCGGAATCGGACGTGGATCTGCTGGTCGACGTCGACGACGGCGTGGGCCTGTTCGCGCTGGGCGCGTTGGAGGCCGAGCTCTCGGCCATCCTGGGCCGGCCCGTGGACATCGTTCCCGAGCGGTCGCTCCGTCCCGTGGTGCGAGCATCCGTCGTGGCGATCCCGCTGTGAMEGEESAVERAFADYLAGLGSRADDLRAEASRTLERGVRQAHDLGWSQRRIARSLGRSQPEVKRLLGRSVASEAEALAAAGGSTVLDAVLRQHRDDVVDAAARRGVRHLRVFGSVASGEDGPESDVDLLVDVDDGVGLFALGALEAELSAILGRPVDIVPERSLRPVVRASVVAIPLNANANANANA
AK018_038661230hypothetical proteinGTGACCGAGAGGCAGGACATCGTGCTGCGCAGCACCGACCGCATCGAGACCACCCACGCCGGCTCCCTGCCGCGCACCGCCGAGCTGCTCGCCGCCAACGCGGCCCGCGAGAGCGGGGACGCCGACGGCGACTTCGGCCGGTTGCTGCGCGACGCCGTCGCCGACGTCGTGCGCCGCCAGCAGGAGGCCGGGATCTCCGTGGTCGGCGACGGCGAGTACGGCAAGTCGATGTCCTCGCCGATGGACTTCGGCGCCTGGTGGTCGTACTCGTTCCAGCGCACCGGCGGGCTCGAGCTCGACACCGACGCGCAGTGGGTGCTGGCGGACGTGCAGTCCGCGCCCGGCGACGTGCGGCTGACCGGGTTCGGCAACCGCCGCGACCAGGCGCGGTTCCGCGAGGCGTACACCGACCCGACGTCGGGTATCTTCCACGGCGAGGGGCCGGGGCAGTTCCCGAAGGTCACCGGGCCGCTGACGTACACCGGGCAGGCCGCCGTCGCGCAGGACGCCGCGAACCTGCGGGCCGCTGCCGACGCCGCCGGGGTGACCGACGCGTTCGTCACCTCGATCGCGCCCGGGTCGGCGACGCGGATCCACAACGAGCACTACGCGACGCACGAGGAGTACGCCTACGCGTGGGCCGACGTCCTGCGCGAGGAGTACCTCGCGATCGTCGACGCCGGGCTCATCGTGCAGATCGACGACCCGGGGCTGGCCGAGTCCTGGGACCAGGTCACGCCGGAGCCGACCGTCACCGACTACCTGGACTTCTCGCGGATCCACGTCGAGGCGCTCAACCACGCGCTGCGCGGCATCCCGCCGGAGAAGGTGCGGTACCACCTGTGCTGGGGCTCGTGGCACGGGCCGCACTCCACGGACCTGCCGATGCGGGAGATCGTCGGGCTCATGCTCGACATCGACGCCGGGGCGTACTCCTTCGAGGCGGCGAACGTGCGGCACGAGCACGAGTACCGCGTCTGGGACGACGTCGAGCTGCCCGAGGGCAAGCTGATCCTGCCCGGCGTGGTCTCGCACGCGACCAACGTGCTGGAGCACCCCGAGCTCGTCGCCGAGCGCATCGAGCGGTTCGCGCGGCGGGTCGGCCGGGAGAACGTGCTGGCCTCGACCGACTGCGGGCTCGGCGGGCGCGTGCACCCGCAGATCGCGTGGGCCAAGCTCGAGTCCCTGGCCGCCGGCGCGCGGATCGCCTCGGAGCGGCTCTGGGGCTGAMTERQDIVLRSTDRIETTHAGSLPRTAELLAANAARESGDADGDFGRLLRDAVADVVRRQQEAGISVVGDGEYGKSMSSPMDFGAWWSYSFQRTGGLELDTDAQWVLADVQSAPGDVRLTGFGNRRDQARFREAYTDPTSGIFHGEGPGQFPKVTGPLTYTGQAAVAQDAANLRAAADAAGVTDAFVTSIAPGSATRIHNEHYATHEEYAYAWADVLREEYLAIVDAGLIVQIDDPGLAESWDQVTPEPTVTDYLDFSRIHVEALNHALRGIPPEKVRYHLCWGSWHGPHSTDLPMREIVGLMLDIDAGAYSFEAANVRHEHEYRVWDDVELPEGKLILPGVVSHATNVLEHPELVAERIERFARRVGRENVLASTDCGLGGRVHPQIAWAKLESLAAGARIASERLWGNANANANANA
AK018_03867726COQ5_52-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialATGCCCGCCACCGTCCGCCTGATCGACGACGTCCGCCCCGAGGAGTCCGACCACGACTTCCTGCCCGGCATGCGGCGCGCCTGGCTCATGCCCTGGTACGACCTGACCGCCCGCCTGCGCGGCGTGCACCGCCTCTACCGGCGCACGGTCGAGATCGCGGGGATCACCGCGGGGCAGCACGTGCTCGACGTCGGCTGCGGCACGGGCAACCTGAGCCGCGAGGTGCTGCGTGCCACGCCGGACGCGGTCGTCACCGGGCTGGACCCCGACGGCGACTCCCTGCGCCGCGCGGCCCGCAAGCTGCGCCGTCGGCGCTCCGGCGACGTGACGTTGATCCGCGGGTTCGCGCACCGCCTGCCCGTGCCGGACGCCGGCCAGGACCACGTCGTCTCGTCCCTGGCGCTGCACCACGTCCCGCTGGCCGAGAAGCAGCAGCTCGCCGCGGAGCTGGTGCGGGTGCTGCGGCCGGGCGGGCTCGTGACGATCGCCGACTTCGCCGGCGACCACGCCGGCGACCACGCCGCCGGTCACGGACGCGGGCACCGCCACGGCGGCGAGGGGCACCAGCCCGGGCACGGTCCCGGCAGCACGGCCTACGACGCCGACAACGCCGACGGGGGCATCGAGAAGCTGCTCACCGCGGCCGGGCTGGAGGACGCCCGGGCGCTGGAGCGGATGCCGCTGCTGGGCGACTCGGTGGTGTTCGTCCAGGCACGGCGGGCCTGAMPATVRLIDDVRPEESDHDFLPGMRRAWLMPWYDLTARLRGVHRLYRRTVEIAGITAGQHVLDVGCGTGNLSREVLRATPDAVVTGLDPDGDSLRRAARKLRRRRSGDVTLIRGFAHRLPVPDAGQDHVVSSLALHHVPLAEKQQLAAELVRVLRPGGLVTIADFAGDHAGDHAAGHGRGHRHGGEGHQPGHGPGSTAYDADNADGGIEKLLTAAGLEDARALERMPLLGDSVVFVQARRANANANANANA
AK018_038681242hypothetical proteinATGCGACGCCGCACCCTGTCCGCCGCCACGGCCACCGCCGTGGCCCTGACCGCCTGTCTCGTCCCGGCCGCCGCGCACGCCGCCGACCCCGGCCGCTCCGGCGACGCTCCCGGGCAGCAGTCCCTGCGGGTGGCGACCTACAACCTGTCGCTGAACCGCAGCACCGAGGGCGGCCTGGTCACCGACCTCTCGACCCCGACGAACCCGCAGGCCCGCACGGTCGCGGAGATCATCCAGCGCACGGACCCGGACGTCGTGCTCCTCAACGAGTTCGACGTCGACGCCGCGGGCGAGGCCGTCGACCTGTTCCGCGAGCACTACCTGGAGGTCTCCCAGGGCGGCGCCGCCCCGGTGGAGTACCCGTACGCCTACACCGCGCCGTCGAACACGGGCGTGGCCAGCGGGTACGACCTGAACAACGACGGCTCGGTCGGCGGGCCGGACGACGCGTTCGGCTTCGGGTTCTTCCCGGGCCAGTACGGCATGGCGGTGCTGTCGAAGCACCCGATCGCGACGGACGAGGTGCGCACCTTCCAGCACTTCCTGTGGAAGGACATGCCGGGCGCCCTGCTGCCCGACGACCTCGACACCCCGGAGCCGGCCGACTGGTTCAGCGCGGAGGAGCTCGAGGTGGTGCGGCTGTCCAGCAAGTCGCACTGGGACGTGCCGGTGGAGGTCGACGGCACGACGGTGCACGTGCTCGCCTCGCACCCCACGCCGCCCACGTTCGACGGTCCGGAGGACCGCAACGGTCGCCGCAACCACGACGAGATCCGGTTCTGGGCGGACTACGTCACCCCGGGCCAGGCCTCGCGCTACATCTACGACGACGACGGCGGTCGCGGCGGTCTGCAGCCCGGCGCACCGTTCGTGATCCTCGGCGACCAGAACGCCGACCCGCACGACGGCGACTCGTTCGACGCCGCGATCGACCAGCTCCTGGACCACCCGCGGATCACCGATCCGCTGCCGACGTCGGAGGGTGCCGTCGAGGCGGCCGCGCTGCAGGGCGGCGCGAACGACGCCCACACCGGTGACCCGGCGTACGACACCGCGGACTTCGCGGACGGGGCGCCGGGCAACCTGCGCGCCGACTACGTGCTGCCCTCACAGCACCGGCTGCGCGTCCAGGGCGCGGGCGTCTTCTGGCCGGTGCAGGCCGACCCGCTGTCCGCGCTGACCGGCACCTACCCGTTCCCGAGCAGCGACCACCGGCTGGTCTGGGTCGACCTGGCCCTCTGAMRRRTLSAATATAVALTACLVPAAAHAADPGRSGDAPGQQSLRVATYNLSLNRSTEGGLVTDLSTPTNPQARTVAEIIQRTDPDVVLLNEFDVDAAGEAVDLFREHYLEVSQGGAAPVEYPYAYTAPSNTGVASGYDLNNDGSVGGPDDAFGFGFFPGQYGMAVLSKHPIATDEVRTFQHFLWKDMPGALLPDDLDTPEPADWFSAEELEVVRLSSKSHWDVPVEVDGTTVHVLASHPTPPTFDGPEDRNGRRNHDEIRFWADYVTPGQASRYIYDDDGGRGGLQPGAPFVILGDQNADPHDGDSFDAAIDQLLDHPRITDPLPTSEGAVEAAALQGGANDAHTGDPAYDTADFADGAPGNLRADYVLPSQHRLRVQGAGVFWPVQADPLSALTGTYPFPSSDHRLVWVDLALPGPT0002580_13DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATASE_ACTIVITYP-SOLUBILISATION-PHYTASE_PRODUCTION,PGPT0002580-phy|phyA|phyB|phyC-K01083NANA
AK018_03869507hypothetical proteinATGCCGATGGTCCTGCGCCCGCCCCGCCTCGACGACGAGTCCACCCTGCGCCGCATCCACGCCGAGATGCTGGACGAGGGCTTCTCCTTCCTGCTCGCCGAGGGCACGTGGGACGAGATCCTCGATCGCGTCGCCCGGGACGCGGCCGGCGCGGACCTCCCGCCGGGGTGGGTGCGCGCGGACTGGCTCGTGGCCGAGGTCGACGGTGTGCCGGTCGGGCGGGTGTCGGTCCGCCACTCGCTCGGTACCGGGTTCCTGCGGGAGATCGGCGGGCACGTGGGCTACGGCGTCGCGCCGGAGCACCGTCGCCGCGGGTACGCCACCGCGATGCTGCGGCTCGCCGTCGAGCGGCTGGCCGGGCTCGGCGTCGAGCGGGTGCTGGTCACGTGCGACCACGACAACGTCGGCTCCGCCGCCGTCATCGAGGCCTGCGGTGGCGTGCTCGAGGGCCTGCACCCGGTCGCGGGGGAGTCTCCCAAGCGGCGCTACTGGATCACCGCGCGGTGAMPMVLRPPRLDDESTLRRIHAEMLDEGFSFLLAEGTWDEILDRVARDAAGADLPPGWVRADWLVAEVDGVPVGRVSVRHSLGTGFLREIGGHVGYGVAPEHRRRGYATAMLRLAVERLAGLGVERVLVTCDHDNVGSAAVIEACGGVLEGLHPVAGESPKRRYWITARNANANANANA
AK018_038701002oleD_2COG04512-alkyl-3-oxoalkanoate reductaseATGACGGTGCTGGTCACGGGCGCGTCCGGGATGCTCGGCGCGGGCGTGGCGCGCGCGTTGGTCGCGCGCGGCGAGTCCGTGCGCACCCTGCAGCGCCGTCCCTCCGGGGTGCCGGGCGTCGAGGACGTCGCCGGGTCGCTGACCGACCCGGCCGCGGTGGCCGACGCCGTCGACGGGGCCGACGCCGTCGTGCACCTCGCCGCGAAGGTGTCGCTGGCCGGGGACCCGGACGAGTTCACCGCCGTGAACGTCGAGGGCACCCGCACCCTGTTGGACGCCGCCGAACGCGCCGGGGTGCGACGGTTCGTGCAGGTGTCCTCGCCGTCGGTGGCGCACGCCGGGACGTCGCTGGTGGGTGTCGGGGCGGGACCGGCCGACCCCGAGGGGGCGCGCGGCGCGTACGCCCGGACCAAGGCCGTCTCCGAGCTGCTGGCCCTGGCACGGGACGGCGCGGGGTCCGACGGCGGGCTGCGCGTCGTGGCCGTGCGCCCACACATCGTGTGGGGCCCCGGGGACACCCAGCTCGTGGAGCGGGTCGTCGACCGGGCGTCGTCGGGGCGCCTCCCGCTGCTCGGGCACGGCGCCGCGCTCATCGACACGACGTTCCTGGACAACGCGGCCGACGGGATCGTCGCCGCCCTGGACCGGCTGGAGGACACCCCCGAGGCCGTCCACGGCCGGGCGTACGTGATCACCAACGGGGAGCCGCGCCCGGTGGCCGACCTGCTGGCCGGCATCTGCCGCGCCGCCGGGGTGGAGCCGCCGCGGTGGCGGGTGCCGGCCGGCCTGGCGCGGGCCGCGGGCGGCGCCGTCGAGGCCGTGTGGCGCGTGCGCCCCGGTACCGACGAGCCGCCGATGACGCGGTTCCTGGCCGAGCAGCTCTCCACGGCGCACTGGTTCGACCAACGCGAGACCTGGGCCGACCTGCGCTGGCGTCCCGCCGTCAGCATCGACGAGGGGTTCCGACGGCTGGCCGCCTACTACGGCGGCACGGCGCCCTGAMTVLVTGASGMLGAGVARALVARGESVRTLQRRPSGVPGVEDVAGSLTDPAAVADAVDGADAVVHLAAKVSLAGDPDEFTAVNVEGTRTLLDAAERAGVRRFVQVSSPSVAHAGTSLVGVGAGPADPEGARGAYARTKAVSELLALARDGAGSDGGLRVVAVRPHIVWGPGDTQLVERVVDRASSGRLPLLGHGAALIDTTFLDNAADGIVAALDRLEDTPEAVHGRAYVITNGEPRPVADLLAGICRAAGVEPPRWRVPAGLARAAGGAVEAVWRVRPGTDEPPMTRFLAEQLSTAHWFDQRETWADLRWRPAVSIDEGFRRLAAYYGGTAPNANANANANA
AK018_038712736dhmA_2Haloalkane dehalogenaseGTGACGCTGCGCCCCGCGAGCACCGTCCCGCCGGACCTGCCCGGCCTCGAGTCCCGCTTCAGCCACGTCCGTGGCGACTGGCACTACCTGGACAACGGCGCCGAGCTGTCCGCGCACGGCATCGAGCCGGTCGGCACCGTCCTCGCGGTGCACGGCAACCCGACGTGGTCCTACCTGTGGCGGGACCTCGTCGAGACGGTCACGGACCGGGCGATCGAGGTCTCGGCCGCGCTCGGCGAGTACCCGGACGGCGTCCGCGGCGCCTGGCGCGTCGTCGCCGTCGACCAGCTCGAGATGGGGCTGTCCGCCCGCACGGGACGACGCCGCACCCTGGCCGACCGCGTCGCCGACCTGTCCGCCTTCACCGCCGACCTCGGCCTGGACGGGCCGGTCGTCACGCTCGGGCACGACTGGGGCGGCGTCGTCTCGCTCGGCTGGGCCGTCGACCACCCCGACCAGCTCGCCGGGGTCGCGCTGCTCAACACCGCCGTGCACCAGCCCGAGGACGTCGCGATCCCCGCCCCGCTGCGCCTCGCCCTGGCCCGGGGCGTCCACCGCTGGGGCACGCGCACCACGCGCGCCTTCCTGGAGACCACGCTCGGTCTCGCGCGCCCGCGGCTGGACCGCGACGTCGCCGACGCCTACCGGCTGCCCTACCGCTCCGCCGACGACCGCGACGGCATCGAGCAGTTCGTCGCCGACATCCCCGCCGCGCCGGACCACGTCAGCCGCCCCGAGCTGGACCGCATCGCCGACGGCGTCCGTCGGCTCGACGTCCCGGCGCTGCTGCTGTGGGGAGCCCACGACCCGGTGTTCTCCGACCGCTACCTCGCCGACCTGCTGCGCCGGCTCCCGCACGCCCGGGTCCACCGCTTCGAGGACGCCGGGCACCTCGTCGCCGAGGACGTCGACTACGCCGGGCCGGTGCTGAGCTGGTTGGGCTCGGCGGCGGTGGTTCCCGAGGGCTCCGGCGGAGACGCGTTCACGGGCCCTGGGGGGCCCTCCACTTCGGGGACAACGTCCCCGCCGGAGCCCTCGGGAACCGCCGCGTCGTCGACGGCAGCGGACAGCACGGGGTTCCGGCCGATCTGGGCGGGGCTCGACGAGCGCGCCGCCGACCCCGTGTCGCGCACCGACCAGGCCGTCCTGGACCTCACTGCCACCGGCGCCGGACGCGTCGTGAGCTGGGGAGCGCTGGACCGGCAGGTGCGGCGCCTCGCCGCCGGCCTGCACGAGATCGGGGTGCGCCGCGGCGACCGGGTGTCGCTGCTGGTCCGGCCCGGGCCCACGCTGACCGCCCTGGTGTACGCCTGCCTGCGGATCGGCGCGGTCGTCGTCGTGGCCGACGCCGGTCTCGGCCTGCGCGGGCTGACCCGCGCCCAGCGGGGTGCGTGGCCGCAGTACCTGATCGGGCAGACGACGGCGCTGGCGGCCGCCCGCGCGGCCGGCTGGCCGGGCGTGCGGATCGCCGTCGACCCGATCGACCCGGTCCGACGCCGGGCGCTGGGTGTGGACCACGAGCTGATCGACGTCGCGCGCGCCGGGGAGGGCCTCGAGCTGCCGCCGGAACCCGGGCCGGACGACGACGCGGCCGTGCTGTTCACCTCCGGGTCGACCGGTCCCGCCAAGGGGGTGCTGTACACGCACCGCCGGCTGTCCGCGCTGCGCGACGTCCTGGCCGAGCACGTCGCCGTCGGCCCGGACACCGGGCTGGTCACCGGGTTCGCACCGTTCGCGCTGCTCGGCCCGGCGCTCGGCACCCGCTCGGTGACGCCCGACATGGACGTCTCCGCGCCGCGCACGCTGACGGCTCGCGCGGTGGCCGACGCCGTGAAGGCCACCGACGCGCGCATGGTGTTCCTGTCCCCGGCGGCGATCCTCCACGTGGTCGACACTGCGGACCGGCTCACCGCCGTCGACCGGGACGCGCTGGGGCGCGTCGAGACGTTCCTGTCCACGGGTGCGCCGATCAGCGCCGCGCTGCTGGAGGCCGCGCAGTCGCTCATGCCGGCGGCCGAGGCGCACACGCCGTACGGCATGACCGAGTGCCTGCTGGTCACCGACATCACGCTGGACGGCATCCGCGACGCCGCGGGCGCGCCCGACACCGGAGTCTGCGTGGGCCGGCCGATCGTCGACCCGGCCGACGGCGGCGTCCTGATCAGCGCGCTGGACGACGACGGCGCGGCCACCGGGCCGCCGTCGGCCGACCCCGGGGCGCTGGGCGAGGTGCTGGTCAGCGCGCCGCACCTCAAGGAGCGGTACGACCGGCGGTGGCTCACCGACGTCGCGGCCGAGCGGGACACCCCGCCGGGGCACTGGCACCGCACGGGCGACGTCGGCCACCTGGACGACGCCGGGCGGCTGTGGATCGAGGGGCGGCTCGCGCACGTGCTGACGACGTCGGCGGGTCCGCTGGCCCCGGTCGGTCCGGAGCAGTCGATCGAGCGGGTCGACGGCGTGCGCCGCGCCGCCGTCGTCGGTGTCGGACCGGCCGGGGTCCAGCAGGCCGTGGCCGTCGTCGAGCCGGAGCGCGCGAGCGGCCGGGTGCGGCCGGGGTTGGCGCCCGAGGATCTCGACGCCGCGGTGCGGGAGTCCTCGTCCGTGCCGCCGGCCGCGGTGCTCGTGGTGCCGGAGATGCCGACGGACGTCCGCCACAACTCCAAGATCGACCGGGCCCGGCTCGCGGACTGGGCGTCCGGCGTCCTGGCGGGCGGGCGGGTGACCGCGCCATGAMTLRPASTVPPDLPGLESRFSHVRGDWHYLDNGAELSAHGIEPVGTVLAVHGNPTWSYLWRDLVETVTDRAIEVSAALGEYPDGVRGAWRVVAVDQLEMGLSARTGRRRTLADRVADLSAFTADLGLDGPVVTLGHDWGGVVSLGWAVDHPDQLAGVALLNTAVHQPEDVAIPAPLRLALARGVHRWGTRTTRAFLETTLGLARPRLDRDVADAYRLPYRSADDRDGIEQFVADIPAAPDHVSRPELDRIADGVRRLDVPALLLWGAHDPVFSDRYLADLLRRLPHARVHRFEDAGHLVAEDVDYAGPVLSWLGSAAVVPEGSGGDAFTGPGGPSTSGTTSPPEPSGTAASSTAADSTGFRPIWAGLDERAADPVSRTDQAVLDLTATGAGRVVSWGALDRQVRRLAAGLHEIGVRRGDRVSLLVRPGPTLTALVYACLRIGAVVVVADAGLGLRGLTRAQRGAWPQYLIGQTTALAAARAAGWPGVRIAVDPIDPVRRRALGVDHELIDVARAGEGLELPPEPGPDDDAAVLFTSGSTGPAKGVLYTHRRLSALRDVLAEHVAVGPDTGLVTGFAPFALLGPALGTRSVTPDMDVSAPRTLTARAVADAVKATDARMVFLSPAAILHVVDTADRLTAVDRDALGRVETFLSTGAPISAALLEAAQSLMPAAEAHTPYGMTECLLVTDITLDGIRDAAGAPDTGVCVGRPIVDPADGGVLISALDDDGAATGPPSADPGALGEVLVSAPHLKERYDRRWLTDVAAERDTPPGHWHRTGDVGHLDDAGRLWIEGRLAHVLTTSAGPLAPVGPEQSIERVDGVRRAAVVGVGPAGVQQAVAVVEPERASGRVRPGLAPEDLDAAVRESSSVPPAAVLVVPEMPTDVRHNSKIDRARLADWASGVLAGGRVTAPNANANANANA
AK018_038721023oleA_2COG0332Acyl-CoA:acyl-CoA alkyltransferaseGTGTCTGGAAACGCCACCACCCGGTTCGGCAACGTCGCGCTGCTGTCCGTGACGCGCCGACTGCCGTCGCGCGTCACGTCGTCGTCCGAGATCCAGCAGCGGCTCGCTCCCGCGCTGAAGCGGTTGCGGCTGCCGCGCAACCTGCTCGAACGGGTCGCCGGCGTCGAGGAGAGGCGTAACTGGGGACCCGGTGAGGACGCCGACTCGGCCACGATCGCGGCCGGCCTGGACGCCCTCGACCGGGCCGGCGTCGAGCCGGACGAGGTGGGGCTGCTCATCAACACCTCCGTGACGCGCAAGCACCTCGAGCCGTCGGTCGCCGTCGGGCTGCACCACGGGCTGGGGCTGCCGAGCTCGGCCGTGAACTTCGACGTCGCCAACGCCTGCCTCGGGTTCATCAACGGCATGACGCTGGCCGCCGGCATGATCGAGTCCGGGCAGATCCGCTACGCGGTGATCGTCAACGGCGAGGACGCCGACGACATCCAGCACCACACCGTCGACCGGCTGCTCTCCCAGGACGTCGGCCGCGAGGGCTTCATGGAGGAATTCGCGTCGCTGACCCTGGGCTCCGGGTCCGCGGCCGCCGTGCTCGGGCCGGCCGACGCCCACCCCGAGGGCCACCGTGTGCTCGGCGGCGTGACCCGCGCCGGCACCCAGCACCACCGGTTGTGCGTCGGCAGCCCGGAGGGCATGTTCACCGACGCCGAGGGGCTGCTCGAGGGTGGCCTGGAGCTGGTCGTGGACGCCTGGAAGGACGCCATCGCCGAGTGGGACTGGGAGGCGATGGACCGCTACGTGACCCACCAGGTCTCGCGGGTGCACACCAACGCCATCGTCGAGGCCGTCGGCCTGGACCGCGCCAAGGTCCCCACGACGTACCCGACGCTGGGCAACGTCGGCCCGGCGTCGGTGCCCATCACGCTCGTCCAGGAGGCCGAGACCCTCAGCCGCGGCGACCGCGTGCTGCTCATGGGGGTCGGCTCCGGCATCAACACCGCCATGCTGGAGCTGGCCTGGTGAMSGNATTRFGNVALLSVTRRLPSRVTSSSEIQQRLAPALKRLRLPRNLLERVAGVEERRNWGPGEDADSATIAAGLDALDRAGVEPDEVGLLINTSVTRKHLEPSVAVGLHHGLGLPSSAVNFDVANACLGFINGMTLAAGMIESGQIRYAVIVNGEDADDIQHHTVDRLLSQDVGREGFMEEFASLTLGSGSAAAVLGPADAHPEGHRVLGGVTRAGTQHHRLCVGSPEGMFTDAEGLLEGGLELVVDAWKDAIAEWDWEAMDRYVTHQVSRVHTNAIVEAVGLDRAKVPTTYPTLGNVGPASVPITLVQEAETLSRGDRVLLMGVGSGINTAMLELAWNANANANANA
AK018_038731233ltaE_2Low specificity L-threonine aldolaseGTGCCCGAGACACCCACCGCCCTCCCGCCGTTCGCCTCCGACAACTACGCCGGCACCCACCCCGAGGTGCTCGCGGCCGTCGCCGCGGCCAACGACGGGTTCGCCGTCGCCTACGGGGACGACCCGTGGACCGCGCGCCTCGACGCACGGGTGGCCGAGGTGTTCGGACCCGGGGCGCTCGCGTTCCCGCTGGTCAACGGCACCGGGGCCAACGTGGTCTCGCTCATGTCGCTGTCCGAGCGGTGGGGCGGCGTCGTGGCCTCCGACCTCGCGCACGCCAACACCGACGAGAACGGGGCGCCCGAGCGGGTCGGCGGGCTGAAGATCCTCCCCTGCCCGTCGCGCGACGGCCGGATCGTGCCCGACGACGTCGCCCGCTGGGCCGGGCAGCGCCACGACGTGCACCGCGCCCACCCCGGCGTGCTGACGCTGACGCAGTCGACCGAGCTCGGCACCGTCTACTCGATCGACGCCGTGCGCGCCCTCGTCGAGACCGCCCACGGGCTCGGCATGGCCGTGCACGTCGACGGCTCCCGCCTGGCCAACGCCGCCGCGGTCCTCGGCTGCTCGCTGGGCGCCCTGACCCGCGACCTGGGCGTGGACGTCGTCTCCCTCGGTGCCGCGAAGAACGGCGGGATGCTCGGCGAGGCCGTCGTCGTCCTGGCCCCCGACGACGCCCCGCACGTGCCGGGGTCCGGGTACGACGGCGCCCGGCTGCGTCACGCGGCGGCCGGTGCGGTGCCGTACCTGCGCAAGGCGACGATGCAGCTCGTGTCCAAGACGCGGTACGTCTCGGCCCAGCTCCTGGCCCTGCTCGGCGAGCCGGGAAGCCCGGTGGACACCGCGAGCGCCGAGGCCGAGAGCGCCGACGGTGCCATGGCGCCGCTGTGGCACCGCAACGCCGCCCGCGCCAACGCGATGGCCCGTCGGCTCCGCGACGGGCTCGAGGCGGCCGGCGTGCTCGACCCCACGCTGACCGGACCGTCGTCGACCGAGCCCGGTGACGTCGTCGTCCCCCGCGGGGTGCGCGTCACCCGGCCGGTCGAGGCCAACGCCGTCTTCGCCACGCTGCCGCGCGAGGCCGCCGACCGGCTGCGGGAGCGGGCACGGTTCTACGACTGGGCGCCCGGGGAGACCCCCGACCGGGTCGAGGTGCGGTGGATGTGCTCATGGGAGACCCCGGCCGACGCCGTCGACGCGTTCGTCGCGGACGTCGCGGCCGAGGTGGCATGAMPETPTALPPFASDNYAGTHPEVLAAVAAANDGFAVAYGDDPWTARLDARVAEVFGPGALAFPLVNGTGANVVSLMSLSERWGGVVASDLAHANTDENGAPERVGGLKILPCPSRDGRIVPDDVARWAGQRHDVHRAHPGVLTLTQSTELGTVYSIDAVRALVETAHGLGMAVHVDGSRLANAAAVLGCSLGALTRDLGVDVVSLGAAKNGGMLGEAVVVLAPDDAPHVPGSGYDGARLRHAAAGAVPYLRKATMQLVSKTRYVSAQLLALLGEPGSPVDTASAEAESADGAMAPLWHRNAARANAMARRLRDGLEAAGVLDPTLTGPSSTEPGDVVVPRGVRVTRPVEANAVFATLPREAADRLRERARFYDWAPGETPDRVEVRWMCSWETPADAVDAFVADVAAEVAPGPT0020465_180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620NANA
AK018_03874954hypothetical proteinGTGACGTCCGACCGAAGAGTCCTCATCGCGCGCGAGCACGACCCCACGCGCCTGCAGCGTGCTGTCGCCTGCGGCGAGATCCGACGCATCCGCCGGGGCGCGTACCGACCGGCGGGGCAGGGGCCGGCCGGGGACGCCGGTGCCGACCGGTCGCTGGCGCTCGACCGGCTCCGTGCCGTCCACCGACAGCTGCGCAGCCCGCACGTCTTCAGCCATGCCAGTGCGGCGCTGCTGCACGGCGCGCCCTTGTGGCGGACGCCGCGGCGCGTGCACGTCCTCGTGCGCTCGCGACCGAGCGCTCGGTCGGCTCCGGACATCGTGCGTCGACGGGGGCTGCCGGAGCGAGCCGGTTCCGTGGACGGACTGCCGGTCACGGACCTGGACCGCACGGTGGTCGACTGCGCCCTGACGATGCATCCCCTGGACGCCCTGGTCGTCGCCGACTGGGCGCTCTCCCAGGGCCTGCACCGTGCCGGGACGCTCGACCGTCTCGCCCTGGTGCGCCGTCGCAACGGCACGGCCCGGGCGCGCTGGGTGCTCGAGCACGCCGACGACGGGGCGGAGTCACCGTGGGAGACCTGGGTGCGCTACCTGGCCCTGCGGACCGGACTCCCGCGCCCGCGTACCCAGCTGCCGGTCATCGCGGACGGGCGGCGCTACCGCGTGGACGTCGGCTGGCCCGAGCATCGCGTCCTGGTCGAGTTCGACGGCCGGGTCAAGTACGTCGACGGCGCGTTCGGTGCTGGCTACGACGCCGACCGGGCACGGTTCGCCGAGAAGCTGCGGGACGACGCGATCGCCGGGAGTCTCGGCGTCCGACCGTTGCGGTTCACGGCCCGGGACCGTGGGGCGCCGCTGCGGGTGACGTCGAGGTTGTTGTCGCAGTTCCCGCGGTCCGTGCGCGAGGAGGCGCGAGTGCTGCGCCTGCTCCCCCTCCCCGACGAGGCGTGGTGAMTSDRRVLIAREHDPTRLQRAVACGEIRRIRRGAYRPAGQGPAGDAGADRSLALDRLRAVHRQLRSPHVFSHASAALLHGAPLWRTPRRVHVLVRSRPSARSAPDIVRRRGLPERAGSVDGLPVTDLDRTVVDCALTMHPLDALVVADWALSQGLHRAGTLDRLALVRRRNGTARARWVLEHADDGAESPWETWVRYLALRTGLPRPRTQLPVIADGRRYRVDVGWPEHRVLVEFDGRVKYVDGAFGAGYDADRARFAEKLRDDAIAGSLGVRPLRFTARDRGAPLRVTSRLLSQFPRSVREEARVLRLLPLPDEAWNANANANANA
AK018_03875450hypothetical proteinATGACCGACGCAGGCACCACCGGACACACCGCCACCGCGTCCACGCACATCGCCGAGCCCCCGGAGCGGGTCTGGGCCGAGCTCATGCACCCCGGGGCCCGCTGGATGCTGGGTGCCAACATCGAGACCGACTTCCGGCCCGGCAGCCCGGTCACCTTCGAGGGGCACTTCTTCGGCCGGCAGTTCGCCGACAAGGGTCAGGTCATCGCCGTCGAGCGGCCCCGCCTGCTGCACTTCACGCACTTCGCCCCGCTCGGCGACCTGCCGGACGCACCGGAGAACTACCACGAGATCCGTATCACCCTCGAGCCCGACGACGGCGGTACCCGGGTCTCGGTGGTCCAGCAGAACATCGACACCGCCGAGCACGCCACGCGGTCCGAGCAGCACTGGTGCGAGGCGCTCGCGACGCTCGCCCACCGCGACGCCGCCCCGACCCCGGGGTCATGAMTDAGTTGHTATASTHIAEPPERVWAELMHPGARWMLGANIETDFRPGSPVTFEGHFFGRQFADKGQVIAVERPRLLHFTHFAPLGDLPDAPENYHEIRITLEPDDGGTRVSVVQQNIDTAEHATRSEQHWCEALATLAHRDAAPTPGSNANANANANA
AK018_038761227nagZ_3Beta-hexosaminidaseATGACGGGCGCGCGCCGGCGCGCGACGGTCCTGCTCGCGATGGCCGTGCTCGCGCTGGCGGCGTGCAGCACCCCGGGCACCCCGCCGGACCCCAGCGCGGGCCCGTCGCGCACGCCCGGACCGTCGGCGTCGCCGTCCGCCTCGCCGAGCCCGACGCCGTCGCCCACGCCCGCCCCGTCCGACGGCGCCGCCCCGGAACCCGACGACCCCGCCGCAGCCCTGTCGCTGGAGGAGAAGGTCGGCCAGCTGCTCGTCGCGGGCACGCCCGCCGCGGACGACGCCGTCGGCCCGGCGACACGGACCGCCGTCGTCGACCACCACGTCGGCAACGTGTTCCTGCACGGTCGCAGCGAGGCGGGTCTCGACGCCACGCGCGAGCTGGTGGACGCCGCCACGGCGCTCGCTCCGCCGTCGGCCCCGCCGATGCTGGTCGCGACCGACCAGGAGGGCGGCCTGGTCCAGGTGCTGCGCGGGCCCGGGTTCTCCGAGCTCCCCCGCGCGACCGAGCAGGCGACGTGGGCGCCGGCGCGGCTCGAGCGGGAGGCGACCGCCTGGGGCACCGAGCTCGCCGACGCGGGCATCAACCTCAACCTCGCCCCCGTGATGGACCTCGTCCCGGCGGCCAACCAGTCCGCGAACGCGCCGATCGGCTACTTCTCGCGCAACTACGGCACCACGGCCCGCTCGGTGGTCGACTCCGCCACGGCGTTCTCGGCCGGCATGCAGGCCGCCGGTGTCGAGCCGGTGATCAAGCACTTCCCCGGGCTCGGCCGGGTCACCGAGAACACCGACACCACCGAGGACGTGGTCGACGACACCATCACCGCGGGATCGGAGGACGTCGAGGTGTTCGGCGCCGGGATCGACGCCGGAGCCCGGTTCGTCATGCTGTCCAACGCCGTGTACACGCAGATCGACCCGGACCGCCCCGCGACGTTCTCCCCGGCGGTGGTCGCGATCCTGCGCGACGACCTCGGGTTCGACGGCGTGATCATCACCGACGACGTCTCGGCAGCCGCCGCGGTCGACGACCGGCAGCCGGCCGACCGTGCGGTCTCGGCCGTCGAGGCCGGGGTCGACCTCGTGCTGGCCTCCGCCGACCCGTCCGTCGTCCCGGAGATGGCCGACGCCCTGGTGGCCCGGGCGCAGGGCGACCCGGAGTTCGCGGCACAGGTCGACGCCGCCGTCGAGCGCGTCCTCGCCGTCAAGTCCGACCTCGAGGGCTGAMTGARRRATVLLAMAVLALAACSTPGTPPDPSAGPSRTPGPSASPSASPSPTPSPTPAPSDGAAPEPDDPAAALSLEEKVGQLLVAGTPAADDAVGPATRTAVVDHHVGNVFLHGRSEAGLDATRELVDAATALAPPSAPPMLVATDQEGGLVQVLRGPGFSELPRATEQATWAPARLEREATAWGTELADAGINLNLAPVMDLVPAANQSANAPIGYFSRNYGTTARSVVDSATAFSAGMQAAGVEPVIKHFPGLGRVTENTDTTEDVVDDTITAGSEDVEVFGAGIDAGARFVMLSNAVYTQIDPDRPATFSPAVVAILRDDLGFDGVIITDDVSAAAAVDDRQPADRAVSAVEAGVDLVLASADPSVVPEMADALVARAQGDPEFAAQVDAAVERVLAVKSDLEGPGPT0012175_2165DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSAMINIDASE,PGPT0012175-nagZ-K01207NANA
AK018_038772217dapb1_2Dipeptidyl aminopeptidase BIGTGCAAGACGACGCCGCCACCGCGAGCCCGCACGAGCTCGCCGCCCCGCCGACCGCCGACCGCCGACCGATCTCCCGGACCCACCACGGCCACACGGTCGTCGACGACTACGAGTGGCTGCGTGCCAAGGAGGACCCCGAGGTGCTGGCGCACCTGGAGGCCGAGAACTCCTGGACGCAGGACCAGCTCGCCGGGCTGCGACCGCTGCGCGAGCGGATCTTCAGCGAGATCAAGGACCGGACCCAGGAGACCGACCTGTCGGTCCCGACCCGTCTCGGCGACCACTGGTACTACGGGCGGTTCACCGCGGGGCAGCAGTACCCGGTGCACGCTCGCGTCCCGGTGACCGACCCCGACGACTGGACGCCGCCCGCGCTCGAGCCGGGGGAGGTCCCCGCCGGCGAGCAGGTGCTGCTCGACCAGAACGCGGCCGCGGCGGGTCACGACTTCTTCTCCCTGGGTTCGTTCTCCGTGGCCCCGCAGGGGGAGCGCCTCGCCTACGCCGTCGACACCACGGGCGACGAGCGCTACACGCTGCGCGTCCGCGACCTGCGCACCGGTGCCGACCTGGCGGACGAGGTCGTCGGCACGTTCCCCGGTGCCGTGATCACCCCCGACGGCCGGTACGTCTTCTACCCGACCGTCGACGAGGCGTGGCGGCCGTGCACGATCTGGCGGCACGAGGTCGGTACGCCGGTCGCCGACGACGTGCAGGTCTTCCACGAGCCGGACGAGCGGTTCTGGGTGGGGGTGGGTCTGTCCCGCTCCCAGCAGTACCTGCACGTCGAGCTCGGCTCGAAGATGACCAGCGAGTGCTGGGTGCTGGAGACCACCGACCCGACCGGGGAGTTCCGGCCCGTGTGGCGCCGCCGCGAGGGGGTCGAGTACACCGTCGAGCACGCCGTCCTGCCCGGACGCGGCGACGCGCTGCTCGTGCTGCACAACGACGGCGCGCAGAACTTCGAGCTCGCCGTGACCGACGTGCCCCCGCGCCCGGCCGCGGGCGACGCCGGGGCGTCCGACGGGCTGGACCCGGCCGCCGCGCGCGTCGCCGTGGCTCACGACCCGCACGTGCGGCTGGAGTCCGTGGACGCCTTCGCCGACCACGTCGTGCTCGGTGTGCGGCGGGACGCCACCCCGCGCGTCGCCGTGGTCACGCTGGCGACCCTCGCCCCGGACGCCCCCTGGACGCCGCGCGAGCTCGACTTCCCCGAGGCGCTCTACAGCGCGGTGCCGGGCGAGACGCCGGAGTTCACGGCCCCGCAGGTGCGCGTCGAGTACACCTCGTTCGTCACGCCCGCCACCGTCCTGGACGTGGACGTGGCCACCGGCGAGCGCACGGTGCGCCGCCAGCAGCCCGTGCTGGGCGGCTACGACCCCGCCGACTACGTGCAGCAGCGGGAATGGGCGACGGCCGAGGACGGCACCCGCATCCCCGTCTCGCTGGTGTGGAAGCGCGACGCCGTGACGCTGGACTCGGCCGGGACCGGCGCCGACCCCGCGCCGCTGCTGCTGTACGGGTACGGCGCCTACGAGATCAGCGTGGACCCGTACTTCACGGTGCCGCGGCTGTCGCTGCTGGACCGTGGCGTCGTCTTCGCCGTCGCGCACGTCCGCGGCGGCGGCGAGATGGGCCGGGCCTGGTACGAGGGCGGCCGGCTGGAGCACAAGCGCAACACGTTCACCGACTTCGTCGCGTGCGCGCACCACCTGGTCGACGCCGGCTGGACGACGCCGCAGCGCATGGTGGCCGACGGCGGCAGCGCCGGCGGGCTGCTCATGGGCGCGGTGACGAACCTGGCGCCGGAGATGTTCGCCGGGGTGCTCGCCGGCGTGCCGTTCGTCGACGCGCTGACGTCCATCCTCGACCCCTCCCTGCCGCTGACGGTCGTCGAGTGGGAGGAGTGGGGGAACCCGCTGGCGGATCCCGAGGTGTACGCGTACATGCGCTCGTACAGCCCGTACGAGAACGTGCCCGACGACGCCTCGCACTACCCGCGGATCCTCGCGGTGACCTCGCTGCACGACACGCGCGTGCTGTACGTCGAACCGGCCAAGTGGGTCGCCCGGCTGCGGGCCGCGGGGGCTCCCGCGCTGCTGAAGATCGAGATGTCGGCCGGCCACGGCGGCGTCTCGGGACGGTACGCCCGCTGGGAGGAGATCGCGTTCGAGCACGCCTGGACGCTGGACGTGCTGGGGCTGGCCCAGGAGGACTGAMQDDAATASPHELAAPPTADRRPISRTHHGHTVVDDYEWLRAKEDPEVLAHLEAENSWTQDQLAGLRPLRERIFSEIKDRTQETDLSVPTRLGDHWYYGRFTAGQQYPVHARVPVTDPDDWTPPALEPGEVPAGEQVLLDQNAAAAGHDFFSLGSFSVAPQGERLAYAVDTTGDERYTLRVRDLRTGADLADEVVGTFPGAVITPDGRYVFYPTVDEAWRPCTIWRHEVGTPVADDVQVFHEPDERFWVGVGLSRSQQYLHVELGSKMTSECWVLETTDPTGEFRPVWRRREGVEYTVEHAVLPGRGDALLVLHNDGAQNFELAVTDVPPRPAAGDAGASDGLDPAAARVAVAHDPHVRLESVDAFADHVVLGVRRDATPRVAVVTLATLAPDAPWTPRELDFPEALYSAVPGETPEFTAPQVRVEYTSFVTPATVLDVDVATGERTVRRQQPVLGGYDPADYVQQREWATAEDGTRIPVSLVWKRDAVTLDSAGTGADPAPLLLYGYGAYEISVDPYFTVPRLSLLDRGVVFAVAHVRGGGEMGRAWYEGGRLEHKRNTFTDFVACAHHLVDAGWTTPQRMVADGGSAGGLLMGAVTNLAPEMFAGVLAGVPFVDALTSILDPSLPLTVVEWEEWGNPLADPEVYAYMRSYSPYENVPDDASHYPRILAVTSLHDTRVLYVEPAKWVARLRAAGAPALLKIEMSAGHGGVSGRYARWEEIAFEHAWTLDVLGLAQEDPGPT0020980_257DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020980-ptrB-K01354NANA
AK018_038781422hypothetical proteinATGACAGCGGACCGACTCGACCTCGCGAGGAGGACGCGGCGCGCCATCACCGCCGTCGCCCTCGCGTTGCTACCGGCGATGCTCGTCGCACCACCTGCGACGGCGAGCACCGACGACGCCACCTGCCAGCCCGACGCCGACACGGCCTGCGTGGCCGGCATGGTGCTCAACGAGGACAACGACCAGGTCGGGGGTGTGGACCTCACCGTCACCGGCGAGGGCTTCACCGCGGACCTGGTCACCACGGACGAACGCCCCGTCGCGGTCGCCGTGCCCGACGTCGGCAGGTACGTCGTCGCCATCGACGCCTCGACGCTCCCGGACGACCAGCCGCTGCCGGAGGGCGCCGAGACCGAGATCGAGGTCGTCGCCCAGACCGGCGCCACGGCCCGCGCGGCCTTCCGCGTCGGTGCCGGCGTCGAGGCACCGGCCGCTCCGTCGGAGACGGCCGAGGACGGCGAGACCGCCGGAGCCGGCACCACGGGTGGCGACGACGGCGTGGGAGCCGCCCCCGAGGGCGACGCCTCCCTGGTGGACGTCAACTGGGGCCAGGTGTGGCAGCAGATGGGCTCCGGACTCCGGTTCGGGCTCCTGCTGGCGCTGGCCTCCATCGGACTGAACCTCGTGTTCGGCACGACCGGGTTGTCGAACTTCGCCCACGGCGAGCAGTTCGCGCTCGGCGCCGCGCTCGGGTTCATCACCGTCAACCAGATGGGCATGCCGCTGTGGCTCGGCGGGATCGTCACGATCGCCGTGTGCGGGCTGAGCGGCTACGCCCAGGACGCCGGCATCTGGCGGCCGCTGCGCAAGCGCAACGTGCCGGTGATGCAGCTGATGATCGTCTCGATCGGTCTGTCGATCACGCTGCAGTACGTGATTCAGCTGCTGATCGGCGGCGGGTCCGAGCGGATCCTCTCGTCGAACCCGCGGCCGCTCACCATCGCGGGCGTCACGCTGAGCGCCGCGTCGTGGATCTCCATGGTCGTCGCGCTGGTGTGCGTGCTCGGCATCGCCTGGTTCCTCACCCGGACCCGCATCGGCCGCGCCACGCGCGCCGTGTCGGACAACCCGGCGCTGGCCTCCGCGACCGGCATCGACCCCGACAAGATCATCCGCATCGTGTGGGTCATGGCGACCGGCTTCGCCGCCCTGGCCGGCCTGATGTGGGGCGCCTCGTTCGGGTCCTTCAACTGGCAGCTCGGCGTCCAGCTCCTGCTGCTCATGTTCGCCGCCGTCACCCTGGGCGGCCTCGGCACCGCGCTCGGCGCGTTCGTCGGGTCGCTGCTCATCGGGCAGGTCGTCGAGCTGTCGAACCTCTTCATCCCCAGCGACCTGCGGTACGCCTCGGCGCTGGTGATCCTCATCCTGGTGCTCCTGTTCCGGCCCCAGGGCATCCTCGGCCGCCGCGAGCGGATCGGCTGAMTADRLDLARRTRRAITAVALALLPAMLVAPPATASTDDATCQPDADTACVAGMVLNEDNDQVGGVDLTVTGEGFTADLVTTDERPVAVAVPDVGRYVVAIDASTLPDDQPLPEGAETEIEVVAQTGATARAAFRVGAGVEAPAAPSETAEDGETAGAGTTGGDDGVGAAPEGDASLVDVNWGQVWQQMGSGLRFGLLLALASIGLNLVFGTTGLSNFAHGEQFALGAALGFITVNQMGMPLWLGGIVTIAVCGLSGYAQDAGIWRPLRKRNVPVMQLMIVSIGLSITLQYVIQLLIGGGSERILSSNPRPLTIAGVTLSAASWISMVVALVCVLGIAWFLTRTRIGRATRAVSDNPALASATGIDPDKIIRIVWVMATGFAALAGLMWGASFGSFNWQLGVQLLLLMFAAVTLGGLGTALGAFVGSLLIGQVVELSNLFIPSDLRYASALVILILVLLFRPQGILGRRERIGPGPT0020770_402DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
AK018_038791005hypothetical proteinATGGACGAGTTCCTGCGCATCCTCACCCAGTCGCTCGGCGAGATCCTCGCCCCGACGACGGCCGCGATGGCCATCGCCGCGATCGGGCTCAACCTGCACTTCGGGTACACCGGACTGCTCAACATGGGTCAGGCCGGGTTCATGCTGCTCGGCGCCTACGGCTTCGGCATCACGCTGACCCTCGGCGGACCGATCTGGCTCGCCTTCCTCATCGCCGTCGCCGCGGGCGTGATGTTCGCGCTGCTGCTGGGCATGCCCACGCTGCAGCTGCGCGGCGACTACCTGGCGATCGTGACGATCTCCGCGGCGGAGATCGTCCGCTGGTTCGGCCGCTCCACCCTCTGGCAGGAGTGGACCGGCGGCGCGTCGGGCCTCCAGGGCCGCTACTTCAAGGACCCGTTCCACGCCCTGTCGTTCCTGCCGGAGGGCCGGTTCGCCCTCGGGCCCTTCGAGTACATCAACACGGGCTCGGACTCCTGGTTCACCCGGATCTTCGCCTGGGGCCTGGTCGCGCTGCTGCTGCTGTTCGTCTGGCTCATCACGCGCAGCCCGTGGGGCCGCGTCCTCAAGGGCATCCGTGAGGACGAGGACGCCGTGCGCGCGCTCGGCAAGAACGTGTACTCGTACAAGCTGCAGGCCCTTGTCATCGGTGGCGCGATCGGCGCCCTCGGCGGCGTCGTCTACGCGATCCCGACGGCGATCTCGCCGGACGCGATGGGCGGCCGCACGATGACCTTCTTCGTGTGGACGATCCTGCTGCTCGGTGGCGCCGCGACCGTGTTCGGTCCGGTCCTCGGGTCGATGATCTTCTTCACCGCCTACATGTTCATGCGCACCGGCATGCGCACCCTGTCCGAGGACACGGCGCTCGGGAACGTCATCTCGACCACCCAGGTGGAGTTCATCGGCGGCATGCTGGTCGGCATCACCCTGATGTGCCTGGTGATCTTCCGACCTCAGGGCATCCTCGGGAACAAGAAGGAGCTGGCGTTCAATGTCCGTTGAMDEFLRILTQSLGEILAPTTAAMAIAAIGLNLHFGYTGLLNMGQAGFMLLGAYGFGITLTLGGPIWLAFLIAVAAGVMFALLLGMPTLQLRGDYLAIVTISAAEIVRWFGRSTLWQEWTGGASGLQGRYFKDPFHALSFLPEGRFALGPFEYINTGSDSWFTRIFAWGLVALLLLFVWLITRSPWGRVLKGIREDEDAVRALGKNVYSYKLQALVIGGAIGALGGVVYAIPTAISPDAMGGRTMTFFVWTILLLGGAATVFGPVLGSMIFFTAYMFMRTGMRTLSEDTALGNVISTTQVEFIGGMLVGITLMCLVIFRPQGILGNKKELAFNVRPGPT0020570_100DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020570-natC-K11955NANA
AK018_03880915lptB_3COG1137Lipopolysaccharide export system ATP-binding protein LptBATGTCCGTTGACGAGACGACGACGGCGGCCCGGAGCGAGGCTCTGGCGCACGTCGCCCACAAGCCCGGCGCCGCCAAGAACGACCCCATCCTCAAGGCCGACCACGTCGTGCGCCGGTTCGGCGGCATGACCGCGGTCGACGTCGACCACCTGGAGGTCCAGGAGGGCGTCATCACCGCCCTCATCGGGCCGAACGGTGCCGGCAAGACCACGCTGTTCAACCTGCTCACCGGGTTCGACACCCCGAACACCGGCGAGTGGAGCTTCCAGGGCCACTCGCTGAGCGGCAAGAGCGGCGCGGCCGTGGCCAAGGCCGGCGTCGTGCGCACCTTCCAGCTCACCAAGGCGCTGGGCCGCCTGACGGTGCTGCAGAACATGCTGCTGGCCTCGCCGAACAACCCGGGCGAGAAGCTCGGGCTGTCGTGGCTGCCGTTCCTGTGGAAGAAGCACGAGGTCGAGGCCACCGAGAAGGCCATGGAGATCCTGGCCCGGTTCAAGCTGGACGCGAAGGCGTCCGACTACGCCGGCTCGCTCTCCGGCGGTCAGCGCAAGCTGCTCGAGATGGCCCGCGCCCTGATGACCGACCCCACGATGATCATGCTGGACGAGCCGATGGCGGGGGTGAACCCCGCCCTGGTGCAGTCCCTGCTGGGACACGTCCAGGCGCTGCGCGACGAGGGCATGACCGTGCTCTTCGTCGAGCACGACATGCACGCCGTGCGGCACATCTCGGACTGGGTCGTGGTGATGGCCGAGGGCCGCATCGTGGCCGAGGGCCCGCCCAGCACCGTGATGAAGGACCAGGCCGTGGTGGACGCCTACCTCGGCGCGCACCACGACACCGACCTCGGGGACGACTCGCTGCTCGACCCCGAGGTCCTCGCCCGGCTCGAGGCCGAGGAGGAGAAGCGATGAMSVDETTTAARSEALAHVAHKPGAAKNDPILKADHVVRRFGGMTAVDVDHLEVQEGVITALIGPNGAGKTTLFNLLTGFDTPNTGEWSFQGHSLSGKSGAAVAKAGVVRTFQLTKALGRLTVLQNMLLASPNNPGEKLGLSWLPFLWKKHEVEATEKAMEILARFKLDAKASDYAGSLSGGQRKLLEMARALMTDPTMIMLDEPMAGVNPALVQSLLGHVQALRDEGMTVLFVEHDMHAVRHISDWVVVMAEGRIVAEGPPSTVMKDQAVVDAYLGAHHDTDLGDDSLLDPEVLARLEAEEEKRPGPT0020580_145DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020580-natA-K11957NANA
AK018_03881846livF_2COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGAGCCAGACCACCACCGCGCCGCAGGAGACGTCGATCGACGACGTGCCCGCGGACGAGCTGCTGCTCCACGCCGACAACCTCGTGGCCGGCTACCTGCCCGGGGTCAACATCCTCAACGAGTGCTCGCTCAAGGTCCGCCAGGGCGAGCTCGTGGGGATCATCGGCCCCAACGGCGCCGGCAAGTCGACCCTGCTCAAGGCGCTGTTCGGGCTGGTGAAGATCCACTCCGGCACCGTGACGCTGCAGGGCAAGGACATCACCGGGATGAAGGCCAACAAGCTGGTCGCCCAGGGTGTCGGGTTCGTGCCGCAGAACAACAACGTGTTCCCCTCGCTGACCGTCGAGGAGAACATGCGGATGGGCACGTTCCTCAAGCCGAAGATCTTCGCCGAGCGCTGGCAGTTCATCGGCGACCTGTTCCCGGTGCTGCACGACCGCCGGTCGCAGCGGGCGGGCGCCATGTCGGGCGGTGAGCGTCAGATGGTCGCCATGGCCCGGGCGCTCATGATGAACCCGTCGGTCCTGCTGCTCGACGAGCCGTCGGCCGGCCTGTCCCCGGTGCGTCAGGACGAGACGTTCCTGCGCACGCGGATGATCAACAAGGCGGGCGTCTCGGTCATCATGGTCGAGCAGAACGCGCGCCGCTGCCTGCAGATCTGCGACCGGGGGTACGTGCTCGACCAGGGCACGGACGCCTACTCCGGTCCGGGCCGCGAGCTGCTCAACGACCCGAAGGTCATCTCGCTCTACCTGGGCACGCTGGCCGACGACGTCGAGGAGGCCGAGGCCGCGGAGTCGGCGGCCGCCGACTCCCGCGAGGCGGGCGACACCCCCGCGAAGTAGMSQTTTAPQETSIDDVPADELLLHADNLVAGYLPGVNILNECSLKVRQGELVGIIGPNGAGKSTLLKALFGLVKIHSGTVTLQGKDITGMKANKLVAQGVGFVPQNNNVFPSLTVEENMRMGTFLKPKIFAERWQFIGDLFPVLHDRRSQRAGAMSGGERQMVAMARALMMNPSVLLLDEPSAGLSPVRQDETFLRTRMINKAGVSVIMVEQNARRCLQICDRGYVLDQGTDAYSGPGRELLNDPKVISLYLGTLADDVEEAEAAESAAADSREAGDTPAKPGPT0020785_868DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
AK018_038821032hypothetical proteinATGGCCCCTCGCGAACCCGCCCACGCACCCGCCGTCCGCCGTCTGACGACGATCCTCGCGCAGATGCGCGCACCCGACTCGCCGCTGCGCGGGATGCTCTCGGCCGACCGGCTGCCGCCGCTGGTGCCGCTGAGCGTCGAGCCGGCGCTGGCGGACGAGGCCGCGATCCGCCGCCGACTGGAGACCGGGCACTTGGCGGCCGTCCGCGGGTCGCTCGTCCCGACCTCGCCCGACGACGGGCACGAGGAGCTCATCCTGCGCGAGGTGCGTGGCCTCGCCGCCTCGGCGCGCGGCGAGCACTGGTTCAGCCACTCCACGGCGGCCCTGCTGCACGGCGCCTGGACCTACGCGACTCCGCCGCTCGTGAACGTCACGCACGAGGCCAATCCGCACGTCCGACGGCGGCTCGAGCCTGACGTGCGGCGTCACCACACGCGGCTCCTGCCCCGCGATCGCGATGTCGTCGACGGGATCCCCGTCACGTCGAAGGAGCGGACGCTCGTCGACTGCCTGCGGACGATGTGGCCCGCGGCGGCACTGGTCGTCGCCGACTCCCTGTTCCGGCTGCGGGCCGACCCGGCCGAGGTGGGCCGGATCATGGCCGACTCGGTCGGCAAGCGTGGCATGGTGCAGGCTCGCCGGCTCCTCGAGCTGTGCGACCCGCGCTCCGGGTCCCCCGGCGAGACGGTGGCCCGCCTGGCGGCCGTCGACGACGGTCTGCCCCGCCCGGTGTGCCAGATGCCGGTGGAGACGCGCTCGGGGACCCGGTACGTGGACTTCGGATGGCCGGAGGTCGGGGCCGGGGTGGAGTTCGACGGCGACGTGAAGTACTCCGGGGGCGAGTACGGCCTGCCCGACGACGTGCTTCGTCGGCAGCAGCAGCGGCACGAGGACATCGAGGCCGCCGGTGTCGACCTCGTGCGCGTGCGGTGGCCGGCGCTGCGCGACACCGAGCGGCTGGGGTGGACGATCCGCGAGGTGTACGACGCCGCGCTGTTCCGCACGCGCGAGCGCCGCCGTCGGACCGCGTGAMAPREPAHAPAVRRLTTILAQMRAPDSPLRGMLSADRLPPLVPLSVEPALADEAAIRRRLETGHLAAVRGSLVPTSPDDGHEELILREVRGLAASARGEHWFSHSTAALLHGAWTYATPPLVNVTHEANPHVRRRLEPDVRRHHTRLLPRDRDVVDGIPVTSKERTLVDCLRTMWPAAALVVADSLFRLRADPAEVGRIMADSVGKRGMVQARRLLELCDPRSGSPGETVARLAAVDDGLPRPVCQMPVETRSGTRYVDFGWPEVGAGVEFDGDVKYSGGEYGLPDDVLRRQQQRHEDIEAAGVDLVRVRWPALRDTERLGWTIREVYDAALFRTRERRRRTANANANANANA
AK018_038831308hypothetical proteinATGACTCGACGCATGACGGCCGCCAAGGGCCTCGCCCTCGCTGCGGCTCTCAGCCTGGGCCTCACGGCCTGCGGCTCCGACGAACCGGCCGAGGAGACCTCCTCGGACGAGTCGACCGAGGAGTCGATGGACGAAGGCTCCGCGGAGCCTCTGACCATCGGCACGATCCTGCCGGTCACCGGCACGCTGTCCTTCCTCGGGCCCCCCGAGATCGCCGGCGTCGGTCTGGCGATCGACGACATCAACGAGGCCGGGGGCGTGCTCGGCAACGACGTCGTGGTCGAGTGGGGCGACTCGGGTGACAACACCGACATGACGGTGGCCAACTCGACCGTGACGGACCTCGTGAACAAGGGTGCCGACGCGGTCATCGGTGCGGCCTCCTCGTCCGTGTCGCTCGGTGTCGTCGACGCCTTCGCCGAGGCCCAGATCATGCAGATCTCGCCGGCGAACACCGCCGCTGACCTGTCGGGCTACGGAGACTTCTACACCCGCACCGCGCCGCCGGACACCGTCCAGGGCGCCGCCCTCGGCTCGCTGATCCTCGACGGCGGTCACCAGAGCGTCGCGATGATCGTCCTCAACGACGCCTACGGCACCGGCCTGCGTGACCACACGCAGGACGCCATCGAGGCCGGCGGCGGCGAGGTCGTCTACGGCGCGAACGGCGCCGGCGAGGAGTTCCCTCCCGGTGAGACGAACTTCGGCTCGCAGGTCTCGGCCGCTCTGGCGACCGAGCCCGACGCGCTCGTCATCATCGCCTTCGAGGAGACGGTGGCCGCGGTGAACGAGCTCGTCGCCCAGGGCTGGGACTTCGACGGCACCACGTACTTCACGGACGGCAACCTGTCCGACTACTCCGAGGACTTCGACGAGGGCACCCTCGCCGGCATCCAGGGCACCCTGCCGGGCGCCCAGGCCGACGACGACTTCAAGGAGCGCCTGAACACCTGGCACTCCGAGAACGAGGGCGCGGAGCTCGACGGGTTCTCCTACTCCGCCGAGTCGTACGACGCCACGATCCTCGCGGCTCTGGCCGCCGTGCGTGGCGAGGGCACCGACGGTGTGACCATCTCCGAGAACATCCGCGCCGTCTCCGGCTCGGAGGGTGGCACCGAGGTCACCACGTTCGCCGAGGGCGTCGAGGCGCTCGAGGCCGGCGAGGAGATCAACTACACCGGTCCGTCCGGCACGGGCCCGCTGAACGAGGACAACGACCCGTCGTCCGCGTTCATCGGCATCTACGAGTACGACGGCAGCAACGCGTACTCCTACGTGCGGCAGATCGAGGGCCAGATCGGCGGCTGAMTRRMTAAKGLALAAALSLGLTACGSDEPAEETSSDESTEESMDEGSAEPLTIGTILPVTGTLSFLGPPEIAGVGLAIDDINEAGGVLGNDVVVEWGDSGDNTDMTVANSTVTDLVNKGADAVIGAASSSVSLGVVDAFAEAQIMQISPANTAADLSGYGDFYTRTAPPDTVQGAALGSLILDGGHQSVAMIVLNDAYGTGLRDHTQDAIEAGGGEVVYGANGAGEEFPPGETNFGSQVSAALATEPDALVIIAFEETVAAVNELVAQGWDFDGTTYFTDGNLSDYSEDFDEGTLAGIQGTLPGAQADDDFKERLNTWHSENEGAELDGFSYSAESYDATILAALAAVRGEGTDGVTISENIRAVSGSEGGTEVTTFAEGVEALEAGEEINYTGPSGTGPLNEDNDPSSAFIGIYEYDGSNAYSYVRQIEGQIGGPGPT0020565_75DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020565-natB-K11954NANA
AK018_03884870COG0656putative oxidoreductase/MSMEI_2347ATGACGTCGCACCAGCACAACGGCAAGATTGCTGGCATGAGTGTCCCCAACATCACCCTCGACAACGATGTGAAGATCCCTCAGGTCGGTCTCGGCGTCTTCCAGGTGCCCGACGACGGCACCCAGCGGTGCGTCGAGAGCGCCCTGGAGCTCGGGTACCGGCACATCGACACGGCGGCCGGCTACGGCAACGAGGCCGGCGTCGGTGCGGCGCTGCGCGCCTCGGGCCTGCCGCGCGAGGGGGTCTTCGTGACCACGAAGCTCCGCAACGGCGACCAGGGGTACGACAACGCCCTGCAGGCGTTCGAGCACTCCCGCCGCGAGCTCGGGCTCGACCAGGTCGACCTGTACCTCGTGCACTGGCCGGTGCCGAGCCTCGACCGCTACGTGGAGACGTGGAAGGCCTTCGAGAAGCTGCTCGCCGACGGCGCGGTCCGGTCGATCGGCGTGTCGAACTTCCTGCCCGAGCACCTCGAACGCCTGGTCAGCGAGACGGACGTGGTCCCGGCGGTCAACCAGATCGAGATCCACCCGCGGTTCCAGCAGGCCGCGGTGCAGGCCGCCTGCCGCGAGCACGGGATCGCCGTCGAGGCGTACTCGCCGCTCGGCCGGGGCGCCGACCTGGAGGCGCCGGCGGTGACCTCGATCGCCGCCGAGCTGGGCGTCACGCCGGCCCAGGTGGTGCTGCGGTGGGAGGTGCAGCAGGGGATCGTCGTCATCCCCAAGTCGGTCTCGGCGCACCGCCAGGAGACCAACCTCGACCTGTTCTCGTTCGAGCTGAGCGACGAGCAGATGGCCGCCCTGACGGCTCTCGAGGCGGGCACGGAGGGCCGCACCGGAGCCGACCCCGCGACGATGGCGGCCGTGTAGMTSHQHNGKIAGMSVPNITLDNDVKIPQVGLGVFQVPDDGTQRCVESALELGYRHIDTAAGYGNEAGVGAALRASGLPREGVFVTTKLRNGDQGYDNALQAFEHSRRELGLDQVDLYLVHWPVPSLDRYVETWKAFEKLLADGAVRSIGVSNFLPEHLERLVSETDVVPAVNQIEIHPRFQQAAVQAACREHGIAVEAYSPLGRGADLEAPAVTSIAAELGVTPAQVVLRWEVQQGIVVIPKSVSAHRQETNLDLFSFELSDEQMAALTALEAGTEGRTGADPATMAAVPGPT0001320_1043DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
AK018_03885204cspA_2COG1278putative cold shock protein AATGGCCACCGGTACCGTGAAGTGGTTCAACAGCGAGAAGGGCTACGGCTTCATCGCCCCCGAGGACGGCACCGCTGACGTGTTCGTCCACTTCTCCGCCATCCAGACGCAGGGCTACCGCACCCTGGACGAGGAGCAGAAGGTCGAGTTCGACGTCACGCAGGGCCCGAAGGGCCCGCAGGCGGAGAACGTCCGCCCGCTCTGAMATGTVKWFNSEKGYGFIAPEDGTADVFVHFSAIQTQGYRTLDEEQKVEFDVTQGPKGPQAENVRPLPGPT0014675_7748DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_03886786hypothetical proteinATGGGATTCCTCGACCGACTCCTCGGCAGGTCACGTGACGAGCGCTCCATCCCCGGCATGACCGGCGGAGGCACTCCGCGCGGGTACGGCCCGCCCACGCCCACCGGCTCCGGGCCGGGCGCCGCGCCCGCGGCGTCGACGCACCGCTCGCCGGACGACGTGGCGATCGACCGCTACCGCTACCTGCTGCGCACCGCTCCCCCGGACGCCGTCGAGCAGGCGCACGCCGAGGCGTTCGCCCAGCTCACCCCGGAGCAGCGGCGCCAGGTCCTCTCCGAGGTCGGCGCCACGGTGCCCGCGTCCGAGCGCGCCACCTCCGACGACCCGCAGTCGCTGGCCCGGATGGCCACGCGTGCCGAGATGCGCAGCCCCGGCACCCTGGAGAACACGTTCCGCTCCGGCGGCCCGGGTGCGATGGCGGGGGCCGGTGGCCCGAGCTTCGGGTCGATGATGGGGTCCAGCCTGCTCGGGACCGTCGCCGGTGTGGTCATCGGGTCCGCCGTGGCCAACGCGATGTTCGGCCCGGCGTTCGGCGACCCGACGACGCCGGTGGCGGAGGACGCGGCGGCCGGCGGTGACGCCGGTGGCGAGGGCGATCCCGGCGCCGGGGATCCGGGAGCGGACGGCGGGGACGGCGGAGCCTTCGCGGACGGCGGGGCCGACGCCGGTGGAGCCGACGCGGCCGGTGACGGCGGCATGTTCGGTGGCCTCTTCGGCGGCGACGACGGCGGCGGTGGCCTCGGGGACTTCTTCGGAGGCGACGGCGGAGGCGGGTTCGACTTCTGAMGFLDRLLGRSRDERSIPGMTGGGTPRGYGPPTPTGSGPGAAPAASTHRSPDDVAIDRYRYLLRTAPPDAVEQAHAEAFAQLTPEQRRQVLSEVGATVPASERATSDDPQSLARMATRAEMRSPGTLENTFRSGGPGAMAGAGGPSFGSMMGSSLLGTVAGVVIGSAVANAMFGPAFGDPTTPVAEDAAAGGDAGGEGDPGAGDPGADGGDGGAFADGGADAGGADAAGDGGMFGGLFGGDDGGGGLGDFFGGDGGGGFDFNANANANANA
AK018_038873681hypothetical proteinATGTTCCTCCTGGACGGCCCGGACGGGTCCCGGCTCGTGCACTCGGCCAGCGACCTGGTGGTCGCCGCCGAGTGCGAGCACGCGCTGCTGCGACGGCTCGACGAGGTCCTCGGGCGGGCTCCGCAGCGGCCGCGCGAGACCGACGAGATGCTGGCCCGCACCGTCGCCCTCGGTGCGGCGCACGAGCAGGCCGTCCTGGAGGACTTCCGGTCGCGGTACGGCACGGCGCCCGACGACGGCGGTCCGGGCGGGGTGCTGGAGGTTCCCCCGCCGCAGCACCTGACGTACGACGGGCTGGTCGCGGCGCACTCGGCGACGCTGGCCGCGCTCGAGCAGGGGGCCGACGTCGTCTACCAGGCGTCGTTCTTCGACGGGCGGCTCCACGGCCGGGCGGACTTCCTGGTGCGTGACCCCCGTGCGGCCGGGGACGGGCGGCCGCGCTACGCGGTGTGGGACACCAAGCTCGCCAAGCGGGAGAAGGTGCGCGCGGTGCTGCAGCTCGCGGCGTACGCCGACCAGCTCCTCGCCGCCGGGATCGACCCGACCGAGCACGCCCACCTGGTGCTCGGCACGGGCGAGCTGACCGAGCACGCCCTGGCCGAGGTGCTGCCGGTGTTCCGGGCTCGGCGCGACCGGCTGCTCGACGTCGTCGCGCGGCACGTCGACGCCGAGGCACCGGTGGCGTGGGACGCCCCGGGGCACGCGGCCTGCCAGCGGCTCGGGGTCTGCCCGGACTGCGCCGAGTCCGCGGCGGCGCACGACGACGTGCTGCTCGTGGCCGGGGTGTACGCCCCGCAGCGGGCGCGACTGGCGGCGTCCGGCCTGACGACGATGAAGGACCTGGCCGGCGCGGAGCAGCCGCCGGCGGGGATGACGGCGGACCGGTTCGCCGGCCTGCAGCGGCAGGCCGCGTTGCAGCTGGGTACGGACCCGGGTGACGGCGCGGTGCTGCAGGACACGCCGGAGGGCCCCCGCGAGCTGCGCTGGGCCTTGACCGACCCCGCGCCGGTGGAGCGGCTGCCGCCGCCGAGCGAGGGCGACGTCTTCTTCGACTTCGAGGGTGACCCGCTGTGGACGCCCGAGGACGCCCTGACACCGGGGGAGTCGGGGATCGACTACCTGTTCGGCTGGGTCACCCGCGACCTCGACGCCGAGGGTCGGCCCGCCTTCCACGCCCTGTGGGCGGACACCTGGGCCGAGGAGGCCGAGGCGCTGGTGCGGTTCGTCGACGACATGGCCGAGCGCCGTCGTCGGTGGCCCGACATGCACGTCTACCACTACGCCGCCTACGAGCGGACGCACCTGCTGTCCATCGCCGCCCGGCACGGGGTCTACGAGGACGAGGTCGACGAGCTCCTGCGCTCCGGGGTGCTCGTCGACCTGTACGCGACGGTCCGGTCGGCGATCCGGATCTCGGACCGGTCCCGCTCGATCAAGAAGCTCGAGCCGCTGTACATGGGCGACGAGGCGGCGCGATCCGGGGTGACCGACGCCGCGACGTCGGTGGTCGAGTACGCGGAGTACTGCGACCTGCTCGCCGCGGGGGACCAGGAGGAGGCGGCCCAGCGTCGCGAGGAGATCCTCGACTACAACCGCTACGACTGCCTGTCCACGCTGCGGCTGCTGGACTGGCTGCGCTGGGCGCACGACGAGGTCGTCGGACCCGTCGAACGTCCCGTCGCCGAGCCGCTGCCCCTCGAGGAGCAGAGCCCGGAGAACCCGGAGAGGGCAGCGCGCGAGGCGCTCGAGACCGAGATCCGTGACGCCGTCGCGCACGCCCACCCCCACGAGCCCGCCGACCGCGCGGCCGCACGCGCACTGAGCCTGCTCGGTGCCGCCGTCGGCTACCACCGGCGCGAGAGCAAGCAGTTCTGGCAGGCGCACTTCTCCCGCATGCAGCTCCCGCCCGCCGAGTGGCCGGGGCGCCGTGCCGCCGTCGTCGTCGAGAGCGGTCGGGTGCTCAGCGACTGGGAGAAGGAGCCCGGACGCCGGGCGCCGTCGCGGATGCTGGCCCTGCGGTGCCCGGCCGTCGAGGGCAGCGAGCTGCGCGCCGGGGCGAGCGCCTTCCTGCTCTACGACGTGCCGTGCCCGCCGGTGGTGACCGGCGTCGGACCGCTGGCGGAACGCTGGTTCCACAGCAAGATGGCGATCACCGAGGTCGAGCGGGTCGCCGACGGTGAGCAGGAGTGGGACGTGTTCACGGTGCGCGAGCACGTGGGCAGCGGCCAGGAGACGCACGACGACCTGCCGTGCGCGCTGAGCGTCAACAGCCACGTGCCGCCCGGCCCGTTGGAGACGGCGACGGCCGAGGCCGGCCGGGCCGCGCTGGAGGCCTGGCGTGCCGGGGAGACGGCCGGTGCGCCGATGGCGGACCGGCTGCCCGCCGAGCCGATGACGGACCTGCTGCAGCGACGTCCCGCCCGGGTGACCGGTGGCCTGCCCGCGGCGCCCGTCGGACCCGACGGCGAACCCGACGTCGTCGCCGCCGTCGAGCGGGCGGTGCGCGCGCTCGACCGGTCCTACCTCGCCGTGCAGGGACCGCCCGGCACCGGCAAGACCTACCTGGCCTCGCACGTCATCGCGGCGCTGGTCGCCGACGGCTGGCGGGTCGGGGTGGTGGCCCAGTCGCACGCGGTGGTGGAGAACCTCCTGCACGGCGTGCTCGGGGCCGGGGTCCCGTCCGAGCAGGTCGCCAAGAAACGGCCCTCGACCGTCTCGCCGGCCAAGGCCGACTCCCCCTGGCAGGACGTGACCGCCGACGGGCTCGAGACGTTCGCGGCCGAGGCCGACGACGCCGGGCGCGGCTGCGTCCTCGGGGGCACGGCCTGGGACTTCGCGCACGAGCGCTGGGCGCCCGACGGGCTCGACCTGCTCGTCATCGACGAGGCGGGCCAGTTCGCCATCGCCAACACCGTCGCCGTCGCGCGGGCGGCGTCGCGGCTGCTCCTGCTCGGCGACCCGCAGCAGCTCCCGCAGGTCTCCCAGGGTGCGCACCCCGACCCCGGGGTCGCCGGGTCGGCGCTCGGGTGGCTGGCCGACGGCCACGAGACGCTGCCCGAGGAGTTCGGCTACTTCCTGCCGGCGTCGCGACGCATGCACCCCGACCTGTGCGCCGCGGTCTCCGAGCTCGCCTACTCCGGAAGGCTGCACGCCCACGCCACCGTGCACGGTCGCACGCTGGACCCCGTGACGCCGGGGGTGCACGAGGTGCTGGTCGACCACGCGGGTCGCGCGGTGTCGTCTCTCGAGGAGGCGGACGAGGTGGTCCGGCAGGTCCGGGCGGTGCTCGGGCGGCCGTGGGTCCGGTCCGCCGGGGCGGAGCCGCGCGAACTCGGGCCCGCGGACGTCATCGTCGTGGCGGCCTACAACGCGCAGGTCCACACCATCCGGCGTGCGCTGGCCGCGGCCGGGCTGGAGGACGTCCGGGTCGGCACGGTCGACAAGTTCCAGGGGCAGGAGGCGCCGGTCGCGGTGCTGTCCATGGCGGCGTCGTCGCCGGACGAGGTGCCGCGCGGCATGGGGTTCCTGCTCAGCCGGAACCGGCTCAACGTGGCGGTCTCGCGGGGCCAGTGGTGCGCCGTCGTCGTCCGCTCACCGCGCCTGACGGACTACCTGCCGACGTCGGTCACGGACCTGGAGCAGCTCGGCGCGTTCCTGCGCCTCACCTCCCCGTCGAGGTAGMFLLDGPDGSRLVHSASDLVVAAECEHALLRRLDEVLGRAPQRPRETDEMLARTVALGAAHEQAVLEDFRSRYGTAPDDGGPGGVLEVPPPQHLTYDGLVAAHSATLAALEQGADVVYQASFFDGRLHGRADFLVRDPRAAGDGRPRYAVWDTKLAKREKVRAVLQLAAYADQLLAAGIDPTEHAHLVLGTGELTEHALAEVLPVFRARRDRLLDVVARHVDAEAPVAWDAPGHAACQRLGVCPDCAESAAAHDDVLLVAGVYAPQRARLAASGLTTMKDLAGAEQPPAGMTADRFAGLQRQAALQLGTDPGDGAVLQDTPEGPRELRWALTDPAPVERLPPPSEGDVFFDFEGDPLWTPEDALTPGESGIDYLFGWVTRDLDAEGRPAFHALWADTWAEEAEALVRFVDDMAERRRRWPDMHVYHYAAYERTHLLSIAARHGVYEDEVDELLRSGVLVDLYATVRSAIRISDRSRSIKKLEPLYMGDEAARSGVTDAATSVVEYAEYCDLLAAGDQEEAAQRREEILDYNRYDCLSTLRLLDWLRWAHDEVVGPVERPVAEPLPLEEQSPENPERAAREALETEIRDAVAHAHPHEPADRAAARALSLLGAAVGYHRRESKQFWQAHFSRMQLPPAEWPGRRAAVVVESGRVLSDWEKEPGRRAPSRMLALRCPAVEGSELRAGASAFLLYDVPCPPVVTGVGPLAERWFHSKMAITEVERVADGEQEWDVFTVREHVGSGQETHDDLPCALSVNSHVPPGPLETATAEAGRAALEAWRAGETAGAPMADRLPAEPMTDLLQRRPARVTGGLPAAPVGPDGEPDVVAAVERAVRALDRSYLAVQGPPGTGKTYLASHVIAALVADGWRVGVVAQSHAVVENLLHGVLGAGVPSEQVAKKRPSTVSPAKADSPWQDVTADGLETFAAEADDAGRGCVLGGTAWDFAHERWAPDGLDLLVIDEAGQFAIANTVAVARAASRLLLLGDPQQLPQVSQGAHPDPGVAGSALGWLADGHETLPEEFGYFLPASRRMHPDLCAAVSELAYSGRLHAHATVHGRTLDPVTPGVHEVLVDHAGRAVSSLEEADEVVRQVRAVLGRPWVRSAGAEPRELGPADVIVVAAYNAQVHTIRRALAAAGLEDVRVGTVDKFQGQEAPVAVLSMAASSPDEVPRGMGFLLSRNRLNVAVSRGQWCAVVVRSPRLTDYLPTSVTDLEQLGAFLRLTSPSRNANANANANA
AK018_03888963hypothetical proteinATGACCGTGCGATTCAACCCCCCGCCCGGCTGGCAGGTCCCCCCGGGATTCCGGCCCGACGCCGGCTGGACGCCCGACCCTGCGTGGCCGCCGGCGCCCCCGGGATGGCAGTACTGGGTGGAGGACGCCGCCCCCGCGCCGCAGCCTGCCCGCACCTCGACGATCCGCCCCGTGGGCCGGCACGACGGCGCTGCCACAGCGTCGGGCGCGCCCGCAGGCGCCGCGCCTGCCGGTGGCGCACCGGACCCGTCGGCGACGACCGTCATGGCGCCCGTGCCCTCCGGGCCGACGCCGGCGGCCGCCACACCGCCACCGCCCGGCCCGCCGTCGGGCGGCGACGCGCACCCGACGCTCCGCGGGACGGCTCCCGTCCCCCCGCCGCAGCAGGCGGGCCGGCCCGCACCCGGGTCAGCCCCCCAGCAGCCGGCGGCGACCCGCACCGAGTCGCGCGCCACCAGGTCGCGACGCCCCGCCAACGTGTTCGTCGCCGGGGTGGCCGTCGCCTGCCTCGCGCTGGGCGTCATCCTCGGCGTGATGTTCTCCATGGTGCAGACCTCCGACGCCCGGCAGGCCGTCGCCGACGCCGAGCGCGAGGTGGAGGCCGCGGCTGCCCTCGAGGCCGAGGTCGCCGAGGACGAGGCGGCGCTCGACGAGCGGGCGGCCTCCCTGGACGAGCGGGAGAACCAGCTCAAGGAGCGCGAGTCCGCGGTCGCCGAGAAGGAGTCCCAGCTGGTCAGCCGCCAGAACGAGCTCGACGAGCAGGCGGCCCAGGCCGAGGAGGAGCGGCGTCAGCGCGAGGAGCAGGAGCAGCGCGACGACGACGGTGGCGGCGGCCAGTGGTGGTACTGGAGCTGCGACGACGCACGGAGGGACGGCGCCGCGCCGATCCACCAGGGTGAGCCGGGCTATCGCGGCGGGCTGGACGCCAACGGCAACGGCATCGCCTGCGAGGGCGGCGAGTAGMTVRFNPPPGWQVPPGFRPDAGWTPDPAWPPAPPGWQYWVEDAAPAPQPARTSTIRPVGRHDGAATASGAPAGAAPAGGAPDPSATTVMAPVPSGPTPAAATPPPPGPPSGGDAHPTLRGTAPVPPPQQAGRPAPGSAPQQPAATRTESRATRSRRPANVFVAGVAVACLALGVILGVMFSMVQTSDARQAVADAEREVEAAAALEAEVAEDEAALDERAASLDERENQLKERESAVAEKESQLVSRQNELDEQAAQAEEERRQREEQEQRDDDGGGGQWWYWSCDDARRDGAAPIHQGEPGYRGGLDANGNGIACEGGENANANANANA
AK018_03889456hypothetical proteinATGCACCGCAACCGCACGCTCGCCGTCGCCGGGTCCGTGGCGCTCGCCGCCGGAGCCGTCCTGGTCCCGGCCGTGGCCGCGCAGGCCGGGGTCAGCGAGGGCACCGCGTTCTACGTCGACGGGGTCGCCTACCGCACCGTCGCGACGCCGAACGACCTGTCCGGCACGGGGGCGCCGGACCACTCGTTCGACGTCATCTACGCCCTGGGCGGCGCCCAGGCCAACGTCGCCGAGGCCGCTCCGGGCGACCGCGACTACAACGGCGGACGCTGGCGGGTCCACGCCCTGGAGTACGACGACTTCGACGCCGTGCTGGCCGCCGGGGACCTCGACGACGACGGCATCCTCGGGTCCGTCGAGGAGGTCCACGCCGCGATCGACGCCGGGGTGGCGCACGACGGCGGCGTCGTCGCGTCGTTCACCTGCCCGGTCATCCCGTTCCCCGGCGGGCGCTGAMHRNRTLAVAGSVALAAGAVLVPAVAAQAGVSEGTAFYVDGVAYRTVATPNDLSGTGAPDHSFDVIYALGGAQANVAEAAPGDRDYNGGRWRVHALEYDDFDAVLAAGDLDDDGILGSVEEVHAAIDAGVAHDGGVVASFTCPVIPFPGGRNANANANANA
AK018_03890825walR_4COG0745Transcriptional regulatory protein WalRATGGTCCGGGTCCTCGTGGTCGACGACGACACCACCGTCGCCGACGTGGTGGTCGCCTACCTGGAGCGCGCCGGGATGGCGGCCGAGCACGTGGCCGACGGCGTCGACGCCCTCGTCGCTGCCCGCGAGCGCCCGCCGGACGCCGTCGTCCTGGACCTCATGCTGCCGGGCCTGGACGGCATCGAGGTGTGCCGGCGGCTGCGCGCGGACCGCCCCCGGCTGCCGGTCCTCATGCTCACCGCCCGCGGCGAGGAGGACGACCGCATCACCGGCCTGGAGGTCGGCGCGGACGACTACGTGACCAAGCCGTTCAGCCCCCGCGAGCTGACCCTGCGGGTGCAGTCGGTGCTGCGGCGCGCGGGCACCCCGGCCGACGGCGGCACGCCGGCCGGCGAGAGCACGCGGCCCGACGACGGCACCCCGGCGGGTGCCCCCGATCGGCCCGACGCCGCACCGGACGCGTCCCACCCGGCGCCCGTGCCGCCGTCGGGCATCCTGCACGACGGCGACCTGACCGTGGACGTCGCCGCCCACCGCGTGCGGCGTGACGGTGCCGAGCTGGCGTTGACGGCCCGCGAGTTCGACCTGCTGGCCTGGTTCCTCGCCCACCCCGGCCAGGTGCACGACCGCGAGGCGCTGCTGCGCGAGGTGTGGGGCTGGGAGTACGGCGACCGGTCCACGGTGACGGTGCACGTGCGGCGGCTGCGCGAGAAGGTCGAGGCGGACCCGTCGGCCCCGACGCGGCTGGTCACGGTGTTCGGGGTCGGCTACCGCTGGGACGCCCGGGAGCCCGTCGATCAGGCGCCGCCCGGGAGCGCCCCGTGAMVRVLVVDDDTTVADVVVAYLERAGMAAEHVADGVDALVAARERPPDAVVLDLMLPGLDGIEVCRRLRADRPRLPVLMLTARGEEDDRITGLEVGADDYVTKPFSPRELTLRVQSVLRRAGTPADGGTPAGESTRPDDGTPAGAPDRPDAAPDASHPAPVPPSGILHDGDLTVDVAAHRVRRDGAELALTAREFDLLAWFLAHPGQVHDREALLREVWGWEYGDRSTVTVHVRRLREKVEADPSAPTRLVTVFGVGYRWDAREPVDQAPPGSAPPGPT0013765_39DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0013765-vicR|walR|yycF|micA-K07668NANA
AK018_038911020sasA_12Adaptive-response sensory-kinase SasAGTGACCCCGCTGGAGGGTGTCGCCCTCTCGGCCGGGGTCGCCGCCGCCGTCGGGCTCGCCGGGGCGGCCGGGGTGCTGGCGCTGGGACGACGGCGCCCCTCGGCGGCCGCCGTGCTGGCGCCGCTCGTGGTGGTCGCCTCGGTCGCGGCCGGCGTCTACGCCAGCGCGCGGGCGATGTTCCTGTCCGAGCAGGACTCCACCACCGTGCTGTGGCTGCTGCTGGCCACGGTGCCGGTCGCGCTCGTCATCGGCCTTGCGCTGGCGCGGCGCACCCACCATCTCGCCACCGAGCGGGCGGCGGCGGTCGCCGCCCGCGACCGGGACCGGGAGGTGGAGGCACGACGCCGCGAGCTGGTGGCGTGGGTGTCCCACGACCTGCGCACCCCGCTGGCCGCCGTGCGCGCGCTGGCCGAGGCGATGGAGGACGGGGTGACCCGGCCCGTCGACGCCGCGACCGGCATCCTGGCGGAGAACCGTCGCATGAGCGACATGGTCGACGACCTGCTCGCCCTGTCCCGGCTGCAGTCGCCCGGGTTCGAGCTGACCCGCACCTCGACCGACGTCGGCGACCTCGCCTCCGACGCGCTCGCGGCCGCCGGACCGGCCGCCGAGGCCGCCGGCGTGCGCCTCACCGGGGAGGTGGCCGCCCCCGTCGTCGTGCCCGTGGACGCCCGCGAGGTCGCCCGGGCGCTCGGCAACCTGCTGTCCAACGCGGTGCGGCACACCCCGGCGGGCGGCACCGTCCACGTGCGGGTCTCGACCCGCGACACCGACGGCCCGGCCGCCGTCGTCGAGGTCACCGACGGCTGCGGCGGCATCCCCGCCGACGACCTGCCGCGCGTGTTCGAGGCCGGCTGGCGCGGCACCGCCGCGCGCACCCCCGGGTCCGGCGGGGCCGGCATCGGGCTGTCCATCGTGCGGTCGGTCGCCGCGACGCACGGCGGCGGCGTCGAGGTCCGCAACGTCGAGCGGGCCGACGGCGGAGGCGGCTGCCGCTTCACCCTCACCCTGCCGGCCTGAMTPLEGVALSAGVAAAVGLAGAAGVLALGRRRPSAAAVLAPLVVVASVAAGVYASARAMFLSEQDSTTVLWLLLATVPVALVIGLALARRTHHLATERAAAVAARDRDREVEARRRELVAWVSHDLRTPLAAVRALAEAMEDGVTRPVDAATGILAENRRMSDMVDDLLALSRLQSPGFELTRTSTDVGDLASDALAAAGPAAEAAGVRLTGEVAAPVVVPVDAREVARALGNLLSNAVRHTPAGGTVHVRVSTRDTDGPAAVVEVTDGCGGIPADDLPRVFEAGWRGTAARTPGSGGAGIGLSIVRSVAATHGGGVEVRNVERADGGGGCRFTLTLPANANANANANA
AK018_03892810hypothetical proteinATGAGGTCACCGCTGCTGGACGACCTGAGCGGCCTGGACCCGGCACGGCACCTGCGTGCCCCGGGACACCCCGACGACCCCGCCCTGGCACGGGTGCTGGCCGCCGACCGGACCGTGCCGGACCGGTACCGCGCCCCGGCGCGGCGCTCGCGGACCGCGGTGGCCACCGGCGCCGTCGCGGGGGTCGCGGTGGTCGTGGCCGCGGGGGTCGTGGTGACGACGACGTTCGGGGGCCCCGAGGCGTACGCGTCGTGGACGCCGACCCCGCAGGTCGTCGACCCTGCCGCCGCGGTGCAGGACGCGGCCTCGTGCCCGACGGCGGCCCACGCCATCGACGAGGACGCCGCCGGCCAGGGGTCGCCGATCACCGAGATCCCGGTGGACCCGGTGCTGGCCGAGGTGCGCGGCGACTACACCTACGTGCTGCTGTCCGGGGACGGGGCGCTCGCGGAGTGCTTCGTGACGACGACGGACGGCGCCTCCCAGGTGTACTCCTCGGAGTCCGTCGGCGGTACGCCCGTCCCGCAGCCGGGACCGCGCGAGCTGGTCGTGGCGGAGTCCGGGACGGCCTCGTGGTCGGACGGTCCCAACGGGGAGGGCGCGGTGACCGCCGCGTTCGGCCGCGTCGGCGACGAGATCGAGGCGGTCACGGTCATCACGGCCGACGGCGAGCAGGTCGCGGCGTCGGTGGACGACGGCTGGTTCGCGCTGTGGGCGCCGGGGGAGGAGACCTTCTCCGCGCTCGCGCAGGTCACCTACGCCGACGGCACGACGGAGGAGGTCCCGCTGGAGGTCAGGCCGGCAGGGTGAMRSPLLDDLSGLDPARHLRAPGHPDDPALARVLAADRTVPDRYRAPARRSRTAVATGAVAGVAVVVAAGVVVTTTFGGPEAYASWTPTPQVVDPAAAVQDAASCPTAAHAIDEDAAGQGSPITEIPVDPVLAEVRGDYTYVLLSGDGALAECFVTTTDGASQVYSSESVGGTPVPQPGPRELVVAESGTASWSDGPNGEGAVTAAFGRVGDEIEAVTVITADGEQVAASVDDGWFALWAPGEETFSALAQVTYADGTTEEVPLEVRPAGNANANANANA
AK018_03893537hypothetical proteinGTGGACGACGCCTCGGCCCGCGAGCGCCTGACGCGCCTGTGGGTGGACCATCGCGAGCAGGTGGTGCGGTTCGTCGCGCGTCGGGCCGCGCCGGAGATCGTCGACGACGTCGTCTCGGAGACCTACCTGGTCGCCTGGCGGAGGGTGGAGGACGTGCCGACCGAAGCGCGCGCGTGGCTGTTCGGCGTCGCGCGCAAGGTCCTGTCCACCCAGGTCCGCACGCGGGGCCGCTGGCAGGCCCTCGGGGTGCGGCTGGAGCGGGAGCCGACGGCGCAGGCGCCGGGGGCGGACGACACCGCGGCCGAGCGCGCCGACCTGCGCCGCGCCTGGGACCTGCTCAGCGACGCCGACCGGGAGGTCCTGGCGCTGGTGGCCTGGGACGGGCTGTCCGCGCGGGAGGCCGCCCAGGTGCTGGAGTGCCGCCCCTCCACGTTCTCGGTGCGGCTCACCCGCGCCCGCAAGCGGCTGCTGGCGTACTCCGAGGTGCGCCGCGACACCGCGACCGTGCTGCGCAGACTGCAGGAGGAGAGGCCATGAMDDASARERLTRLWVDHREQVVRFVARRAAPEIVDDVVSETYLVAWRRVEDVPTEARAWLFGVARKVLSTQVRTRGRWQALGVRLEREPTAQAPGADDTAAERADLRRAWDLLSDADREVLALVAWDGLSAREAAQVLECRPSTFSVRLTRARKRLLAYSEVRRDTATVLRRLQEERPPGPT0014960_10167DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_03894780hypothetical proteinATGCGCACGAGACCTTTCCGGACCGTGGCCGCCGGCGTCGGCGCGACGGTGCTGGCCCTGGGGACGGGCCTGGTCGCCACGGCACCGGCGACGGCGGACATCGGCGAACCGATCGGCACGATCGGCGAGGGGTCGTCCGACGGCGGGAACCTGCCCGGCGGGAACCTGCCCGGCGTGCCCGAACCCGGCAGCGCCGCGGACGAGTGGGTCGCCTGGGCCGCCGCGGAGCGCGCCGAGGCCGAGGCCACCGACTGGGAGGCCGACTCGGCCGCCCGCGGGTGCGAGCTGGTGGAGGTCTCGATCGTCGACGAGGTCGACGCCGCCTACAACGAGGCGATGGGCGCCCCCGCGGACCTGACCACGCACCGGGTCGAGATGGTGGAGAGCTGCGAGGGCCCGGCCGCGTCGGGCGGGATGACGCTCGAGACCGGGGACGGCACGGCGAGCACGACCGCGATCGGGTCCGGCAGCGACTGCGACAGCACGAAGGGCCCGGGCACCATCTGCGTCGACAAGTCCAGCGGGCGGATCTACTCCTCGTGGAAGTACCGCGGGTCGGGCAGCGTCTCGGGGTTCCTGCGGATCTACCAGATCTCGACGTCGGCCTCGAGCTGCTACCGCGGCAGCACGTGGCTCACGGGCCCGTCGCGGACGTGGAGCAGCGGGATGACGCGCAGCATCTCCAAGACGCGCACGACGTACTCGGGCTACTCGGCGCACATCTGGAAGAAGGTGTGGCACGGGCACACCGACTGGGGCAGCACCTGCTCGAAGCTCTGAMRTRPFRTVAAGVGATVLALGTGLVATAPATADIGEPIGTIGEGSSDGGNLPGGNLPGVPEPGSAADEWVAWAAAERAEAEATDWEADSAARGCELVEVSIVDEVDAAYNEAMGAPADLTTHRVEMVESCEGPAASGGMTLETGDGTASTTAIGSGSDCDSTKGPGTICVDKSSGRIYSSWKYRGSGSVSGFLRIYQISTSASSCYRGSTWLTGPSRTWSSGMTRSISKTRTTYSGYSAHIWKKVWHGHTDWGSTCSKLNANANANANA
AK018_03895168hypothetical proteinATGAGCACCACCGCGATCATCATGATGGCGGTCGCCCTGATCGTCGTCTGGGGCGGCCTGATCCTCGCGATCGTCGCCCTGCGCGCCCGGCCGGAGCGGACGGAGTTCCCGCCCGGCGGCGAGGACGACCACCGCGAGGACATGGGGATCATCGAGCACGACACGTAGMSTTAIIMMAVALIVVWGGLILAIVALRARPERTEFPPGGEDDHREDMGIIEHDTNANANANANA
AK018_038961575hypothetical proteinGTGAGCGCACAACACAAGTCCGCCCCGCGGGAGCAGTTCACCGGGCAGGTGGGGTTCATCCTGTCGGCGATCGGCTCGGCCGTGGGTCTCGGCAACATCTGGCGGTTCCCCGGCGTGGCCTACGAGAACGGTGGCGGCGCGTTCCTCGTGCCGTACCTCATCGCGCTGCTGACGGCGGGCATCCCGATCCTCTTCCTCGACTACGCGATCGGCCACCGGTTCCGCGGCGGCGCCCCGCAGGCGTTCCGCCGGATCAAGGGCTGGCTGGAGACCCTGGGCTGGTTCCAGGTGATGATCTGCATCGTCATCGCCGTCTACTACGCCGCGGTCGTGGCCTGGGCGGCGAGCTTCTTCGTCTACTCCTTCGGCCTCGACTGGGGCGACGACCCGCAGGGCTTCTTCTTCGGCGAGCACCTGCAGCTCGCCGACGTCGGCGGTGCCGACCCGTGGCTCACCTTCGACTTCGTGGCCGCCGTGCTGATCCCGCTCGTGCTCGTCTGGCTGGTCGTCGTCGCGGTGCTCGCCGCCGGCGTCGTCAAGGGCGTCCAGCGCGCCAACATCGTCTTCATCCCGCTGCTGCTGGTGGCGTTCGGCGCCCTCGTGGTCCGTGCCCTCACGCTCGACGGGGCCGCGGACGGGCTGAACGCGCTGTTCACCCCGCAGTGGGACGCCCTCGGCGACCCGGACGTGTGGATCGCCGCCTACGGCCAGATCTTCTTCTCGCTGTCCGTGGCGTTCGGCATCATGATCACCTACGCCTCGTACCGGCGCCGTCGGTCGAACATGACCGGCCCCGGCCTGGTGGTGGCGTTCTCCAACTCCGGCTTCGAGATGCTGGCCGGTCTCGGCGTGTTCTCCGCGCTCGGGTTCCTCGCGCTGGAGTCCGGCGGCACCGTGGACGAGCTGGGCATCGCCGGCGTCGGGCTGGCCTTCGTCACGTTCCCCGCGATCGTGTCCGAGATGCCGGCCGGCGCCCTGTTCGGTGCGCTCTTCTTCGGCTCGCTCGTGATGGCCGGGTTCACGTCGCTGGTCTCGATCCTCCAGGTCGTCTCTGCCGCCCTGCAGGAGAAGTTCGCCCTGTCGCGCACGGCGGCGGTGCTGTGGCTCGGCGGTGTCCTGGGTGTCGTCTCGGTGGTCGGCTTCAGCACCACGACGGGCCTGATCCTGCTCGACACCGTCGACTACTGGGTCAACAACATGGGCATCGTCGCCTCGGCGATCCTCATGTGCGTCTTCGTCGTGTGGGTCTACCGCCGGGCGCCCGAGCTGCGCTACCACCTCAACGCCGTCTCGACGACGCAGCTCGGCGCGTGGTGGTACGCCTGCGTCGGCGCCATCATCCCGGTGATGCTCGGGATCATGCTGGCGCAGACGATCCTCATCCGCATCGACGAGCCCTACGGCGGATACGATGACACGTACCTGCTCTATGCAGGCTGGGGCACCGTGGCGCTGCTGGTGGTCGGGTCGCTCGTCTTCTGGGCGTTCCGTTGGCGCGGACCGGGTCTGTACCGCGCCTGGCCGCCGTACCCGCCGGTCGAGGACCCCGCCGTGCGGAAGGAGGCGTCGCGATGAMSAQHKSAPREQFTGQVGFILSAIGSAVGLGNIWRFPGVAYENGGGAFLVPYLIALLTAGIPILFLDYAIGHRFRGGAPQAFRRIKGWLETLGWFQVMICIVIAVYYAAVVAWAASFFVYSFGLDWGDDPQGFFFGEHLQLADVGGADPWLTFDFVAAVLIPLVLVWLVVVAVLAAGVVKGVQRANIVFIPLLLVAFGALVVRALTLDGAADGLNALFTPQWDALGDPDVWIAAYGQIFFSLSVAFGIMITYASYRRRRSNMTGPGLVVAFSNSGFEMLAGLGVFSALGFLALESGGTVDELGIAGVGLAFVTFPAIVSEMPAGALFGALFFGSLVMAGFTSLVSILQVVSAALQEKFALSRTAAVLWLGGVLGVVSVVGFSTTTGLILLDTVDYWVNNMGIVASAILMCVFVVWVYRRAPELRYHLNAVSTTQLGAWWYACVGAIIPVMLGIMLAQTILIRIDEPYGGYDDTYLLYAGWGTVALLVVGSLVFWAFRWRGPGLYRAWPPYPPVEDPAVRKEASRPGPT0013950_245DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013950-TC_NSS-K03308NANA
AK018_038971254xyoA_2COG0277putative xylitol oxidaseATGCGGAACTGGGCCGGGAACCTCGCCTACGCCGCGCACGACCTCGTGCGCCCGACATCCCTGGAGGAGCTCGCCGACGTACTGGCCGTCGGCGGGCCCGTGCGCGCGCTGGGGTCGCGCCACTCGTTCAACGACCTGGCCGACACGACCGGGACGCACGTCCAGGTCGACGGGCTGGACGACGGCCGGCCGGCCGTGGACCTGGACACCGGCACCGGCGTCGTCTCCGTCAACGCGGGACTGCGGTACGGCGAGCTGTCGCGCGCCCTGGAGGCCGAGGGGCGGGCGGTGACCCAGCTGGCCTCCCTGCCGCACATCTCCGTGGCCGGGGCGGTCGCCACAGCCACGCACGGGTCCGGGGACGCCAACCCGTCGCTGGCGAGCGCCGTCGTCGGGCTCGAGCTGATGACCACCGCCGGGGAGCTGCGCCGGATCACCCGGGACACCGACCCGGAGGTCTTCGCCGGCACGGTCGTGTCCCTCGGTGCGCTCGGCATCGTCACGCGCCTGGAGCTCGCCACGGTGCCCGCGTTCCAGGTGCGCCAGGACGTCGCCCTCGACCTGCCGTGGCAGACGGTGCTCGAGCACTTCGACGCCGTGACCGGGTCGGCCTACTCCGTCAGCCTCTTCACGAGCTGGGACGAGCCCACCGTCCGGGCGGCCTGGTTCAAGTCCGTCGTGTCCGACGGCGGTGGTCGCCGTCCCGAGCCCGTGCCCGGTCTGCCGTGGGCCGAGCACGACGTGCACCCGGTGCCCGGCGTCGACCCGGCCGCCTGCACCGCGCAGCACGGCGTACCGGGGCCCTCGCACGAGCGGCTCAGCCACTTCCGGCTCGACCACACGCCGTCGGCCGGGGAGGAGCTGCAGAGCGAGTACCTGCTGCCGCGGCGGCACGCCGCCGAGGCGATCGAGGCGATGCGCGCCCTCGGGCCCCGGGTCGCGCCGCTGCTGCTGACCGGGGAGATCCGCACGATCGCCGCCGACGACCTCTGGCTCAGCCCCTTCGGCGAGGACTCGATCGGCCTGCACTTCACCTGGCACCCCCGGGGTGCCGAGGTCGCGGCGCTGCTGCCGGTGATCGAGGACGCCCTGGCACCGTTCGGCGCCCGGCCGCACTGGGGCAAGGTGTTCGCCGCGGACCCCGTCGCGCTGCGCGCGGCGTACCCGCGGTTCGAGGACTTCCGCGCGCTGGCCGACCGGTTCGACCCGCAGGGTCGGCTGCGCGGCGGGTACGTCGCGCGACTGCTCGGCTGAMRNWAGNLAYAAHDLVRPTSLEELADVLAVGGPVRALGSRHSFNDLADTTGTHVQVDGLDDGRPAVDLDTGTGVVSVNAGLRYGELSRALEAEGRAVTQLASLPHISVAGAVATATHGSGDANPSLASAVVGLELMTTAGELRRITRDTDPEVFAGTVVSLGALGIVTRLELATVPAFQVRQDVALDLPWQTVLEHFDAVTGSAYSVSLFTSWDEPTVRAAWFKSVVSDGGGRRPEPVPGLPWAEHDVHPVPGVDPAACTAQHGVPGPSHERLSHFRLDHTPSAGEELQSEYLLPRRHAAEAIEAMRALGPRVAPLLLTGEIRTIAADDLWLSPFGEDSIGLHFTWHPRGAEVAALLPVIEDALAPFGARPHWGKVFAADPVALRAAYPRFEDFRALADRFDPQGRLRGGYVARLLGNANANANANA
AK018_038981140hypothetical proteinATGAGCGTCGACGCCGGCACCGTCCGGACGGCCCGCCTGCGGGCCCAGCGCCTGCGTGAGCCCGACCTGCCCGACCTGCCCACCGCCGTCGGGCACCTCCTCGCCGTGCAGGGGCAGGAGCTGCGGCCCACGCTGTGGGGCCTCACCCGCCGGCTCGCGCCGTCCGCACGGCCCGGCGAAGCCGCCGCCGGTGCGGTGCTGGACGACGGTGCGGTCCTGCGCACCCACGTGCTGCGCCCCACCTGGCACCTCGTGCGACCGCAGGACGTGCGCTGGCTGCTCGAGCTGACGGCGCCGCGCGTCACGCGGACCATGGCCTCCACCGAGCGGTCGTGGGGTCTGGGCGAGCCCGGGCCGGGGATCGACGTCGTCGCCACCGCGGTCGCCTCCGGGCCCCGCACCCGCGACGAGCTGGCCGCTGCACTCGTGCACCGCGGCGCCCTGGCCGCCGACGCCCCCGGGATCGCCGTGTCCCACGTGCTCATGCACGCGGAGCTGCAGCAGGTGCTGATCAGCGGTCCGGCGCAGCACGGCCGGACCACCTACGCCGCCTTTGCCGAGCGCGTCCCGGCCGGCTACGGACCGCTCGGTCGGCACGTCGACCGGGAGTCGGCCGTCCTGGAGCTCTGGCGCCGCTGGCTCCCCGCCCGCGCCTACGCCACCGTCCACGACCTCGCGCAGTGGTCGGGACTGACGCGCAGCGTGCTGCGCGCCGGTCTGGCCGTGCTGCGTGACCTCGGCGACGTCGTCGAGGTCCCCGGCGCCGGTGACCTGGAGGGGCTGACTCTGGTCACGACCCCCGCGGTGCACGACGCCGCGACCTCCGCCGCGCCGCCCGGACCGGCCGGTCCCCGGGAGCCGGTCGTGGACCTGCTGTGCGCCTACGACGAGGTGCTCAGCTCCTTCGGCGAGACGCGACGGGTCCTGGCCGACCCCCGCGCCCCCGAACCGGACCGGCGGCGGGCGTTCGTCCACACGGTCGCCGTCGACGGGCTGCGCGCGGCCCGGTGGCGCTGGCCCGGCGCGCCCACGCCGTCGGGGGAGCCGGAGCTGCAGTGGCAGCGACCTCCGACGCCGGCGGACCGGGCCGCCGTCGGGCGGGCGTCCGTCGACCTGATGACCTTCCTGCGCGCGCCCTGAMSVDAGTVRTARLRAQRLREPDLPDLPTAVGHLLAVQGQELRPTLWGLTRRLAPSARPGEAAAGAVLDDGAVLRTHVLRPTWHLVRPQDVRWLLELTAPRVTRTMASTERSWGLGEPGPGIDVVATAVASGPRTRDELAAALVHRGALAADAPGIAVSHVLMHAELQQVLISGPAQHGRTTYAAFAERVPAGYGPLGRHVDRESAVLELWRRWLPARAYATVHDLAQWSGLTRSVLRAGLAVLRDLGDVVEVPGAGDLEGLTLVTTPAVHDAATSAAPPGPAGPREPVVDLLCAYDEVLSSFGETRRVLADPRAPEPDRRRAFVHTVAVDGLRAARWRWPGAPTPSGEPELQWQRPPTPADRAAVGRASVDLMTFLRAPNANANANANA
AK018_038991536abf2_2COG3534Intracellular exo-alpha-L-arabinofuranosidase 2ATGCCGCAGGACCAGTCCACCGCCATCATCGACCTCGACGTCCCGGGCCCGCGCATCTCCCGGCACGTCTACGGCCACTTCGCCGAGCACCTCGGCCGCTGCATCTACGACGGCTTCTACGTCGGGGAGGACGCCGACGTCCCGCACGTCCGGGGGATCCGGACCGACGTCGTCGAGGCGCTGCGGGCCCTGCAGATCCCCAACCTGCGGTGGCCCGGCGGCTGCTTCGCCGACGACTACCACTGGCGCGACGGCATCGGCCCGCGCGACCAGCGCCCCCGCATGGTCAACTCCCACTGGGGCGACGTCGTCGAGGACAACTCGTTCGGGACCCACGAGTTCATGGACCTGTGCGAGCTGCTCGGCGCCGACGCCTACATCAGCGGGAACGTCGGGTCCGGGTCCGTCGCGGAGATGAGCGAGTGGATCGAGTACCTCACCCGCGCCGACGACTCGCCGATGGCGGCCCTGCGCCGCGAGAACGGGCGCGACGAGCCGTGGAAGGTGCCGTACTTCGGCATCGGCAACGAGGCGTGGGGCTGCGGCGGCAACCTGCGGGTCGAGCAGTTCGCCTCGCTGGCCCGCCAGTACTCCACCTACGTGCGCAACCACGGCGAGAACACGACGTACCGGATCGCCGCGGGCGCCTCCGACGCCGACCTGCACTGGACCGAGGTCCTCATGCGGTCGTTCGACGCCCTGGACGACCCCGCGGACGCGGACAAGCCCGGCGACCCGTTCCAGGCGATCTCGCTGCACTACTACACGATGACCGGGCCGTGGCAGGACAAGGGTAGCGCGACCGAGTTCAGCGAGGACGAGTGGTACCTCGCCCTGCAGCGCGCCGCCTTCATGGAGCGCCTGCTCACCCGCCACGGCCAGGTGATGGACCGCTACGACCCGCACCGGCGCATCGGGCTGGTCGTGGACGAGTGGGGCACCTGGTGGAACGTGGAGCCGGGGACCAACCCCGGGTTCCTGTACCAGCAGAACACCCTGCGCGACGCGCTGGTCGCGTCGGTGCACTTCGACGCCTTCCACCGGCACGCCGACCGTGTGGTGATGACCAACATCGCCCAGACGGTGAACGTGCTGCAGGCGATGCTGCTCACCGACCCCGAGACGGGCGCCCTCGTGCGGACCCCGAGCTACCACGTCTTCGCGATGAACACCCCGCACCACGACGCGGACTCGCTCGCCGTCCACCTGCAGGGGGTGCCCACGCGGACGACGGACGGCGCGGAGCTGCCGCTGGTCTCGGCGTCGGCCTCGGTCTCGGGGGACCGTGCAACCGTGTCGCTGACCAACCTGGACGCCGAGGCCGAGCGCACGATCGTGCTCGACCTGCGCGGTCGTGAGGTCACGGGGTACGAGGGTCTGGTCCTGACCGCGCCGGAGCTGGCCACGCACAACAGCCCGGACGCGCCCGACGCCGTCGCCCCGGTGGCCCTGGAGTCGGTCCGACCGCACGAGCGGGGGCTCGAGGTGACGCTCCCGGCGCACTCCTACGCCACGGTGTCGCTCACGCTCGCCTGAMPQDQSTAIIDLDVPGPRISRHVYGHFAEHLGRCIYDGFYVGEDADVPHVRGIRTDVVEALRALQIPNLRWPGGCFADDYHWRDGIGPRDQRPRMVNSHWGDVVEDNSFGTHEFMDLCELLGADAYISGNVGSGSVAEMSEWIEYLTRADDSPMAALRRENGRDEPWKVPYFGIGNEAWGCGGNLRVEQFASLARQYSTYVRNHGENTTYRIAAGASDADLHWTEVLMRSFDALDDPADADKPGDPFQAISLHYYTMTGPWQDKGSATEFSEDEWYLALQRAAFMERLLTRHGQVMDRYDPHRRIGLVVDEWGTWWNVEPGTNPGFLYQQNTLRDALVASVHFDAFHRHADRVVMTNIAQTVNVLQAMLLTDPETGALVRTPSYHVFAMNTPHHDADSLAVHLQGVPTRTTDGAELPLVSASASVSGDRATVSLTNLDAEAERTIVLDLRGREVTGYEGLVLTAPELATHNSPDAPDAVAPVALESVRPHERGLEVTLPAHSYATVSLTLAPGPT0018655_1126DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
AK018_03900825melC_4COG0395Melibiose/raffinose/stachyose import permease protein MelCATGACCACGGCCCTCTGGCGGCGCACGCTGCTGAGCATCGGGATGATCGCGCTCGCGCTGATCATCGGTGTGCCGCTCTACTACATCGTCATCAACACGTTCAAGACCCAGGCCGACATGGTGTCCTCACCGCTCGGTCTGCCGGAGACCTGGTCGTTCGCGAACTGGTCGTCCGCCCTGGGCGACATGTCGATCTACCAGGCCTTCGGCAACACGCTGTACGTGACGGTCCTGGCGGTGCTGGCGCAGCTCCTCGTGGGGGCGATGGCCGCGTACGCCATGATCATCGCGCGCAACCGGACGACCAGGATCCTCGGCAGCCTGCTGCTCGTCGGGTTCATCATCCCGCCGCAGTCCACGATGATCCCGCTCTACCGGACCCTCGTCGGCTTCGAGCTGGTCGACAGCCTGAACGGCCTGGTCATCATGTACATGGGCGGGGCGATCTTCTGCTTCTTCCTCATCCAGGGCTACATGCGCACCCTGCCGTACGAGGTGATCGAGGCCGCGCGGATCGACGGGGCCGGGACCAACCAGATCTTCTGGCGGATCGTCCTGCCCCTCATCAAGCCGATCCTGGTGACCGTGGGCGTGTTCCAGACCATGTGGGTCTGGAACGACTTCCTCCTGCCGACGGTCTTCCTGTCCTCGCCGCAGAAGGAGACCATCGTGCTCCAGGTGTACAGCGCCGTCTCGGAGTTCACGACCGACTGGCCGGCCTTCATGACGATCACGGTGATCGCCCTGATCCCGATGGTGATCTTCTTCGTCTTCACCCAGCGACACATCGTCAGCGGACTGCTCGCGGGAAGCGTCAAGGGCTGAMTTALWRRTLLSIGMIALALIIGVPLYYIVINTFKTQADMVSSPLGLPETWSFANWSSALGDMSIYQAFGNTLYVTVLAVLAQLLVGAMAAYAMIIARNRTTRILGSLLLVGFIIPPQSTMIPLYRTLVGFELVDSLNGLVIMYMGGAIFCFFLIQGYMRTLPYEVIEAARIDGAGTNQIFWRIVLPLIKPILVTVGVFQTMWVWNDFLLPTVFLSSPQKETIVLQVYSAVSEFTTDWPAFMTITVIALIPMVIFFVFTQRHIVSGLLAGSVKGPGPT0016340_2106DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_03901960melD_9COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACGACACTGACGACTCCGACGTCGAGCGGCGCGCCCGCGCCCACCGCCAGGCAGCGCCGACGCCGATCCGTCGAGGGCGGCTGGAAGCAGATCACGATCAACAGGGCGTTCCTGATCCCTGCGATCGTCGTCTTCGTCTTCCTGTTCGTGGTCCCGCTGCTCCAGGGCCTGTACTGGAGCTTCACGGACTTCACCGGCTACAGCCCCGAGGCGAACTTCATCGGCTGGGACAACTACGTCCAGATCCTCAACGACCCCTCGATGCTCTCGGGGCTGACCTTCACGCTGCTGTTCGCCGTCGGCACCACCCTGCTGGTCACCTGCCTGGCCATCCCCCTCGCGGTGCAGCTCAACAAGGCCTTCGTCGGGCGCAACGTCGTGCGCTCGCTCTGGTTCTTCCCGGCCGTGCCCAGCATGGCCATCCTGGGCCTGGTCTGGAGCTACATCCTGTCCCCGCTGCCGTCCGGGGTGCTCAACACCCTGCTGTCCAACTGGTTCGGCATCGAGGCGGTCTCGTGGCTGTCGGACAACACCCTGGCGCGGTTCTCGGTGATCATGGTCGGCGTGTGGGCGCAGACCGGCTGGCACGCCGTGCTCTACCTCGCCTACCTCCAGTCGATCCCGCAGGAGTACTACGAGGTCGCGAAGATCGACGGTGCGTCGCCGCGCCAGCAGTTCTTCGCCATCACCCTGCCGCTGCTGATGCCGGCGATGGTGGTCAGCTCCTTCCTGCTGCTCACCAACGGTCTGAAGGTGTTCGACCTGCCGTACACGCTGACCAACGGCGGACCCGGGTTCGCGACGTACACCATCACCCAGTCGCTCGTCGTCACCGGCGTCGGCCAGGGGGAGTACGGGCTGTCGTCGGCGCTCGCCGTGATGTTCACCGTGGCGGTCGGCGTCATCGGGTTCACCCAGCTCCGCATCACGAGCCGCATCGGGAGGCGATTCGCATGAMTTLTTPTSSGAPAPTARQRRRRSVEGGWKQITINRAFLIPAIVVFVFLFVVPLLQGLYWSFTDFTGYSPEANFIGWDNYVQILNDPSMLSGLTFTLLFAVGTTLLVTCLAIPLAVQLNKAFVGRNVVRSLWFFPAVPSMAILGLVWSYILSPLPSGVLNTLLSNWFGIEAVSWLSDNTLARFSVIMVGVWAQTGWHAVLYLAYLQSIPQEYYEVAKIDGASPRQQFFAITLPLLMPAMVVSSFLLLTNGLKVFDLPYTLTNGGPGFATYTITQSLVVTGVGQGEYGLSSALAVMFTVAVGVIGFTQLRITSRIGRRFAPGPT0016335_446DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_03902165hypothetical proteinATGGGCTCGAAGACCGGGTCGACCTCCGGGGTGAAGTTCTCGGTCACCGTCACGTCGTTCGTCGCCTCGTGGAACATCTCCACGCCCTGCTCGGAGGCGAGCCAGGTCAGGAACGTCTTGGCCGCCTCCTGCGTGTCCTCGTCCGAGCTCGCGCTGATCGCGTAGMGSKTGSTSGVKFSVTVTSFVASWNISTPCSEASQVRNVLAASCVSSSELALIANANANANANA
AK018_03903231hypothetical proteinGTGACGTCGGGGTTCTCCGCCTCGAACGCCTCGATCATCGGCTCCATCTGCTCCTGGCCGGTCCAGGAGAGGAACGAGACCGTGGTGGTGCCGTCGGCCTCGCCGGAGTCGCCGCTGCAGGCACCGAGCGAGCCTGCGAGCGCCGTCACGGCGATACCTGCGACCACCATCCGCATGGGTGACTTCATCTTCGAACTCCTTCGATCGGGCGGCTGTGCCCTGAACGGCTGAMTSGFSASNASIIGSICSWPVQERNETVVVPSASPESPLQAPSEPASAVTAIPATTIRMGDFIFELLRSGGCALNGNANANANANA
AK018_039041023ccpA_10COG1609Catabolite control protein AATGCCCACGATGAGCGACGTCGCCCGTGCCGCCGGCGTCTCCGTCATGACCGTCTCGAACGTGCTGAACGGCAAGCCGCGGGTGGGGGCCGAGACGCGTCTGCGCGTGCTGGAGGTGGTCGACGAGCTGGGCTACGAGATCAACCTCAGCGCGCGGCGGCTGCGCTCAGGACGCACGGGGGCGATCGGGCTCGTCGTCCCGCGGTTCGACCACCCGTACTTCGGCGATCTCGCCGCGCGGCTGTCGTCGGCGCTCGCGTCCACAGGACGCCACCTCGCCGTCGAGCAGAGCGACGCGAGCAAGGAGGGCGAGCTCGCCGCGCTCTCGCTCGCGCGCCTGCAGACCTACGACGGCGTCATCCTCAGCGTCGTCGGCCTGGGCTACGACGACATCGACCGGATCCGCCCGTCGTTCCCGGTGGTGCTCCTGGGCGAGCAGCACATGCCGCCGCGCTTCGACCAGATCCACATCGACAACATCACGGGCGCCCGGCTGGCGACGGAGCACCTGCTCGACCGCGGCGCACGACGGATCGTCATGGTCGGCGGCGGCGACGAGGGCCACGCCTCGATGGTCACGCTCAGGACGCGGGGCTGGGAGCTCGCGCAGCAGGAGCGTGGCGTGCCCGTGGACGACGCCGCGGTCCTCCCCCTCGACCGCTTCGAGATGTCGAGCGCCCGGATCGCCGTGCGGGCGCTCCTCGCCCGCGACCCGTCGATCGACGCGTTCTTCGCCATCACGGACCAGGTCGCGATGGGCGTGCTGGCCGGCATCCACGACGCGGGCCTCCGCGTCCCGGACGACGTCCAGGTCGTCGGCTTCGACAACCTCGCGCTCGGCGAGTTCACGATGCCGGGCCTGACGACGATCGACCCCAGCAACGCCTGGATCGTCGAGAACGCGGTGGCAGCGCTCGACCGTCGGATCGCCGACCGCGACAGCGCGCCCCAGCATCTCGTCAGCCCGGTGCACCTGGTCGAGCGAGGGACGTCGCGCGCACGACGGGCGGACCCGTCGCCGTGAMPTMSDVARAAGVSVMTVSNVLNGKPRVGAETRLRVLEVVDELGYEINLSARRLRSGRTGAIGLVVPRFDHPYFGDLAARLSSALASTGRHLAVEQSDASKEGELAALSLARLQTYDGVILSVVGLGYDDIDRIRPSFPVVLLGEQHMPPRFDQIHIDNITGARLATEHLLDRGARRIVMVGGGDEGHASMVTLRTRGWELAQQERGVPVDDAAVLPLDRFEMSSARIAVRALLARDPSIDAFFAITDQVAMGVLAGIHDAGLRVPDDVQVVGFDNLALGEFTMPGLTTIDPSNAWIVENAVAALDRRIADRDSAPQHLVSPVHLVERGTSRARRADPSPPGPT0021075_317DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
AK018_03905372hypothetical proteinATGGATATCGACAGCGCGACGGAGCTGGACCCTGACGCAGGGTCCGGGATCTCCTGCCAGCACGATGAGAACGGGACCCTGCTGACGCTGTGGGGCGAGGTCGACGCCGCCCTGCGCGAGTCGGCCAGCGACGCCATGGCCTCCGTGGCCGCCCGGCCCGGGGCGGCCCCGATCGTGCTCGACGCCCGCGACGTCAGCTTCATCGACTCCTCGGGCGTCGCCTTCGTCCTGCAGATCTACATGTTCGGCCAGGAGATGGGCGCCCCGGTCCAGCTCCTCGCGCCCTCGGAGGCCGTGACCGAGGTGCTCGAGATGGTCGGGATGGCGGGACGGATCCCCGTGATCCCCGAGGAGCAGCCCGCCGGCACCTGAMDIDSATELDPDAGSGISCQHDENGTLLTLWGEVDAALRESASDAMASVAARPGAAPIVLDARDVSFIDSSGVAFVLQIYMFGQEMGAPVQLLAPSEAVTEVLEMVGMAGRIPVIPEEQPAGTPGPT0024655_110DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-STAGE_II_SPORULATION,PGPT0024655-spoIIAA-K06378NANA
AK018_03906498hypothetical proteinGTGACCGGGGGCGAGCCGGAGCCGGAACGCCGCGCGCGGGAAGCCCTCGAGGCGTCCGGCGCGGAGTTCGTCATCACGCGCCACGGACGCGTGGGTTCCCTGGCCGAGGCGGCGGCCGCGCGCGGCGTCGCACCGGACCGCCTGCTCAAGACGATCGTGGTGCGCCGGGCCGCCGACGACTACCTCTTCGTCCTCGTCCCCGGGGGCCGGACGATCTCCTGGCCGCGGCTGCGGGCGCTGCTGGGGGTGAACCGGCTCTCCCTGCCGGACGCCGAGGTGGCCCGCGAGGTGACGGGCTACGAACGCGGCACGATCACGCCGTTCGGGTCGTGGCACCGCTGGCCGGTCGTGGCCGATGCGAGCATCCCGGCAGGGGGTACCGTGTCTGTCGGGGCCGGCGGTCACGGTGTCGGGGCGACGCTGGACGCGGATGTCCTGCTACGGGTGCTCGACGCACGGGTGGCGGACGTGACCGACCCCGAGGCATCACCCGCGTGAMTGGEPEPERRAREALEASGAEFVITRHGRVGSLAEAAAARGVAPDRLLKTIVVRRAADDYLFVLVPGGRTISWPRLRALLGVNRLSLPDAEVAREVTGYERGTITPFGSWHRWPVVADASIPAGGTVSVGAGGHGVGATLDADVLLRVLDARVADVTDPEASPANANANANANA
AK018_03907330hypothetical proteinATGGGCCATGCCGACGACCCGCGGCGGTTCCTCGTCGACGGACGCCTCGACCGCAGCCCGCGCCGGTGGCGCGACAAGGTGGCGGTGACCCGGTACCTGGCGACCGTGGCGATGCCGCGGCTGCTCGAGCCGATCTCCGAGCGGGACCTGACCGACCGCCTCGCCGAGCTGGCGCGCGACCCGGTCGCGCTGCGCCGTGCCATGGTCGACCTGGGGCTCGTGAGCCGGACCCGGGACGGTGCCGAGTACTGGCGCACGGAGCGGACCGAGCACGACCCGGAACCCGACGCGGTGGAGATCGCCGACCGCGCGCTCGGCGAGTCCCCGTGAMGHADDPRRFLVDGRLDRSPRRWRDKVAVTRYLATVAMPRLLEPISERDLTDRLAELARDPVALRRAMVDLGLVSRTRDGAEYWRTERTEHDPEPDAVEIADRALGESPNANANANANA
AK018_039082448hypothetical proteinGTGGCGGACGAGGGCGAACCGAGGGAGATCGACGGCGGGCACGCGGTGCGGGCGGAAACGCCCCGCGACGCCCGCGTCGTCGCCTCGCGCCCAGGGGGCCCGCGCCGGGGCTGGCGCGTCGTCGGTGCCGGTGCCGGTGCACTCGTCCTCGCGACCGGCTTCATGGTCGGATCCGTGGCCAGCACGCCCTGGAACGACTTCTCCCAGCACCCCACCTTCACCGCGCCGGTCGAGACGGAACCGCTCGAGCTCGGCGTGGTCGGCGGCGCCTCCCCGACGGGTCCGACGTCGATCGACCAGCTCCTCGGCGTGATCGAGGAGGCCGAGCTCGCCGCTCTCGAGAGCGGCCGTGAGCTCGGCCCCGAGGTGCAGCAGGCGGCCGCCGAGCTCGGGGCCCTGCTGACGACCTACGTCGCCCAGCAGCAGGCCGACCACGTCCCGGGTCTCGGCGACCTGGACCTGCCGCAGGCTCCCGACCCGGCGACCCCCGCGATGCCGGACGAGATCCCGCCGGCCGGACCGCCGTCGTCGGACGACCAGCACCTCGATCCGCCGGAGAGCACGCCCGGAGACCCGCTGCGCCCGCCGGCCGAGGCGACGCCGGAGCCGTTCCCCTCACCGTCGCAGGCACCGGCACCCTCAGCATCTGCGGCCCCGTCCGCGTCGCCCGAGCCGTCGGCGTCGCCCGAGCCGTCCGTCGCCCCGGAGCCGTCGGTCGCGCCCGACGACGACGCGGACGTGCTGCAGGCCGGCGGCCCCCGCGGACCGGCCGACGACGCACCCGCCGAGGTGGACGACCTGGACCCGCTGCCGCAGGAGGTCGGGACGTTCCAGGGCGCCGGGCTGCAGCTGCCCACCTGGGAGGGTCTCGTCGGGGGCGACGGCACGTTCCAGGTCGGCAACGGGTTCGACCAGGACGTCGCCACCGGCGACGAGACGACGTCCGCCGCCGGGCCGGAGCACGCGCACGGCGACGAGCGCGTCACCTTCGACGACATCGTCGTGGCGGCGACCCACCTGGCCTCGCTGCTGGACCCCGCCACCGCCTCCGTCGTCGTCGACGTCCGTCCCGCGGTCACCCAGCTGCCCGACGGCAGCTTCGTCTCCGACGACGGCGTGGCCGTGGCCTCGAACGGTCTGCCGCTGGCGAGCGGTGCCGCCGGCAGCGGCTCGCTGTCCGCGACCCTGCAGGCGGTCGTGGACCAGCACGCCTCGTCCACCGCCGGCTACAGCAACGGACGGATCCCGGCCTCGGTGCTGTGCAGCATCACCACGGCCCCCGGGCACATGCTCCGGTGCGACGCCGCGGCCCAGTTCGCCGCGCTCAACGCGGAGTACCGGGACCGCTTCGGTGTGAACATCCCGATGACCGACTCCTACCGGTCGTACGACGCGCAGGTCGCGGTCCGCGCCGCGAAGCCGCACCTGGCGGCCGTGCCCGGCACGTCGAACCACGGCTGGGGCCTGGCCCTGGACCTGAGCACGCCGATCTCCGGCGGCTACTCCGCCGAGTACGTCTGGCTGCGGGTGCACGCCCCGGACTTCGGGTGGGACAACCCCGTCTGGGCCCGTCCGAACGGGAGCAAGCCCGAGCCGTGGCACTGGGAGTTCTTCGCCGCAGGCCCGGTCCCCGACCGCGCCACGTCGCACGCCGACGTCACCACCGCCGGCGGGTCCGGGTCGTCCGGCGGCTCGTCGACCGGGTCCGGCTCGTCGAAGGGTTCCGGAGCGAAGGCCCCGAGCGGGAAGGGCGACGGCGGCGCGAAGGGAACCTCGCAGGGCGACACGACGGGCAAGGGCTCGCAGGGCGACAAGGCCGACGGCGAGAAGCCGAAGCCGACGCCGAAGCCGTCCACGAGCCCGAGCCCGAAGCCCTCGGCGAGCCCGTCGCCGTCGCCCGAGCCGTCGGCCAGCCCGAAGCCCTCGGCAAGCCCGTCGCCGTCGCCCGAACCGTCGGCCGAGCCGGAGCCGTCCACGAGCCCGAGCCCGGAGCCGTCGGCCAGCCCGAAGCCCTCGGCAAGCCCGTCGCCGTCGCCCGAACCGTCGGCCGAGCCGGAGCCGTCCACGAGCCCGAGCCCGGAGCCGTCGGCCAGCCCGTCCCCGGGGACGGACTCCTCGCCGGCACCGTCCTCGGAGCCGTCGCCGACGGTGGGGACCGGCGACGAGGGCAGCACGGGGCTGTCGGACCCGGAGTCGTCGAGCACGGAGTCCTCGAGCACGGAGTCGGCGGGCGCGGAGTCCCCGACCTCGGGTGAGGGCGCGACGGCGCCGACCGACGACAGCGAGGTGGCGCAGCGCGAGGACGAGACGCTCGGCTCGCGGACCGACGGCAGCGGTGACGAGGACGACGCGGTTCCCTCCGGGGACGGCGACGACTCGTCCGGCGACGGGTCCGTGGACAGCACCGACGACGGTGCCGTGGCGGACGGGGCCGACGGGACCGAGTGAMADEGEPREIDGGHAVRAETPRDARVVASRPGGPRRGWRVVGAGAGALVLATGFMVGSVASTPWNDFSQHPTFTAPVETEPLELGVVGGASPTGPTSIDQLLGVIEEAELAALESGRELGPEVQQAAAELGALLTTYVAQQQADHVPGLGDLDLPQAPDPATPAMPDEIPPAGPPSSDDQHLDPPESTPGDPLRPPAEATPEPFPSPSQAPAPSASAAPSASPEPSASPEPSVAPEPSVAPDDDADVLQAGGPRGPADDAPAEVDDLDPLPQEVGTFQGAGLQLPTWEGLVGGDGTFQVGNGFDQDVATGDETTSAAGPEHAHGDERVTFDDIVVAATHLASLLDPATASVVVDVRPAVTQLPDGSFVSDDGVAVASNGLPLASGAAGSGSLSATLQAVVDQHASSTAGYSNGRIPASVLCSITTAPGHMLRCDAAAQFAALNAEYRDRFGVNIPMTDSYRSYDAQVAVRAAKPHLAAVPGTSNHGWGLALDLSTPISGGYSAEYVWLRVHAPDFGWDNPVWARPNGSKPEPWHWEFFAAGPVPDRATSHADVTTAGGSGSSGGSSTGSGSSKGSGAKAPSGKGDGGAKGTSQGDTTGKGSQGDKADGEKPKPTPKPSTSPSPKPSASPSPSPEPSASPKPSASPSPSPEPSAEPEPSTSPSPEPSASPKPSASPSPSPEPSAEPEPSTSPSPEPSASPSPGTDSSPAPSSEPSPTVGTGDEGSTGLSDPESSSTESSSTESAGAESPTSGEGATAPTDDSEVAQREDETLGSRTDGSGDEDDAVPSGDGDDSSGDGSVDSTDDGAVADGADGTENANANANANA
AK018_03909789pxpA_2COG15405-oxoprolinase subunit AATGAGGACGTCCGACGCGACCGCCCCGCGGAGCATCGACCTGAACAGCGACCTCGGCGAGGGCACCGACCCCGCGGAGCACGCCGGGGACGCCCGCATGCTCGAGATCGTCTCGAGCGCCAACGTCGCCTGCGCCTTCCACGCCGGCGACCCGGCGACGATCCACCGCACCGTGCACGCCGCCGTCCGGCGCGGGGTGTCCGTGGGCGCGCACGTCGCCTACAACGACCGCGAGGGGTTCGGGCGCCGGGACCTCGCCGTCCCCAGCGACGAGCTGCGCGCGGACCTCGTCTACCAGCTCGGCGCGATCCGCGAGATCGCCCGCACCGCCGGCACCTCGGTCCGCTACGTGAAACCGCACGGCGCCCTCTACAACACGGCGGCCGTCGACCCGCAGGTCGCCGAGGACGTCGCCGCCGCGATCGTCACGGTGGATCCCGAGCTCGTCCTGCTGGGCCTGCCCGGCAGCGTCGCGCTCGACGCCGCCCGCGCGGCCGGCCTGGTCACGGCGAGCGAGGCGTTCGCCGACCGGGCCTACACCGCCGAGGGCCGGCTCGTGCCCCGCAGCGTCGAGGGCGCCGTCCTGCACGACCCCGAGGAGGTCGCCGCCCGCATGCTGCGACTCGTCCACGAGGGTGTCGTCCGCTCGATCGAGGGCACCGACGTGCAGGTCGTCGCCGACTCCATCTGCGTGCACGGCGACACGCTCGGCGCCGCCGCGATGGCGGCCCGCCTGCGCGAGGTGCTGACCGGGGCCGGGGTGAGCCTGCGGCCCTTCGTCGCGCCATGAMRTSDATAPRSIDLNSDLGEGTDPAEHAGDARMLEIVSSANVACAFHAGDPATIHRTVHAAVRRGVSVGAHVAYNDREGFGRRDLAVPSDELRADLVYQLGAIREIARTAGTSVRYVKPHGALYNTAAVDPQVAEDVAAAIVTVDPELVLLGLPGSVALDAARAAGLVTASEAFADRAYTAEGRLVPRSVEGAVLHDPEEVAARMLRLVHEGVVRSIEGTDVQVVADSICVHGDTLGAAAMAARLREVLTGAGVSLRPFVAPNANANANANA
AK018_039101584hypothetical proteinATGACGCCGCAGGTCCGCCCCGTCGGCGACGACGCGCTGCTGGTCACGCTGGACACCGCCGAGGCCGCCGTGGCGCTGCACCGGTCCCTGCGCGAGCGTCCGGTGCCCGGCGTCGGCCCCACCGTGCCGGGGGCGCGCACGCTGCTCGTCCCGTTCACCCCGGGACGCGCCGACCCCGCCCGACTCGCCCGGGAGCTGCGGGCCCGCGTCACGGAGCCCGCCTCCGCGGGGGCCGCGCAGGTCCGCCGGCACGAGATCGCGGTGGTGTACGACGGCGAGGACCTCGCCGCCGCGGCCGAGCTGCTCGGCTGGTCGGTCGACGAGCTCGTCCGCCGGCACACCGCGGCCACCTGGCGGGTGGCGTTCATGGGGTTCGCCCCGGGGTTCGGCTACCTGAGCGGGGACGACCCGGCGCTGGAGCTCCCGCGCCGCTCCTCGCCGCGCACGCGGGTCCCCGTCGGGGCGGTCGCGATGGCGGGCGGCTACAGCGGCGTCTACCCGCGCGAGAGCCCGGGCGGGTGGCAGCTCCTGGGCCGGACCGACGCCGTCGTCTGGGACGTCGCCCGCGAGGCACCGGCGCTGTGGGCACCCGGCGACGCCGTCCGGTTCCGGCCGGCCCGCGAGCTCGTCACGGCCTCCCGGCCCGCGGCGTCCGCCCCGCCGTCTGCCGCCTCGCCCGCCGACCCGGTGCTCGAGGTGGTGTCCCCGGGCCTGCAGACGCTGGTGCAGGACCTCGGCCGGCCCGGGAGCGTCGACCTGGGCGTGTCCGCCTCCGGGGCGGCCGACCCCCGCAGCGCCCGGGCCGCGCAGCGGGCCGTCGGCAACCGCACCGACGCCGCCGCGCTGGAGACGCTCGGCGGGCTCCGCCTGCGGGCCCTGCGGACCGTCGTCGTGGCGGTCACGGGTGCCCCGGCCGACCTCGAGGTGGTGTCCGACGACGCGCCCCCGCGGGTGCCGCCTCTCGGCCGGCCGTTCGTGCTGGGCGCGGGTCAGGAGCTGTCGCTGGGGTCGCCCCGCCGGGGGCTGCGCACCTACGTGGCGGTGCGCGGCGGCCTGGACGTGGCGCCGGTGCTGGGATCGCGCTCGGCGGACCTCCTCGCCGGTCTGGGTCCGTCCGCCCTGGCCACCGGGGACGTCCTGGGCGCGGCACCGGACGACGTCGGCGCCGTCGCGACCGCGGACCCGGGCGCCCCGGACCCGGACCGCCTGCCGGCCCCCGGTGAGGTCGTCACCCTGCCCGTCGTGCCGGGCCCGCGCGCCGACTGGTTCCCGGCCGACGCCCTCGAGCTGCTCACGGGCCAGGAGTGGGAGGTCACGCCGCGGTCGGACCGCATCGGGCTGCGGCTGCACGGGGAGCGCCCGCTGACGCGGACGGCCGCCGCGCGGGACGCCGAGCTGCCCAGCGAGGCCGCCGTGACCGGCGCGTTCCAGGTCCCGCCCGACGGGCAGCCGGTGCTGTTCGGCCCCGACCACCCCCTGACCGGCGGCTACCCGGTGATCGCCACGGTCGCGGCGTCGCACCGGTGGCTGCTCGGGCAGGTCCCGCCGGGGGCACGGATCCGCTGCCGGCTGGTCGAGGCGTGAMTPQVRPVGDDALLVTLDTAEAAVALHRSLRERPVPGVGPTVPGARTLLVPFTPGRADPARLARELRARVTEPASAGAAQVRRHEIAVVYDGEDLAAAAELLGWSVDELVRRHTAATWRVAFMGFAPGFGYLSGDDPALELPRRSSPRTRVPVGAVAMAGGYSGVYPRESPGGWQLLGRTDAVVWDVAREAPALWAPGDAVRFRPARELVTASRPAASAPPSAASPADPVLEVVSPGLQTLVQDLGRPGSVDLGVSASGAADPRSARAAQRAVGNRTDAAALETLGGLRLRALRTVVVAVTGAPADLEVVSDDAPPRVPPLGRPFVLGAGQELSLGSPRRGLRTYVAVRGGLDVAPVLGSRSADLLAGLGPSALATGDVLGAAPDDVGAVATADPGAPDPDRLPAPGEVVTLPVVPGPRADWFPADALELLTGQEWEVTPRSDRIGLRLHGERPLTRTAAARDAELPSEAAVTGAFQVPPDGQPVLFGPDHPLTGGYPVIATVAASHRWLLGQVPPGARIRCRLVEAPGPT0001010_841DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_ATRAZINE|DERIVATE_DEGRADATIONXENOBIOTIC_CYANURIC_ACID_DEGRADATION,PGPT0001010-atzF-K01457NANA
AK018_03911489hypothetical proteinATGACGTCAGTGCCGACCACTCAGACCGCCCCGACGAGGCAGCGCGGGGCCAGCACCCGGTTCGCCGCCGCCAGTCTGGTCGCCCTGGCGATGATGCTCGGTGCCTGCTCCGCCCCGACGGACGTGCAGCAGTTCATCGACGACGCGCAGGGCCGGGCCGAGGCCATCGAGGGTGACCTGCGCGAGCTCGAGGAGCAGGTGACCGGTGTCCCCGACGACCTGCAGGGGTCCGTGACCGACGCCGTCGCCTCGGCGCAGGCCGCGACGGACGAGGCGCGCGGCGCTCTCGCGCAGGCCGCCGAGTCCGAGGACGGCGCGATGGTGGCGCTGCAGGACGCCCAGGTGGCGCTCGAGGCCGCCTCGGCCGAGGTCAAGCACGTCACCGAGGAGGCCCGCACCGCCGGCGCCGACCAGGTGGCGGACCTGCTGGCGCAGCTGCAGACCCAGATCGACGAGCTGCGCGGCGAGACCGAGGACGCCGCGGCCTGAMTSVPTTQTAPTRQRGASTRFAAASLVALAMMLGACSAPTDVQQFIDDAQGRAEAIEGDLRELEEQVTGVPDDLQGSVTDAVASAQAATDEARGALAQAAESEDGAMVALQDAQVALEAASAEVKHVTEEARTAGADQVADLLAQLQTQIDELRGETEDAAANANANANANA
AK018_039121275N-acetyldiaminopimelate deacetylaseATGAGTGCGCTGACCACCACCGAGCTGACGGCCGTCTACACCGACCTGCACGCCCACCCCGAGCTCGCCTTCGCCGAGCACCGCACCGCCGGGATCGTCGCGGACCGGCTGCGCCGCGACGGCTTCACGGTGCACACGGGGATCGGCGGCACCGGCGTCGTCGGCGTGCTGGCCAACGGCGAGGGCCCGACGGTGCTGCTGCGTGCCGACATGGACGGGCTCCCCGTCACCGAGGACACCGGGCTGCCGTACGCCTCGACGGACACCGCGACGACGCCGGAGGGGCACGAGACGGGCACCATGCACGCCTGCGGCCACGACGTGCACGTCACCTGCCTGCTGGGTGCCGCCGCCGAGCTGGCCGGACGCCGGGCGGAGTGGTCGGGCACGCTGCAGGTGCTGTTCCAGCCCGCCGAGGAGGTCGGGGCGGGCGCCCGCGCGATGCTCGCCGACGGCCTGTACGACCGCGTCGGGACCCCCGACGTCGTGCTCGGTCAGCACGTCATGCCGTTCCCCGTGGGCACGGTGAGCCTCACGCCGGGGCCCGCGATGGCCGCCGCGGACTCGCTGCGCATCACGGTGCACGGCAAGGGCGGGCACGGCTCGTCCCCGGAGGGCACCGTCGACCCGGTGCTGATGGCCGCTGCGACGGTGCAGCGGCTGCAGGGCATCGTGTCCCGCGAGGTCGGGGCGGGGGAGAAGGCGGTGGTCACCGTCGGGTCGCTGCGGGCGGGGACCCGGGCGAACATCATCCCCGACCGGGCCGAGCTGCTGGTCAACGTCCGCTCCTTCGACGAGCGCGTGCGCGGGCGGGTGCTCGCCGCGGTCCGCCGGATCGTCGACGCCGAGGCCGCGGCCTCCGGCGCCCCGCGTGCCCCGGAGTACGAGGAGATCGCCACGTTCCACCTGCTGGTCAACGACCCCGCGGCGTCGGAGCGCACGGGAGCGGTCCTGGCCTCGGCCCTCGGTGCGCACCGCGAGACGATCCAGGAGGCCGGCAACGTGCCCACCGTCGTCGCGCTGCCGCCGCTGGCGGGGTCGGAGGACGTCGGCGACCTGGCCACCGCCGCGGGAGCGCCGCTCGTCTACTGGCACCTGGGCGGGTTCGACCCGGCCCTGTTCGCCGGCTTCGACCCCGGGGCGGCGACCGGGATGGGATCCCTGCCCGACGGCGTCGCCCCGAACCACTCCCCGCAGTTCGCGCCCGTGGCGGAACCCACCCTCGGGCTCGGCGTCGCGCTGCTGGTGTCCGCGGCGACCGAGTGGCTGGACTGAMSALTTTELTAVYTDLHAHPELAFAEHRTAGIVADRLRRDGFTVHTGIGGTGVVGVLANGEGPTVLLRADMDGLPVTEDTGLPYASTDTATTPEGHETGTMHACGHDVHVTCLLGAAAELAGRRAEWSGTLQVLFQPAEEVGAGARAMLADGLYDRVGTPDVVLGQHVMPFPVGTVSLTPGPAMAAADSLRITVHGKGGHGSSPEGTVDPVLMAAATVQRLQGIVSREVGAGEKAVVTVGSLRAGTRANIIPDRAELLVNVRSFDERVRGRVLAAVRRIVDAEAAASGAPRAPEYEEIATFHLLVNDPAASERTGAVLASALGAHRETIQEAGNVPTVVALPPLAGSEDVGDLATAAGAPLVYWHLGGFDPALFAGFDPGAATGMGSLPDGVAPNHSPQFAPVAEPTLGLGVALLVSAATEWLDPGPT0019000_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSAMINIDASE,PGPT0019000-csxA-K15855NANA
AK018_03913849hypothetical proteinATGTTCTCCCGCCCCCGGACATCGTTCGACCTCGTCCCGCGACGGGTGCGTGTGCACGCCGTGCGCGAGCTGACCGGCACCCTGGTCCGCACCACCGTCCGCGACGTGCCCGGCGCGGACCCCGACGCGCCGTCGTCCCTCGCCGCGCTGCGGGCCCCCGGACCGGAGGACCACGTCACCGTCTTCCTGCCGGACCCGGCCACCGGGGAGCTGCACGCCCCGACGCTCGCTCCCGACGGCGGACTGCAGCGCACCAGCACGGGCGTGTCGATCTCGCGGGACCTCACGGTCCGGGACGTGCGCACGGTCGACGGCGTCGACGAGGTCGACCTGGACTGGGTGGTGCACGACGGCGGCGGGCAGGCCGCGGCGTGGGCGTCCCGTGCCGCCGTCGGCGACGAGATCGTGCTGGCCGGGCCGCGGCACAGCCTCGGGGTCCCCGCCGGCGTCGAGCGGCTCATCGTCGCCGTGGACGAGACCGGCCTGCCCGCCGCCGCCCGCTGGACCGCCGCCGTCGGCCCCGAAGTGCGGGTGACCGCGATCGTCGAGATCGGCGACGACGTCGCCGAGGACGTGGTCGAGTCCGAGCTCGGCCACGCCGACGTCGAGATCCTGTACCGGACCGACGGGCCGGGCCAGCTCGCCGAGGCGGTCCGCTCCCTGGGGATGCCGGAGGACGGCGAGTTCGTCGTCGCGCTGGGCGAGGCCGGCGACCTGGTGCCCGTGCGGCGGCACCTGCGTCGTGAGCTCGGCCTGGACGCGGACCGCATGTCGGTCGCGGGCTACTGGCGCCGCGGCGCGGTCAACCACGACCACGAGCAGCCCCTGGACCCCGCCGACCCCGACTGAMFSRPRTSFDLVPRRVRVHAVRELTGTLVRTTVRDVPGADPDAPSSLAALRAPGPEDHVTVFLPDPATGELHAPTLAPDGGLQRTSTGVSISRDLTVRDVRTVDGVDEVDLDWVVHDGGGQAAAWASRAAVGDEIVLAGPRHSLGVPAGVERLIVAVDETGLPAAARWTAAVGPEVRVTAIVEIGDDVAEDVVESELGHADVEILYRTDGPGQLAEAVRSLGMPEDGEFVVALGEAGDLVPVRRHLRRELGLDADRMSVAGYWRRGAVNHDHEQPLDPADPDNANANANANA
AK018_03914489hypothetical proteinGTGAGCGACCCGTACCAGGTGAACCAGCCCGAGGACCCGACGCCGCCGGGAGGCACCCCGCCGCCCGGGCACGGTCAGCAGCCCGGCCCGCCGCCGGGCCAGTACGGCGCACCGCAGGGCCAGTTCGGCGCGCCGGGTTCGTCCCAGCAGCCCGGCTACTCGCAGCAGCCGGGCTACCCGCCGCAGCAGCCCGGCTACCCGCAGGGCGCCTACCCGCCGGCGTACGCGCCGGACCCGCCCGGCAAGATCATGGGCATCATCGGGTTCGTGCTCGCCTTCGTCTTCGCCCCGGCCGGCATCATCGTGTCGGCCCTGGCGCTGTCCGAGTCGAAGAAGGTCGGCTACGACAACGTGCTGGGCAAGTGGGGCCTGTGGCTGTCGATCGTCTTCACCGCGATCGGCCTGCTGATCTTCGTGGCGTACCTGGTGTTCGCCATCTCGATGTTCGGCGTGATGAGCACGTCGACGGAGTGGTCGACCTCTGTCTGAMSDPYQVNQPEDPTPPGGTPPPGHGQQPGPPPGQYGAPQGQFGAPGSSQQPGYSQQPGYPPQQPGYPQGAYPPAYAPDPPGKIMGIIGFVLAFVFAPAGIIVSALALSESKKVGYDNVLGKWGLWLSIVFTAIGLLIFVAYLVFAISMFGVMSTSTEWSTSVNANANANANA
AK018_039154473hypothetical proteinGTGAGCCGTGCGGAGCTGGACCGTGCCGCGGAGCTCCGGGCCGCCGTCGTCGTCCCCGAGATCACCTACCCCGAGCAGCTGCCCGTCTCGGCGCGGCGCGAGGACATCGCCGAGGCGATCCGCGAGCACCAGGTCGTCGTCGTCGCCGGCGAGACCGGCTCGGGCAAGACGACGCAGCTGCCGAAGATCCTCCTCGAGCTCGGCCGGGGCCGCGCCGGACAGATCGGGCACACGCAGCCGCGACGGATCGCGGCGCGGTCGGTGGCCGAGCGCGTGCATGAAGAACTCTGTGGATCTGGACCGCTGACCCCCGGCGGCGTCGTCGGCTACCAGGTGCGGTTCACCGACACCTCCTCCGACGAGACGCTCGTCAAGGTGATGACCGACGGCATCCTGCTGGCCCAGATCCAGCGGGACCCGGACCTGCTCGCCTACGACACGATCGTCATCGACGAGGCGCACGAGCGGTCGCTGAACATCGACTTCCTGCTGGGCTACCTGTCCCGGCTGCTGCCGCGGCGCCCGGACCTCAAGCTCGTCATCACCTCGGCGACGATCGACTCCGAGCGGTTCGCGGCGCACTTCTCGCCCGCCGCCCTGGCCCGGGAGGGCGGGGCTCCCGAGGCGGTGGTCGACGTCCTGCCCGACGCCGCCCCCGTCGTCGAGGTCACCGGGCGCACCTACCCGGTGGAGATCCGGTACCGGCCGCTCACGCCGGACGCCGGGAGCTCCGGGAAGAAGAAGGGGGAGGAGAAGGACCTCGTGACCGGCATCGTCGAGGCGTGCGACGAGCTGATGCGCGAGGGGTCCGGCGACATCCTCGTCTTCCTCTCCGGCGAGCGCGAGATCCACGACGCCGCCGACGCCCTCGAAGGACACCTCGCAGAGCGCGTCCGCGACCCGAAGCGCCCCGACCACGTCGAGATCCTGCCGCTGTACTCGCGGCTGTCGTCCGCCGAGCAGCACCGCGTGTTCCAGTCCCACCCCGGCCGGCGCATCGTGCTGTCCACGAACGTCGCCGAGACGTCGCTGACCGTGCCCGGCATCCACTACGTCGTCGACCCCGGCACCGCCCGCATCTCGCGGTACTCCAAGGCGACCAAGGTGCAGCGCCTGCCGATCGAGGCGATCAGCCAGGCCTCGGCGAACCAGCGTGCCGGCCGGTCGGGACGTGTCGCGGACGGCGTCGCGATCCGCCTGTACTCGCAGGAGGACTTCGAGAACCGTCCGGAGTTCACCGAGCCCGAGATCCTGCGCACCTCGCTCGCCTCGGTGCTGCTGCAGATGGTCTCCGTCGGCGTGGTCGGCTCCCCCGACGACGTCGCCCGGTTCCCGTTCGTCGAGCCGCCGGACACCCGGGCCGTGCGCGACGGCGTGAACCTGCTGTCCGAGCTCGGCGCGCTCGCTCGCCGGCGCGGGCGCGACGGCACCGCCTCGACCGAGGTGCACCTCACCGACGTCGGACGGACGCTCGCCCGGCTGCCCATGGACCCGCGGCTGGCCCGCATGGTCGTCGAGGGCTCCCGGCTCGGCGTCGCCCGCGAGGTCGCCATCGTGGCCGCCGCCCTGTCCATCCAGGACCCGCGCGAACGCCCCGCCGAGTCGCGGGCGCAGGCCGACCAGTCGCACGCCCGCTTCACCGACCCGACGTCGGACTTCCTCACCTACCTCAACCTGTGGGAGTACCTGCGCGAACAGCAGCACCAGATGGGCTCCTCGGCCTTCCGGCGGCTGTGCAAGAGCGAGTACATCAACTTCCTGCGCGTGCGCGAGTGGCAGGACGTCGTCGCCCAGCTGCGGCAGATGGCCAAGCCGCTCGGCGTGGACATGCGCTACCGGCCCGCCACCACGGGATCGGCCGACGACGACGCACCGGACGAGACGGACTGGCGGCGCCCGTGGGACGGCGACACCATCCACCGCGCCCTGCTGTCCGGGATGCTGTCCCAGATCGGCATGCAGGACACCGGCGAGATCAAGGCGTCCTCCGTGGCGCACCTGCGCGGCGAGGCCCGGGCACGCGCTCTGCGCCAGGCCGCCAAGCGGGCCCGCAACGAGTACCTCGGGGCGCGCGGTGCCCGGTTCGCGATCTTCCCCGGCTCCCCGCTGAGCAAGAAGCCGCCGGCGTGGATCATGGCCGGCGAGCTCGTCGAGACCTCCCGGCTGTGGGCGCGCGACGTCGCGAAGATCCAGCCCGAGTGGGCCGAGGACCTCGCCGGCGACCTGGCCAAGCGCACCTACTCCGACCCGCACTGGTCCACCAAGCAAGGTGCCGCGATGGCGACGGAGAAGGTGCTGCTCTACGGCGTGCCGATCGTCGCCGACCGGCCCGTCCTCTTCGGGAAGATCGACCCGGAGGGCGCGCGCGACCTGTTCATCCGGCACGCCCTCGTCGAGGGGCAGTGGACCACCCACCACGCCTTCTTCGCCGAGAACCGCCGGCTGCTCGCCGAGGCGGAGGAGCTCGAGGCACGGTCGCGCCAGCGAGGCCTCGTCGCCTCCGAGGACGACCTCTTCGCGTTCTACGACGAGCGCGTCCCCGAGCACGTCGTCAGCGCGCGGCACTTCGACTCCTGGTGGAAGAAGGTCCGCCGCGACGACCCGGACCTGCTCACCTTCACGCTCGACCAGCTCGTCGACGCCGAGTCCGTGGACACCTCCGAGTTCCCGGAGACCTGGACCCAGGGCGAGGTCACGCTGCCCCTGACGTACCAGTTCCAGCCCGGGACCGACGCCGACGGCGTCACCGTCCACGTGCCCCTGTCGATCCTCAACCGCGTCACCCCCGACGGGTTCGACTGGATGGTCCCCGGCCTGCTCGACGAGCTGTGCGTCGCCACCATCCGGTCGCTGCCCAAGGCGGTGCGTCGCGAGCTCGTCCCCGCGCCCGACGTCGGCGCCGCCGTCGCCGCCTGGCTGCGCGAGCACACCCCCGCGTGGGAGGACATGACACGGGCCGGTGACATGGCCACGCCCTTCCACGTCGAGTTCACCCGTGCCGTGCGCGCGCTGCGGGACGTGATCATCCCGGACGAGGTGTGGGACGCCGAGCGCGTCGAGCGGCTGCCCGCGCACCTGCGCATGACGTTCCGCGTCGAGGACGCGTCAGGTGCGCCGGCGACCGGGTCTCGCGGCGGGGGTCCGGCCGGGGGTGGACGACGGCGGAAATCCGGTCCGAAGAAGCGGCGCGGGTCTCGTCCCGCCCCGGCGGGTCCCGTGGTGCTCGACGAGTCGAAGGACCTGCTGTCGCTGCAGAAGAAGCTGGCGCCGCAGGCGGAGGCCGCGGTGCGGTCGGCCGTCAAGGGGGCGGTCGGCGTGGCGTTGGAGGAAGCTGCGCGGGCGTCGGGCTCGGGTGCGTCGTCGGGCTCGGACGGGGCTGCGCCGCCTCGCTCACGGGCCCCGGGGGGCCCTCCGCTACGGCTGGACGGCGGCGCATCCCCCTCCGAGTCCGACGACCGTGCCGGGTCCGGGCGGTCCGACGGCGGCGCGAACGCCAACTCCTCGGTCACGACATCCGGAGTCGTGCGCGAGCAGGGAGGGCTCTCGACCTGGCCCGAGGTGCCGGGCGGGGTGCTGCCGGGGTCGGTGTCGACGGATCTCGGTGGGGGCGTCGTCGTGCAGGGGTATCCCGCGCTGGTCGAGGAGGCCGGCTCCCGGGGTTCCGCTCCGTCGGTGGCGCTGCGGGTGCTGGCCGACGCCGCGGGTCGGGACGCCGCTCACGCGGCCGGTGTGCGGCGGCTGCTGCTGTCGCAGACGGCGCTGCAGACCGGTCGGATCACGTCGCGGTGGTCGGCGAAGCAGTCGCTGACGCTGGCGGCCGCTCCGTACAAGAACACCGACGCGTTGGTCGCCGACCTGCAGCTCGCCGCCGTCATCGCCCTGACCAGCTCGGACGCGGACAAGGCGCCGGGGACACCGACCGGCGGGCCGGTGGCGGTACAGATCCGTGATGCCGCTTCGTACGAGACGGCGCTCGGGTTCGTGCGCCAGCACCTGGAGGACGAGGTCCACCGGATCGTCGGGCACGTCGTCGCGGCCCTTGCCGCGTGGCGGACCGTCGAGACCGAGGTCAAGGCGTCGTCCTCGCTCGCTTTGCTGAACACCCTGCAGGACATCCGCGAGCACGTCGCCGGCCTGGTTCACGACGGGTTCGTCGCGGCGACGCCCCCGCGACGGGTGCCGCACCTCGTGCGCTACCTGCGGGCGGCGTCGTACCGGCTGGAGAAGGCCGAGTCGAACCCGCACCGCGACGCCGAGCTCGCCTGGAAGATCCAGGACGTCACCGGTGTCTACGACCAGGCCCGCGAGGCCTACGCCGCCGGGGCGCCCGACCCGGCGCGCGCGGCCGAGCTCGCCGAGGTCCGGTGGCTGCTCGAGGAGCTGCGGGTGTCGCTGTTCGCCCAGCAGCTCGGCACCGACGGGTCGGTCAGCGAGAAGCGGATCCGCAAGGTGCTCCGGCCCGGCGGCTGGTAGMSRAELDRAAELRAAVVVPEITYPEQLPVSARREDIAEAIREHQVVVVAGETGSGKTTQLPKILLELGRGRAGQIGHTQPRRIAARSVAERVHEELCGSGPLTPGGVVGYQVRFTDTSSDETLVKVMTDGILLAQIQRDPDLLAYDTIVIDEAHERSLNIDFLLGYLSRLLPRRPDLKLVITSATIDSERFAAHFSPAALAREGGAPEAVVDVLPDAAPVVEVTGRTYPVEIRYRPLTPDAGSSGKKKGEEKDLVTGIVEACDELMREGSGDILVFLSGEREIHDAADALEGHLAERVRDPKRPDHVEILPLYSRLSSAEQHRVFQSHPGRRIVLSTNVAETSLTVPGIHYVVDPGTARISRYSKATKVQRLPIEAISQASANQRAGRSGRVADGVAIRLYSQEDFENRPEFTEPEILRTSLASVLLQMVSVGVVGSPDDVARFPFVEPPDTRAVRDGVNLLSELGALARRRGRDGTASTEVHLTDVGRTLARLPMDPRLARMVVEGSRLGVAREVAIVAAALSIQDPRERPAESRAQADQSHARFTDPTSDFLTYLNLWEYLREQQHQMGSSAFRRLCKSEYINFLRVREWQDVVAQLRQMAKPLGVDMRYRPATTGSADDDAPDETDWRRPWDGDTIHRALLSGMLSQIGMQDTGEIKASSVAHLRGEARARALRQAAKRARNEYLGARGARFAIFPGSPLSKKPPAWIMAGELVETSRLWARDVAKIQPEWAEDLAGDLAKRTYSDPHWSTKQGAAMATEKVLLYGVPIVADRPVLFGKIDPEGARDLFIRHALVEGQWTTHHAFFAENRRLLAEAEELEARSRQRGLVASEDDLFAFYDERVPEHVVSARHFDSWWKKVRRDDPDLLTFTLDQLVDAESVDTSEFPETWTQGEVTLPLTYQFQPGTDADGVTVHVPLSILNRVTPDGFDWMVPGLLDELCVATIRSLPKAVRRELVPAPDVGAAVAAWLREHTPAWEDMTRAGDMATPFHVEFTRAVRALRDVIIPDEVWDAERVERLPAHLRMTFRVEDASGAPATGSRGGGPAGGGRRRKSGPKKRRGSRPAPAGPVVLDESKDLLSLQKKLAPQAEAAVRSAVKGAVGVALEEAARASGSGASSGSDGAAPPRSRAPGGPPLRLDGGASPSESDDRAGSGRSDGGANANSSVTTSGVVREQGGLSTWPEVPGGVLPGSVSTDLGGGVVVQGYPALVEEAGSRGSAPSVALRVLADAAGRDAAHAAGVRRLLLSQTALQTGRITSRWSAKQSLTLAAAPYKNTDALVADLQLAAVIALTSSDADKAPGTPTGGPVAVQIRDAASYETALGFVRQHLEDEVHRIVGHVVAALAAWRTVETEVKASSSLALLNTLQDIREHVAGLVHDGFVAATPPRRVPHLVRYLRAASYRLEKAESNPHRDAELAWKIQDVTGVYDQAREAYAAGAPDPARAAELAEVRWLLEELRVSLFAQQLGTDGSVSEKRIRKVLRPGGWNANANANANA
AK018_039161236COG1373putative proteinATGGCGGAGTACCTGAGGCGCCACGTCGACGACGTCCTCGACGACGTCTTCGCAGACCTGCCTGCCGTGATGCTGACCGGCCCGCGGGCGTGCGGGAAGACGACCACGGCAGCGCGCCGCGCAGCCTCGATGATCCGCCTCGACGACGAGAACCAGGCCCGTGCCTTCGCGGACGCGCCTGACGCGCTGCTGACTGCCTCATCTCCGCCCGTCCTCGTGGACGAATGGCAGCGGGTGCCGGCGTCGCTGGCAGCGATCAAGCGAGCAGTCGACGCCCAGCCGGGCGGCGGACGGTTCCTCGTGGCGGGCAGTGTCCGGGCCAGGATGACCGGGGAGATGTGGCCCGGCACAGGACGCGTCGTCCCGCTGCCCATGTACGGGTTGACCCAGGCAGAGCGTGCGGGCTCCACGGTGGGGGACGACTTCCTGACCTGGTTGTTCTCGGACGACGAGCCAACGGACGGGCGGCAGGACTCCTCCGACGTGACCGACTCCGTCGACCGAGCGCTCCGGGGCGGATTTCCCGAGGCGGTGGAGCTCTCGGAGCGGCAACGGGACTACTGGTACCCCGGCTACATCGATCAGCTCGTGCACCGTGACGTGACAGCGATCGCGGAGGTGCGGTCGCCGGACCGTCTGCGACTGCTGCTCGAGGCGGTGGCCGCCTCGACGGCGGGCATGCCCCAGCTCAAGACGCTCTCGCAGGCCGCCGGTCTCGACGCCAGGACCGCTCGTGCGTACCTCGACCTGCTGGTCGACCTGCGCGTGGTCGACCGCGTTCCTGCCTGGCACTCCAACCGGCTGAAGCGGCTCGTCAAGTCACCCAAGTACTACCTCACCGACACCGGGATGGCGGGCCACCTGCTGAACGTCGACGTCCGGGCCGTCCTCGGGGACGGGGACCTGCTCGGGCGGCTGCTCGACAACTTCGTCGCGATGCAGATCCTGCCGCTCGTCGCGATCTCGACCCCGCGGGTGAAGGCCTTCCATCTGCGGGACGCGAACAACGACCGTGAGGTCGACCTGCTGCTCGAAGGACGCGCAGGGCGCGTCGTCGGGATCGAGATCAAGGCCAGGTCCGCCGTCTCGTCCAGCGACGCGCGCCATCTCGTCTGGTTGCGCGACCAGCTCGGCGAGACCTTCCACCGGGGCGTCGTCTTCTATTCGGGTCAGACGTCCTACGAGCTGGCCGACAGGGTATGGGCGATGCCCGTCGGGTCGCTGTGGGCCTCCTGAMAEYLRRHVDDVLDDVFADLPAVMLTGPRACGKTTTAARRAASMIRLDDENQARAFADAPDALLTASSPPVLVDEWQRVPASLAAIKRAVDAQPGGGRFLVAGSVRARMTGEMWPGTGRVVPLPMYGLTQAERAGSTVGDDFLTWLFSDDEPTDGRQDSSDVTDSVDRALRGGFPEAVELSERQRDYWYPGYIDQLVHRDVTAIAEVRSPDRLRLLLEAVAASTAGMPQLKTLSQAAGLDARTARAYLDLLVDLRVVDRVPAWHSNRLKRLVKSPKYYLTDTGMAGHLLNVDVRAVLGDGDLLGRLLDNFVAMQILPLVAISTPRVKAFHLRDANNDREVDLLLEGRAGRVVGIEIKARSAVSSSDARHLVWLRDQLGETFHRGVVFYSGQTSYELADRVWAMPVGSLWASNANANANANA
AK018_03917663hypothetical proteinGTGCGTCGTCCGGCGACGCTACGGGCCTGGCTCCGTGCCTACGCCGCGGCGACATCGACCACCACGAGCTACAACGACATCCTCGACGCCGCGACGGCGGGGGAGATCGACAAGCCGAGTCGGACGACGACGACGGTGTACCGCGATGTGCTCGCTCAGCTGTGGCAGCTCGATCCGGTCGATGCGTGGCTGCCGAGCCGAAACCACCTTGATCGCCTCACCCAGGCGCCGAAGCATCACCTCGCGGACCCGGCGTTGGCGGCTGTGCTCCTTGGACTGGACGCCGAACAGCTGATGCGTGGCACGGCCTCCGCCGCAGATCTGCGCGACGGAGCCGTTCTGGGGCACCTGTTCGAACACCTGGTGACCCTCAGCGTCCTGGTGTATGCGGAGGCAGCGGAGGCCCAGGTCCGGCATCTGAGGACCAAGGGAGGTGACCACGAGGTCGACCTCATCGTCGAACGGCGCGACGGGCGTGTCCTGGCGTTGGAGGTCAAGCTCAAGGCGACGCCTGCCGAGAAGGACTTGCGGCATCTGCGGTGGCTGAAGGAACAGCTCGGCGACGATCTCGTCGATGCGGCTGTCGTCACGACCGGACAGCATGCCTACCGGCGCAACCAGGACGGCATCGCGGTCGTCCCCCTGGCGTTGCTGGGCCCGTGAMRRPATLRAWLRAYAAATSTTTSYNDILDAATAGEIDKPSRTTTTVYRDVLAQLWQLDPVDAWLPSRNHLDRLTQAPKHHLADPALAAVLLGLDAEQLMRGTASAADLRDGAVLGHLFEHLVTLSVLVYAEAAEAQVRHLRTKGGDHEVDLIVERRDGRVLALEVKLKATPAEKDLRHLRWLKEQLGDDLVDAAVVTTGQHAYRRNQDGIAVVPLALLGPNANANANANA
AK018_03918204cspCold shock proteinATGGCCCAGGGCACCGTCAAGTGGTTCAACGGCGAGAAGGGGTACGGGTTCATCACCCCCGACGACGGCGGGCAGGACCTGTTCGTGCACTACAGTTCGATCCAGTCGGACGGCTACCGGACCCTCGACGAGGGGCAGTCCGTGGAGTTCGAGGTCGGGCAGGGCCAGAAGGGGCCGCAGGCCGAGCAGGTCCAGCCGCTCTGAMAQGTVKWFNGEKGYGFITPDDGGQDLFVHYSSIQSDGYRTLDEGQSVEFEVGQGQKGPQAEQVQPLPGPT0014675_7812DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_03919693hypothetical proteinGTGAGCAAGAGCCAGTACCCCTACCCGCCCGACGAGTTCGACGTCCGCGGCCCCGAGGGCGCGCCGGTCGGCGTGCACCGCGAGCCCCGCAGCGGGTGGAGCACGGTCTGGCCGTTCCTGCTCGTCGCCGTCGTGTTCGGCGGTCTCGCGCTCGGTGTCATGACCTACCTGTCGGACAGCGACCCGAGCACCGAGAACCCGCCGACCGCCGCCGAGCAGTCCGCCTCCCCGGACGCCTCCGCCGACGAGGGCGGCGGTGACGGCTCCGGTGACGCGGAAGGTTCCGGCGAGGGCGACGGCTCCGGCGAGACCGAGGGCTCGGGCGACGGGGAGCCGACCGAGGAGCCCAGCGAGGAGCCGTCCGAGGAGGCGACCGACGTGGCAGCGCTGCTCGAGGCTGCCGACACCAGCGCCTACGTCCGCGTCCTCAACGACGGGGGTCCTTCCGGCGAGGCCGGCCGGGGCTCGGACGCGCTCGGTGCGCAGGGGTTCACCAACGCTGTCGCCGACAACTACCCGACCGACGACTCGGGGCAGACGACGAACGTCGTCTGGTACACCGAAGGTCGGGCGGAGACCGCTGCCGCCGTCGCCGCGGTCCTCGGTGTCCCCGCTGAGGAGACCTCGGAGCAGGCGCTGTCCGACGGCGACGTCATCGTGGTCATCAAGCAGGAGCTCGACATCGCCGAGTGAMSKSQYPYPPDEFDVRGPEGAPVGVHREPRSGWSTVWPFLLVAVVFGGLALGVMTYLSDSDPSTENPPTAAEQSASPDASADEGGGDGSGDAEGSGEGDGSGETEGSGDGEPTEEPSEEPSEEATDVAALLEAADTSAYVRVLNDGGPSGEAGRGSDALGAQGFTNAVADNYPTDDSGQTTNVVWYTEGRAETAAAVAAVLGVPAEETSEQALSDGDVIVVIKQELDIAENANANANANA
AK018_03920318hypothetical proteinATGAGCGAGATGCTTGTCCAGGAGGTCGACGTCGCGACGCAGGCTCCGTCGTCGGACGCCACCGAGGCGCTGTCCGACCGCGATCGCGAGATCCTCGCCTTCGAGAAGCAGTGGTGGAAGTACGCCGGCTCCAAGGAGCAGGCCGTGCGCGAGCTGTTCGACATGTCGGCCACGCGGTATTACCAGGTGCTCAACGCCCTCATCGACACACCCGAGGCGCTCGAGCACGACCCGATGCTCGTCAAGCGGCTCCGACGCATGCGATCCACCCGGCAGCGTGCCCGCAGCGCGCGCCGCGCCGACGGCACCCGGGGCTGAMSEMLVQEVDVATQAPSSDATEALSDRDREILAFEKQWWKYAGSKEQAVRELFDMSATRYYQVLNALIDTPEALEHDPMLVKRLRRMRSTRQRARSARRADGTRGNANANANANA
AK018_03921651ung_2COG0692Uracil-DNA glycosylaseATGGCCCCGGACTGGGCGACGGCGCTGGCGGACGTCGCGCCGCAGATCCACGCGATGGGCGACTTCCTGCGCGCCGAGGTCGCGGCGGGCCGCCGGTACCTGCCGGCGCCGGACGACGTGTTCGCGGCGTTCCGCCGCCCGCTGGCGGACGTCCGGGTGCTCGTCGTCGGCCAGGACCCCTACCCCACACCGGGCCACCCGATGGGGCTGTCGTTCTCGGTGCAGCCGCACGTGCGCCCGCTGCCGAAGTCGCTGGTGAACATCTTCACGGAGCTCGCGGACGACGTCGGCGCGCCGGCGCCGAGCTCCGGCGACCTGAGCCCGTGGGCGGACCAGGGCGTGATGATGCTCAACCGCGTGCTCACGGTGCAGCCGGGGCAGCCGGCGTCGCACCGGGGCAAGGGCTGGGAGCCGGTCACGGAGGCCGCGATCAAGGCGCTGGTGGCTCGTGGCGGGCCGCTGGTGGCAATCTTGTGGGGGCGGGACGCGATGTCGCTGAAGCCCTGGCTGGGCGGAACGCCGACGGTCGAGTCCGCGCACCCGAGCCCGCTGGCCGCGTACCGGGGGTTCTTCGGGTCCAAGCCGTTCTCGCGCGTCAACAGCCTGCTCGAGCAGCAGGGCGGCACCCCGGTCGACTGGCGGCTGCCCTGAMAPDWATALADVAPQIHAMGDFLRAEVAAGRRYLPAPDDVFAAFRRPLADVRVLVVGQDPYPTPGHPMGLSFSVQPHVRPLPKSLVNIFTELADDVGAPAPSSGDLSPWADQGVMMLNRVLTVQPGQPASHRGKGWEPVTEAAIKALVARGGPLVAILWGRDAMSLKPWLGGTPTVESAHPSPLAAYRGFFGSKPFSRVNSLLEQQGGTPVDWRLPPGPT0007090_2DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766NANA
AK018_03922846hypothetical proteinGTGCAGAATGGGTCGGTGACTTCCGTCCCTACCCCGCGCTGGTCCCGCTACGTCGCCCTCGGCGACTCGTTCTCCGAGGGCCTGTGGGACCCGTACCCGTACGACGACGGCACGCGCGCCCCCGCCGGCACCGAGACAACGGCGGTGCAGCGCGGCTGGACCGACCGGCTCGCCGACCACCTCGCCGCACGTCGCGGCGACGAGCCCTTCGAGTACGCCAACCTCGCCATCCGCGGCCTCAAGCTGCCGCAGATCGTGGACCGCCAGCTCGAGATCGCCCTGGCGATGCAGCCCGACCTGGTCTCGCTGGTCGGCGGCGGCAACGACATCCTGCGACCCCAGGCGGACATCAACGGGATCTCCCGGCGCCTCGAGGAGGCGGTCGCCGCGATCCGCGCGACCGGCGCCGACGTCCTGATGGGCACCGGGTTCCGCGCCGGCGGCGCGTTGAGCCTCACCAGCGGGCGGGTAGGTCAGTACAACGCCAACATCTGGTCGATCGCGCGGCGCCACGGCGCGCACGTGCTCGACACCTGGGGGCTGCGGTCCCTGTTCGACCTGCGCATGTGGTCCGACGACCGGATCCACCTCACCGACGAGGGGCACCGACGCATCGCGAACGCCGCGCTCGTCGGGCTGGGGCTGGCGCCGGACGACCCCGACTTCGACGCGCCGCTGGAGGCGGCACCCGCAGCGCCGCTGCGCCAGCGGGCCCGCGAGGATGCCCAGTGGGCGCGGGCGCACGTGCTGCCGTGGGTGCAGCGCCGGATCCGGGGCACGTCGAGCGGCGACGGCCGGACGCCGAAGTGGCCCAAGCCGAAGCCGTGGCCGCCCTCGGAGCGCTGAMQNGSVTSVPTPRWSRYVALGDSFSEGLWDPYPYDDGTRAPAGTETTAVQRGWTDRLADHLAARRGDEPFEYANLAIRGLKLPQIVDRQLEIALAMQPDLVSLVGGGNDILRPQADINGISRRLEEAVAAIRATGADVLMGTGFRAGGALSLTSGRVGQYNANIWSIARRHGAHVLDTWGLRSLFDLRMWSDDRIHLTDEGHRRIANAALVGLGLAPDDPDFDAPLEAAPAAPLRQRAREDAQWARAHVLPWVQRRIRGTSSGDGRTPKWPKPKPWPPSERPGPT0017895_7DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_MANNOSE_METABOLISM|DEGRADATION,PGPT0017895-mgtA-K12583NANA
AK018_03924858hypothetical proteinATGTCGAACAAGCAGAACAAGGCCGACCGGCGCGAGGCGGCCCGGGCCGAGGCGCTGGCCCTCCAGCAGAAGCAGGTGTCCCGCGACAAGCGCAACCGCGTGATCATCTTCACCGTGCTCGGCGTCGCGATCGCCGCGCTCGTCGGTGTCGCGGCGTTCATCCTGGTCAACGAGGCCTCCAAGAAGGATGTCGAGGACGTCGCGCTGTCCGAGGTGGAGAACGTCCCCTCGACGGCGAACGCGGACGGCGGCATCCCGGTGGGGTCGGACCTCGTGGCCGGCACGGAGAACGCGGGCACCCCGACCGTCGACGTGTACCTGGACTACATGTGCCCCGTGTGCGGCCAGTTCGAGGACGTCAACGCGGCCGACGTCGAGACGATGGCGACCGAGGGCGACGCGACCGTCGTCTACTACCCGGTCTCGATCCTGGACCGCCTCTCGCGCAGCACCGAGTTCTCCACGCGCGCCGCCGCGTCGGCCTACTGGGTGGCCGACCAGGCTCCCGAGGCGTTCTTCGCCTACAACGAGGCCCTGTTCGCCAACCAGCCCGACGAGAACACGCCCGGCCTGGACAACGAGGAGCTCGCCACGATCGCCGAGGAGGCGGGCGTCCCCGCCGACGTCGCCGCGGGGATCTCCGACGGCACGGCGCGGGCCACGTACGGGCAGTACGCCTACTCGCTGACGAACGCCGCCACGGAGAACCCGGACCTGCTCAACTCGAGCGGCAGCTTCGGGACGCCGACGGTGCTGGTCGACGGTGAGCGCTTCGAGCAGTGGGGCACCCCGGGTGCGCTGCTCGCGGCGGCCCAGGGCGGCACGGACGAGTCGTCGGAGGAGTCCTCCGAGGGCTGAMSNKQNKADRREAARAEALALQQKQVSRDKRNRVIIFTVLGVAIAALVGVAAFILVNEASKKDVEDVALSEVENVPSTANADGGIPVGSDLVAGTENAGTPTVDVYLDYMCPVCGQFEDVNAADVETMATEGDATVVYYPVSILDRLSRSTEFSTRAAASAYWVADQAPEAFFAYNEALFANQPDENTPGLDNEELATIAEEAGVPADVAAGISDGTARATYGQYAYSLTNAATENPDLLNSSGSFGTPTVLVDGERFEQWGTPGALLAAAQGGTDESSEESSEGNANANANANA
AK018_039251968pknD_4Serine/threonine-protein kinase PknDATGGGTGCGGGTGACGACACGCGGGTGCTTCCGACGCAGGGCCCCGACGAGGTCCCTGCCGCGAGCGCTGCCCGGGTGCCCGACGGCGCGCGCCGCGAGACGTACGACGCCGCGGCCGGCGGGACCCTGCCGCCCGGAACCGACATCGGCGGGTACACCGTCGTGGCCGTGCTCGGTCGTGGCGCCATGGGGGCGGTCTACGAGGCGCGCGACGGCGGTGGCGTGCGTGTCGCCCTGAAGGTGCTGCACGCGCACGTCGACGCCAACCCTGCCGGCCGGCAGCGGCTGCGCCGGGAGGTCGCGGCCCTGCAGCGCCTGCGGCACCCCGCCGTCGCGCAGGTGCTGGACGCGGAGTTCGAGGGGCCGCACGCGTTCGTCGTCACCGAGCTCGTCGAGGGGCTGACCCTCGAGGAGGAGGTCGACGCCCGCGGCCCGCTGGACCAGGCCGACCTGTTCTCCCTGGCCGACCAGCTCGCCGACGCTCTCGAGTCTGTGCACAGCGCGGGCGTGGTGCATCGTGACCTCAAGCCGTCCAACGTGATGGTCACCGGGCAGGGACCGTCCCTCATCGACTTCGGGATCGCCCAGAGCCCGGGCGACCCGCGCACCACCATGGCGGGGTTCGTCATGGGCACGCCCGGATACATCGCTCCCGAGCTGCTCGACGGCGGCGACCCGGTGCCCGAGTCCGACTGGTGGAGCTGGGCGGCGCTGCTCGCCTTCGCGGCGACCGGACGTTCGCCGTTCGGGGTGCGGCCCACCGACCTGGTGCTGAAGCGGTCGCGGCAGGGCCGCGCGGACCTCGTCGGTGTGCCCGCCCGCACGGCGGCGGCGCTCGCGGGGGCCCTGCACGCCGACCCGGCGCAGCGCTGGGGGCCGACCGACGTCGTGCGGGCGATCCGTCGCGACCTGGACGACGAGCACGCCGCCGTCGTCGGGGTGCCGGCCGACCCGCACGCCACGCAGCGCATCGTCGTGGCCGCGGGGGCCGCGACCGCGGCGGTGGCCGGGGCCGGGGTCGCCGCGGACCGTTCCCCGGACGCCGTCACCAGCGGGGACGACGTCGGCAGCCCGGCGGACGACGAGGGCCCGGCTGCGGGGCGACCCGCCGCGACCCCGGCGGGTGCTGCGGCCGACGAGACCGCCGTCGTCGGACCTCCCGTGCCCGACGCCGCCTCGACGATGACCGCGGACGAACGGGACCGCGTGGCGGCCAACGACGGCGGGACGCGCGCCATTCCGCTGGGGGACGCCCGCTACCGCACCTACGAGCAGATCGCCGAGGAGACGCCGGACACCGACCTGGAGCCGGAGGCGCCCCCCGAGCCGTACACGCCGCCGGCGCACCGGCGGCGGTGGGGCACGGTGCTCGCCCTGGGCGTGCCGTTCGTGATCCTCGCCGCCTTCTACCCGCTGATCGGATTCGGGGTGTTCGTGGGCGTGACGGTGCTGTGCCGGATCGTCGGGACCTCGGCCTCCCGGTTCCACGAGCGGCGGGAGCGGCGCGGGGTGCGGCGCTCGGACGGGTGGCTGGCCGTGCTGCTCTTTCCGTACCACGCCGTCGTCGGGGCGCTCGGCATCATCCCGGCGGCCGTGGTCGGCGGGTGCGTCGGGCTGCTGGCCATCATGGGCGGGTACTGGCTGTTCGGGGACGGCAACCTGATCGTCATGCCGCTGGGCGACGTCGAGTCGCGCTCGGTGGGCGGGCGCAACGAACCCGTCGTGTTCACCGCCGTCCTCGCGGTCGCGATGGTGCTCGCGGTGCTGGCCACGTGGTTCGGGCCGGCCGGCCGCACGGCCCGGGACGGTGCGCGGCGGATCCTCAACAACCTCGCGCCGGGTCTGATCGGCGCGGCCGTCGTGGTCGTGGTCTGCCTGGTCGGGTCCGCGGTCCTCGGGTCGCAGCTGCTGGAGGGCGCGGCGGAGGTCGAGTGGTGGCCGATGGACGGACCGCCGTCGTTCATGTGAMGAGDDTRVLPTQGPDEVPAASAARVPDGARRETYDAAAGGTLPPGTDIGGYTVVAVLGRGAMGAVYEARDGGGVRVALKVLHAHVDANPAGRQRLRREVAALQRLRHPAVAQVLDAEFEGPHAFVVTELVEGLTLEEEVDARGPLDQADLFSLADQLADALESVHSAGVVHRDLKPSNVMVTGQGPSLIDFGIAQSPGDPRTTMAGFVMGTPGYIAPELLDGGDPVPESDWWSWAALLAFAATGRSPFGVRPTDLVLKRSRQGRADLVGVPARTAAALAGALHADPAQRWGPTDVVRAIRRDLDDEHAAVVGVPADPHATQRIVVAAGAATAAVAGAGVAADRSPDAVTSGDDVGSPADDEGPAAGRPAATPAGAAADETAVVGPPVPDAASTMTADERDRVAANDGGTRAIPLGDARYRTYEQIAEETPDTDLEPEAPPEPYTPPAHRRRWGTVLALGVPFVILAAFYPLIGFGVFVGVTVLCRIVGTSASRFHERRERRGVRRSDGWLAVLLFPYHAVVGALGIIPAAVVGGCVGLLAIMGGYWLFGDGNLIVMPLGDVESRSVGGRNEPVVFTAVLAVAMVLAVLATWFGPAGRTARDGARRILNNLAPGLIGAAVVVVVCLVGSAVLGSQLLEGAAEVEWWPMDGPPSFMNANANANANA
AK018_039261410otsA_2COG0380Trehalose-6-phosphate synthaseGTGGTCGTGGCGAACCGGCTCCCGGTCGACTTCGCGGTCGACGACGACGGCAACGTGGACTGGAAGCGGTCCCCCGGCGGACTCGTCACCGCGCTCGAACCCGTCATGCGCGAGGCCGACGGCGCCTGGGTGGGCTGGTCCGGCGCCCCCGACCTGGCCCACGAGCCGTTCGAGGCCGACGGCATGCTGCTCGTGCCGGTGACGCTCTCCGCCGACGAGATCGAGCGCTACTACGAGGGCTTCTCCAACGACACCCTGTGGCCGCTCTACCACGACGTCATCGCCCCGCCGACGTACCACCGCCAGTGGTGGGACGCCTACCGGCGCGTGAACCAGCGCTTCGCCGAGGCCGCCGCCGCACAGGCCGCGCGCGGCGCGGTGGTCTGGGTGCACGACTACCAGCTGCAGCTCGTCCCCCGCATGCTGCGCGAGCTGCGCCCCGACCTGCGCATCGGGTTCTTCGACCACATCCCGTTCCCTCCGGTCGAGCTGTTCCAGCAGCTCCCGTGGCGCAAGAACATCGTCGAGGGCCTGCTGGGCGCCGACCTCATCGGGTTCCAGCGCGGCGGCGACGCCTCGAACTTCGTGCGGGCCGTGCGCCGGCTCACCGACCACCCCACGCGCGGGTCCGTCGTGTCCATGGGGTCCGACGACCCCAACCCGGGCCGCCGGGTCCGGGCCGCCGCGTTCCCCATCTCGATCGACACCCAGCACTTCGACGAGCTCGCCCGCAAGCCCGAGATCCAGGCCCGCGCGAAGGAGATCCGTGCGGACCTGGGCGACCCCGAGGTCGTGATGCTCGGCGTCGACCGACTCGACTACACCAAGGGCATCCGCCACCGCATCAAGGCGTACGGCGAGATCCTGCAGGACGGCCGCATCGACGCGGCGAGCACCACGCTCATCCAGGTGGCCAGCCCGTCCCGGGAGAACGTCGGCGCCTACCAGGAGCTGCGCGAGCACGTGGAGGTGCTGGTCGGCCGCGTCAACGGCGAGTACGGCGAGCTCGGCCACTCGGCGATCCACTACCTGCACCACTCCTACCCGCCGGACGAGATGGCGGCCCTGTACCTCGCGGCCGACGTCATGCTCGTCACGTCGCTGCGCGACGGCATGAACCTCGTGGCCAAGGAGTACATCGCGGCACGCTCCGACCTGGGCGGCGTGCTGGTGCTCAGCGAGTTCACCGGTGCCGCCGACCAGCTCGCCCCCGGTCCGATCCTCGTCAACCCGCACGACATCGACGGCATGAAGAACAAGATCGTCGAGGCCGCGCAGATGAGCGACAAGGAGAAGCGGCGTCGCATGCGCAACCTGCGGCGCAAGGTCATGGGGGACGACGTCGCCAAGTGGTCCGAGTCGTTCCTCGGCGTGCTGCGGGCCGTGCCCGCCCGGGACTCGTATGTCTGAMVVANRLPVDFAVDDDGNVDWKRSPGGLVTALEPVMREADGAWVGWSGAPDLAHEPFEADGMLLVPVTLSADEIERYYEGFSNDTLWPLYHDVIAPPTYHRQWWDAYRRVNQRFAEAAAAQAARGAVVWVHDYQLQLVPRMLRELRPDLRIGFFDHIPFPPVELFQQLPWRKNIVEGLLGADLIGFQRGGDASNFVRAVRRLTDHPTRGSVVSMGSDDPNPGRRVRAAAFPISIDTQHFDELARKPEIQARAKEIRADLGDPEVVMLGVDRLDYTKGIRHRIKAYGEILQDGRIDAASTTLIQVASPSRENVGAYQELREHVEVLVGRVNGEYGELGHSAIHYLHHSYPPDEMAALYLAADVMLVTSLRDGMNLVAKEYIAARSDLGGVLVLSEFTGAADQLAPGPILVNPHDIDGMKNKIVEAAQMSDKEKRRRMRNLRRKVMGDDVAKWSESFLGVLRAVPARDSYVPGPT0014135_549DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014135-otsA-K00697NANA
AK018_03927888otsBCOG1877Trehalose-6-phosphate phosphataseATGTCTGACGGGCTCGACCCGGCACTGAGCGAGGCGCTGACACGGCTCACGGCGGACGACGGCGCGGCGCTGCTCGTGGCGCTCGACTTCGACGGCACGCTCGCCCCGCTCGTCGACGACCCGACCGCCGCACGCATGACCGACCGCGTGCGGGCCGCCGTCGACCGCCTCGGCGCGCTCGACCGGTCCGCCGGCGAGGCGTCCGACGGCGGGGCATCCGGGAGCGGGGCGTCCGACGGCGGGCCGGGCCGGGGTGCGCGGACGCGCCTCGCGTTCGTGTCCGGCCGTGACCTGGAGGACCTGGCCGCCCGCGCCGAGCCGCCGGCGGGCTCCTACCTGGTGGGCAGCCACGGGGCGCAGACCGGGCACGTGACCTCCGAGGGGCTCGAGTCCGTGCCGCTGGAGCTCAGCGCGGAGCAGGCGGAGACCCTGTCCGAGCTGCGGACCGCCCTGGACGCCGCGGTGGCCGGCCGCGAGGGGGCGTGGGTGCAGCACAAGCCCAGCGCCGCCGTCCTGCACACCCGGCTGGCCGGCCCGGACGACACGACCGCCGCCGTCGAGGGCGCCGACGCCGCCGCCGAGCGGCTCGGTCTCGAGGCGATGCACGGCAAGGACGTCGTGGAGATCGCCGTGCTGCACACCACCAAGGGCGAGGCGCTGGACCGGCTGCGCACCGTCGTCGGGCAGGACGCCGGGGCGTCCGCCGTCCGCGTGCTGTACGCCGGGGACGACACGACCGACGAGAAGGCGTTCGCCGTCCTCGGCGCGGGCGACCTGACGCTGAAGGTCGGCGACGGCGAGACGCTTGCCGAGCACCGCGTGCACGGGGCCGACGACGTCGCTGACGTGCTCGAACGGCTGCTCGACCGGATCTCCGCAGGATCGTGAMSDGLDPALSEALTRLTADDGAALLVALDFDGTLAPLVDDPTAARMTDRVRAAVDRLGALDRSAGEASDGGASGSGASDGGPGRGARTRLAFVSGRDLEDLAARAEPPAGSYLVGSHGAQTGHVTSEGLESVPLELSAEQAETLSELRTALDAAVAGREGAWVQHKPSAAVLHTRLAGPDDTTAAVEGADAAAERLGLEAMHGKDVVEIAVLHTTKGEALDRLRTVVGQDAGASAVRVLYAGDDTTDEKAFAVLGAGDLTLKVGDGETLAEHRVHGADDVADVLERLLDRISAGSPGPT0014140_1129DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014140-otsB-K01087NANA
AK018_039291116msiK_2COG3839Diacetylchitobiose uptake system ATP-binding protein MsiKATGGCTTCGGTCACCTATGACCACGCGACGCGCGTCTACCCGGGCACGGAGCGCCCGGCCGTGGACCAGCTCAACCTGCAGGTCGAGGACGGCGAGTTCCTCGTCCTCGTCGGCCCCTCGGGCTGCGGCAAGTCCACCTCGCTGCGCATGCTGGCCGGTCTCGAGGACGTCAACGGCGGGCACATCTACATCGGCGACCGCGACGTCACCGACGTGCAGCCCAAGGACCGCGACATCGCGATGGTCTTCCAGAACTACGCGCTGTACCCGCACATGTCCGTCGCGGACAACATGGGCTTCGCCCTGAAGATCGCGGGCACCCCGAAGGCGGAGATCCGCCAGCGCGTCGAGGAGGCCGCCAAGATCCTCGACCTCACCGAGTACCTGGACCGCAAGCCGAAGGCGCTCTCCGGTGGTCAGCGTCAGCGTGTCGCCATGGGCCGCGCCATCGTGCGTCAGCCGCAGGTGTTCCTCATGGACGAGCCGCTGTCGAACCTGGACGCCAAGCTGCGTGTCCAGACGCGTACGCAGATCGCCTCGCTGCAGCGTCGTCTCGGCGTCACCACCGTGTACGTGACGCACGACCAGACCGAGGCGCTCACCATGGGTGACCGCATCGCCGTGCTCAAGGACGGTCTGCTGCAGCAGGTCGGCACCCCGCGCGAGATGTACGACACCCCGGCCAACACCTTCGTCGCCGGCTTCATCGGCTCGCCCGCCATGAACATCGGTACGTTCGAGGTCAAGGACGGCAAGGCCGTCGTCGGTCACGCCGCCGTGCCGCTGGAGCGCGACGTCATCAGCCAGCTCACGGACGCCGACGGCGGCAAGGTCGTCGTCGGGTTCCGTCCGGAGTCGCTGGACATCGCCCACGACGGTGCGCAGGACGCCTTCCAGGTGAAGGTCAACCTCGTCGAGGAGCTCGGCTCCGACGCGTTCGTCTACGGCGAGCTGCAGTCGAGCGACGCGGACCTGCACTCCGGTTCCTCGGACCAGGTCATCGTGCGCATCGACCCGCGCGAGGTCCCGATGAAGGGTGACACCATCCACGTCACCATCAAGCAGGGTGCGGAGCACGTCTTCTCCCCGGCCACGGGTGCTCGCCTGAGCAACTGAMASVTYDHATRVYPGTERPAVDQLNLQVEDGEFLVLVGPSGCGKSTSLRMLAGLEDVNGGHIYIGDRDVTDVQPKDRDIAMVFQNYALYPHMSVADNMGFALKIAGTPKAEIRQRVEEAAKILDLTEYLDRKPKALSGGQRQRVAMGRAIVRQPQVFLMDEPLSNLDAKLRVQTRTQIASLQRRLGVTTVYVTHDQTEALTMGDRIAVLKDGLLQQVGTPREMYDTPANTFVAGFIGSPAMNIGTFEVKDGKAVVGHAAVPLERDVISQLTDADGGKVVVGFRPESLDIAHDGAQDAFQVKVNLVEELGSDAFVYGELQSSDADLHSGSSDQVIVRIDPREVPMKGDTIHVTIKQGAEHVFSPATGARLSNPGPT0016310_2651DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016310-msmX|msmK|malK|sugC|ggtA|msiK-K10112NANA
AK018_039301284hypothetical proteinGTGGACCGGCTGCAGATCACCTCGGCGACGACCAACTCGGCGGCGCTGCTGGACCTGCCCTGGCGTCAGCCGCTGGCCCAGTGGCCCTCCGACGTGCTCGCCGCGCTCCCCCGCGGCATCTCCCGGCACGTCGTCCGGTTCGTGCGGCTCGAGGGGCGCGTGCTCGCGATCAAGGAGATCAGCGAGCACGTCGCGTTCGACGAGTACGAGCTGCTGCGCCAGCTGCGCAAGCTCGAGATCCCGTCCGTGCGCCCCATCGGCGTCGTCACGGGTCGCCTGTCCGACGACGGCACCCACCTGGAAGCCGCGCTCGTCACCGAGCATCTCGCCTTCTCCCTGCCGTACCGGTCGGTGTTCAGCCAGGCCCTGCGCGACGAGACCGCCAACCGCCTGATCGACGCGCTCGCCGTCCTGCTGGTCCGCCTCCACCTGGCCGGGTTCTTCTGGGGCGACGTATCCCTGTCGAACACGCTGTTCAGGCGGGACGCCGAGCAGTTCGCCGCCTACCTCGTGGACGCCGAGACCGGCGCCCTGCACCGCGAGCTCACCCGCGGGCAGCGCGAGTACGACCTCGAGCTGGCGCGCGTCAACATCATCGGCGAGCTCATGGACCTCGCCGCCGGCGAGCTCCTCGACGAGGAGGTGGACGAGGTCGCCATCGGCAACTCGCTGGTCGAGCGGTACGGCGAGCTGTGGGAGGCCCTCACCGGTGTCGAGGCCTTCCACGCCGACGAACGGTGGCGCGTGGCCGCGCGCATCGAACGCCTCAACGAGCTGGGCTTCGACGTCGGCGAGCTGTCGATCACCACCGACATCGACGGCACCACCGTGCGGATCCAGCCGCAGGTCGTGGACGCGGGGCACCACTCGCGCCGACTGCTGAAGCTCACGGGCCTCGACGTCCAGGACAACCAGGCCAGGCGGCTGCTCAACGACCTTGACTCGTTCCAGGCCGCGACGGAGCGTCAGGAGGACGACCCGCAGCTCGTCGCCCACGACTGGCTGCAGAACGTCTTCTACCCCACCGTGCGCGGCGTCCCGCGCGAGCTGCGCCGCAAGCTCGAGCCGGCGCAGCTCTACCACGAGATCCTCGACCACCGGTGGTACATCTCCGAGCAGGCCGGGCGCGACGTGCCGATGTCCGAGACCGTGCAGTCGTACGTGGAGAACGTCCTGCAGCACCGCCCGGACGAGAAGGCCATCCTGGGACTGGCGCCGGGCGAGGAGCCCGAGGAAGGGCCGGAGGCCGACTACTTCCACTACGCGGCGGCCGACCCCGACTGAMDRLQITSATTNSAALLDLPWRQPLAQWPSDVLAALPRGISRHVVRFVRLEGRVLAIKEISEHVAFDEYELLRQLRKLEIPSVRPIGVVTGRLSDDGTHLEAALVTEHLAFSLPYRSVFSQALRDETANRLIDALAVLLVRLHLAGFFWGDVSLSNTLFRRDAEQFAAYLVDAETGALHRELTRGQREYDLELARVNIIGELMDLAAGELLDEEVDEVAIGNSLVERYGELWEALTGVEAFHADERWRVAARIERLNELGFDVGELSITTDIDGTTVRIQPQVVDAGHHSRRLLKLTGLDVQDNQARRLLNDLDSFQAATERQEDDPQLVAHDWLQNVFYPTVRGVPRELRRKLEPAQLYHEILDHRWYISEQAGRDVPMSETVQSYVENVLQHRPDEKAILGLAPGEEPEEGPEADYFHYAAADPDNANANANANA
AK018_03931987COG0566putative tRNA/rRNA methyltransferaseATGGCCGGCAACTCGCAGCGACGGGGATCCCAGCGCAAGGGCGGGACCAAGAAGGGTGCGCAGGTCGGCACCGGCGGGCACGGGCGCAAGGCCCTGCAGGGCAAGGGCCCGACGCCGAAGGCCGAGGACCGTACCTACCACCCGGCGCACAAGCGCAAGGTCGCGGCCGAGAAGCGCGCCGCGTCCCAGGCCGGTGCCGGAGCCCGCAAGGGGCAGGCCAGAGGCACGCGCAAGGCGACCGGCGGGGCCGAGGTCGTCACCGGCCGCAACGCCGTGCTCGAGGCACTGCGCACCGACATGCCCGTCACGGCGGTGCATCTCGCCGAGCGCATCGACCACGACGACCGCACGCGGGAGATCCTCGAGCTCGCGTCGATCCGCGGTGCCCGGCTGCTGGAGTCGTCCCGCGGGGCGCTGGACCAGCTCACCGAGGGTGCGGTGCATCAGGGTGTCGCGCTCGAGGTGCCGCCCTACGAGTACGCCTCCGTCGAGGACCTGCTCGACGCCGCGGCCGACGCCGACGAGCCGCCGCTCATCGTGGCGCTCGACTCGATCACGGACCCGCGCAACCTCGGTGCCGTGCTGCGCTCCGCCGGCGCCTTCGGTGCGCACGGCGTGCTCGTGCCGTCGCGCCGTTCGGCGTCGGTGACGGCGTCGGCGTGGAAGGTCTCGGCCGGGGCCGCGGCGCGCGTGCCCGTCGCCAAGGAGACCAACCTGGCCCGCACGCTCACGGAGCTGAAGAAGTCCGGGGTGTTCGTCGTCGGGCTGGACGCGGGCGGGGACGCGTCGGTGCGGGATCTCGCGTTCGCGACCGATCCGCTGGTGATCGTCGTCGGCTCCGAGGGCAAGGGGTTGTCGCGGCTGGTGCGCGAGACGTGCGACGCCGTCGCGTCGATCCCGATGTCGTCCGACGTCGAGTCGCTGAACGCCGGGGTGGCTGCCGGCATCACCCTGTACGAGGTGGCTCAGGCCCGCGCCGGCCGCTGAMAGNSQRRGSQRKGGTKKGAQVGTGGHGRKALQGKGPTPKAEDRTYHPAHKRKVAAEKRAASQAGAGARKGQARGTRKATGGAEVVTGRNAVLEALRTDMPVTAVHLAERIDHDDRTREILELASIRGARLLESSRGALDQLTEGAVHQGVALEVPPYEYASVEDLLDAAADADEPPLIVALDSITDPRNLGAVLRSAGAFGAHGVLVPSRRSASVTASAWKVSAGAAARVPVAKETNLARTLTELKKSGVFVVGLDAGGDASVRDLAFATDPLVIVVGSEGKGLSRLVRETCDAVASIPMSSDVESLNAGVAAGITLYEVAQARAGRNANANANANA
AK018_039321431cysS_2COG0215Cysteine--tRNA ligaseGTGACCTTGCAGCTCTTCGACACCGCTACGCGCTCCGTGCGCGAGCTCGCACCTCGGACACCCGGCAAGGTCGGCATCTACCTGTGCGGCGCCACGGTGCAGTCCGCCCCCCACGTCGGCCACCTGCGCCCCGCCGTCGCCTTCGACGTGCTGCGACGCTGGCTGACCCGACGCGGGTACGACGTCACGCTGATCCGCAACATCACCGACATCGACGACAAGATCCTCACCAAGGCCGAGGCCGCCGGCGTCGAGTGGTGGGCCCACGCCGCCATCTACGAGCGGGCGTTCACCTCCGCCTACGACGCGCTGGGGATCCTGCCGCCCACCTTCGAGCCGCGCGCCACCGGGCACGTGCCGCAGATGATCGACCTGATGCAGCGCCTCGTCGAGAAGGGCCACGCCTATTCGACGGGTCCCGGCAACGTCTGGTTCGACGTGCGCTCGTGGCCGCACTACGGCGAGCTCACCACCCAGCGCCTCGAGGACCTCAACCCCGAGGCCACCGACGACGTCGCCGCCTCCGAGAAGCGCGACCCCCACGACTTCGCGCTGTGGAAGGCGCCCCGGCCCGGCGAGCCCGAGACCGCCGCCTGGGACACCCCGTTCGGCCGCGGCCGGCCCGGCTGGCACCTCGAGTGCTCCGCCATGGCGCACCGCTACCTCGGCGAGGCCTTCGACATCCACGGCGGCGGCCTCGACCTGCGGTTCCCGCACCACGAGAACGAGCAGGCGCAGTCCCGCGCCGCCGGCTACGGGTTCGCCGACCGGTGGATGCACTCTGCCTGGGTCACCCAGCAGGGTGTCAAGATGAGCAAGTCGCTCGGCAACGGGCTGCTCGCGAGCGAGCTGCTCGCACAGGTGCCGGCCGCTGTCGTGCGCTACGCCCTCACCGCCGTGCAGTACCGCTCCATGCTGGAGTGGGGGCCCGACACCCTCGACGAGGCCCGGGCCACCTGGGACCGGCTGACGGGGTTCGTGGCGCGTGCGAGCGAGCGCGTCGGGGCGGTGCCGCGCGAGGAGGTCCTCGCCGCCGAGCTGCCCGCCGGGTTCGCCGCCGCCATGGACGACGACCTCAACGTCCCGGCCGCGCTCGCGGTCGTGCACGAGACGCTCAAGGCCGGCAACTCCGCGCTCGCCGCGTCCGACGACGACGCCGCCCGCGTCGCGCTCGTCGCGCTGCGGGCCATGCTGGACGTGCTCGGCCTCGACCCCGCCGACCCGCAGTGGGCCTCCGCGGCCGACACCCGGGTCGCCGACGCGCTCGACGCCGTCGTGCAGGTGCAGCTCGACGCCCGGGCCGCTGCCCGGGCCGCCAAGGACTACGCCACCGGCGACGCCATCCGGGACCGCCTGGCCGCGGCCGGCGTCGTGGTGCAGGACTCTCCGGACGGCGCCCGCTGGGCGCTGGCCGACCCGAAGGGGGAATGAMTLQLFDTATRSVRELAPRTPGKVGIYLCGATVQSAPHVGHLRPAVAFDVLRRWLTRRGYDVTLIRNITDIDDKILTKAEAAGVEWWAHAAIYERAFTSAYDALGILPPTFEPRATGHVPQMIDLMQRLVEKGHAYSTGPGNVWFDVRSWPHYGELTTQRLEDLNPEATDDVAASEKRDPHDFALWKAPRPGEPETAAWDTPFGRGRPGWHLECSAMAHRYLGEAFDIHGGGLDLRFPHHENEQAQSRAAGYGFADRWMHSAWVTQQGVKMSKSLGNGLLASELLAQVPAAVVRYALTAVQYRSMLEWGPDTLDEARATWDRLTGFVARASERVGAVPREEVLAAELPAGFAAAMDDDLNVPAALAVVHETLKAGNSALAASDDDAARVALVALRAMLDVLGLDPADPQWASAADTRVADALDAVVQVQLDARAAARAAKDYATGDAIRDRLAAAGVVVQDSPDGARWALADPKGEPGPT0002985_2696DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002985-cysS-K01883NANA
AK018_039331251hypothetical proteinATGCCCGGACACCTGTGTACGGTGTCCCCCATGACGCTGACCGACCGGCTCACCCGCGCGACGGCCGGTCGCAGCGCCCCGCTCGCCGTCGTCGACCTGGACACCTTCGACGCCAACGCCGCCGACCTGCTCCGCCGAGCCGCCGGCAGCCCCGTCCGCCTCGCCGCGAAGTCGGTCCGCGTCCCCGCCCTCATGGACCGTGCCCTGGAGGCCGGGTTCACCGGCGTGATGGCCTTCTCGCTCGCCGAGGCGCTCTGGCTGGTCGGACGCGGCACGCGCGACCTGCTCGTCGGCTACCCGACCGTCGACGACGCCGCCCTCGCGCGGTGGGCCGCCGACCCCGTCGCGCGGCGCGAGATCACCCTCATGGTCGACGACGCCGCCCAGGTCGCCCTGGTCCGCCGGGCGCTCGCGGTGCACGACGACGGCACGCACCCGCCGTCGGGCGGCCCCGGTGCCCGGCAGCTACCGGACGCCGCCGTCTGCCTGGACGTGGACTGCTCGCTGCGCCTCGGCGTCGGCTCCTGGCGGGCCCACCTCGGCACGCGGCGCTCGCCGCTGCGCACCCCGGAACAGGTCGTCCGGCTCGCCGAGGAGGTCGAACGCACGCCCGGCCTGCGCGTGCGTGGCCTGATGTTCTACGAGGCGCAGGTCGCCGGGATGCCCGACGCGAGCCCGGCCGTCCGGGCCGTCAAGCGCCTGTCCGTGCCCGACGTCGAACGGCGCCGCCGCGACATCCTCGCCGCGCTGCGCACCGCCGTCGGCCGCGACGTCGAGCTCGTCAACGCGGGCGGCACGGGCTCCCTGGAGTCGTCGGCCGCCGGCACCGGCGTCACCGAGGTGACCGCCGGGTCGGGGCTGTTCGTGCCCGGCACCTTCGACCGCTACCGGTCCTTCGAGCCGCGGCCGGCCGCGTTCTTCGGGCTCGACGTGGTGCGCCGGCCCGCCGATGGCTGGGCGACGGCGTTCGGTGGCGGCTACGTCGCCTCCGGGGCGGCCGGGCCCTCGCGCCTGCCCCGTGTCGTCACCCCCGGCTGGTCCCTGACGCGGCGCGAGGGTGCCGGCGAGGTGCAGACCCCCCTGCGCCTGCGACGGTCAGGGCGTGAGCTGCGGGTCGGTGACCGGGTGTGGTTCCGGCACGCCAAGGCCGGCGAGCTCATGGAGCGTTTCGCCGAGGTGCACCTGGTGCGCGGCGACGAGATCGTCGAGACCGTGCCCACCTACCGCGGCGCGGGGCAGACGTTCGGCTGAMPGHLCTVSPMTLTDRLTRATAGRSAPLAVVDLDTFDANAADLLRRAAGSPVRLAAKSVRVPALMDRALEAGFTGVMAFSLAEALWLVGRGTRDLLVGYPTVDDAALARWAADPVARREITLMVDDAAQVALVRRALAVHDDGTHPPSGGPGARQLPDAAVCLDVDCSLRLGVGSWRAHLGTRRSPLRTPEQVVRLAEEVERTPGLRVRGLMFYEAQVAGMPDASPAVRAVKRLSVPDVERRRRDILAALRTAVGRDVELVNAGGTGSLESSAAGTGVTEVTAGSGLFVPGTFDRYRSFEPRPAAFFGLDVVRRPADGWATAFGGGYVASGAAGPSRLPRVVTPGWSLTRREGAGEVQTPLRLRRSGRELRVGDRVWFRHAKAGELMERFAEVHLVRGDEIVETVPTYRGAGQTFGNANANANANA
AK018_039341359COG0277L-gulono-1,4-lactone dehydrogenaseGTGACCTTCACCACGTGGGGACGGACCTACACCGCGACCCCGGCACGCCGCGCCACCCCGCGCGACGAGCCCGAGGTGCAGGCGCTCGTCGCCGCGGCGGCGGCAGACGGCCTGCGGGTGCGCGCGGTCGGGGCCGGGCACTCGTTCACCGACGCGGCCGTGACCGACGGCCTGCTGCTGTCGCTGGACCGTCTGCAGGGGCTCGAGGAGCTGCGGCGGCTGCCGGACGGCAACGCCCTGGTGACGGTGGGTGCGGGCATCCGGCTGGCCGCGCTGAACCGGCTGCTGGCCGGGCTCGGGCTGGCGCTGCGCAACCTGGGCGACATCGACCGGCAGTCGATCGCGGGCGCGATCTCCACGGGCACCCACGGCACGGGGTCGCGGCTCGGCGGCCTGGCCACGCAGGTGCGCGGCGTCCGCGTGGTGCTGCCGGACGGGTCGGTGCGCGCCGTGTCCGACGACGACGCGCCCGGCAGCGCGGACCGCGAGCTGTTCGAGGTGGCCCGGCTGGGGCTGGGGTCGGTCGGGGTGCTGTCCGCGGTGACGCTCGAGGTGGTCCCCGCCTACCTGCTGCGCTCCACCGAGCGGGTCCGGCCCTGGGCCGAGGTGGTGGACGGCATCGACGAGCTGTTCGACGCCCACGACCGCCTCGACGCCTACTGGTTCCCGGGCACCGACTCGATGCTCACCTGGAGCCACGACCGGTTGTCCGCGGCGGAGTCCGAGCGGCACGCGGCCTCCCGGCGCGGTCTGGCCGGCGCGTTGCGGTCGGCCGGTGCCGCGGCGCGGACGTTCCTCGACTCCGAGGTGCTGGCCAACGGAGTCCTGGGCGCCGTCATGCAGGTGGCGGCCGCCGCCCCGCGGACCGTGCCCCGGCTCAACGCGGTCTGCGCGGCCGCGCTCGGCGACCGGACCCACGTGGCGCCGTCGGCCGAGGTGATGGTGACCCGGCGTCGGGTCCGGTTCGCCGAGATGGAGTACGCCCTGCCCCGCGCGGTGCTGCCCGACGTGCTGCGCGAGCTGGACGGGTGGCTGCGGACCTCCGGCGAGCCCGTGGCGTTCCCCGTCGAGGTGCGCTGCACCGCCGCGGACGACGTCTGGCTGTCGACGGCGCGCGGACGCGAGTCCGCCTACGTGGCGGTGCACCAGTTCCACCGGATGCCGCGGCAGCGGTACTTCGACGCCGCGGAGAAGATCTTCGTCGCGGCCGGCGGGCGGCCCCACTGGGGCAAGCTGCACACCCGCACGGCGGCGGACCTGGCCGAGCACTACCCGCTGGACGATGTCGCCCGCGTGCGTGCCGCCGTCGACCCGGACGGGGTGCTGCGCAACGACTACACCGACCGCGTCCTCGGCTGAMTFTTWGRTYTATPARRATPRDEPEVQALVAAAAADGLRVRAVGAGHSFTDAAVTDGLLLSLDRLQGLEELRRLPDGNALVTVGAGIRLAALNRLLAGLGLALRNLGDIDRQSIAGAISTGTHGTGSRLGGLATQVRGVRVVLPDGSVRAVSDDDAPGSADRELFEVARLGLGSVGVLSAVTLEVVPAYLLRSTERVRPWAEVVDGIDELFDAHDRLDAYWFPGTDSMLTWSHDRLSAAESERHAASRRGLAGALRSAGAAARTFLDSEVLANGVLGAVMQVAAAAPRTVPRLNAVCAAALGDRTHVAPSAEVMVTRRRVRFAEMEYALPRAVLPDVLRELDGWLRTSGEPVAFPVEVRCTAADDVWLSTARGRESAYVAVHQFHRMPRQRYFDAAEKIFVAAGGRPHWGKLHTRTAADLAEHYPLDDVARVRAAVDPDGVLRNDYTDRVLGNANANANANA
AK018_03935483ispF_2COG02452-C-methyl-D-erythritol 2,4-cyclodiphosphate synthaseATGACCCTGCCGCGCACCGGGATCGGCACCGACGTGCACGCGTTCGCGCCGGAGGGGTCGGCCCGCGAGCTGTGGCTGGGCGGTCTGCGCTGGCCGGGGGAGCGGGGTCTCGACGGGCACTCCGACGCCGACGTGGCCGCGCACGCGGCTGCCGACGCGTTGTTCTCCGCGGCAGGTCTCGGGGGTCTGGGCACGCACTTCGGCACGAGCGAGCCCGAGTGGGCGGGGGCGAGCGGCGCCACCCTGCTCGCCGAGGCCGCGCGCCGCGTGCGCGAGGCCGGGTTCGAGATCGGCAACGTCGCGATCCAGGTGATCGGCAACCGCCCGAAGGTCGAGCCGCGCCGCACCGAGGCGGAGGCCGCGCTCACCGCGGCGGCGGGGGCCCCGGTCTCGCTGAGCGCCACCACCACCGACGGCCTGGGGCTGACCGGTCGTGGCGAAGGTGTCGCGGCGGTCGCGACGGCGCTCGTCGTCCCGCGCTGAMTLPRTGIGTDVHAFAPEGSARELWLGGLRWPGERGLDGHSDADVAAHAAADALFSAAGLGGLGTHFGTSEPEWAGASGATLLAEAARRVREAGFEIGNVAIQVIGNRPKVEPRRTEAEAALTAAAGAPVSLSATTTDGLGLTGRGEGVAAVATALVVPRPGPT0007595_360DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770NANA
AK018_03936681ispD_2COG12112-C-methyl-D-erythritol 4-phosphate cytidylyltransferaseGTGCGGCTCGGTCGGGACGTGCCCAAGGCTCTCGTCGAGGTCGGCGGGACGCCGATGATCGCCGTGGCGGCGCGCCAGCTGCTCGCCTCCGGCGTGGTCGACGCACTCGTCGTGACGGCACCGCCGGGGCACGGCGACGACATGCGTCGGGCGCTCGGCACCGTGTCGGTCCCGTGCGAGGTCGTCGACGGCGGCACCACCCGTCAGGCGTCGGTCGCGGCCGGGCTGGCCACGGCCGACGGCGGGACCGACGTCGTCCTGGTGCACGACGCCGCCCGGCCATTGACCCCCCCGGCCCTCGTGGCGCGGGTGGTGGCCGCCGTGCGCGGCGGGTTCCCCGCCGTCGTCCCGGGCCTGCCCGTCACGGACACCGTCAAGCAGGTCGCCCGCGAGGCAGACGAGGCCGCGGCGCCCCGCGTCGAGCGGGTGGTGAGCACCCCCGACCGGGCGGCGCTGCGTGCCGTGCAGACCCCGCAGGGCTTCGACCGTGCGCTGCTGCAGCGTGCCCACACCGAGGGTGCCGCGCGTGCGGCGACCGAGCACCTGGCCGCCACCGACGACGCCGGTCTCGTGGAGGCGCTGGGCGAGACGGTGCACATGGTCGCCGGCGACGCCGCGGCGATGAAGATCACGACGGCCCACGACCTGGCCGTCGCGGAGATGCTCCTGGAGGCCCGATGAMRLGRDVPKALVEVGGTPMIAVAARQLLASGVVDALVVTAPPGHGDDMRRALGTVSVPCEVVDGGTTRQASVAAGLATADGGTDVVLVHDAARPLTPPALVARVVAAVRGGFPAVVPGLPVTDTVKQVAREADEAAAPRVERVVSTPDRAALRAVQTPQGFDRALLQRAHTEGAARAATEHLAATDDAGLVEALGETVHMVAGDAAAMKITTAHDLAVAEMLLEARPGPT0007590_512DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007590-ispD-K00991NANA
AK018_03937483carD_2COG1329RNA polymerase-binding transcription factor CarDATGACGTTCACAGTAGGCGAGACGGTTGTCTACCCGCACCACGGCGCCGCGCTGATCGAAGAGGTCAAGACGCGCAAGATCCGTGGCGAAGAGAAGATGTACCTCAAGCTCAAGGTCGCCCAGGGCGACCTGACGATCGAGGTCCCGGCCGACAACGTCGACCTCGTCGGAGTACGCGACGTGGTCGACCAGGAGGGTCTCGACAAGGTCTTCGACGTGCTGCGCGCGCCGTACACCGAGGAGCCCACCAACTGGTCGCGCCGGTACAAGGCGAACCTCGAGAAGCTGGCCTCGGGCGACGTGATCAAGGTCGGCGAGGTCGTGCGCGACCTGTCGCGCCGTGACGCGGACCGCGGCCTGAGCGCCGGCGAGAAGCGGATGCTGGCCAAGGCCCGTCAGATCCTCGAGTCCGAGGTCGCGCTGGCCGAGGGCGTCGACGAGGAGCGCGCCGGCGCCATCATCGACGAGGTGCTCGCCTCCTGAMTFTVGETVVYPHHGAALIEEVKTRKIRGEEKMYLKLKVAQGDLTIEVPADNVDLVGVRDVVDQEGLDKVFDVLRAPYTEEPTNWSRRYKANLEKLASGDVIKVGEVVRDLSRRDADRGLSAGEKRMLAKARQILESEVALAEGVDEERAGAIIDEVLASPGPT0014830_1340DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-STRINGENT_STRESS_RESPONSE,PGPT0014830-ydeB|carD-K07736NANA
AK018_03938471hypothetical proteinGTGGCTCGCACCGCCCGTCCCGCCCGTCCCACTCTCGTCGCCGGCGGTGTCGCCGCGAGCGCGCTGCTGCTGGGCGCCTGCGCACCCGTGACCACGGCCCTCAACTACTCGCCGTCCGACGGTTCCCGGGTGGACCTCGACGAGGCCGGAGCCCGCGGGCTCAACCTCATGGTGCTCGCCGAGTCCGAGGGCGCCACGGGCGAGGTGTACGGCGCACTGACGAACGACTCCGCCGACGACCTCGACATCACCCTGACGCCCACCGGCGCCAGCCCCGTGACGATCCCCGTCGCCGCGCACGACACCGTCTACCTCGGCGTCGAGGACGGCGTGCAGATCCTCCTCGACGACGTCGAGGTCATCCCCGGGGCAAACCTCGGCGCGACCCTCGAGGCGGGCGGCGAGTCCGAGTCGTTCTTCCTGCCCGTCTTCGACGCGACGCTCCCGGAGTACGCCGAGTACGTGCCGTGAMARTARPARPTLVAGGVAASALLLGACAPVTTALNYSPSDGSRVDLDEAGARGLNLMVLAESEGATGEVYGALTNDSADDLDITLTPTGASPVTIPVAAHDTVYLGVEDGVQILLDDVEVIPGANLGATLEAGGESESFFLPVFDATLPEYAEYVPNANANANANA
AK018_03939780pstB1_2COG1117Phosphate import ATP-binding protein PstB 1ATGGCACAGCGCATCGACACCAAAGACCTGAACATCTACTACAGCAGCTTTCTCGCCGTCGAGGCCGTCAACATGACGATCGAGCCGAAGTCGGTCACCGCGCTCATCGGCCCGTCCGGCTGCGGCAAGTCCACGTTCCTGCGGACGCTGAACCGCATGCACGAGGTCATCCCCGGCGCCCGCGTCGAGGGGCACGTCGAGATGGACGGCGTCGACCTGTACGGGCCGAACGTCGACCCGGTGGCCGTGCGCAAGAACGTCGGCATGGTGTTCCAGCGGCCGAACCCCTTCCCCACGATGTCCATCCGCGACAACGTGCTCGCCGGGGTCAAGCTGAACAACAAGCGCATCTCGAAGTCGGACGCGGACGACCTGGTCGAGTCCTCGCTGCACGGGGCGAACCTGTGGAACGAGGTCAAGGACCGGCTGGACCGGCCGGGATCCGGGCTCTCCGGCGGTCAGCAGCAGCGCCTGTGCATCGCCCGCGCGATCGCGATCAAGCCGCAGGTCCTGCTCATGGACGAGCCGTGCTCCGCGCTGGACCCGATCTCCACGATCGCCATCGAGGACCTCATCGGCGAGCTGAAGAACGACTACACGATCGTCATCGTCACGCACAACATGCAGCAGGCGGCGCGCGTGAGCGACCGGACCGGGTTCTTCAACATCGCCGGGACCGGCAAGCCGGGCAAGCTCATCGAGATGGACGACACGGCGACGATCTTCTCCTCGCCGGCCGAGAAGGCCACCGAGGACTACGTCTCCGGCCGCTTCGGGTGAMAQRIDTKDLNIYYSSFLAVEAVNMTIEPKSVTALIGPSGCGKSTFLRTLNRMHEVIPGARVEGHVEMDGVDLYGPNVDPVAVRKNVGMVFQRPNPFPTMSIRDNVLAGVKLNNKRISKSDADDLVESSLHGANLWNEVKDRLDRPGSGLSGGQQQRLCIARAIAIKPQVLLMDEPCSALDPISTIAIEDLIGELKNDYTIVIVTHNMQQAARVSDRTGFFNIAGTGKPGKLIEMDDTATIFSSPAEKATEDYVSGRFGPGPT0002615_3208DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002615-pstB|phoT-K02036NANA
AK018_03940960pstA1_2COG0581Phosphate transport system permease protein PstA 1ATGAGTGTCGCTACGGAAAGCTCGAGCCCGGGCGGCAGCCCGGACACCGCCCGGCTGCTGGCCACCGTCGACCCGGCCCGCCGGCGCACCGACCGCACCATGCAGGTGCTGATCTACATCGCCTTCGCCCTGGCGATGATCCCGTTGATCTGGCTGATCTGGACCGTCGTGGCCCAGGGCGCCGACCGGATCAGCATCGACTTCCTCACGCAGTCGATGCGCAACATCTTCGGCGGGGACCCGCGCGGCGGCATCTACCACGCCATCGCCGGGACCGTGATCATCACGCTGCTCGCCACGGTCATCTCCGTGCCGATCGGCATCCTGACGGCGATCTACCTGGTCGAGTACGGCAAGGGCTGGCTCGCCCGCTCGGTCACGTTCTTCGTGGACGTCATGACCGGTATCCCGTCCATCGTGGCCGGCCTGTTCGCCTTCTCGCTCTTCGCGCTGATCTTCGGCCCGAGCGTGCGCATCGGCATCATGGGTGCGGTGGCGCTGTCGGTGCTGATGATCCCCGTCGTCGTGCGCTCGTGCGAGGAGATGCTCAAGCTCGTGCCGAACGAGCTGCGCGAGGCCTCCTACGCCCTGGGTGTGCCGAAGTGGCTGACCATCGTCAAGGTCGTCCTGCGGACCTCGGTGGCCGGCCTGACCACCGGCGTGCTCCTCGCCGTCGCCCGCGTCGTCGGGGAGACCGCCCCGCTGCTCGTCACGGTGGGCGTCACGGACTCGATCAACTTCAACCCGTTCGAGGGCCGCATGATGACGCTCCCGGTGTTCGCCTACCGGCAGTACTCGCAGGGCAACGCACCCTGCCCCGGCGGGGACTCCGCGACCTGCGTGGCGGACATCGCCTCCCAGAACGCCTGGGGCGCGGCACTCGTGCTGATCGCCATGGTCCTGGCACTCAACCTCATCGGGCGGCTGATCACCCGCTGGTTCGCCCCGAAGCTGGGCTGAMSVATESSSPGGSPDTARLLATVDPARRRTDRTMQVLIYIAFALAMIPLIWLIWTVVAQGADRISIDFLTQSMRNIFGGDPRGGIYHAIAGTVIITLLATVISVPIGILTAIYLVEYGKGWLARSVTFFVDVMTGIPSIVAGLFAFSLFALIFGPSVRIGIMGAVALSVLMIPVVVRSCEEMLKLVPNELREASYALGVPKWLTIVKVVLRTSVAGLTTGVLLAVARVVGETAPLLVTVGVTDSINFNPFEGRMMTLPVFAYRQYSQGNAPCPGGDSATCVADIASQNAWGAALVLIAMVLALNLIGRLITRWFAPKLGPGPT0002610_1998DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038NANA
AK018_03941987pstC2_2COG0573Phosphate transport system permease protein PstC 2GTGAGTACCACCATCAGTCGCCCACCCGCCCGGGGTTCGCGGCGACGCCGCAGCAGCACCACCGACCGCGGCTTCAACCGGGTCTTCCGGTGGATCGCCGTCGGCGCCGGCGCGACGATCCTCGCCGTCCTGGCGGCGGTCGCGCTCTTCCTGATCTCCGAGGCGTGGCCCGCCATCATGGCCAGCCCCGAGGAGCTGGCCTCCGGGGTGCCGCGCTACCCCGAGGACACCTCGCTCCTCGGCTACCTCGGGCCCCTCGTCTACGGCACGATCCTCGCCGCCGTGCTGGCGCTGGTGATCGCGGTCCCGGTGTCGATGGGCATCGCGCTGTTCATCTCGCACTACGCGCCGCGCCGGCTCTCGCAGCTCCTCGGTGCGCTCGTCGACCTGCTCGCCGCGATCCCCTCGGTCATCTACGGCCTGTGGGGCTTCTTCACGCTCGCGCCCGTGCTGACACCGTTCTGGCTCTGGCTCAACGACAACCTCGGCTGGTTCCCCTTCTGGGGCGGGCAGGCATCCCCGACCGGCCGGTCGATGGCCACCGTGGGCATCGTGCTCGCGATCATGATCCTGCCGATCATCACCGCCGTGTCCCGCGAGGTGTTCCTGCAGACGCCGCGCCTGCACGAGGAGGCCGCGCTCGCCCTCGGGGCGACGCGGTGGGAGGTCGTGCGCACCGCCGTCCTCCCGTTCGGCCGGTCCGGCGTCATCTCCGCCTCCATGCTCGGCCTGGGCCGCGCCCTCGGCGAGACGATGGCGGTGCTGATGATCCTCTCGCCCGGGTTCACCTACAGCCTGGACATCCTGGCCGCCGGCCAGCACCAGACCATCGCGGCCTACATCGCCGCCGACTTCCCGGAGTCGACCGGGCTCGGTGTGAACACGCTGATCGCCGCGGGTCTCGCCCTGTTCGTGATCACGCTGGCCGTCAACATGGCAGCGCGCTGGGTCGTGGCCCGCCGCAAGGACTTCTCGGGAGCCAACTGAMSTTISRPPARGSRRRRSSTTDRGFNRVFRWIAVGAGATILAVLAAVALFLISEAWPAIMASPEELASGVPRYPEDTSLLGYLGPLVYGTILAAVLALVIAVPVSMGIALFISHYAPRRLSQLLGALVDLLAAIPSVIYGLWGFFTLAPVLTPFWLWLNDNLGWFPFWGGQASPTGRSMATVGIVLAIMILPIITAVSREVFLQTPRLHEEAALALGATRWEVVRTAVLPFGRSGVISASMLGLGRALGETMAVLMILSPGFTYSLDILAAGQHQTIAAYIAADFPESTGLGVNTLIAAGLALFVITLAVNMAARWVVARRKDFSGANPGPT0002620_2283DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002620-pstC|phoW-K02037NANA
AK018_039421140pstS3_2COG0226Phosphate-binding protein PstS 3ATGGAACGACTCGTGAACCTCAGCCGATTCACCCGTGCCGGATCTGCAGTCGCCGTCGGCGTGCTGGCTCTCAGCCTCGCCGCGTGCGGTTCGGACCCCGAGCCCGCGGACGCCACGGGCGATGAGACCACCGAGGCGTCGGAGTCCGGCGACGACATGGAGGGCGGCCTGTCGGGCACGCTCTCCGGCGGCGGTGCCTCCTCGCAGGAGGCCGCCATGAACGCCTGGCGCGCCGGGTTCCAGCAGGCGAACCCCGAGGCGACCGTGAACTACGACCCCGTCGGTTCCGGCGGCGGCCGCACCGGCTTCGGCGACGGCTCCTACGCCTTCGCCGGCTCGGACGCCGCGCTGGACGACGAGGAGCTCGCCGCCGCCGAGGCGCAGTGCGGTGAGGGTGGCGTCATCGAGTTCCCGGGCTACGTCTCCCCGGTGGCCGTGGCCTTCAACCTCGAGGGTGTCAACACCCTGAACATGTCCCCGGAGACCATCGCCAACGTGTTCCTCGGCGAGATCACCTCCTGGGACGACGAGGCGATCGCCGCGGACAACCCCGACGCCGACCTGCCGAGCACCGACATCACCGTCGTGCACCGTTCCGACGAGTCGGGCACCACCGAGAACTTCGAGGAGTACCTCTACTCGGTCGCCCCGGACATCTGGACGGCCGAGCCGTCCGGCGTCTGGCCGATCGACGGCCAGGAGTCGGCGCAGGGCACCTCCGGTGTCGTGGGCGCCGCCCAGGCCGGCGAGGGCACCATCACCTACGCCGACGCCTCGCAGATCGCGGACCTCGGCACCGTCGCGGTGGGTGTGGGCGGCGACTTCGTCGAGTACTCCGCCGAGGCCGCCGCCGAGGTCGTGGCCCAGTCGCCGCGCACCGAGGGCACCTCGGAGTACGTCTACACGATCGAGCTCGAGCGCGACATCGAGGGCACCTACCCGATCGTGCTCGTCTCCTACTCGCTCGCCTGCACCACCTACGCGGACGAGAACACCGCCGAGCTGGTCAAGGGCTTCCTCGGCTACCTCGCCAGCGAGGAGGGCCAGCAGGCCGCCGCGGACGCCGCCGGTTCCGCCCCGCTGTCCGACACGATCCGCCAGGCCGTCCTGCCCGGCATCGAGTCGATCTCCGCGGGCTGAMERLVNLSRFTRAGSAVAVGVLALSLAACGSDPEPADATGDETTEASESGDDMEGGLSGTLSGGGASSQEAAMNAWRAGFQQANPEATVNYDPVGSGGGRTGFGDGSYAFAGSDAALDDEELAAAEAQCGEGGVIEFPGYVSPVAVAFNLEGVNTLNMSPETIANVFLGEITSWDDEAIAADNPDADLPSTDITVVHRSDESGTTENFEEYLYSVAPDIWTAEPSGVWPIDGQESAQGTSGVVGAAQAGEGTITYADASQIADLGTVAVGVGGDFVEYSAEAAAEVVAQSPRTEGTSEYVYTIELERDIEGTYPIVLVSYSLACTTYADENTAELVKGFLGYLASEEGQQAAADAAGSAPLSDTIRQAVLPGIESISAGPGPT0002625_1108DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
AK018_03943717regX3_5COG0745Sensory transduction protein regX3GTGACGCGCATCCTGGTGGTCGAGGACGAGGAGTCCTACCGCGACCCGCTGACGTACCAGCTCACCCGCGAGGGGTACGACGTGGTGGCGACGTCGAACGGCAACGACGCCCTGACGCAGTACGACGACGGCGGGGCGGACCTGGTGCTGCTCGACCTGATGCTCCCGGGGCTGAGCGGCACCGAGGTGTGCCGCGAGCTGCGGCAGCGCGGCGAGGTGCCGATCATCATGCTGACGGCCAAGGACTCCGAGATCGACAAGGTCGTGGGCCTCGAGCTGGGTGCCGACGACTACGTCACGAAGCCGTACTCGTTCCGCGAGCTGCTGGCCCGCATGCGTGCCGTCATGCGCCGGCGGGGCGCCGCGTCCGCGGAGAGCGGGCCGAACGGGCACCTGGACGACGGCGAGTCCGTGCTCGAGGTGGGCCCGGTCCGGATGGACGTGGAGCGTCACACGGTGGCGGTGGGCGGCCAGACGGTGTCGTTGCCGCTCAAGGAGTTCGACCTGCTCGAGCTGCTGCTGCGCAACGCCGGCCGGGTGCTGACGCGCGGCCAGCTCATCGACCGGGTCTGGGGCGCGGACTACGTGGGGGACACCAAGACCCTCGACGTCCACGTCAAGCGCATCCGGTCCAAGATCGAGCCGGACCCGTCGTCGCCGAGCCTGCTGCTGACCGTGCGAGGCCTGGGCTACAAGCTCGCCGACGGCGAGTCGTAGMTRILVVEDEESYRDPLTYQLTREGYDVVATSNGNDALTQYDDGGADLVLLDLMLPGLSGTEVCRELRQRGEVPIIMLTAKDSEIDKVVGLELGADDYVTKPYSFRELLARMRAVMRRRGAASAESGPNGHLDDGESVLEVGPVRMDVERHTVAVGGQTVSLPLKEFDLLELLLRNAGRVLTRGQLIDRVWGADYVGDTKTLDVHVKRIRSKIEPDPSSPSLLLTVRGLGYKLADGESPGPT0002675_126DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
AK018_039441302sasA_13Adaptive-response sensory-kinase SasAGTGGAAGGAATCATCCCGGGGGTCACGGCCGTCGTCGCCGGCGTGCTCGGTGTCGTGGTCGGCGTCGTGGCGACCCTTGCCTTCCGTCTGTCCGACCGGGCCCAGCACGACACCGACGACAGCCGTGCGTCCGAGCTCGACGAGGGCCTGGTGCGGGTGCTGTCCGTGCTGCGCTCGGCCGCGGTGGTGCTGGACGACGACGACGAGGTGATCCGAGCCTCCCCGCCCGCCTACGCCCTCGGTGTGGTGCGCAACGACGCCCTGGTGCACCCCGCGATCACCGACATGGTGGCCGAGGTGCGCCGCGACGGCGTCATCCGCGAGCAGGAGCTGGAGGTGCCGCGCGGGCCGGTGGGGTCCGGCACGGTGCTGCTGCAGGTGCGGGTCGCGGCCCTGGGCATGGACAAGCTGCTGGTGCTCGCCGAGGACCGCACCGAGGCGCGCCGGGTGGAGGCGATCCGCCGCGACTTCGTGGTCAACGTGTCCCACGAGCTCAAGACGCCGGTCGGCGCGCTGGCGCTGCTGGCCGAGACCGTCCAGGACGCCGCGGACGACCCGGTGGCCGTGCGGCGGTTCTCCGAACGGATGCAGTCCGAGGCGACGCGGCTCTCGGCGCTGGTGCACGAGATCATCGAGCTCTCCCGCCTGCAGGTGGCGGGCGCCCTGCAGCAGGTGCGCCCGATCGCGGTGCGCGACGTCGTCGAGGAGTCGGTGGACCGCGCGCGCACGACGGCGCAGGGCAAGAACATCACCATCACGGTCGGGGGGTCGTTGGACAGCGTCGTCTTCGGCGACCACAACCTGCTGGTGACGGCGGTGCGCAACCTGCTGGACAACGCCGTGTCGTACTCGGCGGAGAACACGCGCGTGGGCCTGGGGGTCCACGAGCGCGGCGGGCTCGTGGAGATCGACGTGGTCGACCAGGGGATCGGGATCTCGACCGAGGAGCAGATGCGCGTGTTCGAGCGGTTCTACCGCGTCGACCCGGCGCGCTCGCGCGACACGGGCGGCACGGGTCTCGGGCTCAGCATCGTCAAGCACGTCGCCGCCGACCACGGCGGTGACGTGCGCGTGTGGTCCGAGCCCGGCAAGGGCTCGACCTTCACGCTGCGCATCCCGGCCGCGGACCTGCCCGACGACGGTCTGGTCGGGGACGCGTCGTCGGACAGTCCCGGGTGGGCCGGCGACGGCGTCCGTCCTGAGGGGCGCGAGCCCCATCAAGCGTCCGTGGCGCCCCGAGGAGGGCGTGACGGTGACCAGTGGCCCGGTAGCGGGCCGAGGAACGAGGAGGTAGGCGCGTGAMEGIIPGVTAVVAGVLGVVVGVVATLAFRLSDRAQHDTDDSRASELDEGLVRVLSVLRSAAVVLDDDDEVIRASPPAYALGVVRNDALVHPAITDMVAEVRRDGVIREQELEVPRGPVGSGTVLLQVRVAALGMDKLLVLAEDRTEARRVEAIRRDFVVNVSHELKTPVGALALLAETVQDAADDPVAVRRFSERMQSEATRLSALVHEIIELSRLQVAGALQQVRPIAVRDVVEESVDRARTTAQGKNITITVGGSLDSVVFGDHNLLVTAVRNLLDNAVSYSAENTRVGLGVHERGGLVEIDVVDQGIGISTEEQMRVFERFYRVDPARSRDTGGTGLGLSIVKHVAADHGGDVRVWSEPGKGSTFTLRIPAADLPDDGLVGDASSDSPGWAGDGVRPEGREPHQASVAPRGGRDGDQWPGSGPRNEEVGAPGPT0002670_164DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002670-senX3-K07768NANA
AK018_03945660phoU2_2COG0704Phosphate-specific transport system accessory protein PhoUATGCGAGAGATCTTCGAGTCCGAGCTGCGGCAGATCGGCGACAGCCTCGTCGAGATGAGCCGACTCGTCGAGTCCGCGATCACCAGGGCGGGCACGGCGTTGCTCGACGGCGAGCACCAGCTCGCCCAGGACGTCATCGCCTCCGACCACGAGATCGACCGGATCGAGAGCGAGCTGGACGAACGGTGCGTGCACGTGCTCGCCCAGCAGGCGCCCGTGGCCACCGACCTGCGGGTCGTCATCACCGCGCTGCGGATCAGCGCGTCGCTGGAGCGGATGGGCGACCTGGCCCGGCACGTCGCCGAGGTAGCCCGCGGCCGCTACCCGGCGCTGGCCGTCCCGCCGTCGGCCCGCGACACGTTCGTGACGATGAACGACGCCGCGGCGCTCGTGGCCCGCCGGACCACCGAGCTGCTCAGCACCCGTGACGTGGCGCTGGCCGCGGAGATCGAGCGGGGCGACGACGAGCTGGACCACCTGCACCAGGCGACGTTCGCCGCGACGCTGGACCCGGAGTGGACCGGCACGGCCCAGGAGACGATCGACGTCACCCTGCTGGGCCGCTACTACGAGCGGTTCGGCGACCACGGCGTCGGCGTGGCCCGGCGCATCACGTTCCTCGTGACGGGGGACTTCGTCGGGGAGCGCTCCGAGGTCTGAMREIFESELRQIGDSLVEMSRLVESAITRAGTALLDGEHQLAQDVIASDHEIDRIESELDERCVHVLAQQAPVATDLRVVITALRISASLERMGDLARHVAEVARGRYPALAVPPSARDTFVTMNDAAALVARRTTELLSTRDVALAAEIERGDDELDHLHQATFAATLDPEWTGTAQETIDVTLLGRYYERFGDHGVGVARRITFLVTGDFVGERSEVPGPT0002630_2256DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ARSENIC_RESISTANCEARSENIC_RESISTANCE-PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002630-phoU|phoY-K02039NANA
AK018_03946741gpmA_2COG05882,3-bisphosphoglycerate-dependent phosphoglycerate mutaseATGACCTACACCCTCGTGCTGCTCCGCCACGGCGAGAGCGAGTGGAACGCGAAGAACCTCTTCACCGGCTGGGTCGACGTCCCGCTGTCCGAGAAGGGCACCGAGGAGGCCAAGCGCGGTGGCGCCCTCCTGACCGAGGCCGGCGTGTCGCCCGACGTCCTGCACACGTCGCTGCTGCGACGTGCCATCACGACGGCGAACCTCGCCCTTGACGCGGCCGACCTGCACTGGATCCCGGTCAAGCGCAGCTGGCGCCTCAACGAGCGTCACTACGGCGACCTGCAGGGCAAGGACAAGAAGCAGGTGCGCGACCAGTACGGCGAGGAGCAGTTCATGCTCTGGCGTCGTTCCTACGACGTGCCGCCGCCGGAGATCGAGCTCGGCTCGGAGTACTCCCAGGACGCCGACCCGCGCTACGCCGGCGAGCCGATCCCGCGCTCCGAGGCCCTCAAGCAGGTGCTCGACCGGGCGCTGCCGTACTGGGAGTCGGAGATCGTCCCGGACCTGAAGGCGGGCAGGACCGTCCTCGTGGCCGCGCACGGCAACTCGCTGCGGGCGCTCGTCAAGCACCTCGACGGCGTCGACGACGAGACCATCGCCGGACTCAACATCCCCACCGGCATCCCGCTCGTCTACGAGCTGGACGAGGAGACGCTGAAGCCCACCAACCCGGGCGGCACCTACCTCGACCCGGAGGCCGCGAAGGACGCCATCGCGGCCGTGGCCAACCAGGGCAAGTAGMTYTLVLLRHGESEWNAKNLFTGWVDVPLSEKGTEEAKRGGALLTEAGVSPDVLHTSLLRRAITTANLALDAADLHWIPVKRSWRLNERHYGDLQGKDKKQVRDQYGEEQFMLWRRSYDVPPPEIELGSEYSQDADPRYAGEPIPRSEALKQVLDRALPYWESEIVPDLKAGRTVLVAAHGNSLRALVKHLDGVDDETIAGLNIPTGIPLVYELDEETLKPTNPGGTYLDPEAAKDAIAAVANQGKPGPT0018030_2248DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018030-gpmA-K01834NANA
AK018_03947468F420H(2)-dependent quinone reductaseATGCCGCCGTCGGGCAGCGACGTTGCCGCCGACATGGCGATCACCGGAGAGTACGTCCCCAGCCCGTCCGAGTTCGTGGCGAACCAGGTCGAGACCTTCGAGGCCTCGGCCGGCGCCGAGGGCAACACGATGCGCGGCAAGCCCGTCATCATCCTGACGACCGTCGGCGCGAGGTCCGGCAAGGTGCGCAAGATCCCGCTGATGCGGGTCGAGCACGACGGTGCCTACGCCGTCGTCGCCTCGATGGGCGGCGCGCCGACGCATCCCGTCTGGTACCACAACATCGTGGCGCACCCGCAGGTCGAGCTGCAGGACGGACCGGACAAGCACGCCTACGTGGCACGTGAGGTCACCGGCGACGAGAAGGCCGCCTGGTGGGAGCGGGCCGTGGCGGCCTGGCCCGACTACGCCGAGTACCAGAAGAAGACCGACCGCGAGATCCCGGTCTTCGTGCTCGAACGCGCCTGAMPPSGSDVAADMAITGEYVPSPSEFVANQVETFEASAGAEGNTMRGKPVIILTTVGARSGKVRKIPLMRVEHDGAYAVVASMGGAPTHPVWYHNIVAHPQVELQDGPDKHAYVAREVTGDEKAAWWERAVAAWPDYAEYQKKTDREIPVFVLERANANANANANA
AK018_039481368mshA_4COG0438D-inositol 3-phosphate glycosyltransferaseATGAGTGCGGAGCGTCCGGCGCCGCGGGTGGCGATGCTGTCGGTGCACACCTCGCCGCTGGACCAGCCGGGCACGGGCGACGCGGGCGGCATGAACGTCTACGTCCTGGAGCTCTCGCGGGCGCTGGCGCGCCGGGGCGCGGAGGTGGAGATCTACACGCGGGCCACCTCGTCGGCGCAGCCCAAGGTCGCCGACGCCGAGCCGGGCATCCGTGTCGTGCACGTGCCCGCCGGCCCGTTCGAGGGGCTGGACAAGAACGACCTGCCCGGGCAGCTGTGCGCGTTCACCGCCGGGGTGCTGCGGGCCGAGGCGCACCGCCCGGCCGGCTGGTACGACGTCGTGCACTCGCACTACTGGCTGTCCGGGGAGGTCGGCTGGCTGGCGGCGGAACGGTGGGACGTGCCGCTGGTGCACACCATGCACACCATGGCGCAGGTGAAGAACGCCGCCCTGGCTCCGGGGGACACCCCCGAGCCGCACGGGCGGATCATCGGCGAGGAGCAGGTGGTCGCCGAGTCCGACGCCCTGGTGGCGTCGACCCGCGAGGAGGCGGACGACCTGGTGCGGTTCTGCGGCGCGGACCCGGACCGGGTGCACGTCGTCGCGCCGGGGGTGGACCTGGCGGCGTTCGCGCCCCTGGAGCTCGCGGCGGGGGAGACGACGGCGCAGGCCCGGCGGGCGTTGCGCGAGCGGCTGGGGCTGCCGGTCGACCGCCCCGTGGTGCTGTTCGCCGGGCGGGTGCAGCTGCTCAAGGGCCCGGACGTGCTGGTGCGGGCACTGGGCGTGCTGGCCGCCCGCGCGCGGGATGCCGGCGACGACGCGGACGTGCCGACGCTGGTGGTGCTGGGCGGGGCCAGCGGGCGCCCGACGGCGGTGCGCGAGCTGGAGGCGCTCGCCCATCAGGAGGGTGTCACCGAGCACCTGGTGGTCCGCCCGCCGGTCTCGCGGACGGAGCTCGCGGACTGGTACCGGGTCGCGGACGTGGTCGCGGTGCCGTCGCACAGCGAGTCGTTCGGCCTGGTGGCCGCGGAGGCACAGGCCTGCGGGACGCCGGTGGTGGCGGCCGCCGTCGGCGGGCTGTGCACCGTGGTGGTCGACGACGTCTCCGGGGTGCTGGTCATGGATCACGAGCCGGCCACGTGGGCCGAGGTGCTCGGCGACCTGCTCGCCGACCCGGCGCGCCGGGACCGGTTGGCGGCCGGAGCCCGGCGCGCGAGCGAGCGCTTCTCCTGGGACCGGGCAGCCGCGGCGATGCTGGACGTGTACGCCCAGGCCGCGAAGACCCGCCAGACCCGTGGCGCGGACGGTGGGGGCGAGGGCGCCGACCGCGCCGACCGGGCCGACGGGTCCGAAGGCTCCGCGAGGTAGMSAERPAPRVAMLSVHTSPLDQPGTGDAGGMNVYVLELSRALARRGAEVEIYTRATSSAQPKVADAEPGIRVVHVPAGPFEGLDKNDLPGQLCAFTAGVLRAEAHRPAGWYDVVHSHYWLSGEVGWLAAERWDVPLVHTMHTMAQVKNAALAPGDTPEPHGRIIGEEQVVAESDALVASTREEADDLVRFCGADPDRVHVVAPGVDLAAFAPLELAAGETTAQARRALRERLGLPVDRPVVLFAGRVQLLKGPDVLVRALGVLAARARDAGDDADVPTLVVLGGASGRPTAVRELEALAHQEGVTEHLVVRPPVSRTELADWYRVADVVAVPSHSESFGLVAAEAQACGTPVVAAAVGGLCTVVVDDVSGVLVMDHEPATWAEVLGDLLADPARRDRLAAGARRASERFSWDRAAAAMLDVYAQAAKTRQTRGADGGGEGADRADRADGSEGSARPGPT0024580_315DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_GLYCOSYLTRANSFERASE_ACTIVITY,PGPT0024580-mshA-K15521NANA
AK018_039491071pgl_3COG27066-phosphogluconolactonaseATGACTGCGCAGCCCGTGCCCCTGTGGATCGGCACCTATCCGGCGGCCGGGTCGGCACCCGGAACCGGAGAGGGCGTCTGGCGGGTCACCGTCGATCCGGCCAGCGGCACGTTCGGCGCTCCCGCCCTGGCCACCGAGCTGACCTCCCCGTCCTTCCTGGCGCGCCATCCCCACGTCCCCGTCCTGTACGCCGTCGCGGAGACCCCCGCCGGGGCGCTGACCGCGCTGCGGGTGCACGACGGCGGGACGCTCGAGCCGTCGTCGACCCTCTCCTCGGGCGGCGACGACCCCTGCCACGTCGCCGCGTCCGCCCGCGCGGTGTGGGTGACGAACTACGGGGACGGTGTCGCGTCGGTCGTGGCGGTGTCCGACGACGGCACCCCGGAGGCGGAGCATCGCGCGCTCTACGCCGGCGGCGGCTCCGGTCCCGTGAACGACCGCCAGGAGGGCCCGCACGCGCACCAGGTGACGGTGGTGGACGACCACGTGCTGGTCACCGACCTGGGTGCGGACGTGGTGCGGCGCTATCCGCTGGACCCTCCGGCGTCGGACGCCGCCACGACCGACGCAGGCGAGGTGGCCGCGCGGCTGCCCGCCGGCACCGGTCCGCGGCACCTGGTGGTGCTGCCCGGCGGGGCGCTGGTCGTCGCGGGCGAGCTGGACGCGCGGCTGCACGTCCTGGTGCCCGGCGGCGACGGTTGGGAGCACGCGGGCAGCGTGCCCGTCTCGCCGGGCGCGGCCGTGGGGGAGGCGTTCCCCGGCCACGTCACGCTGAGCGAGGACGGGCGGCGCGTGCACGTGGGCGTGCGCGGCCCGGACGTGCTGGCGGTGCACGAGGTGTCCGACGACGGTCCGCACCTGACGCACGTCGGTGACGTCCCCCTGGGCGAGGGCGCCTGGCCGCGGCACCACGAGGTCGTGGCGGGTTCGCCGGACGGCGAGCTGGTCGTGGTCGCCCTGCAGGGTTCCGCCGAGCTCGTCACGGTCCACCTGGACGACGACGGGACGGGCACGGTGCTCGACCGTGCGGCCTGGGCGACACCGCCCGCGTGCGTGCTGGTGGCGCGATGAMTAQPVPLWIGTYPAAGSAPGTGEGVWRVTVDPASGTFGAPALATELTSPSFLARHPHVPVLYAVAETPAGALTALRVHDGGTLEPSSTLSSGGDDPCHVAASARAVWVTNYGDGVASVVAVSDDGTPEAEHRALYAGGGSGPVNDRQEGPHAHQVTVVDDHVLVTDLGADVVRRYPLDPPASDAATTDAGEVAARLPAGTGPRHLVVLPGGALVVAGELDARLHVLVPGGDGWEHAGSVPVSPGAAVGEAFPGHVTLSEDGRRVHVGVRGPDVLAVHEVSDDGPHLTHVGDVPLGEGAWPRHHEVVAGSPDGELVVVALQGSAELVTVHLDDDGTGTVLDRAAWATPPACVLVARPGPT0014975_1389DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014975-ykgB|pgl-K07404NANA
AK018_03950336lsr2_2Nucleoid-associated protein Lsr2GTGGTTCAGAAGACCAAGGTCGTGCTGATCGACGACATCGACGGCAGCGACGGTGACGAGACGGTCACTTTCGGTCTCGACGGCGTCTCCTACGAGATCGACCTCACGGAGGCGCACGCCACCGAGCTGCGCGAGGCGCTCTCGACGTGGATCGGGCACGCCCGCAAGTCGGCCGGCCGGTCGGCGCCGCGTGCGACCGGCGGTGCACGCCGCGGGCGCACGGATCGCGAGCAGCTGCAGAAGATCCGTGAGTGGGCCCGCGAGAACGGGTACACGGTCAACGACCGTGGTCGTATCCCGGGTCGTGTCCTGGAGGCGTTCGAGGCCGCGCACTGAMVQKTKVVLIDDIDGSDGDETVTFGLDGVSYEIDLTEAHATELREALSTWIGHARKSAGRSAPRATGGARRGRTDREQLQKIREWARENGYTVNDRGRIPGRVLEAFEAAHNANANANANA
AK018_03951171hypothetical proteinATGGACGCTTTCTGGGCGGTGATCGCGGGACTCGTCCCGTCGATCGGGGTGGGTCTGCTCTTCTGGTTCGCGATGCGCAAGATCATCCGGGCCGATCGCAACGAGCGTGCCGCCACCGAGCTGCACGAGGCGCAGGCGCGTGACCGGGTCAATGGGTCCCGGGCCGACTGAMDAFWAVIAGLVPSIGVGLLFWFAMRKIIRADRNERAATELHEAQARDRVNGSRADNANANANANA
AK018_039521527lysS1_2COG1190Lysine--tRNA ligase 1GTGACATCTCCCGAGAACGCCGACTCCGCCGTGCCCGACGTCCCCTCCGACGACCTGCCCGAGCAGCTGCGTGTCCGCCGGGAGAAGCGTGACCGCATCGTCGCCGCGGGTGGTGAGGCCTACCCGGTCGGGGTGCCGATCACCAGCACGATCGCGGCGGTGCGCGAGCAGTACGAGCACCTGGGCGCCGGCGAGGAGACCGACGACGTCGTGGGTGTCGCCGGCCGGGTGGTGTTCCTGCGCAACACGGGCAAGCTCTGCTTCGTGGCGCTGCAGGACGGTGAGGGCAACCGTCTCCAGGCGATGCTGAGCCAGAAGGTCGTGGGGGAGGACGCCCTGGCGGCGTTCAAGGCGGACGTGGACCTCGGCGACCACGTGTTCGTCCGGGGTCGCGTGGGTGTCTCGCGCCGCGGTGAGCTGAGCATCTTCGCCGAGGAGTGGCAGCTCGCCTCGAAGGCGCTGCGTCCGCTGCCCGTGCTGCACAAGGACCTGTCGGAGGAGGCGCGGGTCCGGCAGCGGTACGTGGACCTGATCGCCCGCCCGGCCGCGCGCGACATGGTCCGCCGTCGTGCCGCCGTCGTGCGCTCGCTGCGCGAGAACTTCCACCGCCGCGACTTCGTCGAGGTGGAGACGCCGATGCTGCAGGCGGTCGCGTCGGGGGCTTCGGCACGTCCGTTCTCGACGCACATGAATGCCTACGACATGGATCTGTTCCTGCGGATCGCGCCGGAGCTGTTCCTGAAGAAGGCCGTCGTGGGCGGTGTGGAACGCGTCTTCGAGATCAACCGCAACTTCCGCAACGAAGGTGCCGACTCGTCGCACTCCCCGGAGTTCGCGATGCTAGAGGCCTATGAGGCCTACGGCGATTACGACACGATGGCGGAGCTGACGAAGGATCTGGTGCAGAAGGCCGCGCTGGACGCATTCGGCACCACGACCGTCACCCTGGCCGACGGTGAGGAGTACGACCTCGGCGGGGAATGGGCCGACATCACGATGTACGGGTCGCTCTCGGACGCGCTGGGGGAGCAGATCACTCCGGAGACGAGTGTCGATCATCTCGTGGTGCTCGCCGAGAAGGCGGAGATCTCGTTCGATCCGAAGAAGGTCAATCACGGCAAGCTCGTCGAGGAGCTGTGGGAGCACCACGTCGGTGACGGCCTGTACGCGCCGACGTTCGTGCGCGACTTCCCGGTCGAGACCTCGCCGCTGACCCGCGAGCACCGCACCACCCCGGGCATCGTGGAGAAGTGGGACCTGTACGTGCGCGGTTTCGAGCTCGCCACCGCCTACTCGGAGCTGGTCGACCCGGTGGTCCAGCGTGAGCGCTTCGCCGAGCAGGCGCGGCTCGCCGCGGCCGGCGACGACGAGGCGATGGCGCTCGACGAGGACTTCCTGACGGCCATGGAGTTCGCCATGCCGCCGGCCGGTGGCATGGGAATGGGGCTCGACCGGTTGCTGATGGCGCTCACCGGAGCGGGAATCCGCGAGACGATTCTGTTCCCGCTCGTCAAGCCGTCCCACTGAMTSPENADSAVPDVPSDDLPEQLRVRREKRDRIVAAGGEAYPVGVPITSTIAAVREQYEHLGAGEETDDVVGVAGRVVFLRNTGKLCFVALQDGEGNRLQAMLSQKVVGEDALAAFKADVDLGDHVFVRGRVGVSRRGELSIFAEEWQLASKALRPLPVLHKDLSEEARVRQRYVDLIARPAARDMVRRRAAVVRSLRENFHRRDFVEVETPMLQAVASGASARPFSTHMNAYDMDLFLRIAPELFLKKAVVGGVERVFEINRNFRNEGADSSHSPEFAMLEAYEAYGDYDTMAELTKDLVQKAALDAFGTTTVTLADGEEYDLGGEWADITMYGSLSDALGEQITPETSVDHLVVLAEKAEISFDPKKVNHGKLVEELWEHHVGDGLYAPTFVRDFPVETSPLTREHRTTPGIVEKWDLYVRGFELATAYSELVDPVVQRERFAEQARLAAAGDDEAMALDEDFLTAMEFAMPPAGGMGMGLDRLLMALTGAGIRETILFPLVKPSHPGPT0012225_3587DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012225-lysS-K04567NANA
AK018_03953948nadC_2COG0157Nicotinate-nucleotide pyrophosphorylase [carboxylating]GTGACGCCCGTGAGCACGCCCCCACCCGACCTGCCCGTCCACGCGTCCCCCTCCGTCGTCGAACCCCCGCTCGACGACGGCTGGATCGCCCGCACCGTGCAGACCGCCCTCGACGAGGACCTCGGCCCCGCACCCGGCCGCGACGTGACCACCCAGGCCACCGTGCCGCCGTCGGACACCCGCACCGCCCACCTCGTCGCCCGCGCGGCAGGGACCGTCGCCGGGCTCGTCGTGGTCGCCGAGACCCTGCGCCAGACGGCGACCCGCCTCGCCCTGCCTTCGCCCGAGGTGACGTTCCACACCCAGGACGGGGCCGCCGTCGTCCCGGGACAGGTGCTGGCCTCCCTCACCGGCCGCACGCAGGTGCTGCTCGTCGCCGAACGCACCCTGCTCAACCTGGCCTCCCGCGCCTCCGGCGTCGCCACCGCCACCGCCGCGTTCACCCGCGAGCTCGCCGGCACCGGCGCACAGGTCCTCGACACCCGCAAGACCACGCCCGGCCTGCGCGCGCTCGACAAGTACGCCGTGCGCGCCGGCGGCGGCACCAACAAGCGCATGGGCCTGCACGACGTCGCCATGGTCAAGGACAACCACGTCGTCGCCGCCGGCGGCGTCGCCCCCGCGATCCACGCCATCCGCGCGACCTTCCCCGACGTGCTCGTCCAGGTCGAGGCCGACACCACCGCCCAAGCCATGGAGGCCCTCGACGCCGGCGCGGACTTCCTGCTGCTCGACAACATGCCCACCGACGTCCTCACCGCGACCGTCGCCGCCGTCCGCGAGCGCCAGGGCCGCGACGGGGTCCCGGCGCACGTGGAGCTCGAGGCCACCGGCACCCTCACGCTCGACCGGGCGCGGGAGGTGGCGCTGACCGGCGTCGACCACCTGTCCGTCGGGGCGCTGACGCACTCGGCGCCGATCCTCGACCTCGCGCTCGACCTGCGCTGAMTPVSTPPPDLPVHASPSVVEPPLDDGWIARTVQTALDEDLGPAPGRDVTTQATVPPSDTRTAHLVARAAGTVAGLVVVAETLRQTATRLALPSPEVTFHTQDGAAVVPGQVLASLTGRTQVLLVAERTLLNLASRASGVATATAAFTRELAGTGAQVLDTRKTTPGLRALDKYAVRAGGGTNKRMGLHDVAMVKDNHVVAAGGVAPAIHAIRATFPDVLVQVEADTTAQAMEALDAGADFLLLDNMPTDVLTATVAAVRERQGRDGVPAHVELEATGTLTLDRAREVALTGVDHLSVGALTHSAPILDLALDLRPGPT0013370_300DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013370-nadC-K00767NANA
AK018_03954834drrB_2Daunorubicin/doxorubicin resistance ABC transporter permease protein DrrBATGACCGCCCTGACCGCCCCCGCGACCGCTTCCGCGGGCCCCCGCCCGCTGGCCGACGTCGCCACGATGCTGCGCCGCAGCCTCCTGCGGGCCGTGCGCTACCCCGGGCTGACCGTCTTCCTCGTGGCCGGACCGCTGGTGATGCTGCTGCTGTTCGTCCACGTCTTCGGCGGCGCGTTCGGCGCCGGCGTCGTACCCGGCGTCACCCCGGGCGCCGAGGGGCGCGCCGCCTACCTCGACTACATCACGCCGACCCTGCTGGTCCTGACGATCGTCGGGGGCGCCACGTCCGTGGCCACGAGCGCCGCGATGGACGCCGCGGGCGGCATCATGGCGCGGTTCCGCACGATGGCCATCGCACCCGGGTCGGTCCTGTCCGGGCAGGTGCTCGGCTTCACCGTGCAGGCGCTGGCCGCCCTGGTGCTGCTGCTCGGCGCCGCCGTCCTGATGGGGTACCGGCCCGACGCCGGCGTGGCCGGGTGGTTCGCCGTCGTCGGCCTGCTGGTGCTGCTCAGCCTCGCGCTGAACTGGCTGTGCGTGGCGATGGGACTGCACGCCCGCAGCGTGGAGACCGCCAGCAACCTGCCCATGATCCTGCTGCTCCTGCCGTTCCTCGGCAGCGGGTTCGCGCCCGTCGACACCATGCCCGGCGCGGTGCGCTGGTTCGCCGAGCACCAGTCGTTCACCCCGGTCATCGAGACCCTGCGCGGGCTGCTGGCCGGTACGGGGCCCGAGACCGCCGTCGTCGTGCAGGCCGTCGCCTGGTGCCTGGTGATCGGCGTCGCCGGATACCTCTGGGCGCGCTCGCTGTTCCGCCGCGAGCGCCGGCTCTGAMTALTAPATASAGPRPLADVATMLRRSLLRAVRYPGLTVFLVAGPLVMLLLFVHVFGGAFGAGVVPGVTPGAEGRAAYLDYITPTLLVLTIVGGATSVATSAAMDAAGGIMARFRTMAIAPGSVLSGQVLGFTVQALAALVLLLGAAVLMGYRPDAGVAGWFAVVGLLVLLSLALNWLCVAMGLHARSVETASNLPMILLLLPFLGSGFAPVDTMPGAVRWFAEHQSFTPVIETLRGLLAGTGPETAVVVQAVAWCLVIGVAGYLWARSLFRRERRLPGPT0006730_12042DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_03955774drrA_5Daunorubicin/doxorubicin resistance ATP-binding protein DrrAATGACCGCCGCCACCGGTCCCGCGATCGAGATCGCGGGACTGCGTAAGACCTACCGTTCGAGGTCGGGCGACCGCCCCGTGCTGGACGGCCTGGACCTGACCGTGCCCGCGGGCACGGTGACCGCCCTGCTCGGCCCCAACGGGGCGGGCAAGACCACCACCGTCGGTGTCCTGTCCACGCTGCTGGCCCCCGACGCCGGGACTGTGCGCGTCGCCGGCCACGACGTGACCACCGACGCCGGTGCGGTCCGTGCCGCCATCGGCGTGACCGGGCAGATCACCGCCGTCGACGAGCTGCTCACCGGCACCGAGAACCTGCGCCTCATGGCGGCGCTGCACCATCTCGGCCGGGCCGAGGGCCGGCGTCGGACGGCGGAGCTGCTGGAACGCTTCGCCCTCGCCGAGGCGGCCGACACCCCGGTCGCCACCTGGTCCGGCGGCATGAAGCGCAAGCTCGACCTGGCCATGACGGTCGTCGGCACGCCGTCGGTCGTGTTCCTCGACGAGCCGACCACCGGCCTCGACCCGCGCAGCCGCCGCGCGCTGTGGGACGAGGTGCGCCGGCTCGTCGCGGACGGCACCACCATCCTGCTCACGACGCAGTACCTCGAGGAGGCGGACCGGCTCGCCGACGACGTCGCGGTGCTGCACGAGGGCCGGATCGTCGCCCAGGGCACGCCGGACGAGCTCAAGGCCGTGCACGACGCCGGCACGCTCGACGACGTCTTCCTCGCCCTGACCGCACCGCCCGCCGACCAGGAGGCCCCCCGATGAMTAATGPAIEIAGLRKTYRSRSGDRPVLDGLDLTVPAGTVTALLGPNGAGKTTTVGVLSTLLAPDAGTVRVAGHDVTTDAGAVRAAIGVTGQITAVDELLTGTENLRLMAALHHLGRAEGRRRTAELLERFALAEAADTPVATWSGGMKRKLDLAMTVVGTPSVVFLDEPTTGLDPRSRRALWDEVRRLVADGTTILLTTQYLEEADRLADDVAVLHEGRIVAQGTPDELKAVHDAGTLDDVFLALTAPPADQEAPRPGPT0006725_20436DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_03956867hypothetical proteinATGCCCACCTTCCCCGCACCGCATCCCGTCCTCGTCTCCGTGGACGTGCCCTTCGTCCACGTGCACGTCGTCGCCTCCGAGCGTGACGACGTCGTCGTGACCGTCCTGCCCACGGACGCCTCCAGGTCCGGCAGCGTCCGGGCCGCCGAGGAGGTCCGCGTCGACCGCACCGCGGACGCGATCGCGATCACCTACCCGGGTTCCTGGCGGCAGTGGGTCCTGCCCTTCGCCGTCGGCACGGTCGACGTCACCGTCGAGCTGCCCCGCGCCTCGCAGGTCCGGGGCAAGGCGGGGACCCTCTACGCCGAGGGCCCGCTCGCCGCCGTCGACATGGCCCTGTCCGCCGGGGACGTGCGGGTGGACGACGCCGGTCGGCTGGCCGTGAAGGTCTCGGCCGGGTCCGTGGTCGCGGGCCGGGTCGACGACGTGGACGTGTCGGTCGCCGCCGGCAGCGTGCGGCTCGGCGAAGTCACCGGGCACGGCCGCGTCCGCGCGACCAACGGGACCGTCGCCGTGTCGGCCGTGACCGGGACGCTCGACGTGCACGGCGCGCACGGCGACCTCGTCGTCGACCACGTGTCCGGCACGCTCTCCGCGCGGTCGGCGCACTCGGGGATGCGCGTCGGGGCGTTGGTCTCTGGCAGCGTCGACCTGACCACGTCGTTCGGGTCGATCGAGGTCGGGGTGCCGCAGGGCACCGCCGCCTACCTCGACCTGTCCTCCCAGCGTGGCGCGGTGCGCAACCAGCTCACGCCGACCGAGGGGCCCGTCGAGGACGAGTCCACCGCAGAGATCCACGCCAGCACCGGGTTCGGCGACGTCGTCGTGCGTCGCCCGCTCGCCGGTGCCGGCGACACCGCCGCCTGAMPTFPAPHPVLVSVDVPFVHVHVVASERDDVVVTVLPTDASRSGSVRAAEEVRVDRTADAIAITYPGSWRQWVLPFAVGTVDVTVELPRASQVRGKAGTLYAEGPLAAVDMALSAGDVRVDDAGRLAVKVSAGSVVAGRVDDVDVSVAAGSVRLGEVTGHGRVRATNGTVAVSAVTGTLDVHGAHGDLVVDHVSGTLSARSAHSGMRVGALVSGSVDLTTSFGSIEVGVPQGTAAYLDLSSQRGAVRNQLTPTEGPVEDESTAEIHASTGFGDVVVRRPLAGAGDTAANANANANANA
AK018_03957534hypothetical proteinATGGATCTGACGCCCTATGTCGAGGAGCTGCGTCGCCAGCTCGCCACCGCAGCCGCCGCCGGTGGGGACGAGGCGCGCGCGGTCGCCGACCGCCTGACCGCGCCCCTCGACGCCGCCGTCCGGCTCGTCCTGCTCGACGCCCTGTCTGCGGCGACCGGCGAGATCTCCGCCGAGCTGGCTCCCGGGTCCGTCGACGTCCGCCTGCGGGCGGGAGCGCCGGAGTTCGTGGTCACGGCGGTGTCCGGCGACGTCGCCGCCACCCGCGAGCACGACGCCCCTGAGTCGCCGCCGGCCCCTGCGCCGCCGCCCGCGCCCGCCGAGGCCGACGCCGGTGGCAGCACCCGCACCACGCTGCGGCTGCCCGAGCACCTCAAGTCCCAGGCCGAGGCCGCCGCCGCCCGCGACGGCGTCTCGGTCAACACGTGGCTCGTGCGGGCCGTCGCGGCCGCGCTCGAGCAGTCCACCGGACGCCCCGCCCCGCAGGGTCGGCCGGCACCGCGCGGCAGCGGCCGCGTCACCGGCTGGGTGCGCTGAMDLTPYVEELRRQLATAAAAGGDEARAVADRLTAPLDAAVRLVLLDALSAATGEISAELAPGSVDVRLRAGAPEFVVTAVSGDVAATREHDAPESPPAPAPPPAPAEADAGGSTRTTLRLPEHLKSQAEAAAARDGVSVNTWLVRAVAAALEQSTGRPAPQGRPAPRGSGRVTGWVRNANANANANA
AK018_039581671nadB_2COG0029L-aspartate oxidaseGTGACGCCGACCCGTCTGGCCCGGACCCTCGCCGCACCCGAGCCGGGCTGGACGACCCGCGCGGACGCCGTCGTCGTCGGCTCCGGCATCGCCGGGCTGACCGCTGCGCTGGAGCTGCGCACGCGGGTGCCGCGCGTGCTGCTGGTGACCAAGGCCGAGCTGTCCTCCGGGTCGACGGTGTGGGCGCAGGGCGGCATCGCCGCCGCGCTGCACCCCGACGACACCCCGGCCGCCCACCTGCACGACACGCTGGTGGCCGGCGGCGGGCTCAGCGACCCGGCCGCTGTCGAGGTGCTGGTCACCGAGGGTCCGGACCGGGTGCGCGAGCTCGTCGCCCGCGGGGCGTCGTTCGACGTCGGTGACGACGGCGACATCGCCCTGACCCGCGAGGGCGGTCACCGCGCCGACCGGATCGCGCATGCCGGCGGGGACGCGACGGGGGCGGAGATCTCCCGTGCGCTGGTGGCCCAGATCGAGGCCGTGCAGGACGACCCGGGCATCGAGGTGATCGAGAACGCCCTGGTCCTCGACGTGCTGACCGGTGCGCCCTCGCCGTCCGGGCAGCGACCCGTCGCCGGGGTGACCCTGCACGTGCGCGGGGCCGGGTCCCGCGACGGCGTCGGTGCGGTGCTCGCCCCGGCCGTGGTGCTGGCCACCGGGGGAGTGGGGCAGGTGTTCCGCTCGTCGACCAACCCGCCCGGCGCCACCGCCGACGGCATGGCCGCCGCGCTGCGTGCCGGCGCCACGCTCGGCGACCTGGAGTTCGTCCAGTTCCACCCCACGGTGCTGTGGCTCGGGGCCGGCGCCCGCGGCCAGCTGCCCCTGATCAGCGAGGCGGTGCGCGGCGAGGGTGCGCTGCTGCTGGACGTCGACGGGCACCGCTTCATGCCGGCCGTGCACGAGCTGGCAGAGCTCGCTCCCCGCGACGTCGTCGCCCACGCCATCGTGCGGCAGATGGACGCCACCGCCGCGGACCACGTGCTGCTGGACGCGCGCTCGCTCGGCGCGGACTTCCTGCGCCGCCGGTTCCCGGGGATCACCGCGCGACTGCTGACGCAGGGCATCGACTGGACCGAGGAGCCGGTGCCGGTCGCGCCCGCCCAGCACTACCACTCCGGCGGCGTGGTGACCGACCTGCAGGGGCGCACCTCGGTGCCCGGGCTGTACGCCGTGGGCGAGGTCGCCTGCACCGGGGTGCACGGCGCCAACCGGCTCGCCTCGAACTCCCTGCTGGAGGGGCTCGTGTTCGCGCACCGTGCCGCGCACGACGTCGTGGCCCGGTATCCCGGAGCGGCGGGCGCGTCGGAACCAGTCGACCGCCCCGGGGACGCCGGGCTCGTGGCGGCCGCGGCCCGCTCGCGCGTGCAGCGGGTGACCTCCGAGGGGGCGGGTCCGCTGCGCTCGGCGCCCTCGCTGGAGCGCGCCGACGATCTGCTCGCCCGGGTGACGACGACGGCGCACCGGGACGGTGGTGTCGTCGCCGACCCGCAGGCCGCCGAGTGGGAGACGACGAACGTCCACCAGGTGGCCCGGGCCCTGGTGCGGGCCGCGTGGGTGCGGGCCGAGAGCCGCGGCGGACACTTCCGCACCGACTTCCCCGACCGGGATCCTGCCTGGGAGCGCCGGGTCACGGTGTCGCTCGACGACGACGGCACCCTCACCGCGACGTAGMTPTRLARTLAAPEPGWTTRADAVVVGSGIAGLTAALELRTRVPRVLLVTKAELSSGSTVWAQGGIAAALHPDDTPAAHLHDTLVAGGGLSDPAAVEVLVTEGPDRVRELVARGASFDVGDDGDIALTREGGHRADRIAHAGGDATGAEISRALVAQIEAVQDDPGIEVIENALVLDVLTGAPSPSGQRPVAGVTLHVRGAGSRDGVGAVLAPAVVLATGGVGQVFRSSTNPPGATADGMAAALRAGATLGDLEFVQFHPTVLWLGAGARGQLPLISEAVRGEGALLLDVDGHRFMPAVHELAELAPRDVVAHAIVRQMDATAADHVLLDARSLGADFLRRRFPGITARLLTQGIDWTEEPVPVAPAQHYHSGGVVTDLQGRTSVPGLYAVGEVACTGVHGANRLASNSLLEGLVFAHRAAHDVVARYPGAAGASEPVDRPGDAGLVAAAARSRVQRVTSEGAGPLRSAPSLERADDLLARVTTTAHRDGGVVADPQAAEWETTNVHQVARALVRAAWVRAESRGGHFRTDFPDRDPAWERRVTVSLDDDGTLTATPGPT0013355_468DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013355-nadB-K00278NANA
AK018_03959618panD_2Aspartate 1-decarboxylaseGTGACTGACCAGACCTCGCCGCACACCGTCGGGGAGCCCGGGACGGGCGCCGCACCCGGCACCCACCGGGCGCCGGTGCGCCGGCCGGCGTCGCTGCAGCGGCCCATGATGATCGGCAAGATCCACCGCGCGACGGTCACCCAGGCCGACCTGCACTACGTGGGATCCATCACGGTCGACACCGACCTGCTGGACGCCGCGGACCTCATCCCGGGTCAGCAGGTCGACGTCGTGGACGTCACCAACGGGGCACGCCTGACCACCTATGTGATCCCGGGCGAGCCCGGCGCCGGCGAGATCAGCATCAACGGCGCCGCCGCGCACCTCGTCAGCCCCGGCGACACCGTGATCATCATCGCCTACGGCATGATGTCGGACCACGACGCGCGCACGTTCCTGCCGCACGTGGTGTTCGTCGACGGGGACAACAAGATCGTCGAGCTGCACGACGACCCGGGGCACGCCCCGGACGGGTACGGCCTGTACGACTCGGGCGTGCCGATCGAGCCGTACCAGTCCGCCGGGCTCGTGCGCACCGCCGCGGGCCGCGCCGTCGCCGGGGAGCCGGTACCCGCCGAGGCCCCGGGCGCCGCCCCGGAACCCGCGCCGGCTCGGTGAMTDQTSPHTVGEPGTGAAPGTHRAPVRRPASLQRPMMIGKIHRATVTQADLHYVGSITVDTDLLDAADLIPGQQVDVVDVTNGARLTTYVIPGEPGAGEISINGAAAHLVSPGDTVIIIAYGMMSDHDARTFLPHVVFVDGDNKIVELHDDPGHAPDGYGLYDSGVPIEPYQSAGLVRTAAGRAVAGEPVPAEAPGAAPEPAPARPGPT0008890_3DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0008890-panD-K01579NANA
AK018_03960948panC_2COG0414Pantothenate synthetaseATGAGCACCCCCGACGCGCCAACGCCTCCCGTCGTCGTGCGCACCCGCGACGAGCTGCGCGACGCCCTGACCGACTGGGCGCTCGGCGCGCCCGCCCCGACCGACCGCCGCGCCGTGGTGATGACCATGGGCGCCCTGCACGACGGGCACCTCGCTCTGGTGCGCCGGGCGCGCGAGGAGGCGGGGCCGGGCGGCCAGGTCGTGGTCACGATCTTCGTCAACCCGCTGCAGTTCGGCCAGGGCGAGGACCTGGACGCCTACCCGCGCGACCTGGACGCCGACCTGGCCCTGCTCGCCGGCGTCGGTGCCGACGTGGTCTTCGCCCCGACGCCGGACGTGGTGTACCCCGACGGGGACCCGGTGGTGCGGGTGTCGGCCGGTCGCATCGGCGAGGTCCTCGAGGGTGCGTTCCGCCCGGGCCACCTGGACGGCGTGCTGACCGTGGTGCTCAAGCTGATCCAGCTCACCCGCCCGGACGTGGCGCTGTTCGGGCAGAAGGACGCCCAGCAGCTCCTGGCGGTGCGGCGCATGACGCGCGACCTCGACCTGCCGGTGCAGGTCGTCGGGGTACCGACGGTGCGGGACGACGACGGGATGGCGCTGTCGTCGCGCAACGCCTACCTGTCGGACGGCGAGCGAAGGGCCGCGCTGGCGCTCTCGCGGGCACTGCAGACCGGATCGGCGGCCGCGGCGAGCGGAGACGGTGTCTCCGCCGTCATGGCGACCGCGTCGGGAATCCTCAACGAGGCCTCCGACGTTGTGGTGGACTACCTGGCACTCGTCGACCCGGATACCGTGGACGAGGTGCCCACCGGGCACACCGGCCCGGCGCTGCTGCTCGTGGCGGCGCGCGTGGGCACCACCCGACTGATCGACAACCAGGCCGTGGACGTCGTCGCGCCCGCAGCAGAGAACGAACCTGCAGGCCAGGAGGAGACCCGTGACTGAMSTPDAPTPPVVVRTRDELRDALTDWALGAPAPTDRRAVVMTMGALHDGHLALVRRAREEAGPGGQVVVTIFVNPLQFGQGEDLDAYPRDLDADLALLAGVGADVVFAPTPDVVYPDGDPVVRVSAGRIGEVLEGAFRPGHLDGVLTVVLKLIQLTRPDVALFGQKDAQQLLAVRRMTRDLDLPVQVVGVPTVRDDDGMALSSRNAYLSDGERRAALALSRALQTGSAAAASGDGVSAVMATASGILNEASDVVVDYLALVDPDTVDEVPTGHTGPALLLVAARVGTTRLIDNQAVDVVAPAAENEPAGQEETRDPGPT0008750_233DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008750-panC-K01918NANA
AK018_03961984hypothetical proteinATGACCGCCGTGCCACCGGGAGGCCCCGAGGCTCCTGCGGGTGACCCCGCGGCCCGTCCCGGCCGACTGGGTGTGGGCATCGTCGGTGCCGGACGGGTCGGTGCGGTGCTCGGCAACGCCCTGCGCTCGGCCGGGCACGCCGTCGTCGGCGCGTCGGGGGTGTCGGAGGACTCCCGCGAGCGCATCGCCACCCTGCTGCCCGGGGTGCCGAACCTGACCGTCCAGGAGGTGGTCGAGCGCGCGGAGCTGGTGCTGCTCGCCGTGCCCGACGACGCGCTGGCCGACCTGGTCGGGGGGCTCGCGGAGGTGGGGGCGTGGCAGCCGGGACAGCTCGTGGTGCACACCTCGGGCCGCTTCGGTGCCGGGGTGCTGGCGCCCGCGCAGGCGGCCGGGGCGATCCCGCTGGCGGTGCACCCGGCGATGACGTTCAGCGGCACCTCCCTGGACCTGGCGCGGCTGACGGGCTGCACGTTCGCCGTCACGGCGCCGGCGGCGGTGCTGCCCATCGGGCAGGCGCTCGTCGTCGAGGTCGGGGGCGAGCCCGTCGTCGTGGCCGAGGAGGCGCGCGACCTGTACCACGCGGCGCTGGCGCACGGCGCGAACCACCTGGTGGTGCTGGTCGCCCAGGCCGCCCAGGCGCTGGAGGCGGCCGGGATCGAGCGTCCCGGACGGGTGCTGGGCCCGCTGCTGGGTGCGGCGCTCGACGGCGCGACCCGGTCCGCGGACGTGCGTGACGGCGTCGGGCCGGGCGCGATCGCGGCGCTGACCGGCCCCGTCTCACGGGGGGACACCGGGACGGTGACCGCGCACCTGGGTGCGCTCGGCGACCTCGCCGCACGCACCGGGGCCACCGACGTCCCCGCCGCCTACGCCGAGCTCGCCCGAGGGGCCACGCGCCGCGCGCTGGCGAGCCACCGGATCGAGGACGAGGCCGCGCGCCGGCTGCTCGACGTCCTCGACGCACCACCCGAGGAGCATGCATGAMTAVPPGGPEAPAGDPAARPGRLGVGIVGAGRVGAVLGNALRSAGHAVVGASGVSEDSRERIATLLPGVPNLTVQEVVERAELVLLAVPDDALADLVGGLAEVGAWQPGQLVVHTSGRFGAGVLAPAQAAGAIPLAVHPAMTFSGTSLDLARLTGCTFAVTAPAAVLPIGQALVVEVGGEPVVVAEEARDLYHAALAHGANHLVVLVAQAAQALEAAGIERPGRVLGPLLGAALDGATRSADVRDGVGPGAIAALTGPVSRGDTGTVTAHLGALGDLAARTGATDVPAAYAELARGATRRALASHRIEDEAARRLLDVLDAPPEEHANANANANANA
AK018_039621644hypothetical proteinGTGAGCGATCCGCAGACCCGCGTGCCCGGGGCGTCTGCCGACCAGCTCGAGTGGCACCGCGTGCACCCGGTCACGCCGCTGGTACGGGCGTGGGCGGCGGTGCTCGTGCTGCTGTTCGTCCTCGGCAACCAGGCGCTGGACAGCCTGTCCTCGCTCGGCGAGGTCGCCGGCCAGGTCGTCCGGCTGTGGTGGGTGGCGGTGCTCGCGCTGCTGCTCTTCCTCCTGGTGGTGGCGGGCGTGTCCTGGCTGGCGTGGCGCATGACGACGTACGCGGTCGACGACACCGCGGCCCACCTGCGCAAGGGCATCCTGTTCCGGCAGCAGCGGCACGCGCGGCTGGACCGGCTCCAGGCCGTCGACGTGCGCCAGCCGCTCGTGGCGCGCCTCTTCGGGCTGGCGGAGCTGACGCTGGAGGTGGCGGGCGGCGCGGACTCCGCGGTGCGGATCGGGTTCCTGCGGCTCGACGACGCCAACGCCCTGCGGGCCGACCTGCTGGCGCGGGCGGCCGGTGTGAAGGCCCGCCGAGCGGCCGGGACCCGTGAGCCGGCCCCGGCGGAGGTCCGGGACACGGCGACCGTCCGGGAGCAGGTCGCGGACTCCGACCAGCAGACCGACGCTGCCGGCGTCCCGGGCGCGGCCACCGGCGTCGTGCCGGACGCCGAGGCACCCCGGGACGCCGTCACCGCGGGCGCCGCACCCGCGCCGGAACCGGTGCTCGAGGCGCCCGAGAACGCCGTCTACGAGGTGCCGCCCGGCCGGCTCGTGGCGTCGCTGCTGCGGCTGCCGGTCATCTGGATCATCCTGCTGGCATTCGTCGGGCTCGGCGTGGCGGTCGGGGTGACCCGCAACTTCGGTCTGCTCGGCTCCGTGCTGCCGGGCCTGTTCGGCGCGGGCGCCTACCTGTTCAGCCGGTTCGCGGGCGAGTTCGGGTTCCGCGCGGCGATCTCCCCGGACGGCATCCGCCTGCGGCACGGCCTGCTCGAGACCCGTGCCCAGACCATCCCGCCGGGCCGGGTGCAGGCCCTGTCGCTGACCCAGGGGTTCTGGTGGCGCGGCAAGGGATGGTGGCGCGTCAAGGTGAACGTCGCCGGGTACGGCGTCGAGGGCAACAGCGAGACCCAGCACGTGCTGCTGCCCGTCGGGCCCCGGGACGAGGCGCTGACGGCGCTGTGGCTGGTGCTGCCCGACCTGCGCACCGACGAGGTGGCACCGCTGCTCGACGAGGGCCTCACGGGCGACGCCCGCACGGACCGCTGGTTCACGACCAGCCCGCGGACGGCGCGGATCTTCGACCCGATCAGCTGGCGCCGCAACGGGTTCGCGGTGGCCGAGCGGGTGCTGCTGCTGCGCACGGGTCGCCTGACCCGGAGCCTCGTCGTGGTGCCCCACGAGCGCACGCAGTCCCTCGGCGTCGAGCAGGGCCCGTGGCAGCGGCGTCGGGGCGTGGCCTCGTTCGCGGTGCACTCCACCCCCGGGCCCGTGGGACCCCGCGTCCCGCACCTGGCCTCGGGCGTGGTCGCCGGCCTCCTCGACGAGCAGTCGGTACGCGCCCGCACGGCCCGCGCCCACCAGCCGCCCGAGCGCTGGATGGAGCAGGTCACCGCGCTGCCCGAGGTGGCCGACGGCCGGGACGGCACGGCATGAMSDPQTRVPGASADQLEWHRVHPVTPLVRAWAAVLVLLFVLGNQALDSLSSLGEVAGQVVRLWWVAVLALLLFLLVVAGVSWLAWRMTTYAVDDTAAHLRKGILFRQQRHARLDRLQAVDVRQPLVARLFGLAELTLEVAGGADSAVRIGFLRLDDANALRADLLARAAGVKARRAAGTREPAPAEVRDTATVREQVADSDQQTDAAGVPGAATGVVPDAEAPRDAVTAGAAPAPEPVLEAPENAVYEVPPGRLVASLLRLPVIWIILLAFVGLGVAVGVTRNFGLLGSVLPGLFGAGAYLFSRFAGEFGFRAAISPDGIRLRHGLLETRAQTIPPGRVQALSLTQGFWWRGKGWWRVKVNVAGYGVEGNSETQHVLLPVGPRDEALTALWLVLPDLRTDEVAPLLDEGLTGDARTDRWFTTSPRTARIFDPISWRRNGFAVAERVLLLRTGRLTRSLVVVPHERTQSLGVEQGPWQRRRGVASFAVHSTPGPVGPRVPHLASGVVAGLLDEQSVRARTARAHQPPERWMEQVTALPEVADGRDGTANANANANANA
AK018_03964471hypothetical proteinGTGCGTCGCACACGGGTCCGCACCCTGGCGCTCGTGGCGGTGGCGGTCGCTGCCGCCGGCTTCGGCCTGCTGCGGCTGCTGGAGTCGCGGGGTGTCTACGTGCCCGGCGCCGCCTGGGCCGAGGTGGTGGCGATCCTGCTGCTCGCGGCCCTGGTGCTCTGGGCGGGCTGGTCGGTGCGCAGCTATCTGCGCGGCGACAAGCCGGACCTGGACGCGTTGCGGGCGGCGCGCACGTTCGCGATGGCGAAGGCCGCCGCGTACACGGGGGCGCTGCTGGCGGGCCGGTACGTCGCCCACGTGCTGGTGGTGCTGCCGCAGCTCGACGTCGAGGCACGGCGCGACCAGGCGATCACGTCGGGAGTGGCCGCGGTCGTCGCGATCGGGCTGACGGTGGCCGGGCTGGTGGTGGAGAAGTTCTGCGAGATCCCGCCGCCGGAGGACGACGACGGCACGGACGTGGTGCGGACCTGAMRRTRVRTLALVAVAVAAAGFGLLRLLESRGVYVPGAAWAEVVAILLLAALVLWAGWSVRSYLRGDKPDLDALRAARTFAMAKAAAYTGALLAGRYVAHVLVVLPQLDVEARRDQAITSGVAAVVAIGLTVAGLVVEKFCEIPPPEDDDGTDVVRTPGPT0007900_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007900-sulD-K13940NANA
AK018_039652037hypothetical proteinGTGAGCGACGACGCCGTTCCCGGCCCCGACGGGCGCCCCCTGGACCGGATCCGCCTGACGGGCGTGACCGCGACGGGTCGGCACGGGGTGCTGCCCGCCGAGCGGGACGAGGGCCAGACGTTCGCCGCCGACGTCGTGCTGCACCTGGACACCCGGCCCGCCGCCGGGTCCGACGACCTGGCCGCGACGGTCAGCTACGCCGACGTCGCCGAGGACGTGCACGACGTCCTGGCGGGCGAGCCCGTGGATCTGGTCGAGACGCTCGCGGAGCGGATCGCCGCGGTCGCCCTGTCGTACGAGGCCGTGCAGGCCGTGGACGTGCGCGTCCACAAGCCGCAGGCGCCGATCTCCGTGCCGTTCGACGACGTCGTGATCGAGGTCCGCCGGGATCGCGAGCACCAGCCGGTCGTGGAGGTGCCGTGGGTGGTGCAGCAGGAGGCGGCGGGCAAGACGCCGGAGCCTGCGCGGGACGCCGCGGTGCCGGAGCCGGTCGTCCCCGCGCCCGCCCCGGAGCCGGTGCACGCCCCGGTGCCGGCGTCGCCCCCGGCCCCTGTGCCGGCCCCGCTCGCGGCGGAGGGCGATGGTGAGCAGGCCGGCGCCGCGCAGGACGGTGACCCGCAGGAGGCGCCGGAGGAGCAGGACGGACCGACGGACGTCCTGGACCGGGCGCCGGAGGCGCCGGTCGAGGCGGTGCTGGCGCTGGGTGCCAACGTCGGGGACCCGCAGGGCACGCTGCGCGCGGCCGTCACCGACCTGGACCGCATCCCGGGGCTGCAGGTCATGGAGGTCTCGCCGCTGGCCCGCACGGCCGCCGTCGGGCCGGAGCAGCCGGACTACCTCAACGCGGTGCTGCTGGTGCGGACGACCCTGCCCCCGCGGGACCTGCTCGGCGCGTGCCAGGAGGTCGAGCTGCTCCACGGCCGGGTCCGCGAGGAGCGGTGGGGTCCGCGCACCCTGGACGTCGACGTGGTCCAGTACGGGGACCTCGTCGCCGCTGCCGAGGACCTGGAACTGCCGCACCCACGGGCGCGCGAGCGGGCGTTCGTGCTGGTGCCGTGGACGGAGGTCGAGCCCGACGCCGTGCTGGTCGGGCTCGGCGGCGGCCCGGTGTCGCAGCTCGCGGCGACCGCCCCGGACCGCTCCGGCATCCGGTGGCTGGCGCTCGACTGGTTGACGGAGCCGGCGTCGTCGGGGGCCGTCCCGCAGGCGCCCTCGCGGCCTGTCCCGGCCCAGCCGCCGTCCGGCGCGGTGCAGGAGCCGTCATCCGGCCAGGCGTCGGAGCCGCTGCCTCCCTCGCGGCCGCCGTCGCACCCCGTACCGGCCCAGCCGCCGTCGACCGGGGGCCGGCCGTCCGCCGAGGCTCCGCCGCACGCGGCGCCTCCTCATGACCAGGTCGAGGAGCCGGCGTCGGTCGAGCCGGCGCAGCCCGGGACCGGCGCGTACGTGCCGGAGGTGACGGCGTTCGCCCCGCCGGCCCCGTCGTCGGCGCCGGCCCCGGCGACCGCACCGCCCGCGGTCTACGTCGACCCGCTGCCCGAGCGTCAGGAGCCGCCGGCCTACGTGCCGGAGGCCCAGTCCCCGTCGAGCGTCCCCGGGTCCCTGCCCGAGCGGACGTCGGCCACGACGGACCGGACGGCGCAGCCGGCGGACCCGACGCCGCCCGCCGGGGCGACGCCGGCACCCGCGCCGTACGTGCCGCCCGCACCCGCGGCCCCACGGTCGGCCGAGCAGGCGACCGTGCCGGCGCCGCAGCAGCACACCCAGCCGTACCGGCCGGAGCAGCACGGCGAGCAGTACGTTCCCGAGCAGTACCAGCCGGAGCAGTACCAGCCGGAGCAGTACCAGCCGGAGCAGTACCAGCCCGAGCAGTACCGGCCGGAGGTGTACGAGCCCGAGACGTACCAGCCCGAGCAGTACCAGCCGGAGCAGCGCGCTCCCGAGCCGTACGCCCCGGAGCAGTACCGCCCGCCGCAGGGCCCGGCGGCGCACGCGCCGATCCCACCCGCTCCCGACGCCGAGCCGCCGGGACGCGCCTGAMSDDAVPGPDGRPLDRIRLTGVTATGRHGVLPAERDEGQTFAADVVLHLDTRPAAGSDDLAATVSYADVAEDVHDVLAGEPVDLVETLAERIAAVALSYEAVQAVDVRVHKPQAPISVPFDDVVIEVRRDREHQPVVEVPWVVQQEAAGKTPEPARDAAVPEPVVPAPAPEPVHAPVPASPPAPVPAPLAAEGDGEQAGAAQDGDPQEAPEEQDGPTDVLDRAPEAPVEAVLALGANVGDPQGTLRAAVTDLDRIPGLQVMEVSPLARTAAVGPEQPDYLNAVLLVRTTLPPRDLLGACQEVELLHGRVREERWGPRTLDVDVVQYGDLVAAAEDLELPHPRARERAFVLVPWTEVEPDAVLVGLGGGPVSQLAATAPDRSGIRWLALDWLTEPASSGAVPQAPSRPVPAQPPSGAVQEPSSGQASEPLPPSRPPSHPVPAQPPSTGGRPSAEAPPHAAPPHDQVEEPASVEPAQPGTGAYVPEVTAFAPPAPSSAPAPATAPPAVYVDPLPERQEPPAYVPEAQSPSSVPGSLPERTSATTDRTAQPADPTPPAGATPAPAPYVPPAPAAPRSAEQATVPAPQQHTQPYRPEQHGEQYVPEQYQPEQYQPEQYQPEQYQPEQYRPEVYEPETYQPEQYQPEQRAPEPYAPEQYRPPQGPAAHAPIPPAPDAEPPGRANANANANANA
AK018_03966936folP1_2COG0294Dihydropteroate synthaseATGAGTGCACGCGACGCGGTCGTCGCCGGTCTTCCCGAGCTGTCCGGGACGGGTCGCTGCCTGGTCATGGGCGTGGTGAACATCACGCCCGACTCGTTCTCCGACGGCGGGGAGTGGTTCGAGCCCGACGCCGGGGTGCGGCACGGTCTGGACCTGCTCGCCGAGGGTGCCGACGTCCTCGACGTGGGCGGGGAGTCCACGCGGCCGGGGTCGGCCCGGGTGAGCGAGGACGAGGAGCTGGACCGGGTGATCCCCGTGATCGGCCGGCTCGCCGCGGCGGGGGCCGTGGTGTCGGTGGACACCACCCGCTCCCGGGTGGCCGAGCGTGCGGTCGCGGCCGGTGCACGGATCGTCAACGACGTCTCCGGCGGGCTCGCCGACCCGGACATGGCCGGGGTGGTTGCCGCGACGGGCGTGGCGTACGTGGCCATGCACTGGCGGGGGCACAGCGACGTCATGGACGACCTGCAGCAGTACGACGACGTCGTGGCGGACGTGCGCGACGAGCTCGCCGCCCGCATGGCGGACCTGCACGACGCCGGTGTCGCACCCGAGCAGGTCGTGCTCGACCCGGGTCTGGGCTTCGCCAAGGCGGGGTCGCTGAACTGGCCGTTGCTCGCCCACCTCGACGCCCTGCACGCGCTGGGCCGGCCCGTGCTGGTCGGTGCGTCGCGCAAGCGGTTCCTGGGTCACCTCCTGGCCGACGACGGCGCGAGCGGCGGGCAGCCCGCGGCTCCGCTCGAGCGGGACGACGCCACGGCCGCGGTCTCGGCGCTGGCGGCCCGGGCGGGGGCGTGGTGCGTGCGCGTGCACGCCGCACGTGCGAGCGTGGACGCGGTGCGGGTGGCGGCCGCCTGGGAGCTGGCGTACCGTGCGCTGCCGCAGGACGAACCGGGACGCACCGTGCGCCCGGACGACGAGCAGGAGACTTCGTGAMSARDAVVAGLPELSGTGRCLVMGVVNITPDSFSDGGEWFEPDAGVRHGLDLLAEGADVLDVGGESTRPGSARVSEDEELDRVIPVIGRLAAAGAVVSVDTTRSRVAERAVAAGARIVNDVSGGLADPDMAGVVAATGVAYVAMHWRGHSDVMDDLQQYDDVVADVRDELAARMADLHDAGVAPEQVVLDPGLGFAKAGSLNWPLLAHLDALHALGRPVLVGASRKRFLGHLLADDGASGGQPAAPLERDDATAAVSALAARAGAWCVRVHAARASVDAVRVAAAWELAYRALPQDEPGRTVRPDDEQETSPGPT0007915_958DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796NANA
AK018_03967630folE_2COG0302GTP cyclohydrolase 1GTGACCGACGCGGACCTCCCGCTGAGCCCCGTCTCGCTCGGGATGCGCCCGGCGGCCGACGTGCCGCCGTACGACGCCGAGCGTGCCGAGGCGGCGGTCCGCGAGCTGCTGGTCGCCGTCGGCGAGGACCCGGACCGGGAGGGCCTGCGGGACACGCCGGCCCGGGTGGCCCGCGCCTACCGGGAGATCTTCGCCGGGCTGCGTCAGGAGCCCGAGGACGTGCTGACCACCACGTTCGACCTCGGTCACGAGGAGATGGTGCTGGTCAAGGACATCGAGGTGTATTCCACCTGTGAGCACCACCTCGTGCCGTTCCACGGGGTCGCCCACGTCGGGTACATCCCGAGCACGGACGGGCGGATCACCGGCCTGTCCAAGCTGGCCCGCCTCGTCGAGGTGTACGCCAAGCGACCGCAGGTCCAGGAGCGGCTGACCACGCAGGTCGCGGACGCCCTGGTGCGGATCCTCGAACCGCGGGGAGTCATCGTCGTGGTCGAGTGCGAGCACCTGTGCATGTCGATGCGCGGGGTGCGCAAGCCGGGCTCACGGACCGTGACCTCGGCGGTGCGCGGAGTCATGCAGAACGCGGCGACGCGTTCGGAGGCGATGAGTCTGATCCTGGGGCGGTAGMTDADLPLSPVSLGMRPAADVPPYDAERAEAAVRELLVAVGEDPDREGLRDTPARVARAYREIFAGLRQEPEDVLTTTFDLGHEEMVLVKDIEVYSTCEHHLVPFHGVAHVGYIPSTDGRITGLSKLARLVEVYAKRPQVQERLTTQVADALVRILEPRGVIVVVECEHLCMSMRGVRKPGSRTVTSAVRGVMQNAATRSEAMSLILGRPGPT0007875_1764DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007875-folE-K01495NANA
AK018_039682100ftsH_2COG0465ATP-dependent zinc metalloprotease FtsHATGAACTTCAAGAAGATCTTCAGCGGACCGCTCGTCTGGATCGCGCTCGGCCTCGTGCTGGTCGCGCTCGCCTTCTCGGCGTTCACGGGCGAGCGGATCGAGCGTGTCGAGACGTCCGAGGGGCTGGAGCTCCTCGCCGGCGACACGGTCGACCACGCGCTCGTCATCGACGGCGACCAGCGGGTCGAGCTCGAGCTCAGCGAGCCGTACGTCACCGACGAGGGCACTGACGACGAGCAGGACCACGGCGAGAAGGTCGACTTCTACTGGGTCCAGGCGCAGGGCGAGGACGTCGTGTCCGCCGTCGAGGGCGCCGACCTGCCCGAGGGCTACGACACCTACCTGCCGCAGCCGTCGTTCCTGGGCTCGATGTTCTCGTTCCTCATCCCGTTCCTGATCATCCTGCTGGTGTTCTGGTTCGTGCTGTCGCGCATGCAGGGCGGCGGCAACCGCATGATGGGCTTCGGCAAGTCCAAGGCCAAGGTGGTCAACAAGGACATGCCGCAGGTGACGTTCGCGGACGTCGCCGGGGTCGACGAGGCCGTCGAGGAGCTGCACGAGATCAAGGAGTTCCTCTCCGAGCCCGAGAAGTTCCAGGCCGTGGGCGCCAAGATCCCCAAGGGCGTGCTGCTGTACGGCCCGCCCGGGACGGGCAAGACCCTCATCGCCCGGGCCGTGGCCGGCGAGGCCGGGGTGCCGTTCTACACGATCTCCGGCTCGGACTTCGTCGAGATGTTCGTCGGCGTCGGCGCCTCCCGGGTCCGTGACCTGTTCGAGCAGGCCAAGAACAACTCCCCGGCGATCATCTTCATCGACGAGATCGACGCCGTCGGGCGGCACCGTGGCGCCGGCATGGGCGGCGGTCACGACGAGCGCGAGCAGACGCTCAACCAGATGCTCGTCGAGATGGACGGGTTCGACGTCAAGACGAACGTCATCCTCATCGCGGCGACCAACCGCCCCGACATCCTCGACCCGGCGCTGCTGCGCCCGGGCCGGTTCGACCGTCAGGTTGCCGTGGAGGCCCCCGACCTCAAGGGCCGCGAGCACATCCTCAAGGTGCACGCCCAGGGCAAGCCGATGGTCGAGGGAATCGACCTGGTCTCGGTGGCGCGGCGCACGCCGGGCTTCACCGGTGCCGACCTGGCGAACGTGCTCAACGAGGCCGCTCTGCTGACCGCGCGCAGCGGTGCACAGCTCATCGACGACCGCGCCCTGGACGAGGCGATCGACCGCGTGCTCGCAGGTCCGCAGAAGCGCACCCGGGTGATGAACGTCAAGGAGCAGAAGATCACCGCCTACCACGAGGGCGGCCACGCCCTGGTGGCGGCCGCCATGCGGTACACGGACCCGGTGACCAAGGTGACGATCCTGCCGCGCGGCCGCGCGCTGGGCTACACGATGGTGATGCCCACCGAGGACAAGTACTCGACCACCCGCAACGAGCTGCTCGACCAGCTCGCCTACGCAATGGGCGGCCGGGTGGCCGAGGAGATCGTGTTCCACGACCCGACCACGGGTGCGAGCAACGACATCGAGAAGGCCAGCTCGATCGCGCGCAAGATGGTCACCGAGTACGGCATGAGCGAGCGGGTCGGCGCTATCAAGCTCGGCCAGGGCAGCTCCGAGCCGTTCATGGGCCGCGACATGGGTCACCAGCGTGACTACTCGGAGTCCGTGGCCGGCACGGTCGACCACGAGGTGCGCAAGCTCGTCGAGGCCGCGCACGACGAGGCGTGGGAGGTGCTCACCGAGTACCGCGACGTGCTGGACGACCTGGTCCTGCAGCTCCTGGAGAAGGAGACGCTGAACCAGGCCGAGCTCGCCGAGGTCTTCGCCCCGATCACCAAGCGGCCGGCGCGGGACGTGTGGCTGTCCAGCGAGCAGCGCACCGTGCACACCCGGGGGCCGGTCATGACCGACGGGGAGAAGGCCGCCTTCTCGAGCAACGGCACGCCGGGCGGCCTGCCGCAGGACGAGGCCGCCGTCGTCGGGAACGTGGAGGCCGAGCAGGCCGCGACCCGGACCGACGTCGACGACCGCGTCTCGCGTGCGGGGGACGACACGAACGGCGCGACGGACCGCGAGGAGCCTTCGTGAMNFKKIFSGPLVWIALGLVLVALAFSAFTGERIERVETSEGLELLAGDTVDHALVIDGDQRVELELSEPYVTDEGTDDEQDHGEKVDFYWVQAQGEDVVSAVEGADLPEGYDTYLPQPSFLGSMFSFLIPFLIILLVFWFVLSRMQGGGNRMMGFGKSKAKVVNKDMPQVTFADVAGVDEAVEELHEIKEFLSEPEKFQAVGAKIPKGVLLYGPPGTGKTLIARAVAGEAGVPFYTISGSDFVEMFVGVGASRVRDLFEQAKNNSPAIIFIDEIDAVGRHRGAGMGGGHDEREQTLNQMLVEMDGFDVKTNVILIAATNRPDILDPALLRPGRFDRQVAVEAPDLKGREHILKVHAQGKPMVEGIDLVSVARRTPGFTGADLANVLNEAALLTARSGAQLIDDRALDEAIDRVLAGPQKRTRVMNVKEQKITAYHEGGHALVAAAMRYTDPVTKVTILPRGRALGYTMVMPTEDKYSTTRNELLDQLAYAMGGRVAEEIVFHDPTTGASNDIEKASSIARKMVTEYGMSERVGAIKLGQGSSEPFMGRDMGHQRDYSESVAGTVDHEVRKLVEAAHDEAWEVLTEYRDVLDDLVLQLLEKETLNQAELAEVFAPITKRPARDVWLSSEQRTVHTRGPVMTDGEKAAFSSNGTPGGLPQDEAAVVGNVEAEQAATRTDVDDRVSRAGDDTNGATDREEPSNANANANANA
AK018_03969552hpt_2COG0634Hypoxanthine-guanine phosphoribosyltransferaseGTGGACCATTCGGACGTCGCCGGCGACATCGCCCACATCCTGCACACCGAGGAGCAGCTCGGTACCCGGCTCGACGAGATGGCCGCCCAGATCGACGCCGACTACGCGGGCAAGGACCTCCTCCTGGTGGGGGTGCTCAAGGGCGCCGTCATGGTGATGGCGGACCTGTCGCGCCGGCTGCACCACCCGCTGGAGATGGACTGGATGGCGGTGTCGTCCTACGGGTCGGGCACCAAGTCCTCCGGCGTGGTGCGCATCCTCAAGGACCTCGACTCCGACCTGTCGGGGCGCAACGTGCTCATCGCCGAGGACATCATCGACTCGGGTCTGACCCTGTCGTGGCTGGTGCAGAACCTGCGCTCGCGCGGGCCGGCGTCGGTGGAGATCGCCACGATGCTGCGCAAGCCCGACGCCGCGAAGGTGGAGGTCGACGTGAAGTACGTCGGGTTCGACATCCCCAACGAGTTCGTGGTCGGCTACGGGCTGGACTACGCGGAGAAGTACCGCAACCTGCCGTTCGTCGGGACGCTGTCCCCGCACGTGTACTCCTGAMDHSDVAGDIAHILHTEEQLGTRLDEMAAQIDADYAGKDLLLVGVLKGAVMVMADLSRRLHHPLEMDWMAVSSYGSGTKSSGVVRILKDLDSDLSGRNVLIAEDIIDSGLTLSWLVQNLRSRGPASVEIATMLRKPDAAKVEVDVKYVGFDIPNEFVVGYGLDYAEKYRNLPFVGTLSPHVYSPGPT0007295_1623DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0007295-hprT|hpt-K00760NANA
AK018_039701251tilS_2tRNA(Ile)-lysidine synthaseGTGCCCCGCGTCGACGCGGCCCTCGCCGCCGCCCGCACCGCCGTCCGCCGCGAGCTGGCCGACCTCGGGCCCGACGACCTGGTCCTGGTCGCGTGCTCCGGCGGGCCCGACTCGCTGGCGCTCGCGGCCGCCGTCGCCCACGAGGCCCGGCGGGTGGGCCGGTCCGTGCGCTCCCGGGGGCATGCGGTGCGGGCCGGTGCCGTCGTCGTCGACCACGGGCTGCAGGCCGGGTCCGACGACGTCGCGGCGCGGGCCGCGCAGCAGTGCCGCGACCTCGGACTGGATCCGGTCGCGGTACGGGTCGCCGACGTGGTGCCGCGGGGCGAGGGGCTCGAGGCCGCCGCGCGGGACGCGCGCTACCGGGTGCTGGAGGACGTCGCCACCACCACCGGCGCGGTGGCGGTGCTGCTCGGGCACACCCTCGACGACCAGGCCGAGCAGGTGCTGCTCGGCCTGGCCCGGGGCAGCGGAGCACGGTCGCGGGCCGGCAAGCCCGCCCCGCGCGGGGTGTTACGGCGGCCCCAGCGGGGGCGGCGGCGCGAGCAGACCGAGCGCGGCGGCGCCGTCGAGGGGCTGGTGCCCTGGCACGACCCGACCAACGAGCCCGGGCCGACGGCGCCGCTGCGGTCCCGCGTGCGCGGCCGGCTGCTGCCTGTGCTCGGCGAGGTGCTCGGTCCCGGCGCGGTCGAGGCGCTCGCCCGAAGCGCCGACCAGCTGCGCGACGACGCCGACGCCCTGGACGAGCTCGCCGCCGAGCTCCTGTCCGCCGCCCGGACCGCCGCCGCGGAACCTCGAGCTGCCGATAGTGCTGCCCGACCTGCTGATCGCGCTGCCCGACCTGCTGATTGGGCTGCCCGAGCTGCCGATCGCGCGGCCCGAATTGCCGACGTCGGCAGTTCGTCCCCGGGTCGGCAGTCCGGACTGCCGACCTCGGGACAGACTGCCGACGTCGGCAAATCGGATGCGGGCGGGGGCGGCGACGAGGTGGTGCTGGACATCGCCGTGCTGGCCGACGCCCCGGCGGCGCTGCGACGCCGGGCCCTGCGCGGTGCGGCGCTCGCGGTCGGCTGCCCGCCCGGTGCGACGACGGCCCGCCACGTCGACGCCCTCGACGCGCTGGTCGTGGCCTGGCGTGGGCAGGGGGAGGCGCACCTGCCGGGCGATGCACGGGCCGCCCGGGCGTGTGGCAGGCTGTTCCTGCGACCGGCGTCGTCCGGCGCGCGCCCCCCTGCCACGCACCGTGAGGAGTGAMPRVDAALAAARTAVRRELADLGPDDLVLVACSGGPDSLALAAAVAHEARRVGRSVRSRGHAVRAGAVVVDHGLQAGSDDVAARAAQQCRDLGLDPVAVRVADVVPRGEGLEAAARDARYRVLEDVATTTGAVAVLLGHTLDDQAEQVLLGLARGSGARSRAGKPAPRGVLRRPQRGRRREQTERGGAVEGLVPWHDPTNEPGPTAPLRSRVRGRLLPVLGEVLGPGAVEALARSADQLRDDADALDELAAELLSAARTAAAEPRAADSAARPADRAARPADWAARAADRAARIADVGSSSPGRQSGLPTSGQTADVGKSDAGGGGDEVVLDIAVLADAPAALRRRALRGAALAVGCPPGATTARHVDALDALVVAWRGQGEAHLPGDARAARACGRLFLRPASSGARPPATHREENANANANANA
AK018_039711128hypothetical proteinGTGACGACCCCGAGCGCCGACCTCGTCGACTGGCCCACCGCCGCCCAGATCGCCCGCCGCGTGGCCCGCCCCGGCCCGGTGGCCTCGCGCGCCCAGCTCGACGACCTCGTCGACGGCCTGCGCACCGCCGCCGCCGACGCCGTGCCGCACGTGCTGCGCGTGACCCGGATGCGGCCCGCCGGCGCCCGCACCGAACGGGTGCGCGACGCCGCCGGCCGGTTCACCCGCCGCGTGCGCACCGAGCAGCCCGACCTCGGCGACGTGCGCGTCGTCGACCGCGCCACGTGGGCGCAGGCCAACACCCGCTCCATGGCCGCGCTCACCGACCCCGTCCTCGCCGCGCTCACCCAGGACCGGCCCGTGGAGTCGGCGGCCGCACGCCTCGCCGGCGCCGCCGAGGTCGGCGGGCTGCTCGCCCTGCTGTCCTCGAAGGTTCTCGGCCAGTTCGACCCCTACGGGCCCGGACGACCGAGCCTGCTGCTCGTCGCCCCCAACGTGCTCGCCGCCCAGCAGTCGCTGCGCCTCGACCCCCGCGACTTCCGCCTCTGGGTGTGCCTGCACGAGCAGACCCATGCGCTGCAGTTCGCCACCGCGCCCTGGCTCGCCGACCACCTCGCCGGCCGGCTCGGCGCCCTCCTGTCCGACGTGACGTCGTCGTCCCTCGGCCTGAGCCGCGCACCCCTGCGCGACAAGCTCGCCCTCGTCGGCCGCACCGTCCTCGACGCCGTGCGCGGCGACCTCACCACGCCGCTGGACCAGGTGATCGGCCCCGAGCAGAAGCGCGAGCTCGCCGAGATCACCGCCGTCATGGCCCTGCTCGAGGGCCACGCCGACGTCATGATGGACGCCGTCGGCCGCCGCGTCGTCCCGACCGTCGGCACGATCCGGGCCCGGTTCGAGAAGCGGCGCGACGGCGAGGGCGCACCACGGTTCGACGTCGTGCTGCGCCGGATCCTCGGCATGGACGCCAAGCTCGCCCAGTACCGCGACGGCGCCGCGTTCGTGCGGGCCGTCAACGCCGACGTCGGCCGCGACGGGCTCAACGCCGTGTGGACCACCCCCGAGAACCTGCCGAGCTCGCGGGAGATCGCCGACCCGCGCGCCTGGGTCCGCCGCGTCCACGGCTGAMTTPSADLVDWPTAAQIARRVARPGPVASRAQLDDLVDGLRTAAADAVPHVLRVTRMRPAGARTERVRDAAGRFTRRVRTEQPDLGDVRVVDRATWAQANTRSMAALTDPVLAALTQDRPVESAAARLAGAAEVGGLLALLSSKVLGQFDPYGPGRPSLLLVAPNVLAAQQSLRLDPRDFRLWVCLHEQTHALQFATAPWLADHLAGRLGALLSDVTSSSLGLSRAPLRDKLALVGRTVLDAVRGDLTTPLDQVIGPEQKRELAEITAVMALLEGHADVMMDAVGRRVVPTVGTIRARFEKRRDGEGAPRFDVVLRRILGMDAKLAQYRDGAAFVRAVNADVGRDGLNAVWTTPENLPSSREIADPRAWVRRVHGNANANANANA
AK018_039721419COG2027CarboxypeptidaseATGGGGTGGCGGCTCGGTGTCGGCGCCACCGTCACGACCGCCCTCGCCCTGTTCGGCGGCTACCTCGTGGCCGACGCCTACGACGTCGTGCCCGGCATGGTCACGCTGGAACCGCCGCACTCCTCGCCCGCGCCGTTCCCGTCGGTGCCCGGAGCGACGCCCGGGCCGTCGCCCGAGGTCGCCGTGCCCCCGCTCGACGACGACGCACCCGTCCCTGACGCCGCTGCGATCGACGAGCTCGTCACCGCCCTCGTGGACGACAACCGGCTCGGCAACCGCGTCGGGGTGATGGTGTCCGACGCCGGCACGGGAGACGTCGTCGCAGCCTCCGGCGAGAACCGCCTCATGGTCCCCGCCTCCACCCAGAAGATCCTCACCGCCGTGGCCGCGCACGCCGGGCCCGGTGGCGAGGTCACGCTGCCCACGCGGGCGATGCTCCAGGACGACTCGCACCTGATCCTGCAGGGCGGCGGCGACATGATGCTCGCGGCCGGCGCGGGCGACCCCGACGCCGTGAACGGACGCGCCGGTCTCGGCGACCTCGCCGACCAGGTCGTCGCCGAGATCGGGCTCTCCGGACGCGACACCGTCTCGCTCGCCGTCGACGACACGCTGTTCACCGGCCCGGACGTCGCCCCGACGGTCCGGGCCTCCGACGCCCGGGACGGGTACGTGGCCCCGGTCGCGGCGCTCGCCGTCGACGTCGCCCGGCTCACCGACGACAAGTACGCCCAGCGGCAGGACGACCCCGCGCTGGCGGCCGCCGAGACCTTCGCCGAGCAGCTCGCCGACCGCGGGATCACCGTGACCGGCCAGATCACGCGGCAGGCGGCGCCGTCGTCGTCCCGGGAGATCGGCCGTGTCGACTCGGCGCCGCTGGGGGACATCGTCGACTACTTCCTCGTCGAGTCCGACAACACCCTCACCGAGGTCGTCGGGCGGCTCGTCGCGATCGACGTCGGCCTGCCCGGCTCGCTGGACGCCGCGATCGGCGAGGTGAGGTCCCAGGTCGAGGCGCAGGGCGTCGACCTGACCGGGGCGGAGCTGACGGACCTCTCCGGGCTCGGGCAGGGTTCGAGGATGACCGCCACCCAGCTCGTCGACACCCTCCGGGTGGCCGTGCAGGAGCCCGCGCTGCGCGAGGCCGCCACCGGGCTGCCCGTCGCCGGCCTGGAGGGCACCCTCGCCGACCGCTTCCCGCCCGACTCCGCCGGCCGCGCCTACACCCGCGCCAAGACCGGCTCCCTGCCGGACACCCGCGGCCTGTCCGGCACGGTGGTAACCGCCGACGACCGGCTGCTGCTGTTCACGGTGCTCGCCGACCGCATCCCCGAGGGGCAGTCGTGGGGCGCCAACTTCATCATCGACGAATTCGTCGACGATCTCGCCGCCTGCGGCTGCAGCGCCGACGGACCCTGAMGWRLGVGATVTTALALFGGYLVADAYDVVPGMVTLEPPHSSPAPFPSVPGATPGPSPEVAVPPLDDDAPVPDAAAIDELVTALVDDNRLGNRVGVMVSDAGTGDVVAASGENRLMVPASTQKILTAVAAHAGPGGEVTLPTRAMLQDDSHLILQGGGDMMLAAGAGDPDAVNGRAGLGDLADQVVAEIGLSGRDTVSLAVDDTLFTGPDVAPTVRASDARDGYVAPVAALAVDVARLTDDKYAQRQDDPALAAAETFAEQLADRGITVTGQITRQAAPSSSREIGRVDSAPLGDIVDYFLVESDNTLTEVVGRLVAIDVGLPGSLDAAIGEVRSQVEAQGVDLTGAELTDLSGLGQGSRMTATQLVDTLRVAVQEPALREAATGLPVAGLEGTLADRFPPDSAGRAYTRAKTGSLPDTRGLSGTVVTADDRLLLFTVLADRIPEGQSWGANFIIDEFVDDLAACGCSADGPPGPT0024035_2019DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024035-dacB-K07259NANA
AK018_03973495ppa_2COG0221Inorganic pyrophosphataseGTGGAGTTCGACGTCACCATCGAGATCCCGAAGGGTCAGCGGAACAAGTACGAGGTGGACCACGAGTCGGGTCGCATCCGCCTGGACCGCATGCTCTTCACCTCGACGCGGTACCCGGACGACTACGGATTCATCGAGGGCACCCTCGGTGAGGACGGCGACCCGCTCGACGCGATGGTCCTGCTGGAGGAGCCCACGTTCCCCGGCTGCCTGATCAAGTGCCGGGCGCTCGGCATGTTCCGCATGCGCGACGAAGCGGGCGGCGACGACAAGGTGCTGTGCGTGCCGACCGGTGACCAGCGCGCCGCCTGGCGCCAGGACATCGACGACGTCTCCGACTTCCACCGCCTGGAGATCCAGCACTTCTTCGAGGTCTACAAGGACCTCGAGCCCGGCAAGTCCGTCGAGGGCGCCCACTGGGTCGGCCGCGAGGACGCCGAGAAGGAGATCGTGCGGTCCATCCAGCGCGCCAAGGACTCCGGCTACAGCCACTGAMEFDVTIEIPKGQRNKYEVDHESGRIRLDRMLFTSTRYPDDYGFIEGTLGEDGDPLDAMVLLEEPTFPGCLIKCRALGMFRMRDEAGGDDKVLCVPTGDQRAAWRQDIDDVSDFHRLEIQHFFEVYKDLEPGKSVEGAHWVGREDAEKEIVRSIQRAKDSGYSHPGPT0002600_4381DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATASE_ACTIVITYP-SOLUBILISATION-INORGANIC_PHOSPHATASE,PGPT0002600-ppa-K01507NANA
AK018_03974786kefFGlutathione-regulated potassium-efflux system ancillary protein KefFATGAAGGCACTGATCGTCTCCGCGGCGCCCTCGGGGCGCGCCCTGACCGCCGACCTCACCGCGACCGCCGCGTCGACACTGCGTGCGAACGGCCACGACGTGGACGTCCTCGACCTCGTGCGGCTCGGCTGGGACCCGGTCGTCGGCCCCGCGGACTACGGCGTCGACGAGCTCACCGGTCCGGTCGGCACGTACGCCCGGTGCGCCGCGGCGGACGGCCGGCTCGCCCCCGAGGTGTCCCGGCACCAGGCGCTGCTGCGGCGCGCCGACCTGCTCGTCCTGGTGTTCCCGCTGTGGTGGGCCGGGATGCCCGCGGTGCTCAAGGGATGGGTGGACCGCGTGTTCACCGAGGGGTTCGCCTACGGACTGCGCGACGCCGACGGCAACCCGCGCAAGTACGGCGACGGGGCGCTGGCGGGCCGACGCGGGCTCGTGGTGACCACGGCGGGCGACCGGCCGTCGTCGTTCGGGGCGCGCGGCGTCAACGGCCACATCGAGGACCTGCTGTTCCCCATCAACCACGGGATCTTCTGGTACACCGGCATCGCGCCGCTGGCGCCGTTGACGCTCCTCGGCGTCGACGCGCCGACGTGGGGCGGCGTCGAGGACGCGCGCGGTCGGGTGCGACGCCGGTTCGCCGGGATCGAGACGGAACGGCCCCTGGCGTACCGGAGGCTCCTCGAGGACTACGACGGCGACCGCGAGCTGCACGCCCGGCTCGCACCCGGCCGGGGCGACCTCGCCATCCATCTCACGCCCGGCGTGAGTGACCGCCAGCCCGTGTGAMKALIVSAAPSGRALTADLTATAASTLRANGHDVDVLDLVRLGWDPVVGPADYGVDELTGPVGTYARCAAADGRLAPEVSRHQALLRRADLLVLVFPLWWAGMPAVLKGWVDRVFTEGFAYGLRDADGNPRKYGDGALAGRRGLVVTTAGDRPSSFGARGVNGHIEDLLFPINHGIFWYTGIAPLAPLTLLGVDAPTWGGVEDARGRVRRRFAGIETERPLAYRRLLEDYDGDRELHARLAPGRGDLAIHLTPGVSDRQPVPGPT0009455_409DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009455-kefF|nqo|ywrO-K00355NANA
AK018_03975366hypothetical proteinGTGCGAGAGGCCGTTCGACGCGCCGCCGACGTGTGCCCGATCGAGGTCGGGGTCGCCGTCGCGGGCGGCGACTGGAAGCTGACGGTGGTGTCCAAGCTGGAGCCGGGACCCTTGCGCTTCGGGGCGCTGCAGCGCGCCGTGGGGCCGGTCTCCGCCAAGACGTTGACGCGCCAGCTGCGGGCGCTGGAGACGGACGGGATCGTGACCCGGACGGTCTACGCCGAGGTGCCGCCCCGCGTCACGTACGCCCTGACCGTGGCCGGTGCGGAGCTGGCCGAGGTCGCGCGGGCCCTGGGGAGCTGGGGCGAGCGTTATCTCGGGGCGAGCGCCCCGGTGGCGCCCGCGAGCGCCCCGGACGCCCCGTGAMREAVRRAADVCPIEVGVAVAGGDWKLTVVSKLEPGPLRFGALQRAVGPVSAKTLTRQLRALETDGIVTRTVYAEVPPRVTYALTVAGAELAEVARALGSWGERYLGASAPVAPASAPDAPNANANANANA
AK018_039761338metY_2COG2873O-acetyl-L-homoserine sulfhydrylaseGTGACCGACACTCCCCGCTGGTCGTTCTCGACCCGCCAGATCCACGCCGGCCAGCAGCCCGACCCCACCACCGGGGCCCGGGCGCTGCCCATCTTCCAGACCACCTCGTACGTGTTCCCCGACGCCGAGACCGCCGCCAAGCGGTTCGCGCTCGCCGAGCTCGGCCCCATCTACACCCGCATCAACAACCCGACCCAGGAGGTCGTCGAGAACCGGATCGCGGACCTCGAGGGCGGTGTGGGCGCACTGCTGCTCGCCTCCGGCCAGGCGGCCGAGACGTTCGCGATCCTCAACGTCGCCGAGGCCGGCGACCACGTCGTGGCCAGCGCCAGCCTCTACGGCGGCACGTACAACCTGCTCAAGCACACCCTCTCCCGCTTCGGCATCACGACCACCTTCGTCGACGACGCGCACGACGTCGCCGCGTGGCACGCCGCCGTGCAGGACAACACCAAGGCGTTCTTCGCCGAGACCATCCCCAACCCGAAGGGCGACGTGCTGGACGTCGCCCTCGTGGCCGAGGCCGCGCACGCCGCCGGCGTGCCGCTCATCGTGGACAACACGGTGGCGACCCCCTACCTGGTCCGCCCCATCGAGCACGGCGCCGACGTCGTCGTGCACTCCGCCACGAAGTACCTGGGCGGGCACGGCACCACCGTGGCCGGCGTGATCGTCGACGCCGGCAGCTTCGACTACGGACGCGACCCCGAGCGATTCCCCGGCTTCAACACCCCGGACCCGTCGTACAACGGCATCGTCTACGCCCGCGACCTCGGCGTCGACGGGGCGCTCGGCGCGAACCTCGCGTTCGTCCTCAAGGCCCGCGTGCAGCTGCTGCGCGACCTGGGCGCCGCGGTCTCGCCGTTCAACGCGTTCCAGATCGCCCAGGGCATCGAGACGCTGTCGCTGCGCATGGAGCGGCACGTGGACAACGCCCAGCGCGTCGCCGAGTGGCTCGAGGCGCGCGACGACGTCCGCACCGTCCACTACGCCGGGCTCACGTCCAGCCCGTGGCACGCCACCCAGCAGCGGTACGCCCCGCGCGGCGCCGGAGCCGTCCTCGCGTTCGAGCTCGACGGCGGGGCCGAGGCCGGCCAGGCGTTCGTCTCGGCCCTGCAGCTGCACTCGAACGTCGCGAACATCGGCGACGTGCGCTCCCTGGTCATCCACCCCGCCTCGACGACGCACAGCCAGCTCACCGCCGAGGAGCAGGCGAAGTCGGGCGTGACGCCCGGTCTGGTGCGGCTCGCCGTCGGGATCGAGGACGTCGAGGACATCCTGGCCGACCTCGAGCTCGGCTTCACCGCGGCCAAGGCCACGCTCGACGCGCCGGCCTGAMTDTPRWSFSTRQIHAGQQPDPTTGARALPIFQTTSYVFPDAETAAKRFALAELGPIYTRINNPTQEVVENRIADLEGGVGALLLASGQAAETFAILNVAEAGDHVVASASLYGGTYNLLKHTLSRFGITTTFVDDAHDVAAWHAAVQDNTKAFFAETIPNPKGDVLDVALVAEAAHAAGVPLIVDNTVATPYLVRPIEHGADVVVHSATKYLGGHGTTVAGVIVDAGSFDYGRDPERFPGFNTPDPSYNGIVYARDLGVDGALGANLAFVLKARVQLLRDLGAAVSPFNAFQIAQGIETLSLRMERHVDNAQRVAEWLEARDDVRTVHYAGLTSSPWHATQQRYAPRGAGAVLAFELDGGAEAGQAFVSALQLHSNVANIGDVRSLVIHPASTTHSQLTAEEQAKSGVTPGLVRLAVGIEDVEDILADLELGFTAAKATLDAPAPGPT0001995_264DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001995-metC-K01760NANA
AK018_03977381hypothetical proteinATGTCCACCGACGCACCCGTCGAGCTCGTCGGCGTCTACCACGCCGAGGGCACCCTGCTGGGCGAGCTCCGCTACGTCGTCGGCCGCGCGCGCGGCACGGCGCACTGCGCCCTGTGCGACGTCACGCACGGCACGGTGCGCCGCAAGCGCTCCTGGGACGAGTACGTCGCCGGCCTCGACGTCCCGTTCCGGTTGGTCCACCTCGACGAGATGCCCGACGACGTCGCCCGCGCCGTGGCGCGGTGGGGCAGCCCCGTCGTGCTCGGGCGCACCGCCGAGGGCGAGCTCGCCCCGGTCCTGGACCGGGACCAGCTCGAAGCCCTCGGCGGCGACGTGGACGCCTTCGCGGACGCCGTCGAGGTGGCGCGCGCCCTGCGCTGAMSTDAPVELVGVYHAEGTLLGELRYVVGRARGTAHCALCDVTHGTVRRKRSWDEYVAGLDVPFRLVHLDEMPDDVARAVARWGSPVVLGRTAEGELAPVLDRDQLEALGGDVDAFADAVEVARALRNANANANANA
AK018_039781239metXA_2COG2021Homoserine O-acetyltransferaseATGACCTCGACGCCCCTCAGCACGCCAGGCACCCCGGGACGCGACGCCACCTGGCGCTCCCCGCGCGCCCGACGCCGAGCACCCGCCGGCCCCGTGCCCGCGTCCGGCGCCTGGCGCGACGGCGACCCGGTCGCCCGGCGGCAGTTCCTCGACGTCGGCACCTTCGACCTCGAGGGCGGCGGCCGCCTGCCGGACGTCCGCGTCGCCTACGAGACCTACGGCGAGCTCGCGCCCGACGGGTCCAACGCCGTCCTCGTCCTGCACGCCCTGACCGGGGACGCCCACGTCGCCGGACCCGAGGGCCCCGGCCAGGCCACGGCCGGCTGGTGGGAGTCGATGATCGGGCCCGGAGCCCCCCTCGACACCGACCGGTACCACGTCGTGGTGCCCAACGTGCTCGGCGGGTGCCAGGGCACCACCGGCCCCTCCTCGGCGGCGCCCGACGGCCGCCCCTGGGGCGGCCGGTTCCCCCGCATCACCACCCGCGACCAGGTCGCCGTCGAGATCGAGCTGACCCGCCTGCTCGGCATCTCCTCCTGGACCGCCGTCGTCGGCGCCTCCATGGGCGGCATGCGCGTGCTGGAGTGGGCGCTGCTCGGACCGGAGGCCGGCATCGAGGTGCGCTCGATCGCCGCGATCGCCACCTGCGCCCAGTCCTCCGGGGACCAGATCGCCTGGGCGCACCCCCAGCTCTGCGCCATCCGCGCCGACCCGCGCTGGAACGGGGGCGACTACTACGACGCGCCCGACGGCGAGGGTCCGCACGCCGGGCTCGCCATCGCCCGCCAGATCGCGCACACCACCTACCGCACCGCCATCGAGCTCGACGAACGGTTCGGACGCCTGCCCCAGGGCGGGGAGGACCCGCTTACCGACGGCCGGTTCGCGGTGCAGTCCTACCTCGACCACCACGGCGACAAGCTCGCCCGCCGCTTCGACGCCAACTCCTACCTGCGGCTCACCGAGACGATGATGACCCACGACATCGGGCGGGACCGCGGCGGCGTGGAGGCGGCCCTCGCCCAGATCGACGCCCGGGCCCTCGTCGTCGCCGTCGACAGCGACCGCCTCTTCCCGCCCGCCCAGTCCGAGCGGCTCGCCGCCGGGCTGCCCGGGGCCGACGGCGTGCACGTGCTGCGTTCCCCGTTCGGGCACGACGGCTTCCTCATCGAGCACGAGCAGATGGGGGCGCTCGTGCGCGACTTCCTCGCCGAGCCCTCCCGCGACCGGACCCTCTAGMTSTPLSTPGTPGRDATWRSPRARRRAPAGPVPASGAWRDGDPVARRQFLDVGTFDLEGGGRLPDVRVAYETYGELAPDGSNAVLVLHALTGDAHVAGPEGPGQATAGWWESMIGPGAPLDTDRYHVVVPNVLGGCQGTTGPSSAAPDGRPWGGRFPRITTRDQVAVEIELTRLLGISSWTAVVGASMGGMRVLEWALLGPEAGIEVRSIAAIATCAQSSGDQIAWAHPQLCAIRADPRWNGGDYYDAPDGEGPHAGLAIARQIAHTTYRTAIELDERFGRLPQGGEDPLTDGRFAVQSYLDHHGDKLARRFDANSYLRLTETMMTHDIGRDRGGVEAALAQIDARALVVAVDSDRLFPPAQSERLAAGLPGADGVHVLRSPFGHDGFLIEHEQMGALVRDFLAEPSRDRTLPGPT0011520_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-CYCLOSERINE_METABOLISM,PGPT0011520-dcsE-K19726NANA
AK018_03979420hypothetical proteinATGGCGCGACTCACCCCGTACCTCAGCTTCACGGACCGGGCGCGCGAAGCGCTCGAGTTCTACCGCTCGGTCCTCGGCGGCACCGTGGACATCTCGACGTTCGGTTCCATGCCCGGCATGACCGACGACCCCGCCGAGCAGGAGCTGGTCATGCACGGCCAGCTCGAGACGCCCGGCGGCCTGGTCCTCATGGCCTCGGACACGCCGTCGTTCATGACGTACGTGGCCCCGACCTCCGGCGTGACCGTCGCGCTCACCGGCGGCCCCGAGGACGTCGACGACATCCGTGCCGCGTTCACGGCCCTGTCCGACGGCGCCACGGACGTGATGCCGTTCGAGCTCGCGCCGTGGGGCGACCACTACGGTCAGCTCACCGACAGGTTCGGCATCTCCTGGATGTTCGACGCCGGGACGGCCTGAMARLTPYLSFTDRAREALEFYRSVLGGTVDISTFGSMPGMTDDPAEQELVMHGQLETPGGLVLMASDTPSFMTYVAPTSGVTVALTGGPEDVDDIRAAFTALSDGATDVMPFELAPWGDHYGQLTDRFGISWMFDAGTAPGPT0030505_2317PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK018_03980960ccr_2COG0604Crotonyl-CoA carboxylase/reductaseATGCTCGCTGCCACCGTCGCCCGCTTCGCACCCGACGCCCCCCTCGACGCCCTCGAGGTGACCGACCGGCCCGCCCCGGAGGCCCGCGACCACTGGACCGTGGTCGACGTGCGCGCCGCCTCCCTCAACCATCACGACCTCTGGTCGCTGCGCGGCGTGGGGCTGGGCGAGGACCAGCTCCCGATGACGCTGGGCACCGACGCCGCCGGGGTCACGGCGGACGGCACCGAGGTCGTGGTCCACGGCGTGATCGGGGCGGACGGGCACGGCGTCGGCCCTCGCGAGCGCCGGTCGCTGCTGAGCGAGAAGTACCCGGGCACGCTGGCCGAGCAGGTCGCGGTCCCCACGGCCAACCTGCTGCCGAAGCCTCCCGAGCTGTCGTTCGCCGAGGCCGCCTGCCTGCCGACGGCCTGGCTGACCGCCTACCGGATGCTGTTCCGCGCCGCCGACCTGCGGCCCGGCGACCGGGTTCTCGTCCAGGGCGCCGGCGGTGGGGTGGCGACGGCCGCCGTCGCGCTCGGCGCCGCGGCCGGCCTGGACGTCACCGCCACGTCCCGCGACGCGGCCAAGCGCGCCCGGGCGCTCGAGCTGGGCGCGAGCACCGCCGTCGCGCCGGGCGAACGCCTGCCGCACAAGGTCGACGCGGTGCTCGAGTCCGTCGGGCAGGCCACCTGGGGGCACTCGGTGCGCTCGGTCCGCCCGGGCGGGACCGTCGTCGTGTGCGGCGCGACGAGCGGGGACGCCTCGCCCGCCGAGCTGACCCGGGTGTTCTTCACCGAGCTGCGCGTGCAGGGCGTGACGATGGGGACGCGGGAGGATCTCGCCGCGCTGCTGCACTTCTGCGCGACGGCGGGGGTGCGGCCGGTGATCGACTCGGAGGTCGCACTGGCCGACGTCGCCACGGGCCTGGCCCGGTTGGCCGCCGGGGAGCAGACGGGCAAGATCGTCGTCCTGCCCTGAMLAATVARFAPDAPLDALEVTDRPAPEARDHWTVVDVRAASLNHHDLWSLRGVGLGEDQLPMTLGTDAAGVTADGTEVVVHGVIGADGHGVGPRERRSLLSEKYPGTLAEQVAVPTANLLPKPPELSFAEAACLPTAWLTAYRMLFRAADLRPGDRVLVQGAGGGVATAAVALGAAAGLDVTATSRDAAKRARALELGASTAVAPGERLPHKVDAVLESVGQATWGHSVRSVRPGGTVVVCGATSGDASPAELTRVFFTELRVQGVTMGTREDLAALLHFCATAGVRPVIDSEVALADVATGLARLAAGEQTGKIVVLPPGPT0001350_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001350-maeA|sfcA|ywkA-K00027NANA
AK018_039811764hypothetical proteinATGCCACTGTTCGAGGTCGACGCCAGCAGGCCGCTCCTCGTGCAGTCCTCCGCCGGCGCCGTCGAGCCGGGGCTGGGCACCACCGCGCACCGGGTCGTGGACTCGCACATCGACGGGCTGCTCGGCGAGCAGATCTTCCCCGTCGCCCAGGGCACCGGGCCGGACGAGCCGCACCTGCTCGCGCTGGACGCCACCGGGTCGCCCGTCGTCGTCGAGCTCGTCGCCGAGCTGGACCGTGCCGCGCTGACGCGGGCGCTCGACCACGCCGGCTGGGCGGGGCGGCTGACCCGCGGCGAGCTCGCCGCTCGCTACCACGGCGGCGCCGGCTCGTTCCACCGGGACATCGCCGCGTTCTACGACTCGGTGCCGATCACCCGCTCCCAGCCGGGTCGTTCCAGCGCCCGCCTCATCGTCATCTGCCAGGAGGCGGGCGAGGAGATCCTCAACGCCGTGGACTTCCTGCGCCAGCCGACGATGCCCGTCGAGGTCCTCAAGATGGGCGTCATGCACGACCAGGAGGGACGCCGGTTCGTGGACGTGTCCCCGCTGGTGATCCACCCGGCCGCCGGGGCGTCGTCGCCACGCCTGTCCCGGGCGGCCGGCACCGAGCCCGCGGAGCGGGCCGTCCGCGGCACCGCGGGCCAGGGCGCCGAGCCGGAGTCGTTCGCCGAGGGGGTCAAGGTCGGGCTCGCCCTGACCGGCAAGAATCCCGCCGTCGCGACCTCGCCGGCCGACGGTGCCGGGACGCCCGACCGCGCGCCCGCGGCCGGGCGGCGTGCCGCCGCTGCGCGGGACCAGGTCGGCGACACCGCCGAGCAGCCGCCCCTGCGCCGCACGCGGGCCGCGCGCCGCGCCGAGTCCGCCCCGAGCCTGGCGGTGCCGCGGGTGCGGTCCGACGACGGCACCCCGGCCGGGACGTCGCAGCCGGCCCCGCCGCCCGCCCCGGCGCCCGTCCCCCGACCGGCGCCCGCGGTGCCGTCCCCGGCCGCCCCGACACCGCAGCGACCCGCCGGGGGCGAGGCGCCGCGTCGGCGGTCGCGCTCGGACCGTTTCCGTGCCTCGTCCGACGCCGCCCCGATGTCACCCGGGCTCGCGGCCTACGCGTCCGCCTCGGCGTCGTCGGCCGAGGACCTGGACCTCGCCGAGCTGGCACGGCGGACCACGTCGGCGGCGAGCACCGACACCCCGGGACTCGGCGAGGACTTCGCGCGCGCCGCGACGCCGGCGCTCGGCTCGCGGCGGTCCCGCCGGCGCACGTCGTGGGAGCCGGCCGAGTCGTCCGGATCGTTCGGCGACGACCCGCTGGGTGAGCGCGGCCGGCCCGGACCGACGGAGCGCTGGACCTCCGGCTCCGCGGACCTGCCGCGCCTCGAGGTGCCGCCGTTGGAGGCGCCGTCGTACACGCCGCCGCCGGACCGGTCCTCGTTCGCCGACGAACCGTGGGCGCCGCCGCCCGTGCCGGCACCGCCCGCGCCGGCCCTTCCGGACGAGGAGGACGAGGTGGACGGCGACCTCATCGCGCTGGCGAGCATGCTGCCGCAGCCGGCCCGCCTGGAGTGGTCGCGGCCGCGCCGTCGCCAGGTCCTCGAGGCGACCCTGCACCCGCAGGGGTACATCGAGCTGCCGGACGGCTCACGGTTCCAGCATCCCGACCGGGCCGCCACGGCGGCCAGCGGGGCCCCGACGGACGACGGCTGGAACGTCTGGCGGATCCTGCCGGACGACATCTCCCTGCTCGAGGCGTACCGCAGCCGCTTCGCCTGAMPLFEVDASRPLLVQSSAGAVEPGLGTTAHRVVDSHIDGLLGEQIFPVAQGTGPDEPHLLALDATGSPVVVELVAELDRAALTRALDHAGWAGRLTRGELAARYHGGAGSFHRDIAAFYDSVPITRSQPGRSSARLIVICQEAGEEILNAVDFLRQPTMPVEVLKMGVMHDQEGRRFVDVSPLVIHPAAGASSPRLSRAAGTEPAERAVRGTAGQGAEPESFAEGVKVGLALTGKNPAVATSPADGAGTPDRAPAAGRRAAAARDQVGDTAEQPPLRRTRAARRAESAPSLAVPRVRSDDGTPAGTSQPAPPPAPAPVPRPAPAVPSPAAPTPQRPAGGEAPRRRSRSDRFRASSDAAPMSPGLAAYASASASSAEDLDLAELARRTTSAASTDTPGLGEDFARAATPALGSRRSRRRTSWEPAESSGSFGDDPLGERGRPGPTERWTSGSADLPRLEVPPLEAPSYTPPPDRSSFADEPWAPPPVPAPPAPALPDEEDEVDGDLIALASMLPQPARLEWSRPRRRQVLEATLHPQGYIELPDGSRFQHPDRAATAASGAPTDDGWNVWRILPDDISLLEAYRSRFANANANANANA
AK018_03982321hypothetical proteinATGGCCGTCTTCGCGTTCTCCGTCGCCCCGCTCGGTGCGGGCGAGTCCGTCACCGCCTCCGTCGCCGAGGCCGTCCGCATCGTGAGGGAGTCCGGGCTGCCGAACCGCACCACCTCGATGTTCACCGAGATCGAGGGGGAGTGGGACGAGGTGATGCCGGTGATCCAGCGCGCCACCGAGGCGGTGGGCGCCGGCGGTCACCGCGTCTCGCTGGTGCTCAAGGCCGACATCCGTCCCGGGCACTCCGGTCAGCTCGACGGCAAGGTGGCCCGCGTCGAGGAGGCGCTCGCCGAAGGGGAGGGGGAGACCGGTCACGCGTGAMAVFAFSVAPLGAGESVTASVAEAVRIVRESGLPNRTTSMFTEIEGEWDEVMPVIQRATEAVGAGGHRVSLVLKADIRPGHSGQLDGKVARVEEALAEGEGETGHANANANANANA
AK018_03983924fbiA_2COG0391Phosphoenolpyruvate transferaseGTGAACACCTCGGTCACCCTCCTGGCCGGCGGCGTCGGTGGCGCGCGCCTGGCCCACGGCTTCTCCCGCGCCCTCGACGCGCTCACCTGCGTGGTCAACGTCGGCGACGACACCGAGCGGCACGGGCTGCACGTCTCGCCCGACCTCGACACCGTGATGTACACGCTGGCCGAGATGAACGACGAGGAGCGCGGCTGGGGCCTGACCGGCGAGTCGTACGCGACGCTCGCCCAGCTCGAGCGCCTCGGCGAGGACACCTGGTTCACCCTCGGAGACAAGGACCTCGCCACGCACGTGGTGCGCACCGCACGCCTGCGCTCCGGCGAACCGCTCAGCGCGGTGACCGCCGGGCTGGCCGGTGCGCTCGGGGTGACCGCCCGGCTGCTGCCCGTCACCGACGACCCGGTCCGCACCCGGATCACCACGCCGTCGGGCGAGCTGGAGTTCCAGGAGTACTTCGTGCGGCGGCAGCACGCCGACGCCGTCCTCGGCCTGGCGTTCGACGGCATCGAGGACGCCCGCCCCGCCCCCGGTGTCCTCGACGCCGTCACCGGCGCCGACCTGCTGGTGGTGGCGCCGTCGAACCCGTTCCTGTCCGTCGAGCCGGTCCTCGGCGTGCCGGGCGTGCGTGCGGCGGTCCGCTCGACGGCGGCCCGTCGCGTCGCCGTCAGCCCCATCGTGGGCGGCCGCGCCCTCAAGGGTCCGGCGGCGCAGGTGCTGGAGTCCCTCGGGCACGACGTCTCGGCCCTGGGCGTGGCGCGCCTCTACGCCGGACTGGTGGACGTGATGGTGATCGACGCCGCCGACGAGGCGCTCGCGGACCCCGTGCGCGACCTGGGGCTCGAGGTGCTGGTCACCGACACGATCATGGGCGGGCCCGACGGCCGCGAACGCCTGGCCCGCGAGCTGCTGGCCCTCGCGTGAMNTSVTLLAGGVGGARLAHGFSRALDALTCVVNVGDDTERHGLHVSPDLDTVMYTLAEMNDEERGWGLTGESYATLAQLERLGEDTWFTLGDKDLATHVVRTARLRSGEPLSAVTAGLAGALGVTARLLPVTDDPVRTRITTPSGELEFQEYFVRRQHADAVLGLAFDGIEDARPAPGVLDAVTGADLLVVAPSNPFLSVEPVLGVPGVRAAVRSTAARRVAVSPIVGGRALKGPAAQVLESLGHDVSALGVARLYAGLVDVMVIDAADEALADPVRDLGLEVLVTDTIMGGPDGRERLARELLALANANANANANA
AK018_03984654fbiD_2Phosphoenolpyruvate guanylyltransferaseGTGACCGAGCCGGTGACCGCCGTCGTGCCGCTGCGCGACGGGTCCAGCGGGAAGTCGCGGCTGGCGGCCGGGCTGGACGCCGGTGCCCGACGTCGGCTGGTCGTCGCGCTCGCCCGGCACGTGCTGGAGGTGCTCGCCGCGAGCCGGTCCGTGGCGCAGGTCGTGGTGGTGACGGCCGACATGCCCTTCGCCCGCGAGGTCACCGCTCGGGTCGGCAGTCCGCGGCCGGGTCGGCAGTCCTCCGTGCCGACGTGGCCGCGCCCTGCCGACCTGATCGCGGAACCGCCGGGCAGACCCGGACTGAACGCGGCGCTGGAGCACGCCCGCAGCCACGTCGGCGACGGGCGGCTGCTGGTGGTGCACGCCGACCTGCCGCTCCTGACCACCGACGACGTGGACGCGGTGGCCGCCGAGCCGGCCGACATCGTGGTGGCCACCGACCGGCACGGCACGGGCACAAACCTCCTGCGGGTCCCGGCCGGAGCGCCCTTCGCGTTTCGGTTCGGCCCGGGCTCCCGCACCGCCCACGAGACCGAGGCCGCGGCGCACGGGCTGACCTGCGCCGTCGTGCAGCGTCCCGGGACGGCCGCGGACCTGGACACCCTCGACGACCTCGCCGAGCTGGCGCCGCCGTCCGCCGCGCGGGGGCTCTAGMTEPVTAVVPLRDGSSGKSRLAAGLDAGARRRLVVALARHVLEVLAASRSVAQVVVVTADMPFAREVTARVGSPRPGRQSSVPTWPRPADLIAEPPGRPGLNAALEHARSHVGDGRLLVVHADLPLLTTDDVDAVAAEPADIVVATDRHGTGTNLLRVPAGAPFAFRFGPGSRTAHETEAAAHGLTCAVVQRPGTAADLDTLDDLAELAPPSAARGLNANANANANA
AK018_03985606fbiB_3Bifunctional F420 biosynthesis protein FbiBATGGAGTTCCGTGACGTGGTCCGACGGCGGCGCATGGTCCGGCGGTTCGGACCGGACCCGGTGGCGCCCGAGGTGGTGGACCGGCTGCTCGAGACCGCCGTGCGGGCACCGAGCGCCGGGTTCACCCAGGGCTGGTCGTTCCTCGTGCTCACCTCCGACGCCGAGCGGGAGCAGTTCTGGGCGGCGACGACGCCGACCGCCTCGCCGCGGGACATGTCGGCCTGGCTGGACGGGATGCGCCGCGCCCCGGTGCTGATCGTGGCGCTCGCCTCCCGGGACGCCTACGTCGGCCGGTACGCCGAACCCGACAAGGGCTGGACCGACCGCGACGAGGCGCGCTGGCCGGTGCCGTACTGGCACGTCGACGTCGGCATGGCCTCGCTGCTCATGCTCCAGACGGCCGTCGACGAGGGCCTCGGGGCGTGCTTCTTCGGGATCTCGGCCGACCGCATCGAGACGTTCCGGGCGGCGTTCGGCGTGCCGGCCGAGTGGGCGCCCACCGGGGTGGTCGCCGTCGGGCACCCGGAGGCCGGGGGAGCCCAGGGGTCGCCGGCGCGGCGGCGGCGCAAGCCGATGGCCGACGTCGTCCACCGCGGCCGGTGGTGAMEFRDVVRRRRMVRRFGPDPVAPEVVDRLLETAVRAPSAGFTQGWSFLVLTSDAEREQFWAATTPTASPRDMSAWLDGMRRAPVLIVALASRDAYVGRYAEPDKGWTDRDEARWPVPYWHVDVGMASLLMLQTAVDEGLGACFFGISADRIETFRAAFGVPAEWAPTGVVAVGHPEAGGAQGSPARRRRKPMADVVHRGRWPGPT0006810_1072DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0006810-bluB|drgA-K04719NANA
AK018_039863069COG0247putative proteinGTGTCTGCCCAGTCGACGACCACCCCGAGCGGCCCGCAGGGGCCGACGGAACCCGCGACCACCGAGGACGCCCGTGCTGCGGCGCTCGCCGCTCAGCGCGAGGCCGAACGGGAGGCCGAGCTCGCCGCGGCCGAGGCCCGCGAGGCGGTCGCCACCGCGCTGCGCACGGTGATGTCCGGCGTCGTCGACACGACGACGCGGCGCCGCGCGGAGTACTCGACGGACGCGTCCAACTACCGGGTGGTGCCCGACGTGGTCGCCTACCCGCGCAGCACCGACGACGTGGTCGCCGCCCTGGAGGTGCTGCGTGAGCTCGGCGTGCCGGTCACCTCCCGCGGCGGGGGGACCTCGGTGGCGGGCAACGCGGTCGGTCCGGGCGTGGTCCTCGACTTCTCCCAGCACCTGCACACGGTCCACGACGTCGACCCCGAGGCCCGCACCGCCGTCGTCGACCCGGGTGTGGTCATGTCCTCCCTGCAGCGCGTCGCGGCACCGCACGGGCTGCGGTTCGGGCCGGACCCGTCGACGCAGAACCGCGCGACGCTCGGCGGGATGATCGGCAACAACGCCTGCGGCCCGCACGCGGTGGCGTACGGGCGGACGGCGGACAACGTGGTCGGGCTGGACGTCGTCGACGGGCGTGGTCGGCGGTTCACGGCCGGTCGGGGGGACGCGACGTTCGCCGCGGTGCCGGGCCTGGCCGAGCTGGTCCGGGAGAACCTGGCGCTGATTCGCACCGAGTTCGGCCGGTTCGGCCGTCAGGTGTCGGGGTACTCGCTGGAGCACCTGCTGCCGGAGAACGGCTCCGACCTGGCGAAGTTCCTGGTGGGCACCGAGGGCACCCTCGTGACGCTGCTCGGCGCGACGCTGGAGCTGGTCCCGGTGCCGAGCGCGCCGACCCTGGTGGTCCTCGGCTACCCGGACATGCCGACCGCCGCCGACGACGTCCCGGTGCTGCTGCGGCACGACCCCCTCGCGATCGAGGGGCTGGACGCGCGTCTGGTCGACGTGGTCCGCCACGCCAAGGGTGCGGACTCGGTCCCGGACCTGCCCGAGGGTGCCGGCTGGCTCATGATCGAGGTGGGCGGGACCTCGCCCGGCGAGGCGCGGGAGATCGCCGAGCTGATCGTGGGGGCGTCGTCGTCGACGGGGGCGGCGATCTACCCGGCCGGTCCGGACGCGACGAAGATGTGGCAGATCCGGGCCGACGGCGCGGGGCTGGCCGGGCGCACCCCGGCGGGGGAGCAGGCGTGGCCCGGCTGGGAGGACTCGGCGGTGCCGCCGGAGAAGCTGGGCGACTACCTGCGCGACCTGGACGACCTGATGGCGCGCTACGGCGTCGACGGCCTGCCGTACGGGCACTTCGGCGACGGCTGCATGCACCTGCGCATCGACCTGCCGTTGGAGGCCTCGGGGTCGGTGCTGCGCACGTTCATGGTCGAGGCGGCCGAGCTGGTGGCGAAGTACGGAGGGTCGCTGTCCGGCGAGCACGGTGACGGCCGGGCGCGCTCGGAGCTGCTTCCCGTCATGTACTCGCCCGAGGCGATCGCGTTGATGGAGCAGGTCAAGGCGCTGTTCGACCCTGACGACGTGCTCAACCCCGGTGTCGTGGTGCGGCCGGCGGCGGTGGACGTCGACCTGCGGCGCCCGGCCGCGCGGTCGGTGCCGTCCACGGGTCCGGTGGGCGAGCGCGGGCTGCTCGGTTCGGGCACCCTGCGGGGGGTCGCGAAGAAGACCGGGTACGCGGGGTTCAGCTTCGCGCACGACCACCACGACCTGACGACGGCGGTGCACCGCTGCGTGGGTGTGGGCAAGTGCCGGGCGGACACCAGCGCGGCGGGCGGGTTCATGTGCCCGTCGTACCTGGCGACGAAGGACGAGAAGGACGTCACCCGGGGGCGGGCCCGCGTGCTGCAGGAGGCGGTGAACGGGTCGCTGGTCGGCGGTCTGACCGCGCCGGAGGTGCACGAGTCCCTCGACCTGTGCCTGAGCTGCAAGGCGTGCTCCTCGGACTGCCCCGCCGGCGTCGACATGGCGCAGTACAAGTCGGAGGTGCTGCACCGTACATACCGCGGCAGGCTGCGTCCGATGGACCACTACGCGCTCGGCTGGCTGCCCCGCTGGGCCCGGCTGGCCGCCGTCGCGCCGCGGACCATCAACAAGGTGCTCAAGATCGACTGGATCCGCAAGGTCGTGCTGCGGGCCGGCGGGATGGACACGCGTCGCGCCGTGCCCGAGTTCGCCGAGCTGCCGTTCCGCCGCTGGTGGTCGCTCGGGTACGCCACCCAGGGGGTGCCCGGCCTGGCGCACCGCCAGGACCCGGGCCGGCCCGCCGGGACCACCCGGCCCAAGGTGGTGCTGTGGACGGACTCGTTCAGCGACGCGATGTCGCCGTCGGTGCCGCAGGCGGCCGTCCGCGTCCTGGAGGCCGCCGGGTACGACGTCGTCGTCCCCGACCAGCAGGCGTGCTGCGGCCTGACGTGGATCTCCACCGGCCAGCTCGACGGCGCCCGACGGCGGCTCGACGGCCTGCTGAAGGTGCTCGGGCCCTACGCGGTGAACGGCTACCCCATCCTCGGGCTGGAGCCGTCCTGCACGGCGGTGCTGCGCTCGGACCTGCTGGACCTGTTCCCCGAGGACCCCCGCGCCCAGGCGGTCGCCGGGGCCACGAAGACCCTGGCCGAGCTGCTCACCGACCCCGCGACGGCCCCGTCCGAGGACGCCGGCTGGGAGCTGCCGGATCTCAGCGACCTCACCGCCGTCGTGCAGCCGCACTGCCACCAGCACTCCGTCATGGGGTTCGCCGCCGACCGGGCCCTGCTGGCACGGGCGGGCGCGACCGTCACCGAGCTCGCCGGGTGCTGCGGCCTGGCCGGCAACTTCGGCATGCAGAAGGGTCACTACGACGTCTCGGTCGCCGTGGCCGAGAACGCCCTGCTGCCGGCGCTGCGGGCACGCGACGAGGGCGAGGAGTTCATCGCCGACGGATTCTCCTGCCGCACGCAGGCCGTCCAGCTCGAGGGCGTGGAGGGCAAGGCCCTGGTGGAGGTGCTCGCCGAGCGGCTCTGAMSAQSTTTPSGPQGPTEPATTEDARAAALAAQREAEREAELAAAEAREAVATALRTVMSGVVDTTTRRRAEYSTDASNYRVVPDVVAYPRSTDDVVAALEVLRELGVPVTSRGGGTSVAGNAVGPGVVLDFSQHLHTVHDVDPEARTAVVDPGVVMSSLQRVAAPHGLRFGPDPSTQNRATLGGMIGNNACGPHAVAYGRTADNVVGLDVVDGRGRRFTAGRGDATFAAVPGLAELVRENLALIRTEFGRFGRQVSGYSLEHLLPENGSDLAKFLVGTEGTLVTLLGATLELVPVPSAPTLVVLGYPDMPTAADDVPVLLRHDPLAIEGLDARLVDVVRHAKGADSVPDLPEGAGWLMIEVGGTSPGEAREIAELIVGASSSTGAAIYPAGPDATKMWQIRADGAGLAGRTPAGEQAWPGWEDSAVPPEKLGDYLRDLDDLMARYGVDGLPYGHFGDGCMHLRIDLPLEASGSVLRTFMVEAAELVAKYGGSLSGEHGDGRARSELLPVMYSPEAIALMEQVKALFDPDDVLNPGVVVRPAAVDVDLRRPAARSVPSTGPVGERGLLGSGTLRGVAKKTGYAGFSFAHDHHDLTTAVHRCVGVGKCRADTSAAGGFMCPSYLATKDEKDVTRGRARVLQEAVNGSLVGGLTAPEVHESLDLCLSCKACSSDCPAGVDMAQYKSEVLHRTYRGRLRPMDHYALGWLPRWARLAAVAPRTINKVLKIDWIRKVVLRAGGMDTRRAVPEFAELPFRRWWSLGYATQGVPGLAHRQDPGRPAGTTRPKVVLWTDSFSDAMSPSVPQAAVRVLEAAGYDVVVPDQQACCGLTWISTGQLDGARRRLDGLLKVLGPYAVNGYPILGLEPSCTAVLRSDLLDLFPEDPRAQAVAGATKTLAELLTDPATAPSEDAGWELPDLSDLTAVVQPHCHQHSVMGFAADRALLARAGATVTELAGCCGLAGNFGMQKGHYDVSVAVAENALLPALRARDEGEEFIADGFSCRTQAVQLEGVEGKALVEVLAERLNANANANANA
AK018_039871110hypothetical proteinATGCGCGTCGTCGTCATCGGAGCCACCGGCAACGTCGGGACCGCGATCCTGCGTGCCCTCGTCGCCGAACCCACCGTGACCTCGGTCGTCGGTGTCGCCCGCCGGGTGCCCCGCGCCGACGGGTCCAGCACCGTCGGGCCGCCGCACGACGCCGCCGAGTGGGTCCGCGCCGACCTCGTCGACGAGGACACCGTCGCCGACCGGCTCGACGAGGCGCTCGCGGGAGCCGACGCCGTCGTCCACCTGGTCTGGGCGATCCAGCCGGCCCGGGACCCCGACACGCTCCACCGGATCAACGTGGGCGGCGCGCGTCACGTGATCGACGCCGTCGTGCGCAACCGCGTCCCCCAGCTGCTGTTCATGTCCGCGTCCGGCGTGTACTCCCCCGGGCCCGACGACGGCGGCGCGGTGGACGAGTCCTGGCCGCGCGAGGGCGTGCCCGGCTCGGCGTACGCCCTGCAGAAGGCGGAGGTCGAGCATCTGCTCGACGACACCGAGGCGGAGCAGCCCTGGCTCACCGTGACCCGGATGCGCGCCGCGATCATGCTGCAGCGCGAGGCCGGCGCCGAGATCGCCCGCTACTTCCTCGGCCCCGTGGGCAAGATCGGTCTGAAGGTCGCGGCGGGGCCCCTCGGCGAGGCCGTCGGCGGGCTCGTGCGCGGCTGGCAGGGTCAGCCGGAGCCCAAGAAGCCGCCGCTCTTCCCGCTGGTGCCGTTCCCCGCGGGCCTGCGCCTGCAGGTGCTGCACCCGGACGACACCGCCGCCGCCGTCCGAGGGGCCGTCGTCGGGCGCCACGGCGGTGCCTTCAACCTGGCCCCCGACGGCGCCCTGGACGGCCAAGACCTGGCCGACCTGCTGGCCGCGGGCCAGCTCGTCGAGCTGCCCGTCACCCTGATGCGTCGCGGTCTCGACCTCGCCTCGCGGGCGCGGGTCGTCCCGATCGACCCGGGCTGGCTGGACATGGCGGCGGCGAACATCGTGATGGATTCCGCGCGGGCGCGCGAGCTGCTGCACTGGCGTCCCACGCGCACCCAGGGCGAGGTGCTGCTCGAGGTGCTCGACGGCGTGCTGTCGGGGACCACGGGCGCCACCCCGCCCCTCGCGAAGTAGMRVVVIGATGNVGTAILRALVAEPTVTSVVGVARRVPRADGSSTVGPPHDAAEWVRADLVDEDTVADRLDEALAGADAVVHLVWAIQPARDPDTLHRINVGGARHVIDAVVRNRVPQLLFMSASGVYSPGPDDGGAVDESWPREGVPGSAYALQKAEVEHLLDDTEAEQPWLTVTRMRAAIMLQREAGAEIARYFLGPVGKIGLKVAAGPLGEAVGGLVRGWQGQPEPKKPPLFPLVPFPAGLRLQVLHPDDTAAAVRGAVVGRHGGAFNLAPDGALDGQDLADLLAAGQLVELPVTLMRRGLDLASRARVVPIDPGWLDMAAANIVMDSARARELLHWRPTRTQGEVLLEVLDGVLSGTTGATPPLAKNANANANANA
AK018_03988447osmC_2COG1764Peroxiredoxin OsmCATGCCCACCCGTACCGCACGCACCGCCTGGAACGGCACCCTCAACGAGGGCTCGGGCCAGACCGAGCTGTCCAGCTCCGGCGCCGGGACGTTCGATGTCTCGTTCCCCAAGCGGGTCGCCGACGACGCCGAGGGCGTCACCAGCCCGGAGGAGCTCGTCGCCGCGGCCCACTCGGCGTGCTTCGCGATGGCGTTCTCCGCCGAGCTCGGCAAGGCCGGCGGCACGCCGGAGCAGGTCGAGGTGACCGCGTCGGCCACGCTCGGCGAGGACCCGGCCGGTGACGGCGGGAACAAGATCACGACGATCGCGCTGGCCGTGCGCGGGTTCGCCTCCGGCGTCGACGAGGCGGCGTTCCGCGAGGCCGCCGAGGCCGCCAAGGCCGGCTGCCCGATCTCGCGGTCGCTGGCCGTCGAGGAGATCACGCTCGACGTCTCCTACGAGGGCTGAMPTRTARTAWNGTLNEGSGQTELSSSGAGTFDVSFPKRVADDAEGVTSPEELVAAAHSACFAMAFSAELGKAGGTPEQVEVTASATLGEDPAGDGGNKITTIALAVRGFASGVDEAAFREAAEAAKAGCPISRSLAVEEITLDVSYEGPGPT0013160_304DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
AK018_039891440hypothetical proteinATGGACGAGCGGGACGAGGCCCTCGACGGGCTGAGCGCGGCGGACCCGGCGGCCGACGTCGAGACGCGTCACGGGGTGCTGCGCGCCAAGGTCGACCGGCTGGCGGGCACCGGCGCCGGTGCGCCGGCCGACGGCGGGACCGACGAGACGCCGCGCGACGACCTCGCGACGCGCCGCGACCGGCGTCGTGCCCCGTGGCTGGTGGCCGCCGGTGTGGTGGGTGCGGTGCTGGTCGGCGGGGGCGGCTACGCCCTGGGGTCCGCCGGGACGTCCGGCGACGTCGTCGCGGAGCAGGACGCCGCGGACGGCACGGTCGCCGTCGGTGAGGCCGGCGCCCTGCCACCCCTGGCGCTCGAGGGCGGTCCCACGGGCGGCGCCGCCTCGCCGGAGGGCGCCGCCGACGCGGCGCGGAGCACGATGCTGCCGGGGTACGGCGTCGGTGGGCGGGCGACGTTCGACCAGGAGGGTCTCTCGACGAGCGGGACGACGGCGACCGCGTACGCCTACGACGCGACGGCGGTGGCCACGCGAGCCGGAGCCGCCCAGGTCGCGGCCGATCTGGGCGTCGAGGGAGCGCCGCGCTGGGAGGGCGGTGCCTGGGCGGTCGGTCCGACGGACGGCACCGGGCCGACGCTCTACCTGTCGACGGACGCCACCGCGCACGTCAGCGTCTCCTACCCGGGCCGTGATCCGTGGCGCTGCGAGGACGCGCGGACCCAGGACCTCGAGGACAGCGGCGCGAGCTCCAGCAGCCTGGGTGACGGCGGCGCGGGCGACGGCGGCGGGGTCTCTGCCGTGGAGCCGGTCTGCGCCACACCCGAGGGCTCCGTCCCCGTGGACGCGGCCGCCGCCGCCCTGCGCGAGCTCATGTCCGACGCCGGGGTGGACCCGGCCGGGTTCGAGCTCGAGGCCGCCGAGTCCGGCGACGTCACGCGGTGGGTGACGGCCCACCAGGTCGTGGACGACCGGCGCACCGGCGCGGCGTGGAGCGCGTCGGTCGGGCCCGACGGCGTCGTGTCGGCGGACGGGTTCCTCGCGGCGACGGTGCCGCTGGGCGACTACCCGGTGGTCAGCCCGGCCGAGGCGGTCGAGCGGTTGTCCGACCCGCGCTTCGGCCAGAACCTGTGGCCGATCGCCTACGCGGCGCAGGAACCGGCGTCGGACACGGTGACCGGTCTGGAACCGGCACCCCTGCCCGAGCCCGACCTGCCCCAGGACCCCGGTGAGCCGACCGCGCCGCCGGCACCGCCGTCGTCGGGCAGCGACCTGCCCTGGCCGGTGCGGGACGTGACGATCACGGCCGCGACGCTCGGGCTCGCCCAGGAGCACGGCGACGGCGGCACGCTGCTGCTGCCCGCCTACGAGCTGCGCGACGCCGACGGCAACCTGTGGACCGTCGTCGCGGTGACCGAGGACGCCCTGGACATGACCGCACCCTGAMDERDEALDGLSAADPAADVETRHGVLRAKVDRLAGTGAGAPADGGTDETPRDDLATRRDRRRAPWLVAAGVVGAVLVGGGGYALGSAGTSGDVVAEQDAADGTVAVGEAGALPPLALEGGPTGGAASPEGAADAARSTMLPGYGVGGRATFDQEGLSTSGTTATAYAYDATAVATRAGAAQVAADLGVEGAPRWEGGAWAVGPTDGTGPTLYLSTDATAHVSVSYPGRDPWRCEDARTQDLEDSGASSSSLGDGGAGDGGGVSAVEPVCATPEGSVPVDAAAAALRELMSDAGVDPAGFELEAAESGDVTRWVTAHQVVDDRRTGAAWSASVGPDGVVSADGFLAATVPLGDYPVVSPAEAVERLSDPRFGQNLWPIAYAAQEPASDTVTGLEPAPLPEPDLPQDPGEPTAPPAPPSSGSDLPWPVRDVTITAATLGLAQEHGDGGTLLLPAYELRDADGNLWTVVAVTEDALDMTAPNANANANANA
AK018_03990561hypothetical proteinGTGACCAGCACCACGGAGGTGCCCCGGCACGACGCCGCATGGTTCGACGCGCTCTTCGCCGAGCACGCGGGCGCGGTCCACCGCTACTTCGTGCGGCGGCTCGCCCCGGCCATCCGGGACGACGCCGAGGACCTCGCCGCCGAGGTGCTCGCCACGGCCTGGCGGCGTCGTGACGACGTCCCGGCCGGTGGTGAGCTGCCGTGGCTGTACCGCACGGCCGGGTTCGTGCTCGCCAACCATCGCCGCAAGCTGCGCGCGGTGCCCCTCGCCGTCGTCCCCGACGAGCTCGACGACGTCGACCCGGAGGCGCTCGCGGTGGACGACGACCGGGTCCGCCAGGTGCTGGGTCGGTTGTCGCCGCGGGACCGGCGCATCCTGCTGCTGGTCGCCTGGGACGGGGTGACCGGCGACGACCTCGCCCGGGTGCTGGAGGTCTCGCGCGGCGGGGCGGACGCCGCCCTGTCGCGTGCGCGTGCCCGGCTGCGCTCGGCGTGGGAGTCGGCCGACGGAGGGACGGACGACGTCGCGGGGGACGACGTGGAGCAAGGCGGTGGGTCGTGAMTSTTEVPRHDAAWFDALFAEHAGAVHRYFVRRLAPAIRDDAEDLAAEVLATAWRRRDDVPAGGELPWLYRTAGFVLANHRRKLRAVPLAVVPDELDDVDPEALAVDDDRVRQVLGRLSPRDRRILLLVAWDGVTGDDLARVLEVSRGGADAALSRARARLRSAWESADGGTDDVAGDDVEQGGGSNANANANANA
AK018_039911908hypothetical proteinATGCCCCTGCAGACCGGTGGGTCCGAGGCCTCCGCGACGTCGTCGGGACCGGTACCGGCCCCGCGGCGTGCCCGGGCGCCCCGGGTGCTGCGCTGGCTGCTCCTCGGGACCCTGCTGCTCGCCGTGGTGGTCGGCGTGTGCGCCGTGCTCATGGTCCGCGACGCCTTCGTGGCGCGCGACGCCCTCGACGACGCGGCGCAGGCCGTGCCCGAGGTGGAGCAGTCGCTGCGTGACGGGCTGCTGGACCCGCAGGCGGACGGGCCGGCACTGGCCGAGAACCCGGCGCTCGCGGACCTGCAGGGCTACACGGAGACGGCGCGGGAGGCTACGGACGGGCCGCTGTGGCACCTCGCGGCGTACCTGCCGGTGGTCGGACCGTCCGTGGGCGCCGCGACGACGGTGGCCTCCGCGCTCGACGACGTCAGCGGCGTCGTCCTGCCCGCCCTGGCCGCCACCGGCGACGCGGCGCGGGCCACCACCTACACCGCCGACGGCCGCCTCGAGCTCGGTCCCCTGGCGGGCGCCGCCGACGACGTCACCGCGGCCCGGGGGGTGCTCACCGAGGCGCAGGCCGAGGTCGCCGAGATCGACATCGCGGCGGTCCAGCCCGAGTTCGTCGATCCGGTGACGATGCTGTCGGACCAGCTCGGCGCGCTGGGCGGGCTGCTCGAGGGTGCCGAGCGGGCGACGACGCTGCTCCCGCCGATGCTGGGGGCCGACGAGCCGCGCCGGTACGTGCTCATGAGCCTGACGAACGCCGAGCTGCGCACCGCCGGCGGCATACCCGGTGCTCTGATGCTGCTCGAGGTCGACGGCGGGCGCGTCGAGGTGACACGCCAGGTGACGACCGGGGAGGTCGGGCCGTTCGCCGAACCGGTCGTCGAGCTGGAGCCCGCGGACGTCGAGGCCTACTCGGCCCGTCTCGGTCGGTTCGTCCAGGACGTCACCCTCACCCCGGACTTCGCGACGACGGGCCCGATCACCGCGGAGATGTGGCGCCGCGCCCAGGGCGAGGAGGTCGACGGCGTGCTCGCCACCGACCCGGTCGCCCTGTCCCTCCTGCTGGAGGTCACCGGCCCCGTCGACGTCCGGCTCCCCCGCGACCTCGTCGACGCCGTCGGCGAGCGCACGATCACGCTCGAGTCCTCGACCGTCGTGGACCTGCTGCTGCGCCGCGCGTACGAGGTGCTCACCCCGGAGCAGACCGACGTGTTCTTCGCCGTCGTCGCCGGTGCCGTGGTCGAGGAGCTGACGACGACCCAGGTCGCACCCGCGGACCTGCTGCCGGCGCTCGAGTGGATCGCGGAGCGGCACCGGCTGCTCGTGTGGTCCGCCGACGAGGAGGAGCAGGAGCTGCTGACCGGCACCCTGGTGTCCGGGACGTTCGCCGCCGACCGCGCGGCCGACGCGGTCGGGATGTTCCTCGACGACGCCCGCATCGGCAAGATGACCGCCTACCTCGACGTGCAGGTCGAGCTGACGGGCTCGGAGTGCACGGCGGAGGGACGGCTGGACACGGTGTCGATGCGCCTGGAGAACACCCTGTCCGACGACCAGGCCGCCACGCTGCCGTTCTACGTGGCCGGCCCGGAGGACGCCGCGAACCGCGGACGCCAGCGCGTGGTGCTCTCGACGTACGGGGCGCGCGAGGCCGGGACCCCGGACGTCCGTCGGGACGGCAACCTGGTGGGCGGGACGCTGCAGGAGCTGCACGGCCGGCAGGTCGTCGGCATCACCGTGGCCCTCGACCCCGGGGAGTCCACGACGATCGAGGCCACGTTACCCACCACCGCCGCGGCCGCCCGGGGCTCGGGCACCGCAGAGCCGGGCACCCTCGAGGTGTGGAGCACGCCCACCGCCACCTCCCGCGGCCTGCACGTGCCGGAGGTCCCGGTCTGCGACGGCTGAMPLQTGGSEASATSSGPVPAPRRARAPRVLRWLLLGTLLLAVVVGVCAVLMVRDAFVARDALDDAAQAVPEVEQSLRDGLLDPQADGPALAENPALADLQGYTETAREATDGPLWHLAAYLPVVGPSVGAATTVASALDDVSGVVLPALAATGDAARATTYTADGRLELGPLAGAADDVTAARGVLTEAQAEVAEIDIAAVQPEFVDPVTMLSDQLGALGGLLEGAERATTLLPPMLGADEPRRYVLMSLTNAELRTAGGIPGALMLLEVDGGRVEVTRQVTTGEVGPFAEPVVELEPADVEAYSARLGRFVQDVTLTPDFATTGPITAEMWRRAQGEEVDGVLATDPVALSLLLEVTGPVDVRLPRDLVDAVGERTITLESSTVVDLLLRRAYEVLTPEQTDVFFAVVAGAVVEELTTTQVAPADLLPALEWIAERHRLLVWSADEEEQELLTGTLVSGTFAADRAADAVGMFLDDARIGKMTAYLDVQVELTGSECTAEGRLDTVSMRLENTLSDDQAATLPFYVAGPEDAANRGRQRVVLSTYGAREAGTPDVRRDGNLVGGTLQELHGRQVVGITVALDPGESTTIEATLPTTAAAARGSGTAEPGTLEVWSTPTATSRGLHVPEVPVCDGNANANANANA
AK018_03992723hypothetical proteinATGAGGACAGCCCGACGCGCGGCGGTGCGCGGGGCGGCGGCGACCGGGCTGGTCGGCGCACTGATGCTCGGCCCTGCCGCCGGGGCGCTCGCCGACACCGATCCGACGGACGACCCGTCGGCGTCGCCCTCGGAGACCGGCTACGACCCGGACACCCCGCCGACGCTGGAGTTCGAGGTCCTGACCCCGCTCTGCGACGGCGACGTGCCCTACCTGCAGTACGCCGTCGACGTCCAGAACCCGGAGATGCCCCCGACGGGCGTCACCATCACGTTCCTCAATCCCGGCGGGGAGGACTACGTGCTGACCGACCTGCCGCTGTCCGGCCGGGTGCTGTGGCCCGGTGCCGAGATCGACGACGACGGCAACCCCGTGGACTGGCCGGGCTGGAGCCTGGTCGACGGCGTCTGGGTCGTCGGCGACGAGTGGGACTGGGTGCGCCCCTCGGTGCAGGTGCTGTTCGAGGTCAACCCGGAGGCGACCACGAGCGTGGACTACCCGCCGTCGTCCCCGGACTGCGCCACGGACCCGCCCGGGGAGACGCCCCCGCCGAGCGACCCCCCGGGCGACCCGGCCACCGAACCCCCGGGCTCCACCGAGTCGACGCCGCCCTCGCTGCCGGCGACGGGTTCCGAGATCGCCGGGATGATCGCGATCGCGGCCGGGCTGCTGACGGCCGGCGTGCTCGCCGTCCTCGCCGTCCGCCGTCGTCGCTCCCAGTGAMRTARRAAVRGAAATGLVGALMLGPAAGALADTDPTDDPSASPSETGYDPDTPPTLEFEVLTPLCDGDVPYLQYAVDVQNPEMPPTGVTITFLNPGGEDYVLTDLPLSGRVLWPGAEIDDDGNPVDWPGWSLVDGVWVVGDEWDWVRPSVQVLFEVNPEATTSVDYPPSSPDCATDPPGETPPPSDPPGDPATEPPGSTESTPPSLPATGSEIAGMIAIAAGLLTAGVLAVLAVRRRRSQNANANANANA
AK018_039931845hypothetical proteinATGTCCGCACCACGACGAGGAGCTCGCCGCATCGCGGCCGCCCTCACCAGCGCCGCTGTCGTCCTGGCGGGCGCGCTCGGCACCGTCGCGGCGAGCAGCGCCTCGGCCGCCGAGACGTCCGCCGGGGACAGCGCCATCAACGGCTACCGCAACGTCGGCTACTTCACCCAGTGGGGCGTCTACGGCCGCGACTTCCAGGTCAAGGACCTGGTGACGTCGGGCGCCGCCGACCAGCTCACCCACATCAACTACTCCTTCGGCAACATCCACCACCAGAGCCTCGAGTGCTTCGTCGCGAACAAGGCCCAGGGCACCGGCCCGAACGGGTCCGACGGGGCGGGTGACGCCTGGGCCGACTTCGGCATGAGCTACTCGGCCGCGGACTCCGTCTCCGGCGTCGGCGACGTGTGGGACCAGCCGCTGGCGGGCTCCTTCAACCAGCTCAAGCAGCTCAAGGAGACCTACCCGCACGTCAAGGTCATGCTGTCCCTCGGCGGCTGGACCTGGTCGAAGAACTTCTCGCGGGCCGCTGCCACGCAGCAGTCGCGGGAGAACTTCGTCTCGTCGTGCATCGACCTGTACATCAAGGGCAACCTGCCCGTCATCGACGGTCGTGGGGGTCCCGGTGCCGCCGCAGGCGTGTTCGACGGCATCGACATCGACTGGGAGTGGCCCGGGTCGAACAACGGCCTCGAGGGCAACTACGTCGACGAGGAGAACGACGCCGAGAACTTCCGGCTGCTGCTGGCCGAGTTCCGGTCCCAGCTCGACGCCTACGGCACCGAGACGGGCGAGGACTACCTGCTGTCCGCGTTCCTGCCCGCCAACCCGGCGGACATTGCCGCCGGCGGCTGGAACGACCCGCGGATCTTCGACTCGCTCGACTTCGGCAACATCCAGGGCTACGACCTGCACGGCGCCTGGGACCCGACCCTGACGGGGCACCAGGGCAACCTGTACGACGACCCGGCCGACCCGCGCGAGCCGAGCCGCCAGTTCTCGGTCGAGAAGGCCGTCCAGGAGTACACGGGTGCGGGGATCGACCCGGCCCAGCTCGGTCTCGGCATGGCCATGTACGGGCGCGGGTGGAAGGGGGTCGACTCCGCCGACGCCTGGGGCACGGCGACCGACGCCGGCCCGGGCACCTGGGAGGCCGGCAACGAGGACTACGACATCCTCAAGAACCTCGGCACCGAGTACTACGACCCCGAGGTGGGGGCGGCGTGGCGGTACGACGGCGACCAGTGGTGGACGCTCGACACCCCGGACACCGTGGCGCAGAAGTCGCAGTACATCCGGGACACCGGACTCGGCGGTGCCATGTGGTGGGACCTGTCCGGTGACGAGGAGGCCGAGCTGCTCGACGCCGTCGACGCGGGCCTGTTCACCGGTCCTGCGGGACCGGTGACGGTCCCGGACCAGCCGGACCCGACGCCGGAGCCCACCACGGACCCGACGACCGATCCGACGCCGGACCCGACCACCGACCCGGGCGACTGCTCGGCGGAGGCCTGGACGGCCGGCTCCTACAGCGGCGGTGCCGTCGTCGCCCACGAGGGCCACGAGTGGGAGGCCAAGTGGTGGACCGTCCAGGAGCCCTCGGCGGGCGCCACCGAGTGGACGGACCTGGGGGCGTGCGGCGCCCCGGACCCGACGGCGTCCCCCGAGCCGACCGACCCTCCGCAGCCGGGTGAGTGCTCGGCCGCGGCCTGGACGGCGGGGTCGGCGTACTCCGGCGGTGCCGTCGTCGCGCACGCCGGTCACGAGTGGCGTGCCAAGTGGTGGACGCAGGACGAGCCCGCCACCAGCCAGTGGGGTGCGTGGGAGGACCTCGGCGCCTGCTGAMSAPRRGARRIAAALTSAAVVLAGALGTVAASSASAAETSAGDSAINGYRNVGYFTQWGVYGRDFQVKDLVTSGAADQLTHINYSFGNIHHQSLECFVANKAQGTGPNGSDGAGDAWADFGMSYSAADSVSGVGDVWDQPLAGSFNQLKQLKETYPHVKVMLSLGGWTWSKNFSRAAATQQSRENFVSSCIDLYIKGNLPVIDGRGGPGAAAGVFDGIDIDWEWPGSNNGLEGNYVDEENDAENFRLLLAEFRSQLDAYGTETGEDYLLSAFLPANPADIAAGGWNDPRIFDSLDFGNIQGYDLHGAWDPTLTGHQGNLYDDPADPREPSRQFSVEKAVQEYTGAGIDPAQLGLGMAMYGRGWKGVDSADAWGTATDAGPGTWEAGNEDYDILKNLGTEYYDPEVGAAWRYDGDQWWTLDTPDTVAQKSQYIRDTGLGGAMWWDLSGDEEAELLDAVDAGLFTGPAGPVTVPDQPDPTPEPTTDPTTDPTPDPTTDPGDCSAEAWTAGSYSGGAVVAHEGHEWEAKWWTVQEPSAGATEWTDLGACGAPDPTASPEPTDPPQPGECSAAAWTAGSAYSGGAVVAHAGHEWRAKWWTQDEPATSQWGAWEDLGACPGPT0012130_1789DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_CHITIN_DEGRADATION,PGPT0012130-chiA|chtA|chiI-K01183NANA
AK018_039942559endo IChitodextrinaseATGCGATCACCCACACCGAGCCGACGCCGACCGGTCGCGGCCGCGACCGCCGTCGTGCTCGCCGCGAGCGGCCTCGTCGCCGTCGCTGCCGGCCAGACCGCCTCGGCCGCCGTCGAGTGCGCCGACCCCTGGGCCGCGAGCACCGTCTACACCGGCGGCGACATCGCCTCCTACGACGGGCAGAACTGGACCGCCGGCTGGTGGACCCAGGGCGAAGCACCCGGCTCCTCGGCCTGGGGCGCCTGGACCAGCGACGGGGCCTGCGGGACCTCGACGCCGGAGCCGACGGCCGAGCCCACCGGTGAGCCGAGCCCCGAGCCCACGACCGAGCCCACCACCGACCCGGGCGAGCCGATCTCCACCAACCCCGACGACGTCTGCCGCCCGGACGGGATGAAGCCCACCGCCGGCGTCGACACGCCGTACTGCGACGTCTATGACGCCGACGGTCGCGAGATCCTGCCCAACGGGCTCGACCGGCGCGTCATCGGCTACTTCACGAGCTGGCGCACCGGCGCGAACGAGCAGCCCAGCTACTTCGCGAGCGACATCCCGTGGGACAAGATCTCGCACATCAATTACGCGTTCGCCCACGTCGGCCCGGACAACAAGGTGTCGGTCAACGAGGACGTCGCGGGCAACCCCGCCACCGACGCCACCTGGCCCGGCCAGGAGATGGACCCGTCGCTGCCGTACACGGGCCACTTCAACCAGCTCGCCAAGTACAAGGCCGAGAACCCCGGCGTCAAGGTGATCCCCGCCGTCGGCGGCTGGGCCGAGACGGGCGGCTACTTCGACGGCGAGGGCAACCGCGTCGCCTCGGGCGGCTTCTACACGATGACCGAGACGCAGGAGGGCATCGACACCTTCGCCGACTCCGTCGTCGACTTCGTCCGCGAGTACGGGTTCGACGGCATCGACATCGACTACGAGTACCCGACGTCGAACAACAACGCCGGCAACCCCGACGACTTCGCGTTCTCCGACGCGCGCCGCGGCGAGCTGTTCGCCGGGTACGTCGACCTGATGAGGACGCTGCGCGAGAAGCTCGACGTCGCGGGCGCCCAGGACGGCGAGTACTACCTGCTCACCACCGCGTCGCCGTCGTCCGGCTGGCTGCTGCGCGGCATGGAGGCCCACCAGGTGGTGCAGTACCTCGACTACGTCAACCTCATGTCCTACGACCTGCACGGGGCGTGGAACGAGTACGTCGGCGGCAACTCGCCGCTGTTCGACGGCGGGGACGACCCCGAGCTCGCCGCCGGGGGCGTCTACACCGCCTACGACGGCGTCGGTTACCTCAACGGCGACTGGGCCGCCCACTACTTCCGCGGCGCCATGCAGTCCGGCCGGATCAACCTCGGCGTCGGCTTCTACTCGCGCGGCTTCCAGGACGTCCAGGGCGGCACCTTCGGCGACGGCGGCCGGGCGCCGGCACCTGCCGGGTTCAGCTGCCCCGCGGGGACCAGCGGCAAATGCGGGTACGGCGCCGACGGCATCGACAACCTGTGGCACGACACCGACCCGCAGGGCGCGGAGATCCCGGCCGGCGCCAACCCGATCTGGCACCTGCTCAACCTGGAGGACGGTGTCGTCGGCGACTACGCCGCGTCCTACGGCGTGCCCACCACCATCGAGGGCAGCTACGAGCGGCACTTCGACGAGGTGACCAAGAACGAGTGGTGGTGGAACGAGGCCACCAGGACCTACCTGTCCGGTGACACGGCCCAGGCCATAGGCGCCAAGGCCGACTACGTCGTCGACTCCGGGCTCGGCGGCATGATGATCTGGGAGTTCGCCGGCGACTACGGCTACGACGAGGCCGCCGGGCAGTACGGGATCGGCTCCACGATGGTCGACCTCATGCACTCCAAGCTCGCCGGTGCTGCGCCCTACGGAGCCACCAAGGCGAACGCCGACCGGCCGATGCCCGACCAGGCGCTCGACCTGAGCATCGACTACACGGAGTTCGCCCTCGGGGACAACAACTACCCGATCGCCCCGAAGGTCGTGTTCACCAACCACGGGGCCACCGACATCCCGGCGGGCGCGACCGTGTCGTTCCAGTACGGCACCAGCGACCTCGGCGAGATGAGCGACTGGTCCGGCTACGGCACCACGACCACCCGCCAGGGCCACACCGGGGACAACGTCGGCGGCCTGACCGGCGACTTCCACGACGCGGAGTTCACCGTGCCGACCGGGGGCATCCCGGCCGGCGGGTCCATCACGAACCACCTCAAGTGGACCCTGCCGATCGCGCAGTTCTCCAACGTGATCGTCACCGTCGACGGCGTCGACTACGCGACCACCTACGACCAGCCGCGCGGCGTGACCGTCGTCGACCTACCCGCCGGCTCCCGCTCCGGCGGCGGTTCCGGCGACGGCGGCGGCCCGGCGGACGGCACCGCGTGCGAGGCCGCGGCCTGGGTCGCGGGCACGGCCCACACCGGCGGGGCCGCCGTGACCCACGCCGGCCACGCGTGGACCGCGAAGTGGTGGACCCAGGCCGAGCCCGCGGCGAGCGCCGATGCCTGGACCGACGAGGGGAGCTGCTGAMRSPTPSRRRPVAAATAVVLAASGLVAVAAGQTASAAVECADPWAASTVYTGGDIASYDGQNWTAGWWTQGEAPGSSAWGAWTSDGACGTSTPEPTAEPTGEPSPEPTTEPTTDPGEPISTNPDDVCRPDGMKPTAGVDTPYCDVYDADGREILPNGLDRRVIGYFTSWRTGANEQPSYFASDIPWDKISHINYAFAHVGPDNKVSVNEDVAGNPATDATWPGQEMDPSLPYTGHFNQLAKYKAENPGVKVIPAVGGWAETGGYFDGEGNRVASGGFYTMTETQEGIDTFADSVVDFVREYGFDGIDIDYEYPTSNNNAGNPDDFAFSDARRGELFAGYVDLMRTLREKLDVAGAQDGEYYLLTTASPSSGWLLRGMEAHQVVQYLDYVNLMSYDLHGAWNEYVGGNSPLFDGGDDPELAAGGVYTAYDGVGYLNGDWAAHYFRGAMQSGRINLGVGFYSRGFQDVQGGTFGDGGRAPAPAGFSCPAGTSGKCGYGADGIDNLWHDTDPQGAEIPAGANPIWHLLNLEDGVVGDYAASYGVPTTIEGSYERHFDEVTKNEWWWNEATRTYLSGDTAQAIGAKADYVVDSGLGGMMIWEFAGDYGYDEAAGQYGIGSTMVDLMHSKLAGAAPYGATKANADRPMPDQALDLSIDYTEFALGDNNYPIAPKVVFTNHGATDIPAGATVSFQYGTSDLGEMSDWSGYGTTTTRQGHTGDNVGGLTGDFHDAEFTVPTGGIPAGGSITNHLKWTLPIAQFSNVIVTVDGVDYATTYDQPRGVTVVDLPAGSRSGGGSGDGGGPADGTACEAAAWVAGTAHTGGAAVTHAGHAWTAKWWTQAEPAASADAWTDEGSCPGPT0012130_646DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_CHITIN_DEGRADATION,PGPT0012130-chiA|chtA|chiI-K01183NANA
AK018_039951602hypothetical proteinATGACCTCGGACCGGTCCGCCGACCCGCTCCCCCTGCTGGTCGAGACGACCGGCCTGCCCGTGGCCCCGCACGTCGCGCGGCGGCTCGCCCGGCAGGTCTCCGGCGACCCGGCGGCTCTCCTGCAGCTGGCACCGCTGCTCGGCCCCGAACGTCTCGCGGGGCGCGCCCCGCTGCCCGACCCGCTGCCCGCGGTCCCTGCTTTGCGCGACGCCGTCGCGGTGCCCGCCTGCCCCGAGGCGCGCCGGCTGCTGCGGTGCGCGGTGCTCGCGGTCACGGCCCGCGCCGACGTGCTCCTGCCGGCCGCCGACGGAGACGTCGCTCTTCTGCGCGAGCCCGCCGTCGCCGCCGCCCTGCACGTGCACGAGGGGCGGTTCCGGCTGCGCGACGCGCGGGTGCGCGCCGTCGTGCACGCCGCCAGCGACCTGGACGAGCGCACCGCGGCCCACGCCGCGCTCGCCGCCGCCGCCCGCGCGGTCGGCGAGCCCGGCGTCGCCCTGTGGCACACGGCCCGCCGGGTCCTGACCGGGGACGAGCTGCTGGCCGACGGCCTGCTCGAGCTCGCCGAGGTGCTGCTCGGCCGCGGCGACGTCGAGGCTGCCCTCGGCGTCGCCCGGGAGGCCACCTCCCACGGGTCCGGGGAGCGGCGCGCCCGCGCCTTCCTCGCCGCCGGGCGTGCCGCGCTGTGGTGCGGTTACCCGGCGGAGGCCCGGGGATGGGCGCGCCGGGCGCGCGGGTGCGGCGTGGTGGCCGTAGAGCGGGGCGCCGAGGCCGTCGCGGCGGCCGTGGAGGCGCTCGACGGCGGTCCCGTCGCGGGCGGGTCGGGGCCCGGCGCCGTGCTCGCGCGCCTCGTCGAGCCGGCACTCACCGTCGCCGTGTCACCGCAGGACCGTGCGGCGCTGCGCGCCGTGGTGGACGCGCTGGTCGGCGTCGAGGTCGACCTGGGTGCCGCCGACGCGCTGCTCGGGCGCGCCGTGGCGGCGGCCCGGCCCAGCCTGGAGCGACCGGGGCCGTGGACGGGTGTGCCGGGTGCCCTGTCGCCGCTCGCCGAGGCGCACCTGCGCGTCGCCCAGGCGCTGCTCCTGGCCTGCGCCGGCGAGACCACCGGGGCGACCGGCGTGCTGCAGGACGCCGTGGTGCGGCTGCCGGTGCCGACGGTCGCGCGCGGACTGGGTGCGGCGGTGGCGCTGCAGCTCGACCACGAGCGTCGGGCCGGGCCGTCGGTGTCCACGCTCGCGCTGCAACGGGTCGCGTCCACGGCCCCGGAGGTCGCCGCCGCGGTGGCCGCCCTGGTCCGGATCACGATGGCGTCGGCCTCCGTGCCCGGTGAGGCGGGGGCACCCGCGCTGGCCGCGGACGTCGCACGCCAGACGGGTCGACGTGCCGCGGGCGGGGGCGCGCCGACGTGGTCCGGCGACCTCACGGCCCGCGAGGTCGAGGTGGCGACGCTCGTCGCCGACGGGCGCACGAACCGGGAGGTGGCCGAGGAGCTGTGCGTCTCGGTCCGCACCGTCGAGGTCCACCTGGGCCGGGTCTACCGCAAGCTCGGCGTGCGGTCGCGCGCCGAGCTGGTGGTGCGCGCCCTGCGCTCGCCGTCGCACTGAMTSDRSADPLPLLVETTGLPVAPHVARRLARQVSGDPAALLQLAPLLGPERLAGRAPLPDPLPAVPALRDAVAVPACPEARRLLRCAVLAVTARADVLLPAADGDVALLREPAVAAALHVHEGRFRLRDARVRAVVHAASDLDERTAAHAALAAAARAVGEPGVALWHTARRVLTGDELLADGLLELAEVLLGRGDVEAALGVAREATSHGSGERRARAFLAAGRAALWCGYPAEARGWARRARGCGVVAVERGAEAVAAAVEALDGGPVAGGSGPGAVLARLVEPALTVAVSPQDRAALRAVVDALVGVEVDLGAADALLGRAVAAARPSLERPGPWTGVPGALSPLAEAHLRVAQALLLACAGETTGATGVLQDAVVRLPVPTVARGLGAAVALQLDHERRAGPSVSTLALQRVASTAPEVAAAVAALVRITMASASVPGEAGAPALAADVARQTGRRAAGGGAPTWSGDLTAREVEVATLVADGRTNREVAEELCVSVRTVEVHLGRVYRKLGVRSRAELVVRALRSPSHNANANANANA
AK018_03996426dtd_2COG1490D-aminoacyl-tRNA deacylaseATGCGCGCCGTGATCCAGAGGGCGCTCGGCGCGGGCGTCACGGTCGACGGCGAGGTGGTCGGCGGCTTCGACGGGCCTGGCGTCGTCGCGCTCGTCGGGGTGACGCACGACGACGGGCCGGACGACGCCGCCACGATCGCACGAAAGATCGCCGACCTGCGGATCCTGCGCGGGGAGCGGTCGGTGAGCGACGAGGGCGCGGCGGTGCTGGTGGTCAGCCAGTTCACGCTGTACGGCGACGCCCGCAAGGGGCGCCGTCCCACCTGGCAGGCGGCGGCACCGGGCCCGGTGGCCGAGCCGCTGGTCGACGCGGTGGTCGCCGACCTGCGGGGGCGCGGGCTGGACGTCTCGACCGGCGTGTTCGGCGCCGACATGGCCGTTCACCTGGTCAACGACGGTCCCGTGACTATTATGTTGGAGACCTGAMRAVIQRALGAGVTVDGEVVGGFDGPGVVALVGVTHDDGPDDAATIARKIADLRILRGERSVSDEGAAVLVVSQFTLYGDARKGRRPTWQAAAPGPVAEPLVDAVVADLRGRGLDVSTGVFGADMAVHLVNDGPVTIMLETNANANANANA
AK018_039971011hypothetical proteinATGGTGAGCGCGCCGGTCGTCGCGGGGGCCGTCCCGCTCGCGGCGGTGGTCCGCGGGGACCTGGTGGAGTCGGTGCACCTGGGTCACCTCGTCGTGCTCGACCCCGCCGGTGACGTCGTCCTCGCCGCGGGGGACCCGGACGTCGAGATCTGGCCGCGGTCGTCCCTCAAGCCGGTCCAGGCCGTCGCGATGCTGCGCGCGGGTCTCGACGCGCCGGCGCGGCACGTGGCGCTCGCGGCCGCCAGCCACGACGGCACGCCCGAGCACGTGGCCCTCGCCGGGGAGATCCTGGCGGGTGCCGGGCTCGGGCCGGCCGACCTGGCGAACACGCCGGACCTGCCGCTGGACCCGCAGGCCGCCGCGGCCGTCCGCGCCGCGGGGCGCGGCCCGGACCGCCTGACCCAGAACTGCTCGGGCAAGCACGCGGCCATGCTCGCCACCTGCGTGGCGGCCGGCTGGCCCACGGCCGGGTACCTGGAGCCGACCCATCCGCTGCAGGAGGCGGTGCGGGCCGCGGTGGTCGAGCTCGCCGGACCGGGTGCGGCCGGGCACGTCACCGTGGACGGCTGCGGCGCCCCGCTGTTCTCGACGACGCTGTGCGGCCTGGCCCGGGCGTTCGCGCGGACGGCCGGTGCGCCGGACGGCACGCCGGAGGCCCGCGTGGCGGGCGCGATGTCGGTCCACCCGGAACTGGTGGGCGGTCGGCGCCGGGACGCGACCCTGGCCATGCGGGCGGTCCCCGGCCTGGTGGCGAAGGACGGGGCGGACGGCGTCTACGCGGCCGGGCTGCCCGGTGGTGCCGCGCTCGCGTTCAAGGTGCTCGACGGCGCGTCCCGGCCGCGGCCCGCCGTGCTCGGCGCGGCGCTGCGGATCGCCGGGGCGCTGGACGTGCCGGGCGTGGACGGCGCCGCACTGGAGGCGATGGCTGCGACGCCGGTCGAGGGCGGGGGTCGGCCGGTCGGCGTGGTCCGGGCCGCGTTCGCGCCGCGGGAGGCAGCATGCGCGCCGTGAMVSAPVVAGAVPLAAVVRGDLVESVHLGHLVVLDPAGDVVLAAGDPDVEIWPRSSLKPVQAVAMLRAGLDAPARHVALAAASHDGTPEHVALAGEILAGAGLGPADLANTPDLPLDPQAAAAVRAAGRGPDRLTQNCSGKHAAMLATCVAAGWPTAGYLEPTHPLQEAVRAAVVELAGPGAAGHVTVDGCGAPLFSTTLCGLARAFARTAGAPDGTPEARVAGAMSVHPELVGGRRRDATLAMRAVPGLVAKDGADGVYAAGLPGGAALAFKVLDGASRPRPAVLGAALRIAGALDVPGVDGAALEAMAATPVEGGGRPVGVVRAAFAPREAACAPNANANANANA
AK018_03998327hypothetical proteinGTGTTCGGGACTCTTCAGGAGATCGTCTTCATCATCCTGGCGGTGATCGTGTTCGCCGTCCAGGCCTACGCCCTGGTCGACGCGCTGCGACGCCCTGCCGCCGGGTTCACCGCCGAGGGCAAGCTGTCCAAGCCGATCTGGCTGATGATCCTCGGCGTCGCCACGGCGCTCGGGTTCCTCGGGCTGCCGCCGATGATGCTGACGTCGTACAGCTTCCTGAACCTCATCGCCGTCGTTGCCGCCATCGTGTACCTGGTCGACGTGCGCCCCCGGCTGCTGTCCTACGGCACCGGGCGCGGACGGTCCCGGGGCCCGAGCGGATGGTGAMFGTLQEIVFIILAVIVFAVQAYALVDALRRPAAGFTAEGKLSKPIWLMILGVATALGFLGLPPMMLTSYSFLNLIAVVAAIVYLVDVRPRLLSYGTGRGRSRGPSGWNANANANANA
AK018_03999423Ribonuclease VapC49ATGGCTCTCGTCTACTTCGACGCCAGCGCCCTGGTCAAGCTCTGCGTCCCGGAGGCGGGCACGGACCTGGCCGGCGCGCTGTGGAACCGGGCCGACGTCGTCGTCACGTCGTGCCTGTCCGACGTCGAGCTGCGCGCCACCCTGGCCGCGGGGGAGCGGGCCGGCGTGCTCGACCCCGCCGGGCACCGCCGCGCCGTCGAGCGGTGGTCGCGGTTCTGGCCCGCCCTGCACCGCGTCGAGGTGACCGAGTCGCTCGCCCAGCAGGCGGCCGGCCTCGCCGCCGGGACGCACCCGCTGCGCGGCGCCGACGCGGTGCACCTGGCCGGTGCGCTCGCCGTCGCGCAGGAGGACACGATCCTCGCCGCCTGGGACGAGCGGGTCGCCGCCGCCGGCCGGTCCCACGGGCTGCGCGTGCTGCCGTAAMALVYFDASALVKLCVPEAGTDLAGALWNRADVVVTSCLSDVELRATLAAGERAGVLDPAGHRRAVERWSRFWPALHRVEVTESLAQQAAGLAAGTHPLRGADAVHLAGALAVAQEDTILAAWDERVAAAGRSHGLRVLPPGPT0027605_692DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-VapC-VapB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027605-toxin_vapC_like-K07064NANA
AK018_04000291hypothetical proteinATGGACGTCCCCGTCAGTACGCTGCGCGCCGAGCTGAAGTCGTGGATCGAGCGGGCCCGCGCGGGCGAGGAGGTCGTCATCACCGACCGGGGCGTGCCCGTGGCGCGGCTGACCGGGGTGCAGAGCGCCGACCTGCTCACGGACCTGGTCCGCCAGGGCCTGATCACGCCGGCGCAGGTGTCCCGCCCGGAGCACGTGGCGCCGACGACGGCGGAGGTCGCCGGGGCGGGCAACGGCGCGGCGCGCACGGGGTCGGGCCTGTCGAACCTCGTCCGCCGCATCCGCCGCTGAMDVPVSTLRAELKSWIERARAGEEVVITDRGVPVARLTGVQSADLLTDLVRQGLITPAQVSRPEHVAPTTAEVAGAGNGAARTGSGLSNLVRRIRRNANANANANA
AK018_040012010mdtD_3Putative multidrug resistance protein MdtDGTGACACCGCAGACCACCGACCCGCAGGCCCTGCCGCAGCGCAAGATCTGGGCGATCTTCGCAGGGCTCATGCTCGGGATGCTGCTCGCGGCCCTCGACCAGACCATCGTCGCCACCGCGCTGCCGACCATCGTCAGCGACCTCGGCGGTGCCGAGCACCTGTCCTGGGTCGTCACCGCCTACATGCTCGCCACGACCGCCACGACCGTGCTGTGGGGCAAGCTCGGCGACCTGCTCGGACGCAAGCTCCTGTTCATCGTGTGCATCCTGATCTTCCTCGTCGGATCGATGCTGTGCGGCACGTCGGGCACCATGGGCGAGCTCATCGCCTGGCGGGCCTTCCAGGGCATCGGCGGCGGCGGGCTGATGGTGCTCAGCCAGGCGATCGTCGGCGACGTCGTGTCCCCGCGCGAGCGCGGCAGGTACCAGGGAATCTTCGGCGCGGTCTTCGGCGTGTCCTCCGTGGCGGGCCCCCTGCTGGGCGGCTGGTTCGTGGACAACCTGTCCTGGCAGTGGGTGTTCTACATCAACGTGCCGATCGGCGTCGTGGCGCTGGTCGTCGTCGCGACGGTGCTGCCCTCGGTCCGGCCCGGGACCTCGCCGCGCATCGACTACGCGGGGATCGTGCTGCTGGCGGTCATCTCCACGGCGATCGTCCTGGTGACCAGCCTGGGCGGCACCACGTGGGGCTGGGACTCGGTGCAGGTGTACGGCATGGTCACGCTCGCCGTCGTCGCCGTCGTGGCCTTCCTGCTCGTGGAGCGGCGGGTGCCCGAGCCGGTGCTGCCGCTGCACCTGTTCCGCAACAAGGTGTTCTCCGTCGCGGCGGTCGTCGGGTTCGTCGTCGGGTTCGCGATGTTCGGCGCCATCACCTACCTGCCCCTGTACCTGCAGACCGTCAAGGGCTCCTCGCCGACGACGTCCGGCCTCGAGATGACGCCGATGATGCTCGGGATGCTGATCACGTCGATCGGGTCGGGACAGCTCATCACCCGCACGGGCCGGTACAAGGTCTTCCCCGTGATCGGGACGCTGGTGACGTCCGGCGGGCTCTTCCTGCTGTCCCTGATGGACCGCGACACCTCGACCCTGCAGGCCGGCCTGAGCATGTTCGTGCTCGGCGCGGGCCTCGGCATGGTCACCCAGGTGCTGGTCATCGCCGTGCAGAACGCCGTCGCCTACCGCGACCTGGGCACCGCGACGTCGGGCGCCACCTACTTCCGCACCATCGGGTCGGCGGTCGGCGTGGCCGCGTTCGGCACGATCTTCGCCAACCGGCTCGCCGCCAACCTCACGGCGTCCCCGCCGGCGGACGCGACGGGCCCGTGCGCGCCCGACGCCCTCGAGGCGTCGGTGGAGGGCCTGGCGCAGTGCTCGCCCGAGGTCCAGGGCTGGTTCCTCGACGGCTACGCCGACACGCTGCAGACGGTGTTCCTGTGGGCGGTGCCGGTCGCGCTCATTGCGTTCGCCCTGTCCTGGCTGCTGCCGCAGGTCGAGCTGCGCACCGCGACGCGGGACGCCGAGCCCGTCGCCGCCGCCGGTCAGGCCGCGGGCGAGACGTTCGCCCTGCCGTCGAGCCGCACCTCGCTCGAGGAGCTGCGGCTGATCCTGTGGCGGCGCGTCGGCGCCCTGGACCCCCTGCTCGTGTACGAGTCCACCGCGGCCGACGCCGACCTCGCGCCCGAGGAGGCGTGGATGGTCACGCGGGTCTCGCTCAAGCGGCACCGGGAGATCACGGTCATGGCGGAGCGCAGCGGGGCGACGCCCGTGACGGTGCGGCACGTCGCGGAGGGACTGGCGGCACGCGGGCTGGTCCGGCTCGAGGGCGAGACCGTCGTCGCGACGGACCAGACCGACGTCGCCGCGGAGATCCTGCGCGAGAGCGAACGCCGTCGCCTGCAGTCGATCGTGCGCGAGTGGCCCGGTGCCGAACCCCAGATCGACGACATCGCCGCCGAGATCGACCGGCTGCTGCACAACACCGCGCACGACACCCCCGCCACCCCCTGAMTPQTTDPQALPQRKIWAIFAGLMLGMLLAALDQTIVATALPTIVSDLGGAEHLSWVVTAYMLATTATTVLWGKLGDLLGRKLLFIVCILIFLVGSMLCGTSGTMGELIAWRAFQGIGGGGLMVLSQAIVGDVVSPRERGRYQGIFGAVFGVSSVAGPLLGGWFVDNLSWQWVFYINVPIGVVALVVVATVLPSVRPGTSPRIDYAGIVLLAVISTAIVLVTSLGGTTWGWDSVQVYGMVTLAVVAVVAFLLVERRVPEPVLPLHLFRNKVFSVAAVVGFVVGFAMFGAITYLPLYLQTVKGSSPTTSGLEMTPMMLGMLITSIGSGQLITRTGRYKVFPVIGTLVTSGGLFLLSLMDRDTSTLQAGLSMFVLGAGLGMVTQVLVIAVQNAVAYRDLGTATSGATYFRTIGSAVGVAAFGTIFANRLAANLTASPPADATGPCAPDALEASVEGLAQCSPEVQGWFLDGYADTLQTVFLWAVPVALIAFALSWLLPQVELRTATRDAEPVAAAGQAAGETFALPSSRTSLEELRLILWRRVGALDPLLVYESTAADADLAPEEAWMVTRVSLKRHREITVMAERSGATPVTVRHVAEGLAARGLVRLEGETVVATDQTDVAAEILRESERRRLQSIVREWPGAEPQIDDIAAEIDRLLHNTAHDTPATPNANANANANA
AK018_040021134hypothetical proteinGTGAGGACGCCGGACCCCCGTGAGGCCGGGGCCGCCGCCGGGGCGGCGGTCGGCACCCTCCTGCGGCGCATCCGGAGGCGGCAGGGGCTCTCCCGCCTCCGTACCGGGTTCTGGCCCATCGTCCAGGCCTCGCTCGCGGCCGGCGCCGCCTACCTGCTCGCCCAGGTGCTGCTCGGGCACACCCAGCCGTTCTTCGCCGCCGTCGCCGCCTGGGTGTGCCTGGGGTTCTCGTTCGACCGCGAGCTGCGGCGGGTCGCGGAGGTCGCGATCGGCGTCGCCGTCGGGGTGGGCATCGGTGAGCTGATCGTCGAGCTCATCGGCACCGGGTGGTGGCAGCTCACCGTCGTCCTGCTGCTGTCCGCGCTGCTCGCCCGGTTCATCGACCGCGGGCCGCTGCTGGTCACCCAGGCCGGCGTCCAGGCGATCGTGGTGGTCGGGCTGCCGGCCGCCGTCGCGCACGACGGCGCGTTCGGCCGGTGGACCGACGCCGCGATCGGCGGGCTCGTGGCGCTCGCCGTCACGCTGCTGCTGCCCAGCGACCCGCTGCGCCGGCTGCGCTCCCTGGCGCTCGAGGCCACGACGGAGCTCGCCGAGACGCTCGAGTCGATCGCCCGCGGGCTGCGGGCCGGGGACGTCGACGAGCTCGGGTCGGCACTGGTGCGCGGCCGGGCCTCGGAGACCGTGCTCGCCGACTGGCGGGACACCGCGCGCAAGGCCGAGGAGATCGCCCGCGTCGGGGTCAACCGCGGGCAGCGCAAGGACATCCACGCCCTCGTCGAGCAGGCCGTGCTCGTGGACCGGGCCATGCGCAGCGTGCGGCTCATGGCCCGGCGCGCCCCGACCGTCGTCGGACCGGACGGCACCTGGCCGGACGTCGCCGCGCTCACCGACGAGGTGGCGCGGTTCGCCGGCGGGGTGCGGCTGCTGGCGTCCGCCGTCGGCGGGGGCGGGTCGTTCGACGAGGCGCGGTCCCTGCTGGGGGAGGTCGCCGCCGCTGCCGACCCGCACGTGGTCGGCGGCGGGGACCTGCGGGTCGCGTCGCTCGCCGTGCTGATGCGGGCCCCGCTGGTGGACACCCTCGAGGCGGCCGGCGCGGAGCCGCGTGCCGCCCGCGAGTCGCTCCCCGAGCTCTGAMRTPDPREAGAAAGAAVGTLLRRIRRRQGLSRLRTGFWPIVQASLAAGAAYLLAQVLLGHTQPFFAAVAAWVCLGFSFDRELRRVAEVAIGVAVGVGIGELIVELIGTGWWQLTVVLLLSALLARFIDRGPLLVTQAGVQAIVVVGLPAAVAHDGAFGRWTDAAIGGLVALAVTLLLPSDPLRRLRSLALEATTELAETLESIARGLRAGDVDELGSALVRGRASETVLADWRDTARKAEEIARVGVNRGQRKDIHALVEQAVLVDRAMRSVRLMARRAPTVVGPDGTWPDVAALTDEVARFAGGVRLLASAVGGGGSFDEARSLLGEVAAAADPHVVGGGDLRVASLAVLMRAPLVDTLEAAGAEPRAARESLPELNANANANANA
AK018_040031179gcvT_3AminomethyltransferaseATGACGTACCGCAGCCCCCTCCTGGACCGCACCGGCGCCGTCGCCGCCACCGGACCGGACGGCGGTGTCGCCTGGCACTACGGCGACCCGGTGGCCGAGCAGCGCGCGCTCGCCCGCGGCGGTGCCGTCGTCGACCAGTCCCACCTGGGCGTGGTCCGGCTGACCGGCCCGGACCGCCTGTCGTGGCTGCACTCCATCACCTCCCAGGACGTCGAGCACCTGGCTCCGCGCGCCTCGACCGAGCTGTTCGTCCTGTCGCCGCAGGGCCGGCTCGAGCACGCCCTCGCCACGGTCGACGACGGGACCTCGACCTGGTTCGTCACCGAGCCCGACCACGTGGAGCCGCTGGTCGCCTGGCTCGAGCGCATGAAGTTCATGATGCGCGTCGAGATCGAGGACGTCACCGCGCAGTACGCGGCGCTCGGTGAACCCGTCGACGCCGAGGGCACCGAGACCGAACCGGTCACGTGGCGCGACGCCTGGCCGCACGTCGTCGGCGGCGGCACCCGCTACGGCCCGCCCGCCGAGGAGCACCCGGGCGCCGACCGGCCCTGGCGCCTCGTCCTCGTGCCGCGGGAGACGCTGGCCGACGCCGTCGCCGAGCGGGAAGCCGCCGGCTGGCGGCTCGCCGGGACGTGGGCCTCCGAGGCGCTGCGCGTCGAGGCATGGCGCCCCCGCCTGGCCCGCGAGGTCGACGACCGCACCGTCCCGCACGAGCTCGACTGGCTGCGCACCGCCGTGCACCTGCACAAGGGCTGCTACCGCGGCCAGGAGACCATCGCCCGGGTGCACAACCTCGGCCGGCCCCCGCGACGCCTCGTGATGCTGCACCTCGACGGCTCCCAGCACGTGGTGCCCGACGCCGGCGCCGAGGTCCGTCGCGACGGTCCGGACGGCAAGGTGGTCGGCACCGTCACCACGGTGGCCCGGCACCACGAGCTCGGACCGATCGCGCTCGCCGTCGTCAAGCGGAACGTGCCCACGGACGTCGAGCTCGCCGTCGTCGGCCAGATCGGCGCCGGCCCGGGCGACACGGCGGCGCAGCAGATCGCCGTCGCCGCCGCCCAGGAGGTCGTGGTGCCCGGCGACGGCGTCTCCGCCGACCGGCCCGCCGGACGGGGCGAGACGATGCGGGGCCTGACCCCACGCGGTGGCGACGGGGCGCAGAGCCTGCTGTGAMTYRSPLLDRTGAVAATGPDGGVAWHYGDPVAEQRALARGGAVVDQSHLGVVRLTGPDRLSWLHSITSQDVEHLAPRASTELFVLSPQGRLEHALATVDDGTSTWFVTEPDHVEPLVAWLERMKFMMRVEIEDVTAQYAALGEPVDAEGTETEPVTWRDAWPHVVGGGTRYGPPAEEHPGADRPWRLVLVPRETLADAVAEREAAGWRLAGTWASEALRVEAWRPRLAREVDDRTVPHELDWLRTAVHLHKGCYRGQETIARVHNLGRPPRRLVMLHLDGSQHVVPDAGAEVRRDGPDGKVVGTVTTVARHHELGPIALAVVKRNVPTDVELAVVGQIGAGPGDTAAQQIAVAAAQEVVVPGDGVSADRPAGRGETMRGLTPRGGDGAQSLLNANANANANA
AK018_04004558hypothetical proteinATGCCCTTCGTCTTCCCCGAGGGCCTCGCGCCCGAGGTGTACCCGCTCGCCTGGCTGGTCGGCCGGTGGACGGGCGCCGGTGTCATCAAGTACGAGGGCATCGACGAGACCCCGTTCCGCCAGGAGCTCGTCTTCGACCACGACGGCGGGCCCTACCTGCGCTTCGAGTCGACCTTGCGCGTCCGCTCCGTGGCCGCGGGCGACGGCGAAGCCGACGACTCCGCCTTCGACACCGTGTGGTCCACCGAGACCGGCTACTGGCGCGTCGCCCCGGACCGTCCCGAGGACCTCGCCGAGAGCCAGCACCCCCTCGAGGTGCTCGTCACGGACGCGTCGGGCCGGGTCTCCCTGTTCCTCGGCATGGTGGGCGACGGTCGCGTGGACCTGGCCACCGACTTCGTGGCCCGCACCTCCACCGCCGCCGAGGTCACCGCCGCCAAGCGCCTGTACGGCAACGTCGAGGGGCGGCTGCTGTGGGTCGAGGAGCTCGCCGCCTTCGGGCACCCCCTGGGCTCCTACGCCTCCGGCGAGCTCGACCGGGCCGACGCCGACTCATGAMPFVFPEGLAPEVYPLAWLVGRWTGAGVIKYEGIDETPFRQELVFDHDGGPYLRFESTLRVRSVAAGDGEADDSAFDTVWSTETGYWRVAPDRPEDLAESQHPLEVLVTDASGRVSLFLGMVGDGRVDLATDFVARTSTAAEVTAAKRLYGNVEGRLLWVEELAAFGHPLGSYASGELDRADADSNANANANANA
AK018_04005114hypothetical proteinATGTCGATCCACGCGCTCGAGATCTTCTTCACCAGCCTCCTGGTGGCCGCCGTCGTGACCATCACCTGGTTCGCGGGCTACGTCGTCTACAAGCTGTTCCAGGGTCAGCGCTGAMSIHALEIFFTSLLVAAVVTITWFAGYVVYKLFQGQRNANANANANA
AK018_04006378hypothetical proteinATGACCGAGACCACAGCTCCGCGTCCGCTCGTGATCAAGACCACGTCCGGGACCGACCGTCCGGAGTCGGCGAACCAGGCCCTGACGGTGGCCGCGGCGGCGGTGGCCGCGGGCGCGGAGGTCTCCCTGTGGCTGACCGGCGAGAGCGCCTGGTTCGGCGTGCCGGGTCGGGCCGCCGAGCTCGACCTGGAGCACGCCGCCCCGGCCGCGGACCTGCTCGAGGCGGTGCTCGCGGCCGGGACGGTCACGGTGTGCACGCAGTGCGCCGCGCGGCGCGGCATCGGCCCCGACGACGTGCTGCCGGGGGTCCGGATCGCGGGCGCTCCGGCGTTCGTCGAGGAGACGCTGCGGCCCGGGGTGCAGGCGCTGGTCTACTGAMTETTAPRPLVIKTTSGTDRPESANQALTVAAAAVAAGAEVSLWLTGESAWFGVPGRAAELDLEHAAPAADLLEAVLAAGTVTVCTQCAARRGIGPDDVLPGVRIAGAPAFVEETLRPGVQALVYNANANANANA
AK018_04007456hypothetical proteinGTGACCGAGAACCGCACCACCACGGCCCCGGCGGGCATCGACCCGCGCGGGCCCCGCGTCGCCGCCGGCGTCACCGCGGTGCTGCTCGCCGTCGTCGTGCTCCTGGGCGCCTCGCAGGCCGCGCTGGTGCTGCTCACCGTGGTCGCCGTGAGCTTCCTGCCCGGAGCGGTCCGCGGGCCGCAGGCGACCTGGCAGGCCTGGCTGTTCCGGGTGCTGGTGCGGCCCCGGCTCGGCCCGCCGGACCACCTCGAGGACCCGCGTCCGCCGCGGTTCGCCCAGCTCGTCGGTCTCGTCGTCACCGCGGTCGGCGTGGTGGCCGGGTTCGCGGGCGCGCTCGCCGTCGTGCCGTGGGCCGCGGCCGTCGCGTTCGTCGCCGCGGCGCTCAACGCCGCCGTCGGGCTCTGCCTGGGCTGCGAGCTCTACCTGCTCGGACGCCGCCTGCGCCCGTCGGCCTGAMTENRTTTAPAGIDPRGPRVAAGVTAVLLAVVVLLGASQAALVLLTVVAVSFLPGAVRGPQATWQAWLFRVLVRPRLGPPDHLEDPRPPRFAQLVGLVVTAVGVVAGFAGALAVVPWAAAVAFVAAALNAAVGLCLGCELYLLGRRLRPSAPGPT0002045_47DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
AK018_04008468hypothetical proteinATGACGATGCAGTGGACGGCGCTGGTCGCCCTCCTGGTGGTGACGGTGGCCCTGGCCGTCGGGTGGCGCGCCACTCAGGGCAGGGCACGCACCACGCCGCAGGTCGCGGACGCGGGGCACGACGGCGGAGCGGACTGGGCCGACGTCCTGGCGTCGGCCGGGACGACCCTCGGGGAGCGTGCGACGTTCCTGCAGCTCTCCGCCGAGGTGTGCTCCTCCTGCCGCTCCACCGCACGCACGTTGGGCGACCTCGCGGCCGCGACCCCCGGCGTCGTGCACGTCGAGATCGACGTGGACGACCGGCCCGACCTCGTGCGCGCCACCCGTATGCTGCGCACGCCGACCGTGCTCGTGCTCGACCCCGGCGGCGCCGAGGCGGCCCGCGCGTCCGGCGCCATGACCCCGGCCCAGGCCCGCACGGCGCTCACCGCCGTCGAGGGCGCCCGTACCGCAGGGAGGACATCGTGAMTMQWTALVALLVVTVALAVGWRATQGRARTTPQVADAGHDGGADWADVLASAGTTLGERATFLQLSAEVCSSCRSTARTLGDLAAATPGVVHVEIDVDDRPDLVRATRMLRTPTVLVLDPGGAEAARASGAMTPAQARTALTAVEGARTAGRTSNANANANANA
AK018_04009660yceI_2Protein YceIATGACCGACGCCCCCACCCGGATCTGGAACGACCTGGTGATCCCCGCCGCCGGGACCTACCAGCTCGACGAGGCGCACCAGCGCATCGGGTTCCTGGCCATGCACATGATGGTCAGCCCGGTCCGCGGCGAGTTCGCGACGGGGTCGGCCACCATCCACGTCGCCGAGGACCCACTGGCCTCCAGCGTCTCCGCCAGCATCGGCGCGGACTCGGTCACGACGCACCACGCCGACCGCGACACGCACCTGCGCAGCCCCGACTTCCTCGACGTGGAGAACCACCCCACGCTCGAGTTCCGGTCCACCGGCATCGAGTGGCAGCCGCGGCCCGACCCGATCTTCTCGTGGGCCGCGCTCAAGGGCCGCGCCCCGGACCGCACGACCGGCCTCGGCCCGGCGGCCCTCACGACCACCAGCCGGTTCGTGCTGCACGGGAACCTGACGATCCGCGGCATCACCCGGCCCGTCGCCCTCGACGCCGAGTTCGGCGGCGCCGGCACCGACCCCTACGGACGCCACATCTTCGGGTTCAGCGCCGAGGCCGAGATCGAGCGCGAGGACTTCGGCCTGCTGTGGAACGTCGCGCTGGAGGCGGGTGGCGTCCTCGTGGCCAAGAAGGTGCGCATCGAGCTCGCCGGCGAGGCGGTCCGGGTCGAGTGAMTDAPTRIWNDLVIPAAGTYQLDEAHQRIGFLAMHMMVSPVRGEFATGSATIHVAEDPLASSVSASIGADSVTTHHADRDTHLRSPDFLDVENHPTLEFRSTGIEWQPRPDPIFSWAALKGRAPDRTTGLGPAALTTTSRFVLHGNLTIRGITRPVALDAEFGGAGTDPYGRHIFGFSAEAEIEREDFGLLWNVALEAGGVLVAKKVRIELAGEAVRVENANANANANA
AK018_04010735hypothetical proteinGTGACCGTGACCTCCCGTGCCGTGACGACCGCCGTGCTCGCCACCGTGGTGGCCGGGGCGGCGTACCTGGGGCCGCTGTGGACCACGGGGGCCGCCGCGGTGCTGGTCCTCCTCGTCGCCGTGGGCTGGGCCCCGCTGCTGCGGCTGCCCGCCGACGGCGCCACCACCGTCGTGGTGCTGCTGGCCGGTCTGGGCGGCGTCGGCGTCGCCTGGCTCACGCAGGGCGAGCCGGTGCTGCGCAACCTTCCGGTGGTGATCGCGTTCTCCCTGGTCCTGGCGTTCGTGGCGCAGATGCTGCGGCGGGGCGGCCGGCCCCGGCTCGTGGAGTCCGTCAGCGGGACGACGGCCGGGATCGTGGCCGCGGTCGCGGCGGCCGGGTGGGTCGCCGCCGGGCGGTCCGACGCCGGTGCGGACCTGGTCGTGACCAGCGCGGTCGGGCTCGCCGTGGCCTCGGCGGTGTCGGCGCTGCCCGTCTCGGGAGGCTGGACGGGCTCGCTGCTCGCCGTCGTGCTGGGCGGGGCCGCCGGTGCCGGTGCGGCGTCCGCGGTGCCCGAGGTCGAGCCGGTCCAGGGGCTGGTCGTGGGGCTGGTCGCCGGGCTGGTCGCGGCGGCCCTGCGGTTCCTGTTCGACCGGCAGCCGTCCCTGGCGTCGCGCCGCGCGGCGCTCGCCGCGGTCGCCGTGCCGGTGACCGTCACCGGGATCCTCGTGTTCGTCGTCGGGCGCGTCCTGGTCTGAMTVTSRAVTTAVLATVVAGAAYLGPLWTTGAAAVLVLLVAVGWAPLLRLPADGATTVVVLLAGLGGVGVAWLTQGEPVLRNLPVVIAFSLVLAFVAQMLRRGGRPRLVESVSGTTAGIVAAVAAAGWVAAGRSDAGADLVVTSAVGLAVASAVSALPVSGGWTGSLLAVVLGGAAGAGAASAVPEVEPVQGLVVGLVAGLVAAALRFLFDRQPSLASRRAALAAVAVPVTVTGILVFVVGRVLVNANANANANA
AK018_04011747hypothetical proteinGTGGCGGAACTGTTGATCCTGACCCCGGCCAACGGCGGCTCGGTCGAGGTGCTGCCCGCGCTCGGCCTGCTGAGCCACAAGGTCCGAGTGCTGCCCATGGAGCCGTCGGCCCTGGTGGACGCACCGGACTCGGACGTGGTCCTGCTCGACGCGCGCCGCGACCTGGTCGCCGCGCGCACGACGTGCCGGCTGCTGCACGCCACGGGCCTGACGGTGCCCCTGGTCCTGGTGCTCACCGAGGGCGGGCTGACGGTCGTCAACCACGAGTGGGGCGCCGACGACCTGCTGCTGGAGAACGCCTCCCCCGCCGAGGTCGAGGCGCGCCTGCGGCTCGTCGTGGAACGGTCGGCCCACGGCCCCGCCGAGGACTCCCCGCAGGAGATCTCGGCCGGCGAGCTCGCCATCGACGCCGGCGGCTACACGGCACGGCTGCGCGGCCGGCCGATCGACCTCACCTACAAGGAGTTCGAGCTGCTGAAGTACCTCGTGCAGCACCCGGGCCGGGTGTTCACCCGCGCCCAGCTGCTGCAGGAGGTCTGGGGCTACGACTACTACGGCGGCACCCGCACCGTCGACGTGCACGTGCGGCGGCTGCGCGCCAAGCTCGGCCCCGAGCACGAGCAGCTCATCGGCACCGTGCGCAACGTCGGCTACCGGTTCGACCCGCCCAAGGAGCCGCGCGTCGAGGACACCGACGGCGACACCGGCAGCGCCGACGCCGGGTCGCAGGTGTCCTCCGGCACGTGAMAELLILTPANGGSVEVLPALGLLSHKVRVLPMEPSALVDAPDSDVVLLDARRDLVAARTTCRLLHATGLTVPLVLVLTEGGLTVVNHEWGADDLLLENASPAEVEARLRLVVERSAHGPAEDSPQEISAGELAIDAGGYTARLRGRPIDLTYKEFELLKYLVQHPGRVFTRAQLLQEVWGYDYYGGTRTVDVHVRRLRAKLGPEHEQLIGTVRNVGYRFDPPKEPRVEDTDGDTGSADAGSQVSSGTPGPT0014763_19DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ENVELOPE_REMODELLING_REGULATIONCE-ENVELOPE_REMODELLING_REGULATION_FACTOR,PGPT0014763-walR-NANANA
AK018_04012930ephA_2Epoxide hydrolase AATGTCCGACGCCACCGACTACACCTGCGCCCTCGCCGACGGGCCGTGGCAGCACGAGTACGTCCCCGCCAACGGATCCCGCTTCCACGTCGCCACCGCGGGGCCCGTCCGGACCCACGGCGACACGCAGCCGCTCGTCCTGCTGCTGCACGGGTTCCCGCAGACGTGGTGGGCGTGGCGGCGCCAGCTCGCCACCCTGTCCGACGCCGGCCTGCGGGTCGCCGCGATGGACGTGCGCGGGGTCGGCGCCTCCGACAAGCCGCCGTCCGGCTACGACGTCCCCACCCGCACCCGCGACGTCGCCGGCGTCGTGCGCTCCCTCGGCCACGACCGCGCGATCGTGGTCGGCGCGGGCACCGGCGGGGTGCTGGCCTGGGCGATGGCGGCGATGCAGCCCGGCGTCACCGCCGGCGTCGCCGCGCTGTCGGCACCCCACCCGCTGCGGCTGCACGTCCCCGGCCGGCGCCTGCTCACCCCCGCCGCACGGCGCTACCTCGCGCTCACCCAGGTACCGGGCCTGCCCGAACGCCGGCTCGTCGACGGCGACGCCGTCGCCGCCGTGCTGCGGACCGGGGCGGCACTGCCCCTGCCGGACGACGTCGTCGACCGGTACCACCAGGGGATGCGCATCCCGTTCGTGGCCCGCAGCAGCGTCGAGGCGCTGCGCTGGCTCACACGGTCCTCCCTGCGACCCGACGGACGCCGCTACCTCGCCGCCCTGCGTCGCCGCGTCGACGTACCCGTGCTGCAGGTCCACGGCGGCCGCGACGGGTTCCTGCGCCGGGCCACGGCCGACGTCGACGGCGCGGCCCTGGCCCGCGACTTCCGGTTCGAGGTCGTCGAGGACGCCGGGCACTACCTCGCCGAGGAGGCCCCCGACGCCGTCGACGCGGTGCTGCTGGAGTGGCTCAGCCGCGTGGCCCGGGCCTGAMSDATDYTCALADGPWQHEYVPANGSRFHVATAGPVRTHGDTQPLVLLLHGFPQTWWAWRRQLATLSDAGLRVAAMDVRGVGASDKPPSGYDVPTRTRDVAGVVRSLGHDRAIVVGAGTGGVLAWAMAAMQPGVTAGVAALSAPHPLRLHVPGRRLLTPAARRYLALTQVPGLPERRLVDGDAVAAVLRTGAALPLPDDVVDRYHQGMRIPFVARSSVEALRWLTRSSLRPDGRRYLAALRRRVDVPVLQVHGGRDGFLRRATADVDGAALARDFRFEVVEDAGHYLAEEAPDAVDAVLLEWLSRVARANANANANANA
AK018_04013729pdg_2Ultraviolet N-glycosylase/AP lyaseATGTCCGAGTCGCCGGTGCAGCCTACCCCGACCGGCGAGTCCCGCCTCGCGCTGGTGCGCCGCGCGCGCCGTGTCGACCGGGTGCTCGCCGAGACCTATCCCGACGCGCGCGCCGAGCTCGACTTCGGCAACCCCTTCGAGCTGCTGGTCGCCACCGTGCTGTCGGCACAGACCACGGACGTGCGGGTGAACGCCACGACTCCGACGCTGTTCGCCCGGTATCCCGACGCGGCCGCGCTGGCCGGTGCCGATCCGGCCGAGATGGAGGAGATCCTGCGCCCGCTGGGCTTCTACCGCGCCAAGACGCGGTCGGTGATCGGGCTGGCGCAGGCGCTGGTGGAGCGCCACGACGGGGAGGTGCCGCCGCGCCTCGCCGACCTGGTGCAGCTGCCGGGCGTCGGCCGCAAGACGGCGAACGTGGTGCTGGGCAACGCGTTCGGCGTCCCGGGGATCACGGTCGACACGCACTTCGGCCGCCTGTCGCGCCGGCTGGGGTTCACCGACCAGGAGGACCCGGTGAAGGTGGAGCACGCCGTCGGCGAGCTGTTCGAGCGCAAGGACTGGGTCATGCTCAGCCACCACCTGGTGTGGCACGGGCGCCGCGTGTGCCACGCCCGGCGTCCGGCCTGCGGGGCCTGCCCCGTGGCCCGCTGGTGCCCGTCGAACGGGCTCGGCGAGACCGACCCGGTCGCCGCGGCGAAGCTGCTCAGGCCCGGGCCACGCGGCTGAMSESPVQPTPTGESRLALVRRARRVDRVLAETYPDARAELDFGNPFELLVATVLSAQTTDVRVNATTPTLFARYPDAAALAGADPAEMEEILRPLGFYRAKTRSVIGLAQALVERHDGEVPPRLADLVQLPGVGRKTANVVLGNAFGVPGITVDTHFGRLSRRLGFTDQEDPVKVEHAVGELFERKDWVMLSHHLVWHGRRVCHARRPACGACPVARWCPSNGLGETDPVAAAKLLRPGPRGPGPT0013735_1565DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013735-nth-K10773NANA
AK018_04014678crp_2COG0664CRP-like cAMP-activated global transcriptional regulatorGTGGACGACACCGTCGTGCTCTCCGCCCCCCTCTTCGCGGACATGGACAGCGAAGAGTCCAAGGCGCTCTTCGAGTCCATGGTCCCCGTCGAGCTGACCCGCGGGGACGTGCTCTTCCGCGAGGGCGAGCCGGGCGACCGGCTGTACGTGATCGCGCAGGGCAAGATCAAGCTCGGCCGCCGCTCCAGCGACGGCCGCGAGAACCTGCTGTCGATCCTGGGGCCCGGCGAGATGTTCGGCGAGCTGTCCCTCTTCGACCCCGGCCCCCGCACCGCCACGGCCTCCTCCGTCTCGGACGCGCTGTGCTACGAGCTGCGTCACCAGGCGCTCGTGCAGTGGGTCGCCGCGCACCCCAACGTCGCCACGACGCTCCTCGGCGCGCTGGCCCGCCGCCTTCGCCGCACCAACGAGACGCTGGCCGACCTGGTCTTCTCCGACGTGCCCGGCCGCGTCGCCAAGGCGCTGCTCGACCTGTCCCACCGGTTCGGCGAGCCCAACGACGAGGGCGTCCGCGTCGCGCACGACCTCACCCAGGAGGAGCTCGCGCAGCTCGTCGGGGCGTCGCGCGAGACCGTCAACAAGGCGCTGGCCGACTTCGCGACGCGCGGCTGGGTGCGGCGTGAGGGCCGCGCCGTCGTGCTGCTCGACCTGGACCGGTTGGAGCGGCGCGCGCGCTGAMDDTVVLSAPLFADMDSEESKALFESMVPVELTRGDVLFREGEPGDRLYVIAQGKIKLGRRSSDGRENLLSILGPGEMFGELSLFDPGPRTATASSVSDALCYELRHQALVQWVAAHPNVATTLLGALARRLRRTNETLADLVFSDVPGRVAKALLDLSHRFGEPNDEGVRVAHDLTQEELAQLVGASRETVNKALADFATRGWVRREGRAVVLLDLDRLERRARPGPT0015075_2948DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0015075-clp|crp-K10914NANA
AK018_04015468hypothetical proteinGTGAGCATCGAGGCACGCCTGACCGAGCTCGGCATCACCCTGCCCGACGTCGCGGCACCGGTCGCCGCCTATCAGCCCGCGGTGCGCTCGGGCCGCCACGTCTACACCGCCGGCCAGCTCCCGTTCGTCGACGGCGCCCTGGCCGTGACGGGGAAGGTCGGCGCCGGCGACGGCCTGGTCGACCCGGAGCAGGCGGCCGCGCTGGCCCGCACCTGCGCCCTGAACGCGCTGGCCGCGGTCCGGTCCGTCGCGGGTTCGCTCGACGGCGTCCGCATCGTCAAGGTCACCGGGTTCGTGGCGAGCGACCCGTCGTTCACCGGCCAGCCCGGCGTCCTCAACGGTGCCAGCACCGTGCTGGGCGAGATCTTCGGCGACGCGGGCACCCACGCGCGCTCCGCCGTCGGCGTGGCGGTCCTGCCGCTGGACGCCCCGGTCGAGGTCGAACTCGTGGCCGAGCTGCCCGCCTAGMSIEARLTELGITLPDVAAPVAAYQPAVRSGRHVYTAGQLPFVDGALAVTGKVGAGDGLVDPEQAAALARTCALNALAAVRSVAGSLDGVRIVKVTGFVASDPSFTGQPGVLNGASTVLGEIFGDAGTHARSAVGVAVLPLDAPVEVELVAELPANANANANANA
AK018_04016162hypothetical proteinATGGCTACCACGTGGGAATACGCGACGATCCCCCTCCTGATCCACAACACCAAGGCGATCCTCGACCAGTGGGGTGCGGACGGCTGGGAGCTCGTCCAGGTCGTGCCGGGGCCCGACAGCGCCAACCTGGTCGCCTACCTCAAGCGGCCCTCCGGAGCGTGAMATTWEYATIPLLIHNTKAILDQWGADGWELVQVVPGPDSANLVAYLKRPSGANANANANANA
AK018_040172346ponA1_2COG0744Penicillin-binding protein 1AATGGCGAATTCTGACTCCCGCCGCATCACGCGCACCATCCCCGCCACGCAGATGGTGGCGCTGCTGCTCGCGTTCGTGCTCGCGGCCACAGCGGGCGGCGTGCTCGCCGCCGGGTTCGTCATCCCCGCCGTCGCCGGCGTCAACGCCGCGGCCGACGGCACCGTCGAGATCTACGACGAGGTGCCTGCCGAGCTCGAGCCGCGGCCGCTGTCGCAGCAGTCCCGCATCTACGCGGCCAACGGCAAGCTGCTCGCCACGTTCTACTACCAGAACCGCATCGTCGTGCCGCTCGACGAGGTGTCGCAGGACATGCAGCACGCGGTCGTCGCCATCGAGGACGAGCGGTTCTACGAGCACAACGGCGTCGACCCGCAGGGCATCACCCGTGCCGCGCTCAACAACCTCGGCAGCGAGTCCACCCAGGGCGCGTCGACCATCACCCAGCAGTACGTCAAAAACATGCTCATCGAGTCGGCGCTGCAGGACGACGACCCTTTCGCGGTCATCGACGCCTACGAGGACTCGCTGAACCGCAAGCTGCGCGAGGCCAAGATGGCCATCGCGCTGGAGAAGAACCTGTCCAAGGACGAGATCCTGCAGGGCTACCTCAACGTGGCGCAGTTCGGCTACGAGAGCATCTACGGCGTCGAGGCCGCCGCGCGCTACTACTTCGACAAGTCCGCGGCGGACCTGAACGTGGTCCAGTCCGCGACCATCGCCGGCATCACGAAGTCGCCGACCAAGTTCGACCCGACGCGCAACCCCGAGCAGGCCAAGGAGCGCCGGGACCTCGTGCTCGGCAACATGTGGAAGCTCGGCTACATCACCACCGAGCAGCGTGACGAGGCGCAGGCCAAGAGCATCGAGGAGACGCTGGACGTCCAGCGCACCCCGGCCGGCTGCCAGACGGCCAACAACTCGGCGTTCTTCTGCGACTACGTCATCAAGGAGCTGTTGCTCGACCCGGCCTACGGCGAGACCCGCGCCGACCGGCAGCAGCTGCTCTACCAGGGCGGTCTGGACATCCACACCACGCTGGACATGAAGAAGCAGAAGGCCGCGTTCAAGACCATCAAGCAGGAGATGCCCGAGGACGACTCGAGCAACCTCGAGGCCTCCCTCGTCACCGTCGAGCCCGGGACCGGCAAGATCCTCGCGATGGCGCAGAACGTGCCGTACTCCGGCACGAAGGCCGCCGGGAACTCCAGCCGCGACACCACGGTCAACTACAACGCCGACTACGTCCACGGCGCCTCGGGCGGCTTCCAGGTCGGCTCGAACTTCAAGCCGGTCGTGCTGGCCCAGTGGCTCAAGGAGGGGCACACGCTCCTCGAGCGGGTCACGGCGACCAAGGTGGAACGCACGGTGGGCGACTTCAACGCGCCGTGCGTGCCGTACCTCGGGACCGACACCTGGGCGCCCGCCAACGCCGAGGGTGTGCTCAGCGGCACCATCCCGGTGCTGGAGGCGACCTACCTGTCGGTCAACACCGCCTACGCGTCGATGGGCTACGAGCTCAACCTCTGCGGCCTGCGCGACACCGCGTGGGACATGGGCTACCGCCCCACGAGCAAGTCCAACCACGGCCCGATCAGCACGACGGTCAAGAAGAAGGACATCGACGTGCGGGCCCCCATGGTGGTCGGCACCCAGGAGTCCTCCCCGCTGAACATGGCGGCCACGTACGCGACGCTCGCCTCGGGCGGTACGTACTGCTCGCCGATGGCGATCACCGGCGTCACCGGGCCCAACGGTGAGGAGTACGACGTCTCCGGGTCCGACTGCGACAAGAACGCCCTGCCGAGCGACGTGGCGAACACCATCGTGTACGCCATGGAGAACGTGTTCACCCGTGGCACCGCCTACAGCCTCGGCGGGCTCGACGACGGTCGCCCCGTCGCCGGCAAGACGGGTACGTCACAGCTGTCGACCCAGACCTGGTTCACCGGCTTCACGCCGCAGCTCGCCACCTCGGTGTGGGTCGGCACGGTCGAGAACGCCACCGAGGACCACACCAACGGGATGTGGGTCAACGGCAGCTGGTACGACCCGCTCTACGGCTCGTCCGTCGCGGCACCCGCCTGGAAGACCTACATGGACCAGGCCGTCGAGGGCATGCCCGTCGAGGACTTCGGCTCGCCCTCGCAGGACATGATCGGCACCCCGCCCGCCCCGCCGACCCCGGTCGAGACCGACGACTCCGACGACAGCTCGGACGACGGCGACTCGGGCGACAGCAGCGGCTCGGACGACGGCGACTCGGGCGACTCCGGGAACTCGGGCGGCGGGAACGGCGGCGGCCCCGGGAATGGTGGCGGCAACGGCGGCGACGGGGACGACGACTGAMANSDSRRITRTIPATQMVALLLAFVLAATAGGVLAAGFVIPAVAGVNAAADGTVEIYDEVPAELEPRPLSQQSRIYAANGKLLATFYYQNRIVVPLDEVSQDMQHAVVAIEDERFYEHNGVDPQGITRAALNNLGSESTQGASTITQQYVKNMLIESALQDDDPFAVIDAYEDSLNRKLREAKMAIALEKNLSKDEILQGYLNVAQFGYESIYGVEAAARYYFDKSAADLNVVQSATIAGITKSPTKFDPTRNPEQAKERRDLVLGNMWKLGYITTEQRDEAQAKSIEETLDVQRTPAGCQTANNSAFFCDYVIKELLLDPAYGETRADRQQLLYQGGLDIHTTLDMKKQKAAFKTIKQEMPEDDSSNLEASLVTVEPGTGKILAMAQNVPYSGTKAAGNSSRDTTVNYNADYVHGASGGFQVGSNFKPVVLAQWLKEGHTLLERVTATKVERTVGDFNAPCVPYLGTDTWAPANAEGVLSGTIPVLEATYLSVNTAYASMGYELNLCGLRDTAWDMGYRPTSKSNHGPISTTVKKKDIDVRAPMVVGTQESSPLNMAATYATLASGGTYCSPMAITGVTGPNGEEYDVSGSDCDKNALPSDVANTIVYAMENVFTRGTAYSLGGLDDGRPVAGKTGTSQLSTQTWFTGFTPQLATSVWVGTVENATEDHTNGMWVNGSWYDPLYGSSVAAPAWKTYMDQAVEGMPVEDFGSPSQDMIGTPPAPPTPVETDDSDDSSDDGDSGDSSGSDDGDSGDSGNSGGGNGGGPGNGGGNGGDGDDDNANANANANA
AK018_04018828hypothetical proteinGTGCCCGCGCTGGCACCCGGTGAGCGTGAGCTGCGCGTCCTGCACGTCTCGGACCTGCACCTGATCCCGAGCCAACGGCGCAAGATCGAGTGGGTCCGGTCCCTGGCGGCGCTCGAGCCCGACCTGGTGATCGACACCGGGGACAACCTCGCCGGCCACGACGCCCTCGACCCGCTGCTGCACGCCCTCGAACCGCTGCTGGAATTCCCGGGCGCGTTCGTGCTGGGGTCGAACGACTACTACTCCCCCACGTTCAAGAACCCGGCGCGCTACCTTCTGCCGGACGCCCGCGGGCCGGTCCGCAGCACGCCTGACCTGCCGTGGGAGCCCATGGTGGCGGCGATGCGCGACGCCGGGTGGGCGGACCTCACCAACCGTCGTGACGCCGTCGTCGTGCGGGGACGCCGCATCGACCTGGCCGGGGTGGACGACCCGCACCTGGACCGCGACGAGTTCCCCGCCCCCTCGGCACCCTCCCCCGGCGAGGACACGGCAGCCCTGCGCCTCGGTGTCACGCACGCCCCGTACACCCGGGTGCTGGACCGGATGCACGCCGACGGCGCCGACGCGATCATCGCCGGGCACACCCACGGCGGACAGCTCTGCCTGCCCGGCTACGGCGCCCTGGTGACCAACTGCGACATCGACCGGCGTCGAGCCAAGGGCCTGCACGGCTGGCCGGGTGCCCGCCCCGACGCCCCCGGCGGGGAGGACTCCACCTGGCTGCACGTCTCGGCCGGCGCGGGCACGTCGCCGTACGCGCCCGTCCGGTTCGCGTGCCGCCCCGAAGCGACCTTGGTCACCTTCACCGCGCGCGGCCGGATCTGAMPALAPGERELRVLHVSDLHLIPSQRRKIEWVRSLAALEPDLVIDTGDNLAGHDALDPLLHALEPLLEFPGAFVLGSNDYYSPTFKNPARYLLPDARGPVRSTPDLPWEPMVAAMRDAGWADLTNRRDAVVVRGRRIDLAGVDDPHLDRDEFPAPSAPSPGEDTAALRLGVTHAPYTRVLDRMHADGADAIIAGHTHGGQLCLPGYGALVTNCDIDRRRAKGLHGWPGARPDAPGGEDSTWLHVSAGAGTSPYAPVRFACRPEATLVTFTARGRIPGPT0022365_2427DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022365-lpxG-K07098NANA
AK018_04020918hypothetical proteinGTGACTGAAGTGACGCCGCCGTTGAACATCCAGCAGCTGAACGACCGATTGGCCGAGGTTGCCCGGAGCATGAGGATTCCGGTGGCGCGGGCACGGGTGATGCTGTGCACGCTGGCCGTCTCGCAGATGCTTCCGGACGCCGTCGCGATCAAGGGTGGCATGGGCGTCAAGCTGCGCATGGGCGAGCAGGGCACTCGCGCGACCGCCGACCTCGATGTCTCCACGCGTGCGCGTGGTGAGGACTTCGAGCAGGCATTCCGTGACCGGCTTGCACGCGGTTGGGGTGAGGTTCCGGCATCCAAGGGTGCGCTGAGCCGTGACCCCGATGCCCCGGCCCGGGTCGCCTTCACGGCATCGGTGCGTGCGGTGCGAATCCACGACCCCGGGCTTGCCGAGCCGCAGTACGTGATGCACCCCTACCGGGTCTCGATCTCGTTCCTCGGCAAGGCGTGGGCAGGCCTGGACGTCGAGGTCTCCGACCCTGAGATCGACCCGTTCGCCCACACCCGCAGGCAGATCGACGGGCACCTGGTGGAATTCGGCGACCACTTCGGGTTCGGCGACTTGAACCCGGTCGAGCTCGTCGATCTGGAGTACCAGATCTCGCAGAAGCTTCACGCCGTCAGTGACCCCGGCTACGTGCGGGCCCACGACCTGGTGGATCTGCAACTGTTGTGGTTGGCCCGCCCCGACCTGAACGTGCTGCGGCAGATCTGCGAGCGCACCTTCGCCTTCCGCAACCGGCAACTCTGGCCACCGCTGCCGCTGCGGCCGATGGACGGCTGGTCCCTGGCGTATGCCGACGCGCGCGACGAGACCCTGGTCGACGGGATGACTCCGATCCTCGAGACGCTCGACGAGGCTCGCGCCTGGCTCGAAGGCGCGTTGCGCCAGATCTACTCCGGGCGCGGCGCCTGAMTEVTPPLNIQQLNDRLAEVARSMRIPVARARVMLCTLAVSQMLPDAVAIKGGMGVKLRMGEQGTRATADLDVSTRARGEDFEQAFRDRLARGWGEVPASKGALSRDPDAPARVAFTASVRAVRIHDPGLAEPQYVMHPYRVSISFLGKAWAGLDVEVSDPEIDPFAHTRRQIDGHLVEFGDHFGFGDLNPVELVDLEYQISQKLHAVSDPGYVRAHDLVDLQLLWLARPDLNVLRQICERTFAFRNRQLWPPLPLRPMDGWSLAYADARDETLVDGMTPILETLDEARAWLEGALRQIYSGRGAPGPT0027691_2037DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_AbiEii_TOXIN-ANTITOXIN_SYSTEM,PGPT0027691-toxin_AbiEii-naNANA
AK018_04021537hypothetical proteinGTGACGTATCGGCATGACCTGTGGGGGATTGCGGCCAGCAACCACGGCGTCGTCACCGTCGCCGAGGCAGAGGACGCTGGCGTGCCCGCGGTGGAGGTGCGCAAGTTGGCAGCGCGAGGCGTGCTGCGCTCGTACGGTCAGGGCGTCTACTCCCACCGGGACGTTCCGACGACCCGTCTGACCGAGCCGGCAGTCGCTGCCGCCCTCGCTGGGCCGGGGGCGTTCCTGCAGCGTGAGTCGGTCCTCGACCTGCTGGGAGTCGGCCAGTTCAACCCCCGGCAGGTGCGCGTGGGAACCCGGCGTCGCGTACGCCGAACCCTCCCGGACTGGATGGTGCTGGAACGCCGCGCCGACATCACCGACGACGACCTGACAGACGTCGAGGGCGTGCCCACGACCACGATCCCGAGGGCGCTGCAGGACCTGCGGTCACGGGTCGCTCCCGACCGCTGGAATGCGCTGGTCGCGACCCTCGTGGGTCGCGAGCTCGTGCGCCCCGACGAGATCCCGGACCTGAAGGAGGGCGCCCGTGACTGAMTYRHDLWGIAASNHGVVTVAEAEDAGVPAVEVRKLAARGVLRSYGQGVYSHRDVPTTRLTEPAVAAALAGPGAFLQRESVLDLLGVGQFNPRQVRVGTRRRVRRTLPDWMVLERRADITDDDLTDVEGVPTTTIPRALQDLRSRVAPDRWNALVATLVGRELVRPDEIPDLKEGARDNANANANANA
AK018_04022633hypothetical proteinATGGCAGTGGAGAACGGTGGTCGCGCTCGCCAGCTCGCCGATGAGCCTCAGGACGAGAGTCGCGGCTCGTGGCGTGTGCTCGTCGCGCGCTTGCTCCTGATCGCCGGACGAGCGCTCCCTGCCATCTCGATCGCAGTGGTCATGTGGAGCGCGCTGACACAAGATTCCTGGAGCAGTGCACCGCTCGATGACGCAGGTTTCACGACAGCCTTGCTACCCAACCTCGCAGCGACCCTCTGGTTCTGCTTCAGCCTGGCGCTCCCGTTCATCGTCCTGCCGGTCGGCTCCACCGTGCTGTCCACTCGCGACGACAACCGGCTGACCGTCGCCACCGTGCTCGGTCAACGCATCGTCGACCTTGCCAGCGCCCGGACATGGCGCGCGAGCCTGCCAGGGCGGGGAGTGGACATGCAGATCGTCCTCGTTCGGTCGAGGACAGGCTGGGCGATACTCGCGGCTTCGGACTTCTGGCTCGATGACGGATACCAGGTCCTCGACGACCGTGACTCCTCGAGCTCGTCCCGGCCGGGAGCAGTGCGGTTCAGAGCACGAGGGTGGATGCTCTTGATGATCTGGGCCCTGTTCTCCTTCATCACCTTCGGTGTCGGCGGAGTCGTCGCGGGTACGTTCTGAMAVENGGRARQLADEPQDESRGSWRVLVARLLLIAGRALPAISIAVVMWSALTQDSWSSAPLDDAGFTTALLPNLAATLWFCFSLALPFIVLPVGSTVLSTRDDNRLTVATVLGQRIVDLASARTWRASLPGRGVDMQIVLVRSRTGWAILAASDFWLDDGYQVLDDRDSSSSSRPGAVRFRARGWMLLMIWALFSFITFGVGGVVAGTFNANANANANA
AK018_04023588hypothetical proteinATGGGTGGGCACGACGACGACCCGGTGCGCCAGGCTGCGCAGTACCGGGTGGACCGCGAGTCCGAGCGCGAGGCGGCCGAAGCGGGGCGCACCGGACCGGCGGGCGACCGCGCGCCGGGCGGACCGCCGTCGGACGAGGACGAGACGCGACGCGACGCCGAGCAGCGGCGCCGCGACCGCGTGCGCCGGTCGATGACGGACCGGGCGCGCTGGGTCGACACCCTGGTGGACCAGGCGATGCGGCGCGGTGACTTCGACGACCGGCCCTCGGCGGGCAAGCCGCTGCGGGGGATCGGCGGCACGCACGACCCCGACTGGTGGCTGAAGAACCTCGTGGAACGCGAGCAGGTGACCGGCGTGCTGCCTCCCGCGCAGCTGCGCCAGGAGTCGGCGGCGATGGACGAGACCCTCGACCGGGAGAGCGACGAAGCCGGCGTCCGGCGGGTGGTCGAGGACTTCAACGCCCGTGTCGTCGACGCCCGCCGCCAGCTCACCGGCGGACCGCCCGTGGTGACCCCCACGCGTGACGTCGACGTCGAGGTGCGCCGCTGGCGTGAGCGGCGTCGAGCCCAGGGGATCTACGAATGAMGGHDDDPVRQAAQYRVDRESEREAAEAGRTGPAGDRAPGGPPSDEDETRRDAEQRRRDRVRRSMTDRARWVDTLVDQAMRRGDFDDRPSAGKPLRGIGGTHDPDWWLKNLVEREQVTGVLPPAQLRQESAAMDETLDRESDEAGVRRVVEDFNARVVDARRQLTGGPPVVTPTRDVDVEVRRWRERRRAQGIYENANANANANA
AK018_04024963ccpA_11COG1609Catabolite control protein AATGCCCGTCACCAGCGCCGATGTCGCGCGAGCCGCCGGTGTCTCGCGCGCGACGGTCAGCTACGTCCTCAACGACACCCCCGGTTCGAGCATCTCGGCCGCCACCAAGGAGCACGTGCGGGCCACCGCCGCCCGGCTGGGCTACGCGCCGTCGGCCGCCGCCCGGGCGCTGCGCCGCGGTCGCAGCGACCTCGTCGTCTGCGTGCTGCCCGACTGGACCACGGGTCCGGTGGTCGACACCCTGCTCGACCTGCTCGGTGACACCCTGGCCGCACGAGGCCTGTTCCTCCTGGTGCACCACCACCGGCCGACCCGCCCGGTGACCGACCTGTGGAAGGCCGTCACCCCTCGTGCCGTCGTCGGGCTCACCGAGTTCCCGGCGGCCGACCTGCGCGCGCTCGCCCAGGCCGGCATCGACGTGGTCGGCGCGGACGCCGAGCACGCCCGGCTCGACGCCGAGCTCCAGCGGGACATCGCCAGGCTGCAGGTCGGGCACCTCGTGGACACCGGACGTCGACGCGTCGCGGTGGCGACCACCACCGACCCGCGGCTGACGACGTTCGCGGAGCAGCGCACGGCCGGCGTCGTCGACGCCTGCGCGGACCGCGGGCTGCCGGTGCCCGACGTCGTGCCCCTGCCCGCCGACCGACCCGCGACCGACGCCGTCCGGGCCTGGGCCGCCGCCGACGTCGACGCGGTCGCCTGCTACAACGACGAGGTGGCGTTCGCGGTGCTCGCCGGGGCGACGTCAGCCGGGGTCGCCGTGCCCGACGATCTCGCCGTGATCGGGGTGGACGACTTCCCGGCCGCCGGTCTCGTCACCCCCGGCCTGACGACGATCGCCCAACCCGTGGAGGCGCACGCCCGACACCTGGCCGACAGCGTGGTGGCGGCCCTGGACGGCGCACCCGGACCGGCCTGGCCGGCCGACCCGTGCCGCGTCGTCGTGCGCGACACCACCTGAMPVTSADVARAAGVSRATVSYVLNDTPGSSISAATKEHVRATAARLGYAPSAAARALRRGRSDLVVCVLPDWTTGPVVDTLLDLLGDTLAARGLFLLVHHHRPTRPVTDLWKAVTPRAVVGLTEFPAADLRALAQAGIDVVGADAEHARLDAELQRDIARLQVGHLVDTGRRRVAVATTTDPRLTTFAEQRTAGVVDACADRGLPVPDVVPLPADRPATDAVRAWAAADVDAVACYNDEVAFAVLAGATSAGVAVPDDLAVIGVDDFPAAGLVTPGLTTIAQPVEAHARHLADSVVAALDGAPGPAWPADPCRVVVRDTTNANANANANA
AK018_04025612hypothetical proteinATGTCCGACGCCAGCGCGACACCCCTCTCGAACCGGACCGCCGGCACGGCGCGCCGGCTGTGGGGACTGGTGTACGTCCGCGCCGCCGCCTACCTGGTGGTCGGCGTCCTGCTGTTCGCCAACCCCGACGAGGGACTGGTGTGGCTGCGCTGGCTGGTCGGCCTGGTGATCCTCGCCCAGGGGATCCTGCTGACGCTCGAGGGCCGCGCCGCCCGGGGCGCCGACGGCGAGATGAGCTGGCGGTTCGTGGTGGGGATCATCAGCATCGTCGCCGCGGCGGTCGTCGTCCTGCTGCCCGAGATGACGTCCTCGCTCTTCTTCCTCGTCCTGGGGATCTGGGCGTGCGCCGCCGGTGCGGTCGGCATCGTCGGCGGCCTGCGGGGCCGGACCGAGCACGCCATGGCCTGGGACTGGCAGCTCGTCAACGCCGCCATGTGGCTGGTGCTGGGGATCGTGGTGCTCGCCCGGCCCACCGACGACACGACGACGATCGCGCTGCTGCTCGGCGTCTACCTGCTGCTGGCCGGCGCGGTGCTCGCCGTCGGCGGGCTCGCCACGAGCACCCGGCAGCGCGAGCTCGACGCCGCCGCACCGCCGTCGTCGGACGACTGAMSDASATPLSNRTAGTARRLWGLVYVRAAAYLVVGVLLFANPDEGLVWLRWLVGLVILAQGILLTLEGRAARGADGEMSWRFVVGIISIVAAAVVVLLPEMTSSLFFLVLGIWACAAGAVGIVGGLRGRTEHAMAWDWQLVNAAMWLVLGIVVLARPTDDTTTIALLLGVYLLLAGAVLAVGGLATSTRQRELDAAAPPSSDDNANANANANA
AK018_04026741hypothetical proteinATGAGGATCGCCGTCGCCGGGGGTACCGGCACCGTGGGCCGCCACGTGGTGTCCGCCGTCGAGCGGGCCGGGCACGACGTCGTCGTCCTGGCGCGGAGCCGCGGGGTCGACGTCGTCACAGGGGCCGGGCTGGACGCCGCGCTGGAGGGTGCCGACGTCGTCGTGGACACCCTGAACCGCATGAGCCCGCGGGAGCGGACCGCGCGGGACTTCTTCACCGCGACCTCGCGGAACCTGCTCGCCGCGGAGGCGCGGGCCGGCGTCGCGCATCACGTGCTGCTGTCGATCGTGGGGCTGGAGCGGGTGCCGGGGTACGGCTACTTCCGGGCGAAGGCGGCGCAGGAGCAGGTGGTGACCGACGGCGCCGTGCCCTGGACGGTGCTGCGGGCGACGCAGTTCCACGAGTTCCCGGGCCAGATCCTCGACCAGGTGCCCGGCCCGGTGGGCGTGATGCCACGGATGCTGAGCCGTCCGGCGGCGGCGCGCGAGGTCGGCGAGGAGCTGGTGCGGTGCGCCGAGGCCGGGCCGCAGGGGTTCGCGCCGGAGCTCGCAGGGCCCCGCGAGGAGCAGATGGTGGACATGGCCCGGCGGCTGCTGCGGGCGCGGGGACGACGGCGATGGGTCGTGCCGATCTCGTTCCCGGGCGCGGGGGAGGACATGCGCGGCGGCGGGCTGCTGCCCGACGGCGAGGGGCCGCGCGGGCGGGTCACGTTCGACGAGTGGCTGGCCGCCGGTGCGTGAMRIAVAGGTGTVGRHVVSAVERAGHDVVVLARSRGVDVVTGAGLDAALEGADVVVDTLNRMSPRERTARDFFTATSRNLLAAEARAGVAHHVLLSIVGLERVPGYGYFRAKAAQEQVVTDGAVPWTVLRATQFHEFPGQILDQVPGPVGVMPRMLSRPAAAREVGEELVRCAEAGPQGFAPELAGPREEQMVDMARRLLRARGRRRWVVPISFPGAGEDMRGGGLLPDGEGPRGRVTFDEWLAAGANANANANANA
AK018_040271200thcD_1Rhodocoxin reductaseATGGAACCGATCGTCGTCGTCGGCGGAGGCCTGGCCGCCGCCCGAGCCACCGAGACGCTGCGCACCGAGGGGTACGACGGTGACCTCGTCGTCGTCACCGGCGAGCCCGAGGTTCCCTACGAGCGACCCCCGCTGTCCAAGGACTACCTGCGCGGCGAGGCCGGCCGGGACGCCCTGCGCACGCTCGACGCCGACTGGTACGCCGACCACGGCGTGGACCTGCGCACCTCCACGACGGCGGTCGGCCTCGACGTCGCCGCACGGTCGGTGTCCACCGCTCCCGACGGGGCCCTGCGGTACTCGCGACTGCTGCTCGCCACGGGCTCGCGGGTCCGCCGTCTCGACGTCCCCGGCGGCGGGCTCGACGGCGTGCACTCCCTGCGCTCCGTCGCCGACGCCGACCGCCTCGCAGAGGCGCTCGCCGGTGACGGACCCGTCGTGGTGGTGGGCGACGGCTGGATCGGCATGGAGGTGGCGGCGTCGGCCCGCCAGCTCGGCCGGGACGTGACGCTGGTCGGCCGCGGCCGGCACCCGATGGGTGCCCTCGGGCCCGAGGTGTCCGCGATCTTCGCCGCAGAGCACGAGGCCCACGGCGTGCGGCTGCTCGCGGGCCGCAGCGTCACGGCGTTCGAGGGCACCGCCCGGGTCACCGGGGTCACGCTGGACGACGGCGTCACGCTCGAGGCGAGCACCGTCGTCGTCGGCATCGGGGTCACTCCGGAGGTCGGCCTCGCCGAGGCGGCCGGCATCGAGGTGCGCACCGCGGAGGCCGGCGGCGGGATCACCGTGGACCCGACGCTGCGGACGTCGGCACCCGAGGTGTGGGCCGCCGGGGACATCGCCGCCGTTCCCTCCCCGCGGTACGCCAAGCTGCTGCGGATCGAGCACTGGGCCGTCGCCGACACCACCGGTGCGCACGCCGCCCGCTCGATGCTCGGCTCCGGCCGGGAGTACGACGAGCTGCCCTACTTCTTCTCCGACCAGCTCGACCTGGGCATGGAGGCCAAGGGGCTCACCGAGGGCGAGGTGGTGCTCTCCGGGTCCGTCGAGGACCGCGAGTGCGTCGCGTTCTGGGTCACCCGGGACCGCGTGGAGGGAGCGATGGGGATCAACGTGTGGGACCGGATGGACGACGCCGAGGAGCTGATCCGGCGCGACGGACCGGTGGCGCGTGCCGAGCTGGAGGGCTTCGTCGGCTGAMEPIVVVGGGLAAARATETLRTEGYDGDLVVVTGEPEVPYERPPLSKDYLRGEAGRDALRTLDADWYADHGVDLRTSTTAVGLDVAARSVSTAPDGALRYSRLLLATGSRVRRLDVPGGGLDGVHSLRSVADADRLAEALAGDGPVVVVGDGWIGMEVAASARQLGRDVTLVGRGRHPMGALGPEVSAIFAAEHEAHGVRLLAGRSVTAFEGTARVTGVTLDDGVTLEASTVVVGIGVTPEVGLAEAAGIEVRTAEAGGGITVDPTLRTSAPEVWAAGDIAAVPSPRYAKLLRIEHWAVADTTGAHAARSMLGSGREYDELPYFFSDQLDLGMEAKGLTEGEVVLSGSVEDRECVAFWVTRDRVEGAMGINVWDRMDDAEELIRRDGPVARAELEGFVGPGPT0019730_2017DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
AK018_04028240rpmC_1COG025550S ribosomal protein L29ATGGCTATCGGTACCCAGGGCCTGGCCCCCGCCGACCTCGACGGCTTCGACGACGAGACCCTCGTCGCGAAGCTCAAGGAGCAGAAGGAAGAGCTCTTCAACCTTCGCTTCCAGGCCGCCACCGGCCAGCTCGAGTCGCACGGCCGCCTCAAGGCGGTCAAGCGCGACATCTCGCGGATCTACACGGTCCTGCGGGAGCGCGAGCTCGGCATCCGTACGGCCCCGAGCGTGAGTGAGTGAMAIGTQGLAPADLDGFDDETLVAKLKEQKEELFNLRFQAATGQLESHGRLKAVKRDISRIYTVLRERELGIRTAPSVSENANANANANA
AK018_04029285rpsQ_1COG018630S ribosomal protein S17ATGAGCGAGAACACCGAGACGGTGACCACCGAGGAGCGGGCCAGCCGCAAGGTGCGCCGCGGATACGTCGTCAGCGACAAGATGGAGAAGACCATCGTCGTCGAGGTCGAGGACCGCAAGAAGCACCCGCTCTACGGCAAGGTCATGCGCCGTACGAACAAGGTGAAGGTGCACGACGAGGAGAACACGGCCGGTATCGGCGACCTCGTCGTCATCATGGAGACCCGCCCGCTGTCCGCGACCAAGCGGTGGCGCCTGGTGGAGATCCTCGAGAAGGCCAAGTAAMSENTETVTTEERASRKVRRGYVVSDKMEKTIVVEVEDRKKHPLYGKVMRRTNKVKVHDEENTAGIGDLVVIMETRPLSATKRWRLVEILEKAKNANANANANA
AK018_04030369rplN_1COG009350S ribosomal protein L14ATGATCCAGCAGGAGTCGCGACTGCGTGTCGCCGACAACACGGGTGCCAAGGAGATCCTCACCATCCGTGTTCTCGGTGGCTCCGGCCGTCGCTACGCCGGTATCGGCGACACCATCGTCGCCACCGTCAAGGACGCGATCCCGGGCGGCAACGTGAAGAAGGGCGACGTCGTCAAGGCCGTCATCGTCCGGACCGCCAAGGAGCGCCGTCGTCCCGACGGTTCCTACATCAAGTTCGACGAGAACGCCGCCGTCATCCTCAAGGGCGACAGCGAGCCCCGTGGGACCCGCATCTTCGGCCCGGTCGGCCGTGAGCTGCGCGACAAGCGGTTCATGAAGATCATCTCGCTGGCTCCGGAGGTGCTCTGAMIQQESRLRVADNTGAKEILTIRVLGGSGRRYAGIGDTIVATVKDAIPGGNVKKGDVVKAVIVRTAKERRRPDGSYIKFDENAAVILKGDSEPRGTRIFGPVGRELRDKRFMKIISLAPEVLNANANANANA
AK018_04031342rplX_1COG019850S ribosomal protein L24ATGGCGAAGATCAAGAAGGGCGACCAGGTGATCGTCACCGCAGGTCGCGACAAGGGCAAGACGGGTCGCGTGCTCGAGGTGCTCACGGACTCGGACCGCATCGTGGTCGAGGGCATCCAGCGCGTGACCAAGCACGTGAAGGCCGGCCAGTCGGCTCGCGGCACCCGCACGGGTGGCCTCGAGACCGTCGAGGCCCCGATCCACGTGTCCAACGTGATGCTGGTCGACCCCGAGACGAAGAAGCCGACCCGCGTCGGCTTCCGCCTCGAGGAGGTGGAGCAGGACGGTCGTACCCGCACGGTGCGCGTCCGCTACGCCAAGCGCTCCGGGAAGGACATCTGAMAKIKKGDQVIVTAGRDKGKTGRVLEVLTDSDRIVVEGIQRVTKHVKAGQSARGTRTGGLETVEAPIHVSNVMLVDPETKKPTRVGFRLEEVEQDGRTRTVRVRYAKRSGKDINANANANANA
AK018_04032573rplE_1COG009450S ribosomal protein L5ATGACCGAGACGACTCTCGAGGCCCCGGCCCTGCCGCGCCTCAAGCAGAAGTACCGCGAGGAGATCCTCTCCGCCCTCAAGGACGAGTTCGACCACCAGAACGTCCAGCAGGTCGCCGGTCTGACCAAGATCGTCGTCAACATGGGTGTCGGGGACGCTGCGCGCGACTCCAAGCTCATCGAGGGCGCGATCCGCGACCTGACCGCGATCACCGGCCAGAAGCCGGCGATCAACCGTGCCAAGAAGTCCATCGCGCAGTTCAAGCTGCGCGAGGGCATGCCGATCGGCGCGCACGTCACCCTGCGTGGTGACCGCATGTGGGAGTTCCTCGACCGCCTGCTCTCGATCGCGCTGCCGCGCATCCGCGACTTCCGCGGACTGAGCCCGAAGCAGTTCGACGGCCACGGCAACTACACGTTCGGTCTCACGGAGCAGTCGATGTTCCACGAGATCAACCAGGACAAGATCGACCGTGTCCGGGGCATGGACATCACGATCGTGACGACGGCGACGACCGACGACGAGGGCCGCTCCCTGCTGCGCCGTCTCGGTTTCCCCTTCAAGGAGAACTGAMTETTLEAPALPRLKQKYREEILSALKDEFDHQNVQQVAGLTKIVVNMGVGDAARDSKLIEGAIRDLTAITGQKPAINRAKKSIAQFKLREGMPIGAHVTLRGDRMWEFLDRLLSIALPRIRDFRGLSPKQFDGHGNYTFGLTEQSMFHEINQDKIDRVRGMDITIVTTATTDDEGRSLLRRLGFPFKENNANANANANA
AK018_04033186rpsZ_1COG019930S ribosomal protein S14 type ZATGGCGAAGAAGGCCCTGATCAACAAGGCGAACGCCAAGCCGAAGTTCGCCGTACGTGCCTACACCCGGTGCCAGCGCTGCGGCCGGCCGCACTCGGTCTACCGCAAGTTCGGCCTGTGCCGGATCTGCCTGCGGGAGATGGCCCACCGTGGCGAGCTCCCCGGCGTCACCAAGAGCAGCTGGTAAMAKKALINKANAKPKFAVRAYTRCQRCGRPHSVYRKFGLCRICLREMAHRGELPGVTKSSWNANANANANA
AK018_04034393rpsH_1COG009630S ribosomal protein S8ATGACCGACCCGATCGCAGACATGCTGACGCGTCTGCGCAACGCGAACTCGGCGCACCACGACACGGTCACCATGCCGTTCTCGAAGCTGAAGTCGCGCATCGCGGAGATCCTGCAGGCCGAGGGTTACATCACCGGCTGGACCGTCGAGGACGCTCAGGTGGGCAAGAACCTCACCCTGACCCTCAAGTACGGCCCGAGCCGTGAGCGCGCGCTGACCGGCGTGCGCCGTGTGTCCAAGCCCGGTCTGCGCGTCTACGCGAAGTCCACCAACCTCCCGAAGGTCCTCGGTGGCCTCGGCGTGGCCATCCTGTCCACCTCGTCCGGCCTCCTGACCGACCGTCAGGCGCAGGACAAGGGCGTGGGCGGCGAAGTCCTCGCCTACGTCTGGTAAMTDPIADMLTRLRNANSAHHDTVTMPFSKLKSRIAEILQAEGYITGWTVEDAQVGKNLTLTLKYGPSRERALTGVRRVSKPGLRVYAKSTNLPKVLGGLGVAILSTSSGLLTDRQAQDKGVGGEVLAYVWNANANANANA
AK018_04035537rplF_1COG009750S ribosomal protein L6ATGTCTCGAATCGGCAAGCTCCCCGTTCCGGTCCCGTCCGGCGTGGAGATCACCATCAGCGGCGCGCTGGTGACCGTCAAGGGGCCCAAGGGCACCCTGGAGCACACGGTTCCCGCGCCGATCACCGTCGAGCAGACCGAGGACGGCCTCAAGGTCTCGCGTCCCGACGAGGAGCGCGAGTCCCGGTCGCTGCACGGCCTGACCCGCACCCTGCTCTCCAACATGGTCACCGGTGTGACCAACGGTTACGAGCGCAAGCTCGAGATCGTCGGCACCGGGTACCGCGTGGTGGCCAAGGGCCAGGACCTCGAGTTCGCGCTCGGGTTCTCGCACCCCGTCACGGTCTCGGCGCCGGAGGGCATCACCTTCGCGGTCGAGAGCCCGACGAAGTTCTCGGTCGCCGGCATCGACAAGCAGCAGGTCGGCGAGGTCGCTGCGAACATCCGCAAGATCCGCCGCCCCGAGCCCTACAAGGGCAAGGGTGTGCGGTACGCCGACGAGGTCGTCCGTCGCAAGGTCGGAAAGGCTGGTAAGTGAMSRIGKLPVPVPSGVEITISGALVTVKGPKGTLEHTVPAPITVEQTEDGLKVSRPDEERESRSLHGLTRTLLSNMVTGVTNGYERKLEIVGTGYRVVAKGQDLEFALGFSHPVTVSAPEGITFAVESPTKFSVAGIDKQQVGEVAANIRKIRRPEPYKGKGVRYADEVVRRKVGKAGKNANANANANA
AK018_04036372rplR_1COG025650S ribosomal protein L18ATGGCTCTCAAGGTTCTCGGCAAGGGCAAGAGCGTCGCTCGTCAGCGTCGTCACCTTCGCCTGCGCAAGAAGATCAAGGGCACCGCGGAGCGTCCTCGCCTCGTCGTGACCCGTTCGTCGCGTCACATGGTGGCGCAGGTCGTGGACGACACGGTCGGCAAGACCGTGGCCTCCGCCTCGACCCTCGAGGCCGACCTGCGTGCGCTGGACGCCGACAAGACCGCCAAGGCCCGCAAGGTCGGCGAGCTCGTCGCCGAGCGTGCGAAGTCCGCCGGTGTCGACGCCGTGGTCTTCGACCGTGGCGGCAACAAGTACCACGGTCGGGTGGCTGCGGTCGCCGACGGCGCACGGGAAGCGGGGTTGGCTCTGTGAMALKVLGKGKSVARQRRHLRLRKKIKGTAERPRLVVTRSSRHMVAQVVDDTVGKTVASASTLEADLRALDADKTAKARKVGELVAERAKSAGVDAVVFDRGGNKYHGRVAAVADGAREAGLALNANANANANA
AK018_04037666hypothetical proteinATGGCTGCAGGGCAGCGCAACACCGGCGCCCCCCAGGGCGCCAACGAGTCCAAGAACGACGGTCGCCGCTCCAACCGGCGCGACGACCGCCGCAACAACCGCGGTGACGACCGCAACGCCTTCGTCGAGCGCGTGGTGACCATCAACCGCGTCGCCAAGGTCGTCAAGGGCGGCCGCCGCTTCAGCTTCACCGCGCTGGTCGTGGTGGGCGACGGCGACGGCACCGTCGGCGTCGGCTACGGCAAGGCGAAGGAGGTGCCCTCGGCGATCGCCAAGGGTGTCGAGGAGGCGAAGAAGAACTTCTTCCGCGTCCCGCGCATCCAGGGCACCATCCCGCACCAGGTCCAGGGCGAGGAGGCGGCCGGTGTCGTCTTCCTGCGTCCGGCCTCCCCGGGTACCGGTGTGATCGCCGGTGGTCCGGTGCGCGCCGTGCTGGAGTGCGCCGGGATCCACGACGTGCTGAGCAAGTCGCTCGGTTCGTCGAACGCGATCAACATCGTGCGCGCCACCGTCGCGGCCCTCCAGGGCCTCGAGGAGCCGGCCGCCGTGGCCGCTCGTCGTGGTCTGCCGCTCGAGGACGTCGCCCCGGCGCCGCTGCTGCGTGCGCAGGCCGCCGGCCTGGCCGCGCAGTCGGAGAAGAAGGCCGACGAGAAGGTGGGTGCGTGAMAAGQRNTGAPQGANESKNDGRRSNRRDDRRNNRGDDRNAFVERVVTINRVAKVVKGGRRFSFTALVVVGDGDGTVGVGYGKAKEVPSAIAKGVEEAKKNFFRVPRIQGTIPHQVQGEEAAGVVFLRPASPGTGVIAGGPVRAVLECAGIHDVLSKSLGSSNAINIVRATVAALQGLEEPAAVAARRGLPLEDVAPAPLLRAQAAGLAAQSEKKADEKVGANANANANANA
AK018_04038183rpmD_1COG184150S ribosomal protein L30ATGGCCCGTCTCAAGGTCACCCAGGTCAAGTCCGCCATCGGCGGCAAGCAGAACCAGCGTGACACGCTGCGGACCCTCGGCCTCAAGCGGATCGGCGACATCGCCGTGAAGGAGGACCGTCCGGAGATCCGTGGCATGGTCACCACGGTGGCGCATCTCGTCACCGTCGAGGAGGTCGACTGAMARLKVTQVKSAIGGKQNQRDTLRTLGLKRIGDIAVKEDRPEIRGMVTTVAHLVTVEEVDNANANANANA
AK018_04039477rplO_1COG020050S ribosomal protein L15ATGGCCGACAGCACCCAGGACAAGGGCGCGCCGTCGCAGCCGCTGAAGGTCCACCACCTGCGTCCGGCTCCCGGCGCCAAGAAGGCCAAGACCCGTGTGGGTCGTGGTGAGGCGTCGAAGGGCAAGACGGCGGGTCGCGGCACCAAGGGCACCAAGGCTCGTTACCAGGTGCCCGCGGGCTTCGAAGGTGGGCAGATGCCGCTGCACATGCGTCTGCCGAAGCTGCGTGGCTTCAAGAACCCGTTCCGCGTCGAGTACCAGGTGGTCAACCTGGACAAGCTCGCCGCGCTGTACCCGGAGGGGGGCTCCGTCACGGTCGACGATCTCGTCGCCAAGGGCGCGGTCCGCTCCGGCCAGCCGGTGAAGGTTCTCGGCACGGGGGAGATCACCGTCAAGCTGGACGTCGCGGTCGACGCGATCTCCGGCTCCGCCAAGGACAAGGTCCTGGCGGCCGGCGGCTCGGTCTCCGAGGACTGAMADSTQDKGAPSQPLKVHHLRPAPGAKKAKTRVGRGEASKGKTAGRGTKGTKARYQVPAGFEGGQMPLHMRLPKLRGFKNPFRVEYQVVNLDKLAALYPEGGSVTVDDLVAKGAVRSGQPVKVLGTGEITVKLDVAVDAISGSAKDKVLAAGGSVSEDNANANANANA
AK018_040401299secY_1COG0201Protein translocase subunit SecYGTGCTCAGCGCATTCGGCCGGGCTTTCCGGACACCGGACCTGCGGCGCAAGCTGCTGTTCACGATCGCGATCATGGCGCTGTTCCGCGTGGGGTCGTTCGTCCCGACGCCGGGCGTCGACTACGGCAACGTCCAGCAGTGCGTGGCCTCCCTGGAGGACAGCACCTCGCTGCTCGGCCTCGTCAACACCTTCAGCGGCGGAGCCCTCCTGCAGCTGTCGGTGTTCGCACTGGGGATCATGCCCTACATCACCGCCAGCATCATCACGCAGCTCCTGCGTGTCGTCATCCCGCGGTTCGAGGCCCTCCACAAGGAGGGGCAGTCCGGCCAGTCGAAGCTGACGCAGTACACGCGGTACCTGACGATCGCCCTGGCGATCCTGCAGTCGACGACGATCGTGACCACGGCTCGTACCGGCCTGCTCTTCCCCGGCTGCAACCTCGACGTCGTCGTCGACGACAGCTTCTGGACCGCCGCCCTGATGGTGATCACCATGACCGCGGGCACCGGTCTGGTGATGTGGCTCGGCGAGCTCATCACCGAGCGCGGCATCGGCAACGGCATGTCGCTGCTGATCTTCACCTCGATCGTCGCCAGCTTCCCGACGGCCCTCTGGTCGATCGCCGGCGGTGCGAACGGCCCCCTGAACTTCATCATCATGATCGGCGTGATCGTGCTGGTCATCGGCATGGTCGTCTTCGTCGAGCAGTCCCAGCGCCGGATCCCGGTCCAGTACGCCAAGCGGATGGTCGGTCGCCGGATGTACGGGGGGACCAGCACCTACATCCCGATCAAGATCAACATGTCGGGCGTCATCCCGGTCATCTTCGCGGCGTCGATCCTCGCGATCCCCGCGCTGATCGCCCAGTTCGGCGACCAGACCGCGGACTGGGTCGTCTGGATCTCGAACAACCTGGCCCAGCAGGACCAGGCGCTGTACATCGTGCTCTACGTCGCGATGATCATCTTCTTCGCCTTCTTCTACACCTCGATCACGTTCAACCCGGACGAGGTCGCGGACAACATGAAGAAGTACGGCGGCTTCATCCCGGGCATCCGTGCCGGGCGCCCCACGGCCGAGTACCTGGACTACGTGATCACCCGCATCACGTCGGCCGGTTCGCTCTATCTCGCCATCGTCGCGCTGATCCCGACGTTGGTGCTGGTGTTCCTCGGCGTCACGACGAACATCCCGTTCGGCGGGACGTCGATCCTCATCATCGTCGGTGTTGGGCTGGAGTTCGTGAAGCAGGTGAACTCCCAGCTCCAGCAGCGCCACTACGAAGGGTTCCTCCGTTGAMLSAFGRAFRTPDLRRKLLFTIAIMALFRVGSFVPTPGVDYGNVQQCVASLEDSTSLLGLVNTFSGGALLQLSVFALGIMPYITASIITQLLRVVIPRFEALHKEGQSGQSKLTQYTRYLTIALAILQSTTIVTTARTGLLFPGCNLDVVVDDSFWTAALMVITMTAGTGLVMWLGELITERGIGNGMSLLIFTSIVASFPTALWSIAGGANGPLNFIIMIGVIVLVIGMVVFVEQSQRRIPVQYAKRMVGRRMYGGTSTYIPIKINMSGVIPVIFAASILAIPALIAQFGDQTADWVVWISNNLAQQDQALYIVLYVAMIIFFAFFYTSITFNPDEVADNMKKYGGFIPGIRAGRPTAEYLDYVITRITSAGSLYLAIVALIPTLVLVFLGVTTNIPFGGTSILIIVGVGLEFVKQVNSQLQQRHYEGFLRPGPT0025725_3852DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025725-secY-K03076NANA
AK018_04041642adk_1Adenylate kinaseTTGACCGAGACGACCACCCCGACCACCCGTCGCGAGCTCCACGGCTCCCAGCGTCCCGAGGCACGGGTGACCCGCCTGGTGATCATGGGACCGCAGGGCGCGGGCAAGGGCACCCAGGCCGCTCGCCTCGCCGAGGTCTTCGGGATCCCCGCCATCTCGACCGGTGACATCTTCCGGGCGAACATCAAGGGCGGCACCGAGCTCGGCCGGCTGGCCCAGGAGTACTCGGCGAAGGGCGAGCTCGTCCCCGACGAGGTCACGGACTCCATGGTCCGCGACCGCCTCGCGGAGGACGACGTCGAGGGCGGTTTCCTGCTCGACGGGTACCCGCGCAACGCCCACCAGGTCGAGGCGCTGGACGCCATCCTCGGCGATCTCGACTGGGAGCTGGACGGGGTCATCGAGCTGACGGCGGACCGCGAGGAGCTGCTGCAGCGCATCGCCAAGCGGGCCGAGATCGAGGGCCGCGAGGACGACACCCCGGACGCGATCGCCCGCCGGCTCGACATCTACGAGGCCGAGACGGCGCCGCTGACGGCCGCCTACGCCGAGCGTGGCCTGCTGGTCCAGGTCGACGGGATCGGCGAGATCTCCGAGGTCACCGACCGGATCGTCGCCGCCCTCGAGCAGCAGTTCGGCTGAMTETTTPTTRRELHGSQRPEARVTRLVIMGPQGAGKGTQAARLAEVFGIPAISTGDIFRANIKGGTELGRLAQEYSAKGELVPDEVTDSMVRDRLAEDDVEGGFLLDGYPRNAHQVEALDAILGDLDWELDGVIELTADREELLQRIAKRAEIEGREDDTPDAIARRLDIYEAETAPLTAAYAERGLLVQVDGIGEISEVTDRIVAALEQQFGPGPT0009040_5543DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0009040-adk|AK-K00939NANA
AK018_04042876map-1_1COG0024Methionine aminopeptidase 1GTGTTCCGTTCCCGTCCCCGGATCGAGCTGAAGTCGCGCGCCGAGATCCGGCTGATGCGCCGCGCCGGCCTGGTCGTCGCCGACGCGTTGTCCGCGGTCAGCGCCGCGGCGCGCCCCGGGGTGACGACAGGTGACCTCGACCGGGTGGCGGCCGACGTGATCGCCGCGGCCGGGGCGACGCCGTCGTTCCTCGGCTACCACGGCTTCCCCGCGACGATCTGCACGTCGGTGAACGACGAGATCGTCCACGGGATCCCGGGGACCCGCTCCCTGGCTCGGGGTGACGTGGTGTCCGTCGACTGCGGTGCGATCGTGGACGGCTGGCACGGCGACTCGGCGGTCTCGTTCCAGATCGGCCCGGACGGCGCGCTGGGCCCCGACGACCCGCGAGCCCGGGAGCTGGACGCGGACGACGCCGCGCTGGTGCTGGCGACCCGCAGCGCGATGTGGGCGGGTGTCGCGGCCCTGGCGTCCGCACGCCGCGTGGGCGAGGTCGGCGACGCCGTCGAGATGGCCGCCGAGACCGCGGGCGGGCTGGTCGGCACCTCCTACGGCATCGTCGAGGAGTACACGGGCCACGGCATCGGGACGGCGATGCACCAGCCGCCGGACGTGCTCAACTTCCGGGCGACCGACCGCGGGCCCCGGGTCCGAGCGGGCATGTGCCTGGCCGTGGAGCCCATGCTGACCCGGGGGACCGAGGTGACCCGGGTGCTCGGCGACGACTGGACCGTGGTGGCCGCCGACGGTGCCCGGGCCGCGCACTGGGAGCACACGGTCGCGGTGCTGGACGACGGCATCGCGGTGCTCACCGCCGCCGACCTCGGCCGCGAGGGCCTGGCGGCCTTCGACGTCGTCCCCGTCGACCTCGACTGAMFRSRPRIELKSRAEIRLMRRAGLVVADALSAVSAAARPGVTTGDLDRVAADVIAAAGATPSFLGYHGFPATICTSVNDEIVHGIPGTRSLARGDVVSVDCGAIVDGWHGDSAVSFQIGPDGALGPDDPRARELDADDAALVLATRSAMWAGVAALASARRVGEVGDAVEMAAETAGGLVGTSYGIVEEYTGHGIGTAMHQPPDVLNFRATDRGPRVRAGMCLAVEPMLTRGTEVTRVLGDDWTVVAADGARAAHWEHTVAVLDDGIAVLTAADLGREGLAAFDVVPVDLDPGPT0020010_2222DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
AK018_04043222infA_1COG0361Translation initiation factor IF-1ATGGCAAAGAAGGACGGTGTCATCGAGATCGAGGGCAGCGTGATCGAGGCGCTGCCGAACGCGATGTTCCGCGTGGAGCTGAGCAACGGTCACAAGGTCCTCGCCCACATCTCGGGCAAGATGCGGCAGCACTACATCCGGATCCTCCCCGAGGACCGCGTCGTGGTGGAGCTCAGCCCGTACGACCTGTCCCGTGGCCGGATCGTCTACCGCTACAAGTAGMAKKDGVIEIEGSVIEALPNAMFRVELSNGHKVLAHISGKMRQHYIRILPEDRVVVELSPYDLSRGRIVYRYKNANANANANA
AK018_04044114rpmJ_1COG025750S ribosomal protein L36ATGAAGGTCAAGCCGAGCGTCAAGAAGATCTGCGACCAGTGCAAGGTGATCCGCCGGCACGGTCGCGTCATGGTGATCTGCTCGAACCAGCGCCACAAGCAGCGCCAGGGCTGAMKVKPSVKKICDQCKVIRRHGRVMVICSNQRHKQRQGNANANANANA
AK018_04045375rpsM_1COG009930S ribosomal protein S13ATGGCACGTCTGATCGGCGTCGACCTCCCGCGCGAGAAGCGGGTCGTCGTCGCACTCACCTACATCTACGGCGTCGGTCGCACCCGCGCCGAGCAGACCGTCGCGGCCACCGGGATCTCCCCGGACACGCGCGTGAAGGACCTCGGCGACGCCGAGCTCGTCGCGCTGCGCGACCACCTCGAGGGCAACTTCCAGCTCGAGGGTGACCTCCGCCGCGAGGTCGCGGCCGACATCCGCCGCAAGGTGGAGATCGGCACCTACCAGGGTCTGCGTCACCGTCGCGGACTGCCGGTGCGTGGCCAGCGCACCAAGACCAACGCGCGTACCCGCAAGGGCAAGAAGCGCACCGTCGCGGGCAAGAAGAAGGCCCGCTGAMARLIGVDLPREKRVVVALTYIYGVGRTRAEQTVAATGISPDTRVKDLGDAELVALRDHLEGNFQLEGDLRREVAADIRRKVEIGTYQGLRHRRGLPVRGQRTKTNARTRKGKKRTVAGKKKARNANANANANA
AK018_04046405rpsKCOG010030S ribosomal protein S11ATGCCTCCCAAGTCCCGCTCGACCGCCGCGCGCAAGCCGCGTCGCAAGGACAAGAAGAACGTCCCGCACGGCCAGGCGCACATCAAGAGCACCTTCAACAACACGATCGTGTCGATCACCGACCCGTCGGGCGCCGTGATCTCGTGGGCCTCCGCCGGCCACGTCGGCTTCAAGGGCTCGCGCAAGTCCACGCCCTACGCCGCCCAGCTCGCCGCCGAGTCCGCCGCGCGCCGCGCCCAGGACCACGGCGTCAAGAAGGTCGACGTCTTCGTCAAGGGCCCGGGTTCGGGTCGTGAGACCGCGATCCGTTCGCTGCAGGCGACCGGCATCGAGGTCGGCTCGATCCAGGACGTCACGCCCCAGGCGCACAACGGCTGCCGTCCCCCGAAGCGTCGCCGCGTCTGAMPPKSRSTAARKPRRKDKKNVPHGQAHIKSTFNNTIVSITDPSGAVISWASAGHVGFKGSRKSTPYAAQLAAESAARRAQDHGVKKVDVFVKGPGSGRETAIRSLQATGIEVGSIQDVTPQAHNGCRPPKRRRVNANANANANA
AK018_040471014rpoA_1DNA-directed RNA polymerase subunit alphaGTGCTCATCGCACAGCGCCCCTCGCTGACCGAAGAGGTCATCTCGGAGTACCGTTCGCGCTTCTCCATCGAGCCGCTCGAGCCCGGCTTCGGCTACACGCTCGGCAACTCGCTGCGTCGCACGTTGCTGTCGTCCATCCCGGGCGCGGCGGTCACCTCCATCCGCATCGACGGTGTGCTCCACGAGTTCACCACCGTGCCGGGTGTCAAGGAGGACGTCACCGAGATCATCCTCAACATCAAGAACCTCGTCGTCTCCTCGGAGAACGACGAGCCGGTCGTGATGTACCTGCGCAAGCAGGGCGCCGGTGCGGCGACCGCGGCGGACATCGTCCCGCCCGCGGGTGTCGAGGTGCACAACCCCGACCTGCACATCGCCACGCTCAACGACGAGGGCCGGCTCGAGATCGAGCTGACCGTCGAGCGGGGTCGTGGCTACGTGTCCGCCGCGCAGAACAAGACCCTGGACGCCGAGATCGGCCGCATCCCCGTGGACTCGATCTACTCGCCCGTCCTCAAGGTCACGTACAAGGTCGAGGCGACCCGTGTCGAGCAGCGCACCGACTTCGACAAGCTGATCGTCGACGTCGAGACGAAGAACGCGATCGCCCCGCGCGACGCGCTCGCCTCGGCCGGCAAGACGCTCGTCGAGCTCTTCGGCCTCGCCCGCGAGCTGAACGTCGAGGCCGAGGGCATCGAGATCGGCCCGTCGCCGACGGACTCCGCGCTGGCCGCGGACCTGGCGCTGCCGATCGAGGAGCTCAACCTCACGATCCGTTCGTACAACTGCCTCAAGCGTGAGGGCATCCACCAGGTGGGTGAGCTCGTGGCGCGCAGCGAGGCGGACCTGCTCGACATCCGCAACTTCGGTGCCAAGTCGATCAACGAGGTCAAGGAGAAGCTCGCGGAGCTGGGCCTTGCTCTCAAGGACTCGCCGCTCGACTTCGACCCCTCGGCGCAGTACTTCGCCGGCGGGGACGACGAGGCGTCGTACACCGACGAGCAGCCGTACTGAMLIAQRPSLTEEVISEYRSRFSIEPLEPGFGYTLGNSLRRTLLSSIPGAAVTSIRIDGVLHEFTTVPGVKEDVTEIILNIKNLVVSSENDEPVVMYLRKQGAGAATAADIVPPAGVEVHNPDLHIATLNDEGRLEIELTVERGRGYVSAAQNKTLDAEIGRIPVDSIYSPVLKVTYKVEATRVEQRTDFDKLIVDVETKNAIAPRDALASAGKTLVELFGLARELNVEAEGIEIGPSPTDSALAADLALPIEELNLTIRSYNCLKREGIHQVGELVARSEADLLDIRNFGAKSINEVKEKLAELGLALKDSPLDFDPSAQYFAGGDDEASYTDEQPYNANANANANA
AK018_04048528hypothetical proteinATGCCTACCCCCACCAAGGGTCCGCGGCTCGGCGGGAGCCCGGCTCACGAGCGGCTGATGCTCGCGAACCTGGCGACCGCTCTCTTCGAGCACGGCCGCATCACGACCACCGAGACGAAGGCGAAGCGCCTGCGCCCGGTCGCCGAGCGTCTGATCACCTTCGCCAAGCGCGGTGACCTGCACGCCCGCCGTCGGGTCCAGACCGTCGTGCGCGACAAGTCCGTCGTGCACACCCTGTTCACCGAGATCGCCCCGGCCATGGCCGAGCGCAACGGTGGCTACACGCGCATCACGAAGGTCGGCAACCGCAAGGGCGACAACGCCCCGATGGCGGTCATCGAGCTCGTGACCGAGCCCGTGAGCCCGAAGCAGGCGGTCGTCAAGGAGGCCACCAAGGCCGCCGAGAAGTCCGCGAAGTCGTCGAAGGCCGAGAAGCCCGCCGACACCGCCGAGGAGACCCCGGCCGCCGAGGCGCCCGAGGCCACCGAGGACAAGGCCGCCGAGTCCGAGGAGTCCAAGGAGGCCTGAMPTPTKGPRLGGSPAHERLMLANLATALFEHGRITTTETKAKRLRPVAERLITFAKRGDLHARRRVQTVVRDKSVVHTLFTEIAPAMAERNGGYTRITKVGNRKGDNAPMAVIELVTEPVSPKQAVVKEATKAAEKSAKSSKAEKPADTAEETPAAEAPEATEDKAAESEESKEANANANANANA
AK018_04049813menH_22-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseGTGGTGCTCCTGCACGGCTCGCGCACCTCGCACACGATGTGGCGACGGCAGCTGGTGAGCCTCCGGACGGCGGGCGTCCCCGCCGTCGCTCCCGACCTGCCCGGGCACGGCGCCCGTCGCGCGACGCGCTTCGAGCTGGACGAGGCCGTCGAGACGGCGCGCGAGGCCGTCGACGCGGCGGGCGGCCGCGCGCTGGTCGCGGGGCTGTCCCTCGGCGGGTACGTCGCGATCGAGCACCGCGCCCGGTACCCGGGGCAGAGCGCCGGGCTGCTCGCCGCCTCCTGCAGCACGAGCCCGGACACCCCCCTGCGGGCCGGATGGCTCGTCCTCGCCCGGTGGATCGAGCGGTGGCCGGACCGCGGAGCGCGCCTCAACGACCTCGTCGTCCGCGGCCTGCTGGACCCGGAGTCCGCGCGCGACGTCGGGGACGGCGGGTTCGCGCTGGAGGCGATGGTGGACGTGCTCGAGCAGGTCGGCCGGCTCGACACACGGGCCGCCCTGCGGCGCGCCGACAGCCCGGTGCGCCTGGTGAACGGCCAGTGGGACCACTTCCGCGGCCAGGAACGCTCGATGCTGGCCGCGGCACGGTCCAGCGGGGCGGACGCACGGCTCGTCGTCGTGCCGCGGGCCCGGCACCTGGTGAGCCTGGACGCCCCCGTGGCCTTCACGCGCGCGCTGCTCGAGGCGCAAGCGGCGGCGTCGTCAGCCGACCAGGTCCCAGGCGCGGACCCCGCCGACCAGCGCGGCGGTGTTCGGGACGACGACGACGTCGTCGCCGAGCCGGTCCAGCGCGGCCGGCGTCAGGCACCGTGAMVLLHGSRTSHTMWRRQLVSLRTAGVPAVAPDLPGHGARRATRFELDEAVETAREAVDAAGGRALVAGLSLGGYVAIEHRARYPGQSAGLLAASCSTSPDTPLRAGWLVLARWIERWPDRGARLNDLVVRGLLDPESARDVGDGGFALEAMVDVLEQVGRLDTRAALRRADSPVRLVNGQWDHFRGQERSMLAAARSSGADARLVVVPRARHLVSLDAPVAFTRALLEAQAAASSADQVPGADPADQRGGVRDDDDVVAEPVQRGRRQAPPGPT0013125_2952DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433NANA
AK018_04050744ppgK_2COG1940Polyphosphate glucokinaseATGACCCTCGCCGTGGACTGCGGCGGCGGTGGCATCAAGGCCACCGTCCTGGACGACGCGGGGACGGCGCACGCCGACCCGGTCCGTGTCCCGACCCCGTACCCGCTGCCGCCGGACCTGCTCGTGGACACGGTGGCCGCGATCGCGGCGGGACTCCCCCGCCCCGACCGCGTCACGGTCGGGCTGCCCGGGATGATCCGGCACGGGGTGGTCGTGCACACCCCGCACTACGTCACGCGCGCCGGCCCGCGCACCCGCGTCGACCCGGACCTGGTCGAGCGGTGGCGCAACGTCGACCTGCGCGCGGCGCTGCACGCACGGCTCGACGTGCCCGCGCTGGTGCTCAACGACGCCGAGATGCACGCCGCCGGGGTCGTCGCGGGCAGCGGGATCGAGCTGGTGCTGACCCTGGGGACCGGCCTCGGGTCCGCCCTGTTCGACGGCGGCCGGCTGGCGCCGCACCTGGAGTGGTCCCGGGCGCCCGTGCGCCGCGGCACCACCTACGACGCGTACGTCGGCGAGCCGGAGCGCCGGCGGCTCGGCAACGGTCTGTGGTCGCGCCGCGTGGTCACCGTCGTCGACGGGCTGCGACCGGTGTTCTGGTGGGACCGGCTGTACCTCGGGGGCGGGAACTCACGGTGCCTGACGCCGGCCGCGCTGGACCGGCTCGGCGACGACGTCGTCGTCGTCCCGAACACCGCCGCGCTGGTCGGCGGGGTCCGCGCCTGGGACCTGGTCGGCTGAMTLAVDCGGGGIKATVLDDAGTAHADPVRVPTPYPLPPDLLVDTVAAIAAGLPRPDRVTVGLPGMIRHGVVVHTPHYVTRAGPRTRVDPDLVERWRNVDLRAALHARLDVPALVLNDAEMHAAGVVAGSGIELVLTLGTGLGSALFDGGRLAPHLEWSRAPVRRGTTYDAYVGEPERRRLGNGLWSRRVVTVVDGLRPVFWWDRLYLGGGNSRCLTPAALDRLGDDVVVVPNTAALVGGVRAWDLVGPGPT0017750_618DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017750-ppgK-K00886NANA
AK018_04051921truA_1COG0101tRNA pseudouridine synthase AGTGAGCATCACGAACGCGCCGGTGACCCACGACGACGCGACCGTGCGGGTCCGTCTGGACCTCGCCTACGCCGGCACCGGCTTCGCCGGCTGGGCCGCGCAGCCCGGGCTGCGCACCGTCCAGGGCGTCCTGGAGGAGGCGCTGGCCACGATCCTGCGCACGGAGCCGCTGGGCCTGGCGCGGCCGCGGCTCACGGTCGCCGGACGCACGGACGCCGGGGTGCACGCCCGGGGCCAGGTGGCCCACGTGGACGTGCCCCGCGACCGCTGGGACGCGATGCCGGGGCGCTCGGACCGCACGCCGGCCCGCGCCCTCGTCGACCGGCTGGCGGGAGTCCTGCCGAGCGACGTCGTCGTGCACGAGGCCGAGGTCGCGCCCCCGGGCTTCGACGCCCGCTTCTCGGCGCTGTCGCGGACCTATCGCTACCGCATCGCCGACGAGCACCTGCTGCGCGACCCGCTGCAGCGCGAGTGGGTGCTGTGGCACCGGCGGTCGCTGGACGTCGCCGCGATGGACGCCGCGGCGGCACCCCTGACGGGGCTGCACGACTTCGCGGCCTTCTGCAAGCCGCGCGCCGGAGCGACCACCATCCGCGAGCTCACCCGGTTCTCCTGGTCGCGGCCCGACGACGGCCCCGACGCCGGCCTGGTGGTCGCCGAGGTCGTGGCGGACGCGTTCTGCCACTCGATGGTGCGCGCCCTGGTCGGGATGTCGCTCGCCGTGGGGGAGGGGCGGCGTGCGGCCGGGGACGCCGCGACGGTCCTCGCCGGTGGTGACCGGGGCGCGGCCGCCGCGGTCGCGCCGGCGTGCGGGCTGACGCTCGAGCACGTGGCCTACCCGGTGGCGGAGGCCGAGCTGGGTCGCAGGGCGCTGCGGATCCGGGCCCGCCGTCGTGCCGACGAGGTCGAGGGGCGGCGATGAMSITNAPVTHDDATVRVRLDLAYAGTGFAGWAAQPGLRTVQGVLEEALATILRTEPLGLARPRLTVAGRTDAGVHARGQVAHVDVPRDRWDAMPGRSDRTPARALVDRLAGVLPSDVVVHEAEVAPPGFDARFSALSRTYRYRIADEHLLRDPLQREWVLWHRRSLDVAAMDAAAAPLTGLHDFAAFCKPRAGATTIRELTRFSWSRPDDGPDAGLVVAEVVADAFCHSMVRALVGMSLAVGEGRRAAGDAATVLAGGDRGAAAAVAPACGLTLEHVAYPVAEAELGRRALRIRARRRADEVEGRRNANANANANA
AK018_04052414hypothetical proteinATGAGCGAGGACACCTCGGGCACGAGACCCGACCCGGAGAACGGAGCCGAGGGCGACAACGACCAGCTGTCGGCGGAGGACACCCTGGTCGACCGCGGCACGCAGGACGTCCTCGACGAGGGTTACTCGCCGCCGGAGCGCCCCCGCGCGAACCACTGGGGCGAGACGGCCTGGGAGGAGCTGGCCGGCGAGCCGCTCGACCGTCGGCTGGCCGAGGAGCAGCCCGACTACTGGGAGGTGGACCCTCTCACCCACCCCGACACCACGCGGGCCGGACGCCTGGTCGCCGACGACGAGGCCGACCCCAACCAGGACGGTGGCCGGTCCAACGACCTCTACGGCACCGACGCGGGCGTCGACGGGGCGGGCGCGAGCGCCGAGGAAGCGGCGGTCCACTGGGTCGAGGAGCCGTAGMSEDTSGTRPDPENGAEGDNDQLSAEDTLVDRGTQDVLDEGYSPPERPRANHWGETAWEELAGEPLDRRLAEEQPDYWEVDPLTHPDTTRAGRLVADDEADPNQDGGRSNDLYGTDAGVDGAGASAEEAAVHWVEEPNANANANANA
AK018_04053450rplM_1COG010250S ribosomal protein L13GTGCGTACTTACACCCCGAAGCCCGGCGACATCCAGCGTGACTGGTACGTCGTCGACGCCTCCGACGTCGTGCTGGGCCGTCTGGCCAGCCAGGTCGCCACGCTCCTGCGCGGGAAGCACAAGCCGACCTTCGCCCCGCACGTGGACGGCGGCGACTTCGTCGTCGTCATCAACGCGGAGAAGGTGGCCCTCTCCGGCAACAAGCACGAGAACAAGCGGGCCTACCGCCACTCCGGGTACCCGGGTGGTCTCAGCTCGATCTCGTACGGCGAGCTGCTCGAGAAGAACCCCGAGCGCGTCGTCGAGAAGGCTGTGCGCGGCATGCTTCCCAAGACCAAGCTCGCTCGCGAGCAGCTCAAGAAGCTGAAGGTCTACCGCGGCGCGGAGCACCCGCACGCGGCGCAGAAGCCCCAGCCGTTCGAGATCACCCAGCTTTCGCAGCAGGCCTGAMRTYTPKPGDIQRDWYVVDASDVVLGRLASQVATLLRGKHKPTFAPHVDGGDFVVVINAEKVALSGNKHENKRAYRHSGYPGGLSSISYGELLEKNPERVVEKAVRGMLPKTKLAREQLKKLKVYRGAEHPHAAQKPQPFEITQLSQQANANANANANA
AK018_04054489rpsI_1COG010330S ribosomal protein S9GTGGCTGACACCACCGTCGACACCGAGCTGGACGAGAACACGCCCAGCAACTACACCTCCGAGACCGAGGCCCCCGTGGCCAACAGCGGTCAGTCCATCACCGCCCCGGGGCAGGCCCTCGGCCGCCGCAAGGAGGCCGTGGCGCGCGTTCGCCTCGTGCCGGGCTCCGGTGAGTGGAAGATCAACGGTCGCACCCTCGAGCAGTACTTCCCGAACAAGGTGCACCAGCAGCTCGTCAACGACCCGCTGAAGCTGGTCGAGGTCGAGGGCCGCTTCGACGTCATCGCCCGCATCGCGGGTGGTGGCCCCTCCGGCCAGGCCGGCGCGCTCCGACTCGCGATCGCCCGTGCCCTGAACGAGATCGACCGCGAGGCCAACCGCGACGCTCTCAAGAAGGCCGGCTTCCTCACCCGCGACGCGCGCGCGGTCGAGAGCAAGAAGGCCGGTCTCAAGAAGGCCCGCAAGGCTCCGCAGTACTCGAAGCGCTGAMADTTVDTELDENTPSNYTSETEAPVANSGQSITAPGQALGRRKEAVARVRLVPGSGEWKINGRTLEQYFPNKVHQQLVNDPLKLVEVEGRFDVIARIAGGGPSGQAGALRLAIARALNEIDREANRDALKKAGFLTRDARAVESKKAGLKKARKAPQYSKRNANANANANA
AK018_040551365glmM_2COG1109Phosphoglucosamine mutaseATGGGACGACTTTTCGGCACGGACGGTGTCCGTGGCCTGGCCAACCGCGACGTGACCGTCGAGCTGGCGCTCGACCTGGGCAGCGCCGCCGCGGACGTGCTCGGACGTCGCACCGACACCGTGGGGAACCGCCCCAAGGCCGTCGTGGGTCGTGACCCCCGGGCGTCCGGCGAGTTCCTCTCGGCCGCCGTGAGCGCAGGTCTGGCCGGCTCCGGCGTCGACGTCGTCGACCTCGGCGTCGTGCCGACCCCGGCCCTCGCCTTCCTCGTGAGCGCCATGCAGGCCGACCTCGGCGTCATGGTCTCCGCCTCGCACAACCCGATGCCCGACAACGGCATCAAGTTCTTCGCCCGCGGCGGGCTCAAGCTGGACGACGGCGTCGAGGACGAGATCGAGGCGTTGCTCGGCACGGGCCGCGAACGCCCGACCGGTGCCGACGTCGGCCGGATCCGGGCCGACGAGGGCATCGCCGTCCGCCAGTACGTCGACCACGTCACCGCCAGCATCGGCACCACGCCCGACCACCGGCCGCTGGAGGGCCTGCGCATCGCCGTGGACGCCGCCAACGGTGCCGCGAGCCAGGTCGGCCCGGAGGCGCTGCGCCAGGCCGGGGCCGACGTCGTCGTCATCAACGCCAGCCCGGACGGGCGCAACATCAACGAGAAGGCCGGCTCGACCCACCCCGAGCAGCTGCAGGCCGTCGTCGTCGCTGCCGAGGCCGACTTCGGCGTCGCCTTCGACGGCGACGCGGACCGCTGCCTCGCCGTCGACCACGGCGGGGTGCTCGTCGACGGCGACCAGATCCTCGGCATCCTGGCCAGGTCGCTGCGCGCGGACGGCCGTCTGCCGCAGGACACGCTCGTGGTCACCGTGATGAGCAACCTCGGCCTGCTGCTGGCGATGCGCGACGCGGGGATCGTCACCCGGCAGACCGCCGTCGGCGACCGCTACGTCCTGGAGGACATGCGCACCGGCGGATTCGGTCTCGGCGGGGAGCAGTCGGGGCACATCATCCTGGCCGAGCACGCCACGACGGGGGACGGCGTCCTGACCGCGCTGCACCTGGCGGCGCGGGTCAAGGCCTCCGGTCAGCGGCTCGCCGACCTGGCCGCGGAGATCCCGCGGCTGCCCCAGACCCTCATCAACGTCAAGGACGTCGACAAGAACCGCGCCGGCACGGACGAGCGCGTGGTCGAGGCGGTCGAGGCCTCCGAGGCGGTGCTCGGCGAGACGGGGCGTGTGCTGCTGCGACCCTCGGGCACCGAACCGGTCGTGCGGGTCATGGTCGAGGCGGCCAGCCAGGCGCAGGCCGACGGCGTCGCGGAGCGGCTCGCGGCCGTGGTCCGCGAGCAGCTCGCCCTGTGAMGRLFGTDGVRGLANRDVTVELALDLGSAAADVLGRRTDTVGNRPKAVVGRDPRASGEFLSAAVSAGLAGSGVDVVDLGVVPTPALAFLVSAMQADLGVMVSASHNPMPDNGIKFFARGGLKLDDGVEDEIEALLGTGRERPTGADVGRIRADEGIAVRQYVDHVTASIGTTPDHRPLEGLRIAVDAANGAASQVGPEALRQAGADVVVINASPDGRNINEKAGSTHPEQLQAVVVAAEADFGVAFDGDADRCLAVDHGGVLVDGDQILGILARSLRADGRLPQDTLVVTVMSNLGLLLAMRDAGIVTRQTAVGDRYVLEDMRTGGFGLGGEQSGHIILAEHATTGDGVLTALHLAARVKASGQRLADLAAEIPRLPQTLINVKDVDKNRAGTDERVVEAVEASEAVLGETGRVLLRPSGTEPVVRVMVEAASQAQADGVAERLAAVVREQLALPGPT0018950_561DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018950-glmM-K03431NANA
AK018_04056669def_3Peptide deformylaseGTGACCGGCTGGTCGGGTCCGGTCCGTCCGGAGCTCGCCGAGGCCGTCGCCGACCTGCTCGACGTGGCCGAGGGGCGCACCGACCACCCCGGCGTGCTGCCGATCGTGCAGGCCGGCGACCCCGTGCTGCGGCGTCCGGCCGCGCCGTACACCGGACAGCTCGGCGACGTGCTGCCGCGGCTGCTGGACGCGATGCGTCGCACCATGCACGCGGCTCCCGGCGTCGGGCTGGCCGCCCCGCAGGTCGGGATCGGGCTGGCGATCGCCGTGTGCGAGGACGCCGGCGTCCCCGACGACCCGAGGGACCGGCACCCCCTGCCCTTCCGCGTGCTGGTCAACCCCCGCTGCGCACCCGTCGACGACGCTCCCGACGTGCCCTTCTACGAGGGGTGCCTGTCCGTGGCGGGCTGGCAGGCCGTCGTCGCGCGTCACCGCCGGGTCCGGCTGACGGGTCAGGACGAGCACGGGACGACGCTCGACGAGGTGCTGACGGGCTGGCCCGCGCGGATCGTGCAGCACGAGACCGACCATCTGCACGGTCGCCTCTACCTCGACGCGGCGGTCCCGCGGTCGCTGACCTCGAACGAGAACCTGCTGCGGCACTTCGCCGAGGACCCGGACCCCGGCCGGGCGGCGCAGGAGCTCGGGTTCGACCTGCCCGGTGTCTGAMTGWSGPVRPELAEAVADLLDVAEGRTDHPGVLPIVQAGDPVLRRPAAPYTGQLGDVLPRLLDAMRRTMHAAPGVGLAAPQVGIGLAIAVCEDAGVPDDPRDRHPLPFRVLVNPRCAPVDDAPDVPFYEGCLSVAGWQAVVARHRRVRLTGQDEHGTTLDEVLTGWPARIVQHETDHLHGRLYLDAAVPRSLTSNENLLRHFAEDPDPGRAAQELGFDLPGVNANANANANA
AK018_04057696hypothetical proteinGTGCCGGGTCTGACGACGCTGCTGGAGCAGCTCGAGGGATGGATCCTCGAGGTCGCCGCGTCGCTGTGGATCTACCCGGCGATGTTCGCCTCGGCGTTCATCGACGGCTTCTTCCCGCCGGTCCCCAGCGAGTCCGTCCTGGTGACCCTCGTCATCTCCGCGCAGGCCACCGGCCTGCCGTGGCTCTGGCTCATCGTGCCCATCGCCGGCGTCGGCGCCTGGCTCGGCGACAACCTGGCCTACGTCCTGGGCCGCCGGGTCGGGACCGACCGCATCGGCATGCTGCGCTCGCAGCGCGGCCGCAAGGCGGTCTCCTGGGCGCGCCGTGCGCTCTCGCGGCGCGGTGCCGTGTTCATCATCGCCGCGCGCTACATCCCGGTCGGCCGGGTCGCGGTGAACATGACCGCCGGCGCCGTGGCGTACCCCCAGCGCCGGTTCATGATCTTCTCGGCGATCGCCGCGGTGCTCTGGTCCGCCTACTCCACGCTGATCGGGGTGGCCGCCGCCGGCGTGCTCGGCCACGACCCGCTGCTGGCCATGGTCGTCGGCGTCGTCGGCGGCGGGCTGCTGGGGCTGCTGGTCGACCGGGTCGTGCAGGTCTTCACCCCGCGCGACGAGGTGCTGGAGGAGATGCGCGAGCAGGCGCCGCTGCCCCAGGAGGTCGGCGTCGGCCGCGACGACTCAGAGCTTGCGTAGMPGLTTLLEQLEGWILEVAASLWIYPAMFASAFIDGFFPPVPSESVLVTLVISAQATGLPWLWLIVPIAGVGAWLGDNLAYVLGRRVGTDRIGMLRSQRGRKAVSWARRALSRRGAVFIIAARYIPVGRVAVNMTAGAVAYPQRRFMIFSAIAAVLWSAYSTLIGVAAAGVLGHDPLLAMVVGVVGGGLLGLLVDRVVQVFTPRDEVLEEMREQAPLPQEVGVGRDDSELAPGPT0004890_341DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975NANA
AK018_04058975coaA_1COG1072Pantothenate kinaseGTGCCGCCGCGGCCGCTGAGCGAGCACCTGTCCCGGTTCGCCCCCGCCTCGCCCTACGTGGACTTCGACCGCGCGGCGTGGAGTCGGCTGTCGGAGCAGACGCCGCTGCCGCTGACCGACGCCGACGTCGAGCGCCTGCGCGGCCTGGGCGACCCGATCGACCTGGCGGAGGTCGACGCCGTCTACCGGCCGCTGTCGCGGCTGCTGAACCTGTACGTGACGGCGACGGGCGGGCTGCACCGGGCGACCTCGACGTTCCTCGGCGAGGACCCGCCCCGGACCCCATACGTCATCGGGGTGGCGGGCTCGGTCGCGGTCGGCAAGTCGACGACGGCGCGCGTCCTGCGCGAGATGCTGGCGCGCTGGCCGGAGACGCCGCACGTCGAGCTGATCACCACCGACGGGTTCCTCTACCCGAACGCGGAGCTGGAGCGGCGCGGGCTGATGACGCGCAAGGGGTTCCCCGAGTCGTACGACCGCCGCAAGCTCATCCGTTTCCTGTCCCGGATCAAGGCCGGCCAGGCCGAGGTCCGCGCCCCGGTCTACTCCCACGTCACGTACGACATCGTGCCGGGCGAGGAGACGGTGGTGCACCGTCCCGACGTGCTGATCGTCGAGGGGCTGAACGTGCTGCAGCCGGCGCGGTACTCCTCCATCGACGAGTCGACGGTGGCGGTGAGCGACTTCTTCGACTTCTCGATCTACGTCGACGCCCGCACCCGCACGATCCGCCAGTGGTACGTCGACCGCTTCCTCAAGCTCCGACGCACGGCGTTCAGCCGGCCCGAGTCGTACTTCCGGCGCTACGCCGAGCTGTCCGACACCGAGGCGACGGACCGCGCCCTGCACATCTGGGAGACCATCAACGCGGTCAACCTCGAGCAGAACGTGCTGCCCACCCGCAGCCGGGCCACGCTCGTCATGAGCAAGGGGGCGGACCACGCGGTCCAGCGGGTCAGGCTACGCAAGCTCTGAMPPRPLSEHLSRFAPASPYVDFDRAAWSRLSEQTPLPLTDADVERLRGLGDPIDLAEVDAVYRPLSRLLNLYVTATGGLHRATSTFLGEDPPRTPYVIGVAGSVAVGKSTTARVLREMLARWPETPHVELITTDGFLYPNAELERRGLMTRKGFPESYDRRKLIRFLSRIKAGQAEVRAPVYSHVTYDIVPGEETVVHRPDVLIVEGLNVLQPARYSSIDESTVAVSDFFDFSIYVDARTRTIRQWYVDRFLKLRRTAFSRPESYFRRYAELSDTEATDRALHIWETINAVNLEQNVLPTRSRATLVMSKGADHAVQRVRLRKLPGPT0008770_13DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008770-coaA-K00867NANA
AK018_040591887glmS_1COG0449Glutamine--fructose-6-phosphate aminotransferase [isomerizing]ATGTGTGGCATCGTCGGATACGCCGGGACCGGTACTGCCGTCGCCGGGGGCCCGGACGCGAGCGAGCGTCCGCTGGAGGTGGCCCTGGCCGGGCTGAAGCGACTCGAGTACCGCGGGTACGACTCCGCGGGCGTGGCGCTCGTCGGCCCCGGCCGACCCGAGGCGGCGTTCGCCAAGAAGTCCGGCAAGCTCGACAACCTCGTCACCGAGATCGCGGCGCACCCGCTGCCGGCCGCGACCGCGGCGATCGGGCACACGCGGTGGGCGACCCACGGCGGCCCCACCGACACCAACGCCCACCCGCACCTGGCCGACGGCGACCGTCTCGCGGTCATCCACAACGGCATCATCGAGAACTTCAGCGAGCTGCGCGATTCCTTGACGGCCGACGGCGTCACGTTCCTGTCCGACACGGACACGGAGGTCGCCGCCCAGCTCCTGGCGCGCGAGTACCGGGCGGCCGGTGACCTCACCACCGCGATGGCCGCCACCGCCCGCCGGCTCACCGGGACCTTCACCCTGCTCGCCGTGCACGCCGACGACCCGCAGACCGTGGTGGGCGCCCGGCACGACTCGCCGCTCGTCGTCGGCCTCGGCGCGGGGGAGAACTTCCTGGGCTCCGACGTCGCGGCCTTCGTGGAGCACACCAAGGAGGCGCTCGAGCTCGGCCAGGACCAGATCGTCACGATCACCCCGGACGCGGTGACCGTCACCGACTTCGACGGCGCGCCGGCCGAGGGCAAGCGGTTCACCGTCGACTGGGACGCGGCCGCCGCCGAGAAGGGCGGCTTCGACTCCTTCATGGACAAGGAGATCCACGACCAGCCCCACGCCGTCGCCGACACCCTGCTCGGCCGGACGGACTCCTCGGGCCGGATCGTCCTCGACGACCTGCGCATCGACGAGTCCGTGCTGCGCAGCGTGGACAAGATCATCGTCATCGCCTGCGGGACGGCGGCCTACGCCGGGCACGTGGCCAAGTACGCCATCGAGCACTGGTGCCGGATCCCGGTCGAGGTCGAGCTCGCCCACGAGTTCCGCTACCGCGACCCGATCGTCGACGAGCGCACCCTGGTGGTGGCGATCTCGCAGTCCGGCGAGACCATGGACACCCTGATGGCGGTGCGCCACGCGCGCGAGCAGGGCGCCAAGGTGCTCGCCATCGTCAACACCAACGGCTCGACCATCCCGCGCGAGTCCGACGCCGTGCTGTACACGCACGCCGGTCCGGAGATCGCGGTGGCCTCGACCAAGGCCTTCCTGGCCCAGATCACCGCCGCCTACATCCTCGGGCTGTACCTGGCCCAGCTGCGCGGCAACAAGTTCCCCGACGAGGTCGCCCAGCTCTTCGACGAGCTGCGCGACATGTCCCGCAAGGTGCAGACCGTCATCGAGCGCGGCGAGTACGTACGGGCCACCGCCCGGTCGATGCAGGCCGCCGACAAGGTGCTGTTCCTCGGCCGCCACGTCGGGTACCCCGTGGCGATGGAGGGTGCGCTGAAGCTCAAGGAGCTCGCCTACATCCACGCCGAGGGCTTCGCCGCGGGCGAGCTCAAGCACGGGCCGATCGCCCTGATCGACTCCGGCCAGCCGGTGTTCGTCGTCGTGCCCTCCCCGCGGGGACGCGACCAGCTGCACTCCAAGGTCGTCTCCAACATCCAGGAGATCCGGGCGCGCGGGGCGCGCACGCTGGTGATCGCGGAGGACGGCGACGACGCCGTGCGGCAGTACGCCGACGAGATCTTCTGGATCCCGCAGGCCCCGTCGCTGCTCCAGCCGCTGCTCGCCGTGGTGCCGCTGCAGATCTTCGCGATGGCGCTCGCCGGCGCCAAGGGACTCGACGTCGACCAGCCCCGCAACCTGGCCAAGTCGGTCACCGTCGAGTGAMCGIVGYAGTGTAVAGGPDASERPLEVALAGLKRLEYRGYDSAGVALVGPGRPEAAFAKKSGKLDNLVTEIAAHPLPAATAAIGHTRWATHGGPTDTNAHPHLADGDRLAVIHNGIIENFSELRDSLTADGVTFLSDTDTEVAAQLLAREYRAAGDLTTAMAATARRLTGTFTLLAVHADDPQTVVGARHDSPLVVGLGAGENFLGSDVAAFVEHTKEALELGQDQIVTITPDAVTVTDFDGAPAEGKRFTVDWDAAAAEKGGFDSFMDKEIHDQPHAVADTLLGRTDSSGRIVLDDLRIDESVLRSVDKIIVIACGTAAYAGHVAKYAIEHWCRIPVEVELAHEFRYRDPIVDERTLVVAISQSGETMDTLMAVRHAREQGAKVLAIVNTNGSTIPRESDAVLYTHAGPEIAVASTKAFLAQITAAYILGLYLAQLRGNKFPDEVAQLFDELRDMSRKVQTVIERGEYVRATARSMQAADKVLFLGRHVGYPVAMEGALKLKELAYIHAEGFAAGELKHGPIALIDSGQPVFVVVPSPRGRDQLHSKVVSNIQEIRARGARTLVIAEDGDDAVRQYADEIFWIPQAPSLLQPLLAVVPLQIFAMALAGAKGLDVDQPRNLAKSVTVEPGPT0017630_928DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820NANA
AK018_04060351acpS_1Holo-[acyl-carrier-protein] synthaseGTGATCATCGGGGTGGGCATCGACGTCGTGGACGTCGAGCGGTTCATGGCGACCCTGGAGCGCACGCCCCGGCTGCGCGAGAAGCTGTTCACCGAGGCCGAGCGGGAGCTGCCGGCGTCGTCGCTGGCGGCCCGGTTCGCGGCCAAGGAGGCCATCGCCAAGGCGCTCGGCGCGCCGGGGACCATGCACTGGCACGACGCGACGGTGCACCGTGTGGTCGGCGGGCCGCCCCGGGTCGAGCTGCGCGGCTCGGTGCAGGCGCGGGCGGACGAGCTCGGGGTGCGGCACTGGCACCTGTCGATCTCGCACGACGCGGGGATCTCCTCGGCGATGGTGGTCGCCGAGGGCTGAMIIGVGIDVVDVERFMATLERTPRLREKLFTEAERELPASSLAARFAAKEAIAKALGAPGTMHWHDATVHRVVGGPPRVELRGSVQARADELGVRHWHLSISHDAGISSAMVVAEGPGPT0008840_3575DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0008840-acpS-K00997NANA
AK018_040611071fgd_8F420-dependent glucose-6-phosphate dehydrogenaseATGCGATTCGGACTCTTCATCCCGCAGGGCTGGCGGATGTCTCTCACCGACGTCCCGCCGGAGCAGCACTGGGAGACGATGCTGTCTCTCCTCCACTACGCCGACAACGCCGCGGCCGGCGAGGCGGTACCGGGCGGTGAGTTCGCCTGGGAGTCGGTGTGGGTCTACGACCACTTCCACACCGTGCCCGTGCCCAGCACCGAGGCGACCCACGAGGCCTGGTCGTTGATGGCCGCCTTCGCGGCCGCGTCCCAGCGCGTCCGCCTGGGGCAGATGTGCACGTGCATGGCCTACCGCGAACCCACCTACCTCGCCAAGGTCGCCTCCACCGTGGACGCGATCTCCGGCGGCCGCGTGGAGATGGGGATCGGCGCCGGCTGGTACGAGCACGAGTGGCGCGCGTACGGGTACGGCTTCCCCACCGCCGGGGAGCGCCTGCGCGCCCTGGACGAGGGCGTGCAGATCATGGCGAACATGTGGCGCACGGGGTCCTCGGGCACGTTCACCGGCGAGCGATACCAGGTCGACGGGGCGCTGTGCTACCCGCAGCCGCTGCAGCGGCTGGCCGTCGGCCCCTCGGACAGCTCGGGCGGCGCCGACCTCGTGCCGTCCATCCCGCTGTGGATCGCCGGCGGCGGGGAGCGGAAGACCCTGCGCACGGCCGCGAAGTACGCCCAGTACACGAACTTCGCCGGCGACCCGGAGGGCTTCGACCACAAGTCGCGCATCCTGGAGCAGCACTGCGCCGACGTCGGCACGGACTTCGGGGCGATCACGCGGTCGGCCAACTACAACGTGGTCATCGGCGAGAACCAGGCCGAGATCGACGACAAGCTGGCCTGGGTGGCCTCGCACTTCTCGCGGTACGCCCCGGGTGAGCCGGGCGAGCGCGAGATCGCCAACTGGCGCAACGGCCCCCTGGTCGGCACCCCGGAGCAGATCGTCGAGACGCTGCAGGACCTGAGGTCCCGCGGCATGACGTACGCGATCACCTACTTCGCGAACGCCGTCGGCGACCGCGAGCAGATCGAGCTGTTCCAGCGTCAGGTCATCCCCGAGCTGCAGGCCTGAMRFGLFIPQGWRMSLTDVPPEQHWETMLSLLHYADNAAAGEAVPGGEFAWESVWVYDHFHTVPVPSTEATHEAWSLMAAFAAASQRVRLGQMCTCMAYREPTYLAKVASTVDAISGGRVEMGIGAGWYEHEWRAYGYGFPTAGERLRALDEGVQIMANMWRTGSSGTFTGERYQVDGALCYPQPLQRLAVGPSDSSGGADLVPSIPLWIAGGGERKTLRTAAKYAQYTNFAGDPEGFDHKSRILEQHCADVGTDFGAITRSANYNVVIGENQAEIDDKLAWVASHFSRYAPGEPGEREIANWRNGPLVGTPEQIVETLQDLRSRGMTYAITYFANAVGDREQIELFQRQVIPELQANANANANANA
AK018_04062642APOA1BPNAD(P)H-hydrate epimeraseATGATCGAGGACATGATCTCCGCCTGGACCGCCGCCGACGTCCGCGCCGCCGAGGAACCGCTCCTGGCGGCCGGTGAGCCCCTCATGGAGCGCGCCTCCTTCGCCCTGGCGGTGCAGGTCCTCGCCGACCTGCGGGCCCGACGGCGGCACGTCCGCGGAGCACGCGTCGCCCTGCTGGTCGGGGCGGGCAACAACGGAGGCGACACCCTGCACGCCGGCGCCGTGCTCGCGCGCCGCGGTGCGGGCGTGACGGCGGTCCTCACCTCCGACCGCGTCCACGCCGGGGGGCTCGCCGCGCTGCGCGCCGCCGGAGGGACGGTCGTCGACCTCGCCGCCGCCCCGGAGCGGACGGCCGCGGTGGCCGACGACGTCGCCCGCGCCGACGTCGTCCTCGACGGGCTGCTCGGCATCGGCGCCCGGGGCGCGCTGCGCGGGCTCGCCGGTGACCTCGTCACGGCTCTCGTCTCCCGGGGCGCTGCGGGCGTGGGAAAGGGAGGGGCCGGAGGGGCCCCCCCACACGGATTAAAACCCCCCCCCCCCCCACCCGGGGGGGGGGGGGCGNNNNNNNNNNGTGAAATCTGCAGGCTCGGAATGTCCCGATCCTGCAGATTTCACGCCCACAGCACCGGAGGCGGGGCGTGAMIEDMISAWTAADVRAAEEPLLAAGEPLMERASFALAVQVLADLRARRRHVRGARVALLVGAGNNGGDTLHAGAVLARRGAGVTAVLTSDRVHAGGLAALRAAGGTVVDLAAAPERTAAVADDVARADVVLDGLLGIGARGALRGLAGDLVTALVSRGAAGVGKGGAGGAPPHGLKPPPPPPGGGGAXXXXEICRLGMSRSCRFHAHSTGGGANANANANANA
AK018_040631071nnr_1COG0062Bifunctional NAD(P)H-hydrate repair enzyme NnrGTGGTGGCCGTCGACCTGCCCTCCGGCATCGGGGTCGACGACGGCACGCTGCCCGGCCCCGTCCTGGCGGCCGACCGCACCGTCACCTTCGGCACCGCCAAACCGGGCCTGCTGCTCCCGCCGGCCGCCCGTGTCGTCGGTGCGGTGACCGTGGTCGACATCGGCCTGGACCCCGCCGGGCCACCCGCCGTCCGCCGACTGGAGCCCGCCGACCTCGGCGCGCGCTGGCCGGTGCCCGGCCCGGCCGACCACAAGTACACCCGCGGTGTCGTCGGATTGGTGGCCGGCACCGCCACCTACCCGGGGGCCGCCGTCCTCGCCGCGTCGGCCGCGGTGCGCACCGGCACCGGCATGGTGCGCTACCGCGGCTCGGACCCCGTGGCGCGGGCCGTCCTCGCCGCCCGCCCCGAGGTCGTCACCGCGACGGGGCGCGTCCAGTCGTGGGTGGTCGGCCCCGGGATCCCCACCACCCGCGACCGCGACGACCCCGCCGACGACGGACAGCACGACCGGGGGCGGGGCGGCCTCGCCGTGGCCGCCGGGAACCTGCCGGGGACGTCGTACGGGCCCGTGCCCGCCGTCGTCGACGCCGGCGGGCTGCCGCTGCTCGCGGGGTCGAACCCGCCCTGGTTCGTCCTGACACCGCACGCCGGCGAGCTCGCCGGTCTGCTGCGCTCCCGCGGCGAGGACGTCCACCGCGACGACGTCGAGGCGGCTCCGCTGCACTGGGCCCGGCGCGCCCACGAGCTCACCGGCGCCACGGTGCTGGTCAAGGGCGGCGTGACCCTCGTGGTCGGCCCCGACGGTGCCTGGGCCCAGGCCGACGCGCCCGGCTGGCTCGCCACCGCCGGCGCCGGCGACGTGCTCGCGGGGATCCTGGGCACGATGCTCGCCGCCCGGTCGGAGGAGATCGTCGCCGAGCCGGCGCTCGCGGCCGAGGTCGCGGCGGGTGCCGCGCTGGTCCACGGACTCGCGGCCGAGCGGGCGAACCCCGGCGGCCCGGTCGCCGCCCTGGACGTCGCGGCAGCGGTGCCCGCCACCGTGGCCGGGCTGCTCGAGCAGCGACGGTGAMVAVDLPSGIGVDDGTLPGPVLAADRTVTFGTAKPGLLLPPAARVVGAVTVVDIGLDPAGPPAVRRLEPADLGARWPVPGPADHKYTRGVVGLVAGTATYPGAAVLAASAAVRTGTGMVRYRGSDPVARAVLAARPEVVTATGRVQSWVVGPGIPTTRDRDDPADDGQHDRGRGGLAVAAGNLPGTSYGPVPAVVDAGGLPLLAGSNPPWFVLTPHAGELAGLLRSRGEDVHRDDVEAAPLHWARRAHELTGATVLVKGGVTLVVGPDGAWAQADAPGWLATAGAGDVLAGILGTMLAARSEEIVAEPALAAEVAAGAALVHGLAAERANPGGPVAALDVAAAVPATVAGLLEQRRPGPT0024095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024095-alr_murF-K01798NANA
AK018_04064531mshD_3Mycothiol acetyltransferaseATGCCGCTGACCGCGCCGGACGGCCCCGCAGGTGTCTCGGTGCGACGGGCCCGCGAGGAGGACCTGCTCGCGATCGAGGAGGTGCAGGAGGCCGCGGGCCGAGGGGAGCTCCTCGACGGGGTGCGGGCGGCCCTGCGCGACCCGCAGCGGCTGGTGGTGGTCGCCGAGGCCGCCGGCGCCGTCGTCGGCTGGGCCAAGACCCACGTGCACGCGACGTCCGACGGCGTCGCCCCGGCGGGCCACTACCTCGGCGGGGTGACCGTCGCCCCGGCGTGGCGGCGCCGCGGTGTCGGGACGGCGCTGACCGCGACCCGCATGGACTGGCTGGCCCGGCGCACCGGGCGGGTGCACTACGTCGTCAACGCCGCGAACACCGCGTCGATCGCGCTGCACGCACCGTGGGGGTTCCGGGAGGTGGTGCGCTCGTCCGCATTGCACGGGGTGCGCTTCGCGGGCGGCGTCGGGGTGCTGCTGAGCGCCGACCTGCCGGCACCCGCCCCGCCGGTCAGCGCGGCAGGTGGGACTCGATGAMPLTAPDGPAGVSVRRAREEDLLAIEEVQEAAGRGELLDGVRAALRDPQRLVVVAEAAGAVVGWAKTHVHATSDGVAPAGHYLGGVTVAPAWRRRGVGTALTATRMDWLARRTGRVHYVVNAANTASIALHAPWGFREVVRSSALHGVRFAGGVGVLLSADLPAPAPPVSAAGGTRPGPT0028640_14DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028640-aac6_I|aacA7-K18816NANA
AK018_04065495btuE_1COG0386Thioredoxin/glutathione peroxidase BtuEATGATGGGACGCATGGACATCTACGAGATCCCGTTCGACCGGATGGACGGCACGACCGCGACGCTGGCCGAGCACCGTGACGACGTGGTGATGGTCGTCAACGTCGCCTCGCGCTGCGGCCTGACTCCGCAGTACACCGCCCTGGAGCAGCTCCAGCAGAAGTACGCCGAGCGCGGGTTCACGGTGGTCGGGTTCCCCAGCAACCAGTTCCTGCAGGAGCTGTCCACCGACGAGAAGATCGCCGAGTTCTGCTCGGCCACCTACGGGGTGACGTTCCCGGTGGTGTCCAAGGTCAAGGTCAACGGCAGGAACGCCCACCCCCTCTACCAGGAGCTGACCAGGACCCCGGACGCCGGCGGCCACGACGGCCGCATCCGGTGGAACTTCGAGAAGTTCCTCGTGCTGCCCGGTGGCGAGGTCCGCCGCTACTCCCCCAAGACCGTGCCGGACGACCCGGAGATCGTCGAGGTCATCGAGTCCCACCTGCCGCGCTGAMMGRMDIYEIPFDRMDGTTATLAEHRDDVVMVVNVASRCGLTPQYTALEQLQQKYAERGFTVVGFPSNQFLQELSTDEKIAEFCSATYGVTFPVVSKVKVNGRNAHPLYQELTRTPDAGGHDGRIRWNFEKFLVLPGGEVRRYSPKTVPDDPEIVEVIESHLPRPGPT0013115_4757DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432NANA
AK018_04066840hypothetical proteinGTGGGCGAGGGGTTCGCGCTCGCTCTCGGGGCCGGCCTGGTGGCGGCGGTCAACCCGTGCGGGTTCGCGCTGCTGCCCGCCTACCTCGCCACCCTCGTACGCCCCGACGACGGCCGGGCGTCCGCCGTCGGCCGCGCCCTGCGCTCGACGACGGCGCTCACCCTCGGGTTCGTCGCCGTGTTCGGCGCGTTCGGGCTCGTCGTGGCGCCCGTGGCCAGCTCGGTCCAGCGCTGGCTGCCCGTGTTCACCCTGGTGCTCGGCGTCGTGCTCGCCGCTGCCGGCGCGTGGGTGGTCGCCGGGCGGGAGCTGCCGGGGCTGCGGGTGCTGCGCACCGGGACGGGTCGTCCCCTGACGGACCGCTGGTGGTCGGTGGTGGGGTTCGGCGCCTCGTACGCCCTGGCGTCGCTGACCTGCACCATCGCGCCGTTCCTCGCCGTCGTCGTCACGGCGTTCCGCGCCGGGTCCGTGGGGCAGGGCGTGGCGCTGTTCGCCACCTACGCGGCCGGGATGGCGCTGCTCGTCGGCACGGCCGCCGTCGTCGTGGCCGTCGCGGGGGCCGGTGTCGTGGGTCGCGCGCGCCGTGCCGGACCGGTCCTGGCCCGCGTCGGCGGCGCCATCCTCCTCGTCGCCGGGCTGTACGTGGCCTGGTACGGGTTCTGGGAGCTGCGGGTCCTGTACGGCGGAGCCGGCACCGACCCCGTCGTCGAGGGTGCCGCCGCCGTCCAGCGCTGGCTGGCCTCGACCGCGCAGAGCCTGGGCTGGGTCGGTCTGCTGGCGGTGCTCGTCGTCGTGCTCGGGTCCGTGGCGGGCCTGACCTGGTGGCGCCGGCACCGGGCATGAMGEGFALALGAGLVAAVNPCGFALLPAYLATLVRPDDGRASAVGRALRSTTALTLGFVAVFGAFGLVVAPVASSVQRWLPVFTLVLGVVLAAAGAWVVAGRELPGLRVLRTGTGRPLTDRWWSVVGFGASYALASLTCTIAPFLAVVVTAFRAGSVGQGVALFATYAAGMALLVGTAAVVVAVAGAGVVGRARRAGPVLARVGGAILLVAGLYVAWYGFWELRVLYGGAGTDPVVEGAAAVQRWLASTAQSLGWVGLLAVLVVVLGSVAGLTWWRRHRANANANANANA
AK018_04067564hypothetical proteinATGCGAACCACACGAGGTGCGGCGACGGCCGCCGCGACCCTGGCCCTGCTGCTCGTGGCCGGCTGCGCCGCCGAGGAGACGTCGACCGGCGCCGGCTCGACCGCGGACACCATGACGGCCTCCGAGGAGCCGATGGACGACGAGACGGCGGACGACGCGGATCTCCCCGCCGTCTACGACTTCTCCGCGACGACGCTCGAGGGCGGCACCTTCGTCGGCTCCGAGCTCGCCGACGCGCCCGCCGTGCTGTGGTTCTGGGCGCCGTGGTGCCCGACCTGCCGCGCCCAGATCCCCACGGTGACCGGCCTGGCGGACACGTACGGCGAGGACGTCGCGGTCGTGGCCGTCGGCGGCCTCGACGACGCGGAGGCGATCAGCGACATGGCCGCGGACGACATCGCCGGGCCCACCCACCTCGTCGACGACGCGGGCGAGGTCTGGCAGCACTTCGGCATGACGCAGCAGTCGACCTTCGTCGTGCTCGACGCCGACGGCGAGATCGTCCTCGAGGGATCCGTGCCGGAGTCCGAGCTCGAGTCCGTCGTCGCCGACCTCGCGGGCTGAMRTTRGAATAAATLALLLVAGCAAEETSTGAGSTADTMTASEEPMDDETADDADLPAVYDFSATTLEGGTFVGSELADAPAVLWFWAPWCPTCRAQIPTVTGLADTYGEDVAVVAVGGLDDAEAISDMAADDIAGPTHLVDDAGEVWQHFGMTQQSTFVVLDADGEIVLEGSVPESELESVVADLAGNANANANANA
AK018_04068993hypothetical proteinGTGGCGGGGCCCGACAATGGAGGCATGCCGTCCCCGCGCAAGCACGTCCCGCCCCTGCCGGTGCGCGACGGACTGAACCCCACCCGGCTCGTGCTGCCGCACGACGCGGACTCGGTGGCGCGGTTCGCGACGGCCGCCCAGTACCTGCTGGACCGCTTCCCCGACGACGCGGCCCGCCTGCGGGAGAAGATCGCCGCGGGGGAGGTCGTCACCGGTGACGGCACCCGGGTCACGGACGACACGCCCTACCGGCCGCGGGGCTTCGTCTACCTCTACCGCGACCCGCCGTCCGACGAGCCCGACGTCCCGGCGCTGGCCGAGATCGAGGTGCTGCACCGCGACGAGGACCTGCTCGTGGTGGACAAGCCGCACCGGGTCGCCACGATGCCGCGCGGCCGGTGGGTCACCCGCACCGTGCTGACACACCTGCGGCGCGAGCTCGACCTGCCGGACCTCGTCCCCGCGCACCGCCTCGACCGGCCGACCGCCGGTGTCCTCGTGCTCACGGTCCGGCCCGAGGTCCGGGGCCCGTACCAGCTCGTCTTCCAGGAGCGCCGCGCGCACAAGGTCTACGAGGCGGTCGCCCCGCTCCCGGCGCCCGACGACGACGGCGGCCCCGCCTTCCCGCGGACGGTCCGGTCGCGCATCGTCAAGCGCCGCGGGTCGGTGCGGGCCGAGGAGGTGCCCGGCGAGGTCAACGCGGAGTCGTGGATCGACCTCGTCGACCGGGACCCGGACCGCGGGCTCGGCCTGTACCGTCTCGAGCCGCACACCGGAAAGACCCACCAGCTCCGGCTGCACATGGCCTCGCTCGGGCTGCCGATCCGGCACGACCCGTTCTGGCCCGTGCTGCGCGCCGGGTCCGACGACGACGCCGACGAGGGCCCGCCGCTGCAGCTCCTGGCGCGAACGCTCACCTTCGCCGACCCGCTGACCGGCCGGTCGCGCCGCTTCACCTCCCGGCGCGACCTGTCCGCCTGGCACCCCCGCTGAMAGPDNGGMPSPRKHVPPLPVRDGLNPTRLVLPHDADSVARFATAAQYLLDRFPDDAARLREKIAAGEVVTGDGTRVTDDTPYRPRGFVYLYRDPPSDEPDVPALAEIEVLHRDEDLLVVDKPHRVATMPRGRWVTRTVLTHLRRELDLPDLVPAHRLDRPTAGVLVLTVRPEVRGPYQLVFQERRAHKVYEAVAPLPAPDDDGGPAFPRTVRSRIVKRRGSVRAEEVPGEVNAESWIDLVDRDPDRGLGLYRLEPHTGKTHQLRLHMASLGLPIRHDPFWPVLRAGSDDDADEGPPLQLLARTLTFADPLTGRSRRFTSRRDLSAWHPRNANANANANA
AK018_040691317alr_1COG0787Alanine racemaseGTGGTGGCGGGGAGCGGGGGCCACGGAGGCGCCGAACCCACCGACCACGCCGCCGGTGAGAGAATCGCGACCGTGACGACTCCCGCCTTCGACGACGGCACCCCGGCCCGCGCGATCGTCGACCTCGACGCGATCCGTGACAACGTCTCCGCCCTGCGCGACCACGCGCCGTCGGCCGACCTGATGGCCGTCGTCAAGGCCGACGGCTACGGCCACGGCATGCTCCCCGCGGCCCGGGCGGCGCTCGCTGGCGGGGCGCACTGGCTCGGGGTGGCGACCGCCGAGGAAGCCCTCGCCCTGCGTGCTGGGCTGGGCCCCGACGTGCCGGTGCTCGTCTGGCTCCTGACGCCGGGGGCGCCGTTCGCCGAGCTGATCGCGGCCGGCGTCGACGTCACCGTGGCGGCCCCCTGGGCGCTGGACGAGGTCGCCGCCGGTGCGCGGGCGGCCGGACGGGGCGCCCGGGTGCACGTCAAGGTCGACACCGGCCTGTCGCGCAACGGCGTCGCGATGGGCGACCTGCCGCGGGTGGCCCGCCGGGCGGCCGGACTGGAGTCCTCGGGCGAGATCCACGTCGTCGGGGTGTTCTCGCACCTGGCCTGCGCCGACGAGCCCGGCCACCCGTCGATCGACCGTCAGGCGGCGGCCTTCGACGCCGCGCTGGAGGAGATGGCCGGTGCCGGGCTGCGGCCCGAGGTGCGGCACCTGGCGAACTCTGCGGCCACGCTCACCCTGCCCGGGCTGCACTACGACCTGGTCCGGCCCGGGATCTCGGTCTACGGCAACTCGCCCGGTCCGCTCCTCGGGCCACCCGGCCGGTACGGGCTGCGCCCGGCCATGACGTTCGAGGCACGGCTGGCGAACGTCAAGCACGTCGCCGCCGGCGAGGGCGTCTCGTACGGTCACCTGTACACCACGACCCAGGACACGACCGTGGGCCTGGTCCCGGTGGGCTACGGCGACGGCGTCCCGCGGCACGGCTCGGGCGGCGCGGCCGGTCCCGGCGGACCGGTCGCCGTCGGCGCGGACGGCTCCGGCCGGGTGCTGCGCGTGGCGGGCCGGGTCTGCATGGACCAGTTCGTCCTCGACCTCGGACCGGGGGCCGCCGAACGCGCGGGCGACGTGGTGACCCTGTTCGGCGCGTCGGACGGCGTGGCGCACGGGGCACCGCTGCCGAACGCCCAGGACTGGGCCGACGCCGCGGGGACCATCAGCTATGAGATCGTGACGCGTCTGGCTCCGCGGGTGCCGCGGACGTACGTCGGCACCGCCGGGTCGGACACGACGGACCGCACGACCGAGGGAGAGGCACAGCAGTGAMVAGSGGHGGAEPTDHAAGERIATVTTPAFDDGTPARAIVDLDAIRDNVSALRDHAPSADLMAVVKADGYGHGMLPAARAALAGGAHWLGVATAEEALALRAGLGPDVPVLVWLLTPGAPFAELIAAGVDVTVAAPWALDEVAAGARAAGRGARVHVKVDTGLSRNGVAMGDLPRVARRAAGLESSGEIHVVGVFSHLACADEPGHPSIDRQAAAFDAALEEMAGAGLRPEVRHLANSAATLTLPGLHYDLVRPGISVYGNSPGPLLGPPGRYGLRPAMTFEARLANVKHVAAGEGVSYGHLYTTTQDTTVGLVPVGYGDGVPRHGSGGAAGPGGPVAVGADGSGRVLRVAGRVCMDQFVLDLGPGAAERAGDVVTLFGASDGVAHGAPLPNAQDWADAAGTISYEIVTRLAPRVPRTYVGTAGSDTTDRTTEGEAQQPGPT0020040_279DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020040-alr-K01775NANA
AK018_04070549hypothetical proteinGTGAGTGACGTCGTCGCGCAGGTCGAGCTGGACCTGCCCGGGGCCGCGGACGCGCGGGCGCTGGGCGGGGCGCTGTCGGGGATCCTCCGGGCCGGGGACCTGGTGATCCTCACCGGCGATCTCGGCGCGGGCAAGACCACCCTGACCCAGGGGCTGGGCCGAGCGCTCAACGTGCGCGGCCAGGTCGCCTCCCCCACCTTCATCGTCGCGCGCGAGCACCCGCCGTTGCCGCGCCAGGACGGGACCACCGGCCCGGCGCTGGTGCACGTGGACGCCTACCGCCTCGGCGGCCTGGACGAGCTGGACGCCCTCGACCTGGACTCGTCGGTCGACGAGTCCGTCACCGTCGTCGAGTGGGGCCGCGGGCTGGCCGAGGCGCTCACCGACGACCGGCTCGAGGTCGACCTGCAGCGCCCGCGCGGCGGCGACGTCGACACCGAGCACCCCGAGGCCGGCGTGCGGCGCGCGACCGTGCGCGCCGTCGGCCCGCGCTGGCAGGGCGTGGACCTGACCCGGCTCGTGCCGCGCCCGCGCCCCCGCGAGGTCTGAMSDVVAQVELDLPGAADARALGGALSGILRAGDLVILTGDLGAGKTTLTQGLGRALNVRGQVASPTFIVAREHPPLPRQDGTTGPALVHVDAYRLGGLDELDALDLDSSVDESVTVVEWGRGLAEALTDDRLEVDLQRPRGGDVDTEHPEAGVRRATVRAVGPRWQGVDLTRLVPRPRPREVPGPT0024095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024095-alr_murF-K01798NANA
AK018_04071741COG1214putative proteinGTGGCAGTTCTCGCGATCGACACGTCCGCCGCCGTCTCCGTCGCCCTGGTCGACGACGACGGCGGCCGCCTCGCCGTCCGCACGGCCGACGAGCGCCGTCGGCACGCCGAGTCCCTCGCCCCGCTGATCGCCGAGGTGCTGGCCGCGGCGGGGCTGGAGCGGACCGACCTGACCGCCGTCGTCGGTGGCACCGGGCCCGCGCCGTTCACCGGTCTGCGGGTCGGTCTGGTCACGGCCCGCACGCTGGCGCTCGCCCTGGGCATCGAGGTCCTCGGCGTCCCGAGCGTCGACGCGCTCGCCGTCGAGGCCGTCGCCGACCTGGGACTGGACCCCGGCGACGAGGTCCTCGTGGCGACCGACGCCCGGCGCAGGGAGGTCTACTGGGCCCGGTACCGCGTCGTCGCGCACGAGGGGCCGCACGGCCTCCCCGTCGTCGAGGTGCTGAGCGGACCCGAGGTCGCCACGGCGGCCGCCGTCGCGGACGCCCACCTCGAGGCCCCCGCGGCGGACGGCGCACGCCTCGCCGTCGTGGGGGAGGGCACCAGCCTCTACCCGGACCACCTGCCGGCCGAGGAGGACGCCCCCGTGCTGCCGGACGCGACCGTGCTCGCCCGGCTGGCGCTGGCCCGCCGGGCCGCGGGCGTGGAGCAGCCGACGGAGCCGCTGTACCTGCGGCGTCCGGACGTCCAGGAGCCCACCGGGAACCGGAGCATCCTGCGCGCCGCCGGGAGCGGGGCATGAMAVLAIDTSAAVSVALVDDDGGRLAVRTADERRRHAESLAPLIAEVLAAAGLERTDLTAVVGGTGPAPFTGLRVGLVTARTLALALGIEVLGVPSVDALAVEAVADLGLDPGDEVLVATDARRREVYWARYRVVAHEGPHGLPVVEVLSGPEVATAAAVADAHLEAPAADGARLAVVGEGTSLYPDHLPAEEDAPVLPDATVLARLALARRAAGVEQPTEPLYLRRPDVQEPTGNRSILRAAGSGANANANANANA
AK018_04072558rimI_1COG0456N-alpha-acetyltransferase RimIATGACGCAGCGTCCGGTGTCCGTGCGGCTTCGACCGCTGGCCAGCGCCGACTTCGACCGCATCCTGCAGCTCGAGCACGAGCTCTTCGGTCCGGGCGCCTGGACCTACGGCATGCTCGCCGACGAGCTCGCGGGGCTCGGGCGCTGGTACGTCGTCGCGGAGCTCGACGGACCCGACGCGCTGGGTCTCGGCCCGGGGCGGCGGCCCGTGGTCGGCTACGCGGGCCTGTGGTTCGACGGCGACGTCGCCCAGGTGATGACGATCGGCACGGCGCGGGAGTACCAGGGCCGCGGCGTGGGCCGACAGCTCCTGCAGGCGCTGGTGGACCGCTCCCGGCAGCTGCGGGCGAGCGCGCTGCTGCTGGAGGTCGCCGTCGACAACGACCGCGCGCTGGCGCTGTACGGCCGGTTCGGGTTCGAGCAGCTCGGGCTGCGCAAGCGCTACTACCAGCCCGAGGACAAGGACGCCTACACGATGCGGCTGGACCTGTCGGCGGCGGCCGCGCCCTCCGCTCCGGAGGCCCGCGCCTCGTCCGGACCCTCCGGCGGCGCCGCGTGAMTQRPVSVRLRPLASADFDRILQLEHELFGPGAWTYGMLADELAGLGRWYVVAELDGPDALGLGPGRRPVVGYAGLWFDGDVAQVMTIGTAREYQGRGVGRQLLQALVDRSRQLRASALLLEVAVDNDRALALYGRFGFEQLGLRKRYYQPEDKDAYTMRLDLSAAAAPSAPEARASSGPSGGAAPGPT0002045_46DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
AK018_04073876sseB_1COG2897Putative thiosulfate sulfurtransferase SseBGTGACGCCGCCCGGGGCGGAGCGCCGGGGCGAGGTCTTGGTCGACGCCGACGTGCTGGCCGCCGACCTGCAGCTCGGCGGGCTCGAGGACCCCTTCGGCGGGGCCCCGGTGCTGCTCGACGTGCGCTGGGTGCTGGGCCGGACGGACGGCCGGGACCGCTACGAGGAGGGGCACCTGCCGGGGGCCGTGTACGTCGACCTGGAGACCGAGCTCGCCTCGGTGCCCTCCCCGGCGAGCGGTCGTCACCCGCTGCCCTCGGCCGCGGAGTTCCAGCGCGCCGCCCGCTCCTGGGGCGTGGGGACGGACTCGCGGGTCGTGGTGTACGACGACGTCGGCGGGACGTCCGCGGCGCGCGCCTGGTGGCTGCTGCGCTGGTTCGGGCACCACGCGGTGCGGATCCTCGACGGCGGTCTCGAGGCGTGGCGGCGGGCGGGCCACCCGCTCGAGGTCGGCCTGACCACGCGCGTGCCGGGCGACGTCGTCGTGCACCCGGGCGGGATGCCCGTGCTGGACGCCGACGACGCGGCCGACCTGACGACGTCGGGCGTGCTGCTCGACGCGCGGGCCGCCGAGCGCTACCGCGGCGAGGTGGAGCCGGTCGACCCGCAGGCCGGGCACATCCCCGGTGCCGTCTCGGCGCCCACGACGGGCAACCTGGACGACGACGGCACGTTCCGGCCTCCGCACGAGCTGGAAGCGCGGTTCGCCGCCCTCGGCGTGACGAGGTCCGCCCCGGTCGGGGTGTACTGCGGGTCGGGCGTCACCGCCGCGCACGAGATCGCGGCGCTGGCCTCGGTCGGCGTGACGGCGGCGCTCTACCCCGGGTCGTGGTCGCAGTGGTCGAACGACCCGGGCCGACCTGTCGCCACCGGCTGAMTPPGAERRGEVLVDADVLAADLQLGGLEDPFGGAPVLLDVRWVLGRTDGRDRYEEGHLPGAVYVDLETELASVPSPASGRHPLPSAAEFQRAARSWGVGTDSRVVVYDDVGGTSAARAWWLLRWFGHHAVRILDGGLEAWRRAGHPLEVGLTTRVPGDVVVHPGGMPVLDADDAADLTTSGVLLDARAAERYRGEVEPVDPQAGHIPGAVSAPTTGNLDDDGTFRPPHELEARFAALGVTRSAPVGVYCGSGVTAAHEIAALASVGVTAALYPGSWSQWSNDPGRPVATGPGPT0002045_2426DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
AK018_04074651rutE_1COG0778putative malonic semialdehyde reductase RutEATGGACGGTTCCCCGAGCATGACCGAAACCGTGCTCGAGACCTCACTCCCGGAGGCGCCGCTCGCCATCGACGAGGCAGCGGCGGACCGGCTCTTCCGCCACGCCCGTTCGACGTCCCTGTGGACCGACGCCGAGGTCCCCGACGCCCGGCTGGAGGCCGCCTGGGACCTCGCCAAGCTCGGCCCGACCGCGATGAACACCCTGCCGCTGCGCATGCTGGTCGTCCGGAGCCCGGAGGCGAAGCAGCGCCTGATCGAGCACATGGGCGGCGGCAACAAGGCGAAGGTCGACGCCGCCCCGGTGTCCCTCGTCCTGGCCGCCGACCCCGCCTTCCACGAGCACCTGGACGAGCTCTTCCCGGTCTACTCGGGCGTCCGCGAGCAGCTCGCCCCGGCGACCGCGGTCCGTGAGGAGATGGCGCGCAAGAACGCGCTGCTGCAGGCCGGCTACCTCGTCGTCGCGCTGCGGGCCGCAGGTCTCGCCGCCGGCCCGATGGACGGCATGGACACCGACGGGATCGACCGGGAGTTCTTCGCCGAGTCCGGCTGGCGGTCGCTGATGGTCGTCAACGTCGGCGAGGCCGACGGCGAGGGTGCTCCGCACCCTCGCAACAAGCGCCTCGACCTGGAGCAGGTCTCCCGCACCCTCTGAMDGSPSMTETVLETSLPEAPLAIDEAAADRLFRHARSTSLWTDAEVPDARLEAAWDLAKLGPTAMNTLPLRMLVVRSPEAKQRLIEHMGGGNKAKVDAAPVSLVLAADPAFHEHLDELFPVYSGVREQLAPATAVREEMARKNALLQAGYLVVALRAAGLAAGPMDGMDTDGIDREFFAESGWRSLMVVNVGEADGEGAPHPRNKRLDLEQVSRTLPGPT0021290_139DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021290-rutE|ycdI-K09019NANA
AK018_040751053tsaD_1COG0533tRNA N6-adenosine threonylcarbamoyltransferaseATGTGGCCCATGCCTGAACCCCTGGTCCTCGGCATCGAGACGTCCTGCGACGAGACGGGTGTCGCCCTGGTGCGCGGCGACACGCTCCTGTTCGACGCGGTGGCGAGCTCGATGGACGAGCACGCCCGTTACGGCGGGATCATCCCGGAGGTGGCCAGCCGCGCCCACCTCGAGGCGATGACCCCCACGATCCGCCGCGCGCTGAGCGAGGCCGACGTCGACCTGTCCGAGGTCGACGCGGTCGCCGTGACCGCCGGCCCCGGCCTGGTCGGTCCGCTGACGATCGGCGCCAGCGCGGCCAAGGCCCTCTCGATCGGGCTCGGCAAGCCGCTGTACGGGATCAACCACGTCATCGGCCACGCCGCGGTGAACCAGCTCGTCGACGGTCCCTTCACCGAGCGCTCCATGGCCCTGGTCGTCTCCGGCGGGCACAGCTCGCTGCTGCTCGTCGACGACATCGCCACCGACGTCACCGAGCTCGGCTCCACCCTCGACGACGCCGCCGGGGAGGCCTTCGACAAGGTCGGCCGCCTGCTGGGCCTGCCCTACCCGGGCGGCCCGCACATCGACCGGCTCGCGCGCGAGGGCGACCCGGAGACCATCCGGTTCCCGCGCGGGCTGACGGCGCGCAAGGACCAGGCCCGGCACGCCTACGACTTCAGCTTCTCCGGGCTCAAGACGGCCGTGGCCCGCTGGGTCGAGTCCTGCCAGGACGCCGGCAAGGAGGTCCCCGTGGCCGACGTCGCGGCCTCCTTCGCCGCGGCGGTCGCGGACGTGCTCACGGCCAAGACCATCGCCGCCTGCCGCGCCCACGACGTCGACACCCTCATCATCGGCGGCGGGTTCTCCGCCAACAGCCAGCTGCGCGACATGGCGGCCGAGCGTTGCGCCGAGGCCGGCATCGACCTGCGGATCCCGCCGATCCGCTACTGCACCGACAACGGGGCGATGATCGCGGCGCTCGGGTCCGCCGTCGTCCGCGCCGGGCTGCCGCCGTCGGACCTGGACATCGCGGTGGACTCCTCGATGCCGCTGACGACGATCACGGTCTAGMWPMPEPLVLGIETSCDETGVALVRGDTLLFDAVASSMDEHARYGGIIPEVASRAHLEAMTPTIRRALSEADVDLSEVDAVAVTAGPGLVGPLTIGASAAKALSIGLGKPLYGINHVIGHAAVNQLVDGPFTERSMALVVSGGHSSLLLVDDIATDVTELGSTLDDAAGEAFDKVGRLLGLPYPGGPHIDRLAREGDPETIRFPRGLTARKDQARHAYDFSFSGLKTAVARWVESCQDAGKEVPVADVAASFAAAVADVLTAKTIAACRAHDVDTLIIGGGFSANSQLRDMAAERCAEAGIDLRIPPIRYCTDNGAMIAALGSAVVRAGLPPSDLDIAVDSSMPLTTITVNANANANANA
AK018_040761173COG2170Putative glutamate--cysteine ligase 2ATGGTGCTGGAGTTCGAGACCTCCCGGCGGTCGAGCGTCGGCCTGGAGTGGGAGCTGGCCCTGGTGGACGCCGACTCCGGCATCCTGCGCCAGGTGGCCCCCGCCGTCATGGCCGAGCTGGGCCCGGACGCGCGGGCCCGGCACGTCAAGCCGGAGTTCCTGCGCAACACCGTCGAGATCGTCTCCGACGTGTGCGACACCGTCCCGGGCGCCATCGCCGACCTGGAGAACGGGGTCGCCCGCGTCCAGGAGGTCATCCGGCCGATGCGGGCGGAGCTCATGGGCTCCGGCACCCACCCCTTCGCACCCTGGTCGCAGCAGCAGGTGACCGACAAGGAGCGGTACGCCACCGTCGTCGACCGCGCCCAGGTGTGGGGCCGCCAGCAGGTGGTCTACGGCGTGCACATGCACGTCGGGGTGGAGGACCGCGCCAAGGTGCTGCCGATCCTGCGCTCGCTGCTGGTCTACGTCGCCCACCTGCAGGCCCTGTCGGCGTCGTCGCCGTACTGGGACGCCGCGGACACCGGCTACGCCTCGATGCGTGCGCTCATCTTCCAGCAGCTGCCGACGGCAGGGCTGCCCTACCAGTTCACCGAGTGGGCCGAGCTGGAGCGCTACACCGCCGACATGCTCAAGACCGGCGTCATCGACGACTTCACCGAGGTGCGCTGGGACATCCGACCGGCCCCGCACTTCGGCACCGTCGAGGTGCGCATCTGCGACGGCACCTCCAACGTCGCCGAGCTGGCCTCCCTGGGCGCCCTGGTGCACTGCCTCGTCGAGCACTTCTCCACCCTGCTCGACGAGGGCCGCGCGCTGCCCACCATGCCGCGGTGGTACGTCCACGAGAACAAGTGGCGCGCAGCCCGGTACGGCATGGATGCGATCATCATCCTCGACGCCGACGGCAACGAGGAGCTGATCACCGACGCCCTGCCCCGGCTGCTCGAGGAGCTGGCCCCCGTGGCGGAACGGCTGGGGTGCGCGGCCGAGCTCGACGGCATCCGCGAGATCGTGCGCCTCGGCGCCTCCTACCAGCGCCAGCGCGCGGTGGCGGCGGCCCACGGCGGCGGGCAGCGGGGCCTGGAGGCCGTGGTCGGGGCGCTGGTGGCCGAGCTGCACGCCGGCCGGCCGCTCGACCCGTCCGTGCTGGGCCGCGGCGCCGTGACCTAGMVLEFETSRRSSVGLEWELALVDADSGILRQVAPAVMAELGPDARARHVKPEFLRNTVEIVSDVCDTVPGAIADLENGVARVQEVIRPMRAELMGSGTHPFAPWSQQQVTDKERYATVVDRAQVWGRQQVVYGVHMHVGVEDRAKVLPILRSLLVYVAHLQALSASSPYWDAADTGYASMRALIFQQLPTAGLPYQFTEWAELERYTADMLKTGVIDDFTEVRWDIRPAPHFGTVEVRICDGTSNVAELASLGALVHCLVEHFSTLLDEGRALPTMPRWYVHENKWRAARYGMDAIIILDADGNEELITDALPRLLEELAPVAERLGCAAELDGIREIVRLGASYQRQRAVAAAHGGGQRGLEAVVGALVAELHAGRPLDPSVLGRGAVTPGPT0026300_526DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
AK018_040771227hypothetical proteinATGGACGCGGCCTCGCTCAGCAAGCTTCTCAGCCCCGAGGGCTGGACCCTGCTCAACGACCTCCCTCCCTACGACGAGTCGCAGGCGATGGCCCTGGCCACGCGGCTCCGCGCCGAGGGGGTCGACCCCGACCTCGCCGCGGCCGCCCTGACCCAGTCTCGCCTGCGCGCCCGCGCCCGAGCCAAGCTCGGTCCGTTCGCCGACGGGATGCTGTTCACCCCGGGCGGCCTGGAGCAGGCGACCCGGCTGACCGTCGCCGCCCTGCACGCGCGCCGCTACCTGGCCGCCGGCGTGCACAAGGTCGCCGACCTGACCTGCGGCCTGGGCGCGGACGCGCTCGCCTTCGCCGGCGTGGGACTCGACGTGCTGGCCACCGACGTCGACGAGGTGACCGCCGCCCTGGCCACCGTCAACCTGCGCGCCTTCCCCGAGGCCGAGGTCCGGCACGGCGACGGGCTGGCGCTGGACCTGGTCGCCGAGGGCGTCGACGGCGTGTACGCCGACCCGGCCCGCCGCACGCGCGGCGGGAAGCGGGTCTTCGACCCGTCCGCGTGGGCGCCGCCCCTGGACGCCGTGTGGGCGCTGCGCGAGCAGGTGCCCGCCGTCGGCATCAAGGTCGGCCCCGGGATCGGCCACCAGGGGCTGCCCGAGGACGCCGAGACCCAGTGGGTCTCGCTCGACGGCGACGTGGTCGAGGCCGGGCTCTGGTTCGGCCCGCTCGCCCCCGACGGCCCGGGACGCACCGCCCTGGTGCTGCGCACCGAGGACGGCGGCACCGCGGCGCGCGTCGTGCGCCCCGGGGCCGAGGGCGCCGACCTGACCCCCGACGTCGGGCCGGTCGGGAGCTACCTGTACGAGCCCGACGGTGCGGTCGTGCGCGCGGGGCTGGTGGCCCACGTCGCCGCCGAGCTGGGCGGGCGGCTCGTGGACCGCACCATCGCCTACGTCACGACCGACACCCCCGCCGGTCCGCCGCCGTCGGGCACCGCGGCGCCCGCGACGGGCTACCGGGTGCTCGACGTCATGCCCTTCAACCTCAAGCGGCTCAAGGCCTACCTGCGCGAGCGCGGCGTGGGGCGCCTGACGGTGAAGAAGCGCGGCACGGCGGTCACCCCCGAGCAGCTGCGCGCCCAGCTCTCCCTGACCGGCGACGCCGAGGCCACGCTGGTCCTCACCCGGGTCGCGGGGCGTCAGCACGTGCTCGTCGTCGACCCCCTGCCGAGGTAGMDAASLSKLLSPEGWTLLNDLPPYDESQAMALATRLRAEGVDPDLAAAALTQSRLRARARAKLGPFADGMLFTPGGLEQATRLTVAALHARRYLAAGVHKVADLTCGLGADALAFAGVGLDVLATDVDEVTAALATVNLRAFPEAEVRHGDGLALDLVAEGVDGVYADPARRTRGGKRVFDPSAWAPPLDAVWALREQVPAVGIKVGPGIGHQGLPEDAETQWVSLDGDVVEAGLWFGPLAPDGPGRTALVLRTEDGGTAARVVRPGAEGADLTPDVGPVGSYLYEPDGAVVRAGLVAHVAAELGGRLVDRTIAYVTTDTPAGPPPSGTAAPATGYRVLDVMPFNLKRLKAYLRERGVGRLTVKKRGTAVTPEQLRAQLSLTGDAEATLVLTRVAGRQHVLVVDPLPRNANANANANA
AK018_04078297groS_2COG023410 kDa chaperoninGTGTCGGTCCCCATCAAGCCGCTCGAGGACCGGATCGTCGTCAAGGCCGTCGAGGCCGAGACCACGACCGCTTCCGGCCTGGTCATCCCGGACACCGCCAAGGAGAAGCCCCAGGAGGGCGAGGTCCTGGCCGTGGGCGACGGCCGCTTCAACGACAAGGGCGAGCGCGTCCCGGTCGACGTGAAGGTCGGCGACAAGGTCATCTACAGCAAGTTCGGCGGCACCGAGGTCAAGTACGCCGGGGAGGACTACCTGGTCCTGTCCGCGCGCGACATCCTCGCCGTCGTGGTCGGCTGAMSVPIKPLEDRIVVKAVEAETTTASGLVIPDTAKEKPQEGEVLAVGDGRFNDKGERVPVDVKVGDKVIYSKFGGTEVKYAGEDYLVLSARDILAVVVGPGPT0014565_2287DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078NANA
AK018_04079300whiD_1Transcriptional regulator WhiDATGACGGAGATTTCGCGGTTGCCAGGGCCGGTCATGGAGTTGTGGGAGTGGCAGTACCAGGGGTCGTGCCGCGACGCGGACGACACCCTGTTCTTCCACCCGGAGGGTGAGCGCGGGTCGACCCGTCGACGACGTGCGGAGGCCGCCAAGGCGATCTGCCGCAGCTGCCCGGTGATGATGGAGTGCCGCGAGCAGTCGCTGCGGGTCCGCGAGCCCTACGGCGTCTGGGGCGGCCTCAGCGAGGACGAGCGCTCGGCGATCCTCAGCGGCCGCGACCGCGAGCGCAAGCAGGTCGGCTGAMTEISRLPGPVMELWEWQYQGSCRDADDTLFFHPEGERGSTRRRRAEAAKAICRSCPVMMECREQSLRVREPYGVWGGLSEDERSAILSGRDRERKQVGNANANANANA
AK018_040801119hypothetical proteinATGACCCCTTCGCGACCCGCCCAGGATGCTGGGGGGTCGCGTCCGTCGGGCCCCGGGCTGGCGGTCGCGGCCGTCGCGCGGCGCCTCGGCGTCGCGCCCGCCACGCTGCGCACGTGGGACCGTCGCTACGGCCTCGGGCCGTCCGATCGGACGGCCGGCTCGCACCGGCGCTACACGCCCGAGGACGTGGCTCGACTGCTCGTCATGCGGCGCCTCACGCTGGAGGGCGTCGCCCCTGTCGACGCCGCCCAGGCCGCCCTGGAGGCCGACGTCGACGAGCTCGAGGAGGCCCGCCGGTCCGGGCCCCCGAGCCCGCCCGGCGAGGACGCGTCGACCGGGTCCGCCGAGGAGTCCCCGGACGACGCGGGCCGCGCCGGCCGCGCCCACCTGCGCGCCCTGCCCGGAGGCGGGCAGAGCGCCCCCCGGGGTGCCGGCCAGAGCAACGGTTCGGCGCACGCGCAGCAGGCCTCCGGCAAGGTGTCGGCCGTCGTCGACGCCGCGCTCTCCTACGACCAGGCACGGTGCGACGACCTCGTGCGCATCCCGCCGAACGGCGACCCTGCCGCGTGGTGGGCCCACCTGATGGAGCCGGCCTGGAGCCGTGTCGCCGAGCGCACCGTCCTCGCCGGCCCCGGCGCGGTCCCCGAGATCGTGCTGGCCACGGCCGCGCTGCAGGCGTTGCGCTCGTTCACCGACGCCTTCGAGCAGCAGGTGGTCCAGAACGGCGGCCCGCCGGCCAACCACCCCAGCCGGATGCGCAACATCGTGCTCATCTTCGCCGCGCCCGACGAGACCGTGCCGCTCTCGGCGCACGCGCTCGCCGCCGCGCTGACCGCCAAGGGCAAGACCGCTCGGATCGTCACCGGCCCGGCCAGCATCCGCCGGTCGCTCGAGCTGGTGACCATGGTGCGTCCCGCCGCTCTGGTCCTGGCCACGGGGCAGCGGCGTCCGGACCTGGACGTCGTGCACGCCGTGCACGAGGGCTTCGCGGAGCTGCCGATCTTCGTCGGGCTGCGTCGTGACGACGCCGCCAGCGAGCTGCCGCTGACCCCCCAGGTCCAGCGCGTGCGCTCCTTCACCGGGCTGCTGCACGAGGTGCTGGCGGTCGTCGGGGCGTGAMTPSRPAQDAGGSRPSGPGLAVAAVARRLGVAPATLRTWDRRYGLGPSDRTAGSHRRYTPEDVARLLVMRRLTLEGVAPVDAAQAALEADVDELEEARRSGPPSPPGEDASTGSAEESPDDAGRAGRAHLRALPGGGQSAPRGAGQSNGSAHAQQASGKVSAVVDAALSYDQARCDDLVRIPPNGDPAAWWAHLMEPAWSRVAERTVLAGPGAVPEIVLATAALQALRSFTDAFEQQVVQNGGPPANHPSRMRNIVLIFAAPDETVPLSAHALAAALTAKGKTARIVTGPASIRRSLELVTMVRPAALVLATGQRRPDLDVVHAVHEGFAELPIFVGLRRDDAASELPLTPQVQRVRSFTGLLHEVLAVVGANANANANANA
AK018_040811518guaB_1COG0516Inosine-5'-monophosphate dehydrogenaseATGACGGAGACGACCTCGCCCGCCCACGATCCGTTCGGCTTCCTCGGCCTGACCTACGACGACGTCCTGCTGCTCCCCGGCTACTCGGACCTGGCGCCGTCGGACATCGACACCACCTCGCGGCTGACGCGGGAGATCTCGCTGCGCACCCCGCTCGTCTCCGCCGCGATGGACACCGTGACCGAGTCGCGCATGGCGATCGCGATGGCCCGCCAGGGCGGCCTCGGCGTGCTGCACCGCAACCTGTCCATCGAGGACCAGGCCTACCAGGTCGACCTGGTGAAGCGGACCCAGACCGGCATCATCTCCAACCCGGTCACCATCGGCCCGGACGCCACCCTCGAGCAGCTCGACCAGCGCGCCGGCGAGTACCGCGTCTCCGGGTTCCCGGTGCTCGACGCGGCCGGCAAGCTCGTCGGGATCGTCACCAACCGCGACCTGCGGTTCACCCCGGTGGCGGAGTGGGCCACCACCACCGTGTCCGAGGTCATGACGCCCCAGCCGCTGATCACCGGCCACTCCGGCATCTCGCGCGAGGACGCCACGGCCCTGCTGCGCAAGCACAAGCTCGAGCGGCTCCCGCTCGTCGACGACGAGGGCCGGCTCGCGGGCCTGATCACCGTCAAGGACTTCGTCAAGTCCGAGCAGTTCCCCCAGGCCTCCAAGGACTCCCAGGGGCGCCTGATGGTGGGTGCGGCCATCGGCTACTTCGGTGACGCCTGGCAGCGGGCCACCACGCTGGTCGACGCCGGGGTGGACGTGCTCGTCGCGGACACCGCCCACGGCAACGTGCGCATGCTCATCGAGATGGTGCGCACGCTGAAGTCCGACCCGGCGACCCGGCACGTCCAGGTCATCGGCGGCAACGTGGCCACCAAGGAGGGCGCCCAGGCCTTCGTCGACGCCGGTGCGGACGGCATCAAGGTCGGTGTCGGCCCGGGGTCGATCTGCACCACGCGCGTCGTCACCGGTGTCGGCGTCCCGCAGATCACCGCGATCTACGAGGCCTCCCGCGCGGCCCGCCCGGCCGGCGTGCCCGTCATCGCCGACGGCGGCATGCGGCACTCGGGCGAGATCGGCAAGGCCATCGTCGCCGGCGCCGAGGCCGTCATGCTCGGCTCCATGCTCGCCGGCACCGAGGAGTCGCCGGGCGAGACCATCCTCATCAACGGCAAGCAGTTCAAGGCCTACCGCGGCATGGGCTCGATGGGGGCGATGTCCTCGCGCGGCAAGAAGTCCTACTCCAAGGACCGCTACTTCCAGGCCGAGGTCACCAGCGACGACATGATCGTGCCCGAGGGCGTCGAGGGGCAGGTGCCGTACAAGGGCACCCTCGGCACCGTGGCGCACCAGCTCGTCGGCGGGCTGCACCAGACGATGTTCTACGTCGGTGCGCGGACCGTGCCCGAGCTGCAGGAGAAGGGCCAGTTCGTGCGCATCACGTCGGCCTCGCTGGCCGAGTCCCACCCGCACGACATCAAGATGACCGTCGAGGCACCGAACTACACGGTCGGCTGAMTETTSPAHDPFGFLGLTYDDVLLLPGYSDLAPSDIDTTSRLTREISLRTPLVSAAMDTVTESRMAIAMARQGGLGVLHRNLSIEDQAYQVDLVKRTQTGIISNPVTIGPDATLEQLDQRAGEYRVSGFPVLDAAGKLVGIVTNRDLRFTPVAEWATTTVSEVMTPQPLITGHSGISREDATALLRKHKLERLPLVDDEGRLAGLITVKDFVKSEQFPQASKDSQGRLMVGAAIGYFGDAWQRATTLVDAGVDVLVADTAHGNVRMLIEMVRTLKSDPATRHVQVIGGNVATKEGAQAFVDAGADGIKVGVGPGSICTTRVVTGVGVPQITAIYEASRAARPAGVPVIADGGMRHSGEIGKAIVAGAEAVMLGSMLAGTEESPGETILINGKQFKAYRGMGSMGAMSSRGKKSYSKDRYFQAEVTSDDMIVPEGVEGQVPYKGTLGTVAHQLVGGLHQTMFYVGARTVPELQEKGQFVRITSASLAESHPHDIKMTVEAPNYTVGPGPT0021445_1014DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
AK018_04082723dinG_33'-5' exonuclease DinGATGGACGACACCGGTTGGACGGGCGGACCGCTGCTCGGCTTCGACACCGAGACGACCGGCGTCGACGTGCACGACGACCGCATCGTGACCGCGGCGGTCGTGGTGCGCACGGCGACGTCGACGGAGGTGCGCACCTGGCTGATCGACCCGGGGGTGGAGATCCCCGCCGAGGCGGCGGCGATCCACGGCGTGACGACGGAGCACGCGCGGGCGCACGGCGTGGCCCCGGCCGGCGCTCTCGACGAGATCGCCGCGGTCCTCACCGCGCACCTGCGCGACGGCGTCCCGGTGGTGGCCTACAACGCCTCGTTCGACCTGACGCTGCTGGACGCCGAGCTGGCGCGCCACGGGCTGCCGACGGTGCCCGAGCGCCTCGGACGGCCGGTCTCCCCCGTGCTGGACCCGCTCGTCATCGACCGCTGGCAGGACCGCTACCGCCGCGGCAAGCGCCGCCTGGGCGACCTGTGCGAGCTGTACGGCGTGGTGGGCGACGGCGAGCTGCACAGCGCCGACGTCGACGTGCTGGCCACGCTGGACGTGCTGGACGCCCAGGTGCTGCGGTTCCCCGAGCTGCGCTCGGTGGCGCTCGACGCCCTGCACTCGGCCCAGCGCGACGCGCACCGCGCCTGGGCGGAGAGCTTCAACGCCTGGCGGGACCGCCAGGGGCTCCCCGGCCCGGGCGCGTCGACCACCTGGCCGATCACGCCGCGCGCCGCCGGCTGAMDDTGWTGGPLLGFDTETTGVDVHDDRIVTAAVVVRTATSTEVRTWLIDPGVEIPAEAAAIHGVTTEHARAHGVAPAGALDEIAAVLTAHLRDGVPVVAYNASFDLTLLDAELARHGLPTVPERLGRPVSPVLDPLVIDRWQDRYRRGKRRLGDLCELYGVVGDGELHSADVDVLATLDVLDAQVLRFPELRSVALDALHSAQRDAHRAWAESFNAWRDRQGLPGPGASTTWPITPRAAGNANANANANA
AK018_040831125COG0516putative oxidoreductase/MSMEI_1564GTGAGCAACGAGATCGAGATCGGACGTGGCAAGCGCGGGCGTCGCGCCTTCTCCTTCGACGACGTGGCGGTGGTCCCCTCCCGCCGGACGCGCGACCCGAAGGACGTCTCCACCGGGTGGCAGATCGACGCCTACCACTTCGACCTGCCGATCATGGCGGCGCCGATGGACTCCGTCATGAGCCCCGCCACCGCGGTCGCCCTGGGCAACCACGGCGGTCTGGGGGTGCTCGACCTCGAGGGCCTGTGGACCCGCTACGAGTCCCCGGAGCCGCTGCTCGCGGAGATCCGCGCGCTGCCCGCCGACGAGGCGACGCGCCGCATGCAAGAGATCTACGCCGAGCCCATCCGGTCCGAGCTCATCACCCAGCGGCTCAAGGAGATCCGCGCCGCGGGCGTCACCGTGGCCGGTGCGCTGTCGCCGCAGCGCATCCAGGAGCACTACCAGACCGTCCTCGACGCCGGGGTCGACCTGTTCGTCATCCGCGGCACGACCGTCTCGGCCGAGCACGTCTCGAGCAACGCCGAACCGCTCAACCTCAAGCGGTTCATCTACGAGCTCGACGTCCCCGTCGTCGTCGGCGGTGCGGCCTCCTACACCGCTGCCCTGCACCTGATGCGCACGGGGGCGGCCGGCGTGCTGGTCGGGTTCGGCGGCGGCGCCGCGCACACGACCCGCGTCGGGCTCGGGATCCACGCCCCGATGGCCACGGCGGTCTCCGACGTCGCCGCGGCCCGGCGCGACTACCTGGACGAGTCCGGCGGTCGCTACGTGCACGTCATCGCCGACGGCGGTGTGGGGCACTCCGGCGACATCGTCCGGGCGATCGCCTGCGGCGCCGACGCCGTCATGCTCGGCGCGGCCCTCGCCCGCGCCTCCGAGGCGCCCGGCCAGGGCTGGCACTGGGGTCCGGAGGCCCACCACTCCCAGCTCCCGCGCGGCGAGCGCGTGGAGGTCGGCACCGCCGGCACGCTGGAGGAGATCCTCTTCGGCCCGGGGCGCCGTGCCGACGGCACGACGAACCTCGTCGGCGCGCTGCGCCGCGCGATGGCCACCACGGGCTACTCGGACCTCAAGGAGTTCCAGCGCGTGGAGGTCGTGGTCTCGCCCTACCAGCCGCGGTGAMSNEIEIGRGKRGRRAFSFDDVAVVPSRRTRDPKDVSTGWQIDAYHFDLPIMAAPMDSVMSPATAVALGNHGGLGVLDLEGLWTRYESPEPLLAEIRALPADEATRRMQEIYAEPIRSELITQRLKEIRAAGVTVAGALSPQRIQEHYQTVLDAGVDLFVIRGTTVSAEHVSSNAEPLNLKRFIYELDVPVVVGGAASYTAALHLMRTGAAGVLVGFGGGAAHTTRVGLGIHAPMATAVSDVAAARRDYLDESGGRYVHVIADGGVGHSGDIVRAIACGADAVMLGAALARASEAPGQGWHWGPEAHHSQLPRGERVEVGTAGTLEEILFGPGRRADGTTNLVGALRRAMATTGYSDLKEFQRVEVVVSPYQPRPGPT0021445_6347DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
AK018_040841623gabD2_1COG1012Putative succinate-semialdehyde dehydrogenase [NADP(+)] 2ATGGCAACCGCGCACGAGAGCGACGGCGCTCCGGTGGAACTCATCGACCCGGAGCTGCCCGCCTCCACCTACGTCCTCGAACCCGAGATCGTGGCCCCGCTGGTCCGGCGGGTCGTGACCTCGCACGACGGCGGGACGCACCGCAGCACGCTCCCCTTCACCGGCGCCCCGCTGGCGGCGATCCCGTTGTCCGGGCCGGGGGACGTCGTCGAGGCCACCCGCCGCGCACGCGCGGCGCAGCACGACTGGGCCGCGCAGCCCGTCCGCGACCGCGCCCGCGTGCTCGACCGGCTCGGCGCCCTCGTGCTGGAGCGGCAGTCCGAGATCCTCGACCTGATCCAGATGGAGTCGGGCAAGTCCCGGCGCAACGCGTTCGAGGAGGTCGCCGACGTCGCGCAGACCTGCCGCCACTACGTCACGCGGGCCCGGCGCTACCTCGCCGACCGGCGCGAGCCGGGCGCCCTGTCGGTGCTGACCGGGGTGCGGGTGCACCGCCGGCCGGTCGGCGTCGTGGGCGTCATCGCCCCGTGGAACTTCCCGCTGACCCTCGCCCTGGCCGAGGCGATCCCCGCCCTGCTGGCCGGGAACGCCGTCGTCGTCAAGCCGGACCCCCAGACCTCGCTGTCGGCGCTGTGGGCGTCCGAGCTGCTCGCGGAGGCCGGGCTGCCGGACGACCTGTTCTCCGTCGTCGCCGGGGCCGGGGACGTCGGGGCCGAGCTGATCGACCACGTCGACCACGTCGCGTTCACGGGCTCCACCGCCACCGGGCGGAAGGTCGCCGCCCGGGCCGGGGAGCGGCTCGTCGGCGCCACCCTCGAGCTCGGCGGCAAGAACCCGCTGTACGTCGCGGCCGACGCCGACCTGGACCGCGCGGTGCCCGGGGTGCTGCGGGCGTGCTTCACGAACGCCGGCCAGCTGTGCATGTCGATCGAGCGGCTCGTCCTGCACGAGCGGATCGCCGACGAGTTCCTCGCGCGGTTCGTCCCGGCGGTGCGCGAGCTCACGCTCGGCGCCGGGCTGGACTACTCGGCCGACGTCGGCTCGCTGGTCTCCGCGGTCCAGCTCGACCGGGTCTCCGCGCACGTCGACGACGCCCTGGCCAAGGGGGCCCGGGCGCTGGTCGGCGGCGTGCACCGCAGCGACGTCGGGCCGTACTTCTACGCCCCGACCGTGCTCGACGACGTCCCCGAGGACGCGGTCTGCCGCCACGAGGAGACGTTCGGCCCGGTCGTGGCGGTCACGCGCGTGGGCGGGGACGACGAGGCGCTGCGGGTCATGAACGACACGCACTTCGGCCTCAACGCCTCGATCTGGTCCCGCGACGTCCCGCGTGCCCGGCGGCTGGCCGCCAAGGTGGAGTCCGGCACGGTCGTGGTCAACGACGGGTATCTGCAGGCCTGGGGGTCCGCCGCCGCGCCGATGGGCGGCATGAAGGCGTCGGGGCTGGGGCGCCGGCACGGCCGGGAGGCCGTCGAGGCGGTCACCGAGGCGCAGAGCGTCGTCGCCCAGCGCGGGCACCACGTCGGGCTCTCGGTGGACTCGCTGTACGCGATCGGCGGGGACGTGCCCAGCCGGGTGCTCACCGGTGCGCTGCGCGTGATGCGGCGGCTGCGGCTGCCCTGAMATAHESDGAPVELIDPELPASTYVLEPEIVAPLVRRVVTSHDGGTHRSTLPFTGAPLAAIPLSGPGDVVEATRRARAAQHDWAAQPVRDRARVLDRLGALVLERQSEILDLIQMESGKSRRNAFEEVADVAQTCRHYVTRARRYLADRREPGALSVLTGVRVHRRPVGVVGVIAPWNFPLTLALAEAIPALLAGNAVVVKPDPQTSLSALWASELLAEAGLPDDLFSVVAGAGDVGAELIDHVDHVAFTGSTATGRKVAARAGERLVGATLELGGKNPLYVAADADLDRAVPGVLRACFTNAGQLCMSIERLVLHERIADEFLARFVPAVRELTLGAGLDYSADVGSLVSAVQLDRVSAHVDDALAKGARALVGGVHRSDVGPYFYAPTVLDDVPEDAVCRHEETFGPVVAVTRVGGDDEALRVMNDTHFGLNASIWSRDVPRARRLAAKVESGTVVVNDGYLQAWGSAAAPMGGMKASGLGRRHGREAVEAVTEAQSVVAQRGHHVGLSVDSLYAIGGDVPSRVLTGALRVMRRLRLPPGPT0001580_110DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
AK018_040852637QRSL1_4Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrialGTGACGGTGGTCACCACGGCGAACGGTGCCGAGTTCACCATCCACGACGCCCACCGCCCAGCTCTCGACACCGGCAGCATCCGCTCGCTCTCCGGCTCACGCCTCGAGGGATTCGGCAACATCTTCCTCCAGGTCACCGAGGGTGATGATCGAATGAACGGGCAGATGCTCCGTGGGTTCGGGCTGACGGCCGACGGATCCGGCGGCTTCGACTCGACCAGGTCGGTGCTTGTCGACGGTGTGCAGGTCGCCCGCGACGTCACCGTCGAGTCGGGTGAGGACCGGGTGCGGTTCCTCGATTCCTTCACGAACACGACCGCTGCGACCGTGACGGTCGGTGTCTCGTTCGGCGGCACGCTCGGTTACGGGACGGGCGACGATGCCGGTGTCATCGTCGCGACAGCTGACGGCGACACCGAAGTCGAGGCCTCCGACACGTGGGTCGTCTCGGCCTCCGACGATCGGCGTCCTGTGGGTATCGTCGTCGGCGAAGGGGTGGACGCGCTCGGAGACCAGCAGGCCGACCCGTTCAGCACTCCGTACGAGCACGAAGGGTCGCGCGCGAACCATCCCGGGTTCGTCCAGACGTTGGAGATCGCCGCCGGCGAGACTCAGTCGCTCCTGCAGTACGTCATCGCCGGCGGGGCAGGGGCCGACGCACTCGGGCCGCTGACCGAGAACACGTCCGACCTGGCCGACGACGCTGCTGCGGTGGACCTGGACCTCGCGATGAGGTGCAGCGTGGTCAACTGGTCGTTGCCCGGCACCGAGGACGCGGCCTGTGACGCCGCGCCGCTGCTGCCGATGCCGAGCGTCGACCTGAGCACGCTGACCTCCGAGGCAGCCGCCACGACCGTGGACTACGACGTCACGGGTGCGACCATCGAACGACTGCAGACGGACATGCGGTCGGGCGTGACCACGTCGGTCGAGATCACGCAGGCCTACCTGGACCGCATCACGGCGTACGACGGTGGCGCGCTCGGGTTCCACTCCTTCATCACGGTGGCAGACGACGCGCTCGCTCAGGCTGCTGCGGCCGATGCCGCCCGTGCCGAGGGCGCGGACTCCGACCTGCTCGGCATCCCCCTCGGGATCAAGGACCTCTACGACACCTTCGACATGCCGACCACCGGCGGCACGCGCGCATTGGAGGACTTCCAGCCCGCGAAGGATGCCTGGCAGGTCGCCAGGCTCCGTGAGGCGGGCGCCGTCATCATCGGCAAGACCAACATGTCCGAGTTCGCCTACTCGGGAGGCTTCAGCGAGTCCGGCTTCATGCAGACGTGGAACGCCCTGTACCCCTCGAAGACGTCGCACGGATCCTCCGGTGGCTCGGGTGCGGCGGTGGCGGCTGACCTCGCTGCCGCGGGCATGGGGTCGCAGACCGGGGTCTCGCTCTACGCGCCGTCGACCTCCAACGGGCTCGCGACCTTCCGCGGTACCGATGGGCTCTCGTCCACCTCAGGCGTCCAGCCGCTCACGTGGGGGCGGGACTTCGCCGGGCCGATGGCGAAGACCGTGACCGACCTGTCCTACCTGCTCGACGCCACCAGCTCGCGGACCACGGGCAACAACCCTGACGATGTGCTCACGTCGCGTGTGGACAACGATCTGCGGCCTGAGTCCTTCGGCTCGCGCCTGCAGCCGGACACGCTCGACGGCAAGGTGCTGGGCATCATCCCGGACTCGTTCGTCTCGTCGCGGCTGCCCGACGACCCGACCGGCCCCGCCGCTCGTGCCAGGCTGGAGGAGCTGGCAGAGGCAGCCGGCGCCGAGATCGTCGAGGTGCCCGAGCCGGAGTCGTTCGAGCGCTCTCCCGGTGGTAGCGCCGGAGCCGAGGGCTGGGCCCGCTACATCGAGGAGCAGGAGTCCTTCCCCTTCGCTGACGGCAACGAGCTGACCGCGTCTCCGCTCGTGCTCCCGTACAACGAGAGAAGCCAGCGGGACACCCCGCGGATGACCGAGCAGCAGGTGACCGACTATCTCGACTGGCGGGACCGCTACAAGGAGCACATCGCGGCCTGGATGGCCGACCAGGGCATCGACGCGGTGGTCTACCCGGGATTCCTCTCGGCGGTGGGCAACAACGACGTGTCCTCGGCGATCCACACGTCTGACCGGTCGACGGGGGTGCTGACCTCCACCGCGGGCCTGCCCACGGTGGTCGTGCCGGTCGGCGCGAGCCCCTACGGTCAGTCGATGTCCTTGCAGATCGTCGGCCCGGCGTGGACGGACGCCGAGGTGCTCGGCATGGGCTATGCGCTCGAGCAGGGGGTTGCGGCTCCCGTGGCCACGACCTTCGCGGACGCGCTTCCGGCCGACGTCGGAGACGTGACCACCGACGTCAAGATCCAGACGCGTCGCCTCATCGAGGGCGCGACCAACACTGTGACCGTCCGGGTGGTCGCCCGCGGCGGGGTCAAGGCGTCGGGCACGGTGGTGCTCGAGGTTGCAGGGCGCACCCTCACGACCGAGGTCGAGGCCGGAGTGGCTGTCGTCGAGCTTCCCGATCGGCTCGAGGCGGGACGCCATCAGACGAGTGCGAACTACATCGGTGACACCGCGACCGAGGCGTCGAGCACGGTCGCGACACTCAGGGTGGCAGAACCCCGCGGAAGGGGTGCCGGCCACTGAMTVVTTANGAEFTIHDAHRPALDTGSIRSLSGSRLEGFGNIFLQVTEGDDRMNGQMLRGFGLTADGSGGFDSTRSVLVDGVQVARDVTVESGEDRVRFLDSFTNTTAATVTVGVSFGGTLGYGTGDDAGVIVATADGDTEVEASDTWVVSASDDRRPVGIVVGEGVDALGDQQADPFSTPYEHEGSRANHPGFVQTLEIAAGETQSLLQYVIAGGAGADALGPLTENTSDLADDAAAVDLDLAMRCSVVNWSLPGTEDAACDAAPLLPMPSVDLSTLTSEAAATTVDYDVTGATIERLQTDMRSGVTTSVEITQAYLDRITAYDGGALGFHSFITVADDALAQAAAADAARAEGADSDLLGIPLGIKDLYDTFDMPTTGGTRALEDFQPAKDAWQVARLREAGAVIIGKTNMSEFAYSGGFSESGFMQTWNALYPSKTSHGSSGGSGAAVAADLAAAGMGSQTGVSLYAPSTSNGLATFRGTDGLSSTSGVQPLTWGRDFAGPMAKTVTDLSYLLDATSSRTTGNNPDDVLTSRVDNDLRPESFGSRLQPDTLDGKVLGIIPDSFVSSRLPDDPTGPAARARLEELAEAAGAEIVEVPEPESFERSPGGSAGAEGWARYIEEQESFPFADGNELTASPLVLPYNERSQRDTPRMTEQQVTDYLDWRDRYKEHIAAWMADQGIDAVVYPGFLSAVGNNDVSSAIHTSDRSTGVLTSTAGLPTVVVPVGASPYGQSMSLQIVGPAWTDAEVLGMGYALEQGVAAPVATTFADALPADVGDVTTDVKIQTRRLIEGATNTVTVRVVARGGVKASGTVVLEVAGRTLTTEVEAGVAVVELPDRLEAGRHQTSANYIGDTATEASSTVATLRVAEPRGRGAGHPGPT0006115_17DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426NANA
AK018_04086987hypothetical proteinGTGACCGTGCTCGTCGACCCGCCGACGTGGCCGGCGCACGGCCGTCGCTGGTCGCACCTCGTCTCGGACCGCTCCCTGCACGAGCTGCGGACGTTCGCCCGCGCGGCCGGCATCCCCGACCGCGCTCTCGACGTCGACCACTACGACGTGCCCGACGAGCGGTTCGAGGACCTGGTGGCGGCCGGGGCCGTGCCCGTCACCGGTCGCGAGCTCACCCGGCGGCTGGCCGAGTCCGGTCTGCGGGTGCCCGGCCGGGAACGGGCCCGGGCGAAGCCCGCCGCGCTGCGCGCCCGGTGGGCGCGGCTGTGGACCGCCGACGGCGGGACCCTCCCGGCGGGGGCCGCCGCGGTCGGCGAGGAGCTGGTCGACCGCTGGGGCGAGCCGCACCGGGTCTACCACGCGCGTCTGCACCTGGCCGACACGCTCGACGCCCTCGATGAGCTGACCCCCGAGGTCCCGGGGGCGGGCGGCCCGGCAGCACGACGTGCGGCGCTCGCCCTGTGGTTCCACGACGCGGTGCACGACGGCGCGACCCCGGCCGACGAGGAGCTCTCCGCCGCGCTGGCCCGCACGCTGCTGCCGCGGTGCCACGCCGCCGCGGCGGACCTCCCCGCGCCGAGGGGCACAACCCGTCCCGCGCTCGGGCTCGCGGACCCGGAGCAGGTGGAGGAGGTGGCCCGGCTGGTCCTGGTGACCGCCGACCACGACCCGGACCCGGCCGACCGGCTCGGGGCCCTGGTCAGCGACGCGGACCTGGCGGTGCTCGGCGGCTCGCCGGCGCGGTACGCCCGCTACACGGCCCAGGTGCGGGCCGAGTACGGCCACGTCGACGACGTCGACTTCCGCGCCGGCCGCGCCGCGGTGCTGGAGCAGCTCCTGGCACTGCACGCCGGACCGGGGCTGTTCCGGACGGAGCCGGGACGACGCCGCTGGGCCGATCGGGCCGGGGCGAACCTGCGCGACGAGCTCGCCGCGCTGGCGGGCTGAMTVLVDPPTWPAHGRRWSHLVSDRSLHELRTFARAAGIPDRALDVDHYDVPDERFEDLVAAGAVPVTGRELTRRLAESGLRVPGRERARAKPAALRARWARLWTADGGTLPAGAAAVGEELVDRWGEPHRVYHARLHLADTLDALDELTPEVPGAGGPAARRAALALWFHDAVHDGATPADEELSAALARTLLPRCHAAAADLPAPRGTTRPALGLADPEQVEEVARLVLVTADHDPDPADRLGALVSDADLAVLGGSPARYARYTAQVRAEYGHVDDVDFRAGRAAVLEQLLALHAGPGLFRTEPGRRRWADRAGANLRDELAALAGPGPT0014525_51DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
AK018_04087708hypothetical proteinATGCCGTCCGCCGCCCTGCACAGCCCCGTGCTCGACGCCGTCGGCCGGTCCATCACCAGCGGGGACGTCCCGGCCGGCGCGGTCCTGACGCTCGAGTCGATCGGCGTCGAGCACGACGTCTCACGCACCGTCGCCCGCGAGGTGATGCGGCTGCTCGAGGGCCTCGGCCTCGTCCGGTCCCGCCGCCGGGTCGGGCTCGTCGTGCTGCCCATGGAGGACTGGAACGTCCTGGACCCGCGGGTGATCCGCTGGCGGCTGGCGGGCCCCGGACGCGACGACCAGCTCCGCACGCTCACGGAGCTGCGCCACGCCGTCGAGCCGCTCGCGGCCGCCGGTGCCGCACGCCACGCCTCCGACGCCGAGCGCGCCGAGCTCGTCGACCTCGCGGCCCGCATGCGGGTGCTCGGGGTCCGGGGCGATCTCGAAGACTTCCTCGCGCTCGACATCCGGATGCACGAGCTGCTGCTGCGCACCAGCGGCAACGAGATGTTCGGCGCGCTGGCCGGCGTCGTCGCCGAGGTCCTGTCGGGTCGCACCCACCTGGGCCTCATGCCGGCCTCCCCCGCCCCGGAGGCGCTCGACCAGCACGAGGCGGTGGCCCGCGCGGTCGCCGCCGGGGACGCCCCGGTGGCCGAGGCGGCCATGGCCGCGATCGTGGGCGAGGTGCGTCGGTCCCTGGAGACCACCACGGACGAGGCCTCGTCGTGAMPSAALHSPVLDAVGRSITSGDVPAGAVLTLESIGVEHDVSRTVAREVMRLLEGLGLVRSRRRVGLVVLPMEDWNVLDPRVIRWRLAGPGRDDQLRTLTELRHAVEPLAAAGAARHASDAERAELVDLAARMRVLGVRGDLEDFLALDIRMHELLLRTSGNEMFGALAGVVAEVLSGRTHLGLMPASPAPEALDQHEAVARAVAAGDAPVAEAAMAAIVGEVRRSLETTTDEASSPGPT0018085_24DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018085-dgoR-K19776NANA
AK018_04088552COG3265GluconokinaseATGGACACCGACGTCACCACCCCGGCGCACCGCCCGCCCGACCCCACCGCCGTCCCGCACGTCGTCGTCATGGGCGTCGCCGGCTCCGGCAAGACCACGGTCGCCACGCTCCTCGCCGCACGCCTCGGCGTCACCTACGCCGAGGCCGACCAGTTCCACCCCGCGGCGAACATCGCCAAGATGAGCGCCGGCACGCCGTTGACCGACGCCGACCGGGCCCCGTGGCTGGCCACGATCCGTGACTGGCTCAGCGCCGAGGCGGACGCGGGCCGGCCGGGCGTCGTCACCTGCTCGGCCCTCAAGCGGGCCTACCGCGACGTGCTGCGTGCCGCGCACGGCCAGGTGCTGTTCGTGCACCTGGACGGGCCGCCCGAGCTGCTCGCCGAACGGATGGAGGGCCGGACGGGGCACTTCATGCCGCGATCGCTCCTGCCGTCCCAGCTCGCCGCGCTCGAGCCCCTGGCCGTCGACGAGCACGGCCTGACGCTCAGCATCACCGAGACGCCCGACACGATCGTCGACGCCGTCGCCGACCTGCTCGACCGCGGCTGAMDTDVTTPAHRPPDPTAVPHVVVMGVAGSGKTTVATLLAARLGVTYAEADQFHPAANIAKMSAGTPLTDADRAPWLATIRDWLSAEADAGRPGVVTCSALKRAYRDVLRAAHGQVLFVHLDGPPELLAERMEGRTGHFMPRSLLPSQLAALEPLAVDEHGLTLSITETPDTIVDAVADLLDRGPGPT0018055_396DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851NANA
AK018_040891383ygbN_1COG2610Inner membrane permease YgbNATGACCACCGACGACTGGACCCAGACCCTCACCGCCGGGCCGCTGCTCGGCATCGCCGCGGGCGCCGTCGCGCTGCTGCTCGTGCTCATCATCAAGGTCAGGCTGCACGCGTTCGTCGCGCTCGTCCTGGTCAGCCTGCTCACCGCCGTGGCTGCCGGACTGCCGGCCGGCGGCGTGATCGACGTGCTGCTCGACGGGTTCGGCTCGACGCTCGCCGCCGTCGCGCTGCTGGTCGGCCTCGGCGCCATGCTGGGCCGTCTCGTCGAGACCAGCGGCGGCGCCACCGTCCTGACCGACGTGCTCATCGCCCGGTTCGGCGAACGACGCGCTCCGCTCGCCCTCGGCGTCGCCTCGCTGATGTTCGGCTTCCCGATCTTCTTCGACGCGGGCCTCGTGGTCATGCTGCCCATCGTGTTCGCCGTCGCCCGCCGGCTCGGCGGGTCGCTGCTGCTCTACGGGCTGCCCGTCGCCGGCGCGTTCTCCGTCATGCACATCTACGTGCCGCCCCACCCCGGACCCGTCGCCGCCGCGGAGTTCCTCGGGGCGAACGTGGGGATCGTCCTGCTGGTCGGTCTGCTCGCGGCGATCCCCACCTGGTACGTCACCGCCTACCTGTTCGGACGCCTCGCGGGCCGACGCATCGAGCTGCCCGTACCCCAGATCCTGGGCCGCGCCGACGACGCCCAGATCGCGGACCCGCCGCGGTTCGCCACCGTCGTCACGGTCCTGCTGCTGCCCCTCGTGCTGATCTTCGCCAACACCGGTCTGGAGACCGCGGCGTCCGTCGGCTGGGTGGACGCGGACTCGACCGGTGTCGCGGTCGCCCGCCTGGTCGGGTCGACGCCGGTCGCGCTGCTGATCACGGTCCTCGTCGCCGCCTGGGCGCTCGGCCGCCGACGGGGGGTGGGCGGCACCGCCCTGGAGAAGACCCTCGACTCCGCCCTCGGCCCGGTCGCCTCGGTCATCCTCATCACCGGCGCCGGCGGGATGTTCGGCGGCGTGCTGCGTGCCAGCGGCATCGGGGACGCCCTCGCGGACGTCCTCGGCGACCTCGGGCTGCCGGTCATCGTGGCCGGATTCCTCATCGCCGCCGTGCTGCGCGTGGCGCAGGGCTCGGCGACCGTGGCGCTGACCACGGCCGCCGGCCTGATCGCCCCCGCCGTCGCCGCCGGGGGCTACGGCGCGGTCGAGCTCGCCGCCGTCGTCGTCGCCGTCGCGGCCGGGTCCGTCGTGCTCAGCCACGTCAACGACTCCGGCTTCTGGCTGGTGGGCCGGTTCTTCGACATGGACGTCCGCACCACGCTGCGCACGTGGACCGTCATGGAGACCGGGATCGGCGTGATGGGCTTCGCGATCGCCGGGATCGTGTTCGCCGTCGCCTGAMTTDDWTQTLTAGPLLGIAAGAVALLLVLIIKVRLHAFVALVLVSLLTAVAAGLPAGGVIDVLLDGFGSTLAAVALLVGLGAMLGRLVETSGGATVLTDVLIARFGERRAPLALGVASLMFGFPIFFDAGLVVMLPIVFAVARRLGGSLLLYGLPVAGAFSVMHIYVPPHPGPVAAAEFLGANVGIVLLVGLLAAIPTWYVTAYLFGRLAGRRIELPVPQILGRADDAQIADPPRFATVVTVLLLPLVLIFANTGLETAASVGWVDADSTGVAVARLVGSTPVALLITVLVAAWALGRRRGVGGTALEKTLDSALGPVASVILITGAGGMFGGVLRASGIGDALADVLGDLGLPVIVAGFLIAAVLRVAQGSATVALTTAAGLIAPAVAAGGYGAVELAAVVVAVAAGSVVLSHVNDSGFWLVGRFFDMDVRTTLRTWTVMETGIGVMGFAIAGIVFAVAPGPT0001340_214DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_GLUCONATE_TRANSPORT,PGPT0001340-TC_GNTP-K03299NANA
AK018_040901272ackA_1COG0282Acetate kinaseATGAGCATCCTGCCCGCCTCGGAACGACCGAACCCCTACAGCGCGTACGGGGCGCACGGATCGGTGCTGGTGCTCAACTCGGGCTCGTCGTCGCTGAAGTACCAGCTGGTCAACCCGGTGGGCGGCGAGGCGATCGCGGCCGGCACCGTCGAGCGCATCGGCGAGCCGAGCGGGATCGTGACGCACACCTTCGCGGGGAACAGGACGCGCCGCGAGCTGGAGGTCGCGGACCACGGCGCGGCGCTCAGGCTCGCCCTGGGCATGTTCGACGAGATCGGCCCGGCGCTGCACGGGGCCGGGATCTACGCCGTCGGGCACCGGGTGGTGCACGGCGGGGCGGAGTTCTCCGGTCCGGTGGTCGTCGACGACGACGTCATCGAGCGGATCGAGGCACTGGTGCCGCTCGCCCCGCTGCACAACCCGGCGAACGTCCAGGGCATCCGCGTCGCGCGCGAGCTGCTCGGCGACGTGCCGCACGTGGCCGTGTTCGACACGGCGTTCTTCCAGGCCCTGCCCGCGGAGGCGTACACGTACGCCATCGACCGCGACGTCGCGCGCGAGCACGACGTGCGCCGCTACGGGTTCCACGGCACCAGCCACCAGTACGTGGCGGGCAAGGTCGCCCGGGTGCTGGGCCGACGGGTCGAGGACCTCAACACCATCGTGCTGCACCTCGGCAACGGCGCGTCCGCCTCGGCGGTGCGCGGCGGCGTGCCGATCGACACGTCCATGGGTCTGACGCCGCTCGAGGGGCTCGTCATGGGCACCCGCTCGGGGGACGTCGACCCCGCGGTGGTCTTCCACCTGGCCCGCAACGCGGGGATGGACATCGACGAGCTCGACACGCTGCTGAACAAGCGGTCCGGAGTGCTCGGCCTGTCCGGCGTCAACGACTTCCGCGAGCTGCACCGGCTCGTCGAGGAGGGCGACGAGGACGCCGCGCTGGCCCTCGACGTGTACGTCCACCGGCTGCGCAAGTACGTCGGTGCCTACACGGCGCTGCTGGGCCGGGTCGACGTCATCGCCTTCACCGCCGGCGTGGGCGAGAACGACGCGGTGGTGCGTGCCGCCGTCTGCGCCGACCTGGAGGCGCTGGGGATCGCCGTCGACGACGACCGCAACGCCGCCCGGGGCGAGGAGCGCATCATCTCCCCCGACTGGACGAAGACGCTGGTCATGGTCATCCCGACGATGGAGGAGCTGGCGATCGCCCGGCAGAGCGTCGAGGCCGTGGACCGGCTGCACCCGTCGGCGGCGGTCGCCTCCGGCTGAMSILPASERPNPYSAYGAHGSVLVLNSGSSSLKYQLVNPVGGEAIAAGTVERIGEPSGIVTHTFAGNRTRRELEVADHGAALRLALGMFDEIGPALHGAGIYAVGHRVVHGGAEFSGPVVVDDDVIERIEALVPLAPLHNPANVQGIRVARELLGDVPHVAVFDTAFFQALPAEAYTYAIDRDVAREHDVRRYGFHGTSHQYVAGKVARVLGRRVEDLNTIVLHLGNGASASAVRGGVPIDTSMGLTPLEGLVMGTRSGDVDPAVVFHLARNAGMDIDELDTLLNKRSGVLGLSGVNDFRELHRLVEEGDEDAALALDVYVHRLRKYVGAYTALLGRVDVIAFTAGVGENDAVVRAAVCADLEALGIAVDDDRNAARGEERIISPDWTKTLVMVIPTMEELAIARQSVEAVDRLHPSAAVASGPGPT0001360_150DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PROPIONIC_ACID_BIOSYNTHESIS,PGPT0001360-ackA-K00925NANA
AK018_040912115pta_1COG0280Phosphate acetyltransferaseGTGAGCACTCGGAGCATCTACATCGCCTCCCCCGAGGGGGACACCGGCAAGTCCACGGTCGCGCTGGGGGTGCTCGACCTCCTGGTCCGGCAGGTCCAGCGCGTCGGCGTCTTCCGTGCCGTCTCGCGGGTGCCGGAACGCCCCTCGGCGTCCGGCAACACCCTGCGGGACCACGTGCTGGAGCTCATGCTCGCGCACGACGGCGTCGACCTCAGCTACGCCGAGACCGTCGGGGTCACCTACGACGAGGTCCACGCCGACCCCGACGCCGCCCTGTCGCGCATCGTGGACCGCTACCACCGGGTGGCCGCGCAGTGCGACGCGGTGGTGGTCCTCGGCACCGACTACACCGACGTCTCGGGCGCCACGGAGCTCGCGTTCAACGCCCGCGTGGCCGCGAACCTCGACTCCCCCGTGCTGCTGGTGGTCTCCGGCCGCGACCGCGGCGTCGAGGACGTCACCACCCTGACGCGCCTGAGCCTGGCCGAGCTGCGCGCCAACCACGCCCAGCCGCTGGGCGTCGTCGTGAACCGCGCCGAGGGGGCGGTCCGCACGGCCGACGCCGCGACCCGGGCGGACTTCTCCGGTGACCACCTGCCGACCTGGGTGATCGGCGAGGAGCCGTTCCTCGGCGCCCCGACGATCGCCCAGCTCGCCGACGCCGTGGACGGCACGCTGCTGCTGGGCGACCGCGACCTCATGGCCCGCGAGGCCACCGAGGTCATCGTCGGCGCGATGACGTTCGAGCACATGCTCGGCCACCTGAGCGACGGCGCCGTGGTCATCACACCGGGTGACCGCACCGACGTCGTCCTCGGCCTGCTGGCCGTGCAGGCGGCCGACCGCTTCCCGTCCCTGGCCGGCCTCATCCTCACCGGCGGGCTGCGCCCCACCGGCCGGTCCGGTCAGCTGGCGTCCGCGCTGCAGCCGCACGTGCCGATCATCGCCACGGCGATGGACACCTACGAGGTGGCCCGCGTGGCCTCGCGCACGCGCGGGATCATGTCCACCGAGGCCCAGCGCAAGCACGACGTCGCCCGCGCGATGTTCGAGCAGAGCGTCGACGCCGACGAGCTCCTGGCGCGCCTCGAGGTCGAGCGCACCCCCGTGGTGACGCCGCTGATGTTCGAGCACGAGCTCATCGAGCGGGCGCGGGCCGACCGCCGCCGCGTCGTCCTGCCCGAGGGTGACGACGACCGCATCCTGCGGGCCGCGTCCACGGTGCTGGCGCGCGGCATCGCCGACCTGGTGATCCTGGGCGACGAGGCCGCGATCCGACGCCGGGCCACCGAGCTCGGCCTGGACATCTCGGCCGCGCAGGTCATCTCGCCGACCGACCCGGAGCACGTCGAGCAGTTCGCCGCCGAGTACGCACAGCTGCGCGCCCACAAGGGCATGACCCTCGAGCGGGCCCGCGAGATCGTCACGGACGTCTCCTACTTCGGCACGATGATGGTCCACCTGGGCCTGGCCGACGGCATGGTGTCCGGCGCGGCCCACACCACGGCCCACACGATCCGGCCGTCGTTCGAGATCATCAAGACGCAGCCCGGGACGTCGGTCGTGTCCTCGGTGTTCCTCATGTGCCTGCCCGACCGCGTGCTCGCCTACGGCGACTGCGCCGTCAACCCCGACCCGACGGCGGAGCAGCTCGCCGACATCGCCGCCTCCTCCGCCGCCACCGCGGCGCAGTTCGGCGTCGATCCGCGGGTGGCCATGCTGTCGTACTCGACGGGGACGTCGGGTTCCGGCGCGGACGTGGACAAGGTCCGCACCGCCACCGAGCTGGTGCACGGACGCCACCCGGAGATGTCGGTGGAGGGTCCGATCCAGTACGACGCCGCGGTGGACGCCTCCGTGGCGGCCTCCAAGCTGCCCGACTCCGCGGTGGCCGGCAAGGCCAGCGTGTTCATCTTCCCGGACCTGAACACCGGCAACAACACCTACAAGGCGGTGCAGCGCTCTGCCGGGGCCGTGGCGATCGGCCCGGTCCTGCAGGGGCTGAACAAGCCGGTCAACGACCTCTCGCGCGGGGCGCTCGTGGCCGACATCGTCAACACGGTCGCGATCACGGCGATCCAGGCCCAGTCGACCTCGAACGGAGAGTCCGCATGAMSTRSIYIASPEGDTGKSTVALGVLDLLVRQVQRVGVFRAVSRVPERPSASGNTLRDHVLELMLAHDGVDLSYAETVGVTYDEVHADPDAALSRIVDRYHRVAAQCDAVVVLGTDYTDVSGATELAFNARVAANLDSPVLLVVSGRDRGVEDVTTLTRLSLAELRANHAQPLGVVVNRAEGAVRTADAATRADFSGDHLPTWVIGEEPFLGAPTIAQLADAVDGTLLLGDRDLMAREATEVIVGAMTFEHMLGHLSDGAVVITPGDRTDVVLGLLAVQAADRFPSLAGLILTGGLRPTGRSGQLASALQPHVPIIATAMDTYEVARVASRTRGIMSTEAQRKHDVARAMFEQSVDADELLARLEVERTPVVTPLMFEHELIERARADRRRVVLPEGDDDRILRAASTVLARGIADLVILGDEAAIRRRATELGLDISAAQVISPTDPEHVEQFAAEYAQLRAHKGMTLERAREIVTDVSYFGTMMVHLGLADGMVSGAAHTTAHTIRPSFEIIKTQPGTSVVSSVFLMCLPDRVLAYGDCAVNPDPTAEQLADIAASSAATAAQFGVDPRVAMLSYSTGTSGSGADVDKVRTATELVHGRHPEMSVEGPIQYDAAVDASVAASKLPDSAVAGKASVFIFPDLNTGNNTYKAVQRSAGAVAIGPVLQGLNKPVNDLSRGALVADIVNTVAITAIQAQSTSNGESAPGPT0001370_792DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_PROPANEDIOL_UTILIZATION,PGPT0001370-pta-K13788NANA
AK018_040922475xfp_1Xylulose-5-phosphate/fructose-6-phosphate phosphoketolaseATGAGCACGACGACGACCACCACCACGACCTGGGCGCAGACCGGTGTGGCCGACCTGTCGGACACCGACGTCGAGCGCCTCGACCAGTGGTGGCGAGCAGCGAACTATCTCTCCGTCGGCCAGATCTACCTGCTCGACAACCCGCTCCTGCGCGAGACGCTGACGCGTGACCACGTCAAGCCCCGCCTGCTCGGCCACTGGGGCACGACGCCGGGACTGAACTTCCTGTACGCGCACCTGAACCGCGCGATCCGCGAGCGCGAGCAGTCCACCATCTACGTCACCGGTCCCGGCCACGGCGGTCCCGGCCTCGTCGCCGCCTCCTACCTCGAGGGCACCTACTCCGAGACCTACTCCGACATCACCCGCGACGACGAGGGCATGCGCCGGCTGTTCCGGCAGTTCTCGTTCCCCGGCGGGATCCCCAGCCACGTCGCCCCGGAGACGCCCGGGTCGATCCACGAGGGCGGCGAGCTCGGGTACGCCCTGTCGCACGCCTACGGCGCCGCCTTCGACAACCCGGACCTGCTCGTCGCCGCCGTCGTCGGCGACGGCGAGGCGGAGACCGGCCCGCTGGCCACGAGCTGGCACTCCAACAAGTTCGTCAACGCGCGCACCGACGGCGTCGTGCTGCCCATCCTGCACCTCAACGGCTACAAGATCGCCAACCCGACGGTGCTCAGCCGCATCAGCGACGACGAGCTGCGCGACCTGATGATCGGCTACGGCCACACCCCGTACTTCTTCACCGGCGGGTTCGACGGCGAGGACCACGCGGCCGTGCACCGCCGGTTCGCCCAGCTCCTCGACGAGGTGATGGACCACATCGCCCGCATCAAGGCCGACGCCGCCGCCGGCGACGACGAGCGCCCGGCCTGGCCGATGATCGTCTTCCGCACCCCGAAGGGCTGGACCTGCCCGCCGGAGATCGACGGGAAGAAGACCGAGGACTCCTGGCGCGCCCACCAGGTACCGCTCGCCAGCGCCCGCGACACCCCCGAGCACCTCGAGGTGCTGCACCAGTGGCTGGAGTCCTACGGCCCGGGCGAGCTGTTCGACGACAGCGGCCGGCTCCGCGAGGAGATCGCCGCCCAGGCCCCGACCGGCGAGCTGCGCATGAGCGCCAACGCGCACGCCAACGGCGGGCTGCTGCTCAAGGACCTGCGGATGCCCGACTTCCGGGACTTCGCCGTCGACGTCCCCGAGCCCGGCGGCGCCGTGGCGGAGTCCACGCGCGTGCTCGGCACCTGGCTCAACGACGTCGTCCGCCGCAACCCGGACAACTTCCGCATCTTCGGTCCCGACGAGACGGCGTCGAACCGGCTGCAGGCCGTGTACGAGACGACCGACAAGCAGTGGAACGCCGACTTCTACGGCCCCGACGTCGACGAGCACATGGCGCGCGCCGGACGGGTCATGGAGATGCTGTCCGAGCACCAGTGCCAGGGCTGGCTGGAGGGCTACCTGCTCACCGGGCGCCACGGGCTGTTCACCAGCTACGAGGCGTTCATCCACATCGTCGACTCGATGTTCAACCAGCACGCCAAGTGGCTCAAGGTCACCAACCACATCCCGTGGCGGCGGCCCGTCGCGAGCCTGAACTACCTGCTGTCCAGCCACGTCTGGCGCCAGGACCACAACGGCTTCAGCCACCAGGACCCGGGGTTCATCGACCACGTGGTCAACAAGAAGGCCGAGATCGTGCGGGTCTACCTGCCGCCGGACGCCAACACGCTGCTGAGCACCTACGACCACTGCCTGCGCAGCCGGCAGTACGTGAACGTGGTGGTGGCCGGCAAGCAGCCCGCCCCGCAGTTCCTGTCGATGGACGACGCGATCGCGCACTGCACCCGGGGCCTGGGCATCTGGGAGTGGGCCGGCACCGAGACGCCGGGCGAGGACCCCGACGTGGTGCTCGGCTGCGCCGGCGACGTCCCCACGCTCGAGGTGCTGGCGGCCGCGGACATCCTGCGCAACGAGCTGCCGGACCTCAAGGTCCGCGTGGTCAACGTCGTGGACCTCATGCGGCTCCAGGACGAGACGGAGCACCCGCACGGCATGTCCGACAAGGACTTCGACGGTCTGTTCACGCCGGACCGGCCGGTGATCTTCAACTACCACGGCTACCCGTGGCTGATCCACCGGCTCACCTACCGCCGGCGCAACCACCCCAACATCCACGTGCGGGGGTACAAGGAGGAGGGCACCACCACGACGCCCTTCGACATGGCGATGCTCAACGACATCGACCGGTACCACCTGGTGCTCGACGTGATCGACCGGGTCCCCGGGCTCGGCTCGAAGGTCGCGGGCCTGCGCCAGCGCATGGTGGACCAGCGGCTGGCGGCGCGCCAGTACACCCGCTCCCACGGCGAGGACATCCCCGAGGTGCGCGACTGGGTGTGGCCGGGTGCGCGCCGTGTCGTCGGCGAGGGCGCCTCCGGCATGGAGGACACCGGCGGCGACAACGAGTGAMSTTTTTTTTWAQTGVADLSDTDVERLDQWWRAANYLSVGQIYLLDNPLLRETLTRDHVKPRLLGHWGTTPGLNFLYAHLNRAIREREQSTIYVTGPGHGGPGLVAASYLEGTYSETYSDITRDDEGMRRLFRQFSFPGGIPSHVAPETPGSIHEGGELGYALSHAYGAAFDNPDLLVAAVVGDGEAETGPLATSWHSNKFVNARTDGVVLPILHLNGYKIANPTVLSRISDDELRDLMIGYGHTPYFFTGGFDGEDHAAVHRRFAQLLDEVMDHIARIKADAAAGDDERPAWPMIVFRTPKGWTCPPEIDGKKTEDSWRAHQVPLASARDTPEHLEVLHQWLESYGPGELFDDSGRLREEIAAQAPTGELRMSANAHANGGLLLKDLRMPDFRDFAVDVPEPGGAVAESTRVLGTWLNDVVRRNPDNFRIFGPDETASNRLQAVYETTDKQWNADFYGPDVDEHMARAGRVMEMLSEHQCQGWLEGYLLTGRHGLFTSYEAFIHIVDSMFNQHAKWLKVTNHIPWRRPVASLNYLLSSHVWRQDHNGFSHQDPGFIDHVVNKKAEIVRVYLPPDANTLLSTYDHCLRSRQYVNVVVAGKQPAPQFLSMDDAIAHCTRGLGIWEWAGTETPGEDPDVVLGCAGDVPTLEVLAAADILRNELPDLKVRVVNVVDLMRLQDETEHPHGMSDKDFDGLFTPDRPVIFNYHGYPWLIHRLTYRRRNHPNIHVRGYKEEGTTTTPFDMAMLNDIDRYHLVLDVIDRVPGLGSKVAGLRQRMVDQRLAARQYTRSHGEDIPEVRDWVWPGARRVVGEGASGMEDTGGDNEPGPT0017575_73DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017575-xfp-K01621NANA
AK018_04093927hypothetical proteinGTGCCCGACGCCCTGCCCGCCCGACGCTCGTTCTGGGCGGTCGCCCGCCAGCCACGCATGCTCGTCGTCCTGCTGCTCCTCCTGCTCGCCGCCGCCGTGTGCGGCCGTCTCGGCGTCTGGCAGATCGACCGCGCCTACGAACGCGCGAGCCTCGCCGCCGAGCAGGAGGCCGCCGAGCAGGCGGCGGCCGGACCGGCCTCGCTCGGGGAGCTGCTGCCTCCCCAGTCGGCGTTGCCCGGTGAGCTCGTCGGGCGCGAGGCCTGGGTCTCCGGCACCTACGAGCCCGACGGCCAGATGCTCGTGACCGGTCGTTCCCTCGACGGGGTCGAGGGCTACCTGGTGCTCACGCCGCTGCGGGTGTCCGACGACGGCACCGCGGGGGCGTCCTGGGCCGACCTGTCCGGGCCCCCGGTGCTGCCGGTGGTGCGCGGCTGGGTCGACTCGCCCGACCCGGGGGCCGAGGCGCTCGAGGTGCCCGCCGGCGAGGTGCGCGTGACCGGGTGGCTGCAGGCCTCGGAGTCGACCGCCCGCACCGGCGAGGTGCCCGCCGACGCCGACGGTCCGCCGCTGACGCAGGACATCGCGTCCTCGGCGCTGGCGAACACCTGGGACGGACCGATCTACGCGGCGTACGCCGTGCTGACGTCCTCCGACCCGGCGCAGCCGTCGGCCGCGTCGGGCGGCCCGGCGCCGCTGCCGCGGCCGGTGCTCGACGGCGGGACGGACGTGGACCTGCAGAACTTCTTCTACGCGCTGCAGTGGTGGGTCTTCGGGCTGTTCGCCGTGGCCCTGTGGGTGCGGCTCGTGCGCGACGAGATGGCCGGAGGGCGCCGTGAACGCCGCCGCGACCGGCGTCCGGGAGATCGCGAGGGGCGTCGTGACGACGACCCGATCGGCACCGGCATCGCCGGCCTGCCCTCCTCCTGAMPDALPARRSFWAVARQPRMLVVLLLLLLAAAVCGRLGVWQIDRAYERASLAAEQEAAEQAAAGPASLGELLPPQSALPGELVGREAWVSGTYEPDGQMLVTGRSLDGVEGYLVLTPLRVSDDGTAGASWADLSGPPVLPVVRGWVDSPDPGAEALEVPAGEVRVTGWLQASESTARTGEVPADADGPPLTQDIASSALANTWDGPIYAAYAVLTSSDPAQPSAASGGPAPLPRPVLDGGTDVDLQNFFYALQWWVFGLFAVALWVRLVRDEMAGGRRERRRDRRPGDREGRRDDDPIGTGIAGLPSSNANANANANA
AK018_04094918hypothetical proteinATGACCAGTCGGCACGTGAGCCGGCGCCTCGAGTCCGCGGAGTGGGAGCGGGTCGTCCGTGGGGTCTACGACACGGGCGTGCCAGAACCGGCGTCGCTGTCGGAAAGGCTCGACCAGCAGCGTCGCCGCAGCGCTCTCGTCGGTCCGCTCTCGCAGCCGTCGGGCATGGCCGTCGGCCTCGGCGCGATCGTGCTCCAGGGGGTGCGCGGCACTCCCGTCGAGATCCCGTGGGAGGTCGCGGTCGCCCGGGCCCAGCCCCGGCAGTCGGCAGGCCCCGTCCGGGTCCGACGGATCTTGGTCTCAGAACCGGTGCAGGTCCAGGGCATCCCGTGCATGCCGGTTCCTCAGGCGCTGGGCCTCGCCGTCCCGACCCTGAACCACGTCGACGCCGTCGCGGTGATCGACTCGGCACGACGTCAGAGGCTCTTGTCCGACGCCGAGCTGCAGTGGGCCCGCAGCACCACCGTCGGTCGTCGTGGTGCTCGGAAGAGCTGGAGCTGGTGGGCGGAGTCGGATGCCCGTGCCGAGTCGCCGGCGGAGTCGTGGGCACGGGTGTCGTGCGCCGACGCGGGTTTCCCGCCCGACGCCGTCCAGCTGTGGGCATGGGCCGGCGACCGCTGGTACCGGCTCGACCTCGCCTGGGTGCTGCCCGGCGGAGGCCTGCTCGTCGTCGAGATCGACGGCCGGGACGTGCACGATCGGGTGGACGCCCTGGTCGCGGACCGCGAGCGACAGAACCGGCTGGTCACCACCCGGACCGTCCTGCGGCGGTACACGGGGCGCGATGCCCGGACCGGAGTGGTGGCGACCGACGTCTCGGGGCTCCTCCGCCGGCACGGGTGGAGCCCCCGGCCGGTCGGTGACGACGTTGCCTACGACGTCGAGCGTGCCGGCTTCTTCCTCAACTGGGGCAGGTAGMTSRHVSRRLESAEWERVVRGVYDTGVPEPASLSERLDQQRRRSALVGPLSQPSGMAVGLGAIVLQGVRGTPVEIPWEVAVARAQPRQSAGPVRVRRILVSEPVQVQGIPCMPVPQALGLAVPTLNHVDAVAVIDSARRQRLLSDAELQWARSTTVGRRGARKSWSWWAESDARAESPAESWARVSCADAGFPPDAVQLWAWAGDRWYRLDLAWVLPGGGLLVVEIDGRDVHDRVDALVADRERQNRLVTTRTVLRRYTGRDARTGVVATDVSGLLRRHGWSPRPVGDDVAYDVERAGFFLNWGRNANANANANA
AK018_040951788COG1132putative ABC transporter ATP-binding proteinATGAGCGCCACGACGACGCCGCCGGCGGACCGATCGGCACCGTCGGAGCCGTCGGGCCGGCTGCCGATCGCCGACCGGCACGAGGTGCGGCGCACCGTCGGCCGGCTCTTCCGCAGCCACCGGGGCCGGCTGGGCGTGATCGCCGTCCTGCACGCCCTCGCCGCCGTCGCCGGGCTCACCGGACCGTTCCTCATGGGCCGCTTCATCGACGAGGTCGCCGCCGGCACCACCCTGGCGCGCGTCGACCAGATCGCGCTGGTCCTCGTGGGCGCCGTCGTCGTGCAGGCCGTCGTGACGCGGTACGCCCAGCGGCTGTCCATGGTGTTCGGCGAGCAGGTCTTCGCCGAGCTGCGCGAGGAGTTCATGTCCCGCGTGACGCGGCTGCCGCTGTCGACGGTCGAGAAGGCCGGGACCGGGGACCTGGTCGCGCGGACCACCAACGACATCAACAAGCTGCAGCACGCCGTCCGCTTCGGCGTGCCGCGCGTGCTGGTGTGCGTCGTGACGATCGGGCTGACGCTGGTGGCGTCCTTCCTCACCGACCCGCTGGTGGCCCTGGCGCTCCTCGTCGGCGTCCCGCTCATCGTCGTGGCCGTGCGCTGGTACCTGCGGCGGGCGACGCCGGGCTACCTGCGCGAGTCGGCCGCCTACGCGACGGTCAACGGCACCATCACCGAGGCCGTCGAGGGGGCGCGCACCACGGACGCCCTGTGGCTGGGCTCGCGGCTGCGCCGACGGCTGCGTCGCGACCTGTCCGAGGCGTTCGCCGCCGAGAGCTACACCCTCGGGCTGCGCCTGCGCCTCATCCCCGCGCTCGACACGGCCGTGGCCGTCGCCCCGGTCGCGGCGATCGTCTGGGGCGCCTGGCTGGTCTCCCAGGACCTCACGACCGTCGGTGCCGTCGCGACCATCGCGTTCTACGCCCACCAGATGGGCGGGCCGGTGTTCGACCTCGTGTTCTGGCTGGACGAGCTGCAGGTCGCCGCGGTGGCGCTGGCCCGCGTGGTCGGCGTCGGCCTGGTCGGTCCGGACCGGGTCGCCTCGGGCGAGGTGCCGACGTCGGACGAGGTGCGCGCCCACGAGGTCCGGTACGCCTACCGCGAAGGTCGCGACGTGCTGCACGGCGTCTCGGTCGACCTGCGGCCCGGGGAACGGCTGGCGGTGGTCGGCCCGTCCGGGTCGGGCAAGTCCACGCTGGCGCGGATGCTCGCGGGCATCCACCCGCCCACGGGCGGCTCGGTGACCGTCGGCGGCGTGCCGCTCGTCGACCTGCCGCTGGAGGACCTGCGCGGGCAGGTGGCGCTGGTGACCCAGGAGCACCACGTGTTCGTCGGGACGCTGGCGGAGAACCTGCTGCTGGCCGACACCGGCGCCACCGAGGACCGGTTGTGGGCGGCGCTGGAGGCGGTGGACGCCCGCGGCTGGGCGGCCGCGCTGCCGGCCGGGCTGTCGACCGAGGTCGGCTCGGGCGGACACCCGCTCTCCCCGGCGCAGGCCCAGCAGGTGGCGCTGGCCCGGCTGGTGCTGCTGGACCCGCACACGCTGGTGCTGGACGAGGCCACGTCCCTGCTCGACCCGCGGGCCGCCCGGCACCTGGAGCGGTCGCTCAACGCGGTGCTCACGGGACGCACCGTCGTGGCGATCGCCCACCGGCTGCACACCGCCCACGACGCCGACCGGGTGGCCGTCGTCGACGGCGGGCGGATCACCGAGATCGGGCCGCACGAGGCGCTGGTGGCCGCCGACGGCGAGTACGCCCGCCTCTGGCGGTCCTGGCAGGCCGAGTGAMSATTTPPADRSAPSEPSGRLPIADRHEVRRTVGRLFRSHRGRLGVIAVLHALAAVAGLTGPFLMGRFIDEVAAGTTLARVDQIALVLVGAVVVQAVVTRYAQRLSMVFGEQVFAELREEFMSRVTRLPLSTVEKAGTGDLVARTTNDINKLQHAVRFGVPRVLVCVVTIGLTLVASFLTDPLVALALLVGVPLIVVAVRWYLRRATPGYLRESAAYATVNGTITEAVEGARTTDALWLGSRLRRRLRRDLSEAFAAESYTLGLRLRLIPALDTAVAVAPVAAIVWGAWLVSQDLTTVGAVATIAFYAHQMGGPVFDLVFWLDELQVAAVALARVVGVGLVGPDRVASGEVPTSDEVRAHEVRYAYREGRDVLHGVSVDLRPGERLAVVGPSGSGKSTLARMLAGIHPPTGGSVTVGGVPLVDLPLEDLRGQVALVTQEHHVFVGTLAENLLLADTGATEDRLWAALEAVDARGWAAALPAGLSTEVGSGGHPLSPAQAQQVALARLVLLDPHTLVLDEATSLLDPRAARHLERSLNAVLTGRTVVAIAHRLHTAHDADRVAVVDGGRITEIGPHEALVAADGEYARLWRSWQAEPGPT0031350_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ERYTHROCHELIN_TRANSPORT,PGPT0031350-etcF|ercF-NANANA
AK018_040961773yheI_1COG1132putative multidrug resistance ABC transporter ATP-binding/permease protein YheIGTGCGCCCCCTTCCCCTGCCCGACCCGGGCACGCCTCCGCTGTCCTCCGCGGCGCGCCTGCTCACGTGGCAGGCGTGGCGTCAGCGCGCCGTGCTCGTCAAGGCCGTCACCGCGGGCACCGTCTCCCTCCTGGGCGCCGCGTCCGCACCGCTGCTGCTCGGACGCGCGGTCGACTCCGGGCTCGCCTCCGGGTTCGGCGGCGAGCTGTTCCTGTGGTGCGGCTGGATGCTCGTCGCGGCCGTGGCGATCGTCGTCTCCGGTGTGTTCAGCCACACCTACGACGTCGAGAACTGGCTGCGGGCCTCCTTCTCGTTCACCACGCTCGTCGGCCAGAAGGCCACCCGGGCCGGGCACGCCGTCACGCAGAAGCTGCCCACCGGCGAGGTGGTCGCCGCCGTCGCCAACGACGCCCTGCGGGCCGGCGACATGTTCGCCATGTCCGGGCGGTTCGTCGGCGGGGTGCTCGCCTACGCCGCCGCCGCGGGATACCTGCTCTGGCAGAACCTGGCGCTGGGGCTCGTGGTGGCGCTCGGCATCCCCGTCGTGGCCGCCGTGCTCGGGCTGCTCGTGCGCCCGCTGCAGCGGCGCCAGCAGACCCACCGCGAGTCGGTCGGCCGGCTGACGGCCCTCGGCTCCGACACGGTCTCCGGGCTGCGGATCCTGCGCGGCATCGGTGGCGAGGAGGTCTTCTCCGGGCGCTACGCCCGCCAGTCGCAGGAGGTGCGCCGCCGTGGTGTCCAGGTCGCCGGGGTCCAGTCCGTCCTCGACGGTCTGCAGGTGCTGCTGCCCGGCCTGCTCGGCGCCCTGGTGCTCTGGCTCGGCGCCCGCGCCGTCGTGCGCGGCGAGCTGAGCTCCGGCGAGCTCGTGACCTACTACGGGTACACCGCGTTCCTCGCCTGGCCCGTGCAGATGGCCACCCAGATGCTGCAGGCGTCGACGCACGCCGTGGTGTCGGCCCGCAAGATCCTCGGCGTCCTGCGCGTGGACGAGGCGACGCCGCAGGCCGCCGCGCCGTCCGCCGACCCGCCGTCGGGCAGCGACCTGGTCGACCACGCCTCCGGGCTGGTGCTGGCGCCCGGGGAGGTCGTGGCGCTCGTGTGCCCCGACCCCGACGTCTCCGCCGCCGTGGCCACGCGCCTCGGGCGGTTCGACGACGCCGCCGAGGCCGGCACGCCCGTCACCCTCGGCGGGGTGCCGCTCGCCGCGCTGGACAAGGAGGCGCTGCGTCACCGCGTGGTCGTCTCCGAGGCCACGCCGCACCTGTTCTCCGGGATCCTCGGCGAGCAGCTCGACGCCCGCGGTCGCGCGGGCGAGACGGAGCTCACCGCGGCGATCCTCGCCGCCGACGCCCGTGACGTGCTCGACTCCGTGCCCGGCGGCCTGACCGGCGAGCTGCCCGAGAAGGGCCGGTCCCTGTCCGGCGGCCAGCGGCAGCGCGTCGCACTGGCCCGCGCGCTGCTCACCGACCCCGAGATCCTCGTGCTCGTCGAGCCCACCAGCGCCGTCGATGCCCACACCGAGGCACGGATCGCGGGACGCGTCGCCGAGGTGCGGCGCGGCCGGACCACCCTGGTCGTGACCGCCAGCCCCCTGGTGCTCGACCACGTCGACCGGGTGCGCCTGCTCTCGCCGGCGGGCCGCGTCGTCGCGACCGGGACCCACGCCGAGCTGCTCGCCCGCCGCGACGACGACGGCGCCCGCTACCGCGCCGTCGTCGGGCGCAGCATGGCCGAGCCCGACCCCGGGACCACGCTGGAAGGAGCCGCGCGATGAMRPLPLPDPGTPPLSSAARLLTWQAWRQRAVLVKAVTAGTVSLLGAASAPLLLGRAVDSGLASGFGGELFLWCGWMLVAAVAIVVSGVFSHTYDVENWLRASFSFTTLVGQKATRAGHAVTQKLPTGEVVAAVANDALRAGDMFAMSGRFVGGVLAYAAAAGYLLWQNLALGLVVALGIPVVAAVLGLLVRPLQRRQQTHRESVGRLTALGSDTVSGLRILRGIGGEEVFSGRYARQSQEVRRRGVQVAGVQSVLDGLQVLLPGLLGALVLWLGARAVVRGELSSGELVTYYGYTAFLAWPVQMATQMLQASTHAVVSARKILGVLRVDEATPQAAAPSADPPSGSDLVDHASGLVLAPGEVVALVCPDPDVSAAVATRLGRFDDAAEAGTPVTLGGVPLAALDKEALRHRVVVSEATPHLFSGILGEQLDARGRAGETELTAAILAADARDVLDSVPGGLTGELPEKGRSLSGGQRQRVALARALLTDPEILVLVEPTSAVDAHTEARIAGRVAEVRRGRTTLVVTASPLVLDHVDRVRLLSPAGRVVATGTHAELLARRDDDGARYRAVVGRSMAEPDPGTTLEGAARNANANANANA
AK018_04097396putative proteinGTGAGCACCGAGCAGAACGCCCCGACCGCGACGACCGAGCAGGCCGCGACCGCTATCCGCAAGGCGCGCGGCGCCCTGGCCCGCTACCGGGTGCTGGCGATCATCACCGGTGTGATGTTGCTCGTGCTCTGCGTCGAGATGGTCTTCAAGTACCTCGTGCCGGTGCAGGCCGTCATCGACTACATGGGCTGGGTCCCGTTCGCGCACGGGTGGATCTACGTCGTCTACCTGGTCACGGTGCTCGACCTGTGGGCCAAGATGCGCTGGGGCTTCGGCCGGCTGACCACGATGGTGTTCGCGGGCGTCGTCCCGGTGATGTCGTTCGTCCTGGAGAAGCGGGTGCACGCCGACGCCGACGCCAAGCTCGCGGCGCTCGCGCAGCGGTACGGGGCGTGAMSTEQNAPTATTEQAATAIRKARGALARYRVLAIITGVMLLVLCVEMVFKYLVPVQAVIDYMGWVPFAHGWIYVVYLVTVLDLWAKMRWGFGRLTTMVFAGVVPVMSFVLEKRVHADADAKLAALAQRYGANANANANANA
AK018_040981260moeZ_1COG0476putative adenylyltransferase/sulfurtransferase MoeZGTGACGGTGCACGACGGCGGCACGGAGGGCACCCCCGGGCGGCTCGCCCCGCTCGTCGAAGCGACCCGCGAGCTCACCGGCGCCGAGCTGGACCGGTACGCCCGGCACCTGGCGCTGCCCGGCATCGGCCCGGACGGCCAGCGGCGGCTCGCGGCCGCGCGCGTGCTGGTCGTCGGCGCCGGCGGGCTCGGCAGCCCGGCGCTGCTCTATCTCGCCGCGGCGGGCGTGGGCACGATCGGGATCGTCGACGACGACGCCGTGGACGTCACCAACCTGCAGCGTCAGGTCCTGCACGGCCAGTCCGACCTGGGCCGGTCCAAGACCGCCTCGGCACGGGCGACGGTCGCGGAGGTCAACCCGCACGTCGAGGTGGTCGAGCACGTGCTGCGCCTCGCCCCGGACAACGTCCTGGACGTGCTGCGGGGGTACGACGTCGTGCTCGACGGCGCCGACAACTTCCCGACCCGCTACCTGGTCTCCGACGCGGCCGAGATCCTCGGCGTCCCGGTGGTGTGGGGGTCCATCGACCGGTTCGACGGACAGGTCAGCGTCTTCTGGGGCGCCCCGCGGTACGTGACGGCCGACGGCGCCCGGAGCGTGCGCCGAGGCGTCACCTACCGGGACGTCTTCCCGGTGCCGCCGCCGCCCGGCGTCGTGCCGGACTGCGCCACCGGCGGCGTGCTCGGTGCGATGTGCGGCACCGTCGGTTCGGCGATGGCCACCGAGACGGTCAAGCTGGTCACCGGCGTCGGGGAGCCGCTGCACGGCCGCCTGGCCGTGCACGACGCCCTCGCCGCCGACTGGCGCGAGCTCGCCGTCCGACCGGACCCGAGCCGGGAGCCGGTCACGGACCTGCTGCCCGGCGACGACGCCTACACCGCCTTCTGCGGGCTGTCCCCGGCCGCACCGGAGCCCGGCCGCACGGCGGTCCCGGGCGATCTGGAGGTCAGCGCCGCCGACGCCCGCACCCTGCTCGCGGCCGACCGGCCCGCGGTCCTGGTGGACGTGCGCGAGGAGTGGGAGGCGCGGGTCCGGCCCGTGGACGGCGCCCGGCTCGTGCCCAGCGGGACGTTCCTGGGCACGGCCGCCGGCGGGCCCGACGACGTCGCGCGCGGCGCCCTGGACGCCCTGCCCACCGACCGGCCGGTGCTGCTGGTGTGCGCGGCCGGCCCCCGGTCGACCCGGGTCGCGCGGGTGGCCCGGGCGGAGGGCGTCGACGCGCGCTCCGTGGTCGGCGGGGTGCCGGCGCTGCTGGGCTGAMTVHDGGTEGTPGRLAPLVEATRELTGAELDRYARHLALPGIGPDGQRRLAAARVLVVGAGGLGSPALLYLAAAGVGTIGIVDDDAVDVTNLQRQVLHGQSDLGRSKTASARATVAEVNPHVEVVEHVLRLAPDNVLDVLRGYDVVLDGADNFPTRYLVSDAAEILGVPVVWGSIDRFDGQVSVFWGAPRYVTADGARSVRRGVTYRDVFPVPPPPGVVPDCATGGVLGAMCGTVGSAMATETVKLVTGVGEPLHGRLAVHDALAADWRELAVRPDPSREPVTDLLPGDDAYTAFCGLSPAAPEPGRTAVPGDLEVSAADARTLLAADRPAVLVDVREEWEARVRPVDGARLVPSGTFLGTAAGGPDDVARGALDALPTDRPVLLVCAAGPRSTRVARVARAEGVDARSVVGGVPALLGNANANANANA
AK018_04099831thiG_1COG2022Thiazole synthaseATGACCACGACCGGAACGACCGACCTGCGCACGGACGTCGGCGCCCCGCTCGTCGTCGCGGGGAGCAAGATCGCGTCCCCGCTGGTGATGGGGACGGGCGGTGCCGCCAACCTGCTGACGCTGGAGGGGGCCCTGGTCGCCTCCGGCACCGCCCTGACGACGGTGGCCATGCGCCGCGTCGCACCGCGCGCCGGCGGCGAGGCGGCCCGGGACGCCGGGATCTGGGGTCTGCTCGACCGCCTCGGCATCCGCGCCCTGCCGAACACGGCCGGCTGCTTCTCGGTGCGCGAGGCGGTGCTCACCGCGCAGCTCGCCCGGGAGGCCTGCGGCACGAGCTGGGTCAAGCTCGAGGTGATCGCCGACGACGTCACGCTCCTGCCGGACCCGGTCGGGCTCGTCGAGGCCGCCGAGGAGCTGGTCCGCGACGGGTTCGTCGTCCTGCCCTACACGAACGACGACCCGATCCTGGCACGTCGCCTGGAGGACGTCGGCTGCGCGGCCGTGATGCCTCTCGGCGCGCCGATCGGGTCCGGGCTGGGCATCCTCAACCCACGCAACATCGAGGCGATCGCGGCGGCCGCGCAGGTGCCGGTGATCCTCGACGCCGGCATCGGCACCGCCTCGGACGCCGCGCTGGCGATGGAGCTCGGCTGCGCCGGCGTGCTCCTCGCCACCGCCGTCACCCGGGCCGAGGACCCCGTGCGCATGGCCCGCGCGATGCGGCTCGCCACCGAGGCGGGGCGGCTCGCGGCGGGCGCCGGCCGCATCCCGCGGCGCGAGGGCGCGCTCGCCAGCTCACCGGCGGAGGGCCGGCTGGACCTGTCGCTGTAGMTTTGTTDLRTDVGAPLVVAGSKIASPLVMGTGGAANLLTLEGALVASGTALTTVAMRRVAPRAGGEAARDAGIWGLLDRLGIRALPNTAGCFSVREAVLTAQLAREACGTSWVKLEVIADDVTLLPDPVGLVEAAEELVRDGFVVLPYTNDDPILARRLEDVGCAAVMPLGAPIGSGLGILNPRNIEAIAAAAQVPVILDAGIGTASDAALAMELGCAGVLLATAVTRAEDPVRMARAMRLATEAGRLAAGAGRIPRREGALASSPAEGRLDLSLPGPT0008965_333DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008965-thiG-K03149NANA
AK018_04100291hypothetical proteinATGAACCCCGCCCACCAGCACGTCGACCCCGCCGCCCGTGCCACGCCGGGTCCCCCCGCCCCCGCGAGCACCGCCCGGGTGAACGGCGAACCGTACGACCTCGGCCCGACGGGCGAGCTGCCCGTCACCGAGCTGGTGACCCGCCTCGTGCCCGGGCACGTCGTCGACGGGGTGGCCCGCGGGGTCGCCGTCGCCGTCGACGACGTCGTCGTGCCGCACGGCACGTGGCGGACCGCCGTCGTCCGCGCCGGGGACCGCGTCGAGATCGTCACCGCCGTCCAGGGCGGCTGAMNPAHQHVDPAARATPGPPAPASTARVNGEPYDLGPTGELPVTELVTRLVPGHVVDGVARGVAVAVDDVVVPHGTWRTAVVRAGDRVEIVTAVQGGPGPT0008970_204DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008970-thiS-K03154NANA
AK018_041011257dadA_1D-amino acid dehydrogenaseGTGGACCGTCACTCGTCGGCGCCGCACGGCGTCCGCGACCTCGTCGTGGTCGGCGGCGGCATCATCGGCCTGGCCGTGGCCTGGCGGGCCCTCGAGGCCGGCCTGAGCGTCACCGTCCTGGACCCGGACCCCGGCGACGGGTCCACGCACGCCGCCGCGGGCATGCTCGCCCCGGCCACCGAGGCCGAGTTCACCGAGGACGCCGCGCTGCACCTGCACCTGGCCGGGGCCGCACGCTGGCTCCCGTTCGCCGCCGACCTCGAGGCCGCCGCGGGCCGGGGCGTGGGGCTGCGCGAGTCCGGGACGCTGACGCTCGGCTACGACGAGACCGACGTCGCCCTGCTGCGCCGGGTCCTGGCCCTGCACGGCCGGCACGGGGTGGACTCCGAGGAGCTGACGATCGCCGAGGCGCGCCGGCGCGAACCGCTGCTCGGCCAGCGCGTGCGCGGAGCCGCCTGGGTCCCCGGCGACCACGCCGTCGACCCCCGGGCCGTGCACGCCGCGCTCTGGCGCCTCGTGGCCGCCCACTCCCGCGGCGCCGTCGTGCCGCGCGCCGCGGTCCGGCTCGAGCAGCAGGGCGGCCGGGTCGTCGGAGTCGTCGACGACACCGGCGACCGGCACCGCGCCGGCTCGACCGTCGTCGCCGCCGGGTGGGCGTCCGCCCCGCTGCTGGCGGAGGTGCCCGGCGTGGCGGTCCCCGTGCGGCCGGTCAAGGGCCTCACGCTGCGGCTGCAGGCGGACCCCGAGCTGGCACCGCGCCACGTCGTGCGCGGTCTGGTCCAGGGCCGGCCCGTGTACGTCGTCGGACGCGAGCCCGCGACCGAGGGGCCGTGGGCCGGGCACTGCGAGCTGGTGATCGGCGCGACCTCCGAGGAGAACCCCGACGACCGTCGCGCACCCGCCGGCGGCGTGTTCGCCCTCCTGCGCGACGCGCGCGCCCTGCTGCCCGCGATCGACGAGGCCGCGCTGGTCGAGGCCACCCCGCGGGCCCGGCCGTCCACGCCGGACAACCTGCCCCTCGTGGGCGCGACGCACGTGCCCGGCCTGCACCTGGCCACCGGCCACTACCGCAACGGCATCCTGCTCGCGCCGCTGACCGCGGAGGTCGTCGTGGCCGGGCTGACCCGCTCCTGGTTCGCCGTCGACGTCGCCACGACGGACCCACCGGCCGTGCTCGCCGCCCTGCGGGCGACGGACCCCCGCCGGTTCCCGCCCCGCGCACCCGACCCCCGCACCCCCGACGGAGCCCCCCGATGAMDRHSSAPHGVRDLVVVGGGIIGLAVAWRALEAGLSVTVLDPDPGDGSTHAAAGMLAPATEAEFTEDAALHLHLAGAARWLPFAADLEAAAGRGVGLRESGTLTLGYDETDVALLRRVLALHGRHGVDSEELTIAEARRREPLLGQRVRGAAWVPGDHAVDPRAVHAALWRLVAAHSRGAVVPRAAVRLEQQGGRVVGVVDDTGDRHRAGSTVVAAGWASAPLLAEVPGVAVPVRPVKGLTLRLQADPELAPRHVVRGLVQGRPVYVVGREPATEGPWAGHCELVIGATSEENPDDRRAPAGGVFALLRDARALLPAIDEAALVEATPRARPSTPDNLPLVGATHVPGLHLATGHYRNGILLAPLTAEVVVAGLTRSWFAVDVATTDPPAVLAALRATDPRRFPPRAPDPRTPDGAPRPGPT0008955_163DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008955-thiO-K03153NANA
AK018_04103648thiE_1COG0352Thiamine-phosphate synthaseATGACGACTCCCGCTCCTCGCAGCCGCCTCGCCGACGCCCGCCTCTACCTGTGCACCGACGCCCGCGAGGACCGCGGCGACCTGGAGGACTTCCTGCACGCCGCGCTGAGCGGCGGCGTCGACGCGGTCCAGCTGCGCGACAAGTCCCTCGACGTCGCCCGCGAGCTCGAGCTCCAGGCCCTGGTGGCGCGGGTCGCCGCCGAGCACGGCGCGCTGCGGGCGGTCAACGACCGTGCCGACGTGGCCCGGCTCACCGATGCTCCCGCGGTGCACATGGGCCAGGGCGACCTGCCGGTGGCGGCCGTGCGCTCCCTGCTCGGTCCGGAGCCGGTCCTGGGGCGGTCCACGCACTCGGCGGCGCAGGCGGCCGCCGCGGAGGCCGACCCCGACGTCGACTACTTCTGCGTCGGACCCCTGTGGACGACCCCGACCAAGCCCGGTCGGGCCGCCGTCGGGCTCGGCCTGCTGCGCGAGGTGGCCGCCACCGCGCCGACCACGCCGTGGTTCGCCATCGGGGGCGTCGACGCCGACCGACTCGACGCCGTCCTCGAGGCCGGGGCGCGGCGGGTCGTGGTCGTGCGGGCGATCACCGCTGCCCCCGACCCCGAGCGGGCCGCGCGCGAGCTGCGCGAGCGGCTCGGGGCGTGAMTTPAPRSRLADARLYLCTDAREDRGDLEDFLHAALSGGVDAVQLRDKSLDVARELELQALVARVAAEHGALRAVNDRADVARLTDAPAVHMGQGDLPVAAVRSLLGPEPVLGRSTHSAAQAAAAEADPDVDYFCVGPLWTTPTKPGRAAVGLGLLREVAATAPTTPWFAIGGVDADRLDAVLEAGARRVVVVRAITAAPDPERAARELRERLGAPGPT0008995_503DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008995-thiE-K00788NANA
AK018_041041608guaA_1COG0518GMP synthase [glutamine-hydrolyzing]GTGACGTCTCCCGCCACCGCATCCGCCCAGGCCGCGCCCCGCCCGGTCCTGGTCGTCGACTTCGGCGCCCAGTACGCCCAGCTCATCGCGCGCCGCGTGCGCGAGGCCAACGTCTACTCCGAGATCGTGCCGCACACGTGGACGCCGGAGCAGATGCTCGCCCGCGAACCCGCCGCGATCATCCTCTCCGGCGGCCCGTCCTCCGTGTACGCCACGGGGGCGCCGTTCGTCGACGCCGAGCTGTTCGACGCCGGGGTGCCCGTGCTGGGCATCTGCTACGGCTTCCAGGCCATGGCGCAGGCGCTCGGCGGCACGGTCGCCCAGACCGGTACCCGCGAGTACGGCGGCACCGAGGTGGAGGTGTGCGAGGCCGGGATGCTGCTCGCCGACACCCCCGTCACCCAGACCACGTGGATGAGCCACGGCGACTCCGTGCACGCGGCGCCCGAGGGCTTCGAGGTGCTCGCGACGTCGTCCGGCTCGCCGGTGGCCGCGTTCGAGGACCGTGAGCGCCGCCTGTACGGCGTGCAGTGGCACCCCGAGGTCAAGCACTCCGCCCACGGCCAGACGGTGCTGGAGCACTTCCTCTACGAGGGCGCGGGCCTGGCGCCCGACTGGACGCCGGACAACGTCATCGCCGACCAGGTCGCCGCGATCCGCGCGCAGGTGGGCGACGCGCGGGTGATCTGCGGGCTCTCCGGCGGTGTGGACTCCTCGGTCGCCGCGGCGCTGGTGCAGCGCGCGGTGGGGGACCAGCTCACCTGCGTGTTCGTCGACCACGGCCTCCTGCGCGAGGGCGAGGTGGAGCAGGTCGAGCGCGACTTCGTGGCCGCGACGGGCGTCAACCTGGTGGTGCGCGACGAGCGCAAGCGCTTCCTGGAGGCCCTGGATGGCCACAGCGACCCGGAGACGAAGCGCAAGATCATCGGCCGCGAGTTCATCCGCGTCTTCGAGGACGCCGCCCGCGACATCGTCGCCGAGGGGCACGAGCACGCCGTGCACGGCGAGGGTTCCGAGGTGCGGTTCCTCGTGCAGGGCACCCTCTACCCCGACGTGGTCGAGTCGGGCGGCGGTGAGGGCGCGGCCAACATCAAGAGCCACCACAACGTGGGCGGCCTTCCCGACGACCTGCAGTTCGACCTGGTCGAGCCGCTGCGCACCCTGTTCAAGGACGAGGTGCGGGCCGTCGGCCGCGAGCTCGGCGTCCCGGAGCCGATCGTCGCCCGGCAGCCCTTCCCGGGGCCGGGCCTGGGCATCCGCATCATCGGCGAGGTGACGGCCGAGCGGCTCGAGATCCTGCGCCGGGCCGACGCCGTCGCCCGCGAGGAGCTGACGAAGGCCGGGCTCGACGGCGAGATCTGGCAGTGCCCGGTGGTGCTGCTGGCCGACGTGCGCTCGGTGGGCGTCCAGGGCGACGGCCGGACCTACGGGCACCCGGTCGTCCTGCGTCCCGTCTCCAGCGAGGACGCCATGACGGCCGACTGGACGCGCATGCCGTACGACGTGCTGTCGACGATCTCCACGCGCATCACCAACGAGGTCAGCGAGGTGAACCGGGTGGTCCTCGACGTGACGAGCAAGCCCCCGGGCACCATCGAGTGGGAGTGAMTSPATASAQAAPRPVLVVDFGAQYAQLIARRVREANVYSEIVPHTWTPEQMLAREPAAIILSGGPSSVYATGAPFVDAELFDAGVPVLGICYGFQAMAQALGGTVAQTGTREYGGTEVEVCEAGMLLADTPVTQTTWMSHGDSVHAAPEGFEVLATSSGSPVAAFEDRERRLYGVQWHPEVKHSAHGQTVLEHFLYEGAGLAPDWTPDNVIADQVAAIRAQVGDARVICGLSGGVDSSVAAALVQRAVGDQLTCVFVDHGLLREGEVEQVERDFVAATGVNLVVRDERKRFLEALDGHSDPETKRKIIGREFIRVFEDAARDIVAEGHEHAVHGEGSEVRFLVQGTLYPDVVESGGGEGAANIKSHHNVGGLPDDLQFDLVEPLRTLFKDEVRAVGRELGVPEPIVARQPFPGPGLGIRIIGEVTAERLEILRRADAVAREELTKAGLDGEIWQCPVVLLADVRSVGVQGDGRTYGHPVVLRPVSSEDAMTADWTRMPYDVLSTISTRITNEVSEVNRVVLDVTSKPPGTIEWEPGPT0021580_1025DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
AK018_04105690hypothetical proteinGTGACCGGGCAGCTCGCGACGGCCGTCCTGACCGAGTCCGACACGGTCGCCGCGACGCTGGACGTCGTGCAGCGGGTGCTGGAGTACCTCGGCACCGTCGCCTTCGCGATCTCCGGTGCCTTCGCCGCCGGCCGCAAGCAGATGGACCTCGTCGGCGTCGTCGCGCTCGGTGCAACCGTGGCGGTGGGCGGCGGCACCCTGCGGGACCTCCTGCTCGGCGAGACGCCCGTCTTCTGGGTCACCGAGCCGACGTTCCTGCTCGTCGGCGCCGCGACGGCCCTGCTGGTGGTGCCGCTGGCGCGGACACGGACGCTCGACGTGCTGCGACGGCTGCAGGTCATCGAGGTCTCCGACGCCGCCGGCATGGCCCTGTTCGTCGTCATCGGCACGAACGTGGCGCTGTCCGCCGGGGCGAGCGCGGTCTCGGCGGCGGTCGTCGGCGTCGTGGCCGGCGTCGGCGGGGGCGTGTTCCGCGACGTGCTGGCCAACGAGCTGCCCGAGGTGCTGAGCAACGCCCAGTTCTACGCCACCGCGGCGCTGCTCGGCGCGGCGGTGCACCTGGGTCTGCTGGAGCTCGACGTCGACCCGGCGGTCGTGTTCTGGGTGCCGATCGCGGTGATCCTGACCGTGCGCCTGCTGGCGGTCCGTCTCGGCTGGGGCATGCCCACGTTCACCGTCGCGGGTGAATGAMTGQLATAVLTESDTVAATLDVVQRVLEYLGTVAFAISGAFAAGRKQMDLVGVVALGATVAVGGGTLRDLLLGETPVFWVTEPTFLLVGAATALLVVPLARTRTLDVLRRLQVIEVSDAAGMALFVVIGTNVALSAGASAVSAAVVGVVAGVGGGVFRDVLANELPEVLSNAQFYATAALLGAAVHLGLLELDVDPAVVFWVPIAVILTVRLLAVRLGWGMPTFTVAGENANANANANA
AK018_04106489hypothetical proteinATGTCCAGCTCTGTCACCGTCCGACCCGCCAAGGGTGTCCGCGCCATCGGCATCGTGTCCATCGTGGCCGGCATCGTCATGATCGTCGCCGGCGTCGTCGTCTGGTTCATCGTCTCGTCGACGCTGTCCGACGAGCAGATCACCGTCTCGGAGGACGCCAGCATGGCGGCCGGCCAGGAGGTCTCCGGACCGTTCACCGCGTACGCGCAGGCCGACATCATCAACCAGCACGCGATGGAGGCCTCGGGCGGCATGACCTATGCCCAGCTCGATCGGGAGGACCCGACCCGTGACACCGTGATGAACGCGTCGTTCCTGCGGGCCTCGCTGTTCACCTCGGTCGTCGCCTTCGGCGTCTGCGCCCTCGTGATCGGCCTGGGCGTGATGTTCATCCTCGTCGGCTACGCGTTCAGTCGCCTGGGAGGCAGCTCCTCGGCGGCGGTGGCGTCCACCCCCGCGGGTGGACCCACGTCGAGCGCGACCGCCTGAMSSSVTVRPAKGVRAIGIVSIVAGIVMIVAGVVVWFIVSSTLSDEQITVSEDASMAAGQEVSGPFTAYAQADIINQHAMEASGGMTYAQLDREDPTRDTVMNASFLRASLFTSVVAFGVCALVIGLGVMFILVGYAFSRLGGSSSAAVASTPAGGPTSSATANANANANANA
AK018_04107450hypothetical proteinATGAGCACCGAGCCGTACCGCACGCCGGGCGACGAGCCCGACACCACCCGGCAGGACCACCCGACCGTCGAGATCCCGCAGGACGTCGCAGCGACGGCCGCCGACGGCCCGCCGCACGCGGGGTCGCCCGCCACGGCGGACTCGGCCCCTCCGGCTGCCGGCACGTCGACCGGCACGTCGACCAGCACCTCGACCGGCACGTCGACCGGCACCTCGACCAGCACCGCACCGGTCCCCGGTGCGCCGCCGGTGCGCACCGGGCCCCGCGGCAGCACCGTCGTGTGGGGCGTCGTCGTCATCGCCGTCGCCGTCGGGCTGCTCGCCCGGACGGCCGGGGCGAGCGTCGACGCCCAGCTGGCCGCGATCCTCCTGCTCGGCGCCGCCGGACTCGTGCTCGTGGTCGGCTCGGTCGTCGGCGCCGCACGACGGCGCCGCCGCACCCCGTCCTGAMSTEPYRTPGDEPDTTRQDHPTVEIPQDVAATAADGPPHAGSPATADSAPPAAGTSTGTSTSTSTGTSTGTSTSTAPVPGAPPVRTGPRGSTVVWGVVVIAVAVGLLARTAGASVDAQLAAILLLGAAGLVLVVGSVVGAARRRRRTPSNANANANANA
AK018_041081512hypothetical proteinATGACCACGAACGAGACCCCACCACCCCCGGACGGCGGCACCGGCCCCGCAGGCGGCCCCGGTCCGGGAGCCGCTCAAGCCGCTCCCCCGCCGCCGCGCCCCGCCGGCGACGGCTTCTTCGACTCGTTGCGCCGGATGGGCGTGAGCCGGTCCGAGGACCGCTGGGTCGGCGGCGTCGCCGCCGGCGTGGCCGACCGGTTCGGCCTCGACCCGCTGCTGGTGCGCGGGCTGCTCGTCCTCAGCTTCTTCGTCACCGGGGCCGGGCTCGTGCTCTACGGCGTGGCCTGGCTGCTGCTGCCCGAGCGGTCCGACGGGCGGATCCACCTGCAGGAGGCGATCCGCGGGACGTTCGACGTGGCCGTCCTGGGCGGCGCGCTGGCGGTCGTGCTGGGCATCGGTTGGGGCGGCGGGATCTGGCCCTGGTGGGGCGGGTTCCCCGAGTGGATCGGCGCGCTGTTCTGGATCGCCTTCTGGGTGGCCGTCGTCTGGCTGGTCGTCCGGCTGGTCCGGTCCCGGCAGCGGGAGCGCGCCGAGGCCGTGGCACCGCCCGGGCCCTCGGCGGCCCCGGGGGCGCCCGGAGCGCCCGAAGCGCCCGGAGCGCCGACCGCGGCGTCCGCACCGACGGCCTCCGAGTCCACCGGGTTCGAGCCCGCGCCCCGGGTCCACTACGCGCCGGCGCCGCCGGCGGGACCGACCGCCCCGGCGGCGGGCCCCACCGCCGGAGCCCCGTCGGGCCCGTCGGGTCCGGCCGGGCCGACCGGGCCGACCGGTCCCGCGTGGTCCGGGCCGCCCCCCGCTCCGCGGCCCGTGGTCCGTCGGGCCGGCGCCGGGACCGTGGGGGTCGTGGTCGGGCTGTCCCTGCTCGTGGGTGCCGCCCTGCTCGCGGCCGACGTCGTCGCCGGGCTGACGGTCCCCGTGTGGGGGCTGTGGCTGGGGATCACCGTCGGCATCGTGGGAGCCGCCCTGGTCGTCACGGGCCTGCGCGGACGGCGCGGCGGCTGGCTGACCGCGTTCGCGGTCCTCGGCATCGTCGCGACCACGCTGACGTGGCCCTTCGCCGACCGCAGCGCGTGGTGGGACGAGTGGCCGTGGGACGACGGGGCACAGGTCACGACCTCGTCCGGCACCGCCCTGAGCTCCGGGGTGGTCACGCCCCGGTCCGTGACCGCGGCCGAGGACGGGATCCGCGTGCAGTTCGGCGAGGCGCGGGTGGACCTCACCGAGCTCGACCTCACCGACGTCGTGCCCGGGTCCCCCGTCGAGGTACCCGTCGAGATGACCGCCGGACGCACCGTCGTCGAGATCCCGGCCGACACGGCCGTGACGGCGTCGGTCGACGTCAACGCCGGCCGGTTCGTCTGGGACGTCGAGGGCGAGTACCGCACCGTCGACGGCTTCAGCGGCGGGCCCGCCACCTACACGACCGACGAGGTGGACACCGCGGGCGGCGCCGTGCTGCTGCTCGACGTCGACGCCCGTGCCGGAGAGATCGTCATCGAGGAGGACCGATGAMTTNETPPPPDGGTGPAGGPGPGAAQAAPPPPRPAGDGFFDSLRRMGVSRSEDRWVGGVAAGVADRFGLDPLLVRGLLVLSFFVTGAGLVLYGVAWLLLPERSDGRIHLQEAIRGTFDVAVLGGALAVVLGIGWGGGIWPWWGGFPEWIGALFWIAFWVAVVWLVVRLVRSRQRERAEAVAPPGPSAAPGAPGAPEAPGAPTAASAPTASESTGFEPAPRVHYAPAPPAGPTAPAAGPTAGAPSGPSGPAGPTGPTGPAWSGPPPAPRPVVRRAGAGTVGVVVGLSLLVGAALLAADVVAGLTVPVWGLWLGITVGIVGAALVVTGLRGRRGGWLTAFAVLGIVATTLTWPFADRSAWWDEWPWDDGAQVTTSSGTALSSGVVTPRSVTAAEDGIRVQFGEARVDLTELDLTDVVPGSPVEVPVEMTAGRTVVEIPADTAVTASVDVNAGRFVWDVEGEYRTVDGFSGGPATYTTDEVDTAGGAVLLLDVDARAGEIVIEEDRNANANANANA
AK018_041091299hypothetical proteinGTGACGTCCCCCGGCCCCGACCGCCTGCCGCTGCGCCGCCCCCGCCAGGGACGGTGGGTCGGCGGCGTGTGCGCCGGGGTCGCCGCGCACCTCGGAGCGCCGGTCTGGGTGGTCCGGCTCGTGATGGTCCTGCTGGCCCTCTCCGGCGGCACGGGTCTGGTGCTGTACGGCTTCTGGTGGGTCACGGTGCCGGCGGGCGACCCGCACGACGCCGCGGCGGCGGCCCGGCCCGCCGCCGTCGCGCGGCTGGCGCCCCGGCTGCGGCGCACGGGCACCGTCCAGGCGCTGTCGCGCCGCGACGTGCTGGTGGGCGTCCTGCTGCTCGGCGGCGCGCTGGTCCTGGTCGCCGTGCGTGCCGGCTGGGACCTGCCCTCGACCTGGCTTCCCCTGCTCATCGTGGGCGGCGGTGCGGTCCTGGCCTGGAGCCAGCTCGACGCCGTCCAGCGGGCCCGCGCGGGCGACGTGCCGACGTCCCGGTCCGGGATGCTGCTGCGACTGGCCGGCGGCCTCGTGCTGGTGACCGCGGGCGTGCTGCTGCTGTTCGTCCAGGGCACCCCGCCCGGTGAGCTGCTCACCGTCACGCTGGCCTCGCTGGCCGTGCTCGTGGGCGTGGCCCTGGTGCTGGCCCCCTGGTGGCTGCGCCTGGTCCGGGAGCTCGGGGACGAGCGGGCCGCGCGTGCGCGGGAGGCCGAACGGGCGGACATCGCCGCCCACCTGCACGACTCGGTGCTGCAGACGCTGTCCCTCATCCGCGCCCGGGCCCGAGACCCCGAGGAGGTGGCCCGGATGGCGCGCGCCCAGGAGCGCGAGCTGCGCGAGTGGCTGTACGACGACCGGCCCGCCGAGGGCACGTCGCTGGCCGCCGAGCTGCGCTCCCTGGTGGGGGAGGTCGAGGACGGCCGCGCCGCCGAGATCGAGACCGTCGCCGTCGGCGACTGCCCGCCGACCGAGACCACGACCGCGCTGCTGCAGGCCACCCGCGAGGCCCTGGTCAACGCCGTCGTGCACGGTGCCGCGCCCGTCACCGTCTACCTGGAGGTGACCGACGCCGCGGTCGAGGTGTTCGTGCGCGACCGGGGCGACGGGTTCGACGTGGACGACGTCGCGCCCGACCGGTTCGGAGTGCGCGAATCGATCCTCGGCCGGGTCCGGCGCCGCGGCGGGACCGCCGAGGTGACCAGCCGGCCCGGCTGGGGCACCGAGGTGCACCTGCACGTGCCGCGCACGGCCGACGCGCGCACCACCCCGTCGCCCGACTCGGCGTCGTCCGCCCCCGAGACCGAAGGAGCCCGGTCATGAMTSPGPDRLPLRRPRQGRWVGGVCAGVAAHLGAPVWVVRLVMVLLALSGGTGLVLYGFWWVTVPAGDPHDAAAAARPAAVARLAPRLRRTGTVQALSRRDVLVGVLLLGGALVLVAVRAGWDLPSTWLPLLIVGGGAVLAWSQLDAVQRARAGDVPTSRSGMLLRLAGGLVLVTAGVLLLFVQGTPPGELLTVTLASLAVLVGVALVLAPWWLRLVRELGDERAARAREAERADIAAHLHDSVLQTLSLIRARARDPEEVARMARAQERELREWLYDDRPAEGTSLAAELRSLVGEVEDGRAAEIETVAVGDCPPTETTTALLQATREALVNAVVHGAAPVTVYLEVTDAAVEVFVRDRGDGFDVDDVAPDRFGVRESILGRVRRRGGTAEVTSRPGWGTEVHLHVPRTADARTTPSPDSASSAPETEGARSNANANANANA
AK018_04110672nreC_3COG2197Oxygen regulatory protein NreCATGACCAGCCCTGCCACCGAGACGCCGGTACCGGTGGTCCTCGTCGACGACCACCACATGTTCCGCACCGGCGTCCGCGCGAGCCTCGACGGGCGGGTCCGCGTCGTCGGGGAGGCGGCGGACGTCGACGAGGCGGTCGCCGTCGTGCACGAGCACCGGCCCCCGGTGGTGCTGCTCGACGTCCACCTGCCCGGCGGCGACGGCGGGGGCGGTGCCGAGGTGGTGCGCCGCTGCGCCGACCTGCTCGCCGCGACACGGTTCCTCGCGCTGTCGGTGTCCGACGCCGCCGAGGACGTCGTGGCGGTGATCCGCTCGGGGGCGCGGGGCTACGTCACCAAGAACATCTCGGCGTCCGACCTGTCGGCCGCCGTGGTGCGGGTGGCCGGCGGGGACGCCGTGTTCTCCCCACGGCTGGCCGGGTTCGTGCTCGACGCGTTCGGCACGGCGGCGGGCGACGTCGCGGTGGCCGACGACGAGCTCGACCGGCTCTCGAAGCGCGAGCAGCAGGTCATGCGGCTCATCGCCCGCGGGTACACCTACCGCGAGGTCGCCGCGGACCTGTTCATCTCGGTCAAGACCGTGGAGACCCACGTCTCGGCCGTGCTGCGCAAGCTGCAGCTGTCGAACCGCAACGAGCTCACGCGGTGGGCGGCCGCGCGACGGCTGCTCTGAMTSPATETPVPVVLVDDHHMFRTGVRASLDGRVRVVGEAADVDEAVAVVHEHRPPVVLLDVHLPGGDGGGGAEVVRRCADLLAATRFLALSVSDAAEDVVAVIRSGARGYVTKNISASDLSAAVVRVAGGDAVFSPRLAGFVLDAFGTAAGDVAVADDELDRLSKREQQVMRLIARGYTYREVAADLFISVKTVETHVSAVLRKLQLSNRNELTRWAAARRLLNANANANANA
AK018_04111768hypothetical proteinGTGACACGCGGTGACACGGTCGACACGGGGACGAACGATCCGACGCGTAGCGTGCCCACCATGGCAGCCCCGACGCTTCTCGCGATCTCCCACGGCACCTCCTCGGACGTCGGCGCGTCCGCCGTCGCCGGACTCGTCGACGCCGTGGCCGACCGGCTGGACGGCGAGGCCCCGGTCCGGGCCGGTTTCGTGGACGTCCAGCAGCCCGACGTCCCGACATGCCTGGCCGACCTGCGCGAGACCTCCACGGTGCTCGTGCCGCTGCTGCTCTCGGCCGGATTCCACGTGCACGTCGACCTGCGCGAGGACGTCGACGCAGCCGTCGCGGACGGTCAGCACGTCACGCTCGCCGGGGCGCTGGGCCCCGACACCCGGCTGGTGGACCTGCTCGGGCGGCGGCTGGCCGAGGCGGGGCTGACCGAGGGCGACGTCATCGTCCTCGCCGCGGCCGGGTCGTCCGACGCCCGGGCGGTCGCCGACTGCGAGCGCACCGGGATCCTGCTCGCCGAGCGCACCGGGCACCCGGTCCGCGTCGGCTACCTCGCCAACGCCACCCCGCAGCTCGCCGACGTCGTCGGGTCCGTCCGCCTCGAGCACCCGGACGCCCGGATCGTCACCGCGAGCTACCTCATCGCGCCGGGCTACTTCCAGACGCTGGCCGAGCGCGCCGGTGGCGACCTCACGACGCCGCCGCTGCTGCCGGCCGACGCCCCGGCGCCCCCCGAGCTGGTCGAGATCGTGGTCGACCGGTACCGCGCCGCGCGCTGAMTRGDTVDTGTNDPTRSVPTMAAPTLLAISHGTSSDVGASAVAGLVDAVADRLDGEAPVRAGFVDVQQPDVPTCLADLRETSTVLVPLLLSAGFHVHVDLREDVDAAVADGQHVTLAGALGPDTRLVDLLGRRLAEAGLTEGDVIVLAAAGSSDARAVADCERTGILLAERTGHPVRVGYLANATPQLADVVGSVRLEHPDARIVTASYLIAPGYFQTLAERAGGDLTTPPLLPADAPAPPELVEIVVDRYRAARPGPT0003690_20DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302NANA
AK018_041121248cysG_2COG0007Siroheme synthaseATGAGTGACCTGTACCCGCTGGGGCTGCGCGTGCGCGACCGGCTCGTCGTCGTCGTCGGCGGCGGACCGGTCGCGGCCCGCCGCGTCCGCGGCCTGCTCGAGGCCGGGGCGCGCGTCCGGGTGGTGGCCCCCGTCCTCGACGACGAGCTGGCCGCCGCGGCCGCCGCGGGGACGGTGGAGCACGCGGCCCGCGCCTACCGGTCCGGTGACCTGGACGGCGCGTGGGTCGTGCACACCGCCACCGGCGTCGAGGACGTCGACCGGGCCGTGGCGGCCGACGCCGAGGCGCAGCAGACCTTCTGCGTCGTCGCCGCCGACGCCGCGACCGCCACGGCCTGGGTCCCCGCCTCGGCCGGGCTGCCCGGGCCCGAGGGCGACGTCGTCGTCTCCGTGCACGCCGGTCGTGACCCGCGCCGTGCCGCCCGGCTGCGCGACGGCGTCGCGGCGGCCCTGGACGCCGGGGAGCTGCCGCTGCGCCGCGTCCGGCCGACGGACGCACCGGGCCCCGGCCGGGTGGCCCTGGTCGGCGGCGGCCCCGGGGACCCCGGGCTGCTCACCGGACGCGGCCGACGCCTCCTGGCGAGCGCCGACGTCGTCGTCGTCGACCGGCTCGCCCCGCGCAGCGTCCTGACCACGCTCGCCGACGACGTCGAGGTGATCGACGTGGGCAAGACCGCCGGGAACCACCCGGTGCCGCAGGAGCGCATCAACGAGCTGCTCGTCGAGCACGCGCTCGCCGGCCGGCACGTCGTCCGCCTCAAGGGGGGCGACCCGTACGTGCTGGGGCGCGGCGGCGAGGAGCTCGCCGCCTGCCGCGCGGCCGGGCTCGACGTCGAGGTGGTGCCGGGCGTGACCTCGGCCGTCTCCGTCCCCGCCGCGGCCGGGATCCCGGTGACGCACCGCGGGGTGGCGGCCGGGTTCAGCGTGCTGACCGCGCACGAGGCCGTCGCCTCCGTGCCCGGCGGTCCGGAGCACACCCTGGTGCTGCTCATGGGCGTCACCCGGCTCGCCACGACCACCCGCGCGCTGGTCGAGGCCGGCCGCCCGGCCGACACACCCGTCGCGGTGGTCGAGGACGGCTTCGGACCGCGCCAGCGGACCACCGTCGGCACGCTGGCCGACATCGCCGAGCGGGCCACCGCGGGCGAGGTCCGCCCGCCCGCCGTGACCGTCGTCGGCGACGTCGTCCGGCTGTCGCCGGCCTGGGCGGCTCACGCCACGGCCGCCGAGGGTGTGAGCGAGTCGTGAMSDLYPLGLRVRDRLVVVVGGGPVAARRVRGLLEAGARVRVVAPVLDDELAAAAAAGTVEHAARAYRSGDLDGAWVVHTATGVEDVDRAVAADAEAQQTFCVVAADAATATAWVPASAGLPGPEGDVVVSVHAGRDPRRAARLRDGVAAALDAGELPLRRVRPTDAPGPGRVALVGGGPGDPGLLTGRGRRLLASADVVVVDRLAPRSVLTTLADDVEVIDVGKTAGNHPVPQERINELLVEHALAGRHVVRLKGGDPYVLGRGGEELAACRAAGLDVEVVPGVTSAVSVPAAAGIPVTHRGVAAGFSVLTAHEAVASVPGGPEHTLVLLMGVTRLATTTRALVEAGRPADTPVAVVEDGFGPRQRTTVGTLADIAERATAGEVRPPAVTVVGDVVRLSPAWAAHATAAEGVSESPGPT0003690_1533DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302NANA
AK018_04113879cysH_1Phosphoadenosine phosphosulfate reductaseGTGACGGCCGTACCGGTCTCCCTCGGGGTCGGCCCCACCTCGGCGGCCCCCGCCGGGGCCTCGTCGCTCGCCGACGCCGCCGCGGAAGCACGCCGCCGCGCCGCCGAGCGGGAGATGTCCCGGGCCCGCCGCAACGCCCGCGTCGACGGCCGGGAGCGTCGCCGGCGCTCGGACGTCGAGCTGTCGCAGATCGCCGAGCGCGGTCGCCGCGAGCTCGGCGGGTCCGGACCGGGCTCCGCGGACGAGGCGACCGCCGAGGAGGTCGTCGCCTGGGCGGTGGCCGAGTTCGGCGACTCCCTCGCGGTGGCGTCCTCGATGACGGACTCCGTGCTGGCCGCGCTGGTCAGCGCCCAGCTCCCCTGGGTGGACGTGCTGTTCGGCGAGACCGGCTACCACTTCGCGGAGACGATCGGGACGCGGGACGCCGTCGCGCACTCCCTCGACGTCACCGTGGTGGACGTGCGGCCGCTGCTCAGCGTCGCCGAGCAGGACGACGCCTACGGACCGGACCTGTTCGCCCGCGACTCCGAGGCCTGCTGCCGCATGCGCAAGGTGGAGCCGATGCGTCGCGTGCTGTCCGGGTACGAGGCGTGGGCCACGGGCGTCCGGCGTGCGGACTCCGCCTCGCGCGCCACCGCCGAGCTCGTCTCGTGGGACGCCTCGAACAACCTGGTCAAGATCAACCCGATCGCCGGCTGGAGCGACGACCAGCTGGTCGGCTACGCGCTGCGTCACGGGCTGACCGTCAACCCGCTGCTCAACGACGGCTACCCGTCGATCGGCTGCGAACCGTGCACCCGTCGCGTCGGTCCCGGCGAGGACGCCCGCGCCGGGCGCTGGGCCGGGGCGGACAAGTCCGAGTGCGGGCTGCACATCTGAMTAVPVSLGVGPTSAAPAGASSLADAAAEARRRAAEREMSRARRNARVDGRERRRRSDVELSQIAERGRRELGGSGPGSADEATAEEVVAWAVAEFGDSLAVASSMTDSVLAALVSAQLPWVDVLFGETGYHFAETIGTRDAVAHSLDVTVVDVRPLLSVAEQDDAYGPDLFARDSEACCRMRKVEPMRRVLSGYEAWATGVRRADSASRATAELVSWDASNNLVKINPIAGWSDDQLVGYALRHGLTVNPLLNDGYPSIGCEPCTRRVGPGEDARAGRWAGADKSECGLHIPGPT0002785_432DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002785-cysH-K00390NANA
AK018_041141728sir_1COG0155Sulfite reductase [ferredoxin]ATGACGACGCAGACCAACCCTCCCGCGCCGCCGAACGCTGCCGGGCGCCCGGCGCGGCCCGCCCGCGCCCCGAAGCCGAACGGCCAGTGGAAGATCGACGGCACCACCCCGCTGAACCACAACGAGGAGTTCAAGCAGGCCGGCCCGCCGCTCGAGGTGCGCGAGCGCATCGAGTCGACCTACGCGCGCGACGGCTTCGACTCCATCGCCGACGACGACCTGCACGGCCGTTTCCGCTGGTGGGGTCTGTACACCCAGCGCAAGCCCGGCATCGACGGCGGCCGCACCGCCACCCTCGAGCCGCACGAGCTCGAGGACCGCTACTTCATGCTGCGCGTGCGCACCGACGGCGCCGAGCTGACGCCGGCGGCCCTGCGCGTCCTCGGCGAGATCTCGGACGAGTTCGGCCGCGGCACCGCGGACATCACCGACCGGCAGAACATCCAGTACCACTGGATCGAGATCGAGAGCATGCCGGAGATCTGGCGCCGCCTCGACACGGTCGGCCTCGAGACGACGACGGCGTGCGGCGACTCCCCGCGCGCGTTCCTGGGCAGCCCCGTCGCCGGGATCGCCACCGACGAGATCATCGACGCCACGCCGGTCATCGACGAGATCAAGCGGCGGCACATCGGCGACCCGGAGCTCGCGAACCTGCCGCGCAAGTTCAAGACGGCCATCTCGGGCCACCCGAGCCTCGACGTCGTGCACGAGATCAACGACATCTCCCTGGTGGGCGTGGAGCACCCCGAGCTCGGCGCCGGCTTCGACCTGTGGGTCGGCGGCGGGCTGTCCACCGCCCCGCGCCTCGGCGAGCGCCTCGGCGTCTTCGTCACCGCCGAGCAGGCACCCGACGTCTGGTACGGCGTCATCCGCATCTTCCGCGACTACGGCTACCGCCGGCTGCGGAACAAGGCCCGCCTGAAGTTCCTGCTCAAGGACTGGGGCCCCGAGAGGTTCCGCGAGGTCCTCGAGACCGAGTACCTCGGGTACGCGCTGCCCGACGGCCCGCCCCCGGCCCCGGCGACCCGGCCCGGCGACCACGTCGGCGTCCACGAGCAGAAGGACGGCGACTACTACGTGGGCGCCGCCCCCGTCGTCGGCCGCGTCGGCGGCGGCACGCTGACCGGCCTGGCCGACCTCGTCGAGTCGGTCGGCGCCCGCTCGGCACGACTCACCGCCCACCAGAAGGTCGTGGTCCTCGGCGTGCCCGCCGACCGTGTCGACGAGCTGGTCGACGGCCTCGAGCCGCTGGGCCTGACGGCACGGCCCTCGCTGTTCCGCCGCAACACGATCGCCTGCACGGGCATCGAGTTCTGCAAGCTCGCCATCGTCGACACCAAGAACACCGCCGCCGGCGTCATCGCCGAGCTGGAGCAGCGCCTGGACGAGCACGCCGAGCAGCTCGACCGGCCGATCTCGCTCAACGTCAACGGCTGCCCCAACTCCTGCGCCCGCATCCAGACCGCCGACATCGGTCTCAAGGGCCAGATCATCACCGTCGACGGCGAGCAGATGGCGGGCTTCCAGGTGCACCTGGGCGGCAGCCTCGCGGGGCAGGGCCACGACGCCGGCGGTCTCGGCCGCACGGTGCGCGGCCTGAAGGTCCCGGCCACCGAGGTCGCCGATTACGTCGAGCGCGTGGTGCGCCGCTACGCGGCGGACCGCAGCGACGGCGAGTCGTTCGCCGAGTGGGCCCACCGGGCGGACGAGGAGGTGCTGCAGTGAMTTQTNPPAPPNAAGRPARPARAPKPNGQWKIDGTTPLNHNEEFKQAGPPLEVRERIESTYARDGFDSIADDDLHGRFRWWGLYTQRKPGIDGGRTATLEPHELEDRYFMLRVRTDGAELTPAALRVLGEISDEFGRGTADITDRQNIQYHWIEIESMPEIWRRLDTVGLETTTACGDSPRAFLGSPVAGIATDEIIDATPVIDEIKRRHIGDPELANLPRKFKTAISGHPSLDVVHEINDISLVGVEHPELGAGFDLWVGGGLSTAPRLGERLGVFVTAEQAPDVWYGVIRIFRDYGYRRLRNKARLKFLLKDWGPERFREVLETEYLGYALPDGPPPAPATRPGDHVGVHEQKDGDYYVGAAPVVGRVGGGTLTGLADLVESVGARSARLTAHQKVVVLGVPADRVDELVDGLEPLGLTARPSLFRRNTIACTGIEFCKLAIVDTKNTAAGVIAELEQRLDEHAEQLDRPISLNVNGCPNSCARIQTADIGLKGQIITVDGEQMAGFQVHLGGSLAGQGHDAGGLGRTVRGLKVPATEVADYVERVVRRYAADRSDGESFAEWAHRADEEVLQPGPT0002825_616DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002825-sir-K00392NANA
AK018_04115141hypothetical proteinATGCACATGTGCATCGGGCACGCCGGCATGGCACGACGGGTCGTCGTGCTGCGGAGGGGCGCGGCCGTGGTCATGCCGATGAATCTAACCCGCGGTGACCATCTCGCGAAACCCCCGGTCCGCATCGTGGGATCCGGGTGAMHMCIGHAGMARRVVVLRRGAAVVMPMNLTRGDHLAKPPVRIVGSGNANANANANA
AK018_04116372hypothetical proteinATGGAGTTCCTCTACAACATCTTCACGGTGCTGCACTTCGTCGGCTGGGCCATCGTCCTCGGCGGCTACCTCGCCTCGCTGCGCAGCCCGGGCCTGTACCGCGGCGTCTTCCACGGGGCGGCGACCGCGCTCGTCGCAGGCATCCTCATGGTCGGCGTCGCGGAGATGGGCGGCCTGTGGGAAGACTTCGGGCCGTCGATGGCGAAGATCGGCGTCAAGCTGACGATCGCCCTGGTCATCACGATCCTGGCCTTCGTCGCCAAGCGTCAGGGTCGCAAGGGCGACAACGGCACCGGAGCCGTCGCCCCGGCGCTGAAGCACTCGATCGGCGCGCTCGTGCTCGTCAACATCGTCATCGCCGTCTTCTGGTGAMEFLYNIFTVLHFVGWAIVLGGYLASLRSPGLYRGVFHGAATALVAGILMVGVAEMGGLWEDFGPSMAKIGVKLTIALVITILAFVAKRQGRKGDNGTGAVAPALKHSIGALVLVNIVIAVFWNANANANANA
AK018_04117483hypothetical proteinGTGAGCGTCGTGGGCGAGGTCCTCGTCGGCCTCGCGATCGCCGTCGGGCTCGTCGGGATCGTCGTCCAGGTGCTGCCGGGCAACGCCCTGGTGGCGAGCGCCCTGCTCGTGTGGGCCTGGGCGACCGGCGGCCCGACGGCGTGGACCTGCTTCGCCGTCGCCGCGCTGCTGATCGTCGCCGCCGAGACGGGCAACTGGCTCGTGGCGGGCCGCCACATGCGCCGCGCCGACGTGCCGTGGTCGACCCTCGCCGTCGGCGGCGTCGCCGGGATCGTCGGATTCTTCGTCGTGCCCGTGGTCGGACTGTTCCTGTTCTTCACGCTCGCCGTGCTGCTCGTGGAGTACCTCCGGCGCCGGGACCGGGCCGCGGCGTGGCGGGCCACCGTGGCCGCGCTCCAGGCCACCGCGATCACCATCGGCATCCAGCTCGTGGGCGGGCTGCTGGCGACGGTGGTGTGGGTCGTCGGGCTCGTGCTGACCTGAMSVVGEVLVGLAIAVGLVGIVVQVLPGNALVASALLVWAWATGGPTAWTCFAVAALLIVAAETGNWLVAGRHMRRADVPWSTLAVGGVAGIVGFFVVPVVGLFLFFTLAVLLVEYLRRRDRAAAWRATVAALQATAITIGIQLVGGLLATVVWVVGLVLTNANANANANA
AK018_04118462hypothetical proteinGTGGAGATCCTCACCCGTCACCTCGACGACCTCGGGCCGCGCACCGTCTTCGAGCTGTGCCGGCTGCGCCTGGACGTGTTCGTCGTCGAGCAGGACTGCGCGTACCCGGACCTCGACGACCGCGACCTCGAGCCGGCCACCCGGCACGTGGTGCTGCTCGACGCGGGGCGTGTGGTGGGCACGGCGCGCGTGCTCGACGACACCACCGAGCAGCGCGTCGGGCGGGTCGTGTGCCACCCGGACGTGCGGGGGACCGGGGCGTCCGGCGTCCTCGTGCGCGCGGCGGTGGAGGCGGCCATGCAGGCCGCGCCCGGCCAGGACGTGGTGCTGGGGGCCCAGTCGCCGCTGGTCGGCTGGTACGCGACCTTCGGGTTCGCGCCGGACGGGCCGGAGTACCTCGAGGACGGCATCCCGCACACCCCGATGCGCCGTCCGGGCGTGCTCAGCCCGGCAGCTCCCTGAMEILTRHLDDLGPRTVFELCRLRLDVFVVEQDCAYPDLDDRDLEPATRHVVLLDAGRVVGTARVLDDTTEQRVGRVVCHPDVRGTGASGVLVRAAVEAAMQAAPGQDVVLGAQSPLVGWYATFGFAPDGPEYLEDGIPHTPMRRPGVLSPAAPNANANANANA
AK018_041191680hypothetical proteinATGGACAGTCCGGTGACCAGCGGCACCGCCGACGCCGCGGCGCGCACGAGCCTGCAGGAGCTGCTGGCCCACCCCCGTCGGCTGGTGAACCCCTCGACGCTGGGCGGGGCCGTCGCCCTCGCCGTCGGCCTCGTGCTCGTGCTGGTCCCGGCACTGTCCCACGGGCTGACCGAGACGGTGGTCGGGATCGGGCTGCTGGCCTCCGGGCTCAACGACCTGTGGACCATGGCCCGACGACGCCACGTGCGCGTGACCGCCCGCACCACCGCGGCCGTCCGGGGGCTCGCCTCGATCCTGCTCGCGCTGGTCTTCCTGTTCTCGGCACGGGCCGCCCTGGCGGCGACGATCCTGCTCGGCGCCCTCTACCTGCTCTTCCGCAGCCTGCTGACCCTGCTGCTGGCCGCGTTCAGCCGGTCCAAGGACAAGCGCGCACCGCGCCTCGCCAGCGGCGGTGTCGGCCTCGCCTTCTCGGTCCTGATCCTCGCGGTCCCCGGTGCCTACATCGACTGGATCGCCGCGCTGGTCGGCATGGCCGCGATCTTCGGCGGCACGATCACGCTCGCCTACGGCTACCGCGTCGCCGCCGGCCGCCTGCCCGCGCCCGAGGGGCTCTACCCCTCCTTCACCGAGATCCTCTGGACGTGGGTCGAGCACGTGGACGTGGGTGCCGCGGGGCGGACGAAGCTCGCCGACCAGCTCTACCTCGAGCGCCCCGAGATGACCGCCAAGCAGATCGCCTGGTGGACGATGCTCGTCCTCAGCGTCTGCATCGCCACGCTGGCGGTGCTGCAGGACTCCACCGCCGTCGTCATCGGTGCCATGCTCGTGGCCCCGCTGATGACCCCGATCCTCGGGCTCGCGGCGGCCCTGGTCAGCGGCTGGGCCTTCCGCGCCGTGCGTTCCTTCGCGCTGATCCTGGCCGGGACCGCGGTGGCGGTCCTCATCGCGTTCGTCATCGCGTCCTGGGTGCCGATCGTCGTGCCCTTCGACAGCAACAGTCAGATCACCTCGCGGGTGGACCCGACCCTGCTCGACATGCTGGTCGCGCTCGCGGCCGGTGCCGCCGGGGCGTTCGCCACCGTGGACCGCCGGGTCGCGGCGTCCCTGGGAGGCGTGGCGATCGCCGTCGCGCTGGTCCCGCCGCTGTCGGTGGTCGGCGTGGCGCTGTCCGACGGGCGCCTGCGCGACGCGCTGGGCGCCCTGCTGCTGTTCTCGACGAACTTCGTCTCCATCGTCCTCGCGGCCGCCGTCGTCTTCGTGCTCACCGGGGTCGCCGACCCGCGCCGGCTGCGGCGCGGAGGCCGCAAGATCCTGCTGACCATGGCGCCCTTCGTCACCGCGGCGCTGGTGATCCTGCTGCCGCTGCTGCTGACCACCGACGGCCTGCTCAGCACGTCGGCCGACCAGCGGGCCGCCCAGTCCGCGGTCGACGAGTGGTTGCCCGACGACTCCCGGCTCACGCTGACGTCGGTCGCGATCACCGACGACACCGCCACGGTGCAGCTGTCGGGCTCGCCGGACGACCTGCCGGACCTCACCGACCTGCAGACGTCCCTCGACGACGCGCTCGACGGCAGCTACGCCGTCGAGGTGGCCGTGACGCCGGTCGACGTCCAGCGGGTTCCCGCGGTGTCGCCGTCTCCCTCGCCGTCGGGGCGGCTCGACCTCGACCTGCCCTGAMDSPVTSGTADAAARTSLQELLAHPRRLVNPSTLGGAVALAVGLVLVLVPALSHGLTETVVGIGLLASGLNDLWTMARRRHVRVTARTTAAVRGLASILLALVFLFSARAALAATILLGALYLLFRSLLTLLLAAFSRSKDKRAPRLASGGVGLAFSVLILAVPGAYIDWIAALVGMAAIFGGTITLAYGYRVAAGRLPAPEGLYPSFTEILWTWVEHVDVGAAGRTKLADQLYLERPEMTAKQIAWWTMLVLSVCIATLAVLQDSTAVVIGAMLVAPLMTPILGLAAALVSGWAFRAVRSFALILAGTAVAVLIAFVIASWVPIVVPFDSNSQITSRVDPTLLDMLVALAAGAAGAFATVDRRVAASLGGVAIAVALVPPLSVVGVALSDGRLRDALGALLLFSTNFVSIVLAAAVVFVLTGVADPRRLRRGGRKILLTMAPFVTAALVILLPLLLTTDGLLSTSADQRAAQSAVDEWLPDDSRLTLTSVAITDDTATVQLSGSPDDLPDLTDLQTSLDDALDGSYAVEVAVTPVDVQRVPAVSPSPSPSGRLDLDLPNANANANANA
AK018_041202631uvrD1_1COG0210ATP-dependent DNA helicase UvrD1ATGACTTCGCTCTTCGACAGCCTCTCGCTCCCCGGACTGGATCCGGCACCCGCCGGCGACACCGCGCGCCTGCCCACGACCGCGCCACGCTGGGACGACGACGGGGCGCCGGACCGGGTCCCCGCGCCGACGACGGAGCCGCACGCGCCCGAGGGGGCCGGCGGCGAGGCGGGCGAGGAGCTGCTGCAGGGCCTCAACGAGCCGCAGCGGGACGCCGTCGTGCACGCGGGGTCGCCCCTGCTCATCGTGGCCGGTGCCGGATCGGGCAAGACGCGGGTGCTGACCCATCGCATCGCCCACCTGCTGGCGACCCGGCGGGCCTGGCCGGGGCAGATCCTGGCGATCACCTTCACCAACAAGGCAGCCGCCGAGATGCGCGAACGCGTCGAGCAGCTCGTCGGTCCGGCGGCCCGGCGGATGTGGGTGTCCACCTTCCACTCGGCCTGCGTGCGCATCCTGCGCCGCGAGGCCGCGACGCTCGGCCTGCGCTCGAGCTTCTCGATCTACGACGCGGCCGACTCCCAGCGGCTCATCACCCTGGTGTGCCGCGAGCTCGACCTGGACGTCAAGAAGTACCCGCCGCGCTCCCTGGCCCGCAAGATCAGCGACCTGAAGAACGAGCTGATCGACCCGGACGCCTACGCCCAGCAGGCCGGTGCCGACGCGACGGAGGAGGGGTGGCGCGAGCGGGCGCTGGCCGGCGGCGGCATCGCCGACTCCTCGGTCCCCGCGTTCGACACCGTGCTCGCCGACGTCTACCGCCGCTACCAGGCGCGCCTGGCCCAGGCCAACGCCCTGGACTTCGACGACATCATCATGACGACCGTCAACCTGCTGCAGGCGTTCCCGAACGTGGCCGAGCACTACCGACGCCGCTTCCGGCACGTCCTGGTCGACGAGTACCAGGACACCAACCACGCGCAGTACGTCCTGGTCCGCGAGCTGGTCGGGGGTACGGGGGATGCGCAGGTCGAGGGCCTGGTCCCGGCCGAGCTGACCGTCGTGGGCGACGCCGACCAGTCGATCTACGCCTTCCGCGGCGCCACCATCCGCAACATCGTCGAGTTCGAGCAGGACTACCCGGACGCGACGACGATCCTGCTGGAGCAGAACTACCGCTCGACCCAGAGCATCCTGTCGGCCGCGAACGCGGTCATCGCCCGCAACACCGGCCGGCGCCCGAAGCGGTTGTGGACCGACGCGGGGGACGGGGCGAAGATCGTCGGCTACGTCGCCGACGACGAGCACCACGAGGCGCGGTTCGTCGCCGAGGAGATCGACCGGCTCGGGGACAGCGCCGGGGTGCGCCCGGGGGAGGTGGCGATCTTCTACCGCACCAACGCCCAGTCGCGGGCGCTGGAGGAGGTCCTGATCCGCGTCGGCCTGCCGTACAAGGTGGTCGGCGGGACGCGGTTCTACGAGCGCCGGGAGGTCAAGGACGCCGTCGCCTACCTGCGGTCGCTGGCCAACCCGGACGACGACGTCTCGCTGCGCCGGGTCCTCAACGTGCCCAAGCGCGGTCTCGGCGACAAGGCGGAGTCCCTGGTGGCGGGCTTCGCCGCCGCCGAGCGGATCTCGTTCGGTGCCGCCCTGCAGCGCGTCGACGAGATCCCCGCGATGACCACGCGCACGCTCAAGCCGTTGCGGACCTTCGCGGCGATGATCGCCGAGCTGCAGGCGATGGTCGACGACGGCTCGACCCCGGCGGAGATCCTGGGGGCGGTCCTCGACCGCACGGGGTACCTCGCCGAGCTGCGCGCCAGCGACGACCCGCAGGACGCCACACGGGTGGAGAACCTCGCCGAGCTGCACGCCGTGGCGGCCGAGTTCACGGAGACGGACCCCGAGGGCGACCTGGCGGACTTCCTGGAGCGGGTGTCGCTGGTGGCCGACGCCGACCAGATCCCGGACGAGGACGTCGCCGACGGCGGGGCGGAGCACACCCACGAGGACGAGCCGGTCGAGGACCCGGGCGTGGTCACCCTGATGACGCTGCACACCGCCAAGGGCCTGGAGTTCCCCGTCGTGTTCCTCACCGGCATGGAGGACGGCACCTTCCCGCACATGCGCTCGCTGCACGACGACGCCGAGCTGGCCGAGGAACGGCGGCTGGCCTATGTGGGTATCACCCGGGCCCGGGAGCGGCTCTACCTGTCGCGGGCGGGGACCCGCTCGGCGTTCGGCATGGCCAACGAGTTCCCCCCGAGCCGGTTCCTCGACGAGATCCCGACCGAGCTGGTCGACTGGCGCCGCGCGGAGTCCGCGACCCAGACGCTGCGGCGCGGCGGGTCGAGCTGGGGCGGCGGCGCCTACGGTGCCGGCCGCGCGGCCCGCGCCGGGTCCGGCGTCGGACGTCGGGAGGGCACGTCGCGTCCGACCACCGGCGGCGCCTCCGGGCCGATCGGCCGGACGGGCACGGGATCCGGCCCCCGGTTCGGGTCGGCGACGCCCCGCCAGGACGCCGACATCCCGTCGCTGTCGGTGGGCGACAAGGTCTCCCACGACGCCTACGGGGTCGGCACAGTCGTGGGTCTGGAGGGTGCCGGTCAGAACGCGGTGGCGAAGATCGACTTCGGTGCGGACGGCACGAAGCGGCTGCTGCTGCGGTTCAGCCCGGTCACCAAGCTCTGAMTSLFDSLSLPGLDPAPAGDTARLPTTAPRWDDDGAPDRVPAPTTEPHAPEGAGGEAGEELLQGLNEPQRDAVVHAGSPLLIVAGAGSGKTRVLTHRIAHLLATRRAWPGQILAITFTNKAAAEMRERVEQLVGPAARRMWVSTFHSACVRILRREAATLGLRSSFSIYDAADSQRLITLVCRELDLDVKKYPPRSLARKISDLKNELIDPDAYAQQAGADATEEGWRERALAGGGIADSSVPAFDTVLADVYRRYQARLAQANALDFDDIIMTTVNLLQAFPNVAEHYRRRFRHVLVDEYQDTNHAQYVLVRELVGGTGDAQVEGLVPAELTVVGDADQSIYAFRGATIRNIVEFEQDYPDATTILLEQNYRSTQSILSAANAVIARNTGRRPKRLWTDAGDGAKIVGYVADDEHHEARFVAEEIDRLGDSAGVRPGEVAIFYRTNAQSRALEEVLIRVGLPYKVVGGTRFYERREVKDAVAYLRSLANPDDDVSLRRVLNVPKRGLGDKAESLVAGFAAAERISFGAALQRVDEIPAMTTRTLKPLRTFAAMIAELQAMVDDGSTPAEILGAVLDRTGYLAELRASDDPQDATRVENLAELHAVAAEFTETDPEGDLADFLERVSLVADADQIPDEDVADGGAEHTHEDEPVEDPGVVTLMTLHTAKGLEFPVVFLTGMEDGTFPHMRSLHDDAELAEERRLAYVGITRARERLYLSRAGTRSAFGMANEFPPSRFLDEIPTELVDWRRAESATQTLRRGGSSWGGGAYGAGRAARAGSGVGRREGTSRPTTGGASGPIGRTGTGSGPRFGSATPRQDADIPSLSVGDKVSHDAYGVGTVVGLEGAGQNAVAKIDFGADGTKRLLLRFSPVTKLNANANANANA
AK018_041211185sucC_1COG0045Succinate--CoA ligase [ADP-forming] subunit betaGTGGACCTGTTCGAATACCAGGCTCGCGACATCTTCGAGAAGCACGGCGTGCCCGTGCTCGGGGGCGTCGTCGCGACGACGCCCGAGGAGGCTCGCGCAGGCGCTGAGGAACTCATGGGCGGCACCGGCAGCTCTGTCGTGGTGGTGAAGGCCCAGGTCAAGATCGGCGGCCGCGGCAAGGCCGGCGGCGTGAAGCTGGCGCGCTCCCCCGAGGAGGCCGCGCAGAAGGCCGAGGAGATCCTCGGCATGGACATCAAGGGCCACACGGTCCACCGCGTCATGATCGCCGCCGGTGCGCAGATCGCCGAGGAGTACTACTTCTCGGTGCTTCTGGACCGCGCCCACCGCAACTACCTCGCCATGTGCTCCGTCGAGGGCGGCGTGGAGATTGAGGAGCTCGCCGTCGAGCGGCCCGAGGCACTGGCCAAGGTCGCGGTCGACCCGGCCGTGGGCATCGACGCCGCCAAGGCCGCCGAGATCGTCGAGGCCGCCGGCTTCGCCGCCGACGTCGAGGACAAGGTCGCCGAGGCCATCCAGAAGCTGTGGACCGTGTTCTCCGAGGAGGACGCGACCCTCGTCGAGGTCAACCCGCTGGTCAAGACGGAGCAGGGCGACATCATCGCCCTGGACGGCAAGGTCACCCTCGACGCGAACGCCGACTTCCGGCACCCGGACCACGCCGAGCTCGAGGACTCCGCCACGACGGACCCGCTGGAGGCGAAGGCCAAGGAGCACGACCTCAACTACGTCAAGCTCGACGGCGAGGTCGGCATCATCGGCAACGGCGCGGGTCTGGTCATGTCGACCCTCGACGTCGTCGCCTACGCCGGCGAGGCGCACGGCGGCGTGAAGCCCGCGAACTTCCTCGACATCGGCGGTGGCGCCAACGCGCAGGTCATGGCGGCCGGCCTCGACGTCATCCTGCACGACGACCAGGTCAAGTCGGTCTTCGTCAACGTCTTCGGCGGCATCACCGCCTGCGACGAGGTCGCCAAGGGCATCGTCGGCGCGCTCGAGATCCTCGGCGACGAGGCGTCCAAGCCGCTGGTCGTCCGTCTCGACGGCAACAACGTCGAGAAGGGGCGCGCGATCCTCACCGAGGCGAACCACCCCCTCGTGACCCTTGCCGAGACCATGGACGGCGGCGCTGAGACGGCAGCAGCCAAGGCCGCCGCGACCGCCTGAMDLFEYQARDIFEKHGVPVLGGVVATTPEEARAGAEELMGGTGSSVVVVKAQVKIGGRGKAGGVKLARSPEEAAQKAEEILGMDIKGHTVHRVMIAAGAQIAEEYYFSVLLDRAHRNYLAMCSVEGGVEIEELAVERPEALAKVAVDPAVGIDAAKAAEIVEAAGFAADVEDKVAEAIQKLWTVFSEEDATLVEVNPLVKTEQGDIIALDGKVTLDANADFRHPDHAELEDSATTDPLEAKAKEHDLNYVKLDGEVGIIGNGAGLVMSTLDVVAYAGEAHGGVKPANFLDIGGGANAQVMAAGLDVILHDDQVKSVFVNVFGGITACDEVAKGIVGALEILGDEASKPLVVRLDGNNVEKGRAILTEANHPLVTLAETMDGGAETAAAKAAATAPGPT0019515_2309DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019515-sucC-K01903NANA
AK018_04122894sucD_1COG0074Succinate--CoA ligase [ADP-forming] subunit alphaATGTCGATCTACCTGAACTCCGACTCCAAGATCATCGTCCAGGGCATCACCGGCGGCATGGGTGCCAAGCACACCGCCCTGATGCTCTCCTCCGGCGCGAACATCGTCGGCGGCGTCAACGCCCGCAAGGCCGGCCAGACCGTCGAGCACGCCGACGCCGACGGCAACCCCGTCACCCTGCCGGTCTTCGGCTCGGTGAAGGAGGCCATGGCCGAGACCGGCGCGAACGTCTCCGTCGTGTTCGTCCCGCCGGCGTTCACCAAGGACGCGTCCATCGAGGCCATCGACGCCGGTATCGGTCTGCTCGTGGTCATCACGGAGGGCGTGCCCGTCCAGGACACCGCCGAGGTGTTCGCCTACCTGGAGGGCAAGGAGACCCGGATGATCGGGCCGAACTGCCCCGGCATCATCACGCCGGGCGAGTCGCTGGCCGGCATCACCCCGCACACGATCACCGGCTCCGGCCCGATCGGCCTGGTCTCGAAGTCCGGCACCCTGACGTACCAGATGATGTACGAGCTGCGGGACCTGGGCTTCTCCACCGCCATCGGCATCGGCGGCGACCCGGTCATCGGCACCACGCACATCGACGCCCTCGAGGCGTTCGAGAACGACCCCGCCACCGAGGCGATCGTCATGATCGGCGAGATCGGTGGCGACGCCGAGGAGCGGGCCGCGGCCTACATCGCCGAGCACGTGACCAAGCCGGTCGTCGGCTACGTCGCGGGCTTCACCGCCCCGGAGGGCAAGACGATGGGCCACGCCGGCGCCATCGTCTCCGGCTCCTCCGGCACCGCGCAGGCCAAGAAGGAGGCCCTCGAGGCCGTCGGCGTCAAGGTCGGCAAGACGCCGTCCGAGACCGCCCGCCTCATGCGCGAGGTCCTGCAGGGCTGAMSIYLNSDSKIIVQGITGGMGAKHTALMLSSGANIVGGVNARKAGQTVEHADADGNPVTLPVFGSVKEAMAETGANVSVVFVPPAFTKDASIEAIDAGIGLLVVITEGVPVQDTAEVFAYLEGKETRMIGPNCPGIITPGESLAGITPHTITGSGPIGLVSKSGTLTYQMMYELRDLGFSTAIGIGGDPVIGTTHIDALEAFENDPATEAIVMIGEIGGDAEERAAAYIAEHVTKPVVGYVAGFTAPEGKTMGHAGAIVSGSSGTAQAKKEALEAVGVKVGKTPSETARLMREVLQGPGPT0001540_1108DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001540-sucD-K01902NANA
AK018_041231287hypothetical proteinGTGAGCACCACCGCCAGCAGCCGCCCCGCCGCCGTCGTCGAGCCCGACCGGCCCCGCTCCGTCCGGGCCCGGTTCGCGCTGGCCTCGTCCGGCGTGTGGGCCGCGCTGCAGGCCGTCGGGCTGTCCTACGCCGTCGTCGCGCTGCTCGCGGTCGCGGCCGTCCTGGACGCCCCGAGCGCCTCCGGGTCCGACGGCGGGCTCGGCGCCGGTGTCGCCGCGGCCACCGGGCTGTGGCTGCTCGGGCACGGCGTGCCGCTCGCGGTGGCCGGCGCGACGGTGACCGTCGTCCCCCTCGGGCTCACCGCTCTGGCGGTGTTCACGGCGCACGTCACCGCGAAGCGCTCCGCGGTGCCGACGCTGGCCGCCTGGATCGGCGGCACCGTCACCTACGCCGCGACCCTGGTGGTCGCCACGGTGCTGCTCGCTCTCGGCACGCCCGGGTCCCTGTCCGTCACCGACCTCGCGCTCCAGGTGCTCGCCGCCGTGCTCGGCGGCCTCGTGGTCGGCGGCGGGGGATCCGCCCTGGGCATGTTCTCCGCCCCGGACGGGCCGTTGCTGGCCGGGCTCACCCCCCGGCTGGACCCCTACCTGCCGGACACCGCCCGCCTCGGGCTGCGGGCCGGGCTCGTCGGGGCGGCGCTGCTGACCGCGCTCGGCGGCCTGCTGACGGCGGTCTGGGTCGTGCTCGGGCGCGGGACCGCCGCGGACGTCGCCGCCGGACTCGGCGGGAGCTGGTTCGCGGTGCTGGTGCTCCTGCTCACCCAGGCCGCGCTGGTCCCCAACCTGGTCGTCTGGTCGACGGCGTGGCTCGCGGGCCCGGGGTTCGCCGTCGGGACGGACAGCACCTTCTCGGCGGCCGCGACGGCCGCGGGCCCGCTGCCGGGGCTGCCGCTGCTGGGCGTGCTGCCCGGGCCGGTCTGGTCGTCACCGGTCGCGCAGTGGTCACCCGTGCTCGTCGTGGCCTGCGGGGCGGCCGCCGGGTGGTTCGCCTGGCGTCGCCTGGAGCCGAGCCTGGTGCGGGTCCGCGACGTGGCCTGGATCCTGGCCGGCACGGGCGTCGCCGCTGGTGCGGTGACGGTCGCGCTGCAGGCGGTCGCCGGGGGTGCCGTGGGTGCGGACCGGCTCGCCGCGGTCGGCGCGGACGCCTGGGTGACCGGCGGTCTCGTGGCGGCCGAGGTCGGCGGCGGGGCGGCCCTGGTGCTGCTCGGTGCCGCCGGTCGCGTGTGGCTGTCCGCGCGCGCGGAGTCCGCCGTCTCGGATGACGGGACCGCGTCGTCCGGCACGTAGMSTTASSRPAAVVEPDRPRSVRARFALASSGVWAALQAVGLSYAVVALLAVAAVLDAPSASGSDGGLGAGVAAATGLWLLGHGVPLAVAGATVTVVPLGLTALAVFTAHVTAKRSAVPTLAAWIGGTVTYAATLVVATVLLALGTPGSLSVTDLALQVLAAVLGGLVVGGGGSALGMFSAPDGPLLAGLTPRLDPYLPDTARLGLRAGLVGAALLTALGGLLTAVWVVLGRGTAADVAAGLGGSWFAVLVLLLTQAALVPNLVVWSTAWLAGPGFAVGTDSTFSAAATAAGPLPGLPLLGVLPGPVWSSPVAQWSPVLVVACGAAAGWFAWRRLEPSLVRVRDVAWILAGTGVAAGAVTVALQAVAGGAVGADRLAAVGADAWVTGGLVAAEVGGGAALVLLGAAGRVWLSARAESAVSDDGTASSGTNANANANANA
AK018_04124588purN_1COG0299Phosphoribosylglycinamide formyltransferaseGTGCTCGCCTCGGGCGGCGGGTCGAACCTCGCCGCCCTGCTCGCGGCGCACGAGGACGAGGCCTATGGTGCCCGGGTCGTCGGTGTGGTCTCCGACAAGCCGGCCGCCGGGGCGCTGGACCTCGCCCGAGACGGGGGAGTGGCCAGCGTGGCGGTGTCGCCCGCCGACTTCCCCGACCGGGCCGCCTGGAACGCCGGGATCGGGGAGGCCGTCGAGGTCTTCCGGCCGGACTGGGTGGTGCTGGCCGGCTTCATGCGCATCCTCGCGCCGGACTTCCTGGCGCGCTTCCCGGGCCGCGTCGTCAACACCCACCCCGCGCTGCTGCCCGCCTTCCCCGGCGCCCACGGGGTGCGCGACGCCCTCGACTACGGGGTCAAGATGACCGGCTGCACGGTGCACGTCGTGGACGACGGCGTGGACACCGGCCCGATCATCGCCCAGGCGGCCGTGCCGGTCCTGGACGACGACACGGAGTCGACGCTGCACGAGCGCATCAAGGTGGCCGAGCGGTCGCTGCTCGTGGAGACCGTCGGGCGCGTCGCGCGCGAGGGGCTCCGCGTCGAGGGCCGACGCGTGCACATCGGCTGAMLASGGGSNLAALLAAHEDEAYGARVVGVVSDKPAAGALDLARDGGVASVAVSPADFPDRAAWNAGIGEAVEVFRPDWVVLAGFMRILAPDFLARFPGRVVNTHPALLPAFPGAHGVRDALDYGVKMTGCTVHVVDDGVDTGPIIAQAAVPVLDDDTESTLHERIKVAERSLLVETVGRVAREGLRVEGRRVHIGPGPT0008095_1514DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008095-purN-K11175NANA
AK018_04125558hypothetical proteinATGGAGGACACGTTCCTGGTGCAGACCCCGGAGGCGCTCAAGGCGATCGCCCACCCCCTGCGCCAGCGGATCCTCCTGCAGCTCGTCGCGGCGGGCCACGGACGAGCGGCGGACCTGGCACGGTCCGTCGGCGAGCCCGCCAACTCCGTCAGCTTCCACCTGCGCACGCTGGCGAAGGCCGGGATGGTCGTCGAGGCGCCCGAGCTCGCGCGTGACAAGCGCGACCGCGTCTGGCGACCGGCCGCCGAGAGCTACCAGGTCGAACCGGGGACGCCCGGGACGGCCGCGGAGATCCTGCGGCCGACCCTCGACTGGGTCGAGCGGCTCTTCGCCGCGGCGAACGAGGCCGAGCCCGCCGACGACGAGTCGCGGCGGCGCACCCTGGTGGTCAACAACGTCTTCCTGACCCCGGACGAGGCCCGGCAGATGAAGGACGAGCTCGTCGCCCTCCACGAGAAGTGGGCCCGCCGCACCGTCGGCGCCGCCCGTGACGAGCCCGGGAGCGCGCGGGACGCCTACCAGGTCCTCCTGGCGCTCGGCCCCCGCGACGAGGCCTGAMEDTFLVQTPEALKAIAHPLRQRILLQLVAAGHGRAADLARSVGEPANSVSFHLRTLAKAGMVVEAPELARDKRDRVWRPAAESYQVEPGTPGTAAEILRPTLDWVERLFAAANEAEPADDESRRRTLVVNNVFLTPDEARQMKDELVALHEKWARRTVGAARDEPGSARDAYQVLLALGPRDEANANANANANA
AK018_041261284hypothetical proteinATGACGGCCACCTCCACCGCCTCGACCACCGACCCGGCAGCGGCGCAGCGGTCGCGCAGCCTGCTGCGCCACCGCTCCTACCTGCTCATGATGTCGGGACTCACCGCCCAGGCGTTCGGTGCCGGCGTCGCGGCGTTCGCCGTGCCGCTGCTCGCGTACGCGGTCACCGGCTCGGTCTGGCAGGCCGGGGTGGTGTCCGCCGTCGGGCACGTCGGCGCGTTGCTCGCCACGCTCCCCGCCGGCGTCGTGGCCGACCGGGTCGACCGGCGCCGGCTCGTCGTCGTGTCGGCGTCGCTGGCGGCGCTCGCCTGGGCCGGCGCCGCGCTCGCCGCGCTGGCCGGGGTCCTCGGCGCCGTGCACCTGGCGGGCGTCCTGCTCGTCTCGTCCGTGGCCGGGGCGTTCGTCGACCCGGCCGTGGCGGGCGCCTTCCGCTCCGTCGTCCCGGCGCAGCAGCTCTCGTCCGCCTACGCCGCCCTCCAGGGCAGGGACGCCGCCGCGTCCCTGGTCGCCGGCCCGCTCGGCGGCGTGCTCTACGGGATCGCGCACGCGGTGCCGCTGGTCGCCGGCGCCGTCGGGCACCTCGCCACCGCGGTGTGCACGTGGTTCGTGCGCGAGCCGCTCAACGCCGACACCGCCGAGGCGCGGCGGACCCGCCCGGCTGCCGCCCTGCGCGAGGGGTTGCGCTACGCGTGGTCGGTGCCCCTATTCCGCATCTGCCTGGGGCTTTTCGCCGTGATCAACGTGGCGATCAACGCGCTCCTCCTGGCGATCACGCTGGACCTGACCGCAGGCGGCACCTCTGCGGCGCAGATCGGCCTCCTGTCCGGGACGGCGGGGGCCTCGATGCTGGTGGGCGCGGTGATCGCCCCGGCGCTGGTCGCGCGGGTGCGCGTGGGTGTGGTGACGCCGGTCTCGCTCGCGATGGTGGCCGGGTCCGCCGTCGTCATGGCCACCACCCAGGAGTTCGTGGTCCTCGTCGCGGCTCTCGGCCTCGGCGTGCTCGGGGTGCCGGCGGCGAACGCCGGGCTGGCCGGGTACGCCGCCGCGATCACCCCGCCGCAGATGCAGGGCCGGTTCTCGTCGGTCATGGAGCTGTCCGGAGTGGTGGCGATGCCGCTGGCGCCCCTGGTGGGCGGGGGCCTGCTGGCCGCGGTCGGGCTGCCGACCACGCTCGTCGTCCTCGCCGCGGTGCTCGGCACCGCGGTGGTCGCCGTGTGGTGCGCCCGGCCCGTGCGCCGGATCGGGCTGCCCGCGACCTGGGCGGACGACGCGATCGACGCCTGAMTATSTASTTDPAAAQRSRSLLRHRSYLLMMSGLTAQAFGAGVAAFAVPLLAYAVTGSVWQAGVVSAVGHVGALLATLPAGVVADRVDRRRLVVVSASLAALAWAGAALAALAGVLGAVHLAGVLLVSSVAGAFVDPAVAGAFRSVVPAQQLSSAYAALQGRDAAASLVAGPLGGVLYGIAHAVPLVAGAVGHLATAVCTWFVREPLNADTAEARRTRPAAALREGLRYAWSVPLFRICLGLFAVINVAINALLLAITLDLTAGGTSAAQIGLLSGTAGASMLVGAVIAPALVARVRVGVVTPVSLAMVAGSAVVMATTQEFVVLVAALGLGVLGVPAANAGLAGYAAAITPPQMQGRFSSVMELSGVVAMPLAPLVGGGLLAAVGLPTTLVVLAAVLGTAVVAVWCARPVRRIGLPATWADDAIDANANANANANA
AK018_041271083hcaB_13-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGGCCGACCTCACGCTCCAGCACACCGTGCGCGAGTGGCTCGCCGACCCGGAGGGCAACGCGGCGCTCACCGAGATGCTCGCCGCCCAGGGGCAGTCCACCAAGGCGCTGGCACCCGTCAAGCGCATGAGCTTCGAGAAGCTCATCAAGGTCTCGCGGGGCAAGTTCTCCCGCGAGGTCGCCGAGCAGCTCGTCGAGCAGGTCCGGGCGGCCAAGGCGGCGGGCGGTGCGCCCGTCGCGACGGACACCGCTCCCGCGGCCGAGGACACGGCCGAGAGCTCCGGCACCGCGGCCCCGGAGCCCGCCGAGTTCGTCGAGGAGATCACGCCGGGCCGGTTCACCGGGCAGACGGTGGTCGTGACCGGCGCGGCCTCCGGCATCGGCCGGGCGACCGCCTCCCGCGTCGCGCGCGAGGGCGGCCGGGTGATCGCCGTCGACATGACGCAGGCCGGCCTGGACGAGCTGGCGGCCGAGCTCGCCGGCACCCTGCCCGCCGGCGCCGAGATCGTCCCGGTGACGGCCGACATCACCGACGACGCCGCGATCGCCGGGGTCGTCGCGGCGGCCGGGGACCGCATCCACGCCCTGGCGAACGTCGCGGGGATCATGGACCGCTTCGCGGCCGTGCACACCGTGGACGACGCCACGTGGGAGAAGGTCTTCGCCGTCAACGTCACCGGCACGATGAAGCTGATGCGCGCCGTCGTGCCGGGGATGCTGGCCGCGGCCGAGGGCCGCGTCGTCAACGTCGCCTCCGAGGCCGGCCTGCGCGGCTCGGCCTCCGGCGCCGCCTACACCGCCTCCAAGCACGCGGTGGTCGGCCTGACGAAGAACGCGGCGTTCATGTACACCGGCACCGGCGTCCGGGTGAACGCTGTGGCCCCGGGCGGCGTGGCGACCGGGATGAGCCCCCAGGACGTCGACGGCTTCGGCATGGGCCGGGTCCAGTCGGCGATGGGGATCATGGCCGACATCGCGATGCCGGAGCAGCTCGCGGCGTCGATCACGTTCCTGCTGTCCGCGGACTCGACGAACGTCAACGGCCAGATCCTGGCCTCCGACGGGGGCTGGTCCGCCGCCTGAMADLTLQHTVREWLADPEGNAALTEMLAAQGQSTKALAPVKRMSFEKLIKVSRGKFSREVAEQLVEQVRAAKAAGGAPVATDTAPAAEDTAESSGTAAPEPAEFVEEITPGRFTGQTVVVTGAASGIGRATASRVAREGGRVIAVDMTQAGLDELAAELAGTLPAGAEIVPVTADITDDAAIAGVVAAAGDRIHALANVAGIMDRFAAVHTVDDATWEKVFAVNVTGTMKLMRAVVPGMLAAAEGRVVNVASEAGLRGSASGAAYTASKHAVVGLTKNAAFMYTGTGVRVNAVAPGGVATGMSPQDVDGFGMGRVQSAMGIMADIAMPEQLAASITFLLSADSTNVNGQILASDGGWSAANANANANANA
AK018_04128576hypothetical proteinGTGGGTGAGAACGGGCGGCGGTCCAACCCTGGGCCGCGGGCCGCCGCTCGCAACCGGGCGGCTCTGCTCGCCGCTGCCCGCGAGATCTTCGCCGAGCACGGTGCCCACGCTCCGCTCAACGCCGTCGCGCGCCGCGCCGGGGTGGGGCAGGGGAGCCTCTACCGGCACTTCCCCGACCGGCTCACCCTCGTGCTCGCGCTGTTCGAGGAGCAGGTGAGCACGGTCGAGGAGCTGGCCGAGGACCCCGACGCCTCGCTGCTGGACCTGCTCGGGCTGGTGACCCGGCACGCCATCGACTCGGTGGTGAGCATCGACCTCGCGGCCAGCTCCCCCGAGGTCCGGCCCGACCCCCGGCTGCTGGACCTGACCGAACGGCTCGCCGACGTCGTGCGCTCCCGCCTGGACGATGCCCTCGCCCGCGGCCAGGTGCGGCCCGGCACCGACGTCGAGGACGTGCTGCTCGGCATCGAGATGGTCGCCTCCGCGCTCACGCGTCGACCCGCCCGGGAGCGCGAGGAGTACGCCGTGCGTGCCTGGCGCCTGCTCGGGTTCGACGTCGTCGCCGCGCCGCGCTGAMGENGRRSNPGPRAAARNRAALLAAAREIFAEHGAHAPLNAVARRAGVGQGSLYRHFPDRLTLVLALFEEQVSTVEELAEDPDASLLDLLGLVTRHAIDSVVSIDLAASSPEVRPDPRLLDLTERLADVVRSRLDDALARGQVRPGTDVEDVLLGIEMVASALTRRPAREREEYAVRAWRLLGFDVVAAPRNANANANANA
AK018_041291635purH_1COG0138Bifunctional purine biosynthesis protein PurHATGTCCGGCATCCCCACGAACCCCGACCTCCGGCTCGCCGACGACGCGCGCCACCCGATCCGCCGCGCCCTGCTGAGCGTCTACGACAAGACCGGTCTGGTCGAGCTCGCCACCGCCCTGCACGGCGCCGGCGTCGAGCTCGTCTCCACCGGCTCGACGGCGGCGCGGATCGCCGACGCCGGCGTCCCCGTCACGCGTGTCGAGGAGCTCACCGGCTTCCCCGAGTGCCTCGAGGGCCGGGTCAAGACCCTGCACCCGCGCGTGCACGCCGGCATCCTGGCCGACACCCGCAAGGCCGACCATCTCGACCAGCTCCGCGAGCTCGAGATCGACACGTTCGACCTCGTCGTGGTGAACCTGTACCCGTTCGCCGAGACCGTCGCCTCCGGCGCCGCACCGGACGCCGTCGTCGAGCAGATCGACATCGGCGGGCCCTCCATGGTGCGTGCCGCCGCGAAGAACCACCCCAGCGTCGCCGTCGTCGTCGACCCCTCCCGGTACGACGACGTCACCGCCGCCGCGCAGGCGGGCGGCTTCACGTTCGCCGAGCGCAAGCGCCTCGCCGCCGCCGCGTTCGCGCACACCGCCACCTACGACGTCGCCGTGTCGGCCTGGTTCGCGAGCGCGTACGCCCCGGACGATGCGGCCGCGACCTCGGGCATGCCCGACGTGGTCGGTGCGACCTACGAGCGCTCCGCCGTGCTGCGCTACGGCGAGAACCCGCACCAGGGCGCCGCGCTCTACACGCGCACGGACGGCGCGACCGGGCTGGCGCAGGCCACCCAGCTGCACGGCAAGGCGATGAGCTACAACAACTACGTCGACGCCGACGCCGCGTGGCGGGCCGCGCACGACCACACCGACCCGGCCGTGGCGATCATCAAGCACGCCAACCCGTGCGGCATCGCCGTCGGGGCCGACGTCGCCCAGGCCCACGCCCGTGCGCACGCCACCGACCCGGTCTCCGCGTTCGGCGGGGTCATCGCCGCCAACCGCACGATCACGAAGGCGGCGGCCGAGCAGATCGCTCCGGTGTTCACCGAGGTCGTCGTGGCCCCGGGCTTCGAGCCCGAGGCCCTCGAGGTGCTGCAGGCCAAGAAGAACATCCGCCTGCTCGTCGTCGACGGCGCCCCGGACGCGCCGGTCGAGACCCGGCCGGTCTCCGGCGGGTTGCTCGTCCAGGCGGTCGACCGGTTCCAGGCCGACGGCGACGACCCGGCGTCCTGGACGCTGGCCGCCGGCGAGCCGGCCGACGAGGCCACGCTCGCCGACCTCGCGTTCGCGTGGCGGGCCGTGCGTGCCGCCAAGTCGAACGCGATCCTGCTCGCCGCCGACGGTGCGGCTGTGGGCATCGGCATGGGGCAGGTCAACCGCGTGGACTCCTGCCGGCTGTCGGTGGAGCGGGCCAACACCCTCGCCGACTCCGGGTCGGGTCCGCTCGAGCGCGCCCGCGGCGCCGTCGCGGCCTCGGACGCCTTCTTCCCGTTCGCCGACGGCCTGCAGGTGCTGCTCGACGCCGGTGTGCGCGCCGTCGTCCAGCCCGGCGGGTCGATCCGGGACACCGAGGTCGTCGAGGCGGCGCAGGCCGCCGGGATCACGATGTACCTGACCGGGACGCGCCACTTCGCGCACTGAMSGIPTNPDLRLADDARHPIRRALLSVYDKTGLVELATALHGAGVELVSTGSTAARIADAGVPVTRVEELTGFPECLEGRVKTLHPRVHAGILADTRKADHLDQLRELEIDTFDLVVVNLYPFAETVASGAAPDAVVEQIDIGGPSMVRAAAKNHPSVAVVVDPSRYDDVTAAAQAGGFTFAERKRLAAAAFAHTATYDVAVSAWFASAYAPDDAAATSGMPDVVGATYERSAVLRYGENPHQGAALYTRTDGATGLAQATQLHGKAMSYNNYVDADAAWRAAHDHTDPAVAIIKHANPCGIAVGADVAQAHARAHATDPVSAFGGVIAANRTITKAAAEQIAPVFTEVVVAPGFEPEALEVLQAKKNIRLLVVDGAPDAPVETRPVSGGLLVQAVDRFQADGDDPASWTLAAGEPADEATLADLAFAWRAVRAAKSNAILLAADGAAVGIGMGQVNRVDSCRLSVERANTLADSGSGPLERARGAVAASDAFFPFADGLQVLLDAGVRAVVQPGGSIRDTEVVEAAQAAGITMYLTGTRHFAHPGPT0008110_691DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008110-purH-K00602NANA
AK018_041301344hcaD3-phenylpropionate/cinnamic acid dioxygenase ferredoxin--NAD(+) reductase componentGTGCCCGCGACGAACGACTTCCCCTCCCTTGCCCCCCACCCCGAGGACCCGCACCCGCGACCGCCGCGCTCCGTCGTCGTCGTGGGCGCGGGGCTGGCCGGCGCGCAGACGGCCGCAGCGCTGCGTGCCCACGGCTTCGACGGACACCTGACCGTCCTCGGCGAGGAGGGGCTGCCGCCCTACGACCGGCCGCCGCTGTCGAAGGAGCTCGTGTCGCGCACCGAGCCGCTGTGGCTGCGCGACGACCTCGGCGTCGACCTGGACGCGCTCGCCGACGAGGTGCGGCTCGCCGACCCGGTCGTCGCCGTCGAGCCGGGCGCGACGCTCACGACGCGGTCCGGCGACCGTCTCGCCCCCGACGCCGTCGTGCTGGCCTGCGGGTCCCGACCGGTGCTGCCGCCCGGCTGGGACGCCGACGTGCTGCACACCGCCGCCGACGCCGACCGGCTGCGCGCCGACCTGCGGCCCGGTGCGCGGCTCGTGATCGTCGGGGCGGGCTGGATCGGCGCGGAGGTCGCCGGGGTGGCGGCCGGGGCCGGCGCCGACGTCACCGTGCTCGAGGCCGGCCCCGCGCCGCTGGCGCGCCAGCTCGGCGCCGACGTCGGCGCCCACCTGGCGCCCTGGTACGCCGAGGCCGGCGCCCGCCTGCGTCTCGACGCCACCGCGGCCGCGGTCCGCCGCGACGGCGTCACCCTCACCTCCGGCGAGGAGGTCCCCGCCGACGTCGTCCTCGTGGCCGTCGGCGCCCGACCGGCCACGGCCTGGCTGCGCGAGACCTTCCCGGAGGCGGTCTTCGACCCGGCCGGCGGGCTGCTCGTCGACGCCGGCGGCGCGGTCCCCGGGGCGGACGGCGTCTGGGCCGTCGGGGACGTGGCCTCCCGCCCGCACCCGGAGCTCGGCGTCGTGCCCGGGGGCCACTGGTCCGCGGCGCTGCACGACCCGGACGCGACGGCCCGGGCGATGCTGGGCCTGCCGGCCGAGCCGCCGCAGGCGCCCTACGTGTTCTCGCGCCAGCTCGGTCACGACCTGGCCCTCTTCGGGCTGCCCGAGGGGGCGCCGACGGCGTGGCGCGGCACCCCCGGCACGGGGTCGTGGGCGGCGTTCTGGACGGCGCCGACCGTGAGCGGCCCGGAGGACACCGACGCCGGGCACCCGGCCGGCACCGAGCACGCCGGGCACGGCGCGGGCGACGGGGTCGCCGTCGTCCGCGCCGTGCTGCTCGTCGACGCGCCCAAGGAGGTCGGCGCGGTCCGCCGGGCGATGGACCGCCCCGGACCCCTGCGCCTCGACCTGGAGCGGGCCGCCGACCCGACCGTCAGGCTGCGCACCGCCGTCGTCCCCTGAMPATNDFPSLAPHPEDPHPRPPRSVVVVGAGLAGAQTAAALRAHGFDGHLTVLGEEGLPPYDRPPLSKELVSRTEPLWLRDDLGVDLDALADEVRLADPVVAVEPGATLTTRSGDRLAPDAVVLACGSRPVLPPGWDADVLHTAADADRLRADLRPGARLVIVGAGWIGAEVAGVAAGAGADVTVLEAGPAPLARQLGADVGAHLAPWYAEAGARLRLDATAAAVRRDGVTLTSGEEVPADVVLVAVGARPATAWLRETFPEAVFDPAGGLLVDAGGAVPGADGVWAVGDVASRPHPELGVVPGGHWSAALHDPDATARAMLGLPAEPPQAPYVFSRQLGHDLALFGLPEGAPTAWRGTPGTGSWAAFWTAPTVSGPEDTDAGHPAGTEHAGHGAGDGVAVVRAVLLVDAPKEVGAVRRAMDRPGPLRLDLERAADPTVRLRTAVVPPGPT0019730_81DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
AK018_04131321hypothetical proteinGTGGTTCCCGACACCCCGCAGCCGTCCTGGCACTCCCTCGACGCCGGCCCCCGGCAGCGCCGCGACGCGCCCAACCCGGTGCCGGCGATCCTGGTGGTGCTCGCCGGGATCCTGCTGGCCGTGCTGCTCGGACTGCTCGTCGGCGCGCGCCTGGGATCGTTGACGATCGCCGGGACCCTCGCGGTGGCCGGCACCTGGCGGGCGGTGGCGCCGGGCGGGCCCGCCGGCCTGGCGATCCGCAGCCGCGGGTTCGACGTCTTCCTGTGCTGGGGGGCAGCGACCGTGATCGCCGTGCTCGCGCTGACCGCGCCGGGGGTCTGAMVPDTPQPSWHSLDAGPRQRRDAPNPVPAILVVLAGILLAVLLGLLVGARLGSLTIAGTLAVAGTWRAVAPGGPAGLAIRSRGFDVFLCWGAATVIAVLALTAPGVNANANANANA
AK018_041321023aqpZ_1Aquaporin ZATGGCCGCGCAGACCGTGACACCGCACGACGTCGAGACGACGCCGCCACCGCCCCGGCTCTTCACCCGGATGGCGGCGGAGGCCTTCGGCACCTTCGTCCTGGTCCTCGGGATCGTCGGGACGGCGACGTTCAACGTCGCCAACGGCGGGCAGATCATGACCGTCGCCCTGGCCGGCGGGATCGCCCTCATCGCCGCCATCGCGGCCGTCGGTCACCTGTCCGGCGGCCACTTCAACCCGGCGGTGACCTTCGGCCTGACGCTGGCCGGCCGGTCCCGGTGGGTCGACCTCGCGCCCTACTGGCTCGCCCAGCTCGTCGGCGGCGCGGCCGCGGGCGCGCTGATGCTCCTCATCATCCCCGACGGCTACGGCGCGCTCGTGGGATCGGCGTCGTCCGGCGAGGTGCTCGCCGCCACCGCCAACGGCTACGGCGACCACTCCCCGATGAACACGCTCACCCAGGGCGGGGCCACCTTCGACCTCGCGACCGCCGCGATCGTCGAGGTCCTCATCGCCGCGATCTTCGTCGGCATCGTCCTGGGCGTGACCAACGAGCGCGCCAAGATCACCTACCCGGCGGTGGTCATCGGGCTGACCCTGACTGCCCTGCACATCGTGTCCTGGCTGGTCACGAACACCGGGTTCAACCCCGCCCGGTCGCTCGCGTCGGTCGTCTCGCCCGACGCCTGGGGCGAGGGCAGCGTCGGCAGCCAGCTCTGGCTGTTCGTCGTGGCCCCGCTCGTGGGCGCCGCCCTCGCGGCCCTGTTCGCCCGGGCCTTCGCGCCGCTGCCGGCCGCACCGACGGCGGCCGACGGCTGGGCCGAGCAGCCGGGCACCGCCCCGGCGACCGCCGAGGCGGCAACCGTCGCCGCCGTGGCCTCCGCCACCGCGGCCGCCGTGGTCGCCGAGGAGACCGAGACCGAGGACTCCGCGACCACCGGCGACGACTCGACCGAGGACTCCGCCGAGACCGCGACGCAGGACGACGCGGACGACGAGGACGACAAGCCCACGACGACCTGAMAAQTVTPHDVETTPPPPRLFTRMAAEAFGTFVLVLGIVGTATFNVANGGQIMTVALAGGIALIAAIAAVGHLSGGHFNPAVTFGLTLAGRSRWVDLAPYWLAQLVGGAAAGALMLLIIPDGYGALVGSASSGEVLAATANGYGDHSPMNTLTQGGATFDLATAAIVEVLIAAIFVGIVLGVTNERAKITYPAVVIGLTLTALHIVSWLVTNTGFNPARSLASVVSPDAWGEGSVGSQLWLFVVAPLVGAALAALFARAFAPLPAAPTAADGWAEQPGTAPATAEAATVAAVASATAAAVVAEETETEDSATTGDDSTEDSAETATQDDADDEDDKPTTTPGPT0004755_18DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ARSENIC_RESISTANCEARSENIC_RESISTANCE-ARSENIC_TRANSPORT,PGPT0004755-aqpZ-K06188NANA
AK018_041343585btuD_16Vitamin B12 import ATP-binding protein BtuDATGATCGACGTCCCCGCGCCCCCGGCGCGCCCGCCGGCGGTCGCGGAGGACCCGGCGCGGCGGCTCGACTGGCGGCGCCTGCGGAGCCCCGTCGGCGCCGCGGCCCTCGTCGCGCTCGCGATCGGCACGGTCGGGACGGCGCTCGGCACGGTGGTCGCCGGCGGTCTCGCCCAGGACCCGACGGCGGCGGGCGTCGCGCTGCTCGCGCTCTGCCTGGTGGGCGGGGCCCTGCTCGACGCCGCCGGCCAGGTGGCCTGGGCCGGCGTCGTCGACCGCGCCGAGGGCCGCCTGCGCGGCGACCTGCTCAGCGCCGCCCTGCACCAGCCGCTCGGGGTCCTCACCGAGCAGGCCGTCGGGGAGATCCTCGACCGGGTCGACGACGACACCCACGCCGTCGGAGCGCTCGCGCGGCGTCAGCTCTGGGGCATGGGTCGCACCGTCGTCGGCGTCGTCCCGATCTGGGTGGTGGCGGGGGCGACCTGGTGGCCGGCCGCGGTGCTGTTCCCCCTGCTCGGCGCGGTGACCTGGTGGACGGTGCGGCCGCTGCTGGACGAGATCGCCCGCCGCAAGGTCGTCGAGGAGCGCGCCTGGACCGACAACGCGGCGGTGCTCGAGGAGGGCGTCGCCGCGCGGGACGACCTGCGCACCGCCGGGGGCCAGGCGTTCGCGCTGCGCCGGCTGGCGGAGATGTCCGCGCGCGTGCACCGCACCCTGCTCGCGGTGGTGCGGGTCGAGACGCGGCTGCTGGCACGCGTCGGCGTGCTGCTGCACGCCCTGCTGGCCGGAGTCGTCGTGGCCGGGGTGGCGCTCGCGGTGGACGGCGGCATGCCGGTCGACCGGCTGGTCACCCTGTTCCTGGCCACGTCCCTGTTCGTCGGGCAGGTGGACCGGCTGGCCCAGCACCTGCCGGACCTGCAGGAGGGGCTGGGTGCCGTGGTGCGGATCCGCCAGCTCCTGGACTCCGAGCCCGAGCCGTCCGGCGGCGAGCCGCTGCCCGACCGGCCGCTCGACATCGAGGTACGCGGGCTGCACTTCGCCTACACCGAGGGCACGTTCGCGCTGCGGGACGTGTCGCTGTCCGTGCCGGCCGGCCAGACCGTCGCGTTCGTGGGGCGGACCGGGTCCGGCAAGACCACCCTGGCCTCCCTGCTGTCCCGGGCGGTCGAGCCGCCCCGCGGCACCGTCCTCCTCGGCGGTGTGGACGTGCGCGACGCCGACCTGGAGCGGCTGCGCGCGGGCGTCGGCGTGGTCACGCAGCGCACCGAGATCCTCGCGGGCACGCTCGCGCAGAACATCACGCTCTTCGCCGACGTCCCGCACGCCGACGTCGTCGCCGCGGTGCGCGAGCTCGGGCTGGCCGACTGGGTGGCCGGGCTGCCCGACGGCCTGGACACGCTCCTCGGACCCGGCGGGACCTCGTTGTCGGCGGGGGAGGAGCAGCTCGTGGCCTTCGCCCGCCTCCTCGTGCGGGACGTGCACCTGGTCGTCCTGGACGAGGCGACCGCGCGCATGGACCCGCACACCGAGGCCCGGGTCGTCGCGGCCGCCGACCGGCTGCTCGCGGGCCGGACCGGCGTGATCGTCGCCCACCGGCTCGGAACCGTGCGCCGCGCGCACCGCGTCGTCGTGCTCGACCACGGCCGGGTGGTGCAGCAGGGGCTGCACGAGGACCTGGTCCGCCGCGACGGCCCGTTCCGCGACCTGCTCGCGGCCGGCAGCGGTGCCGACGACGACGCGCTCGTCGACGGCGCCCCTGCCGACGGCGGAGCCGTGGCGCCCGACGACCGCGTGGCCGGCGAGGGCGTGGCCGACGACGGCACGGTCGCCGCGCTGCGGTCGGGGGCCGTCGGGGGCCGGCGACGGGTCGGCGACCCGCCCGTGCTGACCGATCCCGGAGCCGGTCCCGGGCTGGCCCGCAGCGTCCTGCACGCCCTGGCCACGCGACCGCGGTGGGGTGCTGCGGGAGCGGTGCTGTTCCTGTTCAGCAGCCTGTTCGCGGCCCAGGGTGCGCTCGCGGGCTACCTGTGGGGCCGCGTCGTCGAGACGGTCGCGGCCGGTGGCTCGCCGGGTCCCCTGACCGCCGCCCTGGTGGTCATGCTGCTGGCCGCGCCGCTGTGCCTGGCGGTCGCGGTGCGGCTGTACCCGTCGTGGTGGATCGAGATGCTGCTGCGGGTGCGCGTCGGCGTGCTGGTGGGGCAGACCCGACGGCACCGGCTGCGCCGCTCACCCGCGGGGGAGGTGGTCGCCCGCGCGCTCGACGGCGACCGGTTCGTGCTCTACGTCGACCGCTGGGTCGACCTGCTCAACGGTCTGGCCGTCGTCCTGGTCACCTGGGCCGTCAGTGGCTCGGCGCTGGCGGGTCTGGTGCTGCTCGCCGTCATGGCGGTGACGGCGGCGTGCGCGCTGGTGGGTCGTCCCGTGGCCGGGCGGACCGCGACCCGGTCCGCCGAGGCGCGGGCGGGGTTCGGGCGGGCCCTGGTCTCGGCCCTGGACGCCGCGCGCACCGTCAAGCTCGCGGCCCGCATCCCGGCCGTGCACCACCACCTGCGTCAGGTCGACGCCGGGCGCGTGGGGGCGGCCGTGCGCGAGCACCGGGTGCAGGCCGTCCTGGACGGCATCCCGACGGTCATGGTGCAGGCGGGCGTGGTGACCGCGTGGGCGCTGCTGCTCGCCGGGACGTGGGACCTCGCCACGACGCTGCTGGTCACCGCCGCCGTGAGCGGGTTCGCGTACTTCGGGGTCGTGGCGGGCGCGGTGATCACCGAGGCGCCGGGGACCCGCGCGTGGCTGCGGGCGACCCAGGCGTTCGCCGCCGGCGCGGACCTGACCCGGCTGCCGGACGGCGTCGACCTGGCCGTGGGCACTGCCCCGGCTCCCGCTCCGTCGGAGGCGTCGTCGGCGCCGTTCGCGCGGCTGGACCTCGAGTCCCTGGAGGCGGTGCACGACGACGGCACGATCGGGGTGTCCGGCGTCGACCTGACCGTGGAGCGGGGCGAGCTCGTGCTGCTGCTCGGCCCGGTCGGGTCGGGCAAGTCGAGCCTGCTCGCCGCCGCGACGGGGCTGATGCAGCACCGGGGCGAGGTGCGGTGGAACGGTGAGCCGGTCCGGGACGCCGAGACCTTCCTGCGTCCGGCCCGGGTGGCCCACGTCGCGCAGGTGCCGCGGGTGCTGTCGGGGACCTTCGCGGAGAACGTGACGCTGGACCACCCGCGCGACGTCGTCGGACCGGTGGACGTCGCGCGGCTCGCGCCGGACGTGGCGGACGCCGGCGGTCCGGACGCGCTGGTGGGGCACCGCGGGGTGCGGCTCTCGGGCGGCCAGGTGCAGCGGCTCGCCCTGGCGCGGGCCCTGGCCACCGGCTCGGAGGTGCTGCTGGCCGACGACGTCTCCAGCGCCCTGGACGCGGCGACGGAGGTCGAGCTGTGGACGGCGCTGCGCGAGCAGGGGCTGACGGTGATCGGCTCGACCTCGAAGCGCGCGGCGCTCGCCCGCGCCGACCGCGTCGTCGTGCTGCTGGAGGGACGCGTTGTCGAGGTGGGGCCGTGGGCCGAGCTGGAGCGTCGCTGGGGACACCTGGCCGGCTGAMIDVPAPPARPPAVAEDPARRLDWRRLRSPVGAAALVALAIGTVGTALGTVVAGGLAQDPTAAGVALLALCLVGGALLDAAGQVAWAGVVDRAEGRLRGDLLSAALHQPLGVLTEQAVGEILDRVDDDTHAVGALARRQLWGMGRTVVGVVPIWVVAGATWWPAAVLFPLLGAVTWWTVRPLLDEIARRKVVEERAWTDNAAVLEEGVAARDDLRTAGGQAFALRRLAEMSARVHRTLLAVVRVETRLLARVGVLLHALLAGVVVAGVALAVDGGMPVDRLVTLFLATSLFVGQVDRLAQHLPDLQEGLGAVVRIRQLLDSEPEPSGGEPLPDRPLDIEVRGLHFAYTEGTFALRDVSLSVPAGQTVAFVGRTGSGKTTLASLLSRAVEPPRGTVLLGGVDVRDADLERLRAGVGVVTQRTEILAGTLAQNITLFADVPHADVVAAVRELGLADWVAGLPDGLDTLLGPGGTSLSAGEEQLVAFARLLVRDVHLVVLDEATARMDPHTEARVVAAADRLLAGRTGVIVAHRLGTVRRAHRVVVLDHGRVVQQGLHEDLVRRDGPFRDLLAAGSGADDDALVDGAPADGGAVAPDDRVAGEGVADDGTVAALRSGAVGGRRRVGDPPVLTDPGAGPGLARSVLHALATRPRWGAAGAVLFLFSSLFAAQGALAGYLWGRVVETVAAGGSPGPLTAALVVMLLAAPLCLAVAVRLYPSWWIEMLLRVRVGVLVGQTRRHRLRRSPAGEVVARALDGDRFVLYVDRWVDLLNGLAVVLVTWAVSGSALAGLVLLAVMAVTAACALVGRPVAGRTATRSAEARAGFGRALVSALDAARTVKLAARIPAVHHHLRQVDAGRVGAAVREHRVQAVLDGIPTVMVQAGVVTAWALLLAGTWDLATTLLVTAAVSGFAYFGVVAGAVITEAPGTRAWLRATQAFAAGADLTRLPDGVDLAVGTAPAPAPSEASSAPFARLDLESLEAVHDDGTIGVSGVDLTVERGELVLLLGPVGSGKSSLLAAATGLMQHRGEVRWNGEPVRDAETFLRPARVAHVAQVPRVLSGTFAENVTLDHPRDVVGPVDVARLAPDVADAGGPDALVGHRGVRLSGGQVQRLALARALATGSEVLLADDVSSALDAATEVELWTALREQGLTVIGSTSKRAALARADRVVVLLEGRVVEVGPWAELERRWGHLAGNANANANANA
AK018_04135678hypothetical proteinGTGCCGGAGTACACGCCGTCGGCGCGCTCGGTGAGGCGGGCGTTCTCGCAGTCCGGCGTCCAGTCCCCGGCACAGCCCATCTCGCTGTTGTGGCTGCCGGGCACGGTCACCATGTCGATGTCGCTCGGAGGCTCCTCCTCGCCGGCCACGCCGGAGACGTCGACGCCCACGGAGGCGAACGTCGAGGCCGCGGCGCGGTCGCCGTCGGCGTCCGTGGTCACCGCGCGGTACTCGACCAGGGTGCCCTCGGGCAAGCCGGCGGCGGTGTGGAAGACCCGCGGGGTGGTGTCCTCGGCGGTGCCGAGCGGCTGCCAGTCGGTGGTGCCGACCTCGCGCCAGGCGAAGGAGGTCTCCGCCCAGGCGTCGTCGATCGCGGCGCGCACCGGGGCGTCACCGGACACGGCGGCACCGGCCGCCGGCACCTCGAGGCTGATGTCACCCGAGGTGTCCGCACCGACCGTGCGGTCGGCGACCAGCACGACGGCGGAGGTCGCCGGGACCGTCACCGTGACCTCGCCGGCGCCGTCGGCGGTGACCTCGCCGGTCTCCCCGTACAGCGCGCCGTACGTAGCCCCCGGGGTGAGGGTGGTGAAAGTGGCCGTGCGCTCCTCGGAGGCGTTGTTCAGGGCGACGAGGTGCTCGACCTTCTCCTCCCGGTCGACGCGGCTGAACGCGTAGMPEYTPSARSVRRAFSQSGVQSPAQPISLLWLPGTVTMSMSLGGSSSPATPETSTPTEANVEAAARSPSASVVTARYSTRVPSGKPAAVWKTRGVVSSAVPSGCQSVVPTSRQAKEVSAQASSIAARTGASPDTAAPAAGTSRLMSPEVSAPTVRSATSTTAEVAGTVTVTSPAPSAVTSPVSPYSAPYVAPGVRVVKVAVRSSEALFRATRCSTFSSRSTRLNANANANANANA
AK018_04136726atpD_2ATP synthase subunit betaATGGCGGAGTACTTCCGCGACGTCAAGAAGCAGGACGTGCTGCTGTTCATCGACAACATCTTCCGCTTCACGCAGGCGGGTTCCGAGGTCTCCACGCTGCTCGGCCGCATGCCGTCCGCCGTGGGCTACCAGCCGAACCTCGCCGACGAGATGGGTCTGCTGCAGGAGCGCATCACGTCCACGCGTGGTCACTCCATCACCTCGCTGCAGGCGATCTACGTGCCCGCGGACGACTACACCGACCCGGCGCCGGCGACGACGTTCGCCCACCTGGACGCGACGACGGAGCTCTCGCGCGAGATCGCCTCGCAGGGTCTGTACCCGGCGATCGACCCGCTGACCTCCACCTCGCGCATCCTCGACCCGCGGTACGTGGGCCAGGAGCACTACGAGGTCGCCACGGCGGTCAAGCAGATCCTGCAGCGCAACAAGGAGCTGCAGGACATCATCGCGATCCTCGGTGTCGACGAGCTCTCGGAGGAGGACAAGACGCTGGTGGCCCGTGCGCGCCGCATCCAGCAGTTCCTCTCCCAGAACACCTACATGGCCAAGAAGTTCACCGGTGTCGAGGGTTCCACGGTGCCGCTGAGCGAGACGGTCGAGGCGTTCAAGAAGATCACCGAGGGCGAGTACGACCACGTGGCCGAGCAGGCCTTCTACAACATCGGTGGTCTCGAGGACCTCGAGCGCAACTGGGCGCGCATCCAGAAGGAGTACGGGGCCTGAMAEYFRDVKKQDVLLFIDNIFRFTQAGSEVSTLLGRMPSAVGYQPNLADEMGLLQERITSTRGHSITSLQAIYVPADDYTDPAPATTFAHLDATTELSREIASQGLYPAIDPLTSTSRILDPRYVGQEHYEVATAVKQILQRNKELQDIIAILGVDELSEEDKTLVARARRIQQFLSQNTYMAKKFTGVEGSTVPLSETVEAFKKITEGEYDHVAEQAFYNIGGLEDLERNWARIQKEYGAPGPT0014296_621DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014296-atpD-K02112NANA
AK018_04137288atpC_2COG0355ATP synthase epsilon chainATGGCAGAGCTGAACGTCGATCTCGTCGCGGCCGACCGCAAGGTCTGGTCCGGCGCGGCGCGCGAGGTCAGCGCCCCGTCCGCCGACGGTCAGATCGGCATCCTCGCCGGACACACGCCGCTGCTCGCGGTGCTGCGCCCCGGCACCGTCAAGGTCTCCACCGCACCGGGCCAGGTCGCGGTCGAGGCTCAGGTCAGCGGCGGGTTCGTGTCCGTCGACGACGACGTCGTCACGCTCGTGGTCGACGACCTCTCCGAGGTCGGCGGCCACGCGGGGACGCGAGCCTGAMAELNVDLVAADRKVWSGAAREVSAPSADGQIGILAGHTPLLAVLRPGTVKVSTAPGQVAVEAQVSGGFVSVDDDVVTLVVDDLSEVGGHAGTRAPGPT0014295_4016DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014295-atpC-K02114NANA
AK018_04138423hypothetical proteinATGGGTCAGTACGTGCTCGTGGCGCTCGGCGTCATGCTGCTCGTGCTGGTCCTGGTCGCGCTGGCCGGGGCGTCCCGGCTGCGTACCCTGTCGCACCGGGTCGGGTCGTTCCAGTGCAGCGCCCGGGCCGGCAGCCGGCCGCAGGCCGCCTGGTCGGTCGGTATCGCCCAGTACGGCGCGGGACGCATCGACTGGTGGCGCTGCTGGTCGCTGGCCCCCCGCCCGGCGCGGACGTGGCAGCGTGACCGGCTCGCGATCACCGGCCGGGTCTCGCTCGACCAGGCCGGACAGCCCGACCTGGTCCTGGTCCGCTGCCGTTACGACGGCACGGACTTCGAGCTGACGATGTCGCCCGGGGCATACTCGGGCCTGGCGTCGTGGCTGGAGTCCGCACCCCCGGGTCGCCGCGACCTCGTTGTCTGAMGQYVLVALGVMLLVLVLVALAGASRLRTLSHRVGSFQCSARAGSRPQAAWSVGIAQYGAGRIDWWRCWSLAPRPARTWQRDRLAITGRVSLDQAGQPDLVLVRCRYDGTDFELTMSPGAYSGLASWLESAPPGRRDLVVNANANANANA
AK018_04139696nucS_2COG1637Endonuclease NucSGTGCGTCTCGTCGTCGCCCGCTGCTCGGCCCGGTACACGGGTCGGCTGACCGCCCATCTGCCGCCGGCTACCCGGCTGCTGCTCGTCAAGGCGGACGGCAGCGTGCTGCTGCACTCCGACGGCGGGTCGTACAAGCCGTTGAACTGGATGAGCCCGCCCTGCACGACGGCGGTCCGCGACCCGGAGCCGGAGGCCGTCGAGCGCGGCGTGGTCGAGGTCTGGGCAGTGCAGCACCAGAAGTCCGACGACCGGCTCGAGATCGAGCTGTACGAGGTGCTGCACGACTCCGCGCACGAGCTCGGCGTCGACCCCGGCCTGGTGAAGGACGGGGTGGAGGCGCACCTGCAGGAGCTGCTCGCCGCCCAGATCGACCTGCTCGGTGCGGGGCACTCGCTCGTGCGCCGGGAGTACATGACGGCGATCGGGCCGGTGGACATCCTCGCCCGGGACGCGGACGGTGCGTCGGTCGCGGTGGAGATCAAGCGTCGTGGCGAGATCGACGGGGTCGAACAGCTGACGCGCTACCTGGATCTGCTCAACCGTGACCCGCTGCTGGCGCCGGTGCGAGGTGTGTTCGCCGCCCAGGAGATCAAGCCGCAGGCCCGGGTGCTCGCCACCGACCGGGGGATCGACTGCCTGGTGCTCGACTACGACGCGATGCGTGGGGTCGACGACCCGGGGTCGCGGCTCTTCTGAMRLVVARCSARYTGRLTAHLPPATRLLLVKADGSVLLHSDGGSYKPLNWMSPPCTTAVRDPEPEAVERGVVEVWAVQHQKSDDRLEIELYEVLHDSAHELGVDPGLVKDGVEAHLQELLAAQIDLLGAGHSLVRREYMTAIGPVDILARDADGASVAVEIKRRGEIDGVEQLTRYLDLLNRDPLLAPVRGVFAAQEIKPQARVLATDRGIDCLVLDYDAMRGVDDPGSRLFNANANANANA
AK018_041401269nagA_2COG1820N-acetylglucosamine-6-phosphate deacetylaseATGACCAGCGATCGCGACACCGACGTCCTCGTCCCGGAACCGCCCCAGGTCTTCGCCCTGCGCGGTGACGTCGTCACCCCCGACGCCGTCGTCCCCGACGGCGCGGTCGTGGTGGCCGACGGCACGATCGTGTGGGTCGGGCCGATCGAGGAGGCCGCGGGGGCCGGCGTGGGCGACGAGGTCGCCGCGGCGGAGGAGCCCCCGCCCGGCACGTACGTGCTGCCCGGGCTGGTCGACCTGCACAACCACGGCGGCGGGGGAGCGGGCTTCCCCGACGCCGCCGACGCGGACGAGGCCCTGCGCGCCGTCGTCGAGCACCGGACGCACGGGACGACGACGCTGCTCGCCTCCCTGGTGACGGCTCCCACGGAGACGCTCCTGCGCCAGCTCGAGCTGCTGAGCGGCCTGGCCGAGGCCGGCGAGATCGACGGCATCCACGCCGAGGGGCCGTTCCTCGCGGCCGCGCGGTGCGGCGCCCAGGACCCGCGCTACCTGATCCCCGGCGACGTCACGCTCGTGCGCGAGCTCGTGGAGGCGGCGGGTGGCCACCTGCGGACCATGACCGTCGCACCCGACGTCGACGGCGTCGGAGGGCCCGGCGGGGCGGCGGTCGCGCTCGTCCGGGCGGGTGTGATCCCGTCGCTCGGGCACACCGACAGCAGCGCCGCGCAGGCCGAGGACCTGGTGGGCCAGGTCCTCGGTGCCCTGGCCGAGGCGCCCGGACCCCGCCGCCGGATGACCGCCACGCACCTGTTCAACGGGATGCGCCCGCTGCACCACCGGGATCCCGGGCCGATCGCCGCCTGTCTCGCGGCGGCGTCGCGGGGCGACCTGGTCGTCGAGCTGATCGGCGACGGCGTCCACCTCGATCCGGCGACGGTGCGGACCGTGACCGAGACGGTGGGCGCGGACCAGGTCGCCCTGGTCACCGACGCCATGGGTGCGGCCGGGATGGCCGACGGGGCCTACCGGCTCGGTCCCCAGGACGTGACGGTGACCGATGGCGTCGCGCGCCTGACCGACCCCGAGGACCCCGGCAACGGCGCCATCGCCGGCGGGACCGCGCACCTGGTCGACGTGGTGCGCAGCGCGGTCGTGGACGCCGGCCTGCCCCTGGTGACGGCGGTGCGCTGCGCCTCGTGGGTCCCCGCGGGCGTGCTCGGCCGCGACGACGTCGGCGGTCTGGTCGCCGGGCGCCGCGCCGACGTCGTCGTGACCGACCGGGACCTGCGGGTGCAGCACGTGTGCCGGGGCGGCCGGCCCGTCTGAMTSDRDTDVLVPEPPQVFALRGDVVTPDAVVPDGAVVVADGTIVWVGPIEEAAGAGVGDEVAAAEEPPPGTYVLPGLVDLHNHGGGGAGFPDAADADEALRAVVEHRTHGTTTLLASLVTAPTETLLRQLELLSGLAEAGEIDGIHAEGPFLAAARCGAQDPRYLIPGDVTLVRELVEAAGGHLRTMTVAPDVDGVGGPGGAAVALVRAGVIPSLGHTDSSAAQAEDLVGQVLGALAEAPGPRRRMTATHLFNGMRPLHHRDPGPIAACLAAASRGDLVVELIGDGVHLDPATVRTVTETVGADQVALVTDAMGAAGMADGAYRLGPQDVTVTDGVARLTDPEDPGNGAIAGGTAHLVDVVRSAVVDAGLPLVTAVRCASWVPAGVLGRDDVGGLVAGRRADVVVTDRDLRVQHVCRGGRPVPGPT0018860_213DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018860-nagA-K01443NANA
AK018_041411449Bifunctional beta-D-glucosidase/beta-D-fucosidaseGTGAGCACCATCAACGCCGGCACGTTCGGCCAGGACTTCCTGTGGGGGACCGCCACCGCGGCCTACCAGATCGAGGGCGGCGCCACCGAGGGCGGTCGGGGGCCGTCGATCTGGGACACGCTGTGCCGCGTCCCCGGCGCTGTGCAGGGCGGCGACACCGGCGACGTCGCCTGCGACCACTACCACCGGTGGCGTGAGGACGTCGACCACCTCGAGCGCCTCGGCGTCGGCGGCTACCGCCTGTCGATCTCCTGGCCCCGGGTCCAGCCCGGCGGTCGCGGACCGCTGAACCCCGAGGGCGTCGCCTTCTACCGCGACCTGCTCGACGCGCTGCGGAGCAAGGGGATCACCCCCTTCGTGACGCTCTACCACTGGGACCTGCCCCAGGAGCTCGAGGACGCCGGCGGGTGGGCCGTGCGGGAGACCGCCGAGGCCTTCGCCGACTACGCCCGGGCCATGGCCCGCGAGCTCGGGGACCGCGTCGCGACGTGGACGACGCTCAACGAGCCGTGGTGCAGCGCCTATCTCGGGTATGCCTCCGGCGTGCACGCTCCCGGACGGACCGAGCCGGCGTCGGCGCTCGCGGCGGTGCACCACCTGAACCTCGCGCACGGCCTGGCGGTGCGTGCGATCCGCGAGGAGCTGCCCGGGGCGCAGTGCTCGATCACGCTGAACCTGCACGTCTTCCGCGCCGCGACCGCCTCGGACCAGGACGCCGACGCCGTGCGCCAGGTCGACGGCCTCGCCAACCGGGTGTTCCTGGGCCCGCTGCTCGAGGGCACCTACCCCGACGACGTGCTCGCCGATACCGCGGACGTCTCGGACTGGTCGTTCGTGCGCGACGGCGACCTCGACGTCACGCGGCAGCCGATCGACGTGCTCGGGGTGAACTACTACTCGTCGACCCGGGTGCGGCGGTTCTCCGGCAACGGCGAGCCGGTGCGCGCCGACGGGCACAGGACGACCGTGACCTCGCCCTGGGTCGCCGCGGACGACGTCGAGTTCCTGCCCCAGCCCGGTCCGCACACCGCGATGGGCTGGAACGTGGAGCCGGCGGGGCTGACGGAGCTGCTGGTCTCGCTGCACGAGCGCTACCCGGACCAGCCGCTGGCGGTGACGGAGAACGGCGCGGCGTTCGACGACGTCGTCGTGCCCGACACGGCGCTCGGGATCGACCGGGTGCACGACGTCGCGCGTGTCGCCTACCTGCGCGACCACGTGGCGGCCGTCGGTGCGGCGATCGACGCGGGTGCGGACGTGCGCGGCTACTTCGCCTGGTCGCTCATGGACAACTTCGAGTGGGCCTACGGCTACTCGAAGAGGTTCGGCCTGCTCCGCGTCGACTACGACACGGGCGAGCGCACCTGGAAGGACTCGGCCTACTGGTTCGCCCGCCTGGCCCGGACCGGTCGGCTCCCGGCGGTGTTCGAGGCGCAACCGGTCCTCTGAMSTINAGTFGQDFLWGTATAAYQIEGGATEGGRGPSIWDTLCRVPGAVQGGDTGDVACDHYHRWREDVDHLERLGVGGYRLSISWPRVQPGGRGPLNPEGVAFYRDLLDALRSKGITPFVTLYHWDLPQELEDAGGWAVRETAEAFADYARAMARELGDRVATWTTLNEPWCSAYLGYASGVHAPGRTEPASALAAVHHLNLAHGLAVRAIREELPGAQCSITLNLHVFRAATASDQDADAVRQVDGLANRVFLGPLLEGTYPDDVLADTADVSDWSFVRDGDLDVTRQPIDVLGVNYYSSTRVRRFSGNGEPVRADGHRTTVTSPWVAADDVEFLPQPGPHTAMGWNVEPAGLTELLVSLHERYPDQPLAVTENGAAFDDVVVPDTALGIDRVHDVARVAYLRDHVAAVGAAIDAGADVRGYFAWSLMDNFEWAYGYSKRFGLLRVDYDTGERTWKDSAYWFARLARTGRLPAVFEAQPVLPGPT0019165_731DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
AK018_04142243nrdH_2COG0695Glutaredoxin-like protein NrdHATGAGCGTCACGGTCTACAGCAAGCCGGCCTGCGTGCAGTGCGACGCGACCTACCGTGCCCTCGACCGCAAGGGCGTGGAGTACGACGTCGTCGACATCACGCAGGACGCCGACGCGCTCGAGATGGTCCGTGGGCTCGGCTACCTGCAGGCGCCGGTCGTCGTCGCCGGCGACACCCACTGGTCGGGCTTCCGCCCCGACCAGATCAGCGCCGTCGCGGCGCAGCAGGCCGTCTCAGCCTGAMSVTVYSKPACVQCDATYRALDRKGVEYDVVDITQDADALEMVRGLGYLQAPVVVAGDTHWSGFRPDQISAVAAQQAVSANANANANANA
AK018_04143432nrdI_2COG1780Protein NrdIATGGGATCGCTCGTCTACTTCTCCAGCGTCTCGGAGAACACGCACCGCTTCGTCCAGCGCCTCGGGCTGGAAGAGCTCGGGATGTCGGTCCACCGCATCCCGCTGCGTCCGTCCGACGGCTTCCTGACCGTCGACGAACCGTACGTCCTGATGGCCCCCACCTATGGCGGGGGCAACGAGGGCGGCGCCGTCCCGCGGCAGGTGCGCAAGTTCCTCGGGGACGTGGGGAACCGTTCCTTGATCCGCGGCGTCGTGGCCGCGGGCAACACCAACTTCGGCGCTGCGTACTGCATCGCCGGCGACATCATCTCCGCGAAGTGCCAGGTGCCCTACCTGTACGCCTTCGAACTTCTCGGGACGGCCGAGGACGCCCAGCGCGTCCGTGACGGATTGGGACGATTTTGGCAACGACAGTCACTGATCTCGGCGTGAMGSLVYFSSVSENTHRFVQRLGLEELGMSVHRIPLRPSDGFLTVDEPYVLMAPTYGGGNEGGAVPRQVRKFLGDVGNRSLIRGVVAAGNTNFGAAYCIAGDIISAKCQVPYLYAFELLGTAEDAQRVRDGLGRFWQRQSLISAPGPT0021340_1491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525NANA
AK018_041442169nrdE2_2COG0209Ribonucleoside-diphosphate reductase subunit alpha 2GTGAGCGCAACCTCCGCCGACGCTCCGGAGCAGACCGGGAGCGTGACGCTGCAGCAGTCCGAGCTCGACTACCACGCGCTCAACGCGATGCTGAACCTCTACGGGCCGGACGGCGAGATCCAGTTCGAGAAGGACCGCGAGGCCGCGGCGGCCTACTTCCGTCAGCACGTGCTGCCCAACACGATCGAGTTCGACACGCTCGACGCCAAGCTCGACCACCTGGTCGAGAACAAGTACTACGACCCCGCCGTGCTGGCCAAGTACTCCCGGGCGTTCGTCAAGGAGCTGTTCCAGCGGGCGTACGCCGCGGACTTCCGGTTCGAGTCGTTCCTCGGCGCGTTCAAGTACTACACGTCGTACACGCTCAAGACGTTCGACGGCAAGAAATATCTCGAGCGGTTCGAGGACCGCGTCTCGATGGTCGCCCTCGGCCTGGCGGACGGCGACGAGCAGGTCGCCCGCGACATCGTCGACGAGGTCATCGCCGGGCGGTTCCAGCCCGCGACCCCGACGTTCCTCAACGTGGGCAAGGCGCAGCGCGGCGAGCCCGTGTCCTGCTTCCTGCTGCGCATCGAGGACAACATGGAGTCCATCGCGCGCGGCATCAACTCCGCCCTGCAGCTCTCCAAGCGCGGCGGCGGCGTCGCCCTGCTGCTCAGCAACGTGCGCGAGCACGGCGCGCCCATCAAGCACATCCAGAACCAGTCCTCCGGCGTCATCCCCGTTATGAAGCTGCTGGAGGACTCGTTCTCCTACGCCAACCAGCTCGGGGCACGCCAGGGCGCCGGCGCCGTCTACCTGCACGCCCACCACCCCGACATCCTGCGGTTCCTCGACACCAAGCGCGAGAACGCCGATGAGAAGATCCGCATCAAGACCCTCTCGCTCGGCGTCGTCATCCCGGACATCACGTTCGAGCTGGCCAAGCGCAACGAGGACATGCACCTGTTCAGCCCGTACGACGTCGAGCGCGTGTACGGCAAGCCGTTCGCCGACATCTCGATCACCGAGAAGTACGACGAGCTCGTCGCCGACGACCGCATCACCAAGAAGACGATCAGGGCCCGCGACTTCTTCCAGACGATCGCGGAGCTGCAGTTCGAGTCCGGGTACCCGTACGTGATGTTCGAGGACACCGTGAACCGCGCGAACCCGATCGCCGGACGCATCACCCACTCGAACCTGTGCTCGGAGATCCTCCAGGTCTCCACGGCGTCGACCTTCAACGAGGACCTGTCGTACGACGAGGTCGGCCGGGACATCTCCTGCAACCTCGGGTCCCTGAACATCGCCAGGACGATGGACTCGCCCGACTTCGGGCACACCATCGACACCGCGATCCGGGCGCTCACCGCCGTGTCGGACCAGACGAGCATCGAGTCGGTGCCGTCGGTGAAGAAGGCGAACGAGCTCGGTCACGCCATCGGCCTCGGCCAGATGAACCTGCACGGCTACCTCGCGCGCGAGCGGATCCACTACGGGTCGACCGAGGGCATCGACTTCACCAACATCTACTTCTACACCGTCGCCTACCACGCGATCGCGGCCTCCAACCGGCTCGCGAAGGAGCGTGGCCGGGCGTTCGGCGGGTTCGCGGACTCGGCGTACGCCTCGGGTGAGTACTTCGACAAGTACACCGACGCCGAGTGGAAGCCGGCGACCGAGCGCGTCGCCCGACTGTTCGCGGACGCCGGCGTGCACGTGCCGACGCAGGACGACTGGCGTGCACTGAAGGCGTCCGTCATGGAGCACGGGATCTACAACCAGAACCTCCAGGCGGTGCCCCCGACCGGGTCGATCAGCTACATCAACCACTCGACGTCGTCGATCCACCCGGTGGCGGCGAAGATCGAGATCCGCAAGGAAGGCAAGCTCGGCCGCGCCTACTACCCGGCGCCGTACATGACGAACGACAACCTGGAGTACTACCAGGACGCGTACGAGATCGGGTACGAGAAGATCATCGACACCTACGCCGCGGCCACGCAGCACGTGGACCAGGGGCTGTCGCTCACCCTGTTCTTCCCGGACACGGTCACCACCCGCGACGTCAACAAGGCGCAGATCTACGCCTGGCGCAAGGGCATCAAGACGCTCTACTACATCCGCCTGCGCCAGCTGGCGCTCGAGGGGACCGAGATCGAGGGCTGCGTCAGCTGCATGCTGTGAMSATSADAPEQTGSVTLQQSELDYHALNAMLNLYGPDGEIQFEKDREAAAAYFRQHVLPNTIEFDTLDAKLDHLVENKYYDPAVLAKYSRAFVKELFQRAYAADFRFESFLGAFKYYTSYTLKTFDGKKYLERFEDRVSMVALGLADGDEQVARDIVDEVIAGRFQPATPTFLNVGKAQRGEPVSCFLLRIEDNMESIARGINSALQLSKRGGGVALLLSNVREHGAPIKHIQNQSSGVIPVMKLLEDSFSYANQLGARQGAGAVYLHAHHPDILRFLDTKRENADEKIRIKTLSLGVVIPDITFELAKRNEDMHLFSPYDVERVYGKPFADISITEKYDELVADDRITKKTIRARDFFQTIAELQFESGYPYVMFEDTVNRANPIAGRITHSNLCSEILQVSTASTFNEDLSYDEVGRDISCNLGSLNIARTMDSPDFGHTIDTAIRALTAVSDQTSIESVPSVKKANELGHAIGLGQMNLHGYLARERIHYGSTEGIDFTNIYFYTVAYHAIAASNRLAKERGRAFGGFADSAYASGEYFDKYTDAEWKPATERVARLFADAGVHVPTQDDWRALKASVMEHGIYNQNLQAVPPTGSISYINHSTSSIHPVAAKIEIRKEGKLGRAYYPAPYMTNDNLEYYQDAYEIGYEKIIDTYAAATQHVDQGLSLTLFFPDTVTTRDVNKAQIYAWRKGIKTLYYIRLRQLALEGTEIEGCVSCMLPGPT0021340_4530DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525NANA
AK018_04145981nrdF2_2COG0208Ribonucleoside-diphosphate reductase subunit beta nrdF2ATGGCACCCACCGGACAGCTCAAGCTCATCGACCGCGTCAGCGCGATCAACTGGAACCGCCTGCAGGACGAGAAGGACCTGGAGGTGTGGGACCGGCTGGTCGGCAACTTCTGGCTGCCGGAGAAGGTCCCGGTGTCCAACGACATCCAGTCGTGGAACACCCTCTCCGAGGCGGAGAAGCTCATGACCACCCGGGTGTTCACCGGTCTCACGCTGCTGGACACGATCCAGGGCACGGTCGGGGCGGTCTCCCTGATCCCGGACGCGCTGACCCCGCACGAGGAGGCGGTGTACACCAACATCGCGTTCATGGAGTCGGTGCACGCCAAGAGCTACTCGTCGATCTTCTCCACGCTGATCTCCACCAAGGAGATCGACGAGGCCTTCGCCTGGTCCGAGCAGAACCCGCACCTGCAGCGCAAGGCCGAGATCGTCCTCGAGTACTACCGCGGCGACGACCCCCTCAAGCGCAAGGTCGCCTCCACCATGCTCGAGTCGTTCCTGTTCTACTCGGGTTTCTACGCCCCGATGTACTGGTCGAGCCGCGCCAAGCTGACGAACACGGCCGACGTCATCCGCCTCATCATCCGCGACGAGGCCGTCCACGGGTACTACATCGGCTACAAGTACCAGAAGGGACTGGCCAAGCTCTCGGCCGCCGAGCAGGAGGAGATGAAGGGCTACACCTTCGAGCTCCTCTTCGAGCTGTACGAGAACGAGGTGGAGTACACCGAGTCGTTGTACGGCGAGCTGGGGCTCACCGAGGACGTCAAGAAGTTCCTGCGGTACAACGCCAACAAGGCGTTGATGAACCTCGGCTACGAGGGCCTGTTCCCCAAGGACGAGACCGACGTCAACCCGGCGATCCTCGCGGCGCTGAGCCCGAACGCTGACGAGAACCACGACTTCTTCTCCGGGTCCGGTTCCTCTTACGTGATCGGCAAGGCCGTGGAGACCACGGACGACGACTGGGACTTCTGAMAPTGQLKLIDRVSAINWNRLQDEKDLEVWDRLVGNFWLPEKVPVSNDIQSWNTLSEAEKLMTTRVFTGLTLLDTIQGTVGAVSLIPDALTPHEEAVYTNIAFMESVHAKSYSSIFSTLISTKEIDEAFAWSEQNPHLQRKAEIVLEYYRGDDPLKRKVASTMLESFLFYSGFYAPMYWSSRAKLTNTADVIRLIIRDEAVHGYYIGYKYQKGLAKLSAAEQEEMKGYTFELLFELYENEVEYTESLYGELGLTEDVKKFLRYNANKALMNLGYEGLFPKDETDVNPAILAALSPNADENHDFFSGSGSSYVIGKAVETTDDDWDFPGPT0021345_3015DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021345-nrdB|nrdF-K00526NANA
AK018_041461809yfkN_2COG0737Trifunctional nucleotide phosphoesterase protein YfkNGTGTCCTCACTCCGCAGCCGACTCATCCCCGCAGCCGCGGCCCTCGGCGCCGTCGCTCTCACCGCCGGGCTGGCCTCGCCAGCCGTGGCCGGTGACCGCGACCGGCGTCACGGCCACAGCGGCGCCGACTTCACCCTGACGATCCTGCACAACAACGACGGCGAGTCGAGCCTGCTGCCGACGACGGTCGACGACGCCGAGTACGGCGGCATCGCCCGGTTCGTCCGCAAGGTCGACACCCTGCGGTGGCGCTCGTACCTCAACTACGACCGCGGCGAGTCGTTCAAGCGCGGCGTCGTCACGCTGAACTCCGGGGACAACTTCCTCGCGGGCACGACGTTCCAGGCCTCGCGCGAGGAGGGCGCGCCGTTCTACGACGCGGTGGCCCAGAACCTCATCGGCTACGACGCTCTCGGCGTGGGCAACCACGAGTTCGACTTCGGTCCCGGCGTGTTCGGCGAGCTGGTGCGCGACGTCAAGCGCACCCCGTTCGTCTCCGCCAACCTCGACTACTCGGCGGAGGACTCCCTGGCCGGCCTGCGCCAGCTCGTCCCCAGCACCGTGATCCGCGAGCGCGGCGAGAAGGTCGGCGTCGTCGGCCTGACCACGCCGTCGCTGCCGACGATCTCCTCGCCGGGTGACGTCGAGGTCCTGACCGACCTCGCCGGGATCGCGCAGGAGCAGGTCGACGCGCTCACCGAGCGCGGCGTGGACAAGATCATCCTGGTCTCGCACCTGCAGGGGCTGAGCAGCGAGCTCGAGCTGGTCGGCTCGCTGACCGACGTCGACGTCGTCATCGGCGGCGGCGGCGACGAGATCCTCGCCGACGACTCGACCCAGCTCTTCCCGGGGGACGCCGACGACGTGTACGGCGAGTACCCCCAGATCGCCACGGACGCGGACGGCACCGAGGTGCCGGTGGTGACGACCCCCGGCAACTACCGGTACGTCGGCCAGCTGGAGGTCACGTTCGACCGCAAGGGCGACGTCGTCGGCATCGACGGCGGCGACTCGGGAATCAAGGTCGTCACCGACACCGGTGCCGAGGCCGTGGGCACGAGCTGGAAGGCCGAGCGCAAGATCGAGCGGCCGGTGGCGGCGTACGAGGCCGCCCTGGCCGAGGACATCGTGGCGACCAGCGACGTGGTCCTCGACTGCGAGCGCAGCGAGGTGCGCGGTGTCGAGGCGAACTGCGGCAACCTGATCGCCGACGCCCACCTGTGGACCGCGCAGCAGGCGGCCGCGGACTTCGGTCTGGACGCACCGCAGGTGGCGATCCAGAACGGTGGCGGCATCCGCGGCGAGATCGACCAGGAGGCCGGTCCCGTCTCGGTCGCCGACACGTTCCGGCTGCAGCCGTTCGGCAACTTCGTCGCCATCGCCGAGGACGTGCCGGTCGAGACGTTCCGCCAGATCCTGGAGGAGGGTGCCTTCCGTCTCCCCGAGTCCGGGGACGGCGCGTTCGTCCAGGCTGCCGGCTTCAGCTACACCGTCGACACCTCCTTCCCGGCCCGCGACGCGGACCAGTCCACCGGTGAGCAGTTCGCCCCGGGTGAGCGGGTCCGCTCGGTGGTGCTGGACGACGGCACGGTCCTCGTCGAGGACGGCGTGTCGATCGACGGCACGGTCGACGTCGCCGGCCTGAACTTCTCGCTGAACGGCGGGGACGCCTACCCGACGCTCGAGAACACCACCATCGGTGTCTCCGACCAGCAGTCCCTCGAGAACTTCCTGGTCGACGGTCTCGGCGGGGTCGTCAGCCAGGCCGACTACCCGCGCGGCGGGGAGGGGCGGATCACGATCGAGTGAMSSLRSRLIPAAAALGAVALTAGLASPAVAGDRDRRHGHSGADFTLTILHNNDGESSLLPTTVDDAEYGGIARFVRKVDTLRWRSYLNYDRGESFKRGVVTLNSGDNFLAGTTFQASREEGAPFYDAVAQNLIGYDALGVGNHEFDFGPGVFGELVRDVKRTPFVSANLDYSAEDSLAGLRQLVPSTVIRERGEKVGVVGLTTPSLPTISSPGDVEVLTDLAGIAQEQVDALTERGVDKIILVSHLQGLSSELELVGSLTDVDVVIGGGGDEILADDSTQLFPGDADDVYGEYPQIATDADGTEVPVVTTPGNYRYVGQLEVTFDRKGDVVGIDGGDSGIKVVTDTGAEAVGTSWKAERKIERPVAAYEAALAEDIVATSDVVLDCERSEVRGVEANCGNLIADAHLWTAQQAAADFGLDAPQVAIQNGGGIRGEIDQEAGPVSVADTFRLQPFGNFVAIAEDVPVETFRQILEEGAFRLPESGDGAFVQAAGFSYTVDTSFPARDADQSTGEQFAPGERVRSVVLDDGTVLVEDGVSIDGTVDVAGLNFSLNGGDAYPTLENTTIGVSDQQSLENFLVDGLGGVVSQADYPRGGEGRITIEPGPT0013400_458DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013400-ushA-K11751NANA
AK018_04147498gpt_2Xanthine phosphoribosyltransferaseATGACGAGTGCGGAGCGCGAGATCCTGACCTGGTCCGACTTCGGCGACGCGGCGCGCCGACTGGCCGAGGACGTCGTCGCCGACGGGTTCCGACCCGATGTCGTCGTCGCCGTGGCCCGCGGCGGACTGGTGCCGGGCGGTGCCGTCGCCTACGCCCTGGGCACCAAGGGCGTCGGGACGATGAACGTCGAGTTCTACACCGACATCGGACGCACCCTCGACGACCCGCGCATCCTGCCGCCGCTGATGGACACCTCCGAGCTGCCCGGCTCCCGCGTGCTCGTCGTGGACGACGTCGCGGACTCGGGACGGACGCTGGAGCTGGTCATGCGCAAGCTGGGCGAACGTGGTGCCGACGCGCGCTCGGCCGTCCTGTACACCAAGCCACGGTCGATCATTCGGCCCGACTACTCCTGGCGGGAGACGGACCTGTGGATCACGTTCCCCTGGTCCGCCGACCCACCGGTCGAGGGCGCCGCGCCCGAGGTCGTGGCGTGAMTSAEREILTWSDFGDAARRLAEDVVADGFRPDVVVAVARGGLVPGGAVAYALGTKGVGTMNVEFYTDIGRTLDDPRILPPLMDTSELPGSRVLVVDDVADSGRTLELVMRKLGERGADARSAVLYTKPRSIIRPDYSWRETDLWITFPWSADPPVEGAAPEVVAPGPT0007300_803DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0007300-gpt-K00769NANA
AK018_04148969hypothetical proteinGTGAAGCTCCGTACCGCAGGCGTCGCCGCAGCGCTCGCCTCCACCCTCCTGCTCGCCTCGTGCTCCGACGGAGGGTCGGCCGAACCGACGGCGTCGGAGTCCGCGTCGACGGAGGCCACGCAGTCGGCCGAGGCGACGGCACCGCCGGAGCCCACCGAGGAGGACGTCGCTGCGCTCGAGGCGGTCGAGGTGACGGGTGACCCCGGTGAGGAGCCGGAGCTGTCCTACGACTCGATCGAGGTGTCCGTGCCGACCTCGCGGGTCGTCGACGAGGGTGACGGGGACGAGATCGCCGAGGGCATGAAGGTCACGATGCAGTACGTGGCCTACGACGCCGCGGGCGAGCGGATCGGGTCGACCTGGGAGACCGACGCCCCCGAGAGCTTCTTCTTCGGCGAGGCGAACTACTCGCTGCTGACCGACCCGCTGGCCGGTCAGCAGGTCGGCGCGCGCATCCTGATCGCGAACCCCACCTACGACGCCGAGAACAACCCGACCACCGTCGTCAACCTCATCGAGGTCACCGACGTCATCGAGGTGCCGACCCGCGCCGAGGGTGAGGCCGTCGAGCCCGCCGAGGGCCTGCCGACCGTCTCCCTGGCCGACGACGGCACCCCGTCCGTCGAGATCCCCGACGGCTACGAGGCGCCCGACGAGCTCGTGGCCCAGACCCTGATCCGGGGTGACGGCGCCGAGGTCTCCGCCGACCAGACCGTCCGCGCCCACTACACCGGCTGGACCACCGACGGCGAGGTCTTCGACTCCTCCTGGGAGCGCGGCGAGCCCGCGTCCTTCTCCCTGCAGGCCGTCATCGAGGGCTGGACCGAGGGCCTGTCCGGCCAGACCGTCGGCAGCCAGGTGCTGCTCGTGATCCCCGCCGCGCAGGCCTACGGCGCCGAGGAGAGCGAGGAGAACGAGCTCGCCGGTCAGGACCTGATCTTCGTCGTCGACATCCTCGACGCCTCCTGAMKLRTAGVAAALASTLLLASCSDGGSAEPTASESASTEATQSAEATAPPEPTEEDVAALEAVEVTGDPGEEPELSYDSIEVSVPTSRVVDEGDGDEIAEGMKVTMQYVAYDAAGERIGSTWETDAPESFFFGEANYSLLTDPLAGQQVGARILIANPTYDAENNPTTVVNLIEVTDVIEVPTRAEGEAVEPAEGLPTVSLADDGTPSVEIPDGYEAPDELVAQTLIRGDGAEVSADQTVRAHYTGWTTDGEVFDSSWERGEPASFSLQAVIEGWTEGLSGQTVGSQVLLVIPAAQAYGAEESEENELAGQDLIFVVDILDASNANANANANA
AK018_04149300hypothetical proteinATGCCCTCACGTCGACCCTCCCGCAAGCGGCCCTGGAACGCCGAGCACCAGCCCCTCGACCTCGACCGGGCGCTCGGCGGCGTCCGGCACGTCAGCGGCGGAGACGGGGAGTGGACCGTGCGCCGCGTCAAGGGCGGCGACAAGGCGTACACGTGCCCCGCGTGCCACCAGACGATCCCTCCCGGCACGGCGCACGTCGTCGCGTGGCAGCGCGACGTCGTCGGCGGCGAGCAGGCCGGCCTGGAGGCGCGTCGGCACTGGCACCGGTCGTGCTTCGACCGGCGCGAACGCCTGCTCTGAMPSRRPSRKRPWNAEHQPLDLDRALGGVRHVSGGDGEWTVRRVKGGDKAYTCPACHQTIPPGTAHVVAWQRDVVGGEQAGLEARRHWHRSCFDRRERLLNANANANANA
AK018_04150780hypothetical proteinATGAACGACGACGCCGCCACCGGCCACCAGATCCGCTCGATGACCGTCCTGCCCGCCCGCCGCGAGGACGTCGACCTGCACACCGCGGACGGGCTGACGCTCGTCGGCGAGCTCGCGCTGCCCGCCGCGAAGGACCCCGCGGCGAGCCTGCTGACGCTGCACCCGCTGCCCACCCACGGCGGGTACATGGACTCCCACGTCTACCGCAAGGCCGCCTGGCGGCTGCCCGCCCTCGCCGACCTCGCCGTCCTGCGCTTCAACACGCGCGGCACCTCCTCGCCGCGCGGCACCTCCGAGGGGGAGTTCGACGGCGGTGACGCCGAGAGGTTCGACGTCGCGGCCGCGCTCGAGCTCGCCGAGTTCCGCGAGCTGCCCCGCCCGTGGCTCGTCGGCTGGTCCTTCGGCACCGAGCTGGTGCTCAAGCACGGCGCCGACCCGAGCATCGAGGGTGCGATCCTGCTCTCGCCGCCGCTGCACCGCGCCACCGACGCCGACCTGGACCGGTGGGCCGAGTTCGGCAAGCCGCTCGTGGTCCTGGTCCCCGAGCTCGACGACTACCTGCAGCCCGCCGAGGCCCGCGAGCGCTTCGCCCGCGTGCCGCAGGCCGAGGTCATCGGCGTCGACGGCGCCAAGCACCTCTGGGTCGGCGAGCCGGCCGTGCGCCGCGTGCTCGACGAGATCGTCCAGCACGTGCTGCCGGGTCACGACCCGCTGCCCACCCACTACGACGGCGACGTCGAGCAGGCCTCGGACGTCGCCCCGGCCACCACGAGAGGATGAMNDDAATGHQIRSMTVLPARREDVDLHTADGLTLVGELALPAAKDPAASLLTLHPLPTHGGYMDSHVYRKAAWRLPALADLAVLRFNTRGTSSPRGTSEGEFDGGDAERFDVAAALELAEFRELPRPWLVGWSFGTELVLKHGADPSIEGAILLSPPLHRATDADLDRWAEFGKPLVVLVPELDDYLQPAEARERFARVPQAEVIGVDGAKHLWVGEPAVRRVLDEIVQHVLPGHDPLPTHYDGDVEQASDVAPATTRGNANANANANA
AK018_04151792tgnD(E)-2-((N-methylformamido)methylene)succinate hydrolaseATGACGCGACCGCACCTGGCCACGACCGTTCTGCGCGACGGAGCCGGACCGCCGCTCGTGCTGCTGCACGGCTTCCCGCTGGACCTGCGGATGTGGCGGCCGGTGGCCGAAGCCCTGCCGGCCGGGATCCGTGTCATCGGCGTCGACCTGCCGGGCCAGGGCCACAGCGACCTCGACCGCCTGCCGCCGTCGCTCGACGCCGCGGCCGACGCCGTGCACGCCACCCTGCGGGCCCAGGGGGAGGGCAACGCGGTCGTCGTGGGGCTCTCGATGGGCGGCTACGTCGCGCTCGCGCTCGCCGAGCGGCACGGCGACTTCGTGCACGGCCTGGGGCTGGTCGATACGAAGGCCACCGCCGACACGCCCGAGGCGCGGGACAACCGCCGCAAGATCGCGCGGGACGTCGAGGACACCCAGACCGTGGACGCCGTGCGCGGCATGCCCGCCAAGCTCCTCGGCCCGACCAGCGAGCTCGAGCGTCGTGCCCTCTACCCGACCGTCGACCACTGGATCCGCAGCCAGTCCCCGACCGGCGTGGCCTGGGCCCAGCGCGCCATGGCGGCCCGCCCGGACCGCACCGCCGCGCTCGCCGACTTCGACGGGCCCGTGGCCGTCGTCGTCGGTGCCGAGGACGACATCACCCCGGTCGACGACGCCCGCCACATGGTGGAGGCGGCCCGTCACGGTGTCCTGACGGTGGTGCCGAACGCCGGCCACCTGACTGCCCTCGAGGAGCCCGCGGCCGTCGCGAAGGCCATCGCGGACCTGCACCACCGGGCCGCGCACGGCTGAMTRPHLATTVLRDGAGPPLVLLHGFPLDLRMWRPVAEALPAGIRVIGVDLPGQGHSDLDRLPPSLDAAADAVHATLRAQGEGNAVVVGLSMGGYVALALAERHGDFVHGLGLVDTKATADTPEARDNRRKIARDVEDTQTVDAVRGMPAKLLGPTSELERRALYPTVDHWIRSQSPTGVAWAQRAMAARPDRTAALADFDGPVAVVVGAEDDITPVDDARHMVEAARHGVLTVVPNAGHLTALEEPAAVAKAIADLHHRAAHGPGPT0004995_1363DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
AK018_041521482hypothetical proteinGTGTCCGACGAGCGCACGCTCTTCCCCATCACCATGCGCGGTTACGACCGGGCCGCGGTGGAGAACCAGATCTCCCGCCTCGAGCAGGCGGTGGACGAGGCCCGCCGCAACGTCGAGTCCACCGACGCACGCGCCATGCAGCTCTCGTCCGAGCTGGCCGAGGCGCACCGCCAGCTGCGGGAGAACGACAAGCCCTCCTACGCGGGCCTCGGGGCCCGCGCGGAGCGCCTCCTGCGGTCCGCGGACGAGCAGGCCGCCGAGGTGATGACCCAGGCGAACCAGCAGGCCTCGGACATCATGGCCCGCGCCAAGCTCTCCGCCGGGCAGGTGCGCCAGCGCGCCGAGTCGGAGGCCTCCGAGCTGCTCGCCAGCGCGCGGCGCGAGGCCGAGGAGGTGCGGTCCACGACCCGCGCGGAGGCCGAGGGCACCCTCCAGGGGGCCCAGCGGCGCGCCGAGGAGCTCGTCGGCTCCGCCGAGCGGGAGGCCGCGCTGATCACCAGCACGCTGACCACCGAGGAGAACGAGCGCCGCGCCGGCCTCGAGCGCGAGATCGGGACCCAGCGGTCCACGGCCGAGCGGGAGATCACCGAGGCCCGTGTTGCCGCGGACCGCGAGATCGCGCAGCTGCGCGCCGAGGCCGCGGCGGAGGCCGCCGCCGCGCGCGAGGAGGCCGAGCGGGAGGCCAACGACCTGCTGGAACGCACCCGGAACGAGGCCGCGCGGATCGTCGCCGAGGCCAAGCACCAGGCGGCGGAAGCCGCGAGCTCGGTCACCTCCGAGCTGGAGGAGCTGCGCGAGCGGGCGCGCCGGGAGCTGTCCGACGCCGAGCTCGAGGCCGCGCAGACCCGCGAGCGGGTCGAGGCCGAGGCCGCCGAACGCCACGAGACGGCGCGAGCCGAGACCGAACGGCTGATCGCCGTCGCCGAGGAGCACGCCTCCGAGGCGGAGAAGCGTGTCGCCGCAGCGCTGCAGCAGGCCGACCAGGTGCGGTCCGAGTCCGACACCTACGTCAAGGAGCTCGTCGCCGACGCGCGCCGCACGGCGGACTCCATCGTCTCCGAGGCCCGGACCTTCGCCGAGCAGACCGTCAACGACGCGCGGACCGAGGCCGACCAGAGCCGCACCACCGCGGAGCGCCAGCTCGAGGACCTCACCCGTCGCCACGACTCGATCAACTCCTACCTCGAGGAGCTGCGCGGCCTGCTGGGCACGGAGCGCGCCGAGGAGGCCGGGGGCGACGACACGGTGACCGAGGAGAGCCCCTCCTGGGCCGACTCGGCCCAGAGCGCGGCCGGCTCGCCCGCGGAGTCCTCGGCGTCCGGTGCGGGCGACGACGACGCCGAGGCCGGCACGCCGGCGCGGGACGCCTCCGACGGCAGGACCCCTGCCCAGGTGGCGCGCGCCGCGTCGACGCACTCCGCCGACGACGAGGCCGAGGCCGGTACCCCGGCCGACGACACCCCGGCCCGGTCGCAGGCCTGAMSDERTLFPITMRGYDRAAVENQISRLEQAVDEARRNVESTDARAMQLSSELAEAHRQLRENDKPSYAGLGARAERLLRSADEQAAEVMTQANQQASDIMARAKLSAGQVRQRAESEASELLASARREAEEVRSTTRAEAEGTLQGAQRRAEELVGSAEREAALITSTLTTEENERRAGLEREIGTQRSTAEREITEARVAADREIAQLRAEAAAEAAAAREEAEREANDLLERTRNEAARIVAEAKHQAAEAASSVTSELEELRERARRELSDAELEAAQTRERVEAEAAERHETARAETERLIAVAEEHASEAEKRVAAALQQADQVRSESDTYVKELVADARRTADSIVSEARTFAEQTVNDARTEADQSRTTAERQLEDLTRRHDSINSYLEELRGLLGTERAEEAGGDDTVTEESPSWADSAQSAAGSPAESSASGAGDDDAEAGTPARDASDGRTPAQVARAASTHSADDEAEAGTPADDTPARSQANANANANANA
AK018_041531551hypothetical proteinGTGCTGCAACGCATACTCGGTGTCGTCCTCGTGGTCGCTGGCCTGGGCGCCATCGTGTTCGGGGTCGCGACGGCGACGGTCCTGCGCGAGTCGGACTCCGTCGTGGCCACGGCCGCGCCCGCCGGAGACGGCACGCTCGTGGTCACCGACCCCGGCGTCCTCGGGCTCGTCGACTCCGACGTGACGGTGACCGCCTCGGTGCCGCAGGGGCAGGAGGTGACGGTCGTCGTCGGTCGCGACGTCGACGTCGAGGGCTGGATCGGCGAGGACCCGTACACCCGGGTCACGGGGCTGAGCGACTGGGAGACCCTCGCGACCGAGGAGGTCGTGCCCGAGACCGACGAGTCCGAGGAGCCCGCCGAGTCCGAGGACGCCGATGCCGCCCCGCCGGCCGACCCGGCCGGCTCCGACATGTGGGTGACCGAGCTCTCCGACGCCGAGCAGGTGACCCTGCGCTGGACCGACCGCCCGGGCCGCTGGGTCCTGCTGGCGGCCGGGACCGGGCCGGCGCCCGTCGAGGACGGCGCCGAGGACGAGCAGGAGGGTGCGGACGCGCCGGCCGACGAGGCCGTGGCGCAGGCGCCGACCCTGGAGCTCACCTGGGACCGCCAGGTGGGGACGCCGCTGCTCTGGCCGGCCGTCGGCGGCGGCGCGGTGCTGCTCCTGATCGGCGTCGTGCTGCTGATCGCCGGCCGACGCCGCCGCAAGCGGTCCCGGCGTTCGACGGCGGCCGCCGGGGTGGAGGTCTCCGCACCCGCGTCGAGCGGGTCGGGCGCGTCGCCCGCGAGCACGTCGTCCCCCGCGCGCGACGACGTCGCCTCGTCCCCCGCACCCTTCGCGCCGACCACCCTCGGCTCGGGCGCGAGCGGGTGGCCGGCGGCCGCGTCGGGCACGCCGAGCACGTCGGGCACGTCGGGCACGCCCGTGCCCGCGCCGTTCGCGGCCGGCGGGCAGGACGGGGCCGACACCGGTGCCGGCGAGACCACCGCGGAGCCCGCCGCGGAGCCCGCCGCGCAGGACGACGAGACCGTCGAGAGCTCGTCCGCGTCCGGGGGGCGCACCGGTACCGCGCCGGTACCCGTCGCGGGCCGCTTCCGGCGTTCGCGCCTGCGGCGTCGGTCCGACGACGGCGCCCCGGCGGCGTCCGACGGCCCCGCGGCGCCCGCGGCGGACGGCCCCGCGCCGGTGCCCGCACCCGTGCCCGCGCCGTCGCCCGCCACCGGCTCGGACGACGTACCGGCCGACGCGCCGACCTCGGCGACCTCGGCGACCTCGCCGACCCTGCCGGAGGGACGGCCCCTGACCCGGCGCGAGCTGCGCCGTCGCGAGGAGGAGCGCCGCGCGGCCGAGCAGACCGGCGTCGGACGCGCCTTCCGGGCGCTGACGGGCCAGACGCCGGCGGTGCCGCCCGCCGCCGCCCCCGCCCCCGAGGACGGCACGACCGAGGCGACCGGCTCGCGGCGCGCCTCCGCCTGGCGCGAGACCTGGGGCTTCGGGGACGCCGCCGGCACCACGAAGCCCGACGACACGACCGACGGGGGAGCACGATGAMLQRILGVVLVVAGLGAIVFGVATATVLRESDSVVATAAPAGDGTLVVTDPGVLGLVDSDVTVTASVPQGQEVTVVVGRDVDVEGWIGEDPYTRVTGLSDWETLATEEVVPETDESEEPAESEDADAAPPADPAGSDMWVTELSDAEQVTLRWTDRPGRWVLLAAGTGPAPVEDGAEDEQEGADAPADEAVAQAPTLELTWDRQVGTPLLWPAVGGGAVLLLIGVVLLIAGRRRRKRSRRSTAAAGVEVSAPASSGSGASPASTSSPARDDVASSPAPFAPTTLGSGASGWPAAASGTPSTSGTSGTPVPAPFAAGGQDGADTGAGETTAEPAAEPAAQDDETVESSSASGGRTGTAPVPVAGRFRRSRLRRRSDDGAPAASDGPAAPAADGPAPVPAPVPAPSPATGSDDVPADAPTSATSATSPTLPEGRPLTRRELRRREEERRAAEQTGVGRAFRALTGQTPAVPPAAAPAPEDGTTEATGSRRASAWRETWGFGDAAGTTKPDDTTDGGARNANANANANA
AK018_041541089hypothetical proteinATGACCCGCACCGAGCCGATCAACGCACCCCTCCGCCGCCGTCGGGCCCGGCGTGGTGCCGCCGCCGTCGCGGCGGCGGCGACCACCGGACTGCTCCTGACGGCCTGCGCCGAGGAGATCCCGCAGCCGGTCGCCGACGAGCCCTTCGCCGGGCCCGCGCTCACCGCGGACCAGGAGACCGCGGTGGTGCAGGCCGTGGCCGAGACGGTCGAGAAGGCCGACGCGGAGCTCGCGCCCAAGCAGCTCGACGCCCGCGTCCAGGGACCGGCCCGTGAGGTGCGCGCGAGCCAGATCAAGGTGGCGAAGGCGCGCGACGACGACTCCCTGATCACCTCGATCCCGGCCGAGCTGCAGCGCATGATCATCCCCACGACCGAGTCGTGGCCGCGGGTGAGCTTCACGATCACCGAGGAGACCGAGAACCTCGAGGTGCCGCGCCTGGTCGCCTACGAGCAGTCCTCGGCGCGCGACAACTACAAGATGCGCAGCTGGGTCCAGCTCATCCCCGGCACCACCATGCCGAACTTCGCCGACCCCGAGGTGATCGGCTCCGAGGCCGTCGCCACCGACGACGACTCGCTCGCCGCCTCCCCGGAGCAGGCCCTGAACCGCTACGCGGACCTGGTGGCCAACGGCGACGACTCGGAGTTCGCCGACCAGTTCGAGCTGCCCGGGGACAGCCCGGACCTCGTCCAGCGCGTGCAGGCCGACGCCCGCAACGTGCGCGGCGACGACGGGTTCCAGGAGGCCGACGGCTCCTACCGGCTGGCCTTCGCCTCCCGTGGCGGCGAGATCGTCGCGGTACGGACCTCCGACGGCGGGGCGCTCGTGATGGGCGTCCTCGACGGCAACGTCCGGGCCACGGTCGAGGAGGACGGCGAGATCGGTCCGCTCACCGAGACGCAGAAGGCCCTCATCGGGGACGAGGACAACACCAACGAGCTCTACGTCGAGTACACCGACCAGGTGGCGCTGTACGTGCCGCCGTCGGGCTCGGAGGAGAAGATCCGTCCGCTCGGCTACTCCCACGTGCCGACCGACGCCTCGACGTCGGTGCCGGCCAAGAAGGACCGCAACACCGCCCGGTGAMTRTEPINAPLRRRRARRGAAAVAAAATTGLLLTACAEEIPQPVADEPFAGPALTADQETAVVQAVAETVEKADAELAPKQLDARVQGPAREVRASQIKVAKARDDDSLITSIPAELQRMIIPTTESWPRVSFTITEETENLEVPRLVAYEQSSARDNYKMRSWVQLIPGTTMPNFADPEVIGSEAVATDDDSLAASPEQALNRYADLVANGDDSEFADQFELPGDSPDLVQRVQADARNVRGDDGFQEADGSYRLAFASRGGEIVAVRTSDGGALVMGVLDGNVRATVEEDGEIGPLTETQKALIGDEDNTNELYVEYTDQVALYVPPSGSEEKIRPLGYSHVPTDASTSVPAKKDRNTARNANANANANA
AK018_04155945COG3118putative proteinATGAGCAACCCCACGCCCGAGCCGACCTTCAGCCCGCGCGGCGCCGTCGACCTGTCGGCGCTGAACCGCCCCCAGTCGCCGCCCCCGGGGGAGCCGGGCGGCGCGCCGACCGCCGGCGGGTTCGTCGTCGACGTCACCGACGCCAACTTCGAGCAGACGGTCAAGGACTCCACGAAGCACGTCGTGGTGATGCTGCTGTGGAAGCCCACGGACCAGGCCAACGCCGAGCTCGCCACCACGCTGGGCCGGATCGCCGAGGAGTACGCGGGCCGGTTCCTGCTCGGTCGTCTCGACGTCGACGCCTACCCGCAGATCGCGGCGGCCTTCCAGCCGCAGGGCGTGCCGACCGTGGTCGCTGTGCTGCAGGGGCAGCCGCTGCCGCTGTTCGCGGGCGCGGCCTCCGAGGAGCAGGTCCGCGGCGTGCTCGACCAGGTCTTCGCCGCCGCGGAGCAGAACGGGGTCACCGGTCGGGTCGCCGGCGCGGGAGATGCTGCCGGCGAGGAGGAGCCCGCCGAACCGGTCGAGGAGCCGCTGCCGCCGCTGCACCAGGAGGCCTACGACGCCATCGAGCGCGACGACCTCGAGGCGGCCGAGGCGGCGTACGCCAAGGCCATCAAGCAGGACCCGAAGGACGCCGACGCGATCGCCGGGCGGGCGCAGGTGCGGCTCATGCGGCGGACCCGCGGGGCCGACCTGCAGCAGGTGCGCCAGGCGGCCGCGGACGCGCCCGCGGACGTCTCCGCGCAGCTCGCGGTGGCCGACATGGACATGCTGGGCGGCAAGGTCGACGACGCGCTCGACCGGCTGATGCAGCTGCTGCCCGCCTCCGACGGCGACGACAAGGAGGCGCTGCGGGCGCGGCTGGTCGACTACTTCGAGGTCGTCGGCCCGACGGACCCGCGGGTGGCCAAGGCGCGCCGGCGCCTGGCGATGTACCTGTACTGAMSNPTPEPTFSPRGAVDLSALNRPQSPPPGEPGGAPTAGGFVVDVTDANFEQTVKDSTKHVVVMLLWKPTDQANAELATTLGRIAEEYAGRFLLGRLDVDAYPQIAAAFQPQGVPTVVAVLQGQPLPLFAGAASEEQVRGVLDQVFAAAEQNGVTGRVAGAGDAAGEEEPAEPVEEPLPPLHQEAYDAIERDDLEAAEAAYAKAIKQDPKDADAIAGRAQVRLMRRTRGADLQQVRQAAADAPADVSAQLAVADMDMLGGKVDDALDRLMQLLPASDGDDKEALRARLVDYFEVVGPTDPRVAKARRRLAMYLYNANANANANA
AK018_041562217glgB_3COG02961,4-alpha-glucan branching enzyme GlgBATGACGCCTGAGCCGCCCACCGTCGACCCGGAGCACCTCACTGCCGTCGCCCGCGGCACGGCCCACGACCCGCACGCCGTGCTCGGCCCGCACCTGCTCGAGTCCGGACCGTGGGCCGCCGTGCGCGTGCTGCGCCCGCTCGCCGACGAGGTCGTCGTCCTCGGCGACGGCCCCGACGGACCCTGGGAACACGCGGCCCGGCACGAGGCGGCCGGCGTGTGGACCGCCGTCGTGCCCGTGCCGACGGACGACGACGGGACCCGCCACGCCCCCGACTACCGGGTGCGCACGCGGTACGGCGACGACGTGCACACCGGCGACGACCCGTACCGGTTCCTGCCGTCGCTCGGCGAGGTCGACCTGCACCTCGTGGGCGAGGGCCGCCACGAGCAGCTCTGGCGCGTGCTCGGCGCCAACCGCCACGTCTACCCCAGCGCGCTGGGCGACGTCGTCGGCACGAGCTTCGCCGTCTGGGCCCCGAACGCCCGTGGCGTCCGCCTCGTCGGGGACCACAACCGGTGGAGCGGGGTGCACCCGATGCGCTCCCTCGGCTCGAGCGGCGTGTGGGAGCTGTTCGTGCCCGACGTGGGCCCCGGCACCCGCTACAAGTACGAGGTCTGCGGACCGGACGGCATCTGGCGCGCCAAGGCCGACCCCATGGCCAAGGCCGCGGAGGTCCCCCCGGCGACGGCCTCCGTCGTCACCCACTCCGAGTACACCTGGGGCGACGACGCGTGGATGGCCCGTCGGCGCGAGGCCGACCCGCACGGCGGCCCGATGAGCGTCTACGAGGTCCACCTGGCCTCGTGGCGGCCGGGTCTCGGCTACCGCGAGCTCGCCGAGGAGCTCACCGCCTACGTCGTCGAGCAGGGCTTCACGCACGTCGAGCTCCTCCCGGTGGCCGAGCACCCGTTCGGCGGCTCGTGGGGCTACCAGGTCACGGGCTACTTCGCCCCCACCTCCCGGCTCGGCTCGCCCGACGACTTCCGCCACCTCGTCGACCGGCTGCACCAGGCCGGCGTCGGCGTGCTGCTCGACTGGGTGCCCGGCCACTTCCCCAAGGACGAGTTCGCGCTCGCGCGGTTCGACGGCACCCCGCTGTACGAGCACCCCGACCCGCGCCGCGGCGAGCAGCCCGACTGGGGCACCTACGTCTTCGACTTCGGCCGCCGCGAGGTGCGCAACTTCCTGGTCGCCAACGCGACCTACTGGCTCGAGGAGTTCCACGCCGACGGTCTGCGGGTCGACGCCGTCGCCTCGATGCTCTACCTCGACTACTCCCGCAACGACGGCGAGTGGGTGCCCAACGTCCACGGCGGGCGCGAGAACCTCGAGGCGATCTCGTTCCTGCAGGAGGCCAACGCCACGGCCTACCGGCGCAACCCCGGCACCATGATCATCGCCGAGGAGTCCACCGCCTACCCGGGGGCCACCCGGCCCACGAGCTCCGGCGGCCTCGGGTTCGGGCTGAAGTGGAACATGGGCTGGATGAACGACTCCCTCGAGTACGTGTCCCGCGACCCGATGTACCGCAGCCACCACCACGGCGAGCTGACGTTCTCGCTGGTCTACGCGTTCTCCGAGCAGTACGTGCTGCCCATCAGCCACGACGAGGTCGTGCACGGCAAGGGGTCGCTGCTGCGCAAGATGCCGGGCGACCGGTGGAAGCAGCTCGCGGGCGTGCGCTCGTTCCTGGCCTACCAGTGGACGCACCCGGGCAAGCAGCTGCTGTTCATGGGCTCCGAGATCGCCCAGGACGCCGAGTGGAACGAGGGTCGCGGCGTCGACTGGTGGCACCTCGACGACGCCGGTCACGCCGGGGTGCAGCGCACGGTGCGCGACCTCAACGCTCTGTACCGCGCGACGCCGGCGCTGTGGGAACGGGACTTCGACGGCTCCGGCTTCGAGTGGATCGACGCCGACGACGCCGCCCGCAACGTGCTGTCCTACGTGCGTCGCGCCGCGGACGGCTCCCCCGTGGTGGTCGTCGTCAACTTCGCGGGCATCCCCTACGAGGGCTACCGGATCGGGCTGCCGGACGGGCGCACGTGGACCGAGGCCCTCAACACCGACGCCCCCGAGTACGGGGGCTCCGGGGTGGTCAACACCGGACCCGTGCTCGCGGAGGACGTGCCGTGGCACGGGCGGGAGCACTCGGCCGCCCTGCGGGTCCCCCCGCTGGGCGCCCTGGTGCTCGTCCCGGCCACGGCCCTCTGAMTPEPPTVDPEHLTAVARGTAHDPHAVLGPHLLESGPWAAVRVLRPLADEVVVLGDGPDGPWEHAARHEAAGVWTAVVPVPTDDDGTRHAPDYRVRTRYGDDVHTGDDPYRFLPSLGEVDLHLVGEGRHEQLWRVLGANRHVYPSALGDVVGTSFAVWAPNARGVRLVGDHNRWSGVHPMRSLGSSGVWELFVPDVGPGTRYKYEVCGPDGIWRAKADPMAKAAEVPPATASVVTHSEYTWGDDAWMARRREADPHGGPMSVYEVHLASWRPGLGYRELAEELTAYVVEQGFTHVELLPVAEHPFGGSWGYQVTGYFAPTSRLGSPDDFRHLVDRLHQAGVGVLLDWVPGHFPKDEFALARFDGTPLYEHPDPRRGEQPDWGTYVFDFGRREVRNFLVANATYWLEEFHADGLRVDAVASMLYLDYSRNDGEWVPNVHGGRENLEAISFLQEANATAYRRNPGTMIIAEESTAYPGATRPTSSGGLGFGLKWNMGWMNDSLEYVSRDPMYRSHHHGELTFSLVYAFSEQYVLPISHDEVVHGKGSLLRKMPGDRWKQLAGVRSFLAYQWTHPGKQLLFMGSEIAQDAEWNEGRGVDWWHLDDAGHAGVQRTVRDLNALYRATPALWERDFDGSGFEWIDADDAARNVLSYVRRAADGSPVVVVVNFAGIPYEGYRIGLPDGRTWTEALNTDAPEYGGSGVVNTGPVLAEDVPWHGREHSAALRVPPLGALVLVPATALNANANANANA
AK018_041571017rbsR_5COG1609Ribose operon repressorGTGACGACACCGAGCAGCCCGCTGGCCCGGCGGGGCCCCCGGGCCACCCTCGCCGACGTCGCACGCCTGGCCGGGGTCAGCGCCAAGACGGTGTCCCGCGTCGTGTCCGGCGAACCCAACGTCGCCCCCGCCACCCGCGACGCCGTCCTCGAGGCCGCCGCCCGGCTGCGGTTCCGGCCCAACCGGCTCGCCGCCGGCCTGCGCGGCGGCGGGGTGTCCCGCACCGTCGGATTCGTCGTCGGCGACCTGGGCAACCCGTTCTACGCCGCCGTCGCGGCCGGCATGGAGCGCGAGCTCACCGCCCGCGGGCTCACCCTCGTCCTGGCCGCCACCGAGGACGACCCGGCGGCCGAACGCACCGCCGTCGACGCACTGCTGGCCGAGCGCGTCCGCGGCCTCGTCGTCGTCCCCATCGCCGGGGACAGCTCCCATCTCGCGCACGAGCAACGGCTCGGCACCCCTGTCGTCGCGCTCGACCGTCCGGCCCGCGGTCTCAAGGTCGACACGGTGGTCCTCGACAACGTGGGCGGAGCCCGGAGCGCCGTCGCGGCCCTCACTGCCGCCGGGCACCGGGACATCGCCTTCCTCGGCACTCCGGCCGAGCTCGTCACCCTGCGCGACCGGCTCGAGGGCTACCGCGCCGGACTCGCCGCGGCAGGGCTCGAGACGCCCTCTGCCTGGGAACGGCTCGGGGACCACGGCGACGCCGGGCTCGTCGACGTCGTCCGCGAGCTCGTCGACCGGCCGGACCCGCCCACCGCCGTCCTGGCCGCGAACAACCGGGCCAGCACCGCCGTCGTGCGCGCGCTCGGGCCCCGCCCCGACCCCGTCCTGGTCGGCTTCGACGACTTCGAGCTCGCCGACGCCCTCGGCATCAGCGTCGTCACCTACGACGCCGCACGCCTCGGGCAGGAGGCGGCCCGCTGCGTCCTCGACCGGATCGAGGAGCCCGACGCCCCGGCCCGCCGGACCGTCGTACCGACCACGCTCGTTCGACGCGGGCGCCTGTCCCGCTGAMTTPSSPLARRGPRATLADVARLAGVSAKTVSRVVSGEPNVAPATRDAVLEAAARLRFRPNRLAAGLRGGGVSRTVGFVVGDLGNPFYAAVAAGMERELTARGLTLVLAATEDDPAAERTAVDALLAERVRGLVVVPIAGDSSHLAHEQRLGTPVVALDRPARGLKVDTVVLDNVGGARSAVAALTAAGHRDIAFLGTPAELVTLRDRLEGYRAGLAAAGLETPSAWERLGDHGDAGLVDVVRELVDRPDPPTAVLAANNRASTAVVRALGPRPDPVLVGFDDFELADALGISVVTYDAARLGQEAARCVLDRIEEPDAPARRTVVPTTLVRRGRLSRPGPT0017992_535DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_041581242yihS_2COG2942Sulfoquinovose isomeraseGTGACCCCCTGGACCGACCGACCGGAGCACCGTGCCTGGCTGCGTGCCGAGCGACACCGCCTGATCGCCTTCGGCCGGCGTGCCGCCCGTCCCGGCGGGGGAGCCGCCTGGCTCGACGCCGACGGTGCTCCCGACCGCGACCGCGGGATCCACACCTGGATCACGGCGCGCACCGTGCACACCTTCGCGCTGGCCTCGCTGCTCGGCGTGCCCGGCGCCGGACCGGTGGCCCAGCAGGCGCTCGCCGGCCTCGGCGGGGAGGGCGCGGTGCTGCACGACGACGAGCACGGCGGCTGGTACGCCCGTGTCGCCTGGGACGGCACCGTCGAGGACCCCGGCAAGCAGAGCTACCAGCACGCCTTCGTCGTGCTCGCCGCCTCGAGCGCTCTCGCGGCCGACCTCGACGGTGCCCGCGCACTGCTCGACGAGGCCGCCGGGACCTTCCTGGACCGTTTCTGGGACGGGGAGGCGGGGATGTGCGTCGACGCCTACGACCGGACGTTCACCGAGCTGGACGCCTACCGGGGCGTCAACGGCAACATGCACGCCGTCGAGGCGATGCTCGCAGCGGGCGACGTCACCGGCGACCCGGCCTGGCACAGCCGTGCGCTGCGCGTCGCACGGCGGGTGATCGCGGAGGCCGAGGCGCAGGACTGGCGGATCCCCGAGCACTACGACGCGACCTGGACCGCCGACCTCGAGCTGAACCGCGACCGCCCCGACGACCCGTTCAAGCCGTTCGGGGCCACCGTGGGGCACGGTCTCGAGTGGGCGCGACTCCTGCTGCACCTGGAGGCGAGCACGGGTGACCAGGACCTCCTGCCGGCCGCGCGGGCGCTCTTCGAGCGCGCCGACGCCGACGGGTGGGCGGTCGACGGCTCCGACGGGTTCGTCTACACGACCGACTGGTCCGGGCAGCCCGTGGTGCGCGACCGCATGCACTGGGTGGTCGCGGAGGCGACGGCGGCCGCCGCCGTGCTGCACGCCCGCACCGGGGAAGAGGCCTACGCACGGCGGTACGCGACCTGGTGGGACCATGCCGCGACGGCGTTCCGCGACCTCGACCGCGGGTCGTGGCACCACCAGCTCGACGCCTCCCACACACCCACCGACACCGTCTGGCCGGGCAAGCCGGACCTGTACCACGCCTTCCAGGCGACGCTGCTGCCCGAGGCCCCGCTCGCTCCCGGGCTCGCGGTGGCCGCACGGGACGGGCTGATCCCGACGGCGGTCGAGGCGTGAMTPWTDRPEHRAWLRAERHRLIAFGRRAARPGGGAAWLDADGAPDRDRGIHTWITARTVHTFALASLLGVPGAGPVAQQALAGLGGEGAVLHDDEHGGWYARVAWDGTVEDPGKQSYQHAFVVLAASSALAADLDGARALLDEAAGTFLDRFWDGEAGMCVDAYDRTFTELDAYRGVNGNMHAVEAMLAAGDVTGDPAWHSRALRVARRVIAEAEAQDWRIPEHYDATWTADLELNRDRPDDPFKPFGATVGHGLEWARLLLHLEASTGDQDLLPAARALFERADADGWAVDGSDGFVYTTDWSGQPVVRDRMHWVVAEATAAAAVLHARTGEEAYARRYATWWDHAATAFRDLDRGSWHHQLDASHTPTDTVWPGKPDLYHAFQATLLPEAPLAPGLAVAARDGLIPTAVEANANANANANA
AK018_04159933scrK_2COG0524FructokinaseGTGAGCGCCGCGCACGGGACCGGGACCGCCGCGCGGCCGGCCACGGTGGCCGTCGTCGGCGAGGCGCTGGTCGACGTCGTGCACCGTGCCGACGGGTCCGTCGAGGAGCTGCCCGGCGGCAGCCCGGCGAACGTCGCGCTCACCCTCGGCCGGTTGGGTCGCGCGCCGCACCTGGTCACCGCTCTGGCCGACGACGTGCGGGGCCGTCGGGTGCGGGCGTGGCTGGAGGACTCGGGCGTCGAGGTGCTCGCCGCGCCCCTGCGGCGCACCTCGACCGCCGCTGCTCACCTCGACGCCGCGGGTGCCGCCACCTACGAGTTCGACCTGGACTGGGACCTCGACGGCGTCGAGGTCCCGACCGCCCCGGTGCTGCACGTCGGCTCGATCGCCGCGGTGCTGGAGCCGGGCGGGACCGTGGTGCTGGACGCCGTGCGGCGGGCGCAGGGCCTGGTCACCTACGACCCCAACGCGCGACCGACCATCACCCCCGACCGGGAGGCGACCCGGGCTCGGGTCGAGGAGATCATCGCGGCGTCCGACGTCGTCAAGGTGAGCGACGAGGACCTGGAGTGGCTCGACCCGGACACCGACGCCCTGCGGACCGCGGCACGCTGGTCCCGGACCGGCCCTGCGCTCGTCGTCGTGACCGCCGGCGGCGACGGCTCGTTCGTCCTGCGCGACGGTGCGCAGGTCGCGCACGTCCCGGTGCCCGCCGTCGACGTCGTGGACACCGTCGGGGCGGGGGACACCTACATGGGCGGGCTGATCGACGGCCTGCTCGCGCTCGGGCTCGACAGCGCCGAGCGGATCGCGAGCGCTCCCGCGGACCGGCTGGAGGCGGCCTGCGCCCACGCCGCCCGCGCCGCGGCGGTGACCGTCTCTCGCCCGGGCGCCGACCCGCCGCGGCGTGACGAGCTCGGCCTGCCCTCCTGAMSAAHGTGTAARPATVAVVGEALVDVVHRADGSVEELPGGSPANVALTLGRLGRAPHLVTALADDVRGRRVRAWLEDSGVEVLAAPLRRTSTAAAHLDAAGAATYEFDLDWDLDGVEVPTAPVLHVGSIAAVLEPGGTVVLDAVRRAQGLVTYDPNARPTITPDREATRARVEEIIAASDVVKVSDEDLEWLDPDTDALRTAARWSRTGPALVVVTAGGDGSFVLRDGAQVAHVPVPAVDVVDTVGAGDTYMGGLIDGLLALGLDSAERIASAPADRLEAACAHAARAAAVTVSRPGADPPRRDELGLPSPGPT0017625_653DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847NANA
AK018_041602502hypothetical proteinGTGACCGACCGACACGCCCCGGACGCCGCATGGACCGTCCGCAGCACCTCGCCGGCGATCCCCGCCGATCTCGCCGGGCCCCTCGCCCAAGGCATCGCCGCCACCGTGCCGGGCAACATCCACACCGACCTGCTGGCCGCCGGGCTGATCCCCGACCCGTACCTCGACGACCACGAACGGATGTTGCAGTGGATCGGGCGGTGCGACTGGGAGTACACCTCCACCCTCATCGCCGACCGTGGGGGACACGAGCGGCACGAGCTGGCGTTCGACGGTCTCGACACCGTCGCCACGGTCGTGCTGAACGGGACCGAGATCGCCCGGACCGCCAACCAGCACCGCTCCTACCGGTTCGACGTGACCGACCTGCTGCGCGACGGCGAGAACGAGCTCTCGGTGCGGTTCTCCGCCCCGGTGCCGTACGCGGACGCCCAGAGCCTGGCGCTCGGACAGCGTCCGCAGGTGAACCACCACCCGTTCAACGCGATGCGCAAGACGGCCTGCAACTTCGGGTGGGACTGGGGGATCGACGCCGCCACCGTCGGGATCTGGCGACCCGTCCGGCTCGAGTCGTGGACCGCGGCTCGCCTGGGTCGGGTCACGGCGGTCGGCACCGCCGACCTCCCGGACGTGTCCGACGGCACGGCGACGGGTCACCTCGAGGTGCGCGCCGAGGTGGAGCGCGGGTCGGGGACGCACGCCGACGTCGAGATCGCCGTCGCCCTCGGCGACCGCACCGCCACCGTGACCGTGCCCGCCGGCGAGACCTCCGCCGTCGTGCACCTGGAGGTGCCCGACGCGGCCCTGTGGTGGCCCCGCGGGTACGGGGAGCAGCCCCTGCACGACGTCACCGTCACGCTCGGCGACGCCACCGGGACGCGGGACACGTGGCGGACCCGCACCGGGTTCCGGTCCGTGCGCCTGGACACGACGCCGGACGACGACGGCACACCCTTCACGATCGTCGTCAACGACCGTCCGGTCTGGGTCAAGGGCGCCAACTGGATCCCGGACGACGTGTTCGTCCACCGCGTCGACCGCGCCCGGTACGCGCGGCGGCTCGACCAGGCCGAGCAGGCGAACATGAACCTGCTGCGCGTCTGGGGCGGCGGCGTCTACGAGGACGACGCCTTCTACGAGCTGTGCGACGAGCGCGGCATCCTGGTGTGGCAGGACTTCGCGTTCGCGTGCGCCGCCTACAGCGAGGCCGAGCCGCTGCGCTCCGAGGTGGAGGCCGAGGCCCGCGACAACGTCGCCCGGCTGACGCCCCACCCGGCGCTGGTGCTGTGGAACGGGTCCAACGAGAACGTCTGGGGCGTGCAGGCCTGGGGCTGGGAGCCGCTGCTGGCCGACAAGAGCTGGGGTCTGGGGTACTACACCGACCTGCTGCCGCGCGTCGTGGCCGAGGTCGACGGGTCACGGCCGTACACGCCGTCCTCGCCGTGGTCTGGCGTGCTGCCGATCGACATGACCCGGGACCAGAACGAGACGGACCACGGCTCCATGCACTCGTGGGAGGTGTGGAACCGGCTCGACTGGACCCGCTACCGCGACGACGTGCCCCGGTTCATGGCCGAGTTCGGATGGCAGGCGCCGCCGACGTGGGCCACGCTCACCCGCGCGATCTCCGACGACCCGCTCACCCCCGAGTCGCCTGGCATGCAGGTGCACCAGAAGGCCATGGAGGGCAACAAGAAGCTCTCGGTCGGGCTGGTGCGGCACGTCGCCGTCCCGGACGACATGGACGACTGGCACTGGGCCATGTCCTGGAACCAGGCCACGGCGGTGCGCACCGCCGTGGAGCACCTACGCTCCTGGGCCCCGCGCTGCACGGGGTCGGTCGTCTGGCAGCTCAACGACTGCTGGCCCGTGACGTCCTGGGCCGCCGTCGACGGTGACGAGCGCCCCAAGCCGCTGCTGCACGCGCTCGGGCACGCGCACGCCGACCGGCTCGTGACGCTCCAGCCGCGGACCGACGGGCTCGCGGTCGTCGTCGTCGACGACACGGACGAACCGTGGGCGGGTGACGTCGTCGTGCGCCGGCTCGCGTTCGACGGCACCGAGCTCGCCGCCGCGAGCCTGCCGGTGGACGTCGCCGCCCGCGGGGCCGGGACGGCCGTGCTGCCCGCCGCGGTCGCCACGGCCACCGACCCGGGCGGCGAGCTGGTCGTCGCCGAGCTCGACGGCGTCCGGGGCCTGTGGTTCTTCGCCGAACCCCGCGACTCCGCGCTGCAGGCGCCACGGCTGCGCACCGCCGTCGTCCCCGCCGACGACGGCTGGCGCGTCCGGGTGCAGGGCGACACGCTCGTCCGGGACCTCACCCTGCTCGCCGACAAGGTGCACCCCGACGCGCGCGTCGACGACCAGATGGTCACCCTGCTGCCCGGGGAGTCCGTCGAGCTCACGGTCCGGATCCCCGACGGCGTGACCGTCGAACCGGAGGCGCTCGCGGCCCCGCACGTGCTGCGCAGCCTCAACCAGCTCGTGACTCGCGGGCGCTGAMTDRHAPDAAWTVRSTSPAIPADLAGPLAQGIAATVPGNIHTDLLAAGLIPDPYLDDHERMLQWIGRCDWEYTSTLIADRGGHERHELAFDGLDTVATVVLNGTEIARTANQHRSYRFDVTDLLRDGENELSVRFSAPVPYADAQSLALGQRPQVNHHPFNAMRKTACNFGWDWGIDAATVGIWRPVRLESWTAARLGRVTAVGTADLPDVSDGTATGHLEVRAEVERGSGTHADVEIAVALGDRTATVTVPAGETSAVVHLEVPDAALWWPRGYGEQPLHDVTVTLGDATGTRDTWRTRTGFRSVRLDTTPDDDGTPFTIVVNDRPVWVKGANWIPDDVFVHRVDRARYARRLDQAEQANMNLLRVWGGGVYEDDAFYELCDERGILVWQDFAFACAAYSEAEPLRSEVEAEARDNVARLTPHPALVLWNGSNENVWGVQAWGWEPLLADKSWGLGYYTDLLPRVVAEVDGSRPYTPSSPWSGVLPIDMTRDQNETDHGSMHSWEVWNRLDWTRYRDDVPRFMAEFGWQAPPTWATLTRAISDDPLTPESPGMQVHQKAMEGNKKLSVGLVRHVAVPDDMDDWHWAMSWNQATAVRTAVEHLRSWAPRCTGSVVWQLNDCWPVTSWAAVDGDERPKPLLHALGHAHADRLVTLQPRTDGLAVVVVDDTDEPWAGDVVVRRLAFDGTELAAASLPVDVAARGAGTAVLPAAVATATDPGGELVVAELDGVRGLWFFAEPRDSALQAPRLRTAVVPADDGWRVRVQGDTLVRDLTLLADKVHPDARVDDQMVTLLPGESVELTVRIPDGVTVEPEALAAPHVLRSLNQLVTRGRPGPT0018765_486DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-MANNOSIDASE,PGPT0018765-manB-K01192NANA
AK018_041611401mak_2COG3281MaltokinaseATGATCGACGTCGCCGTGCAGCCCGCGGTCCCCGACCCGAGCGTGGGCGAGCTGCTCGCCGCCTGGTTGCCCACCCGGCGGTGGTACCCCGGCACGGGCGACGTCGAGGTGGAGCCGTGGCTCGCCGTCACGTTCGACGACGGGTCCGGCGACGGCGCTCCGGGTGCGGCTCCGGTGTCCGACGACGGGGCGGGCGTTCCGCACGAACCGCACCTCGTGCTGCTCCTCGTCCGGCTCGTCGGTGAGGCGCTCCCCGGCGGCGAGGTGATCGCCCAGGTCCCGCTGGTGCTCTCGGACGTGGAGCACATCGGCCTCGGCCACATCGGGACGGTGACGACTCCGGCCGGGGAGGTCGCGGTGCACGACGGCGGCGCGCACCCGACGGGGTGGGTAACGCTGCTGCACGCGATGGGCGTCGAGGGCGAGCCGGACGTGCTGACCGAGCGGGGCCGGGCCCTGGCGGGCGAGCAGTCCAACACGTCGGTGATCCTGCCCGCTGTGCCGTCGCCCGCGGGCACCGGGGGCATGCTGAAGATCCTGCGCACGATCGCGGACGGCCCGCACCCGGACGTGGTGGTGCCGGAGGCCCTGACGGCCCACGGCTGGGACGGGGTGCCGCGCTTCCTCGGCGCGCTCGAGGTGGACCCCGGTGACGGCGTCCCGCTGCACCTGGCGATCCTGTCCGAGCTGGTCGGGCACGCCGTCGACGGGTTCGAGCTGGCCTGCGACCTGGCGAGCCGGGACGAGTCGTTCGCCGAGCAGGCGGCGGCGCTGGGCCGGCTGGTCGGGGAGCTGCACGGACGCATGGGGCGGGTGCTGCCGCCCGGACCGTCGCTGGACGCGCGCGAGTTCGTCGGGGGGCTGCGCCGCCGTGCCGACCGCGCCGTGCGCGAGGCCCCGGAGCTGGCCGGACGCACCACCGAGATCGTGGCGCTGCTGGACGAGCTGGAGCGTCGGCTCACCGCGCTGCCCGGTCCGGTGGCCACCCAGCAGATCCACGGCGACCTGCACCTGGGCCAGACGCTGCACGGCGACTCCGACTGGAAGGTGCTCGACTTCGAGGGCGAGCCGCAGCGGCCGGTCGCCGAACGCACCGCCCCCGACCTGCCCTTGCGCGACGTCGCCGGGATGCTGCGGTCCTTCGACTACGCCGCGGCGGTCGGCGGTGCCTCCGACCCGGCGGCGTGGCAGGCCGAGGCGGCCGCCGCGTTCCGTGCGGCCTACCGCGCCACGGTGGCACCGCCGTCGGGCACCACGACGGGGCTCGACGCGGACACCGCCACCCTGGTGCTGGACGCCCTGGTGCTGGACAAGGCGCTCTACGAGGTGGTGTACGAGAACCACCACCGCCCGCAGTGGCTGCCGATCCCCCTGGCCGCCGTGGACCGCGTGCTGGGGTGAMIDVAVQPAVPDPSVGELLAAWLPTRRWYPGTGDVEVEPWLAVTFDDGSGDGAPGAAPVSDDGAGVPHEPHLVLLLVRLVGEALPGGEVIAQVPLVLSDVEHIGLGHIGTVTTPAGEVAVHDGGAHPTGWVTLLHAMGVEGEPDVLTERGRALAGEQSNTSVILPAVPSPAGTGGMLKILRTIADGPHPDVVVPEALTAHGWDGVPRFLGALEVDPGDGVPLHLAILSELVGHAVDGFELACDLASRDESFAEQAAALGRLVGELHGRMGRVLPPGPSLDAREFVGGLRRRADRAVREAPELAGRTTEIVALLDELERRLTALPGPVATQQIHGDLHLGQTLHGDSDWKVLDFEGEPQRPVAERTAPDLPLRDVAGMLRSFDYAAAVGGASDPAAWQAEAAAAFRAAYRATVAPPSGTTTGLDADTATLVLDALVLDKALYEVVYENHHRPQWLPIPLAAVDRVLGNANANANANA
AK018_041621800treS_3COG0366Trehalose synthase/amylase TreSATGAACGCCTCCATCAGCGCCGGCGGTGTCGAGGTCCCGCGTCCCATCACCCGCCAGATCCCCGTCCAGGCACTCCCCCCGCGGCGCCAGCCCGAGCCGCCGCCGCTGCCCAAGCCGGGACTCACCGAGGACCCGGACTGGTACCGCAAGGCGGTGTTCTACGAGGTGCTCGTGCGGGCGTTCACGGATTCCGAGGGCGCCGGTACCGGCGACCTGCGCGGGGTGATCGACCGGCTCGACTACCTGCAGTGGCTGGGCGTGGACTGCCTGTGGCTGCCGCCGTTCTACCCCTCGCCGCTGCGCGACGGCGGCTACGACGTGTCGGACTACACGGCGATCTCGGCCCAGTACGGCACGCTGCAGGACTTCGGCCAGCTCATCGAGGCCGCGCACGCCCGCGGCATCCGCATCATCATCGACCTGGTCATGAACCACACCAGCGACCAGCACCCGTGGTTCCAGGCGTCCCGCTCCGACCCCGAGGGGCCGTACGGCGACTTCTACGTCTGGGCGGACGACGACGAGGGCTATCCGGACGCCCGCATCATCTTCGTCGACACCGAGACCTCGAACTGGACGTTCGACCCGGTGCGCCGGCAGTACTTCTGGCACCGGTTCTTCAGCCACCAGCCCGACCTGAACTTCGAGAACCCGAAGGTCGCCGAGGCGATGCTGGAGGTGGTCCGCTTCTGGCTGCGCACCGGCGTGGACGGGTTCCGGCTCGACGCCGTGCCCTACCTGTTCGAGGAGGAGGGCACCAACTGCGAGAACCTCCCGCGCACCCACGACTTCCTGCGGACGGTGCGCGCCATGATCGACGAGGAGTTCCCCGGCCGCATCATGCTGGCGGAGGCGAACCAGTGGCCGCACGACGTCGTGGACTACTTCGGCTCGGAGTCCGAGCCCGAGTGCCACATGTGCTTCCACTTCCCGGTGATGCCACGCATCTACTACGCGCTGCGGGACCAGCGGGCCAACCAGCTCCTGGACATCCTGGCCGACACCCCGGACATCCCGGCGTCCGGAGGCCAGTGGAGCACGTTCCTGCGCAACCACGACGAGCTCACGCTGGAGATGGTCTCCACCGAGGAGCGCGCGGCCATGTACGGGTGGTACGCGCACGACCCGCGGATGCGCGCCAACGTGGGGATCCGCCGTCGGCTCGCCCCGCTGCTGGACAACTCCCGCAAGGAGATCGAGCTGGCGCACGCGCTGCTGCTGTCGCTGCCGGGCAGCCCGTGCCTGTACTACGGCGACGAGATCGGTATGGGCGACAACATCTGGCTGCCGGACCGTGACGCGGTGCGCACGCCGATGCAGTGGACCCCGGACCGCAACGCCGGCTTCTCCACCGCGGACCCCGGCAAGCTGTACCTGCCGCTGAACCAGTCGCTGGTGCACCACTACCATCACGCCAACGTCGAGGCGCAGCTCGCGCAGCCCACCTCCCTGCTGCACTGGGTGCACGGGATGCTGGCGGTGCGCCGCCTGCACCCCACGTTCGGCACGGGCGCGTTCACGGCGTGCGAGGTCGACGACGAGGCGATCCTCGCCTTCACCCGCACCGACGACGAGACCTTGCTGGTGGCCGCCAACCTGTCCACCACCGCCCGGTCGGCCACGATCTCCGCACCGGGACTGGAGGGGTGGGACCTGACCGACGTGTTCGGCGGCGGGCGGTTCCCGCGCGTCGGCGACGACGGCACCGTGCAACTGTCGTGGGGGTCGCGCGACTTCTACTGGCTGCTGGCCACCCCGCCCGCCGAGTCCCCGACCGGGACGTCCGCCGTCGAGACCTGAMNASISAGGVEVPRPITRQIPVQALPPRRQPEPPPLPKPGLTEDPDWYRKAVFYEVLVRAFTDSEGAGTGDLRGVIDRLDYLQWLGVDCLWLPPFYPSPLRDGGYDVSDYTAISAQYGTLQDFGQLIEAAHARGIRIIIDLVMNHTSDQHPWFQASRSDPEGPYGDFYVWADDDEGYPDARIIFVDTETSNWTFDPVRRQYFWHRFFSHQPDLNFENPKVAEAMLEVVRFWLRTGVDGFRLDAVPYLFEEEGTNCENLPRTHDFLRTVRAMIDEEFPGRIMLAEANQWPHDVVDYFGSESEPECHMCFHFPVMPRIYYALRDQRANQLLDILADTPDIPASGGQWSTFLRNHDELTLEMVSTEERAAMYGWYAHDPRMRANVGIRRRLAPLLDNSRKEIELAHALLLSLPGSPCLYYGDEIGMGDNIWLPDRDAVRTPMQWTPDRNAGFSTADPGKLYLPLNQSLVHHYHHANVEAQLAQPTSLLHWVHGMLAVRRLHPTFGTGAFTACEVDDEAILAFTRTDDETLLVAANLSTTARSATISAPGLEGWDLTDVFGGGRFPRVGDDGTVQLSWGSRDFYWLLATPPAESPTGTSAVETPGPT0014120_749DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0014120-treS-K05343NANA
AK018_041631989glgE2_2COG0366Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase 2GTGGTCGAGGGCGGTCGCTGGCCCGCCAAGGCCACCCCCGGCGAGGTCGTGCCGGTCGAGGCCACCGTGTTCCGCGAGGGGCACGACGCCGTGAACGCCACCGCCGTGCTGTTCGGACCGGACCGACGGGTGCACTCGTGGTCACCCATGGTCGACGTCGCCCCCGGCCTGGACCGGTTCCGCGGGTTCCTCCAGCCCGACGCCGTCGGGGACTGGACCTTCCGGGTGGAGGCCTGGTCCGACCCGTACGCCACCTGGGCCCACGACGCCTCGATCAAGGTGGCGGCGGGCCAGGACGTGGACCTCATGCTCACCGAGGGCGCGCTGCTGTTCGAGGAGATCGTCTCCCGCAAGCTGCAGCGCCGGCGCACCCCGCAGGACGCCCAGCTCCTCGAGGACGTCGCCCGCGAGCTCGCCGACACCTCCCGGCCCGCCGAGGCGCGCCTCGCGATGGCGACCCAGCAGTCCGTCCACGACGCCCTGCGCCGCATCCCGCTGCGGCGGCTCATGACACCGAGCGCCACGTACCCGCTGCGGGTGGAGCGCCGGCTGGCCCTGGCCGGGTCCTGGTACGAGATGTTCCCCCGCTCCGAGGGCGCGACGCAGACCCGGGACGGCACGTGGCGGTCCGGCACCTTCGTGTCGGCGGCGCGGCGGCTGCCGGCCATCGCCGCGATGGGCTTCGACGTCGTCTACCTCACCCCGATCCACCCCATCGGCACGACGTTCCGCAAGGGCCGCAACAACACGCTCGACGCCGAACCGGGAGACCCGGGCAGCCCCTACGCCATCGGCTCGGCCGACGGCGGCCACGACGCCATCCACCCGGACCTCGGCACCGAACGGGGTTTCAAGGCGTTCGTCGCCGAGGCCCGCGAGCACGGCCTGGAGGTGGCCCTGGACCTGGCCCTGCAGTGCTCCCCCGACCACCCGTGGGTCACCGAGCACCCCGAGTGGTTCACGGTGCGCGCCGACGGTTCCATCGCCTACGCCGAGAACCCGCCCAAGAAGTACCAGGACATCTACCCGTTGAACTTCGACCGGGACCCGCGGGGGCTGTCGGAGGAGATCCTGCGGATCGTGCGGGTGTGGATCGAGCGCGGCGTGACGCTGTTCCGGGTCGACAACCCGCACACCAAGCCGCTCGACTTCTGGGAGTGGCTGCTCGCGGAGGTCCGCGCCACGGACCCCGAGGTGATCTTCCTGTCCGAGGCGTTCACCAAGCCGTCGATGATGCAGACGCTGGCGCGGATCGGGTTCCACCAGTCGTACACGTACTTCACCTGGCGGAACACCAAGGAGGAGATCGAGGAGTACCTCAGCGAGGTCTCCGGGGAGCAGGGCGCAGTGATGCGGCCGGCCTTCTGGCCGACCACCCACGACATCCTGCCGCCCTACCTGCAGGACGGCGGTGCGGCCGGGTTCGCGGTCCGGGCCGTGCTGGCGGCGACGGGCAGCCCGACCTGGGGCATCTACTCCGGCTACGAGCTCGTGGAGAACGTGCCGCGACCCGGCGTCGAGGAGCAGATCGACAACGAGAAGTACGAGTACCGGCCCCGTGACTGGGCCCGTGCGGACGACCTCGGTCTGTCGATGCTGCTGGGGCGTCTCAACGAGATCCGCCGCAACCATCCCGCGCTGCAGCAGCTGCGCAACCTCACCGTCCACCCGACCACCAACGGCCAGGTCGTCGCCTTCTCGCGCCGCGTCCGGGCCGAGCACCTGCCCGCCGCCGGGCGCCCCGGGGCGACGGCGGACGACGTCGTGCTCGTGATCGTCAACCTCGACCCCCACCAGGCCCAGGAGTCCACCGTGCTGCTCGACCTCGAAGCCCTCGGACTGACCCCGCCCGACGGGGTGGAGGACCAACCGTTCTTCACGGTCCACGACGAGCTGTCCGGCGCCACCTATCCGTGGGGCAGGCATCCGTACGTCCGGCTCGAACCCCACCAGCAGGTCGCCCACGTGCTGCGGGTGACGCCGGCATGAMVEGGRWPAKATPGEVVPVEATVFREGHDAVNATAVLFGPDRRVHSWSPMVDVAPGLDRFRGFLQPDAVGDWTFRVEAWSDPYATWAHDASIKVAAGQDVDLMLTEGALLFEEIVSRKLQRRRTPQDAQLLEDVARELADTSRPAEARLAMATQQSVHDALRRIPLRRLMTPSATYPLRVERRLALAGSWYEMFPRSEGATQTRDGTWRSGTFVSAARRLPAIAAMGFDVVYLTPIHPIGTTFRKGRNNTLDAEPGDPGSPYAIGSADGGHDAIHPDLGTERGFKAFVAEAREHGLEVALDLALQCSPDHPWVTEHPEWFTVRADGSIAYAENPPKKYQDIYPLNFDRDPRGLSEEILRIVRVWIERGVTLFRVDNPHTKPLDFWEWLLAEVRATDPEVIFLSEAFTKPSMMQTLARIGFHQSYTYFTWRNTKEEIEEYLSEVSGEQGAVMRPAFWPTTHDILPPYLQDGGAAGFAVRAVLAATGSPTWGIYSGYELVENVPRPGVEEQIDNEKYEYRPRDWARADDLGLSMLLGRLNEIRRNHPALQQLRNLTVHPTTNGQVVAFSRRVRAEHLPAAGRPGATADDVVLVIVNLDPHQAQESTVLLDLEALGLTPPDGVEDQPFFTVHDELSGATYPWGRHPYVRLEPHQQVAHVLRVTPAPGPT0018610_584DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018610-glgE-K16147NANA
AK018_04164813hypothetical proteinGTGCCGGTCCCCGACGAGGGCGGCATCGCGCTCCGCCGCGAGCGCCAGGTCCTCCAGCTCGCCGCCGCCGTGGCGTCGACGCTGCGGACCGACTTCGTGTTCTCGCACGAGACCGCGGCACTGCTGCACGGCCTGAGCCACTACCGGCTCGGCGAGCAGGTGCACGTCTCCCAGTCGTGGAAGCCGCCGAGCCGGAGCAGCGGCCGCCAGCTACGCCGCCATCCGGTGGACGTCCCGGCGGGCGACCGGATGCTCGTCGGCGGTCGGCCCGTCACGACCCTGGAACGGACCCTGGTCGACTGCGCGCGATGGCTGCCGGGAGACCGCGCCCTGGTGATCGCGGACTCGGCTCTCCGTGCCGGCGCCGACCCCGTGGTCGTGGACCGCGTCCTCGGCGACGCCCGAGGGCGGGCGGGTGTCCGTCGCGCGCGACGGATCGTGGCGCTCGCCGACCCCCGTGCCGAGTCGCCGGGAGAGTCGTTGGTCCGGTGGCACCTCGACGAGCACGGGTTCGACGTCCCGGACCTCGCCGTCCGGGTCAGCACGCCGGTCGGGGACTGCTGGGTGGACCTGGGGTGGCCGGGCCTGCGCGTCGGGATCGAGTTCGACGGCGCCGTGAAGTACTCCGGCGGTGTCTACGGGGACCCGGCCGGGCGGCTCCTCGCCGAGAAGCGCCGTCACGACGCCCTGGTCGAGGCGGGATGGGTCCTCCTGCGGGTGGTCTGGGCGGACCTGACGGACCCGGCACGGCTGATCGCGCGCTGCCACCGTGCCCTGGTGGCGGCGGAGGCCCGGTCGGTTCGTCGACGCTGAMPVPDEGGIALRRERQVLQLAAAVASTLRTDFVFSHETAALLHGLSHYRLGEQVHVSQSWKPPSRSSGRQLRRHPVDVPAGDRMLVGGRPVTTLERTLVDCARWLPGDRALVIADSALRAGADPVVVDRVLGDARGRAGVRRARRIVALADPRAESPGESLVRWHLDEHGFDVPDLAVRVSTPVGDCWVDLGWPGLRVGIEFDGAVKYSGGVYGDPAGRLLAEKRRHDALVEAGWVLLRVVWADLTDPARLIARCHRALVAAEARSVRRRNANANANANA
AK018_041651698COG3573KsdD-like steroid dehydrogenaseATGGCAGACGCGGACGTCATCGTCATCGGGGCCGGCCTGTCCGGCCTGGTCACCGCGACCGAGCTCACGGCGGCGGGCCGGCGGGTGATCCTGCTCGACCAGGAGCCCGAGGCTTCCCTGGGCGGGCAGGCGTGGTGGTCCTTCGGCGGCCTGTTCCTGGTGGACTCGCCCGAGCAGCGGCGCCTCGGCGTGCACGACTCGGCCGAGCTCGCCTGGTCGGACTGGCTGGGCTCGGCACGGTTCGCGCCCGGCGCCGAGCACGGCGAAGGGCCTGACCGGCACGGGTACGCCTGGGCCAAGCACTACGTCGAGGCCGCCTCGGGCGACCTGCGCTCCTGGCTGCACGCCAAGGGGGTGCGCTGGTTCCCGCTGGTGCAGTGGGCCGAGCGCGGCGGCTACGCGTTCGGCCCCGGGCACGGCACCGCGCACGGCAACACGGTGCCGCGGTTCCACGTCACCTGGGGCACCGGACCGGCGATCCTCGCACCGTTCGTCGCCGCAGCGCTGGAGGCCCGCTCGGCCGGGCTGCTCGACCTGCGCTTCCGGCGTCGGGCCACCGGGCTGACGACGACGGACGGCCGGGTCACGGGCGTGCGCGCCGAGACCCTGGCCGACGACGGCGCGGTGCGCGGTGCGCCGTCGTCCCGCGAGGTCGTGGGCACCGAGGAGCTGAGCGCCGGTGCCGTGGTCGTCGCGTCCGGCGGCATCGGGGCGAACCACGACCTGGCCCGCGAGCGCTGGGACCGCACGCACGGCGAGCTGCCCGCCCGCATGCTGTCCGGGGTGCCCGACTCCACCGACGGTCTCCTGCTCGGCCACGCCGCCGACGCCGGGGCCGCGCTGGTCCACGAGGACCGCATGTGGCACTACCCCGAGGGCATCGCCAACCACTCCCCCGTCTGGACGAACCACGGCATCCGCATCCTGCCGGGACCATCCTCGCTCTGGCTGGACGCCGACGGCGGCAGGCTGCCCGCTCCCCTGTTCCCCGGGTTCGACGCCCTCGGAGCGCTGCAGCACGTGACCGGCCGCGGGGACGACCACTCCTGGTTCGTGCTCAACCGGGCCGTCATGGAGGCGGAGTTCGCGCTGTCCGGGTCGGAGCAGAACCCGGACCTGACCGGCAAGGACGTGCGGCTCCTCGCCCAGCGGGTGCTGCCCGGCGCCGTCGGCCCCGTCGCCCGGTTCGCCGCCGACTCCCCGGAGTTCCTGTGGGCCGACACCCCCGAGGAGCTGGCCGGGAGGATGAACGCGCTCACGGCCGCCACCCCCGGCTCGCGCGGGACGATCGACCCGGCCGGGCTGGCCGCCGTCGTGCACGCCCGCGACGCCCAGGTGGCCGCCGGGCTCGGCAAGGACCCCCAGGTGGTCGCCACCCGGGCCGCCCGCGACTTCCGTGTCGACAGAATGATCCGGGTCTCGCCGCCGCGCCCGCTGACGACGCCGAAGGACGGCCCGCTGCTCGCCGTGCGGCTCTCGGTCCTGACCCGCAAGACGCTCGGCGGGCTGTGGTGCAACCCGTCCGGGCGGGTGCTGCGCGACGACGGCACCGTGCTGGACGGCCTGTGGGCCGTCGGGGAGGCCGCGGGGTTCGGCGGCGGCGGTGTGCACGGTCACCGAGCCCTGGAGGGCACGTTCCTCGGCGGCTGCCTCCACACCGGCCGGGTCACCGGGCGAGCCCTGGCCGCCGACGCCTGAMADADVIVIGAGLSGLVTATELTAAGRRVILLDQEPEASLGGQAWWSFGGLFLVDSPEQRRLGVHDSAELAWSDWLGSARFAPGAEHGEGPDRHGYAWAKHYVEAASGDLRSWLHAKGVRWFPLVQWAERGGYAFGPGHGTAHGNTVPRFHVTWGTGPAILAPFVAAALEARSAGLLDLRFRRRATGLTTTDGRVTGVRAETLADDGAVRGAPSSREVVGTEELSAGAVVVASGGIGANHDLARERWDRTHGELPARMLSGVPDSTDGLLLGHAADAGAALVHEDRMWHYPEGIANHSPVWTNHGIRILPGPSSLWLDADGGRLPAPLFPGFDALGALQHVTGRGDDHSWFVLNRAVMEAEFALSGSEQNPDLTGKDVRLLAQRVLPGAVGPVARFAADSPEFLWADTPEELAGRMNALTAATPGSRGTIDPAGLAAVVHARDAQVAAGLGKDPQVVATRAARDFRVDRMIRVSPPRPLTTPKDGPLLAVRLSVLTRKTLGGLWCNPSGRVLRDDGTVLDGLWAVGEAAGFGGGGVHGHRALEGTFLGGCLHTGRVTGRALAADANANANANANA
AK018_041662238glgX_2COG1523Glycogen operon protein GlgXATGGAGGCTCGTCCGAAGGTCACGCCGCTGACCCGACCCACCCGCACCCGCAGCCACGTCCCGCCGCTGGGGGTCCGCACCACGCCCGACGGCGGTATCGACGTCGCCGTGCTCGCCTCGCACGCGCACGGCGTCGACCTTTGCCTGGTCGACATCGTCGACGAGGACAGGGACCAGCACGACCCGCAGCGGTACACCGAGCGCCGGATCCCGCTCGACGGCCCCACCTACGGCGTGTGGCACGGGCACGTGCCGGACGTCGGACCGGGGCGGCGCTACGGGTTCCGGGTGCACGGGCCGTGGGACCCCGGGGCGGGGATGCGCCACAACCCGGCCAAGCTGCTGCTGGACCCGTACGCGCGCGGCATCGAGGGCGACCTGGCCTACGTCCCGGCGGTCCTGGGCGGGGGAAGCGACGACGACGGCGGCCCGGACGGGGAGGACTCGCTGCCGTCCGTGCCGCACGCCGTGATCATGGGCGACCTGCCGGAGCCCCCGCCGCAGTCCAGGCCCCGGGTCCCCTGGGCGGACACCGTCGTCTACGAGGCGCACGTGCGCGGCCTGACGCTGCAGCACCCGGAGGTGCCCGCCGAGCTGCGCGGCACCTACGCCGGGCTCGCCCACCCCGCCGTGGTCGAGCACCTGCAGGCGCTCGGCGTCACCACGCTCGAGCTGCTGCCGATCCACGCCTCGACGCCCGAGCCCTGGCTCGCCGACCGCGGGCTGACCAACTACTGGGGCTACTCGACGCTCGGGTTCTTCGCCCCGCACGCCGCCTACGCCACGGCTGCGGCCCGCGAGGCCGGCCCGGCCGCCGTCCTCGACGAGGTGCGCGGCATGGTCCACCTGCTGCACGCCGCCGGCATCGAGGTGATCCTCGACGTCGTCTACAACCACACCTGCGAGGGCGGCGACGACGCGCTCCACGTGTCGTGGCGCGGCCTGGACAACACGGCGTACTACCTGCACGACGGCGGCACGCCGGCTGCGCTGGCGGACGTCACCGGCACGGGCAACACGCTGGACTTCCGCCGGACCCGCGTGGTGCAGATGGCCCTGGACTCGCTGCGCTACTGGGCCGAGGTCGTGGGCGTGGACGGCTACCGGTTCGACCTCGCCGTCACCCTGGGTCGCGACCACGACGGCTTCACCCCCGACCACCCGTTCCTGTCCGCGCTGCGCACCGACCCGGTCCTCTCGCAGCTCAAGCTGGTGGCCGAGCCGTGGGACGTCGGACCGGGCGGCTGGCAGACCGGACGGTTCCCCGCGCCGATGGCCGAGTGGAACGACCGTTTCCGCAACGCGGCGCGCTCGTTCTGGCTGGAGGCCCCGAAGGCCGGCTCCCACGGCGCCCCCATGCACGGGCTGCGCGAGCTGACGACGCGCCTGGCCGGGTCCGCGGACTTCTTCGGGCACTCCGACCCGCCGCTGATGCGAGGTCCGGTCGCGTCGGTCAACTACGTCACCGCGCACGACGGGTTCACGCTCGCCGACCTCGTCTCGTTCGACCACAAGCACAACGAGGCCAACGGCGAGGACAACCGCGACGGCACCGACGACAACCGGTCCTGGAACCACGGCATCGAGGGCCACGCCCCGACCGGCGACGACGCCACGACCGAACCGTGGTCCGCCGTCGTGCCGCTGCGGCGGCGCTCGCAGCGCAACCTGCTCGCGACGCTGCTGCTGGCGGCGGGCACACCCATGATCACGGCGGGCGACGAGATGGGTCGGACCCAGGGCGGCAACAACAACGCCTACGCCCAGGACACCGCGATCTCGTGGCTGGACTGGGACCTGGACACCGCCGACCTCGAGCTGCTGGCGACCGCCCGGTACCTGGTGGGTCTGCGCCGCGAGCACGCGGCGCTGCGCGCCGAGTCGTTCTTCCTCGGCACCCCGCGGCCGGGCGAGGAGTTCCCCGACCTGCTGTGGTTCGACGAGACGGGTGCCGCGATGGACGGCGAGGCCTGGTCGGTGGACGGACGGCGGATCATCCAGATGCTGCGCCCGGGGCCCGACGCCGGCGACGCGGACGTGCTGGTCGTGCTGCACGGAGGCCTGGAGGACGCCGAGGTGACGCTGCCGGACGTCCTGGACGGCGCCGACCCGTGGCAGCGCGTGTGGAGCTCGACCTGGGACGCGCCCGAGGGCCCGGAGCAGGCGGACGAGGAGGAGGCGCCCGGCACTGCGCTGGTCGAGTCGCTCAGCGTCGAGGTGTTCGTGGCGCGCCGGTGAMEARPKVTPLTRPTRTRSHVPPLGVRTTPDGGIDVAVLASHAHGVDLCLVDIVDEDRDQHDPQRYTERRIPLDGPTYGVWHGHVPDVGPGRRYGFRVHGPWDPGAGMRHNPAKLLLDPYARGIEGDLAYVPAVLGGGSDDDGGPDGEDSLPSVPHAVIMGDLPEPPPQSRPRVPWADTVVYEAHVRGLTLQHPEVPAELRGTYAGLAHPAVVEHLQALGVTTLELLPIHASTPEPWLADRGLTNYWGYSTLGFFAPHAAYATAAAREAGPAAVLDEVRGMVHLLHAAGIEVILDVVYNHTCEGGDDALHVSWRGLDNTAYYLHDGGTPAALADVTGTGNTLDFRRTRVVQMALDSLRYWAEVVGVDGYRFDLAVTLGRDHDGFTPDHPFLSALRTDPVLSQLKLVAEPWDVGPGGWQTGRFPAPMAEWNDRFRNAARSFWLEAPKAGSHGAPMHGLRELTTRLAGSADFFGHSDPPLMRGPVASVNYVTAHDGFTLADLVSFDHKHNEANGEDNRDGTDDNRSWNHGIEGHAPTGDDATTEPWSAVVPLRRRSQRNLLATLLLAAGTPMITAGDEMGRTQGGNNNAYAQDTAISWLDWDLDTADLELLATARYLVGLRREHAALRAESFFLGTPRPGEEFPDLLWFDETGAAMDGEAWSVDGRRIIQMLRPGPDAGDADVLVVLHGGLEDAEVTLPDVLDGADPWQRVWSSTWDAPEGPEQADEEEAPGTALVESLSVEVFVARRPGPT0019225_778DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ISOAMYLASE,PGPT0019225-ISA|treX-K01214NANA
AK018_04167804etfB_3COG2086Electron transfer flavoprotein subunit betaGTGCGCATCGTCGTAGCCGTGAAGTACGTCCCGGACATCAACGCCGAGCGGAAGTTCGCGGACTGTCGCGTCGTGCGCGACCCGGCCGAGGGGACCCTCAACGAGCTCGACGAGAACGCGCTCGAGGCGGCGCTGCAGATCGTCGAGGCGCTGCCCGAGGGCGAGCAGGAGTCGGCCGAGGTGGTCGCGGTGACCGTCGCGCCGCCCGAGGGCGACGTCGCGCTGCGCAAGGCGTTCCAGATGGGCGTGCACCGCGGGGTGCGGGTGTCCGACGACGCGCTGGCCGGCTCGGACTACTTCGGGACGACGGCGGCGCTCGCGGCCGCGGTGCGCCACCTCGAGGCCGAGGGGCCCGTCGACCTGGTGGTCACCGGGATGGCGGCCCTGGACGGGCTCGGCTCCGTGGTGCCCGCGCTGCTCGCCGCCGAGCTGGGGCGGCCGTCGCTGACGTTCGCCAAGACGGTCGCGGTCGCCGGCGGGGCGCTGGAGATCACCCGGGAGACCGACGAGGCCACCGAGACGCTCACCGCACCGCTGCCCGCGGTGCTGTCCGTCGCGGACACCGCCAACCGTCCGCGGTTCCCCAACTTCAAGCTCATCATGGCGGCCCGTTCCAAGGCGATCGAGGAGCTGTCGCCCGCCGACCTGGGCCTGGACCCCGCCGTCGTCGGCGCCGCCGGTGCCCGCACCGAGACCACGGCGGCCGCACCGCGACCCGAGAAGCCCGAGGTCGAGCTGGTCCAGGACAAGGGCGAGGGTGGCAAGGCCCTGGCCGAGTACCTCATCCGCAACGAGCTGGTCTGAMRIVVAVKYVPDINAERKFADCRVVRDPAEGTLNELDENALEAALQIVEALPEGEQESAEVVAVTVAPPEGDVALRKAFQMGVHRGVRVSDDALAGSDYFGTTAALAAAVRHLEAEGPVDLVVTGMAALDGLGSVVPALLAAELGRPSLTFAKTVAVAGGALEITRETDEATETLTAPLPAVLSVADTANRPRFPNFKLIMAARSKAIEELSPADLGLDPAVVGAAGARTETTAAAPRPEKPEVELVQDKGEGGKALAEYLIRNELVPGPT0001035_563DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
AK018_04168978etfA_3COG2025Electron transfer flavoprotein subunit alphaGTGACGAACCGAACTGTGCTGGTCCTGCTCGACCCGGCGGACGAGGTCCGGTCCAGCGTGCTGGAGCTGTTGACCATCGGCCGTGCCCTCGGACGGGTGGAGGCCGTGACCCTCGAGGCGCCGAGCGTCGAGGCGCTCGCCCAGCTCGGCGCCCACGGCGTCGAGACCGTGCACCAGGCCGAGCTGCCCGCCGAGCTGCGCGGCGACGCCCGCCACCTGTCCGCCGTCGTCGCCGAGGTGCTGGCCGCCGCCGTGCGGCGCACGGACGCCGACGTCGTGCTGGCCCCGTCGACCTTCGCCGCCAAGGAGGCCGTGGCGCTGGCCGGCCGGGCGCTCGGCGCCGGCGTGATCATCGACGCCGCCGGCGTGGCCGAGGACGACGAGGGCCGGATCGTCGGCACCAAGCGGGTCTTCGCCGGCGCGTGGGACACCTCGAGCCGGGTCACCACCGACGTGGCCGTGCTGACAGTCCGGGCCAACGCCGTCGTCCCGCAGCCCGCCGAGGCCGCCGTGGCGACCGAGGTGGAGGGCTTCGCGGTCGAGGTCGGTGCGGTGCTGCCCACGGTCACCTCGCGCACCGAGAAGGAGCGCGACGCCGACCGGCCCACCCTCGAGGAGGCCGCGATCGTGGTGGCCGGCGGGCGCGGCACCGAGGGCGACTTCGGGCCCGTCCAGGACTTTGCCGACGCGCTCGGTGCCGCCGTGGGGGCCTCGCGGGACGCCGTGTTCGAGGGGTGGTTCGACCGCTACGTGGGGCAGACCGGCGTGACGGTCGCCCCGCGGCTCTACGTGGGCGCGGGGATCTCCGGAGCGCCGCACCACCGCGGCGGGATGCAGGCGTCCCAGGTGATCGTGGCGGTGAACAACGACCCCGAGGCGCCGATCTTCGAGATCTGCGACTTCGCCGTCGTCGGCGACCTGGCCGACGTGCTGCCGCAGGCCGCCGAGGTCATCCGCGCCCACAAGGCGGCCCGGTAGMTNRTVLVLLDPADEVRSSVLELLTIGRALGRVEAVTLEAPSVEALAQLGAHGVETVHQAELPAELRGDARHLSAVVAEVLAAAVRRTDADVVLAPSTFAAKEAVALAGRALGAGVIIDAAGVAEDDEGRIVGTKRVFAGAWDTSSRVTTDVAVLTVRANAVVPQPAEAAVATEVEGFAVEVGAVLPTVTSRTEKERDADRPTLEEAAIVVAGGRGTEGDFGPVQDFADALGAAVGASRDAVFEGWFDRYVGQTGVTVAPRLYVGAGISGAPHHRGGMQASQVIVAVNNDPEAPIFEICDFAVVGDLADVLPQAAEVIRAHKAARPGPT0001040_1911DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
AK018_04169669hypothetical proteinGTGACCCTGCAGCGCTGCACCGATCTGTCCGCCGCCGACTGGATCACCGGGTCGGAAACACCCTGGTGGCAATTGGTGACCTTCGGGCCGGACGCCTTCGAAGCCTCGGCCCGGCTTCGAATCATTCCCGACCCGACGGCGCCTGGACAGCACGAAGGCGATGTCGAGGACGAGCCCGTGCACCTGGCGTCGGAAGGGGAGTGGGGCGTCCGGGCCCTGCGGGTGCTGACACGGTGGACGGCCACCCCGGAACGGGTCTACTTCGCGGTCTGGCTCGGCGACGGCGACACTGACGACATCCCGCCAGGACCGACGTTCGACCTGCCGGAACGTCCGGAATGCGCGCTCCTGGCCGGTGACGGGAGCGACCTGGAGGAGGGACGGTCGGTCCTGTCCGATCGTCGACGCCGTCCGCCCGCCATGGTGTGGCCCGCTGACCGCGCCTGGGTGATGGCTTGCGACGTCGACCCGCACTGGGCCGGCATCGGCGCTCCACGCGACGCTGTCGGCGAGCTGATGGCCGCACCAGACATCGACGTCGTTCCCGCGGACCCGCGGGCCCGCCAGCCGGAGTACGACGGGCCGTCGCTCGACGCGGCGGTCAGGCCACCGCTGCCACCGGGTTTCCGCCCCGGTGTCTACCGACACCCTGGCGTCTACCGACCGTGAMTLQRCTDLSAADWITGSETPWWQLVTFGPDAFEASARLRIIPDPTAPGQHEGDVEDEPVHLASEGEWGVRALRVLTRWTATPERVYFAVWLGDGDTDDIPPGPTFDLPERPECALLAGDGSDLEEGRSVLSDRRRRPPAMVWPADRAWVMACDVDPHWAGIGAPRDAVGELMAAPDIDVVPADPRARQPEYDGPSLDAAVRPPLPPGFRPGVYRHPGVYRPNANANANANA
AK018_04170243hypothetical proteinATGGTCGAGCTGCGCTACTTCGCGGCGGCCCGGGCGGCGCTGGGCCGGTCCGGTGAGTCGCTGCCGCTGGACGACGGCGTCACGGTCGCGGACGTCGTCGGACGGTTGAGCGCCGGGTCGCCCGAGGCAGCCCCGGTGCTGTCACGCTGCTCGGTGCTGCTGGACGGACGGCGCGCCGCGGCGGACGACGTCGTGCCCGACGGGGCGACGCTCGACCTGCTGCCGCCCTTCGCCGGCGGCTGAMVELRYFAAARAALGRSGESLPLDDGVTVADVVGRLSAGSPEAAPVLSRCSVLLDGRRAAADDVVPDGATLDLLPPFAGGNANANANANA
AK018_041711083moaA_2GTP 3',8-cyclaseATGAGTCTCGTCGACCTCGGCATCCCGGCGGTCCCCGGCACCCGGGGCGAGGCCGTGCTGCCCGCCGACCGGCCCGCGACGCCCGGGCTCGTGGACCGCTACGGGCGCCTCGCCACCGACCTGCGCGTGTCCCTGACGGACCGCTGCAACCTGCGCTGCACGTACTGCATGCCCGCCGAAGGCCTCCCGGCGCTGCCCCGCGACAAGGTCATGACACGGGCCGAGATCGCCCGGCTCGTCGGCGTCGCGGTCCGCGACCTGGGGGTGCGGCAGGTGCGGTTCACCGGCGGCGAGCCGCTGCTGCGCGGCGACCTCGCCGAGATCGTCGCCGACATCGCCGCGCTGGACCCGCGCCCGGAGATCTCCCTGACCACCAACGCCGTCGGCCTCGACTCCCGTGCGGCGACCCTGCGGGCGGCCGGCCTGGACCGGATCAACGTCTCCCTCGACACGCTCGACCCGGACACGTTCGCGCGGCTGGCCCGCCGGCCGTTCCTCGAGCGGACGCTCGCCGGGATCGACGCCGGCGCCCGCGAGTTCGACCTGGTCAAGATCAACGCGGTGCTGGTGCGCGGCGTCAACCTCGACCACGCCGCCGACCTGCTGTCCTGGTGCCTGGAGCGCGGGTTCGAGCTGCGGTTCATCGAGCAGATGCCGCTGGACGCCGACCACTCGTGGGACCGCACGGCGATGGTGACGGCCGCGGAGGTCCGCGAGCTGCTCGGGCAGCGGTTCGCGCTCTCCACCGACGACGAGCCGCGCGACGGCGCCCCGGCGGAACGGTTCGCGGTGCGCTCGCTCGCCACCGGTGAGCATCTGGGCCGGGTCGGGATCATCGCGTCGGTCACCGAGCCGTTCTGCGCCGACTGCCGCCGCACCCGGCTGACGGCCGAGGGCGGCATCCGCGACTGCCTGTTCGCGCACACCGAGACCGACCTGCTCGGTCCGCTGCGCGACGGCGCCGTGGACGCCGAGCTGGCCGACCGGTGGCGGGCCGCGATGTGGGGCAAGGGTGCCGGGCACGGGATGGACGACCCTTCGTTCGTCCAGCCGGACCGCACGATGAGCGCGATCGGGGGCTGAMSLVDLGIPAVPGTRGEAVLPADRPATPGLVDRYGRLATDLRVSLTDRCNLRCTYCMPAEGLPALPRDKVMTRAEIARLVGVAVRDLGVRQVRFTGGEPLLRGDLAEIVADIAALDPRPEISLTTNAVGLDSRAATLRAAGLDRINVSLDTLDPDTFARLARRPFLERTLAGIDAGAREFDLVKINAVLVRGVNLDHAADLLSWCLERGFELRFIEQMPLDADHSWDRTAMVTAAEVRELLGQRFALSTDDEPRDGAPAERFAVRSLATGEHLGRVGIIASVTEPFCADCRRTRLTAEGGIRDCLFAHTETDLLGPLRDGAVDAELADRWRAAMWGKGAGHGMDDPSFVQPDRTMSAIGGPGPT0008410_684DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008410-moaA-K03639NANA
AK018_04172273hypothetical proteinATGACCGACGACACCCCGACCGTGCTGGCGCGCTGGGTCTCCGCCGTGGAGTCCGAGCTCGGCCTGCCCGCCGCCAGCATCGACGTCACCGAGGTCCTGGACCTGGCACGGGACGCCGCCCACCACGTGGCACGCCCCGCCGCCCCCGTGACCACCTACCTGGTGGGATACGCGCGCGGACTGGCGATGGCGCAGGGCAAGGTCACCCCCGACGACGACGTGGCCGGACGAGCCGCCCGGCTCGCCCTGGGCTGGGACTCCGAGGGCACCTGAMTDDTPTVLARWVSAVESELGLPAASIDVTEVLDLARDAAHHVARPAAPVTTYLVGYARGLAMAQGKVTPDDDVAGRAARLALGWDSEGTNANANANANA
AK018_04173576mobA_2Molybdenum cofactor guanylyltransferaseATGAGGTACGACGCCGTCGTCCTCGCCGGAGGACGTGCCACCCGGCTCGGCGGCACACCGAAGCCGACCGTCGAGGTCGGCGGCACGACCTTGCTCGACCGCGCGCTCGCCGCCACCGTCGGCGCCGACCGTACCGCCGTCGTCGGGCCGCCCGGGACGGCCGCCGGCGCTCGCGACGACGTGGTCGTCACCCGTGAGGACCCCCCGTTCGGCGGCCCGGTGGCCGGGATCGCCGCCGGTCTCGCCGCGCTGCGACGACCCGGCGCGCCCGCCCTGGTGCTGCTGCTGGCCGTCGACGTCCCGCGTGCCCGCGAGGCCGTCGAGCGGCTCCTCGCGTCGCCCGCGGACGGGAGCGACGGCGTCCACCTGGTGCGCCGGGGGCGGGACCAGTGGCTCACCGGCCTGTACCGTCGTGCCGCGCTCGAGAGGGCGCTCGCCGGGCTGGAACCGCACGGCGCTCCGGTGCGGCGGCTCATGGCGGGTCTCGAGCTGGTCAGGCTCCCCGACGAGACCGGGGTGAGCGACGACGTCGATACCTGGGACGATGTGACCAGAATCTCCGAGGAGGCACCATGAMRYDAVVLAGGRATRLGGTPKPTVEVGGTTLLDRALAATVGADRTAVVGPPGTAAGARDDVVVTREDPPFGGPVAGIAAGLAALRRPGAPALVLLLAVDVPRAREAVERLLASPADGSDGVHLVRRGRDQWLTGLYRRAALERALAGLEPHGAPVRRLMAGLELVRLPDETGVSDDVDTWDDVTRISEEAPPGPT0008430_203DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
AK018_041741320moaE2_3COG0303Molybdopterin molybdenumtransferase 2ATGAAGGCCGGAGCACCGCGCAGCATCGCCGAGCACGCCGCCGCCGTGCTGGCGCGCGTCGGCCCGCTGCCCGTGGTCGAGCAGCGCCTGGACGACCCCGGCGTGGTGGGCCTCGTGCTCGCCGAGGACGTCGTCGCCGCCGCTCCCGTGCCGCCGTTCGACCACGCCGCGATGGACGGGTACGCCGTGCGGTCCGCCGATCTGCCCCACGACCGCACGGCGGTGACGCTGCCGGTCCTCGCCGACGCGCGCCCCGGCACCCCACCGACCGCTGCGGGCAGGAAGTCTGCAGCCGCGTCACGGTCCGCGGCTGCAGATTCCCTGCACACGGCATCGAGGGGGGCGGTACGGATCATGACCGGTGCGCCCCTGCCGCCGGGGTACGACACCGTCGTCCCCGTCGAGCGCACGTCCACGGGCCGCTTCGTGGCGGGTGGCCCGACGGCGGAGCGCACCGTGACCCTCACCCGGCAGCACCGCGACCACGTGCGCCGCACCGGCACCGACCTGGCCGCCGGTGCGCTCGTGGCCCGCGCCGGCACCGCCGTCGGGCCCGGACTGGTGGCCACGGCCGCCGCGGCCGGCCTCGTCACGGTGCCCGTCCGCCGTCGTCCCCGGGTCGCGGTGCTGTCGACCGGCTCCGAGCTGGCCCCGCTGGGAACCACCGCGCCGGGCACGATCGCGGACTCGAACTCGCTGATGCTGGCGGCGCTCGTGCGCGGGGCCGGCGCCGAGGTGGTGCGCGTCGGAGCCGTCCCCGACCACGTGGACGCGCTCCGTACCGCCCTCGACGAGCTGACCGGGCCCGCGCCCGGCGCGGCGGACGGCCGGCAGCACGCCGGGGTGGACCTGATCGTGTCCTCCGGCGGCGTGTCCGCCGGGGCGAGCGATGTCGTGCGCGAGCTCCTCGCCTGCCCGGACGCCACCGACGTGGACGTCGCCACCGTGGCGCAGCGGCCCGGCAAGCCGCAGGCCCTCGCCACCTGGCGCGGCGTCCCCTGGGTGGCCGTGCCCGGCAACCCCGTCAGCGCCTTCGTCTCGGCCACGCTGTACGCGCTGCCGGCCGTGCGGCGGCTCGCCGGACATCCCGACGCACCGCCGCGCACCGCCCGGGCCGCGGCCTCCTGGACCAGCCCGGCCGGCACCCAGCAGGTGGTCCCGGTCGTCACCCGGCCCGACGGCGTCACCCCGGCCGGCAGCGACGGCCACCACCTCTCCGCGCTGGTCGACGCCGACGCCCTCGTGATCGTCCCCGCCCACCTCGAGCGCGTCTCCCCCGCCGACGACCTGCCCCTCCTCCCCCTGCCGGAGGCCCGATGAMKAGAPRSIAEHAAAVLARVGPLPVVEQRLDDPGVVGLVLAEDVVAAAPVPPFDHAAMDGYAVRSADLPHDRTAVTLPVLADARPGTPPTAAGRKSAAASRSAAADSLHTASRGAVRIMTGAPLPPGYDTVVPVERTSTGRFVAGGPTAERTVTLTRQHRDHVRRTGTDLAAGALVARAGTAVGPGLVATAAAAGLVTVPVRRRPRVAVLSTGSELAPLGTTAPGTIADSNSLMLAALVRGAGAEVVRVGAVPDHVDALRTALDELTGPAPGAADGRQHAGVDLIVSSGGVSAGASDVVRELLACPDATDVDVATVAQRPGKPQALATWRGVPWVAVPGNPVSAFVSATLYALPAVRRLAGHPDAPPRTARAAASWTSPAGTQQVVPVVTRPDGVTPAGSDGHHLSALVDADALVIVPAHLERVSPADDLPLLPLPEARPGPT0008430_1918DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
AK018_041751386narK_2COG2223Nitrate/nitrite transporter NarKATGGTTGCTCCGACGAGTGGCACCACCGAGTCCGAGCCGGTAGCCCCCGGCGCGGCGACAGACACCGAGGCCCTCGCCCGCCGGCCCGTGCACCGCTCCGGCCGGTGGATCGACCACTGGGACCCGGAGGACCCGGTCTTCTGGCGCAACGGCGGCCGGACGATCGCACGGCGCAACCTGTGGATCTCGATCTTCGCCGAGTTCCTCGGCTTCTGCGTCTGGGCGATCTGGTCCATCGTCGTCCCGCAGCTCCCCGACGCCGGGTTCGCCCTGACGACCGACCAGATGTTCTGGCTCGTCGGCCTGCCGGCCCTGGTCGGCGCCTCCCTGCGCGTCCCCTACACGCTGGCGGTGCCGGTCTTCGGCGGACGCAACTGGACGATGATCTCCGCCGCCCTCCTCCTCATCCCCACGCTCTCGCTCGTGTGGGTCGTGCAGCGCCCGGAGACGTCGTTCGGCGTCCTGCTCGCCATCGCGGCGCTCGCGGGCTTCGGCGGCGGCAACTTCGCCTCCTCGATGGCCAACATCTCGTTCTTCTTCCCCGAGAAGGAGAAGGGCGCCGCCCTCGGCTGGAACGCCGCCGGCGGCAACATCGGCACCGCGGCCGTCCAGTTCGTCGTGCCGCTGGTCATCGTCACGGCTGCCGGCGTCTCCCTGCCGCGGGCGGGCTGGGTCTTCATCCCGTTCATCCTGCTGGCCGTGCTCCTCGCCTGGCGGTTCATGGACAACCTGACCGCCGCCAAGGCCGACCCCCGGTCCTTCGGCACCGCGGCGCGGGAGAAGCACACCTGGCTGATCTCCTTCATCTACATCGGCACGTTCGGCAGCTTCGTCGGGTTCGCCGGAGCCTTCCCGACCCTGCTGAACAAGGAGTTCCCGGAGGTCACGCTGTCCCTGGCGTTCATGGGCGCCCTCGTCGGCTCGGTCACCCGCCCGCTCGGCGGCTGGATCGCCGACCGCACCGGCGGCGCCGTGATCACCGTGGCGAGCTTCGCGGTGATGGTCGTCGGCGCCTTCGGTGCCATCCAGGCGCTCGGCAGCGGCTCCTTCGGGCTGTTCTTCGGCTCCTTCATGCTGCTGTTCGTCGCGACCGGCATCGGCAACGGGTCGGTCTACCGCATGATCCCGGCGACCTTCCGCATCGCGAACGTCGCCGGCGGCGGTGCCGCGACGGCGAAGGCCGCGGCGGGCTGCATCGGCATCGCCGGTGCCGTCGGCGCCTTCGGCGGGTTCCTCATCCCGCGCGGGTTCGCGATGTCGGACACGGCGACCGGCTCGATGGTGCCGGCCCTGTGGACGATCATCGGCGTCTACGTGGTCATGGGCCTGCTCACCTGGGCCGTCTACGGTCGCGGCAGCAGCCGGATGGGGGCTGCTCGGGTATGAMVAPTSGTTESEPVAPGAATDTEALARRPVHRSGRWIDHWDPEDPVFWRNGGRTIARRNLWISIFAEFLGFCVWAIWSIVVPQLPDAGFALTTDQMFWLVGLPALVGASLRVPYTLAVPVFGGRNWTMISAALLLIPTLSLVWVVQRPETSFGVLLAIAALAGFGGGNFASSMANISFFFPEKEKGAALGWNAAGGNIGTAAVQFVVPLVIVTAAGVSLPRAGWVFIPFILLAVLLAWRFMDNLTAAKADPRSFGTAAREKHTWLISFIYIGTFGSFVGFAGAFPTLLNKEFPEVTLSLAFMGALVGSVTRPLGGWIADRTGGAVITVASFAVMVVGAFGAIQALGSGSFGLFFGSFMLLFVATGIGNGSVYRMIPATFRIANVAGGGAATAKAAAGCIGIAGAVGAFGGFLIPRGFAMSDTATGSMVPALWTIIGVYVVMGLLTWAVYGRGSSRMGAARVPGPT0000300_1388DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000300-narK|nrtP|nrt|narU-K02575NANA
AK018_041762238nasC_2COG0243Assimilatory nitrate reductase catalytic subunitATGAGCAGCGCGACCGCCGCCCCGGCCGCTCCGGCCGCGACGCACTGCCCGTACTGCGCCCTGCAGTGCGGCATGGAGCTCACGCCCGTCGAGGGATCGGCGTCGTCCGCAGCCGCGGACGCCGCGCCGGCCCCCGGCGGGCGTGCGCCCCTGCCCGTGACCGTGAGCCCCCGGGACTTCCCGACGAACGCCGGCGGGCTGTGCCAGAAGGGGTGGACCAGCGCCTCCGTGCTCGGGGTCCCGGACCGGATCACGACGCCGCTGGTGCGCGGCGCCGACGGCGAGCTGGCCGAGGCGACGTGGGACGAGGCGCTCACGCTCGTCACGGACCGCGTCCGGGCGATCCAGGACCGGCACGGTCCGGAGGGTGTCGCGATCTTCGGCGGCGGCGGGCTGACGAACGAGAAGGCCTACGCCCTGGGCAAGTTCGCCCGGACGGTGCTGCGCACGCCCAACATCGACTACAACGGGCGGTTCCGCATGTCCTCGGCGGCCGCGGCGGGCAACCGCGCCTTCGGCGTCGACCGGGGCATGCCGTTCCCGCTGACCGACCTCGGCGGCGCCGACGTCGTGCTGCTGCTCGGCTCCAACCCGGCCGAGACGATGCCGCCGTTCGTGCAGCACCTGGCCGGGGCGCGCGACGCCGGCGGACTCGTCGTCGTCGACCCGCGCCGGTCGGCCACGGCGCGGCTGGCCGACGACGGCCAGGGCATCCACGTCCAGCCCGTGCCCGGCACCGACATGGTGGTGCTGCTGGCGCTGCTGCACGTGGTGGTCGCCGAGCGGCTCGTCGACGCCGACTACCTGGCGGAGCGCACCGCGGGCTACGACGACGTCGTCCGCTCGGTCTCGGCGTGGTGGCCCGAGCGCGCGGAGACGGTGTGCGGGGTGCCGGCCGAGACCCTGCGGGTCGTGGCGCGCCGGCTGGCCGCGGCGTCCCCGGCCCACGGCGGTCGGGGGGCGTACGTGCTCACCGGTCGCGGCGTCGAGCAGTCCGCGCAGGGCACCGCGACCGTCACCGCGGCCATCAACCTCGCGCTGTCCCTCGGCCTGGTCGGTCGGGAGGGCTCCGGCTACGGATGCCTGACCGGCCAGGGCAACGGCCAGGGCGGCCGCGAGCACGGGCAGAAGTCCGACCAGCTGCCCGGCTACCGCAAGATCGACGACCCCGCCGCGCGCTCGTACGTCGCCTCCGTGTGGGGGGTGGATCCCGAGACCCTCCCCGGGCCCGGCAAGCCCGCCGTGGCGCTGCTGAGCTCGCTGGCGACGCCCGGCGGCCCGCAGGCGCTGTTCGTGCACGGTTCCAACGTGCTCGTCTCCGCTCCGAACGCCGACCGGGTCCGCGAGCGCCTCGAGGCCCTCGACCTGCTGGTGGTGTGCGACTTCGTGCCCTCGGAGACGGCGCGGCTGGCCGACGTCGTGCTGCCGGTGACCCAGTGGGCCGAGGAGGAGGGCACGATGACGTCCCTGGAGGGGCGGGTCATCCGCCGTCGCCAGGCCGTCGAGGCCCCGGGGCAGGCCCGCTCGGAGCTGTGGCTGCTCGCCGAGCTGGCGCGCCGGCTCGGCTCGGACGTGCACTTCGGCACCGACCCGGCCGAGGTCTTCGACGAGCTCGCTCGCGCCTCCGCCGGGGGCCCGGCGGACTACTCCGGCCTGTCGCACGCCCGCCTGGACGCCGACGAGGCCGTGGGCGGTCCGGGTCTGTACTGGCCGTGCCCGGCGACGACCGCGGAGCACCCGGGCACGCCCCGGATGTTCCTCGACGCGTTCGGCACCCCGGACGGTCGTGCCCGCATGGTGCCGGTCGACCACGGCGGCCCGACCGACGACGTCCGCGGCGACGCACCGACCTACCTGGTCACCGGCCGTGTGCTGCAGCACTACCAGTCAGGTGCCCAGACCCGCCGGGTGGCCGAGCTGGACCGCCTCGTGCCGGAGCCGTACGTCGAGCTGCACCCCCAGCTCGGGCTGCGGGTCGGGGTGGCCGACGGCGACCGGGTACGGCTGGAGTCCGCGCGCGGCGTGGTCGAGGCGGTCGCGCGCTGGACCGACGCCGTCCGACCGGACACCGTGTTCATGCCGTTCCACTGGGGCGGCCTCGGTGGCGTCAACCGCATCACCAGCGACGCCGTCGACCCGATCAGCTCAATGCCCGAGTTCAAGGTCTGCGCGGTGGACGTCACCCCGGTCACCGCTGCCGACACGACAGCCCACGACACCCAGGAGGTGCCGGTATGAMSSATAAPAAPAATHCPYCALQCGMELTPVEGSASSAAADAAPAPGGRAPLPVTVSPRDFPTNAGGLCQKGWTSASVLGVPDRITTPLVRGADGELAEATWDEALTLVTDRVRAIQDRHGPEGVAIFGGGGLTNEKAYALGKFARTVLRTPNIDYNGRFRMSSAAAAGNRAFGVDRGMPFPLTDLGGADVVLLLGSNPAETMPPFVQHLAGARDAGGLVVVDPRRSATARLADDGQGIHVQPVPGTDMVVLLALLHVVVAERLVDADYLAERTAGYDDVVRSVSAWWPERAETVCGVPAETLRVVARRLAAASPAHGGRGAYVLTGRGVEQSAQGTATVTAAINLALSLGLVGREGSGYGCLTGQGNGQGGREHGQKSDQLPGYRKIDDPAARSYVASVWGVDPETLPGPGKPAVALLSSLATPGGPQALFVHGSNVLVSAPNADRVRERLEALDLLVVCDFVPSETARLADVVLPVTQWAEEEGTMTSLEGRVIRRRQAVEAPGQARSELWLLAELARRLGSDVHFGTDPAEVFDELARASAGGPADYSGLSHARLDADEAVGGPGLYWPCPATTAEHPGTPRMFLDAFGTPDGRARMVPVDHGGPTDDVRGDAPTYLVTGRVLQHYQSGAQTRRVAELDRLVPEPYVELHPQLGLRVGVADGDRVRLESARGVVEAVARWTDAVRPDTVFMPFHWGGLGGVNRITSDAVDPISSMPEFKVCAVDVTPVTAADTTAHDTQEVPVPGPT0000390_1147DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000390-nasA|nasC|narB-K00372NANA
AK018_041771653nasD_3COG1251Nitrite reductase [NAD(P)H]ATGACGCTCCACGTGCCGACGAAGATCGTCGTCGTCGGGAACGGCATGGTCGGGTCCCGGTTGGTGGACGAGCTCGTGCGCCGCAGCGCGGACGCGTTCGACATCACGGTGCTCGGCGCGGAGCCGTACGAGCCGTACAACCGGGTGCTGCTCAGCGACGTCGTCGCCGGCCGCACCGACGTCGCCGCGATCTCCATGCCCGCCGTGTCCGGCGAGCACGTCAGGACGCTGCGCGGGGTGTCGGCCGCGTCGGTGGACCGGGTGCGCCGGACCGTCACCGACGACGCCGGTGCGGTGCACCCGTACGACCACCTCGTGCTGGCCACCGGGTCGCAGGCCCGCGTCTTCCCGATGCCGGGTCTGGTCGACGACGACGGAGTGGTCGAGCTGCCGGGCGGCGTGCACGCGCTGCGCACCCTGGACGACGCCCGCGAGATCGTCGCCGCGACGATGAACTCCTCGCGCGCGGTCATCGTGGGCGGCGGTGTGCTGGGGGTGGAGTCCGCGTACGGGCTGGCCGCCCGCGGGCTGGACGTGACGCTGGTGGACCCGGCCGCGGCGCCGATGAACCGACAGCTCGACGCCGACGCCGGCTCCGTGCTGGCCGCCGGCCTGACGGAGCACGGGGTGACCGTGCGGTCCGGGACCCGACCCACCGAGGTGCTGGTCGCCGGCGGCCGGGCCGTCGGGGTGCGGATCGACACCGGCGACGGCGGCGACGGCGAGGTGCTCGCCGCGGGCCTGGTGGTCCTGACCACCGGGACCGTCCCCGAGACGGGTCTCGCCGCGGCCGCAGGCCTGCCGACCGACCGCGGGATCGTCGTCGGGCACGACCTGGCCAGCCCGGCGGACCGCCGCGTCTTCGCCGTCGGGGACTGCGCGCAGCCCCCGCAGGGGTCGCGCGGCCTGGTCGCCGAGGGCTGGGACCACGCGCGTCGCCTCGCCGACCACCTCGCCTCCCTGGTGGTGGCGCGGCAGGACGCCTCCCAGCGGTCGCAGGAGCGCCCCCGGGAGCACCTGCGGTTCCCGAACGAGGACGAGCGGCCGTCGATGGCGGTGCGGCTGGGCACGCTGCTGGCGACGCGGGCGGCCACGGACGACGGCGTCGACACCCGCGGGACCGACGTCGTGAAGGTCAAGGCGGGCCCCTTGAGCGTGGTCTCCATGGGTGCGGCCGGCACCGGGCGAGCGCCGCGACCCGGAGAACGAGCCGTGCGCCTGGCGGACACCGTCGGCGGCAGGTACATCGAGGCGGTGGTGGCCGACGGCGTCCTGATCGGCGCCACGTGCGTCGGTGACGCGCAGGTGGCGGCCGATCTCACCGCCGCCTACACGCGGCGCAGCCCCGTGCCGGTCGACCCCGCGTTCCTCCTGCTGACCCCGGTCATGCCGAGCGCGGAGCCGGCCACGTCCCCGGAGCACATGCCCGACGACGCGACGGTGTGCCGCTGCAACGGGGTGTCCAAGCACGACATCACGTGCGCCTGGGACGTCGGCGCGCGGACCAAGGACGACATCGCGGCGGCCACCCGGGCGACGACCGGCTGCGGGAGCTGCACGGAGGCGGTCTGCGGCCTGGCCGACTGGTTGTCCGCCACGCGCGACGGCGGGCCCGGGGCCGAGCCGGAGGCGGCGGACCTCGCCTCCGTGTGAMTLHVPTKIVVVGNGMVGSRLVDELVRRSADAFDITVLGAEPYEPYNRVLLSDVVAGRTDVAAISMPAVSGEHVRTLRGVSAASVDRVRRTVTDDAGAVHPYDHLVLATGSQARVFPMPGLVDDDGVVELPGGVHALRTLDDAREIVAATMNSSRAVIVGGGVLGVESAYGLAARGLDVTLVDPAAAPMNRQLDADAGSVLAAGLTEHGVTVRSGTRPTEVLVAGGRAVGVRIDTGDGGDGEVLAAGLVVLTTGTVPETGLAAAAGLPTDRGIVVGHDLASPADRRVFAVGDCAQPPQGSRGLVAEGWDHARRLADHLASLVVARQDASQRSQERPREHLRFPNEDERPSMAVRLGTLLATRAATDDGVDTRGTDVVKVKAGPLSVVSMGAAGTGRAPRPGERAVRLADTVGGRYIEAVVADGVLIGATCVGDAQVAADLTAAYTRRSPVPVDPAFLLLTPVMPSAEPATSPEHMPDDATVCRCNGVSKHDITCAWDVGARTKDDIAAATRATTGCGSCTEAVCGLADWLSATRDGGPGAEPEAADLASVPGPT0000395_17DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000395-nasB-K00360NANA
AK018_041782742nasD_4COG1251Nitrite reductase [NAD(P)H]ATGTTCGCATCAGGTAACTCCACCCTGACGGTCCGGTCACGGTGGCTCCCTAGTGTCGAGGACATGAGCAGCGAGCCCCCCACCAGCAGCACCCGGCACGTCGTCGTCGTCGGCGGCGGGATGGTCGCGCAGCGCTTCGTCGAGGCCCTGCGTTCCCGCGACACCGACGGCACCTGGCGCATCAGCGTCTTCGCCGAGGAGCCGCGCAAGCCGTACGACCGCGTCGGGCTGACCCGGTACTTCGAGGTCCGTGACGCCGAGGAGCTCACCCTGGGCGACCCGGCGCTGTGGGACGACCCGTTGGTCACCCTGCACCGGGACTGCAAGGTCGAGGAGATCGACCGGGCGAACAAGACGGTCACCGACCGTCTCGGCCGCGTCCACGCCTACGAGGAGCTCGTCCTGGCCACCGGGTCGAACGCGGCGATGCCGCCGATCCCCGGCAACGAGCTGCCCGGCGTGTTCGTCTACCGCACCATCGACGACGTCGCCGAGCTGCGCGGCTGGGTCGAGGCCAAGCGCGAGGCGGGTCGCGTCGAGACCCGCGGCGGCGTGGTCGAGAAGCCGGTCCGCGGTGCCGTCATCGGTGGCGGCCTGCTCGGCCTGGAGGCAGCCGGCGCGCTGAAGGCGCTGGGCGCCCAGGCCACCGTCATCGAGTTCGGCACCCACCTGATGGGCGTCCAGTGCGACCTCGGCGGCGGCCAGGCCCTCAAGCGGCTCATCAACGACAAGGGCATCTCGGTGCGGCCCGAGACCGCCACCAAGGAGATGAAGCCCCACCGCCGCACCGGGCACGTCGGGCGCCTCGACTTCAACGACGGCGGCCGGCTGGACGTCGACGTGGTCGTCGTGGCCACCGGTGTGCGGCCCCGCGACGAGCTGGCGCGGTCCGCCGGCCTGGAGATGGGTGAGCGCGGTGGCGCCGTCGTCGACCTGACCTGCCGCACCGAGGACCCGAACGTGTGGGCCATCGGCGAGGTCGCCTGCATCGAGGGGCGCTGCCTCGGGCTGGTCGCGCCCGGCAACACGATGGCGGAGGTCGTCGTCGACCGGCTGCTCGGCGGGCAGGCCGAGTTCCCCGGCGCCGACACGGCCACGAAGCTCAAGCTGTCCGGCGTCGACGTCGCCTCGTTCGGCGATGCCCACGGTCGCACCGAGGACTGCGTCGAGGTGGTCTGGGCCGACCCGACCGCCGGCGTCTACAAGAAGCTGGTGCTGTCCGACGACGCCAAGACCCTGCTCGGCGGCGTCTTCGTCGGGGACGCGACGCCGTACGCCACCCTGCGACCGATGCTCGGCGCCGAGCTGCCCGGTGACCCGGCGGCGTTCCTGCTGCCCGAGGGCGCCGGCAACGCCCCGGACATCGAGCTGCCCGACGAGGCCAACGTCTGCTCCTGCAACAACGTCTCCGCGGGCACCATCCGCGGCGCGGTGACCGACCACGACTGCACGTCGGTCGGGGACGTCAAGAGCTGCACCAAGGCGGGCACCACCTGCGGCGCCTGCCTGCCGCTGGTCAAGAAGATCACCGAGACCGAGATGACGCGGGCCGGCATCGAGGTCTCGAACGCCCTGTGCGAGCACTTCGAGATGACCCGCGCCCAGCTCTTCGACGCCGTGCGGGTGTCCGAGCTGCACTCGTTCAGCGACATCATCGAGCGCTTCGGCGTCGTCCCCGAGGGCGCCACGAGCGCCGGCCGCGGCTGCGACATCTGCAAGCCCGTGGTGGCCTCGATCCTGGCGAGCCAGGGCAACGGGCACATCCTGTCGGGGGAGCAGTCGACCCTGCAGGACACCAACGACCACATGCTGGCCAACATGCAGAAGGACGGCACCTACTCCGTCGTCCCGCGCGTCCCCGGCGGCGAGATCACCCCCGAGGGCCTGATCGTCATCGGCGAGGTCGCGAAGGACTTCGGCCTCTACACCAAGATCACCGGCGGTCAGCGCATCGACATGTTCGGTGCGCGCGTCGAGCAGCTGCCCGACATCTGGAAGCGCCTGGTCGACGCCGGTTTCGAGTCCGGCCACGCCTACGGCAAGTCCCTGCGGACGGTGAAGTCCTGCGTCGGGTCCACCTGGTGCCGCTACGGCGTGCAGGACTCGGTCGGCATGGCCGTCGAGCTGGAGCTGCGCTACCGCGGGCTGCGCAGCCCGCACAAGCTCAAGCTCGGCGTCTCCGGCTGCGCCCGCGAGTGCGCCGAGGCCCGCGGCAAGGACGTCGGCGTCATCGCCACGGACAAGGGCTGGAACCTGTACGTGGCCGGCAACGGCGGGCAGACGCCCAAGCATGCGCAGCTCCTGGCCGAGGACCTGGACTCCGAGACCCTGCTGCGCACCATCGACCGATTCCTGATGTTCTACATCCGCACCGCGGACCGCCTGCAGCGCACCGCGCCGTGGGCCGAGGAGTACGAGGGCGGCCTGGAGGCGATCCGCCAGGTGATCATGGAGGACTCCCTCGGCATCGCCGACGACCTCGACGCCGCCATGGCCGCGCACGTCGGCGCCTACGAGGACGAGTGGAAGGCCGTCCTCGAGGACCCGGACAAGCTGGCCCGGTTCGGCTCGTTCGTCAACGCGCCGACGACGCCGGACCCGAGCCTGGCGTACGTGGCCGAGCGCGGGCAGAAGCGTCCCGCCACCGCCGAGGAGATCGCCGCCGGTCCCGACGGCCCGGTGGACCCGGCGCTCGCCGGCCCGGTCCTGGTGACCGGGCCCACGCTCGAGGTCCGGGCATGAMFASGNSTLTVRSRWLPSVEDMSSEPPTSSTRHVVVVGGGMVAQRFVEALRSRDTDGTWRISVFAEEPRKPYDRVGLTRYFEVRDAEELTLGDPALWDDPLVTLHRDCKVEEIDRANKTVTDRLGRVHAYEELVLATGSNAAMPPIPGNELPGVFVYRTIDDVAELRGWVEAKREAGRVETRGGVVEKPVRGAVIGGGLLGLEAAGALKALGAQATVIEFGTHLMGVQCDLGGGQALKRLINDKGISVRPETATKEMKPHRRTGHVGRLDFNDGGRLDVDVVVVATGVRPRDELARSAGLEMGERGGAVVDLTCRTEDPNVWAIGEVACIEGRCLGLVAPGNTMAEVVVDRLLGGQAEFPGADTATKLKLSGVDVASFGDAHGRTEDCVEVVWADPTAGVYKKLVLSDDAKTLLGGVFVGDATPYATLRPMLGAELPGDPAAFLLPEGAGNAPDIELPDEANVCSCNNVSAGTIRGAVTDHDCTSVGDVKSCTKAGTTCGACLPLVKKITETEMTRAGIEVSNALCEHFEMTRAQLFDAVRVSELHSFSDIIERFGVVPEGATSAGRGCDICKPVVASILASQGNGHILSGEQSTLQDTNDHMLANMQKDGTYSVVPRVPGGEITPEGLIVIGEVAKDFGLYTKITGGQRIDMFGARVEQLPDIWKRLVDAGFESGHAYGKSLRTVKSCVGSTWCRYGVQDSVGMAVELELRYRGLRSPHKLKLGVSGCARECAEARGKDVGVIATDKGWNLYVAGNGGQTPKHAQLLAEDLDSETLLRTIDRFLMFYIRTADRLQRTAPWAEEYEGGLEAIRQVIMEDSLGIADDLDAAMAAHVGAYEDEWKAVLEDPDKLARFGSFVNAPTTPDPSLAYVAERGQKRPATAEEIAAGPDGPVDPALAGPVLVTGPTLEVRAPGPT0000450_218DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362NANA
AK018_04179474hypothetical proteinATGATCCCGCTCGCCGCCGCCCCGACCGACCGCCCCGCCGAGATCCCCGACCCGGAGGACACCGTGACCACCACCCAGGACGCCGCCGACGTGGCGGCCGACGCGACCGCCGGCGGATGGGCCGCGGTGTGCCGCCTCGACCAGCTCGTCCCGGAACGCGGTGCGGCGGCCCTGCTGCGGCGGGCCGACGGCGCACCGTTCCAGGTGGCCGTCTTCCGGCTGCTGGACGACTCGGTGCACGCCGTCCAGCAGCTCGACCCCTACGCCGCGGCGAACGTCATGTCCCGGGGGATCGTCGGCACGCGCGGCGAGGAGCCCACGGTGGCGTCGCCCGTGTACAAGCAGGTCTTCGCGCTGCGCACCGGCGAGTGCCTGGAGTCCGGCGGCAAGACGCCGAAGGCGGGTCTCGATGCGCACCTGGAGGCCTTCCCGGCCGAGGTGCGGGACGGCGTCGTGCACGTGCGGGTGACCTGAMIPLAAAPTDRPAEIPDPEDTVTTTQDAADVAADATAGGWAAVCRLDQLVPERGAAALLRRADGAPFQVAVFRLLDDSVHAVQQLDPYAAANVMSRGIVGTRGEEPTVASPVYKQVFALRTGECLESGGKTPKAGLDAHLEAFPAEVRDGVVHVRVTPGPT0000455_337DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363NANA
AK018_04180795sumTCOG0007Uroporphyrinogen-III C-methyltransferaseGTGACGGCGCAGCCGACGCCGGGGCGGGTCACGCTCGTCGGGGCGGGTCCCGGTGCGGCCGACCTGCTGACCTACCGGGCCTGGCGTGCGATCGCCCGGGCCGACGTCGTCGTCCACGACCGGCTGGTCCCGTCGGAGGTCCTCGACGACCTGGCCCCCGAGGTCGAGGTGATCGACGTCGGCAAGGCTCCCGGACGGCACAAGGTGCCCCAGCCCGGGATCAACGCCCTGCTCGTCGACCGGGCCCGCGCCGGCCGGCGCGTCGTGCGCCTCAAGGGTGGGGACCCGTTCGTGTTCGGACGCGGCGGCGAGGAGTACGCGGCCTGCCGCGAGGCGGGGATCGACGTCGACGTGGTGCCCGGGGTGTCCTCGGCGCTGGCGGTGCCGGCGCTCGCCGGCGTGCCGCTCACCCACCGGGGCACGACGACCGCCTTCCACGTCGTGACCGCCCACACCCGCACGGGTGAGCAGGAGCTGGACGACACCGCCGTGTCCTGCGTCACGCGGCGGAGCGCTACGCTGGTGATCCTCATGGGGGTGTCCTCCCTGCCGGCGATCGTGACCAGGCTGCTCGACGCCGGAGCGGACCCGGCCACCCCCGTGGCGATCGTGGAACGAGGCTCGACCCCCGACCAGCGGGTCACCCGGACCGGGCTGGACCTGGCGGCCAAGCGCGCCGACGAGCTCGGTGTCCGGGCCCCGGCGGTGATCGTGGTCGGAGACGTGGCGGCGCAGGGACTGCTGGAGGGTGCGGGTGACGGACACGGAGCACACGTGGGGGACGCGCGTGGCTGAMTAQPTPGRVTLVGAGPGAADLLTYRAWRAIARADVVVHDRLVPSEVLDDLAPEVEVIDVGKAPGRHKVPQPGINALLVDRARAGRRVVRLKGGDPFVFGRGGEEYAACREAGIDVDVVPGVSSALAVPALAGVPLTHRGTTTAFHVVTAHTRTGEQELDDTAVSCVTRRSATLVILMGVSSLPAIVTRLLDAGADPATPVAIVERGSTPDQRVTRTGLDLAAKRADELGVRAPAVIVVGDVAAQGLLEGAGDGHGAHVGDARGPGPT0003685_1385DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0003685-sirA|ylnD|cysG|cobA-K02303NANA
AK018_041811170hypothetical proteinGTGACGGACACGGAGCACACGTGGGGGACGCGCGTGGCTGAGACCTCGACACGACCGGCCCTCGGCCAGGTCATGGCGGGATGCACCGTGCTGGTCACCGCGGACCGACGCTCCGGTGAGCTCGCCGCCGCGCTGGAGCGCCGCGGCGCCTCGATCCGGCACGCTCCCGCGCTGAGCATGGTCCCGCACGTGGACGACGACGCGCTCATCGCCGCGACCGCGGCCCTCGTCGACGACCCGCCCGACGTCGTCGTCGCCACGACGGGAGTCGGGTTCCGGGCCTGGATCGAGGCGGCGGACGCCCACGGGCTGGCCGACGACCTGCTCCGGGTGCTCGGCGCGGCACGCATCGTGGCCCGCGGTCCGAAGGCGCGCGGCGCCGTGCAGGCGGCCGGCCTGGGCGCCGACTGGGTCGCCGAGTCCGAGACCTCCGCGGAGGTGGCGGAGGTGCTGCTGAGCGAGGGCGTCAGCGGCCAGCACATCGCCATCCAGCACCACGGTGCCGGCGCGGACGGGCTGGACGAGGTCTTCGCCAAGGCCGGTGCGACGGTGTCCCCGCTGGTGGTCTACCGGTGGGGTCCGGCGCCGGACCCGGAGGCCGTGCCCACGTCGGTGCGGGCCGCGGCCGACGGCGAGATCGACGCGGTCGTGTTCACCTCCGCGCCGGGTGCCGAGGCGTGGATGGAGGCCGTGGAGGACGCGGGCCTGCTGGACGAGGTGGTGTCGCGGTTCTCGTGCGGCGAGATGGTCGCCGCCTCGGTCGGCCCGGTGACCTCCCGGCCCCTCGCGTCCCGCGCGGTGCCGACCGTGGAACCGGAGCGCGGCCGGCTCGGTGCGCTGGTGCGCACCCTGGTCGGCCACTACGAGCACATCGAGTCCGTCGCGCTGAGCACGGTCGCCGGCCCTCTGGTGATCCGGGCGCGGGTCGCGGTGCTCGACGGTGAGGTGCTGCCGCTGTCGCCGACGGGGGTCCAGGTGCTGCGGCTGCTCGCCGCGGCCGGGGGCGACGTCGTCACGCGGGACCAGGTGCTCGACGTGCTGCCGGGCGTGTCCCGGGACGGGCACGCCGTGGAGGTGGCGATCGCCCGGCTGCGCGAGGCGACCGGTCGGCGCGACCTGGTCAAGACGGTCGTCAAGCGCGGCTACCGCCTGGAGCTGGCGCACCCCTGAMTDTEHTWGTRVAETSTRPALGQVMAGCTVLVTADRRSGELAAALERRGASIRHAPALSMVPHVDDDALIAATAALVDDPPDVVVATTGVGFRAWIEAADAHGLADDLLRVLGAARIVARGPKARGAVQAAGLGADWVAESETSAEVAEVLLSEGVSGQHIAIQHHGAGADGLDEVFAKAGATVSPLVVYRWGPAPDPEAVPTSVRAAADGEIDAVVFTSAPGAEAWMEAVEDAGLLDEVVSRFSCGEMVAASVGPVTSRPLASRAVPTVEPERGRLGALVRTLVGHYEHIESVALSTVAGPLVIRARVAVLDGEVLPLSPTGVQVLRLLAAAGGDVVTRDQVLDVLPGVSRDGHAVEVAIARLREATGRRDLVKTVVKRGYRLELAHPPGPT0003665_108DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003665-hemD-K01719NANA
AK018_041821329sasA_14Adaptive-response sensory-kinase SasAGTGACCGCGCCGTACGCCGCACGGCCGGGCTGGTCGCTGCGGCTCCGGCTCACACTCGTCGCCGCCGGACTCACCGCCGTCGCCCTGGTGCTCGGCGCGTTCGCGCTCACCTCGGTCGTCTCCCAGAGCCGGATCGCCGCCACGGACGCCGTCCTGCGCGGCACGGCGGACCAGGTGGCGGCCCTCGTCGCCGAGGACCGGCTGCCCGACGTGCTCGCCGCCGACGAGCCGGGAGAGATCGTCCAGCTCGTCGACCCCTCCGGGCGGGTGGTCGCCTCATCGCCCAACGCCTCCCGCACCTTGCCGGTACTCGCTCCCGCCCGGCTCGGCACCACGCCCGACGGCGCGACCACCCGCGACGACTCCGCCTACGGTTCCGGTCCGGTCCGCGCCTACGTGGCCACCCTGCCCACGGACCAGCGGGTCGTCGCCACCCTGCCCCTGGCCACCATCGAGGGCGCCCTCACCGCGCTACGCCTCTCCCTGGGCGTCGTCGTCCCCCTCCTGACCCTCGCGCTGGGTCTGGTCACCTGGACGCTGCTCGGGCGGGCGCTGCGGCCCGTGGAGGAGCTGCGGGCCGGCGCCGACCGGGTCAGCGGCGTCGGCGGGCCCGGCACGCTGCCCGTGCCCCGGCCCCGGGAGCTCGCCGCGCTGGCGCACACCCTCAACGCCATGCTCGACCGCCTCGACACCGCCGCACGCCGGCAGACCGACTTCGTGGCCGACGCCGCCCACGAGCTGCGCTCCCCGATCGCCGCGCTGCGCACCAGCGTCGAGGTGGCGCGCGAGCACCCCGAGGCCTACCCGCCCGCCGAGCTCACGGCCGACCTCGCGCAGGAGGTCGCGCGCCTGCAGGCGCTCGCGGACGACCTGCTCGTCCTGGCGCGGGTCGGCGCCTCGCGACCCGAGGTCCGCGACGTCGACCTGCGGGACGTCGTCCGCGAGGCCGCCGCTGACGTCGACGTCCGCGGCGACGGACGCGCCGTCGTCGACCCGGACGCCGTCGCGCGGGTGGTGCGCAACCTCGTCGACAACGCCCGCCGGCACGCCCACCGCGTCCGGGTCACGGTGGCCGACGGCGTCGTCACGGTCGACGACGACGGCCCCGGCATCGCCCCGGAGGACCGCGAGCGCGTGTTCGAGCGGTTCACCCGGCTCTCCCCGGCACGCGGTCGCGACGCCGGCGGGGCCGGGCTCGGTCTCGCCATCGCCCGAGAGGTCGCCCGGGACCAGGGCGGCGACGTCGCGCTGTCCGACAGCCCGCTCGGCGGCCTGCGGGCCACGGTCACGCTGCCGACCGGACCGGCAGCGCAGGCAACGCACCGCTGAMTAPYAARPGWSLRLRLTLVAAGLTAVALVLGAFALTSVVSQSRIAATDAVLRGTADQVAALVAEDRLPDVLAADEPGEIVQLVDPSGRVVASSPNASRTLPVLAPARLGTTPDGATTRDDSAYGSGPVRAYVATLPTDQRVVATLPLATIEGALTALRLSLGVVVPLLTLALGLVTWTLLGRALRPVEELRAGADRVSGVGGPGTLPVPRPRELAALAHTLNAMLDRLDTAARRQTDFVADAAHELRSPIAALRTSVEVAREHPEAYPPAELTADLAQEVARLQALADDLLVLARVGASRPEVRDVDLRDVVREAAADVDVRGDGRAVVDPDAVARVVRNLVDNARRHAHRVRVTVADGVVTVDDDGPGIAPEDRERVFERFTRLSPARGRDAGGAGLGLAIAREVARDQGGDVALSDSPLGGLRATVTLPTGPAAQATHRNANANANANA
AK018_04183660tcrA_2COG0745Transcriptional regulatory protein TcrAGTGGTGCGCATCCTGGTGGTCGAGGACGAGTCGGTGCTCGCGCGGGCCCTGCGCCGTGGCCTGCAGGCGGAGGGATTCGCGGTCGACCTGGCGGCCGACGGCGAGACCGGCCTGGAGGCCGCGCTCGAGGGCGACCACGACGTCGTCGTCCTGGACCTCATGCTCCCGCAACGCTCCGGCCTCGAGATCCTGCGCGAGATGCGGCGCGCGGAGATCTGGACCCCGGTGCTCGTCCTGAGCGCCAAGGACTCCGACGACGACGTCACCCGCGGCCTGGACGTCGGTGCCGATGACTACCTGGCCAAACCGTTCGCCTTCACCGTCCTCGTCGCCCGGCTGCGGGCGCTCCTGCGCCGCGGCGCCCCGCCCCGACCCGCCGTCCTGGAGGCCGGGCGCCTGACCCTCGACCCGGCCACCCGCGAGGTGCGCCTGGACGGCCGCGCCGTCGAGCTCACCACCCGCGAGACGGCACTGCTCGAACACCTCATGCGTCGCCCCGGCGAGGTGCTGACCAAGGTCGAGCTGCGCGACCACGTGTGGGACGCCGCCGGTGACGACCTCAACGTCGTCGAGGTCTACGTCGGGTACCTGCGCCGCAAGCTCGGCAAGAGCGCGATCGACACGGTCCGCGGCTCCGGCTACCGGGTCGTGGGGCGGTGAMVRILVVEDESVLARALRRGLQAEGFAVDLAADGETGLEAALEGDHDVVVLDLMLPQRSGLEILREMRRAEIWTPVLVLSAKDSDDDVTRGLDVGADDYLAKPFAFTVLVARLRALLRRGAPPRPAVLEAGRLTLDPATREVRLDGRAVELTTRETALLEHLMRRPGEVLTKVELRDHVWDAAGDDLNVVEVYVGYLRRKLGKSAIDTVRGSGYRVVGRPGPT0004105_1585DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
AK018_041841221hypothetical proteinATGAACACCACGCGCAGCCTCTCGCCCCGGGCACGGTGGGCGGTCCCGGCCGTCGTGGCCGGTGCCGTCGCCGCCGCGTTCGCCGTCCCCGCCGCTGTCGGCGCCGTCGCGAGCGACGACCTGCCGGCCGTCACCGCCGACGAGCTGGTCGACCGCGTCGCGAACGCCGAGCCGGTCCCCGTCTCCGGGACCGTGGTCTACACGGCGCGCCTGGGCCTGCCGGACGTGACCGTCTCCGAGCTGCAGGGCGCCGGCCCGCTGGACCTGCTCGGTGGCAGCACGACGATGCGCGTGTGGTCCGACGGCGAGGACTCCTCGCGCGCCGCGCTGCTCGGCGACGTCTCGGAGTACTCGGTGGTGCGCTCCGGTGCGGAGGCGTGGACCTACTCCAGCGCCGACGACGAGGCCGTGCACTACGTCCTCGACCCGGCGGACCAGGAGCGGTACGACGAGCTCGCGCAGCAGGCCCTCGAGCCGGAGGTCGAGGGCGACGTGCCGACGCCGTCGGAGCTGGCGGACCTGGCGCTGGCGCAGGCACGGATCTCCACCGACGTGGAGACCACGGACCCCGTGGAGGTCGCCGGGCGCGCCGCCTACCAGGTGGAGCTGACGCCGCAGACCGACGCCACCCTGGTCGACCGGATCCGCGTCGCCGTCGACGCCGAGACCTGGGTGCCGCTGCGGACCCAGGTGTGGAGCGTCCAGGACGCCGAGGCGCCGGCGCTCGAGGTGGGCTTCACCGACGTCTCCTTCGACGCGCCCGACGCCGGCGTGTTCGAGTTCTCCGCCCCGGCGGGCGCCGAGGTGCGCGAGGTCGTGGTGCCGCTGCCCGAGCCGGGCACGACGGAGAGGCCGAGCAGTTCCGCGCTGGGCGAGGACGGGGATGTCGCGGTCTCCGGCACCGGCTGGGAGACCGTCGTGGAGGTCTCCGAGGTGGACGTCGAGGCGATACTCGGCGCGACGGCGGAAGGCCGGTTGCCGGAGGGCAGCACCGGGTCCAGCGGCGCGGACGACCTGTTCGAGGAGCTCACCGAGGCCGAAGAGGGCGAGCTGCCGGGCGTCCCCGAGCTCGACACCCGCGCGCTCTACGAGCAGCTCACCACGCCCGTCGACGGCGGGCGGCTGCTGACCTCGGCGCTGCTGTCCGTGCTGGTGACCGACGACGGCCGGGTCCTGGCCGGATCGGTGCCGCCGGCGGTGCTCGAGGAGCTCGCCGGATGAMNTTRSLSPRARWAVPAVVAGAVAAAFAVPAAVGAVASDDLPAVTADELVDRVANAEPVPVSGTVVYTARLGLPDVTVSELQGAGPLDLLGGSTTMRVWSDGEDSSRAALLGDVSEYSVVRSGAEAWTYSSADDEAVHYVLDPADQERYDELAQQALEPEVEGDVPTPSELADLALAQARISTDVETTDPVEVAGRAAYQVELTPQTDATLVDRIRVAVDAETWVPLRTQVWSVQDAEAPALEVGFTDVSFDAPDAGVFEFSAPAGAEVREVVVPLPEPGTTERPSSSALGEDGDVAVSGTGWETVVEVSEVDVEAILGATAEGRLPEGSTGSSGADDLFEELTEAEEGELPGVPELDTRALYEQLTTPVDGGRLLTSALLSVLVTDDGRVLAGSVPPAVLEELAGNANANANANA
AK018_04185960bcrA_3Bacitracin transport ATP-binding protein BcrAATGACCGCAGGCGTGCCTGTCGCGCCGCCGGCGGTGCGCACCGAGGGGCTGACGAAGCGGTTCCGGTCGGGGCAGGTCGGCGTCGACGCGATCGACCTGCACGTGCCGCGCGGCGCCGTGTACGGGTTCCTCGGGCCCAACGGGTCGGGCAAGACGACGACGATCCGCATGCTCCTCGGGCTGGTGTCGCCCACGGCGGGGTCCGTGGAGCTGCTGGGTGCGCCGATGCCGCAGGCGGGCCCGGCGGTGCTGCCGCGGGTCGGGGCGCTTGTGGAAGGTCCCGCGTTCCACCAGTACCTGTCCGGGGAGGCGAACCTGCACCGGCTGGACGCCGCGGACGCCACGGCGTCGCCGGCGAGTCGCGCGGGCCGGGTCGGTGCGGCGCTGGAACGCGTCGGGCTGACGGCAGCCGCCGGCAAGAAGTACCGCCAGTATTCGCTCGGCATGAAGCAGCGCCTCGGGCTCGCGGCGGCGCTGCTGCGTCCGCGGGACCTGCTGCTGCTCGACGAGCCCACCAACGGGCTCGACCCGCAGGGCACGCGGGAGGTGCGGGCGTTGGTGCGCGAGCTGGCCGACGGCGGTGCCACCGTGCTCGTCTCGTCGCACCTGCTCAGCGAGATCGAGCAGGTGTGCTCCCACGTCGGGATCATGAGCCGGGGCAAGCTGCTCGCCCAGGGGCCGCGCGCGGAGATCGCCGCCTCGGGGACCCCCGAGGTGCGGGTGGCGACCCGTCCCGACCAGCGCGACCACGTGGTGCGGGTGCTCGCGGGGCTCGGGCTGGCGGACGTGCGGGTCGACGGTGAGGTCGTCGCCGCGCCGTTGGGGAGCGTGGCGGTCGAGAAGGTCGCCCAGGCGGTGGTCGGCGACGGCGTCGATCTGCTCGGCCTCGAGGTGCGACGCCCGACGCTGGAGGACGTGTTCGTGCGGCTGACGGGGGAGGGTTTCGATGTCGCTCGCTGAMTAGVPVAPPAVRTEGLTKRFRSGQVGVDAIDLHVPRGAVYGFLGPNGSGKTTTIRMLLGLVSPTAGSVELLGAPMPQAGPAVLPRVGALVEGPAFHQYLSGEANLHRLDAADATASPASRAGRVGAALERVGLTAAAGKKYRQYSLGMKQRLGLAAALLRPRDLLLLDEPTNGLDPQGTREVRALVRELADGGATVLVSSHLLSEIEQVCSHVGIMSRGKLLAQGPRAEIAASGTPEVRVATRPDQRDHVVRVLAGLGLADVRVDGEVVAAPLGSVAVEKVAQAVVGDGVDLLGLEVRRPTLEDVFVRLTGEGFDVARPGPT0006725_5685DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_04186867hypothetical proteinATGTCGCTCGCTGAGGCTCCCGCGGCGGAGGTGCCGGCGGCACCTGCCCGCGCGACGGCCCGCCTGCTGCGCAACGAGCTGCGCCTGGTGTTCGGCCGGGTGCGCAACATCGTGCTGCTGGCGGGCCTGGCGGCCGTCCCGCTGCTCATCGGCACGGTCCTGTTCATCACCCAGGACACGCCCGTGGCCGGTCAGGGGCCGCCGTTCCTCGACCGTGTGACCGGCAACGGGGTGTTCCTCGTCTTCGCCGCGCTGGTGAGCTGTCTGCCGTTGCTGCTGCCGCTGTGCGTGTCGATCGTGTCCGGTGACGCGATCGCGGGGGAGGCGGGTGCCGGCACCCTGCGGTACCTGCTGGTGGTGCCCGTGCCGCGCACCCGGTTGCTGCTGGTCAAGGCGGTCGCCGCCCTGGCGTACGCGGGGGCCGCCGTCGCCGCGATCGCCGTCGTCGGGCTGGTCGCCGGCGCCGCCTTCTTCGGGGTGGGCGACGTCGTGCTGCTCTCGGGGGACACGATCCCGTTGGCCGAGGGCATGTTGCGCACGCTCGGAGTGGTCGCCTACGTCATCGCCTCGCTGACCGGGCTGGTCGCCGTCGGCCTGTTCCTGTCGACGCTCACCGAGGTGCCGGTGGCCGCGATGGCCTCGACGGTGGTCGTGGCCATCGTCAGCGGCGTGCTCGACGCGCTGCCGCAGCTCTCCGCGATCCACCCGGGGCTGCTGACGCACCACTGGCTGGACTTCGGGGAGTTCCTGCGCCTCGAGGTGGACGGCTCGGTGCTGCTGGCGGGACTGGCCGTGCAGGCGGCGTGGGTCGCGGTCTTCGGGGCGCTGGCCTGGAGCCGCTTCACGACGGCGGACGTGTCGTCCTGAMSLAEAPAAEVPAAPARATARLLRNELRLVFGRVRNIVLLAGLAAVPLLIGTVLFITQDTPVAGQGPPFLDRVTGNGVFLVFAALVSCLPLLLPLCVSIVSGDAIAGEAGAGTLRYLLVVPVPRTRLLLVKAVAALAYAGAAVAAIAVVGLVAGAAFFGVGDVVLLSGDTIPLAEGMLRTLGVVAYVIASLTGLVAVGLFLSTLTEVPVAAMASTVVVAIVSGVLDALPQLSAIHPGLLTHHWLDFGEFLRLEVDGSVLLAGLAVQAAWVAVFGALAWSRFTTADVSSPGPT0006730_10671DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_041871053modC_2COG1118Molybdenum import ATP-binding protein ModCATGACGTTCGAGCTCGCCGCCACCGTGCCGTCGCGCGGCCTGGACGTCCGCCTCGACGTCGCCGAGGGCCGCACGCTCGCGCTGCTCGGGCCCAACGGGGCCGGCAAGTCCACCGCCCTCGGCCTCGCCGCCGGGACGCTGCGCCCGCACGACGGCGAGATCACCCTGGACGGCCGCACGCTCGCCGCCGCACGGGACGGCCGCCGCACCGCCTGGGTGGCCCCGCACCGCCGTCGGGTCGCGCTGCTCGCCCAGGACCCGATGCTGTTCGGCCATCTGACCGTGCGCGAGAACATCGCGTTCGGTCCCCGCGCCCAGGGAGCGACCCGCCGCGAGGCCGCCGCACGGGCCGACCGGTGGCTGGCGGCGATCGACCTCACGGACCTCGCCGACCGCCGTCCGGCCACGCTGTCCGGCGGGCAGGCGCAGCGCGTCGCGATCGCCCGCGCGCTGGCCGCCGCACCCCGGCTGCTGCTCCTCGACGAGCCGATGGCGGCCCTCGACGTCGACATCACCCCCGCGCTGCGCCAGAGGTTGCAGCACCTGCTCGCCGAGCAGACCACGGTCCTGGCGACCCACGACGTCCTGGACGCGCTGCTGCTCGCGGACGAGGTCGCCGTCGTCGACGGCGGGCGCGTCGTCGAACGCGGCCCGACGGCGGAGGTGCTGTCCCGCCCGCGCAGCGCCTTCGCCGCGTCGATCGCCGGCCTCAACCTGCTGTCCGGGACCTGGACGTCCGACGGCGTCGCCACCGCGGGCGGCGAGGTGGTGCACGGGCACGGCGCCCCCGACGTCGTCCTCGGCACCGCGATGACGGCCGTGTGTCGACCCGCCGCCGTCGCCGTCCACCTCACCGCGCCGCACGGCTCGCCGCGCAACACCTTCCGGGCCACGGTACGGTCGCTGACACCCCACGGCGATCTCGTCCGGGTGCGCACCGACCGGCTCGCCGCCGACGTCACGCCCGGATCCGTGGCCGAGCTCGGCCTGGCTCCCGGCCGGGAGGTCTGGCTGGCGGTCAAGGCCGCCGAGGTCGACGTCTACCCGGTGTGAMTFELAATVPSRGLDVRLDVAEGRTLALLGPNGAGKSTALGLAAGTLRPHDGEITLDGRTLAAARDGRRTAWVAPHRRRVALLAQDPMLFGHLTVRENIAFGPRAQGATRREAAARADRWLAAIDLTDLADRRPATLSGGQAQRVAIARALAAAPRLLLLDEPMAALDVDITPALRQRLQHLLAEQTTVLATHDVLDALLLADEVAVVDGGRVVERGPTAEVLSRPRSAFAASIAGLNLLSGTWTSDGVATAGGEVVHGHGAPDVVLGTAMTAVCRPAAVAVHLTAPHGSPRNTFRATVRSLTPHGDLVRVRTDRLAADVTPGSVAELGLAPGREVWLAVKAAEVDVYPVPGPT0008445_2106DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008445-modC-K02017NANA
AK018_04188843hypothetical proteinATGACACCCACCTCCGAGCGAGCCACGGCAGCGCGCGCGGCGCGCGACCCTGCCGAGGTCCCCGCCGGCCTCCCCCGCTGGGCCTACCTGCCCGCCGTCGTCGGCGGCCTGTTCGTCGTCCTGCCCCTCGTCGCGATGGGCACCCGCGTCGACTGGTCGAACTACGGGGCCCTGGTCACCAGCGAGTCGGCCCGCGCCGCCCTGGTGCTCAGCCTGCAGACGGCGACGGCGAGCACGCTGCTGTGCCTGGTGCTCGGCATCCCGATGGCGCTCGTGCTGGCCCGCGGCCGGTTCCCCGGCCAAGGTCTGCTGCGCTCCCTGGTGCTGGTCCCGCTGGTGCTGCCGCCCGTGGTCGGCGGCGTCGCGCTGCTGTCCACGTTCGGCCGCCGCGGTCTGCTCGGGGAGTCGATGGAGGTGCTCGGCCTGCAGATCGCGTTCTCGACGACGGCGGTAGTCCTGGCGCAGAGCTTCGTCGCCCTGCCGTTCCTCGTCGTCAGCCTGGAAGGGGCGCTGCGCACGGCCGGTGAGCGGTACGACGTCGTGGCCGCGTCGCTCGGCGCGAGCCCGACGACCGTGCTGCGCCGCGTGACCCTGCCGCTGGCGTGGCCGGGGCTGCTGTCCGGGACGGTGCTGGCGTTCGCGCGGGCGCTCGGCGAGTTCGGCGCCACCATCACGTTCGCGGGCAGCCTGCAGGCCGTCACCCGCACGCTCCCGCTGGAGGTCTACCTGCAGCGCGAGACCGACCCGGACGCCGCCGTCGCGCTGTCGCTGCTGCTGGTGGCGGTCGCCGTCGCTGTCATCGCCGCCACCCACCGACGGGGCGCCGGAGGTGCGGTGCGATGAMTPTSERATAARAARDPAEVPAGLPRWAYLPAVVGGLFVVLPLVAMGTRVDWSNYGALVTSESARAALVLSLQTATASTLLCLVLGIPMALVLARGRFPGQGLLRSLVLVPLVLPPVVGGVALLSTFGRRGLLGESMEVLGLQIAFSTTAVVLAQSFVALPFLVVSLEGALRTAGERYDVVAASLGASPTTVLRRVTLPLAWPGLLSGTVLAFARALGEFGATITFAGSLQAVTRTLPLEVYLQRETDPDAAVALSLLLVAVAVAVIAATHRRGAGGAVRPGPT0008440_378DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008440-modB-K02018NANA
AK018_04189807modA_2COG0725Molybdate-binding protein ModAATGACGACGCCACTCCCTCGCCGCACCACGCGCGCCACCGCCGCGCCGGTCGTCGCCGCGAGCGCCGCCGTCGTCCTCACGGCCTGCAGCACCGGCACGTCCGCCACCCCGAACGGTACGGAGCACACCACGCTGACCGTCTTCGCCGCCGCGTCCCTGACCGAGGCGTTCGACGAGATCGCTGCGGACTTCGAGGCCGACCACCCCGGCGTCGACGTCGCGCTCAGCCTCGCCGGGTCGTCCAGCCTGGTCGCGCAGGTCCAGCAGGGCGCCCCGGCCGACGTCGTCGCCACCGCCGACAGGGCGACGATGGACACGCTCGTTGCGGACGACCTGGTCGGCACCCCGCAGACCTTCGCCACCAACACGCTCGAGATCGCCGTCCCGCCGGGCAACCCCGCCGACGTCAGCGCACTCACCGACCTGACCGGCCCGGACCTCAACGTCGTGGTCTGCGCTCCGGAGGTGCCGTGCGGCGCGGCCACGACCGCCGTCGTCGCTCACGCCGCCCTCACGCTGCAGCCGGTCAGCGAGGAGCAGAGCGTCACGGACGTCCTGGGGAAGGTGACCGCGGGCGAGGCCGACGCCGGGCTCGTCTACGTCACCGACGTCGCCCGCGCCGGCGACCGGGTCGAGAGCGTCGCCTTCGACGAGTCCGACGCCGCGGTGAATACCTACCCGGTCGCCACGGTCGACCGGGCCGGGCAGAGCCCCGACCAGGCCGACCTCGCCCAGCAGTTCGTCGACGCCGTCCTCTCCGAGGACGGGCAGGCTGCGCTCGCCGACCTCGGGTTCGCCGCACCATGAMTTPLPRRTTRATAAPVVAASAAVVLTACSTGTSATPNGTEHTTLTVFAAASLTEAFDEIAADFEADHPGVDVALSLAGSSSLVAQVQQGAPADVVATADRATMDTLVADDLVGTPQTFATNTLEIAVPPGNPADVSALTDLTGPDLNVVVCAPEVPCGAATTAVVAHAALTLQPVSEEQSVTDVLGKVTAGEADAGLVYVTDVARAGDRVESVAFDESDAAVNTYPVATVDRAGQSPDQADLAQQFVDAVLSEDGQAALADLGFAAPPGPT0008435_1291DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008435-modA-K02020NANA
AK018_04190417hypothetical proteinATGTACCGCGTGCCGCAGATGAGGATCAGCGAGGCCGCCGTCTATCTCGGCGTCAGCGACGACACCGTGCGCCGCTGGGTCGATCGCGGGCTGCTCACCGCCGACCGCGACGACTCCGGCCGCAAGGTCGTCGACGGCTACGAGGTGGCCATGGTCGCCCGCGAGCACGCCACCCCGCCCGGGCTCCCCCGCGGCATGAAGAGCTCGGCCCGCAACCGGTTCGTCGGGCTGGTCACCGACCTGCAGGTCGACACCGTCATGGCGCAGGTCGAGCTGCAGTGCGGGCCGTTCCGCGTGGTGTCGCTGATGAGCAGCGAGGCCGTCCGCGACCTCGGCCTGGAACGCGGTTCGGTCGCGGTGGCCACCATCAAGTCGACGAACGTCGTCTTCGAGACCCCCGACCGGGGCCCCGCATGAMYRVPQMRISEAAVYLGVSDDTVRRWVDRGLLTADRDDSGRKVVDGYEVAMVAREHATPPGLPRGMKSSARNRFVGLVTDLQVDTVMAQVELQCGPFRVVSLMSSEAVRDLGLERGSVAVATIKSTNVVFETPDRGPANANANANANA
AK018_04191525hypothetical proteinATGGAAGAGTTCGACACCACGCGACGCCCCCGCGCCGTCCCGCCGCCGCAGACGGCGACGCTCCTGCAGGAGACGATCGCGAGGTACGGCGGCGCCTCCCGGATCGACCTGCTGGACTCGTTCGCCGTGCCGCACCACGAGGGGCTGACCGCCGACCCCAGGGCGTGGGCCGATGCGATCTTCGGGCGGCCGCCACGGTGGGTCGTCGCGTTGCTGACCCTGCGCCAGGCACTCGTCGGCCTCGTGGGCATCCAGCGCGACGACGGAAGCGCCTTCGCCACGCTGGCCCGCACCGAGGACGAGGTGCTGCTCGGCGCCGACTCCGGGCACCTCGACTTCCGTGCGTCGGTGCAGGTCGCCGACGGCCGGGTGGCCCTCACCACGGTCGCGCGGACGAACAACCGTCGCGGGCGCCTCTACCTCGTCCCGGTCCGCGTTCTCCACCCGCCGATCGTGCGCTCGATGCTCACCCGGGCCCACCGGGCGTTCGTCCGCGCCGCCGCAGCATCTTCCCGGGACACCTGAMEEFDTTRRPRAVPPPQTATLLQETIARYGGASRIDLLDSFAVPHHEGLTADPRAWADAIFGRPPRWVVALLTLRQALVGLVGIQRDDGSAFATLARTEDEVLLGADSGHLDFRASVQVADGRVALTTVARTNNRRGRLYLVPVRVLHPPIVRSMLTRAHRAFVRAAAASSRDTNANANANANA
AK018_04192645hypothetical proteinGTGGGTGACGGACAGAGGAGGCGACGGCTGGGCGCCGAGGACTGGATCGACGCGGCATTGCGAGCACTCGCCGACGGTCTCGACGCGATCGCCGTCGAACCGCTCGCCCAGGAGCTCGGAGCCACCAAGGGCAGCTTCTACTGGCACTTCGCCAACCGACGGGCCCTCGTCGACGCCACGTTGTCCCGCTGGGAGGAGCGGCACACCGAGGCCGTGATCGCGGCGATGGAGCAGATCGACCGGCCCGAACAGCGCCTCGACGAGCTGCTCACCGTCGCCCTCGACCGCAACATCGATCCCGTCGAGGTCGCGCTGTTCTCCGCCGCGCACGATCCGGCCGTCGGACCGGTCCTCGCGCGCGTCACGCAACGTCGCATCGACTACGTCGCCGAGCTGTACCGTGCGGCCGGGTCCGCGCCCGAAGCGGCCTACAGTTCCGCCGTCACCGCGGTGTCGACCTACCTCGGCCACGTCCAGCTCGCCCACGCCGCACCCGGGACTCTGCCCACCGGTCAGGCATGGGTCGCCCACCGCGACCGGGTACGCAGGCGGCTGATGCCACGAGACGGGCATGACGGTTCGCCGCGCCGTCGCGGTGTCAGCCCCGCTCCACCGGCATCCAGAGCTCGGTCGTGGCCGTGCTGAMGDGQRRRRLGAEDWIDAALRALADGLDAIAVEPLAQELGATKGSFYWHFANRRALVDATLSRWEERHTEAVIAAMEQIDRPEQRLDELLTVALDRNIDPVEVALFSAAHDPAVGPVLARVTQRRIDYVAELYRAAGSAPEAAYSSAVTAVSTYLGHVQLAHAAPGTLPTGQAWVAHRDRVRRRLMPRDGHDGSPRRRGVSPAPPASRARSWPCNANANANANA
AK018_04193867hypothetical proteinGTGATCACCGAGCTCAACCGACTGGTCGACCTCGTCGAGAGCCGTCTGACCGACGAGATCGACGTCGCTCGCCTGTCCGCCGACCTGGGCACGACCGAGTACCACCTGCGGCGGATGTTCTCGTCGTTGGCCGGTATGCCGTTGTCCGAGTACGTGCGGCGTCGGCGCATGACCGTCGCGGCGACCGACGTCGTCGCCGGTGACCCGGTCCTCGACGTCGCGGTCCGCTACGGGTACGGCTCCGCCGAGGCGTTCGGCAGGGCCTTCCGTGCCGTGCACGGGAGCCGGCCCGCCGACATCCGGACGCACGGCGGCCCCCTTCGGTCACAACCACAGCTCAGGTTCCGCCTGACCGTCGAAGGGAGCTCCGCCATGGACACCCGTCTCACCGACCGCCCCGCCTTCCGGCTCGTCGGCCATACCGCCCGCGTGCCGCTGATCCACGAGGGCATCCACCCCCACATCCAGGCGCACGTCGCCTCGCTGCCCGCCATCGAGCACGCACGCCTCAAGGCGCTCGGGGACACCGAGCCCGCCGGTCTGCTCCAGGTGAGCGCCGACGTCGACCCGGACCACACCGAGGGCAGTGAGCTCACCTACCTGCACGGGGTCGCCCTCGACGCGGGGACGGCCGTTCCCGACGACCTCGACGTGATCGAGGTGCCCGCAGGAGCGTGGGTCGTGTTCCGCAGCTCGGGCGACTACCCGGCCGTGCTACAGGAGACGTACGCGGCCTCGGCCACGGAGTGGTTCCCGTCGAACCCGTGGCGACTGCGGCCCGGGCCGTCGATCGTGGCGGTCCTGGAGCGGGCCGACGACTTCAGCACGGCCACGACCGAGCTCTGGATGCCGGTGGAGCGGGGCTGAMITELNRLVDLVESRLTDEIDVARLSADLGTTEYHLRRMFSSLAGMPLSEYVRRRRMTVAATDVVAGDPVLDVAVRYGYGSAEAFGRAFRAVHGSRPADIRTHGGPLRSQPQLRFRLTVEGSSAMDTRLTDRPAFRLVGHTARVPLIHEGIHPHIQAHVASLPAIEHARLKALGDTEPAGLLQVSADVDPDHTEGSELTYLHGVALDAGTAVPDDLDVIEVPAGAWVVFRSSGDYPAVLQETYAASATEWFPSNPWRLRPGPSIVAVLERADDFSTATTELWMPVERGNANANANANA
AK018_041941281moaE2_4COG0303Molybdopterin molybdenumtransferase 2GTGCACGCAGAGTCGAGACGTCGGCCCGTCGACGCCCACCGTGAAGCGGTCCGCGCGTTGGTCGGACCGGCGCTCGCCGGCGCGCGGCGCGTCGAGACGTGCCCCCTGGCCGAGGAACTCGCGCTCGCCGGCGTCGGCGCCTCGGTCCGCCCTCGCGTCGTGGTGGCCGACGTCCGCGCCGTCGTCGACCTGCCGGGTTTCGACAACTCTCAGATGGACGGCTACGTCGTCCGCGCCGTCGACCTGGCCGGGGCGACGCCGTCGGACCCGGTCGAGCTGCCGGTCGCCGCGCCGGTCCCGGCGGGCACCCGGCCGCCGCCTCTCGCACCCGGAACCGCGGCCCCGGTGATGACCGGCGCCCCGATCCCGGACGGCGCCGACGCCGTCGTCAAGATCGAGGAGGCCGACCCACCCGTCTTCCCCGCGTCCGGCGCGGCGGCGACGGTCCGGTTCAGCGCGCCGGTCGCGCCCGGCGCCTTCGTCCGCCGCGCGGGATCAGACGTCGCCGCCGGTGACGTCGTCGTCCCGGCGGATACCCGGCTCGGTCCTGCGCAGCTCGGCGTCCTCGTCGCGGCGGGCGTCGCCGAGGTCGAGGTCGCCGCGCCGCCGCACGTGCTGCTGATCTCCACCGGCTCCGAGCTCGTCGCGGCCGGCGAGCAGCTCGGCCCGGCTCGGCTCTACGACGCCAACGGGGCCGCTCTAACCGCAGCCCTGGCCGAGGTCGGGTGCCGCGTCACCCACCGCGTCGTCCCTGACGACCCGGCCGCCCTGCGCAGCGTCCTGGTCGCGGCGCCGGACGACGTCGCGCTCGTCGTCACCAGCGGCGGCGTCTCCGCCGGCGCCTACGAGGTGGTGCGCCAGACCCTCACGGACGCCTGGTTCGGGCACGTCGCCGTCCAACCCGGCGGGCCGCAGGGCCTCGGCACGATCACTCTCGGCTCCGACCGTGAGGTGCCGCTCGTCGCGTTCCCCGGCAACCCGGTCAGCGCGCTGGTCTCCTACGAGCTGTTCCTGCGCCCCGTGCTCGCCGAGGCCACCGGCGCGGTGCCTACGCACCGGCCCCGCGGCCGGGCGCCGCTCGCCGAGCCGATCGACTCGCCCGAGCACCTGCACCAGGTCCGTCGCGGCCGCCTCGACGCCGACGGTCGCGTCGAGATGGTCGGGGGGCCGGGATCCCACCTCCTGGCCCACCTCGCGATGGCTACGCTGCTCGTACACGTGCCACCCGGCGTCGCGCACCTCGACGAGGGCGACGATGTCGACTACCGGGAGATCCGATGAMHAESRRRPVDAHREAVRALVGPALAGARRVETCPLAEELALAGVGASVRPRVVVADVRAVVDLPGFDNSQMDGYVVRAVDLAGATPSDPVELPVAAPVPAGTRPPPLAPGTAAPVMTGAPIPDGADAVVKIEEADPPVFPASGAAATVRFSAPVAPGAFVRRAGSDVAAGDVVVPADTRLGPAQLGVLVAAGVAEVEVAAPPHVLLISTGSELVAAGEQLGPARLYDANGAALTAALAEVGCRVTHRVVPDDPAALRSVLVAAPDDVALVVTSGGVSAGAYEVVRQTLTDAWFGHVAVQPGGPQGLGTITLGSDREVPLVAFPGNPVSALVSYELFLRPVLAEATGAVPTHRPRGRAPLAEPIDSPEHLHQVRRGRLDADGRVEMVGGPGSHLLAHLAMATLLVHVPPGVAHLDEGDDVDYREIRPGPT0008430_1552DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
AK018_04195489moaC2_2COG0315Cyclic pyranopterin monophosphate synthase 2ATGAGCGACCTGTCCCACTACCGCGACGACGGCGCCGCCCACATGGTCGACGTCAGCGCCAAGGACGTCACGACACGCCGCGCGACCGCACGCGGTGTGCTGCGCACCCGGGCCGACGTCGTCACGCAGATCGCCTCCGGCGACCTCCCGAAAGGTGAGGCGATCGCGACGGCTCGGATCGCCGGGATCATGGGGGCCAAGCGCACCCCGGACCTCGTGCCGCTGTGCCACCCGCTGCCGATCTCCGGTGTCGACCTCGACATCACCCCGGCCGACGACGGCTCCGGGACGGTCGAGATCTCCGCGACCGTGAGGACCACCGGCCGTACCGGCGTCGAGATGGAGGCCCTGACCGCCGTCACCGTCGCCGGGCTCACGCTCTACGACATGATCAAGGCCGTCGACAAGGCCGCGGTCCTCACGGACATCGAGGTCGTCGCCAAGTCCGGCGGGAAGTCCGGAGACTGGACGCGGGAGGTGCAGGCATGAMSDLSHYRDDGAAHMVDVSAKDVTTRRATARGVLRTRADVVTQIASGDLPKGEAIATARIAGIMGAKRTPDLVPLCHPLPISGVDLDITPADDGSGTVEISATVRTTGRTGVEMEALTAVTVAGLTLYDMIKAVDKAAVLTDIEVVAKSGGKSGDWTREVQAPGPT0008405_2017DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637NANA
AK018_041961065hypothetical proteinATGAGGGCCGCGATCGTCGTCGCCTCCGAACGCGCCGCCGCCGGCGTCTACGAAGACCGCTCCGGACCGGCCGCCACGGAGTGGTTCACCGCCCGGGGCTGGGAGGTGCTGCCCGTCGTCGTCGTGCCCGACGGCGAACCCGTCCGGGACGCGCTGCTCGAGCTGATCGAGGGGGACGACGTCGCACCCGACGTCGTCGTCACCTCCGGCGGGACCGGGATCTCGCCGACCGACGCCACCCCCGAGGCCACCCTGGCCGTGCTGGACCGGGAGGTGCCCGGCATCGCCGAGCTCGTGCGCGCCCGCTCGCTGGCTCCGACGGACCCGGCCAAGAGGATCGTCCCCGGTGCCGCGCTCTCGCGGGGGATCGCCGGGGTCGCCGACCGCACCCTGATCGTCAACCTCCCGGGGTCGGTCGGGGGAGTGCTCGACGGCCTCGATGCCCTGGCCGAGGTGCTGCCGCACGCCGTCGAGCAGCTCGCCGGCCTCGACCACACGCACCGGCCGCCCGCCGACCCTGCCGACCCTGCTGCCGACGCGCGAGGTCGTACCTCCCGCTCCCCGGTCGTACCCGAGGGGTACGACCCCGCGACGGAAGGTACGACCTCGCGGACCGAGGACGCCGTCGTCCTGCGTGCCGACGTCCTCGACACCCCGCTCGAGGGCCTCCTGGTCGAGCTGAGCGACCTCGTCCGTGACGACACCTGCGGGGCCGTCGCCACGTTCGTCGGTCATGTTCGCGACCACGACGACGGCCGCGGTGTCACCGCGCTGCACTACGAGGCCCACCCGCAGGCCGCCGAGATCCTGCACGAGATCGCCCAGCAGGTGACCACCCGCACGGCCGCGGCCACCGGCGACACCGTGCGCACCGCCGTCGTGCACCGCACCGGCGACCTGCGGGTCGGTGACGTCGCCGTCGTGGCCGCCGTCGCCTCCGGCCACCGCCAGGCCGCGTTCACGTGCGCGAGCGCCCTCGTCGAGGAGCTCAAGGCCGAGGTCCCCATCTGGAAGCAGCAGGGGTTCACGGACGGCTCCAGCGAATGGGTGGACTCTCTGGGCTGAMRAAIVVASERAAAGVYEDRSGPAATEWFTARGWEVLPVVVVPDGEPVRDALLELIEGDDVAPDVVVTSGGTGISPTDATPEATLAVLDREVPGIAELVRARSLAPTDPAKRIVPGAALSRGIAGVADRTLIVNLPGSVGGVLDGLDALAEVLPHAVEQLAGLDHTHRPPADPADPAADARGRTSRSPVVPEGYDPATEGTTSRTEDAVVLRADVLDTPLEGLLVELSDLVRDDTCGAVATFVGHVRDHDDGRGVTALHYEAHPQAAEILHEIAQQVTTRTAAATGDTVRTAVVHRTGDLRVGDVAVVAAVASGHRQAAFTCASALVEELKAEVPIWKQQGFTDGSSEWVDSLGNANANANANA
AK018_041972286hypothetical proteinATGACGATCACTCCCGAGTCCCGCCGCCAGCTTCCCGTGGTGACGACGCCCCACTACGCGCGCGGCAAGCGGTCCGCGGCCACCTGCCGGTTCAAGTGCGCGGACGCCTGCGCCCACCCGGCGCCCAACGAGAGCGCCAACGAGTACTTCCGGGACATCGCCTCGCGGGCGATGAGCCGCCGCGTCATGCTCGGCGGGGCCGCCGCGGCCGCAGCCGCCGTCGTCGTGGGCGCCGAGGTCCTGGGTGCCGAGCCCGCGTCCGCGCTGCCGACCCGACGCGGCGGGCACGGTGCGCGCGGGCTGTCCTTCGGCGCCATCGCACCCCAGGCCATGGAGGTCGACGACTTCGCCGTCCCCGAGGGCTACGAGTGGTCGCCGATCATCCGCTGGGGCGACCCGATCCTGCCCGGCGGGCGGGCGTTCGACCCGCTCCGCCAGTCGCCGGAGCAGCAGGCCAGGCAGTTCGGCTACAACTGCGACTACCTCGACATCCTGCCCGAGGACCCGAAGCACATCCGCTCCATGGTGGAGACGCGCCGCGGCACCAAGGGGGTGCTCGTGGCGAACCACGAGTACACGAACCCGCACATCATGTTCGACGCGTCCTACGACGACGCCACGCGCCGTGCGATCGAGCGCGCCGCGCACGGCATGTCCGTGGTCGAGCTGCGCCGCGACAGGACCGGGAAGCCGTGGGAGTACGACCGGATCGCCCGCCTGAACCGGCGCATCCACATCGGCTCCGAGTTCACGATCGACGGCCCGGCCGCCGGCCACGACCTCCTGAGGACCGTGGACGACCCGACGGGCCGGAAGGTCCTCGGCACGCTCAACAACTGCGCCGGCGGCACGACGCCGTGGGGCACCGTGGTCTCCGGCGAGGAGAACTTCCACGGGTACCTGCGCGTGAACGGCCAGGACTCCCGCGACGCGCGCTACGGCCTGCGCAACGCGCCGACGGGTTACGGCTGGGAGCTCGACGAGCCCCGCTTCGACGGCAACAACCCCGGCTACGAGAACGAGAACCACCGCTTCGGCTGGGTCGTCGAGATCGACCCGTACGACCCGGACGAGGCACCGGTGAAGCACACCGCGCTGGGCCGCTTCAAGCACGAGGGCGCGAACGTCATCATGTCCGACGACGACCGTGCCGTCGTCTACATGGGCGACGACGAGCGCTTCGACTACGTCTACAAGTTCGTCTCGACCGAGCGCATGCGGCGGGGCAACAGCCGCTGGGCGCGTCGGCACAACAAGACGCTGCTGTCCTCCGGCGACCTGTACGTCGCGCGGTTCGACGGCGACTCCCCGGCCTCCGAGATCGACGGTTCCGGTGCCGTGCCCTCCGACGGTGCCTTCGACGGCACCGGGCAGTGGCTGCCGCTGGTGCTCGACGGCGCCTCGCAGGTGGACGGCATGTCGCTGGAGGAGGTGCTGGTCTTCACGCGCCTGGCCGCCGACGCCGTGGGCGCCACCAAGATGGACCGCCCCGAGGACGTCGAGCCGAACCCGTACACCGGCCGCATCTACGTCGCCTGCACCAACAACTCCAACCGTGCGCGCGACGGCTACCCGGCCGCCGACGAGGCGAACCCCCGCGGGTCGAACCGTGACGGGCACGTCGTGGAGATCATCGAGGACGGCGGCGACCAGACCGCCACCACCTTCACCTGGAACCTGCTCATCGTGGCCGGCGACCCCGAGGTCAACGACTCGACCTACTTCTCCGGCTACCCCGCGGACAAGGTCTCGCCGATCTCGTGCCCGGACAACCTCGCCTTCGACACCGACGGCAACCTGTGGATCTCCACGGACGGCCAGCCGTCGTCGATCCAGAAGTGCGACGGGCTGTTCAAGGTCACGCTCGACGGGTCGCGGCGCGGCCGGGTCGAGCAGTTCCTGGCGGTGCCGCGCAGCGCCGAGACCTGCGGTCCGGTGCTCGACGTGCGCGACTCCATGGCGTACGTCAACGTCCAGCACCCGGGCGACGACGGCAGCTGGGGCGCCCAGACCTCGTACTTCCCGGACTACCTGGGTGACGACGAGGACGTGCCGGCCGGCGCGTGGCGCGGGCCCCGGCCGTCGACGATCCAGGTGTACCGGACGGACGCGGTCGAGGACGACGACCGCTGGGGCCACGGGAAGGGCCGAGGGAACGGTCGCGGTCGGGGTGACGACCAGCACGACGGTCCGGGACCCTTCCGGACCTCCCGCGGGGGGCGCGGCCAGGGATCGACGAACCGGCCGACGTACCGCCACGGCGCGGGGGAGCAGTTCCGCGGCTGAMTITPESRRQLPVVTTPHYARGKRSAATCRFKCADACAHPAPNESANEYFRDIASRAMSRRVMLGGAAAAAAAVVVGAEVLGAEPASALPTRRGGHGARGLSFGAIAPQAMEVDDFAVPEGYEWSPIIRWGDPILPGGRAFDPLRQSPEQQARQFGYNCDYLDILPEDPKHIRSMVETRRGTKGVLVANHEYTNPHIMFDASYDDATRRAIERAAHGMSVVELRRDRTGKPWEYDRIARLNRRIHIGSEFTIDGPAAGHDLLRTVDDPTGRKVLGTLNNCAGGTTPWGTVVSGEENFHGYLRVNGQDSRDARYGLRNAPTGYGWELDEPRFDGNNPGYENENHRFGWVVEIDPYDPDEAPVKHTALGRFKHEGANVIMSDDDRAVVYMGDDERFDYVYKFVSTERMRRGNSRWARRHNKTLLSSGDLYVARFDGDSPASEIDGSGAVPSDGAFDGTGQWLPLVLDGASQVDGMSLEEVLVFTRLAADAVGATKMDRPEDVEPNPYTGRIYVACTNNSNRARDGYPAADEANPRGSNRDGHVVEIIEDGGDQTATTFTWNLLIVAGDPEVNDSTYFSGYPADKVSPISCPDNLAFDTDGNLWISTDGQPSSIQKCDGLFKVTLDGSRRGRVEQFLAVPRSAETCGPVLDVRDSMAYVNVQHPGDDGSWGAQTSYFPDYLGDDEDVPAGAWRGPRPSTIQVYRTDAVEDDDRWGHGKGRGNGRGRGDDQHDGPGPFRTSRGGRGQGSTNRPTYRHGAGEQFRGNANANANANA
AK018_041981242iscS_2COG1104IscS-like cysteine desulfuraseATGACCGTGACAACCTCCCCCGACCCCGGCGCCTACCTCGACCACGCCGCCACGACGCCGATGTCGCCGGCGGCGCTCGAGGCGTTCGTCGCCGCGGCGGGCCGGACCGGCAACGCCTCCTCGCTGCACTCGGCGGGACGGGCCGCCCGACGCGCGGTCGAGGAGTCCCGCGAGGCCGCGGCCGCGGCCCTCGGCGCCCGGCCGAGCGAGGTGATCTTCACGGCCGGCGGCACCGAGTCCGACAACCTCGCGGTCAAGGGCATCTTCTGGGGGCGGCGCTCCCAGGACTCCCGACGACGGCGCGTCCTGGTCTCCGCCGTCGAGCACCACGCCGTGCTCGACCCGGCGTTCTGGCTGGCCGGCCACGCGGGCGCGGAGATCACTCTGCTCCCGGTCGACGCCGAGGGACGCCTCGACCTGGACGCCCTGCGCGCGGAGCTGGCCGCGCACGCCGACGAGATCGCCCTGGTCAGCGTGATGTGGGCGAACAACGAGGTGGGCACCGTGCAGCCGGTGCGCGACGTCGTGCGCCTCGCCCACCAGCACGGCGTCCCGGTGCACACCGACGCCATCCAGGCCGTCGGGCAGGTCGAGGTCGACTTCGCGGCCTCGGGCGTGGACGCCATGACGGTGACGGGGCACAAGATCGGCGGACCGGTCGGCGTCGGCGCCCTGCTGGCCCGCCGCGACCTCGCCCTGGAGGCCGTCTCCCACGGGGGTGGCCAGGAGCGTGGCGTCCGGTCGGGCACCCTGGACGTCCCGGCGATCCGGGCCTTCTCCGTGGCCCTGACCGACGCCGTCGGCCGCCGCGAGGAGCACGCCGCACGGCTCGCCGCCCTGCGCGACACGCTCGTCGACGGTGTCCGCCGCGTCGCCCCGCAGGCCGTCCTGCGCGGCCCGGGCCCGGCGTCGTCCACCCCGGACGGCGTGCCCGACCGCCTGCCCGCCAACGCCCACTTCACGTTCCCGGGGGCCGAGGGCGACTCGCTGCTGTACCTGCTGGACTCGGCGGGCGTGCAGGCCTCGACCGGGTCGGCCTGCCAGGCGGGCGTCCCGCAGCCCAGCCACGTCCTGCTCGCGATGGGCGTCGAGGAGGCCGACGCCCGCGGTGCCCTGCGCTTCTCCCTCGGCGCCACCTCCACCGCGCACGACGTCGAGGCGCTGCTGGACGCGCTGCCGGGAGTGGTCGAACGCGCGCGGGCCGCGGGCCTGGTCTCCGCACGGCAGGGAGGTGCCGCATGAMTVTTSPDPGAYLDHAATTPMSPAALEAFVAAAGRTGNASSLHSAGRAARRAVEESREAAAAALGARPSEVIFTAGGTESDNLAVKGIFWGRRSQDSRRRRVLVSAVEHHAVLDPAFWLAGHAGAEITLLPVDAEGRLDLDALRAELAAHADEIALVSVMWANNEVGTVQPVRDVVRLAHQHGVPVHTDAIQAVGQVEVDFAASGVDAMTVTGHKIGGPVGVGALLARRDLALEAVSHGGGQERGVRSGTLDVPAIRAFSVALTDAVGRREEHAARLAALRDTLVDGVRRVAPQAVLRGPGPASSTPDGVPDRLPANAHFTFPGAEGDSLLYLLDSAGVQASTGSACQAGVPQPSHVLLAMGVEEADARGALRFSLGATSTAHDVEALLDALPGVVERARAAGLVSARQGGAAPGPT0000065_1049DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
AK018_041991137mnmA_2COG0482tRNA-specific 2-thiouridylase MnmAGTGAGGGTACTCGCCGCCATGTCCGGGGGAGTGGACTCCGCCGTCGCCGCGGCGCTCGCCGTCGAGGCCGGGCACGACGTCGTCGGCGTCCACATGGCCCTGAGCCGCAACCGCGACCAGTTCCGCACCGGGTCGAGGGGCTGCTGCTCCATCGAGGACGCGGGGGACGCCCGCCGCGCCGCCGACGTGCTCGGCATCCCGTACTACGTGTGGGACCTGTCCGAGACGTTCGAGGAGACGGTCGTCGCGGACTTCCTGTCCGAGTACTCGGCCGGCCGCACGCCGAACCCGTGCGTGCGCTGCAACGAGCACATCAAGTTCACCGCGCTGCTCGACAAGGCTACGGCGCTGGGCTTCGACGCGGTCGCCACCGGCCACTACGCGCGGATCGAGGACGGCCCCGACGGTCCCGAGCTGCACCGTTCGCCGAACGACGCCAAGGACCAGTCCTACGTGCTGGCCGTCATGGGTCCCGAGCGCCTCGCCCGGTCGGTGTTCCCGCTCGGCCGCTTCGCCACCAAGGACGAGGTGCGCGCCGAGGCAGAGCGCCGCGGGCTGTCCGTGAGCGCCAAGCCGGACTCCTACGACATCTGCTTCGTGGCCGACGGCGACACCCGCGGGTTCCTGCGCGACCGGCTGGGCGAGAAGCCCGGCGAGGTCGTCGACACCGACGGCACCGTCGTCGGGGAGCACCGCGGCGCGTTCGCCTACACCATCGGCCAGCGCAAGGGCCTCGGGCTCGGACGCCCCGCCCCCGACGGGCGGCCCCGCTACGTCGTCGACGTCGACACCGAGTCCAACACGGTGGTCGTCGGGCCGTCCGAGCTGCTCAGCGTCGACCGGATCGACGCGTCGAGCGCCGTGTGGCTGGTCGCCGCCCCCCAGGAATGGACCGACGTCACCGTGCAGGTGCGCGCGCACGGCCGGGCCGTCCCGGCGCAGGTGCGGGCGGTGTCCGACGGCGGTGGTCCGGCCATGGAGGTCCACCTCGGCGAGCACCTGCGCGGGATCGCCTCGGGCCAGTCGATCGTCGTCTACCGGGGCACGCGCGTGCTCGGGCAGGGCACGGTCTCCGGCGCGCACCGGGCGGACGCCCCGGTCGCCGCGCAGGTCGGCGCCACGGCGGCCCGCGCATGAMRVLAAMSGGVDSAVAAALAVEAGHDVVGVHMALSRNRDQFRTGSRGCCSIEDAGDARRAADVLGIPYYVWDLSETFEETVVADFLSEYSAGRTPNPCVRCNEHIKFTALLDKATALGFDAVATGHYARIEDGPDGPELHRSPNDAKDQSYVLAVMGPERLARSVFPLGRFATKDEVRAEAERRGLSVSAKPDSYDICFVADGDTRGFLRDRLGEKPGEVVDTDGTVVGEHRGAFAYTIGQRKGLGLGRPAPDGRPRYVVDVDTESNTVVVGPSELLSVDRIDASSAVWLVAAPQEWTDVTVQVRAHGRAVPAQVRAVSDGGGPAMEVHLGEHLRGIASGQSIVVYRGTRVLGQGTVSGAHRADAPVAAQVGATAARANANANANANA
AK018_042001038hypothetical proteinATGACGGCGGTCTCCGGCCACGGCCCCTGGCCCGGCGGCGAGCAGGACGTCCTGACCGCCCAGCTCACCGTCCTGGACGACCTGGCCGCGCTGCCCACGGGTGTCGACGCCGTCCCGTTCCTGGTCCAGCTCACCGACCGCGGCCCGGGAGCGGACCCGGTGGGCCGTGCGGGCGCGCTGCTGTCCGAGCTGCCCGTGGAGATCGGACCCCACGGATGGAAGCTCGCCGACCGGCCCGGTGCCGACGCCCGGCGTGCGCAGGCGCTGCAGCAGGCCGACCTGGAGGCGCTGGCGATCGCCGCCCACGGGTACGACGGCCCGCTGTCGGTCGAGGTCACCGGCCCCTGGACGCTCGCCGCCGAGCTCTGGTCGGCCCGCGCCGACCGGGTGCTCGCCGACCGCGGTGCGCGGCGCGACCTCGCCGCGGCGCTCGCCGACGGCCTGGCCGGCCATCTCGCCGAGATCACCGCCCAGGTTCCGGGCGCCCGCCCCGTGGTCCAGCTCTCCGAGTCGCTGCTCGGGCAGGTGCACGCCGGCGTGCTGCCCACCTTCTCCGGCTACGCGCGCCTGCGCAGCGTGCCCGGGCCCGAGATCGTCGACGGCCTGCGGCCCGTGATCGATGCGGTGCACGACGCCGGAGCCACCGCCGTCGTGCACCTCGGCGGCACCTGGGTGGGCATCCCGCCCGCGGTGCTGGCCGGGGCGGACGCCGTCGGGCTGGACCTCGCCGACGTCGGCCCGCAGGGCTGGAACGAGAAGGCGTGGGAGCTCGTGGCCCGGGCGACCGAGCGGGAGATCGGGCTGTGGGCCGGCCTGCCGCCGGCCACGGTGTCGCAGTGCTCGGGACCGCAGCTCGGCGAGCTGGTCCGGACCGTGGCCGAGCCGTGGCGGCGGATGGGGCTGCCGGCCGACGGCCTGGCTGCGGTGACGCTGCTGGCGTCGCGCCGTCGGCGCCTGGCCGGTGTCGACGAGCACCGTGCCGAGCTGGCCAACCTGGGCCGTGTGGCCGAGGCGCTGGCCGAGCGCGCCGCCGCCTGAMTAVSGHGPWPGGEQDVLTAQLTVLDDLAALPTGVDAVPFLVQLTDRGPGADPVGRAGALLSELPVEIGPHGWKLADRPGADARRAQALQQADLEALAIAAHGYDGPLSVEVTGPWTLAAELWSARADRVLADRGARRDLAAALADGLAGHLAEITAQVPGARPVVQLSESLLGQVHAGVLPTFSGYARLRSVPGPEIVDGLRPVIDAVHDAGATAVVHLGGTWVGIPPAVLAGADAVGLDLADVGPQGWNEKAWELVARATEREIGLWAGLPPATVSQCSGPQLGELVRTVAEPWRRMGLPADGLAAVTLLASRRRRLAGVDEHRAELANLGRVAEALAERAAANANANANANA
AK018_042012160hypothetical proteinATGAGCGCCGATCCGCACACCGCCGCCCTCCCCGCCCTCGACACCGACCCGCACCTATGGCTCGAGGAGGTCCTCGACCCCGACGCGCTGGCCTGGGTGCGGCGGCGCAACGAGGCCACGCACGAGACCCTGGGCGGTGCGGAGCTGAGCGGCACCGAGGCGGCGGTGCGCGAGGTCCTCGACTCCGACGACCGCATCCCGGACGTCGCCCGCATCGGCGAGCACCTGTACAACTTCTGGCGCGACGCCGACCACGAGCGGGGCCTGTGGCGACGCACCACCTTCGAGTCCTACCGCACGGACCACCCGCGCTGGGAGACCGTCCTCGACCTGGACGCCCTCGCCGCGAGCGAGGACGAGTCCTGGGTGTGGCACGGTGCCTCCGTGCTGCGGCCCACGCCCGAACAGCTCGACGCCGGCGAACCCTGGCGCCGCGCCCTGGTGGACCTGTCCCCCGGCGGGTCCGACGCGGACGTCACCCGCGAGTTCGACCTGGTCGACAAGCGGTTCGTCCCGGCCTCCGAGGGCGGCTTCGAGCGCCCGCTGGCCAAGGGCGGCCTGTCGTGGGCCGACGAGGACACGGTGTATCTCGCGACCGACCTCGGGCCGGGCACGACCACGACGTCCGGCTACCCGCGCCTGGTGAAGCTGTGGCGGCGCGGCACCCCGATCGACGACGCGGCGCTCGTGTTCGAGGGGTCCGAGGACGACCTCGCCGTCACTGGTCTGCGCCGCCGGACGCCCGGGTTCGAGCGCGACATCGTGCGGCGGTCCTTCGCCTTCTACCGGTCGGAGACCTACGTGGTGCACGGTGTCGGGACCGCCGAGCAGGAGCTCGTGCGCATCGACGTGCCCGAGTCCGCGGAGATCGGCGCCCACCGGGAGTGGCTTACGGTCGACCTGCGCGAGGACTGGACCGTGGGCGGCCGCACCCACCGCGCCGGGTCACTGCTGGCCGCGCCCTTCGACGACTTCCTGGCCGGGTCGCGGGACCTGACCGTGCTGTTCGAGCCCACCGCCTCGACGTCACTCGTCGGTGCGACGTGGACGCGGCACCACCTGGTGCTCACCGTGCTCGACGACGTCAAGAACGCCGTCCAGGTGCTCACGCCTCCCGACCTGGCCGCCGGGGCCGACCCGAACGCCGCCTGGACCCCGTCGGAGCTGCCCGTCGGCGACGGCCTGCTCACCGTCGGCGTGCGCGCGGTGTCCACGATCGACAGCGACGACGTCTGGGTGACCCGCAGCGGCTACCTGCAGCCCGCCACGCTGGCGCTGGCGACCGTCGTCGGACCGGACGGCACCGCGACCGCGCCCGAGCCGCTCAAGTCCGCACCCGCGTTCTTCGACGCCACCGGGCTGGTGGCGGACCAGCACTTCGCCACGTCCGACGACGGCACCCGGGTGCCGTACTTCGTGGTGGGCCGCGAGGACCTCGTCCGCCCCGCCGACCCGTCGACGCCCGGCGACGCACCCACCCTGCTGTACGGGTACGGCGGGTTCGAGATCCCCCTGCTGCCCGGGTACGCGGCGGTCGCCGGCCGGACGTGGCTGACCCGCGGCGGGGTGTACGTGGTGGCCAACATCCGCGGCGGCGGCGAGTACGGGCCCGCGTGGCACCAGGCGGCCCTGCGGGAGAACCGCCACCGCGCCTACGAGGACTTCGCGGCCGTCGCCCGCGACCTCGTGGCCCGCGGCATCACGTCGCACCGCCACCTGGCCGCCCAGGGCGGGTCGAACGGCGGGCTGCTCGCCGGCAACATGCTCACCCGGTACCCGGAGCTGTTCGGCGCCGTGGTGATCCAGGTCCCGCTGCTCGACATGCAGCGCTACTCCCACCTGCTCGCCGGGGCGTCCTGGGTGGCCGAGTACGGGGACCCCGACGTGCCCGAGGACTGGGCGTTCCTGCAGACCTTCTCGCCGTACCACCAGTTCGACCCGGAGCGTGACCACCCCCCGGTGCTGCTGACCACCTCCACCAAGGACGACCGGGTCCACCCCGGGCACGCGCGCAAGATGGCGGCGAAGATGCTGGCCGCCGGCAAGGACGTCACCTACTACGAGAACATCGAAGGCGGGCACGGCGGCGCGGCCAACAACGCGCAGGCGGCGCACATGGCGGCCCTGGCCTGGACGTTCCTGTGCGACCGGCTGACCTGAMSADPHTAALPALDTDPHLWLEEVLDPDALAWVRRRNEATHETLGGAELSGTEAAVREVLDSDDRIPDVARIGEHLYNFWRDADHERGLWRRTTFESYRTDHPRWETVLDLDALAASEDESWVWHGASVLRPTPEQLDAGEPWRRALVDLSPGGSDADVTREFDLVDKRFVPASEGGFERPLAKGGLSWADEDTVYLATDLGPGTTTTSGYPRLVKLWRRGTPIDDAALVFEGSEDDLAVTGLRRRTPGFERDIVRRSFAFYRSETYVVHGVGTAEQELVRIDVPESAEIGAHREWLTVDLREDWTVGGRTHRAGSLLAAPFDDFLAGSRDLTVLFEPTASTSLVGATWTRHHLVLTVLDDVKNAVQVLTPPDLAAGADPNAAWTPSELPVGDGLLTVGVRAVSTIDSDDVWVTRSGYLQPATLALATVVGPDGTATAPEPLKSAPAFFDATGLVADQHFATSDDGTRVPYFVVGREDLVRPADPSTPGDAPTLLYGYGGFEIPLLPGYAAVAGRTWLTRGGVYVVANIRGGGEYGPAWHQAALRENRHRAYEDFAAVARDLVARGITSHRHLAAQGGSNGGLLAGNMLTRYPELFGAVVIQVPLLDMQRYSHLLAGASWVAEYGDPDVPEDWAFLQTFSPYHQFDPERDHPPVLLTTSTKDDRVHPGHARKMAAKMLAAGKDVTYYENIEGGHGGAANNAQAAHMAALAWTFLCDRLTPGPT0020970_1012DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020970-PREP-K01322NANA
AK018_042021395hypothetical proteinATGGTGCTCTGCGTCGCCGCGCTGCCTCTCGTGGCGTCGGAGGACGTGGGCTGGCCCGCCTGGTCGCTCGGCGCCGCCGCGGTGGTGCTCCCGGTCGTCGCGGCGGTGCTGCTGACCCGGGCCGCGCGGCGGGAGGACGTCGCCTTCGGGGCCCTGGCCGGCGAGCGCGACGTCCTCGCGTCCGAGCTGAGCCGCACCACCCGGTTGCTGGAGGAGTCGACGGCGTCCCTGGTCGCCGAGCGCAGGCGTCGGGCCGACGAGCAGGCCTCGGTGGAGACGGCGGTCGTGGCCCTGAGCCGTAAGGTCCAGGCGTCCGCGCACCGCGTCCAGGAGGAGGCCGCGCGGATGGTCCAGCGGCATCCCTCCGACCCGGACGTGCTCGAGAGCTCCATGCGCATCGACCACGCCGCCGCCCAGCATGCCCGGCAGGCACAGAGCTTGGTGGCGCTGTGCGGACGCCGGCCCGGCCAGACGTGGGACGACGCCCTGCCGCTGCCCGACGTGGTGCGGGCCGCGGCGGGCCGCATCACCGCCTTCGGCCGCGTCGAGGTCTCGGGCGACCCGGGCCTGGCGGTCTCGGGGCGGGCGGTCGAGCCGCTCGTGCACGTCGTGGCGGAGCTGCTGGCCAACGCGACCCAGTGCTCCCCGCCGAACACCCAGGTGCTCGTGACGTTGCGGCAGGTGCAGCGCGGCGCGGTCGTCGAGGTGGACGACTGCGGCGTGGGGATGGACGAGCACGAGCTCGCGCGGGTCCGCGCCGTCGCGAACGGCCAGACGTCCGTGGGGCTCGCCGACCTGGGGGAGGTGCCGCAGACCGGTCTGGCCGTCGTCGGAACCTACGCCCGGTTCCTCGGGCTGCGGGTCGACCTGGTCGAGTCGGTCTACGGCGGGCTGCGCGCCGTCGTCCTGGTCCCCGGCGAGCTCACGGAGACGGCTACGGCTCCCGTCGCGCTGGCCGCGAGCGCGCACGAGGGTTGGCAGGACGGTGCGCTACCCACCACGAGCGGCCTGGTCCCGCAGGGCGACCACGGCGACCCGGGGCCGGGCGGGGCCGGCGCCGCCGCGGACGCGCCGGCCGGCGCCGGCCGGGTGACGGGCGCCGACCTTGCACCGGAGTCCGGGACGACGCCGGTCCTGCCGCAACGACGGTCGCGGCGTGCGGTACTGGACCGTCCGGGCGAGACCGACGTGGATCCTGGCCGGACGCCGGCGCGGCCGAACCCGCTCTCGGAGCCGATGGGGACGCCGTCGGCCCCGCGGGCCGCGGACCAGACGGCTGCGGAGGCCGGTGCCTGGATGGGTGCCTTCTTCGCCGCGACGCACACCGACCGAGGAACCGATCCCCAGCACAGCGAACCGTCCGCGGCAGCGGACGCCGAACCGGAGGACCGATGAMVLCVAALPLVASEDVGWPAWSLGAAAVVLPVVAAVLLTRAARREDVAFGALAGERDVLASELSRTTRLLEESTASLVAERRRRADEQASVETAVVALSRKVQASAHRVQEEAARMVQRHPSDPDVLESSMRIDHAAAQHARQAQSLVALCGRRPGQTWDDALPLPDVVRAAAGRITAFGRVEVSGDPGLAVSGRAVEPLVHVVAELLANATQCSPPNTQVLVTLRQVQRGAVVEVDDCGVGMDEHELARVRAVANGQTSVGLADLGEVPQTGLAVVGTYARFLGLRVDLVESVYGGLRAVVLVPGELTETATAPVALAASAHEGWQDGALPTTSGLVPQGDHGDPGPGGAGAAADAPAGAGRVTGADLAPESGTTPVLPQRRSRRAVLDRPGETDVDPGRTPARPNPLSEPMGTPSAPRAADQTAAEAGAWMGAFFAATHTDRGTDPQHSEPSAAADAEPEDRNANANANANA
AK018_04203420COG2018Serine protease inhibitorATGACGACGCACGCCACGGCCGGCACCACGGCCGACGCCCATCCCGACAGCTGGATGCTCGACCACGTCGCCGAGGTGCGCGGGGTGCGCCACGCCGTCGTGCTGAGCTCGGACGGTCTCGTCAAGGTGCGTACCGACGTCACCGACCCGGACACCGCCGACAAGCTGGCGGCCGCGTGCGCGGGCCTGGCGGCGCTCGGCACGAGCATGGGCCGTGAGTTCGGCGAGTCGGACACGCTGCGGCAGGTGGTCGTCGAGTTCGGCGGCGGATTCCTGTTCGTCCGGGGCGCCGGGGACGGGTCTCGCCTGGCCGTGGTGACGGACTCCGCCGTCGATCCCGGGCTCGTGGCCCAGCAGATGCAGGCCCAGGTGCTGATGATCGGTGAGCGCACGCTGGGCACCGAGCCGGCCGGACGCTGAMTTHATAGTTADAHPDSWMLDHVAEVRGVRHAVVLSSDGLVKVRTDVTDPDTADKLAAACAGLAALGTSMGREFGESDTLRQVVVEFGGGFLFVRGAGDGSRLAVVTDSAVDPGLVAQQMQAQVLMIGERTLGTEPAGRNANANANANA
AK018_04204357hypothetical proteinGTGCAGACCGAGGGATACCGCGACCATCCGGTCCGCTCGTACGTCCTGACCGGGGGCAGGGCGCACCCGACCCGCAACACCCTGCGTCCCGAGACGCTGCTGCGGGCGGCCGACGACGGCGGCCGCGACCTGCCCGCCACGGCCGGGCGCCACGAGCGGGCCGTGCTCGAGCTGTGCCAGGGCACGCTCGCGCTGGCCGAGCTGGCCGCCTACCTGCGCCTGCCGGCGAGCCTGGTCACGGTGCTCGTGTCCGACCTGGTGGACGCCGGCACCCTCGTGATCCGTTCCACCGCCGCCCACGACCTGCCCGGAACCGACCTGCTGGAGGAGGTCCTCGATGGGCTCCGCAACCTCTGAMQTEGYRDHPVRSYVLTGGRAHPTRNTLRPETLLRAADDGGRDLPATAGRHERAVLELCQGTLALAELAAYLRLPASLVTVLVSDLVDAGTLVIRSTAAHDLPGTDLLEEVLDGLRNLNANANANANA
AK018_04205603hypothetical proteinATGGGCTCCGCAACCTCTGAGGACGCACGTCACCTGTCCGCGGACGTCGACCGCTCGGTCAAGGTGCTCGTGGTGGGCGCCTACGGCGTCGGCAAGACGACGCTGATCGACGCCGTCAGCGAGATCCCGATGCTGCGCACCGAGGAGCAGATCACCACGGCCAGCGTCGGCGTCGACCCGCGCCGCGGCGCGAAGGACACGACGACGGTCGCCATGGACTTCGGCCGTGTCACCCTGGGCGCGTCGACGGCGCTGTACCTGTTCGGCATGCCGGGCCAGCGTCGCTTCTGGGACCTGTGGGCCGGGCTGGCCGACGGCGCGGTCGGCGTGCTCGTGCTGGTCGACACACGGCGGCTCGAGGACAGCTTCGAGGTGCTCGACCAGCTCGAGCAGCACTCGGCGCTCCCGATCGCCGTCGTCGTGAACCAGTTCCCCGACTCGCCCCGCCACCCCGACCCGGAGGTGCGGCGCGCTCTCGACCTGCCGCCCGAGACGCCCGTCGTCTCCGGAGACGTGCGCGAGCGCCCGCACGCCGTGGCCGCGCTGGTGGCGCTGGTCGAGCACGCCCTGCGCCGCCAGGGTGCCCGGAGCGCGGCGGCATGAMGSATSEDARHLSADVDRSVKVLVVGAYGVGKTTLIDAVSEIPMLRTEEQITTASVGVDPRRGAKDTTTVAMDFGRVTLGASTALYLFGMPGQRRFWDLWAGLADGAVGVLVLVDTRRLEDSFEVLDQLEQHSALPIAVVVNQFPDSPRHPDPEVRRALDLPPETPVVSGDVRERPHAVAALVALVEHALRRQGARSAAANANANANANA
AK018_042061230ncsB32-hydroxy-5-methyl-1-naphthoate 7-hydroxylaseATGAGCATCACGGCCGCAGGACGCGCCGTCCGTCTCGAGGAGGTGGCCGACCGACCGCTGCTCGCCGATCTGGCCGGCGCGCCGGAACCGCGGGCCAGCTACGACGCGTTGCGGTCTCGGTGGGGGACCGTCGCCCCGGTCGACCTCGAGCCCGGGGTGCCGGCCTGGCTGGCGCTGGGCTACGACGAGGTCTCCACGGTGCTGCGCAACGAGGTGGCGTTCTCCCGCGACGTGCGCCACTGGCGCTACGAGGCGGAGCGGCTGGTCGCCTGGCGGGCACCCGTCCGTGCCGTGCTGGGCTCCCGGGACAGCGCGCTGGACCGCGACGGCGACGACCACCGCCGGCTGCGCGGCCCGCTGTCGGACGTCCTGGCGGGTCTCGACGAGAAGCGGTTGTCCCGGACGGTGGCGGTGGCCTGTACCTCGGTGCTCGATCGCGCCGCGGCCCGCGGGGAGCTCGACCTCGTCGACGGGTACGCGGTGGAGGTCACGGTGCGTGTGCTCGCCGACCTGCTCGGCCTGACGCCCGCCGACGCCCGGCACCTGCACGAGCTGACGGTGCGGCAGCGTTCGGGGGTGGCAGACGCCCGGGAGGCGTCAGCCGAGGAGGAGAACCTCCTGGCCGAGCTGGTGACGGCACGCCGGGCGGAACCGGGCGACGACCTGATGTCCGCGCTCGTGGCCGCGCCCGGGCACGCCAACGACCTGGAGGTCATGGGAGCCGTCGGGCTGGTGTTCCGGACCGCGCACGACGCCGAGGTCGCCTGGATCGCCGTCGCCGCGCAGCGCCTGCTGTCCGACGCCGATCTCGGCGCCCGGGTGCACGGGGGGCGGCTGTCCCTCGACGACGCGCTGGACGAGATCGCCCGGGAGTCGCCGCCGTTGCCGCACCTGCTGCCCCGGTACGCGCGCTCCGACGTCCGGCTCGGGGGGCAGGCGGTCGCGGCGGGCGACGCCGTGGTCCCGGCGGTCGCGGCCGCTAACGCCGACCGGGCGGTCCAGGCCGCGGACCCGTGGGAGCAGGTCGACGCGCGATTCCACCTGACGTGGGGCGCGGGTGCGCACGGGTGCCCCGCCCACCGGCCCGCCCCGCTCGTGACCCGGCTGGCGGTCGGCTACCTGCTCGGGCGGATCGCCGACATGGAGCTCGCCGTCGCGCCCGAGCAGGTCGTGCCGGTGCGCTCCGCCTGGGTGCGCCACCCGGCGTCGCTGCCGGTCCGGTTCCGCTGAMSITAAGRAVRLEEVADRPLLADLAGAPEPRASYDALRSRWGTVAPVDLEPGVPAWLALGYDEVSTVLRNEVAFSRDVRHWRYEAERLVAWRAPVRAVLGSRDSALDRDGDDHRRLRGPLSDVLAGLDEKRLSRTVAVACTSVLDRAAARGELDLVDGYAVEVTVRVLADLLGLTPADARHLHELTVRQRSGVADAREASAEEENLLAELVTARRAEPGDDLMSALVAAPGHANDLEVMGAVGLVFRTAHDAEVAWIAVAAQRLLSDADLGARVHGGRLSLDDALDEIARESPPLPHLLPRYARSDVRLGGQAVAAGDAVVPAVAAANADRAVQAADPWEQVDARFHLTWGAGAHGCPAHRPAPLVTRLAVGYLLGRIADMELAVAPEQVVPVRSAWVRHPASLPVRFRNANANANANA
AK018_042071491hypothetical proteinATGAGAATCGCCGTCGTCGGAGCCGGGTTCGCCGGACTGGCCAGCGCGAAGATCCTGGCCGGGTGCGGGCACCGGGTCACCGTGTTCGACAAGGCCCCCGACGTGGGCGGCGTGTGGAGCGCCACCCGCCGGTACTCGGGTCTGACCACGCAGAACAACAAGGGCTCCTACGCCTTCAGCGACCTGCCCATGCCGAAGGACTACCCCGAGTGGCCCAGCGGCGAGCAGGTGCAGGCCTACCTCGAGCAGTACGTCGACAAGCACGACCTGCGCGGCACGCTGCGGCTGAGCACGGAGGTCGTGCGCGCCGAGCTCACGCCCGCCGAGGACGGCTGGCTCGTCACCGCCCGCCGCACCGGCGAACCGGTCGGCGACCCCGAGACCTTCGACCACCTCATCGTCGCCAACGGGATCTTCTCCGACCCGGTGCTCCCTGCCTTCGACGGGCTCGCCCAGCTGCTCCGCGCCGGCGGCAAGGTGGTCGCCGCCAGCCAGCTCGCCACCGTCGAGGACGCCCGGGACAAGCACGTCGTCGTCGTCGGCTACGGCAAGTCCGCGTGCGACGTCGCCGCCGAGGTCGGGCCCGTCGCCGCGAGCACCGCCGTCGTCGCGCGCCACCTGCTGTGGAAGATGCCCAAGAAGCTCGGCAACGCCCTCAACTACAAGTACCTGCTGCTCACGCGGCTCGGCGAGGCGCTGTTCCGGTACCAGAACGTCTCCGGCGGGGCGGAGAAGTTCCTGCACGGTCCCGGCGACCCCGTGCGACGCTCCATGCTCGGCTCGGTCGGCTCCGTCGCCACCAAGCAGCTCCGCCTCAAGGAACTCGGGCTCGTCCCCCACGACGAGTTCGACGCCATCGCCCGCTCCACCGTCTCCCTGGCCACGGACGGGTTCTACGACCAGGTCGCCGACGGCACGCTCGTGGTCCACCGGGACACCGAGATCGAACGCTTCAGCACCGACGACGACGGCCACCCGGTCGCCGTCCTCAGCGACGGCGCCACCGTGCGGGCCGACCTGGTGGTCTGCGGCACGGGATTCCACCAGCGGGTCCCCTTCCTCGACGAGGACACCACCCGCCGCCTGCTGGACGACCGCGGCAACTTCCAGCTCTACCGGCAGATCCTGCCCCACGACGTCCCCCACCTGACCTTCGCGGGGTACAACTCGTCGCTCTTCAGCCCGCTGTCCGCCGAGATCGGCGCCGCCTGGACCGCAGCGCACCTCGCCGACGCGGTCGACCTGCCACCCGTGGAGGTCCGACGCGAGCTCGTCGCCGACCGCGTCGACTGGATGGAGAAGCGCACCGAGGGCAAGCACGCCCGCGGCACCAACATCATCCCGTTCTCCATGCACCAGATCGACGAGATGCTCGACGACCTGGACCTCAACCTGTCCTCCGGGCGGCGTGCGTCGCAGTGGTTGCTGCCGATCGACCCGTCGGCCTACCGCGACGTCCCCGCGCGCCTCGAGGCACGCCTGGGCGGCTGAMRIAVVGAGFAGLASAKILAGCGHRVTVFDKAPDVGGVWSATRRYSGLTTQNNKGSYAFSDLPMPKDYPEWPSGEQVQAYLEQYVDKHDLRGTLRLSTEVVRAELTPAEDGWLVTARRTGEPVGDPETFDHLIVANGIFSDPVLPAFDGLAQLLRAGGKVVAASQLATVEDARDKHVVVVGYGKSACDVAAEVGPVAASTAVVARHLLWKMPKKLGNALNYKYLLLTRLGEALFRYQNVSGGAEKFLHGPGDPVRRSMLGSVGSVATKQLRLKELGLVPHDEFDAIARSTVSLATDGFYDQVADGTLVVHRDTEIERFSTDDDGHPVAVLSDGATVRADLVVCGTGFHQRVPFLDEDTTRRLLDDRGNFQLYRQILPHDVPHLTFAGYNSSLFSPLSAEIGAAWTAAHLADAVDLPPVEVRRELVADRVDWMEKRTEGKHARGTNIIPFSMHQIDEMLDDLDLNLSSGRRASQWLLPIDPSAYRDVPARLEARLGGNANANANANA
AK018_04208777hypothetical proteinATGACGCGCACGCTGCAGACGCTCGGCATCGACGTCGACCTCCGCACCCACCCGTGGCGCTACCCCGGCCCCGCCGCGCCGTCGTCGGGCCTGCTGAGCGGGGGGTCGTTCCACGAGCTGCGGCGCGACGGCGGCACCTGGACCGACGCCGACGGGACCGGCCTGGAGGCGCTCCTCGACGACGCGGGGGTGCCGGGCCTCGACGACCGGCAGGCCGTGGTCGCCATCGGGTCGAACGCCTCGCCGGCGGTCATGCACCGCAAGTTCACGCGGCTCGAGGTCTCGACGACGGTGCCGATGCTGGCGGGCGACCTCGCCGGCGTCGGCCTCGGCCACATCCCGCGGGTGAACCCGGCCGGGTACGTCGCCGCGGTGCCGCTCGTCGCGCCGGGCGGCCGGACCGCCGTCGTCGTCTCGCTGCTCACCCCGGCCCAGGCGGACGCCCTCGACGCGACCGAGCAGAGCTACGCGCGCTGCGCCGGTGGCGACGGCCTGACCGTGGCCGGGCACGACGAGCCCTGGTCGCTGTACGTCTCCGAGCTGGGCGCGATCGGCGGGACCGACGGGCTCCCCCTGCCCCTGGGGACGCAGTCCGACCTGTGGGACCGGCTGCGCACCGACCCGGTGCTGGCCGGGCTCGCCGGGGACGGCGACCACCGGGAGGTGGCCCGCCGGCTCGCGGCCGACGGGTCGCTGCGCGACCGCGTGCGCGACCATCTGGTCACCCACGACCGGGTGGTCCCCACCGGGATGGAGGACCTGCTCCCGACGGCGTGAMTRTLQTLGIDVDLRTHPWRYPGPAAPSSGLLSGGSFHELRRDGGTWTDADGTGLEALLDDAGVPGLDDRQAVVAIGSNASPAVMHRKFTRLEVSTTVPMLAGDLAGVGLGHIPRVNPAGYVAAVPLVAPGGRTAVVVSLLTPAQADALDATEQSYARCAGGDGLTVAGHDEPWSLYVSELGAIGGTDGLPLPLGTQSDLWDRLRTDPVLAGLAGDGDHREVARRLAADGSLRDRVRDHLVTHDRVVPTGMEDLLPTANANANANANA
AK018_042092430ligA_2COG0272DNA ligase AGTGACCGAGACGACCGACGCGCCCGATCCCGTGCTCGACGAGGCCGCGGCCCAGCGCCGCTGGGCCGAGCTCGTCGCCCTCGTCGAGGAGGACCAGGCCGCCTACTACCAGCACGACGCCCCCAAGGTGTCCGACGCCGAGTACGACGCGCGCATGCGTGAGCTCGAGGCGCTCGAGGAGGCGCACCCGGCGCTGCGCCGGCCGGACTCGCCGACCCAGCGTGTCGGCGGGCAGGCGGCGACCGGTTTCTCGACGGTCGAGCACCTGGAACGCATGCTCTCGCTGGACAACGTGTTCAGCACCGACGAGCTGCGCGCGTGGGACGCCCGGGTCGCCCGCGACCTCGACGTCCCCGGCGGCGCCGTCGGCTACCTGTCCGAGGTCAAGATCGACGGCCTGGCGATCGCGCTGCTGTACGAGCGGGGCCGCCTGGTCCGCGCCGCCACCCGGGGCGACGGCCGCACGGGCGAGGACATCACCGCCAACGCGCTGCGCATCGCGCAGATCCCGCGGCGGCTCGAGGGCGACGAGCACCCGGACGTAGTCGAGATCCGTGGCGAGGTCTTCATCCCCACGGCGTCGTTCACGCGGCTGAACGAGCTGCAGGGCGAGATGCGGGAACGGGTCGTCGCCGAGGCGCGGGAGCGCGCGGGGTCCCGCGAGCTCGACGAGGAACGTGCCCGCGTGGCTGCGCTGCGTCGCTTCCCGCAGTTCGCCAACCCGCGCAACGCCGCCGCCGGCGGGCTGCGTCAGCTCCTGGACAAGAAGTCCGGGCTCGAGCACGAGGCGGGGCTCGCCCGCATCGAGGCGCTGCGCCTGTACGCGCACGGCGTCGGCGCGCTCCAGTGGACGGAGGGTGAGCACGAGGAGCTCGCGAACCTGTCCGACGCCTACGACCTCTTCGCGCGGTGGGGCATCCCGATCTCCCCGCACAACCGGGTCGTCGAGGGCGTCGACGCGGTGCTCGACATGATCGACCACTTCGGTGAGCACCGCCACGACATCGAGCACGAGCTGGACGGCATCGTCGTCAAGGTCGACGCCCTGGCCGACCAGCGCCTCCTGGGCGCCACCAGTCGTGCACCGCGCTGGGCGACGGCCTACAAGTACCCGCCCGAGGAGGTCAACACGCGCCTGCTCGCCATCCAGGTCGGCGTCGGCCGCACCGGCCGCGCCACGCCGTACGCCGTCATGGAACCCGTGCTGGTCGCCGGCTCGACGGTGCGGCAGGCCACCCTGCACAACCAGGACGTCGTCAAGGCCAAGGGCGTCCGCATCGGCGACATGGTGGTGCTGCGCAAGGCCGGCGACGTCATCCCCGAGATCCTCGGCCCGGTCACGGCGCTGGCCGACGACGGCTACCCCCGCGAGGACTTCGTCATGCCCGCCGAGTGCCCCGAGTGCGGCACCCCGCTGCGGGCGATGAAGGAGGGCGACGTCGACCTGCGCTGCCCCAACGCGGAGTCCTGCCCGGCCCAGGTGCGCGGCCGCGTCGAGCACATCGGCTCCCGCGGCGGGCTGGACGTCGACGCGCTCGGCGAGGTCACCGCCGCGGCCCTCACCCAGCCGCTGGAGCCCAGCGACCCGCCCCTGCGCACCGAGGCGCGGCTGTTCGACCTCACCCTCGACGAGCTCGCGCCGATCCGCGCCGTGGTCCGCGACTCCGAGACCGGCCTGCCCAAGGAGTTCGACGGGCGCGGCGAGTCCGCCGAGTTCGAGATGCCGGACGGCTCGGTCCAGACGGTCAAGGTCGTGCGGCCGTTCCAGAAGAAGCGCAAGCTGTCCAAGGCCGAGGAACGCGCCGCCGTCGAGGCGGGCGAGTCGCTGCACGAGCCCAACGCCCAGGCCACCAAGCTGCTCGACGAGCTCGAGCGGGCGAGGACCAAGGACCTCTGGCGGATCCTCGTCTCGTTGAACATCCGCCACGTCGGTCCGGTGGCGGCCCGGGCGCTCGCGGACTGGTTCGGCTCCCTCGACGCGGTCCGGGAGGCGTCCCGGGAGGACCTCGCCGCCGTCGACGGGGTCGGCCCGGTCATCGCGGACGAGGTCCTGGCCTGGTTCGACGTCGACTGGCACCGCGAGATCGTCGACGCGTGGGCGGCCGCGGGCGTGCGGTTCGCGACGCCGGGACACCCCGGTCCCGCGGCCATGGCGGAGCAGGCCGCCGAGGGGCCCACCGGTCCGCTGGCGGGACTGACGGTCGTGGTGACCGGATCGCTCGACGGGTACTCCCGGGACGGGGCCAAGGAGGCGATCCTGGCCGCGGGCGGCAAGGCGGCCGGGTCGGTGTCGAAGAAGACCGACTACGTCGTCGTCGGGGCGAACGCCGGGTCGAAGGCGGCCAAGGCGGAGGAGCTGGGCCTGCCGATCCTCGACGAGGACGGCTTCACGCGGCTGCTGGAGGACGGCCCGGCGGCGCTGGAGACGTGAMTETTDAPDPVLDEAAAQRRWAELVALVEEDQAAYYQHDAPKVSDAEYDARMRELEALEEAHPALRRPDSPTQRVGGQAATGFSTVEHLERMLSLDNVFSTDELRAWDARVARDLDVPGGAVGYLSEVKIDGLAIALLYERGRLVRAATRGDGRTGEDITANALRIAQIPRRLEGDEHPDVVEIRGEVFIPTASFTRLNELQGEMRERVVAEARERAGSRELDEERARVAALRRFPQFANPRNAAAGGLRQLLDKKSGLEHEAGLARIEALRLYAHGVGALQWTEGEHEELANLSDAYDLFARWGIPISPHNRVVEGVDAVLDMIDHFGEHRHDIEHELDGIVVKVDALADQRLLGATSRAPRWATAYKYPPEEVNTRLLAIQVGVGRTGRATPYAVMEPVLVAGSTVRQATLHNQDVVKAKGVRIGDMVVLRKAGDVIPEILGPVTALADDGYPREDFVMPAECPECGTPLRAMKEGDVDLRCPNAESCPAQVRGRVEHIGSRGGLDVDALGEVTAAALTQPLEPSDPPLRTEARLFDLTLDELAPIRAVVRDSETGLPKEFDGRGESAEFEMPDGSVQTVKVVRPFQKKRKLSKAEERAAVEAGESLHEPNAQATKLLDELERARTKDLWRILVSLNIRHVGPVAARALADWFGSLDAVREASREDLAAVDGVGPVIADEVLAWFDVDWHREIVDAWAAAGVRFATPGHPGPAAMAEQAAEGPTGPLAGLTVVVTGSLDGYSRDGAKEAILAAGGKAAGSVSKKTDYVVVGANAGSKAAKAEELGLPILDEDGFTRLLEDGPAALETNANANANANA
AK018_042101266hypothetical proteinATGGCCCGACGCCGTGACGCCCGCCGCTCCGCCGTCCTGACCGCCGTCGCCGCCGCCCTGGTGCTCCCCGCCGCATGCACGGCGTCGCCCGATCCCGAGATCGAGGTCACCGAGGTCGACGGCCCCTTCGTCCCCCTGGACGTGACCCTGGCCGGGCTGCCGCCCGGCCAGGAGGTCACGCTCGAAGCCGCGACCGCCGTCGGGGGTGGCGTCGACTTCGTGTCGCAGGCGACGTTCACGGTGGCCGACGACGGCACGGTCGTCCTCGCCGAGACCGTGCCCGAGTCCGGTGACTGGGAGTCGGCCGACCCGACGGCGCCGCTGTGGGCGATGGTCGCCGAGAGCCGGTACTACGCGGCGATGTGGGAGGAGCCGTTCGTCGTCGACCTCGTGGTCCGTGACGACGCGGGCGAGGCGCTCGCCACGACGACGGTCGAGCGACCCGGCACTGCTCCGGGCGTGGAGAGCCGGCGCGTCGACGACCGGGGCCTCGTCGCGGAGTACTCGGTCCCGTCCGGCGTTGAGGGACGGCGTCCGGCCCTGGTGGTCTTCGGTGGTTCGGAGGGCGGCCTGAACACCGGGGCGGGCATCGCCCGGACGGTGGCCTCGCTCGGGTACCCCGCGCTGGCGATCTCGTTCTTCGGCGCTCCGGGGCAGCCGGAGAACCTGGAGCGCGTCCCGGTCGAGACCTTCCTCGAGGCGCTGCGGTGGTTGCGGGCGCAGCCGGAGGTCGACACCGAGCGCGTGATGACGTTCGGGGTGTCGCGTGGCGGAGAGATGGCGCTCTGGCTGGCCGCGGAGCGGCCGGAGCTCGTGCACGGTGCGATCGCGCCGGTCGGGGCAGGGGCGCTCGTCTGCGGCATCCCCGACTTCGGGGTGCCCGCGTGGACGCTCGACGGCGAGCCGCTCGCCGACGTGTGCCCGAACTACGGCCGGGTCGAGGAGATGCGGGACGCCGCGGTGGACGTCGCGGACATCGGTGGGCCCGTGGTGCTGGCCTGCGGCGGGCGTGACGAGCTCTGGCCGTCGTGCGACTACGCGCAGCACGTGCTGGACCGCCGGGGTGACGAGGAGACGGTCCTGGTGCGCCACGAGGACGCCGGGCACGCCGTGGCGCTGCCGCCCTACGTCCCGATCGCCTTCGAGGAGGACCTCTACGAGAGGTACGACGTCACGTCCGCCGCCGTACCCGCTGCCACGCACCAGGTCCGTGTCGAGTTCTGGCAGGCCGTCGCGGCGACGCTGGCGGACCTGCGCGAGGAGTGAMARRRDARRSAVLTAVAAALVLPAACTASPDPEIEVTEVDGPFVPLDVTLAGLPPGQEVTLEAATAVGGGVDFVSQATFTVADDGTVVLAETVPESGDWESADPTAPLWAMVAESRYYAAMWEEPFVVDLVVRDDAGEALATTTVERPGTAPGVESRRVDDRGLVAEYSVPSGVEGRRPALVVFGGSEGGLNTGAGIARTVASLGYPALAISFFGAPGQPENLERVPVETFLEALRWLRAQPEVDTERVMTFGVSRGGEMALWLAAERPELVHGAIAPVGAGALVCGIPDFGVPAWTLDGEPLADVCPNYGRVEEMRDAAVDVADIGGPVVLACGGRDELWPSCDYAQHVLDRRGDEETVLVRHEDAGHAVALPPYVPIAFEEDLYERYDVTSAAVPAATHQVRVEFWQAVAATLADLREENANANANANA
AK018_04211672hypothetical proteinGTGAGCGCGCGCAACGCCCTCGTCGTCCGCGGAGGCTGGGACGGCCACGACCCCGTCGGCACCACCGACCTGTTCCTTCCGGTCCTCCGGGACGCCGGGTTCGACCTCACCGTCGAGGAGTCCCTCGAGGTCTACGCCGACGAGGACACCATGGCCGGCACCGACCTCGTCGTCCAGTCGTGGACCATGGGCGACATCCTGGTCGAGGAGATGCACGGGCTGCGGGTCGCCGTCGAGAACGGCACCGGCCTGGCCGGCTGGCACGGCGGGCTGCTCGACGCGTTCCGCAACGCCACCGACTACCAGCACCTGATCGGCGGCCAGTTCGTGGCCCACCCGGACGACCTGGTGGACCACACGGTCGACGTCAGGCCCGAGCGCGCCGACCACCCCGTCGTCGCCGGCCTGCCGTCCAGGGTCGACCTGACCACCGAGCAGTACTGGATCCAGCACGACCCTGCCTGCGACGTGCTGATGACCACGACCCACCGCCCCCGGGCCGGTGCCCCCTGGCACGAGCCGGTCACCGTGCCGGTGACCTGGACGCGCCGCTGGGGCCAGGGCAGGGTCTTCGCCTGCGCGATCGGCCACACCGTCGACGACCTGCGGGACCCCACGGTGCACGAGGTGGTCTCGCGCGGGCTGGTCTGGGCCGCCCGCGACCCGCGCTGAMSARNALVVRGGWDGHDPVGTTDLFLPVLRDAGFDLTVEESLEVYADEDTMAGTDLVVQSWTMGDILVEEMHGLRVAVENGTGLAGWHGGLLDAFRNATDYQHLIGGQFVAHPDDLVDHTVDVRPERADHPVVAGLPSRVDLTTEQYWIQHDPACDVLMTTTHRPRAGAPWHEPVTVPVTWTRRWGQGRVFACAIGHTVDDLRDPTVHEVVSRGLVWAARDPRNANANANANA
AK018_042121149nagC_3COG1940N-acetylglucosamine repressorATGTTCCAGCTGTTCCGGGACGGTGCGCCGCGTACGCGCGCCTCGCTGGTGTCCGAGACGGGCCAGTCGCGGTCGACCGTCGCCGCGCGTATCGACGCCCTGCGGTCCGTCGGACTCCTGGTGCCTGCGGGCGAGGCCAGCAGCACCGGCGGCCGACCGCCCTCGACCTTCGCCTTCGATCCCCGGTCCCGCATCGTGCTCGGCGTCGACCTCGGAGCCACCCACGCCCGCATCGCCGTCACCGACCTCGCCGGCGAACCGCTGACCCACCTCGACGAGCCGCTCGCGATCGCCGACGGCCCCGAGCACGTCCTGTCCTGGGTGGCCGAGGCCGGCGACAAGTTGATAGCACAGGCGGGCCGCCACCGCGACGAGCTCGCCGGCATCGGCATCGGCCTGCCCGGACCCGTCGACCACACCACCGGCCGACCGGTGAACCCCCCGATCATGCCGGGCTGGGACGGCACCGACGTCCCCGCCGAGCTGCACCGCCGGCTCGGCGCGCCCGTGATGGTCGACAACGACGTCAACATCATGGCGCTCGGCGAGCACCGCACCATCGCCCCGGACGTGGACGACCTGCTGTTCGTCAAGGTCGCGACCGGCATCGGCGCCGGCGTCATCATGGACGGCCACCTGCGCCGCGGCGCCCAGGGCGCCGCCGGCGACCTCGGGCACGTCACCGTCCCCGGCGCCGGGGACATCCCGTGCCGGTGCGGCAACACCGGTTGCCTCGAGGCGGTCGCGGGCGGCGCCGCCCTGGTGGAACAGCTGCGCCGCGCCGGCGCCACCGTCGCCACGACGGCCGACATCGTCGCCCTCGTGCGGTCCGGCGACGTCGCCGCCGGTCAGGCGGTACGCCAGGCCGGCCGTGACGTCGGTACGGTGCTCGCCGCGTCGGTGAGCCTGCTCAACCCGTCGCGGATCGTCATCGGCGGGATCCTGGCCGGCGCGGGCGAGCACCTCATGGCCGGCATCCGCGAGGTCGTCTACCAGCGCTCGCTCCCGCTCGCCACGCAGCACCTGCGCATCACGCCCTCCGGGGCGGGGGCCCAGGCCGGCGTCGTCGGTGCCGCCGTCCTGGTCATCGAGCAGTACCTCGCACCGGCGTCGGTCGAGTCGCTCATCAACGCGAAGGAGGATTCGTGAMFQLFRDGAPRTRASLVSETGQSRSTVAARIDALRSVGLLVPAGEASSTGGRPPSTFAFDPRSRIVLGVDLGATHARIAVTDLAGEPLTHLDEPLAIADGPEHVLSWVAEAGDKLIAQAGRHRDELAGIGIGLPGPVDHTTGRPVNPPIMPGWDGTDVPAELHRRLGAPVMVDNDVNIMALGEHRTIAPDVDDLLFVKVATGIGAGVIMDGHLRRGAQGAAGDLGHVTVPGAGDIPCRCGNTGCLEAVAGGAALVEQLRRAGATVATTADIVALVRSGDVAAGQAVRQAGRDVGTVLAASVSLLNPSRIVIGGILAGAGEHLMAGIREVVYQRSLPLATQHLRITPSGAGAQAGVVGAAVLVIEQYLAPASVESLINAKEDSNANANANANA
AK018_042131521araG_2COG1129Arabinose import ATP-binding protein AraGATGGTCACCGAAGACCCCGCGGCACCGCTGCTGCAGATGCAAGGGATCGTCAAACACTTCCCGGGCGCCAAGGCGCTCGACGGCGTCGACCTCGACGTGCTCCCCGGTGAGGTGCACTGCCTCCTCGGTCAGAACGGAGCCGGCAAGTCCACGCTCATCAAGGTGCTCGCCGGCGCACACCAGCCCACGGCCGGCACCATCCTCATGGACGGGCAGGAGATCCAGATCTCCCACCCCGTGGCGGCGCTGGAGCACGGCGTCGCCACGATGTACCAGGAGCTCGACGTCGTCGACGGGCTGACGGTCGCGGAGAACATCTACCTGGGCCACGAGCTCGCCAGCGCCGGGTTCACCCAGCGCCGGACGGTGGCCTCCCGCACCCGGGAGCTGATGGCCCGCCTCGGCCACCCCGAGATCCCGCCCCACCGGGAGGTCGGCGAGCTGTCGGCCGCCGGGAAGCAGATCGTGTCGATGGCGCGAGCCCTCTCGCGCGACGCCCGCGTGATCGTCATGGACGAACCCTCGGCCGTGCTCGACTCCGGCGAGGTGGACAACCTCTTCCGGGTCGTCGACGAGCTCACGTCCCAGGGCGTCGCGATCGTCTACATCTCCCACCGGCTCGAGGAGATCCGCCGGATCGGCGACCGGATCACCGTGCTCAAGGACGGTGTGACGGTGGGTCGCAACCTCGACGTGGCCACGACCTCCACCGACGAGCTGATCAAGCTGATGACCGGCAAGGACGTCGAGTACGCCTTCCCCGAGCGCCCCGGCGTCCCGCAGGACGCCCCGGTGCGGCTCGAGGTCACCGACCTCTCGCTGAGCGGGGTGTTCTCGGACGTCTCGCTGTCGATCCGCGCCGGCGAGATCGTCGGCCTCGCCGGCCTGGTCGGGTCCGGGCGCTCCGAGATCCTCGAGACCATCTACGGTGCGCGCCGGGCGACGCACGGGCGCGTGCAGCTCGACGGGAAGCCGCTGCGTCGCGGCTCGGTCGGCGCCGCCGTGGCAGCCGACATCGGTCTCGCGCCGGAGGAGCGCAAGAGCCAGGGGCTGCTGCTCGACGAGCCGGTCTACCGCAACGTCACGCTGTCCTCGTTCGCCCGGATGGCCCGCGGCGGCTGGCTCGACGAGCGCGCCGAGAAGGCTGCCGCCACCGAGCAGGCCGAGGCCCTCGACCTGCGGCCCGCCGGGGTCGATCGGCCCATCCGCACCCTCTCCGGCGGCAACCAGCAGAAGGCGATGCTCGCGCGGTGGCTCGTGCACGGGTGCGAGGTGCTGCTGCTCGACGAGCCGACCCGCGGCGTCGACGTCGGCGCGCGGTCCGAGATCTACGACCTCGTGCGACGTCTGGCCGACGCCGGCACCGCCGTCCTGGTCGTCTCCAGCGAGATCCCCGAAGTCCTGGGCCTGGCAGACCGTGTCCTCGTGATCTCCGACGGACAGGTCGTGCACTCCGGGCCCGCCGAGTCGATCGACGAGCACCAGGTGCTCGACATGGTCATGGAAGGAAGTGCCGCGTGAMVTEDPAAPLLQMQGIVKHFPGAKALDGVDLDVLPGEVHCLLGQNGAGKSTLIKVLAGAHQPTAGTILMDGQEIQISHPVAALEHGVATMYQELDVVDGLTVAENIYLGHELASAGFTQRRTVASRTRELMARLGHPEIPPHREVGELSAAGKQIVSMARALSRDARVIVMDEPSAVLDSGEVDNLFRVVDELTSQGVAIVYISHRLEEIRRIGDRITVLKDGVTVGRNLDVATTSTDELIKLMTGKDVEYAFPERPGVPQDAPVRLEVTDLSLSGVFSDVSLSIRAGEIVGLAGLVGSGRSEILETIYGARRATHGRVQLDGKPLRRGSVGAAVAADIGLAPEERKSQGLLLDEPVYRNVTLSSFARMARGGWLDERAEKAAATEQAEALDLRPAGVDRPIRTLSGGNQQKAMLARWLVHGCEVLLLDEPTRGVDVGARSEIYDLVRRLADAGTAVLVVSSEIPEVLGLADRVLVISDGQVVHSGPAESIDEHQVLDMVMEGSAAPGPT0016600_2405DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016600-rbsA-K10441NANA
AK018_042141032rbsC_2COG1172Ribose import permease protein RbsCGTGAGCGAGCAGCAGACGCCGTCGAGTCCGGCGGCAGACAACCCGACGAAGCACCGGGAGAGCTCCCGCGGGCCCTTCGGCCTCTCCGGAGCCACCGTCCGCAACCTCGGCCTGGTCGCCGCCCTGATCCTGCTGTGCCTGGTCGGGTTCTTCACCGGTGGCGACCGGTTCGCCAGCGTGCAGAACCTCATGATCGTCCTGAGCCTCGCGTCGGTCACCGGTGTGCTGGCGATCGGGATGACCTTCGTCATCACCACCGGCGGCATCGACCTGTCGGTCGGCTCCGTGCTCGGCCTGACGACGGTCTGGGCGTCGACGCTGGCCACGCAGACCATGGCGGACCAGTACGGCTGGATCGTGATGGTCGGCTGCGCCCTCCTGGTGGGACTCGCCGCCGGGCTCGTCAACGGCGTGATCATCGCCTATGGCAATGTGGTGGCGTTCATCGCCACCCTGGCCATGCTGGTGGCAGCCCGTGGGCTGGCCGAGCTCATCGCCAACCGGCGCACGCAGATCGTCAACCAGAGCTCGTTCGAGAGCACGTTCCAGGGCGACCTGCTCGGCGTCCCGAAGATCGTCTGGATCTTCGTCGTCGTCGCGGTCGGGGGCTGGTTCCTGCTGAACCGGACCACCTTCGGGCGGCGCACGGTCGCCATCGGCGGCAACCGGGAGGCCGCGCGCCTCGCCGGGATCAACGTCAAGCGCCACCTGCTGTACGTCTACGGGTTCTCGGGCCTGGCGGCCGGTATCGGCGGCGTGATGATGCTCGCCCGTACCGGTGCCGGGTCGTCCACCAACGGCCTCCTCATGGAGCTGGACGTGATCGCGATGGTCGTCGTCGGCGGCACCCTGCTCGCCGGTGGTCGCGGCACGATCGTCGGCACCGTCATCGGCGTCCTCATCTTCGCGACGCTCACCAACGTCTTCATCATCAACAACGTCGACAGCTCGGTGCAGCAGATCGCCCGTGGCGCGATCATCGTCGCCGCCGTGCTGCTCCAGCAGCGGTTCGCCCGTCGCTCCACGAGCTGAMSEQQTPSSPAADNPTKHRESSRGPFGLSGATVRNLGLVAALILLCLVGFFTGGDRFASVQNLMIVLSLASVTGVLAIGMTFVITTGGIDLSVGSVLGLTTVWASTLATQTMADQYGWIVMVGCALLVGLAAGLVNGVIIAYGNVVAFIATLAMLVAARGLAELIANRRTQIVNQSSFESTFQGDLLGVPKIVWIFVVVAVGGWFLLNRTTFGRRTVAIGGNREAARLAGINVKRHLLYVYGFSGLAAGIGGVMMLARTGAGSSTNGLLMELDVIAMVVVGGTLLAGGRGTIVGTVIGVLIFATLTNVFIINNVDSSVQQIARGAIIVAAVLLQQRFARRSTSPGPT0016590_1368DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016590-rbsC-K10440NANA
AK018_042151071hypothetical proteinATGTCCGCACGCACCACCCGCCGCCGTCGCCTGATCGCGGCACCACTCGCCCTGGCCGCCTCGGCCGCCCTGCTGGCCGGCTGCGTCAGCAACGAGCCCGCCGAGGAGGAGGGCAGCGACTCCGAGGAGATGAGCTCGGAGGAGGGCTCCGGCGGCACGATGAACGACGAGCCCGGGGAGACCGTCACCATCGGCTTCTCCGCCCCGGCGGCCGACCACGGCTGGATGGGCGCCATCACCAGCGCGGCCGAGGACGCGGCAGCCGGCTACGAGGACGTCGACCTCCGCGTCGCGGAGGGCACCAACGACGTCAACGTCCAGATAAGCCAGATCGAGACGTTCATCGCCGACGGCGTCGACGCCATCGTGCTGCTCCCGTTCGACGGCGCCGCGCTCACGGACGTCGCGATCGAGGCCATGGAGGCCGGCATCCCCGTCGTCAACGTCGACCGGGAGTTCTCCAGCCCGTTCGCCGCGCGCAGCACGGTGCTCGGCGACAACTACGGCATGGGCGTCAGCGCCGGGACCTACATCTGCGAGCAGCTCGGCGACCAGCCCGACGCCGTCGTCGCGGAGATCCAGGGCATCGCCTCGCTGCCGCTGACGCAGGACCGCTCGCAGGGCTTCGAGGACGCGCTGTCCGACTGCGGTCTCGACGTCGACAACCAGGTCGCCGCCGAGTTCACCGTGCAGAGCGGTGAGCAGGTGACGGCGAACCTTCTCCAGGCGGCCCCGGAGATCGACGCTATCTGGAACCACGACGACGACCAGGGCGTCGGCGTGCTGCAGGCGATCGAGAACGCCGGCCGTGACGAGTTCTTCATGGTCGGCGGCGCCGGTTCGCTCGACGTGATGGAGCACATCCAGTCCGGCGACACCGTGCTGGAGGCCACGGTCGTCTACCCGTCCACGCAGGCGGCCGACGGCATCAAGCTGGCCCGCCTGATCGCGCAGGAGAAGAACCTGGGCGACCTGGCGTCGTCGACGGTGCCGCGCACCGTCCAGCTCTACGCGCCGGTGGTCACCGCGGACAACGTCGACCAGTTCATGGACATCGGCTTCCGCTCCTGAMSARTTRRRRLIAAPLALAASAALLAGCVSNEPAEEEGSDSEEMSSEEGSGGTMNDEPGETVTIGFSAPAADHGWMGAITSAAEDAAAGYEDVDLRVAEGTNDVNVQISQIETFIADGVDAIVLLPFDGAALTDVAIEAMEAGIPVVNVDREFSSPFAARSTVLGDNYGMGVSAGTYICEQLGDQPDAVVAEIQGIASLPLTQDRSQGFEDALSDCGLDVDNQVAAEFTVQSGEQVTANLLQAAPEIDAIWNHDDDQGVGVLQAIENAGRDEFFMVGGAGSLDVMEHIQSGDTVLEATVVYPSTQAADGIKLARLIAQEKNLGDLASSTVPRTVQLYAPVVTADNVDQFMDIGFRSPGPT0015740_1372DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0015740-rbsB-K10439NANA
AK018_042161173iolG_6Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGGCTGCAGCAGATCGCGCGCGACTCGGCGTCGGCATGGTCGGCTACTCGTTCATGGGCGCCGCCCACTCCCAGGCGTGGCGTACCGCCCCTCGCTTCTTCGACCTGCCGCTGCGCACCGAGATGTCGGCCGTCGCGGGTCGGGACGCGCAGAAGGTCGCCGAAGCGGCCTCCCGGCTGGGCTGGAGCTCCACCGAGACCGACTGGCGTCGGCTGCTCGAACGCGACGACATCGACCTCGTCGACATCTGCACGCCCGGCAACACGCACGCCGAGATCGCGATCGCGGCGCTCGGCGCCGGCAAGCACGTGCTCTGCGAGAAGCCGCTGGCCAACTCGGTCGCCGAGGCCGAGCAGATGGTGGCCGCCGCCGAGGCCGCCGCGGGCCAGGGTGTACGGGCGATGGTGGGTTTCACCTATCGTCGCGTGCCCGCGATCCAGCTCGCGCGCCAGCTCGTCGCGGACGGTCGCATCGGCGAGGTCCGGCACGTGCGCGCCCAGTATCTGCAGGACTGGCTCTCGGACCCGTCGACGCCGCTCAACTGGCGGCTCGACAAGGAGAAGGCCGGGTCCGGCGCCCTGGGCGACATCGGTGCCCACGTCGTAGACCTGGCTCAGTTCATCACCGGCGAGAAGATCGTCAGCGTGTCCGGGGTGCTCGACACGTTCGTGACCGAGCGTCCGGTGGCGACCGCTTTCTCGGGCCTGTCCGGTTCCGGAGGGTCCGAGACCGGACCGGTGACGGTCGACGACGCGGCAGCGTTCCTGACGCGCTTGTCCGGAGGCGGCCTCGGCGTCTTCGAGGCGACGCGCTATGCGCAGGGCCGGAAGAACGCCATCCGGATCGAGATCAACGGTGCGGCCGGTTCACTCGCGTTCGACTTCGAGGACATGAACGTCCTGCACTTCTACGATGCCACGGAACCGGCAGCGACGGCGGGCTTCCGCCGGATCGTCGTCACCGAGCCCGAGCACGCCTTCGTCGAGGCCTGGTGGCCCGCGGGGCACGGACTGGGCTACGAGCACGCCTTCAGCCACCAGGTCGTCGACCTCGTGCGGTCGATCGCCGCGGGGGAGGACCCGGAGCCGTCCTTCGCCGACGGCCTGGCCGTCCAGCGCGTCCTGGCCGCGGTCGAGCGCAGCGCCGCGGACCGCGCCTGGCTGGACCTGTGAMAAADRARLGVGMVGYSFMGAAHSQAWRTAPRFFDLPLRTEMSAVAGRDAQKVAEAASRLGWSSTETDWRRLLERDDIDLVDICTPGNTHAEIAIAALGAGKHVLCEKPLANSVAEAEQMVAAAEAAAGQGVRAMVGFTYRRVPAIQLARQLVADGRIGEVRHVRAQYLQDWLSDPSTPLNWRLDKEKAGSGALGDIGAHVVDLAQFITGEKIVSVSGVLDTFVTERPVATAFSGLSGSGGSETGPVTVDDAAAFLTRLSGGGLGVFEATRYAQGRKNAIRIEINGAAGSLAFDFEDMNVLHFYDATEPAATAGFRRIVVTEPEHAFVEAWWPAGHGLGYEHAFSHQVVDLVRSIAAGEDPEPSFADGLAVQRVLAAVERSAADRAWLDLNANANANANA
AK018_042175898hypothetical proteinGTGAGAACAGTGCTCAGCTCACGGAACCGTCGCGCACGGCGCGGCGTGGCCGCAGCTGTCGCGACCGCCGTCGCTCTGCCGCTGTCACTGACCGGCGTGTTCAGCGCCGCCTCAGCAGACGTGCAGGACGACGAGGGCGCGGCAGAGGCCGCGGTCGAGGAGATCGATGCGTTCGACCTCCTCGTCTTCTCCAAGACGGCGGGTTTCCGCCACGGCTCGATCCCTGCCGGTATCGCTGCGATCGAGCAGCTCGGTCAGGACAACGGCTTCACGGTGACAGCGACCGAGGACGCCGGTGACTTCACGGCCGACAACCTCGAGCAGTACGAGGCCGTGGCGTTCCTCTCGACCACGGGTGACGTTCTCGACGACACCCAGCAGGCCGCCTTCGAGGAGTACATCGAGAACGGCGGCGGGTACGCGGGGATCCACGCGGCCTCCGACACCGAGTACGACTGGCCGTGGTACGGCGAGCTCGTCGGTGCCTACTTCGCCGGTCACCCGGCGCAGCAGGACGCCACCATCAAGGTCGAGGACCACGTCCACCCCTCCACAGAGCACCTGCCCGAGCGCTGGGACCGGTTCGACGAGTGGTACAACTTCCGCTCCGACCCCCGCGACGACGTCCACGTGCTCGCCTCGCTCGACGAGAGCACCTACAACGCGGGCGGCACGGCGATGGGGGCCGAGCACCCGATCGCGTGGTGCCACAACTTCGAGGGTGGTCGGTCCTGGTACACCGGCGGCGGGCACACCGACGCCTCGTTCTCCGAGCCGGCGTTCCTCGAGCACCTGCTCGGCGGGCTCCGGACGGCTGCCGGCGTGGTCGACAGCGACTGCAACGCGAGCCAGACGGAGAGCTACGAGCAGGTCACGCTGGACGACGAGACGCAGAACCCGATGGTGCTCGACGTGGCATCCAACGGTGATGTCTTCTACGCCGAGCGTGACGGTCGTGTCCGCGTGATCGACGCCGAGTCCTCCGTCACCTCCACGGCGCTCGAGCTCAGTGTCACGCAGGGCAACGAGGACGGCCTTCTCGGCCTCGTCCTCGACCCGGACTTCGACGCCAACGGGTGGATCTACCTGTACTGGTCGCCGACGGATGTGGGTGACGACGGTCCGCACAACCGGATCTCGCGGTTCACCTACGACCCGGAGACCGGGAGCATCGACCCGGCTTCGCAGGTCAAGATGCTGGTCGTCGAGACCCAGCGGGACACCTGCTGCCACGCCGGCGGGGACATGGTGTTCGACGACGCCGGGAACCTCATCCTGGCGACGGGCGACAACACCAACCCGTTCCAGTCGAACGGCTACACCCCGATCGACGAGCGCGACGGCCGCGAGAACTTCGACGCCCAGGGCACGTCGGCGAACACGAACGACCTGCGCGGCAAGATCGTGCGGATCACCCCGCAGGACGACGGCACCTACACGATCCCGGACGGCAACCTGTTCGATCCGGGGACGGACCTGACTCGGCCCGAGATCTACGCGATGGGCTTCCGGAACCCGTTCCGGATCGACCTGGACGCGCAGAGCGGCAACATCCTGGTCGGTGACTACGGCCCGGACAACCGCAACGCCAACCCGGACCGCGGTCCGGCCGGCACCGTCGAGTGGAACGTCGTCGCGGAGCCGGGCAACTACGGCTGGCCGTACTGCACGGGTGACCTGGACGCGTACGTCGACTACGACTTCGCGACCGGCCAGTCGGGTGAGGCCTTCGACTGCGCCGCTCCGGTGAACGACTCGCCGAACAACACCGGCCTGACGGAGCTGCCGCCGATCATCGGTGCGGAGATCCCGTACGACAAGGACGGCTCCGAGGTCTCTCCGGAGATCGGCGGGGGCGGTGCGCCCATGGCGGGACCGACCTACTCCTACGACCCGGACCTGGACTCGGACTACAAGTGGCCCGAGTACTGGGACGGCAAGGCGTTCTTCGGCGAGTGGAACCAGGGCCGGATGTACTCCATCCAGCTCACGGGCGAGACCCGTGAGGACGTGGTGGACGTCAACCGCATCCTGCCGGGCATCTTCGACTCCTCGGCCGGCTTCAACCGCCCGATGGACTTCGAGTTCGGTCCCGACGGTGTGCTGTACATGGTCGACTGGGGCGCCGGTTTCGGCGGCAACAACGACTCGTCGGGCATCTTCAAGGTGAACTACGTCCAGGGCGACCCGGCCCCGATCGCGCGGGCCGAGGCCGACGTGACGAGCGGCGCCTCGCCGCTGACCGTGCAGTTCTCCTCGGAGGGTTCGCGTCACCCCGGTGGCGAGCCCATCACGCTGCAGTGGACGTTCGGCGACGGTTCCGCGCCCAGCACGGAAGCCAACCCGACGCACACCTACACCGAGAACGGTTCGTACACCGCACAGCTGACGGTGACGGCCGCGAACGAGAAGGTCAGCACCGCGAACGTGACCATCGTCGTGGGCAACGAGGCACCCACGGTCTCGATCACGTTCCCGGAGAACGGCGGGTTCTTCGAGTTCGGTGACCAGGTCGCCTACGAGGTCGAGGTCACCGACCCCGACGGCGAGGTCGACTGTTCCGAGGTCAACCTCTACACCTCGCTCGGGCACGACACCCACGCCCACCCCTTCGAGGAGCTCACGGGCTGCTCGGGGATGCTGCAGACGGCACGGGACGAGGGGCACGGGATCTCCGAGAACATCTTCTGGGTGATCGAGGCCTCGTACACCGACGACGGTGGTGAGGCTGGGGTCCCGCTGGGCGGCAACGACCTGCAGGTCCTGCAGCCCAAGGCGCTCCAGGCCGAGTTCTTCACCTCGACGGGCCGTCTCGACGGTTCGACGTCGACGGGTACGGCCGGGGTGCAGACCGAGGAGACCGAGGACGAGGCCGGTGGCGGCCTCAACATCGGATGGACCGAGGTGGACGACTGGTGGGCCTTCGAGCCGGTCAGCCTGAACAACGTCGAGGCGATCGCTCTGCGCGCCTCGACGCCGGCCAGCTCGTCGCGCGTGTCCTTGCGCTGGGACGCTCCGGACGGTCCGGAGGTCGCCCAGATCACCGTGCCAGGCACCGGTGGGTGGCAGAACTGGATCACCACCGACCCGGTCGAGCTCGTCGACGTGCCGTCCGGCAGTGGGACGTTGTACTTCGTCGTTCTTGACGGCCGGATCAACGTCAACTGGGCCGAGTTCGTGGGCCGAGGTGTCACCGACAACGTGCGGCCGGACGTCAGCCTCGAGGTCGACCCGCTCGCGGGTGATGCGCCGCTGACGGTTTCCGCGACCGCCACGGCGACGGACCCGGACGGTGACTCCGAGGCGCTCACCTATGCCTGGGACGCCGGTCTCGGCGACGGGTTCGTCGAGGGAACGTCCTCGTTCGAGCACACGTACACCGAGCCCGGTACGTACCGGGTCCAGGTGCGCGTGACGGACGCGGGCGGCGCCTATGCGACCGAGTACGTCGAGGTGGAGGTCTCCGAGATCGTCGTGCCGCCGACCCAGTGCTTCTCGGGCCGGTCGGACGACTTCCTCGGCGACGAGCTCGACGAGGACCGTTGGAACACCGTGGTACGCCGTGACCAGAACCTCGCCGTCTCCGACGGCAACCTGGTCATCCCGGCGACGAAGACCGACATCTACGGCGGTTCGGCCGACGACGTGTCGAACATCGTGCTGCAGGACCTGCCCGAGGGTGACTTCACGGTCACCACGAAGGTGGACCTGGAGGCTCGGGTCAACTACCAGCAGGCTGGTCTCGTCCTGTACGCGGACGACGCCAACTACGTGAAGATGGTCGTCCAGGGACGCAGCTCGTCCCCGAACGCGGACGCGCGCATCTTTCAGCTGGCCACGGAGGTCGACGGCGACCCGTCGGAGATCAACACCCAGGGGATCGGTCCGGACTTCTCCGACACCGTGTACCTGCGGCTGACCCGTTCCGGCGAGTCGCTCGTCGGGTCGTACTCGGCGGACGGCGTGACGTTCACCGACATGCCGGAGAGCACGACGACGGCGGACATCGTCGACCCGAAGATCGGGCTGACCGCGTTCGCCAACGCCAACTCGCCGGCCGACGTCATCGACGCTCGTTTCGACTGGTTCTCGGTCACCCCGGACGACACCGCGGTGGCGCCGGGGCCGGACGACGAGTTCGAGGGCGACCAGCTCGACGGCTGCCGCTGGGCCGTGGTCCGTGAGGACCCGACCGGGTACCGCGTGAGTGACGGTTCGCTCGAGATCGACACGACCGCTACGGACATCTACGGGGCGGACAACACCGGGACGCCGAACATCGTCGTCCAGGACCAGCCGGACGGTGACTGGACGGTCGAGACCAAGGTCGACGTCTCGGACCTCGACCAGAAGTGGCAGCAGGCCGGTCTCATCGCCTACGTCGACGACGACAACTACGTCAAGTTCGACTACCTGGCGAAGAACCAGCCCGGTGGGACGACGGCGGCCAACCTGGAGGTGCGCTCCGAGGAGAACGCCTCCGCCGGGGGGCCGACCGTCTCGGACGTGACCGGCGACGTCTGGTACCTGCGCCTGGCCAAGGAGGGCACGACGTTCTCGGCGTCGTACTCCACCGACGGCGAGACGTGGGAGGACTTCCCGGAGAGCGTCACCAACGAGTCCCTCGGTGAGGCGAAGGTCGGTCTGTACGCCCTCGGCGGTGTGCAGCAGTCCTCGTCGACGGCGGCGTTCGACTACTTCCACGTGGTCGGCGACGACGTCGAGCCGCTGGCGGTCACGGGGTCGCTCGACCCCGCGTCCCCCGACGGGGAGGACGGCGCGTACACCGGTCCGGTGACGGTCTCGATCGAGACCACCGGCGGCCCCGAGGACGTGCTCGTGTACCGCGAGTACAACCTCGACGGCGAGGGCTGGGCGGAGTACACCGCGCCGGTGGAGATCTCCGAGCCGGGGGAGCACACCGTTCAGGTGCGTGCCTCGGCCGGTGACCAGAACGCCACCGGGGAGGAGCTCACGTTCACCATCGCCGAGCCGGCGGTGCTGGAGGCGACTCCGTCCGTGACCGTGAACCAGTCGACCTGCACCGTCGTGGACGGCGAGTTCGACCAGGTGAACGGTTCGGTGGTCGGCGAGCAGCTCGACGGCGTGGCACGTTACGTCGTCAAGGACGCCGACGACTCCGGTCGGTACGTGCGTGCCGGGGACATGTCCCCGGGCGAGTACCTGATCCGGGCCTGGCCGGCTGAGGGTTACACCCTCGTTCCCGGCGACGGCTGGTCGGAGATCTTCAAGGGGCGCCTGCAGACCTCGGTCACGATCGACGAGTTCGACTGCCCGACGGCGACCCCTGTGGTCTCCGTGACGCAGCCGACCTGCGAGGTCGACGCCGACGGCGAGAACATCCGAACGGGCGGTTCGCTCACCGGTGAGGCCGTCGAGGGTGTCAAGGGTTACGTGGTGCACAACTGGGTGGACGGTGACCTGAACGACGGCAAGCCGTCGGACCTGGGTGACCTCGCGCCTGGCCAGTACCACGTGATCGCTACTCCCGACGCCGACCACCTCCTCGAGGTGGACGGCGAGTGGAAGCTGAGCCCGTCGGGCAAGGCGACGCTCGTGGTCACGATCGACGGCTACGGCTGCGACCGTGTCCCGGCGGTCGACCTGGTCCAGCCCACGTGCTCCGACGACGGTGCGACGGTCGGCTCGCTGAGCCCGGTCGACGTGACCGGCGTGAAGGGCTACGTGGTGCACAACTGGGTCGACGGCCACGCGCAGGGCAAGCCCTCCGACCTGGAGGAGCTCGAACCTGGCCAGTACCGCGTGATCGCGAGCCCCGAGCCGAAGACCGAGCTCGAGGTCGAGGGCGACTGGGAGCTGAGCCCGTCGGGCAAGGCCAAGGTCATCCTCACTGTCGAGGAGGTGGCCTGCGGCTGAMRTVLSSRNRRARRGVAAAVATAVALPLSLTGVFSAASADVQDDEGAAEAAVEEIDAFDLLVFSKTAGFRHGSIPAGIAAIEQLGQDNGFTVTATEDAGDFTADNLEQYEAVAFLSTTGDVLDDTQQAAFEEYIENGGGYAGIHAASDTEYDWPWYGELVGAYFAGHPAQQDATIKVEDHVHPSTEHLPERWDRFDEWYNFRSDPRDDVHVLASLDESTYNAGGTAMGAEHPIAWCHNFEGGRSWYTGGGHTDASFSEPAFLEHLLGGLRTAAGVVDSDCNASQTESYEQVTLDDETQNPMVLDVASNGDVFYAERDGRVRVIDAESSVTSTALELSVTQGNEDGLLGLVLDPDFDANGWIYLYWSPTDVGDDGPHNRISRFTYDPETGSIDPASQVKMLVVETQRDTCCHAGGDMVFDDAGNLILATGDNTNPFQSNGYTPIDERDGRENFDAQGTSANTNDLRGKIVRITPQDDGTYTIPDGNLFDPGTDLTRPEIYAMGFRNPFRIDLDAQSGNILVGDYGPDNRNANPDRGPAGTVEWNVVAEPGNYGWPYCTGDLDAYVDYDFATGQSGEAFDCAAPVNDSPNNTGLTELPPIIGAEIPYDKDGSEVSPEIGGGGAPMAGPTYSYDPDLDSDYKWPEYWDGKAFFGEWNQGRMYSIQLTGETREDVVDVNRILPGIFDSSAGFNRPMDFEFGPDGVLYMVDWGAGFGGNNDSSGIFKVNYVQGDPAPIARAEADVTSGASPLTVQFSSEGSRHPGGEPITLQWTFGDGSAPSTEANPTHTYTENGSYTAQLTVTAANEKVSTANVTIVVGNEAPTVSITFPENGGFFEFGDQVAYEVEVTDPDGEVDCSEVNLYTSLGHDTHAHPFEELTGCSGMLQTARDEGHGISENIFWVIEASYTDDGGEAGVPLGGNDLQVLQPKALQAEFFTSTGRLDGSTSTGTAGVQTEETEDEAGGGLNIGWTEVDDWWAFEPVSLNNVEAIALRASTPASSSRVSLRWDAPDGPEVAQITVPGTGGWQNWITTDPVELVDVPSGSGTLYFVVLDGRINVNWAEFVGRGVTDNVRPDVSLEVDPLAGDAPLTVSATATATDPDGDSEALTYAWDAGLGDGFVEGTSSFEHTYTEPGTYRVQVRVTDAGGAYATEYVEVEVSEIVVPPTQCFSGRSDDFLGDELDEDRWNTVVRRDQNLAVSDGNLVIPATKTDIYGGSADDVSNIVLQDLPEGDFTVTTKVDLEARVNYQQAGLVLYADDANYVKMVVQGRSSSPNADARIFQLATEVDGDPSEINTQGIGPDFSDTVYLRLTRSGESLVGSYSADGVTFTDMPESTTTADIVDPKIGLTAFANANSPADVIDARFDWFSVTPDDTAVAPGPDDEFEGDQLDGCRWAVVREDPTGYRVSDGSLEIDTTATDIYGADNTGTPNIVVQDQPDGDWTVETKVDVSDLDQKWQQAGLIAYVDDDNYVKFDYLAKNQPGGTTAANLEVRSEENASAGGPTVSDVTGDVWYLRLAKEGTTFSASYSTDGETWEDFPESVTNESLGEAKVGLYALGGVQQSSSTAAFDYFHVVGDDVEPLAVTGSLDPASPDGEDGAYTGPVTVSIETTGGPEDVLVYREYNLDGEGWAEYTAPVEISEPGEHTVQVRASAGDQNATGEELTFTIAEPAVLEATPSVTVNQSTCTVVDGEFDQVNGSVVGEQLDGVARYVVKDADDSGRYVRAGDMSPGEYLIRAWPAEGYTLVPGDGWSEIFKGRLQTSVTIDEFDCPTATPVVSVTQPTCEVDADGENIRTGGSLTGEAVEGVKGYVVHNWVDGDLNDGKPSDLGDLAPGQYHVIATPDADHLLEVDGEWKLSPSGKATLVVTIDGYGCDRVPAVDLVQPTCSDDGATVGSLSPVDVTGVKGYVVHNWVDGHAQGKPSDLEELEPGQYRVIASPEPKTELEVEGDWELSPSGKAKVILTVEEVACGPGPT0004005_5DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-OTHER_CYTOCHROME-RELATED_PROTEINS,PGPT0004005-cycA|cycM-K08738NANA
AK018_04218618hypothetical proteinATGAGGACGCAACGTGGCGTGCTGGTCGGATACCCGGCGACCGCGAGGTGGGTGCTCGCTGCGGTGCTCGCTGCCTTGGCCCTGGTCGGCGTCTCGACAGCGACGCCCGCCGTGGCCCACGGGGGGGATCTGAAGGTCGACCTCGGGACCGACGGCGCCGGGGGCATCGATGCGACCGTGACCTGGGCGGGCGACGGGCACCCGGTCGAGGAGACGGTCGACCTGGTGGTCGTCGCAGTCTCGGACGACGGCGAGGAGGTGGGCCCGCTCCGGTTGCAGTCGGCATCGGAAGGCGTGGGTTGGTACCGCTCCGAGACAGGGGTGCTCGGCGAGGGCCACTGGACCGTCACGGCGACTGCCACGGAGCCGGCCGAGTACGAGGGGACCACCGAGGTGGACGTGGCGGCTCCGCCGGCGCCGCCGTCACCCGAACCCAGTGCCGAGGTGACGGCGCCGCAGGTCGCGGCCGACCAGCCCGCCGGTGACGGACAGGCCGCGGAGGCGAGCGCCGGAAGCGGCGAAGGGCTCTCCCCCTGGACCGTCGTCGGTCTCGCAGTGCTCGTGGCGGGGGGCGCGGTGACGGCGGTGCTCCTGCGTCTTCGGCGTCGTGCGCGCTGAMRTQRGVLVGYPATARWVLAAVLAALALVGVSTATPAVAHGGDLKVDLGTDGAGGIDATVTWAGDGHPVEETVDLVVVAVSDDGEEVGPLRLQSASEGVGWYRSETGVLGEGHWTVTATATEPAEYEGTTEVDVAAPPAPPSPEPSAEVTAPQVAADQPAGDGQAAEASAGSGEGLSPWTVVGLAVLVAGGAVTAVLLRLRRRARNANANANANA
AK018_042191002hypothetical proteinATGACACGACCGATCAGTCTCTTCACCGGGCAGTGGGCGGACATGCCGCTGGAGGAGCTCGCGGGACTGGCTTCCGGCTGGGGGTATGACGGCCTGGAGCTGTGCTGCTGGGGTGACCACCTGGACGTGAGCCGCTGGGACGATGCTGAGTACGTCCAGGGTCGCAAGGACCTGATGGCACGGCACGGCCTGCAGATCGTCGCGATCTCGAACCACCTGACGGGACAGGCGGTCTGCGACGACCCGATCGACCTGCGTCACGAGGCGATCCTCGCGCCCGAGGTCTGGGGTGACGGTGAGCCGGAGGGTGTTCGCCAGCGTGCTGCCGAGGTCATGAAGGACACGGCGCGCATGGCGGCGAAGCTCGGTGTGCGGACCGTGGTCGGCTTCACCGGGTCGTCGATCTGGAAGGCGTTCGCGAACTTCCCGCCGACGCCGCAGTCGATGGTGGACGCCGGGTATCAGGACTTCGCCGACCGGTGGAACCCGATCCTCGACGTCTTCGAGGAGGTCGGCGTCCGGTTCGCCCTCGAGGTGCACCCGAGTGAGATCGCCTACGACTACTGGACCGCCAAGCGGACGCTCGAGGCCATCGGGCACCGCGAGTCGTTCGGCCTGAACTGGGACCCGAGCCACATGGTCTGGCAGGACCTGGACCCGGTGAGCTTCCTCTGGGACTTCCAGGACCGCATCTACCACGTCCACTGCAAGGACACGAAGAAGCGCCTCAACGGTCGTAACGGTCGTCTGTCGTCGCACCTGGCCTGGGCGGACCCGCGCCGTGGTTGGGACTTCATCTCCACCGGCCACGGCGACGTGCCCTGGGAGGACGCGTTCCGGATGCTCAACGCCATCGGGTACGACGGCCCGCTGTCGGTCGAGTGGGAGGACGCAGGCATGGATCGGCTCGTCGGTGCGCCCGAAGGGCTGGCGTTCGTCCGTCGGCTCGCGTTCGACGCCCCGGAGGCGGCCTTCGACGCGGCGTTCTCGTCCAAGGACTGAMTRPISLFTGQWADMPLEELAGLASGWGYDGLELCCWGDHLDVSRWDDAEYVQGRKDLMARHGLQIVAISNHLTGQAVCDDPIDLRHEAILAPEVWGDGEPEGVRQRAAEVMKDTARMAAKLGVRTVVGFTGSSIWKAFANFPPTPQSMVDAGYQDFADRWNPILDVFEEVGVRFALEVHPSEIAYDYWTAKRTLEAIGHRESFGLNWDPSHMVWQDLDPVSFLWDFQDRIYHVHCKDTKKRLNGRNGRLSSHLAWADPRRGWDFISTGHGDVPWEDAFRMLNAIGYDGPLSVEWEDAGMDRLVGAPEGLAFVRRLAFDAPEAAFDAAFSSKDNANANANANA
AK018_04220585COG0454putative N-acetyltransferaseGTGTCCGGCGCTACCGTCTGTCGAGTGAGTTCCCATGCGCTGTTCGTCCGTGCGGCACGCCCGACCGAGGCTGCCGAGATCGCCTGGCTCGCCGCCCTGACGTTCCCCCTCGCGTGTCCACCGGGCACGCCGGTCGCCACGATGGCCGCCCACATCGCCCGTCACCTGTCCCCGGGGCGGGTGGCGGACTGGATCGCCGACCCCGCGCGGGAGACGGTGGTCGCTCTCGCCGGCCCCGAGGTCGTGGGCTACGCCCTCCTGGTGCACGGGAGTCCCGACGGCGAGGCGGAGGCCGACGTGTTGCGCGAGGCCGCCGGCCCCGGCCCGTACGTCGAGCTGTCGAAGATCTACGTGCACCCCGACCGGCTCGGCGACGGCACGGCGCACGCCCTGATGACGGGTGCCCTCGAGGCCGGTGAGCGGCTGGCGCCGGAGGCCTCCCTGTGGCTGGGGACCAACGGTGCCAACCATCGGGCGCAGACCTTCTACCGCAAGCACGGGTTCGAGGTCGTCGGCGAGCGGACCTACGACGTCGGCGGCGTGCAGCACGCCGACGTGGTCATGCTCCGACAGCCGGGTCACTGAMSGATVCRVSSHALFVRAARPTEAAEIAWLAALTFPLACPPGTPVATMAAHIARHLSPGRVADWIADPARETVVALAGPEVVGYALLVHGSPDGEAEADVLREAAGPGPYVELSKIYVHPDRLGDGTAHALMTGALEAGERLAPEASLWLGTNGANHRAQTFYRKHGFEVVGERTYDVGGVQHADVVMLRQPGHPGPT0007785_41DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007785-paiA-K22441NANA
AK018_042211314pip_2Proline iminopeptidaseGTGAGCGGCACCGTCACGAGCGAGACCTCGTACACGATCCCCGGCGTCCACGTCACCGACCGCACCCTCACGGTCCCTCTCGACTGGACCGCACCCGCCGACGACCGCACGCTGAGCGTGTTCGCGCGCGAGCTGGTGGCGCCGACCCGACGGTCCGAGGATCTGCCCCTGCTGGTCTTCCTCCAGGGCGGACCGGGCGGCAAGGGGCCTCGGCCCACCGGCGCGGAGGGCTGGGTCGGCGAGGCGCTGAAGCGGTTCCGGGTGGTGCTGCTCGACCAACGCGGCACGGGTCGTTCGACGGCGGTCCGGGCCGGGGCGCTGCAGCGGCTCGGGTCCGGCGACGTGCAGGCGGAGTACCTGTCCCACTTCCGTGCCGACTCGATCGTGCGCGACGCGGAGCACGTGCGGAACATCGTGTACGGCGGACGACGCTGGTCCACGCTCGGGCAGTCCTACGGCGGGTTCCTGACCCTCACCTACCTGTCGTCCGCACCCGAGGGGCTCTCGGCGTCGTACGTCACCGGCGGTCTCGCGGGGCTCGACGCGAGCGCCGACGAGGTCTACGAGCGCACGCAGGCGCGCGTCGTCGCGAAGAACGCGCAGTACCGCGAGCGCTACCCGGCCGACGTCGAGCGGATCGGGCGGATCGCTGACCGGATCGCCGCGGGCGACGTGCGCCTGCCCGGCGGCGACCTGCTGAGCGTCGAACGGTTCCAGACCCTCGGCATGGCGTTCGGGATGGGACCCGGGTTCGAGCGGGTGCACTGGATCGTCGACGAGGCGTTCGACGACGGCGCCCCGGACGACCTGACCGACACGTTCCTCGCCGAGATCGAGGCCGCCACGGGGTTCGCGACCAACCCGCTGTACGCCGTGCTGCACGAGTCGATCTACGCCCAGGGCCCCGGGGCGACGGCATGGGCGGCCCAGCGCGTCCGCGGCACCGACCCGGCGTTCGCCACCAGCGCCCGCCCGCTGCTGTTCACCGGCGAGATGATCTACCCCTGGATGTTCGACCAGATCGCTGCGCTGCGCCCGTTCCGCGACGCCGCCCACGCGCTCGCCGCGCGGGACGACTGGCCGGAGCTGTACGACACCGAGGTGCTGGCGACCAACGAGGTACCGCTGGAGGCCGCCGTCTACTTCGACGACATGTTCGTCGACGCCGACCTCTCCCTGGACACCGCGAACCGCGTCGGCGACGCCCGGGCCTGGGTGACGAACCAGTTCGAGCACGACGGGCTGCGTGCCGGCGACGTGTTCACCACGCTGCTGGACCGGCTCGACGCCCGCGGCGGCCCGCGCCGTGCCTGAMSGTVTSETSYTIPGVHVTDRTLTVPLDWTAPADDRTLSVFARELVAPTRRSEDLPLLVFLQGGPGGKGPRPTGAEGWVGEALKRFRVVLLDQRGTGRSTAVRAGALQRLGSGDVQAEYLSHFRADSIVRDAEHVRNIVYGGRRWSTLGQSYGGFLTLTYLSSAPEGLSASYVTGGLAGLDASADEVYERTQARVVAKNAQYRERYPADVERIGRIADRIAAGDVRLPGGDLLSVERFQTLGMAFGMGPGFERVHWIVDEAFDDGAPDDLTDTFLAEIEAATGFATNPLYAVLHESIYAQGPGATAWAAQRVRGTDPAFATSARPLLFTGEMIYPWMFDQIAALRPFRDAAHALAARDDWPELYDTEVLATNEVPLEAAVYFDDMFVDADLSLDTANRVGDARAWVTNQFEHDGLRAGDVFTTLLDRLDARGGPRRANANANANANA
AK018_04222426hypothetical proteinGTGCCTGACCCGGACCGGCGCTCCCTCGGGTGGTTCGCCTACGCGCCCCTGAGCGGACAGGCCTTCCGGCCGGATCCCGCGGTCCGCCCGGTCGCGGACGACGCGCCACCCGGCCCGACGCCCCGGAACGAGGTGCGCCTGATGAACGAGTACTCCTGCGCGTGGCCCGTGTGGGACACGGCCGACGAGCTCGACCCGGTCGTCGAGGAACGGATCGAAGCGGAGCTGGGTGACCGGCTCCGTGCCTGGGCAGCGACGTTCCAGGAGTACTACGATCCGTTCACCGGATGGGACTCCACGGGCGTGGCTGCCGCGCACCGGGCCGAGGGCGAGGTCCTGCGTGACGCGCTGCAGGCCGTCCTGCCGGAACCGTGGACAGTGCGCTGGGATGCCTGGGAGCACGAGGGCTCACGACCCGAGTCATAGMPDPDRRSLGWFAYAPLSGQAFRPDPAVRPVADDAPPGPTPRNEVRLMNEYSCAWPVWDTADELDPVVEERIEAELGDRLRAWAATFQEYYDPFTGWDSTGVAAAHRAEGEVLRDALQAVLPEPWTVRWDAWEHEGSRPESNANANANANA
AK018_04223489tadA_3tRNA-specific adenosine deaminaseATGAGTGCGGTGGAGCTGTCCCCCGTGGACCGGGCGCACCTGGCCGCGGCGCTGCAGATCGCCCGCGAGACGCAGGCCGAGGGCAACAAGCCGTTCGGCGCGGTGCTGGTGGCGGCCGACGGGCGCGTGCTCGCCACGGGCCGCAACGCCGCCGCGCAGACCGGTGACCCGACGTCGCACGCCGAGCTGGACGCGGTCCGGGCCGTGACCGCGGCGGATCGCGACGCCGTCGCAGGGTCCACGATGTTCGCCAGCGGTGAGCCGTGCCCGATGTGCGCGGCGGCGCTCGTGTGGTCCGGCGTCGGGCGGATCGTGTTCGGGACGGCGGCAGCCGACATCCGGGCCGTGGCTCCGGGGCCGCCCGGATTCCGCCTGCCGTGCGCGGAGGTGGTGGCGGCGTCGGACGCGATCCTCGAGGTGGTCGGGCCGGCGCTCGGCGACGAGGGCCTCGCCCCCTTCCGCGAGGTAGGCAACTTTCCCGCGGGGTAGMSAVELSPVDRAHLAAALQIARETQAEGNKPFGAVLVAADGRVLATGRNAAAQTGDPTSHAELDAVRAVTAADRDAVAGSTMFASGEPCPMCAAALVWSGVGRIVFGTAAADIRAVAPGPPGFRLPCAEVVAASDAILEVVGPALGDEGLAPFREVGNFPAGNANANANANA
AK018_042241053COG2423Delta(1)-pyrroline-2-carboxylate reductaseATGACCGCCGCTCCCGGCCCGTCCCTGCCGTCCTTCACCTCCCGTCCGATCCCTGGAGCTCCCGTGCCGCTCGTCCTCACCCGTTCCGACCTCACCGGGCTGGTGACGCCCGCGGCCGTCGTCGACGCCGTCGAGCGGGCGTTCGCCGACCTCGCCGAGGGGTCCGCGTCCCAGGCCCCGCTCGCCGTGGCCGCCGTGGACGACGCCGCGCACTTCCTGCCGATGACGGCGGTGTCCCGTCGGGCCGGGCTGGCCGGGTCGAAGCTACTCGCCGACGTCCCCGGCAACCGGGACCGCGGGTTGCCCGCACAGCGCTCGGTGCTCGTGCTGGCGGACGCCGACGACGGCGCACCGGTCGCCGTGCTCGACGGCGGCCTGCCCACCCGGTTGCGCACCGCCGCGGCCAGCGCCGTCGCCACGCGCTGGCTCGCCCCGTCGTCGGCCCGTGTCCTGGGACTGGTGGGTGCCGGAGGACTGGCGCTCGAGCACGTCAGCGCCGTCGCGGCGGTGCGGCCGCTGGAGCAGGTGCTGTTCTGGACGCGCTCGGACGCCACGGCCGCGACGTTCGTCGACGGGGTCGGCGCGCGCCACCCGGAGATCAAGGTGACCCGCGTGGACTCGCCGGCCGGCGCCGTCGAGCCGGCCGACGTCGTGTGCACGCTGACGCCGTCGCGCGAACCCGTGGTGCGGGGGGAGTGGTTCCACCCCGGGCTGCACGTCAACGTCGTCGGCGCCCCGCCGCGGCCGGACCACCGGGAGGTCGACGGCGAGGCGATGGCCCGCTCGCGGGTCGTCGTGGACTCGGTGTCCACCGCGCTGGGCGAGTCCGGTGACGCGCTGCTGGCGATCGCGGACGGTGCGGTGGACCGGTCGGCGTTCGGGCTCGAGCTCGGCGCCGTTGTCGCCGGCATGGCGCCCGGACGGCGCCACGCCGAGGAGATCACCCTGTTCAACTCGGTCGGCCTCGGCCTGCTCGACGTCGTGATCGGTCGGCTGCTCGTGGATGCCGCCCGCGCGGCCGGGCGCGGGCTCTCCGTAGAGTTGTCGGCATGAMTAAPGPSLPSFTSRPIPGAPVPLVLTRSDLTGLVTPAAVVDAVERAFADLAEGSASQAPLAVAAVDDAAHFLPMTAVSRRAGLAGSKLLADVPGNRDRGLPAQRSVLVLADADDGAPVAVLDGGLPTRLRTAAASAVATRWLAPSSARVLGLVGAGGLALEHVSAVAAVRPLEQVLFWTRSDATAATFVDGVGARHPEIKVTRVDSPAGAVEPADVVCTLTPSREPVVRGEWFHPGLHVNVVGAPPRPDHREVDGEAMARSRVVVDSVSTALGESGDALLAIADGAVDRSAFGLELGAVVAGMAPGRRHAEEITLFNSVGLGLLDVVIGRLLVDAARAAGRGLSVELSANANANANANA
AK018_04225927hypothetical proteinGTGATCCCCACCCTGACCGACCTGCTGGTCGCGAGCATCGCGCTGGCCGTCCCCGTCCTCGTCGCCGCCAGCGGCGAGCTCGTCGGCGAACGCGCCGGCGTCCTGACCATGAGCGTCGAGGGCATGATGCTCACCGGCGCGTTCGCCTCCGTCGTCGGAGCCACCTCCAGCGGCTCGGCGCTCTACGGCGTCGCCTGCGGCGCCGTCGCCGGACTGCTCGTCGGAGTGCTGCAGGCCGTGCTCAGCGTCGTCCTGAGGGCCGACCAGATCGTCACCGGGCTGGCCGCCAACGCCCTCGCCCTGGCCGGCACGACGTTCGGCGCCCGCCTCCTGCTGGAGCGCGGCGCGCCGGTACCCGGCTTCTCCCGGGTGGAGATCCCGCTGCTGGCCGACATCCCCGTCCTCGGGTCCGCGCTGTTCCGCCAGACCGGCCTCGCCTACGTGCTCATCGCCGTCGTCGTCCTGCTCGCGATCCTCACCTCGCGGCGCACGGGCTGGGGCCTCGCGGTGGACGCCGTGGGGGAGGACGCCGCCAGCGCCGACCGCTCCGGCATCCCCGTGCTGCAGGTGCGGTTCGCCGCGGTCCTCGTGGTCGGGCTGCTGTCCGGCCTGGCCGGCACCCAGCTCGCGCTGTCCGAGGTGCACACCTTCACCGACAACATGACCGCCGGGACGGGCTACCTCGCGGTGGTCGCCGTCATCGCCGGCAGCTGGCGCCCCGTGGGCGTGGCCGTCGCCGCCGTCGTGTTCGGGCTCGCCCAGGCGCTGCAGTTCACGCTGCCGGCCCTCGGTGTCGACGTTCCGTTCGCCCTGCTCGTGATGCTGCCCTACGTGCTGGCGCTGCTCGCCGTGGCCGGGTTCGTCAGCCACAGCCGGCCACCCGCCGGGCTCAACACCGCGTTCGTGCGGCAGGGGAGGGCTGCATGAMIPTLTDLLVASIALAVPVLVAASGELVGERAGVLTMSVEGMMLTGAFASVVGATSSGSALYGVACGAVAGLLVGVLQAVLSVVLRADQIVTGLAANALALAGTTFGARLLLERGAPVPGFSRVEIPLLADIPVLGSALFRQTGLAYVLIAVVVLLAILTSRRTGWGLAVDAVGEDAASADRSGIPVLQVRFAAVLVVGLLSGLAGTQLALSEVHTFTDNMTAGTGYLAVVAVIAGSWRPVGVAVAAVVFGLAQALQFTLPALGVDVPFALLVMLPYVLALLAVAGFVSHSRPPAGLNTAFVRQGRAAPGPT0021050_2894DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021050-nupC|yufQ-K23536NANA
AK018_042261224hypothetical proteinATGACCGCCCCCACCTCCACGACCACCGCCGTCGTGCCGACACCCGGCGACGACGACGGCCCCGCGGCGCCCGCACCGGCCGCGCCCGCGGGCCCCACCTGGCGCGACCGCCTCCTCGACGCCCGACCCGTCCTCGTCCCGCTCGCCGCGGTGCTCGGGGCGCTCGCCGTCAGCACCGGGCTGGCCGCCCTCGCCGGGGCGACGCCCGCCGAGGCCGCCACCGCCCTGTGGGAGGGCATGGTCGGCACGCCGTACGCCATCGGGTCCTCGCTCAACGTCGCCGCCGTGCTGCTGCTCGTCGCCACCGGGTTCCTGGTCGCCCACCGCGCCGGCCTCGTCAACGTCGGCGGCGAGGGACAGATCGCCGTGGGGGCCGTGGCCGCCACCGCCGTCGGCACCTCGCTGCCCTCGACCGTCCCCGCCGCCGTCGCCCTGCCGCTGCTCCTCCTCGCCGCCGCGGCCGGCGGCGCCGCCTGGGCGTCGATCGCCGCCTGGCTCGCCGTGCGCCGAGGCGTCAGCGAGGTCATCACCACGCTGCTGCTCAACTTCGTCGGCGTCGCCGTGCTCGTGCTGTCCATCCACGAGGAAGCCCTCCTGCGCCAACCCGTCACCAGCTCCGAGACCCTGCCGCAGTCCTCCCCGCTCGTCGACGCCGCCCACCTCCCGCTGCTCGGCCTCCCGGACTCCCCGGCCACCGCCGCCGTCGTGCTGGCGCTCGCGGGCGCCGTCGTCGGCTCCGTGGTGCTGCGCCGCACGGCCACCGGCGTCCGGCTCGAGGCCGTCGGCCGCTCCCGACCGGCCGCCCGTCGGTTCGGCGTGCCCGTGGACCGCCTGCGGTTCTCCGCGCTGACCACGGCAGGCGCCACCTCCGGCGTCGCCGGGGGAGTCCTCGTGGCCTCCGTGCCCTACGTGCTCGACGAGGGGCTCGCCTCCGGGTACGGGTTCTCCGGGCTCGTCGTCGGGCTCCTCGCCCGCGGCTCCTTCACCGCCGCCGTCGGGATCGCCGCCGCCCTCGGGTTCCTCGTCTCCGGCGGCATCAACCTGCAGCTCGCCGCCGGCGTGCCGGCCTCCATCACCCAGATCGCCGAGAGCCTCATCATCCTCGGCGTCGCCGGCACCGCCATCTGGACCGTGCGCCGCACGACCCGGACCCGCCGTCCGTGGTGGCGCTCCCGCACCGCCGGCCCCGCCGCCGCCCGCCCCGCACCGGAGGTCGCCCCGTGAMTAPTSTTTAVVPTPGDDDGPAAPAPAAPAGPTWRDRLLDARPVLVPLAAVLGALAVSTGLAALAGATPAEAATALWEGMVGTPYAIGSSLNVAAVLLLVATGFLVAHRAGLVNVGGEGQIAVGAVAATAVGTSLPSTVPAAVALPLLLLAAAAGGAAWASIAAWLAVRRGVSEVITTLLLNFVGVAVLVLSIHEEALLRQPVTSSETLPQSSPLVDAAHLPLLGLPDSPATAAVVLALAGAVVGSVVLRRTATGVRLEAVGRSRPAARRFGVPVDRLRFSALTTAGATSGVAGGVLVASVPYVLDEGLASGYGFSGLVVGLLARGSFTAAVGIAAALGFLVSGGINLQLAAGVPASITQIAESLIILGVAGTAIWTVRRTTRTRRPWWRSRTAGPAAARPAPEVAPPGPT0021045_232DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021045-nupB|yufP-K23535NANA
AK018_042271689xylG_2COG1129Xylose import ATP-binding protein XylGATGACGACGACCCTGCCGCCGGCCCCGGCACGCGAGAACGACGACACGGCAGCGCCACCCGCGCTCGCCCTGCGGGGCGTGACCCGCGTCTTCGGCGCCCACACGGCGCTCGACACCGTCGACCTGGAGATCGCGGCCGGGGAGGTGCACTGCGTGCTCGGCGAGAACGGCGCCGGCAAGTCCACGCTGTGCAACATCGTGTTCGGCTCGCTGCCGCCCACCACCGGCGAGGTGCTCCTCGACGGGGAGCGGTTCGCGCCCTCCTCCCCGGCCGACGCGCTCGCCCGCGGGGTCGCGATGGTCCACCAGCACTTCTCCCTCGTCCCCACCCTCACGGTCCAGGAGAACCTGCTGCTCGGTCGGGGCGTGCGCCGCCTGCGCCCCGACCGGGCGGGGCTCGCCGCCCGCCTGGCCGCCATCGCCGAGACGCTGGGCCTGCAGGTCGAGCTCGGCGCCCGGGCCGGTGACCTGAGCGTCGGCGCCCGCCAGCGCGTCGAGATCGTCAAGGCCCTCCTCGACGACCCGGCGATCCTGCTCCTCGACGAACCCACCGCCGTCCTCGGCCCCGACGAGGTCGACAGCCTGCTCGCCACGGTTCGTCGCGTCGCCGCCGCGGGGACCGCCGTCGTGCTCGTGACCCACAAGCTCGGCGAGGTCATGCGCGTCGGCGACCGCGCCACGGTGCTGCGCGGCGGTCGCGTCGCCGGCAGCGGTCCGCTCGCCCGTGAAGGGAGTGCTGGGACGCCCGGCGCACCGGCGCTCACGGCGGCCGACCTCGTCGGCCTCATGGTCGGGCGGGAGGCCTCCAGCCTCGACCCGGTGCTCGCCGCGAGCGTCGGCGTCGTGCCCACGGCCGGCCCGTCGCACGACGCCGGACCCGAGGCACCCGCACGGTCCGGCACCCCGGTGCCGGCTCAGGGGCCGGCCCCGGCGACCGGCGACCCGGTCCTCACGGTCCGGGGGCTCACCGTGGACGACGCCGACGGGGCACGCCGCGTCGACGCCGTCGACCTGGAGATCCGGCCCGGCCAGATCGTGGGCATCGCGGGCGTCGAGGGCAACGGGCAGAGCGAGCTCGTCGCCGCGCTGTCCGGCGCGCTGCCCGCCTCGGCGGGGACGGTGCTGCTCGACGGGGTGGACGTCACCCGCGCCGGGCCGCGCCGCCGTACGGCGCTCGGGCTCGGCGTCGTCCCGGAGGACCGCCACCACGAGGCCGTCGTGACCGGGCTCAGCGTCACCACCAACCTGCTGCTCGGCCGGCTGCACCGCTTCCGCCGGCTCGGCCTGCTCGACCGCCGCGCCATGCGTGCCGCCGCGGCCGACCTGACGGACCGCTTCGACGTGCGCACCGCGAGCCTCGACGCCCCCATGTCCTCGCTGTCCGGGGGCAACCAGCAGAAGGCCGTCCTCGCGCGCGAGCTCAGCCTCGACCCGCTGCGCTGCGTCGTCGCCGCCCAACCCACCCGGGGCCTCGACCTCGGCGCGGTGGACGACGTCGTCGCGCACCTGCGCACGGCGGCAGCACGCGGCGTCGGCGTCCTCGTCGTCTCCAGCGAGCTGTCCGAGCTGCTGGTCCTGTGCGACCGCGTGCACGTCGCCTACCGGGGCGCGCTGCGCGGACCCGTACCCACCGACGCCCCCGACGCCCGGGACCGCGTCGCCCACCTCATGACGGGAGCCCCGGCATGAMTTTLPPAPARENDDTAAPPALALRGVTRVFGAHTALDTVDLEIAAGEVHCVLGENGAGKSTLCNIVFGSLPPTTGEVLLDGERFAPSSPADALARGVAMVHQHFSLVPTLTVQENLLLGRGVRRLRPDRAGLAARLAAIAETLGLQVELGARAGDLSVGARQRVEIVKALLDDPAILLLDEPTAVLGPDEVDSLLATVRRVAAAGTAVVLVTHKLGEVMRVGDRATVLRGGRVAGSGPLAREGSAGTPGAPALTAADLVGLMVGREASSLDPVLAASVGVVPTAGPSHDAGPEAPARSGTPVPAQGPAPATGDPVLTVRGLTVDDADGARRVDAVDLEIRPGQIVGIAGVEGNGQSELVAALSGALPASAGTVLLDGVDVTRAGPRRRTALGLGVVPEDRHHEAVVTGLSVTTNLLLGRLHRFRRLGLLDRRAMRAAAADLTDRFDVRTASLDAPMSSLSGGNQQKAVLARELSLDPLRCVVAAQPTRGLDLGAVDDVVAHLRTAAARGVGVLVVSSELSELLVLCDRVHVAYRGALRGPVPTDAPDARDRVAHLMTGAPAPGPT0021040_83DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021040-nupA|yufO-K23537NANA
AK018_042281059Purine-binding proteinATGCGCACCATCCGCCCCACCGCCGTCGCCCGCCCGCACCGCACCGCCCGCCGCACCGCCGCCGTCGGCGCGCTGCTCGTCGGAGGCCTCGCCCTCACGGCGTGCGGCACCGCCGACGCCGAGACCGACGCCGGCAGCGACGCCACCACCGAGGCGAGCGAGGAGGAGGCGCTCGCCGTCGGCGTGTTCCTGCCCGGCTCGACCTCCGACACCGGGTTCATGGAGTCCGCCTACCTCGGCTACCAGCGCGTCGAGGCGGAGCTCGGCGACCAGGTCGACATGTCGTTCGTCGAGGAGGTCGCCTCCGCCGACTACGAGCAGACTCTCGTGCGGTTCGCCAGCACCTCCGACCTCGTGATCTCCGTGGGCGGGCAGACCGACGCCGACCTGCGCAAGGTCGCCCCGCAGTTCCCCGACGTCACGTTCGTCGAGATCGGTGGGCCCGCCGACGCCGAGCCCCTGGACAACCTTGCCTACTACGACCCGCAGCAGGCCGAGGCCGAGTACCTCTCCGGCGCCGTCGCCGCGCTGTCCTCCGAGTCCGGCAAGGTCGGCTTCATCGGCGGCGTCGAGCTGCCCGCCATCGTCAACGCCTCGGTCGCGTTCGCCAACGGCGCCGAGGCCGCCGTGCCCGGCACCGAGGTCGTCACCCCGCAGTACCTCGGCGACTTCAACGACCCGGCCAAGGCCAAGCAGGCCGCCGCCGCGAACTACGGCGTGGGCGTCGACGTCATCGGGCAGATCGTCAACCTCGGCAAGCAGGGCATCGAGCAGGCCGCCCAGGACGCTGACGCCGCCATGATCGGCGGCCCCATCCCCGGCGAATGCGCCGCGGACAGCCCGTACGTCGGCTACGTCCGCACCGACATCGGCACCGAGGTCGAGTACGCCGTGCAGTCCGTGCTCGACGGCACCTGGGAGGCCGCGCAGGTGCCCTTCGGCCTGACGACCGACCGTGACGGCACCGAGTTCGTGCTGTGCACCGACGACGCCGACACCGTCGCCGCCCTCGAGGAGATCACCGCGTCCGTCGCCGACGGCGAGGTCGCCCCGTACTGAMRTIRPTAVARPHRTARRTAAVGALLVGGLALTACGTADAETDAGSDATTEASEEEALAVGVFLPGSTSDTGFMESAYLGYQRVEAELGDQVDMSFVEEVASADYEQTLVRFASTSDLVISVGGQTDADLRKVAPQFPDVTFVEIGGPADAEPLDNLAYYDPQQAEAEYLSGAVAALSSESGKVGFIGGVELPAIVNASVAFANGAEAAVPGTEVVTPQYLGDFNDPAKAKQAAAANYGVGVDVIGQIVNLGKQGIEQAAQDADAAMIGGPIPGECAADSPYVGYVRTDIGTEVEYAVQSVLDGTWEAAQVPFGLTTDRDGTEFVLCTDDADTVAALEEITASVADGEVAPYPGPT0021055_3012DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021055-bmpA-K07335NANA
AK018_04229729hypothetical proteinGTGACCACGAGCCTTGCCCCCGACGGCGGCGCCCCGCGCTCCCTGCGCGAGACCGCGTACGAGACCCTCAAGGCGCGCATCATCGGGCTGGACCTCGCGCCGGGGCAGCGGCTGGTCGAACGGGACATCGCGACCGAGCTCGGGGTCTCCCGCGTCCCGCTGCGCGAGGCCCTGCACCAGCTCGAGAGCGAGGGGCTGGTCGTGCTGGTCCCGCGCCAGGGCGCCCTGGTGGCGCCGTTCACGCGTGACGACGTGGAGCACCTGTTCGAGGTCCGCGAGAGCGTGGAGGTGCTCGCCTTCCGGCTGGCCGCCCTGCGCCGGTCGCCGGCGGACCTCGCCGCGATGTCGGCCGCGGTCGAGGCCGCCCGGGACGCCCTGGCCCGGCGGGACGACGCCGCCACCGCCGCCGCGAACGCCGGGTTCCACGCCGTCGTCGTCCAGGCGTGCGGCAACCCGCTGCTGCAGTCGATGCTCGCGCCGCTGGACGCCCGGGTGCGGTGGTTGTTCCACCTGACGAAGCGGCGGGACACGCACGAGCAGTGCGAGGAGCACGCGGCGATGCTCACCGCGATCGAGGCGCGGGACGCCGACGCGGTGGCCGAGCTGGCGCACGCGCACGTCACCTCCGGGCGGGAGCCCAGCCTGGCGCTGGCGGAGACGTGGGCCTCCGCGCCGATCGACCCGGTCGCGCTGACGCGGACCCGTAACCGGGCGCGACAGGGTTCCTGAMTTSLAPDGGAPRSLRETAYETLKARIIGLDLAPGQRLVERDIATELGVSRVPLREALHQLESEGLVVLVPRQGALVAPFTRDDVEHLFEVRESVEVLAFRLAALRRSPADLAAMSAAVEAARDALARRDDAATAAANAGFHAVVVQACGNPLLQSMLAPLDARVRWLFHLTKRRDTHEQCEEHAAMLTAIEARDADAVAELAHAHVTSGREPSLALAETWASAPIDPVALTRTRNRARQGSNANANANANA
AK018_042301188uxuACOG1312Mannonate dehydrataseATGGAGCACACCTGGCGCTGGTTCGGCCCGAAGGACCCGATCACGCTGGCCGACGTCCGCCAGACCGGGGCGACCGGCGTCGTCACCGCCCTGCACCACGTGCCCAACGGCGAGGTGTGGAGCGTCGAGGAGATCCGCGCCCGCCAGGCCGAGATCGAGGCCGCCGCGCTGACCTGGTCGGTCGTGGAGTCCATCCCGGTGCACGACGACGTCAAGCGCCGCGCACCCGGGTTCGAGCGCTGGCTGGAGACCTACGCGGCCAGCGTCCGCAACCTCGCGGCCTGCGGCATCGACGTCGTCTGCTACAACTTCATGCCCGTGCTCGACTGGGTGCGCACCGACCTCGGGTACCGCCTGCCGGACGGTTCCCTCGCGCTGCGGTTCGACCAGGACGCCTTCGCCGCGTTCGACCTGTTCCTGCTGCGCCGCCCCGGCGCCGAGGCCGACTACGACGACGCCGAGACCGAGCGCGCCCGCCGGTACCTGGACGCCCTCACCCCCGACCGGGTCGACCGGCTGGTCGCCACGGTCGCCGCCGGGCTGCCGGGGGCGGAGGAGGCGTGGACGCTCGACGGGCTGCGCGCCGAGCTCGAGTCCTACGCCGACGTCGACGAGGCCTCGCTGCGGCGCAGCCTGGGCGACTTCCTCGACGCCGTCGTCCCGGTGGCCGAGGAGGTCGGCGTGCGCCTCGCGATCCACCCGGACGACCCGCCGCGCCCCGTGCTCGGCCTGCCGCGCATCATGTCCACCGCCGACGACGCCCGCTGGATCCTGGACCGGGTCGACAGCCCCGCCAACGGGCTGACGTTCTGCACCGGGTCCTACGGCGTGCGCGCCGAGAACGACGTCGTGGCGATGGCCCGCGAGCTTGCCCCGCGGATCCACTTCGCGCACCTGCGCTCCACCCGCCGCGAGGCCGGCGACCCGCGCACGTTCCACGAGGCCGCCCACCTGGACGGCGACGTCGACATGGTCGGCGTCGTCGAGGCCCTGGTCGCCGAGGAGCTCCGCCGTGAGGCCGAGGGCGGTGCCCGCCTGCCGATGCGGCCGGACCACGGTCATCTGCTGCGGTTCGAGGAGGAGCTCGGGCGTGGGTCGGTGGTGCCCGGCTACTCGCTGGTGGGCCGGCTCAAGGGTCTGGCCGAGCTGCGCGGCGTGGAGCGGGCGGTGCGGGCGCGCGCGGTCTGAMEHTWRWFGPKDPITLADVRQTGATGVVTALHHVPNGEVWSVEEIRARQAEIEAAALTWSVVESIPVHDDVKRRAPGFERWLETYAASVRNLAACGIDVVCYNFMPVLDWVRTDLGYRLPDGSLALRFDQDAFAAFDLFLLRRPGAEADYDDAETERARRYLDALTPDRVDRLVATVAAGLPGAEEAWTLDGLRAELESYADVDEASLRRSLGDFLDAVVPVAEEVGVRLAIHPDDPPRPVLGLPRIMSTADDARWILDRVDSPANGLTFCTGSYGVRAENDVVAMARELAPRIHFAHLRSTRREAGDPRTFHEAAHLDGDVDMVGVVEALVAEELRREAEGGARLPMRPDHGHLLRFEEELGRGSVVPGYSLVGRLKGLAELRGVERAVRARAVPGPT0018270_806DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018270-uxuA-K01686NANA
AK018_042313696hypothetical proteinATGAGCTACGTCATCGCGGACACCGACGGACTGCGCATCGCGGCGCCGGACGTCACGGCCACCGTCGCCGTCGACCCGGGCGAGGACAGCGCCTTGCTGCTCGCCGTGGACGACCTCGTGACCGACCTCGCCCGCGTGTGCCCCGGCGCCGTCGTCGAACGCGCCACCCCGGACGCCGACGCCGACGCCGCTCGCGCCGCGACCGTCGTCGTCGGCACCCTGGACTCCCCCCTGGTAGCCGCGGCCGTCGCCGACGGCACCCTGGACGTCGCCTGCCTGCGCGACGACGACGGCGCCCCCGTGTGGGAGGCGTTCCTCGTCGCCGCCGCCGACGACAGCCTCTACGTCGTCGGCGCCGACCGCCGCGGCGCCGTGTACGGCGTGTACGACCTGTGCGAGCGGGCCGGCGTCTCCCCCTGGCACTGGTTCGCCGACGTGCCCGTCGCCGCCCGCCCCCACCTCACCGTCGCCCGCGACACCCGGCACACCGACCACCCGTCCGTGCAGTACCGCGGCATCTTCCTCAACGACGAGGAGGAGCTCGACGCCTGGGCCGCCCGCCACACCCCCGACGGCACCATCGGCCCGGCCCTGTACACCCGCGTCTTCGAGCTCATCCTGCGTCTCAAGGGCAACTACCTGTGGCCCGCCATGCACGTCAACGCGTTCAACGCCGACCCCACCAACGGCCGCCTGGCCCACGAGCGCGGCGTCGTCATCGGCACCAGCCACTGCGACATGCTGCTGCGCTCCAACGAGCACGAGTGGAAGCCGTGGCTCGCCACCCAGGACGAGCACGTCGAGTACGACTACTCGATCCCCGGGCGCAACCGCGAGCTCCTCGGTGAGTACTGGCGGTCCAGCATCCGGCAGAACCGCGACTACGAGGTCGGCTGGACGTTCGGCATGCGCGGCATCCACGACAGCGGCTTCCACACCCGCGCGATCGACACCGACGAGCACCTGTCCGACGCCGAGAAGCACCGCGCCCGCGTGCGCCTACTCTCCCGGATCATCGCCGACCAGCGCGGACTGCTCGCCGACGGCATCGGCGCCGAGCGCGCCCGCGACGCGCTGCAGTGCTTCGTGCCGTACAAGGAGGTCCTGCCCCTGTACGACGACGGGCTCGAGATCCCCGAGGACGTCACCCTGATCTGGGCGGACGACAGCTTCGGCACCGTGCGCCGCTTCCCCACCGCCGCCGAGCGCGAGCGCCCCGGCGGGCACGGCCTGTACTACCACTCCTCCTACTGGTCCCCCGCGCCGCGCAGCTACCTGTTCCTGTCCTCCATGCCGCTGGCGCACATGAAGAACGAGCTGCGCAAGTCCTGGGACCGCGGCATCCGCACCCTGTGGGTGAACAACGTCGGCTCGCTCAAGCCGCTCGAGCAGGACACCGAGTTCTTCCTGCGGCACGCCTGGGAGGTCGGCAAGGAGACCACCACCGCCGACGTCGAAGCCTGGACCGCGCAGTGGGTCGACCGCGACTTCTCCGGCGGTATCGGCTCCCGTGCCGCCGCGATGCTCACCGAGTGGGCGCAGGTCACGAACGTGCGCAAGGTCGAGCACCTGACCCCCCGGGCGTTCGACCTGACGGCGTTCGGCGACGAGGCCGCCCGCCGGCTCGACCGCCTGCGCGCGCTGGCCGAGGAGGCCACCGACCTGTGGGCCGGGCTGCCGGAGGACGAGCGCGACGCATTCGTGCAGATGGTGCTGCTCAAGGTGCACGCGGCATGGCTGATGTCGGCGCAGTTCGCCCACGGCGACCGCTCCGCGCTGGCCGCCGCCCAGGGCAAGGCCGCGGCCGCCGACCACCACCTGGCCGTGTCCCGCGCCTTCGACAGCGCCAAGAAGGCGCTCATCCGCTCCTACAACACGGTGATCGCCGGCGGGAAGTGGGACGGGCTCATGACGCCCGAGGAGTTCCCGCCCCCGGCGATGCCGCTGCACCCGGTGGCCCGGCCCGCGCTGCGCGTCGCCGGTGACGGCATCGGCGTCACCGTCTGGGGCGGGCCCGGCCTCGACGGCGCGGCCGACGGCGGCACCCCGGACGACGGCGGCACCCCGGACGACGGCGGCACCCCGGCAACGATTCCGGTCCTGCGGTTCGACCCGCACGGCACACCGACGCGCTGGATCGAGGTGTTCCCCACCGGTGCCGCACCCGTCGACGTCACCCTCGAGGCCGACCCGTGGCTCGAGCTCGGCACCACCCGCGTGACCACCGCGACCGAGCAGCGCGTCGCCGTACGGGTGCCCGACGTCGCCGCCGCGGCCGGGCGCACCGGGGCCGTCGTGCTCCGCGGGACCGACGGCGTCGTGCACGCCACCGTCACCGTCCGGGTCGCCGACGCCCCACCCGTGCCCGACGAACCGTGCGCGCTGGAGGCCGACGGGTACGTCACGCTCGCCGCCGACACCCCGCACGCCCGCCACGACGCGACCGGCATCCGGTGGGCCGTCGTCGAACACCTCGGCCGCGGCGGCGGCGGACTGCTGGAGGCCCGCGGCCAGGCGCCCGCCGGCGACCCGGCCACGGTCGCCACGCAGGGCTGCGTCGACTACCGCGTCCACCTCGTCACGCCGGGCGCCCACGTCCTCGAGCTGCACCGCAGCCCCTCGCTGGACTCCGGCGGCCGCATCCGGGTCGGGGTCGCTGTCGACGACGCCCCGCCCGTCGTCGTCGAGACCACCACGACCGACGAGTACCGCGGCGACTGGACCGACGTCGTCGTCGAGGGCGTCGACCGGCTCACCGTGCGGCTGCCGTACCTCGAGGCGGGCGTCCACACGCTGCGGCTGCACGTCGTCGACGAGTGGTTCGCCCTGTCCGCCCTCGTGCTGTGGACCGGGTCGCGGCGCAGCACGGCGCTCCCGCCGCCCGCCAGCACCCGCACCGAGGCGCCCCGCACCCGGCTCGCCGACCCCGACCCCGACGTCGACCTGACCGCGCTGGCAGCGACCGCACGCCGCGTCTACGGCGTCGACCCCGCCGACGTGCCCCTGCTGCCCACCGTGCACGTGCCACGCACCTACTGGGACACCCCCACCACCTTCACCCGCAACCAGACCGTCGAGACCCGCCTCGCGCCGCCCCGCGACCTCACCGGACCCGACGGCACCAAGGACGTCCTCGCCGCACTGCCCACCGGCGTCCCCCGCGAGACCGGCGGCGCCCTCGCCCTCGACGTCGAACGGGCCCTGCTCGACTCCCCCGACGCCTGGACCACGACGAGCCTCGACGCGCCGCACACCGGCTGGACGCACACCCAGGCCGAGACCTGGGGCCGCACCGGCCTGGCCCTGCACGTCCACGCACGCCGCCGCTGGGACGACCTGACCACCGCGCCCGGCCTGCACCTGCGGGTGCGGGCCGACGGCGGCACCTACCGCGCCTGGGCGTTGGTCTGCTTCACCTCGGACGACGACGACGGTCTGGCGCTCGCCGTCGACGGCACCGTCCAGCCGCCGTCGGAACAGTTCTGCGGCGGAAGCATGTTCTCCTTCGGCACCGCCCAGGAATGGGTGTGGCACGAGGTCAGCGACCTGCCCCTCGACGCCGGTGAGCACGTGCTCACCGTGCTCGCCCGCAAGGCCGGCTTCCGCGTCGCGCGGCTGTACCTCACCCGCAGCGAGGCGCGGCCGCCCGTCGACGCCGACTGGGTCCCCTCGCCGTGCGAGGGCCGCACGCCATGAMSYVIADTDGLRIAAPDVTATVAVDPGEDSALLLAVDDLVTDLARVCPGAVVERATPDADADAARAATVVVGTLDSPLVAAAVADGTLDVACLRDDDGAPVWEAFLVAAADDSLYVVGADRRGAVYGVYDLCERAGVSPWHWFADVPVAARPHLTVARDTRHTDHPSVQYRGIFLNDEEELDAWAARHTPDGTIGPALYTRVFELILRLKGNYLWPAMHVNAFNADPTNGRLAHERGVVIGTSHCDMLLRSNEHEWKPWLATQDEHVEYDYSIPGRNRELLGEYWRSSIRQNRDYEVGWTFGMRGIHDSGFHTRAIDTDEHLSDAEKHRARVRLLSRIIADQRGLLADGIGAERARDALQCFVPYKEVLPLYDDGLEIPEDVTLIWADDSFGTVRRFPTAAERERPGGHGLYYHSSYWSPAPRSYLFLSSMPLAHMKNELRKSWDRGIRTLWVNNVGSLKPLEQDTEFFLRHAWEVGKETTTADVEAWTAQWVDRDFSGGIGSRAAAMLTEWAQVTNVRKVEHLTPRAFDLTAFGDEAARRLDRLRALAEEATDLWAGLPEDERDAFVQMVLLKVHAAWLMSAQFAHGDRSALAAAQGKAAAADHHLAVSRAFDSAKKALIRSYNTVIAGGKWDGLMTPEEFPPPAMPLHPVARPALRVAGDGIGVTVWGGPGLDGAADGGTPDDGGTPDDGGTPATIPVLRFDPHGTPTRWIEVFPTGAAPVDVTLEADPWLELGTTRVTTATEQRVAVRVPDVAAAAGRTGAVVLRGTDGVVHATVTVRVADAPPVPDEPCALEADGYVTLAADTPHARHDATGIRWAVVEHLGRGGGGLLEARGQAPAGDPATVATQGCVDYRVHLVTPGAHVLELHRSPSLDSGGRIRVGVAVDDAPPVVVETTTTDEYRGDWTDVVVEGVDRLTVRLPYLEAGVHTLRLHVVDEWFALSALVLWTGSRRSTALPPPASTRTEAPRTRLADPDPDVDLTALAATARRVYGVDPADVPLLPTVHVPRTYWDTPTTFTRNQTVETRLAPPRDLTGPDGTKDVLAALPTGVPRETGGALALDVERALLDSPDAWTTTSLDAPHTGWTHTQAETWGRTGLALHVHARRRWDDLTTAPGLHLRVRADGGTYRAWALVCFTSDDDDGLALAVDGTVQPPSEQFCGGSMFSFGTAQEWVWHEVSDLPLDAGEHVLTVLARKAGFRVARLYLTRSEARPPVDADWVPSPCEGRTPNANANANANA
AK018_042321020cytR_3COG1609HTH-type transcriptional repressor CytRATGAGTCGCCCCACGCTCGCCGACGTCGCCGCCCGCGCCGGCGTCGCGATCTCCACCGCGTCGCGCGCGCTGCACCGGCCGGGCCGGATCCGTGCCGAGACCGCCGCCCGCGTCCGGGCCGCCGCCGACGAGCTCGGCTACGTGCCCAGCGCGGCCGCCCGCCAGCTGCACCGGTCCAGCGCCGGAGCCGTGGCGCTCGTCGTACCCGACCTGACCAACCCGTTCTTCATGGCCCTGGTCCGCGGGTCCACCCGTCTGCTCCGCGCCCACGACGTCGTGCAGGTGGTCGCCGACGTCGAGGAGGAGCCCGAGTCCGAGGAGCAGACCCTCGCGGCGCTCGCCGGGCGGGTCGACGGCATGCTGCTCGCCGCCTCCCGCCTCGACGCCGCGACCCTGTCCACCTGGTCGCGGCGGGTGCCGCTCGTCGCCGTCAACCACGACGCCGGCGACCCGGAGGTCCCGACCGTCACCATCGGCACGCAGGGCGTCGAGGAAGCCGTCGAGCACCTCGCGGGGCTCGGTCACCGGCACCTCGCCTACGCCTCCGGACCGGCGACGTCGTGGGCCGACGCCCGCCGGCGCACCGCCGTCGTCGAGACCTGCGCCCGGCTCGGGGTGCGACTGACCGACCTGGGGCACCACCCGCCCCGCCGTGACGCCGGAGCCGCGGCCGCCGACGCGGTGCTGCGCTCCGGCGCCACCGCCGTGCTGACCTTCAACGACCTGCAGGCCTTCGGCGTGCTCGACCGGCTCGCGTCCCGCGGCGTACGGGTCCCCGACGACGTCAGCGTCGTGGGGCACGACGACATCTTCGGCGCCGACCTGACCAGCCCCGCCCTGACGACCGTCACCGTGCCCGCCGAGGAGCTCGGCGCCCGGGCCGCGGCCCGGCTCCTGGGCGCGGTCGGGCTGGCCACCGCGGCGCCGTCCGCTCCCCCGGCGGCGACCGGTCCGGCGTCGACCGGCCCCGACCGGCTCGCCACCCACCTCACCGCGCGCGGGTCGACGGCGCCGGTGTGAMSRPTLADVAARAGVAISTASRALHRPGRIRAETAARVRAAADELGYVPSAAARQLHRSSAGAVALVVPDLTNPFFMALVRGSTRLLRAHDVVQVVADVEEEPESEEQTLAALAGRVDGMLLAASRLDAATLSTWSRRVPLVAVNHDAGDPEVPTVTIGTQGVEEAVEHLAGLGHRHLAYASGPATSWADARRRTAVVETCARLGVRLTDLGHHPPRRDAGAAAADAVLRSGATAVLTFNDLQAFGVLDRLASRGVRVPDDVSVVGHDDIFGADLTSPALTTVTVPAEELGARAAARLLGAVGLATAAPSAPPAATGPASTGPDRLATHLTARGSTAPVPGPT0017992_7556DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_042331293hypothetical proteinGTGGACGCGGAGACATGGCGGAACATCGCCCTGGTGCTGGGATTCGTGCTGCTCGGGGGTGTGTTCGCCGGGACCGAGTTCGCCCTGGTGTCGCTCCGTGAGGGGCAGATCGACGAGATCGAGCGGCGCGGGTCCCGCGGACGCCGCGTCGCCCGGGTGGCCCGCGACCCCAACCGGTTCCTCGCCGCGGTGCAGATCGGCGTCACCGTGGCGGGCTTCTTCTCGGCGGCGTACGGGGCCTCGACGCTCGCGCCCGACGTCGCACCGCTGCTCGAGGGTCTCGGGCTCGCCGAGGCGACCGCGCAGACGGTCGCGCTCGTCGCCCTCACGCTGATCATCGCGTACGCCTCGCTCGTGCTCGGCGAGCTGGTGCCCAAGCGCATCGCCCTGCAGCGTTCGGCGCAGGTCGCGCTCGTCGTCGGACCGCCGCTGGACCGTTTCTCGTGGCTCATGCGACCGGTGATCTGGCTTCTGTCGAAGTCGACCGACGCCGTCGTCCGGCTCGTCGGCGGCGACCCGCAGGCCCGCGGCGAGGAGATGTCCGACTCCGAGCTGCGCGACCTCGTCAGCCGGCACCCGAGCCTGCCGCCCGAGGAGCGCACCATCCTCGCCGACGTCCTCGCCGCCGGGGACCGCACCCTCGCCGAGGTCATGCGCCCGCGCGGCGACGTGACGTTCCTGTCCGCGGCGCTCACGGTCGACGAGGCCGTCGACGAGGTCCGCCGCCTGCCCTACTCGCGCTACCCGGTGCTGGGCCAGGACTTCGACGACGTCCTCGGGTTCGTGCACCTGCGCGACCTGGTGCGGGCCCAGGGGCACGGCGCACGACGGCGGACCGTGCGGGAGATCGCCCGGCCCGTCCTTGAGCTGCCCGGCACCAACCGGGTGCTGCCCTCGATGTCCGCGATGCGGCGCGACGGCACCCACCTGGCCGTCGTCCGCGACGAGTACGGCGGCACCGACGGCATCGCGACCCTGGAGGACCTCGTCGAGGAGCTCGTGGGCGACATCCGCGACGAGCACGACCCCCGCCGCCGCGAGATGCCCGACGACGCCGTCGACGCCGGCCTCACGCTCGAGGACTTCGCGCGGGTCACCGGCGTGGAGCTCGCCGAGGGCCCGTACGAGACCGCCGCGGGGTACGTGCTCGCCGAGCTCGGGCGGCTGGCGGAGGTCGGGGACACCGTGGCCGCCGGCGACGCCACCCTGACCGTGACTGCCGTGGAGAAGCAGCGGATCCGGGCCGTGCGCGTCGACCGCACCGCCGAGGGAGGCGACCCTCCCGCGACGTAGMDAETWRNIALVLGFVLLGGVFAGTEFALVSLREGQIDEIERRGSRGRRVARVARDPNRFLAAVQIGVTVAGFFSAAYGASTLAPDVAPLLEGLGLAEATAQTVALVALTLIIAYASLVLGELVPKRIALQRSAQVALVVGPPLDRFSWLMRPVIWLLSKSTDAVVRLVGGDPQARGEEMSDSELRDLVSRHPSLPPEERTILADVLAAGDRTLAEVMRPRGDVTFLSAALTVDEAVDEVRRLPYSRYPVLGQDFDDVLGFVHLRDLVRAQGHGARRRTVREIARPVLELPGTNRVLPSMSAMRRDGTHLAVVRDEYGGTDGIATLEDLVEELVGDIRDEHDPRRREMPDDAVDAGLTLEDFARVTGVELAEGPYETAAGYVLAELGRLAEVGDTVAAGDATLTVTAVEKQRIRAVRVDRTAEGGDPPATNANANANANA
AK018_042341482hypothetical proteinATGTCGGTCGAACCGTCGTCGGACACCCCGGACCTGATCACCCTGGGCCGCCGCATCCGGCACGCCCGGACCGCCCGCGGCCTCACGCTCGGCGCCCTCGGGGAGCGGGTCGAGGCCGCGCCGAGCCTGCTGTCGCTCATCGAGAACGGGCGCCGGGAGCCCCGGCTGTCGCTGCTGCGAGCCCTCGCCGCGGCCCTCGACGTCCCGCTGGCCGACCTCCTCGCCGCGGAACCGCCGTCGCGCCGTGCCGAGCTGGAGATCGCCCTCGAACGTGCCCAGCGCGGCCCGCTCTTCGGTGCGCTCGGGCTGCCGGCGATCAAGCCGAGCCAGAAGCTTCCCGTGCCGGTCCTCGAACAGCTCGTCGGTCTGCACGGCGAGCTCGCGCGGCGCGAGGAGGAGGCCATCGCCACACCCGAGGAGGCGCGCCGCGCCAACACCGTGCTGCGTCGCGAACGCCAGGAACGCGACAACCACATGCCCGACATCGAGGTGCTCGGCGAGGAGATGGCGCGGCGGGCCGGCTACACCGGCGGCGCGCTGACCCACCGCGCGGTGGCGCGGATGGCCCGCGACCTCGGGCTCACGATCCTGCACGTCGGCGACCTGCCGCGATCGGCGCGCTCGGTCACCGACTGGGAGAACGGCCGCATCTACCTGCCGCCCGCCTCGATCCCCGGCGGGCACGGGCTGCGGTCCCTGGCCCTGCAGGCCATCGCCCACCGCGTGCTCGGCCACGAACGGCCCCGCAGCTACGCGGAGTTCCTGCGCCAGCGCGTCGAGATCACCTACTTCGCGGCCGCCTGCCTCATGCCGCAGACCGCCGCCGTGGAGTTCCTCACCGAGCGCAAGCTGGTCAAGGACCTCGCCGTGGAGGACTTCCGCGACTCGTTCGGCGTCACGCACGAGGCCGCCGCGATGCGCCTGACCAACCTGGCCACCGTGCACCTGGGGATCCCGCTGCACTTCCTGCGGGTCGGCGACGACGGCGCCCTCTTCCGCGGGTACGCCAACGACGGGCTGCCGTTGCCGCAGGACGTCACGGGCGCCATCGAGGGGCAGCCCGTGTGCCGGTGGTGGGCCGCGCGGGAGGCGTTCACCCGTCGGGACCGCGCGACCGAGTCGTACCAGTACACCGACACCCCGGCCGGGACGTTCTGGGACTCGATGCAGACGGGCACGGCGTCCGACGGGCGGGAGTTCTCGATCACCGTGGGCGTGCCGTACGCGCACGCCAAGTGGTTCCGGGGGCGTGACACCCAGGTGCGGCACACCTCGACCTGCCCGGACCCGGCGTGCTGCCAGCGGCCGCCGGCCGACCTGACCGCCCGGTGGGAGGGGCGCTCCTGGCCGAGCGCACGCATGCACCAGCAGGTGCTCGCGGCCCTGCCACGCGGCGTGTTCCCCGGCGTGGACGACACGGACGTCTACGAGTTCCTCGAGCGCCACGCCCCGGCGCCCGACGCTCCACCACCCGCGAGGTAGMSVEPSSDTPDLITLGRRIRHARTARGLTLGALGERVEAAPSLLSLIENGRREPRLSLLRALAAALDVPLADLLAAEPPSRRAELEIALERAQRGPLFGALGLPAIKPSQKLPVPVLEQLVGLHGELARREEEAIATPEEARRANTVLRRERQERDNHMPDIEVLGEEMARRAGYTGGALTHRAVARMARDLGLTILHVGDLPRSARSVTDWENGRIYLPPASIPGGHGLRSLALQAIAHRVLGHERPRSYAEFLRQRVEITYFAAACLMPQTAAVEFLTERKLVKDLAVEDFRDSFGVTHEAAAMRLTNLATVHLGIPLHFLRVGDDGALFRGYANDGLPLPQDVTGAIEGQPVCRWWAAREAFTRRDRATESYQYTDTPAGTFWDSMQTGTASDGREFSITVGVPYAHAKWFRGRDTQVRHTSTCPDPACCQRPPADLTARWEGRSWPSARMHQQVLAALPRGVFPGVDDTDVYEFLERHAPAPDAPPPARNANANANANA
AK018_042351917pckG_1COG1274Phosphoenolpyruvate carboxykinase [GTP]ATGACGTTCACCGCGAACCCCCGACGCACCCGGCTGGCGCTGGCCGAGCTGGCGCCGGACGTCTTCACCCCCGCCCCGACCGCCGCCGGCCCGGCCGCGCACCGTCCGCCGTCGTCCCACGACGCCCGCGCCTGGGTGGCCGAGATCGCCGAGCTCACCCAGCCCGACGAGATCGTGTGGTGCGACGGCTCCGCCGCGGAGAAGCAGCGCCTCATCGACGAGATGGTCGCCGCCGGCACCCTGCTCAGGCTCGCCGACGAGAAGCGGCCGAACTCCTACCTGGCCCGCTCGGACCCGTCGGACGTCGCCCGCGTCGAGTCGCGCACGTTCATCTGCTCCGAGCGCGAGGACGACGCCGGCCCCACCAACAACTGGCGCGACCCCGCCGCGATGCGGGTCGAGCTCGACGAGGTCTTCAGCGGGTCGATGCGGGGCCGCACCCTGTACGTGGTGCCGTTCTCCATGGGCCCGGTGGGCGGCCCCATCTCCCAGGTCGGCATCGAGATCACCGACTCGCCGTACGTCGTGGTGTCCATGCACGTGATGACCCGCGTCGACTCTCGCGTCATGGACCTGATCGACGCCGGGCAGCAGTGGGTGCCCGCGGTGCACTCCGTGGGCGCGCCGCTCGTCGACGGCGACGGCACCCGCCACGACGACGTCGCCTGGCCCTGCAACGAGGACAAGTACATAGTCCACTACCCCGAGACCCGCGAGATCTGGTCCTACGGCTCCGGCTACGGCGGCAACGCGCTGCTCGGCAAGAAGTGCTTCGCGCTGCGCATCGCCTCGACCATGGGCCGCGACGAGGGCTGGCTGGCCGAGCACATGCTGCTCATCCGGGTGACGTCCCCCGAGCAGCGGCAGTACCACCTCGCCGCCGCCTTCCCCAGCGCGTGCGGCAAGACGAACCTCGCGATGCTCCAGCCCACCGTGCCCGGCTGGAAGGTCGAGACGATCGGCGACGACATCGTGTGGATGCGCCCCGGGCCGGACGGGTCGCTGCGCGCGATCAACCCCGAGGCGGGGTTCTTCGGCGTCGCGCCGGGGACGGGCGTCGAGACCAACCCGACGGCCATCGAGACCCTGACCCACGACGTCATCTTCACCAACGTCGCCCTGACCGACGACGGCGACGTCTGGTGGGAGGGCCTGACCCCCGAGCCCCCGGCGCACCTGATCGACTGGCAGGGTCAGGACTGGACGCCCGACGCCGGCCGTCCGGCCGCGCACCCCAACTCACGGTTCACCGTCGCGGCGGAGCAGTGCCCCACCATCGCCGACGTCTGGGAGGACCCGGCCGGGGTGCCGGTGGACGCGATCGTGTTCGGCGGGCGGCGCGCCTCGAACGTGCCGCTGGTCGCGCAGGCGACGAGCTGGGACCACGGCGTCTTCCTCGGGGCCACGATCAGCTCCGAGCGCACCGCCGCGGCGGAGGGCGCCGTCGGCGAGCTGCGTCGTGACCCGTTCGCGATGCTGCCGTTCTGCGGCTACAACATGGCTGACCACTGGAGTCACTGGCTCGAGGTGGGCGCCGGGCTCTCCTCGGAGCGCCGGCCCAAGATCTTCGGGGTGAACTGGTTCCGCAAGGACCCCGACGGCCGGTTCATCTGGCCCGGGTTCGGCGAGAACTCCCGTGTCGTGAAGTGGATCGCGGAGCAGATCGACCGCTCACGCGGGGTGCGGACCGACAGCGGTGCCGTCACCTCCCCCGTCGGGCTGCTCCCCGCGCCGGGTGCCCTCGACCTGGACGGCCTGGACGTCTCCGAGGCCGACATGTCCGCCCTGTTCGACGTCCCGCGCGAGGCCTGGCTCGCCGAGACCGACCTGACCGCGGAGTTCTTCGCCCGGTTCGGCGACCGGCTGCCCGCGGCGATGACCGCCCAGCTCGAGCGCCTGCGCGGCCGCCTCGCCTGAMTFTANPRRTRLALAELAPDVFTPAPTAAGPAAHRPPSSHDARAWVAEIAELTQPDEIVWCDGSAAEKQRLIDEMVAAGTLLRLADEKRPNSYLARSDPSDVARVESRTFICSEREDDAGPTNNWRDPAAMRVELDEVFSGSMRGRTLYVVPFSMGPVGGPISQVGIEITDSPYVVVSMHVMTRVDSRVMDLIDAGQQWVPAVHSVGAPLVDGDGTRHDDVAWPCNEDKYIVHYPETREIWSYGSGYGGNALLGKKCFALRIASTMGRDEGWLAEHMLLIRVTSPEQRQYHLAAAFPSACGKTNLAMLQPTVPGWKVETIGDDIVWMRPGPDGSLRAINPEAGFFGVAPGTGVETNPTAIETLTHDVIFTNVALTDDGDVWWEGLTPEPPAHLIDWQGQDWTPDAGRPAAHPNSRFTVAAEQCPTIADVWEDPAGVPVDAIVFGGRRASNVPLVAQATSWDHGVFLGATISSERTAAAEGAVGELRRDPFAMLPFCGYNMADHWSHWLEVGAGLSSERRPKIFGVNWFRKDPDGRFIWPGFGENSRVVKWIAEQIDRSRGVRTDSGAVTSPVGLLPAPGALDLDGLDVSEADMSALFDVPREAWLAETDLTAEFFARFGDRLPAAMTAQLERLRGRLAPGPT0019595_161DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019595-pckA-K01596NANA
AK018_042361113trpS2COG0180Tryptophan--tRNA ligase 2ATGACCGTCGTCCCCGCCACCGCACCGACGCCCGCTGCCGGCGCCGGGACCGCCTCGGTCCGTGCCGCGCGCGAACGCAGCGCCGAGATCGAGGCGCAGATCGACCGGGACCCGTCCCGGTTCCGCGTCCTGACCGGCGACCGCCCCACCGGCGCCCTGCACCTCGGCCACCACCTGGCCACGCTCGCCAACCGGGTCCGGCTGCAGCAGGCCGGTCTCGACGTCGTCCTCGTGATCGCCGACTACCAGGTCATCACCGACCGCGACGAGACCGGCGACCTGCCCGCCGTCGTGCGCGAGGTGGTGCTCGACTACCTCGCGGCCGGCATCGACCCCGACCGCACCACGATCTTCACCCACTCCGCCGTCCCCGCCCTGCACCAGCTGATATTGCCGTTCCTGTCCCTGGTGACCGTCGCCGAGCTGGAACGCAACCCGACCGTCAAGGCCGAGGCCACCGACGCCGTCGGACGGCAGGGACGCGGCATGTCCGGGCTGCTGCTGACCTACCCCGTCCACCAGGCCGCCGACATCCTCGCGATGCACGGCAACCTCGTGCCCGTCGGCGCCGACCAGCTCCCGCACCTGGAGACCACCCGCGCCGTGGCGCGGCGCTTCAACCAGCGGTTCACCGCCGCCCAGCCGTACTTCGCCGAACCGGACGCGCTGCTCACGGACTCGCTGACCGTGCTGGGCCACGACGGCGCCAAGATGGCCAAGTCCCGCGGCAACGCGCTCGAGCTGCGGGCGTCCGAGGACGACACGGCGGCGTTCTTCCGGCGGGCGCGCACCGACTCCGCACGGCACATCACCTACGAGCCGGAGCAGCGGCCCGAGGTGGCCAACCTGCTGCGGATCGGTGCCCACTTCGCGGGGACGACGCCGGAAGCCCTGGCCGACGCGATCGGTGCGGCGGGTGCGGGGCGGCTCAAGGACGTCGTCACCGAGGCGGTCGTGGAGGGGCTCGGGCCGCTGCGGGCCCGACGGCGGGCGCTCGCGGCCGACGGTGCCGCCGTCGTCGGCGAGGTGCTGGCGCGGGGCAACGCGCGGGCGAACGTGCTGGCGGCCGGGACCCTGACCGACGTCCGCGAGCTCATGGGGATGACCTACTGAMTVVPATAPTPAAGAGTASVRAARERSAEIEAQIDRDPSRFRVLTGDRPTGALHLGHHLATLANRVRLQQAGLDVVLVIADYQVITDRDETGDLPAVVREVVLDYLAAGIDPDRTTIFTHSAVPALHQLILPFLSLVTVAELERNPTVKAEATDAVGRQGRGMSGLLLTYPVHQAADILAMHGNLVPVGADQLPHLETTRAVARRFNQRFTAAQPYFAEPDALLTDSLTVLGHDGAKMAKSRGNALELRASEDDTAAFFRRARTDSARHITYEPEQRPEVANLLRIGAHFAGTTPEALADAIGAAGAGRLKDVVTEAVVEGLGPLRARRRALAADGAAVVGEVLARGNARANVLAAGTLTDVRELMGMTYPGPT0007120_1886DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007120-trpS-K01867NANA
AK018_042371254nhaP_1K(+)/H(+) antiporter NhaPATGAGTATCGAGGTGCTCGCCCTGTTCGCCGTCCTGGTGCTCGCGTGGGCGCTCGTCTCGGGTGCGTTGCAGCGCCGGGAGGTGACGGGGCCCCTGGTGTTCGTCGCCGCCGGCGCGCTGCTGTCGAACGACGCCTGGGGGCCGTTCCCGGTGGACGTCGAGACGGCGTCGGTGCACACGCTCGCCGAGATCGCGCTCGCCCTGGTGCTGTTCGGCGACGCGGTGCGCATCGATCTGCGCAACCTGCGCCGCCACGCCGGCATCCCGACCCGTCTGCTGACGATCGGCCTGCCGCTGACCCTGGCGCTCGGCCTGGGGACCGCGCTGCTGGTGCTGACCGACCTGCCCTGGGAGCTCGCCCTGCTCGTCGCCGCGGCGCTGGCCCCGACGGACGCGGCGCTCAGCGCCCAGGTGGTCGGCGACCGCCGGGTGCCCGGGCGGCTGCGCGTCGCGCTGAACGTCGAGTCCGGACTCAACGACGGCATCGCCACCCCGGTCGTCACGCTCGCCGTCGCCCTGGCGGCCACGTCGCTCGGGGTCGGGTCGCCCGAGCGTTCCGGACCGGGCGGCGCCGTGCTCGAACTCGGTCTCGGCGTGCTGATCGGCGGCGGGCTCGGGCTGCTCGGAGCCTGGGGCGTCACGGCGTCCGCCCGGCGCGGCTGGGCCGAGGCCGGGGCTCCGCCGCTCGGGACGCTCGCGACCGGGGTCGGCGCGTTCGCGCTCGCGGTCGCCGTGGAGAGCAACGGGTTCGTGGCGGCGTTCGTCGGCGGGCTGGCGTTCGGTCTGGTCGTCGACCGGCAGCGCTCCGACGAGCAAGAACTCACCGAGCTCACCGAGCTGGGGGGCGAGCTCATGACGTTCGTGGTGTGGTTCCTGTTCGGTGCCGCCCTGGTGCCGCTGGCCCTGGAGCACCTGAGCCTGGCGACCGTGGGCTACGCCGTCCTGAGCCTCACGGTGCTGCGGATGCTGCCCGTCGCGCTGGCTCTGGTGGGCACGGGGTTGCCGCGCAGGGACGTGCTGTTCCTCGGCTGGTTCGGGCCGCGCGGCCTGGCCTCGGTGGTCTTCGCGCTGCTCGCGCTCGACACGCTCGGCGAGTCCGAACCGGTCACGTCCGCGGTGGCCACCATCGCTACGGCCGTCATGCTCTCGGTGCTGCTGCACGGGGTCACCGCGGGGCCGGCGGCCGCGCGGTACGGGGTACGGGACGACACCCCGGTGCGCGGCCGGGCCAGCCGACTCGGTCGGGCACGCTAGMSIEVLALFAVLVLAWALVSGALQRREVTGPLVFVAAGALLSNDAWGPFPVDVETASVHTLAEIALALVLFGDAVRIDLRNLRRHAGIPTRLLTIGLPLTLALGLGTALLVLTDLPWELALLVAAALAPTDAALSAQVVGDRRVPGRLRVALNVESGLNDGIATPVVTLAVALAATSLGVGSPERSGPGGAVLELGLGVLIGGGLGLLGAWGVTASARRGWAEAGAPPLGTLATGVGAFALAVAVESNGFVAAFVGGLAFGLVVDRQRSDEQELTELTELGGELMTFVVWFLFGAALVPLALEHLSLATVGYAVLSLTVLRMLPVALALVGTGLPRRDVLFLGWFGPRGLASVVFALLALDTLGESEPVTSAVATIATAVMLSVLLHGVTAGPAAARYGVRDDTPVRGRASRLGRARPGPT0013856_978DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013856-NHA1_like|SOD2_like-K24160NANA
AK018_042381056COG3938ProteinATGCACCGTGAGCGCACGCTGCACCTCATCGACACCCAGTCCGGGGGCGACGTCTCGCGGATCGTGACCGCCGGCGTCGAGCCGCTGCCCGGAGCGTCGGTGCTGGAGAAGGCCCGCTACCTGCAGCACGAGGGCGACGGGCTGCGGCGGCTGCTGCTGTCCGAGCCGTACGGCGACCCGGCGATGTCGGTGGACCTCATCGTGGAGCCCAGCCACCCCGAGGCGCAGGCCGGCTACATTATCATGGAGGCGATGGGGTACCCCCTGTACTCCGGGTCCAACACGATCTGCACGGCGACGGCGCTGCTGTCCAGCGGCATGATCCCCATGGTCGAGGGACTGCAGCAGGTCGTCCTGGAGTCCCCGGCCGGCCTGGCCCGCGTCTCGGCACGCAACGAGGGAGGTCGGGTCCGCTCCATCACCACCCAGGGCGAACCCGCCTACGTGGCCGACGAGGGGCTGTCCGTCGACGTGCCGCACTACGGCCGCGTCCAGTTCGACCTGGTGTGGTCCGGGGCGTACTACGCCGTCGTCGACGCGAGCCGGTACGGGTTCACCATCGACGCCGAGAGCCAGATCGCGCTGACCGCGTTCGGCGACGCGTTCGTGCGGGCCGCGCGGCCCGGGCTGCGCGAGGAGCACCCGGACCTCGGGCACGTGGGTCCGCTACCGTTCGCCCACTTCACGGGCCCGGTCCGGGAGATCGGTGCGGGACGCTACGAGTCACCGTCGGCCACCTACGTCCATCCGGGCGTGCTGTGCCGCAGCCCCACGGGGACCGGGACCTCGGCCCGCCTGGCGCTGATGTCCCGGCGCGGGCAGATCGCCGAGGGCGAGTCGCTCGAGACGATCTCCCCGCGCGGCAACCGGTTCGTCGGGACGGTGCTGGAGGACACCCAGGTGGGGGAGTTCGGGGCGCTGCACTCGACCATCACCGGCGGCGCACGGCTGCTCGCGCACTCGCAGATCACCGTCGACCTGGACGACCCGCTCGTGGACGCCTCCGACCTGGAGCACGTGCTCTCCGTGCAGGCCGACACCGCGCCCGAGGCGTGAMHRERTLHLIDTQSGGDVSRIVTAGVEPLPGASVLEKARYLQHEGDGLRRLLLSEPYGDPAMSVDLIVEPSHPEAQAGYIIMEAMGYPLYSGSNTICTATALLSSGMIPMVEGLQQVVLESPAGLARVSARNEGGRVRSITTQGEPAYVADEGLSVDVPHYGRVQFDLVWSGAYYAVVDASRYGFTIDAESQIALTAFGDAFVRAARPGLREEHPDLGHVGPLPFAHFTGPVREIGAGRYESPSATYVHPGVLCRSPTGTGTSARLALMSRRGQIAEGESLETISPRGNRFVGTVLEDTQVGEFGALHSTITGGARLLAHSQITVDLDDPLVDASDLEHVLSVQADTAPEANANANANANA
AK018_042391110ccr_3Crotonyl-CoA reductaseATGGAGTCGATCCCAGCCCAGATGAAGGCGGTCCAGCTCGTCGGCCACGGCGGGCTCGACCAGCTCGAGTACCGCGAGGACGTACCCACCCCGAGCCCCGGCCCCGGCGAGGTCCTGCTGGAGGTCCACGCCTGCGGCATGAACAACACCGACGTGTGGGTCCGTGAGGGGGCCTACGGCACCGAGACCGACGCCGCCGAGGTGTCCACCTGGCGGCGAGGCCGTTCCACGCTGGAGTTCCCCCGGATCCAGGGCACCGACTCGGTCGGGGTGATCGTCGCCGCCGGCGAGGGCGTGCCCGCCGGACGCGTCGGTGAACGCGTCATGGTGGACTTCTCGATCTACAACCGCCCCGAGGGCGACGACTCGTTGGCCGACATCGACTACATCGGCCACGGGCGCGACGGCGGGTACGCCGAGTACCAGGTGGTGCCGGCCGAGAACGCCTACGAGATCACCAGCGACATCTCCGACGCCGAGCTCGCGACGTTCTGCTGCGCCTATCTCACCGCGGAGCAGATGCTCGACCGGGCCCGGCTCGCCGCCGGCGAGCGGGTGCTCGTCACCGGGGCCTCCGGCGGCGTCGGGTCGGCGATCGTCCAGCTCGCCCGGGTCCGCGGTGCGATCCCGTACGCCGTCACGAGCGCCGGCAAGGAGGACGCGCTGCGCGAGATCGGCGCCGAGGACGTCATCCTGCGCGACGCCGACGACCTGGTCGCCGAGACCGAGCGGGTCGTGGGCGCGCCCGTCGACGTCGTCGCCGACCTCGTGGCCGGGCCGATGTTCAACGACCTGCTGCGCATCCTGCGCCCCGAGGGCCGGTACACCACGGCCGGCGCGATCGGCGGCCCCGTCGTGGACCTCGACCTGCGCACCATGTACCTCAAGCAGCTCGAGCTGCACGGATCCTCGCAGGGCACCCGCACGGCGTTCCGCCGCCTGGTCCGCTACATCGAGAACGGCGACATCAAGCCGCTCCTGGACCGGACGTTCCCGCTGTCCGCCTTCCACGACGCGCAGCGCACCTTCATGGCCAAGACCTACATCGGCAAGCTGGTCGTCGTCCCCGACCGGCACTGGGACACCGTGGGATCGCCCCATGCACCGTGAMESIPAQMKAVQLVGHGGLDQLEYREDVPTPSPGPGEVLLEVHACGMNNTDVWVREGAYGTETDAAEVSTWRRGRSTLEFPRIQGTDSVGVIVAAGEGVPAGRVGERVMVDFSIYNRPEGDDSLADIDYIGHGRDGGYAEYQVVPAENAYEITSDISDAELATFCCAYLTAEQMLDRARLAAGERVLVTGASGGVGSAIVQLARVRGAIPYAVTSAGKEDALREIGAEDVILRDADDLVAETERVVGAPVDVVADLVAGPMFNDLLRILRPEGRYTTAGAIGGPVVDLDLRTMYLKQLELHGSSQGTRTAFRRLVRYIENGDIKPLLDRTFPLSAFHDAQRTFMAKTYIGKLVVVPDRHWDTVGSPHAPPGPT0006375_793DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
AK018_042401077hypothetical proteinATGCTCGAGCGGCCGTTGCTCGTCGACGAGTGGCAGGCCTGGCCGGAGAGCTGGAACCTGGTGCGGCACGCCGTCGACGACGGAGCGCCATCGGCGTCGTTCCTCCTGACGGGCAGCTCACCGCCCCAGGGTGCCCGGATCCACTCCGGAGCAGGGCGAATCGTCGGACTGCGGATGCGCCCGATGAGTCTTGCTGAGCGTGGTGTCTCGGCGTCGACGGTCAGCCTCGCCCGCTTGCTCGACGGGTCGGCGGAGATCGGCGGCCGCACGGACGTGGTGCTCGAGGACTACGTCGAGGAGATCGTGGCATCAGGGTTTCCCGCGATTCGGGGTCTCCCTGCACGCTTGCGTCGCGCCGAGCTCGACTCCTACCTCGACAACGTCGTGCAGCGGGAGATGATCGACCAGGGCTACCCGGTGCGCCGGCCGGACACGCTGCGCCGGTGGCTCGCGGCATACGCGGCGGCCTCGTCGGCCACCGTGAGCTACGAGAAGATCCTTCGGGCCGCCGTCGGCGGCGAGGGTCCACAGCCGGCGAAGACGACAACGGTGCGGTATCGGGACGCCCTGACCGACTTGTGGTTGCTCGACCCGGTCGAGGCGTGGATGCCGTCGAGGAACCACCTCGAGAGGCTCGGACGTGCCGTGAAGCATCAGCTGGCTGATCCGGCGCTCGCTGCGCGCCTGCTCGGCGTCGGCGCTGATGCTCTGCTCGGACGCCGAGACGCGCCCCGTCCTCTGCGTGACCGCACGCTGCTGGGGGCGCTCTTCGAGTCGCTCGTCAGCCTCGACGTCAAGGTGTATGCGGACAACGCCGAGGGCAGGGTTCGGCACCTACGGGACGCCAAGGGGCGTCACGAGGTCGACCTCGTCGTCGAGCGCGACGACGGGCGCGTCCTCGCCGCCGAGGTCAAGCTCGCCGCGACCGTCCGCGACGAGCACGTGAAGCACCTGCACTGGCTCCGGGATCGGATCGGCGACGATCTCGTCGACGCGGTCGTGATCACGACCGGGAATGAGGCGTATCGGCGGGCCGACGGCATCGCCGTCGTCCCCGCGGCTCTGCTCGGGCCGTGAMLERPLLVDEWQAWPESWNLVRHAVDDGAPSASFLLTGSSPPQGARIHSGAGRIVGLRMRPMSLAERGVSASTVSLARLLDGSAEIGGRTDVVLEDYVEEIVASGFPAIRGLPARLRRAELDSYLDNVVQREMIDQGYPVRRPDTLRRWLAAYAAASSATVSYEKILRAAVGGEGPQPAKTTTVRYRDALTDLWLLDPVEAWMPSRNHLERLGRAVKHQLADPALAARLLGVGADALLGRRDAPRPLRDRTLLGALFESLVSLDVKVYADNAEGRVRHLRDAKGRHEVDLVVERDDGRVLAAEVKLAATVRDEHVKHLHWLRDRIGDDLVDAVVITTGNEAYRRADGIAVVPAALLGPNANANANANA
AK018_04241522trmL_1COG0219tRNA (cytidine(34)-2'-O)-methyltransferaseGTGCCAGAGCCAGAACCGTCCGACGCCGGGACGCCCGCCGGTGCACCGCCGTCGTCCCCGCATCTTCACGTCGTGTACTTCGAGCCGCGCATCCCCGGCAACACCGGCTCGGCGATCCGTCTCGCCGCCGTCACCGGGGCGCGGCTGCACCTCGTCGAGCCCCTCGGCTTCGACCTGTCCGAGGCCAAGCTCAAGCGGGCCGGCCTGGACTACCACGACCTGGCCGTCATGGACGTGCACCCCAGCCTCGACGACGTCCTCGACACCCTGCCCGACGCCCGCGTCTTCGCCTTCACCACGCGCGCGACGACGTCGTACACGGACGTCGCCTACATCCCCGGCGACGTGCTGCTGTTCGGTCCCGAACCCACCGGGCTGCCCGACGACGTGCTCGCCCACCCGCGGCTGACCGACCAGCTCAAGATCCCCATGCTCGCCGGCCGCCGGTCCCTCAACCTCACCAACGCCGCGTCGATCGCCGTGTACGAGGCCTGGCGGCAGACGGGGTTCGCCGGCGCCTGAMPEPEPSDAGTPAGAPPSSPHLHVVYFEPRIPGNTGSAIRLAAVTGARLHLVEPLGFDLSEAKLKRAGLDYHDLAVMDVHPSLDDVLDTLPDARVFAFTTRATTSYTDVAYIPGDVLLFGPEPTGLPDDVLAHPRLTDQLKIPMLAGRRSLNLTNAASIAVYEAWRQTGFAGANANANANANA
AK018_04242672hypothetical proteinATGCGCTCCCACCTGTTCCAGCACACCGAGCCCGAGGGCGAGCCCGGGGCCTTCCAGCTCGCCACCGACCGCATGCTCAAGGTCGACCTCGCCGGTTCCGGCGGGTTCTTCTACGCCAAGCAGGGGTCGATGGTCGCCTACCAGGGTGACGTCGACTTCGCCTACGAGGGCAGCGGGTCGGTGACCAAGCTGTTCAAGAAGGCCTTCACCGGCGAAGGCATGTCCCTGATGAAGGTCTCCGGCCGCGGCGACGTCTTCCTCGCCCAGGACGCCGACGAGGTCTTCGTCCTCTACCTGGAGAACGAGTCCGTGACCGTCTCCGGGGACAACATCCTCGCCTTCGAGTCCACCCTGACCTGGGACATCAACCGGGTCGAGGGGGCGTCGATGATGTCCGGCGGCCTGTTCAACACCACGTTCACCGGCACCGGAGCCCTGGCCGTGACCGCCTACGGCACCCCCGTCGTGCTGAACGTCGACGAACCCACGTTCGTCGACATGCAGTCCGCGGTGCTGTGGTCCACCTCGCTGACCAGCAGCGTGCGCAAGACGGCGAGGCTCGGCGCCGTGATCGGCCGCGGCTCCGGCGAGGCCTACCAGCTCGGCCTGACCGGGCAGGGGTTCGTCGTCGTGCAGGCCTCCGAGGGGCACCCGCCGCTCAAGGAGGGCTGAMRSHLFQHTEPEGEPGAFQLATDRMLKVDLAGSGGFFYAKQGSMVAYQGDVDFAYEGSGSVTKLFKKAFTGEGMSLMKVSGRGDVFLAQDADEVFVLYLENESVTVSGDNILAFESTLTWDINRVEGASMMSGGLFNTTFTGTGALAVTAYGTPVVLNVDEPTFVDMQSAVLWSTSLTSSVRKTARLGAVIGRGSGEAYQLGLTGQGFVVVQASEGHPPLKEGNANANANANA
AK018_042431245COG1373putative proteinATGGTCGGCTACCGTGCTCGGGTGATCGACCGCGAACTCGCGAGTCGGCTCGAATGGGCGGGTGGCGTCGTCATCGAAGGCCCGAAGGGGTGCGGCAAGACGTCCTCCGCCCGCCGGGTCGCTCGCAGCGAGGCCCGGTTGGACGCCGACCCGCGCCGTCGGGGCCTCTACGAGGCGGATCCAGGGCTGCTCGTCGACGGCGCAGCGCCACGCCTCATCGACGAGTGGCAGGTCGTGCCCGAGTCCTGGAATGCCGTCCGGCACGCGATCGACGACCGTGGGAAGCCGGGGCAGTTCGTCCTGACAGGTTCCGCGACGCCGTCCGACGACGCGAGCCGGCACTCGGGTGCGGGACGCCTGTCACGGCTGCGCATGTTTCCGATGACTCTCCACGAGTCAGGCGACAGTACGGGTGACGTGTCGTTCGCGGCCCTGCTCGACGGGAGCCGCCCGCGTGCGGTCGGGTCGGAGGCCGGACTCCAGGACCTCGCGGCAGCACTGTGCCGCGGCGGCTGGCCGCTCAACCTCGGCCTCGAACCCGAACAGGCTCGGCAACGGAACCGGGACTACCTGCGGACGATCGCGTCCGTCGACATCGTGACGGTCGACGGCGTCCGCCGCGACCCGCGACGCGTGGAGGCGCTCGTCTTCGCCCTCGCTCGGAACTCCGCGACCTATGTCAGCAAGAAGACGCTTCGTGCCGACACCGCCGACTTCGGGGCGCACCTCTCGGCGCCGACGCTGGACTCCTACCTGGACGCGTTGATCCGGTTGTGGGTCGTCGTGCCGCAGCTCGCCTGGGGGCAGCACCTGAGGTCCTCGGCTCAGGTTCGCCGACTGCCGAAGTGGCATCTCGTCGATCCTTCGCTGGCTGCGGCGATCCTCGGAGCGACGCCCCGCTCGCTCGTCGAGGAGCCGGAAGCGTTCGGGCAGCTGTTCGAGTCGTTGGTCCTGCGAGATCTGCAGGTCTACGCTCAAGCGGCGGAGGCGGAGGTGCGCGCCTATCACGACAGCAAGGACCGGGAGATCGACGCCGTCGTGGTGCGGGACGGAGAGTGGCACGGCGTGGAGGTGAAGCTCTCGTCGGCGCCTCGTGTGGTCGACGAAGCTGCCGCCGGGCTTCTGAAGATCTCCGACGGGATGCGAACCCCACCGGTGTCGTTGACCGTCATCACCGCGACGGGGCCTTGCTACCAGAGACCCGACGGTGTGAACGTCGTCGCCATGACTGCACTCGCACCGTGAMVGYRARVIDRELASRLEWAGGVVIEGPKGCGKTSSARRVARSEARLDADPRRRGLYEADPGLLVDGAAPRLIDEWQVVPESWNAVRHAIDDRGKPGQFVLTGSATPSDDASRHSGAGRLSRLRMFPMTLHESGDSTGDVSFAALLDGSRPRAVGSEAGLQDLAAALCRGGWPLNLGLEPEQARQRNRDYLRTIASVDIVTVDGVRRDPRRVEALVFALARNSATYVSKKTLRADTADFGAHLSAPTLDSYLDALIRLWVVVPQLAWGQHLRSSAQVRRLPKWHLVDPSLAAAILGATPRSLVEEPEAFGQLFESLVLRDLQVYAQAAEAEVRAYHDSKDREIDAVVVRDGEWHGVEVKLSSAPRVVDEAAAGLLKISDGMRTPPVSLTVITATGPCYQRPDGVNVVAMTALAPNANANANANA
AK018_04244717hypothetical proteinGTGACGACGCAGGACTCCGAGAAGACGCACCGCATCCTGATCCTGACCGGCCGTGGCCGCTACGAGGACCCGTGGCACGACCACGCGGCCACCAGCCATCGCCTCGCGCTCATGCTCGCCGACGTGGAGGTGCACGACCGCGCCTCCGAGGTGGTGCTGCGGTCCACGTTCCCCGACGCCCTGGACGACCTTGAGGAGTTCGGCCTGCTGGTCGTCAACGCCGGGACCTCCTGGCCGGGGTTCCTCGAGGCGGGGATCGGGCCCGACGACGACGCCTGGTCCGCCTTCCATGACCGGCTGGCCGGCTGGGCGCGCGACGGCGGCAGCATCCTCGCGGTGCACCAGGCGGCCAACACGTTCGCCGACGCGGCCGAATGGCCCGAGATCTTGGGCGGCCGGTGGATCGCGGGAGAGTCCTACCACCCCCCGTTCGGGCCGACGGAGCTGAAGCTCGCCACGGGCGGGCACCCGCTGGTGGTGGGTGCGGGGCCGGTGGAGCTCGAGGACGAGCGGTACTGCCGGCTGTCCGTGGCCGAGACGTCTCACGTGCTCGGCTGGGTCCTCGACGACGACGGTGAGCAGCACCCGGTGCTGTGGACCACGGAGGAGCACGGCGGGCGCACGCTCTACTCCGGGCTCGGGCACGACGTGCGCGCCTACGACTCGCCGACGTACGCCCGCCTGCTGCTGCGGGCGGTCACCTGGCTGCTGACCTGAMTTQDSEKTHRILILTGRGRYEDPWHDHAATSHRLALMLADVEVHDRASEVVLRSTFPDALDDLEEFGLLVVNAGTSWPGFLEAGIGPDDDAWSAFHDRLAGWARDGGSILAVHQAANTFADAAEWPEILGGRWIAGESYHPPFGPTELKLATGGHPLVVGAGPVELEDERYCRLSVAETSHVLGWVLDDDGEQHPVLWTTEEHGGRTLYSGLGHDVRAYDSPTYARLLLRAVTWLLTNANANANANA
AK018_04245615tdk_3COG1435Thymidine kinaseGTGGAGCTGTCGCTGGTGCTCGGACCCATGAAGTCCGGCAAGTCGCTCGACCTCATCGCGCAGATGGCGCCCCTGGCGTACTCGCGGCTGAGCTGCGCGGTCGTGCAGTCCGCCCGGCACGTCCGTGACGACCACATCACCTCGCGCACCGGGGCCTCGGTGCCGACCATCAAGCTCGAGACGCTCGAACCGCTGCTGCACACCACCGAGGACGTCGTCGCCGTCGACGAGGTCCACATGTTCACCCCGGCGGACGTGCGCGTCGTCGAGGAGCTGGTGCTGCGCGGCACCCGCGTGCTCGCCTGCGGCATCGACCTCGATCATCGCGGCGAGCTGTTCGCCACGATCCGGGCGCTGCTCGAGCTCGGCCCCACCGACGTGCGTTACCGGCGAGCCGTGTGCGACCGCTGCCAGGACCTGCACGCCGCGTTCACCCAGGTGCTGCGCGACGGCATCCCGTTCCTGGAGCCGCTGGGCGCCTCGGAGCCGCTGCCCGACGACGGCACCTTCACCTACGAGGCGCTGTGCCGGCGGTGCTTCGTGCTGCCCGAGACCGCGATCGTGACCGGGTCGCCCGGTGTCCCGCGGGCCGGCGTGACAGGATCGGGCACGTGAMELSLVLGPMKSGKSLDLIAQMAPLAYSRLSCAVVQSARHVRDDHITSRTGASVPTIKLETLEPLLHTTEDVVAVDEVHMFTPADVRVVEELVLRGTRVLACGIDLDHRGELFATIRALLELGPTDVRYRRAVCDRCQDLHAAFTQVLRDGIPFLEPLGASEPLPDDGTFTYEALCRRCFVLPETAIVTGSPGVPRAGVTGSGTPGPT0021390_1527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857NANA
AK018_04246936citE_1COG2301Citrate lyase subunit beta-like proteinGTGACCCCGGCCCCGTTCACCCTCGGCCCGGCGCTGCTGTTCTGCCCGGCCGACCGTCCCGACCGGTACGGCAAGGCCGCCGAGCGCGCCGACGCCGTCCTGATCGACCTGGAGGACGGCGTCGACCCGGCGGCCCGCCCCGCCGCGCGCGACGCCCTGCGCCGTCACCCGCTGGATCCGGCCAAGACCGTGGTGCGCATCAACCCCGTCGGCACCGACGACCACCGGCGCGACCTCGACGCCCTCGCCGACACGGACTACACCACCGTGATGCTGCCCAAGGCGGACGGCCGGTTCGTCGGCCCGCTGCTGGGTCCGGGCGGCAGCCCGTACGCCGTCGTGGCGCTGTGCGAGACGGCCGCCGGGGTGCTGGCCGCGCCGGCGCTCGCCGCCCGGGCCGACGTCGTCGCGCTCGCGTGGGGCGCCGAGGACCTCGTGGCGTCCCTGGGCGGGACGTCCAGCCGGCACGACGACGGCACCTACCGGGACGTGGCCCGGCACGCCCGGTCCGCCGTGCTGCTCGCCGCCGGAGCCGCCGGGAAGGCCGCCGTCGACGCCGTGCACCTCGCTCTCGACGACCTGGACGGTGTCCGCGCCGAGGCGCTCGACGCCGTCGCCGTCGGGTTCGCGGCGACGATGTGCGTGCACCCGACGCACGCCGCCGTCGTGCGCGAGGCGTACGCGCCGTCGTCGGACGACGTCGAGCGTGCGCGGGCGGTGCTGGCGGCCTCCGGGGCGGACCTCGACGGTGCTCCCGGGGCGGACCTCGACGGTGCTCCCGGGGCGAGCCCTGGTGGCGCTGCGCAGGCGGGCCCGGGCCCTGGTGGCGGGGTGCGCCGCGTGGCCGGCGCGATGGTGGACGCGCCGGTCCTGGCGCACGCCCGTGCGGTCCTGGCCCGGGCCGCGGCGGCACGTCCCACCGGCACCGAGAGCTAGMTPAPFTLGPALLFCPADRPDRYGKAAERADAVLIDLEDGVDPAARPAARDALRRHPLDPAKTVVRINPVGTDDHRRDLDALADTDYTTVMLPKADGRFVGPLLGPGGSPYAVVALCETAAGVLAAPALAARADVVALAWGAEDLVASLGGTSSRHDDGTYRDVARHARSAVLLAAGAAGKAAVDAVHLALDDLDGVRAEALDAVAVGFAATMCVHPTHAAVVREAYAPSSDDVERARAVLAASGADLDGAPGADLDGAPGASPGGAAQAGPGPGGGVRRVAGAMVDAPVLAHARAVLARAAAARPTGTESPGPT0019480_2157DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0019480-citE-K01644NANA
AK018_04247528mch_1COG2030Beta-methylmalyl-CoA dehydrataseATGAGGGACGAGATCCAGCACGGCTTCTACTTCGACGACCTCGTCGAGGACGTGCGCTACGTGCACCGCCCCGGCCGCACCCTGACCGAGGCGGACAACACCCTGTTCAGCGCGGCCACGATGAACCCGCAGGCGCTGCACCTCGACGCCGCGTGGGCGACCGGCCAACCCTTCGGCAAGCCGCTGATGAACTCGATGCTCACCCTCGCCACGCTCGTCGGACTCTCCGTGGGCCACCTGACGCGCGACACCATCGTGGCCAACCTCGGGTTCGAGTCGATCCGGTTCCCGGCACCGATGTTCGCCGGGGACACGCTCTACGGGGCCACGACGGTCGTGACCCGCCGGCCGTCGTCGTCCCGGCCCGGCACGGGCATCGTGACGCTCGAGCACGTCGGCACCAACCAGGACGACGAGGTGGTGGCCGTCGCGCGCCGCACCGTCATGGTGTGGACCCGCGACGGCCACGAACGCTACGTGGCGGAGCAGGCGGGCGGCCCGACGGCGGACGCGGCGGAGGAACCGTGAMRDEIQHGFYFDDLVEDVRYVHRPGRTLTEADNTLFSAATMNPQALHLDAAWATGQPFGKPLMNSMLTLATLVGLSVGHLTRDTIVANLGFESIRFPAPMFAGDTLYGATTVVTRRPSSSRPGTGIVTLEHVGTNQDDEVVAVARRTVMVWTRDGHERYVAEQAGGPTADAAEEPNANANANANA
AK018_042481194mmgC_4COG1960Acyl-CoA dehydrogenaseATGATCGCCGATACCTCGTCCACCGCGCTGACCGACCGGCAGCGCAAGCTCAGCCAGACGGTCCGCGAGTTCGCCGACGACGTCGTCGCGCCGGCCGCGTACCGGTACGACACGGAGCGGCGCCTGCCCGTGGAGATCATCGCCCAGATGGGCGAGCTCGGGCTCTTCGGGCTGCCGTTCCCCGTCGACGTGGGCGGCCAGGGGGAGGACTACGTCTCGCTGTGCCTCGCCGTCGAGGCGCTCGCCCGCGTCGACCAGTCCATCGCCGTCACCCTCGAGGCCGGCGTCGGGCTCGGCATCATGCCCATCTACCGGCACGGCACCGCCGCCCAGCGCGAGCGGTGGCTGCCCGACCTCGTCTCCGGCCGCGCGCTGGGCGCGTTCGGCCTCACCGAGGCCGGGGCCGGGTCCGACGCCGGAGCCACGCGCACGACGGCGCGGCTGGAACACGGAACCGGCGGCAGCGCTGACGACGGTGAGTGGGTGATTGACGGGTCCAAGCAGTTCATCACCAACTCCGGGACCCCGATCACCAGCGTTATCACCATCACCGCCGTCACCGACCGGCGGGACGACGGGACGCCCGAGCTCTCCACGATCCTCGTGCCGTCGGGGACGCCCGGGCTGACGGTGGGGGAGAGCTACGACAAGGTCGGCTGGCACACCTCCGACACCCACCCCCTCACCCTCGAGGGTGTCCGGGTGCCGAAGGACAACCTGCTCGGCGAGCGCGGGCGCGGGTACGCGAATTTCCTGCGGGCGCTCGACGAGGGCCGCATCGCCTTCGCGGCGCTCGCCACCGGTGCCGCCCAGGGCTGTCTCGAGGAGGCCGTGCGGTATGCGCGGGAGCGCGAGGTGTTCGGCCACGCCATCGGGGCCAACCAGCACGTCGCGTTCACCCTCGCCCGGATGCAGGCCCGGGTGCACGCCGCGCGGCTGTGCTGGCTCGACGCCGCCCAGAAGCTCGTGCACGGCAAGCCGTTCAAGGCCGAGGCGTCGGTGGCCAAGCTGACCTCGGGCGAGGCCGCGATGGCCAACGCCCGGGACGCCTCGCAGATCTTCGGCGGGTACGGGTTCCTCAACGAGAACCCCGTGGCCCGCCACTACCGGGACGCCAAGGTGCTCGAGGTCGGCGAGGGCACCACCGAGGTCCAGCTCATGATCATCGCCCGCGACCTCGGGTTCGCCGCATGAMIADTSSTALTDRQRKLSQTVREFADDVVAPAAYRYDTERRLPVEIIAQMGELGLFGLPFPVDVGGQGEDYVSLCLAVEALARVDQSIAVTLEAGVGLGIMPIYRHGTAAQRERWLPDLVSGRALGAFGLTEAGAGSDAGATRTTARLEHGTGGSADDGEWVIDGSKQFITNSGTPITSVITITAVTDRRDDGTPELSTILVPSGTPGLTVGESYDKVGWHTSDTHPLTLEGVRVPKDNLLGERGRGYANFLRALDEGRIAFAALATGAAQGCLEEAVRYAREREVFGHAIGANQHVAFTLARMQARVHAARLCWLDAAQKLVHGKPFKAEASVAKLTSGEAAMANARDASQIFGGYGFLNENPVARHYRDAKVLEVGEGTTEVQLMIIARDLGFAAPGPT0002285_547DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248NANA
AK018_042492061accA1_1COG4770Acetyl-/propionyl-coenzyme A carboxylase alpha chainATGTTCGCCACCGTGCTGGTCGCCAACCGCGGCGAGATCGCCTGCCGCGTCATCGCCACGCTGCGCCGCCTCGGCATCCGCTCCGTGGCCGTGCACACCGACCCCGACGCCGGGGCGCGCCACGTGCGCGAGGCCGACGTCGCGGCGCCGCTCGGCCCTGCCCGGGCCTACCTGGACGTGGACGCGGTCGTGGCGGCCGCCGTCGCAACGGGGGCCGAGGCGATCCACCCCGGCTACGGCTTCCTGTCGGAGAACCCGCGGCTCGCCCGGGCGTGCGCCGAGGCGGGGATCACCTTCGTCGGCCCGAGCGCCGCGGCCATCGAGACGATGGGGGACAAGGTCGCGGCCAAGCGGCTCGTCGCCCAGCACGAGGTGCCCGTGCTGCCCGGCACCCTCGAGGCGCTCGACGACGACGCGCTGGTCGGCGCGGCGGCCGACGTCGGCTTCCCGCTGCTGGTCAAGCCCGTCGCGGGCGGTGGCGGCAAGGGCATGGAGGTGGTGCGGTCCGCCGCCGAGCTCCCGGCCGCGCTGGCCTCGGCGCGCCGGGTCGCGGCGTCGGCGTTCGGCGACGACGGCCTGCTGCTCGAACGGCTCGTGGACACCCCGCGGCACGTCGAGGTGCAGGTGCTCGCGGACACGGCCGGCACGGTGGTACATCTCGGCGAGCGGGAATGTACGTTGCAGCGTCGCCACCAGAAGATCATAGAGGAGGCTCCCTCGCCCGCGCTCGACGAAGCCGCTCGCGACCGCATGGGACGCGCGGCCTGCGAGGTGGCGCGCGCCATCGGGTACGTCGGCGTCGGCACCGTCGAGTTCCTTCTGCCGGCGGGCGCGCCCGAGGAGTTCTGGTTCATCGAGATGAACACGCGCCTCCAGGTGGAGCACCCCGTGACCGAGATGGTCACCGGCCACGACCTGGTCGAGGCCCAGCTCCGCGTCGCCGCCGGGGAGAAGCTGTGGTTCGGCCAGGACGACGTTCGCCTGACCGGCCACGCGATCGAGGCGCGCGTCTACGCCGAGTCGCCCGAGCGCGGGTTCCTGCCCTCGGTGGGCCGGCTGCTCGTGGTCGACGATGCCGGGACGCCCGCGGGGCCGGACGCCGCACCGCTGCGCCTCGACTCCGGCGTCGCGAGCGGGGACACGGTCTCCGGCGACTACGACCCGATGCTCGCCAAGGCCGTCGCGCACGGGGCCGACCGCGCCGAGGCGCTGGCCCGGCTGGACGGGCTGCTCGGGCGGCTGGCCGTCCTCGGTGTCGAGACTAACACCGGGTTCCTGCGCGACCTGCTGGCCGACGCCGACGTGCGTGCGGGTCGTCTCGACACCGGGCTGGTGGACCGGTTGGCCGACAGCTCGGAGTCCGGCAGCACGGAGGCGGGGCTGACGGCGGCGGCGCTGCTCGCCGGCCTGCCCGAGGAACCCGAGCGGTCCGACGGCGGTGCCCCGGACCCGTGGGCCGCCGACGGCTGGCGGCTCAACGCCCCGCCCGCACCGCGGACCGTCAGCCTGCGCGGACCCGGCGGCACCGTGCACGACGTCACCGTCACGGGCCGTCGCGCCGCCGCCACGCTCGTGCGGGACGGTGGGCCCGACGGCGGCACGCCGGTGCACGCGTCGCTGCGGCCGGCGGGCGGTCCGGTGCACCGGCACCTGCTCACCTCGGGCGGGCGGACCCTCCCGGTCACCGTCGCGGAGGATCCGGCCGCGCCCCGCACCGTGTGGGTCGCGGTCGAGGGCCGCACCACCGCCTGGACGGTGCTCGACCGGGCCGAGCGGGCGGCGACGCTCCGGGCCGAACGCGCTGCCGCCGCCGATCCGGCCGCCGCCACCTCCGCCGTCGGACCGCTGGAGCTGCGTGCCCAGATGCCCGGCACCGTCACCGCCACCCATCCGGCGGGCCCCGTCGAGGCCGGCGCCGCTGCCGTGGTCGTCGAGGCCATGAAGATGGAGCACCCCCTGTCCGCACCGGCCGCAGGGACCCTGCGCGTCCTGGTGCACCCGGGCGACCAGGTCCGCCTCGACCAGGTGGTCGCCGTCGTCGAACGCGAAGGAGCGTCATGAMFATVLVANRGEIACRVIATLRRLGIRSVAVHTDPDAGARHVREADVAAPLGPARAYLDVDAVVAAAVATGAEAIHPGYGFLSENPRLARACAEAGITFVGPSAAAIETMGDKVAAKRLVAQHEVPVLPGTLEALDDDALVGAAADVGFPLLVKPVAGGGGKGMEVVRSAAELPAALASARRVAASAFGDDGLLLERLVDTPRHVEVQVLADTAGTVVHLGERECTLQRRHQKIIEEAPSPALDEAARDRMGRAACEVARAIGYVGVGTVEFLLPAGAPEEFWFIEMNTRLQVEHPVTEMVTGHDLVEAQLRVAAGEKLWFGQDDVRLTGHAIEARVYAESPERGFLPSVGRLLVVDDAGTPAGPDAAPLRLDSGVASGDTVSGDYDPMLAKAVAHGADRAEALARLDGLLGRLAVLGVETNTGFLRDLLADADVRAGRLDTGLVDRLADSSESGSTEAGLTAAALLAGLPEEPERSDGGAPDPWAADGWRLNAPPAPRTVSLRGPGGTVHDVTVTGRRAAATLVRDGGPDGGTPVHASLRPAGGPVHRHLLTSGGRTLPVTVAEDPAAPRTVWVAVEGRTTAWTVLDRAERAATLRAERAAAADPAAATSAVGPLELRAQMPGTVTATHPAGPVEAGAAAVVVEAMKMEHPLSAPAAGTLRVLVHPGDQVRLDQVVAVVEREGASPGPT0019850_31DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TERPENE_UTILIZATIONvCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019850-atuC|atuF-K13777NANA
AK018_042501620COG4799Methylmalonyl-CoA carboxyltransferase 12S subunitATGAGCGTGCTGACCTCCGCCGTCGACCCGGCTGCCGGGGCCGCGCGGGCCAACGCCGACGCGCAGCGGGCCCTCGCCGCCCGGCTGCGCGAACGGACCGCGACCGCCGCGGCCGGTGGCCCGCAGCGCGCCCGGGACAAGCACGTCGCGCGCGGCAAGCTGCTGCCGCGCGAGAGGGTGGCGTTGCTGCTCGACGAGGGCAGCCCGTTCCTGGAGATCTCGCCGCTGGCGGCCTACGGCGTCGACGGCGACGGCGGACCCGGGGAGTGGCCCGGTGCGGGCGTCGTGGCCGGGATCGGGCAGGTCGCCGGTCGGCAGGTCATGGTGGTGGCCAACGACCCGACCGTGAAGGGCGGCACCTATCACCCGCTGACCGTGAAGAAGCACCTGCGGGCCCAGGAGATCGCGCTCGAGAACCGGCTGCCGTGCGTGTACCTGGTGGACTCCGGCGGGGCGTTCCTGCCCCGCCAGGACGACGTGTTCCCCGACCGGGACCACTTCGGGCGGATCTTCTACCAGCAGGCACGGCTGTCGGCGGCGGGGATCCCGCAGCTCTCGGCGGTGCTCGGCTCGTGCACCGCGGGCGGCGCCTACGTGCCCGCCATGAGCGACGAGACCGTGATCGTGCGCGACCAGGGCACCATCTTCCTCGGCGGACCGCCCCTGGTGAAGGCCGCCATCGGCGAGGACGTCACCGCCGAGGAGCTCGGCGGCGGCGCCCTGCACGCGCGGCGCTCCGGCGTCGTCGACCACCTCGCCGACGACGACGCCGACGCCCTGGACCGGGTGCGCCGCATCGTCGCCACCCTGCCGCCCGACCCGGCGCCCGCCTGGGACGTGCAGCCCGCCCAGGAACCGCTGCTCGACGCGGCCGGACTGTACGACGTCGTCCCCGTCGACGTGCAGCAGCCGTACGACCCGCGCGAGGTGATCGCCCGGCTCGTCGACGGCAGCCGCCTGGAGGAGTTCAAGGCCGAGTACGGCACCACGCTCGTCTGCGGGTTCGCCCGGATCCACGGTCACCCCGTCGGCGTCCTCGCCAACCAGGGCGTGCTGCTGCGCGAGTCCGCGCTCAAGGGCGCCCACTTCGTCGAGCTGTGCGACCAGCGCGGCATCCCGCTGCTGTTCCTGCAGAACATCTCCGGGTTCATGGTCGGCACCGACGCCGAGGCCGGCGGCATCGCCAAGGACGGCGCCAAGATGGTCACCGCCGTCTCGACGGCCCGGGTGCCGAAGCTGACCGTCATCGTCGGCGGCTCCTTCGGCGCCGGGAACTACGCCATGTGCGGGCGGGCCTACGGTCCCCGGTTCCTGTGGTCCTGGCCCGGGTCCCGCATCTCCGTGATGGGCGGGGAGCAGGCCTCCTCGGTGCTCGCCACCGTCAAGCGCGACCAGCTCGCCGGCCGCGGCGAGGAGTGGGACGCCGACGACGAGGCCGCGTTCCGCACCACGATCCGCGACGCCTACGAGGCCGCCGGCGACCCGTACCACGCGACGGCGCGGATGTGGGACGACGGCATCGTCGACCCCGTCGACACCCGCCGGGTGCTCGGCCTGGCGCTCGCCGTCTGCGCGCGCACCCCGCTGACCGACCGCGCCACGGCGCTGTACCGGATGTGAMSVLTSAVDPAAGAARANADAQRALAARLRERTATAAAGGPQRARDKHVARGKLLPRERVALLLDEGSPFLEISPLAAYGVDGDGGPGEWPGAGVVAGIGQVAGRQVMVVANDPTVKGGTYHPLTVKKHLRAQEIALENRLPCVYLVDSGGAFLPRQDDVFPDRDHFGRIFYQQARLSAAGIPQLSAVLGSCTAGGAYVPAMSDETVIVRDQGTIFLGGPPLVKAAIGEDVTAEELGGGALHARRSGVVDHLADDDADALDRVRRIVATLPPDPAPAWDVQPAQEPLLDAAGLYDVVPVDVQQPYDPREVIARLVDGSRLEEFKAEYGTTLVCGFARIHGHPVGVLANQGVLLRESALKGAHFVELCDQRGIPLLFLQNISGFMVGTDAEAGGIAKDGAKMVTAVSTARVPKLTVIVGGSFGAGNYAMCGRAYGPRFLWSWPGSRISVMGGEQASSVLATVKRDQLAGRGEEWDADDEAAFRTTIRDAYEAAGDPYHATARMWDDGIVDPVDTRRVLGLALAVCARTPLTDRATALYRMPGPT0008345_131DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008345-accD-K01970NANA
AK018_042511509pdhC_3COG0508Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complexATGAGCGCGCAGCAGTTCCTGCTCCCCGACCTCGGGGAGGGGCTGACCGAGTCCGAGATCGTCGAGTGGCGTGTCGCTCCCGGCGACGTGGTGACGCTCAACCAGGTCATCGCCGAGGTGGAGACGGCCAAGGCGCTCGTCGAGGTCCCCTCGCCGTACGCCGGCACCGTGACGACCCTGCACGCCGAGGAGGGGCAGGTCGTCGAGGTCGGCGAACCGCTCGTCACGTTCGACGTCGCCGCTGCCGAGCCCGCGGACGCGCCCGCCGGCGACGTCCCCGCACGGGAGGACGCGGCTGAGGTGCCGCCGGTCGAGGAGCCGGCCGCCGACGGCGCGCCGGACAGCGGGCCGGTGGCGAGCGCCGGTTCCGGCGACGCGGTGAGCATCGGGTCCGCCGAGTCGCCTGCAGCCCACAGCGAACAGTCGGAGGACGACGGCGCGGGCCCCAACCTGGTGGGCTACGGTGCCCGCTCGGCCCGCAAGGGTCGCCCGACCCGTCGCCCGCGCAAGCCGGTGGACCTGCCGGTGGTGCCGTCGTCGGACGGCGTTGCGCCGCGCGCGACGGCCGAGCGGCACGCCACGCCGGGGGTGCGGGCGATGGCGAAGCGGCTGGGCGTGGACCTGACGTCGGTGCGCGGCACGGGTCCGGAGGCCCGGATCACCCGCGAGGACGTCGACGCGGCCGCTCGGGGCGCCCGCCCGGTCGGTCGCCCCCAACCTGTCGAGACCAGCGAGCCCGTGCGGGGCGTGCGCAAGCACACGGCGGCCGCGATGGCGGCCAGTGCCGCGATCCCGCAGGCGACGGTGCACCTGACCTGCGACGTCACCGACACGCTCGCCCTGGTGGCGCGGTTGCGCACCCACTCGCGCACGCGCGAGGTCAAGGTCGGGCTGCTCGCCGTGATCGGCCGGGCGGTGTGCGGGCTCGCGCCGGACCACCCGGCGCTCGTCACGCGCTGGGAGGAGGCCGACGAGGGGTCCGAGCGCGGGGCGCGCCTGGTGCACTCCGCTCACGTGCACCTGGGCATCGCCGTCGCGACCGCCCGCGGGCTCGTGGTGCCGCACGTGCCCCGCGCCGACGAGCTGTCCCTCGTCGGGCTCGCCCGTGCGCTGGCCGACCTGACCGAGACCGCCCGCGCGGGACGCACCCGCCCCGAGCGGCTCACCGGTGGCACGCTCACCCTGACGAACGTGGGCGTGTTCGGCGTCGACGCCGGCACGCCCCTGCTCAACCCCGGCGAGTCCGCGATCCTCGGCATCGGGCAGGTGGCCCGGCGGCCCTGGGAGCATGACGGCGAGATCGCCCTGCGCGACGTCGTCACCCTGTCGCTGACCTTCGACCACCGCGTGGTGGACGGCGAGCAGGGCGCGCGGTTCCTCGCCGACCTCGGCGCGCAGCTCACCGACCCGGCGCTCGCGGTGCTGCTCGGGGGCCACGACGAGGCTGCCGAGGCCGCGGCATCGGGGAGCACCGGGCTGACCGCCGTCGACGGGGCCGGTGCCGCATGAMSAQQFLLPDLGEGLTESEIVEWRVAPGDVVTLNQVIAEVETAKALVEVPSPYAGTVTTLHAEEGQVVEVGEPLVTFDVAAAEPADAPAGDVPAREDAAEVPPVEEPAADGAPDSGPVASAGSGDAVSIGSAESPAAHSEQSEDDGAGPNLVGYGARSARKGRPTRRPRKPVDLPVVPSSDGVAPRATAERHATPGVRAMAKRLGVDLTSVRGTGPEARITREDVDAAARGARPVGRPQPVETSEPVRGVRKHTAAAMAASAAIPQATVHLTCDVTDTLALVARLRTHSRTREVKVGLLAVIGRAVCGLAPDHPALVTRWEEADEGSERGARLVHSAHVHLGIAVATARGLVVPHVPRADELSLVGLARALADLTETARAGRTRPERLTGGTLTLTNVGVFGVDAGTPLLNPGESAILGIGQVARRPWEHDGEIALRDVVTLSLTFDHRVVDGEQGARFLADLGAQLTDPALAVLLGGHDEAAEAAASGSTGLTAVDGAGAANANANANANA
AK018_042521032bkdB_3COG00223-methyl-2-oxobutanoate dehydrogenase subunit betaATGACGGCCGAGCAGATGACGCTCGCCCGCGGGCTCAACGCGGGGCTGCGCCAGGCCCTCACCGACGACGAGAAGGTCGTGCTGCTGGGTGAGGACATCGGCGCCCTCGGCGGTGTGTTCCGGGTGACTGACGGGCTGCAGCGCGAGTTCGGGCCGCGCCGTGTCATGGACACCCCGCTCGCGGAGTCCGGCATCCTCGGGACCGCCATCGGGCTGGCCTACCGCGGGTACCGGCCGGTGGTGGAGATCCAGTTCGACGGGTTCGTGTACGTCGCGTTCGACCAGATCGTCAGCCAGGTCGCCAAGATGCGGGCCCGCACCGGCGGGGCGGTCTCGATGCCGCTGACGATCCGCATCCCGGTGGCTGGAGGGATCGGCGCGGCCGAGCACCACTCCGAGTCCCCGGAGGCGTACTTCGTGCACACCGCCGGGCTGCGCGTGGTGTCGGTGTCGAACCCGCAGGACGCCGCCACGGTCCTGCGTCAGGCGATCGCCAGCGACGACCCGGTGGTCTTCTTCGAGCCGAAGCGGCTGTACCACGTCAAGGGTCCGGTGGAGCTCGAGGACCTGGATGCCGCCCGCCCCATGGGTGCGGCGCACGTCGTCCGTCCGGGTCGCGACGTGACCGTGGCGACCTGGGGGTCGCACGTGTCCACGGCGATCGACGCCGCGGAGGCCATGGCCGACGACGGCGCCTCCGTCGAGGTGGTCGACCTGCGGTCCCTCTCGCCCTGGGACGCGGACACCGTGGTGGCGTCGGTGCGGCGCACCGGGCGGCTCGTCGTCGTCCAGGAGGGTCCGCGCCAGGCCGGCGTCGGCGCGGAGATCTGCGCCACCGTCACCGAGCAGTGCTTCGAGCACCTGCAGGCGCCGCCCGTGCGCGTCACCGGCCACGACGTCCCGTACCCGCCCGCGAAGCTGGAGGGCCACCACGTGCCCGACCTCGACCGTGTCTGCTTCGGCATCGACCAGGCGCTCGGCCGCGTCCCGCTGGACGTCCCGACCGCCCGGCCCGAGGAGGTCGCCGCATGAMTAEQMTLARGLNAGLRQALTDDEKVVLLGEDIGALGGVFRVTDGLQREFGPRRVMDTPLAESGILGTAIGLAYRGYRPVVEIQFDGFVYVAFDQIVSQVAKMRARTGGAVSMPLTIRIPVAGGIGAAEHHSESPEAYFVHTAGLRVVSVSNPQDAATVLRQAIASDDPVVFFEPKRLYHVKGPVELEDLDAARPMGAAHVVRPGRDVTVATWGSHVSTAIDAAEAMADDGASVEVVDLRSLSPWDADTVVASVRRTGRLVVVQEGPRQAGVGAEICATVTEQCFEHLQAPPVRVTGHDVPYPPAKLEGHHVPDLDRVCFGIDQALGRVPLDVPTARPEEVAAPGPT0008862_46DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167NANA
AK018_042531290bkdA_3COG10713-methyl-2-oxobutanoate dehydrogenase subunit alphaATGCCCAGCACCACGGATCCGAGGACTCGGCAGGACCTGTCACGAGCGGGTGAGTCGGCGTCCTCGGCGGACAGCGCCCACGGCGGCGCACGCGACCGTGCCGTTCCCGACCGTGCCGTTCCCGACCGTCCGGCGTCGAACGGCCGCCCGGCCCGCGCCGGCGCGCCCCGCGGCGATGGCCACGACGACGTCACCGTGCGTCTGCTCGACGCCGAGGGCGTCCGGAAGCCCGACGCCGCCTACGACCGGTGGGTCGAGGACGTCGACGACGCCGCGCTGCTCCGGCTGTACGAGGACCTGGTCGTGGTCCGGCGGATCGACACCGAGGCGACCGCCCTGCAGCGCCAGGGTCAGCTCGCGCTGTGGCCGCCGCTGCTGGGCCAGGAGGCCGCGCAGATCGGGTCGGCGCGGGCGCTGCGCGACGACGACTTCGTGTTCTCCAGCTACCGCGAGCACGCCGTGGCGCACGCTCGCGGCGTGGCGCCGGTGGACCTGCTGCGCGTGTGGCGCGGCGCCGTCGGCTCCGGGTGGAACCCGCACGAGGCCCGGATGGCGCCGATGCAGGTCATCATCGGGGCGCAGTCGCTGCAGGCCGTCGGGTACGGAGTGGGCATCCTCGCCGACGCCGAGCGCGAGGGCCGCACGGGTGACACCGAGGTGGCCGTGACCTACTTCGGCGACGGTGCGACCAGCCAGGGCGACGTGTCCGAGGCGTTCACGTTCGCCTCGACCTGGTCGGCGCCGGTGGTTTTCTTCTGCCAGAACAACCAGTGGGCGATCTCCGAGCCCGTCTCGCTGCAGTCCAAGGTGCCGCTCGTGGAGCGGGCCCGCGGGTTCGGCATGCCGGGTGTGCGGGTGGACGGTAACGACGTCCTCGCCGTGCTCGCCGTCACCCGGGAGGCCCTGCACCGGGCGCGTACCGGCGGCGGCCCCACGCTCATCGAGGCCGTGACGTACCGCCGCGGCCCGCACACCACGGCCGACGACCCGACCCGGTACCGCACCTCGGCGGAGATCGAGCACTGGGAGGCGCGCGACCCGGTCGCCCGCGTCGCGGCGCACCTCCGGGGCCGTGGGGTGCTGGACGACGACGTCGAGGCCCGCGTCCAGGAGTCCGCGGACGCCGTGGCCGCCGAGCTGCGCGCCGGGATCTCCCAGGTCGAGGACCCGTCGTGGGAGGCGATCTTCGTGGACGTCTACGCCGAACCGCACCACGAGCTCGCCGCCGAGCGGGACGCGTACGCCCGCTACCTGGACGGCTTCGAGGCCCCGGGGGAGGACGCGCGATGAMPSTTDPRTRQDLSRAGESASSADSAHGGARDRAVPDRAVPDRPASNGRPARAGAPRGDGHDDVTVRLLDAEGVRKPDAAYDRWVEDVDDAALLRLYEDLVVVRRIDTEATALQRQGQLALWPPLLGQEAAQIGSARALRDDDFVFSSYREHAVAHARGVAPVDLLRVWRGAVGSGWNPHEARMAPMQVIIGAQSLQAVGYGVGILADAEREGRTGDTEVAVTYFGDGATSQGDVSEAFTFASTWSAPVVFFCQNNQWAISEPVSLQSKVPLVERARGFGMPGVRVDGNDVLAVLAVTREALHRARTGGGPTLIEAVTYRRGPHTTADDPTRYRTSAEIEHWEARDPVARVAAHLRGRGVLDDDVEARVQESADAVAAELRAGISQVEDPSWEAIFVDVYAEPHHELAAERDAYARYLDGFEAPGEDARPGPT0008861_333DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166NANA
AK018_04254474asnC_1COG1522Regulatory protein AsnCGTGCACAGCATCGACGCCGTGGACCTGGACCTGCTCCGGGCGCTCGCCGAGGACCCCGGGGCGACGACGGTCGCCCTCGCCCAGCGGCTGGGCATCTCCCGCAACACCGTCGCCGCCCGGCTGGCGCGGCTCGAGGACGCCGGGGCGTTCCTCTCCTTCGACCGCCGCATCGACCCGGCCGTGCTGGGCCACCCGCTGCTGGCGTTCATCGAGATCACCGTCCACCAGCGCGACCTGGCCCGGATCGTCGAGCACCTGGCCCGCATCCCCGAGGTGGTCCAGGCCTACGGGCACTCCGGTACCGCGGACCTGCGCGTGCACGTCGTGTGCCGGGACACCGACCACCTGTTCCGCATCGACGCGGCCATCCTGCGCATCGACGGGGTGGAGCGCACCGAGACGTCCCTGGCGATGGGTGAGCTGATCCCCTACCGCGTGCAGCCCCTGGTGGAGAAGCTGCGCCGCGGCACGTAGMHSIDAVDLDLLRALAEDPGATTVALAQRLGISRNTVAARLARLEDAGAFLSFDRRIDPAVLGHPLLAFIEITVHQRDLARIVEHLARIPEVVQAYGHSGTADLRVHVVCRDTDHLFRIDAAILRIDGVERTETSLAMGELIPYRVQPLVEKLRRGTNANANANANA
AK018_04255627hypothetical proteinGTGACCACGACGACCGAGCTCGTCGAGCGGGCGCGGGCGCTCGCGGTGCCGGGACAGCGGGCGATCCTGGGGATCGCCGGGGCGCCGGGGTCCGGCAAGTCCACGCTGGCCGCGACCCTCGCCGAGGCGCTCGGACCGGACCTCGCCGTCGTCGTCGGCATGGACGGCTTCCACCTGTCGGACGCGGTGCTGGCCGCGCACGGGTCACGAGACCGCAAGGGTGCGATCGACACGTTCGACGACGGCGGGTACGCCGCGCTGATCGGCAGGCTCGCGGACGCCCGGCCCGGCGACCCGCCGGTCTACGCCCCGGTGTTCGACCGCGCGATCGAGGAGCCGGTCGCCGCCGGCGTCGAGGTGCCCGCCGCGGTGCCGCTGGTGATCACCGAGGGGAACTACCTGCTGGCCGCCTGCGGGTCATGGCCGGCCGCGCGGGCCCGGATGGCCGAGGTCTGGTACGTCGAGGTGCCCGACGGCGTCCGGCTGGCCCGGTTGGAGGCGCGGCACCGCGCGTTCGGCAAGAGCCCGGCCGAGGCGGCCCGCTGGGCACGCGGCTCGGACCAGGTCAACGCGGAACTGATCGAGAGCACCCGGGACGCGGCGGACCTCGTCGTCGAGCTCGGCTGAMTTTTELVERARALAVPGQRAILGIAGAPGSGKSTLAATLAEALGPDLAVVVGMDGFHLSDAVLAAHGSRDRKGAIDTFDDGGYAALIGRLADARPGDPPVYAPVFDRAIEEPVAAGVEVPAAVPLVITEGNYLLAACGSWPAARARMAEVWYVEVPDGVRLARLEARHRAFGKSPAEAARWARGSDQVNAELIESTRDAADLVVELGNANANANANA
AK018_04256888yihV_1Sulfofructose kinaseGTGCGCACCTGCTGGTTCGTCGGCCTGACCACGCTCGACGTCGTGCACCGCGCCACCGGCCGACCGGGACGCGACGAGAAGGTTACCGCCATGCGCCAGGATGTCGCCGCCGGCGGGCCGGCCGCCAACGCCGCCGTCACCGCCGCCGCCCTGGGGGCCCGGGCCGTGCTCGTCACGGCGCTCGGCAGCAGCCCCGTCGCGCAGGCCGCCCGCGCCGACCTGGAGTCCTGCGGCGTCGAGGTGCACGACGTCGTGGCCCCCGGGGAGGACTTCCCGCTCGCGGTCTCGGCGGTGCTGGTCGACGACGCGACCGGTGAGCGGTCCGTCGTCTCGGCCGACGCGGCACTCGCCGAGGCGCCGGCACCGGCCTTCCTCGCGGACCTGCCCGCGCCCGACGTCGTCCTCCTCGACGGGCATCACCCCGTGATCGCGCGAGCCGCCGTCGACCACCTCGAGACGCGCACGCCGCGGCCGCAGATGCTGCTCGACGCCGGACGCTGGCGGCCGCTGTTCGCCGAGCTGCTGCCCGTCGCGGACGTCGCCGCGGTCTCCGCCCGGTTCACGGTGCCCGGGTACGACGACGTCACCACCGGCGCGCACGCCCTCGGTGCGCGCGCCGTGGTGGTCACCCACGGCGGCGGGCCGGTCGCGTGGTCCGGTCCCGACGGCGTCGGCACCGTCGACGTGCCCGCGGTCGAGGCCCGCGACACCCTCGGTGCCGGCGACGCCTTCCACGGGGCGCTCGCGGTCGCGCTGGCCGACGGTGCCACCCTGCCTGCTGCGTGCGCGGCCGCGAACGAGGTCGCCGCGACGCGTGTGGCGCACGTCGGGCCACGCGAGTGGCTCGCCGAGGTGCGCACCGCGGTGCCCTCCGCGGAACGCCCGTGAMRTCWFVGLTTLDVVHRATGRPGRDEKVTAMRQDVAAGGPAANAAVTAAALGARAVLVTALGSSPVAQAARADLESCGVEVHDVVAPGEDFPLAVSAVLVDDATGERSVVSADAALAEAPAPAFLADLPAPDVVLLDGHHPVIARAAVDHLETRTPRPQMLLDAGRWRPLFAELLPVADVAAVSARFTVPGYDDVTTGAHALGARAVVVTHGGGPVAWSGPDGVGTVDVPAVEARDTLGAGDAFHGALAVALADGATLPAACAAANEVAATRVAHVGPREWLAEVRTAVPSAERPPGPT0017405_453DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
AK018_042571062gpr_2COG0667L-glyceraldehyde 3-phosphate reductaseATGCCCCTCGCACCGCGCTATCTCGCCGCCGAGACCCGCTACGACGCGATGACCTACCGTCGCACCGGACGGTCCGGTCTGGACCTGCCCGCCCTGTCGCTGGGCCTGTGGCACAACTTCGGCGACGTCAACCCGTTCGAGACGCAGCGGGCGATCCTGCGCCGCGCGTTCGACCTCGGGGTCACGCACTTCGACCTGGCGAACAACTACGGACCGCCCTACGGCTCGGCGGAGGAGAACTTCGGCCGGCACCTCGCCGCCGACCTCGCGCCCTACCGCGACGAGCTGGTGATCTCCACCAAGGCCGGCTACGACATGTGGCCCGGCCCGTACGGCGACCACGGGTCGCGCAAGTACCTGCTTGCCTCGCTCGACCAGTCGCTGGGACGCCTCGGGCTCGACTACGTCGACGTCTTCTACCACCACCGTCCCGACCCCTCCACGCCGCTCGAGGAGACCATGGGCGCGCTCGCCTCGGCGGTGCAGCAGGGCAAGGCGCTGTACGTCGGCGTCTCCAACTACTCCCCGGCACGCACCCGCGAGGCCGCGCGCATCCTGGCGGACCTGGGCACGCCGCTGCTCATCCATCAGCCGAGCTACTCGATGTTCAACCGCCACATCGAGGAACCCCACCGGGACGACCCGTACGACGGGAAGCAGAGCGAGTCCCTGCTCGACGCCGTCGGGGACCTGGGCGTGGGCACCATCGTGTTCTCCCCGCTGCAGCAGGGGCTGCTCACCGGTCGCTACCTGTCGGGCGAGGCGCCGGCCGGGTCGCGGGCGGCGCGTTCCGACTCGCCGTTCCTGTCGGGGGACGCCCTCAGCGAGACGTATCTGAGCCGGGCGCGGGCCCTGCACGAGATCGCCGCCGGGCGTGGGCAGAGCCTCGCCCAGCTCGCGCTGTCCTGGGTGCTGCGCGACCCGCGCATCACCTCCGCGCTGATCGGCGCCTCGTCGGTGGAACAGCTCGAGGACAACCTCGGGGCGCTCGCCGCCGGGCCGCTGACCGAGGAGGAGATCGCCGCGATCGAGCCCTACGCCGTCGACGGCACGGGGCGGTGAMPLAPRYLAAETRYDAMTYRRTGRSGLDLPALSLGLWHNFGDVNPFETQRAILRRAFDLGVTHFDLANNYGPPYGSAEENFGRHLAADLAPYRDELVISTKAGYDMWPGPYGDHGSRKYLLASLDQSLGRLGLDYVDVFYHHRPDPSTPLEETMGALASAVQQGKALYVGVSNYSPARTREAARILADLGTPLLIHQPSYSMFNRHIEEPHRDDPYDGKQSESLLDAVGDLGVGTIVFSPLQQGLLTGRYLSGEAPAGSRAARSDSPFLSGDALSETYLSRARALHEIAAGRGQSLAQLALSWVLRDPRITSALIGASSVEQLEDNLGALAAGPLTEEEIAAIEPYAVDGTGRPGPT0008285_127DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-HYDROXYACETONE_VOLATILE_BIOSYNTHESIS,PGPT0008285-yghZ-K19265NANA
AK018_04258804hypothetical proteinATGTTGTCCATCGGAGCGTTCGCGCAGGTCGGCCAGGTGACCCACCGCATGCTGCGGCACTGGGACGCCACCGGGCTGCTCGTGCCCGCCCACGTGGACGAGTTCACCGGGTACCGGTCCTACGACCCGTCCCAGCTCGCGCGGCTGCACCGGATCGTGGCGCTGCGCGAGCTCGGCTTCGGGATCGACGACGTCGCGGCGGTCCTGGCCGACGGTGTCGCGGACGAGCGGCTCACCGAGCTGCTCGAGACCCGGCGGGAGGCGGTCGAGCGTGAGCACGCGCTGGCCTCGGCCCGGCTCGCCGACGTGGCACGGCGCCTCCGGCTCATCAGTGAGGAGAAGACCATGTCCACCATCGAGATCGTCGTCAAGCCCCTGCCCGCGCTGCGCCTGGCCGCGCGACGAGCCCACGTGAGCGAGCAGCCGGAGATCGGTGCCGTCGTCGGGCCGCTGTTCGACGCGGTCGCCGACGCGCTGCAGCCGAACAGGGGCCTGCTCGAGACGCCGGTCGCGCAGTACTCGATCGGCGCCGACGGGATCGACGTCGTCGTCGGGTACGCCTACGACGGCGCACCGCGCGACGGGGTCGAGATCGTCACCCTGCCCGCGGTCGAGCAGGCGGTGTGCGCTGTCCACCTCGGGCCCGTGGAGCGCATCCCGGCGAGCTGGCAGGCCCTGCACACCGAGGCGACGGCGCGCGGGCTCGTCCCGGACGCCCCGTGCCGTGAGCGCTACGTGCGCGCCGAGGGCGACGACCAGTCCGACTGGGTCACCGAGCTGCAGCAGCCCGTCACCCCCGCCTGAMLSIGAFAQVGQVTHRMLRHWDATGLLVPAHVDEFTGYRSYDPSQLARLHRIVALRELGFGIDDVAAVLADGVADERLTELLETRREAVEREHALASARLADVARRLRLISEEKTMSTIEIVVKPLPALRLAARRAHVSEQPEIGAVVGPLFDAVADALQPNRGLLETPVAQYSIGADGIDVVVGYAYDGAPRDGVEIVTLPAVEQAVCAVHLGPVERIPASWQALHTEATARGLVPDAPCRERYVRAEGDDQSDWVTELQQPVTPAPGPT0003907_48DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003907-bmrR-NANANA
AK018_04259279hypothetical proteinATGCACGACGACGGCACGCGGCACGGTGCACCTCGGTCCTGCGAGTGGGCGCTCGCCCTGGGGATCGCGGCGCTGGTCTGCGCGCTCGTGCCGGTGATCGGGGACTGGGTCTCGGCGCCGCTCGGTGTCGCCGCGCTCGGACTCGGCTCGTTCGGCAGCCACGTCGCCGACCGGGACGGCCGGCCGGGGATGTGGCGCGGCCTGATCGGCGCGCTGCTCGGGTTGGCCGCGCTCGCGTCGGTGCTGTTCTCCGTGGCGATCGGCGCTCTCGGCCCCTGAMHDDGTRHGAPRSCEWALALGIAALVCALVPVIGDWVSAPLGVAALGLGSFGSHVADRDGRPGMWRGLIGALLGLAALASVLFSVAIGALGPNANANANANA
AK018_042602268fgd_9F420-dependent glucose-6-phosphate dehydrogenaseATGACGGACTACGGCCACGACCTGCACTTCGGTGCGTTCGTCACGCCGTCGAACCGCGACCCGCAGCAGCCGGTCCGCCTCGCCCAGGCGGCCGAGGCGTCGGGGCTCGACCTGGTGACGTTCCAGGACCACCCGTACCAGCCGGGGTTCCTCGACACCTGGACGCTGATCTCCTACGCGGCCGCCGTCACCGAGACCATCCACCTGGCCGGCAACGTGCTCAACCTGCCGCTGCGCCAGCCGGCGGTGCTCGCCCGGTCGGTCGCCAGCCTCGACCTGCTCAGCGGCGGACGCATCGACCTGGGCCTCGGCGCCGGCGGGTTCTGGGACGCCATCGAGTCGATGGGCGGCACCCGCCTCACCCCCGGGCAGTCCGTCGACGCGCTCTCCGAAGCGATCGAGATCATCCGCGGCATCTGGGACGCCGGCGAGCGACGTCCCCTGCGCGCCGAGGGTGAGCACCACCGCGTCGCCGGCGCCAAGCGGGGGCCGGCGCCCGCGCACGACGTGCCGATCTGGCTGGGCGCGTACAAGCCGCGCATGCTGCGGCTCGTCGCCCGCCAGGCCGACGGCTGGCTCCCGTCGCTGGGATACATGAAGGACGGCGACCTCGCCCGCGGCAACGCCCTGCTCGACGAGACCGCCGAGGAGGCCGGGCGCCACCCTGCCGAGATCCGGCGCCTGCTCAACGTCCAGGGCACGGTGACCGCCGACCGGCAGGGGTTCCTGCAGGGGCCGGTGGACCAGTGGGTGGACGAGCTCGCCGGGCTCGCCCTCGAGGACGGCGTGGGGACCTTCATCGCCGCCACCGACGACCCGCAGCTGCTCGCCGTCCTCGGCGGGGAGATCGCGCCCGCCGTGCGCGAGCTCGTCGCCCGCGAGCGCGCCACGGCCGGGACGGCACCCGCGGCGACCCGCCGGGGACGGGCGGCCGTCGAGCTGCGTCGTGCCGGCATCGACTACGACGCCGTGCCCGCCACGTTGGCGAGCACCGCCGTCGAACCGGGCGACCGCGCCTACGACGCCGTGCGCCACAACTACTTGCGCTCCGGCGCGCCCGGCCTGGTGCTGCGGCCGCGCAGCACCGCCGAGGTGGCTGACGCCGTGAGCTTCGCGCGCTCGCAGGACGTCCCGTTGGGCATCCGCTCGGGTGGGCACGGCATCAGCGGCCGGTCCACGAACGACGGCGGGATCGTCGTCGACCTCGGCGCGCTGGACCAGATCGAGGTGGTGGACGAGGCGACGCGGCGCGTGCGGCTCGGGGTCGGCGCCACGTGGGGGCAGGTCGCCGAGGCGCTCGCCCCGCGCGGCTGGGCGATCAGCTCGGGCGACTACGGCGGCGTCGGGGTCGGCGGGCTCGCCACCGCGGGCGGGATCGGGTTCCTCGGGCGCTCGTACGGCCTGACGATCGACCACGTCGTCGCCGCGGAGGTGGTCACGGCCGACGGCCGGGTCGCTCACGCCTCCGCCGAGGAGAACCCGGACCTGTTCTGGGGGCTGCGCGGCGCCGGCGGCAACCTCGGCGTCGTGACCTGGGTGGAGATCGAGGCGATGGCGCTGGAGAACGTCGTGTTCTCCCAGATGGCGCTGGACGCCACCGACACCGCGGGTCTGCTGGAGCGGTGGGGCGCCGCGGTGGAGTCCGCGCCGCGCGAGCTCACCAGCTTCCTCATCCTGTCGCCGGCGCGCCGCGGGCAGGGTCCGGTGGCCCAGCTCATGACCGTCTACGCCGGCCACGACACCGACGCCGCCGTCGAACAGCTCGAACGGCTGGCCGACGCCGGCCCGCTGCTCGGGCACCAGGCGTACCTGCTGCCGTACTCCGGCGTCGTGCAGGCGGGGGACAAGCACCACTCCGGCGGGGGAGACCCGGCGGTGCGGTCGGGTCTGGTGACCCACCTGGACACGGCGACGAGCAGGGCGTTCGAGCGGCTCGCGCACTCGGGCGACGCCTACTTCCTGCAGATCCGGGCCACCGGTGGGGCCGCGCACGACGTGCCCGACGACGCGACGGCGTACGCGCACCGGCGGCAGAACTTCCTGCTGTCGGCGATGTCGTCGAGCCAGGAGCGGATCGACGCCGCCTGGGACGCGACCATGGCCGAGCACACCGAGGGGCTGTACCTGTCCTTCGACACGGACACCCGGCCCGAGCGGCTCACCGAGGCGTTCCCCGAGCCGACCCTGTCGCGGCTGCGCGAGGTCAAGGCCGAGTGGGACCCCGACAACATCTTCCGGGCGAACTTCCCGATCCCGCCGGCCCTCTGAMTDYGHDLHFGAFVTPSNRDPQQPVRLAQAAEASGLDLVTFQDHPYQPGFLDTWTLISYAAAVTETIHLAGNVLNLPLRQPAVLARSVASLDLLSGGRIDLGLGAGGFWDAIESMGGTRLTPGQSVDALSEAIEIIRGIWDAGERRPLRAEGEHHRVAGAKRGPAPAHDVPIWLGAYKPRMLRLVARQADGWLPSLGYMKDGDLARGNALLDETAEEAGRHPAEIRRLLNVQGTVTADRQGFLQGPVDQWVDELAGLALEDGVGTFIAATDDPQLLAVLGGEIAPAVRELVARERATAGTAPAATRRGRAAVELRRAGIDYDAVPATLASTAVEPGDRAYDAVRHNYLRSGAPGLVLRPRSTAEVADAVSFARSQDVPLGIRSGGHGISGRSTNDGGIVVDLGALDQIEVVDEATRRVRLGVGATWGQVAEALAPRGWAISSGDYGGVGVGGLATAGGIGFLGRSYGLTIDHVVAAEVVTADGRVAHASAEENPDLFWGLRGAGGNLGVVTWVEIEAMALENVVFSQMALDATDTAGLLERWGAAVESAPRELTSFLILSPARRGQGPVAQLMTVYAGHDTDAAVEQLERLADAGPLLGHQAYLLPYSGVVQAGDKHHSGGGDPAVRSGLVTHLDTATSRAFERLAHSGDAYFLQIRATGGAAHDVPDDATAYAHRRQNFLLSAMSSSQERIDAAWDATMAEHTEGLYLSFDTDTRPERLTEAFPEPTLSRLREVKAEWDPDNIFRANFPIPPALNANANANANA
AK018_04261522slyA_1Transcriptional regulator SlyAATGCCATCGATTCCGGGCTACGATGGCCTCGTGAGCACGGAGACGACGGCGGACGGGACCACCGCACACACGCCGCTCGGCTGGCCGCTGGCGGCCCTGCTGCGCGGATGGAGCGACGGCGTCGCCACCGCCTGCGCCGACGTCCCCCACGGAGCCCGCGGGTACGAGGTGCTCGCCGCCGTCGTCCACGACGCCCCGCCGACCCAGGCCTCGCTGGCCGCCCGGCTCGGCATCGACCGCACCGTCATGACCTACCTGCTCGACGAGCTCGTCGGGTGCGGCCTCGTCGAGCGCCGGCAGGACCCCGCAGACCGGCGGGCCCGCCGCATCGTCGCCACCGACCACGGTCGCACGGTGCTGGCCGACCTCGACAGCCGTGTCCACGCGGCCGAGGACGCCCTGCTCGCCGACCTCGACGACGCCGAGCGCGAGCACCTGCGCACCCTGCTGACCCGGGCCGCGACGGGGGCCGCTCCCGGCGACGACCGCTGCGCCGTCGTCGCGCGCGTCATCGACGCCTGAMPSIPGYDGLVSTETTADGTTAHTPLGWPLAALLRGWSDGVATACADVPHGARGYEVLAAVVHDAPPTQASLAARLGIDRTVMTYLLDELVGCGLVERRQDPADRRARRIVATDHGRTVLADLDSRVHAAEDALLADLDDAEREHLRTLLTRAATGAAPGDDRCAVVARVIDAPGPT0016255_135DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0016255-sylA-K06075NANA
AK018_042621596garD_1COG2721Galactarate dehydratase (L-threo-forming)ATGAGCGACCTGCTGGTGCTGCGCGACGGCGACGACGTCGCCGTGGCGACCCGTGACCTGACCCCCGGCGACCGGGCCGTGACGCCCGACGGGAGCACCGTCGTCGTGCACGGCGACGTCCCGCGGGGGCACAAGCTCGCGCTGCGCGCCGTGGCCACCGGGGACCCGGTGCGCAAGTACGGCCAGACCATCGGCGTCGCCACCGCCGACATCGCCGTCGGCGACCACGTCCACGCCCACAACCTCGGCTTCGACCCCGGTGAGCGGGAGGCGCCTCTCGGCGGAACCCGCACCGAGCTCGTCGTGCCCGACGGCCCGCGCCCCACGTTCCGTGGCTACCGGCGCGCCGACGGCCGGGTCGGCACCCGCAACTACGTGGCGATCCTGACCAGCGTCAACTGCTCGGCGTCGACGGCGAAGATGATCGCCGACAGGTTCCCCCAGGACGAGCTGGACGCGTTCGAGAACGTCGACGGCGTCATCGCGCTGACGCACACCTCCGGCTGCGGCCTGGTCCCGGACTCCGAGGGCGGCCAGGTGCTGCTGCGGACCCTGCGCGGGTACGCCGCGCACCCCAACGTCGCGGCGGTGCTCGTGCTGGGCCTGGGCTGCGAGATGGTGCCCGGGTCCGCGCTGGCCGCCCGCTCGGGGACGGTCGCCGACCTGGGGATGCCGGGGATCGGCGCCCCCGACCCGGCCGAGAGCTCGGGACTGCTCGCCGGCATCCCCGAGGACACCGTGGTCCGCTCGATGACCATCCAGGAGACCGGCGGCATCCGCGCCACCGTGCGCGCCGGCGTCGAGGAGATCCGCGCGATGCTGCCCACCGTGAACGCCCGGCAGCGCACCGAGTGCGACGTCTCCGAGCTGGTGCTGGGCCTGAACTGCGGCGGGTCCGACGGCTACTCCGGCATCACCGCGAACCCGGCGCTCGGTTGGGCGTCGGACCGGATCGTGGCCTACGGCGGCACCTCCGTGCTCGCCGAGACCCCCGAGGTGTACGGCGCCGAGCACCTGCTCACCGCGCGTGCGACGCGGCCCGAGGTCGCGACAAAGCTCCTCGACCAGCTCGAGTGGTGGCGCTCCTACATGGCCGCCGGGCAGGGCACCCTCGACAACAACCCCTCGCCGGGCAACAAGGCCGGCGGCCTGACGACCATCCTGGAGAAGTCCCTCGGCGCGGTCGCCAAGGGCGGTCAGGCCGACCTGGCCGCGGTGTACGACTACGCCGAGGCCATCACGGACCGCGGCTTCACGTTCATGGACACCCCCGGGTACGACCCCGTCTCGGTGACGGGCATCGTGGCCGGCGGGGCGAACGTCGTCGTGTTCACCACGGGCCGCGGGTCGGTGTTCGGCTGCCGTCCGACGCCGTCGATCAAGGTTGCCACCAACACCCCCATGTACGAGCGGATGAGCGAGGACATGGACCTCAACGCCGGTCGCATCGTGGACGGCACGGCGTCCCTCGAGGAGGTCGGCGCGGAGCTGCTCGCCATGATCCTCGCCGTCGCCTCGGGCGAGCAGACCGTCTCCGAGGAGCTCGGCATCGGTGCGGAGGAGTTCATCCCCTGGCACCTCGGCGCGGTCACCTGAMSDLLVLRDGDDVAVATRDLTPGDRAVTPDGSTVVVHGDVPRGHKLALRAVATGDPVRKYGQTIGVATADIAVGDHVHAHNLGFDPGEREAPLGGTRTELVVPDGPRPTFRGYRRADGRVGTRNYVAILTSVNCSASTAKMIADRFPQDELDAFENVDGVIALTHTSGCGLVPDSEGGQVLLRTLRGYAAHPNVAAVLVLGLGCEMVPGSALAARSGTVADLGMPGIGAPDPAESSGLLAGIPEDTVVRSMTIQETGGIRATVRAGVEEIRAMLPTVNARQRTECDVSELVLGLNCGGSDGYSGITANPALGWASDRIVAYGGTSVLAETPEVYGAEHLLTARATRPEVATKLLDQLEWWRSYMAAGQGTLDNNPSPGNKAGGLTTILEKSLGAVAKGGQADLAAVYDYAEAITDRGFTFMDTPGYDPVSVTGIVAGGANVVVFTTGRGSVFGCRPTPSIKVATNTPMYERMSEDMDLNAGRIVDGTASLEEVGAELLAMILAVASGEQTVSEELGIGAEEFIPWHLGAVTPGPT0018305_245DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018305-uxaA-K01685NANA
AK018_042631335yesO_2COG1653Putative ABC transporter substrate-binding protein YesOATGCGAGCAACGACCACACGCGGCCGCAAGCGCGCTGCGTTCATCGCCCTCACCGCCGCCGGTGCCCTCGCGCTCGGCGCCTGCTCCGGCGACTCGGGCGGCCCCGGGGGCGGCGGGGACGACGACGGCGGCAGCAGCGAGTCCGGTGACGTCGAGATCCGCTTCTCCTGGTGGGGGTCGGACGACCGTCACCAGACCACGCAGGAGATCATCGCGCTCTTCGAGGAGAAGAACCCCGGCATCACCGTGGTGCCGGACTACACCGACTGGGGCGGCTACTGGGACAAGCTGGCCACGACCGTGGCCGGCGGCGACACCCCGGACGTCATCACCCACGAGGAGCGGTTCATCGCCGACTACGCCAACCGTGGTGTGATCGCCGACCTCGAGTCGCTCGACATCGACACCGCCGAGATCCCCGAGAGCATCGTGGACTCGGGTCGCGTGGACGGCACGCTGTACGGCCTGGCCACGGGCGTCAACGCCTACGCGATGGTGGCCGACCCGCAGATCTTCGAGGAGGCCGGCGTCGAGATGCCGGACGACACCTCGTGGACGTGGGACGACTTCGTCCAGGTCTCCGCGGACCTGTCCGAGGCCGCCGGCGACGGCGTCTGGGGCACGCAGGACATCGGCTTCAACGAGGCCGGCCTGAATATCCTCGCCCGCCAGAAGGGCCAGACCCTCTACAACGAGGACGGTTCGCTGGGCGTCGACCAGGAGACCGTCGCCGAGTTCTTCCAGATCGGCGTCGACCTGCAGGAGGCCGGCGGCACGCCGGACGCCTCGCGCACCATCGAGTTCCAGAACGCCGGCCCCGAGGGCTCGCTGCTGGGCACCAACTCCGGTGGCATGGGCATCTGGTGGTCGAACCAGCTCGGCGCCCTGAGCGACGCCTCGGGTCACGAGTTGGAGCTGCTGCGGGTGCCGGGCGAGTCCGAGTACGAGCGCACGGGCATGTACTTCAAGCCCGCCATGTTCTACGCGGTCTCGGCCACCACCGAGCACCCGGAGGAGTCGGCGGCGTTCGTCGACTTCCTGCTCAACGACCCGGAGGTGGCGCAGATGCAGCTCACCGACCGTGGTCTGCCGTCGAACCTGACGGTGCGTGAGTCGATCACGGACCAGCTGGCCGACGCCGACGCCCGCGTGGCGGACTTCATGGCCGACCTCGAGGACGAGATCGTGGACGGCCCCCCGGTCCCGCCCAACGGTGCCGGTGACGTCCAGGACATCATGATCAACCTCAACTCCGAGGTGCTCTTCGGCTCGATGACGCCGGACGAGGCGGCGGAGGCGTTCCTGACCCAGGTCGCCGACGCCACCGAGGGCTGAMRATTTRGRKRAAFIALTAAGALALGACSGDSGGPGGGGDDDGGSSESGDVEIRFSWWGSDDRHQTTQEIIALFEEKNPGITVVPDYTDWGGYWDKLATTVAGGDTPDVITHEERFIADYANRGVIADLESLDIDTAEIPESIVDSGRVDGTLYGLATGVNAYAMVADPQIFEEAGVEMPDDTSWTWDDFVQVSADLSEAAGDGVWGTQDIGFNEAGLNILARQKGQTLYNEDGSLGVDQETVAEFFQIGVDLQEAGGTPDASRTIEFQNAGPEGSLLGTNSGGMGIWWSNQLGALSDASGHELELLRVPGESEYERTGMYFKPAMFYAVSATTEHPEESAAFVDFLLNDPEVAQMQLTDRGLPSNLTVRESITDQLADADARVADFMADLEDEIVDGPPVPPNGAGDVQDIMINLNSEVLFGSMTPDEAAEAFLTQVADATEGPGPT0016545_3843DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_04264954ngcG_4COG0395Diacetylchitobiose uptake system permease protein NgcGATGACTGACACCCCCGTGCGCCCCGACGCGCCCACCGCGACCACCGACCGGCAGCGGGTCCGCGAGCAGCGACCGCTGAGCGAGCTCGCCGCCGAGATCCCCGACACTCCGCGCAAGCGGAAGGTCGGCCCCCGCGCCCGCCGCATCCTCAAGCACGTCCTGCTCATCGGCTTCGGCCTGGTGATGCTTTACCCGCTGCTGTGGATGCTGTCGAGCTCGTTCAAGCCGAACGAGATCATCTTCCGCGAGCCGGGCCTCATCCCGACCGAGCTCGACCTGACCAACTACAGCCAGGGCTGGTTCGCCCTCCTGCACCCGTTCCACCACTACCTGCTCAACTCGGCGATCGTGGTGCTCGGGTCGGTGCTGGGCAACCTGATCTCGTGCTCGATGGCGGCCTACGCGTTCGCGCGGCTGAAGTTCCGCGGCCGGCCGCTCTGGTTCGCCATCATGCTCATGACGATCATGCTGCCGATCCACGTGATCATCGTGCCGCAGTACATCCTGTTCTCGTCGCTGGAGTGGATCAACACGTTCCTGCCGTTGATCGTGCCGAAGCTCCTCGCCACCGACGCGTTCTTCATCTTCCTGATGGTGCAGTTCTTCCGCGGGCTGCCCAAGGAGCTCGACGAGGCCGCCAGGCTCGACGGGTGCGGCCACGGGCGCATCTTCCTGCGGATCATGCTCCCGCTGTCGCTGCCGGCCCTGGCGACCACCGCCATCTTCACGTTCATCTGGACCTGGAACGACTTCTTCAGCCAGCTGATCTTCCTGACGGATCCGGAGATGTACACGGTGCCCATCGCGCTGCGGACGTTCATCGACTCCACGAGCGCCAGCTCCTGGGGCCCGCTGTTCGCGATGTCGATCGTGTCCCTCGTCCCAATCTTCTTCATCTTCCTCTTCGGCCAGAAGTACCTGGTCAAGGGGATCGCCACGACCGGCATCAAGTGAMTDTPVRPDAPTATTDRQRVREQRPLSELAAEIPDTPRKRKVGPRARRILKHVLLIGFGLVMLYPLLWMLSSSFKPNEIIFREPGLIPTELDLTNYSQGWFALLHPFHHYLLNSAIVVLGSVLGNLISCSMAAYAFARLKFRGRPLWFAIMLMTIMLPIHVIIVPQYILFSSLEWINTFLPLIVPKLLATDAFFIFLMVQFFRGLPKELDEAARLDGCGHGRIFLRIMLPLSLPALATTAIFTFIWTWNDFFSQLIFLTDPEMYTVPIALRTFIDSTSASSWGPLFAMSIVSLVPIFFIFLFGQKYLVKGIATTGIKPGPT0016540_692DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_04265924lacF_6Lactose transport system permease protein LacFATGTCTGTGATCCAAGAGGTCGCCAAGACCCGTGGCGCGAGCCGCGAGACGCGCAAGGGCGACGGCAAGGCTGCAGCGATCTTCCTCGCGCCCTGGTTCATCGGGCTCGGCCTGATCACGGCCTTCCCGCTGCTCGCCTCGCTGTACCTGTCGTTCACCGACTACTCGCTGCTCGAGGCCCCGAACTGGATCGGCCTGGAGAACTACACCGAGATGTTCGCCGACCCGCGGTGGACCAAGTCCCTCGCGGTGACGTTCCAGTACGTGTTCATCTCCGTGCCGCTGCAGCTCGCCGCCGCCCTGGGCCTGGCGATGGTCCTCGACCGGGGCCTGCGCGGGCTGGCGTTCTACCGCTCGGTCTACTACCTGCCCTCCCTGCTGGGCAGCTCGGTGGCCATCGCCCTGCTGTGGCGCCAGGTGTTCGGCGCGGACGGCCTGGTCAACCAGGTCCTGGCCTACTTCGGAATCGAGGGCGTCGGCTGGGTGTCCCACCCGGACTACGCGCTCGGCACGCTGATGATCCTCAACGTGTGGACCTTCGGTGCACCGATGATCATCTTCCTCGCCGGCCTGCGGCAGATCCCGACGATGTACTACGAGGCCGCCTCGATCGACGGGGCGAGCAAGCTCCGGCAGTTCTTCAACATCACGATCCCGCTGCTGAGCCCGATCATCTTCTTCAACCTCGTGCTGCAGCTCATCGGGGCCTTCCAGACGTTCACCCAGGCCTACATCGTGTCCAACGGGACCGGCGGGCCGATCGACTCCACGTTGTTCTACACGCTGTACCTCTACAACGAGGGCTTCGGGTCGTACAACATGGGCTACGCGTCGGCGATGGCCTGGTTCCTGCTCCTCATCGTCGCGGGCCTGACCGCGGTGAACTTCTTCGCCTCCAAGTTCTGGGTCTTCTACGATGACTGAMSVIQEVAKTRGASRETRKGDGKAAAIFLAPWFIGLGLITAFPLLASLYLSFTDYSLLEAPNWIGLENYTEMFADPRWTKSLAVTFQYVFISVPLQLAAALGLAMVLDRGLRGLAFYRSVYYLPSLLGSSVAIALLWRQVFGADGLVNQVLAYFGIEGVGWVSHPDYALGTLMILNVWTFGAPMIIFLAGLRQIPTMYYEAASIDGASKLRQFFNITIPLLSPIIFFNLVLQLIGAFQTFTQAYIVSNGTGGPIDSTLFYTLYLYNEGFGSYNMGYASAMAWFLLLIVAGLTAVNFFASKFWVFYDDPGPT0016535_4879DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_042661968purR_2HTH-type transcriptional repressor PurRATGCCCGGCGCCACCACACGCCGTCCCACGGTGACGATCGCCGACGTCGCATCCGCGGCCGGCGTCTCCCGTGCGACGGTCTCCCGGGTGATGAACGGCCGCAGCACGGTCGACCCCGCGATCTCCGCGCGCGTGCAGGAGGCGGCGATCGAGCTCAACTACCGTCCCAGCAACGTCGCGCGCAGCCTGTCGCTCGGCCGCACGACGACGGTCGCCCTCGTCGTGCCCGACCTCGGCAACCCCGCCTTCCAGCAGGTGCTGCGCGGCGTCTCCTCCGCGGCCGGCGAGGACGGGTACCGCGTCCTCGTCGCCGACTCCGCCGAGGACCCCGCCACCGAGGCGGCCATCGCCCTCGAGGCCCGGACCCGGTGCGACGCGCTCATCCTCGTCTCCCCGCGGATGCCCGACTCCGCGCTCGACGCCCTGCTGCCCGACGTCACCCCCGCCGTCGTCGTCAACCGGGAGGTCGCCGGCGGCGCGCCCAGCCTCGTCGTGGACTACACCGACGCGATGGTCCAGGTCGTCGAGCACCTCGTGACCCTCGGCCACCGCCGCATCGCCTACCTGGCCGGACCGCCGGCCTCCGTCTCCGACCTCGCCCGCCGTCGCGGCCTCGCCGCGACCACGGCACGGTACCCGGACCTCGAGATCGTCGAGGTGCCCACCGGGTCCGACATCGCCGCCGGGCACTCCGCCGCACCGGCGGTCCTCGCCAGCCGCGTCACCGCCGCCGTCGCCTTCAACGACCTGGTGTCCTTCGGCCTGCTCGCCGCCCTCAACGAGGCCGGCGTCGCCGTCCCCTCGGACATCTCCGTGTGCGGCTTCGACGACATCGAACTCGCCCGGTACGCCACACCGGGCCTGACCACCGTGGCCGTCCCCCAGGAAGAGCTGGGGCGCCACGCCTGGAGGGAGCTCCACGCCGTGATCGACAACGCCGCGGGCGCCGCCGAGACCACCCGGTTCGGCGTCCGCCTCGAGAAGCGGGCCAGCACCGGCCCCGTCCCCCGCGACGCCGTGCACGCCGACGTCTCGTCGACGGAGGCCACCGCCCCCGTCGTGGAGGCGACCGCCGAGCAGGAGCCCGAGCAGGCCCCCGCGTGGACGGTCGAGCACGGCGTGCCCGTGCTCCGCCGCAGCGCCGACCACGTGCCGCTGTCCCGGTACGACTCGGGGACAGCGCTGCCCACGATCCACTCCCCCCGCCCGTACCTGCACCCGGTGCACTCGCTGGCCGGGGTCCCGCTCACCGAGTCCGGACCCGTGGACCACCGGCACCACTACGGCGTCAGCATCGCGGTGCCGGACGTCAACGGCACGAGCTACTGGGGCGGGCGCACGTTCGTCACCGACGTCGGCCCCACGCTCCTGCCCAACCACGGCCGCCAGACCTCGGTCGGCACCACCATCGACCCCCTGACGCCCAACGTGCTGCTCGACACCGTCGCGTGGACCGACGAGAACGGCGACCCGCTGCTCGACGAGCGGCGCCGCATCGGCGCGCGACTCCTCGCCGACGGTTGGGTGCTCGACTGGCGTTCCACGCTGCACGCCGCTCACGGCCCGCTCGAGATCCGCTCCCCCGCGACCAACGGTCGTCCGGGCGCCGGGTACGGCGGCGTCTTCTGGCGACTGCCGATCGCCGCCTCGACCCGCGTGCTCTCGGCGGCCGGCGAGGGCCAGGACGCGGCCCACGGCTCCACCTCGCCGTGGGTGGCGTTCGTCCAGCGGCACCGCGACGCCCGCGGCGACGAGCGCGCCACGACGACGCTGCTGACCCAGACGTCCCCGGCACGCCACTGGTTCCTGCGCTCCGAGGAGTACCCGGGCGCCTGCCCCGCCCTCGCCTGGGACACCCCCCTGCACATCCCCGCCGGCGGCACCGTCGAGACCGGCGTCGTCGCCGCGCTGATCGACCGCGAGCTCGACGCCGACCAGGCCGCCCAGCTGGCGACCGGCCTGCGCTGAMPGATTRRPTVTIADVASAAGVSRATVSRVMNGRSTVDPAISARVQEAAIELNYRPSNVARSLSLGRTTTVALVVPDLGNPAFQQVLRGVSSAAGEDGYRVLVADSAEDPATEAAIALEARTRCDALILVSPRMPDSALDALLPDVTPAVVVNREVAGGAPSLVVDYTDAMVQVVEHLVTLGHRRIAYLAGPPASVSDLARRRGLAATTARYPDLEIVEVPTGSDIAAGHSAAPAVLASRVTAAVAFNDLVSFGLLAALNEAGVAVPSDISVCGFDDIELARYATPGLTTVAVPQEELGRHAWRELHAVIDNAAGAAETTRFGVRLEKRASTGPVPRDAVHADVSSTEATAPVVEATAEQEPEQAPAWTVEHGVPVLRRSADHVPLSRYDSGTALPTIHSPRPYLHPVHSLAGVPLTESGPVDHRHHYGVSIAVPDVNGTSYWGGRTFVTDVGPTLLPNHGRQTSVGTTIDPLTPNVLLDTVAWTDENGDPLLDERRRIGARLLADGWVLDWRSTLHAAHGPLEIRSPATNGRPGAGYGGVFWRLPIAASTRVLSAAGEGQDAAHGSTSPWVAFVQRHRDARGDERATTTLLTQTSPARHWFLRSEEYPGACPALAWDTPLHIPAGGTVETGVVAALIDRELDADQAAQLATGLRPGPT0014791_3DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_042671143iolG_7Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACCACCCCACGCATCGCCGTCGTCGGCATCCACGGGCACGGCGAGAAGCACGTCCAGCACAGCCGCGCCCTGCAGGACGCCGGTCGCGCCCGGCTGGCTGCCGTCGTCGACCCGAGCGAACCGCTCGAGGGCCACAGCGCCCACGGCACCGCCTGGTTCCCCACGCTGGGCGACCTGCTGTCCTCCCCGGACCCGGACGTCCGGCCCGACGTCGTCGTGCTGTGCACGCCCATCCCGACCCACCTGCCCCTCGCCCGCGCCGCGATGGAGGCCGGGATGGACGTGCTGCTCGAGAAGCCGACCACCGCCTCGCTGGCGGAGCTGACGGAGCTGGTGGCCGTCACCGAGCGGACCGGGCGGCTGTGCCAGGTCGGGTTCCAGACGTTCGGGTCGCACGCGGTCCCCGCCGCCGCCGAGCTCGTCGCACGCGGCGAGATCGGTGAGGTCCTCGGCTACGGCGCCGTCGGCACCTGGGTGCGCGACACCGCGTACTGGAACCGTGCCCCCTGGGCGGGACGACGGCAGCTCGACGGCCGGGACGTCGTCGACGGCGTGGTGACCAACCCGCTCGCCCACGCCGTCGCGACGGCGATGCGGATCGGCGGCGTGACCCGGGCCGACGACATCGCCTGGGTGGAGACCGACCTGTACCGGGCCAACCCGATCGAGTCCGACGACACGTCGTCGGTCCGGGTCACCGCCACCGACGGCACCCGCTACGGGTTCGGGCTCACCCTCTGCGCGCCCGAGCGCTCCGACGCCAGGATCATCGTCAGCGGTACCCGCGGCGAGATCGAGCTGGCCTACGAGCACGACCGCCTGGTGCTGCGCAGCAACCGCATCATCATGGACAAGACGTACGGCCGCACCTCGCTGATCGACGACCTGCTCGAGGTCCGCGCCTCGTCCGACCCCGACCGCCGCCTCCTGTGCGACGTGCGGGACACCGGCGCGTTCATGCGGGTCATGGAGGCCGTGCGGACCGGGCCGGACCCCGCGCCGATCCCGGCCGAGCACGTGACGTGGCACGGCGAGGGCGACGAGCGCCGGCCCGAGGTGCGCGACGTCGAGCAGTGGTGCGAGCGCGTGGCCCGGACCCAGCAGACCTTCGGCGAGCTCGGGGCGCCCTGGACCCGCTGAMTTPRIAVVGIHGHGEKHVQHSRALQDAGRARLAAVVDPSEPLEGHSAHGTAWFPTLGDLLSSPDPDVRPDVVVLCTPIPTHLPLARAAMEAGMDVLLEKPTTASLAELTELVAVTERTGRLCQVGFQTFGSHAVPAAAELVARGEIGEVLGYGAVGTWVRDTAYWNRAPWAGRRQLDGRDVVDGVVTNPLAHAVATAMRIGGVTRADDIAWVETDLYRANPIESDDTSSVRVTATDGTRYGFGLTLCAPERSDARIIVSGTRGEIELAYEHDRLVLRSNRIIMDKTYGRTSLIDDLLEVRASSDPDRRLLCDVRDTGAFMRVMEAVRTGPDPAPIPAEHVTWHGEGDERRPEVRDVEQWCERVARTQQTFGELGAPWTRNANANANANA
AK018_042681419yteT_1COG0673Putative oxidoreductase YteTATGACGTCCACCCTCGCAGCCTCCACACCCCCCACGGCCGGTACGGCCCGGCCCTCCGGGTCCGACGACGGTCGCGCCGCCGACGACGGTCGCGTCCCCGCCGTGGCCGCCACCGCCCAGCCGACGTCCGCCGTCCGGCGCCGCTACGCCGTCGTCGGCACGGGGCAGCGTGCCGGCGCCTACCTCGACGCGATGACGGCCGAGCACGCCGACGTCGCCGAGGTCGCCGCGCTCTGCGACACCAACGCCGACCGGCTGGACGTGCGCGCGGAGCAGGTCCGAGGGCGCACCGGCGTGCCACCGCGGCGCTACGAGGCCCCCCGCCTGGAGCGGATGTTGTCCGACGTCGCACCCGACGTCGTCGTCATCACCTCCCCGGACCGCCACCACGCCCACCACGTGACCGCGGCGCTCGACGCGGGGGCCGACGTCGTCGCCGAGAAGCCGCTCACCATCGACGCCGCCGGCATGTACTCCATCGCCGACGCCGTGCGCCGCTCGAACGGCCGGCTCACCGTCACCCACAACTACCGCTACGCCGCACGCAACGCCGCGGTCCGCCGGATCCTCGCCGAGGGGCGCATCGGCGACGTGGTCTCCGTGCACTTCGAGTGGCTGCTGGACACGGCGCACGGCGCGGACTACTTCCGCCGCTGGCACCGGGACAAGGCGGCGTCCGGCGGCCTCCTCGTGCACAAGGCGAGCCACCACGTCGACCTCGTGAACTGGTGGACCGGCGACGTGCCGGAGTCGGTCTACGCCCGCGGTGGACGCCACGTCTACCAGCACCCGGACGGCGTCGGCGGCCCGGAGTTCGCGATCGACCTGACCGCCGACGCCGACCTCGCCGCCCTGTACGCGGGTCCTGCCGCGCTCGACGGCTACCGGCGCGACCGCGACCCCTTCAGCCCCGGGGCGACCATCGAGGACACCCTCAGCATGCTGGTCGGGTACCGGTCGGGCGCCGCGATGACCTATGCGCTGACCGCGCACAGCCCGTGGGAGGGGCGCCGCGTCGCGATCAACGGCACGCGTGGGCGGCTCGAGCTCGACGTCGTCGAGCGGTGCCACGCGCGTCCCGGTCTGGAGGGGCTCGTGGTGCCCGACGGCGGAGCACCTGCGTGCTGCGAGGTGCGGCGGCGCGGGGGGCGGCTGGTGGTCCAGGAGCAGTGGGGTGTCGCCGAGGAGGTGCCCCTCGACGCCGAGGCCGGGCACGTCGAGGGGGATGCCGCGATGCTGCGCGACGTCCTGCGTGGACATCTCCCCGCCGACCGGGGCGGAGCGGGTGACGACCCGCTGGGCCGACGGGCCGGGCTTGTCGACGGGCTGCGTGCGGTCGCCGTCGGGGTCGCGGGCAACCGGTCGCTCGCGACCGGTCAGGTGGTGCCGACGTCGGCCCTGGGCGTCGACCTGGCGTGAMTSTLAASTPPTAGTARPSGSDDGRAADDGRVPAVAATAQPTSAVRRRYAVVGTGQRAGAYLDAMTAEHADVAEVAALCDTNADRLDVRAEQVRGRTGVPPRRYEAPRLERMLSDVAPDVVVITSPDRHHAHHVTAALDAGADVVAEKPLTIDAAGMYSIADAVRRSNGRLTVTHNYRYAARNAAVRRILAEGRIGDVVSVHFEWLLDTAHGADYFRRWHRDKAASGGLLVHKASHHVDLVNWWTGDVPESVYARGGRHVYQHPDGVGGPEFAIDLTADADLAALYAGPAALDGYRRDRDPFSPGATIEDTLSMLVGYRSGAAMTYALTAHSPWEGRRVAINGTRGRLELDVVERCHARPGLEGLVVPDGGAPACCEVRRRGGRLVVQEQWGVAEEVPLDAEAGHVEGDAAMLRDVLRGHLPADRGGAGDDPLGRRAGLVDGLRAVAVGVAGNRSLATGQVVPTSALGVDLANANANANANA
AK018_042691347yteT_2COG0673Putative oxidoreductase YteTATGCCCTCCACCACCCCCCTCCGATACGCCGTCGTCGGCACCGGCCACCGCGCCGGCATGTTCGTCGGCGGACTCCTCGACCAGCACGCCGACGTCGGTGAGATCGTCGCGTGGGTCGAGCCCAACCCGGTCCGCGCGGCCGTCCACGAGGCCCGCGTCGCCGACAAGGTCGGCGGGACCCGGCCGGTGTACGGACCCGCCGACCTGGAGAAGGCGATCGCCGAGCAGCGGGTCGACCGCGTCGTCGTCACAAGCATCGACAACACGCACGCCGAGATGGTCGCGCGGGCGCTGCGCGCAGGGGTCGACGTCGTCGTCGAGAAGCCCATCGCCGCGACCGCCGCCGAGGCCCGGGTGATCGCCGACGCCGTCGCCGAGACCGGCCGCGACGTGACGATGACGTTCAACTACCGCTACTCGCCGCGGAACTCTTCCCTGCGCCAGGTCATCGCCTCCGGCGAGATCGGCCAGGTGCTCTCGGTGCACTTCGACTGGGCCCTCGACACCGTCCACGGCGCCGACTACTTCCGCCGTTGGCACCGCGAGAAGGTGAACAACGGCGGGCTGCTGGTCCACAAGTCGAGCCACCACTTCGACCTGGTGAACTGGTGGATCGACGACGTGCCCACCCGCGTGTTCGCCAGCGGCGGGCGGCGCTTCTACGGCGACGACGGCGCGCACGAGACCGACTACGAGCCCACCGACGGCGAGCGCGAGCTGCGCGAGCAGGGGATCGACCCGTGGGCGCTCGACGTCGACGGCGACGAGTACCTGTCCGCGCTCTACGGCCCTGAGGCCCAGGCTCATGACGGGTACGTGCGCAACAAGTCGGTGTTCGACGCCGGGATCACCACGGAGGACACGCTCGGCCTGGTCGTGGAGTACGCGGGCGGCGCGATGCTCACCTACTCGCTGACGGCGCACTCGCCCTGGGAGGGATACCGCGTCGTGGTCAACGGGACGCGGGGTCGGGCGGAGCTGGAGGTTGTCGAGCGGGGCTCGGTGATCTTCGGTGACGGCAAGGCGATCCTGGACCCGAGCTTCACCGACGCGTACGCCGAGGACGCGGTGCGGCCGGTCGCGGAGCGCCTCGTCGTGCAGAAGCACTGGGAGCGCGCGGAGGAGCGCGAGATCGTCGCGATCGGCACCGGCGGGCACGGCGGAGGCGACGACCTGCTGCTGTCGGACGTCTTCCGCGGGGCCGACGAGACCGACCTGCTCGGTCGGGCTGCCGGGTTCCTCGACGGGCTCCGCGCCTCGGGCGTCGGGTACGCCGGCAACCGGTCGCTCGAGACCGGCGAGCCGGTGCGTCTGGCGGACTTGGGCCTCGGCGTCGACCTGGGCTGAMPSTTPLRYAVVGTGHRAGMFVGGLLDQHADVGEIVAWVEPNPVRAAVHEARVADKVGGTRPVYGPADLEKAIAEQRVDRVVVTSIDNTHAEMVARALRAGVDVVVEKPIAATAAEARVIADAVAETGRDVTMTFNYRYSPRNSSLRQVIASGEIGQVLSVHFDWALDTVHGADYFRRWHREKVNNGGLLVHKSSHHFDLVNWWIDDVPTRVFASGGRRFYGDDGAHETDYEPTDGERELREQGIDPWALDVDGDEYLSALYGPEAQAHDGYVRNKSVFDAGITTEDTLGLVVEYAGGAMLTYSLTAHSPWEGYRVVVNGTRGRAELEVVERGSVIFGDGKAILDPSFTDAYAEDAVRPVAERLVVQKHWERAEEREIVAIGTGGHGGGDDLLLSDVFRGADETDLLGRAAGFLDGLRASGVGYAGNRSLETGEPVRLADLGLGVDLGNANANANANA
AK018_042701038fabH_2COG03323-oxoacyl-[acyl-carrier-protein] synthase 3ATGATCGATGCCATGCTCACGCTGCCCGCCGGTGCCGCCGGCTCCCGGATCGTCGGCCTCGGTCACCACCAGCCCGCCAAGGCCCTCACCAACGACGACGTCGCCCGCTTCGTCGAGACGAACGACGAGTGGATCCGGTCGCGGACCGGCATCGTCACCCGGCACGTGGCGGCCGACGACGTGACGGTCGCGGACATGGCGACCGCTGCGGCGGAGCACGCGCTGGCGGACGCCGGGGTTCCGAGCGAGGACGTGGACCTGGTCGTGGTCGCGACGACGACGGCGGTGGACCGTTCCCCGAACACGGCCGGCCGCGTCGCCTACGCCCTGCGCACCGGGGTCCAGCCCGGGGCGAGCACTCCCGAGGGCGAGGAGGAGCCGGACCTGCGCGACGTCGTCGGGCCGGGCGTGATCGACGTCAACACGGCGTGCTCGGGGTTCGCCTACGCCGTGGGGCTGGCGGACCAGGCCATCCGCACGGGCGGCGCGCGCACCGCCGTCGTCGTCGGGTCGGAGAAGCTCACGGCCGTCACCGACTGGACGGACCGGTCCACCTGCATCCTCACCGCGGACGGGGCGGGTGCCGCGGTGCTGCAGGCCGCGGACGAACCCGCCGTCGGGCAGGTCGTGTGGGGCTCCGAGCCGGAGATCACGCCGGCGGTGCGCATCGAGGCACCCGGGGAGAAGTTCGCCCAGGACGGGCGGGCGGTGTTCAAGTGGGCGATCACGCGGGCCGCCGAGCGGGCGCGCCGCGTGGTGGCGGCGTCGGGGCTGACGCTGGACGACGTCGAGGTGCTGGTGGCGCACCAGGCCAACCTGCGCATCATCGAGCCGCTCGCCAAGTCGCTGGGGCTCGAGGACCGTGTGGTGGTCAGTGACATCACCGAGTCGGGCAACACGTCCGCCGCCTCGATCCCGCTGGGCCTGTCCAAGTGGTGGCACGCGGGCCGGATCCCGGCAGGTGTGCCGGCGCTGCTGTTCGGGTTCGGGGGAGGGTTCACCTGGGCCGGCCAGGTGGTCGTGACCCCGGAGCGCTGAMIDAMLTLPAGAAGSRIVGLGHHQPAKALTNDDVARFVETNDEWIRSRTGIVTRHVAADDVTVADMATAAAEHALADAGVPSEDVDLVVVATTTAVDRSPNTAGRVAYALRTGVQPGASTPEGEEEPDLRDVVGPGVIDVNTACSGFAYAVGLADQAIRTGGARTAVVVGSEKLTAVTDWTDRSTCILTADGAGAAVLQAADEPAVGQVVWGSEPEITPAVRIEAPGEKFAQDGRAVFKWAITRAAERARRVVAASGLTLDDVEVLVAHQANLRIIEPLAKSLGLEDRVVVSDITESGNTSAASIPLGLSKWWHAGRIPAGVPALLFGFGGGFTWAGQVVVTPERPGPT0008355_1826DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648NANA
AK018_042715541hypothetical proteinGTGCACAATGCGAACAGGCACTCGCGGGCGACGCGAGTAAGCGCTTTCTATCGATCGGACACTCCATCCACCAGAGGTCGCGCCACGCGCCCGCTGGTCGCCGGGGCAGCCGCGGCCGCCCTGGTCCTGCCGCTGATGCCGGCCGTCGCGCACGCCGCGAACGACCCAGCTCAGTGGTCCTTCGACTTCGGCACCGCCGACAGCCCGGTCGCCGACGGCTTCCAGCGCGTCAGCGAGGCGTCGACGTACTCCGAGGACGCCGGGTTCGGCGTCGTCTCCGGGGACGTCGGTTCCCGCGACCGCTCCACCGACGTCGACGCGCTGACCGGCGACTTCGTGCTCGCCGCCCAGTGGCAGTTCGCGGTCGACGTCCCCGACGGCACCTACGACGTCGAGATCTGGGCCGGGGACACCCTGGCCGGGACGTCCAGCGTCCGCACCACCGTCTCCCTCGAGGGCGGCACCGAGACGCACATCCGCGCCGACGCCGAGACCGTCGCCTCCGAGACGATCCGCGTCGAGGTCGCCGATGGCCAGCTCACCGCCGACCTCACCGGCAAGGGCTACGGCTACGTCAACGGCATGCAGATCACCGAGGTCCCCGACGACGGTTCGGGCGACGGCGGCGACGACGGCGGTGACGACGGCTCCGGCGACGGGGGCGACGACGGCACCACCGGCATCGCCGGACCGGAGAACGTCCGCATCGCGCACTCCGACGCCGACCAGGTCGTGGTGCGCTGGAACGAGGTTGCCGGTGCCACCGAGTACGTGCTGACCCGCAGCGACGCCGTCGACGGCGAGTACACGGAGATCGCCCGCACCGGCTCGCGCGAGGTCTTCTACGCCGACACCGACGTGGACACCTCCGCGGTCCACTACTACCGGGCGCTCGCCGTGACCGACGAGGGCACCACCGACCCGTCCGCGCCGGTCGTCAGCACGCTGGCCGAGGAGCCGACGTTCCCCGAGGACGGCACCCTGCAGATCGACCTCGGCTCCGGTGCCGTGGCCGACGGGGCCGTCGGCGTCGACGCCGGCACGGCGTACACGGCCGAGAACCGCCTCGGGTTCGTCGACGCCTCCGTGGTGTCCGCGACCGACGACGGCGGGGACAACGCACTCAAGGGCGACTACGTCACGTCCGACGGCGGACAGCTCGTCGTCGACCTGCCGAACGGTGACTACTCGGTCGACCTGATCGCCGGTGCGGCCGACGCCGCGACGGACGTCGCGATCACCGCCGAGCAGATGGCCAAGGTCCAGCAGACCGAGCGCGCCGCCGGCGAGTACCTCGAGATGCAGTTCGACATCGCGCTCGTGGACGGTCAGCTCAACCTCGAGCTCGCCGGCGACGCCGCGAACCTCAACGCCCTGACCATCACCCGCGCGGACGACCGCGAGGCGGGCGACCAGCCCACCGTGTTCGTCACGGGTGACTCGACGGTCCAGACCTACGACCCGTACTGGGCACCGCAGGCCGGCTGGGGCCAGATGATCGAGCGCTACCTGTCCGACGACGTCGTGGTCGACAACCACGCGATCGGCGGCCGGTCCTCGAAGAACTTCATCAGCCAGGGCCGCCTCGACACCGTGCTCAAGCAGATCCGTCCGGGCGACTACCTGTACGTCCAGTTCGGGCACAACGACAACAGCTACGGCGTCGACGACCGCTGGGCAGCCCCGGGCGACTACGCCTGGTACCTGCGCACGTTCGTCGAGGGCGCCGTCCAGCGTGGTGCGCAGCCGATCCTCGTCACGCCGGTCTCGCGCCGGTCGTTCGACGCGGACACCGGGCAGTTCAACGTGTCCTTCCCGGAGTACGTCCAGGCCGCCACCGACGTCGCCGCCGACACGGGCACGCCGCTGGTGGACCTCTCGGCCTCGTCGCGGGAGTACCTGAACGAGATCGGTCCGGAGGCCGCCAAGAGCGTGTTCCTGCACGTCCCGGCGGGCGTCTACCCGAACCGGCCCGACGGCACGACGGACGACACCCACTTCCAGGAGTACGGCGCCATCCAGATGGCCCGCCTGGTCGCCCTGGACACCGGCGAGCTCGACGTCCCGCTCGCGGACGAGGTCACCGACGCCGAACCGCCGGCCGACGTGCCCGCCGCACCGGCCGGCGTCGTCGCCGGGAGCATCTCCGCCTCCAGCGCCACGCTCACCTGGACCGAGGTGGAGGGCGCGGACATCTACAAGGTGTTCGCCAAGGCCTCCGACGCCGGTGAGGACGCCTACGAGCTCGTCACGACGTCGACGATCGGTGTCGCGAACGTGACCGGCCTGGAGGCCGGCACCTCGTACGACCTGCAGGTCGTGGCCGTCAACGGTGCGGGCGACTCCGCGCCGTCGGACACCGTGACGATCGAGACGAAGGCTCCGCTGTACTCGTTCGACCTGCAGCTCGCGGGCAACCCGACGAAGGACGGCTACCTGCCCTTCGACGAGACCACGCTGTACACCGACGAGCTCGGCTACGGCTTCACCTCGGACTCCGGTCCCGGCGGTCGTGACCGCGGCACCGGTGACGGCCAGCTCGACGACCTGCAGCGCGACTTCCTGCTGCCGAGCGCGAGCACCCCGATCCGCGTGGACGTCCCGAACGGCACCTACGCCGTCGAGGTCATCTGGGGCGACCTCATCGGCACCGCCCGCCTGGGCGTGACGGTCGAGGGCACCGACTACGGGTCCTCCAACGCCGGCCGCGGCGGCACGTCGAGCAAGATCGTCCAGCCGGTGGTCGTCACCGACGGGAAGCTCGACATCGTGGCCGAGGGATGGTTCAACGGTCTGGAGATCACGCCGCTGCTGTACGCGCCCACCGCGCTGACCGCCGGCGACGTGTCCATCGACGGGTCCGCCGTCGAGGTTCCGCTGAGCTGGGAGCCCGCGCAGGACGTGGCCGGCTACCGCGTGTACCGCCAGGCCGAGGGCGCCGCCGAGCCGACGGCGCTCGGCGACGTCGAGGCGGGCACCACCGAGTTCGTCGACACGACGGCGGACGTGGGCCTGCAGTACACGTACACGGTCGTGGCCCTGGACGACGCCGGCACCGAGTCGGTGGCCTCCAACGCGCTCGAGCTGACCACGGTGGACCCGGACGTCCCGACCGCGGCGACGCCGTCGGGCCTGTCCGTGACCGACGTGGCCAAGAACGAGGTCGCCCTCGCCTGGGAGCCGGTCGAGGACGCGCTGTTCTACCACGTCTACCGCGAGGACAAGAACGGCGAGCTCGTGCTGGTCGACCGCGCCTCGGACGCCGAGTACACCGACACCGACGTGCTCACCACCGTCGGGTACACCTACGCGGTGGCCTCGGTGAACGCCGGTGGCGTCTCCGAGCTCTCGGAGACGGTGACCTCGGAGGCCGTGACGAACCTGTCGCGGCAGGCCGAGCGCATCGGCCGCCAGCCGGTGGCCGCGCAGTCCGAGGACGGGATCTACGTCGGCTGGCGCATGCTGGGCGAGGACCCGGAGTCGATCGGCTTCCACGTCTACTGTGACGGGGAGCAGCTCACCGACGAGCCGGTGGCCGGGTCCACGAACTACGTGGACGCCGACGGCGGTGCCGACTCCACCTACCGCGTCTCCGCCGTCGTCGACGGCATCGAGCGGTGGGCCACGGCCGAGTTCGCCGTGTGGGACGGCCAGACCCTGGACATCCCGCTGAACAAGCCCGAGGACGCCTACACCAAGGACGGCCAGCCGTACACCTACTCCGCGAACGACGCCTCCGTGGCGGACCTCGACGGGGACGGCGAGTACGAGTACGTCGTCAAGTGGTACCCGTCCAACGCGAAGGACAACTCGCAGGGTGGCTACACCGGCAACACCTACCTGGACGCCTACGAGCTCGACGGCACCCAGCTGTGGCGCATCGACCTCGGGGTCAACATCCGTTCCGGCGCCCACTACACGCAGTTCCAGGTGTTCGACTACGACGGCGACGGCAAGGCCGAGGTGGCGATGAAGACCGCCGACGGCACCACCGACGCCGCCGGGACGGTCATCGGGGACGCGCGGGCCGACTTCCGCACCTCGGGCGGCTACGTGCTGTCCGGGCCGGAGTACCTGTCGGTGTTCGACGGCGAGTCCGGCGTCGCGCTCGACACGATCGACTACGTGCCGCCGCGCGGCGACGTCGGCTCGTGGGGCGACGGCTACGGCAACCGCGTCGACCGGTTCCTGGCCACCACGGCCTACCTGGACGGCGAGACCCCGTCGATGGTGTTCTCCCGCGGCTACTATACCCGGGCCGTCATCGCGGCCTTCGACTGGGACGGCTCCGAGCTGACCCAGCGTTGGGTGTTCGACTCCGACGAGCAGGGCGACCAGTACCGCGGTCAGGGCAACCACGACATGCAGACCGCCGACGTCGACGGCGACCAGAAGGACGAGATCGTCTTCGGGTCGATGACCATCGACGACGACGGCAGCATCTGGGTCAACACCGGGCTCGGGCACGGCGACGCCATGCACGTCTCGGACTTCGACCCGACGCGTCCGGGGCTGGAGCAGTTCGCGGCCCACGAGGACATGGGGCGTGCCGAGAACCGTGGCGCCACCTTCCGTGACGCCGCCACCGGCGAGATCCTCTGGTCGATCCCGGCCGAGCGGGACACGGGCCGTGCCGCCATGGCGGACATCGACCCGCGCTACGACGGCGCCGAGGGCTGGGCCGTCGGCGGTGACGCCGCGTGGAACTCCGAGGTCGGCCAGCTCGTGTCGTCCTCGACCGGTGAGGTGATCGCCGAGTCCATCCCGGCGGCCAACTTCACCACCTTCTGGGACGGCGACCTGCTGTCCGAGATCGGGGACCACGACTGGGACGCCGACACCTCCACGGGGGTGCCGACGATCTCGAAGTGGGACTACGAGAACGCCGAGGAGGTAGAGATCTACCGCGCCGAGGGCACCCAGTCCAACAACAGCACCAAGGGCACGCCCGCGGTGCAGGCCGACCTGTTCGGCGACTGGCGCGAGGAGATCGTCACCCGCACCGACGACTCGACCGCGTTGCGGATCGCGACGACGGTGATCCCGACCGAGCACCGTCTGCGGACGCTCATGTCGGACTCCCAGTACCGCACGGCCGTGGCCTGGCAGAACACGGGCTACAACCAGCCGCCGCACACCTCGTACTTCATCGGCGAGGACATGGAGACGCCGGACGCACCGCGCCTGGCGTACACCACGGCGGGGTCCGAGGGTGAGCTCGTGAACGCCCCGGACGTCTGGGACGCCGGGACCGTCTACACCGAGGGCGACCTGGTGCAGCACGACGGTTCCGTGTTCGAGGCGCTGTGGTGGACGCGTGACCAGGAGCCCGGCTCGTCGCCGTACGGCGCCTGGGCGGAGATCGGCCCGCTCGGCGAGCCGGCCCCGGAGTGCGGTGCGGTGTGGACCGACAGCCGGATCTTCACCGCCGGCGACACGGTGGTGCACGACGGCGCGGTCTGGACGGCGCTGTGGTGGACCCGCAACCAGGAGCCCGGCGCCTCGCCGTGGGGCCCGTGGGAGCAGACCGGGGAGTGCTGAMHNANRHSRATRVSAFYRSDTPSTRGRATRPLVAGAAAAALVLPLMPAVAHAANDPAQWSFDFGTADSPVADGFQRVSEASTYSEDAGFGVVSGDVGSRDRSTDVDALTGDFVLAAQWQFAVDVPDGTYDVEIWAGDTLAGTSSVRTTVSLEGGTETHIRADAETVASETIRVEVADGQLTADLTGKGYGYVNGMQITEVPDDGSGDGGDDGGDDGSGDGGDDGTTGIAGPENVRIAHSDADQVVVRWNEVAGATEYVLTRSDAVDGEYTEIARTGSREVFYADTDVDTSAVHYYRALAVTDEGTTDPSAPVVSTLAEEPTFPEDGTLQIDLGSGAVADGAVGVDAGTAYTAENRLGFVDASVVSATDDGGDNALKGDYVTSDGGQLVVDLPNGDYSVDLIAGAADAATDVAITAEQMAKVQQTERAAGEYLEMQFDIALVDGQLNLELAGDAANLNALTITRADDREAGDQPTVFVTGDSTVQTYDPYWAPQAGWGQMIERYLSDDVVVDNHAIGGRSSKNFISQGRLDTVLKQIRPGDYLYVQFGHNDNSYGVDDRWAAPGDYAWYLRTFVEGAVQRGAQPILVTPVSRRSFDADTGQFNVSFPEYVQAATDVAADTGTPLVDLSASSREYLNEIGPEAAKSVFLHVPAGVYPNRPDGTTDDTHFQEYGAIQMARLVALDTGELDVPLADEVTDAEPPADVPAAPAGVVAGSISASSATLTWTEVEGADIYKVFAKASDAGEDAYELVTTSTIGVANVTGLEAGTSYDLQVVAVNGAGDSAPSDTVTIETKAPLYSFDLQLAGNPTKDGYLPFDETTLYTDELGYGFTSDSGPGGRDRGTGDGQLDDLQRDFLLPSASTPIRVDVPNGTYAVEVIWGDLIGTARLGVTVEGTDYGSSNAGRGGTSSKIVQPVVVTDGKLDIVAEGWFNGLEITPLLYAPTALTAGDVSIDGSAVEVPLSWEPAQDVAGYRVYRQAEGAAEPTALGDVEAGTTEFVDTTADVGLQYTYTVVALDDAGTESVASNALELTTVDPDVPTAATPSGLSVTDVAKNEVALAWEPVEDALFYHVYREDKNGELVLVDRASDAEYTDTDVLTTVGYTYAVASVNAGGVSELSETVTSEAVTNLSRQAERIGRQPVAAQSEDGIYVGWRMLGEDPESIGFHVYCDGEQLTDEPVAGSTNYVDADGGADSTYRVSAVVDGIERWATAEFAVWDGQTLDIPLNKPEDAYTKDGQPYTYSANDASVADLDGDGEYEYVVKWYPSNAKDNSQGGYTGNTYLDAYELDGTQLWRIDLGVNIRSGAHYTQFQVFDYDGDGKAEVAMKTADGTTDAAGTVIGDARADFRTSGGYVLSGPEYLSVFDGESGVALDTIDYVPPRGDVGSWGDGYGNRVDRFLATTAYLDGETPSMVFSRGYYTRAVIAAFDWDGSELTQRWVFDSDEQGDQYRGQGNHDMQTADVDGDQKDEIVFGSMTIDDDGSIWVNTGLGHGDAMHVSDFDPTRPGLEQFAAHEDMGRAENRGATFRDAATGEILWSIPAERDTGRAAMADIDPRYDGAEGWAVGGDAAWNSEVGQLVSSSTGEVIAESIPAANFTTFWDGDLLSEIGDHDWDADTSTGVPTISKWDYENAEEVEIYRAEGTQSNNSTKGTPAVQADLFGDWREEIVTRTDDSTALRIATTVIPTEHRLRTLMSDSQYRTAVAWQNTGYNQPPHTSYFIGEDMETPDAPRLAYTTAGSEGELVNAPDVWDAGTVYTEGDLVQHDGSVFEALWWTRDQEPGSSPYGAWAEIGPLGEPAPECGAVWTDSRIFTAGDTVVHDGAVWTALWWTRNQEPGASPWGPWEQTGECNANANANANA
AK018_04272765glcC_1COG2186Glc operon transcriptional activatorGTGCGCACCCACGAGAAGGTCCTCGCCCGGATCGAGTCCGACCTGGCCGCCGGCCGCTGGACGCTCGGCGAACGACTGCCCGCCGAACGGGCGCTCGCCGAGGAGCTCGGCGTCTCCCGGCCGTCGGTGCGCGAGGCCATCCGCATCCTCGAGGCGATGGGCATCATCCGCACCGCCGTCGGCTCCGGACCCGACGCCGGAGCCGTCGTCGTCGACCGCCCCGCCGCCGGGCTCGGGGCCGCCGTACGCCTGCACGTCGCCTCCGGGACGCTGCCCGTGCACGACGTCGTGGCCACCCGCGCCGCGCTCGAGACCTGGGCCGTGCGGGAGGCCGCCGGGCGTGCCGCGCAGGGGGTGCCCGACGGTGGTCCTCCGACGGCGGGGGAGGCTTTCGTGCCGGGGGCGCTCGCGGAGGCCCAGCGGCTGGTGCGCGCCATGGCGGACCCGGGGCTCGGCACCGAGGAGTTCGTGCGGCTCGACCAGGACTTCCACCTGGAGATCGTGCGTCAGGCCGGCAACCAGCTCGTCGAGGCGATCCTCACCGGGCTGCGCAGCGCCGTGTCCTCGTACGTGGTCCGCGGGGTCGGCGGGCTGCCGGACTGGCCCGGGACCGCGCGGCGCCTGTGCTCCGAGCACGACGAGATCCTGGACGCGGTCGCCTCCGGGGACCCGGACCGGGCCGAGCAGGCCACGCAGGCGCACATCTGGGGCTTCTACCGGGAGACGGGGCTCGCGCCCGACGTCGAGCTGACCGCCGGGGGCTGAMRTHEKVLARIESDLAAGRWTLGERLPAERALAEELGVSRPSVREAIRILEAMGIIRTAVGSGPDAGAVVVDRPAAGLGAAVRLHVASGTLPVHDVVATRAALETWAVREAAGRAAQGVPDGGPPTAGEAFVPGALAEAQRLVRAMADPGLGTEEFVRLDQDFHLEIVRQAGNQLVEAILTGLRSAVSSYVVRGVGGLPDWPGTARRLCSEHDEILDAVASGDPDRAEQATQAHIWGFYRETGLAPDVELTAGGNANANANANA
AK018_04273792lutA_1COG0247Lactate utilization protein ATTGCGCATCGCCCTGGCCGCGACCTGTATCGCGGACACCATGTTCCCCGGCGCCCCGAGCGCCACCGTGCGCCTCCTCGAACGACTCGGCCACGAGGTCGTCTTCCCCCGCAGCCAGGCGTGCTGCGGCCAGATGCACGTCAACACCGGCTACTACGACGAGGCCGTACCGGTGATCCGCAACCACGTGACCACGTTCGCGCCGGTGGCCGACGGCGAGTGGGACGCCGTCGTCGTGCCCTCCGGATCCTGCACCGGGTCGATCCGGCACCAGCAGGCCATGGTGTGCCGACGCGCCGGGCTCGACGACCTGGCCGCCACCGCCGAAGCCGTGTCCGCCAAGACCTACGAGCTGTCCGAGCTGCTCGTCGACGTGCTCGGCCTGACCGACGTCGGCGCCCACTTCGGCCACCGCGTCACTTACCACCCCACGTGCCACTCGCTGCGCATGCTGCACGTCGGCGACCGGCCGCTGCAGCTCTTGCGCGCCGTGGACGGCATCGACCTCGTCGAGCTGCCGGAGGCCGAGTCGTGCTGCGGGTTCGGCGGGACCTTCGCGCTGAAGAACGCCGACACCTCGGCCGCGATGCTCGCCGACAAGACCGCCAACATCCGCTCCACCGACGCCGTGGTCGTGACGGCCGGCGACTACTCCTGCCTCATGCACATCGGCGGCGGGCTGTCCCGGCAGCGCGCCGGCGTGGGCACGCTGCACCTGGCCGAGATCCTGGCCTCCACCCGCGAGGACCCGACCCCCCTGCCCTCGACGCGCACCACGGAGGTGGCCCGATGAMRIALAATCIADTMFPGAPSATVRLLERLGHEVVFPRSQACCGQMHVNTGYYDEAVPVIRNHVTTFAPVADGEWDAVVVPSGSCTGSIRHQQAMVCRRAGLDDLAATAEAVSAKTYELSELLVDVLGLTDVGAHFGHRVTYHPTCHSLRMLHVGDRPLQLLRAVDGIDLVELPEAESCCGFGGTFALKNADTSAAMLADKTANIRSTDAVVVTAGDYSCLMHIGGGLSRQRAGVGTLHLAEILASTREDPTPLPSTRTTEVARPGPT0018090_242DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018090-lldE|ykgE|lutA-K18928NANA
AK018_042741698lutB_1COG1139Lactate utilization protein BATGAGCACGTTCCTCGGCATCCCCGGCATCCGGCGGCGGTCCGGCACGTCCGACGGCGGCACACCGGCCGACGGCGGATCCACCGCGGGCGAGGGCCCCTTCGGCCCGGTGCCCCACCCGGACGAGCCGCTGCGCTGGGGCGACGCCTTCCCCGCCGCCGCGAAGCAGACCCTGGCGAACGACCAGCTCCGCGCGAACCTGGGCCACGCCACCCGCACGATCCGCGCCAAGCGGGCGTCCGTCGTCGGCGAGGTGCCCGACTGGGAGGCCCTGCGGGACACCGGGTCGGCGGTCAAGGAGCAGGTCATGGCGGACCTGCCGGACCTGCTGGCACAGCTCGAGGAGAACGTCACCGCCCGCGGCGGCGTCGTGCACTGGGCCCGCGACGCCGCCGAGGCCAACCGCATCGTCGCCGACATCGCCACGGCCAAGGAGGCCGACGAGGTCGTCAAGGTCAAGTCGATGGCCACCCAGGAGATCGGGCTCAACGAGTACCTGGCCGACGAGGGCATCGCCGCCATCGAGACGGACCTGGCCGAGCTGATCGTCCAGCTCGCCGACGACATGCCCTCCCACATTCTCGTCCCGGCGATCCACCGCAACCGGGCCGAGATCCGCGAGATCTTCCTCGAGCGGATGGGCGATGCCCCCGAGGACCTGTCCGACGTGCCCCGCGAGCTCGCGATGGCCGCCCGCGCCCACCTGCGCCGCAAGTTCCTCTCGGCGAAGGTCGCTGTCAGCGGCGCCAACTTCGGCGTCGCGGACACCGGCACGCTCGCCGTCGTCGAGTCCGAGGGCAACGGGCGCATGTGCCTCACGCTGCCGGAGACGCTCGTGACGGTCATGGGCATCGAGAAGCTGATCCCCACCTACACCGACCTCGAGGTCTTCCTGCAGCTGCTGCCCCGGTCCTCCACCGGGGAGCGCATGAACCCGTACACGTCCCTGTGGACGGGCGTCACGCCGGGCGACGGCCCGCAGGAGTTCCACCTGGTGCTCCTCGACAACGGCCGCACCGACGTGCTCGCGGACGAGGTCGGGCGCTCCGCGCTGCACTGCATCCGCTGCTCGGCGTGCCTCAACGTGTGCCCGGTGTACGAGCGGGTCGGGGGGCACGCCTACGGCTCGGTCTACCCCGGACCGATCGGCGCGATCCTCACCCCGCAGCTCACGGCGTCCTCCGGTGGCGTCTCGGGGGCCGACGACGTCAACGCCTCCCTGCCGTACGCCTCCACGCTGTGCGGCGCCTGCTACGACGTGTGCCCCGTCAAGATCGACATCCCCTCGATCCTGGTGGACCTGCGGGCGCGCGAGGTCGACGCCGACCGCGGCCGGTCCGGCGTCGACCCGTGGAAGGCGGCCATGAAGGCCGCGTCCTGGGTGATGTCCGACGGCGGCCGGTTCGGTCTCGCCGGACGTGCGGCCACGCTGGGCCACGGCCTGGGCGGGTCCGACGGCGTGATCTCGAAGGCCCCGCCACCGGCGTCGGCGTGGACCCGGTCCCGTGACCTGCCGGCGCCGCCGAAGCAGACGTTCCGGCAGTGGATGGCCGCCCACGAGCGCGACGCCAACCACCCTGACGCCAACCACCGGGAGGCCGACGGCTACGATTCGTCGCACTCCCGGGCTGAAACTGAAACGAATCGTAGCCGTCGGCCGGGCGGGGACGAGGGCGAGCGGACGGAGGGTCGGCGATGAMSTFLGIPGIRRRSGTSDGGTPADGGSTAGEGPFGPVPHPDEPLRWGDAFPAAAKQTLANDQLRANLGHATRTIRAKRASVVGEVPDWEALRDTGSAVKEQVMADLPDLLAQLEENVTARGGVVHWARDAAEANRIVADIATAKEADEVVKVKSMATQEIGLNEYLADEGIAAIETDLAELIVQLADDMPSHILVPAIHRNRAEIREIFLERMGDAPEDLSDVPRELAMAARAHLRRKFLSAKVAVSGANFGVADTGTLAVVESEGNGRMCLTLPETLVTVMGIEKLIPTYTDLEVFLQLLPRSSTGERMNPYTSLWTGVTPGDGPQEFHLVLLDNGRTDVLADEVGRSALHCIRCSACLNVCPVYERVGGHAYGSVYPGPIGAILTPQLTASSGGVSGADDVNASLPYASTLCGACYDVCPVKIDIPSILVDLRAREVDADRGRSGVDPWKAAMKAASWVMSDGGRFGLAGRAATLGHGLGGSDGVISKAPPPASAWTRSRDLPAPPKQTFRQWMAAHERDANHPDANHREADGYDSSHSRAETETNRSRRPGGDEGERTEGRRPGPT0018095_70DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018095-lldF|ykgF|lutB-K18929NANA
AK018_04275729lutC_1Lactate utilization protein CATGAGCGCCCGCGAGGACGTGCTGAACCGGGTCCGGGCCGCGCTCGGGCAGCCGGGCGTGGGGACGACGGCGGCCGGTGCCGTGGGCGCGACGCCCGCTGCCGTCGAGGTGCCCCGGGAGTACCGGTCGGCCGGTGAGCACTCCCCCGGGTCCGCGGCCGTCGTGGAGCAGCTCGTCGATCGGCTGGTCGACTACAAGGCGCACGTGCACGAGGTCACGGCCGCCGAGCTGCCGGACCGGGTGGCCGAGCTCCTGGCCGCGCCGGAGCAGGCCGCGCCGGAGCAGGCCGCGCCGGAGTCGGGAGCGGCAGGCGGTTCCGTCGTCGTGCCGTCGGGGCTGGACGAGACGTGGCTCGGTGCGCTGCCGAGCGACGTCGTCGTGCACCGGGACGTCCCGGACTCCCCCTTGTCCGCGCTGGCGCTGGACGAGGTCGACGCCGTGCTGACCGCGGCCCGGGTCGCGTGCTCCGAGACGGGCACGATCGTGCTCGACGGCGAACGCGACCAGGGCCGAAGGGCGATCTCGCTGGTGCCCGACGTCCATCTGTGCGTGGTCCGCACCGACCAGGTGGTCCAGACGCTGCCCGAGGCGGTGCGGATCCTGGCCGACCACCCGGGCCGGCCGCAGACGTGGATCTCCGGGCCGAGCGCGACCAGCGACATCGAGCTCGACCGGGTCGAGGGGGTGCACGGGCCGCGCACGCTGCACGTGCTCCTCCTCGCGACGTAGMSAREDVLNRVRAALGQPGVGTTAAGAVGATPAAVEVPREYRSAGEHSPGSAAVVEQLVDRLVDYKAHVHEVTAAELPDRVAELLAAPEQAAPEQAAPESGAAGGSVVVPSGLDETWLGALPSDVVVHRDVPDSPLSALALDEVDAVLTAARVACSETGTIVLDGERDQGRRAISLVPDVHLCVVRTDQVVQTLPEAVRILADHPGRPQTWISGPSATSDIELDRVEGVHGPRTLHVLLLATPGPT0018100_759DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018100-lldG|ykgG|lutC-K00782NANA
AK018_04276657udk_1Uridine kinaseGTGACCACCCCTCCGCCCGACGGCCCCGAGCCGGCTCAGCCCGACGCGCTCTTCGACGTCCCCGACGGCGCACGCCGTCCGCCGTCGCGCATCGTGCTGCTCACCGGGCCGTCCGGCTGCGGCAAGTCGGCGCTCACCCGCCGGCTCGGCCTGCCGACGGTGGCGCTGGACGACTTCTACCGCGACCACGACCACCCGGGCATGCCGCACCGGTACGGCATCGTGGACTGGGACCACCCGGCGAGCTGGGACGCGGACGCCGCCCTCGACGCGCTGCGCACGCTGGTCACGACGGGCCGCGCCGAGGTGCCCGTGTACGACATCCCGACCTCGCGCCGCACCGGCAGCACCGTTGTCGAGACCGGCGGCGCCCCGCTCGTGCTCGCCGAGGGCGTGTTCGCCGCCGAGCTGGTCGACCGCTGCGGCACCGAGGGGATCCTCGCCGACGCCATCGTCCTGGTCCGCCCGCGGATCGTCACCTTCTGGTTCCGGCTGCTGCGCGACGTCGCCGAGGCGCGCAAGCCGCTGCCGACGTTGGTCCGCCGCGGTGTCGGGCTCATGCGGGACGAGCCGCGCCTGATCCGGCGGTGGACGGGCCTCGGTTGCCGGGCGGTCACACCCTCGCGGGCCGAGCGGGAGATCCGCGAGCTGCCCTGAMTTPPPDGPEPAQPDALFDVPDGARRPPSRIVLLTGPSGCGKSALTRRLGLPTVALDDFYRDHDHPGMPHRYGIVDWDHPASWDADAALDALRTLVTTGRAEVPVYDIPTSRRTGSTVVETGGAPLVLAEGVFAAELVDRCGTEGILADAIVLVRPRIVTFWFRLLRDVAEARKPLPTLVRRGVGLMRDEPRLIRRWTGLGCRAVTPSRAEREIRELPPGPT0021230_2395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876NANA
AK018_042771203mshA_5D-inositol-3-phosphate glycosyltransferaseATGTTCGAGCACAGCTCTCTTCGTGTCCTGTCCCTCTACGAGGGCTTCTTCTCCGGCGGCGCCCGCGTGCTGCACTCCACCGTGGTGGCCGGCCTGCACACGCACGGCCGCCAGGTGCACTCGGCGCTCAGCCTCCACAGCGAGGTCCGGCGCGAGTCGCTGCTGCAACGCATGGAGGACGATCCGCGGTTCCTCTCCCTGCGCGCCGCAGGTGTGCGCATCGCCTCGCTGGGCCGCTCCACCGACGGCGACCACGACCCGCGCACCTTCACCGACGCCGAGATGGACGTCGCCGCCCGGGAGGCCACCGGGGTCGACGTCGTCATGTCGCTCAAGGAGCAGCCGCTGCGGCTCGCGAACCACCCCGGGTTCCCCGACCGTCCGGTCGTGGCGTGCCTGCACCGCAGCGACCCCGAGCACTCCGGCGAGGCGCTGGACGACCTGCGGGCCGCGGCCGACAGCGGCCGGCTCGTCGCGGCCGTCTGCTGCGCGGAGTCCACCAAGCAGGCCTACTCCGCGGCCGGCATCCCCGAGCACCTGCTGCGCGTGGTGCCCAACGGCATCGACCTCACGCGGTTCCACCCGCTGCGCCGGGTACGGCGCATGTCGCTGCGCGGTGCGGCCGGGATCCCCGCCGACGCCACGCTGGTCACCTACGCGGCCCGCTACGACGCGATGAAGAACCCCCGGCTGTTCCTCGCGGCGGCCCGCGCGTTCGTCGAGCGCGACCCGTCCGGCCACGTGGTGATGTGCGGCGCCGGCATGACCACCGACAACCCCGGACTGACGGCCGACCTCGACGAGGCCTTCGCCGACCGTCCCGACCTGCGCGAGCGCGTCCACCCGCTCGGCGTGCGCCGCGACATGGAGACGGTGCTGGCGATGTCCGACGTCGTCGCCCTCACCTCGGCGTTCGGGGAGGCCGCCCCGCTGTGCCTCATCGAGGGCGCCATGTGCGGGGCGATCCCCGTGACCACACCCGTCGGGGACAGCGCGCGGATCGTCGACGGCATCGGGTTCGTCACGAGCTTCGAGGCCGAGGAGATCGCCGACACGTGGATCGAGGCGGCCGCCCGGCGCGGCGAGCTGCGGGGGGCCCTGACCGCCGCCCGGCAGCGGTTCAGCCACGTGCGCATGCTGTCCGGCTACGCCCAGGTGCTCGAGCAGGCGATGCGCGGCACAGGCCTGCGGATCGCCGCCTGAMFEHSSLRVLSLYEGFFSGGARVLHSTVVAGLHTHGRQVHSALSLHSEVRRESLLQRMEDDPRFLSLRAAGVRIASLGRSTDGDHDPRTFTDAEMDVAAREATGVDVVMSLKEQPLRLANHPGFPDRPVVACLHRSDPEHSGEALDDLRAAADSGRLVAAVCCAESTKQAYSAAGIPEHLLRVVPNGIDLTRFHPLRRVRRMSLRGAAGIPADATLVTYAARYDAMKNPRLFLAAARAFVERDPSGHVVMCGAGMTTDNPGLTADLDEAFADRPDLRERVHPLGVRRDMETVLAMSDVVALTSAFGEAAPLCLIEGAMCGAIPVTTPVGDSARIVDGIGFVTSFEAEEIADTWIEAAARRGELRGALTAARQRFSHVRMLSGYAQVLEQAMRGTGLRIAANANANANANA
AK018_042782448hypothetical proteinATGCCACGTCGCAGGACCACCTGGCTCGCGGCCACCGCCGCGGCCTGCACGCTGATCGTCCCGACGGGAGCCGCCGTCGCGGCGCACCCCTCGCACTCCGGGTCGGACGACGCCGTCCAGCTCGAGGACCTCGACCGCGGACTCGTCGCTGTCGCCACCGACGAGGGCAACTACCTGGGCTGGCGGCTGCTCGGCACCGAGGTCACCGGCGCCACGTCGGACGGCATGACCGGGGCCGACTTCGCCGTCTACCGCGACGGCGACAGGATCGCCACGGTCACCGACTCCACCAACTACCTGGACGCCGACGGCGACGCCGGCTCGCGCTACCGGGTCGTGCCCGTCGTCGACGGCAAGGAGCAGCGCCGCGACCGCTCCGCCGTCGTCACCCCGTGGGACCAGGACCACCGGGCGATCGCCATGAACAAGCCCGCCGACGGCGTCACCCCCGTGGGCGAGGAGTACACCTACTCCGCCAACGACCTGTCCGTGGCCGACCTCGACGGCGACGACGAGCTCGAGCTCGTCGTCCAGTGGGACCCGTCGAACTCCAAGGACGTGTCCCAGAAGGGCTACACCGGCAACACCTACCTCGACGCCTACGAGATGGACGGCACCCAGCTCTGGCGTATCGACCTCGGCGTGAACATCCGCTCCGGGGCCCACTACACGCAGTTCCCGGTCTACGACTTCGACGGCGACGGGCGTGCCGAGGTGATGGTCAAGACCGCGCCGGGCACCAAGTCCACGCGGTACACGCCCAGCGGCCGCGAGGCCGCCACGAAGTACGTGTCGATCCCGCGGGACGACCGTGCCGCCGGCGTCACGCACGACGACGACTACCGCATGAGTGCCGACGACTACTTCGAGCACGTCGTCGACATGTTCGAGGGCTGGACCGAGAACCCCGAGGTCGCCTCCGGTCAGTGGCCCGCGACGCTCAAGGACGCCTTCGCCGACGCGATGCCCGGCATCGACGACCCGTCGTCCGACCAGTACCTCGAGGACTTCGAGTACCCGCTGTCCGAGGTCGACGCCCGGGCCACCGCCGAGTACTTCGTCGACGTCTACGCCCCCGCGCGCAGCGGACGCAACGACCTGCGCACCTTCGAGGGCTTCATCATCTCCGGACCCGAGTACCTGTCGGTGTTCGACGGCAAGAGCGGCAAGCCGCTCGAGACCGTCGACTACACGCCCGCCCGGTACGACGACGGGCTGCGGTGGGGCGACTACGCCATGTCCCGCATCGAGCCGGGCAATCGCGTCGACCGGTTCCTCACCGGGGTGTCGTACCTCGACGGCGAGCACCCCTCGGCCGTGTTCGCCCGCGGGTACTACACGCGGACCACGCTGGTGGCCTACGACTGGGACGGTCGCGAGCTGACCCAGCGGTGGGACGTCGACTCGGGCTGGACGCCGATGGACAACCCGTTCAACGACGGCCCGCACGGCACGCCCGGCACCGACCCCGAGTTCGGGCAGATCACCACGCAGGGGCAGCACTCCCTGTCCTCGGCCGACCTGGACGGCGACGGCAAGCAGGAGATCCTCTACGGCGCCGCCGCGATCGACCACGACGGCTCGCTCCTGTGGAACGCCACGGCCGAGATGCCGCCGCAGTCCGCGGACCCCGGCGCGATCGCCGGGCTCGGCCACGGTGACGCCATGCACGTGACCGACATCCTGCCCGAGCGGCCGGGCCTCGAGGCGTTCATGGTGTTCGAGGGCGGCACCTGGGCGCCGTACGGCACCGCGCTGCTCGACGCCGCCACCGGTGAGGTCCTCGAGGGCGTCTACTCCGGTCGCGACACCGGCCGCGGCATGATCGGCGACGTCCGGCCGGACGTGCCGGGCATCGAGATGTGGTCCTCCATGCCGGGCGGTACCGACGCCTCGGGGCTGCTCGACTCCGACTGGAACATCCTGTCGACGCAGACGCCGGGCACCAACCAGTCCGTGCACTGGGCGGCCGACGGCTCCACGCAGATCTTCGACTACGACCGCGTCTCGAACGACGTGCGCGAGTGGACGCCGAAGATCGTCGACTGGGCCTCCGGCTCCGAGCGCATGCTCGAGGGCACGCTGACCAACAACGACACCAAGGGCAACGCCGGCCTGATCGCCGACGTCCTCGGTGACTGGCGCGAGGAGATCCTCGTGCGGTCCGTCGACTCCTCCGAGGTGCGGCTGTACACCTCGACCGAGGTGACCGACATCAAGATGTACACCCTGCTGCACGACCCGCAGTACCGCGCCGAGGTCGCCCGTCAGCAGACGACGTACAACCAGCCGTCCTACCCGGGGTTCTACCTGGCCTCGGACACCGACTACACCCAGGTGCCGCTGCCGCCGAACGCCGGCGACGACCGGGGTCACGGACGGGACAAGGACCGTGGCCACGGCCACGACCGCGGCAAGGGCCACGACCGGGACAGGGGGCGTGGCTGAMPRRRTTWLAATAAACTLIVPTGAAVAAHPSHSGSDDAVQLEDLDRGLVAVATDEGNYLGWRLLGTEVTGATSDGMTGADFAVYRDGDRIATVTDSTNYLDADGDAGSRYRVVPVVDGKEQRRDRSAVVTPWDQDHRAIAMNKPADGVTPVGEEYTYSANDLSVADLDGDDELELVVQWDPSNSKDVSQKGYTGNTYLDAYEMDGTQLWRIDLGVNIRSGAHYTQFPVYDFDGDGRAEVMVKTAPGTKSTRYTPSGREAATKYVSIPRDDRAAGVTHDDDYRMSADDYFEHVVDMFEGWTENPEVASGQWPATLKDAFADAMPGIDDPSSDQYLEDFEYPLSEVDARATAEYFVDVYAPARSGRNDLRTFEGFIISGPEYLSVFDGKSGKPLETVDYTPARYDDGLRWGDYAMSRIEPGNRVDRFLTGVSYLDGEHPSAVFARGYYTRTTLVAYDWDGRELTQRWDVDSGWTPMDNPFNDGPHGTPGTDPEFGQITTQGQHSLSSADLDGDGKQEILYGAAAIDHDGSLLWNATAEMPPQSADPGAIAGLGHGDAMHVTDILPERPGLEAFMVFEGGTWAPYGTALLDAATGEVLEGVYSGRDTGRGMIGDVRPDVPGIEMWSSMPGGTDASGLLDSDWNILSTQTPGTNQSVHWAADGSTQIFDYDRVSNDVREWTPKIVDWASGSERMLEGTLTNNDTKGNAGLIADVLGDWREEILVRSVDSSEVRLYTSTEVTDIKMYTLLHDPQYRAEVARQQTTYNQPSYPGFYLASDTDYTQVPLPPNAGDDRGHGRDKDRGHGHDRGKGHDRDRGRGPGPT0018715_37DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_MEMBRANE_POLYSACCHARIDE_DEGRADING_FUNCTIONSPLANT_MEMBRANE_RHAMNOGALACTURONAN_ENDOLYASE,PGPT0018715-yesW-K18197NANA
AK018_042791023galSCOG1609HTH-type transcriptional regulator GalSGTGGCCAGAGCACGGCTGCAGGACGTGGCGGATCGCGCCGAGGTGTCGCTGGCCACGGCGTCGCGGGTGCTCAACGGCTCGGCGCGCCAACCCGGTGCGGCGCTCGTCGAACGGGTGCGTGCCGCCGCCGCCGACCTCGGCTACGTGGTCAACGCGCAGGCGCAGGCGCTCGCCCGGTCCCGCACCGGTCTCCTCGGGCTGGTGGTCCAGGACATCTCCGACCCGTACTTCTCCACGATCGCCGGGGGAGCCCAGTCCGCCGCCCGCGAGCACGGCCGCATGGTGCTGCTCGCCTCCACCGAACGTGACCCCGCCGCGGAGCGGGACGCCGTCGCCGCGTTCGCCGCCCACCGCGTCGACGCCGTCGTGGTCGCCGGGACGCGCTGGTCGGCCGCCGAGGACGCGCCCGTGGCCGAGGAGCTCGCCACGTTCCAGGCCTCCGGCGGCCGGGCGATCGTCGTCGGACAGCCCCTCGGCACCGCCACCGTGATCCGCCCGCCCAACGCCGCCGGAGCCACCGCCCTCGCCGAGGCGCTGGCCGGGCAGGGGCACCGGCGGTTCGTGCTGCTCAGCGCGCCGGCGCGGGTCGTCACCGCCCAGGAGCGCGCCGGGGCGTTCACGGCGGCAGTCGCGGCCGGCAGTGGCGAGATCGTCGAGACCATCGAGCAGCAGTTCTCCCGCGACGGCGGGTACGCCGCCGGCGACCGCGTCGCCGAGCTGGCCCGTGCCGCCGCCGAGGCGGGCGAGGACCCGCCGTGCGTCTTCGCCGTCACCGACGTGATGGCGATCGGACTCATCGCGCGGTTGCGCGAGCTCGGCGTCGACGTGCCGGGCCAGGTGCGAGTGGCCGGGTTCGACGACATCCCCACCCTGCGCGACCACGTCCCCTCGGTGACCACCGTGTCGATCCCGCTCGCGGAGATGGGTCGGCTCGCCGTCGCCGCCGCGGTGGCCGAGGACGGCGCCGACGTGAGTGCCGCCGTCGGGCACGAGGTCGTGCTGCGGGAGTCGACGTCGCGCTGAMARARLQDVADRAEVSLATASRVLNGSARQPGAALVERVRAAAADLGYVVNAQAQALARSRTGLLGLVVQDISDPYFSTIAGGAQSAAREHGRMVLLASTERDPAAERDAVAAFAAHRVDAVVVAGTRWSAAEDAPVAEELATFQASGGRAIVVGQPLGTATVIRPPNAAGATALAEALAGQGHRRFVLLSAPARVVTAQERAGAFTAAVAAGSGEIVETIEQQFSRDGGYAAGDRVAELARAAAEAGEDPPCVFAVTDVMAIGLIARLRELGVDVPGQVRVAGFDDIPTLRDHVPSVTTVSIPLAEMGRLAVAAAVAEDGADVSAAVGHEVVLRESTSRPGPT0017992_9181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_042801167xdh_1D-xylose dehydrogenaseGTGACCACCACCCGCACCCTGCGCATCGCCATGAACGGCGTGACCGGCCGCATGGGCTACCGCCAGCACCTGCTGCGCTCGATCCTGCCGATCCGCGAGCAGGGCGGCGTGACGCTCCCCGACGGCAGCCGCGTCCAGGTCGAGCCGATCCTCGTGGGCCGCAACGAGGCCAAGCTCGCCGACCTCGCCTCCCAGCACGGCATCAGCGAGTACACGACCGATCTCGACGGCATCGTCCACGCCGAGGACACCGACATCGTGTTCGACGCCGCGATGACCAACCTGCGCCCCCAGACGCTGTCGAAGGCCATGAAGGCCGGCAAGCACGTCTACACCGAGAAGCCCACGGCCGAGACACTCGCCGAGGCGATCGATCTCGCGAAGCTGCGCGACGAGACCGGCGTGACCGCCGGCGTCGTGCACGACAAGCTCTACCTGCCCGGCCTGGTCAAGCTGCGCCGCCTGGTCGACGAGGGCTTCTTCGGCCGCATCCTGTCGCTGCGCGGCGAGTTCGGCTACTGGGTGTTCGAGGGCGAGCACCAGCCGGCCCAGCGACCCTCCTGGAACTACCGCAAGGAGGACGGCGGTGGCATGACCACCGACATGTTCTGCCACTGGAACTACGTGCTCGAGGGCATCCTCGGCACCGTCAAGACGGTCAACGCCCAGACGGTCACGCACATCCCCACCCGCTGGGACGAGCAGGGTAAGCCGTACGACGCCACCGCCGACGACGCCGCCTACGGCATCTTCGAGATGGCCACGCCCGACGGCGACCCCGTCGTCGCGCAGATCAACTCCTCCTGGGCCGTGCGGGTGTACCGCGACGAGCTCGTCGAGTTCCAGATCGACGGCACGCACGGCTCCGCCGTCGCCGGCCTGTTCAAGTGCGTCTCCCAGCAGCGCGGCAACACCCCCAAGCCGGTGTGGAACCCCGACCTGCCCACCACCGAGACGTTCCGCGACCAGTGGGCCGAGGTCCCCGCCAACGCCGAGCTCGAGAACGGCTTCAAGGCGCAGTGGGAGGAGTTCCTGCGCGACGTCGTCGCCGGGCGCGAGCACCGCTTCGACCTGCTGTCCGCCGCGCGCGGCGTCCAGCTCGCCGAGCTGGGCCTGCAGTCCTCGGCCGAGGGCCGCCGCCTCGACGTCCCGGAGATCACGCTGTGAMTTTRTLRIAMNGVTGRMGYRQHLLRSILPIREQGGVTLPDGSRVQVEPILVGRNEAKLADLASQHGISEYTTDLDGIVHAEDTDIVFDAAMTNLRPQTLSKAMKAGKHVYTEKPTAETLAEAIDLAKLRDETGVTAGVVHDKLYLPGLVKLRRLVDEGFFGRILSLRGEFGYWVFEGEHQPAQRPSWNYRKEDGGGMTTDMFCHWNYVLEGILGTVKTVNAQTVTHIPTRWDEQGKPYDATADDAAYGIFEMATPDGDPVVAQINSSWAVRVYRDELVEFQIDGTHGSAVAGLFKCVSQQRGNTPKPVWNPDLPTTETFRDQWAEVPANAELENGFKAQWEEFLRDVVAGREHRFDLLSAARGVQLAELGLQSSAEGRRLDVPEITLNANANANANA
AK018_042811254hypothetical proteinGTGAGCGCCGCGGTCGTCGGGCACTCCAGAGCCCCCGAGCTGAACGCCAGCGGCGTCTCGCTGAAGCTGCCGCGGTTCGACGACGGCGGTCGCGTCGTCGGCACCGAGGTGCGCGAGCTCAACGCCCCCGGCCCCTGGCTGGCGCCGTCCGAGCCGATCCGTTCGCGCGTCGCGTTCGCCGCCGCCCACGTGGTCCCGCACGTCGGCGCCGAGAACGTCCCCGGCGCCCCCGCGGTCGTCGACTGGGACGCCACGCTCGCCTACCGGCACCAGATCTGGCGCTACGGCCTCGGCGTCGCCGACGCGATGGACACCGCCCAGCGCGGCATGGGCCTCGACTGGGCCGCCACACAGGAGCTGGTCCGCCGCTCTGCCACCGAGGCGCGGTCCGTCGGCGGAGCGATCGCCTGCGGCGCCGGCACCGACCAGCTCGACCCGGCCGCCGTCGAGCCCGGTCAGGCCGGGCTCGACGCCGTGATCGACGCCTACCGCGAGCAGGTCCGCGTCGTCCAGGAGGCCGGCGCCCAGGTCATCGTCATGGCCTCGCGCGCCCTGGCGAAGGTCGCCCGGTCGGCCGACGACTACGCCCGCGTCTACGACGCCGTGCTCGCCGAGGCCGACCAGCCCGTCATCCTGCACTGGCTGGGCACCATGTTCGACCCGGCGCTGGCCGGCTACTGGGGCTCGGACGACGTCGACACCGCGACCGCCACGTTCGTGGACCTCATCAAGGCCCACCAGGACAAGGTCGACGGCGTGAAGGTCTCGCTGCTGGACGCCCAGCACGAGATCGGGCTGCGCCGCACGCTCGCCGCGCTCGACGGCTCCCCCGTGCGCCTGTACACCGGGGACGACTTCAACTACCCCGAGCTCATCGCCGGCGACGACCAGGGCTACTCCGACGCGCTGCTCGGCATCTTCGCCGCGATCTACCCGGCGGCGTCCACGGCGCTGCAGGCCTTCGACGCGGACGACGCCGGTCGCGCCCACGCGATCCTCGCCTCCACGGAGAAGCTGGGCCGGCACATCTTCGCCGCGCCCACCTACTTCTACAAGACCGGGGTGGCGTACCTGAGCTGGCTCAACGGGTTCCAGACGGGCTTCCAGCTCGTCGGCGGGCTGCACTCGGGGCGCTCGCTCGCCCACCTGGTCGAGCTGACCCGGCTGGCCGACGACTGCGGCATGCTGCTCGACCCGGACCTGGCCGCCAAGCGCCTGGGCGCGCTGCTCGTGACGAACGGGGTGGACGCGTGAMSAAVVGHSRAPELNASGVSLKLPRFDDGGRVVGTEVRELNAPGPWLAPSEPIRSRVAFAAAHVVPHVGAENVPGAPAVVDWDATLAYRHQIWRYGLGVADAMDTAQRGMGLDWAATQELVRRSATEARSVGGAIACGAGTDQLDPAAVEPGQAGLDAVIDAYREQVRVVQEAGAQVIVMASRALAKVARSADDYARVYDAVLAEADQPVILHWLGTMFDPALAGYWGSDDVDTATATFVDLIKAHQDKVDGVKVSLLDAQHEIGLRRTLAALDGSPVRLYTGDDFNYPELIAGDDQGYSDALLGIFAAIYPAASTALQAFDADDAGRAHAILASTEKLGRHIFAAPTYFYKTGVAYLSWLNGFQTGFQLVGGLHSGRSLAHLVELTRLADDCGMLLDPDLAAKRLGALLVTNGVDANANANANANA
AK018_04282882hypothetical proteinATGAGCGCGCCGAGCGCGGACCTGTCACGCTGCTCGCTGAACACCGCCACGGTCAAGCACGCCTCGTTGACCGAGGCCGTCGAGGCGGCCGCGGCCGCCGGGATGGGCGGCGTCGGGCTGTGGCGCCACCAGGTCCAGGAGCACGGTGCCGAGACGGCCCGCAAGATCGTCGAGGACGCCGGGCTGCACGTGACCTCCCTGTGCCGCGGCGGGTTCCTCACGGCGTCGACCGACGAGGGCGTCCGGGACGCGATCGCGGAGAACACCCGCGCGTTCGAGGAGGCCGCCGGCGTCGGGACGCGCGAGGTGGTGTTCGTCGTCGGCGGGCTGCCCGGCTCGTCGCCGGAGGCACCGCCGTCGCCCGGTACGGACCGCGACGTCGTCGCCACCCGTGCGCGGGTGGCCGACCGCCTGGCCGACCTCGCACCGATCGCCGCGCAGCACGACGTGCGCATCGTGCTCGAGCCCCTGCACCCGATGTTCGCCGCGGACCGCGCGGTGGTCTCCACGCTGGGGCAGGCGCTCGACCTGGCCGCGCCGTTCGACCCGCGCACGGTCGGCGTCGTCGTGGACACCTACCACGTGTGGTGGGACCCGGCGCTGCAGGACTCGATCGCGCGCGCCGGCCGGGAGGGCCGGATCGCCGGGTACCAGGTGTGCGACTGGAACCTGCCGTTCGCGACGACGGCACTGAACTCGCGCGGGCACGTCGGTGACGGGTACGTCGACTTCGCGACGGTCTCGTCCTGGGTGCGCGACGCCGGATTCACCGGCGACGTCGAGACCGAGATCTTCAACGAGGGGATCTGGGCGGCGCCGCCGGTCGAGACCGCCCGGACCGTCGCGGAGCGGTACGCGGAGCACGTGGCGCCGCACCTCTGAMSAPSADLSRCSLNTATVKHASLTEAVEAAAAAGMGGVGLWRHQVQEHGAETARKIVEDAGLHVTSLCRGGFLTASTDEGVRDAIAENTRAFEEAAGVGTREVVFVVGGLPGSSPEAPPSPGTDRDVVATRARVADRLADLAPIAAQHDVRIVLEPLHPMFAADRAVVSTLGQALDLAAPFDPRTVGVVVDTYHVWWDPALQDSIARAGREGRIAGYQVCDWNLPFATTALNSRGHVGDGYVDFATVSSWVRDAGFTGDVETEIFNEGIWAAPPVETARTVAERYAEHVAPHLNANANANANA
AK018_04284315gdx_2COG2076Guanidinium exporterATGGCCTGGACCGTCCTGATCGTCTCGGGTGTGCTGGAGGCCGTGTGGGCCACCGCGCTCTCCGCCTCCGAAGGGTTCCGCAAGCCGAAGCCCACCCTTCTGTTCGCCGTCGCGCTCGTCGCCAGCATGGCCGGCCTCGCGTGGGCGATGACCGACCTCCCCACCGGCACCGCCTACGCCGTCTGGGTGGGGATCGGCGCCACCCTCACCGTCGTGTGGGGTTTCGTCACCGGACAGGACCGCGTCAACGTCGCGCGCATCCTCCTGCTGGTCCTTCTCGTCGGCTCCGTCGTGGGCCTCAAGGCGGTGAGCTGAMAWTVLIVSGVLEAVWATALSASEGFRKPKPTLLFAVALVASMAGLAWAMTDLPTGTAYAVWVGIGATLTVVWGFVTGQDRVNVARILLLVLLVGSVVGLKAVSPGPT0028785_2275DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUATERNARY_AMMONIUM_COMPOUND_RESISTANCE_,PGPT0028785-sugE-K11741NANA
AK018_04285387gdx_3COG2076Guanidinium exporterATGGCTTGGCTGATCCTGCTGCTCAGCGCCGTCGCCGAGGCCGTGTGGGCCACCGCGCTCGGCGCGTCCGAGGGCTTCTCCGCCCTCGGCCCCACGGTCGTGTTCTTCGTGTTCCTCGCGCTCTCCATGGCCGGCCTCGGCTGGGCCGTACGCCGCATCCCGCTGGGCACCGCCTACGCGGTGTGGGTGGGGCTCGGCGCCGCCCTGACCGTGTCGTACGCGATGGCCACCGGCGAGGAGACTCTCTCCGCCCTCAAGGTCGTGTTCCTGCTCGGGATCGTCGGAGCCGTCGTCGGACTCAAGCTGGTCCCGCACGACGCACACGCCACCGAAGCGGCCGACACCGACGCACCCGCCCCGCAGCAGGACGACGTCGCCCGCGACTGAMAWLILLLSAVAEAVWATALGASEGFSALGPTVVFFVFLALSMAGLGWAVRRIPLGTAYAVWVGLGAALTVSYAMATGEETLSALKVVFLLGIVGAVVGLKLVPHDAHATEAADTDAPAPQQDDVARDPGPT0028785_209DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUATERNARY_AMMONIUM_COMPOUND_RESISTANCE_,PGPT0028785-sugE-K11741NANA
AK018_04286783COG1123putative ABC transporter ATP-binding proteinATGAGCACAACCGCCCCCGCCCCGATCCTGCGCGCCGACGGCATGGCGGCCGGCTACGGCGGCGCCGACGTCGTCCACGGCATCGACCTCGAGCTCTCGCCCGGCGCCGCGCCCGTCGGGATCGTCGGCCCCTCCGGAGCGGGCAAGTCCACCATCGTGCGGGCGCTGGTCGGTCAGGTGAAGCCCACGCAGGGGCGGGTGACCTGGCACGGCCGCACCGTCAGCCGCATCGGCCTGCGGGACAAGAAGGCGTTCCGCACCCAGGTGCGCCGCGTCGCGCAGGAGGGCATCGCCGACGTCGACCCGCGCTGGACCGTCGACCGCGTGCTCGGCAAGGCCCTCAGCGATGCCCGCAAGGCCGGCAACGCCTCCGGGAGCACCGTGGCCGAGCTGCTCGACGACGTCGCCCTGGAGGCTCGCTTCGCGCCCCGGCAGGTCGGCACGCTGGCCGGCGGGGAGAAGCAGCGTGTCGCCCTGGCGGTCGCGCTGGCGACCCGCCCGGGCGCCCTGCTGCTGGACGAGCCGCTCACCGCCGTCGACCCGGCCATGCGCGGCGAGGTCGTGCGGCGACTCGGCGAGTCCACGGCCGCGCAGGGCACCGCCGTGCTGCTCGTCACCCACGACCTGGAGCTCGTGGAGCGCCTCTGCCCCACCGTGCACGTCCTGGCCGACGGCACGTTCGTGGACTCCGGAGAGCTGTCCGCCGTGCTGGGCCGCGCCGAGCACCCGGCCGTCCGTGACCTGGCCGAGGCCGCTCCCCTGGCGGTCCAACGATTCCGGTGAMSTTAPAPILRADGMAAGYGGADVVHGIDLELSPGAAPVGIVGPSGAGKSTIVRALVGQVKPTQGRVTWHGRTVSRIGLRDKKAFRTQVRRVAQEGIADVDPRWTVDRVLGKALSDARKAGNASGSTVAELLDDVALEARFAPRQVGTLAGGEKQRVALAVALATRPGALLLDEPLTAVDPAMRGEVVRRLGESTAAQGTAVLLVTHDLELVERLCPTVHVLADGTFVDSGELSAVLGRAEHPAVRDLAEAAPLAVQRFRPGPT0004440_8879DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032NANA
AK018_04287480hypothetical proteinGTGAACGCTGCCCGCCTGCTCGGCACCTGGCGCGTGGACGACGCCGAGTCTCTCGGGCACGTCCGCGACCAGGTGAACACCGCCCTGGACGGGATGCCCGCCGAGGGTTGCTGCCGCATGGCGGCCGAGCAGCTGCCCGACATCGTGCTCATCGCCAGCGAGCTCGCGACCAACGCCCTGCGGCACGCCGGCTCGTCGGCACTCGTGGAGCTGTGGTGCGACGAGCGCGGCCTGGTGGTCTCCGTCATGGACCACCGCCCCGACGCCCCGCCCGTGCTCTCCGTGGACCGTGACCTCGGGAAGGGCGGGTTCGGGCTCCAGCTCGCTCTGCGCATCGCGGACGACGTCGGCTGGTACCGCACCGCGGGCGACGAGAAGCACGTCTGGGCCCGCTTCAAGCCGGCCGGGGCGGACCGGCCCGTCCGGCACGTCGCGACGGCCCGGCACCACCGCCGTGCCGAGCCGCCCGCGATCGCCTGAMNAARLLGTWRVDDAESLGHVRDQVNTALDGMPAEGCCRMAAEQLPDIVLIASELATNALRHAGSSALVELWCDERGLVVSVMDHRPDAPPVLSVDRDLGKGGFGLQLALRIADDVGWYRTAGDEKHVWARFKPAGADRPVRHVATARHHRRAEPPAIAPGPT0014950_911DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014950-rsbW-K04757NANA
AK018_042881485rhaB_1RhamnulokinaseATGAGCGGGTTCGTCGCCGTCGACCTCGGGGCCACCAGCGGCCGCGTCATGCTCGGCGTCGTCACCGGGGCCGCCGGGGACGAGCACGTCGAGCTCACCGAGGTGGGCCGGTTCACCAACGGTCCCGTCGAGGTGCCCGAGGCGCACGGCACCGCGCTGCACTGGGACCTGCTGCACCTGTGGCGAGGCACCCTCGACGGCCTGCGGGCCGCCGGGGACCTCGCCCGGCAGCGCGGCGTGCCCGTCGCGGCGATCGGCATCGACTCCTGGGCGGTGGACTACGCGTCCGTCGCCGCCGACGGGTCGCTGCTCGGAAACCCCCGCCACCACCGCGACCCACGCCTGACCGGCGTCGCGGACGACGTCCTGGACCGGCTCGGGCACAGCGAGCACTACGGGGTCAACGGGCTGCAGACCCTGCCGTTCAACACCGAGTTCCAGCTCGTCGCAGGCCGGCACGACGCCACCTGGCCCCTGGTGGACTCGATCCGGCTGATCCCGGACCTCCTCGGGTCCTGGCTCACCGGCGTGACGGTCGCCGAGGTCACGAACGCCTCCACCACCGGGCTGCTCGACGCCACCACCCGCCGGTGGTCCGACCCGGTGATCGAGGCCCTCCAGGCCGAGTACCCCGAGCTGGGCGACCTGCGAGCCCGGCTGGCCGACCCCGTCGAGCCGGGGACCGTCGTCGGACACCTGACCGGCACCGTGCAGGCCGCCACCGGCCTCGGCGCCGTCCCCGTCGTCGCCGTCGGCTCGCACGACACCGCCTCGGCCGTCGTCGGCGTGCCCGCCGAGGACGAACGGTTCGCCTACGTCTCGTCCGGCACCTGGTCCCTCGTGGGCGTCGAGCTCGACGCCCCCGTGCTCACCGAGGAGAGCCGGCTCGCGAACGTCACCAACGAGCTCGGCGTCGACGGCACCGTCCGCTACCTCAAGAACGTCATGGGGCTGTGGGTGCTGTCCGAGACCCTGCGCACCTGGCGCGAGGCCGGGACCGAGGTGGCGCTCGCGGACGCCCTCGCGGCGGCCGCGGAGGCCGAACCGGGGCGGACCGTCGTCGACGTGGACGCCCCCGAGTTCCTGCAGCCCGGCGACATGCCGGCCCGCCTCGCCGACGCCGCGCGGGCGAGCGGCCAGCCGGTGCCTGACGGCGTGGGGCCCGTGGTGCGATGCATCCTCGACTCGCTCGCCGACGCGTACCGGCGGGTGCTCGCCGAGGTGACGCACCTGTCCGGCCGCGAGGTGGACGTGCTGCACGTGGTGGGCGGCGGCTCGCAGAACGAGCTGCTGTGCCGCCTCACCGCCGACGTGACCGGTCTGCCGGTGGTCGCCGGGCCGGTGGAGGGTGCGGCGCTCGGCAACGTCGTCGTGCAGGCCCGTGCCGTGGGGGTGCTGGCCGGAGACCTGCCGGCGCTGCGCGGCGTCGTGCGCCGCTCGGCGCGACCCGTACGGTACGAGCCGCAGACGGCGCCGGCGGGCTGAMSGFVAVDLGATSGRVMLGVVTGAAGDEHVELTEVGRFTNGPVEVPEAHGTALHWDLLHLWRGTLDGLRAAGDLARQRGVPVAAIGIDSWAVDYASVAADGSLLGNPRHHRDPRLTGVADDVLDRLGHSEHYGVNGLQTLPFNTEFQLVAGRHDATWPLVDSIRLIPDLLGSWLTGVTVAEVTNASTTGLLDATTRRWSDPVIEALQAEYPELGDLRARLADPVEPGTVVGHLTGTVQAATGLGAVPVVAVGSHDTASAVVGVPAEDERFAYVSSGTWSLVGVELDAPVLTEESRLANVTNELGVDGTVRYLKNVMGLWVLSETLRTWREAGTEVALADALAAAAEAEPGRTVVDVDAPEFLQPGDMPARLADAARASGQPVPDGVGPVVRCILDSLADAYRRVLAEVTHLSGREVDVLHVVGGGSQNELLCRLTADVTGLPVVAGPVEGAALGNVVVQARAVGVLAGDLPALRGVVRRSARPVRYEPQTAPAGPGPT0017775_19DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017775-rhaB-K00848NANA
AK018_042892055hcaB_23-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGACGAACGAGACCGTTGCCGCTCTGGTCGAGCGGTCCAACCGCCTGGGCGCCGACCCGAAGAACACCAACTACGCCGGTGGCAACACCTCGGCCAAGGGCGTCGAGACCGACCCGGTCACCGGCCAGGACGTCGAGCTGCTCTGGGTCAAGGGCTCCGGCGGCGACCTGGGCACCCTGACCGAGAAGGGCCTGGCCACCCTGCGGCTCGACCGCATGCGCGCGCTGGTCGACGTCTACCCGGGCGTCGAGCGCGAGGACGAGATGGTCGCCGCGTTCGACTACTGCCTGCACGGCAAGGGCGGCGCCGCCCCCAGCATCGACACCGCCATGCACGGGCTCGTCGACGCCAAGCACGTCGACCACCTGCACCCCGACTCCGGCATCGCGATCGCGACCGCCGTCGACGGCCCGGACCTGACCGCGAAGATCTTCGGCGGCAAGGTCGTGTGGGTGCCGTGGCGCCGTCCCGGCTTCCAGCTCGGGCTCGACATCGCCGAGATCAAGAAGGCCAACCCGGACGCCATCGGCACGGTCCTGGGCGGCCACGGCATCACCGCCTGGGGTGACACCGCCGAGGAGGCCGAGGCCAACTCGCTGTGGATCATCGACACCGCCGCCGAGTACATCGCCGCCAACGGCAAGGCCGAGCCCTTCGGCCCGGCCCTCGACGGCTACGGAGCCCTGCCCGAGGCCGAGCGCCGCGCCAAGGCCGCCGCCCTGGCCCCGCACCTGCGCGCGATCGCCTCCCACGACAAGCCGCAGGTCGGCCACTTCACCGACTCCGAGGTCGTCCTCGAGTTCCTCGCCGCAGAGAAGCACCCGGAGCTCGCCGCCCTGGGCACCTCGTGCCCCGACCACTTCCTGCGCACCAAGGTCAAGCCGCTGGTGATCGACCTGCCGGCCACCGCGAGCGTCGAGCAGATCGTCGAGCGGCTCGACACCCTCCACGAGGCCTACCGCGCCGACTACACCGCCTACTACGAGCGCGGCGCCGCCGAGGCGCGCGAGCGTGGCGAGGAGCCGCCCGCGATCCGCGGCGCCGACCCGCTGATCGTCCTCGTGCCGGGCGTCGGCATGTTCTCCTACGGCGGCGACAAGCAGACCGCCCGCGTGGCCGGCGAGTTCTACGTCAACGCCATCAACGTGATGCGCGGCGCCGAGGCCTTGTCCACCTACGCCCCGATCGACGAGTCGGAGAAGTTCCGCATCGAGTACTGGGCGCTGGAGGAGGCCAAGCTGCAGCGCAAGCCGAAGCCGAAGCCCCTCGCCACCCGCATCGCCTTCGTCACCGGCGCGGCCTCCGGCATCGGCAAGGCCATCGCCGAGCGGCTGGCCGCCGAGGGTGCCTGCGTCGTCGTCGCGGACCTCGACGCCGAGAAGGCGCAGGCCGTGGCGAGCGAGATCGGCTCCACTGACGTCGCCGTCGGGCTCGCCGCGAACGTCGCCGACGAGGCCGCGGTGCAGGCCGCGCTGAACGAGGCCGTGCTCGCGTTCGGCGGCGTCGACATCGTCGTGAACAACGCGGGTCTGTCGCTGTCCAAGTCGCTGTTCGAGACCACCGAGGCCGACTGGGACCTGCAGCACGACGTCATGGCCAAGGGCTCGTTCCTCGTGTCCAAGAACGCCGCGCGGATCCTCGTCGACCAGAAGCTCGGCGGCGACGTCATCTACATCTCCTCGAAGAACTCGGTGTTCGCCGGCCCGAACAACATCGCCTACTCGGCCACCAAGGCCGACCAGGCCCACCAGGTGCGCCTGCTGGCCGCCGAGCTCGGCGAGCACGGCATCAAGGTCAACGGCATCAACCCCGACGGCGTGGTGCGCGGCTCGGGCATCTTCGCCTCCGGGTGGGGTGCCAACCGCGCCAAGACCTACGGCATCGAGGAGCAGGACCTGGGCAAGTTCTACGCCCAGCGCACCCTGCTCAAGCGTGAGGTGCTGCCGGAGAACATCGCCAACGTGGCCTTCTCGCTGTGCACCGCGGACTTCTCGCACACCACCGGCCTGCACGTTCCCGTCGACGCGGGTGTGGCGCAGGCGTTCCTGCGATGAMTNETVAALVERSNRLGADPKNTNYAGGNTSAKGVETDPVTGQDVELLWVKGSGGDLGTLTEKGLATLRLDRMRALVDVYPGVEREDEMVAAFDYCLHGKGGAAPSIDTAMHGLVDAKHVDHLHPDSGIAIATAVDGPDLTAKIFGGKVVWVPWRRPGFQLGLDIAEIKKANPDAIGTVLGGHGITAWGDTAEEAEANSLWIIDTAAEYIAANGKAEPFGPALDGYGALPEAERRAKAAALAPHLRAIASHDKPQVGHFTDSEVVLEFLAAEKHPELAALGTSCPDHFLRTKVKPLVIDLPATASVEQIVERLDTLHEAYRADYTAYYERGAAEARERGEEPPAIRGADPLIVLVPGVGMFSYGGDKQTARVAGEFYVNAINVMRGAEALSTYAPIDESEKFRIEYWALEEAKLQRKPKPKPLATRIAFVTGAASGIGKAIAERLAAEGACVVVADLDAEKAQAVASEIGSTDVAVGLAANVADEAAVQAALNEAVLAFGGVDIVVNNAGLSLSKSLFETTEADWDLQHDVMAKGSFLVSKNAARILVDQKLGGDVIYISSKNSVFAGPNNIAYSATKADQAHQVRLLAAELGEHGIKVNGINPDGVVRGSGIFASGWGANRAKTYGIEEQDLGKFYAQRTLLKREVLPENIANVAFSLCTADFSHTTGLHVPVDAGVAQAFLRNANANANANA
AK018_042901080hypothetical proteinATGACCGTCACCTCCGACGCCGTGGGGTCCCCGGCGCACGCGGTCGCAGCGGCGCCCCGGGGACACCGGGGCAGCCGCGGGGCACGCCCACGCCGGCCNNNNNNNNNNTCCCCCATGCCCGACCCCTCCGCCGCGGTGCGCACCGTCGACCCGGTGCGCCAGGGTCCGCACGGGGACCTGCGGGTCCGCGTCTACGACGTCCCGGCCGGCACGACGCCGGTCGCCGGGCTCGTGTGGGCGCACGGCGGGGCGTTCATGCACGGCGACCTCGACATGCCCGAGGCTGACCACGTGGCCCGCACGCTGGCCGGCCGCGGCGTCGTGGTCGTCAGCGTCGACTACACGTTGGTGACCGCCGTCGACTACCGCGAGGCGCTCGCCGCCGGCGACCTGACCGGCGGGCTCGCCGCCGTCCTGGCCGCCGACGGCACCCGCTTCCCGGTCGCCTCCCGCGAGGTCGCCTTCGCCTTCGCCTGGGCGACCGGCGCCGACCTCGGCGTCCCGGCAGGGCGCTGGTCGCTCGGCGGTGCCAGCGCCGGGGGCAACCTCGCCGCCGGTGCGGCGCTGCGGCTGCGCGACGCGGCGGGCGGGCACGACGACGCGGCGCCCGTCCCGCCGTCGTGCACCGTGCGCCCGACCCCGCGCAGCGTGGTGCTCGCCTACCCCGTGGCGCACTACGAGCTGCCCACGCCGTGGCCGGAGCTGGCCGCCAAGATCTCCGCGCTGCCGCCGGACCGGAACTTTCCTCCGGCGGCAGTGCGGGCCATGAACGACAACTACCTGGGGCACGACGGCGGACCGGAGGTGCCGTACGCGTTCCCCGGCGGGCAGGACCTGCGCGGGCTGCCCCCGCACCTGGTGGTCAACTCCGACCACGACGCGCTGCGGTCCTCCGGGGAGACGTACGCCGCCGAGCTGGCCGCGGCCGGCACCGACGTCATGGTCGTGCGCGAGGACGGCACCACCCACGGTCACCTCAACCAGCCGGACGACCCCGGGTGCGCGCGCAGCCTCGCGCGCGTCGCCGCCTGGCTCACGTCCGACGTGCTGGTCGGCACCACCCACGAACCACCCCCGTAGMTVTSDAVGSPAHAVAAAPRGHRGSRGARPRRPXXXSPMPDPSAAVRTVDPVRQGPHGDLRVRVYDVPAGTTPVAGLVWAHGGAFMHGDLDMPEADHVARTLAGRGVVVVSVDYTLVTAVDYREALAAGDLTGGLAAVLAADGTRFPVASREVAFAFAWATGADLGVPAGRWSLGGASAGGNLAAGAALRLRDAAGGHDDAAPVPPSCTVRPTPRSVVLAYPVAHYELPTPWPELAAKISALPPDRNFPPAAVRAMNDNYLGHDGGPEVPYAFPGGQDLRGLPPHLVVNSDHDALRSSGETYAAELAAAGTDVMVVREDGTTHGHLNQPDDPGCARSLARVAAWLTSDVLVGTTHEPPPNANANANANA
AK018_042911167rhaAL-rhamnose isomeraseATGCCCAGCTTCGACGACATCACCGGAGTCCTGGACCGCCTCGCCATCGAGGTGCCGTCCTGGGCCTACGGCAACTCCGGCACCCGCTTCAAGGTGTTCTCCACGCCGGGCACGCCCCGCGACCCCGAGGAGAAGATCGCCGACGCCGCCCAGGTGCACCGCCTGACCGGCCTGGCGCCCACCGTCGCGCTGCACATCCCGTGGGACAAGGTCGACGACTACGCCGCGCTGCGCCGCTACGCCAACGACCAGGGCGTCGACCTCGGCACCATCAACTCCAACACGTTCCAGGACGACGCCTACAAGTTCGGCTCCCTGACGCACACCGACCCCGCCGTGCGCCGCCAGGCGATCGACCACCACCTCGAGTGCCTCGAGATCATGGACGCCACCGGGTCCAAGGACCTCAAGATCTGGCTCGCCGACGGGTCCAACTACCCGGGCCAGGCCGACCTCCGCACCCGCCAGGACCTGCTGCACGAGTCCCTCGCCGAGATCTACGCCCGGCTCGGCGACGAGCAGCGCATGGTGCTGGAGTACAAGTTCTTCGAGCCGGCGTTCTACCACACGGACGTCCCGGACTGGGGCACCTCCTACGCCCAGGTCGCCGCCCTCGGCGAGAAGGCCTTCGTCTGCCTGGACACCGGCCACCACGCGCCGGGCACCAACATCGAGTTCATCGTCGCCCAGCTGCTGCGCCTGGGGAAGCTCGGCTCGTTCGACTTCAACTCGCGCTTCTACGCCGACGACGACCTCATCGTCGGCGCCGCCGACCCGTTCCAGCTCTTCCGCATCATGGCCGAGGTGATCCGCGGTGGCGGCCTCGACGAGGGCTCCGAGGTCGCGCTGATGCTCGACCAGTGCCACAACATCGAGGACAAGGTGCCCGGCCAGATCCGCTCGGTGCTCAACGTCCAGGAGATGACGGCCCGCGCGCTGCTGCTCGACCGTGACGCCCTGACGAAGGCCCAGGAGAACGGCGACGTGCTCGAGGCCAACGCGATCTACATGGACGCCTTCTACACCGACGTGCGCCCGATGCTCGCCGCCTACCGCGAGCAGCGCGGTCTGCCCGCCGACCCGATGGCCGCGTTCGCCGAGTCCGGCTACCTGCCGAAGATCGCCGCCGAGCGCGTCGGCGGCCAGCAGGCCGGCTGGGGAGCCTGAMPSFDDITGVLDRLAIEVPSWAYGNSGTRFKVFSTPGTPRDPEEKIADAAQVHRLTGLAPTVALHIPWDKVDDYAALRRYANDQGVDLGTINSNTFQDDAYKFGSLTHTDPAVRRQAIDHHLECLEIMDATGSKDLKIWLADGSNYPGQADLRTRQDLLHESLAEIYARLGDEQRMVLEYKFFEPAFYHTDVPDWGTSYAQVAALGEKAFVCLDTGHHAPGTNIEFIVAQLLRLGKLGSFDFNSRFYADDDLIVGAADPFQLFRIMAEVIRGGGLDEGSEVALMLDQCHNIEDKVPGQIRSVLNVQEMTARALLLDRDALTKAQENGDVLEANAIYMDAFYTDVRPMLAAYREQRGLPADPMAAFAESGYLPKIAAERVGGQQAGWGAPGPT0017770_491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017770-rhaA-K01820NANA
AK018_04292366rhaM_2COG3254L-rhamnose mutarotaseGTGCACGACGACGGCAAGCGTCGGGTCATGTTCCAGTTCCGGGTCCACCCCGACCGGCTGGAGGAGTACGGCCGCCGCCACGGCGAGGTGTGGCCCGAGATGCTGCGCGCCCTGCGTGACGCGGGCTGGGAGAACTACTCGATCTTCACCTCCCCCGACGGGCAGGTCGTCGGCTACTTCGAGAGCGACGACCCCGACGCCGCCCGCGCCCGGACGGGCCTGACCGAGGTCAACGCCCGCTGGCAGGCGGAGATGGCCGAGTTCTTCGACGGCGACGGCCCCGACGAGACCATGACCGAGCTCACCCAGGTCTTCCACCTGGAGTCGCAGCTCGCCGCGGCCGACGCCGCGGAGAACCAGGACTGAMHDDGKRRVMFQFRVHPDRLEEYGRRHGEVWPEMLRALRDAGWENYSIFTSPDGQVVGYFESDDPDAARARTGLTEVNARWQAEMAEFFDGDGPDETMTELTQVFHLESQLAAADAAENQDPGPT0017795_50DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017795-rhaM|rhaU|yiiL-K03534NANA
AK018_042931017degA_10COG1609HTH-type transcriptional regulator DegAATGCCGCCGCGCACCAAGCGCAGGACGTCGATCGCCGACGTCGCGAAGCTCGCCGAGGTCTCGGTCGGCACGGTCTCCAACGTCCTCAACCGCCCCGACCGGGTCTCCCCCGCCACCCGCGAACGGGTCGAGTCCGCCATCGCCGAGCTGTCGTTCGTGCGCAACGGCTCCGCCCGCCAGCTCCGTGCCGGCACCATCACCACCGCCGGCGCCATCGTCCTCGACATCGCCAACCCGTTCTTCACCGACGTGGCCCGTGGCATCGAGGACCGCCTCGACGAGGCGGGTTACACGCTCATGCTCGCCAGCTCCGACGAGGACCCAGAGCGCGAGGCCCGCTACCTGCGTCTGTTCGAGGAGCACGGGGTCCAGGGACTGATGGTGGTCCCGTCCGGCCCGGACATCGACCACCTGCTCACCCTGCGCGAGCGCGGGCTGCGGATCGTGCTGCTCGACCGCCCCTCCCCCGACCCGACCGTCTCCTCCGTCGCCGTCGACGACCGTGCCGGCGCCGCCGCGGCCGCCCGCCACCTGCTGGACCTCGGCCACGAGCACCTCGCGTTCCTCAACGGCCCGCACACCATCCGCCAGTGCGCCGACCGCTCCGCAGGACTCCGGGACGCCCTGACCGAAGCCGGGCTCGACGTCGACGAGGCGCTCGAGGAGATCACGATCACCGCGCTCAACGCCGACGGCGGCCAGGCCGGCACCGAGCAGATCCTCGCCATGGACGCCCGTCCCACGGCCACGATGTGCGTCAACGACCTCACCGCGCTGGGGGCGCTGCGCACCCTGCGCGCCGCCGAGGTCCCCGTCCCCTCCGGCATGGCCGTCGTCGGGTACGACGACGTCACCTTCGCGGGCGAGCTCGCCACGCCGCTGACGTCGGTGCGCCAGCCCATGCACCGCCTCGGCCATCGCGCCGCCGACCTGCTCCTGGCCGAGTCCGAGGCACCCGAGCAGGTCGTCTTCCAGCCCGAGCTCGTGGTGCGCGAGTCCACCACCGGGACGGGCTGAMPPRTKRRTSIADVAKLAEVSVGTVSNVLNRPDRVSPATRERVESAIAELSFVRNGSARQLRAGTITTAGAIVLDIANPFFTDVARGIEDRLDEAGYTLMLASSDEDPEREARYLRLFEEHGVQGLMVVPSGPDIDHLLTLRERGLRIVLLDRPSPDPTVSSVAVDDRAGAAAAARHLLDLGHEHLAFLNGPHTIRQCADRSAGLRDALTEAGLDVDEALEEITITALNADGGQAGTEQILAMDARPTATMCVNDLTALGALRTLRAAEVPVPSGMAVVGYDDVTFAGELATPLTSVRQPMHRLGHRAADLLLAESEAPEQVVFQPELVVRESTTGTGPGPT0017992_10107DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_04294978hypothetical proteinATGGAACGTCCCCCCAGCACGACCGTCGAGCCGTTGCCGGCACCCGTGTGGCGCGACCCCGTGCACGACGGCGCCACCGACCCGATCGTCGTCCGCCACCCGAGCGGCACCTGGCGCATGCTGTGGACGCAGCGCCGGCCGTCCGCCGTCGGACCGGGCGTGACCTGGGTGCACGGCACCGACCTGGGCGTGGCCGAGTCCGACGACGGCGGAGCCACGTGGCGCTACCTCGGCACCCTGGGCGCCGAGGACGGCCTGCCCGTGACCGGGAGCGCGCCGCGGGACACCTACTGGGCGCCGGAGATCATCGAGGTCGACGGCACGTTCCACATGTTCCTGACCGTGGTGCCCGGCGTGCCGGACGGGTGGCCCGGACATCCCCGGTGGATCCACCACCTGACCAGCACCGACCTGGACCGCTGGACCGACCACGGCCCCCTGCCCCTGAGCTCCGGGCGCGCCATCGACGCGTGCGTGCACGCGCTGCCCGACGGCGGATGGCGGCTCTGGTACAAGGACGAGGCCGACGGGTCCACCACGTGGGCGGCCGACTCCGCCGACCTGTGGACCTGGATCGTCCGCGGGCGGGTGATCGGCGGGCGACCGCACGAGGGCGCGAAGGTCTTCCGGCTGTCCGGCTGGTACTGGATGGTGGTCGACGAGTGGCGCGGCCAGATGGTGTACCGGTCGAGCGACCTGGACACCTGGGACCCGCAGGGCCTGATCCTCGACTCCTCCACGGACCGTCCCGACGACGTCGCACCCGGTCACCACGCGCACGTCGAGGTGCTGTCACCCGACCCGGACGCCGGCGACGCCGTCGCGTGGATCGTCTACTTCACGCACCCCGAGCGGGACACCGCGCCCGCCGAGTCCGCCGCGGCCCGCAGGTCCAGCGTGCTCGTCGCCGAGCTGCGGGTACGGGACGGTCTGCTCGAGTGCCACCGCGGGGAGATCCGCACGCGGCTGCCGCGCTGAMERPPSTTVEPLPAPVWRDPVHDGATDPIVVRHPSGTWRMLWTQRRPSAVGPGVTWVHGTDLGVAESDDGGATWRYLGTLGAEDGLPVTGSAPRDTYWAPEIIEVDGTFHMFLTVVPGVPDGWPGHPRWIHHLTSTDLDRWTDHGPLPLSSGRAIDACVHALPDGGWRLWYKDEADGSTTWAADSADLWTWIVRGRVIGGRPHEGAKVFRLSGWYWMVVDEWRGQMVYRSSDLDTWDPQGLILDSSTDRPDDVAPGHHAHVEVLSPDPDAGDAVAWIVYFTHPERDTAPAESAAARRSSVLVAELRVRDGLLECHRGEIRTRLPRNANANANANA
AK018_042952178hypothetical proteinATGACCCTCACCCGCCTCCGCGCCCCGCTGGCGATGCTCGCCGCGCTCGCGCTCCTGATGCTCGGTGCCGTCGTCGGCGTGCCCGGAGCCGTCGCGCAGCCCGGCGCGATGGCGGTCCCTACCGGCAACGGCCAGCAGGTCTGCCCGGAAGGCAACGACAACGACTCCGGCGGCGTGTGGCGCAAGATCGACAGCGACGAGATCGGCGACCACGCGACGTCGACCGACGGCGACGGCGAGGCCCTCCAGGTCGAGGTCGACGCCTCGGCCGGGCAGTACATCGTGCAGTTCTGCGTCAAGGCCGGCCAGACGGTCGAGATCGTGGACGTCGACCCGGGCGTGACGACCCTGAGCATCGACGCCCCAGACGACGAGTCGGGCAAGGTCCACGCGATCAGCCACGTCTCGGTCCGCGAGGTTCCCTACCTCGCCCCGACGTGCGAAGGGCTGGAGCACCCGGACGGTGGCCTGGCTCCGCACGGCCACGTGAACATCAAGGTCGAGAACCTTGCCACGGGGGAGTCGCAGACCTTCAACTTCCACGCTGACTTCGACCGGGAGACCGAAGACCCTGACGACTACCTCTACGGCGACCAGACCTTCTTCGACCCTCGGGATCACGCGAACTGGCCGGGCTGGAGCACCTACGCCATCACGTGGGTCCAGCTGGACGACGAGAACTATCACTGGACGGGCTTCGTCGAGTGCGGCGAGCCCCCGGCTGAGGTCTCGCCGGTGGTCGAGGTGACCCAGGCGCAGTGCGAGGCGCAGCCCGGCGTCGTCCTCGGGCAGACGATCGTGAGCACCGCGGGCATCGCGGTCCACGGGACGTTCGGTGCCGAGGTCGTGGTGAAGGACGCCGCGGGCGAGGTGGTCGTCGGCGATGATCTGCTCGATCTGGACGCCGGTGCCTACACCGTGACCGTGACTCTCGGTGCGGACCAGGAGTTCGGCGAGCTGGGCGACGGCTGGACCGCGGAAGGGAGCGTCGCGACTTTCACCGCCGTGATCGACGAGCTCGAGGACTGCTGGGAACTCGTGGTGGTCGAGCCGGCCGTCGAGGTGACCGACGTGTGTGGCCTGACCGACGACACCGTCACGGGCGTGCCCACGGTCGGGGTGAGCTACTCCGTGCCGGAGCTCGAGGCTCCTGAGACGTGGACCATCGTCGCGACCGCGGACGAGGGCTACGTCTTCGACGACGAAAAGACCACCCGGACCTTCACCGGCACGTTCGAGGACCAGCAGTGCCCGGAGCCGAGTCCGTCGCCGTCGGTGGAGCCGAGCCCGTCTCCGTCCCCGTCGGAGGACCCGACGCCGGAGCCCAGCCCGTCCCCGTCCGACGAGCCCACGGAGGAGCCGTCGCCGGAGCCCTCGGAGGACCCGACCCCGACCCCGACGCCGTCCCCGTCCGACGAGCCCTCGGAGGAGCCGAGCCCGTCTCCGTCTCCGTCGGAGGACCCGACGCCGGAGCCCAGCCCGTCCCCGTCCGACGAGCCCACCGAGGAGCCGTCGCCGGAGCCCTCGGAGGCCCCGTCCCCGACCCCGACGCCGACCGAGACCCCCGAGCCGACGGAGGCCTCCCTCGACGGCTCCGTCGCGGTGGGCGAGTGCGTGGCCGACGCCCCGTGGATCGCCTACGAGATCGAGCTCGAGGACCCGGACGGCCAGGCCGTCCCCGACGAGAACGGCCAGTACCCGGCCTACCTGGTGCTGACCGACGGGACGAACGAGGCGACGATCTCCCTCGGCGTGCTCGGCGAGGACGGCACGTTGTCCGGCCGGGCGCTCTGGCCGGGTGCCTCGGTGGCCGACGACGGTGTGACGGCGACGGGGTGGCCGGGCTGGACCCAGGACGCCGAGGGTCGCTGGGTGGAGACCGACGAGAACTACGCCTGGACCCGGAGCGACATCGACGCGACGCTCGTCGTCAACCCGGACATCGCGGTCGGCCTCGACTACCCGGATGCGACGCCGGAGTGCGCGAACCCGCCGGCCGAGCCGGAGCCCGGCCAGGGCGGCGTGGACCCGATCGTCGACGACGAGCCGACGCCCGCGGCCCAGCCGACCTCGCCGACGCTGCCGCAGACGGGTTCGGACGTCGCGCTGTTCGCGATCGGTGCGCTGCTGCTCATCGGTGCCGGTGGAGCGTTCCTCTGGCTGCGTCGTCGGGCCTGAMTLTRLRAPLAMLAALALLMLGAVVGVPGAVAQPGAMAVPTGNGQQVCPEGNDNDSGGVWRKIDSDEIGDHATSTDGDGEALQVEVDASAGQYIVQFCVKAGQTVEIVDVDPGVTTLSIDAPDDESGKVHAISHVSVREVPYLAPTCEGLEHPDGGLAPHGHVNIKVENLATGESQTFNFHADFDRETEDPDDYLYGDQTFFDPRDHANWPGWSTYAITWVQLDDENYHWTGFVECGEPPAEVSPVVEVTQAQCEAQPGVVLGQTIVSTAGIAVHGTFGAEVVVKDAAGEVVVGDDLLDLDAGAYTVTVTLGADQEFGELGDGWTAEGSVATFTAVIDELEDCWELVVVEPAVEVTDVCGLTDDTVTGVPTVGVSYSVPELEAPETWTIVATADEGYVFDDEKTTRTFTGTFEDQQCPEPSPSPSVEPSPSPSPSEDPTPEPSPSPSDEPTEEPSPEPSEDPTPTPTPSPSDEPSEEPSPSPSPSEDPTPEPSPSPSDEPTEEPSPEPSEAPSPTPTPTETPEPTEASLDGSVAVGECVADAPWIAYEIELEDPDGQAVPDENGQYPAYLVLTDGTNEATISLGVLGEDGTLSGRALWPGASVADDGVTATGWPGWTQDAEGRWVETDENYAWTRSDIDATLVVNPDIAVGLDYPDATPECANPPAEPEPGQGGVDPIVDDEPTPAAQPTSPTLPQTGSDVALFAIGALLLIGAGGAFLWLRRRANANANANANA
AK018_042972358hypothetical proteinGTGCATGCTCACGACGTCGTGAGCGGCCCGGTCGGGCCGTACGCCTTCGTCTTCTGGAACGACGACCTCGACGACGCGGCGGTGCTGGGCCGGCTCCGCGAGCTGGCCGGCGCCGGGTTCGTCGGCGTGACGCTCAGCGCCCGTGTCGGCCTGAGCCGCCGGGTCGGCTACCTCACGGACGAGTACCTCCGGCTGGTGCGCGTCGCCGTGGACGAGTGCGCGCGCCTCGGCCTGGCGGTCATGCTCTACGACGAGGCGTCCTACCCGTCCGGCTCGGCGAACGGCGCCGTCGTCGCCCGCGACCCGGCCCACGCGGCCCGGTGCCTCGTGCCCGTGGTGCGTGACGTCGTCGTGCCCGGGGACGACGACGGCGCTCCGGCCGCACCCGGGTACTGGCGGCCCGCGCTGGGCCGGGACCTGGACGCCCGGCTGCTGGCGGTCGTCGCCCGCCGGGTGCACGACGGCGTCCCGGCCGCCGAGGGCGCCTGCCTGCTGCCGGTGCGTGCCCCGGGCGTCGTGCTCCTCGACCTGGCACCCGGCACCTGGCAGGTGGCCGCGGTGTACGACGCGGCCAGCGGCGGCACCATCCGTGGCGCGCACGCCGAGGAGGACGACGGTTCGGCCCTCGCCCCGCCCGCCGCGGACCTGCTGGACCCGGACGCGGTGGCGGCGTTCGTCGAGCTCACCCACGACGCCTACGCCGCGGCGCTCGGCGACCACCTCGGCTCCACCGTCGTGGCGATGTTCACCGACGAGCCGTTCCTGCTCGGCCGCGGGCACCGCCCGCACGCCCGCCCGTACACGCGTGGGCTGGAGGACGAGGCCGCGAGCGCCCTGGGCACCGACCGCGACGACGTGCTGCGCCGTCTGCCGGCCCTGTGGGACGACGACGGCACGCGGCCGGGCGGCACCGACCCGGCCGCCACCGGGTTCGCGCGGACGTGGGGGGACGTGGTCCGCGACCGGCTCGCCCGCGTCTACTACGGTGCGCTCGCCACCTGGTGCGCTCGCCACGGCATCGCGCTGACCGGGCACCCGGCCGAACCGGACGATCTGGCCACGACCGGGCTGCTGGACTGGCCGGGCCAGGACACGGTCTGGCGCTGGGTGCTGCCCGGTCCGACGGCCCTGGAGGGCCCGGAGTCCACGGCCGCGAAGGTGGCGGCGAGCGCCGCCCGGAGGCGCGGTGCGCCCGCGCTGACGGAGGTGCTGGGGGCGTACGGGTGGCGGCTGAGCCTGGACGAGGCGCGCTGGCTCCTGGACTGGTACCTGTCACGCGGGGTGACAGTGCCGGTGTTCCACGCGTTCTTCGCCTCGGTGCGCGGTGGCCGCGCGTTCGAGAGCGAGCCGGACCTGGGCGTGCACAACTCGTGGTGGCCGCACCTGCCGCCGCTGGTGGCGTACGTGCGCCGGGTGGCCGAGCTGCTGGCGGCGCACCCGCCGGTCTGGTCGGTGGGGGTGCTGTGCCCGCCGGACGCGGCGCCGTCGGGCGGTGTGGTGCGGGCGTTGCTCGAAGGCCAGGTGGACTTCGGGTACACGGTCGACGGCGCGGGGTACGACGTGGTGGTGGATCCGGCCGACGGCGTGCCGGACGCCGCGGCGGTCCGGCGTCGTCTGGAGGAGCTCGGCCGGCCGGTGGTGGACTGCGTCCCGGCGGCGCCGGACCTCCGCGCGGTGGTGCTGGGCGACGACCGGGGCACGGTGTTCTTCCACGAGGGCGAGGAGCCGGTCGCCACGAGGGTCCGGCTCTCGCACGTCCCCGCCGAACCGTGCTGGTGGGACCCGTTCACGGACCGGCGGCACCCGGTAACGGTCACGAGCGACGGCCGAGTCGACCTGCGCCTGCGGCCCCGGCAGACCCTGGCACTGGTGACACGCACCGGTCCGGTCGAGGACGGGCACCCGCCGGACGGTCCGCGCGCCGTAGGCGATCCCGTCGAGCTGTCGGGCTGGACCGGGGCCCTGGAGCGAGCGATCTGCGACCTGGACGAGATCCAGGACGCACCCCGCGACGCGCCCGTGGAGGCACCCGTGCTGGGACTCGGCGACTGGACGCAGCATCCGGTGCTGCGCCGCTTCGCGGGCACCTACCGGTACACGACGACGTTCACGCCGACCACTGCCGCACGCACGATCGACCTGGGCGACGTCGGCGGGGCCGCGACGGTGCTGGTCGACGGCATCGTCGTGGGCCATGCGCTCTCGGCACCGTACGAGGTCGACCTGCCGGTGCTCGACGTCGGCGAGCACCGGCTCGAGGTGCTGGTCAGCAACAGCGCGGCGAACTACTACGAGGGTGCCGGCAGTCCGTCGGGGCTGATCGGGCCGGTCACCCTGCGGCCCCGGCACCACCGATGAMHAHDVVSGPVGPYAFVFWNDDLDDAAVLGRLRELAGAGFVGVTLSARVGLSRRVGYLTDEYLRLVRVAVDECARLGLAVMLYDEASYPSGSANGAVVARDPAHAARCLVPVVRDVVVPGDDDGAPAAPGYWRPALGRDLDARLLAVVARRVHDGVPAAEGACLLPVRAPGVVLLDLAPGTWQVAAVYDAASGGTIRGAHAEEDDGSALAPPAADLLDPDAVAAFVELTHDAYAAALGDHLGSTVVAMFTDEPFLLGRGHRPHARPYTRGLEDEAASALGTDRDDVLRRLPALWDDDGTRPGGTDPAATGFARTWGDVVRDRLARVYYGALATWCARHGIALTGHPAEPDDLATTGLLDWPGQDTVWRWVLPGPTALEGPESTAAKVAASAARRRGAPALTEVLGAYGWRLSLDEARWLLDWYLSRGVTVPVFHAFFASVRGGRAFESEPDLGVHNSWWPHLPPLVAYVRRVAELLAAHPPVWSVGVLCPPDAAPSGGVVRALLEGQVDFGYTVDGAGYDVVVDPADGVPDAAAVRRRLEELGRPVVDCVPAAPDLRAVVLGDDRGTVFFHEGEEPVATRVRLSHVPAEPCWWDPFTDRRHPVTVTSDGRVDLRLRPRQTLALVTRTGPVEDGHPPDGPRAVGDPVELSGWTGALERAICDLDEIQDAPRDAPVEAPVLGLGDWTQHPVLRRFAGTYRYTTTFTPTTAARTIDLGDVGGAATVLVDGIVVGHALSAPYEVDLPVLDVGEHRLEVLVSNSAANYYEGAGSPSGLIGPVTLRPRHHRNANANANANA
AK018_04298126hypothetical proteinATGACGCCGTACGAGTCGTTCCGCGAGCGCCTGCCACAGATGGTGTTCGGCGGGGACTACAACCCGGAGCAGTGGCCGCGGGAGGTGTGGAGCGAGGACGTCGCACTGATGCGTGAGGCCGGGTGAMTPYESFRERLPQMVFGGDYNPEQWPREVWSEDVALMREAGPGPT0017815_1026DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_042991143bgaB_1Beta-galactosidase bgaBGTGAACCTGGTCAGCGTCGGGGTGTTCTCGTGGTCGTCGCTGGAGACCGCGGACGGCGACTTCCGGTTCGGCTGGCTGGACGAGGTCATGGACCTGCTCGCCGAGGCGGGGATCGCCGTCGACCTGGCCACGCCCAACGCCTCGCCCCCGCCGTGGCTCGCCGAGGACCACCCCCCCACGCTCATGACGCACCGGGACGGGATGCGCGCGGGAGTCGGCCTGCGCGGCCACTTCTGCCCGACGGCGCCCGCGTACGTCGACCGCAGCCGGCGCCTCGCGCAGCGCCTCGCGGAGCGCTACGGCGACCACCCGGCGCTGGCGATGTGGCACGTCGGCAACGAGTACCACGCCCAGTGCTTCTGCGACGGCTGCGACGCCGCGTTCGTGACGTGGCTGCGGACCCGGTACGGGAGCCTGGACGCGTTGAACGAGGCGTGGCAGACGGCGGTGTGGAGCCAGGGCTACTCCGCCTGGTCGCAGGTGCACCTCCCGCGGCCGACCCGCCTGGGCACGAACCCCGTGAACCCGGCGCGCGAGCTCGACTTCGCGCGGTTCACCTCCGACACCCAGCTGGACCTGTTCACCGCCGAGCGCGACCTGCTGCGGGCCGTGACGCCGCAGGTGCCGGTCACGACGAACTTCTTCGGGCTGGTCCCGCTGCACGACTACCGCCGCTGGGCGCGCGAGGTCGACGTCGTCGCCTTCGACTCCTACCCGGACCCGGCCCGCGACGGCTCGCACGTGACCGCGGCGTTCCACGGCGACCTGATGCGCTCCCTCGGCGACGGCGCCCCGTGGCTGCTCCTGGAGCAGGCCGCCGGTGCGGTGAGCCAGCGGAAGGTCAACGTGACCAAGCCGCCGGGGCGGATGCGTCTCGACTCGTGGCAGGCGGTGGGCCACGGCGCGGACGCCGTCATGTTCTTCCAGTGGCGCGCGGCCCGGGCCGGGCCGGGCACGAGCGTTTCCACTCGGCGATGCTCCCGCACGGCGGGACCGCGACGCGCGGCTGGCGCGAGGTGCGGGAGCTGGGGCAGGAGCTCGGCCGTGCCCGGCCGGTCGTCGGCGGGCGGACCGACGCCGAGGTGGCGATCGTCTTCGACTGGGAGAGCTGGTGGGCGTTGCGGGGTCCCGCGCTGCCCGTGAMNLVSVGVFSWSSLETADGDFRFGWLDEVMDLLAEAGIAVDLATPNASPPPWLAEDHPPTLMTHRDGMRAGVGLRGHFCPTAPAYVDRSRRLAQRLAERYGDHPALAMWHVGNEYHAQCFCDGCDAAFVTWLRTRYGSLDALNEAWQTAVWSQGYSAWSQVHLPRPTRLGTNPVNPARELDFARFTSDTQLDLFTAERDLLRAVTPQVPVTTNFFGLVPLHDYRRWAREVDVVAFDSYPDPARDGSHVTAAFHGDLMRSLGDGAPWLLLEQAAGAVSQRKVNVTKPPGRMRLDSWQAVGHGADAVMFFQWRAARAGPGTSVSTRRCSRTAGPRRAAGARCGSWGRSSAVPGRSSAGGPTPRWRSSSTGRAGGRCGVPRCPPGPT0017815_1026DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_04300855bgaB_2Beta-galactosidase bgaBGTGGCGATCGTCTTCGACTGGGAGAGCTGGTGGGCGTTGCGGGGTCCCGCGCTGCCCGTGAACCGGGACGAGTACCAGGCCACGGTCCTGGCGCACTACACGGCGCTGTGGCGCCGGAACGTCGCGGTGGACGCCCTCTCCCTCGACGACGACCTGACCGGCTACCGCGCCGTCGTCGTCCCGCACCAGTACGTGCTGACCGACGCCCAGGCCGCGGCCCTCGCGGCGTTCGTGGACCGCGGCGGGCACCTGCTGGTGGGGTGCTTCTCCGGGATCGTCGACGCCCACGACCGCGTCCACCTGCCGGGGTACGCACCCGGCCTGCGGCCGGTCGTCGGCGCGCACGTGCGCGACCTGTCCGCGCTGTCCGACGGTGTCACGCTCGGCCTGGACGTCGCGTCCGGCGGTCTGCTCGACGGCCTCCCCGGCGGGGCGTCTGCCGCGCGGTGGCAGGACGACCTCGCGCTCGAGGGCGGCACCGCCGAGGCGACCTACGCCGACGGCGACCTGGCCGGGAGCCCTGCCGTCGTCTCGCACGTGCGGGGCGCCGGCCGGGCCGTCTACCTCGGGACCCGGCTGGACGAGGTCGCGCTGGACCACCTGGTCGGGCGGTTCGTGGACGACGCCGGTGTCCGGCCCGTGGCGGACGCGCCGGACGGGGTCGAGGTGACCGAGAGGGTGGTGGCGGGGCAGCGGTACCGGTTCCTGCTCAACCATGCGGCGGCGGCACGGTCGGTCACGCTCGACGCCGACGGGACCGACCTGCTGACCGGTCGCGGGTTCGGTGCCGGGGACGTGCTGGAGCTGGCTCCTCGCGGGGTCGCCGTGCTGACCCGGCCGCATCTCCACCCCTGAMAIVFDWESWWALRGPALPVNRDEYQATVLAHYTALWRRNVAVDALSLDDDLTGYRAVVVPHQYVLTDAQAAALAAFVDRGGHLLVGCFSGIVDAHDRVHLPGYAPGLRPVVGAHVRDLSALSDGVTLGLDVASGGLLDGLPGGASAARWQDDLALEGGTAEATYADGDLAGSPAVVSHVRGAGRAVYLGTRLDEVALDHLVGRFVDDAGVRPVADAPDGVEVTERVVAGQRYRFLLNHAAAARSVTLDADGTDLLTGRGFGAGDVLELAPRGVAVLTRPHLHPPGPT0017815_735DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_04301729hypothetical proteinATGACGCTGCCCCTCTTCCCGGGCGGGGCGTCCGTCAGCCACCTGCGGGTCTACGACTGGCCGGCCGACGACGCGCCGCACGGCAGCGGGTCGCCGCACCTGCACACCACGTCCACCGAGGCGTACGTGACGCTGGGCGGGCGTGGTCGTGTCGAGACGCTGGGACCGGATGGGTTCGCGGTGCACGAGCTCGAGCCCGGCCGGATCGTCTGGTTCACTCCCGGCGTCGTCCACCGTGCGGTGAACCTCGGTGGCCTCGAGGTGCTGGTCGTCATGTCCAACGCGGGGCTGCCGGAGGCCGGGGACGCCGTGCTGACCTATCCGCCGGACGTGCTCGCCGATGTCGAGCGCTACGCGGCGGCGACCACGCTGCCGCGGCTCGACGACGGTGCCACCGACGCCGAGGTCGCCGCGGCCGCGCGGGATCGCCGGGACCTGGCGCTGGAGGGCTACGCCGCGCTGCGGACCGCCGTCGAGCAGCACGGTCCGGACGCCCTGGACGGGCTCCACGACGCCGCGGCCCGGCTGGTCGCGCCGCGGACGGCGGGCTGGCGGGAGACCTGGGAGTCGTCGGTGGTGCAGGCCGCGGGTCAGACGGACGCGGCGCTGGAGGCGCTGGCGGACGCGTCCGCGGTGACGCTGGGCGACGGCGCGGTCGCGACGGCGGACGCCCACGCCGGACCGCGCCGCTACGGGATGTGCGGGCGGCTGCAGACCTGGCCGCTCTAGMTLPLFPGGASVSHLRVYDWPADDAPHGSGSPHLHTTSTEAYVTLGGRGRVETLGPDGFAVHELEPGRIVWFTPGVVHRAVNLGGLEVLVVMSNAGLPEAGDAVLTYPPDVLADVERYAAATTLPRLDDGATDAEVAAAARDRRDLALEGYAALRTAVEQHGPDALDGLHDAAARLVAPRTAGWRETWESSVVQAAGQTDAALEALADASAVTLGDGAVATADAHAGPRRYGMCGRLQTWPLNANANANANA
AK018_043021005hypothetical proteinATGGCGGTCACGTTGAACTCCGACGGCGCGGCGATGACAGGGCAGCGCGACGGGGTCGACTTGTTCACCTATGTCTACCGTCCCGCCGACGTCCCCTACGAGAGCCCGCGCCCGTACCTGCACCCGCTGCGGACCCGCAGCGGTGCGGTCGTCAGCGAGTACCGACCGTGGGACCACGTGTGGCACAAGGGCATCGCCTGGTCCCTGCCGCACGTGGGTCCGTGGAACTTCTGGGGCGGGCCCAACTACGTGCACGCCGAGGGCGGGTACGTCGACCTGCACAACGACGGGTCGATGGAGCACGAGCAGTTCACGGCCCTGGGGCCGTGCGGCTTCGTGGAGGACCTGGCCTGGCGGACGCCTCGGGCCCACGACGGCACGCCGGGTGACGTCGTCGTGCGCGAGGAGCGCACGGTGCAGGTGGTGGTGCCGGACGACGACGCGACGGCCTGGGTGCTGACGTTCCGGTCGGTGATGACGAACGTGTCCGACGGCCCGCTGGACCTGGGCAGCCCGACCACGAACGGGCGCGAGAACGCCGGGTACGGCGGCCTGTTCTGGCGCGGCCCCCGGTCCTTCACCGGGGGGCAGGTGCTGCTGCCGGGCGACGACGGCACAGGTGTGCTCGCCGACGCCGAGGACGCGCGAGGGCTGCGTGCGTCGTGGCTCGGGTTCGTCGGGCGGCACGACGGCGCGGCCCCGGGGCCGGAGGGCGGCTCACGCGAGTCGACGGTCCTCATGGTGGACCCGGGCACGAACCCCGGCGGCACGCCGCAGTGGTTCGTGCGGTCGGAGCCGTTCGCGTGCGTGTGCCCGGCGCCGGCGTTCAGCGAGGAGATCCCGTTCGCCGCGGGGCAGACGCTGACCTTCGAGTACGGGGTGGTCGTCGCGGACGGCGCCTCCGACGGGGTGCGGGCGGCTCGGCTCGTGGAGACGGGGCGTCAGGTGCTGGAGGGTGAGGGCGTGGTCGAGGCGGGGCACGTGGAACCGGTCGCCGGTCGATGAMAVTLNSDGAAMTGQRDGVDLFTYVYRPADVPYESPRPYLHPLRTRSGAVVSEYRPWDHVWHKGIAWSLPHVGPWNFWGGPNYVHAEGGYVDLHNDGSMEHEQFTALGPCGFVEDLAWRTPRAHDGTPGDVVVREERTVQVVVPDDDATAWVLTFRSVMTNVSDGPLDLGSPTTNGRENAGYGGLFWRGPRSFTGGQVLLPGDDGTGVLADAEDARGLRASWLGFVGRHDGAAPGPEGGSRESTVLMVDPGTNPGGTPQWFVRSEPFACVCPAPAFSEEIPFAAGQTLTFEYGVVVADGASDGVRAARLVETGRQVLEGEGVVEAGHVEPVAGRNANANANANA
AK018_04303480hypothetical proteinATGGCGATGGTGCGCCTCGAGTCCGGCGCGATGGTCAGCATCACGAACTCGCTGCTGTCCCCGCGCCAGACCTCGTCGCTCCGGTTCGACACCGAGCGCGCCACGGTCGAGCTGCACCACCTGTACGGTTACGACGACGAGCACTGGACGGTGACGCCGGCTCCCGGCCACGAGGACGTCACCCGGCTCTGGGCCGACGACGTCGCCGCCACCCGCGGCACCGCCGTCGACGAGGGCCGGTCGGGTCACCTGGGCCAGCTCGTGCCCACCTACCGGGCGCTGGTGGCTGGCGAGGCGCCGCCCGCGGCGATCGCCGACGTCCGCGGCTCCCTCGAGCTGGCGGCCGCGATCTACCGCTCGGCGTTCACCGGTGAGACGGTGGTCCGCGGACAGATCTGTCCAGGAGACCCGTTCTACGCCAGTATGGGCGGTACGGGGGCACCGTGGCCCCCGGTCAAGGACACCGGCGAAGGGGTATGAMAMVRLESGAMVSITNSLLSPRQTSSLRFDTERATVELHHLYGYDDEHWTVTPAPGHEDVTRLWADDVAATRGTAVDEGRSGHLGQLVPTYRALVAGEAPPAAIADVRGSLELAAAIYRSAFTGETVVRGQICPGDPFYASMGGTGAPWPPVKDTGEGVNANANANANA
AK018_04305498ribH_26,7-dimethyl-8-ribityllumazine synthaseATGAGCGGCGCCGGGGCGCCCGCCACGCACGCGACCAACTGCTCCGACCTGCGGGTGGCCGTCGTCGCCGCCTCGTGGCACGACACCGTGATGGACGGCCTGCTCGACGGCGCCCGACGTGCGTGCGCCGACCACGCCGTCGAGCCCGAGGTGCTGCGCGTGCCCGGCTCGTTCGAGCTGTCCGTGGCCGCCCAGGCCTGCGCGGCGGCCGGCTACGACGCCGTCGTCGCCCTCGGTGTCGTCATCCGCGGCGGGACACCGCACTTCGACTACGTGTGCGCCGCCGCCACCGACGGGCTCAATCGCGTTGCGCTCGACCACACCGTGCCGGTGGGGTTCGGGCTGCTCACGTGCGACGACGAGGCCCAGGCCCTCGACCGCGCCGGGCTCGAGGGCTCCCACGAGGACAAGGGGTACGAGGCCGCGGCCGCAGCCCTCGCCACGGCGCGTGTGGTGCGGGCCGTCCGCGCGGGCGCCCCCGCGACCGTCGGCCGCTGAMSGAGAPATHATNCSDLRVAVVAASWHDTVMDGLLDGARRACADHAVEPEVLRVPGSFELSVAAQACAAAGYDAVVALGVVIRGGTPHFDYVCAAATDGLNRVALDHTVPVGFGLLTCDDEAQALDRAGLEGSHEDKGYEAAAAALATARVVRAVRAGAPATVGRPGPT0008605_1145DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008605-ribH|RIB4-K00794NANA
AK018_043061332ribBA_2COG0108Riboflavin biosynthesis protein RibBAATGAGCCCCGTCGACGGCGGCGTGCACGAGCGCGTCACCCGTGCCCTGGCGGCCGTGGCCGCCGGACGTCCCGTCGTCGTCGTGGACGACGAGAGCCGCGAGAACGAGGGCGACCTGATCTTCGCGGCCGAAGCCGCCACGCCCGAGCTGATGGGCTTCACCGTGCGGCACACCTCCGGCCTCGTCTGCGTGGCCGCCGACGGCGCGACGCTCGACCGGCTGGACCTGCCGCTCATGGTCGCCGAGAACCGCGACGCCTTCCGCACCGCCTACACCGTCACGGTCGACGCGGCCGACGGCGTCACCACCGGGATCTCGGGCGCCGACCGGGCACGGACCGCGCGGGTCCTGGCCGACCCGGACGCCGCGCCGGCCGCGCTGACGCGGCCCGGTCACGTCCTGCCGCTGCGGGCTCGCGACGGCGGCGTGCTGGAACGCCCCGGGCACACCGAGGCCGCCGTCGACCTGGCGCGCCTGGCCGGACGGGGCAGCACGGGGGTGCTCGCCGAGGTCACGCACGACGACGGCACCATGATGCGCCGCCCCGCCCTCGCCGCGTTCGCCGCCGAGCACGGCCTCGAGCTGATCAGCGTGGCCGACCTCGCCGCCTACCGGCGGGCCACGGAGTCCACCGTCGACCGGCTCGCGGTCACCCGACTCCCGACGCGCCACGGCGGGCTCACCGCCGTCGGCTACCGCGACCGGGTCACCGGCGACGAGCACGTCGCCCTCGTGGCCGGGCCGCCCGCCGACCTCGACGACGGTGCGCCGGTGCTGGTCCGCGTGCACTCCGAGTGCCTGACCGGCGACGCGTTCGGTTCCCTGCGGTGCGACTGCGGCCCCCAGCTCGACGCCTCGCTGCGGGCCGTGCAGGAGGCCGGCCGCGGCGTCGTGGTCTACCTGCGCGGCCACGAGGGCCGGGGGATCGGTCTGGTGGCCAAGCTGACCGCGTACAGCCTGCAGGACGGCGGGCACGACACGATCGACGCGAACCTCGCCCAGGGCCTGCCGGTGGACTCGCGGGAGTACACCGCCGCCGCGCACGTCCTGCGCGACCTCGGCGTCGGACCGGTGCGGCTCCTGACCAACAACCCGGCCAAGGTGGACGGGCTGCGTGCCGGAGGTGTCGACGTCGTCGAACGGGTCCCGCTGGCCATCCACCCGGTCCCCGACAACGTGGCATACCTGCGGACCAAGCGGGACCGCATGGGGCACGACCTGCCGAACCTTGACCCTGAGGTCGAACCTTCGGGTGACCTCGACCTTCACCTTCGACCCCAACCTGAAGGAGACGCCATGACCCCGATGACCGCCTGCGAGGGCGCCCGATGAMSPVDGGVHERVTRALAAVAAGRPVVVVDDESRENEGDLIFAAEAATPELMGFTVRHTSGLVCVAADGATLDRLDLPLMVAENRDAFRTAYTVTVDAADGVTTGISGADRARTARVLADPDAAPAALTRPGHVLPLRARDGGVLERPGHTEAAVDLARLAGRGSTGVLAEVTHDDGTMMRRPALAAFAAEHGLELISVADLAAYRRATESTVDRLAVTRLPTRHGGLTAVGYRDRVTGDEHVALVAGPPADLDDGAPVLVRVHSECLTGDAFGSLRCDCGPQLDASLRAVQEAGRGVVVYLRGHEGRGIGLVAKLTAYSLQDGGHDTIDANLAQGLPVDSREYTAAAHVLRDLGVGPVRLLTNNPAKVDGLRAGGVDVVERVPLAIHPVPDNVAYLRTKRDRMGHDLPNLDPEVEPSGDLDLHLRPQPEGDAMTPMTACEGARPGPT0007990_964DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007990-ribBA-K14652NANA
AK018_04307639ribE_2COG0307Riboflavin synthaseATGTTCACCGGCATCGTGTCCGAGCTCGGCACCGTGGTCGCCCTCGAGCGCACCACCGACGCCGCCCGCCTGACCGTCCGATCGCCCGGCGTGCTCGCCGACGTCCGCCGCGGCGACTCGATCGCCGTCGACGGGTGCTGCCTGACCGTGGCCGACCACGACGGCGAGACCTGGACCGCCGACCTCATGGCCGAGACCCTCGAACGCACCACCCTCGGCGCACTGCGTGCCGGCGACCGCGTCGACGTGGAGCCGGCGCTCGCGGTCGGCGACCGCCTCGGCGGGCACGTCGTGCAGGGGCACGTCGACGGCGTCGGCACGGTGCTGTCCCGCACGCCGGGGGAGCGGTGGGACGTCGTGGAGATGTCCCTGCCCGCCGCCCTCGCCCGGTACGTGGTGGCCAAGGGGTCGATCGCCGTCGACGGGGTGTCCCTGACCGTCGTCGAGGCCGCTACCGACCGGTTCACGGTGAGCCTGATCCCCGAGACGCTCGCCCGGACCACCCTCGGCCGGCGCGCCGTGGGGGACCGGGTCAACCTCGAGACCGACGTGCTCGCCCGGCACGTCGAACGCCTGCTGGACCACCGGCTCGTGGCACACGACGCAGCGCCGGTCGCGACCGCGGAGGTGGCCCGATGAMFTGIVSELGTVVALERTTDAARLTVRSPGVLADVRRGDSIAVDGCCLTVADHDGETWTADLMAETLERTTLGALRAGDRVDVEPALAVGDRLGGHVVQGHVDGVGTVLSRTPGERWDVVEMSLPAALARYVVAKGSIAVDGVSLTVVEAATDRFTVSLIPETLARTTLGRRAVGDRVNLETDVLARHVERLLDHRLVAHDAAPVATAEVARPGPT0008610_2671DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008610-ribE|RIB5|ribC-K00793NANA
AK018_043081122ribD_2COG0117Riboflavin biosynthesis protein RibDATGACGACCGCCGCCGCGGCACCCACCCTCACGCCGGCCGAGCACGCCGCCATGCAGCGGGCGCTCGCCCTGGCCGCCACCGAGGGGATCTCGACCGGCCCCAACCCGCGTGTCGGCTGCGTGCTGCTGTCGCCCGACGGCGCCACCCTCGCCGTCGGAGCCCACCGCGGTGCCGGGACCCCGCACGCCGAGGCGGCTGCCCTCGCCGCCGCCCGCGCCGCCGTCGGACCCGGCACCCTGCGCGGCGCCACCGCCGTCGTCACGCTCGAACCGTGCGCCCACACCGGACGCACCGGCCCGTGCGCCGAGGCGCTGCTCGACGCCGGGATCGCCCGGGTCGTGTACGCCCAGGCCGACCCCAACCCGGCCGCGACCGGCGGGGCCGCACGCCTGCGCGCCGCCGGCGCCGACGTCGTCGGACCGGCGTGCCCCGACGAGGCCCGCGCCCTGAACCCCGTGTGGACCCGCGCGATGGAGCTCGGACGCCCGTACGTGACCTGGAAGGTCGCCGCCTCCCTCGACGGTCGCACCGCCGCCGCCGACGGCACCTCGCGCTGGATCACCTCCGCCGTCGCACGCCGCGACACCCACCGCCTGCGCGGCGCCGTCGACACCGTCCTGGTGGGCACGGGCACGCTGCTCGCCGACGACCCCGCCCTGACCGTGCGCGACACCGACGGCGCGCACGGCCCGCAGCCCCTGCGCGCCGTCATGGGACGCCGCGACCTGCCGCCGTCGGCACGCCTCGCCGCGCCCGGCCCCGACAGTACTCCTGCCGTGCACCTGCGCACCCGCGACCCCCGCGCGGCGCTCGCCGACCTGTGGGAGCGCGAACGGCGGCACGTGCTCCTTGAGGGCGGGGCCACGCTCGCCGCCGCGTTCTGGCGGGCCGGGCTCGTCGACGAGGTCGTCGCCTACGTCGCGCCCGTCCTGCTCGGTGCCGGGCCCGCCGCCGTCGGCGACCTCGGCATCACCACCATCACCGGCGCTGCCCGGCTCGACGTCACCGACGTCGCCGTGCTGGAGCCCGACCCCGACGACCTCGCCGCACCCGGAGCAGCCCGCTCCGGGGCGGCCGCCACGAACCTGCGGCTCACGCTGACGCCGCGGAAGGAGTCCTGAMTTAAAAPTLTPAEHAAMQRALALAATEGISTGPNPRVGCVLLSPDGATLAVGAHRGAGTPHAEAAALAAARAAVGPGTLRGATAVVTLEPCAHTGRTGPCAEALLDAGIARVVYAQADPNPAATGGAARLRAAGADVVGPACPDEARALNPVWTRAMELGRPYVTWKVAASLDGRTAAADGTSRWITSAVARRDTHRLRGAVDTVLVGTGTLLADDPALTVRDTDGAHGPQPLRAVMGRRDLPPSARLAAPGPDSTPAVHLRTRDPRAALADLWERERRHVLLEGGATLAAAFWRAGLVDEVVAYVAPVLLGAGPAAVGDLGITTITGAARLDVTDVAVLEPDPDDLAAPGAARSGAAATNLRLTLTPRKESPGPT0008555_2075DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008555-ribD-K11752NANA
AK018_043101515der_2COG1160GTPase DerATGACCACCCCCGCCGACGGTCCCGAGACCACGCCCGCCGACACGCCGTCCGACGACGGACCCGTCGTGACGTACGTCGACGACGCCGCGCGCGAGCGCGCGCTGCGTGCCGGCCTGGAGGAGTTCGAGCTCGACGAGGCCGACCGCGCCCTGCTGGAGAGCGAGTGGGACGACGACGGGCTCGCGCCCGCCGAACCCGCGCTGCCCGTGCTGGCCGTGATCGGCCGGCCCAACGTCGGCAAGTCGACCCTCGTGAACCGGATCCTCGGGCGCCGCGAGGCCGTGGTCGAGGACACCCCCGGGGTGACGCGGGACCGCGTCAGCTACCCGGCGGAGTGGTCCGGCACCGACTTCACGTTGGTGGACACCGGTGGCTGGGAGGTCGACGTCGCCGGCATCGAGTCGAAGGTCGCCTCCCAGGCCGAGGTCGCGATCTCGCTGGCCGACGCCGTGGTGTTCGTCGTCGACGCCCAGGTGGGCGCGACGGCGAGCGACGAGCGGGTCGTCGAGCTGCTGCGCCGCTCGGGCAAGCCGGTGATCCTGTGCGCCAACAAGGTCGACGGGCCGTCCGGCGAGGCCGACGCCGCCTACCTGTGGTCGCTGGGCCTCGGCGAGCCGATGCCTGTCTCGGCCCTGCACGGGCGCGGGCTGGGCGAGATGCTCGACGCCGTGCTCGACGTGCTCCCGGAGCACTCCGCGCACGGTGAGCTGCTGCCGGAGGGGCCGCGCCGGGTGGCGCTCGTGGGCCGGCCCAACGTGGGCAAGTCCTCGCTGCTGAACAAGCTCGCCGGCGCCGAGCGCGTCGTCGTCGACGAGGTGGCGGGCACCACGCGCGACCCGGTCGACGAGCTCGTCGAGATCAAGGGCATGCCGTACTGGTTCGTCGACACCGCGGGGATCCGCCGCCGGGTCCATCAGACGTCCGGCGCCGACTTCTACGCGTCGCTGCGCACGCAGGCCGCCATCGAGAAGGCCGAGGTCGCCGTCGTGCTCGTGGACGCCTCGGTCCCGCTGACCGAGCAGGACACGCGCGTCATCACCCAGGTCGTCGACGCCGGTCGCGCGCTCGTCATCGCCTACAACAAGTGGGACCTGATGGACGAGGACCGCCGACCGTTCCTCGAGCGGGAGATCGAGAAGGACCTGGTCCAGGTCACGTGGGCGCCGCGCGTCAACGTCTCGGCCCGCACCGGCTGGCACACCGACAAGCTCGTCCGTGCGCTGGAGACGTCGCTCGAGTCCTGGGACACGCGGATCCCCACCGGCCGGCTGAACGGGTTCCTGGGTGAGCTGGTGGCGGCGCACCCGCACCCCCTGCGCGGCGGCAAGCAGCCGCGCATCCTGTTCGCCACGCAGGCCTCGACCCGCCCGCCGCGGTTCGTCGTCTTCGCCACCGGCTTCATCGAGGCCGGCTACCGCCGCTTCATCGAGCGTCGCCTGCGCGAGGAGTTCGGGTTCGAGGGCTCACCGATCCGGATCAGCGTGCGGGTGCGCGAGAAGCGCCGCCGGCGCTGAMTTPADGPETTPADTPSDDGPVVTYVDDAARERALRAGLEEFELDEADRALLESEWDDDGLAPAEPALPVLAVIGRPNVGKSTLVNRILGRREAVVEDTPGVTRDRVSYPAEWSGTDFTLVDTGGWEVDVAGIESKVASQAEVAISLADAVVFVVDAQVGATASDERVVELLRRSGKPVILCANKVDGPSGEADAAYLWSLGLGEPMPVSALHGRGLGEMLDAVLDVLPEHSAHGELLPEGPRRVALVGRPNVGKSSLLNKLAGAERVVVDEVAGTTRDPVDELVEIKGMPYWFVDTAGIRRRVHQTSGADFYASLRTQAAIEKAEVAVVLVDASVPLTEQDTRVITQVVDAGRALVIAYNKWDLMDEDRRPFLEREIEKDLVQVTWAPRVNVSARTGWHTDKLVRALETSLESWDTRIPTGRLNGFLGELVAAHPHPLRGGKQPRILFATQASTRPPRFVVFATGFIEAGYRRFIERRLREEFGFEGSPIRISVRVREKRRRRNANANANANA
AK018_04311711cmk_3COG0283Cytidylate kinaseGTGGTCACCATCGCCGTCGACGGCCCGTCCGGTTCCGGCAAGTCCAGCGTCTCCCGGGCGGTCGCCGCCCGCCTGGGCCTGGCCTACCTCGACACCGGCGCGATGTACCGGGCGGCGACGCTGTGGTGCGTGCGCACCGAGGTCGCGCTGGACGACGCCGCCGCGGTCGCCGACGCCGTGCGGGCGATGCCGCTGACCTCCGGGCTCGACCCGGCGGCGCCGACGGTGTCTCTCGACGGCACCGACGTCGCCGCGGCGATCCGCACCACCGAGGTCTCCTCGACCGTCTCGAAGGTCGCCACGAACCTCGAGGTGCGCGCCGAGCTGAAGCGGCGCCAGCGCGCCATCATCGACGACGAGGCCACCGGGGGGTTCTCGGGCGGTCGCGGCATCGTCGCCGAGGGACGCGACATCACCACGGTGGTGGCCCCGGACGCCGACGCCCGCGTGCTGCTGACGGCGAGCGAGGAGGCGCGGCTGCGCCGCCGCTCCCTGGAGGTGCACGGCGCCGCGGACGCCGCGGCCGTGGCGGCGACCCGCGACCAGGTGCTGCGCCGGGACCGCGACGACTCCACGGTGAGCCAGTTCCTGCAGGCCTCGGACGGGGTCGTCACGATCGACTCCAGCGAGCTGGACCTCGACCAGACCGTGGCCGCCGTGCTGGCCGTCGTCGAGCAGGTCGTCCCGGGGGCCCCGAGCACCCGGGCGTGAMVTIAVDGPSGSGKSSVSRAVAARLGLAYLDTGAMYRAATLWCVRTEVALDDAAAVADAVRAMPLTSGLDPAAPTVSLDGTDVAAAIRTTEVSSTVSKVATNLEVRAELKRRQRAIIDDEATGGFSGGRGIVAEGRDITTVVAPDADARVLLTASEEARLRRRSLEVHGAADAAAVAATRDQVLRRDRDDSTVSQFLQASDGVVTIDSSELDLDQTVAAVLAVVEQVVPGAPSTRAPGPT0021220_618DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021220-cmk-K00945NANA
AK018_04312804COG1187putative RNA pseudouridine synthaseATGCCCACCTCTCGCCGTGGCGGCCGCCGCCGCCCCCAGAACGCCGCCCCGAAGCAACCGGTGGACGTCCACGTCGCCGACGGCGTCCGCCTGCAGAAGGTCCTCGCCCAGGCCGGTCTGGGCTCGCGCCGCACCTGCGAGCAGCTCATCGCCGACGCCCGCGTGGAGGTCGACGGGCAGATCGTCACCGAGCTGGGGGTGCGCGTCGACCCGGCGAGCGCCGTCGTGCACGTGGACGGCATGCGCATCCAGCTCGACTCCTCGAAGGTCACTCTCGCGGTGAACAAGCCGATGGGCATGATCTCGGCGATGAGCGACCCCGAGGGGCGCCCGACCGTCGCCGAGCTGGTCAAGGACCGCACGGAGCGGCTGTTCCACGTCGGGCGCCTCGACGCGGACTCGGAGGGGCTGCTGCTGCTGACGAACGACGGCGAGCTCGCCAACCGACTGTCCCACCCCAGCCACGAGGTCCCCAAGACCTACCTGGTCACGGTCGAGGGCGGCGAGTTCTTCCCCCGGCACGGCAAGGAGCTGACGAAGGGCGTCGAGCTCGACGACGGCCCCGCCCGCATGGACAAGGTCCGCGTCGTCGACGCCGTCGAGGGCCGCACCATGATCGAGGTGGTGCTGCACGAGGGGCGCAACCGGATCGTGCGCCGGATGTTCGACGCGATCGGGTTCCCCGTGACGCGGCTGGTGCGGACCCGCATCGGCCCGATCGCGCTCGGCGACCTCAAGGCCGGTCGCACCCGGGTGCTGGGGCGCACCGAGCTCGGCACCCTGATGAAGTCCGTCGACCTGTAGMPTSRRGGRRRPQNAAPKQPVDVHVADGVRLQKVLAQAGLGSRRTCEQLIADARVEVDGQIVTELGVRVDPASAVVHVDGMRIQLDSSKVTLAVNKPMGMISAMSDPEGRPTVAELVKDRTERLFHVGRLDADSEGLLLLTNDGELANRLSHPSHEVPKTYLVTVEGGEFFPRHGKELTKGVELDDGPARMDKVRVVDAVEGRTMIEVVLHEGRNRIVRRMFDAIGFPVTRLVRTRIGPIALGDLKAGRTRVLGRTELGTLMKSVDLNANANANANA
AK018_04313639scpB_2Segregation and condensation protein BATGAGCTCGCCGGTCGAGGTCGACGGGGACGCCGTCGCGGACGTCGACGAGCTGCCCGGCGGGCTGCCCGCAGCGCTCGAGGCCATCCTCATGGTCGCCGAGTCGCCGGTGCCCACCGAGCGGCTGGCGGCGGCCGTGGAGCGTCCGACGGCGGTCGTGGAGGAGTGCCTGGCCGGCCTGGTCGAGGAGACGACGGGAGCGGCCGGTGGCCGTCCCCGCGGGTTCGAGCTGCGCCGCGGTGCCGACGGGTGGCGGGTCTACTCGGCTCCGGCGCACGCCGACGTGGTGGCCCGCTTCGTGCTCGAGGGCCAGTCGTCCCGGCTGAGCCAGGCCGCGCTGGAGACCTTGGCCGTCATCGCCTACCGCCAGCCGGTCAGCCGCGGGCAGGTCTCCGCGGTCCGGGGCGTCAACGTCGACGGCGTGGTGCGCACGCTGCTGGCCCGAGGGCTGATCGCTGAGATGGGCCAGGACCCGTCGTCCGGCGCGGTGCTCTTCGGCACCACCGGGGAGTTCCTGGACCGCATGGGGTGGACGTCGCTGTCCGAGCTGCCGCCGCTGTCGCCCCACCTGCCCGGCGTCGAGGCCGTCGCCGCGATGGACGGCGGGCTCGGGTCCCTCGCGGACGTCGTCGACGACTGAMSSPVEVDGDAVADVDELPGGLPAALEAILMVAESPVPTERLAAAVERPTAVVEECLAGLVEETTGAAGGRPRGFELRRGADGWRVYSAPAHADVVARFVLEGQSSRLSQAALETLAVIAYRQPVSRGQVSAVRGVNVDGVVRTLLARGLIAEMGQDPSSGAVLFGTTGEFLDRMGWTSLSELPPLSPHLPGVEAVAAMDGGLGSLADVVDDNANANANANA
AK018_04314882scpA_2Segregation and condensation protein AGTGGCAGCTCCCGCTGAGGCCGTCGCGCCGCCGGCCCGTGCGAGCTCCCCGCGCGCCGGCGCGTTCCAGGTGCACCTGGACAACTTCGACGGCCCGTTCGACCTGCTGCTGTCCCTGATCACGGCCCGCGAGCTCGACGTCACGGAGGTGGCGCTCGCCGAGGTCACGGACGACTTCGTGGCGCACCTGCGCGAGGCGGAGGCCGCGGCATCGGAGGCGGAGGCGCGCGGCGAGGAGCACGCCTCCTGGGACCTGGGCACCGCGAGCGAGTTCCTCGTGGTGGCCGCGACGCTGCTCGACCTCAAGGCGGCGCGTCTGCTGCCGGGGCTCGTGGAGGAGGACGCCGAGGACCTCGAGCTCCTGGAGGCGCGCGACCTGCTGTTCGCACGCCTGCTGCAGTACCGCGCGTACAAGGAGATCTCCGGGGTTCTGTCGCAACGGCTGGCCACCGAGGGTCGGCGGGTGCCCCGCGCCGTGCCCCTGGAGTCCCACCTGGCCGCGATGCTCCCGGAGCTGGTGTGGACGCTCGACGGCGACCGGCTCGCCGAGCTGGCGTCGCGCGCGCTGGAGCCCAAGCCGCCACCGGTGGTGGGTCTGACGCACCTGCACGCCCCGGCCGTGTCCGTGCGGGAGCAGGCCGGCATCGTGGCACAGCACCTGCGCCGTGAGCGCGTCGCGACCTTCCGGGCGCTGACGGCGGGGGAGGAGCGGCTCGTCGTCGTGGCGCGGTTCCTGGCGCTGCTGGAGCTGTTCCGCGCGGGTCAGGTCGCGTTCGACCAGGTCACGGCGCTGGGCGAGCTCAGCGTGCGGTGGACGGGCGGTGCGCAGGACGCGGTGGTCGACGTCGAGGAGTTCGAGGGAGTCGGGGAGGACGCAGGATGAMAAPAEAVAPPARASSPRAGAFQVHLDNFDGPFDLLLSLITARELDVTEVALAEVTDDFVAHLREAEAAASEAEARGEEHASWDLGTASEFLVVAATLLDLKAARLLPGLVEEDAEDLELLEARDLLFARLLQYRAYKEISGVLSQRLATEGRRVPRAVPLESHLAAMLPELVWTLDGDRLAELASRALEPKPPPVVGLTHLHAPAVSVREQAGIVAQHLRRERVATFRALTAGEERLVVVARFLALLELFRAGQVAFDQVTALGELSVRWTGGAQDAVVDVEEFEGVGEDAGNANANANANA
AK018_04315912COG1192putative proteinATGACGCAGCCGGCGACCGCCGAGAGCACGTTGCCCGGGATCCCGGGCCGCGAGGCGAACGACGACGGACCCGCGACCGACGTGGTCGGACGGACCCTGCCCGACTACCCCGCTCCCGCCCCGCTGGCCGACCACGGCCCGGCGCGGGTGGTGGCGATGTGCAACCAGAAGGGCGGCGTCGGCAAGACGACGACCACCATCAACCTCGGCGCCGCGCTGGCCGAGTGCGGGCGCAAGGTGCTGCTCGTCGACTTCGACCCGCAGGGCGCCGCCTCGGTCGGTGTCGGGGTGAGCCCGCACGACCTCGACCTGAGCGTCTACAACCTGATCATGGAGCGTGACGTCGAGCTGGCCGACGTCGTGCGTCCCACCCGCATCGACGGCCTCGACGTCGTGCCGGCCAACATCGACCTGTCCGCCGCCGAGGTCCAGCTCGTCGGGGAGGTGGCCCGCGAGTCGGTGCTGTCGCGCGCCCTGCGTCCCGCGCTCGACGAGTACGACCTCGTCCTGGTGGACTGCCAGCCCTCTCTCGGCCTGCTGACGGTCAACGCGCTCACCGCCGCGAACGGCGTGCTCATCCCGCTCGAGTGCGAGTTCTTCGCGCTGCGCGGTGTCGCCCTGCTCGTCGAGACCATCGACAAGGTGCGCGACCGGCTCAACCCCGACCTCGCCGTGGACGGCATCCTGCCGACGATGTTCGACTCGCGCACCCTGCACTCGCGCGAGGTCGTCCAGCGCGTGCACGAGGCGTTCGGCGACACGCTCCTGCACACCGTCATCGGGCGGACGGTCAAGTTCCCGGACGCCTCGGTGGCGGCCGAGCCGATCACCGCCTACGCCCCGTCGCACGCCGGGGCGGCCGCCTACCGGCACCTGGCTCGGGAGCTCGTGGCTCGTGGCAGCTCCCGCTGAMTQPATAESTLPGIPGREANDDGPATDVVGRTLPDYPAPAPLADHGPARVVAMCNQKGGVGKTTTTINLGAALAECGRKVLLVDFDPQGAASVGVGVSPHDLDLSVYNLIMERDVELADVVRPTRIDGLDVVPANIDLSAAEVQLVGEVARESVLSRALRPALDEYDLVLVDCQPSLGLLTVNALTAANGVLIPLECEFFALRGVALLVETIDKVRDRLNPDLAVDGILPTMFDSRTLHSREVVQRVHEAFGDTLLHTVIGRTVKFPDASVAAEPITAYAPSHAGAAAYRHLARELVARGSSRNANANANANA
AK018_04316966xerD_4COG4974Tyrosine recombinase XerDGTGACCACCACCGCCGAGGACCGGACCGACGTCGACGAGTCCGGCGTCGGAGTCGCGCTGCGCGACTACCTGGCGCACCTGCGGGTCGAGCGCGGGCTGTCGACCAACACCGTGTCCGCCTACCGCCGCGACCTGGCGCGCTACGCCGCCTACCTCGCCGCGGTCGGTCGCGGGTCGCTCGCCGAGGTCTCCGAGGCCGACGTCGAGGCCTATCTCGCCGCCGTGCGCCAGGGTGACGACGGCGGACGGCCGCTGTCGCCGTCGTCGTGCGCCCGGGCGCTGGCCGCGGTGCGCGGCTGGCACCGCTTCGCCCAGGCCGAGGGGATCGCCGTCGAGGACCCGACGCGCGAGGTCGCGGCACCCTCGCAGACGCGTCGCCTGCCGCACGCGCTGAGCATCGACGCGGTGGGACGGCTCCTCGACGCGGCGTCCGCGGGGGACGGGCCGACCTCCCTGCGGGACCGTGCCCTGCTGGAGCTGCTGTACTCGACGGGCGGACGGATCAGCGAGATCGTCGGGCTGGACGTCGACGACGTGGGTGCCGACGCCGCGGTGCGACTGTTCGGCAAGGGTGGCAAGGAACGCGTGGTGCCCGTGGGGTCGTACGCACGCGAGGCCGTGGAGGCCTATCTCGTGCGGGCCCGGCCCGTCCTGGCCACCGCCGGCAGCGCCCGGGGCCGCTCCACGCCCGCGCTGTTCCTCAACACACGCGGCAACCGGCTGTCCCGGCAGAGCGCGTGGGCCGTGCTCGGCACCGCCGCGGAGCGTGCCGGGCTGGCCGAGCACGTGTCCCCGCACACCCTGCGGCACTCCTTCGCCACCCACCTGCTCGCCGGCGGCGCCGACGTGCGCGTGGTCCAGGAGCTGCTCGGGCACGCCTCGGTGACCACCACGCAGATCTACACGATGGTGACCCCCGAGGCGCTGCGGGAGGTCTACGTCGCGGCGCACCCACGCGCGCTGTAGMTTTAEDRTDVDESGVGVALRDYLAHLRVERGLSTNTVSAYRRDLARYAAYLAAVGRGSLAEVSEADVEAYLAAVRQGDDGGRPLSPSSCARALAAVRGWHRFAQAEGIAVEDPTREVAAPSQTRRLPHALSIDAVGRLLDAASAGDGPTSLRDRALLELLYSTGGRISEIVGLDVDDVGADAAVRLFGKGGKERVVPVGSYAREAVEAYLVRARPVLATAGSARGRSTPALFLNTRGNRLSRQSAWAVLGTAAERAGLAEHVSPHTLRHSFATHLLAGGADVRVVQELLGHASVTTTQIYTMVTPEALREVYVAAHPRALPGPT0022000_3340DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0022000-xerD-K04763NANA
AK018_04317966ctaB_2COG0109Protoheme IX farnesyltransferaseGTGAGCACCCCCAGCCACCCGACGACGACCTCGTCGACGCCGACCCGTGCCGCCGTCCACCGGCCCGCCATCCGTCCCGGGGGGTGGCGCGACCGTGTCGGCGCGTACGTCGCCCTGACCAAGCCGCGGATCATCGAGCTGCTGCTGGTCACGACGGTGCCGACGATGATCCTCGCCGAGGGCGGGCTGCCGGGCCTGTGGCTCGTCGTGACCACGCTCGTGGGCGGCGCGCTGGCCGCGGCGTCGGCGAACGCGTTCAACTGCTACCTGGACCGGGACATCGACGAGCTGATGAACCGGACCAAGCGGCGTCCCCTGGTGACCGGGGAGATCCGGCCCCGCGACGCGCTGGTCTTCGCCACGGCCCTCGGCGTCGTCTCGCTGGTGTGGTTCGCCTGGCTCGTCAACGTCGCCGCCGCGTGGCTGACCTTCGCGGCGATCGCGATCTACGTGGTCGGTTACACGATGATCCTCAAGCGGCGCACGTCGCAGAACATCGTGTGGGGCGGCATCGCCGGGTGCATGCCGGTGTTCATCGGCTGGGCCGCGGTGACGGAGTCCCTCAGCTGGGCGGCCGTCGCGCTGTTCGGCGTCATCTTCTTCTGGACGCCGCCGCACTACTGGCCGCTGTCGGTCAAGTTCAAGAAGGACTACGCCACGGCCGGCGTGCCCATGCTCCCGGTCGTCGCGTCGGACCGCCGGGTGGCCACCGAGATGGTCGGGCACACGGTGGCGATGATCGCCTGCTCGCTGGCGCTGGTGCCGCTGGCGGGCATGACGTGGGTCTACACGCTCGTCGCCGCCGGCCTGGGCGGCTGGTTCCTGTGGCTGACCGTCGCGATGCTGCGCAAGGCCCGGGGGAGCACGCGCGGCGGTCCCGGCGCGATGAAGGTCTTCCACGCCTCGATCACCTACCTCACGCTGCTGTTCGTCGCCGTCGCGGTCGACGTCTTCCTGCCGTTCTGAMSTPSHPTTTSSTPTRAAVHRPAIRPGGWRDRVGAYVALTKPRIIELLLVTTVPTMILAEGGLPGLWLVVTTLVGGALAAASANAFNCYLDRDIDELMNRTKRRPLVTGEIRPRDALVFATALGVVSLVWFAWLVNVAAAWLTFAAIAIYVVGYTMILKRRTSQNIVWGGIAGCMPVFIGWAAVTESLSWAAVALFGVIFFWTPPHYWPLSVKFKKDYATAGVPMLPVVASDRRVATEMVGHTVAMIACSLALVPLAGMTWVYTLVAAGLGGWFLWLTVAMLRKARGSTRGGPGAMKVFHASITYLTLLFVAVAVDVFLPFPGPT0008520_2396DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008520-ctaB|cyoE-K02257NANA
AK018_043182112tkt_2COG0021TransketolaseGTGAACGCGTTCGACCCCGCCCTGTCGCCGCTCGAGTGGAACGAACTCGACGAGCGCGCGGTCAAGTCCGTCAAGGCGCTCGCCGCCGACGCCGTCGAGAAGTGCGGCAGCGGCCACCCCGGCACGGCGATCTCCCTCGCGCCGGCCGCCTACCTGCTCTTCCAGAAGACGATGCGCCACGACCCGAGCGACCCGCACTGGGTCGGTCGCGACCGGTTCGTGCTCTCCGCCGGGCACTCCTCGCTCACGCTGTACCTGCAGCTGTTCCTCGCCGGGTACGGCATGGAGATGGACGACATCGCCGCGCTGCGCACGTTCAACTCCCAGACCCCGGGGCACCCGGAGTACGGCCACACCCCCGGCGTCGAGATCACCACCGGTCCCCTGGGCCAGGGCATCGCGTCCTCGGTCGGCATGGCCTACGCCGCCCGGCGCGAGCGGGCGCTGCTCGACCCGGACGCCGCCGCGGGCACCTCGCCGTTCGACCACCACGTCTACGTCATCGCCTCCGACGGCGACCTGCAGGAGGGCGTGAGCTCCGAGGCCTCCTCGCTCGCCGGCACCCAGCAGCTCGGCAACCTCGTCGTCATCTGGGACGACAACAAGATCTCCATCGAGGACGACACCGAGATCGCGTTCACCGAGGACGTCCTGGCCCGGTACGAGGCCTACGGCTGGCACGTCCAGCGCGTCGACTGGACGCAGGGCGACACCGGCTACGTCGAGGACTCCGCCGAGCTCGCGGCCGCCCTGGAGGCGGCGCGCGCCGAGACCGGCAAGCCCTCCATCATCGCGCTGCGCACCATCATCGGCTGGCCGGCACCCACCAAGCAGAACACCGGCGGCATCCACGGCTCGGCCATGGGTGCCGACGAGGTCGCGGGCATGAAGAAGATCCTCGACCTCGACCCGGACAAGTCGTTCCACATCGACGACGAGGTGCTGTCGTACACCCGCGCGATCGCCGAGCGGCAGTCCGAGCAGCGGGCCGCCTGGGACACCGCGTTCGAGGCCTGGAAGACGGCCAACGCCGACGGCGCGGCGCTGCTCGAGCGCCTCTCGGCCCGCGAGCTGCCGAAGGGGTGGACCGAGGTGCTGCCCGAGTTCGAGGCCTCGGAGAAGGGCATCGCCACGCGCGCCGCCTCGGGCAAGGTGCTCTCCGCCCTGGCCGACGTCCTGCCCGAGCTCTGGGGCGGGTCCGCCGACCTAGCCGGCTCGAACAACACCACCATGGACGGCGAGCCCTCGTTCATCCCGATCGAGCACGCCACCAAGAAGTTCCCCGGGCACCCCGGCGGGCGCACGCTGCACTTCGGCATCCGCGAGCACGCCATGGGCGCGATCCTGAACGGCATCGTCCTGCACGGGCTGACCCGCCCCTACGGCGGGACGTTCCTGCAGTTCTCGGACTACATGCGGGCCTCCGTCCGTCTCGCCGCCGTCATGGAGATCCCCACCACGTTCGTGTGGACCCACGACTCCATCGGCCTCGGCGAGGACGGACCCACCCACCAGCCCGTGGAGCACCTGGCCGCGCTGCGCGCCATCCCGGGCCTCGACGTCGTGCGGCCCGCGGACGCCAACGAGACCGCGTGGGCCTGGCGCGGCATCCTGGAGAACACCTCGAACCCGGCCGGCATCGTGCTGACCCGTCAGGGCGTGCCCACGTTCCCCCGCGGGACCGACGGGTTCGCCGGCGCCGAGCACACCCTCAAGGGCGGCTACGTCCTGCAGGACACCGAGGGCACCCCCGACGTGATCCTGGTCGGTACCGGCTCCGAGGTGCAGCTCGCCGTCCAGGCCCGCGAGCTGCTCGCCGCCGACGGCATCTCCGCGCGCGTCGTGTCCATGCCGAGCCGCGAGTGGTTCGACCGCCAGGACGCCGCCTACCGGGCCTCCGTCCTGCCCGCCGAGGTCCGGGCCCGCGTGTCCGTCGAGGCCGGCGTCGCCCAGGGCTGGCGCGAGATCGTGGGCGACCACGGCCGCTCGGTGTCGCTGGAGCACTTCGGCGCGTCGGCGGACTACAAGACGCTGTACCGCGAGTTCGGCATCACGGCCGAGGCCGTCGCCGCGGCCGCCCGGGAGTCGATCGAGGCCGCCCGCACGGCCTGAMNAFDPALSPLEWNELDERAVKSVKALAADAVEKCGSGHPGTAISLAPAAYLLFQKTMRHDPSDPHWVGRDRFVLSAGHSSLTLYLQLFLAGYGMEMDDIAALRTFNSQTPGHPEYGHTPGVEITTGPLGQGIASSVGMAYAARRERALLDPDAAAGTSPFDHHVYVIASDGDLQEGVSSEASSLAGTQQLGNLVVIWDDNKISIEDDTEIAFTEDVLARYEAYGWHVQRVDWTQGDTGYVEDSAELAAALEAARAETGKPSIIALRTIIGWPAPTKQNTGGIHGSAMGADEVAGMKKILDLDPDKSFHIDDEVLSYTRAIAERQSEQRAAWDTAFEAWKTANADGAALLERLSARELPKGWTEVLPEFEASEKGIATRAASGKVLSALADVLPELWGGSADLAGSNNTTMDGEPSFIPIEHATKKFPGHPGGRTLHFGIREHAMGAILNGIVLHGLTRPYGGTFLQFSDYMRASVRLAAVMEIPTTFVWTHDSIGLGEDGPTHQPVEHLAALRAIPGLDVVRPADANETAWAWRGILENTSNPAGIVLTRQGVPTFPRGTDGFAGAEHTLKGGYVLQDTEGTPDVILVGTGSEVQLAVQARELLAADGISARVVSMPSREWFDRQDAAYRASVLPAEVRARVSVEAGVAQGWREIVGDHGRSVSLEHFGASADYKTLYREFGITAEAVAAAARESIEAARTAPGPT0011200_346DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615NANA
AK018_043191113tal_2COG0176TransaldolaseGTGACCGAGACGAACAGCCCCACCCACCGGCTCTCGCAGGCCGGGGTGTCCATCTGGCTCGACGACCTGTCGCGCGAGCGGCTCGACACCGGCAACCTGGCCGACCTCGTGCGCACGCACGACGTCGTCGGCGTCACCACCAACCCGACGATCTTCGCCGGCGCCCTGTCCGAGGGCGACGCCTACGACGGCGCGCTGGCCGACCTGGCCGGCACCGACGTCGAGGACGCCGTCGAGAGGATCACCACCGACGACGTGCGCGCGGCCGCCGACGTGCTGCGCGACGTCTACGACCGCACCGACGGCGTCGACGGCCGCGTCTCCATCGAGGTCGACCCACGCCTCGCCCGGGACACGGCCGCCACGGTCGCGACGGCGAAGCGCCTGTGGGCGACCGTCGACCGGCCGAACGTCATGATCAAGATCCCGGCCACCCTCGAGGGCCTGCCCGCCATCACCGAGACCCTCGCCGCCGGCATCAGCGTCAACGTCACGCTGATCTTCTCGATCGAGCGCTACCACGCCGTGATGGGGGCGTTCCTGACCGGTCTGGAGCAGGCGCGGGAGAACGGTCACGACCTGGCCCCGATCGGTTCGGTGGCCTCGTTCTTCGTCTCGCGCGTGGACAGCGCCGTCGACTCCGCGCTCGAGGAGATCGGCACCGACGCGGCGCACGCCCTGCGCGGCACGGCCGCCATCGCCAACGCCCGCCTCGCCTACGCCGCCTACGAGCAGGTCTTCTCCGGCGAGCGCTGGGAGGCCCTCCGGGCGGCCGGCGCGCACCCGCAGCGCCCCCTGTGGGCCTCGACCGGCGTGAAGAACCCCGACTACCCGGACACCCTCTACGTCACCGAGCTGGTGGCCCCCGGCGTGGTCAACACGATGCCGCAGGCCACCCTCGACGCCGTGGCCGACCACGGCGAGATCCCCGCCGACACCGTCACCGGGACCGCGGACTCCGCCGCGGCCGCTATCGCCGCGATCGAGCAGCAGGGCATCTCGATGGCGGACGTCACCGCGCGGCTCGAGGCCGAGGGCGTGTCCAAGTTCGAGGTGAGCTGGGACGAGCTGCTCACCACCACCAAGACCGGTCTGGACGCCGCCGGCGCCTGAMTETNSPTHRLSQAGVSIWLDDLSRERLDTGNLADLVRTHDVVGVTTNPTIFAGALSEGDAYDGALADLAGTDVEDAVERITTDDVRAAADVLRDVYDRTDGVDGRVSIEVDPRLARDTAATVATAKRLWATVDRPNVMIKIPATLEGLPAITETLAAGISVNVTLIFSIERYHAVMGAFLTGLEQARENGHDLAPIGSVASFFVSRVDSAVDSALEEIGTDAAHALRGTAAIANARLAYAAYEQVFSGERWEALRAAGAHPQRPLWASTGVKNPDYPDTLYVTELVAPGVVNTMPQATLDAVADHGEIPADTVTGTADSAAAAIAAIEQQGISMADVTARLEAEGVSKFEVSWDELLTTTKTGLDAAGAPGPT0017375_896DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0017375-talA|talB-K00616NANA
AK018_043201542zwf2_2COG0364Glucose-6-phosphate 1-dehydrogenase 2GTGAGACCGGCCAAGATCACTGCTGAGCACAATCCTCTCCGCGACCCGCTGGACCTGCGGCTGCCCCGGATCGCGGGGCCCTGCGGCCTGGTCATCTTCGGGGTGACCGGCGACCTGTCCCGCAAGAAGCTCATGCCCGCGGTCTACGACCTGGCCAACCGGGGCCTGCTCCCGCCCGGGTTCGCACTGACCGGCTTCGCCCGGCGCGACTGGGAGGACGAGGACTTCGCCCAGGTGGTCCACGACGCCGTCAAGGAGCACGCCCGCACGCCGTTCCGGGAGGCCACCTGGCAGCAGCTCGCCGAGGGCATCCGGTTCGTCCAGGGCAGCTTCGACGACCCCGACGCGTTCGAGGAGCTGCGCCGCACCGTCGAGACGCTCGACGCCGAGCGCGGCACGGGCGGCAACCACGCCTTCTACCTGTCCGTCCCCCCCAGCGCCTTCCCGCTGGTGTGCGAGCAGCTCTCCCGGTCCGGCCTGTCCGAGTCCGCGGAGGACGCCTGGCGCCGCGTCGTGATCGAGAAGCCGTTCGGTCACGACCTCGCCTCCGCCCAGGAGCTCGACGCCGTCGTCTCCGAGGTGTTCGACCAGGACTCGGTGTTCCGGATCGACCACTACCTCGGCAAGGAGACGGTCCAGAACATCCTGGCCCTGCGGTTCGCGAACCAGCTCTTCGAGCCGCTGTGGAACGGCAACCACGTCGACCACGTCCAGATCACGATGGCCGAGGACATCGGCATCGGCGGCCGGGCCGGGTACTACGACGGGGTCGGGGCGGCGCGCGACGTCATCCAGAACCACCTGCTGCAGCTCCTCGCCCTGGTGGCCATGGAGGAGCCCGTCGACTTCGACGCCGACGCCCTGCGGGCGGAGAAGATCAAGCTGCTGTCCTCGGTCCGGCTCCCCCGCGACCTCGACCGGCACACCGCGCGGGGGCAGTACACCGCCGCCTGGCAGGGTGGCGAGAAGGTGGTCGGCTTCCTCGAGGAGGAGGGCTTCAACCCCGAGTCGACCACCGAGACGTACGCCGCGGTGCGGATGGACATCGACAACCGGCGCTGGGCCGGCGTCCCCTTCTATCTGCGCACCGGCAAGCGGCTGGGCCGACGGGTCACCGAGGTGGCCGTCGTCTTCAAGAAGGCGCCGCACCTGCCGTTCGAGTCGTCGCTCACCTCCGACCTCGGCTCCAACGCCCTGGTCATCCGGGTCCAGCCGGATGAGGGGGTGACGCTGCGCTTCGGGGCCAAGGTCCCCGGCACCGCCATGGAGGTCCGTGACGTCACCATGGACTTCGGCTACGGGCACTCGTTCACCGAGTCCTCGCCCGAGGCCTACGAGCGGCTCATCCTGGACGTGCTCCTCGGCGACCCGCCGCTGTTCCCCACGCGCGAGGAGGTCGAGCTCTCCTGGAAGATCCTCGACCCCGTCATCGCGCACTGGTCGAAGAAGGGCCGTCCCGAGCCGTACCCCTCGGGGACCTGGGGTCCGCCGACCGCCGATGCCATGCTCGCCCGCGACGGGCGCACCTGGCGTCGACCCTGAMRPAKITAEHNPLRDPLDLRLPRIAGPCGLVIFGVTGDLSRKKLMPAVYDLANRGLLPPGFALTGFARRDWEDEDFAQVVHDAVKEHARTPFREATWQQLAEGIRFVQGSFDDPDAFEELRRTVETLDAERGTGGNHAFYLSVPPSAFPLVCEQLSRSGLSESAEDAWRRVVIEKPFGHDLASAQELDAVVSEVFDQDSVFRIDHYLGKETVQNILALRFANQLFEPLWNGNHVDHVQITMAEDIGIGGRAGYYDGVGAARDVIQNHLLQLLALVAMEEPVDFDADALRAEKIKLLSSVRLPRDLDRHTARGQYTAAWQGGEKVVGFLEEEGFNPESTTETYAAVRMDIDNRRWAGVPFYLRTGKRLGRRVTEVAVVFKKAPHLPFESSLTSDLGSNALVIRVQPDEGVTLRFGAKVPGTAMEVRDVTMDFGYGHSFTESSPEAYERLILDVLLGDPPLFPTREEVELSWKILDPVIAHWSKKGRPEPYPSGTWGPPTADAMLARDGRTWRRPPGPT0017380_1489DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036NANA
AK018_04321948hypothetical proteinATGATCATCGACATGCCGGACACCACGACCAACGCGGTCAGCAAGCGGCTGGACTCCCTGCGCGACGAGGGCGGTGCCGTAGCGCTCGGACGCGTCCTCACGCTCGTCGTCGTCGCGCTGGAGGCGGACATCGAGTCCGCGGTCTCGGCCGCGAACCAGGCCAGCCACGAGCACCCGTGCCGCGTCGTGGTCGTCGCCCCGGCGCCCGCGGGCGCCAAGGCGGGACGGCTCGACGCCGAGATCCGGGTCGGCGGCGACGCCGGCGCCTCCGAGGTGATCGTCCTGCGCTGCGCCGAGCCGCTCGAGGAGCACACGGACACCCTCGTGATGCCGCTGCTGCTCTCGGACGCTCCGATCGTGGTGTGGTGGCCCACCGGCGGCCCGCTGGACCCCACGGCCGACGCGCTGGGCGCGATGGCGCAGCGTCGCATCACCGACACCACGACGGCCGAGGATCCCGTGGCCATGCTCGCCGGGCTCGCCACGTCCTTCACCGAGGGGGACACCGACCTGGCCTGGGCGCGCGTGACCCTGTGGCGGGGGCTCATCGCCGCCGCCCTGGACCAGCCTCCCTACGAGCCCGTCCAGGCCGTCCGCGTCGAGGGCGAGCCCGGGCACACGTCCCTCGACCTGCTCGCCGCCTGGCTCGGCCTGAAGCTGCGCTGCCCGGCGACCGTCGTGCGGACCCCGGGCTCCGACGCCATCACCCGGGTGGTCCTGGAGCGCCGTGGCGGCGACATCGTCCTGGACCGGCCGGACGGTCGCGTCGTGACCATCACCGAGCCCGGCAAACCCGAGCGGCACATGGCGCTGCCCATCCGCTCCCTGTCCGAGGCGCTCATCGAGGAGCTGCGCCGGCTCGACCCCGACGAGATCTACGGACAGGTGATCGGCAAGGGCCTCGCCCGCGTCTCGACCGTCTCCGCCGAGGCCGAGGGGGCGCGATGAMIIDMPDTTTNAVSKRLDSLRDEGGAVALGRVLTLVVVALEADIESAVSAANQASHEHPCRVVVVAPAPAGAKAGRLDAEIRVGGDAGASEVIVLRCAEPLEEHTDTLVMPLLLSDAPIVVWWPTGGPLDPTADALGAMAQRRITDTTTAEDPVAMLAGLATSFTEGDTDLAWARVTLWRGLIAAALDQPPYEPVQAVRVEGEPGHTSLDLLAAWLGLKLRCPATVVRTPGSDAITRVVLERRGGDIVLDRPDGRVVTITEPGKPERHMALPIRSLSEALIEELRRLDPDEIYGQVIGKGLARVSTVSAEAEGARNANANANANA
AK018_04322756pgl_4COG03636-phosphogluconolactonaseATGAGCACGCGACTCGTCGTCGTCCACCCCGACCCCGAGGTCCTCGCCGAGGCCGCCGCCGCGCGCCTGCTCACCCGCCTGCTCGACGTCCAGTCGGTGCGCCGGCCCGCGCACCTCGTGCTCACCGGCGGCACCGTCGGCATCCGGACCTTGGCCGCCGCAGCGGCCAGCCCGCTGCGCACCGCCGTCGACTGGTCCGGTGTGCACCTGTGGTGGGGGGACGAGAGGTTCCTGGCCGTTGGCGACGCCGAGCGCAACGAGACCCAGGCACGCGAGGCGCTGCTGGACGATCTGGTCGCCGCCTCGGGCCTGCCCGCCGAGAACATCCATGCGGTGCCGCCCCGCGACGACGAGGTCGGGACCCCGGAGCAGGCGGCCGCGCTCTACGCGGCCGAGCTCGCCCGGTTCGCCCCCGACGGAGCGAGCACGCCCGCCTTCGACGTGCTCCTGCTGGGCATGGGGCCCGACGGCCACGTCGCGTCGCTGTTCCCGGAGCACCCCGCGCTGGAGGCGCCGGGCTGGACCGTGGGGGTGCACGGCTCCCCGAAACCACCTGCGGAACGCGTCTCGCTGACCTTCGCCGCGATCGGACGTGCCGAAGAGGTCTGGGTCGTGGCGGCCGGCGCGGAGAAGGCGGAGCGCGCCGCGGCGGCGCTGGCCGACGGCCCGGTCACCACCGTGCCGGCCGTGCGCGCCGTGGGCAGGCACCGCACGCTGTGGCTGCTCGACGTGGCGGCCGCGGCCGACCGCGGCTGAMSTRLVVVHPDPEVLAEAAAARLLTRLLDVQSVRRPAHLVLTGGTVGIRTLAAAAASPLRTAVDWSGVHLWWGDERFLAVGDAERNETQAREALLDDLVAASGLPAENIHAVPPRDDEVGTPEQAAALYAAELARFAPDGASTPAFDVLLLGMGPDGHVASLFPEHPALEAPGWTVGVHGSPKPPAERVSLTFAAIGRAEEVWVVAAGAEKAERAAAALADGPVTTVPAVRAVGRHRTLWLLDVAAAADRGPGPT0018055_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851NANA
AK018_04323300rbpA_4RNA polymerase-binding protein RbpAATGGGGGAGCAGGAGCGGGGTGAGGCCGCCCCGCGCACCCAGGTCTCGTACTGGTGTCTCAACGGGCACCAGACGCGGCCCAGCTTCGCCGTCGGCGAGGAGGTGGAGCCCCCCGAGACGTGGGACTGCCCGCGGTGCGGCTTCCCTGCCGGGCAGGACCCGGCGAACCCGCCGGGTCCCTTGCGCAACGAGCCGTACAAGACCCACCTGGCGTACGTGAAGGAGCGGCGCTCGCCCGAGGACGGGGCGGCGCTGCTCGACGAGGCGCTCGAGACCCTGCGCTCACGGCGTCGAGCCTGAMGEQERGEAAPRTQVSYWCLNGHQTRPSFAVGEEVEPPETWDCPRCGFPAGQDPANPPGPLRNEPYKTHLAYVKERRSPEDGAALLDEALETLRSRRRANANANANANA
AK018_04324246secG_2COG1314putative protein-export membrane protein SecGATGTTCGCCGCGTTGACCATCTTCCTGAACGTCCTGCTCGTGCTGACCAGTGCGTTCCTGATCCTGCTCATCCTGATGCACAAGGGCAAGGGCGGGGGTCTGTCCGACATGTTCGGCGGGGGCATGTCCAGCGCTGCGGGCAGCTCCGGCGTCGCCGAGCGCAACCTGAACCGCATCACCGTGGGGATCGCGCTGGTGTGGGGCGTCGTCGTCGTGCTCCTGGGGATCGCCACCAGGGTGAGCTGAMFAALTIFLNVLLVLTSAFLILLILMHKGKGGGLSDMFGGGMSSAAGSSGVAERNLNRITVGIALVWGVVVVLLGIATRVSPGPT0025720_3050DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025720-secG-K03075NANA
AK018_04325792tpiA_2COG0149Triosephosphate isomeraseGTGGTCACGAACCGCACGCCGCTGATGGCGGGCAACTGGAAGATGAACCTGGACCACGCCGAGGCGATCGCCGCGGTCCAGAAGCTCGCGTGGACGCTCAAGGACGCGTCGCACGACTATTCCGCCGTCGAGGTGGCGGTCCTGGCGCCCTTCACGGACCTGCGGTCCGTGCAGACGCTGGTGGACGCCGACAAGCTGGACGTCCGCTACGGCGCCCAGGACCTCTCCGCGCACGAGTCCGGTGCCTACACCGGTGAGGTCTCGGGCGCGATGCTCGCGCGGCTGGGCTGCACGTACGTCGCCGTGGGTCACTCTGAGCGGCGCGAGTACCACGCCGAGGACGACGGCGTCGTCAACGTGAAGGTCAAGGCGGCCTTCGGCACCGGCCTGACCCCGGTCCTGTGCGTCGGGGAGGGTCTGGACGTCCGCAAGGCCGGCGACCAGGTCTCCTACACGCTCGCGCAGCTCGACGCCGCGCTCAAGGGTGTGCCTGCTGAGCAGGCGAAGAGCGTCGTCGTCGCCTACGAGCCGGTGTGGGCCATCGGCACCGGCGAGGTCGCGACGCCGGAGGACGCCCAGGAGGTCTGCGGCGCGATCCGTGCCCGCCTGGCCGAGCTGTACGACGCCGAGCTCGCCGACGGCGTGCGGGTGCTCTACGGCGGTTCGGTGAAGTCCGGCAACGTCGCCCAGATCATGGCGCAGCACGACGTGGACGGCGCCCTCGTGGGCGGGGCGAGCCTCGACCCCGAGGAGTTCGCCAAGATCGTGCGGTACCAGTCGCACGTGGCCTGAMVTNRTPLMAGNWKMNLDHAEAIAAVQKLAWTLKDASHDYSAVEVAVLAPFTDLRSVQTLVDADKLDVRYGAQDLSAHESGAYTGEVSGAMLARLGCTYVAVGHSERREYHAEDDGVVNVKVKAAFGTGLTPVLCVGEGLDVRKAGDQVSYTLAQLDAALKGVPAEQAKSVVVAYEPVWAIGTGEVATPEDAQEVCGAIRARLAELYDAELADGVRVLYGGSVKSGNVAQIMAQHDVDGALVGGASLDPEEFAKIVRYQSHVAPGPT0017995_770DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017995-tpiA-K01803NANA
AK018_043261200pgk_2COG0126Phosphoglycerate kinaseATGAAGACGATCGATTCCCTCGGAGACCTGCGCGGCAAGCGCGTCCTGGTCCGCTCCGACTTCAACGTGCCGCTGGACGGCACCACCATCACCGACGACGGACGTATCCGCGCCGCGCTGCCGACGCTGAAGCGTCTGGCCGACGCCGGTGCCCGCGTCGTCGTCACCGCCCACCTGGGTCGGCCGAAGGGCACGCCGGACGCGAAGTACTCCCTCGCGCCGGTCGCGGCGCGGCTGGGCGAGCTCCTCGGCCAGGACGTCGCGCTCGCCGAGGACCTCGTCGGGCCGTCGGCCCGCGAGACGGTCGCGGTCCTCGCGGACGGTCAGGTCGCGCTGCTGGAGAACGTGCGCTTCGACGCCCGCGAGACCTCCAAGGTCGACGCCGAGCGCCAGGAGCTGGCCGGCGAGCTGGCCGAGCTCGCCGACGCCTTCGTCTCGGACGGCTTCGGCGTGGTCCACCGCAAGCAGGCCTCGGTCTACGACGTCGCCGAGAAGCTCCCGGCGGGCGCCGGTGAGCTGGTGCTCAAGGAGGTCGAGTCCCTCTCGCGCGCCACGACCGACCCGGAGCGTCCGTACGCCGTGGTGCTCGGCGGGTCCAAAGTCTCCGACAAGCTCGGCGTCATCGCCAACCTCCTGACCAAGGCGGACCGCCTGCTCATCGGCGGCGGCATGGTCTTCACGTTCCTCGCCGCCCAGGGCCACTCGGTCGGCTCCTCGCTGCTGGAGGAGGACCAGGTCGAGACGGTCAAGGGCTACCTGGCCGAGGCCGAGCGCAACGGTGTCGAGATCGTCCTGCCCACCGACATCGTCGCGGCGGACTCCTTCGCCGCGGACGCGCCGCACACGACCGTCGCCGCCGACGCGATCCCCGACGGCAAGATGGGCCTCGACATCGGCCCCGACTCGGGCGAGCTCTTCGCGGCCAAGCTGGCCGACGCCCGCACCATCGCCTGGAACGGGCCCATGGGCGTCTTCGAGTTCGACGCGTTCGCCGGCGGCACCCGGGCGGTCGCCCAGGGCATCGTCGACGCCACCGCGAACGGTGCGTTCTCGATCGTCGGCGGCGGCGACTCCGCCGCCGCGGTGCGCATCCTCGGGTTCGACGAGGACGGGTTCAGCCACATCTCGACCGGTGGTGGAGCCAGCCTCGAGCTGCTCGAGGGCAAGGAGCTGCCCGGGCTCACCGTCCTGGCCGGCTGAMKTIDSLGDLRGKRVLVRSDFNVPLDGTTITDDGRIRAALPTLKRLADAGARVVVTAHLGRPKGTPDAKYSLAPVAARLGELLGQDVALAEDLVGPSARETVAVLADGQVALLENVRFDARETSKVDAERQELAGELAELADAFVSDGFGVVHRKQASVYDVAEKLPAGAGELVLKEVESLSRATTDPERPYAVVLGGSKVSDKLGVIANLLTKADRLLIGGGMVFTFLAAQGHSVGSSLLEEDQVETVKGYLAEAERNGVEIVLPTDIVAADSFAADAPHTTVAADAIPDGKMGLDIGPDSGELFAAKLADARTIAWNGPMGVFEFDAFAGGTRAVAQGIVDATANGAFSIVGGGDSAAAVRILGFDEDGFSHISTGGGASLELLEGKELPGLTVLAGPGPT0018015_3420DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018015-pgk-K00927NANA
AK018_043271005gapA_2COG0057Glyceraldehyde-3-phosphate dehydrogenaseGTGACCATCCGCGTCGGTATCAACGGCTTCGGCCGCATCGGACGTAACTTCTACCGGGCTCTCGTGGAGTCGGGTGCGGACATCGAGGTCGTCGGCGTGAACGACCTGACGGACAACAAGACCCTGGCCCACCTGCTGAAGTACGACACCGTGCTCGGCCGGTTCGGCAAGACCGTCGAGTTCGACGACGAGAACATCATCGTCGGCGGCGCCAAGATCCGTGCGCTCGCCGAGCGCGACCCGGCCAACCTGCCGTGGGCCGAGCTCGGTGCGGACATCGTCATCGAGTCCACCGGCTTCTTCACGGACGCCACCAAGGCCAAGGCGCACATCGACGCCGGCGCCAAGAAGGTCATCATCTCCGCCCCGGCGAAGAACGAGGACGCGACGTTCGTCATGGGCGTGAACAGCGACCAGTACGACGCGGCCGCGCACCACGTCATCTCGAACGCCTCGTGCACCACGAACTGCCTGGCCCCGCTGGCCAAGGCGCTGAACGACTCGATCGGCATCGAGCGCGGCCTGATGACGACGATCCACGCCTACACCGGCGACCAGAACCTGCAGGACGGTCCGCACAAGGACCTGCGTCGTGCCCGCGCGGCCGCGCAGAACATCGTGCCGACCACCACGGGTGCCGCCAAGGCCGTGGCCCTCGTGCTGCCCGAGCTCAAGGGCAAGCTGGACGGCTACGCGCTGCGCGTGCCGACCATCACCGGCTCGGCCACCGACCTGACCTTCGAGACCACGAAGGAGGTCACGGTCGAGGAGGTCAACGCCGCCGTGAAGGCCGCCGCCGAGGGGCCGCTCAAGGGTGTGCTGTCGTACGTCGAGGACGACATCGTCTCCTCCGACATCGTCACCGACCCGCACCAGAGCATCTTCGACGCCAAGCTCACCAAGGTGATCGGCAACCAGGTCAAGGTCGTCTCCTGGTACGACAACGAGTGGGGCTACTCCAACTCGCTGGTGTCCCTCACCGAGCTCGTCGGCGCGAAGCTCTGAMTIRVGINGFGRIGRNFYRALVESGADIEVVGVNDLTDNKTLAHLLKYDTVLGRFGKTVEFDDENIIVGGAKIRALAERDPANLPWAELGADIVIESTGFFTDATKAKAHIDAGAKKVIISAPAKNEDATFVMGVNSDQYDAAAHHVISNASCTTNCLAPLAKALNDSIGIERGLMTTIHAYTGDQNLQDGPHKDLRRARAAAQNIVPTTTGAAKAVALVLPELKGKLDGYALRVPTITGSATDLTFETTKEVTVEEVNAAVKAAAEGPLKGVLSYVEDDIVSSDIVTDPHQSIFDAKLTKVIGNQVKVVSWYDNEWGYSNSLVSLTELVGAKLPGPT0018000_6313DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018000-gapA-K00134NANA
AK018_04328981whiA_2COG1481putative cell division protein WhiAATGGCGCTGACGAGTGAGGTGAAGGACGAGCTGTCGCGGGTCGTGGTGACGCGGACCTCCTGCCGCAAGGCGGAGGTCTCGGCGATGCTGCGGTTCTCGGGGGGACTGCACATCATCTCGAGCCGCGTGGTGATCGAGGCGGAGCTCGACTCGGACGTGGTCGCCGCACGGCTGCGCCAGGCGGTGTCCGACCTGTACGGCCACACCAGCGAGCTGATCGTGGTGCGGGCCGGGGGGCTGCGCAAGCACGACCGGTACGTGGTGCGGGTCGTGCGCGACGGCGAGTCCCTGGCCCGCCAGACCGGCCTGCTGGACCTGCGGGGCCGGCCCGTGCGCGGTCTGTCGCCCGAGGTGGTCTCCGCCGGCGTCGACGAGGCCGAGGCGGTCTGGCGCGGCGCGTTCCTGGCGCACGGCTCCCTGACCGAACCGGGGCGCTCGATGTCGATGGAGGTCACCTGCCCGGGACCGGAGGCGGCGCTCGCCCTGGTGGGTGCGGCCCGCCGGCTCGGCGTGCAGGCCCGGTCCCGGGAGGTACGGGGCGTCGACCGCGTGGTGGTCCGCGACGGCGACGCCATCAGCGAGCTGCTCGGTCGGATCGGTGCGCCACGGACCCGCCAGGTGTGGGAGGAGCGGCGTGCCCGCCGTGAGGTCCGCGGGACGGCCAACCGGTTGGCCAACTTCGACGACGCCAACCTGCGGCGCTCCGCCCGTGCCGCCGTGGCCGCCGGTGCCCGGGTGCAGCGCGCCTTCGAGATCCTGGGCGAGGAGGTGCCGGACCACCTGCGGCAGGCCGGCGAACTGCGGCTCGCCCACAAGCAGGCGTCCCTGGAGGAGCTCGGCCAGCTCGCCGACCCGCAGCTGTCCAAGGACGCCGTGGCCGGGCGTATCCGCCGCCTGCTGTCGACCGCGGACAAGCGGGCGCTCGAGCTCGGGATCCCGGACACCGAGGCGGGCCTGTCCCCGGACCTGCTCGACCTGTGAMALTSEVKDELSRVVVTRTSCRKAEVSAMLRFSGGLHIISSRVVIEAELDSDVVAARLRQAVSDLYGHTSELIVVRAGGLRKHDRYVVRVVRDGESLARQTGLLDLRGRPVRGLSPEVVSAGVDEAEAVWRGAFLAHGSLTEPGRSMSMEVTCPGPEAALALVGAARRLGVQARSREVRGVDRVVVRDGDAISELLGRIGAPRTRQVWEERRARREVRGTANRLANFDDANLRRSARAAVAAGARVQRAFEILGEEVPDHLRQAGELRLAHKQASLEELGQLADPQLSKDAVAGRIRRLLSTADKRALELGIPDTEAGLSPDLLDLNANANANANA
AK018_04329945COG0391Putative gluconeogenesis factorGTGGTCGCCCTCGGCGGGGGACACGGGCTCTCCGCCGCGCTCGGCGCGATGCGGCTCCTGACCGACCGGCTCACCGCGGTGGTCACCGTCGCGGACGACGGCGGCTCGTCGGGCCGCCTGCGCTCCGAGCTGGACGTGCTGCCCCCGGGCGACCTGCGCATGGCCCTGGCCGCGCTCTGCGACGACTCCGAGTGGGGCCGCACCTGGAGCGACCTGCTCCAGCACCGGTTCGCCTCGGACGGGGAGCTCGACGGCCACGCCATGGGCAACCTGCTCATCGTCTCGCTGTGGCAGCGGCTCGGCAGCACGGTCGAAGGGCTCGACTGGGTAGGCCGCCTCCTGGGCGCTCGCGGCCGCGTGCTCCCGATGGCGTCCGTGCCGCTGGTGGTGGAGGCCGACGTGGCGCACGGCGAGCGGCGCGACACCGTCGTCGGGCAGAGCCGCGTGGCCGTCACGGACGGACTGATCGAGCAGCTGCGGCTGGTGCCCGCCGACCCGCCAGCCTGCCCGGAGGCGGTGCAGGCGGTCCACGACGCCGACTGGGTCGTGATGGGGCCCGGCTCCTGGTACTCGTCGGTGCTGGTCCACCTCCTCGTGCCGGGGTTGGCCTCCGCGCTGCACACGACGACGGCGCGGCGGTGCGTGACGCTGAACCTGAGCGCGGAGAAGGGCGAGACGCACGGGTTGAGCGCCACGGCCCATCTCGACGCCCTGCGCCGGCACGCCCCGGAGCTGGCCGTCGACGCGGTCCTCGCCGACCCGTCCGCGGTGGGTGACGTCGACGAGCTGGAACGTGCGGCGGCGGCCCTCGGGGCGGAGCTGGTGGTGCGGCCGGTGCGGCGGGGCGACGGGTCGGCCCGCCACGACACGCTCCGGCTCGCGGCGGCCTACCACGACGTGTTCGAGGGCACCGGACGGCGGCGCGGGTCGCCCGTGGCAGGATGAMVALGGGHGLSAALGAMRLLTDRLTAVVTVADDGGSSGRLRSELDVLPPGDLRMALAALCDDSEWGRTWSDLLQHRFASDGELDGHAMGNLLIVSLWQRLGSTVEGLDWVGRLLGARGRVLPMASVPLVVEADVAHGERRDTVVGQSRVAVTDGLIEQLRLVPADPPACPEAVQAVHDADWVVMGPGSWYSSVLVHLLVPGLASALHTTTARRCVTLNLSAEKGETHGLSATAHLDALRRHAPELAVDAVLADPSAVGDVDELERAAAALGAELVVRPVRRGDGSARHDTLRLAAAYHDVFEGTGRRRGSPVAGNANANANANA
AK018_04330936COG1660Nucleotide-binding proteinATGAGCGAACCGTCGCCCATCACCGTCCCGCACGGCATCCCCGAGATCGAGGCCGCGACCCCGGCCCCCGGCCGCACCGAGCCCGAGGTGCTCATCATCACCGGCATGTCCGGTGCAGGCCGCACCCGCGCCGCCGGCGTCCTGGAGGACCTGGACTGGTTCGTCGTGGACAACCTGCCGCCGATGATGATCGTCCCGCTCGTCGACCTGATGACCAAGGCGGGGTCGTCGGTCGAACGGCTCGCCGTCGTCGTCGACGTCCGCGGCCGCGAGTACTTCTCCGAGCTGGCCCAGGCGCTGGACCACCTCCGCTCGGCGGGGGTGAACTACCGCATCCTGTTCCTGGACGCCTCGGACGAGGTCCTCGTGCGCCGGTTCGAGAGCGTGCGGCGCCCCCACCCGCTGCAGGGGGACGGCCGCATCCTCGACGGCATCAGCACCGAGCGCCGGGTGCTGGCCTCCATCGCCGAGCGAGCCGACGTCGTCGTCGACACCACCGACAAGTCCGTCCACGACCTCGCCAAGGAGGTCCGCGACGCCGTCGCCGGTGGCGCGGTGGACTCGCTGCGCATCAACGTCGTCGCGTTCGGCTTCAAGTACGGCCTACCCCTGGACGCCGACCACGTCGCCGACGTGCGGTTCCTCGCCAACCCCTACTGGATCAGCGAGCTGCGCCACCTGACCGGCAAGGACGAGGCCGTGCGCCGCTACGTCCTCGACCGACCGGGTGCCCTGGAGTTCGTGGACCGGTACGTGGCGGCGCTCGAACCGGTCCTGGCCGGCTACCTCGCCGAGGAGAAGCGGTACGCGACCATCGCCGTCGGCTGCACCGGCGGCAAGCACCGCTCGGTCGCCATGGCCACCGAGATCGCCGAACGGCTGCGCACCGCCGGCCACCGCGTCACCGTCACGGCACGTGACCTCGGGAAGGAGTAGMSEPSPITVPHGIPEIEAATPAPGRTEPEVLIITGMSGAGRTRAAGVLEDLDWFVVDNLPPMMIVPLVDLMTKAGSSVERLAVVVDVRGREYFSELAQALDHLRSAGVNYRILFLDASDEVLVRRFESVRRPHPLQGDGRILDGISTERRVLASIAERADVVVDTTDKSVHDLAKEVRDAVAGGAVDSLRINVVAFGFKYGLPLDADHVADVRFLANPYWISELRHLTGKDEAVRRYVLDRPGALEFVDRYVAALEPVLAGYLAEEKRYATIAVGCTGGKHRSVAMATEIAERLRTAGHRVTVTARDLGKENANANANANA
AK018_043312016uvrC_2COG0322UvrABC system protein CATGGTCGGCGCTGTCGGAGACCTGACCTACCCTGGGCGCATGGCGGACCCTGCGACCTACCGGCCGAGACCGGGGGAGATCCCGACGTCGCCGGGGGTGTACCGGTTCCGCGACCGGCACGGCCGTGTCGTGTACGTCGGCAAGGCGAAGAACCTGCGCCAGCGGTTGTCGAACTACTTCCAGGACGTCGCGAACCTCCACCACCGCACGCAGCAGATGGTGACCACGGCGGCCTCGGTCGAGTGGACGGTCGTCGGCACCGAGGTCGAGGCGCTGGCGCTGGAGTACTCCTGGATCAAGGAGTACGACCCGCGCTTCAACGTCAAGTACCGCGACGACAAGTCGTACCCCTACCTCGCGGTGACGATGGGTGAGGACGTCCCCCGCGCCCAGGTGATGCGCGGTCGCAAGCGCCGCGGCACCCGGTACTTCGGTCCGTACGGTCACGCGTGGGCGATCCGCGAGACGCTCGACCTGCTGCTGCGGGTGTTCCCCGTGCGGACCTGTTCGGCTGGCGTCTACCGACGCGCCCAGCAGTCCGGCCGGCCGTGCCTGCTCGGCTACATCGACAAGTGCTCCGCCCCGTGCGTCGGGCGGATCAGCCCCGAGGACCACCGTGCCCTGGCCGGCGACCTGTGCGACTTCATGGCCGGGGACACCGGCCGGTTCGTGCGGCGGCTCGAGAAGGAGATGGCCGAGGCGGCCGAGCACCTCGAGTACGAGCAGGCCGCCCGGCTGCGGGACGACCTGGCCGCGCTGCGCCGCGTCACCGAGAAGAACGCGGTCGTGCTCTCCGATGCCACCGACGCCGACGTCTTCGCCCTGGACGGCGACGAGCTCGAGGCCGCCGTCCAGGTCTTCCACGTCCGTGGCGGCCGCATCCGCGGCCAGCGCGGCTGGATCGTGGAGAAGGTCGAGGACATCGGCGACGGCGAGCTCGTCGAGCACCTGCTGCAGCAGGTGTACGGGCCCGTCGAGGACGCGCGGGACGCCGACCTGCCCGACCACCAGGCGCGGGCCGCCGTCCGCGACGCCGTCCCGCGCGAGGTGCTGGTCCCGGTGCTCCCGCCCGACCTCGACGAGGTGACGGACTGGCTGTCCGGGCTGCGCGGCGCCCGCGTCGAGGTGCGCGTGCCGCAGCGCGGCGACAAGCGCGAGCTCGCCGAGACGGTGCGCAGGAACGCCGAGCAGGCACTCGTGCTGCACCGCACCCGGCGGGCCGGCGACCTGACCACCCGCAGCCAGGCGCTGTCCGAGCTGCAGGAGGCGCTCGGCCTCGACGAGGCGCCGCTGCGCATCGAGTGCTATGACGTCTCCCATACCCAGGGCACCTACCAGTCCGCCTCGATGGTGGTCTTCGAGGACGGTCTGCCGCGCAAGGGGGAGTACCGCTCCTTCTCGGTCCGGGGGCCGGACGGCGATGGCGCGGCCGACGACACGGCGGCCATGCACGAGGTCATCACCCGGCGGTTCCGCCGCTACCTGGCCGACCAGCACGCCCACCCGGACATCTCCGGACCGGCGGACGGCGACGCCGGGGAGGAGAAGCGGCGGTTCGCCTACCCGCCGCAGCTCGTCGTCGTCGACGGCGGACCGCCCCAGGTGGCGGCCGCGGCGCGCGCCCTGGCCGAGCTCGGCATCACCGACGTCGCCCTGTGCGGGCTCGCCAAGCGGCTCGAGGAGCTGTGGGTGCCCGACGACGACTACCCGGTGATCCTGCAGCGCGCGTCCCAGGGCCTCTACCTGCTGCAGCGCGTCCGTGACGAGGCCCACCGGTTCGCGATCGCGCAGCACCGCCGCCGCCGCAGCAAGGGCATGACGGTCTCCGTCCTCGACTCCGTGCCCGGGCTCGGTCCGGCCCGCCAGCAAGCCCTGCTGGCGCGGTTCGGCTCGGTCAAGCGGATGCGCGCCGCCACGGCGGATGAGATCGCCCAGGTCAAGGGCGTGGGGCCGAGCACCGCGCAGGCCGTGGTCGACGCGTTGTCCGGCTCCGGTGCTGGCATGCTGGACCCATGAMVGAVGDLTYPGRMADPATYRPRPGEIPTSPGVYRFRDRHGRVVYVGKAKNLRQRLSNYFQDVANLHHRTQQMVTTAASVEWTVVGTEVEALALEYSWIKEYDPRFNVKYRDDKSYPYLAVTMGEDVPRAQVMRGRKRRGTRYFGPYGHAWAIRETLDLLLRVFPVRTCSAGVYRRAQQSGRPCLLGYIDKCSAPCVGRISPEDHRALAGDLCDFMAGDTGRFVRRLEKEMAEAAEHLEYEQAARLRDDLAALRRVTEKNAVVLSDATDADVFALDGDELEAAVQVFHVRGGRIRGQRGWIVEKVEDIGDGELVEHLLQQVYGPVEDARDADLPDHQARAAVRDAVPREVLVPVLPPDLDEVTDWLSGLRGARVEVRVPQRGDKRELAETVRRNAEQALVLHRTRRAGDLTTRSQALSELQEALGLDEAPLRIECYDVSHTQGTYQSASMVVFEDGLPRKGEYRSFSVRGPDGDGAADDTAAMHEVITRRFRRYLADQHAHPDISGPADGDAGEEKRRFAYPPQLVVVDGGPPQVAAAARALAELGITDVALCGLAKRLEELWVPDDDYPVILQRASQGLYLLQRVRDEAHRFAIAQHRRRRSKGMTVSVLDSVPGLGPARQQALLARFGSVKRMRAATADEIAQVKGVGPSTAQAVVDALSGSGAGMLDPPGPT0014925_819DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014925-uvrC-K03703NANA
AK018_04332501hypothetical proteinATGGGAGCCCAGCACTCGTACACGGCCGCCGTCGCGTGGCCGCCGGCCGGAGCGGATCCGGCGGCCGCGGCGACGACGTCGTACACCGCCTACACCCGTGACCACGACGTCGCCCTGCCCGGCCGTCCCGTGCTGCCCGGCAGCGCCGACCCGGCGTTCCGCGGCGACCCCGAGCGGTTCAGCCCCGAGGACCTCTTCGTGGCCAGCCTGGCGCAGTGCCACATGCTGTGGTTCCTGCACCTGGCTGCCGAGAGCGGGCTGGTGGTGCGCGAGTACGCCGACGACGCGACCGGCACGATGCGGGTCGAGTCGCGGGGCGAGGGACAGTTCAGCGACGTGACCCTGCGGCCGCGGATCGTCGTGGACCCGGGCGAGGAGGCCGACGACGAGCACGTCGCCCGGCTGCACGAGCGTGCGCACGCCCTGTGCTTCATCGCCCGCAGCGTGAACTTCCGCGTGCTCGTCGAGCCCGCGCCGCTGCACCTGACCGGCGGCTCCTGAMGAQHSYTAAVAWPPAGADPAAAATTSYTAYTRDHDVALPGRPVLPGSADPAFRGDPERFSPEDLFVASLAQCHMLWFLHLAAESGLVVREYADDATGTMRVESRGEGQFSDVTLRPRIVVDPGEEADDEHVARLHERAHALCFIARSVNFRVLVEPAPLHLTGGSNANANANANA
AK018_043332943uvrA_4COG0178UvrABC system protein AGTGAGCAATCGCCTCGTCGTCTCGGGTGCCCGCGAGCACAACCTGCGCAACGTCGACCTCGACCTGCCGCGCGACCGCCTCGTCGTCTTCACGGGGCTGAGCGGCTCGGGGAAGTCGTCGCTGGCCTTCGACACGATCTTCGCCGAGGGGCAGCGACGGTACGTGGAGTCGCTGTCCGCGTACGCACGCCAGTTCCTCGGGCAGATGGACAAGCCGGACGTCGACTTCATCGAGGGGCTGAGCCCGGCGGTGTCGATCGACCAGAAGTCGACCAACCGCAACCCGCGCTCCACGGTCGGCACGATCACCGAGGTCTACGACTACCTGCGCCTGCTCTTCGCCCGGACCGGCACCCAGCACTGCCCGGTGTGCGGAGAGCCGGTCCGCGCGCAGACGCCGCAGCAGATCGTCGACAAGATCCTCGAGCTGCCCGAGGGCACCCGCTACCAGGTGCTCGCGCCGGTGGTCCGGGGGCGCAAGGGGGAGTACGCCGAGCTGTTCTCCGAGCTGCAGACCCAGGGGTTCTCGCGTGCCCGCGTGGACGGCGAGGTCGTCCAGCTGTCGAGCCCGCCGGCGCTGGAGAAGAAGCTCAAGCACGACATCGAGGTCGTGGTCGACCGCCTGGTGTCCCGCGACGGGGTCCGACGCCGACTGACCGACTCGGTCGAGACCGCCCTGGGGCTGGCCGGCGGGCTGGTCATGGTCGAGCTGGTGGACGCGTCGATCGACGACCTCGACCGGGTGCGCAAGTACTCCGAGAAGCGGGCGTGCCCGAACGACCACCCGTTGAGCCTCGACGAGATCGAGCCGCGCACCTTCTCCTTCAACGCGCCCTACGGCGCCTGCCCCGAGTGCACCGGGATCGGCTTCCGGCTGGAGGTGGACCCGGAGCTGGTGGTGCCCGACCCGGAGCGGACGCTCCGCGAGGGGGCCGTGGTGCCCTGGGCCCAGACCTCTTCGGAGTACTTCGAGCGGGTGCTCTCCGCGCTGGCGGAGGAGATGTCGTTCTCCCTCGACACGCCGTGGCGCGCCCTGCCGGAACGGGCCCGCAAGGCCGTGCTGCACGGGCGCAACCACAAGGTGCACGTGCGCTACCGCAACCGCTGGGGGCGTGAGCGCCAGTACTCGACGGGGTTCGAGGGTGCGATCACGTTCATCGAGCGACGCCACTCGGAGACCGAGTCGGACTGGTCCAAGGAGCGCTACGAGGCGTTCATGCGCCAGGTGCCGTGCCCGACGTGCGGCGGCGCCCGGCTCAAGCCCGAGGTGCTGGCCGTCAAGGTCGGGACCAAGTCGATCTGGGACGTGTGCCGGCTGCCGATCTCGGACGCCAAGGAGTACCTCGACACGCTGGTGCTCGGCGAGCGCGAGACGGCGATCGCGGGCGAGGTCCTCAAGGAGATCCACGCCCGGTTGGGCTTCCTGCTCGACGTCGGCCTGCACTACCTCACGCTCGAGCGGGCCGCCGGGACGCTGTCCGGCGGCGAGGCGCAGCGCATCCGGCTGGCGACGCAGATCGGCTCGGGCCTGGTCGGGGTGCTGTACGTCCTGGACGAGCCGAGCATCGGTCTGCACCAGCGGGACAACCGCCGGCTCATCGAGACCCTGAGCCGCTTGCGCGACCTCGGCAACACGCTCATTGTCGTCGAGCACGACGAGGACACGATCCGTGCCGCCGACTGGATCGTGGACGTCGGCCCGGGTGCCGGCGAGCACGGCGGGCGCGTGGTGCACTCCGGCGACTACGCGGGCCTGCTCGCCGCCGAGGACTCGATGACGGGCGCGTACCTGTCCGGCCGGCGCAGCATCGCGCTGCCGGCCGCCCGCCGCGGCACGGACCCGGAGCGCCAGGTGACCGTGGTGGGGGCGCGGGAGAACAACCTGCGCGACATCTCGGTGTCCTTCCCGCTGGGGGTGCTCACCGCCGTCACCGGCGTGTCGGGATCCGGCAAGTCGACGCTGGTCAACTCGATCCTGCACACGGTGCTCGCCAACGAGCTCAACGGTGCCCGGCAGGTCGCGGGTCGGCACACCCGCGTCACCGGGACCGAGCACCTGGACAAGGTCGTGCACGTCGACCAGGGGCCCATCGGGCGCACGCCGCGGTCGAACCCGGCGACGTACACCGGCGTGTGGGACCGGATCCGCAAGATCTTCGCGGAGACGGAGGAGGCGAAGGTCCGCGGCTACGGCCCGGGGCGGTTCTCCTTCAACGTCAAGGGCGGGCGCTGCGAGGCCTGCTCCGGCGACGGCACCCTGCGCATCGAGATGAACTTCCTGCCGGACGTGTACGTGCCGTGCGAGGTGTGCCACGGGGCCCGGTACAACCGGGAGACGCTCGAGGTGCACTTCAAGGGCCGCACGGTGGCCGAGGTGCTCGACATGCCGATCGAGGAGGCGGCCGAGTTCTTCTCGGCGTTCCCCGCCATCTCACGGCACCTGAGCACGCTCGTCGACGTCGGGCTCGGGTACGTGCGGCTGGGCCAGCCCGCGCCCACCCTGTCCGGGGGTGAGGCGCAACGCGTCAAGCTCGCCAGCGAGCTGCAGAAGCGCTCGACCGGACGGACGGTGTACGTCCTGGACGAGCCGACCACCGGCCTGCACTTCGAGGACATCCGCAAGCTCTTGGGCGTGCTGCGCTCGCTGGTGGACAAGGGCAACACGGTGCTCGTCATCGAGCACAACCTCGACGTGATCAAGTCCGCGGACTGGATCGTCGACATGGGCCCGGAGGGCGGCTCGGGCGGTGGCCTCGTCGTGGCCGAGGGAACCCCGGAACAGGTCGCCCGTGTGGAGGCCAGTCACACGGGCCGGTTCCTCGCCCAGGTGCTGGACGAGTCGGCCGAGGTGCCCGTCGACCCGCCCACCCCCGCACCGGCGACGCCGGCGAAGGGGCGCAGGAAGCCCGGTCGCTCGCGCACCGCCGGGCGCTCCGCCGCCTGAMSNRLVVSGAREHNLRNVDLDLPRDRLVVFTGLSGSGKSSLAFDTIFAEGQRRYVESLSAYARQFLGQMDKPDVDFIEGLSPAVSIDQKSTNRNPRSTVGTITEVYDYLRLLFARTGTQHCPVCGEPVRAQTPQQIVDKILELPEGTRYQVLAPVVRGRKGEYAELFSELQTQGFSRARVDGEVVQLSSPPALEKKLKHDIEVVVDRLVSRDGVRRRLTDSVETALGLAGGLVMVELVDASIDDLDRVRKYSEKRACPNDHPLSLDEIEPRTFSFNAPYGACPECTGIGFRLEVDPELVVPDPERTLREGAVVPWAQTSSEYFERVLSALAEEMSFSLDTPWRALPERARKAVLHGRNHKVHVRYRNRWGRERQYSTGFEGAITFIERRHSETESDWSKERYEAFMRQVPCPTCGGARLKPEVLAVKVGTKSIWDVCRLPISDAKEYLDTLVLGERETAIAGEVLKEIHARLGFLLDVGLHYLTLERAAGTLSGGEAQRIRLATQIGSGLVGVLYVLDEPSIGLHQRDNRRLIETLSRLRDLGNTLIVVEHDEDTIRAADWIVDVGPGAGEHGGRVVHSGDYAGLLAAEDSMTGAYLSGRRSIALPAARRGTDPERQVTVVGARENNLRDISVSFPLGVLTAVTGVSGSGKSTLVNSILHTVLANELNGARQVAGRHTRVTGTEHLDKVVHVDQGPIGRTPRSNPATYTGVWDRIRKIFAETEEAKVRGYGPGRFSFNVKGGRCEACSGDGTLRIEMNFLPDVYVPCEVCHGARYNRETLEVHFKGRTVAEVLDMPIEEAAEFFSAFPAISRHLSTLVDVGLGYVRLGQPAPTLSGGEAQRVKLASELQKRSTGRTVYVLDEPTTGLHFEDIRKLLGVLRSLVDKGNTVLVIEHNLDVIKSADWIVDMGPEGGSGGGLVVAEGTPEQVARVEASHTGRFLAQVLDESAEVPVDPPTPAPATPAKGRRKPGRSRTAGRSAAPGPT0014915_1264DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701NANA
AK018_04334486gloB_4Hydroxyacylglutathione hydrolaseATGGGGGCCATGGCAGCCGAGCCCCGCACCGCGCCCACCGCCGTCCACGACCTGGAGCACGCCGTCGTGACGACGCTGGCCGTGGGCCCGATGGACAACAACGCCTACCTCCTCACCTGCCGCGCCACCGGCGCACGCGTGCTGATCGACGCCGCGGCCGAGCCCGACCGGCTCCTCGCCCTGCTCGCCACGGCGCCCGGAGCCGGGCCGGACCTCGTCGTGACCACCCATCGCCACCGCGACCACCTCGGCGCCCTGCCCGACATCGTCGCAGCCACCGGTGCGCCGGTCGCCGCAGGGACCGACGACGCCGACGCGATCGAGCACGAGACGGGCCTCGCGATCGACCGCCGGCTGCGGCACGGCGACACCGTCGCCGTCGGACGCCTGCACCTCGACGTCGTGCACCTGCGGGGACACACCCCCCGGCTCGGTCGCGCTCGCGCTGACCGGCACCGCCGGGCCGGTGCACCTGTTCACCGGTGAMGAMAAEPRTAPTAVHDLEHAVVTTLAVGPMDNNAYLLTCRATGARVLIDAAAEPDRLLALLATAPGAGPDLVVTTHRHRDHLGALPDIVAATGAPVAAGTDDADAIEHETGLAIDRRLRHGDTVAVGRLHLDVVHLRGHTPRLGRARADRHRRAGAPVHRNANANANANA
AK018_04335213hypothetical proteinGTGCACCTGTTCACCGGTGACTCGCTCTTCCCCGGCGGCGTCGGGAACACCGGTGGCGACCCGAACCGGTTCACGCTCCTGCTCGGCGACGTCGTCGAGCGGATCTTCGACCGGTACGACGACGCCACGGTCGTCCACCCGGGCCACGGGCGCAGCACCACGCTGGGCGCCGAGCGGCCGCACCTCGACGAGTGGCGCGACCGCGGATGGTGAMHLFTGDSLFPGGVGNTGGDPNRFTLLLGDVVERIFDRYDDATVVHPGHGRSTTLGAERPHLDEWRDRGWPGPT0001770_6101DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
AK018_04336294hypothetical proteinATGGCCGTCATCGCCGTCACCTACACCTACGCCGACCAGCCCAGCCGCCTCGACGAGCTCCGGGCGGACCACCGCGCCTTCCTGAGCCGCCTGCACGAGGCGGGCGCCGTCGTCGTCTCCGGCCCGCTGCCGGCCACGCCCGCGTACCCGGCCGGGGCGCTGCTCCTGGTGGACACGGTCGACGCCGACGCCGCCCTGCGGCTGCTCGACGACGACCCGTTCCTGCGGGCCGGGCTCGTGGCGGAACGCTCCGCCCGGGAGTGGGTCCCCGTGATCGGCACGCTCGGCGGCTGAMAVIAVTYTYADQPSRLDELRADHRAFLSRLHEAGAVVVSGPLPATPAYPAGALLLVDTVDADAALRLLDDDPFLRAGLVAERSAREWVPVIGTLGGNANANANANA
AK018_04337996COG0861putative membrane proteinGTGACGCACGAGCTGCCCGCGTGGTTCGAGGCGGTGGCGCTGACGGCGATCGTCGGCCTGCTGCTGGCCGACCTCGCCGTCGTCGCGCGGCGCCCGCACGTGCCCTCGATGCGCGAGAGCGGTCTGTGGGTGGGCTTCTACGTCGCCCTGGCGGGGCTCTTCGGGCTCGTCGTGTGGGCGGTCGGGGGTGCGGCGCCGGCAGGGGAGTTCTACGCCGGATGGCTGACGGAGTACTCCCTGAGCGTGGACAACCTGTTCGTGTTCGTGCTCATCATGTCCCGCTTCGCCGTGCCGCGGGAGCACCAGCAACGGGTGCTCATGGTCGGCATCCTCGTCGCGCTGGTGCTGCGCGCCGGGTTCATCCTCGCCGGGGCCGCGATCATCGAGCAGTTCGTGTGGGTGTTCTACCTGTTCGGCGCGTTCCTGGTGTACACCGCGGTGAAGCTGGTGGTGGGCGACGACGACGAGGAGTACCGCGAGAACGTCGCCATCCGCGGGCTGCGGCGCGTCCTGCCGCTGACGGAGCGGTACGACGGCGCCCGGCTGCGCACCGTGCAGGACGGCCGGCGGGTGTGGACCCCGATGCTGGTGGTCTTCTTCGCCATCGGGTCCACGGACCTGCTGTTCGCGCTGGACTCGATCCCGGCGATCTTCGGGCTGACGCACGACCCGTTCATCGTGTTCACCACGAACGTGTTCGCACTCATGGGCCTGCGCCAGCTCTACTTCTTGCTGGGCGGGCTGCTGGAACGGCTGGTCTACCTGCCGCTGGCGCTCGCGGTCATCCTCGGATTCATCGGCGTCAAGCTCGTCCTGGAGGCGATGGCGGACAACACCGTGCCGTTCGTCAACGGCGGCGAGCCGATCGCCTGGGCGCCGGAGGTGCCGATCTGGGTCTCGCTCGTGGTGATCGTGGGGTCGCTGGCGGTGGCGACCGTCGCGAGCCTGGTGCGGACCGCCCGGTCGGCCGACGTCGACACCGACCCGGGCCGGTGAMTHELPAWFEAVALTAIVGLLLADLAVVARRPHVPSMRESGLWVGFYVALAGLFGLVVWAVGGAAPAGEFYAGWLTEYSLSVDNLFVFVLIMSRFAVPREHQQRVLMVGILVALVLRAGFILAGAAIIEQFVWVFYLFGAFLVYTAVKLVVGDDDEEYRENVAIRGLRRVLPLTERYDGARLRTVQDGRRVWTPMLVVFFAIGSTDLLFALDSIPAIFGLTHDPFIVFTTNVFALMGLRQLYFLLGGLLERLVYLPLALAVILGFIGVKLVLEAMADNTVPFVNGGEPIAWAPEVPIWVSLVVIVGSLAVATVASLVRTARSADVDTDPGRPGPT0004905_536DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794NANA
AK018_04338999COG0861putative membrane proteinATGGACGTCGCCCCCTGGGTCTGGATCGTCACCGTCGGGATCATCCTGGCGATGCTCGCCGTCGACTACGTCGGGCACGTGCGCACGCCGCACGCGCCCACGCTCAAGGAGTCGGCCTGGTGGTCGATCGCCTACATCGCCGCGGCGCTGGTGTTCGGACTCATCGTGCTCGCCGGGTGGGGCCCCACCTACGGCGGGGAGTACTTCGCCGGCTACATCACCGAGAAGTCCCTCAGCGTGGACAACCTGTTCGTGTTCGTGCTGATCATGACCAGCTTCCGGGTCCCGCGCGAGCACCAGCAGCGCGTGCTGCTCATCGGCATCACCATCGCGCTGGTGCTGCGGACGGTGTTCATCCTCGCCGGCGCCGCCCTCATCGCGAACTTCGCGTGGATCTTCTACCTCTTCGGCTTCTTCCTGATCTGGACGGCGGTCGCCCAGGCCCGGGCGGGCACCGACCACGACGAGGAGTTCAAGGAGAACGCGGTGCTCCGGCTCACCCGCCGGATCCTGCCGACGTCCGACGACTACGTCGAGCACCACATGTTCACGAAGATCGACGGCAAGCGGTACGTGACGCCCATGCTCATCGTGATGATCGCGATCGGCAGCGCGGACCTGCTGTTCGCCGTCGACTCCATCCCGGCGATCTTCGGCCTCACGCAGGAGACGTATCTCGTCTTCACCGCCAACGCGTTCTCCCTGCTCGGGCTGCGTCAGCTCTACTTCCTCGTCGACGGGCTCCTCGACCGGCTCGTCTACCTCAACTACGGCCTGGCGGCGATCCTCGGCTTCATCGGCGTCAAGCTCGTCATCCACGCGCTGCACACCAACGAGGTGCCGTTCATCAACGGCGGTGAGCACATCGAGGTGATCCCGGAGATCCCGACCAGCGTGTCGCTGTCCTTCATCGTCGTCGTCCTGACGATCACGACGGTCGCGTCGCTGGCCAGGACGCGCCGGGACCGCAGGCTGGCCGCGGAGGTCGCCGACCGGTGAMDVAPWVWIVTVGIILAMLAVDYVGHVRTPHAPTLKESAWWSIAYIAAALVFGLIVLAGWGPTYGGEYFAGYITEKSLSVDNLFVFVLIMTSFRVPREHQQRVLLIGITIALVLRTVFILAGAALIANFAWIFYLFGFFLIWTAVAQARAGTDHDEEFKENAVLRLTRRILPTSDDYVEHHMFTKIDGKRYVTPMLIVMIAIGSADLLFAVDSIPAIFGLTQETYLVFTANAFSLLGLRQLYFLVDGLLDRLVYLNYGLAAILGFIGVKLVIHALHTNEVPFINGGEHIEVIPEIPTSVSLSFIVVVLTITTVASLARTRRDRRLAAEVADRPGPT0004905_1120DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794NANA
AK018_04339429hypothetical proteinATGTCCACGAGCTTCCAGGTGACGTTCGACGTCGCGGACCCGCTGGCGCTCGGCGAGTTCTGGTGCGCCGCGCTCGGCTACGTGCGGGACGCGCCGCCGCAGGGCTTCGCGTCGTGGGAGGAGGCGCTGACCGCCTGGGAGGTGCCTCGCGAGCTGTGGAACAGCAAGAACGCCGTCAGCGACCCGGACGGCTCCGGACCCCGGATCTTCATCCAGCAGGTGCCCGAGCCCAAGACCGTCAAGAACCGGGTGCACCTCGACCTGAACGTCTCGGCCGGCCGCACGGGCGGCGAGCGCCTCGAGGTCCTGCGCGCCGAGGCGGCGCGCCTCGAGGCGATCGGGGCGCGGACGGTCGAGGAGCGCAGCGAGCTCGGCGACACCTGGATCGTCATGCAGGACCCGGAGGGCAACGAGTTCTGCCTGCAGTGAMSTSFQVTFDVADPLALGEFWCAALGYVRDAPPQGFASWEEALTAWEVPRELWNSKNAVSDPDGSGPRIFIQQVPEPKTVKNRVHLDLNVSAGRTGGERLEVLRAEAARLEAIGARTVEERSELGDTWIVMQDPEGNEFCLQNANANANANA
AK018_043402112uvrB_2COG0556UvrABC system protein BATGCGACCCGTGACCGATCTTCAGCGCACGGTGGCTCCCTTCGAGGTGGTCTCCGAGTACGAGCCGAGCGGCGACCAGCCGACCGCCATCGCCGAGCTCGCCGAGCGCGTCCGGGCGGGGGAGAAGGACACCGTGCTGCTGGGTGCCACCGGCACGGGCAAGAGCGCGACGACGGCCTGGCTGATCGAGAAGCTGCAGCGCCCCACGCTCATCATGGCGCCGAACAAGACCCTCGCCGCCCAGCTGGCCACGGAGTTCCGCGAGCTGCTGCCGAACAACGCCGTCGAGTACTTCGTCTCGTACTACGACTACTACCAGCCCGAGGCCTACATCGCGCAGACGGACACCTACATCGAGAAGGACTCGTCCATCAACGACGAGGTCGAGCGGCTGCGGCACTCCGCGACGTCGTCGCTCCTGACGCGGCGCGACACCGTCGTCGTCGCCTCGGTGTCCTGCATCTACGGCCTCGGCACTCCGCAGGAGTACGTCGACCGCATGGTCCGCCTCGACGTCGGCGACGTCGTCGACCGCGACGACATGCTGCGCCGGTTCGTGCAGATGCAGTACACGCGCAACGACACCGCCTTCACCCGGGGCACGTTCCGGGTGCGCGGCGACACGGTCGAGATCATCCCGGTGTACGAGGAGCTCGCCGTGCGGATCGAGATGTTCGGCGACGAGATCGAGTCGATCCAGACGCTGCACCCGCTCACCGGTGAGGTCATCCGCGACGAGCAGAGCGTCTACCTCTTCCCGGCCACCCACTACGTCGCCGGGCCGGAGCGCATGGAGCGGGCCATCGGCACGATCGAGGCCGAGCTCGAGGCGCGGCTCGCCGACCTGGAGCGCCAGAACAAGCTGCTCGAGGCCCAGCGTCTGCGCATGCGCACCACCTACGACATCGAGATGATGCGCTCCATCGGGACGTGCAACGGCATCGAGAACTACTCGCGCCACATCGACGGCCGTGAGGCCGGGTCCCCGCCGAACACGCTGCTGGACTACTTCCCCGAGGACTTCCTGCTCGTGATCGACGAGTCCCACGTGACCGTGCCGCAGATCGGCGCCATGTTCGAGGGCGACATGTCCCGCAAGCGCTCCCTCGTCGACCACGGCTTCCGGCTGCCCAGCGCCACGGACAACCGGCCGCTGCGCTGGGAGGAGTTCGTCGAACGCATCGGGCAGACGGTCTACCTCTCGGCGACCCCCGGCGACTACGAGCTGTCGATGTCCGACGGCGTCGTGGAGCAGATCATCCGGCCGACCGGCCTGGTGGACCCGGAGGTCGTGGTCAAGCCGACCACGGGCCAGATCGACGACCTGCTGGGCGAGATCCGCGACCGCGTCGACCGTGACGAGCGCGTCCTGGTCACCACGCTGACCAAGAAGATGGCCGAGGACCTCACCGACTACCTGCTCGGCAAGGACGTGCGCGTGCAGTACCTGCACTCGGAGGTCGACACGCTGCGCCGCGTCGAGCTGTTGCGCGAGCTGCGCATGGGCGAGTTCGACGTGCTCGTCGGCATCAACCTGCTCCGGGAGGGTCTCGACCTGCCCGAGGTGTCGCTGGTCGCGATCCTGGACGCCGACAAGGAGGGGTTCCTGCGCTCCGAGCGCTCGCTGATCCAGACCATCGGCCGCGCGGCACGCAACGTCACCGGGCAGGTGCACATGTACGCCGACAAGGTCACGCCCGCCATGCGGTACGCGCTCGACGAGACGGACCGGCGGCGCGCGAAGCAGATCGCCTACAACGCCGAACGCGGCATCGACCCGCAGCCGTTGCGCAAGCGCATCGCCGACGTCACCGACATGCTGGCGCGCGAGGACATCGACACGGCCGAGCTGCTGGCCGGCGGCTACCGCAAGTCACCGCGGGACGCGCAGCGGTCCCAGGCGGCCGTCCCGGGCTCGCCCAAGGAACCGGCGTCGTCGGGAAACCGCCTGGCCGGGCTCGCCGCGGCCGAGCTCGCCGAGCTCATCCAGGAGCTCAGCGACCAGATGCACGCCGCCGCCGGCGAGCTGCAGTTCGAGGTCGCCGCCCGCCTGCGGGACGAGATCGGCGGCCTGAAGAAGGAGCTGCGGCAGATGCGGGAAGCCACCGCCTGAMRPVTDLQRTVAPFEVVSEYEPSGDQPTAIAELAERVRAGEKDTVLLGATGTGKSATTAWLIEKLQRPTLIMAPNKTLAAQLATEFRELLPNNAVEYFVSYYDYYQPEAYIAQTDTYIEKDSSINDEVERLRHSATSSLLTRRDTVVVASVSCIYGLGTPQEYVDRMVRLDVGDVVDRDDMLRRFVQMQYTRNDTAFTRGTFRVRGDTVEIIPVYEELAVRIEMFGDEIESIQTLHPLTGEVIRDEQSVYLFPATHYVAGPERMERAIGTIEAELEARLADLERQNKLLEAQRLRMRTTYDIEMMRSIGTCNGIENYSRHIDGREAGSPPNTLLDYFPEDFLLVIDESHVTVPQIGAMFEGDMSRKRSLVDHGFRLPSATDNRPLRWEEFVERIGQTVYLSATPGDYELSMSDGVVEQIIRPTGLVDPEVVVKPTTGQIDDLLGEIRDRVDRDERVLVTTLTKKMAEDLTDYLLGKDVRVQYLHSEVDTLRRVELLRELRMGEFDVLVGINLLREGLDLPEVSLVAILDADKEGFLRSERSLIQTIGRAARNVTGQVHMYADKVTPAMRYALDETDRRRAKQIAYNAERGIDPQPLRKRIADVTDMLAREDIDTAELLAGGYRKSPRDAQRSQAAVPGSPKEPASSGNRLAGLAAAELAELIQELSDQMHAAAGELQFEVAARLRDEIGGLKKELRQMREATAPGPT0014920_1075DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014920-uvrB-K03702NANA
AK018_04341627pcp_2Pyrrolidone-carboxylate peptidaseGTGGTCGCCATGAAGGTGCTGATGACGGGCTTCGAACCCTTCGGCGGCGATGCGGTCAACGAGTCGTGGGACGCGGTGCGGGCGCTGCCGCCGCGGCCCGACGTCGAGGTCGTGACGGCACGGTTGCCCGTGACGTTCGCCGGGGCCGTCGACGCGTGCCAACGGCTGCTCGCGCTGCACGCGCCCGACGTGGTGATCGCCGTCGGGCTGGCCGCCGGGACCGAGGCGATCCGGCTGGAGCGCGTCGCGGTCAACGTGATCGACGCCCGGATCGCCGACAACGACGGCGCGGCCCCGGTCGACGAACCCGTCGTCGCGGGCGGTCCGGCCGCGTACTTCTCGACGCTGCCGCTGAAGGCGGGCCTCGAGGCGCTGCGCGGCGCCGGGATCCCGGCGGCGGTGAGCAACTCCGCCGGCACCTACGTGTGCAACACGGTGTTCTACGCCCTCCAGCACGAGCTGGCCGCCCGCGCGGGCGTGCGGTCGGGATTCGTGCACGTGCCGCGGGCGGACGTCGTCGACAAGGAGGCCGCGAGCAGGGCGCTCGGCCTCGTCGTCGACGCCGCCGTCGGCGCGCTGCGCGGCCGGGTGGCCGAGCCCCGCACGCCCGCCGGCACGGAGCACTGAMVAMKVLMTGFEPFGGDAVNESWDAVRALPPRPDVEVVTARLPVTFAGAVDACQRLLALHAPDVVIAVGLAAGTEAIRLERVAVNVIDARIADNDGAAPVDEPVVAGGPAAYFSTLPLKAGLEALRGAGIPAAVSNSAGTYVCNTVFYALQHELAARAGVRSGFVHVPRADVVDKEAASRALGLVVDAAVGALRGRVAEPRTPAGTEHNANANANANA
AK018_043421407hypothetical proteinATGACCCGCCACCTCGCTCGCCGCGTCGCCGCGTCGAGCACCGCCACCACTTTGGCCCTCGTCGCCCTCGCCGGCACCGCGGCCGCCACCTCCACGCAGACGCAGGTGACGGACCTGCCCACCTGCACGGTCGGCACCACGGGCGGCCTGCAGAACGACGTCACGTCCGCCGACGCCGGCACCGCCGTCGTGGTCGGCGGCGACTACGTCGCGCACGCCGCGGCCGCCGAGTCCGAGGGCCGGCTCGTGGTCGCCGGCTCCACCACGATCGCGGCGGGGCTGCTGAACGTCGGCCGCGCCGGCGTCGGGTCGGGCATCGTGCCGGTCGGCGACGTCGTGGTCTCGGGTGGGGACGTCACCGTGGCCGCCGGGTCCCTCCTCGACGTCAACCACGGCGTCGACGGCGGCGGGGACGTCCGCAGCGGCGGGCCGATTCAAGGGCGGATCGAGCTCAACGGCGGCGCCGCCCACCCGGGCGACAGCACCGCCGCCGACGTCGCGGCCGACCATGTCGCCACGCTGCGTGCCGTGTCCGCCGAGCTCGCGGACCTGGCCCCGACCGGCCGGCTCGGCACGGACGGCGCCTACCCCGCCCTCGTGGGCGACGGGACGTCCGACCCCCAGGTGTTCGAGCTCACCGCCGCACAGGCCGCCGACCTGGACGCCGTCGTCCTGCAGGACGTCGGCGACGGCGCGGTCGTGGTGAACGTGCGCGGTGACGACGCCCGACTCGACACGGTGCACACCGCGGCCGGCACGATCGGCTCCCGGATCGACACCCCCGCGACGCTCGGCGACTGGGCACCGCGCGTGCTGTGGAACGTCGCCGACGCCACCGCGCTGGAGCTCGCCGGCGGCAGCCAGCTCGTCGGGTCCGTGCTGGCCCCCCACGCCGACGTCGAGCAGACCACGCACACCAACGGTCGGCTCTGGGTCGGCGGGGACCTCCACCTCGGCCGCAGCGGCAGCGGCCTCGAGCACCACAACTACCCATGGGTCGGCACCCTCGAGACCACCTGCGACCCCGCGCCGGACGCGACCCCGACGCCCACGCCGGAGCCGACCACGACCCCGACGCCCGGCCCGAGCGCTCCGGTGACCACGCCCGCCGAACCGACCGAGGGACCGACGGACGGACCGACCGAGCCGGCCGGTCAGGACCCGACCCCCGGGGCGGAGGGCGAGGACCCGAGCACGGAGCCGCAGGTCGACGACACGTCGACGACCACCGCCGACGACCTGGGCGGCGCCGGAGGCACGGACCCCGTCGCGACGTCGAGCACCGCGCCGGCGTCCGCCGCCGAGCTCCCCCGGACCGGGTCGACCGTCGGGCCGCTGCTCGCCGCCGTCGCGGCACTCCTCGCGCTCGGCCTCGGTCTCGTCGCCTGGCGGCGCCGCCGCGCCTGAMTRHLARRVAASSTATTLALVALAGTAAATSTQTQVTDLPTCTVGTTGGLQNDVTSADAGTAVVVGGDYVAHAAAAESEGRLVVAGSTTIAAGLLNVGRAGVGSGIVPVGDVVVSGGDVTVAAGSLLDVNHGVDGGGDVRSGGPIQGRIELNGGAAHPGDSTAADVAADHVATLRAVSAELADLAPTGRLGTDGAYPALVGDGTSDPQVFELTAAQAADLDAVVLQDVGDGAVVVNVRGDDARLDTVHTAAGTIGSRIDTPATLGDWAPRVLWNVADATALELAGGSQLVGSVLAPHADVEQTTHTNGRLWVGGDLHLGRSGSGLEHHNYPWVGTLETTCDPAPDATPTPTPEPTTTPTPGPSAPVTTPAEPTEGPTDGPTEPAGQDPTPGAEGEDPSTEPQVDDTSTTTADDLGGAGGTDPVATSSTAPASAAELPRTGSTVGPLLAAVAALLALGLGLVAWRRRRANANANANANA
AK018_043433105hypothetical proteinATGACCAGGCGAGACGACGGGCAGTTCGCGAGCGGCGTCCGGGCCAAGGTACCGCTCGCCGCGTCCGCGGCCGCCGTCGTCGCGCTCGCCGGCGCCCTGGTGCTCCCCGCCGCCACGCCGCCGGTGGCCGAGGCCGCGCCGCCCGACCTGATCCCCCCGGTGTCCGGCATCCTGCCCGGACCGGCACCGAGCGACAGCACCGGGACGCCCGGTTCCTGGGGACCGTGCGTCCCGGACGACGACGCCGACGACAGCTGCTCCGGCTGGCTCGTGCCCCCCGGCGCGGTGCCGCCGTTCGTGGGCACGGACAACGCGCCGAACGTCGTCGTCGGCGGTGACTTCACCGTTCCCGACGTCGCCGACTCCGCCGCCGAGACCGAAGGCCTGCTGGTGGTCGGCGGCGACGCCGTCTTCGACAAGGCCTACTCCGTCGGCGTCGTCGGCGCGGGCACGGGGGTCTCGCCGGCGCACCGCGAGGACATGCTGATCGTCGGCGGCGACGCCACCGTCAACGGTGCCACGACGTCGGTCACGGCGTTCGGGTTCGACGGCACCACGTTCCGCACCGGCACGATCCGCGTGGGCGGCGCGCAGAACTTCCAGGACCCCACCGGCGTCGCCAACGGCACGTTCGGCCAGCTCGGCTCCGTCGACTCGGCCAACCAGGACCCGCCCGCCCAGGAGTCGCAGAACCTGCTCTTCGACGACGTCTCCGTCCTCGAGGACGACGGCTACACAGAGCTGTTCGGCACCGAGGGCAAGATGGCCCGCTACTCCCAGCTGTGCTACGCCGAGCTGAGCACCGACACGACAGCCACGCAGATCGTCAACGAGGGCGGGCTGCTCGATCTTGAGCACGGCACCGTCACCAGCGACGCCGACGGCTTCACACTCACCAGCGACGGTTCCGGCGACGTCGTCGAGTTCCAGCTCCCGGCGACGATCGGCAGCCCCGGCCAGGCGGCCGAGATCCAGATCGTCGGCGTCGCCGACGGCGCGACCGTGCTGATCAACACCCTCGACAGCGGGCAGATCCGCCAGTACATCGGCGACGTCTCCTGGGGGGCCACGCCGGCCGAGGCAACCTCGAACCGAGCGCTCGCCCTCGGCAACGCCATCCTGTGGAACTACCCGTTCTCCACCGACGTCGCGGTCGGCGGGGCCACCCAGTTCCCCGGCTCGATCCTCGTCGGCGAGCCGACCTCGACCTTCCAGACCGGGTTCTCCGGCACCAACGGCCGCGTGTACACCCCGGGCGGCCTGATCCACTCCGGAACCATCGCCCAGACGTCCGGCAACGAGCTGCACGCCTACCCGTTCACCGGTGCGCTCGGCTGCATCCAGGCCCTGCCCGGCACGTTCAGCGTCGCCAAGGACCTCACCGGGGACGGAGCGGACGCGGTGCCCGACGGCACCACGTTCACCGTCGACTGGGAGGTCACCGGCCCCGCCGGCAGCCCGAACCTCGGCGACGCGGGCACTCTCGACGTGCCGGCCGACGGCACGGCGGTCACGGGCCCGCTCGACCTGGCCGAGGGTGACGAGGTGACGATCTCCGAGCCGACGTTCCCCGACGTCGGCGGCATCGACTGGGGGACGCCCCTGATCTCCCCGAACCCGGTCACGATCGGCGCCGAGGGAGAGGTCGTGGCGGTCACCGTCACCAACGAGGCGGTGCTCCAGCGCGGCGGGTTCACGCTGACCAAGGACGTCACCGGCGACGACGGCGCGTCCACCACCGAGTTCGAGGTCGCCTGGACCTGCGACGCGGAGAACCTCGACGGCGACAGCTCGGGAACAGAGACACTCACCGACGGCGAGCAGCTCACGGTGACCGGCTTCCCCGTCGGGACGGTCTGCTCCTTCACCGAGACCACCCCCACCGACGACAACGGCACCTGGGCCGCACCCGTCGTCACCCCCGACGAGATCACCATCGCCGAGGACGACGGCACCGCCCAGGTGGTCACCGTCACCAACGACTTCGCGGCCGACCGCGGTGGCTTCGCGATCACCAAGACCGTCACCGGCGACGACGGCGCAGCCACCACCGAGTTCACCGGCACCTGGACCTGCGACGCCCCGAACGACGACGGCCTCGACACCGGCACCTGGACCCTCACCGACGGCGACACCCTCACCCTCGACGGCTTCCCCCTCGACACCACCTGCACCGTCGCCGAGGACGCCGTCGACGACGCGAACGGCACCTGGGACACCACCATCGACCCCGGCGAGATCACCGTCGCCGCGGGCGACCCCACCGCCACGCTCGTGACCGTCGCCAACGACTTCAGCAGCGAGATCGGAGCGTTCGAGATCACCAAGTCGGTGACCGGCGACGGCGGCTCGAGCGTCACGGAGTTCACCGTCGAGTGGACCTGCACCACGCCCGAGGACGAGGAGATCGCGGGTTCCGTCACGGTCACGGACGGCAGCACGTCCGCTCCGGTCGTTGACCTGCCGGTCGGCACCACCTGCACCGTCTCCGAGCCGGAGATCGACGACCCTGCCGGCACCTGGAGCGCGGACGTCTCTCCGGAGACGCTCACCATCGGCAGCACGGACCCCGCGACGATGGCGGTGGTCGCCGTGACCAACACGTTCGTCGAGAACCCGACCGGCGGCTTCTCGATCACCAAGGAGGTCACGGGCGACGACGGCGCCGCGACGACCGAGTTCACCGGCACCTGGACCTGCGACGCCCCGAACACCGACGGCGACGACACCGGCACGTGGACCCTCGCCGACGGCGACACCCTCACCCTCGACGGGTTACCCCTCGGCACCGTCTGCACCGTCACCGAGGCCACCCCCGACGACCCCGACGGCAGCTGGGGGGTGTCGATCGCGCCGGGTGAGATCGTCGTCTCCGACGCGGACCCGTCCGCCGCGGTCGTGACGGTCACCAACGAGTTCCGGCTGCCGAGCCCCAGCCCGTCGACGCCGGTGCCGACACCGGCCCCCAGCTCGCCCGAGCCGACGCAGGGCCCGCACATCCTGCCACGGACCGGGTCGGAGATCCTCGGCTGGGTGGCGGCGTCCGGGGCGCTGATCCTGGTCGGCGGCCTGGCGGTCCTGGTCGTGCGGCGCCGTCAGCACTGAMTRRDDGQFASGVRAKVPLAASAAAVVALAGALVLPAATPPVAEAAPPDLIPPVSGILPGPAPSDSTGTPGSWGPCVPDDDADDSCSGWLVPPGAVPPFVGTDNAPNVVVGGDFTVPDVADSAAETEGLLVVGGDAVFDKAYSVGVVGAGTGVSPAHREDMLIVGGDATVNGATTSVTAFGFDGTTFRTGTIRVGGAQNFQDPTGVANGTFGQLGSVDSANQDPPAQESQNLLFDDVSVLEDDGYTELFGTEGKMARYSQLCYAELSTDTTATQIVNEGGLLDLEHGTVTSDADGFTLTSDGSGDVVEFQLPATIGSPGQAAEIQIVGVADGATVLINTLDSGQIRQYIGDVSWGATPAEATSNRALALGNAILWNYPFSTDVAVGGATQFPGSILVGEPTSTFQTGFSGTNGRVYTPGGLIHSGTIAQTSGNELHAYPFTGALGCIQALPGTFSVAKDLTGDGADAVPDGTTFTVDWEVTGPAGSPNLGDAGTLDVPADGTAVTGPLDLAEGDEVTISEPTFPDVGGIDWGTPLISPNPVTIGAEGEVVAVTVTNEAVLQRGGFTLTKDVTGDDGASTTEFEVAWTCDAENLDGDSSGTETLTDGEQLTVTGFPVGTVCSFTETTPTDDNGTWAAPVVTPDEITIAEDDGTAQVVTVTNDFAADRGGFAITKTVTGDDGAATTEFTGTWTCDAPNDDGLDTGTWTLTDGDTLTLDGFPLDTTCTVAEDAVDDANGTWDTTIDPGEITVAAGDPTATLVTVANDFSSEIGAFEITKSVTGDGGSSVTEFTVEWTCTTPEDEEIAGSVTVTDGSTSAPVVDLPVGTTCTVSEPEIDDPAGTWSADVSPETLTIGSTDPATMAVVAVTNTFVENPTGGFSITKEVTGDDGAATTEFTGTWTCDAPNTDGDDTGTWTLADGDTLTLDGLPLGTVCTVTEATPDDPDGSWGVSIAPGEIVVSDADPSAAVVTVTNEFRLPSPSPSTPVPTPAPSSPEPTQGPHILPRTGSEILGWVAASGALILVGGLAVLVVRRRQHNANANANANA
AK018_04344636coaE_2COG0237Dephospho-CoA kinaseATGTTTCGCATCGGACTCACGGGTGGCATCGCGGCGGGCAAGTCGGTCGCAGCACGACGGCTCGCGGAACGGGGCGCGGTCCTCATCGATCACGACACTTTGGCACGGGACGCGGTGGCCCCCGGGTCCGTCGGGCTGGAGGAGGTCGTGGCGGCCTTCGGCCCGCAGGCGCTGACGTCGCAGGGCGCCCTCGACCGCCCGGCGCTCGGGCGGATCGTCTTCGGTGACGACGGTGCCCGGCAGCGTCTGGAGGGGATCGTGCACCCGGAGGTCCGCCGCCTCGCCGCGGAGCACGAGGCCGCGGCGGCGGCCGCCGACCCGCGGGCCGTGGTGGTCCACGACATCCCGCTGCTGGTCGAGACCGGTCAGGCCGGACGGTTCCACCTGCTCGTGGTGGTCCACGCCCCCGCGCCGCAGCGTGTGGAGCGGCTCGTCGACGTGCGGGGACTTTCCGTGGAGGAGGCGGAGCAGCGCGTCGCCGCCCAGGCCGACGACGAGCAGCGTCTCGCCGCCGCCGACGTCGTCCTGGACGGGACGGGGAGCGAGGACGCCCTGCGCGCCCAGGTGGACGACCTGTTCGACCGCGTGCGCGACGAGGTCTCCCAGGAGGCGGCGGCGGACGACCCGCGGGGCTGAMFRIGLTGGIAAGKSVAARRLAERGAVLIDHDTLARDAVAPGSVGLEEVVAAFGPQALTSQGALDRPALGRIVFGDDGARQRLEGIVHPEVRRLAAEHEAAAAAADPRAVVVHDIPLLVETGQAGRFHLLVVVHAPAPQRVERLVDVRGLSVEEAEQRVAAQADDEQRLAAADVVLDGTGSEDALRAQVDDLFDRVRDEVSQEAAADDPRGPGPT0008835_1018DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008835-coaE-K00859NANA
AK018_043451920msbA_3COG1132Lipid A export ATP-binding/permease protein MsbAATGACCCCCAACGGCCCCACCTCCGGCAAGAGCCGCCCGACCGGTGGTCCCGGCGGCGGGCCCATGCGCTCGTTCCTGCAGGACCGCTCGGTGACCGGGCGACGCCTGTCACGGGCGACGCTGCGCCGCATCCTCGCGTTCGCCCGCCCCTACCGTCGCCACCTCGTCTCCCTCGTGCTCCTGCTGTCCTGCAGCGCGGCGGCCGGTGCCGTCACTCCCCTGCTGTTCCGCCGCATCATCGACGACGGCATCGCCACGGGCGACCGCGGGCTCGTCCTGGTGCTGGCCGGCGTGGCCGTGGGCCTGGCGCTCCTCGCAGCGCTGCTGTCGCTCGCCGAGCGCTGGGTCGCTGCCCTGGTCGGCGAGGGACTGATCGTGGACCTGCGCACCGCCGTCTTCGACCACGTGCAGCGGATGCCGCTCGCTTTCTTCGCCCGCGCCCGCACCGGTGCGCTCGTCCAGCGCCTCAACGGGGACGTCCTCGGCGCGCAGCAGGCCTTCACCGCGACGCTGCAGGCCGTCGTGTCCAACGGTCTGACCGTCGTCTTCACGCTGGCGGCGATGCTCGTCATGTCGTGGCGGCTGACCCTCCTGGCGCTGGTGCTGGTCCCGGCGTTCGTGCTGCCGGCCCGCTGGTTCGGCCGGCGTCTCGCCGACCTGACGCGCACCACCTACGAGCTCAACGCCGAGGTCGGGCAGACCATGAACGAACGGTTCAACGTGGCGGGCGCCCAGCTGGCCAAGGTGTTCGGGGACCCGGACCTCGAGTCGGCCGCGTACACGGAGCAGGTCCGGGAGCTGCGCGACGTCGGGGTGCGCCGCGCCGTGCACGCGACCTGGTTCCGCGTCGGGCTGACCACGCTCGCGTCGGTCGCGATCGCCCTGGTGTACGGAGTCGGTGGGGTCCAGGCGATCGCCGGTGAGCTCACCGTCGGCACGCTCGTGGCCCTGACCGCCTACCTCGGGCGCCTCTACGCCCCGCTCGCCGCCCTGTCGAACGTCCAGGTGGACGTCATGACCGCGCTGGTCAGCTTCGAACGGGTGCTGGAGGTCCTCGACCTGCAGCCCGCACTCGTCGAGGCCGACGACCCCGTGGACCTGCGCACCGCCGTGCGTGACCGTGGCGCGCGGATCGAGCTGGACGGGGTGACGTTCCGTTACCCCGGCGCCGACGAGGTCTCCCTCGCCTCCCTGGAGTCGGTGGCCGCGCCGCGCACGGACCCGGAGCAGGACACGTTGCGCGACGTGTCGTTCGCCGTGCCGTCCGGCGCGATGGTGGCGCTGGTGGGGGCCTCCGGCGCCGGCAAGACGACGATCTCCATGCTGGTCAGCCGCCTCTACGACCCGACGTCGGGTAGCGTGCGGATCGCCGGCGTCGACCTGCGGCAGGTGTCCTTCGCCTCCCTGCGGCGCACCGTCGGCGTGGTCTCCCAGGACGCCCACCTCTTCCACGACACGGTGGCCGCCAACCTGCGGCTCGCCCGGGCGGACGCCACCGACCACGACCTCGAGGAGGCGTTGCGCGCCGCGAACCTGTGGCCGCTCGTGGCGGCCATGCCGGACGGCCTCGAGACGGTCGTCGGCGACCGGGGCTACCGGCTGTCCGGGGGCGAGCGCCAACGCCTCGCCATCGCGCGGGTCCTGCTCAAGGGGCCGGACGTCGTCGTGCTCGACGAGGCCACGGCACACCTCGACTCGGGCTCCGAGGCGGCAGTCCAGGCGGCGCTGGACGTCGCGCTCGAGGGCCGCACCGCGCTGGTGATCGCCCACCGGCTGTCGACCGTGCGGCACGCGGACCGCATCGTGGTGCTCGACGCGGGGCGCGTCGTCGAGCAGGGGACGCACGCCGAGCTGCTCGCCGCCGGCGGGCGCTACGCGGTGCTCCACCAGGCCCAGTTCGCCGCCGGACCCGCCTCCTGAMTPNGPTSGKSRPTGGPGGGPMRSFLQDRSVTGRRLSRATLRRILAFARPYRRHLVSLVLLLSCSAAAGAVTPLLFRRIIDDGIATGDRGLVLVLAGVAVGLALLAALLSLAERWVAALVGEGLIVDLRTAVFDHVQRMPLAFFARARTGALVQRLNGDVLGAQQAFTATLQAVVSNGLTVVFTLAAMLVMSWRLTLLALVLVPAFVLPARWFGRRLADLTRTTYELNAEVGQTMNERFNVAGAQLAKVFGDPDLESAAYTEQVRELRDVGVRRAVHATWFRVGLTTLASVAIALVYGVGGVQAIAGELTVGTLVALTAYLGRLYAPLAALSNVQVDVMTALVSFERVLEVLDLQPALVEADDPVDLRTAVRDRGARIELDGVTFRYPGADEVSLASLESVAAPRTDPEQDTLRDVSFAVPSGAMVALVGASGAGKTTISMLVSRLYDPTSGSVRIAGVDLRQVSFASLRRTVGVVSQDAHLFHDTVAANLRLARADATDHDLEEALRAANLWPLVAAMPDGLETVVGDRGYRLSGGERQRLAIARVLLKGPDVVVLDEATAHLDSGSEAAVQAALDVALEGRTALVIAHRLSTVRHADRIVVLDAGRVVEQGTHAELLAAGGRYAVLHQAQFAAGPASNANANANANA
AK018_043461485rpsA_2COG053930S ribosomal protein S1ATGACCATCTCCACCACGAAGTCCGCGCCCCAGGTTGCCGTCAACGACATCGGCACCGAAGAGGACTTCCTTGCTGCCGTCGACGAGACCATCAAGTACTTCAACGATGGTGACATCGTCGAAGGCACGATCGTCAAGGTCGACCGCGACGAGGTCCTCCTCGACATCGGTTACAAGACGGAGGGTGTGATCCCGTCCCGGGAGCTCTCCATCAAGCACGATGTGGACCCGGGCGAGGTCGTCACCGTCGGTGACGCCGTCGAGGCGCTCGTCCTCCAGAAGGAGGACAAGGAAGGCCGCCTCATCCTGTCCAAGAAGCGCGCCCAGTACGAGCGCGCCTGGGGCACGATCGAGAAGATCAAGGAGGAGGACGGCGTCGTCACCGGCACCGTCATCGAGGTCGTCAAGGGCGGCCTCATCCTCGACATCGGCCTGCGCGGCTTCCTGCCCGCCTCCCTCGTGGAGATGCGCCGTGTCCGCGACCTCGCGCCGTACGTCGGCAAGGAGATCGAGGCCAAGATCATCGAGCTCGACAAGAACCGCAACAACGTGGTCCTGTCGCGCCGCGCCTGGCTCGAGCAGACGCAGTCCGAGGTCCGCTCCACCTTCCTGCAGACGCTGCAGAAGGGCCAGGTGCGCCCCGGTGTCGTCTCCTCGATCGTCAACTTCGGTGCCTTCGTGGACCTGGGCGGCGTCGACGGCCTCGTGCACGTCTCCGAGCTGTCCTGGAAGCACATCGACCACCCGTCCGAGGTCGTCGAGGTGGGCCAGGAGGTCACCGTCGAGGTGCTCGACGTGGACTTCGACCGCGAGCGCGTCTCCCTGTCGCTGAAGGCGACGCAGGAGGACCCGTGGCAGACGTTCGCCCGCACCCACGCCATCGGCCAGGTCGTGCCGGGCAAGGTCACCAAGCTGGTGCCGTTCGGTGCGTTCGTCCGCGTCGAGGACGGCATCGAGGGTCTGGTGCACATCTCCGAGCTGGCGGTCCGCCACGTCGAGCTGCCCGAGCAGGTCGTGCAGGTGGGTGCCGAGGTCTTCGTCAAGGTCATCGACATCGACCTCGAGCGTCGTCGCATCTCGCTGTCGCTCAAGCAGGCCAACGAGGGCATGGACCCGGAGTCCGAGGACTTCGACCCGGCCCTGTACGGCATGGCCGCCGAGTACGACGAGAACGGCGAGTACAAGTACCCCGAGGGCTTCGACCCGGAGACCAACGAGTGGCTCGAGGGCTTCGAGACGCAGCGTGAGGCCTGGGAGGCCGACTACGCCAAGGCGCACGCCCGCTGGGAGTCGCACCGCGAGCAGGTCCGTGCGGCACTCTCGGCCGACGCCGAGGCTGCTGCCGGCGACGTCGTCTCCGGCGCTCCGGCCGCGTCGACGTCGTCCTACTCCTCGGCCGCTCCGGCCCCGCAGGAGGACAACGGCGGCACGCTCGCCTCGGACGAGGCGCTCGCCGCGCTCCGCGAGAAGCTGACCGGCAACTGAMTISTTKSAPQVAVNDIGTEEDFLAAVDETIKYFNDGDIVEGTIVKVDRDEVLLDIGYKTEGVIPSRELSIKHDVDPGEVVTVGDAVEALVLQKEDKEGRLILSKKRAQYERAWGTIEKIKEEDGVVTGTVIEVVKGGLILDIGLRGFLPASLVEMRRVRDLAPYVGKEIEAKIIELDKNRNNVVLSRRAWLEQTQSEVRSTFLQTLQKGQVRPGVVSSIVNFGAFVDLGGVDGLVHVSELSWKHIDHPSEVVEVGQEVTVEVLDVDFDRERVSLSLKATQEDPWQTFARTHAIGQVVPGKVTKLVPFGAFVRVEDGIEGLVHISELAVRHVELPEQVVQVGAEVFVKVIDIDLERRRISLSLKQANEGMDPESEDFDPALYGMAAEYDENGEYKYPEGFDPETNEWLEGFETQREAWEADYAKAHARWESHREQVRAALSADAEAAAGDVVSGAPAASTSSYSSAAPAPQEDNGGTLASDEALAALREKLTGNPGPT0007615_15DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527NANA
AK018_043471026pfp_2Pyrophosphate--fructose 6-phosphate 1-phosphotransferaseGTGCGCGTTGGACTGCTGACCGGGGGCGGGGACGTCCCCGGACTGAACGCGGCGATCCGTGCCGTCGTCAAGCGGGGGGAGGGCGAGCACGGGCACACCATCGTCGGGTTCCGCAACGGCTGGCGCGGCCTCGTCGACGGGGACGTGATGCCGCTGACGCGCCAGCACATCCGCAACGTGCTGCCGACCGGCGGGACGCTGCTCGGCACGGCCCGCTACCACCCCCACGCCGACGACGGCGGGCTCGACGCCGTGCTGGCCACCTTGGAGCAGGAGCGGATCGAGGCCCTGATCTGCGTGGGCGGCGACGGGACCCTGCACGCCGCCAGCAAGGTCGCCGAGGCGGGCGTGCGCATCGTCGCGATCCCCAAGACGATCGACAACGACGTGTGGGGCACCGACCGGTCCATCGGGTTCGACACCGCCGTGACGATCGCGACCGAGGCGGTCGACCGGATCCACACCACGGCCGAGTCCCACAACCGGGTCATGATCGTCGAGGTCATGGGGCGGCACGCCGGCTGGATCGCGGCGTCGGCGGGGATCGCGGGCGGCGCCGAGCTGGTGCTCGCGCCGGAGGAACCGTTCGACATCGACCGGGTCGTGAAGTTCCTGCGGCACCGCCACCGCGCCCACGCCAGCTTCTCGATCATCGTCGTCGCCGAGGGCGCCGTCCCGGCCGAGGGCACGGCGATGACCTACCAGACGCAGCTCGGCCCCTTCGGCGAGATCGTCGCCGGCGCCATCGGGGAACGGCTGGGCGCCGAGATCGCCGAGCGCACCGGGTTCGACACGCGCGTGACGGTGCTCGGGCACGTGCAGCGCGGCGGCACGCCGACGCCCGCGGACCGCATCCTGGGCTCGCGCTTCGGGGTCGCGGCCATCGACGCCGTCACCGACGGCGCCTCCGGCGTGATGACGGCGCTGCGCGGCGACGACATCGTGATGGCGCCGCTGGCGGAGATCGCCGGCAAGGTCAAGCAGGTGCCGATCCGGCTGCTCGAGGTCGCCGGCGCGCTCGCGTGAMRVGLLTGGGDVPGLNAAIRAVVKRGEGEHGHTIVGFRNGWRGLVDGDVMPLTRQHIRNVLPTGGTLLGTARYHPHADDGGLDAVLATLEQERIEALICVGGDGTLHAASKVAEAGVRIVAIPKTIDNDVWGTDRSIGFDTAVTIATEAVDRIHTTAESHNRVMIVEVMGRHAGWIAASAGIAGGAELVLAPEEPFDIDRVVKFLRHRHRAHASFSIIVVAEGAVPAEGTAMTYQTQLGPFGEIVAGAIGERLGAEIAERTGFDTRVTVLGHVQRGGTPTPADRILGSRFGVAAIDAVTDGASGVMTALRGDDIVMAPLAEIAGKVKQVPIRLLEVAGALAPGPT0017605_2039DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017605-pfk|pfp-K21071NANA
AK018_04348801COQ5_62-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialATGTGGACCATGACCGCGACCTGGTTCGGATACCGCGACGTACCCGACGACGGCACCCCGGCCCGCCGGTGGTGGCACGAGAACGCCGACGAGTACCTGGCGGACCACGGGGCGTTCCTGGGTGACGCCGGCTTCCGGTGGGGGCCGGAGGGCGTCACCGAGGCCGAGCTGGGGCTGCTCGGGGACGTCGCGGGCGCCCGGGTCCTCGAGCTCGGCGCCGGCGCGGCGCACTGCTCGCGCTGGCTCGCCGCCCGGGGTGCCCGCGTCGTGGCGAGCGACGTCGCCCCCGCCATGCTGGACGCCGCGGCCCGCCTCGACGTGCGCACCGGTTTCACGGTCCCGACGGTCGAGGCGGACGCCCGTGCGCTGCCGTTCGCGGACGGCAGCTTCGACGTGGTCTTCACCTCGTTCGGCGCGATCCCGTTCGTGCCCGACGCGGAGCGGATCCACCGGGAGGCCGCCCGGGTGCTGCGCGACGGCGGCCGGTGGGTCTTCGCCGTGACCCACCCGCTGCGCTGGGCCTTCCCCGACGACCCGAGCCGCCTCGGGCTCACCGCCCAGCGGTCCTACTTCGACCGCCGGCCCTACGTGGAGACCGGCGACGACGGCGCGCTGCTGTACGCCGAGCACCACCGGACGGTCGGCGACCACGTCCGCCAGGTGGCTGCGGCCGGGCTGCGCCTGCGCGACGTCGTCGAGCCCGAGTGGCCCTCCTGGAACTCCCAGGAGTGGGGCGGCTGGGGTCCCGTCCGGGGCGCCTACCTGCCGGGCACGGCCGTGTTCGTGACGACCAAGGACTGAMWTMTATWFGYRDVPDDGTPARRWWHENADEYLADHGAFLGDAGFRWGPEGVTEAELGLLGDVAGARVLELGAGAAHCSRWLAARGARVVASDVAPAMLDAAARLDVRTGFTVPTVEADARALPFADGSFDVVFTSFGAIPFVPDAERIHREAARVLRDGGRWVFAVTHPLRWAFPDDPSRLGLTAQRSYFDRRPYVETGDDGALLYAEHHRTVGDHVRQVAAAGLRLRDVVEPEWPSWNSQEWGGWGPVRGAYLPGTAVFVTTKDNANANANANA
AK018_043492637polA_2COG0258DNA polymerase IATGGCCTACCGGGCGTTCTATGCCCTGCCCGACACCCTGGCCACGTCGAGCGGTCAGGTGACCAACGCCGTCTACGGCTTCGCGTCGATGCTGACGAACCTGCTGCGCGACGAGCAGCCGACGCACGTCGCCGTCGCCTTCGACGCCGGCCGCGTGACGTTCCGCACCGAGCGCTACGCCGAGTACAAGGCCACGCGCGACGCCACGCCCGAGGTGTTCCGCGGTCAGGTGCCGCTCATCCGCGAGGTGCTCGAGGCGTTGCGCGTGCCCGCGCTGCAGCGTGAGGGCATCGAGGCCGACGACATCCTGGCCACGCTCGCACGGCAGGGCGCGGAGGCCGGCATGGAGGTGCTGGTCTGCTCGGGCGACCGCGACGCGCTGCAGCTCGTCACCGACCGCGTCACCGTCCTCTACCCGAAGAAGGGCGTCTCCGAGCTGAGCCGCATGACGCCGGCCGCCGTCGAGGAGAAGTACAAGGTCGCTCCCGAGCGGTACCCGGACCTGGCCGCGCTGGTGGGGGAGACCAGCGACAACCTGCCCGGGGTTCCGGGCGTCGGCCCGGGCGTGGCGGCGAAGTGGATCACCCAGTTCGGCGACCTGGACTCGCTGCTGGAGCGCCAGCACGAGCTCACGGGCAAGCGCGGCGAGGCGCTGCGCGAGCACGCGACGCAGGTGCGGCTCAACCGGGAGCTGAACGCCCTGCTGACCGACGTCGAGCTGCCGCTGGGCATCGACGACCTGGCCGTCGCGGGCTTCGACCGCGAGGCGGTCCACCGGGTCTCGGACGCGCTGCAGTTCGGTGCCCTGCGCGACCGGCTGCTCGCCGTCGACCCCGCGGGACACGAGGCGGACGCCACGCCCGGCGACGCGGTCCGGGTGACGCTGCACGACGGCGACCTGGCGTCGTGGCTCGCCGCGCACGCCGGTCGGCGCGTCGGGCTGGACGTCTCCGGCGTCGCACGTCCGGGGCTCGGGGACGCCTGGCAGGTGGCGCTGGCGACGGGGAGCGACGCGGGGGAGGCGTCCGCCGTCGTCGTCGACCTGGCGGACCTGGACGGGGCGCAGGAGGAGTCGCTGCGGTCCTGGCTCGCGGACGCCGCGGCACCGAAGGCCGTGCACGGTGCCAAGTCGGCGTGGCACATGCTGGCCTCGCGCGACCTCGACCTGCACGGCGTCACCTTCGACACCGAGCTCGCTGCCTACCTGTGCTACCCCGACCAGCGCGGCTACGACCTCGCGGACCTGGTGCTGCGGCACCTGGGCCGGGACCTCGCGGCCGCCGACGACGCCGCGCAGGGCGCGCTCGACCTCGAGCTGGACGCCGCAGCGCCCGGGACGGAGGCGGCGGCGCGGGCCGTCGCGGTCGTCGACCTGGCCGAGGCGCTCGACCCCGGCCTGGACGACCGCGGGGCACGCAGCCTCCTCGACGACGTCGAGATGCCCCTGTCCGCGGTGCTCGCCCGCATGGAGGCCACCGGCATCGCCACCGACACGGACTTCCTCGGCGGGCTGGAGGCGTCCTTCGCCCAGGCCGTCGCCACCTCGGCGGCGGAGGCGTACGACGTCATAGGCCGGGAGGTGAACCTCGGCAGCCCCAAGCAGCTCCAGGAGGTGCTGTTCGACCAGCTGGCGATGCCGAGGACGAAGAAGATCAAGACGGGGTACACCACCGACGCCGCCTCGCTGCAGGACCTGTTCACCCGCACCGAGCACCCGTTCCTGGCGCACCTCCTCGCCCACCGCGACGCCGCCAAGCTGCGCACCACGGTCGAGGGGCTGCTCAAGGCGGTCCACCCCGACGGTCGGATCCGCACCACGTTCCAGCAGACGATCGCGGCCACCGGGCGGCTCAGCTCGACGGACCCGAACCTGCAGAACATCCCGATCCGGACGGAGGCCGGGCGTAGGATCCGCCAGGCGTTCCGCGTCGGCGAGGGGTACGACGTGCTCCTGACCGCCGACTACAGCCAGATCGAGATGCGGATCATGGCCCACCTGTCCGGCGACGAGGGCCTCATCGAGGCCTTCAGGTCGGGGGAGGACCTGCACCGGTACGTCGGGTCCCGGGTCTTCGACGTCGACCCGGCCGCCGTGACCTCCGAGATGCGGGCGAAGGTCAAGGCCATGAGCTACGGCCTGGCCTACGGTCTGAGTGCCTACGGGCTCTCGCAGCAGCTCACGATCCCGACGGGCGAGGCCCAGGCCCTGATGGACGACTACTTCACCCGCTTCGGCGGCGTGCGGGACTACCTGACCGGCGTCGTCGAGGAGGCGCGCGCCACCGGGTACACCGCCACGATCCTGGGCCGACGGCGCTACCTGCCCGACCTGACCAGCGACAACCGCCAGCGTCGCCAGATGGCCGAGCGGATGGCGCTCAACGCGCCCATCCAGGGCAGCGCGGCGGACATCATCAAGCTCGCCATGCTCGGGGTCCAGCACGCGATCGACGCGCAGGAGCTGCGCTCGCGCCTGCTGCTGCAGGTGCACGACGAGCTCGTCGTCGAGGTGGCCCCGGGGGAGCGCGACGCCGTCGAGGCCCTGCTCCGCGACCAGATGGGCGCCGCGGTCCGCCTCGACGTCCCGCTCGACGTGTCGGTCGGCTCCGGGACGACGTGGCACGACGCCGGCCACTGAMAYRAFYALPDTLATSSGQVTNAVYGFASMLTNLLRDEQPTHVAVAFDAGRVTFRTERYAEYKATRDATPEVFRGQVPLIREVLEALRVPALQREGIEADDILATLARQGAEAGMEVLVCSGDRDALQLVTDRVTVLYPKKGVSELSRMTPAAVEEKYKVAPERYPDLAALVGETSDNLPGVPGVGPGVAAKWITQFGDLDSLLERQHELTGKRGEALREHATQVRLNRELNALLTDVELPLGIDDLAVAGFDREAVHRVSDALQFGALRDRLLAVDPAGHEADATPGDAVRVTLHDGDLASWLAAHAGRRVGLDVSGVARPGLGDAWQVALATGSDAGEASAVVVDLADLDGAQEESLRSWLADAAAPKAVHGAKSAWHMLASRDLDLHGVTFDTELAAYLCYPDQRGYDLADLVLRHLGRDLAAADDAAQGALDLELDAAAPGTEAAARAVAVVDLAEALDPGLDDRGARSLLDDVEMPLSAVLARMEATGIATDTDFLGGLEASFAQAVATSAAEAYDVIGREVNLGSPKQLQEVLFDQLAMPRTKKIKTGYTTDAASLQDLFTRTEHPFLAHLLAHRDAAKLRTTVEGLLKAVHPDGRIRTTFQQTIAATGRLSSTDPNLQNIPIRTEAGRRIRQAFRVGEGYDVLLTADYSQIEMRIMAHLSGDEGLIEAFRSGEDLHRYVGSRVFDVDPAAVTSEMRAKVKAMSYGLAYGLSAYGLSQQLTIPTGEAQALMDDYFTRFGGVRDYLTGVVEEARATGYTATILGRRRYLPDLTSDNRQRRQMAERMALNAPIQGSAADIIKLAMLGVQHAIDAQELRSRLLLQVHDELVVEVAPGERDAVEALLRDQMGAAVRLDVPLDVSVGSGTTWHDAGHNANANANANA
AK018_04350501entH_2Proofreading thioesterase EntHATGAGCAGGAGCCGCGTGCCCTGTGTTCCGGTCCCGGTTCGCGCTGAGGTCGTCACGGGTGCCAACCTACAGTCCATGACCGACACGAGGCCCTCGCACCCCCGCACGCCCGACGAGTGGCAGCAGGCCGCCCGCGGCACCCTCCTCGAGCGGACGGGGATCGAGCTGACCCACGTCGGTCCGGAGGGCGCCTCGGGCACGATGCCCGTGGCCGGGAACACCCAGCCGGCGGGGCTCCTGCACGGTGGCGCCACCGCGGCGCTCGCCGAGACCCTCGGGTCCGTGGCCGCCCAGATGCACGCCGGCCCCGGCCGCGCGGCGGTCGGGATCGAGCTGGGCATCACGCATCATCGCGGAATCCGGCGCGGCACTGTCCACGGGACGGCGACGGCGCTGCACCTGGGCCGCTCGACGGCGTCCTACGAGATCGTCGTGATGGACGACGACGGCCGACGCGTCGCGACCGCACGGCTGACCTGCATGGTGCTCGACGCGCCCTGAMSRSRVPCVPVPVRAEVVTGANLQSMTDTRPSHPRTPDEWQQAARGTLLERTGIELTHVGPEGASGTMPVAGNTQPAGLLHGGATAALAETLGSVAAQMHAGPGRAAVGIELGITHHRGIRRGTVHGTATALHLGRSTASYEIVVMDDDGRRVATARLTCMVLDAPPGPT0001845_1278DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0001845-menI|ydiI|ydiL|ydiI|ybdB-K19222NANA
AK018_04351744hypothetical proteinATGCGTCCCACGGTCGAGGTGCGCAGCGCGACCGAGGAGGACCTGCGGGCGGTCGCCGCCCTGGCGGTGGACCTCGGCCCCGACGGCGGCAGCGCGGCCACGACCGACCCCGCCCGGCTGCTGGAGCACCTCAGCGTGCTGGTCGCGGCCGGCGGGCAGGTGCTCGTCGCGTGCGACGACGACCGGGTGGTCGGCTTCCTGCTCCAGCGCGTGCTGGGACCCAGGATGTTCGCCACGACGCCGAACCTCTACGTGGACGCCATCGGCGTCGACCCCGCGTGGCGTCGCCGGGGCGTGGGTCGCGCGCTGCTCGCCGCGGCGCTGGGCACGGCCCGTGCCGCGCAGGCCGACAGCATCTACTGCGCGCCGGCGCCCGGCGCGCGCGAGATGCACCGCTTCCTGGCCCGGTTGGGTTTCGCCCCGGCAGCCGGCCACAGGGTCGTGGCGGTGCCGGCGCTGGAGCGCCGGCTCGCCCAGGAGCCGACCGCGGGGCCCACGGTCGTCCGACGCCGGGACGGGGCGCGTCGACGACGTCGGGACGCCACCCGGGCCGCCATCGAGGATCTCGTGGCGCGTCGTCGGCGCGCACGGGAGGCCGGGCTGCCGACCGGCCCGGTGGACCTGCGGGCGTTCCAGGCCCAGCAGGCCGCGGCGGAGGCCGAGGCCGAGGATCACGCCCCCGACACCGGCGAGATCCGGCTCGAGGACGTCGCCGTCGACACCCGCAGCTCGACGGCGTCCTGAMRPTVEVRSATEEDLRAVAALAVDLGPDGGSAATTDPARLLEHLSVLVAAGGQVLVACDDDRVVGFLLQRVLGPRMFATTPNLYVDAIGVDPAWRRRGVGRALLAAALGTARAAQADSIYCAPAPGAREMHRFLARLGFAPAAGHRVVAVPALERRLAQEPTAGPTVVRRRDGARRRRRDATRAAIEDLVARRRRAREAGLPTGPVDLRAFQAQQAAAEAEAEDHAPDTGEIRLEDVAVDTRSSTASNANANANANA
AK018_04352666pdtaR_2COG3707putative transcriptional regulatory protein pdtaRATGAGAGGCGTGACCGACGAGAAGCTGAACCTCGACCTGCCCCCGCTGATCGACGAGGACACCGAGTCCACGCCGGCGGCGCCGCCCTCGAAGCCGGCACGGCGCGCGGTCGTGGCGGAGGACGAGGCCCTGATCCGCATGGACGTCGTCGAGACGCTGCGCGAGGCGGGGTTCGACGTCGTGGGCGAGGCCGGTGACGGCGAGACCGCCGTGAACCTGGCGACCGAGCTCAAGCCGGACGTCGTCGTGATGGACGTCAAGATGCCCGAGCTCGACGGCATCTCGGCGGCCGAGCGCATCGGCAAGGCCCACGCGGCACCGGTCGTGCTGCTGACGGCCTTCTCGCAGACCGAGCTCGTCGAGCGGGCGCGCGACGCCGGCGCGATGGCCTACGTGGTCAAGCCCTTCACCCCGGCGGACCTGCTGCCCGCGGTCGAGATCGCGATCTCCCGCTACCAGCAGATCGGCGCCCTGGAGTCGGAGGTCGCGGACCTGCAGGACCGGTTCGAGACGCGCAAGCGCGTCGACCGCGCCAAGGGCCTGCTGATGACGAAGATGGGGCTGAGCGAGCCCGAGTCGTTCCGCTGGATCCAGAAGACCTCGATGGACCGGCGCCTGACCATGCGCGAGGTGGCCGACGCGGTCATCGACCAGGTGGGCGCCTGAMRGVTDEKLNLDLPPLIDEDTESTPAAPPSKPARRAVVAEDEALIRMDVVETLREAGFDVVGEAGDGETAVNLATELKPDVVVMDVKMPELDGISAAERIGKAHAAPVVLLTAFSQTELVERARDAGAMAYVVKPFTPADLLPAVEIAISRYQQIGALESEVADLQDRFETRKRVDRAKGLLMTKMGLSEPESFRWIQKTSMDRRLTMREVADAVIDQVGANANANANANA
AK018_043541440pyk_2COG0469Pyruvate kinaseATGCGCAGAGCGAAGATCGTGTGCACCATCGGACCCGCGACGGCATCCCCGGAGAAGCTCCGGGAGCTGGTCGACGCGGGTATGGACGTGGCCCGGATCAACCGGAGCCACGGAGAGCAGTCGGAGCACGAGGCCGTCTACCACGGTGTGCGCACGGCGGCGAAGGAGGCCGGGCGCAACGTCGCGGTGCTCGTGGACCTGCAGGGCCCCAAGATCCGCCTGGGACGTTTCGGCGGTGACGAGAAGCACTTCCTGAACGAGGGCGACACCCTCACCATCACGACCGAGGACGTGGTCGGGACGCGCGAGCTCGTCTCCACCACGCACAAGGGCCTCCCGCAGGACGCGCGGGTCGGCGACCCGATCCTCATCGACGACGGCAAGGTGCGCGTACGCGTCACCGCCGTCGACGGCCCCCGGGTCGAGACGGTCGTCGAGGTGCCCGGCCCGGTGTCCAACAACAAGGGTCTCAACCTGCCCGGCGTCGCGGTCTCCGTGCCCGCGCTGAGCGAGAAGGACACCGACGACCTGCGCTGGGCGCTGCGTCTCGGCGCCGACCTCATCGCGCTGTCCTTCGTGCGCAGCGCCGCCGACTACGACGACGTGCGCCGCATCATGGAGGACGAGGGCCGGGTCGTCCCGGTCATCGCGAAGATCGAGAAGCCGCAGGCCGTGGACAACCTCGAGGAGGTCGTCGACGCGTTCGACGGGTTCATGGTGGCCCGCGGCGACCTGGCCGTGGAGATGCCGCTCGAGCAGGTGCCGCTGGTCCAGAAGCGGATCATCGAGATGGCGCGGCGCAACGCCAAGCCGGTGATCGTGGCGACCCAGGTGCTGGAGTCGATGACCACCAGCCCGCGCCCGACGCGCGCCGAGGCCTCGGACTGCGCCAACGCCGTGCTCGACGGTGCCGACGCGGTCATGCTGTCCGGCGAGACGTCGGTGGGCGACTACCCGATCATCACGGTGGAGACGATGGCCTCGATCATCGCCTCGACCGAGGAGATGGGTCGCGAGCGGATCGCCCCGCTGGGGTCCACGCCGCACACCCGCGGCGGCGTCATCACCCGTGCCGCCGCCGAGATCGGCAACGCGCTGGGCGTCAAGTACCTGGTGACCTTCACGCAGTCGGGCGACTCGGCGAAGCGGATGTCGCGGCTGCGCTCCGGCATCCCGCTGCTGGCGTTCACCCCGGAGGAGTCGGTGCGGCACGTGCTGGCCCTGACATGGGGTACGACGACGTACCAGGTGCCGGAGGTCGGCTCCGTCGACGCGATGGTGAGCCAGGTCGACCAGACGCTGCAGGCCAACGGCCTGGCCGAGGTCGGCGACCGGGTCGTCATCGTCTCCGGCGCCCCGGTGGGCGTCCCCGGCACGACGAACTCGATCCTGGTGCACAAGGTCGGCAGCAGCTCGGACGCGCACGCGATCGCGGAGTGAMRRAKIVCTIGPATASPEKLRELVDAGMDVARINRSHGEQSEHEAVYHGVRTAAKEAGRNVAVLVDLQGPKIRLGRFGGDEKHFLNEGDTLTITTEDVVGTRELVSTTHKGLPQDARVGDPILIDDGKVRVRVTAVDGPRVETVVEVPGPVSNNKGLNLPGVAVSVPALSEKDTDDLRWALRLGADLIALSFVRSAADYDDVRRIMEDEGRVVPVIAKIEKPQAVDNLEEVVDAFDGFMVARGDLAVEMPLEQVPLVQKRIIEMARRNAKPVIVATQVLESMTTSPRPTRAEASDCANAVLDGADAVMLSGETSVGDYPIITVETMASIIASTEEMGRERIAPLGSTPHTRGGVITRAAAEIGNALGVKYLVTFTQSGDSAKRMSRLRSGIPLLAFTPEESVRHVLALTWGTTTYQVPEVGSVDAMVSQVDQTLQANGLAEVGDRVVIVSGAPVGVPGTTNSILVHKVGSSSDAHAIAEPGPT0002020_5868DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002020-pyk-K00873NANA
AK018_043551467gltD_2COG0493Glutamate synthase [NADPH] small chainGTGGCTGATCCCCGTGGATTTCTGAAGGTGCGGGAGCGGGAGCTCCCCAAGAGCCGACCGGTCGAGGTCCGGCTGCGCGACTGGAAGGACACCTACGCGCAGCGGCAGGAGGGCCAGCCGTTCCTCAAGGAGCAGGCCGGCCGCTGCATGGACTGCGGCATCCCGTTCTGCCACCAGGGCTGCCCGCTGGGGAACCTCATCCCCGAGTGGAACGACCTGGTGCGGACCGACCAGTGGGCCGACGCCATCGAGCGGCTGCACGCGACGAACAACTTCCCGGAGTTCACGGGCCGCGTGTGCCCCGCGCCGTGCGAGACGAGCTGCGTGCTGGGGATCAACCAGCCGGCGGTGACGATCAAGAACATCGAGGTCTCGATCATCGACGAGGCGTTCGAGCGCGGCCTGGTGGCACCCCAGGTGCCGCAGCGCCTGACGGGCTCGACGGTCGCGGTCGTCGGCTCCGGGCCTGCCGGGCTCGCCGCCGCCCAGCAGCTCACGCGGGCCGGGCACACGGTCGTGGTGTACGAGCGGGACGACGCGATCGGCGGCCTGCTGCGCTACGGCATCCCCGACTTCAAGCTCGAGAAGGAGCACATCGAGCGACGTCTCGAGCAGATGGAGGCCGAGGGCACCCGGTTCCGCCCGGGCGTCGCCATCGGCACGGACATCACCTGGGACGCGCTGCGACGCCGGTTCGACGCCGTCGTCGTCGCCACGGGGGCGACCGTGCCCCGCGACCTGCCGGTGCCGGGCCGTGAGCTCGACGGCGTGCACTACGCGATGGACTTCCTGACGCCGTCGAACAAGGCCGTGGCGGGGCACCCCGTCGAGGGCGCCCCGCACGCCGAGGGCAAGCACGTCATCGTCATCGGCGGTGGCGACACCGGGTCCGACTGCGTCGGCACCTCGCTGCGCCAGGGCGCGGCGAGCGTCACCACGCTGGCGATCGGCAAGAAGCCGCCGACGGAACGCCCCGAGCACCAGCCGTGGCCCACCGACCCGATCCTGTTCGAGGTCTCGAGCTCGCACGAGGAGGGCGGGGAGCGCTCCTTCCTGGCCTCGACCGTCGAGTTCGTCGGGGACGAGGACGGTCACGTGCGGTCGCTGACGGTGGCCGAGACCGAGTACCTGGAGGACGGCCGCCGGGTCCCGAAGCCGGGTACGGAACGCCAGATCCCGGCGGACCTGGTGCTGATCGCGATGGGCTTCACGGGGCCGGAGACCCCCGAGCTGGTGCAGCAGACCGGCGCCGAGACGACCGGCCGCGGGCTGGTGGGCCGCGGCGACGACTACGCGTCCTCGCTGCCCGGCGTGTTCGTGGCCGGCGACGCCGGCCGGGGCCAGTCCCTGATCGTCTGGGCGATCGCGGAGGGACGGGCCGCCGCCGCCGCGGTGGACGCCTACCTGCAGGGGAGCACCGAGCTGCCGGCTCCGGTGGGCCCCCGGACGGTCGCGCTGCGAGGATGAMADPRGFLKVRERELPKSRPVEVRLRDWKDTYAQRQEGQPFLKEQAGRCMDCGIPFCHQGCPLGNLIPEWNDLVRTDQWADAIERLHATNNFPEFTGRVCPAPCETSCVLGINQPAVTIKNIEVSIIDEAFERGLVAPQVPQRLTGSTVAVVGSGPAGLAAAQQLTRAGHTVVVYERDDAIGGLLRYGIPDFKLEKEHIERRLEQMEAEGTRFRPGVAIGTDITWDALRRRFDAVVVATGATVPRDLPVPGRELDGVHYAMDFLTPSNKAVAGHPVEGAPHAEGKHVIVIGGGDTGSDCVGTSLRQGAASVTTLAIGKKPPTERPEHQPWPTDPILFEVSSSHEEGGERSFLASTVEFVGDEDGHVRSLTVAETEYLEDGRRVPKPGTERQIPADLVLIAMGFTGPETPELVQQTGAETTGRGLVGRGDDYASSLPGVFVAGDAGRGQSLIVWAIAEGRAAAAAVDAYLQGSTELPAPVGPRTVALRGPGPT0000640_1198DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000640-gltD-K00266NANA
AK018_043564569gltB_2COG0067Glutamate synthase [NADPH] large chainATGACCACGCCGCAGCACTGGTCCGCGCCCCCCGCGGCGCAGGGCCTCTACGACCCGGCGGCCGAGCACGACGCCTGCGGTGTCGCGTTCGTGGCGACGCTGCGCGGCACGCCGGGGCGCGACATCGTCGACGCCGGGCTGACCGCCCTGCTCAACCTGGACCACCGCGGCGCCGTCGGCGCCGAGGAGGACAGCGGGGACGGCGCCGGCATCCTCACGCAGATCCCCGACGCGTTCGTGCGCGACGTCGTCGCCGCGGACCTGCCGCCGGCCGGCCACTACGCCATCGGCATGGCGTTCCTTCCCCGGGACCCCGCGGAGGCGGACGCCCTCGCACGGCGCTTCGAGGCCATCGCGGTCGAGGAGAAGCTCGACGTGCTGGCCTGGCGCGACGTGCCGGTCACGGCCGACCTCGTCGGCCCGACCGCGCGCGCCTCGATGCCCACCTTCCGTCAGGTGGTCGTCGCCGACCCCGCCGGCGAGCTCGCCGGCCTCGCGCTGGACCGCCGGGCCTACCGCCTGCGCAAGCGCGCCGAGAACGAGCTGGAGCTGTTCCTTGCCTCGCTGTCGGCCCGCACCCTGACCTACAAGGGGATGCTGACCACCGCGCAGCTCGAGCCGTTCTTCCCGGACCTGTCCGACCCGCGGTACGCGTCGGAGATCGCGCTCGTCCACTCCCGGTTCTCCACCAACACGTTCCCGTCCTGGCCGCTGGCCCAGCCGTTCCGCATGATCGCGCACAACGGCGAGATCAACACCGTCAAGGGCAACCGCAACTGGATGGCGGCCCGCGAGGGCACGCTCGCCAGCGAGGAGCTGGGCGACCTCGCGCCGCTGCTGCCGATCTGCTCGGCGGGCTCCAGCGACTCGGCGAGCTTCGACGAGGTGCTCGAGCTGCTGCACCTGTCGGGGCGCTCCCTGCCGCACTCGGTGCTGATGATGATCCCGGAGGCGTGGGAGAACCACGCCGAGATGGACCCCGCGCGGCGCGCCTTCTACCAGTACCACGCCAACCTCATCGAGCCGTGGGACGGCCCGGCCTGCCTGACGTTCACCGACGGCTCCCTCATCGGTGCCGTGCTCGACCGCAACGGCCTGCGCCCGGGACGCTTCTGGGTGACCGAGGACGGCCTGGTCGTGCTCGGCTCCGAGGCCGGCGTGCTCGACATCGACCCGGCCACGGTGGTGCGCAAGGGCCGCCTGGAGCCGGGCCGCATGTTCCTCGTGGACACCGCCCAGGGCCGGATCGTCGAGGACGACGAGGTCAAGTCGCAGCTCGCGTCGCAGCGTCCCTACGGCGAGTGGATCGAGCAGAACTCGATCTCGCTGGACTCGCTGCCCGAGCGCGAGCACGTCGCCCACTCGCCGGCGTCCGTCCAGCGGCGCCAGCGGGCCTTCGGGTACACCTCCGAGGAGCTCAAGATCATCCTGACGCCCATGGCGAACAACGCCATGGAGCCGCTGGGTGCCATGGGGTCCGACACACCGGTCGCGGTGCTGTCGAACCGCCCCCGGCTGCTCTTCGACTACTTCACCCAGATGTTCGCCCAGGTGACCAACCCGCCGCTGGACGCCATCCGTGAGGAGCTGGTCACCTCGATCGGCGGTGCGATCGGGCCCGAGCCGAACCTGCTCGAGGACACCCCGCAGCACGCCCGCAAGCTGATCCTGCCGTTCCCCGTGCTCGACAACGACGAGCTCGCCAAGATCATGCGCATCGAGCGCGACGAGCGCCTCGAGGGCGAGTTCCGTGCCGCCATCGTGCGCGGCCTGTACGACGTCTCCGGCGGCGGCCGTGCGCTGCACGAGCGGCTCGAGGAGATCTTCGCGGACATCGACGCCCAGATCGAGGCGGGCGTCACGCACATCATCCTGTCCGACCGCGACTCGGACGCGGAGCGGGCGCCGATCCCGTCGCTGCTGCTGACCAGCGCCGTGCACCACCACCTGCTGCGCCGCCAGACCCGCACGCGGATCTCCCTGGTCGTCGAGGCCGGCGACGTGCGCGAGGTGCACCACGTCGCGCTGCTCATCGGCTACGGCGCCGCCGCGGTGAACCCTTACCTCGCGATGGAGACGGTCGAGGACCTGGCCCGCCGCGGCTACCTCGACGTGGCGCCCGACGTCGCGGTGGACAACCTCATCACCGCGCTCGGCAAGGGTGTGCTCAAGGTGATGTCCAAGATGGGCATCTCCACGATCATGTCCTACCGCGGCGCCCAGGTCTTCGAGGCCGTGGGCCTGTCCCACGAGCTCGTGGACGACTACTTCACCGGCACCACGAGCCGCCTCGGCGGCATCGGCCTGGACGTGATCGCCGCGGAGACCGCGGCCCGGCACACCGAGGCCTACCCGGCGTCCGGCAACCACACCCCGCACGAGCGGCTCACCACCGGTGGCGAGTACCAGTGGCGCCGCGACGGCGAGGAGCACCTGTTCGACCCGGAGACGGTCTTCCGGCTCCAGCACGCCACCCGTGCGGGCAAGATGGACATCTTCCGCCAGTACACGCGGCGCGTCGACGAGCAGTCCGAGCGGCTCATGACGCTGCGCGGCCTGCTGCGCTTCGAGCCGGACCGCGACCCGGTGCCGATCGACGAGGTCGAGCCCGTCAGCGAGATCGTCAAGCGGTTCAACACCGGTGCGATGTCCTACGGCGCGATCAGCCAGGAGATGCACGAGACGCTCGCCATCGCCATGAACCAGCTCCAGGGCCGGTCCAACTCGGGCGAGGGCGGCGAGGACTCCGAGCGGCTCTACGACCCGCAGCGGCGGTCGCGCGTCAAGCAGATCGCCTCGGGGCGGTTCGGCGTGACCAGCGAGTACCTCACCCAGGCCGACGACATCCAGCTCAAGCTCGCCCAGGGCGCCAAGCCCGGCGAGGGCGGCCAGCTGCCCGGACCGAAGGTCTACCCGTGGGTCGCCAAGACCCGGCACTCCACGCCCGGCGTCGGCCTGATCTCGCCGCCGCCGCACCACGACATCTACTCGATCGAGGACCTGGCCCAGCTGATCCACGACGCCAAGAACGCCAACCCGGCCGCGCGGATCCACGTCAAGCTGGTCTCGGAGTTCGGCGTCGGGACGGTCGCCACGGGCGTGTCCAAGGCGCACGCCGACGTCGTGCTCATCTCCGGCCACGACGGCGGCACGGGCGCGAGCCCGCTGACCTCGCTCAAGCACGCGGGCACCCCGTGGGAGATCGGTCTGGCCGAGACCCAGCAGACGCTCGTGCTCAACGACCTGCGCGACCGCATCACCGTCCAGGTGGACGGCCAGATGAAGACCGGTCGCGACGTCGTCGTCGCCGCGCTGCTGGGCGCCGAGGAGTTCGGGTTCGCCACCGCCCCCATGGTGGTCTCCGGCTGCATCATGATGCGCGTGTGCCACCTGGACACCTGTCCCGTCGGCGTGGCCACGCAGAACCCGGAGCTGCGGCGCCGGTTCACCGGCCAGGCCGAGTTCGTGGTGAACTTCTTCGAGTTCATCGCCACCGAGGTCCGCGAGCACCTCGCGGCCCTCGGCTTCCGGTCGATCGACGAGGCCGTCGGGCAGGTCCAGACCCTCGACACGCGCAAGGCCGTCGACCACTGGAAGGCCCAGAGCTTGGACCTCGGTCCCGTGCTGGAGCAGGTGCCCGCGCAGCAGGGGTCCGCGCTGCACCGCACGCAGGACCAGGACCACGGTCTCGACAAGGCGCTCGACCAGCAGCTCATCGCCCAGGCCGGGCCCGCCCTCGAGGACGCCCGACCGGTGCGCATCGAGGTCCCGGTGCGCAACGTCAACCGCACGGTGGGCACGATGCTGGGGCACGAGGTCACCAAGAGGTACCGCGGCGAGGGCCTGCCCGACGACACCATCGACGTGACCCTGACCGGGTCCGCCGGTCAGTCCTTCGGGGCGTTCCTGCCCCGGGGTGTCACGCTGCGCCTCTTCGGCGACGCGAACGACTACGTCGGCAAGGGCCTGTCCGGCGGCCGGATCGTGGTGCGGCCGGACAAGGCGGCGGTGCTCGAGGGCGCCGCGAACGTCATCGCCGGCAATGTCATCGGCTACGGGGCGACCTCCGGCCAGGTCTTCCTGCGCGGCCGCGTCGGCGAGCGCTTCGGGGTGCGCAACTCCGGTGCGACGCTCGTCGTCGAGGGCGTGGGCGACCACGGCTGCGAGTACATGACCGGTGGCGAGGTGCTCGTGCTCGGCCCCACCGGGCGCAACTTCGGCGCCGGGATGTCCGGCGGCGTCGCCTACGTGCTCGGCCTGCGGGACAAGGCGATGAACCACGCCGCCGTCACCAAGGGCGAGCTCGAGGTGACCGCCCTGCCGGACGAGGACTGGCAGCGGGTGCGCACCCTGCTGCAGCAGCACCTGGACGAGACCGGCTCGCCGGTCGCGGCCGAGCTGCTGGACGACCCGGCCGCGCGCGAGAAGTTCTCCCGCGTGGTGCCGCCCGCCTGGGCCAAGGTGCGTGAGGCGCTCGGCGAGGCCGAGGCGGCCGGCACGCCTCTGGGCGAGGGCGACGACTTCGACCCGACGCTGTGGGAGCGCATCATGGAGGTGGCTCGTGGCTGAMTTPQHWSAPPAAQGLYDPAAEHDACGVAFVATLRGTPGRDIVDAGLTALLNLDHRGAVGAEEDSGDGAGILTQIPDAFVRDVVAADLPPAGHYAIGMAFLPRDPAEADALARRFEAIAVEEKLDVLAWRDVPVTADLVGPTARASMPTFRQVVVADPAGELAGLALDRRAYRLRKRAENELELFLASLSARTLTYKGMLTTAQLEPFFPDLSDPRYASEIALVHSRFSTNTFPSWPLAQPFRMIAHNGEINTVKGNRNWMAAREGTLASEELGDLAPLLPICSAGSSDSASFDEVLELLHLSGRSLPHSVLMMIPEAWENHAEMDPARRAFYQYHANLIEPWDGPACLTFTDGSLIGAVLDRNGLRPGRFWVTEDGLVVLGSEAGVLDIDPATVVRKGRLEPGRMFLVDTAQGRIVEDDEVKSQLASQRPYGEWIEQNSISLDSLPEREHVAHSPASVQRRQRAFGYTSEELKIILTPMANNAMEPLGAMGSDTPVAVLSNRPRLLFDYFTQMFAQVTNPPLDAIREELVTSIGGAIGPEPNLLEDTPQHARKLILPFPVLDNDELAKIMRIERDERLEGEFRAAIVRGLYDVSGGGRALHERLEEIFADIDAQIEAGVTHIILSDRDSDAERAPIPSLLLTSAVHHHLLRRQTRTRISLVVEAGDVREVHHVALLIGYGAAAVNPYLAMETVEDLARRGYLDVAPDVAVDNLITALGKGVLKVMSKMGISTIMSYRGAQVFEAVGLSHELVDDYFTGTTSRLGGIGLDVIAAETAARHTEAYPASGNHTPHERLTTGGEYQWRRDGEEHLFDPETVFRLQHATRAGKMDIFRQYTRRVDEQSERLMTLRGLLRFEPDRDPVPIDEVEPVSEIVKRFNTGAMSYGAISQEMHETLAIAMNQLQGRSNSGEGGEDSERLYDPQRRSRVKQIASGRFGVTSEYLTQADDIQLKLAQGAKPGEGGQLPGPKVYPWVAKTRHSTPGVGLISPPPHHDIYSIEDLAQLIHDAKNANPAARIHVKLVSEFGVGTVATGVSKAHADVVLISGHDGGTGASPLTSLKHAGTPWEIGLAETQQTLVLNDLRDRITVQVDGQMKTGRDVVVAALLGAEEFGFATAPMVVSGCIMMRVCHLDTCPVGVATQNPELRRRFTGQAEFVVNFFEFIATEVREHLAALGFRSIDEAVGQVQTLDTRKAVDHWKAQSLDLGPVLEQVPAQQGSALHRTQDQDHGLDKALDQQLIAQAGPALEDARPVRIEVPVRNVNRTVGTMLGHEVTKRYRGEGLPDDTIDVTLTGSAGQSFGAFLPRGVTLRLFGDANDYVGKGLSGGRIVVRPDKAAVLEGAANVIAGNVIGYGATSGQVFLRGRVGERFGVRNSGATLVVEGVGDHGCEYMTGGEVLVLGPTGRNFGAGMSGGVAYVLGLRDKAMNHAAVTKGELEVTALPDEDWQRVRTLLQQHLDETGSPVAAELLDDPAAREKFSRVVPPAWAKVREALGEAEAAGTPLGEGDDFDPTLWERIMEVARGPGPT0000635_1495DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000635-gltB-K00265NANA
AK018_043571017lgt_2COG0682Phosphatidylglycerol--prolipoprotein diacylglyceryl transferaseGTGAACGTCATCGGCCAGATCGCCACCGCGATCCCGAGCCCGTCGCAGGGCGTGTGGTACCTCGGCCCGGTGCCGATCCGTGCCTACGCCCTGGCGATCCTCGCGGGGATCGTCGCGGCCGTGTGGATCACCATGAAGCGCTGGCAGGCGCGCGGCGGCGACCCGGACGACGTCCTGGAGATCGCGTTCTGGGCGGTCCCGTTCGGCATCGTCGGTGGCCGGCTGTACCACGTGATCTCCACCCCCGACCCGTACTGGGGGGAGAACGGCGACCCCGTCTCGGCGCTGTACATCTGGCAGGGCGGTCTCGGCATCTGGGGCGCCGTCGCGCTCGGGGCCGTCGGCGCCTGGATCGGCTGCCGGCGCCTCGGCGTCCGCCTGCCCGCGTTCGCCGACGCCCTGGCCCCCGGGCTGCTGGTCGCCCAGGCGATCGGCCGGCTGGGCAACTGGTTCAACCAGGAGCTGTTCGGCGCGCCGACCACCCTCCCGTGGGGCCTGGAGATCGACCCGGCGCACCTGCCCGTCGACCCCGCCACGGGGCTGCAGTACGCCGAGGGGACGCTGTTCCACCCGACGTTCCTGTACGAGATGGTCTGGAACCTCGGCGCCGCCGCGCTGCTGATCTGGCTCGACCGCCGGTACAGGCTCGGTCATGGGAGGGTATTCTGGGCCTACGTCGCGCTCTACACCCTTGGTCGGGTGTGGATCGAGATGCTCCGCATCGACACCGCCGAGATGGTGCTCGGGCTGCGGCTGAACGTCTGGACGTCGATCGTCCTGGGCCTCGGTGCCCTGGTGGCCTTCGTCATCGTCGGACGGCTGCGCCCCGGGCGCGAGGACGGCGTCGAGCTGCCCGGCCGCCCACCCCGCGACCGGCAGCAGGACGACGGACAGCACGAGACCGACGGCGCTCCTTCCGGGACGGACTCGTCCGGCACCGGGCAGGACGCCCCCGACACGACCGAGACGGACGCGTCGGACGCCGGGACCGACCAGGACCCGGCGTCCCGCACCTGAMNVIGQIATAIPSPSQGVWYLGPVPIRAYALAILAGIVAAVWITMKRWQARGGDPDDVLEIAFWAVPFGIVGGRLYHVISTPDPYWGENGDPVSALYIWQGGLGIWGAVALGAVGAWIGCRRLGVRLPAFADALAPGLLVAQAIGRLGNWFNQELFGAPTTLPWGLEIDPAHLPVDPATGLQYAEGTLFHPTFLYEMVWNLGAAALLIWLDRRYRLGHGRVFWAYVALYTLGRVWIEMLRIDTAEMVLGLRLNVWTSIVLGLGALVAFVIVGRLRPGREDGVELPGRPPRDRQQDDGQHETDGAPSGTDSSGTGQDAPDTTETDASDAGTDQDPASRTNANANANANA
AK018_04358846trpA_2COG0159Tryptophan synthase alpha chainGTGAGCACCGCGACGACCGCCTCGGCGACGGCCGCCCGGCTGGACGCCCTGCGCGCCGAGGGACGGCCGGCCCTCGTCGGCTACCTGCCCGTGGGCTACCCCGACGTCGACCGTTCCGTGCAGGCCGTCACGACGATGGTCGACGCCGGGGTCGACGTCGTGGAGATCGGCGTGCCGTACACCGACCCGGTGATGGACGGGCCCGTCATCCAGCAGGCCGCCGAGGCGGCGCTGCACGGCGGCACCCGCGTGCGTGACGTGCTGCGGGTGGTCGAGGCCGTCGCCCAGCACTCCGGCGGCCGGGTGCCGGCCCTGGTGATGTCGTACTACAACCCCGTGCTGCGCTACGGCGTCGAGGCGTTCGCCCGCGACCTGTCGGCCGCCGGCGGTGCCGGGATGATCACGCCCGACCTCATCCCGGACGAGGCCGACGAGTGGAGCACCGCCGCCGACGCGCACGGTCTCGACAAGGTCTACCTGGTGGCCCCGAGCTCCACCCCGGAGCGGCTGCGGCTCACGGCGCAGGCCTCGCGGGGCTTCGTCTACGCGGCCTCCACGATGGGCGTGACCGGCGCCCGGGACGCGGTCGGGGACCGCGCCGAGCGGCTCGTGGCCGACACCCGCTCCGCCGGTGCGGCGCACGTGTGCGTCGGTCTGGGCGTGTCCACGGGCGACCAGGCCGCCCAGGTGGGCCGGTACGCCGACGGCGTGATCGTCGGCTCCGCCCTGGTGCGGACCCTGCTCGGCGACGCACCGTGGTCGGAGCGCCTCGACGACCTCGGTAGGGTGACCGCCGAGCTCGCGACCGGAGTCGCGCGCGCCCGGACCGCGGAAGGAACCTCGTGAMSTATTASATAARLDALRAEGRPALVGYLPVGYPDVDRSVQAVTTMVDAGVDVVEIGVPYTDPVMDGPVIQQAAEAALHGGTRVRDVLRVVEAVAQHSGGRVPALVMSYYNPVLRYGVEAFARDLSAAGGAGMITPDLIPDEADEWSTAADAHGLDKVYLVAPSSTPERLRLTAQASRGFVYAASTMGVTGARDAVGDRAERLVADTRSAGAAHVCVGLGVSTGDQAAQVGRYADGVIVGSALVRTLLGDAPWSERLDDLGRVTAELATGVARARTAEGTSPGPT0007070_439DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007070-trpA-K01695NANA
AK018_043591296trpB_2COG0133Tryptophan synthase beta chainGTGCCCGCCAAGCCCGTGCGCGACGCGCTGACCGAGACGCTCGCCGCCTCCGACGCCGGCCGCCTCGCCGACGTCCACGGCCCCTACTTCGGGCAGTTCGGCGGCCGGTACGTCCCCGAGGCGCTGATCGCCGCCCTCGACGAGCTCGAGGCGGAGTTCCGCAAGGCGCAGGCCGACGCCGCGTTCGCCGCGGACCTGGAGCGGCTGCACCGCGAGTACACCGGGCGGCCCTCGCCCCTGACGGAGGTTCCGCGGTTCGCCGAGCACGCCGACCCCGACGGTGCGGTGCGGATCCTGCTCAAGCGCGAGGACCTGAACCACACCGGCTCGCACAAGATCAACAACGTCCTGGGCCAGGCGCTGCTCGTCAAGCGGATGGGCAAGTCCCGCGTGATCGCCGAGACGGGCGCCGGGCAGCACGGCGTCGCCACGGCCACCGCCGCCGCCCTGCTCGGGCTCGAGTGCGTCGTGTACATGGGCGAGGAGGACACCCGCCGGCAGGCGCTGAACGTGGCGCGCATGGAGCTGCTGGGCGCCACCGTCGTGCCCGTGGCGATCGGGACCCGTACGCTGAAGGACGCGATCAACGAGGCCCTGCGCGACTGGGTCACCAACGTCGAGTCGACACACTACCTGCTCGGCACCGTCACCGGGCCGCACCCGTTCCCCGAGATGGTGCGCGAGTTCCACCGCATCATCGGCGCCGAGGCGCGCGAGCAGGTGCTCGAGCGGGTGGGGCGGCTGCCCGACGTCCTGGCCGCGTGCGTCGGCGGCGGGTCCAACGCCCTGGGCCTGTTCAACGCGTTCCTGGACGACGACGGCGTCGAGCTCTACGGGTTCGAGGCCGGTGGCGAGGGGATCGAGTCCGGGCGCCACGCCGCCCGGTTCTCCGGCGGGGCGCCCGGCGTGCTGCACGGCGCCCGCTCCTACCTGCTGCAGGACGACGACGGTCAGACCCGGCCCAGCCACTCGGTCTCCGCCGGGCTGGACTACCCGAGCGTCGGCCCCGCCCACTCCTGGCTGCACGACATCGGCCGCGCCACGTACGAGCCCGTGACGGACGACGAGGCGATGGAGGCCTTCCGGCTGCTGTGCCGGACCGAGGGCATCATCCCGGCCATCGAGTCGGCCCACGCCCTGGCGGGCGCCCTGCGCGTCGGACGGCGCCGCGTCGCCGAGGGACTGCGCGACCAGGTGATCCTGGTCAACCTCTCCGGGCGGGGGGACAAGGACGTGGCCACCGCGGCGACGTGGTTCGGGCTGCTCGACGAGACGACGACGGAGGGGGACCGGTGAMPAKPVRDALTETLAASDAGRLADVHGPYFGQFGGRYVPEALIAALDELEAEFRKAQADAAFAADLERLHREYTGRPSPLTEVPRFAEHADPDGAVRILLKREDLNHTGSHKINNVLGQALLVKRMGKSRVIAETGAGQHGVATATAAALLGLECVVYMGEEDTRRQALNVARMELLGATVVPVAIGTRTLKDAINEALRDWVTNVESTHYLLGTVTGPHPFPEMVREFHRIIGAEAREQVLERVGRLPDVLAACVGGGSNALGLFNAFLDDDGVELYGFEAGGEGIESGRHAARFSGGAPGVLHGARSYLLQDDDGQTRPSHSVSAGLDYPSVGPAHSWLHDIGRATYEPVTDDEAMEAFRLLCRTEGIIPAIESAHALAGALRVGRRRVAEGLRDQVILVNLSGRGDKDVATAATWFGLLDETTTEGDRPGPT0007075_568DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007075-trpB-K01696NANA
AK018_04360825trpC_2COG0134Indole-3-glycerol phosphate synthaseATGACAGTCCTGGAGGACATCGTCGCGGGGGTCCGCGAGGACCTTGCCGCGCGTCAGGCACGTACCTCGCTCGACGAGCTCAAGGAGCGCGCGGCACGGGTGCCGGGAGCGCTCGAGTGCGCCAGCGTGCTGCACTCGGAGGACAGGGTCGCCGTCGTCGCCGAGGTGAAGCGCTCGAGCCCGTCCAAGGGTTCGCTGGCGCCCATCACCGACCCCGCCGCCCTGGCCGCCGAGTACGCCGCCGGCGGCGCCGGCGTCATCTCGGTGCTGACCGAGCAGCGCCGCTTCGGCGGCAGCCTCGACGACCTGGACGCCGTGCGCGCCCGGGTGGACGTGCCGGTGCTGCGCAAGGACTTCGTGGTCACGCCCTACCAAGTGTGGGAGGCGCGGGCGCACGGCGCCGACGTCGTCCTGCTCATCGTCGCCGCGCTCGAGCAGACCGTGCTGACGTCCCTCGTCGAACGGGTGCACTCCCTGGGGATGACGGCGCTGGTCGAGGTGCACACGGCCGAGGAGGTCTCCCGCGCCCTCGACGCCGGGGCCCGCGTCATCGGCGTCAACGCCCGTGACCTCAAGACGCTCGAGGTCCGCCGGGAGACCTTCGCCCGGCTCGCCCCGCTGATCCCCGACGACGTGGCCCGCGTGGCCGAGTCCGGGGTGCGCGGCCCGCACGACGTCATGGAGTACGCCCGGGCCGGCGCCCACGCGGTGCTGGTCGGCGAGGCGCTCGTCACCGACGGTCAGCCGCGGCGCTCGGTGGCGGACCTGGTCGCGGCGGGCCAGCACCCGTCGCTGTGGTCGGTCCGCCCGGCCGTGCAGCCCTGAMTVLEDIVAGVREDLAARQARTSLDELKERAARVPGALECASVLHSEDRVAVVAEVKRSSPSKGSLAPITDPAALAAEYAAGGAGVISVLTEQRRFGGSLDDLDAVRARVDVPVLRKDFVVTPYQVWEARAHGADVVLLIVAALEQTVLTSLVERVHSLGMTALVEVHTAEEVSRALDAGARVIGVNARDLKTLEVRRETFARLAPLIPDDVARVAESGVRGPHDVMEYARAGAHAVLVGEALVTDGQPRRSVADLVAAGQHPSLWSVRPAVQPPGPT0007080_799DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007080-trpC-K01609NANA
AK018_04361279hypothetical proteinATGACCGACAACCGCACCGCCGAGCCGACGTACCTGCCGGAGGCGGTCCCGCCCACCAACCACGGCCACACCGTCGCGGCCTGGACCGCCATGATCGGCGTGATGATCGGGGCGCTCGTCTCGTCGATCGGCTGCCTGCCCGGCGTGCCGTTCGCGCTGTTCTGGGTCGGGCTCGTCGTGGTCGTGGCCGCCTGCGTGGCGGGCCTGGTCATGCGCAACATGGGTCTCGGCCAGCCGAAGGCCGGCGTCGCGCCGCGGCGGCAGGCGGCGGGCCACTGAMTDNRTAEPTYLPEAVPPTNHGHTVAAWTAMIGVMIGALVSSIGCLPGVPFALFWVGLVVVVAACVAGLVMRNMGLGQPKAGVAPRRQAAGHNANANANANA
AK018_04362585hypothetical proteinGTGAGCGTGGCGATCCGGTCCCGTGCCCGCGCGGTCGTCGCGCTCCTCGTCCTCGGGGCGGGTGCGCTCGCGGCCGCGTCGGCCACCTGGCTGCGCACCTCGGTCTCGACCGCGCTCGAGCCGGAGGTGGCCGTCGAGGTCACGGGGACGACGGCGGCACCCGGGGTGGCCGCGGCGGCGTTCGTGGTGGTGGCCGGGGCGCTGGCCACCACGCTCGGGGGATCGCTCGCACGTCGGGTCGCGCTCGTGGTCGTCGCGGGCGGGGGACTGGGGATCACGGCGTCGGCCGTGGCCGTGCTGCTCGACGCCGAGGGGCCGGCCGTGCTGGGCGCCTCCGACGCCGCCGGCGTGACGGAGCTGGCCTCGCCGGTGCAGGTCACGCTCCTGCCCTGGCTCGCGGCCCTCGCGGGCGCGCTGGTCGTCGTCGTGGCGGTGCTGGCGCTGCTGGGCGCCGGCTCGTGGGCCGCCACCGGAGGGCGTCACGAGCGGGTCGGCACCGCGGAGGCGCGGCCCGCCGCCGAACCCGACCCGCAGGCCGACTGGGACGCCCTGTCCCGGGGCACGGACCCGTCGTCCGACCGGTAGMSVAIRSRARAVVALLVLGAGALAAASATWLRTSVSTALEPEVAVEVTGTTAAPGVAAAAFVVVAGALATTLGGSLARRVALVVVAGGGLGITASAVAVLLDAEGPAVLGASDAAGVTELASPVQVTLLPWLAALAGALVVVVAVLALLGAGSWAATGGRHERVGTAEARPAAEPDPQADWDALSRGTDPSSDRNANANANANA
AK018_043631593trpE_2COG0147Anthranilate synthase component 1GTGACCACCACGCCCCCACGCCCCGCGCAGGCACCCGCCGTCGCGCCGACGGCCGAGGACCTCACCTGGGGCGCGACGTGGCCGGGCCTGCCCGTGTTCCGCGAGCTGGCCCGGGACCGCCGCGTGATCCCGGTGGTGCGCCGCGTGCTCGCCGACGACGTCACGCCCGTGGGCCTGTACCGCGCGCTCGCGCAGGGCCGCCCGGGCACGTTCGTCCTGGAGTCCGCCGAGGCCGGCCGCTCCTGGTCGCGCTGGTCGTTCGTGGGCGTCGAGGCGCGTGCCACCCTGCTGTCCGACGGCGGTCGGGCGCGCTGGCGCGGTGACGTCCCGGCGGGCATCCCCCGCGAGGGCGACGTCGTCGAGGTCCTGGAGGCGGCGCTCGAGGCGCTGCGCACCGAGCCCGTCCAGGGGCTGCCGCCGCTGACCGGCGGGTTCGTGGGCGCCATGGGCTGGGACGTGGTGCGGCACTGGGAGCCGAGCCTGCCCGCGGACGCGCCGGACGAGCTCGACGCCCCGGAGGTGGCGCTCGCCCTGGCCACCGACCTGGTGGCCGTCGACCACCTGACCGGGTCCGTGTGGCTCATCGCCAACGCGATCAACGCCGACGATACCGACGAGCGCGTGGACGAGGCGCACGCCGACGCGGTGGCGCGGCTGGACGCCCTGGCCGACCGCCTCGCGGCGTCCCACCGTGCCGAGCGGACGGTGCTGCGCGACGACCTCGCCGAGCCCGAGATCGAGTTCCGCTCCACGCGCGCCGAGTACGAGGCGGCCGTGCTCGCCGGTCAGGAGGGGGTGCGCGACGGCGAGGTGTTCCAGGTCGTGCTCTCGCAGCGGCTCGACCTCGACTGCCCGGCACCGCCGCTGGACGTGTACCGGGCGCTGCGCACCATCAACCCGAGCCAGTACATGTACTACTTCCAGCTCACCGACCACCGCGAGCGCGACTTCGCCGTGGTCGGCGCGAGCCCGGAGACGCTGGTCAAGGTCGACGAGGGGCACGTCACCACGTACCCGATCGCGGGCTCGCGGCCCCGCGGCGAGAAGGTCGAGGACGACGTCGAGCTCGCCGAGGAGCTGCTCGCCGACCCCAAGGAGCGGGCCGAGCACCTGATGCTCGTGGACCTGTCCCGCAACGACATGGTCAAGGTGTGCGAGCCGACCTCCGTGGAGGTGGTGGAGTACATGACGGTGCGGCGGTTCAGCCACATCATGCACCTGTGCTCGACCGTGGTCGGACGCCTGCGGCCGGGCGCCACCGCCCTGGACACGTTCCGGGCGACGTTCCCCGCGGGCACCCTGTCCGGGGCGCCCAAGCCGCGCGCGATCGCGCTGATCGACGAGCTCGAGCCGGCGTCGCGCGGCATCTACGGCGGCACCTGCGGCTACTTCGACTTCGGCGGGAACATGGACATGGCGATCGCCATCCGCACGGCGTTCCTGCGGGACGGGCGTGCCTCGGTGCAGGCCGGCGGCGGGGTCGTCGCGGACTCCGTGCCCGCGCTGGAGTACCAGGAGTCGCGCAACAAGGCGGCCGCCGCGGTGCGAGCCGTGCAGCTCGCCGCCCGGTTCGCGGACCTGGGGCGCTCGTGAMTTTPPRPAQAPAVAPTAEDLTWGATWPGLPVFRELARDRRVIPVVRRVLADDVTPVGLYRALAQGRPGTFVLESAEAGRSWSRWSFVGVEARATLLSDGGRARWRGDVPAGIPREGDVVEVLEAALEALRTEPVQGLPPLTGGFVGAMGWDVVRHWEPSLPADAPDELDAPEVALALATDLVAVDHLTGSVWLIANAINADDTDERVDEAHADAVARLDALADRLAASHRAERTVLRDDLAEPEIEFRSTRAEYEAAVLAGQEGVRDGEVFQVVLSQRLDLDCPAPPLDVYRALRTINPSQYMYYFQLTDHRERDFAVVGASPETLVKVDEGHVTTYPIAGSRPRGEKVEDDVELAEELLADPKERAEHLMLVDLSRNDMVKVCEPTSVEVVEYMTVRRFSHIMHLCSTVVGRLRPGATALDTFRATFPAGTLSGAPKPRAIALIDELEPASRGIYGGTCGYFDFGGNMDMAIAIRTAFLRDGRASVQAGGGVVADSVPALEYQESRNKAAAAVRAVQLAARFADLGRSPGPT0007095_673DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
AK018_04364405hisI_2Phosphoribosyl-AMP cyclohydrolaseGTGCAGAACCCCAGCGCCCTGAACCCCGCCGTCGCCGACCGGCTCAAGCGTGACGAGCACGGGCTCGTCGCCGCGATCGTGCAGCAGCACGGCTCCGGCGAGGTGCTCATGCTCGGATGGATGGACGACGAGGCCCTGCACCGCACCCTGACGACCGGCCGCGTGACGTTCTGGAGCCGGTCGCGCGGAGAGTACTGGCGCAAGGGCGACACCTCCGGGCACCGCCAGCACGTGCGGTCCGTGGCCCTCGACTGCGACGGCGACGCCCTGCTCGTGCAGGTCGACCAGGTGGGCGCCGCCTGCCACACCGGCACGCGCACCTGCTTCGAGGCCGGTGGTGACCTGGGTGCCGTCGTCGGCGCCGTGCCCGCGAACGACCCCGACCACGCCGAGGAGGACCGGTGAMQNPSALNPAVADRLKRDEHGLVAAIVQQHGSGEVLMLGWMDDEALHRTLTTGRVTFWSRSRGEYWRKGDTSGHRQHVRSVALDCDGDALLVQVDQVGAACHTGTRTCFEAGGDLGAVVGAVPANDPDHAEEDRPGPT0007095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
AK018_043651809msbA_4COG1132Lipid A export ATP-binding/permease protein MsbAATGAGCGACTCACGCATCGCCTCGGCCAGCGAGCTGGGCGTGCTCGCCACGCTGCGCCACGGGATCCGGATCTCGCCCCAGATCGTCCAGGGCCTCTGGATCACCCTGGCCCTCGCCGTGCTCGCGGCCGCCGGACGCGTCGTCGTGCCCCTGGCCGTCCAGCGGACGGTCGACGACGGCATCCTCGCGGACGGGGGCCCGGACGCCTCGCGCGTCGCGCTGCTCACCGCGGTCGCCGCCGGCGCCATCGTGCTCGCGGGACTGTGCACGGCGGTCGTCAACGTCCGCCTCTTCCGCACCACCGAGGCCGGGCTGGCCACGCTGCGCACCAGCGCGTTCCGGCACGTGCACGACCTGTCGACGTTGTCCCAGGGCACCGAGCGCCGCGGGGCGCTGGTCTCGCGCGTGACCACCGACGTCGACCAGATCTCCCACTTCGTGCAGTGGGGCGGCATCATGCTGCTGGTCTCCACCCTGCAGATCGCCGTGGCCACCGTCCTCATGGCGGTCTACTCGCCGGCGCTGACGGTCGTGGTGTGGCTCTGCTTCGTGCCGCTCTTCCTCGTGCTGCGCTACGCCCAGCGTGCCGTCGGCCGCGCGTTCGCCCGGGCGCGCGAGAAGGTCGGCACGATGCTGGCGGCCGTCTCGGAGTCCGTGGTCGGCGCCGAGACCGTGCGCGCCTACGGGGTGGAGGCCCGCACCGGGCGCCGCATCGACACCGCGATCGAGGACGCCCGCCGGACCCAGGGCCGGGCCCTGGTGCTCGTGGCCAGCGTGTTCTCGTCGGGCACGCTCATGGCCAACCTCGTGCTGGCCGTGGTCGTCGTGGTGGGTTCGTTCCTCGGCATCGGGGGCGGTCTCACGGCCGGTCAGCTCGTCGCGTTCCTGTTCCTGGTCCAGCTCTTCACCGGGCCGGTGCAGATGGCCACCGAGATCCTCAACGAGATGCAGAACGCCCTGGCCGGGTGGCGGCGCGTGCTCGCCGTCGTCGAGACGCCGATCGACGTCGTCGACCCCGGCGACGACGGCGTCGACAGCCCCCGCGGGGACGCCCACGTCACGCTGCGCGGCGTGCGCTACGCCTACCCCGACGGCCCCGAGGTGCTGCACGGCGTCGACCTGGAGCTGCCGGCACGGCGCAAGGTCGCCGTCGTGGGGCAGACGGGCTCCGGCAAGACGACGGTCGCCAAGCTCGTCGCCCGGCTCATGGACCCCACCTCCGGCAGCGTGGAGCTGGACGGCGTGGACCTGCGCCGCATCTCGCTGGCACGGCTGCGCGAGCGCGTGGTGCTGGTGCCGCAGGAGGGCTTCCTGTTCGACGGCACGGTCCTGACCAACGCCGCCTACGGGTTGCGGGAGCTGCCGCCGGACCCGGACGGCGACCCGGAGGTCCGGGCACGGGTGGCGGCGGCGTTCGACGCGCTCGGGCTGACGGACTGGCTCGCCGGGATGCCGGCCGGCCTCGACACCGACGTCGGTCAGCGGGGCGAGGCGCTGTCGGCGGGGGAGCGTCAGCTTGTCGCGGTCGCCCGCGCCTACCTCGCCGCACCCGACCTGCTCGTCCTGGACGAGGCGACCTCCGCCGTCGACCCGGCCACCGAGGTGCGCATCGCCCGCGCCCTGGACACGCTGACCTCCGGACGGTCCACCATCACCATCGCCCACCGGCTGTCCACCGCCGAGGCGAGCGACATGGTCGTGGTGGTCGACGACGGGAACGTGGTCGAGGTGGGCCCGCACGCCGAGCTCGCCGCGGCCGGCGGCACGTACGCCCGCATGCACGCGAGCTGGGTGGCGCAGACCCGCTGAMSDSRIASASELGVLATLRHGIRISPQIVQGLWITLALAVLAAAGRVVVPLAVQRTVDDGILADGGPDASRVALLTAVAAGAIVLAGLCTAVVNVRLFRTTEAGLATLRTSAFRHVHDLSTLSQGTERRGALVSRVTTDVDQISHFVQWGGIMLLVSTLQIAVATVLMAVYSPALTVVVWLCFVPLFLVLRYAQRAVGRAFARAREKVGTMLAAVSESVVGAETVRAYGVEARTGRRIDTAIEDARRTQGRALVLVASVFSSGTLMANLVLAVVVVVGSFLGIGGGLTAGQLVAFLFLVQLFTGPVQMATEILNEMQNALAGWRRVLAVVETPIDVVDPGDDGVDSPRGDAHVTLRGVRYAYPDGPEVLHGVDLELPARRKVAVVGQTGSGKTTVAKLVARLMDPTSGSVELDGVDLRRISLARLRERVVLVPQEGFLFDGTVLTNAAYGLRELPPDPDGDPEVRARVAAAFDALGLTDWLAGMPAGLDTDVGQRGEALSAGERQLVAVARAYLAAPDLLVLDEATSAVDPATEVRIARALDTLTSGRSTITIAHRLSTAEASDMVVVVDDGNVVEVGPHAELAAAGGTYARMHASWVAQTRNANANANANA
AK018_043661911btuD_17Vitamin B12 import ATP-binding protein BtuDGTGCCCGAGGTGCCCCCCGGTACCCGTCCCGCGACCCTGACCGGCTCGCGCCTGCGCCGCAGCTGCGCCCTGCTGTGGCGCGGCATGCGCGCCGAGCCGCGCCTGTACCTGCTGGCCGTGATCGCCTCGGCGGTGTTCGGCGCCGCCACCGTCGCCGTCAGCCGGGCCGTCGGCTGGGCGACGGACGCCGTCGTCGTCCCGGCGCTCGCCGGTGACGCCACCGCCCGGGCGGACATCTGGCTCGCCGGGGGAGTGCTCGCCCTCGTGGCGCTCACCCTGGCGCTGTCCGTGGCCGGCCGGCGCATCTGGGCCGGGTGGGGAAACGTGGGGCTGCAGGCGCAGCACCGTCGCGGCGTGACGCGCCAGTACCTGCGCCTGCCCATGTCGTGGCACCGTTCGCACCCCGCCGGACAGCTGCTGTCGAACGCCAGCGCGGACGTCGAGGCCGCCACCGGCGTGTTCAACCCGCTGCCGTTCGCGCTCGGCGTCGTGGTGATGATCGGCGTCGCCACGGGCATGCTGTTCGCCATCGACCCGTGGCTCGCCACGGCGGCGCTGCTGGTGATCCCCGCGGCCGTCGTCGCCAACCTCGTATTCCAGCGCCACATGGCCCCCGCCGCGACCCGCGCCCAGCAGCTGCGCGCCCGCGTGGCCGACGTCGCCCACGAGTCCTTCGAGGCGGGGCTGCTGGTCAAGTCCCTGGGCACCGCCGACCGCGAGGAGCGGCGGTTCGCCGCCGCCACGGACGACCTGCGGGCCGCCAACGTCCGGGTCGGCTACGTCCGGGCGACCTTCGACCCCGTGATCGAGCTGCTGCCCAACCTGGGCACCCTGCTGGTGCTCGGCGTCGGCGCCTGGCGTGCCGCCGCCGGCGCGGTGGACGTCGGCGACGTCGTCACCGCCTCCTACCTGCTGACCGTCATGGCCGTGCCCGTGCGCGCGTTCGGCTGGGTGCTCGGCGAGCTGCCCCGCGCGCTCGTCGGCCACGAACGGCTCACCCGCGTGCTGGACGCCCGGGGCGAGCTCACCCCGGGCCGCGACGCCCTCCCGCACGGCGCGGCCGGTCTGTCCGTGCGGATGGACGACGTCGGCGTCGACGTGCGTGCCGCCGGGCGCACCGTGAACCTGCTGCAGGACGTCACGCTCGACGTCGCCGCCGGCACCACCGTGGCCGTGGTCGGCGCGACCGGTGCGGGCAAGACCACGCTCGTGTCGCTGCTCAGCCGGCTCAGCGACCCGACCCGGGGCACCGTGCTGCTCGACGGGACGGACCTGCGCACGCTCGCCGACGGCGAGATCCCCGCCCAGGTCTCGCTCGTGGCCCAGCAGACCTTCGTCTTCGAGGACACGGTGCGCGCCAACGTCACGCTCGCCGACGAGGTCTCGGACGAGATCGACGCCGCCGTGTGGGAGGCGCTGCGCCTCGCCCACGTCGACGACGTCGTCCGTGCCCTGCCGGACGGGCTCGACGCCCCCCTGGGCGAGCGCGGAGCCAACCTGTCGGGCGGCCAGCGTCAGCGCCTCGCCATCGCCCGCGCCCTGGTGCGCCGTCCGCGGCTGCTCGTCCTCGACGACGCGACCAGCGCCGTCGACCCCCGCGTGGAGCAGCAGATCCTCGCCGGCCTAGCCGCGCGGACGGCCGACGGCCGGCGGGCCACCACCGTCGTCATGGTCGCCTACCGGATGTCCTCGGTCGTCATGGCCGACCGTGTCGTCCACCTCGAGGGCGGTCGCGTGGTCGACGTCGGCACGCACGACGAGCTGCTGGCCCGGGACGCGGGGTACCGCGAGCTCGCCACCGCCTACGAGGCCGAGACGGCGCGCCGCGAGCAGGAGCTCGCCGACGAGCGCGCCGCCGGCACCGAGGTGGCCGGACTCTGGCAGACCGACGAGGAGGAGGTGGCCCGATGAMPEVPPGTRPATLTGSRLRRSCALLWRGMRAEPRLYLLAVIASAVFGAATVAVSRAVGWATDAVVVPALAGDATARADIWLAGGVLALVALTLALSVAGRRIWAGWGNVGLQAQHRRGVTRQYLRLPMSWHRSHPAGQLLSNASADVEAATGVFNPLPFALGVVVMIGVATGMLFAIDPWLATAALLVIPAAVVANLVFQRHMAPAATRAQQLRARVADVAHESFEAGLLVKSLGTADREERRFAAATDDLRAANVRVGYVRATFDPVIELLPNLGTLLVLGVGAWRAAAGAVDVGDVVTASYLLTVMAVPVRAFGWVLGELPRALVGHERLTRVLDARGELTPGRDALPHGAAGLSVRMDDVGVDVRAAGRTVNLLQDVTLDVAAGTTVAVVGATGAGKTTLVSLLSRLSDPTRGTVLLDGTDLRTLADGEIPAQVSLVAQQTFVFEDTVRANVTLADEVSDEIDAAVWEALRLAHVDDVVRALPDGLDAPLGERGANLSGGQRQRLAIARALVRRPRLLVLDDATSAVDPRVEQQILAGLAARTADGRRATTVVMVAYRMSSVVMADRVVHLEGGRVVDVGTHDELLARDAGYRELATAYEAETARREQELADERAAGTEVAGLWQTDEEEVARNANANANANA
AK018_04367771hisF_2COG0107Imidazole glycerol phosphate synthase subunit HisFATGACCGTGGCCGTCCGGGTCATCCCGTGCCTCGACGTCGACGCCGGACGCGTCGTCAAGGGGGTCAACTTCACCCGGTTGCGCGACGCCGGTGACCCGGTCGAGCTCGCGGACCGGTACGACGACGAGGGCGCCGACGAGGTGACGTTCCTCGACGTCTCCGCGTCCTCCGGGGGACGCGAGACCATGGTCGACGTGGTGCGGCGCACGGCCGAGCAGGTGTTCGTCCCGCTGACCGTCGGCGGGGGAGTGCGCACCACGGACGACGTCGACCGGCTGCTGCGCGCCGGCGCGGACAAGGTGGGGGTCAACACCGCGGCGATCGCCCGGCCCGAGCTCATCGCCGAGATCGCCCGGCGCTTCGGCCGGCAGGTCCTCACCCTCTCCGTCGACGCACGGCGGGTGACCGACGGCACCACCACCGCCTCCGGCTACGAGGTGACGACCCACGGCGGGCGCCGCGGCACGGGCATCGACGCCGTGGAGTGGGCCGCGCGGGCCGCGGACCTCGGCGCGGGGGAGATCCTGCTGAACTCCATGGACGCCGACGGGACCACCGCGGGGTTCGACCTGGAGATGCTCGGTGCGGTGCGCTCGCGGGTCTCGGTACCCCTGATCGCCTCCGGCGGCGCCGGCACGCCCGAGCACTTCGTGGCCGCCGCCCGCGCCGGCGCCGACGCCGTGCTGGCCGCGAGCGTCTTCCACTTCGGCACGCTGACGGTCGGCGAGGTCAAGGACGCGATGCGGGCGGCGGGCGTCGAGGTGCGCTGAMTVAVRVIPCLDVDAGRVVKGVNFTRLRDAGDPVELADRYDDEGADEVTFLDVSASSGGRETMVDVVRRTAEQVFVPLTVGGGVRTTDDVDRLLRAGADKVGVNTAAIARPELIAEIARRFGRQVLTLSVDARRVTDGTTTASGYEVTTHGGRRGTGIDAVEWAARAADLGAGEILLNSMDADGTTAGFDLEMLGAVRSRVSVPLIASGGAGTPEHFVAAARAGADAVLAASVFHFGTLTVGEVKDAMRAAGVEVRPGPT0007095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
AK018_04368903hypothetical proteinGTGGCGGTCGTGGCGGCGCTGACGTTGACGGGCTGCTCCGACGAGCTCCTGGCGCGGGTCACCCCGAGCGCGGTGCCGACGCAGGTCCCGGTGCAGGTCTCCGGCCCGGGCGGCGAACCGCCGGTGCTGGAGTACCCGCAGCCCTACGACGTGGTCCGTGCCGGGTCGCGCACCGTGCACCCCGGCACGGGCGACCGCCTCGAGACCGGCGAGCCGGTGCTGCTGCAGATGTACGCCGAGGACGGCCGCGACGGCAGCGTCGTCACCTCCACCTACCAGGACGCCCCGGCCTGGTACACGTTCTCGCCGGAGGCGCTGGGGCAGAACCTCTACGAGTCGCTGCGCGGCAAGCGCGTGGGCGCCCGGGTGCTCGTCGTGGAGCAGGAGGGCGACGTCCCCGTGGTCCTGGTCGTCGACGTGCTGCCCACCCGCGCCGACGGCGAGCCCGTCGAGCCGCCGCAGGGGCTGCCGCAGGTCCTGCGCGACCCGGACGGCACCCCCACGGTGCGCGTCCCGGACGGCGACCCGCCCCAGGAGCTGGTGGTCCAGCCGCTGCTGCGCGGCTCCGGCCCCCAGGTCGACATCGGACAGGTCGTCACCGCGCGGTACGTGGCCGTGCGCTGGAGCGACGGTCGGGTCGTCGACTCCAGCTGGCGCGACGGCGTGGCGCCGCAGTCCACGATGATCGGCATCGGCCGGCTCGTGGAGGGCTGGGACCAGGGTCTGCTGGAGCAGTCGGTGGGCTCCCAGGTGATGCTCGTGGTGCCCCCGCACTTGGGCTACGGTGGCACGAACAGCGAGCTCGCCGAGGAGACGATCGTCTACGTCGTCGACATCCTCGACGCCCGCTTCCAGGCGACGGACCAGGTGCCGGAGCCGGGCTCCACCACCGACGAAGGGTGAMAVVAALTLTGCSDELLARVTPSAVPTQVPVQVSGPGGEPPVLEYPQPYDVVRAGSRTVHPGTGDRLETGEPVLLQMYAEDGRDGSVVTSTYQDAPAWYTFSPEALGQNLYESLRGKRVGARVLVVEQEGDVPVVLVVDVLPTRADGEPVEPPQGLPQVLRDPDGTPTVRVPDGDPPQELVVQPLLRGSGPQVDIGQVVTARYVAVRWSDGRVVDSSWRDGVAPQSTMIGIGRLVEGWDQGLLEQSVGSQVMLVVPPHLGYGGTNSELAEETIVYVVDILDARFQATDQVPEPGSTTDEGNANANANANA
AK018_043691362pafA_2Pup--protein ligaseATGGAACGGCGGATCTTCGGGCTGGAGACCGAGTACGGCGTGACCTGCGCGGCCGACGACGGCCGGGGCCTGAGCGCGGACGAGGTGGCCCGTTACCTCTTCCGCAAGGTCGTGGCCTGGGGACGGTCGTCGAACGTGTTCCTGCGCAACGGCTCGCGCCTCTACCTCGACGTGGGCTCCCACCCCGAGTACGCGACGGCCGAGTGCGACGACGTGCGTCAGCTCGTCGCCTACGACCGCGGCGGCGAGCGCATCCTGGAGGGCCTGGTCGCCGACGCCCAGCAGCGCCTGGAGCACGAGGGGCTGCCGGGCAAGGTCCACCTGTTCAAGAACAACACCGACTCGGCGGGCAACTCCTACGGCTGCCACGAGAACTACCTGGTGCGCCGGCAGGGCGACTTCTCCCGGCTGTCGGACGTGCTGGTGCCGTTCCTCATTACGCGGCAGGTGCTGACCGGTGCCGGCAAGGTACTTGCCACGCCGCGCGGTGCCACCTACTGCCTGTCCCAGCGCGCCGACCACATCTGGGAGGCGGTCTCCAGCGCGACGACGCGTTCGCGCCCCATCATCAACACCCGCGACGAGCCGCACGCCGACGCCGAGCTGTACCGACGGCTGCACGTCATCGTGGGCGACTCCTCGATGTCGGAGACCACCTCGATGCTCAAGGTGGGTGCCACCGACCTCGTGCTGCGTCTCGTCGAGGCGGGCGTGCCGGTGCGGGACCTGACCCTCGAGAATCCGATCCGGGCGATCCGGGAGATCAGCCACGACTCCACCGGGCTGCACCCCGTCCAGCTCGCCAACGGGCGCACGGCCACGGCCGTGGACGTCCAGGGCGAGTACTTCCAGCGGGTGCGCGAGCACGTGGACGCCCACCTGGACCCGACGCCGCAGATCAAGCAGACCCTGGACCTGTGGGAGCGGGGCCTGCGGGCGCTCGAGTCCGGCGACCTGAGCCTGGTGGACCGGGAGCTGGACTGGGTGATCAAGCTGCGGCTCATCGAGCGGTACCGGGCCAAGCACGGCCTCGAGCTCGCCGACCCCCGCGTCGCGCGCCTGGACCTGGCCTACCACGACATCTCGCGGACCGAGGGGCTGTACAACCTGCTCGCCGCGCGGGGCATGGTCGAGCGGGTCGTGACGGACCTGGAGGTCTTTGAGTCGACGGCGGTCCCGCCGCAGACCACGCGGGCCAAGCTGCGCGGGGACTTCGTCCGGGCCGCGCAGGACGCCCGGCGCGACTACACGGTGGACTGGGTGCACCTGAAGCTCAACGACCAGGCGCAGCGCACCGTGCTGTGCAAGGACCCGTTCCGCAACGTCGACGACCGGGTGGAGCGCCTCATCGAGTCGATGTGAMERRIFGLETEYGVTCAADDGRGLSADEVARYLFRKVVAWGRSSNVFLRNGSRLYLDVGSHPEYATAECDDVRQLVAYDRGGERILEGLVADAQQRLEHEGLPGKVHLFKNNTDSAGNSYGCHENYLVRRQGDFSRLSDVLVPFLITRQVLTGAGKVLATPRGATYCLSQRADHIWEAVSSATTRSRPIINTRDEPHADAELYRRLHVIVGDSSMSETTSMLKVGATDLVLRLVEAGVPVRDLTLENPIRAIREISHDSTGLHPVQLANGRTATAVDVQGEYFQRVREHVDAHLDPTPQIKQTLDLWERGLRALESGDLSLVDRELDWVIKLRLIERYRAKHGLELADPRVARLDLAYHDISRTEGLYNLLAARGMVERVVTDLEVFESTAVPPQTTRAKLRGDFVRAAQDARRDYTVDWVHLKLNDQAQRTVLCKDPFRNVDDRVERLIESMNANANANANA
AK018_04370717prcA2COG0638Proteasome subunit alpha 2ATGCCGTTCTACGTCTCGCCCGAGCAGCTCATGAAGGACCGGGCGGACTTCGCGCGCAAGGGCATCTCGCGGGGCCGCTCGGTGGTGGTGCTGGCCTACGACGGCGGCATCCTGTTCGCCACGGAGAACCCGTCGCGGGCGCTGCACAAGATCTCGGAGATCTACGACCGCATCGCGTTCGCGGCGGTGGGCAAGTACAACGAGTTCGAGAACCTGCGGGTCGCGGGCGTGCGCTACGCCGACCTGCGCGGGTACTCCTACGACCGGACCGACGTGACGGCCCGCGGGCTGGCGAACGCCTACGCGCAGACGCTCGGTACGGTGTTCACCACCGAGTCCAAGCCCCTCGAGGTGGAGCTCGTGGTCGCGGAGGTGGGCGCCACCGCGGCCGCGGACCAGCTCTACCGCCTGTCGTACGACGGCTCCGTGGCGGACGAGCACGGGTACGTGGTGATGGGCGGCCAGGCCGACCGCCTCACGGCCCGGGTGCGCGACGCGTGGCACGAGGGCATGGACCTGCCGGCGGTGCTCCGCCTCGCCGTGACGACCCTGGGGGCCGTCGGGCCGGACGGCGCGGTCGTGGCCGAGGGGTCCGAGCGGGAGATCCCCGCGACCGGCCTGGAGGTGGCCGTGCTGGAACGGTCCCGACCCCGCCGGGCGTTCCGGCGGTGGCAGGGCGAGGCGCTGGCAGACCTGCTCGCGCGCGGCGAGGACTAGMPFYVSPEQLMKDRADFARKGISRGRSVVVLAYDGGILFATENPSRALHKISEIYDRIAFAAVGKYNEFENLRVAGVRYADLRGYSYDRTDVTARGLANAYAQTLGTVFTTESKPLEVELVVAEVGATAAADQLYRLSYDGSVADEHGYVVMGGQADRLTARVRDAWHEGMDLPAVLRLAVTTLGAVGPDGAVVAEGSEREIPATGLEVAVLERSRPRRAFRRWQGEALADLLARGEDNANANANANA
AK018_04371858prcB_2COG0638Proteasome subunit betaGTGACGACCTCCACCGACGGCGGCGGCCGCCTGCCCGACGCGTTCCTGCGCCCCGGGTCGAGCTCCTTCGTGGAGTTCCTCGGCGAGCACGCCCCCGACCTGCTGCCGGGCCGGCGGACCGCGCCCGCGCCGGGGACGACGTCGGACCTCGCCCCGCACGCCACCACGATCGTGGCCCTGACGTTCGGGGACGACGACGGCGGCCGCGGCGTGGTGCTCGCGGGCGACCGGCGCGCCACGATGGGCAACCTGATCGCGAGCCGGGAGATCGAGAAGGTCTTCGCGGCGGACGACTACTCCGCGGTCGGCATCGCGGGCTCGGCCGGCATCGCGGTCGAGCTGGTGCGCCTGTTCCAGCTCGAGCTGGAGCACTACGAGAAGATCGAGGGGTCGCTGCTGTCGCTGGACGGCAAGGCGAACCGCCTGGCCACGATGATCCGCGGGAACCTGCCGATGGCGCTGCAGGGGCTCGCCGTCGTGCCGCTGTTCGGCGGCTACGACCTCGACCGGGCGACCGGGCGCATCTTCAGCTACGACGTCACCGGCGGCCGGTACGAGGAGCACGAGCACCACTCGGTGGGGTCGGGCTCGGTGTTCGCCCGCGGCGCGCTGAAGAAGCTGTGGCGGCCCGGCCTCGATGCCGACGGCGCCGTCGCCGTGGCCGTCGAGGCCCTGTACGACGCGGCCGACGACGACAGCGCGACGGGCGGGCCCGACACGGTCCGGCGGATCTGGCCCGTCGTGGCCACCGTCACCTCCGACGGGTACCGGCGGGTCGCGGACGCGGACCTGGCCGAGGTCGTGTCGCGGATCGTCGACGAACGCAGCGCCGGGCACGCGGGGGGTGGTCGCGCGTGAMTTSTDGGGRLPDAFLRPGSSSFVEFLGEHAPDLLPGRRTAPAPGTTSDLAPHATTIVALTFGDDDGGRGVVLAGDRRATMGNLIASREIEKVFAADDYSAVGIAGSAGIAVELVRLFQLELEHYEKIEGSLLSLDGKANRLATMIRGNLPMALQGLAVVPLFGGYDLDRATGRIFSYDVTGGRYEEHEHHSVGSGSVFARGALKKLWRPGLDADGAVAVAVEALYDAADDDSATGGPDTVRRIWPVVATVTSDGYRRVADADLAEVVSRIVDERSAGHAGGGRANANANANANA
AK018_04372198pup_2Prokaryotic ubiquitin-like protein PupATGGCTGGTCAGGAACGCATCAACCCGCAGCGGGACGACCGCACGCCCGACGACGACGCGGACGCGCCGGCCCCCGCCGCCCCGCAGTCGGCCGACCGCGACGCGGAGGTGGACTCGCTGCTCGAGGAGATCGACGAGGTGCTGGAGTCCAACGCGGAGTCGTTCGTGCGCGGCTTCGTGCAGAAGGGGGGACAGTGAMAGQERINPQRDDRTPDDDADAPAPAAPQSADRDAEVDSLLEEIDEVLESNAESFVRGFVQKGGQNANANANANA
AK018_043731635dop_2Pup deamidase/depupylaseATGGGAATCGAGACCGAGTACGGGGTGCTGGCACCGGGGCGGCCCACGGCCAACCCCATGCTCATGAGCTCGCAGGTGGTGACCACCTACCGTGCCTCGGTCCAGGACGGTCGCCCCGGGCGCCGGCCCGCCCGCTGGGACTACGACGACGAGGACCCGCTGGCCGACGCGCGCGGGTTCCACCTGGACCGCGCCTCGGCGCACCCCTCGCTGCTGACCGACGACCCGGAGGCACCGGCGCCGTCCGGGCCGTCGTCGTCGGCGCCCGCGGCGGCCACGGGGCCCGACGAGCCGCAGGACGTGGAGCGGCCCGAGGCGGAGGAGTACGACGACCCGAGCGCGGCGAACTGCATCCTGACCAACGGCGCGCGCCTGTACGTCGACCACGCCCACCCGGAGTACTCCTCGCCCGAGGTCACCAACCCGCGCGACGGCGTGGTCTGGGACGTCGCCGGCGAGCGGGTGATGCTGGCGGCCACGCGACGCCTGGCGCAGGTGCCCGGCGCCGAGGCGGTGCTCTACAAGAACAACGTGGACGGCAAGGGCGCCAGCTACGGCACGCACGAGAACTACCTGGTGGACCGCGCGCTGGCCTTCGGCACGCTGGTGGACGTGCTGACCCCGTTCCTCGTGACCCGCCAGGTGTTCACCGGGTCCGGGCGTGTCGGGCTGGGGGCGACGGGCGACGAGCCGGGCTTCCAGCTCTCCCAGCGCGCCGACTACATCGAGGCGGAGGTGGGACTGGAGACCACGCTGCGCCGGCCGATCGTCAACACCCGGGACGAGCCGCACGCGGACCGGACCCGCTGGCGCCGGCTGCACCTGATCATCGGCGACGCCAACCACCTCGAGGTGGCCACGTACCTGAAGCTCGGCACGACGTCGCTGGTGCTGTGGGTGGCCGAGCACCTGGACGAGCTCGCCGCGACGGGCGCCGACGTGCGCGACGAGCTGGCCGCGCTGCGCCTGGCCGAGCCGGTCGCGGCGGTGCGCCGCGTCTCGCGCGACCTGACCCTGGCGTCTCCGCTGGACCTCGCGGACGGCACGACGGCGACCGCGCTGGAGATCCAGCTGCGGTACGCACGCGTCGTGGGTCGTGCGCTGGCGGCGCTCGGCTCGGACGCCGACTCCGACGCGGTGCTGCAGCGCTGGGACTCGGTCCTCGAGCGGCTGGCCGAGGACCCGGGCCGCTGCGCCCGGGAGGTCGAGTGGGTCGCCAAGCTGCGCCTGCTCGAGCGGATGCGCGCCCGTGACGGCCTCGCGTGGGACCATCCGCGCCTGCACACCTTGGACCTGCAGTGGTCGGACGTACGTCCCGAGCGCGGCATCTACCACCGGCTGGTCGCCTCGGGTGCGGTGGAGCGTCTGACCACCGACGAGGAGGTCGAGCGTGCCGTGCACCACCCGCCGACCGACACCCGTGCCTGGTTCCGCGGCGAGGTGATGGAGCGCTACCCGGCGGAGATCTCGGCCGCGAGCTGGGACTCGGTGATCTTCGACGTGCCCGGGTCCACCTCGCTGCAGCGGGTGCCGATGCTCGACCCGACGCGGGGGACCGAGGCGCACATCGGGGCGCTGCTGGACGCCAGCCCGGACGCGACGACGCTGCTGCACGGGCTGCGCGGCGAGTCGTGAMGIETEYGVLAPGRPTANPMLMSSQVVTTYRASVQDGRPGRRPARWDYDDEDPLADARGFHLDRASAHPSLLTDDPEAPAPSGPSSSAPAAATGPDEPQDVERPEAEEYDDPSAANCILTNGARLYVDHAHPEYSSPEVTNPRDGVVWDVAGERVMLAATRRLAQVPGAEAVLYKNNVDGKGASYGTHENYLVDRALAFGTLVDVLTPFLVTRQVFTGSGRVGLGATGDEPGFQLSQRADYIEAEVGLETTLRRPIVNTRDEPHADRTRWRRLHLIIGDANHLEVATYLKLGTTSLVLWVAEHLDELAATGADVRDELAALRLAEPVAAVRRVSRDLTLASPLDLADGTTATALEIQLRYARVVGRALAALGSDADSDAVLQRWDSVLERLAEDPGRCAREVEWVAKLRLLERMRARDGLAWDHPRLHTLDLQWSDVRPERGIYHRLVASGAVERLTTDEEVERAVHHPPTDTRAWFRGEVMERYPAEISAASWDSVIFDVPGSTSLQRVPMLDPTRGTEAHIGALLDASPDATTLLHGLRGESNANANANANA
AK018_04374522hypothetical proteinATGCGTCCGGCGACGTGCCCGGACCGGGAGAGCGTGCCGGACCGCGTCGATATCATCGGTCCCGTGACCGACTGGTTCGCCTCCGCGGTACGGGGGCAGGAGTGTGCGGAGGTCGTCCGCGAGGTCGACTGGTCCCGCACCGCGCTCGGCCGTCCCAGCACCTGGCCCGGCGCCCTGCGGAACGCGGTCGAGCTCTGCTTCAGCACCCGGTTCGCCGTCCTGCTGACGTGGGGTCCGGAGCTGACCATGATCTACAACGACGGCTACCGCGACATGCTCGGCACGGAGCTGCACCCCCGCGCCATGGGAGCGTCCGCGCCGCAGATGTGGGGTCACATCTGGGACGACGTCGGCCCCCTGTTCGACGAGGTGCTGCGGACCGGGGTGCCCACGTGGGACGTCGACATGAAGCTCATGATGGACCGCTCCGGCTTCACCGAGGAGACCTACTTCACGTTCTCCTACAGCGCCCTGCGGGACGACGACGGCGCCGTGCGCGGCGTGATGGACATCGCGACGTAGMRPATCPDRESVPDRVDIIGPVTDWFASAVRGQECAEVVREVDWSRTALGRPSTWPGALRNAVELCFSTRFAVLLTWGPELTMIYNDGYRDMLGTELHPRAMGASAPQMWGHIWDDVGPLFDEVLRTGVPTWDVDMKLMMDRSGFTEETYFTFSYSALRDDDGAVRGVMDIATPGPT0023624_1927DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NANANA
AK018_043751074hypothetical proteinGTGATCCGGGCCGCGGCCTCCGTGCTCGGCGAGGCGACGGACGTCGCGCGGGTCGACCTGTTCCCGCCCGGAGCGCCACCGGTCTCGGTCGGTACCGGCACGGGTCCGGACCGAGGCACCGTGGACGCGGTGCTGTCGTCGGGCGAGCCGGCCTGGACCGACCGCACGCTCGTCGCCCCGCTGGACGCCGGCCGAGGAGCGGCGCCGTCCGCGGTGATCGCCGTGCAGGCAGCGCCCCACCGTCCGCTCGACGACGAGCACCGGTCGTTCCTGGGGCTCCTCGTGCAGACGGTCTCCGACGCCCTGGCGCGCGCCGAGGACCATCGCCGCCGGGTCCGGCGGGTCACCTCGGTGAGCGACACCCTGCAGCTCGCCATGGTGCCCGACACCCCGGCGTCCCCGCGGTGGGTGACCCGCTACCGTCCGGCCGACGACACCATGTCCGTCGGCGGCGACTGGTTCGACGTCGTGGACCTGTCGGACGGATGCTTCGGCCTGGTCGTGGGCGACTGCGTGGGGCACGGCGTCGAGGCGGCCGCGAGCATGGGCCGGCTCAGCAGCGCCGGTCGGGCGCTCATGCTGGCCGGGTCCGGTCCCGCGAGGACCCTCGAGATGCTCGACGTGTTCGCCCGCACCACCCCGGGCGCCGAGTTCACCACCGTGTTCTGCGGGGTGGTGGACACCTCGGCGGGCACCCTGACCTACTCCAGCACGGGCCACCCGCCCGGGCTCCTGGTCCGGGCCGACGGCGGTACCGAGTGGCTGGAGCGGGCACGCGGCGTGCTGCTGACCCTCCCGCACGGCGGGCGGCCCGAACGCACGACGGACCTGGCGGCCGGCGACACCGTGCTGCTGTACACCGACGGCCTGATCGAGCGTCGCGGGGAGAGCCTGCGCACTGGACTGGAGCGGCTCGAGGAGCTCGCGTCCCGGGCCTGCTGCGAGCTGCCGCTCGAACGCCTGCCCGACCGCCTGCTGAACGACATGCTGCCGGACGGGTCCGGGACGACGTCGCCCTCGTGGTGTACCGCGCCGGCTGAGACCGGCGGCGGCCGGCCCCGCTACAGGTACTGAMIRAAASVLGEATDVARVDLFPPGAPPVSVGTGTGPDRGTVDAVLSSGEPAWTDRTLVAPLDAGRGAAPSAVIAVQAAPHRPLDDEHRSFLGLLVQTVSDALARAEDHRRRVRRVTSVSDTLQLAMVPDTPASPRWVTRYRPADDTMSVGGDWFDVVDLSDGCFGLVVGDCVGHGVEAAASMGRLSSAGRALMLAGSGPARTLEMLDVFARTTPGAEFTTVFCGVVDTSAGTLTYSSTGHPPGLLVRADGGTEWLERARGVLLTLPHGGRPERTTDLAAGDTVLLYTDGLIERRGESLRTGLERLEELASRACCELPLERLPDRLLNDMLPDGSGTTSPSWCTAPAETGGGRPRYRYNANANANANA
AK018_043761650mpa_2COG0464Proteasome-associated ATPaseATGACCGACCACCCTGCCCGCCCGGAAGGCGCCGCCGCGCCGTCGGGGCGCGACGCGCAGATGGCCCTGCTCGTCGCCAAGAACGAGCGGCTCGCCGAGGCGCTGCGCGCGGCGCGCGACCAGATCGTCGAGCTCAAGAAGCAGATCGACGACCTCGCCAAGCCCCCCGGGACCTACGCCACGTACCTCGGTGCGCACGACGACGGCTCGGTCGACGTCATGTCCTCCGGGCGCAAGATGCACGTGCAGGCGAGCCCCGGCCTGGAGCTGGACCACCTCTCGCCGGGTCAGGAGGTCAAGCTCAACGAGGCGATGACCGTGGTCGGCGCCGGCGGGTTCGAACGGACCGGCGAGCTGGTCACGATCAAGGAGATCCTCGACGACGAGCGCGTGCTGGTCGTCGGGCGGGCCGACGAGGAGCGGGTCGTGCGGCTGGCCGGGTCGGTCGCCGGCGGGAACCTGCGCGTCGGGGACGCCCTGACCGTCGACGTGCGCAGCGGGTTCGTGTTCGAGGTCGTGCCCAAGTCCGAGGTCGAGGAGCTCGTGCTCGAGGAGGTCCCCGACATCGCCTACGAGGACATCGGCGGGCTGGGCCCGCAGATCGAGGCGATCCGCGACGCCGTCGAGCTGCCCTTCTCCCACCCGGACCTGTTCCGCGAGCACGGCCTGCGCCCGCCCAAGGGCGTCCTGCTGTACGGCCCGCCCGGGTGCGGCAAGACCCTCATCGCCAAGGCCGTCGCGTCGTCCCTGGCGCGGATGGTCGCCGAGAAGCGCGGCGGTGACCCGAGCGCCAAGAGCTTCTTCCTCAACGTCAAGGGTCCCGAGCTGCTGAACAAGTACGTCGGCGAGACCGAGCGGCACATCCGGCTGATCTTCGCCAGGGCCCGGGAGAAGGCCACCCAGGGCATGCCGGTCGTGGTGTTCTTCGACGAGATGGAGTCGCTGTTCCGCACGCGCGGCACGGGGCTGTCGTCCGACGTGGAGACCACGATCGTGCCGCAGCTGCTCGCGGAGATCGACGGCGTCGAGCGGCTCGACAACGTCATCGTCATCGGCGCCTCGAACCGCGAGGACATGATCGACCCGGCGATCCTGCGCCCGGGCCGCCTCGACGTGAAGATCAAGATCGAGCGCCCCGACGCCGAGGGTGCCGAGGAGATCTTCGCCAAGTACCTCACGGCAGACCTGCCGATCAACGCCGACGACCTGTCCGAGCACGGCGGCGACCGGTCCGAGGCCGTGCAGGCCATGATCCGCTCGGTGGTCGAGCGGATGTACGCCGAGGACGAGGACAACCAGTTCCTCGAGGTCACCTACGCCAGCGGCGACAAGGAGGTCCTGTACTTCAAGGACTTCAATTCCGGGGCGATGATCGAGAACGTCGTGGACCGCGCCAAGAAGTCCGCCATCAAGGACCTGCTCGCCACCGGCAACAAGGGCATCCGGGTCGAGCACCTGCTCACCGCGTGCGTGGACGAGTTCCAGGAGAACGAGGACCTGCCCAACACCACGAACCCGGACGACTGGGCGCGCATCAGCGGCAAGAAGGGCGAGCGCATCGTCTTCATCCGCACCATCGTGCAGAAGAAGGGGGAGAACGGCGCTCCGCGCACGATCGACACCGTGAACTCCACGGGTCAGTACCTGTAGMTDHPARPEGAAAPSGRDAQMALLVAKNERLAEALRAARDQIVELKKQIDDLAKPPGTYATYLGAHDDGSVDVMSSGRKMHVQASPGLELDHLSPGQEVKLNEAMTVVGAGGFERTGELVTIKEILDDERVLVVGRADEERVVRLAGSVAGGNLRVGDALTVDVRSGFVFEVVPKSEVEELVLEEVPDIAYEDIGGLGPQIEAIRDAVELPFSHPDLFREHGLRPPKGVLLYGPPGCGKTLIAKAVASSLARMVAEKRGGDPSAKSFFLNVKGPELLNKYVGETERHIRLIFARAREKATQGMPVVVFFDEMESLFRTRGTGLSSDVETTIVPQLLAEIDGVERLDNVIVIGASNREDMIDPAILRPGRLDVKIKIERPDAEGAEEIFAKYLTADLPINADDLSEHGGDRSEAVQAMIRSVVERMYAEDEDNQFLEVTYASGDKEVLYFKDFNSGAMIENVVDRAKKSAIKDLLATGNKGIRVEHLLTACVDEFQENEDLPNTTNPDDWARISGKKGERIVFIRTIVQKKGENGAPRTIDTVNSTGQYLNANANANANA
AK018_043771026hypothetical proteinGTGGCCCTCGGGGACCTCCGGGCGGCGCCGGTAGACTCGTCCGTCGTGACTTCCTCCTCCGCCACCGGTGCCGACGCCCGCCGTGGGCCGTTGCGCGTCGGCGACAAGGTCCAGCTCACCGACCCCAAGGGTCGGATGCACACGATCACGCTCGCCGAGGACGCGACGTTCCACACCCACAAGGGGTACTTCCGCCACTCCGAGATCATCGGACGGCCGGAGGGCTGGGTGGTCACCAACACCGCAGGGATCGAGTACCTGGTGCTGCGTCCCCTGCTCAGCGACTACGTGCTCTCGATGCCGCGGGGCGCCGCCGTCGTCTACCCCAAGGACGCCGGCCAGATCGTGCAGATGGCGGATATCTTCCCCGGGGCGCGCGTCGTCGAGGCGGGCGTCGGGTCCGGGGCCCTGACCATGTCGCTGCTGCGCGCCGTCGGCGACGCCGGCGAGCTGCACTCGATCGAGCGCCGGGAGGACTTCGCCGCCATCGCCCGGGGCAACGTCGAGACGTTCTTCGACGGTCCGCACCCGGCCTGGCACCTGCACACCGGCGACCTCGCCGACCGCGTGGCCGACGTCGTCGAGCCGGGCACGGTGGACCGGGTCGTGCTCGACATGCTCGCCCCGTGGGAGAACGTCGACGCCGTCGCCCGGGCGCTCGCGCCCGGCGGTGTCGTGGTGTGCTACGTCGCCACGGCCACCCAGCTGTCCCGCACCGCCGAGGACCTGCGCGCCGACGGCCGCTTCGCCGAGCCGACCGCCTGGGAGTCGATGGTGCGCGGCTGGCACCTCGAGGGGCTCGCCGTGCGCCCGCAGCACCGCATGATCGGCCACACCGGCTTCCTCGTGAGCGCCCGGCGCCTGGCCGACGGCGTCACGCCGCCCGAGCGCAAGCGCCGCCCGGCCAAGGGGTCGCGCCCGGCGGGCGAGGAGACCTGGTCCGAGGAGGAGCTCGGGGAGCGTCCCGTGTCGGACAAGAAGATCCGCAAGGCGCGCCGCGAGGTCGGGCAGGCCCCCGAGGAGTGAMALGDLRAAPVDSSVVTSSSATGADARRGPLRVGDKVQLTDPKGRMHTITLAEDATFHTHKGYFRHSEIIGRPEGWVVTNTAGIEYLVLRPLLSDYVLSMPRGAAVVYPKDAGQIVQMADIFPGARVVEAGVGSGALTMSLLRAVGDAGELHSIERREDFAAIARGNVETFFDGPHPAWHLHTGDLADRVADVVEPGTVDRVVLDMLAPWENVDAVARALAPGGVVVCYVATATQLSRTAEDLRADGRFAEPTAWESMVRGWHLEGLAVRPQHRMIGHTGFLVSARRLADGVTPPERKRRPAKGSRPAGEETWSEEELGERPVSDKKIRKARREVGQAPEENANANANANA
AK018_043781143rip3_2COG0517Putative zinc metalloprotease Rip3GTGACCCAACGCTCCTCCGGCTGGACCATCGGACGCGTCGCCGGGGCGCCCGTGCTGGTGACCCCCTCGTGGTTCCTCGCCGCCGTCGTCCTGACCGTGCTGTTCGCGCCGACCGTGCGGGCCTTCGCCCCGCAGATGGACCTGGTGGGCGTCGTGGTGGTGTCGTTCGCGTTCGTGCTGCTGCTGTTCGCCTCGGTGTTCTGCCACGAGGTCGCGCACGCCCTCGTGGCCCGCTCGCGCGGGCACCGCGTCGACGAGCTCGCCCTGACGCTGTGGGGCGGGCACACCGCCTACTCCGGTGCCGTCCGCCGACCCCTGGACAGCGCCCTGGTCGCCGTGGTCGGCCCGCTGACCAACCTGGCGCTCGCCGCGGCGTTCTGGATCGCGTTCCAGGCCCAGACGGTGGCCTCCGTCCCGGCCCTGCTGCTCTACGCCGGCGCGTTCTCCAACGCGTTCGTCGGTGCCTTCAACCTGCTGCCCGGGCTCCCGCTCGACGGAGGCCAGGTCCTGGAGTCGGTCGTCTGGGCCGCCACCGGCTCGCGGAACACGGGCACCGTCGCCGCCGGGTGGGTCGGCCGCGCCGTCGGCGCCGCGGTGGTGGCCGGAGCGCTGCTGTGGCCCCTGACCCAGGGCCGGCAGCCGGACCTGATCGTGGTCATGTGGGCCGCCCTCATCGGCGCCTTCCTGTGGTCGGGGGCGTCGGAGGCGATCCGGGCCGGCCGGCGGCGCGAGTCGCTGTCCCGCCTCGACGTCCGCTCCCTGGCGATCACCGCCGTCGTCGTCCCGGCGGGCAGCCCCGTGGCCGACGCCGGGCGTGCGGCTCGCGGCCGGGGCGAGGTCGCCGTCGTCGTGGTCGGTCCCGACGGCGACCCGCTGGGCTGGGTGGATCCCGCCGCGGTGGGGCGGATCCCGGCCGAGCAGGGCGCCGCGACCCCGGTCGAGGCCGCGCTGGTGCCGTTCCCGCCCGGGTCCGCGGTCCGCGCCGACGAGTCCGGCCCGGAGCTGCTGGAGCACCTGGCCGGTGCGTCCGGCGGCGCGCGGGTGGTGCCCGTCCTGAGCGACGGGCGCGTGACCGGCGTGCTCGACGTCGCCCGCGTGGCCGCGGCGGTGTGGCCCTCGGGGACCTCCGGGCGGCGCCGGTAGMTQRSSGWTIGRVAGAPVLVTPSWFLAAVVLTVLFAPTVRAFAPQMDLVGVVVVSFAFVLLLFASVFCHEVAHALVARSRGHRVDELALTLWGGHTAYSGAVRRPLDSALVAVVGPLTNLALAAAFWIAFQAQTVASVPALLLYAGAFSNAFVGAFNLLPGLPLDGGQVLESVVWAATGSRNTGTVAAGWVGRAVGAAVVAGALLWPLTQGRQPDLIVVMWAALIGAFLWSGASEAIRAGRRRESLSRLDVRSLAITAVVVPAGSPVADAGRAARGRGEVAVVVVGPDGDPLGWVDPAAVGRIPAEQGAATPVEAALVPFPPGSAVRADESGPELLEHLAGASGGARVVPVLSDGRVTGVLDVARVAAAVWPSGTSGRRRNANANANANA
AK018_04379891hypothetical proteinATGACGACGACGGCGGACCTGACCACGGGCTCTCCCGACCCCGCGGGGCCGGCCGTCCCCCGCCGCCCGGCGCTGTCGCCGTCGCGCGCGAACGACTTCCTGCAGTGCCCGCTGCTGTTCCGCTTCCGCACGGTGGACCGGCTGCCGGAGCCGCCGTCGTCGGCCGCCGCCCGCGGCACGCTGGTGCACGCGGTGCTGGAGCGGCTCTACGACGCCCCGCTCGGCGAGCGCACCCCGGAGGCCGCCCGCGCCCTGCTGCCGGGCGAGTGGGACCGCCTGGTGGAGGTGGAGCCGCGGTACGCCGAGCTGTTCGCCACCGGCGGCGACGCCGAGGGCACGGCGGTGGCGGACTGGCTCGACGGCGCGGGCAGGCTGCTGGGCACCTACTTCTCGCTGGAGGACCCGAACCGCCTGCAGCCGGAGGCGCGCGAGCTGCGCGTGGAGAGCCAGCTCGACGACGGCCCGCTGCTGCGCGGCATCGTCGACCGGCTCGACGTGGCCCCGGACGGCGCGGTGCGGGTCGTGGACTACAAGACGGGCCGCTCGCCGCGGCCCGGGTTCGAGGCCTCCGCGCTGTTCCAGATGCGCTTCTACGGGCTCGTGGTGTGGCGCGAGCGCGGCGTGCTGCCCGCGATGCTGCAGCTCGTGTACCTGGGTGACGGTCAGGTGCTGCGGGCCGTGCCGCGGGAGCGCGAGCTCGAGGTCACCGAGACCAAGGTGCGGGGCATCTGGGACGCCGTGGAGACGGCGGCGCGGCGTGGTGAGTTCGTCCCGAAGCGCTCCAAGTTGTGCGGGTGGTGCGCGCACCAGGCGGTGTGCCCGGAGTTCGGGGGCACCCCGCCGACGGTGTCCGCGGAGGACCTGCGCGTCCGGCTGGGCGTGCAGGTCTGAMTTTADLTTGSPDPAGPAVPRRPALSPSRANDFLQCPLLFRFRTVDRLPEPPSSAAARGTLVHAVLERLYDAPLGERTPEAARALLPGEWDRLVEVEPRYAELFATGGDAEGTAVADWLDGAGRLLGTYFSLEDPNRLQPEARELRVESQLDDGPLLRGIVDRLDVAPDGAVRVVDYKTGRSPRPGFEASALFQMRFYGLVVWRERGVLPAMLQLVYLGDGQVLRAVPRERELEVTETKVRGIWDAVETAARRGEFVPKRSKLCGWCAHQAVCPEFGGTPPTVSAEDLRVRLGVQVNANANANANA
AK018_04380690gph_8Phosphoglycolate phosphataseGTGCCCCACCTGAGCTCCTCCTCCGCGCTGCCCGCCGCCGTCCTGTGGGACATGGACGGCACCCTCGTCGACACCGAGCCGTACTGGATCCGCGCCGAGCACGAGCTCGTCGCCGCCCACGGGGGCAACTGGTCCCACGAGCAGGCGCTGCAGCTCGTGGGCAACCCGCTGACCGTGTCCGCGAAGATCCTGCAGGACGCCGGCGTGGACCTGCCCGTGCCCGAGATCGTGGAGCGGCTGCTGGGCACGGTGCGCGCCCAGGTGGCCGAGTCGGTGCCCTGGCGGCCGGGGGCCCGCGAGCTGCTGGGCGAGCTCGGCGACGCCGGCGTGCCCTGCGCGCTGGTCACGATGAGCTACTCCGTGCTGGCCGACGCCGTCGTGGCGCACGTCCCCGGCGCCTTCGCGACGCTCGTCACCGGGGACCAGGTCACCCGGGGCAAGCCGGACCCGGAGCCCTACCTCGTGGCCGCCGAGCGCCTGGACGTCGAGATCGCAGACTGCGTCGCGATCGAGGACTCGCCGGCCGGGATCTCCTCGGCGCTGGCCGCCGGGGCGCGCACCCTCGGGGTCGAGGCCGTGCTGCCGGTCCCGCCGCGCGACGGCCTCAGCCGCGCGGGCTCCCTCGAGCACGTCGACCTGGACGCGCTGCGGCGCATCGCCGCCGGCGAGGTGCTCGACCCGGTGGCCTGAMPHLSSSSALPAAVLWDMDGTLVDTEPYWIRAEHELVAAHGGNWSHEQALQLVGNPLTVSAKILQDAGVDLPVPEIVERLLGTVRAQVAESVPWRPGARELLGELGDAGVPCALVTMSYSVLADAVVAHVPGAFATLVTGDQVTRGKPDPEPYLVAAERLDVEIADCVAIEDSPAGISSALAAGARTLGVEAVLPVPPRDGLSRAGSLEHVDLDALRRIAAGEVLDPVANANANANANA
AK018_04381882hypothetical proteinATGAGCACCGAGCAGCCGGTCGGCCGTCACGCCGCACGTCAGACCGTCATGATCGCTGCGTTCGAGGGCTGGAACGACGCCGGCAGCGCGGCGACGGACGCCCTGGAGCACCTGACCGAGGTGTGGGACGCCTCACTGCTGCGCGAGATGGACCCCGAGGACTACCACGACTTCCAGGTCAACCGGCCGATGATCGGCGCCGGACCGGAGGGCCGGCGTCTCATCGCCTGGCCCACGACGACGATCTCCGTCGCCGACCTGCCGGACCGGCGCGTCGTCCTGGTGCACGGCATCGAGCCCTCGTTCCGCTGGAAGGCGTTCTGCCGCGAGCTGCTCGACGTCGCCGAGGAGCTCGACGTGCGCACCGTGGTCACCCTGGGCGCGCTGCTCGCCGACGTGCCCCACACGCGCCCCATCCCGATGTCGGCGACGACCGAGAGCGAGGGCCTGCAGGCCGTGCTCGACGTCGAGCCCAGCACCTACGAGGGCCCGACGGGCATCGTCGGGGTGCTCCAGCACGAGGCGGCGGCCCGGGACTTCCAGTCGGTGTCCCTGTGGGCCGCCGTGCCGCACTACGTCGCGAACCCGCCGTCGCCCAAGGCGACGCTGGCGATCCTGACCCGGATCGAGGAGCTGGTGGCGGCCGCGATCCCTCTGCGCGACCTGCCGGAGGACGCCGAGGCCTGGCAGCAGGGCGTCGACGAGCTGGCGGGCGAGGACGCGGAGATCTCCGAGTACGTCGCCCAGCTCGAGGAGGCCAAGGACACCGCGGAGTTGCCGGAGGCCTCCGGCGAGGCCATCGCCCGCGAGTTCGAACGATTCCTGCGCCGTCGCGACCTCGGCCCCGGCCGCGGAGGCCCCGGCAGTCCCGAGAAGGGCTGAMSTEQPVGRHAARQTVMIAAFEGWNDAGSAATDALEHLTEVWDASLLREMDPEDYHDFQVNRPMIGAGPEGRRLIAWPTTTISVADLPDRRVVLVHGIEPSFRWKAFCRELLDVAEELDVRTVVTLGALLADVPHTRPIPMSATTESEGLQAVLDVEPSTYEGPTGIVGVLQHEAAARDFQSVSLWAAVPHYVANPPSPKATLAILTRIEELVAAAIPLRDLPEDAEAWQQGVDELAGEDAEISEYVAQLEEAKDTAELPEASGEAIAREFERFLRRRDLGPGRGGPGSPEKGNANANANANA
AK018_043821224mshC_2COG0215L-cysteine:1D-myo-inositol 2-amino-2-deoxy-alpha-D-glucopyranoside ligaseGTGCGGATCCACGACACCACCACCGGCACCCTCGTCGAGGCCGCCCCGGGAGCCACGGCGCGCAGCTACGTGTGCGGGATCACCCCGTACGACGCCACGCACCTGGGCCACGCCGCGACCTACATCGCGTTCGACCTGCTGCACCGCGCCTGGACCGACGCCGGCAAGAGCGTCGAGCACTGCTCGAACGTCACCGACATCGACGACCCGCTGCTCGAGCGTGCCGACGCCACCGGCGTCGACTGGCGCGACCTCGCCCGCGACCAGGTGGCGCTCTTCCGCGAGGACATGACCGCGCTCGCCGTCGTGCCGCCGCAGCCGTGGACCGGGGTCGTGGAGCACATGGCGCCGATCGTCACGGCCGTCGAGCGGATGCTCGCCGACGGCACCGCGTACCGGGTGCCCGTCGAGCCGGGCGCCGGCGGGGCTGACCCCGACCTGGGCGACGTGTACGCGGACCTGAGCGCGGACCCCGCCTTCGGCACGGTGTCCGGGTACGACGGCGCCACGATGGCCGAGCTCTTCGCCGAGCGTGGCGGCGACCCGGACCGCGACGGCAAGAAGAACCCGCTGGACCCGCTGCTCTGGCGCCGCGAGCGCCCCGGCGAACCCACGTGGGACGGCGGCACCCTCGGCAGCGGCCGCCCCGGCTGGCACGTGGAGTGCTCCGTCATCGCCCGCGACGGCATCGGTCCGTCGTTCGACGTCCAGGGCGGCGGGGCGGACCTGGCGTTCCCGCACCACGAGATGTCCGTCTCCCACGGGCGGATGCTCGACGGGCCCGGGTCCGCACCGCGGGTGCACGCGCACGCCGGGCTCGTGGGGTTCGAGGGGCACAAGATGAGCAAGTCGCGCGGCAACCTCGTGCTCGTCTCCGCGCTGCGCCGCGACGGCGTCGACCCGATGGCCGTGCGCCTCGGGGTCCTCGCCCACCACTACCGCAGCGAGTGGGAGTGGACCGACGCGGTGCTCGCCGCGGGCGTCGACCGGCTCGAGCGGTGGCGCCGGGCCGTGTCCGGCGACGGCGGCCCGGACGCGACGGCGATGCTCGCCGCCGTGCGGGCGGCGCTCGCCGAGGACCTCGACGCGCCGCGCGCCCTGGACGCCGTGGACGCGTGGGCGCGCACGGCGCTGGCACCCGGGCGGGACACCTCCGGCGACGTCGAGGGTGCACCCGGTGTCGTCGCGCGTACCGTGGACGCGCTGCTCGGCGTCCGGCTCTGAMRIHDTTTGTLVEAAPGATARSYVCGITPYDATHLGHAATYIAFDLLHRAWTDAGKSVEHCSNVTDIDDPLLERADATGVDWRDLARDQVALFREDMTALAVVPPQPWTGVVEHMAPIVTAVERMLADGTAYRVPVEPGAGGADPDLGDVYADLSADPAFGTVSGYDGATMAELFAERGGDPDRDGKKNPLDPLLWRRERPGEPTWDGGTLGSGRPGWHVECSVIARDGIGPSFDVQGGGADLAFPHHEMSVSHGRMLDGPGSAPRVHAHAGLVGFEGHKMSKSRGNLVLVSALRRDGVDPMAVRLGVLAHHYRSEWEWTDAVLAAGVDRLERWRRAVSGDGGPDATAMLAAVRAALAEDLDAPRALDAVDAWARTALAPGRDTSGDVEGAPGVVARTVDALLGVRLNANANANANA
AK018_04383873uppP_2COG1968Undecaprenyl-diphosphataseGTGAGTGCGTGGGAAGCGATCGTCCTCGGCCTGGTCCAGGGCTTCACCGAATTCCTGCCGGTGTCCTCCAGCGCACAGCTGCGGATCGTCGGCGAGCTGATCGGCGGTGCCGACCCCGGTGCGTTGTTCACCGCCGTGACCCAGATCGGCACCGAGGTCGCGGTGCTGCTCTACTACCGCCGCAAGATCCGCGACATCTGCGTCGCCTGGTGGACCTCGCTGCGCGGCGACCACGGCACCACCTGGCGCGACCGGTTCGGCGCGCACGACATCGACGCGCGCATGGCCTGGTTCATCGCGCTCGGCTCCGTGCCGATCGTGGTGCTGGGCGTGGCCTTCGACGAGGCGATCGAGACCACGCTGCGCAACCTGTGGATCACGGTCGCGACCCTGGTGATCTTCGGCGTGCTGCTCGACCTCGCGGACCGGTACGGGCAGCGCACCCGGGAGGTCGAGGACATGACCGCCAAGCGGGCCATCGGCTACGGGCTCGCGCAGGCGATGGCGCTCATCCCGGGTGTCTCGCGGTCCGGCGGCACGATCACCGCCGGCCTGGCGATGGGGTTCACGCGCAAGGCCGCCGCCGACTACTCGTTCCTGCTCGCGATCCCCGCGGTGCTCGGCTCCGGGTTCTACGAGCTCGCCAAGGCCGCCGGGGGAGACCCCGCACCCGGCTCGGCGGGCTGGGGTGCGACGCTGATCGCCACGCTCGTGGCGTTCGCCCTGGGCTACGTGGTGCTGATCGGGTTCCTGAAGATCGTCTCGACGTACTCCTACAAGCCGTTCGTCTACTACCGCTACGGCCTGGCCGCCGTCGTCGTCGTGCTGCTGCTCACCGGGGTGCTGGAGGCCGACCCCGGGGTGGGTGCCTGAMSAWEAIVLGLVQGFTEFLPVSSSAQLRIVGELIGGADPGALFTAVTQIGTEVAVLLYYRRKIRDICVAWWTSLRGDHGTTWRDRFGAHDIDARMAWFIALGSVPIVVLGVAFDEAIETTLRNLWITVATLVIFGVLLDLADRYGQRTREVEDMTAKRAIGYGLAQAMALIPGVSRSGGTITAGLAMGFTRKAAADYSFLLAIPAVLGSGFYELAKAAGGDPAPGSAGWGATLIATLVAFALGYVVLIGFLKIVSTYSYKPFVYYRYGLAAVVVVLLLTGVLEADPGVGAPGPT0024165_612DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024165-bacA-K06153NANA
AK018_04384972yajO_2COG06671-deoxyxylulose-5-phosphate synthase YajOATGGATCGACGGCAGGTGGGCGCCTCCGGGCTGCAGGTGTCGGCGCTCGGGCTGGGCACCATGACGTGGGGCCGCGACACCGACGCGGTCGACGCCGGGGAGTGCCTGCGCACGTTCGTCGAGGCCGGGGGCACGCTCGTCGACACCGCCGCCGCGTACGCCGACGGCGACGCCGAGCGCGTCCTCGGGGCACTGCTGGCCGACGAGGTCGCCCGCGACGACGTCGTGCTGTGCACCAAAGCCGGCGTGCGCCAGGGCCCCGGCGGCACCCGGCGCGACGCCTCCCGGGGCGGGCTGCTGGCCGAGCTCGACGCCTCGTTGGCGAGACTCGGCACCGACCACGTGGACCTGTTCCTGGTGGCGTGCCCGGACCCGGTGACCCCGCTGGAGGAGACCGTGTCGGCGCTCCGGCTCGCGGTGACCTCCGGGCGCACCCGCTACGTGGGCCTGGCCAACTACCCGGCCTGGTCCGCCGCCCGCGCGGCGACGCTGCTGGAGGCCGCGGACGGGATCGGGCTGGCGGCCCTGCAGCTGGAGTACTCGCTGCTGGAGCGCGGCGTCGAGCGCGAGGTGGTCCCGGCCGCGCAGTCACTCGGTCCGGGCCTGCTGGCCTGGTCACCGCTCGGCCGCGGGGTGCTCACCGGCAAGTACCGCCGTGCCGTGCCGGCCGGGTCCCGTGCGGCGTCGGACCACCTGTCCGGGTTCGTGGCGCCGTACCTCGACGACGACGGCGCCACCGCGGTCGTGGAGGCGGTCGCGACGGCCGCCGACGGACTGGGTCGCGCCCCGCTCGACGTCGCCCTCGCCTGGCTGCTGGCCCGCCCGACCCTGGCGTCCGCCGTCGTCGGGGCCCGCACCCCCGCCCAGCTGCGCGGCACGCTCGGCGCCACCGACCTGGAGCTGCCCGCCGAGGTCCACGCGGCGCTCGACGACGTCTCGGCGCCGGCCCTGGGCTACCCCGAGCGCTGGTAGMDRRQVGASGLQVSALGLGTMTWGRDTDAVDAGECLRTFVEAGGTLVDTAAAYADGDAERVLGALLADEVARDDVVLCTKAGVRQGPGGTRRDASRGGLLAELDASLARLGTDHVDLFLVACPDPVTPLEETVSALRLAVTSGRTRYVGLANYPAWSAARAATLLEAADGIGLAALQLEYSLLERGVEREVVPAAQSLGPGLLAWSPLGRGVLTGKYRRAVPAGSRAASDHLSGFVAPYLDDDGATAVVEAVATAADGLGRAPLDVALAWLLARPTLASAVVGARTPAQLRGTLGATDLELPAEVHAALDDVSAPALGYPERWPGPT0016784_2DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016784-mocA-NANANA
AK018_04385264hypothetical proteinATGACCGCTGACCCGCGCGCCGCGTTGGACCGCTTCGTCGCCGCACTCGAGGGCCACTACCACGCCGTGGCCGCTCGCCGGGGCGACGACGACCCCGCCGTCGACGACGCCTACGAGGTGCTCGCCGACGCCTTCGAGGTGTACGAGGACTCCCTCGCCCAGGTGTACACCGAGGTGACGCCCTTCTACCTGGACGACGGCGACGACGAGGACGACGACTACGAGGACGAGGACGACGACTACGAGGAGGCCAGCGCGAGCTGAMTADPRAALDRFVAALEGHYHAVAARRGDDDPAVDDAYEVLADAFEVYEDSLAQVYTEVTPFYLDDGDDEDDDYEDEDDDYEEASASNANANANANA
AK018_04386213hypothetical proteinATGGCATCCAGCTGGCGCAAGCACGGGCAGTACGAGTACCGCGTGGTGACGATCGACCGGGGCACGTCCGTGCCGGACGCACGCAGGATGCTCACCGAGGAGGCGGAGTACGGGCGGTGGGAGCTGGCCCGCACCCGCCTCTACCTCGGCGGGGAGCGCCGGGTGTGGCTGCGGCGCAAGATCATCAAGGCGACCTCGACGCTGTCGGTATGAMASSWRKHGQYEYRVVTIDRGTSVPDARRMLTEEAEYGRWELARTRLYLGGERRVWLRRKIIKATSTLSVNANANANANA
AK018_04387777COG3001putative ketoamine kinaseATGACGACGTTCCGCAAGTCCCGGACGGGGGCGCCGGCGGGGTTCTTCGCCACCGAGGCCGCCGGACTGCGGTGGCTCACCGTCGACGACGGTCCGCGCGTGGCCCGGGTGGTCGACGTCGGCGACGGGCACCTCGACCTCGAACGGCTGGCGCCGGCGTCGCCCACCGTGGACGCCGCGCGGACGTTCGGCACGGCGCTGGCGCGGTTGCACGACGCCGGCGCCCCGGCTTTCGGGGCTCTGCCGCCCGGCGCCGAGCGCGGTTTCTTCGGCCCGCTCGACGACCCGCTGGACATGCCGTCCGGACACTTCGTCGACTGGCCGTCGTTCTACGCCGAGGCGCGGCTGCGTCCGGTGGTGGCGCAGGGGCGTGAGCGCGGGGTGCTCGACGACCGGGACGCCGCCGCCATGGAGGCCGTGTGCGACGCGCTGCCGGACCTCGCCGGCCCCGCCGAGCCGCCCGCCCGCCTGCACGGCGACCTCTGGTCGGGCAACGTGCTGTGGACCCGCTCGCACGACGGCGGCAGCGAGGCGGCGCTCATCGACCCCGCCGCGCACGGCGGGCACCGCGAGACCGACCTGGCGATGCTCGACCTGTTCGGAGCGCCGCACCTGGACGAGATCCTGGCGGCGTACGACGCCGAGCACCCGCTCTCCGACGGCCGGCAGGACCGCGTGGGGCTCCACCAGCTCTACCCGCTGGCCGTGCACGCGGTGCTGTTCGGTGGCGGGTACGTGGACCGCACCCGCCACCTGATGGCACGCCTGGGCGGCTGAMTTFRKSRTGAPAGFFATEAAGLRWLTVDDGPRVARVVDVGDGHLDLERLAPASPTVDAARTFGTALARLHDAGAPAFGALPPGAERGFFGPLDDPLDMPSGHFVDWPSFYAEARLRPVVAQGRERGVLDDRDAAAMEAVCDALPDLAGPAEPPARLHGDLWSGNVLWTRSHDGGSEAALIDPAAHGGHRETDLAMLDLFGAPHLDEILAAYDAEHPLSDGRQDRVGLHQLYPLAVHAVLFGGGYVDRTRHLMARLGGNANANANANA
AK018_043881341dapE_5Succinyl-diaminopimelate desuccinylaseGTGACCACCACGACTGCCCGCCCCCACCCCACCGCCGAGGACGAGGTCGTCGGCATCTGCCGCGACCTGCTGCGCATCGACACCTCGAACTACGGCGAGGGCGAGGGACCGGGGGAGCGCAAGGCCGCCGAGCACGTCGCCGGGCTGCTGGCCGAGGTGGGCCTGGAGCCGCAGCTCTTCGAGTCGCGGCCGGGGCGCACGTCGGTGGTGGCCCGGTTCGAGGGCACCGACCCCTCCCGCGCCGCCCTCGTGCTGCACGGGCACACCGACGTCGTCCCGGCCGAGGCCGCGGACTGGTCGGTGGACCCGTTCGCCGGCGAGGAGATCGACGGCCTGCTGTGGGGGCGGGGCGCCGTCGACATGAAGGACATGGACGCCATGATCCTCGCGGTGGTGCGCCAGATGGTCCGCGAGGGCCGCCGTCCGGCGCGCGACGTCGTGATCGGCATGTTCGCCGACGAGGAGGCCGGCGGGGTGCTCGGCGCGCGCTGGCTGGTCGACCACCACCCCGAGCTGTTCGAGGGCGCCACCGAGGCGATCAGCGAGGTGGGCGGCTTCTCCGTCGACGTCGGTGGGCGCCGCGCCTACCTGGTCCAGACCGCGGAGAAGGGGCTGTCGTGGCTGCGCCTCGTCGCCGACGGGCGCGCCGGGCACGGTTCGCAGGTCAACCACGACAACGCCGTGACCGAGCTGGCCGCCGCCGTCGCGCGGATCGGCACCCACGCCTGGCCGTACACGCTCACCCCGACGGTCGAGCGGCTGCTGCAGGGCGTCGCGGACCTGACCGGACTGCCGTTCGACCCGTCCGGCGGCGCGGACCCGCAGCAGGTCGACGCCCTCGTGGCCGCGCTCGGCCCGGCGGCCAAGTTCGTCGGCGCCACCGTCCGGCACACCACGAACCCCACCCAGCTGGACGCGGGCTACAAGGCGAACGTCATCCCCGGCGCGGCCACCGCCGCGCTCGACATGCGCACGGTCCCGGGGCACGACGCCGAGGCGCGCGGCGTCCTGCACGAGCTCGCCGGTCCGCGCGTGCGGGTGGAGACGATCCACGCCGACCGGTCCCTGGAGGTGCCGTTCAGCGGGGGACTGGTGGACGCGATGGTCGACGCCCTGCACGCCGAGGACCCCGGTGCCTCGGTGCTGCCGTACACGCTCTCGGGCGGCACCGACAACAAGTCGCTGGCCCGCCTGGGCATCACCGGCTACGGGTTCGCGCCGCTGCAGCTGCCCGGAGACCTCGACTTCGCGGGCATGTTCCACGGCGTCGACGAGCGGGTCCCCGTCGACGCGCTGAAGTTCGGCACCCGGGTGCTCGACCGGCTGCTGGCCACCTGCTGAMTTTTARPHPTAEDEVVGICRDLLRIDTSNYGEGEGPGERKAAEHVAGLLAEVGLEPQLFESRPGRTSVVARFEGTDPSRAALVLHGHTDVVPAEAADWSVDPFAGEEIDGLLWGRGAVDMKDMDAMILAVVRQMVREGRRPARDVVIGMFADEEAGGVLGARWLVDHHPELFEGATEAISEVGGFSVDVGGRRAYLVQTAEKGLSWLRLVADGRAGHGSQVNHDNAVTELAAAVARIGTHAWPYTLTPTVERLLQGVADLTGLPFDPSGGADPQQVDALVAALGPAAKFVGATVRHTTNPTQLDAGYKANVIPGAATAALDMRTVPGHDAEARGVLHELAGPRVRVETIHADRSLEVPFSGGLVDAMVDALHAEDPGASVLPYTLSGGTDNKSLARLGITGYGFAPLQLPGDLDFAGMFHGVDERVPVDALKFGTRVLDRLLATCNANANANANA
AK018_043891317hypothetical proteinATGCGACGCATTGCAGCCGTCACCGCAGCAGCGGTACTCGGCGCGGCGGGCCTGGTCGTCACCGCCGACCCCGAGCCGGCCGAGGCGCACGGCGCCGAGGTCTTCCCCGGGAGCCGGCAGTACCTGTGCTGGGTCGACGGCCAGACCGACAACGGGGCCGTCGACCCGACGAACCCCGCCTGCTCGGACGCCTACGCCGCCGACGGCACCGGGTCGTTCTACAACTGGTTCGGCAACCTCGACTCGAACGGCGCCGGCCGCACCGAGGGGTACATCCCCGATGGTCAGATCTGCGACGGCGGCGGCAGCGGGCCGTACGACTTCTCCGGCTTCAACGCCGCCCGGGCCGACTGGCCGACGACGCACCTCACCGCCGGCGAGACGTACGAGTTCCAGCACAACAACTGGGCGCACCACCCCGGACGGTTCGACGTGTACGTCACCACGCAGGGCTTCGACCCCCTGGAGCCGTTGAGCTGGGACGACCTGGAGCTCGTCGGGTCGGTCACCGACCCGCCGGCGACCGGCGGCCCGGGCGGCCTCAACTACTACTACTGGGACGTCACCCTCCCTGCCGACCGCAGCGGTGACCACATCGTGTTCACCCACTGGGTCCGCTCGGACAGCACCGAGAACTTCTACAGCTGCTCGGACGTCACGTTCGACGGCGGTGACGGCGAGGTGACCGGCATCGGAAACCCCGAACCGGATCCTGACCCGACCGACCCGCCGGACCCCGTCTGCCCCGACGACGCGCCCGGCACGCCCGGCACGGTCATGGCGAGCGACATCACCGCGACGCACGCCCACGTGATGTGGGGCGTGGCCGAGTCCGGCTGCGTGACCGGGTACGACGTCCTCGACCCCGGCACCGGTCAGGTGATCGTCGCCACCGACGGCGCCCCGATGGTCGACCTCGACGGGCTGGAGCCGGCGACCGAGTACACCGTCGAGGTGCGCGCGCGCAACGACAACACGGGAGCGGTCTCGGCGACAACGACCGTCACGTTCACCACCCTGCCCGACGACATCGACCCCCCGTCGGGCGACTGCTCGGCCGAGGTCCACATCGTCAACTCGTGGAGCGGCGGCTACCAGGCAGACCTGGTCGTCACCGCCGGTCCCGCCGCGATCGATGGCTGGGAGGTCACCGTCGACGGAGTGTCGGTCGACCACGCGTGGAACGCGAACGTCTCCGGCAACGTGTTCAGCAGCGTGAGCTGGAACGGCGGTCTCGCCGCCGGCACGTCGACCTCGGCCGGGTTCATCGGCAGCGGCTCGGCGCCCGAGCCCGCGAGCGCGGACTGCACCGCCTGAMRRIAAVTAAAVLGAAGLVVTADPEPAEAHGAEVFPGSRQYLCWVDGQTDNGAVDPTNPACSDAYAADGTGSFYNWFGNLDSNGAGRTEGYIPDGQICDGGGSGPYDFSGFNAARADWPTTHLTAGETYEFQHNNWAHHPGRFDVYVTTQGFDPLEPLSWDDLELVGSVTDPPATGGPGGLNYYYWDVTLPADRSGDHIVFTHWVRSDSTENFYSCSDVTFDGGDGEVTGIGNPEPDPDPTDPPDPVCPDDAPGTPGTVMASDITATHAHVMWGVAESGCVTGYDVLDPGTGQVIVATDGAPMVDLDGLEPATEYTVEVRARNDNTGAVSATTTVTFTTLPDDIDPPSGDCSAEVHIVNSWSGGYQADLVVTAGPAAIDGWEVTVDGVSVDHAWNANVSGNVFSSVSWNGGLAAGTSTSAGFIGSGSAPEPASADCTANANANANANA
AK018_043901704qcrB_1COG1290Cytochrome bc1 complex cytochrome b subunitGTGAGCACCGAGACCGCGTCGAACACCGGCGCACCCACCACACCCGTCGGCAAGGCAGCCGACTACCTGGACCAGCGCACCAGCATCGGCGTCGCCGTCAAGGAGTTCGCGCGCAAGGTCTTCCCGGACCACTGGTCGTTCATGCTGGGCGAGATGGCGCTGTTCTCCTTCGTCGTCCTGCTGCTGTCCGGCGTGTTCCTCACGATGTTCTTCGACCCGTCGATGGCGCTCGTCGAGTACCACGGCGCAGGGCCGGAGACCATGCAGGGCCAGCTCATGTCGACGGCCTTCGCCTCGACGCTGGACCTCTCCTTCGACGTGCGCGGCGGTCTGCTCATGCGGCAGATCCACCACTGGGCCGCCCTGGTCTTCATGGCCTCGATCGTCGTGCACATGATGCGCGTGTTCTTCACCGGCGCCTTCCGCAAGCCACGCGAGATCAACTGGCTCGTGGGCACCGTGCTGCTGATCCTCGGCCTGCTGGCGGGCTTCTCCGGCTACTCCCTGCCGGACGACGTCCTGTCCGGCAACGGTCTGCGCATCACCGACGGCGTCATCAAGTCGATCCCGGTGATCGGCTCGTACATGTCGTACATGGTGTTCGGCGGCGAGTTCCCCGGCGAGCACATCATCCCGCGCCTGTTCACGATCCACATCCTGCTCGTGCCGGCGCTGATCCTCGCCCTCATCGGGCTCCACCTGTTCCTGATGGTGCTGCACAAGCACACCCAGTACCCCGGTGGCGGCCGCACGGACAAGAACGTCGTCGGCTACCCGCTCTTCCCGGTGTACGTCGCCAAGATGGGCGGCAACTTCTTCATCGTCTTCGGCATCCTCGCCCTGATGGGTGCCACGATGAGCATCAACAACGTCTGGAACTACGGACCGTACGACCCCTCCCCCGTCGGCGCCGGTGCGCAACCCGACTGGTACATGCTCTTCCTCGAAGGGTCGCTCCGACTGATGCCGGGTGCGGGCACGGAGTGGGTCATCTTCGGGTACACGTTGTCGCTCAACGTGCTGATCCCGGCGGTGGTCATCCCGGGCCTGCTGTTCACGTTCCTCTTCGCGTACCCGTTCATCGAGGCCAAGGTCACGGGCGACAAGCGCGAGCACCACGTGCTCGACCGTCCGCGCAACGTGCCCGTGCGCACCGGTCTCGGCGTCGCCTTCCTGACGGCGTTCATCATCCTGGCCCTCGCCGGGTCGAACGACCTCATCGCCACGCACTTCGCGATGTCCCTGAACCAGATCACCTGGGCGTTCCGGATCCTGTTCTTCGTCGGGCCGGTCTTCGCCTTCTGGGTCACCAAGCGGATCTGCCTGTCGCTGCAGCGCAAGGACCGCGAGCTGGTCCTGCACGGCCACGAGACGGGTCGGATCGTGCGGTTCGCCAACGGCGAGTACATCGAGGTGCACCGTCCGCTCGACGAGCAGGAGCGCTGGCTGCGGGTCAACTACGACGCGCACCGACCGCTCGAGATCGAGCCGGCCACCGACGCCCGTGGCGTCAAGCGCCGCGGCTACAAGAGCGACAAGCGTTGGCAGAAGCTCTCCCGGTTCTTCTACGAGGACCGCGTCGAGCCGGTGACCCCGGCCGAGCTCGCTGCGGCCCACTCGCACGGTGAGCACGACGAGATCGCCCCGGCGGCACACACCTCCGAGGTCACCTCGGGGACCGACACCGTCGATCGGGAGCGCTGAMSTETASNTGAPTTPVGKAADYLDQRTSIGVAVKEFARKVFPDHWSFMLGEMALFSFVVLLLSGVFLTMFFDPSMALVEYHGAGPETMQGQLMSTAFASTLDLSFDVRGGLLMRQIHHWAALVFMASIVVHMMRVFFTGAFRKPREINWLVGTVLLILGLLAGFSGYSLPDDVLSGNGLRITDGVIKSIPVIGSYMSYMVFGGEFPGEHIIPRLFTIHILLVPALILALIGLHLFLMVLHKHTQYPGGGRTDKNVVGYPLFPVYVAKMGGNFFIVFGILALMGATMSINNVWNYGPYDPSPVGAGAQPDWYMLFLEGSLRLMPGAGTEWVIFGYTLSLNVLIPAVVIPGLLFTFLFAYPFIEAKVTGDKREHHVLDRPRNVPVRTGLGVAFLTAFIILALAGSNDLIATHFAMSLNQITWAFRILFFVGPVFAFWVTKRICLSLQRKDRELVLHGHETGRIVRFANGEYIEVHRPLDEQERWLRVNYDAHRPLEIEPATDARGVKRRGYKSDKRWQKLSRFFYEDRVEPVTPAELAAAHSHGEHDEIAPAAHTSEVTSGTDTVDRERNANANANANA
AK018_043911053qcrA_1COG0723Cytochrome bc1 complex Rieske iron-sulfur subunitGTGAGCGAGAACCAGAACCCCAACACCTCCCAGGACGTGACCACGTCGACGGGGACCGCCGGTCACCCCGAGCGGTTCAGCGACCCGGGCGTCCCCGAGCACCGGGCCCGGCTCACCGACACGGACCCGAAGGCGAACAAGCGCAGCGAGCGGATCATCGTCCTGCTGTTCGCGCTGTCCTGCCTCGGTGCGATCGCCAGCCTCGTCGCCTACTTCACGGTGCGTCCCGACGGCACCACCGACCAGACCCGGCTGTCCACGCTGCTGCTCGGCGTGACCATGGCCATCTCGCTGCTCGGCATCGGCATCGCCGCCATCCACTGGGCCAAGGCCCTGATGAGCGATCACGAGCACGTCGACGAGCGGCACGACCTCAAGAGCTCGCCCGAGGTCCGCGAGGTCGCCGTCAAGCACCTCACGGACGGCGTCGAGGACTCGGGCATCGGCCGCCGCGGCGTGCTCAAGGGTGCCGCCGTCTCCGCGCTCGCGCTCTTCCCCCTGACCTTCGCCGTGCCGCTGATCTCCAGCGTCGGCGGGGACTGGAACATCTCGAAGTTCCGGCACACCATCTGGACCTCCGGCAAGCGCCTCGCGTACGACCCCACGGGTCGTCCGATCAAGGCCGCCGATCTCACCGTCGGCTCCGTGGCGCACGTGATCCCGGAGGAGTCCGAGGAGTACATGGCGTCCCACGAGTGGATCACCGAGAAGGCCAAGGCCGTGGTGCTGCTCGTCCGCCTCAACCCCGAGGACATCCGTTCCGACCAGTCGCCCGCGGGTGAGACCTGGTCCTACGACGGCATCGTGGCGTACTCGAAGATCTGCACGCACGTCGGCTGCCCCGTGGCGCTGTACGAGCAGCAGACGCACCACCTGCTGTGCCCCTGCCACCAGTCGACCTTCGACATGGCCGACGGCGCCAAGGTGGTCTTCGGCCCGGCCAACCGGCCGCTGCCGCAGCTGCCCATCGCCGTCGACGACGAGGGCTACCTCGTGGCCCAGGACGACTTCGCCGAGCCCGTCGGCCCGAGCTACTGGGAGCGTCTGAAGTGAMSENQNPNTSQDVTTSTGTAGHPERFSDPGVPEHRARLTDTDPKANKRSERIIVLLFALSCLGAIASLVAYFTVRPDGTTDQTRLSTLLLGVTMAISLLGIGIAAIHWAKALMSDHEHVDERHDLKSSPEVREVAVKHLTDGVEDSGIGRRGVLKGAAVSALALFPLTFAVPLISSVGGDWNISKFRHTIWTSGKRLAYDPTGRPIKAADLTVGSVAHVIPEESEEYMASHEWITEKAKAVVLLVRLNPEDIRSDQSPAGETWSYDGIVAYSKICTHVGCPVALYEQQTHHLLCPCHQSTFDMADGAKVVFGPANRPLPQLPIAVDDEGYLVAQDDFAEPVGPSYWERLKNANANANANA
AK018_04392783qcrC_1COG2010Cytochrome bc1 complex cytochrome c subunitGTGAAGGCACTCGCCGCCCGCCGGCACCACCGGGCCGCCCCGGTCGTGCTGATGCTGCTGGCGCTGCTGCTCACGGGCGGCGTGTACGCCGTCCTGGCACCGAGCTCGGCCACGGCCGACACCGCCAGCACAGCGAACGACGTGGAGGAGGGCGAACGCCTCTTCCAGGCCAACTGCGCCACCTGCCACGGCCCGGACGCCGAGGGCACCTCCGAGGCGCCCTCCCTCGTCGGCGTGGGTGCCGCGGCGGTGGACTTCCAGGTCTCGACCGGCCGCATGCCGATGCAGGCCAACGGTCCGCAGGCCCTGGAGAAGCCCCGCCAGATGGACGAGGAGCAGACGGCGCAGCTCGCCGCCTACGTCGCGTCGCTCGGCCCGGGGCCGGAGATCCCCACCGACGAGATGGTCGACGCCGAGGCGGGCGACGCCTCCAACGGCGCGCTGATCTTCCGCACGAACTGCGCGATGTGCCACAACGCCGTCGGCGCCGGCGGAGCCCTGTCCGAGGGCAAGTTCGCCCCGGCGCTGTACGACGTCTCCGAGCGCAACATCTACCAGGCGATGGCCACCGGCCCGCAGTCGATGCCGGTCTTCAACGACGCGACCATCACGCCCGACGAGAAGCGTGACGTCATCGCCTACCTCGTCGAGCAGCGCGACGGGTCCGCCGGCGGTCTGAGCCTCGGCTCCCTCGGCCCCGTCAGCGAAGGCCTGTGGGCATGGGTCGTCGGCCTCGGGCTGATGATCGGTGCTGCTGTGTGGATCGGAGCGAAGTCCTCGTGAMKALAARRHHRAAPVVLMLLALLLTGGVYAVLAPSSATADTASTANDVEEGERLFQANCATCHGPDAEGTSEAPSLVGVGAAAVDFQVSTGRMPMQANGPQALEKPRQMDEEQTAQLAAYVASLGPGPEIPTDEMVDAEAGDASNGALIFRTNCAMCHNAVGAGGALSEGKFAPALYDVSERNIYQAMATGPQSMPVFNDATITPDEKRDVIAYLVEQRDGSAGGLSLGSLGPVSEGLWAWVVGLGLMIGAAVWIGAKSSNANANANANA
AK018_04393603ctaE_1COG1845putative cytochrome c oxidase subunit 3GTGACCGTCAACCGACCGAACACCGTCTCGGTCGGGACGATCGTGTGGCTCGCGAGCGAGCTGATGTTCTTCGCGGGCCTGTTCGCCATGTACTTCACGGTGCGCTCCGTGATGCCGGAGGAGGAGTGGGCGGCCCAGGCCGACAACGTCGCCCTCGTCTTCCCCCTGATCAACACCACGATCCTGGTGCTGTCGTCGGTGACGTGCCAGGCCGGGGTGTTCGCCGCCGAGCGCTTCCAGCCGGTGCGCACCGGCACGCTGCTGCAGGTCACCAAGTGGGGCATGAACGAGTGGATGACGCTCACCTACCTCATGGGCTCGTTCTTCATCGCCGGGCAGATCTTCGAGTACGCCGAGCTGGTCGAGCACGGCCTGACGATCTCCTCGAGCGCCTACGGCTCCGTCTTCTACCTGGCGACCGGCTTCCACGGCCTGCACGTGATCGGCGGACTCATCGCCTTCCTGTTCCTGCTCGGCCGGTCCTTCCGCGCCAAGCGGTTCACCCACCACGAGGTGACGACCGGCCTGGTGGTCTCCTACTACTGGCACTTCGTCGACGTCGTGTGGATTGCCCTCTTCCTGGTGATCTACGTCCTGAAGTGAMTVNRPNTVSVGTIVWLASELMFFAGLFAMYFTVRSVMPEEEWAAQADNVALVFPLINTTILVLSSVTCQAGVFAAERFQPVRTGTLLQVTKWGMNEWMTLTYLMGSFFIAGQIFEYAELVEHGLTISSSAYGSVFYLATGFHGLHVIGGLIAFLFLLGRSFRAKRFTHHEVTTGLVVSYYWHFVDVVWIALFLVIYVLKPGPT0004035_2090DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276NANA
AK018_04394390COG0784putative response regulatory proteinATGACGACCGGCCCTCGTGTCCTGCTGTACAGCGACGACCGCACCGTGCGTGACCACGTGCGCCTCGCCGTCGGACCCCGTCTCGGCGCGGGCGCGCCGGAGATCGCCTGGACGGAGGCGGCGACCGGACCTGCGGTGACGTCCGCGGTGCGGGCCGGCGGGTTCGACCTGCTGGTCCTGGACGGCGAGGCGGACAAGGCCGGCGGCATGGGCCTGTGCCGGCAGCTGAAGAACGAGGTGTACGCCTGCCCGCCGGTCGTCATCCTCAGCGGCCGGCGGGACGACGCCTGGCTCGCGTCCTGGTCGCTGGCCGACGCCGTGGTGCCCCGCCCCCTGGACCCGGTCGAGCTCCAGCGCGCCGTCGCCGAGACGGTGACGCAGAAGATCTAGMTTGPRVLLYSDDRTVRDHVRLAVGPRLGAGAPEIAWTEAATGPAVTSAVRAGGFDLLVLDGEADKAGGMGLCRQLKNEVYACPPVVILSGRRDDAWLASWSLADAVVPRPLDPVELQRAVAETVTQKINANANANANA
AK018_043951065trpD_1COG0547Anthranilate phosphoribosyltransferaseGTGCCTGCCGACGCCCCTGCCACGCCCACCTGGCCCACCCTGCTCACCACGCTCGTCGCCGGGCACGACCTGGGAGCGCGGGAGACCGCCTGGGCCATGGACCAGGTGATGTCCGGCGAGGTGCCGCCCGCCCGGCTGGCCGGGTTCCTGGTGGCCCTGCGGGCCAAGGGCGAGACCGCCGAGGAGCTGACCGGGCTCGCCGACACGATGCTGCGGCACGCCACCCGGATCGAGGTGCCGGGTCCCACCGTCGACCTGGTCGGCACCGGCGGGGACCGGCACCACACCGTCAACATCTCGACGATGGCCGCCGTCGTCGTCGCCGGAGCGGGGCTCCGCGTCGTCAAGCACGGCAACCGGGCGGCGTCGTCGTCGTCCGGGTCGGCCGACGTCCTCGAGGCGCTGGGCGTCCGCCTGGACCAGCCGGCGCCGCGCGTCGCCGAGATCGCCCACGAGGTGGGCATCACCTTCTGCTTCGCGGGGATGTTCCACCCGTCGATGCGGCACGCCGCTACCGCACGCGGTGAGCTCGGCATCGCCACGGCCTTCAACTTCCTGGGGCCCCTGACGAACCCGGCACAGCCCGGTGCCACCGCCGTCGGGTGCGCCGACGCCCGGATGGCGCCGCTGATGGCCGGGGTGCTGGCGACCCGCGGGACGCGTGCGCTCGTCTTCCGCGGGGACGACGGGCTGGACGAGCTGGCCGCCACCGGCGGCACCACGGTGTGGGAGGTCCGCGCCGGCGAGGTCACCGAACTGCGGCTCGACGCCGCCCGGAACCTGGGGCTGCGCCCGGTCGAGCTGGAGGACCTGCGCGGCGGGGACGCGGCCCACAACGCCGAGGTGGCGCGGGCGGTCCTCACGGGCCGGGAGCGCGGCGCCGTCCGGGAGACGGTCCTGCTCAACGCCGCGGCCGCCATCGTCGCCGACGGCACCTCGGAAGGGACCGGGGACGGTCCGCTCGTCGACCGCCTGGCCGCCGGGTTGCGTCATGCCGCACGCAGCGTGGACGACGGCGGTGCCGGCCGGGTGCTCGACGCCTGGGTCGGCGCGACCCAGGCGTAGMPADAPATPTWPTLLTTLVAGHDLGARETAWAMDQVMSGEVPPARLAGFLVALRAKGETAEELTGLADTMLRHATRIEVPGPTVDLVGTGGDRHHTVNISTMAAVVVAGAGLRVVKHGNRAASSSSGSADVLEALGVRLDQPAPRVAEIAHEVGITFCFAGMFHPSMRHAATARGELGIATAFNFLGPLTNPAQPGATAVGCADARMAPLMAGVLATRGTRALVFRGDDGLDELAATGGTTVWEVRAGEVTELRLDAARNLGLRPVELEDLRGGDAAHNAEVARAVLTGRERGAVRETVLLNAAAAIVADGTSEGTGDGPLVDRLAAGLRHAARSVDDGGAGRVLDAWVGATQAPGPT0007090_912DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766NANA
AK018_04396282hypothetical proteinATGCTGACCTCGATCGTCCTCATCGACACCGCAGCCGACCAGATCCCCGAGGTCGCGGCCAGGATCACCGACCTGGACGGCGTCAGCGAGGTCTACTCCGTCACGGGCAAGGCGGACCTCGTCGCCATGGTCCGCGTGCGTGAGCACGACCAGCTCTCCGACGTCATCGCGAACGGCATCAGCAAGGTGCCCGGCGTGCTGCGCACCGAGACGCTCATCGCGTTCCGCGCCTACTCCAAGCTCGACCTCGAGCAGGCGTTCGCGCTCGGTCTCGACGACTGAMLTSIVLIDTAADQIPEVAARITDLDGVSEVYSVTGKADLVAMVRVREHDQLSDVIANGISKVPGVLRTETLIAFRAYSKLDLEQAFALGLDDNANANANANA
AK018_043971788COG0322Putative bifunctional exonuclease/endonuclease proteinATGTCGTCCCCCTCCGGCGCAGCGCACCCGCCGACGGCCGTGCAGCCGTCCTTCGCCGACCTCGGCACCCCGCTGCGAGACGTCACCTTCGTCGTCGTCGACCTCGAGACCACGGGCAGCCGCGCCGACGACGCCGGCATCACCGAGATCGGCGCGGTCAAGGTCCGCGGCGGCGAGGTGCTCGGCGAGTTCCAGACCCTCGTGGACCCCGGGCGGCCCGTCCCGGCGTTCGTCGCCCGGCTGACCGGCATCACCAGCGCCATGGTCGCCACCGCCCCGCAGATCGACCTGGTGCTGCCGAGCTTCCTCGAGTTCGCCCGGGACACCGTCCTGGTCGCCCACAACGCGCCGTTCGACGTCGGCTTCCTGCGTGCCGCCTGCGCCGAGCTCGGCTACCCCTGGCCGGGCTTCGCCGTCGTCGACACCCTCCCCCTGGCCCGGCGCGTCGTCACCCGCGACGAGGCGCGCAACCACAAGCTGTCCACGCTCGCGGGCCTGTTCCGGGCGACGACGTCGCCCGAGCACCGCGCGCTGGCCGACGCCCGCGCCACCGTCGACGTCCTGCACGGCCTCCTCGAACGGCTCGCACCGCTGGGCGTCACCCACCTGGAGGACCTCGCCACGGCCTCCGACCCGGTGCCCCCCGAGGTGCGGCGCAAGGCCACGCTCGCCGACGGGCTGCCCGAGGCCCCGGGCGTCTACCTCTTCCGCGGCCCGGACGACGAGGTGCTGTACGTCGGCACGTCGACCAACATCCGCAAACGGGTCCGCAGCTACTTCACCGCCGCCGAGAAGCGCAAGCGCATGAGCGAGATGGTGCGAATCGCCGGTGCCGTGACGCCCGTGGTGTGCGCGACGCCCCTCGAGGCGCAGATCCGCGAGCTCCGGCTCATCGCCGAGCACGCCCCGCGCTACAACCGGCGGTCCAAGCACCCGGAGCGGCAGAGCTGGGTGCGCCTGACCGACGAGGCCTACCCACGCCTGTCCGTCGTGGCCGACGTGCGCGGCGACGCCCCGCACATCGGCCCCTTCACCTCCCGACGCACCGCCCAGGACGCCGTCGCAGCCCTGCACGACGCGCTCGACCTGCGCCAGTGCACCCAGCGCCTGCCCGTGGTGACGACGACGCCGCGCAGCCCCTGCGCGCTGGCCGGCCTGGACCGGTGCTCGGCGCCCTGCACGGCCACCGACGGTCCCGACGAGACCTACGCCCGGGTGGCGGCCGCCGCGATGTCCGCGCTCACCGGCGACCCGGCACCGGTGGTACAGAGTCTCGCCGCCCGCGTCGCCCGGCTCGCCGCGCAGGAACGGTACGAGGAGGCCGGGCAGGTCACCGGCCGGCTGCGGGCGTTCGTCCGCGGCGCGGCCCGCGCCCAGCGCCTCGACCCGCTCAGCCGGTGCGCGGAGCTCGTCGCGGCGCGCGCGACGTCGTCGGGTGGCTGGGAGCTCGTCGTGATCCGGTACGGACGTCTCGCCGCGACCGCGGTCACCGGCCCCGGCGAGGACCCGCTGCCCGTGGTCGACGCGCTGCAGGCCACCGCCGAGGTCGTCGAGGCACCGGTGCCGCCCGCACCTGCCTGCCACCCCGAGGAGGCCGCGCTCGTGCTCGACTGGCTGGAGCAACCCGGGGTCCGGCTCGTGCACGCCACGGATCCCTGGACGTGCCCCGTCCGCTCCGCCGTCGCGCACGCCGACCTGGACCACGTCGCGGCGTCGGTGGCGCAGGCGGTCACCGGCACCGAGCAGGGTGCGGAGCAGCACGACGCCGCTAGCATGGCGGCATGCTGAMSSPSGAAHPPTAVQPSFADLGTPLRDVTFVVVDLETTGSRADDAGITEIGAVKVRGGEVLGEFQTLVDPGRPVPAFVARLTGITSAMVATAPQIDLVLPSFLEFARDTVLVAHNAPFDVGFLRAACAELGYPWPGFAVVDTLPLARRVVTRDEARNHKLSTLAGLFRATTSPEHRALADARATVDVLHGLLERLAPLGVTHLEDLATASDPVPPEVRRKATLADGLPEAPGVYLFRGPDDEVLYVGTSTNIRKRVRSYFTAAEKRKRMSEMVRIAGAVTPVVCATPLEAQIRELRLIAEHAPRYNRRSKHPERQSWVRLTDEAYPRLSVVADVRGDAPHIGPFTSRRTAQDAVAALHDALDLRQCTQRLPVVTTTPRSPCALAGLDRCSAPCTATDGPDETYARVAAAAMSALTGDPAPVVQSLAARVARLAAQERYEEAGQVTGRLRAFVRGAARAQRLDPLSRCAELVAARATSSGGWELVVIRYGRLAATAVTGPGEDPLPVVDALQATAEVVEAPVPPAPACHPEEAALVLDWLEQPGVRLVHATDPWTCPVRSAVAHADLDHVAASVAQAVTGTEQGAEQHDAASMAACNANANANANA
AK018_043981809COG1022Long-chain-fatty-acid--CoA ligase FadD15ATGGACGAGATCACCACCCCGCAGCTCGTGGAGCTGTCCCCGACGTCGAACCTCAACGACGTCCTCACCGACCGCATCCGCAAGGACCCGTCCGGGACGGTCGTCGAGCGGTACGTGGACGGACGGTGGGACGCCGTCAGCGGGACGGACTTCGACGCCCAGGTGGTGGCCGTCGCCAAGGGTCTGGTCGCCAAGGGCGTCCAGCCGGGCGAACCCGTCGGGATCATGTCCCACACCCGCTACGAGTGGACGCTGCTGGACTTCGCCACCTGGGCCGCCGGCGCCGTGCCCGTGCCGATCTACGAGACCTCGTCGGCCGACCAGGTCGAGTGGATCGCCTCGGACGCCGGGGTCACGGTCGTCGTGGCCGAGAACGCCGAGCTGGTCGCCGTCGTCGAGCGGGCCCGCGCCGCCGCCCCGTCGGTGCGCGAGGTGCTCTCGATCGACGACGGCGCCATCGCCGAGCTCACGGCCGCCGGCGCCGACGTCGACGACGCCGAGATCGAGCGCCGCCGCGCGCTGGCCGGCCTGGACGACGTCGCCACGATCATCTACACCTCCGGCACCACCGGTCGCCCCAAGGGCGCCGAGCTCACCCACGGCAACTTCGCCTCGCTGTCCACCAACGCGGTCGCGGCGATCCCCGAGGTCTTCGCCGCCGGCGGACGCACCCTGCTGTTCCTGCCGCTGGCCCACGTCTTCGCCCGGTTCATCGAGGTGCTCGCCGTCGCCGGCGGGACCGTCCTCGGCACCTGGCCGGACGTCAAGACCGTCACCGAGGGCCTGGGCTCGTTCAAGCCCACCTACGTCCTGGCCGTGCCGCGCGTCTTCGAGAAGGTCTACAACTCCGCCGAGCAGAAGGCCGCGGCCGGCGGCAAGCTGAAGATCTTCCACTGGGCGAGCGCCACCGCCATCGAGTGGTCCCGCGCTCAGGACACGGGTGGCCCGTCGTTCTGGCTGAACCTGCAGCACAAGATCGCCGGCAAGCTCGTGTACGGCAAGCTCCTCGACGCCCTCGGCGGCCAGGCGCGGTACGCCGTCTCCGGCGGCGGCCCCCTCGGCGAGCGGCTCGGCCACTTCTTCCGCGGTCTCGGGCTGACGATCCTCGAGGGCTACGGGCTCACCGAGTCCACCGCACCGACCTGCGTCAACCGCCCCGAGGCCAACCGCATCGGCACCGTCGGCCTGCAGCTGCCGGGCTGCGGCGTCAAGATCGCCGAGGACGGCGAGATCCTCCTGCATGGCATCCAGGTCTTCCGCGGTTACCACGACAACCCGGAGGCCACGGCCGAGTCGTTCGACGACGGCTGGTTCCGCACCGGCGACCTCGGCGCACTCGACGACGACGGCTTCCTGTCGATCACCGGCCGCAAGAAGGAGATCATCGTGACCGCCGGCGGCAAGAACGTCGCGCCCGCGATGCTCGAGGACCGCATCCGTGCGCACGCCCTGGTCAGCCAGTGCGTCGTCGTCGGCGACAACCGCCCCTTCATCGGCGCGCTGATCAGCCTCGACCCCGAGGGCCTGCCCGGCTGGTGCAAGATGCACGACAAGCCGGAGCTCACCATGGAGCAGGCACGGACCGACACCGACGTGCTCGCCGCGCTCGACGCCGCCGTCACCCGCGCCAACGAGGCCGTGTCCCGGGCCGAGTCCATCCGCAAGTTCTCGATCCTGTCCGAGGACCTCACCGTCGAGAACGGCTACCTGACGCCGTCGCTCAAGGTGAAGCGCAACGTCGTGCTGGACGACTACGCCGCCGACGTCGACGCGCTCTACGCCGGGGACTCCACGAAGAGCCCGCACTGAMDEITTPQLVELSPTSNLNDVLTDRIRKDPSGTVVERYVDGRWDAVSGTDFDAQVVAVAKGLVAKGVQPGEPVGIMSHTRYEWTLLDFATWAAGAVPVPIYETSSADQVEWIASDAGVTVVVAENAELVAVVERARAAAPSVREVLSIDDGAIAELTAAGADVDDAEIERRRALAGLDDVATIIYTSGTTGRPKGAELTHGNFASLSTNAVAAIPEVFAAGGRTLLFLPLAHVFARFIEVLAVAGGTVLGTWPDVKTVTEGLGSFKPTYVLAVPRVFEKVYNSAEQKAAAGGKLKIFHWASATAIEWSRAQDTGGPSFWLNLQHKIAGKLVYGKLLDALGGQARYAVSGGGPLGERLGHFFRGLGLTILEGYGLTESTAPTCVNRPEANRIGTVGLQLPGCGVKIAEDGEILLHGIQVFRGYHDNPEATAESFDDGWFRTGDLGALDDDGFLSITGRKKEIIVTAGGKNVAPAMLEDRIRAHALVSQCVVVGDNRPFIGALISLDPEGLPGWCKMHDKPELTMEQARTDTDVLAALDAAVTRANEAVSRAESIRKFSILSEDLTVENGYLTPSLKVKRNVVLDDYAADVDALYAGDSTKSPHPGPT0008380_6176DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
AK018_04399945glkA_1GlucokinaseATGCACGCCATCGGAGTCGACATCGGCGGGACCAAGATCGCCGTCGGCGTCGTGGACGAGGCCGGCACCATCCTGGCCCAGGTCCGGCGGGACACCGCCGCCGACGACGTCGCCGGCATCGACCGGGCGATCGCGGACGCCTGCACCGAGCTCGTCGCCGAGCACGAGGTCGGGGCGATCGGCCTGGCCGCGGCGGGGTTCGTGAGCCCGGACCGCACGTCGGTGCAGTTCGCGCCCAACATCGCCTGGCGCGACTACCCGCTGGCCCAGAAGGTGTCCGAGCTGATCGACGTCGACGTACCGGTCGTGGTCGAGAACGACGCCAACGCCGCCGGGTGGGCCGAGTTCCGGTTCGGGGCGGCCCACGAGGCGACGGACATGGTCATGCTGACGATCGGCACCGGGCTGGGCGGGGCCGTCGTCGTCGGCGGATCGCTGGTGCGCGGCAAGTGGGGCGTGGCCGCCGAGCTGGGGCACATGCGGGTGGTGCCGGGAGGGCACTACTGCGGCTGCGGGCACGAGGGGTGCTGGGAGCAGTACGCGTCGGGCTCGGCGCTGGAGCGCGACGCCCGGCACGCGGCGATCGCGCACCCGCGCCGGGCGGCGCGGCTCGTCGAGCTCGCGGGCGGCGACGCCGAGGCGATCTCGGGCCCCGACGTGACGCGCGCGGCCCAGGAGGGCGACGAGCTCGCCGTCGAGCTGCTCGCGACGCTGGGCCGGTGGATCGGCGAGGGCGCGGCGAGCGTCGCCGCGGTCCTGGACCCGGAGCTGTTCGTGATCGGCGGGGGAGTGGGCGCGGCCGGCGACCTGCTGCTGCTGCCGCTGCGCAAGGCCTACACGGCCGAGCTCTCGGCCCTGGGGCACCGGCCCGAGGCGCAGATCGAGCTGGCCCAGCACGGCAACGAGGCGGGGATCGTGGGCGCCGCGGACCTCGCGCGGCGCTGAMHAIGVDIGGTKIAVGVVDEAGTILAQVRRDTAADDVAGIDRAIADACTELVAEHEVGAIGLAAAGFVSPDRTSVQFAPNIAWRDYPLAQKVSELIDVDVPVVVENDANAAGWAEFRFGAAHEATDMVMLTIGTGLGGAVVVGGSLVRGKWGVAAELGHMRVVPGGHYCGCGHEGCWEQYASGSALERDARHAAIAHPRRAARLVELAGGDAEAISGPDVTRAAQEGDELAVELLATLGRWIGEGAASVAAVLDPELFVIGGGVGAAGDLLLLPLRKAYTAELSALGHRPEAQIELAQHGNEAGIVGAADLARRNANANANANA
AK018_04400516hypothetical proteinATGGCTCCATCGAACCGGGATGCGGACCCCGACGACCTCCCGGACGCCGACGTCGACGCCCGCTGGTCCGACATCGTCGCACGCCTCGGCGACGTCGAGGAGTCCGAACGCAGCATCACGGCGGCGCCGGTCACGCCCGAGCCCGCCACCCCGGAACCCGACACGGGACCCGACCAGGGGCCCGACGCGGAACCCCGCGCCGTCGGACCGCGGGACTGGCCCGCCTCCCCCGAGGTCGAGGCCCTCGAGGAGGCCGAAGAGCACTTCGTCCCGCCGGAACCCGAGCCGGTCGCCCACCGCGACCCGCTGCTGACGCTCGCCTGGACGGTCGTCGTGGCCGTCCCGGTGCTGACCGTCCTCGGCGTGGTGCTGCGCGCGATGCTGTCGTCGCTGTCGGTGCCCGGCTGGCTGGGACCCGCCGCGGGTGGCGCGTTCCTGGCCGCGGTCGCCGTGCTGCTCTGGCGGATGCCCCACCGGCGCGACCCCGACGACCACGACCCCGGCGCCGTCGTCTGAMAPSNRDADPDDLPDADVDARWSDIVARLGDVEESERSITAAPVTPEPATPEPDTGPDQGPDAEPRAVGPRDWPASPEVEALEEAEEHFVPPEPEPVAHRDPLLTLAWTVVVAVPVLTVLGVVLRAMLSSLSVPGWLGPAAGGAFLAAVAVLLWRMPHRRDPDDHDPGAVVNANANANANA
AK018_04401765hypothetical proteinTTGTTCTACTGGGTGATGAAGCACGTGCTGGCCGGTCCGTTCCTCCGGCTCGCCTTCCGCCCCTGGACCCGGGGCGTGGAGAACGTGCCCGACTCGGGTGGTGCCATCCTCGCCGGCAACCACCTGGCCGTCATCGACTCCTTCGTGCTGCCGATCGTCCTGGACCGGCAGGTCAAGTTCCTCGGCAAGTCCGACTACTTCACCGGCCGCGGCCTGCGGGGCCGGCTGGTGGCGGGCTTCATGCGGGGCGTGGGCACGATCCCGGTGGACCGGTCCGGCGGGCGGGCCAGCGAGGCCGCGCTGCGCACCGGGTTGCGGGTGCTGTCCGAGGGCGACCTGTTCGGCATCTACCCCGAGGGCACCCGGAGCCCCGACGGCCGCCTCTACCGCGGCAAGACGGGCGTCGCCCGGCTGGCGCTGGAGTCCGGGGCGCCGGTGGTGCCCGTGGCGATGATCGGGACCGCCGAGTCCCAGCCGCTGGGACGGACCCTCCCGAAGCCGATGCGGATCGGCGTGGTCCTGGGCGAGCCGCTGGACTTCAGCCGCTACCGCGGCATGGAGCACGACCGGTTCGTGCTGCGCGCCGTCACGGACGAGATCATGTACGCGATCCTGCGCCTCAGCGAGCAGGAGTACGTCGACGTGTACGCGGCGACAGCCAAGGCCCGCATCGCCCAGGGCCTGCCGGTGGACGCCACGCCGTCGTCGGGCCCGTCCGGGTCGGCGCCGCCGGCCGCGCCCGACCCGGAGACGCCTGCCGGCTGAMFYWVMKHVLAGPFLRLAFRPWTRGVENVPDSGGAILAGNHLAVIDSFVLPIVLDRQVKFLGKSDYFTGRGLRGRLVAGFMRGVGTIPVDRSGGRASEAALRTGLRVLSEGDLFGIYPEGTRSPDGRLYRGKTGVARLALESGAPVVPVAMIGTAESQPLGRTLPKPMRIGVVLGEPLDFSRYRGMEHDRFVLRAVTDEIMYAILRLSEQEYVDVYAATAKARIAQGLPVDATPSSGPSGSAPPAAPDPETPAGPGPT0024380_1704DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
AK018_044021227pfp_3Pyrophosphate--fructose 6-phosphate 1-phosphotransferaseATGTCGGTCCGTCGCGTGGCCCTGCTGACCGCAGGTGGTTTCGCCCCGTGCCTGTCCTCCGCCGTCGGCGGTCTGATCGAGCGCTACACCGAGCTCGACCCGTCGATCGAGATCATCGCGTACCAGTACGGCTACCACGGTCTGCTGACCGGCACGAAGATCGAGATCGACGCCGAGGGGCGTCGCCAGGCCGGCATCCTGCACCGTTTCGGCGGGTCGCCGATCGGCAACTCCCGCGTCAAGCTCACCAACGCCGCCGACTGCGTCAAGCGTGGGCTGGTCGCTGAGGGGCAGGACCCGCTGCACGTGGCCGCGGAGCAGCTCAAGGCCGACGGCGTGGACGTGCTGCACACGATCGGCGGTGACGACACGAACACCACCGCGGCCGACCTCGCCGCGTACCTGCACGAGAACGACTACGAGCTCACCGTGGTCGGACTGCCCAAGACGATCGACAACGACGTGGTGCCGATCCGGCAGTCGCTCGGGGCGTGGACCGCGGCCGAGGAGGCCGCCGGGTTCGCCGCGAACGTCATCGGCGAGCACCGGTCGGGCCCGCGCATGCTCATCGTGCACGAGGTCATGGGCCGGCACTGCGGGTGGCTGACGGCCGCGGCGGCCGCGGAGTACCGCAAGTGGCTGGACGCGCAGGAGTTCGCGCCCGCCCTCGGGCTGACCCGGGAGCGCTGGGACGTGCACGCGGTGTTCCTGCCGGAGCTGGCCATCGACATCGACGCCGAGGCCGAGCGTCTCAAGGGCGTCATGGACACCCACGGCAACGTCAACATCTTCCTGTCCGAGGGTGCCGGCATGCATGAGATCGTCGCGCAGCTCGAGGCCGCGGGCGAGGAGGTCCAGCGCGACCCGTTCGGGCACGTCAAGCTCGACACGATCAACCCCGGCCAGTGGTTCGCGCAGCAGTTCGCCGAGAAGCTGGGCGCCGAGAAGGTCATGGTCCAGAAGTCCGGCTACTACTCGCGTGCGGCGGCCGCGAACGCCGAGGACCTGCGCCTCATCAAGTCGATGACGGACCTGGCCGTCGAGTGCGCGCTGCGCGGCGAGGCCGGCGTCATCGGGCACGACGAGGAGGACGAGGACAAGCTGAAGGCGATCGCGTTCCCGCGGATCGCCGGCGGCAAGGCGTTCGACGTCCACCAGGAGTGGTTCGGCGAGCTGCTGGCCGACCTGGGCCAGCCGCTGGTGCCCGCCCAGCCCGCCGAGCACTGAMSVRRVALLTAGGFAPCLSSAVGGLIERYTELDPSIEIIAYQYGYHGLLTGTKIEIDAEGRRQAGILHRFGGSPIGNSRVKLTNAADCVKRGLVAEGQDPLHVAAEQLKADGVDVLHTIGGDDTNTTAADLAAYLHENDYELTVVGLPKTIDNDVVPIRQSLGAWTAAEEAAGFAANVIGEHRSGPRMLIVHEVMGRHCGWLTAAAAAEYRKWLDAQEFAPALGLTRERWDVHAVFLPELAIDIDAEAERLKGVMDTHGNVNIFLSEGAGMHEIVAQLEAAGEEVQRDPFGHVKLDTINPGQWFAQQFAEKLGAEKVMVQKSGYYSRAAAANAEDLRLIKSMTDLAVECALRGEAGVIGHDEEDEDKLKAIAFPRIAGGKAFDVHQEWFGELLADLGQPLVPAQPAEHPGPT0017640_611DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017640-pfp-K00895NANA
AK018_044031365aroH_1COG3200Phospho-2-dehydro-3-deoxyheptonate aldolaseATGAGCACCGCCGTCGACTCCGTCGCGCCCGGGACCGACCCGGAGGGCCTGGACCGCTTCCGCTCCCTGGAGGCGCTCCAGCAACCCACCTGGCCGGACGCGGGGGCGCTCGCCGACGTCGCCGCCCGGCTGTCGGTGGCGGCGCCGCTCGTGGTGCCCGCCGAGGCGGACACGCTCACCGAACGCCTCGCCGCGGCCGGGCGCGGCGAGGCGTTCCTGCTGCAGGGCGGCGACTGCGCGGAGACGTTCGCCGACGCGAACGCGACGCGCATCCGCAACAAGGTCCGCACCATTCTGCAGATGGCCGTGGTGCTCACCCACGGGGCGAGCACCCCCGTGGTCAAGATGGGCCGCCTGGCCGGGCAGTACGCCAAGCCGCGCTCGTCGGACACCGAGACGCGCGACGGCGTGACTCTGCCGTGCTACCGCGGCGACATGGTCAACGGGCACGCGTTCACGCCCGAGTCCCGCATCCCGGACCCACGCCGCCTGGAGGAGGCCTACCGGATCTCCACGGCGACCGCCAACGTGGTGCGCGGCTTCACCCAGGGCGGCTACGCCGACCTGCGCCGCGTGCACGAGTGGAACCGCGGGTTCATGCTCAACCCCGCGTACGCGCGCTACGAGCGCACCGCCACGGAGATCGACCGCGCGATCCGCTTCATGGACGCGTGTGGCGCCGACTTCGACGCGCTGCGCACGGTGGAGTTCTTCCTCAGCCACGAGGCGCTGATCCTCGACTACGAGCGGGCGCTCACGCGCGTCGACGCCAGGTCCGGGCGGCCCTACGGCACGAGCGCGCACTTCCTGTGGATCGGGGAGCGGACCCGGCAGCTCGACGGCGCCCACGTGGAGTTCCTGTCGCGGGTGGCGAACCCGATCGGCGTCAAGCTCGGTCCGACCACCGCGCCCGACGACGCGATCGCCCTGGCGCGGCGGCTCAACCCCGACAACACCCCGGGGCGGCTGACGTTCATCACCCGCATGGGTGCCGGCAGGGTGCGCGAGGTGCTGCCGGAGGTCGTCGCGAAGGTCACCGCCGCCGACGTGGCGGTGACGTGGGTGACCGACCCCATGCACGGCAACACGATCACCTCGGACAGCGGGTTCAAGACCCGACGGTTCACCGACGTCCTGGACGAGGTGACGGGTTTCTTCGAGGTGCACCGCGAGCTCGGGACGGTGCCCGGGGGACTGCACATGGAGCTCACCGGCGACGACGTGACCGAGGTGCTCGGCGGCAGCGAGGAGATCTCCGACGCCGGCCTGGCGGAGCGGTACGAGACGCTCGTGGACCCGCGTCTGAACCACCAGCAGTCGCTGGAGACGGCCTTCCAGGTGGCGGAGATGCTCACCAGACGGTGAMSTAVDSVAPGTDPEGLDRFRSLEALQQPTWPDAGALADVAARLSVAAPLVVPAEADTLTERLAAAGRGEAFLLQGGDCAETFADANATRIRNKVRTILQMAVVLTHGASTPVVKMGRLAGQYAKPRSSDTETRDGVTLPCYRGDMVNGHAFTPESRIPDPRRLEEAYRISTATANVVRGFTQGGYADLRRVHEWNRGFMLNPAYARYERTATEIDRAIRFMDACGADFDALRTVEFFLSHEALILDYERALTRVDARSGRPYGTSAHFLWIGERTRQLDGAHVEFLSRVANPIGVKLGPTTAPDDAIALARRLNPDNTPGRLTFITRMGAGRVREVLPEVVAKVTAADVAVTWVTDPMHGNTITSDSGFKTRRFTDVLDEVTGFFEVHRELGTVPGGLHMELTGDDVTEVLGGSEEISDAGLAERYETLVDPRLNHQQSLETAFQVAEMLTRRPGPT0012920_1523DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012920-3_deoxy_7_phosphoheptulonate_synthase|aroF|aroG|aroH-K01626NANA
AK018_044041977spk1_1Serine/threonine-protein kinase PK-1GTGGCCACCACGACGACGGACGCGATGCTCGGCCGCCTGGTGGGCGGTCGGTACGAGATCGTCGCGCGCGTCGCCCGCGGCGGCATGGCCACCGTGTACCGCGCGCGGGACCGTCGCCTCCACCGCGACGTCGCCCTGAAGATCATGCACCCGCACCTCGCCGAGGGGGTCGACGGCGGCCGGTTCGTCTCCCGGTTCCGGCGCGAGGCCCGGTCCTCGGCGCGGCTCTCCCACCCCGGCGTCGTCGCGGTCTTCGATCAGGGCGTCGACGGCGACCTGAGCTACCTCACCATGGAGTACGTCGCCGGCTCCAACCTGCGCGGCGCCCTGCACGACGGGCCGCTCACCGTCGGGCGCGCGCTCGACGTGGCGGCCCAGACGCTGGCCGCCCTCGCCGCCGCGCACCGCGTCGGCCTCGTCCACCGCGACGTCAAGCCGGAGAACGTCCTGCTCGACGAGGACGGGGCGGTCAAGGTCGCCGACTTCGGGCTCGCCCGCGCCGTCACCGAGGTCACCACGACCACCACCGGGACCATCCTGGGCACGGTCGCCTACCTCGCCCCCGAGGTGATCACCACCGGCGGCTGCACCCCCGCCACCGACGTCTACGCCGTGGGCGTGCTGCTCTCCGAGATGCTGACCGGCACGCTGCCCTACCCGGGCGAGACACCCATCCAGGTCGCGTTCCACCACGTCCACGAGGACCTGCCGGCGCCGTCGGAGCGCGTCGGCTGGCTCCCCGCCCAGATCGACGACCTGATCGCCCTGTTCACCGCCCGCGACCCCGCCGGCCGTCCCCCGCACGCGGCTGCCGCCCTCGTCGCCGTCCGAGCCGTCCGCACCGCGCTCGACGACGAGGTCCTCGCCCGCGCCGCCGAGCCTCCGGCGTCGTCCGAGCCGGCGTCACCCGCCGACGACCTCGACGACGCCGCTTCCGCGGACGCCGCCGGCGGGTCGGCCGACGCCGTCGACGAGATCCCGGCGGCGTTCTTCACCGAGGTCTCCGCCGGCCATCCGACCGAGCACGTCGTCACCGACCCCACCACCGAGCTGGGCGCCGGCGGCCGGCCGCCGCGCCGCCGCCCGCGACGCCCCGTGGTAGCCGGGCAGCAGGTCCTCCTCCACCTCCACGCCGGCGGCGGCGTCGGCACCTGGTGGTGGTACACGGAGGGCCCGGGGGCGTGGACGACCGTCCCCGACGGCCTCGCCGGCGTCGAGCTCCGGGCGGCGCAGGAGACGCTGTCGGGCCACGGCCTGGAGACCACCACGAGCGAGACGTACGACGACGACGTCCCGGCCGGCGACGTCGTGACCAGCGCGCCGGGCCCCGGCGAACGCGTGCGCACCGACGGCACCGTGGAGCTGGTGGTCTCCCTCGGCGTGCAGCTGCTCACCGTGCCGGACGACCTGGTCGGCGCCACCGCGCAGGACGCCACCGCCGCGCTGGAGGACACCGGGTTCACGGTCGCGACGCCGCGCACCGTCTACGACGACCGGGCCCCCGAGGGCGAGGTCGTCGAGATGTCCGTGCCCGAGGGGTCCACCCAGCGGCACGACACCGTCGTCCGGATCACCGTGTCCGACGGCCCCGCACCCGTCCGCGTCCCGCAGGTCGTCGGGGTGGACGGCGACCAGGCCGAGGAGGACCTCGCGGGCGTCGGCCTGGAGGTCGAGTACACCGACCCCGAGCACGCGACCGGCACCCCGGAGGGGCACGTCCTGACGCAGGACCCCGAGCAGGGCACCGCGGCGCACCGCACCGACACGGTCACGCTGACGCTGTCCGCGGGCCCGCCGGAGGTCGAGGTGCCCGACGTCGAGGGCATGTCGACGCAGGAGGCCACCGACGCGCTCGAGGAGGCCGGGTTCGTGGTCGAGGTGAACCGCTACCTCGGCGGCCTGCTCGACACCGTGCGGTTCCAGGACACCACGGGCACCGCGCTGCAGGGCTCGACGGTGACGCTCACCGTCTGGTGAMATTTTDAMLGRLVGGRYEIVARVARGGMATVYRARDRRLHRDVALKIMHPHLAEGVDGGRFVSRFRREARSSARLSHPGVVAVFDQGVDGDLSYLTMEYVAGSNLRGALHDGPLTVGRALDVAAQTLAALAAAHRVGLVHRDVKPENVLLDEDGAVKVADFGLARAVTEVTTTTTGTILGTVAYLAPEVITTGGCTPATDVYAVGVLLSEMLTGTLPYPGETPIQVAFHHVHEDLPAPSERVGWLPAQIDDLIALFTARDPAGRPPHAAAALVAVRAVRTALDDEVLARAAEPPASSEPASPADDLDDAASADAAGGSADAVDEIPAAFFTEVSAGHPTEHVVTDPTTELGAGGRPPRRRPRRPVVAGQQVLLHLHAGGGVGTWWWYTEGPGAWTTVPDGLAGVELRAAQETLSGHGLETTTSETYDDDVPAGDVVTSAPGPGERVRTDGTVELVVSLGVQLLTVPDDLVGATAQDATAALEDTGFTVATPRTVYDDRAPEGEVVEMSVPEGSTQRHDTVVRITVSDGPAPVRVPQVVGVDGDQAEEDLAGVGLEVEYTDPEHATGTPEGHVLTQDPEQGTAAHRTDTVTLTLSAGPPEVEVPDVEGMSTQEATDALEEAGFVVEVNRYLGGLLDTVRFQDTTGTALQGSTVTLTVWNANANANANA
AK018_04405381DNA-binding proteinGTGAGCACCGCGGAGAACAGCACCCTGGACGACCTGATCGACGACTGGCTGACCCTGCCCGACGTCGCCGAGCAGCTCGGCGTCGAGGTGGGGGCGGTCCGCGGGCTCGTGGACTCCCGCCACCTGATCGGCGTCAAGCGGGGCCCGCGCACCACGTTCCAGGTGCCGGCGGCGTTCCTCGTCGAGGGGCCCGACGGCGCACCCCACGTCGTCGAGACGCTGCGCGGCACCGTGATGCTCCTGGGCGACGCCGGGTTCAGCGACGGCGAGGCGCTGCAGTGGCTGTTCACGCCGGAGGAGTCGCTGGACGCGCGTCCCGTCGACGCGCTGCGCGCGGGGCGCCGTGCCCAGGTGCGCCGCGTGGCCCAGGCGCTGGCCTGAMSTAENSTLDDLIDDWLTLPDVAEQLGVEVGAVRGLVDSRHLIGVKRGPRTTFQVPAAFLVEGPDGAPHVVETLRGTVMLLGDAGFSDGEALQWLFTPEESLDARPVDALRAGRRAQVRRVAQALANANANANANA
AK018_044061107COG0142(2E,6E)-farnesyl diphosphate synthaseATGCCCTCCGCCGCCGCCCTGGTCGATCTCGAGAACCTCCGCGACGACGTCGACGCGGTGCTGCGTCGGCACCTGGACGACCTGAGCGCCGAGGCTGCCGCCACGGGACCCGGATCCCACGCCCTGACCGAGCACCTCGAGACCCTCCTCGACGGCGGCAAGCGACTGCGGGCCGCCTTCTGCTACTGGTCCTTCCGCGCCCACGGAGGATCGCCGGACGGGCGGCAGCGGGACGCCGTCGTGCGCGTGGGTGCCGCCCTCGAGCTGTTCCAGGCCGCCGCCCTGCTGCACGACGACGTCATGGACGCCTCGGACACCCGGCGCGGTCGGCCCACGGCTCACCGCGCCTTCGAGGCGCGGCACCGCGCCGAGGGCTGGGCGGGCGACCCCGAACGGTTCGGCACCGCGGCCGCCATCCTGCTGGGCGATCTCAGCCTGGTGGCCAGCCAGCGCGAGGTCGTGGCCGCCCTGGACGCCCTCGAGACCGCGGTCGCCCGCCGTGCCCGCGACGTGTTCACCGCGATGACGAGCGAGGTCGTCGTCGGCCAGTACCTGGACGTGCTCGTGCAGGCCGAGCCCTGGGGCACGAACCCCGCCACCGACGAGGAGCGCGCCCGTACGGTGCTGCGCGCCAAGTCCGCGCGCTACTCCGTGGAGCGGCCGCTCACCCTCGGCGCGGTCCTCGCCGGTGCCGACGACGCCGCGGTGGCCACGATGAGCGCCGCCGGGCTTCCCCTCGGCGAGGCCTTCCAGCTCCGCGACGACCTGCTCGGCGTCTTCGGCGACCCGGCGGTGACGGGGAAGCCTGCCGGCGACGACCTGCGCGAGGGCAAGCACACGGTCCTCGTGGCCCGCACCCTGGCCGGGACGGACGACGCCGGGCGCCGGCTCGTCGCCGACCGGCTCGGCCACGAAGACCTCTCGGAGGCCGACGTCGCAGCGCTGCGCGCCGTGATCGTCGCCTCGGGCGCCGTCGACGGCGTCGAGAAGCTCATCGACGAGCTGGCCGCCACGGCGTTGACGACGCTGGACGGCGCCGGTCTCGCCCGGCCCGGCGCCGACGTGCTGACCGACCTGGCGCGCGTCGCGGTCGAACGGGTCGCCTGAMPSAAALVDLENLRDDVDAVLRRHLDDLSAEAAATGPGSHALTEHLETLLDGGKRLRAAFCYWSFRAHGGSPDGRQRDAVVRVGAALELFQAAALLHDDVMDASDTRRGRPTAHRAFEARHRAEGWAGDPERFGTAAAILLGDLSLVASQREVVAALDALETAVARRARDVFTAMTSEVVVGQYLDVLVQAEPWGTNPATDEERARTVLRAKSARYSVERPLTLGAVLAGADDAAVATMSAAGLPLGEAFQLRDDLLGVFGDPAVTGKPAGDDLREGKHTVLVARTLAGTDDAGRRLVADRLGHEDLSEADVAALRAVIVASGAVDGVEKLIDELAATALTTLDGAGLARPGADVLTDLARVAVERVAPGPT0007550_531DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007550-idsA-K13787NANA
AK018_04407576hypothetical proteinGTGCCTCGCCTGGGGGCGGCCGAGGTCTACGGTGTCCCCGTGCCTCCGACCCGTCCGCGCTCCCCCGCCCGCCGGTGCCGCCTGGCCGCACCCGTCGTCGCGGCGCTGCTGCTCTCGGGCTGCGGCGTGCTGCCGGCCGCGGGTCCGCAGGACGCGAGCAGCACGCGACCGACACCGTCGGCCAGCGAGGACGTGGCCTCGGCGATGCCCACGTTCGACCCATCGTCGGCGGTTGCGCAGTACGCCCCCGACTTCCCCGCGGAGCTGCTCGGCGCGCCGAAGAAGGCGACGGTGCTGGCCAGCTCGGCGACACGGACCGAGGACGGTCGATGGGAGGTCTCCCTGAGCCTGTCGACGACGCTGGGCACCCGCAAGGTGATCAACCGGTACGCGGACCGGCTGCAGGAGGCAGGGTTCGAGGAGTCCGACGACGTCGACGCGGCGGGTCTGAGCGCCCGCGCCGCGTTCCTGCGCTCGGGCGACCAGGACGGCACCGAGTCCGTGCTCATCGGGGTGCACGACGACGGCGAGCGCCGGCTGGTGTCGCTGTCCGGCGTGGTGCGCCAGGACGCGTAGMPRLGAAEVYGVPVPPTRPRSPARRCRLAAPVVAALLLSGCGVLPAAGPQDASSTRPTPSASEDVASAMPTFDPSSAVAQYAPDFPAELLGAPKKATVLASSATRTEDGRWEVSLSLSTTLGTRKVINRYADRLQEAGFEESDDVDAAGLSARAAFLRSGDQDGTESVLIGVHDDGERRLVSLSGVVRQDANANANANANA
AK018_044081149hypothetical proteinATGACCACAGCACTGGACCCCGCACCCCGGCCCCTCGTCCTGCGCAGCCCGCACGACCTCCTGGCCGCCATCCCCTACCGGTTGGGCTTCCGGCCCGTCGAGTGCGTCGTCGTCGCCTGCACGACGGCGGACGGCCACCTCGGGCTCGTGGCCCGCGTCGCGCTGGACGACCTCGCCCGGCCCGACGTCGCGGACGGCCTCGAGCCGCTGGTCCGCGCCGTCGTCGACCAGCGTCCCCGCGCGCTGACCGCCGTGCTCTACACGGCCCGCGACGAGGCGTCCGCCCGCGCCCTGCTGGGCACGGCGGTCTCCGCCGTCGACGTCGGCGTGGACGTCGACCGCTGGATCGTCACCGACGGCGGCTATCGCGGCATCGACTGCGACGACCCGGCGTGCTGCCCCGAGCAGGGGCACCCGCCGGCCGCGCTGGAGACCAGCGAGATCGCCGTCGCCCACGTACTGGCCGGCCGTCAGGTCGCCCCGTCGCGCGAGGTCGCCTACAGGATCGTCCCTGCACCCGCCGACCGGCGCGCCCTGGCCGGCCGCGCCGCGCGCCGCAGCCACGACACCGCCGCGGACTGCCCCGACGAGGGCGCACGGCGCGCCTGGCGCACCGCCGCGCTCGACGCGTGGCGCGAGGCGACCCGCTGCGTGCCCGGGCCCGCCGAGCGTGACCGCGACGGCGACGCGCCCGAGGACCAGCCGCTCGGTGCGGCGCTCCTGGGCCGCGTCGCCGCCGGACTGGCCGACCGTCGCGTGCGCGACGCCGTCCTGCTGACCCTCGTCCCCGGCGGCGACGGCGGCGCGCAGGACACCGTGACCGCCGCCGACCCCGCCGCGGTCGACCGTGCCACCGCCGAGACCCTCGCGCGCGTCGTCGACCCCGCCGACGCCGTCCGGCCCGACCCCGGCGAGGCCGAACGCGCTCAGGCCGTCCTCGAGCTGGTCGTCTCCCACACCCCGCGGCGCTGGCACGCCCCTGCCGCCACCCTGCTGGCCTTCCTCGCCTGGTGGCGGGGCGACGGCGCTCGGGCCTCCTACCGGGTGGACGAGGCGCTCGCGGCCGACCCCGACCACCGGTTGGCCCACCTCGTGGCGTCGGTCGTGGCCGCGGGTCTGCCGCCGGGCTGGGTCCGGGCCGAGGGCTGAMTTALDPAPRPLVLRSPHDLLAAIPYRLGFRPVECVVVACTTADGHLGLVARVALDDLARPDVADGLEPLVRAVVDQRPRALTAVLYTARDEASARALLGTAVSAVDVGVDVDRWIVTDGGYRGIDCDDPACCPEQGHPPAALETSEIAVAHVLAGRQVAPSREVAYRIVPAPADRRALAGRAARRSHDTAADCPDEGARRAWRTAALDAWREATRCVPGPAERDRDGDAPEDQPLGAALLGRVAAGLADRRVRDAVLLTLVPGGDGGAQDTVTAADPAAVDRATAETLARVVDPADAVRPDPGEAERAQAVLELVVSHTPRRWHAPAATLLAFLAWWRGDGARASYRVDEALAADPDHRLAHLVASVVAAGLPPGWVRAEGNANANANANA
AK018_04409360Universal stress proteinATGGCGATCGTCGTGGGACACCTGGGGACCCCGGAGGGCACCGAAGCGCTCGTCGCGGCCATGACGGAGGCGCGACGGCGCGAGGCCGAGCTGGTGGTGGTCGCTGCGAAGGGCGACCCGGGCGGCGCGGAGCTGGACACGTTGCGCACCCGGCTCGCCGATGCCGGCGTCGAGCACCGCATCGTGACCGGGTCCGGCGACCTCGCCGACGACCTCGTGCGCCACGCCGCCGAGTCCACCCCGGGACTGATCGTCATCGGGCTGCGACGGCGCAGCCCCGTCGGCAAGCTCATCCTCGGTTCCGGCGCGCAGCGCATCCTGCTGGAGGCGCCCTGCCCGGTGCTGGCCGTCAAGCCCTGAMAIVVGHLGTPEGTEALVAAMTEARRREAELVVVAAKGDPGGAELDTLRTRLADAGVEHRIVTGSGDLADDLVRHAAESTPGLIVIGLRRRSPVGKLILGSGAQRILLEAPCPVLAVKPNANANANANA
AK018_044101596hrdBCOG0568RNA polymerase principal sigma factor HrdBGTGGCGTCCACTGCGCAGAACCCCCCGTTGCCCCGAGAGTTCGACCATGCAGCCCTCAAGGAGCTGCTCGCTCGCGGCGCCGCGGACGGTCGCGTCGACGCGGAAAGCTTCCGTGCCGCCTGCGAGTCCGCGTCCGTGGGCGACCCCAAGCGGCTGAAGGCGGTGCTGCGCGCCTTCGCCACCGCCGGCGTCGACGTCGGCGCGCCGGTCGCGACCAAGGTCGCCGCCGCGACGAGCACCTCGACCAAGACGCAGGCGCGCGCCAAGGCCCCGTCCGCGAAGACCGCCGCGACGCGCACGACGTCGACGACGTCCGCGTCGAGCGACGCCGAGGACGACTCCACCGAGTCCGCGTCCACCACGGCGAAGAAGGCGCCGGCCAAGAAGCCGGCCGCCAAGGCCTCGTCGGCCAAGAAGACCGCCGCGAAGAAGACCACCGCGGCCAAGACGACGCGCAAGGCCGCGGCGAAGGCGCACAAGCCCGCCCCGGAGCCGGACGGCGTGCCGGTCGAGGACGACGAGGAGTCCGAGGAGTCCGGCGGCAAGCACGTCGCGACGGTCCGAGGCCCGCGCAGCAAGAAGGAGGAGGAGGGCGGCGGCTTCGTCGTCTCCGACACCGACGACGAGGACCAGCCCGCGCAGCAGGTCGTGACGGCCGGCGCCACCGCCGACCCCGTCAAGGACTACCTCAAGCAGATCGGCAAGGTCGCGCTGCTGAACGCCGAGCAGGAGGTCGAGCTCGCCAAGCGCATCGAGGCCGGCCTGTTCGCCGAGGAGCGCCTGGCCCAGGACTACGCCGACTTCGACCGCACCAAGGCCACGGCCGAGGAGCGCAAGATGTGGCGCGACCTGAAGTGGATCGCGCACGACGGCAAGCGGGCCAAGAACCACCTGCTCGAGGCCAACCTGCGTCTCGTGGTCTCGCTGGCCAAGCGCTACACGGGTCGCGGCATGCTGTTCCTGGACCTGATCCAGGAGGGCAACCTCGGTCTGATCCGCGCGGTCGAGAAGTTCGACTACACCAAGGGCTACAAGTTCTCCACGTACGCCACCTGGTGGATCCGGCAGGCGATCACCCGCGCCATGGCCGACCAGGCCCGCACCATCCGCATCCCGGTGCACATGGTCGAGGTCATCAACAAGCTCGCGCGCGTCCAGCGCCAGATGCTCCAGGACCTGGGCCGCGAGCCCACGCCGGAGGAGCTGGCCAAGGAGCTCGACATGACCCCGGAGAAGGTCGTCGAGGTCCAGAAGTACGGCCGCGAGCCCATCTCGCTGCACACGCCCCTCGGTGAGGACGGCGACAGCGAGTTCGGTGACCTCATCGAGGACTCCGAGGCCGTGGTGCCGTCGGACGCCGTGTCGTTCACGCTGCTGCAGGAGCAGCTGCACCAGGTGCTCGACACGCTCTCCGAGCGCGAGGCCGGCGTGGTGTCCATGCGGTTCGGCCTGCAGGACGGCCAGCCCAAGACGCTCGACGAGATCGGCAAGGTCTACGGCGTCACGCGTGAGCGGATCCGCCAGATCGAGTCCAAGACGATGTCGAAGTTGCGCCACCCGTCGCGCTCGCAGGTGCTGCGCGACTACCTGGACTGAMASTAQNPPLPREFDHAALKELLARGAADGRVDAESFRAACESASVGDPKRLKAVLRAFATAGVDVGAPVATKVAAATSTSTKTQARAKAPSAKTAATRTTSTTSASSDAEDDSTESASTTAKKAPAKKPAAKASSAKKTAAKKTTAAKTTRKAAAKAHKPAPEPDGVPVEDDEESEESGGKHVATVRGPRSKKEEEGGGFVVSDTDDEDQPAQQVVTAGATADPVKDYLKQIGKVALLNAEQEVELAKRIEAGLFAEERLAQDYADFDRTKATAEERKMWRDLKWIAHDGKRAKNHLLEANLRLVVSLAKRYTGRGMLFLDLIQEGNLGLIRAVEKFDYTKGYKFSTYATWWIRQAITRAMADQARTIRIPVHMVEVINKLARVQRQMLQDLGREPTPEELAKELDMTPEKVVEVQKYGREPISLHTPLGEDGDSEFGDLIEDSEAVVPSDAVSFTLLQEQLHQVLDTLSEREAGVVSMRFGLQDGQPKTLDEIGKVYGVTRERIRQIESKTMSKLRHPSRSQVLRDYLDNANANANANA
AK018_04411183hypothetical proteinATGACCGCCGCCGACCGCTGTGACCGCTGCGGGGCCCAGGCCTACGTGCGTGTCGTGCTGCCCGTCGGGGAGCTGCTCTTCTGCGGCCACCACGCACGCGCCCACGCGGACGCCTACCAGTCCGTGGCGACGCACATCCAGGACGAGACCGATCGTCTGCACGCCGAGCACGGCGCCGGCTGAMTAADRCDRCGAQAYVRVVLPVGELLFCGHHARAHADAYQSVATHIQDETDRLHAEHGAGNANANANANA
AK018_044122157gyrB_2COG0187DNA gyrase subunit BGTGTCGGCACCCTCGGCTACCCTCGTGCGCGTGACAGCCACGTCCGAGTCCGGGTACACCGCACGCCATCTATCCGTCCTCGAGGGTCTCGAGGCGGTCCGCAAGCGCCCAGGCATGTACATCGGGTCGACGGACTCCCGCGGCCTGATGCACTGCCTGTGGGAGATCATCGACAACTCCGTCGACGAGGCGCTCGGCGGGTTCGCGACCGCCATCAAGGTGGTGCTGCACGCCGACTCCTCGGTGACGGTCGAGGACGACGGCCGCGGCATCCCCGTCGACGCCGAGCCCAAGACCGGGCTGTCCGGCGTCGAGGTCGTGTTCACCAAGCTGCACGCCGGCGGCAAGTTCGGCGGCGGCTCGTACACCGCCTCGGGCGGTCTGCACGGCGTGGGCGCCTCGGTGGTCAACGCCCTGTCCGCGCGGCTCGACGTCGAGGTCGACCGGGGCGGCAAGACGTACGCCATGCGGTTCCACCGCGGGGAGCCGGGGACGTTCTCCGACCCGGCCACGGGGCCGTCGCCCGAGTCCGCGTTCGAGCCGTTCGTGGACCACTCCGAGCTGGTCGTGGTCGGCAAGGCGCCGAAGCGCCGCACCGGGACGCGGGTGCGCTACTGGGCCGACCGGCAGATCTTCCCGAAGTCGGCGGTGTTCGCCTACGACGAGCTCGTCACCCGCGCCCGGCAGACCACGTTCCTGGTCCCGGGCCTGAAGATCACGGTCCGCGACGAGCGCGGCCTGCCCGGCACGCCGGGGGAGTCCGGCCCGCACGAGGAGGTCTTTCAGCACTCGGGCGGTGCCGTGGACTTCGTGGAGTTCCTCGCCCCGGACACCCCGGTCACCTCGACCTGGCACCTGCGGGGTTCGGGGAAGTTCACCGAGACCGTGCCCGTGCTGGACGCCAAGGGGCACATGACGTCCCAGGAGGTCGAGCGGGACTGCGAGGTGGACGTCGCGCTGCGCTGGGGTGTCGGGTACGAGACCGAACTGCGCACGTTCGTCAACATCATCGCCACGCCGAAGGGCGGCTCGCACCGCACCGGGTTCGAGCAGGGCCTGCTCAAGACGATCCGCAAGCAGGTCGAGGCGAACGCACGCCGGCTGAAGGTCTCGACGAAGGACTCGGCCGAGCGCATCGAGAAGGACGACGCGACGGCGGGCATGACGGCCGTGGTGACGGTGCGTCTCTCCGAGCCGCAGTTCGAGGGCCAGACCAAGGAGGTCCTCGGCACCGCACCGGTGCGCGGGATCGTCTCGCGGGTGGTCGAGAAGGAGCTCGGCGCGCTGCTGACCTCCACCAAGCGGGACGACAAGGCGCAGGCCTCGCTGCTGCTGGAGAAGGTCGTCGCCGAGATGCGCGCCCGGGTCACGGCCCGCAAGCAGAAGGAGATCTCCCGGCGCAAGAACGCCCTGGAGTCCTCCTCGCTGCCCGCGAAGCTGGCGGACTGCCGCAGCGACGACGTCGAGCGTTCCGAGCTGTTCATCGTGGAGGGCGACTCGGCGCTCGGCACCGCCAAGCTGGCGCGGTCGTCGGACTTCCAGGCCCTGCTGCCGATCCGCGGCAAGATCCTCAACGTCCAGAAGGCTTCCATCAGCGACATGCTGCGCAACGTCGAGTGCGCGGCGATCATCCAGGTGCTGGGTGCCGGGTCGGGGCGGTCCTTCGATCTCGAGGCCGCGCGGTACGGCAAGGTCGTGCTGATGACGGATGCCGACGTCGACGGCGCGCACATCCGCACGCTGCTGCTGACGCTGTTCTACCGGTACATGCGCCCGTTGCTGACCGAGGGGCGCGTGTTCGCCGCGGTGCCGCCGCTGCACCGCATCGAGGTGCTGGGCTCGGGCCGGCGCAAGGGCGAGTACCTGTACACCTACTCCGAGGCGGAGCTCAATGCGACGCTGAAGAAGCTCGACCGGGCCGGCCGGAAGTACAAGGACGACATCCAGCGGTACAAGGGTCTGGGGGAGATGGACGCCGACCAGCTCGCCGAGACCACGATGGACCCCCGCCACCGCACCCTGCGCCGGGTGACCGTGGAGCACGCCGAGGCCGCCGAGCGCGTCTTCGACCTGCTCATGGGCTCCGACGTCGCGCCGCGCAAGGAGTTCATCGTGGCCGGGGCGAACGCGCTGGACCGCGCCCAGATCGACGCGTAGMSAPSATLVRVTATSESGYTARHLSVLEGLEAVRKRPGMYIGSTDSRGLMHCLWEIIDNSVDEALGGFATAIKVVLHADSSVTVEDDGRGIPVDAEPKTGLSGVEVVFTKLHAGGKFGGGSYTASGGLHGVGASVVNALSARLDVEVDRGGKTYAMRFHRGEPGTFSDPATGPSPESAFEPFVDHSELVVVGKAPKRRTGTRVRYWADRQIFPKSAVFAYDELVTRARQTTFLVPGLKITVRDERGLPGTPGESGPHEEVFQHSGGAVDFVEFLAPDTPVTSTWHLRGSGKFTETVPVLDAKGHMTSQEVERDCEVDVALRWGVGYETELRTFVNIIATPKGGSHRTGFEQGLLKTIRKQVEANARRLKVSTKDSAERIEKDDATAGMTAVVTVRLSEPQFEGQTKEVLGTAPVRGIVSRVVEKELGALLTSTKRDDKAQASLLLEKVVAEMRARVTARKQKEISRRKNALESSSLPAKLADCRSDDVERSELFIVEGDSALGTAKLARSSDFQALLPIRGKILNVQKASISDMLRNVECAAIIQVLGAGSGRSFDLEAARYGKVVLMTDADVDGAHIRTLLLTLFYRYMRPLLTEGRVFAAVPPLHRIEVLGSGRRKGEYLYTYSEAELNATLKKLDRAGRKYKDDIQRYKGLGEMDADQLAETTMDPRHRTLRRVTVEHAEAAERVFDLLMGSDVAPRKEFIVAGANALDRAQIDAPGPT0027710_1135DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622NANA
AK018_044132052hypothetical proteinGTGAGCTGGCTCGGACGGACGGCGCGCCGCATCCCTTTCACCCTGGGCGTGGTCGCGACCATGCTCGTCCTGGGCCTGGTGAGCCAGGCCCTCTGGTCTCCCTTCGAGGACTCGGACTGGTTCGGGTCGGTAGCGTTCGGCGCCCCGGCGTTCGCGGACGGGCACTGGTGGACCCCGGTCACCGGGTCGCTGTTCGCGCGGGTGCCGTGGGAGTACGTCCCCGTGATGGGCGGCTTCCTGGTGCTGGTCGGGTTCGCCGAGCTACGGCTCGGGACCCGGCGCGCCGCGCTCGTCACGGTCGTGTGCCAGCTCACCGGCGTCGTCGGCTCCGCCCTGCTCCTGGGGCTCCTCGGCCGAACCGCCTGGACCTGGGCGCAGCAGACCTCGCAGGTGCTCGACGTCGGCTTCAGCGCGGGCGCCGTCGGTGCGGTCACCGTCGCGCTCTGGACGCTGCGCCCGCCCTGGCGCGGACGGCTGTCCGCCGTCGTCGCCGCCTACGTGCTGGTCTCCGTGGTGTTCTTCGGCGGGATCGCCGACGTCGAGCACCTCGTGGGGTGGCTCGCCGCGCTCGCGCTCGTGCCCGTCGTAGTCCACCCCGCGCTCGGCGTGCGCGCCCCGGCGGGCCGCGTGCGGCTGGCCCGGGTCCAGGCCGCCGGGTACTTCGGGATCTCCGCCCTGATCACCGTCCTCGCGGGTTTCGCCACGGCCGCCGAGGGCCCGCTCGGGACGATCGGCGGCGGCGACTGGCCGACCGGCCTGCTCAGTGTCGTCGTGGACCTCGTGCTGGCGCTCGGGCTGCTGCGCGGCCGGCGGCTCTGGTGGCGCGTCGCGCTGGCGCTGACAGCGATCTCGGCCGTCCTGCTCGCCCTGCTGCTCGCGGCGGCGATCGTCGCCGAACCCCACGAGATCCCGCTCGTCGTCGTGATGCTGGTGCTCGACGTCGGAGCCCTCGTCCTGCTCGTCGTCCGACGCCGGGCCTTCCGCAACCGCCGCCGGTCGGGCCTGGCCGGCGCGGACGGCACGTTCGACCAGGAGGACGCCCGCGAGGCGCTCGTCCGTCTCGGCGCGGGCCAGCGGCTCGCCTGGATGACGACGTGGGAAGGTTCGCGGCGCTGGTCACCGGGCACCCCGGACGGGTTCGTCACCCACCAGGTGCACGCCGGCGTCGCCGTCGGGCTTACCGACCCCGTCGGCGACGGACCGCAGGGGCGCGGGGAGCTGGCCGACGCCTTCGTCGCCGCGACGCGGCACTCAGGTCTGACCGCCTGCTTCTTCTCCTGCAGCGCCGAGCTCGCCGACCTCGCCGCGGTCCGCGGCTGGACCACCGTCCAGGTGGCCGAGGAAGCCGTCGTCGACCTGCCGGGCCTGGAGTTCCGCGGCAAGAAGTGGCAGGACGTGCGCACCGCCATCAACCAGGCCCGCAAGCACGGCGTCGAGCACCGGATGACCCGGTGGGCCGACGAGCCGGAGGAGATCCGCGAGCAGCTGCGCGCCATCTCCACGGCCTGGCTCGGCGACAGCGACCTGCCGGAGATGGCGTTCACGCTCGGCGGCCTGCGGGAGGCCTCGGACCCTGCCGTGCGCGTCGGGCTCGCCGTGGACGCCGACGGCCGGGTGCACGGCGTGACGAGCTGGCTGCCCGTGCACGCCCCCGGAGGAAAGGTCGTCGGCTGGACGCTGGACGTCATGCGCCGCGCACCGGACTCGTTCCGTTACACGATGGAGCTGCTCATCGCCTCGGCCCTGACCGCCTTCCGCGACGAAGGTGCGCTCGAGGCCTCGCTGTCCGGCAGCCCGCTCGCGCGGTCCGACGACGAGGACCTGACCGGCATCGACGCCGTCCTCGACCAGCTCGCCGCGACGCTCGAGCCGCTCTACGGGTTCAGCTCGCTGCACCGGTTCAAGCTGAAGTTCCAGCCGCGCTCCGTCCCCCTCTACCTGGTGGTCCCGGACCCCGCCGCCCTGCCGCTGGTCGGCATCGCGCTCGTGCGGTGCTACCTGCCCGAGGCGCGCGCCAGGGACCTGCTGGCCGCCGCTCGATCCACGCGCTGAMSWLGRTARRIPFTLGVVATMLVLGLVSQALWSPFEDSDWFGSVAFGAPAFADGHWWTPVTGSLFARVPWEYVPVMGGFLVLVGFAELRLGTRRAALVTVVCQLTGVVGSALLLGLLGRTAWTWAQQTSQVLDVGFSAGAVGAVTVALWTLRPPWRGRLSAVVAAYVLVSVVFFGGIADVEHLVGWLAALALVPVVVHPALGVRAPAGRVRLARVQAAGYFGISALITVLAGFATAAEGPLGTIGGGDWPTGLLSVVVDLVLALGLLRGRRLWWRVALALTAISAVLLALLLAAAIVAEPHEIPLVVVMLVLDVGALVLLVVRRRAFRNRRRSGLAGADGTFDQEDAREALVRLGAGQRLAWMTTWEGSRRWSPGTPDGFVTHQVHAGVAVGLTDPVGDGPQGRGELADAFVAATRHSGLTACFFSCSAELADLAAVRGWTTVQVAEEAVVDLPGLEFRGKKWQDVRTAINQARKHGVEHRMTRWADEPEEIREQLRAISTAWLGDSDLPEMAFTLGGLREASDPAVRVGLAVDADGRVHGVTSWLPVHAPGGKVVGWTLDVMRRAPDSFRYTMELLIASALTAFRDEGALEASLSGSPLARSDDEDLTGIDAVLDQLAATLEPLYGFSSLHRFKLKFQPRSVPLYLVVPDPAALPLVGIALVRCYLPEARARDLLAAARSTRPGPT0024390_1068DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLGLYCEROL_LYSYLTRANSFERASE,PGPT0024390-mprF|fmtC-K14205NANA
AK018_04414510hypothetical proteinATGCCGCTCCCCCCGCCCCCTGCCGGCTGGTCCCGCTACATCCTCAAGAGCAAGTTCGGCATGGGACGCGACTTCGCCGTCCTCGAACCGGACACCGAGGAACAGACGTGGTTCGTGGACGGCAAGGTCGGCATGCGTCCCAAGGCCGACGTCCAGGACGCCGCCGGCAACGTCGTCTACACCGTCACCGGCAAGATGTTCGGCATCCCCAAGCAGATGACCATCGCCGCCGCCGACGGCACCGAGGTCGCCTCCCTGCGGGCCAAGGCCTTCTCGATGATCAAGGACAAGATGACCATGGAGGTCCCCGGCGGCGAGCCGTGGAGCCTCGAAGGGTCCTTCATCGAGAAGAACTACTCGGTCACCGCCGGCGGTCGGCACGTCGTCCAGATCACCCAGAAGTGGGTGACCATCCGCGACTCGTACACCCTCGACGTCGCCGACGGCATCGACGTCGGGCTGGCGCTCGCCGTGGTGTGGGCGATCGACCGCTGGGTCGAGCGCGACTGAMPLPPPPAGWSRYILKSKFGMGRDFAVLEPDTEEQTWFVDGKVGMRPKADVQDAAGNVVYTVTGKMFGIPKQMTIAAADGTEVASLRAKAFSMIKDKMTMEVPGGEPWSLEGSFIEKNYSVTAGGRHVVQITQKWVTIRDSYTLDVADGIDVGLALAVVWAIDRWVERDNANANANANA
AK018_04415444hypothetical proteinATGCGTACGACGTCGACCCGCCTGCTGTCCGTGGCCGCCACCGGTGTGCTGTCGGTGACCCTGCTCGCCGGCTGCACCGGTGAGGACGAGCCGACGCCGGACACGAGCGCGTCCGTCGGCGCCGAGGACACCGAGGAGTCCGCCGGCAGCGACGAGCACGTCGCCGAGAACATCACCGAGTTCTCGTACACGGGCGAGGACGGTGAGACCGCGCTGGACCTGCTGCTCGTGCACGACGACCAGGCCGAGGTCTCCGGCGAGGGCGAGATGGCCTACGTCACCGGCATCAAGGGCCGGACGACCGAGGACGGCGCCGAGTTCTGGGCGCTGTACGTGGACGGCGAGATGGCGCAGGTCGGCGCCGGTTCGCTCGAGACCGAGGACGGCCAGCAGATCCGGTGGAAGCTCGAGGAGATCGAACCGACCGAGGAGTCCGAGGAGTGAMRTTSTRLLSVAATGVLSVTLLAGCTGEDEPTPDTSASVGAEDTEESAGSDEHVAENITEFSYTGEDGETALDLLLVHDDQAEVSGEGEMAYVTGIKGRTTEDGAEFWALYVDGEMAQVGAGSLETEDGQQIRWKLEEIEPTEESEENANANANANA
AK018_04416612hypothetical proteinGTGAGCCCCGCACCCGCCGCACCGACGCCGGACCTGAGCCTGCGCGAGCTGGGCGAGCGGTGGTGGCGGCCCGCCGTCGCCGTGCTGCTCGTCGTGGCGGCGATCGTGTGGCGGGTCGTCAAGGACGACCTCGGCGCCCCGCCGAACCTGGAGCTGTCGACAGCGGCGGCGTTCGCGGCCGCCGGTCTGCTGCGGCATCGCCTGGCGATGCTCGCCCCGCTGGTGGTCGTCGCGCTGAGCGACGTGCTGCTGACGAACTCCGCGATCCTGCTGTTCACGTGGACCGCCTGGGCGGCGATCGGCGTCGGCGCCTGGTGGACCCGCCGGGCCACCGGTGGTCGCCGGTTCGTGGCGGCGCTGGGCTTCGGCGTCGGCAGCTCGGTCGTGTTCTACCTCTGGACCAACTTCGGCGTGTGGCTGCAGGGCCGCGGCACCTTCTACCCGGCCGGCCTGGACGGGCTCGTGGCCAGCTACGTCGCCGGGCTGCCGTTCCTGCGGCCCATGCTGCTCGGCAACCTGGTGTTCCTGCCGATCGCGGCCGGCATCGTGGCGCTGGTGGAGAGGCTCGAACGGGCTCACGCCGTGGGCGTGACGCCGAACCTCGCGCGGTAGMSPAPAAPTPDLSLRELGERWWRPAVAVLLVVAAIVWRVVKDDLGAPPNLELSTAAAFAAAGLLRHRLAMLAPLVVVALSDVLLTNSAILLFTWTAWAAIGVGAWWTRRATGGRRFVAALGFGVGSSVVFYLWTNFGVWLQGRGTFYPAGLDGLVASYVAGLPFLRPMLLGNLVFLPIAAGIVALVERLERAHAVGVTPNLARNANANANANA
AK018_04417624hypothetical proteinATGGGCTCCATTCAGATCGAGCTGTTCACCACCCTCGACCTCGTCGGCCAGGCACCGGGCGGGCCCGAGGAGGACCCCGTCGGGTTCCCGTTCGGCGGCTGGCAGGCTCCCCTGCTCGACGACGCCACCGACACCCAGATCGCCGCCACCTACGACGGCACGGACGCGCTGATCCTCGGACGGCGGACATACGACATCTTCGCCGCCTACTGGCCGCACCAGGAGGGCGGTCCGGACGACGGCATCGCCACGCTGTTCAACCGCATCCCCAAGTACGTCGCCTCCCGCGGCACACCCGACCTGCCGTGGGCCGGGTCGGTCCACCTCGGCGCCGACCTGCGGCAAGCCGTCACCGAGGTGCGCGATCGCCACGCGGACGTCAAGGTCGTCGGGAGCCTCGACCTGGTCCAGACGCTGCTGAGCGAGCGCCTGTTCGACAGCCTGAACCTCTGGGTGCACCCGATCGTGCTCGGCGTCGGCAAGAAGCTCTTCGACGGCGGTGAGGTGCCGGCGAACCTCACGCTGCTCGACCCGCCGACGGCCAGCCCCCGCGGCGTGGTGCACCTGCGCTACGGACTCACCGAGGGCACGCCCCAGACCGGCGACATGACCGTGTCGACCTGAMGSIQIELFTTLDLVGQAPGGPEEDPVGFPFGGWQAPLLDDATDTQIAATYDGTDALILGRRTYDIFAAYWPHQEGGPDDGIATLFNRIPKYVASRGTPDLPWAGSVHLGADLRQAVTEVRDRHADVKVVGSLDLVQTLLSERLFDSLNLWVHPIVLGVGKKLFDGGEVPANLTLLDPPTASPRGVVHLRYGLTEGTPQTGDMTVSTNANANANANA
AK018_04418657hypothetical proteinGTGACTGCCACCGACACCCGCCTCGAGATCGAGGTCTGGTCCGACGTCCTGTGCCCCTGGTGCTACATCGGTGACGCGCGCCTCGAGCAGGCCATCGCGGCCTCGCCCCAGGCGGACCGCATCGACGTGAAGATCCGCACCTTCCAGCTCGACCCGGACTTCCCCGCGGAGCCGACACCCGTCGTCGACTACCTGTCGGCCAAGAAGGGGCTGCCGGTCGAGCAGGCCGAGCAGATGGAGGGTCAGGTCGCCGAGCTGGCTCGCGCGGAGGGCCTCGCCTACGCGCCGAACCACCCCGTGCAGAACACGCTCGACATGCTGCGCCTGGTGCACCTGGGTAACGAGCACTGCGTCGGCTGGCAGTACATGACGGCCATGCAGGCCGCCCTGTTCAGCGGTGACCCCGAGGCGTTCGCCGCCGACACCCTCGTGCGGCTCGGCACCGAGCTCGGCATCCCCGAGGCCGAGATCCGCGACGTGCTCGCGAGCGACCGGTACGCCGACGCCGTGCGCGCCGAGCACGACGAGGCGATCGCCCTGGGCGCTCGCGGCGTGCCGTTCACGGTGCTCGGGCGCCGGCTCGGGATCCCCGGCGCCGTGCCGACCGAGGCGTACGGCCAGGCGATCGCGCAGGCGTGGGCTCAGGTCGATGCCTGAMTATDTRLEIEVWSDVLCPWCYIGDARLEQAIAASPQADRIDVKIRTFQLDPDFPAEPTPVVDYLSAKKGLPVEQAEQMEGQVAELARAEGLAYAPNHPVQNTLDMLRLVHLGNEHCVGWQYMTAMQAALFSGDPEAFAADTLVRLGTELGIPEAEIRDVLASDRYADAVRAEHDEAIALGARGVPFTVLGRRLGIPGAVPTEAYGQAIAQAWAQVDANANANANANA
AK018_04419153hypothetical proteinATGCCTGAGCCCGTCCAGCCGCTGACGTTCGTCGCGGCCGACGACGCCGCGGTGTGCGACCCGGTCACCGGCGTCTGCGCGGTGCCGGGCGCCGAGTCTGAGGTCCAGGACGACGACGGCGCTCGCGGCGAAGGTGCGGCGAGCGCGCGCTGAMPEPVQPLTFVAADDAAVCDPVTGVCAVPGAESEVQDDDGARGEGAASARNANANANANA
AK018_04420447arfB_1COG1186Peptidyl-tRNA hydrolase ArfBATGCCCTCACCGACCCGCGACGGACTCGTCGTCAGCCCGTCCCTGACGATCCCCCGGGCCGAGCTGACCGAGCGGTTCTCACGGTCCTCCGGTCCCGGCGGGCAGGGCGTGAACACCACCGACTCGCGGGTGGAACTGTCCTGGGACGTCGGCCGCTCGGCCGTGCTGAGCCGCGTCCAGCACGAGCGCATCGTCGCCCGGACCGGTCACCGGCTCGTCGACGGCGTCCTGACGGTCACCGCGTCCGAGCACCGCGAGCAACGGCGCAACCGGGACGCGGCCGCCCGTCGTCTGGCGGCACTCGTCGCCGACGCCGTCGCGCCGCCCGGCCCTCGCCGTCGTCCGACCAAGCGCACCCGTGGGTCCCAGGAGCGCCGGCTCACAGCCAAGAAGCAGCGGTCCGCGACCAAACGCATGCGCTCGTCCCGGCCGTCACGGGACGACTGAMPSPTRDGLVVSPSLTIPRAELTERFSRSSGPGGQGVNTTDSRVELSWDVGRSAVLSRVQHERIVARTGHRLVDGVLTVTASEHREQRRNRDAAARRLAALVADAVAPPGPRRRPTKRTRGSQERRLTAKKQRSATKRMRSSRPSRDDNANANANANA
AK018_04421273hypothetical proteinATGCGAGCGATCAGCATCACCGAGCTCAACCAGCAGACCTCCCGGGTGCTCCGCGAGGTGCAGGAGGGTGAGCAGGTGGAGATCTCGATGCACGGGCGTGTGGTGGCACGTCTCGTGCCCGCCACGGATCAGGCGACGTGGCTGGAGCGTAAGAAGGCCGAGGGCCGGATCACTCCGCCGTCGGCGCCTGATACGCCCCTTCCGGATCTTGTCGCGGCCACGTCCGGCCTCCCGTTGGACCAGCTCATCGACGAGTCGAAGGGCGACCACTGAMRAISITELNQQTSRVLREVQEGEQVEISMHGRVVARLVPATDQATWLERKKAEGRITPPSAPDTPLPDLVAATSGLPLDQLIDESKGDHNANANANANA
AK018_04422405Ribonuclease VapC47GTGGTGGCGTACATCGACTCGTCGATCGCGCTCCGCATGATCCTGGACGACCCGGGCAGCGCGGCGGTGCGCGCCTGGTGGACTGCCGCGCGGAACGCGGGTGAGGAGATCTTCTCGTCCAAGCTTCTGCAGGTGGAGATGTCCCGGGTGCTGCAGCGCGAACGATTCTCGCTGGCACTGAGTGTGCCGGTGCTGTCTGCGCTGTGGTTGATCGACATCGACGACGACGTGGTGCGCGCCGCCTCGACGATCAGCACGGGGCAGCACCTGCGCTCGCTGGACGCCATCCACCTCGGAACGGCCACCTTGCTGGCGCCCGACGGCATCGCCGTGGTGACGCACGACTCGCGCATGAAGGAGGTCGCCGTCGGCCTGGGGCTGACCGTCGTCGATCCCGCCGAGTAGMVAYIDSSIALRMILDDPGSAAVRAWWTAARNAGEEIFSSKLLQVEMSRVLQRERFSLALSVPVLSALWLIDIDDDVVRAASTISTGQHLRSLDAIHLGTATLLAPDGIAVVTHDSRMKEVAVGLGLTVVDPAEPGPT0027605_924DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-VapC-VapB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027605-toxin_vapC_like-K07064NANA
AK018_04423861murR_1HTH-type transcriptional regulator MurRGTGACCTGGACCGGCTCGGCCGACGCACCCCTGACCGCCCGCATCGTGGCGCTCGCACCGTCGATGCACCCCGGCGAGCGCCGCGCGGCCGAGGCCATCGCCGCCGACCTGGACGCCGCCGTCGAACGCACCGCCCAACAGGTGGCCGACGACGTCGGGGTGGGCCGGGCGACCGTCGTGCGCGCCGCGCAGACCCTCGGGTACGAGGGCTACCCGCAGCTGCGCGTCGCCGTCGCCCGCGAGCTCGCGCTGCGCCCGGCGTCGGACGGCTCGCCCGACGGCACCATGCTCGGCGCGGTGCGCGAGTCCGTCGACCGGTTCGCCGCCCGCCTCGGGCACACCGTGGCCGGGCTGACCGAGGACGGCCTGCAGGAGTTCGTGCGCGTCCTCGACGACGCCCAACGCGTGCTCGTCGTCGCCAACGGGCTCTCCTCCCCGCTCGGCCTCGACCTCGTGCTGCGCCTGACGTCCGCCGGCCGGCCCGCCGAGCTGCTCCAGGACGCCCTCGCCCAGCGCATCGCGGCCCGGCAGCTCGGCCCCGAGGCCGTCTGCCTCGTCGTGTCCGGGTCCGGCGCCAACGAGGCCACGCTGGAGGTGATGCGGGCCGCGCACGACGGCGGCACCCCGGTCGTGGCCATCACCTCGTTCGCGCAGTCCCCCGTCGCCCAGCTCGCCGACACCGTGCTCGTCGTCCCGCCGGTCAACGAGTCGTTCCGCGACGAGCTGCTGCACACCTCCCGCGCGGCGCTGATGCTCATGATCGAGGCACTCGTCGAGGTGCTGGTCGCCCGGCGCGGCGAACGCGGGCGCGACGCCCGGGCCGCCGTCCTGCACGAGCTGGGCTCGGCGATCGAGGAGTAGMTWTGSADAPLTARIVALAPSMHPGERRAAEAIAADLDAAVERTAQQVADDVGVGRATVVRAAQTLGYEGYPQLRVAVARELALRPASDGSPDGTMLGAVRESVDRFAARLGHTVAGLTEDGLQEFVRVLDDAQRVLVVANGLSSPLGLDLVLRLTSAGRPAELLQDALAQRIAARQLGPEAVCLVVSGSGANEATLEVMRAAHDGGTPVVAITSFAQSPVAQLADTVLVVPPVNESFRDELLHTSRAALMLMIEALVEVLVARRGERGRDARAAVLHELGSAIEEPGPT0017985_632DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017985-hexR|yebK-K19337NANA
AK018_04424849hypothetical proteinATGAAGGCCGGCCTGGACTCCCGGTCCCCCGCCGCCACGTCACGCCCCGCCGGCGAGCGGCCCGCCTTGGCCCTGCCCCCACGCCCGTCGCGGCTCGGGCAGACCGTCGCGACCGCCGTCGTCGGCCTGGTGCTGCTCGTCTCCGCCGCGACCCTGGACGTCGAGTGGTCCGACCTGCGCGACCTGCCCGCCGCCGTGGCCGAGTACGCCACGCTGATGTTCGCCGACCCCGACTGGTCGCGCCTGCCGCGCGCCCTGTTCGAGATGTGGCGATCGATCTCCATGGCCTGGCTCGGCGCGATGCTCTGCGTCGTCGTGTCGATCCCGCTCGGCATGCTCGCCGCCCACGGCGTCGGACCGGCCTGGCTGCGCCTGGCCCTGCGAGGGCTCTTCGCCGTCATCCGCGCCGTGCCCGAGGTGATCATCGCCCTCGTGCTGCTCACCGTCACCGGTCTCACGCCGTTCACCGGCGCGCTCGCCCTCGGCATCGCCGGGATCGGCACCCAGGGCAAGTGGACCTACGAGACCGTCGAGACGCTGCGCGACGGTGCCGCCGACGCCGTGCGGGCCGCGGGCGGCGGCCGCACCGCCGTCGTCCGCTGGGCCCTGTGGCCCGCCGCGCTGCCCGCGCTGCTGTCCTTCGCCCTGTATCGGTTCGAGATCAACATCCGCATGTCCGCGGTGCTCGGCATCGTCGGCGCCGGCGGCATCGGCTCCATGCTGGCCAACTACACGAACTATCGTGAATGGGACACGGTCGGCATGCTGCTGATCGTGGTCGTCGTGACCACCATGGCCGTCGACGCCGTCTCGGGCGCGCTGCGCCGCCGCATCATGGAAGGGGCCTGAMKAGLDSRSPAATSRPAGERPALALPPRPSRLGQTVATAVVGLVLLVSAATLDVEWSDLRDLPAAVAEYATLMFADPDWSRLPRALFEMWRSISMAWLGAMLCVVVSIPLGMLAAHGVGPAWLRLALRGLFAVIRAVPEVIIALVLLTVTGLTPFTGALALGIAGIGTQGKWTYETVETLRDGAADAVRAAGGGRTAVVRWALWPAALPALLSFALYRFEINIRMSAVLGIVGAGGIGSMLANYTNYREWDTVGMLLIVVVVTTMAVDAVSGALRRRIMEGAPGPT0002530_1467DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042NANA
AK018_04425825hypothetical proteinGTGAGCCCGGGCACGACGGCGGAGCCCGCCGCGCGCCTCGACGTCCCGCCGCGTCCGCACACCTGGCCACGCCGCACCCTGATCGTCTCGGCACTGGCGGCGTTCACCGTGGCGACCTGCCTGCCCGCGATCGGCGGCGTCGAGATCGACCTGGCCGCCATCGCGCAGAACTGGCGCCACGGCGCGGCCAACCTGTCCGCGCTGCTGCAGCCGAACTGGTCGTTCGTCCCGCGCACGATCCAGCCGATGCTGGAGACCCTGCAGATGGCGTTCGTCGGCGCCGCGATCGCCGCCGCGCTGTCCGTGCCGCTGACGTTGTGGGCTGCCCGACCCACCAACCCGAACTCGGTCACCCGCACCGCGGTGCGCGCGGTCATCAACGTCGTCCGCGCCGTGCCGGACCTCGTCTGGGCGACCATCCTGGTGGCCATGGTGGGCGTCGGCGCGCTGCCCGGCCTGCTCACCCTCGTGCTGTTCGACGTCGGCATCGTGGTCAAGCTCGTTTCCGAGGCCATCGACTCCACCGACCACCCCTACCTCGAGGCCGCCCGCGCCGGCGGCGCCACCCAGGGCCGCATGAACCGCGCCCTCGCGCTGCCCCAGAGCCTGCCGCTGTTCAGCAACCAGTGGCTCTACGCCCTCGAGCTCAACGTCCGCATCTCGGCGATCCTCGGCATCGTCGGCGCCGGCGGCATCGGCCGGCTGCTCGACGAACGGTTCGGGTTCTTCGCCTACGGCGACGTCTCGGTCATCATCCTCGAGATCCTCGTCGTCGTGCTCCTCATCGAGGCCGCCTCGAACGTGCTGCGCCGGAGGCTCGCATGAMSPGTTAEPAARLDVPPRPHTWPRRTLIVSALAAFTVATCLPAIGGVEIDLAAIAQNWRHGAANLSALLQPNWSFVPRTIQPMLETLQMAFVGAAIAAALSVPLTLWAARPTNPNSVTRTAVRAVINVVRAVPDLVWATILVAMVGVGALPGLLTLVLFDVGIVVKLVSEAIDSTDHPYLEAARAGGATQGRMNRALALPQSLPLFSNQWLYALELNVRISAILGIVGAGGIGRLLDERFGFFAYGDVSVIILEILVVVLLIEAASNVLRRRLAPGPT0002530_2677DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042NANA
AK018_04426828phnC_2COG3638Phosphate-import ATP-binding protein PhnCATGACTCACGACACCCAGGCGGCGGAGGCCGGGCACGCCCCGGCCCCCGCCGCGTGGCCGATCCGCCTCGACGGCGTCTCGGTCACCTACCCCAACGGCACCACCGCCCTGCGCGACGTCTCCCTGGACATCGACGCCGGGGAGATGGTCTCGATCGTCGGCCTGTCCGGCTCGGGCAAGTCGACCCTGATCCGCACCATCAACGGCCTCGTGCCCGTCACGTCCGGCACGGTGACCGTCGGCCCGCACACCGTCTCCGGTCTGCACGGCCGCCGCCTGCGCGAGGTGCGCGGGCACGTCGGCATGATCTTCCAGGGCTTCAACCTGGCCACCCGGGTCGACGTCTACCGCAACACGCTGGTCGGCCGGTTCGCCCGCGCCGGGCGGCTGCGCACGCTCCTCGGCCTGGCGAGCGCCCGCGACCGCGAGGTCGCCCTGACCGCCCTGGACACCGTCGGCATGCTCGACAAGGTCTGGTCGCGGGCGGGGGCGCTGTCCGGCGGACAGCAGCAGCGTGTCGCCATCGCCCGCGCCCTGTCCCAGGAGCCGAGCATCATGCTCGCCGACGAGCCCGTCGCCAGCCTCGACCCGCCCACCGCGCACGCCGTGATGTCCGAGCTGGAACGCATCAACGCCGAACGCCACCTCACGGTGCTGGTCAACCTGCACCTGATGGACCTCGCCCGCCAGTACACCCGCCGCATGATCGGGCTGCGCGACGGCGAGCTCGTCTACGACGGCCCCGCGGCCGAGGCCACCGAGGCCGACTTCGAGCAGATCTACGGCCGCCGCATCCGCCCGCAGGACCGGCTCGGGGACCGCACGTGAMTHDTQAAEAGHAPAPAAWPIRLDGVSVTYPNGTTALRDVSLDIDAGEMVSIVGLSGSGKSTLIRTINGLVPVTSGTVTVGPHTVSGLHGRRLREVRGHVGMIFQGFNLATRVDVYRNTLVGRFARAGRLRTLLGLASARDREVALTALDTVGMLDKVWSRAGALSGGQQQRVAIARALSQEPSIMLADEPVASLDPPTAHAVMSELERINAERHLTVLVNLHLMDLARQYTRRMIGLRDGELVYDGPAAEATEADFEQIYGRRIRPQDRLGDRTPGPT0002520_618DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002520-phnC-K02041NANA
AK018_044271026hypothetical proteinATGCGCAAGTCCCTGCTCGCTCCCGTCGCCGCCGCGACGCTCGTCCTCGCGCTCGCCGGTTGTGCCGGAGCCGACGACGCCGGCAGCAGCGCCGACGCCGACTCCACCGACGCCGGCACCGAGTGGCCCGAGTCGATCACCATGTCGCTGGTGCCGTCCGTCGAGGGCGAGAACCTCGCCGAGGCGCTCGACCCGCTGACCACCTACCTCTCGGACGGCCTCGGCATCGAGGTCGAGGGCGTCGTCGCCAGCGACTACACCGCCACGGTCGAAGCGCTCGGCGCCGACCAGGCGCAGGTGATCATCACCGACGCCGGGTCGCTGTACCAGGCGACCGAGCGCTACGGCGCCGAGCTCGTCCTGCGCGACATCCGCTTCGGCGCCACGTCCTACGCGTCGGTCGCCTACACCAACAACCCCGACAAGTACTGCGAGGACGAGCCGGTGCTCGCCACCTACGAAGCGAGCGGCATCGAGCTGTCCTACTGCAACGGCCTGGAGGAGGCCGGCGCCGCCGCGACCGGACAGGGCCCGGCCGCCACCGACGTCTTCGGCGACCTCGCCGGAGCCGACGTCGCCCTGCAGGCCGCCACCTCCCCCGCGGGCTACCAGTACCCGGTGGTGCTCATGCGCGAGGCGGGCCTGGACACCGACGCCGACATCACCCAGATCCCCGTCGAGGGCAACAACAACGCCGTGCTCGCCGTCGCCAACGGTGACGCCGAGGTCGGCTTCGCCTACTGGGACGCCCGCACCACGGTCACCGAGGAGGTCCCCGACATCGCCGACAAGGCCGTGGCCTTCGCCTACACCGACATGATCCCCAACGGCGGCGTCGCCGTCACCGACACCCTGCCCGACGACCTCGTCGCCGAGCTCACCACGCTGATGGACGAGTACGCCGAGTCCTCCGACGAGGCCGCCGACGTCATGTTCGAGCTCGTCGGCCTGTCCGACTGGACGGCCGAGACCGCCGACGACGAGATCGCCCGCTACGGCGAGATCCTCGAGCAGTTCGCCGGCTGAMRKSLLAPVAAATLVLALAGCAGADDAGSSADADSTDAGTEWPESITMSLVPSVEGENLAEALDPLTTYLSDGLGIEVEGVVASDYTATVEALGADQAQVIITDAGSLYQATERYGAELVLRDIRFGATSYASVAYTNNPDKYCEDEPVLATYEASGIELSYCNGLEEAGAAATGQGPAATDVFGDLAGADVALQAATSPAGYQYPVVLMREAGLDTDADITQIPVEGNNNAVLAVANGDAEVGFAYWDARTTVTEEVPDIADKAVAFAYTDMIPNGGVAVTDTLPDDLVAELTTLMDEYAESSDEAADVMFELVGLSDWTAETADDEIARYGEILEQFAGPGPT0002525_546DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002525-phnD-K02044NANA
AK018_04428738hypothetical proteinGTGACCCCGACCATCCTGTTCGACTTCGACGGCACCCTCGCTGTCGGTGACGGCCCCGTGCTCACGTTCGCCCGGCAGGTCGCGGGACACGCCGGGCACCGGTACCTCGAACGAGTGATGGCCACGTTGCGCGACCACGACGCCGGCACGGCCACCCAGTTCCGCGACGGGTACGACGTCGTCGGCACTCTCGCCCGCCAGGACGGCGTCGACCCCACTGCTCTGCAGGACGCCTACCTCGCCAGCCGCCGCGTCCTCGGCACCCCCGAGGCGCCCGTCGACGCCGCCCCCGGGCTGGTGCAGCTCCTGGAAGCACTCCCCCGCACCACCCGTGTCGTTCTCGCCACGAACGCCCCCGGCGTCGGCGTCGAACGCCTCCTGACCACCTGGGGCGTCCGCGAGCGCTTCGCCGCCCTGCACTACGACGTCGGCAAACCCACCGGGCTCAGCCCGATCGTCGAGGCCGCCCTCGCTGGCGGTCCGGTGCTCGCCGTCGGGGACATCGTCGAGAACGACCTGGCGCCCGCCACGGCGCTCGGTGCCGCGACGGCGCTGGTCGGCCCCACCGCCGACGCGCCGCCCGCCACCGTGACGATGCACGCCCGGACCCTCGACGCCCTCGCCCCCGACATCACGGCGTGGGCCCGCCGAGCCAGCAACACAGCCACCACCGCAGCCACCCCCACGACCCACCCCGAGTCCGTGCCGACCGGCACGGCCGACTCCCTCGAAAGGTGAMTPTILFDFDGTLAVGDGPVLTFARQVAGHAGHRYLERVMATLRDHDAGTATQFRDGYDVVGTLARQDGVDPTALQDAYLASRRVLGTPEAPVDAAPGLVQLLEALPRTTRVVLATNAPGVGVERLLTTWGVRERFAALHYDVGKPTGLSPIVEAALAGGPVLAVGDIVENDLAPATALGAATALVGPTADAPPATVTMHARTLDALAPDITAWARRASNTATTAATPTTHPESVPTGTADSLERNANANANANA
AK018_044301920hypothetical proteinATGAAGCTCGTCACCGCGAATCTGCGCCGGTACCGCAGCATCGAAGATGCCAGCGCCTTCGAAGTGGAGGAGGGTGTAACCTGCTTGGTCGGCAAGAACGAGTCCGGCAAGACCGCCGTGCTCCAGGCGCTCTACAAGTCACATCCTGTTGACAAGGCGGTCTTCGACGAGGGTCTCGACTACCCGAGCAGGCTCACCCGCGAACGCAAGGGGTCAGACCCCATACCTGCGACGACTCTCACCTACCAACTTGAGGACGCTGATGTGGAAGCCGTCGAGGCGCACTTCGGCGATGGCGCACTTCCTGTCCGGTCACTTGAGGTGACCACTGGCTACCGCTACCGCGGCTCCACGTGGAGGATCGAGGTTGACGAGGCGGCGGTAGTCTCGCACTTGAGAACAGGGCTTGATCTGCCGCAAGCCACCATGTCCGCTGTCAACGCCGCCGCGACCACGGCAAGTTTGGTCGAGGCGCTCGCAGCCATGGAAGCCCCCACAAACGCGACCAAAAGAGTCGTAGAGAACGTCTCCGGCTGGCGCAAATCGGATGCGGAGTTGGCCATCATCGACCTCCTCGACGAGCGACGCCCGAAGTTCGTCTACTTCGGCGACTACGACTCGATGCCGGGGAAAGTATCAATCCCGGACATGATCCGCAAGCGTGACGACGAAGGCCTGAGCCGTGGCGAAGAGGGCATCATGGCACTGCTTGACATGGCTGGCGTCGAGTTGGAGGACTTTCTAAAGCCCGAGTCTCACGAACACCTGATCCGTGATCTGGAGAACGCCTCTAACTCGATCTCCGACGAGGTCTTCGAGTACTGGACTCAGAATAAGAACCTCGCCGTACGGCTCGACATCATTGGCAAGCCTGAGGAAGGAGCGGCCCCTCCGCTCAACCAGGGCCCCCTACTCCAGATCCGCGTCGTGAACCAGCGCCACAACGTGAGCGTCCCTTTCGACGAGCGCTCTAGAGGATTTGTATGGTTTTTCTCTTTCCTCGCATACTTTTCACAACTGGAGGAGAAGGCTGACCAGCAGCTCATTCTTCTGCTGGATGAGCCCGGACTGAACCTGCACGCCACCGCCCAAGGCGACCTACTTCGCTTCATCGACGAACGTCTTGCCCCGCAGCACCAGGTTCTTTTCAGCACACACTCGCCATTCATGATCGACGCGCACCAGTTCTCACGGGTCAGAACTGTCGTTGACGACGAAAAGCACGGCACGCTGGTTTCGGCCGACGTCTTGAAAGCAGACCCTGAAACCGCGTTCCCGCTGCACGCGGCGTTAGGTGTCGAGCTCTCACAGACGCTCTTTGTGGGGCCAAACGTCCTACTCGTGGAAGGTCCCGGGGACCTCCTGTATCTTGAAGTCCTTTCAAACGCACTCAAGGCCCGCGACCGCACAGGCCTCGACGACCGGTTCGTCATAACCCCGGCGGGAGGCGTGGCGAAGCTCCCAGCATTCGTTACCCTCCTCGGCGCCAACAAACTCAACACCGTCGTCCTGGTCGACTCGTCGACCTCCGACACTGCCCCCGTCGAGCGTCTTCGTGAGACCGGGCGCCTCGGTGATGGCGGCCTCGTCGAGATCGGCGATCTACTCGACCAGCCGGATGCAGACATCGAAGACCTCTTCGACGCAGGCTTCTTTGTCGATCTCGTGAACGAGGCCTACCAGGGGCTTCTCGCTGGCGAGAAACTGACTGTCAAAGAACTCCCTCAGGACAAGCGCCTCGTGCGCAGGGTAGAGCGCGCCTTTGAAGCCCGGGGGCTCAACAACGGTCGCATCAACCACTACTCGCCCGCCGCGGCATTGTCCCGCAACTACGGCAAGTTCGTCCCGAAACTCAGCGAGCGCTCACTCGACCGCGCAGAGAGACTGTTTTCTCAAGTCAACAGCTTTCTGAACGGTTGAMKLVTANLRRYRSIEDASAFEVEEGVTCLVGKNESGKTAVLQALYKSHPVDKAVFDEGLDYPSRLTRERKGSDPIPATTLTYQLEDADVEAVEAHFGDGALPVRSLEVTTGYRYRGSTWRIEVDEAAVVSHLRTGLDLPQATMSAVNAAATTASLVEALAAMEAPTNATKRVVENVSGWRKSDAELAIIDLLDERRPKFVYFGDYDSMPGKVSIPDMIRKRDDEGLSRGEEGIMALLDMAGVELEDFLKPESHEHLIRDLENASNSISDEVFEYWTQNKNLAVRLDIIGKPEEGAAPPLNQGPLLQIRVVNQRHNVSVPFDERSRGFVWFFSFLAYFSQLEEKADQQLILLLDEPGLNLHATAQGDLLRFIDERLAPQHQVLFSTHSPFMIDAHQFSRVRTVVDDEKHGTLVSADVLKADPETAFPLHAALGVELSQTLFVGPNVLLVEGPGDLLYLEVLSNALKARDRTGLDDRFVITPAGGVAKLPAFVTLLGANKLNTVVLVDSSTSDTAPVERLRETGRLGDGGLVEIGDLLDQPDADIEDLFDAGFFVDLVNEAYQGLLAGEKLTVKELPQDKRLVRRVERAFEARGLNNGRINHYSPAAALSRNYGKFVPKLSERSLDRAERLFSQVNSFLNGNANANANANA
AK018_044313609metH_1COG0646Methionine synthaseGTGACCTCCACGCTCGACATCGCAGCTGCCGACGCCCGTTCCGCCGCCCTGCGCGAGGCGCTGCGCACCCGGGTGGTGGTGGCCGACGGCGCCATGGGCACCATGATCCAGGCCGCCGACCCGACCATGGAGGACTACCAGCAGCTCGAGGGCTGCAACGAGATCCTCAACGTGACCCGCCCGGACATCGTGCGCGGCGTGCACGACGGGTTCCTCGAGGTCGGCGTGGACGCGATCGAGTCGAACACGTTCGGTGCGAACTGGTCGAACCTGTCGGACTACGGCATCGACGACCGCATCCGCGAACTGGCCCGCGTCGGCGCGGAGCTGGCCCGCGAGCGCGCCGACGTCTACGCGACGCCGGACCACCCGCGCTGGGTGCTGGGTTCGATGGGTCCGGGCACCAAGCTGCCCTCGCTGGGGCACACCACGTACGAGAACCTGCGCGACACGTTCGCCGAGCAGGCCGCCGGGCTGCTGGAGGGCGGCGCGGACGCGATCCTGGTGGAGACCAGCCAGGACCTGCTGCAGACCAAGGCGGCCGTGACGGGCGCGCACGAGGCGATGCGCGCCGTCGGACGCACCGTGCCGGTGATCGCCTCGGTGACGGTGGAGACCACCGGCACCATGCTGATGGGATCGGAGATCGGGGCGGCGCTGACGGCGCTGCAGGCCGTCGGCGTGGACGCCATCGGCCTGAACTGCGCCACCGGCCCGGAGCAGATGAGCGAGCACCTGCGCTACCTGGCCAAGCACGCCGAGGTGCCGGTCACGTGCATGCCGAACGCGGGGCTGCCCGAGCTCGGCCCGCACGGCGCCGTCTACCCGCTGACCCCGGACGAGCTGGCGGCGGCGCACAGCCAGTTCGTCGACGAGTTCGGCCTGGGCATGGTGGGCGGCTGCTGCGGCACGACGCCGGAGCACCTGGCGCGCGTCGTCGACGCGGTGCGCGGTCGCCCGCTGCCGGAGCGCGAGGTGGAGCGCACCAGCGGTGTCGCGTCGCTGTACTCGCACACGGACCTGTCCCAGGACGCCTCGTACCTGGCGATCGGTGAGCGCACCAACGCCAACGGCTCCAAGGCGTTCCGCGAGGCGCTGCTGGAGGGCCGCTGGGACGACATCGTCGACATCGCCCGCGACCAGACGCGGCACGGCGCCCACCTGCTGGACGTGTGCGTGGACTACGTGGGGCGCGACGGCGTCGCGGACGTGCGGGAGGTCGTCTCGCGGCTGGCGAGTGCCTCGACGCTGCCCCTGGTCATCGACTCCACCGAGCCGGAGGTGATCCGCGCCGGCCTGGAGCTGGTGGGCGGGCGCGCCGTGGTGAACTCGGTGAACTTCGAGGACTCCGACGGCCCCGGATCGCGGTTCCAGCGGATCATGCCGGCCGTGCGCGAGCACGGTGCCGCCGTCGTCGCCCTGACCATCGACGAAGAGGGCCAAGCCCGCACCACGGAGAAGAAGGTCGCGATCGCCTCGCGCCTCATCGACACCCTGACCCAGCAGTGGGGCATGCGGGTCGACGACATCATCGTCGACGCCCTGACGTTCCCCATCGCGACCGGGCAGGAGGAGACGCGGCGCGACGCCATCGAGACGATCGAGGCGATCCGCGAGATCAACCGGCTCTACCCCGGCGTGCACACCACGCTCGGTGTCTCGAACGTGTCGTTCGGTCTCAACGCGGCCGCGCGCACGGTGCTGAACTCGGTGTTCCTGCACGAGGCCACGCAGGCCGGGCTGGACTCCGCCATCGTGCACGCCGCGAAGATCCTGCCGCGCACCGCCATCGACGACGAGCAGTGGCAGGCCGCCGAGGACCTCGTGTGGGACCGGCGGCAGTACGACGACGAGGGCAACCTGACCCACGACCCGCTGTCGCACCTGCTCGAGGTGTTCTCTGGCGTCGACGCCGCCGCGATGCGCGACCAGCGGGCCGCCGAGCTCGCCGCGCTGCCCGTGGGCGAGCGGCTGGAACGCCGCATCATCGACGGCGCCCGCAAGGGCCTCGAGGACGACCTGGACACCGCGCTGGCCGACGGCATGAAGGCCCTCGACATCGTCAACACCCACCTGCTGGGCGGGATGAAGGTCGTCGGCGAGCTGTTCGGGTCCGGGCAGATGCAGCTGCCGTTCGTGCTGCAGTCCGCCGAGGTCATGAAGACGGCCGTCGCGCTGCTCGAGCCGCACATGGAGAAGGTCGAGGGCGCCGAGGAGCAGTCCAAGGGCGTCATCGTGCTGGCGACCGTGCGCGGCGACGTGCACGACATCGGCAAGAACCTCGTCGACATCATCCTGACGAACAACGGCTACACGGTGGTCAACATCGGCATCAAGCAGCCGATCTCGGCCATGATCGAGGCCGCCGAGGAGCACGGCGCCGACGTCATCGGCATGTCCGGGCTGCTGGTGAAGTCGACCGTGGTGATGAAGGAGAACCTCGAGGAGCTGGTCTCGCGCGGCATGGAGAAGCGCTGGCCGATCCTGCTCGGCGGCGCGGCCCTGACCCGCACCTTCGTCGAGGACGACCTCGCCTCAGCGTTCCCCGGCGTCGTGCGGTACGCCCGCGACGCCTTCGAGGGGCTGCGCCTCATGGAGCCGCTGGTCGCCGTCGCGCGCGGCGCCGACCCCGAGGAGGTCGGGCTGCCGGCGCTGCGCAAGCGCCGCCACAACGTCGTCAAGGTGACCGAGACCGCGGTCGAGGACCTGCCCGAGCGGTCCGACGTCGCCACCGACAACGAGGTGCCCGCTCCCCCGTTCTGGGGCACGCGCGTGGTCAAGGGCATCCAGCTCGCCGACTACGCCGCGTTCCTCGACGAGCGCGCCACGTTCATGGGCCAGTGGGGCCTCAAGCCCGGTCGCGGAGAATTCGGCGCCTCCTATGAGGAGCTCGTCGAGACCGAGGGCCGGCCGCGCCTGGCCCAGTGGCTCGACACGATCCGCACCGACCAGATCATGGACCCGACCGTCGTCTACGGGTACTTCCCCGTGTGGTCCGAGGGCGACGACATCGTCGTCGCGCATCATGGGCCCGGCCTGCGCGGGCCTTCCGGAGAGCTCCAGTCGCCCGACGGCGGATCCGGTGGCGAGCCCGGGACCGAGCGGCTGCGCTTCACGTTCCCGCGCCAGAAGCGCGACCGGCACCTGTGCCTGGCCGACTTCGTGCGCCCCAAGTCGTGGGTCGAGGAGACCGGCCGCTACGACGTGCTGCCCATCCAGCTCGCCACCGTCGGCGAGCCGGTGTCCGCGTACACGGCGAAGCTGTTCGCCGAGAACAAGTACCGCGAGTACATGGAACTGCACGGGCTGTCCGTGCAGCTCACCGAGGCGCTGGCCGAGTTCTGGCACTCCCGCGTGCGCTCCGAACTCGGGTTCGGCGACGAGGACCCCGACCACGTCGAGGGCATGCTCAAACTCGAGTACCGCGGGGCACGGATGTCCCTCGGCTACCCGGCGTGCCCCGACATGGAGGACCGCACCAAGGTCGTCGAGCTACTGCGTCCCGAGCGAGTCGGTGTCACGCTGAGCGACGAGCTGCAACTGCACCCGGAGCAGTCCACGGACGCGTTCGTGCTGCATCATCCCGAGGCGAAGTATTTCTCCGTGTGAMTSTLDIAAADARSAALREALRTRVVVADGAMGTMIQAADPTMEDYQQLEGCNEILNVTRPDIVRGVHDGFLEVGVDAIESNTFGANWSNLSDYGIDDRIRELARVGAELARERADVYATPDHPRWVLGSMGPGTKLPSLGHTTYENLRDTFAEQAAGLLEGGADAILVETSQDLLQTKAAVTGAHEAMRAVGRTVPVIASVTVETTGTMLMGSEIGAALTALQAVGVDAIGLNCATGPEQMSEHLRYLAKHAEVPVTCMPNAGLPELGPHGAVYPLTPDELAAAHSQFVDEFGLGMVGGCCGTTPEHLARVVDAVRGRPLPEREVERTSGVASLYSHTDLSQDASYLAIGERTNANGSKAFREALLEGRWDDIVDIARDQTRHGAHLLDVCVDYVGRDGVADVREVVSRLASASTLPLVIDSTEPEVIRAGLELVGGRAVVNSVNFEDSDGPGSRFQRIMPAVREHGAAVVALTIDEEGQARTTEKKVAIASRLIDTLTQQWGMRVDDIIVDALTFPIATGQEETRRDAIETIEAIREINRLYPGVHTTLGVSNVSFGLNAAARTVLNSVFLHEATQAGLDSAIVHAAKILPRTAIDDEQWQAAEDLVWDRRQYDDEGNLTHDPLSHLLEVFSGVDAAAMRDQRAAELAALPVGERLERRIIDGARKGLEDDLDTALADGMKALDIVNTHLLGGMKVVGELFGSGQMQLPFVLQSAEVMKTAVALLEPHMEKVEGAEEQSKGVIVLATVRGDVHDIGKNLVDIILTNNGYTVVNIGIKQPISAMIEAAEEHGADVIGMSGLLVKSTVVMKENLEELVSRGMEKRWPILLGGAALTRTFVEDDLASAFPGVVRYARDAFEGLRLMEPLVAVARGADPEEVGLPALRKRRHNVVKVTETAVEDLPERSDVATDNEVPAPPFWGTRVVKGIQLADYAAFLDERATFMGQWGLKPGRGEFGASYEELVETEGRPRLAQWLDTIRTDQIMDPTVVYGYFPVWSEGDDIVVAHHGPGLRGPSGELQSPDGGSGGEPGTERLRFTFPRQKRDRHLCLADFVRPKSWVEETGRYDVLPIQLATVGEPVSAYTAKLFAENKYREYMELHGLSVQLTEALAEFWHSRVRSELGFGDEDPDHVEGMLKLEYRGARMSLGYPACPDMEDRTKVVELLRPERVGVTLSDELQLHPEQSTDAFVLHHPEAKYFSVPGPT0008135_1782DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008135-metH-K00548NANA
AK018_04432192hypothetical proteinATGGGTCGTGACCTGAGCACTGCCGAGGGACGCCGGGACGCGGTCCTGGACACCATGGGTTCCTTCGCGCTTGAAGGCATGGAACCCACCGATGAAGAGCGCGAGTGGGCACGCCTGTACATCGCAGGCAAGGTCTCGATCGAGGACTCGTTGAAGACCCTGGATCAGCAGTACGGCAGGTCGAGTGACTGAMGRDLSTAEGRRDAVLDTMGSFALEGMEPTDEEREWARLYIAGKVSIEDSLKTLDQQYGRSSDNANANANANA
AK018_044331119mshD_4Mycothiol acetyltransferaseATGGCCACGACCACCCCGAGCCTCGCCCCGATCGCCGAGCGCGCCGCCGCACCCGAGACGCTGCCCGCGATCACGGCGGGCGGTCTGACGTGGCGTCCCGCCACCGCGGACGACGTCCCGGCACTGCTTGAGCTGCGCAACACCATCGCCGCAGCCGACAAGGAGCCCTACCGCGAGAGCCTTGAGGAGATCACCGAGCTGTTCGCCGCGCCCTGGCGCCGGTTCGACGTCGACTCGATCGTCGGCCTGGACGACGACGGCCGGATGCTCGCGTACGCGATGGTCGAGTCCCAGCCCGGCGACACCCGCACCATGCGCGCCTTCCTCTTCGGCGGTGTCCACCCGTCCGTGCGCTGGCAGGGGATCGGCCGCGAGCTGTTCGCCTGGCAGGTTGCCCGCGGGCGCCAGGTGCTCGCCGAGTCCGGCAAGGACCTGCCCGCCCGCCTCGGCGTGTTCGTCGAGGACGACGGCCCCGCCGCCAAGCGCCGCATCATCGAAGCCGCCGGGTTCGCCCCGCGCCGGTACTACACCGAGCTGCGCCGCGACCTGCGCGACCTGGCCGCCCAGCCGCTGCCCGACGTCAAACCCGCCGGGGGACTGCGCGTCGTCGCCTTCAGCGACGAGCTCGACGAGGCCACCCGCCTGGCCCACAACGACGCCTTCCGCGACCACTGGGGCAGCGAACCGCAGACGCCCGAGCAGTGGCGCACCGGCCGCACCGCGTTCATGCCACAGTGGTCGTTCGTCGTCGTCGACGACGCCCCCGACGTCACCGCACTGCTCGCCGACCCCGACACCGACGCCGAGACCGCCGCCGCGCTGCAGGCCGGCGAACCCCTCGTCGTCGCCTACGAGATGGCGTCCAAGTTCACCGAGGACTTCGCCGTCAAGGGCTACACGTTCGGCTACACCGAGCTGCTCGGCACCCGCCGCGCCTACCGCGGACGCCGTGCCGGCCTCGCCGCGCTCGCCGCCGGCATGCGCGCCTTCGTCAACGACGAGATGGAGTACGCCGCCCTCGACGTCGACACCGCCAACCCGTCCGGGGCGCACGGGATGTACGCGAGCCTCGGCTACGAGGTCACCACCTCCTCGACGATGCTGTCGATCGAGCTGTAGMATTTPSLAPIAERAAAPETLPAITAGGLTWRPATADDVPALLELRNTIAAADKEPYRESLEEITELFAAPWRRFDVDSIVGLDDDGRMLAYAMVESQPGDTRTMRAFLFGGVHPSVRWQGIGRELFAWQVARGRQVLAESGKDLPARLGVFVEDDGPAAKRRIIEAAGFAPRRYYTELRRDLRDLAAQPLPDVKPAGGLRVVAFSDELDEATRLAHNDAFRDHWGSEPQTPEQWRTGRTAFMPQWSFVVVDDAPDVTALLADPDTDAETAAALQAGEPLVVAYEMASKFTEDFAVKGYTFGYTELLGTRRAYRGRRAGLAALAAGMRAFVNDEMEYAALDVDTANPSGAHGMYASLGYEVTTSSTMLSIELNANANANANA
AK018_04434693hypothetical proteinGTGACCGACGTCGTCCCTGATCAGCGCTCCCGGCTGTCCCGCAGCGCCCTCGTGGCGCTCGTCGTGCTCGGCGCCGCCACCGCCACGAACCTCGCCGCGCAGCTCCTCGGCGCCGCCACGCTCGCCGAGACCTCCCAGTGGTTCCTCATGCCGGCGCTCGCGGCCGTGCTGTGGTGCACGACGGCGGCACCCCGGTCGCGCCTCGAGCGTCTCGTCCTGCTGGCGCTCGGCTTCTCCTGGGTCGGTGACGTGCTGCCCGACTTCTTTACCGGCGACGCCGCCTTCCTCGCGATGGTCGGCGGGTTCCTGTGCGCGCAGGTCGTCTACGCCGTCGCATTCCGGCCCTTCTGGCGCGAGTCGGTGCTCCACCTGCACCCGGCGGCCGGCGCGGTGTACGGGTTCCTGGCGATCACGCTGGTCACGCTGTGCCTGCCGGGCACGTCGGGACTGCTGTCGCTCGCCGTCGTCGTCTACGCCGCCTGCCTGACCGCGATGGCTGTGCTCGCCACCGGCGTGCACCGGCTCACCTGGGTCGGCGCGCTGCTGTTCCTCTTCTCCGACGCGCTCATCGCGCTCGGAGCGTTCGCCGGCTTCGCCCCGCCCGCGTCCGGATTCTGGGTGATGGCCACCTACGTGCTCGGCCAGGCGCTCATCGTGGCCGGCGTGGTCAGTCGGGGCGGCGCTCGACGATAGMTDVVPDQRSRLSRSALVALVVLGAATATNLAAQLLGAATLAETSQWFLMPALAAVLWCTTAAPRSRLERLVLLALGFSWVGDVLPDFFTGDAAFLAMVGGFLCAQVVYAVAFRPFWRESVLHLHPAAGAVYGFLAITLVTLCLPGTSGLLSLAVVVYAACLTAMAVLATGVHRLTWVGALLFLFSDALIALGAFAGFAPPASGFWVMATYVLGQALIVAGVVSRGGARRNANANANANA
AK018_04435414hypothetical proteinGTGACCGCGTACGAGTTCTCCGCCGATCCCGCCCGCCTCGACGTCGACTGGGTCCACACGATCCTGTCCACGACGTTCTGGGCCCGCGGGCGCTCGCGCGCCACCATGGACACCGTCATCGCGGCGTCGCGCAATTACGCGATGTACGCCGACGACGGCGCCCAGGTCGCCTACGCCCGCGCCGTGACGGACGGAGCTACCTTCGCCTGGGTGGCGGACGTCGTCGTCGACCCGGCGCACCGCCGCCAAGGACTCGGCACCCGGATCGTCGACGGCCTCATGGCCGACCTGGAGAGCCTCGGCCTGAAGCGGGTGCTGCTCAAGGCGTCGCCGGACGGCCACGAGCTCTACCGCCGCGCGGGCTTCGACACCCTCGACGAGCCGGAGACCTGGCTGGGCCGACGCCTGCGGTGAMTAYEFSADPARLDVDWVHTILSTTFWARGRSRATMDTVIAASRNYAMYADDGAQVAYARAVTDGATFAWVADVVVDPAHRRQGLGTRIVDGLMADLESLGLKRVLLKASPDGHELYRRAGFDTLDEPETWLGRRLRNANANANANA
AK018_04436705hypothetical proteinATGGACATCATCCTGGTTCCGGGCTTCTGGCTGGACGCGTCCGCGTGGGACGCCGTCACCCCGCCGCTCGTCGCGGCGGGGCACACCGTGCACCCGCTGACCCTGCCCGGCATGGAGTCCGTGGACGCCGACCGCTCGGGCATCACGCTCGCCGACCACGTCGACGCCGTCGTGGCCGCGGTCGATGCGCTGCCCGGCGCTGAGGTGGTGCTGGTAGGGCACTCGGCCGGCGGGCCGCTGGTCTACGCGGCCTCGGACGCCCGGCCGGGCCGCGTCCACCGGGTCGTGTACGTCGACTCCGGGCCGCTCGCCGACGGGCAGGCGCTGAACGCCGACCTGCCCGCCGACGTCGTCGACCACGATCTGCCGCCCTGGGAGGAATTCGATGAGGCGTCGCTGACCGGGCTCACCGACGAGCTGCGCGCAGAGTTCCGGGTACGCGCGATCCCACAGCCCGGCGGGACCGTGCGCGAACCGCACCGGCTCAGCGACGACGAGTCCCGGCTGGAGGTGCCCACCACCGTCATCGCCTCGGAGATGTCGGCCGACGTGCTGCGCGACCTCATGACCCAGGGTCACCCGTACGTCGCCGAGCTGGCCCGGCACCGCGACTACGAGATCGTCGACCTATCCACCGGGCACTGGCCGATGTTCACCCGTCCGGTCGATCTGGCGGAGGCGATCGCCGCCGCCGTCGAGCGCTGAMDIILVPGFWLDASAWDAVTPPLVAAGHTVHPLTLPGMESVDADRSGITLADHVDAVVAAVDALPGAEVVLVGHSAGGPLVYAASDARPGRVHRVVYVDSGPLADGQALNADLPADVVDHDLPPWEEFDEASLTGLTDELRAEFRVRAIPQPGGTVREPHRLSDDESRLEVPTTVIASEMSADVLRDLMTQGHPYVAELARHRDYEIVDLSTGHWPMFTRPVDLAEAIAAAVERNANANANANA
AK018_044371608stp_4Multidrug resistance protein StpATGGGCCGAGCCCAGGACGGCAGCCCCGGGCAGTCGTCGTCCGCCACCAGCACCGCCACCGACGCCGCGCCACGCCGCATCGTCCTGGCGGCGCTGATCCTCGTCGCGGCGGTCGCCAACCTGAACCTCGCCGTGGCCAACGTCGCCCTGCCGGACATCGGCGACGCCCTGGACGCCTCGCAGGTGGACCTCAACCTCATCGCGGTGGGCTACTCGCTGGGACTGTCGGCCTCGGTGCTCTACCTCGGCGCGGTCGGGGACCGGTACGGCCGCACGGCGTTGCTACTGCTGGGCACCGCGGGCGCCGTCCCGTTCAGCCTCCTGGCCGCGTGGGCGCCGTCGACGGAGATCCTCTTCCTCGCGCGGGTCGGAGGCGGGCTGTGCGCCGGCATGGCGTTCCCGACGACGCTCGCGCTCGTCTCGGCCCTCTGGTCGGGGCAGGCGCGGACGCGGGCGATCGCCCTGTGGTCCGGCATCGGTGCCGCGTTCGCGGCGCTCGGGCCGCTGGCCGCCGGCTGGGTGCTGACCGAGTTCTGGTGGGGGTCGGTGTTCCTGCTGACGATCCCGCTGGCGGTCTTCGCCCTGGTCCTGGCGTGGATCGTGGTTCCCTCCCACGTCAACGAGAGCACCGAGCCCGTCGACCACCTAGGCGGCGTGCTGTCCGTGCTACTGGTCGGGTCGCTGGTCATGGCCATCAACCTCACCGTGCTGCCGGGCGAGGGCGTCGTCATCGCCATCCTCGTCGGCGTGGTGCTCGTCGCGGGCACCGGTTTCGTCCTGCGGCAGCTGCGCACCGCGAAACCCCTGTATGACCTGCGCGTCGCCGCCCGGCCGACGTTCTGGGTGGCGGCCGTCGCCGGGCTCGTGATCTTCGGGTCTCTCATGGGTGCGATGTACGTGGGCCAGCAATACATGCAGAACGTCCTGGGGTACAGCACCGTCGCGGCCGGAGCGGCGATCCTGCCGGGCGCCGTCGGCATGGTGCTCGTCGCGCCGCGCTCGGCCACGTTCGTCGTGCGCTACGGGTCACGGGTCACCATGCTCAGCGGCTACGTGTTCGTGCTGGCCGGCTTCCTCGTGATGCTCCTGCTGTGGACCGAGGACGCGGCCTACTGGCCCGTCGGGCTCGGGTACTTCCTGGTCGGCGTCGGCGTGGGCCTCTCGGGCACCCCGGCGTCCAACTCGCTGACCGGCTCGGTCCCGGTGCAGCGCGTGGGCATGGCGTCCGGGACGGCGGACCTGCAGCGCGACCTCGGCGGCGCCATCATGCAGTCGGTGTTCGGCTCGCTGCTCGCGTCCGGGTACTCCGGGTCCATCGCCGCGCAGATCAGCAGCTCACCCGACGCGTCGAAGGTCACGGCGACCACCGAGGCCGCCCTGCAGAAGTCCTTCGCCGGTGCCGAAGCGATCGCCGCCCGCTACCCGCAGTACGCCGACCAGATCACCTCGGCGGCCCGCGAGGCGTTCCTCGCGGGAGACCAGTGGGCCTACCTCGCCGGCATCGCGGCGGTGCTGATCGGTGCCGCGCTGGTGGCGATCTTCTTCCCGCGCCACGCCCGCGAGCGCGAGCTGCACGCCGCCTACCAGCCGCCGGAGACGACGACCTGAMGRAQDGSPGQSSSATSTATDAAPRRIVLAALILVAAVANLNLAVANVALPDIGDALDASQVDLNLIAVGYSLGLSASVLYLGAVGDRYGRTALLLLGTAGAVPFSLLAAWAPSTEILFLARVGGGLCAGMAFPTTLALVSALWSGQARTRAIALWSGIGAAFAALGPLAAGWVLTEFWWGSVFLLTIPLAVFALVLAWIVVPSHVNESTEPVDHLGGVLSVLLVGSLVMAINLTVLPGEGVVIAILVGVVLVAGTGFVLRQLRTAKPLYDLRVAARPTFWVAAVAGLVIFGSLMGAMYVGQQYMQNVLGYSTVAAGAAILPGAVGMVLVAPRSATFVVRYGSRVTMLSGYVFVLAGFLVMLLLWTEDAAYWPVGLGYFLVGVGVGLSGTPASNSLTGSVPVQRVGMASGTADLQRDLGGAIMQSVFGSLLASGYSGSIAAQISSSPDASKVTATTEAALQKSFAGAEAIAARYPQYADQITSAAREAFLAGDQWAYLAGIAAVLIGAALVAIFFPRHARERELHAAYQPPETTTPGPT0028045_81DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167NANA
AK018_04438519hypothetical proteinATGACGGGTCGCGCCACGGCCCGTCCGACGCCGGTCGCGGCGGCGGTGCTGACGGTGGCGGCCGCGCTGCTGGCCGGGTGCGGGGCGGACGACGGCGCGACGACGGCGGCACCGGCGTCGGACGCGTCGCCGTCGGCCGCTTCCTCGGCGGACCCGGCGCAGGCCGCCTCCCCAGAGCCCGCAAGCGCTGCCGACGTCTCGGAACCACCGGCCACGGACGACGGCGGTGACGAGCCTGATGTCGACGCCTTCTGCGCGACGGCGGCGCCCGCCCTGCGGGTCGTAGACCGCGAGGTGATCGGCTCGACCGAGCACGTCGAGATGCTGGAGGCGGTCGGCACCTCTGCCGCCGAGGACCTGGGCGACGACGACCTCGCCGCCGACGTCGCGGACCTCGCCGAGCACTACGCCACGGACGTCTCCCCCGCCGACCCGGAGTCGCAGAACTTCGACGCCTTCCCCGCGCGCGTCCAGGAGCTCGCGCTGGACGTGCAGGAGTCGGTCACCGACCTGTGCTGAMTGRATARPTPVAAAVLTVAAALLAGCGADDGATTAAPASDASPSAASSADPAQAASPEPASAADVSEPPATDDGGDEPDVDAFCATAAPALRVVDREVIGSTEHVEMLEAVGTSAAEDLGDDDLAADVADLAEHYATDVSPADPESQNFDAFPARVQELALDVQESVTDLCNANANANANA
AK018_044392487gyrA_2COG0188DNA gyrase subunit AATGGCGCGCAAGAAGGCCGCACCCGTCGCCGACGAGCCGTACGACGAGACCATCGTCGACATCGACGTCGCCTCGGAGATGGAGACGTCGTTCCTCGAGTACGCGTACTCGGTGATCTACTCGCGCGCCCTGCCGGACGCGCGCGACGGCCTCAAGCCGGTGCACCGCCGCATCCTGTACATGATGGCGGACATGGGCCTGCGGCCCGACCGCCCGTATGTGAAGTCCTCGCGCGTGGTCGGCGAGGTGATGGGCAAGCTGCACCCGCACGGTGACGCCGCGATCTACGACGCGCTGGTGCGCCTCGCGCAGGACTTCTCGATGCGGCTGCCGCTGGTGGACGGGCACGGCAACTTCGGTTCGCTCGACGACGGTCCGGCCGCTCCCCGGTACACGGAGGCCCGCAGCGCGACGGCCGCGACGGCGATGACGCGCGGCCTGGACGAGGACGTCGTCGACTTCGTCCCGAACTACGACAACAAGCTCACCCAGCCGGAGGTGCTCCCCGCGGCTATCCCGAACCTGCTGGTCAACGGGGCGTCCGGCATCGCGGTGGGGATGGCCACGAACATGCCGCCGCACAACCTGGTCGAGGTGATCTCGGCGGCGCAGCACCTGCTGGCCAACCCCGAGGCGTCGCTGGACGACGTCATGCGGTACATCCCGGGCCCGGACTTGCCCACGGGCGGCAAGATCGTGGGGCTCGACGGCGTCCGGGACGCCTACCGCACGGGTCGCGGCTCGTTCCGCACCCGGGCCACCGCGCGGATCGAGAACGTCACCGCGCGCCGCAAGGGCATCGTCGTCACCGAGCTGCCGTACACGGTAGGCCCGGAGAAGGTGATCGAGAAGGTCGCCGACGGCGTGAAGAACAAGAAGATCCAGGGCGTCACCAACGTCCAGGACCTCACGGACCGCACCCACGGCATGCGGCTGGTGATCGAGGTCAAGACGGGGTTCGACCCGGACGCCGTGCTGGAGCAGCTCTACCGGACCACGCCGCTGGAGGACTCCTTCGGCATCAACAACGTGGCGCTCGTGGACGGCCAGCCGCGCACGCTCGGGCTGGTGGACCTGTTGCGCGTGTGGGTGGACCACCGCGTCGACGTGGTGCGCCGCCGGTCGACGTTCCGTCTCGGCAAGCGCCGTGACCGCCTGCACCTGGTCGAGGGTCTGCTGGTCGCGATCCTGGACATCGACGAGGTCATCCAGGTGATCCGGTCCTCGGACGACGCCGGTGCGGCCCGCGAGCGCTTGCAGTCGGTGTTCGACCTGTCCGAGCCGCAGGCCTCCTACATCCTGGACCTGCAGCTGCGCCGCCTGACCAAGTTCTCGCGGATCGAGCTGGAGTCGGAGAAGTCGGAACTGGAGGCGGAGATCGCCGAGCTCGAGGCGATCCTGGCCGACGAGGCGCGGCTGCACGGCGTCGTCTCGGACGAGATGGCGGAGGTCGCGGCGACGTACGGCACGCCGCGCCGCACGGTGCTGCTGGACTCGGCCGGGGGCACGGCGTCGTCGGCGGCGTCGGTGCCGGCGCGCGGCAAGAAGGCGCCTGCGCTGGACCTGGAGATCAAGGACTCCCCCACGCGCGTGCTGCTGTCCGCGACGGGTCTGCTGGCCCGCACGTCGGGCGAGGGCGCGGACGCTCCCGTGGAGCGGGCGGGCCGTCGCCACTCACACGACGCGCTGCGCGGTGACGTCGCGGCGATGACCCGCGCCGACGTCGGGCTGATCACCTCGGCCGGGCGGTTGCACCGGCTCGCCGTGATGGAGCTGCCGGCGCTGCCGGCCACGGACGGTCCGCCGTCGTTGTCGGGCGGGGTGCCGGTCTCGGAGATGGTGTCGCTGGAGCCCGGCGAGCAGGCGCTGGCCGTGGTGTCGCTGGCCGAGGACGCCCCGACGGTCGCGCTCGGCACCCGGCAGGGCGTCGTGAAGCGGGTGGCGGCGGGCGACGCGCCGAAGAACGGTGACGTGTGGGACGTCATCGGCCTCAAGGACGGCGACGCCGTGGTGGGCGCGGCGACGGCGGCGGAGGACGACGAGCTGGTGTTCCTCGCCTCGGACGCGAGCCTGCTGCACTTCGACGCCTCGCTGGTGCGGCCGCAGGGCCGCGCGGCGGCGGGGATGGCGGGCATCCGCCTGGGTGCCGGGCAGCGTGTGGTGTTCTTCGGAGTCGCGCGGGCCGGGACCCGCGACCTGCACACCGTGGTCACGGTGGCGGGCACCGGCGGCGCGCTGCCGGGCACGGGCGGCGGGTCGGTGAAGGTCACCCCGTACGAGCTGTACCCGGGCAAGGGCCGCGGCACCGGCGGGGTGCGTGCCCACCGGTTCCTCAAGGGCGAGGATGAGCTGGTCCTCGCCTGGGTGGGCGAGGGTCCGGCGCGCGCGGTCGGCTCGGGCGGCCAGCCGGTCGAGCTGCCCGAGAGCAACACGCGCCGCGACGGGTCCGGCACTCCCCTGCCGGGTCCGGTGGCGGCGATCGGATGAMARKKAAPVADEPYDETIVDIDVASEMETSFLEYAYSVIYSRALPDARDGLKPVHRRILYMMADMGLRPDRPYVKSSRVVGEVMGKLHPHGDAAIYDALVRLAQDFSMRLPLVDGHGNFGSLDDGPAAPRYTEARSATAATAMTRGLDEDVVDFVPNYDNKLTQPEVLPAAIPNLLVNGASGIAVGMATNMPPHNLVEVISAAQHLLANPEASLDDVMRYIPGPDLPTGGKIVGLDGVRDAYRTGRGSFRTRATARIENVTARRKGIVVTELPYTVGPEKVIEKVADGVKNKKIQGVTNVQDLTDRTHGMRLVIEVKTGFDPDAVLEQLYRTTPLEDSFGINNVALVDGQPRTLGLVDLLRVWVDHRVDVVRRRSTFRLGKRRDRLHLVEGLLVAILDIDEVIQVIRSSDDAGAARERLQSVFDLSEPQASYILDLQLRRLTKFSRIELESEKSELEAEIAELEAILADEARLHGVVSDEMAEVAATYGTPRRTVLLDSAGGTASSAASVPARGKKAPALDLEIKDSPTRVLLSATGLLARTSGEGADAPVERAGRRHSHDALRGDVAAMTRADVGLITSAGRLHRLAVMELPALPATDGPPSLSGGVPVSEMVSLEPGEQALAVVSLAEDAPTVALGTRQGVVKRVAAGDAPKNGDVWDVIGLKDGDAVVGAATAAEDDELVFLASDASLLHFDASLVRPQGRAAAGMAGIRLGAGQRVVFFGVARAGTRDLHTVVTVAGTGGALPGTGGGSVKVTPYELYPGKGRGTGGVRAHRFLKGEDELVLAWVGEGPARAVGSGGQPVELPESNTRRDGSGTPLPGPVAAIGNANANANANA
AK018_04440318hypothetical proteinATGGCTGGATGGTACTTTGAGTCCATGGACACGATGGATCGGCCGGTGCAGTGGTCGCCGGAGACGGCGACGTTGAGCGTCTCGACTCGTGAGCTGCGAGACGACCTCGCGGATCTCCTGGCTCGTGCGCGCTTCGCGCACGAGCGCATCGTCGTGACCAAGAACGGGAAGCCTGCCGGTGCCATCATCGGGATGGACGACCTCGAGCTGCTCGAGCGCCTGGAGGATCTGAACGACCGCCTGCTGTACGACCGGGCCAAGGACGAGGGCGGCGAGTCCGTCCCATGGGAGCAGGCGAAGTCTGAGCTCGGTCTGTGAMAGWYFESMDTMDRPVQWSPETATLSVSTRELRDDLADLLARARFAHERIVVTKNGKPAGAIIGMDDLELLERLEDLNDRLLYDRAKDEGGESVPWEQAKSELGLNANANANANA
AK018_04441261hypothetical proteinGTGAGCGGTCCGTACCGGGTCGAGATCCAGCGTCGCGCGCTGAAGGAGATCGCCAAGCTTGACGCGAAGATGCGGCAGCGTATCGGCGAGGCGATCGACGAGCTCGCGACCGACCCTCGCCCGCCCGGCTGCAAGAAGCTTGTGGGGCGAGAAGCCTGGCGCATTCGAGTGGGGAGCTACCGCGTCCTCTACGACATCGAGGACGACGTCCTCATGGTCCGGGTCGTCCGCGTGGCACACCGCCGCGAGGTGTACGAGTAGMSGPYRVEIQRRALKEIAKLDAKMRQRIGEAIDELATDPRPPGCKKLVGREAWRIRVGSYRVLYDIEDDVLMVRVVRVAHRREVYEPGPT0027425_1588DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RelE|StbE-RelB|StbD_TOXIN-ANTITOXIN_SYSTEM,PGPT0027425-toxin_relE_2|stbE|pasB-K06218NANA
AK018_04442687hypothetical proteinATGTCCCCGACGAAACCCTCACCACCCGGATCTCCGGAGCCCGCGGTCACCTGCGACGCGAGCGGCATGGCCCAGATCCACCGCTATTTTCGCGCCGGCTTCGGCGAGGCGCCAGAGCTGGTGCGCGGGGTCGCTCCCGGAGACGTCTCCCACGCGACGGCCGTGTCCGAGCAGCTCTGGTTGCTGTCGACGGCGCTGCACGCCCACCACGAGGGCGAGGACGAGCGCCTGTGGGACGCGCTCGCGTCCCGCGCCCCCGCGTGCGCCTTGCACGTCGAGCGGATGAAGATCCAGCACGCCCAGATGCTTGAGCACCTCGCCGAGCTCGACACCGCACTACCGGCATGGAAGGCGAACCCTGCTGCGGACACCGCCGGCACCGTGCTGAGCGCGCTCGACGGCGTCAACGCCGCCCTCGCCGAGCACCTGCCGGACGAGGAGCGGGAGATCGTGCCGGTGATGGAGACCACCCTCACCCAGGAGGAGGTCGACTGGTTCAGCGAGCACGGCAGGCGTGCGACTCCGCGCGGACACCTGTGGACCCAGCTGGGAGGCATCATGGCGGCGCAGCCCGACCCCGACGCGTGGCTACGGGCGCACCTACCGGCACCCGTCCGGCTCATGTGGCGCGCGGTGGGGCGGCGGCGCTACGCGGCGCAGCGCGCCGGCCTGCGCCGCCCGGCCTGAMSPTKPSPPGSPEPAVTCDASGMAQIHRYFRAGFGEAPELVRGVAPGDVSHATAVSEQLWLLSTALHAHHEGEDERLWDALASRAPACALHVERMKIQHAQMLEHLAELDTALPAWKANPAADTAGTVLSALDGVNAALAEHLPDEEREIVPVMETTLTQEEVDWFSEHGRRATPRGHLWTQLGGIMAAQPDPDAWLRAHLPAPVRLMWRAVGRRRYAAQRAGLRRPANANANANANA
AK018_044432955hypothetical proteinGTGGGGGTGCTCCACGAGACGACCCCGACCGTCGACGGGAGCGCGCTCCCGCTGTCTTCCTGGTCCTTCGCCGGAGAGCTGCGACACTCGCAGCGCGACATCCTCCAAACGGTCCACCCCGTACCCGGCGACCCCGTGCACGTCGTCGCTCCGCCGGGTGCCGGCAAGACCCTGCTTGGTCTGCTCCTCGCGGCCGACGTCGGGCATCGGGCCGTGGTCCTGGCACCGACGACGGCGATCCGGCACCAGTGGGCACGCACGGCACGCGACCTCGCAGGCCGGGCGGACGCCGTCTCGGAGGACCCGGACCAGGTCGCAGACCTCACCGCCTTGACGTACCAGGCCCTGTCCGTCGTGGGCAGCGCCGACGCGCTCTCTCACGTCGCCCGCACGGCCTGGCACGACGAGCTCGTCGCCTCCGGACGCACCGGCCGTGTGGCCGACGAGTTCCTCGACGACCTGCGCCGCCGGAACGCACGGTCCTACCGGGCCGGAATCCGCCGCCGGGCCCGCAGGCTGCGACGCGAGATCGTCCGCGCCGACCCGGTCGCCGTCGAACAGGTCTTGCACCCCTCCGCCCTCGCGCTTATCGACCGGCTCGTCGCGGCCGACGTCCGCACGATCGTCCTCGACGAATGCCACCACCTGCTCGACCACTGGGCACTGGTGATCGGCTACCTCCAGTCACGTCTTCGAGCCGCCGGTGTCGAACCCACGGTGATCGGGCTCACCGCCACCCTCCCCTCACCCGACGACGGTCGGGGGCATGACGTCTACACGGCGCTGCTGGGCGAGGTGGACTACGAGGTCCCCGTGCCCGCCGTCGTGCGCGAAGGAAACCTCGCGCCCTACCGTGACCTGGTCTGGGTCGTCGAACCCGCCGACGACGAGGTCGCCTTCCTCACCGATCACGAACGCCGGCTCGAGGAGTTCGTGACCGACGTCCTCGACACCTCCGAGGGAGTTGCGTTCTTCGCCGACGTCCTGCAGCCGCCAGGCACGGACACTGCCTCGGAGGACGACCGGCTGGCACTCGCCTTCGACGAGGACGCCCTCTTCGCCCAGAGCGCGGGCCGGTTCCTCACCCGGTTCGAGCCACGGCACCCGCTCGTGCGACACCTGCCACCGGCGGCGCGCCAGGATCCCGACGTGGAGGACACTCTCGTGGCGGTCAGCCGTTTCGCGCTCCGCCGGCTGCTCACAGACGCCGACAGGCGGGCGGAGTGGGAGAGCGCTCGCAGAACCCTGGCGGACTTCGGCTACCAGCTCACCGACCGCGGGGTGCGGCGCGGTCGCGACCCGGTCGCGGCGGTCCTCGCGCACTCGCGGGCCAAGGACTCCGGTGCCGTCGAGATCCTGCACCACGAGCTGAGGGGCACCGACGGGCCACGGGTTCGCGCCGTCGTCGTGTGCGACTACGCGGTGCACGGCAACCAGCACGGCCGGGACGACGCGGAGGCCGCCGGGGCGTTGCGGACCTTCGGCACCCTGGTGGCCGACCCCACGGTCGCGACGCTGCGCCCCGTGCTCTTGACGGCCCAGTACGTCCGTGTCGCCACCCAGCACGCCGAGACCGTCGCCGAAGCGCTGACGGACCTGCTGGATGTCGCACCGTCCTCGACGCCCCTGCCCGAAGATCCTCGTGTCAGCGTGCTCGATGTCGGCTCGACCCCTCCCGGCGCCATGGTCGCGGCCGTGTCGCAGCTCGTATCCGACGGGGTCGTCCGCCTCCTGGTTGGAACCCGCGGCCTGCTCGGCGAGGGCTGGGACTGCCCGGCGGTCAACACGCTGGTTGACCTCACCGCGGTCTCCACCGCCTCGGCCACCCAGCAGCTGAGGGGCCGCACGCTGCGGCTCGACCCGGCCTGGCCGCACAAGGTCGCACACAACTGGGGTGTGGTCTGCCTGCCCAAGAGCAGCTCACGATTGTCCGCCTCGTCGGAGTTACGCAGGCTCCGCCGCCGCCACCAGCAGCTGTGGGGCCTGAGTACCGACGACGACGTCGCCATCGTGCGCGGCACCACGCACTCCCTGACGACGGAACAGCTCCAAGGGATGATGCTCCGCACCGGCGGGCGTTCCACCGTCCCGATCGCGGAGATCAACGCCGAGACGCTCCGGCGGCTCCCGGCCCGGGCGCAGACCTACGCCCAGTGGCGCGTCGGCACGGACTACCTCGGTGTCGAGCGAGAGAAGGTGCGGGTGACGACAGGAGGTAAGCGGCCGACGCTCCTCACCGCGCCGACGGCGGTGGTGGCGTACACGATGCTTGCGGTGCTCGGGTTGGCGATCGGCCGGACAGTCGCGTCGATGCTGCTGCGTCTCGCTCCCGCCTCCGGGTCCTGGGCGGCAGGCATCGTCGTGACGGCCACGGCGCTCGCCATCGCGCTGGGCGGCTGGCGGCTGGCCCGCGACGCGTGGCGCACGATCCGCCACCGTGCCCGTCCTGCGCTCACCTACCGTGACGCGACGCTCGCTGTGGTCGACGCGCTCCGCGCCGCGGGCCGGGCGCCCGCCTTCACCGCGGCGAACGTCGAGGTCACCCCGCTCCTCACAGCAGACAGGTCGTCACGAAACCGGCCGCTCGGCTACGAGATGAGCCTGACCGGGGGGACGAACGTCGAGCAGCGAGTCGTCATCGGCGCGGTCGCCGAGCTCTTCGGTCCGGTGGGCCGGACCCGATTCCTGCTCCACGTGGGAGTGCGTCGCGACGGTGGACCGGTCGAACGGCTCGTGGACCGGATCTCTCCGCCGTCGCCCTACCTCATGGTCCCGTCGGTACTGGCACGGCGCCGCGCGGACGCCCAGCGGTTCGCCGCAGCCTGGGACCGTCGGGTCGGGCGATGCACCCTCGTGGAGGTCACGGGCCGCGACGCGCTCGGTGCGCTCGCACTGGCCCGCCGACGCAGCGCGTCCGCGTACCAGGAATCGACACGGACGGCCGCCTGGTACTGAMGVLHETTPTVDGSALPLSSWSFAGELRHSQRDILQTVHPVPGDPVHVVAPPGAGKTLLGLLLAADVGHRAVVLAPTTAIRHQWARTARDLAGRADAVSEDPDQVADLTALTYQALSVVGSADALSHVARTAWHDELVASGRTGRVADEFLDDLRRRNARSYRAGIRRRARRLRREIVRADPVAVEQVLHPSALALIDRLVAADVRTIVLDECHHLLDHWALVIGYLQSRLRAAGVEPTVIGLTATLPSPDDGRGHDVYTALLGEVDYEVPVPAVVREGNLAPYRDLVWVVEPADDEVAFLTDHERRLEEFVTDVLDTSEGVAFFADVLQPPGTDTASEDDRLALAFDEDALFAQSAGRFLTRFEPRHPLVRHLPPAARQDPDVEDTLVAVSRFALRRLLTDADRRAEWESARRTLADFGYQLTDRGVRRGRDPVAAVLAHSRAKDSGAVEILHHELRGTDGPRVRAVVVCDYAVHGNQHGRDDAEAAGALRTFGTLVADPTVATLRPVLLTAQYVRVATQHAETVAEALTDLLDVAPSSTPLPEDPRVSVLDVGSTPPGAMVAAVSQLVSDGVVRLLVGTRGLLGEGWDCPAVNTLVDLTAVSTASATQQLRGRTLRLDPAWPHKVAHNWGVVCLPKSSSRLSASSELRRLRRRHQQLWGLSTDDDVAIVRGTTHSLTTEQLQGMMLRTGGRSTVPIAEINAETLRRLPARAQTYAQWRVGTDYLGVEREKVRVTTGGKRPTLLTAPTAVVAYTMLAVLGLAIGRTVASMLLRLAPASGSWAAGIVVTATALAIALGGWRLARDAWRTIRHRARPALTYRDATLAVVDALRAAGRAPAFTAANVEVTPLLTADRSSRNRPLGYEMSLTGGTNVEQRVVIGAVAELFGPVGRTRFLLHVGVRRDGGPVERLVDRISPPSPYLMVPSVLARRRADAQRFAAAWDRRVGRCTLVEVTGRDALGALALARRRSASAYQESTRTAAWYNANANANANA
AK018_04444369hypothetical proteinATGAGCGTTCATGGCAACCGCCCGCGGTGGCCCACTCCGTGGGTCCGGGCCGCCCTCGGCACCGCGGTCCTTGCCACGCTGGAGGCCGAGCCCCGGCACGGCTACGCCATCGCGGTCGCACTTGAGCAGCGTGGCCTCGGGCGCCCCAAGGGCGGCTCGTTGTTCCCGCTGCTCGCCGCGCTCGAGGGCGACGGCGCGCTGGAGTCGACCTGGGAGCAGGCGGCTTCCGGGCCGGGACGGCGGACCTACACGCTCACCGACGCCGGACGCCGGCGCCTGACCGACGAACGACGGGCCTGGGGCGCGCTGGTGGCCGCGCTGGCTCCGTCGTCGGACGCAGACCGAGAGGAGCGTGATGGAGACGCATGAMSVHGNRPRWPTPWVRAALGTAVLATLEAEPRHGYAIAVALEQRGLGRPKGGSLFPLLAALEGDGALESTWEQAASGPGRRTYTLTDAGRRRLTDERRAWGALVAALAPSSDADREERDGDANANANANANA
AK018_04445648hypothetical proteinATGAAGCGTCGATTCCTCCGCCGCACCGCGGCCGGCACCGTCCTCGCCCTGTCGGCCCTGGGCGCCGGCAGCGCCGCCGCGGCGACACCGACGGCAACGTCGTCAGCGTCGACGTCGGTCGTCCAGGTGGCGCCCTCCCCGACGCTCGCGGCGCCGACCGTGCGCGTGACCCGGGCGGTCACCGCCCGGCCCGCCCGGGACGAGGAGCTGACCGACGTGCTGCAGACGCTCGTCGACGACGGCGCGCTGTCGAGCGAGGAACGCGACGCCATCGCGGCCGACGTCGCCCGGGCCGCCGAGACGTCCGGCGACGACGGCACCGTGCTCGCCGACGCCGACGAGCGGCTCTTCGACCTCGACGCCGCTGCCCGCGTGATCGGCACCGACCCGGCATCGCTGGCTGCCGCGCTCAGCCAGGACGGCGCCACGCTCGCCGACGTGGCCCAGGAGCACGGCGTCACCGTCGGCGCACTGGTGACCGGACTGACCGCGGCCGCGGCGGAGCACCTCGACGTCGCTGCGGCCCAGGGGCTCATCGAGGAGCGCGAGGCCGAGGAACGCCGAGCGGCACTGTCGGCCGTGATCGCCGATGCCGTGCAGGCCGAGTACCCGGACCCCGTCCGCGGGAGCGCGACGGACACCGTGTGAMKRRFLRRTAAGTVLALSALGAGSAAAATPTATSSASTSVVQVAPSPTLAAPTVRVTRAVTARPARDEELTDVLQTLVDDGALSSEERDAIAADVARAAETSGDDGTVLADADERLFDLDAAARVIGTDPASLAAALSQDGATLADVAQEHGVTVGALVTGLTAAAAEHLDVAAAQGLIEEREAEERRAALSAVIADAVQAEYPDPVRGSATDTVNANANANANA
AK018_044462703hypothetical proteinATGGACTCCTCGCACGCCGACTACCCCGTGGAGTGGGAGGCCGACGTCGTGCTGCGTGACGGCAGCACCATGCACGTGCGCCCCATCCGCGCCGAGGACGCCGACGCGCTGCAGCGGTTCCACACGGGTCAGTCGGAGCGGTCCACGTACATGCGGTTCTTCGCGCCGATCGCGCGTCTGACGGACCGTGAGCTGCGCCGGCTGGTCGAGGTGGACCACCGCGACCGGGTCGCCCTGGTCGCGGTGCGTCCCGGGCAGGACGAGGACGGCGTCGAGCGCGAGGACATCCTCGGCGTGGCCCGCTTCGACGTCATCGGCGACGGCGAGGCCGAGGTGGCGTTCAACATCTCCGACGCCCTGCAGGGCAAGGGTCTGGCCTCGGTGCTGCTCGAGCACGTGGCCGTGGCCGCCCGCGAACGTGGCGTGCGCCGCTTCACCGCAGAGGTGCTGCCGCAGAACGGCTCGATGCTGGGCGTCTTCCGGGATGCCGGGTACGAGATCAGCCAGCACCTGGACGACGGGTTCGTCTCTGTCGGCATCGACCTGGACCCCACGGAGAAGTCGCGTGCCGTCATGGCCGACCGGGAGCACCGCACCGAGGCACGCTCGATGGCGGGACTGCTGTCCGCACGCCGCGTCCTGCTGGTGGGCCCTGGGTCCGACGACGGCACCCCGGAGGCGCTGCTGGCCCGCCGCGTCCTGGACGCCCACGCCGAGGACCCCGGGGACACCGAGCTGCTGGTCCTCGACCCGCCCGGCGACGTCCCCGAGGCGGTGACACGTCTGGACGGCTGGGCGCAGGTGACCGGCGTCGACCTCGCCGTGCTGGCCGTGGCGCCGGGCGACGCGCTGACCGCCGTGCGGCGCCTGCACGGGACGGGCGCTCGCGGCGTCGTCGTGCTCTCCGGCGGGTACGCCGAGTCCGGCCCCGACGGGCTGGAGCGGCGCCGCGAGTTGGTGCGCGCCGCGCACTCCGGCGGGATGCGGGTGGTCGGGCCCGTGTCGTACGGGCTGCTGACGACGACACCCGGCAACGCGCTGCGCGCCAGCCTCGCCGAGCGGGCACCGCACGCCGGCGTCGTCGGCCTGTTCTGCCAGTCCGCTGCCGCCGCCGTCACCCTGACGGCGACGCTCGAGCGCCGCGGCCTGGGCGTCTCGTCGCTGGTCTCCGCCGGCCACCGCGCCGACGTGTCCGGCAACGACCTCATGCAGTACTGGCAGGACGACGACGCCACCCAGGTCGTGTGCCTGTACCTGGAGTCCATCGGCAACCCGCGCAAGTTCTCCCGCATCGCCCGGCGTCTGTCGGCAAGCAAGCCCGTCGTGGTCACCACCGCCGGCCGCTCCGGGCACGTGGTCCCGCCGGGGCACGCCGTCCGCGCCACCCGGGCGCCGCGCCGCCTGCTCGACGAGCTGCTGCGCCAGTCCGGCGTCATCCAGGCCGACAACACCCACCAGCTCATGGACGTCGCCCAGGTGCTCGCCCACCAGCCGCTGCCGTCGGGCAACCGGGTCGGCATCCTCGCCTCCTCGGCGGCGCTGGCCGCCCTGGTCGCCGAGGCCGCGGCCTCCGCCGGCCTGGAGGTGGCGGCCTCCAGCGACTACCTGCCGCCCCACGCCCACGAGACCGACATCGCCCGCACCGTCGACGCGCTGTACGCACCGGGCGCGTGCGACGCCGTCGTCGCCGTCGACGTGCCCGTGGTCCAGCCCCGCACCGGGGCGATCGCCCGGGCCGTCGCCGAGGCGGCCGCCCGCACCGGCCGCACCACCGTCGCCTCCATGCTCGGCCTGCACGGCATGCCCGACGAGCTGGCGGCCACCGGCCCCGACGGCGGGCAGACCCGCATCCCGGCGTTCTCCACCCCCGAGGACGCCGTCGTCGCGCTCGGCAAGGTCGTCGAGCACGCCGAGCGCCGCGAGGCGCCCCGGGGCCACCACGTCGAACCCGACGGCGTCGACCCCCGGCGGGCCCGCCGGCTCGTCGAGTCGTGGCTCGCCGATGGCTCCGGCCGCGAGCTCACCGTCCCCGAGGCCGCCGAGCTGCTCGACTGCTACGGCATCCGCCTCTGGGCCGCGCGCCGGGTCCGCACCGCCGACGAGGCCGTCGCCGCCGCCGACCAGGTCGGCTGGCCCGTCGCCCTCAAGAGCGCCTCGCCCGGCCTGCGGCACCGCTCCGACCTCGGGGGAGTGCGGCTCGACATCGCCGACGCCGAGGACCTGCGCGAGGACGTCGCCCGCCTGACGGCGGTGGCCACCGCCGTGCTCGGCGACGACGCCCCCGAGTTCGAGGTGCAGGCCATGGCCCCCGCCGGCGTGGCCTGCGTGGTCCGCTCCGCCGAGGACCCGCTGTTCGGCCCGATGGTCTCCTTCGGGCTCGCCGGTGACGCCGTCGACCTGCTCGACGACGTCGCCCACGGCATCCCGCCGCTGACCGACGTCGACGTCGCCGCCATGATCTCCACCGTGCGGGCCGCACCGCGCCTCTACGGTTACGGCGGCACCCCGCCCGCCGACGTCGACGCCCTCGAGGACGTCCTCGCCCGCGTAGCGGTCATGGCCGACGACCTGCCCGAGCTCGCCGCCCTCGAGCTGTACCCCGTCGTCGTCGCCGAGCACGGCGCCTCCGTGCTGCACGCCGACGTCCGGCTCCGCCCCGCCGGCCGCCGCGCCGACACGCTGCGCCGCGCACTGCCCGGGTAGMDSSHADYPVEWEADVVLRDGSTMHVRPIRAEDADALQRFHTGQSERSTYMRFFAPIARLTDRELRRLVEVDHRDRVALVAVRPGQDEDGVEREDILGVARFDVIGDGEAEVAFNISDALQGKGLASVLLEHVAVAARERGVRRFTAEVLPQNGSMLGVFRDAGYEISQHLDDGFVSVGIDLDPTEKSRAVMADREHRTEARSMAGLLSARRVLLVGPGSDDGTPEALLARRVLDAHAEDPGDTELLVLDPPGDVPEAVTRLDGWAQVTGVDLAVLAVAPGDALTAVRRLHGTGARGVVVLSGGYAESGPDGLERRRELVRAAHSGGMRVVGPVSYGLLTTTPGNALRASLAERAPHAGVVGLFCQSAAAAVTLTATLERRGLGVSSLVSAGHRADVSGNDLMQYWQDDDATQVVCLYLESIGNPRKFSRIARRLSASKPVVVTTAGRSGHVVPPGHAVRATRAPRRLLDELLRQSGVIQADNTHQLMDVAQVLAHQPLPSGNRVGILASSAALAALVAEAAASAGLEVAASSDYLPPHAHETDIARTVDALYAPGACDAVVAVDVPVVQPRTGAIARAVAEAAARTGRTTVASMLGLHGMPDELAATGPDGGQTRIPAFSTPEDAVVALGKVVEHAERREAPRGHHVEPDGVDPRRARRLVESWLADGSGRELTVPEAAELLDCYGIRLWAARRVRTADEAVAAADQVGWPVALKSASPGLRHRSDLGGVRLDIADAEDLREDVARLTAVATAVLGDDAPEFEVQAMAPAGVACVVRSAEDPLFGPMVSFGLAGDAVDLLDDVAHGIPPLTDVDVAAMISTVRAAPRLYGYGGTPPADVDALEDVLARVAVMADDLPELAALELYPVVVAEHGASVLHADVRLRPAGRRADTLRRALPGNANANANANA
AK018_04447600hypothetical proteinGTGCCTTCTGCGACCACCGGAAAGAACCTCCGCGACGAGCTGACCGCGCACGTCTACCGTGCCGGCTACTACCCGGACCTCGTGACCGACGTCCTCGACGTCGCGCTCGCGGACGAGTCCGTGCTGGCCCACCTGGTCCAGGCGGAGACCACGTTCGACTCCCAGGTCCGGCGCCACCTGACCGTCCTGGCCCTGACGCCCACACGGCTGGTCGCCGCCCACGTCGACGACCACGAGGGCGACGCCGCCAACCCCTCCTCGGCGGCCGCCACCACCGAGGCCGTGCCGCTCGGGGAGATCCGCTCCGTCGCGCTCACCCACGTCGTCGCCGAACCCGCCGAGCACCGCCCCGGAGACAGCGCCGCCGAGCTCACGCTCGCCATCGGCTGGGGGAGCATCTCGCGCGTGGACCTCGAACCCGCGCAGTGCGGGGACCCGAACTGCGAGGCCGACCACGGCCTCACCGGCCAGATCACCCCCGACGACGTCGTGGTGCGGGTCAGCGACGCCGCCGAGGGGTCCGACGCCGTGCGACGGGCCGCCGCGTTCGCCCGGCAGCTCTCCGCGGCCACCGGCGTCGGCGGGCGCCCGCGTCGATGAMPSATTGKNLRDELTAHVYRAGYYPDLVTDVLDVALADESVLAHLVQAETTFDSQVRRHLTVLALTPTRLVAAHVDDHEGDAANPSSAAATTEAVPLGEIRSVALTHVVAEPAEHRPGDSAAELTLAIGWGSISRVDLEPAQCGDPNCEADHGLTGQITPDDVVVRVSDAAEGSDAVRRAAAFARQLSAATGVGGRPRRNANANANANA
AK018_044481221hypothetical proteinATGACGGCGCCGCCCACCCTGCCCGCCGGGTTCGTCGCGCCGTCCTACGCCGAGGACTCCCTCGCCGCCGTGCTGCCCGCCGTCGCCGGCACGCTCGGACTCGACCTGACCACGTCCACGGGGCTGCGCTCCCCGGACACCGCGCGGGCGCTCGGCCTGCCGTCCGTCCGCCGCGCCGTCGTCGTCCTCGTCGACGGGCTCGGGCTGCACAACCTCTCCGAACGCGGCGGGCACGCCCCGTTCCTGCGCGGCCTGCTGCCCGACGCCCGGTCGCTGACCTCCAGCGTGCCCTCCACGACGGCGGCGGCCCTGGCCACCTTCGGCACCGGCACCCCGCCCGGGCGCACGGGCCTGCTCGGGTACACCCAGCGCAACCCCGCCACCGGGGGACTCGCCACCATGGTCTCCTGGACCGAGCAGTCCGACTCCTACCGGCCGGGCACCAAGACCTCCGCGCCGCTGCGCACCGACCCGGCCGACCTGCAGCGCGAGCCCACCGTCCTGGAACAGGTGGGCGCCGCGACCACCGTCGTCGCCCCCGGCCCGCGCAAGTTCGCCGGGTCCGGCATGACGCGCGCCGCCCTGCGCGGCCCTCGCTACGTCGGCGCCGAGACCTTCGCCGACCGGGTCGACGCCACCGTGACCGCCCTGCGCGACCCCGGGCTCGTCTACCTCTACCAGGGCGACGTCGACAAGACCGGCCACCAGCACGGCCCCGACTCCTGGCAGTGGGGCGACGCCCTCGAAGCCACCGACGCCGAGCTGCGCCGCCTCGTCCGATCGCTGCCCGCCGGCACGCTCGTGCTCGTGACAGCCGACCACGGCCAGATCACCTCCGACCTGACCCGCCAGCACGACGTCGCCGAGCGCCCCGAGCTCGCCCGCGACGTCGCCCTGCTCGGCGGGGAACCCCGGTTCACGCACGTGTACGCCACTCCCGGCGCGGACACGGCGGCTCTCGCGGACCGGTGGGCCGGGGCGCTGGGTGACGACGCGCTCGTCGTGACCCGGGACGCCGCGATCGAGGCCGGCTGGTTCGGACCCGTCGCCGACCACGTCCTGCCCGCCGTCGGCGACGTGCTGGTCGCCGCCCGCGGGCGCGCCACCGTCGTCGACTCCCGCCTGCATCCCGCCGCCGCGCGGCACATGCCCGGCGTGCACGGGTCCCTGACGCCGGAGGAGATGATCGTCCCCCTGCTCGTGGCCGAGGGGACGCGATGAMTAPPTLPAGFVAPSYAEDSLAAVLPAVAGTLGLDLTTSTGLRSPDTARALGLPSVRRAVVVLVDGLGLHNLSERGGHAPFLRGLLPDARSLTSSVPSTTAAALATFGTGTPPGRTGLLGYTQRNPATGGLATMVSWTEQSDSYRPGTKTSAPLRTDPADLQREPTVLEQVGAATTVVAPGPRKFAGSGMTRAALRGPRYVGAETFADRVDATVTALRDPGLVYLYQGDVDKTGHQHGPDSWQWGDALEATDAELRRLVRSLPAGTLVLVTADHGQITSDLTRQHDVAERPELARDVALLGGEPRFTHVYATPGADTAALADRWAGALGDDALVVTRDAAIEAGWFGPVADHVLPAVGDVLVAARGRATVVDSRLHPAAARHMPGVHGSLTPEEMIVPLLVAEGTRNANANANANA
AK018_044491221hypothetical proteinATGACCCGCGACTTCCGCCTCCTGCTGTGGGCGACGGCGTCGGCGTTCGCCGGGTTCGCGCCGCTGCTGTCCGTGGTGCCGCTGTGGGCGGCCTCCGGCGGTGCCGCCTCCGGAGCGGTGGGGGCCACCACCGGCGTCATGATGGGCGCCACCGTGGCTGTCCAGCTCGCCATGCCGCGCCTCCTGCGCGTCCTGACCCTGCGGCGGGCCTCCGTCATCGGCGGTCTGCTGCTCGGCGTGCCGACCTTCGCCTACCTGCTGTCCACGGGGATCGGCTGGGTGCTCGTCGTCTCCGCCGTGCGCGGCATCGGGTTCGGCATGTTCGTCGTCGCCGGCAGCGCCCTGGTCGCCGAGCTGGTGCCGCCCGAATGGCGGGGCCGCGGCCTGGGTGCCTACGGCGTCGCCATCGGCGTGCCGCAGGCGCTCCTGCTGCCCGTCGGGGTGTGGGCCGCCGAGCACGTCGGCTTCGGCGTCGTCTTCTCGGTGGCCGGCGCCGCCTCGGTGCTCGGCGCGCTCGTGACCCTCGCCATCCACGAGAGCGGACGCACGGCGACGTCGCCCGACCCCGACGGGTCCGATCAGGGCGTGTCCGGTGCCGCCGGGGCCGACGACGGCACCGGGCTCGCCGCCGTCGGGCCCGCGGCCGGCCCCGTGCGCTACCGCACGCTCGCGGGTTCCGGCGTGCTGCTGCTCGTCGCCTCGTGCGCGTTCGGCGGTGCCACCTCGTTCGTGCCGCTGGCCTTCCCCGCCACGACGGCCTCCCTCGTGCTGCTAGCGATCAGCCTCACCATGACCGTCGGACGCTGGTGGGCCGGCGTGCGCGCCGACTCCGAGGGCGTCGGCCCGCTGCTGCCGCTCGGGATCGGGGCGTGCACCGTCGGGACGCTCGGGATCGCCCTCGCGGCCGGCACGCTCACCGGGGCGCTCGCCGTCGTCGTCGCGATGACCGCGGGCCTGCTGTACGGCGTCGGCTTCGGCGCGCTGCAGAACGACACGCTCGTGCTCATGTTCCGCGAGGCCGGCCCGCAGGGGCACGGCACCGCCAGCGCCGCCTGGAACATCGCCTACGACGGCGGCACGGGGGCCGGGTCGCTCGGCGTCGGCGTCGTCGCCCAAGGCGTCGGCCTCAGCGGGGCGATCGGCGCCTCGGCGCTGCCGCTGGTCGCCGTCCTGCCGCACGCGGTACGCCGGGCGCGCGCCGCCAGGGCCGCCCGCGCCTGAMTRDFRLLLWATASAFAGFAPLLSVVPLWAASGGAASGAVGATTGVMMGATVAVQLAMPRLLRVLTLRRASVIGGLLLGVPTFAYLLSTGIGWVLVVSAVRGIGFGMFVVAGSALVAELVPPEWRGRGLGAYGVAIGVPQALLLPVGVWAAEHVGFGVVFSVAGAASVLGALVTLAIHESGRTATSPDPDGSDQGVSGAAGADDGTGLAAVGPAAGPVRYRTLAGSGVLLLVASCAFGGATSFVPLAFPATTASLVLLAISLTMTVGRWWAGVRADSEGVGPLLPLGIGACTVGTLGIALAAGTLTGALAVVVAMTAGLLYGVGFGALQNDTLVLMFREAGPQGHGTASAAWNIAYDGGTGAGSLGVGVVAQGVGLSGAIGASALPLVAVLPHAVRRARAARAARANANANANANA
AK018_04450645tdk_4COG1435Thymidine kinaseATGGCCGAGCTCGTCTTCTTCTCCGGGACCATGGACAGCGGCAAGTCGACGCTGGCCCTGCAGACGGACCACAACCACCGCGCCCGGGGGCGCCAGGGGCTGATCTTCACCCGGGACGACCGGGCCGGCGTCGCGCGGCTCTCCTCACGCCTCGGCCTCGAGGTCCAGGCCCGCGAGGTCGACGACGACACCGACTTCTGGGAGGTCATCGGCGCCGAACGCCGCCAGGGCCACCTGGTCGACTACCTAGTGTGCGACGAGGCGCAGTTCTACTCGCCCGAGCAGGTCGAGCAGCTCGCCCGGCTGGTCGACGAGAACGAGATCGACGTGTTCGCGTTCGGGATCACCGCCGACTTCCGCACGCGACTGTTCCCGGGCTCGGCGCGCCTCGTCGAGCTCGCCGACCGGATCGAGGTGCTGCAGGTCCAGTCGCTGTGCTGGTGCGGGGCGCGCGCCACCCACAACGCCCGCACCGTCGACGGCGTCATGGTCGTCGAGGGCGACCAGGTCGTGGTCGGGGACGTCGCCGCCGGTGCGGACGTCGCCTACGAGGTGCTGTGCCGCCGTCACCACATGCGCCGCATGACCGCCGACGCCGCCCGCCGGCTGGCACCGGCGTCGGACACCATGCTCGACGTGCGCTAAMAELVFFSGTMDSGKSTLALQTDHNHRARGRQGLIFTRDDRAGVARLSSRLGLEVQAREVDDDTDFWEVIGAERRQGHLVDYLVCDEAQFYSPEQVEQLARLVDENEIDVFAFGITADFRTRLFPGSARLVELADRIEVLQVQSLCWCGARATHNARTVDGVMVVEGDQVVVGDVAAGADVAYEVLCRRHHMRRMTADAARRLAPASDTMLDVRPGPT0021390_920DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857NANA
AK018_044511260hypothetical proteinATGGCCGAGCTCGAGCTCGTGACGTTGCACGAGGACGCCGAACGCCTGGTCCTGCGCGACCCGGACGGCGTCGAGCACACCCTGGCGATCTCGGAGGCCCTGCGTGCCGCGGTCCGCCGCGACCGACCCCGCACGGAGGCGCTGCAGGCCGCCGCCGAGGCACCGCTGCGCCCCCGGGAGATCCAGTCGCGGCTGCGTGCCGGGGCCACCGCCGAGGATCTCGCCGCCGAGTCCGGGCTGCCCCTGGAGCACGTGCGCCGCTACGAGTGGCCCGTGGCCGCGGAGCGGGACCACGTGGTCGCGCGCGTGCGTGACCACCGGGTGGACACCGAGAAGGAGGTGACCCTCGGCGAGCTCGCGGACGCACGGCTGGCCGCCCGGGGCGTCGACGCGCAGGAGGCGTCGTGGTCGGCGCGCCGCGACGGCAACGCGCCGTGGCGCGTCTCGGTGCACTTCTCGGCCGGCGGGCGCGAGCGCGACGCCGAGTGGTCGTTCGACCCCAAGGGTCGCGTGGTCACCGCCCTGGACGACGAGGCGCGCTGGCTCGGCCAGCCGGACGACCCGGTCTCCCCCGAGATCCTCGGCGTGCCGTCCCGGCTCGAGTCCGGGCGAGCGCCCGTCCCGGAGCCCCACCCGGCGCAGGACGCCACCGCGGCCCTGCTGGACGACCTGGCGGGACGGCGCGGACAGCGCCCGCAGCGCAGCCGCCCGGAGCGCGGCCCGCAGGACGACGAACTGCCGCTCGGTCTGCAGTCCCCGCCGGTACCCGCGCCCGCCGAGGCGGCCGGGGCGAGCGTCGTCGACCTGGGTGCCCGGCGCAACGCCCAACGGACGGGTCCTGACGCGAACACCTCGGCGGGCTCCCCCGGGGACGCGCCCGCGGAGGTGCCGTCGCACCAGGGGAAGGACTCCGACGACGGGGACGCCGCGGAGGCCGAGGGGTCGCCGAGCGACGTGCCGGCCCGCGAGGCTGCCGAAGCTGAGGCCTCCGGACCCGAGGCTCCGCGACCCGTGGCCGCCGATACCGAGCCCTCCGCCGCGGACGCGACGGACACGCCGAGCACCCCGCCCGGTCCCGTCCCGGCACCGCAGGGCAGGTCCACCGACGAGTCCGCGCCGACGTCGGACGCCGGGCACGTCCCGACCGCCGGGTCGGCGCCCCGTCCGGGACCGGCGGCGCGCCGCAACGCTCGCAAGGGCCGGGCGCAGATGCCGAGCTGGGACGAGATCGTGTTCGGCGGCGCACGCCCGTCCTCCTGAMAELELVTLHEDAERLVLRDPDGVEHTLAISEALRAAVRRDRPRTEALQAAAEAPLRPREIQSRLRAGATAEDLAAESGLPLEHVRRYEWPVAAERDHVVARVRDHRVDTEKEVTLGELADARLAARGVDAQEASWSARRDGNAPWRVSVHFSAGGRERDAEWSFDPKGRVVTALDDEARWLGQPDDPVSPEILGVPSRLESGRAPVPEPHPAQDATAALLDDLAGRRGQRPQRSRPERGPQDDELPLGLQSPPVPAPAEAAGASVVDLGARRNAQRTGPDANTSAGSPGDAPAEVPSHQGKDSDDGDAAEAEGSPSDVPAREAAEAEASGPEAPRPVAADTEPSAADATDTPSTPPGPVPAPQGRSTDESAPTSDAGHVPTAGSAPRPGPAARRNARKGRAQMPSWDEIVFGGARPSSNANANANANA
AK018_04452846cysQ_23'(2'),5'-bisphosphate nucleotidase CysQGTGAGCTCTGCAGCTGCCCTGCCCACCGAGTCCGAGATCGCCGACCTGCGCGCCCAGGCGCGCTCCCTGGCCACCGAGGCGGGCGCCCTCGTCCGCGGCGGCCGCCCCGCCCGCGTGGAGGTCGCGGCGACCAAGTCCACCGCCGTCGACCCGGTCACCGACATGGACCGCGCGTCGGAGGACCTGCTGCGGCGTCGCCTCGCCGCGCGGCGTCCGCACGACGCGATCCTCGGTGAGGAGGGTGACGACGTGCCGGGCACCAGCGGGCTGACGTGGGTGCTCGACCCGATCGACGGCACCGTCAACTACCTGTACGGCGTCGCGTCCTACGCGGTGTCCGTCGCCGTCGTGGCCGGGGAGCCCGACCCGGCGCGCTGGACCGTGCTGGCCGGCGCCGTGCACTCCGTCGTGGACGGCGTGACCTGGACGGCGGCCCGCGGTCAGGGTGCGGACCGGGACGGCGAGCCGGTGCAGGTGCGCCGCGCGGACTCGTTGGCCACGAGCCTGGTCGGCACCGGTTTCGGCTACGACGCCGGGCGGCGTGCGCACCAGGCGCAGGTGCTGGCCGCGGTGCTGCCGCAGGTGCGCGACATCCGCCGGCTGGGTGCCGCCGCGATCGACCTGTGCCTCGTCGCCGAGGGCGCGCTCGACCTCTACTACGAGCGCGGGCTGAACCCGTGGGACGTCGCGGCCGGGGGACTGGTCGCCGTCGAGGCCGGTGCGGCGCTGACCGGGCTGCGCGGCGAGCCCGCCACCGGTCTGATGACCGTGGCCGGCTGCCCCGAGCGTCAGGCCGAGCTGGTCGGCCTGCTCGAGTCCGCCGGGGCCGACGGCGCCGAGAGCTGAMSSAAALPTESEIADLRAQARSLATEAGALVRGGRPARVEVAATKSTAVDPVTDMDRASEDLLRRRLAARRPHDAILGEEGDDVPGTSGLTWVLDPIDGTVNYLYGVASYAVSVAVVAGEPDPARWTVLAGAVHSVVDGVTWTAARGQGADRDGEPVQVRRADSLATSLVGTGFGYDAGRRAHQAQVLAAVLPQVRDIRRLGAAAIDLCLVAEGALDLYYERGLNPWDVAAGGLVAVEAGAALTGLRGEPATGLMTVAGCPERQAELVGLLESAGADGAESPGPT0018535_803DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018535-suhB-K01092NANA
AK018_04453300hypothetical proteinATGGCCACCGACTACGACGCACCCCGCAAGAACGACGAGGACAACGAGCAGGACTCCATCCAGGAGCTCCAGGCCCGTCGCTCCGACAAGTCCTCGGGTGTCGTCGACGAGGACGAGACGGAGGCGGCGGAAGGATTCGAGCTTCCGGGTGCCGACCTCTCCGGTGAGGAGCTCGCCGTGCGGGTCCTGCCGCGTCAGGCGGACGAGTTCACCTGCTCGAGCTGCTTCCTCGTGCACCACCGCAGCCAGCTGGCCTACGAGAAGAAGGGCCAGATGGTCTGCACCGAGTGCGCGGCCTGAMATDYDAPRKNDEDNEQDSIQELQARRSDKSSGVVDEDETEAAEGFELPGADLSGEELAVRVLPRQADEFTCSSCFLVHHRSQLAYEKKGQMVCTECAANANANANANA
AK018_04454498hypothetical proteinATGAACGACGCGCCCGCCCGTCCGGGCAGCCCGACCGGACCCGCTGCAACGCCCCTGTACCGGGAGCGGCTCCTGCCAGGCCCCGGGGCCTGGGTGACCGCCCTGGGGCTCGGGATCCTGGTCGCGGTGCTCGTGCTGCCCCTGGCGCCGCTCGTCGCGCCGGGCGCCGGGGTACTGGTCGCCGCGGCGACGGTCGCGACCCTGGTGGCGACCGCCCCGGTGATCGAGGTCGGCGGCGGCGCCCTGCGGGCCGGTCCCGCCCGTGTGCCGGTCGACGTGCTCGGTGAGGTGACGCCGATCTTCAGCGCCGAGGAGATGCGGGTCGCGCTGGGTCCCGAGCTGGACGCCCGCGCATACGTGTGCCTGCGCAGCTGGGCCCGGACGGGGTTGAGGGTGGACCTGCGCGACCCGGCCGACCCGACCCCCTACTGGCTCGTCTCGACCCGGCGACCCGACGACCTGGCTGCGGCGCTCGACGAGGAGTCGGCGCGGCGCTGAMNDAPARPGSPTGPAATPLYRERLLPGPGAWVTALGLGILVAVLVLPLAPLVAPGAGVLVAAATVATLVATAPVIEVGGGALRAGPARVPVDVLGEVTPIFSAEEMRVALGPELDARAYVCLRSWARTGLRVDLRDPADPTPYWLVSTRRPDDLAAALDEESARRNANANANANA
AK018_04455486dut_1Deoxyuridine 5'-triphosphate nucleotidohydrolaseGTGCCAGCCGAGACCACACCTGCCGACACCGACGGGAGCACCGTCGACGTCCTCGTGACCCTGCTCGACGACGGCGTCGCCCCGCCGGCGTACGCGCACCCCGGTGACGCCGGGGCGGACCTGACCACCACCGAGGACGTCGAGCTCGGCCCGCTGCAGCGTGCCGTCGTCCCGACCGGCATCGCGATCGCGCTGCCCGACGGGTACGCGGCGTTCGTGCACCCGCGCTCCGGCCTGGCGGCCAAGCACGGCGTCACGGTCGTCAACGCCCCGGGCACCGTGGACGCCGGCTACCGCGGCGAGATCAAGGTCGTCCTCGCCAACACGGACCCGACCGCGACGGTGCGGCTCGAGCGCGGCGACCGGATCGCCCAGCTCGTGGTCCAGCGCGTCGAACGGGCGCGGTTCGTGACCGCGCAGAAGCTGCCCGGATCGCACCGCGGCGCGGGCGGTTTCGGGTCCAGCGGCGGCCACACCGGCGCCTGAMPAETTPADTDGSTVDVLVTLLDDGVAPPAYAHPGDAGADLTTTEDVELGPLQRAVVPTGIAIALPDGYAAFVHPRSGLAAKHGVTVVNAPGTVDAGYRGEIKVVLANTDPTATVRLERGDRIAQLVVQRVERARFVTAQKLPGSHRGAGGFGSSGGHTGAPGPT0021355_1170DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021355-dut-K01520NANA
AK018_04456774hypothetical proteinGTGGGTCTGTTCCGGCGCAAGACGTCGACCAACGCGACCGAGGCCGCCGAGGCGACCGAGCCCGCCTCGGCGGAGGCAGCGGCCACGGGACCGGACGAGTCGGCCGAGCCGGCCACCGAGCCGAAGGCGCGCGGTCCGTTCGACTCGTCGCAGGTCGACGCCATGGGACCCCGGGTGGACCTCGGCGCGATCTGGCTGCCGGTGCTGCCCGGCCTGCAGCTGCGCATGGAGGTCGACAAGAAGTCGCAGAAGGTCACCGGTGTCGCCGCCTCCCTCAAGGGGTCGGTGCTGCAGGTGCAGGCCTTCGCCGCACCGAAGTCCGAGGGCATCTGGGACGAGGTCCGCGGTGAGATCGCCGCGTCGCTCACCAAGCAGGGCGGCACGGTCGACGACGTCCCGGGCACGTTCGGGCGCGAGCTGCTGGCCCGCATCCCCGCCACGACGAAGGAGGGCAAGCCCGCTGTCCGCCCCGCGCGGTTCATCGGGTTCGACGGGCCTCGCTGGTTCCTGCGGGGCGTGCTGTCCGGACGCGCCGCCGTCGACGCCGAGGCCGCCAAGCCGCTCGAGTCCGTGTTCGCCAACGTGGTCGTGGTCCGCGACGGCAGCCCGCGCCCGCCGCGCGACCTGCTCGCCCTCACCCTGCCGCAGCAGGCGCAGAAGCCGGGCGCCGACGGTGCCGAGGGGGCCGAGGCCGCCGGGCCCGAGGGGGCCACGCCGCGGACGCCGTCGTTCGACCCGCTCGAGCGCGGGCCCGAGATCACCGAGACCCGGTGAMGLFRRKTSTNATEAAEATEPASAEAAATGPDESAEPATEPKARGPFDSSQVDAMGPRVDLGAIWLPVLPGLQLRMEVDKKSQKVTGVAASLKGSVLQVQAFAAPKSEGIWDEVRGEIAASLTKQGGTVDDVPGTFGRELLARIPATTKEGKPAVRPARFIGFDGPRWFLRGVLSGRAAVDAEAAKPLESVFANVVVVRDGSPRPPRDLLALTLPQQAQKPGADGAEGAEAAGPEGATPRTPSFDPLERGPEITETRNANANANANA
AK018_04457369hypothetical proteinATGTCCCTGCGAACCCTGGTGCGCTCCGCGCTCGCCTCGACCGACACCGTCGCGGCCGACGAGGAACGCCACGCCACCGCCGCCGTCAGCGGCTGCACCCCCCTCGTCGACGTCCGCCACCGCGACCGCGTCGCCGCCACCGGCGTGCTGCGCTCCGTGGTGCTGCACCCCCGCCAGGAGGTGCCGACGGTCGAGGCCGAGCTGTTCGACGGGTCCGGCTCGATCGACCTCGTGTGGATGGGACGGCGTGAGATCGCCGGCATCCAGCCCGGACGCCGCCTGCGCGTCGAGGGGATGGTCGCCGACCGCGACGGCCGCCGCACCATGTTCAACCCGCGCTACGAGCTGCGCGCGCGGGCCGGCGAGTGAMSLRTLVRSALASTDTVAADEERHATAAVSGCTPLVDVRHRDRVAATGVLRSVVLHPRQEVPTVEAELFDGSGSIDLVWMGRREIAGIQPGRRLRVEGMVADRDGRRTMFNPRYELRARAGENANANANANA
AK018_04458783hypothetical proteinATGGCGGAGGACCCCCTGGACGCCCGTCGGCACGAGCAGACGGCCGACGGCGAGCCCGCCGCCCGCGGGATGCGTGCGGTGACCGGCGAGACGTTCTCGTTCGCCGCCGCCGTCGGGGGAGTGCGGGGCGTCGTCGAGGCGATCCTGCCGGGCCTCGTCTTCGTCGTCGTGTTCGTGGTCACCGAGGACCTGACGTGGTCGCTGGTCTCGTCGTGCGCGGCCGCGCTGGTCGCCGTCGTCGCGCGGCTGGTGCAGCGCACCCCGGTCACGCAGGCGCTCGGCGGTGTGCTGGGCATCGCCGTCGGCGTCGTGTGGGCGTGGCGCACCGGTGAGGCCGAGGACTTCTACGCCGTGGGCCTGTGGACCAACGCCGCCTACCTGCTGGCGTTCCTCGTCTCGATCGCCGTGCGCTGGCCGCTGGTCGGGCTCTTCGTCGAGGCCGTCCGGACCGGGTTCTCCGACCTGTCCGGCGGGGCGCGCACCGACGACGAGCGGGACGACGACGAGACGTCCGCCGGCAGCGAGCCGAGCCCCTGGGCCGCGATGGTCGCCTGGCGCCAGGACCCCGACCTGGTGCGCCGCTACCTGATCGCGAGCTGGTTCTGGGTCGGTCTTTTCGCGATCCGCCTCGCCGTCAAGGTGCCGCTGTACCTCGCCGGTGACGTCGGCTGGCTCGGCACCATGCACCTCGTGCTCGGTGTGCCGCTGTGGGGCCTGGTGCTGTGGCTGACCTGGGTCGTGGTGCGCGGCGCCCACCGTCCGGAACCGGCCCCGACCGCCTGAMAEDPLDARRHEQTADGEPAARGMRAVTGETFSFAAAVGGVRGVVEAILPGLVFVVVFVVTEDLTWSLVSSCAAALVAVVARLVQRTPVTQALGGVLGIAVGVVWAWRTGEAEDFYAVGLWTNAAYLLAFLVSIAVRWPLVGLFVEAVRTGFSDLSGGARTDDERDDDETSAGSEPSPWAAMVAWRQDPDLVRRYLIASWFWVGLFAIRLAVKVPLYLAGDVGWLGTMHLVLGVPLWGLVLWLTWVVVRGAHRPEPAPTANANANANANA
AK018_04459675trkA_1COG0569Trk system potassium uptake protein TrkAATGCGCGTCGTCATCGCCGGCGCGGGGTCCGTGGGCCGGTCCATCGCCTCCGAGCTGCTCGCCAACGACCACGAGGTGGTCCTGGTCGACAAGAACCCGACCGCCATGCGCGTCGCCCAGGTCCCCGAGGCGGACTGGCTGCTCGCCGACGCCTGCGAGACGTCGTCGCTCGACGGCGCCGACGTGGGCTCGGCCGACGTGGTGGTGGGCGCCACGGGTGACGACAAGGTCAACCTGGTGTTCTCCCTGCTGGCCAAGACCGAGTTCGCCGTGCCGCGCACCGTGGCGCGCGTCAACAACCCGCGCAACGAGTGGATGTTCGACGACTCGTGGGGCGTGGACGTCGCGGTCTCGACGCCGCGCATCATGACGGCGATGGTCGAGGAGGCCGTCGCGGTCGGCGACCTGGTGCGCATCTTCACGTTCCACCAGTCCGGTGCGGACATCTTCGAGGTCACGCTGCCCGAGGAGTCGCCGCTGGTGGGCCTGCGGGTCAACGACGTGCGCTGGCCGGCCGACACCGTGCTGGCCTGCGTGGTGCGCGGGACGCAGCCGTTCAGCCCCACGTCCGACGACGCCCTCGAGTCGGGCGACGAGCTGATGTTCGTCACCGGTCAGGAGGCGGACCCGGCGGTGCTCCAGCAGCTCGTCGCGGACGGTCCCGAGCTCGGCTGAMRVVIAGAGSVGRSIASELLANDHEVVLVDKNPTAMRVAQVPEADWLLADACETSSLDGADVGSADVVVGATGDDKVNLVFSLLAKTEFAVPRTVARVNNPRNEWMFDDSWGVDVAVSTPRIMTAMVEEAVAVGDLVRIFTFHQSGADIFEVTLPEESPLVGLRVNDVRWPADTVLACVVRGTQPFSPTSDDALESGDELMFVTGQEADPAVLQQLVADGPELGPGPT0002710_3178DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
AK018_04460657hypothetical proteinATGGGATGTGGCCGCGTCGGGTCCACGCTCGCCCAGCGGATCGAGGCGAACGGCCACTCGGTCGCCGTCATCGACCAGAACCCCGACGCGTTCCGCCGGCTCCCCCCGGACTTCTCGGGGCACAAGGTGACGGGGGTCGGGTTCGACCGGGAGACCCTCGCCCAGGCGGGTATCGACGACACCTACGGGTTCGCGGCGGTGTCCGACGGCGACAACTCCAACGTGCTCGCGGCCCGCGTGGCCCGCGAGACGTACGGCGTCGAGCACGTGGTGGCCCGCATCTACGACCCGCACCGCGCCGAGGTCTACCAGCGCCTCGGGATCCCGACGGTCGCGACGGTGCGCTGGACGGCGGACCAGGTGCTGCGGCGCATGCTGCCGCTGGGCGCCACCGACGAGTACCGCGACCCCTCGGGCGCGGTGCGGCTGGCGGAGGTCGACTACCACCGGGGCTGGCTCGGCCTGTCGGTGCGGCGCATCGAGGCCACGACCGGCGCCCGCGTGGCGTTCCTGACCCGCTACGCCGAGGGCACCATCGCCGGACCCGACACCCTGCTGCAGGAGAACGACGTGCTGCACGTGCTCATGCACGCCGACGACGCCCCGCGCGTGGAACGGCTGCTGACCCATGCTCCCGGCCCGGAGGAGGAGGACTGAMGCGRVGSTLAQRIEANGHSVAVIDQNPDAFRRLPPDFSGHKVTGVGFDRETLAQAGIDDTYGFAAVSDGDNSNVLAARVARETYGVEHVVARIYDPHRAEVYQRLGIPTVATVRWTADQVLRRMLPLGATDEYRDPSGAVRLAEVDYHRGWLGLSVRRIEATTGARVAFLTRYAEGTIAGPDTLLQENDVLHVLMHADDAPRVERLLTHAPGPEEEDPGPT0002710_4328DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
AK018_044611992kimA_1COG0531Potassium transporter KimAGTGTCGGACATCGCGGACGCCGCCAAACGGCTGCTCCTAGGGCGCCCTCTGCGCAGCGAGAGCTCGCAGCGCTCGCTGCTGCCCAAGCGGGTGGCCCTGCCTGTGTTCGCCTCGGACGCGCTGTCGTCCATGGCGTACGCCCCGGACGAGATCCTGCTGATGCTCGCCCTGGCCGGGCTGACGGCCACGGTCATCTCGCCGTGGGTGGGCCTGGCCGTCGTCGTCGTCCTGCTCGTCGTGGTGGCCTCCTACCGCCAGATCGTGCGCGCCTACCCCTCCGGCGGCGGAGACTACGAGGTCGCCACCACCAACCTCGGCCCGACGGCGGGCATCGGCGTGGCCTCGGCGCTCCTGCTCGACTACGTGCTCACCGTCGCCGTGTCGCTGTCCGCCGGGGCCCAGTACCTGGTCGTGCTGCTGCCCTTCGCCGCCGGCTACGAGGAGCTGGTGGCCGTCGCCCTCGTCGTGGCCGTGACCGTGGTCAACCTGCGCGGCGTGCGGGAGTCGGCGTGGGTGTTCGTCGTGGTGATCTACTGCTTCATGGCGGCGCTCGGCGTGCTCGCCGTCGCCGGGGCGGTGCAGTACCTCGCCGGCGACCTGCCGCAGGCCGACAGCGCCGACCTCGACCTGGTGCCCGCCGCCGGGTTCGAGCAGGGCCTCGTGGGCGTGGCCGGAGCGTTCCTCGTCGCGCGCGCGTTCGCCTCCGGCGCCGTCGCCCTGACCGGCGTGGAGTCGATCACCAGCGAGGTGCCCTCGTTCCAGCGCCCCAAGCGCCGCAACGCGGCCGCCACCCTCGCGCTGCTCGGCGCGATCTCGGCCGCGATGCTCATGACGATCCTGTTCCTGGCCCACGCCACCGGGGTCAAGTTCGTCGAGGACCCGGCCACCCAGCTCACCCGCGACGGCGCACCCGTGGGGGAGGAGTACACCCAGCATCCCGTGCTCGCCCAGCTCGCCGAGACCGTGTTCGGCGGCGCCGGCATCGTCGCCGGCGTGCTGATCGCCGCCACCGCCCTGGTGCTGCTGCTGGCCGCCAACACCGCCTTCCACGGCTTCCCGGTGCTGGGCTCCCTGCTCGCCAAGGACGGCTACCTGCCGCGCCAGCTCCACACCCGCGGCGACCGGATGGCGTTCTCGAACGGCATCGTCACCCTCGCCGTCGCCGCCATCGTGCTGATCCTGGCCTTCGGCGCCGAAGTCACCGCCCTCATCCAGCTCTACATCGTGGGCGTGTTCGTCTCCTTCACGCTGTCCCAGCTCGGGATGCTGCGGCACTGGACCCGCGCGCTGCGCAAGGAACCCAACCCCCGCGAGCGCAACCGCATGAAGTGGTCCCGGGTCCTCAACGGGATCGGGTTCGCGCTCACCGCCGCCGTCCTCGTCATCGTGCTGGTCACCAAGTTCACCCACGGCGCCTGGATCACCCTGGTCGCGATGGGTTCGCTGTTCGTGCTGATGCGTGCCATCCACCGCCACTACTCGCGGGTGCGCGAGGAGCTCGCGCTCGGCGACGTCTCCGGCGCGCGCGCCCTGCCGAGTCGGGTGCACGCCGTCGTGCTGGTCTCCCGTGTGCACAAGCCGACGATGCGGGCGCTCGCGTACGCCCGGGCGTCGCGCCCGTCCAGCCTGGAGGCGGTGACCGTGGGCGTCGACGCCGACGAGATCGCCGAGCTGCGCGCCCGGTGGGAGGAGCTCGAGCTGCCGATCGCGCTGCGGGTGCTCGACTCGCCCTACCGCGAGATCACCCGGCCCGTGCTGCAGTACGTGCGCTCGCTGCGCCGCGACTCCCCGCGCGACCTGGTGGTGGTGTACATCCCCGAGTACGTCGTCGGGCACTGGTGGGAGCACCTGCTGCACAACCAGTCGGCGCTGCGGCTCAAGGGGCGGCTGCTGTTCACTCCCGGAGTCGTGGTGGCGTCGGTGCCGTGGCAGCTGTCGTCCTCGGCCGGGCAGACGGGGCTCGACGTGGACGGGCTGCCGGGCGGACGCTGAMSDIADAAKRLLLGRPLRSESSQRSLLPKRVALPVFASDALSSMAYAPDEILLMLALAGLTATVISPWVGLAVVVVLLVVVASYRQIVRAYPSGGGDYEVATTNLGPTAGIGVASALLLDYVLTVAVSLSAGAQYLVVLLPFAAGYEELVAVALVVAVTVVNLRGVRESAWVFVVVIYCFMAALGVLAVAGAVQYLAGDLPQADSADLDLVPAAGFEQGLVGVAGAFLVARAFASGAVALTGVESITSEVPSFQRPKRRNAAATLALLGAISAAMLMTILFLAHATGVKFVEDPATQLTRDGAPVGEEYTQHPVLAQLAETVFGGAGIVAGVLIAATALVLLLAANTAFHGFPVLGSLLAKDGYLPRQLHTRGDRMAFSNGIVTLAVAAIVLILAFGAEVTALIQLYIVGVFVSFTLSQLGMLRHWTRALRKEPNPRERNRMKWSRVLNGIGFALTAAVLVIVLVTKFTHGAWITLVAMGSLFVLMRAIHRHYSRVREELALGDVSGARALPSRVHAVVLVSRVHKPTMRALAYARASRPSSLEAVTVGVDADEIAELRARWEELELPIALRVLDSPYREITRPVLQYVRSLRRDSPRDLVVVYIPEYVVGHWWEHLLHNQSALRLKGRLLFTPGVVVASVPWQLSSSAGQTGLDVDGLPGGRNANANANANA
AK018_044621164rlmCD_1COG226523S rRNA (uracil-C(5))-methyltransferase RlmCDGTGTTCGTGCGGCACACCCTGCCCGGCGAGCGGGTGCTGGCCCGCGTCACCCAGGGCGGGTCCAGGTTCTGGCGGGCCGACGCCGTCGCGGTGCGTGAGGCCTCGCCCGACCGGGTGGCGCCGGCGTGGCCGGCCGCCGGACCCGGCGGCGTGGGCGGTGCCGAGCTGTCGCACGTCGCGCTGGACGCCCAGCGCCGCTGGAAGGCCGACGTCGTCGCCGAGCAGCTGCAGCGGCTCGCCGGGCTGACCCTGCCGGTCACAGTCGAGTCGGCATCCGGGGACGACGAGCGCGGCGGGCTCGGCTACCGCACCCGCGTCGAGCTGGTGACCGATGCCGAGGGCCGGGCCGGCATGCGCCGCTTCCGGTCCCACGACGTCGTCCCGCTGGACGCGATGCCCCTCGGCACCGACGCCGTCGCGGCGCTGGCCGCCACCGAGGACGTGTTCGGCCGGCGCTGGCGTCCCGGTCAGCGGATCGACGTCGTCGCGCCGGCCGACGGCGGGCCCGGCATGGTCCTCGTCGACGGCGTCCCCTGGCGGCGCGGCCGTCCCGACCAGCGGCCGAACGCCCGGCGCTCGGTCACCGAGTCGGTGCGCGCGGCGGGCCACGAGCACCGCTACCGCGTGGCCGCCGACGGGTTCTGGCAGGTGCACCGGGAGGCGCCGACGATGCTCACCGAGGCCGTGCTGTCCGCGGCCGGCGACGTCGACGGCGCGCGCGTCCTCGACCTGTACGCCGGGGCCGGGCTGTTCACCCTGCCGCTGACGGCAGCGGTCGGGGATCGCGGCCGGGTCGTGTCCGTCGAGTCCGACGCCCGGGCCGTCAAGGACGCCCGGCGCAACGCCCACGACCGCCCCCGGGTCGAGCTGCACCAGGGCGCCGTGGACCGCGTCCTGCTCGACGGCGACGCTTCCGGGGACGGCGCCGGTGACGCCGACGTCGTCGTCCTCGACCCGCCGCGTGCCGGCGCGGGCCGTGCGGTCGTCGACGCGATCGCCGCCCGGGGGCCGCAGCGCGTCGTCTACGTGGCGTGCGACCCGGCAGCCCTGGCTCGCGACGTCGCCTACCTGGCCGGCCACGGGTACACCGTGGCGGGGCTGCGGGCGTTCGACCTCTTTCCCCACACCCACCACGTGGAGTGCGTCGCGGTCCTGGAGCGCTGAMFVRHTLPGERVLARVTQGGSRFWRADAVAVREASPDRVAPAWPAAGPGGVGGAELSHVALDAQRRWKADVVAEQLQRLAGLTLPVTVESASGDDERGGLGYRTRVELVTDAEGRAGMRRFRSHDVVPLDAMPLGTDAVAALAATEDVFGRRWRPGQRIDVVAPADGGPGMVLVDGVPWRRGRPDQRPNARRSVTESVRAAGHEHRYRVAADGFWQVHREAPTMLTEAVLSAAGDVDGARVLDLYAGAGLFTLPLTAAVGDRGRVVSVESDARAVKDARRNAHDRPRVELHQGAVDRVLLDGDASGDGAGDADVVVLDPPRAGAGRAVVDAIAARGPQRVVYVACDPAALARDVAYLAGHGYTVAGLRAFDLFPHTHHVECVAVLERNANANANANA
AK018_04463423hypothetical proteinATGACCACAGGGGACGGGACCCGGCGCTGGCTGCCGATGCGGTTGGCGATCATCGCCCTGGTCGTCCTCGTGGCCCTGCTCGTGGCGATCCTCGCGCGTCCCGGGCAGCAGGAGCTGGTGCTCGACACCTACCGGGGTCTGCCGGCCGCCGCAGAGGAGGACCCGGCCGCGGGGGACCTCGAGCCGGGCTGGGTGCTCGGCGAGGACGGGCGGCTCGCCGTGTACGCGGTGGGGAGCTCGACCTGCCCCTGGACACCCACGTCGGTGACGGCCGACGGCGACCGTGTGACGGTGGCGCTGGAGATCGTGGACGGTCCGCAGTGCACCGCCGACCTGGTCCCCACGACGCACGTCGTCGCGCTGCCGTCCGGCGTCGACCCGGACCGCGTCGAGGTGGACGTCAGGTTCGTCGACGCGGTCTGAMTTGDGTRRWLPMRLAIIALVVLVALLVAILARPGQQELVLDTYRGLPAAAEEDPAAGDLEPGWVLGEDGRLAVYAVGSSTCPWTPTSVTADGDRVTVALEIVDGPQCTADLVPTTHVVALPSGVDPDRVEVDVRFVDAVNANANANANA
AK018_04464690hypothetical proteinATGACGAGCTCCGCAGCCGTCTCCGAGCGGCCCATCGTGACCTTCCTGCCCAGCCCGTTCCTCGGTCCCTCCCTCTGGGACTCCGTGGCCGAGCGTCTGCGCACGCACGGCTGGCAGACGCACGTCGCCGACACCTCCGGCAGGTCCCCGGCCGAGGTGCTCGACCGGTGCGAGGCCTCGCTGCCGGACGACGCACCGCTCGTGCTGGTGCCGCACTCGAACGCGGGCCTGTACGTCCCGGCGATCGCCGCCGTCGGCCCGCCGGCCGCGACCGTGTTCGTCGACGCCGCGCTGCCGCCGGCCTCCGGCGAGGCGCCCCTGACCCCGCCCGCGCTGCGTGCGGAGCTGCAGGGCCTCGCCGGTCCCGACGGGACGCTGCCGCCCTGGCCGCAGTGGTGGCCGCGCGAGCAGGTGCGCCCGCTGGTGCCGGACGACGAGACGTTCGACCGGCTCGTCGACGAGGCGCCGCGGATGCCGGTGTCCTACGTCGGGTCGAGCGTGGAGGTGCCGGCAGGCTGGGAGCGGGGCCGCCTCGCCTACCTCGCGTTCGGCGACACGTACGCGGCGGAGACGAGCCGCGCCCGCGAGGCGGGCTGGCCCACCGACACCCTGCCGGGCGGCCACCTGCACCCGCTCGTCGACCCGGAGGGGGTCGCGGCCGCGCTCGCGGGGCTGCTCGCGCGAGTCTGAMTSSAAVSERPIVTFLPSPFLGPSLWDSVAERLRTHGWQTHVADTSGRSPAEVLDRCEASLPDDAPLVLVPHSNAGLYVPAIAAVGPPAATVFVDAALPPASGEAPLTPPALRAELQGLAGPDGTLPPWPQWWPREQVRPLVPDDETFDRLVDEAPRMPVSYVGSSVEVPAGWERGRLAYLAFGDTYAAETSRAREAGWPTDTLPGGHLHPLVDPEGVAAALAGLLARVNANANANANA
AK018_04465663hypothetical proteinGTGCCCCTGCCCCCGCTCCCCGCCCAGGCCGACCGGCTCGACCGGCTCGGGCTCCTGCCCGACGACGGCACCCCGGCGGGCGCCGACGCCGTCCGGTCCGCGGCAGCACGCCTCGGGCGCACCGCACCGCCGGGCGCGCTGCTCGTGGTGCACCCGCGCCACCTGGCGCCGTCGGCCCTGGCACCCCGGATACGACGGACCGTGCGCACCCGCGGCGGGACCGTCGAGCGCGAGGGGTTCGTCGTGGTCGACATGACCGACGTCGACGCGTTCGGCCCCGTGGACGTTACCGTGCCCGACGTCGACGTCTACGCCGTGGCCGCCCCGGACCGGGGCGACGACCTGGCGAACGCCTCGCCGGCCGAGGCGCAGCCGGTGCTGGCGGGACGCGGCCGCAGCCCGCTGACCCTGGCCGAGGGCGTCCACTGGGTGCTCCAGGATCCCGCGGTCCTGGAGCCGAACCACTGCTTCATGACCATCGGCTCGCGGCTGCGACGCCCCGACGGGACCCTCGACGCCCGCACCCCGGCGATCTGGGTCTCGGGCGGGACGGGCCGCGACGGCGCCGAGCGCCGCGGCGCGCCCAAGGTCGGGTGGTGCTGGTGGCGCAACCGCCACACCTGGCTCGGGTTCGCCTCGACGGATGGCAGGCTGGGGTCATGAMPLPPLPAQADRLDRLGLLPDDGTPAGADAVRSAAARLGRTAPPGALLVVHPRHLAPSALAPRIRRTVRTRGGTVEREGFVVVDMTDVDAFGPVDVTVPDVDVYAVAAPDRGDDLANASPAEAQPVLAGRGRSPLTLAEGVHWVLQDPAVLEPNHCFMTIGSRLRRPDGTLDARTPAIWVSGGTGRDGAERRGAPKVGWCWWRNRHTWLGFASTDGRLGSNANANANANA
AK018_044662754acnA_1COG1048Aconitate hydratase AGTGAGCAGCGTGGACACATTCGGATCGAAGGGAACCCTGGAGGTCGGAGACGCCTCGTACGAGATCTTCCGGCTGTCGGCCGTCGAGGGGCTCGAGCGCCTCCCGTACTCGCTGAAGATCCTCGCCGAGAACCTCCTGCGCACCGAGGACGGTGCGAACATCACCGCCGACCACGTGCGCGCGCTCGCCGGCTGGGACCCGGACGCCCAGCCGAGCACGGAGATCCAGTTCACGCCGGCGCGCGTGATCATGCAGGACTTCACCGGCGTGCCCTGCGTCGTCGACCTCGCCACCATGCGCGAGGCCGTCGCTGACCTCGGCGGGGACCCCACCCGCATCAACCCGCTCGCCCCCGCCGAGATGGTCATCGACCACTCCGTGCAGATCGACGTCGCCGGCACGACCGAGGCCTTCGCGCGCAACGTCGAGTACGAGTACGAGCGCAACCACGAGCGTTACCAGTTCCTGCGCTGGGGCCAGACCGCGTTCGACGACTTCAAGGTCGTCCCGCCGGGCACCGGCATCGTCCACCAGGTCAACATCGAGTACCTGGCCCGCACCGTGATGACCCGCGAGGTCGACGGGGTGCTGCGCGCCTACCCGGACACCTGCGTCGGCACCGACTCCCACACCACGATGGTCAACGGCCTCGGCGTGCTCGGCTGGGGCGTCGGCGGCATCGAGGCCGAGGCGGCCATGCTCGGCCAGCCCGTCTCCATGCTGATCCCGCGCGTGGTCGGCTTCAAGCTCACCGGCGAGATCCCCGCCGGTGTGACCGCGACCGACGTCGTGCTCACGATCACGCAGATGCTGCGCCAGCACGGCGTGGTCGGCAAGTTCGTCGAGTTCTACGGCTCCGGCGTCGGCCAGGTGCCGCTCGCCAACCGCGCCACCATCGGCAACATGTCGCCCGAGTTCGGCTCCACCGCCGCGATCTTCCCGATCGACGACGTCACGGTCGACTACCTGCGCCTGACCGGCCGCAGCGAGGACCAACTCGCCCTCGTCGAGGCCTACGCCAAGGAGCAGGGCCTCTGGCTCGACCCGAGCAGCGACGACTACGTCGAGCCCACCTTCTCGGAGTACATGGAGCTCGACCTGTCCACGGTCGTGCCGTCCATCGCCGGCCCGAAACGTCCGCAGGACCGCATCGAGGTGTCCAAGGCCAAGGCCGCGTTCGCCCGCGACCTGCCGAACTACGCCTCGGACGTCATCGACTTCGTCGACGAGGCCGAGAAGGAGTCCTTCCCCGCCTCCGACTCGCCGTCGACCCACGAGCACGTGCGTCCCACGGTGCCGGTGACCGACTCCCAGGGCCGCCAGTTCGACCTCTTCCACGGCGCCGTCGCCATCGCCTCGATCACGTCGTGCACCAACACCTCGAACCCGTCGGTCATGCTCGCCGCGGCGCTGCTGGCCAAGAACGCCGTCGAGGCCGGCCTGGTCTCCAAGCCCTGGGTCAAGACGTCGATGGCCCCCGGCTCGCAGGTCGTGACGAACTACTACGAGAAGGCCGGCCTGTGGCCGTACCTGGAGAAGCTCGGCTTCCACCTGGTCGGCTACGGCTGCACCACGTGCATCGGCAACTCCGGCCCGCTCGACGAGAAGGTCTCCGAGGCCGTCCAGGAGAACGACCTCGCCGTCGTCTCCGTGCTGTCCGGCAACCGCAACTTCGAGGGCCGGATCAACCCGGACGTGAAGATGAACTACCTGGCCTCCCCGCCGCTGGTCATCGCCTACGCGCTCGCCGGGACCATGGAGTTCGACTTCGAGGCCGACCCGCTGGGCCGCGACGACGAGGGCAAGCCGATCTTCCTCAAGGACATCTGGCCCACGCCGGACGAGGTCCAGGCCACGATCGAGTCGTCCATCGACCGCAAGATGTTCGAGGCCGACTACGCCGACGTGTTCGCCGGTGACGACCGCTGGCGTGCGCTCGAGACCCCGGAGGGCTCCACGTTCTCCTGGGACGATGAGTCCACCTACGTGCGCCGCCCCCCGTACTTCGAGGGCATGGGCGCCACCCCGGACCAGGTCGAGGACATCGCCGGTGCCCGGGTGCTGGCGAAGCTCGGCGACTCGGTCACCACCGACCACATCTCGCCGGCCGGTGCCATCAAGCCGGACAGCCCCGCGGGCAAGTACCTCGCCGACCACGGCATCGCGCGCCGCGACTTCAACTCCTACGGCTCGCGCCGCGGCAACCACGAGGTCATGATCCGTGGCACGTTCGCGAACATCCGCCTGAAGAACCTGCTCCTGGACGGCGTCGAGGGTGGCTTCACCTACAACTTCGTCAAGGGCGAGCAGGACACCATCTACGACGCCGCGCAGGACTACGCCGCTCAGGACACCCCGCTGGTGGTGCTCGGCGGCAAGGAGTACGGCTCCGGCTCCTCGCGCGACTGGGCCGCCAAGGGCACCAAGCTGCTCGGCGTCAAGGCGGTCATCACCGAGTCGTTCGAGCGCATCCACCGCTCGAACCTCATCGGCATGGGCGTGCTCCCGCTGCAGTTCCCGGCCGGCGAGTCCGCGGACTCCCTCGGCCTGGACGGCACCGAGACGTTCGACATCTCGGGCATCACCGCGCTGAACGACGGTGACACCCCGGAGACCGTCGCGGTGAAGGCCACGAAGGACGACGGCACGACCGTCGAGTTCGACGCCGTGGTGCGCATCGACACCCCGGGCGAGGCCGACTACTACCGCAACGGCGGCATCCTGCAGTACGTGCTGCGCTCGCTGGTCGCCTGAMSSVDTFGSKGTLEVGDASYEIFRLSAVEGLERLPYSLKILAENLLRTEDGANITADHVRALAGWDPDAQPSTEIQFTPARVIMQDFTGVPCVVDLATMREAVADLGGDPTRINPLAPAEMVIDHSVQIDVAGTTEAFARNVEYEYERNHERYQFLRWGQTAFDDFKVVPPGTGIVHQVNIEYLARTVMTREVDGVLRAYPDTCVGTDSHTTMVNGLGVLGWGVGGIEAEAAMLGQPVSMLIPRVVGFKLTGEIPAGVTATDVVLTITQMLRQHGVVGKFVEFYGSGVGQVPLANRATIGNMSPEFGSTAAIFPIDDVTVDYLRLTGRSEDQLALVEAYAKEQGLWLDPSSDDYVEPTFSEYMELDLSTVVPSIAGPKRPQDRIEVSKAKAAFARDLPNYASDVIDFVDEAEKESFPASDSPSTHEHVRPTVPVTDSQGRQFDLFHGAVAIASITSCTNTSNPSVMLAAALLAKNAVEAGLVSKPWVKTSMAPGSQVVTNYYEKAGLWPYLEKLGFHLVGYGCTTCIGNSGPLDEKVSEAVQENDLAVVSVLSGNRNFEGRINPDVKMNYLASPPLVIAYALAGTMEFDFEADPLGRDDEGKPIFLKDIWPTPDEVQATIESSIDRKMFEADYADVFAGDDRWRALETPEGSTFSWDDESTYVRRPPYFEGMGATPDQVEDIAGARVLAKLGDSVTTDHISPAGAIKPDSPAGKYLADHGIARRDFNSYGSRRGNHEVMIRGTFANIRLKNLLLDGVEGGFTYNFVKGEQDTIYDAAQDYAAQDTPLVVLGGKEYGSGSSRDWAAKGTKLLGVKAVITESFERIHRSNLIGMGVLPLQFPAGESADSLGLDGTETFDISGITALNDGDTPETVAVKATKDDGTTVEFDAVVRIDTPGEADYYRNGGILQYVLRSLVAPGPT0001465_1201DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001465-acnA-K01681NANA
AK018_04467855hypothetical proteinGTGGTCCCTGCACCGATGCGCGCGACGTTCCGCACGCTGTCCGTCGTCGCTCCCCCGGTCGCCACCGGCGTCGCCGCGCGACTGTTCACGAAGGTCGGCCCGCGGGCCCGCGTCCGCCCCGCCGACCAGGACGTCCACGACGCCGCCGAGCGCGGCACCGTCGACGTCGACGGCTCGCCCGTGACCACCTACCACTGGGGTGCGAGCTCCCCCGAGGCACCGACCGCGCTGCTGGTGCACGGCTGGCAGCGCCGCGCCAGCCGCTTCACCGCACTCGTGCGCGCCCTGGTCGACGCCGGCTGGTCCGTCGACTCCTACGACGGCCCGGCGCACGGCGAGTCGGCCGGTGACCGGCTCACCGTCATCGAGCACATGGCCGCGATGCGCGCGATGCAGGAGCGGCGCGGCACCTACACCGCCGTCGTCGGGCACTCCCTGGGCGCCTTCACCGCCGGCACGGCGCTGCACGAGGGATTCCGGGCCGAACGGTTCGCCGCCCTGGCGGCACCGACCAGCTTCGACTCCGTCGCCGCCACCTACATGCGGCTCGTCGGCATCCCCGCGCGGCTGCACGACCGCGTCTGCGACGGCATCGCCCGCACCCTCTTCCCGGACATCACCGGCTTCCGCGCCCGGTTCGACCTGTGCCGGCACCCGGTCCCGGCCGAGGTGCCGACGCTGTTCGTCCAGGACGCCGACGACCGGATGCACGGCGTCGAGGAGGCCCGGGCGCTGCATGCCGCGCACCCCGGCAGCGAGCTGCTGATCACCTCCGGCCAGGGGCACAACGGCGTCCTGGACGACGAGACCGTCGTGAAGACCGTCGTCGAGCACCTGACCCGCGTCCCCGCCTGAMVPAPMRATFRTLSVVAPPVATGVAARLFTKVGPRARVRPADQDVHDAAERGTVDVDGSPVTTYHWGASSPEAPTALLVHGWQRRASRFTALVRALVDAGWSVDSYDGPAHGESAGDRLTVIEHMAAMRAMQERRGTYTAVVGHSLGAFTAGTALHEGFRAERFAALAAPTSFDSVAATYMRLVGIPARLHDRVCDGIARTLFPDITGFRARFDLCRHPVPAEVPTLFVQDADDRMHGVEEARALHAAHPGSELLITSGQGHNGVLDDETVVKTVVEHLTRVPANANANANANA
AK018_04468729hypothetical proteinATGACGCTCCACGGGCTCGAACCAGAGGTCGCCGCAGCGGTGCCGTCGTCGGACGGCCGGCGCCGCCGGGGTGACCGCACCCGCGCGGCCGTGCTGGACCACGCCGTCCAGCGCGCCTCCGCCGACGGGCTCGCCGGCCTCACGTTCGGGACCCTCGCCACCGAGGCCGGGGCGACCAAGAGTGCGATCGCCGGGCTATTCGGGAACAAGGAAGGACTCGAGATCGCGCTCGTCCAGCACGCGCGGGGGATCTTCCTCGACGCCGTGATCGTCCCCGCCCGCGCAGCGAGCCCGGGGCTCGACCGGGTGTGGGACCTCGCCCGACGATGGGCCGAGTACTCCCGGACCCGGACGTTCGCCGGGGGGTGCTTCTTCCGCGCCGTCGAGACCGAGGTGGACTCCCGACCCGGACCGGTGCGCGACGCCGTCGTGGGCATGCGCCGGGAGTGGGACGGCTACCTGGAGCACCACGTCGCGCTCGCGGTCGAAGCCGGTGAGCTGGCGACCGACGTCGACCCTGCGCAGGTCGTCTTCGAGATCGTCGCGCTGCTCGGCACGGCCAACGACCGCTCGCTGCTGCTGGACGACGACGGCTCCTACGCGCGTGCGCTGGCCGCGGTCACCACCGTGCTGGTGGCGCACGGCGCCGACCCGGAGCGCCTCGCCGATCAGGCGAAGCCGAACAGCGGGCCGAACGCCACCACGACGCACGCCGCCCACACCGCGTAGMTLHGLEPEVAAAVPSSDGRRRRGDRTRAAVLDHAVQRASADGLAGLTFGTLATEAGATKSAIAGLFGNKEGLEIALVQHARGIFLDAVIVPARAASPGLDRVWDLARRWAEYSRTRTFAGGCFFRAVETEVDSRPGPVRDAVVGMRREWDGYLEHHVALAVEAGELATDVDPAQVVFEIVALLGTANDRSLLLDDDGSYARALAAVTTVLVAHGADPERLADQAKPNSGPNATTTHAAHTANANANANANA
AK018_044691344hypothetical proteinATGGACGACACCGCCCTCGAGGCCCAGATCGACCGGTGGCGCGACTACGTGCGCCGACACCGCGCCGTGGCCCCCGACGACGTCGACGAGATGACCGACCACTTGCGCGAACGCATCGACGACCTGCGGGGCGCAGGACTCGACGACGAGGAGGCCTTCCTGGTCGCGGTCAAGCGCCTGGGCCGCCTCGACGCCGTCTCGCGCGAGTTCGCCCGCGAGCACTCCGAACGTCTCTGGAAGCAGCTCGTCCTGATGCCCGACGACGGCGCGACCGGGGCGCGCACACCCTGGCGTGACCTCGGCGTCCTGCTCGCCCTCGCCGTCGGCGCCGGGACGGCCGTCAAGATCGCCGCCGCGGGACTCGACGAGGAGACGTTCGTGCGCAACGCCGTCTTCCTCGTGCTGCCCTTCCTGGCGGCCTACTTCGTCTGGAAGCGGCGCCCACCGCTCCGCCCGGTCGCCGTCGTGACCGTCTCGGCCGCCGTCGCGTGCGCCCTGGTGAACCTCTACCCGTTCGCACCCGGCGGGTCGACCGGGCTGCTGGCCGCCGCGCACGCACCGGTGGTGCTGTGGGCGCTGGTCGGCGTCGTCTACGCGGGCGGACGGTGGCGGTCGCCGGACCGCCGGATGGATTTCGTGCGGTTCACCGGCGAGCTCGCCATCTACTTCGTGCTGCTGGCGCTCGGCGGCGGCGTGCTGCTGGGGCTGACCGCCGGGCTGCTCAGCCTGGTCGACGTCGACCTCGAACCGGTCCTCGAGGGCTGGATCCTGCCGTTCTGCGTGCCCGGCGCGTTCCTCGTCGCGGCCTGGCTGGTGGAGGCCAAGCAGGAGGTGGTCGAGAACATCGCGCCGGTGCTGACCCGCGTGTTCACGCCGTTGACCACGGTGATGCTCGCCGTCTCCTTCGTGGTGCTGGCCACCGCGGGGGGCCTGACGACGGTGGACCGCGAGCTGCTCATCCTGCTCGACGCCGTCCTCGTCCTGGTGCTCGCGCTGCTGCTGTACTCGATCTCCGCCTGCGACCCGCTGGCGCGACCAGGTCTGTTCGACGGCCTGCAGCTCGCCCTCGTCGTGGCGGCCCTCGCGGTCGACGCGCTCGCCCTGACGGCGATGCTGACGCGTATCGCCGAGTTCGGCGCCAGCCCCAACAAGGTGGCGGCGCTGGGTCTCAACCTCCTGCTGCTGGTGCACCTGGTGCGGACCGGGTGGCTGCTGCTGGGATTCTGCCGACGCCGGCGAGGCTTCGCCGCGCTGGAGGGGTGGCAGACCAGCTACCTGCCCGTCTACGCGGTGTGGGCGGCGTGCGTCGTGGTGGCGTTCGGCCCGCTGTTCGGCTTCGCCTGAMDDTALEAQIDRWRDYVRRHRAVAPDDVDEMTDHLRERIDDLRGAGLDDEEAFLVAVKRLGRLDAVSREFAREHSERLWKQLVLMPDDGATGARTPWRDLGVLLALAVGAGTAVKIAAAGLDEETFVRNAVFLVLPFLAAYFVWKRRPPLRPVAVVTVSAAVACALVNLYPFAPGGSTGLLAAAHAPVVLWALVGVVYAGGRWRSPDRRMDFVRFTGELAIYFVLLALGGGVLLGLTAGLLSLVDVDLEPVLEGWILPFCVPGAFLVAAWLVEAKQEVVENIAPVLTRVFTPLTTVMLAVSFVVLATAGGLTTVDRELLILLDAVLVLVLALLLYSISACDPLARPGLFDGLQLALVVAALAVDALALTAMLTRIAEFGASPNKVAALGLNLLLLVHLVRTGWLLLGFCRRRRGFAALEGWQTSYLPVYAVWAACVVVAFGPLFGFANANANANANA
AK018_04470384hypothetical proteinATGCACATCGACAAGGATCTCGTCGCGGCCTCCGCGACGCCGCTCGTCCTCGGCATCCTCGCCGACGGCGAGTCCTACGGGTACGCCATCGCCAAGCAGGTGGCCGACCTGTCCGACGGCCACATGGAGTGGACCGACGGGATGCTCTACCCGCTGCTGCACCGCCTCGAGCGCCACGGCCTGATCGAGGCCTCCTGGGGCCGGTCCCCCGCCGGCCGACGCCGCAAGCACTACGCGCTGACCGCCGCCGGTCGCGCCGAGCTGGCCGAGCGCCGGTCCCAGTGGGAGGTCGTGGCGGCGACGCTCGGTCGCGCCTGGCAGTCCCTGGCCGCCCCGTCCGGACCCGCCGCGATCTCCCCGCGCCCGGCCGGAGGCACGGCCTGAMHIDKDLVAASATPLVLGILADGESYGYAIAKQVADLSDGHMEWTDGMLYPLLHRLERHGLIEASWGRSPAGRRRKHYALTAAGRAELAERRSQWEVVAATLGRAWQSLAAPSGPAAISPRPAGGTANANANANANA
AK018_04471429hypothetical proteinATGAGCACCACGATCCCCGACGACGTGCGCGCGTTCGTCGACGCCGTCCAGCGGCCCGGCCGTCGTCGTGACGCCGAGACGCTGCTGGAGATGATGGGCCGGGTCACCGGGCAGGCACCCGAGCTGCACGGCACGATCGTCGGGTTCGGGCGGTACCACTACGAGTACGCCTCCGGGCGGTCCGGCGACGCCCCCGCCGCGGCGTTCGCACCACGAGCGGCGAACAGCGTCGTCTACCTCATGGACGGCGTCGAGGCGCACGCCGCAGACCTCGAGCGGCTCGGCCCGCACCGCACCGGCGTCGGGTGCCTGTACCTGACGAACCTCACCAAGGTCGATCTCGCGGTGCTCGAGAAGGTCGTCGCCGACGCCTACGCCACGCTGACGGCCGGCACCTACGGGCTCCGGGCCCGCGACGGCGGTTCCTGAMSTTIPDDVRAFVDAVQRPGRRRDAETLLEMMGRVTGQAPELHGTIVGFGRYHYEYASGRSGDAPAAAFAPRAANSVVYLMDGVEAHAADLERLGPHRTGVGCLYLTNLTKVDLAVLEKVVADAYATLTAGTYGLRARDGGSNANANANANA
AK018_04472915hypothetical proteinATGGCCGCCGCGGAGATCGAGATCGACGCGGCGCTCGTGCGGGCGCTCCTGGCCGAGCAGCACCCCGACCTGGCGGACCGACCGCTGCACGTCGCGGCGCACGGCTGGGACAACGTCATGGTGCGGCTCGGGGACGACCTGGCCGTCCGGCTGCCGCGGCGCGCGACGGCGGCACCGCTGATCGAGCACGAGCAGCGCTGGCTCCCGCAGCTGGCCCCTCGACTGCCGGTCCCGGTGCCGGTCCCGCTGCGCGTCGGCGTACCGAGCACCGCGCTGAGCTACCCGTGGCGGTGGTCCGTGGTCCCGTGGATGTCGGGCGTGCGGGGCGCCGACGTCGCCCGGGGGCGTCGCACCGCCGTCGCCGTCCCGCTCGCCCGGTTCTTCGCCGCCCTGCACAAGCCCGCTCCCGCCGACGCCCCGGCCAACCCCTACCGCGGCGTACCGCTGCCGTCCCGCGACGGGCCGCTGCGCGACCGCCTCGCGTCCGGCGTCACCACCCGCACGAGCGCCGCCCTGGCGGTCTGGGAACGCGCGCTGGCGGCCGAGAGGTGGGACGGCCCCGCACTGTGGCTGCACGGCGACCCGCACGCGGGCAACCTCGTGCTGACCGCCACGTCGGCTCCGGAGCTCGCCGCCGTGGCGGATTTGGGTGACCTCACCTCCGGCGACCCCGCGACCGACCTGGCCGCCGCGTGGACGGTGTTCGACGGCGTGGGCCGGCGGGCGTTCCGCGCCGCGTTGGCAGGCCCCTACCCCGCCGACGACCCCGTCTGGGACCGTGCTCGCGGCTGGGCGTTGTCGATGGCGACCTCGATGCTGACGTCCGGCCCCGAGCACGCGTGGCTCGTCACGCTGGGGCGCGAGTCCCTGGCCGAGGTGCTCGCCGACGACCGAGAGACCACACTGGCGCCATGAMAAAEIEIDAALVRALLAEQHPDLADRPLHVAAHGWDNVMVRLGDDLAVRLPRRATAAPLIEHEQRWLPQLAPRLPVPVPVPLRVGVPSTALSYPWRWSVVPWMSGVRGADVARGRRTAVAVPLARFFAALHKPAPADAPANPYRGVPLPSRDGPLRDRLASGVTTRTSAALAVWERALAAERWDGPALWLHGDPHAGNLVLTATSAPELAAVADLGDLTSGDPATDLAAAWTVFDGVGRRAFRAALAGPYPADDPVWDRARGWALSMATSMLTSGPEHAWLVTLGRESLAEVLADDRETTLAPNANANANANA
AK018_04473690nudL_1putative Nudix hydrolase NudLGTGACGGTGCCCTCTGCCCGCGACCAGCTCCGGGCGCTGGCCGCCGACGGCGCGTTCACCGGCCCGTGGCGCCACGCCCGCGGCGAGTTCGACGACGCCTCCGCCCGGCCGGCGTCGGTGCTGGTGCTGTTCGGCGTGCTGGACGGCCTGCCGTCGGACCACCACGCGCAGGCGCTGGCCGTCTCCGCCGACCTCGACGTGCTCCTCCTCGCCCGGGCCGCCACGCTGCGCTCCCACGCGGGGCAGGTGGCGTTCCCGGGCGGGCGCGCCGACGCCGACGAGGACGCCGTCTCGGCCGCGCTGCGCGAGGCCCGCGAGGAGACGGGCGTCGACACCGACGGCGTCGAGGTGCTCGGCACGCTCACCTCCCTGCCGATGCCGGTGAGCAACCACGTGGTCACCCCCGTGCTCGGCTGGTGGACGCGCCAGTCCCCGGTCGGCGTCGTCGACCCCGCCGAGTCCTCGCACGTGTTCCGCGCCCCCGTGGCCGACCTCCTCGACCCGGACCACCGCGTCACCACCGTGCTGCGCCGCGGCGGGCAGGTCTGGCGCGGTCCCGCATTCCTCGTGGACGACGGCGGCACCGAGCACCTCGTGTGGGGGTTCACCGCGGGCATCCTCGACGCGATGTTCGACCACCTCGGCTGGACCGAGCCGTGGGACCGCGGGCGCGAGCTGGAGCTCGACTGAMTVPSARDQLRALAADGAFTGPWRHARGEFDDASARPASVLVLFGVLDGLPSDHHAQALAVSADLDVLLLARAATLRSHAGQVAFPGGRADADEDAVSAALREAREETGVDTDGVEVLGTLTSLPMPVSNHVVTPVLGWWTRQSPVGVVDPAESSHVFRAPVADLLDPDHRVTTVLRRGGQVWRGPAFLVDDGGTEHLVWGFTAGILDAMFDHLGWTEPWDRGRELELDNANANANANA
AK018_044741449guaB1_1COG0516putative oxidoreductaseGTGCGTTTTCTCTCCGGCCAGCAGCCCACCACGGACCTCACCTACGGCGACGTCTTCATGGTGCCGTCCCGCTCGGACGTCACCAGCCGCTTCGACGTCGACCTGTCCACCGACGACGGCACCGGCACCACGATCCCGGTGGTCGTGGCGAACATGACCGCGGTGGCCGGGCGGCGCATGTCGGAGACGGTCGCGCGCCGCGGCGGCATCGCGATCCTGCCGCAGGACATCCCGGTCGACGTCGTGGCCGACGTGGTCGCGGACGTCAAGTCCAAGGACCCCGTCGTCGAGACGCCCGTGGTGGTGACCTCGGCGGACACCGTCGCCGACGTGCTGTCCCTGCTCGGCAAGCGGTCCCACGGCGCGGCGGTGGTGGCCGACGCCGGCCGCCCGGTCGGCGTGGTCACCGAGGCCGACTGCACCGCCGTGGACCGGTTCGCCCGGGTCGGCGCCGTGATGTCGACCGACCTGGTCACGGTCGACGCCAAGGAGATCGAGGACGACGGCCTGGCGGCCACGTTCGAGCGCCTGCACGCCGCCAAGGTCCAGCTCGCCCCCGTGGTGCGCGACGGCGTGCTCGCCGGGGTGCTGACCCGCAAGGGTGCCGTGCGCTCCACGGTCTACTCCCCCGCCCTGGACCCCCGCGGCCGGCTGCGCGTCGGCGCCGCCGTCGGCATCAACGGCGACGTCGCCGCCAAGACGCGCGAGCTGCTCGACGCCGGGATCGACGTGCTCGTGGTGGACACCGCGCACGGCCACCAGGACAAGATGATCGCCGCGCTGCGCGCCGTGCGCTCCGTCGACCCGCGGGTGCCGGTCGTGGCCGGCAACGTGGTCACGGCCGAGGGCGTGCGCGACCTCGTCGAGGCGGGCGCCGACATCCTCAAGGTGGGCGTGGGCCCGGGCGCGATGTGCACCACGCGCATGCAGACCGCCGTCGGGCGCCCCCAGTTCTCCGCGGTGCTGGAGTGCGCCGCCGCCGCCCGCGAGCTCGGCAAGCACGTGTGGGCCGACGGCGGGGTGCGCCACCCGCGCGACGTCGCCCTCGCGCTGGCGGCCGGCGCGTCGCAGGTGATGGTGGGCTCCTGGTTCGCCGGGACGTACGAGTCGCCGGGCGACCTGCACGAGGACGGCTCGGGCCGGCTCTACAAGGACTCCTTCGGCATGGCCTCGGCCCGCGCCGTCGCGGCCCGCACCGCCGGCGCCGGCTCCGCGTTCGACCGCGCCCGCAAGGCCCTCTACGAGGAGGGCATCTCCACGGGCAAGATGTACCTGGACCCGCGCCGTCCCGGTGTCGAGGACCTCCTGGACGAGATCACCTCCGGCCTGCGCTCCAGCTGCACTTACGCCGGGGCCCGCACGCTGGCCGAGTTCGCCGAGCGCGCCACCGTCGGCATCCAGTCCGCGGCCGGGTTCGCCGAGGGCATGCCGGTGGCCACCTCCTGGTGAMRFLSGQQPTTDLTYGDVFMVPSRSDVTSRFDVDLSTDDGTGTTIPVVVANMTAVAGRRMSETVARRGGIAILPQDIPVDVVADVVADVKSKDPVVETPVVVTSADTVADVLSLLGKRSHGAAVVADAGRPVGVVTEADCTAVDRFARVGAVMSTDLVTVDAKEIEDDGLAATFERLHAAKVQLAPVVRDGVLAGVLTRKGAVRSTVYSPALDPRGRLRVGAAVGINGDVAAKTRELLDAGIDVLVVDTAHGHQDKMIAALRAVRSVDPRVPVVAGNVVTAEGVRDLVEAGADILKVGVGPGAMCTTRMQTAVGRPQFSAVLECAAAARELGKHVWADGGVRHPRDVALALAAGASQVMVGSWFAGTYESPGDLHEDGSGRLYKDSFGMASARAVAARTAGAGSAFDRARKALYEEGISTGKMYLDPRRPGVEDLLDEITSGLRSSCTYAGARTLAEFAERATVGIQSAAGFAEGMPVATSWPGPT0021445_4619DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
AK018_044751890dxs_11-deoxy-D-xylulose-5-phosphate synthaseATGGGGTTGCTGAGCACGATCACCTCGCCCGAGGACGTGCGCCGGTTGACCCCGGCCCAGACCGAGAAGCTCGCCGCGGAGATCCGGACGTTCCTGGTCGAGAACGTCTCGCGCACCGGCGGGCACCTCGGGCCGAACCTCGGCGTCGTCGAGCTGACCATCGCGATGCACCGCGTGTATACCTCGCCGCGGGACACGATGGTGTTCGACACCGGGCACCAGAGCTACGTGCACAAGCTGCTGACCGGGCGGCAGGACTTCTCCGCGCTGCGCAAGGCCGGGGGGCTGTCCGGGTACCCGAGCCGGGCCGAGTCCGAGCACGACGTCGTGGAGAACTCCCACGCCTCGACCGCGCTGTCCTGGGCGGACGGCGTCGCCAAGGCCAACGTCGTCGCCGGGCGGCGCGATCGCCACGTCGTGGCCGTCATCGGTGACGGCGCGCTGACCGGCGGCATGGCCTGGGAGGCGATCAACAACATCGCCGCCGACGCCGACCGGCGCCTGGTGATCGTGGTCAACGACAACGGCCGCTCCTACTCGCCGACGATCGGCGGGGTCGCGAACCACCTGCAGACGCTGCGCACCACCAGCGGGTACGAGGCGTTCCTCGAGTGGGGCAAGCGCACCCTGTACCGCACCGGCCCGCCCGGACGGTTCGCCTACGGCTGGCTGCACGGCCTGAAGAAGGGCCTCAAGGACGTCGTCGCGCCCCAGGGCATGTTCGAGGACCTCGGCCTGAAGTACGTCGGCCCCGTGGACGGGCACGACGCCGAGGCGATGGAGCACGCGCTGCGGCGCGCCAAGGCCTACGGGCGCCCCGTCATCGTGCACGCCATCACCGAGAAGGGCCGCGGGTACACGCCCGCGATGGAGGACGTCGCCGACCGGTTCCACGCCGTCGGCAAGATCCACCCCGAGACCGGCCTGCCGGTGGCGCCGTCGCGGTTCGGGTGGACCCAGGTATTCGCCGACGAGATCGTCCAGATCGGTCGCCGCCGCTCCGACGTCGTGGCGATCACCGCCGCCATGCTGCACCCCGTCGGCCTGGCCCCGTTCTCGCAGGAGTTCCCGGAGCGCACGTTCGACGTCGGGATCGCCGAGCAGCACGCCGCCACCTCGGCCGCGGGCATGGCGTTCGCCGGCCTGCACCCCGTCGTGGCCGTCTACGCGACGTTCCTCAACCGGGCGTTCGACCAGGTCCTCATGGACGTCGCTCTGCACCGGGCCGGCGTGACGTTCGTCCTCGACCGGGCCGGCGTCACCGGCGACGACGGCGCCAGCCACAACGGCATGTGGGACATGGCGCTGCTGCGCATCGTGCCCGGGCTGCGGCTGGCCGCGCCGCGCGACGAGGCCACGCTGCGCGGTGCGCTGCGGGCCGCCGTCGACGTCGACGACGCCCCCACCGTGGTGCGCTACCCCAAGGGCGCGCTCGTCGAGGCGATCGACGCCGTCGAGGAACACGAGGGCCTCGACGTCATCGCCCGCCACACCCCGGGCGACGGCGCACCGGCCGGCCGGCGCGTGCTCGTGGTCGGCGTCGGCTCGATGGCCGGGGCGGCGCTCGCGGCCGGGGAGTCGCTGGCCGCTCACGGCCTGGAGGTCGAGGTCGTCTCGCCGACGTGGGTCCTGCCCGTGCCGGAGGCGCTCGTGAAGCAGGTCGGGGAGCACGACCTGGTCCTGACCCTGGAGGACGGCGTGGTCGACGGCGGTGTCGGGGCGATGCTGGCCCAGCGGGCCGGAGAACAGGGCGTGCAGACCCCGTTCGTGCACCGGGGCCTGCCGGTGGCGTTCCTGGACCACGCGAGCCGCGACCAGGTGATCACCGCCCAGCGCATGCGCGCCGAGGACGCCGTGCGCGACGCGCTGGCGGCGCTGAGCCGGGACTGAMGLLSTITSPEDVRRLTPAQTEKLAAEIRTFLVENVSRTGGHLGPNLGVVELTIAMHRVYTSPRDTMVFDTGHQSYVHKLLTGRQDFSALRKAGGLSGYPSRAESEHDVVENSHASTALSWADGVAKANVVAGRRDRHVVAVIGDGALTGGMAWEAINNIAADADRRLVIVVNDNGRSYSPTIGGVANHLQTLRTTSGYEAFLEWGKRTLYRTGPPGRFAYGWLHGLKKGLKDVVAPQGMFEDLGLKYVGPVDGHDAEAMEHALRRAKAYGRPVIVHAITEKGRGYTPAMEDVADRFHAVGKIHPETGLPVAPSRFGWTQVFADEIVQIGRRRSDVVAITAAMLHPVGLAPFSQEFPERTFDVGIAEQHAATSAAGMAFAGLHPVVAVYATFLNRAFDQVLMDVALHRAGVTFVLDRAGVTGDDGASHNGMWDMALLRIVPGLRLAAPRDEATLRGALRAAVDVDDAPTVVRYPKGALVEAIDAVEEHEGLDVIARHTPGDGAPAGRRVLVVGVGSMAGAALAAGESLAAHGLEVEVVSPTWVLPVPEALVKQVGEHDLVLTLEDGVVDGGVGAMLAQRAGEQGVQTPFVHRGLPVAFLDHASRDQVITAQRMRAEDAVRDALAALSRDPGPT0008960_2581DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008960-dxs-K01662NANA
AK018_044761356yesO_3COG1653Putative ABC transporter substrate-binding protein YesOATGCGAGCAACGACCACACGACGCGGCCGCCGGAACGCCGCCGCCTTCATCGCGCTGACCGCGGCGAGCACCCTCGCGCTGGGTGCCTGCTCGGGAGACGCCGGCGGCCCGGCCGCCGAGGGCGACGACACCGGGTCGTCCGAGGAGGGCGGCGGTGACGGCGGCGACGGCGTCGAGATCCGCTTCTCGTGGTGGGGTTCCGACGACCGTCACCAGACCACCCAGGAGATCATCGACCTCTTCGAGGAGAAGAACCCGGACATCACCGTGGTGCCCGACTTCACCGACTGGGGCGGGTACTGGGACAAGCTGGCGACCACGGTCGCCGGCGGTGACACCCCCGACGTCATCACCCACGAGGAGCGCTTCATCGCCGACTACGCCAACCGCGGCGTGCTCGCCGACCTGGAGTCCCTCGACATCGACACCTCCGAGGTCCCCGAGAGCATCATCGACTCCGGTCGCGTCGACGGGACCCTGTACGGCATGGCCACCGGCGTGAACGCCTACGCCATCACGGCGGACCCGACGGTGTTCGAGGAGGCCGGCGTCGAGATGCCGGACGACACGACCTGGACGTGGGACGAGTTCGTCGAGATCTCGGCACAGATCTCCGAGGCCGCCGGCGACGGCGTCTGGGGCACCCAGGACATCGGCTTCAACGAGGCCGGGCTCAACATCCTGGCCCGCCAGAAGGGCCAGTCGCTCTACAACGAGGACGGCTCGCTCGGTGTCGACGCCGAGACCGTGGCCGAGTTCTTCCAGATCGGCGTGGACCTGCAGGAGTCGGGCGGTACGCCGGACGGCTCGCGCACCATCGAGATCCAGAACGCCGGCCCCGAGGGCTCGCTGCTCGGCACGAACGCCGGCGCCATGGGCGTCTGGTGGACCAACCAGCTCGGCGCCCTGAGCGCCGCCTCGGGCCACGAGCTCGAGCTGCTGCGCATGCCGGGCGAGTCGGAGTTCGAGCGCACCGGCATGTACTTCAAGCCGGCCATGTTCTACTCCGTCGCCGAGGACACGGAGCACCCGGAGGCCGCGGCGAAGTTCGTCGACTTCCTGGTCAACGACCCGGAGGTGGCGCAGCTGCAGCTCACCGACCGCGGTCTGCCGTCGAACCTGTCGGTGCGCGAGTCCATCGAGGATCAGCTCGAGGCCGCCGACGCGCGTGTCGCGGAGTTCATGGCCGACCTCGAGTCCGACATCGTGGACGGTCCGCCGGTGCCGCCGAACGGCGCCGGTGACGTCCAGGACGTCATGATCCGGCTCAACACCGAGGTGCTCTTCGGTTCCATGACGCCGGAAGAGGCCGCCGAGCAGTTCCTCACCGAGGTCGCGGAGGTGACCGGGAGCTGAMRATTTRRGRRNAAAFIALTAASTLALGACSGDAGGPAAEGDDTGSSEEGGGDGGDGVEIRFSWWGSDDRHQTTQEIIDLFEEKNPDITVVPDFTDWGGYWDKLATTVAGGDTPDVITHEERFIADYANRGVLADLESLDIDTSEVPESIIDSGRVDGTLYGMATGVNAYAITADPTVFEEAGVEMPDDTTWTWDEFVEISAQISEAAGDGVWGTQDIGFNEAGLNILARQKGQSLYNEDGSLGVDAETVAEFFQIGVDLQESGGTPDGSRTIEIQNAGPEGSLLGTNAGAMGVWWTNQLGALSAASGHELELLRMPGESEFERTGMYFKPAMFYSVAEDTEHPEAAAKFVDFLVNDPEVAQLQLTDRGLPSNLSVRESIEDQLEAADARVAEFMADLESDIVDGPPVPPNGAGDVQDVMIRLNTEVLFGSMTPEEAAEQFLTEVAEVTGSPGPT0016545_3843DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_04477957ngcG_5COG0395Diacetylchitobiose uptake system permease protein NgcGATGACTGACACGCCCGTGCGCCCCGACGCACACGCCGCCACCACCGACGACCGGTCACCCGTGCGCCCCCGGCGCCCGCTGTCGGAGGTCGCCGCCGAGATCCCGGACTCCCCGCGCAAGCGGTCGTGGCAGCCCCGAGCGCGCCGGCTGCTGAAGCACGCGCTGCTCATCGGCTTCGGCCTGGTGATGCTCTACCCGTTGCTGTGGATGCTGTCGAGCTCCTTCAAGCCGAACGACATCATCTTCCGTGACACGGGGCTGATCCCGACCGAGCTCGACCTGACCAACTACGGCGACGGCTGGTTCGCGCTGCTGCACCCGTTCCACCACTACCTGCTGAACTCGGCGATCGTGGTGCTCGGATCGGTGCTCGGGAACCTCATCTCCTGCTCGATGGCGGCCTACGCCTTCGCACGGCTGAAGTTCCGCGGCCGGCCGATCTGGTTCGCCATCATGCTGATGTCGATCATGCTGCCGATCCACGTCGTCATCGTGCCGCAGTACATCCTGTTCTCCGAGCTGGAGTGGATCAACACGTTCCTCCCGCTCGTCGTGCCGAAGCTGCTGGCCACGGACGCGTTCTTCACCTTCCTCATGGTGCAGTTCTTCCGCGGGCTGCCGAAGGGCCTCGACGAGGCGGCACGTCTGGACGGCTGCGGGCACGGCCGGATCTTCCTGCAGATCATGCTGCCGCTGTCGCTCCCGGCCCTGGCGACGACGGCGATCTTCACGTTCATCTGGACGTGGAACGACTTCTTCAGTCAGCTCATCTTCCTCACCGACCCCGAGATGTACACCGTCCCGATCGCGTTGCGGACGTTCATCGACGCCACGAGCGCCAGCTCGTGGGGCCCGTTGTTCGCGATGTCGATCGTCTCCCTCGTCCCGATCTTCTTCATCTTCCTCTTCGGCCAGAAGTACCTGGTCAAGGGGATCGCCACGACCGGCATCAAGTAGMTDTPVRPDAHAATTDDRSPVRPRRPLSEVAAEIPDSPRKRSWQPRARRLLKHALLIGFGLVMLYPLLWMLSSSFKPNDIIFRDTGLIPTELDLTNYGDGWFALLHPFHHYLLNSAIVVLGSVLGNLISCSMAAYAFARLKFRGRPIWFAIMLMSIMLPIHVVIVPQYILFSELEWINTFLPLVVPKLLATDAFFTFLMVQFFRGLPKGLDEAARLDGCGHGRIFLQIMLPLSLPALATTAIFTFIWTWNDFFSQLIFLTDPEMYTVPIALRTFIDATSASSWGPLFAMSIVSLVPIFFIFLFGQKYLVKGIATTGIKPGPT0016540_692DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_04478924lacF_7Lactose transport system permease protein LacFATGTCCGTGATCCAGGAGGTTGCCAAGACCCGCGGCGCCGCCCGTGAGACGCGGAAGGGTGACGGCAAGGCCGCAGCGATCTTCCTCGCGCCCTGGTTCCTGGGCCTGGGGCTGATCACCGCCTTCCCCCTGCTCGCCTCGCTGTACCTGTCGTTCACCGACTACAGCCTGCTGGAGGCACCGAGCTGGATCGGCGTCCAGAACTACGTCGACATGGTCTCGGACCCCCGATGGCTGAAGTCGCTGGGCGTGACGTTCCGCTACGTCTTCATCTCGGTGCCGCTCCAGCTCGCCGCCGCGCTCGCGCTGGCGATGGTGCTCGACCGCGGGCTGCGGGGGCTGGCGATCTACCGCTCGGCGTTCTACCTGCCGTCCCTGCTGGGGAGCTCGGTGGCGATCGCCCTGCTGTGGCGCCAGATCTTCGGCGCCGACGGCCTGGTCAACCAGGTGCTCGCCTACTTCGGCATCCAGGGCGTCGGCTGGGTCTCCCACCCGGACTACGCCCTGGGAACCCTGATGATCCTCAACGTGTGGACCTTCGGTGCACCGATGATCATCTTCCTCGCGGGGCTGCGCCAGATCCCCACGATGTACTACGAGGCCGCCTCCATCGACGGGGCGAGCAAGTTCCGGCAGTTCTTCAGCATCACGATCCCGCTGCTGAGCCCGATCATCTTCTTCAACCTCGTGCTCCAGCTCATCAACGCCTTCCAGACCTTCACCCAGGCGTTCGTGATCTCCAACGGCACAGGTGGCCCGATCGACGAGACCTTGTTCTACACGCTGTACCTCTACAACCAGGGGTTCGGCTCGTACAACATGGGCTACGCCTCGGCGATGGCCTGGGTGCTGCTGCTCATCGTCGCCGGGCTGACGGCCGTCAACTTCCTCGCCTCCAAGTACTGGGTCTTCTACGATGACTGAMSVIQEVAKTRGAARETRKGDGKAAAIFLAPWFLGLGLITAFPLLASLYLSFTDYSLLEAPSWIGVQNYVDMVSDPRWLKSLGVTFRYVFISVPLQLAAALALAMVLDRGLRGLAIYRSAFYLPSLLGSSVAIALLWRQIFGADGLVNQVLAYFGIQGVGWVSHPDYALGTLMILNVWTFGAPMIIFLAGLRQIPTMYYEAASIDGASKFRQFFSITIPLLSPIIFFNLVLQLINAFQTFTQAFVISNGTGGPIDETLFYTLYLYNQGFGSYNMGYASAMAWVLLLIVAGLTAVNFLASKYWVFYDDPGPT0016535_4879DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_044791968purR_3HTH-type transcriptional repressor PurRATGCCTGGTGCGACCACGCGCCGACCCGCGGTGACGATCGCCGACGTCGCACGAGCGGCCGGGGTCTCCCGCGCGACGGTCTCCCGGGTGATGAACGGCCGCAGCACCGTGGACCCCGCGATCTCCGCCCGCGTGCAGGAGGCGGCGATCGAGCTGAACTACCGCCCCAGCAACGTGGCGCGCAGCCTCTCGCTGGGCCGGACCACCACCGTGGCCCTCGTCGTCCCGGACCTCGCCAACCCCGTCTTCCAGGAGATCCTGCGCGGCGTCACCTCCGCCGCCGGCGAGGACGGCTACCGCGTGCTGGTGGCGGACTCGGCCGAGGACCCCGGCACCGAGGCGTCGATCGCCCGGGAAGCGCGCGCACGCTGCGACGCGCTCATCCTGGTCTCGCCACGCATGCCCGACGGCGCGCTCGACGCCCTGCTGCCGGAGGTCTCCCCCGCCGTGGTGGTCAACCGGGACGTCCCGCGCGGCGCCCCGAGCCTGGTGGTGGACTACGCCGACGCGATGGTGCAGGTCGTCGAGCACCTCGTCGAGCTCGGGCACCGGCGCATCGCCTACGTCGCCGGTCCCCGCGCCTCGGTCTCCGACCTCGCGCGACGCCGCGGCCTCACCGCGAGCTGCGAGCGCCACCCGGACCTCGAGGTCGTCGACCTCCCCGCCGGTTCCGACATCACGGCCGGGCACGCCGCGGCAGCGGACGTCCTGGCCAGCCGCGTGACGGCCGCCGTGGCGTTCAACGACCTGGTGGCCTTCGGTCTGCTCGCCGCCCTGAACGAGGCCGGCGTGGCGGTCCCGGCGGACCTGTCGGTGTGCGGCGTCGACGACATCGAGCTGGCGCGCTACGCCACCCCGGCACTGACCACCGTCGCCGTGCCGCAGCAGGACCTGGGACGGCACGCCTGGCGCGAGCTGCACGCCGTGGTCGACGACGCCGGTCATGCGGCCGAGACGACGCGCTTCGGGGTCCAGCTCCAGGTCCGCGCGAGCACCGGACCGGTACCCCGTTCGGCCGTGCGCGCCACGGCCCTGCCCGAGGACCCGGTGGCCGCCGCCACCGCCGTCCCGGAGGTCACCCAGGCCGAGCAGGACCCCGCCTGGAGCCTCGAGCAGGGGGTGCCCGCGCTCTACCGCAGCGTCGACCGCGCGCCGCTGGCCCGCTACGACTCCGGCCAGGACCTGCCGACCATCCACTCGCCGCGACCGTTCCTGCACCCGGTGAGCTCGCTGGCCGGGATCCCGCTGACGGAGTCGGGCCCGGTCGACCACCGCCACCACTACGGGGTCAGCCTCGCCGTGCCCGACGTCAACGGCACCAGCTACTGGGGCGGGCGCACGTTCGTCGCCGACGTCGGCCCGACGCTGCTGCCCAACCACGGCCGCCAGACGTCGGTCCAGACCACGATCGACCCGCTGTCCCCGAACGTCCTGCTGGACACGGTCGCCTGGACCGACGAGCACGGCCGCCCGGTGCTCGACGAGCGACGTCGCGTCGGGGCACGCCTGCTGGACGACGGGTGGGTGCTGGAGTGGCGCTCCACGCTGCACGCCGCGCACGGCCCGCTGCAGATCAGCTCCCCCGCGACGAACGGCCGGCCCGGCGCCGGCTACGGAGGACTGTTCTGGCGGCTCCCGCTGGCGCACCGGACGCGCGTGCTGTCCGCCGAGGGCGAGGGCGAGGACCTCGCGCACGGCTCGACCTCGCCGTGGGTGGCGTTCGTGCAGCGCCACCGCGACGCGCGGGGCGAGGAGCACAGCACGACCACGCTCCTGACCCAGACCTCCCCCGCACGGCACTGGTTCCTGCGCGCCGCCGAGTACCCCGGCGCCTGCCCCGCCCTGGCCTGGGACACCCCTCTGCGGGTCCCCGCCGGCGGGACCGTCGAGACCGGCGTCGTGGCGGCCCTGCTGGACCGGGAGCTCGACATCGACGCCGCCGCCGCGCTGGCCACCGGCCTGCGCTGAMPGATTRRPAVTIADVARAAGVSRATVSRVMNGRSTVDPAISARVQEAAIELNYRPSNVARSLSLGRTTTVALVVPDLANPVFQEILRGVTSAAGEDGYRVLVADSAEDPGTEASIAREARARCDALILVSPRMPDGALDALLPEVSPAVVVNRDVPRGAPSLVVDYADAMVQVVEHLVELGHRRIAYVAGPRASVSDLARRRGLTASCERHPDLEVVDLPAGSDITAGHAAAADVLASRVTAAVAFNDLVAFGLLAALNEAGVAVPADLSVCGVDDIELARYATPALTTVAVPQQDLGRHAWRELHAVVDDAGHAAETTRFGVQLQVRASTGPVPRSAVRATALPEDPVAAATAVPEVTQAEQDPAWSLEQGVPALYRSVDRAPLARYDSGQDLPTIHSPRPFLHPVSSLAGIPLTESGPVDHRHHYGVSLAVPDVNGTSYWGGRTFVADVGPTLLPNHGRQTSVQTTIDPLSPNVLLDTVAWTDEHGRPVLDERRRVGARLLDDGWVLEWRSTLHAAHGPLQISSPATNGRPGAGYGGLFWRLPLAHRTRVLSAEGEGEDLAHGSTSPWVAFVQRHRDARGEEHSTTTLLTQTSPARHWFLRAAEYPGACPALAWDTPLRVPAGGTVETGVVAALLDRELDIDAAAALATGLRPGPT0014791_3DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_044801146iolG_8Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGAGCAGCCCCCGCCTCGCCGTGGTCGGCATCCACGGCCACGGGACCAACCACGTCCGCACCGCGCTCGAGCTGACCCGTGCGGGCCGCGCGGAGCTGTGCGCGGTCGTGGACCCGCGCGAGCCGGACCCCGACCACCCGGCCCACGGGGCCGGGACCCCCTGGTACCCCACCCTCGGTGACCTGCTGTCGGCCGACGACGCCGTCCGCCCCGACGTCGTCGTGCTCTGCACGCCCATCCCCACCCACCTGCCGCTCGCCCGGGCCGCCATGGAGGCGGGCATGGACGTGCTGCTGGAGAAGCCGACGACGGCGTCGCTGGCCGAGCTGACCGAGCTCGTCGCCGTCACCGAGCGCACGGGCCGGTACTGCCAGGTGGGGTTCCAGACCTTCGGGTCGCACGCCCTGCCCGCGGTGTCCGAGCTCGTCGCCCGCGGCGAGATCGGCGACGTCGTCGGGTTCGGCGCCGTCGGGACCTGGGTGCGCGACGCCGCGTACTGGGCCCGGGCGCCGTGGGCGGGCCGCCGACGGCTGGACGGTCGCGACGTCGTCGACGGCGTCGTGACGAACCCGCTCGCGCACGCGGTGGCCACGGCGCTGCGGATCGGCGGCGTGACCCGCGCCGAGGACGTCGCCTGGGTGGACACGGACCTCTACCGGGCCAACCCGATCGAGGCCGACGACACGTCCTCGGTCCGCGTCACCGCGGCGGACGGCACCCGCTACGGCTTCGGCCTGACCCTGTGCGCGGCCGAGCGGACCCGGGCCCGGGTGCTGGTGCTCGGCACCGCGGGCGAGATCGAGCTGTTCTACGAGTCCGACCGGCTCGTGCTGCGCAGCGACCGCCTCACCCTGGACAAGACCTACGGCCGCACCTCGCTGCTGGAGGACCTGCTCGAGGTGCGCGCCGACGACGACCCGCAGCGCCGCCTGCTGTGCGACGTGCGGGACACCGGCGCGTTCATGCGCGTGCTGGAGGCCGTCCGCACCGGCCCGGACCCGCGGCCGATGCCGGACGAGCTCGTCACGTGGGTCGGTGAGGGCGACGCCCGGCACCCGGTCGTCAGCGACGTCGCCGACTGGTGCGAGCAGGTCGCGCGCCGCCAGCAGACGTTCAGCGAGCTCGGGGCGCCCTGGACCCGCTGAMSSPRLAVVGIHGHGTNHVRTALELTRAGRAELCAVVDPREPDPDHPAHGAGTPWYPTLGDLLSADDAVRPDVVVLCTPIPTHLPLARAAMEAGMDVLLEKPTTASLAELTELVAVTERTGRYCQVGFQTFGSHALPAVSELVARGEIGDVVGFGAVGTWVRDAAYWARAPWAGRRRLDGRDVVDGVVTNPLAHAVATALRIGGVTRAEDVAWVDTDLYRANPIEADDTSSVRVTAADGTRYGFGLTLCAAERTRARVLVLGTAGEIELFYESDRLVLRSDRLTLDKTYGRTSLLEDLLEVRADDDPQRRLLCDVRDTGAFMRVLEAVRTGPDPRPMPDELVTWVGEGDARHPVVSDVADWCEQVARRQQTFSELGAPWTRNANANANANA
AK018_044811041hypothetical proteinATGACGTCCACGACCGCACCCGCGACGGCACCCGCCCCCGCACGTCCGGCGGGCCGCCCGCCGGCTCCTGGCCCGGACCGGCCGCGCACCGCCGTGCGCACCGCACGACGACGGGCCGTCCTCGTGGGCGACGGTCCGACGGCGGACGCCGTCCGTGACGCGCTGGCCGGGCCGCACGCCGACGTCGTCGACCTGGTCGGCGGCTCGGCGTCGAGCGAGGCCGCCGACGTCGACCGGCTGGTACGCGAGGTGGCGCCGGACGTCGTCGTGGTCGCGTCCTGCCGCCCGACAGCTGCCGTCGTCGCCGCCCTGGACGCCGGCGCGGACGTCGTGCTGGACGGCGCACCGGCCGGGGCCGGCGAGATCTACACGCTGGCCGAGGCCGTGCGGCGCGCCGAGGGCCGGCTCTCCGCCGCCTTCGACGACCGCTACGCCGCGGCCGCCGCGGAGCTGCGCCGGGTCGTGGCCGACGGGCGGCTCGGCACGGTGGTCTCGGCCCACGCCGAGTGGCTCCACGCGGACCGCGACGACCGGACCGCGGCCGCGCGCACCAGCCGCCGGGCCGACCTGCTCGGCTGGTGGATCGACGACCTGCCGGTGTCCGTGTTCGCCCAGGGGCCTGGGTCCACGGGCCGGGCGTCCGGCGTCGCGTCCGGCCACGGCATGGTGCTCGGCTACCAGGAGGGGGCGACGGTCACCTGCAGCGAGACGGCGGGCGGTCCGCGCACCGGCTACCGGGTCGCGGTGAACGGGACGTTGGGCCGGGCGGACCTCGAGGTCGTCCACGGGCAGGGGGCCCGGCTCGTGGTGCACGGGCACGGCGGCGGCGCGGACGTCGTCCTGGACGCCGGTGCCGCCGCGACCGACGGGCGCTCGGCCATGCTCCGCGCCCTGCTGGCGGGCGGCGACGACGCCGGACCGCTGCGCCGTCGCGCCGACGGGTCCGACCTGCTGCGTGCCGCCGGGGTCGCGGCCGCGGCCGCCCGCTCGGCGGCCTCGGGCCGCGCGGTCCCGCTGAGCGCGCTCGGCCTGGCGCTCTGAMTSTTAPATAPAPARPAGRPPAPGPDRPRTAVRTARRRAVLVGDGPTADAVRDALAGPHADVVDLVGGSASSEAADVDRLVREVAPDVVVVASCRPTAAVVAALDAGADVVLDGAPAGAGEIYTLAEAVRRAEGRLSAAFDDRYAAAAAELRRVVADGRLGTVVSAHAEWLHADRDDRTAAARTSRRADLLGWWIDDLPVSVFAQGPGSTGRASGVASGHGMVLGYQEGATVTCSETAGGPRTGYRVAVNGTLGRADLEVVHGQGARLVVHGHGGGADVVLDAGAAATDGRSAMLRALLAGGDDAGPLRRRADGSDLLRAAGVAAAAARSAASGRAVPLSALGLALNANANANANA
AK018_044821353yteT_3COG0673Putative oxidoreductase YteTTTGTCCTCCACCACCAGCCGCCTCCGCTACGCCGTCGTCGGCACCGGCCACCGTGCCGGCATGTTCGTCGGCGGGCTGCTCGAGAACCACGCCGACGAGGGCGAGATCGTCGCCTGGGTCGAGCCCAACCCGGTGCGTGCCGCCGTCCACGAGGCGCGCGTCGCCGCCAAGGTCGGCGGCACCCGCCCCGTCTACGCCCCGGCCGACCTGGAGAGGGCGATCGCCGAGCAGCAGGTCGACCGCGTCGTGGTCACCAGCGTCGACAACACCCACGCCGAGATGGTCTCCCGGGCCCTGCGCGCCGGCGTCGACGTCGTGGTGGAGAAGCCCATCGCCGCCTCGGCCGACGAGGCGCGGCAGATCGCCGACGCCGTGGCCGAGACCGGCCGCGACGTCACGATGACCTTCAACTACCGCTACTCGCCGCGGAACTCGGCGCTGCGCGAGGTCGTCGCCTCCGGCGAGATCGGTCAGGTGCTGTCCGTGCACTTCGACTGGGCGCTGGACACCGTCCACGGGGCCGACTACTTCCGGCGCTGGCACCGCGAGAAGGTCAACAACGGCGGGCTGCTGGTGCACAAGTCGAGCCACCACTTCGACCTCGTCAACTGGTGGATCGACGACGTGCCGACCCGGGTCTTCGCCAGCGGCGGCCGCCGGTTCTACGGCGACGACGGCGCGCACGAGACGGACTACGAGCCCACCGCGGGCGAGCGGGACCTGCGGGCCCGGGGCGTGGACCCGTGGGCGATGGACCTCGACAAGGACCCGTACCTGCTCGAGCTCTACGGACCCGAGGCCCAGGCGCACGACGGCTACGTGCGCAACAAGTCGGTGTTCGACGCCGGCATCACCACCGAGGACACGCTCGGCCTGGTCGTCGAGTACGCCGGCGGGGCGATGCTGACCTACTCCCTGACGGCGCACAGCCCCTGGGAGGGGTACCGCGTCGTGGTCAACGGCACGCGGGGCCGCGCCGAGCTGGAGGTCGTCGAGCGCGGGTCCGTGCTCTTCGGCGACGACGGGCGCGCCGTGCTGGACCCGAGCTTCAGCGACGCCTACGCCGAGGACGCCGTGCGCCCCGTGGGCGAGCGCCTCGTCGTGCAGCGGCACTGGGAGCAGGCCGAGGAGCGCCCGATCGTCGCGGTCGCCGCCGGCGGGCACGGCGGTGGCGACACGCTGCTGCTCTCGGACGTGTTCCACGGCCGCGACGAGGTCGACCCGCTGGGACGTGCCGCGGGGTTCCTCGACGGCCTGCGCGCCTCGGGCGTGGGGTACGCGGGCAACCGCTCGCTGGAGACGGGGGAGCCGGTGCGTCTCGCCGACCTCGGCCTCGGCGTCGACCTGGGCTGAMSSTTSRLRYAVVGTGHRAGMFVGGLLENHADEGEIVAWVEPNPVRAAVHEARVAAKVGGTRPVYAPADLERAIAEQQVDRVVVTSVDNTHAEMVSRALRAGVDVVVEKPIAASADEARQIADAVAETGRDVTMTFNYRYSPRNSALREVVASGEIGQVLSVHFDWALDTVHGADYFRRWHREKVNNGGLLVHKSSHHFDLVNWWIDDVPTRVFASGGRRFYGDDGAHETDYEPTAGERDLRARGVDPWAMDLDKDPYLLELYGPEAQAHDGYVRNKSVFDAGITTEDTLGLVVEYAGGAMLTYSLTAHSPWEGYRVVVNGTRGRAELEVVERGSVLFGDDGRAVLDPSFSDAYAEDAVRPVGERLVVQRHWEQAEERPIVAVAAGGHGGGDTLLLSDVFHGRDEVDPLGRAAGFLDGLRASGVGYAGNRSLETGEPVRLADLGLGVDLGNANANANANA
AK018_044831038fabH_3COG03323-oxoacyl-[acyl-carrier-protein] synthase 3ATGATCGGAGTCATGCTCTCGCTCCCCGCCGGTGCGGCCGGCTCCCGGATCGTCGGCCTCGGTCACCACCAGCCCGCCAAGGCCCTGACCAACGACGACATCGCACAGTTCGTCGAGACGAACGACGAGTGGATCCGGTCGCGCACCGGCATCGTCATCCGGCACGTCGCCGCCGACGACGTCACGGTGGCGGACATGGCGACCGCGGCGGCGGAGCACGCGCTGGCCGACGCCGGGGTGGCGAGCGACGACGTCGACCTGGTGATCGTGGCCACGACCACCGCAACCGACCGTTCGCCGAACACCGCGGGCCGGGTGGCCTACGCGCTGCGGACCGGGGTCCAGCCGGGGGCGAGCACGCCGGAGGGCGAGGACGAGCCGGACCTGCGCGGCGTCGTCGGACCCGGCGTCATCGACGTCAACACCGCCTGTTCCGGGTTCGCCTACGCCGTGGGCCTCGCCGACCAGGCCATCCGCGCCGGCAGCGCCCGGACCGCCGTCGTCGTCGGCTCGGAGAAGCTGACGGCGGTGACGGACTGGTCGGACCGGTCCACCTGCATCCTCACGGCCGACGGGGCCGGTGCCGCGGTGCTGCAGGCGGCCGAGGAGCCCGGCGTCGGGCAGGTCGTGTGGGGCTCCGAGCCGGAGATCACCCCGGCGGTGCGGATCGAGGCGCCGGCCGAGCGCTTCGCGCAGGACGGCCGTGCGGTGTTCAAGTGGGCGATCACCCGGGCCGCCGAGCGGGCCCGCCGTGTGGTCGAGGCCTCCGGGCTCACGCTGGACGACGTCCAGGTGCTGGTCGCGCACCAGGCGAACCTGCGGATCATCGAGCCGCTGGCGAAGTCGCTCGGGCTCGAGGACCGCATCGTGGTCAGCGACATCACGGAGTCGGGCAACACCTCCGCGGCCTCGATCCCGCTGGGCCTGTCCAAGTGGTGGCACGACGGGCGGATCCCCGCGGGGGTGCCGGCGCTGCTGTTCGGCTTCGGCGGCGGGTTCACCTGGGCCGGCCAGGTGGTCATGACGCCGCAGCGCTGAMIGVMLSLPAGAAGSRIVGLGHHQPAKALTNDDIAQFVETNDEWIRSRTGIVIRHVAADDVTVADMATAAAEHALADAGVASDDVDLVIVATTTATDRSPNTAGRVAYALRTGVQPGASTPEGEDEPDLRGVVGPGVIDVNTACSGFAYAVGLADQAIRAGSARTAVVVGSEKLTAVTDWSDRSTCILTADGAGAAVLQAAEEPGVGQVVWGSEPEITPAVRIEAPAERFAQDGRAVFKWAITRAAERARRVVEASGLTLDDVQVLVAHQANLRIIEPLAKSLGLEDRIVVSDITESGNTSAASIPLGLSKWWHDGRIPAGVPALLFGFGGGFTWAGQVVMTPQRPGPT0008355_1826DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648NANA
AK018_04484945COG1262Formylglycine-generating enzymeATGACCTCGACCTCGCAGCAGGGTCCGACGGCGGACCTGGTGACGATCGACGGCGGGACGTTCTGCATGGGCTCGGACCGGGCCTACCCGGAGGAGGGGCCGGTCGTCGAGGTCTCCGTGGAGCCGTTCGAGCTCGCCCGGACGCCGGTGACCAACGCCGAGTTCTCCCGGTTCGTGGCCGACACCGGGTACGTCACCACCGCCGAGCGGCCGATCGACCCCGCCGAGATGCCGGGCGTGGACCCGGCGGTGCTGGAGCCGGGGTCCTTGGTGTTCACCCCGACCTCCGGTCCGGTGGACCTGCGGGACTGGCGGCAGTGGTGGAGGTGGCAGCCCGGTGCGTGCTGGCGTCGTCCGTCCGGTCCGTCGTCGTCGACCGACGGCCTGGACGACCATCCCGTGGTCCAGGTGTCCTTCGAGGACGCCGCCGCCTACGCGGCGTGGGCGGGGCTGCGCCTGCCGACCGAGGCGGAGTGGGAGCTCGCTGCGCGGGGCGGTCTCGACGGGGCCACGTACACCTGGGGCGAGGAGCCGCAGGACGGGACGCGGGCCAACACGTGGCAGGGCCGGTTCCCGTACCGCAACACGGGCGCCGGCTCGGGACGCTGGGCGGGCACCGCGCCGGTCGGCTCGTTCCCTCCCAACGGGTTCGGGCTGCTCGACATGGCGGGGAACGTCTGGGAGTGGACGACGGACGAGTGGAGCGACGGACACCGTCGGCGGGCGACGGCGGCTGCCGGGCCCGCGCACGCCTGCGGGTGCGGCCCGGCCGAGGGGCGGCCGTCGGCGCCTCCGTCGCCGCCGTCGACACCGGAACGCCTGGTGCTCAAGGGAGGGTCGCACCTCTGCGCCCCGGAGTACTGCCTGCGCTACCGACCCGCCGCCCGGTCGCCTCAGACGCCCGACTCCGCCACGACGCACATCGGGTTCCGCTGCGCCCGGTGAMTSTSQQGPTADLVTIDGGTFCMGSDRAYPEEGPVVEVSVEPFELARTPVTNAEFSRFVADTGYVTTAERPIDPAEMPGVDPAVLEPGSLVFTPTSGPVDLRDWRQWWRWQPGACWRRPSGPSSSTDGLDDHPVVQVSFEDAAAYAAWAGLRLPTEAEWELAARGGLDGATYTWGEEPQDGTRANTWQGRFPYRNTGAGSGRWAGTAPVGSFPPNGFGLLDMAGNVWEWTTDEWSDGHRRRATAAAGPAHACGCGPAEGRPSAPPSPPSTPERLVLKGGSHLCAPEYCLRYRPAARSPQTPDSATTHIGFRCARNANANANANA
AK018_044855403hypothetical proteinGTGGCCGGTGCCGCCGCCGCAGCCCTCGTGCTGCCGCTCCTGCCGGCCGCCGCGACCGCGGCCGAGGAGGAGCCCGCCCAGTGGTCCTTCGACTTCGGCACCGCCGACAGCCCCGTCGCGGAGGGCTTCACGCAGGTCCACGGCGGCACCGCCTACAGCGCGGAGACCGGCTTCGGCATCACCACGGGTGAGCAGGCCTCCCGCGACCGCTCCACCGACGTCGACCCCCTCACCGGAGACTTCGTGCTCGGGTCCGACTGGGAGTTCGCGGTGGACGTGCCGAACGGCACCTACGACATCGAGGTCTGGACCGGGGACACCCTCGCGGGGACCTCGAGCGTGCGCACCTCCGTGTCGCCCGAGGGCGGCACGGCCACGAACATCTACGCCGACGCCGAGCAGACCGCCAGCGGCACGCTGTCAGCCGAGGTCTCCGACGGCCAGCTCAACCTCGGCATCACCGGCAAGGGCTACGGCTACGTCAACGGCATCCAGATCACGGAGTCGACCGGCGACGGCGGGGACGACGGGTCCGGCGACGGCGGGGGCGACGACGGGTCCGGCGACGGCGGCACCACCGGCGCCGCCGGTCCCGAGAACGTCCGCATCGCCCACGCGAGCGCCGACCAGGTCGTCGTGCGCTGGAACGAGGTCGCCGGTGCCGGCGAGTACGTGCTGACCCGCAGCGACGCCGTGGACGGCGAGTACACCGAGATCGCCCGGACCGGGTCGCGCGAGGTGTTCCACGCCGACACCGACGTCGACACCTCCGCCGTGCACTACTACCGCGCGCACGCCGTGACCGCGGACGGCCTCACCGAGGCGTCCGCGCCGGTGGTCAGCACGCTGGCGAGCGAGCCGAGCTTCCCCGAGTCCGGCACCCTGCAGATCGACCTCGGCTCCGGGGCCGTGGCCGACGGTGCGGTCGGGGTCGACGCCGACACCGCCTACACCGCCGAGAACCGCCTCGGGTTCGTCGACACCTCCGTGGTGACGGCGACGGACGACGGCGGTGACAACGCCCTGCGCGGCGACTTCGTCACGGCCGACGGCGGACAGCTCGTCGTCGACCTGCCGAACGGCGACTACACGGTCGACCTGATCGCCGGTGCGGCCGACGCCGCCACGGACGTCGCGATCACCGCCGAGCAGATGGCCAAGGTCCAGCAGACCGAGCGGGCTGCCGGCGAGTACCTCGAGATGTCGTTCGACATCGCCCTCGTGGACTCCCAGCTCAACCTGCAGATCGCCGGCGGCGCCGCGAACCTCAACGCGCTGACGATCACGCGTCTGGGCGACAGGGACGCCGGCGGTCAGCCGACCGCCTTCGTCACCGGCGACTCGACAGTGCAGACCTACGACGAGTACTGGGCGCCGCAGGCCGGCTGGGGCCAGATGATCGAACGGTTCCTGTCCGACGACGTCGCGGTGGACAACCACGCGATCGGCGGCCGGTCCTCGAAGAACTTCATCAGCCAGGGCCGCCTCGACACCGTGCTGAAGCAGATCCGGCCGGGCGACTACCTGTACGTCCAGTTCGGGCACAACGACAACAGCTACGGCGTCGACGACCGCTGGGCCGCCCCGGGCGACTACGCCTGGTACCTGCGCACCTTCGTCGAGGGGGCCGTCCAGCGCGGCGCCCAGCCGATCCTGGTCACGCCGGTCTCGCGCCGGTCGTTCGACCCGGAGACCGGCGAGTTCAACGTGTCCTTCCCGGACTACGTGCAGGCCGCCACGGACGTCGCCGCCGCCACGGGCACCCCGCTCGTGGACCTGTCGGCCTCCTCGCGGGCCTACCTGAACGAGATCGGGCCGGAGGCCGCCAGGAGCGTGTTCCTGCACGTGCCGGCCGGGGTGTACCCGAACCGACCCGACGGCACGACGGACGACACGCACTTCCAGGAGTACGGCGCCATCCAGATGGCCCGCCTGGTCGCGCTGGACACCGCCGAGCTGGACGTCCCGCTCGCGGACGAGGTCGTGGACGCCGAGCCGCCGGCCGACGTCCCCGAGGCGCCGGCCGGCGTCGTCGCGGGCAACATCTCCGCCTCGAGCGCCACCCTGACGTGGACCGAGGTGGAGGGCGCCGACATCTACAAGGTGTTCGCCAAGGCGTCCGACGCCGGGGACGACGCCTGGGACCTCGTCACCACCTCGACCATCGGCGTGGCGAACGTCGGCGGGCTCACCGAGGGCACCTCGTACGACCTGCGCGTCGTCGCGGTCAACGGGGCGGGCGACTCGGAGCCGTCGGCCACGGTCACGATCGAGACCAAGGCGCCGATCTACAAGTTCGACCTGCAGCTCGCCTCCAACGGCGTCACCGAGGACGGGTACACCGCCTTCGACGACACCACGCTGTACACCGCCGAGCTCGGCTACGGCTTCACCTCGGACTCCGGTCCCGGTGGCCGCGACCGCGGCACCGGCGACGGCCAGCTCGACGACCTGCAGCGCGACTTCCTGCTGCCGAGCGTCGGCACCCCGATGCGGTTCGACGTGCCGAACGGCACCTACGCCGTCGAGGTGATCTGGGGTGACCTCATCGGGACCGCCCGTCTGGGCGTGACCATCGAGGGCACCGACTACGGCTCCTCGAACGCCGGCCGTGGCGGCACCTCCAGCAAGATCGTCCAGCCGGTGGTCGTCACCGACGGGACGATCGACATCGTCGCCGAGGGCTGGTTCAACGGCCTGACGATCACGCCGCTGCTGTACGCGCCGACCGAGCTGGTCGCCGGCGACGTGTCCATCGACGGGTCCGCCGTCGAGGTCCCGCTGAGCTGGCAGCCGGCCGAGGACGTGGCCGGCTACCGCGTCTACCGCCTCGCCGAGGGGGCGGCGGAGCCGACGGCGCTCGCCGACGTCGAGTCGGGCGTGACCGAGTTCGTGGACACCACGGCGGACGTCGGCCTGCAGTACACCTACACCGTCGTGGCGACGGACGACGCCGGCAACGAGTCGGTGCCGTCGAACGAGCTCGAGCTGACGACGGTGGACCCGGACGTCCCGACCGCCCCGACGCCGTCGGGCCTGGCCGTGGGCGACATCGCCAAGAACGCGGTCTCGCTGGGCTGGGAGCCCGTCGAGGACGCGCTGTTCTACCACGTGTACCGCGAGGACAAGGGCGGCGAGCTGGTCCTGATCGACCGGGCCGCGGACGCGCAGTACACCGACACCGACGTGCTCACCACGGTCGAGTACACCTACGCGGTGGCCTCGGTGAACGCCGGTGGTGTCTCCGAGCTGTCGGAGACGGTCACCTCGGAGGCCGTGACGAACCTGTCGCGGCAGGCCGAGCGCATCGGCCGCCAGCCCGTCGCGGCGCAGTCCGAGGACGGCGTCTACGTCGGCTGGCGGATGCTGGGCGAGGACCCGGCGTCGATCGCGTTCCACGTCTACCGCGACGGCGAGCTGCTGACGGACGAGCCGATCAGCGGGTCGACGAACTACGTGGACACGGACGGCCAGGCCGGCTCCTCCTACCGGATCTCCTCCGTCGTGGACGGTACGGAGCGGTGGGCCACGCAGGAGTTCTCCGTCTGGGACGGCCAGACGCTGGACATCCCGCTGAACAAGCCGGCCGACGCCTACACGAAGGACGGCCAGCCGTACTCCTACACCGCGAACGACGCCTCCGTGGCGGACCTCGACGGTGACGGCGAGTACGAGTACGTCGTCAAGTGGTACCCGACCAACGCCCAGGACAACTCCCGTCCCGGGTACACGGGGAACACCTACCTGGACGCCTACGAGCTCGACGGCACCCAGCTGTGGCGCATCGACCTCGGGATCAACATCCGCTCCGGGGCCCACTACACCCAGTTCCAGGTGTTCGACTACGACGGCGACGGGGAGGCCGAGGTGGCGATGAAGACCGCCGACGGCACCACCGACGGCGTCGGCACGGTCGTCGGGGACGCCCGGGCGGACTTCCGCCAGTCCAACGGGTACGTGCTGTCCGGTCCGGAGTACCTGTCGATCTTCGACGGCGCCTCCGGCGAGGTGCTCGACACGATCGACTACGTGCCGCCGCGCGGCGACGTCGGCTCGTGGGGCGACGGCTACGGCAACCGGGTCGACCGGTTCCTGGCGACGACGGCCTACCTCGACGGCGAGACCCCGTCGATGGTGTTCAGCCGTGGCTACTACACCCGGACCGTCATCGCGGCGTTCGACTTCGACGGGGAGGAGCTCAGCGAGCGCTGGGTCTTCGACTCCGACGAGGCGGGCGACCAGTACCGCGGTCAGGGCAACCACGACATGCAGACCGCGGACGTGGACGGCGACCAGAAGGACGAGCTCGTCTTCGGGTCGATGACCGTCGACGACGACGGCACGGTCCTGGTCAACACCGGGCTCGGGCACGGCGACGCCATGCACGTGTCGGACTTCGACCCGTCGCGTCCGGGCCTGGAGCAGTTCGCGGCCCACGAGAACATCCCCGCCTCGGGCAACCGGGGGGCGACGTTCCGCGACGCCGAGACCGGCGAGATCCTCTGGTCGATCCCGGCCGAGGTCGACACCGGTCGTGCCGCCATGGCCGACATCGACCCGCGCTACGACGGCGCCGAGGGCTGGGCCGTGGGCGGCGACGCCGCCTGGGACTCGCCCGTCGGCCAGCTCGTGTCCTCGTCCACTGGTGAGGTGATCGCCGAGTCCATCCCGGCGGCGAACTTCACCACCTTCTGGGACGGCGACCTGCTGTCCGAGATCGGGGACCACGACTGGGACGGTGACGCCGGCGTCGGCGTGCCGACCATCGCCAAATGGGACTACGAGAACGCCGAGGAGGTGGAGATCTACCGGGCCGAGGGGACCTTCTCGAACAACTACACCAAGGGCACGCCCGCGCTGCAGGCGGACCTGTTCGGTGACTGGCGCGAGGAGATCGTCAGCCGCACGCAAGACTCCACCGCGTTGCGGATCTCGACCACGGTGATCCCGACCGAGCACCGGCTGCGGACGCTCATGTCGGACTCCCAGTACCGCCTGGCCGTGGCCTGGCAGAACACCGGCTACAACCAGCCGCCGCACACCTCGTACTTCATCGGCGAGGGCATGGAGACGCCCGACGCACCGCGTCTGGCGTACACCACCGAGGCGGAGACGATGCCGATCGTCGTCGACGAGGCGCCGAAGAAGGTCGTCGTCACCGCCGAGAAGCTGGACGACGGCACGGTCACGGCGACCGTGCGCAGCGTCCGGGGCGGCGCCGTGACGTCGGTGGTGCTCCGCGTCGACGGGCAGACGGTCGCCACGGCCAGCCTGCCCGACGGGGCCTCGACGGTCGACTTCGACCTCGGGGCGCTGGAGCCCGGCAAGTACGAGCTCACCGCCACCGTGGCCAACGAGCTGGGCTCCGTCGAGAGCAGGGGGCGTCAGCTCACGATCTCGTGAMAGAAAAALVLPLLPAAATAAEEEPAQWSFDFGTADSPVAEGFTQVHGGTAYSAETGFGITTGEQASRDRSTDVDPLTGDFVLGSDWEFAVDVPNGTYDIEVWTGDTLAGTSSVRTSVSPEGGTATNIYADAEQTASGTLSAEVSDGQLNLGITGKGYGYVNGIQITESTGDGGDDGSGDGGGDDGSGDGGTTGAAGPENVRIAHASADQVVVRWNEVAGAGEYVLTRSDAVDGEYTEIARTGSREVFHADTDVDTSAVHYYRAHAVTADGLTEASAPVVSTLASEPSFPESGTLQIDLGSGAVADGAVGVDADTAYTAENRLGFVDTSVVTATDDGGDNALRGDFVTADGGQLVVDLPNGDYTVDLIAGAADAATDVAITAEQMAKVQQTERAAGEYLEMSFDIALVDSQLNLQIAGGAANLNALTITRLGDRDAGGQPTAFVTGDSTVQTYDEYWAPQAGWGQMIERFLSDDVAVDNHAIGGRSSKNFISQGRLDTVLKQIRPGDYLYVQFGHNDNSYGVDDRWAAPGDYAWYLRTFVEGAVQRGAQPILVTPVSRRSFDPETGEFNVSFPDYVQAATDVAAATGTPLVDLSASSRAYLNEIGPEAARSVFLHVPAGVYPNRPDGTTDDTHFQEYGAIQMARLVALDTAELDVPLADEVVDAEPPADVPEAPAGVVAGNISASSATLTWTEVEGADIYKVFAKASDAGDDAWDLVTTSTIGVANVGGLTEGTSYDLRVVAVNGAGDSEPSATVTIETKAPIYKFDLQLASNGVTEDGYTAFDDTTLYTAELGYGFTSDSGPGGRDRGTGDGQLDDLQRDFLLPSVGTPMRFDVPNGTYAVEVIWGDLIGTARLGVTIEGTDYGSSNAGRGGTSSKIVQPVVVTDGTIDIVAEGWFNGLTITPLLYAPTELVAGDVSIDGSAVEVPLSWQPAEDVAGYRVYRLAEGAAEPTALADVESGVTEFVDTTADVGLQYTYTVVATDDAGNESVPSNELELTTVDPDVPTAPTPSGLAVGDIAKNAVSLGWEPVEDALFYHVYREDKGGELVLIDRAADAQYTDTDVLTTVEYTYAVASVNAGGVSELSETVTSEAVTNLSRQAERIGRQPVAAQSEDGVYVGWRMLGEDPASIAFHVYRDGELLTDEPISGSTNYVDTDGQAGSSYRISSVVDGTERWATQEFSVWDGQTLDIPLNKPADAYTKDGQPYSYTANDASVADLDGDGEYEYVVKWYPTNAQDNSRPGYTGNTYLDAYELDGTQLWRIDLGINIRSGAHYTQFQVFDYDGDGEAEVAMKTADGTTDGVGTVVGDARADFRQSNGYVLSGPEYLSIFDGASGEVLDTIDYVPPRGDVGSWGDGYGNRVDRFLATTAYLDGETPSMVFSRGYYTRTVIAAFDFDGEELSERWVFDSDEAGDQYRGQGNHDMQTADVDGDQKDELVFGSMTVDDDGTVLVNTGLGHGDAMHVSDFDPSRPGLEQFAAHENIPASGNRGATFRDAETGEILWSIPAEVDTGRAAMADIDPRYDGAEGWAVGGDAAWDSPVGQLVSSSTGEVIAESIPAANFTTFWDGDLLSEIGDHDWDGDAGVGVPTIAKWDYENAEEVEIYRAEGTFSNNYTKGTPALQADLFGDWREEIVSRTQDSTALRISTTVIPTEHRLRTLMSDSQYRLAVAWQNTGYNQPPHTSYFIGEGMETPDAPRLAYTTEAETMPIVVDEAPKKVVVTAEKLDDGTVTATVRSVRGGAVTSVVLRVDGQTVATASLPDGASTVDFDLGALEPGKYELTATVANELGSVESRGRQLTISNANANANANA
AK018_044861227yihS_3COG2942Sulfoquinovose isomeraseGTGACCGAGCACGGCGCGGCGTCGACGCCGCCGACGAGCCCCGGCGACGACGCCCGTCGGTGGCGCGCCGCCGAGGTCCGCCGCCTGCTCGACTTCGGCGCCGCGGCGCTGGACGGCCCGGACGGCGCGGCCTGGCTCGACGCGGACGGCGCGGCGGACCGGACCCGGCCGACGCAGACCTGGATCACCGCACGGATGGCCCACTCCTACGCCCTGGGCCAGCTGCTGGGCGTCGCGGGGTGCGACGCCCTCGCCGACCGGGCCCTGGCCGGGCTGACCGGCCCGCTGCACGACGACGAGCACGGCGGGTGGTTCGCCGCCGTCGGGCCGGACGACGCCGTCGACGGCACCAAGGCGGCCTACGCCCACGCGTTCGTGGTGCTCGCCGCCTCCTCCGCGGTCCAGGCCGCACGCCCCGGCGCGGAAGCCCTGCTCGACGAGGCCCTGGACGTCCTCGACCGGCGGTTCTGGGACGACGGGCCGGGGATGCTCGTCGACGAGTGGGACCGCAGCTGGACCGTCCTGTCGACCTACCGCGGCATCAACGCGAACATGCACGGCGTCGAGGCGCTGCTCGCCGCCGCCGACGCGACCGGCGACCCCCGGTGGCACGACCGCGCCGTGCGGATCTGCGACCGGGTGGCGCAGTGGGCCGAGGCGACGCGGTGGCGGGTCCCGGAGCACTTCACGACCGACTGGACCCCCGACCTCGAGCTCAACGCCGACCGCCCCCGCGACCCGTTCAAGCCCTACGGGTCCACCCCGGGGCACGGTTTCGAGTGGGCCCGGCTCCTCCTCCAGGTCGACGTCGCCGGGGGGGCCCCGGGCCGGCGCACGGAGACCGCCCGACGCCTCTTCGAGCGGGCCCTGGCCGACGGGTTCGACGGCACCGGGTTCGTCTACACGGTGGACTGGTCCGGCGAGCCCGTCGAGCGGCGCCGGTTCCACTGGGTCGCGGCCGAGGCCGTCGCGGCCGCCGAGGTGCTGGCGGCGGTGACGGGCGAGTCGCGCTACCACGAGCTCGCGGCGTCCTGGTGGGACCTGCTCCGCGACCGGTTCGTCGACACCGACCGCGGCTCGTGGCACCACGAGCTCGACCCCGACGACCGGCCGGCCGCGGCCGTCTGGGACGGCAAGCCGGACGTCTACCACGCCCTGCAGGCGCTGCTGGTGCCGGACCTGCCGGTGAGCGGGTCGTTCGCGGAGTCCGTGCGCCGCAGCGCCTAGMTEHGAASTPPTSPGDDARRWRAAEVRRLLDFGAAALDGPDGAAWLDADGAADRTRPTQTWITARMAHSYALGQLLGVAGCDALADRALAGLTGPLHDDEHGGWFAAVGPDDAVDGTKAAYAHAFVVLAASSAVQAARPGAEALLDEALDVLDRRFWDDGPGMLVDEWDRSWTVLSTYRGINANMHGVEALLAAADATGDPRWHDRAVRICDRVAQWAEATRWRVPEHFTTDWTPDLELNADRPRDPFKPYGSTPGHGFEWARLLLQVDVAGGAPGRRTETARRLFERALADGFDGTGFVYTVDWSGEPVERRRFHWVAAEAVAAAEVLAAVTGESRYHELAASWWDLLRDRFVDTDRGSWHHELDPDDRPAAAVWDGKPDVYHALQALLVPDLPVSGSFAESVRRSANANANANANA
AK018_04487708glcC_2COG2186Glc operon transcriptional activatorGTGCGTACCCACGAGAGAGTCCTCGCCCGCATCGAGTCCGACCTGGCCGCCGGCCGGTGGGCGCTGGGGGAGCGGCTCCCTGCCGAGCGGGCGCTCGCGGAGGAGCTCCAGGTCTCGCGTCCCTCGGTACGCGAGGCGATCCGGATCCTCGAGGCCATGGGCATGATCCGCACCGCGGTCGGCTCCGGGCCCGACGCCGGTGCGACCGTCATCGACCGCCCCGCGGCCGGCCTCGGCGCGGCCGTGCGGCTGCACGTCGCGTCCGGGACCCTGCCGGTCCACGACGTCGTCGCGACGCGCGACGCGCTGGAGAGCTGGGCGGTCCGCGAGGCCGCCGGCCGCGGCGCCGGCTCGGACGACGACTGGGTCGCGGAGGCCGGGCGGCTCCTGGCCGCCATGGAGGTCCCGGACCTGGCGGTCGACGAGTTCGTCCGGCTCGACCAGGACTTCCACCTGGTCCTGGTCCGCCTCGGCGAGAACCAGCTCGTCGAGGCGATCCTCACCGGGCTGCGCAGCGCGGTGAGCTCCTACGTCGCGCGCGGCGTCGAGCAGCTGCCGACCTGGCCCGCGACGGCGGACCGGCTGTGCCGCGAGCACCGGACGATCCTCGACGCGGTGGTCGCCGGCGACGTCGACCGGGCCGTCCAGGTCACCCACGACCACATCTGGGGCTTCTACCGCGAGACGGGTCTCGCGGGGGACGTCTAGMRTHERVLARIESDLAAGRWALGERLPAERALAEELQVSRPSVREAIRILEAMGMIRTAVGSGPDAGATVIDRPAAGLGAAVRLHVASGTLPVHDVVATRDALESWAVREAAGRGAGSDDDWVAEAGRLLAAMEVPDLAVDEFVRLDQDFHLVLVRLGENQLVEAILTGLRSAVSSYVARGVEQLPTWPATADRLCREHRTILDAVVAGDVDRAVQVTHDHIWGFYRETGLAGDVNANANANANA
AK018_04488804lutA_2COG0247Lactate utilization protein ATTGCGCATCGCCCTGGCCGCGACCTGTATCGCGGACACCCTCTTCCCCGGCGCCCCGCGCGCCACCGTGCGCCTGCTGGAACGGCTCGGGCACGACGTCGTCTTCCCCCGCAGCCAGGCGTGCTGCGGACAGATGCACATCAACACCGGCTATGTGGACGAGGCCGTGCCCGTGGTGCGCAACCACGTGCAGACCTTCGCCCCCGTGGCCGACGGCGAGTGGGACGCCGTCGTGATCCCCTCCGGGTCGTGCACGGGGTCGGTCCGCCACCAGCAGGCCATGGTCTGCCGGCGTGCGGGCCTCGACGACCTGGCCGCGACCGCCGACGCCGTGGCCGCGAAGACCTACGAGCTGTCCGAGCTGCTCGTCGACGTGCTCGGCGTCACCGACGTCGGCGCCTGGTTCCCCCACCGGGTCACCTACCACCCGACCTGCCACTCGTTGCGCATGCTGGGCGTCGGCGAGCGCCCGCTGCGGCTGCTGCGCGCCGTCGAGGACATCGACCTGGTCGAGCTGCCCGAGGCCGAGTCGTGCTGCGGGTTCGGCGGCACCTTCGCGCTGAAGAACGCCGACACCTCGGCCGCGATGCTCGTGGACAAGACGGCGAACGTGCGCGGCACCGGGGCCGAGGTGCTGACCGCCGGCGACATGTCCTGCCTCATGCACATCGGCGGCGGACTCTCGCGGGAGCGCGCCGGGGTCGGGACGCTGCACCTCGCCGAGATCCTGGCCTCGAACCGCTCCGAACCCACCGCCCTGCCCCGCGCCCGCTCGGGCGCCGACTCCGTGGAGGTCGCCCGATGAMRIALAATCIADTLFPGAPRATVRLLERLGHDVVFPRSQACCGQMHINTGYVDEAVPVVRNHVQTFAPVADGEWDAVVIPSGSCTGSVRHQQAMVCRRAGLDDLAATADAVAAKTYELSELLVDVLGVTDVGAWFPHRVTYHPTCHSLRMLGVGERPLRLLRAVEDIDLVELPEAESCCGFGGTFALKNADTSAAMLVDKTANVRGTGAEVLTAGDMSCLMHIGGGLSRERAGVGTLHLAEILASNRSEPTALPRARSGADSVEVARPGPT0018090_242DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018090-lldE|ykgE|lutA-K18928NANA
AK018_044891560lutB_2COG1139Lactate utilization protein BATGAGCACGTTCCTCGGCATCCCCGGCATCCGGCGGCGGTCCGACGCCGCGACCGGCGGCGACGCCCCGGACGAGCCGTTCGGCCCGGTCCCCCACCCCGACGAGCCGCTGCGCTGGGGCGACGCCTTCCCGGCCGCGGCGAAGCAGACCCTGCGCGACGACCAGCTCCGCGCGAACCTCGGGCACGCCACCCGCACGATCCGCGGCAAGCGGGCCGCCGTCGTCGGCGAGGTCCCCGACTGGGAGGCGCTGCGGGACGCCGGCTCGGCCGTCAAGGAGCAGGTGATGGCCGACCTGCCCGACCTGCTGGCCCGGCTGGAGGAGAACGTCACCGCCCGCGGCGGCGTCGTGCACTGGGCCCGGGACGCGGCCGAGGCGAACCGCATCGTCACCGAGATCGCCCGGGCCAAGCAGGCCGACGAGGTCGTCAAGGTCAAGTCCATGGCGACCCAGGAGATCGGCCTCAACGAGCACCTGGCCGACGAGGGCATCGCCGCCATCGAGACGGACCTGGCCGAGCTCATCGTCCAGCTCGCCGACGACATGCCCTCGCACATCCTCGTCCCGGCCATCCACCGCAACCGGTCCGAGATCCGCGACATCTTCCGCCGGCGCATGGGCGACGCCCCCGAGGACCTGTCGGACGTGCCGCGCGAGCTGGCCATGGCCGCCCGCGCGCACCTGCGGCGCAAGTTCCTCTCGGCGAAGGTCGCCGTGTCGGGCGCGAACTTCGGCGTCGCCGACACCGGCACCCTGGCCGTCGTGGAGTCCGAGGGCAACGGCCGCATGTGCCTGACGATGCCCGAGACGCTCGTGACGGTGATGGGCATCGAGAAGCTCGTCCCGACCTACGACGACCTGGAGGTGTTCCTGCAGCTGCTGCCGCGGTCCTCGACCGGCGAGCGCATGAACCCGTACACCTCGCTGTGGACGGGCGTGACCCCGGGCGACGGCCCGCAGGAGTTCCACCTGGTCCTGCTCGACAACGGCCGCACGGACGTGCTGGCCGACGAGGTGGGCCGCTCGGCGCTGCACTGCATCCGCTGCTCGGCCTGCCTCAACGTGTGCCCGGTGTACGAGCGGGTCGGCGGGCACGCCTACGGGTCGGTCTACCCGGGCCCCATCGGGGCGATCCTGACCCCGCAGCTCACGGCGTCCAGCGGGGGCCTGTCCGGCTCCGACGACGTCAACTCCTCGCTGCCCTACGCCTCGACGCTGTGCGGCGCCTGCTACGACGTCTGTCCCGTCAAGATCGACATCCCCTCGATCCTCGTCGACCTGCGGGCCCGCGAGGTCGACGCCGACCGGAGCCGGTCGGCCGTGGACCCGTGGCGGGCGGCCATGAAGGCCGCCTCCTGGGTGATGTCCGACGGCGGACGGTTCGGCGTGGCGGGACGTGCCGCCACGCTGGGGCACGCGCTCGGCGGATCCGACGGCGTCGTCTCGCACGCCCCGCCGCCGGCGTCCGCGTGGACCCGGTCGCGGGACCTGCCCGCGCCGCCGAAGCAGACGTTCCGGCAGTGGATGGCGGAGCACGAGAAGGACGGAGGCGAGCGATGAMSTFLGIPGIRRRSDAATGGDAPDEPFGPVPHPDEPLRWGDAFPAAAKQTLRDDQLRANLGHATRTIRGKRAAVVGEVPDWEALRDAGSAVKEQVMADLPDLLARLEENVTARGGVVHWARDAAEANRIVTEIARAKQADEVVKVKSMATQEIGLNEHLADEGIAAIETDLAELIVQLADDMPSHILVPAIHRNRSEIRDIFRRRMGDAPEDLSDVPRELAMAARAHLRRKFLSAKVAVSGANFGVADTGTLAVVESEGNGRMCLTMPETLVTVMGIEKLVPTYDDLEVFLQLLPRSSTGERMNPYTSLWTGVTPGDGPQEFHLVLLDNGRTDVLADEVGRSALHCIRCSACLNVCPVYERVGGHAYGSVYPGPIGAILTPQLTASSGGLSGSDDVNSSLPYASTLCGACYDVCPVKIDIPSILVDLRAREVDADRSRSAVDPWRAAMKAASWVMSDGGRFGVAGRAATLGHALGGSDGVVSHAPPPASAWTRSRDLPAPPKQTFRQWMAEHEKDGGERPGPT0018095_70DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018095-lldF|ykgF|lutB-K18929NANA
AK018_04490714lutC_2Lactate utilization protein CATGAGCGCGCGCGAGGAGGTGCTGCAGCGGATCCGGGCGGCGCTCGGGCAGCCGGGGACGGGGACGACGGCGGCCGGGCGGGTCGGCACGGCGCCCGCGGCCGTGGAGGTGCCGCGGGAGTACCGGACCGCCGGCGAGCACGCCCCCGGGTCGGCCGCCGTCGTCGACCAGCTCACCGACCGGCTCGAGGACTACAAGGCGCACGTGCGGCAGGTCTCCCCCGACGAGCTGCCCGCGGCGATCGCCGCGCTCGTGGCGGAGCTCCCGGGGGCCGGGGCCGACCGGTCCGCCCCGGCCGCGCTCGTGGCCCCGTCCGGTCTCGAGGCCGGGTGGCTGGCCGCCCTGCCGGACGACGTCGTCGTGCACCGGGACACGCCGGAGGCGCCGCTGACGGCCGGCGACCTGGACGCGCTGGACGCCGTGGTGACCGCGGCGCGCGTCGCCTGCTCCGAGACCGGCACGATCGTGCTCGACGGCGAGCCCGACCAGGGACGTCGGGCGGTGTCGCTCGTGCCCGACGTGCACCTGTGCGTCGTGCGGACCGACCAGGTGGTCCAGACCGTGCCGGAGATGGTGCGCCGGCTGTCCGCGCACCCGGAGCGGCCGCAGACGTGGATCTCGGGCCCGAGCGCCACCAGCGACATCGAGCTCGACCGGGTCGAGGGGGTGCACGGGCCGCGCACGCTGCACGTGCTGCTGGTGTCGCCGAGGTAGMSAREEVLQRIRAALGQPGTGTTAAGRVGTAPAAVEVPREYRTAGEHAPGSAAVVDQLTDRLEDYKAHVRQVSPDELPAAIAALVAELPGAGADRSAPAALVAPSGLEAGWLAALPDDVVVHRDTPEAPLTAGDLDALDAVVTAARVACSETGTIVLDGEPDQGRRAVSLVPDVHLCVVRTDQVVQTVPEMVRRLSAHPERPQTWISGPSATSDIELDRVEGVHGPRTLHVLLVSPRPGPT0018100_166DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018100-lldG|ykgG|lutC-K00782NANA
AK018_044911158xynZCOG2382Endo-1,4-beta-xylanase ZATGTCCCATTCCCCGAGCACCAGGCGTGCTGCCGCCGTCGCGGCGTCGGCGGTCGCCGCCCTCGCCCTGTCCGGCACCGCGGTCCAGGCCACCCCGCCGGAACCGACCCTGCGCGCAGAGGCGCCCCGCGACCTCGAGATCGGCAGCGCCGTCTGGGGCCAGCGCGACCTCCTCGACCACGACCCCCAGGAACCGACCGCGTTCCAGCAGGTCCTCGCCGCGGAGTTCGGCTCCCTCACCCCCGAGAACGACATGAAGTGGGCCGAGATCCACCCCGAGCCGGACGTCTACGACTTCTCCGGTGCGGACGCGCTCGTGGAGTTCGCGAAGGCCCACGGCCAGGAGGTCCGCGGGCACACGCTGCTGTGGCACAGCCAGAACCCGGACTGGGTGACCGAGGCGAGCGAGACCTGGACCTGCGACGAGGCGCGCGACGTCCTCGAGGACCACGTCCGCACCGTGGTGGGCCGCTACGCCGGTGACATCTACGAGTGGGACGTGGCCAACGAGCTCGTCCAGGACGAGTGGGACGCGGGCGGCGTGCGACTGCGCACCGAGGCCAACCCGTTCCTCGCGGCCTGCTCCGACGACCCGGTCGCCCTGATCGGTGACGTCTTCCGCTGGACCCACGAGGAGGACCCCGAGTCGGTGCTCTTCCTCAACGACTACAACGCCGAGGGCGTCAACGCCAAGACCGACGCCTACTACGCGCTGGCCCAGGAGCTGCTCGCCGACGGCGTGCCGCTGCACGGGTTCGGCGCCCAGGGCCACCTGAGCCTGCAGTACGGGTTCGACGAGTCGATCCAGGAGAACTTCGAGCGGTTCGCCGACCTCGGGCTGAAGGTGGCGGTCACCGAGGCCGACGTGCGCATGCCGCTCGGCGAGGACGGCGAGCCGACCGCCGAGCAGATCGCGCTCCAGGCGGAGCGGTACGACGAGATGCTCCAGGCCTGCCTGGAGGTGGCCGCCTGCACGAGCTTCACGGTCTGGGGCTTCGACGACGGGCGGTCGTGGGTCCCCGACGTGTTCCCCGAGGGGTACGCCACGATCATGACCGAGGCCTACGAGAAGAAGCCGGCCTACGACGTCCTGCTCGAGAGCGTCACCGCGGCCACGCCCGGCCGGTCCCCGCGGACCCCGCCAGGTCTGAACGAGTAAMSHSPSTRRAAAVAASAVAALALSGTAVQATPPEPTLRAEAPRDLEIGSAVWGQRDLLDHDPQEPTAFQQVLAAEFGSLTPENDMKWAEIHPEPDVYDFSGADALVEFAKAHGQEVRGHTLLWHSQNPDWVTEASETWTCDEARDVLEDHVRTVVGRYAGDIYEWDVANELVQDEWDAGGVRLRTEANPFLAACSDDPVALIGDVFRWTHEEDPESVLFLNDYNAEGVNAKTDAYYALAQELLADGVPLHGFGAQGHLSLQYGFDESIQENFERFADLGLKVAVTEADVRMPLGEDGEPTAEQIALQAERYDEMLQACLEVAACTSFTVWGFDDGRSWVPDVFPEGYATIMTEAYEKKPAYDVLLESVTAATPGRSPRTPPGLNEPGPT0018625_1096DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCANASE,PGPT0018625-xynY|xynZ|xynD|xynA-K01181NANA
AK018_04492654udk_2Uridine kinaseGTGACCGACAGCGACCTGCCCGCTCCCGTGCCGCCGTCCGACGCCCTCTTCGACGTCCCGGCCGAGGCACGTCGTCCCACCACCCGGATCGTGCTGCTCACCGGAGCCTCCGGCAGCGGCAAGTCCGCCCTGACGCGCCGGCTCGGGCTGCCCGTCGTCGTGCTCGACGACTTCTACCGCGACCACGACCACCCCGGCATGCCGCACGCCTTCGGCATCGTCGACTGGGACGACCCGGCGAGCTGGGACCACGACGCCGCCCTGCAGGCGCTGCGCACCCTCGCGACCACCGGCCGCACCGAGGTCCCCGTCTACGACATCCCGACGTCGCGCCGGACCGGCGCCACGGTGGTCGACGCGCACGGCGAGAAGGTGGTGCTGGCCGAGGGCGTCTTCGCCGCCGAGCTCGTGTCCGACCTGCGCGCCGAGGGCATCCTGGCCGACGCCATCTGCCTGGCACGCCCGCGCCTGGTGACGTTCTGGTTCCGCCTGCTGCGCGACCTCGCCGAGTCCCGCAAGCCGCCGTTCACGCTGCTGCGCCGCGGCTGGGGGCTGCTGCGTGCCGAACCCGCCCTGGTGCGCCGCTGGACCGGACTCGGGTGCCGCCCCCTCGCACCGCACGCCGCGGAGCACGAGATCCGCGCGCTCGCCTGAMTDSDLPAPVPPSDALFDVPAEARRPTTRIVLLTGASGSGKSALTRRLGLPVVVLDDFYRDHDHPGMPHAFGIVDWDDPASWDHDAALQALRTLATTGRTEVPVYDIPTSRRTGATVVDAHGEKVVLAEGVFAAELVSDLRAEGILADAICLARPRLVTFWFRLLRDLAESRKPPFTLLRRGWGLLRAEPALVRRWTGLGCRPLAPHAAEHEIRALAPGPT0021230_3714DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876NANA
AK018_044931203mshA_6D-inositol-3-phosphate glycosyltransferaseGTGTTCGAGCACAGTTCTCTTCGTGTCCTGTCCCTCTACGAGGGATTCTTCTCCGGCGGTGCGCGTGTCCTGCACTCGACCGTCGTGTCCGGTCTGCACACCCACGGCCACCAGCAGCACTCGGCCCTCAGCATCCACGACGCCGTGCGACGCGAGACGATGCTGCAGCGGATGCAGGACGACCCGCGGTACCGGTCCCTGCGGTCGGTCGGCGTGCGGATCTCCACCCTCGGTCGGTCGACCGACGACGACCACGACCCCCGGACCTTCACCGACGCCGAGATGGAGATCGCCGCCCGCGAGGCCACCGGCGTCGACGTCGTGATGTCCCTCAAGGAGCAGCCGCTGCGCCTCGCCGTGCACCCGGGCTTCCCGGACCGCCCCGTCGTGGCCTGCCTGCACCGCAGCGACCCGGAGCACTCGGGCGCGGCACTGGACGACCTCAAGGCCGCCGCCGACAGCGGCCGGCTCGTCGCCGGCATCTGCTGCGCGGAGTCCACCAAGGAGGCCTACGCCGCCGCCGGCGTCCCGGAGCACCTGCTGCGGGTCGTGCCCAACGGCATCGACCTCACCCGCTACCACCCGCTGCGCCGCGTCCGGCGCATGGCGCTGCGCGGTGCGCACGGCATCCCGGCCGATGCCACCCTGGTCGCCTACGCGGCCCGCTACGACGCCATGAAGAACCCCCGGCTCTTCCTGGCCGCCGCCCGCGCCTTCCTGGAGCGGGAGCCCGCCGGTCACGTGATGATGTGCGGCGCCGGCATGACCACGGAGAACACCGGCCTGGTCGCGGACCTCGAGGAGACCTTCGGCGACCGTCCGGACCTGCTGGCACGGGTCCACCCGCAGGGCGTGCGCCGCGACATGGAGAACGTCTTCGCGATGGCCGACGTCGTGGCCCTCACCTCGGCGTTCGGCGAGGCCGCCCCGCTGTGCCTCATCGAGGGCGCGATGAGCGGCGCCGTCCCCGTCACCACCCCGGTCGGCGACAGCGCCCGCCTGGTCGAGCGCATCGGATTCGTCACGAGCTTCGACGCCGAGGAGATCGCCGAGACGTGGATCGAGGCGGCGGCCCGGCGCGGCGAGCTGCGCGGCGCGCTCACCGCCGCACGTCAGCGGTTCAGCCACGTGCGGATGCTGTCCGGCTACGCCCAGGTGCTCGAGCAGGCGTTCCGCGGCACCGGCCTGCAGGTCGCTGCCTAGMFEHSSLRVLSLYEGFFSGGARVLHSTVVSGLHTHGHQQHSALSIHDAVRRETMLQRMQDDPRYRSLRSVGVRISTLGRSTDDDHDPRTFTDAEMEIAAREATGVDVVMSLKEQPLRLAVHPGFPDRPVVACLHRSDPEHSGAALDDLKAAADSGRLVAGICCAESTKEAYAAAGVPEHLLRVVPNGIDLTRYHPLRRVRRMALRGAHGIPADATLVAYAARYDAMKNPRLFLAAARAFLEREPAGHVMMCGAGMTTENTGLVADLEETFGDRPDLLARVHPQGVRRDMENVFAMADVVALTSAFGEAAPLCLIEGAMSGAVPVTTPVGDSARLVERIGFVTSFDAEEIAETWIEAAARRGELRGALTAARQRFSHVRMLSGYAQVLEQAFRGTGLQVAANANANANANA
AK018_044941023degA_11COG1609HTH-type transcriptional regulator DegAGTGGCCAGAGCGCGGTTGCAGGACGTCGCCGACCGGGCCGGGGTGTCCCTGGCGACCGCGTCGCGGGTGCTCAACGGGTCGGCGCGCCAGCCCGGACCCGAGCTGGTCAGCCGTGTGCGCGCGGCCGCGGCGGAGCTCGGCTACGTCGTCAACGCGCAGGCCCAGGCCCTGGCCCGGTCGCGCACCGGCCTGCTCGGTCTCGTGGTGCAGGACATCTCCGACCCCTACTTCTCCTCGATCGCCGCCGGTGCGCAGGCGGCCGCCCGCGAGCACGGGCGCATGGTCCTGCTGGCCTCCACCGACCGCGACCCGTCCGCCGAGCACGACGCCGTCGCGGCCTTCGCCGCCCACCGGGTCGACGCCGTCGTCGTGGTCGGCACCCGGTGGTCGGCCGAGGAGGACGCTCCGGTGGCCGCCGAGCTCGCCGCGTTCGAGGCGTCCGGAGGGCGCGCGGTCGTCGTCGGGCAGCCGCTGGGACCGGCCGTCGTGGTGCGTCCGCCCAACGCCGAGGGTGCCGCGGACCTCGCGACCGCGCTGCTGGCCGAGGGGCACCGGCGGTTCGTCCTGCTCAGCGCCGCGAGCCGCGTCCGCACGGCGCAGGAGCGCGCCGGGTCGTTCGCCGAGGCCGTGACCGCCGGCGGCGGCGAGGTCGTGGAGGTCGTCGAGCGCGAGTTCTCCCGCGACGGCGGGTACGCGGCCGGCGACCGGGTCGCCGAGCTGGCGCGCGCCGCGGTCGCCGATGGTCTCGACGTCCCGTGCGTCTTCGCGGTGAGCGACGTCATGGCGATCGGTCTGATCGCCCGGCTGCGCGACATCGGTGTCGGCGTGCCCCGCGACGTCCGGGTGGCGGGCTTCGACGACATCCCCACCCTCCACGACCACGTCCCGGCCGTGTCCACGGTGCACATCCCGCTGGAGGAGATGGGGCGGCTGGCCGTGGCGGCCGCCGTGTCCGAGGACGGTGCCGACGTCGGCGCCTCCGTCGGGCACGAGGTCGTGCTGCGCGAGTCCACCGCGCGCTGAMARARLQDVADRAGVSLATASRVLNGSARQPGPELVSRVRAAAAELGYVVNAQAQALARSRTGLLGLVVQDISDPYFSSIAAGAQAAAREHGRMVLLASTDRDPSAEHDAVAAFAAHRVDAVVVVGTRWSAEEDAPVAAELAAFEASGGRAVVVGQPLGPAVVVRPPNAEGAADLATALLAEGHRRFVLLSAASRVRTAQERAGSFAEAVTAGGGEVVEVVEREFSRDGGYAAGDRVAELARAAVADGLDVPCVFAVSDVMAIGLIARLRDIGVGVPRDVRVAGFDDIPTLHDHVPAVSTVHIPLEEMGRLAVAAAVSEDGADVGASVGHEVVLRESTARPGPT0017992_9181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_044951167xdh_2D-xylose dehydrogenaseGTGACCACCACCCGCACCCTGCGCATCGCCATGAACGGCGTGACCGGCCGCATGGGGTACCGCCAGCACCTGCTCCGCTCCATCCTGCCGATCCGCGAGCAGGGCGGCGTGACCCTGCCGGACGGCAGCCGCGTGCAGGTCGAGCCGATCCTCGTGGGTCGCAACGAGGCCAAGCTCGCCGACCTCGCCGCGAAGCACGGCATCAGCGAGTACACGACCGACCTGGACGGCATCGTCCACGCCGAGGACACCGACATCGTGTTCGACGCCGCGATGACCAACCTGCGCCCCGAGACGCTGTCGAAGGCGATGAAGGCCGGCAAGCACGTCTACACCGAGAAGCCGACCGCCGAGACCCTCGCCGAGGCGATCGACCTCGCGAAGCTGCGCGACGAGACCGGCGTGACCGCCGGCGTCGTGCACGACAAGCTCTACCTGCCCGGCCTGGTCAAGCTGCGTCGCCTGGTGGACGAGGGGTTCTTCGGCCGGATCCTGTCGCTGCGCGGCGAGTTCGGCTACTGGGTGTTCGAGGGCGAGACCCAGCCGGCCCAGCGCCCGAGCTGGAACTACCGCTCCGAGGACGGCGGCGGCATGACCACCGACATGTTCTGCCACTGGAACTACGTGCTCGAGGGCATCCTGGGCACCGTCAAGACGGTCAACGCCCAGACGATCACTCACATCCCCACCCGCTGGGACGAGCAGGGCAAGCCCTACGACGCCACCGCCGACGACGCCGCCTACGGCATCTTCGAGATGGCCACGCCCGACGGCGACCCCGTCGTGGCGCAGATCAACTCCTCCTGGGCCGTGCGCGTGTACCGCGACGAGCTCGTCGAGTTCCAGATCGACGGCACGCACGGCTCCGCCGTCGCCGGCCTGTTCAAGTGCGTCTCCCAGCAGCGTTCCAACACGCCCAAGCCGGTCTGGAACCCCGACCTTCCCGTCACCGAGTCGTTCCGCGAGCAGTGGACCGACGTGCCCGCCAACGCCGAGCTGGAGAACGGCTTCAAGGCGCAGTGGGAGGAGTTCCTGCGCGACGTCGTCGCCGGGCGCGAGCACCGCTTCGACCTGCTGTCCGCCGCCCGCGGCGTCCAGCTCGCCGAGCTCGGCCTGCAGTCCTCGTCCGAGGGCCGCCGCCTCGACGTCCCGGAGATCACGCTGTGAMTTTRTLRIAMNGVTGRMGYRQHLLRSILPIREQGGVTLPDGSRVQVEPILVGRNEAKLADLAAKHGISEYTTDLDGIVHAEDTDIVFDAAMTNLRPETLSKAMKAGKHVYTEKPTAETLAEAIDLAKLRDETGVTAGVVHDKLYLPGLVKLRRLVDEGFFGRILSLRGEFGYWVFEGETQPAQRPSWNYRSEDGGGMTTDMFCHWNYVLEGILGTVKTVNAQTITHIPTRWDEQGKPYDATADDAAYGIFEMATPDGDPVVAQINSSWAVRVYRDELVEFQIDGTHGSAVAGLFKCVSQQRSNTPKPVWNPDLPVTESFREQWTDVPANAELENGFKAQWEEFLRDVVAGREHRFDLLSAARGVQLAELGLQSSSEGRRLDVPEITLNANANANANA
AK018_044961266hypothetical proteinGTGAGCGCCGCGGTGACGGGCGCCGCCGGCGCCCCGGTGCTCGAGGCCAGCGGCGCGACCGTGCGGCTGCCACGGTTCGACGACGGCGGTCGCGTCGCCGGGACCGAGGTGCGCGAGCTCAACGCCCCCGGCCCGTGGCAGGCGCCGACCGGGTCGATCCGGTCGCGGGTCGCCTTCGCCGCCGCGCACGTGGTCCCGCAGGTCGGGGCCGAGAACGTGCCCGGCGCCCCCGCCGTCGTCGACTGGGATGCCACCCTCGCCTACCGCCACCAGATCTGGCGGTACGGCCTGGGCGTCGCCGACGCCATGGACACCGCCCAGCGCGGCATGGGCCTGGACTGGGCCGCCACCCAGGAGCTCGTGCGCCGCTCGGCCGCCGAGGCCGCGTCCGTCGGCGGTGCCATCGCCTGCGGCGCCGGCACCGACCAGCTCGACCCCGCCCGCGTGGCCGGGTGGCAGCGCGGGGACGCGGCGGCGCTCGACGCCGTCGTCGAGGCGTACCGCGAGCAGGTCCGGGTCGTGCAGGAGGCCGGCGCGCAGGTGATCGTCATGGCCTCCCGGGCACTGGCGAAGGTCGCCCGGTCCGCCGAGGACTACGCCCGGGTCTACGACGCCGTGCTCGCCGAGGCCGACCAGCCGGTGGTCCTGCACTGGCTCGGCACGATGTTCGACCCGGCACTGGCCGGCTACTGGGGCTCGGACGACGTCGACACCGCGACCGCCACGTTCGTGGACCTCATCTCCGCCCACCAGGACAAGGTCGACGGCGTGAAGGTCTCCCTGCTGGACGCCCAGCACGAGATCGGGCTGCGCCGCACGCTCGCCGCGCTGGACGGCTCCCCCGTGCGCCTGTACACCGGGGACGACTTCAACTACCCCGAGCTCATCACGGGTGACTCCCAGGGCTACTCGGACGCACTGCTCGGCATCTTCGCCGCGATCTACCCGGCGGCGTCCACAGCGCTGCAGGCGTTCGACGCGAACGAGGCCGCCCAGGGGCACGCCATCCTCGCCTCCACGGAGAAGCTGGGCCGGCACATCTTCGCCGCGCCCACGTACTACTACAAGACCGGCGTGGCGTTCCTGTCCTGGCTGAACGGGTTCCAGACGGGCTTCCAGCTCGTCGGTGGTCTGCACTCCGGGCGGTCGCTGGCCCATCTGGTCGAGCTGGCCCGGTCGGCCGACGACTGCGGGATGCTGCTCGACCCGGACCTGGCGGCCAAGCGCCTGGGTGCGCTGCTAGTGACGAACGGGGTCGACTCGTGAMSAAVTGAAGAPVLEASGATVRLPRFDDGGRVAGTEVRELNAPGPWQAPTGSIRSRVAFAAAHVVPQVGAENVPGAPAVVDWDATLAYRHQIWRYGLGVADAMDTAQRGMGLDWAATQELVRRSAAEAASVGGAIACGAGTDQLDPARVAGWQRGDAAALDAVVEAYREQVRVVQEAGAQVIVMASRALAKVARSAEDYARVYDAVLAEADQPVVLHWLGTMFDPALAGYWGSDDVDTATATFVDLISAHQDKVDGVKVSLLDAQHEIGLRRTLAALDGSPVRLYTGDDFNYPELITGDSQGYSDALLGIFAAIYPAASTALQAFDANEAAQGHAILASTEKLGRHIFAAPTYYYKTGVAFLSWLNGFQTGFQLVGGLHSGRSLAHLVELARSADDCGMLLDPDLAAKRLGALLVTNGVDSNANANANANA
AK018_04497870hypothetical proteinGTGACAGGCCTCGCACGCTGCTCGCTGAACACCGCGACCGTCAAGCACGCCTCGCTGACCGAGGCCGTCGCTGCGGCCGCCGCCGCGGGCATGGGCGCCGTCGGGCTGTGGCGGCACCAGGTCGCCGAGCACGGCGCCGAGACAGCCCGGAAGATCGTCGAGGACGCCGGGCTGCGGGTCACGTCGCTCTGCCGCGGCGGGTTTCTCACGGCGTCGACGGACGCGGGGATCCGCGAGGCGATCGCCGAGAACACTCGGGCGTTCGAGGAGGCCGCCGGCATCGGGACGCGCGAGGTGGTGTTCGTCGTCGGCGGGCTGCCTGGTTCGTCGCCGGAGGCACCGCCGTCGCCCGGCACCGACCGCGACGTCGTCGCGACCCGCGCCCGGGTGGCGGACCGCCTGGCCGACCTCGCCCCGATCGCCGAGCAGCACGACGTGCGCATCGTCCTGGAGCCGCTGCACCCGATGTTCGCCGCCGACCGCGCGGTGATCTCCACGCTCGGGCAGGCACTCGACCTGGCCGCACCGTTCGACCCGCGCACCGTCGGCGTCGTCGTGGACACCTACCACGTGTGGTGGGACCCGGGGCTGCGCTCGTCGATCGAGCGGGCCGGGCGGGAGGGCCGGATCGCGAGCTACCAGGTGTGCGACTGGAACCTGCCGTTCGGCGCCACGGCGCTGAACTCGCGCGGGCACGTCGGCGACGGGTACATCGACTTCGCGACGATCTCGTCCTGGGTGCGCGACGCCGGGTACACCGGCGACGTCGAGACCGAGATCTTCAACGAGGGGATCTGGGCGGCGGACCCGGTCGCCACGGCACGCACCGTCGCCGAGCGCTACGCGGAGCACGTCGCCCCGCACCTCTGAMTGLARCSLNTATVKHASLTEAVAAAAAAGMGAVGLWRHQVAEHGAETARKIVEDAGLRVTSLCRGGFLTASTDAGIREAIAENTRAFEEAAGIGTREVVFVVGGLPGSSPEAPPSPGTDRDVVATRARVADRLADLAPIAEQHDVRIVLEPLHPMFAADRAVISTLGQALDLAAPFDPRTVGVVVDTYHVWWDPGLRSSIERAGREGRIASYQVCDWNLPFGATALNSRGHVGDGYIDFATISSWVRDAGYTGDVETEIFNEGIWAADPVATARTVAERYAEHVAPHLNANANANANA
AK018_04498780COG1123putative ABC transporter ATP-binding proteinATGAGCTCGAACACCGCCCCGATCCTGCGCGCCTCCGGCCTCTCCGCCGGCTACGGCGGCCCCGACGTCGTCCGCGACATCGACCTCGAGCTCACCACCGGCTCGGCGCCCGTCGGTATCGTCGGCCCGTCCGGCGCCGGCAAGTCGACGATCGTGCGGGCACTGGTCGGCCGGGTGAAGCCGACCAGCGGGCACGCCACGTGGCACGGCCGCACGGTCAGCCGCATCGGCCTGCGGGACAAGAAGGCCTTCCGCACCCAGGTCCGCCGGGTCGCCCAGGAGGGCATCGCCGACGTCGACCCCCGCTGGACCGTCGACCGCGTGCTGGGCAAGGCCCTGGCGGACGCCCGCAAGGCCGGCCGCGCCTCGGGCCGGACCGTCGAGGAGCTGCTCGACGACGTCGCGCTCGAGCCGCGGTTCGCCGTCCGTCAGGTCGGGACCCTGTCCGGCGGGGAGAAGCAGCGCCTCGGCCTGGCCTCGGCGCTGGCGACCCGCCCGGACGCGCTGCTGCTCGACGAGCCGCTCACCGCCGTCGACCCGGCGATGCGCGGCGAGGTCGTGCGCCGGCTCGCGGACGCGACCGCGGACCAGGGCACCGCCGTGCTGCTCGTCACCCACGACCTGGAGCTCGTCGAGCGGCTCTGCCCCACCGTGCATGTCCTCGGCGAGGGGACCTTCGTCGCCTCCGGGAGTCTGTCGCAGGTCCTGTCGACGGCCGAGCACCCGGTGGTGCGCGAGCTCGCCGAGGCGGCACCGCAGGCCGTGCAGCGCTTCCGCTGAMSSNTAPILRASGLSAGYGGPDVVRDIDLELTTGSAPVGIVGPSGAGKSTIVRALVGRVKPTSGHATWHGRTVSRIGLRDKKAFRTQVRRVAQEGIADVDPRWTVDRVLGKALADARKAGRASGRTVEELLDDVALEPRFAVRQVGTLSGGEKQRLGLASALATRPDALLLDEPLTAVDPAMRGEVVRRLADATADQGTAVLLVTHDLELVERLCPTVHVLGEGTFVASGSLSQVLSTAEHPVVRELAEAAPQAVQRFRPGPT0004435_4262DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
AK018_04499501hypothetical proteinATGACCGGCGCCACGCACCCCGTCCACGTCCTGGCCCGCTGGACGGTCGAGTCCGCCGACGACCTCGCCCGCATCCGGGTCGACCTCGACCACGCGCTGCAACGCCTGGCGGGCACCTGCGACTGCTGCCTGGCCCCGTCGGGCGCCGAGCCCCAGCACGTCGTCCTCATCGCCAACGAGCTGGCGTCCAACGCCCTCGAGTACACCGGCGGCCCGGCCAGCCTGGAGCTGCGGTGCGACGGGACGACGGCCGTCGTCTCCGTGACGGACCCCCGGCCCGACCTCCCGCCGATCCTCAGCCCCCACCGCGACCTCGGCAAGGGTGGCTTCGGGCTCCAGCTCGCCCTGCGCGTCGCCGACGACGTCGGCTGGTACCGGGACTCCGCGTGGGAGAAGCGCGTGTGGGCACGGTTCATGCTCGCCGCCCCGGAACGGGCGCGCGACAGCGCCGGGACCCCGGGCCACGACGGACCCGGGGCGCCGGCACCGCTCAGCCGTTGAMTGATHPVHVLARWTVESADDLARIRVDLDHALQRLAGTCDCCLAPSGAEPQHVVLIANELASNALEYTGGPASLELRCDGTTAVVSVTDPRPDLPPILSPHRDLGKGGFGLQLALRVADDVGWYRDSAWEKRVWARFMLAAPERARDSAGTPGHDGPGAPAPLSRNANANANANA
AK018_045001482rhaB_2RhamnulokinaseATGAGCGCGTTCGTCGCCGTCGACCTCGGGGCGACCAGCGGCCGGGTGATGCTCGGCGTCGTGACCGGCGGGGCCGGGGACGAGCACGTCGACCTCACCGAGGTCGCACGGTTCGGCAACGGCCCCGTCGAGATCCCCGAGTCCGACGGCACCGCGCTGCACTGGGACCTGCTGCACCTGTGGCGAGGGACCCTGGACGGCCTCCGCGCCGCCGGGGCCCTCGCCCGGGAGCGGGGTGTCGAGATCGCCGGGATCGGCATCGACTCCTGGGCGGTCGACCACGGCCTGTTCGCCGCCGACGGCTCGCTGCTGGCCAACCCGCGTCACCACCGCGACCCCCGGCTGAACGGTGTGGCGGACGAGGTGCTCGGCAGGCTCGGTCCCGGCGAGCACTACGGCGTCAACGGGCTGCAGACCCTGCCGTTCAACACCGAGTTCCAGCTCGTGGCCGCCCGGCACGACGCCGTGTGGCCGCTCGTGGACTCGGTCCGACTGATTCCCGACCTCCTCGGCTCGTGGCTCACCGGGGTGACGGTCGCCGAGGTCACCAACGCCTCGACGACCGGGCTCCTGGACGCGACCACCCGGCAGTGGTCCGGCCCGGTCATCGACGCCCTGCAGCGCGAGTACCCCGAGCTGGGCGACCTGCGCGCGACGCTGGCCGACGTCGTCGAGCCGGGGACCGTCGTCGGGCACCTGACCGACCGCGTCCAGGACGCCACGGGGCTGGGTGCCGTCCCGGTCGTCGCGGTGGGGTCGCACGACACGGCCTCCGCCGTCGTCGGCGTGCCCGCCAAGGACGAACGGTTCGCCTACGTCTCCTCCGGTACCTGGTCGCTGGTGGGCGTCGAGCTGGACGCACCCGTGCTGACGGAGGAGAGCCGGCAGGCGAACGTCACCAACGAGCTCGGCGTCGACGGCACCGTGCGCTACCTCAAGAACGTCATGGGGCTGTGGGTGCTCTCGGAGACCCTGCGCACCTGGCAGGAGGCGGGCACGGAGGTCACGCTGGTCGAGGCGCTCACGGCCGCCGCCGAGGCCCGGCCGCGTCGGACCGTCGTGGACGTCGACGCCCCCGAGTTCCTCCCGCCCGGGGACATGCCGGCGCGGATCGCCGACGCCGCCCGGGCGAGCGGACAGCCGGTGCCCGAGAGCGTCGGCGAGACGGTGCGCTGCATCCTGGACTCCCTCGCCGACGCCTACCGTCGGGTGCTGGACGAGGTGACCCGGTTGTCGGGGCGGCACGTCGAGGTGCTGCACGTCGTGGGCGGCGGCTCGCAGAACGAGCTGCTGTGCCGGCTCACGGCGGCCGCCACGGGTCTGCCCGTCGTCGCCGGACCCGTCGAGGGAGCGGCCCTCGGCAACGTCGTGGTCCAGGCACGGGCCGTGGGGACGCTCGACGGCGACCTGACCCGACTGCGGGACGTCGTCCGGCGCTCCTCGCGGCTGCGGCGCTACGAACCCCAGCTCGTCAACGGCTGAMSAFVAVDLGATSGRVMLGVVTGGAGDEHVDLTEVARFGNGPVEIPESDGTALHWDLLHLWRGTLDGLRAAGALARERGVEIAGIGIDSWAVDHGLFAADGSLLANPRHHRDPRLNGVADEVLGRLGPGEHYGVNGLQTLPFNTEFQLVAARHDAVWPLVDSVRLIPDLLGSWLTGVTVAEVTNASTTGLLDATTRQWSGPVIDALQREYPELGDLRATLADVVEPGTVVGHLTDRVQDATGLGAVPVVAVGSHDTASAVVGVPAKDERFAYVSSGTWSLVGVELDAPVLTEESRQANVTNELGVDGTVRYLKNVMGLWVLSETLRTWQEAGTEVTLVEALTAAAEARPRRTVVDVDAPEFLPPGDMPARIADAARASGQPVPESVGETVRCILDSLADAYRRVLDEVTRLSGRHVEVLHVVGGGSQNELLCRLTAAATGLPVVAGPVEGAALGNVVVQARAVGTLDGDLTRLRDVVRRSSRLRRYEPQLVNGPGPT0017775_19DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017775-rhaB-K00848NANA
AK018_045012055hcaB_33-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGACGAACGAGACCGTTGCCGCTCTGGTCGAGCGGTCCAACCGCCTGGGCGCCGACCCGAAGAACACGAACTACGCCGGCGGCAACACGTCCGCCAAGGGCGTCGAGACCGACCCCGTCACCGGTCAGGACGTCGAGCTGCTGTGGGTCAAGGGCTCCGGCGGCGACCTGGGCACCCTGACCGAGAAGGGCCTGGCCGCGCTGCGCCTGGACCGCATGCGCGCGCTGGTCGACGTCTACCCGGGCGTCGACCGCGAGGACGAGATGGTCGCGGCGTTCGACTACTGCCTGCACGGCAAGGGCGGCGCCGCCCCCAGCATCGACACCGCCATGCACGGGCTCGTCGACGCCAAGCACGTGGACCACCTGCACCCCGACTCCGGCATCGCGATCGCCACCGCCGTCGACGGCCCGGACCTGACCGCGACCATCTTCGGCGGCAAGGTCGTGTGGGTGCCGTGGCGTCGGCCCGGCTTCCAGCTCGGTCTCGACATCGCCGAGATCAAGAAGGCCAACCCCGACGCGATCGGGACCGTGCTGGGCGGCCACGGCATCACCGCGTGGGGCGACACCGCCGAGGAGGCCGAGGCCAACTCGCTGTGGATCATCGACACGGCGGCGGCCTACATCGCCGAGCACGGCAAGGCCGAGCCCTTCGGCCCGGCGCTCGACGGCTACGGCGCGCTGCCCGAGGCCGAGCGCCGCGCCAAGGCCGCCGCGCTGGCGCCGCACCTGCGCGCCGTCGCCTCGCACGACAAGCCGCAGGTCGGCCACTTCACCGACTCCGAGCCGGTGCTGGAGTTCCTCGCGCACGCCGAGCACCCCCGCCTCGCCGAGCTCGGGACCTCCTGCCCCGACCACTTCCTGCGCACCAAGGTCAAGCCGCTGGTGATCGACCTGCCGGCCACGGCCAGCGTCGAGGAGATCGTCGAGCGGCTGCCGGAGCTGCACGAGGCGTACCGCGCCGACTACACCGCCTACTACGAGCAGGGGGCCGCCGAGGCGCGCGAGCGCGGCGAGGAGCCGCCCGCGATCCGTGGTGCCGACCCCGCGATCGTCCTCGTCCCGGGCGTGGGGATGTTCTCCTACGGCGGTGACAAGCAGACCGCCCGGGTGGCCGGCGAGTTCTACGTCAACGCCATCAACGTGATGCGCGGTGCCGAGGCCCTGTCGACCTACGCCCCGATCGACACCTCGGAGAAGTTCCGCATCGAGTACTGGGCGCTCGAGGAGGCCAAGCTGCAGCGCAAGCCCAAGCCGAAGCCGCTGGCCACCCGCATCGCGTTCGTCACGGGCGCGGCCTCCGGCATCGGCAAGGCCATCGCCGAGCGCCTCGCCGCCGAGGGCGCCTGCGTCGTGATCGCCGACCTGGACGCGGAGAAGGCTCAGGGGGTCGCCGCGGAGATCGGGTCGACCGACGTCGCCGTCGGGCTCGCCGCGAACGTCACCGACGAGGCCGCGATCCGGGCCGCGCTGGACGAGGCCGTGCTCGCGTTCGGCGGCGTGGACATCGTCGTCAACAACGCCGGGCTGTCGCTGTCCAAGTCGCTGTTCGAGACCACGGCGGACGACTGGGACCTGCAGCACGACGTCATGGCCAAGGGCTCGTTCCTGGTGTCCAAGCACGCCGCACGGATCCTCGTGGACCAGCAGCTCGGTGGCGACATCATCTACATCTCGTCCAAGAACTCGGTGTTCGCCGGTCCGAACAACATCGCCTACTCGGCGACGAAGGCCGACCAGGCCCACCAGGTGCGCCTGCTGGCCGCCGAGCTCGGCGAGCACGGGATCAAGGTCAACGGCATCAACCCCGACGGCGTCGTGCGCGGGTCGGGCATCTTCGCCTCCGGGTGGGGCGCCAACCGGGCCAAGACCTACGGCATCGAGGAGTCGGAGCTCGGCAAGTTCTACGCCCAGCGCACGCTGCTCAAGCGCGAGGTGCTGCCGGAGAACATCGCGAACGTGGCGTTCTCGCTGTGCACCGCGGACTTCTCGCACACGACCGGACTGCACATTCCCGTCGACGCGGGTGTGGCGCAGGCGTTCCTGCGATGAMTNETVAALVERSNRLGADPKNTNYAGGNTSAKGVETDPVTGQDVELLWVKGSGGDLGTLTEKGLAALRLDRMRALVDVYPGVDREDEMVAAFDYCLHGKGGAAPSIDTAMHGLVDAKHVDHLHPDSGIAIATAVDGPDLTATIFGGKVVWVPWRRPGFQLGLDIAEIKKANPDAIGTVLGGHGITAWGDTAEEAEANSLWIIDTAAAYIAEHGKAEPFGPALDGYGALPEAERRAKAAALAPHLRAVASHDKPQVGHFTDSEPVLEFLAHAEHPRLAELGTSCPDHFLRTKVKPLVIDLPATASVEEIVERLPELHEAYRADYTAYYEQGAAEARERGEEPPAIRGADPAIVLVPGVGMFSYGGDKQTARVAGEFYVNAINVMRGAEALSTYAPIDTSEKFRIEYWALEEAKLQRKPKPKPLATRIAFVTGAASGIGKAIAERLAAEGACVVIADLDAEKAQGVAAEIGSTDVAVGLAANVTDEAAIRAALDEAVLAFGGVDIVVNNAGLSLSKSLFETTADDWDLQHDVMAKGSFLVSKHAARILVDQQLGGDIIYISSKNSVFAGPNNIAYSATKADQAHQVRLLAAELGEHGIKVNGINPDGVVRGSGIFASGWGANRAKTYGIEESELGKFYAQRTLLKREVLPENIANVAFSLCTADFSHTTGLHIPVDAGVAQAFLRNANANANANA
AK018_04502975lip2Lipase 2ATGAGCACGACGACGGCGTCGACGGCGACGGCGAGCATCCGTGACGAGGTGCTCGCCGGCCCGCACGGCGACCTGCGCGTCCGGGTGTACCGGCCCGGCTCCGGCGCTCCCGTGGCCGGGCTGGTCTGGGCGCACGGCGGGGCGTTCATGCACGGCGACCTCGACATGCCGGAGGCCGACCACGTCGCCCGCGTCCTCGCCGCCGGCGGTGTCGCCGTCGTCAGCGTCGACTACGCGTTGGCCCCCGCGTTCGACCACCACGCCGTGCTGGCCGACGACGGGCTCGAGAAGGGCCTGGCCCGGATGCTCGCCGCCACCGACGGCGCGCGCTTCCCGGTCGCGTCCCAGGAGCTGGCCTTCGCCTTCGCCTGGGCGGTCGACGCCGACCTGGGTGTCCCGGCGGGCCGCTGGTCCCTCGGCGGGGCCAGCGCCGGCGGGAACCTCGCTGCGGGCGTGGCGCTGCGGCTGCGCGACGCCGCCGCCGGGGACACCGACGCCGCGCCGGTGCCGCCGTCGTCGACCGCGCGCACCGTCCCCCGCAGCGTGGTGCTCGCCTACCCGGTGGCGCACCACGAGCTGCCGGACCCGTGGCCCGAGCTGGCCACCAAGATCGCCGCGCTGCCGCCGGACCGGAGCTATCCTCCGGCGGCAGTGCGGGCCATGAACGACCACTACCTCGGACACGAGCGTGGCCCGGACTCCCCGTACGCGTTCCCGGCCGGGCACGACCTCCGTGGCCTGCCGCCGACCCTGATCGTCACCTCCGACCACGACGCGCTGCGGTCCTCCGGGGAGGCCTACGCCGGCGAGCTGGCCGGCGCCGGCACGGACGTCATGGTCGTGCGCGAGGACGACACCCTCCATGGTCACCTCAACCAGCCCGACGATCCCGGGTGTGCGCGCAGCCTCGCGCGCATCACCGCCTGGCTCACGTCCGACGTGCTGGTCGGGACCACCCACGAACCACCCGCCTGAMSTTTASTATASIRDEVLAGPHGDLRVRVYRPGSGAPVAGLVWAHGGAFMHGDLDMPEADHVARVLAAGGVAVVSVDYALAPAFDHHAVLADDGLEKGLARMLAATDGARFPVASQELAFAFAWAVDADLGVPAGRWSLGGASAGGNLAAGVALRLRDAAAGDTDAAPVPPSSTARTVPRSVVLAYPVAHHELPDPWPELATKIAALPPDRSYPPAAVRAMNDHYLGHERGPDSPYAFPAGHDLRGLPPTLIVTSDHDALRSSGEAYAGELAGAGTDVMVVREDDTLHGHLNQPDDPGCARSLARITAWLTSDVLVGTTHEPPANANANANANA
AK018_045031167xylA_2Xylose isomeraseATGCCCAGCTTCGACGACATCACCCCGGTCCTGGACCGCCTCGCCATCGAGGTGCCGTCCTGGGCCTACGGCAACTCCGGCACCCGCTTCAAGGTGTTCTCCACCCCGGGCACGCCGCGCACCCCCGAGGAGAAGATCGCCGACGCCGCCCAGGTCCACCGGCTCACCGGCCTGGCCCCCACCGTCGCGCTGCACATCCCGTGGGACAAGGTCGACGACTACGCGGCGCTGCGCCGGTACGCCAACGACCAGGGCGTCGACCTCGGGACGATCAACTCCAACACGTTCCAGGACGACGTCTACAAGCTCGGCTCGCTGACGCACACCGACCCCGCGGTCCGCCGGAAGGCGATCGACCATCACCTCGACTGCATCGAGATCATGCACGCCACCGGGTCGAAGGACCTGAAGATCTGGCTGGCCGACGGCTCGAACTACCCCGGGCAGGCGGACATCCGCACCCGCCAGGACCTGCTGCACGAAGCGCTGACCGAGATCTACGGCCGGCTCGGCGACGACCACCGCATGGTGCTCGAGTACAAGTTCTTCGAGCCGGCGTTCTACCACACCGACGTGCCGGACTGGGGCACCTCCTACGCCCAGGTCGCCGCGCTCGGCGAGAAGGCGTTCGTCTGCCTCGACACGGGCCACCACGCCCCGGGCACGAACATCGAGTTCATCGTCGCCCAGCTCCTGCGGCTCGGGAAGCTCGGCTCCTTCGACTTCAACTCGCGGTTCTACGCCGACGACGACCTCATCGTCGGTGCCGCCGACCCGTTCCAGCTCTTCCGCATCATGGCCGAGGTCGTCCGGGGCGGCGGCCTCGACGAGGGCTCCCAGGTCGCGCTGATGCTCGACCAGTGCCACAACATCGAGGACAAGGTCCCCGGCCAGATCCGGTCGGTGCTCAACGTCCAGGAGATGACCGCCCGCGCGCTGCTGCTCGACCGGGAGGCCCTGACCGCGGCGCAGGAGAGCGGCGACGTCCTGGGGGCCAACGCGATCTACATGGACGCCTTCTACACCGACGTGCGCCCGCTGCTCGCCGAGTACCGCGAGAAGCGCGGACTGCCCGCCGACCCCATGGCGGCGTTCGCCGAGTCGGGCTACCTGCCGAAGATCGCGGCCGAGCGCGTGGGCGGTCAGCAGGCCGGCTGGGGCGCCTGAMPSFDDITPVLDRLAIEVPSWAYGNSGTRFKVFSTPGTPRTPEEKIADAAQVHRLTGLAPTVALHIPWDKVDDYAALRRYANDQGVDLGTINSNTFQDDVYKLGSLTHTDPAVRRKAIDHHLDCIEIMHATGSKDLKIWLADGSNYPGQADIRTRQDLLHEALTEIYGRLGDDHRMVLEYKFFEPAFYHTDVPDWGTSYAQVAALGEKAFVCLDTGHHAPGTNIEFIVAQLLRLGKLGSFDFNSRFYADDDLIVGAADPFQLFRIMAEVVRGGGLDEGSQVALMLDQCHNIEDKVPGQIRSVLNVQEMTARALLLDREALTAAQESGDVLGANAIYMDAFYTDVRPLLAEYREKRGLPADPMAAFAESGYLPKIAAERVGGQQAGWGAPGPT0017770_491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017770-rhaA-K01820NANA
AK018_04504357rhaM_3L-rhamnose mutarotaseGTGGGAGACGACGGCAAGCGCCGGGTCATGTTCCAGTTCCGGGTCCACCCGGACCGGCTGGAGGAGTACGGTCGCCGCCACGGCGAGGTCTGGCCCGAGATGCTGCGGGCCCTGCACGAGGCCGGCTGGGAGAACTACTCGATCTTCACCGCACCCGACGGTCAGGTCGTGGGCTACTTCGAGAGCGCCGACCCGGACGCCGCGCGGGCCCGGATGGGGCTGACCGAGGTCAACGCCCGCTGGCAGGCCGAGATGGCCGAGTTCTTCGACGGCGACGGACCGGACGCGACCATGACCGAGCTGACGCCGGTCTTCCACCTCGAGACGCAGCTCGCCGCCGCGGACGACCAGGACTGAMGDDGKRRVMFQFRVHPDRLEEYGRRHGEVWPEMLRALHEAGWENYSIFTAPDGQVVGYFESADPDAARARMGLTEVNARWQAEMAEFFDGDGPDATMTELTPVFHLETQLAAADDQDPGPT0017795_50DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017795-rhaM|rhaU|yiiL-K03534NANA
AK018_045051017degA_12COG1609HTH-type transcriptional regulator DegAATGCCACCGCGCACCAAGCGCCGGACGTCCATCGCCGACGTCGCCCGGCTCGCCGAGGTCTCGGTCGGCACCGTCTCCAACGTGCTCAACCGCCCCGACCGCGTCTCCCCCACCACCCGGGAGCGCGTCGAGGCAGCGATCACCGAGCTCTCCTTCGTGCGCAACGGTTCGGCCCGTCAGCTGCGGGCGGGCACCATCACCACCGCCGGCGCGATCGTCCTCGACGTGGCGAACCCGTTCTTCACCGACGTCGCGCGCGGCATCGAGGACCGGCTCGAGGAGGCCGGGTACACCCTCATGCTCGCCAGCTCGGACGAGGACCCCGACCGGGAGGCCCGCTACCTCAAGCTGTTCGAGGAGCACGGGGTCCAGGGCGTCATGGTGGTCCCCTCCGGCCCGGACATCGACCACCTGCGCACCCTGCACGACCGCGGCCTGCGCGTCGTCCTGCTGGACCGACCCTCCACCGACCCCGCACTGTCGTCGGTGGCGGTGGACGACCGCGCCGGAGCCGCGGCCGCGGCCCGCCACCTGATCGACCTCGGCCACGAGCACCTGGCCTTCCTCAACGGCCCGCACACGATCCGGCAGTGCGCCGACCGCTCGGCCGGTATCCACGACGCCCTCGTCGAGGCCGGTCTCGACCCCGCGACGTGCCTGGAGGAGATCACGATCACCGCGCTCAACGCGGACGGCGGCCAGGCCGGGACCGAGCGGGTCCTCGCCATGGAGCGCCGGCCCACCGCGACCCTGTGCGTCAACGACCTCACGGCGCTCGGCGCCCTGCGCACCCTGCGCGCGGCCGAGGTGCCGGTCCCGTCGGGCATGGCCGTCGTCGGCTACGACGACGTCACCTTCGCCGGCGAGCTCGCCACCCCGCTGACGTCGGTCCGCCAGCCCATGCACGCCCTGGGCTACCGCGCCGCCGACCTGCTCCTGGCCGACGACGAGACCGCCGAGCAGGTCGTCTTCCAGCCCGAGCTGGTCGTGCGGGAGTCCACCACCGGAACGGGATGAMPPRTKRRTSIADVARLAEVSVGTVSNVLNRPDRVSPTTRERVEAAITELSFVRNGSARQLRAGTITTAGAIVLDVANPFFTDVARGIEDRLEEAGYTLMLASSDEDPDREARYLKLFEEHGVQGVMVVPSGPDIDHLRTLHDRGLRVVLLDRPSTDPALSSVAVDDRAGAAAAARHLIDLGHEHLAFLNGPHTIRQCADRSAGIHDALVEAGLDPATCLEEITITALNADGGQAGTERVLAMERRPTATLCVNDLTALGALRTLRAAEVPVPSGMAVVGYDDVTFAGELATPLTSVRQPMHALGYRAADLLLADDETAEQVVFQPELVVRESTTGTGPGPT0017992_10107DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_045061005hypothetical proteinATGACGGAACGCCGCACGACGACCCGACCCGCCCAGCGCCCCACCGCACCGCACGCACCGCTGCCCGCACCCGTGTGGCGCGACCCGGTGCACGACGGCGCCACCGACCCGCTCGTCGTCCGGCATCCCGACGGCGACTGGCGGATGCTGTGGACGCAGCGCAGGCCGGCGGCCCACGGACCGGGCGTCACCTGGGTGCACGGCACCGACCTCGGGGTCGCGACGTCCGACGACGGCGGCGCAACCTGGCGCTACCTCGGCACCCTCGGAGCCGCCGACGGGCTGCCGGTGACCGGCACGGCACCCCGCGACACCTACTGGGCGCCCGAGGTCGTGGAGGTCGACGGGACGTTCCACATGTACCTCACCGTCGTACCCGGCGTCCCGGACCGGTGGGAGGGGAACGACCGCAGGATCCACCACCTGACCAGCCTCGACCTGGAGCGGTGGACCGACCACGGCCCGCTGCCGCTGAGCTCCGACCGCGTCATCGACGCCTGCGTCCACCGCCTGCCCGACGGCGGGTGGCGGCTCTGGTACAAGGACGAGGCCGACGGCTCGACCACCTGGGCCGCGGACTCGCCCGACCTGTGGACCTGGACGGTGCACGGGCAGGTGATCGGCGGACGCCCCCACGAGGGCGCGAAGACGTTCCGGCTGTCGGGCCGGTACTGGATGATCGTCGACGAGTGGCGGGGACAGATGGTCTACCGGTCGGACGACCTCGAGCACTGGGAGCCGCAGGGCCTGATCCTCGAGGAGCCGGCGGACCGGCCCGACGACGTGGCTCCCGGGCACCACGCCCACGTCGAGGTGCTCACCGACGACCCGGACGCCCCGGACGCCGTCGCGTGGATCGTCTACTTCACGCACCCCGGGCGCTCCGTCGCCGACCCGGACTCCGTCGAGGGCCGCCGATCGAGCGTCCTCGTCGCCGAGCTGCGGGTCGACGCCGGTCGACTCGTGTGCCACCGCGGCGACGTCCGCTCCCGCCTGCCGCGCTGAMTERRTTTRPAQRPTAPHAPLPAPVWRDPVHDGATDPLVVRHPDGDWRMLWTQRRPAAHGPGVTWVHGTDLGVATSDDGGATWRYLGTLGAADGLPVTGTAPRDTYWAPEVVEVDGTFHMYLTVVPGVPDRWEGNDRRIHHLTSLDLERWTDHGPLPLSSDRVIDACVHRLPDGGWRLWYKDEADGSTTWAADSPDLWTWTVHGQVIGGRPHEGAKTFRLSGRYWMIVDEWRGQMVYRSDDLEHWEPQGLILEEPADRPDDVAPGHHAHVEVLTDDPDAPDAVAWIVYFTHPGRSVADPDSVEGRRSSVLVAELRVDAGRLVCHRGDVRSRLPRPGPT0018835_91DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
AK018_045072658hypothetical proteinATGGTCGCCGCCGTCGCGATCTTCCTGCTCGGCGCCGTCGTCGCGCTGCCCCAGGCGGTCGCCACCAACGACGGCGTCTGCACGACCGGTGAGGGGTGGGTGAAGTACGAGTACGAGGGCGGCGCCTTCGTGCAGGAGACCGGCGACGAAGAGCTCCTCGTCGAGGTGACGGAGACCAAGGACGGCGACGAGCCGATGGCCGTGTCCGTCACGGCCCCCGACGGCTACCTCGTCTCCGAGGTCTGCGTGAAGGCCGGCACGGACAAGGTGTCGGAGCAGCTCTCGCCGGCCGTCCCGACCGTCACGATCGACGCACCTGAGAAGGCGGCGATCAGCCACTTCGCGGTGAAGCTCGTCGTGGACACGTGGGACTGGAACTGGGAGTACCCCGCACCGACGTGCGAGGGCACGCTCACGGTGACCTACCCCGACGACATCCCCGAGGGGCAGGCGAACGACGTCAACGTCAAGGTGAAGAACCTGGACACCGACGAGGTCGTCACGATCAACATCCACAACGACGAGGGCACCTGGACGGGCGAGCAGGTCTTCGACCCGACGTCCGAGCCCGAGTGGCCGGGCTGGGAGTCCTGGGCCATCGTGTGGACCCAGGTCGCCGGCACGAACTACCACTGGAAGGGCCACGTCGAGGTCGGTTGCGACGAGCCCGTCGAGCCGTCCTTCGAGGCGGAGGCCACGCCCGCCGTCTGCGTCGACGGCGAGACCGAGGGCGGTTCCTTCACCTACACCGTCACCGTCGGCAGCGAGCACGGTACCCGGAACTTCCAGGTGAAGGATCTCGGTGACGGGACCGGTGGCACCGCCGAGACCTACTACCGCGCCGACGGCACGATCGGCGCCCCGGGCGAGATCGTGACCTTCGCGACCATCGAGGCCGGAGCGACGGCCACGCTGAGCCTCGACGACCTGCCCCCGGGGGACTACCGCGTCGTCTCCGACGGGTCGCGGAAGGTCAAGAAGCAGTACAAGTGGGACTTCACGATCGAGGCGCCCGAGGACTGCGGACCGACCGAGGAGATCTCCCCGACGGCGCAGGTGACCCAGGCGCAGTGCCTGCCGCAGCCGCAGGTGGTCATGGGGCAGACGCTCGCGCCGGCGTCGATCGCGGTGACCGGCGTCTCGTCGGCCTCCGTGACGGTCACCGGCCCGACCGGCACGGTCGAGGACCTGGACGACCTGGTGCCCGGCAGCTACACGATCACGGTGACGCCGGCGGAGGGGCAGGTCTTCGGATCGCTGGGTGACGGCTGGATCGTCGAGGACGGCGTCGCCGGCCTCGAGGTCGAGATCGTCGAGGTCGCCGACTGCTGGGAGCACGTCGTCGTGACGCCTCCGGCCCCGGAGTACGTCGACCAGTGCGGTACGGAGTCCGACGACGTCCTGCTGCCCGAGGACTCCCTCGAGGGGTCGTGGAAGCTCGGCTCGAAGGTCGACATGGGCGACGGCACGACCCGCTGGCGCGTCGTCTTCACGCCGGCCGAGGGATACGTCCTGGCCGACGAGGGAACGTGGGACAAGGTCGTCGACGGCAAGGCCGTGTGGCTGTTCTTCACCGACAACCGTGACTGCGTCACGGCCGAGCCGCCCGCCGTCCAGCTCGTCTGCGGCATCGGCGCCGAGCAGGCCGTGACGTTCCCCGAGATCGACGGGGTCACCTACTCCATGTGGCAGGCCCCGTCCGGCCTGTACACGATCAAGGCCGAGGTCGACCCGTCGACCCACGTCCTGCTCAACGGATCGGCGCAGAACCCGCACGTCAAGTGGTTCAAGCTGGACCTGGGTGCCGCCGAGGAGGAGTGCCCGCCGGAGCCGAAGGAGATTACGCCGCCGGCACCGACGCCCGCCGACCAGTGCGGGACCGAGGTGAACCTCACGGTGGACCTCCCCGAGTCCGACAAGGTGACCTTCACGACCGAGAGCACCGAGACCGGTGTCGTCGTGACCGCGACGCCGAACCCGGGCTACGTCTTCGCCGAGCCCGAGGGGCAGAGCGCCGAGGAGTGGAGCTGGACGTTCACCGACTCGCTCGAGGCATGCGCGGAGCCGACGCTGGCCGGGTCCCTCGCTGCGGGTGAGTGCGTCGCGGACGCCCCGTGGATCAACTACGACGTCCGGCTCACGGACCCGGACGGCCAGAGCGCGGCCACGAGTGCATTCCTCGTCCTGAGCGACGGCACGCACGAGGAGACGCTGCCGCTGGGCGAGCTCGACGCCGACGGCATGCTGTCGGGCCGCACCCTGTGGCCCGGTGCCTCGGTCGCCGACGACGGTGTGACGCCCACCGGATGGCCGGGCTGGGCCCAGCGCGCCGACGGCACCTGGGTGGAGACCGACGGCAACTACGCCTGGACCCGCGGTGACATCACGGCGACCCTCGTGGTCAACCCGGAGATGGCCGTCGACCTGGCCTACCCGCCGGCCACGCCGAACTGCGCGGCCGAGCCGCCGCAGACGGACCCGACGCCGGCGCCCTCCGAGCCGGTCGACGCGAGCCACGAGCCGACACCGGACGCAGAGATCGCCTCTGACGGCGACCCGCTCCCGCAGACCGGTTCGGACATCGCACTGGTCGCGATCGGCGCCCTGGTGCTGATCGCTACCGGTGGCGCGTTCCTCTGGCTGCGCCGGCGCGCCTGAMVAAVAIFLLGAVVALPQAVATNDGVCTTGEGWVKYEYEGGAFVQETGDEELLVEVTETKDGDEPMAVSVTAPDGYLVSEVCVKAGTDKVSEQLSPAVPTVTIDAPEKAAISHFAVKLVVDTWDWNWEYPAPTCEGTLTVTYPDDIPEGQANDVNVKVKNLDTDEVVTINIHNDEGTWTGEQVFDPTSEPEWPGWESWAIVWTQVAGTNYHWKGHVEVGCDEPVEPSFEAEATPAVCVDGETEGGSFTYTVTVGSEHGTRNFQVKDLGDGTGGTAETYYRADGTIGAPGEIVTFATIEAGATATLSLDDLPPGDYRVVSDGSRKVKKQYKWDFTIEAPEDCGPTEEISPTAQVTQAQCLPQPQVVMGQTLAPASIAVTGVSSASVTVTGPTGTVEDLDDLVPGSYTITVTPAEGQVFGSLGDGWIVEDGVAGLEVEIVEVADCWEHVVVTPPAPEYVDQCGTESDDVLLPEDSLEGSWKLGSKVDMGDGTTRWRVVFTPAEGYVLADEGTWDKVVDGKAVWLFFTDNRDCVTAEPPAVQLVCGIGAEQAVTFPEIDGVTYSMWQAPSGLYTIKAEVDPSTHVLLNGSAQNPHVKWFKLDLGAAEEECPPEPKEITPPAPTPADQCGTEVNLTVDLPESDKVTFTTESTETGVVVTATPNPGYVFAEPEGQSAEEWSWTFTDSLEACAEPTLAGSLAAGECVADAPWINYDVRLTDPDGQSAATSAFLVLSDGTHEETLPLGELDADGMLSGRTLWPGASVADDGVTPTGWPGWAQRADGTWVETDGNYAWTRGDITATLVVNPEMAVDLAYPPATPNCAAEPPQTDPTPAPSEPVDASHEPTPDAEIASDGDPLPQTGSDIALVAIGALVLIATGGAFLWLRRRANANANANANA
AK018_045082178Beta-galactosidaseATGACCAGCACGGACCCCCCGCCGCGTCAGCCGAAACGGGTCGGGCACGAGGACCCGCCCTCGGATCGTTCCATTTTTGAATCGATTTATGGCACACTGGTCAGCATGCAACGACGCGTGACTCCTCCCCCCTTCGACCCCGCCGCCGTCCGCCCGTGGAACGCGCGGGTCGACGGCCTGGGCTACGGCGGGGACTACAACCCGGAGCAGTGGCCCGACGACGTCCGGCAGGACGACCTGCGCCTGATGCGCGAGGCCGGGGTCAACATCCTCAGCGTCGCGATCTTCTCCTGGGCCACGATCGAGCCGCGCGAGGGCGAGCTGGACTGGACCTGGCTCGACGAGACCATGGACCGCCTGCACGCGAACGGTGTCCAGGTGGCGCTGGCGACCGCCACGGCCTCGCCGCCGCCGTGGCTCACCCGCAAGCACCCGGAGATCCTGCCGCGCCGCGCCGACGGGACCGTGCTGCACCAGGGCGCCCGTCAGGCCTACGCCGTCACGCACCCGCTGCACCGCGAGTACGCCCTGCGCATGGCGACCCGCATGGCCGAACGGTACGGCGAGCACCCGGCGCTGGCGCTGTGGCACGTCGACAACGAGATCGGGTGCCACGTGCCGCGCGACTACTCGGACAGCGCGGCGGCGGCGTTCCGCGTCTGGCTCGCCGAGCGCTACGGGACCGTCGACGCCCTCAACGAGGCCTGGGGCACGGCCTTCTGGTCGCAGCGCTACGCGACCTTCGAGGACGTCCTGCCCCCGCTGGTGGCCCCGATGTCCAGCAACCCCACCCAGCAGCTCGACTTCGACCGGTTCAGCTCCGACGCGCTGCTGGGCTACTACCGGGACCTGCGCGACACGCTGCGCGAGATCACCCCGCACGTGCCCACGACGACGAACCTCATGACGACGTCCACCACCAAGGGCATGGACTACTACTCGTGGGCCGACGACCTCGACGTCGTGGCGAACGACCACTACACGATCGCCGCCGACCGCGACCGGCACGTCGAGCTGGCCCTGTCGGCAGACCTGGCCCGGGGCGTGGCCGGCGGCGACCCGTGGATCCTCATGGAGCACTCGACGTCGGCGGTCAACTGGCAGCACCGCAACCGCAGCAAGCTCCCCGGCGAGATGCTGCGCAACTCGTTGCAGCACGTCGCCCGCGGCGCCGACTCCGTGATGTTCTTCCAGTGGCGCGCCTCTCGGGCCGGGGCCGAGAAGTTCCACTCGGCGATGGTCCCGCACGCGGGCGAGGACACCGACGTCTGGCGCAACACGGTCGAGCTCGGCCAGGTGCTGCGCCGGCTCGGCGAGGTCCGTGGCTCCCGCGTGCGCTCCCGCGCCGCGATCGTCGTCGACTACCCCGCCTGGTGGGCGGCCGAGCTCGACTCCCACCCGACGCAGGACCTCGACTACATGGCCGAGGTGCGGTCCTGGTACGCCGCGCTCTGGCAGCACGGCGTCACGGTCGACCTGGTGAGCCCCCGCAGCGACCTCGACGGCTACGAGCTGGTCGTCGTCCCGACGCTCTACCTGGTCGACGACGCCGGGTCCGACGCCCTCGCCGCGGCCGCCGAGCAGGGCGCCACCGTGGTCGTCACGTTCTTCTCCGGCATCGTCGACCCGCACGACCAGGTGCGGCTCGGCGGCTACCCCGGGGCGTTCCGCGACCTGCTCGGCGTCCGCACCGAGGAGTTCTACCCCCTCCAGGTCGACGAGCGCCTCCAGGTCTCCGGCAAGGCCGTCGACGGCGAGGCCCGCGCCGACCTGTGGAGCGAGAAGACCCACCTCGTCCCGGGTACGGAGGCGGTCGCCACGTACGACGACGGAGCACTGGCCGGACGGCCCGCGGTCACCCGTCGAGCCGTGGGGACCGGCACCGCCTGGTACGTCGGGACCCGCCTGGACGAGGCCGGGACCGTGGCCCTGGCCGGCCGGCTCGCCGAGGAGGCCGGGGTGCTGCCCGACGTCGCGGCCCCCGCCGGCGTCGAGGTCGTCCACCGGCACGCCGACGACGGGCGGACCTCCTGGCTCTTCGCGATCAACCACGGCGACGACGAGGCCGTGCTCGACGGCGTCTCGGGTGCGGAGCTGCTGAGCGGGACGACGGTGGACGGTGCGCTGACCGTGCCGGGCGGCGCGGTGCGGGTGGTCCGGCAGACGTCCGGCGCCTGAMTSTDPPPRQPKRVGHEDPPSDRSIFESIYGTLVSMQRRVTPPPFDPAAVRPWNARVDGLGYGGDYNPEQWPDDVRQDDLRLMREAGVNILSVAIFSWATIEPREGELDWTWLDETMDRLHANGVQVALATATASPPPWLTRKHPEILPRRADGTVLHQGARQAYAVTHPLHREYALRMATRMAERYGEHPALALWHVDNEIGCHVPRDYSDSAAAAFRVWLAERYGTVDALNEAWGTAFWSQRYATFEDVLPPLVAPMSSNPTQQLDFDRFSSDALLGYYRDLRDTLREITPHVPTTTNLMTTSTTKGMDYYSWADDLDVVANDHYTIAADRDRHVELALSADLARGVAGGDPWILMEHSTSAVNWQHRNRSKLPGEMLRNSLQHVARGADSVMFFQWRASRAGAEKFHSAMVPHAGEDTDVWRNTVELGQVLRRLGEVRGSRVRSRAAIVVDYPAWWAAELDSHPTQDLDYMAEVRSWYAALWQHGVTVDLVSPRSDLDGYELVVVPTLYLVDDAGSDALAAAAEQGATVVVTFFSGIVDPHDQVRLGGYPGAFRDLLGVRTEEFYPLQVDERLQVSGKAVDGEARADLWSEKTHLVPGTEAVATYDDGALAGRPAVTRRAVGTGTAWYVGTRLDEAGTVALAGRLAEEAGVLPDVAAPAGVEVVHRHADDGRTSWLFAINHGDDEAVLDGVSGAELLSGTTVDGALTVPGGAVRVVRQTSGAPGPT0017815_563DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_04509741hypothetical proteinGTGACGGCTCCGCTCTTCCCGGGCGGGGTCGCCGTCAGCCACCTGCAGGTCTACGACTGGCCCGCCGACGACGCTCCGCAGGGCAGCGGCTCGCCGCACCTGCACACCACCTCCACCGAGGCCTACGTGACGCTGGGCGGCCGCGGCCGGGTCGAGACGCTCGGCCCCGAGGGGTACGCGGTCCACGACCTGGCTCCGGGCCGGATCGTCTGGTTCGGCCCCGGGGTGATCCACCGGGCGGTGAACCTCGGCGGGCTGGAGGTGCTGGTCGTCATGTCCAACGCCGGCCTGCCGGAGGCCGGGGACGCCGTCATCACCTTCCCGGCCGACGTCGTCGCCGACCCGGAGCGGTACGCCGCGGCGGCCGCCCTGCCGCGGGTGGACGACGGCGCCACGGACGAGCAGGTCGCCGCGGCGGCCCGCGCGCGCCGGGACCTGGCGCTCGAGGGCTACGCCGCGCTGCGCGCCGACGTCGAGCGGGACGGACCGTCGGCCCTGGAACCGCTGCACGCGGCGGCCGCGGACCTCGTCGCGCCCCGGACGAGCCGGTGGCGCGAGATCTGGGAGTCGTCGGTCGGGCGGGCCGCCGGGCAGACGGACTCCGCCCTCGAGGCGCTGGCCACGGCGTCGGCGGCCACGCTCGCCGACGGTCGGGTCACGGCGCGCGACGCCCGGCCGGGGCCGCGCCGCTACGGCATGTGCGGGCGTCTGCAGACCTGGCCGCTCACCCCGTCGGACTGAMTAPLFPGGVAVSHLQVYDWPADDAPQGSGSPHLHTTSTEAYVTLGGRGRVETLGPEGYAVHDLAPGRIVWFGPGVIHRAVNLGGLEVLVVMSNAGLPEAGDAVITFPADVVADPERYAAAAALPRVDDGATDEQVAAAARARRDLALEGYAALRADVERDGPSALEPLHAAAADLVAPRTSRWREIWESSVGRAAGQTDSALEALATASAATLADGRVTARDARPGPRRYGMCGRLQTWPLTPSDNANANANANA
AK018_045101008hypothetical proteinATGGCAGTCACGCTGAACTCCGACGGCGGCGCGATGACCGGCTCGCGCGACGGCGTCGACCTGTTCACCTACGTCTACCGTCCGCACGACGTCCCCTACGAGAGCCCCCGGCCCTACCTGCACCCGCTGCGCACCCGCGGTGGCGACGTCGTGTCCGCCTACCGCCCGTGGGACCACGTCTGGCACAAGGGCATCGCCTGGTCGTTGCCGCACGTGGGGCCCTGGAACTTCTGGGGCGGGCCGAACTACGTCCGCGAGCAGGGCACCTACGTCGACCTCGACAACGACGGCTCGATGGAGCACCAGCAGTTCACCGCCCTGGGGCCGTGCGGCTTCACCGAGGAGCTCTCCTGGCGCACGCCCCCGGCCGCGGACGGGACGCCCGGCGAGGTCGTCGTGCGCGAGGAGCGCACGGTGCAGGTCGTGGTGCCCGACGACGCACCGGACGCCTGGGTGCTGACCTTCCGGTCGGTCATGACGAACGTCTCCGCCGGACCGCTCGACATCGGCAGCCCCACCACGAACGGTCGCGAGAACGCCGGCTACGGCGGCCTGTTCTGGCGCGGGCCGCGCTCCTTCACCGAGGGGCAGGTCCTGGTGCCCACCGACGACGGCGGAGCGGCCGCGGCCGACGCCGAGGACGTCCGCGGGTTGCGGGCCGAGTGGCTGGGCTTCGTGGGCCGGCACGACGGCGAGGCGCCGAGCGCCGCGGGCGGCTCGCGGTCGTCCACGGTGGTCATGGTCGACCCCGGCTCGAACCCGGGCGGCACACCGCAGTGGTTCGTGCGTTCGGTGCCCTTCGCGTGCGTGTGCCCGGCACCGTTCTTCAGCCAGGAGGTGCCGTTCGCCGCGGGGCAGACCCTCACCTTCGACTACGCCGTGGTCGTCGCCGACGGCGCGGCGGACGGCCCGCGGGGTTCCGCGCTGGCTGCGCTCGGCCGGCACGTGCTGGCCGGCGAGGGCGCGGGGCTCGAGACCGGTCACGTGACGCCGGCGGGAGCCCGGTGAMAVTLNSDGGAMTGSRDGVDLFTYVYRPHDVPYESPRPYLHPLRTRGGDVVSAYRPWDHVWHKGIAWSLPHVGPWNFWGGPNYVREQGTYVDLDNDGSMEHQQFTALGPCGFTEELSWRTPPAADGTPGEVVVREERTVQVVVPDDAPDAWVLTFRSVMTNVSAGPLDIGSPTTNGRENAGYGGLFWRGPRSFTEGQVLVPTDDGGAAAADAEDVRGLRAEWLGFVGRHDGEAPSAAGGSRSSTVVMVDPGSNPGGTPQWFVRSVPFACVCPAPFFSQEVPFAAGQTLTFDYAVVVADGAADGPRGSALAALGRHVLAGEGAGLETGHVTPAGARNANANANANA
AK018_045111143iolG_9Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGAAGGTCGCCATCCTGGGCACCGGCGCGATCGCCCACGCCCACGCCGAGGCCGTGAACGCCCTGGCCCAGCACACCGGCCTCGAGGCCGTCGAGCTCGCCGCCGCCGTCGACATCGACGCCGTGCGCGCCGAGGAGTTCGCCACGAAGCACGGGATCCCCCGGCACGGCACGGACCTCGACGTCCTCCTCGCCGCGGGTGACGTCGACGTGCTGCACGTCTGCACCCCGCCGTCGCTGCACCTCGAGCAGGCCCGCGCCGCGCTGGCCGCCGGCGCGCACGTCGTCGTGGAGAAGCCGGCCGTGCTCTCGCTCGGAGAGATCGACGCCCTGGCCGCGGCCGAGGAGCAGGCCGACGGCGCCACCGTGACCCAGATCGTCCAGCACCGGTTCGGCCCCGGCGCCGTGCGGCTGCGCCGTCTGCTCGCCGAGGGCACGCTCGGCCGGGCGCTGGTGGCGCAGTGCGACACGCTGTGGTTCCGTCCGCCCGAGTACTTCGACGTGCCCTGGCGCGGCCGCTTCGACACCGAGGGCGGCGGCCCCACGATGGGTCACGGCATCCACCAGTTCGACGTCCTGCTGTCCGTGCTGGGGGAATGGAGCGAGGTCCGCGCGATGGCCGGCCGGCTGGCCCGCCACGTCGACACCGAGGACGTCTCCATGGCGATGGTCCGCTTCGCCGACGGCGCCATGGCGAGCATCACCAACTCTCTGCTCTCCCCGCGCCAGACCTCGCAGCTGCGCTTCGACACCGAGGCCGCCACGATCGAGCTCAGCCACCTGTACGGGTACGACGACAGCCACTGGACGGTCACCCCCGCCCCGGGTCGCGAGGACGTCGCCACGCGCTGGGCCGACGACGTCGCGGCGTCGGCCGACGGGGCGATCGACGAGGGCCGCTCCGGCCACCTCGGCCAGCTCGTGCCCACGTACCGCGCGCTCGTGGCGGACGAGGCCCCGCCCGTGGGCGTCGCGGACGTGCGCGGCACGCTCGAGCTCGCCGCCGCGATCTACAAGTCGGCCTTCACCGGTGCCCCCGTCGTCCGCGGCGAGGTCTCCCCCGGGGACCCGTTCTACGAGACCATGGCAGGGACCGGGGCCCCGTGGCCCCCGCTGAAGGACACCACCGAGGAGACCTCCTGAMKVAILGTGAIAHAHAEAVNALAQHTGLEAVELAAAVDIDAVRAEEFATKHGIPRHGTDLDVLLAAGDVDVLHVCTPPSLHLEQARAALAAGAHVVVEKPAVLSLGEIDALAAAEEQADGATVTQIVQHRFGPGAVRLRRLLAEGTLGRALVAQCDTLWFRPPEYFDVPWRGRFDTEGGGPTMGHGIHQFDVLLSVLGEWSEVRAMAGRLARHVDTEDVSMAMVRFADGAMASITNSLLSPRQTSQLRFDTEAATIELSHLYGYDDSHWTVTPAPGREDVATRWADDVAASADGAIDEGRSGHLGQLVPTYRALVADEAPPVGVADVRGTLELAAAIYKSAFTGAPVVRGEVSPGDPFYETMAGTGAPWPPLKDTTEETSNANANANANA
AK018_04512645hypothetical proteinATGGCACGCCGTCCTGACGCTCGGGCCTCCCGGTCTTCCGGCCGCGGGGGCCCGAGCGCCTTCTACCGCAGCATCCAGCTCTTCGGCGAGGTGGCCCTCGTGGGCGTCCTCGTCGCGGTCGGCAGCCTCCTGCTCGTCACGCTGGTGCCCTCGCTCGCCGCCGGCGTCGCCTACCTGCGCCGGGACGTGGTGGGTGCCGACACCCGGCTCGCGCGCTACTGGCGCGAGTGGGCCGCCGCCACGCGCGCGCTGTGGCCCCTCGGCCTGGCGGTCGGGGCCCTCGCGGTCCTCCTGGTCGGCGACTGGCAGCTCGCGACGTCGGGCCTGCTGCCCGGCGGGGAGATCGTCGCGCTCGTGGTGGCGCTCTTCGCGGCGGGTGCGATCGTCGTCGTCCTGCGCGCCGTGGGCGCCTGGTCCGACGACGAGGGCGAGCCCGACCCGGCGGCGACCACGCGCCGGGCCCTGTCGGTCGGCAGCGACCGCGCCGTCGAGGACCTGTCCGGCTCGGCGCTGCTGCTGGGAGCGGTCGTCATGGCCGCCGTCCTGGTCTGGATGCTGCTGCCGCTGGTGCTCGTCGTCGGCGGTCTGCTGGTGCTGGCGGTCGTCGGGGTCGAGAGGCGCCGCCGCATGCCGTCCGTCCGCTGAMARRPDARASRSSGRGGPSAFYRSIQLFGEVALVGVLVAVGSLLLVTLVPSLAAGVAYLRRDVVGADTRLARYWREWAAATRALWPLGLAVGALAVLLVGDWQLATSGLLPGGEIVALVVALFAAGAIVVVLRAVGAWSDDEGEPDPAATTRRALSVGSDRAVEDLSGSALLLGAVVMAAVLVWMLLPLVLVVGGLLVLAVVGVERRRRMPSVRNANANANANA
AK018_04513918ngcG_6COG0395Diacetylchitobiose uptake system permease protein NgcGATGACGACTCTCACCGAAACCCCTGCCCCGCAGACCCCTCCGGTCGACCACGAGGCGCTGGCCCGCCGGGCCGCGGCCCGCAACAAGCGTCGCGTCAGGTCGGTGATCTTCCACCTCGTCGCGGTCGGGGCCACGATCGTGGTGCTGTACCCGGCGGCGTGGATGGTCTTCGCCTCGATGAAGCCGAACTCGGACATCATCGGCAACACCCAGCTGCTGCCGGACGTGTGGACGATGGAGCACTACACCACCGCCCTGGCGGGCATCGGTGGCGTGTCGTTCTGGACGTTCTTCAACAACTCGCTGCTGCTGGCGGTGCTGTCCGTCGTCGGTACGGTGCTGTCCTCGACGATCGCGGCCTACGCGTTCGCCCGGATCAGCTTCCCCGGACGCGGGCCGATGTTCGCGGTCATGATCGGCACGCTGCTGCTGCCGTTCCACGTCACGATCATCCCGCAGTACATCCTGTTCAACAATCTGGGTCTGGTGAACACCTACCTGCCCCTGCTGCTGCCGAAGTTCCTGGCGGCCGAGGCGTTCTTCGTGTTCCTCATGATCCAGTTCATCCGCGGCATCCCGCGGTCGCTGGACGAGGCCGCACGCATCGACGGTTGCGGTCACGGGCGCATCTTCTTCCGCATCATCCTGCCGCTGATGCGCCCGGCGATCGTGACCAGCTCGATCTTCACCTTCATCTGGTCCTGGAACGACTTCCTCGGGCCGCTGCTGTACCTGAAGGACCCGAGCCTGTACACGATGCCGATCGCGCTGCGCCAGTACGTCGACCAGACGACCGTCTCGGACTACGGTGCACAGATGGCCATGGCCGTCCTCGCACTACTGCCGGTGATGATCTTCTTCGTCGTCTTCCAGCGCTTCCTCATCAACGGCGTCGCCACGCAGGGCATCAAGGGCTGAMTTLTETPAPQTPPVDHEALARRAAARNKRRVRSVIFHLVAVGATIVVLYPAAWMVFASMKPNSDIIGNTQLLPDVWTMEHYTTALAGIGGVSFWTFFNNSLLLAVLSVVGTVLSSTIAAYAFARISFPGRGPMFAVMIGTLLLPFHVTIIPQYILFNNLGLVNTYLPLLLPKFLAAEAFFVFLMIQFIRGIPRSLDEAARIDGCGHGRIFFRIILPLMRPAIVTSSIFTFIWSWNDFLGPLLYLKDPSLYTMPIALRQYVDQTTVSDYGAQMAMAVLALLPVMIFFVVFQRFLINGVATQGIKGPGPT0016540_686DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_045141005lacF_8Lactose transport system permease protein LacFATGGCTTCAATCGATCCTGGCGCACCCGTCGCCGCACCGGGTCAGCCGGTACCCGCGCAGCACCTGCAGCGGACCGACGCCGAGACCCCGCTGCCCGGCCCGCGGTCGGGCAAGCGCAAGTACAAGCCGGAAGACATCCGGTCCGGCTACCTCTTCCTGTCTCCGTGGATCATCGGATTCCTCGGTCTGACGGCCTTTCCGATGCTCGCCTCGTTGTACCTGGCGTTCACGGACTACGACCTCTTCACGGCGCCCGAGTGGGTCGGTTTCGAGAACTTCGTCGACCTGTTCAACGACCCGCGGTTCATCCAGTCCGCGCAGGTGACGGCCGGGTACGTGCTGCTGGGCACGCCGATCAAGCTCGCCGCGGCGCTGGCGGTGGCGATGCTGCTGAACATGAAGCATCGCGGCCAGGGTGCCTACCGGTCGATCTTCTACGCGCCGTCGCTGATCGGCGCCTCGGTGTCCATCGCCATCGTGTGGAAGGTGATGTTCATCGACGACGGGATCGTCGACCGTATCCAGCAGGCGGTCGGTATCGACATCGGCGGCTGGGTGGGTAACCCCGCGTTCTCGCTGCCGATGCTGATCCTGCTGGGGGTGTGGGGCTTCGGTGCCCCGATGGTCATCTTCCTGGCGGGTCTGAAGCAGATTCCCACCGAGCTGTACGAGGCGGCCGAGTGCGACGGCGCCGGCCCGATCCGCAAGTTCCGCAACATCACGCTGCCGATGCTGAGCCCGGTGCTGTTCTTCAACCTGCTGCTCGAGACCATCGCCGCGTTCCAGGTCTTCAGCTCGGCCTACATCATCTCCGGCGGGACCGGTGGGCCGGCGGGCTCGACCATGTTCTACACGCTGTACCTGTACCTGCGCGGGTTCCAGGACTTCCAGATGGGCTACGCCTCGGCGATGGCCTGGATCCTGGTCTCGGTGATCGCGGTCATCACCGTGATCCTGTTCCGCTCGTCCAAGGGTTGGGTCCACTACACGGGAGACGAACGATGAMASIDPGAPVAAPGQPVPAQHLQRTDAETPLPGPRSGKRKYKPEDIRSGYLFLSPWIIGFLGLTAFPMLASLYLAFTDYDLFTAPEWVGFENFVDLFNDPRFIQSAQVTAGYVLLGTPIKLAAALAVAMLLNMKHRGQGAYRSIFYAPSLIGASVSIAIVWKVMFIDDGIVDRIQQAVGIDIGGWVGNPAFSLPMLILLGVWGFGAPMVIFLAGLKQIPTELYEAAECDGAGPIRKFRNITLPMLSPVLFFNLLLETIAAFQVFSSAYIISGGTGGPAGSTMFYTLYLYLRGFQDFQMGYASAMAWILVSVIAVITVILFRSSKGWVHYTGDERPGPT0016535_2340DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_045151314yesO_4COG1653Putative ABC transporter substrate-binding protein YesOATGAGGATCACGCGCAAGGCCGCCGGTGCGGCCGCCGCGACCGCTGCGGTCACTCTCGTCCTGACCGCGTGCAGCGGTGGCGACACCGAGTCCGGTGACGGTGGTGGCGACGCCGAGGGCGGCGACGTCACGCTGACCGTCGCCTGGTGGGGCAACGACGACCGTGCCGCGCGGTACGAGGAGTCGATCGACCTCTTCGAGGAGGCGAACCCCAACATCACCGTCCAGACCCAGTTCCAGGACTGGGAGAACTACTGGACCGCCCGCAACACGGAGGCCGCCGGTCAGTCGCTGCCCGACGTGTTCCAGATGGACCTGTCCTACCTGCGCCAGTACGGCGGCACCGGTCAGCTCGCCGACCTGTCCGAGTACGTCGGCAGCGAGATCGACACCTCCGGTTTCGAGGACGCGCTGCTGTCCTCCGGCACCATCGAGGGCGCCCAGTACGGCATCCCGACCTCGCAGAACACCCTCGCGCTGTTCTACAACCAGGACGTGCTCGACACGATCGGCGTCGACCCGCTCGAGCCGGGCTACACCTGGGACGACTTCAACGCCTTCATCGCCGAGGCCTCCGAGGCCGGCGCGGGCGAGGACCCGGCCATCTACGGCTCCGGTGACTACACCGGGACCTTCTGGTTCTTCCTGCAGTGGTTCCTGCAGCAGGGCGAGCAGCCGTTCACCGAGGACGGGCAGCTCAACTTCGACGAGGCCGCCGTCACCGAGTTCCTCAACCTCGCCTCCGAGCTGCGCGAGGCCGGTCAGCTCTTCCCGACCGAGCGCGCCGTGCAGCTCGCCCCGCTGGGCGGGTTCACCTCGAACGAGGCCGCTGCCGAGGCCAGCTGGGACAACTTCCTGGCCGGCTACATCTCCGACGCGGGCACCGAGAACATCCACATGCTGCCGATGCCGGCGGGTGACAACGGGCCGCAGCAGTTCTGGAAGCCCTCGATGCTGCTGTCCTCGGGCGCCAACTCCGAGCACCCGGCCGAGGCCGCCGAGCTCATCAGCTTCCTGGTCAACGACCCGGAGGTCGGCGAGATCTTCGGCACCTCGAAGGGCGTGCCGGCCGTGGCCGCCCAGCGTGACGCCATGAACGTCGAGGAGGGCTCGGTCGACGCCACCGTCCTCGAGTACGAGGAGATGGTGGCTCCCGACGTCACCGAGTCGGCCCCGCTGCCGGTCGAGGGCTTCGGCTCCATCGAGGCCGAGTGGATGCGCCTGGCCGAGGAGCTCGGCTACGGCAACATCACGGTCGACGAGTTCGTCGAGCAGTGGTTCGCCTTCGCCAACGACACCGTCGGCCAGTCCTGAMRITRKAAGAAAATAAVTLVLTACSGGDTESGDGGGDAEGGDVTLTVAWWGNDDRAARYEESIDLFEEANPNITVQTQFQDWENYWTARNTEAAGQSLPDVFQMDLSYLRQYGGTGQLADLSEYVGSEIDTSGFEDALLSSGTIEGAQYGIPTSQNTLALFYNQDVLDTIGVDPLEPGYTWDDFNAFIAEASEAGAGEDPAIYGSGDYTGTFWFFLQWFLQQGEQPFTEDGQLNFDEAAVTEFLNLASELREAGQLFPTERAVQLAPLGGFTSNEAAAEASWDNFLAGYISDAGTENIHMLPMPAGDNGPQQFWKPSMLLSSGANSEHPAEAAELISFLVNDPEVGEIFGTSKGVPAVAAQRDAMNVEEGSVDATVLEYEEMVAPDVTESAPLPVEGFGSIEAEWMRLAEELGYGNITVDEFVEQWFAFANDTVGQSPGPT0016545_4676DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_045161530por_2COG0246Polyol:NADP oxidoreductaseGTGACCGACCGACTGCACCGTGACCACCTGCCCGCCGGGACCCAGCCGCCGGTGACGCCCGAGACCGTCGGCATCGTGCACCTCGGCATCGGAGCATTCCACCGCGCGCACCAGGCGGTCTGCACCGAGCAGGCCGCGCGCGCCACGGGGGACCGGCGCTGGGGGATCCTCGGCGTCACGCAGCGGTCGGCCCGGGTGCGCGACCAGCTGCGGCCCCAGGGCGGGGTCTACGCCGTCCTGACCGCCGGGGCGCACGAGAGCTCGATCGACCTGGTGGGCTCGGTGCTCGACGTCGCCTGGCCGGCCGAGGAGACCGGGCGGGTGCTGTCGACGATCGCCGCGCCCACCACCCACCTGGTCACGCTGACGGTCACCGAGAAGGGGTACTGCCGCGACGACGCGGGTGCACTCGACCGGTCGCCGGTGGACGGCGACCTGGCGGCGCTCGCCGCCGAGACCACTGCCGGGGCCGACGACGGGACCGCGGCCGCCGACGTCGTCCCGGGTGCGAGCGCGATCGGGCTGCTCGTGCGCGGGCTGGCGGCACGGCAGCGGGCCGCCGCAGCCGCAGGGGAGCGGCGCCCGCTGACCGTGCTCACCTGCGACAACATGGTGGACAACGGTCGGGTGCTGGCCCGGCTCGTCGGCGAGGCCGTCGACGCCGCGCTGCCCGGCGCCGAGGGCGACGACCTGCGGGCCTGGCTCGCGAGCGACGTGACCTTCCCCTGCTCGATGGTCGACCGGATCGTGCCGGCCACGACGCCGGCGCAGCGGGACGCGGTCGAGGCCGAGCTGGGGGTGCGCGACGAAGGCCTCGTCGTGGGGGAGCCGTTCTCCCAGTGGGTGATCGAGGACCGGTTCGCCGGACCGCGCCCGGCCTGGGAGGAGGCCGGGGCCACGCTGACCGACGACGTCTCCGTCTGGGAGCGTGCCAAGCTGCGGCTGCTCAACGGCACCCACTCGTTGCTCGCCTACGCGGGCCGTCTCGCCGGGCACACGACGATGGCCGAGGCGGTGCAGGACCCGGTCGTCGCGGCCCGGGCGCGCCAGCTGCTGTTCGACGACGCCCTGCCGACGCTCACCCCGCCGGCCGGTGCGGACCTGTCCGCCTACGGGGAATCGCTGCTCGAGCGGTTCGCGAACCCGGCGACCGGGCACACGACGCGGCAGGTGTCGATGGACGGCACCCAGAAGATCCCCTATCGGTGGGGCGACACGATCGCGGCACGGCTGGCCGTCGGCCAGGTCCCGCACGGCGCCGCCTACGCGCTGGCCTGCTGGGCGGAGGTCGTCCGGCGCGAGGCCGTCGAGGGCCGGGCGGTGGACGACCCCCGCGGCGAGGAGCTGCAGCGCCTGGTCGCCGCCGTGGGCGACGGGTCGGCGGCGCAGGCCGACCCCGTCGAGGTGGCGCGCGCCCTGACGGCGCTGCCCGGGCTGCTCCCCGGCGACGCCGCGCAGGACCCGCGGCTGCTCGACGCCGTGGCCGCCGAGGTCGAGACGCTCGCGGAGCAGGCGGCCACGCTGCGGTGAMTDRLHRDHLPAGTQPPVTPETVGIVHLGIGAFHRAHQAVCTEQAARATGDRRWGILGVTQRSARVRDQLRPQGGVYAVLTAGAHESSIDLVGSVLDVAWPAEETGRVLSTIAAPTTHLVTLTVTEKGYCRDDAGALDRSPVDGDLAALAAETTAGADDGTAAADVVPGASAIGLLVRGLAARQRAAAAAGERRPLTVLTCDNMVDNGRVLARLVGEAVDAALPGAEGDDLRAWLASDVTFPCSMVDRIVPATTPAQRDAVEAELGVRDEGLVVGEPFSQWVIEDRFAGPRPAWEEAGATLTDDVSVWERAKLRLLNGTHSLLAYAGRLAGHTTMAEAVQDPVVAARARQLLFDDALPTLTPPAGADLSAYGESLLERFANPATGHTTRQVSMDGTQKIPYRWGDTIAARLAVGQVPHGAAYALACWAEVVRREAVEGRAVDDPRGEELQRLVAAVGDGSAAQADPVEVARALTALPGLLPGDAAQDPRLLDAVAAEVETLAEQAATLRPGPT0018275_276DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018275-uxuB-K00040NANA
AK018_045171002degA_13COG1609HTH-type transcriptional regulator DegAATGGTCACGGTGCACGACGTCGCCCGGGCGGCCGGCGTGTCCATCTCCACGGTCTCGCGGGCGCTCGCCTCGCCGCAGAAGGTCGCCGCCCCCACGCGTGAACGCGTCGAGGTCGCGGCCCGCGAGCTCGGGTACCGCCCGAACCGAGCCGCCTCCTTCCTCCGCGCCGGCCGGACCGGAGCCCTCGGGCTCGTCGTCCCGGACCTGTCCAACCCCTACTTCGCGGCGGTCGCCAAGGGTGCCCAGGCGCGTGCCCGGGACCACGGCGCCGGGCTCTTCGTCGTCGACACCGAGGAGAACCCCGACCTCGAGACCGAGGTGCTGGCCTCCCTGGCCCCGCAGACCGACGGTGTCGTGCTCTGCTCGCCCCGCGCCGTCGAGGCCGCGCTCGCCGCGCTCGAGGGGCGACGGGTCGTGCTCGTCAACCAGGCTGCCGAGGGCGTGCCCGCTGTCGCGGCGGACCACGCCGCCGGGATGCGCCGCGCGCTCGAGCATCTGCGTGCGCTCGGCCACCGCCGTGTCGCGTACGTCGGCGGACCGGCCGGCTCCTGGAGCGACCGGCGCCGTCGTGCCGGCCTGACCGCGGCGGCCGAGCGGTACGACGACGTCGAGGTCGTCCCGCTCGGCGCGTTCCGGCCGCAGGTCGAGGGCGGGCAGGCCGCCGCCGACCTCGTCGTGGCCTGCGGCGCCACCGCGGTGCTGACCTTCAACGACCTCGTGGCCGTCGGACTCGTCGACCGGCTGCGGGCCCGCGGGCTGGACGTCCCGCGCGACCTCTCCGTCGTCGGCTCGGACGACTCCTACGTCGCCTCCCTCGTCTCCCCGCCGCTGACCACGCTGCGGGCCGACCTGCGCGCCCTGGGGCGTGCCGCCGTGGACCTGCTCCTGGCCGACGACCGCGGCGCCCCCGCACCGCTCGACGTCGACCTGGTGGTCCGCTCGTCCACCGCACCACCCGCCACCGTCCCGGAGGACTCCCGTGACCGACCGACTGCACCGTGAMVTVHDVARAAGVSISTVSRALASPQKVAAPTRERVEVAARELGYRPNRAASFLRAGRTGALGLVVPDLSNPYFAAVAKGAQARARDHGAGLFVVDTEENPDLETEVLASLAPQTDGVVLCSPRAVEAALAALEGRRVVLVNQAAEGVPAVAADHAAGMRRALEHLRALGHRRVAYVGGPAGSWSDRRRRAGLTAAAERYDDVEVVPLGAFRPQVEGGQAAADLVVACGATAVLTFNDLVAVGLVDRLRARGLDVPRDLSVVGSDDSYVASLVSPPLTTLRADLRALGRAAVDLLLADDRGAPAPLDVDLVVRSSTAPPATVPEDSRDRPTAPPGPT0017992_12649DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_045181419uxaC_2COG1904Uronate isomeraseATGAGTGAGCCCTGGACCCTGCACCCCGACCGGGCCCTGCCCGCGGACCCGACGACGCGGGAGATCGCCCGGGAGATCTACGCCTCGACCCGGTCGCTGCCGATCGTGTCGATGCACGGCCACGTGCCGGTGGAGTGGTTCGCGGACGACACGCCGTTCGGCGACCCCGCCCAGCTGTTCGTGGTCCCCGACCACTACCTGACCCGCATGCTCGTCTCCCAGGGCGAGACCCTGCCCCGCCTCGGCGTGGGCTCCTCGGACACCGAGCCGGTCGAGCAGGACCCGCGCGAGATCTGGCGGCGTTTCTGCGCCGGCTGGACGCACTTCCGCGGCACGCCGACGCGCTACTGGCTCGAGCACGCGTTCGTCGAGATCTTCGGCGTCACGCAGCGCCCGTCGGCCGAGACCGCCGACGCGATCTACGATCAGGTCGCCGCCCGCCTCGAGTCCCCGGAGTTCCGTCCCCGCGCGCTGCTCGACGCCTTCGACATCGAGGTCATCGCGACCACCGACCCGGCCTGGGCCCCGCTGGAGGACCACGCCCGCCTCGCCGAGGACGGCTTCGGCGACCGCGTGCTGCCCACCTTCCGTCCCGACCCGCTGCTGCACGTCGACCGGGAGACCTGGCGCGACGAGATCGACCTGCTCGCCCGGGCCGCCGACGTCGAGGTCGACGGGTACGACGCCTACCTCGAGGCGCTGCGCGTCCAGCGGCGGCGGTTCGTCGAGGCCGGGGCCCGCGCCACCGACCACGGCCACCTGTGGGCCGACACCACCCCGCTGGACGACGCCGAAGCGCGGCGGATCTTCGCCGCCGCACTGGCGGGCGAGGTCACGGCGGACGAGGCCCGGGCGTTCAGCGGGCACATGCTGTTCGAGATGGCCCGCATGTCCTGCGAGGACGGCCTGGTCATGCAGCTCCACCCGGGCGTGCTGCGCAACCACGCCAGCGCGCCGTTCGCGGCGTTCGGACCGGACAAGGGCTACGACATCCCCGCGGTCACCGAGTTCACCCGCTCCCTGCAGCCGCTGCTGGACGCGTTCGGCCACCACCCCGGCTTCCGGTTCATCGTGTTCACCGTCGACGAGGACGTCTACTCCCGCGAGCTGGCCCCGCTGGCCGGGGTGTACCCCGCGATGAAGCTCGGCGCCCCGTGGTGGTTCCTCGACGCCCCCGACGCGATGCGACGGTTCCGCGAGGCCGCGACCGAGACCGCCGGCTTCAGCAACCTCAGCGGTTTCGTCGACGACACCCGGGCGTTCTGCTCCATCCCCGCCCGGCACGACCTGGCCCGCCGCGTCGACGCGGGCTACCTCGCGCGGCTGGTGGCCGAGCACCGGCTGGAGCTGGACGAGGCCGTCGAGGTCGCCGGCGACCTCGCGTACCACGCGGCGATCCGGTCCTACCCGAAGCCCTGAMSEPWTLHPDRALPADPTTREIAREIYASTRSLPIVSMHGHVPVEWFADDTPFGDPAQLFVVPDHYLTRMLVSQGETLPRLGVGSSDTEPVEQDPREIWRRFCAGWTHFRGTPTRYWLEHAFVEIFGVTQRPSAETADAIYDQVAARLESPEFRPRALLDAFDIEVIATTDPAWAPLEDHARLAEDGFGDRVLPTFRPDPLLHVDRETWRDEIDLLARAADVEVDGYDAYLEALRVQRRRFVEAGARATDHGHLWADTTPLDDAEARRIFAAALAGEVTADEARAFSGHMLFEMARMSCEDGLVMQLHPGVLRNHASAPFAAFGPDKGYDIPAVTEFTRSLQPLLDAFGHHPGFRFIVFTVDEDVYSRELAPLAGVYPAMKLGAPWWFLDAPDAMRRFREAATETAGFSNLSGFVDDTRAFCSIPARHDLARRVDAGYLARLVAEHRLELDEAVEVAGDLAYHAAIRSYPKPPGPT0018210_365DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018210-uxaC-K01812NANA
AK018_04519678hypothetical proteinGTGACTTCACCGGATCGCCCCGGCGCCGCTCCCGACGACACCGCGCCCGTCGTCCGACTGCTGGTCGTCGGCGTGCTCTTCGCCCTCGCGGTGACCCCCAGCGTCCTGCTGGTCGGCGTGCTCGGCACCGGCGCCGCAGCGGCCGCACTGGCCGTGATCGGCCTGGTCTTCGTGGGGCCGGCCGTCGCCGCGGCGCTGTGGGCGCTCGGTGACAAGGCCGCCGAGGACGGGTTCGGCCCGGTGGCCGCGTTCGGGCGCGGCTACCGGCTCAACGTCGTCGACGCCCTCAAGCTCTGGGTGCCGAGCCTGGTGGTGCTCGCGGTGCTGGCCTTCTCGATCGTCGACGCGACGGGGCAGGCCCCCGCCTGGGTGGTCGGGTTCGGGATCGGTGCCGCGGTGCTCCTGGTGCTGTGGCTGGTGCAGGCCACCGTCGTGGCGTCGTTCTTCACCTTCCGGGCGCGGGACACCGCGAAGCTCGGGCTGTACTTCCTCGGGCGGCTGCCCCGCTCGACCCTCGTCGTCCTCGTCGCGGTCGTGCTGGCGGCCGGCGTCGGGTGGCTGATGTCCCCGGCCCTGCTCGCTCTGCTCGGAGTGCTGTGGGTCGCCCTGGTGCTGCGGGCCGACCGCCCCCTGCTGGCGGAGACGCAGCAGCGGTTCGTCCGCGGCGACTCCGCCTGAMTSPDRPGAAPDDTAPVVRLLVVGVLFALAVTPSVLLVGVLGTGAAAAALAVIGLVFVGPAVAAALWALGDKAAEDGFGPVAAFGRGYRLNVVDALKLWVPSLVVLAVLAFSIVDATGQAPAWVVGFGIGAAVLLVLWLVQATVVASFFTFRARDTAKLGLYFLGRLPRSTLVVLVAVVLAAGVGWLMSPALLALLGVLWVALVLRADRPLLAETQQRFVRGDSANANANANANA
AK018_045201143hypothetical proteinGTGTCCACCCTCGAGCGACGACGCGTCGCCGGGATCGGTGCCGCCCTGCTGGGCGGGTCGGCCGAGCTCGTCGACTTCCTCGTCCCGCTCTGGGCCGGCATCGAGCTCGGCCTCCCCTCCGGGGCTATCGGGGTCCTCGTCGCCACCGAGGTGCTGTGCTCGGTGCTGGTGCGCCCCGCGGCGGGCGAGCTCGTCGACACCCGCGCCCGCACCCGGGTCGCCGCCGTGGGTGCGGGGGCGTACGGGGTCAGCTGTCTGGGCTATGCGGTCGCTCCCTCCGTCGGCGTCGCGCTCGGTGCCGCCGTGCTCGGCGGCCTCGGCGGTGCGCTCTTCTGGGTCGCCGTGCGCGCCGTCGTGGCGGAGAACCTCGACCAGGACGCCGCCACCTTCGCGGGCCTGCTGTCCGCCGAGTCGTTCGGGTCCTGGTTCTTCTGGATCCCGGCCATGGTGCTGTTACCCGCCGTCGGCTTCCTCGGGGTCTTCGGCGCGCTCGCTGTCGTGTGTGCAGTCGCCGCGACCATGCTGCTCCGGCTCGACCCGGTCCGTGCGTCCGCGGCGTCCGTGCGCGCGCGCCGGGGCGCCGTCCGGCGGCTGGCCCCCCTGTTGCTGGTCTCCGCCGCGACGGCCGTCGCCGAGGCGGGGATCGGCCTGCTCCTGCTGCTGCACCTGCAGCAGGACCTGGGTCTGGATGTCTACCAGATCGCGCTGGTGTACCTGCCCGGCGGCATCGTGCTGACCGTGCTGCCGCGCTACCTGCACCGCGTCGTGGAACGGTGGGGACGGCGCGTCGGATACGTGGCCGCCTCCGTGGCCTCGGCGGCCACCGCGGCCGGGTTGGCGACGTCGCCCGGGGTGATCGGGGTCGCCGCGCTGTGGGTCCTGACCAGTGCGGGCTGGGCGCTGCTCGAGCCGGTCGCGCAGGCCGTCGTCGCCGAGGCCAGCGGTGACCGCGTCGGCCGGGGCATGGCCCTGCTGACGAATGCCGGGCTCCTGGGTGCCGGGGCCGGGTTCCTGCTGGCCGGTCTCCTGCACGACGTCGGCTCCTGGGCGATCGCCTGTCTCGCGTTCGCCGGGGTCCTGCTCGTGGTCGCGGCGACGGCTCCGGCCGCCCTGGCCCGGCTCGGTGTGGCGGACCGGCCCTGAMSTLERRRVAGIGAALLGGSAELVDFLVPLWAGIELGLPSGAIGVLVATEVLCSVLVRPAAGELVDTRARTRVAAVGAGAYGVSCLGYAVAPSVGVALGAAVLGGLGGALFWVAVRAVVAENLDQDAATFAGLLSAESFGSWFFWIPAMVLLPAVGFLGVFGALAVVCAVAATMLLRLDPVRASAASVRARRGAVRRLAPLLLVSAATAVAEAGIGLLLLLHLQQDLGLDVYQIALVYLPGGIVLTVLPRYLHRVVERWGRRVGYVAASVASAATAAGLATSPGVIGVAALWVLTSAGWALLEPVAQAVVAEASGDRVGRGMALLTNAGLLGAGAGFLLAGLLHDVGSWAIACLAFAGVLLVVAATAPAALARLGVADRPPGPT0003185_840DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003185-blt-K08153NANA
AK018_045211107kdgK_32-dehydro-3-deoxygluconokinaseATGACCAACCCGTCCATCACCACCCGCCCCGCCGCCGAGTGCCGCTACGACGTCGTCGCGCTGGGCGAGGTCATGCTGCGCCTCGATCCGGGCGAGCGGCGCGTGCGCACCACCCGGAGCTTCGACGTCTGGGAGGGCGGCGGCGAGTACAACGTCGCCCGCGGCCTGCGCCGGTGCTTCGGTCTGCGCGGCGCGATCGTCACGGCGCTCGCGGACAACGAGGTCGGTCGACTCGTCGAGGACTGCATGCTCACCGGCGGCCTGGACACCTCCTGGGTGCAGTGGCGCGACTTCGACGGCATCGGCCGCGAGGTCCGCAACGGGCTGAACTTCACCGAGCGCGGGTTCGGCGTGCGCGGGGCGATCGGCACCAGCGACCGCGGGCACACCGCCACCTCCCAGATGCGGCCCGACGACGTCGACTGGGACGCGCTGTTCGGCTCCGGCGTGCGCTGGCTGCACACCGGCGGCATCTTCGCGGCGCTGTCGGAGTCCACCGCGGAGGTCGCCGAGGCCGCGATGGCCGCCGCCCGTCGGCACGGCACGATCGTGTCCTACGACCTCAACTACCGCCCCTCGCTGTGGAAGGGCATCGGCGGCGTCGAGCGGGCCCGCGAGGTCAACCGCCGTCTCGCCGAGCACGTCGACGTGATGATCGGCAACGAGGAGGACTTCACCGCGTCCCTCGGCTTCGAGGTCGAGGGCGTCGACGAGGACCTCACCGACCTGGACACGGGCGCCTTCCGGGCCATGATCGAGACCGCGGCGGCCGAGTACCCGAACTTCCAGGCGATCGCCACGACCCTGCGCGGCGTGAGGTCCGCGTCCGTCAACGACTGGGGCGCGATCGCGTGGTCGCGTGCCGAGGGCTTCGCCGAGGCCACCCATCGCCCGGACCTCGAGATCCTGGACCGCGTCGGCGGCGGGGACTCGTTCGCCTCGGGCCTGGCCTACGGCCTGATGGAGCTGGGCTCCCTGGCCGAGGCCGTCGAGTACGGGGCCGCGCACGGGGCGCTCGCCATGACGACCCCGGGCGACACGACGACGGCGACGCTCGCCGAGGTGGCCAAGCTCGCCTCCGGCGGTGGGGCGCGCGTGCAGCGCTGAMTNPSITTRPAAECRYDVVALGEVMLRLDPGERRVRTTRSFDVWEGGGEYNVARGLRRCFGLRGAIVTALADNEVGRLVEDCMLTGGLDTSWVQWRDFDGIGREVRNGLNFTERGFGVRGAIGTSDRGHTATSQMRPDDVDWDALFGSGVRWLHTGGIFAALSESTAEVAEAAMAAARRHGTIVSYDLNYRPSLWKGIGGVERAREVNRRLAEHVDVMIGNEEDFTASLGFEVEGVDEDLTDLDTGAFRAMIETAAAEYPNFQAIATTLRGVRSASVNDWGAIAWSRAEGFAEATHRPDLEILDRVGGGDSFASGLAYGLMELGSLAEAVEYGAAHGALAMTTPGDTTTATLAEVAKLASGGGARVQRPGPT0018060_91DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
AK018_04522654eda_2COG0800Putative KHG/KDPG aldolaseATGTCAGTCGATGACGACACCGTGCTGAAGACCCTCGCCGCGCACCGGCTCGTCCCCGTGGTCGTGGTCGACGGCGCCGACCAGGGCGTCGCCCTCGCCGACGCGCTCGTCGCCGGCGGGCTCCCGGTCGCCGAGATCACCCTGCGTACCGCCGGCGGCCTCGACGCCGTCCGCGCCGTCGCCCAGGAGCGCCCCGACGTCGTCGTCGGCGCCGGGACCGTGACCACCGCCGACCAGGTCGACGCCGTCGTCGACGCCGGGGCCCGCTACATCGTCTCGCCCGGTCTGTCCGAGGCCGTCGTGCGCCGCGCGCAGCACCACGGCGTGCCCGTGCTGCCCGGTGTGGCCACCGCGACGGAGATCATGACCGCCCTCGACCTCGGTGTCTCGACGGTCAAGCTGTTCCCCGCCTCCGTCGTCGGCGGCCCGGCCGCGCTCAAGGCGCTCGCCGCCCCGTTCGGCGACCTGCGGTTCGTGCCCACCGGCGGCGTGAGCGCCGAGAACCTGCCCGACTACCTGGCCCTGCCGCCCGTGCTCGCCGTCGGCGGCTCCTGGATGGTCGCCAAGTCCCTCGTGGACGCCGGCGAGTGGGACGAGATCACCCGCCGCACCGCCGACGCCGTGGCGCTGGCCGCACCGACGAAGGAGAGCTGAMSVDDDTVLKTLAAHRLVPVVVVDGADQGVALADALVAGGLPVAEITLRTAGGLDAVRAVAQERPDVVVGAGTVTTADQVDAVVDAGARYIVSPGLSEAVVRRAQHHGVPVLPGVATATEIMTALDLGVSTVKLFPASVVGGPAALKALAAPFGDLRFVPTGGVSAENLPDYLALPPVLAVGGSWMVAKSLVDAGEWDEITRRTADAVALAAPTKESPGPT0002060_906DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0002060-eda-K01625NANA
AK018_04523666xynR_3COG1414HTH-type transcriptional regulator XynRATGGAACCCAGCCCCCTCGGCAGCGTCGACAAGGCGCTGCTCACCCTCGACGCCCTCGGCCGCGCCGGCGCGGCCGGCACCACGCTCGCCCGGCTCGCCGCCGACGTCGGCGTGAACAAGTCGACCCTGCACCGCACGCTGTCCGCGCTGCGGCACCGCGGGTACGCCGAGCAGTCCGACGACGGCGGCTACCGCCTCGGACCGGCAGTGCTCGCCCTGAGCAGCAGCTACCTCGCCGAGGAGAACCTGCCCGCGCTGCTGCGTCCCGCGCTCGAGGCGCTGCGCGACGACGTCGACGAGCTCGTGCACCTCGGCGTGCTCGCCGGCCAGGAGGTGGTCTACCTCGACAAGGTCGAGCCGCAGCGCGCCGTCCGGGTGTGGTCCGCCGTCGGACGGCGCCGGCCCGCGGAGACCACGGCGCTGGGCCGGGCCCTCGCCGCCCCCGCCGCCGGTGTCGCCACCGAGACCGAGGAGACCGAGCCGGGGATCGCGTGCGCCGCCGTCGCGGTCCTGCGCGGCGACCGGCCCGTCGCCGCGGTGTCGATCACGGCCCCGGTCGAGCGGATGACCGGCCCGTCCCGCGCCCGCCGGATCCGTGCGCTCACCGAGGTCCTGCCGCAGCACCTGCCGCCCGGCCTGACCGTCTCCGGACCGGCGTCACGCTGAMEPSPLGSVDKALLTLDALGRAGAAGTTLARLAADVGVNKSTLHRTLSALRHRGYAEQSDDGGYRLGPAVLALSSSYLAEENLPALLRPALEALRDDVDELVHLGVLAGQEVVYLDKVEPQRAVRVWSAVGRRRPAETTALGRALAAPAAGVATETEETEPGIACAAVAVLRGDRPVAAVSITAPVERMTGPSRARRIRALTEVLPQHLPPGLTVSGPASRPGPT0018213_1092DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
AK018_045241011galE_5COG1087UDP-glucose 4-epimeraseATGAGCCGTATGACCCGCAACCCGCTCGACATCCTGTTCCTCGGCGGCTCCGGCATCATCAGCGCCGCCTCCGTGCGCCGGGCGGTCGCCCGGGGGCACCGCGTGACCGTGCTCAACCGGGGCCGCTCCACGCATCGTGAGCTGCCGGCCGACGTCGAGCAGCTCGCCGCGGACGTCACCGACGACGCCGCCGTGGACGCCGTGCTGGACGGCCGCGACTTCGACGTCGTCGCCCAGTTCCGGGCGTTCTCCCCCGACCACGTCGCCCGCGACATCGCCCGATTCACCGGCCGCACCGGCCAGTACGTGTTCGTCTCGAGCGCCTCGGCCTACCAGACACCGCCCTCCCGGCTGCCCGTCACCGAGTCGACCCCGCTGCGCAACCCGTACTGGGCCTACTCGCGCGACAAGATCGCCGGCGAGGACCTGCTCGTGCGCGCGTACCGCGAGAACGCCTTCCCCGCCACGATCGTGCGGCCCAGCCACACCTACGACCGCACGCTCCTGCCGACCCTCGGCGCCTGGACCGACGTGGCACGGATGCGCGACGGACGTCCCGTCGTCGTCCCCGGGGACGGCACCAGCCTGTGGACGCTCACCCACACCGAGGACTTCGCCGTCGGGTTCGTCGGCCTGCTCGGCCACCCGCACGCGATCGGCGACACCTTCCAGATCATGGGCACGCACGCACCCACCTGGAACCAGATCTACACGTGGCTCGCCGCCGCGGCCGGGGTGCCCGACCCCGAGATCGTGCACGTCGCCTCCGAGACGATCGCCCACGTGCTGCCCGACGTCGGGCCCGGCCTGCTCGGCGACAAGGCCCACTCGATGGTCTTCGACTGCGCCAAGCTGCAGGCGCTCGTGCCCGAGTTCGCCACGACGATCACCTACGACGACGCCGCGCACGAGCAGATCGCCTGGTTCGACGCGCACGCCGCCGCGCGGGAGACCGACCCCGTGCTGGACGCGGGGTTCGACCGGCTGGTGGCGTACGCCGGGGCGATCTGAMSRMTRNPLDILFLGGSGIISAASVRRAVARGHRVTVLNRGRSTHRELPADVEQLAADVTDDAAVDAVLDGRDFDVVAQFRAFSPDHVARDIARFTGRTGQYVFVSSASAYQTPPSRLPVTESTPLRNPYWAYSRDKIAGEDLLVRAYRENAFPATIVRPSHTYDRTLLPTLGAWTDVARMRDGRPVVVPGDGTSLWTLTHTEDFAVGFVGLLGHPHAIGDTFQIMGTHAPTWNQIYTWLAAAAGVPDPEIVHVASETIAHVLPDVGPGLLGDKAHSMVFDCAKLQALVPEFATTITYDDAAHEQIAWFDAHAAARETDPVLDAGFDRLVAYAGAINANANANANA
AK018_04525681COG05465'-nucleotidaseGTGAACCAGCCTCTCGTCCTGCTCGACCTCGACGGCACCCTCATGGACTCCGCCCCCGGCATCACGTCCTCGGTCGCCCACGCCTACCGTGCGCTCGGGATCCCCGTGCCCGACGACGCCACGCTGCGCACGTTCGTCGGCCCGCCGATCACGGATTCCTTCCCCGCCCACGGGGTCCCGCCCGAGCGCACCGCCGAGGCCGTCGCGGCCTACCGGGAGGCGTTCACCGCCGGCGGCATGTTCGACAACGCGGTGTTCGACGGTGTCCCGGACGTGCTGCGAGCGCTGCGGGACGCCGGGTGCACGCTGCTCGTGGCGACCAGCAAGCCGGAGGTCTACGCGAAGCCGATCTGCGACCGGTTCAGGATCAGCGACGTGGTCGACGGCGTCCACGGCGCCCCGCTGGACGAGGGCACCTCCACCAAGGCGGACGTGATCGCGGCGGCGCTGGCCGCGCACGGGCGCCGCTCCCCCGTCGACCCGGCCGAGGGCCCGGTCGTCATGGTCGGCGACCGCGAGCACGACGTGCACGGCGCGGCCGCCCACGGCATCGACTGCCTCGGGGTGTCGTGGGGCTACGCCGCGCCGGGTGAGCTCGAGCGGGCCGGTGCGGTCGCCGTCGTCGACGAGGTCCCCGCACTGGCTCCCGCGGTCCGTGACCTCCTCGGCCCCACCTTGTGAMNQPLVLLDLDGTLMDSAPGITSSVAHAYRALGIPVPDDATLRTFVGPPITDSFPAHGVPPERTAEAVAAYREAFTAGGMFDNAVFDGVPDVLRALRDAGCTLLVATSKPEVYAKPICDRFRISDVVDGVHGAPLDEGTSTKADVIAAALAAHGRRSPVDPAEGPVVMVGDREHDVHGAAAHGIDCLGVSWGYAAPGELERAGAVAVVDEVPALAPAVRDLLGPTLPGPT0001730_2922DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091NANA
AK018_045261065czcO_2COG2072putative oxidoreductase CzcOATGACCGAACGCCCGGAGACGCTGATCATCGGTGCAGGTCAGGCGGGACTGTCCACGGCATACCATCTCCAGGCTCGGGGGCGCGAGGCTCTCGTCGTCGACGCGTCCGACCGCGTCGGCGACACCTGGCGTCGTCACTACGACTCGCTGCGGCTCTTCACCCCGCGACGCATCATCGGGCTGCCGGGCTCACCGTTCCCCGGCGACCGGAAGTCCGTACCCACCAAGGACGAGATGGCCGACTACCTGGCCGCCTATGCCGCGCGGCACGGACTGGCGGTGCGCACCGGCGTGACCGTCGAGCGCGTCGTCCGCCACGACGGCGGGTTCCGCGCCGACACGCCGGACGGACCGATCCACGCCGATCACGTCGTCGTCGCGACGGGCAAGGCGTGGCACCCCCGGGTGCCGTCGTTCGCGTCCGAGCTCGGCGACGACATCGTCCAGCTGCACTCCGCGGAGTACCAGCGCCCGAGCCAGCTGTCCGCCGGACCGGTCCTGGTGGTGGGTGCCGCGGTGTCCGGCGGGGACATCGCCGTCGAGACCTCCCGGACCCACCCGACCACGCTGTGCGGAAGGGTCACCGGCCACATGCCCTTCCGCAGCAACGGTCCCCTGACACCGCTCATCCCGTTCATCGGCAATCGTCTGCTCAGCATGCGGAGTCCGCTGGGGCGGCGGTACCGGGCGGCGGAGCGCGACCACGGCCAGCCGCTGCCGGTCGAGCTGCTCCGATCGGTCCGGGAGATACCCGACGACCGTCTCGAGTGGACCGATGACCGTGTCGTGGGGGTGCAGGACGGGCTGCCGACGACGGCGTCGGGCCGGGTCCTGGACGTGGCGAACGTCATCTGGTGCACGGGATACCGGCACGACTACACGTGGATCGAGCCACTCGTCACCGACGACGCCGGGTGGCCGGAGCAGGTCGACGGGGCCGCCACGGGGAGTCCGGGGCTGTTCTTCGTCGGCCTGCCGTTCCAGTCCGCCTACGGCTCCGGGTTCCTGTACGGCGTCGGTCGCGATGCGGCGAAGGTCGCCGCGCAGATCGATCGGGGCGCGTGAMTERPETLIIGAGQAGLSTAYHLQARGREALVVDASDRVGDTWRRHYDSLRLFTPRRIIGLPGSPFPGDRKSVPTKDEMADYLAAYAARHGLAVRTGVTVERVVRHDGGFRADTPDGPIHADHVVVATGKAWHPRVPSFASELGDDIVQLHSAEYQRPSQLSAGPVLVVGAAVSGGDIAVETSRTHPTTLCGRVTGHMPFRSNGPLTPLIPFIGNRLLSMRSPLGRRYRAAERDHGQPLPVELLRSVREIPDDRLEWTDDRVVGVQDGLPTTASGRVLDVANVIWCTGYRHDYTWIEPLVTDDAGWPEQVDGAATGSPGLFFVGLPFQSAYGSGFLYGVGRDAAKVAAQIDRGAPGPT0013865_1014DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222NANA
AK018_045272568clpC1_2COG0542ATP-dependent Clp protease ATP-binding subunit ClpC1ATGTTCGAGAGATTCACGGACCGAGCCCGTCGGGTCGTCGTCCTCGCTCAAGAAGAAGCGCGGATGCTCAACCACAACTACATCGGGACCGAGCACATCCTCCTCGGCCTCATCCACGAGGGTGAGGGCGTGGCGGCCAAGGCGCTCGAGTCCCTGGGCATCTCCCTGGACGGTGTCCGCGCGCAGGTCACCGAGATCATCGGCGAGGGCCAGCAGGCCCCGAGCGGGCACATCCCGTTCACGCCGCGCGCCAAGAAGGTGCTGGAGCTGTCGCTGCGCGAGGCGCTGCAGCTCGGCCACAACTACATCGGCACGGAGCACATCCTCCTCGGCCTCATCCGCGAGGGCGAGGGCGTGGCCGCCCAGGTGCTGACCAAGATGGGCGCCGACCTGAACAAGGTGCGCCAGCAGGTCATCCAGCTCCTGTCCGGCTACCAGGGCAAGGAGCCGGTCGCCGCGGGCAGCCCGCAGGAGGGCCAGCCGTCGGGCTCCGCCGTGCTGGACCAGTTCGGCCGCAACCTGACCCAGGCGGCCCGCGAGGGCAAGCTCGACCCGGTCATCGGCCGGACGCAGGAGATCGAGCGCGTCATGCAGGTGCTGAGCCGCCGCACCAAGAACAACCCGGTCCTCATCGGTGAGCCCGGCGTCGGCAAGACCGCCGTCGTCGAGGGCCTCGCGGCGGACATCGTGCGCGGCGACGTGCCCGAGACGCTGAAGGACAAGCAGCTCTACACGCTCGACCTCGGCGCGCTCGTCGCCGGGTCGCGCTACCGCGGTGACTTCGAGGAGCGCCTCAAGAAGGTGCTCAAGGAGATCCGTACCCGCGGCGACATCATCCTGTTCATCGACGAGATCCACACCCTCGTCGGGGCGGGTGCCGCCGAGGGCGCGATCGACGCGGCCAGCATCCTCAAGCCGATGCTGGCCCGCGGCGAGCTGCAGACCATCGGTGCCACCACGCTCGACGAGTACCGCAAGCACGTCGAGAAGGACCCGGCCCTGGAGCGCCGCTTCCAGCCGATCCAGGTCAACGAGCCCTCGATGGAGCACGCCATCGAGATCCTCAAGGGCCTGCGCGACCGGTACGAGGCGCACCACCGCGTGTCCATCACGGACTCCGCGCTGGTCTCCGCGGCCCAGCTCGCCGACCGGTACATCAACGACCGCTACCTGCCGGACAAGGCGATCGACCTCATCGACGAGGCGGGCGCGCGCCTGCGCATCCGCCGCATGACGGCCCCGCCGGAGCTCAAGGAGCTCGACGAGGAGATCGCCGAGGCGCGCCGCGAGAAGGAGTCGGCGATCGACGAGCAGGACTTCGAGAAGGCCGCCGGCCTGCGTGACACGGAGAAGCAGCTCACGCAGAAGCGTGCCGACAAGGAGAAGGCCTGGAAGTCGGGCGACCTCGACACGGTCGCGGAGGTCGACGACGAGCTGATCGCCGAGGTGCTGGCGATGTCCACCGGTATCCCGGTGGTCAAGCTGACCGAGGAGGAGTCCTCCAAGCTCCTGCACATGGAGGACGAGCTGCACAAGCGCGTCGTCGGTCAGGACGCGGCGATCAAGGCGCTGTCGCAGGCCATCCGTCGTACCCGCGCCGGCCTGAAGGACCCGAAGCGACCCGGTGGCTCGTTCATCTTCGCCGGCCCCACCGGCGTCGGGAAGACCGAGCTCGCCAAGGCGCTCGCCGAGTTCCTCTTCGGCGACGAGGACGCGCTCATCCAGCTCGACATGTCCGAGTTCTCGGAGAAGCACACGGTCTCGCGGCTGTTCGGCTCGCCCCCCGGCTACGTCGGCTACGACGAGGGCGGCCAGCTCACCGAGAAGGTCCGCCGTCGTCCGTTCTCCGTCGTGCTGTTCGACGAGGTGGAGAAGGCGCACGCCGACATCTTCAACTCGCTGCTGCAGGTGCTCGAGGACGGTCGCCTCACCGACTCCCAGGGTCGCGTGGTCGACTTCAAGAACACCGTCATCATCATGACGACGAACCTCGGTACCCGGGACATCGCCAAGGGAGTCCAGACCGGCTTCAACGCCGGCGGCGACCTGGTGACGTCGTACGAGCGGATGAAGGCCAAGGTCAACGAGGAGCTCAAGCAGCACTTCCGGCCCGAGTTCCTCAACCGTGTCGACGACATGATCGTCTTCCCGCAGCTGTCCGAGCAGGAGATCATCGAGATCGTCGACCTCGAGATCGCCAAGCTGGACCGCCGGCTGCGGGACAAGGACATGGCGATCGAGCTCACGCAGGCCGCCAAGAAGCTGCTCGCCGAGAAGGGCTACGACCCGGTCCTCGGTGCGCGGCCGCTCAAGCGGGCCATCCAGCGGGAGATCGAGGACGCGCTGTCCGAGAAGATCCTGTTCGGCGACCTCAAGCAGGGCGAGATGGTCGTCGTCGACGGCGAGGGCGAGGGCATCCTCGGGGAGTTCACCTTCCGCGGGGTCCCCAAGTCCGAGCACGACCGTGGCCCGGTCACCGTCGGTGCCGCGGCGGCGCTGGAGTCGCCGTCCGGCGTCTCGGTCAAGGACCTGCCGCCCACCGGGCAGATGCAGGCCGGCGCGGAGTGAMFERFTDRARRVVVLAQEEARMLNHNYIGTEHILLGLIHEGEGVAAKALESLGISLDGVRAQVTEIIGEGQQAPSGHIPFTPRAKKVLELSLREALQLGHNYIGTEHILLGLIREGEGVAAQVLTKMGADLNKVRQQVIQLLSGYQGKEPVAAGSPQEGQPSGSAVLDQFGRNLTQAAREGKLDPVIGRTQEIERVMQVLSRRTKNNPVLIGEPGVGKTAVVEGLAADIVRGDVPETLKDKQLYTLDLGALVAGSRYRGDFEERLKKVLKEIRTRGDIILFIDEIHTLVGAGAAEGAIDAASILKPMLARGELQTIGATTLDEYRKHVEKDPALERRFQPIQVNEPSMEHAIEILKGLRDRYEAHHRVSITDSALVSAAQLADRYINDRYLPDKAIDLIDEAGARLRIRRMTAPPELKELDEEIAEARREKESAIDEQDFEKAAGLRDTEKQLTQKRADKEKAWKSGDLDTVAEVDDELIAEVLAMSTGIPVVKLTEEESSKLLHMEDELHKRVVGQDAAIKALSQAIRRTRAGLKDPKRPGGSFIFAGPTGVGKTELAKALAEFLFGDEDALIQLDMSEFSEKHTVSRLFGSPPGYVGYDEGGQLTEKVRRRPFSVVLFDEVEKAHADIFNSLLQVLEDGRLTDSQGRVVDFKNTVIIMTTNLGTRDIAKGVQTGFNAGGDLVTSYERMKAKVNEELKQHFRPEFLNRVDDMIVFPQLSEQEIIEIVDLEIAKLDRRLRDKDMAIELTQAAKKLLAEKGYDPVLGARPLKRAIQREIEDALSEKILFGDLKQGEMVVVDGEGEGILGEFTFRGVPKSEHDRGPVTVGAAAALESPSGVSVKDLPPTGQMQAGAEPGPT0014585_829DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014585-clpC-K03696NANA
AK018_04528663hypothetical proteinATGGACGACGTCGGACGGGACGCAGGGCACGAGGACACCGGCCGGGATGCTGCGCCGGCGGAGGAGCAGGCCGGGGAGGTCGATCCCCGGATGGCGCGGTTCTCCGGCCGTGTCGGGGAGGTCGACGACCCGCTGACCTGGGGCCTCGACCTCGAGGACGAGGCCCTGACCGGGTGCGAGGACGACGCCGACCCGACGTCGGACCGGTTCGTGCGCTCCTACCGCACCGTCGCCGGGGAGTCGCTGGAGGTGGAGACGCTCCGCACGCCGGTGTCGGAGGACGCGGTGGAGGACGTCGTCCGGGCCGCGGCCAGCGGTGCCCTCGCCGCACCGCTGCACGCCGACATCGCGGCACCGGTCGAGCCGGACGCCGAACCGGCCCGCCGGCCGGGCCGGGACTTCGCCGACGACTTCGCGGACTACCGCAGCGCGATGCGGGCGATCGTCACCGAGGTCGACGAGGTCGACCTGCGCCGCGCCCCCTACGCCGTCGACGGCCGGCCGACGGCCGCGACCTGGGTGCAGGTGCGCGACGTGGTGGCCGTGCACGTGGCGACGCCCGGACGCGGCCTCGTCGTGACGGGTCCGGCCGACCTCGTGGACCGGATCACCGTGCTCACGCGCCCGATCCGGTCGCTGCTGCAACCGCCCGAGCGCCGCTGAMDDVGRDAGHEDTGRDAAPAEEQAGEVDPRMARFSGRVGEVDDPLTWGLDLEDEALTGCEDDADPTSDRFVRSYRTVAGESLEVETLRTPVSEDAVEDVVRAAASGALAAPLHADIAAPVEPDAEPARRPGRDFADDFADYRSAMRAIVTEVDEVDLRRAPYAVDGRPTAATWVQVRDVVAVHVATPGRGLVVTGPADLVDRITVLTRPIRSLLQPPERRNANANANANA
AK018_04529864COG0589Universal stress protein/MSMEI_3859ATGGACGGCATCGTGGTCGGGGTCAACGGTTCGGTCGAGGCGGACGAGGCGCTGGACTGGGCCGTCGCGGAGGCACGGACGGCGGGCCTGCCACTCGTCGTCGTGATGGTCGCGCACGAGCGGGACGACGACGCGCTCGGCGAGGTGCTCGCCACGCGGCGCGCGGAGGCCGAGGAGATCGTGGGCCGTGCGCGGGAACGCCACGGCGGCGACCTGGACGCGGAGATCACCGTGGTGCACGGGCCCGCTCCCGAGGGGCTGATGGCCGCGGCCGACGACGCGGACATGCTCGTGCTGGGCCGGCGGCAGCGGAACCGCCTGGGGCGTCGGCTGCTCGGCTCGGTCTCGACCTCGGTGGTCGAGCACGCGCGCATCCCGGTGACGGTCGTGCGCCGCCCGGAGGACGGCGACCAGAGCGGTCCCGAGCAGCCGTCCGACGAGACGCGGGTGGTCGCGGGCGTCGACACGTCCGGTCACTCGGTGGCGGCGCTGCGGCACGCCGGGGCGGTGGCGGCCCGCCGGGACGCGGTGCTGGAGCCGGTGTTCGCCTGGCAGATCACGACGCTCGCGCCGCTGCCGGGATCGTGGGGCTGGGCGCCGCCGATCGACGACTACGAGAACTTCGCCCGGGAGCGTCTGGAGGACGTGATCCGGTCGGTCGAGCTCCCGCTGCCGCCGGACCGGATCAGGCCGCGGGTCGTGCACGGTCAGGCCGCGAAGGTCCTCATCGAGGCCTCCGCGGGTGCCGACCGGATCGTGGTCGGCACCCGCGGGCTCGGCGGATTCGACCGCCTGGTGCTGGGCTCGACGGCCCGGCAGGTGCTCGACTACTCGAGCAGCCCCGTGACGGTCCTCAACGGGTGAMDGIVVGVNGSVEADEALDWAVAEARTAGLPLVVVMVAHERDDDALGEVLATRRAEAEEIVGRARERHGGDLDAEITVVHGPAPEGLMAAADDADMLVLGRRQRNRLGRRLLGSVSTSVVEHARIPVTVVRRPEDGDQSGPEQPSDETRVVAGVDTSGHSVAALRHAGAVAARRDAVLEPVFAWQITTLAPLPGSWGWAPPIDDYENFARERLEDVIRSVELPLPPDRIRPRVVHGQAAKVLIEASAGADRIVVGTRGLGGFDRLVLGSTARQVLDYSSSPVTVLNGNANANANANA
AK018_045301332rafB_2Raffinose permeaseGTGAGCGCCGCCGAGCCCGTCGTCGACCAGCGTCCGGTCCGCCACGGCGCCCTGCACTCGCTGAAGAAGCCGGTCTTCTGGAACATCGGCGGACTGTTCTTCTTCTACTTCGCCATCTGGCAGCTCGTCATGACCTTCCTCAGCCTCTGGCTCGAGGAGGAGGCCGGGATGACGAGCGGCAACATCGGCCTCGTCTTCTCGGTCATCGCCCTGGTCGCCTTCGCCCTGCAGCCGCCGTACGGCTACATCCAGGACAGGCTGGGCTTCCGCAAGCACCTCTTCGCCTTCGTCGTCGTGTGCGGCGCGCTCATGGGGCCGTTCTTCGCCTTCGTCTTCCTGCCGATCGTCGAGACGAACCAGGTGCTCGGGGCGGTCGTGGCCGGGGCGTTCCTCGCCCTGGTTCTCAACGCCGGGGTGAGCGTCGTCGAGACGTTCAACGAGCGCAGCTCGCGCGCCAACGGTTTCGAGTACGGCCACGTGCGGTTGTTCGGCTCCCTGGCCGGGGCGACCGCCTCGCTGGTCGGCGGCTTCATCTGGGCCTCCAACCCGGACAACATCTGGTGGGCCGCGACGTTCTCGGCGGTCGTCCTCGGCGCCCTGCTGCTGGTGATGCGCACTCCGAAGCCCGGTGAGGCCGGATACACGGCGCTCGCAGCCGACGGCGGCGCCGACGCGACGAAGGACGCCGTCGACCGCAGCGCGTTCCGCACCCTGCTCAAGGACCGCTCCTTCGTCGGGTTCATGGTGCTCATGTTCGGCACCGCCGCGTTGTACGACGTCTTCGACCAGCAGTTCCCGATCTACTTCGCCGAGCACGCCACCGCGGTCGCGGACCCGCAGGTCCTGTTCTCCCGCGTGGTCTTCGTCCAGATCCTGCTCGAGGCCGCGGTGATGATCGCGATGCCGTTCCTCATCAACCGGATCGGCGCCAAGTGGGGACTCGTCGCCTTCGCCGCCGTGCTCGTGATCCGGGTGCTCGGTTCGGCGTTCATCGTCAACACCGAGATGCTGGTCCTCTGGCGCCTGCTCGCGGCGATCGAGATGCCGCTCATGCTGGTGTCGGTGATGAAGTACATCACCCGCATGTTCGACGTGAAGATCTCGGCGAGCGCCTACATGATCGGCTTCAGCATGTCGAAGGCCGCCGGCGTGTTCATCTTCTCCTGGGTCTTCGGCCTGTCCTACGACGCCATCGGCTTCAGCGCGTCCTACATCGTCATGGGCGTCGTGGTCGTCACCGTCACGGTGATCGCGATGGTCCTCATGCGCGACGACCGGGGTCGCCCCGACCCCGGCAAGGACGACGTCGAGGCCGCCGAGGTCACCCGTTGAMSAAEPVVDQRPVRHGALHSLKKPVFWNIGGLFFFYFAIWQLVMTFLSLWLEEEAGMTSGNIGLVFSVIALVAFALQPPYGYIQDRLGFRKHLFAFVVVCGALMGPFFAFVFLPIVETNQVLGAVVAGAFLALVLNAGVSVVETFNERSSRANGFEYGHVRLFGSLAGATASLVGGFIWASNPDNIWWAATFSAVVLGALLLVMRTPKPGEAGYTALAADGGADATKDAVDRSAFRTLLKDRSFVGFMVLMFGTAALYDVFDQQFPIYFAEHATAVADPQVLFSRVVFVQILLEAAVMIAMPFLINRIGAKWGLVAFAAVLVIRVLGSAFIVNTEMLVLWRLLAAIEMPLMLVSVMKYITRMFDVKISASAYMIGFSMSKAAGVFIFSWVFGLSYDAIGFSASYIVMGVVVVTVTVIAMVLMRDDRGRPDPGKDDVEAAEVTRPGPT0016855_32DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_LACTOSE_TRANSPORT,PGPT0016855-lacY|MFS_transporter|OHS_family|lactose_permease-K02532NANA
AK018_045311047COG3940Extracellular exo-alpha-(1->5)-L-arabinofuranosidaseATGACGGACCACGCTCAGGTCGCGCCCAACCCGATCGTGTTGCAGCGCGCGGACCCCCACGTCCTGCGCCACGACGGCCAGTACTACTTCACCGGCTCGTACCCGGCCTACGACCGGATCGTGCTGCGCCGCGCCGCGCGGCTGGAGGACCTGCAGGCGGCGGAGGAGGTGACGATCTGGACCAAGCACGCCACCGGTCCGCAGTCGCACCTCATCTGGGCGCCGGAGATCCACCGCGTCGACGACGCCTGGTACATCTACTACGCCGCCGCACCGGTCGGCCACGGCACGGTCGACGCCCCCAGCGAGAACGAGACCTTCAACCACCGGGTCTTCGTCCTGGAGTGCACGGCCGACGACCCGCTGACGGGTGAGTGGGTCGAGCGCGGCCAGGTCGACACCGGCTGGGAGTCGTTCGCGCTGGACGCCACGACGTTCGTCCTGCACGGGGAGCAGTACCTCGTGTGGGCCCAGGAGGACCTCGAGGTCTACGGGCACTCGAACCTCTACATCGCGCGGATGGCGAACCCCTGGACGCTCGCCACACCGGCCGTGGAGCTCACCCGGCCCGAGCTCGACTGGGAGATCAAGGGTTTCTGGGTCAACGAGGGCCCGTCCGTCCTGATCCGCGGCGGTCGCCTGTTCCTCACCTACTCCGGCTCCGCGACCGGCATCGACTACGCCATGGGCGTGCTCACCGCCGACGTCGACGCCGACCTGCTCGCCGCGGCCTCGTGGACCAAGTCCACCGAGCCGGTGTTCGTCTCCGACCCGTCGGCCGGCCAGTACGGCCCGGGGCACAACTCGTTCACCGAGACGCCCGACGGCGAGACCGTGCTGGTCTACCACGCCCGTGACTACACCGAGATCGTCGGCGACCCGCTGTGGGACCCCAACCGGCACGCCCGGGCCCAGGCCCTGCCCTTCGACGCCGACGGCGAGCCGGTCTGGGGCACCCCGGTGCCCGACACCCGACCGACCCCCACCACGACCGAGGTGCTGCCGTCCGCCGGCCTGGCCGGCGTCGTCGAGGAGGTCGCGCTGTGAMTDHAQVAPNPIVLQRADPHVLRHDGQYYFTGSYPAYDRIVLRRAARLEDLQAAEEVTIWTKHATGPQSHLIWAPEIHRVDDAWYIYYAAAPVGHGTVDAPSENETFNHRVFVLECTADDPLTGEWVERGQVDTGWESFALDATTFVLHGEQYLVWAQEDLEVYGHSNLYIARMANPWTLATPAVELTRPELDWEIKGFWVNEGPSVLIRGGRLFLTYSGSATGIDYAMGVLTADVDADLLAAASWTKSTEPVFVSDPSAGQYGPGHNSFTETPDGETVLVYHARDYTEIVGDPLWDPNRHARAQALPFDADGEPVWGTPVPDTRPTPTTTEVLPSAGLAGVVEEVALPGPT0019091_648DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NANANA
AK018_04532621hypothetical proteinGTGCGCGGCGTCGGGGGTCCGGGCCACACTGTCACCATGTCCTCCACGACCACCCCCGCCGGCCTGCTCCTGACGCCCGGAGCGGGCGCCGACCGTGAGCACCAGACGCTGCGCGCCGTCGAGGACCACCTGGCTGCCCTGGATCCGCCGCTGCCCGTGACCAGGGTCGACTTCCCGTACCGGATCGCGGGCCGGCGCGCCCCCGACCGGCCGTCCGTGGCCGTCCCGCACGTCCGCACCGAGGCCGAGGCCTTCGCCGACCGGCTCGGGGTCACGACGGACCGCCTGCTGCTCGGCGGGCGGTCCTACGGCGGACGGATGTGCTCGATGGCCGTCGCCGAGGGACTGCCCGCCGCCGGGCTCGTCCTGCTGAGCTACCCGCTGCACCCGCCCGGCAAGCCCTCGACGCTGCGCGTCGACCACTTCGGGCAGCTCGACGTCCCGGTGCTCTTCGTCTCCGGGGACAAGGACCCGTTCGGCCGTCCCGAGGAGCTCGCCGAGCACGCCGCGGCGATCCCGGGACCCGTCACGCAGGTGACCCTGGCCGGCGCCCACGACGTCAAGGACGTGGACGCCATCACCGAGGCCGTCGCCGACTGGGTCGCCACATGGGCCGGATGAMRGVGGPGHTVTMSSTTTPAGLLLTPGAGADREHQTLRAVEDHLAALDPPLPVTRVDFPYRIAGRRAPDRPSVAVPHVRTEAEAFADRLGVTTDRLLLGGRSYGGRMCSMAVAEGLPAAGLVLLSYPLHPPGKPSTLRVDHFGQLDVPVLFVSGDKDPFGRPEELAEHAAAIPGPVTQVTLAGAHDVKDVDAITEAVADWVATWAGNANANANANA
AK018_04533504hypothetical proteinATGGCCCGTGAGCTGTCGTCCGACCCGTATGTGGCGCAGAACGGGTCGCTGCCGTTCCGCGCCGACGAGCACGCCGCGTCGGCCTGGGTGGATCGTCAGCGGGCACGGCACACCGAGGGGTCCGGGTTCTCCTGCTCGGTGGTGGAGCGCGCGACCGGCGATGCCGTCGGCCATTGCGGTCTCTGGACGCGTCACCTCGGCGAGGGCCGCGCCTCGGCGGGCTACGCGATCGTCCCCGCCGCCCGCGGCAGAGGACTGGCGGCCGATGCGCTGACGGCCCTCACGCGGTTCGCGTGGACCGTACCGGGGCTGATCCTGGTCGAGGTCTTCATCGAACCGTGGAACCTCGCCTCGGCCCGGACGGCAGAGCGTGGCGGCTATCTCTTCACGGGCATGCTGCCCCGGCGTCGGGTGAGCTCCGGGCGGGACCGCGACATGCACCGCTACGTCGCGGTCCGCCCGGCGCGACCGGACGGACCGCGACGAGCCGGGCCGTACCCGTAGMARELSSDPYVAQNGSLPFRADEHAASAWVDRQRARHTEGSGFSCSVVERATGDAVGHCGLWTRHLGEGRASAGYAIVPAARGRGLAADALTALTRFAWTVPGLILVEVFIEPWNLASARTAERGGYLFTGMLPRRRVSSGRDRDMHRYVAVRPARPDGPRRAGPYPNANANANANA
AK018_04534816hypothetical proteinGTGCGTCCCGTCCACCTCGCCTCTCGCGCCGTCGCGGGCATCGTGCTGGCCGGTGCCGCAGGCGGCCTCTCCGTCGGCTCCGCGGCCGCCGACGACGGCGATCTCACCGTCACCGTCGACGGGGTCAGCTACCGGGACCGCGACCAGCGCGACCACGAGGACCTCGTCGGCTACTCGATCCGCAGCCTGGAGGGCTGGCGGTACGAGTGGCTGACCGAGCCCATGACGATGGGCCGGGCCGGGGAGGTCGCCTTCAGACGGGCGCCCACGACCATGCCCGACGGGTACTGCGTCGTCTACGTGCGGGTGCCCGGGGTGGGCGAGTGGCACGAGCACTCCGGCGGCGCCCGGTGTACCGAGCCCCGCACCTCGCAGCCGACGGCCCCCGCACCCTCCACCCCGAGTGCGCCGACCCCGACCGAGGCCCCCGAGCCCACGCCGACGTCCGCGGAGCCGACTCCGGCCGAGGAGGACCCGACCCCGTCACCGACGCCGTCTCCGACCCCGTCGCCGACGCCGTCGTCGAGCCCGTCCCGCTCCGCGACGCCGTCGCCGAGCCCGTCCCGCTCCGCGTCGCCGTCAGCGTCACCGAGCCCGACGCCTTCCACCGCCTCGCCGTCCGTCGTCGCGGGCCTGGGCGATCCGACCGCGGGCGCGGCCGACCAGGACGGTGAGCCCGGCGACAGCGACCTGTGGAGAGCCCAGGAACGCCTGCTGGACGGGGACGCCTGGGCCGCCATCGGGCTCGGCCTGGCCACCGTGGGCGTGGCCGTGGGCGGCGCCGTGGCCTGGCGGGCCCGGCACCTGTCCGACTGAMRPVHLASRAVAGIVLAGAAGGLSVGSAAADDGDLTVTVDGVSYRDRDQRDHEDLVGYSIRSLEGWRYEWLTEPMTMGRAGEVAFRRAPTTMPDGYCVVYVRVPGVGEWHEHSGGARCTEPRTSQPTAPAPSTPSAPTPTEAPEPTPTSAEPTPAEEDPTPSPTPSPTPSPTPSSSPSRSATPSPSPSRSASPSASPSPTPSTASPSVVAGLGDPTAGAADQDGEPGDSDLWRAQERLLDGDAWAAIGLGLATVGVAVGGAVAWRARHLSDNANANANANA
AK018_04535687def_4Peptide deformylaseATGGTGTGGACCTTCGGGCGTCGGCGGCCGACGACCTATCTGCTCGGCGAGCCCGCCGATCCGTACCCGGCGCAGGCGCCGGAGGCCTGTCGCGGTCGCGTGCTGCGGATCACCGAGATCGGCGAGCCCGTGCTGCACAGTCCGGCGCGGACGGTCGAGACGTTCTCGACCCCGGAGCTGGCCCGGCTGGTCGACGACCTGTTCGCCACGATGGAGGTGGCCCAGGGCGTCGGTCTCGCGGCACCTCAGGTGGGTGTCGACCTGCGCGTCTTCGTCTACGACCTGACCGACGACCGGGGCGACCGGCACGTGGGACACGTGGTCAACCCCGAGCTGACGGTCGACGGCTCGGCCGAGCTGGTGACCGAGGACGAAGGATGCCTGTCGGTCCCCGGCGCCTACGAGCCGCTCGCGCGCCGCGCCGCCGCGACCGTGCGCGGCGTCGACCAGCACGGGGGACCGGTGCAGCTCGAGGCCACGGGCTACCTCGCCCGGTGCTTCATCCACGAGAGCCAGCACCTCGACGGCGTCCTGTACTGGGACCACCTCTCGGGCGACCTCCAGCGCGACGCGTTGCGACAGCGGGACGAGGAGCGTCCGGGCATCCTCGACGAGCGGCGCGAGATCGCCGTCGAGCTGGGCAAGCGCCCGGCGGAGTACCCCACCGAGCCCGCCGGCGGGCGCTGAMVWTFGRRRPTTYLLGEPADPYPAQAPEACRGRVLRITEIGEPVLHSPARTVETFSTPELARLVDDLFATMEVAQGVGLAAPQVGVDLRVFVYDLTDDRGDRHVGHVVNPELTVDGSAELVTEDEGCLSVPGAYEPLARRAAATVRGVDQHGGPVQLEATGYLARCFIHESQHLDGVLYWDHLSGDLQRDALRQRDEERPGILDERREIAVELGKRPAEYPTEPAGGRNANANANANA
AK018_04536927hypothetical proteinATGCGTGCGCTCTGGGTGTACCTCGCGATCAGTCTCGGCCTGTCCTGGCTCGTCGCCCTGCCGCTGTGGCTCGGCGACGGCCTCGAGACGCCGCGGTTCACCCTGGTGGCCCTGGCGATGATGTGCACCCCGGCGCTGGCGGCGTTCGTCGTCGTCCGGTTCGTCGAGCGACGGCCCCTGGCCCGGTCCCTCGGCCTCGTCCCCGTCCGTCCCTGGGGCCGGTTCTTCGCCTGGATGGGCCTGGCCTTCCTCGTCCCGCTGCTCCTCGTGGCGGCGGCGCTGGTCGTCGCGGCCGCGTTCGGCCTCTACACCACCGACCTCACCGGCTTCTCCGGCCTGCAGGAGACCATCGACGCGCAGTTCGCCGCCCTCGGGGTGACCGAGGAGCTCGAGTTCCCGATCGAGGTCCTGGTGGTCGCCCAGCTCGCCAACATCGTCGTCGGCTCGGTCATCAACCTCGTGCCGGCCCTGGGCGAGGAGATCGGCTGGCGCGGCTGGCTGCTGCCCCGTCTGACCGACCGGTACGGCGTCCTCGTCGCCGTCCTGCTCTCGGGCGTGATCTGGGGTGTCTGGCACGCGCCGCTGGTCCTGCTCGGCTACAACTACCCCGACGCGTCACCGCTGGTGGCGCTGGCGACCATGATCGGCTTCTGCACCGTGACCGGTGCGGTCTTCTCGTGGCTGCGGATCCGCAGCGGCAACGTCTGGGCGCCCGCGCTGGCGCACGGGTCGCTCAACGCGGCCGCCGGGATGCACGTGCTGTTCGGCGCGGCCGGGACGTCGGTAGACACCACGCAGGCCACCATCCTGGGGTGGAGCGGCTGGATCGTCCCCCTGGTGCTCGTCGCCGTCCTGGCGGCGACGGGGCAGTTCCGACCGCGGTCCTCCGCGAGCGATCGCGAGCCGCTCGGACGCGTGGAACTCTGAMRALWVYLAISLGLSWLVALPLWLGDGLETPRFTLVALAMMCTPALAAFVVVRFVERRPLARSLGLVPVRPWGRFFAWMGLAFLVPLLLVAAALVVAAAFGLYTTDLTGFSGLQETIDAQFAALGVTEELEFPIEVLVVAQLANIVVGSVINLVPALGEEIGWRGWLLPRLTDRYGVLVAVLLSGVIWGVWHAPLVLLGYNYPDASPLVALATMIGFCTVTGAVFSWLRIRSGNVWAPALAHGSLNAAAGMHVLFGAAGTSVDTTQATILGWSGWIVPLVLVAVLAATGQFRPRSSASDREPLGRVELNANANANANA
AK018_04537816hypothetical proteinATGTCGTGGAGCCCGGGCGTCACCGCCCTGATCGTGGTCGCCGTCGGACTCGTCGCGGCCGGGGTCACGCTGCTGGTCCGCCGCACGGCACGGGGACTGGGGACGGTCGACCCGGCGCCGTGGACCGCCACCCTGTCGTACGTGGCCACGGCCTACGGGATCGTCATCGGCTTCTCCATCCTCTACCTGTTCGGCGCGTTCGCCGACGCCCGCGGCGCGGTGGGCGACGAAGCCACCTCGATCGGGACGGTGTTCGAGGAGGCCGCGCTGTTCGACGACGCCGGCGCGGACGTCCGGCACGCCCTCATCTGCTACGCCGAGGCCGCCTCGGCCGACGACTGGCCGGCGATGCGCGAGGGGACGGCGGCCCCGGAGGTCGACGCCGCCTACGCGGATCTCGTGGCGTCGCTGGGGCAGGACGCGCCGGCACCGGAGGGAGCCTTCTACTCTGCCGCCGCGACGAACACCGTCGTGCAGATCGGGTCGATCTCGACGGCGCGGGAGACCCGCATCGTCACGGCGGCGACCAGCCTCCCGGTCCTGCTGTGGGGCCTGGTCCTGGGCGGTGGGCTGCTCGTCGTCGTGCTGCTCTTCGTGGTGACGCTGCCGAGCGCTCCGCGCACGCAGGCCGTGCTCGTCGGACTCTCGACGACGTTCACGGCCGTGCTGGTCCTCCTGGTGATGGCGCTGAACAACCCTTTCGCCCCCGGACCGGGCCGGGTCTCACCGACGCTGATCGACGAGACCGTCGTCTCGATGACGCAGTCGGCGCCGGAGCTCGCCGACCTGCCGTGCCCGGCCGGGGGCGGCTCCTGAMSWSPGVTALIVVAVGLVAAGVTLLVRRTARGLGTVDPAPWTATLSYVATAYGIVIGFSILYLFGAFADARGAVGDEATSIGTVFEEAALFDDAGADVRHALICYAEAASADDWPAMREGTAAPEVDAAYADLVASLGQDAPAPEGAFYSAAATNTVVQIGSISTARETRIVTAATSLPVLLWGLVLGGGLLVVVLLFVVTLPSAPRTQAVLVGLSTTFTAVLVLLVMALNNPFAPGPGRVSPTLIDETVVSMTQSAPELADLPCPAGGGSNANANANANA
AK018_04538390hypothetical proteinATGGACGACGTGGAGGCGGTACCGGCGATCGGCGACTGGAGCATCGCCGAGAGCATCTCCGTGTGGATCGAGGTCGTGGCGATCGTCGTCATCACGGTCGCCGTCGTGGCGGCGTTCGTCACCGGCGCCAGGGTGCTGCGCACCGCCGGGGTGCGTGACGCCGTCGAACGCGTCAAGCAGTCGGTGGGACGGGGCCTGCTGCTCGGCCTGGACCTGCTGATCGCCGCCGACGTGATCCGGACCGTCACGCTCGAGCCGACGCTGCAGAACGTCGCGGCCCTGGGGCTGCTCGTCGTCGTGCGGACGTTCCTGTCCTGGTCGCTGATGGTCGAGCTGCACGGCCGGTGGCCGTGGCAGGGGGCCGCTGGGCGACGGCCCGTGGAGGACTGAMDDVEAVPAIGDWSIAESISVWIEVVAIVVITVAVVAAFVTGARVLRTAGVRDAVERVKQSVGRGLLLGLDLLIAADVIRTVTLEPTLQNVAALGLLVVVRTFLSWSLMVELHGRWPWQGAAGRRPVEDNANANANANA
AK018_04539669hypothetical proteinATGGGTGAGGCGGTCGGCGTCACGCTCGGCTACGCGGTCGGCATCGCGATCAGCCCGATCCCGATCGCCGCGGTGATCCTGATGCTCTTCAGCGGACGCGCCCGCGTCAACGGCATCGTGTTCATGCTCGCCTGGATCACCGGGGTCGCGGGCGTGGTCACGATCGTGGTGCTCCTGCCCGGACTCGGGACCGGCGGTACCGGCCCGGGCCCCGCGGTGGGATGGACCAAGCTCGTGCTCGGCGGCCTCCTGCTGGTGCTGGCCGGCCGGCAGTGGTCCAGGCGCCCAGGTCCCGACGACGAGCCGCCCGTCCCCGGGTGGATGTCCCGGATCGACGAGCTCCGTCCCGTCGCCGCGCTCGGCCTGGGACTCGCGCTGTCGGCGGTGAACCCCAAGAACCTGCTCCTCGCCGCGGCCGCGGGTGCCTCGCTGGCCGCGCTGCCGCTGTCGACCGGCGAGACGGTCGTCGCCGTCGTCGTCGTCACGGCCCTCGCCACGCTCACCGTGACGCTCCCGGTGCTCGGCTACCTGGTCGCCGGACGCCGGCTCGCCCCCGTGCTGGACCGCACCAAGACCTGGTTGATCGCGAACAACGCCACGGTGATGGCGGTGGTCCTGCTCGTCCTCGGGGTCAGCCTGCTCGGGGACGCGCTGCAGGTCCTGACCTGAMGEAVGVTLGYAVGIAISPIPIAAVILMLFSGRARVNGIVFMLAWITGVAGVVTIVVLLPGLGTGGTGPGPAVGWTKLVLGGLLLVLAGRQWSRRPGPDDEPPVPGWMSRIDELRPVAALGLGLALSAVNPKNLLLAAAAGASLAALPLSTGETVVAVVVVTALATLTVTLPVLGYLVAGRRLAPVLDRTKTWLIANNATVMAVVLLVLGVSLLGDALQVLTNANANANANA
AK018_04540198hypothetical proteinATGTGCACCATGATCCGAGCGGGCCTCGTGAGGGCCGCCGTCGTCCGCTTCGACGACGGCACCTGCCTCGCCGACGAGGGCGCCGCGGCCGATCTCGTCGAGGCCCTGCGTGGCACGTTGGCGACGAACTCGTCCTCAGGCGCCGACGGAGTGGTCCAGCGACTGCTCTGCGGGGGACCGGGCGCGTGGATACCGTGAMCTMIRAGLVRAAVVRFDDGTCLADEGAAADLVEALRGTLATNSSSGADGVVQRLLCGGPGAWIPNANANANANA
AK018_045411272xerC_6Tyrosine recombinase XerCATGGCACGACGCCCGACCGGCACGGGATCCGTCCACCAGCGCGCACGCGACGGCCGCTGGGTCGGCACGCTCGAAGCGGGATGGACCTCCCGCGGCACCCGACGACGCATCACCGTCACCGGCAGGACGAAGAGCGAAGCCCAGTCGAAGCTGCGCGCGAAGCAGCGCCAGATCGCCGCCGAGGGCATGCCGTCCGCCGGCACCGGCCGCGCCACCGTGAAGTCCTGGGCCGAGATCTGGCTCGATACCACCCAGACGCGCCTGCGCCCGGGCACGTGGAACGCGAACCGGTCCGTCGTGAACAACTGGGTCATCCCCGCCATCGGTCACCGTCGCCTTGACGCCCTCACCCCGGCCGACGTGCGCTCCGTCGCCCAGGGCGCCCTCGCCGCGGGCAAGGCGCCGTCGACCGCGCAGCGCGCGCAGGTCGTGCTTGCGAAGATGCTTCGCGACGCCATCGTCGAGGGCCATCAGGTGCCCCAGCGGGTCCTCATGGTCACCGGGCCCGGGAGGGGCGAGACGGACCGTGACGCCATCCCCCTCACGGACGCCCTGGCCCTGCTCGACGTCGCCGCCCGCCAGCCGGACGGCTCCCGGTGGGTGGCCGCGCTCCTGCAGGGGATGCGTCAGGGCGAGTGCCTCGGCCTGACGTGGGACGCGATCGACCTCGAGGCCGGCACGCTCGACGTGTCCTGGCAGCTGCAGCCGCTCCCCTACCGTCGCGCCCGCGACCGATCGTCTGGGTTCCGGATCCCGACCGGGTACACGGCACGGCAGCTCGACGGCGCCCTGCACCTGGTGCGGCCGAAGACCGCGAAGGGCACGCGCGTGATTCCGCTCGTGCCGTGGATGACCGCGGCGCTGACCGCGTGGCGTGAGGTCGCGCCGGCGTCACCGCACGGGCTGGTGTGGCCGCGCGAGGACGGCCGGCCGGAGACCGCGGTCGGAGACCGGGCCGCATGGGTCGCCCTGCAGGATGCCGCCCGAGTGGCGTGCGTGAGCGAGGGGCCGGCGAGCCGCGGGTTGGAGCTCGACGAGCGGGGCGGGCCGCTGGTCGGCCGGCACTACGTGCCGCACGAGGCGCGGCACACGACGGCGACGCTGCTGCTCGAGGCTGGGGTGAGCGAGCACGTGGTGACGGCGATCATGGGGCACAGCTCGATCGTGACGAGCCGCGGCTACCAGCACGTCTCGCAGACGTTGGCGCGGCGCGCGCTGGACGATGTCGCCGGGCGACTTGGGCTCGTTGAGGCTCAACTTCACTCTGAGTAGMARRPTGTGSVHQRARDGRWVGTLEAGWTSRGTRRRITVTGRTKSEAQSKLRAKQRQIAAEGMPSAGTGRATVKSWAEIWLDTTQTRLRPGTWNANRSVVNNWVIPAIGHRRLDALTPADVRSVAQGALAAGKAPSTAQRAQVVLAKMLRDAIVEGHQVPQRVLMVTGPGRGETDRDAIPLTDALALLDVAARQPDGSRWVAALLQGMRQGECLGLTWDAIDLEAGTLDVSWQLQPLPYRRARDRSSGFRIPTGYTARQLDGALHLVRPKTAKGTRVIPLVPWMTAALTAWREVAPASPHGLVWPREDGRPETAVGDRAAWVALQDAARVACVSEGPASRGLELDERGGPLVGRHYVPHEARHTTATLLLEAGVSEHVVTAIMGHSSIVTSRGYQHVSQTLARRALDDVAGRLGLVEAQLHSENANANANANA
AK018_04542639hypothetical proteinATGACCTGGATGAACGGATTCTCGGCATTCGTCGCCGCTGTCGCCGTCGCCATTGCTCTGACCGCCTGCTCCGCGCCAGATGGCGGCGGTGATGCCCCATCCGACACTCAGGCTCCGACCCAGTCGGCAACGCCGGAGCCCACAGACACGAGCGAGGCCGTCTCCGAGACGCCGGAGCCTTCCCCCTCTGGGCCGCCGACCGCCCAGCTCGGCGAGAAGGTGAAGCTCGAAGACGCGGTCGTGCGCATCGATGCTGTGGAGAAGCGCAAGGTCATCAAGAGTGACTACGGAGACGACCTCAAGTCGAAGGACGGAGGGTCGCTCTGGTTGCTGTCGATGTGGTGGAAGAACACCTCAAACGAGGCGGTCGAGAAGGTCTGCTGGGGGCCCTACAGTCTCGACCTGCGGGTCTTCGATACTCAAGACAGGGAGCTGCTGCTTGACGACGACTCGGGGATGATCCCTGAGAACGAGTGCAGCGACGGACTGATGACTGGGCAGTCGGGCAAGTGGTACCAGGCATTCCAAGGCCTCAAGGGCGCCGAGCCGGCGTACGCCATCCTGACGGATGACTCCGGCTACGGGGAGTCGCACGCGGTCGTGTTCGACGACAGCATCACCCTGACCTACTCAGAGTGAMTWMNGFSAFVAAVAVAIALTACSAPDGGGDAPSDTQAPTQSATPEPTDTSEAVSETPEPSPSGPPTAQLGEKVKLEDAVVRIDAVEKRKVIKSDYGDDLKSKDGGSLWLLSMWWKNTSNEAVEKVCWGPYSLDLRVFDTQDRELLLDDDSGMIPENECSDGLMTGQSGKWYQAFQGLKGAEPAYAILTDDSGYGESHAVVFDDSITLTYSENANANANANA
AK018_04543222hypothetical proteinATGAGCGAGAAGAAGAAGCAGCCGATGCCGTTCCTCGTGATCCTGGGCGCCGCGTCCATCGCGCTCGGGCTCGCCGCCTCGTTCAACGGTGGCAACGGTGCCCTGTTCATGCTGGCCGGCGTAGGCCTGCTGATCGTCGGATTCATCCAGCGCAGCTCCCAGCAGCGCAAGGCCCAGCACGAGGAGCTCATGGCTGAGATGAGGCGGCAGCGCGAGGAATAGMSEKKKQPMPFLVILGAASIALGLAASFNGGNGALFMLAGVGLLIVGFIQRSSQQRKAQHEELMAEMRRQREENANANANANA
AK018_04544417hypothetical proteinGTGACCCTCGAAGACCTGATCGCTGCTGCCGAGGAGATCGGCGTCCATGTGAAGTGGACGGATCTCGGTCGGCGCTCGGGGGAGCTGCGGCGCTCCGGCCTTGTGCTTCTCAACCACTGGAAATCAGTGCTGACGCAGCGGTGCACCCTCGCGCACGAGATGGGCCACTGGACTCTTGGTCACGACTGGACGCTCTACCACGACGTCGCCCGCGACGAGCGGGAGGCCGACGCCTACGCCGCTCGGCTCCTGATCTCCTCGGTCGACTACGCTCTCGCCGAGCGCACCCACGGCCCGCACCCCGGGGCGCTGGCTCGTGAACTCGACGTGTCGCGCCGGCTGGTCGAGATCTGGCAGGCCGACGTCTGGCGCGGCGCGGCCCGTCCGCGGGTCCAGCGTCACCTGCGTGCCGTCTAGMTLEDLIAAAEEIGVHVKWTDLGRRSGELRRSGLVLLNHWKSVLTQRCTLAHEMGHWTLGHDWTLYHDVARDEREADAYAARLLISSVDYALAERTHGPHPGALARELDVSRRLVEIWQADVWRGAARPRVQRHLRAVNANANANANA
AK018_04545363hypothetical proteinATGAACCTGTGGATCTCCTACATTCCGCTGCAGGCCTCTGCTCGCTGGGTTGGCGAAGACCGGGCTGACGAGTGGGAGTTGGACGTACTTGAGCCCCGGCCGCTCGACGGTGGGAACCTTGAGGTTCTGGTCGCCGGTCGGCTCCGGTATACCGAGCGCAAGCATGAGGTGCGCGTCCAATCTGCGCTCGTCAGCCGCCCTGTTTCGCGAGAAGAGTTTGAGGCGTTCGGTCCGGGCGAACTCGCGGATTCAGCCGAAGCGCTGCTTTACGCACACTGTCGTGGCATCGCCGTGGCGGCCGCCGGCGCCCTGGCGGAAGGCATCAATCCCCCTTCTGAGGCTCCGGAGCGGTTCACGCGATGAMNLWISYIPLQASARWVGEDRADEWELDVLEPRPLDGGNLEVLVAGRLRYTERKHEVRVQSALVSRPVSREEFEAFGPGELADSAEALLYAHCRGIAVAAAGALAEGINPPSEAPERFTRNANANANANA
AK018_04546429hypothetical proteinGTGGGAAAGCTCTGGGACATCGTCCAGGGGCATATCGACGCTTCGCCGTACCCGCCGTCTGAGCGGCAGGTGGCGACGAAGCTCGGCATCAGCCCCACGGCACTCTCGAACTGGCGTGCGCCGAAGCGACTGCCAGGCGTCGAGAACCTCCGCGCGCTCGCTCGGCTGGCCGGTGTGCCGTACTCCGAGGTTCTGGAGGCGGCTCTCCTGGACACGGGCTATACGGAGGAGGTGGGGAGCGATGCACGTTCCGCCCCCATGAAGGAGGCCGGCTCCCGGCCGGCCGATCGTGCAACGCTGACGAACCAGTCTGACGTGGCCGACGTGCGAACACTTGACGGCGACCTCGTCGACCCTGACGACCATGCCCTCGCCGCCCGTGACGCTGACGACGACGCGGAGGCCGAGGCCCAGCAGGAGGAGGCTTGAMGKLWDIVQGHIDASPYPPSERQVATKLGISPTALSNWRAPKRLPGVENLRALARLAGVPYSEVLEAALLDTGYTEEVGSDARSAPMKEAGSRPADRATLTNQSDVADVRTLDGDLVDPDDHALAARDADDDAEAEAQQEEANANANANANA
AK018_04547300hypothetical proteinATGGTCCTCACCGACCGCAGGAAGCTCGCGAAGTTGATGGTGATCCAGGACGTGTCACAGCGCGAGCTGGCGAAGGCGGCCGGTTGGAAGTCGCACTCGTACCTGGGCCGCCTACTCCGCGGGGAAGTCAACACGCTCGACGTCGAGCCCGCGGTCCGCATGGCCATGTACCTGGGAGTCGGCACGGACGACCTCTTTATGGCCAGAGCGTCCACCGACATAGCGCAGAGTGCGCCACGTCGACGCCCACTGACGGCAGCCCGAACCGGAACCCACCCCCACCTAGGAGTCCAGGCATGAMVLTDRRKLAKLMVIQDVSQRELAKAAGWKSHSYLGRLLRGEVNTLDVEPAVRMAMYLGVGTDDLFMARASTDIAQSAPRRRPLTAARTGTHPHLGVQAPGPT0027585_1581DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027585-antitoxin_higA_1-K21498NANA
AK018_04548801hypothetical proteinATGACCCAGATCCAGCCCTTCGACTTCGACGGCTCCACCGTCCGGGTCGTCACCGACGAGCACGGCGGGCCGTGGTTCGCGCTCGTCGACCTCTGCACCGTGCTCGGCATCGGCAACTCGCGCATGGTCGCCGCGCGTCTCGCCGACGACGAGAAGGGTGTCCGCCTGGCTGACACCCCTGGCGGACGGCAGAAGACCATGTTCGTGAATGAGCCGGGCATGTGGTCCGTGATCGTGCGCAGCGACTCCCCCGCTGCCGAGCCGGTGCGCCGCTGGGTCACCCACGACGTCCTCCCGGCGATCCGCAAGACCGGCTCCTACGGCACGCCGGCGCTCACCGGCCCGGAGCTGATGGCCGCGGCCCTCATCGAGGCCAACCGCGAGCTCGAGGCCCGGGACGAGCGGATCGCCGCGCAGGGGCAGCTGATCGAGTCGATGAAGCCGCGGGCGCAGTCGTGGGACCACCTCGCGGCGACCGACGGGGACTACTCGATGCGGGACGCGGCGCAGATCCTCGACCGGCACCCGGGGATCTCGACGGGCCAGAACCGGCTGTCGAAGACGCTGCGGGAGATCGGCTGGGTCGACCGGCAGGGGATCCCGTACCAGCGGCAGGTCGACTGCGGTCGGCTGCGGTCGCGGGCGCGCTACTACACGCATCGCCGCACGGGTGAGCGGGTGCTGGCCGACCCGCAGATCCGGATCACGCCGAAGGGTGTCTCGGACCTGCAGGGGCTGCTGGCCGGTGCCGAGCAGGTGCTGGTGCCGGCCGACGTCGTGGCGGCGGGTGAGGGCGGGTGAMTQIQPFDFDGSTVRVVTDEHGGPWFALVDLCTVLGIGNSRMVAARLADDEKGVRLADTPGGRQKTMFVNEPGMWSVIVRSDSPAAEPVRRWVTHDVLPAIRKTGSYGTPALTGPELMAAALIEANRELEARDERIAAQGQLIESMKPRAQSWDHLAATDGDYSMRDAAQILDRHPGISTGQNRLSKTLREIGWVDRQGIPYQRQVDCGRLRSRARYYTHRRTGERVLADPQIRITPKGVSDLQGLLAGAEQVLVPADVVAAGEGGNANANANANA
AK018_04549216hypothetical proteinATGGAGAAGGACGCGTACAGCCTCGCGGAGGCCGCGGGGAGGACGCCGTTCTCGGAGAAGCAGATCCGGCAGGCGATCAAGGCGACGGATCCGGCGGCGTGGCCGCCGCCGTTGCCGGCGAAGGTCGCGAGCCGCAACGCCGACGGGAGTCCGCGTCGCTACGTGGTGCTCGCGAAGGCACTCGAACGGTGGCTCGAAGGGCTGCCGGACGCCTGAMEKDAYSLAEAAGRTPFSEKQIRQAIKATDPAAWPPPLPAKVASRNADGSPRRYVVLAKALERWLEGLPDANANANANANA
AK018_04550141hypothetical proteinATGACGACCCCAACGATCCCGAGGACCCCGGTCGACCGGGACCTGGACGACACGCTGCCGGAGGTCGAGCCGATCTTCGCGGAGATGGCCGACGCCTGGGCACAGCTGCAGGCCGTGCTGGCCGAGGGGGTGGCGGCCTGAMTTPTIPRTPVDRDLDDTLPEVEPIFAEMADAWAQLQAVLAEGVAANANANANANA
AK018_04551240hypothetical proteinATGCTGCGCAACCTGACCAGGGCGCTGCGGCGTCGCCGCACTCCTCTGACCCCGCTCGACGTGATCGCGCCGGTGCCGCTGTTCGAGCAGCCGGCCCCGGTGTCTCCGACCGACCTGCCCGCCTACCTGCAGCCGGAGCTGCCCGGGAGCCTGCTGCCGACTCCGACGGCGGAGGTCGCCTACGACCCGGACACGGGCTGCCTGGTGCGGGTGCCGCTGCTGGGGGTGACGGGACGATGAMLRNLTRALRRRRTPLTPLDVIAPVPLFEQPAPVSPTDLPAYLQPELPGSLLPTPTAEVAYDPDTGCLVRVPLLGVTGRNANANANANA
AK018_04552927hypothetical proteinATGACCGCGACCACGACTGTGAAGGCGCCGGAGCCCGGCACGCCGGAGTGGCAGCGTCTCGTGACCGCCAGCAAGGTCGCCGCGATCGTGGGCCTGTCGCCGTGGGACTCTCCGCGGTCGGTGTGGCACACGCTGCGCGGTGAGGTGCCGTCGGACGACGGGAAGAACGCCGCGGCGAAGTCTCGGGGCCACTATCTCGAGGCGGGGATTCTCGATTGGTGGTGCGACCAGCACCCCGAGGTCGCCCGCAGGGAGCGCCAGCACTACGCCCGTCGTGATGACCTGCCGTGGGCGATGGCAACGCCGGACCTCGCTGGGTGGATCGCGCCGCAATCCGTCATGGGGCCCGACGTCGTCGTGGACGCGAAGACCGCTCGCGATGACGACGAGTGGGGTCGACCCGGCACCGACGAGGTTCCCGCGTACTACGTGGCGCAGCTGCAGTGGCAGATGCACCTGTCGGGTGCTCGTCGCGGCTACATCGCGCTTCTGACCACCAGGTTGGACTTCCGCGAGTACGTCGTCGAGTACGACGCCGCGACGGCCGAGTCGTTGGAGCGGATCTGCGCGGAGTTCTGGGCGTCGACGCTTGAGGAGAACGCGGCGCCGCCGCCGGACGACTCGACGGCGACGTTCGACACGATGCGGCGCCTGCACCCGGACATCGACCCGGACGAGCGGGTCGAGCTCGACGAGGGCCTGGCCAACGAGTTCGTGCAGGCCACACAGGGCCTCAAGGCGGCGCAAGCCGCGGACCGGCTGGCCCGCTCGCGGGTGCTGGACGTCATGGCGACGGCGCGACTGGCGGTGCTGACGGTCGACGGCGACAAGCCGGTGACGGTCGCACGCCGGCAGCCCAACGCCCACGGGATCTCGCTGGTCGCCGTGGCCAAGACCCTCCCCACCACTGCCTCGACGGAGGACTGAMTATTTVKAPEPGTPEWQRLVTASKVAAIVGLSPWDSPRSVWHTLRGEVPSDDGKNAAAKSRGHYLEAGILDWWCDQHPEVARRERQHYARRDDLPWAMATPDLAGWIAPQSVMGPDVVVDAKTARDDDEWGRPGTDEVPAYYVAQLQWQMHLSGARRGYIALLTTRLDFREYVVEYDAATAESLERICAEFWASTLEENAAPPPDDSTATFDTMRRLHPDIDPDERVELDEGLANEFVQATQGLKAAQAADRLARSRVLDVMATARLAVLTVDGDKPVTVARRQPNAHGISLVAVAKTLPTTASTEDNANANANANA
AK018_045531005hypothetical proteinATGAGCACGGAGCTGACGACCCGAGGCGTTCCGGCCTCGGACCTGACCATCACCACCGACCAGACGTTCTTCACCCAGAAGCAGATCGCCGCGCTCGCGCAGCTCGGCGTCGACCGGGCGAACAACGCGGACCTGGCGGTGTTCTTCCACCAGGCGACGCGCACCGGCCTGGACCCGTTCGCCCGGCAGATCTACATGATCGAGCGGCAGGGCAAGCAGACGATCCAGACGGGCATCGATGGGTTCCGGCTGGTGGCGCGTCGGGCGACCGACCGTTCGGCTGCGTCGTCGTTCGGGTACGAGGACACGTTGTGGTGCGGGGAGGACGGCCGCTGGACGGACGTGTGGCTGTCGAAGGAGCCGCCGGCCGCGGCGAAGGTGACGGTGCTGCGTGACGGTCAGCGGTACCCGGCGATCGCGCTGCACAGCGAGTACGTCGCGCTCAAGCGGGACGGGAACCCGAACAGCATGTGGCGGTCGAAGCCGGCGCTGATGCTCGCGAAGTGTGCGGAGGCGTTGGCGCTGCGCAAGGCGTTCCCGCAGGACCTGTCCGGGCTGTACACGTCGGACGAGATGGGGCAGGCGGACAACGTCCAGCAGGCCCCGGCGTCCGCGCAGGTGCAGGTGCAGCAGAGCTCGAGGTCGGGGTCGGCCAGGTTGGCGGCTGCGGTGCAGGAGCGGGCCGCGGCGTCCTCGACGTCGGCGCCCGAGCCCGAGCCGACGCCCGAGCCCGCGTCGCAGGAGTCGGACGGGATCACGGCGGCGCAGCACCGCAAGATCGGTGCGCTGATGCGTGACGTCGGGATCACCGAGCGTGACGCGGCGATCGCGGTCACGTCGCAGGCGATCGGCCGGCAGATCAAGACGCGCAACGACCTGACCGCCGTCGAGGCGGGGAAGGTGATCGACGTCCTGACCGGCGAGCTGAACGCGATCAACGGCGGATCGGGGGACGCGGAGGACCTCGTGGACGGCGAGGTCGTCGAGGGCGGTGAGGCCCGATGAMSTELTTRGVPASDLTITTDQTFFTQKQIAALAQLGVDRANNADLAVFFHQATRTGLDPFARQIYMIERQGKQTIQTGIDGFRLVARRATDRSAASSFGYEDTLWCGEDGRWTDVWLSKEPPAAAKVTVLRDGQRYPAIALHSEYVALKRDGNPNSMWRSKPALMLAKCAEALALRKAFPQDLSGLYTSDEMGQADNVQQAPASAQVQVQQSSRSGSARLAAAVQERAAASSTSAPEPEPTPEPASQESDGITAAQHRKIGALMRDVGITERDAAIAVTSQAIGRQIKTRNDLTAVEAGKVIDVLTGELNAINGGSGDAEDLVDGEVVEGGEARNANANANANA
AK018_04554303hypothetical proteinATGATCCGTCGCGTTTTGCTCCGGCTCGCTGAGTCGATTCGGCGCCATTACGGAGTGCAGGGACCGGCGGTGCACGCCGACCTGTCCCTTCCCGGTGGCCTCGCGGCCCCGTTGACCGAGGTCGAGAAGGCTGTGATCCGGGCTCGTGTCGCCCGCCCTGCGAAGCGACCGACTCGCCCCATGCGTCGCGACGGCTCTGGTCCCGAGCGGCTGCAGATCCGCATCGCTGCTCGTCTGCTCGCGATGGACGAGACGCGCGTCGAGGCCTTCGTCGCCAGCGAGCTCGATGGGGGTGCGCGATGAMIRRVLLRLAESIRRHYGVQGPAVHADLSLPGGLAAPLTEVEKAVIRARVARPAKRPTRPMRRDGSGPERLQIRIAARLLAMDETRVEAFVASELDGGARNANANANANA
AK018_04555420hypothetical proteinATGAGCACGCCCGCCGAGTTCGCTGTCGGGAGCCGGGTGCGCACCCGCGCTGTGTCGAGCCTCGCGCAGGTGGACCACGGGAAGTCGGGCGTGGTCGACGCCCTGTATCCGGGGACGCCGCACCCAATCGGCGTGGTCCTGGACGACGGCACGACGCCGGCGTTCTCGGCCGATGAGCTCGAGCCCGAGCCCGGTGAGGGGCGGGCCGCGTCCGAGGACATGGAGTGGATGGACGACCAGATCGAGGAGGGGCTGCGGCGTGGCCGTCGGCTCGAGGATCTGGACCACGCCGCCCGAGCCGTCGTCGACGCCGCGGACGAATGGGAGGCGGCATCGCCCGCCGGCTACTCCCGCACACACCAGGCGCTCACCGCTGCGGTCCGCACCTGGCGCGCCGTCCGGGACGGGAGGGCGTCATGAMSTPAEFAVGSRVRTRAVSSLAQVDHGKSGVVDALYPGTPHPIGVVLDDGTTPAFSADELEPEPGEGRAASEDMEWMDDQIEEGLRRGRRLEDLDHAARAVVDAADEWEAASPAGYSRTHQALTAAVRTWRAVRDGRASNANANANANA
AK018_04556123hypothetical proteinATGACCCGCCCCTCGCGCCGAACGGTCGAGAACCTCGCCGTGGCCACCATCGTGGTCCTCGCCGTGCTCCTGGTCCTGACGGTCGGTGGCACAGCCCACGCTCCCGGTAGGTGGTCGCTGTGAMTRPSRRTVENLAVATIVVLAVLLVLTVGGTAHAPGRWSLNANANANANA
AK018_04557366hypothetical proteinGTGAGGGCCGCGACCGACGCCCGGCTGCACGCCGAGGCCGACCGCCGCTCCGTCCCGGCGGTCGAGCCGCCGTCACTCCGCGACGTCATCACCGCTGGCGCCCACGTGCTCGGGATGACGCCGGAGCAGGTCGAAGAGCTCTCGGGTCTCGTGCTCGACGGCGAGGTCTACGACGTCGCCCGCGTGCGCACCGAGTGGGCAGCCTGCATCCGCGAGCCGCACCACGCCGAGGGCCACCGGCCCGGCGCCCTCATGGCGAACCGTCCGGCCGCCGTGGCCTCCGGTGAGCGCATGCGAGACATCCACCTCGCCTGCGGCCGCGTGCTGTCCCGCGACGTCGCCGACACCGGATGGAGGGCGGCATGAMRAATDARLHAEADRRSVPAVEPPSLRDVITAGAHVLGMTPEQVEELSGLVLDGEVYDVARVRTEWAACIREPHHAEGHRPGALMANRPAAVASGERMRDIHLACGRVLSRDVADTGWRAANANANANANA
AK018_045581149hypothetical proteinATGAGCACCCTCGTCAAGGCTTGGTGCTCGTGCGGCTGGCACGGCGAGTACGACACACAGGCACGCGCCGACTACGCCCGCCGCAAGCACTCCTGCGAGAAGCACGAAGCGGCACGGGAACGCGCCCGTCGCCGCGCCGAGTGGGAACGCACCACGCGCATCGCCACCGCCTGCAGGCACCACGGCCGGCACAAGCACGGCACGTCCGCCATGTACGTCCTGGACGAGTGCCGCTGCCGGCCGTGCACCGATGCGCGCCGCGTCGACGAGAACGCCCGCAACCGGGCAGCGGCCTACGGCCGTCCCGCCCTCGTCGACGCCCGGCCCGCCGCCGCGCACGTCCGGCAGCTGATGGCCGCCGGGCTGGGCTGGAAGCGGGTCGCTGAACTGTCCGGGATCCCGAACGGCTCGGTCTACGCGCTGCTGTACGGCCGCCCCGACCGCAACGGCGGCCAGCCCCGCACGAAGGCCCGCCAGGCGACCGTCGACGCCCTGCTCGCCGTCCCGTTCCCGACGCTTGACCACTTCCCCGACCACCGCCTCGTGCCCGCCCTCGGGCCCCGGCGCCGGGTCCAGGCGCTGCAGACCATCGGCTGGTCCGTCAACAAGGTCTGCGAGCACGCGGGACTGGACCGGCAGGCCGTCGACAAACTGCTCCGCGGCGGCGAGCAGACCCTGGCCCGCACCGCCCGCGCGATCCGCGACGTCTACGACCAGCTGTGGAACGTGGCCCCGCCCGCCGGCGACCAGCGGGACCGGATCGCGAAGGCCCGCTCGCAGCGCCGCGCCAGCGAGGCCGGGTGGGCGCCGCCGATGGCGTGGGACGACGACGCACTCGACCAGCCCGACGCCGAGCCCGCGCCCGGCTGGCGGGACGGCGAGTGCTCCGAGCCCGGCTGCCCGGGACCGGTGCTCGCCCGGGGCCTGTGCAGCGACCACTACCACCGCGCTCGCCGCGGCGGCCCCGGGCCGGCGCGCCTGGATCTGGACGAGTGGGCAGACCTCGTCCGGGCGGGCGAGCACCCCGACCGCGCCGCCGAACGGTGCGGAGTCCGCCTCGAGACCGTCCGCACCGCCGCGGTCCGCCAGGAGCGCCGCGACGTGCTCGACCTCATCACCTCCCACCGAGACGCCAGGAAGGCCGCATGAMSTLVKAWCSCGWHGEYDTQARADYARRKHSCEKHEAARERARRRAEWERTTRIATACRHHGRHKHGTSAMYVLDECRCRPCTDARRVDENARNRAAAYGRPALVDARPAAAHVRQLMAAGLGWKRVAELSGIPNGSVYALLYGRPDRNGGQPRTKARQATVDALLAVPFPTLDHFPDHRLVPALGPRRRVQALQTIGWSVNKVCEHAGLDRQAVDKLLRGGEQTLARTARAIRDVYDQLWNVAPPAGDQRDRIAKARSQRRASEAGWAPPMAWDDDALDQPDAEPAPGWRDGECSEPGCPGPVLARGLCSDHYHRARRGGPGPARLDLDEWADLVRAGEHPDRAAERCGVRLETVRTAAVRQERRDVLDLITSHRDARKAANANANANANA
AK018_04559324whiD_2Transcriptional regulator WhiDATGACCTCTCGAACTGGAATCCCGTCCCGCCGTGCCAGCGCCGGTGCCCTGCTCGCCGATGAGGAAGCCGTCCAGGCTGCCTGTCTCGACGAGGACGTCGACCCCGAGCTGTTCTTCCACCCCGAGCAGGAGCGCGGCCCCGACCGGCGAGCCCGTGCTGCGAAGGCGAAGGCGATCTGCTCGCGCTGCCCGATCATGGACCGCTGCCTCGACGTCGCCCTCGCGAACCGGGAGGCCTACGGCGTCTTCGGTGGGGTCGACGAGGACGAGCGGGCGCGGATGATCCGCCGCCACAAGCGCGAGGCCAAGGCGGCGGTCGCGTGAMTSRTGIPSRRASAGALLADEEAVQAACLDEDVDPELFFHPEQERGPDRRARAAKAKAICSRCPIMDRCLDVALANREAYGVFGGVDEDERARMIRRHKREAKAAVANANANANANA
AK018_04560390hypothetical proteinGTGAGCTACCTGCCCGCCCGCTCTGTCGTCGCTCTGCAGGTCGACATCCCGCGCGCCCTCGTCGTCTCGTCGAACGACCGGATGCACTGGCGGGCCGAGGCGAAGCTCGTCGCGGACCTGCGTCAGATCGCGAGCCTGCGGGCCCGCGGCATGAACACCGTGCCGGGACCCGTCGACGTCACGGTGACGGTCTCCTGGCCCGACCGCCGCCGCCGTGACACCCCGAACCTGTGGCCCACGGTGAAGCCGCTCATCGACGGCATGGTGGACGCCGGCGTTTTGGTCGACGACTCCGACGCCTACGTGCGGCGGACCACCTTCCAGGCGTCCTCCGAGCGGTGCCCGCGCGACCACGTGCGACTGCTCATTGCCATCGGGGAGGTGAGCTGAMSYLPARSVVALQVDIPRALVVSSNDRMHWRAEAKLVADLRQIASLRARGMNTVPGPVDVTVTVSWPDRRRRDTPNLWPTVKPLIDGMVDAGVLVDDSDAYVRRTTFQASSERCPRDHVRLLIAIGEVSNANANANANA
AK018_04561375hypothetical proteinATGCGTCTCTACCACTTCACCTGCGACGACGGCGCCCGTGGCATCCGCGCCGACCAGATCATCAAGCCCGGCATGGACAGCCTCGTCTGGCTCGCCGACACCCCCACCACACCCCCACCCACCGGCGCGTTCGGTCACCCCCTCGGCCTGACCATGCGCGCCACCCGCTGCGACCGCACCGTCTGGCGGCTCACCATCCTGGACGCCGAGACGATCGCCACCCCCTGGCAGCGGGTGCGGCACCTGTTCGCCGCCGACTGGGTGGACCGCCTCGAGCAGGCTCCCGGGGCGCTGCCGGCGCACTGGTGGGTTGCACCGCGGCCCATCACCGAGTGGTGGCTCGACCGGGCTCCACGACCAGGGCTGGGCGCCTGAMRLYHFTCDDGARGIRADQIIKPGMDSLVWLADTPTTPPPTGAFGHPLGLTMRATRCDRTVWRLTILDAETIATPWQRVRHLFAADWVDRLEQAPGALPAHWWVAPRPITEWWLDRAPRPGLGANANANANANA
AK018_04562324hypothetical proteinATGGCGTGGTTCAAGGTCGACGACAACCTCGCGATGCACGCGAAGGTCGTCCGCGCCGGCAACGCCGCCATGGGCCTGTGGGTCCGCGCCGGCTCCTGGTCGGCGCAGCAGCTCACCGACGGGTTCATCCCTGAGCACATGGTGGCCGCGCTGGGCACAGCGAAGCAGGCCGAGCGGCTCGTGAAGGTCGGACTGTGGCTGCCTGCGGAGGACAAAGGCGTCGCGGGATTCCTCTTTCACGAGTGGGCGGATCGCCAACCGACGAAAAATTCCGTCGAACAACGACGGGAGTACGAACGGGGCTCATCCGATCTGAGGGTGTAGMAWFKVDDNLAMHAKVVRAGNAAMGLWVRAGSWSAQQLTDGFIPEHMVAALGTAKQAERLVKVGLWLPAEDKGVAGFLFHEWADRQPTKNSVEQRREYERGSSDLRVNANANANANA
AK018_04563627hypothetical proteinATGTCCACGGACTACTCAGACTTCGAGTTCGAGCGCCGGTTCCTCGTGCGCGACCTGCCTGACGTGCTGCGCGACGCCCCGTCGCTGATCGTCCAGTCGTACTTCCTGTCCGACGGCGGCTACGCGCTGCGCGTGCGTGCCCAGGCCGGGGGAGTGGACGCCGCCCTGGACGGGCGCAGCGACGCGCGTGAGGTCCTCGACGTCTGGCGCGACCGGGTCGACTTCGCGGCGATGACGGTCAAGGGCCCCTCGGCCGGCGGCACCCGGTACGAGGCCGAGCGGCAGCTCGACCCGCTCGTCGCCGTCGAGCTCGTCCGTCGCGGTGGTGCGCGGGTCGTCAAGACCCGGTACGCCGCCTGGCTCGGCGCCGACGGCTGGTCGATCGACGTCTTCGGCGGGGCGAACCACCCCTTGATCGTCGCCGAGTGCGAGCGGTCGGGGCCGGTCACGGAGCTGCAGATCCCGGACTTCTGCGTCACCGAGATCACCGACGACCGGCGGTTCTCCAACGAGTCGCTGGCCGTGCGGCCTTACGGCGAGTGGGCGGCCTCCTACGCCGAGGAGCTCGCGGCCCGCGGCCCCTCGTTCCGCGACGACTTCGGGCCCAACCAGGAGCTGCCCTCCTGAMSTDYSDFEFERRFLVRDLPDVLRDAPSLIVQSYFLSDGGYALRVRAQAGGVDAALDGRSDAREVLDVWRDRVDFAAMTVKGPSAGGTRYEAERQLDPLVAVELVRRGGARVVKTRYAAWLGADGWSIDVFGGANHPLIVAECERSGPVTELQIPDFCVTEITDDRRFSNESLAVRPYGEWAASYAEELAARGPSFRDDFGPNQELPSPGPT0021560_7116DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021560-cyaB|gidA-K01768NANA
AK018_04564849hypothetical proteinGTGGACACGACGTCGCAGGGCGACGCACCCGCTCCGCGCTCCCGCCGTGAGCTCCGCGAGGCCGAGCAGGGCCGCGCCGCCCGGTCGTCCCGACGCCGGTCCTCCGGAGGACGGTCCCGGGCCCGTGGCGCGCACGCCGCTCCGGCCGGTCACACCTGGGTGACGCGGGCCACCGTGCTGGGCTCCCTCGCCGCCGTGACGATCGCCGGCCCCCTGACCGCCGGCGCCCAGGGCGACGAGCGGTCGCCGTTCGACCAGGAGACGCAGCCGTCCGGCCCGTCCACGCTGTCGCTGCTGCAGTCCGGCACCACGGCGCCCCCGACCGCCTCCGCCATCGCGGCCGTGCCGCGCGAGCGCAACATGGACGTCGCCAGCCGTGCGACCGCCGACCGTGAGCCGCTGCCGGACTGCGACCCGGACGCCCCCGTCGAGGGGAGCAACGGTCGGCTCGCCGACCACTCGCTCTGCGACCTGTGGCAGGGCGGCGAGCAGCTGCGGCCGGACGCCGCCGTCTCGCTGAGCGCGCTCAACGAGGCGTTCAAGGCGCGCTTCGGCCGGAACCTGTGCCTCGTCGACAGCTATCGCTCGCTCTCCTCGCAGTACGCCGTCAAGGCCAGCCGCGGCTACCTCGCCGCGACGCCGGGCACGTCGATGCACGGCTGGGGCCTGGCCATCGACCTCTGCTCGAAGGAGACGGGGAGCTCCGAGGTCTACGGCTGGCTCTGGGACAACGCCCCGATGTACGGCTGGGAGAACCCGCCGTGGGCGCAGCGCGGCGGTTCCGGCAAGTACGAGCCGTGGCACTTCGAGTTCCGCCCCGGGGTCGAGGAAGTCTCCACCTGGCACTGAMDTTSQGDAPAPRSRRELREAEQGRAARSSRRRSSGGRSRARGAHAAPAGHTWVTRATVLGSLAAVTIAGPLTAGAQGDERSPFDQETQPSGPSTLSLLQSGTTAPPTASAIAAVPRERNMDVASRATADREPLPDCDPDAPVEGSNGRLADHSLCDLWQGGEQLRPDAAVSLSALNEAFKARFGRNLCLVDSYRSLSSQYAVKASRGYLAATPGTSMHGWGLAIDLCSKETGSSEVYGWLWDNAPMYGWENPPWAQRGGSGKYEPWHFEFRPGVEEVSTWHPGPT0024055_556DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_045651080COG1253putative proteinATGAGCACCGGGACCGCACTGCTGATCGGCCTGCTGCTGCTCGTGGGCAACGCCTTCTTCGTCGGCGCGGAGTTCGCCGTGCTGTCCGTGCGGCGCTCGACCATCGAGCCGCGCGCGCAGGCGGGGGAGAAGCGCGCCAAGGTGGTCCTGTGGGCGATGGAGAACGTCTCGCTGATGCTGGCGTGCGCCCAGCTCGGCATCACCGTGTGCTCGACCGGTCTGGGCATCATCGCCGAGCCGGCGCTCGCGCACCTGCTCGAGGGCCCCTTCGAGCAGATGGGGATCCCGGAGCAGCTGGTCCACCCGGTGGCACTGGTCATCGCGCTCGGCATCGTGGTCTACCTGCACGTGGTGCTCGGCGAGATGGTGCCGAAGAACCTGGCCGTCACCGGTCCGGAGCGGGCCGCGCTGTGGTTCGCGCCGCCGCTGGTGCTCATCGCGCGGGTCGTGCGCCCGGTCATCGTGGCGCTGAACTGGGTCGCCAACCACGTCATCCGGATGCTGGGGGTCGAGCCGAAGGACGAGGTCGCCTCGGCCTTCACGGTCGAGGAGGTGCAGTCGATCGTCGAGGCCTCCCGCGCCGAGGGGGTGCTGGAGGACGACCAGGGGCTGCTCACCGGCGCGATCGAGTTCTCCTCGCGCACCGCCCGCGACGTCATGGTCCCCGTCGACGCTCTCGTGACGGTGTCGCCCGGCGCGACGCCCGACGACGTCGAGCACGAGGTCTCGCGCACCGGCTACAGCCGGTTCCCGATGGTCGAGACCGAGACCGAGGCCGAGTCCGAGTCCGTGCCGGACGGCGGCGGGGCGGCACGGCTGCTCGGCTACCTGCACCTCAAGGACGTCCTGTACGCCACCAACGGCAACCGGTCGCGGCCGGTGCCGATGTGGCGGGTCCGGGCCATGGCGACGGTCGACCCGACCGACGAGGTCGAGGACACCCTGCGGGCGATGCAGCGTTCCGGCGCGCACCTCGCCCGGGTCGACGACGCGGGCCGCACGGTCGGCGTCGTCTTCCTCGAGGACATCCTCGAGGAGCTGGTCGGCGAGGTCCGTGACGCGATGCAGCGCCGTCGGTGAMSTGTALLIGLLLLVGNAFFVGAEFAVLSVRRSTIEPRAQAGEKRAKVVLWAMENVSLMLACAQLGITVCSTGLGIIAEPALAHLLEGPFEQMGIPEQLVHPVALVIALGIVVYLHVVLGEMVPKNLAVTGPERAALWFAPPLVLIARVVRPVIVALNWVANHVIRMLGVEPKDEVASAFTVEEVQSIVEASRAEGVLEDDQGLLTGAIEFSSRTARDVMVPVDALVTVSPGATPDDVEHEVSRTGYSRFPMVETETEAESESVPDGGGAARLLGYLHLKDVLYATNGNRSRPVPMWRVRAMATVDPTDEVEDTLRAMQRSGAHLARVDDAGRTVGVVFLEDILEELVGEVRDAMQRRRNANANANANA
AK018_045661341hypothetical proteinGTGCTGACCGACGTGCTCATGCTCGGTGTCGGTGTGCTGCTCACGGCCGGTACCGCGATCTTCGTGGCGAGCGAGTTCTCCCTCGTGACCCTGGACCCCGCGGTCGTGGGGGCCGACGACGAGGAGGGCGACAGTCCCTCGCCCGGCCGGACGGGTCCCGATCGTCGGGACCGCATCGTCCGAGCCGGGCTCAAGCACCTGTCCACGGAGCTCAGCTCCGCGCAGGTCGGGATCACCGCCACCACCATCCTGCTCGGCTACACGGCCCAGCCCGCGCTGCTGTCGCTGTTCGGCGCCTCGTTCGCCGCGACGCCGCTGGGCGAGGGCGCCTCCGCCGTGCTCGCCGTCGTGCTCGCGCTCGTGGTGGTCAACGGCTTCTCGATGCTCTTCGGCGAGCTGATCCCCAAGAACTTCGCCCTGTCGGCGCCGCACGGCACCGCCCGGGCGGTCGTGCCGCTGCAGCGGGCCTTCACCATCGCGGCGGGCCCGCTCATCCGCGTCCTCAACGGGTCGGCGAACGCCATCCTGCGGCGGATGGGCGTCGAGCCGCGCGAGGAGCTCTCCGGCGCGCGCTCGGCCACCGAGCTGATCTCGCTCGTGCGGCGCTCGGCCCAGGAAGGGACGCTGGAGAAGGGCACCGCGACCCTGCTGGCCAACTCCCTGGAGCTGGACGAGCTGGCCGCGCGCGACGTGATGACCGACCGCACCCGCATGGTCGTGGTCAACCGGGACACGAGCGCGACCGAGGTCGTCGGGCTCGCGCACCGCACCGGCCACTCGCGGTTCCCGGTGATCGGCGACGACCGCGACGACGTCGTCGGCCTCGTGCACCTGCGTCGGGCGGTCTCGGTGCCGTTCGACCGGCGCGACGACGTGCCCGCGGGGGCGCTGATGGTCGACGCGCCGCGCGTGCCCGAGACCGTCAGCCTCGGCCCGCTGCTCGTCGAGCTGCGCGGGCTCGGGCTGCAGATGGCCGTGGTGGTCGACGAGTACGGCGGCACCTCCGGTGTCGTGACCCTGGAGGACGTCGTCGAGGAGCTGGTCGGCGACGTCACCGACGAGCACGACCGCCGTCGCGGCGGCGTGGTGCGGCTCGCGGACGGCGCCTGGTCCGTCCCCGGCGTCCTGCGGCCCGACGAGCTGGAGGAGTCGACCGGTCTGCGCGTGCCGGAGTCGCCGTCCTACGAGACCCTCGGCGGGCTCGTCATGGAACGGCTGGGCCGGTTGCCGCAGGTCGGTGACGAGGTCGCCTGCGAGGACGTCGTCCTGCGCGTCGACCTGGTCGACGGACGCCGCGTCGAACGGCTGCGCGTGCGATCCGGGCAGGAGGTGACGGCATGAMLTDVLMLGVGVLLTAGTAIFVASEFSLVTLDPAVVGADDEEGDSPSPGRTGPDRRDRIVRAGLKHLSTELSSAQVGITATTILLGYTAQPALLSLFGASFAATPLGEGASAVLAVVLALVVVNGFSMLFGELIPKNFALSAPHGTARAVVPLQRAFTIAAGPLIRVLNGSANAILRRMGVEPREELSGARSATELISLVRRSAQEGTLEKGTATLLANSLELDELAARDVMTDRTRMVVVNRDTSATEVVGLAHRTGHSRFPVIGDDRDDVVGLVHLRRAVSVPFDRRDDVPAGALMVDAPRVPETVSLGPLLVELRGLGLQMAVVVDEYGGTSGVVTLEDVVEELVGDVTDEHDRRRGGVVRLADGAWSVPGVLRPDELEESTGLRVPESPSYETLGGLVMERLGRLPQVGDEVACEDVVLRVDLVDGRRVERLRVRSGQEVTANANANANANA
AK018_04567729phoP_2COG0745Alkaline phosphatase synthesis transcriptional regulatory protein PhoPATGACCACCACTGCGAGCGGCCCCGGGCAGGGGCAGCAGAACGCCACCGTGCTCGTCGTCGAGGACGAGCCGGCCATCGCGACGGCCATCGCGCAGCGCCTCTCCGCCGAGGGCTGGCGCGTCGAGGTCGCCCGCGACGGCCTCGCCGGTGTCGACGCCGCCGCCCGGCTGCACCCGGACGCCGTGGTGCTCGACGTCATGCTGCCCGGGATCGACGGGCTGGAGGTCTGCCGGCGGATCCAGGCGGACCGCCCGACCCCGATCCTCATGCTCACCGCGCGCGACGACGAGACGGACATGATCATCGGCCTCGGCGTGGGCGCCGACGACTACATGACCAAGCCGTTCTCGATGCGTGAGCTGGTCGCCCGCGTCAAGGCGCTGCTGCGTCGGGTGGAGCGTGCCGCGCAGGCCGCGGCGTCGGCCCCTGCCGAGCCCCCGCTGGTCGCCGGCGACGTGACGATCGACCGCGCCCAGCGGCGGGTCCACCGCGAGGGCGAGGAGGTGCACCTGACGCCGACGGAGTTCGAGCTGCTGGTGATGCTCGCCAGCGCGCCCAAGACGGTCCAGACCCGCGAGAAGCTGCTCGCCGAGGTCTGGGACTGGGCCGACGCCAGCGGGACGCGCACCGTGGACTCGCACATCAAGGCCCTGCGCCGCAAGCTCGGGCCGGAGCTGATCCGCACGGTGCACGGGGTCGGCTACGCGTTCGAACCGCCGGCGGGCTGAMTTTASGPGQGQQNATVLVVEDEPAIATAIAQRLSAEGWRVEVARDGLAGVDAAARLHPDAVVLDVMLPGIDGLEVCRRIQADRPTPILMLTARDDETDMIIGLGVGADDYMTKPFSMRELVARVKALLRRVERAAQAAASAPAEPPLVAGDVTIDRAQRRVHREGEEVHLTPTEFELLVMLASAPKTVQTREKLLAEVWDWADASGTRTVDSHIKALRRKLGPELIRTVHGVGYAFEPPAGPGPT0002665_1224DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002665-phoP|phoB1-K07658NANA
AK018_045681095sasA_15Adaptive-response sensory-kinase SasAGTGCCCGCCGCGCGCGACGACGACGGCGGCCGACGGCGGGAGCACCGGCTCCCGGACGTCCGCCCCCTCGACCCGATCCACTCGCTCAAGGCCAAGCTCGGTCTGCTGGTGGTCGCCAGCGTGACCGTCGGGGTGCTCATCACCTGGGTGGGCCTGCGCAACGAGTTCGGGCCCAGCCGGACCTTCCCGCTGGCGATCATCGTCTCGCTGGTGCTCACCCAGCTCCTCGCCCGCGGCATGACGTCCCCGCTGCGGCAGATGACGGCGGCGGCCCAGGCGATGGCGGACGGCGACTACTCCATCCGGGTGCGCTCCACGAGCCGTGACGAGGTCGGCCAGCTCGCCGAGGCCTTCAACACGATGGCGGGCGACCTGGAGGCGTCCGACCGGATCCGCCGCGACCTCATCGCCAACGTCTCCCACGAGCTGCGCACCCCGGTGGCCGCGCTGCAGGCCCAGCTCGAGAACCTCGTCGACGGCGTCTCCGAGCCCACCCCGGCGACCCTCGAGCTGTCGCTGGAGCAGACGGAACGCCTCACGCGGCTGGTCACCTACCTGCTCGACCTGTCACGGGTGGAGGCGGGCGCGTCGGCGCTGACGCTGACGCAGTTCTCCGTGGGCGACTTCCTCGAGGAGTGCGCCGAGTCGATGTCGATGGTCGACGCCGCCAAGGGGCTGCACTATGTCGTCGACGTCACTCCCGAGGACCTCGGTCTGGAGGCCGACGTCGAACGTCTGCGCCAGGTGGTGACCAACCTGCTGCAGAACGCGATCCGGCACTCGCCGCACGGCGGCACGGTCCGGCTGGACGCCTACCCGGACCGCGACGACGTCGTGATCGAGGTGAGCGACGAGGGGCCGGGGATCGCTCCGGAGGACCGTGAGCGCGTGTTCGAGCGGTTCGCCAGCGGCGCCCCGAGCGTGCGGTCGCTGGCCAGCACGAGCGGCGGGACGGGGATCGGGCTGGCGATCGTGCGGTGGGCGGTGGACCTGCACGGCGGTCACGTCGAGGTCGCCGACACCGAGGTCGGTGCCACCATGCGGGTCGCGCTGCCCGCGGAGGCCCGCCCCGCCCCCGGGGTCACCACCGAATAGMPAARDDDGGRRREHRLPDVRPLDPIHSLKAKLGLLVVASVTVGVLITWVGLRNEFGPSRTFPLAIIVSLVLTQLLARGMTSPLRQMTAAAQAMADGDYSIRVRSTSRDEVGQLAEAFNTMAGDLEASDRIRRDLIANVSHELRTPVAALQAQLENLVDGVSEPTPATLELSLEQTERLTRLVTYLLDLSRVEAGASALTLTQFSVGDFLEECAESMSMVDAAKGLHYVVDVTPEDLGLEADVERLRQVVTNLLQNAIRHSPHGGTVRLDAYPDRDDVVIEVSDEGPGIAPEDRERVFERFASGAPSVRSLASTSGGTGIGLAIVRWAVDLHGGHVEVADTEVGATMRVALPAEARPAPGVTTEPGPT0003985_9DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-ENVELOPE_STRESS_RESPONSE,PGPT0003985-baeS-K07642NANA
AK018_045693870kgd_2COG0508Multifunctional 2-oxoglutarate metabolism enzymeGTGGTGTCCCCCAAGGCAGGGTCAGAGTCGATCAGCGCCGAGAGCGCGTCGTTCGGGGCCAACGAGTGGCTCGTCGACGAGCTGTACGAGCAGTACCTGAAGGACAAGAACGCGGTCGACCCCGCGTGGTGGGACTTCTTCGAGGACTACACCCCGGGCGAGAGCAGCGAGGCGTCGGCGAACGGTACACCGGCCCCGTCCGGCGGATCGGCGTCGTCGGCGACCACCGCTCCCGCGAAGACCGACGCCGGGGCGAGCACCGTCGCCGCCGCGGGCGACGACACCGCGGGCGAGAGCTCAAAGCCCGCCCCGGGCACGTCCTCGGCCGCCTCCGGGACGGCCGCGGCCGAGGCCTCTCAGCAGTCCACTCCTGCGCTCGTGCCGGCCGACCCGGAGATCTCCGCGGCCGACGCACCGGTGGCCGAGGCGCTGCCGGCCACGGCCCCGTACGCCGAGGTCGCGCGCACCGAGCCCGAGTCCGACGAGGACGAGGCCACGGACGACGTCCGGAAGCTGCGCGGCCCCGCCGCGCGCGTCGTGACGAACATGGAGGCCTCGCTCGAGGTGCCGACGGCGACGTCGGTGCGTGCGGTGCCCGCCAAGCTGATGGTCGACAACCGGATCGTCATCAACAACCACCTCAAGCGCGGCCGCGGCGGCAAGATCTCCTTCACCCACCTCATCGGGTTCGCCCTCGTCGAGGCGCTGGCCGACATGCCGGTGATGAACGCGCACTACGAGCAGACCGACGGCAAGCCGCACGTCGTCCAGCCCGCGCACGTCGGGTTCGGCCTCGCCATCGACCTCGCCAAGCCGGACGGCTCGCGCCAGCTGCTCGTGCCGAGCATCAAGAAGGCCGAGGAGCTCGACTTCGCGGGCTTCTGGGCGGCCTACGAGGACCTGGTGCGCAAGGCGCGCGGCGGCAAGCTCGGCATGGACGACTTCGCCGGCACCACGATCTCGCTGACCAACCCCGGCGGCATCGGCACCGTCCACTCCGTGCCGCGCCTCATGCAGGGGCAGGGCACCATCATCGGCGTCGGCGCCATGGACTACCCGGCCGAGTTCGCCGGCGCGTCCGAGGAGCAGCTCGCCCGGATGGGCGTCTCGAAGGTCATGACGGTCACCTCGACCTACGACCACCGCATCATCCAGGGCGCCCAGTCGGGTGAGTTCCTCAAGATCCTGGCCGGCAAGCTGCTCGGTCTCGACGGCTTCTACGACCGCGTCTTCGCGGCGCTGCGCATCCCCTACGAGCCCGTGCGCTGGGTCCGCGACAACACCGTCGACGCCGACGTCGAGGCGGCCAAGCCCGCCAAGATCGCCGAGCTCATCCACTCCTACCGCTCGCGCGGTCACCTGATGGCGGACACCGACCCGCTCGCCTACCGGCAGCGCAAGCACCCGGACCTGGACATCCAGAACCACGGCCTGACGCTGTGGGACCTGGACCGCACGTTCCCGACCGGCGGGTTCGGCGGCACCCCGAAGGCCACGCTGCGCGACACCCTCGGCCTGCTGCGCGACTCCTACTGCCGCTCGATCGGCATCGAGTACATGCACCTGTCCGACCCGGCCCAGCGCAAGTGGCTGCAGGACCGGCTCGAGCACGGGTACGCCCGCACCCCCCGCGAGGACCAGCTGCGCATCCTGCGCCGGCTGAACTCCGCCGAGGCCTTCGAGACCTTCCTGCAGACCAAGTACGTCGGCCAGAAGCGCTTCTCCCTCGAGGGCGGCGAGGCCGTCATCCCGCTGCTGGACGCGATCCTGTCCAAGGCCGCCGAGAGCGGGCTGGACGAGGTCGGCGTCGGCATGGCCCACCGCGGCCGGCTCAACGTGCTGGCCAACATCGCCGGCAAGAGCTACGGCCAGATCTTCAAGGAGTTCGAGGGCCAGCTCGACCCGAAGTCCGTGCAGGGCTCGGGTGACGTCAAGTACCACCTCGGCACCGAGGGCACGTTCACCGCCGAGACCGGCGCGACGACGAAGGTCTACCTGGCCGCCAACCCCTCCCACCTGGAGGCCGTGGACCCGGTGCTCGAGGGCATCGTGCGCGCCAAGCAGGACCGGATCGACCTCGGCGGCGACGGCTTCTCCGTGCTGCCGCTGCTCATCCACGGCGACGCCGCCTTCGCCGGCCAGGGCGTCGTGCCGGAGGTGCTCAACCTCGCCCAGCTGCGCGGGTACCGCACCGGCGGCACGATCCACGTGGTCATCAACAACCAGGTCGGCTTCACCACGGGGCCGTCCTCGTCCCGCTCGACGACGTACTCGACCGACGTGGCCAAGGGCTACCAGGTCCCGGTCTTCCACGTGAACGGTGACGACCCCGAGGCCTGCGTGCGCGTGGCCGAGCTCGCCTTCGCCTACCGCGAGCAGTTCGACCGCGACGTCATCATCGACATGGTCTGCTACCGCCGGCGCGGCCACAACGAGGGCGACGACCCCTCGATGACGCAGCCGCTGATGTACAACCTCATCGAGGCCAAGCAGTCGGTGCGCAAGCTGTACACGAAGAACCTCGTGGCCCGCGGCGACATCACCGTCGAGGAGGCCGAGCAGGCGCTCAAGGACTACCAGGCCCAGCTCGAGCGCGTCTTCACCGAGACCAAGGGCATGTCCTCGGACCGCCCCTCGGGCACCGAGGAGATCGCCGGGCTGGAGCGTCCGGAGTCCCAGCGCGAGGACGCCGGCACGATGGTCGGCTGGCAGACCGCCGTCTCGCACTCCGTGCTGGAGCGCGTGGGCGACGTCCACGTCCAGCCGCCGGAGGGCTTCACCGTCCACCCGAAGCTCGGCAAGCTCCTGGACAAGCGCCAGATCATGGCCAAGGAGGGCGACATCGACTGGGGCTTCGGCGAGCTCGTGGCCTTCGGGTCGCTGCTCATCGAGGGCACGCCGGTCCGCCTGGCCGGTCAGGACTCGCGCCGCGGGACGTTCACCCAGCGGCACGCCGTGCTGCACGACCGGCACACGGGCGCCGAGTGGACCCCCCTGCTCTACCTCTCCGGCGACCAGGCGAAGTTCTGGGTCTACGACTCCTCGCTCAGCGAGTACGCCGCGCTCGGCTTCGAGTACGGCTACTCCGTCGAGCGCCCCGACGCCCTGGTGCTGTGGGAAGCGCAGTTCGGCGACTTCGTCAACGGCGCCCAGACCGTCATCGACGAGTTCATCTCGTCGGCCGAGCAGAAGTGGGGTCAGAACTCCTCGGTCGTCATGCTGCTCCCGCACGGCTACGAGGGGCAGGGGCCCGACCACTCCTCGGCCCGCCTGGAGCGCTTCCTCCAGCTCGCCGCCGAGAACAACATGACCGTGGCGCAGCCCTCCACCCCCGCGTCGTACGCGCACCTGCTGCGCCGGCAGGCCTACGACCGCCCGCGCCGGCCGTTGGTGGTCATGACGCCGAAGCAGCTGCTGCGCCTCAAGGCCGCGGCCTCGAGCGTCGAGGACTTCACGACCGGCACCTTCGAGCCCGTGCTCGAGGACACCGAGGTGGCCCGCGGGAACCTCGACCCGGCCGGCGTGCGCCGACTCGTGCTCTGCACGGGCCGCGTCTACTACGACCTCGTCGCCGAGCGCAGCAAGCGCGGTGACACCGCCACGGCCATCGTGCGCATGGAGCAGCTCTACCCGTTCCCGGAGGAGCAGCTGCGGGCCGAGCTCGCGAAGTACCCGGACGCCGAGGTCGTCTGGGTCCAGGACGAGCCGCAGAACCAGGGCGCGTGGTCCTACCTGCACCTGGCGATGCCCGAGGACCTACCCCGGGTGCAGGTCGTCTCCCGGCCGGCGTCGGCGTCCACGGCCGCCGGCACGGCCAAGCGTCACCGCGAGGAGCAGGAGATCCTGCTGGACCAGGTGTTCAGCCGCTGAMVSPKAGSESISAESASFGANEWLVDELYEQYLKDKNAVDPAWWDFFEDYTPGESSEASANGTPAPSGGSASSATTAPAKTDAGASTVAAAGDDTAGESSKPAPGTSSAASGTAAAEASQQSTPALVPADPEISAADAPVAEALPATAPYAEVARTEPESDEDEATDDVRKLRGPAARVVTNMEASLEVPTATSVRAVPAKLMVDNRIVINNHLKRGRGGKISFTHLIGFALVEALADMPVMNAHYEQTDGKPHVVQPAHVGFGLAIDLAKPDGSRQLLVPSIKKAEELDFAGFWAAYEDLVRKARGGKLGMDDFAGTTISLTNPGGIGTVHSVPRLMQGQGTIIGVGAMDYPAEFAGASEEQLARMGVSKVMTVTSTYDHRIIQGAQSGEFLKILAGKLLGLDGFYDRVFAALRIPYEPVRWVRDNTVDADVEAAKPAKIAELIHSYRSRGHLMADTDPLAYRQRKHPDLDIQNHGLTLWDLDRTFPTGGFGGTPKATLRDTLGLLRDSYCRSIGIEYMHLSDPAQRKWLQDRLEHGYARTPREDQLRILRRLNSAEAFETFLQTKYVGQKRFSLEGGEAVIPLLDAILSKAAESGLDEVGVGMAHRGRLNVLANIAGKSYGQIFKEFEGQLDPKSVQGSGDVKYHLGTEGTFTAETGATTKVYLAANPSHLEAVDPVLEGIVRAKQDRIDLGGDGFSVLPLLIHGDAAFAGQGVVPEVLNLAQLRGYRTGGTIHVVINNQVGFTTGPSSSRSTTYSTDVAKGYQVPVFHVNGDDPEACVRVAELAFAYREQFDRDVIIDMVCYRRRGHNEGDDPSMTQPLMYNLIEAKQSVRKLYTKNLVARGDITVEEAEQALKDYQAQLERVFTETKGMSSDRPSGTEEIAGLERPESQREDAGTMVGWQTAVSHSVLERVGDVHVQPPEGFTVHPKLGKLLDKRQIMAKEGDIDWGFGELVAFGSLLIEGTPVRLAGQDSRRGTFTQRHAVLHDRHTGAEWTPLLYLSGDQAKFWVYDSSLSEYAALGFEYGYSVERPDALVLWEAQFGDFVNGAQTVIDEFISSAEQKWGQNSSVVMLLPHGYEGQGPDHSSARLERFLQLAAENNMTVAQPSTPASYAHLLRRQAYDRPRRPLVVMTPKQLLRLKAAASSVEDFTTGTFEPVLEDTEVARGNLDPAGVRRLVLCTGRVYYDLVAERSKRGDTATAIVRMEQLYPFPEEQLRAELAKYPDAEVVWVQDEPQNQGAWSYLHLAMPEDLPRVQVVSRPASASTAAGTAKRHREEQEILLDQVFSRNANANANANA
AK018_04570993iolS_3COG0667Aldo-keto reductase IolSATGCAGAAGCGGGTACTCGGCCGGACCCGTCGGATGGTCTCGGTCGTCGGCCTGGGCACCTGGCAGCTCGGCGCGGACTGGGGCGAGGTGAGCGACGCTGACGCGCGTGCCGTGCTCGAGGCGTCGCTCGAGGCCGGGGTGACCTTCTACGACACCGCGGACGTCTACGGCGACGGCCGCAGCGAGCAGACGGTCGGCGCGTTCCTCGCCGACCACCGCGACGAGGGCCTCACCGTGGCGACCAAGATGGGGCGCCGCGCCGACCAGGTCCCGGAGAACTACGTCCTGGAGAACTTCCGGTCCTGGACCGACCGGTCGCGCGCCAACCTCGGCGTGGACACCCTCGACCTGGTCCAGCTGCACTGCCCGCCGACGCCGGTGTACTCCCGCGACGAGGTCTACGACGCCCTGGACACGCTGGTGGACGAGGGTGCCATGGCCTCCTACGGCGTCTCCGTGGAGACCGTCGACGAGGCCCTGACGGCCATCGACCGTCCCGGGGTCGCGACGGTGCAGATCATCCTCAACGCCTTCCGGCACAAGCCGCTGGAGAAGGTCCTGCCGGCGGCGTCCGAGGCCGGGGTCGGCATCATCGCCCGGGTCCCGCTGGCGTCCGGCCTGCTGTCGGGCCGGTACACCAAGGACACCACCTTCGCCGAGAACGACCACCGCACGTTCAACCGTGGCGGCGAGGCCTTCGACGTGGGCGAGACGTTCTCCGGCGTCCCGTTCGACGTCGGCGTCGAGGCGGCCGCGTCCTTCACCGAGCTCGCCGAGGGGCTCGAGCAGGACCTCACGCCCGCCCAGGCCGCGATCGCGTGGATCTGGCAGAGCCCGGGCGTCTCGACCGTGATCCCCGGTGCGCGCACCCCGGAGCAGGCCCGGCTCAACGCCGCGGCCGGCGAGGCCGGCAGCCTGGGACCGCTGTTCGCCTCGCGCGTGCGCGACCTCTACGACTCCTCGATCCGCGAGCACGTGCACGACAGGTGGTGAMQKRVLGRTRRMVSVVGLGTWQLGADWGEVSDADARAVLEASLEAGVTFYDTADVYGDGRSEQTVGAFLADHRDEGLTVATKMGRRADQVPENYVLENFRSWTDRSRANLGVDTLDLVQLHCPPTPVYSRDEVYDALDTLVDEGAMASYGVSVETVDEALTAIDRPGVATVQIILNAFRHKPLEKVLPAASEAGVGIIARVPLASGLLSGRYTKDTTFAENDHRTFNRGGEAFDVGETFSGVPFDVGVEAAASFTELAEGLEQDLTPAQAAIAWIWQSPGVSTVIPGARTPEQARLNAAAGEAGSLGPLFASRVRDLYDSSIREHVHDRWNANANANANA
AK018_04571939yihR_2COG2017putative protein YihRGTGACCGTGAACACGAGCCCGAGCACCGAGACGGCACCCACGCCGTCCGGCACCCAGTACCACCTGTCCGCCGGCACCCACCGCGCCACGATCGCCGAGGTCGGGGCCATGGTGCGCGAGTACACCGTCGACGGCCTCGACGTCTTCGTGCCGTTCGCCGAGCACGAGCCCGCACCGGTCTTCAACGCCGCCGTGCTGGTCCCGTGGCCCAACCGTCTGCGCGACGGCCGGTACACCGCCGACGGCGAGACGTACCAGCTCCCGCTGAGCGAGCCCGACCGCGGCACGGCCCTGCACGGGCTCGGCTGCTGGTACCGCTGGTCGGCGGTCGAGGTCGCCGACGACGCGGTCACGCTGGAGCTGGCGCTGCCTGCGCAGAAGGGCTGGCCGTTCCAGCTCACCACCCGCGTGCGCTACTCCCTGGACGCCGAGCGCGGCCTCGAGATCCGGGTGACCACCCGCAACGTCGGCACCGGCACGGCACCCTACGGCGTCGGGTTCCACCCCTGGCTCTCCGCCGGCGGCGCCGACCTCGACGAGTGCACCGTGCGCCTGGACGCCACCGAGCACGTCACCGTCGACGACCGGCTGCTGCCCACCGGCGTCGAACCGGTCACGGGCGACCACGACCTGCGCTCGACGCGCTCGCTGGCCGGGCTCGACCTGGACGACGCCTGGGTCTCGGCGACGCGGGACGACGACGGACTGTCGTGGTGCCGGCTGGGGCGCCCGGACGGACGGACCGCCGCCGTCTGGATGGACGACTCGATGGACTGCTGGCAGGTCTGCTCGGCGAACCACATCGCCGGCCACGAGCGCTTCGGTCTGGCCGCCGAGCCCATGAGCTGCTACGCCGACGCCTTCAACTCCGGCGACCGGCTCGTCCGGCTGGCCGCGGGCGACTCCCACGAGGTCCGCTGGGGTGCCACCCTGCTGTGAMTVNTSPSTETAPTPSGTQYHLSAGTHRATIAEVGAMVREYTVDGLDVFVPFAEHEPAPVFNAAVLVPWPNRLRDGRYTADGETYQLPLSEPDRGTALHGLGCWYRWSAVEVADDAVTLELALPAQKGWPFQLTTRVRYSLDAERGLEIRVTTRNVGTGTAPYGVGFHPWLSAGGADLDECTVRLDATEHVTVDDRLLPTGVEPVTGDHDLRSTRSLAGLDLDDAWVSATRDDDGLSWCRLGRPDGRTAAVWMDDSMDCWQVCSANHIAGHERFGLAAEPMSCYADAFNSGDRLVRLAAGDSHEVRWGATLLPGPT0017825_3786DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
AK018_04572591hypothetical proteinGTGCGCATCTGCGTGGTGGGCGACGAGCTCAGCGTGGGCGTCGGTGACGGCCGCGCCCTGGGCTGGACCGGACGCGTGCTGGCACGGACCCGGTTCGACCGACCGGCGATGACCTTCACGCTGGCGGTGCCGGGCGAGACGACGTCGACCCTCGGCGCACGCTGGGAGGCCGAGACGGAGCCGCGGTTCGGACCGGAGCAGACCCACGACAACCGTCTGGTGGTCGCGCTGGGCCGCCACGACGTGGACTCCGGCCTGTCCGTCGCCCGGTCACGGCTGAACCTGGCCAACATCCTCGACGTCGCCGACAACCGGCACCTGTCGACGTTCGTCGTCGGCCCCCCGCCGGGGCGGCCGGAGGACGGCGGCCGGATCGCGGAGCTCTCCGCGGCCTTCCAGGACGTCGCGAGCCGCCGACGCGTGCCCTACGTGGACACCTACACTCCGCTCGCCCAGCACGAGCAGTGGCTGGCCGACCTCGCCACCACGGGGTCGACCTACCCCGGGCAGGCCGGCTACGGGCTCATGGCCTGGCTGGTGCTGCACACGGGCTGGCACTCGTGGCTCGGCCTGCCGCACGAGACGGAGTGAMRICVVGDELSVGVGDGRALGWTGRVLARTRFDRPAMTFTLAVPGETTSTLGARWEAETEPRFGPEQTHDNRLVVALGRHDVDSGLSVARSRLNLANILDVADNRHLSTFVVGPPPGRPEDGGRIAELSAAFQDVASRRRVPYVDTYTPLAQHEQWLADLATTGSTYPGQAGYGLMAWLVLHTGWHSWLGLPHETEPGPT0001840_2344DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001840-tesA-K10804NANA
AK018_04573801hypothetical proteinATGAGCACCGAGTCCTGGGCGATCGCCGCCCCGCAGACCGTCGAGGTCACGGGTGTGGGTGCGCTGACGATCCGGCTCCAGGACGGCCGGGCGGACGTCACGGTCGACCCGGAGACCACCCAGGTCACGCTCGAGGTGCTCGAGGTCGGGGAGAAGCCGCTGCACGTCGACCGCGACGGCGACCGGCTGCGCATCGGCTACGAGCGGAACGCGGTCGAGGCGTTCGTGGCCCGTGTGCGGTCGCTCGGCAGCTCCGAGCGGGCCGTCGTGCACGTCACCGTCCCCCCGCAGGTCCGGGTCGACGTCGGCACGACCGAGGCGGACGTCGAGGTGGCCGGCACGTCCGGGACCGTGGTCAAGACGGTCACCGGCACCGTGCGCACGGCCGGCACGCACGGGTCGCTGTACCTGCGGTCCGTCTCCGGCGACGTGGCTTCCTCGGGGCACACCGGCGACGTCTCCGCGCAGGTCGTCTCCGGCGCCCTCGCCCTGGAGGGCACCCTCGGCCGGGTCACCACGAGCAGCGTGTCCGGTGCCGTGGCGGTCACCGCCGTCGGCACCGTGCCGATGGTGTCGGCCAAGACCGTCTCGGGCGACGTCGCGCTCCGGCTCGACGCCGGCACCCCCGTCAGCCTCAAGGTGCGCGGCGCGGCCGGGCAGGCGGTGCTCGACGGCGAGGTGCTGCCCTCGACCACGCGCACGCTGTCCGTCGACCACGGCGAGACCCCGACCGACGGCCGGAGCATCGCCTACGTGACGGCCACCGTCACCAGCGCGCGGGTCATCGTCTCGCGCGGCTGAMSTESWAIAAPQTVEVTGVGALTIRLQDGRADVTVDPETTQVTLEVLEVGEKPLHVDRDGDRLRIGYERNAVEAFVARVRSLGSSERAVVHVTVPPQVRVDVGTTEADVEVAGTSGTVVKTVTGTVRTAGTHGSLYLRSVSGDVASSGHTGDVSAQVVSGALALEGTLGRVTTSSVSGAVAVTAVGTVPMVSAKTVSGDVALRLDAGTPVSLKVRGAAGQAVLDGEVLPSTTRTLSVDHGETPTDGRSIAYVTATVTSARVIVSRGNANANANANA
AK018_04574282rsrA_2Anti-sigma factor RsrAATGAGCGCGGACGTGACCCCCATCCCGCACGAGCCCGCCGAGGGCGAGAGCGACTGCGAGCACGCGCTGGGGCACCTGTACGAGTACCTCGACTCGGAGATGACCGAGGACGACGAGCACCGCATGCGTGCGCACGTCGCGCACTGCTCGCCCTGCCTGGCCGAGCTGAGCGTCGAGGAGCTCGTCAAGAAGCTCGTCAAGCGGTCCTGCGCGGAGCAGGCACCCGCGACGCTGCGCCTGCGCATCCGTGAGCAGATCACGGTGATGCGCGTCTCGGGCTGAMSADVTPIPHEPAEGESDCEHALGHLYEYLDSEMTEDDEHRMRAHVAHCSPCLAELSVEELVKKLVKRSCAEQAPATLRLRIREQITVMRVSGNANANANANA
AK018_04575669sigRCOG1595ECF RNA polymerase sigma factor SigRATGACCCAGGATGACGACGCGGCGACCACCACCCCTCAGCCGACCGACGACGAGGTCGGCGAGGACACCGAGCGCGCTCCCGACGAGGAGTCGGCGGCGGACCGTGCCGCGCGCTTCGAGCGCGACGCGATGGAGTACATCGACCAGCTGTACTCCGCGGCGCTGCGCATGACGCGCAACCCGGCCGACGCCGAGGACCTCGTGCAGGAGACGTTCGCCAAGGCGTTCGCCGCCTTCCACCAGTACAAGCCCGGCACCAACCTCAAGGCCTGGCTGTACCGGATCCTGACGAACACCTTCATCAACAACTACCGCAAGAAGCAGCGGCAGCCGCAGCAGGCGCAGACCGACGACATCGAGGACTGGCAGATCGCCCGGGCGGCGACCCACACCTCGCAGGGGCTCCGCTCGGCCGAGGCCGAGGCGCTCGACCGGCTCCCGGACTCCGACGTGAAGCGGGCGCTGCAGGAGCTGCCCGAGGACCGCCGGATGGTCGTGTACTACGCCGACGTCGAGGGGTTCCCCTACAAGGAGATCGCGGAGATCATGGGTACACCGATCGGGACCGTGATGTCCCGGCTGCACCGTGGACGACGGCAGCTGCGCGAGCTGTTGGCGGACTACGCCGCGGACCGAGGACTCGCCGGAGCGCGCGGAGGAGAATCATGAMTQDDDAATTTPQPTDDEVGEDTERAPDEESAADRAARFERDAMEYIDQLYSAALRMTRNPADAEDLVQETFAKAFAAFHQYKPGTNLKAWLYRILTNTFINNYRKKQRQPQQAQTDDIEDWQIARAATHTSQGLRSAEAEALDRLPDSDVKRALQELPEDRRMVVYYADVEGFPYKEIAEIMGTPIGTVMSRLHRGRRQLRELLADYAADRGLAGARGGESPGPT0014960_2654DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_04576966cdhR_2COG4977HTH-type transcriptional regulator CdhRATGATCGACAAGGTCGCCGCCGTCGTCGTCCCCGGCGTCGCGCCGTTCGAGATGGGCATCGCCTACGAGGTGTTCGGCATCGACCGCCGCGACACCGGCGGGCCGACGTTCGACTTCACGCTGTGCACCCCCGAGCCCGGACCCGTGCCGACCAAGGGCGGGTTCTCGGTCCACGTCGACGCCGGGCTCGGGGCGACCGAGGACGCCGACGTCGTCGTCGTGGTCGCCTACGACGTCCTCGCCGACGCCGAGCACGTCGACGTCCCGCCCGCGTACCTCGACGCGATCCGGGCCGCGCACGAGCGGGGCGCCTGGATCGTCTCGCTGTGCTCCGGCGCGTTCGTGCTCGCCGCGGCCGGTCTGCTCGACGGACGGCGGTGCACCACCCACTGGCTGTTCGCGGACCGGCTCGCCGCGGCGGCGCCCCGGGCCGACGTCGACCCCGACGTGCTCTACGTCGCCGACGGCCGGGTGCTCACCAGCGCCGGCACGGCTGCCGGCATCGACGCGTGCCTGCACCTGGTGCGCACCGAGCTCGGGGGAGAGGCCGCCCGTGCCGTCGCCCGCCGCATGGTCGTCCCGCCGCAGCGCGACGGCGGGCAGGCGCAGTACGTCGTCGACCCCGTCCCGCAGCAGGGCGACTCGCTGGCCGACCTGCTCGCCTGGATGCGCGGACACCTCGAGCTCGACCACAGCGTGCCGGCGCTGGCGCGGCGCGCGATGCTCTCCGAACGGACCTTCGCCCGCCGCTTCCGCGCCGAGACGGGTACGACGCCGGGTGCCTGGCTGACGCGGCAGCGCGTCGCCCGCGCGCAGGAGCTCCTGGAGCAGCCCGGCGTCCCGGTCCAGGAGGTCGCCCGGCTCGTCGGGTTCGGCAGCGCCGCCGTCCTGCGGCACCACTTCGCGCGCCTGCTCGGGACCAGCCCGACGTCCTACCGACGGCGGTTCGCCGACGTCGCGTCCTGAMIDKVAAVVVPGVAPFEMGIAYEVFGIDRRDTGGPTFDFTLCTPEPGPVPTKGGFSVHVDAGLGATEDADVVVVVAYDVLADAEHVDVPPAYLDAIRAAHERGAWIVSLCSGAFVLAAAGLLDGRRCTTHWLFADRLAAAAPRADVDPDVLYVADGRVLTSAGTAAGIDACLHLVRTELGGEAARAVARRMVVPPQRDGGQAQYVVDPVPQQGDSLADLLAWMRGHLELDHSVPALARRAMLSERTFARRFRAETGTTPGAWLTRQRVARAQELLEQPGVPVQEVARLVGFGSAAVLRHHFARLLGTSPTSYRRRFADVASPGPT0014658_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NANANA
AK018_04577147hypothetical proteinATGACCATGATCATTCTGCTGCTCGTCCTGTCGCTCGCGACCCCGTGGTTCGTCGCCCTCGTCCGCACGATCCGGCGCGACGGGCTCGGGAGCCGCCGTCCGCCCCGGTCCCACCCCGAGTGGTGGGAGGGGGCGGAGTGGCGATGAMTMIILLLVLSLATPWFVALVRTIRRDGLGSRRPPRSHPEWWEGAEWRNANANANANA
AK018_04578384hypothetical proteinATGTCTGTCGTGCCCTCGACCCTCCGGCGCGCCGCTGCGCCCGCCGCCCTGCTCGCGGCAGCCGTGGTGCTGTCGGGCTGCGGGGACGTCGGCCTGGCCCCGGAGGAGCCGTCGGACGTGCGGGGCGTGGTGGCCGACGGCGGCGCGGTCGACGACGACGACGCCCACGCGGGCCGGCCGGTCCTGGTGCGGGCCTCGGACCCCTACTACGAAGGGATGGCGCTGCTGACCGACGGCACGGAGGTGCTGGACGTCGACGGCTCCGCGGCGGACGTGGCCGTGCTCGTCGCCGGGGCGATGGTCGAGGTGTGGGTCGACGAGGTCTGCCAGGAGTCGGACCCCGTGCAGTGCGGCGTCGAGGTCGTGCAGCTCCTCGAGCCGTAGMSVVPSTLRRAAAPAALLAAAVVLSGCGDVGLAPEEPSDVRGVVADGGAVDDDDAHAGRPVLVRASDPYYEGMALLTDGTEVLDVDGSAADVAVLVAGAMVEVWVDEVCQESDPVQCGVEVVQLLEPNANANANANA
AK018_04579732hypothetical proteinATGCTGCTCCGACGTCTCGCCCGCCCCCTGCTGGCCGTCCCGTTCGTCTACGACGGCGTCTTCACCGCCCTGCGACCGGCCGAGCACACCGAGGCCGCCCGTCGCGGCGCCGACACCGTCACGGAGGCGCTCGGCGTCGAACCTCTGGACGACACCCAGGTCTCCCTGCTCGTGCGCGCGCACGGCGGCGCGACGGCGCTGGCCGGCCTGCTGCTCGCCGTCGGGCGCACACCGCGGTCCGCCGCCCTCGCGCTCGCCGCGCTCACCGCGCCGCTGGCCGTGGTCAACCAGCCCTTCACCAGCAAGGGCGACGAGCGGCGCGAGCGGACCGACAAGTTCGTCAAGAACCTCGGCGCGATCGGCGCCGCCGTCATCGCCGGCATCGACCTCGAGGGACGCCCCGGCGTCTCCTACCGCATCGCCCAGAAGCGGGCCGCCGCCTCGAAGTCCGCCCACCACGCGGTCGAGAGCGCGTCGACGTCGGGCAAGCATGCCGTCGAGAACCTGGAGCGGTCCGGCAAGCACGCCGTGGCGAACGCCAAGCGGTCCGCCACCTACGCCGGCAGGTCCGCCTCGGCGTCGGCCCGGCACGCGACGCAGCAGGTCGAGCGAGAGCTGCGGTCCACCGCCAAGAACGCGAAGGCGAGCGCCAAGAGCGCCAAGGCCACCGCGAAGAGCGCCCGGGCGTCCGCCGAGAAGGCCGCGGCACAGGCTGCCGCGAAGGTGTCCTGAMLLRRLARPLLAVPFVYDGVFTALRPAEHTEAARRGADTVTEALGVEPLDDTQVSLLVRAHGGATALAGLLLAVGRTPRSAALALAALTAPLAVVNQPFTSKGDERRERTDKFVKNLGAIGAAVIAGIDLEGRPGVSYRIAQKRAAASKSAHHAVESASTSGKHAVENLERSGKHAVANAKRSATYAGRSASASARHATQQVERELRSTAKNAKASAKSAKATAKSARASAEKAAAQAAAKVSNANANANANA
AK018_045801338aroA_2COG01283-phosphoshikimate 1-carboxyvinyltransferaseATGACGTCTGCGCCTGCCTCGACCGATCTGCCCCTGTGGGACGCCCCCGTCGCCGACGGCCCCCTGGAGGCCACGGTCGAGGTCCCGGGCAGCAAGTCGCTGACCAACCGGGCGCTCGTCCTCGCCGCCCTGGCCGACGGCCCCGGCACGCTGCGCGGCGCGCTGCGCTCGCGCGACGCCGACCTCATGATCGCCGCGCTGCGCTCCCTCGGAGCCACCGTCACCGAGGGCGAGGCGCCCAGCACCCTGCACGTGACGCCCGGTCCCGTCACCGGGAGCACGCGCATCGACTGCGGGTTGGCCGGCACCGTCATGCGGTTCCTGCCGCCCGTGGCCGCGCTGGCCGACGGCGACGTCCGGTTCGACGGCGACCCGGAGGCTCGGGTGCGCCCGATGCAGCCCGTCCTCGCGGGGCTGCACGGCCTCGGCGTCCGCGTCACGGGTGAGGGCGACGAAGCCGGCGCCACGGTGCCGTCGCACCTGCCCTTCACCGTGCACGGCCGCGGGCACGTCGCCGGGGGGTCGGTGGACATCGACGCCTCGGGCTCCTCGCAGTTCGTCTCCGCGCTGCTGCTGGCCGCCCCCCGGTTCGACCGCCCGCTGACGCTGCGGCACATCGGCACGACGCTGCCGAGCCTGCCGCACATCGAGATGACGGTGGCCGCGCTGCGCGAGGTCGGCGTCGCCGTCGACGACTCCCGCGACGGCATCTGGCAGGTCACCCCCGGCCCGATCGCCGCCCGCGACCTGCGCGTGGAGCCGGACCTGTCCAACGCGGCGCCGTTCCTGGCCGCCGCCCTGGTCGCCGGCGGCACCGTACGGGTGCCGGGCTGGCCGACGTCGACCACCCAGCCGGGCGCCATGGTCCCCGAGCTGCTGGAGCGGATGGGCGGCACGGCCTCGCTGGACGACGGCGTGCTCTCGGTGCGCGGCACCGGCGAGATCCACGGCATCGACGTCGACCTGCGGGCCGGCGGCGAGCTCGCGCCGACCTTCGCCGTGCTCGCGGCGCTGGCCGACTCCCCCACCCGCCTGCGCGGCATCGCGCACCTGCGCGGCCACGAGACGGACCGGCTGGCGGCGCTCGCCGCCGAGATCACGCGGCTCGGGGGCCGGTGCGAGGAGACCCGCGACGGGCTCGTCGTCACCCCGCGCCCGCTGCACGGCGGGGTGTTCCGCACCTACGCCGACCACCGCATGGCCACCTCCGCGGCACTGCTCGGCCTGCGGGTCCCGGACGTACAGGTCGAGAACGTGGCCACCACCGCCAAGACCCTGCCCGGGTTCGACGGCATCTGGGCACGGATGCTCGGCCGAGGCACGGAGGACCAGGACTGAMTSAPASTDLPLWDAPVADGPLEATVEVPGSKSLTNRALVLAALADGPGTLRGALRSRDADLMIAALRSLGATVTEGEAPSTLHVTPGPVTGSTRIDCGLAGTVMRFLPPVAALADGDVRFDGDPEARVRPMQPVLAGLHGLGVRVTGEGDEAGATVPSHLPFTVHGRGHVAGGSVDIDASGSSQFVSALLLAAPRFDRPLTLRHIGTTLPSLPHIEMTVAALREVGVAVDDSRDGIWQVTPGPIAARDLRVEPDLSNAAPFLAAALVAGGTVRVPGWPTSTTQPGAMVPELLERMGGTASLDDGVLSVRGTGEIHGIDVDLRAGGELAPTFAVLAALADSPTRLRGIAHLRGHETDRLAALAAEITRLGGRCEETRDGLVVTPRPLHGGVFRTYADHRMATSAALLGLRVPDVQVENVATTAKTLPGFDGIWARMLGRGTEDQDPGPT0012850_1582DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012850-yddE-K00800NANA
AK018_045811056rsgA_2Small ribosomal subunit biogenesis GTPase RsgAATGGCCCGCCGGGTCCGCGACGAGCACGAACGGTTCGCGCGTCCCTCCAAGCACGGGTCGCGCCCGCGGTCCAAGCAGCGGCCCGACCACGCCGACGCCGTCCCGGCGCTCGTCACCGGCATCGACCGCGGCCGCTACACCCTCGTCGTCGACGACGGCGGTCCCGACGAGCGCGAGATCCTCGCCATGAAGGCCCGCGAGCTCGGGCGGACCCGCACGGTGGTCGGAGACCGCGTCGACGTCGTCGGTGACACGTCCGGCCACGAGGGCACGCTCGCACGGATCGTGCGGGTCACCGACCGTACGTCGACGCTGCGGCGCACGGCCGACGACACCGACCCGTACGAGCGGATCGTGGTGGCCAACGCCGACCAGCTCGTCGTCGTCACGGCGCTCGCCCAGCCCGAGCCGCGCACCGGCATGATCGACCGCTGCGTCGTCGCCGCCTACGACGCCGGCATGGACGTGCTGCTGTGCCTGACCAAGGCCGACCTCGCCTCCCCCGACGAGCTGCGCGACCTGTACGAGCCGATCGGCGTGGACGTCGTGGTGACGCGGCGGGACGACGAGGACTCCGTCGAGACGGTCCGCGAGCGCCTGCTGGGTCGGACGTCGGTGCTGGTGGGCCACTCCGGCGTCGGCAAGTCGACGCTGATCAACGCCCTGGTGCCCGACGCCCTGCGGGCGACCGGCGTCGTCAACGACGTGACGGGCCGCGGACGGCACACCTCGACGTCGGCCGTGGCGCTGCGGCTGCCGAGCGGGCCGGGCTCCTCGGTGGACGACGACGGGCACGACGGCTGGGTCATCGACACCCCCGGCGTGCGCTCCTTCGGGCTGGCCCACGTCGAGCCCGAGCACCTGCTGCATGCCTTCGAGGACCTGGACTCCGCGGCCGAGGAGTGCCCGCGCGGGTGCACGCACCTCGCCGACGCCCCCGACTGCGCGCTGGACGAGTGGGTCGAGGCCGCCGAGGACGACGACGCTCGCGCGGCGCGCGCGGCGCGGCTGGCGTCGTTCCGCCGGCTGCTGGCCTCGCGGACCGACGCCGGCTAGMARRVRDEHERFARPSKHGSRPRSKQRPDHADAVPALVTGIDRGRYTLVVDDGGPDEREILAMKARELGRTRTVVGDRVDVVGDTSGHEGTLARIVRVTDRTSTLRRTADDTDPYERIVVANADQLVVVTALAQPEPRTGMIDRCVVAAYDAGMDVLLCLTKADLASPDELRDLYEPIGVDVVVTRRDDEDSVETVRERLLGRTSVLVGHSGVGKSTLINALVPDALRATGVVNDVTGRGRHTSTSAVALRLPSGPGSSVDDDGHDGWVIDTPGVRSFGLAHVEPEHLLHAFEDLDSAAEECPRGCTHLADAPDCALDEWVEAAEDDDARAARAARLASFRRLLASRTDAGPGPT0009020_1865DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009020-rsgA|engC-K06949NANA
AK018_04582819hisN_2COG0483Histidinol-phosphataseGTGGCCACCTTTCAGCAGACTCCCAGCCCACAGGGGCACGGGCGCACGTACGAGGACGACCTGCGCCTGGCCCACGTGATCGCCGACCAGGTCGACTCGATGACGATGTCCCGGTTCCGCGCGGTCGACCTCCACGTCGAGACCAAGCCTGACTCCACGCCCGTCTCCGACGCCGACCGCGGCGCGGAGGAGTTCATCCGCGCCCAGCTCGCCCGTGCCCGCACGCGTGACGCCATCGTCGGCGAGGAGTTCGGCGAGGCCGGCAGCGGGTCGCGCCGCTGGATCATCGACCCCATCGACGGCACCAAGAACTTCGTGCGCGGCGTGCCCGTGTGGGCGACGCTCATCGCGCTGGCCGACGGCGACGAGGTCGTCATGGGGCTCGTCTCGGCCCCGGCGCTCGGACGCCGGTGGTGGGCCGCCAAGGGGTCCGGCGCCTGGACGGGCAAGTCGATCGCCGCGGCCACCCGGATGCACGTCTCCGGGGTGTCGTCCCTGGGCGACGCCTCGTTCGCCTACTCCTCCCTGGACGGCTGGGAGGAGCGCGACAAGCTCAACGGCTTCCTCGACCTGACCCGGGAGTGCTGGCGCACCAGAGGCTACGGCGACTTCTGGTCGTACATGCTGGTGGCCGAGGGCGCCGCCGACATCGCCGCCGAACCCGAGCTCGAGCTGTACGACATGGCGGCCCTCGTGCCGATCGTCGTCGAGGCCGGTGGCCGGTTCACCTCGCTCGACGGCGAGGACGGTCCGTGGGGCGGCAACGCCGTGGCCACCAACGGCCTCCTGCACGACAAGGCGATGGTCTACCTCGGCTGAMATFQQTPSPQGHGRTYEDDLRLAHVIADQVDSMTMSRFRAVDLHVETKPDSTPVSDADRGAEEFIRAQLARARTRDAIVGEEFGEAGSGSRRWIIDPIDGTKNFVRGVPVWATLIALADGDEVVMGLVSAPALGRRWWAAKGSGAWTGKSIAAATRMHVSGVSSLGDASFAYSSLDGWEERDKLNGFLDLTRECWRTRGYGDFWSYMLVAEGAADIAAEPELELYDMAALVPIVVEAGGRFTSLDGEDGPWGGNAVATNGLLHDKAMVYLGPGPT0012270_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-PUROMYCIN_METABOLISM,PGPT0012270-pur3-K12634NANA
AK018_04583498hypothetical proteinATGCGCATCTACGTGCCCGCCACCCTGGACGAGCTCGACACCGCCGTGGTCGGGCGGGTGACCCGCTGGCCCGTCGGCCCGCGGAGCGCGCACGCCGTGACCGGGGCGCTCGCGGCCGAGCTCGCCGACGCCGACGACGAGGGGCGCGAGTACGCGGCCTTCCTCGCGGCAGCCGACGACTCGCTGTCGCTGATCGCGGCCCGGCCGGGTGCGGCGCCCGTGCGCGTGGTCGTGTCGGCGGACGTCGAGGACGACGTCGTCGCGGACGGTGCGACCGGCGGTGCGACGTCGGCGGTGCAGGTGCTGCGGGACGTCCCGGACGTGCCCCTGGCCGCCGTGCACGTCGACGAACCGGCCGCCGCCGAGGACGTCCGTGCGGTCCTGGCGGCCGTCGACGCCGACGACGACGAGGCGCTCGCGGACGCCGTCCAGCGTGTCACCGACCGGGACCTGCTCTGGTACGACCCGAGCGAGGTCCACCAGATCCCGCACCCCTGAMRIYVPATLDELDTAVVGRVTRWPVGPRSAHAVTGALAAELADADDEGREYAAFLAAADDSLSLIAARPGAAPVRVVVSADVEDDVVADGATGGATSAVQVLRDVPDVPLAAVHVDEPAAAEDVRAVLAAVDADDDEALADAVQRVTDRDLLWYDPSEVHQIPHPNANANANANA
AK018_045841281hypothetical proteinATGGCCGCGCCCGTCACCGTGCTGTGCGCCGTCGACGGCCCGGAGGAGCCCGACGTCGTCGTCGCGCTCGGCGCCCCGGGGTCGGGCGCCACCGTGACCCGGCGGTGCGGTGACGTGGCCGAGCTGCTCGCCGCCGCGGCCGCCGGGGCGGGCATCGTCGCCGTCGTGACGGCCGACCTCGTCGGGCTCGACCGGGAGGCCGTCGGACGGCTGCACGCCGCCGGGACCCGCGTCGTGGCCCTGACCCACGCCGGCGGCGCGGAGCGGGCGGAGGCGCTGGGCGTCGACGCCGTGCTCACCGGGCCGGGCGACCCCGGGTTCCTCGACGCCGTGCGGGACACCGCCCCGATCGACGACCCGCTGGCCACCGGTGAGCTCGACCTCGCCGACCTCGAGCACGCCGGCGCGCCCCCGGGGCGACGCGGTGAGGTGGTCGCCGTGTGGGGGCCGGTCGGGGCGCCGGGACGGTCCACCACGGCGGTGGAGCTCGCGGCCGAGCTCGCCGGGATCGGTGCCGCTCCGCGGCGTCGGGGCCGACGTCGGGCCTCGGCCGGGCGTCCGCCGGGGGAGACCACGCTCCTCGTCGACGCCGACACCTACGGCTCGTGCCTCGCGGCCCGGCTCGGCCTGCTCGACGACGCCCCGGGGCTGGCGGCCGCGGCCCGCGCGGCGTCACAGGGCAGCCTGGACCTCGCCACGCTCGCCCGGCACTCCCCCGTCGTGGCAGGTCGCCTGCGGGTGCTGACGGGGATCACCCGGGCGTCCCGGTGGCCCGAGCTGCCGGCCAGCGCCGTCGAGGTCGTCCTGGAGCGCGCCCGCGACCTGGCGCGCTGGACGGTGGTCGACTGCGGGCCGCTGGTCGAGGCCGACGAGCTGCTCATGTACGACACGCACGCGCCGCAGCGCAACGGCGCCACCTTGGCCGCCCTGCAGGCCGCCGACGTCGTGGTCGTCGTGGGCGCCGCCGACCCCATCGGCATCCAGCGGCTGGTGCGGGCGCTGGAGGACTTGGGCGAGGCGCCGGTCCCGGTGGCCGGCCGGCGGGTCGTCGTCGCCAACCGGGTGCGGTCGACGGCGGTCGGGCCGGACCCCGCCGCAGCGGTCGCCGCCGCGCTGGCCCGCTACGGCGGGGTGACGGACGTGCACCCCGTGCCCGACGACGCCGCCGCGTGCGACGCCGCCGTGCTCGCCGGTCGGAGCCTGGCCGAGCACGCGCCGTCGTCGTCCGCCCGGGACGGCTTCGCCGCCCTGGCCGGGCACGTGCGCGAGCTGGTGGCCTGAMAAPVTVLCAVDGPEEPDVVVALGAPGSGATVTRRCGDVAELLAAAAAGAGIVAVVTADLVGLDREAVGRLHAAGTRVVALTHAGGAERAEALGVDAVLTGPGDPGFLDAVRDTAPIDDPLATGELDLADLEHAGAPPGRRGEVVAVWGPVGAPGRSTTAVELAAELAGIGAAPRRRGRRRASAGRPPGETTLLVDADTYGSCLAARLGLLDDAPGLAAAARAASQGSLDLATLARHSPVVAGRLRVLTGITRASRWPELPASAVEVVLERARDLARWTVVDCGPLVEADELLMYDTHAPQRNGATLAALQAADVVVVVGAADPIGIQRLVRALEDLGEAPVPVAGRRVVVANRVRSTAVGPDPAAAVAAALARYGGVTDVHPVPDDAAACDAAVLAGRSLAEHAPSSSARDGFAALAGHVRELVANANANANANA
AK018_04585681hypothetical proteinATGCGCCCGGCCGAACCGAAGGACCGCTCCGTGAACGACGACGCCCTGCCGACACCTGTCGCACCCCGCCTGCGCCGGCCCACCTGGCGAGATCCCCGGCTCGTCGTCGGGCTCGTCCTCGTGGCCGGTGCGGTCGCTCTCGGGTCCTGGGTCGTCGCGGACGCGGACCGCACCGTGCCGGTCTACGCCGCGGCCGGCACCCTGACACCCGGCGAACCCGTGGCGGCGGACAGCCTGCGGGTCGTCGACGTCAACCTCGGCACCGAGACCGCCCGGTACCTGCGTGCGGACGCCGGTCCGCCCACCGACCAGGTCGCCCTGCGCGTCGTCGAGGACGGCGAGCTCGTGGCCGCGGCGGCCCTCGGCCCGGCCGACGGCGTCGACGTCCGGGCGGTGGCCGTGCCGATCTCCGCGGGGCTGTCCGAGCGCATCCGCGCGGGCGCCGTCGTCGACCTCTGGTTCGTGCCCGAGGCGCGACCCGGAGCGAAGGACGACGCGCCCGAGCCCGCGCCGCTCGTCGCCGACGTCGTCGTCGAGCAGGTCGACGTCTCGGACAGCGGCCTGGTCGTGGCCGACGGCGGCACCGTGCACGTCCTGGTCGGCACGGAGGACCTGCCGTCGGTCCTGGCCGCGCTGGGCGCCGACGGGGCGATCGCCGTCGTCCCCGTGGCGGGTGCCTGAMRPAEPKDRSVNDDALPTPVAPRLRRPTWRDPRLVVGLVLVAGAVALGSWVVADADRTVPVYAAAGTLTPGEPVAADSLRVVDVNLGTETARYLRADAGPPTDQVALRVVEDGELVAAAALGPADGVDVRAVAVPISAGLSERIRAGAVVDLWFVPEARPGAKDDAPEPAPLVADVVVEQVDVSDSGLVVADGGTVHVLVGTEDLPSVLAALGADGAIAVVPVAGANANANANANA
AK018_04586210hypothetical proteinATGGCCGGTCGCTTCCTCTCCCTCGCCGAGGTCCAGGAGATGCTCAGCATCTCCGCCACCCAGGCCTACTCGCTGGTCCGCACCGGGGAGCTCCCCGCGATCCAGGTGGGTCCCAAGAAGGTCTGGCGCGTCGAGGCCGCCCAGCTCGAGGAGTACATCGAGCGGCAGTACGCGCGCACCCGCGAGCGCATCGCCTCCGGCGAGATGTGAMAGRFLSLAEVQEMLSISATQAYSLVRTGELPAIQVGPKKVWRVEAAQLEEYIERQYARTRERIASGEMNANANANANA
AK018_04587552hypothetical proteinATGTCGATGACGCCGTCGGACGCCTCGCGCTGGGCGCTGCTGTTCGCCGACCTCGAGGCCCAGCTCGCGGCCGAGGAGGCCGCCGAGCGCGAGGGTGCCGTCGCCGAGCTCACGCGCGCCGAGCAGGCCTCGGTCGGGCTGACCGACCGGCTGCGCGCCGCGGACGGTCCGCTCCGGGTCGAGCTGCGGGACGGGGAGGTGCTCGAGGGGGGAGTGGCGCACGTCGCCGACACGTGGCTCCAGCTCGACGCGCGGGGTGCCCGTGGCCGGGTGCAGCACGTCGTGCCCCTGGCCGCGGTGGCGGGCCTGGTCGGGCTCGGGCCGCACGCGCGGCCCTCGGCGGCGCGCACCGACCGGCTGGGGCTGGGGACGGCGTTGCGAGGGCTGCAGCGGGATCGTGCTCGCGTGCAGGTGCGGACCGCGTCCGGTCAGGTCGTGGGCCGCATCGTGCGGGTGGGCGCCGACCACCTGGACGTCGCGGAGGTCGACAGGGCCCGGCCCGTGACCCGGGTCGTGCCGTTCGCCGCGCTGCTGCGGGTCAGCGAGGCGTGAMSMTPSDASRWALLFADLEAQLAAEEAAEREGAVAELTRAEQASVGLTDRLRAADGPLRVELRDGEVLEGGVAHVADTWLQLDARGARGRVQHVVPLAAVAGLVGLGPHARPSAARTDRLGLGTALRGLQRDRARVQVRTASGQVVGRIVRVGADHLDVAEVDRARPVTRVVPFAALLRVSEANANANANANA
AK018_04588834hypothetical proteinATGACAACCATGAGAAGAGCCGATGCCGAGACGTCGGCGAACGCCAGGCGGTCGCTGGCCGGACTCGTGGCGTGCGCCGTCGGCGGCGCCGTCGTCCTGGTGCTGCTGGGGCTGCGCCTCGGGGCGATCGTCCCGCGCGACGGCGGGGCCGCCGCCCGCACCGGGATCGACCGGTGGGTGGAGATCGCGGTGCTGGCCGTCGGCTCGGCAGCAGCCGCCTGGCTGACGCTCGGCGCCCTCGTCGCGCTGGCGTGCGTCGCGGTCGTACCGCGGTACCGCGCCCGGGCGGTGGACACCGCGCTCGGCCGGTGGACTCCTCGCGTGGTCCGCCGACTGGCCCGCGGTGCCGTCGGGGTCGGCGTCGGCGCGGGGCTGGCGCTCGCCCCGACCGCCGCGCTGGCCGACGAGCCCGTCGACTCCCCCGCGACCGTCCTCGACGTGGGCTGGCGGTCCACGGCGGACGTCGCGCCCGACCGGACCGACGTGCCGGAGGACGTCTCGGCCCACCCGATCGCCCTGGAGCCCCGCGCACCGTCGGCGCCGGACGACGGGGCCGACGCCACGTCCGGCGCCACGTCCGAGGAGGCCTCCGTGGCTGCGACCACGTCCTCCGACGCCGCTCCTGCGTCACGGGCAGCCTCGATCACGGACACCGCGGAGGTCGTGGTCCACCGCGGCGACAGCCTGTGGGACATCGCCGCCCGCGGGCTGCCGGCGTCCGCCACGGACGCGGAGGTCCTCGCCGCGACGACACGGTGGCACGAGGCCAACCGCGACGTCATCGGCGCCGACCCCGACGTGATCCTGCCGGGCCAGGTCCTGCGGGCCCCCTGAMTTMRRADAETSANARRSLAGLVACAVGGAVVLVLLGLRLGAIVPRDGGAAARTGIDRWVEIAVLAVGSAAAAWLTLGALVALACVAVVPRYRARAVDTALGRWTPRVVRRLARGAVGVGVGAGLALAPTAALADEPVDSPATVLDVGWRSTADVAPDRTDVPEDVSAHPIALEPRAPSAPDDGADATSGATSEEASVAATTSSDAAPASRAASITDTAEVVVHRGDSLWDIAARGLPASATDAEVLAATTRWHEANRDVIGADPDVILPGQVLRAPNANANANANA
AK018_04589558hypothetical proteinATGACCGTCACGCCCACCGCACCGCCCCGTCAGGACCCGCCGCAGAGCGACCGGTCACGCCGGCTCCGCGTCTCGGCACCTCCCGGCGGCCGGCCGCCCGCGCGACCGCCCCAGGCGCCGACGCACCGTCCGCCGTCGCGCCGGGTCCGGGTCGGCGCGGACTCCGTCCCGCCGGCTCCGGTCCCCGGGCGCCCGCTCGCCCCGACGGAGCGGTCGGCCGCCCCGCACCCCGCGGACCCGACCGCCCTGTGCTGCTCGGTCGTACGGGCGGCCGTCGAGGTGCTGCGGGGCGAACGGCCCGTGGCTCAGGTGGCGCGCTGGGTCACGCCGCAGGTGTACGACCAGCTGACGCAGCGCGCCCACCTGCTGCGGTCACGCCCGGCGGCAGCCGCGACGACGCGGCCCGTCGCCGTGCGGCGGGTGCGCATGGTGCGGCTCGGCGCCTCGACGGCGGAGGCCACCGTCGTGCTCGAGGACTCCGGACGCGTGCGCGCCGCGGCAGCCCGGCTCGAGGTGCACCGGGGCACCTGGCGGGTCGCCGTGCTCGAGCTCGGGTGAMTVTPTAPPRQDPPQSDRSRRLRVSAPPGGRPPARPPQAPTHRPPSRRVRVGADSVPPAPVPGRPLAPTERSAAPHPADPTALCCSVVRAAVEVLRGERPVAQVARWVTPQVYDQLTQRAHLLRSRPAAAATTRPVAVRRVRMVRLGASTAEATVVLEDSGRVRAAAARLEVHRGTWRVAVLELGNANANANANA
AK018_045902970secA_2Protein translocase subunit SecAGTGCCTGCGATCCTCGAGAAGATCCTCCGCATCGGCGAGGGGCGGACCCTCAAGAAGCTGACCGCGCTCGCCGAGCAGGTGAACCAGCTGGAGGACAGCTTCACCGAGCTCAGCGACACCGAGCTGCAGGAGGAGACCCAGCGGTTCAAGGACCGCCTGGAGCACGGCTCCTCCCTGGACGAGCTGCTCCCGGAGGCCTTCGCCACGGTCCGCGAGGCGGCGCGCCGCACGCTGGGCCAGCGTCACTTCGACGTCCAGCTCATCGGCGGTGCCGCCCTGCACCACGGCAACATCGCCGAGATGAAGACCGGTGAGGGCAAGACGCTGGTCGCCACGACCGCCGCCTACCTCAACGCCCTGACCGGCAAGGGCGTGCACGTCATCACCACCAACGACTTCCTCGCGAAGTACCAGGGCGAGCTGATGGGCCGCGTCTACCGGTTCCTCGGCATGGAGACGGGCATCATCGTCTCCGGGCAGACGCCGGACGAGCGCCGCCGCCAGTACGCCGCCGACATCACCTACGGCACGAACAACGAGTTCGGCTTCGACTACCTGCGCGACAACATGGCCTGGTCGCCGGACGACCTGGTCCAGCGCGGGCACCACTTCGCGATCGTCGACGAGGTGGACTCGATCCTCATCGACGAGGCGCGTACCCCGCTGATCATCTCCGGCCCGTCCTCGGGCGACGCCAACCGCTGGTACGTCGAGTTCGCGAAGGTCGTCAAGCGCCTGCACCGCGACACCGACTACGAGGTCGACGAGAAGAAGCGCACCGTCGGCATCCTCGAGCCGGGTATCGAGAAGATCGAGGACTACCTCGGCATCGACAACCTCTACGAGTCGCTGAACACCCCGCTGATCGGTTTCGTCAACAATGCGATCAAGGCGAAGGAGCTGTTCAACCGCGACAAGGACTACGTCGTGCTCAACGGCGAGGTCATGATCGTCGACGAGCACACCGGCCGTATCCTCGCCGGGCGCCGCTACAACGAGGGCATGCACCAGGCCATCGAGGCCAAGGAAGGCGTGCAGATCAAGGCGGAGAACCAGACGCTCGCCACGATCACCCTGCAGAACTACTTCCGCCAGTACGAGAAGGTCGCCGGCATGACCGGTACGGCCGAGACCGAGGCCGCGGAGTTCCAGGGCACCTACAAGCTCGGCGTCGTCCCGATCCCGACGAACCGGCCGATGATCCGCATGGACCAGCCCGACCTCGTCTACAAGGCCGAGGAGGGCAAGTTCAACGCCGTCGTCGACGACATCGTCGAGCGGCACGCCAAGGGCCAGCCGGTCCTGGTGGGCACCACCAGCGTCGAGAAGTCGGAGCTGCTGTCGACGCTGCTCCAGCGCGCCGGCGTCCCCCACAACGTCCTCAACGCCAAGGAGCACGACCGCGAAGCGGCCGTCATCGCTCAGGCGGGACGCAAGGGCGCCGTCACGGTCGCCACGAACATGGCCGGCCGTGGCACCGACATCATGCTCGGAGGCAACGCCGAGTTCATCGCGGTCGCCGAGATGTCCCAGCGTGGGTTCGACTCCACCGAGGACCCGGAGGCCTACGAGGCCGCGTGGCCCGAGGTGCTGGCCAAGGCCGAGGAGTCCGTGGCCTCCGAGCACGAGGAGGTCGTCGACCTGGGCGGGCTGTACGTGCTCGGCACGGAGCGGCACGAGTCCCGCCGGATCGACAACCAGCTCCGCGGCCGCTCCGGCCGACAGGGCGACCCGGGCGAGTCGCGCTTCTACCTGTCCATGCAGGACGACCTGATGCGGCTGTTCAACTCCGGGCTGGCCGAGTCGATGATGGGCCGCGCCGGCTTCCCGGACGACCTGCCGCTCGAGTCGAAGATGGTCACGCGCGGTATCCAGAGCGCCCAGTCGCAGGTCGAGTCGCGCAACTTCGAGATCCGCAAGAACGTCCTCAAGTACGACGACGTCCTGGCGCGCCAGCGCACCGTCATCTACGACGAGCGTCGTCGGGTGCTCGAGGGCGAGGACCTGCACGAGCAGGTCCAGCACTTCCTCACCGACGTCGTCACCGCCTACGTCGAGGGTGCCGCCGACGACGGCAACGCCGAGGGCTGGGACCTGGACTCGCTGTGGACCGCGCTGAAGTCGGTCTTCCCGGTCTCGATCACGGTCGACGACGTCGTGGACGAGGCCGGCGGCCGGGACCGCCTGACCAAGGAGATGCTCCTCGAGGAGCTGCTCTCCGACGCGCGGGTCGCCTACCAGGCGCGCGAGGACTCCCTCGGGTCCCCGGCGATGCGTCAGCTCGAGCGCCGCGTGGTCCTGTCGGTGCTGGACCGCAAGTGGCGTGAGCACCTCTACGAGATGGACTACCTCAAGGAGGGCATCGGGCTGCGCGCGATGGCCCAGCGCGACCCCCTCATCGAGTACCAGCGCGAGGGCTACCAGCTCTTCCAGGCCATGACGGAGGCCATCAAGGAGGAGTCGGTCGGCTACCTGTTCAACCTGGAGGTCCAGGTCAAGCAGCCGGGCGAGGAGGGCTCCGCGGGCGGCGGTCCGCAGGTCTCCGTGCAGTCGGCGGCGGCGACGGCCGGTTCCTCGGCCGCCCAGGGCATCGCTGCCGGCGCGGCCTCGGTGGCCGGTGCCGACGTCGTCGAGGAGGCCCCGGCGGCCGAGGACGAGCCGGTCGAGGCCGAGGCGGACACGACCTCGGAGCAGGAGATCCCGGCGGCGTTCGGCGGCTCGGAGGAGCCGACGCTCGTCGCGAAGGGTCTCGAGACGCCGCAGCGGCCGCAGAACCTGCAGTACTCGGCGCCGAGTGAGGACGGGTCCACCTCCCGCACCGGGGACACCCGGGCGGCACGCCGTGCGCTGCACGGCGAGGCGACCGCGGCCAACGCCGACGGGCGCACGTTCCCCGGCACGCCCCGCAACGCCCAGTGCCCCTGCGGGTCGGGCAAGAAGTACAAGGTCTGCCACGGCGCCAACGAGTGAMPAILEKILRIGEGRTLKKLTALAEQVNQLEDSFTELSDTELQEETQRFKDRLEHGSSLDELLPEAFATVREAARRTLGQRHFDVQLIGGAALHHGNIAEMKTGEGKTLVATTAAYLNALTGKGVHVITTNDFLAKYQGELMGRVYRFLGMETGIIVSGQTPDERRRQYAADITYGTNNEFGFDYLRDNMAWSPDDLVQRGHHFAIVDEVDSILIDEARTPLIISGPSSGDANRWYVEFAKVVKRLHRDTDYEVDEKKRTVGILEPGIEKIEDYLGIDNLYESLNTPLIGFVNNAIKAKELFNRDKDYVVLNGEVMIVDEHTGRILAGRRYNEGMHQAIEAKEGVQIKAENQTLATITLQNYFRQYEKVAGMTGTAETEAAEFQGTYKLGVVPIPTNRPMIRMDQPDLVYKAEEGKFNAVVDDIVERHAKGQPVLVGTTSVEKSELLSTLLQRAGVPHNVLNAKEHDREAAVIAQAGRKGAVTVATNMAGRGTDIMLGGNAEFIAVAEMSQRGFDSTEDPEAYEAAWPEVLAKAEESVASEHEEVVDLGGLYVLGTERHESRRIDNQLRGRSGRQGDPGESRFYLSMQDDLMRLFNSGLAESMMGRAGFPDDLPLESKMVTRGIQSAQSQVESRNFEIRKNVLKYDDVLARQRTVIYDERRRVLEGEDLHEQVQHFLTDVVTAYVEGAADDGNAEGWDLDSLWTALKSVFPVSITVDDVVDEAGGRDRLTKEMLLEELLSDARVAYQAREDSLGSPAMRQLERRVVLSVLDRKWREHLYEMDYLKEGIGLRAMAQRDPLIEYQREGYQLFQAMTEAIKEESVGYLFNLEVQVKQPGEEGSAGGGPQVSVQSAAATAGSSAAQGIAAGAASVAGADVVEEAPAAEDEPVEAEADTTSEQEIPAAFGGSEEPTLVAKGLETPQRPQNLQYSAPSEDGSTSRTGDTRAARRALHGEATAANADGRTFPGTPRNAQCPCGSGKKYKVCHGANEPGPT0025735_770DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025735-secA-K03070NANA
AK018_045911584kefC_2COG0475Glutathione-regulated potassium-efflux system protein KefCATGGAGACCCTCGCGCTCTATCTCGGCGTGGCGTTCGTCGGCGGTGTGCTGGCCACGCTGGTGCGCCTGCCCCCGCTGGTGGGGTTCCTCGCGGCCGGGTTCGCGCTCGGCGCCGCCGGTGCCCCGGAGCTGCCGGGGCTCGGCACCATCGCCGAGGTCGGCGTGGCGCTGCTGCTGTTCACGATCGGGCTGAAGCTGGACGTGCGCTCCCTGGTCCGGCCCGAGATCTGGCTGACGACGGTGAGCCACATGGTGCTGGCCGTCGCGGTCGGCATCGGGTTCCTCGGCCTGCTCGCCGTGATGGGCATGGCGCTGGTCGCCGGCGACGGGCTCGGCACCCTCGCGCTCATCGCGCTCGCGCTGTCCTTCAGCTCGACGGTGTTCGTGATCAAGGTGCTCGAGGACCGGTCGGACGCGACGAGCCTGTACGGGCGCATCGCCGTCGGCATCCTCATCATCCAGGACATCGTCGCCGTGACCTTCCTCGCGATCGCCGAGGGGCGCCCGCCGAGCCTGTGGGCCGTCGCCCTGCTGCTGTTCATCCCCGGGCGGCGCGTGCTGTACGCGATCTGGTCCCGGGTGGGCCACGGCGAGCTGCAGGCGATCTTCGGCGTCGCGGTGGCCCTCGGTCCCGGCTTCTACCTGTTCGAGCACCTCGGCCTGTCCGGGGACGTCGGCGCCCTGGTCATGGGGGCGCTGCTGGCCGCCCACCCGAGCGCCGGCGAGATGTCCCGGTCGCTGATGACGTTCAAGGACGTCATGCTCGTCGCGTTCTTCCTCGAGATCGGCCTGCACGGGACGCCCGAGCCGCAGCACGTCGCGCTGGCTCTCGTGCTGCTGCTGATGCTGCCGCTGCAGGCCGCCGCCTACGCGGTCCTGCTGTGGACGGCCCGGCTGCGCCGGCGCACGGCCTTCCTCACCGGGCTCGTCCTGGGCAACTACTCCGAGTTCGGCATCATCGTGGTCGCGGTCGGGGTCGAGGTCGGCATGGTCGACGACGACTGGCTGATCGTCATCTCCCTGGCCGTCGCGGCGAGCTTCGCGCTCTCGGCGGCGGTCAACCGCCGGGGTGTGGAGATCGCCGCCTGGCTCACCCGGTTCCTGCCGCCCAAGGATCCTTCCCGGCTGCACCCGGACGACCGGGTCGTGGACATCGGCGACGTGGACGCCCTGGTCATGGGGCTGGGGCGCGTGGGGTCGACGACGTGCGCCCGGTTGCGCGACGAGTACGGGCTGCGGGTCGTGGGCGTCGAGCACGACGTCAACCGCGTGTCGTCCCTGCAGGGCGACGGCTTCGAGGTGGTGCGCGCGGACGCCACCGACGTCGAGTTCTGGGCGCGGGTCAAACGGGCCGGGCACGTCCGCCTGGCGGTGCTGGCGATGCCGTTCCACAACGCGAACCTCATCGCCCTGTCCCGCCTGCAGGACGCCGGGTTCGAGGGACAGGTCGCGGCGATCGCCCGGTACGACGACGACGCCGCGGAGCTGCGTCGCCACGGCGCGGACGCGGTGTTCCACATCTACGGGGCGGCCGGCGCCGAGCTCGCCGACCGGGCCGCCGAGGTGCTCTCGACGGACCGCTGAMETLALYLGVAFVGGVLATLVRLPPLVGFLAAGFALGAAGAPELPGLGTIAEVGVALLLFTIGLKLDVRSLVRPEIWLTTVSHMVLAVAVGIGFLGLLAVMGMALVAGDGLGTLALIALALSFSSTVFVIKVLEDRSDATSLYGRIAVGILIIQDIVAVTFLAIAEGRPPSLWAVALLLFIPGRRVLYAIWSRVGHGELQAIFGVAVALGPGFYLFEHLGLSGDVGALVMGALLAAHPSAGEMSRSLMTFKDVMLVAFFLEIGLHGTPEPQHVALALVLLLMLPLQAAAYAVLLWTARLRRRTAFLTGLVLGNYSEFGIIVVAVGVEVGMVDDDWLIVISLAVAASFALSAAVNRRGVEIAAWLTRFLPPKDPSRLHPDDRVVDIGDVDALVMGLGRVGSTTCARLRDEYGLRVVGVEHDVNRVSSLQGDGFEVVRADATDVEFWARVKRAGHVRLAVLAMPFHNANLIALSRLQDAGFEGQVAAIARYDDDAAELRRHGADAVFHIYGAAGAELADRAAEVLSTDRPGPT0013800_467DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013800-kefC-K11745NANA
AK018_045921245hypothetical proteinATGGCGGGCGTGGAGACGATGACACGGGCCCAGGCCCGGCGGGTCGCGCTGCGCGCCCAGGCGCTGGACCGGCCCCGGCGCGACGCCCCGGTGACCATGCGCCGCCTGACCGGCACGGTCGAGCGCATCAACCTGCTGCAGATCGACTCGGTCACCGTGCTCGCCCGCGCCCACCTGATGCCCCTGTTCTCCCGCCTCGGGCCGTACGACACCGCCCTGCTGGACCGAGCGGCCGGTCGGGCGCCACGGAAGCTGGTCGAGACGTGGGCGCACGAGGCCTCCTACGTCCCCGCCGCCACCTACCCGCTGCTGGAGTGGCGCCGCCGGGCGGCGCAGCAGGAGGCGTGGGGCGTCATCGCCGGCGCCACCGACGCGCACCCGGTCGAGCTGGACCTGGTGCGCTCGCTGGTGACGGACCTCGGGCCCGTCACCGCCGGCCGGATCCACGCCGAGCTGGAGGTCGCCGGACGGTCGGGCGGTCGGTCCCGCGAGGCGTGGGGCTGGAACTGGTCGGTGGCGAAACGCTGCCTGGAGTACCTGTTCTTCACCGGTGAGGTGCTCTCGGCCCGGCGCAACGGGTCGTTCGAGCGCTGCTACGACCTGGCCGAGCGGGTGCTGCCGCCCGCGGTCCGGGGAACGCCCCCGGTGCCCGACGACGTCGCCGTGCGCCGACTGCTCGAGCTCGGCGCACGGGCGCACGGCGTCGGGACGGTCCGGTGCTTCCGGGACTACTTCCGGCTGCGCGGTCCGGCCGTCAGGACGGCGCTGGACGAGCTCGTCGACGAGGGCACGCTGGTGCCCGTCGAGGTGCAGGGATGGCCGGAGCGCACCTACCGCCACCGCGACGCCGTCGTGCCCCGCCGGGCCGAGGCCGCCACGCTGCTGAGCCCCTTCGACCCCCTGGTGTGGGAGCGCCGACGCCTGCTGGCCCTGTTCGACGTGCACTACCGGATCGAGATCTACACCCCGGCCCCGCAGCGGCGCCTCGGCTACTACGTGCTGCCGTTCCTCGAGGGTGAGCGGATCGGCGCCCTGGTGGACCTCAAGGCCGACCGGGCCGGGCGCGTGCTGCGCGTGCTGGCCGCCCACCGCACCGACGACACGGGTCCGGACACCCCCGACCGCCTCGCGGCGGAGCTGTGGACGCTCGCGGCCTGGCTGGGTCTCGACGACGTCGCCGTGGCCCCGCGGGGCGACCTGGCCGCGGCGCTGGCGGCGACCGCCGGGACCCGGATGCCGGACTGAMAGVETMTRAQARRVALRAQALDRPRRDAPVTMRRLTGTVERINLLQIDSVTVLARAHLMPLFSRLGPYDTALLDRAAGRAPRKLVETWAHEASYVPAATYPLLEWRRRAAQQEAWGVIAGATDAHPVELDLVRSLVTDLGPVTAGRIHAELEVAGRSGGRSREAWGWNWSVAKRCLEYLFFTGEVLSARRNGSFERCYDLAERVLPPAVRGTPPVPDDVAVRRLLELGARAHGVGTVRCFRDYFRLRGPAVRTALDELVDEGTLVPVEVQGWPERTYRHRDAVVPRRAEAATLLSPFDPLVWERRRLLALFDVHYRIEIYTPAPQRRLGYYVLPFLEGERIGALVDLKADRAGRVLRVLAAHRTDDTGPDTPDRLAAELWTLAAWLGLDDVAVAPRGDLAAALAATAGTRMPDNANANANANA
AK018_04593678hpf_2COG1544Ribosome hibernation promotion factorATGAAGTGGAGCGACACGATGGAGATCGCCGTCGTCGGCAGGCACACGGAGGTGACGGACCGGTTCCGTCACCACGTCGAGGACAAGCTCACCAAGATCACCCAGCTCTCGCCGAACACGCGTCGCGTGGACGTCGAGGTCACGCACGAGAAGAACCCGCGGCTGTCGGACGTCAGCGAGCGGGTCGAGCTCACGGTGCGGTCCAAGGGGCCCATCATCCGCGCCGAGGCGGCCGCGGACGACCGGTTCGCCGCGCTGGACCTGGCCATGGAGAAGCTCAGTGAGCGTCTGCGGCGGTCGCGGGACCGGCACAAGAAGGACCACCGGCGTCGGGCCGCGGACGACTCGCGTCCCTTCGCCGACCCGAGCACGGTCGACGAGGTGCTGGCGGAGCGGTCCGAGCCGGAGCACGCCGTGCTGGAGTCGCCGGGCGACGCGATCGAGCACCAGCTCGGCGACTCGCCGGTGGTGATCCGTCAGAAGCTGCACCACGGCGAGCCGATGACCGTCGACGACGCGGTCGAGCGCATGGAGCTTGTGGGCCACGACTTCTTCCTCTTCATCGACAAGGAGTCCGCACGACCGGCGGCCGTGTACCGGCGTCGCGGGTGGTCCTACGGGGTCATCGAGCTGGACACCACCTGCGCGGCGGCGGCCCCCGTCACCGAGCTGACCTGAMKWSDTMEIAVVGRHTEVTDRFRHHVEDKLTKITQLSPNTRRVDVEVTHEKNPRLSDVSERVELTVRSKGPIIRAEAAADDRFAALDLAMEKLSERLRRSRDRHKKDHRRRAADDSRPFADPSTVDEVLAERSEPEHAVLESPGDAIEHQLGDSPVVIRQKLHHGEPMTVDDAVERMELVGHDFFLFIDKESARPAAVYRRRGWSYGVIELDTTCAAAAPVTELTNANANANANA
AK018_04594723hypothetical proteinGTGCTCACCGACCTGGCCCGCCTCGTGGTCCCCGTCGTCTGCCCCGGGTGCGGGCTCCCCGACGTGCCGTGGTGCCCCGGCTGCGCGCGTGCCGCCGTCGGCGGTCCGCCCCGGCGGGTCGAGGCCGGTGCCCCCCGCCTGGACCGGCTGGACGGCGCGGGCCCCCTGCCGACCTGGGCGCTCGCGGACTACGCGGGCGCGGTGCGCGACCTCGTGGTGGCCTGGAAGGACCGCGGGCGCGCGGACCTGGACCGGCTGCTCGTGCCGGCGCTGCGCCGGACGGCCGGCACGACGGCGCCCCGGCTGCGGGCGGCCGCGGCGTCGCGGCCGGTCGCGGTGGTGCCGGCCCCGTCGGCCCCGGGGGCGCGGTGGCGTCGGGCACGTGAACCGGTGCGGACCCTCGCCGACGCGGTCGCCGACGGGCTCGCGGCGGCAGGCCTGCGGGCGAGGGTCGTGCCCGCCCTGCGCCGGCGCCCGTCGCGCGACCAGGTCGGCCTGGGCGCCCGGGCACGCGGGCGGAACCTCGCGGCGTCGGTCGCCCTGCGGCACGGGCGGCTGCGGCAGCCCCCGGTCTGCGTGCTCGTCGACGACGTGCTGACCACGGGGGCGACGCTGGCGGTCGCCGAGCAGGTCCTCGGCCGCGGCGGCCACCAGGTCCTGGGGGCGTTCGTGCTCGCCGCGACACCCCCGCCGGACGGCGCCGCGACACGCCTGGGCACGTGAMLTDLARLVVPVVCPGCGLPDVPWCPGCARAAVGGPPRRVEAGAPRLDRLDGAGPLPTWALADYAGAVRDLVVAWKDRGRADLDRLLVPALRRTAGTTAPRLRAAAASRPVAVVPAPSAPGARWRRAREPVRTLADAVADGLAAAGLRARVVPALRRRPSRDQVGLGARARGRNLAASVALRHGRLRQPPVCVLVDDVLTTGATLAVAEQVLGRGGHQVLGAFVLAATPPPDGAATRLGTNANANANANA
AK018_045951737lpqB_2Lipoprotein LpqBATGAGCGCGCACGCACCGCTGCGGAGGGTCGCGACGACGGTCGCCGGCCTCGTCGCGACCGCGCTCGTCCTGGTCGGCTGCGCGTCGATGCCGACCTCGGGGGACGTGATGGAGGGCGAGGTCCGGGTCGACAACCCCGTGGAGGTCGGGTTCAACGTCCAGGGGCCGTCGCCCGGCGCCGACCCGCAGCAGATCGTGCAGGACTTCGTCTCGGTGGCGCAGTTCGGGCCGGCCTCGACGAACACCTTCACCGTCGCCCGGGAGTACCTCACGCCGGTCGCCTGGTCGGAGTGGGACCGGGGCGCCCCGGTGCTGGTGCTCGCCGAGTACCCCGACTGGACGGTCGAGGACTTCGACGACTCCTCGGCGACCACGTCGGTGCGGGGCGAGGCGCTCGTGACGGCCACCATCGACGAGACCGGCACGTACACCGAGCTGCCCGCGCCGAGCACGGTCGAGGTCGGCTACGAGCTGTCGCGCGGGACCGACGGCGAGTGGCGCATCACCGAGCTGGACGACGGCCTGCTGGTGCTGGCCAACTTCCTCGCCGACGCCTTCCACCGCACGACCCTGTACTACCCGACCCCGGACCGGCGCTGGTGGGTCCCGGACGTGCGGTGGTACCCCGAGCAGTCCTGGCGGACCGCCGCCACGCAGGAGATCCTGGCCGGTCCGCCGGAACCGTTGCGGCAGTCGGTCGTCTCGGTGGTGCCGGAGGGGACGACCCTCGCGATCGACTCCGTCAGCGTGGACGACCGCGGCGTGATCGGCGTGTCGGTGACGTCGGCCATCTCCGCCGCCCCGGCCGAGGACCGCGCCCTGCTGGTCGCCCAGCTCGAGGAGACCCTGCGCGAGGGCGACGGGCGCAGCGTCGAGCTGTCGGACGGCAACAACCCGCTGGCGGTCGAGCCGGCCGACGCGCCCTCGCGGCCGGTGACCGTCGGGGACGCGCTCGCCGTCGTGGAGGACGCCGAGGGGGCGACCTCCCTGCGGCGCGTGGCCGGCACGGAGCTCGTCGAGCTCGCCGCACCGCTGCGCACCGGCGGTCTCGACCTCACCGCCGTGGGGACGGGGCCCGACGAGGGCCCGGTCGTGGTGCGCGACGGACCCGACCGTCTGCTGCGTGTCACGGCCGAGGAGGCACCGGTGGAGCTGCTGCAGGGCGACGGCGTGCTGCCCCCGTCGGTCGACCGGTTCGGCACGGTGTGGACCGCGGTGGACGGCGAGCTGTGGGTCGTGGGGGCCGCGGGGCGGGCCGCGCCGCTGGAGGCCGAGTGGCTCGTCGACCGGCCGGTGCGGTCGGTGCGGGTGTCCCCGGAGGCCGCTCGCGTCGTCGTCGTGGTCGGGGGGTCCGACGGCCCGGAGGTGTGGGTCGCCGCCGTCCAGCGGGATGCCGACGACGTCCCCACGGGCCTGTCCACGCCGTGGCGGGTCGGTGCGCCGGTGCCGGGCGTGGCCGCGGCCGACTGGTCCGACGAGACGACCGTGGTGCTGCTCGGACGGGACCCGGACGGGACCCGCGTGCTGTCCGTGGCCGGGGTCGGCGGGCTCGCCGGCACCGCCGACGCCGGGTCGCGGACGCTCGTCACCCCCGGGGCCCCCGTCGCCGTGGCGTCCGGGGTGGGCGCCAGCCCGATGCTGGTGCTCGACGCGGACGGGGTGCTCCAGACGCGCCAGAGCGCTGCGCTCTGGCCGACGGTCGCCGAGGACGTCGTCGCGGTCGCCTACCCCGGCTGAMSAHAPLRRVATTVAGLVATALVLVGCASMPTSGDVMEGEVRVDNPVEVGFNVQGPSPGADPQQIVQDFVSVAQFGPASTNTFTVAREYLTPVAWSEWDRGAPVLVLAEYPDWTVEDFDDSSATTSVRGEALVTATIDETGTYTELPAPSTVEVGYELSRGTDGEWRITELDDGLLVLANFLADAFHRTTLYYPTPDRRWWVPDVRWYPEQSWRTAATQEILAGPPEPLRQSVVSVVPEGTTLAIDSVSVDDRGVIGVSVTSAISAAPAEDRALLVAQLEETLREGDGRSVELSDGNNPLAVEPADAPSRPVTVGDALAVVEDAEGATSLRRVAGTELVELAAPLRTGGLDLTAVGTGPDEGPVVVRDGPDRLLRVTAEEAPVELLQGDGVLPPSVDRFGTVWTAVDGELWVVGAAGRAAPLEAEWLVDRPVRSVRVSPEAARVVVVVGGSDGPEVWVAAVQRDADDVPTGLSTPWRVGAPVPGVAAADWSDETTVVLLGRDPDGTRVLSVAGVGGLAGTADAGSRTLVTPGAPVAVASGVGASPMLVLDADGVLQTRQSAALWPTVAEDVVAVAYPGNANANANANA
AK018_045961767mtrB_2Sensor histidine kinase MtrBGTGCCGCCCGCTGACGAGCGGGCGGGTCGACCCACCGCGGACGACGACGGCGTCCCCGCGGCGGAGGGGCCCGCCACCGGACCGCCGAACCCCGTGGCCGCGGGGGCGCGCTCGCTGGGGCTGCGCTGGCGCTCCTCGATGCAGGTGCGCGTGGTCACCTCGGCCCTCGCCCTGGGCGTGCTGGCGGTGGTGGTCCTGGGCCTGTTCCTGTCCTACTCCGTGCGGGACGGGCTGTTCGAGCAGCGCATCGACCAGATCGAGGCGGAGAACGCCGCGCTCGTCCAGGAGACCCAGTCACGGTTCTCCGCCTCGACGGCCACGACCATCGGCGAGCAGCAGTCGCTCCTGCGCGACGTCATCCTCGGACTCAGCGCGATCGGGTCCAGCGCGCAGGACTACTTCCTGCGCCAGGCGCCCGACCAGAGCCTGCCCCTGGTGGACCCGTCCTCGCGGCAGGACCTGTCGGTGCGCGACGTCGTCAGCCCGGCCATGCGCGAGGCCACGCTGACCACCGACGGCCCCGTGCTGCAGTCGGTGCTCATCCCGGCCGCGTACAGCGAGTCCGGCCAGGACGAGCCCGGTGTCGTCTTCGGCACCACGGTCGAGCTCGCCTCGGCCGGGACGTACGAGCTGTACGCGCTGTACTCGCTCGCCTCCCAGCAGGAGACGCTGCGCTTCGTCCAACGCACGCTGGCCGTCGGCGGCGCGGTGATCCTGGCGATGATCGGTCTGCTCACCTGGACGGTGACCCGCCAGACGGTGGCTCCGGTGCGTCGCGCCGCGACGGCGGCGTCCCGCCTCGGCGAGGGCCACCTGGACGTCCGCATGCCCGGCTCGCGCGGCCAGGACGAGATGGCCACGCTGGCCCGGACCTTCAACGAGATGGCGTCCAGCCTGGAGGACCAGATCGCGCGCATGGAGGAGCTGTCCGCCTCCCAGCGCCGGTTCGTCTCCGACGTCTCGCACGAGCTGCGCACCCCGCTGACGACCGTGCGGATGGCGGGGGAGGTCATCTACGCCGCGCGCGAGGACCTGGGCCCGGCGGCCCGCCGGTCGGCCGAGCTGCTGCAGACCCAGCTCGACCGGTTCGAGGAGCTGCTCACCGACCTGCTCGAGATCAGCCGGTTCGACGCCGGGGCCGCGGTGCTGGACGTCGAGCACCGCGACCTGCGTGACGTCGTGACCGCCGTGGTGGAGACAGCCGCCCCGCTGGCCGAGCGCAAGGGGGTGTTCCTGTCCGTCGACATGCCCGGCGAGGCGGTGCGCGCCGACATCGACCCGCGGCGGGTCGAGCGCATCCTGCGCAACCTGGTGGTCAACGCCGTCGAGCACGCCGAGGGCAACCCGGTCGAGGTGTCGGTCGGGGCCGATGACGAAGCCGTCGCCGTGGTGGTGCGCGACCACGGGATCGGCCTGACGCCGGACGAGCTCAACCGGGTCTTCGACCGGTTCTGGCGCGCGGACCCCGCCCGTGCCCGCACCACGGGCGGCACCGGTCTGGGCCTGGCGATCTCCCAGGAGGACGCGCGGCTGCACGCCGGCCGGCTGCAGGCCTGGGGCAGCCCCGGCGCGGGGGCCAGCTTCCGCCTGACGCTGCCCCGGCGCGCCGGCATCAAGCTGACCGGGTCGCCGCTGCCGCTGGAGGGGCCCGCCCGCTCGACCGGACGCCACGTGCCGACCGGCCAGGTGCCGGTGGTCAACCCGCCCACCGGGCCGACGCCGACCGCGATCCCCGACCTCTCGGTGAGCCAGGAGGAGTCCTCATGAMPPADERAGRPTADDDGVPAAEGPATGPPNPVAAGARSLGLRWRSSMQVRVVTSALALGVLAVVVLGLFLSYSVRDGLFEQRIDQIEAENAALVQETQSRFSASTATTIGEQQSLLRDVILGLSAIGSSAQDYFLRQAPDQSLPLVDPSSRQDLSVRDVVSPAMREATLTTDGPVLQSVLIPAAYSESGQDEPGVVFGTTVELASAGTYELYALYSLASQQETLRFVQRTLAVGGAVILAMIGLLTWTVTRQTVAPVRRAATAASRLGEGHLDVRMPGSRGQDEMATLARTFNEMASSLEDQIARMEELSASQRRFVSDVSHELRTPLTTVRMAGEVIYAAREDLGPAARRSAELLQTQLDRFEELLTDLLEISRFDAGAAVLDVEHRDLRDVVTAVVETAAPLAERKGVFLSVDMPGEAVRADIDPRRVERILRNLVVNAVEHAEGNPVEVSVGADDEAVAVVVRDHGIGLTPDELNRVFDRFWRADPARARTTGGTGLGLAISQEDARLHAGRLQAWGSPGAGASFRLTLPRRAGIKLTGSPLPLEGPARSTGRHVPTGQVPVVNPPTGPTPTAIPDLSVSQEESSNANANANANA
AK018_04597681mtrA_2COG0745DNA-binding response regulator MtrAATGAGGTCCCGTGTCCTGGTGGTCGACGACGACACTGCGCTGTCCGAGATGATCGGCATCGTCCTGGAGTCGGAGGGGTTCGAGACGAGCTTCTGCGCCGACGGTGACGAGGCGATCGGCATGTTCCGCTCCCTGCAGCCCGACCTGGTGCTGCTCGACCTGATGCTGCCCGGCAAGGACGGCATCGAGATCGCCCGGGAGATCCGCGGCGAGTCGGGCGTGCCCATCATCATGCTCACCGCCAAGACGGACACGGTCGACGTCGTCCTCGGCCTGGAGTCCGGTGCCGACGACTACGTGACCAAGCCGTTCAAGCCCAAGGAGCTGGTCGCCCGCGTCCGTGCGCGGCTGCGCCGCTCCGACGAGCCCGGCCCCGAGCGCCTCAAGATCGGTGACGTGGAGATCGACGTCACGGGCCACGCGGTCACCCGCGACGGCGAGCGCATCAGCCTGACGCCGCTCGAGTTCGACCTGCTCGTCGAGCTCGCGCGCAAGCCCTGGCAGGTGTTCACCCGCGAGGTGCTGCTGGAGAAGGTGTGGGGCTACCGCCACAGCGCGGACACCCGCCTGGTGAACGTCCACGTCCAGCGGCTGCGCTCCAAGATCGAGAAGGACCCCGAGAGCCCCGAGGTCGTCCAGACGGTGCGGGGTGTGGGCTACAAGGCCGGTGCCGCCCGCTGAMRSRVLVVDDDTALSEMIGIVLESEGFETSFCADGDEAIGMFRSLQPDLVLLDLMLPGKDGIEIAREIRGESGVPIIMLTAKTDTVDVVLGLESGADDYVTKPFKPKELVARVRARLRRSDEPGPERLKIGDVEIDVTGHAVTRDGERISLTPLEFDLLVELARKPWQVFTREVLLEKVWGYRHSADTRLVNVHVQRLRSKIEKDPESPEVVQTVRGVGYKAGAARPGPT0013765_422DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0013765-vicR|walR|yycF|micA-K07668NANA
AK018_04599654hypothetical proteinGTGACCACGCGCGCGGCCGCGGTGCTCGCCGAGGTCCCCGTCGACCCCGACCGGGAGACGGCGCGCCGCTGGCTCGTCGAGGAGCTCGCCCGGCCCGAGTACGCGCAGGACGAGTCGTGGCTGATGCGCCTGCTGGACTGGTTCCTGGGGCTCTTCGACGGACTCGGCACCGTCGACGGCGACCCCCTCGTGCTGGCCGGCGTCGTCGTCGGCGCCGGCGCCGTCGTGGCGGCGCTGGCGTGGTGGATCGCCGGACCCGTCCGGCTGCGGCGTCGTGCGCAGGCCCGGTCCGTCGTCGTGCACGACGACGACCCGCGCACCGCCGCCGAGATGCGCGCCGCGGCCGACGCCGCCGCCGCACGCCAGGACTGGGCCACGGCGGTGCTCGAGCGCTTCCGCGCCGTGGTCCGCGACCTCGAGGAACGAGCAATCCTCGACGAGCGCCCCGGCCGCACAGCCCAGGAGGCCGCCCGCGACGGCGGGGCCCGCGTGCCGCAGATCGCCGACCCGCTGCGGGCGGCCGCCCGGCTGTTCGACGGCGTCTGCTACGGCCACCGCCCGGCCGGCCCCGGGGACGACGACCGGCTGCGTGCCCTGGAGGAGCAGGCGGCCGCCGCGCGACCCGCGACCCCGACGACGGCGGACGCCCCGTGAMTTRAAAVLAEVPVDPDRETARRWLVEELARPEYAQDESWLMRLLDWFLGLFDGLGTVDGDPLVLAGVVVGAGAVVAALAWWIAGPVRLRRRAQARSVVVHDDDPRTAAEMRAAADAAAARQDWATAVLERFRAVVRDLEERAILDERPGRTAQEAARDGGARVPQIADPLRAAARLFDGVCYGHRPAGPGDDDRLRALEEQAAAARPATPTTADAPNANANANANA
AK018_046001242putative membrane proteinGTGAGCGCCCCCACCACCGAGGCCACCGGGACCTGGACGGCGAGCGCCACCGGGGACGGCACCACCTTCGCCTCGCGCAGCCGCCGCCGGTGGCGCACCGTGCGCTGGGCGCTGCTCGTCCTGGTCAGCCTGGCCGCGCTCGTCGCGCTGCTGGCCGTCCTGCGGCCCCCGACCTCCACCACGCCGTACGACACGGGCAACACCCGTGCCGACGGTTCACGCGCGCTGGCCCAGGTGCTCGAGCGCCAGGGCGTCACCGTCCAGCAGGTCGACCAGGTCGCCGACGCCGTCGCCGCGGCCGGACCCGGCACGACGCTGCTCGTGCCGCCGTCGCCCTACCTGCTGACCCAGCAGGCCGAGGCGCTCGCCGGGACCGAGGCCGACGTCGTCGTCGCCGACGCCGGGAACGAGCTGCTGGGCGCCGTCTCGGCGGGCCGGATCGGACGCGCCGACCGCGGGACCACGCCGCCGACCCCCGTCGCGCCGGAGTGCGAGCTGCCTGCCGCCGTCGCCGCCGGCGCCTCGCTCCTCGAACCCGGCCTGGAGGCGCTGGCCGACGGGGTGACCACGTGCTGGCCCGGTCGGATGTCGAACACGGCGGCGCTCGCCACGACGGAGCAGGACGGGCGCTCCGTCACCGCGGTGCACGACCCCGCCTTCCTGCGCAACGGCGACGTGCTCACCGAGGGCAACGCCGCGCTCGCGCTGCACCTGCTCGGTCAGCACCGCCGGCTCGTCTGGCTCGTCCAGGACCCCGGCGACCTCAGCGCGACCGACCTGGACGCACCCTCCGGACCCGGCTCCCCCGGCGAGTCCGCCGGGCTGGCCGACCTGCTGCCGCCGTGGTTCGGTGCCGTGGCCTGGTGGGCCCTGCTCGTGGCGGTCGTGGCCGCGCTGTGGCGGGTGCGTCGCCTGGGCCCGCTCGTCGCCGAGGACCTGCCCGTCGTCGTGCCCGCCGCCGAGTCCACCCGCGGTCGTGGCCGGCTCTACCGCCGCGCGCGCTCGCGCGGCCACGCCGCCGCCGGCCTGCGCGCCGCCGCGACCGCCCGCATCGCCCACCGGCTCGGGTTGCCCCGCTCGGCCGACCGCGCCACCGTGGTCGACGCCGTGGTCCGCGCCACGGGCGGCGACCCGCACACCGTCTCCGACCTGCTGTACGGACCACCCCCGGCCGACGACGTGGCGCTCACCGAGCTCGCCCGCCGGCTCGACACCCTGGAGAGCGAGGTTCACCGACCGTGAMSAPTTEATGTWTASATGDGTTFASRSRRRWRTVRWALLVLVSLAALVALLAVLRPPTSTTPYDTGNTRADGSRALAQVLERQGVTVQQVDQVADAVAAAGPGTTLLVPPSPYLLTQQAEALAGTEADVVVADAGNELLGAVSAGRIGRADRGTTPPTPVAPECELPAAVAAGASLLEPGLEALADGVTTCWPGRMSNTAALATTEQDGRSVTAVHDPAFLRNGDVLTEGNAALALHLLGQHRRLVWLVQDPGDLSATDLDAPSGPGSPGESAGLADLLPPWFGAVAWWALLVAVVAALWRVRRLGPLVAEDLPVVVPAAESTRGRGRLYRRARSRGHAAAGLRAAATARIAHRLGLPRSADRATVVDAVVRATGGDPHTVSDLLYGPPPADDVALTELARRLDTLESEVHRPNANANANANA
AK018_046011113hypothetical proteinGTGACCCACCCCGACGAGAACCCGCCCGCCGGCACCCCGCGGGACCGGCCGGTCGAGACCGCCGAGCCCGTCGAGCAGCCGGCCGAGTATCCGGACGAGCAGCCGGCCGAGCAGGGCGTCCAGGAGACCGCCGCCGCACCCGCCCCGGAGCCCCCGCAGCCCTCCCTCGAGCTGCGCCGCGCGCTGGCGGGCGTGCGCACCGAGGTCGGGCGCGGCGTCGTCGGCCAGGACTCCGCGGTGACCAGCCTGCTCATCGCGCTGCTGTGCTCCGGCCACGTGCTGCTCGAGGGGGTGCCCGGCGTCGCCAAGACGCTGCTCGTGCGCTCCCTGGCCGCGGCACTCGACCTGGACTCCAAGCGCGTGCAGTTCACCCCCGACCTCATGCCCGGCGACGTCACGGGCTCCCTGGTCTACGACGCCCGCACCGCCGAGTTCTCGTTCCGCGAGGGACCGGTGTTCACCAACCTCCTGCTCGCCGACGAGATCAACCGCACCCCGCCCAAGACGCAGGCCTCCCTGCTCGAGGCGATGGAGGAGCGGCAGGTCTCCGTCGACGGCGAGCCGCGGCACCTGCCCGAGCCCTTCGTGGTGATCGCTACGCAGAACCCGGTCGAGCACGAGGGCACCTACCCGCTGCCCGAGGCGCAGCTCGACCGGTTCCTGCTCAAGGTGCTGCTCCCGCTGCCGGAGCGGGACAGCGAGATCGAGGTCCTGGCCCGGCACGCCGCCGGCTTCGACCCGCGCGACCTCGCCGCCGCGGGCGTGCGGGCCGTGGCCGGTCCGGACACCCTCGCCGCGGCCCGCGCCGAGGTGCGCCGGGTCGAGGTCGCCCCCGAGGTGCTCGGCTACGCCGTCGACATCTGCCGCGCCACCCGCCAGTCCCCGTCGCTGCAGCTCGGCGTGTCCCCGCGCGGCGCCACGGCGCTGCTGGCCACCTCGCGGGCCTGGGCGTGGCTCTCGGGCCGCAGGTACGTCACGCCCGACGACGTCAAGGCGCTCGCCTTCCCCACGCTGCGCCACCGCGTCCAGCTGCGCCCGGAGGCCGAGCTGGAAGGGGTCACCGCCGAGACCGTGCTCGGCACCGTGCTCGCCGCCGTCCCGGTCCCGCGCTGAMTHPDENPPAGTPRDRPVETAEPVEQPAEYPDEQPAEQGVQETAAAPAPEPPQPSLELRRALAGVRTEVGRGVVGQDSAVTSLLIALLCSGHVLLEGVPGVAKTLLVRSLAAALDLDSKRVQFTPDLMPGDVTGSLVYDARTAEFSFREGPVFTNLLLADEINRTPPKTQASLLEAMEERQVSVDGEPRHLPEPFVVIATQNPVEHEGTYPLPEAQLDRFLLKVLLPLPERDSEIEVLARHAAGFDPRDLAAAGVRAVAGPDTLAAARAEVRRVEVAPEVLGYAVDICRATRQSPSLQLGVSPRGATALLATSRAWAWLSGRRYVTPDDVKALAFPTLRHRVQLRPEAELEGVTAETVLGTVLAAVPVPRNANANANANA
AK018_046021371hypothetical proteinATGGTGCTGACCTGGCGGGCCGTCGTCCTGGCGGCCCTCGGCGCGGTGCCGGTGGCGCTCTGGCCGGTGCCCGGCGTCGTGCTGGTCTGGGCGCTGGTCGTCGTGGCCGTGTGCTGCCTCGACGTCGCGCTCGCCGCCTCCCCGCGACAGGTCGCCCTGCAGCGCACCGTGCCCACGTCCGTCCGCCTCGGCACCCCGGTCGACTCCCGGCTCGTGGTCACCAACGCCGCCCGTCGCCGGCTGCGCGCCGTCGTCCGGGACGCCTGGCCGCCGTCGCTGGCCGCGGAGGCCGACGACGCCGGTCGCCGTGCGCACGACGACCCGGCGGCCCCGGTCCGCGCGGCCCGGCACACCGTCGACCTGGCCCCCGGGGACGCGGTGCGCCTGCGCACGCCGCTGCTGCCCACCCGCCGCGGTGACCGGTCCGCAGGACCGGTCACGGTGCGCACGCTCGGCCCGCTGCGCGTCGCCGGGCGCCAGGCGTCGATCCCCGTCGGCGGTCGCCTGCGCGTGCTGCCGGAGTTCACCTCGCGACGCCACCTGCCCAGCCGCCTGGCACGGCTGCGCGAGATGGACGGCCGCGCCGCCGTCCAGGTACGGGGCGAGGGCACGGAGTTCGACTCGCTGCGCGAGTACGTGGTCGGCGACGACGTGCGCTCCATCGACTGGCGCGCCACGGCCCGGCGCGGCGACGTCGTCGTGCGCACCTGGCGTCCGGAGCGCGACCGGCGCGTCGTCGTCGTGCTGGACACCGGACGCACCTCCGCGGCGCGGATCGGCACGGTGGACGACGGCGCGGTCAACGTCGGCGGCACCCGGCTCGAGGCGAGCGTGGAGGCGGCCCTGCTGCTCGGGGCGCTGGCCGACCGCGCCGGCGACCGCGTCCAGGTGCTGGCCTACGACCGGGCGGTGCGCGCCCGGGTCGCCGGCGCCTCCGGCCCGCGGCTGCTGCCCGCGATGGCCGACGCCCTCGCTGCCGTCGAGCCGGTGCTGCTGGAGACCGACTGGACGGGCCTGGTCGGGCAGGTCCGCGCCCGGGTCTCGCAGCGGTCGCTGGTCGTCCTGCTCACGTCGCTGGACCCCGCGGCCGTCGAGACGGGGCTGCTGCCCGTGATCGACGGGCTCGCCGAGACCCACCAGGTCGTGGTGGCCGCCGTCAGCGACGCCGAGGTGGCGGCGCTCGGGGCGGGCCGGGAGTCGGTCGAGGAGGTCTACGACGCGGCGGCCGCCGCGCGGGGCGACCTGGACCGGTCCGCGGTGGCGGCGGTGCTGCACCGCCACGGCGCCGAGGTGGTCGAGGCGCTGCCGGACGAGCTGGCGCCACGGCTGGCGGACACCTACCTCGCGCTCAAGGCCGCCGGTCGGCTCTGAMVLTWRAVVLAALGAVPVALWPVPGVVLVWALVVVAVCCLDVALAASPRQVALQRTVPTSVRLGTPVDSRLVVTNAARRRLRAVVRDAWPPSLAAEADDAGRRAHDDPAAPVRAARHTVDLAPGDAVRLRTPLLPTRRGDRSAGPVTVRTLGPLRVAGRQASIPVGGRLRVLPEFTSRRHLPSRLARLREMDGRAAVQVRGEGTEFDSLREYVVGDDVRSIDWRATARRGDVVVRTWRPERDRRVVVVLDTGRTSAARIGTVDDGAVNVGGTRLEASVEAALLLGALADRAGDRVQVLAYDRAVRARVAGASGPRLLPAMADALAAVEPVLLETDWTGLVGQVRARVSQRSLVVLLTSLDPAAVETGLLPVIDGLAETHQVVVAAVSDAEVAALGAGRESVEEVYDAAAAARGDLDRSAVAAVLHRHGAEVVEALPDELAPRLADTYLALKAAGRLNANANANANA
AK018_04603990hypothetical proteinGTGGACCTGGACGCCTTCACCGCCGTGCACCGCCCGGAGTGGGACCGCCTGACGGAGCTGACGAAGCGGCGCCGGCTCGACGGTGCCGAGGCCGACGAGATCGTCCGCCTGTACCAGGCCGTGGCCACCCACCTGTCGACGGTGCGATCGACGGCCCCGGACCCGGCGACCGTCACCCGGCTCTCCGAGCTGCTCGCCCGGGCGCGGACCAAGATCACCGGCGCGCACGAGCCCGCCTGGTCCGACGTGGTCCGGTTCACCGTCGTCACCGTCCCTGCGGCCCTGTACCGCATCCGGTGGTGGATCCTCGGGGTGACGGTCGCCTTCCTCGCCGTGGCCGTCACGGCGGGGGTCTGGGTCGCCGTCGACCCCGACGCGCTCGCCGCGATGGGCACGCCCTCGGAGCGCCAGCAGTACGTCGACGAGGCGTTCGCCTCCTACTACGACCCGCAGGCGTCCTTCGCGGCGATGGTGTGGACCAACAACGCCTGGATCGCCGCCCAGATGATCGCCACCGGCATCACGGGGGTCTTCCCCGTGTACGTCCTGCTCAACAACGCCGTCCAGATCGGCGCCACCGGCGGCATGATGGCCGCCCACGGCGAGCTCGCGCTCTTCGGCCAGCTCATCGCCCCGCACGGGCTGCTGGAGCTGACCAGCATCTTCGTCGCCGGGGCCGCCGGTCTGAAGCTGTTCTGGACGTGGGTCGACCCGGGTCCGCGCCGGCGCGGCACCGCGCTGGCCGCCGAGGGGCGCTCGCTGGTGACCGTGGCCGTCGGCCTGGTGGGTGCGCTGGCGCTGTCCGGCCTGGTCGAGGGCTTCGTGACCGGCTCGGCGCTGCCGTGGTGGCTCAAGATCGTGATCGGCGCGTTCGCCCTCGCCGCGTTCCTCGCCTACGCCCTCGTGCTGGGCCGGCGTGCCGCGGCCGCGGGGGAGACCGGCGACCTGGACGCCGACCGCGCCGGTGCCGTGCTGCCCACCGCCGGCTGAMDLDAFTAVHRPEWDRLTELTKRRRLDGAEADEIVRLYQAVATHLSTVRSTAPDPATVTRLSELLARARTKITGAHEPAWSDVVRFTVVTVPAALYRIRWWILGVTVAFLAVAVTAGVWVAVDPDALAAMGTPSERQQYVDEAFASYYDPQASFAAMVWTNNAWIAAQMIATGITGVFPVYVLLNNAVQIGATGGMMAAHGELALFGQLIAPHGLLELTSIFVAGAAGLKLFWTWVDPGPRRRGTALAAEGRSLVTVAVGLVGALALSGLVEGFVTGSALPWWLKIVIGAFALAAFLAYALVLGRRAAAAGETGDLDADRAGAVLPTAGNANANANANA
AK018_04604834hypothetical proteinGTGACCGACGGCATCCTCATCGGCGAAGGCGTGGTGCTGGACGCCCGTCCGGCCTCCTTCGCCTCGCGGTCGGCGGGCGCGCTGATCGACGTCGCCGTGACCGTCGCCGGGTTCGTCCTGGCGTTCTGGCTGTTCGCGGGCGTCCTGGTCTGGCAGACGGACGTCGTGGCCGGGACGCAGTGGGGGCGCGCCGCCCTGATCGCCGTCCTCGTCCTGCTGCTCGTCGTGCTGCCGACGACCGTCGAGACGCTCACGCGGGGGCGCTCGCTCGGCAAGCTCGCCGCGGGCCTGCGCGTGGTGCGCGACGACGGCGGCCCGGTCCGGGTGCGCCACGCCCTGGTGCGGGCGTTGGTGGGGGTCTTCGAGATCTGGCTGACGGCGGGGGCCGGCGCGGTCGTCACGTCGCTGGCGAACCCGCGCGGCAAGCGGCTGGGCGACGTCCTGGCGGGCACCTACGCGGTGCGGGTCCGCGGTGCGCGCGGCTGGGAGCAGCCGCTGATGATGTCCCCGGCCCTGGCGACCTGGGCGCGGACGGCCGACATCCGCCGGCTGCCGGACGGCCTGGCGCTGCGCACGCGGCAGGTGCTCGACCGCGCACCACGCCTGGCTCCGGCGTCGCGGGCGCGTCTGACGGACGAGCTGGCCGCCCAGGTGGAGGCCTACGTGGCCCCCGGGCCGCCGTCGGGCACGCCCGCCGAGACGTTCCTGCACGCGGTGCTGCACGAGCGTCGCGACCGGGAGCTGGCCCGGGGCCGCAGCGAGCGCGAGCGCGCGCTGCGCCAGGCCGAGTCGCTGCACCGCCTGCCTTACGGGATCGCCGACCCGCGCGACTGAMTDGILIGEGVVLDARPASFASRSAGALIDVAVTVAGFVLAFWLFAGVLVWQTDVVAGTQWGRAALIAVLVLLLVVLPTTVETLTRGRSLGKLAAGLRVVRDDGGPVRVRHALVRALVGVFEIWLTAGAGAVVTSLANPRGKRLGDVLAGTYAVRVRGARGWEQPLMMSPALATWARTADIRRLPDGLALRTRQVLDRAPRLAPASRARLTDELAAQVEAYVAPGPPSGTPAETFLHAVLHERRDRELARGRSERERALRQAESLHRLPYGIADPRDNANANANANA
AK018_04605618hypothetical proteinATGGATCTGCGCGAGCGGCGCCGTCGGTCGACGATGCGGCACGTCCAGCAGGTCGCTCTCGACCTCTTCGAGCAGCACGGTTTCGACGCCGTGTCCGTGGCCCAGGTGGCCGCCGCGGCCCAGGTCGCCGAACGCACGGTCTACCGGCACTTCGGCACCAAGGAGATGCTCGTCGTCCACGACGAGGCGGACGACGCCTTCCTCGCGGACCTGCTCCGCCACGCTGCCGTCGTGGGGGCGGTGGACGCCGTCGAGGCGGCGCTCGCGGGACCGGCGGCGCACGGCTGGCGCCGCGGGGGCCCGACGGCGCAGGCCTGGCTGCGCAAGATGCGGCTGCTGCGGGCCACCCCGGCGCTGCGCACCGTGTTCGAGCAGGCCGTCTCCGAGCTCGGCGACGCCCTGGGGGCCGCCGAGCGAGGGGGCTGCGGGGCCGACGCCTACGCCGCGCGGGTCCGCGGACGCGCGGTGGCCGCGATGCTCGCGGCGGCGGCGGAGGCCTGGGACGCGAGCGACGGCGACGACGACCTCGCAGCGTTCGTGCGGGCCGGCGTCGAGGCGCTGCGCACCCCCGCCCGGCCGGGCGCCGGGACTCAGTCGCGCGGGTCGGCGATCCCGTAAMDLRERRRRSTMRHVQQVALDLFEQHGFDAVSVAQVAAAAQVAERTVYRHFGTKEMLVVHDEADDAFLADLLRHAAVVGAVDAVEAALAGPAAHGWRRGGPTAQAWLRKMRLLRATPALRTVFEQAVSELGDALGAAERGGCGADAYAARVRGRAVAAMLAAAAEAWDASDGDDDLAAFVRAGVEALRTPARPGAGTQSRGSAIPNANANANANA
AK018_04606912COG1131Multidrug efflux system ATP-binding proteinGTGCCCGACCCCGTCATCGACATCTCCGGCCTCGTCAAGACGTTCGGCTCGTTCCGTGCGCTCGACGGCTTCGACCTCCGCCTCGATCCCGGGGAGGTGCGCGGCTTCCTCGGCCCCAACGGCGCCGGCAAGACCACCACGATCCGCGTGCTGCTCGGGATGATGCGCGCCTCGGGCGGCCGCGTCCGGCTCTTCGGGCAGGACCCGTGGCGCCGGGCGGTCGCCCTGCACCGGCGGCTGACCTACGTCCCCGGCGACGTCGCGCTGTGGCCCGGGCTGACCGGCGGCCAGTGCCTCGACGTGCTCGGGGCGTCGGGCGCGCCGCTCGACCCGGCGCGCCGCGACGAGCTCGTCGAGCGCTTCGACCTGGACCCCACCAAGCGGGTGCGCGACTACTCCAAGGGCAACCGGCAGAAGGTCGCGCTGGTGGCTGCCCTCGCCGCGCGCGCCGACCTGCTCGTGCTCGACGAACCCACCTCCGGCCTCGACCCCCTCATGGAGGAGGTCTTCCGCGAGTGCGTCACGGAGCGGGCCGCCGACGGCGCGGCGGTGCTGCTGAGCAGCCACATCCTGTCCGAGGTCGAGGCGCTGTGCTCGACGGTGACGATCATCCGACGCGGGCGGGCCGTCCGGGCCGGCACGGTCGCCGAGCTGCGGGGCCTGGCCCGCACGACCGTGCACGCCGTCACCCCCGGCGCCCCGCCGGACCTCGACGGCTTCGACCTGCACGACCTGTCGGTCACCCCCGTGGCCGACGGCGGCGCGGGCCACGACGTGACGTTCACCGTGGAGCCCGGCGACCTGGAGAAGGTGCTGCGGCCGCTCGTCGACGCCGGGCTGACGGGCCTGACCGTGCGCCCGCCGAGCCTCGACGAGCTCTTCCTGTCCGAGTACGACGGGGCACCGGCATGAMPDPVIDISGLVKTFGSFRALDGFDLRLDPGEVRGFLGPNGAGKTTTIRVLLGMMRASGGRVRLFGQDPWRRAVALHRRLTYVPGDVALWPGLTGGQCLDVLGASGAPLDPARRDELVERFDLDPTKRVRDYSKGNRQKVALVAALAARADLLVLDEPTSGLDPLMEEVFRECVTERAADGAAVLLSSHILSEVEALCSTVTIIRRGRAVRAGTVAELRGLARTTVHAVTPGAPPDLDGFDLHDLSVTPVADGGAGHDVTFTVEPGDLEKVLRPLVDAGLTGLTVRPPSLDELFLSEYDGAPAPGPT0006725_12463DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_046071608COG3559Multidrug efflux system permease proteinATGACGGCCCCGGGCGCCGGCACGACGCGGCGCACCGGCGACGGGCTGACCGCGGTGCTGCGGCTGCAGCTGCGCACCGGGTGGAAGGCCCTGCTGGCCTGGGTGGCCGGACTGGTCGGGGTCTACGCCGCCACGGTCGGGGCCATCGACACGACCTACGGCACGCCGGAGCAGCTCGCGTCGTACCAGGCGACCGTGGGCTCGGACCCGACGATGGCGGCGATCAACGGCACCCCCTACGGCGCCGACACGCTCGGCGGGGTGGTGGCCAACGAGTTCGGCTTCATCGCGGCGATCGCCGTGCCGCTCATGGGCCTGCTGCTCGTGACGCGCTCGACGCGGGCCGCCGAGGAGAACGGGCTGCTCGAGCTCCTGCGCTCGCGTGCCATCGGCTCCCGCGCACCGTGGAACGCGGCGCTGGGTGTCACGGCGGGCGCCCTCGTGCTCGTCGGTCTGGGCATGGCCGGTTCCCTGCTGGCCTACGGCGTCGAGGCCGCCGACGCCGCGCTCTACGGCGCCTCGGTGACCGCGCTGGGCCTGGTGTTCGCGGGCGTGGCGACCCTGGCCGGCCAGCTCCTGCGCCGCGCCGCGGGGGTCGTGGCCGTCGGCATCGTCGTGCTGGGCGCCGCCTACGTCTTCCGCGCGATCGGGGACGTCGAGGACAACGGCTGGAAGTGGCTGTCCCCCCTGGCCTGGCAGCAGGAGACCCGCCCCTTCACCGAGGACCCGCGCGTGTGGCCGCTGCTGCTGGCCCTCGGCGTGGCCGCGACGCTCAGCGGGCTCGGCCTGGCGCTCGTCGGCCGTCGCGACCTGGGCAGCGCCGTCGTGCCGAGCCGTCCCGGGCCCGCCCGGGCGGGCCGGTTCCTGGCCAGCGGACCCGGGCTGGCCCTGCGCCAGCACGGTGCGACCCTGCTGGCCTGGGCCGTCGGCGCCGCGCTGGTCGGCGCCGTGTTCGGCGCGTTCACCGACGACATCGCCGACGTCGTGGCCGCCAACCCCGACCTGCAGGCCGCCTTCTCGGCGGGAGCCGCCGGCGACGCGACGAGCTGGTACCTGTCCTTCACGCTCGTGCTGGTGATGCTCATGGCCTTCGGCGCGGCCGCGCAGGTCGTGTCCCGGGTGCGCCGCGAGGAGACCGGCGGTCGCCTGGAGGCGGTGCTGGCACGGTCCGTGCCGCGCACGACCTGGCTCGGCACGCACGCCGCGGTCGCGGTGCTCGGCGGCACGCTGGTCGCGCTGGCCGGCGGCGCCGGGCTGGCGGTGACCGCCTCGCGCGCCACCGGCGACACCGCCGGGGCGTTCACCGCCGCGGCGCAGTACCTGCCCGCGGTGGTCGCCGTCGTCGGCCTCGGGGTGGCGCTGCTCGGCCTGCTCCCCCGGGCCCTGGGGCTGCTGTGGGTGGCGATCGCCTACGTCGCGGTCGTCGAGATGCTCGGCGAGACGCTGAGCATGCCCGACGCCGCGCTCCAGGTCTCCCCGCTGCACGCGATCGGGCGGCTGCCGGCCGAGGACCCCTCCGGCACCGGGGTCCTGGTGGTCGGAGCCGTCGCGGTGGCGCTGCTCGGCGCCGGGCTGGCCGGCTTCCGCCACCGCGACGTGGCCCGCTGAMTAPGAGTTRRTGDGLTAVLRLQLRTGWKALLAWVAGLVGVYAATVGAIDTTYGTPEQLASYQATVGSDPTMAAINGTPYGADTLGGVVANEFGFIAAIAVPLMGLLLVTRSTRAAEENGLLELLRSRAIGSRAPWNAALGVTAGALVLVGLGMAGSLLAYGVEAADAALYGASVTALGLVFAGVATLAGQLLRRAAGVVAVGIVVLGAAYVFRAIGDVEDNGWKWLSPLAWQQETRPFTEDPRVWPLLLALGVAATLSGLGLALVGRRDLGSAVVPSRPGPARAGRFLASGPGLALRQHGATLLAWAVGAALVGAVFGAFTDDIADVVAANPDLQAAFSAGAAGDATSWYLSFTLVLVMLMAFGAAAQVVSRVRREETGGRLEAVLARSVPRTTWLGTHAAVAVLGGTLVALAGGAGLAVTASRATGDTAGAFTAAAQYLPAVVAVVGLGVALLGLLPRALGLLWVAIAYVAVVEMLGETLSMPDAALQVSPLHAIGRLPAEDPSGTGVLVVGAVAVALLGAGLAGFRHRDVARNANANANANA
AK018_046081539ahcY_2COG0499AdenosylhomocysteinaseATGACCGACACGATCGCGACGACCGACCGGCCGGCCGGCGGCTTCGACGAGGCGCCGGGCCGCTACAAGGTCCGTTCGCTCGCGCTGGCCGACGCGGGCCGGCACCAGATCCGGCTCGCCGAGCACGAGATGCCGGGCCTCATGGCGCTGCGGGAGGAGTACGGCAGCGCGCGCCCCCTGGCCGGTGCTCGCATCGCCGGGTCGCTGCACATGACCGTTCAGACCGCCGTCCTCATCGAGACGCTCACCGCGCTCGGCGCCGAGGTGCGCTGGGCCAGCTGCAACATCTTCAGCACCCAGGACGAGGCCGCGGCCGCCGTCGTCGTCGGCCCGCACGGCACGCCGGACGACCCGCAGGGTGTGCCGGTCTTCGCCTGGAAGGGCGAGACCCTCGAGGAGTACTGGGACTGCACCGAGCAGATCCTCGCGTGGCCCGGCGGGGAGGGCCCGAACCTGATCCTGGACGACGGCGGGGACGCGACCCTGCTCGTCCACCTCGGTCTGCAGTACGAGCGCGTCGGCGCCGTGCCGCCGAACACGCTGCCCGGCGAGCCGGACCACACCCACGAGATGAACGTCGTGCGCGACGTCCTGCGCGGGGACCTCGAGATCGACCCGCTGCGCTGGACCGGGATCGCCGAGCAGATCGGGGGAGTCACCGAGGAGACGACCACCGGCGTGCACCGGCTGTACCACCTGGCCGAGTCCGGCGAGCTGCTGTTCCCGGCGATCAACGTCAACGACTCCGTCACCAAGTCGAAGTTCGACAACAAGTACGGCATCCGGCACTCCCTGCCCGACGGCATCAACCGGGCCACGGACGTGCTCGTCGGCGGCAAGGTCGCGTTCGTGGCCGGCTACGGCGACGTCGGCAAGGGCGCGGCGGAGGCCTTCCGCGGCCAGGGCGCCCGCGTGATCGTCTCCGAGGTGGACCCCATCTGCGCGCTGCAGGCCGCCATGGACGGGTTCCAGGTCGCGCGCCTGGAGGACGTCGTCGGCGAGGCGGACTTCTTCATCACCACCACCGGCAACAAGGACGTCGTCCGGGTCGAGCACATGCTGGCCATGAAGGACAAGGCCGTCGTCGGCAACATCGGCCACTTCGACAACGAGATCGACATGGCGGGCCTCGAGGCCGTGCCAGGGGTCGTCAGGACCGAGATCAAGCCGCAGGTGCACGAGTGGACGCTGCCGGCCGACGACGACGGAGACCGCGCCGAGCGGTCGATCATCGTGCTGTCCGAGGGGCGCCTGCTGAACCTGGGCAACGCGACCGGCCACCCGTCGTTCGTGATGTCCAACTCGTTCGCCAACCAGGTCATCGGCCAGCTCGAGCTGTTCGCCGACATGGCCCGGCCGGCCGAGGAGCGGCAGTACGCCCGCCAGGTCTACCGGCTGCCCAAGGTGCTCGACGAGAAGGTGGCCCGGCTGCACCTGGACGCCCTCGGTGTGCGCCTGACCGACCTCAGCACCGAGCAGGCCGAGTACCTCGGCGTCCCGGTCGAGGGGCCGTACAAGCCGGAGCACTACCGGTACTGAMTDTIATTDRPAGGFDEAPGRYKVRSLALADAGRHQIRLAEHEMPGLMALREEYGSARPLAGARIAGSLHMTVQTAVLIETLTALGAEVRWASCNIFSTQDEAAAAVVVGPHGTPDDPQGVPVFAWKGETLEEYWDCTEQILAWPGGEGPNLILDDGGDATLLVHLGLQYERVGAVPPNTLPGEPDHTHEMNVVRDVLRGDLEIDPLRWTGIAEQIGGVTEETTTGVHRLYHLAESGELLFPAINVNDSVTKSKFDNKYGIRHSLPDGINRATDVLVGGKVAFVAGYGDVGKGAAEAFRGQGARVIVSEVDPICALQAAMDGFQVARLEDVVGEADFFITTTGNKDVVRVEHMLAMKDKAVVGNIGHFDNEIDMAGLEAVPGVVRTEIKPQVHEWTLPADDDGDRAERSIIVLSEGRLLNLGNATGHPSFVMSNSFANQVIGQLELFADMARPAEERQYARQVYRLPKVLDEKVARLHLDALGVRLTDLSTEQAEYLGVPVEGPYKPEHYRYNANANANANA
AK018_046091251hypothetical proteinATGGGATCGACGACGCACACGGCATCGCGCATGCATCTCCTGGACCTGCTGCGCTTCGGGGCGGCGCTGGCCGTCGTGCTCTACCACTTCACCGCGACGCCGACGGCGAACCGCTACTGGGGTGCGGACGTCACGGGCCTGTTCGAGGGGATCAACCAGGTCACCCGCTACGGCTGGCTCGCCGTCGAGGCCTTCTTCGTGATCAGCGGCTTCGCGATCCTGTGGAGCGTCCAGGGCCGGACGCTCGCCCAGTTCACCGGCTCCCGCGTCGGGCGCCTCTACCCCGCCTTCTGGGCGTGCGTCGTCCTGACCGCGGTGCTGCAGGCCGTGTGGGACGACGGGCGGCACCTGACCGCCGTCGAGACCGTCGCGAACCTGACGACGGCGCCCGACCTGCTCGGTGCCGAACCCTCCCAGGTCGTCTACTGGACCCTGCTGGTCGAGCTCACGTTCTACCTGCTCCTCGGCCTCGCGCTCGCCGTCGGCCCGCTGACCCGGGGACGGGCCGTCGCCCTGGCGCTGGCCTGGCCTGCCGCCGGCCTGGTCGCCCAGGGCCTCGGAGCGCCCGGACTGGCCGAGGCCCTCGCCGTCCGCCACGCCGTGTACTTCGGCATCGGCATGCTGCTCTTCGTGCTCTGGCAGGACCTGACCGGCCGCGGCGCCGCACCGGTCGCCGGACCCCGGTCGCCCTCCACCCGCGCGGTCGCGGCGGCGCTCGCCGTGCTCGTCGTGGCGGGCGCCGCCCGCGTGGTCCGGTCCGCCCCGCTGGCCCAGGAGCTGCAGGGCGTCCGGGTGGACCCGGCGGTCGCCGTCGGGGTGCTGCTGGCCGGCATCGCCCTCGTCGCCCTCGCCACCCACCCGGGCGTCACGGTCCGGCAGCGCTGGGCCGCCGGTGCGTGCGTCACCGCGGGTGCCCTCACGTACCCCGTGTACCTGGTGCACACCCAGTTCGGCTGGGCCGTGACCCAGTGGCTCACCGGGGCCGGAGCGGGCCCCGGCGCGACGCTGGCGGCGACGACGGCCGTCTCCCTGCTGCTGGCCGCCGCGATCCACCACTGCTGCGTCGAACGGCCGTTCTCGCGCCCGTTGCGGCGAGCCGTCACCGAGCGGCTGCAGCGCACGGCACCGGATCCCGGCACGACCGGACCGGTCCGTCGACCCGCCCGGTCCGAGCTGCCCGGGCTCGGGGAGCACCACCGCGGAGCCGCCCTGCCGGCCGGAGCCCCGATGCCCGACCCCGTCCTGCGCTGAMGSTTHTASRMHLLDLLRFGAALAVVLYHFTATPTANRYWGADVTGLFEGINQVTRYGWLAVEAFFVISGFAILWSVQGRTLAQFTGSRVGRLYPAFWACVVLTAVLQAVWDDGRHLTAVETVANLTTAPDLLGAEPSQVVYWTLLVELTFYLLLGLALAVGPLTRGRAVALALAWPAAGLVAQGLGAPGLAEALAVRHAVYFGIGMLLFVLWQDLTGRGAAPVAGPRSPSTRAVAAALAVLVVAGAARVVRSAPLAQELQGVRVDPAVAVGVLLAGIALVALATHPGVTVRQRWAAGACVTAGALTYPVYLVHTQFGWAVTQWLTGAGAGPGATLAATTAVSLLLAAAIHHCCVERPFSRPLRRAVTERLQRTAPDPGTTGPVRRPARSELPGLGEHHRGAALPAGAPMPDPVLRNANANANANA
AK018_04610957hypothetical proteinATGAGCACTCATCGCAAGCACCTTCGCCGCCGCCAGGGCCTGGCCCTCGTCTCCGCCGCGGCGCTCGGCCTCACCCTGGCCGCGTGCAGCACGGACGACGGCGGCTCGGACGACGCCGGTGCCGAGGGCACCGACGAGTCGACCGAGGAGATGGCCGACGGCGACATGGGCACCATCACGCTCGGCTACCTCCCGGCCTGGACCGACGGTCTGAGCATGGCCTACCTCGCGGACAACCTGCTCACCGAGGCCGGCTACACGGTCGAGCACCAGGACGTCCAGGAGGCCGGCCTGCTGTACACCGCTCTCGCCGAGGGCGACGTCGACATGTACCCGTCCGCGTGGCCCGAGGTCACGCACGCGCAGTACATGGAGGAGTACGGCGACTCGATCGACGACATCGGCACGTACTACGACAACGCCAAGCTCACCATGGCGGTGCCGGAGTACACCGAGGTCGACTCGATCGCCGAGCTGGCCGACAACGCCGACCTGTTCGACGGCACCATCGTGGGCATCGAGCCGGGCGCCGGTCTGACGGCGGCCGTGCAGGACTCGGTCATCCCGACCTACGGCCTGGAGGACGCGGGCTACACGCTGCAGACCTCCTCCACCACGGCGATGCTGACCGAGCTGGAGCAGGCCACCGAGGACGAGGAGGACATCCTCGTCACGCTGTGGCAGCCGTTCTGGGCGAACGCGGCCTACCCGGTCAAGACGCTCGAGGACCCGGAGGGTGCGCTCGGTGAGGCCGAGGGTCTGCACTTCCTGGGCACCAGCGGCTTCGCCGACGAGTACCCGGAGGCCGCCGAGATCATCGGTGGTATCCAGCTCGACGACACGCAGTTCGGCACGCTCGAGGACCTCGTCGTGAACGAGAACCCGGACGACCCGGCTGCCGGTGTCGAGGCCTGGCTCGAGGAGAACCCCGACGTCATCCCGATGCCGGAGAGCTGAMSTHRKHLRRRQGLALVSAAALGLTLAACSTDDGGSDDAGAEGTDESTEEMADGDMGTITLGYLPAWTDGLSMAYLADNLLTEAGYTVEHQDVQEAGLLYTALAEGDVDMYPSAWPEVTHAQYMEEYGDSIDDIGTYYDNAKLTMAVPEYTEVDSIAELADNADLFDGTIVGIEPGAGLTAAVQDSVIPTYGLEDAGYTLQTSSTTAMLTELEQATEDEEDILVTLWQPFWANAAYPVKTLEDPEGALGEAEGLHFLGTSGFADEYPEAAEIIGGIQLDDTQFGTLEDLVVNENPDDPAAGVEAWLEENPDVIPMPESPGPT0013640_2029DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
AK018_04611924opuAB_2COG4176Glycine betaine transport system permease protein OpuABATGGTCCCGATGTCCACCTCTGACGACACTCTGATCCCCAAGGTGCCGGTCGGTGAGGCCGTCGACAGCGGGATCGACTGGATCAACGACAACCTCGAGTGGCTGCTGGACGGCATCACCGCCGTGATGTCGTTCCTCATCGACGGCATCACGGACCTGCTGCTGCTGCCGCCGCCGCTCGTCCTGGCCGCGCTGTTCACGCTGCTCGCGCTGCTGGTGCGGTCGTGGGGCTTCGCCGTCTTCACGCTCATCGGCACGCTGCTGATCATCAGCATGGAGATGTGGGAACCGGCGATGGAGACCCTCAGCCTGGTGCTGGTCGCCACCGTCGTCGCGGTGATCGTCGCGGTACCCGTCGGCATCCTCGCCGCCCGGAACGACGCGGTCAGCGCCTTCGTCCGCCCCATCCTGGACTTCATGCAGACGATGCCCGCCTTCGTCTACCTGGTCCCGGTGGTCATCTTCTTCGGTATCGGCGTCGTCCCCGGTGTCTGCGCGACCATCGTGTTCGCGCTGCCGCCCGGCGTCCGCCTCACCGAGCTGGGCATCCGTCAGGTCGACGGCGAGACCGTCGAGGCCGGCGAGGCCTTCGGCGGCACGCCGTGGCAGATCCTGCAGGGCATCCAGCTCCCGCTGGGCCTGCCGACGATCATGGCCGGCGTCAACCAGGTCATCATGCTGGCCCTGTCGATGGCGGTCGTCGCCGGCATCGTCGGCGCGGGCGGCCTCGGCGGGGAGGTCGTGCAGTCGATCTCCACGCTCGACGTCCCGCAGGGTGTCGAGGGCGGTCTCGCCGTGGTCATCCTGGCCATCTTCCTCGACCGGACCACCGGCGCCATCGGCCAGCCGACCGGGCGCTCGCTCCTCGCGGCCCTCAAGAGGCGCAAGGGCGACTCCGGCCGCGTCGCGGTGGCCTCGGTCTGAMVPMSTSDDTLIPKVPVGEAVDSGIDWINDNLEWLLDGITAVMSFLIDGITDLLLLPPPLVLAALFTLLALLVRSWGFAVFTLIGTLLIISMEMWEPAMETLSLVLVATVVAVIVAVPVGILAARNDAVSAFVRPILDFMQTMPAFVYLVPVVIFFGIGVVPGVCATIVFALPPGVRLTELGIRQVDGETVEAGEAFGGTPWQILQGIQLPLGLPTIMAGVNQVIMLALSMAVVAGIVGAGGLGGEVVQSISTLDVPQGVEGGLAVVILAIFLDRTTGAIGQPTGRSLLAALKRRKGDSGRVAVASVPGPT0013635_1215DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013635-gbuB|proW-K02001NANA
AK018_046121260opuAACOG4175Glycine betaine transport ATP-binding protein OpuAAGTGCCAGCCATCGAGGCAAGTGGCCTGACAAAGATCTTCGGGCGCCGCCCGCAACGCGGCGTCCGCATGCTGAAGGACGGCGCCGACCGCGCCGAGCTCCGCAAGGAGGGGCTGACGGCGGCGGTCATCGATGCCACCTTCGACGTCCAGCCCGGCGAGATCTTCGTCGTCATGGGTCTGTCCGGATCCGGTAAGTCGACGTTGATCCGTATGGTCAACGGCCTGCTCGAGCCGACCGACGGCGTCATCACCATCGACGGGCAGGACGTCACCCACCTGTCCGCGAACGCCCTGCGCGAGGTGCGTCGGACCAAGGTGTCCATGGTGTTCCAGCACTTCGCCCTGCTGCCGCACCGCACCGTCGGGGAGAACGCCGCGTACCCCATGCAGCTGCGCGGCGTGAACAAGGCCGAGCGTGAGGCCCGTGCCGAGGAGGCCCTCGGCATGGTGGGCCTGGGCGGCTGGGGCGGCTACATGCCGGACCAGCTCTCGGGCGGTATGCGCCAGCGCGTCGGGCTGGCCCGCGCGCTCGCCGCCGGCACCGACGTCATGCTGATGGACGAGGCCTTCAGCGCCCTCGACCCGCTGATCCGCAAGGAGATGCAGGACCAGCTCCTGGAGCTGCAGTCCGAGCTCGGCAAGACCATCCTGTTCATCACCCACGACCTCAACGAGGCGATGCGTCTCGGTGACCGCATCGCCATGATGCGCGACGGTCGCGTGGTGCAGGTCGGCACCTCCGAGGAGATCCTCAACGAGCCGGCCAACGACTACGTCGCCCAGTTCGTGGCCGACGTCGACCGGTCGCGCGTGCTGACCGCCGGCGCCGTCATGGAGCGCCCGGTGGCCGTGGTGGGACCCGACTCGGGTCCCAAGGCCGCCCACAAGCTGATGCGCGAGCACCAGACGTCCTCGCTGCTCGTCGTCGGGCGTGACCGCACCGTGGCCGGTGCCGTCCTCGAGAGCGACGTGGCCGACGCGGTGCGCCGCGGTGTCGAGAAGCTGCCGATCAGCGAGGTGCCCGTGCCGCGGGTGTCGCCCGACGCCGCACTGGCCGAGCTGTTCCAGCACGCGGCCGAGAGCAAGGCTCCGATCGCCGTCGTCGGGGAGTCGGGGCGCCTGGAAGGTGTCATCCCGCGGGTGACCCTGCTCAGCGCGCTGTCCGGCCCCCCGATGGACAGCCCCGACGTGGCCGCGGACGGCCAGGGCGAGGGCCCTGCCGACGGTGAGCCCGTTCTCGACCCGGCAGGAGCGAAGTGAMPAIEASGLTKIFGRRPQRGVRMLKDGADRAELRKEGLTAAVIDATFDVQPGEIFVVMGLSGSGKSTLIRMVNGLLEPTDGVITIDGQDVTHLSANALREVRRTKVSMVFQHFALLPHRTVGENAAYPMQLRGVNKAEREARAEEALGMVGLGGWGGYMPDQLSGGMRQRVGLARALAAGTDVMLMDEAFSALDPLIRKEMQDQLLELQSELGKTILFITHDLNEAMRLGDRIAMMRDGRVVQVGTSEEILNEPANDYVAQFVADVDRSRVLTAGAVMERPVAVVGPDSGPKAAHKLMREHQTSSLLVVGRDRTVAGAVLESDVADAVRRGVEKLPISEVPVPRVSPDAALAELFQHAAESKAPIAVVGESGRLEGVIPRVTLLSALSGPPMDSPDVAADGQGEGPADGEPVLDPAGAKPGPT0013630_439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013630-gbuA|proV-K02000NANA
AK018_04613636hypothetical proteinATGCTCACCCTGACCTTCTCCACCGGGGTCGCCGACGCCGTCGGATTCCTCGGCCTCGACCGGGTCTTCACCGGCAACATGACCGGCAACGTCGTCATCCTCGGCATGGGTCTCGCCGGCGCCGACGACCTGCCGGTGGTCGGCCCGCTGCTGGCGTTCGTCACCTTCCTCGCCGGTGCCACCGTCGGCGGCCTCGTGCTCCGCGCCGACGACGTCGGGTGGACCGGACGGACCACGGCGTGCTTCGGCACGGTCGCTCTCGTCCTCGTCGCCCTCACCGTGCTGCTGGGGACCTCCGGAGGCGACCTGTCCCACGGCGTCCAGCTCGTCGTCACCGGACTGCTGGCCGGCGTGATGGGCCTCCAGGCGGCCGCCGCCCGTCACCTGGCGGTCAAGGAGATCACCACGGTGGTGGTCACCAGCGCGATCACCGGTCTGGCCATGGACTCCCGGCTCGTCGGCGGTCACGGCCGGCACGTCGGCCGCCGCGTCGCGGCGATCCTCCTGCTCGGGGCCGGGGCAGGCGTCGGCGCGGCACTGCTGCAGATCCATCTGGCCTGGGGCGTCGCCCTCAGCGCGGCCGTCGCGCTGACCGTGACCGCCGTCGGCCACCTCCGCGGACGGGAGACCGCATGAMLTLTFSTGVADAVGFLGLDRVFTGNMTGNVVILGMGLAGADDLPVVGPLLAFVTFLAGATVGGLVLRADDVGWTGRTTACFGTVALVLVALTVLLGTSGGDLSHGVQLVVTGLLAGVMGLQAAAARHLAVKEITTVVVTSAITGLAMDSRLVGGHGRHVGRRVAAILLLGAGAGVGAALLQIHLAWGVALSAAVALTVTAVGHLRGRETANANANANANA
AK018_046141788ywrD_2COG0405Glutathione hydrolase-like YwrD proenzymeATGACCTTCACCCCAGCGCCCGCACCGACCACCCGCCCCGACCTGCAGGGCTCGTTCGGCATGGCCGCCTCCACCCACTGGTCGGCCACCGGCAGCGCGCAGTCCGTGCTGGAGCGCGGCGGCAACGCTTTCGACGCCGCCTGCGCCGCGGCGTTCGTGCTGCACGTCGTCGAGCCGCACCTCAACGGCCCGGGCGGCGACCTGGTCGGCCTGTTCGCGACCGCCGACGCACCGGGCCGGCCCCAGGTGCTCAGGGGCCAGGGACCGGCGCCGGCCGCGGCCACGATCGCGCACTACCGCGACACCGAGGGCCTCGACGTGGTGCCCGGTTCCGGTGCCCTGGCCGCCGCCGTGCCGGCCGCCGTCGACGCCTGGCTCGTCCTGCTGCGCGACCACGGGACCTGGACCGTGCGCGACGTGCTGGCCTACGCCGTCGGGTACGCCCGCGACGGGCACCCGGTGCTGCCGGCCGTCGCCGCGACGATCGGACGCGTGGCCGACCTCTTCGCCGAGCACTGGCCGACGTCCGCCGCGCGGTGGATGCCGCACGGCCGGCCGCCACGGCCCGGCGAGACGGTGACCAACCCTGCCTACGCCGCCGTGCTGGACCGGCTCGGCGACGCCGCCGACGCCGCACCCTCGCGCACCGCCGGGGTGGAGGCCGCGCGCACCGCCTGGCGAGAGATCGTCGGGCCCGCCGTGGAGGAGTTCGTCGCCACGCCGCACCGGCACTCGGACGGCCGCGACCACGCGGGCGTGCTGACCGCCGCCGACCTGGCCGGCACGGGTGCGGGCTACGAGGAGCCGGCGACGATCTCGTTCCGGGGCCGCACGGTCGTCAAGCCCGGTGCGTGGACCCAAGGCCCCGTGCTGCTGCAGTCCCTGCGCCTCCTCGACGGGTTCGAGGACGACCGGCTGGACGTGGCCACCGAGCTCGGCGCCCACACCGTGCTCGAGACGCTCAAGCTCACGCTCGCCGACCGGGACGTCTGGTACGGCGACACCGACGTGCCGCTCGACCACCTCCTGTCCGCGGAGTACGCCGCGCAGCGCCGGGACCTGATCGGGGACAGGGCCTCGCACGAGCTGCGACCGGGCAGCGTGCCCGGCCGGACCGCTCCCCCGCTGCCCCCGCTGCGCACGACCGGGGCCGCGTCGTCGGGCACCGGGGAACCCACCGTCCAGGTGAACGGCACCACACGGGGCGACACGTGCCACGTGGACGTCGTCGACCGGTGGGGCAACATGGTCAGCGTGACGCCGTCCGGCGGGTGGCTGCAGTCCTCGCCGGAGATCCCCGCCCTCGGGTTCTGCCTCGGCACGCGGCTGCAGATGACCTGGTTGGACGAGTCGTCCCCGTCCCGGCTGGCGCCCGGGGTCCGTCCCCGGACCACGCTGTCGCCCACGCTCGTGCTCGCCGACGGCTTCCCCGTGATGGCCTGCGGCACGCCCGGCGGCGACCAGCAGGACCAGTGGCAGCTGCCCTTCCTGCTGCGCACGCTGGTCGGCGGGTACACGCCGCAGCAGGCGATCGACGCGCCGACCCTGCACACGACGTCGATGGCCGACTCGTTCTGGCCGCGGACGTGGACGCCTGGCGGCGCCGTCGCGGAGTCCCGGCTCGGCACGGACGTGATCGACGGGCTGGTCCGGCGCGGCCACGTGCTGACCGAGGCCGGGCCCTGGTCGCTGGGGCGGCTGTCGGCGGTGACCCGGGACCCGGCGACCGGTCTGCTCGGGGCCGCGGCCAACCCGCGCGGGGCGCAGGGGTACGCGGCCGGGCGGTAGMTFTPAPAPTTRPDLQGSFGMAASTHWSATGSAQSVLERGGNAFDAACAAAFVLHVVEPHLNGPGGDLVGLFATADAPGRPQVLRGQGPAPAAATIAHYRDTEGLDVVPGSGALAAAVPAAVDAWLVLLRDHGTWTVRDVLAYAVGYARDGHPVLPAVAATIGRVADLFAEHWPTSAARWMPHGRPPRPGETVTNPAYAAVLDRLGDAADAAPSRTAGVEAARTAWREIVGPAVEEFVATPHRHSDGRDHAGVLTAADLAGTGAGYEEPATISFRGRTVVKPGAWTQGPVLLQSLRLLDGFEDDRLDVATELGAHTVLETLKLTLADRDVWYGDTDVPLDHLLSAEYAAQRRDLIGDRASHELRPGSVPGRTAPPLPPLRTTGAASSGTGEPTVQVNGTTRGDTCHVDVVDRWGNMVSVTPSGGWLQSSPEIPALGFCLGTRLQMTWLDESSPSRLAPGVRPRTTLSPTLVLADGFPVMACGTPGGDQQDQWQLPFLLRTLVGGYTPQQAIDAPTLHTTSMADSFWPRTWTPGGAVAESRLGTDVIDGLVRRGHVLTEAGPWSLGRLSAVTRDPATGLLGAAANPRGAQGYAAGRPGPT0002935_1073DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681NANA
AK018_046151113hypothetical proteinGTGACAGGACAGGGAAACTCCGCTGAGGATGTTGCCGCGCCGACGGGACGGTCGACCGTCGTACTGGTCACAGGTGCCGGTCGGAGCGGCACCAGCACGGTGACGGGAGTTCTCAAGTACCTCGGTGTCCAGGTCCCCGCGCCTGAGATCGAGGCCAACGAGACCAATCCCCGCGGCTTCTTCGAGACCAAGTGGGTCGTCTGGCGCAATCAGCAGATCTTGAGTCGAACCAGGGCGGGGTCGCTCGATGCTGACCCAGGTGTCGCTCGGTTGACGGAGGCGGCCGCCCGCCGAGGATTCGAGGGCAAGATACGGCGCTGGATCGCCCAGACCTTGGACCACGCGCGCCCGACCTACGTGATCAAGGATCCGCGGACGATCTGGACGGCCGGGACGTGGACCGCCCTTCTGGAGGAGGCCGGGTACGACGTCAAGTATCTGACTATGCTGCGCCACCCCGTCGAGGTGCTCGGTAGCCGCAAGCAGCACTACCGCGATGGGATCGGAGCTGGGAAGGCAGGCACGGTCGAGACGGCACAGCTCGCTGGCTGGATCAACGTCAACCTGGCCAGCGAGCGCCTGGGGCGGGGCCATGACCACGTCTTCGTCCGATATGAGGATCTCCTGGCCGACTGGCGAGGGGCTATGCGGCAGGTCCGCGACCTTCTGGGCCTCGAGCTGAACCATGACCTCGGCGACACCCCCCACGAGGTCGACAACTTCGTCGAACCGACGCTTCGTCGCCAGCGCGGCGACTGGGAAGATATGAACGTTCCCGACTGGCTGCGCGAGCTGGCGCAGGAGTCCTGGGTGCTGCTCGGGGCCCGCGCCAGCCAGGAACGGTCTGCGGCCGAGCTCGTAGACCGCTTCGACGATGTGGCTCGACGGTACGAGGCGGAGTACGAGTGGGCTTTTACCCTGGTCGGGGACCGTGTTCGCCGCAAGGTCAACAAGGCTCGGAAACAGGGCCGGGTCGAGGAGCGCAATCGCCTGGAGGGACTAAGGGCTGAGGCCCCTGCGGCGGTACCCGGAATCGAAGATGCCACAACGCGGCAGATCGTCGACGAACTCGGTGGTCGCCTGAGGTCTCGGCTTCTCCGTCGGAAGGTCTAGMTGQGNSAEDVAAPTGRSTVVLVTGAGRSGTSTVTGVLKYLGVQVPAPEIEANETNPRGFFETKWVVWRNQQILSRTRAGSLDADPGVARLTEAAARRGFEGKIRRWIAQTLDHARPTYVIKDPRTIWTAGTWTALLEEAGYDVKYLTMLRHPVEVLGSRKQHYRDGIGAGKAGTVETAQLAGWINVNLASERLGRGHDHVFVRYEDLLADWRGAMRQVRDLLGLELNHDLGDTPHEVDNFVEPTLRRQRGDWEDMNVPDWLRELAQESWVLLGARASQERSAAELVDRFDDVARRYEAEYEWAFTLVGDRVRRKVNKARKQGRVEERNRLEGLRAEAPAAVPGIEDATTRQIVDELGGRLRSRLLRRKVNANANANANA
AK018_04616963hypothetical proteinGTGCTACCGGAGCACAAGATTGTCTTCGTCTCGGTCGGCAAGAATGCCTGTACGTCGGTCAAGTGGATGCTCGCGCAGATCTCCGGGCAGGACATGCAGCGGTTCGCGGCTGCTCCGTCGGCCAAGTCCACCGTTCGGGCGATGGTCAATAATCGGAGCCTGTGGACCGGCGTCCCGAGTTTCACGGATCTGGACGATGACGTCTTGCGGTCGATCGGACCTGACGAGGGGTGGTTCGTCTTCGGGCTCGTTCGTGATCCGCGGACGAGGTTGTTCTCTGCCTGGCAGTCGAAGTTCCTCGTCGGTGACCCGCTGTACTCCGGTAGGCGGTTCGCTGGTCAGGACTGGCTGCCACGGACGCCACGAGACGCTACTGAGGTCCTCGAGGACTGGGTGCGCTTCGTCGGTGTGATGGAGCGGGGCAGAGGAAAGGGTCTTCCAGCGAGCGACGGGCACTTCCGGCCCCAGGTGCATCGCCTGCACGAGAACCTCGTTCCGTACAGTCGTCTTTATCAGGTGTCCGAGATGGATCAGGTCGTCACCGACCTGACCGCGCACGTGAAGCGTACGAGCGGCGTCGAGATAGAACTCGACGTCCTTACTGAGAACTCCACTCCGCTGATGGCCGGGCGCGAGGTCTTCGACGGCGGGGTGCGCGAGCGGGTCGAGGCGATCTATGCCGAGGACCTTGACCGGTTCGGTGACCTCTGGTCGTTCGACAAGGTGATGGCACGACCGATCGACTGGAGCGACGATGCGCTGCGAGACGTCGCAGCTCGTCGCGCAGCAGGCGAGCGGATCGCCCACCTGCACTCCATCTATCGGCAGACTCGCGCCGAGAACGAGCGGCTGCGTCGAGAGCTGGAGCTCGCGCGTGCGAATGCGCGTGTGTCCAGACCCGGAACCGACGAGATCCGCCGGTTCGGCCGGTGGGCGAAGCGACAGCTGCGCCCCAGGAGATGAMLPEHKIVFVSVGKNACTSVKWMLAQISGQDMQRFAAAPSAKSTVRAMVNNRSLWTGVPSFTDLDDDVLRSIGPDEGWFVFGLVRDPRTRLFSAWQSKFLVGDPLYSGRRFAGQDWLPRTPRDATEVLEDWVRFVGVMERGRGKGLPASDGHFRPQVHRLHENLVPYSRLYQVSEMDQVVTDLTAHVKRTSGVEIELDVLTENSTPLMAGREVFDGGVRERVEAIYAEDLDRFGDLWSFDKVMARPIDWSDDALRDVAARRAAGERIAHLHSIYRQTRAENERLRRELELARANARVSRPGTDEIRRFGRWAKRQLRPRRNANANANANA
AK018_04617933hypothetical proteinATGCTGAACAAACTGTTTCCGGGGATCCGCAAGGGTCGTGTTCCCCGTGCCGTTTTTCACGTTGGTGTGCACAAGACCGGCTCCACCATGCTCCAGGGGTTGCTCCGCAGGAACCGGGAACAGCTGGCCGAGCTCGGATTCGAGACGTACGCCTGGCGAGACTTCAACGCTTTGCTGCCGGAGGATCCGAAGCTCTACGCGAGTGCTTTCAGGACGCAGGACGTCATCGCCGCTGCGGAGAGCTTCCGCACCTCATCGCCTCGGCGCGGCATCGTCTACTCGGAAGAAGCGATGCTGGGGCCGATGCTCTCTTTCATGGGCGGGTGTCTGTATCCTGAGGGACCACGGATCTTGGGTGACTTTGTCCGGGCTTTTGATGCGTCGCGGACCGATGTCATCCTCTATGTGCGCCGACAGGACACTTTTTTGGAGAGCGTCTACCTCCAGCAGGTGAAGGAAGGGCGCATCAATGCCGACTTTCCCACCTTCATGAAGGGCATCGATCCGGCTTGGCTGCGTTGGGACGAGCTCATCGAGCGGCTGGAGGCAGTTCTCCCGTCCTCGGCCAAGTTGCACGTGAAGTGTTTCGAGACGATCAGGTCCGACGGTGCAGAGGCGTTCTGCCGCGATTTCGCCGCTACCGTCGACTCGCGGCTCAAACCGTCGATGGACTTCAAGATGTCTCGGAACCGAGGCTACTCGGACGTTGCACTCCGGATCGCCCGGGCTGCCAACGAACACCTTGACCGCAAGGATCGCAAAAAGCTTCGTCGGTTCCTCTCGGAGAACTTCAACAATGTGACTCATCCGGCCGCCGATCTTCTTGACGATGTCGCACGACAGCGGATCCTCGAAGCACTCGCTACCTCGAACCGTGCGCTCGGTGAGCGTGTCGGCGGTGGAGCGGGGCCCGTGTACCAACCTAGCCCGTGAMLNKLFPGIRKGRVPRAVFHVGVHKTGSTMLQGLLRRNREQLAELGFETYAWRDFNALLPEDPKLYASAFRTQDVIAAAESFRTSSPRRGIVYSEEAMLGPMLSFMGGCLYPEGPRILGDFVRAFDASRTDVILYVRRQDTFLESVYLQQVKEGRINADFPTFMKGIDPAWLRWDELIERLEAVLPSSAKLHVKCFETIRSDGAEAFCRDFAATVDSRLKPSMDFKMSRNRGYSDVALRIARAANEHLDRKDRKKLRRFLSENFNNVTHPAADLLDDVARQRILEALATSNRALGERVGGGAGPVYQPSPNANANANANA
AK018_046181311cysNC_2COG0529Bifunctional enzyme CysN/CysCATGACCACGACCGAGCACACCACTGCCGAGGCTCTGACCGACGGCTCCATCGACCTGCTGCGTTTCGCGACGGCCGGCTCCGTCGACGACGGCAAGTCGACCCTCATCGGTCGGCTGCTGTTCGACTCGAAGACGATCTTCGAGGACCAGCTCGACTCGGTGGAGAGCGTCTCCAAGGACCGCGGCAACGACTACACCGATCTTTCGCTGCTGACCGACGGCCTGCGCGCCGAGCGGGAGCAGGGCATCACGATCGACGTCGCCTACCGCTACTTCGCGACGCCGAAGCGCAAGTTCATCATCGCCGACACCCCGGGGCACATCCAGTACACCCGGAACATGGTCACCGGCGCCTCGACCGCGGACGTCGCGCTGATCCTCGTCGACGCGCGCAAGGGCGTCATCGAGCAGTCCCGCCGCCACACCTTCCTGGCGACGCTCCTCGGCGTGCCGCACATCGTGGTCTGCGTCAACAAGATGGACCTCGTCGACTACTCCGAGGAGGTCTTCGAGCAGATCCGCTCCGACTTCACGGAGTTCGCCTCGCGCCTACGCGTGCCGGACCTGACGTTCATCCCGATCTCCGCGCTGGAGGGCGACAACGTCGTCAACCGCTCGGAGAACACCCCCTGGTACGACGGGCCCGCGCTGCTCAGTCACCTGGAGCGGCTGCACGTCGCCTCGGACCGCAACCTCATGGACGTCCGGTTCCCGGTCCAGTACGTGATCCGCCCGCAGTCGCACGAGTCCCGCGACTACCGCGGCTACGCGGGCACGGTCGCCTCCGGTGTCATGAAGCCGGGCGACAAGGTCGTGGCGCTGCCGGCCGGTCTCGAGACGACGATCGAGGCCATCGACACGGCCGACGGCCCCGTCGAGGAGGCCTACCCCCCGATGGCCGTCACGGTGCGGCTCGCGGACGAGATCGACATCTCGCGCGGTGACATGATCGCGCGTCCGAACAACACCCCGGCCGCGCTGCAGAACATCGACGCGCAGATCTGCTGGATGGACTCCGAGTCCTCGCTCGTCCAGGGCAAGAAGTACGCCATCAAGCACACCACCCGCTGGGCGCGCGCGATGGTCAAGGACATCAACTACCGCGTGGACGTCAACACGCTGCACCGCGACGAGGAGGCGACCGAGATCAAGCTCAACGAGATCGGCCGCATCCAGCTCCGTGTGACGCAGCCACTGTTCGTCGACCCGTACCAGCAGAACCCGCAGACGGGATCGTTCATCCTGGTCGACGAGTCGACGAACAAGACCGTCGCCGCCGGGATGATCGGTGGGCTGCCGCACAGTTCCTGAMTTTEHTTAEALTDGSIDLLRFATAGSVDDGKSTLIGRLLFDSKTIFEDQLDSVESVSKDRGNDYTDLSLLTDGLRAEREQGITIDVAYRYFATPKRKFIIADTPGHIQYTRNMVTGASTADVALILVDARKGVIEQSRRHTFLATLLGVPHIVVCVNKMDLVDYSEEVFEQIRSDFTEFASRLRVPDLTFIPISALEGDNVVNRSENTPWYDGPALLSHLERLHVASDRNLMDVRFPVQYVIRPQSHESRDYRGYAGTVASGVMKPGDKVVALPAGLETTIEAIDTADGPVEEAYPPMAVTVRLADEIDISRGDMIARPNNTPAALQNIDAQICWMDSESSLVQGKKYAIKHTTRWARAMVKDINYRVDVNTLHRDEEATEIKLNEIGRIQLRVTQPLFVDPYQQNPQTGSFILVDESTNKTVAAGMIGGLPHSSPGPT0002395_1110DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACIDADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0002395-cysNC-K00955NANA
AK018_04619903cysD_2COG0175Sulfate adenylyltransferase subunit 2GTGACGTCTCACGTCCTGAGCCAGCTCCGCAGCCTCGAAGCGGAGAGCATCCACGTCATCCGCGAGGTGGCGGCGGAGATGCAGCGCCCCGTGCTGCTCTTCTCCGGCGGCAAGGACTCCATCGTGATGCTGCACATGGCGGCGAAGGCTTTCGCCCCGGCGCGCATCCCGTTCCCGATCATGCACGTCGACACCGGTCTGAACTTCCAGACCGTGCTCGACTGCCGGGACCGCTGGGTGGAGAACCTCGGGATCCAGCTCGTCGTCGCCTCCGTGCAGGACGCCATCGACCGCGGTCTGGTGCGCGAGGAGCCGAACGGCTCGCGCAACCGCATCCAGACGCCGGTGCTGCTGGAGGCCGTCGAGAAGCACGGCTTCGACGCCGCGTTCGGCGGGGGCCGCCGCGACGAGGAGAAGGCCCGTGCCAAGGAGCGCCTGTTCTCCTTCCGCGACGACTTCGGCCAGTGGGACCCGAAGAACCAGCGCCCGGAGATCTGGAGCCTGTACAACGGGCGGGTCCACCAGGGCGAGTCGATCCGGGTGTTCCCGCTGTCCAACTGGACCGAGCTGGACATCTGGTCCTACATCGCGGCCGAGCAGATCGACATCCCCGACCTGTACCTGGCCCAGGAGCGCGAGGTCGTGGACCGCGACGGCATGCTCTTCGCCGTCAACGAGTTCACCCCCCTCAAGGAGGGGGAGACCTCCGAGATCCGGTCCGTGCGCTACCGCACGGTCGGCGACGCGAACCTGACGGCCGCCGTCGAGTCCAAGGCGACCACGCTCGAGGCCATCGTCGAGGAGGTCGCGGCCGTGCGCGTCACCGAGCGCGGCGCCACCCGTGGCGACGACAAGGTGAGCGAGGCAGCGATGGAGGACCGCAAGCGAGAGGGCTATTTCTAAMTSHVLSQLRSLEAESIHVIREVAAEMQRPVLLFSGGKDSIVMLHMAAKAFAPARIPFPIMHVDTGLNFQTVLDCRDRWVENLGIQLVVASVQDAIDRGLVREEPNGSRNRIQTPVLLEAVEKHGFDAAFGGGRRDEEKARAKERLFSFRDDFGQWDPKNQRPEIWSLYNGRVHQGESIRVFPLSNWTELDIWSYIAAEQIDIPDLYLAQEREVVDRDGMLFAVNEFTPLKEGETSEIRSVRYRTVGDANLTAAVESKATTLEAIVEEVAAVRVTERGATRGDDKVSEAAMEDRKREGYFPGPT0002405_2362DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002405-cysD-K00957NANA
AK018_04620888cysQ_3COG12183'-phosphoadenosine 5'-phosphate phosphataseATGACCAGCCTCTCACCGGCGCAGCCCGAGGCGTCGCAGTCGGACGGCGAGCTCGCGGCCGCACTGGCCGAGCGAGCGGGACAGGTGCTGCTCGCGCTGCGCGCCGAGGTCGACGCCGCCGGGGGAGAGCACGACCCCCGCGCTCTGAAGGACGCCGGCGACGCCGCGGCCCAGGCATGGCTCGCGGACGCGCTGGCGCACACCCGGCCGGCCGACGCCGTGCTGTCGGAGGAGGCGAAGGACGGCGCCGCCCGGCTCGACGCCGACCGCGTCTGGATCATCGACCCGCTCGACGGCACCCGTGAGTTCGCCGAGCGGTCCGAGGGGCCTGCCGGCTGGCGCGACGACTTCGCCGTGCACGTGGCGTTGTGGGTCCGCGGGCACGAGGACGCCACTGCCGGCCCCGGGGGCCTCGCTGCCGCTGCCGTGGCCCTGCCCGCCCGCGGGGTGGTGCACTCGACCGTGGCCCCCTCGTCGGCCCCCGACCTTGACGAGGCCGCCCGTGCGGTGCTCGCGGGGCAGCGCCCGTTGCGTATCGCCGCCAGCCGGTCGCGGCCGCCGGAGTTCGTCGCCGAGCTGGCCCGGCGCGACGACGTCGAGCTCGTGCCGATGGGCTCGGCCGGCGTCAAGGTGGTCTCCACCGTGGACGGCACGGTCGATGCCTACGTCCACGGTGGTGGACAATACGAGTGGGACTCGGCGGCACCCGTCGGTGTCGCGCTCGCAGCCGGCCACGTCTGCACGCGGCTGGACGCGACGCCGCTCGAGTACAACCGCCAGAACCCCTGGCTTCCCGATCTGTTCGTCTGCCACCCGGCCCTGGCCGCGCACCTGCGTGCGGCGCTGCAGGAGGTCGGCGTGGCGATCAAGGAAGGTGCCCAGTCGTGAMTSLSPAQPEASQSDGELAAALAERAGQVLLALRAEVDAAGGEHDPRALKDAGDAAAQAWLADALAHTRPADAVLSEEAKDGAARLDADRVWIIDPLDGTREFAERSEGPAGWRDDFAVHVALWVRGHEDATAGPGGLAAAAVALPARGVVHSTVAPSSAPDLDEAARAVLAGQRPLRIAASRSRPPEFVAELARRDDVELVPMGSAGVKVVSTVDGTVDAYVHGGGQYEWDSAAPVGVALAAGHVCTRLDATPLEYNRQNPWLPDLFVCHPALAAHLRAALQEVGVAIKEGAQSPGPT0002975_943DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002975-cysQ-K01082NANA
AK018_04621963hypothetical proteinATGATCGACGTCGACCCGGCACTCGCCCTGGGCGGCCTGCTGGTGGGCTTCGTCGTGGGGCTGACCGGCATGGGCGGCGGGGCACTCATGACGCCCATGCTGATCTTCGTGTTCCGGATCGACCCGCTGGTCGCCGTCTCGAGCGACATCGTGGCGAGCCTCTTCATGAAGCCCGCCGGCGCCGTCGTGCACCTCCGACGTCGGACGGTGAACCTGCGTCTGGTCGCCTGGCTGTGCGTCGGGTCCGTGCCTGCGGCGTTCAGCGGCGTCTTCCTCATCCGCGCCCTGCCGTTCGGCGACTCGCTGGACGAGGCCCTGCGCCTCGTCCTGGGTGTCGCGCTCCTGCTCGCGGCCACCCTGCTGGTCGTGCGCGCGACCATCGGGATGGTGCAGCACCAGCGCGCTCTCGGGGAAGGCCCCGTCCCGCCCTCGAATGCCGGCGTGGTGGTCCGCCCGCTGCCCACCGTCGTGCTGGGGCTCGTCGCCGGCCTGCTGGTGGGCATGACCTCCGTGGGGTCCGGATCGATCGTCATCGTGGCGCTGCTCATGCTGTACCCGGCGCTCAAGGCCTCCAACCTGGTCGGCACCGACCTCGTCCATGCGGTCCCCCTGGTCGCGGCGGCCGCGGTCGGGCACCTGATGTACGGCGACTTCTCCCTGGACCTGACCACCTCCCTGCTCCTCGGCGCCGTGCCCGGCGCCTGGCTCGGGGCCCACGTCTCGAGCCGCGCCCCCGGCGGACTGATCCGGCGCGCCCTGGCCATCCTGCTCCTGGCCTCCGGGCTCAAGCTCCTGGGGGCACCGCTCGAGATCGTGCTGGGCGCCGCCGTGGTCGCCCTGGTCGGTGGGAACATCGCCTGGGTCGTGGTCCGCGAACGGCTCGCCCAGCACGCCCCACGCACCTCGTCGACGCCGGACCGGGCGTCGACCGCGACGACGAAGGACGACACCGAACGCCCATGAMIDVDPALALGGLLVGFVVGLTGMGGGALMTPMLIFVFRIDPLVAVSSDIVASLFMKPAGAVVHLRRRTVNLRLVAWLCVGSVPAAFSGVFLIRALPFGDSLDEALRLVLGVALLLAATLLVVRATIGMVQHQRALGEGPVPPSNAGVVVRPLPTVVLGLVAGLLVGMTSVGSGSIVIVALLMLYPALKASNLVGTDLVHAVPLVAAAAVGHLMYGDFSLDLTTSLLLGAVPGAWLGAHVSSRAPGGLIRRALAILLLASGLKLLGAPLEIVLGAAVVALVGGNIAWVVVRERLAQHAPRTSSTPDRASTATTKDDTERPNANANANANA
AK018_046221230cysC_2Adenylyl-sulfate kinaseATGAACCTCCCGGACACCACCCACGTCCTGACGCCCGACGAGCTCGACCTGCTCGAGCTCCACCTCGGCGGCGGTACCGCCACGCTCACCCTGCCGCGCGTCGCGCCCGGCGAGCCGGTGACCCTGACCGACGCGGAGAACACGCCGCTGGCGGTCCTCGAGGGATCCTGCGCGAGCGCCGTCAAGCCCGTCGCCCGGGCGGTCGGGCCGCACTGGGACCCGGCCGTGCGCCGTGGGGCCCACGACGTCGCCCACGAGATCCGCCGCGAGGTCGGACCGGAGGCGGACGTCCTCGCGGTCGTCGTCGACGCCGCGCCGACACGCGAGGAGCTGGACGCCGTCGCCGGCCTCGTCGCCGGCGCGGCCGCCGTCCTGGTGCTGGTCCCGGCCGCCCGGCGCGCCCCCGCCCCCGGCGGCCTCGGGGCTCCCGGCCTCGCCCGGGTCGGCACCGTCGTCCACGCGGCCGTCGCCGCGGCATCCGCCGCGCCGGTGCGCACCGTCGTCGTCCCCTGGGCCCCCGACGCCGGCCTGCGGTGGCACGACGTCGCCGCGCGCCACGGCGCCGACCGGGTGGAGCGGCTGTCCGACCACCGCGGCCCGGGCACGACCGAGCGACTGGCACACCTGGACACGCTGTGGTCGCAGGAGGTGGCGGCCCTGTACCCGCAGGACGTGGCACGCGAGGTCGAGGACGCCGCCCGCGGGGCCCGCCGGACGGGCACCGTCGTGTTCTTCACCGGGTTGTCGGGCTCCGGGAAGTCGACCGTCGCGCAGGCGCTCGCCGCCGAGCTCGACGACGAGGGCCGTCACACGACGCTGCTCGACGGCGACGTCGTGCGTCAGCACCTGTCCAGGGGGCTCGGGTTCGACAAGGCCTCGCGGGAGCTGAACGTCGAGCGGATCGGCTACGTGGCCTCGCTGGTGGCCTACCACGGCGGGACCGCCGTCGCGGCGCCGATCGCGCCGTTCGCGTCCTCGCGCGCGCGGGTCCGCGAGATGGCGGAGGCCGCGGGACGGTTCCTGCTCGTGCACGTCTCGACCCCGCTCGAGGTCTGCGAGGCCCGGGACCGCAAGGGCCTCTACGCCAAGGCGCGGGCCGGGGAGATCCCCGAGTTCACCGGCATCTCCTCACCGTACGAGGAGCCGACGGACGCCGACCTCGTGATCGACACGTCGGTGACGTCGGTCGAGGACGCCGTGGCGCAGGTCCGGGGAGCCTTGGAGCGCTGAMNLPDTTHVLTPDELDLLELHLGGGTATLTLPRVAPGEPVTLTDAENTPLAVLEGSCASAVKPVARAVGPHWDPAVRRGAHDVAHEIRREVGPEADVLAVVVDAAPTREELDAVAGLVAGAAAVLVLVPAARRAPAPGGLGAPGLARVGTVVHAAVAAASAAPVRTVVVPWAPDAGLRWHDVAARHGADRVERLSDHRGPGTTERLAHLDTLWSQEVAALYPQDVAREVEDAARGARRTGTVVFFTGLSGSGKSTVAQALAAELDDEGRHTTLLDGDVVRQHLSRGLGFDKASRELNVERIGYVASLVAYHGGTAVAAPIAPFASSRARVREMAEAAGRFLLVHVSTPLEVCEARDRKGLYAKARAGEIPEFTGISSPYEEPTDADLVIDTSVTSVEDAVAQVRGALERPGPT0002410_551DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002410-sat|met3-K00958NANA
AK018_04623990btuD_18Vitamin B12 import ATP-binding protein BtuDGTGACTGAGTCGGAGCTGCACATGGACGTCGATCTCGACGTCGAGTTCGACCCCGAGGATCTGGCCGGTGCGCCGCCGGTCGCGCACCTGGGTGACCCCTGCCTCGTCGTCGACGACCTGCACATCACGTACCGGGTCGTCGGTAGCAAGGGACGGGAGAAGGCCAAGGCCAGCGGTGCCAAGACCAGGGACGTCGAAGCACCGCGCCCCTCGTTCGCTCGACGACTGCTCAGTGCGGGGAACCAGCACGTCGGCGCCTACACAGAGGTCCACGCCGTGCGCGGCATTTCGTTCGTGGCTCGTCATGGTGAATCGATCGGCATCGTCGGCGTCAACGGCTCAGGCAAGAGCACGCTGCTGAGGGCCGTAGCAGGCCTCATCCCGCCGCGCTCCGGATCGGTGTACGTCGCCGGGGAGCCTGCGCTGCTCGGTGTCAACGCCGCGTTGATGCCCAAGCTCTCGGGAGAGCGCAACATCATGATCGGCGGGCTCGCGCTCGGCCTCACGCCGGAGGAGGTGGAGGCGAAGTTCGACGAGATCGTCGAGTTCGCCGACATCGGGGACTTCGTCTATCTGCCGATGAAGACCTACTCCTCCGGGATGGGTGCGCGTCTGAGGTTCGCCATCTCGTCGGCTGCCGCGCCCGACATCCTGATGATCGACGAGGCGCTCGCCACCGGCGATGCCGCTTTCAAGGCTCGCAGCAAGGCCCGGATCGAAGAGATCCGCAAGGACGCGGGTACGGTCTTCATCGTGAGCCACTCGATCTCGACGATCGAGGCGATGTGCACGCGAGTCCTGTGGGTGCACCAAGGGGAGCTCGTCATGGACGGCCCGACCGTCGAGGTCGCCGACGCCTACCGTGACTTCGTGCGCTCCCAGCGGCGGTCGAACAAGGGGGAAGGCTCCCGTAGGAAGAACGGCACCCCAGGGTCGGGACGGCGTCGCGGCCGCGGTAAGCACAGCCGCGAGGCCGCAGAGAGCGCTTAGMTESELHMDVDLDVEFDPEDLAGAPPVAHLGDPCLVVDDLHITYRVVGSKGREKAKASGAKTRDVEAPRPSFARRLLSAGNQHVGAYTEVHAVRGISFVARHGESIGIVGVNGSGKSTLLRAVAGLIPPRSGSVYVAGEPALLGVNAALMPKLSGERNIMIGGLALGLTPEEVEAKFDEIVEFADIGDFVYLPMKTYSSGMGARLRFAISSAAAPDILMIDEALATGDAAFKARSKARIEEIRKDAGTVFIVSHSISTIEAMCTRVLWVHQGELVMDGPTVEVADAYRDFVRSQRRSNKGEGSRRKNGTPGSGRRRGRGKHSREAAESAPGPT0023470_349DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023470-tagH-K09693NANA
AK018_04624930hypothetical proteinGTGCAGCCGCCGCCACCGATCGTCCCGCCACTGACTTCGGTCGAGCGGCACGCGCTGGCCGCCCAGTACGACCTGACGGCGATGGGGGTCCGGCCCTCGTTCTTCGGCTACGTACGGGACGTCGCCCGCCGGTGGTCTTTCATACGGGTCATGGCCACCTCGAGTGCGTATGCCCGGAACCAGAACAACTACCTGGGTCAGCTCTGGGCGCTGCTCAACCCCATCTTGAACGCCACGGTCTACGTGATCGTCTTCGGCATCCTGCTCAATGCGAGCCGTGGTGTCGAGAACACGATCGCCTTCATCGTGATCGGCGTCTTCATGTTCCGGTTCGTCGAGCAGTCGGTGTCGGGCGGTGCGCAGTCGATCGCGGGTCGGACGAACCTCATCCGGTCGCTGCACTTTCCTCGCGCCGTGCTCCCGATCTCCACGGTGCTGTCGCTGTTGGCCACGATGGTCCCGACCCTCATCGCCATGTGTGCGATCGTGCTGCTGTCGGGGCTGCACCCGGACTACCCGCCGGTACTCGTGACGTGGTACTGGTTGCTGCTGCCGGTCGCGGTGCTGCTCCTGTGGATCTTCAACACAGGACTGGCCTTCTTCATGGCGCGGGCCGTGGCCGGGATGCCGGACCTCGACAACGTCATCGGATTCGTCATGCGGTTCGTCATGTACGGCTCCGGTGTGATTTTCCCTGTGACCCGCTACATTCAACGCCTCCCGGACACGGTCCAGGCAGTCCTCGAACCGATCTTGACGTATCAGCCCGTCGCGGTCTATCTGTACCTGTTCCGGTCGTCGCTCACACAAGAAGAGTCCTTCCCGCCGGACGCGGCGATGTGGGCGTGGGGTGTCGGCTGGGCCGTGCTGACGTTCGTCGTCGGGTTCATCGTCTTCTGGCGCGGAGAGGAGCGCTACGGCCGTGACTGAMQPPPPIVPPLTSVERHALAAQYDLTAMGVRPSFFGYVRDVARRWSFIRVMATSSAYARNQNNYLGQLWALLNPILNATVYVIVFGILLNASRGVENTIAFIVIGVFMFRFVEQSVSGGAQSIAGRTNLIRSLHFPRAVLPISTVLSLLATMVPTLIAMCAIVLLSGLHPDYPPVLVTWYWLLLPVAVLLLWIFNTGLAFFMARAVAGMPDLDNVIGFVMRFVMYGSGVIFPVTRYIQRLPDTVQAVLEPILTYQPVAVYLYLFRSSLTQEESFPPDAAMWAWGVGWAVLTFVVGFIVFWRGEERYGRDPGPT0023465_11DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023465-tagG-K09692NANA
AK018_04625942hypothetical proteinGTGCTCGAAGCCGCCGCCGCAGGCCTGACCGACGAGCCCCTGCGTATCCGCATCCGTCGCGACGTGCCGGCGATCGCAGACGCAGCAGCTTCCCTGCAAGTGCTCGACGCGCCGGCCAGCGTGCGGTGGCAGACGGTGTCGCGGCTCCGGGCCCTGCACGCGCCGGAGCGCTCCCAGGTCGTGGGCGACCCCTTCTCGGGCGTCTTCCAGCTCTCCCTGGTGTGGCGGCGGACACGTCGCCTCGTCGTCGTGGACGACGGACTGGACACCCTGGAGCTGGCGCGACGGCTAGCAGCGCCGGACGCACCACTCGTGCGCGTGCGAGCCCCCGGCGGTCGGGCTCGAGAGGCGCTCGGGCGATTCGCTGCCGCCAGGCTGCGACGCTGGGCACGGTCGGGACGCGTCGTTCTGTTCACGGCGGTCCCCTTGCCCGACTCCTTGAGGGGGCGGCTGCAGGAGCTTGGAGTGGAGGTTCGACGGAACTCGTTCACGTGGCTCCGCGAGCAGGTGCTGCCGGCACCGCTCACCGAGCACCACGTGGTCGTCGGCTCGGCCCTGGTCGCCGACGGGATGATCGAGCACAAGCCCTACATGGCCTGGCTCCGCGACATCGCCAGGGCCGGCTCAGTGAGGTATCTCCCTCACCGACGCGAGACGGCAGCGGCACTCGACGAGATCGCCGAGATCCCCGGAGTGGTCGTGGACGTCCCGGGAGCGCCGGTCGAGCTGCGGCTCGCCGGGCTCACCGAGCGCCACCGCGTCACGATGCTCCCCTCGACCGCAGCGATCCTGCTCACCCGGATCCTGGGACCGCGAGGCGTTCCGGTCGAGCCCCAGGACGTCCCCGACGACTGGTGGACCGACGCAGCCTCGACCGAGCTGCGCGGTCACCTGCGGAGCGTCCTCACTCTTGCCGCAGCAGCCCGGGGAGACGAGGCATGAMLEAAAAGLTDEPLRIRIRRDVPAIADAAASLQVLDAPASVRWQTVSRLRALHAPERSQVVGDPFSGVFQLSLVWRRTRRLVVVDDGLDTLELARRLAAPDAPLVRVRAPGGRAREALGRFAAARLRRWARSGRVVLFTAVPLPDSLRGRLQELGVEVRRNSFTWLREQVLPAPLTEHHVVVGSALVADGMIEHKPYMAWLRDIARAGSVRYLPHRRETAAALDEIAEIPGVVVDVPGAPVELRLAGLTERHRVTMLPSTAAILLTRILGPRGVPVEPQDVPDDWWTDAASTELRGHLRSVLTLAAAARGDEANANANANANA
AK018_046261965hypothetical proteinATGACGAGCGCTCCCCGCATCTCCGTGGTCGTCCCCGGTCGGGACGTCTCGGCCTACGTCGCCGATGCACTGCAGAGCCTCACCCGCCAGGTAGCGGAGCCACACGATCTCGAGGTGGTCGTGGTCGACGACGGTTCCACGGACGACACGGCGGGCGTGGTCTCCCACTTCCGAGACCGGCTCCCCCGCCTCGAGCTCCTGCGCAACGAGGAGCCTGTCGGCATCGCGGGAGCGAGGAACCAGGGCGTGGCGGCCACGAGCGGGCGCCTGCTCGCCTTTCTCGACGCCGACGACTGGCTGGCCCCGGGACACCTCGCACACGTCGCCGACTCGATGGACGCACTGCGCGTCCCTTTCGTCCGGACCGACCACACCACGGTCCGAGGTCGTCACCGGCACCTCGTCCGTGCTCCCCAGTCGGTCCGAGGAGTTGCACTGGTCGCGCGGGACTCGATCCTGCCCGTGGACGATCGCACCATGGTCGACTACCCGTACTCGTGGGCGGGCATGTTCGACCGAGCGCTGCTCGCGGACGACCTCCTGTCGTTCCGCGCAGACCTCCGGACCGCCGAGGACCGCCCGTGGATCTGGCGCCTCTTCCTGGAGGCGGGTCGCTACGCCGTGGTCGACGCCCCGGGAATCTGCTACCGGCGCGGCCTGCCGTCGTCCCTGTCCCAGACCTACGACGCGCGACAGCTCGACGTCGTTCCTGCACTGCACGCCACCTTCGACGTGCTCGAGCGGAGCCCCGACACGGATCGCTACCTGCCCAAGCTCGCGCGCACGGCCGTCGGCCTGCTGACCCATCACCTGCGACGCAGCCCGCAGATGCCACCGGGCGCCCGCTCCGTGCTGCGGGACGGCGCCAGCGAGCTCCTCGCGAGGATCCCTGCGGATCTGCTCGCCATCGAGACGGCGCGCATGCACCCTGGTCGCGCCTACATGCTGCAAGGCCTGCTCCCTGACTTCGACGTCACCCTGCGCCACCGCCCGGCGCCGGCTCTCGTGTCCCCGCCCCCGACCCGGGACGCACCGGCCGCCCCATGGCGGCCCGTCGTCCTCGCTCTGGCCCTGACCAGGGAGGACGCGGAGCTCGCGGCGGCTGCCGACGTCCGGCCTCCGCAGGGCAGGCGCGAGCACGTGCTGGTGACCCCCGGGGGCAGGGACACCGTCCCCGACATCGTGCGCTCCGCCTTCGACCGATGCGTCGACCTGGACGACATCCTGCCGGCGGACGGAGAACCTGCGTGGCCGGTCGCGCCGGACAGCGAACCGATGTTCGAACGGCTCCTGCGGGCACGATGGCGGGTGGAGGACGCGCAGGTCGAGCTCGTGCTTCCGTCGCTCTCGGGCCTGGCCGGGAGACTGGCCGAGCTCTTCCACGACGCCTCGATCACGGTCGCGTCGGGCCGTCCCGACGTCTACGGTCCGGAGCTCGGGGCACCGCTCGCGGTGTCGCAGCGCGTACGGCAGGTGTGTCACCTCGATCTCCTCGACGGGTTCGTCCCCCTGCTGGCGACGCAGCACGGTGTGCCGGCGGTACCGATCGACGTGGCACGGTCGAGACTCGCCCTCCCGACCGAGGCGCTCGCCTCGGACGGTCCTCTGCCGCGGCGCGATGTGAGACGAATGATCGGCCGCGCCGTGGTCGAGCAACCCGTCGAGTCCGCCGCAGGCCTCCTCGCGACCATCGTCCACACGCACGACCCGGACCACACGCCGTGGCTGCGCCGACCTGCCGAGCGCTATCTCGCGACCACAGACCTCGACGTCACGGACTGGATCGACGCGGATCGGATCACGGAGCTCGGTCTCCCCGGTGGACGCCGTCCGACGTGGCGGATGCGACGACGCACCCTCCTCTACGCAGCCGTTCGTCATCCTGTCGCCGCCTGGGCTGCCGGCGTCGCAGACCGCCTCGGCGTCCGCAGCATCGCCGCCCGACTGCTCGGTCGGCATCTCTGAMTSAPRISVVVPGRDVSAYVADALQSLTRQVAEPHDLEVVVVDDGSTDDTAGVVSHFRDRLPRLELLRNEEPVGIAGARNQGVAATSGRLLAFLDADDWLAPGHLAHVADSMDALRVPFVRTDHTTVRGRHRHLVRAPQSVRGVALVARDSILPVDDRTMVDYPYSWAGMFDRALLADDLLSFRADLRTAEDRPWIWRLFLEAGRYAVVDAPGICYRRGLPSSLSQTYDARQLDVVPALHATFDVLERSPDTDRYLPKLARTAVGLLTHHLRRSPQMPPGARSVLRDGASELLARIPADLLAIETARMHPGRAYMLQGLLPDFDVTLRHRPAPALVSPPPTRDAPAAPWRPVVLALALTREDAELAAAADVRPPQGRREHVLVTPGGRDTVPDIVRSAFDRCVDLDDILPADGEPAWPVAPDSEPMFERLLRARWRVEDAQVELVLPSLSGLAGRLAELFHDASITVASGRPDVYGPELGAPLAVSQRVRQVCHLDLLDGFVPLLATQHGVPAVPIDVARSRLALPTEALASDGPLPRRDVRRMIGRAVVEQPVESAAGLLATIVHTHDPDHTPWLRRPAERYLATTDLDVTDWIDADRITELGLPGGRRPTWRMRRRTLLYAAVRHPVAAWAAGVADRLGVRSIAARLLGRHLNANANANANA
AK018_046271233hypothetical proteinGTGGTGCCACCCTCCCCGACCCCCGCGGACGCCGACAGCCGCGGACCGCAAGTCCGAGTCCTCGCCGTCGCCGACAGCGATTCCTACGTCAAATGGGCGTGCGCGACGCTCGACGCCGTAGCGGTCCGTCCGGGCACACCCGTCGACCGGCGCGTGGTGATCGTCCGGTCCCCCCTGGCACCGACGACCGCCCAGACCGCTGCCGCCGTCGCCGGGACGTCCATGCCGTCACCGCCTGTCGTCGGCCTGGGGGCCCTGCGTCAGGAGATACGGCAGCGGCGTCCCGACGTAGTCGTCGTGGCAGCCACCGGAGCCGTCGCCGAGCTCGTGGCGCGGACGGTGGTCCGTGCGGCCGGACGCCACCGCCCGGCCCTCGTGGCAGGCTTGCCCGGGATGGCGCTGCCCGCCACTGCAGCAGGTGTCTGCTGGCGACGGTGGGCCGACGCGTTCGTCGTGCACAGCCACCGCGAGGCGCGCGAGTACTACCGTGCGTTCGCCGCGCAGGGGGCGTCGCCCCGGCTCGTCCTGTCGCGTCTGCCGTTCTTGTCGCCGGGCTCCCTCCGGAAGACCGAGCCACCGCACCGCATCGTGTTCGCGCCGCAATCGATCGTGCCCGCCTCACCGCAGGCACGGACACACCTGCTGGACGGACTCGCGCAGTCGGCTCGCGAGGGATTCGAGGTGGTCGTCAAGCTGCGCGCACGCGTCGGCGAGCGCCAGACGCACAACGAGGAACTGCCGTTGGACCAGCTCTGGCAGTCCGTCCACTCCGAGCTCGGGCATCCCGAGTCGGCACTCCGGTTCGAAGTCGGCCCGATGGCGGACTGGCTCACGCCCGGTACCGCCGTGGTGACCGTGAGCTCGACGGCTGCCCTCGAGTCGCTCTCCCGCGGCCTGCCGACGGTGCTCGTCGACGACTTCGGCATCTCACCCCGTCTGCTCAACGAACCCTTCGTCGGGAGCGGCTGCCTCGGGTCTCTCCAAGACCTGCCGTCCCTGCTTCGCAGCGGTGGACCGGAGGTCGACGCGACGTGGGCGCAGGACAACTACTTGCACGACGAACCGTCCGAGATCGATGCCGCGCTCGATGCCCTGACGATCCGTCGGAGAGCTGGCGACCTCGTCGAGATCGGCAGCGTGCGCCCCTGCTCCTGGCCGCGGTACCTGCGGACGACGCTCCGCTCGGCGCTCCCGTCCCGGCTCGCTCGCCGACTTGCCCGGCGGGTCCGCTGAMVPPSPTPADADSRGPQVRVLAVADSDSYVKWACATLDAVAVRPGTPVDRRVVIVRSPLAPTTAQTAAAVAGTSMPSPPVVGLGALRQEIRQRRPDVVVVAATGAVAELVARTVVRAAGRHRPALVAGLPGMALPATAAGVCWRRWADAFVVHSHREAREYYRAFAAQGASPRLVLSRLPFLSPGSLRKTEPPHRIVFAPQSIVPASPQARTHLLDGLAQSAREGFEVVVKLRARVGERQTHNEELPLDQLWQSVHSELGHPESALRFEVGPMADWLTPGTAVVTVSSTAALESLSRGLPTVLVDDFGISPRLLNEPFVGSGCLGSLQDLPSLLRSGGPEVDATWAQDNYLHDEPSEIDAALDALTIRRRAGDLVEIGSVRPCSWPRYLRTTLRSALPSRLARRLARRVRNANANANANA
AK018_046281056hypothetical proteinGTGCAGGTGAACCCCGACACGGGTAGCCACATAGCGACGCTGCCGGCGGTGACCGTCGTGGCGACGGTCCGCGACGAGGAGCCGTATCTCCGTGCCGCGGTGTCCTCCATCCTGGCGCAGGACTACCCGGCCCCTCTGGGCGTCGTCGTCGCCGTGGGGCCCTCCCGTGACCGGACCCACGAGATCGCGGCGGAGCTGGAACGCCAGGACGACCGCGTCCGGGTGATCGGGAACCCGAGCGGGTCACGGTCCGAGGGGCTGAACGCGGCCATCGAGCACGCCGACCCCGACCACGCGGTCGTCGTGCGCATCGACGGACACACCGTCTTCGAACCCACCTACGTCCGGCGGGTCGTCCGCACGATGCTCGAGGTCGGTGCCGACGGCGCCGGCGGCATCATGCGTCCGGTCGGGGACGACCCGTGGCAGGAGGCCGTGGCCCGAGCGATGAGCCACCCGGCCGGGATCGGCTCGGCGTCGTTCCACGTCGGTGGCGAGCCAGGGCCCGCGGACACGGTGTATCTCGGGGCCTTCCGACGGGACGCCGTCGTCCGCGCCGGCGGGTTCGCCCCGGACATCGTCCGGGGCGAGGACTGGGAGATGTGCCTGCGCATGCGCCGCGCGGGCTCGCTGCTGTGGTTCGATCCGTCGTTGCAGGTCGAGTACAGGCCTCGGCGGTCTCTGGGCGCTGTGGCGAAGCAGTTCTGGAGAACTGGCATGTGGCGGCGCGAGATCGTGCGTCGCTATCCCGACACCGCCAGCGTGCGCTATCTGGCTCCACCCGTCGTGGTTGTCGTGCTCGGGACGGCCGCGGTCGCCCTCGTGCTCAGCGCCGTCGTCGGCAGCCCGTGGGGGACCAGCCTCTCGGGCGTAGCACTGGCCGTCTACCTCGTGGGTGAGGTGGTCGCATCGGTGCATGCGGCGACACGCCGACCGGTGCTCTCCCTCCGGGCGGCTGTGCGACTGCCCGCCGTGCTGATCACGATGCACCTGGCCTGGGGCGCAGGCTTCGTCCGCGGGGTGTCGCGGCGCGCCGCTGTCGACCACCGGGCCTGAMQVNPDTGSHIATLPAVTVVATVRDEEPYLRAAVSSILAQDYPAPLGVVVAVGPSRDRTHEIAAELERQDDRVRVIGNPSGSRSEGLNAAIEHADPDHAVVVRIDGHTVFEPTYVRRVVRTMLEVGADGAGGIMRPVGDDPWQEAVARAMSHPAGIGSASFHVGGEPGPADTVYLGAFRRDAVVRAGGFAPDIVRGEDWEMCLRMRRAGSLLWFDPSLQVEYRPRRSLGAVAKQFWRTGMWRREIVRRYPDTASVRYLAPPVVVVVLGTAAVALVLSAVVGSPWGTSLSGVALAVYLVGEVVASVHAATRRPVLSLRAAVRLPAVLITMHLAWGAGFVRGVSRRAAVDHRAPGPT0026525_61DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-SUCCINOGLYCAN_METABOLIC_PATHWAY,PGPT0026525-exoA-K16557NANA
AK018_04629894legI_2COG2089N,N'-diacetyllegionaminic acid synthaseATGACTGCGACCTCCTCGCAGCCCGCCCCGGTCAGCATCGGTGAGCACCAGGTCGGCGCCGACCAGCCGGTGTACGTGATCGGCGAGATCGGCATCAACCACAACGGTGACGTCGAGAACGCCAAGAAGCTCATCGACGTCGCCGTCGAGGCCGGCGCCCAGGCCGTGAAGTTCCAGAAGCGCACCCCGGAGATCTCCACCCCCAAGGACCAGCGGGACAAGATCCGCCAGACGCCCTGGGGCGAGATGACGTACCTCGAGTACAAGTACAAGGTCGAGTTCGAGGACGCCGAGTACTCCGAGATCGCCGAGTACGCGAAGTCCCAGGGTGTGCAGTGGTTCGCCTCGCCGTGGGACGTCCCCTCGGTCGAGTTCCTCGAGAAGTTCGACGTCCCGACCCACAAGGTCGCGTCGGCGTCCGTGACGGACCTCGAGCTCCTGCGCGCCCTCAAGGACACGGGCAAGCCGATCATCCTGTCGACCGGCATGTCGACGCTCGAGCAGATCGACGCCGCCGTCGAGGTGCTCGGTACCGACAAGCTGATCATGCTGCACTCCACCTCGACCTACCCGCTTCCGCCGGAGGAGGCGAACCTGCGGACCATCACCACGCTGCAGGAGCGCTACGGGGTTCCGATCGGCTACTCCGGTCACGAGACCGGTCTGCAGATCTCGCTCGCCGCGGTCGCGCTCGGCGCGGTCGCCGTCGAGCGGCACATCACGCTCGACCGGGCCATGTGGGGCTCGGACCACGCGTCGTCGCTCGAGCCCAAGGGACTGGAGAACCTCGTCCGTGACATCCGAATCCTCGAGAAGGCGCTCGGGGACGGGCAGAAGCGGGTCATGCCCGGGGAGTTCTCCCCCATGTCGCGTCTCCGCCGCATCGACGGCTGAMTATSSQPAPVSIGEHQVGADQPVYVIGEIGINHNGDVENAKKLIDVAVEAGAQAVKFQKRTPEISTPKDQRDKIRQTPWGEMTYLEYKYKVEFEDAEYSEIAEYAKSQGVQWFASPWDVPSVEFLEKFDVPTHKVASASVTDLELLRALKDTGKPIILSTGMSTLEQIDAAVEVLGTDKLIMLHSTSTYPLPPEEANLRTITTLQERYGVPIGYSGHETGLQISLAAVALGAVAVERHITLDRAMWGSDHASSLEPKGLENLVRDIRILEKALGDGQKRVMPGEFSPMSRLRRIDGPGPT0019080_207DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-SIALIC_ACID_MODIFICATION,PGPT0019080-neuB|nnaB-K01654NANA
AK018_046301278kdsB_28-amino-3,8-dideoxy-manno-octulosonate cytidylyltransferaseATGTCTGCACACCCGATGCCGGACGTCTCTGCGGAGGCCCTCGTCATCATCCCGGCGCGTGGTGGGTCTCAAGGCGTGCCGTTGAAGAACCTCCAGCGCGTCGACGGCGTGACCCTGGTCGGGCGCGCCGTACAGGCATCCCTCGCGGCGCCGTCGGTCGGGACGGTCGTCGTCTCGACGGACCACGACGGCATCGCAACCGAGGCGCGGGCCCATGGCGCATGCGTCGTCACACGTCCCGCGAACATCGCTGGGGGCACCGCCTCGTCCGAGTCGGCACTCCTGCATGCGATCGAGGCCGTGGAGGCGGGTGTCGACGGCGCCGCCCCGCGCCCCGCTCCGGCCGTGACGGTGCTCGTGCAGGCGACGTCGCCGTTCATCGACTCGGGGGACCTCGACGACGCGATCCGGACCGTCGCGACCGGTGAGAAGGACGTGGTCGTGGCCGTCGCGGAGACGCACGACTTCCAGTGGCGGCTCGACGGCGACGACGCAGTCCCGGTCGGGCACACGACCGACTACCGTCCGCGTCGCCAGGAGCGCGCCCCCCACTTCCGCGAGACCGGCGCGTTCTACGTCATGCGCACCGCCGGGTTCCGTGCGGCGCGGGTCAGGTTCTTCGGCGACGTCGGGATCCAGCCCGTCGCCCCGGAATGGTCGATCGAGATCGACGAGCCCCGGGACCTGTGGCTGGCTCGTCAGCTCGTCGAGCAGCCTTCCGGTGACGACCTCGACGCACGGCTGGTTCCCGATCATGTCGCGGCGATCGATGTCGACGCCCTCGTGACTGACTTCGACGGAGTCCACACCGACGACGGTGCGATCGTCTCCCAGCAGGGTCAGGAGTCTGTCCGGGTCAGTCGCGGCGACGGTATGGGGGTCTCCCTGCTGCGGCGGGCCGACGTGCCGTTCCTCATCCTCTCCACGGAGGCCAACCCGGTCGTCGCCGCTCGCGCGGAGAAGCTGCGGGTCGAGGTCCTGCACGGAGTGGACGACAAGGCCGAGGCGCTCGCGAAGTGGATCGCTCGGCACGAGCTCGATCCCCGTCGAGTGGCGTACGTCGGGAACGACGTCAACGACCTGGCTGCGATGACTGTCGTCGGATGGCCGATCGCGGTCGCCGACGCCCGGCCGGAGGTGCGGGACGTGGCGCGGGTCGTCCTCGACCACGCCGGTGGTCGGGGTGCCGTCAGGGAAGTGTGCGACCGTATACTCGCAGCGCGCCAGAGCGTTGAGACACCGGGTGCTTCGGCACCTTCCGGTGACTCGCGGGGGTGAMSAHPMPDVSAEALVIIPARGGSQGVPLKNLQRVDGVTLVGRAVQASLAAPSVGTVVVSTDHDGIATEARAHGACVVTRPANIAGGTASSESALLHAIEAVEAGVDGAAPRPAPAVTVLVQATSPFIDSGDLDDAIRTVATGEKDVVVAVAETHDFQWRLDGDDAVPVGHTTDYRPRRQERAPHFRETGAFYVMRTAGFRAARVRFFGDVGIQPVAPEWSIEIDEPRDLWLARQLVEQPSGDDLDARLVPDHVAAIDVDALVTDFDGVHTDDGAIVSQQGQESVRVSRGDGMGVSLLRRADVPFLILSTEANPVVAARAEKLRVEVLHGVDDKAEALAKWIARHELDPRRVAYVGNDVNDLAAMTVVGWPIAVADARPEVRDVARVVLDHAGGRGAVREVCDRILAARQSVETPGASAPSGDSRGNANANANANA
AK018_046311014hypothetical proteinATGAGCAACCGACCGCGCATCTCCGTCGTGCTCCCGGGGAAGGACGCCGCGGACTACGTCGCCGACACGCTGACCAGCCTGACGCGCCAGGTCGATGATCCTCGGGATCTCGAGATCCTGATGATCGACGACGGGTCCCAGGACGGCACGGGAGACGTGGCCCGCAGTTTCGCCGACCGCCTTCCCGGCCTGCACGTGCTGGCCAACCCGCGCCCAACCGGCCTGGCCAGCGCACGCAATCAGGGACTCGCGGCAGCGACCGCTCGGTTCGTCGTCTACCTGGACGCTGACGACTGGCTCGCTCCCCGACGCCTGCAGGTTCTGGCCGATGCGACGGATGCCCTCGGCGTCCCGTTCGTGCGCACGGACCACACCACTGTCCGTGGCCGGCGCCGTGACCTGGTGCGCGCCCCTCAGTCCGTGCGGGGCGTCGCGCTCGATCCGCGCCAGTCGATCCTGCCGGTGCACGACTCGACGATGGTCGACTACCCGTATGCCTGGGCCGGCATGTTCGACCGTTCGTTGGCGACCGACGACCTGCTGACCTTCCCCGAGGGCCTGCACACCGCAGAGGACCGTCCCTGGATCTGGAACCTCTTCCTGCAAGCACCGTCGTTCGCCGTCGTGGACGCCCCGACACTCTGCTACCGCCGAGAGGTGGCGACGTCGCTGACCGCGACCTACGACCGACGCCAGCTCGACATCTTCCCCGCGCTCCGGCAGGCCTTGGCCCTCGTGGAGAACGACAGGGACGCGCGCCTGTTCATGCCGAAGATCACACGCACGACGCTCGCCCTCGTCGCGCACCACATCAGTCGCAGCAAGAACATGAAGGCAGATGTCCGACGTGATCTCAGGGCCTCCACCAGGTCGCTCATGGCCGAGCTGCCCGCCGACGTGCTCGCAGCCGAGGTCAACCAGATGGCTCGAGACCGAGCTCGTCGGCTCTACGGACTTCTTCCCCGCAACGTCGAGCGTCAGGTCGACGCTCCCCGTCTGGAGACACCCCTGTGAMSNRPRISVVLPGKDAADYVADTLTSLTRQVDDPRDLEILMIDDGSQDGTGDVARSFADRLPGLHVLANPRPTGLASARNQGLAAATARFVVYLDADDWLAPRRLQVLADATDALGVPFVRTDHTTVRGRRRDLVRAPQSVRGVALDPRQSILPVHDSTMVDYPYAWAGMFDRSLATDDLLTFPEGLHTAEDRPWIWNLFLQAPSFAVVDAPTLCYRREVATSLTATYDRRQLDIFPALRQALALVENDRDARLFMPKITRTTLALVAHHISRSKNMKADVRRDLRASTRSLMAELPADVLAAEVNQMARDRARRLYGLLPRNVERQVDAPRLETPLPGPT0023435_263DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023435-tarS-K22708NANA
AK018_046321356hypothetical proteinGTGACCCAACTCGTCGTCGCTTCCACGCTCTTCGGCGCCAGCACGGCGGCCGCCGCGTCCGACGCAGGGCTCCTCGGCGACCACGACGGAGAGCGCATCCTCCTCGTGGTGAACAACGCCGCGGCTCCCGAGCTGAGCCCCGCTCTCGACGAGATTCCTGGCGCCGATCCGGTGCTGCGCCGCTTCGACCGGATCGTCCATCTCAACGACCTCATCGCACCGGTCCACCCCTCGGACTGGATCACCGGATCCCGCGAACGCCCTTTGATCGAGCGGCTCCTGCGGACCTACTGGGGACTCGACGACTCGAGCGTGGAGATCGTCTGCGAATCGATCTGGGTCAACCCGGCGCTCAACCTGTCCCGCATCTTCCACGATGCGCGCCTGACCGTCTACGCCGACGGACTCATGAGCTACGGGCCGACACGAGACCGGCTCCCCCTGGACGTGACCCAGCGCCTCCAGCGACTCCTCCATCTCGACCTCGTCCCCGGTCTGCGCCCGGTGCTCCTGACAGAGTACGGGGTGACGAGCACCGTCATCCCCAGCTCCGCGTTCCGGGCCCTGCTCGACGAGCTCGTGGCCGAGAGCGCCCCAGCCGAACCGTCCGGCAGCTCGCCGGCGCTCGTCATCGGCCAGTACCTCTCCGCGCTGGGCCTGGTCAGCCGTGCCGAGGAGACGGCGATGCACGTGAGGATGGTTCGCGCCGCCTCGGACGCAGGCGCAGACCTCGTGCGGTTCAAGCCTCATCCCTCGGCTCCGCCCGGGCTCGTCTCTCCGCTGCGGGACGAAGCAAGGCGTCATGGTGTCGAGCTCGAGGTGGTCGATGACGCACGCCCTGTAGAGGCCCTCCTCGTCGCGACGAGCCATGTCGCGATCGTCGGCTGCTTCTCGACAGCGCTGGCCACGGCGCGCAACGTGCTGGACACCCCGTCGATCTGCATCGACACGGGCAGCCTCCTGGAGCGGCTCGAACCTTTCGAGAACAGCAACCGTGTGCCGCTGACGCTCATCGACGCGATGCATCACGAGGGCGGCTCGTTCGACGACGCGGAGGCACTGCAGGGGCTGGTCACCGCCGTCGCTTACTGCATGCAGCCGGAGGCCCTGGCTGCGCTGCGCCCCGCGGCCGTGGCGACGCTCCGGTCGATCCCCGACTCGGAGCGGCGTCGGTACTTCCGCCCGTCGCGCCTCACAGCCCTCGGACTCCCCGGTGGGCCGAACCGCCATCCTGTGCGTGCCGCTGCCATCGTCACGACGCAGAAGGTGCTGCGCCACCCCGCGCTCGGTTGGCTCGACGAACGTACTCGCACGTCCGCCACACGACAGCGGCTCGGCCGCCTCATCCGCGGCTGAMTQLVVASTLFGASTAAAASDAGLLGDHDGERILLVVNNAAAPELSPALDEIPGADPVLRRFDRIVHLNDLIAPVHPSDWITGSRERPLIERLLRTYWGLDDSSVEIVCESIWVNPALNLSRIFHDARLTVYADGLMSYGPTRDRLPLDVTQRLQRLLHLDLVPGLRPVLLTEYGVTSTVIPSSAFRALLDELVAESAPAEPSGSSPALVIGQYLSALGLVSRAEETAMHVRMVRAASDAGADLVRFKPHPSAPPGLVSPLRDEARRHGVELEVVDDARPVEALLVATSHVAIVGCFSTALATARNVLDTPSICIDTGSLLERLEPFENSNRVPLTLIDAMHHEGGSFDDAEALQGLVTAVAYCMQPEALAALRPAAVATLRSIPDSERRRYFRPSRLTALGLPGGPNRHPVRAAAIVTTQKVLRHPALGWLDERTRTSATRQRLGRLIRGNANANANANA
AK018_046331158hypothetical proteinATGCCTCAGTGGGGTGCCTACGAGATGTCCCGGCAAGGGAACGGGGGGATCTCGATCCTGAAGCACTTCTACTCCGGCGCTCGCGCGCCATATGTCCGCACCCCGCTGAACATCCAGGTGCAGGTCTACGGTCCCGACCCGGCCGGGTTGTCGAGGTACGGCGACAGCAGCGCCAGCACATCGGTCCGGACGGATGGCGGTTCTTGGCGGATCCGTTCCGGCGGCACGACTCTGGCGCACGGATCAGGGCCGACCACCTTCGAGGTCGACAGGACACGATGGACCGGCAAGCCACGAATCGTGGTGGAGGGCAAGAGGTATATCCGCACGTTGCTCCGCATCCAGTGGTCAGGCACCACGTACTTCCGACCACACGGCACGGCAGCTGTCGCCCGCGTCGACGGCGCCCACGGAGCGTATCGCCACGGCCGTCTCACCGTGACCACGCGCCAGGGGATCCCCAACATCACGAACGACCTTCGCCTCAACACGGAATACCTGTACGGCATCGCCGAGATGCCCTCGACATGGGCCCTCCACGGCGGAGGCAGGGCGCTGCGCGCCCAGGCGATGGCCGCGCGGGCGTATGCCATCGCCCACCACGATGTCCGCGACGAGTGCCGCTGCCACGTGGTCGACGACGAACGGGACCAGTACTTCACGGGTTGGAGAAAGCAGAACGAGGGGCCCGGCGGCAGCTACGGTGCGCTCTGGACCAAGCACGTGGACGCCAATGTCCGTGGTCCCCGCGAGGCCCGTGCACTCGTGTTCGGCGGCGATCCCGTCGCCGCGCACTACTACTCCTCCGGTGGAGCTCGCACCGCGAACTCCGAGGACGTCTGGCAATCCGTCGTGCCGTACGAGCGTTCGGTGAACGACCCGTACAGCATGTCCGCGCCCGGCAACCCCTACGCGTCGTGGACTCGGACGGTGACGCAGCAGGCTGCCCGAGACCTCTTCGGTCTGCACAACGTCGCGTCGATCGAGGTGACCCGGACATGGTCGAGCGGCCAGGTCCGAACACTGAAGGGTACTCAGCCGAACGGACGGACCGCGACGATCACGGGGAAGGCCGACCAGATGCGTCGATGGATCGGCCAGGCAACGACTCGCGGATGGATGCCCGCCACCTGGGTCAGCTCGGTCGACCCGTCCTGAMPQWGAYEMSRQGNGGISILKHFYSGARAPYVRTPLNIQVQVYGPDPAGLSRYGDSSASTSVRTDGGSWRIRSGGTTLAHGSGPTTFEVDRTRWTGKPRIVVEGKRYIRTLLRIQWSGTTYFRPHGTAAVARVDGAHGAYRHGRLTVTTRQGIPNITNDLRLNTEYLYGIAEMPSTWALHGGGRALRAQAMAARAYAIAHHDVRDECRCHVVDDERDQYFTGWRKQNEGPGGSYGALWTKHVDANVRGPREARALVFGGDPVAAHYYSSGGARTANSEDVWQSVVPYERSVNDPYSMSAPGNPYASWTRTVTQQAARDLFGLHNVASIEVTRTWSSGQVRTLKGTQPNGRTATITGKADQMRRWIGQATTRGWMPATWVSSVDPSPGPT0024670_409DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-STAGE_II_SPORULATION,PGPT0024670-spoIID-K06381NANA
AK018_04634222hypothetical proteinGTGAGCGACCCGACCCCCCCGATGGACCCGTGGGTGCGCAGTGTGCTGCGCTGCCCGGTCACCGGTGCCGAGCTCGTCGACGCCGTCGGCCCTGAGGGCACTCCGGAACTCCGCTCCACCGACCCGGAGCGGCCGCTGGCCTACCCGGTCCGCGACGGGATCCCGGTCCTGCTGGAGTCCGAGGCGGTCGACCCGGGTCTCAGGACGGGTCGACCGAGCTGAMSDPTPPMDPWVRSVLRCPVTGAELVDAVGPEGTPELRSTDPERPLAYPVRDGIPVLLESEAVDPGLRTGRPSNANANANANA
AK018_046351404algC_2COG1109Phosphomannomutase/phosphoglucomutaseGTGAAGGCGTACGACGTGCGTGGCCTGGTCCCGGCCGAGCTGTCGCCGCGGGTGGCGTGGGCGCTGGGCGTGGCGTTCGCGGAGGTCGTGGCGCTGCCCGAGGGGGTGTCGCGGGTGGTCATGGGCCGGGACATGCGGGACTCGGGTCCGGCGTTGGCGCGGGAGTTGGCGGCCGGGGTGGTGAGCCGGGGTGTGGACGTGGTCGACGTGGGGCTGTGCTCGACCGACGGGTTGTACTTCGCCTCGGGCAGCCTGCAGGCGCCGGGGGTGATGTTCACCGCTTCGCACAACCCGGCCGAGTACAACGGGCTCAAGCTGTGCCGGGCCGGGGCGCGGCCGGTGGGGCAGGACACGGGCCTGGCGCAGGTGCGCGACCGGGCCCAGGAGGTCCTGGACGGTTCCGAGCCGGACGTGGCCGCCACGACGGGCCACGTGGTCGAGCAGAACGTGCTGGGCGACTACGCGGGGTTCCTGCGCTCGTTGGTGGACCTGTCGGGGATCCGGCCGCTGAAGGTCGTGGTAGACGCCGGCAACGGCATGGCCGGGCTGACGGTCCCGGCGGTGCTGGGCGAGGCGGCGGGACTGCCGGGCGTGCCTGTCGAGGTCGTGCCGCTGTACTTCGAGCTGGACGGCACGTTCCCGCACCACGAGGCCAATCCCCTGGAGCCGGAGAACCTGCGCGACCTGCAGCGCGCGGTGGTCTCCCACGGCGCCGACCTCGGGCTCGCCTTCGACGGCGACGCCGACCGCTGCTTCGTGGTCGACGAGACCGGCGCGGCGGTGTCCCCGTCGGCGATCACCGCGCTGGTGGGGATGCGCGAGATCGCCCGCGAGCGGGCCGCCGGCCGGCCGGCGACGGTCATCGCGAACCTCATCACCTCCCGGGCGGTGACCGACCTGCTCGGCGAGTCCGCCACCGTGGTGCGCACCCGCGTGGGCCACTCCTTCATCAAGCAGACCATGGCCGAGCACGAGGCCGTCTTCGGCGGGGAGCACTCGGCGCACTACTACTTCCGCGACTTCTGGTTCGCCGACACCGGCATGCTCGCCGCGCTGCACGTGCTGGCCGCGCTCGGCGGCCAGCCCCACCCCGCCAGCGCGCTGTCCGACATGTACACCCCCTACAGCGCCTCGGGCGAGATCAACTCCACCGTCACCGACCCCGGCGCGACCGTGGAGCGCGTGCGCACCACCTACGAACGCGCCTACCCCGAGGCGCTCGTCGACACCTTCGACGGCCTGACCGTCACGCACTGGGACGACCAGCACCCCCAGTGGTGGTTCAACCTGCGCGCCTCCAACACCGAACCCCTGCTGCGCCTCAACGTCGAGGCCGCCGACCACGACATCATGACCAAGCTACGAGACGACGTCCTGTCCCTCGTGCACGAGGAGGACCTGTGAMKAYDVRGLVPAELSPRVAWALGVAFAEVVALPEGVSRVVMGRDMRDSGPALARELAAGVVSRGVDVVDVGLCSTDGLYFASGSLQAPGVMFTASHNPAEYNGLKLCRAGARPVGQDTGLAQVRDRAQEVLDGSEPDVAATTGHVVEQNVLGDYAGFLRSLVDLSGIRPLKVVVDAGNGMAGLTVPAVLGEAAGLPGVPVEVVPLYFELDGTFPHHEANPLEPENLRDLQRAVVSHGADLGLAFDGDADRCFVVDETGAAVSPSAITALVGMREIARERAAGRPATVIANLITSRAVTDLLGESATVVRTRVGHSFIKQTMAEHEAVFGGEHSAHYYFRDFWFADTGMLAALHVLAALGGQPHPASALSDMYTPYSASGEINSTVTDPGATVERVRTTYERAYPEALVDTFDGLTVTHWDDQHPQWWFNLRASNTEPLLRLNVEAADHDIMTKLRDDVLSLVHEEDLPGPT0017865_1351DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0017865-manB|yhxB-K01840NANA
AK018_046361239manA_2COG1482Mannose-6-phosphate isomeraseGTGCTCTCCACTGCCGTGTTCCACGACCCGCTGCCGCTGACCAACGCCGTTCAGCGCTACGACTGGGGTGCGCAGGACGCCATACCGCACCTGCTCGGCATCGAGCCGGACGGCGGACCCTACGCCGAGCTCTGGCTGGGCGCGCACGCCAGCAACCCCTCGGTCACGACGGCTCACGACGTGGAGATCCCGCTCGACGCGCTCCTGCGCGAGGTCCCTGTCCAGACGCTCGGGCACCGCGTCGCCGAGCAGTTCGGCCCGCGACTGCCCTACCTGCTCAAGGTCCTCGCCGCGGACCGCGCGCTGTCCCTGCAGGTCCACCCGTCGGCGCGGCAGGCGCGCGAGGGGTTCGCCCGGGAGTCCAAGGCCGGTCTCGCGCCGGACTCGCCGCACCGCTCGTTCCGCGACGACCAGCACAAGCCCGAGATGCTCGTCGCACTCACCCAGTTCGAGGGGCTTGCGGGCTTCCGGTCGCCCCGTACGATCCTCCAGATCCTTGAGGGCCTCGAGGGCGACCTGGTCGAGGCGGTCCGCAGCACGCTGCGGCGCGACCGGTCCCACGGGGGCATGCGGAGCGCTTTCGACGTCCTCGTCTCGGCACGGGGTGACAGCGAGTGCGCTGCCGACATCACCACGACGCTTGATTCCGTGCGTGAACGAATCGCCGACGGCTCGCCCTACGCCCGTGCCGACCAGGCAGTCGTCGACCTGGCGACACAGCACCCGGGCGATCCTGGTGCAATCGCTTCCCTGATGCTCAACCGCATCTCGCTCGAGCCAGGTGACGCCCTGTTCGTCCCGGCCGGCGAGGTCCACGCCTATCTGTCCGGACTGGGCGTGGAGATCATGGCGAGCTCGGACAACGTCCTGCGGGCCGGCCTGACCACCAAACGTGTCGACGAGGGCAACCTCGCCGCGATCGCGTCCTTCGCTCCGTGCCGGCCCGCGACACCAGAGATCACCGTGGCCGGCAGCCGAGGACAGGTGCACACCTACCGCGTCCCGGTCACCGAGTTCGCACTGACCACGGCCGACGTGGATCCGTCCGAGCCTGTCACGCTGGCCCCCACCGGCCCCCGCATCGTGATGTGCCTGGAGGGGTCGATCGAGCTCGCGGCCGATCGCTCCGACGCCGGTCCGGTCATCCTGCCTCGCGGCGGGTCCGTCTTCGTGCCCCACGACGCAGGCAATCTCTCCGCAGCCGGGTCGGGGCACGTCGTCTGCGCGTGGGTGCCCTGAMLSTAVFHDPLPLTNAVQRYDWGAQDAIPHLLGIEPDGGPYAELWLGAHASNPSVTTAHDVEIPLDALLREVPVQTLGHRVAEQFGPRLPYLLKVLAADRALSLQVHPSARQAREGFARESKAGLAPDSPHRSFRDDQHKPEMLVALTQFEGLAGFRSPRTILQILEGLEGDLVEAVRSTLRRDRSHGGMRSAFDVLVSARGDSECAADITTTLDSVRERIADGSPYARADQAVVDLATQHPGDPGAIASLMLNRISLEPGDALFVPAGEVHAYLSGLGVEIMASSDNVLRAGLTTKRVDEGNLAAIASFAPCRPATPEITVAGSRGQVHTYRVPVTEFALTTADVDPSEPVTLAPTGPRIVMCLEGSIELAADRSDAGPVILPRGGSVFVPHDAGNLSAAGSGHVVCAWVPPGPT0017860_859DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCOSE-MANNOSE-FRUCOSE_CONVERSION_MODIFICATION,PGPT0017860-manA-K01809NANA
AK018_04637345hypothetical proteinGTGGCAACCCTCACCTACGTGTACGCGGACTCGACCGCGGTGCTGGGGCCGCTGGCGCAGCGCGCCGAACCGCACAGCTACGACCTGTGCGCCCAGCACGCGGAGCGCCTCACGGCGCCGCGCGGCTGGGAGGTCGTGCGGCTGCAGCCGGAGTTCGAGACGCCGGCCCCTTCCAAGGACGACCTGTCGGCGCTGGCCGAGGCGGTCCGCGAGGCGGGGCGCGGCGGGCGGGCGACGCAGCGTCCGGCGCCGGCCGAACCCGCCGGCGTCACCGAGACGGCGCGCCGCGGGCACCTCCGCGTGCTGCGCGCCGAGTCCGACGGCGGGCCCGCCGCGGGCCTCTGAMATLTYVYADSTAVLGPLAQRAEPHSYDLCAQHAERLTAPRGWEVVRLQPEFETPAPSKDDLSALAEAVREAGRGGRATQRPAPAEPAGVTETARRGHLRVLRAESDGGPAAGLNANANANANA
AK018_04638360hypothetical proteinGTGCCCCCGGGCCTGCCGGGGCACCGCACGCGCGCCGAGCGGTTCGACGACACCGTGCTGGCGGCGGTCGAGTCGATCGAGCGTCGGTGGCCGGCGGTGGGCCGGGCCGAGTTCGGCGTCGAGGACGTGCCCCCGTCGGACCCCGCGCCGTGGGAGTCGAGGGGCGTCCCGCTGGGGCGGCTCTTTCCGGCCGAGGCCGGTCAGCCGGCGCGCGTCGTCGTCTACCGTCGACCGGTGGAGACCCGCGCCGTCGACCCGGAGGACCTCGCCGACCTGGTCCACGAGGTCGTGGTGGAGCAGGTCGCACACCTGCTGGCCCGCACGCCGGAGGAGATCGACCCGCGGTTCGGCGACCGCTGAMPPGLPGHRTRAERFDDTVLAAVESIERRWPAVGRAEFGVEDVPPSDPAPWESRGVPLGRLFPAEAGQPARVVVYRRPVETRAVDPEDLADLVHEVVVEQVAHLLARTPEEIDPRFGDRNANANANANA
AK018_046391608hypothetical proteinATGAGGGCCCGCCGGACCGTGCGCCGGATCGCCCTCGTGACGTCCGGCACCGCCGTCGCCGCGGCGCTCGTCGCCACGGCGGCCGTCGGGGAGCAGTGGGCGCAACGGTTCACCGCCCCCGAGTCGACGGCGGTCGCCGCGACGACGCGCCAGGTCGAGGTCGACCCGCCGACCTCGACCTACGTCTGCCCGCGACCGGCCCGTCTGCCCGAGGGCTCGGACGTCGGAGACGACCAGTTCGGTGCGGCACCCGTCGAGACGCGCACCGCCGGGGCCGCGGTCGTGGGCGGAGCGGCCGGCGACCCCGTGCTCGCGCGGCTGGACGGCAGCCGGGGCACCGGCCTGACGGCGGGGCCGGACCTCGACGTGCTGACCCGGGAGGTCTCCGGGACCCGGGTCCTGCTCGCCGACCCCCGCGCCGGGTCGGCCCTGCGCCTCGCGGGTGCCCTCGCGTCCAGCACGACCGCCGGCGACCTGCGAGGGCTGGCGGCGGCCTCGTGCCGCGCCCCGGCCACCGAGCACTGGCTGGTCGGCGGCGGCAGCGAGGTCGGGCGCACCGCCGTGCTGACGGTCCAGAACCCCAGCGAGTCCCCGGCGACGGTCGGCCTCGCGGTGCACGGGCCGAACGGCCCGGTGTCCATCGGCGGACGGGGCGCGTTCACCGTGGCGCCCGGTGAGCAGGAGGTGCTGCGTCTCGACTCCCTGGCGCCGGAGCAGCGCCGTCTCGCGGTGCGCGTCAGCGCCGCCGGCGCCCGCGTCACCGCCTCCTGGCAGACCCAGGGGATCGACGGGCTCGTCCCGGCGGGCACGGACCTGCTCGAACCGGGGGCGCCGCCGTCGCGGACCGTGGCGTTCAGCGGTGTCGTCGGCCGCGGTGAGGCGCCCCTCGAGGACCAGGCCGCGGAGCTGTGGCTGCTCGCACCCGACGACCGGTCCGGGACGGCCCGGGTCAGCGTCTACGGTCCGCAGGGCCGGGTGACGCTGCGTGGCGCGGACGTCGTCGACCTGGGTGCGGGCGCTGTGACCACCGTGCCCCTGGGCGGTCTCGACCCCGGCACCTACGCGGTCGTCGTCGACGCCGACGTGCCCGTGGTCGGTGCGGCCCGCTTCGCGCTGCCGGGGGAGCAGCCCGAGGACTCCGTGGTGGACGGCACCCCGTACGACCTCGCCTGGAACGCCGGCCAGGTCCTGGCGGACGAGCCGGCCGGTGCCGGCCAGGTGGCCCTGCCGGCGGTGGCCGAGGAGGCCACGGTCGTGCTCTCCGCCGTGCCGACGGACCGCTCCGAGGACGCGGACCTCGACGGGACCGTGGCGGTGCGGCTGCGGGGCGTCGACACGGACGGCGGCGTCGCGGGGGAGCAGCAGGTCGACGTCCCGGTCGGGGGGACCGTCGAGGTCCCGGCGGCCGACGTCGGCGCCGCGACGGCGGTGTTCGTCGACCCGGCCACGGACGGCGCGGGCGGCGCCGCGGCGCGGGTGCTCTGGTCGGTCCGGCTCACGGCCTCCGACGGGACCGGCACGGACGGGACGCTCGTGGCCACCCTGGACCCCACGTCGGCCGCCGAGACGGACGGCGTCGAGGAGGTCCGCCGCGTCGACGCGCCCTGAMRARRTVRRIALVTSGTAVAAALVATAAVGEQWAQRFTAPESTAVAATTRQVEVDPPTSTYVCPRPARLPEGSDVGDDQFGAAPVETRTAGAAVVGGAAGDPVLARLDGSRGTGLTAGPDLDVLTREVSGTRVLLADPRAGSALRLAGALASSTTAGDLRGLAAASCRAPATEHWLVGGGSEVGRTAVLTVQNPSESPATVGLAVHGPNGPVSIGGRGAFTVAPGEQEVLRLDSLAPEQRRLAVRVSAAGARVTASWQTQGIDGLVPAGTDLLEPGAPPSRTVAFSGVVGRGEAPLEDQAAELWLLAPDDRSGTARVSVYGPQGRVTLRGADVVDLGAGAVTTVPLGGLDPGTYAVVVDADVPVVGAARFALPGEQPEDSVVDGTPYDLAWNAGQVLADEPAGAGQVALPAVAEEATVVLSAVPTDRSEDADLDGTVAVRLRGVDTDGGVAGEQQVDVPVGGTVEVPAADVGAATAVFVDPATDGAGGAAARVLWSVRLTASDGTGTDGTLVATLDPTSAAETDGVEEVRRVDAPNANANANANA
AK018_046403276hypothetical proteinATGGCGCTCAGGATGACTGCACCGCACCTGACCCGGACGCCGGACGGGGCCGACGTCCACGACGTGGCCCCGGACCCGGTCACGGGTGTGCCCGCGCGGCAGTCCGTGACCGTGGCGGCCGTGGTCGTCACCCGCGGACGGACACCGTTCCTGCCGGACACCCTCGACGCCGTCGCCGCCCAGGTCCGCGCCCCGCAGGACGTGGTCGTCGTCGACGTCGACGCCGCCCCCTCCACGGGCCAGCACCCCGACCTGCGGCTCGGGGACCGACACTTCGTCGGCGCTGCCGGGTCCCGCACCCTCGGTGAGGCCGTCGACCACGCCCTGACCACGCTGGGGCTCGAGGACACGACCTGGCTGTGGATCCTGCACGACGACTCCGCACCGGCGCCGGACGCGCTCGCCGCGCTGCTGCGGGCCGTGGAGCACTCCGCGGCGGTGGCGGTCGCGGGCTGCAAGCAGCGCCGCTGGCCCCTCGACGAGGACGGGAACCCCCTCACCCCCGACCCCGACCGCCCCGGGCTGCTCGTCGAGGTGGGGTACACCGTCTCGCCGCTCGGGCGGCGGATGACGGGCATCGACGACTCCGAGATCGACCAGGGCCAGCACGACGCCCGCGAGGACGTGCTGGCCGTCGGCCTGGCCGGCGCGCTGGTGCGACGGTCCGTGTGGAGCGAGCTCGACGGCACCGACCCCGAGCTGGGCCGGTTCGGCGACAGCCTCGACCTGTGCCGGCGCGCCCGGCTGGCCGGGCATCGTGTCGTCGTCGTGCCCGACGCCGTCGTCCACCACGCGCAGGCCTCGCTGCGCGGACTGCGCGGGCCCCGGAGCCACCGCACCCGCGGCAGCCGGGACGCCTCCGTCTACGCCCGCCGGCGCAGCCAGCTCTACGCCCGGCTCGTCACGGTCCCGCTGCCCCTGCTGCCGCTGGCGCTGGTCGCCGTGATCGTGTGGGCGCCCGTCGCCGCGGCCTACCGGTTGGCGCTGACGCGTCCGGCCGAGGCGCGCGACGAGCTCGTCGCCCCCGTGGTCACGGTGCTGCGGGTGGTGCCGCTCGTCCGCGGCCGACGGCGGGCCGCGCGCACCCGCGCGATGCAGCGGCGCGTCCTGCGCCCCCTGCAGGCGGGCTGGCGCGACGTCGCCGCCCGACGTCGCGACGCCCGCCTCACGCGGGCCGAGACCCACCGCTCACGCCGGTCCCTGACCGACCTCGAGCGCGCCGAGCTGCACGCTCTGGCCCGCCGGCGCCGCGCCGGCCTCGCCGTCGTGCTGACGGCCACCGTCCTGCTCGCCCTGGTGACCTTCGGCCCCTGGCAGGGTGTTCTCGCCGACGGCGGGCGCGTGGTCGGGGGCGCGCTCCTGCCCGCCCCCGCCTCGTTCGCCGAGGTGGCCGACGCGGCCACCTCCGGATGGGTCCACGACGGGCTCGGCACCGGCGCGCCCGCGGACCCGTGGCTCGGCGTGCTGACGGTCCTGACCGCGCTGGCCGGGGGCGCGGCGCAGACGGCGGTGAACGCGCTCGTCCTGGCCGCCCTGCCGCTGGCCGCGGTCGGGGCCTGGTTCGGTGCCGGCGCCGTGTCCCGGTCGGTCTGGGCCCGCCTGGCCGCGGCCCTGGTGTGGACGGCCTGGCCCGGGTTCCTGGAGTCCCTGACCACGGGCCGGCTGGGCGCCGTCATGGCCCACCTCGCCCTGCCCTGGCTGCTGCTCGCCGCGCTGCGGGCCGTCGGCCACCAGGCGCGCGACGACGTCGGGCCCACGGTCGGTCCCCGCGGCTCCCGCGGCTCCCTGGGTGCGGCCGCGACCGCGGGCCTGCTGCTGGCACTCGTGGTCGCCGCCGCCCCCGCGCTCGCGGCCGTCGCGCTCCTGGCCGGGGCCGTCGGGCTCGCCGTCGTCCCCCGGCACTGGCGTCGGGTGCTGGTCGTGCTCGGCCCCGCCGTCGTCGTCGCGCTGCCGTACTGGTGGCACGCCGCCGCGACCTGGACCGCAGGAGGGTGGCGACCCCTGCTGGCCACCCCCGGGGCTCCCGTCGGGGGAGCGGACGTCGACGGCAGCACCCTGCTGCTCGGCCACGCGACCACGCCGCAGCCGTGGCTGGCCGGCCTGGACCTGCCGACGGGCCCCGTGCTCGACGCCGGTCCGTGGATCCTCGGGGCCGCGCTGACGGTCCTCGCGGTCGCCGGTCTCGTCCTGGGCCGCCGCCCCCTCGCCGCGCGGCTCGGCGTCGGCCTGGCCTCCGTCGGTCTGGTCCTGGCGCTCGTGGCCGAGGGCACCGTGGTGGCGGCCGACAGCGCCGGCGGACCCGTCCACGGCTGGCCCGCGCCGGGACTGTCGGTGCTGCTCCTCGGGCTCGGGGTCGCGGCACTGGCCGCGGTCCCGGCGCCCGGCACCCGACGCGTGCTGCGCGTGGCGGCCGGGGCGCTGGCCGCCGTCGCCCTGCTCGTGCCGGTGCTCGGACTCGGTGCCTGGTGGTACGCCGACGGGCGCGGCCACGCCGTCGGTGACCTGCGGGTCGACGACACCGCGGTGGTGCCCGCCGTCGGCCGTCAGCTCCAGTCCGCACCCCAGGCCGCCCGCGTGCTCCAGCTCGACCGGGTCGACGGCGTGGTCGAGTACACGCTGCTGCGTCGCGACGGGTCGAGCGTGCTCGACTCCTCCACCGTGGTCCGCGCGCGCGAGGCAGGCCTCGCGCCCGGCGGCGCGCGGGCCGACGTCGCCGCCCTCGACGAGCTCACCGCCCAGGTGGCGGCCGGGCGCAGCCCCGACCTGACCACCCGGCTCACCGCTCTCGGGGTCGGCGCCGTCCAGATGCCGGCCGACGGCGACACCGAGCTCGTCACCACCCTCGACCTGGTCCCCGGCCTGACCCGGGTCACCGAGAGCTCGGTGCTGCTGTGGCGGGTCGACCCCGACGGGCCGGCGCCCGCCTGGGCGACGGTCCTGCGCCGGGCACCCGACGACGGGCAGACGGGTGCGGCGGTGCGCACCCTCTCCGGCGACGGCCGCACCGTGGACGACACCGTCGGCACCGGCGAGCAGAACCGGCTGCTGGTGCTGGCCGAGAGCGAGGGGGCGGGCTGGCGCGCCACGCTCGACGGTCGTCGGCTCCCCGCCACCGCCCTGGACGGACGGCAGGCGTTCCGGCTCGGGGCCGAGGCCGGCGACGTGCACGTCGAGTACGCCGCGCCGTCGCGCCCGCCGTGGTTCGCGCTGACGGGGCTCGTGCTCGTCGTCTACGTGCTGCTGGCGCTGCCGCTGTCGCGGCGGAGGCACCGATGAMALRMTAPHLTRTPDGADVHDVAPDPVTGVPARQSVTVAAVVVTRGRTPFLPDTLDAVAAQVRAPQDVVVVDVDAAPSTGQHPDLRLGDRHFVGAAGSRTLGEAVDHALTTLGLEDTTWLWILHDDSAPAPDALAALLRAVEHSAAVAVAGCKQRRWPLDEDGNPLTPDPDRPGLLVEVGYTVSPLGRRMTGIDDSEIDQGQHDAREDVLAVGLAGALVRRSVWSELDGTDPELGRFGDSLDLCRRARLAGHRVVVVPDAVVHHAQASLRGLRGPRSHRTRGSRDASVYARRRSQLYARLVTVPLPLLPLALVAVIVWAPVAAAYRLALTRPAEARDELVAPVVTVLRVVPLVRGRRRAARTRAMQRRVLRPLQAGWRDVAARRRDARLTRAETHRSRRSLTDLERAELHALARRRRAGLAVVLTATVLLALVTFGPWQGVLADGGRVVGGALLPAPASFAEVADAATSGWVHDGLGTGAPADPWLGVLTVLTALAGGAAQTAVNALVLAALPLAAVGAWFGAGAVSRSVWARLAAALVWTAWPGFLESLTTGRLGAVMAHLALPWLLLAALRAVGHQARDDVGPTVGPRGSRGSLGAAATAGLLLALVVAAAPALAAVALLAGAVGLAVVPRHWRRVLVVLGPAVVVALPYWWHAAATWTAGGWRPLLATPGAPVGGADVDGSTLLLGHATTPQPWLAGLDLPTGPVLDAGPWILGAALTVLAVAGLVLGRRPLAARLGVGLASVGLVLALVAEGTVVAADSAGGPVHGWPAPGLSVLLLGLGVAALAAVPAPGTRRVLRVAAGALAAVALLVPVLGLGAWWYADGRGHAVGDLRVDDTAVVPAVGRQLQSAPQAARVLQLDRVDGVVEYTLLRRDGSSVLDSSTVVRAREAGLAPGGARADVAALDELTAQVAAGRSPDLTTRLTALGVGAVQMPADGDTELVTTLDLVPGLTRVTESSVLLWRVDPDGPAPAWATVLRRAPDDGQTGAAVRTLSGDGRTVDDTVGTGEQNRLLVLAESEGAGWRATLDGRRLPATALDGRQAFRLGAEAGDVHVEYAAPSRPPWFALTGLVLVVYVLLALPLSRRRHRNANANANANA
AK018_04641339whiB_2Transcriptional regulator WhiBATGTGGAATTTGCTCGACGGGGACCAGGGGGCCTTCCCGTCTGACGTCCGTCAGGAACCGGACCGGGTCGCTCCGGTCCTTCCGCTCTTCGGCCAGGAGATCGTCGCCGAGGACGAGACCCTGTTGGGGTGGCAGGAGCGCGCCCTGTGCGCCCAGACCGACCCGGAGGCCTTCTTCCCGGAGAAGGGCGGGTCCACGCGCGAGGCCAAGAAGGTCTGCGCCTCCTGCGAGGTCCGGTCGGAATGCCTCGACTACGCGCTCGAGAACGACGAGCGTTTCGGGATCTGGGGAGGGTTGTCCGAGCGGGAACGGCGAAAGCTCAAGCGGCGCGCCGTCTGAMWNLLDGDQGAFPSDVRQEPDRVAPVLPLFGQEIVAEDETLLGWQERALCAQTDPEAFFPEKGGSTREAKKVCASCEVRSECLDYALENDERFGIWGGLSERERRKLKRRAVNANANANANA
AK018_04642729hypothetical proteinGTGAGCACCCCACCCACCACCGTGACCGGCCTCCTCGCCCGACTCGCCGCGCTCGGCGGACGCCCCGCCCTGACGTGGTACGGCGACGACGGCGAACGGATCGAGCTGTCCGGCGCCGTCCTCGACAACTGGGTCGCCAAGACCGTCAACCTCCTCGCCGAGGAGTTCGACACCGAGCCCGGCAGCACCGTCGTCGTCGACCTGCCCGTGGGGTGGCGCCAGCTCGTCTGGGCGCTGGCTGCCGCGCGGTGCGGGGCCGGGGTCGTCGTGCGGGACCCGACGACGGACGCGCCCGGGCACGCGGCGGCGGACGTCGTGGTGACCTCCCGCCCGCTCCGGTGGCCGGACGTCGACGAGATCGTCGCCGTCGCGCTGCCCGCGCTGGCCCGCCGGTTCGACGGCGAGCTGCCCGACGGCGCGATCGACGCGGCGGCCGCGGTGATGACCTACGGCGACGTCATCGGCCTCGACCCGGCCCCCGGTGCCGCGACACCGCTGACCCTCCTGACCGGGGACGACGACCCGTCGGTGTCGACGGACCGGGGCGCGGCGGGCCGTGTCCTGGTCCGGGGCTCGGGCCCGGTGGCGGAGGTCCTCTCCGCGTGCGTCGCCGTGTGGTCCGCCGGCGGGTCGGTGGTGCTCACCTCCGCCGCGACGGCGGCCGCCCTGGACACCGACCCGGCGCGCCGCGAGCGGATCGTGGCCACGGAGCAGATCACGCGGCCCTGAMSTPPTTVTGLLARLAALGGRPALTWYGDDGERIELSGAVLDNWVAKTVNLLAEEFDTEPGSTVVVDLPVGWRQLVWALAAARCGAGVVVRDPTTDAPGHAAADVVVTSRPLRWPDVDEIVAVALPALARRFDGELPDGAIDAAAAVMTYGDVIGLDPAPGAATPLTLLTGDDDPSVSTDRGAAGRVLVRGSGPVAEVLSACVAVWSAGGSVVLTSAATAAALDTDPARRERIVATEQITRPNANANANANA
AK018_04643552COG1399putative proteinGTGCTCGACACGCACGAGCTGTCGCGGCGTCCCGGCACCATGCGGGAGGTCGCGCGCGTCGTCGCCGCGCCCGCCGACCTGGGTACGGCGGTCATCGGCGTGCCCGAGGGTGCCGACCTGACGCTGGGCCTGCGCCTCGAGGCGGTCCTGGAGGGCGTGCTCGTCTCCGGCGTCGTGCGCGGCACGGTGGTCGGTGAGTGCGTCCGGTGCCTGGACCCGGTCTCCGACGAGGTGACCGTCCGCGTCCAGGAGCTGTTCGTCTACCCCGAGCGCGCCGAGGCCGCCGAGGACGCGGGTGACGAGGACGCCGAGGACGAGGCCCTGCTGACCGACGACCTGGCGGACATCGAGCCCGCGGTTCGGGATTCGCTGGTCACTGCACTACCATTTCAACCGCTGTGCCGGCCGGACTGCCCCGGTCTGTGCTCCGAGTGCGGAGCACGGCTGGAGGACGACCCCGAGCACCACCATGACGTCGTCGACCCGCGATGGGCGGCGCTGCAGACCATGCTCGAGGAGTCGAGCGTGTCCGACGAGACGAAAGAGAGCTGAMLDTHELSRRPGTMREVARVVAAPADLGTAVIGVPEGADLTLGLRLEAVLEGVLVSGVVRGTVVGECVRCLDPVSDEVTVRVQELFVYPERAEAAEDAGDEDAEDEALLTDDLADIEPAVRDSLVTALPFQPLCRPDCPGLCSECGARLEDDPEHHHDVVDPRWAALQTMLEESSVSDETKESNANANANANA
AK018_04644558hypothetical proteinATGACCGAGACCACCAACCCGACCGCCGGACTGCTCGAGATCATCGACGACCTGGCGGCGCTCGTCGAGAACGCGCGCACCTCGCCGCTGTCCACGAACGTCAAGGTCGACCGCGACCAGGCGCTCGGGCTGGTCGAGGAGCTGCGGCGGAACCTGCCCACCCAGGTGGCGCGGGCCGACCAGGTGCTCGAGGACGCCGAGCGGTCGCTCGAGGACGCGCACCGCAAGGCCGAGGAGATCCTCGCCACGGCGCGGGCGCGTGCGATCGAGCTGGTCCAGGACGAGCAGGTCGTGGTCCAGGCGGAGTCGCGCGCCGCGGAGATCGTGGCGGAGGCCGAGCGTCGCGCCGAGTCGCTGCGCGCGGACGCCGACGAGTACTGCGACGGGCGCCTCGCCGACTTCGGGCAGGACCTGGCGCGGCTGACGCAGCAGGTCGAGGCCGGCCGGGCCAAGCTGTCGGCCCGCGTGCGCCCGGGAGGACCGCGGGTGCGCTGGGACGCCGTCTCCTCACCGGAGTGGCCGGGCGACGACGAGCCGGCGGACCGGCGCAGCGCCTGAMTETTNPTAGLLEIIDDLAALVENARTSPLSTNVKVDRDQALGLVEELRRNLPTQVARADQVLEDAERSLEDAHRKAEEILATARARAIELVQDEQVVVQAESRAAEIVAEAERRAESLRADADEYCDGRLADFGQDLARLTQQVEAGRAKLSARVRPGGPRVRWDAVSSPEWPGDDEPADRRSANANANANANA
AK018_04645492coaD_1COG0669Phosphopantetheine adenylyltransferaseGTGAGCATCGCCGTCTGTCCCGGGTCCTTCGACCCGATCACGCTCGGCCACCTCGACGTCGTCCGGCGCGCGACCCGCCTGTTCGACACCGTGGTGGTGGGCGTGGCCCGCAACGCCGCCAAGAACGCCCTGCTCGACGCCGACACCCGCGTGGAGGTCGCCCGCCGGGCGCTGGAGGCCGAGGCCGAGACCGCCGCCGTGCGGGTGGAGGTCGTGCCGGGCCTCCTGGTGGACTTCTGCCGCCAGGTCGGTGCCGCGGCCGTCGTCAAGGGGCTGCGTGGCGGCGCCGACTTCGACGGCGAGCTGCCCATGGCCCTGATGAACCGGCACCTGACCGGTGTGGAGACGGTCTTCCTGCCGGGGGAGCAGCGCTACGCCCACGTGGCGTCGTCGCTGGTCAAGGACATCGCCCGCCACGGCGGGCCGATCGAGGACCTCGTGCCGCCCGCCGCGGCCGAGGCGGTGCGCGCCGCCGTCGCGCACCCTGCGTGAMSIAVCPGSFDPITLGHLDVVRRATRLFDTVVVGVARNAAKNALLDADTRVEVARRALEAEAETAAVRVEVVPGLLVDFCRQVGAAAVVKGLRGGADFDGELPMALMNRHLTGVETVFLPGEQRYAHVASSLVKDIARHGGPIEDLVPPAAAEAVRAAVAHPAPGPT0008825_2798DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008825-coaD|kdtB-K00954NANA
AK018_04646624prmC_5Release factor glutamine methyltransferaseATGACCAGGATCGTCGCCGGGACCGTCGGTGGACGCCCGCTCACCGTGCCGCCGTCGGGCACCCGCCCCACCAGCGAACGCGTCCGCGAGGCGATGTTCTCCCGGCTGGAGCACTACGACGTCCTCGACGGCTCCCGCGTGCTGGACCTGTTCGCGGGGTCCGGCGCGCTCGGCCTGGAGGCCGCGAGCCGGGGCGCCGTGGAGGTCACGCTCGTCGACGCCGCCCGCAAGGCCGCCGAGGTCGCCCGCCGCAACGTGCGCGACCTCGGTCTGACCGGCGTCGTGACCGTCCTGGCCGAGCCAGCCGAACGCTGCACCGCGCGGCTCGCCGCGGAACCACCGGGGGGCCGTGGCCTCGACCTGGTGCTGATCGACCCGCCCTACGAGCTGGACCCCCGGGTGCTGACGCGGGTGCTGTCCGATCTCGCCGCGCCGGGGGTCCTGGCGCCCGAGGCCGTCGTCGTCGTCGAGCAGGCGAAGCGCACCGGAGCACCCGCCTGGCCCGCGGGACTCGTGCCGCTCGACGCGAAGACCTACGGCGACACCGCCGTCCACTACGCCGAGCCCGACGGCCGCCCGGACGGCGAGGCGCGCGACGCCGAGGCAAATCCCGCCGAAAGCTGAMTRIVAGTVGGRPLTVPPSGTRPTSERVREAMFSRLEHYDVLDGSRVLDLFAGSGALGLEAASRGAVEVTLVDAARKAAEVARRNVRDLGLTGVVTVLAEPAERCTARLAAEPPGGRGLDLVLIDPPYELDPRVLTRVLSDLAAPGVLAPEAVVVVEQAKRTGAPAWPAGLVPLDAKTYGDTAVHYAEPDGRPDGEARDAEANPAESNANANANANA
AK018_04647900hypothetical proteinGTGGTGCTCGCCGCGACGACCGCCGTGGTCGTCGCTCTGCACCGACGGCTGCCGGACGCCGGCGGCGCGGGCAGCCTGGTCGAGACCTTCCTGCCGTGGACGGCCGTGGTGCTGCTGGGCCTGGGCGTGCTCGCCGTCGTCCGGCGCACCGTGGTCGGAGGGATGGCCGTCCTGTTCGGTGCCGGCGCCTGGCTGTGGGTGTGCTGGCCGTTCACGGCCGCCACCGCGACGGGCGTCCCGGATCTCGTCGTCGTCCAGCACAACGTCTCCGACACCAACGCCGACGTCCGCGGCACGGCCGAGGTCCTGCTGGACGCCGACCCCGACGTCGTCACCCTCGTCGAGGTGACGCCCCGGCTCGCCGACGCGTTCACCGAGGCCCTCGGCGAGTCGCTGCCGCACCATGCCGTCCAGGGCACCGTCGGGGTGTGGTCCCGCACGGCCGTCACCGACGCCGAGCCCGTCGACCTGCGTCCGAAGGGCGTCGACAGCTCCTGGGACCGAGGGCTGCGGGTGCGCGTCCGCGTGGCGGGCCTGCCGGAGCTGCGGGTGTACGCAGTCCATTTGCCGTCGGTCCGGCCCGGCGCCGGCGGCCTCGACGTCGAGGCCCGCGACCGCTCGCTGCGGCTCCTGGGCGACGTGCTCGCCGCCGACGACGCCGAGCACGTCGTCGTCGGCGGCGACTTCAACACTGTCCTCGCCGACCGTGCGTTCGCACCGGTGCTCGACCAGGTCGCCGCACCCGCCGGATCCTTCGACTTCACGTTCCCGGCGGTGCTCCCCGTGGTCCGTATCGACCACGTCCTGTCCCGCGGGGTCGAGACCACCCGTGTCGCCACCCTCGGCAGGACGAGCAGCGACCATCGGCCGGTGGTCGCCGACGTCTCGCTGACCGACTGAMVLAATTAVVVALHRRLPDAGGAGSLVETFLPWTAVVLLGLGVLAVVRRTVVGGMAVLFGAGAWLWVCWPFTAATATGVPDLVVVQHNVSDTNADVRGTAEVLLDADPDVVTLVEVTPRLADAFTEALGESLPHHAVQGTVGVWSRTAVTDAEPVDLRPKGVDSSWDRGLRVRVRVAGLPELRVYAVHLPSVRPGAGGLDVEARDRSLRLLGDVLAADDAEHVVVGGDFNTVLADRAFAPVLDQVAAPAGSFDFTFPAVLPVVRIDHVLSRGVETTRVATLGRTSSDHRPVVADVSLTDPGPT0028440_332DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-VANCOMYCIN_RESISTANCE,PGPT0028440-vanK-K18353NANA
AK018_046482277recG_1ATP-dependent DNA helicase RecGGTGACCTCCCGCTCCGCGGAACCGCTGGCGACCGCGCTGGGCAAGCGCGCCGCAGGGCCGCTGGCGAAGATGGGGCTGGTCACCGTGGACGACCTGCTGCGCCACTACCCGCGGCGCTACGGCGACCCGGGCACGCTGACCGACATGGACCGGCTGCAGCTCGGCGAGCACGTCACCGTCATGGCGCGCGTCGCGAGTGCGACGGTCCGCCCGATGCGCAGCCGCGGCGGCGCGCTGCTGCAGGCGACGGTGACCGACGGGCGTCACGAGCTGGCGCTGACGTTCTTCGCCAAGCGCCCCGGCGCGCTGCGACCCCACGAGGACAAGCTGCGGCCGGGCCGGGCGGGACTCTTCACGGGCGTGGTCTCCGAGTACCGGGGCACCCGCCAGCTCACCCACCCGGACTACGTGCTCGTCGGGGTGGACGCCGACGACGACGAGGCTGCCATGACGGAGGCCTCCCGACCGATCCCCATCTACCCGGCCACCGCCTCCGTGCCCACGTGGCGCATCCAGAAGGCCGTGCGGACCGTCCTGGACCCCCTCACCGAGGACGACGTGCCGGACCCCGTGCCGGACGAGGTGCGGGCGCGCCTGGGCCTGCCGACCCGCCTCGACGCGCTGCGGGCGGTGCACGTACCCGACTCGCCGCACCACTGGCAGACCGGTCGGCGGCGGCTCCGCTTCGAGGAGGCCTTCGTCCTGCAGGCGGCGCTCGCCCAGCGACGCGCCGCCGTCGCCGCGCAGGAGGCGACCGCACGACCGCCACGGGCCGACGCCGACGGCCTCCTCGCGGACTTCGACGCCGCCCTGCCCTTCACCCTGACGGACGGCCAGCGCACGGTAGGGACCGAGATCGCCGCCGAGCTCGCCCGGCCCCGCCCGATGCAGCGCCTGCTCCAGGGCGAGGTCGGGTCGGGCAAGACCGTCGTCGCGCTGCGGGCCATGCTGCAGGTGATCGACGCCGGCGGGCAGGCCGCGCTGCTGGCCCCCACCGAGGTCCTCGCCGCCCAGCACGCCCGGACCCTGCGGGCGGTGCTCGGCCCGCTGGCGCAGGGTGGCCTGCTCGGCGGCGCGGCGCACGGGACCCGCGTGGCGCTCCTGACCGGCTCGCAGAACGCCGCGTCGCGCAAGGAGGCGCTGCTGGACGCCGCGAGCGGCGAGGCGGGCATCGTCGTGGGCACCCACGCCCTCCTGGGCGACCAGGTGCAGTTCGCCGACCTGGGGCTGGTGGTCGTCGACGAGCAGCACCGGTTCGGCGTCGAGCAGCGCGACGCCCTGCGCGCCAAGGCGCGCGTGGCCCCGCACCTGCTGGTCATGACCGCCACGCCGATCCCGCGCACGGTCGCCATGACCGTCTTCGGCGACCTCAGCACCTCGACCCTCACCGAGATCCCCGCCGGCCGGGCCGGCATCACCTCCCACGTCGTGCCGGCCGACAACCCGCGCTGGATGCAGCGCGTCTGGGAGAAGGTGCGCGAGGAGGTCGACGCCGGCCGCCGCGCCTACGTCGTCTGCCCGCGCATCCACCCGGACGACGACGTCGACGTCCCCGGGCGCAGCGGTGCGGCGGCCCGCCGCGCGGCCGAGGCGGGCGAGTTCGACGACGTGCCCGAGTTCCTCGAGCTCGCCGGCCCCGAGGACGGTGCGTCGGACCGCGCTCCGCTGCGCGCGGTCCTGGAGGTCGCCGACATGCTGCGCTCCGAGCCGCGCCTGCACGGCGTGGAGGTCGGGGTGCTGCACGGGCAGATGGCCCCGGGGGACAAGGAGTCCGCGATGGCGCGCTTCGCGAGCGGCGACGTCCCCGTGCTGGTGTCCACCACCGTGGTCGAGGTCGGCGTCGACGTGCCCGAGGCCACCGTGATGGTCGTCTTCGACGCCGACCGGTTCGGGATCTCCCAGCTCCACCAGCTGCGCGGGCGCATCGGCCGCGGCGCGGACGCCGGGCTGTGCCTGCTGGTCTCGACCGCCGGACCGGGCACCCCCGCGGCCACGCGCGTCGAGGCGCTCGCCGCCACCACGGACGGCTTCGAGCTCGCGACCCTGGACCTCGAGCTGCGGTCGGAGGGCGACGTGCTGGGCGCGGCGCAGTCGGGACGCGCCAGCTCGCTGCGGCTCCTGCGCGTGGTCCAGGACGCCGACCTCATCGCCTCGGCGCGGACCGAGTCGAGCGGCGTCGTCGAGGCCGACCCGGATCTCGGGCGGCACCCGGCGCTGGCCGCCGCGATCGCCGCCGAGCTCGACGCCGAGCAGGAGGAGTTCCTCGAGCGGGCGTGAMTSRSAEPLATALGKRAAGPLAKMGLVTVDDLLRHYPRRYGDPGTLTDMDRLQLGEHVTVMARVASATVRPMRSRGGALLQATVTDGRHELALTFFAKRPGALRPHEDKLRPGRAGLFTGVVSEYRGTRQLTHPDYVLVGVDADDDEAAMTEASRPIPIYPATASVPTWRIQKAVRTVLDPLTEDDVPDPVPDEVRARLGLPTRLDALRAVHVPDSPHHWQTGRRRLRFEEAFVLQAALAQRRAAVAAQEATARPPRADADGLLADFDAALPFTLTDGQRTVGTEIAAELARPRPMQRLLQGEVGSGKTVVALRAMLQVIDAGGQAALLAPTEVLAAQHARTLRAVLGPLAQGGLLGGAAHGTRVALLTGSQNAASRKEALLDAASGEAGIVVGTHALLGDQVQFADLGLVVVDEQHRFGVEQRDALRAKARVAPHLLVMTATPIPRTVAMTVFGDLSTSTLTEIPAGRAGITSHVVPADNPRWMQRVWEKVREEVDAGRRAYVVCPRIHPDDDVDVPGRSGAAARRAAEAGEFDDVPEFLELAGPEDGASDRAPLRAVLEVADMLRSEPRLHGVEVGVLHGQMAPGDKESAMARFASGDVPVLVSTTVVEVGVDVPEATVMVVFDADRFGISQLHQLRGRIGRGADAGLCLLVSTAGPGTPAATRVEALAATTDGFELATLDLELRSEGDVLGAAQSGRASSLRLLRVVQDADLIASARTESSGVVEADPDLGRHPALAAAIAAELDAEQEEFLERANANANANANA
AK018_046491734hypothetical proteinGTGGATCAGCCCGAGCTCCTCGACGCCGTCGTGGTGCGCTCCTGGGCGCGCATCGCCGTCGACGCCCTGGCCGCGGCACGCGATCAGCTCGACGGCGTCAACGTCTTCCCGGTGGCCGACGGCGACACGGGGACCAACATGTACCTCACCGTGCGCGAGGCCGCAGCGGCCGTGCACGACGCCGCACCGGACACCGGCGGCGCCCGCCTGCTGCGGATGGCCGCGCGTGCCGCGCTGCTCGGGGCGCGCGGGAACTCCGGCGTCATCCTCAGCGAGTGGTGGCGGGGACTCGCGGTGGCGGCCAGCCGCCGGGACAGCCTCGCCGTCGCCCTGGACGTCGCCGCGCGCTCGGCCCGCCAGGCCGTGGCGCACCCCGCCCCGGGCACGATCCTCACCGCGGCGGACTCCGCGGCCGCCGGCGCCCGGCACGCCGAGGCCGGGGGCATGAGCGGTCCGCTCGGCGCACCGGCGCGCCTGCCCGTGCTCGACGCGGCCCGGCGCGGCGCTCGCGAGGCGGCGCTGCGCAGCGTCGGCAGCCTCGCGCCGCTGCGCGCGGCCGGCGTGCTCGACGCCGGTGCGTGCGGGCTGGTGCTCGTCCTGGCGGCCCTGGCCTCGGCGCAGCGGCACCACTCCGCGGCCGTGTCGGAGGGCACCGGCACGATGGCTCCCGTGCAGCTCGACATGGACCTGCGGGGGTACACGACCACGCTCGAGGCGGCCCCGCCCGGCCCGGCCCACCCCGACGCCCCCGGGGCCCCGGCCCACCCCGACGCCCCGGAGTTCGGCGACGCCGACATCGAGCTGATGTTCGTCCTGCGCCGGGCCGCGGACGCCGGCGAGTTCCGCAGCGGTGCCGTCGCCGACGCCCTGCGCGCCGACCTCGACGACGTCGGCACCTCCGTCGTCGTGGTCGGCGGGGACGCGGGGGAGGCGACCGACGGCGTCGACTCCCTGTGGCAGGCGCACGTGCACGTCGACGACCTGGCTCCCGCCCTGGACGTCCCTCGTCGCTGGGCCCGCCGCGGCGGGGTCTCGCAGGTGTACGTGCGGCACCTGGCGGTCCCGCCCACGGACTGGGCCGTCGTGGTGACGACGTCGGCGCCCGAGCTGGCGACCGAGCTGGCCTCCGGGGGTGCCGTGGTCCTGCTCGACCTCGACACGGCGCCGACCGCCCGCGACGTGGCCCAGACCGTGCTGGCCGCCGGCACCCCCCACGTCCTGGTCCTGGCGCCACCCGCCCTGCTGTCCGCAGTGCCGCCCGCGCTGGACGACCTCGTCGCGCGCGACGTGGGCCGCGGCGGCCCCGGCACCCGGCCCGACCTCGCGCTCGTCCCCGCCCCCGACGACGTGCATCTCGTCAGTGCGGTGTCCGTGCTGGCCGGAGCCCTCGACGCCGCACGGGTCGAGGGGGCGAGCGTGGACGTCCCGGGGATCGTGCGGTCGGCGCACGAGGTGCTGCACGCGGACCGGGTCGCCGCGACCGAGGCCGTCGACGCCCTTTCGAGGCTGGTGGCGCGGGGGGACGGGTCCGTGGGGATCGTCGCGGTCCTGCCCGACGACGACGTCCCCCCGGACGTGCTGGACGCGATCGTCGCGCAGGCGGGACGGTGCGCGCCCGAGGCGGACGTCGTCGTGCTCGGCACGGGCCGTGCCGGCGACCGGGTCGGTCTCGGCGTCGAGCCCGCCGAGGAACCGGCGCCGTCCGCCGTCGGACGGCGCGGGGCGGGCTCGTGAMDQPELLDAVVVRSWARIAVDALAAARDQLDGVNVFPVADGDTGTNMYLTVREAAAAVHDAAPDTGGARLLRMAARAALLGARGNSGVILSEWWRGLAVAASRRDSLAVALDVAARSARQAVAHPAPGTILTAADSAAAGARHAEAGGMSGPLGAPARLPVLDAARRGAREAALRSVGSLAPLRAAGVLDAGACGLVLVLAALASAQRHHSAAVSEGTGTMAPVQLDMDLRGYTTTLEAAPPGPAHPDAPGAPAHPDAPEFGDADIELMFVLRRAADAGEFRSGAVADALRADLDDVGTSVVVVGGDAGEATDGVDSLWQAHVHVDDLAPALDVPRRWARRGGVSQVYVRHLAVPPTDWAVVVTTSAPELATELASGGAVVLLDLDTAPTARDVAQTVLAAGTPHVLVLAPPALLSAVPPALDDLVARDVGRGGPGTRPDLALVPAPDDVHLVSAVSVLAGALDAARVEGASVDVPGIVRSAHEVLHADRVAATEAVDALSRLVARGDGSVGIVAVLPDDDVPPDVLDAIVAQAGRCAPEADVVVLGTGRAGDRVGLGVEPAEEPAPSAVGRRGAGSNANANANANA
AK018_04650192rpmB_2COG022750S ribosomal protein L28GTGGCTGCCAACTGCGACGTCTGCGGCAAGGGCCCGGGCTTCGGGCACAGCATCTCGCACTCCCACATCCGCACCAAGCGCCGCTGGAACCCGAACATCCAGCGCGTGCGTGCCGTCGTTGCGGGCACCCCCAAGCGCGTGAACGTCTGCACCTCGTGCCTTAAGGCCGGCAAGGTCCAGCGCCAGGCCTGAMAANCDVCGKGPGFGHSISHSHIRTKRRWNPNIQRVRAVVAGTPKRVNVCTSCLKAGKVQRQANANANANANA
AK018_04651528hypothetical proteinATGATGGTGGAGACCGATAATGACGTGCTCATCCGTTCGGCCACCACGGCCGACGCCGCTGCCATCGCCCGCGTGCACCTCACCTCGTGGCGAGGCGCCTACGCCCACGTCCTGCCGGCCGACTACCTGGACTCCCTCGACGTCGAAGACCGCACCCGGCAGTGGCAGGAGATCCTCGAGGCGCAGCGCGGATCCACGCTGGTCGCCGAGGCGGACGGTCGGACCCTCGGGTTCGCCAGCTACGGTCCCTCGCGCGACGAGGACGCCGAGAACGGCTGCCTGGAGCTGTACGCCATCTACCTGGACCCGGAGTCGTGGGGCCGCGGGGTCGCGCGCGACCTGATGCGCACGGTCCTGGGTGACGTGCCCCCGCAGGTGCAGATGACCCTGTGGGTCCTGTCCGAGAACGAGCGCGCCCACCACTTCTACCGCCGCCACGGGTTCCAGCCCGACGGGATCGAGCGCATCGAGGAGATCGCCGAGGTGCCGGTGACCGAGGTCCGCTTCGTCCGTGCACCCGAGCGCTGAMMVETDNDVLIRSATTADAAAIARVHLTSWRGAYAHVLPADYLDSLDVEDRTRQWQEILEAQRGSTLVAEADGRTLGFASYGPSRDEDAENGCLELYAIYLDPESWGRGVARDLMRTVLGDVPPQVQMTLWVLSENERAHHFYRRHGFQPDGIERIEEIAEVPVTEVRFVRAPERNANANANANA
AK018_046521035thiL_1COG0611Thiamine-monophosphate kinaseGTGACCGACCCCACCCTGCGCGTGCGCGACCTGGACGAGACCGAGCTCCTGGCACGCATCGTCCCGCTGCTCCCCTCCGGCGAGGGGATCGACGTCGGGCCGGGCGACGACGCCGCCGTGGTGCGGGCCGCGGACGGGCGTTTCGTCGTGACCACCGACGTGCTCGTCGAGCGGCGGCACTTCCGCCGCGAGTGGTCCACCGGGTACGACGTCGGGCACCGCGCCGCCGTGCAGAACCTCGCGGACGTCGCCGCGATGGGCGCCCGGCCGACGTCGATGGTGGTCTCGCTCGTCATGCCCGACGACCTGCCCGTGCAGTGGGTGACGGACTTCGCGCGCGGGCTCGCCGACGCCGCCCCGCCGGCCGTCGTCGTCGGCGGGGACCTGTCCGGCGGGGACGTCGTCATGGTGTCCGTCACCGTGCACGGCGACCTCGAGGGCCGGGATCCCGTGCTGCGCTCGGGAGCCCGGCCGGGCGACGTGCTCGCGCACGCCGGGACGCTCGGGGCCTCCGCCGCCGGGCTCGACCTGCTCACCAGCGGCGCGGCGTCGCCCGACGACGGCGCACCCGGCGTGTCGAACGCCCGCAGCCCGTTCGTGGCAGCCTTCCTGCGACCCGACTCCCCGGTGGCCGCCGGCCCCGCCGCCGCCCGGGCCGGCGCGACCGCCATGCTGGACGTGTCCGACGGCCTGCTGCGTGACGCGGGTCGGCTCGCCCTCGCCAGCGGCACCGACCTCGACCTCTCCGAGGGCGCTCTGATGCTCGACGTCACCGCACTCGTGCCGGCCGCGGTCGAGGTCGCGATGGCCACCGACGACCCCGACGGAGCCGGACGGGCCCGCACCTGGGTGCTGTCCGGTGGTGAGGACCACGGGCTGCTGGCGACGTTCCCCGCCGAGGTGGCCGACCGTGGGCTGCCCGACGGGTTCCGCGTGATCGGCGACGTCAGGACCCCCGGCGCCGCCGGGCCGCGGGTGCTCCTGGACGGTGAGGTGCCCGAGGTCGCGACCGGGTGGGACCACTTCCGTCCCTGAMTDPTLRVRDLDETELLARIVPLLPSGEGIDVGPGDDAAVVRAADGRFVVTTDVLVERRHFRREWSTGYDVGHRAAVQNLADVAAMGARPTSMVVSLVMPDDLPVQWVTDFARGLADAAPPAVVVGGDLSGGDVVMVSVTVHGDLEGRDPVLRSGARPGDVLAHAGTLGASAAGLDLLTSGAASPDDGAPGVSNARSPFVAAFLRPDSPVAAGPAAARAGATAMLDVSDGLLRDAGRLALASGTDLDLSEGALMLDVTALVPAAVEVAMATDDPDGAGRARTWVLSGGEDHGLLATFPAEVADRGLPDGFRVIGDVRTPGAAGPRVLLDGEVPEVATGWDHFRPPGPT0009010_612DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009010-thiL-K00946NANA
AK018_04653492hypothetical proteinGTGCGGGCCGGTTACCGTAGGCGGGTGCTCGTCCGCCGCCTCGCCACGCTGCTCGCCCTGGGGTGTCTCGCCCTGCTCGCGGCCTGCACCCCGACCATCGGTACGGAACCGGCGGCCGACGCCGCGGACCCGGCCTGCGCCCCGGTGATGCTGGCGCTGCCCGACGTCGTCGCGGGCGACCTCGAGCGCACGAAGGTCACCGCGCAGGCGACGGCGGCCTGGGGCGACCGCGGGGCCGCGGTCACGCTGCGGTGCGGCGTCGAGCAGCCGCCGCCCTCCCCGGACTGCCAGCGCTTCGAGTCGCCCAACGGCACCGTGGACTGGGTGGTCGAGGAGAACGACGAGGGGACCTGGCGGTTCACCACCTACGGCCGGGAGCCGGCGATCCAGGTGACGGTCCCGCCGACGGTCACCGAGGGCCACTCGACGTCGTTCATCGTGGACCTGACCTCGGCGATCGACCTGATCCCCGCGACGCGCCAGTGCACGTGAMRAGYRRRVLVRRLATLLALGCLALLAACTPTIGTEPAADAADPACAPVMLALPDVVAGDLERTKVTAQATAAWGDRGAAVTLRCGVEQPPPSPDCQRFESPNGTVDWVVEENDEGTWRFTTYGREPAIQVTVPPTVTEGHSTSFIVDLTSAIDLIPATRQCTNANANANANA
AK018_04654426hypothetical proteinATGGACCCACGTGTCAGCCTGATCACCCTGGTGGTCGCGGACCTGAGCGCCGCGCGACGCTTCTACGTCGACGGGCTCGGTTGGGAGCCGTTGTTCGACGTCCCGGACCAGGTGCTGATGTTCCGCACGGGCGAGCGTCTCGTGCTGTCGTGGTGGGACGAGCGTGCTGCCGCCCGGGAGATCGGGCCGGTCACCCGTGGCGGGACTCCCCCGCTCACGCTGGCGCACAACGTCGGTTCTCCGCGGGCGGTGGACGCCGTCCTGGACGCCGCACGCCGCGCCGGCGCGGACGTCCGGCCCGCCACGGAGCGCGACTGGGGCGGCTACTCGGGCTACTTCACCGACCCGAACGGCTTCTGGTGGGAGGTCGCGCACGCCCCCGGCGAGCTCAGCGAGTTCCTGGTGCCGCCGGGAGGCGGCGCGTGAMDPRVSLITLVVADLSAARRFYVDGLGWEPLFDVPDQVLMFRTGERLVLSWWDERAAAREIGPVTRGGTPPLTLAHNVGSPRAVDAVLDAARRAGADVRPATERDWGGYSGYFTDPNGFWWEVAHAPGELSEFLVPPGGGAPGPT0028555_1289DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-FOSFOMYCIN_RESISTANCE,PGPT0028555-putative_fosB-K07032NANA
AK018_046551137ddl_1COG1181D-alanine--D-alanine ligaseATGTCCGAGACCCAGTCCTCCGCTCCCGCGCGCAAGCCGCGCGTCGCCCTGCTGTTCGGCGGGCGGTCGGGCGAGCACGCCATCTCCGCCGCCACCGCTGCCGGGGTGCTCGGCGCCATCGACCGCGACGCCTACGACGTCGTCCCGATCGGGATCACCCGGGACGGGCGCTGGGTGCTGGCGGCCGACGACGCCGAACGGTGGCGGATCAGCGCCGGGCGACTGCCCGAGGTCACCTCCGACGAGGGCGCCGAGGTGGTCCTGTCCCTGGCGGCCGGTGAGCGCACGCTGCGCACCCTGGAGCCGGGACAGGTGCCGCACGTGCTCGGCGAGGTCGACGTCGTCTTCCCGCTGCTGCACGGCCCGTTCGGCGAGGACGGCACCGTCCAGGGCCTGCTCGAGCTCGCCGACGTGCGGTACGTCGGCGCGGGCGTGCTCGCCTCCGCCGTCGGCATGGACAAGCACTTCATGAAGCTCGTGCTCGCCGGCCACGGCATCCCCGTGGGCCCGTTCGAGGTGATCCGGCCCCGTGACTGGGACGCCGACCCCGAGGCCTGCGTCGCACGCGTCGAGCACCTCGGGCTGCCCGTCTTCGTCAAGCCCGCCCGCGCCGGGTCCTCCCTCGGGATCACCCGCGTCGACGACCTCGCCGACCTGCCGGCCGCCGTCGAGGAGGCCCGCGAGCACGACCCCAAGGTGATCGTGGAGGCCGGCATCGACGGCCGCGAGATCGAGTGCGCCGTGCTCGGTGGCCGCGGTGGCGGGCGTCCCCGGGCCTCGCTGCCCGGCGAGATCGTCGTCGACGGCTCCCACGACTTCTACGACTTCGAGGCCAAGTACCTCGACGAGGCGCACGTCGAGCTGGCGTGCCCCGCCGACCTGCCCGAGCCCGTCGTCAAGGAGATCCGCGAGCTCGCGGTGCGCACCTTCGAGGCGGTCGAGGCCGAGGGGCTGTCTCGCGTCGACGTGTTCGTGACCCCCGAGCAGCAGGTGATCGTCAACGAGATCAACACCATGCCGGGCTTCACGCCGTTCTCGATGTACCCGCGCATGTGGGAGGCCTCCGGGATGAGCTATCCCGCGCTCGTCGACGAACTCATCCAGCTCGCCCTCGAGCGGCCCACGGGACTGCGCTGAMSETQSSAPARKPRVALLFGGRSGEHAISAATAAGVLGAIDRDAYDVVPIGITRDGRWVLAADDAERWRISAGRLPEVTSDEGAEVVLSLAAGERTLRTLEPGQVPHVLGEVDVVFPLLHGPFGEDGTVQGLLELADVRYVGAGVLASAVGMDKHFMKLVLAGHGIPVGPFEVIRPRDWDADPEACVARVEHLGLPVFVKPARAGSSLGITRVDDLADLPAAVEEAREHDPKVIVEAGIDGREIECAVLGGRGGGRPRASLPGEIVVDGSHDFYDFEAKYLDEAHVELACPADLPEPVVKEIRELAVRTFEAVEAEGLSRVDVFVTPEQQVIVNEINTMPGFTPFSMYPRMWEASGMSYPALVDELIQLALERPTGLRPGPT0020050_594DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921NANA
AK018_046561581lcfB_3COG0318Long-chain-fatty-acid--CoA ligaseTTGGTCATCCGCAGCCCCCACGCTGACGTCGACATCCCCGACGTCAGCCTGTACGACTTCCTGTTCGCGCCGCTGTCCGAGGACGACCTGGACGAGGTCGCCGTGGTCGACGGCCCGAGCGGGGCCACCACCACCTACGGCGAGCTGCGCGGGCAGGTCGACGCCATCGCCGGCGCCATCAGCGCCCGCGGCTACGAGGTGGGCGACGTCGTCGCCCTGCACAGCCCGAACGTGCCCGCCTTCGTCAGCGTCTTCCACGGCCTGCTGCGCGCCGGCATCACCGTCACCACGATCAACGCCCTCGCCTCGGGGGCCGAGGTGGGCAAGCAGCTCGCCGCGTCCGGGGCCAAGGGGCTGATCACCGTCTCGCCGCTGCTCGCGCAGGCCGCGGAGGGCGCCGAGGCGGCGGGTCTGCCGCCGGAGGCCGTCGTCGTCATGGACGGCGCCGACGGTTACGCGAACCTGCGCGACCTCCTCACGTCCGGCGCACCCGCACCGGAGGTCTCCTTCGACCCTGCCACCCACCTGGCGGTGCTGCCCTACTCCTCGGGGACCACCGGGTTGCCCAAGGGTGTGATGCTCACGCACCGCAACCTCGTCGCGAACGTGCTGCAGGCCGAGCCGTACATCCCCCTGACGCGCGACGACGTCATCCCTGCCGTGCTGCCGTTCTTCCACATCTACGGCATGACGGTGCTGATGAACGGGGCGATCTACCAGAAGTCGTCCGTCGTCACGATGCCGCGCTTCGACCTGCCCGAGTACCTGCGCATCATCGCCGAGCACCGCGCCACCGTGCTGTTCGTCGCCCCGCCCATCGCGCTGGCGGTCGCCAAGCACCCGCTCGCCCTCGAGGCGGACCTGTCCAGCGTGCGGCTGATGATGTCGGGCGCCGCGCCCTTCGACGAGCAGCTCGCTGCGGCCGTCTCCCAGCGGCTGCCGCACGCTAGCGTCACGCAGGGCTACGGGATGAGCGAGATGTCGCCCGTCTCGCACACCATCCCCGTGGGCCGCGACGACATCTCGCCCGGATCCATCGGGCTCCTCATCCCGAACATGCAGGCCAAGATCGTCGATCCGGCCACGGGGGAGGAGATCGAGCAGCCCGGCGAGGGGATGAGCGCGCCCGGTGAGCTGATGTGCGCCGGGCCGAACATTATGGCCGGCTACCTCGGCAACGAGGCGGAGACCCGGGACACCATCACGGCCGACGGATTCCTGCACACCGGGGACATCGTCACCGTCGACGCCGACGGCGCGTTCTACGTCGTCGACCGGCTCAAGGAGCTCATCAAGTACAAGGGCTACCAGGTGCCACCCGCCGAGCTGGAGGCGCTGCTGATCGCCCACCCGCAGATCGCCGACGCCGCCGTCATCGGGGTGGTCGACGACGAGGGCGAGGAGATCCCCAAGGCGTTCGTCGTCGCCGCCGACGGCGCCGAGCTCAGCGCGGACGACGTCATGGAGTACGTGGCCGCCAAGGTCGCCCCGTACAAGAAGGTCCGTGCTGTGCAGTTCACGCACGCTATCCCGAAGTCCGCGGCGGGCAAGATCCTGCGCAAGGAGCTGCGGGCGGCGTGAMVIRSPHADVDIPDVSLYDFLFAPLSEDDLDEVAVVDGPSGATTTYGELRGQVDAIAGAISARGYEVGDVVALHSPNVPAFVSVFHGLLRAGITVTTINALASGAEVGKQLAASGAKGLITVSPLLAQAAEGAEAAGLPPEAVVVMDGADGYANLRDLLTSGAPAPEVSFDPATHLAVLPYSSGTTGLPKGVMLTHRNLVANVLQAEPYIPLTRDDVIPAVLPFFHIYGMTVLMNGAIYQKSSVVTMPRFDLPEYLRIIAEHRATVLFVAPPIALAVAKHPLALEADLSSVRLMMSGAAPFDEQLAAAVSQRLPHASVTQGYGMSEMSPVSHTIPVGRDDISPGSIGLLIPNMQAKIVDPATGEEIEQPGEGMSAPGELMCAGPNIMAGYLGNEAETRDTITADGFLHTGDIVTVDADGAFYVVDRLKELIKYKGYQVPPAELEALLIAHPQIADAAVIGVVDDEGEEIPKAFVVAADGAELSADDVMEYVAAKVAPYKKVRAVQFTHAIPKSAAGKILRKELRAANANANANANA
AK018_046571152ydbM_1Putative acyl-CoA dehydrogenase YdbMATGACGACGCTGCTCTCCGCCGACCTGCTCGCCACGATCCGCGGCCGCGCCGGCATCCACGACCGGGAGAACTCGTACTTCACCGACGATCTCGCCGACCTGCGCGACGCCGGATACCTCGGCGCGCTCGTCCCGATGTCGATGGGCGGCGCGGGACTGACCCTGCGCGAGGTGTGCCACGACCAGGCGGCGCTCGCCGGTGCCGCACCCGCCACCGCGCTGGCCGTCAACATGCATCACGTGTGGACCGGCGTCGCGCGCTACCTGCACGAGCGCGGCGACGACACGCTCGACTGGCTGCTCGCGGAGGCAGCCGCCGGCGAGATGTTCGGGTTCGGCTACTCCGAGGCGGGCAACGACCTGGTGCTGCTCGGCTCGCGCACCGAGGCCCGACCCGACGGCGAGGGCGGCTACACGTTCCACGGCCGCAAGATCTTCACGTCCAACTCCCCCGGCTGGACGCGCCTCGGCGTCATGGGACTGGACTCGACCACCGACCCCGACGACCCGCGCATCGTGCACGCGTTCGTCACCCGCGACGGCGGCGGCTACCAGATCCTCGACGACTGGGACACGATCGGCATGCGCGCCTCGCAGTCGTGCACCACGCTGCTCGACGGCGCGCACGCGCCCGCGTCGCGCGTCATGCGACGCATCGCGCCCGGACCCAGCCTCGACCCTTACGTCCTCGGCATCTTCACGAGCTTCGAGATCCTGCTGGCCTCCGTGTACGCGGGCATCGCCGACCGTGCCCTGGCACTCGCCGTGGAGACCGTGGGACGGCGCACCTCGATGAAGACCGGCAAGGCGTACTCCCAGGACCCGGACATCCGGTGGCGGATCGCCACGGCGGCGCTCGCGCAGGACGGGATCTGGCCCCAGATCGACCAGATTGCCGGTGGGATCGACGCCCGCGAGGACCGCGGCGCCGGCTGGTTCCGCGCGACGTCGGGCCTCAAGGTCCGCGCCACCGAGACGGCCCGCCAGGTGGTCGACGAGGCGATCCGCTGCTCGGGCGGGTCGACGTACTTCAACCGCTCCGAGCTGGGCCGGCTGTACCGGGACGTGCTGGCCGGGATCTTCCATCCGAGCGACGACGAGTCCGCGCACTCGCAGGTGGCGCAGTCGCTCCTCGGTCCCTTGGAGGACTGAMTTLLSADLLATIRGRAGIHDRENSYFTDDLADLRDAGYLGALVPMSMGGAGLTLREVCHDQAALAGAAPATALAVNMHHVWTGVARYLHERGDDTLDWLLAEAAAGEMFGFGYSEAGNDLVLLGSRTEARPDGEGGYTFHGRKIFTSNSPGWTRLGVMGLDSTTDPDDPRIVHAFVTRDGGGYQILDDWDTIGMRASQSCTTLLDGAHAPASRVMRRIAPGPSLDPYVLGIFTSFEILLASVYAGIADRALALAVETVGRRTSMKTGKAYSQDPDIRWRIATAALAQDGIWPQIDQIAGGIDAREDRGAGWFRATSGLKVRATETARQVVDEAIRCSGGSTYFNRSELGRLYRDVLAGIFHPSDDESAHSQVAQSLLGPLEDNANANANANA
AK018_04658684tetR_3Tetracycline repressor protein class B from transposon Tn10ATGGTGTCGAACGGGCTCAGTCGCGGCCGGGTGCTCGAGGCCGGCGTGGCGCTCGCGGACGAGCAGGGCCTGGCGGCGGTGACCATGCGAGGAGTGGCGGCACGCCTCGGTGTCGAGGCCATGTCGCTCTACCATCACCTGCCCGGCAAGAAGGACGAGCTGCTCGACGGCCTCGTCGACGTCGTCGCCGCCCAGATCCACGCCGGGCTGGACGATCGGCCCGACGGCGACGACTGGCGGTTCGACGTGCGGAGTCGCTGTCTCGTGGCCCGCGACGTCGTCCTGGGTCACCCCTGGCTCCCCGGGCTGCTCGGCAGCCGGGCGCAGATCCGACCCGGGATCTACCAGCTCTACGACGGCGTGCTCGGCGCGATGGTCCGGGGCGGGTGCACCTACCGCCTCGCCCACCGCGCCATGCATGCCCTCGGCAGCATGGTGCTCGGGTTCACGCCCGAGCTGTTCAGCCCCGAGGCCGGCGACGAGGACGCCTCCGCCGATGCCCTCGAGGCCATGGCACGCACGTTGCCGCACATCACGGCCATGGTCGCCGCCGAGCTGCACGACCCCGCCGACCCGACGCTCGGCTGGTGCGATAGCCAGACCGAGTTCGAGTTCACCCTCGACCTGCTGCTCGACGGGCTCGAGCGGCGGCGGCTGGCCGAGGATGCCTCCCTGCGTCCCTGAMVSNGLSRGRVLEAGVALADEQGLAAVTMRGVAARLGVEAMSLYHHLPGKKDELLDGLVDVVAAQIHAGLDDRPDGDDWRFDVRSRCLVARDVVLGHPWLPGLLGSRAQIRPGIYQLYDGVLGAMVRGGCTYRLAHRAMHALGSMVLGFTPELFSPEAGDEDASADALEAMARTLPHITAMVAAELHDPADPTLGWCDSQTEFEFTLDLLLDGLERRRLAEDASLRPNANANANANA
AK018_04659693hypothetical proteinATGATGGACCAACGCATCGCACGCCCGGTCGCCCGCACCACCGGCCTGCTGTACCTGGCACTGGGGATCACCGGCATGGCCGGTTTCCTGCTCGTCCGCCCGCAGCTCTTCGACCCGACGGACGCCGCGGCCACCGCAGCCCAGCTCGTCGACCACGAGGTGCTGGCACGCGTCGGCATCGCCCTGGAGCTCGCCGTCGTGGTGAGCCAGGCTCTGGCGGCCCTGTGGTTCGTGCGGCTCTTCCGCCCGGTGGACCCATTCTCGGCGACCGCGGTCGGCGCCCTGGGCATGATGAACGCCGTCGCGATCCTCGGCAGCACGGCAGTGCTCGGCACCGCGCTCGACCGCGCCCTGGCCGGCGACACCGCCACCCCGCAGCTGATGTACGAGCTCTCGGACAGCTTCTGGGGCGCCGGCTCCGCCTTCTTCGGCCTGTGGCTGATCCCGATGGGTCTGCTCGCCCTGCGCGCGGGCATGCCCCGCGCGCTCGGGTGGTTCCTCCTGGTCGGCGGCGCCGGGTACCTGCTGCAGACCTTCGTCGTCGTCATGGCCCCCGACGCAGGCGTGCTCGCCGAGCTCCTCGTGCTGCCCGCCACCGTCGGCGAGCTGTGGATGATCGGGCTGCTCCTCTGGGTCGGCCTCCGCCCCGGCCGCGCGAGCGACGTCGTCGCGGCGGGGTCCGTCCGCGCCTGAMMDQRIARPVARTTGLLYLALGITGMAGFLLVRPQLFDPTDAAATAAQLVDHEVLARVGIALELAVVVSQALAALWFVRLFRPVDPFSATAVGALGMMNAVAILGSTAVLGTALDRALAGDTATPQLMYELSDSFWGAGSAFFGLWLIPMGLLALRAGMPRALGWFLLVGGAGYLLQTFVVVMAPDAGVLAELLVLPATVGELWMIGLLLWVGLRPGRASDVVAAGSVRANANANANANA
AK018_046601395yagG_1COG2211Putative glycoside/cation symporter YagGATGAGTCTGAGCAGGGGCACCGTCGCCCGCTACGCCGTCGGCTCGGTCGGCACGGGCGGGTTCGGCACCCTGCCCGGCCTGGTGCTGGTCTACTACCTCACCGACACCCTCGGCGTCGCGGCCCTGGCGGCCGGCGCGATCGTCACCCTGGCGAAGGTGTGGGACGTGATCGTGGACCCGCTGATCGGCGCCGCCAGCGACCGCGAGCGCGCCCGCCGCGGGTCGCGCCGCCGCCTCATGGTGGCCGGTGGCGTGCTGCTGCCGGTGTTCTTCCTGCTGACGTTCGCCGTCCCGCCGTCGTTCGGGTCCGCGGCCGGGGCCGCCTGGGTCCTGGTCGCCTTCCTCTGCGCGGCGACGGCGTTCAGCCTGTTCCAGGTCCCCTACATCGCCCTGCCGGCCGAGCTGACGCCCGGCTACGACGAACGCACCCGGCTCCTGACGGCCCGCGTCGTGGTCCTGACCGTGTCGATCCTCGCCTTCGGCGGGGGCGCGCCCGCCCTGCGCGGCGCGGTCCCGGACGAGCACGCCGGGTACCTCCTCATGGCCGCGGTCGCCGGGCTCGTCCTCGGCGCCTCGCTGCTGGTCGCCGCCGGCGTCGAGGCACGACGCCGCGGCGCGCGTCACGGTGCCCCGGCCGGGTCGGGCCGGGCACCGGCGGGCCCCACGCCGACCGCCGGCCAGCACTACCGCGCCGGGATCGACGCGCTGCGCACCAGCCCGGCGTTCCGCGCGCTGCTGGGCACGTTCGTCCTGCAGGCCCTGGCCACCGGGACCATGCTGGCCGGCGCGCAGTACGTGGCCACCTGGGTGCTCGGCGACGAGGGCGCCGTCACCTTCCTGTTCGCCGCGCTGGTCGGCCCCGCGGTCGTCTTCGCCCCGCTGTGGGGCCGCCTGGCCCGCCGCATCGGCAAGGAGCGGTCGTTCGCGCTCGCCTCCTGCCTGTTCGCCCTGGCGGCCGCGGCCCTGGTGGCGATGTACTGGGCGCCCGGTGCGTGGGTCTACGTCGTCGTCGGAGTCGCCGGCGCCGCCTACGCGGGCCTGCAGTCCCTGCCCATGGCGATGCTGCCCGACGTCGTCACCGACGACGCGGTGCGCCGCGGTCCGGGGCGGGCGGGCACGTTCTCCGGGATGTGGACCGCCGGCGAGACCACCGGTTTCGGGCTCGGCACCGCCGTGCTGGCCGGCGTGCTGGCCGCCACCGGGTACCTGGAGTCGCGCGCCGACGTCGTCGTCGTCCAGCCCGAGGCGGCGGTGCTCGGCATCACGCTGGCCTTCTCGGTGCTGCCTGCCGCCCTCGTCGCCGTCAGCCTGGCAACCCTGCGCCGCTACCCGCTGCGCCGGACCGACATCGACGCGGCACCGTCCGCCACCGAGCCCGAGGAGCACCCCGCATGAMSLSRGTVARYAVGSVGTGGFGTLPGLVLVYYLTDTLGVAALAAGAIVTLAKVWDVIVDPLIGAASDRERARRGSRRRLMVAGGVLLPVFFLLTFAVPPSFGSAAGAAWVLVAFLCAATAFSLFQVPYIALPAELTPGYDERTRLLTARVVVLTVSILAFGGGAPALRGAVPDEHAGYLLMAAVAGLVLGASLLVAAGVEARRRGARHGAPAGSGRAPAGPTPTAGQHYRAGIDALRTSPAFRALLGTFVLQALATGTMLAGAQYVATWVLGDEGAVTFLFAALVGPAVVFAPLWGRLARRIGKERSFALASCLFALAAAALVAMYWAPGAWVYVVVGVAGAAYAGLQSLPMAMLPDVVTDDAVRRGPGRAGTFSGMWTAGETTGFGLGTAVLAGVLAATGYLESRADVVVVQPEAAVLGITLAFSVLPAALVAVSLATLRRYPLRRTDIDAAPSATEPEEHPAPGPT0014410_2229DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-CAPSULAR_COLANIC_ACID_BIOSYNTHESIS,PGPT0014410-TC_GPH|yihO|xynP-K03292NANA
AK018_046611518hypothetical proteinATGAAGCTGACCACCCCGCCCGACGTCGTCCTGGACCGGCTCGACGCCCTGCGCGCCCAGGACGCGCCCACCCACGGCGGGCACGTGCTCAGCTACGTCTACGACTCCGGCGAACCGGAGCTCGACGAGCTGGCGGCCGCCGCGGTCCGCGCCATGCAGCCCGTCAACGGGCTGGACCCCACCACGTTCGGCTCCGTCGCCGCGCTGGAACGCGACCTGGTGGCCTTCACCCGCGACCTGCTGGGCGGGGACGGCACGGTGGTCGGCACCGTGACCTCCGGGGGCACCGAGAGCTGCCTGCTCGCCGTCAAGACGGCCCGCGACGCCTGGCTCGCCGCCCGCGGCCTCGCGCCGGGCATTGCGCGACCCCGACTGGTCCTGCCGACCACCGCGCACGCGGCCTTCCAGAAGGCGGCGCACTACTTCGGCCTCGCGCTCGCCCCGGGCCCCGTCGGCCGGGCCGGCGCCGTCGCGGCCGACGACCTGGTCGCACGGCTCGGCGACGACGTCGCGCTCGCCGTCGTCTCCGCGCCGGCGTACCCGCACGCCGCGCTCGACCCCGTCGCGGACGTCGCCTCGGCCGCCGCCGCGCACGGCGTGCCCGTGCACGTGGACGCCTGCATCGGCGGCATGGCCCTGCCGTTCTGGCCCGACCTGCCCGCCTGGGACCTGCGCGTCCCCGGCGTGACCAGCCTCAGCGTCGACCTGCACAAGTACGGGTACGCCCCCAAGGGCGTCTCGGTGCTGCTGCAGCGAGGTCGCGACCGACAGCGCGGCCAGTACTTCGCCACCACCCGCTGGCCCGGGTACCCGGTCGTCAACCCGACCCTGCTCGGTTCCCGCTCCGGCGGCCCGCTCGCCGCCGCCTGGGCCATCACGCAGGCGCTGGGCCGCGACGGGTTCGCCGAGCTCTCCGGACGGGCCCGCCGCGCCACCCTCGCGCTGCGGCAGGCCGTCGAGGAGATCGACGGCCTGCGCGTCGTGGGCGACCCCGTCGGCCCGCTGCTGGCCGTGGCGACCGACGACGACGTCGCCCCGCACCGTCGGGTGGACCCGCACCGGTGGGCGGACGCGACGACCGCCCACGGCTGGGTGCTGCAGGCCCAGCCCGCCTTCGCCCAGGCCGACGGCACCACCCTGCCCCACACCACCCACCTGACCGTCACCCCCGTGACCGAGCAGGTGCTCGACGAACTCGTGCCCGCCCTGCGGACCGCCGCCGACACCGTGCGCGGCGAGCCCCGGCCCGACGCCGCCGCGCTGCTCGACCCGGCGTCGCTCACCGGGCTCACGGGGCTCACGGAACCGTCGGGTGCACCCGACGGGGCGCCGATCGACAGCGACACCGCCGCAGGGCTGCTCGCGGCGATCGGCCTCGACGCCTCGCGGATCGGCGAGGACGGGCCGGGCGTCGGGGCGATGGCGCCGCTGCTCGCAGCCGTGGAGGCCCTGCCGGCACCCGTCGCCGAACGACTGCTGGTCGAGCTCCTGGCACGGCTGGTCGAACCGCGCCCGTAGMKLTTPPDVVLDRLDALRAQDAPTHGGHVLSYVYDSGEPELDELAAAAVRAMQPVNGLDPTTFGSVAALERDLVAFTRDLLGGDGTVVGTVTSGGTESCLLAVKTARDAWLAARGLAPGIARPRLVLPTTAHAAFQKAAHYFGLALAPGPVGRAGAVAADDLVARLGDDVALAVVSAPAYPHAALDPVADVASAAAAHGVPVHVDACIGGMALPFWPDLPAWDLRVPGVTSLSVDLHKYGYAPKGVSVLLQRGRDRQRGQYFATTRWPGYPVVNPTLLGSRSGGPLAAAWAITQALGRDGFAELSGRARRATLALRQAVEEIDGLRVVGDPVGPLLAVATDDDVAPHRRVDPHRWADATTAHGWVLQAQPAFAQADGTTLPHTTHLTVTPVTEQVLDELVPALRTAADTVRGEPRPDAAALLDPASLTGLTGLTEPSGAPDGAPIDSDTAAGLLAAIGLDASRIGEDGPGVGAMAPLLAAVEALPAPVAERLLVELLARLVEPRPNANANANANA
AK018_046621146metB_1COG0626Cystathionine gamma-synthaseATGCAGCAGCCAGACCCGACGCCCCGCCCCGCCCTGCACCCGGACACCGTCGCCGTCACCGCCGGACGACCGCCGCGGGTCCAGGGCGGGCCGGTCAACCCGCCCGTCGTCCTCAGCTCCACCTACGTGTCCCAGGGGACACCCGGCGACGAGCTGCTGTACGCCCGGGCCGGCAACGAGACCTGGGTGCCCTTCGAGGAGACCCTGGCGGCGCTGGAGCACGGGACGCACGCAGTGGTGCTGGGCTCCGGCATGGCCGCGATCGCCGCGGCCCTCGGCGACGTACCCCCCGGCGGGACCGTCGTCGTGCCCCGGCACGCGTACCAGGTCTCGCTCGGGTACCTGGACGACCTCGCCCGCCGGCACGACGTCGAGGTGCGGCGCGTGGACGTGGCCGACACCGACGCCGTCCTCGCCGCCCTGGACGGCGCCGACCTGCTGCTCGCCGAGTCCCCCACCAACCCGATGCTCGAGGTGGCCGACCTGCCCGCGATCCTCACCGCCGCCCGCGAGCGCGGTGTGACGTCCGTGGTGGACAACACCTTCGCCACGCCGCTCGGGCAGCGCCCCCTCGAGCTGGGCGCCGACGTCGTCGTGCACTCGGTGACCAAGTACCTGGCCGGGCACTCCGACGTCGTGCTCGGTGCCGTGGTGACGTCCGACGACGCGATCGCGGACCGGATCCGGGCCTACCGGACCCTGCACGGCGCGATCGCCGGCCCCCTGGAGGTCTACCTGGCGCTGCGGGGCCTGCGCACGCTGCACCTGCGTGTCGAGCGGGCCGCGGCCAACGCGGCGGAGCTCGCACGGCGCCTGGACGCCCACCCGGCCGTGGCCGAGGTGCGCCACCCCTCCCTGCCCAACGACCCGGGCCACCGGCGGGCGGCGGCGCAGATGGCGCACTTCGGCGCGATCGTCGGGGTGCGGCCCGTGGGTGGTCCGGCCGCGGCCGACGCCGTGGTGGCCGCCGTGCGGCTCTGGCTGCCGGCGACCTCCCTGGGCGGCGTCGAGTCCATGCTGGAGCGACGGCGCCGCTTCGCCACGGAGTCACCCACGGTGCCGGAGGACCTGCTGCGACTGTCCGTGGGCGTGGAGGACGTCGAGGACCTGTGGGCCGACCTGGCCGCCGCCCTGGACGCGGCATAGMQQPDPTPRPALHPDTVAVTAGRPPRVQGGPVNPPVVLSSTYVSQGTPGDELLYARAGNETWVPFEETLAALEHGTHAVVLGSGMAAIAAALGDVPPGGTVVVPRHAYQVSLGYLDDLARRHDVEVRRVDVADTDAVLAALDGADLLLAESPTNPMLEVADLPAILTAARERGVTSVVDNTFATPLGQRPLELGADVVVHSVTKYLAGHSDVVLGAVVTSDDAIADRIRAYRTLHGAIAGPLEVYLALRGLRTLHLRVERAAANAAELARRLDAHPAVAEVRHPSLPNDPGHRRAAAQMAHFGAIVGVRPVGGPAAADAVVAAVRLWLPATSLGGVESMLERRRRFATESPTVPEDLLRLSVGVEDVEDLWADLAAALDAAPGPT0001980_672DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001980-metB|met|cysA-K01758NANA
AK018_04663696hypothetical proteinATGCGCACCCAGCCCCGCCGTCGGACCGCGACCGCCGCGGCCGCCCTGGCCACCGTGCTCCTCGTCGGGGCGTGCGGGGACGCCGACCTGCCCGGCTACGGCGGCGGCACCGGTGACGACGACGCGACGGCGGGCGAGACCGCGGCCTCCGAGCCCGCAGAGCCGACGGAGCCCACGGAGCCCACCGACGAGGGCTCGGGCGACGGAGCCGCCACGAGCGAGCCGGCCTCCCCGAGCCCCGGCGACGAACCGGAGGAGCCGTTCGAGGGCGGCACCGGGCAGGCCACCGCGGAACCCGGCGGGAGCGCGATGCTCACCGTCACCGACGTGCGGGTGGGGGCCCACGACGGCTACGACCGGGTCGTCTTCGACCTGGACGGCGAGGGAACCCCGGGGTGGCGCGTCGAGTACGTCGACGAGGCGCTCGACGACGGCAGCGGGAACCCGGTCGAGGTCGACGGCGACGCCGTCCTGCAGGTCGCGATCACGGGGACGGCGATGCCGATGGACTCGGGGGTCACCGAGTACTCCGGCGACCCGGTCGATGGTCCGGGCACGTCGGTGGACCAGGTGGTCTACCGCTTCGTGTTCGAGGGGATCACGACGGCGTTCGTGGGTGTCGACGGCGAGCCGCGACCGTTCCGCGTGTTCGCGCTCGAGGACCCGGCCCGCGTCGTGGTCGACGTCGGGCACTGAMRTQPRRRTATAAAALATVLLVGACGDADLPGYGGGTGDDDATAGETAASEPAEPTEPTEPTDEGSGDGAATSEPASPSPGDEPEEPFEGGTGQATAEPGGSAMLTVTDVRVGAHDGYDRVVFDLDGEGTPGWRVEYVDEALDDGSGNPVEVDGDAVLQVAITGTAMPMDSGVTEYSGDPVDGPGTSVDQVVYRFVFEGITTAFVGVDGEPRPFRVFALEDPARVVVDVGHNANANANANA
AK018_046641008gpsA_1COG0240Glycerol-3-phosphate dehydrogenase [NAD(P)+]GTGAGCGGGCTGCGCGCGGCCGTCCTCGGGTCCGGCTCCTGGGGGACGACCTTCGCCGCGGTGATGGCCGACGCCGGCTGCGACGTGACGCTGTGGGGTCGCGCCGAGTCCGTCGTGCGCGACGTCGCCGAGAAACGCCGCAACAGCAAGTACCTGCCCGACGTCGTGCTGCCCGAGATGGCGGCGACCACGGACGCGGCGGACGCCCTCACCGGCGCGCGCGTCGTCGTCGTCGCCATCCCGTCCCAGGTGGCTCGCGGGACCCTCGAGGCGCTGCGCCCGCACCTGGAGCCGGACGCCGTCGTCGTCTCGCTCATGAAGGGCGTCGAGCTGAGCACCGACAAGCGGATGAGCCAGGTCGTGGCCGAGGCCCTGCAGATCTCGGAAGGCCGGGTCGCTGTCGTGTCCGGGCCCAACCTCGCCAAGGAGATCGCCGAGCGTCAGCCCACCGCGACCGTCGTGGCGTGCTCCGACGAGGCGAACGCCCGGCTGGTCGCCGACGCCTGTTCGAACACCTACTTCCGCCCGTACACCAACAGCGACGTCGTCGGGGTCGAGCTGTGCGGTGCGGTGAAGAACGTCATCGCGCTCGCGGTGGGCATGGCCCACGGGCGCGGCTTCGGGTGGAACACCACCGCGACGGTGATCACCCGCGGGCTGGTGGAGATCACCCGGCTGGGCCGCGCCCTCGGGGCGGACGCCGAGACGTTCGCGGGGCTCGCCGGGATGGGCGACCTGGTCGCGACGTGCGCCTCCCCGCTGTCCCGCAACCACACGCTGGGCAAGCACGTCGGGCAGGGCATGACCCTGGACGAGGCGCTCGAGGCGACCGGCACCACGGCCGAGGGCGTCAAGTCGTCCCGGTCGGTGCTGGAGCTGGCCGAGAAGCACGGCGTCGACATGCCGATCACGGCCGGGGTGGTCGCCGTCCTGCACGGCAACCTCTCGGTGGAGGACATGGCCCGTGCGCTGCTCGCCCGCCCGCAGAAGGCGGAGAGCACGTCCTGAMSGLRAAVLGSGSWGTTFAAVMADAGCDVTLWGRAESVVRDVAEKRRNSKYLPDVVLPEMAATTDAADALTGARVVVVAIPSQVARGTLEALRPHLEPDAVVVSLMKGVELSTDKRMSQVVAEALQISEGRVAVVSGPNLAKEIAERQPTATVVACSDEANARLVADACSNTYFRPYTNSDVVGVELCGAVKNVIALAVGMAHGRGFGWNTTATVITRGLVEITRLGRALGADAETFAGLAGMGDLVATCASPLSRNHTLGKHVGQGMTLDEALEATGTTAEGVKSSRSVLELAEKHGVDMPITAGVVAVLHGNLSVEDMARALLARPQKAESTSPGPT0024330_2328DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057NANA
AK018_04665756plsC_1COG02041-acyl-sn-glycerol-3-phosphate acyltransferaseGTGCCCATCGCCAGACCGGAGTCGCGGCTGTACCGCCTGATCGCGAAGATCGTCCGCCCCCTGATGTTCTCGATGTGCCGCTACGAGTGGAGCGGCGCCGAGAACCTGCCCGCCCAGGGCGGCTTCATCGCCGCGGCCAACCACGCCACGGAGATGGACGCCCTGACGTTCGTGCACTACCTGTTCGACCAGGGGTACGAGCCCCGCGTCCTGGCCAAGCGCAGCCTCTTCGACGCACCCGTCGTGGGCACGGTCCTGCGCGGCACGAAGATGATCCCCGTCGACCGGGGCGGAGCCGCGGCCGCGGCCTCCCTGGAGCGGGCCGGGCGGGAGCTCGGCGACGGGGCCTGCGTGGCGATCTTCCCCGAGGGCACCCTGACGCGGGACCCCGACCTGTGGCCGATGGAGCCCAAGACCGGTCTGGCGCGCGTGGCCCTCGCCAGCCGCCTGCCGGTGGTGCCCGTCGCCCAGTGGGGCGTCACCGACCTGCTGCCCCGCTACGGCAAGCTGCCCCGGCCCTGGCCGCGCAAGCGGATCCGGGTGCACGCGGGCGCGCCGGTCGACCTGTCCGACCTGTACGACCGACCGATCGACTCGACCACGCTGCGGGAGGCGATGGACCGCGTGATGGACGCCCTGACGCGAGAGGTGGCGGCGCTGCGCGGCGAGGAGCCGCCCGCGCACCGCTTCGACCTGCGCAAGCACCCGGAGTACGAGGCGAGACGGCGGGAGTACCCCCCGGTGGAGCGACCGTGAMPIARPESRLYRLIAKIVRPLMFSMCRYEWSGAENLPAQGGFIAAANHATEMDALTFVHYLFDQGYEPRVLAKRSLFDAPVVGTVLRGTKMIPVDRGGAAAAASLERAGRELGDGACVAIFPEGTLTRDPDLWPMEPKTGLARVALASRLPVVPVAQWGVTDLLPRYGKLPRPWPRKRIRVHAGAPVDLSDLYDRPIDSTTLREAMDRVMDALTREVAALRGEEPPAHRFDLRKHPEYEARRREYPPVERPPGPT0024330_4DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057NANA
AK018_04666705hypothetical proteinATGTCCGTCCGACGACCGGCCGTCGTCCTCGCCGCCGGGCTGCTGCTCGGCGGCGGGGCGGCGGTCGCCGTCGGGCTCGGTTCCGACGGTCCCGCGCCCGCGCCAGCACCGGTGGCGGAGTCGACGGTGGCGCCCCAAGGAGTTTCGGCACCGACCGCGGACCCGAGCGCGCCGCCCGAGCCTGCGGAGCCGAGCCCGACAGCGACGCCGAGCCCGACGGCGGAACCCGAGCCGGAGGCCGCCACCGAGGCCGAGGCCGTGGCCCCGCCGCAGCGGGTCCGCATCCCCGCCATCGACGTCGACTCGCGGCTGCTCCACCTGGGGCTGAACGACGACGGCACGATCGAGGTGCCTGCCGGGAAGGACATCGACCGGGCCGCCTGGTTCGACGGTTCGCCCCGGCCCGGGCAGGACGGTCCGGCCGTCGTCGAGGGCCACGTCGACAGCCCGAACGGCGCCTCGGTGTTCTACCGGCTGTCCGAGCTGGAACCTGGGCAGGAGGTGCACGTCGACCGGCGCGACGGCACGACCGTGACGTTCGTCGTCGACCGCGTCGAGCAGTACGCCAAGGACGAGTTCCCCACCCGGCAGGTCTATGCCAACACCGACGGACCCGAGCTGCGGGTCATCACGTGCGGTGGCGCCTGGGACGCGAGCGTCGGGCACTACGAGGACAACACGGTCGTGTACGCGCACGCGGCGTGAMSVRRPAVVLAAGLLLGGGAAVAVGLGSDGPAPAPAPVAESTVAPQGVSAPTADPSAPPEPAEPSPTATPSPTAEPEPEAATEAEAVAPPQRVRIPAIDVDSRLLHLGLNDDGTIEVPAGKDIDRAAWFDGSPRPGQDGPAVVEGHVDSPNGASVFYRLSELEPGQEVHVDRRDGTTVTFVVDRVEQYAKDEFPTRQVYANTDGPELRVITCGGAWDASVGHYEDNTVVYAHAANANANANANA
AK018_04667789hypothetical proteinATGAAGGCACGTACCCGCGCCGCGCTCGTCGCACCCGCGCTGTCCCTCGCCGGCCTGCTGGCCGTCACGGGATCCGCGTCCGCCGCCGAGGGCACCGCCTCGGGCGACCTGACCCCGGTCCCGCTGAACGGTGTCGACGGCAGCGGCGACGCGATGGTCTGGGTGGACGGGACCACCCTCACCGTCGAGTTCGCCGCGTCCGGCCTCCTGGCCGGCAGCCCGCACGCCGCACACCTGCACTACGGCGAGGACGCCGCGAACCAGTGCCCGACCGAGGCGGACGACGCCGACGGCTCGGGCACCATCACCACGACCGAGGGCGTGCCGTCCTACGGGTCGGTCCAGGTGTCGCTGACCACCGAGGGCGACACCTCGGGCGACTCGGCCCTGGCCGTGGACCGCTTCGACACCGCCGAGGGTGGCAACATCGACTACCAGCGCGGCGAGATCGAGGTCTCCCAGGACCTGGCCGACGACATCCTCGCCGGCGACGTCGCGCTCGTCGTGCACGGCGTCGACTACGACGGCAGCGGCGCCTACGACGGCGACACCGAGTCCGACCTGGACCCGTCGCTGCCTGCCGAGGCCACGGACCCGGCCCTGTGCGGCATCCTGAGCGCCGGGCAGATGGACGAGATGCCTGCGGGCGGCGTCCAGACCGGTACCGGCAGCACCGCCGGGACGGAGAACGCCGGGCTGATCGCCGGTGGCGGTGTCGCGCTGCTCGCCGGTGGCGGGCTCGCCGCAGGCCTGGTCGCCCGTCGTCGCCGCGCCGACCAGGAGTCCTGAMKARTRAALVAPALSLAGLLAVTGSASAAEGTASGDLTPVPLNGVDGSGDAMVWVDGTTLTVEFAASGLLAGSPHAAHLHYGEDAANQCPTEADDADGSGTITTTEGVPSYGSVQVSLTTEGDTSGDSALAVDRFDTAEGGNIDYQRGEIEVSQDLADDILAGDVALVVHGVDYDGSGAYDGDTESDLDPSLPAEATDPALCGILSAGQMDEMPAGGVQTGTGSTAGTENAGLIAGGGVALLAGGGLAAGLVARRRRADQESNANANANANA
AK018_046681317murAA_1COG0766UDP-N-acetylglucosamine 1-carboxyvinyltransferase 1ATGACTGATCTGCTGTACGTCAACGGCGGGACGCCGCTGGAGGGCACCATCACGGTGCGTGGAGCGAAGAACTTCGTGTCCAAGGCGATGGTGGCGTCCCTGCTCGGAGACTCGGCGTCCGTGCTGCGCAACGTGCCGCAGATCCGTGACGTCGGTGTCGTGTCCGGGCTGCTCGAGCTGCACGGCGTGAACGTCAAGTACGACCCCGAGGCCGGCATCCTCGACCTGGACCCCTCGAACGTCGAGTCCGCGCACGTGGCGGACATCGACGCCCACGCCGGGTCGAGCCGCATCCCGATCCTGTTCTGCGGCCCGCTGCTGCACCGCCTGGGCGAGGCGTTCATCCCCGACCTGGGCGGATGCCGGATCGGCGACCGGCCGATCAACTACCACCTGGACATCCTGCGCCAGTTCGGTGCCGTGGTGGACAAGCGCCCCAACGGCATCCACCTGCGCGCCCCGCGGCGCCTGCAGGGCACCAAGGTCGACCTGCCCTACCCCTCCGTGGGGGCCACCGAGCAGCTCCTGCTCACGGCCGTGCGGGCCGAGGGCATCACGGAGCTCACCGGTGCGGCCACCGAGCCGGAGATCATGGACCTGATCGCCGTGCTGCAGAAGATGGGCGCGATCATCTCGGTGGACACCGACCGCGTCATCCGCATCGAGGGCGTCGACCGGCTCGACGGCTACGCGCACACCGCGCTGGGGGACCGCATCGAGGCGGCCTCCTGGGCGTCGGCGGCGCTGGCGACCGGGGGAGACGTGACCATCAAGGGTGCCTCGCAGCCCGAGATGATGACGTTCCTGAACACTTACCGCAAGGTCGGGGGGCTGTTCGACGTCCAGGACGACGGCATCCGGTTCTGGCACCCCGGCGGCGACCTGCGCTCGATCGTGCTCGAGACGGACGTGCACCCCGGGTTCATGACCGACTGGCAGCAGCCCCTCGTGGTCGCGCTCACGCAGGCGACCGGGCTGTCGATCGTCCACGAGACGGTGTACGAGAACCGCTTCGGCTTCACCGAGGCGCTGCGCAAGATGGGCGCGACGATCCAGGTCTACAAGGAGTGCCTGGGCGGTGGGAAGTGCCGGTTCGGGCAGCGCAACTTCCACCACAGCGCCGTCGTGTCCGGACCCACCACGTTGGAGGCCGCGGACATCGAGGTGCCGGACCTGCGGGGCGGGTTCTCCCACCTCATCGCGGCCCTGACCGCCAAGGGCACCTCCACGGTGCGCGGCATCTCCCTGATCGACCGTGGCTACGAGGCCTTCGGGGAGAAGCTCGAGGCTCTCGGCGCCGACGTCTCCCGGGACTGAMTDLLYVNGGTPLEGTITVRGAKNFVSKAMVASLLGDSASVLRNVPQIRDVGVVSGLLELHGVNVKYDPEAGILDLDPSNVESAHVADIDAHAGSSRIPILFCGPLLHRLGEAFIPDLGGCRIGDRPINYHLDILRQFGAVVDKRPNGIHLRAPRRLQGTKVDLPYPSVGATEQLLLTAVRAEGITELTGAATEPEIMDLIAVLQKMGAIISVDTDRVIRIEGVDRLDGYAHTALGDRIEAASWASAALATGGDVTIKGASQPEMMTFLNTYRKVGGLFDVQDDGIRFWHPGGDLRSIVLETDVHPGFMTDWQQPLVVALTQATGLSIVHETVYENRFGFTEALRKMGATIQVYKECLGGGKCRFGQRNFHHSAVVSGPTTLEAADIEVPDLRGGFSHLIAALTAKGTSTVRGISLIDRGYEAFGEKLEALGADVSRDPGPT0024090_977DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLGLUCOSAMINE_MODIFICATION,PGPT0024090-murA-K00790NANA
AK018_046691197COG0446Sulfide-quinone reductaseATGACTGCTCGTGTCCTGGTTCTCGGCGGCAGCTTCGCAGGGATGACGGCCGCCCTGTCCATCAAGTCCGACCTGGGCGACGAGGTCGCGGTCACGGTCGTGTCGGCCTCCGACCGCTTCGTGTTCAACCCGTCGCTGATCTGGTTGCCGTTCGGCCGGCGAGGTCGCACGGACATCACGTTCCCGCTGGAGCCGACGTTCACCAAGTGGGGTGTGACGTTCGTCCACGGCGCGGCGACCTTCGTCGACCCGGAGCACCACCGCGTGGAGACCACCGAGGGGACGCTCGACTACGACTACCTCGTGATCGCGACCGGGTACCGCAACGACCTCGACGTCGTCCCGGGCATGCGCGACACCCCGACGATCACCACGCTGCACGACGCCGAACGCACCTACGACGCCTGGCGCCGGTTCCTCGACGACCCGGGTGACGTCGTCATCGGTGCCACGCAGCGCGCGAGCTGCTTCGGCGCCGCGTACGAGTTCCTGTTCAACACCTCGTACCAGCTGCGCCGGGCCGGCCTGCACGGCAAGGTCAAGCTGACCTACGTCACCTCCGAGCCCTTCGCCGGCCACTTCGGCATCGACGGCATGCCCGGGGCGAAGCCGTTGATGAAGATGTTCGCCAAGAAGGAGGGCATCACCGTCGAGCCGAACCAGTCGATCGCGGAGATCAAGCCCGAGGTCGTCGTGCTGTCCGACGGGCGTGAGCTGCCGTACAAGTTCGCCATGATCGTCCCGCCCTTCCGAGGGCAGGACTTCCTCGCCGGGACCCCGGATCTGGTCGACGCCGGGAACTACGTGAAGGTCCGCCCGACCTACCAGTCCGAGAAGTGGGACGACGTGTACGCCGTCGGCATCGCCGCCGCCGTCCCGGTGCCCTGGACGACCCAGGTCGCGACCGGCATCCCCAAGACCGGTTTCCCGAGCGAGCAGCAGGCGCACATCGCCGCCGAGAACATCGTCGCCCAGGTGCGCGGCGAGGAGCCGACGGCCGCCAAGGAGTTCGCCAAGATCCCCGCCCTGTGCGTCATGGACGCCGGGAACAACGGCGTGGCCATGGTCGCCGACCACATGCTGCCTCCGCGCAAGGCTGCGGTCATGGTGCCAGGACCGCAGAACCACGCGTTCAAGATCGGCTTCGAGAAGTACTCCCTGGCCAAGATGAGGGCCGGCAGGGTCAAGCTGCCATGAMTARVLVLGGSFAGMTAALSIKSDLGDEVAVTVVSASDRFVFNPSLIWLPFGRRGRTDITFPLEPTFTKWGVTFVHGAATFVDPEHHRVETTEGTLDYDYLVIATGYRNDLDVVPGMRDTPTITTLHDAERTYDAWRRFLDDPGDVVIGATQRASCFGAAYEFLFNTSYQLRRAGLHGKVKLTYVTSEPFAGHFGIDGMPGAKPLMKMFAKKEGITVEPNQSIAEIKPEVVVLSDGRELPYKFAMIVPPFRGQDFLAGTPDLVDAGNYVKVRPTYQSEKWDDVYAVGIAAAVPVPWTTQVATGIPKTGFPSEQQAHIAAENIVAQVRGEEPTAAKEFAKIPALCVMDAGNNGVAMVADHMLPPRKAAVMVPGPQNHAFKIGFEKYSLAKMRAGRVKLPNANANANANA
AK018_04670282hypothetical proteinATGACCCACACCTGGAAGATCGCCCTCCAGTTCTTCGACGCCGACGACCTGGTGCGCGAGGGCCGGCGCACCTCGGCCCATGCGGTGCTCACCACGGCCGAGGGGGCGACGCTGGAAGGGCACGGCCACGCACGCCGCAACCCCCAGGACCCGTCGGTGCCCGAGATCGGTCTGGAGCTCGCCGCATCGCGTGCGCTGCGCGACCTGGCCGATCGGCTGCTGGCAGCGACGTCGGAAGACATCGCCGCGATCGAGCACCATCCGGTGCACCTGCACGCCTGAMTHTWKIALQFFDADDLVREGRRTSAHAVLTTAEGATLEGHGHARRNPQDPSVPEIGLELAASRALRDLADRLLAATSEDIAAIEHHPVHLHANANANANANA
AK018_046711041tdh_1L-threonine 3-dehydrogenaseATGCCGCGGCACCGCCGCAGTACGGTGGCGATCGCGGTGACCACGTCCGGTCGGCGCGACGACGGGGAGGGCGCACAGGTGCGAGCGGTGGTCCAGGCGGAGTACGGGCCGCCCGACGTGGTGCGGGTCGGCGACGTGCCCGAACCCGTCGCGGCGGACGACCAGGTGCTGATCGAGGTGCGGGCCGTGTCGTTGAACGGCTCCGACCGGGAGAATCTCGCCGGTCGGCCGGTGTACGCCCGCATCGCCGGGCTGCGCCGTTCCCGGAACCCGGTGCCCGGGTCGGACGTGGCCGGGGTCGTGGTCGCCGCCGGGCCGGAGGTGACGGCGTTCGCCCCCGGGGACGAGGTCTTCGGAGAGCTGCCGAGCTACCGGGGCGGGTTGGCGGAGCGCGTCGCGGTGCGGCCGACCACCCTGGTCCGCAAGCCCGCCGGACTCACGTTCGTCGAGGCCGCCGCGATCCCGCAGTCCGGCTGCATCGCGCTGCGTGCCACCCGCGGACTGAGCGGTGAGCCCGGTGCACGGGTCCTGGTCAACGGCGCGGGCGGCGCCGGCGGCGCGTTGCTCGTGGGCCTGGCGCGCCACCACGGCGCCGAGGTGACCGCCGTCGACCGGCGCGACAAGGCCAACCACCTGCGTCGCCTCGGCGCCGACCAGGTCGTGGCCCACGAGGACGAGGACTGGGCGGACCATCACGACCGCTACGACCTGGTCGTGGACCTGATCGGACGGCGGTCGCCGTGGCGCGTGGGTCGAGCGCTGCGCCGTGGCGGCCGCTACCGGATGGTGGGCGGGCGCACCGATCTGCTGCTCGCCATGGTCACGGTCGGCCCGCTGCTGGGGCGGGCCACCGGTCGGAGCATCGGCATGCTGGTGGTCCCGCAGTCGGCCGCCGACCTCGCCGAGGTCACCAGCCTGGTGACCGGCGGCGCCGTCCGGCCGGCGATCGACCGCGTCGTCCCGCTCGACGACGTCCCGGCGGCGTTCCGCCGGCTCGCGGCCGGCGACAACCTGGGCAAGATCGTCGTCGAGATCGGCTGAMPRHRRSTVAIAVTTSGRRDDGEGAQVRAVVQAEYGPPDVVRVGDVPEPVAADDQVLIEVRAVSLNGSDRENLAGRPVYARIAGLRRSRNPVPGSDVAGVVVAAGPEVTAFAPGDEVFGELPSYRGGLAERVAVRPTTLVRKPAGLTFVEAAAIPQSGCIALRATRGLSGEPGARVLVNGAGGAGGALLVGLARHHGAEVTAVDRRDKANHLRRLGADQVVAHEDEDWADHHDRYDLVVDLIGRRSPWRVGRALRRGGRYRMVGGRTDLLLAMVTVGPLLGRATGRSIGMLVVPQSAADLAEVTSLVTGGAVRPAIDRVVPLDDVPAAFRRLAAGDNLGKIVVEIGNANANANANA
AK018_04672489hypothetical proteinATGGATCAGCGCGAGATCGAGGCCGAGCTGACGGACGCGAACGAGCTGCTCGCCTCGACCACGGTGGGACACCTCGCCTACGTCGCGATCGACGGCACGCCGCGCGTCGTGACGGTCGGGTTCTTCTGGACGGGCGAGCAGTTCGTCGTCTCGACGGCGGCGACGGCGCCCAAGGTCGCTGCGTTGTCCGCCCGGCCCGACGTGGCCCTGACCGTCGACGCAGCAGGGGTGCCCGAGCAGACCCGCACGCTCTCCGTGCGGGGGCAGGTGAGCCTGCGCATCGTCGACGGCGTGGTCGAGGAGTACCTCGCCGCCGCTCGCGCGAGCATGGCGGACGACGACTTCACACGGTTCGAGGAGGGCTGCCGGCGGATGTACGACCGGATGGCCCGGATCGCGATCACGCCCACCTGGGCGCGCTACTACGACTTCGGCACGGGGAGGATCCCCGGGTTCCTCCAGGAGCTCGCCGGGCGGAGCGCCGGCTGAMDQREIEAELTDANELLASTTVGHLAYVAIDGTPRVVTVGFFWTGEQFVVSTAATAPKVAALSARPDVALTVDAAGVPEQTRTLSVRGQVSLRIVDGVVEEYLAAARASMADDDFTRFEEGCRRMYDRMARIAITPTWARYYDFGTGRIPGFLQELAGRSAGNANANANANA
AK018_046731170COG0265Serine proteaseGTGACACCCCTCGACGTCGTGCTCGTGGTGGTCCTGGTCGTGGCCACGGTCGCCGGCACCAGCCGCGGGCTCCTGGCGACCGTCGGCGGTCTCGTGGGGCTGGTGGTCGGGGGGATCGCGGCGCTCTTCGTCGTGCCCCTCGTCGTCGACGCCCTCGGCGAGCCCCAGTGGCGCGGCCCGGCCACGGTGGTGCTCGCCGTCGCGCTCCCGCTGCTGGGCGCCTCGATCGGCTCCTCGCTCGGGCACGGCATGCGTCGACAGGTCGACCGGACTCCGCTGCGTCCGCTCGACCGTCTGCTCGGGGGAGCGGCGAGCCTGCTCGTGGCGGCTCTCGCGATCTCGTTCGTCGGGAGCACGATCGTCGCCACCGGCGCGCCGGGACTGGCGCCCGCCGTCTCCTCGTCCGCCGTCCTGCGCGCCATCGAGGAGCACACGCCCGCACCCGTGCGACGCACGATGGCGCAGGCCCGCGCGGCGGTGATCGACGACGGGCTGCCGCAGATCGGGACGCTCCTGGAGCCCGGTCCGGCCACCGTCGCACCCGACGTCGACCTCGCCGACCCGGCGCTGGAGGCGTCGGCGCAGTCGGTCGCCCGGGTCTGGGGGACGGCCTACGCGTGCGGCACGAGCGTGACCGGGTCGGGCTTCGTCGTGGCATCCGACCGGGTCGTGACCAACGCGCACGTCGTGGCCGGCGTCGAGCGCCCGCTCGTCGAGCTGCCCGGCCGCCCGGCCCAGGAGGGGCGCGTCGTCTACTACGACGACGGCGCGGATCTCGCGGTCGTGGCGGTCGACGGGCTGGATGCCGACCCCCTCACCATCGCACCGACCCTCGCGACCGGGGACGCCGCCGTCGTGCAGGGCTACCCGTACGGCGGCCCGTTCACGTCGGTCGGCGGCCAGGTGCTCGACGTCGGGCCGGCACGCATGAACGTCTCCGGTGCCGGACCCGTCGAGCGGGACGTCTACGCGCTCGCCGCCGAGGTGCACGGCGGGAACTCCGGCGGACCGGTGCTCTCGACCGACGGCGAGGTCGTGGGAGTGATCTTCGCCCGGTCGGACACCGACGACGACCTCGCCTACGGCGTGACGACCACCGAGCTGATGCCCGTGGCCGCCCGGGCCGGCGACCTCGCCGACGCCGTCACCCCCGGGAGCTGCGCCGCCTGAMTPLDVVLVVVLVVATVAGTSRGLLATVGGLVGLVVGGIAALFVVPLVVDALGEPQWRGPATVVLAVALPLLGASIGSSLGHGMRRQVDRTPLRPLDRLLGGAASLLVAALAISFVGSTIVATGAPGLAPAVSSSAVLRAIEEHTPAPVRRTMAQARAAVIDDGLPQIGTLLEPGPATVAPDVDLADPALEASAQSVARVWGTAYACGTSVTGSGFVVASDRVVTNAHVVAGVERPLVELPGRPAQEGRVVYYDDGADLAVVAVDGLDADPLTIAPTLATGDAAVVQGYPYGGPFTSVGGQVLDVGPARMNVSGAGPVERDVYALAAEVHGGNSGGPVLSTDGEVVGVIFARSDTDDDLAYGVTTTELMPVAARAGDLADAVTPGSCAANANANANANA
AK018_04674645hypothetical proteinATGGCAGACGCGACGTCGAGGAGGACCGGGGGGCGCAACGCGGACCAGACCCGCCGCAGGCTCCTCGACGCGGCCGACGTCGTGCTCCGGGAGCGCGGCTACGCGGGGACCTCGGCGCGCACGATCGCCGCGGAGGCCGAGGTCAACGCGGCGCTCGTCTTCTACCACTACGGGGGCGTGGACGACCTGCTGCTGGCAGCCCTGGACCGGGCCAGCGCCACGAGGCTCGAGCGGCACCGCGAGACGGCCGCCCGCGCGGGCAACCTCGAGGAGCTCGCCGCAGCCGCCGCTGCGATCTATCGCACCGATGCCGAGCAGGGGTACCTCGCCGCGTTCAGCGAGCTCGTCGCGGCAGCCGTCACGAAACCGGAGCTGCGCCGCGAGATCAGCAGCCGCGCCGAGGTCTGGGTGGACTTCGTCGCCGAGCAGTGGCAACGGGTCGTCGGCGGGTCCCCGCTCGGTCACCTGCTGCCCGCCCGCGACATCGCGAACGCCGCCGTCACCTTCTACCTGGGCGCCAACCTCTTCTCGGTCCTCGACCCGGACGGTGCCCGGACAGAGGGCGTCCTCGACCTGGCCTCCCGCCTCGCACCCCACGCCGGGCTGCTGACCTTGAGACTGCCTGGCAGGGTTCGGCGAGGCTGAMADATSRRTGGRNADQTRRRLLDAADVVLRERGYAGTSARTIAAEAEVNAALVFYHYGGVDDLLLAALDRASATRLERHRETAARAGNLEELAAAAAAIYRTDAEQGYLAAFSELVAAAVTKPELRREISSRAEVWVDFVAEQWQRVVGGSPLGHLLPARDIANAAVTFYLGANLFSVLDPDGARTEGVLDLASRLAPHAGLLTLRLPGRVRRGNANANANANA
AK018_04675978Epimerase family proteinATGATCTCGCACCGCTCCCCGCACGCCGTCGTCGCCGGAGCCGGCGGCTTCCTCGGCCGAGCACTGGTGCACGACCTGCGGGACCGGGGGTACGCCGTCGTCGAGGCCGGGCGCCAGGGCCCGGACGTCGCCTGGTCGGACGGGCCCGAGGCGCTCCGACGCGTCGTGGACGGCGCCGAGCTGCTCGTCAACCTCGCCGGCAAGAACGTCGGCTGCCGCTACACCGAGGCGAACCGGGACGAGATCCTTCGCTCCCGCGTCGCGACCACCCGTGCGCTGCACGACGCCGTCGCGACGTCGTCGAATCCGCCCCGGCTGTGGCTCAACGCGAGCACGGCGACCATCTACCGCTATGCGCTCGACCGCCCGCAGAACGAGGACGACGGCGAGCTCGGCGCTGGCTTCTCGGTGGACGTGGCCCGCAGCTGGGAGCACGAGCTGTTCGCCGGAGACCTGCCCGGCACCCGACGCGTCGCGCTGCGGATGGCCATCGTCCTCGGTGGCCCCGCGTCGGACATGCTCGCCCGTGTCGCACGGCTGGGCGTCGGCGGCCCTCAGCTCGACGGGCGGTGGTTCCAGCACGGGCGGTACCGAGGCATCGGTGACCGGCCGACCGGAGGCCCCGTACCCGAGCACCGGAGCCGAGGTCGCCAGAAGTTCTCCTGGGTCCACGTCGAGGACGTCGTGCGTGCCGTGCGGTTCCTCGACGAGCACGACGAGCTCGCCGGCCCGGTCAACGTCGCGGCACCCCACCCGAGCGACAACCGCACCCTCATGGCCGATCTGCGCCGCGCCGTCGGAACGCGGATCGGAGTACCAGCACCCCGCTGGCTGCTCGAGCCCGCGATGTGGGTGCTGCGCAACGAGTCCGAGCTGTTGCTCAAGAGCCGGTGGGTGCTGCCCCGTCGCCTCCTGGACGCCGGGTTCACGTTCCGCTGGCCAGACCTGGCCCCGGCGGTGGACGACGTCGTCAGCTGAMISHRSPHAVVAGAGGFLGRALVHDLRDRGYAVVEAGRQGPDVAWSDGPEALRRVVDGAELLVNLAGKNVGCRYTEANRDEILRSRVATTRALHDAVATSSNPPRLWLNASTATIYRYALDRPQNEDDGELGAGFSVDVARSWEHELFAGDLPGTRRVALRMAIVLGGPASDMLARVARLGVGGPQLDGRWFQHGRYRGIGDRPTGGPVPEHRSRGRQKFSWVHVEDVVRAVRFLDEHDELAGPVNVAAPHPSDNRTLMADLRRAVGTRIGVPAPRWLLEPAMWVLRNESELLLKSRWVLPRRLLDAGFTFRWPDLAPAVDDVVSPGPT0014730_637DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCELOW_TEMPERATURE-RELATED_ENZYMES,PGPT0014730-yfhF-K07071NANA
AK018_04676546hypothetical proteinGTGCGCGCGACGGTGTCCACAGCGCGGATCCCGATCCACATCGACGTCAACTTCGGCGATCCGATCTGGCCCTCACCTCAAGCGACAAGACTCCCGTTGCTGCTCGGTGGCGAGGTCGAGCTGCAGGGCTACCCGCCGCACATGGTGCTGGCGGAGAAGATCGTCACGGCGATCGACCGAGGTGTGGCCAACACGCGGTGGCGGGACTTCGTCGACATCGCCTCGATCACTCGCACCCAGACCATCGACGGAGCACGTCTCGCCGCCGCGATCCGAGTCGTGGCCGATCACCGGGAGGTCGACCTGCGCAGCCTGGACGAGTCGCTCCTCGGTATGGGCGAGATCGCGCAGGCACGGTGGAGTGCTTGGAGGCGCAAGCAGCGCCTGGCCGGCAGGACGCCGGACAGCTTCCAGTCGCTCCTCGACGAGGTCACGGAGTTCGCCGACCCCGTCCTGTCCGACCGGTCGGACGCGCACGTCTGGCAACCGGCTGCGCGTGCTTGGGTGCGGGTCGGCGGCTCCTCCCTCGACAGCGCAGGTGGATAGMRATVSTARIPIHIDVNFGDPIWPSPQATRLPLLLGGEVELQGYPPHMVLAEKIVTAIDRGVANTRWRDFVDIASITRTQTIDGARLAAAIRVVADHREVDLRSLDESLLGMGEIAQARWSAWRRKQRLAGRTPDSFQSLLDEVTEFADPVLSDRSDAHVWQPAARAWVRVGGSSLDSAGGPGPT0027691_2100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_AbiEii_TOXIN-ANTITOXIN_SYSTEM,PGPT0027691-toxin_AbiEii-naNANA
AK018_04677243hypothetical proteinTTGACGCGCCTGGCGGCCTCAGGCCTCCGGCAGGACTTCGTACTCAAGGGCGGCGTCCTGCTCGCCGCGTTCGCCGCACGTCGGCCGACACGTGACATCGACCTGGCTGCCTCAGGCTTCCCCGACGACATCGACGACGTCGAGCATCGAGTGCGAGAGATCCTGGAGATCGACGTCGTCGACGGCCTGAGTTTCGACGCCGACGAGATCCGCAGCGAGACCATCCGGGACGAGGCCGACTAGMTRLAASGLRQDFVLKGGVLLAAFAARRPTRDIDLAASGFPDDIDDVEHRVREILEIDVVDGLSFDADEIRSETIRDEADPGPT0027691_2100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_AbiEii_TOXIN-ANTITOXIN_SYSTEM,PGPT0027691-toxin_AbiEii-naNANA
AK018_04678555hypothetical proteinGTGACGGTTCTGACGCTGGAGTCGGCGCGCGCCGCGGGGCTGCGCAAGGACGAGGTGTACCGCCTGGCCCGGTCCGGCGAGCTGGAGCGGATCGGCAGGGGCGTCTACATCCGGCCCGGGGAACTGGACCCTGCCGTGGCGTCGTTGGCGGGTGCGACAGCGGTGAAGCCTGCCGCGACGATGTGTCTGACGAGCGCGCTCGTGTACCACGGGTTGTCCGACCAGATCCCGCTCACCACAGATATCGCGTTGCCGCGGGGGACCAGGTTCCCTGCGGGCTTCGATCACGTGACCTGGCACTCCTTCGGGCGGTCGATGTTCGAGGTCGGTCGCCTCGCTGTGTCCGAGTATCCGGATCTGGCGGTGTACTCCGCGGAGCGGAGCATCGTGGACGCGTTCCGGATCGCGCATCTCGAGGGCATCGACCTGGCCGACGAGGCGTTGCGTCGTTGGGTGCGCGCACCAGGAAACTCGCCTGCCGACCTGCTCCGCACCGCAGGGCACTTCCCCCGGACGGTCGCCGTGATCCGCCGATCGCTCCAGGTGCTGCTGTGAMTVLTLESARAAGLRKDEVYRLARSGELERIGRGVYIRPGELDPAVASLAGATAVKPAATMCLTSALVYHGLSDQIPLTTDIALPRGTRFPAGFDHVTWHSFGRSMFEVGRLAVSEYPDLAVYSAERSIVDAFRIAHLEGIDLADEALRRWVRAPGNSPADLLRTAGHFPRTVAVIRRSLQVLLNANANANANA
AK018_046791404lpdC_1COG1249Dihydrolipoyl dehydrogenaseATGGCTTCCCACTACGACGTCGTCCTCCTCGGAGCTGGCCCCGGCGGCTACGTCGCCGCGATCCGTGCGGCACAGCTCGGCAAGTCCGTCGCCATCATCGAGGAGAAGTACTGGGGTGGTGTCTGCCTCAACGTGGGCTGCATCCCCTCCAAGGCACTCCTGCGCAACGCCGAGCTGGCGCACATCTTCCACACCCAGGCCGACGACTTCGGCATGTCGGGAGACGTGAGCTTCGACTACGGCAAGGCATTCGACCGGTCCCGCGTCGTGGCGGACGGCCGGACCAAGGGCGTCCACTTCCTCATGAAGAAGAACAAGATCACCGAGTACGACGGCCGCGGCACCTTCCGTGACGCGAACACCATCGAGGTGGCGCTCAACGACGGCGGCACCGAGACCGTGACCGGCGACAACGTGATCATCGCGACCGGCTCGCAGGTCAAGCTGCTGCCGGGCGTCGAGCTGTCCGAGAACGTCGTGACCTACGAGAAGCAGATCATGACGCGTGAGCTGCCGTCGTCGGTCGCCATCGTCGGCGCCGGCGCCATCGGCATGGAGTTCGCGTACGTCATGAAGAACTACGGCGTGGACGTCGCCATCGTCGAGTTCCTCGACCGCGCCCTGCCGAACGAGGACGTCGAGGTCTCCAAGGAGATCGCCAAGCAGTACAAGAAGCTCGGCGTCAAGATCCTCACCTCCACGGCCGTGCAGTCGGTCCAGGACAACGGCTCGTCCGTCAAGGTCGAGTACAAGGGCGTCAAGGACGACAAGCCGGGCTCGCTCGAGGTCGACAAGGTCCTCATGGCCGTCGGCTTCGCGCCCGCCGTCGAGGGCTTCGGGCTGGAGAACACCGGCGTCGAGCTCACCGACCGCGGCGCCATCGGCATCGACGACCACATGCGCACCAACGTGCCGCACATCTTCGCCATCGGTGACGTCACCGCCAAGCTCATGCTCGCCCACGTGGCCGAGGCCCAGGGGGTCGTGGCCGCCGAGACCATCGGCGGCGCCGAGACCATGACCCTCGGCGACTACCGCATGATGCCGCGCGCCACGTTCTGCCTGCCCCAGGTGGCCTCCTTCGGTCTCACCGAGGCGCAGGCCAAGGACGAGGGGTACGACGTCAAGGTCGAGAAGTTCCCGTTCATGGCCAACGGCAAGGCGCACGGCCTGGGCGAGCCCACCGGGTTCGTCAAGCTCGTCGCCGACGCGAAGTACAACGAGCTGCTCGGTGCCCACATGATCGGCCCGGACGTCTCCGAGCTGCTGCCCGAGCTCACCCTGGCGCAGAAGTGGGACCTCACGGCCGACGAGGTGGCGCGCAACGTGCACACCCACCCGACGCTGTCGGAGGCCATCCAGGAGGGCGTCCACGGCCTCGCGGGGCACATGATCAACCTCTGAMASHYDVVLLGAGPGGYVAAIRAAQLGKSVAIIEEKYWGGVCLNVGCIPSKALLRNAELAHIFHTQADDFGMSGDVSFDYGKAFDRSRVVADGRTKGVHFLMKKNKITEYDGRGTFRDANTIEVALNDGGTETVTGDNVIIATGSQVKLLPGVELSENVVTYEKQIMTRELPSSVAIVGAGAIGMEFAYVMKNYGVDVAIVEFLDRALPNEDVEVSKEIAKQYKKLGVKILTSTAVQSVQDNGSSVKVEYKGVKDDKPGSLEVDKVLMAVGFAPAVEGFGLENTGVELTDRGAIGIDDHMRTNVPHIFAIGDVTAKLMLAHVAEAQGVVAAETIGGAETMTLGDYRMMPRATFCLPQVASFGLTEAQAKDEGYDVKVEKFPFMANGKAHGLGEPTGFVKLVADAKYNELLGAHMIGPDVSELLPELTLAQKWDLTADEVARNVHTHPTLSEAIQEGVHGLAGHMINLPGPT0001380_5945DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001380-lpd|pdhD-K00382NANA
AK018_04680444rnhA_3COG0328Ribonuclease HIGTGAGCGACGCACCCCTGGTGGAGATCTGGACCGACGGCGCCTGCAAGGGCAACCCTGGCATCGGCGGCTGGGGCGCCCTGCTGCGCTCCGGCGAGCACAGCAAGGAGCTGTTCGGCGGCGAGCGGTCCACCACCAACAACCGCATGGAGCTCACCGCCGTCGTCGAGGCGCTGCGCGCGCTCAAGCAGCCCAGCGGCGTCACGGTGCACACCGACTCCTCGTACGTGATGAACGGCATGAAGACCTGGATCGCCGGGTGGAAGCGCAACGGCTGGCAGACCTCGGCCAGGAAGCCCGTCAAGAACGTCGACCTGTGGCAGGCGCTCGACGCGGAGGTCGCCCGGCACCAGGTGCAGTGGGTGTGGGTCAAGGGCCACGCCGGCGACCCCGGCAACGAGCGCGCCGACCAGCTCGCGAACGACGGCGTGGACTCGGTGCGCTGAMSDAPLVEIWTDGACKGNPGIGGWGALLRSGEHSKELFGGERSTTNNRMELTAVVEALRALKQPSGVTVHTDSSYVMNGMKTWIAGWKRNGWQTSARKPVKNVDLWQALDAEVARHQVQWVWVKGHAGDPGNERADQLANDGVDSVRPGPT0003760_50DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_04681864fgd_10F420-dependent glucose-6-phosphate dehydrogenaseATGCGGTTCGGGTTCATCGGCAGCTACGGCAGCCCGGCGCAGCAGGTCGAGCTGGCGCGCGCGTGCGAGGAGCACGGCTGGGACGGGTTCTTCACGTGGGACGGCGTGAGCCTGGACGACGCCGGGTTCGGCGCCCACCCGACGTGGGACCCGTTCTCGCTGCTCGCGGCGGCGGCCGCGGTGACCGAGCGGATCACGCTGGGCGCGATGGTGTTCGCCGTCCCGCGGCGGCGACCCTGGGAGCTGGCGCAGCAGGTCCTCACGGTCGACCACCTCTCCGGCGGCCGGCTCGTGCTGCCCGTGGGCGTCGGCGTGCCCGTCGACCGGGCGTTCACCTCGGTGCCCGGGCAGCCGACGTCGCTGCGCGACCGCGCCCGCGCGCTCGACGAGGTGCTCGACTGGCTGGAGCGGTCGTGGTCCGGGGAGGTCTTCAGCCACGACGGCGAGTGGACGCGCACGGGAGACTTCCAGCTCCCCCTGCCACCGGTGCGCGGACGCGTCCCGGTGTGGCCGGTGGGCGTGTGGGACGCGGCACGGCCCCCGCGCCGCAGCCTGGACCGGGCGCTGCGCTGGGACGGGATCGTGCCCCAGGTGCGGGGCGACTCCCCCGAGGACGCCGAGCCCGGCCCCGACGACGTCCGCACCCTGACCGCGTGGATCGCCGCGCACCGCGACGCCCCGGCCGGGCCCTTCGACGTCGTGCACCAGGGCAGGCTCGCCGCCGACCCGGTCGCCGCCCGGGACCAGGCGCGTGAGGTGGCCGACGCCGGTGCCACGTGGTGGCTGGAGTCCTGGTGGGACCCGACCACGACGACCCCGGAGCGGCTGCTGGACCGCGTGCGGCAAGGGCCGCCGGCGCTCTGAMRFGFIGSYGSPAQQVELARACEEHGWDGFFTWDGVSLDDAGFGAHPTWDPFSLLAAAAAVTERITLGAMVFAVPRRRPWELAQQVLTVDHLSGGRLVLPVGVGVPVDRAFTSVPGQPTSLRDRARALDEVLDWLERSWSGEVFSHDGEWTRTGDFQLPLPPVRGRVPVWPVGVWDAARPPRRSLDRALRWDGIVPQVRGDSPEDAEPGPDDVRTLTAWIAAHRDAPAGPFDVVHQGRLAADPVAARDQAREVADAGATWWLESWWDPTTTTPERLLDRVRQGPPALNANANANANA
AK018_04682639leuD_1COG00663-isopropylmalate dehydratase small subunitATGGAGAAGATCGTCACCCACACCGGCGTCGGGGTCCCGCTGCGCCGCAGCAACGTCGACACCGACCAGATCATCCCGGCCGTCTACCTCAAGCGGGTCACGCGCACCGGGTTCGAGGACGCCCTGTTCGCCGCCTGGCGCGGCGACGAGTCGTTCGTGCTCAACCAGGACGCCTACCGCAACGGCTCCGTGCTCGTCGCCGGACCGGACTTCGGCACCGGCTCCTCGCGCGAGCACGCCGTGTGGGCGCTGAAGGACTACGGCTTCCGCGTGGTCCTCGCCTCGCGCTTCGCCGACATCTTCCGCGGCAACTCGGGCAAGCAGGGCCTCGTGGCCGGCATCGTCGCCCAGGAGGACATCGAGCTGCTCTGGAAGATCCTCGAGGCCAAGCCCGGCACCGAGATCACCGTGGACCTGGAGCATCGCACCGCCCAGGCCGACGACGTCACCGTGCCGTTCCAGCTCGACGACTACACGCGCTGGCGCCTCATGGAAGGGCTCGACGACATCGGCCTGACCCTGCAGAACGAGGACGACATCTCCGCGTTCGAGGCGCAGCGTGCGCCGTGGCGGCCCAGGACGCTGCCGGCCAAGCACCTGCCGAAGGTCGACATCGAGCCCGCGCGTCCCGTGTCCTGAMEKIVTHTGVGVPLRRSNVDTDQIIPAVYLKRVTRTGFEDALFAAWRGDESFVLNQDAYRNGSVLVAGPDFGTGSSREHAVWALKDYGFRVVLASRFADIFRGNSGKQGLVAGIVAQEDIELLWKILEAKPGTEITVDLEHRTAQADDVTVPFQLDDYTRWRLMEGLDDIGLTLQNEDDISAFEAQRAPWRPRTLPAKHLPKVDIEPARPVSPGPT0001443_1107DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001443-leuD-K01704NANA
AK018_046831476leuC_1COG00653-isopropylmalate dehydratase large subunitATGGCCGGCACGCTGGCAGAGAAGGTCTGGGAGGCGCACCTGGTGCGCCAGGGGAGCGACGGGGCGCCCGACCTGCTCTACATCGACCTGCACCTCGTGCACGAGGTGACCAGCCCCCAGGCCTTCGAGGGCCTGCGCCTCGCCGGCCGTCCCGTGCGTCGGCCGGACCTGACGATCGCCACCGAGGACCACAACACCCCCACCCTCGACATCGACCTGCCCATCGCGGACCTCACCAGCCGCACGCAGATCGACACCCTGCGCAACAACGCCCGCGAGTTCGGCGTCCGGATCCACTCCCTGGGCGACGCCGACCAGGGCATCGTGCACCAGGTCGGCCCCCAGCTCGGCCTGACCATGCCCGGCCTCACCGTGGTCTGCGGCGACTCGCACACCTCCACCCACGGGGCCTTCGGCGCCCTGGCGTTCGGCATCGGGACCTCCGAGGTCGAGCACGTGCTGGCGACCCAGACCCTGCCGCTCACGCCCTTCAAGACCATGGCGATCACCGTCGACGGCGACCTGCCGCCCGGGGCCACCAGCAAGGACATCATCCTGGCGATCATCGCCAAGATCGGCACCGGCGGCGGCCAGGGCTACGTCCTGGAGTACCGCGGCGAGGCCATCCGCCGGCTCTCGATGGAGGCGCGGATGACCATCTGCAACATGTCCATCGAGGCCGGTGCGCGCGCCGGCATGATCGCCCCGGACGAGACCACCTTCGAGTACCTGAAGGGCCGCCCGCACGCCCCCGAGGGCGACGACTGGGACGCCGCCGTCGAGTACTGGAGGACGCTGCGCAGCGACGACGACGCCGAGTTCGACGCCGAGGTGGTCCTCGAGGCCGCCGACCTCGAGCCCTTCGTCACCTGGGGCACCAACCCGGGCCAGGGACTGCCGCTGTCCGCGAACGTGCCGGTGCCCGCCGAGATCGCCGACGAGAACGAGCGCGTCGCCGCCGAGCGCGCGCTGGAGTACATGGGCCTGACCGGCGGCACCCCGCTGCGCGACATCTCCGTCGACACCGTGTTCATCGGCTCGTGCACCAACGGCCGCATCGAGGACCTGCGCTCGGTCGCCAAGGTGCTCCAGGGTCGGCGCAAGGCCGACGACGTGCGCGTGCTCGTCGTGCCGGCGTCGGCCCGCGTGCGCCTGCAGGCCGAGGCCGAGGGGCTCGACGTCATCTTCAAGGAGTTCGGCGCCGAGTGGCGCAACGCCGGCTGCTCGATGTGCCTGGGCATGAACCCCGACCAGCTCGCCCCGGGCGAGCGGGCCGCCTCGACGTCGAACCGCAACTTCGAGGGACGTCAGGGCAAGGGCGGACGCACGCACCTGGTCTCCCCGCTGGTCGCCGCCGCCACCGCGATCCGCGGCACGCTGTCGTCCGTGTCCGACCTGGACCTCGGCCAGGACGTGGACCTGACCAGCTTCGACGGCACGCCGCTGGCGCCGCTGACCGCGCCGTCCTTCGTCTGAMAGTLAEKVWEAHLVRQGSDGAPDLLYIDLHLVHEVTSPQAFEGLRLAGRPVRRPDLTIATEDHNTPTLDIDLPIADLTSRTQIDTLRNNAREFGVRIHSLGDADQGIVHQVGPQLGLTMPGLTVVCGDSHTSTHGAFGALAFGIGTSEVEHVLATQTLPLTPFKTMAITVDGDLPPGATSKDIILAIIAKIGTGGGQGYVLEYRGEAIRRLSMEARMTICNMSIEAGARAGMIAPDETTFEYLKGRPHAPEGDDWDAAVEYWRTLRSDDDAEFDAEVVLEAADLEPFVTWGTNPGQGLPLSANVPVPAEIADENERVAAERALEYMGLTGGTPLRDISVDTVFIGSCTNGRIEDLRSVAKVLQGRRKADDVRVLVVPASARVRLQAEAEGLDVIFKEFGAEWRNAGCSMCLGMNPDQLAPGERAASTSNRNFEGRQGKGGRTHLVSPLVAAATAIRGTLSSVSDLDLGQDVDLTSFDGTPLAPLTAPSFVPGPT0001442_340DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001442-leuC-K01703NANA
AK018_04684720iclR_1COG1414Transcriptional repressor IclRATGGACGATTCTAGCGGAGTCGGAGTACTGGACAAGGCCGCGTCCGTCTTGGGCGCGCTCGAGGCCGGACCCGCCACCCTCGCGCAGCTGGTCGCCTCGACGGGACTGGCCCGGCCGACGGCCCACCGGCTCGCCGTCGCGCTCGAGCACCACCGCTTCGTGGCGCGCGACATGCAGGGCCGGTTCGTGCTCGGGCCCCGGCTCAACGAGCTCTCGACGGCGGCGGGCGAGGACCGCCTGCTGGCCGCGGCGAACCCCGTGCTCACCGCGCTGCGCGACCACACCGGCGAGAGCGCCCAGCTCTACCGGCGCCAGGGCGACCACCGGGTGTGCGTCGCCGCGGCGGAGCGCCCGGTGGGCCTGCGCGACTCCATCCCCGTGGGCGCGACCCTGACGATGCACGCCGGTTCGGCGGCACAGATCCTCCTGGCCTGGGAGGAGCCGGACCGCCTGCACCGCGGGCTGCGCGAGGCGGTCTTCACCGCCACCATCCTGTCCGGCGTCCGACGCCGCGGCTGGGCGCAGTCGGTGTCCGAGCGCGAGCTCGGCGTCGCCTCCGTCTCGGCCCCGGTGCGCGGTCCGTCCGGCCGGGTGGTCGCCGCCGTGTCGGTCTCGGGTCCGGTCGAGCGTCTCACCCGGCAACCCGGACGCCTGCACTCGGCCTCCGTCATGGCCGCCGCCAACCGCCTCACCGAGGTGCTGCAGCGCGCGGGTGAGTGAMDDSSGVGVLDKAASVLGALEAGPATLAQLVASTGLARPTAHRLAVALEHHRFVARDMQGRFVLGPRLNELSTAAGEDRLLAAANPVLTALRDHTGESAQLYRRQGDHRVCVAAAERPVGLRDSIPVGATLTMHAGSAAQILLAWEEPDRLHRGLREAVFTATILSGVRRRGWAQSVSERELGVASVSAPVRGPSGRVVAAVSVSGPVERLTRQPGRLHSASVMAAANRLTEVLQRAGENANANANANA
AK018_04685168hypothetical proteinATGCCGGCCAAGGCCAAGACCATCCTGATCTGGCTCGTGGTGATCTTCGTGATCTTCGCGATCTACAACAGCCCGGACCGAGCGTCCGAGGTCGTGACGGCGATCTGGGACGTCATCGTCAACGCGGTCGGCGCCTTCGGCGAGTTCCTGGCCGGTCTGCTCGACTGAMPAKAKTILIWLVVIFVIFAIYNSPDRASEVVTAIWDVIVNAVGAFGEFLAGLLDNANANANANA
AK018_04686879hypothetical proteinGTGGCCTCGCCCGACGACGCCGTCCGAGCGCACAAGCACCTGCGCCGGTACGTCCTCAACAGCGAGAACGTCACGGTGGCGACCCGGCTGCACCTCGCCAAGCTCCTCGAACCGGCCGCCACGACCGTCGCCGTCGCCGTCCTGTGCGCCTGGATCCACCAGGCCACGGACGTCGGCGGCGTCTGGGTGCTCTGGCTCCCGGCGGTGCTGCGGCTCGTCGTGCGCTGGGCGGAGTGGAACTACGAGTGGTTCGTGGCCACGGACAAGCGGCTGATCCTCACCTACGGGTTCGTGATCCACAAGGTCGCGATGATGCCCCTGGCCAAGGTGACGGACATGGGCTACACCCGGACCCCGGTGGGTCAGGTGCTCGGGTACGGCCGGTTCGTCATGGAGTCCGCCGGCCAGGACCAGGCGTTGCGCCAGGTCGACTACATGCCGGACCCGGACCAGACCTACCGGACGCTGGTGGGCACGATCTTCCGGCCCGGTACGCCCCCCGCGAAGGAGCGCCCGGCTCCCCCGCCGGCGATCGTGCCGCAGGGACCGCGAGAGCCCCGTCCGACGACGGCGGAGCTCCCCGTGGTCAGCACGGACGGCGGGGGTTCCGACAGCAGGGGCGGGGACGGAGCAGGCGCTGATCAGGGCCGCGGGACCGCGTGGGTCCCCACGGGAGCCGCCCCGCGCGACGACGGCGAGCGGGACCGTCGGGAGCGCCGCCGCCACACGCATCCCGACACCGGGGGTGTCACGATCCCGCAACCCTTCAACACGGCGCAGGAGCCGCGCAGCGGTCGGCGCCGGCGCCGACCGGAACCGGGTCCCCGGCCGCCGTCGAGCGACGGAGCCGGGACCACGGTCCCCGACCCGTTCCTGTGAMASPDDAVRAHKHLRRYVLNSENVTVATRLHLAKLLEPAATTVAVAVLCAWIHQATDVGGVWVLWLPAVLRLVVRWAEWNYEWFVATDKRLILTYGFVIHKVAMMPLAKVTDMGYTRTPVGQVLGYGRFVMESAGQDQALRQVDYMPDPDQTYRTLVGTIFRPGTPPAKERPAPPPAIVPQGPREPRPTTAELPVVSTDGGGSDSRGGDGAGADQGRGTAWVPTGAAPRDDGERDRRERRRHTHPDTGGVTIPQPFNTAQEPRSGRRRRRPEPGPRPPSSDGAGTTVPDPFLNANANANANA
AK018_04690765COG0500putative methyltransferaseATGCCGCCGACACCGGACCCCACCTCGCACGCCGACCGTGCTGCCTCGTTCTCGACCGGCGCGGACGTGTACGCCCGCGTCCGTCCGGGGTACCCCGACGACGCTGTCGACTGGCTGCTCCCACGGGACAGCGCACGCGTCCTCGACCTGGCGGCGGGCACAGGACTGCTCACCCGCAGCCTGGTGCGCCGCGAGCTCGAGGTGGTCGCAGTGGACGCGTCGGCGCCGATGCTCGACCGGCTGCGGGCCGCCCTGCCGTCCGTCGACGCACGGCTCGGCACCGCCGAGGAGATCCCCCTGCCCGACGCCTCCGTCGACGCCGTCGTCGTCGCCCAGGCGTGGCACTGGTTCGACACCGCGCGGGCCGCCGCCGAGATCGCCCGCGTGCTGCGTCCCGGGGGCCGGGCCTGCGTGCTGTGGAACGACCGCGACGAACGGGTCGAGTGGGTCGCCCGGCTCGGCGAGATCATGCATCGCGGCGACCCGCTGGCACCGGACGGGAGCCACAGCGTCCACGCCCCGGCGCTGGGTCCGGCGTTCGACGCGTCCGACCGCTCGACGTTCCCCTGGCACCAGCGGCTGGCGACCCGCGACCTGCGCACCCTGGTCGCGTCGCGCAGCTACGCGCTGACCCTGCCGGACGCCGAACGGGCGGAGCTCCTGCAGCGGGTGGACGACCTGACCACGACCCACCCGGACCTGTCCGGGACCGAGCAGATCGTCCTGCCCTACGTCACGACGGCGTACCGCGCGCGACGGCGCTGAMPPTPDPTSHADRAASFSTGADVYARVRPGYPDDAVDWLLPRDSARVLDLAAGTGLLTRSLVRRELEVVAVDASAPMLDRLRAALPSVDARLGTAEEIPLPDASVDAVVVAQAWHWFDTARAAAEIARVLRPGGRACVLWNDRDERVEWVARLGEIMHRGDPLAPDGSHSVHAPALGPAFDASDRSTFPWHQRLATRDLRTLVASRSYALTLPDAERAELLQRVDDLTTTHPDLSGTEQIVLPYVTTAYRARRRNANANANANA
AK018_04691900putative HTH-type transcriptional regulatorATGGCCGAACGGATCTCGCTCGCCGCGCTCGAGCTGCTCGTCGCCGTCGACACCCACGGGTCCATCAGTGCCGCCGCCCGGGCGCTGGGGGTCGCCCAGCCCACCGCGTCGTCCGGGCTGCGCCGCCTCGAGCGCCGGCTCGGGCTCGAGCTCGTCGCCCGCGGCGCCCGCGGCACAGACCTGACGCCGACCGGGCGGGCCGCGGCCGGATGGGCGCGCGACGTGGTCGCGGCCTCCGACCGGTTCGAGCGGTCCGCAGCCGGCCTGCGTGCCGGGCCCGCCACCGCCCTGCGCGTCGCGGCCAGCCTCACCGTGGCCGAGTACCTCGTGCCCCGGTGGCTGGCCGTGCTGGCCGCCCGCGACGACGCCCCCGAGGTCGAGCTGACCGTGCGCAACTCGGCCGACGTGATGGACCTGGTGCTCGCCGGCGAGGTCGAGACCGGGTTCGTCGAGAGCCCCGGGGTGCGCAACGGCCTGCGCAGCCGGACCGTGGCGCGCGACGAGCTCGTCGCCGTCGTCGCGCCGGGGCATCCGTGGGCCCGACGCCGGTCGGTGGGCGCCGAGGACCTGCTCCGAGCCCGCCTCGTCCTGCGCGAGTCCGGTTCCGGTACACGGGAGATCCTCGAACGGGCGCTGGCGCGGGCCGGGTGGTCGCTGCCCGACCACGCACCGACGCTCGGGTCGACGGCGGCGCTCAAGGCCGCGGTCCGGCACGGCGGGTCCGTGGCCGTCCTGTCGGCGCTGACGGTGGCCGACGACGTCGACGCGGGCCGGCTGGTCGCTGTCGAGGTCGCGGGGCTCGACCTGTCGCGTCGGTTGCGCGAGGTGTGGCGCGACGGGAGCGTGCCATCGGCGGCGGCCCGCCGGCTCAGCGCCGTCGCGCGCGGTACGCCGTCGTGAMAERISLAALELLVAVDTHGSISAAARALGVAQPTASSGLRRLERRLGLELVARGARGTDLTPTGRAAAGWARDVVAASDRFERSAAGLRAGPATALRVAASLTVAEYLVPRWLAVLAARDDAPEVELTVRNSADVMDLVLAGEVETGFVESPGVRNGLRSRTVARDELVAVVAPGHPWARRRSVGAEDLLRARLVLRESGSGTREILERALARAGWSLPDHAPTLGSTAALKAAVRHGGSVAVLSALTVADDVDAGRLVAVEVAGLDLSRRLREVWRDGSVPSAAARRLSAVARGTPSNANANANANA
AK018_046921116hypothetical proteinATGACCCGCCTCCTGCCGGGCCTGGGACTGGCCACCGTCGCGACCGCCGTGCTGCTGGCCGCCGCTCCCGCGCTCACCGCCGCCGCCCCGGCGCTCTCCCCGCTGGTCGTCTCCCTCCTGGCCGGGGCGGTCGTCGGCTCCGCCCTGGCGTGGTCCGCCCGGCGCGGGACGCCGGACTCCGCCGCGACCGGTCGCGACGCCGTCGGGTCCGCTGCGCGGTTCTTCGCCGCGACCGCCCCCGGCACGTCGTGGACCGCCCGGCACGTGCTGCGGGCCGGCGTCGTGCTCCTGGGGCTGCAGCTCTCCGTGGGCGACGTCCTGGACCTCGGGTGGCACGGCCTGGCGGTCGTCGCGACGACGGTCGCGGTGACCTTCGCCGGCACGCTCGCGCTGGGACGGTGGCTGCGCGTGCCGCGGGACGCCGCCCTGCTCGTCGCGACCGGGTTCTCGATCTGCGGCGCGGCGGCCATCTCCGCCATGACGGGCGTGCTCGACCGGTTCCCCGGCCGGCGCCAGGAGGAGGCCGACCGGTCCGACGCGGTGGCAGCGGCACTAGCGCTCGTCGCCCTGTACGGGACGGCCGCCGTCGTCGTGCTGCCGTGGCTGGCCGGGCTGCTCGGGCTGTCTGACGCCCAGGCCGGGCTCTGGATCGGAGCGAGCGTCCAGGAGGTCGCCCAGGTCGTCGCCGCAGCGGGCAGCCTGGCGGGCGCGACCGCCCTGGCCACCGCCACGGTCGCCAAGCTCGCGCGGGTCGCGCTGCTGGCTCCTCTCGTCGCGACCGTCGGTGCCGTGCGCAGCCGCCGCGTGGCGCGCACGGCGACTCCGGAGCCCGGCCGCGACGACGGTGTCCGGCGCCCCGCACCCGTGCCCGGGTTCGTGGTGGGGTTCCTCGCCGCCGTGGCGCTCCGCAGCCTCGGGATCGTCCCCGCCCCCGTGCTGGACGTCGCCGCAGCCCTCACGACGGCGCTGTTCGTCGCGGCGATGTTCGCCCTCGGGCTCGGGGTCGACGTGCCGCGGCTGGTGCGCACCGGCCGTCGGCCGCTGCTGCTCGGCGCGTGCTCGGCCGTCGTCGTCGCCGGGACCGCGCTGGCGGCGGTCCTGGTGCTCTCGCCCTGAMTRLLPGLGLATVATAVLLAAAPALTAAAPALSPLVVSLLAGAVVGSALAWSARRGTPDSAATGRDAVGSAARFFAATAPGTSWTARHVLRAGVVLLGLQLSVGDVLDLGWHGLAVVATTVAVTFAGTLALGRWLRVPRDAALLVATGFSICGAAAISAMTGVLDRFPGRRQEEADRSDAVAAALALVALYGTAAVVVLPWLAGLLGLSDAQAGLWIGASVQEVAQVVAAAGSLAGATALATATVAKLARVALLAPLVATVGAVRSRRVARTATPEPGRDDGVRRPAPVPGFVVGFLAAVALRSLGIVPAPVLDVAAALTTALFVAAMFALGLGVDVPRLVRTGRRPLLLGACSAVVVAGTALAAVLVLSPNANANANANA
AK018_04693744gph_9Phosphoglycolate phosphataseGTGACCGCGTTCGGGGCGACGCGCCTCGACGGCGTTCTGCTCGACGTCGACGACACCCTCGTCGACACCAGGGGGGCGTTCGCCGACGCCTTGGCGGCCGTCGCGGACGCCCACCTGCCGGACGACGTCGACCACGCCGCGGTGCTGGCGCACTGGCGCTCCGACCCCGGAGGGCACTACGGCCGCTACACCCGGGGCGAGACGGACCACCGCACCCAGCGGCGGCTGCGCGCCGACCTGCTGCACCGCACGTTCGGCGGCGCTCCCGTGGGCGAGGACGCATTCGACGCCTGGGACGAGCTGTTCTGGGGCACGTTCGAACGGTCCTGGCGCCCGTTCGACGACGCGGCGGGGCTCGTGGCCGGGCTGCGGTCGGCGGGGCTCGCCGTCGGCGTGGTCACCAACGCGGCCGTGGCCCTGCAGGAGCGCAAGCTTGCCGCCGTCGGCCTCGACCTGCCCGTGCTGGTCGGCCTGGACACGCTCGGCTACGGCAAGCCGCACCCGGACGTCTTCCTCGAGGGGGCATGGCGCCTCGGGACGTTGCCAGGACGGACGGCGTACGTCGGCGACGAGCCGCGCGTCGACGCCACCGCCGCGCACGACGCCGGTCTGCTCGGCGTCTGGCTGGACCGGCCGGGTGCGCGGCGCCTCGACGAGGCCGACGCCGACGCTGCGGCGATGCGTGCCGCGGGGATCGTCGTCGTGCCCGGGCTCGACGCCGCCCTCGCCGAGCTGTCGGTGTGAMTAFGATRLDGVLLDVDDTLVDTRGAFADALAAVADAHLPDDVDHAAVLAHWRSDPGGHYGRYTRGETDHRTQRRLRADLLHRTFGGAPVGEDAFDAWDELFWGTFERSWRPFDDAAGLVAGLRSAGLAVGVVTNAAVALQERKLAAVGLDLPVLVGLDTLGYGKPHPDVFLEGAWRLGTLPGRTAYVGDEPRVDATAAHDAGLLGVWLDRPGARRLDEADADAAAMRAAGIVVVPGLDAALAELSVNANANANANA
AK018_046941392gltX_1COG0008Glutamate--tRNA ligaseATGTTCCACGTCGGCGGCGCACGTTCCGCGATGTTCAACTGGGCCGTCGCCAAGCAGACCGGCGGGACCTTCGTGCTGCGCATCGAGGACACCGACGCCTCGCGCAACAAGCCGGAGTGGGTGGACGGCATCCTGGCCGCGCACGCGGCGCTCGGCATGCACTCCGACGACCCGACGTTCGAGGGCCCGTACTTCCAGTCCGAGAACCGCGGCAAGCACCAGGACGCCACCCGGCGCCTCCTGGACGCGGGCAGCGCGTACTACTGCGACTGCACCCGCGACGACGTCGCCGCACGCACCGGCAACCAGCACTCCGGCTACGACGGCCACTGCCGCGACCGGGGCCTGACCGAGGCGCCCGGTCGCGCCCTGCGGTTCCGCACGCCGGACACCGGCGAGACGCAGGTCGTCGACCTGATCCGCGGCAACCCCGTGTTCCCCAACGACGCGATGGAGGACTTCGTCGTCGCCCGCGGGGACGGGTCGCCCGTGTTCCTGCTCGCCAACGTCGTCGACGACCTCGACGAGGGCATCACCCACGTCATCCGCGGCGAGGAGCACCTGTCCAACACGCCCAAGCAGCAGCTCCTGTGGGCCGCGCTGGGTGCCGAGCCGCCCGTCTGGGCCCACCTGCCGGTCATCGTCAACGAGAAGCGCCAGAAGCTGTCCAAGCGGCGCGACAAGGTGGCGCTCGAGGACTACCTCGCCGAGGGGTACCTGCCGGACGCGATGGTCAACTACCTCATGCTGCTCGGCTGGGCGCCCGGCAACGACGAGGAGATCCTGCCGTTCGCCGAGATGATCGAGCGCTTCCGCATCGAGGACGTCAACTCGGCGTCGGCGTTCTTCGACCTCAAGAAGCTCGCGGCCTTCAACGGCGAGTACATCCGGAAGATGGACGTCGACGCCTTCGTCGCCGCGTGCGGCCCCTGGCTGCGGGCACCGCACGCGCCCTGGGCCGAGGAACGGTTCGACGCCGCGGCGTTCGCCGCCGTCGCACCCCTCGCGCAGTCCCGCGTGGCTCTGCTCGGCGACATCACCGACAACGTCGACTTCCTGTTCCTCGACGAGCCGGTCCACGACGAGAAGTCCTGGAACAAGGCCATGAAGCCCGGCGCGGTCGAGCTGCTCACCGACGTGCGCGCGGCACTCGCGGACCTGGAGCCGTGGGCGGCGGAACAGCTCAAGGACACCGTCGCGTCCACGGGGGAGCAGCACGGGATGAAGCTGGGCAAGGCGCAGGCACCCGTGCGCGTGGCCGTCACCGGGCGCACCATCGGGCTGCCGCTGTTCGAGTCCCTCGAGGTGCTCGGTCGTGAGCGCACCCTGGGTCGGATCGACGCCGCGCTGGCGGCGCTCGCCGAGAACCCGCCGCAGGCGCCCGCGCAGTGAMFHVGGARSAMFNWAVAKQTGGTFVLRIEDTDASRNKPEWVDGILAAHAALGMHSDDPTFEGPYFQSENRGKHQDATRRLLDAGSAYYCDCTRDDVAARTGNQHSGYDGHCRDRGLTEAPGRALRFRTPDTGETQVVDLIRGNPVFPNDAMEDFVVARGDGSPVFLLANVVDDLDEGITHVIRGEEHLSNTPKQQLLWAALGAEPPVWAHLPVIVNEKRQKLSKRRDKVALEDYLAEGYLPDAMVNYLMLLGWAPGNDEEILPFAEMIERFRIEDVNSASAFFDLKKLAAFNGEYIRKMDVDAFVAACGPWLRAPHAPWAEERFDAAAFAAVAPLAQSRVALLGDITDNVDFLFLDEPVHDEKSWNKAMKPGAVELLTDVRAALADLEPWAAEQLKDTVASTGEQHGMKLGKAQAPVRVAVTGRTIGLPLFESLEVLGRERTLGRIDAALAALAENPPQAPAQPGPT0008460_4903DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885NANA
AK018_04695642hypothetical proteinATGCCGGGGTGCTGCGAGCCGCAGGGGTACGAGAAGGTCTTCGACGACCGGGAGGCCCGCCGCGCGGCGGCCCGGTACGCCCGGTCCGGTCTGACGACCCTGCCGCGGCGCACCGTCGAGCTCTACCGGTCCGGCGTCGTCGGCGGTGCGACGCTCCTGGAAATCGGCAGCGGCGTCGGGGACTTCGCCGTCGAGATGCTGCGAGCCGGGATCGGGCGTGCCACGTGCCTGGACCTGTCCACGGGATACGACGCCGCGGCCGCCCGGCTGCTGGCCGAGGCCGGCCTGACCGACCGCGTCCGTCGCCGCACCGGCGACCTGGTGACGCACCCGGACCTGGCCGGCCCGGCCGACGTCGTCGTCCTGCACTCCGTGGTGTGCTGCTACCCGGACGCCCGCGCGCTCGTGGCGGCCGCCGCGGAGCGCACCCGGGAGTACCTCGTGCTGGCGTTCCCGCGCCGCACCTGGTGGATGCGCCTGGCAGCCCACGTGGTGAACGTCTACCCGCGGCTGCGGGGCAGCGACTGGCGGTTCCGCGTGCACCCGCGCTCCGAGGTGGTGCACGCCGCCACGGACGCCGGGCTGCGGGCGGTGCGGGCCGAACGCCTCACCTTCGACCACCACCTGGTGCTCGCCCGCTGAMPGCCEPQGYEKVFDDREARRAAARYARSGLTTLPRRTVELYRSGVVGGATLLEIGSGVGDFAVEMLRAGIGRATCLDLSTGYDAAAARLLAEAGLTDRVRRRTGDLVTHPDLAGPADVVVLHSVVCCYPDARALVAAAAERTREYLVLAFPRRTWWMRLAAHVVNVYPRLRGSDWRFRVHPRSEVVHAATDAGLRAVRAERLTFDHHLVLARNANANANANA
AK018_04696786hypothetical proteinGTGCGTATCGCGAGATTCACCACCGGCGACGACCCCCGCTTCGCCTTCGTCCAGTCCGAGGGGGACACCGACTACCTGGCCGTGCTCAGCGGGGACCCGCTGTACATGCCGGCGATGCCGACGGGGGAGCGGATCGAGCTCGGCGACGGCGTCCGGCTGCTGTCCCCGGTGATCCCGCGCTCGAAGGTCGTGGCCGTCGGGCGCAACTACATGGACCACGTGCGCGAGATGGGCGGCGAGGCCCCCACCGCACCGCTGCTGTTCCTCAAGCCCAACACGTCCGTCGTCGGCCCGGACGACCCGATCGTGCTGCCCGAGTGGACGCAGGAGGTCTCCTACGAGGCCGAGCTCGCCGTCGTCGTGTCCAAGCTGTGCAAGGACGTCGAACCCGAGAACGCGCGCGCCTACGCGCTCGGCTACACGGTGGCCAACGACGTGACCGCCCGCGACGCCCAGCGCACGGACGACCAGTGGGCCCGCGCCAAGGGGTTCGACTCCGCGTGCCCGCTGGGACCGTGGATCGAGACCGACCTGAACCCCGAGGACGTCGGCGTGCTGTCCCGCGTCAACGGCGAGCCCAAGCAGGACGGCCGCACGGCCGAGATGATCTTCGACGTCGACTACCTGATCTCCTACGCCTCGAAGGCCATGACCCTGCTGCCCGGCGACGTGCTGCTCACCGGCACCCCGGCCGGCGTCGGCCGGATCGACGCCGGCGATCGCGTCGAGTGCGAGGTGGAGGGCATCGGCGTGCTCGCCAACCCTGTGGTGCGCCGCGAGGACTGAMRIARFTTGDDPRFAFVQSEGDTDYLAVLSGDPLYMPAMPTGERIELGDGVRLLSPVIPRSKVVAVGRNYMDHVREMGGEAPTAPLLFLKPNTSVVGPDDPIVLPEWTQEVSYEAELAVVVSKLCKDVEPENARAYALGYTVANDVTARDAQRTDDQWARAKGFDSACPLGPWIETDLNPEDVGVLSRVNGEPKQDGRTAEMIFDVDYLISYASKAMTLLPGDVLLTGTPAGVGRIDAGDRVECEVEGIGVLANPVVRREDPGPT0001630_41DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001630-hpaF-K16164NANA
AK018_04697492hypothetical proteinATGAGCACGCCGTACGACCCGCAGGATCCCTACAGCTCCGGTTCGCAGCCGCAGCCGCCCTCGAACCCGGGGCAGCAGTCCGGCCCGTACGCCGGTCAGACGCCGGCACCCGGCTACTCCCAGCAGCCGCCGCAGCGGCCGACGTCCGAGCGCAAGGGCCTCGCGATCACCGCCCTGGTGCTGGGCATCGTGGCGCTGCTCGGCTGCTGGATCCCGATCCTGAACTTCGGGTCCATCGGGCTCGGGCTGATCGGCGTGGTGCTGGGCGTCGTCGCCCTCGTCCAGGTGTCCAAGGGACGGGCCGGCGGCAAGGTGATGGCGATCGTGGGCACCGCCCTGTCCGCGGTCGCGATCGTGCTGTCGATCGTCGTCAACGTCTTCCTGTTCTCGGTGCTCGAGGAGCAGGCGCCGGCCATCCAGGACGAGATCGAGCGTCAGCTCGAGGAGGACGGCTTCTCCGACGAGGAGATCGACGAGCTGCTGGGCGGCTGAMSTPYDPQDPYSSGSQPQPPSNPGQQSGPYAGQTPAPGYSQQPPQRPTSERKGLAITALVLGIVALLGCWIPILNFGSIGLGLIGVVLGVVALVQVSKGRAGGKVMAIVGTALSAVAIVLSIVVNVFLFSVLEEQAPAIQDEIERQLEEDGFSDEEIDELLGGNANANANANA
AK018_04698969COQ3_3Ubiquinone biosynthesis O-methyltransferase, mitochondrialATGAGCGACCAGAGCACTGCCTCCGAGCCCGACTTCCCGGAGCCGCCGAGCCTCGGCAGCCCTGCCGAGGGCCCGACCGGGAGCACGACCGACGAGCCGTCGGGTGCCGCGCTGTCCGACGCGATCGAGGCACCGAGCAGCCACCAGACGGTGCCCAGCCAGGAGTCGGAGTCGTACACGCACGGCCACCACGAGTCCGTGCTGCGGGCCCACCGTGCCCGGACCGCGCAGAACTCGGCGGGCTTCCTGCTGCCGCATCTCAAGGACGACCTGCACCTGCTCGACGTGGGGTGCGGGCCGGGGACGGTGACCACCGACCTGGCGCGCGTCCTGGCGGGCGGGAAGGTCGTGGGCGTCGACGCCTCGGCCACCGTGCTCGAGGCCGCCCAGTCCCACGCCGACGCCCTCGGTGCGCGGAACGTGCGGTTCGAGCAGGCCAACGCCTACGAGCTGCCGTTCGACGACGACACGTTCGACGTGGTCTACGCCCACCAGCTGCTGCAGCACCTGTCCGACCCGGTCGCCGCGCTGCGGGAGATGAAGCGGGTCGCGAGGCCCGGCGGCCTGGTGGCCGTGCGGGACGCCGACTACGCGGCCATGGCCTGGTACCCGGAGTCGCCGGGGCTGACGGAGTGGAACACCCTGTACCACGAGGTCACGCGCGCCTACGGGTTCGAGCCCGACGCCGGACGCCGCCTGTTCTCCTGGGTCCAGCAGGCCGGGTTCGACGTCGCCGGCACGGTGCCGAGCGCGTCGTCCTGGTGCTACGCGACACCCACGGACCGCGAGTGGTGGGGCCAGGTGTGGGCCGAGCGCTGCGTGGAGTCGAACTTCGCCCGCCAGGCCCAGGAGTCGAACCTGGCGGACGACGTCGCGCTCGAACAGCTCGCCCACGACTGGCAGTCGTGGGCCCAGGCGCCGGACGGCTGGTTCGCGATCCTGCACGGCGAGGTGCTCGCCCGGGCCTGAMSDQSTASEPDFPEPPSLGSPAEGPTGSTTDEPSGAALSDAIEAPSSHQTVPSQESESYTHGHHESVLRAHRARTAQNSAGFLLPHLKDDLHLLDVGCGPGTVTTDLARVLAGGKVVGVDASATVLEAAQSHADALGARNVRFEQANAYELPFDDDTFDVVYAHQLLQHLSDPVAALREMKRVARPGGLVAVRDADYAAMAWYPESPGLTEWNTLYHEVTRAYGFEPDAGRRLFSWVQQAGFDVAGTVPSASSWCYATPTDREWWGQVWAERCVESNFARQAQESNLADDVALEQLAHDWQSWAQAPDGWFAILHGEVLARANANANANANA
AK018_046991134hypothetical proteinATGCCCACCCTCCGCGAGCGCCTGACCGGCGGTCCCCGGCGCGTGGTCGGCCTGGACGTGGCCCGCGGGCTCGCCGTGCTGGGGATGTTCACCGCCCACGTCGGGGTGGTGGCCGTCGACGACGCGACGCTGTGGCTGACGGTCGCCGACGGCCGCTCGTCGGTGCTCTTCGCCCTCGTGGCCGGGGTCTCCCTCGCGCTGGTGACGGGCGGTGCGCGGCCGCTGACCGGCGACGCCCTGGTGCACGCCCGCGGCCGGCTGCTGGTCCGGGCGGTGCTGCTCCTGGTGGTCGTCGCGCTGCTGGACCTGCTGGGGACGCGGATCCTGCTCATCCTGGGCTTCTACGCGGCCTACTTCGTGCTCGCGCTGCCGTTCCTGACCTGGGGGCCGCGCCGGCTGGCGGCGCTGGCGGTGGTGGTCGCCGTCGTCGGCCCGCCGCTCGCGCTGTGGGGTCCGGTCGCGCTGGTGCGGGCCGGGCTGCACCTGCCCGACGACGGGTCGGGGGCGATGACGGACTTCGTGCTGACGGGCCACTACCCGGCGGTGGTGTGGATGGCGTACGTGTTCGCGGGGATGGCGATCGGTCGCTGCGACCTGTCCTCGTCCGTGCTGCGCACGCGGCTGCTGGTGGGCGGCCTGGCGGCGACGGTGGTGGGCTACGGGTTCTCGATGGGCGTGTACGGCGACCCCGCTCGGGAGGCGGCGGTGCGGGACCAGGTCTCCGCGACGTCAGGCACGGGCGCGTGGTCGGACCCGTGGCCGACGCCGTTTTACCTGGCGCTGCCCGGCCCGCACGAGGAGAGCTGGACCGAGGTGCTGGGCACGGCGGGGTTCGCCGTGGCGGTGCTGGGGGCGTGCCTGGTCGTGGGCCGGGTCGGGTCGGTCGTCCTGGCGCCGCTGGCCGCGGTGGGGTCGATGGCGCTGACGGCGTACTCCCTGCAGGTCGTGGCCGTCTGGTACTGGGACCTGCTCGACGCCGAGTCGAACGGACCGTTGGTTCTGATGACCGTCGTGACGCTGGCCGCGGCGACGGCGTGGCGCGCCGCCTGGGGGCGCGGACCGCTGGAACGGCTGTTCACGGCCGTGGCGGTGCGCAACGCTCCGGCGCCGACGGCGGACCGCCCGGCCACGTAGMPTLRERLTGGPRRVVGLDVARGLAVLGMFTAHVGVVAVDDATLWLTVADGRSSVLFALVAGVSLALVTGGARPLTGDALVHARGRLLVRAVLLLVVVALLDLLGTRILLILGFYAAYFVLALPFLTWGPRRLAALAVVVAVVGPPLALWGPVALVRAGLHLPDDGSGAMTDFVLTGHYPAVVWMAYVFAGMAIGRCDLSSSVLRTRLLVGGLAATVVGYGFSMGVYGDPAREAAVRDQVSATSGTGAWSDPWPTPFYLALPGPHEESWTEVLGTAGFAVAVLGACLVVGRVGSVVLAPLAAVGSMALTAYSLQVVAVWYWDLLDAESNGPLVLMTVVTLAAATAWRAAWGRGPLERLFTAVAVRNAPAPTADRPATNANANANANA
AK018_04700840phzFTrans-2,3-dihydro-3-hydroxyanthranilate isomeraseATGCCGAGCTTCCCCTTCCGCCAGGTCGACGTCTTCGGTGCCGGTCCGCTGGCCGGGAACCCCGTCGCGGTGGTGCACGAGGCCGAGGAGTGGGGCGAGGCGCAGATGGCGGCGTTCGCCCGCTGGACGAACCTGTCCGAGACGACGTTCCTGCTGCGCCCCACCGACCCGGCGGCCGACTACCGCACCCGCATCTGGACCCCGGGCGGAGAGCTGCCGTTCGCCGGGCACCCGACGCTCGGCACCGCCCACGCCTGGCTGGAGGCCGGCGGCACCCCGCAGCGCGACGGCGTCGTGGTCCAGGAGTGCGAGGTCGGTCTCGTGGAGGTCGCCCGGGAGGGGGACCGCCTCGCGTTCGCCGGCCCGCCCCTGCGGCGCTCCGGGCCCGTGGCCGACGCCGACCTGGCGCGCATCGTGCGGGCGCTGCGGATCGACACCGCCGACGTCGTCGACGCCGCGTGGGTGGACAACGGGCCCGGCTGGGTCGGCGTGCGACTTGCCGACGCCGAGGCCGTGCTCGCCCTGGACCCCGACTTCACCGCCTTCGACGGGCTGGACATCGGCGTGGTCGGTACGTACCCGGCGGGCGCGAGCGACGCCGACGTCGAGGTCCGCGCGTTCGTGCCGGCGATCGACGTGCCCGAGGACCCGGTCACCGGATCGCTCAACGCCGGCATCGGCGAGTGGCTCGCCGGGAGCGTGTTGCCCGCGCGGTACGTCGCGTCCCAGGGCACGGCGCTCGGCCGTCGCGGGCGCGTCCACGTCCGGCGCGCCGACGACGGCACCGTCTGGGTCGGCGGCACCACGGTGACGACGGTGCGCGGCGACGTCACGGTCTGAMPSFPFRQVDVFGAGPLAGNPVAVVHEAEEWGEAQMAAFARWTNLSETTFLLRPTDPAADYRTRIWTPGGELPFAGHPTLGTAHAWLEAGGTPQRDGVVVQECEVGLVEVAREGDRLAFAGPPLRRSGPVADADLARIVRALRIDTADVVDAAWVDNGPGWVGVRLADAEAVLALDPDFTAFDGLDIGVVGTYPAGASDADVEVRAFVPAIDVPEDPVTGSLNAGIGEWLAGSVLPARYVASQGTALGRRGRVHVRRADDGTVWVGGTTVTTVRGDVTVNANANANANA
AK018_04701915hypothetical proteinGTGCCCGACGTCCTGACCGCCACCGACCACGCCCCGGCGCCGTCGGCCGTCGTCGTGCCCGATTGGCGCGAGCGGGCGGCCGCGCACGCCGCCCGGGCCGAAGAGCTGACCGCCGTCCGGCGCGCGGCCCGGGAACGCGGCGAGGCGCACGCGATCGAGGACTTCCTGTTCACCTACTACCCCACCCGGGTGGCGCACCTGCGGCGCTGGCACCCCGGCGTCGGGTGCGTGCTGCCCGACGCCACGGACCGTGCCTCCTGGCGCTGGTACCGGCTCGTCGACCTGCCCGACGGCGGCACGGGCGCCACGCTGGACGTCCCCGCGTTCCTGGACGCGCGCGGCGACACGGTGCGCTACGTGCGGTCGCTGGTCGGCGCGACGGCGGGGCGGCCGGGGACGTTCGGCTGCTTCGGGCTGCACGAGTGGGCGATGGTCTACCGCGACGCGGTCGCCGGACGCGACCACCGCCATCCGCTGCCCCTGCGACTGGGGGGCAACGGTACCGACGCGGTGGTCGAGTCGCACCGCATCGGCTGCTCGCACTTCGACGCGTACCGGTTCTTCACGCCCGAGGCGCGCGACGCCAACCAGCTCGCGCCGACCCGCGCGCGCCAGGTCGCGATGGAGCAGCCGGGCTGCCTGCACGCCAACATGGATCTGTACAAGTGGTGCCAGAAGCTGGGGCCCGCGGTTCCCGGCGAGCTGCTGCTGGACGCCTTCGAGCTGGCCCGCGACATCCGGTACGCGGACATGGCCGCGTCCCCGTACGACGTGTCGCCCTACGGGGTCGAACCCGTGCAGATCGAGACTCCCGAGGGCAAGGCGGAGTACGTGCGCCGCCAGCGGGCCTTCGCCGAGCGGGCCCAGCGTCTGCGCGGACGGCTGCTCACCGTGTGCGACGCCCTGCTGGCGTGAMPDVLTATDHAPAPSAVVVPDWRERAAAHAARAEELTAVRRAARERGEAHAIEDFLFTYYPTRVAHLRRWHPGVGCVLPDATDRASWRWYRLVDLPDGGTGATLDVPAFLDARGDTVRYVRSLVGATAGRPGTFGCFGLHEWAMVYRDAVAGRDHRHPLPLRLGGNGTDAVVESHRIGCSHFDAYRFFTPEARDANQLAPTRARQVAMEQPGCLHANMDLYKWCQKLGPAVPGELLLDAFELARDIRYADMAASPYDVSPYGVEPVQIETPEGKAEYVRRQRAFAERAQRLRGRLLTVCDALLANANANANANA
AK018_04702540hypothetical proteinGTGGCTTTCGCTCATGACACCGCAGAGGCGCTGCGGTCCGCCGTCGAGCTCGTCAACAGCGTCGAGCCGCCCGTGACGCTCGGGACCGTCGCCGACCTGGCCGCCTTCTACCGCCGGTACGGCTACACCGGGCGGCACGACGGCACCGCCGCCGAGCTCGCCGAGGTGCTCGCGCTCGCCCCCCGCCTGCGCACCCTGCTGCTCGCCCCGCGGGACGACGTCGCCCCGATCGTCAACGCGATGCTCGCCGAGGCGGCCGCCGTCCCACGACTCGTGCGGCACGAGCACGAGGACTGGCACCTGCACGCCGTGGCCGACGACGCCCCGCTGGCCGACCGCATCGTCGTCGAGACCGCCCTGGCCATGGTCGACGTCGTCCGCACCGACGAGACCTCCCGCCTCGGCACCTGCGCCGACGACGACTGCGCCGGCGTCGTCCTCGACCTGTCGCGCAACCGGTCACGGCGCTACTGCTCCACCGCCTGCACCAACCGCAACGCCCAGGCCGCCCACCGCGCCCGCGTCGCGGGCCCGCGATAGMAFAHDTAEALRSAVELVNSVEPPVTLGTVADLAAFYRRYGYTGRHDGTAAELAEVLALAPRLRTLLLAPRDDVAPIVNAMLAEAAAVPRLVRHEHEDWHLHAVADDAPLADRIVVETALAMVDVVRTDETSRLGTCADDDCAGVVLDLSRNRSRRYCSTACTNRNAQAAHRARVAGPRNANANANANA
AK018_04703960hypothetical proteinATGAGAACAGTGACGCCTGACGCGCGGACGGTGGACGCCGGGCGTCGGGCCGGGCTGGTCCTCGCCGTCGTCTCCGCCGTGGCCTTCAGCCTCTCCGGCCCGCTCGCCGCCGGGATGTTCGCCACCGGATGGAGCCCCGGCGCGGTGGTGCTCGTCCGCGTGGCCGTCGGCGCGCTCGTGGTCCTGCCCCTCGGGGTGGTCGCCCTGCGCCGCCGCTGGGGGCTCGTGCGACGCAACCTGCGGCTGATCGTGGTCTACGGCGTCCTGGGCGTGGCCGCCACCCAGTTCTGCTACTTCGCCGCGGTGCAGCACATGCAGGTCGGCCCCGCCCTGCTGATCGAGTACTCCGCACCCGCCGCCGTGGTCGTCTGGCTGTGGCTGCGGCACGGCCAGCGGCCTGCCCCGGCCACGCTCGGCGGCATCGCGCTGGCCGCGGTGGGCCTCGTGCTGGTCCTGGACCTCACCGGAACCAGCGTCGACCTCGTGGGCGCCGGCTGGGCGCTCGGCGCGATGGTGGGCGCCTCGGCGTACTTCCTCATCAACGCCCGCCTGGACACCGGGCTGCCGCCCATGACCCTGGCCGCGGGCGGCCTCACGGTCGGCGCCGTGCTGCTCGGCATGCTGGCCGCCGTCGGACTGCTGCCGGTGTCCGCCTCCACGGCAGCCGTCCCGCTCGCGGGCGGGACACTGCCGTGGTGGGCGGTCCTCGCTCTGCTCGGCCTCGTCACCGCGGGCGTCGCCTACACCACCGGCGTGGCGGCGGGACGCCGTCTCGGGGCACGCGCCGGGGCGTTCGCGGGCCTGCTGGAGGTCGTCAGTGCCGTCGGGCTCGCCTGGCTGCTGCTCGGCGAGCTGCCCCGCGGCGTCCAGCTCGCCGGCGGTGCCCTGGTGCTGGCCGGCGTCGTCGTCGTCCAGCTCGCCGAGGCGGCCACGGCCCGCCGGCTCGCGGCCGCGGCCTGAMRTVTPDARTVDAGRRAGLVLAVVSAVAFSLSGPLAAGMFATGWSPGAVVLVRVAVGALVVLPLGVVALRRRWGLVRRNLRLIVVYGVLGVAATQFCYFAAVQHMQVGPALLIEYSAPAAVVVWLWLRHGQRPAPATLGGIALAAVGLVLVLDLTGTSVDLVGAGWALGAMVGASAYFLINARLDTGLPPMTLAAGGLTVGAVLLGMLAAVGLLPVSASTAAVPLAGGTLPWWAVLALLGLVTAGVAYTTGVAAGRRLGARAGAFAGLLEVVSAVGLAWLLLGELPRGVQLAGGALVLAGVVVVQLAEAATARRLAAAANANANANANA
AK018_04704744neoAminoglycoside 3'-phosphotransferaseGTGCCCCGCGAGCTCGCCGCCCCGCCGACCGGCGCCGTCGCCGTGCCGTCCGCGGTGCGCCGGCTCGCCGGGGACGACGACGTCACCCCGGTGTGGCGCAACGAGCTCGGCGGCCTGACGTTCCGGCTCTCGGGGTCCGACGGCGACCGCTACGTCAAGTGGGTGCCGGCAGGCACCGACGGGCTCGACCTGGGCGCCGAGGCGGCCCGCCTGCGGTGGGCCGGGCGGTACGCGCCGGTCCCCCGCGTGCTCGGCACCGGCACCGACCCGGCCGGCACCTGGCTGCTGACGGCGGGGCTGCGCGGCCGCTCCGCCGTCGACCCGAGGTGGGTCGCACGGCCGGAGGCCGCCGCGCGGGCGATCGGCGCCGGCCTGCGGGCGTGGCACGAGACGCTGCCCGTGGCCGACTGCCCGTACACCTGGGACGTGGCGGACCGGGTCGCGCGCCTGTCCCCCGCGGCGCGTGCCGCCGTCGGCCCGCCGCCCGCCGTCGACCGCCTGGTCGTCTGCCACGGGGACGCCTGCGCCCCCAACACGCTGATGGCCGACGACGGCACCTGGTCCGGGCACGTCGACCTGGGCTCGCTCGGGGTGGGCGACCGGTGGGCCGACCTCGCGGTGGCGAGCATGAGCCTGGGCTGGAACTACGGCGACGGGTTCGAGCCGGCCTTCTTCGCCGCGTACGGCGTCGAGCCCGACCGCGAGCGCACCGCCTTCTACCGCCGCCTGTGGGACCTCGGCTGAMPRELAAPPTGAVAVPSAVRRLAGDDDVTPVWRNELGGLTFRLSGSDGDRYVKWVPAGTDGLDLGAEAARLRWAGRYAPVPRVLGTGTDPAGTWLLTAGLRGRSAVDPRWVARPEAAARAIGAGLRAWHETLPVADCPYTWDVADRVARLSPAARAAVGPPPAVDRLVVCHGDACAPNTLMADDGTWSGHVDLGSLGVGDRWADLAVASMSLGWNYGDGFEPAFFAAYGVEPDRERTAFYRRLWDLGPGPT0028740_28DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028740-aphA-K00897NANA
AK018_04705741gbpAGlcNAc-binding protein AATGCGTTGGCGTTCGACCCTGGTCGCCGCAGTGGCCGGAGCGGCCGCACTGCTCGCGCCGATCGTTGTCGCCCCGACCGCGTCCGCCCACGGCTGGGTCACCGACCCGCCCAGCCGCCAGGACCACTGTGCCGAGGGCACCGTCTCCTTCGACTGCGGCGGCATCCAGTACGAGCCGCAGAGCGTGGAGGCCCCCAAGGGTTCCATGCAGTGCTCCGGCGGCGGGGGCTTCGAGGTTCTCGACGACGACTCCCTGCCGTGGCCGCGCACCACCATCGGCAACTCGGTCACGATGAAGTGGCAGCTCACCGCCATGCACGCGACCAGCACCTGGGAGTACTTCGTCGACGGCGTCCTGCACCGGACGTTCGACGACGGCGGCGCCCAGCCGAACTCCGTCGTCGAGCACCGGCTCGAGAACCTGCCGGCCGGCGACCACACCATCCTGGCGCGCTGGAACATCGCCGACACCGTCAACGCCTTCTACGCGTGCGTCGACGTGACGGTCGACAGCAACGGCGTCCCCGACCCCGACCCGACGCCCACCCCGGACCCGACGCCGACGCCGGACCCCGAGCCCGGTGACTGCGAGGCGGCAGCGTGGGACCCGGACGCCGTCTACCTGGGCGGTGACGAGGTCTCCTACGACGGCCACACCTACCGGGCCAAGTGGTGGACCACCGGCGAGGACCCGGCGGCCTCCGGCCAGTGGGGCGTCTGGAACGACCTCGGGGTCTGCTGAMRWRSTLVAAVAGAAALLAPIVVAPTASAHGWVTDPPSRQDHCAEGTVSFDCGGIQYEPQSVEAPKGSMQCSGGGGFEVLDDDSLPWPRTTIGNSVTMKWQLTAMHATSTWEYFVDGVLHRTFDDGGAQPNSVVEHRLENLPAGDHTILARWNIADTVNAFYACVDVTVDSNGVPDPDPTPTPDPTPTPDPEPGDCEAAAWDPDAVYLGGDEVSYDGHTYRAKWWTTGEDPAASGQWGVWNDLGVCPGPT0012130_1026DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_CHITIN_DEGRADATION,PGPT0012130-chiA|chtA|chiI-K01183NANA
AK018_047062751hypothetical proteinATGACTGCCACCGACTCCGCCGCACCGTCCACGACCACCGCGCTCCCCCGGGCCGCCGGCACCCTGCTGCCGCACCTGCCCGCCCCGACGGGGTCGGCACCGGACCCGGACGCGCTGTTCGAGGGGTTCGGCGAGTGGGCGGCGTCGTCCGGCCGCCCCCTGTACCCGCACCAGGAGGAGGCGCTGCTCGAACTCATGACGGGCTCGCACGTCGTCCTGGCCACCCCGACCGGGTCGGGCAAGTCGATGGTGGCGATGGGCGCCCAGTTCGCGGCCCTCGCTGCACGCCGTTCCGGGATGGGCGGCCGCACGTACTACACGGCTCCGCTCAAGGCGTTGGTCAGTGAGAAGTTCTTCGACCTGGTCGCCGCGTTCGGATCCCGCAACGTCGGCATGATGACCGGCGACAGCGCCGTCAACGCCGACGCCCCCATCATCTGCTGCACCGCCGAGATCCTCGCGAACCTCGCGCTGCGCAACGGTGCCGGCACCCCGGGCGAGGACGACTTTGTCGGCCAGGTCGTCATGGACGAGTTCCACTACTACGGCGACCCGCAGCGCGGCTGGGCCTGGCAGGTGCCCCTGCTGGAGCTGCCGCACACCCAGTTCCTGCTCATGTCCGGCACCCTCGGCGACACGACCCGCCTGCGCGAGGACCTCACCGAGCGCACCGGCCGGGACGTCGCCGAGGTCACCGGCGCCGAGCGCCCGGTGCCGCTGCAGTTCTCCTACGTCCAGGACCCCCTGCCCGAGGTCATCGAGGAGCTCGTCACCACCCACCGCGCCCCGGTGTACGTGGTGCACTTCACCCAGAAGGACGCCGTCGACCGCGCGCAGGCGATGCTCAGCACCAAGCTCGCCTCCAAGGACGAGAAGCAGGCGATCGTCGACGAGATCGGCGCGTTCCGGTTCGGCACCGGCTTCGGCAAGATCCTGTCCAAGTACCTGCGCGCCGGCGTCGGCGTGCACCACGCCGGGATGCTGCCCAAGTACCGACGCCTCGTCGAACGGCTCACGCAGAAGGGGCTGCTCAAGGTCGTCTGCGGCACCGACACCCTCGGCGTAGGCATCAACGTCCCCATCCGCACCGTGCTCATGACGTCCCTGGTGAAGTTCGACGGCGAACGCATGCGTCACCTCACCGCCCGTGAGTTCCACCAGATCGCCGGACGGGCCGGACGCGCCGGGTACGACACCCTCGGCGAGGTGCTGGTCATGGCGCCCGAGCACGTCATCGAGAACCGCAAGATGCTCGCCAAGGCCGGCGACGACCCGAAGAAAAAGAAGAAGATCGTCCGCAAGAAGGCACCCTCCGGTGCGGTCAACTGGACCGAGTCCACGTTCGAACGCCTGCGCGACGCCCCGCCCGAGCCGTTGACCAGCCAGTTCGGTGTCAACCACGCCATGGTGCTCAACGTGCTCGCGCGCACACGCGACGACAGGCGGCACGACGGCGGCACGTCCGGCACCGCCGTCGACCCGGTCGAGGCGATGCGCCACCTGCTCACCGCCAACCACGACACCACGGCCCAGCAGGCGGCCCACGTGCGCCAAGCACTGCGGATCTACCGCTCCCTGCGCGTGGCCGGCGTCGTGGAGAAGGTGCGCGTCCCCGACGGCACCCGTCCCACCGGCTACCGCCCCAGCGTGCGGCTCGAGGTCGACCTGCCGCGCGACTTCGCACTCAACGCTCCCCTGTCGCCGTTCGCGCTCGCGGCCATGGACCTGCTCGACGTCGAGTCGCCCACGCACGCCCTCGACGTCGTCTCCGTCATCGAGGCCACCCTCGACGACCCCCGCCAGATCCTGTTCGGCCAGCAGAAGAAGGCCCGCGGCGAGGCCGTCGCCGCGATGAAGGCCGAGGGCATCGAGTACGACGAACGCATGGAGCTGCTCGAGGAGGTCACCTGGCCCCGGCCGCTGGCCGACCTGCTCGAGCCCGCGTTCGCCCAGTACAAGCAGTCCAACCCGTGGGTCGCGGGCGCCGAGCTCGCACCCAAGTCCGTGGTGCGCGACATGCTCGAGCAGGCGATGACGTTCGCCGAGCTCGTCAGCACCTACGGCCTGGAGCGCACCGAGGGCGTCGTGCTGCGCTACCTCGCCGACGCCTACCGGGCGGTGCGCCAGGTCGTGCCCGAGGAGCACCGCACCGAGGAGGTCGCCGAGATCGTCGAGTGGCTCGGCGAGCTCGTGCGCGGCGTCGACTCCTCGCTGCTCGACGAGTGGGAGCGCCTCCAGAACCCGGTCGACGACGACGCCGACGACGTCGTGCAGGGCGAGCTGGCCGAGGCCGGGGCCGAGGCGCCGGCACGGCCCGTCACCGGCAACCCGCGTGCGTTCCGGCGCCTCGTGCGCAACGCCATGTTCCGCCGCGTCGAGCTCGCCGCCCGGGAGGACTACGACGGCCTCGAACGGCTGGACAAGGCGTCCGGCTGGGACGGGGACGCCTGGGCCGACGCCCTGGAGGACCTGTTCGAGACGCAGGGCGACGACGCGATCGGGTTCGGCGCGACCGCCCGGTCGACGTCGCTGCTGACCATCCTCGAACCCGGCGCCGAGCCGCCCGCCGGCGCCACGGCGTCGGACGGGGCCGCCCTGGCGACCGTGCCGGCCGACACCTGGTGGGTGCGACAGGTGCTCGACGACACGAACGGCGACCGCGACTGGGCGATCACCGCCCTCGTCGACCTGCCGGCCTCCGACGAGGCGGGGATGCCGGTGGTCCAGGTGCTGCAGGTCGGGCGGCTCTGAMTATDSAAPSTTTALPRAAGTLLPHLPAPTGSAPDPDALFEGFGEWAASSGRPLYPHQEEALLELMTGSHVVLATPTGSGKSMVAMGAQFAALAARRSGMGGRTYYTAPLKALVSEKFFDLVAAFGSRNVGMMTGDSAVNADAPIICCTAEILANLALRNGAGTPGEDDFVGQVVMDEFHYYGDPQRGWAWQVPLLELPHTQFLLMSGTLGDTTRLREDLTERTGRDVAEVTGAERPVPLQFSYVQDPLPEVIEELVTTHRAPVYVVHFTQKDAVDRAQAMLSTKLASKDEKQAIVDEIGAFRFGTGFGKILSKYLRAGVGVHHAGMLPKYRRLVERLTQKGLLKVVCGTDTLGVGINVPIRTVLMTSLVKFDGERMRHLTAREFHQIAGRAGRAGYDTLGEVLVMAPEHVIENRKMLAKAGDDPKKKKKIVRKKAPSGAVNWTESTFERLRDAPPEPLTSQFGVNHAMVLNVLARTRDDRRHDGGTSGTAVDPVEAMRHLLTANHDTTAQQAAHVRQALRIYRSLRVAGVVEKVRVPDGTRPTGYRPSVRLEVDLPRDFALNAPLSPFALAAMDLLDVESPTHALDVVSVIEATLDDPRQILFGQQKKARGEAVAAMKAEGIEYDERMELLEEVTWPRPLADLLEPAFAQYKQSNPWVAGAELAPKSVVRDMLEQAMTFAELVSTYGLERTEGVVLRYLADAYRAVRQVVPEEHRTEEVAEIVEWLGELVRGVDSSLLDEWERLQNPVDDDADDVVQGELAEAGAEAPARPVTGNPRAFRRLVRNAMFRRVELAAREDYDGLERLDKASGWDGDAWADALEDLFETQGDDAIGFGATARSTSLLTILEPGAEPPAGATASDGAALATVPADTWWVRQVLDDTNGDRDWAITALVDLPASDEAGMPVVQVLQVGRLNANANANANA
AK018_04707765hypothetical proteinGTGGGGCCCGTGCTCGCACTCCTCGTCCTCGCCATCCTCGTCGGGGGAGTGCTCCAACGGGTGTCGGGGATGGGCTTCGGTCTCGTGGCGGGGCCGTTCATCGTGCTCATCGTGGGGCCGCTCGAGGGCGTGCTGTTCGTCAACCTGGCGGGCGCGACGGCGTCAGCGATCATCCTCGGCCGGGTCGTCCGGGACGTCGAGTGGCGCAAGTTCGCCTGGCTGACCCTCTCCTCGCTGGTGGTGACGGTGCCGGCGGCGCTGCTGCTGCGGGACGTCAGCGCCCCGGCGCTCGAGATCACGATCGGGCTGTTCGTCGTCGCCGCGATGACGCTGGCCGTGCTCACGACCCGCCTGCGCCGCGAGGGCGCGCACCCGGTCGACCCGGAGGTGCGCTGGCCGCTCGCGGTCACCGGTGCGGGCAGCGGGATCGGGTCGGTCGCCGCGGGCATCGGCGGGCCGCCGGTGGCTGTCTACGCGGTGCTCAGCGGCTGGGACCCGAAGCGGTTCGCCGCCACCGCGCAGCCGTTCTTCGCCGCGAACGCTCTCGCTGCGCTGGTCGCCAAGCTGGTGCTCGCGGACGCCTCGTTCCCGTCGATGGCGCCCTGGCAGTGGGTGCTGCTCATGGTGGCGATCCTCGGCAGCCTCGTGATCGGCGAGGTGCTGGCCCCGCGGGTCTCGCCGATCGCGATGCGACGCGTGCTCATCGTGCTCGCCTACGTGGGCGGCGCTGCGACGCTGATCCGCGGCGTCGTCGGCCTGCTCTGAMGPVLALLVLAILVGGVLQRVSGMGFGLVAGPFIVLIVGPLEGVLFVNLAGATASAIILGRVVRDVEWRKFAWLTLSSLVVTVPAALLLRDVSAPALEITIGLFVVAAMTLAVLTTRLRREGAHPVDPEVRWPLAVTGAGSGIGSVAAGIGGPPVAVYAVLSGWDPKRFAATAQPFFAANALAALVAKLVLADASFPSMAPWQWVLLMVAILGSLVIGEVLAPRVSPIAMRRVLIVLAYVGGAATLIRGVVGLLNANANANANA
AK018_04708492ybaK_1COG2606Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase YbaKATGGCCCGCCACCAGTCCGCCGCGTCCACGCCGGCCGTGCTCGCGCTCGCCCGCGCGGGCGTCGCCCACGAGCTGCACCCGTACGAGCACGACCCGCGCACCGAGCTGAGCTACGGCCTCGAGGCCGCCGCCGCGCTCGGTGTCCCGGCCGAGCAGGTGTTCAAGACGCTGATGACCGACGTCGACGGCGAGCTGGTGGTTGCCGTCGTCCCCGTCACCGGGAGCCTGGACCTCAAGGCGCTGGCGCGCGCCGTGGGCGGCAAGAAGGCCGCCATGGCTCCCGTCGCCCGGGCCGAACGGGCCACCGGGTACGTCGCCGGAGGCATCTCTCCCCTGGGTCAGCGTGCCGCGCACCGCACGGTGCTGGACGCATCTGCCGCCGACTTCGACGCCGTGTTCGTCTCGGGAGGGCGCCGCGGGCTGGACGTCTCGGTCGCTCCGGACGACCTCGTCCGCCTCACCGACGCCGTCGTCGCCTCGGTCGCGCGCTGAMARHQSAASTPAVLALARAGVAHELHPYEHDPRTELSYGLEAAAALGVPAEQVFKTLMTDVDGELVVAVVPVTGSLDLKALARAVGGKKAAMAPVARAERATGYVAGGISPLGQRAAHRTVLDASAADFDAVFVSGGRRGLDVSVAPDDLVRLTDAVVASVARNANANANANA
AK018_04709402yccF_1COG3304Inner membrane protein YccFGTGAAGGCCATCCTCAACGTCATCTGGCTGGTGCTCTCGGGCTTCTGGCTCGCGCTGGGCTACGCTCTCGCCGGCATCATCTGCTGCGTCCTGATCGTGACGATCCCCTGGGGGATCGCCTCGTTCCGCATCGCGGGCTACGCCCTGTGGCCGTTCGGTCGGACCGTGGTGGACCGGCCCGGTGCCGGCGGGTGGTCCGTGCTCGGCAACATCGTCTGGATTCTCTTCGCCGGCTGGTGGCTGGCCCTGGGGCACATCATCACCGCGGTGCCCCTGTTCGTGTCGATCATCGGGATCCCGCTGGGCATCGCGAACCTCAAGATGATCCCGATCTCGTTGCTGCCGCTGGGCAAGGACATCGTCTCGACGGATACCCGGTACCCGGCCTACCAGCCGGCCTGAMKAILNVIWLVLSGFWLALGYALAGIICCVLIVTIPWGIASFRIAGYALWPFGRTVVDRPGAGGWSVLGNIVWILFAGWWLALGHIITAVPLFVSIIGIPLGIANLKMIPISLLPLGKDIVSTDTRYPAYQPANANANANANA
AK018_04710747yggS_1COG0325Pyridoxal phosphate homeostasis proteinATGCCCACGCTCCACGACCGTGTCCTGGCCGCGCGCACCCGCATCGACGACGCCGCCCGCACCGCGGGCCGCGACCCGTCCGAGGTGCGGCTGCTGCTGGCGACCAAGACGCAGGACGCCGCCACGGTGCTCGAGGCCGTGCTCGCGACGACCGAGATCGCCGCGGACCGCGGGGACGACGGCGCCGCCCTCATCGGGGAGAACCGGGTCCAGGAGCTGGTCGCCAAGGCGCCGGACCTCGCGGACCTCGTGGCGGCCGGGCGCCTCGAGGTGCACATGATCGGGAACCTGCAGCGCAACAAGATCAACCAGATGCTGCCCACCGTCACCGGACTGGCCAGCATCGACCGGCTGCCGCTCGCCGAGGCGGTGGCGCAGCGCTGCACCCGGGCCGGCCGGGTCCTGGACGTGATGGTGCAGGTCAACGTCTCCGCGGAGTCCTCGAAGTCCGGTGCCTCGCCGTCGGACGCCACGGCACTGGCCACCGCCGTGGGCGCCCTGGACGGGTTGCACCTGACCGGGTTCATGACGATCGGCGCGAACACGTCCGACGAGGCCGAGGTGCGCGCCGGGTTCGCCCGGCTGCGCGAGGTGCGCGACGAGGTGCTCGCCTCCGGCGCGCCGGGCACCTCCGACGCCCACGAGCTGTCCATGGGCATGTCCACCGACCTCGAGCTCGCCGTCGCCGAGGGCGCCACCACCGTCCGTGTGGGCACGGCGGTCTTCGGAGAGCGCCCGGCCGCCTGAMPTLHDRVLAARTRIDDAARTAGRDPSEVRLLLATKTQDAATVLEAVLATTEIAADRGDDGAALIGENRVQELVAKAPDLADLVAAGRLEVHMIGNLQRNKINQMLPTVTGLASIDRLPLAEAVAQRCTRAGRVLDVMVQVNVSAESSKSGASPSDATALATAVGALDGLHLTGFMTIGANTSDEAEVRAGFARLREVRDEVLASGAPGTSDAHELSMGMSTDLELAVAEGATTVRVGTAVFGERPAANANANANANA
AK018_047112835hypothetical proteinGTGGACCTGCTCGACGACCTGACGCGGGAGCTCGGTGCCGACCAGGTGCTCGGGCGCTCCCTGGACCGACACGTGCGTGCGCACGACGCCTCCCACTATCGGCTCGTGCCCGAGGTGGTCGCGATCGCGCCCGACGCCGCGGCGGTGGCCCGGACCTTCGCCACGGCAGCGCGGCACGGCGCTCCCGTGACGTTGCGGGCCGGGGGCACGAGCCTGTCCGGGCAGGCGTGCGGCACGGGCGTGCTGCTGGACACGCGACGCGGGTTCCGCGGGATCGAGGTGCTAGACGGCGGAGCCAGGGTCCGCGTGCAGCCAGGGGCCACGCTGCGTGCGGTCAACGCCCGTCTGGCACCCTACGGACGCGCTCTCGGCCCCGACCCGGCCAGCGAGTCGGCATGCACGGTGGGCGGTGTCGTGGCCAACAACTCCTCCGGCATGGCCGCCGGCACGGAGCACAACAGCTACCGCACGGTGGAGTCCATGACGGTGGTGCTCGCCTCGGGCACAGTCGTGGACACGGCGGCACCGGACGCCGCCGACCGCCTCCGGGCCGCCGAGCCGGGACTCGTCGCGACGCTGGAGCGGCTCCGGGACCGGGTGCGGCACGACCCGGGGGCCGTCGCCGAGATCGCAGAGCGGTTCGCGATGAAGAACACCATGGGCTACGGGATCAACGCCTTCTGTGATGCCACCGACGTCGTGGATCTGCTGCGCGGTCTGCTCGTCGGTTCTGAGGGCACGCTCGGGTTCGTGGCCGAGGCCGTGTTCCGGACGGTGCCCGTCCAGCGCGCGGCGGCCACCGGCCTGCTCGTGCTCGAGGACGTGGAGGCAGCCGCCGCGGCGCTGCCCGGCCTGGTCGCCACCGGCGCGGCCGCTCTGGAGCTGATGGACGCCACGTCCCTGCGGGTGGCGCAGCGTGCCGAGCACGTCCCCGCGGCGCTGCACGGGCTCGAGGTCGACCGCCACGCCGCGGTGCTCGTCGAGTACCGCGCCGACGACGAGGCCCAGCTGCGTGGGCGTCTCACGGCCGCCCGTCCGTTCCTCGACGGACTGCCGGCCGTCGTCCCGATCGAGCTGTCGAGCGACACCACCGTGCGTGCCGACCTGTGGGCGGTCCGCAAGGGGCTCTACGCCGCCGTCGCCGGGGCCCGTCCCGAGGGCACGACGGCGCTGCTCGAGGACGTCGTCGTACCCGTCGAGCACCTGGCGGACACCTGCCGCGAGCTCGCCGCGCTCCTCGTCGAGCACGGGTACGTCGACCCCGTCGTGTTCGGGCACGCCAAGGACGGCAACCTGCACTTCATGCTCACCGACGACCTGGAGGACCCGTCGTCGGTGGCCCGCCTCGAGGCGTTCACGGAGGACCTCGTCGACCTGGTGCTGCGCCACGGCGGCAACCTCAAGGCCGAGCACGGCACCGGGCGTGCCATGGCACCGTTCGTGCCACGGCAGTACTCGGCGGGTCTTGTGGCCGTGATGCGTGAGCTGAAGGACGCGTTCGACCCCGTCGGCATCCTCAACCCGGGCGTGCTGCTGACGGACGACAGCCGTGCCCACCTGGCCGACCTCAAACCGGTAGCCCGCGTGGAGGAGGAGGTGGACCGCTGCGTCGAGTGCGGGTACTGCGAACCGGTGTGCCCCAGCAAGGACCTCACGCTGACGCCGCGGCAGCGCATCGTCGCCCGACGGGCCCGCGCTCTGGCAGACGCGGCGGGCGACACGGCGCTGGTCCGGGAGATCGACGACGCCTACCGCTACGACGGCGTCGAGACCTGTGCGGCGGACGGCATGTGCGCCACGGCGTGCCCCGTCGGGATCGACACCGGTGCGTTGGTGAAACGGCTGCGGTCTCAGGACCGCGGGCGTCTGGAGCAGGAGGTCTGGAGGGGCACCGCCCGGCACTGGTCCGTCCTGACGTCTGCCGCGGGGGCGGTGCTCGACACGTTGCGACGGGTCCCGGCGCCGTGGGTCGAGCTGCCCAACGCGGCCGCGCGGGCGGTGCTGGGGCACGACACGGTGCCGCGATGGACCCCCGACCTGCCGGGCGGCGGCCGTGCGCGCAGTCGTGGGACCGGCGGCCGCGAGGTCCAGGGTCGTGCCGCCGCGGTGTTCCTGCCGAGTTGTCAGGGGGCGCTGTTCGCGCCGGCCGACGACGGCCCCGGGGTGCAGGCGGCGCTCGCGCGACTGTGCGAGGAGGCCGGCGTCGGACTCGCCGTGCCGGCAGGTGTCGACGGTCTCTGCTGCGGAACCCCGTGGTCCTCCAAGGGGTATACCGATGGCCACGCCCGGATGGCGGAGCATGTCCTGCAGGCGGTGGCGCAGGCCCGCGATCGGATCGGCCACGACGTGCCGGTCGTGGTTGACGCGAGCTCCTGCACCGAGGGTGTCGCGCGGATCATGTCCGACGCCCGCGCCGCCGGGGATCCGCGTGCCACCGAGGTCCAGGACGCGGTCACGTTCGTCGCCAGGGGCGTCCTGCCCCGCATCGCGCAGGGGCGGATCCGACCCGTGGACTCGTTGACCCTGCACCCCACCTGTGCCTCGACCCGCTCAGGGATCGACCACGACCTGCGCACCGTGGCGGACGCGGTGGCACGGACGGTGCACGTGCCCGTGGACGCAGGATGCTGCGGGTTCGCGGGGGACCGCGGGATGCTGCACCCCGAGCTGACCGCGTCGGCCACCGCTGCGGAGGCGGGAGACGTCGAGCGGCTCGACGCCGTGGAGCACGCCTCGTGCAACCGGGCGTGCGAGATCGCGATGTCCCGTGCGACGCGGCGCACCTACCGGCACGTGCTCGAGGTGGCCGCCCGCGCGCTCGACGGTCCGGGCTGAMDLLDDLTRELGADQVLGRSLDRHVRAHDASHYRLVPEVVAIAPDAAAVARTFATAARHGAPVTLRAGGTSLSGQACGTGVLLDTRRGFRGIEVLDGGARVRVQPGATLRAVNARLAPYGRALGPDPASESACTVGGVVANNSSGMAAGTEHNSYRTVESMTVVLASGTVVDTAAPDAADRLRAAEPGLVATLERLRDRVRHDPGAVAEIAERFAMKNTMGYGINAFCDATDVVDLLRGLLVGSEGTLGFVAEAVFRTVPVQRAAATGLLVLEDVEAAAAALPGLVATGAAALELMDATSLRVAQRAEHVPAALHGLEVDRHAAVLVEYRADDEAQLRGRLTAARPFLDGLPAVVPIELSSDTTVRADLWAVRKGLYAAVAGARPEGTTALLEDVVVPVEHLADTCRELAALLVEHGYVDPVVFGHAKDGNLHFMLTDDLEDPSSVARLEAFTEDLVDLVLRHGGNLKAEHGTGRAMAPFVPRQYSAGLVAVMRELKDAFDPVGILNPGVLLTDDSRAHLADLKPVARVEEEVDRCVECGYCEPVCPSKDLTLTPRQRIVARRARALADAAGDTALVREIDDAYRYDGVETCAADGMCATACPVGIDTGALVKRLRSQDRGRLEQEVWRGTARHWSVLTSAAGAVLDTLRRVPAPWVELPNAAARAVLGHDTVPRWTPDLPGGGRARSRGTGGREVQGRAAAVFLPSCQGALFAPADDGPGVQAALARLCEEAGVGLAVPAGVDGLCCGTPWSSKGYTDGHARMAEHVLQAVAQARDRIGHDVPVVVDASSCTEGVARIMSDARAAGDPRATEVQDAVTFVARGVLPRIAQGRIRPVDSLTLHPTCASTRSGIDHDLRTVADAVARTVHVPVDAGCCGFAGDRGMLHPELTASATAAEAGDVERLDAVEHASCNRACEIAMSRATRRTYRHVLEVAARALDGPGPGPT0018110_449DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018110-dld2-K18930NANA
AK018_04712951hypothetical proteinATGACCGTCCTGGCGATCGACGTCGGTGGCTCCGGCAGCCGCGTGGCGCTCCGCGACGAGCACGGCGCCACCCGGTGGCAGCGCAGCGGGACGCGGGCCGGCGTCGAGGCGGGCGGCAGCACCGTGCCGGGCGTGGTGCTGGCGCTCGTGGAGCGAGCCCGCGAGACCTGGCCCGTCGACACTGCGGCCCTGGACGGGGTCGCCGTCGGTGGCACGGGGCTCGGGAGCCTGGTGACCGACCCGACCGGGCTCGCCCGCTCGGTCCGGGGCGCGGCCGGTGCGCCGGCAGCGGTCGCGATCGATGCCGTCACCGCGCACCTGGGTGCGCTCGCCGGAGCCGCGGGCGCCGCCGTGGTCCTCGGGACCGGGGCGGTCGCCGTGGGCGGGGATCCGGGACGTCCCGGGTCATGGCGACGCGTGGACGGCTGGGGCCACCTGCTGGGGGACCGCGGCAGCGGGGCGCAGATCGGTCTGGCCGGGCTGCAGGCCGCGGTCCGTGCCTTCGACGGTGTCGATGCCTCGGGTAGCGCGCTGCTCGCCGCCGCGCGACGACGGTTCGGTGACCCGGCGACCTGGCCCGGGCAGCTCTATCCGCGCCCCGACCGTGCCGGCGTGGTCGCCGAGTTCGCGACCGACGTCGTCGGACTGGCCGAGCGGGAGGACCCCGCGGCCCACCGGGTCGTTGCGACGGCGGGCCGGGAGGCGGCTCGCAGCGTCGTCGCGGCGCTCGGCACGGACCTGCCCGGCGTCGTCTCGCTCACCGGCGGGCTCTCCAACGCTCGCGTGCTGGCACGGCAGTTCGTCGCGACCGTCGCCGACCTGCGCCCCGACGTGGAGGTCCGTGCCCCCGTCGGCGACCCGGTGGACGGCGCGCTGCTGCTGGCCGACCGCGTCGCTGCGGGGGCGTTCGTGGCCCAGGAAGGATTCGTGTGGACCTGCTCGACGACCTGAMTVLAIDVGGSGSRVALRDEHGATRWQRSGTRAGVEAGGSTVPGVVLALVERARETWPVDTAALDGVAVGGTGLGSLVTDPTGLARSVRGAAGAPAAVAIDAVTAHLGALAGAAGAAVVLGTGAVAVGGDPGRPGSWRRVDGWGHLLGDRGSGAQIGLAGLQAAVRAFDGVDASGSALLAAARRRFGDPATWPGQLYPRPDRAGVVAEFATDVVGLAEREDPAAHRVVATAGREAARSVVAALGTDLPGVVSLTGGLSNARVLARQFVATVADLRPDVEVRAPVGDPVDGALLLADRVAAGAFVAQEGFVWTCSTTNANANANANA
AK018_04713912murQ_1COG2103N-acetylmuramic acid 6-phosphate etheraseATGAGCCACGCGCTGTCGCCCACCGAGCTGAGGCACCCCGGCACGGCGGACATCGACGACGTCCCCATCCTCGAGGTCCTGCGCCGGATCAACGCCGAGGACCGGACCGCCGTCGACGCCGTGGCCGACGTGCTGCCCGACCTCGCCACGGTGGTGGACGCGGCCGCCGCACGGTTCCGCCGCGGGGGGAGCGTGCACTACTTCGGTGCCGGGACCTCGGGCCGCCTGGGCGTCCTCGACGCCAGTGAGCTGATGCCCACCTACAACCTCGAGCCCGGTCGGGTCGTCGGGCACATCGCCGGCGGCCGGGAGGCCCTGGTCCGCGCCGTCGAGGACGCCGAGGACTCCGCGGCCGAGGGTCAGCGCGACGCCGCCGGGATCGGCCCCGACGATGTCGTGATCGGGCTGGCGGCCAGCGGCACGACCCCGTACGTCGGCGGCGCGCTCGACGCGGCCCGACGTGCCGGGGCGTACACCGTGCTCGTGTCCAGCAACCCCGGGGCGCCGCTCGCTGCCGGCGTCGACACGAACCTCGTGCTGCGGACCGGGCCCGAGGTCGTCACCGGGTCGACGCGGCTGAAGGCCGGCACCGCGCAGAAGCTCGTGCTCAACAGCTTCTCGACGGCGCTGATGATCGCCGTCGGGCGCACCTACGGCAACCTCATGGTCTCCGTCGTCGCCACCAACGCGAAGCTGCGGGAGCGGACCGTCCGCATCCTGCGGGAGGCGACCGACCTCGACGAAGATGCGGCGAGGTTCCTGCTCGAACGCTCGGACGGCGAGCTCAAGACGGCGATCGTCGTCGCCCTCGGCGATGTCGACCCCGACCGGGCCCGAGAGCTGCTCCGGGAGACCGGCGCGTCGGTCCGTGGGGCGCTCGCGGCCGGACGGGCCGCGGAGCCCGGCGCATGAMSHALSPTELRHPGTADIDDVPILEVLRRINAEDRTAVDAVADVLPDLATVVDAAAARFRRGGSVHYFGAGTSGRLGVLDASELMPTYNLEPGRVVGHIAGGREALVRAVEDAEDSAAEGQRDAAGIGPDDVVIGLAASGTTPYVGGALDAARRAGAYTVLVSSNPGAPLAAGVDTNLVLRTGPEVVTGSTRLKAGTAQKLVLNSFSTALMIAVGRTYGNLMVSVVATNAKLRERTVRILREATDLDEDAARFLLERSDGELKTAIVVALGDVDPDRARELLRETGASVRGALAAGRAAEPGAPGPT0019040_206DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTIONCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0019040-murQ-K07106NANA
AK018_047141500sglT_2Sodium/glucose cotransporterATGCTGCACACCGTCGACCTGGTGGTGATCGTCGCCTATCTGGCCGCGACCGCCTGGCTGGGCCTGAAGCTCAGCGGCAAGCAGAAGGGCTTGCGCGACTACTTCCTGGGCAGCCGCCGGTTGCCATGGTGGGCCGTGTGCCTGTCGGTGGTCGCCACCGAGACCAGCGCCCTGACCGTGGTCGGGACCCCGGTGATGAGCTTCGTCGGGAACATCTCGTTCCTGCAGGTCGCACTCGGCTACCTGCTCGGCCGGGTGGTCGTGGCCTTCCTCATGCTCCCGCGCTACTACGACGGCGAGATGGTCACCGCCTACGCCTACCTCGGCAAGCGGTTCGGGTCGAGCACCCAGACCACCGCGGGCGTGACCTTCCTGTTCACGCGCCTGCTGGCCGACGGCGTGCGGGTCCTGGCAGCGGCCATCCCGCTGAAGCTGATCCTCGACGGTCTGGGCATCAGCACCAACTACTTCACGATCATCGTGGTGCTGGCCGTCGTCACCATCCTGTACACGTTCATCGGCGGCATCCGGGCCGTGGTCTGGGTCGACGTCGCCCAGATGCTCCTGTACGTGCTCGGTGGTGTGCTCGCGATCGTGGTGATCTCGGTACAGACCGGTGGCGGCTGGCTGACGCAGGCTGCCGAAGCGGGCAAGCTGCAGATGTTCGTCTTCTCCGGGGATCCGATCTCCGACTCGTCGTCGTTCGTCGCCTCCCTGCTCGGCGGTGCGGTCTTCGCCATGGCGTCCCACGGGGCCGACCAGCTCGTCGTGCAGCGGCTGCTCGCCTGCCGCAGCAAGGTCGAGGCGCAGAAGGCCCTCATCTGGTCCGGCGTGGTGGTCTTCGTCCAGTTCTCCGTGTTCCTGCTGGTGGGTCTCGCGCTGTGGGGGTACTACGACCAGATGACGCCCGACCAGCTCGGCCTGACGCGGGACGACGAGATCTTCCCGAGGTTCATCGTCGAAGGTCTTCCCGCGGGCGTGTCCGGCCTCCTGCTCGCCGCCATCCTCGCGGCCGCGATGAGTACGTTGTCGTCCTCGCTCAGCGCGCTGTCCTCCTCGACCGTCACCGACGTGTACGCCAAGCTGCGCCGCACGCCGATCACCGACGAGCAGGGCCTTCGCGTCGGGCGGTGGGCCACCATCGGCTGGGGCCTGGCGTTCATCGCACCCGCCGTCTTCTTCCAGTCCGACGAGGGCAACATCGTCGTGCTCGCCCTCGGCATCGCCGGGATCACCTACGGCGGGCTCCTGGGAGCTTTCGTCTTCGGCATCGTGAACAAGCGGGCCACGGCGCTCGACGCGAACGTCGCGTTCGTCGCGGCCGTCGGGGTGAACCTGTACTTCTTCGTGATGGAGAAGTACGTCACCGGTGAGGTGTGGGTCGCCTGGCAGTGGTACCCGCTGCTGGGCGTGCTCGTGACGTTCGCGGTCGGCGGGCTGCTGTCGTTGCGTCACCCGTCCCGCCCGGCGACCGTGGAGCCCGTGGAGCGGGTCCGATGAMLHTVDLVVIVAYLAATAWLGLKLSGKQKGLRDYFLGSRRLPWWAVCLSVVATETSALTVVGTPVMSFVGNISFLQVALGYLLGRVVVAFLMLPRYYDGEMVTAYAYLGKRFGSSTQTTAGVTFLFTRLLADGVRVLAAAIPLKLILDGLGISTNYFTIIVVLAVVTILYTFIGGIRAVVWVDVAQMLLYVLGGVLAIVVISVQTGGGWLTQAAEAGKLQMFVFSGDPISDSSSFVASLLGGAVFAMASHGADQLVVQRLLACRSKVEAQKALIWSGVVVFVQFSVFLLVGLALWGYYDQMTPDQLGLTRDDEIFPRFIVEGLPAGVSGLLLAAILAAAMSTLSSSLSALSSSTVTDVYAKLRRTPITDEQGLRVGRWATIGWGLAFIAPAVFFQSDEGNIVVLALGIAGITYGGLLGAFVFGIVNKRATALDANVAFVAAVGVNLYFFVMEKYVTGEVWVAWQWYPLLGVLVTFAVGGLLSLRHPSRPATVEPVERVRPGPT0013955_3442DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013955-TC_SSS|yerK|opuE-K03307NANA
AK018_047151167anmKCOG2377Anhydro-N-acetylmuramic acid kinaseATGATCGTCGCCGGCCTGATGTCGGGCACGTCCGCCGACGGCCTCGACGTGGCGCTCGTGGACCTCGCGCTGGACGGCACCGCGCTGGACCTCCGGCTGCTCGCCCGGCGCGAGGTGGCGTTCCCCGACGCGCTCGCGGACGACATCCTGCGGCTGCTCGAGCCGCGAGACGTCCCGCTGTCGCTGGTGAGCAGCGTCGACGCCCGCCTCGGACGCCTGTGCGCTGAAGCGGTCGCCGAGACCGTCGCGGACTCCGGTGCGGAGTGCGAGCTGGTGGTGATGCACGGCCAGACGGTCCGTCACGACGTGACCGACGGCGTCGTGACGGCGACCTGGCAGCTCGGCCAGCCCGCCTGGGTGGCCGAGCGGACGGGCTGCCCAGTCCTGTCCGACGTACGCTCGCGCGACGTGGCTGCCGGAGGTCAGGGCGCGCCGCTGGCGAGCATCCTGGACCACCTGCTGCTCGCCGGCGGCGACGAGCCGACGGCGGTGCTCAACCTGGGCGGCATCGCGAACATCACCGTCGTCGCCCCCGGCGAGGACACGATCGCCTTCGATATAGGGCCGGCCAACGCGCTCATTGACATCGCCGCCCGCCGGATCACCGGGCAGCCGCGCGGCTTCGATCGGGACGGGAAGCTGGCCGCGCGCGGCGAGGTCGTCCCTGAACTGCTCACCGACCTGATGGCGGAGCCCTACTACGCCCTGCGCGCGCCGAAGTCCACGGGCAAGGAGCTGTTCCACGGCGACTACCTCGACCGGTTCCTGAGCCGACGGCCCGAGGCGACCGGACCCGACGTGGTCGCCACGCTCACAGAGCTCACGGCACGCACCGTCGCCGACGCGTGCGTGGCGCACGGCGTCCGGTCGGTCGTCGCCTCGGGAGGCGGGACACGCAACCCGGTGCTGCTGGCCGCGCTGCGGCGAGCGCTCGGCGACGTGCCGCTCACCACGACCGACGACGCCGTCGGGCTGCCCGAGGGCGCCAAGGAGGCTTCGCTGATGGCCCTGATCGGCTGGCTGACCTGGCACGGTCTGCCGGCCACGCTGCCGTCCGTCACCGGTGCCGGGCACGGCACGGTGGCCGGCCGGCTCTCGCCGGGTGCCGGTCCGCTCCGGTTGCCGGAACCCCTGCCCACCCTGCCCGAGACGCTCCGCGTCCGCTGAMIVAGLMSGTSADGLDVALVDLALDGTALDLRLLARREVAFPDALADDILRLLEPRDVPLSLVSSVDARLGRLCAEAVAETVADSGAECELVVMHGQTVRHDVTDGVVTATWQLGQPAWVAERTGCPVLSDVRSRDVAAGGQGAPLASILDHLLLAGGDEPTAVLNLGGIANITVVAPGEDTIAFDIGPANALIDIAARRITGQPRGFDRDGKLAARGEVVPELLTDLMAEPYYALRAPKSTGKELFHGDYLDRFLSRRPEATGPDVVATLTELTARTVADACVAHGVRSVVASGGGTRNPVLLAALRRALGDVPLTTTDDAVGLPEGAKEASLMALIGWLTWHGLPATLPSVTGAGHGTVAGRLSPGAGPLRLPEPLPTLPETLRVRNANANANANA
AK018_047161548nagZ_4Beta-hexosaminidaseATGACGGCGCTGCACCATGAGGGAGCACACGGGCCGACGACACTGCGCCGAGCGGTGCTCGGCGTGCTGCTCCCCGGTTTTACCGGGACCTCGGCCCCCGACTGGCTCCTCGACGCCGCCCGCGACGGGCTCGCCGGTGTCGTCCTCTTCGGTCACAACACCCCGGACGTCCGGACGACGGCGGCCCTCACCTCCGCGCTCCACGACGCCGCTCCGGACCTGCTCGTGACGATCGACGAAGAGGGTGGCGACGTCTCGCGTCTCGAGGCCGCGACCGGCTCGTCGATCCCGTCGGCAGCAGCGCTCGGCGCGATCGACGACGTACGGCTGACCGCCGACGTGGCGAGCGCCCTGGGGCGCCTGCTGGCCGCGTGCGGCGTGGACCTGGACCTCGCACCGGTGCTGGACGTCGACACCCCTGGCAACCCGGTGATCGGGACGCGGGCCTTCGGCGACGACGCCGGCAAGGTGTCACGGCACGGGCGAGCATTCGTCCGAGGGCTGCGACGCGGTGGGGTCGGCGCCTGCGCTAAGCACTTCCCGGGCCACGGGAGCACGACCGTCGACTCGCACGTCGGCCTGCCCCGCGTCGACCGCTCGCTCGACGCCCTGCGTCGGACAGACCTCGTGCCGTTCGTCGACGCCCAGCACGCCGGCGGGACGGCCGGGGGCATGGACGCCGTGATGGTCGCGCACGTCGTGGTACCCGAGCTGGGGCCGGGGCCGGCCTCGCTGGAGCCGGCCACGGTCGCGCTCGCACGCGAGCTCGGTATCGACGGACCTGTCATCACCGACGCTCTCGACATGCGCGCCGTCTCCGACGGCACGCACGTCGGCGAGGCGGCCGTCCGCGCGATCGAGGCGGGGGCCGACCTGCTGTGCCTGGGCACGACCGCCGGGCGGGACGACGCAAGTCTCCTCGCCGACGCCGTCGACGCATTGACCGCCGCCCTCGCCTCCGGGCGTCTCACGGCGGACCGGCTGGCCGCGTCCGCCGAGCGCAACGCGCGCTGTGCCGCAGCGCAACGAGCGCGGCGCGAGCGCGCGACGGCGCCGTCCGGGCCGGAGGCCGCCACCCGCGCGCTCCACAACCTCGCCGAGGTCGGTCGGACGGCCGCGCGGGCCGCTGTCCGCTGGGCCGGGCCGCCGCGCCCGGTGATCACCGCACCGGTCGTCGTCGATCTGCGGCGACGGACCGATCACGCGGCAGGACACCGCGGACGCCACGTCACCGACGCCCTGCACCGCCGATGGAAGGACCTCAGGATGTACCGACCGGACGACGTGCTGCCCGGCAGCACCGACGACCCGCAGCGACCCGTCGTGCTGGTGACTCGGGAGGCGCCCGGCTCCGACCAGGAGCGGCGCCGGTTCGCGCCACTCATCGGCCGTCCCGGCACGGTCGTGCTGCACACCGGGGTGCCCTCCTCGCTCGAGCAGTGGTTCGAGGGGACCGACGGCGACAGTGCGTCGGCCGTCCTCGGCTACGGCACCGGGCGGGCCACGGCCGACGCGGCTGTCCGACTGCTGGCGGGGGGTGGGCGATGAMTALHHEGAHGPTTLRRAVLGVLLPGFTGTSAPDWLLDAARDGLAGVVLFGHNTPDVRTTAALTSALHDAAPDLLVTIDEEGGDVSRLEAATGSSIPSAAALGAIDDVRLTADVASALGRLLAACGVDLDLAPVLDVDTPGNPVIGTRAFGDDAGKVSRHGRAFVRGLRRGGVGACAKHFPGHGSTTVDSHVGLPRVDRSLDALRRTDLVPFVDAQHAGGTAGGMDAVMVAHVVVPELGPGPASLEPATVALARELGIDGPVITDALDMRAVSDGTHVGEAAVRAIEAGADLLCLGTTAGRDDASLLADAVDALTAALASGRLTADRLAASAERNARCAAAQRARRERATAPSGPEAATRALHNLAEVGRTAARAAVRWAGPPRPVITAPVVVDLRRRTDHAAGHRGRHVTDALHRRWKDLRMYRPDDVLPGSTDDPQRPVVLVTREAPGSDQERRRFAPLIGRPGTVVLHTGVPSSLEQWFEGTDGDSASAVLGYGTGRATADAAVRLLAGGGRPGPT0012175_1035DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSAMINIDASE,PGPT0012175-nagZ-K01207NANA
AK018_04717843dasC_7COG0395Diacetylchitobiose uptake system permease protein DasCGTGAGCGTCCTCAGCGTCCGGCGCCCGACGCCGAGAGCACAGGTCGGCAAGGCCGTGGCGGTCGTGGCGCTGCTCGTCTTCACCCTCTTCCCTGCCTACTGGATGCTGGTCAGCGCGTTCGACGCGAAGGCCGGCCTGGGCACGTCGTTCGTGCCCGCCGAGCCGACCGTGGAGCACTTCCGCTTCGTCCTGACCGAGGGCGGGTTCGACGTGTTCCTGCGCAACTCGGCCGTGGTGGCGCTGGTGACCGTCCTGGTCTCCGCGGTCCTCGCCCTGCTGGCTTCGGTGGCGGTCGCGCGCTTCCGGTTCCGCCTGCGTACTCAGATCCTGCTGATGATCCTCGTGGTCCAGATGGTCCCGCTCGAGGCGTTGGTGATCCCGCTCTTCGTCCTGGTCCGCAACCTGCAGCTGCTCGAGACCCTGCTCGGCCTGATCGTCGTCTACGTCGCGCTCGCCCTGCCGTTCGGCATCTGGATGCTGCGTGGCTTCGTGGCGGCCGTCCCGGTGGAGCTCGAGGAGGCTGCCTACATCGACGGGGCGAGCTGGGGCCGGATGTTCCGGTCGATTCTCCTTCCCCTGGTGGCACCCGGGCTCGTGGCCACCAGCATCTTCAGCTTCATCACCGCCTGGAACGAGTTCCTGTTCGCGATGACGCTGCTCGGCGGCGCCACCGAGAACTACACCGTGGCCATCGGGCTGCGCTCCTTCTTCGGGCAGTTCTCCAACGAGTGGGGAGCCATCATGGCCGCGTCCACCCTCATCACCGTTCCGGTGATGGTCTTCTTCATCCTGGTCCAGCGACGTCTCGCCGCCGGCCTCACGTCCGGGGCGGTGAAGGGATGAMSVLSVRRPTPRAQVGKAVAVVALLVFTLFPAYWMLVSAFDAKAGLGTSFVPAEPTVEHFRFVLTEGGFDVFLRNSAVVALVTVLVSAVLALLASVAVARFRFRLRTQILLMILVVQMVPLEALVIPLFVLVRNLQLLETLLGLIVVYVALALPFGIWMLRGFVAAVPVELEEAAYIDGASWGRMFRSILLPLVAPGLVATSIFSFITAWNEFLFAMTLLGGATENYTVAIGLRSFFGQFSNEWGAIMAASTLITVPVMVFFILVQRRLAAGLTSGAVKGPGPT0016455_194DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016455-dasC-K17331NANA
AK018_04718966dasB_2COG1175Diacetylchitobiose uptake system permease protein DasBATGGCGTCCAGCGTCCCCGTGGCCGTGCGGGCGGACGACGGCCCGTCGTCCGCCCACACGGGCCGTCCCCGTCGGTCCTGGGTGGCGCGTTCGCGCCCGTGGCTGCTCCTCGCCCCCGGCCTGGCAGTCCTGGCCGTCCTCATGCTCTGGCCGCTGCTGCGGGTGTTCCTGTTCTCCCTGCAGGACTACGGCCTGCCGCAGATCGTGTCCGGAGAGCCCAACTGGATCGGCCTGGGCAACTTCGCGGAGGTCCTCACCTCCGAGCAGCTGTGGTCCGTCGTGCTCCCGAACACGATCGGCTTCGCCGTGCTGGCCGTGTCGGCGACGGTCGCGTTCGGCACCGCCGTGGCGGTCCTTCTGGCGTCCCTCGGCACGGCATGGCGCGCCGTCGTGTCCAGCTGCATCATGGCGGCCTGGGCGATGCCGGCGGTGACCGGCACCTACGTCTGGGTGTGGATCTTCGACGCGGACCGCGGCGTGTTCAACCACGTCCTGCAGTCGCTCGGACTCCAGGACGCACCGGTGAACTGGTTCACCGACCGGTGGAGCTTCTACGCGATCGTGCTGCTCAACATCGTCCACCACGGGTTCCCGTTCGTGACGGTTACCGTGCTGGCGGCACTGCTCGGCGTGCCGCGCGAGCTGATCGAGGCGGCCGAGATCGACGGTGCCGGGGGCTGGCGCCGCTTCTTCTCGATCATCGTTCCGCAGCTGCGGCAGGTCTTCGCCGTCGTGATCATCATGTCGACGATCTGGGACTTCAAGGTGTTCGCGCAGGTCTTCCTGATGCCGGGTGGCGCCGGGACCAATCGCGAGGTGCTGAACCTCGGTGTCTGGTCCTACGTCGAGTCCTTCGGCCAGAACCGCTACGGGTTCGGCGCGGCTATCGCGGTGCTCCTGACCCTCATGCTGCTCGCGATCACCGTCGTCTACGTCCGTACGATCCTGAAGGAGGAGGAGCTGTGAMASSVPVAVRADDGPSSAHTGRPRRSWVARSRPWLLLAPGLAVLAVLMLWPLLRVFLFSLQDYGLPQIVSGEPNWIGLGNFAEVLTSEQLWSVVLPNTIGFAVLAVSATVAFGTAVAVLLASLGTAWRAVVSSCIMAAWAMPAVTGTYVWVWIFDADRGVFNHVLQSLGLQDAPVNWFTDRWSFYAIVLLNIVHHGFPFVTVTVLAALLGVPRELIEAAEIDGAGGWRRFFSIIVPQLRQVFAVVIIMSTIWDFKVFAQVFLMPGGAGTNREVLNLGVWSYVESFGQNRYGFGAAIAVLLTLMLLAITVVYVRTILKEEELPGPT0016450_225DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016450-dasB-K17330NANA
AK018_047191308dasA_4COG1653Diacetylchitobiose binding protein DasAATGAAGCGGATCGACTCCCACCGGGCGGCCGTCGCCGCCGCCGGCGCCGTGGCGATGCTCGCCGTGGCCGGGTGCTCGGGGTCCGACGGCGGAGACGCCGAGCAGGGCGCGACGGGTGCCGAGGGGCAGACGCTGGACGTCTGGATCATGCAGGGCACCAACCCCAGCGCCGACGAGTTCTTCGACGGTGTCGCCACGGCGTTCACCGAGCAGACAGGTGCCGAGCTGAACGTCGAGTTCGTCGAGTGGGGTGACGCCCACGACCGCTTCGTCACGTCCATCGCCGGCGGCACCACCCCGGACGTCGCGGAGACAGGAACCACGTGGACGCCGGAGTTCGCCGACGCGGGTGCCCTGGCCCCGCTGGGCGACTACGTGAGCGACGCGGGCCTGGACGGCGACCTCGTGGAGGGCCTCGTGGACGCCGGTACCTACGACGGAGACCTGTATGGCATGCCCTGGTACGCCGGCGTGCGGTCGCTGGTGTACAACACGGAGATCTTCGAGCAGGCGGGCGTCGAGCCGCCCACCACCTGGGACGAGCTCGAGCAGGCCGCGCGGACGATCAAGCAGGAGCTGCCGGACACGATCGCGGTGGCGGTGCCGGGCGACGCCGAGTTCACCGTGTACCCGTGGATCTGGGGTTCCGGCGGCCAGATCGCCTCGCAGGACGGCGAGACGTGGACGTCCGAGCTCGACAGCCCGGCCTCTCAGGAAGGACTGGAGTTCTGGACCGGCCTTGCCGAGGACGGCCTGTCCTCCGCCGGTGCGACGACCTGGCGCGAGACCGACGTGCTCGACGCCTTCGCAGCCGGCGACGTCGGGATGGCCGTCATGGGCTCCTGGACGCCGGGCGCGATCGTCGAGGCGAACGCCGACATGGAGGGCAAGTTCGCGGCCGTGCCGATCCCGGGGCAGGACGGCGGCATCGCGCCGTCCGTGCTGGGAGGCTCGCACCTGAGCATGTTCTCCACCGCCGAGAACCAGGACCTCGCCTTCGCGTTCATCGAGATGATGACCACCGGTGAGTTCGCCACGCAGTGGGGTGAGCAGGCGGGCTACTTCCCGGGGCAGACCTCGCTGCTGGAGGAGACCCTGGACAGCACCGAACCCCTCGTCGCGCCGTTCGCGCAGCAGTTCGTCGAGGGCGGGGCCTCGGTCCCGGTGTCGCCGGACTTCGGGGCGGTGCAGGCCAAGGCCACCACCTCGACCATGATGCAGTCGATCCTCTCGGGCAACGCCGACGTCGCTACCGCGAGTTCCTCGGCCGCCGAGGAGATGACGAACCTGCTCAACGGGGGCAGCTGAMKRIDSHRAAVAAAGAVAMLAVAGCSGSDGGDAEQGATGAEGQTLDVWIMQGTNPSADEFFDGVATAFTEQTGAELNVEFVEWGDAHDRFVTSIAGGTTPDVAETGTTWTPEFADAGALAPLGDYVSDAGLDGDLVEGLVDAGTYDGDLYGMPWYAGVRSLVYNTEIFEQAGVEPPTTWDELEQAARTIKQELPDTIAVAVPGDAEFTVYPWIWGSGGQIASQDGETWTSELDSPASQEGLEFWTGLAEDGLSSAGATTWRETDVLDAFAAGDVGMAVMGSWTPGAIVEANADMEGKFAAVPIPGQDGGIAPSVLGGSHLSMFSTAENQDLAFAFIEMMTTGEFATQWGEQAGYFPGQTSLLEETLDSTEPLVAPFAQQFVEGGASVPVSPDFGAVQAKATTSTMMQSILSGNADVATASSSAAEEMTNLLNGGSPGPT0016445_206DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016445-dasA-K17329NANA
AK018_047201155lipM_1Octanoyltransferase LipMGTGCGGTCTCCTCTCGTGGCTCTCGCGCAGCAGGCCCAGTCTGGCACCGGGCCCGCCGTGCGGGTCTATCGTGGACCGGTGCGAGGAGAGTACAAGGTTCCCGGTGGCAAGCTGGTCGCGGTCGAGCTGGAGGTCGCGGAGGATCGGCTGACGCGAGTCAGCGTCTCGGGCGACTTCTTCCTGGAGCCGGACGACGCGCTCGAGGTCATCGATCGCGCGTTGACCGGGGTGTCGGCGTCGGCCGGGACGAGCGAGCTCGCTCGCCAGGTGTCCGACGGCTTGGAGCGGGCGGAGCGGGAGGGCGTGGTCGCCGGTCCGGTGGCGATGGTGGGGTTCGACGCCTGGGCGGTCGCCGTGGCCGTCCGCCGGGCGCTCGGCCTGGCCACGACGTGGGAGGACCACACCTTCGAGGTCCTTCGTCCCGGCCCCCTCCCGCCGCGTCATCTCGCTGCGCTGGACCAGGTGCTCACCGAAGAGCTCGCCGCGGGTCGGCGGGGACCGACGCTGCGCTTCTGGGAGTGGGACGAGCGCGCCGTGTTCATCGGGTCGTTCCAGTCGTACCGCAACGAGATCGACGACGACGGTGTGGCCGAGCACGACGTCACCGTCGTCCGCCGCATCTCGGGTGGTGGCGCGATGTTCATGGAGGCGGGCAACTGCGTGACCTTCTCCCTCGTGGTGCCGGGGTCGTTGGTGGACGGGATGAGCTTCGAGCAGTCGTACGCCTTCCTGGACGCCTGGGTGCTCGAGGCGCTGGGAGAGCTGGGGGTGGAGGCGCACTTCTCCGGGATGAACGACGTCGCCTCGCCCGCCGGCAAGATCGCCGGGTCCGCGCAGAAGCGCCTGGCCGGGGGAGCGGTCCTGCACCACATGACCATGGCCTACGACATCGACGCCGACAAGATGATGCAGGTGCTCCGGATCGGTCGCGAGAAGATGTCGGACAAGGGCACCCGCAGCGCCAACAAGCGCGTGGACCCGTTGCGTTCGCAGACGGGGATGTCTCGCGAGGACGTCGTCGACGCGTTCGCCACCTCGTTCGCTGCGCGGTACCGGACGAAGGACTCCGAGTTGCGACCGGAAGAGTCGGAGCGGGCCGAGGAGCTGGTGCGCAGCAAGTTCTCCGCCGTGGAGTGGATCCACCGGGTCCCCTGAMRSPLVALAQQAQSGTGPAVRVYRGPVRGEYKVPGGKLVAVELEVAEDRLTRVSVSGDFFLEPDDALEVIDRALTGVSASAGTSELARQVSDGLERAEREGVVAGPVAMVGFDAWAVAVAVRRALGLATTWEDHTFEVLRPGPLPPRHLAALDQVLTEELAAGRRGPTLRFWEWDERAVFIGSFQSYRNEIDDDGVAEHDVTVVRRISGGGAMFMEAGNCVTFSLVVPGSLVDGMSFEQSYAFLDAWVLEALGELGVEAHFSGMNDVASPAGKIAGSAQKRLAGGAVLHHMTMAYDIDADKMMQVLRIGREKMSDKGTRSANKRVDPLRSQTGMSREDVVDAFATSFAARYRTKDSELRPEESERAEELVRSKFSAVEWIHRVPPGPT0003945_236DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003945-lplA|lplJ|lipL1-K03800NANA
AK018_04721876ybbHCOG1737putative HTH-type transcriptional regulator YbbHGTGGACGGAGACCTCCTGGTCCGGCTGCGACAGATGCTGCCGAGCCTGCGGCCCGCCGAGCTGCGGATCGCCGAGACCGTCCTCGACGACCCCGTCGCCGTCGTCGGTGCCACCATCTCCGATCTCGCAGCCCGCGCCGGCGTGTCCCAGGCGAGCGTCGTCCGCTTCTGCCGCAGCGCCGGGTACCCGGGGTACCCGGGCTTCCGTATCGACCTCGCCCGGACCACCAGCCGGCGCGCCGCCGAACGCGAGAGGTCCGGGGTGGCGCAGGGCGAGATCACCCGCGACGACGACCTCGCCGAGGTCGTGTCCAAGATCGCCTTCCACGAGGCCCGCACCATCGAGAGCACCGCGAGGTCGATCGACCTCGACGCACTGGAGGAGACGGTCCGGGCAGTCGCCGCCGCGGACCGTATCGACGTCTACGGCGTCGGGGCCTCGGGGCTCACCGCGCAGGACCTGGCACAGAAGCTCTCGCGCATCGGACTGGTGTGCTTCGCCCCCATGGACTCCCACCAGCAGCTGCAGTCCGCCGCGCTGCTCGGGCCGGGTTCGGTGTCGATCGGCATCTCCCACACCGGCCGGACCGTCGAGGTCCACCAGGCCCTCACCCTGGCCGGACGGCGGGGGGCGAGCACCGTGGCGATCACCGGGTTTCCCACGTCACCGCTCGCCCGCCTGGCGGACACCGTCCTCACCACGGCGGTGCGCGAGACGCAGTTCCGCACCGGGGCGCTCGCGAGCCGCATCGCACAGCTCGCGGTGGTCGACTTCCTGTTCGTCAACGTCGCGCAGCGCCGGTTCGACGCCACGACCGCCGCGCTCAAGCACACCTACGACGCCGTGCAGCAGCACCGAATGGGGCCGGACAGCTGAMDGDLLVRLRQMLPSLRPAELRIAETVLDDPVAVVGATISDLAARAGVSQASVVRFCRSAGYPGYPGFRIDLARTTSRRAAERERSGVAQGEITRDDDLAEVVSKIAFHEARTIESTARSIDLDALEETVRAVAAADRIDVYGVGASGLTAQDLAQKLSRIGLVCFAPMDSHQQLQSAALLGPGSVSIGISHTGRTVEVHQALTLAGRRGASTVAITGFPTSPLARLADTVLTTAVRETQFRTGALASRIAQLAVVDFLFVNVAQRRFDATTAALKHTYDAVQQHRMGPDSPGPT0017985_41DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017985-hexR|yebK-K19337NANA
AK018_047221644cimA_1COG0119(R)-citramalate synthaseATGGCCACCGCCCCGTTCCACGTGTACGACACCACCCTGCGCGACGGCGCGCAGCAGGAGGGCATGAACCTCGCGATCGCCGACAAGCTCGCGATCGCCCCGCTGCTCGACGAGCTCGGCGTCGGGTTCATCGAGGGCGGCTGGCCCGGCGCGATCCCCAAGGACACCGAGTTCTTCCGCCGCGCGGCGAAGGAGCTGGAGCTCAAGAACGCCGTCCTGGCGGCCTTCGGATCCACGCGCAAGGCGGCCACCCGGGCCTGGGACGACCCGCAGGTGCGCGCGCTGCTCGACTCCGAGGCACCGGTGGTGACCCTGGTCGCGAAGTCCGACGTGCGCCACGTCGAGCGCGCGCTGCGCACCACGCCCGACGAGGGACTGGCGATGATCCGCGACACCGTCGAGTTCCTGGCGGTCGAGGGACGCCGCGTCGTGGTGGACGCCGAGCACTTCTTCGACGGCTACCGGTACGACCCGGGCTTCACGACGGCGGCCGTGCGGACCGCGTTCGAGGCCGGCGCCGAGGTGGTCGCCCTGTGCGACACCAACGGCGGCATGCTGCCCAGCTGGGTGACCGACGTCGTCTCCGAGCTGCGGGACATCCTGGGCATCGTGCACGGCCGCGACGCCCGCCCCGGTGACGGGCTGCTGGGCATGCACGCCCACAACGACTCCGGCTGCGCCGTCGCCAACACCCTCGCCGCCGTCGAGGCCGGCTGCGCGCACGTGCAGGGCACCGTGAACGGCTACGGCGAGCGCACCGGCAACGTCGACCTGGTGACCGTGGTGGCGAACCTCGCCCTCAAGCACGACCTGTCGACGCTCGCGGGGGACGGGCTGGCCGAGTCCACCCGGATCGCCCACGCTGTCGCGGAGATCACCAACATCGCCCCGTACACGCGCCAGCCTTACGTGGGGGCGAGCGCGTTCGCCCACAAGGCGGGGCTGCACGCCAGCGCCATCAAGGTGGACCCCGACCTCTACCAGCACGTCGACCCGACCGCCGTGGGCAACGACATGCGCATGCTCGTCTCGGACATGGCCGGCCGGGCGTCCATCGAGCTCAAGGGACGTGAGCTGGGCTTCGACCTGGCCGGCCAGGGCGAGCTGCTCACGCGGGTGACCCACCGGGTCAAGGACGCCGAGGCGCAGGGGTACACGTTCGACGCCGCCGACGCCTCGTTCGAGCTGATCCTGCGCGAGGAGCTCACCGGGGCACGGCCGCAGTTCTTCCGGATCGAGTCCTGGCGAGCCATCGTCGAGACCACGGGCGGCACCCGCAACGCCGACCGGCACGACGCCGAGGCGCTGGCCGAGGCGACCGTGAAGCTGCACGCGGGCGGCGAGCGCATCGTCGTCACCGGTGAGGGCAACGGCCCGGTCAACGCGCTCGACCAGGCGCTCCGGCACGCCCTGACCAAGGTGTACCCCGACATCGAGCGGTTCGAGCTGGTCGACTTCAAGGTGCGCATCATGGACGCCCAGCACGGGACCGACGCGACCACGCGCGTGCTGGTCGAGACGACCGACGGGCAGCACACCTGGTCCACGGTGGGTGTCGGGCCGAACATCATCGAGGCCGCCTGGGAGGCCCTGATCGACGCGCACGTCTTCGGGCTGCTGCACGCCGGCGTCGAACCGCGCTGAMATAPFHVYDTTLRDGAQQEGMNLAIADKLAIAPLLDELGVGFIEGGWPGAIPKDTEFFRRAAKELELKNAVLAAFGSTRKAATRAWDDPQVRALLDSEAPVVTLVAKSDVRHVERALRTTPDEGLAMIRDTVEFLAVEGRRVVVDAEHFFDGYRYDPGFTTAAVRTAFEAGAEVVALCDTNGGMLPSWVTDVVSELRDILGIVHGRDARPGDGLLGMHAHNDSGCAVANTLAAVEAGCAHVQGTVNGYGERTGNVDLVTVVANLALKHDLSTLAGDGLAESTRIAHAVAEITNIAPYTRQPYVGASAFAHKAGLHASAIKVDPDLYQHVDPTAVGNDMRMLVSDMAGRASIELKGRELGFDLAGQGELLTRVTHRVKDAEAQGYTFDAADASFELILREELTGARPQFFRIESWRAIVETTGGTRNADRHDAEALAEATVKLHAGGERIVVTGEGNGPVNALDQALRHALTKVYPDIERFELVDFKVRIMDAQHGTDATTRVLVETTDGQHTWSTVGVGPNIIEAAWEALIDAHVFGLLHAGVEPRNANANANANA
AK018_04723558hypothetical proteinGTGAGCGACCCACGCTACGGCCAGGACGACCCCACGCAGCCGTTCCAGCGATACCCCGAGTCGCAGGAGCCGGCGCCCGGCGTCGTCCCCGGCGGGCAGCCCGCCTGGGAGCCGAAGCCACCGGTGGAGCCGGAGCGCGCCCGCCTGGACGTCGGCCGCTACTGGGCCGGCGCCGGAGCCACCGTGCTGGTGTGCGCCCTGCTGGGTTTCGCCGCCGCGGTGATCTTCGACGAGGTGTTCGACATCGGCCTCTACCCACCGCCGGACGCGTTCGGCGCGGGTGAGGAGGCCTCGTGGGCGGCGGCCGGGGCGCTGTACGCCCTGGTGGCGGCCGTCGTCCTGCAGCTCCTGGTGCTGATCGCGCCGAAGGCGCGGATGTTCTTCGGCTGGCTCGTCGCCCTGACGACCGTGATCCTGGCGGTGCTGCCCTTCACGGGCGACCCCGACCCGCTGGCCGGTTCGATGACGGCTCTCACCTGGCTGATCCTCGGGATCGCCGTCTACTCGATGCTCAGCGGTGTCCTGAGCCGGACCCTGGTGCGGCGTCCGCCCCGCTGAMSDPRYGQDDPTQPFQRYPESQEPAPGVVPGGQPAWEPKPPVEPERARLDVGRYWAGAGATVLVCALLGFAAAVIFDEVFDIGLYPPPDAFGAGEEASWAAAGALYALVAAVVLQLLVLIAPKARMFFGWLVALTTVILAVLPFTGDPDPLAGSMTALTWLILGIAVYSMLSGVLSRTLVRRPPRNANANANANA
AK018_047241131ilvE_2COG0115Branched-chain-amino-acid aminotransferaseATGACCACGACCTCGCACAACGTGCTCCCCGCGGAGCTCGAGGACCTCGTCGCCCTCTTCGACGTCCGCGGAACCGACGCCCCCACGCCCGACGACGAGCGGGAGGCGGCCCTCGCCCAGCCGAAGTTCGGCACCGTGTTCACCGACCACATGGCCCGCGTCACCTGGCGCCAGGACTCGGGCTGGCTCGACCGCCGCGTCGAGAAGTACGGGCCGCTGCAGCTCGACCCCGCGACCGCCGTCCTGCACTACGCGCAGGAGATCTTCGAGGGGATGAAGGCGTACAAGCACTCCGACGGGTCGGTGTGGACGTTCCGACCCGACGCCAACGCCGCACGATTCGCCCGGTCGGCGCACCGGCTCGCCCTGCCGGCGCTGTCGGTCGACGACTTCATCGGCTCGATCGCGGCGCTCGTGCGCACCGACAAGGCCTGGGTGCCCGGCGGCGAGGACTCCAGCCTCTACCTGCGCCCGTTCATGTTCGCGTCGGAGCCGTTCCTGGGTGTGCGGCCCTCGGCCGAGGTCGAGTACCTGTGCATCGCCTCGCCCGTGGGTCCGTACTTCGCCGGGGGCGTCAAGCCCGTGTCCATCTGGGTCTCGCAGGACTACCACCGGGCCGGCCCGGGCGGCACCGGGGACGCCAAGTGCGGCGGCAACTACGCCTCCAGCCTGCTCCCGCAGACCGAGGCGCAGCGCAACGGCTGCGACCAGGTGTGCTTCCTGGACGCCTCGAGCGACACCTACCTCGAAGAGCTCGGCGGCATGAATATCTTCGTGGTCATGGCCGACGGCACCGTGCACACCCCCGAGCTGACCGGTTCCATCCTCGAGGGCGTCACCCGCTCGTCGATCCTGCGCCTGCTCGCGGACCGGGACCTCGACGTCGTCGAGCGCAAGATTCCGCTGACCGACGTCGTGGAAGGGCTCGCGGACGGCAGCGTGCGCGAGATCTTCGCGTGCGGGACCGCCGCCGTCGTCACGCCGGTCGGACGCCTGGCCGGGGGGACGTTCGACCACGTGGTGGGTGACGGAGAGCCGGGTGAGTTGACCATGGCGATCCGGACCGAGCTCACCGACATCCAGTACGGCCGCGCCGAGGACCGCCACGGCTGGATGCGCCGGCTCGCCTGAMTTTSHNVLPAELEDLVALFDVRGTDAPTPDDEREAALAQPKFGTVFTDHMARVTWRQDSGWLDRRVEKYGPLQLDPATAVLHYAQEIFEGMKAYKHSDGSVWTFRPDANAARFARSAHRLALPALSVDDFIGSIAALVRTDKAWVPGGEDSSLYLRPFMFASEPFLGVRPSAEVEYLCIASPVGPYFAGGVKPVSIWVSQDYHRAGPGGTGDAKCGGNYASSLLPQTEAQRNGCDQVCFLDASSDTYLEELGGMNIFVVMADGTVHTPELTGSILEGVTRSSILRLLADRDLDVVERKIPLTDVVEGLADGSVREIFACGTAAVVTPVGRLAGGTFDHVVGDGEPGELTMAIRTELTDIQYGRAEDRHGWMRRLAPGPT0008860_1131DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826NANA
AK018_047251044leuB_1COG04733-isopropylmalate dehydrogenaseATGACGCGCAACATCGATCTGGCAGTGGTGGCAGGCGACGGCATCGGCACCGAGGTCGTCGAGCAGGGGCTGACGGTGCTCGACGCCGCGCTGGCCGGGTCCGACGTCAAGATCTCGACCACCGAGCTCGACCTCGGCGCACGCCGGTGGCACGCCACCGGCGAAACGCTGACCGACGCCGATCTGGCGCGCATCAAGGAGCACGACGCCATCCTCCTCGGCGCCATCGGCGACCCGTCGGTCCCGTCCGGCGTGCTCGAGCGCGGTCTGCTGCTCAAGCTGCGCTTCGCGCTGGACCACTACGTGAACCTCCGCCCGGGCAAACTCTACCAGGGCGTGACCAGCCCGCTGGCCGACCCCGGCGAGGTCGACTTCGTCGTGGTGCGCGAGGGCACGGAAGGCCCGTACGTCGGCAACGGCGGCTCGGTGCGCACCGGGACGCCGCACGAGATTGCCACCGAGGTGTCGGTCAACACCGCCTTCGGCGTCGAGCGGGTCGTGCGCGACGCCTTCGCCCGTGCCCAGGCACGTCCCCGCAAGCACCTGACGCTGGTGCACAAGCACAACGTGCTGGTGCACGCCGGCCACCTGTGGCGCCGGACCGTCGAGGCCGTCAACGCCGACTTCCCCGACGTCACCACCGACTACCTGCACGTCGACGCCGCGACGATCTTCCTGACCACGAACCCCTCCCGGTTCGACGTTATCGTCACCGACAACCTCTTCGGCGACATCATCACCGACCAGGCGGCCGCGATCACCGGCGGCATCGGCCTGGCCGCGTCGGCCAACATCAACCCGGACCGCACGGCACCGTCGATGTTCGAGCCCGTCCACGGGTCGGCGCCCGACATCGCCGGCCAGGGCAAGGCGGACCCGACGGCGACCGTGCTCTCCGTGTCGCTGCTGCTCGACCACCTCGGTCTGTCCGACGCCGCGGCGAAGGTCGAGGCGGCCGTCGCGGCCGACCTCGCCGAGCGGGGGAGCCGAGTACGCTCGACGGCCGAGGTCGGCCGCGAGCTCGCCGCGCGCGTCTCCGGCTGAMTRNIDLAVVAGDGIGTEVVEQGLTVLDAALAGSDVKISTTELDLGARRWHATGETLTDADLARIKEHDAILLGAIGDPSVPSGVLERGLLLKLRFALDHYVNLRPGKLYQGVTSPLADPGEVDFVVVREGTEGPYVGNGGSVRTGTPHEIATEVSVNTAFGVERVVRDAFARAQARPRKHLTLVHKHNVLVHAGHLWRRTVEAVNADFPDVTTDYLHVDAATIFLTTNPSRFDVIVTDNLFGDIITDQAAAITGGIGLAASANINPDRTAPSMFEPVHGSAPDIAGQGKADPTATVLSVSLLLDHLGLSDAAAKVEAAVAADLAERGSRVRSTAEVGRELAARVSGPGPT0001441_4250DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001441-leuB-K00052NANA
AK018_04726399hypothetical proteinGTGACGTTGCGCTGGTACTCGACGGTGGTGGAGACCACCGACACCCGTGCGCTGGCCGGCTGGTGGGCCGAGGCGCTGGGCTTGCAGTTCGCCCACACCTCGGACGAGGAGTGCGTCCTCGTGCCGCCGTGGGCCCGCGAGCTCGTCGACCGGTTCGAGTTCCACCAGGTCCCGCCCGGGATGGTGTTCGTGCGCGTCGAGCACGAGAAGACGTCCAGGAACCGGCTGCACTGGGACTTCGCGCCGCACACGAGCGACGACCGGGACGCGGAGATCGACCGCCTGGTGGCGCTCGGTGCCACGGTGGTGGACGTCGGCCAACCGGCCGACGCCTCGTGGACGGTGCTGGCGGACCCGGACGGCAACGAGTTCTGCGTGCTGTCCTCGCGCGAGTACTGAMTLRWYSTVVETTDTRALAGWWAEALGLQFAHTSDEECVLVPPWARELVDRFEFHQVPPGMVFVRVEHEKTSRNRLHWDFAPHTSDDRDAEIDRLVALGATVVDVGQPADASWTVLADPDGNEFCVLSSREYNANANANANA
AK018_04727579hypothetical proteinATGACCGATGACGACGTGACCACGGGCGACGCCGCAGGGCCGGGCGACCCGCAGCTCGACGGCGAGCCGCAGCTCGACGACACCGTGCAGGCCGAGCGCATCACCGCCTTCTGGGACGCAGCCCGCCCCAAGGCAGGGCGCACGAGCCACGGCGGAGCGGTCGGTGAGCGCTCCGAGAACGTCGTGCCGCCGCCCGCCTGGGCCTTCGGTGACAACCCGGAGCTCGCCGACGAGCTGCTCGCGCTCGTGCTGTCGGGCACGAAGACGGCGACGGCGTCGCTCGTCGTCGAGTACGCGGAGGCCGACGAGCCGCAGCCGCGCAAGGGCGACCTGTCGATCCTGCTCGACGGCGCGGGGGAACCGAGGGCGCTGATCCGCACCACGCAGGTGGACGTGGTGCCGTTCTCGGACGTGACCGAGGAGTTCGCCTACCTCGAGGGGGAGGACGACCGCACCCTGGCGAGCTGGCGCGAGGGGCACGAACGCTACTGGCGTCGGACGCTGGCCGGCACGGAGCACGAGTTCGACCCCTCCCTGGAGGTCCTCTGCGAACGCTTCAAGGTCCTCTACTCCGAGTGAMTDDDVTTGDAAGPGDPQLDGEPQLDDTVQAERITAFWDAARPKAGRTSHGGAVGERSENVVPPPAWAFGDNPELADELLALVLSGTKTATASLVVEYAEADEPQPRKGDLSILLDGAGEPRALIRTTQVDVVPFSDVTEEFAYLEGEDDRTLASWREGHERYWRRTLAGTEHEFDPSLEVLCERFKVLYSENANANANANA
AK018_047281029ilvC_1COG0059Ketol-acid reductoisomerase (NADP(+))GTGGCTGAGATGTTCTACGAGGACGCCGCCGACCTGTCCATCATCCAGAGCAAGAAGGTCGCCGTCATCGGCTACGGCAGCCAGGGCCACGCCCACGCGCTGAACCTGCGCGACTCCGGCGTGGACGTCCGCGTCGGCCTGCGCGCCGGGTCGTCGTCCGCGGCCAAGGCCACCGACCAGGGCCTCAAGGTCCTGCCGGTCGCCGAGGCCGTCGCCGAGGCCGACGTCGTGGTCGTCCTGGCCCCGGACCAGGTCCAGCGGGACCTCTACCGTGACGAGATCGCCCCGAACCTCACCGAGGGCGCGGCGCTCGTGTTCGGGCACGGCTTCAACATCCGCTTCGGCTACATCAAGCCCGAGGCCGGCCACGACGTCCTCATGGTCGCCCCCAAGGGGCCGGGTCACCTGGTCCGCCGCGAGTATGTCGACGGGCGCGGCGTGCCGGTCATCGTCGCCGTCGAGCAGGACGCCTCCGGCTCGGCCTGGGACCTGGCGCTCTCCTACGCCGCCGGCATCGGCGGCCTGCGGGCCGGTGGCATCAAGACGACCTTCACCGAGGAGACCGAGACCGACCTGTTCGGCGAGCAGGCTGTGCTGTGCGGCGGTACCTCGCAGCTCGTGCAGTACGGGTTCGAGGTCCTGACCGAGGCCGGCTACCAGCCCGAGGTCGCCTACTTCGAGGTGCTGCACGAGCTCAAGCTCATCGTCGACCTGATGGTCGAGGGTGGTCTGGCCAAGCAGCGCTGGTCGATCTCCGACACGGCCGAGTACGGCGACTACGTCTCCGGCCCGCGCGTCATCTCCCCGGAGGTGAAGGAGAACATGAAGGCCGTGCTCTCCGACATCCAGTCGGGCGCCTTCGCCGAGCGCTTCATCGCCGACCAGGACGCCGGCGCCCCCGAGTTCAAGGAGCTGCGCGCCAAGGGCGAGCAGCACCCGATCGAGACCACCGGCCGCGAGCTGCGCAAGATGTTCGCGTGGATCAAGCCCGCTGACTCCGACTACACGGAGGGCAGCGCCGCCCGCTGAMAEMFYEDAADLSIIQSKKVAVIGYGSQGHAHALNLRDSGVDVRVGLRAGSSSAAKATDQGLKVLPVAEAVAEADVVVVLAPDQVQRDLYRDEIAPNLTEGAALVFGHGFNIRFGYIKPEAGHDVLMVAPKGPGHLVRREYVDGRGVPVIVAVEQDASGSAWDLALSYAAGIGGLRAGGIKTTFTEETETDLFGEQAVLCGGTSQLVQYGFEVLTEAGYQPEVAYFEVLHELKLIVDLMVEGGLAKQRWSISDTAEYGDYVSGPRVISPEVKENMKAVLSDIQSGAFAERFIADQDAGAPEFKELRAKGEQHPIETTGRELRKMFAWIKPADSDYTEGSAARPGPT0008735_1630DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008735-ilvC-K00053NANA
AK018_04729522ilvH_1COG0440Acetolactate synthase small subunitATGTCCCGTCACACCCTGTCCGTGCTGGTCGAGAACAAGCCGGGCGTCCTGACGCGGGTGGCCGGCCTCTTCGCCCGCCGCGCGTTCAACATCCACTCGCTCGCCGTCGGGCCCACCGAGCACGAGGAGATCTCGCGCATCACGGTCGTGGTCGACGTCGAGGACCACCCGCTGGAGCAGGTCACCAAGCAGCTCAACAAGCTGGTGCACGTCATCAAGATCGTCGAGCTCGACACCGAGGCCTCGGTGCAGCGCGAGCTGCTGCTGGTCAAGGTCAAGGCCGACGCGGCGACCCGCTCCGGAGTGCTCGAGGTGGTCCAGCTGTTCCGCGCGAAGGTTGTGGACGTCGTGCCGGACACGGTCGTCATCGAGGCCACCGGCACCGACAGCAAGCTGGACGCGCTCCTCACGGCGCTCGAGCCCTACGGCGTCCGCGAGATCGTCAAGTCCGGGACCCTCGCCGTCGGGCGGGGCTCCCGGTCCATCACCGACCGGGCGCTGGAGCGAGTGCGCAGCGCCTGAMSRHTLSVLVENKPGVLTRVAGLFARRAFNIHSLAVGPTEHEEISRITVVVDVEDHPLEQVTKQLNKLVHVIKIVELDTEASVQRELLLVKVKADAATRSGVLEVVQLFRAKVVDVVPDTVVIEATGTDSKLDALLTALEPYGVREIVKSGTLAVGRGSRSITDRALERVRSAPGPT0008205_1462DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008205-ilvH|ilvN-K01653NANA
AK018_047301824ilvB1_1COG0028Acetolactate synthase large subunit IlvB1ATGGGCCAGCCGAACCCGACACCCGCCCAGGTGGCAGCGCGCACCACTCCCCGTGCGGTCGGCCAGCAGGTCGGCGAGCAGGTCACGGGCGCGCAGTCGATCGTCCGGTCCCTCGAGGAGGTCGGCGTCGACACGGTCTTCGGCATCCCCGGCGGTGCGATCCTGCCCACCTACGACCCGCTCATGGACTCGGCGAGGCTGCGGCACATCCTCGTGCGGCACGAGCAGGGCGGCGGGCACGCGGCGTCCGGCTACGCCCACGCGACCGGTCGTGTCGGGGTGACCATGGCGACGTCCGGACCCGGGGCGACCAACCTGGTCACCCCCATCGCCGACGCCAACATGGACTCCGTCCCCCTGGTGGCGATCACCGGGCAGGTCGCGGCGCCGGCGATCGGGACCGACGCCTTCCAGGAGGCGGACATCGTCGGCATCACCATGCCGATCACCAAGCACTCCTACCTGGTGACGGACCCCGACGACATCCCGCGGACCATCGCCGAGGCCTTCCACATCGCCTCGACCGGCCGGCCCGGCCCGGTGCTCGTCGACATCGCGAAGTCGGCGATGCAGGCGCAGACCACCTTCCGCTGGCCGCAGGAGCTTGCGCTGCCCGGCTACCACCCGGTGACCAAGCCGCACGCCAAGCAGATCCGCGAGGCCGCGAAGTTGCTGGCCACCGCGCGCCGGCCCGTGCTGTACGTGGGCGGCGGCGTGATCCGCTCGGGAGCGGCCAACGTGCTGCGCCGCCTCGTGGACGTCTCGGGCGCGGCCGTCACGACGACGCTCATGGCGCGGGGTGCCGTGCCCGACTCCCACCCGCAGCACCTGGGCATGCCGGGCATGCACGGGACCGTTCCCGCCGTCGCAGCCCTGCAGAAGGCGGACCTGATCGTCGCGCTGGGCGCCCGGTTCGACGACCGCGTGACCGGCAAGCTGTCCAGCTTCGCGCCGCACGCGGCGATCGTGCACGCCGACATCGACCCGGCCGAGATCGGCAAGAACCGTGCGGTCGACGTGCCGATCGTCGGGGACCTGCGCGAGGTGATCGGCGAGCTCATCCCGGCCCTGGAGGCCGAGCACGCCAAGGTCGGCAAGCCGGACATCGAGGCCTGGTGGCACCAGATCGACACCTGGCGCGAGACGTACCCCCTGGGATTCACCTCCACGGACGACGGCCACCTCGCGCCGCAGCACGTCATCTCCCGCCTGGGCGAGATCGCAGGTCCCGACGCGATCTACGTCGCCGGCGTCGGCCAGCACCAGATGTGGGCCGCCCAGTTCATCCGGTACGAGCGCCCCAACACCTGGATCAACTCCGGCGGGCTCGGGACCATGGGCTACTCGGTCCCCGCGGCGATGGGCGCCAAGGTCGGCGCACCCGACCGGGACGTGTGGGCCATCGACGGTGACGGGTGCTTCCAGATGACCAACCAGGAGCTGGCCACCTGCGCCATCAACGACATCCCCATCAAGGTGGCGCTGGTCAACAACAGCTCGCTGGGCATGGTCCGGCAGTGGCAGACGCTGTTCTACAACGAGCGCTACTCCAACACCGACCTGCACACCGGCCACGGCACCGTGCGCATCCCGGACTTCGTCAAGCTCGCCGAGGCGTACGGGTGCGTCGGCATCCGCGTCGAGCACGAGAACGAGGTCGACGAGGCGATCAAGCGCGCGAACGAGATCGACGACCGTCCCGTCGTCGTCGACTTCACCGTGTCGCGCGACGCCATGGTCTGGCCGATGGTCGCCGCCGGGGTCAGCAACGACGACATCCAGTACGCGCGCGGCATCTCGCCCGCCTGGGAACGCGAAGACTGAMGQPNPTPAQVAARTTPRAVGQQVGEQVTGAQSIVRSLEEVGVDTVFGIPGGAILPTYDPLMDSARLRHILVRHEQGGGHAASGYAHATGRVGVTMATSGPGATNLVTPIADANMDSVPLVAITGQVAAPAIGTDAFQEADIVGITMPITKHSYLVTDPDDIPRTIAEAFHIASTGRPGPVLVDIAKSAMQAQTTFRWPQELALPGYHPVTKPHAKQIREAAKLLATARRPVLYVGGGVIRSGAANVLRRLVDVSGAAVTTTLMARGAVPDSHPQHLGMPGMHGTVPAVAALQKADLIVALGARFDDRVTGKLSSFAPHAAIVHADIDPAEIGKNRAVDVPIVGDLREVIGELIPALEAEHAKVGKPDIEAWWHQIDTWRETYPLGFTSTDDGHLAPQHVISRLGEIAGPDAIYVAGVGQHQMWAAQFIRYERPNTWINSGGLGTMGYSVPAAMGAKVGAPDRDVWAIDGDGCFQMTNQELATCAINDIPIKVALVNNSSLGMVRQWQTLFYNERYSNTDLHTGHGTVRIPDFVKLAEAYGCVGIRVEHENEVDEAIKRANEIDDRPVVVDFTVSRDAMVWPMVAAGVSNDDIQYARGISPAWEREDPGPT0008185_1178DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008185-budB|ilvK|alsS|ilvB|ilvG|ilvI-K01652NANA
AK018_047311077hypothetical proteinATGCGGCTGCTGAGGGTCGAGCTGCGCCGGTTGTGGCTGCGCCGGGTCACCTGGGGCGGGCTCCTGCTCGCCCTGCTGATCGCGGGGCCGGCGGTGCTCTCGCAGATCTCCGCCGCGACGCCGCCCAGCGAGCAGGAGATCGCCGAGGCCGAGGAGTTCTACGCCCAGGAGCTCGAGAACTGGGAGGAGCACGGGGAGGAGGACGTCGCCGCGTGCGAGGAGTCCGAGGCCGACGACCCCGACCCGGCCGCGGACTACGACTGCGACCAGATGGAGCCACGGCTCGAGTGGTTCGTGGCGACGGCCACCACGTTCGTGCCCGCGCCAGAGATGCGTGAGGCAGGGACGGACGGCATCGAGCCCGGCGACGGGGACGACCCCCGGATCGCCGAGATCCAGGAGTCGATCTGGTCGGGCTGGTCCGGGATCGGCGCGGCCGGCGAGTACGCCGCCGCGTTCCTCATGCTCGCGTTCGTGGTCGGTGTCAGCTTCGTGACCGCTGAGCAGAGCTCCGGGGCGCTCGGGATGTGGCTGACGTTCGAGCCCCGGCGCTCGCGGGTGTACTGGTCCAAGGCCGCTGCTTCCGCCGCGGGCACCCTCCCGCTGGTGGTGGTGGGCTGGCTCGCCACGGCCGGCGGCATCTACACGCTGCACGCCGTCCTCGGCACCGTGGGGGAGGTCAGCGGTGAGGACTGGGCCGAGATCGCCGGGTTCTCCGTGCGTCTCGTGGCGGCCGGCGCGGCGTGCGCCGCGATCGGCACGGCGCTCGGCGTCCTGCTACGCCACGCCGTCGCCGCCGTCGGCGCCGCGGCGGTCGTGCTCTGGGCGAGCGTGGCGTTCGCGTTCTCCTTCGGGTCGGCGCAGCGCTGGCTGCCCACGGTGAACCTGACCGCCTGGCTCGAGGGCGGGACCCGCTTCTCGGTCGCCGAGGACGTCCGTGACGACGCCGGCGTCGTCACCACCACGTGGACGACCGAGGTGGTCTCCGCGACCCAGGGCGGTCTGTACCTGCTGGCCGTGGTGGCCGTGCTGACCCTCGCGGCGCTCGTCGTCTTCCGGCGCAAGGACGTGTCCTGAMRLLRVELRRLWLRRVTWGGLLLALLIAGPAVLSQISAATPPSEQEIAEAEEFYAQELENWEEHGEEDVAACEESEADDPDPAADYDCDQMEPRLEWFVATATTFVPAPEMREAGTDGIEPGDGDDPRIAEIQESIWSGWSGIGAAGEYAAAFLMLAFVVGVSFVTAEQSSGALGMWLTFEPRRSRVYWSKAAASAAGTLPLVVVGWLATAGGIYTLHAVLGTVGEVSGEDWAEIAGFSVRLVAAGAACAAIGTALGVLLRHAVAAVGAAAVVLWASVAFAFSFGSAQRWLPTVNLTAWLEGGTRFSVAEDVRDDAGVVTTTWTTEVVSATQGGLYLLAVVAVLTLAALVVFRRKDVSPGPT0006730_7921DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_047321059btuD_19Vitamin B12 import ATP-binding protein BtuDGTGCCGACGGCGGACGGCGAGCTGGCGATCGAGACGCGCGGCCTGCGCAAGACGTACCGCAGCGTCCGGGGGCGGCGCGTGGGCGTCGAGGGGCTCGATCTCCAGGTGCCGGTCGGGGGCGTGCACGGCTTCCTCGGCCCGAACGGCTCCGGCAAGACCACGACGATCCGGATGCTGCTCGGCCTGGTCCGCCCTGACCGGGGCACCGCGAGCATCTTCGGTCACGACGTGCCGCGGCACCTGCCCGACATCGTGGGCAGGGTCGGCGCCATCGTCGAGAGCCCCAAGTTCTTCCCGGTTTTCAGCGCGCGCGCCAATCTGCGGCTGCTCGCCGACGGCATCGGCGCACCGCGCGAGCGGGTCGACGCCGTGATCGACCAGGTGGGCCTGTCGGGACGGGCGAAGGACCGCTACCGCACCTACTCCCTCGGCATGAAGCAGCGGCTGGCGATCGCGGCGACCCTGCTGAAGGACCCGGACCTGCTGATCTTCGACGAGCCGACCAACGGGCTCGACCCCGCGGGCATCCACGAGATCCGCCGCACCATGCGAGGTCTCGGCGACCAGGGCAAGACCGTGCTGGTCTCCAGCCACATCCTGGCCGAGGTCGAGCAGATCGCCGACACGGTCTCCATCGTCGCGCGCGGCCGGCTGGTCGCGTCCGGCAGCGTCGCCGAGCTCATCGGTGGCCAGGGCGGGCCCGCGGTGCGGGTCGGGCTGGCGTCCGACGACGTCGCGATCGCCACGAGCCTGCTCACGAGCCGCGGGCTGGTGGTCCGCCGCGAGGACGACGCGCTCCTGGTCGACGGCGCCGACGCCGCGACCGTCAACCGCATGCTGGGCGAGCAGGGGGTTTGGGCCGCGGAGCTGACCGTGCGGCGCGCCGACCTCGAGTCGGTCTTCCTCGGGCTGACCCAGCACGAGGTCCCGGGCGGCCGGGACCATCGCGGCGGTCGCCGTCGGCGCAAGGACGAGGCGCGGGACACCACCTCCGGGGCGGGTGCCGCGTCCGGGCCCGGCGCCGCGGTCGCGGGCAGGACGACGGGGGAGGACGCCTGAMPTADGELAIETRGLRKTYRSVRGRRVGVEGLDLQVPVGGVHGFLGPNGSGKTTTIRMLLGLVRPDRGTASIFGHDVPRHLPDIVGRVGAIVESPKFFPVFSARANLRLLADGIGAPRERVDAVIDQVGLSGRAKDRYRTYSLGMKQRLAIAATLLKDPDLLIFDEPTNGLDPAGIHEIRRTMRGLGDQGKTVLVSSHILAEVEQIADTVSIVARGRLVASGSVAELIGGQGGPAVRVGLASDDVAIATSLLTSRGLVVRREDDALLVDGADAATVNRMLGEQGVWAAELTVRRADLESVFLGLTQHEVPGGRDHRGGRRRRKDEARDTTSGAGAASGPGAAVAGRTTGEDAPGPT0006725_1080DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_04733318Putative pterin-4-alpha-carbinolamine dehydrataseATGAGCGACACCATCACCCCGGAGCAGTTCCACGCCGCCGACGGCACCCAGGACTGGCAGGTGCTCGACGGCGTCGCCGCCGCGGTCTTCGCCACCGGCTCGTTCGCGACCGGCGTCCAGCTCGTCGACGCCATCGGCGAGCTGGCCGAGTCCGCGAACCACCACCCGGACGTCGACCTGCGCTACCCGTCGGTGACGGTCCGTCTCGTCTCGCACGACGTCGGTGGGCTCAGCGACCGCGACACGGCGCTCGCGGCCCGGATCAGCGAGGCGGCCCGCGAGCTGGACGTGCCCGCCGAGGTGCCGCCGTCGTCCTGAMSDTITPEQFHAADGTQDWQVLDGVAAAVFATGSFATGVQLVDAIGELAESANHHPDVDLRYPSVTVRLVSHDVGGLSDRDTALAARISEAARELDVPAEVPPSSNANANANANA
AK018_047341716ilvD_1COG0129Dihydroxy-acid dehydrataseATGACGAGCACCGACGACCGGACCACGCCCGACCTCAAGCCCCGCTCCCGCCAGGTCACCGACGGCCTGGAGGCCACCGCGTCGCGCGGCATGCTGCGCGCCGTCGGCATGGGTGACGACGACTGGGACAAGCCGCAGATCGGCGTCGCGAGCTCGTGGAACGAGATCACGCCCTGCAACCTGTCGCTGGACCGGCTCGGCGGTGCGGTGAAGAACGGCGTGCACGCCGGCGGCGGCTACCCGCTGGAGTTCGGCACGATCTCCGTCTCGGACGGCATCTCGATGGGCCACGAGGGGATGCACTTCTCGCTGGTCTCCCGGGACGTCATCGCCGACTCCGTGGAGACCGTCATGCAGGCCGAACGCCTCGACGGCTCGGTGCTGCTCGCCGGCTGCGACAAGTCGCTGCCCGGCATGCTGATGGCCGCCGCCCGCCTGGACCTGGCCAGCGTCTTCCTCTACGCCGGCTCGATCATGCCCGGCTGGGTGAAGCTGTCGGACGGCACGGAGAAGGACGTCACCCTCATCGACGCCTTCGAGGCCGTGGGCGCCTGCTCGCGCGGGCTGATGTCCCGCGACGACGTCGACCGCATCGAGCGGGCCATCTGCCCCGGCGAGGGCGCCTGCGGCGGGATGTACACGGCCAACACCATGGCCTCGGTGGCCGAGGCGATGGGCATGTCCCTGCCGGGATCGGCGGCTCCGCCGTCGGCCGACCGTCGTCGCGACTCCTTCGCGCACGCCTCGGGCGAGGCCGTCGTCGAGATGCTCCGCCGCGGCATGACCGCCCGCGACATCATGACCAAGGAGGCCTTCGAGAACGCCATCGCCGTCGTGATGGCGTTCGGCGGGTCCACGAACGCCGTGCTGCACCTGCTGGCCATCGCCCACGAGGCCGAGGTCGAGCTGACGCTCGAGGACTTCGACCGGGTGGCGAGCCGCGTGCCGCACCTGGGCGACCTCAAACCGTTCGGCCGGTACGTCATGAACGACGTCGACCGCATCGGCGGGGTCCCCGTGATCATGAAGGCGCTGCTCGACGCCGGGCTGATCCACGGCGACTGCCTCACGGTCACCGGCCGCACCGTCGCCGAAAACCTCGCCGACATCGCCCCTCCTGACCCGGACGGCAAGATCCTGCGGGCCCTCGACCAGCCGATCCACCCGACCGGCGGCATCACGATCCTGCACGGCTCGCTCGCCCCCGAGGGAGCCGTCGTCAAGAGCGCCGGGTTCGACTCCGACGTCTTCGAGGGCACCGCCCGCGTGTTCGAGCGGGAGCGGCACGCCCTCGACGCGCTCGAGGACGGCACGATCACCGCCGGCGACGTCGTCGTCATCCGCTACGAAGGGCCCAAGGGCGGCCCCGGCATGCGCGAGATGCTCGCCATCACCGGTGCGATCAAGGGCGCCGGGCTCGGCAAGGACGTCCTGCTCATCACCGACGGCCGGTTCTCGGGCGGCACCACCGGGCTGTGCGTCGGGCACATCGCCCCCGAGGCCGTCGACGCCGGACCGATCGCGTTCGTGCGCGACGGCGACCGCATCCGCCTCGACGTCGGCGCCAAGACGCTCGACCTCCTGGTCGACGCCGACGAGCTGGCCGCCCGGCACACCGACGACTGGCAGTCCGTGCCGCACGGCTACACCCGCGGCGTGCTCGCCAAGTACACCAAGCTCGTGCAGTCCGCCTCGACCGGCGCCGTGCTCGCCTGAMTSTDDRTTPDLKPRSRQVTDGLEATASRGMLRAVGMGDDDWDKPQIGVASSWNEITPCNLSLDRLGGAVKNGVHAGGGYPLEFGTISVSDGISMGHEGMHFSLVSRDVIADSVETVMQAERLDGSVLLAGCDKSLPGMLMAAARLDLASVFLYAGSIMPGWVKLSDGTEKDVTLIDAFEAVGACSRGLMSRDDVDRIERAICPGEGACGGMYTANTMASVAEAMGMSLPGSAAPPSADRRRDSFAHASGEAVVEMLRRGMTARDIMTKEAFENAIAVVMAFGGSTNAVLHLLAIAHEAEVELTLEDFDRVASRVPHLGDLKPFGRYVMNDVDRIGGVPVIMKALLDAGLIHGDCLTVTGRTVAENLADIAPPDPDGKILRALDQPIHPTGGITILHGSLAPEGAVVKSAGFDSDVFEGTARVFERERHALDALEDGTITAGDVVVIRYEGPKGGPGMREMLAITGAIKGAGLGKDVLLITDGRFSGGTTGLCVGHIAPEAVDAGPIAFVRDGDRIRLDVGAKTLDLLVDADELAARHTDDWQSVPHGYTRGVLAKYTKLVQSASTGAVLAPGPT0001875_3258DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0001875-ilvD-K01687NANA
AK018_04736867datD-alanine aminotransferaseATGAGTCTCGTGATCTGGGCAGAAGGTCGGCTGGTCGGAGCCGGGGAGGCCGCGCTGAGCGCGGTCGACCACGGCATCACGGTGGGTGACGGCGTCTTCGAGACGTGCACCGTGTTCGACGGGCAGGTGTTCGCGCTGACGCGGCACCTGGAGCGGCTGCGCCGCTCGGCGACCGGCCTCGGGCTGGAGGCGCCCGACGAGCGGAAGGTGCGCGACGGCGTCGACGCCGTCCTGGCCGAAGCCGTGCGCCTCGACGGTCCGTTCGACGGCCGGCTGCGCATCACCGTGACGGCGGGCATCGGCCCGCTCGGCTCCATGCGGGTCCCCGGCGCGCAGAGCGTCGTGGTCGCCGTCCAGGACTCCGTGATGATGCCGGAGTCGCGCTCGGCCCGCTCGCCGTGGCCGCGCAACGAACGGTCACCCATCGCCGGGCTCAAGACGACGTCGTACGCGGAGAACGTGGTGGCGCTCGCGGACGCGAAGGCCAAGGGCGGCGACGAGTCGATCCTGCCCAACACGGTGGGCGAGCTCTGCGAGGGCACGGGATCGAACATCTTCGTCGAGCGGGGCGGCGAGCTCCTCACCCCGGCGCTGTCGTCGGGCTGTTTGGCAGGGATCACGCGGGCCCTGGTGCTGGAGTGGGGCGCGGAGGCCGGGCTGCCGGTGCGGGAGGCCGAGGAGGGCGAGCTGCCGTTCTCGGTGCTCGACGACGTGTCTACCGGGCAGGTCGGGCTCGCGCTGACCTCCTCGGGACGCAACGTCCAGCCCATCACCTGGCTCGACGGCGTCGACGTCGCGCCGGGGGAGATCACGCTGGCTACTCGCGAGGTGTTCGAGAAGAACTGCAGGGAGCGCCTCGACCCGTGAMSLVIWAEGRLVGAGEAALSAVDHGITVGDGVFETCTVFDGQVFALTRHLERLRRSATGLGLEAPDERKVRDGVDAVLAEAVRLDGPFDGRLRITVTAGIGPLGSMRVPGAQSVVVAVQDSVMMPESRSARSPWPRNERSPIAGLKTTSYAENVVALADAKAKGGDESILPNTVGELCEGTGSNIFVERGGELLTPALSSGCLAGITRALVLEWGAEAGLPVREAEEGELPFSVLDDVSTGQVGLALTSSGRNVQPITWLDGVDVAPGEITLATREVFEKNCRERLDPPGPT0008860_6899DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826NANA
AK018_04737612hypothetical proteinATGACACTCGTGACCTGTGACCTGACCGTGTCCCTGGACGGCTTCGCCGCCGGCCCGCACCCGACCCGTGAGCGTCCCTTCGGTGACGTGATCGGCACCGGCGAGGTGCTGCACACCTGGTTGCTGGACCACGCCGCGGACCATCCCGACGAGGTCGCGGGGATCCTGGAGGCCGACGCCTACGTCATGGGCCGCGGCATGTTCTCCCCGGACACCGGGCCCTGGGACCTCGCATGGCGCGGCTGGTGGGGTGACGAGCCGCCGTACCACGCACCGGTCTTCGTGCTCACCCACCATCCGCGCGAGCCGCTGGAGATGGCAGGCGGCACCACCTTCCACTTCGTCACGGACGGTGCGGACGAGGCGCTGCGCCGGGCCGTCGAGGCGGCCGGCGACGGTGACGTCTCGATCGCCGGGGGAGTCTCGACGGTCAACACCTACCTCGCCGCCGGTGCGATCGACGAGCTGCGCCTGCACGTCGCGCCCGTCGTGCTGGACATCGCCGGTGCGACACGGCTGTTCGACGGTGTCGGCCGGCTGGACCTCGACGCCGTCTCGGCACGGCACGCAGGGGAGGTGACCCATCTGGTGTACCGGCGTCGGGCAGACTGAMTLVTCDLTVSLDGFAAGPHPTRERPFGDVIGTGEVLHTWLLDHAADHPDEVAGILEADAYVMGRGMFSPDTGPWDLAWRGWWGDEPPYHAPVFVLTHHPREPLEMAGGTTFHFVTDGADEALRRAVEAAGDGDVSIAGGVSTVNTYLAAGAIDELRLHVAPVVLDIAGATRLFDGVGRLDLDAVSARHAGEVTHLVYRRRADNANANANANA
AK018_04738381hypothetical proteinATGACCACCTCCCTGTGGGTGACCCTGCGCTACCGCGACGCCGACGCCGCCCTGGCCTGGCTGCGGGCCGTGGGCTTCGTCGAGCGCGTCGTGCACCGCGACGAGCACGACCCCGGCATCGTCCAGCACGCCCAGCTCGAGTGGCCGGGCGGCGGCGGGCTGATGCTCGGCACGCACCGGGACAGCTCGAGCTGGCCTGCGCAGCCCGGCAACGGCGCGACCTACGCCGTCACCGACGACGTCGACGGCGTTGTCGCCGCCGCCGTCGAGGCGGGTGGCCGGGTCGTCGCGGCGCCCGCTGACCAGGACTACGGCGGGCGGTCGGCGAGCGTGGCCGACCCGGAGGGCAACCTGTGGAACTTCGGCAGCTATCGTCCGTGAMTTSLWVTLRYRDADAALAWLRAVGFVERVVHRDEHDPGIVQHAQLEWPGGGGLMLGTHRDSSSWPAQPGNGATYAVTDDVDGVVAAAVEAGGRVVAAPADQDYGGRSASVADPEGNLWNFGSYRPNANANANANA
AK018_047391170menF_2Isochorismate synthase MenFATGGTCCAATCGCCCCGCAGCGCCTCCCTGGCATACCGTGCAGCCGTGCGCGCACCCACCTCCTGGGCCTCCTTCGCAGGCCGCCTGGCGACCGACGTCGTCGAGTGCGTCGACCTCACCGAGGCGCCCGAGCGGCTCGCCGAGCGCGGGCCGTGGTTCGTCGTCGTCGACTTCGAGGCCTTCGGTCGCTCCGGGCGGGCGCGCGCCTGGCGGTTCGCCCACGTGACCGACGGCACGCCCCCGGCGGGCGACGACGGCGCGACGGACGGCTGGCGGGGCCCGGCGGTCGGGGACTGGACGACGTCGATGTCCCAGGAGCGGTACGAGGCTGCGGTGGATGCGGTCCGGCAGCACATCCGCGACGGCAGCGTCTACCAGGTCAACGTGTGCCGGGTGCTGAGCGCGCCCCTGCCCGCGGACGACCCTCGCGCGCCCGCCGGGGAGCCGGACGCGGCAGCGCTGTCCGCGCGGCTCGCCGCCGGCAACCCCGCGCCGTACGCGGCCGCCGTCCACGTCCCCGGCGGTCTCGGCGTCGACCCCGTGTGGGTCGTGTCGGCCTCGCCCGAGCTCTACCTCTCCCTGCAGGACGACGGGCTCGCCTCCGGACCGATCAAGGGCACCGCGCCCACCGCCGCGGGCCTGACCGGCAAGGACCGCGCCGAGAACGTCATGATCACCGACCTCGTGCGCAACGACCTGCAACGGGTGTGCCGACCCGGCACTGTCGCGGTCACCGAGCTGCTCGGCGTCGAGGAGCACCCCGGCCTGGTGCACCTGGTCTCCCGCGTCGAGGGTGCCCTGGCCCCGGCCGTGGCGTCCGCCGCGGACCGGTGGGCCCGGGTGCTGCGCGCCACCTTCCCGCCCGGCTCGGTCTCCGGGGCGCCCAAGTCGTCCGCGCTGTCGGTCATCGACGACCTCGAGCCCACGCCGCGCGGGCCCTACTGCGGCGCCGTCGGCTGGGTCGACGGGGACCGGGCCGAGCTCGCCGTGGGGATCCGCACCTTCTGGTGGGAGCGCCGTGGGGCCGACGACGGCGTGCTGCGGTTCGGCACCGGCGCCGGCATCACCTGGGGCTCGGACGCCCGCTCCGAGTGGTACGAGACGGAGCTCAAGGCGGCGCGACTCGTGGGGCTGGCCTCTCGCCCGGCGGGGTCCGACGAGCCCTCCTAGMVQSPRSASLAYRAAVRAPTSWASFAGRLATDVVECVDLTEAPERLAERGPWFVVVDFEAFGRSGRARAWRFAHVTDGTPPAGDDGATDGWRGPAVGDWTTSMSQERYEAAVDAVRQHIRDGSVYQVNVCRVLSAPLPADDPRAPAGEPDAAALSARLAAGNPAPYAAAVHVPGGLGVDPVWVVSASPELYLSLQDDGLASGPIKGTAPTAAGLTGKDRAENVMITDLVRNDLQRVCRPGTVAVTELLGVEEHPGLVHLVSRVEGALAPAVASAADRWARVLRATFPPGSVSGAPKSSALSVIDDLEPTPRGPYCGAVGWVDGDRAELAVGIRTFWWERRGADDGVLRFGTGAGITWGSDARSEWYETELKAARLVGLASRPAGSDEPSPGPT0008005_2428DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008005-pabB-K01665NANA
AK018_047431500mdtD_4Putative multidrug resistance protein MdtDATGGCTGAGACCGATCGTCCCGCTCGCCGCGACGCCCGGACGCCGGGCGGCGTCATGGCGGCCGCCACCGTCTCCACGCTCATCGTCAACGCGAACACCTCGGCCGTGGCGATCCTCCTTCCGGCGATCAGCGACGACGTGGGCATGTCCACCGAGACCCTGCAGTGGGCCGTGACGGGCTATCTCCTGGTCGGCGCGGCCACCATCGTCACGTCGGGCAGCCTCGGCGACGTCTTCGGCCGGCGCAAGGTGTTCGTCGGCGGTCTGCTGCTGTTCATCGCCTCGTGCGTCCTCATCGCCCTCGCCCCCGGCGGGTGGGCCGTCATCGTCGGCCGCTGCATCCAGGGCGCGGCCGGTGCCACGCTGGTCGCCGGTGGGCTCAGCATCCTGTCCATCGCTTCTCCCCCGGGCACCGCCCAGCTGCGTGCCGTGTCCTACTGGGGCTCCGCCTCGGCGGTCGGCGCCGCAGCGGGCCCGCTGCTCGGCGGGGCGCTGGTGAACACGGTGGGCTGGCAGGGCCTGTTCTGGCTGGACGCGGCCATCGCCGTCCTGCTGGTGCCCGTCACCGTGCGCTCCGTGGCCGAGTCCTTCGACCCGACGCGCAGCCGGTCGATCGACTGGGCGGGGACCGCGCTCATCGCGCTCGCGCTCGCCCCGCTCATCCTCGGCGTCACCCAGGGCGCGACCTGGGGGTGGCTGGCGATCCCCACGCTGCTCTGCTTCGCGGTGTCGGTCGCCTCCACCGTCGGCTTCGTCGCCGTCGAGAACAGGGTGGCCGCCCCGCTGCTCGACCTGCGCCTGTTCCGCAACCGACGACTGGTCGGGGCGACGCTCGGCATCCTCATCGGCGCCGCCGCGATCAACTCCATGATGTTCGTGCTGAGCCTGTTCTTCCAGGACCCGGCCCTGCTCGGGATGGACCCCCTCCAGGCGGGGCTGGCGACGCTCCCGGCGACGGTCGGGATGGTCGCCCTGACCCCGGCGGTGCCCTGGCTCACGCACCGGTTCGGTGTGCTCGCCGTCGTGGGTGCCGGGTTCGTCGTCATGACCGCGGGTTTTGCCGTGCTCGCGCTGGCGAGCATCTCCTGGGGCTACCTGGCGTTCCTCGCCCCGATCGTCGTGGTGGCCCTGGGCCTGTGCCTGTCGAACAACCCGTGCTCCTCGGTCGCCACCGGGTCGGTCGACCCCTCCGAGGTCGGCGGTGCCTCGGGGCTGTCGAACATGGCCCGCTACGTGGGGCCGGCGATCATGACCGCGGTCGTCGCCGCGCTGTACGCCGGCATCCCCGAGAACCGTCAGGCCGCGGGCGCGTCCGCCGCCGAGGCGCAGATCGCCGGCTTCCAGGGTGCCGCCGTCGCCCTGGCGATCGTCTCCGCCGCGGGGATCCTGCTCGTGTACCTGGTGCGCGGCTACCGGGAGCGGCACGCGCCGGACGGGGTGGAGGTCGCGATCGCGGCCGCCGCTCCGCTGCACACCATCCCGCGGCCCGAGGAGTCCTGAMAETDRPARRDARTPGGVMAAATVSTLIVNANTSAVAILLPAISDDVGMSTETLQWAVTGYLLVGAATIVTSGSLGDVFGRRKVFVGGLLLFIASCVLIALAPGGWAVIVGRCIQGAAGATLVAGGLSILSIASPPGTAQLRAVSYWGSASAVGAAAGPLLGGALVNTVGWQGLFWLDAAIAVLLVPVTVRSVAESFDPTRSRSIDWAGTALIALALAPLILGVTQGATWGWLAIPTLLCFAVSVASTVGFVAVENRVAAPLLDLRLFRNRRLVGATLGILIGAAAINSMMFVLSLFFQDPALLGMDPLQAGLATLPATVGMVALTPAVPWLTHRFGVLAVVGAGFVVMTAGFAVLALASISWGYLAFLAPIVVVALGLCLSNNPCSSVATGSVDPSEVGGASGLSNMARYVGPAIMTAVVAALYAGIPENRQAAGASAAEAQIAGFQGAAVALAIVSAAGILLVYLVRGYRERHAPDGVEVAIAAAAPLHTIPRPEESNANANANANA
AK018_04744288hypothetical proteinATGTGCCGCAACATCACCACCCTGCGAGGTCTCGAGCCGCCGGCCACGGCGGAGGAGGTCGAGGCCGCCGCCGCCCAGTTCGTCCGCAAGGTGACCGGTGTCGCCGCCGACGCCGCTCCCACGTCCCGTGAACCGTGCGAGACCGCCTCGGCCGAGATCGCCGCGATCGTCACCCGGCTGCTGCACGAGCTGCCTGCCCGCCGGCGGCCGCCGGCCACCGTGCCCCCGCTGCGCCGGCCCGAGGTCCGGGCACGGATCACGGCCAGGCAGGACGCAGCGTCGGCCTGAMCRNITTLRGLEPPATAEEVEAAAAQFVRKVTGVAADAAPTSREPCETASAEIAAIVTRLLHELPARRRPPATVPPLRRPEVRARITARQDAASANANANANANA
AK018_04747291hypothetical proteinGTGAACGACCCCAGCGCCGACAGCCCGCCCGCCGTCTCCGCGACGATGCACCGGGCCAAGACCCGGGCACGGGCGTCTCACGTCACCGTGGGGCGCGCGCGGCTGGGGGACGACGGCACCGTCGAGATCGACTGCTCGTGCGGCATGGTGCTGCGCAACGGCCCGCAGTGGTCGCTCGACGAGCACATCCGTCTGCACCGGGCCGAGGCCCGGTACCTCGCGCTGAGCGAGGTCGCGCCGGCCGGCATGCCCCGCCTCATCGCCGTGGGCACCGACCGTCTCCCCCGCTGAMNDPSADSPPAVSATMHRAKTRARASHVTVGRARLGDDGTVEIDCSCGMVLRNGPQWSLDEHIRLHRAEARYLALSEVAPAGMPRLIAVGTDRLPRNANANANANA
AK018_04748234hypothetical proteinATGAGCAAGGACACACGGGGGGCCGACTCCGACCGAGTGCGGGTCCTCCTCGACGAGTCGATCGCCTCCCAGGCGCGGATCGCGCCCCGACAGCGGTCGGCCACGGACGAGCACGGAGATCCCCGCATCGGCGGCGACGCCACCAAGGCGCCGCTGTCGCTGTCGCAGAGCGAGCGACGCCCGATGGAGGGCGCCTCGAGCGGTCACAGCTGGGACGACCCCGACGAGCTCTGAMSKDTRGADSDRVRVLLDESIASQARIAPRQRSATDEHGDPRIGGDATKAPLSLSQSERRPMEGASSGHSWDDPDELNANANANANA
AK018_047491662glgB_41,4-alpha-glucan branching enzyme GlgBGTGACCGCCGGAGATCGACTCGACACCGAGCGCTCCCGCGCCACGCCGGCGCCGAGCGAGCGCTTCCACGAACCCTGGCCGGGCCCCCGCCCGCTGGTCTGGGCGCCCCGCGCCCGCACGGTCGAGGTCGTCCTGACCGACGACGACGGCGCGACCGCACGGCACCCGATGCGTCTCGTCGGCGCGCACGAGCCCGGCTACTGGCGCGCAGACGCCCGGTTCCCCCCCGGGACCGCGTACTCCTTCTCCGTCGACGGCGGCCCCCCGCTGACCGACCCGGCCGCCGCGTCGCTGCCCGCGGGCGTGCACGGCCCGGGGCGGATCCTCGACGACACCATCGGCTGGCACGACGACCACTGGCCCGGCACCGACCTCGCCCAGGGCGTCCTGCTGCACCTCGAGATCCCCACCGTGACCGCCGAGGGGACCCTCGACGCGGCCGCCCGGCTGCTGCCCGCCGTCGGCGCGCTCGGTGTCGACGGGGTCGAGCTGTCCCCGGTGGCGGCCTTCGACCCGGCCGCGGGGCCCCAGGCCGGGGTGCGCCTCTTCGCCGTCCACGAGCCGTACGGCGGCTCCCGCGCGCTGCAGCGCTTCGTGGACATGGCCCACCGCGCCGGCCTCGCCGTCGTGCTCACGCTCCCCCACCGCTGGGCCGTGGCCGACCCGCTGCGCCTGCACCACTTCGGTCCGTACTCGGCAGGGGCTCGCATCGGGGCGCGGGGCGTCGCCGACGGCGGCGCCGACGCCCCGCGGATCAACCTCGACGGCTCCGGCAGCCGCGGACCCCGCGACCTGTTCATCGCCGACGCCCGGCGCTGGCTGCGCGACTTCCACGTCGACGGGCTGCTGCTGGACGTCGAGGTGCTGGTGGACCGGTCCAGCGTGCCGTTCCTCGGCGAGCTGGGCGAAGCGGTGCAGGACGTCGCCGGCCGGACCGGACGCCCGCGCACCTTGCTCACCGACGGTCCCGGGCTCAGCGACCGGCTCACCACCATCGTGCACCGGCTCCTGACCGACGGCGTCGACGGACGGGCCGGTGACCTGCAGCGCCTCGCCGAGGAGACCGGGACGCCCGCCCGGCTCCCGGTCGGACTGCGACGGGCGCTGCGGGCCACGCAGCGCAGCGGCGGGTTCGTCGGCGACCTGGCACGGCTGCCCGCCGCGACCCGGGCCGCACCCTGGTCGCGGTCCGACGGCACACCGCAGACCATGTCCGCCGGGGACCACGCCGCGCTGCTCGCCTTCGTCCTCCTGGCCGGCAGCCCCGCGGTGCTGGACACCGAGCGGGTCCCGGTCCACCGCGACACCCCCGAGGCGCGTCGCCTGACCGGATGGACCCGCCGGCTGCTCCAGCTGCGTCCGGCCGCCCTGGCCGACTTCGCCCGGCCCCTGGACGTCACCGCCTACGACGGCGTGCTCACCGTGCGCCGCGGCGGCACCGCCGTCGTCCTGCTCGCCGACCCCGCCGTGCGCCACGTCGACCTGTCCGGCCGGCTGCTGCCCCCGATCGGCGACTGGCGCGTGGCGGCGGCCTGGGACGAGGACGACACCCACCTGGTGGCCGGCGCGCTGCGGGCGCCCCGACGCTCCGTCGTCGTGCTCCGCGCCGACGCACGCCCGGTCGCCGCCGACCTGCGCACCCCGAGCACGGAGCCCGCATGAMTAGDRLDTERSRATPAPSERFHEPWPGPRPLVWAPRARTVEVVLTDDDGATARHPMRLVGAHEPGYWRADARFPPGTAYSFSVDGGPPLTDPAAASLPAGVHGPGRILDDTIGWHDDHWPGTDLAQGVLLHLEIPTVTAEGTLDAAARLLPAVGALGVDGVELSPVAAFDPAAGPQAGVRLFAVHEPYGGSRALQRFVDMAHRAGLAVVLTLPHRWAVADPLRLHHFGPYSAGARIGARGVADGGADAPRINLDGSGSRGPRDLFIADARRWLRDFHVDGLLLDVEVLVDRSSVPFLGELGEAVQDVAGRTGRPRTLLTDGPGLSDRLTTIVHRLLTDGVDGRAGDLQRLAEETGTPARLPVGLRRALRATQRSGGFVGDLARLPAATRAAPWSRSDGTPQTMSAGDHAALLAFVLLAGSPAVLDTERVPVHRDTPEARRLTGWTRRLLQLRPAALADFARPLDVTAYDGVLTVRRGGTAVVLLADPAVRHVDLSGRLLPPIGDWRVAAAWDEDDTHLVAGALRAPRRSVVVLRADARPVAADLRTPSTEPAPGPT0014130_1472DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_GLYCOSIDE_UTILIZATIONPLANT_DERIVED_GLYCOSIDE-GLYCOSIDASES|GLYCOSYLHYDROLASES,PGPT0014130-treZ|glgZ-K01236NANA
AK018_04750852COG2326Polyphosphate:AMP/ADP phosphotransferaseATGACGAAGAGCCCCTGGACCGAGCACCCGACCCGGACCCTGCGCTGGCGTCCCGGCGACCGCCTCGACGCGGTCGACCCGCGCGCCACGCCGGGCTACCACGGGGGCAAGCGGGCCGGGAAGAGGCTGCTCGCCGAGCACGGCGCGGAGCTGTCCGACCTGCAGGAACGCCTCTTCGCCCACGGCCGGACCGGCGGCGTGCGCAACGTCCTGCTGGTCCTGCAGGGGATGGACACCTCCGGCAAGGGCGGGATCGTGCGCCACGTGGTCGGCATGGTCGACCCGCAGGGCGTGCGGTGCCGCGGGTTCGGGCGTCCCACCCCCGAGGAGCAGGCCCGGGGGTACCTGTGGCGGATCCGCAACGCGCTGCCCGACGCCGGGCTGCTCGGGGTCTTCGACAGGTCGCACTACGAGCAGGTGCTGGTCGTGCGCGTCGACGAGCTCGAGCCGCCCGCCACCTGGCAGGCGCACTACGACGAGATCAACGACTTCGAGGCGGAGATCGCCGACGCCGGCACGGCGATCGTCAAGGTGGTCCTGGCCATCTCCCCCGAGGAACAGCTCGAGCGGCTGGTCTCCCGCCTGGACCGGCCGAGCAAGCACTGGAAGTACGACCCGTCCGACCTGCGCGCCCGCGAGCAGTGGGACGAGTACCAGGCGGCCTACCGGGACATGCTGGACCGCACGAGCACCGACGTCGCCCCGTGGTACGTCGTGCCCGCGGACCGCAAGTGGTTCTCCCGGCTCGCGGTGGGCGAGCTGCTGCGGCACACGCTGCGTGGGCTCGACCTCGGTTGGCCGGCGGCCGACTTCGACGTCCGGCGCCAGCGACGGCTGCTCACCGGCCGCTGAMTKSPWTEHPTRTLRWRPGDRLDAVDPRATPGYHGGKRAGKRLLAEHGAELSDLQERLFAHGRTGGVRNVLLVLQGMDTSGKGGIVRHVVGMVDPQGVRCRGFGRPTPEEQARGYLWRIRNALPDAGLLGVFDRSHYEQVLVVRVDELEPPATWQAHYDEINDFEAEIADAGTAIVKVVLAISPEEQLERLVSRLDRPSKHWKYDPSDLRAREQWDEYQAAYRDMLDRTSTDVAPWYVVPADRKWFSRLAVGELLRHTLRGLDLGWPAADFDVRRQRRLLTGRPGPT0002695_541DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002695-ppk2-K23753NANA
AK018_047511062zapE_2COG1485Cell division protein ZapEGTGACAGCCGTGCAGTCCTCGGACGCGACCACCACCGGATCGCTGGTGGCGGTGCGTCCTGCCTTCTCCGTCGACCGCCTGCTCGCCGACCTGGTCCCGCCGCGGCACTTCGCCGACGCGCGGTTCGCCACCTACCGCGCGAACCCCGACCACCCCAGCCAGGCCACCACGCTCGCGCGCCTGCAGGAGGTGGCCGAGGAGATCGCCCGCCCGGCCCCCGGCGGCCTGCGCGCCTGGTTCGGCCGGCGTCGTCCCGCACCCGCGGTCTACATGGACGGCGGGTTCGGCGTCGGCAAGACCCACCTGCTGACGTCGTTGGCCCACGCGGTGCGCGAGGAGCTCGGTGCGGACGCGGTCGCCTACGGCACGTTCGTGGAGTACACGAACCTGGTCGGTGCGCTCGGGTTCCTGCCGACGGTGGACGCCCTGTCGACCAAGAAGCTCGTCTGCATCGACGAGTTCGAGCTCGACGACCCCGGTGACACGGTGCTGATGTCGCGCCTGCTGCGCGAGCTCGCCGACCGCGGTGTCGCCCTGGCCGCCACGTCGAACACGCTGCCGGACGCGCTCGGCGAGGGACGGTTCGCCGCGGAGGACTTCCTGCGCGAGATCCAGGCGCTGTCCGAGCGGTTCGAGGTGCTGCGGGTCGACGGCGAGGACTACCGGCACCGCACCGTGCTCACCGACGCCCCGCCCCTGGCGCCCCGGGCCGTCCGCACCGCGGCCACGGAGCGGCCCGGTGCCGTGCTCGACGACTTCGAGGACCTGCTGGCCCACCTGGCGACCGTGCACCCGAGCCGGTACGGCGCGCTGCTCGACGGCGTCGAGCTCGTCGGGCTGACCGGCGTGCGACCGGTGACCCGTCAGGAGGTCGCGCTGCGGCTGGTCGTGCTGGTCGACCGGCTCTACGACCGCGACGTGCCGGTCCTGCTCGCCGGCGCGGACCCGCGGGCGCTGTTCGGCGACGAGATGCTGCGCGGCGGCTACCGCAAGAAGTACTACCGGGCGTTGTCCCGGCTGGGCGCGCTGGCCGAGGACGGCCGAGCGCTCCTGGACGCCTGAMTAVQSSDATTTGSLVAVRPAFSVDRLLADLVPPRHFADARFATYRANPDHPSQATTLARLQEVAEEIARPAPGGLRAWFGRRRPAPAVYMDGGFGVGKTHLLTSLAHAVREELGADAVAYGTFVEYTNLVGALGFLPTVDALSTKKLVCIDEFELDDPGDTVLMSRLLRELADRGVALAATSNTLPDALGEGRFAAEDFLREIQALSERFEVLRVDGEDYRHRTVLTDAPPLAPRAVRTAATERPGAVLDDFEDLLAHLATVHPSRYGALLDGVELVGLTGVRPVTRQEVALRLVVLVDRLYDRDVPVLLAGADPRALFGDEMLRGGYRKKYYRALSRLGALAEDGRALLDANANANANANA
AK018_04752759hypothetical proteinGTGAGTTCCGACACGCCGACGCTCGCCCGGCTGCTCCCCCACGCCGACGAGATCCCCCCGGACCCCGCCGAGCGCACCCTCGCGGCGCTCTACGCCCTGCCCGAGGACCCGTGGGTCCGGGTGAACATGATCTCCACCGTCGACGGTGCGGCCTGGGGCCCCGACGGGCAGTCGGCCTCGATCAACGACGCCGCGGACTGGCGCGTCTTCCGCGTCCTGCGTGCGCTGGCCGACGTCGTCCTGGTGGGTGCCGGGACCGCGCGCCAGGAGGGCTACTCGCACCTGACGCGGCCGCACGGCCTGGAGCACCTGGCCGGGGCCCCGCTGGAGCTCGCGATCGTCACGCGGTCCGGCCGCGTGCCGTGGTCGACGCTCGACGGCCCTCACCCGCCGCTCGTGGTGACCGGGGCCGCGGGCGCGCTCGAGGCCGGTGCCGCCGTCGGCGACGACCGCGTGCTCGTCTGCCCGGACGGCACCGCCGACGGCGTCGACCTGCGCGCGGCGCGCGACGCCCTCGCCGCCCGGGGCCTGGGCCAGGTGCTGTGCGAGGGCGGTCCGGGGCTGCTCGGCGACGTGCTCGCCGCGGGTCTGGTCGACGAGCTGTGCGTGACGACGTCGCCACGACTGGCCGGACCCGGGGCGGGCCGGATCGTCGCCGGCCCGGCCGGGCACGAGCTCGGGGGCGGGCACGACCTGCGCCTGGGCCACCTGCTCGCCGGCCCGGCGGGCACGCTGCTGGCCCGGTGGGAGCTGGTGTGAMSSDTPTLARLLPHADEIPPDPAERTLAALYALPEDPWVRVNMISTVDGAAWGPDGQSASINDAADWRVFRVLRALADVVLVGAGTARQEGYSHLTRPHGLEHLAGAPLELAIVTRSGRVPWSTLDGPHPPLVVTGAAGALEAGAAVGDDRVLVCPDGTADGVDLRAARDALAARGLGQVLCEGGPGLLGDVLAAGLVDELCVTTSPRLAGPGAGRIVAGPAGHELGGGHDLRLGHLLAGPAGTLLARWELVNANANANANA
AK018_04753498hypothetical proteinATGTCTGCAGATGCCTGGACCGTCGTCGTCCTCACCGAGGACGCGCTGACCTCCGCCGACGTCGACCACATCACCGCCCTGCACACCGACCCGGACGTCGAGGTCGCCTACCGGGTGCTGGTCCCCGCCGACACCGAGCACAAGGTGGTGTCCTCGGTCCTGGACCACCTCGGCATGCTCGAGCTGCGCGAGGCGTGGGACGACATCGTCGGCCGCGAGCCCACGCCCGAGCAGGCGACGGCGACCGCCGCCGAGCAGGTCACCGAGTCCGTCGAGCTGCTCCGCGACCGCGGGGTGACCGCCTCCGGCGAGGTGACCGAGGACGACCCGCTGCCCACGCTGCAGCACGCGGTGGCCGACGGCGGCAACGAGGTGGTCGTGGTGACCTACCCGCACGCCGTCGAGGACACGTTCCACACCGACTGGGCCTCGCGCGCCCGCGACGTGCTCCAGGTGCCGGTGCTGCACCTGTACGCCGGCACCAGCGAGCTCGGCTGAMSADAWTVVVLTEDALTSADVDHITALHTDPDVEVAYRVLVPADTEHKVVSSVLDHLGMLELREAWDDIVGREPTPEQATATAAEQVTESVELLRDRGVTASGEVTEDDPLPTLQHAVADGGNEVVVVTYPHAVEDTFHTDWASRARDVLQVPVLHLYAGTSELGNANANANANA
AK018_04754738Aspartate racemaseGTGACGACGCCCGGACCGGACGCCGAGGGTCCGACGCCGCCGGTCGGGGTGATCGGCGGCGTCGGACCCCTGGCCACGGCCTACTTCCTGCAGCGCGTCGTGCAGCTCACCCACGCCGAGCGGGACCAGGACCACGTCGACCTCGTCGTGCTCAACCACGCCACGATCCCCGACCGCACCGACTTCGTGCTCGGACGCTCGGCGGACGACCCCGGCCCGGTGCTCGCACGCGACGCGCAGCGCCTGGAGGCCTTCGGGGTGCGGTTCCTGGTCATGCCCTGCAACACGGCGCACTACTTCACCCAGCAGGTCCTCGACGTGGTGACGGTCCCGTTCGTCTCGATCGTCGACGTCACGGTGGCGGCCGCTCGTGCCCGGGTGCCGGGTCTGACGCGGGTCGGGCTGCTGGCCACCGCCGGGACCGTGGCCTCGGGCGTGTACGACGACGCCTTCGCGGCGCACGGCATCGACGTCGTGGTCCCGGAGGCGGACGACCAGGACCGCGTCAACGCCGTGATCTACGACCAGGTCAAGGCGGGCCGGCCCGCCGATCCCGATGCGCTGCGCCAGGTCGCCGGACGGCTCGTCGAGCGCGGCGCCGGCGTCGTCGTGCTCGGGTGCACCGAGCTGTCGGTGGCGGCCGTCGACCACGGCCTGCTCGACGAGCCGCCGTTCCTCGACTCGATGGACGAGCTGGTGCGCGCCACGATCATCCACGCCGGGCACCGGGTGCGCTGAMTTPGPDAEGPTPPVGVIGGVGPLATAYFLQRVVQLTHAERDQDHVDLVVLNHATIPDRTDFVLGRSADDPGPVLARDAQRLEAFGVRFLVMPCNTAHYFTQQVLDVVTVPFVSIVDVTVAAARARVPGLTRVGLLATAGTVASGVYDDAFAAHGIDVVVPEADDQDRVNAVIYDQVKAGRPADPDALRQVAGRLVERGAGVVVLGCTELSVAAVDHGLLDEPPFLDSMDELVRATIIHAGHRVRNANANANANA
AK018_047551284D-aspartate ligaseATGAGCCGTCGGCTGCAGCCTGTCGTCCTCGGCGGCGACATCGGCGCCTACTCCCTGGCCCGGACGTTCCACGAGGCCTACGGCGTGCGGCCCGTGGTGGTCTCGGGGATGTCGACCGGTCTCGTGCGGCACTCGCGCATCCTGCAGCACGTCGTCGAGCCCGGCATCGACGACCCTGACGCGGTCGTGGCCCGGCTGCGGGCGATCGCCGACGAGCACGCCGACGCCGACCTGATCGCGGTCGGGTCGGCCGACTGGCTGGTGCGGCTCCTCGTCGAGCAGCGGAGCCGGCTCGAGGACCGCTACGAGATCCCCTACGTCGACGAGAAGCTGCTGCACCGGCTCACCGACAAGGAAGGGTTCGGCGAGCTGTGCGCCGAGCTGGGGATCGCCCACCCGACCACGGTCGTGCACGACGTGGCCACCGGGGGAGAGCCGGACACCTCCGGGCTGACCTTCCCGGTCATCGCCAAGGCGGCCAGCACGGCCGCCTACCACGACGTCGAGTTCGCCGGGAAGAAGAAGGTCTTCCTCGTCGACACCCGGGACGAGCTGGTCGACCTGCTCGCGCGGGTCCGCGCCGCGGGCTACCAGGGCGCGTTCGTGATCCAGGACTACATCCCCGGCGACGACTCCGGCATGCGCATCCTCACGTGCTACTCCGACGCCTCGGGGAAGGTGCGCTTCTCCGCGTACGGCCACGTGCTGCTCGAGGAGCACACGCCGGGGGCGCTGGGGAACCCGGCCGGGATCATCACCCAGGTCAACCACGAGGTCGTCGAGCAGGCCACGCGGCTGCTCGAGCACGTCGGCTGGACCGGCTTCGCGAACTTCGACCTCAAGTACGACCCGCGGGACGGCCGGTACGTGTTCTTCGAGCTCAACCCCCGCCTGGGGCGCTCGAACTTCTACATCACGGCCGCCGGGGCCAACGCGGTCACGTTCTACGTGCACGAGCACCTGGCCGGTCTCGACCCCGACCCCCGGGACGTGCTCGGCCCGGACGTGCCGCTGAGCGCCTCCGGCGAGCTCGAGGCGGAGCACCTGTACACGGTGCTGCCCGGTCCGTTGCTGCGGCGGTACGTGCTCGACGACGACGTGCGGGCGCAGGCACGCCGGCTCGCTCGTCGCGGGCGGTCCACCAACCCGCTGTGGTACCGCGCCGAGACGAACCCGCGGCGGCTGGCCTACCTCGCCGTCGCCCAGCTCAACCAGTGGCGCAAGTACGCGCGCCACTACCCGGTGGCCGAGGCGCGGCGCCTGGCCTGGCGGGGGACGGCGTGAMSRRLQPVVLGGDIGAYSLARTFHEAYGVRPVVVSGMSTGLVRHSRILQHVVEPGIDDPDAVVARLRAIADEHADADLIAVGSADWLVRLLVEQRSRLEDRYEIPYVDEKLLHRLTDKEGFGELCAELGIAHPTTVVHDVATGGEPDTSGLTFPVIAKAASTAAYHDVEFAGKKKVFLVDTRDELVDLLARVRAAGYQGAFVIQDYIPGDDSGMRILTCYSDASGKVRFSAYGHVLLEEHTPGALGNPAGIITQVNHEVVEQATRLLEHVGWTGFANFDLKYDPRDGRYVFFELNPRLGRSNFYITAAGANAVTFYVHEHLAGLDPDPRDVLGPDVPLSASGELEAEHLYTVLPGPLLRRYVLDDDVRAQARRLARRGRSTNPLWYRAETNPRRLAYLAVAQLNQWRKYARHYPVAEARRLAWRGTANANANANANA
AK018_047561344D-aspartate ligaseGTGACCACCCCCCAGTCGGGTCCCGGGGCCGCCACGAGCGGCCCCGGGTTCCACCCCGTGATCGTCGGTTCCGACATCGGCGTGTACGCGCTGACACGGTCCTTCCACGAGGCCTACGGGCTGCGCACCACGGTGGTCGCCTTCGCCGAGCCGGGGCCCATCGCGCACTCGCAGCTCATCGACACGGTGCTGTCCGGCACGGGCGCCGAGGAGATCGTCGCCACCCTGGAGCAGGTGGCCCGTGACCGCCGGGCCGCCGGGCACCGCGAGCCGCTGCTGCTGCAGTCGAACATGGACTGGGTGGTGCGCATCCTCGCGCGGCACCGGTCGGTGCTGCAGACGGCCGGGTACGTGCTGCCGTACGCCGACGAGGCGCTGATCGACCGCATCTGCGACAAGGCGGAGTTCTCCGCGGTCTGCGCCGAGCTGGGCATCCCCACGCCGGCCACGGTGATCCAGGACTTCGCCGGAGCGGACGCACCCGGGTGGAAGCCGGAGCCGGTCGGCTTCGACTACCCGGTGATCGCCAAGCCGGCCTCCAGCGCCGACTACCACGACGTGCACTTCGCCGGGAAGAAGAAGATCTACGAGATCGCCTCCCGCGCCGAGCTGGACAGCCTGTGGGGGAACCTGCGGCGCGCCGGGTTCCGCGGGCGGTTCCTCGTCCAGGAGATGATCCCGGGCGACGACACCCAGATGCGGTCGGTGACGACCTACTCCGACACCTCGGGACGGGTGACGCTGCGCTGCTCGGCCCGGGTGCTCCTCGAGGAGCGCACGCCCGCGGCCCGGGGCAACCCCTCGGCGATGATCGTCGAGCCGATCGAGGAGATCCTCGACGCGGCCCAGCGGCTGTGCGAGCACGTCGGCTGGCAGGGTTTCGCGAACTTCGACGTCAAGCTCGACCCGCGCGACGGCGTCTACAAGTTCTTCGAGCAGAACCCTCGCATCGGTCGGAACAACTACTACCTGACCGCCGGCGGCCAGAACCCGACCGAGGTGCTCGTCGACGACGTGATCCACGGTGAGCAGCGCGAGCCGACGACCGCCCGGTGCGAGGTGCTCTACTGCGTCGTGCCGCACCGTCTGCTGCGCCGCTACGTGCTCGACGACGGGCTGCGCGCCCGGGTCGTGGGCCTGATGCGCACCGGCCGCACCGTGCACCCGCTGCGGTACTCCGCCGACGCCTCACCGCGTCGCCGGCTGTACGTGCTCACGGCCCTGGTCAACCACGTGCGCAAGTACCGCCGCTTCTACCCGGCCGGCGCGCTGCGGGCCAACTTCGAGGCCGCCCGGGCGGCCTCCGCCTCGCGGCGCACCGCCGCAGGACAGGAGACCCGATGAMTTPQSGPGAATSGPGFHPVIVGSDIGVYALTRSFHEAYGLRTTVVAFAEPGPIAHSQLIDTVLSGTGAEEIVATLEQVARDRRAAGHREPLLLQSNMDWVVRILARHRSVLQTAGYVLPYADEALIDRICDKAEFSAVCAELGIPTPATVIQDFAGADAPGWKPEPVGFDYPVIAKPASSADYHDVHFAGKKKIYEIASRAELDSLWGNLRRAGFRGRFLVQEMIPGDDTQMRSVTTYSDTSGRVTLRCSARVLLEERTPAARGNPSAMIVEPIEEILDAAQRLCEHVGWQGFANFDVKLDPRDGVYKFFEQNPRIGRNNYYLTAGGQNPTEVLVDDVIHGEQREPTTARCEVLYCVVPHRLLRRYVLDDGLRARVVGLMRTGRTVHPLRYSADASPRRRLYVLTALVNHVRKYRRFYPAGALRANFEAARAASASRRTAAGQETRNANANANANA
AK018_047571437gndA_2COG03626-phosphogluconate dehydrogenase, NADP(+)-dependent, decarboxylatingATGACAGCACGTGCTCAGATCGGCGTCACCGGACTCGCGGTGATGGGCCGGAACCTGGCGCGGAACTTCGCGCGCCACGGATACACGGTGGCGGTGCACAACCGCAGCTACGGCAAGACCCAGTCCCTCATGGACGAGGCCGGCGACGAGGGCGACTTCGTCCCGTCGGAGTCCATGGCCGACTTCGTCGCCTCGCTCGAGCGCCCCCGCAAGGTCGTCATCATGGTCAAGGCCGGTGCCGCCACCGACGCCGTGATCGACGAGCTGCTGCCGCTGCTGGAGGAGGGCGACATCGTCGTCGACGCCGGCAACGCGCACTTCCCCGACACGATGCGCCGCGAGGAGGCCCTGCGGGCCCGCGGTCTGCACTTCGTCGGCACCGGCGTCTCCGGCGGCGAGGAGGGCGCGCTGCTCGGCCCGTCGATCATGCCCGGCGGGACGCGCGAGTCCTACGAGTCGCTCGGCCCGATCCTGGAGGCCATCTCGGCCAAGGTCGACGGCACGCCGTGCTGCACCTACGTGGGCCCGGGCGGCGCCGGACACTTCGTCAAGATGGTGCACAACGGCATCGAGTACGCCGACATGCAGCTCATCGCCGAGGCCTACGACCTGCTCCGGTCCGGGCTCGGGGCGTCCGCCGCCGAGATCGGCGAGATCTTCGCCGCCTGGAACGAGGGCGACCTCGAGTCGTTCCTCATCGAGATCACCGCGGACGTGCTCGGGCACGTCGACGCCGAGACCGGCCAGGCGTTCGTGGACATCGTCCTGGACCAGGCCGAGCAGAAGGGCACCGGCCGCTGGACCGTGCAGAACGGTCTCGACCTGGGCGTGCCGATCACGGGCATCGCCGAGGCCACCTTCGCGCGGGCCCTGTCCGGCGGCGTGCCGCAGCGCGAGGCCGGTCGCCGCGCCCTGCCGGCCCACGCCGAGACGCTGCAGGTCGCCGACCGGGAGGCGTTCATCGAGGACGTCCGCCAGGCCCTGTACGCCTCCAAGGTCGTGGCCTACTCCCAGGGCTTCGACCAGATCGCGGCGGCCTCGGCCGAGAACGGCTGGGACATCGACCGCGGTGCCATGGCGCGCATCTGGCGCGGCGGCTGCATCATCCGCGCGCGGTTCCTCAACCGCATCACCGAGGCCTACGAGCGCGACCCGCAGCTCCCGCTGCTGCTGTCCGACGAGTACTTCACCGACGCCGTCGGCAACGGTCTGGCCGCGTGGCGCCGCGTGGTGGCGCAGGCCGCCACCGCCGGTATCCCGGCGCCGGCGTTCTCCTCGTCGCTGGCCTACTACGACGGCGTGCGGGCCGAGCGGCTGCCCGCCGCGCTGATCCAGGCGCAGCGTGACTTCTTCGGTGCGCACACCTATCGTCGCACCGACCGCGAGGGCTCGTTCCACACCCTCTGGTCCGGTGACCGCAGCGAGCAGGAGGCCTGAMTARAQIGVTGLAVMGRNLARNFARHGYTVAVHNRSYGKTQSLMDEAGDEGDFVPSESMADFVASLERPRKVVIMVKAGAATDAVIDELLPLLEEGDIVVDAGNAHFPDTMRREEALRARGLHFVGTGVSGGEEGALLGPSIMPGGTRESYESLGPILEAISAKVDGTPCCTYVGPGGAGHFVKMVHNGIEYADMQLIAEAYDLLRSGLGASAAEIGEIFAAWNEGDLESFLIEITADVLGHVDAETGQAFVDIVLDQAEQKGTGRWTVQNGLDLGVPITGIAEATFARALSGGVPQREAGRRALPAHAETLQVADREAFIEDVRQALYASKVVAYSQGFDQIAAASAENGWDIDRGAMARIWRGGCIIRARFLNRITEAYERDPQLPLLLSDEYFTDAVGNGLAAWRRVVAQAATAGIPAPAFSSSLAYYDGVRAERLPAALIQAQRDFFGAHTYRRTDREGSFHTLWSGDRSEQEAPGPT0017385_1887DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033NANA
AK018_04758582hypothetical proteinGTGACTGCTTCCCCGCCCGACGTGCCGGAGCGGTTCGCCGCCGCGCTGGCGTCGCTGCGCGGCCGTCGCACCCGGCCGGAGGTCCGCCTGTCCGAGATCCCGGGGCCGCGACGGGTCGCGCCCTTCAGCCTGGCGCTCGAGGGCGAGGTCATCAGCGAGGGTGTCGAGATCGCCACGGGGCGTTTCGTCGTCCTGCACGACCCGGCGGGCCAGGAGCAGTGGCACGGCGACTTCCGTGTCGTGACCCTGGTGCGCGCCGAGCTCGAGACCGAGCTGGCCGCCGACGAGATGCTGGGCGACGTCGCGTGGACGTGGGTGACCGAGAACCTCGAGTCGGCCCAGGTGGGGGCGATCGCGACCGGCGGCACGGTGACGCGGGTGCTGTCGCAGAGCTACGGGGCCCTGGCCTCCACCCCCGACGCGGTGGACCTGGAGATCCGGGCGTCCTGGACGCCGACGGACACCGACCTGGGCGCCCACCTGGAGGTGTGGGCGGACCTGATGTCGACGGCGGGGGGCCTGCCCCCGCTGCCCGACGGCGTGACGGCCCTGGACGTGCGACGCCGTACCGTGGAGCCATGAMTASPPDVPERFAAALASLRGRRTRPEVRLSEIPGPRRVAPFSLALEGEVISEGVEIATGRFVVLHDPAGQEQWHGDFRVVTLVRAELETELAADEMLGDVAWTWVTENLESAQVGAIATGGTVTRVLSQSYGALASTPDAVDLEIRASWTPTDTDLGAHLEVWADLMSTAGGLPPLPDGVTALDVRRRTVEPNANANANANA
AK018_047591227rnd_2COG0349Ribonuclease DATGAGCTCCGGCGTGACCCAGGTCGACCCCGACGTCGTCCCCCTGACCGAACCCGCCGACGGTGTCGGTGACGTCGTCTCCACCCCGCAGGCGTTCGCCCGTGTCGTCGACGCGTTCGGCGCCGGTTCGGGCCCGGTGGCGGCCGACGCCGAACGGGCCTCCGGGTACCGCTACGGGCAGTCCACCTACCTGGTCCAGCTCCGGCGCGCCGGGGCCGGGACGGCGCTGCTGGACCCCGTGGGGCTGCCGGACATGTCGCGGCTCGCCGACGCGGTGGGCCCCGCGGAGTGGGTCCTGCACGCCGCCTCGCAGGACCTGCCGGGCCTGGCCGAGCACGGCCTGCTCCCGCCGCGCGTCTTCGACACCGAGCTGGCCGCCCGGCTGCTGAACCTGCCGCGCGTCGGCCTGGCGGCCGTGGTCGCCGAGACGCTCGGCCTGGGCCTGGCCAAGGAGCACTCGGCCGTCGACTGGTCCACGCGTCCGCTGCCGACGGACTGGCTGCGGTACGCCGCGCTGGACGTCGAGGTGCTGGTCGAGGTGCGCGACGTGCTGGCCGCGCGGCTCGATGAGGCGGGCAAGGCCGAGTGGGCCGCCCAGGAGTTCGAGCACGTGCGCACGCTGCCGCCGCCGGCCCCGCGGCCGGACCCGTGGCGCCGGACGTCGGGCACGCACACGGTGAAGAACCGTCGCGGGCTGGCGGTCGTGCGCTCGCTCTGGGAGGCGCGCGAGCGCAACGCCCGCGAGCGCGACGTCTCGCCGGGTCGGGTGCTGCCGGACCGCGCGATCGTGGCGGCGGCCAAGGCCCTGCCGCGCACCGCCGGTCAGCTCGCGGCGGTGCCGGAGTTCGCGACCAAGGGTGCCCGACGACGGATCACGGCCTGGCAGCGCGCGATCGACGCCGCGCTCGCCCTGCCCGAGGCCGAGCTGCCCCCGGTCCGTGGTCCGCGGACCGACGGCCCGCCGCAGCCGCGCACCTGGGGTGACCGAGACCCGGTCGCAGCGCGTCGCCTGCAGGCGGCCCGCGAGATCATCGCCGAGCTGTCCGAGACCCACGCCGTGCCCGCGGAGAACCTGCTGCAGCCCGACGCGATGCGCCGGCTGTGCTGGTCGCCGCCGGCGCCCGCCGGGCCCGAGGACATCGCCGACTTCCTGCGAGGACGTCGCGCCCGGGAGTGGCAGGTCGACCTGGTGGCGGACCGGTTCGCCCGCGCCTTCGCCGACGTCTGAMSSGVTQVDPDVVPLTEPADGVGDVVSTPQAFARVVDAFGAGSGPVAADAERASGYRYGQSTYLVQLRRAGAGTALLDPVGLPDMSRLADAVGPAEWVLHAASQDLPGLAEHGLLPPRVFDTELAARLLNLPRVGLAAVVAETLGLGLAKEHSAVDWSTRPLPTDWLRYAALDVEVLVEVRDVLAARLDEAGKAEWAAQEFEHVRTLPPPAPRPDPWRRTSGTHTVKNRRGLAVVRSLWEARERNARERDVSPGRVLPDRAIVAAAKALPRTAGQLAAVPEFATKGARRRITAWQRAIDAALALPEAELPPVRGPRTDGPPQPRTWGDRDPVAARRLQAAREIIAELSETHAVPAENLLQPDAMRRLCWSPPAPAGPEDIADFLRGRRAREWQVDLVADRFARAFADVNANANANANA
AK018_047601272fadA_2COG01833-ketoacyl-CoA thiolase FadAATGACCGTGGCCCCTCAGGCCCCCGGCACCACCCGAGACCCGGCCCGGCGCGCGCTGCGCGACGTCGTCTTCGTCGAGGGCGTGCGCACCCCCTTCGGCAAGGCGAAGGCCGACGGCCTCCTCGCCGAGACCCGCGCCGACGACCTCGTGGTCAAGGCCCTGCGCGAGCTGCTGCGCCGCCACCCCGAGCTGCCGCTCGACCGCATCGACGAGGTCGCCGTCGCCGCGACGACGCAGCAGGGCGACCAGGGCCTGACGCTCGGACGCACCGCCGCGCTCCTGGCCGGCCTGCCGACGTCGGTCCCGGGCTACGCGATCGACCGTATGTGCGCCGGCGCCATGACCGCCGTGACGACCACCGCCTCGAGCATCGCCGTGGGCGCCTCCGACGTCGTCGTCGCCGGCGGCGTCGAGCACATGGGCCGCCACCCCATGGGCCTGGACGCCGACCCCAACCCGCGGTTCCTCGCCGAGAAGCTCGTCGACCCCGAGGCGCTCAACATGGGGGTCACCGCCGAGAACCTGCACGACAAGTTCCCCCACCTGACCAAGGAGCGGGCGGACGCCTACGCCGTCAACACCCAGGCCAAGTACGCCAAGGCGCTGGCCAACGGCGACATCGGCCCCGAGATCGTGCCCGTCGCCGTCCGGTCGGCCGAGAAGGGCTGGGGGCTGGCCACCGCCGACGAGCTCCCCCGCCCCGGCACCACGGTCGAGGGCATCGCCGATCTCAAGACGCCGTTCCGCCCCGGCGGCCGGGTCACCGCCGGCAACGCGTCCCCGCTGACCGACGGCGCCACCGTCTCGCTGCTCGCCGCCGGCGACACGGCCGACGAGCTCGGCCTGCCCGCCGCGATGCGCCTGGTCTCCTACGCCTTCGCCGGCGTCCCGGCCGAGATCATGGGCTACGGCCCGGTCCCGGCCACCGACAAGGCGCTCGCCAAGGCAGGGCTGACCATCGACGACATCGGCCTGTTCGAGATCAACGAGGCCTTCGCCGTCCAGGTCCTCAGCTTCCTGGACCACTACGGCATCGCCGACGACGACGAGCGCGTCAACGCCTACGGCGGCGCCATCGCCGTCGGCCACCCGCTGGCCGGCTCCGGCGTGCGACTGATGACCCAGCTCGCGCGCCAGTTCGCCCAGCACCCCGAGGTCCGCTACGGCATGACGACCATGTGCGTCGGCCTGGGCCAGGGCGGCACCGTGATCTGGGAGAACCCCCACCACGCCGACTACTCCGGCCACGTCCCGTCGACCACGGAGGACTGAMTVAPQAPGTTRDPARRALRDVVFVEGVRTPFGKAKADGLLAETRADDLVVKALRELLRRHPELPLDRIDEVAVAATTQQGDQGLTLGRTAALLAGLPTSVPGYAIDRMCAGAMTAVTTTASSIAVGASDVVVAGGVEHMGRHPMGLDADPNPRFLAEKLVDPEALNMGVTAENLHDKFPHLTKERADAYAVNTQAKYAKALANGDIGPEIVPVAVRSAEKGWGLATADELPRPGTTVEGIADLKTPFRPGGRVTAGNASPLTDGATVSLLAAGDTADELGLPAAMRLVSYAFAGVPAEIMGYGPVPATDKALAKAGLTIDDIGLFEINEAFAVQVLSFLDHYGIADDDERVNAYGGAIAVGHPLAGSGVRLMTQLARQFAQHPEVRYGMTTMCVGLGQGGTVIWENPHHADYSGHVPSTTEDPGPT0001565_590DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
AK018_047612145fadJ_3COG1024Fatty acid oxidation complex subunit alphaATGAGCCAGAGCACCACCGAACCTCGCGCCGAGCGCGTCACCCACTCCCTCGTCCGGGACGTCGAGCTCCCCGGCGGCCAGGGCACCCTGGCGCTCGTCACGCTCGACAACGGCCTGGACCACACCAAGCCCAGCACCCTCGGCCCCGAGGGGCTGGCCGAGCTGACCGCCGCCCTGCGTGCGCAGCAGCGGCGCGCGGCCGACGGCGAGATCGTCGCCGTGGCCGTCACCGGCAAGCCGTACTTCCTGGCCGCTGGCGCCGACCTGCTCGGCGTGAGCACCGTGACCTCCCACGAGCAGGCCCTCGAGCTCGGTCGCGCCGGGCACGCGGCCTACGAGCTGCTGCACACCATGGGCGTACCGACCTTCGCCTTCGTCAACGGCCTCGCCCTCGGCGGCGGCCTCGAGGTGGCCCTGAACTGCGACTACCGCACCGTCGCCTCCGACGCCGCGGCGCTGGGCCTGCCGGAGACCGGCCTCGGCCTGGTGCCGGGCTGGGGCGGCGCGTACCTCGTGCCCCGCCTGGTCGGGATCGAGAAGGCCGTGGACGTCATCCTCACCCGGCCGGCGGCGAACAAGCCCTTCAAGCCCGCCGAGGCCCACGAGATCGGCCTGGTCGACGAGGTCTTCGAGGCGGCCGACTTCCTCGAGCGGTCGATCTACTGGGCCACCGAGGTGCTGCGGGGCGACGTCGTCCCCGCGCGACGCGAGCTCGACCCGCAGCCCGTGTGGGACGCCGTCGTGCAGGCGACCCGCGAGCGCCTCGACGCCACGATCCACGGGTCGCGACCCGCGCCGTACCGGGCGCTGGACCTGCTGGCCGGGGCGCGGACCGCCTCGCGCGAGGAGGCCTTCACCGCCGAGGACCAGGCGCTGGCCGACCTCATCATGACCGACGAGATGCGCTCGAGCGTGTACGCGTTCCAGCTCACCTCCTCGGGCAAGAAGCCGAAGGGCGCGCCCGACAGGTCCCTCGCGAAGCCGGTCACCCGTGTCGGCATCGTCGGTGCCGGTCTCATGGCCGCCCAGATCGCCCTGCTCGTCTCGCAGCGCCTGGGCGTGCCGGTCGTCATGCGCGACCTGGACACCGAGCGCGTCGAGAAGGGCCTCGGCTACGTGCGCTCCACCGTCGAGAAGCTCGTCGGCCGCGGTCGCATGAAGCCGGAGGTCGGCGACCGTGTCGTCGCCAGCATCACCGGTACCACCGAGATCGACGAGTTCGCCTCGTGCGACGTCGTCGTGGAGGCCGTCACCGAGGTGATGGGCCTGAAGAAGAAGGTGTTCGCCGAGCTCGAGGAGATCGTGAGCGAGGACACCGTCCTCGCCACGAACACCTCGGCGCTGTCGATCACCGAGATGGCCTCCGACCTGCGCCACCCCGAGCGCGTGGTCGGCATCCACTTCTTCAACCCGGTGGCCCAGATGCCGCTGGTCGAGGTCGTCAACGCCGAGCACACCTCCGACGAGGCGCTGGCCACGGCGTTCGCCATCACGAAGAAGCTGCGCAAGACGGCCGTGCTCGTCGCCGACCGTCCGGGCTTCGTGGTCAACCGGCTCCTCGTGCTGGTCATGGGCAAGGTCGTCGAGGCCGTGGAGAACGGCACCTCGGTCGAGATCGCCGACACCGCCCTGTCGCCGCTCGGGTTCCCGATGCCCACGTTCGAGCTGTTCGACCTGGTCGGCCCCGCCGTCGGGCTGCACGTGCTCACCTCGCTGCGCGAGGACCTGGGCGAGCGGTTCCCTCGCTCCCCCGGCCTGGAGAAGCTCGTCGCCGACGGCACCCGCGTGGTGCTCGACGCGCCGGGCCGCGGGCTGCCCAAGCCCGTCGACCCGGCGATCCAGGGCGTCTTCGGCGAGGCGCTGCCCGCCGGCACCGAGGGACGCGCCGGCACGCCGGTGCTCGACGCCGACGGCGTGCTGGACTCGGTGCTCACGGCCCTGACCGTGGAGATCGGGCACATGCTGGAGGAGAACGTGGTGGCCGACCCGTCGCAGATCGACCTGTGCATGATCCTGGGCGCCGGGTGGGGCTTCCACACCGGCGGCATCACGCCGTACCTGGACCGCACCGGCTACAGCGAGAAGGTGCTGGGCCGGCGCCTGCTGCCGGACGGCGTCGCGAACGTCCCCGAGGGCTCCGCCTGAMSQSTTEPRAERVTHSLVRDVELPGGQGTLALVTLDNGLDHTKPSTLGPEGLAELTAALRAQQRRAADGEIVAVAVTGKPYFLAAGADLLGVSTVTSHEQALELGRAGHAAYELLHTMGVPTFAFVNGLALGGGLEVALNCDYRTVASDAAALGLPETGLGLVPGWGGAYLVPRLVGIEKAVDVILTRPAANKPFKPAEAHEIGLVDEVFEAADFLERSIYWATEVLRGDVVPARRELDPQPVWDAVVQATRERLDATIHGSRPAPYRALDLLAGARTASREEAFTAEDQALADLIMTDEMRSSVYAFQLTSSGKKPKGAPDRSLAKPVTRVGIVGAGLMAAQIALLVSQRLGVPVVMRDLDTERVEKGLGYVRSTVEKLVGRGRMKPEVGDRVVASITGTTEIDEFASCDVVVEAVTEVMGLKKKVFAELEEIVSEDTVLATNTSALSITEMASDLRHPERVVGIHFFNPVAQMPLVEVVNAEHTSDEALATAFAITKKLRKTAVLVADRPGFVVNRLLVLVMGKVVEAVENGTSVEIADTALSPLGFPMPTFELFDLVGPAVGLHVLTSLREDLGERFPRSPGLEKLVADGTRVVLDAPGRGLPKPVDPAIQGVFGEALPAGTEGRAGTPVLDADGVLDSVLTALTVEIGHMLEENVVADPSQIDLCMILGAGWGFHTGGITPYLDRTGYSEKVLGRRLLPDGVANVPEGSANANANANANA
AK018_04762690hypothetical proteinATGACCACGCACGAGTCCTTCAAGCGCCGCGTCCGCGAGCGCATGGCCCGCACCGGCGAGCGGTACGCCGCCGCGCGCCGCACCCTGCTGTCCGCCCCGACCGACGCGCCGGGTGCGCCGGGCCGGTGGGTCAGCGAGCCCGAGCTGTCCGACGCGCGGGTCCGCTCCGCGACCGGTCTCGGCTGGGACGAGTGGGTCGCGCGGATCGACGCCGGCCCCGGACGGTCCGCCAGCCACCCCGACCTCGTCGCCTGGGTGGGCGAGGACGCGGAGTTCTCCGGCTGGTGGGTGCAGACGGTGACGGTCGGCTACGAGCGGATCACCGGCATCCGGCTGCCGGGTCAGATGCCCGACGGCACCTTCACGATCAGCCGGTCGAAGCTGCTCGGAGCGAGCCGTGACACGGTCCGGGCGCGCCTGCTCGACGACGGCGGCCCGGGCACCCTGGTGCCGGGGCTGACCCTGACGGCGCGGTCCCGCCCGGGCGTCAAGAGCCCGCGCTTCACCGTCGCCGAGCCGGGCGACGACGGTGACGTCGCCCAGGGGATGCTGCTGGTGTCGACCGACGCCGTCGGCGACCGCTGCCGCCTGACGGCCACCCACGAGGGGATCCGCACGGCGGCCGAGGCCGAGCAGTGGAAGAAGTTCTGGGGCGAGTGGCTCACGACCCTGGCCGACGAGCTCGGCTGAMTTHESFKRRVRERMARTGERYAAARRTLLSAPTDAPGAPGRWVSEPELSDARVRSATGLGWDEWVARIDAGPGRSASHPDLVAWVGEDAEFSGWWVQTVTVGYERITGIRLPGQMPDGTFTISRSKLLGASRDTVRARLLDDGGPGTLVPGLTLTARSRPGVKSPRFTVAEPGDDGDVAQGMLLVSTDAVGDRCRLTATHEGIRTAAEAEQWKKFWGEWLTTLADELGNANANANANA
AK018_04763669gph_10Phosphoglycolate phosphataseATGATCTGGCTCCTGGACCTGGACAACACGCTCGTCTCCCGCGACGCCGCGTTCGCCTCCTGGGCGGACTCGGCGGTGGCGGCCGACGGCGGCACGGCGGCGGACCTGGCGGCGATCGTGGCGGCGGACGACGGCGGGTTCTCGCCCAAGGCCGACGTCGCCCGCGAGCTCATCGCGCGGCTGGGCTGGGTCGACGACGTCCCCGCGGCGATCGACCGGTTCCGGGCCGGCATCCGCGAGCACGTGCGGGCCTACGACGGCGTGCTGGCCGACCTCGACGCGCTGCGAGCCGCCGGTGACCGGGTGGCCGTGGTCACCAACGGCGTCTCGCACCAGCAGCGCGGCAAGATCGCGGCCTGCGGCGTCGAGGCGTCCGTCGACGCGGTCGTCGTCTCCGGCGAGGAGGGCGTGGAGAAGCCCGACCCGGCCATCGTCGAGATCGCGCTCGAGCGGCTCGGGGCGTCCGCCGTCGACCGCGACCAGGTCTGGATGGTCGGCGACGCCGGGCACGCCGACGTCGCCGTGGGCCGGGCCGCCGGGGTGCGTACCGGGTGGGTGTCGCACGGTCGCGCCTGGGACGACGTCCACGGTGCGGCGCCCGACGTCGTGGGCGCGACCACGCGGGACGTGCTGGCGCTCGCGACGGCCGGCGAGCGCGCCGCGTCCTGAMIWLLDLDNTLVSRDAAFASWADSAVAADGGTAADLAAIVAADDGGFSPKADVARELIARLGWVDDVPAAIDRFRAGIREHVRAYDGVLADLDALRAAGDRVAVVTNGVSHQQRGKIAACGVEASVDAVVVSGEEGVEKPDPAIVEIALERLGASAVDRDQVWMVGDAGHADVAVGRAAGVRTGWVSHGRAWDDVHGAAPDVVGATTRDVLALATAGERAASPGPT0013410_454DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013410-yjjG-K08723NANA
AK018_04764861COG2755GDSL-like esteraseATGGGTCGCACACGCACCACGGTCTCCGCGCTCGCGGTCTCCCTGCTCGCCTCGGTGACGGCCGCGGTCACCGTCCAGATGCTGCGCCGGCAGGCCGCGATCGCCCGTCGGCGGATCGGCAAGGCGCTCGGCGAGTCGGCTCCGGACGCCGACCGCGTCTGGCGCGGCACGTACGGCGGCGAACCCCTGGACCTGCTCGTGCTCGGCGACTCCATCGCGGCCGGCCTCGGTGCGGACCGGCGCAAGGACACCCTCGGGGCCCGCATCGCCCGCGGGGTCGGCAAGACGCTGCAGCGCCCCGTGCGCCTGCGCTGCGCCGCCGTCGTCGGCTCCGAGTCCTCCGCGCTGGCCGCGCAGCTCGACGGGCTGGACGACGACTACCGACCCGACGTGACCGTCGTCGTGGTCGGCGGCAACGACGTGACCCACCGGGTACCGGTGGCGGTCTCCGTGCGATACCTCGTCGAGACGATCGAGCGGCTGCAGGAGCGCGGGAGCGCCGTCGTGGTCGGCACGTGCCCCGATCTCGGGGCGCTGCGGCCGGTGCCGCAGCCGCTGCGCACCCTGGGGTCGCGGGCCTCGCGCCAGCTCGCCGCCGCGCAGTCGGTGGCCGCCCGGCGCGCCGGGGCGCACGCCGTGTCCCTGGCGGTCGTCGTCGGGCCGTTCTTCATCTCCTCCCCGGACGAGGCGTTCAGCCTCGACCGGTTCCACCCCAGCGCCGTCGGCTACCGCCGCACCGCCAAGGAGCTGGTGCCGTCGGTGCTGGTCGCGCTGGGGGAGCGGGACGACCTGCCGCCCGGGCACCGGCCGCCCGATCCGCTGGCCGGGACGCGGCGGCTGCCGTGGCGCCGGTCCGCGTAGMGRTRTTVSALAVSLLASVTAAVTVQMLRRQAAIARRRIGKALGESAPDADRVWRGTYGGEPLDLLVLGDSIAAGLGADRRKDTLGARIARGVGKTLQRPVRLRCAAVVGSESSALAAQLDGLDDDYRPDVTVVVVGGNDVTHRVPVAVSVRYLVETIERLQERGSAVVVGTCPDLGALRPVPQPLRTLGSRASRQLAAAQSVAARRAGAHAVSLAVVVGPFFISSPDEAFSLDRFHPSAVGYRRTAKELVPSVLVALGERDDLPPGHRPPDPLAGTRRLPWRRSANANANANANA
AK018_047651086ybdK_1COG2170Putative glutamate--cysteine ligase 2ATGGGTGTCGAGGAGGAGTTCCTGCTCGTCGGGCCCGACGGCTCGCCGGTGGCCAAGGCCGCCGAGGCGCTGGAGGCCTCGGGGCACTCCACCAAGGGCGGGGGCACCGGCGCGCTGGAGCCGGAGTTCATGGAGGAGCAGCTGGAGACGGCGACGCACCCGCGCTCCGCGCTGGAGGACCTGGCGGCCGAGATCCGCGCGGGCCGTGCCCGGGCGCAGGACGCCGCCGACCGCGTCGACGCCCGCGCGGTCGCCCTGGCCACCTCGCCCGTGCGGTTCACCGGCACCACGATGCCCGGGGTGCGCTACCAGGAGGCGCGGCGGGCCTTCGGCCTGACGGCGCGCGAACAGCTCACCAGCGGTTGCCACGTCCACGTCGCGGTCGCCGACGAGGCCGAGGGCGTGGACGTCCTGGACCGGATCGGCCCGTGGCTGCCCACCTTGCTCGCCCTGAGCACCAACTCGCCGTTCTGGCAGGGCGAGGACACCGACTACGCGAGCTTCCGCTCCCAAGTGTGGGCGCGGTGGCCGACGGCGGGACCGACGCGGCGGTTCGGCACCCCCGAGGCGTACCACGCGGCCGTGGACGCCATCGTGGCCACCGACACCGTGCTGGACCGCGGCATGGTGCACTTCGACGCCCGCCTGTCGCCGAAGTACCCGACCGTGGAGATCCGGGTCGCCGACGTCTGCCTGCACCCGGACACCGCCACGCTGCAGGCCGCCCTGAGCAGGGGGCTCGTGGAGACCGCGGCGCGGGAGGCCCGCGAGGGGGCGGAGATGACCCGGACGTACCCCGAGCTGCTGCGGACCGCCGCGTGGCGGGCAGGACGGTCCGGGCTGTCCGGCGACCTCGTCTCGCCGCTGACGTGGCGTCCGGCGGCGGCGCACGACGTCGTCGGCCAGCTCGTGTCGCACGTGCGCGAGGCGCTGATCGACGCGGGCGACCTGGAGGCCGTCACCGAGCTGCTGGGTCGGCTGTGGTCCACGGGCGGCGGCGCGGCGCTGCAGCGCGCCTGGTTCGTCGAGTCCGGAGGGGACCTGCACCACGTCGCCGAGCGGGCCGTCGAGGTGACCCACTCCTGAMGVEEEFLLVGPDGSPVAKAAEALEASGHSTKGGGTGALEPEFMEEQLETATHPRSALEDLAAEIRAGRARAQDAADRVDARAVALATSPVRFTGTTMPGVRYQEARRAFGLTAREQLTSGCHVHVAVADEAEGVDVLDRIGPWLPTLLALSTNSPFWQGEDTDYASFRSQVWARWPTAGPTRRFGTPEAYHAAVDAIVATDTVLDRGMVHFDARLSPKYPTVEIRVADVCLHPDTATLQAALSRGLVETAAREAREGAEMTRTYPELLRTAAWRAGRSGLSGDLVSPLTWRPAAAHDVVGQLVSHVREALIDAGDLEAVTELLGRLWSTGGGAALQRAWFVESGGDLHHVAERAVEVTHSPGPT0026300_1857DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
AK018_04766726mca_2Mycothiol S-conjugate amidaseATGGATGCTGAGCTCGCACCGCTGGCCGAGGACTGGGACACCGCGCTGGTCGTGGTCGCCCACCCCGACGACATGGAGTTCGGGGGAGCGGCGGCCATCGCCCGCTGGACCGCCCAGGGCAAGCGGATCGCCTACGTCATGGTCACCAGCGGCGAGGCCGGCATCGACGGCATGCACCCCGACGAGTCGCGCCGGGTCCGCGAGGCGGAGCAGGTGGACTCCGCACGCCTCGTCGGCGTGGACGACGTCGAGTTCCTCGGTTTCCCCGACGGCGTGATCGAGTACGGACTGCCGCTGCGGGCGGCGATCGCGCACGCGATCCGGCGGCACCGCCCCGAGATCGTCATCACCCTGAACTTCCGCGAGGAGTTCCCCGGCGGCGTCCTCAACCAGGCCGACCACGTCGCCGTCGGGCGGGCCGTCGTCGACGCCGTGCGGGACGCCGGCAACCGCTGGGTGTTCATCGACCAGCTCACCGACGGGCTCGAGCGGTGGGACGGGGTCCGCGAGGTCTGGGTGGCGGCGTCGCCGCGGGCCGAGCACGCCGCCGACGTCACCGACACCTTCGACGACGGCGTCGCCTCGCTGCGCGCGCACGCCGCCTACATCGACGGCCTCGGCTGGGAGGACTTCGACCCGGCCGAGTTCCTCGGCCGCATCACGCGCGGCAACGGCGAGGCGTTCGGCACCGAGCACGCCACCGCCTTCGAGGTGCTGAGCATGTGAMDAELAPLAEDWDTALVVVAHPDDMEFGGAAAIARWTAQGKRIAYVMVTSGEAGIDGMHPDESRRVREAEQVDSARLVGVDDVEFLGFPDGVIEYGLPLRAAIAHAIRRHRPEIVITLNFREEFPGGVLNQADHVAVGRAVVDAVRDAGNRWVFIDQLTDGLERWDGVREVWVAASPRAEHAADVTDTFDDGVASLRAHAAYIDGLGWEDFDPAEFLGRITRGNGEAFGTEHATAFEVLSMNANANANANA
AK018_04767861pflA_1COG1180Pyruvate formate-lyase 1-activating enzymeATGACGACCTGCCCGGTGCCCCTGGACGCCCCCACCGTGCGCCGGGCAGGTGCCGGCCTGCGAGGGCTGGCGACCACCGACGTCGAGCGGTCCGAGCGCCTGGACCTCATGCGCTCGGGCGCGCTCGGCTCGGTGCACTCGTGGGAGCTGGTCACCGCGGTGGACGGCCCGGGGACCCGCATGACGGTGTTCCTGTCGGGCTGCCCGCTGCGGTGCGTGTACTGCCACAACCCCGACACGCTGGCCATGAAGGACGGCGGCCCGGTGCTGGCCGACGACCTGCTGGCCCGCATCGAGCGGTACCGCGGCATCTTCGGCGCCACCGGGGGCGGGATCACGCTCTCGGGCGGCGAGGTCCTCATGCAGCCGGCGTTCGCGGCACGGATCCTGCGCGGGGCCAAGGAGCGCGGCGTGCACACCTGCCTGGACACCTCCGGGTTCCTCGGGGCCAACGCCACCGACGAGATGCTCGACGACACCGACCTCGTGCTGCTGGACATCAAGTCCGGCGACGAGGAGACCTACCAGCACGTGACCGGTCGGCCGCTGGCCCCCACCCTGGCCTTCGGCCGGCGGCTCGCCGAGCGCGGCGTGCCGGTCTGGATCCGGTTCGTGCTGGTGCCGGGGCTGACCGACGACCCGCGCAACGTCGAGCTGGTGGCCGAGCACGCCGCCGCGATCGAGGCCGTCCGGCCCGGGACGGTGCAGCGCGTCGAGGTGCTGCCGTTCCACCAGATGGCCCGCGACAAGTGGGCCGAGCTCGGGCGGACCTACGAGCTCGAGGGCACCGAGCCGCCGACGGCGGAGGCCACCGAGGCGGTGCGCGAGGTGTTCCGGTCCCACGGTCTGACGACCTACTGAMTTCPVPLDAPTVRRAGAGLRGLATTDVERSERLDLMRSGALGSVHSWELVTAVDGPGTRMTVFLSGCPLRCVYCHNPDTLAMKDGGPVLADDLLARIERYRGIFGATGGGITLSGGEVLMQPAFAARILRGAKERGVHTCLDTSGFLGANATDEMLDDTDLVLLDIKSGDEETYQHVTGRPLAPTLAFGRRLAERGVPVWIRFVLVPGLTDDPRNVELVAEHAAAIEAVRPGTVQRVEVLPFHQMARDKWAELGRTYELEGTEPPTAEATEAVREVFRSHGLTTYNANANANANA
AK018_047682262pflB_1Formate acetyltransferaseATGACCGTCCAGGAAGAACGTACGACCGCCACGAGTGCCGCATGGGAAGGTTTCGTCCCCGGACCGTGGTGCGACACCGTCGACGTCCGAGACTTCATCCAGCGCAACTACACCCCCTACGCCGGGGACGGGACGTTCCTCGCCGGTCCGACCGAGCGCACCACCGCGCTGTGGGCGCGGCTGAGCGCGATGTTCCCCGCCGAGCGCGAGAAGGGCGTCTACGACGTCTCCTACGACGTACCGGCCGGCATCACCGCCCACGAGCCCGGCTACATCGACTCCGCGAGCGAGATCATCGTCGGCCTGCAGACGGACGCGCCGCTCAAGCGCGCGATCATGCCGAACGGCGGCTGGCGGATGGTCGAAGGGGCGCTGGACACCTACGGCTACCCGGTCGACCAGGACCTGAAGAAGGTCTTCACCGAGTACCGCAAGACCCACAACCAGGGCGTGTTCGACGTCTACCCGCCGAACGTCCGGGCCGCGCGCAGCTCGCACGTCGTGACCGGCCTGCCGGACGCCTACGGCCGCGGCCGCATCATCGGCGACTACCGTCGCGTGGCGCTGTACGGCGTCGACGAGCTGATCGCCGCCAAGAAGCTCGACAAGCTCACCCTCGACGTCGAGCCCTTCAGCGAGTCCGTGGTCCGGGCCCGCGAGGAGCACGCCGAGCAGATCCGCGCCCTGGGCGAGCTCAAGGAGATGGCCGCCTCCTACGGCGTCGACATCTCCGGCCCGGCGCGCACCGCCACCGAGGCCGTGCAGTGGCTGTACTTCGGCTTCCTCGGCGCGGTCAAGGAGCAGAACGGCGCCGCGATGTCGCTCGGACGCACCTCGACCTTCCTCGACGTGTACATCGAGCGCGACCTCGCCGCCGGCCGCCTCACCGAGGCCCAGGCCCAGGAGGTCATGGACGACTTCGTCATCAAGCTGCGGATCGTCCGGTTCCTGCGCACCCCCGAGTACGACGCCCTGTTCTCCGGCGACCCCACCTGGGTCACCGAGACGATCGGCGGCATGGGCATCGACGGCCGCACCCTGGTCACGAAGAACTCGTTCCGGATGCTGCAGACCCTGTACAACCTGGGTCCGGCGCCCGAGCCGAACATGACCGTGTTCTGGACGGCTGACCTGCCCCAGGGCTTCAAGGACTTCTGCTCGCAGGTCTCGATCGACACCTCGGCCGTGCAGTACGAGTCGGACGACGAGATCCGCGCCGCCTGGGGCGACGACGCCGGCATCGCCTGCTGCGTCTCGCCCATGGCGATCGGCAAGCAGATGCAGTTCTTCGGCGCCCGCGTCAACCTCGCCAAGACGCTGCTCTACGCGATCAACGGCGGACGCGACGAGGTCAGCGGCAAGCAGGTCTCCCCGGCCGTGGCCCCGGTACCCGAGGGGCAGCCGCTGGACTACGACGACGTGCGGGCCCGGTTCGACAAGACCATGGACTGGCTGGCCGCGACCTACGTCGAGGCGCTGAACTGCATCCACTGGTCGCACGACAAGTACGCCTACGAGCGGCTCGAGATGGCCCTGCACGACAAGGAGGTGCTGCGGACCATGGCCTGCGGCATCGCCGGCCTGTCCGTGGCCACCGACTCGCTGTCGGCCATCCGCTACGCGACCGTCATGCCGGTCTTCGACGACCGCGGCGTCGTCGTCGACTACGTCACCGAGGGCGACTACCCGGCCTACGGCAACGACGACGACCGTGCCGACGAGATCGCCGTGGAGCTGGTCGAGTCGTTCATGGCCAAGGTGCGCACCCACCGGATGTACCGGGACGCGCTGCCCACCCAGTCGGTGCTGACGATCACCTCGAACGTCGTGTACGGCAAGGCCACGGGCAACACGCCCGACGGGCGCCGCGCCGGCGAGCCGTTCTCCCCGGGGGCGAACCCGATGAACGGCCGCGACACGCACGGCATGCTGGCCTCGGCCCTGTCGGTGGCCAAGCTGCCGTACGCCGACGCCCAGGACGGGATCTCCCTGACGAACACCATCGTGCCCTCCGGGCTCGGGCGGACGCGCCAGGAGCAGATCACCAACCTCTCCGGCCTGCTCGACGCCTCCTTCGGCTCCGGCGGCTACCACATGAACGTCAACGTGCTGGTGCGCGAGACGCTCGAGGACGCCATGGAGCACCCGGAGAACTACCCGCAGCTGACCATCCGGGTCTCGGGGTACGCCGTGAACTTCGTGCGGCTGACCCGCGAGCAGCAGCTCGACGTGCTGGCCCGGACCTTCCACGGAGCGATCTGAMTVQEERTTATSAAWEGFVPGPWCDTVDVRDFIQRNYTPYAGDGTFLAGPTERTTALWARLSAMFPAEREKGVYDVSYDVPAGITAHEPGYIDSASEIIVGLQTDAPLKRAIMPNGGWRMVEGALDTYGYPVDQDLKKVFTEYRKTHNQGVFDVYPPNVRAARSSHVVTGLPDAYGRGRIIGDYRRVALYGVDELIAAKKLDKLTLDVEPFSESVVRAREEHAEQIRALGELKEMAASYGVDISGPARTATEAVQWLYFGFLGAVKEQNGAAMSLGRTSTFLDVYIERDLAAGRLTEAQAQEVMDDFVIKLRIVRFLRTPEYDALFSGDPTWVTETIGGMGIDGRTLVTKNSFRMLQTLYNLGPAPEPNMTVFWTADLPQGFKDFCSQVSIDTSAVQYESDDEIRAAWGDDAGIACCVSPMAIGKQMQFFGARVNLAKTLLYAINGGRDEVSGKQVSPAVAPVPEGQPLDYDDVRARFDKTMDWLAATYVEALNCIHWSHDKYAYERLEMALHDKEVLRTMACGIAGLSVATDSLSAIRYATVMPVFDDRGVVVDYVTEGDYPAYGNDDDRADEIAVELVESFMAKVRTHRMYRDALPTQSVLTITSNVVYGKATGNTPDGRRAGEPFSPGANPMNGRDTHGMLASALSVAKLPYADAQDGISLTNTIVPSGLGRTRQEQITNLSGLLDASFGSGGYHMNVNVLVRETLEDAMEHPENYPQLTIRVSGYAVNFVRLTREQQLDVLARTFHGAIPGPT0001950_560DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-FORMIC_ACID_BIOSYNTHESIS,PGPT0001950-pflD|ybiW|tdcE-K00656NANA
AK018_047691890dxs_21-deoxy-D-xylulose-5-phosphate synthaseATGGGGCTGTTGAGCACGATCACCGCGCCCGAGGACGTGCGCAGGCTCGGACCGGCCCAGACGCGCCGGCTGGCCGCCGAGATCCGCGACTTCCTCGTGCACAACGTCTCGCGCACCGGCGGGCACCTCGGCCCGAACCTGGGCGTCGTGGAGCTGACGATCGCGCTGCACCGCGTCTACGACTCGCCGCGGGACTCCATGGTCTTCGACACGGGCCACCAGTCCTACGTGCACAAGCTGCTCACGGGTCGCCAGGACTTCTCCGACCTGCGCAAGCGCGGCGGGCTGTCCGGCTACCCCAGCCGGGCCGAGTCCGAGCACGACGTCGTGGAGAACTCCCACGCCTCGACCGCCCTGTCCTGGGCGGACGGCATCGCCAAGGCGAACACGGTGGGCCGCCACGACGACCGCCACGTCGTGGCCGTCATCGGCGACGGCGCGATGACCGGCGGCATGGCGTGGGAGGCGATCAACAACATCGCCGCCGGCCCGGACCGCCGTCTGGTCATCGTCGTCAACGACAACGGCCGCTCGTACTCGCCGACCATCGGCGGGCTGGCCAACCACCTGGACACGCTGCGCACCACCCGCGGGTACGAGGCGTTCCTGCAGTGGGGCAAGCGCACGCTGCACCGCACCGGCCCGCCCGGACGGTTCGCCTACGACTGGCTGCACGGGCTGAAGAAGGGCCTCAAGGACGTCGTCGCCCCGCAGGGCATGTTCGAGGACCTCGGCCTGAAGTACATCGGTCCGGTCGACGGCCACGACGTGTCCGCGATGGAGCACGCCCTGCGCCGCGCCAAGACGTTCGGCGGGCCGGTCATCGTGCACGCCATCACCGAGAAGGGCCGCGGCTACATCCCCGCCGAGGAGGACGTCGCCGACCGGTTCCACGCGGTGGGCACCATCCATCCCGAGACCGGGCTGCCGGTGGCGCCCTCGCGGTTCGGCTGGACCCAGGTCTTCGCCGAGGAGATCGTCGAGATCGGCCGCCGCCGTCCCGACGTCGTCGCGATCACCGCGGCGATGCTGCACCCGGTGGGGCTGGCCCCGTTCGCCGAGGAGTTCCCCGAGCGCACCTTCGACGTCGGGATCGCCGAGCAGCACGCCGCGACGTCGGCGGCCGGCATGGCATTCGCCGGGCTGCACCCGGTGGTCGCCGTGTACGCGACCTTCCTCAACCGCGCCTTCGACCAGCTGCTCATGGACGTCGCCCTGCACTCCGCCGGGGTGACGTTCGTGCTCGACCGGGCCGGCATCACCGGCGCCGACGGCGCGAGCCACAACGGCATGTGGGACATGGCGATGCTGCGCATCGTGCCGCGGCTGCGGCTGGCCGCCCCGCGCGACGAGGCGACGCTGCGCGACGCCCTGCGCGCCGCCGTCGACGTCGACGACGCACCCACCGTCGTGCGCTACCCCAAGGGCGCGCTCGACGAGCCGATCGAGGCGCTCGAGACGCTCGAGGGCGTCGACGTCGTGGCCCGGCGCGCGCCGGATCCGGAGGCCGCCACCGGGGCGAGCGTGCTCGTCGTGGGCGTGGGGGCGATGGCCGCCACGGCGATCGCGGCCGGGGAGTCGCTCGCCGCGCACGGCCTGGCCGTCGAGGTCGTGGCGCCCACGTGGGTGCTGCCGGTGCCCGAGAACCTGGTGAAGACGACCGGGGACCACGACCTCGTGGTGACGCTGGAGGACGGCGTCGTCGACGGCGGCGTGGGGGCGATGCTCGCCCAGCGCGCGGCCGAGCGCGGCGTGCGCACCCCGTTCGTGCACACGGGTCTGCCGGTGGAGTTCCTCGACCACGCCAGCCGCGAGCAGATCATGACGGCGCAGCGCATGCGGGCCGAGGACGCGGTGCGCGACGCGCTCGCCGAGCTCGCCCAGGACTGAMGLLSTITAPEDVRRLGPAQTRRLAAEIRDFLVHNVSRTGGHLGPNLGVVELTIALHRVYDSPRDSMVFDTGHQSYVHKLLTGRQDFSDLRKRGGLSGYPSRAESEHDVVENSHASTALSWADGIAKANTVGRHDDRHVVAVIGDGAMTGGMAWEAINNIAAGPDRRLVIVVNDNGRSYSPTIGGLANHLDTLRTTRGYEAFLQWGKRTLHRTGPPGRFAYDWLHGLKKGLKDVVAPQGMFEDLGLKYIGPVDGHDVSAMEHALRRAKTFGGPVIVHAITEKGRGYIPAEEDVADRFHAVGTIHPETGLPVAPSRFGWTQVFAEEIVEIGRRRPDVVAITAAMLHPVGLAPFAEEFPERTFDVGIAEQHAATSAAGMAFAGLHPVVAVYATFLNRAFDQLLMDVALHSAGVTFVLDRAGITGADGASHNGMWDMAMLRIVPRLRLAAPRDEATLRDALRAAVDVDDAPTVVRYPKGALDEPIEALETLEGVDVVARRAPDPEAATGASVLVVGVGAMAATAIAAGESLAAHGLAVEVVAPTWVLPVPENLVKTTGDHDLVVTLEDGVVDGGVGAMLAQRAAERGVRTPFVHTGLPVEFLDHASREQIMTAQRMRAEDAVRDALAELAQDPGPT0008960_2581DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008960-dxs-K01662NANA
AK018_047701449guaB1_2COG0516putative oxidoreductaseGTGCGTTTCCTGCCGGGCCAGCAGCCCACCACCGACCTGACCTACGGCGACGTCTTCATGGTGCCGTCCCGCTCGGACGTCACCAGCCGCTTCGACGTCGACCTCTCCAGCGACGACGGCACGGGCACCACGACGCCGATCGTGGTCGCCAACATGACCGCCGTCGCGGGCCGCCGCATGTCCGAGACCGTGGCCCGCCGCGGCGGGATCGCGATCCTGCCGCAGGACATCCCCGTCGACGTCGTGGCCGACGTCGTGGCAGACGTGAAGTCCAAGGACCCCGTCGTCGAGACGCCCGTCGTGGTGACCCCCGCGGACACCGTCGCCGACGTGCTGTCCCTGCTGGGCAAGCGGTCCCACGGCGCGGCCGTCGTGGTCGACTCCGGCCGCCCCGTCGGCGTGGTCACCGAGGCCGACTGCACCGCCGTGGACCGGTTCGCCCGCGTCGAGGCCGTCATGTCCACCGACCTGGTGACCCTGGACGCCCAGCGGATCGAGGACGACGGCCTGGCAGCCACCTTCGAGCAGCTGCACGCCGCCAAGGTCCAGCTCGCCCCCGTGGTGCGCGACGGCGTCCTGGCCGGGGTGCTGACCCGCAAGGGTGCCGTGCGCTCGACCGTCTACTCCCCCGCGCTCGACGCCGAGGGCCGGCTGCGCGTGGGGGCGGCGGTCGGGATCAACGGCGACGTGGCCGCCAAGACCCGCGACCTGCTCGACGCCGGGATCGACGTGCTCGTCGTCGACACCGCGCACGGGCACCAGGACAAGATGATCGCCGCCCTGGAGGCCGTGCGGTCGGTCGACCCGCAGGTCCCGGTCGTGGCCGGCAACGTGGTCACCGCCCAGGGAGTGCGCGACCTCGCCGCGGCCGGCGCCGACATCCTCAAGGTGGGCGTCGGCCCGGGTGCCATGTGCACCACCCGCATGCAGACCGCCGTCGGACGCCCCCAGTTCTCGGCCGTCCTGGAGTGCGCCGCCGCGGCCCGCGAGCTCGGCAAGCACGTCTGGGCCGACGGCGGCGTGCGCCACCCGCGGGACGTCGCTCTCGCGCTGGCGGCCGGCGCCTCGCAGGTGATGGTCGGCTCCTGGTTCGCCGGGACGTACGAGTCGCCCGGCGACCTGCACGAGGACGGGTCCGGACGCCTCTACAAGGACTCGTTCGGCATGGCCTCGGCCCGCGCCGTGGCCGCCCGCACCGCCGGAGCCGGGTCGGCGTTCGACCGCGCGCGCAAGGCGCTGTACGAGGAGGGCATCTCGACGGGCAAGATGTACCTGGACCCGCGCCGCCCGGGCGTGGAGGACCTGCTCGACGAGATCACCTCGGGCCTGCGCTCGAGCTGCACCTACGCCGGGGCGCGGACCCTGGCCGAGTTCGCCGAGCGCGCCACCGTCGGGATCCAGTCGGCCGCCGGGTTCGCCGAGGGCATGCCGGTGGCCACCTCCTGGTGAMRFLPGQQPTTDLTYGDVFMVPSRSDVTSRFDVDLSSDDGTGTTTPIVVANMTAVAGRRMSETVARRGGIAILPQDIPVDVVADVVADVKSKDPVVETPVVVTPADTVADVLSLLGKRSHGAAVVVDSGRPVGVVTEADCTAVDRFARVEAVMSTDLVTLDAQRIEDDGLAATFEQLHAAKVQLAPVVRDGVLAGVLTRKGAVRSTVYSPALDAEGRLRVGAAVGINGDVAAKTRDLLDAGIDVLVVDTAHGHQDKMIAALEAVRSVDPQVPVVAGNVVTAQGVRDLAAAGADILKVGVGPGAMCTTRMQTAVGRPQFSAVLECAAAARELGKHVWADGGVRHPRDVALALAAGASQVMVGSWFAGTYESPGDLHEDGSGRLYKDSFGMASARAVAARTAGAGSAFDRARKALYEEGISTGKMYLDPRRPGVEDLLDEITSGLRSSCTYAGARTLAEFAERATVGIQSAAGFAEGMPVATSWPGPT0021445_4619DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
AK018_04771708nudL_2putative Nudix hydrolase NudLGTGACGCGCGTGCCCGGCTCCCCCGCCTCGGCGCGCGACCAGCTCGCTGCGCTGGTGCGCGACGACGCCTTCACCGGCCCGTGGCCGCACGCCCGCGGCGACCTCGACCCGCAGGTCGCCCGGCCGGCGTCGGTCCTGGTGCTGTTCGGCGTGCTGGACGGGCTGCCGGCGGACCACCACGCCCAGGCGCAGGCCGTCTCGCACGACCTCGACGTGCTGCTGCTCGCCCGGGCGGCGACCCTGAGCTCGCACGCGGGCCAGGTCGCCTTCCCGGGCGGTCGCGCGGACGCGGACGAGGACGCCGTCTCGGCGGCCCTGCGCGAGGCCCGCGAGGAGACCGGCGTCGACCCCGACGGCGTCGACGTGCTCGGCACGCTGGCGGCGCTGCCGATGCCGGTGAGCAACCACGTCGTCACGCCGGTCCTGGCCTGGTGGACCCGCCAGTCCCCCGTCGGCGTGGTCGACCCGGCCGAGTCCGCGCACGTGTTCCGCGCGCCGGTGGCCGACCTGCTCGACCCCGAGCGCCGCGTCACCACCGTGCTGCGCCGCGGCGGCCAGGTCTGGCGCGGTCCGGCGTTCCAGGTGCACGACGGCGGCACGCAGCACCTCGTGTGGGGGTTCACCGCGGGCGTGCTGGACGCGCTCTTCGACCACCTGGGCTGGACCGAGCCGTGGGACCGCGCCCGCGAGCTGGAGCTCGACCCCTGAMTRVPGSPASARDQLAALVRDDAFTGPWPHARGDLDPQVARPASVLVLFGVLDGLPADHHAQAQAVSHDLDVLLLARAATLSSHAGQVAFPGGRADADEDAVSAALREAREETGVDPDGVDVLGTLAALPMPVSNHVVTPVLAWWTRQSPVGVVDPAESAHVFRAPVADLLDPERRVTTVLRRGGQVWRGPAFQVHDGGTQHLVWGFTAGVLDALFDHLGWTEPWDRARELELDPPGPT0008760_1DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008760-thnR-K18568NANA
AK018_04772888hypothetical proteinATGGCCGCCGCCGAGGTCGAGATCGACGTCGCGCTGGTGCGGGCGCTGCTCGCCGCCCAGCACCCGGACCTGGCCGACCGCCCGCTGCGCGTCGCCGCCGAGGGCTGGGACAACGTCCTGGTGCTCCTCGGCGACGACCTCGCCGTGCGGCTGCCACGCCGGGAGGCCGCGGCCCCGCTGATCGAGCACGAGCAGCAGGTGCTGCCCCGGCTGGTCGAGCGGCTGCCGGTCCCCGTCCCCGCCCCGGTGCGCCGCGGGAGCCCGAGCACCGACCCGCCCTACCCCTGGTCGTGGTCCGTGGTGCCCTGGTTCGCCGGCCACCGCGCGGCCGCCGTCCCGCGGTGGCGGCGCCGTCGGCTCGCCGGACCGCTGGCGGCGTTCCTCGAGGCCCTGCACCGCCCGGCCGAGGACGCCCCCGTCAACCCGGTCCGGGGCGTGCCGCTGACCACCCGCGACGAGGCCGTCCGACGCCGGCTCGCCGACCCGCGGGTCCGGCAGGCCGACCGGCTCGAGCGCGTGTGGCAGGCCGCCCTGGCCGCCCCCGTCCACGACGGGCACGCGCTCTGGCTGCACGGCGACCCGCACCCCGGCAACCTCGTCGTCGACGACGATGCCGGGCTGGCCGCCGTCGTCGACTTCGGGGACGTCACGGCCGGGGACCCCGCCACGGACCTGGCCACGGCCTGGCTGACCTTCGACACCGCCGGCCGGGAGGCGTTCCGGGCCGGCCTCGCGCACCGCTACCCCGCCGGCGACCCGGTGTGGGTCCGGGCTCGCGGCTGGGCGGTGGCGATGGCGACCGCGATGGTCGTCGACTCCTCGGCCGAGCACGACTGGCTGCCGCCGCTCGGCGCCGCGGCGCTGACCCAGGTGCTCGCCGACTCCTGAMAAAEVEIDVALVRALLAAQHPDLADRPLRVAAEGWDNVLVLLGDDLAVRLPRREAAAPLIEHEQQVLPRLVERLPVPVPAPVRRGSPSTDPPYPWSWSVVPWFAGHRAAAVPRWRRRRLAGPLAAFLEALHRPAEDAPVNPVRGVPLTTRDEAVRRRLADPRVRQADRLERVWQAALAAPVHDGHALWLHGDPHPGNLVVDDDAGLAAVVDFGDVTAGDPATDLATAWLTFDTAGREAFRAGLAHRYPAGDPVWVRARGWAVAMATAMVVDSSAEHDWLPPLGAAALTQVLADSNANANANANA
AK018_04773462hypothetical proteinGTGAGCGCACCAGAACCCCCTGCCGACGTCCCCGCCGACCTCCCCGCCGACGTGGCGGCGTTCGTCGAGGCCGTCGCCCGCCCGGCCCGACGTCGGGACGCCCGGACCCTGCTGGAGCTGATGGCCCGGGTCACCGGCGAGCCCCCGGTGCTGCACGGCACGATCGTCGGGTTCGGGCGCTACCGCTACGAGTACGCCTCGGGACGGTCCGGCGACGCCCCCGCCGCGGCGTTCGCACCGCGCGCGGCGCACAGCGTCGTCTACCTCATGGACGGTGTCGACGCCCATGCCGAGGACCTCGCTCGGCTGGGCCCGCACCGGACCGGCGTCGGCTGCCTGTACCTGACGAACCTGGAGAAGGTCGACCTCGCGGTGCTCGGGAAGATCGTCGCCGACGCCTACGCCAGGCTGACGTCCGGCACCTACGGGCTCCGCGCCCGTGACGGTTCCCCTGACCGGTAGMSAPEPPADVPADLPADVAAFVEAVARPARRRDARTLLELMARVTGEPPVLHGTIVGFGRYRYEYASGRSGDAPAAAFAPRAAHSVVYLMDGVDAHAEDLARLGPHRTGVGCLYLTNLEKVDLAVLGKIVADAYARLTSGTYGLRARDGSPDRNANANANANA
AK018_047741371hypothetical proteinATGAGCAGCGACCGGGATCGCGGGACGACGCGGCCGGCGGGTTCCGAGCAGTCGGCGGAGGCCCGTCTCGAGAGCTGGCGGGAGGCGCTGCGGCGGCACGAGGCCGACGACGTCGAGGGACGCACCGAGCGCCTCCGGGCCCGGATGGCCACGCTGCAGGAGGCGGGCCTCGACACCGACGAGGCGTTCCTCGTCGCGATGATGCGCCAGGACCGGGACGACCCGGTCGCGCGCGACGTCGCCCGCGAGCAGGCGGCGGTGTTCTGGCGGCGGTTCGACCGGGCACCCGCCCCCGAGGGCGACACCGCGGTCGACTGGCGGGAGGTCGGTGTCGTGGCGCTGCTGGCCCTCGGTGTCGGCGTCAGCGTCAAGCTGGGGGTCGCCGAGCTCGACAGCACGGCGTTCGGGCACAACGTCGCCCTGCTCGTGGCGCCGTTCCTCGGCGCCTACTTCGCCTGGAAGCGACGGGTGTCGTGGCGCACCGCGGCCGTGCTCCTGCTCGCCACGGCCGTCCTGGCCGTCGCGATCAACGTCTACCCGTTCGACGTCGGCGGGGCGACGGGCTTCCTCGCCGCGCTGCACGCGCCCGTCGTCCTCTGGGGGCTGATCGGCGTCGCCTACGCCGCCGGGCGGTGGCGCTCGACGGCGGGCCGGCTGCGCTACCTGCGGTTCACCGGCGAGCTGGTGGTCTACTACGCCCTCATCGCCCTGGGCGGCAGCCTGCTCGTCGGGCTCACGATCGGCCTCCTGACCCTGGCCGGCGTGGAGTTCCGGAGCGTGATCGAGGACTGGGTGGTGCCGATGGGCGTGCCCGCCGCGCTGCTGGTCGCCGCCTGGCTCGTGGAGGCCAAGCAGGAGGTCGTGGAGAACATCGCCCCGGTGCTGGCGAAGATCTTCGTCCCGCTGACCACCGTCACGCTGCTCGTCAGCGTCGCGGTGCTGGGGGCGGTGGGCAGCCTGACGACCGTCGACCGCGAGTTCCTCATCACCCTGGTCTCGGTCCTCGTCGTCGCGCTGGCGCTGCTGCTGTACGCGGTGGCGGCCCGCCCGGCCGGTCAGCGGCCCGGGTTCTTCGACGGCGTGCTGCTGGCGATGGTGCTGGCCGCCGTGGCCGTCGACGGTGTCGTCGTGACGGCGATGGCGGCCCGGACGGCCGAGTTTGGCTGGAGCCCCGCCAAGACCGCCGCCCTGGGTCTCGGGGTGCTGCTGGCCGTGCACCTGGTGTGGTCGGCGTGGCGGCTCGTCGCGATGCTGCGTCGGCGTGACGGGGTCGCCGCGCTGGACCGGTCGCAGGCGGCGGTGCTGCCGTTCTACGTCGGCTGGGCCTTCGTCGTGGTGGTCGCCGTCGGGCCGGTCTTCGGCTTCGTCTGAMSSDRDRGTTRPAGSEQSAEARLESWREALRRHEADDVEGRTERLRARMATLQEAGLDTDEAFLVAMMRQDRDDPVARDVAREQAAVFWRRFDRAPAPEGDTAVDWREVGVVALLALGVGVSVKLGVAELDSTAFGHNVALLVAPFLGAYFAWKRRVSWRTAAVLLLATAVLAVAINVYPFDVGGATGFLAALHAPVVLWGLIGVAYAAGRWRSTAGRLRYLRFTGELVVYYALIALGGSLLVGLTIGLLTLAGVEFRSVIEDWVVPMGVPAALLVAAWLVEAKQEVVENIAPVLAKIFVPLTTVTLLVSVAVLGAVGSLTTVDREFLITLVSVLVVALALLLYAVAARPAGQRPGFFDGVLLAMVLAAVAVDGVVVTAMAARTAEFGWSPAKTAALGLGVLLAVHLVWSAWRLVAMLRRRDGVAALDRSQAAVLPFYVGWAFVVVVAVGPVFGFVNANANANANA
AK018_04775408hypothetical proteinATGCACATCGACAAGGACCTCGTCGCGGCCTCCGCGACACCGCTCGTGCTCGGCATCCTCGCCGAGGGCCAGTCGTACGGGTACGCCATCGCCAAGCGGGTGGCCGATCTGTCCGGCGGCCGGATGAGCTGGACGGACGGCATGCTCTACCCCCTGCTGCACCGCCTGGAGCGCCACGGCCTGGTCGAGGCGTCCTGGGGCCGGTCCGGGTCCGGACGTCGCCGCAAGCACTACGCCCTCACCCCGGCCGGGCACGAGGCCCTGGCCGAACGGCGCCGGCAGTGGGACGTCGTCGCCGAGACCCTGGGCGAGGTCTGGCGCACGCTGTCCGACGGCGCCGCGGACGCCGCCGGCGCGGCGGCCCCGCGGCCGGCTGCGGGCCCGGCGACGGCCGGGGGCACGGCATGAMHIDKDLVAASATPLVLGILAEGQSYGYAIAKRVADLSGGRMSWTDGMLYPLLHRLERHGLVEASWGRSGSGRRRKHYALTPAGHEALAERRRQWDVVAETLGEVWRTLSDGAADAAGAAAPRPAAGPATAGGTANANANANANA
AK018_047761347hypothetical proteinATGAGCGGCACCGACGCCCTCGAGGTGCAGGTCGACCGGTGGCGCGACTACGTGCGCCGCCATCGCGCCGTGGCGCCGGACGACGTCGACGAGATGACCGACCACCTGCGCGAGCGCATCGACGACCTGCGGGCCGCCGGGCTCGACGACGACGAGGCCTTCCTCGTGGCGGTCAAGCGCATGGGACGGCTGGACGCCGTCTCGGCCGAGTTCGCCCGCGCCCACTCCGAACGTCTCTGGAAGCAGCTCGTGCTCCTGCCCGACTCCCCCGCGCCGGACGCCGACCCGGCGCGCCGCGAGCTCGCCGTCGTCGTCGGCTGCGCCGTCGGGGCGGGGCTGGCCGTCAAGGCCGGCACGGCGTTCCTCGACGAGACGGCGCTGCTGCTGAACCTCGGCCTGCTCGTCGCCCCGTTCGTGGCCGCCTACCTCGGCTGGAAGCGTCGCCTGGCCGGGCGCAAGGTGGCGGCGCTGCTGGCCGGCGCCGTCGTCCTCGGCGTCGTGCTCAACACCTACCCGTTCGACCCGGCCGGGTCGACCCTGCTGCTGGCCGCGCTGCACGCCCCGGTGGTGCTGTGGGCGCTCGTCTGCGTCGCCTACACCGGCGGCCGGTGGCGCTCGCCCGACCGCCGGATGGACTTCGTGCGGTTCACCGGCGAGCTGGCCGTCTACTACGTGCTGCTCGCCCTCGGCGGCGGCGTGCTGGTAGGCCTGACCGCCGGGCTCTTCAGCCTGACCGGCCTGGACCTGGAACCTGCGATGGAGCAGTGGATCCTGCCGCTGTGCGTGCCGGGCGCGTTCCTCGTGGCGGCCTGGCTGGTGGAGGCCAAGCAGGAGGTGGTGGAGAACATCGCGCCGGTCCTGACCCGCGTGTTCACGCCGCTGACGACGCTCATGCTGCTGGCCTGCCTGGTCGTGCTGGCCACCGCCGGGGACCTGACGACGGTCGACCGCGAGCTGCTCATCCTCATGGACGGCGTGCTGCTGCTGGTCCTGGCGCTGGTGCTGTACTCGGTCTCGGCCCGGGACCCGCTGCGCCGGCCCGGCCTGTTCGACGGCCTCCAGCTGGGCCTCGTCGTGGTGGCGCTGACCGTGGACGCGGTCGCGCTGACCGCGATGCTCACCCGGATCGCGGAGTTCGGCGCGAGCCCCAACAAGGTCGCGGCCCTGGGGCTGAACCTGCTCCTGGCGGTCCACCTGGCCCGCTCGGCCTGGCTGCTGCTCGGCCTGCTGCGCCACCGACGCGCCTTCGGGGACCTGGAGCGGTGGCAGACCGCCTACCTGCCCGTCTACGCGGCCTGGGCGGCGTTCGTGGTCGTCGCGTTCGGGCCGTCGTTCGTGTTCGCCTGAMSGTDALEVQVDRWRDYVRRHRAVAPDDVDEMTDHLRERIDDLRAAGLDDDEAFLVAVKRMGRLDAVSAEFARAHSERLWKQLVLLPDSPAPDADPARRELAVVVGCAVGAGLAVKAGTAFLDETALLLNLGLLVAPFVAAYLGWKRRLAGRKVAALLAGAVVLGVVLNTYPFDPAGSTLLLAALHAPVVLWALVCVAYTGGRWRSPDRRMDFVRFTGELAVYYVLLALGGGVLVGLTAGLFSLTGLDLEPAMEQWILPLCVPGAFLVAAWLVEAKQEVVENIAPVLTRVFTPLTTLMLLACLVVLATAGDLTTVDRELLILMDGVLLLVLALVLYSVSARDPLRRPGLFDGLQLGLVVVALTVDAVALTAMLTRIAEFGASPNKVAALGLNLLLAVHLARSAWLLLGLLRHRRAFGDLERWQTAYLPVYAAWAAFVVVAFGPSFVFANANANANANA
AK018_04777669hypothetical proteinATGACGATCCACGGGGCCGAGCCGGAGACCGCCACCACCGTGCCGTCGTCGGACGGCCGGCGGCGACGCGGCGACCGCACGCGCACCGCGGTGCTCGACCACGCCGTGCAGCGCGCCTCCGTGGACGGGCTCGCGGGGCTGACCTTCGGCACGCTCGCGACCGAGGCCGCGGCGACCAAGAGCGCGATCGCGGGGCTGTTCGGCAACAAGGAAGGGCTCGAGGTCGCGCTCGTCCAGCACGCGCGCGAGATCTTCGTCGCCGCGGTGATCGGACCTGCCCGCGCGGCGGCCCCCGGGCTCGACCGCGTCTGGGCGCTCGTGCAGGGATGGTCCACGTACTCCCGGACCCGCACGTTCGCCGGGGGGTGCTTCTTCCGGGCGGTCGAGACCGAGGTCGACTCCCGGCCCGGCCCGGTGCGCGACGCCGTCGTGGCGGTCCGGCGCGAGTGGGACGGCTACCTGGAGCACCACGTCGGGCTCGCCGTCGGAGCCGGCGAGCTGGCCGCCGACGTCGACCCGGCCCAGGTCGTCTTCGAGCTCGTCGCCCTGCTCGGCACGGCCAACGACCGCTCGTTGCTGCTGGACGACGACGGCGCCTACGACCGGGCGCTGGCCGCCGTGCGCACCGTGCTGGTGGCCCACGGCGCGGACGCCGCCCGGCTCGCCTGAMTIHGAEPETATTVPSSDGRRRRGDRTRTAVLDHAVQRASVDGLAGLTFGTLATEAAATKSAIAGLFGNKEGLEVALVQHAREIFVAAVIGPARAAAPGLDRVWALVQGWSTYSRTRTFAGGCFFRAVETEVDSRPGPVRDAVVAVRREWDGYLEHHVGLAVGAGELAADVDPAQVVFELVALLGTANDRSLLLDDDGAYDRALAAVRTVLVAHGADAARLANANANANANA
AK018_04778855hypothetical proteinGTGGTCCCTGCACCGATGCGCGCGACGTTCCGCACGCTGTCCGTCGTCGCTCCCCCCGTCGCCACCGGCATCGCCGCGCGGCTCTTCACCACCGTCGGCCCGCGGGCCCGGGTGCGCCCCGCCGACCAGGACGTCCACGACAGCGCCCGGCGCGGCACGGTGGACGTCGACGGCTCCCCCGTGACGACGTACCGCTGGGGCGACGACTCCCCGGAGGCACCGAGCGCGCTGCTGGTGCACGGCTGGCAACGGCGGGCGAGCCGCTTCGGCGCGCTGGTGCGCGCGCTGGTCGACGCCGGGTGGTCGGTGGAGTCCTACGACGGCCCGGCGCACGGCGAGTCGCCCGGCGTCCGGCTCACCGTACTGGAGCACATGGCGGCCATGCGGGCGATGCAGGAGAGGCACGGCGCCTACACCGCCGTCGTCGGCCACTCCCTGGGCGCCTTCACCGCGGGGATGGCGCTGCACGACGGGTTCCGGGCCGAGCGGTTCGCCGCCCTGGCCGCACCGACGAGCTTCGACTCCGTGGCCGCGACCTACATGCGGCTCGTCGGCATCCCCCCGCGCCTGCACGACCGGGTCTGCGACGACATCGCCCGGACGCTCTTCCCGGAGGTGCTGGACTTCCGCGCCCGGTTCGACCTGCGCCGGCGCACCGTCCCGGACACGGTGCCGACGCTGTTCGTCCAGGACGCCGACGACCGCATGCACGGCGCCGAGGAGGCGCAGGCGCTGCACGCCGCCCACCCGGGCAGCGAGCTGCTGATCACCGAGGGTCAGGGCCACAACGGCGTCCTGGACGACGAGGTGGTCGTCCAGACCGTCGTCGACCACCTGACCCGCGTCCCCGCCTGAMVPAPMRATFRTLSVVAPPVATGIAARLFTTVGPRARVRPADQDVHDSARRGTVDVDGSPVTTYRWGDDSPEAPSALLVHGWQRRASRFGALVRALVDAGWSVESYDGPAHGESPGVRLTVLEHMAAMRAMQERHGAYTAVVGHSLGAFTAGMALHDGFRAERFAALAAPTSFDSVAATYMRLVGIPPRLHDRVCDDIARTLFPEVLDFRARFDLRRRTVPDTVPTLFVQDADDRMHGAEEAQALHAAHPGSELLITEGQGHNGVLDDEVVVQTVVDHLTRVPANANANANANA
AK018_047792766acnA_2COG1048Aconitate hydratase AGTGAGCAGCGTGGACACATTCGGATCGAAGGGAACCCTGGACGTCGGAGGGAACTCCTACGAGATCTTCCGGCTCTCCGCGGTCGAGGGGCTCGAGCGCCTCCCGTACTCGCTGAAGATCCTGGCGGAGAACCTGCTGCGTACCGAGGACGGCGCGAACATCACCGCCGACCACGTGCGCGCGCTGGCCGGCTGGGACCCGGACGCCCAGCCGAGCACCGAGATCCAGTTCACCCCGGCGCGCGTGATCATGCAGGACTTCACCGGCGTGCCCTGCGTGGTGGACCTGGCGACGATGCGCGAGGCGGTCGAGGAGCTCGGTGGCGACCCCACCCGCATCAACCCGCTCGCCCCGGCCGAGATGGTCATCGACCACTCGGTCCAGATCGACGTCGCCGGCACCACCGAGGCCTTCGCGCGCAACGTCGAGTTCGAGTACGAGCGCAACCACGAGCGCTACCAGTTCCTGCGCTGGGGCCAGACGGCGTTCGACGACTTCAAGGTCGTCCCCCCGGGCACCGGCATCGTCCACCAGGTCAACATCGAATACCTCGCCCGGACCGTCATGACCCGCGAGGTCGAGGTCGACGGCGAGAAGGTGCTGCGCGCCTACCCGGACACCTGCGTGGGCACCGACTCGCACACCACGATGGTCAACGGCCTGGGCGTGCTCGGCTGGGGCGTCGGCGGCATCGAGGCCGAGGCCGCCATGCTCGGCCAGCCGGTGTCGATGCTCATCCCGCGCGTGGTCGGCTTCAAGCTCACCGGCGAGATCCCCGCGGGCGTCACCGCCACCGACGTCGTGCTCACGATCACGCAGATGCTGCGCCAGCACGGTGCCGTCGGCAAGTTCGTCGAGTTCTACGGCTCCGGCGTCGGCCAGGTCCCGCTGGCCAACCGCGCCACCATCGGCAACATGTCGCCGGAGTTCGGCTCGACCGCCGCGATCTTCCCGATCGACGACGTCACCATCGACTACCTGCGCCTGACGGGCCGCAGCGAGGACCAGCTGGCCCTCGTCGAGGCCTACGCCAAGGAGCAGGGCATGTGGCTCGACCCGAGCTCGCCCGACTACGTCGAGCCGACGTTCTCCGAGTACATGGAGCTCGACCTGTCGACCGTCGTGCCCTCGATCGCCGGGCCGAAGCGTCCCCAGGACCGCATCGAGCTGTCGCACGCCAAGGCCGCGTTCGCCCGCGACCTGCCGAACTACGCCTCGGACGTCATCGACTCGGTGGACGAGGCCGAGATGGAGTCCTTCCCGGCCTCCGACTCGCCGTCGACCCACGACCACGTGCGCCCGACCTACCCGGTCGCCGACTCCCAGGGCCGCGAGTTCGAGCTGTTCCACGGCGCCGTGGCGATCGCCTCGATCACCTCGTGCACCAACACCTCGAACCCCTCGGTCATGCTTGCCGCGGCGCTGCTGGCCAAGAACGCCGTCGACAAGGGCCTGGTCTCCAAGCCCTGGGTCAAGACCTCGATGGCGCCCGGCTCGCAGGTCGTGACGAACTACTACGAGAAGGCCGGCCTGTGGCCGTACCTGGAGAAGCTCGGCTTCCACCTGGTCGGCTACGGCTGCACCACGTGCATCGGCAACTCCGGCCCGCTGGACGAGAAGGTCTCCGAGGCCGTCCAGGAGAACGACCTCGCCGTCGTCTCCGTGCTGTCCGGCAACCGCAACTTCGAGGGCCGGATCAACCCGGACGTGAAGATGAACTACCTGGCGTCCCCGCCGCTGGTCATCGCCTACGCCCTGGCCGGGACCATGGAGTTCGACTTCGACGCCGACCCGCTGGGCCGCGACGAGGACGGCAACCCGATCTTCCTGGCGGACATCTGGCCCACGCCGGACGAGGTCCAGGCCACGATCGAGTCCTCCATCGACCGCAAGATGTTCGAGAAGGACTACGCCGACGTCTTCACCGGTGACGACCGCTGGCGCGCGCTGGAGACCCCCGAGGGCTCCACGTTCTCCTGGGACACCGAGTCGACCTACGTGCGTCGTCCCCCGTACTTCGAGGGCATGGGCGCCGAGCCGGCGCCGGTCGAGGACATCACCGGTGCCCGCGTGCTGGCCAAGCTCGGCGACTCGGTCACGACCGACCACATCTCGCCGGCCGGTGCCATCAAGCCGGACAGCCCGGCGGGCAAGTACCTGGCCGAGCACGGCATCGCGCGTCGCGACTTCAACTCCTACGGCTCGCGCCGCGGGAACCACGAGGTCATGATCCGCGGCACGTTCGCCAACATCCGCCTGAAGAACCTGCTGCTGGACGGCGTCGAGGGTGGCTTCACCCACAACTTCGTCACCGGCGAGCAGGACACGATCTACGACGCCGCGCAGGACTACGCCGCGCAGGGCACCCCGCTGGTGGTGCTCGGCGGCAAGGAGTACGGCTCCGGCTCCTCGCGCGACTGGGCGGCCAAGGGGACCAAGCTGCTCGGCGTCAAGGCGGTCATCACCGAGTCGTTCGAGCGCATCCACCGCTCGAACCTCATCGGCATGGGCGTGCTCCCGCTGCAGTTCCCGGCCGGCGAGTCCGCCGACTCCCTCGGCCTGGACGGCACCGAGACGTTCGACATCGCGGGCATCACGGCGCTGAACGACGGCCAGACCCCGGAGACGCTGTCCGTCACGGCCACCAAGGACGACGGCTCCACCGTCGAGTTCGATGCGGTGGTACGCATCGACACCCCGGGTGAGGCGGACTACTACCGCAACGGCGGCATCCTGCAGTACGTGCTGCGTTCGCTGGTCGGCTGAMSSVDTFGSKGTLDVGGNSYEIFRLSAVEGLERLPYSLKILAENLLRTEDGANITADHVRALAGWDPDAQPSTEIQFTPARVIMQDFTGVPCVVDLATMREAVEELGGDPTRINPLAPAEMVIDHSVQIDVAGTTEAFARNVEFEYERNHERYQFLRWGQTAFDDFKVVPPGTGIVHQVNIEYLARTVMTREVEVDGEKVLRAYPDTCVGTDSHTTMVNGLGVLGWGVGGIEAEAAMLGQPVSMLIPRVVGFKLTGEIPAGVTATDVVLTITQMLRQHGAVGKFVEFYGSGVGQVPLANRATIGNMSPEFGSTAAIFPIDDVTIDYLRLTGRSEDQLALVEAYAKEQGMWLDPSSPDYVEPTFSEYMELDLSTVVPSIAGPKRPQDRIELSHAKAAFARDLPNYASDVIDSVDEAEMESFPASDSPSTHDHVRPTYPVADSQGREFELFHGAVAIASITSCTNTSNPSVMLAAALLAKNAVDKGLVSKPWVKTSMAPGSQVVTNYYEKAGLWPYLEKLGFHLVGYGCTTCIGNSGPLDEKVSEAVQENDLAVVSVLSGNRNFEGRINPDVKMNYLASPPLVIAYALAGTMEFDFDADPLGRDEDGNPIFLADIWPTPDEVQATIESSIDRKMFEKDYADVFTGDDRWRALETPEGSTFSWDTESTYVRRPPYFEGMGAEPAPVEDITGARVLAKLGDSVTTDHISPAGAIKPDSPAGKYLAEHGIARRDFNSYGSRRGNHEVMIRGTFANIRLKNLLLDGVEGGFTHNFVTGEQDTIYDAAQDYAAQGTPLVVLGGKEYGSGSSRDWAAKGTKLLGVKAVITESFERIHRSNLIGMGVLPLQFPAGESADSLGLDGTETFDIAGITALNDGQTPETLSVTATKDDGSTVEFDAVVRIDTPGEADYYRNGGILQYVLRSLVGPGPT0001465_1201DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001465-acnA-K01681NANA
AK018_04780681hypothetical proteinGTGACCGTTCTGCCGCCGCTGCCCGTCCAGGCCGACCGCCTGGTCGGCCTCGGCCTGGTGCCCGACGACGGCGCCCCGGCCGCCGACGACACGTTCGACGTCGCAGCGCTCCGGGCGGCGACCGACCGCCTGGCCGCCGCGGCACCGCCCGGCGCGCTGCTCGTGGTGCACCCGCGTCACCTTCCGCCGTCGACGGTGGCACCGCAGCTGCGGCGCGAGGTGCGCACCCGGGCGGGCGTCGTCGAGCGCGAGGGCTTCGTCGTCGAGGACATGACCGACGTCGACGCGTTCGGACCGGTCGACGACCTCGCCGTGCCGGACGCCGACGTCTACCTCGTGCACGCCCCGGAGCGCGGCGACGAGATGGCGAACACCTCCCCGCAGGAGGCGGCGGCCCGGCTCGCCGAGCGCGGCCGCTCACCGCTGACGCTGGCCGAGGGAGCCCAGTGGGTGCTGCAGGACCCGGAGGTCCTCGAGCCCGGGCGCTGCTTCATGACGATCGGCTCGCGACGACGCCGGCCCGACGGCGCGTACGACGCCCGCACCCCGGCGCTGTGGATCTCCGGCGGCACCGGACGGGACGGCAGCGCCCGCCGTGGTGCGACCAAGATCGGCTGGTGCTGGTGGCGCAACCGGCACACGTGGCTCGGCATCGCCTCGACCGCCGCCCGGGACGCCTGAMTVLPPLPVQADRLVGLGLVPDDGAPAADDTFDVAALRAATDRLAAAAPPGALLVVHPRHLPPSTVAPQLRREVRTRAGVVEREGFVVEDMTDVDAFGPVDDLAVPDADVYLVHAPERGDEMANTSPQEAAARLAERGRSPLTLAEGAQWVLQDPEVLEPGRCFMTIGSRRRRPDGAYDARTPALWISGGTGRDGSARRGATKIGWCWWRNRHTWLGIASTAARDANANANANANA
AK018_04781438hypothetical proteinATGGCGTCCGAAGACGGTCCCCGGGTGCGCCGCTGGCTGCCGCTGCGGCTGGCCGTGATCGCCGCGGTGGTGCTGGTCGCCCTGGTCGTGGCGTTCCTGGTGCGGCAGTCCTCCGACGAGGACCTGGTGCTCACCACCTACGACGGCGTGCCGGCCGGTGTCGAGGAGGACGTCGCCGCCGGCGGCGAGCCGGGCTGGGTGCTGGGCGAGGACGGACGGCTGGCGGTCTACGCCGCCGGGAGCTCGTCGTGCCCGTGGCGCCCGACGGCGGTCACCGCCGACGGCGACCGGGTCACGGTGCGCCTGGAGGTCGACGGGGGGCCGGTGTGCACGATGGACTTCGTCTACTCCACCAGCGTCGTGGCGCTGCCCGACGGCGTGGACCCGGACGCGCTCGAGGTCGACCTGGACCTGGTCCGCGAGCAGAGCGCGCCCTGAMASEDGPRVRRWLPLRLAVIAAVVLVALVVAFLVRQSSDEDLVLTTYDGVPAGVEEDVAAGGEPGWVLGEDGRLAVYAAGSSSCPWRPTAVTADGDRVTVRLEVDGGPVCTMDFVYSTSVVALPDGVDPDALEVDLDLVREQSAPNANANANANA
AK018_047821302rlmCD_2COG226523S rRNA (uracil-C(5))-methyltransferase RlmCDATGGGGGACGTGCCCCGACCTCGCCGTTCCGCCCCGCGCCCCCGTCCCGTCGACCCTGCCGTCGGTCTCGAGCTCGAGCTCGAGGTCGGACCCGTCGCCCACGGCGGGCACTGCGTCGCCCGCCACGACGGTCGCGTCGTGTTCGTCCGCCACACCCTGCCCGGAGAGCGCGTGCGCGCCCGCGTCACCGAGGGCGGCAAGCGGTTCTGGCGGGCGGACGCCGTCGAGGTGCTCGAGGCCTCGCCCGACCGGGTCGCCCCGGCCTGGCCGGCCGCCGGTCCTGGCGGCGTGGGAGGCGGCGAGCTGTCCCACGTCGCGCTGCCGGCGCAGCGCCGCTGGAAGGCCGACGTGCTGGCCGAGCAGCTGCAGCGCCTGGCCCGGCTCGAGCGCGCGGTCACGGTCGAGGCGGCGCCCGGCGACGACGCCCGCGGCGGCCTCGGCTACCGCACCCGCGTCGAGCTCGTCACCGACCACGCCGGCCGCGCCGGGATGCGGGCCTTCCGCTCCCACGACGTCGTCCCGCTCGACGCGATGCCGCTGGCGACGCCCGACGTCGCGGCGCTCGCCGACACCGAGGGCGTCTGGGGCGGCGGGTGGCGTCCCGGGCAGCGGCTGGAGCTCGTGGCCCCTGCGTCCGGGTCCCCGCCCGTGCTGCTCGTCGACGGCGTCCCGTGGCGGCGCGGCCGGCCCGACACCCGCCCCAACGCCCGGCGCTCGGTCTCGGAGCACGTGGAGGTGGCCGGCGTCGAGCACCGGTTCCGCGTGACCGCCGACGGGTTCTGGCAGGTGCACCGCGAGGCGCCCGGCGTGCTCGCGAACGCCGTGCTCGACGCGGCCGGCGACCTGGACGGTGCCCGTGTGCTCGACCTGTACTCCGGCGCCGGGCTGTTCACGCTTCCGCTGGCCGCCGCCGTCGGCTCCCGCGGGCGCGTCGTGGCCGTCGAGTCCGACACCCGCGCGGTCAAGGACGCACGCCGCAACGCCCACGACGCCCCGCAGGTCGAGCTGCACCTCGGCGCCGTGGACGCGGTGCTGCTCGACGGGGACGCCACGGGCGGGGCCGGTGGGGACGCCGACGTCGTGGTGCTCGACCCGCCGCGGGCCGGGGCGGGCCGCGCCGTGGTGCAGGCGATCGCGGACCGCCGTCCGACCCGGGTGGTGTACGTGGCCTGCGACCCGGCGGCGCTGGCCCGCGACGTCGGCTACCTCGCCGAGCACGGGTACGCGCTGACGGGGCTGCGTGCCTTCGACCTGTTCCCGATGACGCACCACGTCGAGGCCGTCGCGGTGCTGGAGCGGTGAMGDVPRPRRSAPRPRPVDPAVGLELELEVGPVAHGGHCVARHDGRVVFVRHTLPGERVRARVTEGGKRFWRADAVEVLEASPDRVAPAWPAAGPGGVGGGELSHVALPAQRRWKADVLAEQLQRLARLERAVTVEAAPGDDARGGLGYRTRVELVTDHAGRAGMRAFRSHDVVPLDAMPLATPDVAALADTEGVWGGGWRPGQRLELVAPASGSPPVLLVDGVPWRRGRPDTRPNARRSVSEHVEVAGVEHRFRVTADGFWQVHREAPGVLANAVLDAAGDLDGARVLDLYSGAGLFTLPLAAAVGSRGRVVAVESDTRAVKDARRNAHDAPQVELHLGAVDAVLLDGDATGGAGGDADVVVLDPPRAGAGRAVVQAIADRRPTRVVYVACDPAALARDVGYLAEHGYALTGLRAFDLFPMTHHVEAVAVLERNANANANANA
AK018_047831983kimA_2COG0531Potassium transporter KimAGTGTCGGACATCGCGGACGCCGCCAAGCGGCTGCTCGTAGGACGCCCGCTGCGCAGCGAGAGCTCCAAGAAGTCTCTCCTGCCCAAGCGGGTCGCCCTGCCCGTGTTCGCCTCGGACGCGCTGTCGTCGATGGCGTACGCCCCGGACGAGATCCTGCTCATGCTGGCCCTCGCCGGCCTGGCCGCCACGGCGCTGTCGCCGTGGGTCGGGCTCGTGGTCGTCGCCGTGCTGCTCGTCGTGGTGGCGTCCTACCGCCAGATCGTGCGCGCCTACCCCTCGGGCGGCGGCGACTACGAGGTCGCCACGACCAACCTCGGGCCGACGGCCGGCATCGGCGTCGCCTCCGCCCTCCTGCTCGACTACGTGCTCACCGTGGCGGTGTCGCTGTCGGCCGCGGCCCAGTACCTCGCGGTCGTGGTGCCGGCGGCGCGCGGCCTGGAGGAGTGGGTGGCCGCCGGGCTCGTCGTCGCGCTGACCGTGGTGAACCTGCGCGGGATCCGGGAGTCCTCCTGGGTGTTCGTCGTCGTCATCTACTGCTTCATGGGGGCGGTCGGGATCCTCGCCGTCGTCGGCGCCGTCCGGCACCTCGGCGGCGCGCTGCCGCAGGCCGCCAGCGCCGAGCTCGAGCTCGTGCCCGGCGCCGGGTTCGAGCAGGGGCTCGTGGGCGTCGCGGGCGCGTTCCTCGTGGCGCGGGCGTTCGCGTCGGGCGCGGTGGCGCTGACCGGCGTCGAGTCGATCACCAGCGGCGTGCCGGCCTTCCGCCGGCCCAAGCGACGCAACGCCGCCTCCACGCTGGCGCTGCTGGGCGGCATCTCCGCCGCGATGCTCATGACCATCCTCTTCCTGGCCCAGGCCACCGGGGTGAAGTTCGTCGAGGACCCCGCCACCCAGCTCACCCGCGGCGGCGAGCTCGTGGGGGAGGAGTACGAGCAGCACCCCGTGCTGGCCCAGCTCGCCGAGACGATCTTCGGCGGGGCCGGGATCGTCGCGATGATCGTCGTCGGCGTCACCGCCCTGGTGCTGCTCCTCGCGGCCAACACGGCGTTCTACGGTTTCCCGGGCCTGGGCTCGATGCTGGCCAAGGACGGCTACCTGCCGCGCCAGCTGCACACCCGCGGCGACCGCATGGCGTTCTCCAACGGCATCGTCACCCTGGCGATCGCCGCCGCGGTGCTCATCATCGGCTTCGACGCCGAGGTGACCGCCCTCATCCAGCTCTACATCGTGGGCGTGTTCGTCTCGTTCACCCTGTCCCAGCTCGGGATGCTGCGGCACTGGACCCGCGCGCTGCGCAAGGAGCCCAACCCCCGCGAACGCACCCGCATGAAGTGGTCGCGCACCGTCAACGGCGTCGGGTTCGTCCTGACCGCCGCGGTGCTGGTCATCGTGCTGGTCACCAAGTTCACCCACGGCGCCTGGATCACGCTCGTCGCGATGGGCGTGCTGTTCGTCCTCATGCGGGCCATCCACCGGCACTACTCGCGCGTGCGCGACGAGCTGGCGCTCGACGACATCTCCGGCGCCCGCGCCCTGCCCAGCCGGGTGCACGCCGTCGTGCTCGTCTCGCGCGTGCACAAGCCGACGATGCGCGCGCTGGCGTACGCCCGGGCCTCGCGTCCCAACGTGCTGGAGGCCGTCACCGTCGGCGTCGACCCGGTGGAGATCGCCGACCTGCGCGACCGCTGGGAGGCGCTGCACCTGCCGGTGCCCCTGCGGGTGCTCGACTCGCCGTACCGGGAGATCACCCGGCCCGTGCTGCAGTACGTGCGCTCGGTGCGGCGCGAGTCCCCGCGCGACCTCGTGGTCGTCTACATCCCCGAGTACGTCGTCGGGCACTGGTGGGAACAGCTGCTGCACAACCAGTCCGCCCTGCGGCTCAAGGGCCGGCTGCTGTTCACCCCGGGCGTCGTGGTCGCGTCCGTGCCGTGGCAGCTCTCCTCCTCCGAGGGGCAGACGGGACTCGAGTCCGACCTTCCCGGGTGAMSDIADAAKRLLVGRPLRSESSKKSLLPKRVALPVFASDALSSMAYAPDEILLMLALAGLAATALSPWVGLVVVAVLLVVVASYRQIVRAYPSGGGDYEVATTNLGPTAGIGVASALLLDYVLTVAVSLSAAAQYLAVVVPAARGLEEWVAAGLVVALTVVNLRGIRESSWVFVVVIYCFMGAVGILAVVGAVRHLGGALPQAASAELELVPGAGFEQGLVGVAGAFLVARAFASGAVALTGVESITSGVPAFRRPKRRNAASTLALLGGISAAMLMTILFLAQATGVKFVEDPATQLTRGGELVGEEYEQHPVLAQLAETIFGGAGIVAMIVVGVTALVLLLAANTAFYGFPGLGSMLAKDGYLPRQLHTRGDRMAFSNGIVTLAIAAAVLIIGFDAEVTALIQLYIVGVFVSFTLSQLGMLRHWTRALRKEPNPRERTRMKWSRTVNGVGFVLTAAVLVIVLVTKFTHGAWITLVAMGVLFVLMRAIHRHYSRVRDELALDDISGARALPSRVHAVVLVSRVHKPTMRALAYARASRPNVLEAVTVGVDPVEIADLRDRWEALHLPVPLRVLDSPYREITRPVLQYVRSVRRESPRDLVVVYIPEYVVGHWWEQLLHNQSALRLKGRLLFTPGVVVASVPWQLSSSEGQTGLESDLPGNANANANANA
AK018_04784657hypothetical proteinATGGGTTGCGGTCGTGTGGGTTCCACGCTCGCGCAGACCATCGAGGCCAACGGCCACTCCGTGGCCGTCATCGACCAGAACCCCGACGCGTTCCGGCGACTGCCGTCGGACTTCGCCGGGCACAAGGTCACCGGCGTCGGCTTCGACCGCGAGACCCTCACCCAGGCCGGGATCGAGGACACGTTCGGGTTCGCCGCGGTCTCCGACGGTGACAACTCCAACGTGCTCGCGGCCCGCGTGGCCCGCGAGACCTACGGCGTCGAGCACGTCGTGGCCCGGATCTACGACCCGCACCGCGCCGAGATCTACCAGCGGCTCGGCATCCCCACCGTGGCGACCGTGCGCTGGACCGCCGACCAGGTGCTGCGCCGGATGCTGCCCCTGGGCGCGACGGACGAGTACCGCGACCCGTCGGGGACGGTCCGCCTGGCCCAGGTCGACCACCACCCGGGCTGGCTCGGGCTGTCGGTGCGGCGGATCGAGGCCACGACGGGCGCCCGGGTCGCTTTCATCACCCGGTACGCCGAGGCCCGGATCGTCGGGCCGGACACCCTGCTGCAGGAGAACGACGTGCTGCACGTGCTCATGCACGCCGACGACGCCGCGCGCGTCGAGCGGCTGCTGACCCACACCCCGGGGCCGGAGGAGGAGGACTGAMGCGRVGSTLAQTIEANGHSVAVIDQNPDAFRRLPSDFAGHKVTGVGFDRETLTQAGIEDTFGFAAVSDGDNSNVLAARVARETYGVEHVVARIYDPHRAEIYQRLGIPTVATVRWTADQVLRRMLPLGATDEYRDPSGTVRLAQVDHHPGWLGLSVRRIEATTGARVAFITRYAEARIVGPDTLLQENDVLHVLMHADDAARVERLLTHTPGPEEEDPGPT0002710_4328DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
AK018_04785675trkA_2COG0569Trk system potassium uptake protein TrkAATGCGCGTCGTCATCGCCGGGGCCGGGTCGGTCGGCCGGTCCATCGCCGCCGAGCTGCTCGCCAACGACCACGAGGTCGTCCTGGTCGACAGGAACCCGTCGGCCATGCGCGTGGCCCAGGTGCCCGACGCGGACTGGCTGCTGGCGGACGCCTGCGAGACCGAGGCGCTCACGGGGGCCGACGTCGCCACGGCGGACGTCGTCGTCGGCGCCACGGGCGACGACAAGGTCAACCTCGTCTTCTCGCTGCTGGCCAAGACGGAGTTCGCGGTACCGCGCACGGTGGCGCGGGTCAACAACCCCCGCAACGAGTGGATGTTCGACGACTCCTGGGGCGTCGACGTGGCGGTCTCCACGCCGCGGATCATGACGGCGATGGTCGAGGAGGCCGTCTCGGTCGGCGACCTGGTGCGCATCTTCACGTTCCACCAGTCCGGTGCGGACATCTTCGAGGTCACGCTGCCCGAGGAGTCGCCGCTGGTCGGCCTGCGGGTGCAGGACGTCAGGTGGCCGGCGGACACGGTGCTGGCGTGCATCGTGCGCGGCATCCAGCCGTTCAACCCCACGGGCGACGACGCCCTGGAGGCCGGTGACGAGCTGATGTTCGTCACGGGGCAGGAGGCCGACCCGGCGGTGCTGCAGCAGCTCGTCGTCGACGGCCCGGAGTTCGGCTGAMRVVIAGAGSVGRSIAAELLANDHEVVLVDRNPSAMRVAQVPDADWLLADACETEALTGADVATADVVVGATGDDKVNLVFSLLAKTEFAVPRTVARVNNPRNEWMFDDSWGVDVAVSTPRIMTAMVEEAVSVGDLVRIFTFHQSGADIFEVTLPEESPLVGLRVQDVRWPADTVLACIVRGIQPFNPTGDDALEAGDELMFVTGQEADPAVLQQLVVDGPEFGPGPT0002710_3178DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
AK018_04786807hypothetical proteinATGAGCAGCCACCCGCACGACGAGGAGCACCGCGACCTCGCCGCCGACCCGGCCGACGCCGGCGTCCGGCGCGGGATGCGTGCCGTCACCGGCGACTCGTTCTCCCTGGGTGAGGCGATCGGCGGCGTCCGCGGGGTCGTCGAGGCGATCCTGCCCGGGCTCGTCTTCGTCGTCGCCTACGTCCTGACCACCGACCTGACCACCGCGCTCGTCGGTTCCGGGGCCGCGGCGCTCGTCACCGTCGGCGCCCGCCTCGTGCAGCGCACCCCCGTCACCCAGGCCGTCGGCGGCGTGCTGGGCATCGCCGTCGGCGTGATCTGGGCATGGACCTCGGGGGAGGCCGAGGACTTCTACGTCTGGGGCCTGTGGACCAACGCCGCCTACCTGGTGGCCTTCGTCGTCTCGATCGTCGTGCGCTGGCCCCTGGTGGGTCTCTTCGTCGAGGCCGTGCGGGCCGGGTTCGTCGACCAGTCCGCCGCGCAGCGCCCCGCCGAGGGCGGGGGAGCGGCGGCCGCGGACGACACCGCGCAGACCGCGAGCCCGTGGGCCCCGCTGGCCGCGTGGCGCGCCGACGCCGACCTGGTGCGGCGCTACACGATCGCCAGCTGGTTCTGGGTCGGCCTGTTCGGCATACGTCTCGCGGTCAAGGTGCCGCTCTACCTCGACGGCGACGTCGGCTGGCTCGGCACGATGCACCTGGCGCTCGGCCTGCCGCTGTGGGGCCTGGTCCTCTGGCTGACCTGGGTCGTGGTGCGCGGTGCGCACCGCGAGGAGCCGGCCGCGCACGCGGCGGACGACCGGGCCTGAMSSHPHDEEHRDLAADPADAGVRRGMRAVTGDSFSLGEAIGGVRGVVEAILPGLVFVVAYVLTTDLTTALVGSGAAALVTVGARLVQRTPVTQAVGGVLGIAVGVIWAWTSGEAEDFYVWGLWTNAAYLVAFVVSIVVRWPLVGLFVEAVRAGFVDQSAAQRPAEGGGAAAADDTAQTASPWAPLAAWRADADLVRRYTIASWFWVGLFGIRLAVKVPLYLDGDVGWLGTMHLALGLPLWGLVLWLTWVVVRGAHREEPAAHAADDRANANANANANA
AK018_04787369hypothetical proteinATGTCCCTGCGCAGCATGGTCCGGTCCGCGCTGGCCTCCACGGACAGCGTGGTCGCGGACGAGGAACGGCACGCCGCCTCGGCAGTCAGCGGGTGCACCGCCCTGTCCGACGTCTCGCCCCGTCACCGCGCCTCCGCCGCCGGGGTCCTGCGGTCGGTGGTCCTCCACCCGCGCCAGAAGGTCCCCACCGTGGAGGCCGAGCTCTACGACGGCTCCGGGTCGATCGACCTGATCTGGCTGGGCCGCCGCGAGATCGCCGGCATCCAGCCCGGCCGGCGGCTGCGCGTCGAGGGCATGGTGACCACCCGTGAGGGGCGGCGCGCCATGTTCAACCCGCGCTACGAGCTGCGCGCCCGGGCGGGCGAATGAMSLRSMVRSALASTDSVVADEERHAASAVSGCTALSDVSPRHRASAAGVLRSVVLHPRQKVPTVEAELYDGSGSIDLIWLGRREIAGIQPGRRLRVEGMVTTREGRRAMFNPRYELRARAGENANANANANA
AK018_04788771hypothetical proteinGTGGGTCTGTTCCGGCGCAAGGCGTCGACGAAGGTGACGGAGTCCGCTCCCGCGGAGGACACCTCGACCGCTTCGGCATCGGCCGACACCGCAGCGGCGGCCGGGTCCGAGGCGAGCACCGAGAGCCGCACCCCGAGCGGACGCGGCCCCTTCGACGCCTCCCAGGTCTCGGCCATGGGCCCGCGGGTCGACCTCGGCGCCATCTGGCTGCCGGTCCTGCCCGGGCTGCAGCTGCGCATGGAGGTCGACAAGAAGTCGCAGAAGGTCACCGGCGTGGCGGCCTCGCTCAAGGGCTCCGTCCTGCAGGTCCAGGCGTTCGCCGCCCCCAAGACGATGGGGATCTGGGACGAGGTGCGCGAGGAGATCGCCGCGTCGCTGACCAAGCAGGGCGGCACCGTCGACGACGTGCCCGGGACGTTCGGTCGCGAGCTGCTGGCCCGCATCCCCGCCAAGACCGCCGAGGGCGCCACGGGCGTCCGTCCCGCCCGGTTCATCGGGTTCGACGGTCCCCGCTGGTTCCTGCGCGGCGTGCTCTCCGGCCGGGCCGCCGTCGACGCCGAGGCCGCCAAGCCGCTCGAGTCCGTGTTCGCCAACGTCGTGGTCGTGCGCGACGGCAACCCGCGCCCGCCGCGCGACCTGCTCACCCTGACGCTGCCGGAGCAGACGCGTGCCCAGGCGGCCGACGGCACCGCCGGCCCGGTCGGGACGGCTCCCGAGACCCCGAGCTTCGACCCGCTGACGCGTGGTCCCGAGATCACCGAGACGCGCTGAMGLFRRKASTKVTESAPAEDTSTASASADTAAAAGSEASTESRTPSGRGPFDASQVSAMGPRVDLGAIWLPVLPGLQLRMEVDKKSQKVTGVAASLKGSVLQVQAFAAPKTMGIWDEVREEIAASLTKQGGTVDDVPGTFGRELLARIPAKTAEGATGVRPARFIGFDGPRWFLRGVLSGRAAVDAEAAKPLESVFANVVVVRDGNPRPPRDLLTLTLPEQTRAQAADGTAGPVGTAPETPSFDPLTRGPEITETRNANANANANA
AK018_04789462dut_2Deoxyuridine 5'-triphosphate nucleotidohydrolaseGTGACCGACCCGACCACGCTCGACGTGCTCGTGACGCTGCTCGACGACGAGGCGGTCGTTCCGTCGTACGCCCACCCCGGCGACGCCGGGGCCGACCTGGTCACCACGGTCGACGTCGACCTCGCCCCCGGCGCCCGCGCCGTCGTGCCGACCGGCCTGGCGATCGCGCTGCCCGAGGGGTTCGCGGCGTTCGTCCACCCCCGGTCGGGTCTGGCCGCGAAGCACGGCGTGACCGTCGTCAACGCCCCCGGGACGATCGACGCCGGCTACCGCGGCGAGATCAAGGTGGTCCTGGCCAACACCGACACCGCCGAGACCGTCCGCCTGCGGCGCGGGGACCGGATCGCCCAGCTCGTCGTCCAGCGCGTCGAGCACGCCCGGTTCCTCGTCGCCGACCGGCTGCCCGGCTCGCAGCGCGACACCGGCGGCTTCGGGTCGAGCGGGGGCTTCGCGCAGGGCTGAMTDPTTLDVLVTLLDDEAVVPSYAHPGDAGADLVTTVDVDLAPGARAVVPTGLAIALPEGFAAFVHPRSGLAAKHGVTVVNAPGTIDAGYRGEIKVVLANTDTAETVRLRRGDRIAQLVVQRVEHARFLVADRLPGSQRDTGGFGSSGGFAQGPGPT0021355_2002DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021355-dut-K01520NANA
AK018_04790498hypothetical proteinATGAACGACGCGCCCGCCCCCTCGGAGACCCCTGCGGGGTCCGCGCCTCCCCCGTTGTTCCGCGAGCGCCTCCTGCCCGGTCCCGGTGCCTGGGTCGCGGCGTTCGGGCTCGGCGTCATCGTCGCCGTCACGCTGCTGCCGCTGGCGCCGCTGGTCGCCCCGGGCGCCGGCGTGCTGGTGGCCGCGGCCGTGGTGGTCACGCTCGTGGCCACGGCCCCGGTGGTGGAGGTGACCGACGACGAGCTGCGCGCCGGGCCGGCCCGGGTGCCGGTGTCGATGCTCGGCGGGGTGGAGCCGATCTTCAGCGCGGAGGAGATGCGGACCGCCCTCGGCCCGGAGCTGGACGCCCGCGCGTACGTGTGCCTGCGCAGCTGGGCGCGCACCGGCCTGAGGGTGGGGCTGCGCGACCCGCTGGACCCGACCCCCTACTGGCTGGTGTCCACACGGCGGCCGGACGAGCTGGCGGACGCGCTCGTGCAGGCGGGGGCGGCGTCCTGAMNDAPAPSETPAGSAPPPLFRERLLPGPGAWVAAFGLGVIVAVTLLPLAPLVAPGAGVLVAAAVVVTLVATAPVVEVTDDELRAGPARVPVSMLGGVEPIFSAEEMRTALGPELDARAYVCLRSWARTGLRVGLRDPLDPTPYWLVSTRRPDELADALVQAGAASNANANANANA
AK018_04791300hypothetical proteinATGGCAACCGACTACGACGCACCCCGCAAGAACGAGGACGAGGGCGACCAGGACTCGATCCAGGAGCTCCAGGCCCGCCGCTCCGACAAGTCTTCGGGTGTCGTCGACGAGGACGAGACGGAGGCCGCGGAAGGATTCGAGCTTCCCGGCGCCGACCTGTCCGGAGAAGAGCTCGCGGTGCGCGTGCTGCCTCGTCAGGCGGACGAGTTCACGTGCTCGAGCTGCTTCCTCGTCCACCACCGCAGCCAGCTGGCCTACGAGAAGAAGGGTCAGATGGTCTGCACGGAGTGCGCGGCCTGAMATDYDAPRKNEDEGDQDSIQELQARRSDKSSGVVDEDETEAAEGFELPGADLSGEELAVRVLPRQADEFTCSSCFLVHHRSQLAYEKKGQMVCTECAANANANANANA
AK018_04792831cysQ_43'(2'),5'-bisphosphate nucleotidase CysQGTGAGCATCGCACCCGCCCTGCCGTCCGCGTCCGAGATCACCGACCTGCGCGCCCTGGCCCGCGCCCTCGCCGTGGAGGCGGGGGCCGTCGTGCGGGGCGGCCGGCCCGACCGGGTCGAGGTGGCCGCCACCAAGTCCACCGACGTCGACCCCGTCACCGCGATGGACCGCTCGGTGGAGGACCTGCTGCGCCGGCGGATCGCCGACCGCCGGCCGGACGACGCGATCCTCGGCGAGGAGGGTGACGACGTCGCCGGCACCAGCGGGCTGACGTGGGTGCTCGACCCGATCGACGGCACCGTCAACTACCTCTACGGCGTCGCCTCGTACGCGATCTCGGTCGCCATCGTCGCCGGCGACCCCGACCCGGCCGTCTGGACGCCGCTGGCCGGGGCCGTGCACTCCGTGGTCGACGGGGCGACGTGGACCGGCGCGCGCGGCCAGGGCGCCGAGCGCGACGGGACGCCGGTGCAGGTGCGCCGCCCCGACTCCCTCGCGACCAGCCTGGTCGGCACCGGGTTCGGCTACCAGGCCGCCCAGCGGGCCGAGCAGGCGCGGGTGCTCACCCACGTGCTGCCGCAGGTGCGCGACATCCGCCGGCTGGGCTCCGCCGCCGTCGACCTGTGCCTGGTCGCCGAGGGCCGGCTCGACCTCTACTACGAACGCGGTCTCAACCCGTGGGACATGGCGGCCGGCGGACTCATCGCCGCCGAGGCGGGTGCCGCCGTGAGCGGCCTGCACGGCGACCCGGCCACCCGACGGATGACCGCCGTCGGCACGCCCGCGCGGCAGGCCGAGCTGGTCGTGCTGCTCGAGGAAGCGGGCGCCTGAMSIAPALPSASEITDLRALARALAVEAGAVVRGGRPDRVEVAATKSTDVDPVTAMDRSVEDLLRRRIADRRPDDAILGEEGDDVAGTSGLTWVLDPIDGTVNYLYGVASYAISVAIVAGDPDPAVWTPLAGAVHSVVDGATWTGARGQGAERDGTPVQVRRPDSLATSLVGTGFGYQAAQRAEQARVLTHVLPQVRDIRRLGSAAVDLCLVAEGRLDLYYERGLNPWDMAAGGLIAAEAGAAVSGLHGDPATRRMTAVGTPARQAELVVLLEEAGAPGPT0018535_803DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018535-suhB-K01092NANA
AK018_047931392hypothetical proteinATGGCAGAGCTCGAGCTCGTGACGCTGCACGAGGACGCCGAGCGCCTGGTCCTGCGCGGGCCGGACGGCACCGAGCACACGCTCGCGATCTCCGAGGCGCTGCGCGCCGCCGTCCGGCGGGACCGGCCCCGGACCGAGGCGCTCCAGGCCCAGTCGGAGACCCCGCTGCGTCCGCGCGAGCTGCAGGCCCGGCTGCGGGCGGGGGCCACGGCCGAGGACCTGGCCGCCGAGTCCGGCCTCCCCCTGGAGCACGTGCGCCGCTACGAGTGGCCCGTCGCGGCCGAGCGCGACCACGTCATCAGCCAGGTCCGCAACCATCGCGTCGACCCGGAGGGCGAGGCGACCCTCGGCGACCTCGCCGACGACCGCCTCGCCGCACGCGACGTGGACACCGCCGAGACCGTCTGGAGCGCCCGCCGCACGGGCACCGCCCCCTGGCACGTGGAGGTCCGGTTCACGGCCGGGGGGCGCGAGCGCAGCGCGGCGTGGACCTTCGACCCGCGCGGTCGCGCCGTGACCGCGGTCGACGACGAGGCGCGGTGGCTGGGGCAGCCCGACGACCCGGTCTCCCCCGAGATCCTCGGCATCCCGGCGGGCGCCGACCGCCGCACCCGCCCGTCCCCGACCCCGGACGCCGCCTCGGAGGCGACGGCGCTGCTGCTGGACGACCTGGCCGGACGCCGCGGGCACCGGACGCCGCGCTCGCGCCCGGCCCCGCGGCCGGGTGAGCAGGAGCTGCCGCTGGGCCTGGAGCCGGAGCACGGTGCGCGGCCACCGGAGGACGACGGCGCCAGCGTGGTCGACCTCGGTGCCCGCCGCGACGCGCACCGCTCCTCGCGGACCGACAGCGCCTCCTCCGCGCCGGACACCCCCGCGGCGTCGGAGGGGTCCGAGCGGCGGGACCGCGCCGAGGACGCCGACGACTCCGACGAACCCGACCGGCCCGCGCCCGCACCACCGGCGCCCGGCGACGGGCGGGACGAGGACCGGAGGCCCGAGGACGAGGCCCCCGACGAGGCGGCGCCCGGCGCCGAGGCGGCCGAGGACGACGCGCACGACGAGGGCACGGGCCACGGCGCCCCGCACGAGGACGGGCCCGCCCCGCGCTCGGGACCGATGTCGGTCCCCGCGCCGGTCCCCGGACCCGCACCTCGCCCGGCCGCGCCGGACCCGGCACGCGCGGACAGCACGTCGGACGACGCCGGGCCCGAGGCGTCGGCCCCGGCGGGTTCCGCGTCGTCGTGCGGGTCGGCCCCCGAGCGCGAGGCCGCGGCGGGGACCGGGACGGACGACGCCCCGCCGCCGCGCCCGCGGCGCGGTGCCCGCAAGGGACGGGCCCCGATGCCGAGCTGGGACGAGATCGTCTTCGGCGGCGCCCGGCCCTCCTCCTGAMAELELVTLHEDAERLVLRGPDGTEHTLAISEALRAAVRRDRPRTEALQAQSETPLRPRELQARLRAGATAEDLAAESGLPLEHVRRYEWPVAAERDHVISQVRNHRVDPEGEATLGDLADDRLAARDVDTAETVWSARRTGTAPWHVEVRFTAGGRERSAAWTFDPRGRAVTAVDDEARWLGQPDDPVSPEILGIPAGADRRTRPSPTPDAASEATALLLDDLAGRRGHRTPRSRPAPRPGEQELPLGLEPEHGARPPEDDGASVVDLGARRDAHRSSRTDSASSAPDTPAASEGSERRDRAEDADDSDEPDRPAPAPPAPGDGRDEDRRPEDEAPDEAAPGAEAAEDDAHDEGTGHGAPHEDGPAPRSGPMSVPAPVPGPAPRPAAPDPARADSTSDDAGPEASAPAGSASSCGSAPEREAAAGTGTDDAPPPRPRRGARKGRAPMPSWDEIVFGGARPSSNANANANANA
AK018_04794642tdk_5Thymidine kinaseATGGCCGAGCTCGTCTTCTTCTCCGGGACCATGGACAGCGGCAAGTCGACGCTGGCCCTGCAGACCGACTACAACCATCGCGCGCGGGGCCGCCACGGGCTCATCTACACCCGCAACGACCGGGCCGGGGCCGCACGCATCTCCTCCCGGCTGGGCCTCGAGGTCGAGGCCCGCGAGGTCGGCGACGACACCGACTTCTGGGACGAGATCTCGGCCGAGCGCCAGCGCGGGCACCTGGTGGACTACCTGGTGTGCGACGAGGCGCAGTTCTACTCCCCGGAGCAGGTCGAGCAGCTCGCACGGCTCGTCGACGAGACCGAGATCGACGTCTTCGCGTTCGGGATCACCGCCGACTTCCGCTCCCGGTTGTTCCCGGGGTCGGCCCGGCTGGTCGAGCTCGCCGACCGCCTCGAGGCCCTGCAGGTGCAGACGCTGTGCTGGTGCGGGGCGCGCGCCACCCACAACGCGCGCACGGTCGGCGGGGTGATGGTCGTCGAGGGCGACCAGGTCGTCGTCGGGGACGTCAGCTCGGCCGCCGAGGTCGCCTACGAGGTGCTGTGCCGGCGCCACCACATGCGCCGCATGACCGCCGGCGTCGCCCGGCGGCTCGCCCCCGCCGACGGCCTTCTCGACGTGCGCTGAMAELVFFSGTMDSGKSTLALQTDYNHRARGRHGLIYTRNDRAGAARISSRLGLEVEAREVGDDTDFWDEISAERQRGHLVDYLVCDEAQFYSPEQVEQLARLVDETEIDVFAFGITADFRSRLFPGSARLVELADRLEALQVQTLCWCGARATHNARTVGGVMVVEGDQVVVGDVSSAAEVAYEVLCRRHHMRRMTAGVARRLAPADGLLDVRPGPT0021390_920DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857NANA
AK018_047951176hypothetical proteinATGCGCCGCGACTTCCTGCTCCTGCTCTGGGGCACGGCCGCCGCCTTCGCGGGCTTCGCCCCGCTGCTGTCCGTGGTGCCGCTGTGGGCCGCCGACGGCGGCGCCGGGTCGGGCGGCGTCGGGGCGACCACCGGCGTGCTGATGGGGACGACCGTCGCGGTCCAGCTCGCCATGCCGCGACTGCTGCGCGTGCTGACGCTGCGGTGGGCCTCGGTGCTGGGCGCCCTGCTGCTCGGCGCGCCCACCTTCGCCTACCTGCTCTCCTCGGACGTGGCCTGGGTCCTGGCGGTCTCCGCGGTGCGCGGCGTCGGCTTCGGGATGTTCGTCGTGGCCGGCAGCGCCCTGGTCGCCGAGCTCGTCCCGCCCGAGCGGCGGGGGCGCAGCCTCGGGGCCTACGGCGTGGCCATCGGCGTCCCGCAGGCCCTGCTGCTGCCCGTCGGGGTGTGGGCCGCCGAGCACCTCGGCTTCGCCGTCGTCTTCGTCGCCACCGGCGGCGTCGGCGTGCTGGGCGCGGTCGTCCTGCTCGGCATCCGCGCCATCGGCCGCCCGGCCGGTGCGGACGACGCCCCCGCGCACGCCGTCGCCGACCCCACGGAGCCCGTGCCCTACCGGACCCTGGCCGGCTCGGGAGTCCTGCTGCTGGTGGCCTCGGTGGCCTTCGGCGGTGCCACGTCCTTCGTCCCGCTGGCCTTCCCGGCCGTGACGGCGTCGGTGGTCCTGCTGGCCGTCAGCGTCACGATGGCGGTGGGCCGGTGGTGGGCCGGGGTGCGGGCCGACTCCGAGGGGGTCGGCGGCCTGCTGCCCCTGGCGATCGGTGCCTGCGCGGTCGGCACCCTCGGGATCGCCCTCGCGGCCGGCGCGCTGGACGGCGGCCTCGCCCTCGTCGCCGCGTCCGCCGCCGGGCTGCTGTACGGGCTCGGGTTCGGCGCCCTGCAGAACGACACGCTCGTGCTGATGTTCCGGGACGCGGGCCCCGGGGGCACCGGCACGGCCAGTGCGGCCTGGAACATCGCCTACGACGGTGGCACGGGCGCCGGGTCGCTCGGCGTCGGGTTCGTCGCCCAGGGCGTCGGGGTCAGTGCGGGGCTCGGCGTCGCGGCGCTGCCCCTGCTGGCCGTCCTGCCGCACGCCGTGCGCCGGGCACGGGCCGCCCGGGCGTCGGGCGGGCCCCGGTGAMRRDFLLLLWGTAAAFAGFAPLLSVVPLWAADGGAGSGGVGATTGVLMGTTVAVQLAMPRLLRVLTLRWASVLGALLLGAPTFAYLLSSDVAWVLAVSAVRGVGFGMFVVAGSALVAELVPPERRGRSLGAYGVAIGVPQALLLPVGVWAAEHLGFAVVFVATGGVGVLGAVVLLGIRAIGRPAGADDAPAHAVADPTEPVPYRTLAGSGVLLLVASVAFGGATSFVPLAFPAVTASVVLLAVSVTMAVGRWWAGVRADSEGVGGLLPLAIGACAVGTLGIALAAGALDGGLALVAASAAGLLYGLGFGALQNDTLVLMFRDAGPGGTGTASAAWNIAYDGGTGAGSLGVGFVAQGVGVSAGLGVAALPLLAVLPHAVRRARAARASGGPRNANANANANA
AK018_047961215hypothetical proteinATGACGGCGACGATCGACCTGCCGGACTCCCTCGTCACGCCGTCCTACGGTGCGGACTCCCTCGCCGCGGTGCTGCCCGCCGCGGCCGGCGTCCTGGGCCTGGACCTGACCACGGCGACCGGCCTGCGCTCGGCGGACGCGGCCGCCGCCCTCGGCCTGCCCGCCGCGCGTCGTGTCGTCGTCGTGCTCGTCGACGGGCTCGGCCTGCACAACCTCGCCGAGCGCGGGGGCCACGCGCCGTTCCTGCGCGGCCTGCTGCCCGAGGCGCGGTCGCTGACCACCTGCTTCCCCTCGACGACGGCGTCCGCGCTGGCCACGCTCGGCACCGGGACGAGCCCGGGCCTGACGGGTCTGCTCGGCTACACCCAGCGCAACCCGGACACCGGCGGGCTGGCCACGATGGTCTCGTGGACCGAGCAGTCCGACCCCTACCGGCCGGGCACCAAGACCTCCGCCCCGCTCGCCGTCGACCCCGCCGTCCTGCAGCGCCAGCCGACCGTCCTGGAGCAGGCGGGCGCCGCCGTCAGCGTCGTCTCGCCCGGGCCGCGCAAGTTCGCCGGCTCCGGCATGACGCGGGCCGGGCTGCGCGGTCCCCGGTACGTGGTGGCCGAGACGTTCGCCGACCGCGTCGACGCGACGCTGACGGCGCTGCGCGACGACGGGCTGGTGTACCTGTACCAGGGCGACGTCGACAAGGTCGGCCACCAGCACGGCCCGGACTCCTGGCAGTGGGGCGACGCCCTGGAGGACACCGACGCCGAGCTGCGGCGCCTGGTGCGGTCCGCGCCGCGCGGCACCCTCGTGCTCGTCACCGCCGACCACGGCCAGGTCACCTCCGACCTCGAGGCGCAGCACGACGTCGCCGCGAACCCCGCGCTCGCCGCCGACGTCGCGCTGCTGGGCGGCGAGCCGCGCATGACGCACGTCTACACCACGCCGGGAGCCGACGTCGGCCGGGTCGCCGAACGCTGGGCCTCGGAGCTGGGCGACGACGCGGTGGTGGTCACCGGGCAGGCCGCCGTCGAGGCCGGGTGGTTCGGCCCCGTGGCCGACCACGTGCGACCGATCGTCGGGGACGTGCTCGCGGCCGCCCGCGGCCGGGCCACCGTCGTCGACTCCCGCCTGCACCCGGCCGCCGCGCGGCACATGCCGGGCGTGCACGGCTCGCTCACCGAGACCGAGATGGTGGTCCCCCTCCTCGTCGCGGGCGGGTGAMTATIDLPDSLVTPSYGADSLAAVLPAAAGVLGLDLTTATGLRSADAAAALGLPAARRVVVVLVDGLGLHNLAERGGHAPFLRGLLPEARSLTTCFPSTTASALATLGTGTSPGLTGLLGYTQRNPDTGGLATMVSWTEQSDPYRPGTKTSAPLAVDPAVLQRQPTVLEQAGAAVSVVSPGPRKFAGSGMTRAGLRGPRYVVAETFADRVDATLTALRDDGLVYLYQGDVDKVGHQHGPDSWQWGDALEDTDAELRRLVRSAPRGTLVLVTADHGQVTSDLEAQHDVAANPALAADVALLGGEPRMTHVYTTPGADVGRVAERWASELGDDAVVVTGQAAVEAGWFGPVADHVRPIVGDVLAAARGRATVVDSRLHPAAARHMPGVHGSLTETEMVVPLLVAGGNANANANANA
AK018_04797603hypothetical proteinATGGTGCCTTCCGCGACCACACGCAAGAACCTTCGTGACGAGCTCGGTGCCCACGTCTACCGCGCCGGGTACTACCCCGACCTGGTGACCGACGTCCTGGACGTCGCGCTCGCGGACGAGCCGGTCCTGGCGCACCTGGTCCAGGCCGAGACGACGTTCGACAGCCAGGTGCGCCGCCACCTGACCGTGCTGGCGCTCACCCCCACCCGGCTCGTCGCCGCGCACGTCGACGACCACGAGGGCGACGCGGCCAACCCGTCCTCGGCCGCCGCCACCACCGAGGCCGTCCCGCTGCCCGAGATCCGCTCGGTCGCGCTGACCCACATCGTCGCCGAGCCGGCCGACCACCGCCCGGGCGACAGCGCCGCCGAGCTCAACCTCGCCATCGGGTGGGGCGCCGTCGCGCGGATCGACCTGGAGCCCGCGCAGTGCGCCGACCCGAGCTGCGAGGCCGACCACGGCCTGACCGGCCAGCTCACCCCCGACGACGTCGTGGTGCGCGTCAGCTCGGCCGCCGAGGGCGCGGACGCCGTGCGGCGGGCGGTGGACTTCGCGCGACAGCTGTCGGCCGCCACCGGCGTCAGCGGGCGCTCCTCGCGATGAMVPSATTRKNLRDELGAHVYRAGYYPDLVTDVLDVALADEPVLAHLVQAETTFDSQVRRHLTVLALTPTRLVAAHVDDHEGDAANPSSAAATTEAVPLPEIRSVALTHIVAEPADHRPGDSAAELNLAIGWGAVARIDLEPAQCADPSCEADHGLTGQLTPDDVVVRVSSAAEGADAVRRAVDFARQLSAATGVSGRSSRNANANANANA
AK018_047982703hypothetical proteinATGGACTCCTCGCACGCCGACTACCCCGTGGAGTGGGAGGCCGATGTCGTGCTGCGCGACGGCAGCACGATGCACCTGCGCCCGATCCGCCCCGAGGACGCCGACGCGCTGCAGCGGTTCCACGTCGGCCAGTCCGAGCGCTCGACCTACCTGCGGTTCTTCGCACCCATCGCCCGGCTGACCGACCGCGAGCTGCGGCGCCTGGTCGAGGTGGACCACCGCGAGCGCGTCGCGATCGTCGCCGTGCGGCCCGGCCGCGACGAGGACGGCACCGACCGCGAGGACATCCTCGGCGTGGCCCGGTTCGACGTCATCTCCGACGGCGAGGCCGAGGTCGCGTTCAACATCGCCGACTCCCTGCAGGGCAAGGGGCTGGCCTCCGTGCTGCTCGAGCACGTGGCCGTGGCGGCGCGCGAGCGCGGCGTGCGGCGCTTCACCGCCGAGGTCCTGCCGCAGAACGGCTCCATGCTCGGGGTGTTCCGCGACGCCGGCTACCAGATCAGCCAGCACCTCGACGACGGGTTCGTCGCGGTGAGCATCGACCTGGACCCCACCGAGAAGTCCCGCGCCGTCATGGCCGACCGGGAGCACCGCACCGAGGCGCGCTCCATGGCCGGGCTGCTCTCGGCCCGCCGGGTCCTGCTGGTCGGCCCCGGTGCCGACGACGGCACGCCCGAGTCGCTGCTCGCCCGCCGGGTGCTGGACGCCTACTCGATCGACCCCGGGGACACCGAGCTGGTCGTGCTGGACCCGCCCGGCGCCGTGCCCGACAGCGTGCAGGGGGCCGCCGGCTGGGACGACGTCGGCGCGATCGACCTGGCCGTGCTGGCCGTCGCACCCGAGGACGCCCTGACGGCCGTGCGGCGGCTCGACGGCAGCGGGGCGCGCGGCGTCGTCGTCCTGTCCGGCGGGTACGCCGAGTCCGGGCCGGAGGGGCTGGAGCGCCGCCGGGAGCTCGTGCGCACCGCCCACGCCGCCGGGATGCGTCTCGTCGGCCCCGTCTCCTACGGGCTGCTGACCACGACCCCGGGCTCGGCGCTGCGCGCGAGCCTGGCCGAACGTCCGCCGCCCGCCGGCGTCGTCGGCCTGTTCTGCCAGTCCGCCGCCGCGGCCGTGACGCTCACCGCCACGCTGGAGCGCCGCGGGCTCGGCGTGTCCTCGATGGTCTCGGCCGGGCACCGCGCCGACGTCTCCGGCAACGACCTCATGCAGTACTGGCAGGACGACGACGCCACCGAGGTCGTCTGCCTCTACCTGGAGTCCATCGGCAACCCGCGCAAGTTCTCCCGCATCGCGCGCCGGCTGTCCGCGGTCAAGCCGATCGTCGTCGCCACCGCCGGGCGCTCCGGCCACGTCGTCCCGCCCGGGCACGCCGTGCGCGCCACCCGTGCCCCGCGCCGCCTGCTCGACGAGCTCCTGCGCCAGTCCGGCGTCATCCAGGCCGAGAACACCCACCAGCTCATGGACGTCGCCCAGGTGCTGGCCCACCAGCCGCTGCCCGCGGGCAACCGCGTCGGCATCCTCGCGTCCTCGGCGGCGCTCGCGGCCCTGGTGGCCGAGGCCGCGGCATCGGCCGGGCTGGAGGTCGCCACCTCCAGCGACTACCTGCCCCCGCACGCCCACGAGGAGGACATCGCCCGCACCGTCGACGCGCTGTACGCCCCGGACGCGTGCGACGTCGTCGTCGCCGTCGACGTGCCCGTGGTCCAGCCGCGCACCGGCGCGATCGCCCACGCCGTCGCCCAGGCCGCCGCCCGCACCGGGCGCACCACCGTGGCCTCGATGCTCGGGCTGCACGGCATGCCCGACGAGCTCGCGGCCGTCGGACCGGACGGACACGTCGTGCGCATCCCCGCGTTCTCGACCCCCGAGGACGCCGTGGTCGCGCTCGGCAAGGTGGTCGAGCACGCCGAGCAGCGCACCGAGACCCGGGGGCACGAGGTCGCCCCCGACGGCGTGGACTCGCGGCGTGCCCGGGCGCTGGTCGAGCAGTGGCTCGCCGACGGCGAGGGCCGCGAGCTGGACGGCCACGAGGCCGCCGAGCTGCTCGCCTGCTACGGCATCCGGCTGTGGGAGTCCCGGCCCGTGCGCGAACCCGACGAGGCCGTGGCCGCCGCCGAGGATCTCGGCTGGCCCGTCGCCCTGAAGTCCACCTCTCCCGCGCTGCGGCACCGCAACGACCTCGGGGGAGTGCGCCTGGACATCACCGACGCCGAGGACCTGCGCGGGGACGTCGGCCGGCTGCGCGCCGTCGCCACCGCCCTGCTGGGCGACGAGTCCCCGGAGTTCGAGGTGCAGTCCATGGCACCGGCCGGGGTGGCGTGCGTCGTGCGCTCCGCCGAGGACCCCCTGTTCGGCCCGATGGTCTCGTTCGGCCTCGCCGGCGACGCCGTCGACCTGCTCGACGACGTCGCGCACGGCATCCCGCCGCTGACCGACGTCGACATCACCGCGCTGGTCAGCACCGTGCGGGCCGCACCGCGGCTGTACGGCTACGGGGGAGCGCCGCCCGCCGACGTCGACGCGCTCGAGGACGTGCTCGCCCGGGTGTCGGTGATGGCCGACGACCTGCCCGAGCTGGCGTCGCTGGAGATGTACCCCGTCGTCGTCGCCGAGCAAGGCGCCTCCGTCCTGCACGCCGCCGTGCGGCTGCGGCCCGCCGGGCGCCGGGCCGACGGCCTGCGCCGCGCGCTGCCGGGCTGAMDSSHADYPVEWEADVVLRDGSTMHLRPIRPEDADALQRFHVGQSERSTYLRFFAPIARLTDRELRRLVEVDHRERVAIVAVRPGRDEDGTDREDILGVARFDVISDGEAEVAFNIADSLQGKGLASVLLEHVAVAARERGVRRFTAEVLPQNGSMLGVFRDAGYQISQHLDDGFVAVSIDLDPTEKSRAVMADREHRTEARSMAGLLSARRVLLVGPGADDGTPESLLARRVLDAYSIDPGDTELVVLDPPGAVPDSVQGAAGWDDVGAIDLAVLAVAPEDALTAVRRLDGSGARGVVVLSGGYAESGPEGLERRRELVRTAHAAGMRLVGPVSYGLLTTTPGSALRASLAERPPPAGVVGLFCQSAAAAVTLTATLERRGLGVSSMVSAGHRADVSGNDLMQYWQDDDATEVVCLYLESIGNPRKFSRIARRLSAVKPIVVATAGRSGHVVPPGHAVRATRAPRRLLDELLRQSGVIQAENTHQLMDVAQVLAHQPLPAGNRVGILASSAALAALVAEAAASAGLEVATSSDYLPPHAHEEDIARTVDALYAPDACDVVVAVDVPVVQPRTGAIAHAVAQAAARTGRTTVASMLGLHGMPDELAAVGPDGHVVRIPAFSTPEDAVVALGKVVEHAEQRTETRGHEVAPDGVDSRRARALVEQWLADGEGRELDGHEAAELLACYGIRLWESRPVREPDEAVAAAEDLGWPVALKSTSPALRHRNDLGGVRLDITDAEDLRGDVGRLRAVATALLGDESPEFEVQSMAPAGVACVVRSAEDPLFGPMVSFGLAGDAVDLLDDVAHGIPPLTDVDITALVSTVRAAPRLYGYGGAPPADVDALEDVLARVSVMADDLPELASLEMYPVVVAEQGASVLHAAVRLRPAGRRADGLRRALPGNANANANANA
AK018_04799687hypothetical proteinATGTCCCCGACCAACCCCTCACCACCCGGATCCCCGGAGCCCGCGGTCACCTGCGACGCGAGCGGCATGGCCCAGATCCACCGCTACTTCCGCGCCGGCTTCGGTGAGGCACCGGACCTGGTGCGCGGGGTCGCTCCCGGAGACGTCTCCCACGCGACGGCCGTGTCCGAGCAGCTCTGGTTGTTGTCGACGGCCCTGCACTCGCACCACGAGGGCGAGGACGAGCGCCTGTGGGACGCGCTCGCGTCCCGCGCCCCCGCGTGTGCCCTGCACGTCGAGCGGATGAAGGTCCAGCACGCCCAGATGCTCGAGCACCTCGCCGAGCTCGACACCGCGCTGCCCGCCTGGAGGGCGAACCCTGGTCCGGACACCGCCGGCAGCGTGCTGAGCGCTCTCGACGGCGTCAACGCCGCACTCGCCGAGCACCTGCCGGACGAGGAGCGGGAGATCGTGCCGGTGATGGAGACCACCCTCTCCCAGGAGGAGGTCGACTGGTTCAGCGAGCACGGCAGGCGCGCGACTCCGCGCGGGCACATGTGGACCCAGCTGGGCGGCATCATGGCGGCGCAGGACGACCCCGATGCCTGGCTGCGAGCGCACCTGCCGGCGCCGGTCCGGCTCATGTGGCGCGCGGTGGGGCGGCGGCGCTACGCGGCGCAGCGCGCCGGCCTGCACCGCTCGGCCTGAMSPTNPSPPGSPEPAVTCDASGMAQIHRYFRAGFGEAPDLVRGVAPGDVSHATAVSEQLWLLSTALHSHHEGEDERLWDALASRAPACALHVERMKVQHAQMLEHLAELDTALPAWRANPGPDTAGSVLSALDGVNAALAEHLPDEEREIVPVMETTLSQEEVDWFSEHGRRATPRGHMWTQLGGIMAAQDDPDAWLRAHLPAPVRLMWRAVGRRRYAAQRAGLHRSANANANANANA
AK018_048002124rutD_3Putative aminoacrylate hydrolase RutDATGGCGGCACCGGTACGGCCTGACCGGTCCGGACGCGTCGAACGCGACGGCGTCCGGATCGCCTGGGACCTGTACGAGCGCGAGGGCGCCCCCACCGTCCTGCTGCTGCCGACCTGGCAGGTCGTCCACCCGCGCTTCTGGAAGGGGCAGATCCCGTTCCTCGCCGCGCGGTACCGCGTCGTCGTGTTCGACGCCCGTGGCTCGGGGCGGTCCGACCGTCCCGGCGACCCGGAGTCGTACGTCCCGGACGAGATCGCCGCCGACGCCGTCGCGGTGCTCGACGCCACGGACAGCCCGACGGCGGTCGTCGTCGGGCTGTCCGCCGGCGGGCCGTGGGGCGTGGCCCTGGCGACGGCCGCGCCCGAGCGCGTCGAGGGGCTCGTCGCGATCGCCCCGTCGATCTGGGGGACGGCGCCGGCTCCGCCGGACCGGGACTTCCCCTTCGACCAGCAGCTCGACTCCACCGACGGCTGGGCGAAGTGCAACCTGCCGTACTGGCGCCGAGGCCCGGACGCCTACGACGACTTCGTGCACTTCTTCGCCCGGCAGGTGTTCACCGAGCCGCACTCGACCAAGCAGATCGAGGACCTCACGGTCTGGGCGTCCGAGGCCGACCAGCCGGAGGTCCTGGGGGCCACCAACGTCGGGTCCGGGCTGGCCCCCCTGGCCCCCGAGCGGTGCCGGACGGTGGGCTGCCCGGTGCTCGTGGTCCACGGTGACCAGGACGCCGTCGCGCCCTACGACTTCGGCGTCCTGCTGGCCGAGCTCACCGGGGGACGCCTGGTGACGTTCGAGGGCAGCGGGCACTCCCCGCCGGGTCGCGACCCGGTCGCGGTGAACCGGCTGATCGAGCAGTTCGTGTCCTCGATCCACCCGCCGCCCCGGCCGCGCCGCAGCACCTGGACCCGTGCCGCCGTGCGCCGCCGCCGCGCGCTGTACCTGTCGTCGCCGATCGGGCTCGGGCACGCCCGCCGCGACATCGCGATCGCGGGCGAGCTGCGGCGCCATCATCCCGACCTGCAGATCGACTGGCTGACCCAGCACCCGGTCACGCGCCTGCTGACCGACGTCGGCGAGACCGTCCACCCGGCCTCGGCGCTGCTCGCGAGCGAGTCGGCGCACCTCGAGGACGAGGCCGCCGACCACGACCTGCACGTCTTCCAGTCCGTGCGCCGGATGGACGAGATCCTCCTGCACAACTTCCACGTCTTCCACGACGTCGTCGAGGACACGCCCTACGACCTCGTCGTGGGGGACGAGTCCTGGGACGTCGACTACTTCCTGCACGAGAACCCGGAGCTCAAGCGCTTCGCGTACGCGTGGCTGACCGACTTCGTCGGGTGGTTGCCGATGCCGTCCGGCGGCGCGGCGGAGGCCGCGCTGACGGCGGACTACAACGCCGAGATGCTCGAGCAGCGTTCGCGCTACCGGCGGCTGCGTGACGCGTCGGTGTTCGTGGGCAACCCCGACGACGTCGTCGACGACTCCTTCGGGCCGGGACTGCCCGACATCCGGGCCTGGACCGAGGAGAACTACACGTTCTCCGGGTACGTCAGCGGCTCCGAGGTGCCGGGCCGGCGCGAGCGCGACGCGGTCCGCCGGCGTCTCGGGTGTGGGCCGGACGACCTGCTCGTGATGGTGACCGTCGGCGGCTCCGGGGTCGGCGAGGCGCTGCTGCGTCGCGTCCTGGACGCCGTCCCGCTGGCACGCCGCCTGCTGCCCGAGCTGCGGTTCGTCGTCGTCTGCGGCCCGCGGATCGACCCGGCCACGCTGCCGACGACGCCGGGCGTCGAGGCCGTGGGCTACCTGCCGGACCTCTTCGCGCACCTGGCCGCCTGCGACCTGGGCGTGGTCCAGGGCGGACTGACGACCTGCATGGAGCTCACCGCCGCGCAACGTCCCTTCCTCTACGTGCCGCTGCGCGACCACTTCGAGCAGAACTTCCACGTCCGTCACCGGCTGGACCGGTACGACGCCGGCCGCTACGTCCCGTACGAGGACGCGTGCGACCCGGACCTGCTGGCCGAGGAGATCGTCAAGAACGTCGCCACCGACGTCGCCTACCGGCCGGTCGAGACCGACGGCGCCGCGCGGGCGTCGGCGATCCTGGCCGAGCTGTTCTGAMAAPVRPDRSGRVERDGVRIAWDLYEREGAPTVLLLPTWQVVHPRFWKGQIPFLAARYRVVVFDARGSGRSDRPGDPESYVPDEIAADAVAVLDATDSPTAVVVGLSAGGPWGVALATAAPERVEGLVAIAPSIWGTAPAPPDRDFPFDQQLDSTDGWAKCNLPYWRRGPDAYDDFVHFFARQVFTEPHSTKQIEDLTVWASEADQPEVLGATNVGSGLAPLAPERCRTVGCPVLVVHGDQDAVAPYDFGVLLAELTGGRLVTFEGSGHSPPGRDPVAVNRLIEQFVSSIHPPPRPRRSTWTRAAVRRRRALYLSSPIGLGHARRDIAIAGELRRHHPDLQIDWLTQHPVTRLLTDVGETVHPASALLASESAHLEDEAADHDLHVFQSVRRMDEILLHNFHVFHDVVEDTPYDLVVGDESWDVDYFLHENPELKRFAYAWLTDFVGWLPMPSGGAAEAALTADYNAEMLEQRSRYRRLRDASVFVGNPDDVVDDSFGPGLPDIRAWTEENYTFSGYVSGSEVPGRRERDAVRRRLGCGPDDLLVMVTVGGSGVGEALLRRVLDAVPLARRLLPELRFVVVCGPRIDPATLPTTPGVEAVGYLPDLFAHLAACDLGVVQGGLTTCMELTAAQRPFLYVPLRDHFEQNFHVRHRLDRYDAGRYVPYEDACDPDLLAEEIVKNVATDVAYRPVETDGAARASAILAELFNANANANANA
AK018_048011098hypothetical proteinATGTCCGAGACGCTCACACCCGACCAGACGACCCCCACGCCCGCCGTCGACGAGGACGCCCTGATGGAGTTCGCCGGGCGTGCCGTCGTCGACGCCGGTGCCACCGTCAACACGGCCCTCGTCGTCATGGGCGACCGGCTCGGCCTCTACCGGGACCTGGCCGACCACGGCCCGAGCACGGTCGCCGAGGTCGCCGCCCGCACCGGCACCGCCGAGCCGTACGTGCGCGACTGGATCAACGCGCAGGCCGCCGGCGAGTACGTCACCTACGACCCGGCGTCGGGCCGGTACACCCTCCCGCCGGCGCAGGCCGCCGCCCTGACGGACCCGGACTGCCCGGTCTACGTCCAGGGCCTGTTCCAGACGGCGCTCGGCGCGCTGCACGACACCGCCGCGGTCGTCGAGGCCGCCCGCAACGGCGCCGGGTTCGGCTGGCACGAGCACCAGGCGGACGTCCACGAGGGGACCGAGCGGTTCTTCCGCGCCGGCTACCTCGCGAACCTGGTGGGATCCTGGCTGCCGGCGCTGGACGGCGTGGTCGCCAAGCTGGAGCGAGGGGCCGCCGTCGCCGACGTCGGCTGCGGGTACGGGGCCTCCACGATCCTCATGGCGCAGGCGTTCCCGGCCTCGACGTTCGTCGGCTACGACTACCACGAGGCCTCCGTCGCCGCGGCGCGCGAGCGGGCGGCGGCCGCCGGCGTCGCCGACCGCGTGCGCTTCACCGTGGCCCCTGCCGACGGGTTCGACGGCACCGACCTCGACCTGGTGACCATGTTCGACTGCCTGCACGACATGGGCGACCCCGTCGGTGCTGCCCAGCACGTGCGCTCGGCGCTCGCCGACGACGGGACCTGGATGATCGTCGAGCCGGCGGCGGGCGACCACCCCGAGGAGAACCACCACCCGGTGGGGCGCAGCTACTACGGCTTCTCGACGATGCTGTGCACCCCGTCGTCGCTGTCCCAGGACGTCGGGATGGCGCTCGGGGCGCAGGCCGGCCCGGCCCGGATCGGCGACGTGGCCACCGCCGCGGGGTTCTCCCGGTTCGCCACAGCCGCGCAGACCCCGTTCAACAACGTCTTCGAGGTCCGCCCGTGAMSETLTPDQTTPTPAVDEDALMEFAGRAVVDAGATVNTALVVMGDRLGLYRDLADHGPSTVAEVAARTGTAEPYVRDWINAQAAGEYVTYDPASGRYTLPPAQAAALTDPDCPVYVQGLFQTALGALHDTAAVVEAARNGAGFGWHEHQADVHEGTERFFRAGYLANLVGSWLPALDGVVAKLERGAAVADVGCGYGASTILMAQAFPASTFVGYDYHEASVAAARERAAAAGVADRVRFTVAPADGFDGTDLDLVTMFDCLHDMGDPVGAAQHVRSALADDGTWMIVEPAAGDHPEENHHPVGRSYYGFSTMLCTPSSLSQDVGMALGAQAGPARIGDVATAAGFSRFATAAQTPFNNVFEVRPNANANANANA
AK018_048022733hypothetical proteinATGCTCGTCGGACGCGAGGCCGAGACCGCCCGGCTGGACCGGGTCGTGGCCGGGGCCCGGCTCGGCCGGGGCGGCGCTCTGGCGGTCCTCGGCGAGCCCGGGATGGGCAAGACCGCGCTGCTGGACGACACGGCACGGCGGGCCGCGGACTCGTGCCGGGTGCTGCGCGTCACCGGAGCCGCCAGCGAGTCGGAGGTCGCGTTCGCCGGGCTGTCCCAGCTCCTCGCTCCGCTGCGCGACCTCGTCGCGGACCTGCCGGACCGCCAGGCGGACGCCCTGCGCTCCGCCCTCGCCCTCGGTCCGGCGCACGCGGGAGACCGGCTGGCCGTCGGCGCCGGTGTCCTGGGGCTCCTCACCCGGCATGCCGGGGACGCCCCCCTGGTCGTGCTGGTCGACGACCTGCACCTGCTCGACGCCCCCTCGCTCGGGGCGCTGACGTTCGCGGCGCGGCGCCTCGCGGACGACCCGGTCGCGGTGGTGCTCGCCGGGCGCGACCCGGAGTCCGCGGGGCTGGTCGAGGGCCTGCCCGTGCTGCACCTGGTGGGCGTGGGCGAGGAGGAGGCACAGGCCCTCGTGGACGCGCTGGGCGTGCCGGTGCCCCTCGACCGGCTGGCGGAGCTGTACCGACGCACAGGCGGCAACCCGTTGGCCCTGGTGGAGCTCGCCGGCGACCCCGAGACCGGCACCGAGGTGCCGGGCCTGCCCACGACGGTGCCGGAGACGGTGGCGCGCAGCTTCGAGCACCGGGTCGACCTGCTCCCGCCGCCCACCCGCGAGGTGCTCCTCGTCGCCGCGGTCGCGGACGGGGACCTGGCCACGACGACCGCGGCGGCTCGCACGCTCGGGCTCGACACGGCGGACCTGGGCCCTGCCGAGGACGCGGGCCTCGTGCGCGTCGCCGCGGGGCGGGTCGTGTTCCGACACCCCCTGCTGCGGTCGGTGGTCTACACGCGGCCGACGGCCGGGGACCGGCGGGCCGCCCACCGCGCCGTCGCCGACGCGCTGCCGGCCGGTGACGAGGACCGCCGCGCCTGGCACCTCGCCGAGTCCGTCGGCGGCGCGGACGCCGAGGTCGCCGGTCTCGTCGAGGCGGCTGCCGAACGCGCCGTCGACCGCTGGGGCTCCGCCGTGGCCTCGACGAGCTTCGAGCGGGCCGCCGGTCTGAGCACCACGCACGCCGAGCGGGCCGCACGACTGGTGCGTGCCGCGGAGAACGCCTGGGCCGCCGGGGACGCCCGACGAGCCCTGGCCCTCCTGGACGAGGTCGCGGCTCTGGGCCCGGACGCCGAGGTCGCGTTCGACGCCGACGACCTGCGCGCCACCGTGGCGGTGCACACCGGCTCGTTGCGCGACGCCCTGGAGATGCTGGTCGGCCTCGCGCACCGGGCCCCCGACGCCGAGACGCGCGCCCGCCTGCTCGCCGACGGCGTGCACGCCGCGTTGTTCCTCGGCAGCACGCCGACGGCCGCCGGGCTCGCGGACGAGCTGGCGCAGACCCTCCCCGACCTGACGGACCCGGTCACGCGCGCCGTGACGCTGCTCGCCTGCGGGGTCGCGCACGTGCTGGCCGGGCGCGACGGCGCGGCGGAGTTCCGCGCGGCCGTGCCGCTGCTCGAGTCCGCCGGGGCGCCCCGCGCCGGTGACCTGCGCTGGCCGTGGGTCATGTCGGCACCGCTGTTCCTGCGCGACGCCACCGTCGAGGGTGCCGTCCGACCCCGGGTCGCCGAGGTCCGGCGTGCCGCGACCCCCGCGGCGCTCCCCGGGCTGCTGTTCGTCATCGCCCGCTACCAGGCCACCGCCGAGAGCTGGCACCGGGCCGAGGCGGACTACACGCTCGCGATCGAGGTGGCCCGCGAGACCGGGCAGACGACCGAGCTCGCCGCCTCGCTGGCCGGGCGGTGCTGGCTCGCCTCCCACCAGGGCGACGCCGAGCTGTGCCGTGCCGACGCCGAGGCGGCCGTGGACCTGTGCGCGCAGGGCGACATGCAGTTCTTCGTCGCCTGGGTCCGGTTCGCGCTCGGCGACCTGGCGCTGTCCGACGGCGACGCGGCGACCGCCGTGGAGGAGTTCTCGGCCCTGCAGGACCTGCTCGTCGGGCAGGGCCTCGCCGACCCGGACCTGTCGCCGGTGCCCGAGCTCGTCGAGGCGTTGGTGCGGACCGGCGAGGTGGCGCGGGCCCGCGAGATCGCGCCGGCGTACGTGGCTGCCGCCGAGGACAAGGGCATGCCCTGGGCGCTGGCCCGGGCCCGCCGGACCGCCGCGCTGCTGACCGACGACGACGTCGACGGCGCCTTCCGGACGGCGCTGGAGCTGCACGCGGGGACGCGGGACACCTTCGAGACGGCCCGGACCCTGCTGGCCTACGGCGCGCGGCTGCGCCGGGCCGGGCGCCGGGTGGACGCCCGGGAACAGCTCCGCGACGCGCTGTCCCGCTTCGAGAGCCTGGGCGCGCAGCGGTGGGCGGACCAGACCGCCGTCGAGCTGACGGCGGCCGGCGAGACCGTGCGACGCTCGGCCGACGGCTGGCAGACCGGGCTCACGTCCCAGGAGCTGCAGGTGGCCCTGCTGCTCACCGACGGGGCCACGACCCGGGAGGCGGCCGCGGCCCTGTACCTCTCGCCCAAGACCGTCGAGTACCACCTGCGGAAGATCTACACCAAGCTCGACATCCACTCCCGCGCCGAGCTGGCGGCCGTGGTCTCCGCCGGCCTCGCCGACGGCTCGGCGCGCTGAMLVGREAETARLDRVVAGARLGRGGALAVLGEPGMGKTALLDDTARRAADSCRVLRVTGAASESEVAFAGLSQLLAPLRDLVADLPDRQADALRSALALGPAHAGDRLAVGAGVLGLLTRHAGDAPLVVLVDDLHLLDAPSLGALTFAARRLADDPVAVVLAGRDPESAGLVEGLPVLHLVGVGEEEAQALVDALGVPVPLDRLAELYRRTGGNPLALVELAGDPETGTEVPGLPTTVPETVARSFEHRVDLLPPPTREVLLVAAVADGDLATTTAAARTLGLDTADLGPAEDAGLVRVAAGRVVFRHPLLRSVVYTRPTAGDRRAAHRAVADALPAGDEDRRAWHLAESVGGADAEVAGLVEAAAERAVDRWGSAVASTSFERAAGLSTTHAERAARLVRAAENAWAAGDARRALALLDEVAALGPDAEVAFDADDLRATVAVHTGSLRDALEMLVGLAHRAPDAETRARLLADGVHAALFLGSTPTAAGLADELAQTLPDLTDPVTRAVTLLACGVAHVLAGRDGAAEFRAAVPLLESAGAPRAGDLRWPWVMSAPLFLRDATVEGAVRPRVAEVRRAATPAALPGLLFVIARYQATAESWHRAEADYTLAIEVARETGQTTELAASLAGRCWLASHQGDAELCRADAEAAVDLCAQGDMQFFVAWVRFALGDLALSDGDAATAVEEFSALQDLLVGQGLADPDLSPVPELVEALVRTGEVARAREIAPAYVAAAEDKGMPWALARARRTAALLTDDDVDGAFRTALELHAGTRDTFETARTLLAYGARLRRAGRRVDAREQLRDALSRFESLGAQRWADQTAVELTAAGETVRRSADGWQTGLTSQELQVALLLTDGATTREAAAALYLSPKTVEYHLRKIYTKLDIHSRAELAAVVSAGLADGSARNANANANANA
AK018_048032484gyrA_3COG0188DNA gyrase subunit AATGGCGCGCACGAAGTCCGCACCCGCCGACGAGCCGTACGACGAGACGATCGTCGACATCGACGTCGCCGCGGAGATGGAGACGTCGTTCCTCGAGTACGCGTACTCCGTCATCTACTCGCGCGCCCTGCCGGACGCCCGTGACGGCCTCAAGCCGGTGCACCGCCGGATCCTGTACATGATGGCCGACATGGGCCTGCGGCCCGACCGCGCGCACGTGAAGTCCTCGCGCGTGGTCGGCGAGGTGATGGGCAAGCTGCACCCGCACGGCGACGGCGCCATCTACGACGCGCTCGTGCGCCTGGCGCAGGACTTCTCCATGCGCCTGCCGCTGGTGGACGGCCACGGCAACTTCGGCTCGCTCGACGACGGCCCCGCCGCCGCCCGGTACACCGAGGCGCGCCTGGCCGCGCCGTCGATGGCGATGACCGCCGGGCTGGACGAGGACGTCGTCGACTACGTCCCGAACTACGACAACAAGCTCACCCAGCCCGAGGTGCTGCCCTCGGCGATCCCGAACCTGCTGGTCAACGGCGCGTCCGGGATCGCGGTCGGCATGGCCACGAACATGCCGCCGCACAACCTCACCGAGGTCGTCGCCGCGGCCCAGCACCTGCTGGCCAACCCCGAGGCGACGCTCGACGACGTCATGCGGTTCGTCCCCGGGCCGGACCTGCCCAGCGGCGGCAAGATCATCGGCCTCGACGGCGTGCGCGACGCCTACCGCACCGGCCGCGGCTCGTTCCGCACCCGGGCCACCGCCCGGATCGAGAACGTCACGGCCCGGCGCAAGGGCATCGTCGTCACCGAGCTGCCGTACACGGTGGGCCCGGAGAAGGTGATCGAGAAGATCGCCGACGGCGTGCGCAACAAGAAGATCCAGGGCGTCACCAACGTCCAGGACCTCACCGACCGCACACACGGCATGCGCGTGGTCATCGAGGTCAAGACCGGGTTCGACCCGGAGGCCGTGCTCGAGCAGCTCTACCGCACCACGCCGCTGGAGGACTCCTTCGGCATCAACAACGTCGCCCTCGTGGACGGCCAGCCGCGCCCGCTGGGGCTGCTGGACCTGCTGCAGGTCTGGGTCGACCACCGCATCGACGTGGTGCGCCGCCGCTCGCAGTACCGCCTGGCCAAGCGCACGGACCGCCTGCACCTCGTCGAAGGTCTGCTCGTCGCGATCCTGGACATCGACGAGGTCATCCAGGTCATCCGTTCCTCGGACGACGCCGCGACCGCCCGCGAGCGCCTGCAGTCGGTGTTCGACCTGTCCGAGCCGCAGGCCTCCTACATCCTGGACCTGCAGCTGCGCCGCCTGACGAAGTTCTCGCGCATCGAGCTCGAGTCGGAGAAGTCCCAGCTCGAGGCGGAGATCGCCGAGCTGGAGGCGATCCTGGCCGACGAGGCGCGCCTGCACGGCGTCGTCTCGGACGAGATGGCCGAGGTCGCCGCCACCTACGGCACGCCGCGCCGCACGGTCCTGCTCGACTCGGCGGGCGGGGCCGCGCAGTCGGCGGCGGCGGCGCCGGCGCGGGGCAAGAAGGCCCCCGCGCTGGACCTGGAGATCAAGGACACCCCGACGCGGGTGCTGCTGTCCGCGACGGGGCTGCTGGCCCGCACCTCGGGCGAGACCGCGGACGCCCCGGTGGAGCGTGCCGGTCGGCGGCACGCGCACGACGCGCTGCGGTCTGACGTCGCGACGACGGCACGCTCCCAGATCGGCCTGGTCACCTCGACGGGCCGGCTGCACAAGCTGTCCGCGCTGGAGCTGCCCGCGCTGCCGAGCGTGGACGGGCCGCCGTCGCTGTCCGGTGGGGTGCCGGTCAGCGAGATGGTGTCGCTGGAGTCCGGTGAGCAGGCGCTGGCGGTGGTGTCGCTGGCCGAGGACGCCGCTCCCCTGGCGCTCGGCACCCGCCACGGCGTGGTCAAGCGGGTGACGCCGGGCGACGCGCCGCGCAACGGCGACGTCTGGGAGGTCATCGGCCTCAAGGACGGCGACGCCGTGGTGGGGGCCGCGCCGGCCACCGACGAGGACGAGGTGGTCTTCGTCGCCTCGGACGCCAGCCTGCTGCACTTCGACGCCTCGCTGGTCCGCCCGCAGGGCCGCGCGGCCGCGGGCATGGCCGGCATCCGCCTCGGCGGCGGCCAGCACGTGGTGTTCTTCGGGGTGGCGCGGGCCGCCTCGTGCGACCTGCACACCGTGGTGACGGTCGCCGGGTCGGCCGGTGCGCTGCCGGGCACGGGCGGCGGCTCGGTGAAGGTCACCCCGTACGAGCTGTACCCGGGCAAGGGCCGCGGGACGGGCGGCGTGCGCGCCCACCGGTTCCTCAAGGGCGAGGACGCGATCGTCCTGGCCTGGGTCGGCGAGGGTCCGGCGCGGGCCGTGGGTTCGGGCGGCCAGCCGGTCGAGCTGCCCGAGGAGACCACGCGCCGCGACGGCTCCGGGACCCCGGCCTCGGGTCCGCTGGCCGCCATCGGCTGAMARTKSAPADEPYDETIVDIDVAAEMETSFLEYAYSVIYSRALPDARDGLKPVHRRILYMMADMGLRPDRAHVKSSRVVGEVMGKLHPHGDGAIYDALVRLAQDFSMRLPLVDGHGNFGSLDDGPAAARYTEARLAAPSMAMTAGLDEDVVDYVPNYDNKLTQPEVLPSAIPNLLVNGASGIAVGMATNMPPHNLTEVVAAAQHLLANPEATLDDVMRFVPGPDLPSGGKIIGLDGVRDAYRTGRGSFRTRATARIENVTARRKGIVVTELPYTVGPEKVIEKIADGVRNKKIQGVTNVQDLTDRTHGMRVVIEVKTGFDPEAVLEQLYRTTPLEDSFGINNVALVDGQPRPLGLLDLLQVWVDHRIDVVRRRSQYRLAKRTDRLHLVEGLLVAILDIDEVIQVIRSSDDAATARERLQSVFDLSEPQASYILDLQLRRLTKFSRIELESEKSQLEAEIAELEAILADEARLHGVVSDEMAEVAATYGTPRRTVLLDSAGGAAQSAAAAPARGKKAPALDLEIKDTPTRVLLSATGLLARTSGETADAPVERAGRRHAHDALRSDVATTARSQIGLVTSTGRLHKLSALELPALPSVDGPPSLSGGVPVSEMVSLESGEQALAVVSLAEDAAPLALGTRHGVVKRVTPGDAPRNGDVWEVIGLKDGDAVVGAAPATDEDEVVFVASDASLLHFDASLVRPQGRAAAGMAGIRLGGGQHVVFFGVARAASCDLHTVVTVAGSAGALPGTGGGSVKVTPYELYPGKGRGTGGVRAHRFLKGEDAIVLAWVGEGPARAVGSGGQPVELPEETTRRDGSGTPASGPLAAIGPGPT0027705_2806DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027705-parC-K02621NANA
AK018_048041614stp_5Multidrug resistance protein StpATGGGGACCGCCCGCGAGGACTCCACGCCGCGCGCGCCGTCGGACGCCACCGCCACCGCGCCGTCCGGCCGCGTGCTGGGCACGCTCATCCTCGTCGCCGCCGTGGCCAACCTGAACCTGTCCGTGGCGAACGTCGCCCTGCCGGACATCGGCGACGCCCTGGACGCCTCGCAGGTCCAGCTCAACCTCGTCGCGGTCGCGTACTCCCTCGGGCTGTCGGCCTCCGTGCTGTACTTCGGCGCGATCGGCGACCGGTACGGCCGCAAGGCGCTGCTGCTGACCGGCACCGGACTCACCGTGCTGTTCAGCCTGCTGGCGGCGTGGTCGCCCTCGGTCGAGGTCCTCTTCGTCGCGCGCGTCGGCGGAGGCCTGTGCGCCGGCATGGCGTTCCCGACCACGCTCGCGCTGATCTCGGCCCTGTGGTCCGGGCCCGGCCGGACCCGCGCCATCGCCCTGTGGTCCGGCATCGGGGCCGCGTTCGCCGCCCTCGGCCCCCTCGCCGCCGGGTGGGTGCTCACCCAGTTCTGGTGGGGGTCGGTCTTCGCGCTGACCGTGCCGCTCGCGGTGCTCGCGTTCGTGCTGGCCCTGGTGCTCGTGCCCGCGCACGTCCACGAGAGCGTCCAGCCCGTCGACCACCTCGGCGGCACCCTGTCCGTGCTGCTGGTCGGCGCGCTGGTGATGGGTATCAACCTGCTGGCCGTGCCGGACCAGGCCGTGCTCCTCGCCGTGCTGGGCGCCGTCGTCGTCGGGGCCGGCACCTGGTTCGTGCTGCGCCAGCTCCATGCCGACAACCCGCTGTACGACCTACGGGTGGCCGCGCGCCCCACGTTCTGGGTCGCGGCGGTGGCCGGCCTGATCATCTTCGGCTCGCTGATGGGCGCGATGTACGTCGGCCAGCTGTTCATGCAGAACGTGCTCGGCTACTCCAGCATCGCGGCCGGCGCGGCGATCCTGCCCGGCGCCGTCGGCATGGTGCTCGTCGCGCCACGGTCGGCCGCCCTGGTCGAACGGCACGGGTCGCGCGTCACGATGCTGTCCGGGTACGTGTTCGTCCTGCTCGGCTTCGCCACCATGCTGCTGCTGTGGCGCGAGGACGTCGGTTACTGGGCCGTCGGGCTGGCCTACCTGCTCGTCGGCATCGGCGTCGGGCTGTCCGGGACGCCGGCGTCGAACTCGCTGACGGGCTCGGTGCCCGTGCAGCGCGTCGGCATGGCCTCCGGCACCGCCGACCTCCAGCGCGACCTGGGCGGCGCCATCCTGCAGTCCGCCTTCGGGGCGCTGCTCGCCGCCGGGTACGCCGGGTCGATGGCCACGGCCGTCGGGGACGACAGCGACCTGTCCGACCTCACCGCGAGCACGCAGGCCACGCTGGAGAAGTCGTTCGCCGGGGCCGAGTCGGTCGCCTCGCAGCACCCGCAGTACAGCGACGAGATCGTCGCCGCGGCCCGCGAGTCGTTCCTCGCCGGCGACCAGTGGGCCTACCTCGCCGGGATCGTCGCCGTGCTGCTCGGCTCGCTGCTCGTGCTCGTCGCCTTCCCGCGGCGCGACCGCGAACGCGAGCTGCGCGCCCGCTACCAGCCCGGGCCGGCGTCGGACACCGACGCCGGCCGCTGAMGTAREDSTPRAPSDATATAPSGRVLGTLILVAAVANLNLSVANVALPDIGDALDASQVQLNLVAVAYSLGLSASVLYFGAIGDRYGRKALLLTGTGLTVLFSLLAAWSPSVEVLFVARVGGGLCAGMAFPTTLALISALWSGPGRTRAIALWSGIGAAFAALGPLAAGWVLTQFWWGSVFALTVPLAVLAFVLALVLVPAHVHESVQPVDHLGGTLSVLLVGALVMGINLLAVPDQAVLLAVLGAVVVGAGTWFVLRQLHADNPLYDLRVAARPTFWVAAVAGLIIFGSLMGAMYVGQLFMQNVLGYSSIAAGAAILPGAVGMVLVAPRSAALVERHGSRVTMLSGYVFVLLGFATMLLLWREDVGYWAVGLAYLLVGIGVGLSGTPASNSLTGSVPVQRVGMASGTADLQRDLGGAILQSAFGALLAAGYAGSMATAVGDDSDLSDLTASTQATLEKSFAGAESVASQHPQYSDEIVAAARESFLAGDQWAYLAGIVAVLLGSLLVLVAFPRRDRERELRARYQPGPASDTDAGRPGPT0028045_820DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167NANA
AK018_04805780hypothetical proteinATGCAGAATGCATGTCAGCGAAAGCGTGTGTCAGAGGTCACACCTACGCTCGGCGGCATGGACATCTTCCTGGTACCCGGCTTCTGGCTGAACGCGTCCGCGTGGGACGTCGTCACCCCGCCGCTCGTCGCTGCCGGGCACACCGTGCACCCGATGACGCTGCCCGGCATGGACTCCGTCGAGACCGACCGCAGCGGCATCACGCTCGCCGACCACGTCGACGCCGTCGTCGCCGCGATCGACGCGCTGCCCGACGACGCCGAGATCGTGCTCGTGGGGCACTCCGGCGGGGCAGCGGTGATCCACTCCGCGGCCGACCGCCGCCCCACCCGGATCACCCGTGCCGTCTACACCGACTCGTTCCCCCTCGGCGACGGGGGAGCGATCAACCCCGACCTGCCCGTCGTCGACGGCGAGATCCCGCTGCCGGGCTGGTCGGTGTTCGACGAGCCGGACCTCGTCGGCCTGGACGACACCCTCCGGGCGCGGTTCCGAGCCATGGCGATCCCGACACCCGCCCGGGTCGCCTCGGACCCGGTGCGCCTGACCGACGACCGCCGCTACGACGTGCCGACCACGGTCATCGCCTGCGAGTCCTTCGGTTCCTTCGACGGCCCGCGCGCCATGTACGAGCACTTCATCGCCCAGGACGACCCGTTCACCCGCGAGCTCGCGGCGATGCGGGCCTGCGAGATCGTCGAGCTGCCCACCGGGCACTGGCCGATGTTCACCCGGCCGGTCGAGCTCGGCGAGGCGATCGCCGCCGCCGTCGCGCGCTGAMQNACQRKRVSEVTPTLGGMDIFLVPGFWLNASAWDVVTPPLVAAGHTVHPMTLPGMDSVETDRSGITLADHVDAVVAAIDALPDDAEIVLVGHSGGAAVIHSAADRRPTRITRAVYTDSFPLGDGGAINPDLPVVDGEIPLPGWSVFDEPDLVGLDDTLRARFRAMAIPTPARVASDPVRLTDDRRYDVPTTVIACESFGSFDGPRAMYEHFIAQDDPFTRELAAMRACEIVELPTGHWPMFTRPVELGEAIAAAVARNANANANANA
AK018_04806231Putative antitoxin VapB12ATGTCCACGCTGCAGGTCCGGGACGTCCCGGACGACGTCAAGCGGGTGCTCAAGGCCCGCGCCGCCCGGTCGGGCCAGAGCCTGTCCGAGTTCGTCCTCCAGGAGCTGAGCGAACTCGCCGGCCGGCCGACCATCAGCGAGCTCACCGACCGCATCCGCGACCGCGGTAGCTACACGCCGGGGGTCGATGCGGCTGAGGTGCTCGCCGCAGCGCGGTCGGAGCGCGAGTGAMSTLQVRDVPDDVKRVLKARAARSGQSLSEFVLQELSELAGRPTISELTDRIRDRGSYTPGVDAAEVLAAARSEREPGPT0027675_652DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-FitB-FitA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027675-antitoxin_fitA|vapB-K21495NANA
AK018_04807417vapC_3tRNA(fMet)-specific endonuclease VapCGTGACACTCGTCCTCGACGCCTCGGTCCTGGCCGAGTTCCTCGTCGGCAGCCCGGCGGGCCGGCGTGCCACGCCTCGCATCCTGGCGGACCGTGACCTGCACATCCCGCACCTGGCGGTCGTCGAGGTCGCGTCCGTCGTCCGAGGCTGGGTGCTCGGCGGCCACCTCCCCGAGCCTCGGGCGCGTGGGGCCCTCGACGACCTCGCGGCGCTGCCTGCCGCTCGCTGGTCCGCCGAGCCGTTACTTCCCCGCCTCTGGGCGCTGCGGTCCAACATGAGCGCGTACGACGCGACCTACGTGGCCCTGGCCGAAGGAGTCCAGGCCACACTCCTGACGGCCGACGCCCGCCTGGTGCGCGCGGCGGAGCAGTTCGGGGCGTGCTCGGTCGAGCTCGTCGACGCGGGCACGGGACGGTGAMTLVLDASVLAEFLVGSPAGRRATPRILADRDLHIPHLAVVEVASVVRGWVLGGHLPEPRARGALDDLAALPAARWSAEPLLPRLWALRSNMSAYDATYVALAEGVQATLLTADARLVRAAEQFGACSVELVDAGTGRNANANANANA
AK018_04808417hypothetical proteinGTGACCGCCTACGAGTTCTCCGCCGACCCCGACCGCCTCGACGTCGACTGGATCCACGAGATCCTGTCCACGCAGGCCTTCTGGGCCCGCGGACGCACCCGCGCGGCGCAGGAGACCGCCGTCGCCGGCAGCCGGAACTACGGCCTGTACACGGCCGACGGCACGCAGGTCGCCTACGCCCGCGCCGTCACCGACGGCGTCACGTTCGCCTGGGTGGCCGACGTGATCGTCGACCCCGCCCACCGACGCCAGGGGCTCGGTACCCGCATCGTCGACGGCCTCATGGCCGACCTCGAGAGCCTCGGGCTCAAGCGCGTGCTGCTCAAGGCCTCCCCCGACGGCCACGGGCTCTACCGGCAGGCCGGATTCGACACCCTCGACGAGCCGGAGACCTGGCTGCTCCGACGCCTGCGCTGAMTAYEFSADPDRLDVDWIHEILSTQAFWARGRTRAAQETAVAGSRNYGLYTADGTQVAYARAVTDGVTFAWVADVIVDPAHRRQGLGTRIVDGLMADLESLGLKRVLLKASPDGHGLYRQAGFDTLDEPETWLLRRLRNANANANANA
AK018_04809729hypothetical proteinATGCCGCCCGCTACGCTGCCGCGCATGACCGACGTCGCTCATACCGACCGCCCCCTGCTCAGCCCGGGCGCTGCCCGCGTCGCGGCGGGCGTCTTCGCCGCCCTCGCCGTCGTCCACCTGGTCGCCCAGCTCCTCGACGCCGCCGCGGTCGCGAACTCGACGCAGTGGCTGGTCATGCCGGCGCTCGCGGTCGTGCTCTGGTGCACGACGGCGGCATCCCGGCCGCGCCTCGTGCGGCTGGTGCTGGTGGCACTCGGATTCTCCTGGGTCGGTGACACCCTGCCCGACCTGTTCACCGGCGACGCGGCGTTCCTGGCGATGGTCGGCGGGTTCCTCGTCGCCCAGGTGGCCTACGCCGTGGCGTTCTGGCCGTACCGCCGCGAGTCCGTCCTGCACCGGCGCCGGGGAGTCCTGCTCGCCTACGTGGCCCTGGCGGTCGTCCTGGTGGCGCTGTGCCTGCCGGGCGCTCCCGGCGTGCTGGCGGGCGCCGTCGTCGTCTACGCGGTGTGCCTGACCGCGATGGCGGTGCTCGCCACGGGCGTGCACCGGCTGGCGTGGATCGGCGGTGCGCTGTTCCTCTTCTCGGACGCGATGATCGCGCTGGGTGCGTTCGCTGACGTCGTGCCGCCGCAGTCCGGGTTCTGGATCATGCTTACCTACCTCGCCGGCCAGGCGCTGCTCGTCGCGGGCGTCGTCGCGCGGCAGGCAATCTCAGCCCGGGCCGCCTGAMPPATLPRMTDVAHTDRPLLSPGAARVAAGVFAALAVVHLVAQLLDAAAVANSTQWLVMPALAVVLWCTTAASRPRLVRLVLVALGFSWVGDTLPDLFTGDAAFLAMVGGFLVAQVAYAVAFWPYRRESVLHRRRGVLLAYVALAVVLVALCLPGAPGVLAGAVVVYAVCLTAMAVLATGVHRLAWIGGALFLFSDAMIALGAFADVVPPQSGFWIMLTYLAGQALLVAGVVARQAISARAANANANANANA
AK018_048101125mshD_5Mycothiol acetyltransferaseATGGCCACCGTGGAGACCTCACCGGACCTCGCCCCGATCGCCGAGCGCGCGGACGCCCCGGCGACCCTGCCGACGCTCACCGCCGGCGGGCTGACCTGGCGTGCGGCCACCGCCGACGACGCCCCGGCGCTGCTCGAGCTGCGCAACACCATCGCCGCGGCCGACGCCGAGCCGTACCGCGAGACCCTCGAGGAGATCACCGACCTGTTCGACGCCCCGTGGCGCCGGTTCGAGGACGACTCGATCCTCGGGTTCGACGCCGACGGCGCACTGGTGGCCTACGGCCACGTCGAGACCATGCCCGGCGACACCCGCACGCTGCGGGCGTTCCTGTTCGGCGGGGTGCACCCGTCCCGCCGCGGCGAGGGCATCGGCCGCGAGCTGCTCGCCTGGCAGGTCGCCCGCGCCCGGCAGGTGCTCGCCGCGTCGGGCAAGGAGCTGCCCGCCCGGATCGGCGTCTTCGCCGAGGACGACGGACCGGCCTCGAAGCTGCGACTGTACGAGCGGGCGGGCTTCGAGCCCCGCCGGTTCTACTCCGACCTGCGCCGCGACCTGCGCGACCTGGAGGCAGCCCCGCTGCCCGACGTCGTCCTCGACGGGTCGCTGCGACTCGTGCCGTTCAGCGCCGAGCTCGACGAGGCCACGCGCCTGGCGCACAACGACGCCTTCCGCGACCACTGGGGCAGCGAGCCCAACACCCGCGAGCAGTGGCAGCGCGGGCGCACCGGCTTCGCGCCGCAGTGGACCCACCTCGTGGTCGACGACGCCCCCGACGTCGAGGCGCTGCTGGCCGACCCCCACACCGACGACGAGACCGCGGCCGCGCTGCGCGCCGGGGAGCCGCTCGTCGTCGGGTACGCCGTGAACCTCCGGTTCGAGGAGGACTTCGCCGTGCGCGGGTACACCTTCGGGTACACCGGCGTGCTCGGCACCCGGCGCGCCTACCGCGGGCGCAAGGCCGGGCTGGCGGCGCTGCTGGCGAGCATGCGGGCCTTCGCCGCCGACGGCATGGAGTACGCCTGCCTCGACGTCGACACCGCGAACCCCAGCGGGGCCGACGGGCTCTACGCCAGCCTCGGGTACACGAAGACCCACGGGTCGCGGCTGCTCAGCATCGAGCTGTAGMATVETSPDLAPIAERADAPATLPTLTAGGLTWRAATADDAPALLELRNTIAAADAEPYRETLEEITDLFDAPWRRFEDDSILGFDADGALVAYGHVETMPGDTRTLRAFLFGGVHPSRRGEGIGRELLAWQVARARQVLAASGKELPARIGVFAEDDGPASKLRLYERAGFEPRRFYSDLRRDLRDLEAAPLPDVVLDGSLRLVPFSAELDEATRLAHNDAFRDHWGSEPNTREQWQRGRTGFAPQWTHLVVDDAPDVEALLADPHTDDETAAALRAGEPLVVGYAVNLRFEEDFAVRGYTFGYTGVLGTRRAYRGRKAGLAALLASMRAFAADGMEYACLDVDTANPSGADGLYASLGYTKTHGSRLLSIELNANANANANA
AK018_048113621metH_2COG0646Methionine synthaseGTGACCTCCACGCTCGACATCGCCGCTGCCGACGCCCGTTCCGCCGCCCTGCGCGACGCGCTGCGCACCCGGGTGGTGGTGGCCGACGGCGCCATGGGCACCATGATCCAGGCCGCCGACCCGACCATGGAGGACTACCAGCAGCTCGAGGGCTGCAACGAGATCCTCAACGTCACCCGCCCGGACATCGTGCGCGGCGTGCACGACGGGTTCCTCGAGGTGGGCGTGGACGCGATCGAGTCGAACACGTTCGGCGCGAACTGGTCGAATCTGTCGGACTACGGCATCGACGACCGCATCCGCGAGCTGGCCCGCGTCGGCGCGGAGCTGGCCCGTGAGCGCGCCGACGTCTACGCGACGCCGGACCACCCGCGCTGGGTGCTGGGCTCGATGGGTCCGGGCACCAAGCTGCCCTCGCTGGGGCACACCACGTACGAGAACCTGCGCGACACGTTCGCCGAGCAGGCCGCCGGGCTGCTGGAGGGCGGCGCGGACGCGATCCTGGTGGAGACCAGCCAGGACCTGCTGCAGACCAAGGCCGCCGTGACGGGCGCACACCACGCGATGCGGCCGGTCGAGGAGGGCGGCGTCGGCCGCACTGTGCCCGTGATCGCCTCGGTGACCGTCGAGACCACCGGCACCATGCTCATGGGCTCCGAGATCGGGGCGGCGCTGACCACGCTGCAGGCCGTCGGCGTGGACGCCATCGGCCTGAACTGCGCCACCGGCCCGGACCAGATGAGCGAGCACCTGCGCTACCTGGCCAAGCACGCCGAGGTGCCGGTCACGTGCATGCCGAACGCCGGCCTGCCCGAGCTCGGCCCGCACGGCGCCGTCTACCCGCTGACCCCGGACGAGCTGGCGGCGGCGCACAGCCAGTTCGTCGACGAGTTCGGCCTGGGCATGGTGGGCGGCTGCTGCGGCACGACGCCGGAGCACCTGGCGCGCGTCGTCGACGCGGTGCGCGGTCGCCCGCTGCCGCAGCGCGCGGTGGAGCGCACCAGCGGCGTCGCGTCGCTGTACTCGCACACGGACCTGTCCCAGGACGCCTCGTACCTGGCGATCGGTGAGCGCACCAACGCCAACGGCTCCAAGGCGTTCCGCGAGGCGCTGCTGGAGGGCCGGTGGGACGACATCGTCGACATCGCCCGCGACCAGACGCGGCACGGCGCCCACCTGCTCGACGTGTGCGTCGACTACGTGGGGCGCGACGGCGTCGCGGACGTGCGGGAGGTCGTCTCGCGGCTGGCGAGCGCCTCGACGCTGCCGCTGGTCATCGACTCCACCGAGCCGGAGGTGATCCGCGCCGGCCTGGAGCTGGTGGGCGGGCGCGCCGTGGTGAACTCGGTGAACTTCGAGGACTCGGACGGGCCCACCTCGCGGTTCCAGCGGATCATGCCGGCCGTCCGCGAGCACGGTGCCGCCGTCGTCGCCCTGACCATCGACGAGGAGGGCCAGGCCCGCACCACGGAGAAGAAGGTCGCGATCGCCTCGCGCCTCATCGACACCCTGACCCAGCAGTGGGGCATGCGGGTGGACGACATCATCGTCGACGCCCTGACGTTCCCCATCGCGACCGGGCAGGAGGAGACGCGCCGCGACGCCATCGAGACGATCGAGGCGATCCGCGAGATCAACCGGCTTTACCCCGGCGTGCACACCACGCTCGGCGTCTCGAACGTGTCGTTCGGTCTCAACCCGGCCGCGCGCACGGTGCTGAACTCGGTGTTCCTGCACGAGGCCACGCAGGCCGGCCTGGACTCCGCCATCGTGCACGCGGCGAAGATCCTGCCGCGCACCGCTATCGACGACGAGCAGTGGCAGGCCGCCGAGGACCTCGTGTGGGACCGGCGCCGGTACGACGACGAGGGCAACCTGACCCACGACCCGCTGTCCCACCTGTTGGAGGTGTTCTCCGGCGTCGACGCCGCCGCGATGCGCGACCAGCGGGCCGCCGAGCTCGCCGCGCTGCCCGTGGGCGAGCGGCTGGAGCGCCGCATCATCGACGGCGCGCGCAAGGGTCTCGAGGACGATCTGGACACCGCGCTGGCCGACGGCATGAAGGCCCTCGACATCGTCAACACCCACCTGCTGGGCGGGATGAAGGTCGTCGGCGAGCTGTTCGGGTCGGGGCAGATGCAGCTGCCGTTCGTGCTGCAGTCCGCCGAGGTCATGAAGACCGCGGTGGCGCTGCTCGAGCCGCACATGGAGAAGGTCGAGGGCGCTGAGGAGCAGTCCAAGGGCGTGATCGTGCTGGCGACCGTGCGCGGCGACGTGCACGACATCGGCAAGAACCTCGTCGACATCATCCTGACGAACAACGGCTACACGGTGGTCAACATCGGCATCAAGCAGCCGATCTCGGCCATGATCGAGGCCGCCGAGGAGCACGGCGCCGACGTCATCGGCATGTCCGGGCTGCTGGTGAAGTCGACCGTGGTGATGAAGGAGAACCTCGAGGAGCTCGTCTCGCGCGGCATGGAGAAGCGCTGGCCGATCCTGCTCGGCGGCGCGGCCCTGACCCGCACCTTCGTCGAGGACGACCTCGCCTCCGCGTTCCCCGGGATCGTGCGGTACGCCCGCGACGCCTTCGAGGGGCTGCGCCTCACGGAGCCGCTGGTCGCCGTCGCCCGTGGCGCCGACCAGGAGGAGGTCGGGTTGCCGGCGCTGCGCAAGCGCCGCCACAACGTCGTCAAGGTCACCGAGACCGCGGTCGAGGACCTGCCCGAGCGGTCCGACGTCGCGACCGACAACGAGGTGCCTGTTCCCCCGTTCTGGGGCACGCGCGTGGTCAAGGGCATCCAGCTCGCCGACTACGCCGCGTTCCTCGACGAGCGCGCCACGTTCATGGGTCAGTGGGGCCTCAAGCCCGGGCGGGGCACTGAAGGCAACGCCGGGGCCACCTATGAACAGCTCGTCGAGACCGAGGGCCGGCCGCGCCTGGCCCAGTGGCTCGACACGATCCGCACCGATCAGATCATGGACCCGACCGTCGTCTACGGGTACTTCCCTGTGTGGTCCGAGGGTGACGACATCGTCGTTGCCCATCACGGGCCGGGCCTGGCCGGCATCGGGGCGCCCGACGGCGGATCCGGCGGCGAGCCGGGGACCGAGCGGCTGCGCTTCACTTTCCCCCGCCAGAAGCGCGACCGGCACCTGTGCCTGGCCGACTTCGTCCGCCCCAAGTCCTGGGTCGAGGAGACCGGCCGCTACGACGTGCTGCCCATCCAGCTCGCCACCGTCGGCGACCCGGTGTCCGCGTACACGGCGAAGCTGTTCGCCGAGAACAAGTACCGCGAGTACATGGAGCTGCACGGGCTGTCCGTGCAGCTCACCGAGGCGCTGGCCGAGTTCTGGCACTCCCGGGTGCGCTCCGAGCTCGGGTTCGGCGACGAGGACCCCGAGGACGTCGAGGGCATGTTCAAGCTCGAGTACCGCGGGGCGCGGATGTCACTCGGGTATCCGGCGTGCCCTGACATGGAAGACCGCACGAAGGTCGTCGAGCTGCTGCGGCCCGAGCGGGTCGGTGTGACGCTCAGCGACGAGCTTCAACTGCACCCAGAGCAGTCGACGGACGCGTTCGTGTTGCATCACCCGGAGGCGAAGTACTTCTCCGTGTGAMTSTLDIAAADARSAALRDALRTRVVVADGAMGTMIQAADPTMEDYQQLEGCNEILNVTRPDIVRGVHDGFLEVGVDAIESNTFGANWSNLSDYGIDDRIRELARVGAELARERADVYATPDHPRWVLGSMGPGTKLPSLGHTTYENLRDTFAEQAAGLLEGGADAILVETSQDLLQTKAAVTGAHHAMRPVEEGGVGRTVPVIASVTVETTGTMLMGSEIGAALTTLQAVGVDAIGLNCATGPDQMSEHLRYLAKHAEVPVTCMPNAGLPELGPHGAVYPLTPDELAAAHSQFVDEFGLGMVGGCCGTTPEHLARVVDAVRGRPLPQRAVERTSGVASLYSHTDLSQDASYLAIGERTNANGSKAFREALLEGRWDDIVDIARDQTRHGAHLLDVCVDYVGRDGVADVREVVSRLASASTLPLVIDSTEPEVIRAGLELVGGRAVVNSVNFEDSDGPTSRFQRIMPAVREHGAAVVALTIDEEGQARTTEKKVAIASRLIDTLTQQWGMRVDDIIVDALTFPIATGQEETRRDAIETIEAIREINRLYPGVHTTLGVSNVSFGLNPAARTVLNSVFLHEATQAGLDSAIVHAAKILPRTAIDDEQWQAAEDLVWDRRRYDDEGNLTHDPLSHLLEVFSGVDAAAMRDQRAAELAALPVGERLERRIIDGARKGLEDDLDTALADGMKALDIVNTHLLGGMKVVGELFGSGQMQLPFVLQSAEVMKTAVALLEPHMEKVEGAEEQSKGVIVLATVRGDVHDIGKNLVDIILTNNGYTVVNIGIKQPISAMIEAAEEHGADVIGMSGLLVKSTVVMKENLEELVSRGMEKRWPILLGGAALTRTFVEDDLASAFPGIVRYARDAFEGLRLTEPLVAVARGADQEEVGLPALRKRRHNVVKVTETAVEDLPERSDVATDNEVPVPPFWGTRVVKGIQLADYAAFLDERATFMGQWGLKPGRGTEGNAGATYEQLVETEGRPRLAQWLDTIRTDQIMDPTVVYGYFPVWSEGDDIVVAHHGPGLAGIGAPDGGSGGEPGTERLRFTFPRQKRDRHLCLADFVRPKSWVEETGRYDVLPIQLATVGDPVSAYTAKLFAENKYREYMELHGLSVQLTEALAEFWHSRVRSELGFGDEDPEDVEGMFKLEYRGARMSLGYPACPDMEDRTKVVELLRPERVGVTLSDELQLHPEQSTDAFVLHHPEAKYFSVPGPT0008135_1782DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008135-metH-K00548NANA
AK018_048123285hypothetical proteinATGTCCCAGTTCGAGGACCCTTTCGAGGGCGTGGTTGTTGTTGAGGTCCCATTCTATGGTCGGTCGCGGCTAGTACTCCAGGGCCTGGCGCAAGACAGCGGTCTGATGGCAGGCCGGGTTCTGAAAGCCATATTTGCACGCGATCAGTCCAACTTTCCGCAGGGCTTCCTTTTGCGTGCACGTGCTCTCGCGACGTTCCTACTGGACCTAAGCGATGCGATTTGTCGGCGCGCAGGACTCCCCGCAGGGACCGTGCCCGATGGTGACGCTGGATCGGTGCACGTGCCGGGTGCGGCTGAAGTTGCTCGACGGTCGGCGCACGTCCAGTTTTCCGCCGCAGAACTCTTCTCGGGCATGGTGCCCGAGGCCATCGACTACCTGACGAGCCGCCTTGTCCGGCAGCAGGGGCAGGGCGGCTGGGAAGACGTACCCGTGAGCGAAGCGCTATTGGCCCGGCCGCTCGTGCGGTCCGGGGACACGATCACCGTCGCGGCGCCCGGCGACCTCGCGACCTGCCTGCGGCATTTGCTCATTGTTGAGGCCATCGAGTGGAACTGCGCGGAGCCACTCGCAGACAGCATCGCAGATCAGGCGGTTGATGAGACCCTCCGCGCGGTCGGTGGTCTCACGGATGACGGTCTTGAGGTCGTAGAGCGGAACGACGGGATCGTTGAGTTCCGAGGGGTCTTCGACCATAACAAGGTGTTGAGCGCCATCGTTCTTTGCGACGGGCTCGATGGCTACGATCCTGAAATGATGTTGGGGAGCTGGGGTGAGTTCGACGCTATTTTCAGCGTGACCAGGGAGGCGTCGGAGAATCAGAGTGTTGCCTCAGATCTGCAGTTGGTAATCACATATGGGATCGGCCGAGACTCGGTCTTCGGCGTCCCGGCGGCGGAGCAAACGCCCACGCTTATCGGGGACCTACGCGACTTCGAGGTCATGACGGGTCTGGCTAGAACTCACAGACTGTCGCTATGGTACTTCGCAAGGGCACTCCAGCGACTCGAGGCGAGCACGCGTGTGATGCACTTCTCTACAATCGACTTATTCCAGGTCTACCGAGAGCACGACAACTCCTTCTACTTGTCCGATGGGCCCCCTGCCACATTCCTAACCGTCGAACCGGGGGCCGGCCAGGAGTCCCGCGTCGAGTTCCACCAGCGGTGGGGCGCCCGCTACCGGTTGGTCCCTGACATCAACGGCCTACTCGAGTTCCGACCGCTACACGGCACTCAGACCTCCCCGATACTTGAGGCATGGTACTCGCCGGTGCCGATATGCATCGTCGAACGACCTAGCGGTGCGATAGAGGTAACGGCGTCTGCGTCTGCCACCGACCGGACGTTCGTCGAGGCTGTCGCGTACTGGATGTGGCAGATCGCCGATGGCGTTCCGGAACTCTTTCCCGAGGCTTCGCTAGACGTAGGCCTCAAGATCGTGGAGGAGTCGCGAGCTGGAGTATCGGCGAAGTTGGATGGCTCCCACCTGGCCGTAACGATAGCTCCTCCCAGTGTTGACGAGGAAGTGCCCCTTGGGGGCAACGGCTTCGATCGCTTGCTGGTGAAGGCGATGATCGAAGCGCTGGACCCGGGCGGGGACGTGAAGGCTGCCGTCGACCGAGTCGCGCCAGCGGGTCCCAAATCGATGCTTCACATGCTGAACTCGGCGCGAGACGTGTTGCTATGGCCCGGACACTTGGGGCCGGCGACAAGGGTCGATGGGAGCGTCGTGGCCGAACTCCTCGACTCGCTCGGAGCTCACCTCACAGACCGCTGTGGGCACACTGTCGGCCCAATCCCGAGCGACCGGCGGACGTCGGTCCTCAATGACGAGGTCGTAAGTTGGTATAAAGAGCGTCTCGCCGAGGAGTTCTTAAACCTTCGTTCCGACGGGTTAGTAAGTGGGCTGGTCGAACATCACGAGGCTCTTATCCGCGAGACGGCCCTGGAGGAAAAGATCCTGCCCTCGCGCGTCGCGTGCTTCGGCACGGGTGCGGCCGAGGTGAAGAAGATCACTCAGCACCAGGCAGCGTCGACGACATCGATGCTGGCAAGTCGGTTCTTGATCGAGTACGCGCAGAAGGTGGGAACGAGAGGTGACATGGTGCTGACCCAATCCACCTACGAGCGCCTCCTGGCTGTTGCCTCGGAGATCATCAACAAGGGGATGTTGTCGGACTCAATCCGGTTCGGCTTGTCGAGCGCCAAGCTCAGTGTTCTCGGCTCTGGAAGGCTGGGTATCAACCAGGAAGGTGACGACTACAGTCGCGCTCTCGGCGCGTATGCACATGGCAACTCGGAACGAGTCCTCGCGCGCGCACTTTCAGAAGATTCCGATGAATTCACCGTTGCCGGTCCGTCCGCCGAGGAGGCGGATGCCCTCGCCGAGGAGGAGTTCGGCTTCACCTATTCACAGTTGGCCGCGACCTGCGTTGGTTTGGTCGATATTGCGCAGGACAGTGGAGCCGTGGATGTCTTCGATCTCGGAAGGGAAGAGCTCCTCGCCAGGTTGGCGCCTCGAAATGGACAGCCCCCGCAGGTCTGCGCCCGCATCATCGATGAGCTGACGCTCGACCCCGGCAACGAGGAGCCACACGACTTCTGGGACCTTCAGAGCGTGGCGCCATGGCGATTCGGTCGTCCGGAGTCCTACCTGCGGCGCCCGCTCCTCGCAGACCTAGAGGGATCACGGCTTCGTGGCGGCGTTCGTGCTGTGTGGTTCGCCCCACAGGCTTGGCTCGTCCACATGCGATCAGGACGCCTACAGGGTCGGTCGACCGCGATGCGCCGTGCAATGGCGCGGCTGCGCGACGAGAAGGGTGCGGGCTTCGAGGAGTTCGTTGTGGAGAGACTCGAGGCTCTCGGCCTGGAGCAGGTCATGCGAGGAGTGCGTCAGATCGCTGGCCTGAATCTGCGGAGTATTGACGGCGAGGACCTCGGCGACATAGACATTGTCGCTGTCGACTCAACCCGGAAACGAGTGCTCCTGCTAGAGCTCAAGAACCTCGAGGTCGCCCGCACTCCTGCGGAGCTCGACCGCGAGGTCCGAGCCGTCCTGTATGGTCCGAAGTCGGCCGTCTCGCGTCTTGGGAAACGGCTCTCGGTTCTTGCACCCCGGTGCGGCGACGTGCTGGCTGAGCGCGGCGTCCGAGATCCTCGAGGCTGGAAATTGGTGCCGGTGGTCGTCGTCAACGAGCCCTTGATGTCGGGCTCACTGAATGACGGTGGCGTCCGAGTTCTCCAAGTCTCAAGCCTCTACAGATTGGTTCAAGACGTCATATAGMSQFEDPFEGVVVVEVPFYGRSRLVLQGLAQDSGLMAGRVLKAIFARDQSNFPQGFLLRARALATFLLDLSDAICRRAGLPAGTVPDGDAGSVHVPGAAEVARRSAHVQFSAAELFSGMVPEAIDYLTSRLVRQQGQGGWEDVPVSEALLARPLVRSGDTITVAAPGDLATCLRHLLIVEAIEWNCAEPLADSIADQAVDETLRAVGGLTDDGLEVVERNDGIVEFRGVFDHNKVLSAIVLCDGLDGYDPEMMLGSWGEFDAIFSVTREASENQSVASDLQLVITYGIGRDSVFGVPAAEQTPTLIGDLRDFEVMTGLARTHRLSLWYFARALQRLEASTRVMHFSTIDLFQVYREHDNSFYLSDGPPATFLTVEPGAGQESRVEFHQRWGARYRLVPDINGLLEFRPLHGTQTSPILEAWYSPVPICIVERPSGAIEVTASASATDRTFVEAVAYWMWQIADGVPELFPEASLDVGLKIVEESRAGVSAKLDGSHLAVTIAPPSVDEEVPLGGNGFDRLLVKAMIEALDPGGDVKAAVDRVAPAGPKSMLHMLNSARDVLLWPGHLGPATRVDGSVVAELLDSLGAHLTDRCGHTVGPIPSDRRTSVLNDEVVSWYKERLAEEFLNLRSDGLVSGLVEHHEALIRETALEEKILPSRVACFGTGAAEVKKITQHQAASTTSMLASRFLIEYAQKVGTRGDMVLTQSTYERLLAVASEIINKGMLSDSIRFGLSSAKLSVLGSGRLGINQEGDDYSRALGAYAHGNSERVLARALSEDSDEFTVAGPSAEEADALAEEEFGFTYSQLAATCVGLVDIAQDSGAVDVFDLGREELLARLAPRNGQPPQVCARIIDELTLDPGNEEPHDFWDLQSVAPWRFGRPESYLRRPLLADLEGSRLRGGVRAVWFAPQAWLVHMRSGRLQGRSTAMRRAMARLRDEKGAGFEEFVVERLEALGLEQVMRGVRQIAGLNLRSIDGEDLGDIDIVAVDSTRKRVLLLELKNLEVARTPAELDREVRAVLYGPKSAVSRLGKRLSVLAPRCGDVLAERGVRDPRGWKLVPVVVVNEPLMSGSLNDGGVRVLQVSSLYRLVQDVINANANANANA
AK018_04813210hypothetical proteinGTGAACTCCGCCCACTCCCGGGTGGAACTGTCCTGGGACGTCGAGCGGTCGGCGGTGCTCAGCGGCGTCCAGCGGGAGCGCATCGTCGCGCGGCTCGGTCGTCGGCTGACCGACGGCGTCCTCACGGTGACCGCGTCCGAGAACCGCGAGCAACGGCGCAACCGTGGAGATTGCCGGCTCTTCGCCGATCCGGTGGGGATCAGGGCGTGAMNSAHSRVELSWDVERSAVLSGVQRERIVARLGRRLTDGVLTVTASENREQRRNRGDCRLFADPVGIRANANANANANA
AK018_048141371pchA_2COG1169Salicylate biosynthesis isochorismate synthaseATGTCCGCCACGCCCTACCCGGCGCCGGTCCCGCCGTCGGGCGCGTCCGCCGGCACCCCCGCTGCAGCACCCGAGCCCCCGCCGCTCGTGGTCCGCACCACCCGCCTGGACTCGTTGCCCGGCGACCTGACCGCCCTGGTCGACCTCCTGCCCGACGAGCGCCCCCTGACCTGGGTGCGCCGCGGCGACGGGATCGTCGGCTGGGGGGAGGCCCTCCGCCTGGACACGTACGGTCCGGGGCGGTTCGCCGACGCGGAGGCGGCCTGGCGCGCCACGCTGGCCCGCGCCGTCGTCCGCGACGAGGTGGGGCTGCCCGGCAGCGGCCCCGTCGCCTTCGGCACGTTCGCGTTCGACGACGGCGGTACCGGCGAGGCCTTCGACGGTTCCAGCCCGCAGGGCTCCCTCGTCGTGCCGCGCGTGGTCGTCGGCCGACGCGGGGACGTCGCCTGGATGACCACCATCGCCGTCGACGGCACGCTCGAGCCCCCGGGCGACGCCGGCCTGGCGGCCACCGAGCGCACGCCGGTGCACGACCCCGGCCGGGTCACGCTGACCGACGGCGCGGTCGGTGCCCGGGACTGGCCGGCCGTCGTCGCCGAGGGCGTGGCCCGCATCCAGGCGGGCGAGCTGGAGAAGGTGGTGCTGGCCCGCGACGTCGTCGCCACCGCCGAGCGGCCCGTCGACCCGCGCTGGCTGCTGCGCCGTCTGGCCGCGCGCTACGCGTCGTGCTGGACCTTCTCGGTGGCCGGGATGATCGGGGCCACGCCGGAGCTCCTGGTGCGCAGCGAGAAGGGTCTGGTGACCTCGCGCGTGCTGGCCGGCACCATCCGCCGCGAGCCCGGGATGAGCGACGACGACGCGCTGCTGCACGCGGCGCACCTGGCCCGCTCGTCGAAGGACCTGGAGGAGCACGAGTTCGCGGTGGCCTCGGTCGCGCGGTCGCTGGCCCCGTTCTGCACGTCGATGAACGTCCCGGACGCGCCGTTCGTGCTGCACCTGCCGAACGTCATGCACCTGGCCTCCGACGTCACGGCGGTGCTGGACCCCGCCACGCGGGCGAGCTCGCTGTCGCTCGCCGCGGCGCTGCACCCCTCGGCGGCCGTGTGCGGCACCCCGACCGTGGCGGCGCGCGACCTCATCCGCGAGATCGAGGGGATGGACCGCTCGCGGTACGCGGGCCCGGTCGGCTGGGTCGGCGCGGACGGCGACGGCGAGTGGGGCATCGCGCTGCGGTCCGCCGAGCTCGCCGACGACCCGCGCCACCTGCGGCTGTTCGCCGGGTGCGGGATCGTCGCGGCCTCGGACCCGCAGGCCGAGCTCGCCGAGTCGGAGGCCAAGCTCGTGCCCATGCGGTGGGCGCTCGGCGTCTGAMSATPYPAPVPPSGASAGTPAAAPEPPPLVVRTTRLDSLPGDLTALVDLLPDERPLTWVRRGDGIVGWGEALRLDTYGPGRFADAEAAWRATLARAVVRDEVGLPGSGPVAFGTFAFDDGGTGEAFDGSSPQGSLVVPRVVVGRRGDVAWMTTIAVDGTLEPPGDAGLAATERTPVHDPGRVTLTDGAVGARDWPAVVAEGVARIQAGELEKVVLARDVVATAERPVDPRWLLRRLAARYASCWTFSVAGMIGATPELLVRSEKGLVTSRVLAGTIRREPGMSDDDALLHAAHLARSSKDLEEHEFAVASVARSLAPFCTSMNVPDAPFVLHLPNVMHLASDVTAVLDPATRASSLSLAAALHPSAAVCGTPTVAARDLIREIEGMDRSRYAGPVGWVGADGDGEWGIALRSAELADDPRHLRLFAGCGIVAASDPQAELAESEAKLVPMRWALGVPGPT0009360_485DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009360-menF-K02552NANA
AK018_04815699menG_2COG2226Demethylmenaquinone methyltransferaseATGTCGCGCGCCAGCCTGGAGAAGAAGCCCGTCGAGGTCGCCTCGATGTTCGACGGGATCGCCGAGCGCTACGACCTGACCAACGACATCGTCTCCCTCGGCCAGGACCGTGCCTGGCGCCGGGCGACGGTGGCCGCTGTCGGGGCGGGGCCGGGGGAGCGGGTGCTGGATCTCGCCGCCGGGACGGGGACGTCGAGCGAGCCGTTCGCGAACGCGGGGGCGACGGTCGTCCCGTCGGACTTCTCGATGGGGATGCTGCAGGTCGGCAAGGCCCGTCGGGCCGATCTGCCGTTCGTGGCCGGTGACGCCACGCGGCTGCCGTTCGCCGACGCCGCGTTCGACGCCGTGACCATCAGCTTCGGGCTGCGCAACGTGGTGGACACCTCGGCCGCGCTGCGCGAGATGCTGCGGGTGACCCGGCCCGGCGGCCGGGTGGTGATCTGCGAGTTCTCCCACCCCACGTGGGCGCCGTTCCGGCAGGTCTACCTCGAGTACCTGATGCGGGCGCTGCCGCCCGTGGCCGGGCTGGTCACGCGCGACCAGGGCTCCTACGAGTACCTGGCCGAGTCGATCCGGGCCTGGCCCGACCAGGAGGGTCTCGGGCGACTCATGCTCGGTGCGGGATGGGAGCGGGTCGGCTACCGCAACCTGACCGGCGGCATCGTGGCGCTGCACCGCGGGACCCGCCCGGCCGCCTGAMSRASLEKKPVEVASMFDGIAERYDLTNDIVSLGQDRAWRRATVAAVGAGPGERVLDLAAGTGTSSEPFANAGATVVPSDFSMGMLQVGKARRADLPFVAGDATRLPFADAAFDAVTISFGLRNVVDTSAALREMLRVTRPGGRVVICEFSHPTWAPFRQVYLEYLMRALPPVAGLVTRDQGSYEYLAESIRAWPDQEGLGRLMLGAGWERVGYRNLTGGIVALHRGTRPAAPGPT0009535_3419DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009535-ubiE-K03183NANA
AK018_04816171hypothetical proteinATGAAGGCCGTGACCGCGCTCGCCGTCGGCATCGCACTGGGGTACTACCTCGGCACCGAGAAGGGCCGCGAGCAGATCGACCAGGCGAAGAAGCTCGCCGTGGACACGTGGAACGACCCCCGCGTGCAGGAGAAGGTCAGCGAGGTGCAGGAGAAGGTCGCCAAGAACTGAMKAVTALAVGIALGYYLGTEKGREQIDQAKKLAVDTWNDPRVQEKVSEVQEKVAKNPGPT0015027_261DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0015027-ytxH-NANANA
AK018_048171314menJ_2COG0644Menaquinone reductaseGTGCGAGCGGTCGATCGTGACGACGCCGACGTCATCGTCGTCGGTGCCGGTCCCGCCGGGGCCTCGGCCGCGCACTGGTGCGCGACCGCCGGGCTCGACGTGCTGGTCCTCGAGAAGTCCGCCTTCCCCCGCGACAAGATCTGCGGCGACGGGCTGACGCCCCGCGCGGTCGCCGAGCTCGCCCGCATGGGTGTCGACACCCGCCCCGAGGACGGCTGGATCCGCAACGACGGGCTGCGGGTCGTCGCCGGCGGCCGCTCCTGGGAGCTGGCCTGGCCCGAGCTGACGACCTACCCCGGCTACGGCCTCGCCCGGTCGCGCACGACGCTCGACCACCTCCTCGTCCAGCACGCCCAGGCCTCGGGCGCCAAGCTCGCCGAGCGCACCAAGGTCACCGGCCCGCTCACCGACGAGCGCACCGGCCGGGTCGTGGGCGTCCACGCCCAACCGCTGGACGCCCGCGGGCGGGCCGACGGCGCGCCGCGCACGTTCCGGGCACCGGTCGTGGTGGCCGCCGACGGCGTCTCCTCCCGGTTCGCGACGGCGCTCGGCCTGACGCGCCGTGACGACCGGCCGATGGGCACCGCCGTGCGCACCTACTACCGCACCGAGGGCACACCCCGGCACGCGGACGCCTTCATGGAGTCGCACCTGGAGCTGTGGGACGGCACCCCGGGGCAGTCGAACCTGCTGCCCGGCTACGGCTGGATCTTCGCCCTCGGCGACGGCACCGCCAACGTCGGGCTCGGGTCGGTCGCCTCGACCCCGGCTCGCCAGTCCGCCCAGGGCCACGACTACCGGGTCATGATGAAGGCCTGGACGGCCAACACCCCGCCCGAGTGGGGGTTCACCCCCGAGAACCAGATCGGGCCCGTCCGGGGCGCCGCACTGCCGATGGGTTTCAACCGCAGCCCGATGTACCGCGACGGCACCGTGCTGGTCGGGGACTCCGCCGGGATGGTCAGCCCGTTCAACGGCGAGGGCATCGCCTACGCGCTGCAGGCCGGCCGCGTCGCCGCCGACGCGATCGCCCAGGCCCGCACCCGGCTGACCGACGACGCCCGCGAGCGCACCCTGGCCACCTACACCGACCGGATGCGTGCCGACCTCGGCGGCTACTACACGTTGGGCCGCTGGTTCGTGCGGCTCATCGAGCACCCCGCGGTGATGCGGGTGTGCGTGAAGTACGGGCTGCCGCAGCCGGTGGTCATGCAGTTCGTGCTCAAGCTGCTGTCCGACTGCTACGAGCCCCGCGGCGGCGACTGGGTCGACCGGGTCATCGCGGGGCTGACGAAGGTGGTTCCGAACGCATGAMRAVDRDDADVIVVGAGPAGASAAHWCATAGLDVLVLEKSAFPRDKICGDGLTPRAVAELARMGVDTRPEDGWIRNDGLRVVAGGRSWELAWPELTTYPGYGLARSRTTLDHLLVQHAQASGAKLAERTKVTGPLTDERTGRVVGVHAQPLDARGRADGAPRTFRAPVVVAADGVSSRFATALGLTRRDDRPMGTAVRTYYRTEGTPRHADAFMESHLELWDGTPGQSNLLPGYGWIFALGDGTANVGLGSVASTPARQSAQGHDYRVMMKAWTANTPPEWGFTPENQIGPVRGAALPMGFNRSPMYRDGTVLVGDSAGMVSPFNGEGIAYALQAGRVAADAIAQARTRLTDDARERTLATYTDRMRADLGGYYTLGRWFVRLIEHPAVMRVCVKYGLPQPVVMQFVLKLLSDCYEPRGGDWVDRVIAGLTKVVPNANANANANANA
AK018_04818363nuoA_2COG0838NADH-quinone oxidoreductase subunit AATGAGCAACCCGTACGTCCCGGTGCTGGTCCTCATGGGGATCGCCGCCGTGCTGGCCCTGGGCGGGGTCGGGGCGAGCGCCGTCATCGGCCCGAAGCGGTACAACCGCGCGAAGCTCGACGCCTACGAGTGCGGCATCGAGCCCACCCCGCACGCCACCGGTGGCGGCAGGCTCCCGATCAAGTACTACCTGGTGGCGATGACGTTCATCGTCTTCGACATCGAGGTCGTCTTCCTCTACCCGTGGGCGGTCGACTTCGCGGTGCTGGCCGGGTTCGGGTTCGCGGCGATCCTCGTGTTCCTGGCCCTCATCACCGTGCCGTTCGTCTACGAGTGGCGGCGCGGCGGGTTCGACTGGGTCTGAMSNPYVPVLVLMGIAAVLALGGVGASAVIGPKRYNRAKLDAYECGIEPTPHATGGGRLPIKYYLVAMTFIVFDIEVVFLYPWAVDFAVLAGFGFAAILVFLALITVPFVYEWRRGGFDWVPGPT0026780_2164DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026780-nuoA-K00330NANA
AK018_04819552nuoB_2COG0377NADH-quinone oxidoreductase subunit BATGGGTCTGGAGGAGTCCCCCTCGGGGTTCCTGCTGACGACGATCGAGGACCTCGCCGGCTACCTGCGCAAGGCGTCGGTGTGGCCGGTGACGTTCGGCCTGGCGTGCTGCGCCATCGAGATGATGGCGGCCGGCGCCTCGCGGTTCGACCTGTCACGGTTCGGCATGGAGGTCTTCCGGGCCTCGCCGCGCCAGGCGGACCTGATGATCGTGGCAGGTCGGGTCAGTCAGAAGATGGCTCCCGTCGTGCGGCAGGTCTACGACCAGATGAGCGAGCCCAAGTGGGTGCTCTCGATGGGCGTGTGCGCCTCCAGCGGCGGCATGTTCAACAACTACGCGATCGTCCAGGGCGTCGACCACGTGGTACCCGTCGACATCTACCTGCCGGGCTGCCCGCCGCGCCCGGAGATGCTCATCAACGCGATCCTGGCGCTGCACCAGCAGATCCTGGACGAGCCGATGGGCGTCAACCGTGTCGAGGCGGCCAAGGCCGCCGAGGCTGCGGCCCTCGAGGCGACGCCGACCTCCCAGATGCCGGGACTGCTGCGATGAMGLEESPSGFLLTTIEDLAGYLRKASVWPVTFGLACCAIEMMAAGASRFDLSRFGMEVFRASPRQADLMIVAGRVSQKMAPVVRQVYDQMSEPKWVLSMGVCASSGGMFNNYAIVQGVDHVVPVDIYLPGCPPRPEMLINAILALHQQILDEPMGVNRVEAAKAAEAAALEATPTSQMPGLLRPGPT0026785_1691DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026785-nuoB-K00331NANA
AK018_04820747nuoC_2COG0852NADH-quinone oxidoreductase subunit CATGAGCGAGCGCTCCGGCGAGGTCGAGCGCCGGCAGCAGGGGCCCACGGCCGAGGTCGTGCGCGAGCGCACCGGCATGTTCGGGGTGCACGGCTCCGGCGACACCTCCGGCTACGGCGGACTGACCCGCACGGTGACGATGCCGGCCGCGGCCTCGCGCCCCTACGGGTCCTGGTTCGACGAGGCGGTGGACGTCCTGGCCGAGGTGCTGGGGGACGCCGGCGTGGCCTTCGCCGACGCGGTCGAGCGGGTGGTGATCACCGACCCGCGCCGCCCGGCCGAGGGCGAGGGGCCGAGCCGCGACGCCGAGCTGACGCTGTACGTCGCCCGCGAGCACCTGCTCGCCGTGTGCCGGGCCCTGCGCGACGACCAGGACCTGCGCTTCGAGCTGTCCCTGGGCGTCTCGGGGGTGCACTACCCGGACGACGTCGGTCGTGAGCTGCACGCCGTCTACCACCTGACCTCCGTGACGCACGGCCGGCGTCTGCGTCTCGACGTCGCCTGCCCCGACGAGGACCCGCACGTCCCGTCCACGACGACGGTCTACCCGGCCAACGACTGGCACGAGCGCGAGACCTGGGACTTCTTCGGGATCGTCTTCGACGGCCACCCCGCGCTGGCGCGGATCGAGATGCCGGACGACTGGCCCGGCCACCCGCAGCGCAAGGACTACCCGCTCGGCGGCATCCCCGTGGAGTACAAGGGCGCCACGGTGCCACCGCCGAACCAGCGGAGGGAGTACTCATGAMSERSGEVERRQQGPTAEVVRERTGMFGVHGSGDTSGYGGLTRTVTMPAAASRPYGSWFDEAVDVLAEVLGDAGVAFADAVERVVITDPRRPAEGEGPSRDAELTLYVAREHLLAVCRALRDDQDLRFELSLGVSGVHYPDDVGRELHAVYHLTSVTHGRRLRLDVACPDEDPHVPSTTTVYPANDWHERETWDFFGIVFDGHPALARIEMPDDWPGHPQRKDYPLGGIPVEYKGATVPPPNQRREYSPGPT0026790_398DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026790-nuoC-K00332NANA
AK018_048211353nuoD_2COG0649NADH-quinone oxidoreductase subunit DATGACCGCGCCGGCACACGACGCGCCGCACGCGACCGGACCGGCCGCCGACGACTACGGGCCCGGCGTCGCCGGGTTCGAGGCCTCCGGCGGCGACTGGGACGAGATCGCGCGCGAGGCGATCGGCGAGGAACGCATCGTCGTCAACATGGGTCCCCAGCACCCGTCCACCCACGGCGTGCTGCGCCTGATGCTGGAGATCGACGGCGAGACGGTGACCGAGGCCCGCTGCGGCGTCGGCTACCTGCACACCGGCATCGAGAAGAACATGGAGTACCGCACCTGGACGCAGGGCACCACGTTCTGCACCCGGATGGACTACCTGGCGCCGCTGTACCAGGAGGCCGGGTACTGCCTGGGCACCGAGCGGCTGCTGGGCATCACCGACGACGTCCCGGAGCGCGCCAGCGTGATCCGGGTGCTGATGATGGAGCTCAACCGGGTCGCCTCCCACCTGGTCTGCCTGGGCACGGGCGGCAACGAGATGGGCGCCACCACGATCATGACGCTCGGGTTCACCGCGCGCGAGGAGATCCTGCGCCTCTTCGAGGCGGTGACGGGCCTGCGGATGAACCACGCGTTCATCCGTCCGGGCGGCGTCGCCCAGGACGTCCCCGAGGGGTTCACCGACCAGGTGCGCGACATGCTGCCCAGCCTGCGCAAGTACATCGGCATGCTCGGCGACCTGATGCTGGCCAACCCGATCTTCAAGTCCCGCCTGCAGGGCGTGGGCGTGCTGAACCTGTCCGGCTGCTTCGCCCTCGGGATCACCGGTCCGGTGCTGCGGTCCGCCGGGCACCCGTACGACGTGCGCAAGGCGTTCCCGTACAGCGGCTACGAGGACTACGACTTCGACGTCCCCACGGACACCGCCGCCGACTGCTACGCGCGGGTCGTGATCCGCATCGAGGAGTGCTACCAGTCGCTGCGCATCGTCGAGCAGTGCCTCGCGCGGCTGGACGACACCGTCGGCGCGCCGATCATGGTCGCGGACAAGAAGATCGCCTGGCCGGCCCAGCTGGCCGTCGGCTCCGACGGCCAGGGCAACTCCCTGGACCACATCCGCCAGATCATGGGCACCTCGATGGAGGCCCTCATCCACCACTTCAAGCTGGTGACCGAGGGCTTCGGGGTGCCGGCCGGACAGGCGTGGCAGACGGTCGAGCACCCGCGCGGCGAGCTCGGCGTGCACGTGGTGTCCGACGGCGGCACGCGGCCCTACCGGGCGCACTTCCGCGACCCGTCGTTCAACAACCTCCAGGCCGTGTCGGTGATGTGCGAGGGCGGCCAGGTGGCCGACGTCGTCGTCGCCGTCGCGTCCCTGGACCCGGTGCTGGGAGGGGTGGACCGATGAMTAPAHDAPHATGPAADDYGPGVAGFEASGGDWDEIAREAIGEERIVVNMGPQHPSTHGVLRLMLEIDGETVTEARCGVGYLHTGIEKNMEYRTWTQGTTFCTRMDYLAPLYQEAGYCLGTERLLGITDDVPERASVIRVLMMELNRVASHLVCLGTGGNEMGATTIMTLGFTAREEILRLFEAVTGLRMNHAFIRPGGVAQDVPEGFTDQVRDMLPSLRKYIGMLGDLMLANPIFKSRLQGVGVLNLSGCFALGITGPVLRSAGHPYDVRKAFPYSGYEDYDFDVPTDTAADCYARVVIRIEECYQSLRIVEQCLARLDDTVGAPIMVADKKIAWPAQLAVGSDGQGNSLDHIRQIMGTSMEALIHHFKLVTEGFGVPAGQAWQTVEHPRGELGVHVVSDGGTRPYRAHFRDPSFNNLQAVSVMCEGGQVADVVVAVASLDPVLGGVDRPGPT0026805_114DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026805-nuoD-K00333NANA
AK018_04822837hypothetical proteinATGACGGCCGAACCGGTGGGCGCACGTTCGCGCGCGGGATACGACGCCGAGACCCTGGCCGCGCTCGTGGCCGACGCCGAGGAGATCAAGGGGCGCTACCCGGACCCGCGGTCGGGGCTGCTGCCGCTGCTGCACCTGGTGCAGTCCGTCGAGGGCTACGTCAGCCGCGACGGGATCGTCTTCTGCGCCGAGCAGCTCGGGCTGACCGCCGCCGAGGTCTCCGCGGTGGCCACGTTCTACACCCAGTACAAGCGCCACCCCAACGGCGAGTACACGGTGGGGGTCTGCACCAACACGCTGTGCGCGGTCATGGGCGGGGACGCGATCTTCGACCGGCTGAGCCAGCACCTGGACGTCGGGCACGACGAGACCACCCCGGACGGCTCCGTCACGCTGGAGCGCGTCGAGTGCAACGCCGCCTGCGACTACGCCCCCGTGGTGATGGTCAACTGGGAGTTCTTCGACAACCAGACCCCGGAGTCCGCCACCGAGCTGGCCGACCGCCTGCGCGGCGGGGAGCAGGTCACCCCGACCCGGGGCGCCGACTCGGTCTGCTCGTTCAAGCAGATGAGCCGGGTCCTGGCCGGGTTCGACGACGGCCGCGCCGACGAGGGCGTCGGTGCCGGCGGGCCGACCCTCGAGGGGCTGCGCATCGCGCGCGAGCGCGGCTGGACCGCTCCGGGCGGCGAGCAGGCCGGGGCCCCCGGGACGCCGCGCGCCGAGGTGCCGCCCGAGACGGGCACCGGCCAGTCCAGCGCGGAGCGGAAACCGACCACGCCGTCGGACGACACCGGACCTGCCGGGCAGGCCGACGCGAAGGAGGGCGACGATGACTGAMTAEPVGARSRAGYDAETLAALVADAEEIKGRYPDPRSGLLPLLHLVQSVEGYVSRDGIVFCAEQLGLTAAEVSAVATFYTQYKRHPNGEYTVGVCTNTLCAVMGGDAIFDRLSQHLDVGHDETTPDGSVTLERVECNAACDYAPVVMVNWEFFDNQTPESATELADRLRGGEQVTPTRGADSVCSFKQMSRVLAGFDDGRADEGVGAGGPTLEGLRIARERGWTAPGGEQAGAPGTPRAEVPPETGTGQSSAERKPTTPSDDTGPAGQADAKEGDDDPGPT0026810_270DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026810-nuoE-K00334NANA
AK018_048231338nuoF_2COG1894NADH-quinone oxidoreductase subunit FATGACTGACCCGTTGACCCCGGTCCTGACCGACACCTGGGACGCGGAGAGCTCCTGGAAGCTCGCCACCTACGAGGCGGCGGGCGGCTACGCCGGGCTCCGGGCCGCGCTCGGCACCGACCCGGCGGACCTGGTCCAGCTCGTCAAGGACTCGGGCCTGCGCGGGCGCGGCGGCGCCGGGTTCCCCGCCGGGATGAAGTGGGGGTTCCTGCCCCCGCCCGACGGCGGCCCGCGCTACCTCGTGGTCAACGCCGACGAGTCCGAGCCGGGCACCTGCAAGGACATCCCGCTGATGATGGCCAGCCCGCAGCACCTGGTCGAAGGCGTGGCCATCACCAGCTACGCCATCGGGTGCCACCACGCGTTCATCTACGTGCGCGGCGAGGTGCTGCACGTCTACCGCCGGCTGCTCGCCGCCGTGCGGGAGGCCTACGAGGCCGGTCACCTGGGGACGAACATCCACGGCTCCGGCTTCGACCTCGAGGTCACCGTGCACGCCGGTGCCGGCGCCTACATCTGCGGCGAGGAGACCGCGCTGCTGGACTCGCTCGAGGGCCGTCGCGGTCAGCCGCGGCTCAAGCCGCCGTTCCCCGCCGTCGCGGGGCTGTACGCCCGGCCCACGGTCGTCAACAACGTGGAGTCCATCGCCTCCGTGCCCGGCATCGTCGCGTACGGCGCCGACTGGTTCTCCTCCATGGGCACCGAGAAGTCCACCGGGCACGGCCTGTTCTCGCTGTCCGGCCACGTGACCCGCCCCGGGCAGTTCGAGGCCCCGCTCGGCATCACGCTGCGCGAGCTGCTCGACCTGGCCGGCGGGGTCCGGGAGGGCCACGAGCTGAAGTTCTGGACCCCGGGCGGCTCCTCGACGCCGCTGTTCACCGCCGAGCACCTCGACGTCCCGCTCGACTACGAGTCCGTCGGCGCGGCCGGGTCGATGCTCGGTACCCGCGCGCTGCAGATCTTCGACGAGACGACCTGCGTCGTCCGCGCCGTCAGCCGGTGGACGGACTTCTACGCGCACGAGTCGTGCGGCAAGTGCACCCCGTGCCGCGAGGGCACCTACTGGCTCAAGCAGATCCTGCACCGCATCGAGGCCGGCGCGGGCGAGGCGGGAGACATCGACGTCCTGCTCGACCTGTGCGACAACATCCTCGGCCGGGCGTTCTGCGCGCTCGGCGACGGCGCGACGTCCCCGATCACCTCGTCCATCGAGTACTTCCGCGACGAGTACGAGGCGCACCTCGACGGGCGCGGGTGCCCGTTCGACCCGGCCCGGTCCACGCTGTTCGACGACACGCCCCAGGCGCCGCCGGCGCTCGCGGGTGCAGGAGGCCACTGAMTDPLTPVLTDTWDAESSWKLATYEAAGGYAGLRAALGTDPADLVQLVKDSGLRGRGGAGFPAGMKWGFLPPPDGGPRYLVVNADESEPGTCKDIPLMMASPQHLVEGVAITSYAIGCHHAFIYVRGEVLHVYRRLLAAVREAYEAGHLGTNIHGSGFDLEVTVHAGAGAYICGEETALLDSLEGRRGQPRLKPPFPAVAGLYARPTVVNNVESIASVPGIVAYGADWFSSMGTEKSTGHGLFSLSGHVTRPGQFEAPLGITLRELLDLAGGVREGHELKFWTPGGSSTPLFTAEHLDVPLDYESVGAAGSMLGTRALQIFDETTCVVRAVSRWTDFYAHESCGKCTPCREGTYWLKQILHRIEAGAGEAGDIDVLLDLCDNILGRAFCALGDGATSPITSSIEYFRDEYEAHLDGRGCPFDPARSTLFDDTPQAPPALAGAGGHPGPT0026815_1403DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026815-nuoF-K00335NANA
AK018_048242619nuoG_2COG1034NADH-quinone oxidoreductase subunit GATGACCGCCACCACAGGCACACCGACCGATGCCGCACCGGTGGAGACCGTGACCTGCACGATCGACGACGTCCAGGTCACCGTGCCCAAGGGCACGCTGGTGATCCGCGCCGCCGAGCAGGTCGGGATCGAGATCCCGCGGTTCTGCGACCACCCGCTGCTGGAGCCCGCGGGGGCGTGCCGGCAGTGCCTGGTCGAGGTCGAGATGCCGGACCGCGAGGGCAACCTGCGCCCGATGCCCAAGCCGCAGGCCTCGTGCACGATGACCGTGGTGCCGGGCATGGTGGTGCGCACCCAGCACACCTCCGCCGTGGCGGACAAGGCGCAGCAGGGGGTCATGGAGCTGCTGCTCATGAACCACCCGCTGGACTGCCCCGTCTGCGACAAGGGCGGCGAGTGCCCGCTGCAGAACCAGGCGATGAGCAACGGCCGGGCGGACTCGCGCTTCACCGACGTCAAGCGGACCTTCCCCAAGCCGATCCAGGTCTCCACCCAGATCCTGCTGGACCGTGAGCGCTGCGTGCTGTGCCAGCGGTGCACGCGGTTCAGCGAGGAGATCGCCGGGGACGTGTTCATCGACCTGCAGGAGCGCGGCGCCCACCAGCAGATCGGGCGGTTCGACGAGGACGTGCTCGACTTCGCCCCGCCGTGCGGCGGGCACCGGGACGCGCCCGCGGCGTCCGACGGCGTCCGGGCCGACGGTCCGGTGGACGTGCCGCAGGGGGTCGCCCTGCCGGACGCCTCGGGTCAGCCCTTCGCGTCGTACTTCTCCGGCAACACGGTCCAGATCTGCCCCGTGGGAGCGCTGACCGGGGCGCGGTACCGGTTCCGCGCGCGTCCGTTCGACCTGGTCTCCACCCCGAGCATCGGCGAGCACGACTCCTGCGGGTCCGCGATCCGCGTCGACCACCGCCGCGGCTCCGTGATGCGGCGGCTGGCGGGCGAGGACCCCGCGGTCAACGAGGAGTGGATCACCGACAAGGACCGCTTCGCCTTCACCTGGCAGAGCGCCCCGGACCGCATCACGACCCCGCTCGTGCGCGAGGACGGCGACCTGCGGCCGGCGTCCTGGGTCGAGGCCCTCGAGGTCGCCGCCCGTGGTCTGGCCGCCGCCCGCGACGACGGCGGGGTGGGGGTGCTGCCGGGCGGCCGGCTGACGGTGGAGGACGCCTTCGCCTGGTCGCGTTTCGCCCGCACCGTGCTGCGCACCGACGACATCGACCAGCGGGTCCGCGTGCACTCGGTCGAGGAGGCGGACTTCCTGGCCCACACGGTGGCGGGCTCCGGCGTCGGCGTCACGTTCGCCGACCTCGAGTCCGCGCCGGCCGTGCTGCTGGCGGGGCTGGAGGCCGAGGAGGAGGCCGGGGTCACGTTCCTGCGCCTGCGCAAGGGCGTGAAGCAGGGCACCCGCGTGTTCTCCGTGGCGCCGTTCGTCAGTCGCGGGCTCGCCCGGCTGGACGGCACGCTGCTGCCGGCCGCCCCGGGCACCGAGGCGGAGTGGCTCGGCGCCATGGCGCGGCAGGCGTCCGGCAGCACCAGCCGGGCCGACGTCGACGACGCCCGCGTGCCGGAGGCCGCCGAGGCGCTGGCGCAGCCGGGGGCCGTGCTGCTCGTCGGCGAGCGGCTGGCCGGCTCGCCCGGTGCGTACGCCGCCGTCCTCGAGCTGGCCCGCACCACCGGGGCCCGGCTGGCCTGGATCCCGCGCCGCGCCGGTGAGCGCGGCGGCGTGGAGGCCGGCCTGCTGCCGGGTCTGCTGCCCGGCGGACGTCCCCTGGAGGACGGGGCCGCCCGCGCGGAGGTCGCCGCCGCCTGGGAGGTCGACGTCGCGGACCTGCCCGACACCCGCGGCCTCGACACCGCCGGCATCCTGGACGCCCTCAGCGTGGGCCAGCTCGCCGGGGCGCTGGTCGGGGGCGTCGAGCTCGCCGACCTGCCCGACCCCGAGCACGCCCGTCGGGCGCTCGCCACGGCCGGGTTCGTCGTCTCGATGGAGGTGCGCCGCACCGAGGCCACCGAGCTGGCCGACGTCGTGCTGCCCGTCGCACCGCCCGTCGAGCGTGCCGGGTCGTACTGGAACTGGGAGGGCCGCGTGCGGGCCTTCGGCCAGGCGCTGGACTCCACGGCGCTGCCGGACCACCGGGTCCTGCACGAGCTCGCGAGCCTGTTCGACCGTGACCTGGGCCTGGCCGAGCCGGTGCGTGCGCACCGGGCGATCGCCGCGCTGTCCGCCTGGGGCGGGCCCCGGCCCGCGCCGCCGCAGCACACCACCGACGACCCGCCCGCCGTGCCGCCGGGGTCCGCGGTGCTGGCGAGCTGGCGCCTGCTGCTCGACGACGGCGCGATGCAGGACGGCGAGGAGTTCCTCGCCGGGACCGCCAAGACACCGGTGGCCCGGATGAGCGCCGCCACCGCGGCCGGGTTCGACGTCTTCGACGGCGACCAGGTCACGGTGGCGACCGAGCGCGGCGCGGTCACCGTGCCGGTGGCGATCACGGAGATGGTCGACCACGTGGTGTGGCTGCCCCTGGCCTCGCGCGGCTGCCGGGTGCACGACACCCTCGGCGTCTCCCCGGGCCGAACCGTCCGGGTCTCCCCGGCCGAGAAGGGAGTCCAGGCATGAMTATTGTPTDAAPVETVTCTIDDVQVTVPKGTLVIRAAEQVGIEIPRFCDHPLLEPAGACRQCLVEVEMPDREGNLRPMPKPQASCTMTVVPGMVVRTQHTSAVADKAQQGVMELLLMNHPLDCPVCDKGGECPLQNQAMSNGRADSRFTDVKRTFPKPIQVSTQILLDRERCVLCQRCTRFSEEIAGDVFIDLQERGAHQQIGRFDEDVLDFAPPCGGHRDAPAASDGVRADGPVDVPQGVALPDASGQPFASYFSGNTVQICPVGALTGARYRFRARPFDLVSTPSIGEHDSCGSAIRVDHRRGSVMRRLAGEDPAVNEEWITDKDRFAFTWQSAPDRITTPLVREDGDLRPASWVEALEVAARGLAAARDDGGVGVLPGGRLTVEDAFAWSRFARTVLRTDDIDQRVRVHSVEEADFLAHTVAGSGVGVTFADLESAPAVLLAGLEAEEEAGVTFLRLRKGVKQGTRVFSVAPFVSRGLARLDGTLLPAAPGTEAEWLGAMARQASGSTSRADVDDARVPEAAEALAQPGAVLLVGERLAGSPGAYAAVLELARTTGARLAWIPRRAGERGGVEAGLLPGLLPGGRPLEDGAARAEVAAAWEVDVADLPDTRGLDTAGILDALSVGQLAGALVGGVELADLPDPEHARRALATAGFVVSMEVRRTEATELADVVLPVAPPVERAGSYWNWEGRVRAFGQALDSTALPDHRVLHELASLFDRDLGLAEPVRAHRAIAALSAWGGPRPAPPQHTTDDPPAVPPGSAVLASWRLLLDDGAMQDGEEFLAGTAKTPVARMSAATAAGFDVFDGDQVTVATERGAVTVPVAITEMVDHVVWLPLASRGCRVHDTLGVSPGRTVRVSPAEKGVQAPGPT0026820_637DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026820-nuoG-K00336NANA
AK018_048251326nuoH_3COG1005NADH-quinone oxidoreductase subunit HATGATCCCCGGCGTCGCCGCCGACTTCAGCGCGGACACGATCTGGGTCTCGGTCGTCAAGGCCGTGCTCATCGTCGTCTTCCTGCTGACCAGCGTGCTGTTCGCGATCTGGTTCGAGCGCAAGCTCGTCGCCCGGATGCAGCTGCGCCCCGGACCGAACTGGCACGGCCCGTTCGGTCTGCTGCAGTCGCTCGCCGACGCGATGAAGCTGCTGCTCAAGGAGGACGTGACGGTCACGAACGCCGACCGGCGGGTCTACCTGCTCGCCCCGATGATCTCGGTGTTCTGCTCGCTGCTCGTGTTCGCCGTCATCCCGTTCGGCCCCTCGGTGACGATCCCGTTCACGGACTTCACCACCCCGGCCCAGCTCACCGACTTCCCGGTGGCGGTGCTGTACATCCTGGCCTGCGCCTCGATCGGCGTGTACGGCATCGTGCTCGGCGGCTGGTCGTCGGGCTCGACGTACCCGCTGCTCGGCTCGGTCCGGTCCACCGCCCAGGTCATCAGCTACGAGCTGGCGATGGGGCTGAGCCTGGTCAGCGTGTTCATCATGGCCGGGTCGATGTCGACCTCGTCCATCGTGGAGTCCCAGACGAGCCTGTGGTGGTTCATCCCGCTCGCACCGGCGTTCGTCATCTTCCTCATCTCGATGGTGGGGGAGACGAACCGGCTGCCGTTCGACCTGCCGGAGGCCGAGGGCGAGCTGGTCGGCGGGTACATGACCGAGTACTCCTCGATGAAGTTCGCCTGGTTCTTCCTGGCGGAGTACATCGCGATGCTCAACGTCTCGGCCGTGGCGACGACGCTGTTCCTGGGCGGCTGGCGCGCTCCGTGGCCGCTGTCCCTCGTGGGCGACGGGATGTTCAACACCGGCTGGTGGCCGCTGCTGTGGTTCCTGGCCAAGGTGTGGCTGCTGATGTTCGCCTTCGTGTGGGTGCGCGGCACGCTGCTGCGACTGCGCTACGACCAGTTCATGGTCTTCGGCTGGAAGGTCCTCATCCCGTTCGCGCTGGCCTGGGTGGCGATCCTGGGCACCTTCCAGTGGGCGGGGCTCGCCGGGGTCACCCAGACCCAGATGATCGTCGGGATCCTCGTGGCCCTCGCCGTCGTCATGGCGGTGCTGTGGCTGTGGCCCGAGCGGAGACCGGCGGACGACCCGACGGCGCAGGGCGACCAGCCGTTCGACGCCTTCGCCGGCGGCTACCCGGTCCCGCCCGTCCCCGGACAGAGCCTGCCGCCCTCGCCGCGGGCCCGGCGCACCGTGCCGCCCGCCGAGGACGTGGAGACCAGCACCGCGACCGCTGTCGACGACGAGGAGACGCGATGAMIPGVAADFSADTIWVSVVKAVLIVVFLLTSVLFAIWFERKLVARMQLRPGPNWHGPFGLLQSLADAMKLLLKEDVTVTNADRRVYLLAPMISVFCSLLVFAVIPFGPSVTIPFTDFTTPAQLTDFPVAVLYILACASIGVYGIVLGGWSSGSTYPLLGSVRSTAQVISYELAMGLSLVSVFIMAGSMSTSSIVESQTSLWWFIPLAPAFVIFLISMVGETNRLPFDLPEAEGELVGGYMTEYSSMKFAWFFLAEYIAMLNVSAVATTLFLGGWRAPWPLSLVGDGMFNTGWWPLLWFLAKVWLLMFAFVWVRGTLLRLRYDQFMVFGWKVLIPFALAWVAILGTFQWAGLAGVTQTQMIVGILVALAVVMAVLWLWPERRPADDPTAQGDQPFDAFAGGYPVPPVPGQSLPPSPRARRTVPPAEDVETSTATAVDDEETRPGPT0026825_121DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026825-nuoH-K00337NANA
AK018_04826783ndhI_2NAD(P)H-quinone oxidoreductase subunit I, chloroplasticATGAGCGACCAGCCCTACGAGCCGCTGCGGCCGAAGAAGGGACCTCTCGGGGAGCTGTTCGCTCCCGTGGCCGGCTTCGGCGTGACGTTCTCGTCGCTGTTCAAGCCGACCGTCACCGAGGAGTACCCCCGCAAGAAGACGCCGCCGCAGACCCGGTACCACGGCCGTCACCAGCTCAACCGGTACGCCGACGGGCTCGAGAAGTGCATCGGCTGCGAGCTGTGCGCCTGGGCCTGCCCCGCCGACGCGATCTACGTCGAGGGGGCGGACAACGCCGACGCCGTCGACGGCGCCCCCGAGGCGCACATGAGCCCCGGGGAACGCTACGGACGCGTCTACCAGATCAACTATCTGCGCTGCATCTTCTGCGGGCTGTGCATCGAGGCGTGCCCCACCCGGGCGCTGACCATGGGTAGCGACTACGAGCTGGCCGGGCCGTCCCGCGAGGGGATGATCTACGAGAAGCAGGACCTGCTGGCCCCGTTGGCCGAGGGGATGCTCTCCGCACCGCACCCGATGGCCGAGGGCACCACCGACACCGAGTACTACCGGGGCGAGATCACCGCACCCACCGCCGAGCAGGTCGACTGGGTGCGGGAGCACCGTCCGGACGACCCGACGCTGGACGCCGCGTCCGCCGTCGTGGCCGGGGACGCGCCGCCGCCGGTGCCCGACACGCACCACCTGCGTCCGGACCAGGACCGTGCCGAGGCGACCCGCGCCGCGGCGACGCAGTCCAACCTGGACCACCGTCCCGTGCAGACCGAGGAGGCACGCCCATGAMSDQPYEPLRPKKGPLGELFAPVAGFGVTFSSLFKPTVTEEYPRKKTPPQTRYHGRHQLNRYADGLEKCIGCELCAWACPADAIYVEGADNADAVDGAPEAHMSPGERYGRVYQINYLRCIFCGLCIEACPTRALTMGSDYELAGPSREGMIYEKQDLLAPLAEGMLSAPHPMAEGTTDTEYYRGEITAPTAEQVDWVREHRPDDPTLDAASAVVAGDAPPPVPDTHHLRPDQDRAEATRAAATQSNLDHRPVQTEEARPPGPT0026830_30DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026830-nuoI-K00338NANA
AK018_04827825hypothetical proteinATGACCGTCTCCGGCGGCGAGACCGTCCTGTTCTGGGTGCTGGCACCGCTCATGGTGATCGCGGCCGCCGGCCTGCTGGTCGTGCGCCGGGCCGTGCACGCCGCGGTGTGCGTCGTGTTCGTCATGATCTCCCTGGCGGTGCTCTACGTGGCCCAGGAGGCCCCGTTCCTCGGCGTGGTCCAGGTCGTGGTCTACACCGGCGCCGTGATGATGCTCTTCCTCTTCGTGCTGATGCTCGTGGGGGTGGACGCGGCCGACTCGCTGACCGAGACCATCCGTGGCCAGCGCTGGATCGGGCTGCTGCTCGGGGTGGGCCTGGCGTCCGTGCTGTGCGGGGTCATCGCCCAATCGACGTTCCCGCCGCCGCAGGGGCTGGCCGAGGCCAACGCGGTGACCAACCCCGTGGCGCTGGCCCGGGTCGTCATGGAGCACTACGTCGTGGCCATGGAGGTCGTCGGCATCCTGCTCGTCACCGCCGCGCTGGCCGGCCTGGTGCTCACGCACCGGCGCCGGATCGGCAACAAGCCCACCCAGCGGGCCCTGGCCGAGGCGAAGATCGCCGCGGTGCCCACCGGGCGGCACCTGAGCCCGTTGCCGGCACCCGGCGTCTACGCGCAGAACAACGCGATGGACACCCCGGCGCTCGACCACACGGGCCGCCCGCTGGAGCACTCCGTGCCGCGCGTGCTGCGCATCCGCGGCCAGCAGCGCGAGGCCGCCGAGCTGCTCACCGCCGAGCAGACGCTGGTCCACCGCGAGCTGGAGGGCCCCGACGACCCGGTGCCGAGCGTCGGACCGGACAGCAGCGAGGGGGAGACCCGCTGAMTVSGGETVLFWVLAPLMVIAAAGLLVVRRAVHAAVCVVFVMISLAVLYVAQEAPFLGVVQVVVYTGAVMMLFLFVLMLVGVDAADSLTETIRGQRWIGLLLGVGLASVLCGVIAQSTFPPPQGLAEANAVTNPVALARVVMEHYVVAMEVVGILLVTAALAGLVLTHRRRIGNKPTQRALAEAKIAAVPTGRHLSPLPAPGVYAQNNAMDTPALDHTGRPLEHSVPRVLRIRGQQREAAELLTAEQTLVHRELEGPDDPVPSVGPDSSEGETRPGPT0026835_329DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026835-nuoJ-K00339NANA
AK018_04828300COG0713NADH-quinone oxidoreductase subunit 11ATGGAGCTGACGAACTACCTCTACCTCGCCGTCGTCCTCTTCGCGCTCGGCGCGACGACGGTGCTGCTGCGGCGCAACACCATCGTGGTGTTCATGGGCATCGAGCTGATGCTCAACGCCACGAACCTCGCGCTGGTCACGTTCGCGCGGATGCACGGCGACATCACCGGACAGGTCCTGGCCTTCTTCGTCATGGTCGTCGCCGCCGCCGAGGTCGTGGTGGGCCTGGCGATCATCGTGACGATCTTCCGTGCCCGCCGGTCGGCCTCGGTCGACGACGTCAACCTGCTGAAGAGCTGAMELTNYLYLAVVLFALGATTVLLRRNTIVVFMGIELMLNATNLALVTFARMHGDITGQVLAFFVMVVAAAEVVVGLAIIVTIFRARRSASVDDVNLLKSPGPT0026840_2550DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026840-nuoK-K00340NANA
AK018_048291926nuoL_3COG1009NADH-quinone oxidoreductase subunit LATGACGACGCAGACGCTCTCCCTCGCGCCCTGGCTGGTCGCGGCCCCGCTGATCGGTGCCGCCCTGCTCCTCCTGGTCGGCCGGCGCAGCGACCGCTGGGGGCACTGGCTCGGGGTGCTCGCCTCGACGGCGACGTTCGTGATCGGCCTGGTGATCCTGCTCGACATGCTCGGCGTGGACGCCGAGCAGCGGGTGGCGACCTCCTCGGTCGGCACCTGGATCGACGCCGGGGCCTTCACGGTCGACCTCGGGTTCCAGCTCGACCCGCTGTCCATGACGTTCGTGATGCTGGTGTCGTTCGTCGGCACGCTCATCCACGTCTACTCCGTGGCCTACATGTCGCACGACCGCGACCGCCGCCGGTTCTTCGCGTACCTCAACCTGTTCGTCGCGGCGATGCTGCTGCTGGTGCTCGCGGACAGCTACCTGCTGCTCTTCGTCGGCTGGGAGGGTGTCGGTCTGGCCTCGTACCTGCTCATCGGGTTCTGGGACCACAAGCTGCCGAACGCCGTGGCCGGCAAGAAGGCGTTCCTGATGAACCGGGTCGGCGACATGGGGCTCATCGTGGCGATGATGCTCATGCTCGCCACGTTCGGGGCGCTGGACTTCGCCACCGTGCTCGGGTCGGCGGAGGCGGCCGACCAGGGCATCACGACGGCGATCGGGCTGATGCTGCTGCTGGCGGCGTGCGGCAAGTCCGCGCAGCTGCCGCTGCAGGCCTGGCTCGGGGACGCGATGGCCGGCCCGACGCCGGTGTCCGCGCTCATCCACGCCGCCACGATGGTCACCGCGGGCGTCTACCTGCTCGTGCGCTCCGGCCCGCTGCTCGAGGCGGCCCCCGACGCCCAGCTCGTCGTCGCCGTCGTCGGTGCGCTGACGCTGCTCTTCGGGGCGATCGTCGGTTGCGCCAAGGACGACATCAAGAAGGCGCTCGCCGCCTCGACGATGTCGCAGATCGGCTACATGATGCTGGCCGCCGGGCTCGGACCCGTCGGCTACGCGTTCGCGATCTTCCACCTGGTCACCCACGGCTTCTTCAAGGCCGGCCTCTTCCTCGGCGCCGGGTCGGTGATGCACGCGATGGACGACGACGTCGACATGCGCCGCTTCGGCCGGTTGTGGCGGGTGCTGCCGGTCACGGCGATCACGATGGGCCTGGGCTGGCTGGCCATCCTCGGCGTGCCGCCGTTCTCAGGCTTCTACTCCAAGGACAAGATCATCGAGACGGCGTTCGTCGGCGAAGGCTGGCAACCGTGGGTGTTCGGCGGTGCGGCGCTGCTCGGCGCGGGCATCACCGCGTACTACATGTCGCGGCTGTTCTTCATGACGTTCATGGGGCGCCGCCGCTGGTCGAGTGACCCGGGCCGTTCCGAGGACCGCGTCGAGCGGCATCCGCACGAGTCCCCGGCCCTGATGACGATCCCGATGATCGTGCTCGCGCTCGGGTCGGTCGGCCTGGGCTTCGCGCTGAACGCGGGCGACCGGTTCGTCCACTGGCTGGAGCCCGTGACCGGGCACGCCGAGCATCACGCGCCGGTCCTCCCGGTCCCGGTGATCATCACCCTCACGCTCCTGCTCGTCGTGCTGGGCGCGGTGCTGGCGTTCGTCCAGTACGCCATGCGTCCTGTGCCGACGACACCGCCTGCGGCACCGGCCCTCGTGCGTGCCGCCCGGGTGGACCTGCACCAGGACGACGTGAACGAGACGCTCGTGATGCGTCCGGGCCAGTACCTGACGCGGTCGATGGTGTTCGCCGACCGGACCGCCGTCGACGCCGGCTGGCTGGGTCTGGCCGCCGGCGTCGGACGGCTCGGGACCTGGTTGCGGGGCTGGCAGTCCGGGTACGCGCGGCAGTACGCCGCGATCACCCTGGGCGGGCTCGGGGTCATCGTGCTGGTGATCTGGTTCGTGGCGACGGTGAGCTGAMTTQTLSLAPWLVAAPLIGAALLLLVGRRSDRWGHWLGVLASTATFVIGLVILLDMLGVDAEQRVATSSVGTWIDAGAFTVDLGFQLDPLSMTFVMLVSFVGTLIHVYSVAYMSHDRDRRRFFAYLNLFVAAMLLLVLADSYLLLFVGWEGVGLASYLLIGFWDHKLPNAVAGKKAFLMNRVGDMGLIVAMMLMLATFGALDFATVLGSAEAADQGITTAIGLMLLLAACGKSAQLPLQAWLGDAMAGPTPVSALIHAATMVTAGVYLLVRSGPLLEAAPDAQLVVAVVGALTLLFGAIVGCAKDDIKKALAASTMSQIGYMMLAAGLGPVGYAFAIFHLVTHGFFKAGLFLGAGSVMHAMDDDVDMRRFGRLWRVLPVTAITMGLGWLAILGVPPFSGFYSKDKIIETAFVGEGWQPWVFGGAALLGAGITAYYMSRLFFMTFMGRRRWSSDPGRSEDRVERHPHESPALMTIPMIVLALGSVGLGFALNAGDRFVHWLEPVTGHAEHHAPVLPVPVIITLTLLLVVLGAVLAFVQYAMRPVPTTPPAAPALVRAARVDLHQDDVNETLVMRPGQYLTRSMVFADRTAVDAGWLGLAAGVGRLGTWLRGWQSGYARQYAAITLGGLGVIVLVIWFVATVSPGPT0026845_1883DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026845-nuoL-K00341NANA
AK018_048301614nuoM_2COG1008NADH-quinone oxidoreductase subunit MATGACGATGTCGACATTTCCCTGGCTGACGGCGCTGGTCGTCTGGCCGCTGGTGGCGGCGCTGGCGACGGCGACGACCGGCGTCGGCCGCGGCCGTCCGTCCGGCGGTGCGGCCACCGGTGGCGGGGTGTTCAGCGCCGGGGCCGCCCGAACGGTAGCGCTCGTGGGTGCGCTGGTGGAGGTCGCCCTGCTGGTCGGGGCGTTCGCCGCCTTCGACACCGGTGCGGCGGGCACCCACCAGCTCACCGAGACCTACGCCTGGATCCCGGCGCTCGGGGCGAGCTACGCCGTCGGCGTCGACGGGGTGGCCCTGCTGCTCGTCGCGCTGTCGGTGGGACTGGTGCCGCTGGTGATCCTCGCGGCGTGGCACGAGCAGGGTGGTGACGCGGTGCGGCTGCGCCGCTACCTGGCCACGGTGCTGGTGCTGCTCAGCTTCATGGTGCTGGTGTTCACCGCGCGGGACGTCTTCCTGTTCTACGTGGTCTTCGAGGCCATGCTCATCCCCGCCTACTTCCTCATCGGCGGGTTCGGGCAGGGCGCCCAGCGCCGGTACGCCGCGGTGAAGTTCCTCATGTTCTCCCTCGGCGGGGGACTGATCATGCTGGCCGCCGTCGTCGCGCTCTACCTGCAGGTGCCGGTGGACCCCGCCACGGGGCTGCGTCCCGAGGACGCCTTCCTCACCGACAACCTCACCGGGCTGGCGCTCGACCCCACGGCCGAGCGGTTGATGTTCGCCGCGTTCTTCCTGGCGTTCGCCATCAAGGCGCCGATGTTCCCGGTGCACACCTGGCTGCCGGACGTGACCCAGAACGCCACCCCGGGGACCTCCACGCTGCTGATCTGCGTCCTGGACAAGGTCGGCACGTTCGGCATGCTCACGCTGTGCCTGCCGCTGTTCCCGGAGGCGAGCCGGTGGGCCGCGCCGTTCGTCATCGTGCTCGCGGTGATCTCGATCCTGTACGGCGCGGTGCTGGCCATCGGTCAGTCGGACGTGCTGCGACTCATCGGCTACACGTCGGTGTCCCACTTCGGGTTCATCATCCTGGGCATCTTCACCTTCACCTCGGTGGGGGTCTCCGGGTCGAGCTTCATGATGCTCAACCACGGCATCTCCACCGGCGCGTTGTTCCTGATCGCCGGGTTCGCCATCGCCCGGCACCCGCGACGCAGCCAGCAGGTCGCCGACTACGGCGGGATGCGCACCGTCGCACCCGTGCTGGGCGGCACGTTCCTGGTGGCCGGTCTGTCCGCCCTCGCGCTGCCGGGTCTGGCGACCTTCGTCTCGGAGATCATGGTCTTCCTGGGGGCCTACGGCCGGTGGCCCGCCGCGGTCATCGTCGCGGTGCCCGCCGTCGTGCTGGCCGCGACCTACGTGCTGCTGACCTATCAGCGCATGTTCACCGGCCCCGTGGGGGCGGAGATCGTCGGCGCGAAGGACCTGGGCGGTCGCGAGAAGACGGTGGCCGGGGTCCTGGTGGCCGCGCTGGTCGTGCTGGGTCTGATGCCCGGCCCGGCGCTCGACTACGTCCGTGAACCCGCGTCGGTCTCCGTCGAGCTCGTCGGCGCCACCGATCCGGAACCCGTGCTCGGCGCGGCAGAGGGGAGCGAGCAGTGAMTMSTFPWLTALVVWPLVAALATATTGVGRGRPSGGAATGGGVFSAGAARTVALVGALVEVALLVGAFAAFDTGAAGTHQLTETYAWIPALGASYAVGVDGVALLLVALSVGLVPLVILAAWHEQGGDAVRLRRYLATVLVLLSFMVLVFTARDVFLFYVVFEAMLIPAYFLIGGFGQGAQRRYAAVKFLMFSLGGGLIMLAAVVALYLQVPVDPATGLRPEDAFLTDNLTGLALDPTAERLMFAAFFLAFAIKAPMFPVHTWLPDVTQNATPGTSTLLICVLDKVGTFGMLTLCLPLFPEASRWAAPFVIVLAVISILYGAVLAIGQSDVLRLIGYTSVSHFGFIILGIFTFTSVGVSGSSFMMLNHGISTGALFLIAGFAIARHPRRSQQVADYGGMRTVAPVLGGTFLVAGLSALALPGLATFVSEIMVFLGAYGRWPAAVIVAVPAVVLAATYVLLTYQRMFTGPVGAEIVGAKDLGGREKTVAGVLVAALVVLGLMPGPALDYVREPASVSVELVGATDPEPVLGAAEGSEQPGPT0026850_421DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026850-nuoM-K00342NANA
AK018_048311734nuoN_3COG1007NADH-quinone oxidoreductase subunit NGTGAACGAGTTCGTCGCACCGGAGATCGACTGGGCGGTCCTGTCCCCGATCCTCGTCGTGCTGGCCGCCGGCGTGGTGGGGGTGCTGGTCGAGGCCTTCGTGCCGGCGCGCGCCCGCCGCCTGACCCAGCTCGTGCTGACCCTCGGCGCTCTGGCCGGTTCGCTGGTCGCCGTGGCGCTGCAGTGGGAGCGGGTCCTCGCCGACGGGTTCGCCGCCGTGGTGGACGGCACGGTGGTCCTCACGCCATTCACGCTGGGCATCCAGGCCGTCGTGGCCGTGCTGGCGATCCTCGGGGTGCTCGTCGTGGCCGACCGCACGAGCACCGGTGAGGACGCGTTCGCGCCGACCGCTGCCGCCGTGCCGGGCACCGCCTACGAGGACGCGGCCCGTGAGGCCGGGCTGCAGCAGACCGAGATCTACCCGCTGATGCTGTTCGCCACCGGCGGGATGCTGCTCTTTCCGGCGACTGACAACCTCATCGTGCTGTTCATCGCCCTCGAGGTGCTGTCCCTGCCGCTGTACGTGCTGTGCGCCACGGCCCGCCGTCGTCGGCTGCTGAGCCAGGAGGCGGCGTTCAAGTACTTCCTGCTCGGGGCGTTCGCCAGCGCGCTGATGCTGTTCGGCATCGCGCTGGTGTACGGGTTCTCGGGGTCGGTGAGCCTGGAGACGGCCGTCTACGTCCTGCAGCACCCGGACAGCCAGGTCCTGGCGATGATGCCCGGGCTGGTGATCGCGGGTGTGCTGCTCGTCTCGGTGGGTCTGCTGTTCAAGATCGGTGCCGCGCCGTTCCACACCTGGACGCCGGACGTCTACCAGGGCGCGCCGACCCCGGTCACCGCGTTCATGGCCGCCTGCGTCAAGGCGGCCGCGATCGGGGCGATGGTGCGGGTGCTGTTCACCCTGGCCGACGGGTTGGACGAGTCGTTGCGGCAGGACCTGGAGACCGGGCTGTGGGTCGCGGCGATCCTCACCATGCTCGTCGGTACGGTCGCCGGGGCGGTGCAGACAGATGTCAAGCGGATGCTCGCCTACTCCTCGATCGCGCACGCCGGCTTCCTGCTGGTGGCGATGGTCGGGTTCGACGAGTACGGGGCGCGCGCCGTGCTGTTCTACGTGCTGGCCTACGGGCTGGCCACGCTCGGCGCCTTCGCCGTCGTGACGCTCGTGCGCGAGCAGGACGCCGACGGTGTCGTGCTCGGCGAGGCGACCCACCTGTCGCAGTGGGCCGGGCTCGCGCGACGGTCCCCGCTGCTCGCCACGGCGTTCTCTCTGTTCCTGCTGTCCATGGCGGGCATCCCGTTGACCGCCGGGTTCCTCGCGAAGTTCAGTGCGTTCTCGGCGGCCGTCGAGGCGGGCGCCTGGCCGCTGGCCGTCATCGGAGTGCTCGCCTCGATCGTCGCGGTGTTCTTCTACGTCCGTCTCATCGTCCTGATGGTGCTCACCCCGCCGGTGGAGGACACGGCCGACGACGGCGCGTCCGGTGCCGGCGGAGCCACGGCGGGCTCCGGGGCCGGGACGTCGGACGCGGGGACCGGGGCCGAGGACACCCCCGAGCGAGCGGGCACCCTGACGGCGGCGCGTGCGGCGACCGAGCGGGCCGCGGTGGTCGTCATCTCCTCGCAGGGTCCGACGGCGGTGGCGGTCACCGTCTGCGCCGTCGGGGTGGTGCTGCTCGGGCTCGTCCCGGGGCCGGTGCTGGACTGGATGACGCAGGCGGCCGCGTTCCGTCCGTGAMNEFVAPEIDWAVLSPILVVLAAGVVGVLVEAFVPARARRLTQLVLTLGALAGSLVAVALQWERVLADGFAAVVDGTVVLTPFTLGIQAVVAVLAILGVLVVADRTSTGEDAFAPTAAAVPGTAYEDAAREAGLQQTEIYPLMLFATGGMLLFPATDNLIVLFIALEVLSLPLYVLCATARRRRLLSQEAAFKYFLLGAFASALMLFGIALVYGFSGSVSLETAVYVLQHPDSQVLAMMPGLVIAGVLLVSVGLLFKIGAAPFHTWTPDVYQGAPTPVTAFMAACVKAAAIGAMVRVLFTLADGLDESLRQDLETGLWVAAILTMLVGTVAGAVQTDVKRMLAYSSIAHAGFLLVAMVGFDEYGARAVLFYVLAYGLATLGAFAVVTLVREQDADGVVLGEATHLSQWAGLARRSPLLATAFSLFLLSMAGIPLTAGFLAKFSAFSAAVEAGAWPLAVIGVLASIVAVFFYVRLIVLMVLTPPVEDTADDGASGAGGATAGSGAGTSDAGTGAEDTPERAGTLTAARAATERAAVVVISSQGPTAVAVTVCAVGVVLLGLVPGPVLDWMTQAAAFRPPGPT0026860_37DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026860-nuoN-K00343NANA
AK018_048321044hepT_2COG0142Heptaprenyl diphosphate synthase component 2GTGACCCGTGCTTCTGACGCGCCGTCCGGCGCCGCACCGACCCTGCCGACCGGTGTCCCGCTCTCGGACCCCGCGCTGGCCGACCGGATCGCGCAGCGGCTGACGCAGGTCGACGCGGTGCTCGACGAGGCGGTCGCCTCGACCGACGCGCTGGCCGACGACGCCGGCCGCCACCTCGTGGCGGCGGGCGGCAAGCGGTTCCGCCCGCTGCTGACGCTCCTCGCCGGGGAGCTCGGCGACGGGGCGCAGCCGCAGATCGTCGACGCCGCCGTGGTGGTCGAGCTGACCCAGGTCGCCTCGCTGTACCACGACGACGTCATGGACTCGGCGCCGGTGCGCCGTGGCGCCCCGGCCGCCCACACCGTGTGGGGCAACACCGTGGCCATCCTCGTGGGGGACCTGCTGTTCGCCCGTGCCTCGGCCCTGGTGGCCGGCCTCGGCCCGGAGGCGGTCGTGCTGCAGTCGCGCACGTTCGAGCGGATGTGCCTCGGTCAGCTCCACGAGACCACCGGCCCCGGGCCGGACGACGACCCGGTCGAGCACTACCTGCAGGTGCTCAGCGACAAGACGGCCTCGCTGCTGGCCACGTCGGCTCGTCTGGGCGCGATGTTCGGCGGCTGCCCGGACGAGATCGTCGAGGCGGTCGCGGCCTACGGCGAGAAGGTCGGCATGGCCTTCCAGCTCGCCGACGACGTGCTCGACATCGCCTCCTCCGGCGCCGTGTCCGGCAAGACGCCGGGGACGGACCTGCGCGAGCACGTCCCCACGATGCCGGTCCTGCTGCTGCGCCAGCGGGTCACGCAGGGGGAGGGGACGCCGGCGGACGCGGAGCTGCTGGGTCGGCTCGACGGCGACCTGTCCGACGACGCCGCGCTGGCGGCCGTGGTGGCCGACCTGCGCGAGCACGACGTGCTCGCCGAGACCCGCACGCTCGCCGTGCGCTGGGCGCGGGAGGCCGCCGCCGAGCTGGCGGTCCTGCCCGACGGTCCCGTCAAGGAGGCGCTGACGGACCTGGCCACCGCGCTGGCCGACCGGACCGTCTGAMTRASDAPSGAAPTLPTGVPLSDPALADRIAQRLTQVDAVLDEAVASTDALADDAGRHLVAAGGKRFRPLLTLLAGELGDGAQPQIVDAAVVVELTQVASLYHDDVMDSAPVRRGAPAAHTVWGNTVAILVGDLLFARASALVAGLGPEAVVLQSRTFERMCLGQLHETTGPGPDDDPVEHYLQVLSDKTASLLATSARLGAMFGGCPDEIVEAVAAYGEKVGMAFQLADDVLDIASSGAVSGKTPGTDLREHVPTMPVLLLRQRVTQGEGTPADAELLGRLDGDLSDDAALAAVVADLREHDVLAETRTLAVRWAREAAAELAVLPDGPVKEALTDLATALADRTVNANANANANA
AK018_04833582hypothetical proteinATGGCGACGACGCTGCTGGACCGCACCCGCGCCGAGCTCGCGCCCGTCCGCCGTACAGTCCTGGTCGGCGCGCTGCCCGCCGCCGCGTGGGCCGTCTGGGTCAGCGGGCCGGGATGGGCGGCCCCGGCCCTCGCGGTCGCGGCGGTCGCCGGAGTGGCCCTCGGCGCCGTCGACCGCCGCACCCACCGGCTGCCCGACGCCGTCACCTACCCGACCACCGTCGTCGTCGGTGCGCTGCTGGCCCTGGCCGCCCTCGTGGGCGGGGACGCCGCACCGCTGCTGCGTGCGGCGGCCGGGGCGATCGTGCTGGGCGGCACCTACCTGCTGCTGCACCTGGTCAACCGCTCGGGCCTCGGGCTCGGGGACGTCAAGCTCGCCGTGCTGCTCGGGCTCGTGACCTGCTGGTTCGGGTGGTCCCCGCTGTGGGCGACGGCGGTCCTGCCCTTCCTGCTCGGCGGCACGGTCGCGATCGTCCTGCTCGTGGCGCGACGCGCGACACGCTCCACCGCGATCGCGTTCGGCCCGTTCATGCTGGCCGGGGCAGCCGTCGCGCTCACCGCGCAACGCCTGCTGGCGGGCTGAMATTLLDRTRAELAPVRRTVLVGALPAAAWAVWVSGPGWAAPALAVAAVAGVALGAVDRRTHRLPDAVTYPTTVVVGALLALAALVGGDAAPLLRAAAGAIVLGGTYLLLHLVNRSGLGLGDVKLAVLLGLVTCWFGWSPLWATAVLPFLLGGTVAIVLLVARRATRSTAIAFGPFMLAGAAVALTAQRLLAGPGPT0015925_2674DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654NANA
AK018_048341413fprA_2COG0493NADPH-ferredoxin reductase FprAGTGAGCAGCACCCGACCTCTGCGCGTCGCGATCGTCGGCGCAGGCCCCGCGGGCATCTACGCCGCGGACATCCTGTCCAAGACCGACCTCGACGTCAGCATCGACCTCTTCGAGCGTCTGCCTGCCCCGTTCGGACTCGTCCGCTACGGCGTCGCCCCCGACCACCCGCGGATCAAGGGCATCATCAACGCCCTGCACAAGGTCCTGTCGCGGGGTGACGTGCGGCTGCTCGCCAACGTCAACTACGGCGTCGACCTCAAGCTCGAGGACCTGCGCCAGTACTACGACGCCGTGGTCTTCTCCACCGGCGCCATCAAGGACGCGGCGCTGGGGATCCCGGGCATCGACCTCGACGGCTCCTACGGCGCCGCCGACTTCGTGTCCTGGTTCGACGGGCACCCCGACGTGCCGCGCACCTGGCCCCTGGAGGCCCAGCACGTCGCGGTCCTCGGCGCCGGCAACGTGGCTCTCGACGTCACGCGGATCCTGGCCAAGCACCCGAAGGACCTGATGTCGACGGAGATCCCGGCGAACGTGCAGGCGGGCCTGGAGGCCTCGCCGGTCACGGACGTCCACGTCTTCGCCCGCCGCGGCCCGGCCCAGGTGAAGTTCTCCCCGCTGGAGCTGCGCGAGCTGGGCCACGTGCCCGACGTCGACATCGTCGTCTACCCCGAGGACTTCGACTTCGACGAGGGGTCGATGGAGGCGATCGAGGCGACGAACCAGACCAAGCAGGTCGTCAAGACCCTCACGGACTGGACGCTGGTCGAGCCGTCGCAGCAGAAGGCCTCGCGGCGCATCCACCTGCACTTCCTGCACTCCCCGTCGGAGGTGCTCGGCGAGGACGGCAAGGTGGTCGGGCTGCGGACCGAGCGCACCGCCCTGCAGGGTGACGGCACCGTCCAGGGCACCGGCGAGTTCCACGACTGGCCCGTCCAGGCCGTCTACCGGGCCGTGGGCTACTTCGGGTCCCCGCTGCCGGAGATCCCCTTCGACGACCTCAAGGGCGTCATCTCGAACCGCGAGGGCCGCGTCGTCGACCTCGACGGCGAGCACCTGCCCGGCGTCTACACCACCGGCTGGATCAAGCGCGGCCCGGTCGGCCTGATCGGCCACACCAAGTCCGACGCCTCGGAGACGATCCGCCACCTGGTCGAGGACGTCACCGGCGTCTCGGGTGGCGCCGCGGACGGTGACCCTCAGGGGTCGCCGGAGGGCGGCCGCACCGCCCCGCACGGCGAGCCGCAGCAGGTGCTGGACTTCCTGTCCGAGCGCGGCGTCGACGTCATCACCTGGGACGAGTTCACGCTGCTCGACACCCACGAGCTGGGCCTCGGCGAGGCGGCCGGCCGCGAGCGCATCAAGGTCGTCCCGCGCGAGGAGATGATCGACATCGCCAAGGGCCGCGCCTGAMSSTRPLRVAIVGAGPAGIYAADILSKTDLDVSIDLFERLPAPFGLVRYGVAPDHPRIKGIINALHKVLSRGDVRLLANVNYGVDLKLEDLRQYYDAVVFSTGAIKDAALGIPGIDLDGSYGAADFVSWFDGHPDVPRTWPLEAQHVAVLGAGNVALDVTRILAKHPKDLMSTEIPANVQAGLEASPVTDVHVFARRGPAQVKFSPLELRELGHVPDVDIVVYPEDFDFDEGSMEAIEATNQTKQVVKTLTDWTLVEPSQQKASRRIHLHFLHSPSEVLGEDGKVVGLRTERTALQGDGTVQGTGEFHDWPVQAVYRAVGYFGSPLPEIPFDDLKGVISNREGRVVDLDGEHLPGVYTTGWIKRGPVGLIGHTKSDASETIRHLVEDVTGVSGGAADGDPQGSPEGGRTAPHGEPQQVLDFLSERGVDVITWDEFTLLDTHELGLGEAAGRERIKVVPREEMIDIAKGRAPGPT0013215_564DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
AK018_04835894htpX_3COG0501Protease HtpXGTGGGTCATCGCCACTTCAACGGTCTGAAGACCGTCCTGCTCTTCGGTGTGCTGTGGGCCGTGCTGCTCGGGCTCTGGGCGGTGTTCTTCCGCGGCAGCCAGGGGATGCTGTTCCTGTTCACCGCGATCGGCCTCATCGGCACGTTCGTCGGCTACTGGAACTCGGACAAGATCGCGATCAAGGCGATGCACGCCTACCCGGTCACCGAGCTCGAGGCCCCGGAGATGTACCGGATCGTGCGCGAGCTGTCCACGGTGGCCCGGCAGCCGATGCCGCGGCTCTACATCTCGCCCACCCAGGCGCCCAACGCGTTCGCCACCGGCCGCAACCCGAAGAACGCGGCCGTGTGCTGCACCGAGGGCATCCTGCGCATCCTCGACGAGCGCGAGCTGCGCGGGGTGCTCGGCCACGAGCTGATGCACGTCTACAACCGGGACATCCTCACCTCGTCGGTCGCCTCCGCGCTGGCGGGCGTCATCACCTCGCTGGCGCAGTTCCTGCTGATCTTCGGCGGGGGAGACCGGCGCGAGGGCGGCAACCCGCTCGCGGCGCTGGCGCTGGCGCTCCTGGCCCCGTTCGCCGCGATGCTCATCCAGATGGCGATCTCGCGCACCCGCGAGTACGACGCCGACGAGGACGGCGCCAAGCTCACCGGCGACCCGCTGGCGCTGGCCTCCGCGCTGCGCAAGCTGGAGCAGGGCACCAAGGCCGCCCCGCTGCCGCAGACGCAGTCGCTGGAGAACGTCTCGCACCTGATGCTCGCGAACCCGTTCCGCGGCGGCGGCATGGCCAAGCTCTTCGCGACCCACCCCCCGATGGACGACCGCATCGCCCGCCTGGAGAAGATGGCCGGCGGCACCGGGTTCGGCCCGGGCGGCATCACGCGCTACTGAMGHRHFNGLKTVLLFGVLWAVLLGLWAVFFRGSQGMLFLFTAIGLIGTFVGYWNSDKIAIKAMHAYPVTELEAPEMYRIVRELSTVARQPMPRLYISPTQAPNAFATGRNPKNAAVCCTEGILRILDERELRGVLGHELMHVYNRDILTSSVASALAGVITSLAQFLLIFGGGDRREGGNPLAALALALLAPFAAMLIQMAISRTREYDADEDGAKLTGDPLALASALRKLEQGTKAAPLPQTQSLENVSHLMLANPFRGGGMAKLFATHPPMDDRIARLEKMAGGTGFGPGGITRYPGPT0014605_1839DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014605-htpX|ykrL-K03799NANA
AK018_04836828hypothetical proteinATGACCGACCACACGCCGCCGCCCCGCTCCCTGCGTCCCGTCCTCGACGAGGACCCGCGCGTCGCCGCGTGGGAGCGGCGGATGGAGTGGCCCCTGCTCGTCGTCGCGGGCCTGTTCCTCATCGCCTACGCGATCCCGATCGTGTGGCCCGACGTCCCGCCCGAGATCCGTCGGGCGTGCCGGTTCGGCGTGACGACCACCTGGATCGTGTTCGCCGTCGACTACGTCGCCCGGCTCGTGCTGTCCCGCCAGCGCTGGTACTTCGTGCGGCACAACCTGCTCGACCTGGCGATCGTGGTGCTGCCGGTGCTCCGGCCGCTGCGGCTGCTGCTGCTCGTGTCCGCGATCAAGCGGCTCAACCGTGCCGGCGCCAGCGCGATGCGCGGTCGCGTGGTGCTCTACGCGGCCGCCGGGTCGGCCCTGCTGGTCCTGGCCGGGTCGCTGGCCGTGACCGAGGCCGAGCGCGGCGCCGAGGGCAGCACGATCGTCAACGTCGGCGACGGGTTCTGGTGGGCGCTGGTGACCATGGCGACCGTCGGCTACGGCGACACCTATCCGGTCACGATCACCGGCCGGTTCGTGGCGGTGGGCATGATGCTCGGCGGCATCGCCGTGCTGGGTGTGGTGACCGCGACGCTGTCCTCGTGGCTCGTGCAGAACGTCGAGGCCGGCACCGAGGAGCCCCGCGCCGAGCGTCGGGACTCCACCGACGACCTGTGGGCCCGGCGCGGCGACGTCGAGAGCCTGGTCACCGAGGTCCGGGCCCTGCGCGAGGAGGTCGCGCGGCTGCGCACCGAGGACGTCGGCACGCGCCGCGCCGGCGACTGAMTDHTPPPRSLRPVLDEDPRVAAWERRMEWPLLVVAGLFLIAYAIPIVWPDVPPEIRRACRFGVTTTWIVFAVDYVARLVLSRQRWYFVRHNLLDLAIVVLPVLRPLRLLLLVSAIKRLNRAGASAMRGRVVLYAAAGSALLVLAGSLAVTEAERGAEGSTIVNVGDGFWWALVTMATVGYGDTYPVTITGRFVAVGMMLGGIAVLGVVTATLSSWLVQNVEAGTEEPRAERRDSTDDLWARRGDVESLVTEVRALREEVARLRTEDVGTRRAGDPGPT0002715_4245DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002715-kch|trkA|mthK|pch-K10716NANA
AK018_04837891cofHMP-PP phosphataseGTGACCGCGCCGGACCGCCTTCCTCGCCTGGTCGCGACCGACCTGGACGGCACGCTCCTGCGCTCGGACGGCACGGTGTCGGCACGCACCCGGGCCGCGCTGCGCGCCGTGGAGGACGCCGGCGTCGAGGTCCTCTTCGTCACAGCGCGCCCGCCACGCTGGCTCGGGATGCTCGCCGACTGCGTGGGCGGGCACGAACGGGTCGTGTGCCTCGGCGGCGCCGCCGTGTGGGACCTGGCCACCGGCACCGCCGACGACGTGGGCGGGTTCGCCGACGACGCCCTGCGCGGGATCGTCGCGGACCTGCGCCGGGCGGTGCCCGACGTCGCCCTCGGCCTCGAGCGGCCGGACGGCCCGGCCTTCGACCCGTGGTTCCCCCGCGACGAGCCGGGGCTCGACCCGGTCGTCCGCGCGGTGCCGGTCGAGGAGACCCTGGCCGACGCCGGCACGGACCGCGGGCGGCCGTCCCCGGTGGGCAAGCTGCTCGCCGTCCACCCCGACGCGGGCGGCGCGACGCGGCCCGGGGACGTCCACGGCGGCCCGAGCGACGACGCCGCGCAGGAGGAGTTCTTCGCCACGGTGCGGTCCGTCGTCGGCCGGCGGGCGCACCTGGCCTACTCCGGGGCGGCCGGGCTGGCCGAGCTGCTGGCCCCCGGGGTGACCAAGGACGCGGCGCTGGCGCGCTGGTGCACCCGCCTCGGGATCGACGCCGCGGACGTCTGGGCGTTCGGCGACATGCCGAACGACCTGCCGATGCTCCGCTGGGCCGGCCGCGGGCACGCGGTCGCCGACGCGCACCCGGACCTGCTGGCCGGTGCGGACGTCGTCGTCGGGCCCGGGGACGACGACGGCGTGGCCGCGGCCCTGGAGGCCGCCCTGCGCGGCCGCTGAMTAPDRLPRLVATDLDGTLLRSDGTVSARTRAALRAVEDAGVEVLFVTARPPRWLGMLADCVGGHERVVCLGGAAVWDLATGTADDVGGFADDALRGIVADLRRAVPDVALGLERPDGPAFDPWFPRDEPGLDPVVRAVPVEETLADAGTDRGRPSPVGKLLAVHPDAGGATRPGDVHGGPSDDAAQEEFFATVRSVVGRRAHLAYSGAAGLAELLAPGVTKDAALARWCTRLGIDAADVWAFGDMPNDLPMLRWAGRGHAVADAHPDLLAGADVVVGPGDDDGVAAALEAALRGRPGPT0017726_3DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017726-yigL-NANANA
AK018_048382796yoaBCOG0474Calcium-transporting ATPase 1ATGAGCGAGAACGTCTCCGTCACGACCCCGACCCACGACCCGCGGTGGTACGCGCAGAGCGTGGAGTCCGTGCTCGAGGCGCTCGGCTCCGACCCCGCGCAGGGGCTGACGGCCGAGGAGGCCGAGCGGCGACGAGCCCGCTACGGACCGAACGAGATCACCAGCGAGCGGCCGCCGTCCGTGTGGGCCGTGGCGGCCGCCCAGCTGCGCGATCCGATGAACCTGATGCTCGTCGCCGTCGCCGGCGTGAGCTTCGTCATCGGCGAGATCTCGACGGGGATCGTCGTCGCACTGCTGGTCGCTCTCAACGTCGTCCTCGGGTCGCGGCAGGAGCTCAAGGCGCGGGAGAGCGTCGACGCCCTCTCGAGCATGCAGGTGCCGAGGGCCCGCGTCCTCCGCGGTGGGCAGGTGTCGCTGCTCCCCGCCGTCGACATCGTCCCGGGGGACCTCACGATGCTCGAGGCCGGCGACATCGTGCCGGCCGACGGCCGGATCGTGCGCTCCGCGACCGTCGAGACCCAGGAAGCGGCGCTCACCGGTGAGAGCACCCCGGTCCCGAAGGACGCCGTCGCCCTGCCGGCCGGCGAGATCGCGCTGGGCGACCGGTCCAACATGCTCTTCCAGAACACGTCGGTGACCCGGGGGACCGCCACCCTCGTCGTCACCGACACCGGGATGAGCACGCAGATGGGCCGGATCGCCACGATGCTCACGCAGGTGTCCCGCTCCCGCAGCCCGTTGCAGCGCGAGCTCGACAGCCTGACCAAGGTGCTCGGCATCATCGCCTGGGGCGCCGTGGCGCTCATCGTCGTCGTCGGCCTCCTCAGGGGCACGGACGCCCAGGAGCTCTTCCTCCTGGGCACCGCGATGGCGATCTCCGCGATCCCGACCGGTCTGCCCGCCTTCGTCTCGGGTCTGCTCTCGATGGGTGCCAAACAGCTGGCGGAGGCCAAGGCGGTCGTCAAGAACCTCACCGACGTCGAGACGCTCGGTGCGACGAGCGCCATCAACTCCGACAAGACCGGCACGCTGACCCTGAACGAGATGATGGTCTCGACCGTCTACACGAACGGCTCCTGGTTCGAGGTCGAGGGCGAGGGCTACCGCAAGAGCGGGGCGATCCTCGGAGTGGCCGGGTCCCCGGTCCCCGACTTCTCCCGGCTCGCCCTCGGGCTGGTGCTCGACAGCGACGCGACCGTCGGCGACGACGGCACGGTGATCGGCGACCCCACCGAGGCCGCCCTCGTCGTGCTCGCCGCGAAGCTCGGGGTCAGCGCGGAGGAGACCCGCCGGGCGCACCCTCGGCTCGCCGAGGTGCCGTTCGACTCGGAGTACAAGTTCATGGCGACGTTCCACCGGATGGAGGTCGACGGCGTGGAGCGGGTCGTCGAGCTCGTCAAGGGCGGGCCCGACGTCGTGCTGGCCCGGTGCACCCGGGCCGGCGGCCCGCTGCGCACCGAGCCCGTCCCGATGCCGGACGTCCGACAGGACATCGAGCAGGCGAACGCGCGCATGGGAGAACGTGGCCTTCGCGTCCTCGCGTTCGCCTATCGGCTCGTCGAGGAGAGCGAGCTCGACCGCATGACGAGCGACCCGATGGCGCTCGCGGACGATCTCCTGTTCGTCGGGATGGTCGGCATCATCGACCCGCTGCGTCCGTCGTCCAGGGAGGCGGTCCGGATCGCTCGGCGGGCAGGCATCGACGTCCGCATGATCACCGGCGACCATGCGGTGACCGCGCAGGCGATCGGCGCCGACCTCGGACTCGGGCCGGGAGCCATCAGCGGCACGGAGCTGGTCAGGCTCTCGGACGACGAGCTCCGTGACCGGCTGCCGCAGCTCCACGTCTTCGGACGGGTGACCCCCGAGGACAAGCTGCGCCTGGCACGCGTCATGCAGGAGGCGGGTCTCGTCGTCGCGATGACCGGGGACGCGGTCAACGACGCCGCCGCGCTCAAGCAGGCCGACATCGGTGTGGCGATGGGCAGCGGGAGCGAGGTGACGAAGCAGGCCGGCCGGATGATCCTCACCGACGACAACTTCGGCACTCTCGTGCACGCCGTCGAGCTCGGCCGCCGGGTCTACGACAAGGTCGTCGCGTACGTGCGGTACCAGATGACCCAGCTGCTGTCCCTGGTCATGCTCTTCGTCGCCGCGACGGTCTTCGACATCAACGGCGGGGTCGCGCTGACGCCCTCGATGATCCTCTTCCTGCTGTTCTTCTTCACCTCGGCGGGCGTCGTCATCATCGCGGTCGACCCGGGGGACCCCGAGATCATGGACCGGAGGCCACGCGACCCGCGGGTGCCGATCGCCAGCCGCAGCGCCGTCCTGACCTGGGTGCTGTACGCAGCGGTCCTCTTCGCCGCCGCCCTGGTCCCGCTGGTGGCCGGGCCCGACGAACCGAGCCTCACGACCGCGAGCACGTCCATGACGATGGCCTTCGTCGTCATGGGCCTGGGCACGGTCCTCAACGCCGTGGCCAACCGCCGTGATCCCAGCAGCGGGCTCACCGCGCCGGTGCTCAAGGCGATCGCGATCGGCCTGGTCCCGGTGCTCGTCCTGGTGCTCTCGACCCAGCTGCCGTCGCTCCGGTCGGCGTTGTCCACCGTGCCCCTCACCGGCGGCCAGTGGCTCGCGTCGATCGGGCTCGCGCTCCTGCTGCCGCTCGTCGTCGAGGTGCGCAAGGGGGTGCGCCGACGTCGCGGAGCCGCGCCGGGTGCGCGCCTCGACGTCGGCTCAGCGACGGCGCCGGCGCACGCCCCGAGCGGTTCGCACGCCTCGGCTCACCGGTAGMSENVSVTTPTHDPRWYAQSVESVLEALGSDPAQGLTAEEAERRRARYGPNEITSERPPSVWAVAAAQLRDPMNLMLVAVAGVSFVIGEISTGIVVALLVALNVVLGSRQELKARESVDALSSMQVPRARVLRGGQVSLLPAVDIVPGDLTMLEAGDIVPADGRIVRSATVETQEAALTGESTPVPKDAVALPAGEIALGDRSNMLFQNTSVTRGTATLVVTDTGMSTQMGRIATMLTQVSRSRSPLQRELDSLTKVLGIIAWGAVALIVVVGLLRGTDAQELFLLGTAMAISAIPTGLPAFVSGLLSMGAKQLAEAKAVVKNLTDVETLGATSAINSDKTGTLTLNEMMVSTVYTNGSWFEVEGEGYRKSGAILGVAGSPVPDFSRLALGLVLDSDATVGDDGTVIGDPTEAALVVLAAKLGVSAEETRRAHPRLAEVPFDSEYKFMATFHRMEVDGVERVVELVKGGPDVVLARCTRAGGPLRTEPVPMPDVRQDIEQANARMGERGLRVLAFAYRLVEESELDRMTSDPMALADDLLFVGMVGIIDPLRPSSREAVRIARRAGIDVRMITGDHAVTAQAIGADLGLGPGAISGTELVRLSDDELRDRLPQLHVFGRVTPEDKLRLARVMQEAGLVVAMTGDAVNDAAALKQADIGVAMGSGSEVTKQAGRMILTDDNFGTLVHAVELGRRVYDKVVAYVRYQMTQLLSLVMLFVAATVFDINGGVALTPSMILFLLFFFTSAGVVIIAVDPGDPEIMDRRPRDPRVPIASRSAVLTWVLYAAVLFAAALVPLVAGPDEPSLTTASTSMTMAFVVMGLGTVLNAVANRRDPSSGLTAPVLKAIAIGLVPVLVLVLSTQLPSLRSALSTVPLTGGQWLASIGLALLLPLVVEVRKGVRRRRGAAPGARLDVGSATAPAHAPSGSHASAHRPGPT0013990_3230DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CALCIUM_TRANSPORT,PGPT0013990-yloB|ctpA-K01537NANA
AK018_04839495hypothetical proteinGTGGCCGACTCGTCCTTCGACATCGTCTCCAAGGTGGACCGCCAGGAGGTCGACAACGCCCTCAACCAGGCGGCCAAGGAGATCAACCAGCGCTACGACTTCCGGGGTGTCGGGGCCTCCATCGCCTGGAGCGGCGAGGCGATCGTCATCACGGCCAACAGCGCCGAGCGGGTCAACGCCGCCCTCGACGTCTTCCAGACCAAGCTCATCAAGCGCGGCGTCTCCCTCAAGGCCCTCGACACGGGCGAGGGCGAGCCGCAGGCCTCCGGCAAGGAGTACCGGCTCGTCGCCTCCCTCCAGGAGGGTCTGAGCGGCGAGAACGCGAAGAAGATCACCAAGCTGATCCGCGACGAGGGCCCCAAGGGCGTCAAGACGCAGATCACCGGCGACGAGGTGCGCGTGACCTCCAAGAAGCGGGACGACCTGCAGGACGTCATCGCGATGCTCAAGGGCGCCGACCTCGACGTCGCCCTGCAGTTCACGAACTACCGGTGAMADSSFDIVSKVDRQEVDNALNQAAKEINQRYDFRGVGASIAWSGEAIVITANSAERVNAALDVFQTKLIKRGVSLKALDTGEGEPQASGKEYRLVASLQEGLSGENAKKITKLIRDEGPKGVKTQITGDEVRVTSKKRDDLQDVIAMLKGADLDVALQFTNYRPGPT0012210_275DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0012210-yajQ-K09767NANA
AK018_04840939rarD_2COG2962Protein RarDGTGACCCCTCCTGCCGCCACGGACCGCTGGGGCCTGCCGCTCGGGCTCTCCGCATTCCTCCTGTGGGGCGCGATGCCCCTCTTCTTCCCCCTGCTCGAGCCGGCCGGCGCCCTCGAGATCATCGCCCACCGCATCGTGTGGTCGCTGGTGTTCTGCGTGGTGCTGCTCGCGGCGACCCGGAGCCTGGGCTCGTTCCTGGCCGTCCTGCGCCGGCCGCGCACGATGGGGCTGCTGACCCTCGCGTCGGCGCTGATCATCGTCAACTGGACCACCTACGTCTACGCGGTCCTGACCGGGCACGTCCTGGACGCCGCGCTGGGCTACTTCATCAACCCGCTGCTGACCGTCGCCCTCGGCGTCGTCGTCCTGCGCGAACGCCTGCGCCCGGCGCAGTGGCTCGCGCTCGCGCTGGGGGGCGCCGCCGTCGTCGTGCTCTCGACCGGCGTGGGAGGCATCCCCTGGATCTCGCTGGTGCTGGCCGGGGCGTTCGGCCTGTACTCGCTGGTCAAGAACCGGGTCGGGCGCGGCGTCGGCGCGCTGCCGGGGCTGGCGGCCGAGACGGCGGTGGCCACGCCGCTCGCCCTGGGCTATCTCGGGTGGCTGGCCGCCACCGGCGTCGGCACCTTCTCCACCCAGGGCGTGGGGCACGCCCTGCTGCTCGTCTCGTGCGGTGTCGTGACCGGCCTGCCGCTGCTGCTGTTCTCCGCGGCGGCCCGACGTCTGCCCCTGTCGGTCGTGGGCATGCTGCAGTACCTCACGCCGTTCCTGCAGTTCCTGCTGGGCCTGCTGGTGTTCGGCGAGCACATGCCGCCGGTGCGCTGGGCCGGGTTCGTGCTGGTGTGGGTGGCGCTCGTGATACTCACCGTGGACGGGGTGCGCCGGTCCCGGGCGACGCGTCTGGCCGCCGCCGCACCGGCTACCGTGGACCTCGAACCCTGAMTPPAATDRWGLPLGLSAFLLWGAMPLFFPLLEPAGALEIIAHRIVWSLVFCVVLLAATRSLGSFLAVLRRPRTMGLLTLASALIIVNWTTYVYAVLTGHVLDAALGYFINPLLTVALGVVVLRERLRPAQWLALALGGAAVVVLSTGVGGIPWISLVLAGAFGLYSLVKNRVGRGVGALPGLAAETAVATPLALGYLGWLAATGVGTFSTQGVGHALLLVSCGVVTGLPLLLFSAAARRLPLSVVGMLQYLTPFLQFLLGLLVFGEHMPPVRWAGFVLVWVALVILTVDGVRRSRATRLAAAAPATVDLEPPGPT0003906_488DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786NANA
AK018_04844171rpmG2_3COG026750S ribosomal protein L33 2ATGGCTGCCAAGAGCGCTGACGTCCGCCCGAAGATCACGCTGGCCTGCGTGGACTGCAAGGAGCGGAACTACATCACGAAGAAGAACCGCCGGAACAACCCGGACCGCCTCGAGATGGCGAAGTTCTGCCCGCGTTGCGGCAAGCACACCGCGCACCGCGAGACCCGCTGAMAAKSADVRPKITLACVDCKERNYITKKNRRNNPDRLEMAKFCPRCGKHTAHRETRNANANANANA
AK018_04845474hypothetical proteinGTGGCGACCTCCGTCGATCCCGCGTTCGCCGGGCGTGAGTACCCGGCCACCGCGCCGTACTCGGTCGGCCGCGAGAAGATCCGCGAGTTCGCCGTCGCCGTCGGAGCCTCCCACCCCGCGCACCACGACCTCGTGGCAGCGCGGGGTCTCGGCTATCCGGACCTCGTCGCGCCGCCGACGTTCGCCGTCGTGATCGCCCAGCGCGCCGAGCAGCAGTACGTGGCCGACCCCGACGCCGGGATCGACTTCTCGCGGGTCGTGCACGCCGACGAGACGTTCACCCACCACCGCCCGATCGTGGCCGGTGACGAGCTGGCGACGGTGCTGCACGTCGACTCGGTGACGCAGCGCGCCGGCATCTCCATGGTGACCACGCGCTGCGAGATGTTCGCCGTCGACGCCGAGCGCGGCGACCTCGGCGAGCACGTCGCGACCGTCACCTCGAGCCTCGTCGTCCGCGGGGAGGACTCCTGAMATSVDPAFAGREYPATAPYSVGREKIREFAVAVGASHPAHHDLVAARGLGYPDLVAPPTFAVVIAQRAEQQYVADPDAGIDFSRVVHADETFTHHRPIVAGDELATVLHVDSVTQRAGISMVTTRCEMFAVDAERGDLGEHVATVTSSLVVRGEDSNANANANANA
AK018_04846426hypothetical proteinATGGCCCGTCCGCAGCTCGCCGACCTGACCGTCGGTGACGTGGTCGCCACCCGCACCGTCGAGATCGACCGTGCCGCGCTGGTCCGCTACGCCGGCGCCAGCGGCGACTTCAACCCCATCCACTGGGACGAGCGGTTCGCCACCGAGGTCGGGCTGCCCGGGGTGATCGCCCACGGCATGTGCACGATGGGGACCGTCGTCGACGTCGTGACCGACTGGGCCGGGGACCCGGGCGCGATCGTGCGCTACGGCACCCGCTTCACGAAGCCCGTCCCGGTGCCCGCTCGCGGGGCGGCCGCCGTCGAGGTGACGGCCACCGTCGGTGCGGTCGACGCCGACGCCGGGACCGCCCGGATCGACCTGACCGTGACGCACGAGGGCACCAAGGTCCTCGGTCGCACGCAGGTCCTCGTCCGTCTCTCCTGAMARPQLADLTVGDVVATRTVEIDRAALVRYAGASGDFNPIHWDERFATEVGLPGVIAHGMCTMGTVVDVVTDWAGDPGAIVRYGTRFTKPVPVPARGAAAVEVTATVGAVDADAGTARIDLTVTHEGTKVLGRTQVLVRLSNANANANANA
AK018_048471455hypothetical proteinATGCCACGACCCCGCACCGCCCCCGCCCCCGCCGACGGGCTGCTCGCCCGCGCCGCGGACGACCGGATCGCCGCCGTCTCGCGCCGCGGCGTGCTCATCGCCGGTGCCGCCGGAGCGCTCACGCTGGCCGCAGGTGCCGAGGCCTGGGCGAGCCGGACGGCGCTCGCCACGACCCCGCGGACCGCGACCTCCGCCGTCGGCTCGGTCGAGCGGGCGCACACGTTCCTCGGGGCGATGACCGACGCCTACCCCGAGGTCAACACCGGGCCGCGGATGGCCCAGTCCTACGCCGACCAGCTCGGGCTGTTCTCGACCGCGTTCGTCTACGACGTCGCGCTGACGATCTGCGCCTCCCTGGCCGGTGGCCACGTGGCGCGTGCCGCCACCCTGGCCGACGGGCTGCTGTTCGCCCAGCAGCACGACCCCGCCTACGACGACGGTCGGCTGCGGCAGGGCTACAACACCGGCCCGTACACGTTCTACGACGGCTCGCCGCAGCCGTACGGCCTCGAGCTGCCCGACGGCACCGCCAACATCGGCTGGCAGTTCGGTTTCCTCGGCACGGCCGTGGGCGACATGGCCTGGCCGGGCATCGCCCTGCTGCACACCTTCAGCGCCACCGGGGACCCCCGGTACCTCGACGGCGCGGTGCGCATCGGGGAGTGGATCCTCGACAACACGTGGTCCGAGCGCCCGCTCGGCGGGTTCTCCTTCGGCGTCGACGGCGGCAACAACCCGATCTCCAACGGGTCGACCGAGCACAACATCGACTGCGTCGCGTTCTTCCGCCAGCTCGAGGCCCTCGCCGGTGGCGACCGCTGGCGCCGTGCGCAGGAGCACGCCCGCGCTTTCGTCGACCTCGTGTGGGACCGCCAGGGCGGCTACTTCTACACCGGCACCAACGACGGCGTGGAGATCAACACCGACCCGCTGCCCCTCGACCCAGCGACGTGGGGCTGGCTGGCGCTGCAGGCCGAGCGGTACGGGCGCTCGGTCGACTGGGCGGCCTCCGACCTGGCGACGACCGACGTCGCCGGCGAGGGGAGCTCGCAGCTGCCCGGCGACGTGACGATCTCCGGGGTGACCTTCTCCAGCGCGAGCCTGGAGTCCACGGCGTCCTACAACGGGCTGCCCGTGCACCCGGACGGCGTCTGGCTCGAGGGGACCGGCCAGCTCGCCTGCGCCCTGGCGGACCGCGGTCGCGGCTCGCGCGACGGGCGCCGGGCGGCCGGCCTGCTCGCCCAGATCCGGCGGACGCAGGACCTCGTCGGTGCGGGCCAGACCGTGGGCGGCACGCCGCTGCCGGACCGGTCCGGCGTCGTCGCGGCCTCCAGCCTCATCGACTCCGGGTTCGGGTTCGGCTACTTCCAGATCCAGCACACCGGTGCGACGTCCTGGTACCTCATGGCGGCCGAGGGCGTGAACCCGCTGCAGGTCGGCGGTCTCGGCGTCTGAMPRPRTAPAPADGLLARAADDRIAAVSRRGVLIAGAAGALTLAAGAEAWASRTALATTPRTATSAVGSVERAHTFLGAMTDAYPEVNTGPRMAQSYADQLGLFSTAFVYDVALTICASLAGGHVARAATLADGLLFAQQHDPAYDDGRLRQGYNTGPYTFYDGSPQPYGLELPDGTANIGWQFGFLGTAVGDMAWPGIALLHTFSATGDPRYLDGAVRIGEWILDNTWSERPLGGFSFGVDGGNNPISNGSTEHNIDCVAFFRQLEALAGGDRWRRAQEHARAFVDLVWDRQGGYFYTGTNDGVEINTDPLPLDPATWGWLALQAERYGRSVDWAASDLATTDVAGEGSSQLPGDVTISGVTFSSASLESTASYNGLPVHPDGVWLEGTGQLACALADRGRGSRDGRRAAGLLAQIRRTQDLVGAGQTVGGTPLPDRSGVVAASSLIDSGFGFGYFQIQHTGATSWYLMAAEGVNPLQVGGLGVNANANANANA
AK018_048491761thiC_2COG0422Phosphomethylpyrimidine synthaseATGCAGAACGACGCACCGTCGCGCGCGCTCGCCGTCGAGCGGGACGCCCAGTCCGGGATCACGGTCCCGGTCACCGAGATCACCCTGGCCGACTCGCCCGACGGGTCGGCCAACGCCCCGGTGCGGGTCTACCGCACCGAGGGCCCCGGCGGGGACCCGACCCGCGGCATCCCCGCGCTGCGGGAGGCCTGGATCGCCGAGCGCGGCGACACCGAGGAGTACGACGGCCGGGACCGCACCCTGGCCGACGACGGCCGCGGGGCCGCCCGCCGGGGAGCGGCCTCCGCCGAGTGGCAGGGCGCGCGCCGTCGTCCTCGCCGCAGCGCCACCGGGAAGCCCGTCACCCAGATGGCGTACGCCCGCCGGGGCGAGATCACCCCGGAGATGCGCTTCGTCGCGGTCCGCGAGGGGGTCGACGTCGAGCTCGTGCGGTCCGAGGTCGCGGCCGGCCGGGCGATCATCCCGAACAACGTCAACCACCCCGAGTCGGAGCCGATGATCATCGGCAGGGCGTTCACCGTGAAGGTCAACGCCAACATCGGCAACTCCGCCGTGCACTCCTCGATCGCCGAGGAGGTGGAGAAGCTGCAGTGGGCCACCAAGTGGGGCGCGGACACGGTCATGGACCTGTCCACCGGCGACGACATCCACACCACCCGCGAGTGGCTGCTGCGCAACGCCCCGGTGCCCATCGGCACCGTGCCGATCTACCAGGCCCTGGAGAAGGTCGACGGCGACGCCTCCCGGATGAGCTGGGAGGTCTACCGGGACACGATCATCGAGCAGTGCGAGCAGGGCGTGGACTACATGACCGTCCACGCCGGGGTGCTGCTGCGCTACGTCCCGCTCACGGCGAACCGGGTGACCGGCATCGTCTCGCGCGGCGGGTCGATCATGGCCGGCTGGTGCCTGGCCCACCACCAGGAGAACTTCCTGTACACGCGGTTCGACGAGCTGTGCGAGATCTTCGCGGCCTACGACGTCGCGTTCTCCCTCGGTGACGGGCTGCGGCCCGGGTCGATCGCGGACGCCAACGACGCCGCCCAGTTCGCCGAGCTCGACACCCTCGCCGAGCTCACGAAGCGGGCCTGGGAGCACGACGTGCAGGTCATGGTCGAGGGGCCCGGGCACATCCCGCTGCACCTGGTGCGCGAGAACGTCGAACGCCAGCAGGAGCTGTGCGACGGCGCCCCGTTCTACACGCTGGGGCCGCTGGTCACCGACATCGCCCCGGGCTACGACCACATCACCTCGGCGATCGGGGCGACGGAGATCGCCCGGTACGGCACCGCGATGCTCTGCTACGTCACGCCCAAGGAGCACCTCGGGCTGCCGAACCGGGACGACGTGCGCACCGGCGTCGTCACCTACAAGATCGCCGCCCACGCGGCCGACGTCGCCAAGGGTCACCCGGGGGCGACGGCGCGTGACGACGCGCTGAGCAGGGCCCGCTTCGAGTTCCGGTGGCGCGACCAGTTCAACCTGTCCCTGGACCCGGAGCTGGCCGAGTCCTATCACGACGAGACGCTGCCGGCCGAGGCGGCCAAGACGGCGCACTTCTGCTCCATGTGCGGGCCCAAGTTCTGCTCGATGCGGATCTCGCAGGACATCCGCGACGAGTTCGGCGACGCCGCGGCCCAGGAGCGTGTCGTGGCCGCCTCGCAGCAGCAGGTCGAGGCGGGGATGGCCGAGAAGGCGGCGGAGTTCCGCGCCGCCGGGGGAGAGGTCTACCTGCCCACCCCCACGGTCCCCGCGCGGTAGMQNDAPSRALAVERDAQSGITVPVTEITLADSPDGSANAPVRVYRTEGPGGDPTRGIPALREAWIAERGDTEEYDGRDRTLADDGRGAARRGAASAEWQGARRRPRRSATGKPVTQMAYARRGEITPEMRFVAVREGVDVELVRSEVAAGRAIIPNNVNHPESEPMIIGRAFTVKVNANIGNSAVHSSIAEEVEKLQWATKWGADTVMDLSTGDDIHTTREWLLRNAPVPIGTVPIYQALEKVDGDASRMSWEVYRDTIIEQCEQGVDYMTVHAGVLLRYVPLTANRVTGIVSRGGSIMAGWCLAHHQENFLYTRFDELCEIFAAYDVAFSLGDGLRPGSIADANDAAQFAELDTLAELTKRAWEHDVQVMVEGPGHIPLHLVRENVERQQELCDGAPFYTLGPLVTDIAPGYDHITSAIGATEIARYGTAMLCYVTPKEHLGLPNRDDVRTGVVTYKIAAHAADVAKGHPGATARDDALSRARFEFRWRDQFNLSLDPELAESYHDETLPAEAAKTAHFCSMCGPKFCSMRISQDIRDEFGDAAAQERVVAASQQQVEAGMAEKAAEFRAAGGEVYLPTPTVPARPGPT0008905_2374DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BACIMETHRIN|CF3-HMP_DETOXIFICATION,PGPT0008905-thiC-K03147NANA
AK018_048501566ddc_2COG0076L-2,4-diaminobutyrate decarboxylaseGTGTCCACCACTCCGCCCGACACGCGGTCGACCCGCGTCGACACCCTGCTGCGCGGTGCCACCGCGGGCGCCTACGCCCGCTCGGTCCGCCGCGTCGTCGACGACGTCGCCTCCCGGTTCTCCGCGGTCACCCAGCCCTGGAGCGGTGCGAGCCGCCGTGAGCTGACCGAGCTCGTCGACGGCGTCGACCTCGACGGCCCCGGCATCGGCACCGACGACGCCCTGCACGAGACCGCCGACCTGTACGCCAGCCACGCGGTCTGGTTCCACGACCCCGGCTACGCCGCGCACCTCAACTGCCCCGTGGCGATCCCCGCCGTCGGCGCCGAGGCCATGCTCGCGGCGATCAACACCTCGGTGGACACCTACGACCAGTCCACCGTCGCCACCCTCATGGAGCGGCGGCTGGTCGCCTGGACCTCCGCCCGGATCGGGTTCGCCGCCGGCGACGGCGTCTTCACCTCGGGCGGCACGCAGTCCAACCTGCACGCCCTGCTGGCCGCCCGCGAGCGTGCCCTGACCGGCGCCGACGGTGCCCGCCTGACCGGAGCCGCCCGCGCCGAGCGTCAGGGCCGGTTGCGGATCCTGGCCACCGCCGCCAGCCACTTCTCCGTGGCGAAGTCCGCGATGATCCTCGGCCTGGCCGACGACGCCGTGGTCCCGGTCGGCACCGACGCCGACGGCCGGATGGACCCCGCCGCCCTCGCCGAGGCGCTCGCGGACACCGCCCGGACCGGCGGCGTCGCCATGGCGGTCGTCGCCACGGCGGGCACCACCGACCGGGGCACGATCGACCCCCTGGCCCGGATCACGGAGCGGTGCGACGCGGCCGACGTGTGGCTGCACGTCGACGCGGCCTACGGCGGCGGTCTGCTCGTGTCCCCGACCCGTCGGCACCTGCTCGCGGGCATCGAGCGGGCGCGCAGCGTGACCGTCGACTTCCACAAGACCTTCTTCCAGCCGGTCTCGGCCAGCGCGGTCCTGGTCCGCGACCCGGCGGACCTGGCCCGTACGGCCTGGCACGCGGACTACCTCAACCCGGTCGAGGACTCCGCCGAGATCAACCAGGTCGACCGCTCGCTGCAGACCACCCGCCGCTTCGACGCCCTGAAGCTGTGGACGACGCTGCGTGCGATCGGCCCGGACGGCATCGGCGCCATGGTCGACGCCGTGTGCGACCTGGCCGCCGCCGTCCACGCCGACCTGTCCGACGATCCGGAGCTCCATCTGGTGTGCGGCACCGACCTGTCGACGGTGATCTTCCGCTACCAGCCCGACGGCGTCACCGACGCCGAGGCGGACGCCCTGGTCCCGGCCGTGCGCCGGGTGCTGTTCGACTCCGGCCGGGCCGGGGTCGCCAAGACCGTCGTCGACGGCCGGCCCTGCCTCAAGCTCACCCTGCTCAACCCCGAGGTCACCCTCGACGACGTGCGCCGGGTGCTGACCCTGGTCCGCGACGCCGCCCACGGGATCCTCGCCGGGCGGGAGCTGGCGGACCTGACCGCACCGCCCTGCCGGGACGTCCACCCGCACCTGCAGCGCACCACCGAGGGGGAGACCCGATGAMSTTPPDTRSTRVDTLLRGATAGAYARSVRRVVDDVASRFSAVTQPWSGASRRELTELVDGVDLDGPGIGTDDALHETADLYASHAVWFHDPGYAAHLNCPVAIPAVGAEAMLAAINTSVDTYDQSTVATLMERRLVAWTSARIGFAAGDGVFTSGGTQSNLHALLAARERALTGADGARLTGAARAERQGRLRILATAASHFSVAKSAMILGLADDAVVPVGTDADGRMDPAALAEALADTARTGGVAMAVVATAGTTDRGTIDPLARITERCDAADVWLHVDAAYGGGLLVSPTRRHLLAGIERARSVTVDFHKTFFQPVSASAVLVRDPADLARTAWHADYLNPVEDSAEINQVDRSLQTTRRFDALKLWTTLRAIGPDGIGAMVDAVCDLAAAVHADLSDDPELHLVCGTDLSTVIFRYQPDGVTDAEADALVPAVRRVLFDSGRAGVAKTVVDGRPCLKLTLLNPEVTLDDVRRVLTLVRDAAHGILAGRELADLTAPPCRDVHPHLQRTTEGETRPGPT0013725_159DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-1|3-DIAMINOPROPANE_BIOSYNTHESIS,PGPT0013725-ddc|dfoJ|desA-K13745NANA
AK018_048511389iucD_2COG3486L-lysine N6-monooxygenaseATGAGCACCTACGACGTCGTCGGCATCGGCATCGGCCCCTTCAATCTCGGCCTCGCGGCGCTCGCCGACCCCCTGGGGGACGTGGACGCCGTCTTCCTGGACCAGCGCCCCGGCTTCTCCTGGCACGCGGGCATGATGCTCGAGGGCGCCACGATCCAGGTGCCGTTCCTGGCCGACCTGGTCACCATGGCCGACCCGACCTCGCCGTACTCGTTCCTGGCGTTCCTCAAGGAGACCGGGCGGCTCTACCCCTTCTACATCCGCGAGTCGTTCTACCCGCTGCGGGCCGAGTACGACGAGTACTGCCGCTGGGTCGCGGCCCGGCTGGACACCCTGCGCTGGGGCCGGCGCGTCGTCGCGGTCGAGCACGACGCCGCGAGCGACACCTATCTCGTCACCGCGGAGGTCGCCGACGACGACGGAGTCCGCCGCGAGCAGTACCGGACCCGCCACGTGGTGCTCGGCGTCGGCACGTCGCCGCGCCTGCCGTCCCCGCTCGCCGACCTGGCCGAGGAGGCCGCCGGGACCCCGGGCGCCGGACCGGTGGTCCACACCGCCGACTACCTCACCCACCGCGACGCCCTGCAGGCCTCCGGCGCGGTGACGGTCGTGGGCTCGGGCCAGTCCGCCGCGGAGGTCTACCGGGACCTGCTCGAGGACGCCGGCGCCTACCGGCTGGACTGGGTGACGCGCTCGCCGCGCTTCTTCCCGATGGAGTACACCAAGCTGACCCTCGAGATGACGTCCCCGGAGTACACCGCGCACTTCCACGGGCTGCCCATCGAGCTGCGCGACCTGGTGGGGCGCGAGCAGCGCAGCCTGTACAAGGGGATCAGCGGCGACCTGGTCGACGACATCTACGACACGCTGTACCGGCGCACGGCCCTGGGTCGCGAGGTCCCCACGACCCTGCTCACCGACACCGAGGTGGTCGCCGCCCGCGCGGAGCGGGCCGACGACGGCGGGACGGAGTACGTGCTGACCCTGCGGCACGGTCAGCTCGGGACGACGGCGGAGCACCGCACCCGCGCCGTCGTCGCGGCGACCGGGTACGCCGCCGGGGTCCCGGCCGTGCTGGACCCGGTGCGCGACCGCCTGCTCCTGGACGACCAGGGCCGGTTCGCCGCGACCCAGGACTACACCGTGAGCTCCGACGCCCGGATCCACACCCTCAACGGCGAGGAGCACTCCCACGGGGTCACCGCGCCGGACCTCGGGTTCGGTCCCTGGCGCAACTCCGTGGTGCTCGCGAAGATCACCGGCCGCGAGCCGTACCCGATCGAGCGACGGATCGCCTTCCAGCAGTTCGGTCTGCCGGGCGGGGCACCCGCGCCCGACGCCGGTGCCCCGGCCGGGACCGCGCGCACCGCACCGGAGGGCGCCCGGTGAMSTYDVVGIGIGPFNLGLAALADPLGDVDAVFLDQRPGFSWHAGMMLEGATIQVPFLADLVTMADPTSPYSFLAFLKETGRLYPFYIRESFYPLRAEYDEYCRWVAARLDTLRWGRRVVAVEHDAASDTYLVTAEVADDDGVRREQYRTRHVVLGVGTSPRLPSPLADLAEEAAGTPGAGPVVHTADYLTHRDALQASGAVTVVGSGQSAAEVYRDLLEDAGAYRLDWVTRSPRFFPMEYTKLTLEMTSPEYTAHFHGLPIELRDLVGREQRSLYKGISGDLVDDIYDTLYRRTALGREVPTTLLTDTEVVAARAERADDGGTEYVLTLRHGQLGTTAEHRTRAVVAATGYAAGVPAVLDPVRDRLLLDDQGRFAATQDYTVSSDARIHTLNGEEHSHGVTAPDLGFGPWRNSVVLAKITGREPYPIERRIAFQQFGLPGGAPAPDAGAPAGTARTAPEGARPGPT0031000_4DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEALCALIGIN_IRON_RESISTANCE_METABOLISM,PGPT0031000-alcA-NANANA
AK018_048522547hypothetical proteinGTGACCGCCGCGACCACCGCCCGCGCCGCCGTGGACAGCGTGTTCGCCGCCGGCACGCGCCGGGGAGAGCTCACGTTCTCCCCGGTGGACCCCGACCACGACGCGGTGGTCGTCCAGGCCTGGCTGGCCCACCCGGCGTCGTCCGCGTGGCACATGACCGACCTCGGTGTCGACGACGTCCGCGACTACCTGGGCGTGCTCGCGGCCGACGACGCCCAGGACGGCTGGCTCGTCCGCCTCGACCACGAACCGGTCGCCTACGTCGAGACCTACGACCCGGCCCGCGTGCTGCTCACCGCGGTCCACGACGCCGCCCCCGGGGACGTCGGCATGCACCTGCTCGTCGCCCCGGCGCCCGCGGACCCGGCCGCGCGCCGCCGGGGCCTGACCGACGCGGTCATGTCCGCCGTCGTGCGCTTCTGCCTCGCCGACGCCGCGGACGGCGGACGCGGGGGAGCGCGGGTCGTCGTCGAGCCCGACGTGCGCAACGCACCGATCGCGGCGAAGAATGCGGCGGCCGGGTTCCGGGTACTGGGCGAGGTCGAGGTCACCGACGGCGGGCACACGAAGACCGCCGCGCTGAGCGTGTGCACCCGCGCCGACTTCGCCGCGTCCCCGCTCGGTGCCGGGGTGGACCCGGCGCCCCACCTGCGCGCCGACCTCGCCGCCCACGTCCACCGCCACCTGGCCGCCAAGGCGCTCGCCGAGCTCACCCACGAACGGCTCTTCGCGCCGGTCGCCGACGGGACCGCCGACGGCACCTCCGGAGCAGGCGGTGCGACGCGCTACCGCCTCGACCTCGACGGCGTCACCTACACTTTCGACGCCCGCACCTTCGCCCTCGAGCACTGGGTGATCGACCCCGCCTCGATCGTCCGCACCGCGCGCGGGGCAGGACCGGACGGCGAGCAGGGCGGCACCGCGCTGCCGGTCGACGTCCTGGAGCTGGTCGCCGAGCTGCAGCCGTCGTTGCAGATCCCCGACGACCTGCTCGCCACCTATCTCGAGGAGCTCTCCAGCACCCTGGCGGCGGCCATGGCCAAGCGGGACCGCGAGCTGTCCGGCCGCACCCCCGACGCCGCGGGGCTGGTCGCGGGGCTCACCGCGCCGGCACCCGGTGGACCCGGAGGGGCCGACCCGGACCGGGACCTTGCTGACCAGGACCCCGCTGACCGGGCCGAGGACCGCCGTCGGACCGCCGAGACGTTCCAGGCCGTCGAGGCCGCGATGTCCGAGGGGCACCCGGGCTTCGTCGCGAACAACGGACGCATCGGCTTCTCGCTGCCCGACTACGAGGCGTTCGCCCCCGAACGGGGCGGTCGGCTGCGGCTGCAGTGGGTCGCCGCCCGGCGCGAGCACACCCACCTGGCGCTCGCGGACGACCAGACCGAGGCGGGGCTGTACGCCGCCGAGCTGTCCGGCGCCGAACGGGCGGCGTTCGCGGACCGGCTGGCCCGGCGCGGGCTGGACCCGGCCGACTACCTGTACCTGCCGCTGCACCCGTGGCAGGCCGAGCACCGGCTGCCGATCACGTTCGGCGCCGACGTCGCGCGCGGCGACCTCGTCCCGCTCGGCCCCGGCGCGGACGAGTACACCCCGCAGCAGTCGATCCGCACGATGTTCAACCGGACCCGTCCGGAGCGGCACTACGTCAAGGTGGCCCTGGCCATCCAGAACATGGGGTTCCTGCGGGGGCTGTCCCCGGCGTACATGCGCGCGACCCCGGCGATCAACGACTGGGTCGCCGACCTGGTCGACGGTGACGCGACCCTGGGCACGGCCGGTTTCGGCGTGCTGCGCGAGCTCGCCGCAGCCGGGTACACCGGCGACGTCTACCACCGCACACCCCGCCCCAACGCCCACCGCAAGATGCTCGCCGCCCTGTGGCGCGAGTCGCCGGTGCGGCGCACGGGCCCCGGCGAGCGGCTGGCCACGATGGCGTCCCTGCTGCACCGTGACGCCGCGGGCCGGGCGCTGGTCACCGAGCTGATCCGCGCCTCCGGTATCGACCCGGCCGACTGGGTGCGGGCCTACCTCGACGCCTACCTCTACCCGCTGGTGCACTGCCTGCGCGCCCACGACCTGGCGTTCATGCCGCACGGGGAGAACCTCGTGCTCGTGCTGCGCGACGGCGTGGTGCGGCGGGCGTTCATGAAGGACATCGGCGAGGAGGTCGCCGTGCTCTCGGACCGGTCGCTGCCGGAGCAGGTGGCCCGGATCGCCGCCCCGGTGGACGACGCCGAGAAGGCGCTGGCGATCTTCACCGACGTGTTCGACGGCGTGCTGCGCCACCTGGCCGGGATCCTCGCCGTCGACGGGGTGCTGGGCGAGGACCGGTTCTGGGCGCTGGTGGGCGAGTGCCTCGACCGGCACGAGGCCGAGCACCCGGACCTGGACTCCGGGGTGGACCTGCGGGCCGCGCGGTTCGCGCACTCGTGCCTCAACCGGCTGCAGCTGCGCAACACCCTGCAGATGGTGGACCTCGCCGACCAGTCGAGCTCCCTCATCTACGCCGGCGATCTGGCGAACCCGGCGGCGCGCGCGTGAMTAATTARAAVDSVFAAGTRRGELTFSPVDPDHDAVVVQAWLAHPASSAWHMTDLGVDDVRDYLGVLAADDAQDGWLVRLDHEPVAYVETYDPARVLLTAVHDAAPGDVGMHLLVAPAPADPAARRRGLTDAVMSAVVRFCLADAADGGRGGARVVVEPDVRNAPIAAKNAAAGFRVLGEVEVTDGGHTKTAALSVCTRADFAASPLGAGVDPAPHLRADLAAHVHRHLAAKALAELTHERLFAPVADGTADGTSGAGGATRYRLDLDGVTYTFDARTFALEHWVIDPASIVRTARGAGPDGEQGGTALPVDVLELVAELQPSLQIPDDLLATYLEELSSTLAAAMAKRDRELSGRTPDAAGLVAGLTAPAPGGPGGADPDRDLADQDPADRAEDRRRTAETFQAVEAAMSEGHPGFVANNGRIGFSLPDYEAFAPERGGRLRLQWVAARREHTHLALADDQTEAGLYAAELSGAERAAFADRLARRGLDPADYLYLPLHPWQAEHRLPITFGADVARGDLVPLGPGADEYTPQQSIRTMFNRTRPERHYVKVALAIQNMGFLRGLSPAYMRATPAINDWVADLVDGDATLGTAGFGVLRELAAAGYTGDVYHRTPRPNAHRKMLAALWRESPVRRTGPGERLATMASLLHRDAAGRALVTELIRASGIDPADWVRAYLDAYLYPLVHCLRAHDLAFMPHGENLVLVLRDGVVRRAFMKDIGEEVAVLSDRSLPEQVARIAAPVDDAEKALAIFTDVFDGVLRHLAGILAVDGVLGEDRFWALVGECLDRHEAEHPDLDSGVDLRAARFAHSCLNRLQLRNTLQMVDLADQSSSLIYAGDLANPAARAPGPT0031210_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-DESFERRIOXAMINE-BIOSYNTHESIS,PGPT0031210-desD-NANANA
AK018_048532205acyII_2Penicillin acylase 2 proenzymeGTGACGTTCGAGGTCCTCCGCGACGAGGTGGGCGTGCCGCACGTGCGGGCCGCCACCGAGCCGGACCTCGCCCGCGGGCAGGGCTACGTCACCGCCCGGGACCGCGGCTGGCAGCTCGAGTCCGACCGGTGGCGGGCCGAAGGGCGCCTCGCCGCGCGGTTCGGGCCGAGCGGGTTGGCGTGGGACCGGTTCGCCGTCCGCGTGCGGCTCGCGGACACCGCCCGCCGGGTCCACGCGGCGCTCGCGGAGCCCGAACGCGACTGGCTCGCCGCCTATGTGGCCGGGGTGAACGCCGGGCTGTCCGACGGCGGTCGCGACGTCCCGGAGATGCACGCCCTGGCCGCGGCTCCCGGCGACCTGCCGGAGCACGGGCCGTGGCCGGACTGGATGCCGCTCGGGGTGTTCCTCACCAACCACGTCCTGTTCGGCACCTGGCCGCACCTGCTGTGGCGCGAGCACGTGGTCCGGACGCTCGGGCCCGACCATCCGCTGACGGTGATCCTGTCGGGGGCCGACGACGGCGCGGGATCCGGGTCGAACGCCTGGGCCCTCGCCGGGGTCCGGACGGCGAGCGGCGCCCCGCTGCTGGCCGGCGACCCGCACCGGCTCCTCGAGCTGCCGGGGATCTACCAGCAGATCCGGCTCGCGTGCGACGCCTACGACGTCGTCGGCCTGGCGTTCCCCGGGGTGCCCGGCGTGCTGCACTTCGGGCAGACCATGACGCCCGGCGCAGCACCCGGCCGCGGTAGATCCGACGACGGCGAGCCCGGCGCGGGCGGGTCCGTCGCGTGGGGGATCACCAACGCCCTGGCCCACGCCGCCGAACTGTTCGTCGAGACCACGGAGACTCTGGCCGGCGCGGCCGGACCGGTCGAGACCGGCGTCGAGACCGTGCCGGTGCGCGGCGGCGACGCCGTCGAGGTGACCTGGACCGAGACGCCCCGGGGGCCGCTGGTCACCGACACCCACGCACTGCGCTGGCCCGTGCGGGTCGACGCCGACCTCGGGGTCGCGTCCTGGCGGGCCCTGCAGGGGGTCCGCTCCGCGGCGGACGTCGCCGCGGCGTTCGCCGGCTGGGTGGAGCCGGTCAACCGGGTGCTGACCGCCGACTCCGACGGGACCGTGCTCAGCCTGACGGCCGGCCGGGTGCCCGACCGGTCGCGCGCCGAGCGGGTCCTGCCTCACGCCGTCGTGCCGCGGGAGTCCGGCGTGTCGGAGCCGGCGCTGCCGCCGTGGCGTCCGCCGTCGTCCCCGGTGCCGGTACGCGACCTGGCCGTGGACGCCAACGAACGCCCCGACACCTCGGGCCGGGTCCCGGACCTCGGGCTGACCTACGCGCCGCACCGCGCGGGCCGGATCCGCGAGCTCCTGGCCACGCCCCCGGACGGTGGTGAGCGGCCCGAGGAGCAGGCCCGGGTGCACGGCGACGTCTCGGACCAGGGCGCGGCGCACCTCGTGCGGTGGCTGGACGACGTCGGCGGGCCCCGTGTCGGCCCGGCGGCCGCCCGGGTCCGGGCCTGGGCCGCCGGCGGTGCGCGCATGGACCCCGACTCCCGAGAGGCGGCGCTGTTCGCGGTGTGGCGGGACCTCCTGACGCGGCGGGTGGCGGCGCACCCCGCGCTGGCCCCGGTCGCCGCCCCGCACGGGATGCCGGCCGTGCTGGACCCGTGGCTGGACCTGTCGGCGAGGGTCGGCCAGGTGCTCGACGCGCTGCTGGCGGCGGGGGAGGCGCTGACGCCCCCGCTGGACGCCCGGGCCGAGGCGCGTGCCGCCCTGGCGGACGCCCGCGCCGAGCTCTCCGGGTGCCGGCGGGTGGTGCGCCGGGGGACGGCGGAGGGCACCTGGGGCGCGCGGCACCCCGTCGTGCCCCTGCACGCCCTGGGGGACGCGACCGGTGTCGACGCAGCGGCGGTGCCGCGGGTCCCTCGCGACCTGCGGGTCCCGATCGGGGGCGCCGCCGACACCGTGTGCTGCACGGGGTCGGTGCCGGGGGTGTCGCTGGCGTCGTGGCGCGGGTCGGTGGCGCGCTGGGTGTGGGACCTGTCCGACCGACGCCGCAGCCGCTGGGGGGTGCCGTTCGGTGCCTCGGGCGACCCGCGGTCGGCGCACTTCGCCGACCAGCACCCGCGGTGGGCGCGGGCCGGCACGGACGAGATCGAGACGGACTGGGCGCGTCTGCGCCGCGAGACCTGGGGGGACGCATGAMTFEVLRDEVGVPHVRAATEPDLARGQGYVTARDRGWQLESDRWRAEGRLAARFGPSGLAWDRFAVRVRLADTARRVHAALAEPERDWLAAYVAGVNAGLSDGGRDVPEMHALAAAPGDLPEHGPWPDWMPLGVFLTNHVLFGTWPHLLWREHVVRTLGPDHPLTVILSGADDGAGSGSNAWALAGVRTASGAPLLAGDPHRLLELPGIYQQIRLACDAYDVVGLAFPGVPGVLHFGQTMTPGAAPGRGRSDDGEPGAGGSVAWGITNALAHAAELFVETTETLAGAAGPVETGVETVPVRGGDAVEVTWTETPRGPLVTDTHALRWPVRVDADLGVASWRALQGVRSAADVAAAFAGWVEPVNRVLTADSDGTVLSLTAGRVPDRSRAERVLPHAVVPRESGVSEPALPPWRPPSSPVPVRDLAVDANERPDTSGRVPDLGLTYAPHRAGRIRELLATPPDGGERPEEQARVHGDVSDQGAAHLVRWLDDVGGPRVGPAAARVRAWAAGGARMDPDSREAALFAVWRDLLTRRVAAHPALAPVAAPHGMPAVLDPWLDLSARVGQVLDALLAAGEALTPPLDARAEARAALADARAELSGCRRVVRRGTAEGTWGARHPVVPLHALGDATGVDAAAVPRVPRDLRVPIGGAADTVCCTGSVPGVSLASWRGSVARWVWDLSDRRRSRWGVPFGASGDPRSAHFADQHPRWARAGTDEIETDWARLRRETWGDAPGPT0028075_1765DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
AK018_04854591hypothetical proteinATGAGCGAGCGGATGCTCACGGGGGAGCGGGGCGCCGAGGTGTGGCGCCATGGCGAGGTCGCGGTGCACGTGCTCGACCCGGCCGCCGACGTCGACGTCCTGCACGCGTGGGTGACGCGTCCGAACGCCGGCTTCTTCGGGCTCGGGGGCCTCGCTCGGGACGAGCTGCGCGAGACGTACGAGTTCGTCGACTCCCTGCCCACCCATCACGCCTACCTCGTGCGCGTGGCCGGGGAGCCGGTGGCGCTGGTGCAGCTCTACCACCCGGAGGACGACCCGCTGGCGGCGGCGTACGACGTGCAGCCGGGGGACGTGGGCATGCACTTCTTCAAGGGCAGCGAGGCCGTGGGGTGGCCCGCCCTGGGCGCCGCGCTGGCCCGGTTCGGGTTCACCGCTCCGGGTGCCCGGCGGGTCGTCGTCGAACCGGACGTGCGCAACCGGGCTGCGATCGCGCGGATGGTCGCCATGGGCTTCGAACCGGCCGGCGAGATCCACTTCGAGTCCCCGCACGGGCCCAAGGACGCGATGCTGGCGTTCCTCACGCGCGACCGCGCCACGGCACTGCTCGCCGAGGACCCTCCGCCGAGGTAGMSERMLTGERGAEVWRHGEVAVHVLDPAADVDVLHAWVTRPNAGFFGLGGLARDELRETYEFVDSLPTHHAYLVRVAGEPVALVQLYHPEDDPLAAAYDVQPGDVGMHFFKGSEAVGWPALGAALARFGFTAPGARRVVVEPDVRNRAAIARMVAMGFEPAGEIHFESPHGPKDAMLAFLTRDRATALLAEDPPPRPGPT0028075_110DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
AK018_048551080ipsA_2HTH-type transcriptional regulator IpsAATGGGCCGCACACCGAGCAACCGACCGACGCTCGCTCGGGTCGCCGAGCGCGCCGGGGTGTCCGTCTCGACGGCTTCCCTCGCCTTCTCCGGCTCGGGCCCGATCACCCCCGAGACCCGCGACAAGGTGTTCGCCGCCGCGACCGACCTCGGCTACACCGGCCCCAACCCGCTGGGCCGCCAGCTGCGGCGCGGGCGGTCGGGCATCGTCGGCGTCGTCATCGGCGACCACCCCGGACGCGCGTTCCGCGACCCGGTATCGGTGCAGGTACTCGACGGCCTGGTCGACGTCCTGGGCACCGAGGGGCTCGGCGTCCTGCTCATCCCCGGGGTCGACCTCGGGGAGGACTCGGTCGATCCGCTGCTGGAGACCGCCGCCATGGACGTCGCGGTGCTGGTGTGGGGCGTCCTGACCGACGACCCGACGCTGGCTGCGCTGCAGCGTCGCAGCGTGCCCGTGGTCGTCGGCGAGGGACGCGCCGTGGAGGGGTCGCCGCTGGTCGAGCTGGAGGACCGGGCCGGTGCCGCCGAGGCCGTGCGGCACCTCGTGGGCCTGGGGCACACGCGCATCGCGGAGATCTCCCTGCCCTTCGGCCGGGGAGAACGCTCCGGGCCCGTGGACGCCGAGCGGCTGGCCTGCGCCGACCGCACCCCGACGGCGCACCGCATGGCAGGCATCCGCGACGTCGTCGACCCCGTGATCACGTGGGAGACGCCCGCCTCGCTGGTGGAGCACGGGCGCGACGCCGCCACGGAGATCCTCGGGACGTGGGTGCCGGCCGACGAGCGGCCGACGGCGATCGTGGCGCACTCCGACCTGCTCGCGGCCGGCGCCGTCATCGCGGCCCGCGAGCTCGGGCTGCGCATCCCCGAGGACGTCTCGGTCGCCGGCTTCGACGGCCTCGACCTGCCGTGGCTCTCCCCCGACGTGCTCACCAGCGTGCACCAGCCGCTGCGGGACAAGGGCATGAAGCTCGGTCAGGCGGCCATCGACCTCATCGCCGGGCGGGAACCGACGTCGGTGTCCCTGCCGGTCGGGCTGGTGCCCGGCACGACGACGGGTCCGGCCCCCGCGAGGTAGMGRTPSNRPTLARVAERAGVSVSTASLAFSGSGPITPETRDKVFAAATDLGYTGPNPLGRQLRRGRSGIVGVVIGDHPGRAFRDPVSVQVLDGLVDVLGTEGLGVLLIPGVDLGEDSVDPLLETAAMDVAVLVWGVLTDDPTLAALQRRSVPVVVGEGRAVEGSPLVELEDRAGAAEAVRHLVGLGHTRIAEISLPFGRGERSGPVDAERLACADRTPTAHRMAGIRDVVDPVITWETPASLVEHGRDAATEILGTWVPADERPTAIVAHSDLLAAGAVIAARELGLRIPEDVSVAGFDGLDLPWLSPDVLTSVHQPLRDKGMKLGQAAIDLIAGREPTSVSLPVGLVPGTTTGPAPARPGPT0014791_72DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_048561293ybjJ_3Inner membrane protein YbjJATGGATCGTCGAAGGGTGAACTCTTCCGCCCCCACCCGGGCCGTCCCCCGCCCGGTCCGCGGCGCCGTCGTGGCGGTCTACGGCGTCTTCGTCGCCGCCGGCTTCGGTATGGCCACCTGGGCCTCGCGCATCCCCGCCGTCCGGGACGGGCTCGACTTCACCGAGGCGCAGATGGGGGTGCTGCTGCTCACCGCCTCGATCGGGTCGATCTGCGCCCTGCCGCTGTCGGGGATGATCACCTCCCGGCTCGGGGCGGCTCGCACCGTCCTGGGCTTCGCGGTGCTCTCGGCCGCCGGGTTCGCCGTCGCGACCCTGGCCATCGACGCCGGGCTGCCCTGGCTGGTCCGCGTCGGCCTCTTCCTCGCGGGCACGGGCATGGGCGTGTGGGACGCCGCCATGAACCTCGAGGGCGCCGTCGTCGAGCAACGGCTCGGCAAGGCGATCATGCCCCGGTTCCACGCCGCGTTCTCCTTCGGCACCGTCGCCGGCGCGGGCGTCGGGGCGCTCGCGGCCTGGGCGCAGGTGCCGCTCACGGCGCACCTCGTGTCCGTCGTCGTCCTCGACGCCCTCGTCGTGGCGCTGTGCGTGCGGGCGTTCCTGCCCGCGCACGAGGCCGGCGCCGTCGTGACCGACGCCGGGGACCAGGACGCCGCCGCCGACCCGGCCACCGCCGTCGAACCCTCCCGGGGCCACTCGGTCAAGGACACCCTGGCGACCTGGCGCGAGCCGCGCACCCTGCTCATCGGGCTCGTCGTGCTGGCCGCCGCCCTGACCGAGGGGGCCGCCAACGACTGGGTCGGGCTCGCCACCGTCGACGGGTTCGGTACCGGCGACGGCATGGGCGCGGTGGCGCTCGCGGTGTTCCTCGTCGCGATGACCCTGACCCGCCTGGTCGGCACCGAGATCATCGACCGGTTCGGCCGGGTCGTCGTGCTGCGCGGTGGTGGGATCGCGGCACTGGTCGGCGTGAGCGTCTTCGCCCTCGTGCCGAACCTCGTCGTGGCCATGGTCGGGGTGTTCCTCTGGGGCGTCGGGACCGGGCTCGGCTTCCCGATGGGGATGTCCGCGGCCGCCGACGATCCGCGGCGAGCCGCCCTGCGCGTCGCCGTCGTGTCCACGATCGGCTATTCGGCGTTCTTCGTCGGGCCGGCGCTCATCGGGTTCCTCGCTGAGATCACCGGGTACCGCCTCGCGCTGCTCGTGCTGGCGCTGCCCGTCGTCGTCGGGCTGTTCGTCGCCGGGGCGGCGCGGCCGCTGCCAAGCGCGGCCGCAGGTACGGACGCGCAGAGATAGMDRRRVNSSAPTRAVPRPVRGAVVAVYGVFVAAGFGMATWASRIPAVRDGLDFTEAQMGVLLLTASIGSICALPLSGMITSRLGAARTVLGFAVLSAAGFAVATLAIDAGLPWLVRVGLFLAGTGMGVWDAAMNLEGAVVEQRLGKAIMPRFHAAFSFGTVAGAGVGALAAWAQVPLTAHLVSVVVLDALVVALCVRAFLPAHEAGAVVTDAGDQDAAADPATAVEPSRGHSVKDTLATWREPRTLLIGLVVLAAALTEGAANDWVGLATVDGFGTGDGMGAVALAVFLVAMTLTRLVGTEIIDRFGRVVVLRGGGIAALVGVSVFALVPNLVVAMVGVFLWGVGTGLGFPMGMSAAADDPRRAALRVAVVSTIGYSAFFVGPALIGFLAEITGYRLALLVLALPVVVGLFVAGAARPLPSAAAGTDAQRNANANANANA
AK018_048572109hypothetical proteinGTGGTGATCGCCGCGGCGACGGCGCTCCTGACGCTGTCGCTCGCGGCGATCGTGCTGGTCACGGCGACGTACGAAGGTCGGGTCGAGCGCACCGTCGCACGGACTCCGCTCGTCGTCTCCGAGGAGACGTCCGCTGACTTCCGCTTCAAGCACACCTTCGGGGACGTGGAGCGACGTCAGTTCTCCGCCGTCTATGTCGAGCCGTTGTCGGACGATGCAGTGCCTCCACCAGGACTGGATGAGTGGCCTGATCCGGGAACGGTCGCCGTGTCGGAGGCGCTCCTCGGAGCGTCCGCGGAGCTGACCGCTCGATACGGCACGGTCACTGCGGTGATCGACGGCGACGGGCTGGTGGTCCCGAACGAGCGGCTCGCGTACGTGGTGCCTCAGGCCGATGTCCCGAGAACGGGGTCATGGCTCTCCGCATCCGGCTACGGCGGCACCAACCGCAGCCACATGGCGGGCGAGATCTGGCACGTCAAGGAACCTGAACAACTCGTCTATCTCGCGGTCTTCGCCCTCGTCGCACCGGCTCTGGTGCTGGTCGTCGGAGCTGCCCAGCTCGACGAACGGCGTCGGCGACGTCGGTACGAGGTTCTCGAGATCCTGGGGGCGAGGCCGGCCCGGCTGTGGCGGGACCAGGCGCTCCTCCTCGGTGGTCCGGTACTGGCCGGGACCGGTGCCGCATGTGTGGTCCTGCTGGTCGCCGCGCTTGTCGACCTTCCCCTGTGGGGCGCCGACTACTGGCTTCTGTCGGGAGACGTGCGGCGGGCAGCCGGCCGATTGACGCTGACCGCCGTCGGCGGGGGGCTGGCGGCCTGGCTTCTCGCAGCAGTGGTGAGTCGTCCGACCGCGGTCCGCGGCACACGCCCCCGATCGCGAGAGCCGCGGTATCCGGGGTGGGTAGCGGTGCTGGCTGCCGTCGTCATCGCCGTCACCGGGCGGGAGGCGATCCAGCGCGTCTCGGGGAGCACGGACGATGCTGCGGTCTGGATCCTGGGAGGGAGTCTGGTCGCGCTGATCCTGATGCCCTGGGTCTGCGGGTGGCTCGTCCGCACCGCAGGGGCCGTCATGCACTCGGTGGGGCGCCGGGCGGGTCGTCCCGCCGTCCTGGTCGTCGGTGCGCAGTCCGACGTGTCGCCCCGATCCAGTGCCCGGCTCGCCGCCGCATGCGCCATGGTCGTCCTGCTCGTCTCTCAACTCTTCGCCCTGGTGTCCATGGCGAACGATCTGGCCCGGGTCACCGAGGCCGCGCATGAACGCTATGACGGCATCTACGCGACGATCGGAGTCCCGAAGGATCCATCCGCGCAGAGTGCACTGGACTCGGTCGTGGCCGCCGTCGGGCAGGATGCGACGGTTCTCGACGTCCGGACGTGGGGCGAGGAGAACGACGACGGCCGTCTCCGATTCGTCGCGGAGGTCCGAGGCGATCGGGCGGCGATGGCGGACCTCGGCTTCGACGGTGAGTCCTTGACTCCGGACAGTCCGCTCCACGGCATGCTTGAACTGCAGGCGATGAACGACATCGCGGTCAACGAGGGGTCGCCCCGGATCGCTCTGGCCGAGGACGTCCAACAGATGCTTCTCGTGGTGGACGCCACCGGAGGCCTCGACACGCAGGAATTGCAGTCCGCGATCAGCGGCATCTCGGCACCGGCATGGAGCGTCCGTGCACCTGGCGACCTGGACATCGGTGGCGCGGAGCTCGAGGTCCACCAGACCCGCTGGGTCGCCTGGTTCGGCACGCTCGGTGCGGCGATGCTGCTCGCGGCCGTGAGCCTGCGGACATGGCAGGCGGCCGAGGAGCACGGGAAGCGCGGGGCGCCGCTGGCAGCCTTCACCAATGCCCGAGGCTTCGTGGCGGCGCGTGCCTGGACGCGCGGCGCCGTCGTCGCCGCGACGACGGTACTCGCGGGGGGCGTCGCTGCGTATCACCTGTCGTGGGTGGTCGACGCCACCGGCGCCGACGGTTCTCCGGTGCGCCGTACGATCCTCGTCCTGTGCGTGCTGGCCGCCGGCGCGGTCGCCGGATCGGCGGCCTACGAAGCCCGAAGTGGACGCGTCGCAGTGAGTCGATGGCGTCCCGGACAGAGGGAGACACGATGAMVIAAATALLTLSLAAIVLVTATYEGRVERTVARTPLVVSEETSADFRFKHTFGDVERRQFSAVYVEPLSDDAVPPPGLDEWPDPGTVAVSEALLGASAELTARYGTVTAVIDGDGLVVPNERLAYVVPQADVPRTGSWLSASGYGGTNRSHMAGEIWHVKEPEQLVYLAVFALVAPALVLVVGAAQLDERRRRRRYEVLEILGARPARLWRDQALLLGGPVLAGTGAACVVLLVAALVDLPLWGADYWLLSGDVRRAAGRLTLTAVGGGLAAWLLAAVVSRPTAVRGTRPRSREPRYPGWVAVLAAVVIAVTGREAIQRVSGSTDDAAVWILGGSLVALILMPWVCGWLVRTAGAVMHSVGRRAGRPAVLVVGAQSDVSPRSSARLAAACAMVVLLVSQLFALVSMANDLARVTEAAHERYDGIYATIGVPKDPSAQSALDSVVAAVGQDATVLDVRTWGEENDDGRLRFVAEVRGDRAAMADLGFDGESLTPDSPLHGMLELQAMNDIAVNEGSPRIALAEDVQQMLLVVDATGGLDTQELQSAISGISAPAWSVRAPGDLDIGGAELEVHQTRWVAWFGTLGAAMLLAAVSLRTWQAAEEHGKRGAPLAAFTNARGFVAARAWTRGAVVAATTVLAGGVAAYHLSWVVDATGADGSPVRRTILVLCVLAAGAVAGSAAYEARSGRVAVSRWRPGQRETRNANANANANA
AK018_04858729lolDCOG1136Lipoprotein-releasing system ATP-binding protein LolDATGACGACCGCTCCATCGGACGTGAACCAGTCGACACGTGGTTCCGGCGAACAGCCGACGCTCGAGGCGCGCGAAATCGGCTTCACCGCCGGGCGCACCACGATCCTCCGCGGGGTCTCCCTGTCGGTCGCCTCGGGTCGGTCCGTCGCGATTCAGGGCCGCTCCGGCTCGGGAAAGTCGACGTTGCTGACGTTGCTCATGGGACTATTCAGGCCGACGGCCGGGAGCGTACACCTCGGCTCGGTGGAACTCAGTGGCCTCTCGCGTGCTCGACGCGCGGACCTGCGTGCGCAGCACGTCGGTGTGGTCTTCCAGGATGCCGAGCTGCTCGACGAGCTGGCAGCCGAGGAGAACGTCATGCTGCCGGCCCTGTTGCAGAAGCGGGACCGGGCGGTGGCGCGCTCCCGAGCGCGGCACCTCCTGGCCGAGCTCGATGTGCCTCACGACCGGTCCTCGGCCGTGCTCTCAGGGGGCGAGCGGCAACGCGTCGGAGTGGCACGAGCCCTGATCAACGACCCGCAGGTCATTCTCGCTGACGAACCGACGGGTGCCCTGGACGCCGAGCTCAGGGACGCTGCCGCAAGCCTCCTGTTCGATCTCCCCGCCCGAACCGGGTGTGCACTCCTCGTGGTCACCCATGACCCTTCGGTGGCTTCGCGGGCGGACGAGCGTTACGTCATGGAAGAGGGTGAGCTCCGGTCGTGGCGTGCGGCGGCGGTACGGTCCTGAMTTAPSDVNQSTRGSGEQPTLEAREIGFTAGRTTILRGVSLSVASGRSVAIQGRSGSGKSTLLTLLMGLFRPTAGSVHLGSVELSGLSRARRADLRAQHVGVVFQDAELLDELAAEENVMLPALLQKRDRAVARSRARHLLAELDVPHDRSSAVLSGGERQRVGVARALINDPQVILADEPTGALDAELRDAAASLLFDLPARTGCALLVVTHDPSVASRADERYVMEEGELRSWRAAAVRSPGPT0024515_116DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_TRANSPORT,PGPT0024515-lolD-K09810NANA
AK018_04859537hypothetical proteinATGCAGACCGTTCAGGACTCGGACCGCGCCCAGCACGGGGGCAGGACCGAGCTCGATGCCGGGTCGCTGCTGCGCGAGGCGCGGGCGCGCCGAGGGCTGACGCAGCGTGCTCTCGCCGACCGGACTGGTATCGCGCAGACGACGATCGCGCGGATCGAGTCCGGGCGGCACCAGCCGAGCCTCGGAACGCTGACACGGCTGCTCGCGGGCGCCGGATTCCGGCCGACGCTCAATCTGGTGAACACCGTGCCGCCGTCGGAGCTCCTCGCCGAGCATCGGGACGGTGTCCTCGACGCAGCGCGACGTCATCGGATGGACCGGGTCCAGGTATTCGGGTCTGTGGCCCGGGATGAGGACGGCCCGTCATCGGACCTGGACCTCCTCGTCACTCCCGGAGACGACGCCACCCTCTTCGACCGGTCAGCGTTCGCGGCCGAGGTCGAGGACCTCCTCGGCGTCCATGTCGACGTCGTGAGCTCGACGGCGTTGCGGCCGCCGCGTGACGTCTACATCAGACGCGACGCCCGAGACCTGTGAMQTVQDSDRAQHGGRTELDAGSLLREARARRGLTQRALADRTGIAQTTIARIESGRHQPSLGTLTRLLAGAGFRPTLNLVNTVPPSELLAEHRDGVLDAARRHRMDRVQVFGSVARDEDGPSSDLDLLVTPGDDATLFDRSAFAAEVEDLLGVHVDVVSSTALRPPRDVYIRRDARDLNANANANANA
AK018_048601269murB_2COG0812UDP-N-acetylenolpyruvoylglucosamine reductaseGTGACACGTGGGAGTACCCAGGAGCCGTTGAGGGTCCTGGAGTCTAGGCGTGCTGCGCATGGCGTGACCTCCGCCGGCGCCGTCTACGCTGGAGCCGTGAGCCAGACCGTGCCGAGCGTCCCGGCCGAACCGACCGCCGTCGTCGGCCCCGAGACCGCCCCGAACCTGTCCGACCTGACCACGCTGCGCGTCGGCGGCCCCGCGGAGGCGTACGTCGAGGCCACCACCGAGGTCGAGCTGATCGATGCCGTCCGGACGGCCGACGACGCCGAGGTGCCGCTGCTCGTGGTCGGCGGCGGGTCCAACCTGCTCGTGGCGGACGGGGGTTTCGACGGGCTCGTCGTGCGCGACGTGCGCCGCGGCCTGGACGCGGACCTGTCGGCCTCCTGCGAGCTGGAGGGCCCGCCCTGCGGTGGCGCGACGGTCACGCTGCCCGCCGGCCAGGACTGGGACGAGTTCGTGGCCCACGCGGTGGCGAACGAGTGGATCGGCGTCGAGGCGCTGTCCGGGATCCCCGGGACGCTCGGCGCGGCGCCGGTGCAGAACATCGGCGCGTACGGCCAGGAGGTCTCCGGGGTGGTCGCCTCGGTACGCACCTGGGACCGGGCCACGGGACGACGGCGGACGCTCGCCCTGAGCGAGCTCGGCTTCGGCTACCGCACGAGCGTGCTCAAGCGGTCGATGCGACCCGACGCCGACGGCGAGCTCTGGTACCCGACGCCGCGGTTCGTCGTGCTCGCCGTCGAGCTGCAGATGCGTATCGGGTCGCTGTCGGCGCCGATCGCGTACCCGGAGCTGGCGCGCCGTCTCGGCGTCGAGGTCGGGCAGCGGGCGCCGTCGTCGGAGGTCCGCGATGCCGTCCTCGAGCTGCGCGGCGGCAAAGGGATGCTGCTCGACGGCGTCGGCGGGGCCGCGGCCCCGGACCACGACCGCTGGTCGGCCGGGTCGTTCTTCACCAACCCGATCCTGTCCGCGGACGGGGCCGATCGGCTTCCCGCGGAGGCTCCGCGGTTCCCAGCCGGTGACGGGCGGGTCAAGACCTCGGCCGCGTGGCTCATCGAGCACGCCGGGTTCACCAAGGGGTTCGGGCTGGCCGGCGAGCACTCGCCCGCGCGGCTGTCGACCCGGCACACGCTGGCCCTGACGAACCGCGGGGGAGCGACGGCGCAGGACCTCGTCGCCCTCGCCCGTGCCGTGCGCGACGGCGTGCGCGACGAGTTCGGCGTCGAGCTGGAGCCGGAGCCGGTGCTGGTGGGCCTCGCCCTCTGAMTRGSTQEPLRVLESRRAAHGVTSAGAVYAGAVSQTVPSVPAEPTAVVGPETAPNLSDLTTLRVGGPAEAYVEATTEVELIDAVRTADDAEVPLLVVGGGSNLLVADGGFDGLVVRDVRRGLDADLSASCELEGPPCGGATVTLPAGQDWDEFVAHAVANEWIGVEALSGIPGTLGAAPVQNIGAYGQEVSGVVASVRTWDRATGRRRTLALSELGFGYRTSVLKRSMRPDADGELWYPTPRFVVLAVELQMRIGSLSAPIAYPELARRLGVEVGQRAPSSEVRDAVLELRGGKGMLLDGVGGAAAPDHDRWSAGSFFTNPILSADGADRLPAEAPRFPAGDGRVKTSAAWLIEHAGFTKGFGLAGEHSPARLSTRHTLALTNRGGATAQDLVALARAVRDGVRDEFGVELEPEPVLVGLALPGPT0024115_87DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024115-murB-K00075NANA
AK018_048611038hypothetical proteinATGACGGGACCGGGTCGCCCGCCGGGGCGCCGAGCGGCCGCGGCGGCCGCCGTCGTCGCGCTGCTCCTGCTCGGGGCGTGCGGGCCCGCGACGAGCGAGCCGACCGACACCGCCGCGTCCGCGACGCCGACGCCGCCGTCGCCGGTGGCAGACCCGTCGGCCGCCGCGTCCATGACACCGTCCGCGGTCCCGTCACCCGAGGCGAGCCCCGACGCCACCCCCTCGGTCGGGGCCTCGCCGGAGCCCGAGCCCTCGCCGTCCATGACCACGCAGACCTCGCCGGCGTCCACGGCGGACCCTTCGGACGGGACGGCCGAGCCTGACGCCGCCGACGACGAGTCCGACGGGACCCAGGACGGCGCGTCGTCCGACACGCAGAAGCCCGACGAGAAGAAGACCGAGAAGAAGCCGGAGAAGAACGCTCCTGCCCCGGAGCCGGACTACGTCGAGGTCGGCTCCCGGGGTGCGGAGGTCCGCGAGCTGCAGGAGCGGCTGGTCGAGCTCGGCTACTTCCTGCCGAGCGTCGACGGGGTGTTCGGCCCGCAGACGCAGCAGGCCGTCTGGGCGCTGCAGAAGGCGGCGGGCCTGTACCGCGACGCCGTCGTCGGCCCGCGGACCGAGTCTGCCCTGGACGACGGCGTCCGCCCCCGCACGGTCTCGTCGTCGGGCAAGGTCGTCGAGATCGACCTGGACCGCCAGCTGCTGCTCGCCGTGCAGGACGGCAGGGTCGTGCGCGCGTTCAACGCCTCCTCGGGCAACGGCGAGACGTTCGAGGCCAAGGGTCGCTCCTACCGGGCCACGACGCCGCGCGGGACCTTCGCCGTCTACATGGAGCGCGACTACCTGCACGAGTCCACGCTGGAGCTCGGGGCGATGTACCGGCCGAAGTACTTCACCGGCGGCATCGCCGTGCACGGTTCACCCTCGATCCCGCCGGTGCCGGCCTCGCACGGGTGCATCCGGGTGTCGAACGCGGCGATGAACTGGCTGTGGGACTCCTGGGGGATGCCGCGGGGCACGACCGTCGTCGTGCACTGAMTGPGRPPGRRAAAAAAVVALLLLGACGPATSEPTDTAASATPTPPSPVADPSAAASMTPSAVPSPEASPDATPSVGASPEPEPSPSMTTQTSPASTADPSDGTAEPDAADDESDGTQDGASSDTQKPDEKKTEKKPEKNAPAPEPDYVEVGSRGAEVRELQERLVELGYFLPSVDGVFGPQTQQAVWALQKAAGLYRDAVVGPRTESALDDGVRPRTVSSSGKVVEIDLDRQLLLAVQDGRVVRAFNASSGNGETFEAKGRSYRATTPRGTFAVYMERDYLHESTLELGAMYRPKYFTGGIAVHGSPSIPPVPASHGCIRVSNAAMNWLWDSWGMPRGTTVVVHNANANANANA
AK018_048621143COG1816Aminodeoxyfutalosine deaminaseATGGTGATCGTCAACCACCGAGGGACTACTGTACGCGACGCGGGACGCTGGGTCGAACCACGCACGAGGGACCGGTTCGTCACAGCCCCGACGCCGGCGTGGGGCAGACTGTCCCGGGTGCGTGACCTGGCATCGCTCCCCAAGGCCCACCTGCACCTGCACTTCACCGGATCGCTGCGGGTGTCGTCGCTGCGCGAGCTCTCCACCGCGTACGGCCTGCGGCTCCCGTCGGCGCTGACCGACGGCGTCGCCCTGCGTGTCCCGGCCACGGAGCGGGGCTGGTTCCGGTTCCAGCGCCTCTACGACGCCGCCCGGCACTGCGTGCGCTCCGAGGCCGACATGCGCCGGCTCGTCGACGAGGCTGCCGCCGACGACGCCGCCGAGGGGTCCGGACGCCTGGAGATCCAGGTGGACCCGACGTCGTACGCGCCCTTCGTGGGCGGCATCACCCCGGCGGTGGAGATCGTCCTGGACGAGGCGCGGGCCGCGAGCGCCCGGCACGGGCTGGAGGTCGCCGTCGTCGTCGCCACCTCCCGCATGAAGCACCCGCTGGACGCCCGCACGCTGGCGCGGCTGGCCGCCCGGTACGCCGGGGAGGGGCCGGGCGAGGTCGTCGGCTTCGGCCTGAGCAACGACGAACGGCGCGGCGACACGCGCGAGTTCGCGCGGGCCTTCGCGATCGCGCGGCGCGCCGGACTGGCCTCGGTCCCCCACGGCGGTGAGCTGCTGGGGCCGACGCACGTGCGCGAGGTCGTCGCCGCGCTCGACCCGGACCGGCTCGGCCACGGGGTGCGCTCGATCGAGGACCCGGCCCTGCTGGGCTCGCTGGTCGAGTCCGGCGTCGCCCTGGAGGTGTGCCCGGCCTCCAACGTCTCCCTCGGCGTCTACGAGCACGACGAGGACGTCCCGCTGCGGCAGCTCGTCGAGGCGGGGGCGCAGGTGGCCCTCGGCGCCGACGACCCGTTGCTGTTCGGCTCCCGCCTGCTGGACCAGTACGAGACCGCCCGCACCGTGCACGGGTTCAGCGACGCCGAGCTGGCCGACCTCGCCCGGGCCTCCATCCGCGCCTCGCGCGCTTCCCGGGCCACGCGTCGACGACTGCTTGACGGCGTGGACGCCTGGCTGGCGGACGGGCCCGCCTGAMVIVNHRGTTVRDAGRWVEPRTRDRFVTAPTPAWGRLSRVRDLASLPKAHLHLHFTGSLRVSSLRELSTAYGLRLPSALTDGVALRVPATERGWFRFQRLYDAARHCVRSEADMRRLVDEAAADDAAEGSGRLEIQVDPTSYAPFVGGITPAVEIVLDEARAASARHGLEVAVVVATSRMKHPLDARTLARLAARYAGEGPGEVVGFGLSNDERRGDTREFARAFAIARRAGLASVPHGGELLGPTHVREVVAALDPDRLGHGVRSIEDPALLGSLVESGVALEVCPASNVSLGVYEHDEDVPLRQLVEAGAQVALGADDPLLFGSRLLDQYETARTVHGFSDAELADLARASIRASRASRATRRRLLDGVDAWLADGPAPGPT0021520_1527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488NANA
AK018_04864255secE_2Protein translocase subunit SecEGTGAGCGAGTTGCCGGCTGAGGCCAGCACGCACGACACCGGTTCGGGCAAGGAACGTCGCAACGTCTTCGCCCGGATCGCTCTGTTCGTCCGCCAGGTGGTCGGCGAGCTCCGCAAGGTGGTCACCCCGACCCGGTCGGAGCTGATCAACTACACGATCGTCGTCATCGTGTTCGTCACGATCGCGATGCTGTTCGTGACCGCGCTCGACTACGTCCTCGGCCTCGGAGCCTTCTGGCTCTTCGGGGACGGCTGAMSELPAEASTHDTGSGKERRNVFARIALFVRQVVGELRKVVTPTRSELINYTIVVIVFVTIAMLFVTALDYVLGLGAFWLFGDGPGPT0025715_2024DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025715-secE-K03073NANA
AK018_04865807nusG_2COG0250Transcription termination/antitermination protein NusGGTGTCCCAGGATCCTCTGGAGCAGACGGAGAACGTCGACCCCACCCAGCCCGACGCCGACGGCGCCGAGGCTGACCTCGACGTGCCCGCGGACGCGGACACCACCGAGCAGGCCGAGGAGACCGAGGCGGAGGCCGCGGAGCCCACGCAGGACGAGGGCGCGGCGGACGCCGACGGCGACGTGATCGAGGACCCGGCCGAGGAGCTGCGCCGCACGCTGCGCGGCCAGCTGGGCGACTGGTACGTCATCCACTCCTACGCCGGCTACGAGAACCGTGTGAAGGTCAATCTGGAGAACCGCACCCAGAGCCTGAACATGGAGGACTACATCTTCCAGGTCGAGGTCCCCATGGAGGACGTCACCGAGATCAAGAACGGGCAGAAGAAGTCCGTCCGCCGCGTGCGGATCCCGGGTTACGTCCTGGTGCGCATGGACCTCACCGACGAGTCGTGGGGCGCGGTGCGCCACACCCCCGGCGTGACCGGGTTCGTGGGGCACACCCACCAGCCGGTCCCGCTGTCGCTCGACGAGGTGTTCGGCATGCTCGCGCCGACCATGCTCGAGGAGGCTCCGGCGAAGCCCGCCGCGGCCGCCGAGAAGGGCGGCGCCGGCGCGGCCGCGCAGCCCGCCATCGAGGTCGACTTCGAGGTCGGCGAGTCCGTCACCGTCACCGACGGTCCGTTCGACACGCTGCCCGCGACGATCTCCGAGATCAACGCCGAGGCCCAGAAGCTCAAGGTCCTCGTGTCCATCTTCGGCCGGGAGACCCCGGTCGAGCTGTCGTTCAACCAGGTCGCCAAGATCTGAMSQDPLEQTENVDPTQPDADGAEADLDVPADADTTEQAEETEAEAAEPTQDEGAADADGDVIEDPAEELRRTLRGQLGDWYVIHSYAGYENRVKVNLENRTQSLNMEDYIFQVEVPMEDVTEIKNGQKKSVRRVRIPGYVLVRMDLTDESWGAVRHTPGVTGFVGHTHQPVPLSLDEVFGMLAPTMLEEAPAKPAAAAEKGGAGAAAQPAIEVDFEVGESVTVTDGPFDTLPATISEINAEAQKLKVLVSIFGRETPVELSFNQVAKINANANANANA
AK018_04866432rplK_2COG008050S ribosomal protein L11ATGCCTCCCAAGAAGAAGGTCTCCGGCCTCATCAAGCTCCAGATCCAGGCCGGGGCGGCGAACCCGGCCCCGCCGATCGGCCCCGCGCTGGGTCAGCACGGCGTGAACATCATGGAGTTCTGCAAGGCCTACAACGCGGCGACCGAGTCGCAGCGCGGCAACGTCATCCCGGTGGAGATCACGGTCTACGAGGACCGCTCCTTCACCTTCATCACGAAGACGCCGCCGGCCGCGGAGCTCATCAAGAAGGCCGCCGGTGTGGCCAAGGGCTCGGCGACCCCGCACAGCGCCAAGGTCGCCCAGCTCACGCAGGACCAGGTCCGCGAGATCGCCGAGACCAAGATGCCGGACATCAACGCGAACGACATCGAGGCCGCGAAGAAGATCATCGCCGGCACCGCCCGCTCCATGGGCATCACCGTCCAGGACTGAMPPKKKVSGLIKLQIQAGAANPAPPIGPALGQHGVNIMEFCKAYNAATESQRGNVIPVEITVYEDRSFTFITKTPPAAELIKKAAGVAKGSATPHSAKVAQLTQDQVREIAETKMPDINANDIEAAKKIIAGTARSMGITVQDNANANANANA
AK018_04867708rplA_2COG008150S ribosomal protein L1ATGGCACAGCGCAGCAAGGCGTACCGCGCCGCCGCGGCGAAGATCGACCGCGACAACCTGTACACCCCCCTCGAGGCCGTGAAGCTCGCCAAGGAGACCGCCTCGAAGAACGCCGACTCGACCGTCGAGGTCTCGTTCCGGCTGGGTGTCGACCCGCGCAAGGCGGACCAGCTGGTCCGTGGCACGGTCAACCTGCCGCACGGCACCGGCAAGACCGCTCGCGTGATCGTCTTCGCGAACGCGGCCAAGGCCGAGGAGGCCGCCGCGGCCGGTGCGGACGAGGTCGGCGGCGACGAGCTCATCGCGAAGGTGGCCGGTGGCTACACCGACTTCGACGCGGCCGTCGCGACCCCGGACCTCATGGGCAAGGTCGGTCGTCTCGGCAAGGTGCTCGGCCCCCGCGGCCTCATGCCGAACCCCAAGACCGGCACCGTGACCATGGACGTCACCAAGGCCGTGTCGGACATCAAGGGCGGCAAGATCGAGTTCCGCGTCGACAAGCACGCGAACCTGCACTTCATCATCGGCAAGGCCTCGTTCGACGAGACCGCGCTGGTGGAGAACTACGCGGCGGCGCTGGACGAGGTCCTGCGTCTGAAGCCGTCCTCCTCGAAGGGCCGCTACATCTCGAAGGCGACCCTCGCGACGACGTTCGGCCCGGGCATCCCGGTCGACCCGTCGAAGACGGCGAAGCTCACCGAGGCCTGAMAQRSKAYRAAAAKIDRDNLYTPLEAVKLAKETASKNADSTVEVSFRLGVDPRKADQLVRGTVNLPHGTGKTARVIVFANAAKAEEAAAAGADEVGGDELIAKVAGGYTDFDAAVATPDLMGKVGRLGKVLGPRGLMPNPKTGTVTMDVTKAVSDIKGGKIEFRVDKHANLHFIIGKASFDETALVENYAAALDEVLRLKPSSSKGRYISKATLATTFGPGIPVDPSKTAKLTEANANANANANA
AK018_04868723hypothetical proteinATGGGTGCGGGCACGGGGGAGCGTGGGCGGCGGGACGCCGCCCTAGGCTCGTCGGGTCCGCCTGAGTCGGGTACCACCGGGTCGGGGAACATCACGCACACCACGCGAGGAGCCATGACGCGTCCAGCCGAGACGTCCAGCCTGGGGGACCGCGCCGCCGTGGCGGTGATCGAGTACCGCGAGGGGCGGCCGGGTGCGATGACCGACTTCGTCCGAGAGGCGTCGCCGTTGCTGTGGCGGACGGTCAGGTCGCAGGGCGTCTCGCGGGAGGCGGCCGACGACGTGGTGCAGCAGACGTGGGCCGCGCTCGTGCGCCACGTCGACTCGATCAGCGAGCCGAAGGCGACCCTGAAGTGGCTGCTCGTCACGGCACGCCGCGCGGCGTGGGAGGCCGTCCGCAAGGACCGGACGGACGACATGCGCCGCACCGGGCTGCCGGACGACGACGCCGAGACCGCGACGACGCTCCCGGACCCGGCGCCGGGTCCCGAGGCGGAGCTGCTGCGCAACGAGCGCGACCGCACGCTGTGGGCCGCGCTGCGTGAGCTGCCGGAACGGTGCCAGGAGCTGCTGCGACTCGTCTCGCTCGCCGACCGCCCGGACTACAGGTCCATCTCCGCCGCGATCGGGATGCCGATCGGGAGCATCGGCGCTACCCGGGGGCGGTGCCTGGCCAAGCTGCGCGCCGTCCTCACCGACCGAGGGGAGACCTCATGGACATGAMGAGTGERGRRDAALGSSGPPESGTTGSGNITHTTRGAMTRPAETSSLGDRAAVAVIEYREGRPGAMTDFVREASPLLWRTVRSQGVSREAADDVVQQTWAALVRHVDSISEPKATLKWLLVTARRAAWEAVRKDRTDDMRRTGLPDDDAETATTLPDPAPGPEAELLRNERDRTLWAALRELPERCQELLRLVSLADRPDYRSISAAIGMPIGSIGATRGRCLAKLRAVLTDRGETSWTNANANANANA
AK018_04869498hypothetical proteinATGGACATGACCGAGTTCGACGACGTGCCCGGTGCGGACGCACCGCTGGACGCGTCCGACGTCGCGCTGCTCGTGCGCGTCGCGGAGCTGGACGACCGTCTCGACCCCGTCCCCGACGGACTCGCCGAGCGTGCGCTGTTCGCCATGACGCTCGCCGGCCTGGAGGCCGAGGTCATGGAGCTGCAGGTCGTCGAGACCCCGGTCGGGTCGGTCCGCAGCGACACCCCGGTGGAGACGCGCACCATCACGTTCACCCACGAGCGGCTGACGGTCATGATCGCCCTCTCGGTGGGCGCAGCGCCCGGGACGGTCCGGATCGACGGCTGGATGGCACCGGCCGAGGCTCTGGAGATCGTGCTGCGCCGGCCTGACGAGGAACGCGCCACGATGTCCGACGAGGACGGCCGATTCGTCCTCGAGGACGTCCCCCGGGGGCCGGCGAGCCTCCTGGTGCACCAGGGCGAGACGCCGGTGACGACGCCCGTCATCGAGCTGTAGMDMTEFDDVPGADAPLDASDVALLVRVAELDDRLDPVPDGLAERALFAMTLAGLEAEVMELQVVETPVGSVRSDTPVETRTITFTHERLTVMIALSVGAAPGTVRIDGWMAPAEALEIVLRRPDEERATMSDEDGRFVLEDVPRGPASLLVHQGETPVTTPVIELNANANANANA
AK018_048701740hypothetical proteinGTGAGCGAGACGACCATCGAGGACGCGGCCGGCGGGCGGCGCCCGGTCCGTCACCTGGACCCCGACCGGGTCCGACGGAGCCCGGGCGCGTCCCGGGTCGGGGAGACCGACTACGTGGCCGACCGGCTCATCGTCCGGGGCGGGCTGCCCGAGGACCTGCGCCGCCGTGTCGTCCCGGAGGCCGCCGCGCTCGGTGCCGGCGGGCAGGGAGCGATGGTCGCCCTGGACGACTGGGCCGGCGAGGGCGAGCCGACGAGCTGGTTCGACGGCGTGCGGCGGATCGCGACCGAGATGGGGTACCGCGTCGTCTACGACGGCACCTTGGGCGACCTCGCCGGGGACGAGGTCGACGACGAGACGTTCGGCTACGCGCTGCGCCTGGTCCCGCTGCGGGACGACGACGTCGAGGTCGACGTCTGGCAGGTCCTGGAGCGGATCGTCGGCGAGCTCGGTGCGCTCGACGAGCGTGACGACGCCGACGAGGGAGACCGTCCGACCCCTCGCGTCGGCCTGGACCACGTGCTGCGGGCGCAGCGTCACCGCTCCACCCCGCTGCCGTTCGTGCCGGTCGCGCGGCCACGGAGCACCCCGCTGCCGTTCGGCGCGATCGACGAGTACGGGGTCGCCGGCAGCGGCGGTCTGACACCGGTGGGATACCTGGGAGCGCCGCCCCGGCGGTCGCTGGCCGACGGGCCGACGCCGTGGCACGCCGCCGACGGGACGCGGCGACCCGTGGTCGCCGTCGTCGACACGGGTGTCGGGTCGCACGAATGGTTCGGCGACTACGACCCGCACGACCCGCAGGACAGCGCCGTCGTGGTGCGCACGGCGACGCTCGACGGCCGTCCGGTGGGCACCTTCCCCGTGCCGCGACACGCCACCGCGGACGCGGACTTCGGCGGCCTGAGCGTCGACCCGTTGACGGGTCCGCTCGATCCCGTGGCCGGTCACGGCACCTTCATGGCCGGTGTGGTGCACCAGGTGTGCCCCGACGCCGTGCTGATGGCCGTGCGCGCGTTCGGTGGGTCCGGCGACATCCCCGAGTGGGAGGTGCTGCACACCCTGTGGCGGCTCCTGCGGTTCCACCGGCGCGGCGTCGCCGGCGACCCGGGTTACCACCAGGTCGACGTCGTCGTGCTGGCGATGGGCTACTACCACGAGCAGCCGGAGGACTACGGCTACGACGGGCCTCTGCGCCGCGTGCTGCGCGCGTTGCGCCGGGCCGGAGTGGTCGTCGTGCTCGCCTCGGGCAACGACGGGACCACCCGGCCGATGTTCCCGGCAGCCTGGGCCCCGCACCTGCAGCAGGACCCCGACGCGCTTCGACCCGTGGACGGAGGCCAGCTCTCGGACCGGCACCCACCGCTGCTCGTCGCCGGTGCCGCCAACCCTGACGGCACGACCGCCATCTTCAGCAACGACGGTCCGTGGGTGACGTGCATCCGCCCGGGGGCCGCCGTGCTGTCGACGATGCCCACGACGCTCGACGGCCCCGAGACCCCGGAGGCCTCGGTCGCCGAGCGTCTCCGGCCGGGGACCCGGGCCACGGTCGACCCCGACGACTTCACCGGTGGTTTCGCCACGTGGAGCGGGACGTCGTTCTCGGCCCCCTACCTCGCGGGCGAGGTCGCTGCCGCCCGGCTGCGGACGGGCGCCCGCGGCGAGGTGGGGGTCGACGGCGCGTGGGATGCTGTGACCAGGACGGTCGGACTCGACCGGGCGGGCGGGGACGGTGCGTAGMSETTIEDAAGGRRPVRHLDPDRVRRSPGASRVGETDYVADRLIVRGGLPEDLRRRVVPEAAALGAGGQGAMVALDDWAGEGEPTSWFDGVRRIATEMGYRVVYDGTLGDLAGDEVDDETFGYALRLVPLRDDDVEVDVWQVLERIVGELGALDERDDADEGDRPTPRVGLDHVLRAQRHRSTPLPFVPVARPRSTPLPFGAIDEYGVAGSGGLTPVGYLGAPPRRSLADGPTPWHAADGTRRPVVAVVDTGVGSHEWFGDYDPHDPQDSAVVVRTATLDGRPVGTFPVPRHATADADFGGLSVDPLTGPLDPVAGHGTFMAGVVHQVCPDAVLMAVRAFGGSGDIPEWEVLHTLWRLLRFHRRGVAGDPGYHQVDVVVLAMGYYHEQPEDYGYDGPLRRVLRALRRAGVVVVLASGNDGTTRPMFPAAWAPHLQQDPDALRPVDGGQLSDRHPPLLVAGAANPDGTTAIFSNDGPWVTCIRPGAAVLSTMPTTLDGPETPEASVAERLRPGTRATVDPDDFTGGFATWSGTSFSAPYLAGEVAAARLRTGARGEVGVDGAWDAVTRTVGLDRAGGDGANANANANANA
AK018_048712505hypothetical proteinGTGTCGCCGCTCGACCCCGCCCTGCACGGCGCCTGGGTGGTCGACCTGCGGGTGCGGGCGCTCGTGGGCGAGGCCTCCTGCACCTACGGGCTCTCCGGAGACCTCGACGGTGCCCGACGGCTCGTGGCCGAGGCGCTCGTGGTGGCCGACGCAGGCGACCACCACGAGCTGTCCGCGGTGGCGCACGGCCAGGACGGTCTGCTCCTGCTGAGGTCCGGCGACGCGCGAGGTGCCGCCGCCGCCTTCGACCGCGCGTTGTCGGCGGCCGACCCCGAGAACCACCGCGACCTGGCCGTCCTGCACATCAACCGCGGTGCGGCTGCCGGCGAGCTGCGCGACCTCGACGCCGACCTGCGCCACCACCAGATCGCTCTCCACCACGCCCGCCTCGACGGCAACGACCGCTATGCCGCGTTCGCGTTGTTCAACATCGGTTTCGCCTACTACCTGCGCGGAGACTTCCACCGCGCGCTGCGGAACATGGAGGAGTCGTCGGCGCTCCAGCCCGAGGGGTCGGACGGCTGGTCCGAGGTGGGGCGCGCCCAGGTCCTCCTCGACGCGGGACTCGTCACCGAGGCGGAGAAGGTGCTCGCGGACTCCGCCGACATCCTCTCGGCCGAGGACCTGACCGGCGAGATGGCCGACGCTCTCCTGGCGCGGGCGCGCTGCGCGATCCTGCTGCGCCGACCGGAGGAGGCGCTGCGGTGGGCCGGGCGGTCGCGCCGGGCGTTCGCGCGCGTGGGCAACGACTCCTGGGCTCTGGCGGCACGGATCACGGCGTTGGAGGCCAGGCTCGCCCTGGACCGTGAGCGCGGGACGGCGCGCCGCACCGCGTTGCGTCGACGGCGGGACGACGCCCTCGCCCTGGCGTCGGAGGGCGGCGACGAGTCTGCGGCACCGAGCCGCGAGGCCGCCGTGGCGGCCCGGCTGCTCGCCGCGGAGTGGTCGCTGCTCGCCGGCGACCGCGACCGGGCGGCCGAGATCGTGGGCGAGGTGCCGCGGCTCGGGAGCAGCCCGCTCCCGCTGCGCATCCATCACGAGTCGGTCCGCGCCCAGGTGGCGTTCGCCGGCGGCGACCGGCGTCGCGGCCTGCTGGCCGTCCGCCGCGGCCATCGCGTGCTCGCCGACCACCGGGCCCGTCTCGGCTCGGTCGACACGGTCACCGCCGCGGCAGCGCACGGGACCCGGATCGCGCGCGTCGACGTCGAGGCGGCGCTGGCCACACGGCGACCGCGGGCCGTCTTCGACGCCCTGGAGAGGGGGCGAGCGGCGTACGCGGGAGCCGCTCGGGTGCGCCCACCCGACGACGAGCAGCTGGCCGAGCTCCTGACGATGGCCCGTGCGGCCGCGGAGGACGCCCGGGAGCTCGCGACGAGCACGGACCCCGGCGACCGGGCGCGGGCCGCCAAGCGGTCGGCGGACGCCCATCGGCTGCAGCAGCGGGCGCGACGACGCTCGTGGCAGCTCGCGGGGACGGGAGACCGGACGATGCCCGAGCCCACGACCGCCCGGGGCCTGGTCCGAGACCTGCGTGCGGCCCGCTCGGACGCCGTCGTCGTGTCCTACCTGCTGACCGAGCGCGTGACGGCGGTCCGGCTCGACGCGACGGGTGCGCGGCTGGTCGAGCTCGGCTCGTCGGCCGAGGCGGCCGAGCTGGCCCGCCGGGTCCGGCAGGACGTCGACGTGCTGGCCAACGGGCTCATCCCCGCCCCGATGCGCGAGGTGGCCGCGACCTCGGCCCGGCGGTCCCTCGAGCGACTCGACGACCTGCTGCTGGGGCCGCTGGAGGTGCACGGACCGCTGCACGTCGCGGCGCGCGACGGCCTGCTGGCGGTGCCGTGGGCGTCCCTGCCGTCCCGCGCGGGGATCGCGACCAGCGTCGACTCGTGGGTGGCACACTACGAACCGGTCGACGGCGGGGACCGGGCCCGGGCAGCGCGAGCGCTGGTCGTCGCGGGGCCCGGTCTCGCGGCGGCGGACGACGAGGCGCGGCTCGTCGCCGAGGAGTGGGTGGCGGCCGATCCGCGGACCGGGGAGCGCGCGACGTGCGCGGCGGTCCGGGAGTCCCTCGCCGACGTCCAGGTGGTGCACCTCGCCGCGCACGGCGTCCACGAGCCCGACAACCCGCTGTTCTCCTTCGTCCGGCTCGCGGACGGACCGTTGTACGCGCACGAGCTGGACGGCGTGGACCTGCGGGGGACGGTCGTCGTGCTGTCCGCCTGCGAGGTCGGACGTGCTTCCGTGCGTCTGGGCGGCGAGCCGCTCGGGCTGACGAGCGTCCTGCTGCGCCTCGGGGCGCGAGCGGTCGTCGCGGCGGTCGCGCCGCTGCGGGACGAGGTCGCGGCACGCGTCATGCCGCGGCTGCACTCAGCGCTGCGCGACGGCCGGGAACCGGCCACGGCGTTGGCCCTCGCCGTGGCGCCGGAGCCCGAGCCCGTCCCCCTCGTCTGCTTCGGCCCGCTGGCCGTCGAGCGCGACGTGCAGGAAACGACCGCCACGGTGTGAMSPLDPALHGAWVVDLRVRALVGEASCTYGLSGDLDGARRLVAEALVVADAGDHHELSAVAHGQDGLLLLRSGDARGAAAAFDRALSAADPENHRDLAVLHINRGAAAGELRDLDADLRHHQIALHHARLDGNDRYAAFALFNIGFAYYLRGDFHRALRNMEESSALQPEGSDGWSEVGRAQVLLDAGLVTEAEKVLADSADILSAEDLTGEMADALLARARCAILLRRPEEALRWAGRSRRAFARVGNDSWALAARITALEARLALDRERGTARRTALRRRRDDALALASEGGDESAAPSREAAVAARLLAAEWSLLAGDRDRAAEIVGEVPRLGSSPLPLRIHHESVRAQVAFAGGDRRRGLLAVRRGHRVLADHRARLGSVDTVTAAAAHGTRIARVDVEAALATRRPRAVFDALERGRAAYAGAARVRPPDDEQLAELLTMARAAAEDARELATSTDPGDRARAAKRSADAHRLQQRARRRSWQLAGTGDRTMPEPTTARGLVRDLRAARSDAVVVSYLLTERVTAVRLDATGARLVELGSSAEAAELARRVRQDVDVLANGLIPAPMREVAATSARRSLERLDDLLLGPLEVHGPLHVAARDGLLAVPWASLPSRAGIATSVDSWVAHYEPVDGGDRARAARALVVAGPGLAAADDEARLVAEEWVAADPRTGERATCAAVRESLADVQVVHLAAHGVHEPDNPLFSFVRLADGPLYAHELDGVDLRGTVVVLSACEVGRASVRLGGEPLGLTSVLLRLGARAVVAAVAPLRDEVAARVMPRLHSALRDGREPATALALAVAPEPEPVPLVCFGPLAVERDVQETTATVNANANANANA
AK018_04872531rplJ_2COG024450S ribosomal protein L10ATGGCGAGGCCGGACAAGGCAGCCGCCGTCGCGTCGATCGCGGACAAGCTCCGTGACTCCAACGCGGCCGTGCTGACCGAGTACCGCGGGCTCTCCGTCGCTCAGCTCCAGGAGCTGCGTCGGTCGCTCAGCGGCAACGCAACCTACGCCGTGGTGAAGAACACGCTGACCAGCATCGCGGCCAAGGAAGCCGGTGTCGAGGGTCTCGACGCCGACCTCCAGGGTCCGTCCGCGATCGCGTTCGTGACCGGTGACCCGGTCGAGGCCGCGAAGGGTCTGCGTGACTTCGCCAAGGCGAACCCCGCACTGGTCATCAAGGGCGGTGTCCTCGAGGGGAACGCCCTGACCGCTGCGGAGATCACGAAGCTCGCGGACCTCGAGTCCCGCGAGGTTCTGCTGGCCAAGGCGGCCGGCGCGATGAAGGCCAAGATCAGCCAGGCTGCCTACGCCTTCAACGCCAAGCCGACCCAGGTCGCCCGAGTCATCGATGCCCTGCGTCAGAAGCAGGAATCGGCGGGCGCTGCCGCCTGAMARPDKAAAVASIADKLRDSNAAVLTEYRGLSVAQLQELRRSLSGNATYAVVKNTLTSIAAKEAGVEGLDADLQGPSAIAFVTGDPVEAAKGLRDFAKANPALVIKGGVLEGNALTAAEITKLADLESREVLLAKAAGAMKAKISQAAYAFNAKPTQVARVIDALRQKQESAGAAANANANANANA
AK018_04873393rplL_2COG022250S ribosomal protein L7/L12ATGGCGAAGCTCAGCACTGACGAGCTCCTGGCCCAGTTCGAGGAGCTGACCCTCATCGAGCTCTCCGAGTTCGTGAAGGCCTTCGAGGAGAAGTTCGACGTCACCGCCGCCGCCCCGGCCGCCGCGGTCGTCGCCGGCGCCCCGGCCGGTGGCGGCGACGCCGCCCCCGCCGAGGAGGAGCAGTCCGAGTTCGACGTCATCCTCGAGGGTGCCGGCGACAAGAAGATCCAGGTCATCAAGGAGGTGCGCGCGCTCACGTCCCTCGGTCTCAAGGAGGCCAAGGACCTGGTCGACGGCACGCCGAAGCCGGTCCTGGAGGGTGTCGACAAGGACGCCGCCGAGAAGGCCAAGGAGGCCCTCGAGGGCGCCGGTGCTTCCGTCACCCTCAAGTGAMAKLSTDELLAQFEELTLIELSEFVKAFEEKFDVTAAAPAAAVVAGAPAGGGDAAPAEEEQSEFDVILEGAGDKKIQVIKEVRALTSLGLKEAKDLVDGTPKPVLEGVDKDAAEKAKEALEGAGASVTLKNANANANANA
AK018_048743513rpoB_2COG0085DNA-directed RNA polymerase subunit betaTTGGCTGCCTCGCGCACCCCTTCTGCTCCGTCCGCCGACGCTATCGCGAACCGTACCGCCTCCCGCCGACTCTCGTTCGGCCGGATCCACGAACCCCTCCAGGCGCCGGACCTGCTCGGCCTCCAGCTCGAGAGCTTCGACTGGCTGCTGGGCAACGAGTCCTGGCAGGCCCGGGTCGAGGCCGCGATCGAGGCCGGACGCCACGACGTCCCCGAGTCCTCCGGTCTGGAGGAGATCTTCGAGGAGATCTCCCCGATCGAGGACTTCGGCCAGTCGATGTCCCTGTCCTTCGCCAACCACCGCTTCGAGCCCCCGAAGTACACGGTGGAGGAGTGCAAGGAGAAGGACTTCACCTACTCGGCGCCGCTGTTCGTGACGGCCGAGTTCGTCAACTACACGACGGGTGAGATCAAGAGCCAGACGGTGTTCATGGGCGACTTCCCGCTCATGACCGACCGCGGCACCTTCGTCATCAACGGCACCGAGCGCGTCGTCGTCTCGCAGCTCGTCCGTTCCCCCGGCGTCTACTTCGAGCGCACGCCCGACAAGACCAGCGACAAGGACGTCTTCTCCGCGAAGATCATCCCGTCCCGCGGTGCCTGGCTGGAGTTCGAGATCGACAAGCGCGACGCCGTCGGCGTCCGCGTCGACCGCAAGCGCAAGCAGCCCGTGACGGTGCTGCTCAAGGCGCTCGGCATGACCGAGTCGGAGATCCGCGAGGAGTTCGGCGAGTTCCCCACGATCCTGGACACCCTGGAGAAGGACCACGTCCACACCCAGGACGAGGCCCTCGTGGACCTGTACCGCAAGATCCGCCCGGGTGAGCCGCCGACGGTCGAGGCCGGCCGCGCGCTCGTGGAGAACTTCTACTTCAACCCCAAGCGCTACGACCTGGCGAAGGTCGGCCGCTACAAGCTGAACAAGAAGGTCGGGGTCACCGCCGAGCTCAGCGACAGCACGCTGTCGCTGGCCGACGTCGTCGCCACCATCAAGTACCTCGCCGCGCTGCACGCCGACAAGTCCTCCCTCCCGGGCACGCGGGACGGGGAGCCGTACGACGTGCGCGTCGAGACCGACGACATCGACCACTTCGGCAACCGCCGCATCCGTGCGGTCGGCGAGCTCATCCAGAACCAGGTGCGCACCGGGCTGTCCCGGATGGAGCGTGTGGTCCGCGAGCGGATGACCACGCAGGACGTCGAGGCGATCACGCCGCAGACCCTGATCAACATCCGCCCGGTCGTGGCCTCGATCCGCGAGTTCTTCGGCACCTCGCAGCTGTCGCAGTTCATGGACCAGAACAACCCGCTGGCCGGCCTGACGCACAAGCGGCGTCTGTCCGCGCTCGGCCCGGGTGGTCTGTCCCGCGACCGCGCCGGCATGGAGGTCCGCGACGTCCACCCGTCGCACTACGGCCGCATGTGCCCGATCGAGACGCCGGAAGGCCCGAACATCGGTCTGATCGGCTCGCTCGCCTCGTTCGGCCGGATCAACGCGTTCGGCTTCATCGAGACGCCGTACCGCAAGGTCCTCGCCGGCAAGGTGACCGACGAGGTCGTCTACCTGACCGCGGACGACGAGGACAGCTACGTCATCGCCCAGGCGAACACCACGCTGAACGAGGACGGCTCCTTCGCCTTCGACCGCGTGCTGGTCCGCACCAAGGGCGGCGAGACCGACGACGTCCCGGCCTCCGAGGTCGACTACATGGACGTCTCGCCGCGGCAGATGGTCTCCGTCGCGACGGCGCTCATCCCGTTCCTCGAGCACGACGACGCCAACCGTGCGCTCATGGGCGCCAACATGCAGCGCCAGGCCGTGCCGCTGGTCCGCTCCGAGGCCCCGCTGGTGGGTACCGGCATGGAGCGTCGCGCCGCGATCGACGCCGGCGACGTCATCGTCGCCACCAAGCCCGGTGTCGTCACCCAGGTCTCGGCCGACCTCATCACGGTCGAGAACGACGACGCGACGACGACCACGTACCGCGTGGCCAAGTTCCGCCGCTCGAACCAGGGCACGAACTACAACCAGCGCGTGCTGGTCGACGCCGGCCAGCGGGTCGAGGTCGGGTCCGTCCTCGCCGACGGTCCGGCCACGGACGAGGGCGACCTCGCGCTCGGCCGCAACCTGCTCGTGGCGTTCATGTCCTGGGAGGGTCACAACTACGAGGACGCGATCATCCTGTCGCAGCGCCTCGTGGAGGACGACGTCCTGTCCTCGATCCACATCGAGGAGCACGAGGTCGACGCCCGCGACACCAAGCTCGGGCCCGAGGAGATCACCCGGGACATCCCGAACGTCTCCGAGGACGTGCTGGCGGACCTCGACGAGCGCGGCATCATCCGCATCGGTGCCGAGGTCGGCGCCGGCGACGTGCTGGTCGGCAAGGTCACCCCGAAGGGCGAGACCGAGCTGACCCCGGAGGAGCGCCTGCTGCGCGCCATCTTCGGCGAGAAGGCCCGCGAGGTCCGCGACACCTCCCTGAAGGTGCCGCACGGCGAGTCCGGCACCGTGATCGGCGTGCGCGAGTTCAACCGCGAGGACGGCGACGAGCTGCCCGCCGGCGTGAACCAGCTCGTGCGGGTCTACATCGCCCAGCGCCGCAAGATCACCGTCGGCGACAAGCTCGCCGGCCGTCACGGCAACAAGGGCGTCATCGCCAAGATCCTGCCGCAGGAGGACATGCCGTTCCTGCCCGACGGCACCCCGGTCGACATCGTGCTCAACCCGCTCGGTGTGCCCGGCCGCATGAACGTCGGTCAGGTCCTCGAGACGCACCTCGGCTGGGTCGCCAGCCGTGGGTGGGACGTCGAGCTGGCCGAGGGCGACGACCTCGAGTGGCGCGACGAGCTGCCCGAGCACGCGCGCAGCTCCGAGCCCGGCCGCCCCGTGGCGACGCCGGTGTTCGACGGTCTGGAGGAGCACGAGCTCCGCGGGCTGATCTCGACCACGCTGCCGAACCGCGACGGCGACCGCATGGTCGGCCTGGACGGCAAGGCGCCACTGTTCGACGGTCGTTCCGGCGAGCCGTTCCCGGACCCCGTCGCGGTGGGCTACATGTACATCCTGAAGCTCCACCACCTGGTCGACGACAAGATCCACGCGCGCTCGACCGGTCCGTACTCGATGATCACCCAGCAGCCGCTGGGCGGTAAGGCGCAGTTCGGTGGTCAGCGCTTCGGCGAGATGGAGGTGTGGGCGCTCGAGGCGTACGGCGCCGCGTACACCCTCCAGGAGCTGCTGACGATCAAGTCCGACGACATCCCGGGCCGCGTCAAGGTCTACGAGGCGATCGTCAAGGGCGAGAACATCCCCGACTCGGGCATCCCGGAGTCCTTCAAGGTCCTCCTCAAGGAGATGCAGTCGCTCTGCCTGAACGTCGAGGTGCTGTCCAGCGACGGCTCCTCGATCGAGATGAAGGAGTCCGACGACGAGGTGTACCGCGCCGCGGAGGAGCTCGGCATCGACCTCTCCCGCCGTCCGAACTCGGCGACCACCGTCGACGAGATCTGAMAASRTPSAPSADAIANRTASRRLSFGRIHEPLQAPDLLGLQLESFDWLLGNESWQARVEAAIEAGRHDVPESSGLEEIFEEISPIEDFGQSMSLSFANHRFEPPKYTVEECKEKDFTYSAPLFVTAEFVNYTTGEIKSQTVFMGDFPLMTDRGTFVINGTERVVVSQLVRSPGVYFERTPDKTSDKDVFSAKIIPSRGAWLEFEIDKRDAVGVRVDRKRKQPVTVLLKALGMTESEIREEFGEFPTILDTLEKDHVHTQDEALVDLYRKIRPGEPPTVEAGRALVENFYFNPKRYDLAKVGRYKLNKKVGVTAELSDSTLSLADVVATIKYLAALHADKSSLPGTRDGEPYDVRVETDDIDHFGNRRIRAVGELIQNQVRTGLSRMERVVRERMTTQDVEAITPQTLINIRPVVASIREFFGTSQLSQFMDQNNPLAGLTHKRRLSALGPGGLSRDRAGMEVRDVHPSHYGRMCPIETPEGPNIGLIGSLASFGRINAFGFIETPYRKVLAGKVTDEVVYLTADDEDSYVIAQANTTLNEDGSFAFDRVLVRTKGGETDDVPASEVDYMDVSPRQMVSVATALIPFLEHDDANRALMGANMQRQAVPLVRSEAPLVGTGMERRAAIDAGDVIVATKPGVVTQVSADLITVENDDATTTTYRVAKFRRSNQGTNYNQRVLVDAGQRVEVGSVLADGPATDEGDLALGRNLLVAFMSWEGHNYEDAIILSQRLVEDDVLSSIHIEEHEVDARDTKLGPEEITRDIPNVSEDVLADLDERGIIRIGAEVGAGDVLVGKVTPKGETELTPEERLLRAIFGEKAREVRDTSLKVPHGESGTVIGVREFNREDGDELPAGVNQLVRVYIAQRRKITVGDKLAGRHGNKGVIAKILPQEDMPFLPDGTPVDIVLNPLGVPGRMNVGQVLETHLGWVASRGWDVELAEGDDLEWRDELPEHARSSEPGRPVATPVFDGLEEHELRGLISTTLPNRDGDRMVGLDGKAPLFDGRSGEPFPDPVAVGYMYILKLHHLVDDKIHARSTGPYSMITQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQELLTIKSDDIPGRVKVYEAIVKGENIPDSGIPESFKVLLKEMQSLCLNVEVLSSDGSSIEMKESDDEVYRAAEELGIDLSRRPNSATTVDEINANANANANA
AK018_048753882rpoC_2COG0086DNA-directed RNA polymerase subunit beta'TTGCTCGACGTCAACGTCTTCGACGAGCTGCGTATCGGCCTGGCCACGGTCGACGACATCCGTTCCTGGTCGCACGGTGAGGTGAAGAAGCCCGAGACCATCAACTACCGCACCCTGAAGCCGGAGAAGGACGGACTCTTCTGCGAGAAGATCTTCGGCCCCACCCGGGACTGGGAGTGCTACTGCGGCAAGTACAAGCGCGTGCGCTTCAAGGGCATCATCTGCGAGCGCTGCGGCGTGGAGGTCACGCGCTCCAAGGTGCGCCGTGAGCGCATGGGCCACATCGAGCTGGCCGCGCCGGTCACGCACATCTGGTTCTTCAAGGGTGTGCCGTCCCGCCTCGGCTACCTGCTCGACCTCGCCCCGAAGGACCTGGAGAAGGTCATCTACTTCGCGGCCTACATGATCACGTGGGTCGACGACGAGGCGCGCCAGGAAGACCTCCCGAACCTCCAGAACGAGATCGACCTGGAGAAGAAGGAGATCACCGACCGGCGCGACAACGACATCAACCTGCGTGCCACGAAGCTCGAGAGCGAGCTCGCCGAGCTCGAGGCCGAGGGGGCCAAGGCGGACGCGCGCCGCAAGGTCCGCGACGCCGCCGAGCGCGAGATGGCGCAGCTGCGCAAGCGTGCCGACGCCGAGCTCGACCGCCTCGAGCAGGTCTGGGACCGGTTCAAGAACCTCAAGGTCGCCGACCTCGAGGGCGACGAGATGCTGTACCGCCAGCTGGTGGACCGCTACGGCACGTACTTCGAGGGCGCCATGGGTGCCCAGGCGATCCAGAAGCGCCTGGAGAACTTCGACCTGGACGCCGAGGCCGAGTCGCTGCGCGAGACCATCCGCACCGGCAAGGGTCAGCGCAAGACGCGCGCCCTCAAGCGGCTCAAGGTCGTCAACGCGTTCCTGACGACGACGAACTCGCCGACGGCCATGGTGCTCGACGCCGTGCCGGTCATCCCGCCGGACCTGCGCCCGATGGTGCAGCTCGACGGTGGCCGCTTCGCGACGTCGGACCTCAACGACCTGTACCGCCGCGTCATCAACCGCAACAACCGCCTCAAGCGGCTGCTGGACCTGGGCGCGCCGGAGATCATCGTCAACAACGAGAAGCGGATGCTCCAGGAGGCCGTCGACTCGCTGTTCGACAACGGCCGTCGTGGCCGTCCGGTCACGGGTCCGGGCAACCGCCCGCTGAAGTCGATCTCCGACATGCTCAAGGGCAAGCAGGGCCGGTTCCGCCAGAACCTGCTCGGCAAGCGCGTCGACTACTCCGGCCGTTCGGTCATCGTCGTCGGCCCGCAGCTCAAGCTGCACCAGTGCGGCCTGCCGAAGCAGATGGCGCTCGAGCTGTTCAAGCCGTTCGTCATGAAGCGTCTGGTCGAGCTCAACCACGCCCAGAACATCAAGTCGGCCAAGCGCATGGTCGAGCGCACCCGCCCCGTGGTGTGGGACGTCCTCGAAGAGGTCATCACCGAGCACCCGGTGCTGCTCAACCGTGCGCCCACGCTGCACCGTCTGGGCATCCAGGCGTTCGAGCCGCAGCTCGTCGAGGGCAAGGCCATCCACCTGCACCCGCTCGTGTGCGGCGCGTTCAACGCCGACTTCGACGGTGACCAGATGGCGGTCCACCTGCCGCTGAGCGCCGAGGCGCAGGCCGAGGCCCGCATCCTCATGCTCTCGAGCAACAACATCCTCAAGCCGTCGGACGGCCGTCCGGTGACCATGCCCTCGCAGGACATGATCATCGGTCTGCACCACCTGACGGCCGAGCGGCCCGGTGCCGTCGGCGAGGGTCGCGTGTTCGGCACCCAGGCCGAGGCCATCATGGCCTTCGACCGGGACGAGCTCGACATCAACGCGACGATCAAGATGCGGATGTCGGACCTCGTGCCGCCGCGCCGCGGCTTCGAGGCCCCCGAGGGCTGGGAGCCCGGCCAGCAGCTGCTGTTCGAGACCACCCTCGGTCGCACCCTGTTCAACGAGGCCCTGCCGACCGACTACCCGTTCCAGAACGAGGTCGTCGGCAAGAAGGAGCTCTCGACGATCGTCAACGACCTCGCCGAGCGGTACCCCAAGGTGGACGTCGCCACGTCGCTGGACGCGCTGAAGGACGCCGGCTACCGGTGGGCCACCCGCTCCGGCGTGACGATCTCGATCTCCGACGTCGCCATGCCGGTGGAGAAGAACGAGATCCTCGACGAGCACGAGGCGCGCGCGCTGAAGGTGCAGGGCCAGTACGAGAAGGGCCTCATCACCGACGACGAGCGTCGTCAGGAGCTCATCGAGATCTGGACCCAGGCGACCGACAAGATCGCCGCGGTCATGCGCGACAACCTCGAGAACGACACGCGCAACACGCTGTACCGGATGGTGTCCTCCGGTGCTCGCGGTAACTGGATGCAGGTGCGTCAGATCGCCGGTATGCGCGGTCTGGTGGCCAACCCGAAGGGCGAGATCATCCCGCGCCCGATCAAGTCCAACTACCGCGAGGGCCTCTCCGTCCTCGAGTACTTCATCGCCTCGCACGGTGCCCGCAAGGGTCTGGCCGACACGGCGCTGCGTACCGCGGACTCCGGCTACCTGACCCGTCGTCTCGTGGACGTCTCCCAGGACGTCATCATCCGCGAGGAGGACTGCGGGACCGAGCGCGGCCTGATGCTGCCGGTCGCCGAGCGCATCGGCGACCAGCTCGTCCCGGACGGTCGCGTGGAGACGTCGATCTACTCGCGCACCTTCGCGACCCAGGTCGTGGCGCCCGACGGCACGGTGCTCGCCGAGCCGGGCAGCGACGCGGGCGACGTCATCATCGACCAGGTGATCGCCGCCGGCATCGAGGAGGTCAAGGTCCGCTCGGTCCTGACCTGCGAGTCGCGCGTCGGCACCTGCGCCAAGTGCTACGGCCGCTCCCTGGCCACGGGCAAGCTCGTGGACATCGGCGAGGCCGTGGGCATCATCGCCGCGCAGTCCATCGGTGAGCCCGGTACGCAGCTGACCATGCGGACCTTCCACACCGGTGGTGTGGCCTCCGCGGACGACATCACGCAGGGTCTGCCCCGTGTGACCGAGCTCTTCGAGGCCCGTACCCCGAAGGGCGAGGCGCCGATCGCCGAGTACACCGGTCGCGTGTCCATCGAGGACACCGAGCGGACCCGGCACATCGTGCTCACCCCGGACGACGGCGGCGAGGAGATCAAGTACCCGGTCACCAAGCGTGCGCGCCTGCTGATCGCCGACGGCGACCACGTCGCGGTCGGTACCCAGCTGGTCCAGGGCGCCGTCGACCCGAAGAAGGTGCTGCGCATCCTCGGCCCGCGTGCCGCGCAGAAGCAGCTCGTGGACGCGGTCCAGGAGACCTACCGGTCGCAGGGCGTGGACATCCACGACAAGCACATCGAGGTCATCGTGCGCCAGATGCTGCGCCGCGTGACCGTGCTCGACGCCGGTGACTCGGACCTGCTGCCCGGCGAGCTCGCCGAGCGTGTCCGGTTCGAGGACGCCAACCGCGCGGCCGTGGCGGAGGGTGGCCAGCCGGCCGCCGGCCGTCCGGAGCTGATGGGTATCACGAAGGCCTCGCTCGCCACCGACTCGTGGCTCTCGGCGGCCTCCTTCCAGGAGACCACCCGGGTGCTCACCGAGGCGGCGATGAGCGGTCGTCGCGACCCGCTGCTGGGCCTCAAGGAGAACGTCATCATCGGTAAGCTCATCCCGGCCGGTACGGGGCTCGCCCGGTACCACAACATCGAGGTCGAGCCGACCGAGCAGGCCAAGGCGGAGCTCTACCCGAGCTTCGGCTACGACGAGATCGACTTCCCGACCCTCGGCATGGGTTCGGGCGAGGCGATCCCGCTGGAGGACCTGGACTTCGGCGACTTCCGCTGAMLDVNVFDELRIGLATVDDIRSWSHGEVKKPETINYRTLKPEKDGLFCEKIFGPTRDWECYCGKYKRVRFKGIICERCGVEVTRSKVRRERMGHIELAAPVTHIWFFKGVPSRLGYLLDLAPKDLEKVIYFAAYMITWVDDEARQEDLPNLQNEIDLEKKEITDRRDNDINLRATKLESELAELEAEGAKADARRKVRDAAEREMAQLRKRADAELDRLEQVWDRFKNLKVADLEGDEMLYRQLVDRYGTYFEGAMGAQAIQKRLENFDLDAEAESLRETIRTGKGQRKTRALKRLKVVNAFLTTTNSPTAMVLDAVPVIPPDLRPMVQLDGGRFATSDLNDLYRRVINRNNRLKRLLDLGAPEIIVNNEKRMLQEAVDSLFDNGRRGRPVTGPGNRPLKSISDMLKGKQGRFRQNLLGKRVDYSGRSVIVVGPQLKLHQCGLPKQMALELFKPFVMKRLVELNHAQNIKSAKRMVERTRPVVWDVLEEVITEHPVLLNRAPTLHRLGIQAFEPQLVEGKAIHLHPLVCGAFNADFDGDQMAVHLPLSAEAQAEARILMLSSNNILKPSDGRPVTMPSQDMIIGLHHLTAERPGAVGEGRVFGTQAEAIMAFDRDELDINATIKMRMSDLVPPRRGFEAPEGWEPGQQLLFETTLGRTLFNEALPTDYPFQNEVVGKKELSTIVNDLAERYPKVDVATSLDALKDAGYRWATRSGVTISISDVAMPVEKNEILDEHEARALKVQGQYEKGLITDDERRQELIEIWTQATDKIAAVMRDNLENDTRNTLYRMVSSGARGNWMQVRQIAGMRGLVANPKGEIIPRPIKSNYREGLSVLEYFIASHGARKGLADTALRTADSGYLTRRLVDVSQDVIIREEDCGTERGLMLPVAERIGDQLVPDGRVETSIYSRTFATQVVAPDGTVLAEPGSDAGDVIIDQVIAAGIEEVKVRSVLTCESRVGTCAKCYGRSLATGKLVDIGEAVGIIAAQSIGEPGTQLTMRTFHTGGVASADDITQGLPRVTELFEARTPKGEAPIAEYTGRVSIEDTERTRHIVLTPDDGGEEIKYPVTKRARLLIADGDHVAVGTQLVQGAVDPKKVLRILGPRAAQKQLVDAVQETYRSQGVDIHDKHIEVIVRQMLRRVTVLDAGDSDLLPGELAERVRFEDANRAAVAEGGQPAAGRPELMGITKASLATDSWLSAASFQETTRVLTEAAMSGRRDPLLGLKENVIIGKLIPAGTGLARYHNIEVEPTEQAKAELYPSFGYDEIDFPTLGMGSGEAIPLEDLDFGDFRNANANANANA
AK018_04876375rpsL_230S ribosomal protein S12GTGCCTACGATCCAGCAGCTCGTCCGCAAGGGCCGGACCTCGAAGGCCGGGAAGTCGAAGACTCCGGCGCTCAAGGGTTCCCCGCAGCGGCGCGGCGTGTGCACCCGTGTGTACACCACCACCCCCAAGAAGCCGAACTCGGCGCTCCGCAAGGTTGCGCGTGTGAAGCTCTCCTCCGGCATCGAGGTCACCGCCTACATCCCCGGTGTCGGCCACAACCTCCAGGAGCACTCGATCGTGCTCGTCCGCGGCGGTCGTGTGAAGGACCTCCCCGGTGTCCGCTACAAGATCGTGCGCGGCGCCCTCGACACCCAGGGTGTCAAGGGCCGCCAGCAGGCGCGTTCCCGGTACGGCGCGAAGAAGGAGAAGGCCTGAMPTIQQLVRKGRTSKAGKSKTPALKGSPQRRGVCTRVYTTTPKKPNSALRKVARVKLSSGIEVTAYIPGVGHNLQEHSIVLVRGGRVKDLPGVRYKIVRGALDTQGVKGRQQARSRYGAKKEKANANANANANA
AK018_04877471rpsG_2COG004930S ribosomal protein S7ATGCCTCGTAAGGGTCCGGCCCCCAAGCGGCCGCTCATCGTCGACCCCGTCTACGGGTCGCCCGTCGTCACGCAGCTGATCAACAAGGTCCTGCTCGACGGCAAGAAGTCCACCGCCGAAGCGATCGTGTACGGCGCCCTCGAGGGCGTGCGGAGCAAGACCGACCAGGACCCGGTCGTCGTGCTCAAGCGCGCGCTGGAGAACGTCCGTCCGGCCCTCGAGGTCCGCTCCCGCCGCGTCGGCGGTGCGACCTACCAGGTTCCGGTCGAGGTCCGTCCCTCGCGCTCCACGACTCTCGCGCTGCGGTGGCTCACCGACTTCTCGCGGGCCCGCCGCGAGAAGACGATGACCGAGCGACTCATGAACGAGATCCTCGACGCGTCGAACGGCCTGGGCGCCGCGGTCAAGCGTCGCGAGGACATGCACAAGATGGCCGAGTCCAACAAGGCCTTCGCGCACTACCGTTGGTGAMPRKGPAPKRPLIVDPVYGSPVVTQLINKVLLDGKKSTAEAIVYGALEGVRSKTDQDPVVVLKRALENVRPALEVRSRRVGGATYQVPVEVRPSRSTTLALRWLTDFSRARREKTMTERLMNEILDASNGLGAAVKRREDMHKMAESNKAFAHYRWNANANANANA
AK018_048782106fusA_2COG0480Elongation factor GGTGGCACTCGACGTGCTGACCGACCTGAAGAAGGTCCGCAACATCGGCATCATGGCTCACATCGATGCCGGCAAGACCACCACCACCGAGCGCATCCTGTACTACACGGGTGTGAACTACAAGATCGGTGAGACGCACGACGGCGCGTCGACGATGGACTGGATGGAGCAGGAGCAGGAGCGCGGCATCACGATCACGTCGGCCGCGACGACCTGCTACTGGAACGACAACCAGATCAACATCATCGACACCCCGGGCCACGTCGACTTCACGGTCGAGGTGGAGCGGTCGCTCCGCGTCCTGGACGGCGCCGTCGCCGTCTTCGACGGCAAGGAGGGCGTCGAGCCCCAGTCGGAGACCGTCTGGCGCCAGGCCGACAAGTACGACGTCCCGCGCATCTGCTTCGTCAACAAGATGGACAAGCTGGGCGCCGACTTCTACTTCACGGTCAAGACGATCGTCGAGCGCCTCAAGGCCAAGCCGCTGGTGCTCCAGCTCCCGATCGGTGCCGAGAACGACTTCATCGGCGTCGTCGACCTGCTGAGCATGAAGGCGCTGGTCTGGCACGGCGAGACCAAGCTGGGCGAGACCTACGAGGTCGAGGAGATCCCCGCCGACCTGCAGGCCAAGGCCGAGGAGTACCGCAACGAGCTCATCGAGGCCGTCGCGGAGTCGGACGAGGACCTGCTCGAGAAGTACCTCGGCGGTGAGGAGCTCACGACCGACGAGCTCAAGGCCGGCATCCGCAAGATGACCGTCAACTCCGAGGCCTTCCCGGTGCTGTGCGGCTCGGCGTTCAAGAACAAGGGCGTCCAGCCCATGCTCGACGCCGTCATCGACTACCTGCCCTCCCCGTTCGACGTCCCGGCCGTCCAGGGCCACGACGTCAAGGACGAGGAGAAGGTCGTCGAGCGTCACGCGGACGCCTCGGAGCCGTTCTCGGCCCTGGCGTTCAAGGTCGCCGTGCACCCGTTCTTCGGCAAGCTCACCTACGTCCGCGTGTACTCCGGCAAGGTCGAGCAGGGCGCCCAGGTGCTCAACACCACCAAGGGGAAGAAGGAGCGCATCGGGAAGCTCTTCCAGATGCACTCCAACAAGGAGAACCCCGTCCCCGAGGCGCAGGCCGGTCACATCTACGCCTTCATCGGCCTGAAGGACGTCACCACCGGTGACACCCTCAGCTCCTCCGACTCCCCGGTCATCCTCGAGTCGATGACCTTCCCGGAGCCGGTCATCGACGTGGCCATCGAGCCGAAGACGAAGGCCGACCAGGAGAAGCTCTCGACGGCGATCCAAAAGCTCGCCGACGAGGACCCCACCTTCCGCGTCAAGCTCGACGAGGAGACCGGCCAGACCGTCATCGGCGGCATGGGCGAGCTCCACCTCGACATCCTCGTGGACCGCATGAAGCGCGAGTTCAAGGTCGAGGCGAACGTCGGCAAGCCGCAGGTCGCGTACCGCGAGACGATCCGTCGCAAGGCGGAGAAGATCGACTACACGCACAAGAAGCAGACCGGTGGTTCGGGTCAGTTCGCGAAGGTCATCGTGAACTTCGAGCCGCTGGAGACCACCGCCGAGGGCGAGCTGTACGAGTTCGCCAACGAGGTCACCGGTGGTCGCGTGCCGCGCGAGTACATCCCGTCGGTGGACGCCGGTATCCAGGCGGCCATGCAGCAGGGTGTCCTGGCCGGCTTCCCGGTCGTCGGCGTCAAGGCCACGCTCCTCGACGGTGCGTACCACGACGTCGACTCCTCGGAGATGGCGTTCAAGATCGCCGGATCCATGGTGTTCAAGGAGGGCGTCAAGCGGGCCGACCCGGTTCTGCTCGAGCCCGTCATGGCCGTCGAGGTGCGCACGCCCGAGGAGTACATGGGCGACGTCATCGGCGACATCAACTCGCGGCGTGGACTCATCCAGTCCATGGAGGACGCGACCGGCGTCAAGGTCGTGCGCGCCCAGGTACCGTTGAGCGAGATGTTCGGGTACATCGGTGACCTGCGTTCCAAGACGCAGGGCCGCGCCGTGTACTCGATGCAGTTCGACAGCTACGCCGAGGTCCCCAAGGCCGTGGCTGACGAGATCATCAAGAAGACCCGGGGCGAGTGAMALDVLTDLKKVRNIGIMAHIDAGKTTTTERILYYTGVNYKIGETHDGASTMDWMEQEQERGITITSAATTCYWNDNQINIIDTPGHVDFTVEVERSLRVLDGAVAVFDGKEGVEPQSETVWRQADKYDVPRICFVNKMDKLGADFYFTVKTIVERLKAKPLVLQLPIGAENDFIGVVDLLSMKALVWHGETKLGETYEVEEIPADLQAKAEEYRNELIEAVAESDEDLLEKYLGGEELTTDELKAGIRKMTVNSEAFPVLCGSAFKNKGVQPMLDAVIDYLPSPFDVPAVQGHDVKDEEKVVERHADASEPFSALAFKVAVHPFFGKLTYVRVYSGKVEQGAQVLNTTKGKKERIGKLFQMHSNKENPVPEAQAGHIYAFIGLKDVTTGDTLSSSDSPVILESMTFPEPVIDVAIEPKTKADQEKLSTAIQKLADEDPTFRVKLDEETGQTVIGGMGELHLDILVDRMKREFKVEANVGKPQVAYRETIRRKAEKIDYTHKKQTGGSGQFAKVIVNFEPLETTAEGELYEFANEVTGGRVPREYIPSVDAGIQAAMQQGVLAGFPVVGVKATLLDGAYHDVDSSEMAFKIAGSMVFKEGVKRADPVLLEPVMAVEVRTPEEYMGDVIGDINSRRGLIQSMEDATGVKVVRAQVPLSEMFGYIGDLRSKTQGRAVYSMQFDSYAEVPKAVADEIIKKTRGENANANANANA
AK018_048791197tuf_2COG0050Elongation factor TuGTGGCTAAGGCCAAGTTCGAGCGGACCAAGCCGCACGTCAACATCGGCACGATCGGTCACGTCGACCACGGCAAGACGACGCTGACCGCCGCGATCTCGAAGACGCTCGCTGAGACGTACCCGGACCTGCCGGCGAACCAGCTCAAGGCGTTCGACGAGATCGACGCCGCGCCGGAGGAGAAGCAGCGCGGTATCACGATCAACATCGCGCACATCGAGTACGAGACGCCGAACCGTCACTACGCGCACGTCGACGCGCCGGGTCACGCCGACTACATCAAGAACATGATCACCGGTGCCGCCCAGATGGACGGTTCGATCCTCGTGGTCGCCGCCACCGACGGCCCGATGGCGCAGACGCGCGAGCACGTCCTCCTGGCCCGCCAGGTGGGCGTTCCCTACCTGCTCGTGGCGCTGAACAAGGCCGACATGGTCGACGACGAGGAGATCCTCGAGCTCGTCGAGATGGAGGTCCGCGAGCTGCTGTCGTCGCAGGACTTCGACGGTGACAACGCCCCGGTCATCCGCGTCTCCGGTCTGAAGGCCCTCGAGGGCGACCCCGAGTGGACCAAGAAGATCCTGGAGCTCATGGAGGCCGTGGACGAGAACGTCCCCGAGCCGCAGCGCGACCTCGACAAGCCGTTCCTCATGCCGATCGAGGACGTCTTCACCATCACCGGTCGCGGCACCGTCGTCACCGGCAAGGTGGAGCGTGGCTCGCTCGACATCAACTCCGAGGTCGAGATCGTCGGTATCCGTTCGCCGCAGAAGACGACCGTCACCGGTATCGAGACCTTCCACAAGCAGATGGACCAGGCCCAGGCGGGCGACAACACCGGTCTGCTGCTGCGTGGTCTCAAGCGTGAGGACGTCGAGCGCGGCCAGGTCGTCGTGAAGCCGGGTTCGATCACGCCGCACACCAACTTCGAGGCCCAGGTCTACATCCTGGCCAAGGACGAGGGCGGCCGTCACAACCCGTTCTACTCGAACTACCGTCCGCAGTTCTACTTCCGGACCACCGACGTCACGGGCGTCATCGAGCTGCCCGAGGGCACCGAGATGGTCATGCCGGGCGACAACACCGAGATGACGGTCGAGCTGATCCAGCCGATCGCCATGGAGGAGGGCCTCGGCTTCGCCATCCGTGAGGGTGGCCGCACGGTCGGTTCCGGCCGGGTCACCAAGATCCTCAAGTGAMAKAKFERTKPHVNIGTIGHVDHGKTTLTAAISKTLAETYPDLPANQLKAFDEIDAAPEEKQRGITINIAHIEYETPNRHYAHVDAPGHADYIKNMITGAAQMDGSILVVAATDGPMAQTREHVLLARQVGVPYLLVALNKADMVDDEEILELVEMEVRELLSSQDFDGDNAPVIRVSGLKALEGDPEWTKKILELMEAVDENVPEPQRDLDKPFLMPIEDVFTITGRGTVVTGKVERGSLDINSEVEIVGIRSPQKTTVTGIETFHKQMDQAQAGDNTGLLLRGLKREDVERGQVVVKPGSITPHTNFEAQVYILAKDEGGRHNPFYSNYRPQFYFRTTDVTGVIELPEGTEMVMPGDNTEMTVELIQPIAMEEGLGFAIREGGRTVGSGRVTKILKPGPT0015245_1579DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
AK018_048801047hypothetical proteinATGACACGCCCCGACCGACCCGCGGACGGCTGGACCTACTGCGACGTCCGACCGCAGTCCCGCCCCGCGCTCCCCCCGGACCTCAACCCGCGCCGCGCCTCCCTCATCCACGTCACGCGGGCGAAGTGGGTCAACGGCACCGTCCTGCACTACTGGCTCGAGCCGGCGGCACCGCAGGCGCAGCACCAGGCGGTGCGCGACGCCTTCCGCACGTGGGAGGACCTCGGCATCGGCCTGCGCTTCGTCGAGGTCGACGACGCCGACCGCGCCGAGGTGCGCATCGCGTTCGACCAGGGCGCCGGCAGCTGGTCCTACGTCGGCAAGGACGTGCTGGGGATCCCGCAGCACGAGGCCACGATGAACTTCGGCTGGGACCTGACGACGTCGTGGGGGGCCGTCACCGCGCTGCACGAGATCGGACACACGCTCGGCTTCCCCCACGAGCACCAGAACCCGAACGCGGGCATCGTGTGGGACGAGCAGCGCGTGCTCCAGGAGTTCACGGGCCCGCCGAACAGCTGGACCGAGGACCAGGTGCGGCACAACATCCTGCGCAAGCTCTCCCCCGAGCAGGTCGAGGGCTCGGCGTGGGACCCCGAGTCCGTCATGCACTACCCCTTCGACCCGGGCCTCATCGTCTCCCCGGAGCAGTACGGCCGCGACGGGATCCCCGCCCCGGACGGGCTGTCGGACGACGACCGCGAGTGGGTGCTGCGCTGGTACCCGGGGCTCGAGCCCGACCTGCCCACGCTCGAACCGGGCCGCTCGGTACCGCTGGAGCTCGCGCCCGCCGGGCAGGCCGACCTCGTGGTCCGCCCCACGGCCACCCGGGAGTACCGCGTGGGTACGTTCGGCGACGCCGACACGCTGCTGGTCCTCTTCGAGGAGGTCGACGGCGAACCGGTCTTCCTCGCGGGCGACGACGACAGCGGGACCGACCGCAACGCCCTGGTCACCGTGCGGCTCCGCGCCGGCCGCAGCTACGTCGTCCGGGTCCGCCTGTACTGGGCCTGGGCGGCGGGGACGACGGCCGTCATGCTCTGGTGAMTRPDRPADGWTYCDVRPQSRPALPPDLNPRRASLIHVTRAKWVNGTVLHYWLEPAAPQAQHQAVRDAFRTWEDLGIGLRFVEVDDADRAEVRIAFDQGAGSWSYVGKDVLGIPQHEATMNFGWDLTTSWGAVTALHEIGHTLGFPHEHQNPNAGIVWDEQRVLQEFTGPPNSWTEDQVRHNILRKLSPEQVEGSAWDPESVMHYPFDPGLIVSPEQYGRDGIPAPDGLSDDDREWVLRWYPGLEPDLPTLEPGRSVPLELAPAGQADLVVRPTATREYRVGTFGDADTLLVLFEEVDGEPVFLAGDDDSGTDRNALVTVRLRAGRSYVVRVRLYWAWAAGTTAVMLWNANANANANA
AK018_04881309rpsJ_2COG005130S ribosomal protein S10ATGGCGGGACAGAAGATCCGCATCCGGCTCAAGTCCTACGACCACGAGGTGATCGACAGCTCGGCGCGCAAGATCGTCGACACGGTCACTCGCGCTGGTGCGACGGTCGTGGGCCCGGTGCCGCTGCCGACGGAGAAGAACGTCTTCACCGTCATCCGGTCGCCTCACAAGTACAAGGACAGCCGTGAGCACTTCGAGATGCGTACTCACAAGCGGCTGATCGACATCATCGACCCCACGCCGAAGGCTGTCGACTCGCTGATGCGCATCGACCTGCCGGCCGACGTGAACATCGAGATCAAGCTCTGAMAGQKIRIRLKSYDHEVIDSSARKIVDTVTRAGATVVGPVPLPTEKNVFTVIRSPHKYKDSREHFEMRTHKRLIDIIDPTPKAVDSLMRIDLPADVNIEIKLPGPT0015245_5632DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
AK018_04882654rplC_2COG008750S ribosomal protein L3ATGACCAACCAGCAGAAGAACGTGACCGCGGTGCTCGGCACCAAGCTCGGCATGACCCAGACGTGGAACGAGGACGGCAAGCTCGTCCCGGTCACCGTCGTCGCCGTCCCCACCAACGTGGTGACGCAGGTCCGCAACGCGGAGTCCGACGGCTACGCGGCCGTCCAGCTCGCCGCCGGCCAGATCGACCCGCGCAAGGTCACCAAGCCGCTCAAGGGCCACTTCGAGAAGGCCGGCGTCACGCCGCGCCGCCACGTGGCCGAGATCCGTACCGACGACTCCGCCGAGTACACGCTCGGCCAGGAGATCACCGCCGAGGCCTTCGAGGCCGGCGTGGTGGTCGACGTCGTCGGCACCACCAAGGGCAAGGGCACCGCCGGTGTCATGAAGCGCCACGGCTTCTCCGGCGTCGGCGCCTCGCACGGTGCGCACCGCAACCACCGCAAGCCGGGTTCGATCGGTGGCGCGGCCACGCCGTCGCGCGTGTTCCGCGGCATGCGGATGGCCGGTCGCATGGGCCACGCCCGCAAGACCGTCCAGAACCTGACCGTCCACGCGGTCGACGCGGAGAAGGGCCTGCTGCTCGTCAAGGGCGCGGTCCCGGGTCCGAAGGGCGGCATCGTCCTCGTCCGTACCGCCGCGAAGGGAGCCTGAMTNQQKNVTAVLGTKLGMTQTWNEDGKLVPVTVVAVPTNVVTQVRNAESDGYAAVQLAAGQIDPRKVTKPLKGHFEKAGVTPRRHVAEIRTDDSAEYTLGQEITAEAFEAGVVVDVVGTTKGKGTAGVMKRHGFSGVGASHGAHRNHRKPGSIGGAATPSRVFRGMRMAGRMGHARKTVQNLTVHAVDAEKGLLLVKGAVPGPKGGIVLVRTAAKGANANANANANA
AK018_04883699rplD_2COG008850S ribosomal protein L4ATGGCTAACCTGACCGTCGACGTGCTCGACGCCTCGGGCAAGAAGGCCGGCACCGCCGAGCTCCCCGCCGAGGTGTTCGACGTCGCCACGAACGTCCCGCTGATCCACCAGGTGGTCGTCGCGCAGCGCGCGGCCTCCCGCCAGGGGACGGCCGCCACCAAGACCCGCGCCGACGTGCGCGGCGGTGGCAAGAAGCCCTACAAGCAGAAGGGCACCGGCCGCGCCCGCCAGGGTTCGACCCGCGCCCCGCAGTTCGCCGGCGGTGGCACCGTCCACGGCCCGCAGCCGCGCAAGTACGACCAGCGCACGCCGAAGAAGATGAAGGCCGCCGCCCTGCGCGGTGCCCTCTCCGACCGCGCCCGCGCCGGCCGTGTCCACGTGGTCGCCGGGTTCGGCATCGACGACAAGCCGTCCACCAAGGCGGCCCTCGGCACGCTCGCCGCGCTCACCGACCGCACGCACGTGCTGGTCGTCACCGAGCGCTCGGACGAGCTGACCGTCAAGTCGCTGCGGAACCTGGAGCAGGTCCACCTGCTCACCGCGGACCAGCTGAACACCTACGACGTCCTCGTCTCCGACGACGTCGTCTTCACCTCCGGCGCGCTCGAGGCGTTCCTGGCCGGCCCGGCGACGGGCAAGTCGGCGAAGGCCGTCGCGACCGAGACCGAGGCCGCGTCCGAGAAGGAGGCCACCAAGTGAMANLTVDVLDASGKKAGTAELPAEVFDVATNVPLIHQVVVAQRAASRQGTAATKTRADVRGGGKKPYKQKGTGRARQGSTRAPQFAGGGTVHGPQPRKYDQRTPKKMKAAALRGALSDRARAGRVHVVAGFGIDDKPSTKAALGTLAALTDRTHVLVVTERSDELTVKSLRNLEQVHLLTADQLNTYDVLVSDDVVFTSGALEAFLAGPATGKSAKAVATETEAASEKEATKNANANANANA
AK018_04884303rplW_2COG008950S ribosomal protein L23GTGACCGCCGTGACGAAGGACCCGCGCGACATCCTGATCGCGCCGGTCGTCTCCGAGAAGTCCTACAACCTCCTCGACGAGGGCAAGTACACCTTCGTCGTGGACCCGGGCGCCAACAAGACCGAGATCAAGATCGCGGTCGAGAAGGTCTTCGGTGTCAAGGTCGCCTCGGTGAACACGATCAACCGCAAGGGCAAGGCGCGTCGCACGCGCTACGGCCTGGGCAAGCGCAAGGACACGAAGCGTGCGATCGTCACCCTCCGCGAGGGGTCGATCGACATCTTCGGCGGTCCGGTCGGCTGAMTAVTKDPRDILIAPVVSEKSYNLLDEGKYTFVVDPGANKTEIKIAVEKVFGVKVASVNTINRKGKARRTRYGLGKRKDTKRAIVTLREGSIDIFGGPVGNANANANANA
AK018_04885837rplB_2COG009050S ribosomal protein L2ATGGGAATCCGTAAGCACAAGCCGACGACGCCCGGCCGCCGTGGCTCGAGCGTTGCCGACTTCGTCGAGGTCACCCGCTCGGAGCCGGAGAAGTCGCTGGTTCGTCCGCTGTCCAAGACCGGCGGCCGCAACAGCTCCGGCCGGATCACCACCCGGCACAAGGGCGGTGGCCACAAGCGCGCCTACCGCGTGATCGACTTCCGTCGTCACGACAAGGACGGCGTGCCGGCGAAGGTCGCGCACATCGAGTACGACCCGAACCGCACCGCGCGCATCGCGCTGCTGCACTACGCCGACGGCACGAAGCGCTACATCATCGCGCCGAACAAGCTGGCGCAGGGCGACACGGTCGAGGCCGGCGCGGGTGCCGACATCAAGCCCGGCAACAACCTGCCGCTGCGCAACATCCCGACGGGTACCGTCATCCACGCCGTCGAGCTCCGCCCCGGTGGCGGCGCGAAGATCGCCCGCAGCGCGGGCGCTTCGGTCCAGCTCGTCGCCAAGGACGGCCCCTACGGCCAGCTGCGCATGCCGTCCGGCGAGATCCGGAACGTCGACCTGCGCTGCCGCGCGACCATCGGCTGGGTCGGCAACGCCGAGCAGTCGAACATCAACTGGGGCAAGGCCGGCCGCAAGCGCTGGAAGGGCGTCCGCCCGACCGTCCGCGGTGTCGTGATGAACCCCGTCGACCACCCGCACGGTGGTGGCGAGGGCCGCACGTCCGGTGGCCGTCACCCGGTGAGCCCCTGGGGCCAGCCCGAGGGCCGGACCCGCCGTCCGAACAAGCCCAGCGACAAGCTGATCGTCCGCCGTCGTCGCACCGGCAAGAAGCGCTGAMGIRKHKPTTPGRRGSSVADFVEVTRSEPEKSLVRPLSKTGGRNSSGRITTRHKGGGHKRAYRVIDFRRHDKDGVPAKVAHIEYDPNRTARIALLHYADGTKRYIIAPNKLAQGDTVEAGAGADIKPGNNLPLRNIPTGTVIHAVELRPGGGAKIARSAGASVQLVAKDGPYGQLRMPSGEIRNVDLRCRATIGWVGNAEQSNINWGKAGRKRWKGVRPTVRGVVMNPVDHPHGGGEGRTSGGRHPVSPWGQPEGRTRRPNKPSDKLIVRRRRTGKKRNANANANANA
AK018_04886282rpsS_2COG018530S ribosomal protein S19ATGCCTCGTAGCCTGAAGAAGGGCCCCTTCGTCGACGACCACCTGCAGAAGAAGGTGGACGGTCAGAACGAGAAGGGGACCAAGAACGTCATCAAGACCTGGTCCCGTCGGTCGGTCATCACGCCCGACTTCCTCGGCCACACCTTCGCCGTCCACGACGGTCGCAAGCACGTCCCGGTCTTCGTGACCGAGGCCATGGTGGGTCACAAGCTGGGCGAGTTCGCCCCCACGCGGAACTTCCGCGGCCACGTGAAGGACGACAGGAAGGGTCGCCGCCGCTGAMPRSLKKGPFVDDHLQKKVDGQNEKGTKNVIKTWSRRSVITPDFLGHTFAVHDGRKHVPVFVTEAMVGHKLGEFAPTRNFRGHVKDDRKGRRRNANANANANA
AK018_04887369rplV_2COG009150S ribosomal protein L22ATGGAAGCCAAGGCGCAGGCGCGGTTCGTCCGTGTCACGCCCATGAAGGCCCGGCGCGTCGTCGACCTCATCCGTGGCAAGCAGGCCGCTGAGGCCGTCGCGGTGCTGAAGTTCGCGCCGCAGGCGGCGAGCGAGCCCATCCGCAAGGTGGTCGAGTCCGCTGTGGCCAACGCCCGGGTGAAGGCCGACCGCGCGAACGAGCGCTTCGACGAGGCCGACTACGTGGTCTCCGTGGCGTACGTGGACGAGGGCCCGACCCTCAAGCGGTTCCGCCCCCGTGCGCAGGGGCGTGCCAGCCGCATCCTCAAGCGCACCAGCCACATCACCGTGGTCGTCGCACCGCGCGAGCAGAAGGAAGGGGCCCGATAGMEAKAQARFVRVTPMKARRVVDLIRGKQAAEAVAVLKFAPQAASEPIRKVVESAVANARVKADRANERFDEADYVVSVAYVDEGPTLKRFRPRAQGRASRILKRTSHITVVVAPREQKEGARNANANANANA
AK018_04888834rpsC_2COG009230S ribosomal protein S3GTGGGGCAGAAGATTCACCCGCACGGGTACCGCCTCGGCATCACCACCGACCACCGGTCGCGCTGGTTCGCCGACAGCACCAAGCCTGGTCAGCGGTACCGCGACTACGTCCGCGAGGACGTCGAGATCCGCAAGCTCATGAGCACCGGTCTCGAGCGCGCCGGCATCGCCAAGGTCGAGATCGAGCGCACCCGTGACCGCGTCCGCGTGGACATCCACACGGCGCGTCCCGGCATCGTCATCGGCCGCCGCGGCGCCGAGGCGGACCGCATCCGCGGCGAGCTCGAGAAGCTGACGGGCAAGCAGGTCCAGCTCAACATCCTCGAGGTCAAGAACGCCGAGATCGACGCGCAGCTCGTCGCGCAGGGCATCGCCGAGCAGCTGGCGAGCCGCGTCTCCTTCCGTCGCGCCATGCGCAAGGGCATCCAGTCCGCGCAGCGTGCCGGCGCGAAGGGCATCCGGGTCCAGGTCTCGGGCCGTCTCGGCGGCGCCGAGATGAGCCGGTCGGAGTTCTACCGCGAGGGTCGCGTGCCGCTGCACACCCTGCGCGCGAACATCGACTACGGCTTCTTCGAGGCCCGTACCACCTTCGGTCGCATCGGCGTGAAGGTCTGGATCTACAAGGGCGACCTCACCGAGAAGGAGTTCGCTGCTCAGCAGGCGGCCTCCGCGCCCCGACAGGGCCGTGGTGGCGGCCGTGGCGGCGAGCGTCGTGGTCGTCGCAACGACCGCAACGAGCGTCCGTCGCAGCCGAAGCAGAGCTCCGGCGAGGCGTCCGACGCGCCGGCCCCGGCCGAGCAGGCCGCGGCCCCCGAGTCCGGAACGGAGGCCTGAMGQKIHPHGYRLGITTDHRSRWFADSTKPGQRYRDYVREDVEIRKLMSTGLERAGIAKVEIERTRDRVRVDIHTARPGIVIGRRGAEADRIRGELEKLTGKQVQLNILEVKNAEIDAQLVAQGIAEQLASRVSFRRAMRKGIQSAQRAGAKGIRVQVSGRLGGAEMSRSEFYREGRVPLHTLRANIDYGFFEARTTFGRIGVKVWIYKGDLTEKEFAAQQAASAPRQGRGGGRGGERRGRRNDRNERPSQPKQSSGEASDAPAPAEQAAAPESGTEANANANANANA
AK018_04890720hypothetical proteinATGGGAGCGCTGGACCGCTTCGAGAAGAGCGTCGAGCGGGTCATGAACAACGCGTTCGCGAAGGTGGGACGCGGCAGCGAGGTCAAGGCGGTCGAGCTGGCGAGCCGGCTGCGGCGCGAGATCGACGACCGTGCCGCCGTCGTCGGCCACGACCGGACCGTCGCACCGAACGAGTTCACCATCGAGCTCGGGCCGGAGGACTTCGACCACGTGCAGTCGTGGGGCGCGGAGACCCTGGCGGACGAGCTCGCCACCAACCTCACCGAGTACGCGTCCTCCCAGCACTACGCGTTCGTCGGTCCCGTCAGCGTGTCCTTCGAGCGCGACGAGCAGCTCACCCGCGGACGGTTCCAGCTGCGCTCGGCCACGGTGCGCGGCAACGTCGCGCCGGCGACCAACCCCGCGCCCAGCACCCGCCACCCCCTCATCGACATCGACGGTCAGCGCTACCTGCTCACCGGCCCGGTCACGGTCATCGGCCGCGACGCCGAGGCCGACATCGTCGTCGACGACCCCGGGGTCTCCCGGCGCCACCTGGAGATCCGCGTGACCCCCGAGGGCGTCGTCGCCACCGATCTCGGATCCACCAACGGGCTCTTCGTCGAGGGTCATCAGGTCCCCGCAGCCACTCTGCTGGACGGCAACACCCTGACCATCGGCCGGACCCGGATCATGTTCTGGACCGGCACCTCGGCCGGACGCACGAACGAGGAGTGGTGAMGALDRFEKSVERVMNNAFAKVGRGSEVKAVELASRLRREIDDRAAVVGHDRTVAPNEFTIELGPEDFDHVQSWGAETLADELATNLTEYASSQHYAFVGPVSVSFERDEQLTRGRFQLRSATVRGNVAPATNPAPSTRHPLIDIDGQRYLLTGPVTVIGRDAEADIVVDDPGVSRRHLEIRVTPEGVVATDLGSTNGLFVEGHQVPAATLLDGNTLTIGRTRIMFWTGTSAGRTNEEWNANANANANA
AK018_04891480fhaB_2COG1716FHA domain-containing protein FhaBATGAGCGAGCTGACGTTCACCCTGCTGCGGCTGGGATACCTGGTGCTGCTCTGGGTGTTCGTGCTCTCCGCGGTAGCCGTGCTCCGCCGCGACCTCGCGCTGCGCGGCACGCCCCGTGCGCGCAAGAAGTCCGACGACGGCGCCCCGGCGGCCGCGCCGACGACCTCCCCCCGCGGCGCCGCACCGTCGGGTCCCACCCGCCTGGTCGTGACGCAGGGTCCGCTGACCGGCACCACGCTGCCGCTGTCCGGCTCGTCGATCCTCATCGGCCGCGCCCCGAGCTGCACGCTCGTGCTGGACGACGACTACTCCTCCTCCCGGCACGCGCGGATCTTCCCGCAGGGCGACCAGTGGTACGTCGAGGACCTGGGGTCGACGAACGGCACCTACCTCGGTGAACAGCGCGTCTCGGCGCCGACCCGCCTGGGTCCCGGCGTCGGCGTGCAGATCGGCCGGTCCGTCGTCGAGCTGCAGGGGTGAMSELTFTLLRLGYLVLLWVFVLSAVAVLRRDLALRGTPRARKKSDDGAPAAAPTTSPRGAAPSGPTRLVVTQGPLTGTTLPLSGSSILIGRAPSCTLVLDDDYSSSRHARIFPQGDQWYVEDLGSTNGTYLGEQRVSAPTRLGPGVGVQIGRSVVELQGNANANANANA
AK018_048921347pstP_2COG0631PP2C-family Ser/Thr phosphataseGTGACCCTCGCCCTGCGCTACGCCGCGCGCTCCGACGTCGGGCTGGTGCGCCACGACAACCAGGACTCGGCCTACGCCGGCCCGAACCTCCTGGTCGTCGCCGACGGGATGGGCGGGCACGCCGGCGGCGACATCGCCTCCAGCCTGGCGATCTCGGCCCTCGCCCCGCTGGACACCCCCGAGCACGGCCCCGACCAGGCGCTGCACGACCTGGAGGAGACCGTCGAGCGCGCCCGGCAGGACCTCGTGCACGCCTCGGAGATCGACCCCGACCTGGCCGGCATGGGCACCACCGTCACCGCCCTGCTCCGCTCGGGCAACACGCTGGCGATGGCGCACCTCGGCGACTCGCGCGCCTACCTGCTGCGCGACGGCACCCTCACGCAGGTCACCGTCGACCACACCTTCGTCCAGCACCTCGTGGACACCGGCCGGATCTCGCCGGACGAGGCCGAGACGCACCCCCAGCGCAACGTCGTGATGCGGGTCCTCGGCGACTTCGACGTCGACCTGACGCCCGACATGTCCATCCGCGAGGCGCGCGCGGGGGACCGGTGGCTGCTCTGCTCCGACGGCCTGTCCGGGTTCGTCCCCGTCGACCAGATCACCGACGTCCTCGGCGAGTGCGAGTCGCCCGACGAGGCGGCCGACCTGCTCATCACCCTGGCGATGACGGCCGGCAGCACCGACAACATCACGGTCGTGGTCGCGGACCTCGTCGACGACGAGGTCGTCCCGCCGCCGGCCGACACCACCCAGGTCGTGGGCGCCGCCGCCACCGACGTCGCCGCGCCCGTCACCCGCGAGGCCGGCCCCGAGCCCGCGCCCGCCGAGGCCGCACCGGCCGCCCCCGCTCCCCACGACGAGGACGAGGAGGAGGAGGACGAGTCGAGCGACGACGTCCGACCCCGTCGTCGCCCCTGGGTCGGCGTGCTCGTCGCGCTGCTCGTCCTGGCCGGCCTGGGGTTCGGCGGCTGGTGGGCCTACGGCTGGACGCAGGACCAGTACTACCTCGGCGTGGCCGACGGCCAGGTCGCCGTCTACCAGGGCATCCCGCAGGACGCGGGCCCGATCTCCCTGTCGCGGGCCGTCGAGGTGACGAGCACGTCCGTCGACGACCTGCCGGCCTACTGGATCGAGCGGCTCGACGGCTCGATCCGCGCCGAGTCCCTGGACGAGGCCCTGGAACGGGCCGACCGCCTCGCCGAGGAGGCCGCCCCCACGCCCGTCCCGGCCCCTTCCCCCAGCAGCTCCCCGTCCCCGAGCCCCTCCGACGGGCCCAGCGCGCGTCCCGACTCCTCGCCGAGCCAGGAGCCGGCGCAGGCCGCGGGGGAGGGTGACGCGTGAMTLALRYAARSDVGLVRHDNQDSAYAGPNLLVVADGMGGHAGGDIASSLAISALAPLDTPEHGPDQALHDLEETVERARQDLVHASEIDPDLAGMGTTVTALLRSGNTLAMAHLGDSRAYLLRDGTLTQVTVDHTFVQHLVDTGRISPDEAETHPQRNVVMRVLGDFDVDLTPDMSIREARAGDRWLLCSDGLSGFVPVDQITDVLGECESPDEAADLLITLAMTAGSTDNITVVVADLVDDEVVPPPADTTQVVGAAATDVAAPVTREAGPEPAPAEAAPAAPAPHDEDEEEEDESSDDVRPRRRPWVGVLVALLVLAGLGFGGWWAYGWTQDQYYLGVADGQVAVYQGIPQDAGPISLSRAVEVTSTSVDDLPAYWIERLDGSIRAESLDEALERADRLAEEAAPTPVPAPSPSSSPSPSPSDGPSARPDSSPSQEPAQAAGEGDANANANANANA
AK018_048931623ftsW_3peptidoglycan glycosyltransferase FtsWGTGAGCGTGGACTCCACGGTGGCGCCTCGCCAACGTCGCCCCCTGCGCCTGGCCGAGGTCTTCCTGCTCCTGCTCGCGCTCGCCGGCGGGATGGGCGGCTACGCGATGGTCGGGCTGTCGATCCGCGACGAGCTGCCCGACAGCTTCTGGTGGCGCAGCGCCCTCCTCGCCGCGACCGCGCTCGTCGCCCACCTCGTCCTGCGGTTCCGGGCACCGTGGTCGGACCAGGTGATCCTGCCCGCCGTCGTGCTGCTCAACGGGATCGGGCTGTCGATGATCTGGCGGCTGGAGATCTCCGGCGCCTCCGGCATGGCCCCGGCCGACGCCGCCGGCAACATGACGGCGTCGCTGCTGGGCGCCGTCGTCGCGTTCACGCTCCTGTGGCTGCTGCGCGACCACCGCTGGCTGCGCCGGTACACCTACATCTTCATGCTCGTCGGTCTGCTGCTGGTGTCCCTGCCGCTGATCCCCGGCCTCGGCGAGCAGATCAACGGCGCCCGCATCTGGATCTCCGTCGGCGGCTTCTCGCTGCAGCCCGCCGAGTTCGCCAAGATCGCGCTGGCCGTGTTCTTCGCGGGCTACCTCGTCGTCAACCGGGACACGCTCGCGCTGGCCGGGCCGAAGGTCCTGGGCCTGCACCTGCCGCGGCTCAGCGACCTCGGCCCGATCATGCTCGTCTGGGGCGTCTCCCTGGTGATCCTGGTCTTCCAGCGCGACCTGGGAACGTCGCTGCTGTTCTTCGGCCTCTTCGTCGCCATGCTGTACCAGGCCACCGCCCGCTCGAGCTGGATCGTGCTCGGCATGACCCTGTTCGCGGTGGGAGCGATCTCCGCGGCCCGGCTGTTCCCGCACGTCGGAGCACGTATCGACGTGTGGCTGCACCCCCTGGACGCCGAGCAGTACGACCGCGAGGTCGGTGGGTCGTTCCAACTCGTCCAGGGCATGTTCTCGATGGCCAACGGCGGCCTGTTCGGCACCGGCTGGGGCGAGGGCCGCCCCTTCCAGATCCCGTACGCCTACTCGGACTTCATCTACGCCGCCCTCGGCGAGGAGCTCGGGCTGACCGGACTGGCCGCCATCCTGCTGACCTACCTGCTCATCGTCCAGCGCGGCTTCAAGTCCGCCCTGACGGTGCGGGACGGCTTCGGCAAGCTGCTGGCCGCCGGTCTCGCGTTCGTCATGGCGCTGCAGATCTTCGTCGTGGTCGGCGGCATCACGCGCATCATCCCGCTGACCGGCCTGACCCTGCCGTTCATGGCCCAGGGCGGTTCGTCGCTGCTGGCCAACTGGATCGTCATCGCCCTGCTGCTGCGCATCTCCGACAGCGCGCGCCGCCCGTCCGACCTGCCGGTGCGCGGCCAGGTCTCGCACGAGCGCGAGCCCGTGCTCGTGGGCGCCGGCGCCGGGCCCGACGACGGCACCCCGGTGGCGGGCACCCCCGCCGTCGGCGGCCCCTCGCCGGTGCCCGACGACGGCACCCCGGCGGCCGGCACCGCGCTGCCGCGCCGCAGCGTCTCCGAACGCGACGGGGGAGGCCCCTCCGGCACCTCCGGTTCGTCGGACCCCACCGAACATCTCGACCCGACCGACCCCGAGACCCCGCGAGGAGGTGACCGCCCGTGAMSVDSTVAPRQRRPLRLAEVFLLLLALAGGMGGYAMVGLSIRDELPDSFWWRSALLAATALVAHLVLRFRAPWSDQVILPAVVLLNGIGLSMIWRLEISGASGMAPADAAGNMTASLLGAVVAFTLLWLLRDHRWLRRYTYIFMLVGLLLVSLPLIPGLGEQINGARIWISVGGFSLQPAEFAKIALAVFFAGYLVVNRDTLALAGPKVLGLHLPRLSDLGPIMLVWGVSLVILVFQRDLGTSLLFFGLFVAMLYQATARSSWIVLGMTLFAVGAISAARLFPHVGARIDVWLHPLDAEQYDREVGGSFQLVQGMFSMANGGLFGTGWGEGRPFQIPYAYSDFIYAALGEELGLTGLAAILLTYLLIVQRGFKSALTVRDGFGKLLAAGLAFVMALQIFVVVGGITRIIPLTGLTLPFMAQGGSSLLANWIVIALLLRISDSARRPSDLPVRGQVSHEREPVLVGAGAGPDDGTPVAGTPAVGGPSPVPDDGTPAAGTALPRRSVSERDGGGPSGTSGSSDPTEHLDPTDPETPRGGDRPNANANANANA
AK018_048941458pbpA_2COG0768Penicillin-binding protein AGTGAACACGACCGCACGTCGGCTGGCCTCCATCGTCATGGTCATGTTCCTCGCGCTGCTGGTCTCCACCACGTGGATCCAGTTCTTCGCCGCGGACTCGTTGAACAGCGACCCCCGCAACGCGCGCACCCTGTACGAGCAGTTCGGCACCGACCGCGGCCCCATCGTCGTCGGCGGTGAGGCCGTGGCGGACTCCGTCCCGGTCGACGACGAGTGGAACTACCAGCGCGAGTACACCCAGGGCCGGTTGTACGCCCCGCTGACGGGCTACTACTCGCTGGTCAGCGGCACCTCCGGCATCGAGCGCGCCGAGAACGACTTCCTCGCCGGCTCCGCCGACGCCCTGTGGGTGGACCGGCTGCGCAACCTGCTGACCGGCACGGACCCGCAGGGTTCCGCCGTCGAGCTCACCGTGGACCCGGCGGCCCAGCAGGCCGCCTGGGACGCCCTCGGCGACCAACGGGGCGCCGTCGTCGCGCTCGAGCCGTCGACCGGCCGGATCCTGGCACTGGTCTCCAAGCCGACGTTCGACCCGAACGACCTGGCGACCCACTCGACCAAGGACGCGAACGACGCCTACCTCGAGCTGTCCAACGCCGAGGACAAGCCGCTGAACAGCCGCGCGACCGCGGAGATCTACCCCCCGGGGTCGACGTTCAAGCTGGTCACCGCCGCCGCGGCCCTCGAGAGCGGCGACTACACCGCCGACACGGTCGTCGACGCCCCCGACACGTACACCCCGCCCGGGACGGACCGCTCGATCAACAACTACGGCGGCACCTCCTGCTCGTCCTCCGGGGAGCAGAGCCTGGCCGACGCGCTGCGGATCTCCTGCAACACCGCGTTCGCCGAGCTCGGCGTCACGCTCGGCGACGAGGCCCTCCAGGAGCAGGCCGAGGCCTTCGGGTTCGGGTCCGGCATGACCGTGCCGTTCGGCACCGCCGCCAGCGTGTTCCCCGCACCGCCGATCGACCCCGCGTTCGTGGCGCAGTCCGCCATCGGGCAGTGGGACGTGGCCGCCACCCCGCTGCAGATCGCGATGGTCTCGGCCGCGATCGCCAACGACGGCGAGGTGATGGAGCCCTACTCGGTGGACCGGGTGCGCGACCAGAACCTCGACGTCGTCTCCGAGACGCGGTCCAACAGCCTGGGCCGGGCGGTCTCGACCGACACCGCCGACCAGCTCACCGACATGATGGTCGGCGTCGTCGAGGGCGGGTCCGGCACGGCGGCGCAGATCTCCGGGGTGTCCGTCGCCGGCAAGACGGGGACCGCCCAGACGACCAGCGACGCACCGCCGCACACCTGGTTCACCGGGTTCGCCCCGGCCGACGACCCGCAGGTGGCGGTCGCCGTCTTCGTGGAGAACGGTGGCTCGATCGGCACCTCCGAGGCCACCGGCGGCCAGGTGTCCGCACCGATCGCCCGGGTCGTCATGGAGGCGGTGCTGAACGGATGAMNTTARRLASIVMVMFLALLVSTTWIQFFAADSLNSDPRNARTLYEQFGTDRGPIVVGGEAVADSVPVDDEWNYQREYTQGRLYAPLTGYYSLVSGTSGIERAENDFLAGSADALWVDRLRNLLTGTDPQGSAVELTVDPAAQQAAWDALGDQRGAVVALEPSTGRILALVSKPTFDPNDLATHSTKDANDAYLELSNAEDKPLNSRATAEIYPPGSTFKLVTAAAALESGDYTADTVVDAPDTYTPPGTDRSINNYGGTSCSSSGEQSLADALRISCNTAFAELGVTLGDEALQEQAEAFGFGSGMTVPFGTAASVFPAPPIDPAFVAQSAIGQWDVAATPLQIAMVSAAIANDGEVMEPYSVDRVRDQNLDVVSETRSNSLGRAVSTDTADQLTDMMVGVVEGGSGTAAQISGVSVAGKTGTAQTTSDAPPHTWFTGFAPADDPQVAVAVFVENGGSIGTSEATGGQVSAPIARVVMEAVLNGPGPT0023920_510DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023920-pbpA-K05364NANA
AK018_048951416pknD_5Serine/threonine-protein kinase PknDATGAGGCCGACCACCGGACTGTCCCTCGGGGACCGCTACCTCCTGACCCGGCGCATCGCCGTCGGGGGCATGGGCGAGGTCTGGGTCGCCGACGACAAGTACCTCGGCCGGGACGTGGCCGTGAAGGTGCTCCGCGAGGAGTACACCGGCAACGAGGACTTCCTGCGCCGCCTGCGCACGGAGGCCCGCAACAGCGCCTCGCTGTCCCACCGCAACATCGCGCAGATGTACGACTACGGCGAGCAGGACGGTGCCGGCTTCCTCGTCATGGAGCTGGTGCTGGGCGAGCCGCTGGCGGACCTGCTCGAGCGGGAGCCCGTGGTGGCGCCGCGCAAGCTGCTGCCGATCCTGTCGGCCACCGCCCGCGGCCTGCACCACGCGCACAAGGCCCAGGTGGTCCACCGCGACGTCAAGCCCGGCAACATCCTCCTCGAGCACGACGGCGGGGTGAAGATCACCGACTTCGGCGTCTCGCTGGCGGCCAACCAGGTGACCATGACCGCGACCGGCATGGTGATGGGTACGGCCCAGTACCTCTCGCCGGAGCAGGCCGTCGGGCAGGCCGCCACCCCGGCGTCCGACCTCTACGCGCTGGGCATCGTGGCCTACGAGGCGACGGCGGGCAAGCGTCCCTTCACGGGCTCGACGCCGGTCGACATCGCCGTCGCGCACGTCAACAACGCCGTCCCGCCGCTGCCGCAGGCCGTGCACCCGGGACTGGTGGACGTCATCATGCGGATGCTCGCCAAGGACCCGGGCAAGCGACCGGCCTCGGGGGCCGAGCTGGCCGACGAGCTCGACGCCCTGGCGGGCGAGATCGCCGAGGACCCCCTCGGTGCCCGGTCCCGGTCGGCACGACGGGCGGCACGCAACGGCCGCCCGGCACCGGTGCGGCACGCGCGCACCGAGGAGCCGGAGCGCACCCCCCGCACGACCGAGCGCCGCCCGACGCCGCCGCGCCCGGAACCGGAGTCCGCCGGCACCTCGACGCCCGACCAGCCGGAGACGCCGGCCCGGACCCGCCGCGACCTCGGCCGCCCACCGGTGCCGCGGACCTACCCCGCGCGCCGCGACGTGCACGGCGGGGGACGCACCACGCCCGCGCAGGGCGAACGGAACAGCGGCGCGACGCGGGCGGGTACCCGCTCGGGAGCCTCGCGCACGTCCACGACGACGGGACGACGGCTCGGAGCGCTCGGCCGGATGTCCTGGCCCCTGCTGGCCCTGCTCGGGCTGCTCGGGGTGCTGCTGGCGGCGACGCTCATCAGCGGCCTCACCGGCGGGGACGACGGCGAGGCGGCCGCCAGCACGACACAGCCCGCGACCCTGCGGGCGATGACCGTGACCGACTCTGGGATGATGCTCCCAGACCCGCCGCGCCCAGCCGGTGCGGCCACGACCGAGAAGGACGACTGAMRPTTGLSLGDRYLLTRRIAVGGMGEVWVADDKYLGRDVAVKVLREEYTGNEDFLRRLRTEARNSASLSHRNIAQMYDYGEQDGAGFLVMELVLGEPLADLLEREPVVAPRKLLPILSATARGLHHAHKAQVVHRDVKPGNILLEHDGGVKITDFGVSLAANQVTMTATGMVMGTAQYLSPEQAVGQAATPASDLYALGIVAYEATAGKRPFTGSTPVDIAVAHVNNAVPPLPQAVHPGLVDVIMRMLAKDPGKRPASGAELADELDALAGEIAEDPLGARSRSARRAARNGRPAPVRHARTEEPERTPRTTERRPTPPRPEPESAGTSTPDQPETPARTRRDLGRPPVPRTYPARRDVHGGGRTTPAQGERNSGATRAGTRSGASRTSTTTGRRLGALGRMSWPLLALLGLLGVLLAATLISGLTGGDDGEAAASTTQPATLRAMTVTDSGMMLPDPPRPAGAATTEKDDNANANANANA
AK018_048962091pknB_2COG0515Serine/threonine-protein kinase PknBGTGGAGAACACGCCCCGAGTACTCGCCGGCCGCTACGAGGTCGGTGAGCTCATCGGCCGTGGCGGCATGGCCGAGGTCCACATCGGCCACGACGCACGCCTCGGCCGCACGGTCGCGATCAAGGTGCTGCGTTCCGACCTGGCGCGCGACCCGTCCTTCCTGGCCCGCTTCCGGCGCGAGGCGCAGTCCGCCGCCGCGCTGAACCACCCGGCGATCGTCGCGGTCTACGACACCGGGGAGGACACCTCCACCGACGCCACCGGCCAGTCGGTCCACATCCCCTTCATCGTCATGGAGTACGTCGAGGGCCACACGGTCCGCGACATCCTCGCCGACGGCGCGGCCGTGCCGATCGAGGAGGCCGTCGAGATCACGGTCGGCGTCCTCAGCGCGCTGGAGTACTCCCACCACGCGGGCATCGTGCACCGCGACATCAAGCCGGCCAACGTCATGATCACGCCCACGGGGGCCGTGAAGGTGATGGACTTCGGCATCGCGCGTGCCGTCGCCGACTCCGCCGCGACCATGACGCAGGGCCAGGGCGTCATCGGCACCGCGCAGTACCTCTCGCCGGAGCAGGCCCGCGGCGAGCAGGTGGACGCCCGCAGCGACCTGTACTCCACCGGCTGCGTGCTGTTCGAGCTGCTGACCGGACGTCCGCCGTTCATCGGCGACTCGCCGGTCGCGCTCGCCTACCAGCACGTGGGCCAGGCCGCGCAGCGCCCGAGCGAGTTCGCCAACGACGTGCCCGAGGTGCTCGACCGCATCGTGCTCACGGCCCTGACGAAGGACCGCGACCAGCGCTACTCCTCGGCCGCCGAGTTCCGCTCCGACCTGGAGGCCGCGATGCGCGGCGGCGCGATCGGCGCGCCCGCCATCGGCGCGCTGGCCGCCGGGGCCGGCGCCGGCTACGCCGCGACCCAGGTCCTCGGCGACCCCGGCTCCACCCAGGTGATGGACCCGGCCCAGCAGTCCCCGTGGGGTCCGACCGGCCTGCCCGCTGACCAGACCGCGACCGGTGCGGCGGTGCCGCCCGAGGAGGAGAAGCCGAGCCGCAAGGGCCTGCTGTGGACCCTCATCGTCATCGGCGTGCTCGCGATCGCGGCGATCCTGTTCTTCCTGCTCCGAGGCGGTGACAACGCACCGGAGACGGTCGCGGTGCCCGAGCTGACGTCGGACATGAGTCCGACCGAGGCGGAACGGGCCCTGGAGGACGTCGGGCTCGTGTTCTCCCAACGGATCGACGAGGAGTCCGACGAGCCCGAGAACACCCTGACCCGCTCCGACCCGGCGTCGGGCGAAGAGGCCGAGGTCGGTTCGACCGTCCAGGTCTTCTTCTCCGGCGGTCCGGAGACCTTCGCGATGCCCGACCTCACCGGGTCCACCCTGAGCGAGGCGGAGGACCAGATCGAGGAGGCCGGTCTCGTCGTCGGGGACGTGACGCGCGAGGCGAACGCCGACTTCGCCGAGGACGAGGTCGTCTCGACCGACCCGGCCCCGCGCGAGGCGGTCGAACCGGGCGACTCGGTCGACCTCACGGTCTCCAACGGCCAGGTCGAGCTGCCGAACCTCATCGGCCAGGAGCGCGACGCCGCGGAGCAGACGCTCGACGACCTGGGCCTGGACTCGACCATCGAGACCCAGGAGGTCGACGACCCGAACGACGTCGGGCTCGTGGTCGACCAGTCGCCCTCCGAGGGCGCGGTCGCCCAGGACACCCGCGTCACGCTGACGATCGGCGAGGCGCGCGAGGTCGAGACCGTCCAGGTGCCCGACGTCGTGGGGATGTCGGCGGACGAGGCGCAGCAGGCGCTCGGGAGCCAGGCCAACCTCAACGCCGTGCAGACCACGGCGTCCTCGGCGGACTACTGCCCGGGATTCGTCTCGGCGCAGGACCCGGCGGCGGGGACCGAGGTGGACGAGGGCTCCGAGGTCACGATCACGGTCTCGACGGGCGAGTCGGGCCAGAACTGCACCGGCGGGCCGACACCGGAACCCGAGCAGCAGCCGGGGCAGGGCAACGGCGGCGGGTCGAACGACGGGTCCGACGACGGCGCCTGGCTGCCGGTGGAGCCCGACCCCGTCGACTGAMENTPRVLAGRYEVGELIGRGGMAEVHIGHDARLGRTVAIKVLRSDLARDPSFLARFRREAQSAAALNHPAIVAVYDTGEDTSTDATGQSVHIPFIVMEYVEGHTVRDILADGAAVPIEEAVEITVGVLSALEYSHHAGIVHRDIKPANVMITPTGAVKVMDFGIARAVADSAATMTQGQGVIGTAQYLSPEQARGEQVDARSDLYSTGCVLFELLTGRPPFIGDSPVALAYQHVGQAAQRPSEFANDVPEVLDRIVLTALTKDRDQRYSSAAEFRSDLEAAMRGGAIGAPAIGALAAGAGAGYAATQVLGDPGSTQVMDPAQQSPWGPTGLPADQTATGAAVPPEEEKPSRKGLLWTLIVIGVLAIAAILFFLLRGGDNAPETVAVPELTSDMSPTEAERALEDVGLVFSQRIDEESDEPENTLTRSDPASGEEAEVGSTVQVFFSGGPETFAMPDLTGSTLSEAEDQIEEAGLVVGDVTREANADFAEDEVVSTDPAPREAVEPGDSVDLTVSNGQVELPNLIGQERDAAEQTLDDLGLDSTIETQEVDDPNDVGLVVDQSPSEGAVAQDTRVTLTIGEAREVETVQVPDVVGMSADEAQQALGSQANLNAVQTTASSADYCPGFVSAQDPAAGTEVDEGSEVTITVSTGESGQNCTGGPTPEPEQQPGQGNGGGSNDGSDDGAWLPVEPDPVDNANANANANA
AK018_04897654trpG_2COG0512Anthranilate synthase component 2ATGACCTCCATCCTCGTCGTGGACAACTACGACTCCTTCGTCTACACGATCGTCGGCTACCTGGACCAGCTCGGCGCGAGCACCACCGTCGTGCGCAACGACGCCGTGCCGGAGCCCGACGACCAGGGCCGGTTCCTCGGTGAGGACGGCACGGTCTACGACGGCGTCCTCGTCTCGCCCGGACCCGGGACGCCGAAGGAGGCCGGGGCGTCGGAGGACGTCATCCGGGCCTGTGCGCGGTCCGCGACCCCGATGCTCGGCGTCTGCCTCGGGCACCAGGCGCTCGCCGAGGTCTACGGCGCGACGGTCTCCCACGCCCCTGAGCTGATGCACGGCAAGACCAGCGAGGTCGAGCACGAGGGCACCGGCGTGCTGGCCGGCCTCGGCTCGCCGTTCACCGCGACGCGGTACCACTCCCTCGCCGTCGAGCCGCACACCGTGCCGACCGACCTCGAGGTCACCGGGACCACCGCCGGCGGCGTCGTCATGGGTCTGCAGCACCGCGACCTGCCGCTGCACGGCGTGCAGTTCCACCCCGAGTCGGTGCTGACCGTGGGCGGCCACCGGCTGCTCGCCAACTGGCTGGCCGTGTGCGGCGACGCCGACGCCGTCGAGCGCTCCGCCGGCATGGCGCCCCTGGTGCACACGGCCTGAMTSILVVDNYDSFVYTIVGYLDQLGASTTVVRNDAVPEPDDQGRFLGEDGTVYDGVLVSPGPGTPKEAGASEDVIRACARSATPMLGVCLGHQALAEVYGATVSHAPELMHGKTSEVEHEGTGVLAGLGSPFTATRYHSLAVEPHTVPTDLEVTGTTAGGVVMGLQHRDLPLHGVQFHPESVLTVGGHRLLANWLAVCGDADAVERSAGMAPLVHTAPGPT0008000_211DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008000-pabA-K01664NANA
AK018_04898171hypothetical proteinATGATGTACGGCCTGCTGTGGCGCGCCCTGCCCGGTCCGGCCTGGTTCCGCGCGCTCCTGCTCCTGGCACTGTTCGTGGCGGCCGTCTGGGTCTGCTTCGAGTGGGTCTTCCCCTGGTTCTCCGAGTACGTCCCCATCAACGACAACACCGTCGAGGCGCACGCACCATGAMMYGLLWRALPGPAWFRALLLLALFVAAVWVCFEWVFPWFSEYVPINDNTVEAHAPNANANANANA
AK018_04899816srtE1_2COG3764Sortase SrtE1GTGAGGCACGCCCCCGCCGACGCCGGCCGTCGCGGCGGCGGCGCGGTCAGCGCGACGATCGGCGTCGTCGGCGAGCTGCTCATCACCGCCGGCGTCGTGCTCGGTCTGTTCGTCGTGTGGCAGCTGTGGTGGACGGACGTCCAGGCCGAGCGCATCCACAGCCAGGTGCTCGCCGAGCTGGACTGGCCCGAACCCCCCGTCGAGGTGCCGTCCGGCAGCTCCGTCGAGGGGCCCGCCGTCGCCGAGGAGCACCGGGACGACCCGCCCATCATGGGCGAGCCCGCGTTCGGCGAGGTCTTCGCCCAGTACTACGTCCCCCGGTTCGGTGCCGACTACGTCGAGCCGGTCGCCCAGGGGATCGACAAGGCCGAGGTGCTGGACCGGCTCGGCATCGGGCACTACCCCGACACGGCGCTGCCCGGCGACCTCGGCAACTTCTCGGTCGCCGGGCACCGCACCACCTACGGCCGGCCGTTCCACCAGATCGCCGAGCTCCAGCAGGGCGACCCGGTCGTCGTACGGACCGCGAACACCTGGTACGTCTACCGGATGACCTCCTCGCAGATCGTCTGGCCGGACCAGGTCGAGGTCGTCTCCCCGGTCCCCGGTGTCCGGCCGGGCGAGCCCCTGCCCGAGCTGACGCAGCGCTTCCTGACGATGACGGCCTGCCACCCGATGTACTCGGCAGCCCAGCGCTACGTCGTGCACGCCGAGCTCGACTACTGGGCCCCGGTGGACGAGGGGATCCCGGCCGAGCTGCTCGACGCCGGCGTCGAGATCCAGGCACTGGCCGACGACGACGCGGGGGTGCGATGAMRHAPADAGRRGGGAVSATIGVVGELLITAGVVLGLFVVWQLWWTDVQAERIHSQVLAELDWPEPPVEVPSGSSVEGPAVAEEHRDDPPIMGEPAFGEVFAQYYVPRFGADYVEPVAQGIDKAEVLDRLGIGHYPDTALPGDLGNFSVAGHRTTYGRPFHQIAELQQGDPVVVRTANTWYVYRMTSSQIVWPDQVEVVSPVPGVRPGEPLPELTQRFLTMTACHPMYSAAQRYVVHAELDYWAPVDEGIPAELLDAGVEIQALADDDAGVRPGPT0024075_911DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_SORTASE,PGPT0024075-srtA-K07284NANA
AK018_04900732hypothetical proteinGTGTCATCTCGCATCCGATCCGGGATCACCGTCGCGGTCGTCCTCGCGCTGTCCGGGGTGCTCTTCACCGTCAGCGCGCAGCTCAGCAGCGGCGACGAGAGCCGCCACGCGGAGGACCTGTCCGCGGTCGTCGCCGAGGAGGCCGACCGCGTCGACGCGCTCACCGAGCAGGTGGCCGCCCTCGACGCCGAGATCCAGGCGCTGAGCGAGGCGGTCCCGGGAGACGTGCCGCGCCGCTCCGCCGAGCTGCGGTCGGAGGAGGGCGTCGTCTCCGGCGCCTGGCCGGTCGAGGGACCCGGGATGCGGGTCGCGCTCGAGGACGCGCCGTCGTCGTCCCTGGCCATCGAGAACGTCACGGCGGACGACCTCGTCGTCCACCAGCAGGACGTGCAGCACGTCATCAACGCCCTGTGGGCGGGCGGCGCCGAGGCGATGACGCTCCAGGGCGAGCGCGTGACCCCGACCAGCGCCTTCCGCTGCTCGGGGAACATCATGCTGCTGCACGGCAAGGTGTTCTCCCCGCCGTACGTCGTCGAGGCCGTGGGTGACCCGGACCGCCTCCAGTCCGCCCTCGACTCCTCGCCCGGCGTGGCCATCTACCAGGACTACGTGGACTGGATCGACCTCGGGTACTCGGCCGAGCCGCTCGACCGCATCGAGATCCCTGCGGCGTCCGGCGGTCAGGACGTGCAGTTCGCCGACGTGCCCGACGGCACGGACGTGTTCTCGTGAMSSRIRSGITVAVVLALSGVLFTVSAQLSSGDESRHAEDLSAVVAEEADRVDALTEQVAALDAEIQALSEAVPGDVPRRSAELRSEEGVVSGAWPVEGPGMRVALEDAPSSSLAIENVTADDLVVHQQDVQHVINALWAGGAEAMTLQGERVTPTSAFRCSGNIMLLHGKVFSPPYVVEAVGDPDRLQSALDSSPGVAIYQDYVDWIDLGYSAEPLDRIEIPAASGGQDVQFADVPDGTDVFSNANANANANA
AK018_04901258crgA_2Cell division protein CrgAGTGTCCGAGAAGTCCGAGAAGCCCCAGAAGAAGTCCGCCGCCTCGGAGCCTGCGCTGCCGCAGAAGTCCTCGGCCAACCCGCGCTGGCTCGTGCCGACGATGCTGACGCTCATGCTCGCGGGCCTGGCCTGGATCGTCACCTACTACCTGACGAGCCAGAACCTCGGTCTGCCGGTGCCGGCGCTGGGCAACTGGAACCTGCTGGTCGGCTTCGTGCTCATCATCGCCGGGTTCTCGCTGACCACGCGCTGGAAGTGAMSEKSEKPQKKSAASEPALPQKSSANPRWLVPTMLTLMLAGLAWIVTYYLTSQNLGLPVPALGNWNLLVGFVLIIAGFSLTTRWKNANANANANA
AK018_04902816glpG_2Rhomboid protease GlpGGTGTCGTACGTGCGCTGCCAGCGCTGCGGCCGTCCGGCCTGCCCGGAGTGCCAGCGCCCGGCCGCGGTCGGCGTCCAGTGCGTCGACTGCGTGGCCAGCGCGCAGCGCAGCACGCGCAGCGCCCGGACGGTCTTCGGGGCCACGGTGCGGGGCGGCCGGCCGGTCGTCACGCTGACGATCATCGGGCTGTGCGCCGTGAGCTGGATCCTGCAGCTCGCCACCGGCGGCGCCTGGACCCAGGCGTGGGCGTTCTCCCCCGCCACCGGTCAGGTCGAGCCGTGGCGGTTCCTCACCGCGGCGTTCCTGCACTCCACGACCCCGCTGCACATCCTGTTCAACATGTACGCGCTGTGGCTCGTGGGACCGTTCCTCGAGCAGGCGTTCGGGCGCGGTCGCTTCATCGCGCTGTACGTGCTGGCCGCCGTCGGCGGGCAGGTGGGCGTGCTGCTCCTCGCCGACCCGACGCAGGACAGCTGGTTCATCGGGGTGGTCGGCGCCTCCGGGGCCGTCTTCGGCCTCTTCGGCGCGATCATCCCCGTGCTGCGACGGCTGGGGAAGAACGCCGGTCAGATCGTCGTGCTCATCGCCATCAACATGGCCCTGCCGCTGTTCGTGCCGAACATCGCGTGGCAGGCGCACCTCGGCGGCCTCGCCGTCGGTCTGGTGATCGGCGCCGGGTACGCGCTGGCCCCGCGCGAGCGGCAGCGCCTCGTGGGCTGGGCGCTGCCGACCGCCGTCGGCGTGGTGCTGGTCGCCGCGGCGACCTGGAAGTACTCCACGGTGCCGACGGTGGCCGGGCTGCTGGGGCTGTTCTGAMSYVRCQRCGRPACPECQRPAAVGVQCVDCVASAQRSTRSARTVFGATVRGGRPVVTLTIIGLCAVSWILQLATGGAWTQAWAFSPATGQVEPWRFLTAAFLHSTTPLHILFNMYALWLVGPFLEQAFGRGRFIALYVLAAVGGQVGVLLLADPTQDSWFIGVVGASGAVFGLFGAIIPVLRRLGKNAGQIVVLIAINMALPLFVPNIAWQAHLGGLAVGLVIGAGYALAPRERQRLVGWALPTAVGVVLVAAATWKYSTVPTVAGLLGLFNANANANANA
AK018_04903552cypB_2Peptidyl-prolyl cis-trans isomerase BATGATGGGTCCCATGTTCGCAACCCTCCACACCTCCGCCGGTGACATCCGCCTCGAACTGCTGCCGAACCACGCGCCGAAGACCGTCGCGAACTTCGTCGGTCTCGCCCGGGGCACGACGACGTGGACCGACCCGCGGACGGGCGCCGAGCGCAACGACCCGCTCTACGACGGCGTCATCTTCCACCGCGTCATCGAGAACTTCATGATCCAGGGCGGCGACCCCCTGGGCACCGGCACCGGCGGCCCCGGCTACACCTTCGACGACGAGATCCACCCGGAGCTGTCGTTCGACCGCAAGTACCTGCTCGCCATGGCCAACGCCGGCAAGCGCCGCAACCCCGTGACCGGCGCGGTCGAGGGCACCAACGGCTCCCAGTTCTTCATCACCACCGCCGAGACGCCGTGGCTCAACGGCAAGCACACGATCTTCGGCGAGGTGGCCGACGACGAGTCCCGCGCGGTGGTCGACGCCGTCAACTCCACCGCGACGCGTCCCGGCGACCGTCCCGTCGAGGACGTCGTCATCCAGAGCGTGACGATCGAGGACTGAMMGPMFATLHTSAGDIRLELLPNHAPKTVANFVGLARGTTTWTDPRTGAERNDPLYDGVIFHRVIENFMIQGGDPLGTGTGGPGYTFDDEIHPELSFDRKYLLAMANAGKRRNPVTGAVEGTNGSQFFITTAETPWLNGKHTIFGEVADDESRAVVDAVNSTATRPGDRPVEDVVIQSVTIEDPGPT0015110_2107DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
AK018_04904834hypothetical proteinATGGTGCAGACTCCGAAGATCGACCCCGCCAAGGTGAAGGACTCCACCGCGGAGGTCGCGGCCGCGCTCGTCGGCGCGGGCGCCCGCGCCGCGGACAGCGCCAAGGACGCCGCCGGTCAGGCCAAGGACTGGGCCGGGCCTCGTGCCGACGCCTTCCTCGAGTGGCTCCGGCCTCGCGTCGAGAAGGCGTGGAACGACAGCGTCCAGGCTGCGGCACCCCGCGTGGAGGACGCGGCCGGCAAGGCCGGACCCCTCATCGACACCGCCCACGAGAAGCTCGTCGACGACTACCTCCCGCAGCTCGTCACCGCCTTCAACGCGGCGGCCGCCAAGGCCGCGGCCACCGCCGACGAGGCCAACAAGGCAGCGAAGCAGGCGGCGAAGTCCGCAGAGAAGTCGGCGCGCAAGGCCCAGCGCCGGTCCAGCCGCCGCAAGGCGTTCGGCTGGACCGTGGTCATCGGTGGCCTGGCCGCCGTCGGGTACGCGTTCTACCGCCGGGCCCAGCCGCAGAACGACCCCTGGGCCGAGCCGTGGGAGCAGTCCTCGACGCCGGACTTCGACGGCGTCGCGCGCGACGCACGGCACGCCGTGGGGGACGCGGCCGAGGCGGTCGGCGAGGCCGCCGGCTCCGCCGTCGCCAAGGGCAAGGAGGCCGTCTCCGAGGCCCGCGAGAAGGCGTCCACGCGGACCGCGAAGTCGCGCCAGAAGGCGGACGAGGCGGCCGAGGAGACCGGTGACGCCGCCGAGAAGGCCGGCGAGACAGCGGCCGACGGCGCCGAGGACGCCAAGAACTCGGCCGGCCAGGCCTCCCCGGCCGACGACAAGAAGGAGTAGMVQTPKIDPAKVKDSTAEVAAALVGAGARAADSAKDAAGQAKDWAGPRADAFLEWLRPRVEKAWNDSVQAAAPRVEDAAGKAGPLIDTAHEKLVDDYLPQLVTAFNAAAAKAAATADEANKAAKQAAKSAEKSARKAQRRSSRRKAFGWTVVIGGLAAVGYAFYRRAQPQNDPWAEPWEQSSTPDFDGVARDARHAVGDAAEAVGEAAGSAVAKGKEAVSEAREKASTRTAKSRQKADEAAEETGDAAEKAGETAADGAEDAKNSAGQASPADDKKENANANANANA
AK018_04906123hypothetical proteinATGTTGAAGAAGATCATCGTCGCCGTGCTGGCCGCGGTCGCCGGCTACCTGGTCTGGCGCCGTCTCTCCGAGGACGCCGCGGACCGTGACCTGTGGACCGAGGTCACCGACTCACTCGACTGAMLKKIIVAVLAAVAGYLVWRRLSEDAADRDLWTEVTDSLDNANANANANA
AK018_04908990hypothetical proteinATGGCGAGCCAGAAGACGACGTCGCAGGCGGGTACTCCCCTGTCCGCGCCTGCTGACAGCACCCAGCCCATCACGCCGGTGTCCGAGACGACGGACCGGTCCACCGGGTCCGAGCGGCCCGCTCCGGCGCCGCCTGCACCGGCGCAGCCCGCACCCGCCGAGCACGGGCCTCGGGACGAGGGCGCGGCCGAGGCACCCACGAACGGTGCGGCCTGGTCCTCCTCCGACGGGGCTGCGTCCGATCGGGCTGCGTCCGACGGTGCCGCAGCGGCGTCCTCGGACGCCGAGCCGCCGAAGCACGGGACCGAGACCTCCGGCGCGGCCACGAACGGTGCGGTGAAGGCCGCCGCGGCCGCGCTGGCCGCCGCACGCAGCGCCGCGAAGAAGGTGCAGTCCGCCGGGTCGGCCGCCTCCGGTGCCACCCCGGGCGGCGCGCAGCCGACCGGCTCGACGGCCGGCACGGGCTCGTCGGCGCCGCCCCCGCCCCCGGACGCCACGTCGTCCGGTCCCCGCCCGGAGATGCACTACTCGGCCGGTGGCGTGCACGGCAGCGCCCAGCAGGTGCCGCTCTCCGCCGAGGGCTCGCCCCAGACCGGCGCGCAGCCGGCCGTCGCGGCGGACGGTCTCGGCAGCCCGCGCCGCGTGCGGCTCTCGGTGTCGCGCATCGACCCGTGGTCGATCATGAAGCTGGCGTTCCTGCTCTCGGTGGCGATCGGGATCATGACGGTGGTCGCGACGGCCGTCGTCTGGTACTCGCTGAACTCCGTCGGCACCTTCGCGACCGTGCAGGACTTCCTCATCAGCACGCTCGGCCCGCAGGCCATCGACATCACGCAGATCGTGGAGCTCGAGCGCACCGTGTCCCTGGCGACGCTGATCGCCCTGGTCAACGTCGTGCTGTTCACGGCCATCGCGACCATCATGGCGATGCTCTACAACATCACCGCCGCGCTCGTCGGGGGTGTGCACCTGACCCTGACGGACGAGTGAMASQKTTSQAGTPLSAPADSTQPITPVSETTDRSTGSERPAPAPPAPAQPAPAEHGPRDEGAAEAPTNGAAWSSSDGAASDRAASDGAAAASSDAEPPKHGTETSGAATNGAVKAAAAALAAARSAAKKVQSAGSAASGATPGGAQPTGSTAGTGSSAPPPPPDATSSGPRPEMHYSAGGVHGSAQQVPLSAEGSPQTGAQPAVAADGLGSPRRVRLSVSRIDPWSIMKLAFLLSVAIGIMTVVATAVVWYSLNSVGTFATVQDFLISTLGPQAIDITQIVELERTVSLATLIALVNVVLFTAIATIMAMLYNITAALVGGVHLTLTDENANANANANA
AK018_049092634gyrA_4COG0188DNA gyrase subunit AGTGACGGACGAGACCCCCGGCCCGGACATGACCGACGGTATCGACGGCGGCGGCCCGGAGGCCCTGGCGGCGGTCGCGCACGGACGCATCGAGCAGGTCGACCTGCAGCTCGAGATGCAGCGCAGCTACCTCGACTACGCGATGAGCGTCATCGTCGGTCGCGCGCTGCCCGACGTGCGCGACGGCCTCAAGCCCGTGCACCGGCGCGTGCTGTACGCGATGTACGACGGCGGCTACCGGCCGGACCGGTCGTTCTCCAAGTGCTCCCGCGTCGTCGGCGACGTCATGGGCAAGTACCACCCGCACGGTGACACGGCGATCTACGACGCCCTGGTCCGCCTCGTGCAGGACTGGTCGATGCGCTACCCGTTGGTGGCCGGCCAGGGGAACTTCGGCTCCCCCGGCAACGACCCGGCGGCCGCCCCGCGGTACACCGAGTGCAAGATGGACCCGCTCGCGCTGGAGATGGTGCGGGACATCGAGAAGGACACCGTCGACTTCCAGGACAACTACGACGGGCGCACCCAGGAGCCCACGGTCCTGCCGTCGCGGATCCCGAACCTCCTGGTCAACGGTTCGGCCGGCATCGCCGTCGGCATGGCGACCAACATCCCGCCGCACAACCTGCGCGAGGTCGCCGCGGGCGTGCAGTGGCACCTCGAGCACCCGGACGCCTCCAAGGAGGAGCTGCTCGCCGCGCTGATGCAGCGCATCAAGGGCCCCGACTTCCCCACCGGTGCCCAGATCCTGGGCACGTCCGGCATCGAGGAGGCCTACCGCACGGGGCGCGGCTCGATCACGATGCGCGCCGTGGTGAACGTCGAGGAGATCCAGAACCGGATCTGCCTGGTCATCACGGAGCTGCCGTACCAGGTCAACCCCGACAACCTGGCCACGAAGATCGCCGACCTGGTCAACGACGGCCGGATCTCCGGCATCGCCGACATCCGCGACGAGACTTCGGGCCGCACCGGTCAGCGCCTGGTCGTCGTGCTCAAGCGCGACGCCGTCGCGAAGGTCGTGCTGAACAACCTGTACAAGCACACCTCGCTGCAGGAGAACTTCAGCGCCAACATGCTGGCGCTGGTCGACGACGTCCCCCGCACGCTCAGCCTCGACGCCTTCGTGCGGCACTGGACCACGCACCAGATCGAGGTCGTGCGGCGCCGCACCGAGTACCTGCTGCGCGAGGCGCAGGACAAGATCCACATCTACGAGGGCTACCTGAAGGCGCTGGACGCCCTCGACGAGGTCATCGCCCTCATCCGTCGCTCGCCCGACGCCGACCAGGCGCGGACCGGGCTGATGGACCTGCTCGACATCGACGAGCAGCAGGCCAGCGCGATCCTGGCGCTGCAGCTCCGCCGGCTCGCGGCCCTCGAGCGGCAGCAGATCCTCGAGGAGCACGCGAAGCTCCAGGCGCAGATCACGGACTACCAGGACATCCTGGCCCGGCCCGAGCGGCAGCGGTCGATCGTCGGGGAGGAGCTGGACGCCGTCGTCGAGCGCTGGGGCGACGAGCGCCGGACCCACATCCTGCCCTTCGACGGGGACATGTCGGTCGAGGACCTCATCCCCGAGGAGGACGTGGTCGTCACGATCACCCGCGGCGGCTACGCCAAGCGCACGCGGACGGACTCCTACCGCGCCCAGCGTCGCGGCGGCAAGGGCATCCGGGGCGCCCAGCTGCGCGAGGACGACATCGTCGACCACTTCTTCGTCACGACGACGCACCACTGGCTGCTCTTCTTCACCGACGCCGGCCGCGTCTACCGCGCCAAGGGGTACGAGATCCCCGAGGGTGCGCGCGACGCCAAGGGCCAGCACGTCGCCAACCTGCTGGCCTTCCAGCCGGGCGAGCAGATCGCGCAGGTCCTGGCGCTGCGGGACTACGACGACGCCGAGTACCTGGTGCTCTCCACCCGCCGCGGCCTGGTGAAGAAGACCCGCCTGGGCGACTACGACTCCCCGCGCAGCGGCGGGCTCATCGCCATCAACCTGCGCACGGACGACGACGGCACCCCGGACGAGCTCGTGTCCGCCCGCCTGGTGGACGCCGACGACGAGATGATCCTCGTCTCGCGCAAGGGGCAGTCCATCCGGTTCGCGGCCGACGACGACACCCTGCGCCCGATGGGACGCGCCACCTCGGGCGTGACGGGCATGAAGTTCCGCGACGGCGACGAGCTCCTCGCGGCCGACGTCGTCGAGCCGGAGACCGACCTGTTCGTCGTCACCGAGGGCGGGTTCGCCAAGCGCACCCGCATCGACGAGTACAGGCTCCAGGGCCGCAACGGCTACGGCATCAAGGTCGCGAACCTCGTCGAGGCGCGCGGCGACCTCGTCGGTGCGCTCGTCACCGAGCCCGACACCGAGGTGCTGGTGATCATGTCCAAGGGCAAGATCGTCCGCTCCCGCGTCGACGAGGTGAACCTGACCGGCCGCACCACCCAGGGTGTGACCTTCGCAAAGCCGGACAAGGGCGACCGGATCATCGCCGTCGCGCGGAACGTCGAGCGTCGCGCGGAGGCCGAGTCGGTTAGCGTGGAACAACCGGCCGACGACGTCGAGCCGGCCGAGGAGGCGACGGCGAGCACGCCGGAGCAGGACGAGACCGGGGACGGGAACATCTGAMTDETPGPDMTDGIDGGGPEALAAVAHGRIEQVDLQLEMQRSYLDYAMSVIVGRALPDVRDGLKPVHRRVLYAMYDGGYRPDRSFSKCSRVVGDVMGKYHPHGDTAIYDALVRLVQDWSMRYPLVAGQGNFGSPGNDPAAAPRYTECKMDPLALEMVRDIEKDTVDFQDNYDGRTQEPTVLPSRIPNLLVNGSAGIAVGMATNIPPHNLREVAAGVQWHLEHPDASKEELLAALMQRIKGPDFPTGAQILGTSGIEEAYRTGRGSITMRAVVNVEEIQNRICLVITELPYQVNPDNLATKIADLVNDGRISGIADIRDETSGRTGQRLVVVLKRDAVAKVVLNNLYKHTSLQENFSANMLALVDDVPRTLSLDAFVRHWTTHQIEVVRRRTEYLLREAQDKIHIYEGYLKALDALDEVIALIRRSPDADQARTGLMDLLDIDEQQASAILALQLRRLAALERQQILEEHAKLQAQITDYQDILARPERQRSIVGEELDAVVERWGDERRTHILPFDGDMSVEDLIPEEDVVVTITRGGYAKRTRTDSYRAQRRGGKGIRGAQLREDDIVDHFFVTTTHHWLLFFTDAGRVYRAKGYEIPEGARDAKGQHVANLLAFQPGEQIAQVLALRDYDDAEYLVLSTRRGLVKKTRLGDYDSPRSGGLIAINLRTDDDGTPDELVSARLVDADDEMILVSRKGQSIRFAADDDTLRPMGRATSGVTGMKFRDGDELLAADVVEPETDLFVVTEGGFAKRTRIDEYRLQGRNGYGIKVANLVEARGDLVGALVTEPDTEVLVIMSKGKIVRSRVDEVNLTGRTTQGVTFAKPDKGDRIIAVARNVERRAEAESVSVEQPADDVEPAEEATASTPEQDETGDGNIPGPT0027705_992DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027705-parC-K02621NANA
AK018_049102097gyrB_3COG0187DNA gyrase subunit BGTGGCTCAGCGATCCGACGGCGGCTACGACGCCGGGAACATCACCGTCCTCGAGGGACTCGAGGCCGTCCGCAAGCGACCCGGCATGTACATCGGGTCGACGGGTGAACGCGGTCTGCACCACCTGGTCTACGAGGTCGTGGACAACTCGGTGGACGAGGCCCTGGCCGGGCACGCCGACCGGATCGACGTGACCCTGCTGGCCGACGGCGGTGTGCGGGTGACGGACAACGGCCGCGGCATCCCGGTGGCCATGCATCCCACCGAGGGTCGTCCCACCGTCGAGGTCGTCATGACGATCCTGCACGCCGGCGGCAAGTTCGGCGGTGGCGGCTACGCCGTCTCCGGCGGCCTGCACGGGGTGGGCATCTCGGTGGTGAACGCGCTGTCCAGCCGCGTGGTCACCGAGGTCGAGCGCGACGGCTTCGCGTGGCGCCAGGAGTTCGCCGACGGCGGCGCCCCGGTGGGCGAGCTGCAGCGCCTCGGCGAGACCGACCGCACCGGCACCACGCAGACGTTCTGGGCCGACCCGGCGATCTTCGAGACCACGGACTACGACTTCGAGACGCTCCGCGCCCGGTTCCAGCAGATGGCGTTCCTCAACAAGGGCCTGCGCATCACGCTGACCGACGAGCGCACCGAGCACGTCTCGGGTCCCGACGAGGTGACCGGCGCGCTCGACTCGCGCGCCGTCGTGGCCGCCCTGGAGGGTGCCGACGCCACCGACGGTCAGGACGCCGCCGCCTCCTCGCCGGACGACGAGGTGCACGACTCCGAGTCCGCCGCGGGTGCGGTGCGCACCGTGACGTACAAGTACGACGGCGGGCTGCGGGACTACGTCGCGCACATCAACACGGCCAAGAAGGCCGAGATCATCCACCCCGAGATCATCGACCTGGAGGCCGAGGACACCGACCTCAAGGTCTCGGTCGAGATCGCGATGCAGTGGACGACGGCGTTCAGCGAGTCCGTCCACACCTTCGCCAACACGATCTCCACCACCGAGGGCGGCACCCACGAGGAGGGCTTCCGCGCGGCGCTGACGAGCCTCGTGAACTCCTACGCCCGGGACAAGGCGATCCTCAAGGACAAGGACGAGAACCTCACGGGCGACGACATCCGCGAGGGTCTCACCGCGGTGCTCAGCGTGAAGCTGTCCGAGCCGCAGTTCGAGGGCCAGACGAAGACGAAGCTCGGCAACACCGAGGCCAAGACCTTCGTGCAGCGCATCGTGCGCGAACGGCTGACCGACTGGTTCGACGCGCACCCCAACGAGGGCCGCGACATCATCCGCAAGGCGATCTCGGCCTCCCAGGCGCGTATCGCGGCCCGCAAGGCGCGCGAGGCGACCCGGCGCAAGGGGATCCTCAGCTCGGGCGGCATGCCCGGCAAGCTCAAGGACTGCCAGTCGAACCGCCCGGACGAGTGCGAGATCTACATCGTCGAGGGCGACTCCGCCGGCGGTTCGGCCGTGCGCGGCCGCGACCCGCACCACCAGGCGATCCTGCCGATCCGCGGCAAGATCCTCAACGTCGAGCGGGCGCGGCTGGACAAGGCGCTGTCCAACAACGAGGTCCAGGCGCTCATCACGGCCTTCGGCACCGGCATCGGTGAGGACTTCGACATCACCAAGCTGCGGTACCACAAGATCGTGCTCATGGCCGACGCCGACGTCGACGGCCAGCACATCTGCACCCTGCTGCTGACGCTGCTGTTCCGGTACATGCGCCCGCTCATCGAGCACGGGCACGTCTACCTGGCCCAGCCACCGCTGTACCGGCTGAAGTGGTCCAACGCCCCGCACGACTACGTGTACTCCGACCGGGAGCGTGACGCCTTCCTCGAGCAGGGCCTCGCGGCCGGCAAGCGGATCCCGAAGGACAACGGGATCCAGCGCTACAAGGGTCTGGGCGAGATGGACTACTCCGAGCTCTGGGACACCACCATGGACCCGGAGCACCGGACGTTGTTGCAGGTCACGATGGACGACGCGGCCGCGGCGGACGAGATCTTCTCGGTGCTCATGGGCGAGGACGTCGAGTCCCGCCGCAGCTTCATCCAGCGCAACGCCAAGGACGTCCGGTTCCTCGACATCTGAMAQRSDGGYDAGNITVLEGLEAVRKRPGMYIGSTGERGLHHLVYEVVDNSVDEALAGHADRIDVTLLADGGVRVTDNGRGIPVAMHPTEGRPTVEVVMTILHAGGKFGGGGYAVSGGLHGVGISVVNALSSRVVTEVERDGFAWRQEFADGGAPVGELQRLGETDRTGTTQTFWADPAIFETTDYDFETLRARFQQMAFLNKGLRITLTDERTEHVSGPDEVTGALDSRAVVAALEGADATDGQDAAASSPDDEVHDSESAAGAVRTVTYKYDGGLRDYVAHINTAKKAEIIHPEIIDLEAEDTDLKVSVEIAMQWTTAFSESVHTFANTISTTEGGTHEEGFRAALTSLVNSYARDKAILKDKDENLTGDDIREGLTAVLSVKLSEPQFEGQTKTKLGNTEAKTFVQRIVRERLTDWFDAHPNEGRDIIRKAISASQARIAARKAREATRRKGILSSGGMPGKLKDCQSNRPDECEIYIVEGDSAGGSAVRGRDPHHQAILPIRGKILNVERARLDKALSNNEVQALITAFGTGIGEDFDITKLRYHKIVLMADADVDGQHICTLLLTLLFRYMRPLIEHGHVYLAQPPLYRLKWSNAPHDYVYSDRERDAFLEQGLAAGKRIPKDNGIQRYKGLGEMDYSELWDTTMDPEHRTLLQVTMDDAAAADEIFSVLMGEDVESRRSFIQRNAKDVRFLDIPGPT0027710_1728DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622NANA
AK018_04911606hypothetical proteinGTGTCTGAGCACGGGCCCGACGACCCGGGTGCACCCGGCGGCGAGGGTCCGGACGAGACCGACGGGCCGCGCCGCCGCGACCCCCGTCCGGTCGTCGACCGCACGGAGCTGACGCCGCCGTCCGAGGTCGCCCGCGAGGCCCTGAACCGTGCCAAGGCGGCCGCGCGGGCGAAGGGCCTGCGTCCGGGCTCCCCGTCGCGCCGCTCACCGCTGGCGGAACCGCGCCAGGACCCGGGCCGGGGACCCAACGCCCGGGACCCGCGGCTGATGTCCGACGTCGTGGCCAGGCTGCTGCGTGACAAGGGCTGGACGGCCGAGGTCTCGGTGGGCGGCGTCGTCGGACGCTGGCGCGAGATCGTCGGCGACCAGGTGGCGGACCACTGCACGCCGGAGACCTTCGAGGACAAGGTGCTCGTGGTCCGCACCGACTCGACCGCGTGGGCCACCCAGGTGCGCCTGCTGGTCCCCACGCTCCTGCGCCGGCTGGCCGAGGAGGTCGGCGAGGGCGTCGTGGAGCAGGTCACGGTGCTCGGGCCGTCGGGTCCGAGCTTCCGTCGCGGACGCCGGACGGTGCGCGGACCGGGTCCCGGCGACACCTTCGGCTGAMSEHGPDDPGAPGGEGPDETDGPRRRDPRPVVDRTELTPPSEVAREALNRAKAAARAKGLRPGSPSRRSPLAEPRQDPGRGPNARDPRLMSDVVARLLRDKGWTAEVSVGGVVGRWREIVGDQVADHCTPETFEDKVLVVRTDSTAWATQVRLLVPTLLRRLAEEVGEGVVEQVTVLGPSGPSFRRGRRTVRGPGPGDTFGNANANANANA
AK018_049121245recF_2COG1195DNA replication and repair protein RecFATGTACGTCTCGCACCTGTCCCTGCTCGACTTCCGGTCCTACGAGTCCGTCGACGTCGAGCTCGAGCCCGGACCGAACGCGTTCGTGGGTCGCAACGGGCGGGGCAAGACGAACCTCGTCGAGGCCGTCGGCTACGTGGCGAGCCTCGGCAGCCACCGGGTCGCGAACGACACCCCGCTGATCCGTGCGGGGGCCCAGCGGGCCGTCGTGCGCACGCGGGTCGTCCGCGGGGACCGCGCCTCGACCGTGGAGCTCGAGATCACCGCCGGCAAGGCGAACCGGGCCCGCATCAACCGCGGTCAGCTCGGCCGCGCGCGCGACGTCCTGGGGATCCTGCGCACGGTGCTGTTCGCCCCGGAGGACCTGGCCCTGGTCAAGGGCGACCCCGACGGACGGCGTCGCTTCCTGGACCAGCTCGTGGTGCAGCTCCTCCCCCGCGCCGCCGGCGTGCTGGCCGACTACGAGCGTGTCCTGCGGCAGCGGTCGGCCCTGCTGAAGTCGCTGCGCGGTCACCGTGCGGCGGGCCGCGACGTGGACACCTCCACCCTGGAGGTGTGGGACGGGCGCCTGGCGCAGCTCGGCGGGCAGGTCCTCGCCTGGCGCACCGCGCTCGTGCGTGCGCTGCAGCCCGTCGTCGCCACCGCGTACGAGCAGGTCAGCGACGCCGACAGTGCCGCCGAGCTCGTCTACCGCTCCACGGTGGTGCCCGACGGCGGCACCCCGGTGGCGCCGTCGGCCCCCGACGGCGAGGGCTCGCCCGCTGAGCCTGCTGAGCCCGACGGCCCGCCCACGGCGGCGGAGGACCTCGAGAAGCTGATGCTGGCGGTGATCGAGGAACGGCGCCCGGCCGAGATCGAGCGCGGCCAGAGCCTCGTGGGTCCGCACCGGGACGACCTGGAGCTCGTGCTCGGCGGGCTGCCCGCGAAGGGGTACGCGAGCCACGGCGAGTCGTGGTCGTTCGCGCTGGCGCTGCGGCTGGCGGCCTTCCGTCTGCTCGGCGGCGGGGCCGAAGCTTCCACGCCGGACGACGTGTTCTGGGACCCCGACCACGGCTCGGACGCGGACCCGGTGCTGATCCTCGACGACGTCTTCGCCGAGCTGGACGTGCGGCGTCGGGAGCGCCTGGCCGAGCTGGTGGCCGAGGCCCGGCAGGTGCTCGTCACGGCGGCGGTCCCGCAGGACGTGCCGGACCGGCTGCTGGGCGCCCGGTTCGAGGTCGGCGACGGGCAGGTCGTCCGTGTCTGAMYVSHLSLLDFRSYESVDVELEPGPNAFVGRNGRGKTNLVEAVGYVASLGSHRVANDTPLIRAGAQRAVVRTRVVRGDRASTVELEITAGKANRARINRGQLGRARDVLGILRTVLFAPEDLALVKGDPDGRRRFLDQLVVQLLPRAAGVLADYERVLRQRSALLKSLRGHRAAGRDVDTSTLEVWDGRLAQLGGQVLAWRTALVRALQPVVATAYEQVSDADSAAELVYRSTVVPDGGTPVAPSAPDGEGSPAEPAEPDGPPTAAEDLEKLMLAVIEERRPAEIERGQSLVGPHRDDLELVLGGLPAKGYASHGESWSFALALRLAAFRLLGGGAEASTPDDVFWDPDHGSDADPVLILDDVFAELDVRRRERLAELVAEARQVLVTAAVPQDVPDRLLGARFEVGDGQVVRVNANANANANA
AK018_04913897COG10236-phosphogluconate dehydrogenase, NAD(+)-dependent, decarboxylatingATGGTCACCCACATGGGTCTCGTCGGTCTGGGCAAGATGGGCGACAACATGCGCGAGCGCCTGCGCCGCGCCGGTATCGGGGTGACGGGATACGACCCGCGCCCGGAGGTCTCGGACGTCGGCTCGCTGGCCGAGCTCGTCGAGGCCCTGCCCGGGCCGCGTCGCGTCGTGTGGGTCATGGTGCCCGCCGGCGAGCCCACGCGGGAGGTCGTCAGCGCGCTCGCGGGGCTGCTCGACGAGGGCGACGTCGTCATCGAGGGCGGCAACTCCCACTACCCCGACGACCAGGAGCGGGCCGCCGAGCTCGCCGAGCGTGGTGTCGGGTACGTCGACGTCGGGGTCTCCGGCGGCGTGTGGGGCCTGGAGAACGGCTACGGCCTGATGTGCGGCGGTTCCGACGCCGACGTCGCGTTCCTCATGCCCGTCTTCGACGCGCTGCGCCCCGAGGGCCCGCGCGAGGAGGGCTTCGTGCACGCCGGCCCCGTGGGTGCCGGCCACTTCGCCAAGATGGTCCACAACGGCATCGAGTACGGCCTCATGCAGGCCTACGCCGAGGGCTACGAGATGCTCGCCGCCAAGGACGTCGTCACCGACGTGCACGGCACGATGCGGGCCTGGCAGCGCGGCACCGTCGTGCGGTCCTGGCTGCTCGAGCTCATGGTCCGGGCCCTCGAGGACGACCCGCGGTTCGACGCGATCGACGACTGGGTCGCGGACTCCGGCGAGGGCCGCTGGACCGTGGACGAGGCGATCGACAACGCCGTGCCGCTGCCGGTGATCTCCGCGGCGCTGTTCGCGCGGTTCTCCTCGCGGCAGGAGGAGTCACCGGCGATGAAGGCGGTCGCGGCGCTGCGCCAGCAGTTCGGCGGTCACGCCACCAAGCCGGCCGCCGAGTAGMVTHMGLVGLGKMGDNMRERLRRAGIGVTGYDPRPEVSDVGSLAELVEALPGPRRVVWVMVPAGEPTREVVSALAGLLDEGDVVIEGGNSHYPDDQERAAELAERGVGYVDVGVSGGVWGLENGYGLMCGGSDADVAFLMPVFDALRPEGPREEGFVHAGPVGAGHFAKMVHNGIEYGLMQAYAEGYEMLAAKDVVTDVHGTMRAWQRGTVVRSWLLELMVRALEDDPRFDAIDDWVADSGEGRWTVDEAIDNAVPLPVISAALFARFSSRQEESPAMKAVAALRQQFGGHATKPAAEPGPT0017385_4603DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033NANA
AK018_049141134griRBeta sliding clamp GriRATGAAGTTCCGCGTCGAGCGCGACGTCCTGGCCGAGGCCGTGACCTGGACGGCCCGCACCCTGCCCACGCGCCCGCCCGCCCCGGTCCTGGCCGGTGTGCGCATCGAGGCCGACGCGTCCGGCTCCATCGTGCTCGCGAGCTTCGACTACGAGGTCTCGGCACGGTCCGAGATCGCCGCCGAGGTCTCCGAGGCCGGCACGGTGCTCGTCTCGGGTCGCCTGCTCGCCGAGATCTCCCGCGCCCTGCCCAACAAGCCGGTCGACGTGACCGTCGAGGGCAACAAGGTCGTGCTGACCTGCGGAGCCTCCCGCTTCACGCTGCTGACCATGCCGGTCGAGGACTACCCCGCGCTGCCCGCCATGCCGGAGCTGTCCGGCACGGTGGCCGGGGACGCCCTGACCCACGCGGTCGCGCAGGTCAGCGTCGCCGCCAGCCGTGACGACACGCTGCCGCTGCTGACCGGCGTCCGCATGGAGATCGAGGGCGAGCGCATCACGCTGCTGGCCACGGACCGCTACCGGCTCGCCCTGCGCGAGCTGACCTGGACGCCCGCCACACCGGGTTTCAGCTCGGTGGCGCTGGTCCGTGCGAGGACCCTCAACGACGTCGCGAAGTCGCTCGGCTCGGGCGGCGGCCTGGTGAACATCGGGTTGTCCACCGGGGAGGGCGTCGACCTCATCGGGTTCGAGGCCGGCGGACGGCACACGACCTCCCAGCTCGTGGACGGGGACTACCCGGCGGTCCGGCGGCTGTTCCCGGACGCCACGCCGATCCACGCCGTCGTGCCGACGCAGGCGCTGATCGACGCGGCCAAGCGCGTCTCCCTGGTCGCCGAGCGCAACACCCCGATCCGGCTGGCGTTCTCCGAGGGCCAGGTCGTCCTCGACGCGGGCCAGGGCGACGACGCGCAGGCGTCCGAGGCCCTGGAGGCCGTGCTGGTCGGCGAGGACATCCAGGTGGCGTTCAACCCGCAGTTCCTGCTCGACGGGCTCGGCGCCCTGGGGACGGACTTCGTGCGGATGTCGTTCACGCACCCGAACAAGCCGGTGGAGTTCACCGGGCAGGAGTCGCTGGACGGCGAGGACTCCTCGGAGTACCGCTACCTGCTGGTGCCGATCCGCTTCTCCTCCTGAMKFRVERDVLAEAVTWTARTLPTRPPAPVLAGVRIEADASGSIVLASFDYEVSARSEIAAEVSEAGTVLVSGRLLAEISRALPNKPVDVTVEGNKVVLTCGASRFTLLTMPVEDYPALPAMPELSGTVAGDALTHAVAQVSVAASRDDTLPLLTGVRMEIEGERITLLATDRYRLALRELTWTPATPGFSSVALVRARTLNDVAKSLGSGGGLVNIGLSTGEGVDLIGFEAGGRHTTSQLVDGDYPAVRRLFPDATPIHAVVPTQALIDAAKRVSLVAERNTPIRLAFSEGQVVLDAGQGDDAQASEALEAVLVGEDIQVAFNPQFLLDGLGALGTDFVRMSFTHPNKPVEFTGQESLDGEDSSEYRYLLVPIRFSSNANANANANA
AK018_049151431dnaA_2COG0593Chromosomal replication initiator protein DnaAGTGCCCCAGCCTGACGAGAACATCACCGACGTCTGGAACCAGACGTTGGCGACCCTCGAGGCGCGGCCCGACATGACCGCACGCCAGCTCGCCTTCATCAAGCTGGCCAAGCCGATGGCCATCCTCGACGACACCGTCTTCATCGCGGTACCCCACGAGCAGACCCGCGCGTACCTCGAGACGAGCGTGCGCGACCAGCTCATGTCCGCGATGTCGGCGACGCTCGGGCGCGACACCCGGTTCGGCATCACCGTCGACCCCGAGCTGAGCCACGAGGCCCTCACCGGCCCCGCCCAGGACTACACGCCGCCGCCCAGCGCCCACGAGCCCGAGCCGACGCCGCCCGGCCCTCCCCCGGGTCGGCTGCCCGACGAGCGTCCGGCGGACAGCGAGCCGACGCGTCTGAACCCGAAGTACATCTTCGAGTCGTTCGTCATCGGCTCGTCCAACCGGTTCGCCCACGCGGCCGCGGTGGCCGTCGCCGAGGCGCCGGCGAAGGCCTACAACCCGCTGTTCATCTACGGCGACTCCGGACTGGGCAAGACCCACCTGCTGCACGCCATCGGCCACTACGCCAACAACCTCTACCCGCACGTGCGGGTGCGGTACGTGAACTCCGAGGAGTTCACCAACGACTTCATCAACTCCATCGGTGAGGGACGCACGGGGGCCTTCCAGCGGCGCTACCGGGACGTGGACGTCCTGCTGATCGACGACATCCAGTTCCTGCAGGGCAAGGAACAGACGATGGAGGAGTTCTTCCACACCTTCAACGCGCTGCACAACGCGGACAAGCAGGTGGTCATCACCTCCGACGTGCCGCCCAAGCAGCTCGACGGGTTCGAGGACCGCCTCCGCTCGCGGTTCGAGTGGGGACTCATCACCGACGTCCAGCCGCCGGACCTCGAGACGCGGATCGCGATCCTGCGCAAGAAGGCCGCCAGCGAACGCCTGGACGTGCCGGCCGACGTCCTCAGCTACATCGGCTCGCGCATCTCGACCAACATCCGCGAGCTCGAGGGCGCCCTGATCCGGGTCACCGCCTTCGCGAACCTCAACAAGCAGCAGGTCGACCTCGCGCTGGCCGAGATCGTCCTCAAGGACCTCATCACCGACGACGACCAGGCCACCGAGATCACGCCGGCCGTCGTCATCGCCCAGACGGCGGCGTACTTCGGCCTGACGATCGACGACCTGTGCGGCTCGTCCCGGTCCCGGGTGCTGGTGACGGCCCGGCAGATCGCCATGTACCTGTGCCGTGAGCTGACCGACCTGTCGCTGCCCAAGATCGGGCAGCAGTTCGGCGGCCGCGACCACACCACGGTCATGCACGCGAACAAGAAGATCGCCGGCCAGATGGCCGAGCGACGCTCGACCTACAACCAGGTCACCGAGCTCACCAGCCGGATCAAGCAGCAGCACCGCGGCTGAMPQPDENITDVWNQTLATLEARPDMTARQLAFIKLAKPMAILDDTVFIAVPHEQTRAYLETSVRDQLMSAMSATLGRDTRFGITVDPELSHEALTGPAQDYTPPPSAHEPEPTPPGPPPGRLPDERPADSEPTRLNPKYIFESFVIGSSNRFAHAAAVAVAEAPAKAYNPLFIYGDSGLGKTHLLHAIGHYANNLYPHVRVRYVNSEEFTNDFINSIGEGRTGAFQRRYRDVDVLLIDDIQFLQGKEQTMEEFFHTFNALHNADKQVVITSDVPPKQLDGFEDRLRSRFEWGLITDVQPPDLETRIAILRKKAASERLDVPADVLSYIGSRISTNIRELEGALIRVTAFANLNKQQVDLALAEIVLKDLITDDDQATEITPAVVIAQTAAYFGLTIDDLCGSSRSRVLVTARQIAMYLCRELTDLSLPKIGQQFGGRDHTTVMHANKKIAGQMAERRSTYNQVTELTSRIKQQHRGPGPT0014800_1671DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-PILUS|FIMBRIAE_SYSTEMMOTILITY-PILUS_SYSTEM,PGPT0014800-dnaA-K02313NANA
AK018_04916168hypothetical proteinGTGCCTCCCCGACGTTTCTTGGAGTACCTCGTGAGCAAGCGGACCTTCCAGCCGAACACCCGCCGTCGTGCGAAGACCCACGGCTTCCGTCTGCGCATGCGCACCCGCGCCGGCCGCAGCATCCTTGGCAACCGCCGCCGCAAGGGCCGCGCGCAGCTCTCTGCCTGAMPPRRFLEYLVSKRTFQPNTRRRAKTHGFRLRMRTRAGRSILGNRRRKGRAQLSANANANANANA
AK018_04917360rnpA_2COG0594Ribonuclease P protein componentATGCTTCCCGCGGCGCACCGCATGCGCCGTTCCGTCGATTTCGAACGGGCGGTGCGCCGCGGCGCGCGCGCGGGCCGCTCGACCGTGGTCGTCCACCTCACCCGGGTCCCCGGGGAGGACGGAGGGCCGCTGGTCGGTCTTGTCGTGTCCAAGGCCGTGGGCAATGCCGTTCGTCGAAACCTCGTCAAGCGCCGGCTGCGCAGCGCAGCGTCCGGGCAGCTCGAGCATCTCCCGCAGGACGCCCTCGTCGTCCTGCGGGCTCTGCCGCGCGCCGCGACGGCCGACTACGCCCACCTCGCGCGGGACGTGGAGCGGGCGACCGCCACGGTGCTGCGGCGAGCCGACGAGCGCGTGCGATGAMLPAAHRMRRSVDFERAVRRGARAGRSTVVVHLTRVPGEDGGPLVGLVVSKAVGNAVRRNLVKRRLRSAASGQLEHLPQDALVVLRALPRAATADYAHLARDVERATATVLRRADERVRNANANANANA
AK018_04918294yidD_2Putative membrane protein insertion efficiency factorATGAGTAGCGCCGTGCTCTCCCGCGGTCGCGAGATCGCCCGTGCGCTGCCGGTGGCCGTGCTCGTCGGGGCGATCCGCGTCTACCAGGCAGTCGTCTCCCCGTGGACGGGGCCGACGTGCAAGTACTTCCCCTCCTGCTCGCAGTACGCGGTGATCGCGATCCGGCGTCACGGTCCGCTGCGCGGAACCGGGATGGCCCTGTGGCGGATCCTGCGGTGCAACCCCTGGAGCCTGGGCGGCGTCGACGACGTGCCGCCGGCTCGGCACGAGCACCGCGGCGCCCACACGCACTGAMSSAVLSRGREIARALPVAVLVGAIRVYQAVVSPWTGPTCKYFPSCSQYAVIAIRRHGPLRGTGMALWRILRCNPWSLGGVDDVPPARHEHRGAHTHNANANANANA
AK018_04919948yidC_2COG0706Membrane protein insertase YidCATGGGGTTTTTCGACACCATCCTGTACCCCATCCAGTGGGTCGTGGCCTGGATCATGTACGGGTCGCACCAGCTGTTCATGGCGCTGGGATTCCAGGACGGTCCGGGTTTCGCCTGGGTCCTGTCCATCGTCGCGCTCGTGATCGTCATCCGGATCCTGCTCATCCCGCTGTTCTTCAAGCAGATCAAGGCGTCCCGCGGGATGCAGATGATGCAGCCGGAGCTGCAGGCGATCCAGAAGAAGTACAAGGGCAAGACCGACCCGTCGTCCCGTGAGGCCATGGGCCGGGAGACGATGGAGCTGTACCGCAAGCACGGCACCAACCCGATGGCGTCCTGCCTGCCGATCCTGCTGCAGTCACCGATCTTCTTCGCCCTGTTCCGCCTGCTCTACAACCTGGGCAACATCGCGTCCGGCACGCAGGACCCGATCGGTCCCATCGACCAGCCGGTCGCTGCGGACATCGAGAACTCCGACCTGTTCGGTGCTCAGCTCTCCGACGTCTTCCTGCAGACGGACGACTGGGGCGTTCGGATCGTCATCCTGTTCCTCATCGTGGCCATGAGCGCCACGACGTTCTTCACCCAGCGTCAGCTGACGATGAAGAACATGCCGAAGGCCGCGCTCGAGGGCCCGATGGCGAACACGCAGAAGATGCTGCTGTACGTCCTGCCGCTGATCTTCCTGATCTCGGGCGTGAACTTCCCGGTCGGTGTGCTGATCTACTGGACCACGACCAACCTCTGGTCGATGGGGCAGCAGTTCTACACGATCAAGCGCATGCCGGCGCCGGGATCCGAGGCGGAGCGTCTGCTCAAGGAGAAGCGGGCGGCCAAGGCGGCGAAGAAGGGCATCGTCGTCGAGGAGGAGAAGGCTCCCGAGCCCCCGAAGCCGCAGGGCCAGCGGCAGCAGCCCGTGCGGAAGAACCGCCAGAAGAAGAAGAAATGAMGFFDTILYPIQWVVAWIMYGSHQLFMALGFQDGPGFAWVLSIVALVIVIRILLIPLFFKQIKASRGMQMMQPELQAIQKKYKGKTDPSSREAMGRETMELYRKHGTNPMASCLPILLQSPIFFALFRLLYNLGNIASGTQDPIGPIDQPVAADIENSDLFGAQLSDVFLQTDDWGVRIVILFLIVAMSATTFFTQRQLTMKNMPKAALEGPMANTQKMLLYVLPLIFLISGVNFPVGVLIYWTTTNLWSMGQQFYTIKRMPAPGSEAERLLKEKRAAKAAKKGIVVEEEKAPEPPKPQGQRQQPVRKNRQKKKKPGPT0024530_5130DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217NANA
AK018_04920525hypothetical proteinATGACCACGGACACGACGCCGGAGGGCACCTCCGATCTCGTCCCGCGCCTCGAGGAGGAGGGCGAGATCGCGGCCGACTACCTCGAGGAGTTCCTCGACATCGTCGACCTGGACGGCGACATCGACCTGGACATCAAGCACGACCGCGCGGTCGTCGAGGTCGTCTCCGAGGACGGCCCCGAGGCGCTGGACGTGCTGGTCGGGCGGGACGGCGAGGTGCTGGACGCACTGCAGGACCTCACTCGCCTCGCGGTGCAGGCCCGGACGGGGGACCGCAGTCGCCTGATGCTCGACATCGCCGGCTTCCGGGCTCAGCGTCGTGACGCACTGCAGCAGCGGGCCGTCGAGGCGATCGACCAGGTGCGCAGCTCGGGCGACTCGCTCTCGCTGGAGCCGATGAACGCCTTCGAGCGCAAGGTCGTGCACGACGCGGTCGCAGCGGCGGGTCTGGTCAGCGACTCGGCCGGTGTCGAGCCGCACCGGCACGTGGTGGTGCACCCGCCCCGGGCTGCGGACCAGGGCTGAMTTDTTPEGTSDLVPRLEEEGEIAADYLEEFLDIVDLDGDIDLDIKHDRAVVEVVSEDGPEALDVLVGRDGEVLDALQDLTRLAVQARTGDRSRLMLDIAGFRAQRRDALQQRAVEAIDQVRSSGDSLSLEPMNAFERKVVHDAVAAAGLVSDSAGVEPHRHVVVHPPRAADQGPGPT0024530_1367DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217NANA
AK018_04921639rsmG_2COG0357Ribosomal RNA small subunit methyltransferase GATGACGGATGCGGACGAGGTGCTGGGGACGAGCACGGCGGTGCGTGACTTCTTCGGTGACCGCTACGACCTGATGGCCGGCTACCACCGGCGGCTGCTGGAGGAGGGGGAGCTACGCGGGCTCATCGGGCCGCGCGAGGTGGACAGGTTGTGGGAGCGACACATCCTCAACTCGGCCGCCGTGGCGCCTTTCCTGTCGTCCGCCTCCTCGGTGGCGGACATCGGTTCGGGCGCGGGTCTGCCCGGCATCGTCGTCGCCATCATGCGTCCCGACGCCGAGGTGTTCCTCGTCGAGCCGATGGAGCGACGGACCACGTGGTTGTCGGAGATCGCCGAGGATCTCGGGCTCTCCAACGTCGTGGTCAAGCACGGGCGTGCCGAGGAGTACGACGGTGCGTTCGAGGTGGACGCCGTGACGTCCCGTGCGGTGGCGGCGTTGTCGAAGCTGGCGCGGATGTCTCTCCCCCTGGTCCGCCCCGGCGGCGAGATGGTGGTCCTCAAGGGACGGAGCGTCGAGCGAGAGATCGAGCCCGCGCGGAAGGTCCTGCGGAAGTACAAGGCGGCCGAACCCGAGATCCTCGAGGGACGGACGGTCGAGGGCGCGGAGTCGACGACGGTGGTGCGCATCCGTCGCCGCTGAMTDADEVLGTSTAVRDFFGDRYDLMAGYHRRLLEEGELRGLIGPREVDRLWERHILNSAAVAPFLSSASSVADIGSGAGLPGIVVAIMRPDAEVFLVEPMERRTTWLSEIAEDLGLSNVVVKHGRAEEYDGAFEVDAVTSRAVAALSKLARMSLPLVRPGGEMVVLKGRSVEREIEPARKVLRKYKAAEPEILEGRTVEGAESTTVVRIRRRNANANANANA
AK018_049221080nifHNitrogenase iron proteinGTGAACATGAGCTCCGATCGGCCGCCCTACCCGTCCGACGACGGTCGAGACGGATCTGCGTCCGGTGACGGGCAGGCCTTCGTTTCACGTGAATCAGGGAACGGGGGGTGGGCGATCGACGACATCCCGGCCCCGTCGCCGGAGTCCCACCGCGAGGCGCTGATGGACTCCGTGCCCGAGATGGACGACAGCACGCCGCTCGCGGCGCAGCTGGCTCTCGACGCACGGCGACGCATCGAGCTGGACGGGCGTCGGTTCCCCCGACCGGAGCGCACCCGCATCCTCACGGTCGCGAACCAGAAGGGCGGCGTCGGCAAGACGACGACGACGGTGAACCTCGCCGCGGGTCTGGCACGTGCCGGGCTGAAGGTGCTCGTCATCGACAACGATCCCCAGGGCAACGCGTCGACCGCGTTGGGACTGGAGCACCGGGCCGGGACGCCGTCGATCTACGAGGTGCTCGTCGAGGAGGCTCCGTTGTCCGGTGCCGTCCAGGCGTGCCCCGACGTCGAGGGCCTCTGGGGAGTGCCGGCGACGATCGACCTGTCGGGTGCCGAGATCGAGCTCGTCTCGCTCGTCTCCCGCGAGACCCGGCTGCGCAAGGCGCTCGACACGTATCTCGACGAGCGTGCCGCGCGCGGCGAGGACCCGATCGACTACGTCTTTGTCGACTGCCCGCCGAGCCTCGGACTGCTCACGGTGAACGCCTTCGTCACGGGTCGGGAAGTGCTGATCCCGATCCAGTGCGAGTACTACGCGCTGGAGGGTCTGAGCCAGCTGCTCAAGACGATCGAGCTCATCAAGTCCCACCTCAACCGGGACCTGATCGTCTCGACGATCCTGCTGACGATGTATGACGGTCGGACGAACCTGGCGCAGCAGGTCGCCGCGGAGGTCCGGACGCACTTCCCGGAGCAGACGCTGCGCACCACGGTGCCGCGGTCCGTCCGGATCTCCGAAGCACCGTCGCACGGGCAGACCGTGATGACCTACGACCCGGGTTCGACCGGTGCACTGGCCTACCTCGAGGCCGCTCGGGAGATGGCAGAGCATGCCGTTCAACGCGCTGACCTGCGGTGAMNMSSDRPPYPSDDGRDGSASGDGQAFVSRESGNGGWAIDDIPAPSPESHREALMDSVPEMDDSTPLAAQLALDARRRIELDGRRFPRPERTRILTVANQKGGVGKTTTTVNLAAGLARAGLKVLVIDNDPQGNASTALGLEHRAGTPSIYEVLVEEAPLSGAVQACPDVEGLWGVPATIDLSGAEIELVSLVSRETRLRKALDTYLDERAARGEDPIDYVFVDCPPSLGLLTVNAFVTGREVLIPIQCEYYALEGLSQLLKTIELIKSHLNRDLIVSTILLTMYDGRTNLAQQVAAEVRTHFPEQTLRTTVPRSVRISEAPSHGQTVMTYDPGSTGALAYLEAAREMAEHAVQRADLRNANANANANA
AK018_049231293noc_2Nucleoid occlusion proteinATGAGCCAGAAGAAGCGCGGGCTGGGCCGGGGGCTGGGTGCGCTGATCCCCCAGGGGCCGGCCCAGGAGAACCCGACCGACGTCTTCTTCTCGGGTGGGGAGGACGACCGCACGGGCGACGTGCTGACTGCCTCGGCCGGGAGCGCGGCGGACCCCGAGGAGTCCGGCGCGGGACGCACCGGTCGTCGTTCGGCGTCATGGGACTCGGCCATCGCCGGCGGACGGCTGTCGATCAGCTCGACCCCGACGCGCCCCGGAGGGACGACGGGTGAGGATCTCCCCGCCGAGGCGGAGCGGACGATTCCCCGGTACGAGGTGTCCGAGCACGACGCGCCCGAGGACCCCGCCTCCGCCTTCGACGCGGAGGAGTCGGACCGGGCGGAGGATCGCCCGGCATCGAGCGCCGGCGACAGCGGATCGGTCGACGCATCCGGTTTGGACGACGGGCTGGTGCCGGTGCCCGGCGCACAGTTCGCCGAGGTTCCGCTGCGTGCGATCCGCCCGAACGCTCGGCAGCCGCGGACGGTCTTCGACGAGGGAGAGCTCGACGAGCTCGTCGACTCGATCACGGAGATCGGGATCCTCCAGCCGATCGTCGTGCGCCCCGATCCGGAGACCGACGGCGGCTTCGAGCTCATCATGGGTGAGCGTCGGTGGCGTGCTGCCGAGCAGGCCGGCTTGGAGACGATCCCGGCGATCGTGCGACGGACCGACAACCAGCAGATGCTGCGCGACGCTCTGCTGGAGAACCTGCACCGTGCGGCGCTCAACCCGCTCGAGGAAGCCGCTGCCTACCGCCAGCTGCTGGACGACTTCGGATGCACGCACGACGAGCTCGCGACGAAGATCGCTCGCTCCCGTCCGCAGATCTCGAACACGCTCCGCCTGCTGCGTCTGCCCCCGCTCGTGCAGCGGCGTGTGGCGTCCGGCGTGCTGTCGGCCGGGCACGCTCGCGCGTTGCTGGGACTCACCGATGGCGCGGAGATCGAACGTCTCGCGCAGCGCATCGTGTCGGAAGGTCTGTCCGTCCGGGCGACGGAGGAGATCGTCACCCTCATGCAGACCGCGGACGAGGAGGCCCCGCGTCGGAAGAAGCCGCGGGCGGGACAGCGGGTCGAGGCGATGGACGAGCTGTCGTCGCGGCTGTCGGACCGCTTCGAGACGCGGGTGAAGGTCAACCTCGGAAAGACGAAGGGGCGGATGACGGTCGAGTTCGCCTCGGTCGAGGACCTCAACCGCATCCTCGAGGTGATGGCGCCGGAGGACCCGGGGGTCCTGAAGACCTCGGAGTAGMSQKKRGLGRGLGALIPQGPAQENPTDVFFSGGEDDRTGDVLTASAGSAADPEESGAGRTGRRSASWDSAIAGGRLSISSTPTRPGGTTGEDLPAEAERTIPRYEVSEHDAPEDPASAFDAEESDRAEDRPASSAGDSGSVDASGLDDGLVPVPGAQFAEVPLRAIRPNARQPRTVFDEGELDELVDSITEIGILQPIVVRPDPETDGGFELIMGERRWRAAEQAGLETIPAIVRRTDNQQMLRDALLENLHRAALNPLEEAAAYRQLLDDFGCTHDELATKIARSRPQISNTLRLLRLPPLVQRRVASGVLSAGHARALLGLTDGAEIERLAQRIVSEGLSVRATEEIVTLMQTADEEAPRRKKPRAGQRVEAMDELSSRLSDRFETRVKVNLGKTKGRMTVEFASVEDLNRILEVMAPEDPGVLKTSEPGPT0014815_1462DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014815-parB|spo0J|yyaA-K03497NANA
AK018_04924993ddlB_2COG1181D-alanine--D-alanine ligase BATGACTGCCCCCGCGTCCGACGCCTCCCCCGTGACGCCCTCGTCCGGAACTGTCGGACCTGTCGTGATTCTCGCCGGCGGACTGTCGCACGAACGCGACGTCTCCGTCCGGTCGGGACGTCGCGTCGCCGACGCCCTCCGCGAGGCCGGCGTCGAGGTCCTGGTGCATGACGTGGACGCCGACCTCCTCCGCTTCCTGCGGGACACCGACCCGGCCCTGGTCTGGCCGGTGCTGCACGGGGCCAGCGGCGAGGACGGTTCCCTGCAGGACGTCCTCGCGCTGGCCGGCGTCCCCACCGTCGGGACCGGTCCGCGCCAGAGCCGGCAGGCCTGGAGCAAGCCCGTCGCCAAGGCGGAGCTGCTGCAGGGCGGACTCAGCACGCCCGACTACGTGACCCTCCCCCAGGCACTCTTCCGGGACCTCGGTGCGCAGACCGTGCTCGACATGATCGTCGACCGCCTGGGTCTCCCCCTCGTGGTCAAGCCCGTGCAGGGCGGTTCGGCGCTCGGCGTGACCCGTGTGGACGACGCCGGCCGCTTCCCTCGCGCGATGGTCGACTGCTTCTCGTACGGAGACACGGCCCTCATCGAGCGCGCCGTGGACGGGATCGAGGTCGCCGTGTCGGTCGTGGACGGTCCCGACGGGCTCGAGGCGCTGCCCGCAGTCGAGATCGTCACCAGCGGCTCGTACGACTACGACGCCCGCTACAACCCCGGTCCGGTCGAGTACTTCACGCCGGCGCGCCTCGACGCCGAGGCTGGACGAAAGGTCGCCGAGGTCGCGCGGCGTGCGCACGAGATCCTCGGGCTCAAGCACCTCTCGCGGACCGACATCATCCTCGGCGCCGACGGCACGCCACACGTGCTCGAGGTCAACGTCTCCCCCGGTCTCACCGAGACGTCGCTGCTCCCCCAGGCCGCCGAGGCCGCCGGATACTCGTTGTCCGCGCTCTACCGCCGGATCGTCGAGCACGCGCTCGTCCCCGCCGGCTGAMTAPASDASPVTPSSGTVGPVVILAGGLSHERDVSVRSGRRVADALREAGVEVLVHDVDADLLRFLRDTDPALVWPVLHGASGEDGSLQDVLALAGVPTVGTGPRQSRQAWSKPVAKAELLQGGLSTPDYVTLPQALFRDLGAQTVLDMIVDRLGLPLVVKPVQGGSALGVTRVDDAGRFPRAMVDCFSYGDTALIERAVDGIEVAVSVVDGPDGLEALPAVEIVTSGSYDYDARYNPGPVEYFTPARLDAEAGRKVAEVARRAHEILGLKHLSRTDIILGADGTPHVLEVNVSPGLTETSLLPQAAEAAGYSLSALYRRIVEHALVPAGPGPT0020050_4019DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921NANA
AK018_049251344lysN_2COG11672-aminoadipate transaminaseGTGGCGTGGGACACTGGCGGGGTGACTGAGCAGAATCGCCTCACCGAGCAGACCTCCGGCACGCGCCTCGACCCCTGGTTCGGCGCGTACGCCGAGCGCACGCGCGGGATGCGAGCGTCGGAGATCCGCGCACTGTTCTCGGTCGCCAACCGCCCGGAGGTCGTCTCGCTGGCCGGCGGCATGCCCTTCATCGAGGGGCTCCCCCTCGACGTCATCGGCGAGGCGATGGACCGACTGGTCCGGACCAAGGGCACCAGGGCGCTGCAGTACGGCTCGGGCCAGGGCGAGGAGTCCCTGCGCGAGCGCATCACCGAGGTCGTGGCGTTGGAGGGTGTCGAGGCGCACCCCGACGACATCACCGTGACCACCGGCTCCCAGCAGGGCCTGGACCTGGTCACCCGGATCTTCGTCGACCCCGGTGACGTGGTCGTCGCCGAGGCCCCCTCCTACGTCGGTGCGCTCGGCGTGTTCCGGTCCTACCAGGCCGACGTCGTCCACGTGGAGCTCGACGCCGACGGCCTCGTGCCCGCCGCCCTCGAGTCGACGCTGACGGAGCTGGAGACCGCGGGCCGCCGCGTCAAGATGCTCTACACGATCCCCAACTTCCACAACCCGGCCGGCGTGACGATGTCGGTGGAGCGTCGGCCCCAGATCCTCGAGATCTGCCGACGCCACGGGGTCCTCGTCGTCGAGGACAACCCCTACGGCCTCCTCGGCTTCGAGGCCGACCCCTACCCCGCGCTGCGGTCGTACGACGACGACGGCGTGATCTACCTCGGCTCGTTCTCCAAGACGTTCGCCCCCGGGTACCGCGTGGGCTTCGCCATCGCCCCGCACGCGGTCCGCGAGAAGCTCGTGCTCGCCTCGGAGTCGGCGATCCTGTCTCCGTCGAATGCGTCGCAGCTCGCCGTCGAGACCTACCTCGACACCTGCGACTGGCGCGCCCAGATCAAGGACTACCGGGAGATGTACCGCGAGCGACGCGACGCCCTCGTCGGCGCGCTGGCCGAGCACATCCCGTCGGCCAGCTGGAACGTGCCGGTCGGCGGCTTCTTCGTCTGGGTCAAGCTCCCCGAGGGACTGGACGCGAAGTCGATGCTGCCCCGCGCCGTCACCGAGCGCGTCGCCTACGTGCCGGGCACCGCCTTCTACTTCGACGGCCAGGGTGCGGACCACATGCGCCTGTCGTTCTGCTTCCCGACGCCGGACCGCATCCGGGAGGGTGTGCGCCGCCTGGCCACCGTCGTCAACGCCGAGGCCGAGCTGGTCCAGCTCTTCGGCACGACGGCGCAGCCCGACGACGACCCGACGGACGTCGAGAACCCCTCGCCCAACCTCGCGTGAMAWDTGGVTEQNRLTEQTSGTRLDPWFGAYAERTRGMRASEIRALFSVANRPEVVSLAGGMPFIEGLPLDVIGEAMDRLVRTKGTRALQYGSGQGEESLRERITEVVALEGVEAHPDDITVTTGSQQGLDLVTRIFVDPGDVVVAEAPSYVGALGVFRSYQADVVHVELDADGLVPAALESTLTELETAGRRVKMLYTIPNFHNPAGVTMSVERRPQILEICRRHGVLVVEDNPYGLLGFEADPYPALRSYDDDGVIYLGSFSKTFAPGYRVGFAIAPHAVREKLVLASESAILSPSNASQLAVETYLDTCDWRAQIKDYREMYRERRDALVGALAEHIPSASWNVPVGGFFVWVKLPEGLDAKSMLPRAVTERVAYVPGTAFYFDGQGADHMRLSFCFPTPDRIREGVRRLATVVNAEAELVQLFGTTAQPDDDPTDVENPSPNLAPGPT0007135_78DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007135-lysN-K05825NANA
AK018_04926327trxA_2COG0526Thioredoxin 1ATGCCTACCGTCGCCGTCACCGACGACACCTTCCAGACCGAGGTCCTCGAGTCCGACGTCCCCGTGCTGGTCGACTTCTGGGCGACCTGGTGCGGTCCGTGCCGCATGGTCGCGCCGATCCTCGAGGAGCTGTCCGACGAGTACGCCGGCAAGGTGAAGATCGCCAAGCTGGACACGGACGCGAACCAGGCCACCGCCATGGCGTACGGGATCACGTCGATCCCCACGCTGAACGTCTACGCGGGCGGCGAGGTCGTGAAGTCGATCATCGGCGCCCGCCCCAAGCGCGCCCTCACCGACGAGATCGAGAGCGTGCTCGCTTCCTGAMPTVAVTDDTFQTEVLESDVPVLVDFWATWCGPCRMVAPILEELSDEYAGKVKIAKLDTDANQATAMAYGITSIPTLNVYAGGEVVKSIIGARPKRALTDEIESVLASPGPT0013055_5212DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671NANA
AK018_049271014trxB_2COG0492Thioredoxin reductaseGTGACCGACCAGTCGAACAGCCAGGACGCCCCGGTGCGCGACATCGTCATCGTCGGGTCCGGCCCCGCCGGGTACACCGCAGCGATCTACGCCGCCCGCGCCGGCCTCGCGCCCGTCGTGGTCGCCGGCTCCGTGACCGCCGGTGGTGCGCTGATGAACACCACCGAGGTGGAGAACTACCCGGGCTTCCCGCCCGGCATCCAGGGGCCCGACCTCATGGACGCGATGCGCGAGCAGGCCGAGCGTTTCGGTGCCGACGTGCTGTGGGACGACGCCGAGACGCTCGAGCTCGACGGCGACGTGAAGACCGTGGTCACCGGCGGCGGCAAGACCTTCCGGGCCCGCGCCGTCGTCCTCGCCACGGGCTCGGCCTACCGCGAGCTCGGCCTGCCGGAGGAGAAGCAGCTGTCCGGCCGCGGCGTCTCCTGGTGCGCCACCTGCGACGGCTTCTTCTTCCGCGACCAGCACATCGCCGTCGTCGGCGGGGGTGACTCCGCCATGGAGGAGGCGACCTTCCTCACCCGGTTCGCCGCCAAGGTGACGGTGGTGCACCGTCGCGACGCCCTGCGCGCCTCCAAGATCATGGCCGACCGCGCCATGGCCGACCCGAAGATCGAGTTCGCCTGGAACAGCGAGGTCGTCGGCATCGAGGGCGAGAACAAGGTCTCCGGCGTCCGGCTCCGGGACACCGTCACCGGCGACGAGCGCGACCTCGACGTGACCGGTCTGTTCGTCGCGATCGGGCACGACCCGCGCAGCGAGCTGCTGGCCGGACAGGTCGACCTGGACGAGGACGGCTACGTCCTCGCCGAGGGCCGTTCCACCCGCACCAACCTGCCGGGTGTCTTCGCCTGCGGCGACCTCGTCGACCACACCTACCGCCAGGCCATCACCGCCGCCGGGTCGGGCTGCGCCGCGGCGCTCGACGCCCAGGCGTACCTCGCCGAGCTCGCCGACATGTCCGAGACGGACCCGGAGGACCTCCCGGCCGCGCTCGACGCCGTCGCCGGCTGAMTDQSNSQDAPVRDIVIVGSGPAGYTAAIYAARAGLAPVVVAGSVTAGGALMNTTEVENYPGFPPGIQGPDLMDAMREQAERFGADVLWDDAETLELDGDVKTVVTGGGKTFRARAVVLATGSAYRELGLPEEKQLSGRGVSWCATCDGFFFRDQHIAVVGGGDSAMEEATFLTRFAAKVTVVHRRDALRASKIMADRAMADPKIEFAWNSEVVGIEGENKVSGVRLRDTVTGDERDLDVTGLFVAIGHDPRSELLAGQVDLDEDGYVLAEGRSTRTNLPGVFACGDLVDHTYRQAITAAGSGCAAALDAQAYLAELADMSETDPEDLPAALDAVAGPGPT0013060_2788DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384NANA
AK018_049281893hypothetical proteinGTGACCACCGCCCAGCCCGGGACCGTCATGGTCGACCGTTACCGGCTGAACCAGCCCGCCGCCACCGACCTGGCGGCGGCGGAGGCCTGGGACGCCCACGACCAGATCCTGGACCGTCCGGTCCGTGTCACGTTCGTCGGGGGGCCGCAGGCACCGGCCGCGCTGGATGCCGCCCGGCGCGCCGCCCTGGTGGCCGACCCGCGGCTGTGCCGCGTGCTCGACGTCGGCACCACCGACCTCGGGACCGGTGAGCAGTCCTACGTCATCACCGAGCCGTACGCCGGAGAGTCCCTGACGCACATCGTCTCGCGCGGGCTGGTCGACGCACAGCAGGCCCGCGCCCTGATGGGCGAGGCCGCCACCGCCCTCGAGGCCGCTCGGCAGCGGGGCGTGCACCACCTCGCCCTGCGCCCGGAGGCCGTGCGGGTGGACGGCCACCGCGTCGTGGTCACCGGCCTCGGGATCGACGCCGGGCTGGCCGGGGTCGAGGCCACGGAGAGCGACGCCGCCGCCCGGGACGCGCGCGGGGTCGTTGCCCTGGGCTACTACGCGCTGACGGCGCGGTGGCCCGGCGAACCCCTCGACGTGGACTGGATCGCACCGGACGCCGTCCGCCCGCTGCCCGCCCAGACCGGGCCCGACGGCGTGCTGGCCGTATCCGAGCTGGTGCCGCACGTCGACGAGCAGATCGACGACCTCGTGCGCCGCACCTTCGGGACCGGTGGCGGGGCGCCGGAGGGGCCCGGCGACGTCGTCGCCGCCCTCGAGCCGTGGGGCCAGGTCTCGGTCCTGGGATCGCTGCCGCAGTTCGTCCAGCCGACGCCGGAGCGCCCGGTCCGGTCCTCCGTGCTCGGCGCGGGCAGCCCCGCCGGTGCCGAGAGCCTGCCCGGCACGCCGCCGCCGGCACCCCCGGTCCGTCGTCCGTCCACCGGGCGCATCGCCCGGGGTGCCGCCGTCGGGACGGCCGGCGCCGCAGCGGGCGCCGCCTACGCCGCGAACGGCGGCCACCCGACCGCGCCCGCGCCCGGGTACGGACAGCAGGCCCCCTACGGTCAGCAGGCTGCCTACGGTCAGCAGGCCCCCTACGGACAGCAGGCGCCCCCGGCCGCACCGGGGCAGGCTCCCGGTCAGGTGCCGCCGCCGCCTCCGGGCCCCGGGTACGCACCGGCCGCCGCGACCGGAGCACCGCCGTCCGGGGCGAGCCCGACCACGGGGTCGTTCGGCTCGACGGCGGCACCGAAGCGACGCGGCGTGAACCCCACCCCGATCGTGCTGGCACTCATCCTCGTCGGCGTGGTGATCGCCGCCGTGTGGGCCGTCGGCCAGGCGCTCAGCCCGTTCGACACGAGCCCGCCTCCGGCCGCCGAGGCCTCGCAGACCCCGACCGCGGACCCGAGCGAGGGCTCCGGCGAGCAGTCCGGCGAGGAGTCGGCCGAGCCGGAGCCGACCGAGGAGGAGAGCCCCGAGGTCCGCCCGATCATCGAGGCGGGCGGCGAGATCGACCCGCTCGGCAACGGCGAGAAGCCCGAGAAGGTCGAGTTCGCCTACGACTCCGACCCCTCGACGTTCTGGCACACGTACACGTACCAGAACGACCCGGTCTTCGGCGGCTTCAAGGAGGGCCTCGGCTACGAGGTCGAGCTGCGCGAGCCCGCCCCCGTCACCGAGGTCGAGCTGAACACGAACAGCGAGGGCGGGTCCTGGGAGCTGCGGCGCGTCACCGCCGACGACCCGGAGGGCGGTGAGGTGCTCGCCTCGGGCGCCTACTCCCCCGACACCGTCATCGAGCTCGACGAGCCCGTCGTCATGGACGGCTTCGTGCTGTGGACGACGGAGCTGCCGACGTCGGCGGGCGAGTTCCGCCTCGAGCTCAACGAGATCACCGTGTCCTGAMTTAQPGTVMVDRYRLNQPAATDLAAAEAWDAHDQILDRPVRVTFVGGPQAPAALDAARRAALVADPRLCRVLDVGTTDLGTGEQSYVITEPYAGESLTHIVSRGLVDAQQARALMGEAATALEAARQRGVHHLALRPEAVRVDGHRVVVTGLGIDAGLAGVEATESDAAARDARGVVALGYYALTARWPGEPLDVDWIAPDAVRPLPAQTGPDGVLAVSELVPHVDEQIDDLVRRTFGTGGGAPEGPGDVVAALEPWGQVSVLGSLPQFVQPTPERPVRSSVLGAGSPAGAESLPGTPPPAPPVRRPSTGRIARGAAVGTAGAAAGAAYAANGGHPTAPAPGYGQQAPYGQQAAYGQQAPYGQQAPPAAPGQAPGQVPPPPPGPGYAPAAATGAPPSGASPTTGSFGSTAAPKRRGVNPTPIVLALILVGVVIAAVWAVGQALSPFDTSPPPAAEASQTPTADPSEGSGEQSGEESAEPEPTEEESPEVRPIIEAGGEIDPLGNGEKPEKVEFAYDSDPSTFWHTYTYQNDPVFGGFKEGLGYEVELREPAPVTEVELNTNSEGGSWELRRVTADDPEGGEVLASGAYSPDTVIELDEPVVMDGFVLWTTELPTSAGEFRLELNEITVSNANANANANA
AK018_049291737murJ_2lipid II flippase MurJATGACCACCGATCCCCCCGAGCCGGGGACCCCCGGGGCCGGGCCGGCCGGGCCGGACGACACCGCGTCCGGGTCGACGGCGGACCCGCAGGGCGTGCGCAAGGCCAGCCTGGGCAGGGGGTCGCTCGCGATGTCGCTGGGCACGGCGGCCTCGCGGGCCTCCGGTCTGGTGCGCACGATGCTGCTGGTCGGTGCCGTGGGCGCCGTCGGCACCGTGGCGAACGCGTTCGACATCGCGAACAAGCTGCCCAACATGCTGTTCGCGCTGATCTCGGCGGGATTCCTGCAGTCGGTGCTGGTGCCCCAGATCATGAAGGCGATGTCGGCGCGCAACGCGCGCGAACGGCTCGACAAGCTGCTCACGATCTCCGGGCTGGGGCTGCTGTCCGGCACGATCGTCCTGGTGGCGGCCGCGCCGCTGGTCGTGCACCTGATGACGCTGAGCGACGCGTGGACCCCGGAGGCCCGTCAGCTCGCCGTGGTCTTCGCCTACTGGTGCCTGCCGCAGCTGTTCTTCTACGGCCTGTACACGCTGCTGGGCCAGGTGCTCAGCGCGCACGGCCGGTTCGCGGCCTACGGCTGGGCGCCGGTGGCCAACAACGTCGTGTCGATCGTGGGGTTCGGGGCGTTCATCCTGCTGTTCGGGCAGGCACCCGCCGCCGGCCTGGGCGACGTCGAGGCGTGGACGACCCAGCAGACGCTCCTGCTGGCGGGCACCGCGACCCTCGGCATCGCCGCGCAGTCGGCGATCCTCGTGCCGGCCCTGCGCAAGGCGGGCTTCCGGTGGGGGTTCCGGCTCGGCCTGCGTGGCATCGGGCTGCGGTCCGCCGGCAAGGTCGTCGGGTGGACGATCGGGGCCGTCGTGCTGGAGCAGCTCGGCGTCATCTACCTCACCAACGTCACCGGCGCGGCCAGCCAGCTCGCCGAGGACCTCGGCGAGGTCGCCGGCGGTCCGGCGGCCTACACCCAGGCGATGTCGATCTACCTGCTGCCGCACTCGCTCGTCGTCGTCTCCATCGTCACCGTGCTGTTCCCCCGGATGAGCGCCGCGGTCAACGCCGGCGACCTGGCGGCCGTGCGCCGGGACATGTCGCTGGGCCTGCGCTCGGCCGGCATCTTCTCGGTGTTCTCCGCCACGGCGCTCGTCGTGCTCGCGTTCCCGCTGACGAAGGCGCTGCTGCCGTCGGCCTCCGAGATCGAGGTCGAGGCGATCGCGCCGATCCTGCGGGCGATGGCCGTCGGCACGATCGCTCTCGGCGGCACGGTGCTCGTGCGCCGCATGTACTTCGCCTTCGAGGACGGGCGCAGCATCTTCGTCATCCAGGTGATCGCCACCGTGGCGCTCGTCGCCGGGCTGTTCGTCGCGACCCAGACGCTGCCGTTCTCGGCCTGGGCCACGGCGGCGGGCGGCTCCTTCGCGCTGGCGACGTGGATCTCCCTGCTGCTGCGGATCCGCGGCATGAACCGCAAGCTGCACGGCATGGACGGCCCGCGGGTCCTCCGGCTCTACGTCCGGGCGTCGCTCGCCGCGCTCGTGGCCGGCGGCCTGGGATGGCTGACCATCCACCTGATGGACGCCTCGGCCTCCTCCTCCTGGCCGTTCGCCCTGCTCGGGACGGCGGTCGGGGGCCTGGTCATGGGCGTCGTCTACCTCGGGCTGCTGAAGCTGATGCGGGTGCGCGAGCTCGACGACGCCCTGGCCCCGATCACCCGTCGGCTCCGCCGAGGCGCCGCATGAMTTDPPEPGTPGAGPAGPDDTASGSTADPQGVRKASLGRGSLAMSLGTAASRASGLVRTMLLVGAVGAVGTVANAFDIANKLPNMLFALISAGFLQSVLVPQIMKAMSARNARERLDKLLTISGLGLLSGTIVLVAAAPLVVHLMTLSDAWTPEARQLAVVFAYWCLPQLFFYGLYTLLGQVLSAHGRFAAYGWAPVANNVVSIVGFGAFILLFGQAPAAGLGDVEAWTTQQTLLLAGTATLGIAAQSAILVPALRKAGFRWGFRLGLRGIGLRSAGKVVGWTIGAVVLEQLGVIYLTNVTGAASQLAEDLGEVAGGPAAYTQAMSIYLLPHSLVVVSIVTVLFPRMSAAVNAGDLAAVRRDMSLGLRSAGIFSVFSATALVVLAFPLTKALLPSASEIEVEAIAPILRAMAVGTIALGGTVLVRRMYFAFEDGRSIFVIQVIATVALVAGLFVATQTLPFSAWATAAGGSFALATWISLLLRIRGMNRKLHGMDGPRVLRLYVRASLAALVAGGLGWLTIHLMDASASSSWPFALLGTAVGGLVMGVVYLGLLKLMRVRELDDALAPITRRLRRGAAPGPT0024200_684DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_LIPID_II_FLIPPASE_ACTIVITY,PGPT0024200-murJ|mviN-K03980NANA
AK018_049302121hypothetical proteinGTGACCGACACCCGCACGACGGGCGCCCGCAGCCGCGTCCTGCTCCTGCTGCTGTCCGCCCTGCTGCTGGCGGCGCCGCTGGTGCTCGTCCCGCCCGTGCCGGCGTCCGCGCACGAGGACGTCCACGCCGAGATCGTCCGGATCTCCCCCGTCGTGGTCGGTCCCGACGACACCCAGGAGGTCGCCCTCCGCATCACGAACGACACGGACGCCGAGCTCACGGGGCTGACGGCGGAGCTGGGGGTGGGGTGGCGCCCCGTGACGACCCGTGCGGGCGTGGCCTCGTGGGCCGCCGGCGAGTCCGGGCCGGCCGCCACGCAGCTGCGCGAGCCGCTGGACCCCGTACCACCGGGTGAGTCGGTGCAGACCACGCTCTCGCTCGACGTCCGGGCCCTCCGCCTCGGCGAGGCCGCACCCTGGGGGCCGCGGCAGATGTCCGTCCGGGTCGCGGACGGCTCGACCACCCTCGAGCTCCTGCACTCGTTCCTCCTCTACGACCCGGGCACCGGCGCGGCGTCGTCGGACCAGGCACCGCCGCCGCCGGTCTCCCTGACGGTGGCCGCACCGGTGACCGGCCCCGTCTTCGACCCGGCGGCGCCCGAGGACTACGCGGACACCGTCGTCGACCGGTCCGCGCCCGGCGCCCGGTACGACCGGCTCCTCGGGGCGGCCACGTCCCCCGTCGGGGCGCTCTCGCTCGCGGTGGACCCCGCCGTCGTCGCCGCCGCGGAGCAGTCGTCCGACGACGACGCGACCGCGTGGGCGGACCGGATGCGGCGGTCCGGAGGGCCCGGCGTCGTGACGCTGCCCGTCGGCGACCCCGATCTCGCCGCGCTGGCGCACGCCGGAACCGGCGCCTCCACGGTCGCCGAGATCGCCGAGGGCGGCGGCGCGCTGCCCGCGTCGTGGTCCCCGGCGGACGACTGGGGGCCACGGGTCGCCTGGCCCGCCGGCGCGCTGGACGCACCGACGCTCAGGACGGCCGCGCGGGCCGGTGCCGGCGCCGTCGTGGCGGCCGAGGGCGCGACGCTCCCGGACGACGCCGTCGGCGGGGTCGGTGCGGCGACGGCCGCCGGCGGTCAGGTCCCCGTCGCGGCGGCGGACCCCGTCCTCGGCGCGGTGCTCGGGTCCGCGACCGGCTCCGGGCGGTCCGTCGACGAGCCGGCCGCCACGGTGCAGCAGCTGCTCGCCGACACCGCCGTGCTCGCTGCGGACGGGGCCGCGACCGGTGGCGCGACCGCCGTCGTGGCCGCCCTCCCCCGCGGCTGGTCCCCGGACGTGGCGACCTTCGACGCCGTGCTCGGCCCCCTCGCCGAGCAGAGCTGGGTGGAGGTGGTCGACCTGACCACGGCCCTGGCCGATCCCGCGGCCGAGGACGTGCCGGCCGAGGTCGCCGACGAGACGGTCGCCGAGTCCGAGCTCGCCCCCGGCGTGGTCCGCGACCTCGTCGCGGCCTCCGACGACGTCGCCGCCTTCGCCACGGTCGCGGCCGACCCGGACGAGCTGACCGCGGGGGTGGACCGCGACCTGTTCGCCCCGATGTCGGTGGCCTACCGCGACGACGTCGGGGCCCGGACGGTCGCCGTCGGTCTCGCCGAGGACCGGGCCCGGCAGGTGCAGTCCGGCATCAGCGTGCTGGACCGTGCGGACGTGCTGCTCATCAGCGACGCCGGCGACCTCCCTGTGCGGGTGCGGAACGAGCTGCCGGTGGACGCCCGGGTCACCGTCCGGCTGCGGCCCGACGACCCGCGGCTCGTCGTCGAGACGGTCCCGGAGATCGTCGTCCCCGCCGGCGAGTCGCGCGACGCGCAGGTGCGGGTGCGCGCCATCGGCTCCGGTGACGTCACCCTCGACGTCGAGGTCACCGCACCCAGCGGCGTGGAGGTCACCGCACCGACCGAGTTCGCCCTGAGCGTGCGGGCCGGGTGGGAGACCGTCGGGACGGCGGTGATCGCGGCGGGAGTCGGTCTGCTGTTCCTCACCGGTATCTGGCGCACGGTGCGCCGCGGACGCTCCGACCGGCGCACCACCGGCGAGCAGGTGGCGGAGTCCGCCGTGCCGACCGACCGGCCTCGCACCGTGCCATCCCAGGACGCTTCTCCGGAGGACACCGAGTCATGAMTDTRTTGARSRVLLLLLSALLLAAPLVLVPPVPASAHEDVHAEIVRISPVVVGPDDTQEVALRITNDTDAELTGLTAELGVGWRPVTTRAGVASWAAGESGPAATQLREPLDPVPPGESVQTTLSLDVRALRLGEAAPWGPRQMSVRVADGSTTLELLHSFLLYDPGTGAASSDQAPPPPVSLTVAAPVTGPVFDPAAPEDYADTVVDRSAPGARYDRLLGAATSPVGALSLAVDPAVVAAAEQSSDDDATAWADRMRRSGGPGVVTLPVGDPDLAALAHAGTGASTVAEIAEGGGALPASWSPADDWGPRVAWPAGALDAPTLRTAARAGAGAVVAAEGATLPDDAVGGVGAATAAGGQVPVAAADPVLGAVLGSATGSGRSVDEPAATVQQLLADTAVLAADGAATGGATAVVAALPRGWSPDVATFDAVLGPLAEQSWVEVVDLTTALADPAAEDVPAEVADETVAESELAPGVVRDLVAASDDVAAFATVAADPDELTAGVDRDLFAPMSVAYRDDVGARTVAVGLAEDRARQVQSGISVLDRADVLLISDAGDLPVRVRNELPVDARVTVRLRPDDPRLVVETVPEIVVPAGESRDAQVRVRAIGSGDVTLDVEVTAPSGVEVTAPTEFALSVRAGWETVGTAVIAAGVGLLFLTGIWRTVRRGRSDRRTTGEQVAESAVPTDRPRTVPSQDASPEDTESNANANANANA
AK018_04931555hypothetical proteinGTGCCGGTACCGGTCCCTCCGGGCGGGCATCCGCTCAAGGTCGACCCGGCCCGCCTGCGTCGTCGGACGGCGCCGAGCACCGTGGGGAGCACCGGCCACCTGCCCGTCGTCGACGAGACCTCGGCCGGGGGCCTCGTGGTCGAGCGGCACGTCTCGGGCCACCGGGCGGCGGTGATCCTGCGGCGCAACCGTGCCGGTCGCCTCGAGATGTGCCTGCCCAAGGGCCACCTGGAAGGAGCCGAGACGCCGGAGGAAGCCGCGGTGCGCGAGATCCGCGAGGAGACGGGGATCCAGGGGACGGTCCGCCGCACCCTCGGCGTCATCGACTACTGGTTCAGCGGCGAGGACCGCCGCGTCCACAAGGTCGTGCACCACTTCCTGCTGCGGGCCGACGGCGGGCTCATCACGGCCGCCGGGGACCCCGACGGCGAGGCGGAGGACGCCCGCTGGATCCCGCTGACGGAGCTGCCCGACCGGCTGGCCTACCCGAACGAGCAGCGCCTGGCGACGACCGCCCTGCAGGTCCTGACCCGCACCCCGGACCTGGTCGAGTGAMPVPVPPGGHPLKVDPARLRRRTAPSTVGSTGHLPVVDETSAGGLVVERHVSGHRAAVILRRNRAGRLEMCLPKGHLEGAETPEEAAVREIREETGIQGTVRRTLGVIDYWFSGEDRRVHKVVHHFLLRADGGLITAAGDPDGEAEDARWIPLTELPDRLAYPNEQRLATTALQVLTRTPDLVENANANANANA
AK018_049321428cca_2CCA-adding enzymeATGGCGCCGGCCGCCGTCGAGCTCGGCGAGATCTTCTCCGCCGCCGGTCACGAGCTGTCCCTGGTCGGCGGCCCCGTCCGCGACGCCTTCCTCGGCCGGACCAGCGCCGACCTGGACTTCGCGACGTCCGCGACGCCCGACGAGACCCAGCGCCTGCTGGCCCGCTGGGGCGACGCCCACTGGGACATCGGCAAGGAGTTCGGCACCATCGGCGCCCGCCGGTTCGCCCGGGGGTCCGGTGACGGCGACGGCGAGCCCGCCGGCGACGTCGTGGTCGAGGTGACCACCTACCGCTCTGACTCCTACGACCCCGACTCGCGCAAGCCGGTCGTCGCCTTCGGCGACACGCTCGACGGTGACCTGTCCCGGCGGGACTTCACCGTCAACGCGATGGCGGTGCGGCTGCCGGACCTGACGTTCGTCGACCCGTTCGGCGGGCTGACCGACCTCGCCGAGCAGGTGCTGCGCACGCCGATCGAGCCCGAGCGCTCGTTCGACGACGACCCGTTGCGCATGCTGCGGGCCGCGCGCTTCGCCGCCCAGCTCGGCTTCGCCGTCGAGCCCGCCACGCGCGCCGCCATCGACGCGATGGCGGGTCGGCTCGAGATCGTGTCCGCCGAGCGGGTCCAGGCCGAGCTGTCCAAGCTGCTCTGCGCCGACCGGCCGCGCGCCGGGCTCCAGGTGCTGGTCGACACCGGCATGGCCGACCACGTCCTGCCCGAGCTGCCGGCCCTGCGTCTGGAGATCGACGAGCACCACCGGCACAAGGACGTCTACGAGCACTCCCTCATCGTGCTCGACCAGGCGATCGCCCAGGAGACAGGGCCCGACGGCGCCGTGCCCGGCCCCGACCTGGTGCTGCGGCTCGCGGCGCTGCTGCACGACATCGGCAAGCCCGCCACGCGCCGGTTCGAGCCGGGCGGCGGCGTCAGCTTCCACCACCACGAGGTCGTCGGCGCGAAGATGACGGCCAAGCGGTTGCGCGCCCTGAAGTACGAGAAGCAGGTCGTCAAGGACGTCTCCCGGCTCGTCGAGCTGCACCTGCGGTTCCACGGGTACGGCGACGGCGCGTGGACCGACTCCGCCGTCCGCCGCTACGTCACCGACGCCGGCCCGCTGCTGGAGCGGCTGCACCGGCTCACCCGGGCCGACTGCACCACCCGGAACCGGCGCAAGGCCAAGCGGCTCGCGGACGCCTACACCGACCTCGAGGAGCGGATCGCCCGGCTGCGCGAGCAGGAGGAGATCGACTCGATCCGGCCCGACCTCGACGGCACGCAGATCATGGAGATCCTGGGTGTCGGACCGGGACCGGTCGTCGGTCAGGCCTACCGGCACCTGCTGGGCCTGCGCATGGAGCACGGGCCGCTGGGCGCGGAGCGTGCCGCCGCGGAGCTTCAGTCCTGGTGGGCCGGCCGGCAGGACTGAMAPAAVELGEIFSAAGHELSLVGGPVRDAFLGRTSADLDFATSATPDETQRLLARWGDAHWDIGKEFGTIGARRFARGSGDGDGEPAGDVVVEVTTYRSDSYDPDSRKPVVAFGDTLDGDLSRRDFTVNAMAVRLPDLTFVDPFGGLTDLAEQVLRTPIEPERSFDDDPLRMLRAARFAAQLGFAVEPATRAAIDAMAGRLEIVSAERVQAELSKLLCADRPRAGLQVLVDTGMADHVLPELPALRLEIDEHHRHKDVYEHSLIVLDQAIAQETGPDGAVPGPDLVLRLAALLHDIGKPATRRFEPGGGVSFHHHEVVGAKMTAKRLRALKYEKQVVKDVSRLVELHLRFHGYGDGAWTDSAVRRYVTDAGPLLERLHRLTRADCTTRNRRKAKRLADAYTDLEERIARLREQEEIDSIRPDLDGTQIMEILGVGPGPVVGQAYRHLLGLRMEHGPLGAERAAAELQSWWAGRQDNANANANANA
AK018_049332274hypothetical proteinATGTGGTTCTCCGGATCGTCCGACGACGTCCCGGTGGAACGTGGGGGGAAGGGTCAGGGCATGCCGCAGTCACCGTCGTCGCCGACCGACATCACCGCGCTCGCTCGTGACCTGCTTCCCACGGCCCACGACCCCGAGAAGGTGGTGACCGGCGGTGCCGTGCTCCTGGTCGACACCAGGACCCACGACATCGTCGACACCAACCCCGTCGGGGCCCGCATGGTCGGCGGCCTGGAGCTCCCGACCTCGTTGAGCACCTGGTGCGCGGCGGCAGGCCTGTCGGTGCAGGGCGGGGCGACCTCGGCCAGCGAGGCCCTGGCCGGCGCCGTCGACGGCAGCTCCGGCGTCGCGGTCCTCTCGGCGCGGCACAACACCCCGGACGGCCTGTGGGCCGTCGGCGTCCCGCTCGCCGGTGCCCCCGGCACGCTGGCGAACCGGGCGATGCTGGTGCTGCTGCCCGGCACCGGCCTGACGGAGGCGGTCCCGGCCAGCGAGTTCGACGGTCTGCAGCGGCGCGCGGCCGTGGCCAGCCACCTCAGCTTCACCATCTCCGACCCGTCGCTGCCCGACGACCCGCTGATCTGGGTCAACCCGGCGTTCTGCCGCGTCACCGGCTACACGACCGACGACGTGCTGGGCCACAACTGCCGGTTCCTGCAGGGCGAGGGCACCGACCGCGACACGGTGGACCGGATCCGCGCCGCGCTGGCGGCGGGCGAGGCGGTCGGCGAGACCCTGCTGAACTACCGCAAGGACGGCACGCCGTTCTGGAACCAGGTGGTCGTCTCCCCCGTCCACGACGACGAGGGCGACGTCACCCACCACGTGGGCATCCAGACCGACGTGACCGACCGGGTGCACGCCGACCGGCTCCAGGCCCTCGAGCTCGACGCCGCGAACCGGCAGACCGACCGCCTGCGGCTGCTCGCCTCGATCACCCAGGAGCTCGTCGACCTGTTCGACGAGGAGTCGGGCGCTGCCGTGCTGCCGACGCTCGTGGCACCGCACTTCGGGAGCTGGTGCGCGGTGCTCCTCGTCGACGAGTCCGGAGCGCCGCGGATGGTCCACGCCGCGGCCCGGGACCCGCAGCGGGCCGACGACATCGCCGCACTCGAGCACTCGCACCGCTGGATCCTCGAGTCACCGACGGTGCTGAAGGTGCTGCAGACCGGGACCGACGAGATCTCCGAGCCGTTCCCCGTCGACGTCGACTCGCTCCCGGCCCGCACGGACCCCGCGGAGCTCGCCGCGCTGCGCCGGCTCGGCCTCGGCTCGGCGATGGTCGTGCCGCTGCGCGGCCGCGCCGGGGACATCGGCGTGCTCATCGTGGTCAGCGACGACACCGACGTCGCCACCGCCTTCCCGCCCGCCGACGCCCACGACATCGTGGCCCTGGGCGCCCGGTCGGGCCTGGCGCTGGACAACGCCCGGCTGTATCGGCGCGAGCAGCAGACCGCACTCACCCTGCAGCACAGCATGCTCCCCGAGATCGTGGAGGCCCCCGGACTGGACTGCGCCGCGCTGTACGAGCCGGCCTCCGTCGGTGCCGACGTCGGCGGCGACTGGTACGACGTCGTCCCGCTGCCGGACGGGCGGGTCGCGATCTCCGTCGGCGACGTCGTCGGCCACGACATCCGGGCCGCCGCGTCGATGGGACAGCTCCGTTCCATGCTGCGGTCCGAGGCCTGGTCGGGGCTGTCGGCCCACGAGGTCGTCGGCGGGATCGACGACATCGTGCGCGGCCTGGACATGGCCGACATGGCCACCTGCGTCTTCGCGATCCTCGATCGGCCGGACGACGCCGGGAACCGCCGGATCACCTACACCCGGGCCGGGCACCACGCCCCGCTGCTGATGCACTCGCGCGGCGAGGTCGAGAAGCTGGACCAGGCGCTCACCACCCCCGTCGGAGCACCTCTGCTGACCGAGACGGTGCCGGAGGCCTCGACGGTGCTGCACCCGGGCGACTCGCTGGTGCTCTTCACCGACGGGCTGATCGAACGGCGCGACCGGTCCCTGCGCACCCAGCTCGCCGAGCTCCTGTGGTGCGTGGGCGAGGTCGACCCGGACCTGGACGCGGCGGAGACCCGCGACGCGATCGTCGAGGCCTGCGCCGACGGCACCCAGGAGGACGACACGTGCATCCTCGTGGTGCGCAACGTCCCGGCACCGTCGTCGGGCGAGACCGACGTCGAGCTCGTCGACCCGGACGAGAACCGCACCGGCTCCCGGCGGGCGCCCGGTCAGTCCTGCCGGCCGGCCCACCAGGACTGAMWFSGSSDDVPVERGGKGQGMPQSPSSPTDITALARDLLPTAHDPEKVVTGGAVLLVDTRTHDIVDTNPVGARMVGGLELPTSLSTWCAAAGLSVQGGATSASEALAGAVDGSSGVAVLSARHNTPDGLWAVGVPLAGAPGTLANRAMLVLLPGTGLTEAVPASEFDGLQRRAAVASHLSFTISDPSLPDDPLIWVNPAFCRVTGYTTDDVLGHNCRFLQGEGTDRDTVDRIRAALAAGEAVGETLLNYRKDGTPFWNQVVVSPVHDDEGDVTHHVGIQTDVTDRVHADRLQALELDAANRQTDRLRLLASITQELVDLFDEESGAAVLPTLVAPHFGSWCAVLLVDESGAPRMVHAAARDPQRADDIAALEHSHRWILESPTVLKVLQTGTDEISEPFPVDVDSLPARTDPAELAALRRLGLGSAMVVPLRGRAGDIGVLIVVSDDTDVATAFPPADAHDIVALGARSGLALDNARLYRREQQTALTLQHSMLPEIVEAPGLDCAALYEPASVGADVGGDWYDVVPLPDGRVAISVGDVVGHDIRAAASMGQLRSMLRSEAWSGLSAHEVVGGIDDIVRGLDMADMATCVFAILDRPDDAGNRRITYTRAGHHAPLLMHSRGEVEKLDQALTTPVGAPLLTETVPEASTVLHPGDSLVLFTDGLIERRDRSLRTQLAELLWCVGEVDPDLDAAETRDAIVEACADGTQEDDTCILVVRNVPAPSSGETDVELVDPDENRTGSRRAPGQSCRPAHQDNANANANANA
AK018_049341497ribZ_2Riboflavin transporter RibZATGTCCGCACGCACCACCGAGGCGCCGCCCGGCGGAGCGCCCCACGACGACGTCTCCACCCGCGACACCGACAAGCTGTCGCGCGAGCACCTCGGCGTCATCGCGCTGCTGATGGTGTCGGCGTTCATCGTCATCCTCAACGAGACGACCATGGGCGTGGCGCTGCCCGCCGTCATGGACGAGTTCGACATCGAGCCGTCGGCCGGGCAGTGGCTGACCACCGCCTTCCTGCTGACCATGGCCGTCGTCATCCCCACCACGGGGTGGCTGCTGCAGCGGGTCGGCACCCGGAACGCGTTCGTCCTGGGCATGTCGCTGTTCACCCTGGGCACCCTGCTGGCCGGTCTGGCCCCGGTGTTCGGGCTCCTCGTGGCCGCCCGCGTGGTGCAGGCCTCCGGCACGGCCGTCATGCTGCCCCTGCTCATGACCACCGTCATGACGATCGTGCCCCCGCACCACCGCGGTCGCGTCATGGGCAACGTGTCGCTGGTCATCGCCGTCGCCCCCGCGCTCGGGCCGACCATGTCCGGCGCGGTGGTCAACGCCCTGGGCTGGCGCGAGGTCTTCTGGGTCATGCTGCCGATCGCGCTGCTCGGCCTCGGCATCGGCCTGTTCCTGGTCCGTGACGTCGCCGAGCGGTCCCGCAAGCACCTGGACGCCCTGTCCGTCGTCCTGGCGGGTCTCGCCTTCGGCGGGCTGGTCTACGGCCTCTCGGCGCTGGGGGAGGCCGCGCGGCACGCCCCGCCGGTCTCCCCCGCCGTCCCGATCGCCGGCGGACTGGCCTTCCTCGGACTGTTCGTGTGGCGTCAGCTGCGCCTGCAGCGCACCGACGACGCCCTGCTCGACCTGCGCGTCTTCCGCGCCCCCGGGTTCCCCGCCGGTCTGAGCGTTCTCGTGGTCGCCATGATCGCGATGTTCGGCATGATCATCGGCCTGCCGCTGGTGCTGCAGGAGGCCATCGGGCTCGCGCCGCTGGCCAGCGGCCTGGTGATGCTGCCCGGCGGTCTGCTCATGGGTCTGCTCGGACCGGTCGTGGGCCGGATGTACGACCGCGTCGGGCCGCGCCCGCTCGTGCTGCCCGGTGTGTCCGCCGTCGGGGTCGCGATGGTCCTGTTCGCGACGCTGACGCCGTCCTCCCCGATCTGGTGGGTGATGGTGGGCCACATCGTGCTGAGCCTGGGCCTGGCCTGCGTGTTCACGCCGACCCTCACCTCGGCGCTCGGTGGTCTGCCGCCGCGGCTGTACTCGCACGGGTCGGCGACGATCACCACGCTGCAGCAGCTCGCCGGGGCGGCCGGGACCGCGATGTTCGTCGCGCTGCTCACGCTCCGTTCCGTCGCCCTGCTGGACGACGGCGCCACCGAGGCGGTCGCGACGGCCGGCGGTGCGCGGCTCTCCTTCGGGGTGGCCGCCGTGGTGATGATCGGTGCGGTGCTGCTGGCCACGCGGCTGCGCAAGGCGGAGGCGACGACCTCGGAGACCCCCGCCGCGCACTGAMSARTTEAPPGGAPHDDVSTRDTDKLSREHLGVIALLMVSAFIVILNETTMGVALPAVMDEFDIEPSAGQWLTTAFLLTMAVVIPTTGWLLQRVGTRNAFVLGMSLFTLGTLLAGLAPVFGLLVAARVVQASGTAVMLPLLMTTVMTIVPPHHRGRVMGNVSLVIAVAPALGPTMSGAVVNALGWREVFWVMLPIALLGLGIGLFLVRDVAERSRKHLDALSVVLAGLAFGGLVYGLSALGEAARHAPPVSPAVPIAGGLAFLGLFVWRQLRLQRTDDALLDLRVFRAPGFPAGLSVLVVAMIAMFGMIIGLPLVLQEAIGLAPLASGLVMLPGGLLMGLLGPVVGRMYDRVGPRPLVLPGVSAVGVAMVLFATLTPSSPIWWVMVGHIVLSLGLACVFTPTLTSALGGLPPRLYSHGSATITTLQQLAGAAGTAMFVALLTLRSVALLDDGATEAVATAGGARLSFGVAAVVMIGAVLLATRLRKAEATTSETPAAHPGPT0028570_230DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028570-lmrB-K18926NANA
AK018_049351353COG0477putative MFS-type transporterGTGGGAGCACTGGGCGAGACCTGGCACGACCTGCGCGCGCTGCTGCGCCTGCAGGGGTTCCGCCGGCTGTTCGCGGTCCGGCTCGTCTCCCAGGCCGGCGACGGCATGTTCCAGGTCGGGCTCGCCTCCCTGCTGTTCTTCTCCCCCGAGCGGGCCGGGACCGCCGTCGGCGTCGCGAGCGCCTTCGCGGTGATGCTCGCCCCGTTCACGATCGTCGGCCCGTTCGCCGGCGTCTTCCTGGACCGGTGGCGACGTCGTCAGGTGCTCGCCTACGGCAACGCCCTGCGGCTGCTCATCACCGGTGCGATGGCGGCGATCATGCTGACCGTCGGACTGGGCGGCAGCGGCGACGTGTGGGTGATCGTCCTGGGCCTGCTCGCCCTGAGCGTCAACCGGTTCCTGCTCGCCGCCCTCAGCGCGGGCCTGCCCCGCGTCGTGGCGGGCCCCTACCTGCTCACGGCGAACTCCCTGACCCCGACCCTCGGCGCGGGTGCCGTGTTCCTCGGCGGCGGCATCGGTCTGGTCCTGGGCCTCGGCATCCCGCCCGGGCGGATCCACGACGCCGCCGCGCTGGTGTGCGCCGCCGTCGTCTTCGGCGTCGCCGGGCTGCTCGCGCTGCGGCTGGGACGCGACCAGCTCGGTCCGGAGCACCCCACCCGCGGCCACCTCGCCGCCGAGCTCGCCGCCGTCGCGCGCGGTCTGGTCGACGGTGCCCGGTACCTCACGGCCCGCCGGACCCCGGGTCAGGCGCTGCTGGTCATGGGCGCCCACCGGTTCCTGTACGGCGTGGTCTTCATCGCGGCGATCCTCATCTCCCGCAACCTGCTGGCCGACCCGGGCGACACCACGGCCGGCCTGGCCAACTTCGCCCTCGTGCTGGCCGCGACAGCGGTCGGCGGGGCGGCCGCCGTCGTCGTCACCCCGGTGTTCTCCCGTCTCACCGGTCCGCAGGGCTGGATCGTGTGCATGCTGCTGCTCGCCGCAGCCTCCCAGCTCCTGCTGGCCACGACCCCGGCACGCACGGTCATCTTCCTCGGGGCCGGGCTGCTCGGCCTCGCTGCGCAGAGCGCCAAGATCGCCGTCGACACGATCGTGCAGCGCGACACCCACGACGACTTCCGCGGCCGCGCGTTCGCGTTCTTCGACGTGCTCTACAACGCCGCGTTCGTCGGTGCGGCGCTGCTCGCCGCGTGGGCGGTGCCCGACGACGGCTGGTCGCGCGGCCTGTTCGTCGCCCTCGCGCTGGCCTACGTGGCTGTCGCGGCGGTGCTCGGCCTCACGGGTGCCCGGCACCCGGCCCCCGTGCACCTCTCGGGGGACCCGGCCCGGGTCGACCGCCCGGTCGACCGCTGAMGALGETWHDLRALLRLQGFRRLFAVRLVSQAGDGMFQVGLASLLFFSPERAGTAVGVASAFAVMLAPFTIVGPFAGVFLDRWRRRQVLAYGNALRLLITGAMAAIMLTVGLGGSGDVWVIVLGLLALSVNRFLLAALSAGLPRVVAGPYLLTANSLTPTLGAGAVFLGGGIGLVLGLGIPPGRIHDAAALVCAAVVFGVAGLLALRLGRDQLGPEHPTRGHLAAELAAVARGLVDGARYLTARRTPGQALLVMGAHRFLYGVVFIAAILISRNLLADPGDTTAGLANFALVLAATAVGGAAAVVVTPVFSRLTGPQGWIVCMLLLAAASQLLLATTPARTVIFLGAGLLGLAAQSAKIAVDTIVQRDTHDDFRGRAFAFFDVLYNAAFVGAALLAAWAVPDDGWSRGLFVALALAYVAVAAVLGLTGARHPAPVHLSGDPARVDRPVDRNANANANANA
AK018_049361092ino1_2COG1260Inositol-3-phosphate synthaseATGACCTCCGTCCGCGTTGCCATCGTCGGTGTCGGAAACTGTGCATCGTCCCTGGTCCAGGGTGTGCACTACTACCGCGACGCCGACCCGGCCGACACCGTCCCGGGTCTCATGCACGTGCAGTTCGGCGACTACCACGTGAGCGACCTCGAGTTCGTGGCGGCGTTCGACGTCGACGCGAAGAAGGTCGGCTTCGACCTGGCCGAGGCGATCATCGCCTCGGAGAACAACACGATCAAGATCGCGGACGTGCCGCCCACGGGCGTCATGGTCCAGCGCGGCCCGACCCTCGACGGCCTCGGCGACTACTACGCCGCGACCATCGACGAGGCGGCCGACGAGCCGGTCGACGTCGTGCAGGCGCTCCAGGACGCGAACGTCGACGTCCTCGTCTCCTACCTGCCGGTGGGTTCCGAGGAGGCCGACAAGTTCTACGCGCAGTGCGCCATCGACGCGGGCGTGGCCTTCGTCAACGCCCTGCCGGTCTTCATCGCCTCGGACCCCGAGTGGGCGAAGAAGTTCGAGGACGCCGGTGTGCCGATCGTCGGCGACGACATCAAGTCCCAGGTCGGTGCGACCATCACGCACCGCGTGCTCGCGAAGCTCTTCGAGCAGCGCGGCGTCATCCTGGACCGCACGTACCAGCTGAACGTCGGCGGCAACATGGACTTCAAGAACATGCTGCAGCGCGACCGTCTCGAGTCGAAGAAGGTCTCCAAGACCCAGGCCGTGACCTCCAACCTGGAGGGCCCGCTGGCCGGGAAGAAGGACGACCGCAACGTCCACATCGGCCCGTCGGACTACGTCGCCTGGCTCGACGACCGCAAGTGGGCCTACGTGCGCCTCGAGGGCCGCGCGTTCGGTGAGGCGCCGCTGAACATGGAGTACAAGCTCGAGGTCTGGGACTCCCCCAACTCGGCCGGCATCATCATCGACGCCATCCGCGCGGCGAAGATCGCCAAGGACCGCGGCATCGGCGGCCCGATCCTGTCGGCGTCGACCTACTTCATGAAGTCCCCGCCGGTCCAGATGGAGGACACGCAGGGCCGCGCCCAGCTCGAGGCCTTCATCACCGGCGACGTGGAGCGCTGAMTSVRVAIVGVGNCASSLVQGVHYYRDADPADTVPGLMHVQFGDYHVSDLEFVAAFDVDAKKVGFDLAEAIIASENNTIKIADVPPTGVMVQRGPTLDGLGDYYAATIDEAADEPVDVVQALQDANVDVLVSYLPVGSEEADKFYAQCAIDAGVAFVNALPVFIASDPEWAKKFEDAGVPIVGDDIKSQVGATITHRVLAKLFEQRGVILDRTYQLNVGGNMDFKNMLQRDRLESKKVSKTQAVTSNLEGPLAGKKDDRNVHIGPSDYVAWLDDRKWAYVRLEGRAFGEAPLNMEYKLEVWDSPNSAGIIIDAIRAAKIAKDRGIGGPILSASTYFMKSPPVQMEDTQGRAQLEAFITGDVERNANANANANA
AK018_04937669hypothetical proteinGTGCGTAGTCGCTCGAACGTTCTCGAGACGGCCGTCCTGGGCCTGCTCAGCTCCGCCCCGCTGCACGGCTACGAGCTGCGCAAGAGGCTCAACCTGCTCCTGGGCTCGTTCCGCGCCTTCTCCTACGGCAGCCTCTACCCGGCCCTGAAGTCCCTGGTCGGGCGCGGGCTGATCGAGACGGTCGACCCCGACCCGGCCGCGGCGCGTCCCGCCGCGACCGGCACGCCGGGACGACCGTCGTCGGGCAGCAAGCCGCTCACGGGGCGACGGGGCCGGATCGTCTACCGCCTCACGCCCGAGGGCAAGGAACACCTCCAGACCACTCTCGCCTCCTCCGGCCCCTCGGCCTGGGAGGACGAGAGCTTCGACGTCCGGTTCGCGTTGTTCGCGCAGACGGACGCCGAGACCCGCCTCCGCATCCTCGAGGGCCGGCGCACCCGGCTGACCGAGCGCCTGGAGGCGGTCCGGGAGTCCGCAGCCCGGACCCGCGAGCGGCTCGACGAGTACACTCTCGAGTTGCAGCGGCACGGACTGGAGCAGGTCGAGCGCGAGGTGCGCTGGCTCGACGGGCTCATCACGACCGAGCGCGACCGCGTCAGCGGCCGCGACCGCGACCACGACGCCGGGGCGCACCACGCCCCGGCCCCGAGAAACAAGGAGCGAGGATGAMRSRSNVLETAVLGLLSSAPLHGYELRKRLNLLLGSFRAFSYGSLYPALKSLVGRGLIETVDPDPAAARPAATGTPGRPSSGSKPLTGRRGRIVYRLTPEGKEHLQTTLASSGPSAWEDESFDVRFALFAQTDAETRLRILEGRRTRLTERLEAVRESAARTRERLDEYTLELQRHGLEQVEREVRWLDGLITTERDRVSGRDRDHDAGAHHAPAPRNKERGNANANANANA
AK018_049382547mtgA_2Biosynthetic peptidoglycan transglycosylaseGTGGACGTGGCGAGCACACGCAACCGTCGCTTCTGGAACTATCCGCGCCGGGGCAAGGGCCTCGTGCAGCGGTGGCTGCCGTCGTGGCGCATCGTCCTCGGCGCGGCGCTCACGTTCGCCGCCCTCGGCGCCGGGGTGTTCTTCGCCGCGTGGACCTCCACCGCGATCCCGGAGAACCTCGACGACGTCGACCACCAGGCCACGACGGTCTACTACGCCAACGGCAAGGAGATCGGGACGTTCTCGACCGTCAAGCGCGAGATCGTGGCCTACGAGGACCTGCCCTCGCACGTCGGCAACGCCGTCGTGGCGAGCGAGAACGCCTCGTTCTGGGAGGACCCGGGCGTCGACGTCATGGGTCTGGCACGGGCGATGTGGACGAACCTCACCACGGACTCCCGGCAGGGCGGCTCCACCCTGACCCAGCAGTACGTCGAGCGCTACTACCTGGGACAGACGACCGACATCGCCGGCAAGGCCCGCGAGGCGATCATCTCGCTGAAGATCACGCGGGAGCAGCCCAAGGAGCTGGTGCTGGAGCGCTACCTCAACACGATCTACTTCGGGCGCGGCGCCTACGGCGTGCAGGCAGCCGCCCAGGCGTACTTCGACAAGGACGCCGCGGACCTCACCTTCTCGGAGTCGGCGATGCTGTCGGGGATCATCCCGGCGCCCGTGCGCTACGACCCGTCGGAGAACCTCGACATCGCGACCGCGCGGTGGGAGCGCAGCTTGAACCGCATGGCCGCCCAGGGGTACCTCACCCAGGCCGAGGCCGACTCCGCGGAGTTCCCCGAGTTCGTGGAGAAGAACGCCAGCGGCAACAGCCTCGGTGGCCAGAAGGGCTACATCATGGAGGCGGTCCGCAAGGAGCTCCTCGCCAGCGGGGAGTTCACGAAGGAGGACCTCGAGTCCCGGGGTCTGCAGATCCACACGACGATCAAGCCGAAGCTCCAGCGCAACGCGGCGAAGATCGTCCGGAACATGCCCGAGGGGGCGAACGAGAACGTCCGGGCGTCCCTGGTGTCGATCAACCCGGAGGACGGGGCGATCTGGGCGCTGTACGGGGGGCCGGACTACCTCGAGCAGCAGATGAACACGGCCACGGACGACGTCGTCCAGGCCGGTTCGACGTTCAAGCCCTTCACGCTCATCGGGGCTCTCGAGGAGGGACGTCAGCTCACCGACCGGTTCGACGGCAACTCGCCGAAGATCTTCCCCGAGGCCGACGACGGCCAGGACTGGACCGTCAACAACTTCGGCGGCTACGACTACGGGGACCAGATCGACCTCGTCGAGGCGACCGCGCACTCGGTCAACACGGCCTACGCCGAGCTCAACATCGACGTCGGCCCCGCCAAGACCGCGGAGGTCGCCCACCGCCTCGGCATCGAGGAGGGTGCGACGAACGACGCGGGCGAAGAGGTGAATCCCCTCGGCACCAACAACTCCAACGTGCTCGGTACCGAGTCGGTCTTCCCCGTGGACCTCGCGTCGGCGTACGCGACGATCGCGGGCGGGGGCTACTACGTGCAGCCGCACGTCATCAAGAAGGTCGAGCACATGGACGGCACCCTGCGCTGGGAGCCGGACACCTCGACGGACAAGCGGTTCGAGCCGGACGTGATGAACGCCGCGACGTACGCCATGACGCAGGTCGTCGAGGAGGGCTCCGGACGGGCCGCGCTCGAGCTGACCGGCCCCGACGGCCAGCGCCGACCCGTCGCCGGCAAGACCGGTACGGCGCAGAACAACGAGACCGCATGGTTCGCCGGCTTCACCCCGCAGCTGGCCACGGTGGTCAACCTCCGGCAGTACGAGACCGTCGACCTCGACGCCGGGATCATCAAGGGCAAAGCGCAGATCGACGACTTCGAGCCGTACGGCGAGATCACCGGCTCGACGTGGCCCGCGGACGCCTGGACCGACTTCATGCAGGTGGCGCTCGAGGGCAAGGACGTCGTGGAGTTCCCGTCGTACACGCCGCCCCGGCCGACGTTCTCGCCGTCGCCGTCCCCGAGCGAGAGCACCCCGCAGTGGGTCGAGCTGCCGGACGACCTCATCGGCATGAACATCAACGAGGCCACGGCGCTGCTCGAGGGCATGGGCCTGGTCGTCGCCACGCAGGCGACCGAGAACGAGGCCGAGAAGGGCACCGTGGTGAACTTCTACGACCCGGGCGGTGCCGTGGAGTCCGGCTCGACGATCACGCTCTGGGTCTCGACCGGGGCGGTCGAGGAGCAGGAGCAGGTCGCGGTGCCGAACGTCGTCGGGCAGCCCGCCGGCTCCGCCGAGAGCCAGCTCAACCGGGTCGGCCTCGGGGCGGAGGTGGTCCAGGAGCCCAACAACGAGATCCCGCGTGGTCAGGTGATCCGCACCGAGCCCGGTGCGGGCAGCGAGGTCGAACCCGGGACCACCGTGCGGATCGTGGTCTCGACCGGGCCGCAGCCGACGCAGGAGCCCACGCAGGAGCCGACGTTGGAGCCCACGCAGTCGCCGTCGCCCTCCGGCCTGCCGGGCAACGGCAACGGCAACGGCAACGGGTGAMDVASTRNRRFWNYPRRGKGLVQRWLPSWRIVLGAALTFAALGAGVFFAAWTSTAIPENLDDVDHQATTVYYANGKEIGTFSTVKREIVAYEDLPSHVGNAVVASENASFWEDPGVDVMGLARAMWTNLTTDSRQGGSTLTQQYVERYYLGQTTDIAGKAREAIISLKITREQPKELVLERYLNTIYFGRGAYGVQAAAQAYFDKDAADLTFSESAMLSGIIPAPVRYDPSENLDIATARWERSLNRMAAQGYLTQAEADSAEFPEFVEKNASGNSLGGQKGYIMEAVRKELLASGEFTKEDLESRGLQIHTTIKPKLQRNAAKIVRNMPEGANENVRASLVSINPEDGAIWALYGGPDYLEQQMNTATDDVVQAGSTFKPFTLIGALEEGRQLTDRFDGNSPKIFPEADDGQDWTVNNFGGYDYGDQIDLVEATAHSVNTAYAELNIDVGPAKTAEVAHRLGIEEGATNDAGEEVNPLGTNNSNVLGTESVFPVDLASAYATIAGGGYYVQPHVIKKVEHMDGTLRWEPDTSTDKRFEPDVMNAATYAMTQVVEEGSGRAALELTGPDGQRRPVAGKTGTAQNNETAWFAGFTPQLATVVNLRQYETVDLDAGIIKGKAQIDDFEPYGEITGSTWPADAWTDFMQVALEGKDVVEFPSYTPPRPTFSPSPSPSESTPQWVELPDDLIGMNINEATALLEGMGLVVATQATENEAEKGTVVNFYDPGGAVESGSTITLWVSTGAVEEQEQVAVPNVVGQPAGSAESQLNRVGLGAEVVQEPNNEIPRGQVIRTEPGAGSEVEPGTTVRIVVSTGPQPTQEPTQEPTLEPTQSPSPSGLPGNGNGNGNGPGPT0023875_1666DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023875-mrcA-K05366NANA
AK018_04939291rpsF_2COG036030S ribosomal protein S6ATGCGTCAGTACGAACTGATGGTGATCCTGGACCCGGAGGTCGAGGAGCGCTCCGTGGGCCCGACGCTGGACAAGCTGCTCAAGGTCATCACGACCGACGGCGGCAGCGTCGACAACGTGGACATCTGGGGTCGTCGCCGGATGGCCTACGACATCAACAAGCGCTCCGAGGGCATCTACGCCGTCGTGAACTACACCGCGACGCCGGACACCGCGAAGGAGCTGGACCGTCAGCTCGGCCTCAACGAGGGCGTGCTGCGGACCAAGACCCTCCGCGCCGTCGCTCACTGAMRQYELMVILDPEVEERSVGPTLDKLLKVITTDGGSVDNVDIWGRRRMAYDINKRSEGIYAVVNYTATPDTAKELDRQLGLNEGVLRTKTLRAVAHNANANANANA
AK018_04940537ssb_3COG0629Single-stranded DNA-binding proteinATGGCTGGTGAGACCGTCATCACGGTCGTGGGAAACCTGACCGCGGACCCGGAGCTGCGCTTCACCCCGTCGGGTGCAGCCGTCGCCAACTTCACGATCGCGTCGACCCCGCGCACGTTCGACCGACAGGCGAACGAGTGGCGGGACGGAGAGGCGCTCTTCCTGCGCTGCTCCATCTGGCGCGAGGCGGCGGAGAACGTCGCCGAGTCGATGACGAAGGGGATGCGCGTCATCGCGCAGGGCCGCCTTCAGCAGCGTTCGTTCGAGACCCGCGAGGGTGAGAAGCGCACCGTCGTCGAGCTGCAGGTCGACGAGATCGGCCCGTCGCTGCGGTGGGCGTCCGCCAAGGTCGCCCGCGCACAGCGCAGCGGCGGCGGTGGCGGCGGATTCGGTGGCGGCTACGGCGGCAACGCCGGTGGCCAGCCCGGTGGTGGCGGTGGATTCGGTTCCTCCGGCGGCGGACAGCAGAGCGACCCCTGGGCCACGGCTGGCCCGGCGTCCTCGGGCGGCGGGTTCTCCGACGAGCCCCCGTTCTGAMAGETVITVVGNLTADPELRFTPSGAAVANFTIASTPRTFDRQANEWRDGEALFLRCSIWREAAENVAESMTKGMRVIAQGRLQQRSFETREGEKRTVVELQVDEIGPSLRWASAKVARAQRSGGGGGGFGGGYGGNAGGQPGGGGGFGSSGGGQQSDPWATAGPASSGGGFSDEPPFNANANANANA
AK018_04941237hypothetical proteinATGGCCAAGCCTGTGGTGCGCAAGCCCAAGAAGAAGGCGAACCCGCTCAAGGCCGCGAAGGTCGAGACGGTCGACTACAAGGACACCGCCCTGCTGCGGAAGTTCATCTCCGACCGCGGCAAGATCCGTGCGCGTCGCGTCACCGGCGTGAGCGTGCAGGAGCAGCGTCAGATCGCCAAGGCCGTCAAGAACGCGCGCGAGATGGCCCTGCTGCCGTACTCGTCGTCGGCCCGCTGAMAKPVVRKPKKKANPLKAAKVETVDYKDTALLRKFISDRGKIRARRVTGVSVQEQRQIAKAVKNAREMALLPYSSSARNANANANANA
AK018_04942450rplI_2COG035950S ribosomal protein L9ATGGCAAAGCTGATCCTGACCCACGAGGTGACCGGTCTCGGTGAGCCCGGCGACGTCGTCGAGGTGAAGGACGGGTACGCCCGCAACTACCTCGTCCCGCGTTCGCTGGCCACGCCGTGGACCAAGGGCGCCGAGTCGCAGATCTCCGCGATCCGCAAGGCCCGCAAGGCCCGCGAGATCGCCACGCGCGAGGACGCTCAGGCCGCGGCCGAGTCGATCCAGTCGCGGACCTACACCGTGGAGGCGCACGCCGGTGAGTCCGGCCGCCTGTTCGGTGCGGTCACCACCGCGGACATCGCCGCTGCCGTGAAGGCGGCCGGCGGCCCGTCCGTCGACAAGCGCAAGATCGAGATCGGCCAGCCGATCAAGTCGCTCGGTGAGCACACCGTGTCGATCCGCCTGCACCCCGAGGTGTCGGCGAAGATCGCGCTGGAGGTCGTCGCCGGCTGAMAKLILTHEVTGLGEPGDVVEVKDGYARNYLVPRSLATPWTKGAESQISAIRKARKAREIATREDAQAAAESIQSRTYTVEAHAGESGRLFGAVTTADIAAAVKAAGGPSVDKRKIEIGQPIKSLGEHTVSIRLHPEVSAKIALEVVAGNANANANANA
AK018_049431323yeeO_2COG0534putative FMN/FAD exporter YeeOGTGGGTGACATCCGCCGCATCGATCGCGAGATCCTCGCGCTCGCCTGGCCCGCCCTCGGAGCGCTCGTCGCCGAGCCGTTGTTCGTGCTCGTCGACAGCGCCGTCGTCGGCCACCTGGGGACCGCCCAGCTCGCCGGGCTCTCCCTCGCCTCGACCCTGCTGGTCACCCTCGTCGGCCTCTGCGTCTTCCTCGCCTACGCCACCACCGCGGCCGTCGCCCGCCGCCTCGGCGCCGGGCACGACCGCGCCGCGCTCCAGTCCGGCGTCGACGGCATGTGGCTGGCCCTGGGCCTCGGCGTCGTGCTCGCGGCGCTCCTGTGGACGGCCGCCCCGTGGGCCGTGGCGGTCATGGGGGCCTCGGACGACGTCGCCACGCACGCGGTCACCTACCTGCGCTGGTCCGCGCCCGGCCTGCCCGGGATGCTGCTGGTCCTGGCCACGACCGGCGTGCTGCGCGGGCTGCAGGACACCCGCACACCCCTGTGGGTGGCCTCGGGCGGCGCCGTCTTCAACGCTGTCGGCTCGGTCACCCTGGTCTACGGCGTCGGGCTGGGCATCGCGGGGTCGGCCCTGGCGACGACGACGGCGCAGCTGCTGATGGCGGTCGTGCTCGCCGTCGTCGTGGTCACCGGGGCCCGACGCCGGGGTGCCTCGCTGCGCCCGCAACGTGCGGGGATCTGGGCCAACGCCGTCGCCGGGGCGCCGCTGTTCGTCCGGACCGTGTCCCTGCGCCTGGCGATCCTGCTGACGGTGTGGGTCGCGACGGGACTCGGCGCCGTCGCGCTCGGCGGTCACCAGGTCGTCAACAGCCTGTGGGGACTGGCGGCCTTCGCGCTCGACGCCCTCGCGATCGCGGCCCAGGCGCTCGTCGGGTTCGGGCTCGGCTCCGGGGACACCGCCCGGGTCCGCGCGGTGCTACGCCGCTGCCTGCAGTGGGGCGTCGGTGCCGGGGCGGTCATCGGCGTCGTCCTCGCGGCGGCGTCCTGGTGGATCGCACCGCTGTTCTCCCCCGACCCCGACGTGCGGGTCGCCATCACGGCCGGGCTCGTCGCGTGCGGGGTGTTCATGCCGATGGCCGGCTGGGTGTTCGTGCTCGACGGCGTCCTCATCGGCGCCGGCGACGGCCGGTTCCTCGCGTGGGCCGGCATGCTCACGCTCGTGGTCTACGTGCCCGTCGCACTGGCGGTCCGTGCCTGGGCGCCGGAGGGAGCAGCCGGACTCGCGTGGCTGTGGGCAGGGTTCGCCGGCGTGTTCATGCTGGCTCGAGCCCTGACGACGGGGTTGCGCGCCCGTGGCGAGCGCTGGATGACCACCGGCGCCTGAMGDIRRIDREILALAWPALGALVAEPLFVLVDSAVVGHLGTAQLAGLSLASTLLVTLVGLCVFLAYATTAAVARRLGAGHDRAALQSGVDGMWLALGLGVVLAALLWTAAPWAVAVMGASDDVATHAVTYLRWSAPGLPGMLLVLATTGVLRGLQDTRTPLWVASGGAVFNAVGSVTLVYGVGLGIAGSALATTTAQLLMAVVLAVVVVTGARRRGASLRPQRAGIWANAVAGAPLFVRTVSLRLAILLTVWVATGLGAVALGGHQVVNSLWGLAAFALDALAIAAQALVGFGLGSGDTARVRAVLRRCLQWGVGAGAVIGVVLAAASWWIAPLFSPDPDVRVAITAGLVACGVFMPMAGWVFVLDGVLIGAGDGRFLAWAGMLTLVVYVPVALAVRAWAPEGAAGLAWLWAGFAGVFMLARALTTGLRARGERWMTTGANANANANANA
AK018_049442595hypothetical proteinATGTCGATCGAGGAGCTCGAAGCGGGATACGGAGCGTCGTCGCCCGCCTTCGACCGCACCCCTCCGCAGGACATCCCCGCCGAGATGAGCGTGCTCGGCGGCATGCTGCTGTCCAAGGACGCGATCGCCGACGTCGTCGAGCAGATCCGCGGCGTCGACTTCTACCGCCCCGCCCACGAGGCCATCTACGAGGCGATCATCGACCTCTACGGCCGCGGCGAGCCGGCCGACGCCATCACCGTCGTCGCCGAGCTGACCAAGCGCGGCGAGATCGGACGCATCGGCGGCGCCTCCTACATCCACGACCTCATGGCCGGCGTGCCGACGGCGGCCAACGCCGGCTACTACGCGCGGATCGTCCGCGAGCGGGCCGTGCTGCGCCGCCTCGTCGAGGCCGGGACCAAGATCGTCCAGCTCGGGTACGCCACCGACGGCGGCGAGGTCGAGGCCGTCGTCAACAACGCCCAGGCGGAGATCTACGCCGTCACCGAGCGCAAGACCACCGAGGACTACGCGCCGCTGGCCGACATCATCGGCGGCACGATGGACGAGATCGAGGCTGCCGGGAACCGTGGCGAGGGCATGGTCGGCGTGCCCACCGGGTTCGCGGACCTCGACCGGCTGACGAACGGCCTGCACCCCGGGCAGATGGTCGTCGTCGCCGCCCGTCCGGCCATGGGCAAGGCGCTCGCGCTCGACACGCCGCTGCCGACGCCGACCGGCTGGACCACGATGGGCGAGGTCGCCGTCGGTGACGAGCTGCTCGCCCCCGACGGCACGCCCACGCGCGTCGTCGAGGCCACCGAGATCATGACCGGCCGACCCTGCTACGAGGTGGAGTTCGACGACGGCACGACCATCGTCGCGGACGCCCAGCACGAGTGGGCCACCAGCACCCGAGCCCAGCGCCGGAAGGTGCGTGTCGGGACGACCCCGGAGTCCGAGGTCCGCACGACCGAGGCGATCCTCGAGACGTTGCGGTGCAAGACGGCGGAGCGCCGGTCGAACCACTCCATCCCGACCACCACGGCGCTCCAACTGCCTGAGGCAGACCTCCCGATCGACCCGTACATGCTGGGTGTCTGGCTCGGGGACGGCCACTCCGGGTCGGCGCGTTTCACCTCCGAGGACCCGGAGATCGCGATGCGGATCGAGGGCCTCGGTTACCTCGTCGGCGAGCGGAAGAGCATTCCTGGAGCAGCAAAACTCTATCAGATCCAGCTGCCGGCGGATGAGCCGATCGCGTCACGCGAGTGCGATGTGTGTGGTCAGGAGTTCGTTCCGAGGACCTCTCAGGTGCGGACGTGCGGGAGGTCTTGCGGCGGCCGGGTCAGGGCGATATCGGCACCGGTGGCCTCGCCGACGTGCCCCGACTGCGGGCGTCCGAGCTCGGGGTTCCGGCGCTGCATGGAATGCCACCAGGACCACGGCTCCGTCGCGGGCATCCTCCGACACCTGGGCGTGCTGGGACACAAGCACATCCCGATGCCCTACCTGCGGGCCTCGGAGGCACAACGCCGTGCGCTGCTGGCGGGGCTCCTCGACACCGATGGGACGGTTAACCGCACCGGCAGCCCTCAGATCGCGGTGACGGACCGGCGACTGGCTACTGACATCCGGGAGCTGATCCACAGCCTCGGCTATCGGACGGGCTGGTGGGAGAAGAGCGTTGCGGGACGCCACGAGTCGTCCTCGACAGCCTTCACGATCACGTTCACGACCCATGATGAGGTCTTCGCGCTCGATCGCAAGAAGCTCATGCACAAGGAGCGTCGACGCAAGCCGACGGCAAAGCTGACGTCCCGGTTCGTGGTCGATGTCCGACCCGTCGACTCGGTGCCGGTGCGTTGCGTCCAGATCGACCACGCAGAGCACCTGTTCCTCGCGAGCCGGGCCATGATCCCGACCCACAACTCGACGCTGGCATTGGACCTTGCTCGCGCGGCGTCGATCAAGAGCCAGAAGACATCCGTTGTCTTCTCGCTCGAGATGAGCCGCAACGAGATCACGATGCGTCTGCTGTCGGCCGAAGCGCGCGTGCACCTGCAGAAGCTGCGCAACGGCTCAATGGGCGACGACGACTGGCAGAAGCTCGCCAAGATCATGGGCAAGGTGTCTGAGGCACCGCTGTTCATCGACGACTCGCCGAACATGTCGCTCACCGAGATCCGCGCCAAGTGCCGCCGGCTCAAGCAGAAGCACGACCTCGAGCTCGTCATCGTCGACTACCTGCAGCTTATGACGTCCGGCAAGAAGGTCGAGTCCCGGCAGCAGGAGGTCTCCGAGTTCTCGCGTGCGCTGAAGCTGCTCGCGAAGGAGATCGAGGTCCCGGTCATCGCGCTGTCGCAGCTCAACCGTGGTCCCGAGACCCGCAGCGACAAGAAGCCGCAGATGTCTGATCTTCGTGAGTCGGGATCGATCGAACAAGATGCTGACATGGTCATTCTTCTTCATCGCGAAGATGCCTATGAGAAGGAATCCCCGCGCGCAGGCGAGGCGGATTTGATTGTGGCCAAGCATCGTAACGGTCCGACGGACACGATTACCGTGGCATTCCAGGGGCACTACTCGCGGTTCGTCGATATGCAGGCGTGAMSIEELEAGYGASSPAFDRTPPQDIPAEMSVLGGMLLSKDAIADVVEQIRGVDFYRPAHEAIYEAIIDLYGRGEPADAITVVAELTKRGEIGRIGGASYIHDLMAGVPTAANAGYYARIVRERAVLRRLVEAGTKIVQLGYATDGGEVEAVVNNAQAEIYAVTERKTTEDYAPLADIIGGTMDEIEAAGNRGEGMVGVPTGFADLDRLTNGLHPGQMVVVAARPAMGKALALDTPLPTPTGWTTMGEVAVGDELLAPDGTPTRVVEATEIMTGRPCYEVEFDDGTTIVADAQHEWATSTRAQRRKVRVGTTPESEVRTTEAILETLRCKTAERRSNHSIPTTTALQLPEADLPIDPYMLGVWLGDGHSGSARFTSEDPEIAMRIEGLGYLVGERKSIPGAAKLYQIQLPADEPIASRECDVCGQEFVPRTSQVRTCGRSCGGRVRAISAPVASPTCPDCGRPSSGFRRCMECHQDHGSVAGILRHLGVLGHKHIPMPYLRASEAQRRALLAGLLDTDGTVNRTGSPQIAVTDRRLATDIRELIHSLGYRTGWWEKSVAGRHESSSTAFTITFTTHDEVFALDRKKLMHKERRRKPTAKLTSRFVVDVRPVDSVPVRCVQIDHAEHLFLASRAMIPTHNSTLALDLARAASIKSQKTSVVFSLEMSRNEITMRLLSAEARVHLQKLRNGSMGDDDWQKLAKIMGKVSEAPLFIDDSPNMSLTEIRAKCRRLKQKHDLELVIVDYLQLMTSGKKVESRQQEVSEFSRALKLLAKEIEVPVIALSQLNRGPETRSDKKPQMSDLRESGSIEQDADMVILLHREDAYEKESPRAGEADLIVAKHRNGPTDTITVAFQGHYSRFVDMQANANANANANA
AK018_04945351hypothetical proteinGTGGGTGACGCCGACCTGATCCGGTTCGAGAGCCCGACGCCGAACCAGCGCGGACAGCACGTCGGCGTCTTCGGGCTGGCGAACGGCCTCGCGCGGGCAGGCCGGCTGTCAGTACGGGACTGGGCCTGGTGGCGAGCGAGCAACGACTGGTGCAACGCCGCGTATCCCGACCCGGCCACGGTGGACGCTGCGGTCTATGACCCCGTGCTGAATCCCGGTGCCCGGGCGTGGTTCCGCGCCTCGGCGACCGAGCTGATCGCCACGGCGCGGGAGTACGTGGCTCTGCTCGACCGGTACGACGTGGCATGCGTGGAGCGGCGCACCCGCACGCCCGGCCGCGTCGTCTATTAGMGDADLIRFESPTPNQRGQHVGVFGLANGLARAGRLSVRDWAWWRASNDWCNAAYPDPATVDAAVYDPVLNPGARAWFRASATELIATAREYVALLDRYDVACVERRTRTPGRVVYNANANANANA
AK018_04946585hypothetical proteinATGTCGCGGCACGCGCCGGTGCGCATGCACTGCCAGACCACCGCGTCACCGCTGGTCCTGGAGTCAGGGCTGGAGTACGAGCTGGCTCGTGAACTCGACCGGGACCCGAGCGTGGTGTGGATCGTCGCGCAGCCGATGCTCATCACGTTCGCCGACGGCACCCGACACGTGCCAGACATCGCCTGCGAGCACCTTGACGGTCGGGTCGTGATCTGGGACGCCCGGCCATCCGACCGGCGGGACGAGCGCTTCATGCGCCAGGCCCGCCTGACCGAGCGGGCCTGCACCGACGTCGGGTGGGAGTACGCCCTGTACGACGCGGCGGACGACGCCCGGCGCCTGAACATGCTGTGGCTCGCCTGTTTCCGTCACGAACCCGCCTGGCCGCACCACACCGCTCGGATACGCCTGCAGCAGGCGTGTCGGGAGAGCGCAACGGTCGGAGAACTCATGACGCTCGACGACGGTGATGGTCAGACGATCGCCACGATGTGGCATCTGCTGTGGACCGGCGACCTCAACGTCGACCTGGACGCACGGATCACGGCGGACACCGCCGTGCGACTCGGTGGAGGGGCACGATGAMSRHAPVRMHCQTTASPLVLESGLEYELARELDRDPSVVWIVAQPMLITFADGTRHVPDIACEHLDGRVVIWDARPSDRRDERFMRQARLTERACTDVGWEYALYDAADDARRLNMLWLACFRHEPAWPHHTARIRLQQACRESATVGELMTLDDGDGQTIATMWHLLWTGDLNVDLDARITADTAVRLGGGARNANANANANA
AK018_049472214hypothetical proteinATGATCGAGAACAGGGTGGTCGTCCAGGCTGGTGAAACGGTACTGACCGACGACGGGACGGCTCTGGTTGTCCACGTCGACGTACAGGGCATCGAGCTACGGGACATCCGCGGCCAGATCGAGTGGGTGCCCTGGCCCGAGGTCACGACGATGCAGTCCCTCGACGCATCTGCCGACGATGCGCCTGCCCTGACTAGCTTCGCCGCGCAGTGGGAACGCCTTGGCGAGGAGGTGCGCCGCGAGGCGCTCTTTCGATTGGGCGTCGTCCAGGAGATCGTCACCGGTTTCCGCCGGGGACACGCCGATCTTGCACTTCAGGGTGAGCCGAACAGCACGTTCGACCCGGCTTCGGGGGTCAGTCTCACGGCGCGGTGTGAGCGGATGTCCAAATTGCTGCGGCACGAGTCGTTGGCAGAGCGGGCGGGCGGTCGCGATGTCAGTTCGATCTCTGGTCGCACCCTCCACAAGTGGGTCAATGCAGCTGAGGAGGGCGGCCTCCTCGGGCTGGTGGACCGGCGCCGGTCACGTACGACGGAGGTGTACTCCACTATCCCGCTGGCTTGGCGGCAGGCAGCCCTGGAGGTCGTGGCTGAGTTCGACGGCGACGTGTCCTCCGTCAACCTTCAAGAGGTTCACCGGCGGATCAAGGCGCGTCTGCGCAAGGCGGGCCACAGCATCGCGGCACCGAAGCGCGCCTCGGGACGATTCGTCTCGGAACTGATGAAGACCCGCGGTGCGACGACCCGTGCCCAACGGTCCAACAAGCTCCGCGGCGTCTCAGGGACGCAGTCGTATCCGGCCATGGTTCCCGGCCAGATCGTGGCGATCGACGTCACACGTGCCGACGCGATGGTCTGGTGCCCCGTACGTGGCGGCGCCTGCTCGGTGGAGATCATCTCGGCGATGGACCTCGCCACCCGGATGATCCTGGCACTGCGTGTGGTGCCGATGAGCGCTGACTCCCATGACGCTTCCCTGCTCATGTATGACGTCCTGCGCCCCTTCTCTCAGGTCGTCGAGGGCACCGAAGTCTCGGACTGGGCGTGGGCCGGAGTGCCCGAACGCATCGAGTTCTTCCCCGATGATCCAGACGCCGCCCCGGACTGCTCAGGAGTGGAGGTCACGTGCCCGCGGACGTGCCGATCGCTGCGTATCGCACCAGGCATGCAGGGCGAGCACTCGGTGCCCGGCGTGCGGCCTATGGCGGTGCGCGCCGATCATGGGTCGATCTTCGTCTCCCAGGTCTTCCGGGACCTGCTGGATCGCTTCGGGATCGATCTGCCCCTGTCACGAACGGGCCGCCCCATCGACAACGGGATCCTCGAGCGCTACCACGAGACCCTGCAAAGAGGCCTGCAGCAGCTGCCGGGATACAAGGGCCGCAACGTCTCCCAACGCGGCCGGAAAGTCGGGCTCGGCGGCACCGACGACGCAACGGAGCTCCTTACGGCGCCGGAACTCGAGAAGTTCATGCGCCGCTGGATCGTCCTGGACTACCACCGCACCCCGCACGATGGCCTTCACCTCCCGGGCGCCGAGCGCATCGACCTGCGACCGATCGACATGTTCGACGCTCTGCTGAAGGTCACTGGCCGGCTGCACGTACCCCAGCGCCCCGACCTGCTGTATGACTTCCTGCCGACACGATGGGGCACCGTCGGCCAGTCCGGAGTGGAACTGTCCGGACTGACCTACGACAGTCCCGACCTGGAAGGCCTGCGGTCAGTCCCCAAGGGCACCTTCCGTGCAGAGGACCGGGCCATGCCGTTCCACTACGACCCGCACGACGTCAACCGCGTGTGGTTCCGCCACCCAGACACCGGCCGCATCGTCGAGGTCCCCTGGCGCAAAGCCCACCTGATCGACGCACCCCTGACCGAGACCCTCGTCAAGCATGTACGCACTGCCGTCCAACGACGAGACTCCGGTCCTCGACTGTCCCCGACGTCCGTCGAGGACGAGATCATCACCGAACTCGGCAGCCTGCTCGACACCGTCCCGAAGGACTGGAAGAAGCGCATCTCCGCCGCCACGATGCGCTACGAGTCCGCCCAGCGCGACCACGCCGAAGCAGAGGTCGCACGCACAGTGGCTGAGATCGCCACGCCGCAGCCCGCGCCACCCGAGCCGCTCAAGCAACTGGGCGACTCGTTCTCGATGTGGGCCGAGTCCTGGCCGTACACCCCACCGGCGACGGCGGGGGAGGAGGCATGAMIENRVVVQAGETVLTDDGTALVVHVDVQGIELRDIRGQIEWVPWPEVTTMQSLDASADDAPALTSFAAQWERLGEEVRREALFRLGVVQEIVTGFRRGHADLALQGEPNSTFDPASGVSLTARCERMSKLLRHESLAERAGGRDVSSISGRTLHKWVNAAEEGGLLGLVDRRRSRTTEVYSTIPLAWRQAALEVVAEFDGDVSSVNLQEVHRRIKARLRKAGHSIAAPKRASGRFVSELMKTRGATTRAQRSNKLRGVSGTQSYPAMVPGQIVAIDVTRADAMVWCPVRGGACSVEIISAMDLATRMILALRVVPMSADSHDASLLMYDVLRPFSQVVEGTEVSDWAWAGVPERIEFFPDDPDAAPDCSGVEVTCPRTCRSLRIAPGMQGEHSVPGVRPMAVRADHGSIFVSQVFRDLLDRFGIDLPLSRTGRPIDNGILERYHETLQRGLQQLPGYKGRNVSQRGRKVGLGGTDDATELLTAPELEKFMRRWIVLDYHRTPHDGLHLPGAERIDLRPIDMFDALLKVTGRLHVPQRPDLLYDFLPTRWGTVGQSGVELSGLTYDSPDLEGLRSVPKGTFRAEDRAMPFHYDPHDVNRVWFRHPDTGRIVEVPWRKAHLIDAPLTETLVKHVRTAVQRRDSGPRLSPTSVEDEIITELGSLLDTVPKDWKKRISAATMRYESAQRDHAEAEVARTVAEIATPQPAPPEPLKQLGDSFSMWAESWPYTPPATAGEEANANANANANA
AK018_049481071hypothetical proteinATGAGCGCGCACCTGTGGCATCAGAGCGTCACCGCGCAGCGCGTGCAGCCCCCTGAGGTGCTGTCGGGTGCCCAGGTCGCGGCGATGGCTTCGGCTGACCGCAGCCGCTACCTGCGCGCTCGTCGCCGCTGGCTACGGAGTCTTCAGCACTTCCCGGCCCAGTGCCGGTCGGCGATGGACGATCTTACGGACCTGGTCGAAGCCAACCTGTACGGGCCGCCGGGTGCGAAGGACATCGTCGCGGTCACTGCGCCGTTCGCCGTCGGCAAGTCGACACTTGTCCGCGCCTGGGCTCAGGAGCAGTACCGCCAGATCATCGGTGGGCGCCTCGCGGGTGCACTACCCACGTGGAACAGCTCGCCCGGTGTGGTGGCTGACGAGATCCCGATCGTGTGGATCGACCTCGCCGCGGCATCGAAGATCAAGTCCTTCAACACACAGTTGCTGCGCTTCTACGGCTACCCGGTCTCCGGAGCGATTCACGACCTGACGGCCCGGATCCCCAAGGCTGTGGACGCCCACCGCACCCGCCTGCTGATCATCGACGACACCAACCTGCTCAACCTGCGCCACAAGGACGCCCGCGACGTGCTCGACCACCTCAAGCACGTCAACACGATCCTGGGCCAGCGCGGTGCCTCGATGGTTCTGGTCGGCGCGGAGCTGGAGGACGGCCCGATCTTCCGCGACCCGCAGATCGAGGGCCGCCTCCAGCACATCCGGTTGGATCCCCTGTCGATCGACACTCCCGAGCAGATCACCGCATGGCAGCACTTCTTGCACGAGATCGAGGGGAGAGTCCTGCCCTATCTGCCGGCGGCACGACCGGGACTGCTTGCCGGAACACACGCTCCCCGCATCTGGCGACGAACCCAGGGCTATCTCGGTGACGTCGCTCGCTTGGTGGCTGACGCAGCCCACCTGGCTGCTCTCGACGATTCCTGGACCATCAAGGTCTCCCACCTCGAACAGGTCACGTTGTCCAAGCGCGCGACGCAGGCACAGCCACCGTCGACCAAGGGCGCGACCGCGAAGGTCGCGCCAGCCGTCCGGGCGGGGCACGCAGCATGAMSAHLWHQSVTAQRVQPPEVLSGAQVAAMASADRSRYLRARRRWLRSLQHFPAQCRSAMDDLTDLVEANLYGPPGAKDIVAVTAPFAVGKSTLVRAWAQEQYRQIIGGRLAGALPTWNSSPGVVADEIPIVWIDLAAASKIKSFNTQLLRFYGYPVSGAIHDLTARIPKAVDAHRTRLLIIDDTNLLNLRHKDARDVLDHLKHVNTILGQRGASMVLVGAELEDGPIFRDPQIEGRLQHIRLDPLSIDTPEQITAWQHFLHEIEGRVLPYLPAARPGLLAGTHAPRIWRRTQGYLGDVARLVADAAHLAALDDSWTIKVSHLEQVTLSKRATQAQPPSTKGATAKVAPAVRAGHAANANANANANA
AK018_049491500hypothetical proteinATGAACCGCCTGCCGGTGCGGCCGGAGCCGTGGCCGGGGGAGGACCTCTACTCCCTGATCGAGCGCACTGCCCAGGCGAACGGCATCAGTGCGGCACGAATCGGCCTGACCTGGACGGCGCTTCACCGCCGGATCACCGACCCGGACGCGTTGCAGCAGATCAGCGAGGCTCTGGGTCTTCCTGCGGCGAGGCTGCGTGAACTCACCGTCGATGAGTATCCGCGCGGCCTGGTCGGTCGGGGAACGAAGGGCCACGCCCGGACCTGGCGCGTCATCAAGGTCCGCTGGGTCTGCCCGTCGTGCACGGCGACGACCGGTGTCTTTCGGCGTGACTGGCAGCTGGCGCTGCAGCCGGTGTGTCTGCAGTGCCGCTCCCTGCTGACGACCAGCGACCTTGAGCCGGCTGCGCCTCACCTGCTGACGCCGGACGTGCGGGCGCTGGCGGTACAACGTGAGATCAGCGACGTGCTGGCCCGCCAACTGGGCAGCCCGCACGTCGATCCGCGGTTTCGTCGCCTGTACAAGCTGGTGACGCTGGTCGCGGCCACGATGGACGACACCTGGCCGGTGTTCGCCGGCTGGGAGGCGCAGCTGCACCGTGCGACGGGAGCGCAGCGTCAGGACTGGAGTCGGCGGCCACCCCCGTCACCAGAACTGGTCGCGCCCGTGCTGCTGTCGTGCTGGCGTGCACTGGAGGACACCCAGTACCGCCGGCTGCTGATCCAGGAAGGCTGGCAACGCCTGGCCGAGCACCTCGTCCCGGAAGTACGGGACCTGCGCAAGGGGTGGCGCAAGGTTCTGCCGACCCCGGTCGAGGAGACCGAGGGCATCCCCCTCTGGCGCGCGGAGAACTGGCAGGCCTACCGCGACCTGATCCGCCGGCTCGAGATACTCGCCCGGACCAGCGCCCTGGCGCCTGAGCACGTGCCGGCCTGGCCCGACCTGGAACCAGGCGTCGTGCGGCTCGCGCCCGAAGCGATCCCCACACGTCAGGAACTTGCTGTGTGCCTGCACATGCTCCTGTCAGGGCCGATGCACAACGAGGCCTGCGAGAGACGCTCCCGCGCGGCCCTCGGCCTGCCGGGCACCGGATGGATCACCCGTCGGCTGGCCCACGGCCGCGGCATCCTGCCGCACTACGCACAGGCCATCGCCCGCGCTGCCCGATGCCTCGTGGCCGACGGGCTCGTCGACTATGCCGAGCGGCGCCGCCACCTGACCTCGACACCCGCTCTGCGACGGCGCCTGCGCCTGGGCCTCGACGACACCGACGCCGAGGACGGCGAGGTCGCGGCCGCTTGGGCCTGGATGCACCTGGTCCGCTCACCGGTAGGCGATAGGGCCTTGGCCCGGCGGGCAATCGACCTGGACGGACGGATCGATCCCGCAACACGGCTCGCCCTGGAGCGCGCCGCACTCGCCCACCTGACCGAGGCGGACTCGCCCGGCATCTCGCCCTCGGCAACGGCCGCGGTCCCGGCCACGAGACGTCCCGCATGAMNRLPVRPEPWPGEDLYSLIERTAQANGISAARIGLTWTALHRRITDPDALQQISEALGLPAARLRELTVDEYPRGLVGRGTKGHARTWRVIKVRWVCPSCTATTGVFRRDWQLALQPVCLQCRSLLTTSDLEPAAPHLLTPDVRALAVQREISDVLARQLGSPHVDPRFRRLYKLVTLVAATMDDTWPVFAGWEAQLHRATGAQRQDWSRRPPPSPELVAPVLLSCWRALEDTQYRRLLIQEGWQRLAEHLVPEVRDLRKGWRKVLPTPVEETEGIPLWRAENWQAYRDLIRRLEILARTSALAPEHVPAWPDLEPGVVRLAPEAIPTRQELAVCLHMLLSGPMHNEACERRSRAALGLPGTGWITRRLAHGRGILPHYAQAIARAARCLVADGLVDYAERRRHLTSTPALRRRLRLGLDDTDAEDGEVAAAWAWMHLVRSPVGDRALARRAIDLDGRIDPATRLALERAALAHLTEADSPGISPSATAAVPATRRPANANANANANA
AK018_049501629hypothetical proteinATGAACGACCGCCTGCCCGTGCGCCTGGAGCTAGGGCCCAACGAACCGCTCGACACCTGGCTCGAGCGTCTCGCGGACGCCAACGCGATCAGCACCGGACAACTGACCTCGCTACTGCAGGTCGATGGGGGAGTGACGCGCTATCTGGCGGTCCAGCCCGCACCCCGGACGGTGAGCTCCATCAGTGCGCTGACCGCACAGGCTCCGAGCTCGATACGGGCTGCCACGCTGGCCCGCTACGACGGGCACGGCGCCTTGGACCTGACCGGCCTGGACGTCTGCGACTGGTCGACGTGGAGGCGGGTCGCGGCACGGGGATGGATCCACGCGACCGGGTCTGCCGCCTGCCCCCGATGTCTCGCCGAGGATCAGACCTGGCGGCTGTCCTGGCGACTACCGACCGTCACCGTCTGCAGCCGGCATCGCTGCTACCTGCTCGAGCGGTGCCCGGGGTGCGGGCGCCGCTTCCTCGACCACCCCCACGCGCCCCTGCGCAGCAGCGGCGGAACCGTCTGTGCCAACCCGACCGGCCACCAGAGCGCCTGCACCCTCGACATCGCACACCTGGCGACCACCCCGGCCGCGACCGCGTGCCTGGCCCGGCAGCACCGCCACGACGCCGCGCTTGAGCACCGCCGTGCCATCAACGTGCTCGGAACGCTGTCACCTGCCTACGACTACCTGCGCGACGTCCGCCACCTCGCCGTCCTGCTGCTCCACCTCGCATCCCAACCGGCAGCGCCCGTGATCACACTGTGGGCCGAAGAACTTCGCAACGACCTGGCCGGTGCACGCACTCGCTGGCACCTGTCCGCCCCGCACGACCCCGTCGTGCGGTCCGGCGTGCTGGTCACGGCCGACCACATCCTCACGGCACCCGACCCCGCGACGGCCGCCGACAGGCTCGCCCCCTGGATCCAAGCCCTCCCTCCCGGCAACGAGTCACGCCTCGGATGGCTCGCCGACCACACCACCATGACCCCCACACTCACCCAGCTCATCATGACGGCCCTGGCCCCCCACCAACGCATCAGCCACGCCCTGGCCAACACGGCCCGGCCACTTGCCGCCGCCCACATCCCCCAGGCGATCCCTCCCTGCCTGTACGCCCGCCATGCCCTCGCTGACCTCGGAGAAGGCGGCGAGACGCTGCGACTGTTCCTGTCCCTGTGCCTGGCTCGCCGAGCCGGCGCCACCACCTGGGCAGACGCCGCAGGGATGCTCGGCCTCGAACCCGCGATGGGCACACGGACCGCGCGCACCATCAGCGCCCACCACCGCCTGAGCCCCGGCACGCTGCTCGCCGTCCTCGACGCAATCGGCGCTGAGCTGCGCATCGACTACCGCCGCCGCGAACATGCCGTACGTCGCCTCACCGACCGCCGCGACTGGTACGAGCACTGGTGCCGCCGACACCGGCCCGGAACCCGCCCCACATCGCGGCCCTACGCCGTCAGCTGGCTGTGGTGCCACACCGCCGGCGGCCTGCTCGCCACCAGCCCCGCCTGGCCGAGGCCACCGACGCGCGCCACCCGCGCCCTGTATCGACAGTTCGCCCGCTCCCTGTCCCCGCAGGCCGCACAAGCACTAGCCGACTGCACCCGAGCCCTCGAGCAAGGAGAACCATGAMNDRLPVRLELGPNEPLDTWLERLADANAISTGQLTSLLQVDGGVTRYLAVQPAPRTVSSISALTAQAPSSIRAATLARYDGHGALDLTGLDVCDWSTWRRVAARGWIHATGSAACPRCLAEDQTWRLSWRLPTVTVCSRHRCYLLERCPGCGRRFLDHPHAPLRSSGGTVCANPTGHQSACTLDIAHLATTPAATACLARQHRHDAALEHRRAINVLGTLSPAYDYLRDVRHLAVLLLHLASQPAAPVITLWAEELRNDLAGARTRWHLSAPHDPVVRSGVLVTADHILTAPDPATAADRLAPWIQALPPGNESRLGWLADHTTMTPTLTQLIMTALAPHQRISHALANTARPLAAAHIPQAIPPCLYARHALADLGEGGETLRLFLSLCLARRAGATTWADAAGMLGLEPAMGTRTARTISAHHRLSPGTLLAVLDAIGAELRIDYRRREHAVRRLTDRRDWYEHWCRRHRPGTRPTSRPYAVSWLWCHTAGGLLATSPAWPRPPTRATRALYRQFARSLSPQAAQALADCTRALEQGEPNANANANANA
AK018_04951399hypothetical proteinATGACCCAACCCACTGACAGCGACGACGCCGCAGCTCTTGAGCAGCAACTCCGGGCAGAACGCCGCCAAGGCCACGACTTCGTCGTCGCCGAGGACGGCTACGTGCGCGACGAGGTCGCCCGCAAGGCCGTCCACGTCGTCGCTGACTACCGCCGCGAGCACCGCCGAGGGCCCACCTGGCGCGAGTTCGCCCAGCAGATGGGTTGGACACGTGCACAAGCCGAGGGAGGCATCGCAGCCCTGTGCGAGCACGAGATCCTGCAGACCGGAACCCGACCGCGATCCATGCGCCTGCACCCCCGGCTCCGGCCTACCAAGCACCGACGCCGTCGCTCACGGCGCCCGTCCACCCCCGAACCCCAGCCGTCGCCCGAGACGACCGGCCAGGGCGACCAGTGAMTQPTDSDDAAALEQQLRAERRQGHDFVVAEDGYVRDEVARKAVHVVADYRREHRRGPTWREFAQQMGWTRAQAEGGIAALCEHEILQTGTRPRSMRLHPRLRPTKHRRRRSRRPSTPEPQPSPETTGQGDQNANANANANA
AK018_04952525hypothetical proteinATGACCGAGATCCCGAACTTTCACCTCAGCACCATCGGCGGCATCGCCGGACTGCGGCGATGGATCGACCTGACAGACAAGCACCCGCGCGCCACAGGTCCGCTCCTAGCAGGACACCGGTACGGGCTCCAGAACGTCGAGACCCGCCTGATGGAGATCGCAGCGGCCATCGAGTACTGGGTATCGGCACATCGCCGATCGGCTCAGTGGGCACGCAAGTCGCAAGGTCAGGGAAGGTTCGCCGCCAACCTCGCGGCACGAGTCGGCGCCCCTTTCGGTGATCTCGTCGGTGATCCGATGGCGTGGGCGCGCCGGTTCTGGAAGACCTACACGTTGCTCAAGCATGAGCCCAACAGTGAGTATGACGCCTACGAGGTCTCCCTCCTCGCCGACACCGGCGCAGTGCTCCTACAGAGCGCTCTGCTGAACCGCGTCGCCGGCACGAGTGCGCCTGCAAGAGCGATCTGTGACAGCCACCGCTACTACCACCTCGGCGCTCAGACCCGCGCTCTCCTTGGCGCCTGAMTEIPNFHLSTIGGIAGLRRWIDLTDKHPRATGPLLAGHRYGLQNVETRLMEIAAAIEYWVSAHRRSAQWARKSQGQGRFAANLAARVGAPFGDLVGDPMAWARRFWKTYTLLKHEPNSEYDAYEVSLLADTGAVLLQSALLNRVAGTSAPARAICDSHRYYHLGAQTRALLGANANANANANA
AK018_04953774hypothetical proteinGTGGGAGTGGTGGCTCTGCCTGACAACGAGAAGTACGAGCGCGAGTCCGTGTCGGCGGTCCGAGGCACCAAGAGCGTAGTTGTCTCGCGGATGGCTAAGGAGCGTTGGGAACTCGTCGACGAGGAGGAGGGCCGGCTGAAGGTCACGCTTCACTTCCAGAGACCGAAGAAGCCTGTCAACGTCCTGCTCGTGGGTGGCCTTGCAGCGGCCGCCGTGGTGATCGTCGCGGCCATCGGGATCGGCGCAGCACTGGAAGGCGGTGACAAGGAAACCGCGGCGAGCTCGTCAGCGCCGGCAGAAAGCGAACCAACGTCCGCGTCCGGTGACGAACCATTAGATGAGGAAGCGACCGCGCTTGCGGAGCCGCTAGCTCCCGAGCCTCTCACCGCGGACAACGACGAATCGTTCGCGACGATGCTCGCAGAGCCCGACAACTGTAGTGAATCGATCGCAGCCTGGGTCGAAAAGCACGAGGGGGCCACGATCCAGTTCGACGGCAGCATCGGCGCGATGTCCAACTACGAGGACTACGACACCCGGTACCTGATCATGGTGCTTCCCGGCCACGACGGATCGCAGACCGGCACTGGGCCGTCCTTCCAGTTTCGGGACGTCAGCATCAACGATCTCAACCTCACCGGTGACGCGCCGGACACGATCGGCGTCGACGACAAGGTGGCCGTCACCGCAGAGGTCGTTGGCGAGATCGACCCCAGCCGTGACAACTGGAACTGCCTTGTCTACCTCGACCCAGTCTCGACCGAGGTTCGGTAAMGVVALPDNEKYERESVSAVRGTKSVVVSRMAKERWELVDEEEGRLKVTLHFQRPKKPVNVLLVGGLAAAAVVIVAAIGIGAALEGGDKETAASSSAPAESEPTSASGDEPLDEEATALAEPLAPEPLTADNDESFATMLAEPDNCSESIAAWVEKHEGATIQFDGSIGAMSNYEDYDTRYLIMVLPGHDGSQTGTGPSFQFRDVSINDLNLTGDAPDTIGVDDKVAVTAEVVGEIDPSRDNWNCLVYLDPVSTEVRNANANANANA
AK018_049541707hypothetical proteinGTGATCAGCGACGACGCGCTGTATCCATGGGAGACGTGCGGACGGGAAGCGTTCGAGCGTGCCGTCGAACTGCTGCTCCAGCGCAAGCACCAGGCCGGTCCAGGGAAGGCGCAGGCCGTCGACGGGCGCGGTGGTGACGAAGGCATCGACGTCGATGTCACCGAGCCGGACGGCGCCATCTCCACGATCTACCAGCTCAAGTACTTTCCTGAGGGCTTCTCCGGAGGGTTCCGCGACGTCCGTCGAAGGCAGATCTCGAGCTCATTCAAGGCTGCGATGAAGCACCAACCCGCCTCGTGGGTGCTGGTCGTCCCGAGGAACCCGACGACCAAGGAGCGCACGTGGGTTCGCAAGCTCAAGGGCAAGCAGAAGGTACGCGTCGAAATCCTCGGCCGGGACGGACTCGACCACATGCTGGCCGAGGAGCCGGATATCCATCGTGTGCTCACGAACGGGCCGCTCACCGAGGCACTGCGGATGGCTGGCAACGAGCACCTGGCGCTGAATACGGCTGCCGACCTGGAGAAGGTCGCCCGCGACTTCTCCCAGCGTGTGAACTCTCGCAGCGCCTTCTGGGGCTCGGACATGGTCCTGGGCGCGGATGGGTCAGTGACCCAGCGCCTGGTCGCCAAGCGCCCGGACGCGCACAAAAAGGAGCCGCTGACCGTCGTACCCCAGTTCAAGCCCAATGCTGCTGGTGAGGAAGCCCGGGCCAGGCTGGAAGAGCTGCACAGTTTCGGTGGGACCAGTCTGCGCATCAGCGCCGACGCCCTGGTGTCGGTGACGATGGAAGGCCCGCAGTGGTTCAACCAGAACGTGACCGACGTAGCCGAGATTGGCTTCGGACCGGTCAACATGTCCGCGGAGATTGCCATCGAGCTGCGAGCGGTCACCACCTCGGGTGCCACCCTGCAGAGCCTGGACGGCCGGTCTCGGATGAGCCGCGGAAGCGGTGGGAAGAAGTTGTGGGTCGAGCTTGCTTGTGGTCTGAGCTTTGAGTTCGTGATGCAAAACTCCGTGGAGAAGGTCTCGGCAACGGTCACCTCGAAGCTGGAGGGACACCGCATCACGGACGTAGCAGAGGCATTGAAGTTCATGGACAGGCTCGTCCCGGGCACGGATCTCACCCTTGAAGTGTGGGCCGACGACAAGCGACCGTTCAGGTTCCACATCCCCGACGCGGTGTTCAACGGTCTGAGCCCAGATGGGTACACACGTCAACTGATCGAGGACCTGACGGTGTTGTCCCGTCACTTCTCGGTCCCGCTAAAGCTGCCGAACGCGCTCACCTGGGCGGAGCGTGAAGAGGTCCGTAAGGCCCGCCTGGTGGTCGACGGCAAGGTCATCGCCGAGCGCGACTTCGGGACCCTTGACGTGGTGCTCAGCGGCAAGACCGCGGACTCCATTGAGGACATGATCCAGTCCGAAGCCATGATGGTGGTGGTCGAGACCGAGGTGCACTACCTGGTCCAGGGCCACAGGTTGCCGATCCGGGCCAAGGTTTTTCACCCGCGGGCGCAGTACAACGAGCCGCAAGTGGTGCTCGACGCGCTGCAGTCCGGCACTGCTGAAGGGATGTCCGCACGCATCCAGGGCGTCGACGGCACACCCTTCCGGGTCTTCCTGGACGACCACCCGGACCGCGACCCGGGCCGGCCACTGGCCGTGGAGCCGCTGGGAATCATAGAACCCGCGTCACCAACGTAAMISDDALYPWETCGREAFERAVELLLQRKHQAGPGKAQAVDGRGGDEGIDVDVTEPDGAISTIYQLKYFPEGFSGGFRDVRRRQISSSFKAAMKHQPASWVLVVPRNPTTKERTWVRKLKGKQKVRVEILGRDGLDHMLAEEPDIHRVLTNGPLTEALRMAGNEHLALNTAADLEKVARDFSQRVNSRSAFWGSDMVLGADGSVTQRLVAKRPDAHKKEPLTVVPQFKPNAAGEEARARLEELHSFGGTSLRISADALVSVTMEGPQWFNQNVTDVAEIGFGPVNMSAEIAIELRAVTTSGATLQSLDGRSRMSRGSGGKKLWVELACGLSFEFVMQNSVEKVSATVTSKLEGHRITDVAEALKFMDRLVPGTDLTLEVWADDKRPFRFHIPDAVFNGLSPDGYTRQLIEDLTVLSRHFSVPLKLPNALTWAEREEVRKARLVVDGKVIAERDFGTLDVVLSGKTADSIEDMIQSEAMMVVVETEVHYLVQGHRLPIRAKVFHPRAQYNEPQVVLDALQSGTAEGMSARIQGVDGTPFRVFLDDHPDRDPGRPLAVEPLGIIEPASPTNANANANANA
AK018_04955897hypothetical proteinGTGTCTGGGGAGTTGGTCTTGCCTGAGACGTGGGCTCAGATCATGGTCATCGCTGTCGCGGTGTTGCCTGGGTTCGTCTACCAGGTAAGCCGGCGCCGGGTGCATGGCCCCGACCCGGACGAGATCAGCCTCGGAACTCGCCTGCTGCGCGCCATCATGGCCAGCGGCATGTTCGCCGGCGCCTATGCGATCGCACTAGGGCCATGGATGGTCGACCGGTTCACCCCCGGAGCGGTCATCGACCAGATCCAGGTGCTCGGAGTCGGCTTCCTGGTACTCGTGGTCGCGATTCCATGGCTGATGGCACGGATCGGGGTCTACCTCACGACCAGCAAGTGGTGGGTTGCTGGTACGCAGGCGGTGCAGAGGTTCATCAACGACCGGCTCCAGGTGCGCTCTCAGTGGGATCCCACGCCAAGCGCATGGGACTTCATGTTCCGCGACGCCGGGTACGGCTTCGTTCGGATCCTCAACGCGGATGGGCGCTGGATCGGTGGCTGGTTCGGCAAGGAGTCATTCGCGACGTCGTACCCCGAGCCGAAGGAGTTGTACATCGAGCTCGGCTACGTGGTCGACGATGATGGGACGCTGACTGACGCGATCTCGGCGCCGGGCGGCCTGTACGTACGGTGCGCAGATGCGGTCCTTGTGGACTTCATTCCCGTGGAGGAAGACAATGGGGACAACGACCAGAATCCAGGGAGCGGCGATGACGGGGAACGACCGACGGGCCAAGGTTCGCAGCGCATCCAAGGGGCGCTGGGTGCCGCCGTCCTCGGGTGGGTACTCGGCGCGATCGCGTTCCGGCAAGGTAGTGCAACCGCCCGCCGTGCCGCCCAAGAATCCGCCGAGCGCCACCGCTGCAAGCAGCAGCCGGCAGAAGTGAGCGGCAGGTGAMSGELVLPETWAQIMVIAVAVLPGFVYQVSRRRVHGPDPDEISLGTRLLRAIMASGMFAGAYAIALGPWMVDRFTPGAVIDQIQVLGVGFLVLVVAIPWLMARIGVYLTTSKWWVAGTQAVQRFINDRLQVRSQWDPTPSAWDFMFRDAGYGFVRILNADGRWIGGWFGKESFATSYPEPKELYIELGYVVDDDGTLTDAISAPGGLYVRCADAVLVDFIPVEEDNGDNDQNPGSGDDGERPTGQGSQRIQGALGAAVLGWVLGAIAFRQGSATARRAAQESAERHRCKQQPAEVSGRNANANANANA
AK018_04956621garD_2COG2721Galactarate dehydratase (L-threo-forming)GTGCTCGCCGAGACGCCCGAGGTCTACGGCGCCGAGCACCTGCTCACCGCGCGGGCCACCCGACCCGAGGTCGCCCAGAAGCTCCTCGACCAGCTCGCGTGGTGGCGCGGCTACATGGCCGCCGGGCAGGGGACGCTCGACAACAATCCGTCCCCGGGCAACAAGGCCGGCGGGCTGACCACCATCCTGGAGAAGTCGCTCGGCGCGGTCGCCAAGGGCGGGCAGGCCGACCTGGCCGCGGTGTACGACTACGCCGAGCCGATCACCGACCGCGGGTTCACGTTCATGGACACCCCTGGCTACGACCCCGTCTCGGTGACGGGCATCGTGGCCGGCGGCGCGAACGTCGTCGTGTTCACCACGGGTCGCGGGTCGGTGTTCGGCTGCCGGCCCACGCCGTCGATCAAGGTCGCCACGAACACGCCCATGTACGAGCGCATGCACGAGGACATGGACCTCGACGCCGGGCGCATCGTCGACGGCACGGCGTCGCTGGAAGAGGTCGGCGCCGAGCTGCTCGCCATGATCCTCGCGGTCGCCTCCGGCGAGCAGACCGTCTCCGAGGAGCTCGGCATCGGCGCCGAGGAGTTCATCCCCTGGCACCTGGGCGCCGTGACCTGAMLAETPEVYGAEHLLTARATRPEVAQKLLDQLAWWRGYMAAGQGTLDNNPSPGNKAGGLTTILEKSLGAVAKGGQADLAAVYDYAEPITDRGFTFMDTPGYDPVSVTGIVAGGANVVVFTTGRGSVFGCRPTPSIKVATNTPMYERMHEDMDLDAGRIVDGTASLEEVGAELLAMILAVASGEQTVSEELGIGAEEFIPWHLGAVTPGPT0018305_245DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018305-uxaA-K01685NANA
AK018_049571671mdtD_5Putative multidrug resistance protein MdtDATGAGTAGCCAGGTCAGCACGGCGAAGCAGAAGGGGACGACGGCGGCACTGATCGCCCTGACGGCGGCCAGCTGCTTGCAGGTCGTCGATCCCACCGCCAACTCGATCGCCGTGGTCGACGCGGCGGTCGACCTGGAGATGGACGGAGCGCAGCGGGCGTTCGCGTCCAGCATCGGGACGCTCGCGTTGGCGGCCTTCATCCTGACCACCGGATCCCTCGGTGACCGTCTCGGGCGGCGGCGGGTCATGCTCGCCGGACTGGTCGTCGCGGCCGCCGGCGGTGTCGTCACCGCGCTGGCCCCGATCACCCCGATCTTCATGCTCGGTCGCGCGATCACCGGGATCGGGATCGCCGCCGCCTTCGGTCTCTCCTTCGCGTTGCTGCGATCCGTGCTGCCGAACAACATCCCCAAGGCGGTCGCCTTCTGGCTCGCCGGCCAGACGGCGGCGGCCCTCGTGCTCGGCATCCTGGTCGGCTGGATGGCCGGGTTCAGCTGGCGGGTCGGCTACCTGCTGATGCCCATCGTGGCCGTGATCGCGCTGCTCATGTGTCTTCGCGGGCTGCCCGAGGCCAGGGCCGAGAAGAACGGCCCGTTCGACGTCGTGGGGCTGTCCGCCGTCGCGATCGCGATGATCGGCATCATCTACGGTCTGTCCAACGCGGCCTCCTACGGCTGGACCTCGCCGCAGGTGCTCGTGCCGGTCCTCATCGGTGTGGTCGCGATGGCGGTCTTCATCTGGTGGGAGGCACGCGTCGAGTACCCGGCCTTCCCCGTCAAGCTGTTCCGCGACCCGGAGCTCGCCGGATCGGTCGCCACGGGCTTCTCGTTCAACATGTGGCAGGCTGTGGTCACGATCATGCTGTCGATGCTGTGGCAGTACGTCTACCTGTACGAGTCGCTGACGGTGTCCCTGGCGCTGATGCCCATGAGCCTGGCGATGGTGGTCGGTGCGACCGTCGCCGGCCGTCTGCTCGCCAAGGGGGTGCCGGCGTCGGCCAACCTCCTGGTCGGGCACGCGGTGCTCATCGGCACGCTCGTCTTCTTCGGATTCACCACGACCAGCTCGCCGTACTGGTTCTTCCTGGTCCTCATGCTCGCCGGTGGATTCGCCCGCATGCTCAACGAGACCACGATGGGTCAGTTCTTCGTCGGCAAGCCGCCGGCGTCCCTGACCGGTGCGATGGCGTCGTCCAAGACGGCGATCGGTCAGCTCAGCTTCGCTCTCGGGACGGCGCTGTCGACCACCTTCGTGTTCGGCCAGTACGGCCGAGGCATCGCCCAGGCGTTCCAGGACGCGAACGTCCAGCCGGAGCAGCAGGGCGTCTACACCGGCATGATCACCCAGTACATCTCCGGCGGGGACATGTCGGAGTACGACTCGGGCGAGGTGGACGCCGTCGTCGGGGAGGCGTCCGGCATCTTCACCGACGCGTTCGGCGGGACGATGTGGATCTTCGCGGGCATCCTGACGGTGTTCGCGATCATCTCGACGTTGTTCTTCCTCACGGCGAACCGGATGCGCAAGGCGGGCACCTACGCCAGCGGCCCGCTGACCGCCGACGGCCGACCGCAGGCACTCGTCGGCGGAACCGGCGGGGACGACATCGGTCCCGCCGGGCCGTCGGACGGCCCGGATACGGCACCGGGCCCGCCGACCGCAGGCTCCTGAMSSQVSTAKQKGTTAALIALTAASCLQVVDPTANSIAVVDAAVDLEMDGAQRAFASSIGTLALAAFILTTGSLGDRLGRRRVMLAGLVVAAAGGVVTALAPITPIFMLGRAITGIGIAAAFGLSFALLRSVLPNNIPKAVAFWLAGQTAAALVLGILVGWMAGFSWRVGYLLMPIVAVIALLMCLRGLPEARAEKNGPFDVVGLSAVAIAMIGIIYGLSNAASYGWTSPQVLVPVLIGVVAMAVFIWWEARVEYPAFPVKLFRDPELAGSVATGFSFNMWQAVVTIMLSMLWQYVYLYESLTVSLALMPMSLAMVVGATVAGRLLAKGVPASANLLVGHAVLIGTLVFFGFTTTSSPYWFFLVLMLAGGFARMLNETTMGQFFVGKPPASLTGAMASSKTAIGQLSFALGTALSTTFVFGQYGRGIAQAFQDANVQPEQQGVYTGMITQYISGGDMSEYDSGEVDAVVGEASGIFTDAFGGTMWIFAGILTVFAIISTLFFLTANRMRKAGTYASGPLTADGRPQALVGGTGGDDIGPAGPSDGPDTAPGPPTAGSNANANANANA
AK018_049581623nfdA_7N-substituted formamide deformylaseATGAGTGCACCCGACCTCGTTCTCGTCGGCGGGACCGTCCTGACCGTCGACGACACCGACTCGACCGCCGAGGCCGTCGCCGTCACCGGCGGCGTCATCACCGCCGTCGGCACGACCGCCGAGATCCGCGAGCTGGCCGGCCCCGACACCGACGTCGTCGAGCTCGACGGCCGCACCGTGGTGCCGGGGTTCGTCGACCCGCACAGCCACGTGTCCATGGGTGCGCCGTACATCCGGCACGCGGCGCTGCAGACCCCGCCCGTGGGTACCGTCCGGACCGTCGACGACCTGCTCACCGCGCTGCACGCCAACCTCGCACAGAACGGCACGCCCGCCGGCGGGCTGCTGATCGGCTGGGGCTACTACCCCGACGAGATGGACGACGGCGGTGCCCTGACCGCAGACATCCTGGACCGCGAGTTCCCCGACCACCAGGTCGCCGTGGTCCATGTCTCCGGGCACGGCGGCGTCGCCAACACCCGCATCCTCGAGGCGCACGGCTACGTCGACGGCTGCCAGGACCCGGAGGGCGGCACGATCGTGCGCTATCCGGGCACTGAGAAGCCGAACGGCGTGCTGTGGGAGAACGCGTGGATGCCGCTCGTGTTCGGCATGTTGGACACCGACGACGACGCGCTGCTGACGATGATGCGCGAGTACGCCCGCTGGGGTGTGACGACCGTGCAGGACGGTGCTGCCACGATCGAGCAGATCGAGGCGATCCGCAGGCTCGCCGACGGGGCGGGCATCCCCGTCGACATCCGCTCCCTCGTGCTCTTCAGCGAGCTCGGCGAGGCGATCGATCAGGGCTGGTTCGGTGCGGACCGGGTGAGCTCGAACGGGCACACCGTCCAGGGCGTCAAGCTCATCCTGGACGGGTCCCCGCAGGGCAAGACGGCGAACGTCACCGAGGAGTACCTGACGGGCGGCCCGGGTGGCGAGCAGCACTGGCACGGCACCACCAACATCCCCCGGCCCGACTCCGACGCGATCGTGACGACGGCGTACCGGCACGGCATCCAGGTCTTCGCGCACTGCAACGGCGACGCGGCGATCGACCAGCTCCTCGCCTCGCACCGGGCGGCGGTCTCCGCCGGGGCGACGCCGCCCGGACGGACGGTGCCGATCCACTCGCAGGTGATGCGCCTCGACCAGCTCGACGAGTACGTGGCCGAAGGTTTCGAACCGTCGATGTTCACGATCCACTGCCTGATCTTCGGCGACACCCACATCCGCAACTTCGGCCGGGAGCGGGCCTTCGGGATCTCGCCCATGCGTTCGGCGATCGACCGGGGGTTGCGCCCGACGAACCACTCGGACTACCCGATCACGCCGATCAACCCTCTGCAGCTGCTGTGGACGTCGGTGGTGCGTCGTTCGACCGGGGGCACGGTGCTGGGTGAGGGCGAGCGCATCACCCCGGCCGAGGGCCTGCGCAGCCTGACGATCGACGCCGCCTACGAGCACCGTTGCGAGGACGACCGCGGCTCGATCGAGCCAGGCAAGCTGGCCGACCTCGTCGTGCTGGACGCGAACCCGCTCGCGGTCGAGCCGGACGCGATCCGTGACGTCGCGGTGCTGCGGACGTTCAAGCGCGGTGTGACCGTGTACGAGGCTCCGTGAMSAPDLVLVGGTVLTVDDTDSTAEAVAVTGGVITAVGTTAEIRELAGPDTDVVELDGRTVVPGFVDPHSHVSMGAPYIRHAALQTPPVGTVRTVDDLLTALHANLAQNGTPAGGLLIGWGYYPDEMDDGGALTADILDREFPDHQVAVVHVSGHGGVANTRILEAHGYVDGCQDPEGGTIVRYPGTEKPNGVLWENAWMPLVFGMLDTDDDALLTMMREYARWGVTTVQDGAATIEQIEAIRRLADGAGIPVDIRSLVLFSELGEAIDQGWFGADRVSSNGHTVQGVKLILDGSPQGKTANVTEEYLTGGPGGEQHWHGTTNIPRPDSDAIVTTAYRHGIQVFAHCNGDAAIDQLLASHRAAVSAGATPPGRTVPIHSQVMRLDQLDEYVAEGFEPSMFTIHCLIFGDTHIRNFGRERAFGISPMRSAIDRGLRPTNHSDYPITPINPLQLLWTSVVRRSTGGTVLGEGERITPAEGLRSLTIDAAYEHRCEDDRGSIEPGKLADLVVLDANPLAVEPDAIRDVAVLRTFKRGVTVYEAPNANANANANA
AK018_049591467mdtD_6Putative multidrug resistance protein MdtDATGGCGATCCTCGCCCTGACGGTCGCCGGCGTCGCGCAGGCCGCGGACGTCTCGCTGCACAACACGGCGCTGGCATCCGCGGCGGCCGAGTTCGGGATGTCCGCCACGCAGCGGTCGGTGGCGGCCTCGGTGGGGACGCTGGCGCTGGCGGCCTCGATCCTGACGATCGGCACGATCGGGGACAGGTACGGGCGGCGTCTGACGCTGATGTGGTGCGCCGTCGCGCTGGTGGTCGGGGGGGTCGTGACCGCCGTCGCGCCGGGCTACGGGGTGTACCTGGCCGGACGGGTCGTCACCGGCGTCGGGCTCGCCGGGACGTTGGCGCTGTCGATCGCACTCATCCGGACGGTCGCGCCGGACCGCGTGCCGTGGGCGATGTCGATGTACTTCGCCGGGCAGGTCGGCTTCACGCTGCCGCTGACGATCCTGGGCGGCTGGCTGATCGGCGTCGACTGGCGCCTCGGCTATCTGGTGGTCCCGGTGATCGGTGCGGTCGCGTTCGTCATGAACAAGGTCTACGTGCCGCGGTCCCGGGCGGTGCACCGCGCCAAGTCGGACCCGGTCGGGTTGATCCTCGTCGCCGTCGCCCTGGTGGGGATCATCTGGGGTGTCAGCGACGCCGCGCACGGCTGGTTGTCCGTCCGGGTGCTGGTGCCCGTCCTGGTGGGCCTCGTCGCGCTGGCGGCCTTCCTGTGGTGGGAGACGCATCACGACGAGCCGGCGTTGCCGGTCAAGCTGTTCTCGAACCGTTCCCTGGCAGGTGCGCTGACCGCGGACGTGTCGTTCAACATGTGGCAGGCCGTCATGGTGCTGCAGCTGGCGCTGATGTGGCAGTACCTGTACGGCTACAGCCCGCTGGACGTCACGGTGGGTCAGCTCCCGGCGACGCTGGCGATGATCCTCGGGGCGTTCGCCGCGGGTCGACTCGCGGCGCGTGGGCGCCGACCGCAGGAGCTCATACTGATCGGTCTGGCCGGGGTGGCGATCGCGATGTACCTGTTCGCCGTCGCGGGGGCGTCAACGCCGTACTGGGTGTTCGGCGTCGCGCTCGTGATCGGGGGCTTCTCGCGCATGCTGACCGAGACCGCGGCGGGGGAGTTCTTCGTCCAGGTGCCGCCGCCGGACCTCGTGGGCGCGACGGTGGCGAGCAAGCCCGCCATCGGGCAGGCGTCGTTCGCCCTCGGTTCGGCGCTGAGCTCGACGTTGCTGTACAGCGGGATCGGGCGCGACCTGCCCGAGCGCCTGGCCGGGTCGGGGCTGACGCCGACGCAGCAGAGCCAGGTCGTCGGCTGGTTCCACGACGGCGCTGTGCCGCAGTGGGCACGGGACAACGATCTGTTCGACCAGGTCACGGCGGCCTCGCAGGACGCCTACGTCGACGCCTATCGCACGACGATGCTGGTCTTCGCGGTGTTGTTCACCCTGCTGTGGGCGATCGCCTGGCGCTTCCTGCGTCGTCGGCACTGAMAILALTVAGVAQAADVSLHNTALASAAAEFGMSATQRSVAASVGTLALAASILTIGTIGDRYGRRLTLMWCAVALVVGGVVTAVAPGYGVYLAGRVVTGVGLAGTLALSIALIRTVAPDRVPWAMSMYFAGQVGFTLPLTILGGWLIGVDWRLGYLVVPVIGAVAFVMNKVYVPRSRAVHRAKSDPVGLILVAVALVGIIWGVSDAAHGWLSVRVLVPVLVGLVALAAFLWWETHHDEPALPVKLFSNRSLAGALTADVSFNMWQAVMVLQLALMWQYLYGYSPLDVTVGQLPATLAMILGAFAAGRLAARGRRPQELILIGLAGVAIAMYLFAVAGASTPYWVFGVALVIGGFSRMLTETAAGEFFVQVPPPDLVGATVASKPAIGQASFALGSALSSTLLYSGIGRDLPERLAGSGLTPTQQSQVVGWFHDGAVPQWARDNDLFDQVTAASQDAYVDAYRTTMLVFAVLFTLLWAIAWRFLRRRHNANANANANA
AK018_04960492slyA_2Transcriptional regulator SlyAATGAGCACCGGGACGACGGCGGACACGGCCACCGGGCACACCCCGCTCGGCTGGCCGCTCGCCGCGCTGCTGCGCGAGTGGAGCGACGGGGTCACCGTCGCCTGCGCCGACGTCCCGCACGGCGCCCGCGGGTACGAGGTGCTCGCCGCCGTCGTCCACGACGCCCCGCCGACCCAGGCCGCGTTGGCCGCCCGGCTCGGCATCGACCGCACCGTCATGACCTACCTGCTCGACGAGCTCGTCGGGTGCGGCCTCGTCGAGCGGCAGCAGGACCCCGCGGACCGACGCGCCCGACGCATCGTGGCGACCGAGCACGGACGCGCCGTGCTGGCCGACCTCGACGCCCGCGTGCGCGCCGCCGAGGACGCCCTGCTCGCCGACCTCAGCGCCGTCGAGCGGGACCACCTGCGGGCTCTGCTCGCACGGGCCGCGTCCGCCGCGGCGCCGGGCGACGACCGGTGCGCCGTCGTCGCCCGCGTCGTCGGCCCCTGAMSTGTTADTATGHTPLGWPLAALLREWSDGVTVACADVPHGARGYEVLAAVVHDAPPTQAALAARLGIDRTVMTYLLDELVGCGLVERQQDPADRRARRIVATEHGRAVLADLDARVRAAEDALLADLSAVERDHLRALLARAASAAAPGDDRCAVVARVVGPPGPT0016255_135DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0016255-sylA-K06075NANA
AK018_049612268fgd_11F420-dependent glucose-6-phosphate dehydrogenaseATGACGGACTACGGCCACGACCTGGTCTTCGGTACGTTCCTCACCCCGTCCAACCGCGACCCGCAGGCGCCCGTGCGCCTGGCACGGACGGCCGAGTCCGCCGGGCTGGACCTGGTGACCTTCCAGGACCACCCCTACCAGCCCGGGTTCCTCGACACCTGGACGCTGATCTCCTACGCGGCCGCCGTCACCGAGCGCGTGCACCTCGCCGGCAACGTGCTCAACCTGCCGCTGCGCCGGCCGGCGGTGCTCGCCCGCTCCGTGGCCAGCCTGGACCTGCTCAGCGGCGGTCGCATCGACCTCGGCCTCGGCGCGGGCGGGTTCTGGGACGCGATCGAGTCGATGGGCGGCGAGCGGCTCACCCCCGGGGAGTCCGTCGACGCGCTGTCCGAGGCGATCGAGATCATCCGCGGCGTCTGGGACGCCGGCGAGCGACGTCCGCTGCGCACCGCCGGGGAGCACCACCGGGTCTCCGGTGCCAAGCGCGGTCCCGCCCCCGCCCACGACGTGCCGATCTGGCTGGGCGCGTACAAGCCCCGCATGCTGCGGCTCGTGGCGCGGCAGGCCGACGGGTGGCTGCCGTCGCTGGGGTACATGAAGGACGGCGACCTGGCCCGCGGCAACGCGATCATTGACGCCACGGCCGAGGAGGCCGGGCGGCACCCGGCCGAGATCCGGCGCCTGCTGAACGTCCAGGGCGCGGTCACGGCCGACCGGCAGGGCTTCCTGCAGGGTCCGGTGGACCAGTGGGTCGAGGAGCTCGCGGGGCTGGCCCTGCACGACGGCGTCGGCACGTTCATCACGGCCACCGACGACCCCCAGATGCTCGCCGTCCTCGGCGGCGAGATCGCCCCGGCCGTGCGCGAGCTGGTGGCCCGCGAACGGGCCTCGGCCGGCACCCCCGCGGCGGCCACCCGGCGCGGCCGCTCCGCGATCGAGCTGCGGCGCGAGGGCATCGACTACGACGCGGTGCCCGCCGCGCTGGCCGAGCGCGCCGTCGAGCCCGGCGACCGCGCCTACGACACCGTGCGCCACAACTACCTGCGCTCCGGCGCCCCCGGCCTGGTGCTGCGGCCGCGCACCACCGCGGAGGTGGCCGACGCCGTCGCCTGGGCGCGGTCGCAGGACGTCCCGCTGGGCATCCGCTCGGGCGGGCACGGCATCAGCGGCCGGTCCACGAACGACGGCGGCATCGTCGTCGACCTCGGCGCGCTGGACCGGATCGAGGTGGTGGACGAGGCGACGCGCCGGGTGCGGCTCGGCGCCGGTGCCACCTGGGGGCAGGTCGCCGAGTCGCTCGCGCCGCGCGGCTGGGCGATCAGCTCGGGCGACTACGGCGGTGTCGGCGTCGGCGGGCTCGCCACCGCGGGCGGGGTCGGGTTCCTCGGACGGACCTACGGCCTGACCATCGACCACGTCGTCGCGGCGGAGGTCGTCACGGCCGACGGCCGGGTCGCCCACGCCTCCGCCGAGGAGAACCCGGACCTGTTCTGGGGCCTGCGCGGCGCCGGCGGCAACCTCGGGGTCGTCACCTGGGTGGAGATCGAGGCGATGGCGCTGGAGAACGTCGTCTTCTCCCAGATGGCGCTCGACGCGACCGACACCGCCGGCCTGCTGGAACGCTGGGGTGCCGCGGTGGAGTCCGCGCCGCGCGAGCTGACCAGCTTCCTCATCCTGTCCCCGGCGCGTGCGGGCCAGGGACCTGTCGCCCAGCTCATGACCGTCTACGCCGGCCACGACACCGACGCCGCTGTCGAGCAGCTCGAACGGCTCGCCGACGCCGGACCGCTGCTCGGGCACCAGGCCTACCTCATGCCGTACTCCGGCGTCGTCCAGGCGGGGGACAAGCACCACTCCGGCGGGGGAGACCCGGCCGTGCGGTCGGGGCTGGTGACCCACCTGGACACGGCGACGAGTCGCGCCTTCGAGCGCCTCGCGCACTCGGGCGACGCCTACTTCCTGCAGATCCGGGCCACCGGCGGGGCCGCCCACGACGTGCCCGAGGACGCGACCGCGTACGCGCACCGGCGGCAGAACTTCCTGCTGTCGGCGATGTCGTCGTCCCAGGAGCGGATCGACCGCGCCTGGGACGCCGAGATGGCGCCGTACACCGAGGGGCTCTACCTCTCCTTCGACACGGACACCCGGCCCGAGCGGCTGGCCGAGGCGTTCCCGGAGCCGACGCTGTCGAGGCTGCGCGAGGTCAAGGCCGAGTGGGACCCGGACAACCTGTTCCGGGCGAACTTCCCGGTCCGCCCGGCCCTCTGAMTDYGHDLVFGTFLTPSNRDPQAPVRLARTAESAGLDLVTFQDHPYQPGFLDTWTLISYAAAVTERVHLAGNVLNLPLRRPAVLARSVASLDLLSGGRIDLGLGAGGFWDAIESMGGERLTPGESVDALSEAIEIIRGVWDAGERRPLRTAGEHHRVSGAKRGPAPAHDVPIWLGAYKPRMLRLVARQADGWLPSLGYMKDGDLARGNAIIDATAEEAGRHPAEIRRLLNVQGAVTADRQGFLQGPVDQWVEELAGLALHDGVGTFITATDDPQMLAVLGGEIAPAVRELVARERASAGTPAAATRRGRSAIELRREGIDYDAVPAALAERAVEPGDRAYDTVRHNYLRSGAPGLVLRPRTTAEVADAVAWARSQDVPLGIRSGGHGISGRSTNDGGIVVDLGALDRIEVVDEATRRVRLGAGATWGQVAESLAPRGWAISSGDYGGVGVGGLATAGGVGFLGRTYGLTIDHVVAAEVVTADGRVAHASAEENPDLFWGLRGAGGNLGVVTWVEIEAMALENVVFSQMALDATDTAGLLERWGAAVESAPRELTSFLILSPARAGQGPVAQLMTVYAGHDTDAAVEQLERLADAGPLLGHQAYLMPYSGVVQAGDKHHSGGGDPAVRSGLVTHLDTATSRAFERLAHSGDAYFLQIRATGGAAHDVPEDATAYAHRRQNFLLSAMSSSQERIDRAWDAEMAPYTEGLYLSFDTDTRPERLAEAFPEPTLSRLREVKAEWDPDNLFRANFPVRPALNANANANANA
AK018_04962279hypothetical proteinATGCAGGACGACGGTACGCGGCACGGTGCGCCACGGTCCTGCGAGTGGGCCCTCGCGCTGGGGATCGCGGCGCTGGCCTGCGCGGTCGTGCCGGTCGTCGGGGACTGGGTGTCGGCACCGCTCGGCGTGGCCGCGCTCGGACTCGGTTCGTTCGGCAGCCACGTCGCCGACCGGGACGGCCTGCCCGGCATGTGGCACGGGCTCGTCGGGGCGATGCTGGGGCTGGCCGCGCTCGCGGCCGTGCTGTTCTCCGTCGTGGTCGGCGCCCTCGGTCCCTGAMQDDGTRHGAPRSCEWALALGIAALACAVVPVVGDWVSAPLGVAALGLGSFGSHVADRDGLPGMWHGLVGAMLGLAALAAVLFSVVVGALGPNANANANANA
AK018_04963804hypothetical proteinATGTTGTCCATCGGAGCGTTCGCGCAGATCGGCCAGGTGACCCACCGCATGTTGCGGCACTGGGACGCCACCGGGCTGCTCGTGCCCGCCCACGTGGACGAGACCACCGGGTACCGGTCCTACGACCCGTCCCAGCTCGCCCGGCTGCACCGGATCGTGGCGCTGCGCGAGCTCGGGTTCGGGATCGACGACGTCGCGGCGGCCCTCGCCGACGGCGTCGCGGACGAGCGGCTCACCGAGCTGCTCGAGACCCGGCGGGAGGCGGTCGAGCGCGAGCACGCGCTGGCCTCCGCCCGGCTCGCGGACGTGGAACGGCGGCTCCGGCTCATCGGCGAGGAGAAGACCATGTCCACCATCGAGATCGTCGTCAAGCCCCTGCCCGCGCTGCGTCTGGCCGCGCGTCGGGCCCACGTGACCGAGCAGCCCGAGATCGGCGCCGTCGTCGGGCCGCTGTTCGACGCGGTCGCCGAGGCGTTGCAGCCGAACCGCGGCCTGCTCGAGACCCCGGTCGCGCAGTACGCGATCGGGGAGGACGGGATCGACGTCGTCGTCGGGTACGCCTACGACGGCGAGCCGCGCGACGGGTTCGAGATCGTCACCCTGCCGGCGGTCGACCGGGCGGCCTGCGCTGTCCACCTCGGTCCGATGGAACGCATCCCGGCCAGCTGGCAGTCGCTGCACGGCGAGGCGGCGGCGCGCGGACTCGCACCGGACGCGCCGTGCCGCGAGCTGTACGTCCGGGCCGAGAGCCCCGACCAGGCCGACTGGGTGACCGAGCTGCAGCAGCCGGTCGCGCCGGTCTGAMLSIGAFAQIGQVTHRMLRHWDATGLLVPAHVDETTGYRSYDPSQLARLHRIVALRELGFGIDDVAAALADGVADERLTELLETRREAVEREHALASARLADVERRLRLIGEEKTMSTIEIVVKPLPALRLAARRAHVTEQPEIGAVVGPLFDAVAEALQPNRGLLETPVAQYAIGEDGIDVVVGYAYDGEPRDGFEIVTLPAVDRAACAVHLGPMERIPASWQSLHGEAAARGLAPDAPCRELYVRAESPDQADWVTELQQPVAPVPGPT0003907_48DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003907-bmrR-NANANA
AK018_049641062gpr_3COG0667L-glyceraldehyde 3-phosphate reductaseATGCCCCTCGCACCGCGATATCTCGCCGCCGAGACCCGCTACGAGTCCATGACCTACCGCCGCACCGGCCGCTCGGGGCTCGACCTGCCCGCGTTGTCGCTGGGCCTGTGGCACAACTTCGGCGACGTCAACCCGTTCGAGACGCAGCGCGCCATCCTGCGCCGCGCGTTCGACCTCGGGGTGACGCACTTCGACCTGGCGAACAACTACGGCCCGCCCTACGGCTCGGCCGAGGAGAGCTTCGGGCGGCACCTCGCCGCCGACCTCGCGCCCTACCGGGACGAGCTGGTGATCTCGACCAAGGCCGGGTACGACATGTGGCCCGGCCCGTACGGCGACCACGGGTCGCGCAAGTACCTGCTCGCCTCGCTCGACCAGTCGCTGACCCGGATGGGCCTGGACTACGTCGACATCTTCTACCACCACCGTCCCGACCCCTCCACGCCGCTCGAGGAGACCATGGGCGCGCTCGCCTCGGCGGTGCAGCAGGGCAAGGCGCTGTACGTCGGGGTGTCCAACTACTCCCCGGCGCGCACCCGCGAGGCCGCGCGCATCCTGGCGGACCTGGGCACGCCGCTGCTCATCCACCAGCCGAGCTACTCGATGTTCAACCGGCATGTCGAGGACGCCCACCGCGAGGACCCCTACGACGGTCGCCAGAGCGAGTCGCTGCTCGACGCCGTGGAGGACCTGGGCGTGGGCACCGTCGTGTTCTCCCCGCTGCAGCAGGGCCTGCTGACCGGGCGGTACCTGTCCGGCTCCGCCCCGGCGGGCTCTCGCGCGGCGCGCTCCGACTCGCCGTTCCTGTCGGACGACGCGCTGAGCGAGACGTACCTGACCCGGGCGCGGGCCCTGCACGAGATCGCGGCCGGGCGCGGCCAGAGCCTTGCCCAGCTCGCCCTGTCGTGGGTGCTGCGCGACCCGCGCATCACCTCCGCGCTGATCGGTGCCTCGTCGGTGGAACAGCTCGAGGACAACCTCGGGGCGCTCGACGCGGGGCCGCTCACCGAGGAGGAGATCGCCGCCGTCGAGCCGTACGCCGTCGACGGCACCGGCCGCTGAMPLAPRYLAAETRYESMTYRRTGRSGLDLPALSLGLWHNFGDVNPFETQRAILRRAFDLGVTHFDLANNYGPPYGSAEESFGRHLAADLAPYRDELVISTKAGYDMWPGPYGDHGSRKYLLASLDQSLTRMGLDYVDIFYHHRPDPSTPLEETMGALASAVQQGKALYVGVSNYSPARTREAARILADLGTPLLIHQPSYSMFNRHVEDAHREDPYDGRQSESLLDAVEDLGVGTVVFSPLQQGLLTGRYLSGSAPAGSRAARSDSPFLSDDALSETYLTRARALHEIAAGRGQSLAQLALSWVLRDPRITSALIGASSVEQLEDNLGALDAGPLTEEEIAAVEPYAVDGTGRPGPT0008285_127DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-HYDROXYACETONE_VOLATILE_BIOSYNTHESIS,PGPT0008285-yghZ-K19265NANA
AK018_04965882yihV_2Sulfofructose kinaseATGCGCACCTGCTGGTTCGTCGGGCTGACGACCCTCGACGTCGTGCACCGCGCCGCCGGGCGACCGGGACGCGACGAGAAGATCACCGCCTCGCGCCAGGATGTCGCCGCGGGCGGCCCGGCCGCCAACGCCGCCGTCACCGCCGCCGCCCTCGGGGCCCGGGCCGTGCTGGTCACGGCCCTCGGCGCCAGCCCCGTCGCGCGGGCCGCCCGCGCCGACCTGGAGGCCTGCGGCGTCGAGGTGCACGACGTCGTGGCCCCCGGGGAGGACTTCCCGCTCGCGGTCTCGGCGGTGCTGGTCGACGACGCGACCGGCGAGCGGTCGGTCGTCTCGGCCGACGCGGCGCTCGCGGAGGCGCCGGCACCGACCTTCCTGAGCGACCTGCCCGCGCCCGACGCCGTCCTGTTCGACGGACACCACCCGGTGATCGCGCGAGCCGTCGTCGGGCACCTCGCCCGGCCGGAACCGCGTCCGCAGGTGGTGCTCGACGCCGGGCGCTGGCGGCCGCTGTTCGGCGAGCTGCTGCCCGTCGCGGACGTCGCGGCGGTCTCCGCCCGGTTCACGGTGCCCGGGTACGACGACGTCACCACCGGAGCGCACGCCCTGGGCGCGCGCGGTGTGGTGGTCACCCACGGCGGCGGGCCGGTCGAGTGGTCCACCGGCGTCGAGGCCGGGACCGTCGCCGTGCCGCCGGTCGACGCCCGCGACACCCTCGGTGCCGGTGACGCCTTCCACGGCGCTCTCACCGCGGCGCTCGCCGGTGGCGCGGCGCTCCCTGCGGCCTGCGAGCGGGCGGCCCGTGTCGCCAGCGCGCGGGTCGCGCACGTCGGCCCTCGCTCCTGGCTCGCGCGACTCACGGAGGAGGCCGAGCACCAGCCGTAGMRTCWFVGLTTLDVVHRAAGRPGRDEKITASRQDVAAGGPAANAAVTAAALGARAVLVTALGASPVARAARADLEACGVEVHDVVAPGEDFPLAVSAVLVDDATGERSVVSADAALAEAPAPTFLSDLPAPDAVLFDGHHPVIARAVVGHLARPEPRPQVVLDAGRWRPLFGELLPVADVAAVSARFTVPGYDDVTTGAHALGARGVVVTHGGGPVEWSTGVEAGTVAVPPVDARDTLGAGDAFHGALTAALAGGAALPAACERAARVASARVAHVGPRSWLARLTEEAEHQPPGPT0017405_4733DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
AK018_04966288hypothetical proteinATGTCGTTCCAGGCGTACCTCGACGCGGTCGAGGTCAAGACCGGCCGCACCCCTCGCGAGCTCATCGCCGAGGCGTCCGCGAAGGGCTTCGGCCCGGACACCGAGGCCGCACCCATCCTCGCGTGGCTGAAGGACGGCTACGGCCTGGGCCGTGGCCACGGGATGGCGATGGTGCACGTCATCACCCGGGGCCCGCAGATCAGTGACAAGCACGTCGGGTCGAGCGGGACGCACCGCGACGAGTCGGCCGAGCTGTGGCTGGACGGGGCGGCGACCAAACCGTCGTGAMSFQAYLDAVEVKTGRTPRELIAEASAKGFGPDTEAAPILAWLKDGYGLGRGHGMAMVHVITRGPQISDKHVGSSGTHRDESAELWLDGAATKPSNANANANANA
AK018_04967651hypothetical proteinATGCGATCGACGACGGCAACCCGGACGGACCTGGCGCAACGAGCGCGGGCGCTCGCCGTCGTCGGGCGGCGGCGCATCCTCGGGATCACGGGGGCGCCGGGTGCGGGGAAGTCCGTGCTCGCCGCGTCCCTGGTCGAGGCGCTCGGACCCAGGCTCGCCGTCTGCGTCGGCATGGACGGGTTCCACCTGTCGAACGACGTCCTGGCCGCGCACGGGACCCGAGCGCGCAAGGGCGCCATCGACACGTTCGACGACGGCGGGTACGCCGCGCTCGTCGCGCGCCTCGCGGACGCCCGCCCCGGCGAGACGCCGATCTATGCTCCCGTGTTCCGGCGCGAGATCGAGGAGTCCGTCGCGGCCGGCGTCGAGGTGCCGGCCGAGGTGCCGCTCGTCGTCACCGAGGGGAACTACCTGCTCGCGCCGTCGGGAGCCTGGCCGCGCGCCCGGGCGCGCATGGCCGAGGTCTGGTTCCTCGAGGTGCCGGACGACGTCCGCCGCGCCCGCCTCGAGGCAGGGCACCGCGCGTACGGCAAGAGCGCCGAGGACGCGCGGGTCTGGGCGAACGGCTCCGACCAGGTCAACGCGGAGCTCGTCGAGGCGACGCGCGGCGCGGCCGACCTGGTGGTGGAGCTCGATACCGCGGCACCATAGMRSTTATRTDLAQRARALAVVGRRRILGITGAPGAGKSVLAASLVEALGPRLAVCVGMDGFHLSNDVLAAHGTRARKGAIDTFDDGGYAALVARLADARPGETPIYAPVFRREIEESVAAGVEVPAEVPLVVTEGNYLLAPSGAWPRARARMAEVWFLEVPDDVRRARLEAGHRAYGKSAEDARVWANGSDQVNAELVEATRGAADLVVELDTAAPNANANANANA
AK018_04968177vapC9_2COG4113Ribonuclease VapC9GTGGCGCTCTGGCCGTACGCCGCACTCCAGGACCGCATCTGGGAGCTCGCCGGATCCCTCACGGCCTATGACGCCTCGTACATCGCGCTGGCCGAGACGCTCGACTCCCCGCTGCTCACCTCGGACGCCCGGCTGTCCCGGTCGAACGACGCCCGCTGCCGCATCGAGGTGCTCTGAMALWPYAALQDRIWELAGSLTAYDASYIALAETLDSPLLTSDARLSRSNDARCRIEVLNANANANANA
AK018_04969474asnC_2COG1522Regulatory protein AsnCGTGCACAGCATCGACGCCGTGGACCTGGACCTGCTGCGGGCGCTCGCCGACGACCCCCGCGCGACCACGGTCGCCCTCGCCCAGACCCTGGGGATCTCCCGCAACACCGTGGCCGCCCGGCTGGCGCGACTGGAGGACGCAGGCGCGTTCCTCTCCTTCGACCGTCGCATCGACCCCGCGGTGCTGGGCCACCCGCTGCTGGCCTTCATCGAGATCACCGTCCACCAGCGCGACCTGGCCCGGATCGTCGAGCACCTGGCCCGGATCCCCGAGGTCGTGCAGGCCTACGGGCACAGCGGCACCGCCGACCTGAGGGTGCACGTCGTCTGCCGGGACACCGACCACCTGTTCCGCATCGACGCGGCGATCCTGCGTGTCGAAGGGGTGGAGCGGACCGAGACCTCCCTGGCCATGGGCGAGCTCATCCCCTACCGGGTGCAACCCCTGGTCGAGAAGATCCGTCACGAGCGGTGAMHSIDAVDLDLLRALADDPRATTVALAQTLGISRNTVAARLARLEDAGAFLSFDRRIDPAVLGHPLLAFIEITVHQRDLARIVEHLARIPEVVQAYGHSGTADLRVHVVCRDTDHLFRIDAAILRVEGVERTETSLAMGELIPYRVQPLVEKIRHERNANANANANA
AK018_049701308bkdA_4COG10713-methyl-2-oxobutanoate dehydrogenase subunit alphaATGCCCAGCACCACGGATCCGAGGACGCACCACGACCTGTCACGAGCGGGAGAATCGGTGTCCTCGGCGGACAGTGCCCACCGCGGCGCACGTGACCACGTGCCGGCCGGGTGGGTGCAGCACGAGAACGGCCGGTCCGACGACGTCCCGGCCGACGGCGGGACGCGGCCGGAGGGCAGCACGCGGCCCGACGGCGGGAGCGCCGCCGAGCCCGTGCGGCTCCTGGACCCGGACGGCACCCGGCACGGCGACCCCGACCTGGACCGCTGGCTCGAGGACGTGGACGACGCCGCGCTGCTGCGGCTCTACACCGACATGGTGGTCGCGCGCCGGATCGACACCGAGGCGACCGCCCTGCAGCGGCAGGGCCAGCTCGGCCTGTGGCCGCCGCTGCTCGGCCAGGAGGCCGCGCAGATCGGGTCGGCCCGCGCCCTGCGGCACGACGACTTCGTGTTCTCCAGCTACCGCGAGCACGGCGTGGCGCACGTGCGCGGCGTCGCGCCCACCGACCTGCTGCGCGTGTGGCGCGGTGTCTCCGGTTCCGGGTGGGACCCGTACGAGCACCGCATCGCCCCGATGCAGGTCATCATCGGTGCCCAGACCCTGCACGCCGTCGGCTACGCCGTCGGGATGCTCATCGAGAACGCGACGGCCGGTGGAGGACCGACCGCGGCCACGATCTCCTACTTCGGCGACGGCGCGACGAGCCAGGGCGACGTCCACGAGGCGATGACCTTCGCTGCCACGTGGGCCGCCCCGACCGTGTTCTTCTGCCAGAACAACCAGTGGGCGATCTCCGAACCGGTGGCCCTGCAGTCCAAGGTGCCGCTGGTCGAGCGCGCCCGCGGCTACGGGATGCCCGGCGTGCGCGTCGACGGCAACGACGTGCTCGCCTGCCTGGCGGTCACGCGCGAGGCCCTGCACCGGGCCCGCACCGGCGGCGGACCGACCCTCGTCGAGGCCGTCACCTGCCGGATGGGCCCGCACACCACGGCCGACGACCCCACGCGGTACCGGACCCCCGACGACCTGGAGGTGTGGGCCGAGCGGGACCCGATCGACCGGCTGGCCGCCCACCTGAGCGAGCGCGGTGTGCTGGACGACGACGCCCGGGCCGCGGCGCAGCAGGCCGCGGACGATCTCGCCGCCGAGCTGCGCGCCGGCATCACCGAGATCCCCGACCCGTCGTGGACCACGGTCTTCGACCACGTCTACGCCGAGCCGCACCCGCCGCTGGACGCCGAGCGGGACGCCTACGGGCGCTACCTGGCCGGCTTCGCCGACGCCCCCGAGGAGGCCGCCCGATGAMPSTTDPRTHHDLSRAGESVSSADSAHRGARDHVPAGWVQHENGRSDDVPADGGTRPEGSTRPDGGSAAEPVRLLDPDGTRHGDPDLDRWLEDVDDAALLRLYTDMVVARRIDTEATALQRQGQLGLWPPLLGQEAAQIGSARALRHDDFVFSSYREHGVAHVRGVAPTDLLRVWRGVSGSGWDPYEHRIAPMQVIIGAQTLHAVGYAVGMLIENATAGGGPTAATISYFGDGATSQGDVHEAMTFAATWAAPTVFFCQNNQWAISEPVALQSKVPLVERARGYGMPGVRVDGNDVLACLAVTREALHRARTGGGPTLVEAVTCRMGPHTTADDPTRYRTPDDLEVWAERDPIDRLAAHLSERGVLDDDARAAAQQAADDLAAELRAGITEIPDPSWTTVFDHVYAEPHPPLDAERDAYGRYLAGFADAPEEAARPGPT0008861_333DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166NANA
AK018_049711038bkdB_4COG00223-methyl-2-oxobutanoate dehydrogenase subunit betaATGACGGACATGACCCTGGGCCAGGGCCTCAACACCGGCCTGCGGCAGGCCCTCGGCGACGACGAGAAGGTCGTCCTCCTCGGCGAGGACATCGGCACTCTCGGCGGCGTGTTCCGCGTGACCGACGCGCTCCAGCGCGAGTTCGGCCCGCACCGCGTGATCGACACCCCGCTGGCCGAGTCCGGCATCCTCGGCACCGCCGTCGGGATGGCCTGGCGCGGGTTCCGGCCGGTGGTGGAGATCCAGTTCGACGGGTTCGTCCAGCCGGCCTGGGACCAGATCGTCAACCAGGTCGCCAAGATGCACGCCCGCACCGGCGGGGCCGTGCGGATGCCGATCACCGTGCGTATCCCCGTGGCCGGGGGCATCGGCGCCGCCGAGCACCACTCGGAGTCGCCGGAGGCGTACTTCGTGCACACCGCCGGGCTGCGCGTGGTGTCGGTGTCGAACCCGCAGGACGCCTGCACGGTGCTGCGCCAGGCGATCGCCGGCGACGACCCGGTCGTCTTCTTCGAGCCGAAGCGGCTCTACCACGTCAAGGGTCCGGTGGAGGTGGAGGACCTGGCCGCCGTCCGTCCGATGGGCGCGGCCCGCGTGGTCCGCCCGGGCGAGGACGTCACCGTCGTCACCTGGGGCTCGCACGTGTCGACGTCCCTGGACGCGGCCGAGGCGATGGCCGACGACGGCGCCTCGGTCGAGGTCGTCGACCTGCGCTCGCTGTCCCCCTGGGACTCCGACGCCGTGGTGGCCTCGGTGCGCCGCACCGGCCGGCTCGTCGTCGTGCACGAGGGCCCCCGCCAGGGCGGCGTCGGCGCCGAGATCTGCGCGGCGGTCACCGAGCGGTGCTTCGCCGAGCTGGCGATGCCACCGGTCCGGGTGACCGGCCACGACGTGCCCTACCCGCCGGCGAAGGTCGAGGGGCACTACGTGCCCGACCTGGACCGGGTGTGCTTCGGCATCGACCAGGCGCTCGGCCGGGTGCCGCTGGAGACCTTCACGCCCGCCCCGACCACGTCGACCGGAGAGGTGGCCGCATGAMTDMTLGQGLNTGLRQALGDDEKVVLLGEDIGTLGGVFRVTDALQREFGPHRVIDTPLAESGILGTAVGMAWRGFRPVVEIQFDGFVQPAWDQIVNQVAKMHARTGGAVRMPITVRIPVAGGIGAAEHHSESPEAYFVHTAGLRVVSVSNPQDACTVLRQAIAGDDPVVFFEPKRLYHVKGPVEVEDLAAVRPMGAARVVRPGEDVTVVTWGSHVSTSLDAAEAMADDGASVEVVDLRSLSPWDSDAVVASVRRTGRLVVVHEGPRQGGVGAEICAAVTERCFAELAMPPVRVTGHDVPYPPAKVEGHYVPDLDRVCFGIDQALGRVPLETFTPAPTTSTGEVAAPGPT0008862_46DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167NANA
AK018_049721272pdhC_4Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complexATGAGCGCCCAGGAGATCTTCCGCCTGCCGGACCTCGGCGAGGGGCTCACGGAGTCCGAGATCGTCGAGTGGAAGGTGTCCGTGGGCGACACGGTCACCCTCAACCAGGCGATCGCCGAGGTCGAGACGGCCAAGGCGATGGTCGAGATCCCGTCGCCGTTCGCCGGGACCGTGGCCGCGCTGCACGCCGAGGAGGGCGACGTCGTCGAGGTCGGCGAGCCGCTGGTCACCTTCGGTACCGGCGACGGCGGCGACGCGGGTGACGACGCCCCCGCGAGCGCCGGGGCCGAGAACGTCGCGTCCGCCCCCGAGCCGGCGCCCGCGGCGTCGGCGTCGGCGAACGGGACGTCGGGGGAGTCCTCCGGGGCGAACCTCGTCGGCTACGGCACCCGCGCCGCCCGCAAGGGCAGACCGACGCGACGGCCGCGCACGCCCGTCGAGGCCCCGGCCGCCACCTCGACCACCGCGCGAACGGCCGAGCACCGCGTGAAGGTGCGCAGCGTGCGCAAGCACACCGCGGCCGCGATGGTCGCCAGCGCGCGGGTCCCGCAGGCCACGGTCCACCTCACCTGCGACGTGACCGAGACGCTCGCCCTGGTGGCCCGCCTGCGCGAGCACCCGCGCACCCGGCACACCAAGGTCGGGCTGCTCACGGTCGTCGCCCGCGCGGTCTGCGGGCTGGCCCCGCAGCACCCGGCGCTCGTCACCCGCTGGGAGGAGCACGACGACGGCGCGGCCGAGCTCGTCCGCTCGCCGCACGTCAACCTGGGCATCGCGGTCGCGACCGACCGGGGCCTGGTGGTGCCGCACGTCCCGCGGGCCGACGAGCTGTCGCTGGTGGGGATGGCGCGCGCCCTGCGCGAGCTGACCACGACCGCCCGGTCCGCGCGCACCCGTCCGGACCGCCTCACCGGCGGCACCCTGACGCTGACCAACGTGGGGGTCTTCGGCGTCGACGCGGGCAGCCCGCTGCTCAACCCGGGCGAGTCGGCGATCCTCGGCATCGGGCAGATCGCCCGCCGGCCGTGGGAGCACGACGGCGAGATCGCGCTGCGCGACGTGGTGACGTTCAGCCTGACCTTCGACCACCGGGTCGTGGACGGCGAGCAGGGCGCCCGATTCCTCGCGGACCTCGGCGGACTGCTCACCGACCCGGCGCTGGCGGTGCTGCTCGGTGGCCGCGACGAGCCCGAGCACGACGACGCCGGGTCCGGCCAGAGCGCCGCGGGGCGCAACGGCACGGCCGCACCGCGCGCGGCGGTGACCGCATGAMSAQEIFRLPDLGEGLTESEIVEWKVSVGDTVTLNQAIAEVETAKAMVEIPSPFAGTVAALHAEEGDVVEVGEPLVTFGTGDGGDAGDDAPASAGAENVASAPEPAPAASASANGTSGESSGANLVGYGTRAARKGRPTRRPRTPVEAPAATSTTARTAEHRVKVRSVRKHTAAAMVASARVPQATVHLTCDVTETLALVARLREHPRTRHTKVGLLTVVARAVCGLAPQHPALVTRWEEHDDGAAELVRSPHVNLGIAVATDRGLVVPHVPRADELSLVGMARALRELTTTARSARTRPDRLTGGTLTLTNVGVFGVDAGSPLLNPGESAILGIGQIARRPWEHDGEIALRDVVTFSLTFDHRVVDGEQGARFLADLGGLLTDPALAVLLGGRDEPEHDDAGSGQSAAGRNGTAAPRAAVTANANANANANA
AK018_049731623COG4799Methylmalonyl-CoA carboxyltransferase 12S subunitATGACCGTGCTGACCTCCGCCGTCGACCCGGCCACCGAGGAGGTCCGGGCCAACGCCGACGCGCAGCGGGCGCTCGCGGCCACCCTGCGCGAGCGCACCGCCGTCGCCGCGCGCGGCGGTCCCGAGCACGCGCGGGCCAAGCACGTCGGGCGCGGCAAGCTGCTGCCGCGCGAACGGGTCGAGCGGCTGCTGGACCCGGGCAGCGCGTTCCTGGAGATCTCCCCGCTGGCGGCGTACGGCGTGGACGACGCCGCGGGCGGCCGTGGCGAGTGGCCCGGCGCCGGCGTGGTCGCCGGCATCGGCCGGGTCGCCGGGCGGCAGGTGATGGTCGTGGCCAACGACCCCACGGTCAAGGGCGGCACCTATCACCCGCTGACCGTGAAGAAGCACCTGCGTGCCCAGGAGATCGCGCTGGATAACCGGCTGCCGTGCGTCTACCTCGTCGACTCCGGCGGGGCGTTCCTGCCCCGCCAGGACGAGGTCTTCCCCGACCGCGACCACTTCGGGCGGATCTTCTACCACCAGGCCCGGCTGTCCGCGGCGGGGATCCCGCAGCTGTCCGCCGTGCTCGGGTCGTGCACCGCCGGGGGCGCCTACGTCCCGGCGATGAGCGACGAGACCGTCATCGTGCGCGGCCAGGGAACCATCTTCCTCGGCGGCCCGCCGCTGGTGAAGGCGGCCATCGGCGCCGACGTCACCGCCGAGGAGCTCGGCGGCGGCGAGCTGCACGCCCGCCGCTCCGGCGTCGTCGACCACCTCGCCGAGGACGACGAGGACGCGCTGGACCGGGTGCGACGCATCGTCGCGACGCTGCCGCCGGACCCGGACCCCGTGTGGGCCGTGCACCCCGCCGAGGAACCCGCCGCGGACCCGGCCGGGCTCTACGACGTCGTGCCCGTGGACGTCCAGCAGCCGTACGACCCGCGCGAGGTGATCGCCCGGATCGTCGACGGCAGCCGCCTGGACGAGTTCAAGGCCGAGTACGGCACCACGCTGGTGTGCGGGTTCGCGCGCATCCACGGGCACCCGGTCGGGATCCTGGCCAACCACGGGGTGCTGCTCGGCGAGTCCGCGCTCAAGGGCGCCCACTTCGTCGAGCTGTGCGACCAGCGCGGCGTGCCGCTGCTGTTCCTGCAGAACATCTCCGGGTTCATGGTCGGCCCGGACGCCGAGGCCGGCGGCATCGCCAAGGACGGCGCCAAGATGGTCACCGCCGTGGCCACCACCCGGGTGCCGAAGCTGACCGTCGTCGTCGGCGGGTCCTTCGGCGCCGGCAACTACGCGATGTGCGGACGCGCCTACTCGCCCCGGTTCCTGTGGACCTGGCCGAACGCCCGCGTGTCCGTCATGGGCGGCGAGCAGGCCTCGGCCGTGCTCGCCACCGTCAAGCGCGACCAGCTCGCCGCCCGTGGCGAGGAGTGGGACGCCGACGAGGAGGCCACGTTCCGGCGCGGCATCCGCGACACCTACGAGGCCGCCGGCGAGGCGTACCACGCCACCTCGCGCCTGTGGGACGACGGCATCCTCGACCCGCCCGACACCCGCCGGGTGCTCGGCATGGCGCTCGCGGTCTGCGCGCGCACCCCGCTGCCCGAGCCCGCCTTCGGGCTCTTCCGGATGTGAMTVLTSAVDPATEEVRANADAQRALAATLRERTAVAARGGPEHARAKHVGRGKLLPRERVERLLDPGSAFLEISPLAAYGVDDAAGGRGEWPGAGVVAGIGRVAGRQVMVVANDPTVKGGTYHPLTVKKHLRAQEIALDNRLPCVYLVDSGGAFLPRQDEVFPDRDHFGRIFYHQARLSAAGIPQLSAVLGSCTAGGAYVPAMSDETVIVRGQGTIFLGGPPLVKAAIGADVTAEELGGGELHARRSGVVDHLAEDDEDALDRVRRIVATLPPDPDPVWAVHPAEEPAADPAGLYDVVPVDVQQPYDPREVIARIVDGSRLDEFKAEYGTTLVCGFARIHGHPVGILANHGVLLGESALKGAHFVELCDQRGVPLLFLQNISGFMVGPDAEAGGIAKDGAKMVTAVATTRVPKLTVVVGGSFGAGNYAMCGRAYSPRFLWTWPNARVSVMGGEQASAVLATVKRDQLAARGEEWDADEEATFRRGIRDTYEAAGEAYHATSRLWDDGILDPPDTRRVLGMALAVCARTPLPEPAFGLFRMPGPT0008345_131DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008345-accD-K01970NANA
AK018_049742070accA1_2COG4770Acetyl-/propionyl-coenzyme A carboxylase alpha chainATGTTCTCCACCGTCCTGGTCGCCAACCGCGGCGAGATCGCCTGCCGCGTCATGACCACCCTGCGCCGCCTCGGCATCCGCTCCGTGGCCGTGCACACCGGCGCCGACGCCGGCGCGCGCCACGTGCGCGAGGCCGACGTCGCCGTGTCGCTCGGCGAGGGACCCGCCGGCTACCTGGACCCGGACGCCGTCGTGGCGGCCGCCGTCGCGTCCGGCGCCGAGGCGATCCATCCCGGGTACGGCTTCCTGTCGGAGAACCCGGCGCTGGCCCGGGCCTGCGAAACCGCCGGGATCGTGTTCGTCGGTCCGCCCGTCGCGGCGATCGAGACGATGGCCGACAAGGTCGCCGCCAAGCGCCTCGTCGCCCAGCACGAGGTCCCGGTGCTGCCCGGGACGCTGGACGCCTCGCTGCCCGACGACGACCTCGTCGCCGCGGCCGACGACGTCGGCTTCCCGCTGCTGGTCAAGCCCGTCGCGGGCGGGGGCGGCAAGGGCATGGTCGTCGTGCGGTCCGCGGGCGAGCTCCCGGACGCGCTGGCCTCGGCCCGTCGCGTGGCGACCTCCGCGTTCGGCGACGACGGCCTGCTGCTGGAGCGGCTCGTGGACACCCCGCGGCACGTCGAGGTGCAGGTGCTCGCCGACTCCGCGGGGACCGTCGTCCACCTCGGCGAGCGCGAGTGCACCCTGCAGCGCCGCCACCAGAAGATCGTCGAGGAGGCCCCCTCCCCGGCGCTGGACGACGGCGCCCGCGACCGGATGGGGCGGGCCGCCTGCGAGGTCGCCCGCTCGGTCGGGTACGTCGGCGTCGGCACCGTGGAGTTCCTCGTGCCGGCCGGAGCACCCGAGGAGTTCTCGTTCATCGAGATGAACACCCGCCTGCAGGTCGAGCACCCGGTCACCGAGATGGTCACCGGCCACGACCTGGTCGAGGCCCAGCTCCGGGTCGCCGCGGGGGAGAAGCTGTGGTTCGCCCAGGACGAGGTGCACCTGACCGGGCACGCGATCGAGGCGCGGATCTACGCCGAGTCCCCGGCGCGGGACTTCCTGCCCTCGGTCGGGGACGTCCTCGTCCTCGACGACGCCGGGGTGGGGGCCGGGCCGTCCGCGGCGCCGCTGCGGCTGGACGCCGGCGTCGCCGCGGGGGACGCCGTCTCCGGCCACTTCGACCCGATGATCGCCAAGGCGGTCGCGCACGGGGCCGACCGCGACGAGGCCCTGGCCCGTCTGGACGGGCTGCTGTCCCGCCTGGCCGTGCTCGGTGTGGAGACCAACACCGGGTTCCTGCGCGACCTGCTGGCCGACGCCGACGTGCGGGCCGGCCGCCTGGACACGGGGCTGGTGGACCGGCTCACCGCGCGTCCGGCCGGGACCGACGACGTGGGCGGGACCGTCGGAGCAGGTGGGGCGGGCCAGGTGGCCGCGGCGCTGCTCGCCGGTCTGCCGTCACCGTCCGACGGCGGCGTGCCCGACCCGTGGGCCGCCGACGGCTGGCGCCTCAACGCCGGGGCCGCACCGCGCCGGATCGGCCTGCGCGGCCCGGACGGCACGGTGGCCGACCTCGAGCTCACCGGTGCGCGGGACGGCGCCACCCTCGTGCCCGACGGCGGTGACCCCGTCGACGCCGCGCTCCGGCCCGCCGGCGGTCCGGCGCACCGGTGGCTGCTCACCACGGCCGGGCGGACCCGACCGGTCTCGGCGCTGCGTGTCACCGCCGGTGACACCGACACCGTGTGGGTGGCCGTCGAGGGCCGCACCTCCGCGTGGACGGTGCTCGACCGTGCCGCCCGGGCGAGCCTGCGCCGCGCCGAGCGGGTCGCCGGCACGGCACCGGACGGCAGTACCGCCGTCGGCCCGCTCGAGCTCCGGGCGACGATGCCCGGCACGGTCACCGCCACCCACCCCGCGGGACCCGTCGACGCCGGCGCCGCCGTCGTCGTCGTCGAAGCCATGAAGATGGAACACCCCCTCACCGCACCGGCCGCAGGGACCCTGCGCGTCCTGGTGCGCCCCGGCGACCAGGTCCGCCTCGACCAGGTGGTCGCCGTCGTCGAACGCGAAGGAGCGTCATGAMFSTVLVANRGEIACRVMTTLRRLGIRSVAVHTGADAGARHVREADVAVSLGEGPAGYLDPDAVVAAAVASGAEAIHPGYGFLSENPALARACETAGIVFVGPPVAAIETMADKVAAKRLVAQHEVPVLPGTLDASLPDDDLVAAADDVGFPLLVKPVAGGGGKGMVVVRSAGELPDALASARRVATSAFGDDGLLLERLVDTPRHVEVQVLADSAGTVVHLGERECTLQRRHQKIVEEAPSPALDDGARDRMGRAACEVARSVGYVGVGTVEFLVPAGAPEEFSFIEMNTRLQVEHPVTEMVTGHDLVEAQLRVAAGEKLWFAQDEVHLTGHAIEARIYAESPARDFLPSVGDVLVLDDAGVGAGPSAAPLRLDAGVAAGDAVSGHFDPMIAKAVAHGADRDEALARLDGLLSRLAVLGVETNTGFLRDLLADADVRAGRLDTGLVDRLTARPAGTDDVGGTVGAGGAGQVAAALLAGLPSPSDGGVPDPWAADGWRLNAGAAPRRIGLRGPDGTVADLELTGARDGATLVPDGGDPVDAALRPAGGPAHRWLLTTAGRTRPVSALRVTAGDTDTVWVAVEGRTSAWTVLDRAARASLRRAERVAGTAPDGSTAVGPLELRATMPGTVTATHPAGPVDAGAAVVVVEAMKMEHPLTAPAAGTLRVLVRPGDQVRLDQVVAVVEREGASPGPT0019850_31DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TERPENE_UTILIZATIONvCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019850-atuC|atuF-K13777NANA
AK018_049751170acdACOG1960Acyl-CoA dehydrogenaseATGATCGCCGATACCTCGTCCACCGCCCTGACCGACCGTCAGCGCAAGCTCAGCCAGACCGTCCGCGAGTTCGCCGACGAGGTCGTCGCGCCGGCGGCGTACCAGTACGACACCGAGCGGCGCCTGCCGATCGAGATCATCCACCAGATGGGCGAGCTCGGGCTGTTCGGGCTGCCGTTCCCCACCGAGGTCGGCGGGCAGGGCGAGGACTACGTCTCGCTGTGCCTGGCCGTCGAGGCGCTCGCCCGCGTCGACCAGTCCATCGCCGTCACGCTCGAGGCCGGCGTGGGGCTCGGCATCATGCCGATCTACCGGCACGGCACCGACGCCCAGCGCGAGCAGTGGCTGCCCGACCTCGTCACCGGCAAGGCCCTGGGCGCCTTCGGTCTCACCGAGGCCGGGGCCGGGTCCGACGCCGGAGCCACCCGCACCACCGCCCGCCTCGACGGCGACGAGTGGGTCATCGACGGGACCAAGCAGTTCATCACCAACTCCGGGACCCCGATCACCAGCGTCGTGACCATCACCGCCGTCACCGACCGGCGCGACGACGGGACGCCCGAGCTGTCCACCATCCTCGTCCCGTCCGGCACCCCGGGCCTGACGGTCGGGGAGAGCTACGACAAGGTCGGCTGGCACACCTCGGACACCCACCCCCTGACCCTCGAGGACGTGCGGGTGCCGAAGGACAACCTGCTCGGCGAGCGTGGTCGCGGGTACGCGAACTTCCTGCGGGCGCTCGACGAGGGCCGCATCGCCTTCGCGGCGCTGGCCACCGGTGCCGCCCAGGGCTGCCTCGAGGAGGCCGTGCGGTACGCGACGGAGCGCGAGGTGTTCGGCCACGCCATCGGGCAGAACCAGCACATCGCGTTCACCATCGCGCGCATGCAGGCCCGCGTGCACGCCGCCCGGCTGTGCTGGCTCGACGCCGCCCAGAAGCTCATCCACGGCAAGCCCTTCAAGGCCGAGGCGTCCGTCGCCAAGCTGACCTCCGGCGAGGCGGCGATGGCCAACGCCCGCGACGCCTCGCAGATCTTCGGCGGCTACGGGTTCCTCAACTCCAACCCCGTGGCCCGGCACTACCGCGACGCCAAGGTGCTCGAGGTCGGCGAGGGCACCACCGAGGTGCAGCTCATGATCATCGCCCGCGACCTCGGCCTGGCCTCCTGAMIADTSSTALTDRQRKLSQTVREFADEVVAPAAYQYDTERRLPIEIIHQMGELGLFGLPFPTEVGGQGEDYVSLCLAVEALARVDQSIAVTLEAGVGLGIMPIYRHGTDAQREQWLPDLVTGKALGAFGLTEAGAGSDAGATRTTARLDGDEWVIDGTKQFITNSGTPITSVVTITAVTDRRDDGTPELSTILVPSGTPGLTVGESYDKVGWHTSDTHPLTLEDVRVPKDNLLGERGRGYANFLRALDEGRIAFAALATGAAQGCLEEAVRYATEREVFGHAIGQNQHIAFTIARMQARVHAARLCWLDAAQKLIHGKPFKAEASVAKLTSGEAAMANARDASQIFGGYGFLNSNPVARHYRDAKVLEVGEGTTEVQLMIIARDLGLASPGPT0002285_547DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248NANA
AK018_04976498mch_2COG2030Beta-methylmalyl-CoA dehydrataseATGCGTGAGGAGACCCAGCGGGGCTACTACTACGACGAGCTGGAGCCGGACGTGCGCTACGTGCACCGGCCCGGGCGCACGATGACCGAGGCCGACGACGTGCTGTTCACCTCGGTGACGATGAACCCGCAGGCCCTGCACCTCGACGCGGCGTGGGCGGCGACCCAGCCGTTCGGGCGGCCCCTGGTCAACTCGATGCTCACCCTCGCCACGCTCGTCGGGCTGTCGGTGGCGCACCTGACCCGGGGCACCATCGTGGCCAACCTCGGGTTCACCGACGTCCGGTTCCCGGCCCCGATGTTCCACGGGGACACCCTGTACGGCGAGACCGTCGTGACGGGTCGGCGCCTCTCGGCGTCGCGCCCGGGCCAGGGCATCGTCACCCTGGAGCACACCGGACGGAACCAGGACGGGGACGTGGTCGCGACCGCGACCCGGTCGGTGCTGATGTGGACCCGCGCCGCCCACGAGGCCGACGCCGCCGGGGAGACCCCATGAMREETQRGYYYDELEPDVRYVHRPGRTMTEADDVLFTSVTMNPQALHLDAAWAATQPFGRPLVNSMLTLATLVGLSVAHLTRGTIVANLGFTDVRFPAPMFHGDTLYGETVVTGRRLSASRPGQGIVTLEHTGRNQDGDVVATATRSVLMWTRAAHEADAAGETPNANANANANA
AK018_04977870citE_2COG2301Citrate lyase subunit beta-like proteinATGAGCCCGCGACCGTTCACCCTCGGCCCGGCGCTGCTGTTCTGCCCCGCCGACCGTGCCGACCGGTACACCAAGGCCGCCGAGCGGGCCGACGCCGTCATCCTCGACCTGGAGGACGGCGTCGACCCGGCGGCCCGCGCCGACGCGCGCCGGGCCGTGCGCGAGCACCCCCTCGACCCGGCACGCACGATCGTGCGAGTCAACCCCGTCGGGACCGCGGACCACCAGCGCGACCTCGACGCGCTGGCCGACACCCCCTACCGGGTGCTCATGCTGCCCAAGGCGGACGGCCGGTACGTCGGACCCCTGCTGCGGCCCGACGGCGGCCCGTACGCGATCGTCGCGCTGTGCGAGACGGCGTCCGGCGTGCTGGCGGCCCCGGCGCTCGCCGCGCGGCCGGACGTGGTGGCCCTGGCCTGGGGTGCCGAGGACCTCGTGGCCTCGCTCGGCGGGACCTCGAGCCGACGGGCTGACGGCGGCTACCGGGACGTGGCCCGGCACGCCCGGTCGGCGGTGCTGCTGGCCGCCGGGGCGGCGGGCAAGGTCGCGATCGACGCCGTGCACCTCGACCTGGAGGACCTCGACGGGGTACGGGCGGAGGCCGAGGACGCGGTCGCCGTCGGCTTCGCGGCGACGCTGTGCGTGCACCCCTCGCACGCTGCCGCGGTGCGGTCGGCGTACGCGCCGTCGCCGGACCAGGTCGCCCGGGCCCGGGCCGTGCTCGCGGCGGCGGGCGGCTCGTCGGCCGGGGCGCCGCCGTCGGGCAGCGGTGCGGTTCGCGTGGACGGCCAGATGGTCGACGCCCCGCTGCTGCGGCACGCCGAGACGGTCCTCGCCCGGGCCGAGGGGGCCGTGAGCGGCGGGCGTTAGMSPRPFTLGPALLFCPADRADRYTKAAERADAVILDLEDGVDPAARADARRAVREHPLDPARTIVRVNPVGTADHQRDLDALADTPYRVLMLPKADGRYVGPLLRPDGGPYAIVALCETASGVLAAPALAARPDVVALAWGAEDLVASLGGTSSRRADGGYRDVARHARSAVLLAAGAAGKVAIDAVHLDLEDLDGVRAEAEDAVAVGFAATLCVHPSHAAAVRSAYAPSPDQVARARAVLAAAGGSSAGAPPSGSGAVRVDGQMVDAPLLRHAETVLARAEGAVSGGRPGPT0019480_2157DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0019480-citE-K01644NANA
AK018_04978600tdk_6COG1435Thymidine kinaseGTGGAGCTGTCGCTGGTGCTCGGCCCGATGAAGTCCGGCAAGTCGCTCGACCTCATCGCGCAGATGGCGCCGCTGGCGTACTCGCGGCTCAGCTGCGCGGTGGTGCAGTCGTCGCGCCACGTGCGCGACGACAAGATCGTCTCGCGCACGGGCGCGTCGGTGCCGACGATCAAGCTGGAGACCCTCGAGCCGCTGCTGCACACGACCGAGGACGTCGTCGCCATCGACGAGGTGCACATGTTCACCCCGGCCGACGTGCGCGTCGTCGAGGAGCTCGTGCTGCGCGGCACCCGGGTGCTGGCCTGCGGCATCGACCTGGACCACCGCGGCGAGCTGTTCGCCACGATCCGGGCACTGCTCGAGCTCGGGCCGACGGACGTGCGCTACCGGCGGGCGGTGTGCGACCGCTGCCAGGACCTGCACGCCGCGTTCACCCAGGTGCTGCGCGACGGCGTGCCGTTCCTCGAGCCGCTCGGGGCCTCGGAGCCGCTGCCCGACGACGGCACCTTCACCTACGAGGCGCTGTGCCGACGCTGCTTCGTGCTGCCGGAGACGGCGATCGTCACCGGCTCCACCGTGCCGCGCCCGGCCCGTCCGTGAMELSLVLGPMKSGKSLDLIAQMAPLAYSRLSCAVVQSSRHVRDDKIVSRTGASVPTIKLETLEPLLHTTEDVVAIDEVHMFTPADVRVVEELVLRGTRVLACGIDLDHRGELFATIRALLELGPTDVRYRRAVCDRCQDLHAAFTQVLRDGVPFLEPLGASEPLPDDGTFTYEALCRRCFVLPETAIVTGSTVPRPARPPGPT0021390_1527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857NANA
AK018_04979720hypothetical proteinGTGACGACGACGCGCGACGACCGCTCCCACCGGATCCTCGTCCTGGCCGGCCGCGGCCGCTACGAGGACCCCTGGCACGACCACGCCGCGACCAGCCACCGGCTCGCCGAGGCGCTGAGCGAGCTGACCGTGCACGACCGGCCGACCTCCGTCGTCGTCCGCTCGACCTTCCCCGACGCGCTCGACGACCTGGACGCGGTCGACCTGCTGGTCGTCAACGCCGGGACCTCGTGGCCGGGCTTCCTCGAGGCCGGGATCGGACCCGACGACGAGGCGTGGCGGCCCTTCCACTCCGCGCTGTCCCGCTGGGCCCGCGACGGCGGCCGCGTGCTGGCCGTGCACCAGGCGGCGAACACGTTCGCCGACTCCGAGGACTGGCGGGACCTGCTCGGCGGCCGCTGGGTCCCGGGTGAGTCGTACCACCCGCCCTTCGGCCCGGCCACGGTGCGGCTCGCCACCGGCGGGCACCCCATCGTCGCCGGGGCGCCCGACACCGTCGAGCTGGAGGACGAGCGCTACTGCGACCTGCGGGTCGCGGAGTCCTCGGAGGTGCTGGGCTGGGTGCCGGACGACGAGGGCGCCTCCCAGCCGGTGCTCTGGACGACCGAGGAGCACGGCGGACGGACCGTGTACTGCGGTCTGGGCCACGACGTCCGGGCCTACGACTCGCCGTCGTACCTGCGGCTGCTGGCACGGGCGGCCACCTGGCTGCTGTCCTGAMTTTRDDRSHRILVLAGRGRYEDPWHDHAATSHRLAEALSELTVHDRPTSVVVRSTFPDALDDLDAVDLLVVNAGTSWPGFLEAGIGPDDEAWRPFHSALSRWARDGGRVLAVHQAANTFADSEDWRDLLGGRWVPGESYHPPFGPATVRLATGGHPIVAGAPDTVELEDERYCDLRVAESSEVLGWVPDDEGASQPVLWTTEEHGGRTVYCGLGHDVRAYDSPSYLRLLARAATWLLSNANANANANA
AK018_04980492trmL_2COG0219tRNA (cytidine(34)-2'-O)-methyltransferaseGTGCCCGCTCCAGACCAGCCCGCCGCGCCGTTCGCCCACATCGTCTACTTCGAGCCGCGCATCCCCGGGAACACCGGGTCGGCCATCCGGCTCGCCGCGGTGACCGGCGCGCGGCTGCACCTGGTCGAGCCCCTCGGCTTCGACCTGTCCGAGGCGAAGCTCAAGCGCGCGGGCCTGGACTACCACGACCTGGCCGTCATGGACGTGCACCCGAGCCTGGACGCCGTCCTGGACACCCTGCGGGACGCCCGCGTCTTCGCCTTCTCCACCCGCGGCACGACGTCGTACACGGACGTGACCTACGCGCCCGGCGACGTGCTCCTCTTCGGCCCCGAGCCGACCGGCCTGCCGGAGGAGGTGCTGGCGCACCCGCGGATCACCGGCCAGCTGAAGATCCCGATGCTGCCCGGACGCCGCTCGCTGAACCTCACGAACTCGGCCTCGATCGCCGTCTACGAGGCGTGGCGGCAGACGGGCTTCGCCGGGTCCTGAMPAPDQPAAPFAHIVYFEPRIPGNTGSAIRLAAVTGARLHLVEPLGFDLSEAKLKRAGLDYHDLAVMDVHPSLDAVLDTLRDARVFAFSTRGTTSYTDVTYAPGDVLLFGPEPTGLPEEVLAHPRITGQLKIPMLPGRRSLNLTNSASIAVYEAWRQTGFAGSNANANANANA
AK018_049811110ppsC_3Phthiocerol synthesis polyketide synthase type I PpsCATGGAGCCGATCCCAGCCCAGATGAAGGCGGTCCAGCTCGTGGGTCACGGAGGCCTGGACCAGCTCGTGTTCCGTGACGACGTCCCCACCCCGACGCCCGGGCCCGGCGAGGTCCTCCTCGACGTCCACGCGTGCGGGATGAACAACACCGACGTGTGGGTGCGCGAGGGTGCTTACGGCACCGAGACCGACGCCGCGGAGGTCTCCACGTGGCGGCGCGGCCGGTCGACGCTCGCGTTCCCCCGCATCCAGGGCACCGACACCGTCGGGGAGATCGTCGCCGTCGGCGAGGGCGTGCCCGCCCAGCGGGTCGGCGAGCGCGTCATGGTCGACTTCTCGATCTACAACCGCCCCGAGGGAGACGACTCCCTGGCCGACATCGACTACATCGGCCACGGCCGCGACGGCGGGTACGCGGAGTACCAGACGGTGCCGGCCGAGAACGCCTACGAGATCACCAGCGACATCACCGACGCCCAGCTCGCCACCTTCTGCTGCGCCTACCTGACGGCCGAGCAGATGCTCGACCGGGCCCGGCTGGCCGACGGCGAGCGCGTCCTGGTCACGGGGGCCTCGGGCGGCGTGGGGTCGGCCATCGTGCAGCTCGCCCGGGTCCGCGGCGCGATCCCCTACGCGGTCACCAGCGCCGGCAAGGAGGACGCCCTGCGCGAGATCGGCGCCGAGGACGTGATCCTGCGCGACGCCGACGACCTCGTGTCCGAGGTGGCGCGCGTCGTCGACGGCCCGGTGGACGTCGTGGCGGACCTCGTGGCCGGACCGATGTTCAACGACCTGCTGCGCATCCTGCGTCCGGAGGGCCGGTACACCACGGCCGGGGCGATCGGCGGGCCGGTCGTGAACCTGGACCTGCGCACGATGTACCTCAAGCAGCTCGAGCTGCACGGGTCCTCGCAGGGCACCCGCACGGCGTTCCGGCGGCTGGTCCGGTACATCGAGAACGGCGACATCCAGCCGCTGCTGGACCGGACGTTCCCGCTGTCCGACTTCCACGACGCGCAGCGCACGTTCATGAGCAAGACCTACATCGGCAAGCTGGTCGTGGTTCCCGACCGGCACTGGGAGACCGTGGGGGCGTCCTATGCACCGTGAMEPIPAQMKAVQLVGHGGLDQLVFRDDVPTPTPGPGEVLLDVHACGMNNTDVWVREGAYGTETDAAEVSTWRRGRSTLAFPRIQGTDTVGEIVAVGEGVPAQRVGERVMVDFSIYNRPEGDDSLADIDYIGHGRDGGYAEYQTVPAENAYEITSDITDAQLATFCCAYLTAEQMLDRARLADGERVLVTGASGGVGSAIVQLARVRGAIPYAVTSAGKEDALREIGAEDVILRDADDLVSEVARVVDGPVDVVADLVAGPMFNDLLRILRPEGRYTTAGAIGGPVVNLDLRTMYLKQLELHGSSQGTRTAFRRLVRYIENGDIQPLLDRTFPLSDFHDAQRTFMSKTYIGKLVVVPDRHWETVGASYAPPGPT0006375_793DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
AK018_049821059COG3938ProteinATGCACCGTGAGCGCACGCTGCACCTGATCGACACGCAGTCCGGCGGCGACGTGTCGCGCATCGTGACCGCCGGCGTCGAACCCCTGCCCGGGGCCACGGTGCTCGAGAAGGCCCGGTACCTGCAGCACGAGGGCGACGGGCTGCGGCGGCTGCTGCTGTCCGAGCCGTACGGCGACCCGGCGATGTCGGTGGACCTCATCGTCGAGCCGAGCCACCCCGAGGCCCAGGCCGGGTACATCATCATGGAGGCGATGGGATACCCGTTGTACTCCGGGTCGAACACGATCTGTACGGCGACGGCGCTGCTGTCCAGCGGCATGATCCCGATGGTCGAGGGTCTGCAGGACGTCGTCCTGGAGTCCCCGGCCGGCCTGGCCCGGGTCTCCGCGCGCAACGAGGGCGGCCGGGTCCGGTCCATCACCACCCAGGGCGAGCCCGCCTACGTGGCCGACGAAGGGCTGTCCGTCGAGGTGCCGCACTACGGGCACGTCGAGTTCGACCTCGTGTGGTCCGGGGCCTACTACGCGCTCATCGACGCCGGGCGGCACGGGTTCACCATCGACGCCGAGAGCCAGATCGCGCTCACCGCGTTCGGCGACGCCTTCGTGCGGGCCGCGCGGCCCGGGCTGCGCGAGGAGCACCCCGAGCTGGGCCACGTCGGCCCGCTGCCGTTCGCCCACTTCATGGGCCCGGTCCGCCAGCTCGGTGAGGGGCGCTACGAGTCGCCGTCGGCCACCTACGTGCACCCCGGCGTGCTGTGCCGCAGCCCCACGGGGACGGGGACGTCGGCGCGCCTGGCGCTGATGGCCCGTCGCGGCCAGATCGCCCGCGGGGAGTCGCTCGAGACGATCTCGCCCCGGGGCAACCGGTTCGTCGGCACCGTGCTGGACGAGGCGCGGGTGGGCGAGTACGGGGCGCTGCACTCGACGATCACCGGCGGTGCCCGGCTGCTGGCGCACTCGCAGATCACCGTTGACCTGGACGACCCGCTCGTGGACGCCTCCGACCTGGAGCACGTGCTGGTCGCCCAGGCGCCCGTGCCGCCGGGCGCCTACTGAMHRERTLHLIDTQSGGDVSRIVTAGVEPLPGATVLEKARYLQHEGDGLRRLLLSEPYGDPAMSVDLIVEPSHPEAQAGYIIMEAMGYPLYSGSNTICTATALLSSGMIPMVEGLQDVVLESPAGLARVSARNEGGRVRSITTQGEPAYVADEGLSVEVPHYGHVEFDLVWSGAYYALIDAGRHGFTIDAESQIALTAFGDAFVRAARPGLREEHPELGHVGPLPFAHFMGPVRQLGEGRYESPSATYVHPGVLCRSPTGTGTSARLALMARRGQIARGESLETISPRGNRFVGTVLDEARVGEYGALHSTITGGARLLAHSQITVDLDDPLVDASDLEHVLVAQAPVPPGAYNANANANANA
AK018_049831263nhaP_2K(+)/H(+) antiporter NhaPATGGGAATCGAGGTGCTCGCCCCCTTCGCCGTCCTGGTGCTCGCCTGGGCGCTCCTGTCCGGCGCTCTGCGGCGCCGGGAGGTGACGGGGCCGCTCGTCTTCGTCGCCGCGGGGGCCCTGCTCGCCAACGACGCGTGGGGCCCGTTCCCGGTGAACGTCGAGACGGCGTCGGTCCACACCTTGGCCGAGATCACGCTGGCCCTCGTGCTGTTCACCGACGCCGCCCGCATCGACCTGCGCAACCTGCGCCGCCACGCGACCCTGCCGCTGCGTCTGCTCCTCGTCGGCTTCCCGCTCACGCTGCTGCTCGGGCTCGGGGCCGCGGTGCTGATCCTCTCGGACCTGCCGTGGGAGCTGGCGCTCCTCGTCGCCGCGGCGCTGGCCCCGACCGACGCTGCGCTCAGCGCCCAGGTGATCGGCGACCGGCGGGTGCCCGGACGGCTGCGCATCGCCGTCAACGTCGAGTCGGGGCTCAACGACGGCCTCGTCACCCCCGTGGTGACGCTCGCCGTCGCCCTGGCGGCGACGACGCTCGGGGTGGGTTCGCTCGAGCGCACCGGACCCGGCGACGCCCTGCTGGAGCTCGGCCTCGGCGTGCTGGTCGGCGGCGGGTTCGGCCTGCTCGGAGCCTGGGGTGTCACGGCCTCGGCCCGGCGCGGGTGGGCCGAACCCGGTGCGCTGCCGATCGGAACGCTGGCCACCGGGGTCGCGGCGTTCGCCGTCTCGCTCTCCGTCTCCGGCAACGGGTTCGTGGCCGCCTTCGTGGGCGGCCTGGTCTTCGGTCTGGTCGTCGACCGCGAGCAGGGCGACGAGCACGAGCTCACCGAGCTGGCCGAGCTCGGCGGCGAGCTCATGACCCTGGTCGTGTGGTTCCTGTTCGGCGCCGCCCTGGTGCCGATCGCCCTGGAGCACCTGAGTCCGGCGACCGTGGGCTACGCCCTGCTGAGCCTGACGGTGGTGCGCATGCTGCCCGTCGTGCTGGCGCTCGTGGGCACAGACCTGCCGCGCCGGGACGTGCTGTTCCTCGGCTGGTTCGGGCCGCGCGGTCTCGCCTCGGTGGTGTTCGCCCTCCTGGCGGTCGAGAGCCTCGGCGAGTCCGAGCCGGTGACGTCGGCCGTCGCGACGATCGCCACGACCGTGATGCTGTCGGTGCTGCTGCACGGCGGGTCGGCGGGACCGGTCGCCGCCCGGTACGGGATGCGGGACGACGTGCACGTGCGTGCGCGGGCGAGCAGGCTCGGCCCGCCGCACACGCGCCGGTGAMGIEVLAPFAVLVLAWALLSGALRRREVTGPLVFVAAGALLANDAWGPFPVNVETASVHTLAEITLALVLFTDAARIDLRNLRRHATLPLRLLLVGFPLTLLLGLGAAVLILSDLPWELALLVAAALAPTDAALSAQVIGDRRVPGRLRIAVNVESGLNDGLVTPVVTLAVALAATTLGVGSLERTGPGDALLELGLGVLVGGGFGLLGAWGVTASARRGWAEPGALPIGTLATGVAAFAVSLSVSGNGFVAAFVGGLVFGLVVDREQGDEHELTELAELGGELMTLVVWFLFGAALVPIALEHLSPATVGYALLSLTVVRMLPVVLALVGTDLPRRDVLFLGWFGPRGLASVVFALLAVESLGESEPVTSAVATIATTVMLSVLLHGGSAGPVAARYGMRDDVHVRARASRLGPPHTRRPGPT0013856_978DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013856-NHA1_like|SOD2_like-K24160NANA
AK018_049841926pckG_2COG1274Phosphoenolpyruvate carboxykinase [GTP]ATGACGTTCACCGCGAACCCCCGACGGACCCGGCTGGCCCTCGCCGAGCTCACCCCGGACATCCTCGACCGCACCGACGGCTTCGGCCCCGCCGCGAGCGACGCCGGACCGGCCGGCCACCCGTCTCCGCGGGACGTGCGCGCGTGGGTCGCCGGGATCGCCGAGCTCACCCAGCCTGACCGGATCGTGTGGTGCGACGGGTCGGCCGCGGAGAAGCAGCTCCTGATCGACGAGATGGTCGAGACGGGCACCCTCGTCAAGCTCGCCGAGGACAAGCGCCCGAACTCCTACCTCGCCCGGTCGAACCCGTCCGACGTCGCCCGGGTCGAGTCCCGGACCTTCATCTGCTCCGAGCACGAGGAGGACGCGGGCCCCACCAACAACTGGTGCGACCCGGCGACCATGCGCGACGAGCTCGACGGCGTCTTCGAGGGGTCGATGCGGGGCCGCACCATGTATGTCGTGCCGTTCTCCATGGGCCCCGTGGGCGGCCCGATCTCCCAGGTCGGCGTGGAGATCACCGACTCGCCCTACGTCGTCGTCTCCATGCACGTGATGACCCGCGTCTCTCCCCGGGTCGTCGACCTGATCGACGGCGGGCAGCAGTGGGTCCCGGCCGTGCACTCCGTGGGCACCCCGCTCGCCGAGGGCGAGGAGGACGTCGCCTGGCCGTGCAACGACGAGAAGTACATCGTCCACTTCCCCGAGAGCCGCGAGATCTGGTCCTACGGCTCCGGCTACGGCGGCAACGCGCTGCTCGGCAAGAAGTGCTTCGCGCTGCGCATCGCCTCGGCCATGGCGCGCGACGAGGGCTGGCTGGCCGAGCACATGCTGCTGATCCGGGTCACCTCCCCCGAGCAGCGGCAGTATCACCTGGCCGCCGCCTTCCCGAGCGCCTGCGGCAAGACGAACCTCGCCATGCTGCAGCCGACGGTCCCCGGCTGGACGGTGGAGACCCTGGGCGACGACATCGTGTGGATGCGGCCCGGTCCCGACGGCTCCCTGCGGGCCATCAACCCCGAGGCCGGCTTCTTCGGCGTCGCGCCGGGGACGGGGCCCGACACCAACCCGACCGCGATCGAGACGCTGACGCACGACGTCATCTTCACCAACGTGGCCCTGACCGACGACGGCGACGTGTGGTGGGAGGGGCTGACGCCCGAGCCGCCGGAGCACCTGATCGACTGGCGGGGCGACGACTGGACGCCGGACGACGGCGCCGACGGGAGGCCCGCGGCCCACCCGAACTCCCGGTTCACCGTCGCGGCCGCGCAGTGCCCGACGATCGCCGACGGCTGGGAGGACCCGGCCGGTGTCCCCGTCGACGCGATCGTCTTCGGCGGCCGCCGGGCGTCGAACGTTCCCCTGGTGACCCAGGCGACCAGCTGGGAGCACGGCGTCTTCATGGGGGCGACCATCAGCTCCGAACGGACCGCGGCCGCCGAGGGCGCCGTCGGCGAGCTGCGCCGCGACCCGTTCGCGATGCTGCCCTTCTGCGGCTACAACATGGCCGACCACTGGGCCCACTGGCTGCGGGTCGCGGGTCTCGTCGACGACGCCCGGCGGCCCAAGATCTTCCAGGTCAACTGGTTCCGCAAGGACGCCGACGGCGCGTTCGTCTGGCCGGGCTTCGGGGAGAACTCCCGCGTCGTCAAGTGGATCGCCGAGCAGATCGACCGCTCGCGCGGCATCCGCACCGACCGCGGCGCGGTGACGTCGCCGCTGGGGCTGCTGCCGGCGCCGGGAGCGCTCGACACGACCGGCCTCGACCTCACCGACGCCGAGCTCGACGCGCTCTTCGACGTCCCAGCCGAGGCGTGGCTGGCCGAGACCGACCTCACCGAGGAGTTCTTCGCCCGGTTCGGCGACCACCTGCCGCAGGAGATGACGACGCAGCTCGAACGGCTGCGCGGTCGACTCCGCTGAMTFTANPRRTRLALAELTPDILDRTDGFGPAASDAGPAGHPSPRDVRAWVAGIAELTQPDRIVWCDGSAAEKQLLIDEMVETGTLVKLAEDKRPNSYLARSNPSDVARVESRTFICSEHEEDAGPTNNWCDPATMRDELDGVFEGSMRGRTMYVVPFSMGPVGGPISQVGVEITDSPYVVVSMHVMTRVSPRVVDLIDGGQQWVPAVHSVGTPLAEGEEDVAWPCNDEKYIVHFPESREIWSYGSGYGGNALLGKKCFALRIASAMARDEGWLAEHMLLIRVTSPEQRQYHLAAAFPSACGKTNLAMLQPTVPGWTVETLGDDIVWMRPGPDGSLRAINPEAGFFGVAPGTGPDTNPTAIETLTHDVIFTNVALTDDGDVWWEGLTPEPPEHLIDWRGDDWTPDDGADGRPAAHPNSRFTVAAAQCPTIADGWEDPAGVPVDAIVFGGRRASNVPLVTQATSWEHGVFMGATISSERTAAAEGAVGELRRDPFAMLPFCGYNMADHWAHWLRVAGLVDDARRPKIFQVNWFRKDADGAFVWPGFGENSRVVKWIAEQIDRSRGIRTDRGAVTSPLGLLPAPGALDTTGLDLTDAELDALFDVPAEAWLAETDLTEEFFARFGDHLPQEMTTQLERLRGRLRPGPT0019595_161DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019595-pckA-K01596NANA
AK018_049851482hypothetical proteinATGACCGTCGAACCGTCGTCGGAGGCCCCGGACCTCATCACCCTGGGCCGTCGCATCCGGCACGCGCGCACCGCCCGCGGCCTGACCCTCGAGGCCCTGGGCAAGCAGGTCGAGTCCGCCCCGAGCCTGCTGTCGCTGGTGGAGAACGGGCGCCGCGAGCCCCGGCTCTCGCTGCTGCGGTCCCTGGCCGAGGCGCTCGAGGTGCCGCTGGCCGACCTGCTCGCCGACGAGCCGCCGTCGCGCCGGGCCGCCCTGGAGATCGCGCTGGAGCGGGCGCAGCGCGGGCCGCTGTTCGGTGCGCTCGGCCTGCCCGTCGTCAAACCCAGCCAACGGCTGCCGGTGCCGGTGCTGGAGCACCTGGTGGGGCTGCACGAGGAGCTGGCACGCCGCGAGGAGGAGGCGATCGCCACCCCGGAGGAGGCGCGCCGCGCCAACACGGTGCTGCGTCACGAGCGCCAGGAGCGTGACAACCACCTGCCGGAGATCGAGTCGCTGGCCGAGGACATGACCCGGCGTGCCGGGTACACCGGGGGCGCGCTCACGCACCGGACCGTGGCGCAGATGGCGGGCGCGCTGGGGCTGACGATCCTGCACGTGGACGACCTGCCCCGGTCGGCCCGGTCGGTGACCGACTGGAAGAACGGGCGCATCTACCTGCCGCCCGCGTCCATCCCGGGCGGGCACGGGCTGCGGTCGCTGGCGCTGCAGGCGATCGCGCACCGGGTGCTCGGGCACGAGCGGCCCCGGTCGTACGGCGACTTCCTGCGCCAGCGCGTCGAGATCACCTACTTCGCCGCGGCGTGCCTCATGCCGCAGACGGCGGCGGTGGCCTTCCTCGAGCAGCGCAAGCGGGCCAAGGACCTCGCCGTCGAGGACTTCCGCGACTCCTTCGGGGTCACCCACGAGGCGGCGGCGATGCGGTTGACCAACCTCGCCACCGTCCACCTCGGCATCCCGCTGCACTTCCTGCGGGTGGGGGACGACGGCGCGCTGTTCCGCGGCTACGCGAACGACGGCCTGCCCCTGCCGCAGGACGTCACGGGTGCCATCGAGGGTCAGCTCGTGTGCCGGTGGTGGCCGGGGCGGGAGGCCTTCACGCGGCGCGACCGGGCCACGGAGTCCTACCAGTACACCGACACCCCGGCGGGGACGTTCTGGGACTCGGTGCAGACCGGCACCGCGGCCGACGGGCGGCAGTTCTCCATCACGGTGGGGGTGCCGTACGCGCACGCCAAGTGGTTCCGCGGGCGGGACACCCGGGTGCGGCGGACGTCGACGTGCCCCGACCCGGCGTGCTGCCGCCGCCCGCCGGAGGACCTGAGCGACCGGTGGGAACGGGCCTCCTGGCCGAGCGCCCGCATGCACCAGCAGATCCTCGCGGCGCTGCCCCGCGGGGTGTTCCCCGGGGTCGACGACACCGACGTCTACCGATTCCTCGAGCGGCACGCCCCGGACCCGGAGGACGCGGGCGCGGAGGCCTAGMTVEPSSEAPDLITLGRRIRHARTARGLTLEALGKQVESAPSLLSLVENGRREPRLSLLRSLAEALEVPLADLLADEPPSRRAALEIALERAQRGPLFGALGLPVVKPSQRLPVPVLEHLVGLHEELARREEEAIATPEEARRANTVLRHERQERDNHLPEIESLAEDMTRRAGYTGGALTHRTVAQMAGALGLTILHVDDLPRSARSVTDWKNGRIYLPPASIPGGHGLRSLALQAIAHRVLGHERPRSYGDFLRQRVEITYFAAACLMPQTAAVAFLEQRKRAKDLAVEDFRDSFGVTHEAAAMRLTNLATVHLGIPLHFLRVGDDGALFRGYANDGLPLPQDVTGAIEGQLVCRWWPGREAFTRRDRATESYQYTDTPAGTFWDSVQTGTAADGRQFSITVGVPYAHAKWFRGRDTRVRRTSTCPDPACCRRPPEDLSDRWERASWPSARMHQQILAALPRGVFPGVDDTDVYRFLERHAPDPEDAGAEANANANANANA
AK018_049861326hypothetical proteinGTGGACGGTCAGACCTGGTGGAACATCGCCCTGGTGCTGGGCTTCGTGCTGCTCGGCGGGGTGTTCGCCGGGACCGAGTTCGCGCTCGTCTCGCTGCGCGAGGGGCAGATCGACGAGCTGGAGCGCCACGGGTCGCGCGGACGCCGGGTGGCCGCGGTCGCACGGGACCCCAACCGGTTCCTGGCCGCCGTGCAGATCGGCGTCACCGTGGCCGGCTTCTTCTCCGCGGCCTACGGGGCCTCGACCCTGGCTCCCGACGTCGCCCCGTCCCTGGAGGCGCTGGGACTGACGCCGGGCGCGGCCTCGACCGTCGCCCTGGTCCTGCTGACGCTGCTGGTCGCCTACGCCTCCCTCGTGCTGGGCGAGCTGGTGCCGAAACGCCTGGCGCTGCAGCGCTCGGTCCAGGTGTCGCTCGTCGTCGGACCACCGCTGGACCGCTTCTCCCGCCTGATCCGACCGGTCATCTGGCTGCTGTCCCGGTCCACCGACGCCGTCGTCAGGCTGTTCGGCGGCGACCCGGGAGTGCGTGCGCCGCAGATGTCGGACGAGGAGCTGCGTCGCGTCGTGCTCGAGCACCCGGGACTCTCGCGCGAGGAGCGCGACATCGTCACGGACGTCTTCACCGCCTCCGAGCGCCGGCTCACCGAGGTCATGCGCCCCCGCACCGACGTGACGTTCCTGGTCTCGACCCTCGACGTCGCCGAGGCGATCGACGCGGTGCACGACCAGCCGTACTGGCGGTTCCCCGTCGTCGGCGAGGGTGTCGACGACGTGGTCGGGTTCGTCCATCTGCGCGACCTCGTGCGCGAGCTGCGTGCGCCCACGGGCCGACGACGGCGGACCGTGCGCGACCTCGCCCGGCCCGCCCTGGAGATGCCGGGCACGAACCGGCTCCTGCCCTCGCTGACGACGATGCGCGAGGACGGCGTGCACCTCGCCGTCGTGCGGGACGAGTACGGCGGGACGGACGGGATCGTCACGCTGGAGGACCTCGTCGAGGAGCTCGTGCGGGACATCCGCTCCGAGCCGGACCCGGGCCGCCCCGAGCTCGGCGCCGACGAGGTCGACGCGGGGCTGTCCCTCGAGGACTTCGCTCGGGAGACCGGCGTCGTGCTGGCCGAGGGCCCGTACGAGACCGCCGCCGGGTTCGTGCTCGCGACGCTCGGACGTCTCGCGGTCCCGGGCGACGTCGTCGAGACCGACGGGGCCACGCTGACGGTGACCGCCGTCGACCGCCAGCGCATCCGGGCGGTGCGGGTCGAGCGTCCTGGTCCTGCGGACGACCCCGGCGCCGCGGACGACCCCGGCGGCGCAGGCGACGTCTAGMDGQTWWNIALVLGFVLLGGVFAGTEFALVSLREGQIDELERHGSRGRRVAAVARDPNRFLAAVQIGVTVAGFFSAAYGASTLAPDVAPSLEALGLTPGAASTVALVLLTLLVAYASLVLGELVPKRLALQRSVQVSLVVGPPLDRFSRLIRPVIWLLSRSTDAVVRLFGGDPGVRAPQMSDEELRRVVLEHPGLSREERDIVTDVFTASERRLTEVMRPRTDVTFLVSTLDVAEAIDAVHDQPYWRFPVVGEGVDDVVGFVHLRDLVRELRAPTGRRRRTVRDLARPALEMPGTNRLLPSLTTMREDGVHLAVVRDEYGGTDGIVTLEDLVEELVRDIRSEPDPGRPELGADEVDAGLSLEDFARETGVVLAEGPYETAAGFVLATLGRLAVPGDVVETDGATLTVTAVDRQRIRAVRVERPGPADDPGAADDPGGAGDVNANANANANA
AK018_04987426hypothetical proteinATGAGCGTCCTGACCCGACCGCGCGTCGTGCTGCGTCTCGAGGGCCTGGTCCTCGCCGTCGCGCTGCTCGGGGCGGCCGTGTGGTTGGTCCCGGACTGGTGGTGGGTGCTGCCGGCCGGCTTCCTGCTGGTCGACCTGTCGGCGCTCGGGTACCTGCGCGGTCCCCGAGTTGGTGCCGCCGCGTACAACGCCGGGCACTCGAGCGTCGGACCGGTCCTCCTCGGCCTCGTGGCGGGCGGCCTGGCCGCGAGCGGCGCGGACGGCACGGCGCAGGTGGTGTGCACGACGACGGCGCTCACCTGGGGTTTCCACGTCGGGGTCGACCGGGCGTTCGGCTACGGGCTCAAGGAGCCCGACTCCTTCCACCACACGCACCTGGGGTGGTTGGGGGGCCGGTCGTCGCGGAGTCCCGAGGAGCGGGCGTGAMSVLTRPRVVLRLEGLVLAVALLGAAVWLVPDWWWVLPAGFLLVDLSALGYLRGPRVGAAAYNAGHSSVGPVLLGLVAGGLAASGADGTAQVVCTTTALTWGFHVGVDRAFGYGLKEPDSFHHTHLGWLGGRSSRSPEERANANANANANA
AK018_049881317pip_3Proline iminopeptidaseGTGAAGAGCACCGTCACGAGCGAGTCCTTGTACACGATCCCCGGCGTCCACGTCACCGACCGCACCCTCACGGTCCCCCTCGACTGGACCGCTCCCGCCGACGACCGCACGCTGAGCGTGTTCGTCCGCGAGCTGGTCGCCCCGACCAAGCGGTCCGAGGACCTGCCTCTGCTGGTGTTCCTCCAGGGCGGCCCGGGCGGCAAGGGGCCGCGCCCCACCGGCGCCGAGGGCTGGGTCGGCGAGGCGTTGAAGAGGTTCCGGGTGGTGCTGCTCGACCAGCGCGGCACGGGACGCTCGACGGCGGTGCGCGCCGGCGCGCTGCAGCGGCTCGGCTCGCCGGAGGCGCAGGCGGAGTACCTCACCCACTTCCGCGCCGACTCGATCGTGCGCGACGCCGAACACGTGCGGAACACCGTCTACGGCGGTCGGCGGTGGTGCAGCCTCGGGCAGTCCTACGGCGGGTTCATCACCCTGACCTACCTCTCCTTCGCCCCCGAGGGCCTGGCGGCCTGCTACGTCACGGGCGGCCTGGCCGGCCTGCACGACAGCGCCGAGCAGGTCTACGAGCGCACGCAGGCGCGCGTCGTCGCGAAGAACGCGCAGTACCGCGAGCGCTACCCCGCCGACGTCGAGCGGATCGCGCGGATCGCCGACCGGATCGCCGTCGGTGACGTGCACCTGCCCGGCGGTGACCTGCTGAGCGTGGAACGCTTCCAGTCCCTGGGCATGGCCTTCGGGATGGGCCCCGGGTTCGAGCGGGTGCACTGGATCGTCGACGAGGCGTTCGACGACGTCGCCCCGGACGAGCTGACCGACACCTTCCTGGCCGAGGTGGAGGCCGCGACGTCGTTCGCGACGAACCCGCTGTACGCCGTCCTGCACGAGTCCATCTACGCCGAGGGCGGGGCGTTCGTCCCCTGGGCCGCCGCGGAGGTCCGCGCCACCGACGGCGCGTTCGGACCCGACGAGCGCCCGCTGCTGTTCACCGGCGAGATGATCTACCCCTGGATGTTCGACCAGATCAGCGCCCTCCGCCCCTTCCGGGACGCGGCACACGCGCTCGCAGCCCGACGCGACTGGCCCGCGCTGTACGACATGGAGGTGCTCGCCGCCAACGACGTGCCCCTGGAGGCCGCGGTGTACTTCGACGACATGTTCGTCGACGCCGACCTGTCCCTCGACACCGCGGATCACGTGCGCAACGCCCGGGCCTGGGTGACCAACGAGTTCGAGCACGACGGGCTGCGCGCCGGGAACGTGTTCACCACGCTCCTGGACCGGCTCGACGCCCGCGGCGGCCCCCTCCCCGCGAGGTAGMKSTVTSESLYTIPGVHVTDRTLTVPLDWTAPADDRTLSVFVRELVAPTKRSEDLPLLVFLQGGPGGKGPRPTGAEGWVGEALKRFRVVLLDQRGTGRSTAVRAGALQRLGSPEAQAEYLTHFRADSIVRDAEHVRNTVYGGRRWCSLGQSYGGFITLTYLSFAPEGLAACYVTGGLAGLHDSAEQVYERTQARVVAKNAQYRERYPADVERIARIADRIAVGDVHLPGGDLLSVERFQSLGMAFGMGPGFERVHWIVDEAFDDVAPDELTDTFLAEVEAATSFATNPLYAVLHESIYAEGGAFVPWAAAEVRATDGAFGPDERPLLFTGEMIYPWMFDQISALRPFRDAAHALAARRDWPALYDMEVLAANDVPLEAAVYFDDMFVDADLSLDTADHVRNARAWVTNEFEHDGLRAGNVFTTLLDRLDARGGPLPARNANANANANA
AK018_049891515glpK_2COG0554Glycerol kinaseATGGCTGACTACGTCCTCGCGATCGACCAGGGCACCACGAGCTCCCGGGCGATCATCTTCGACCACTCCGGCCGGATCGTCTCGACCGGCCAGCTCGAGCACGACCAGATCTTCCCGCAGGCGGGCTGGGTCGAGCACAACCCCGAGCAGATCTGGAACAACGTCCGCGAGGTCGTCGGCCTCGCGCTCACCCGGGCGAACCTCTCGCACGACGACATCGCCGCCGTCGGCATCACCAACCAGCGCGAGACCACCGTCGTGTGGGACAAGACCACCGGCAAGCCGGTCTACAACGCCATCGTCTGGCAGGACACCCGGACGCAGGCGATCGCCGACCGCCTGGCCGGCGACGAAGGGCCCGAGAAGTACAAGGCGATCGTGGGCCTGCCCCTGGCGACCTACTTCTCCGGGCCGAAGATCGCCTGGATCCTCGAGAACGTCGAGGGCGCCCGCGAGGCCGCCGAGCGCGGCGACCTGCTGTTCGGTAACACCGACACCTGGGTGCTGTGGAACATGACCGGCGGGCCCGAGGGCGGCGTCCACGTCACCGACGTCACGAACGCCTCACGCACCATGCTCATGGACCTCGACACCCTCTCGTGGCGCGAGGACATCGCCGCGGACATGGGCGTCCCGCTGTCGATGCTGCCCGAGATCCGCTCGTCGTCCGAGATCTACGGCCACGGCCGGGCCAAGGGCATGGTCCCGGGAGTGCCGATCGCCGGCATCCTCGGCGACCAGCAGGCCGCCACCTTCGGTCAGGCGTGCTTCGAGGTCGGCACCGCGAAGAACACCTACGGCACCGGCAACTTCATGCTGCTCAACACCGGCACGGAGAAGGTGGCCAGCGAGAACGGCCTGCTCACCACCGCCTGCTACAAGATCGGTGACGCCCCCGTCGTCTACGCACTCGAGGGAGCGATCGCCGTCACCGGCTCGCTGGTGCAGTGGCTGCGCGACAACCTGGGGCTCTTCGACGACGCCCCGGACGTCGAGTACCTCGCGGGCAAGGTCGACGACAACGGCGGGGCGTACTTCGTCCCGGCGTTCTCCGGTCTGTTCGCCCCGTACTGGCGCCCCGACGCCCGCGGTGCCCTCGTCGGTCTGACGCGGTACGTCAACCGCAACCACGTCGCCCGCGCCGCCCTCGAGGCCGTCGCGTTCCAGACCCGCGAGGTCATGGACGCCATGCGCGCCGACTCCGGGGTGGACCTGACCGAGCTCAAGGTCGACGGCGGCATGGTCGCCAACAACCTGCTCATGCAGTTCCAGGCCGACCAGGTCGGGGTCGACGTCGTGCGGCCCGAGGTCGCCGAGACCACCGCCCTCGGCGCCGCCTACGCCGCCGGCATCGCCGTCGGCTTCTGGCAGGGAGAGCAGGACGTCCGCGACAACTGGGTCGAGGGCCAGCGGTGGACGCCGTCCATGCCGCAGGACGAGCGCGAGCGGCTGTACCGCGAGTGGAAGAAGGCGGTGACGAAGACCTTCGACTGGGTCGACGCCGACACCAAGTAGMADYVLAIDQGTTSSRAIIFDHSGRIVSTGQLEHDQIFPQAGWVEHNPEQIWNNVREVVGLALTRANLSHDDIAAVGITNQRETTVVWDKTTGKPVYNAIVWQDTRTQAIADRLAGDEGPEKYKAIVGLPLATYFSGPKIAWILENVEGAREAAERGDLLFGNTDTWVLWNMTGGPEGGVHVTDVTNASRTMLMDLDTLSWREDIAADMGVPLSMLPEIRSSSEIYGHGRAKGMVPGVPIAGILGDQQAATFGQACFEVGTAKNTYGTGNFMLLNTGTEKVASENGLLTTACYKIGDAPVVYALEGAIAVTGSLVQWLRDNLGLFDDAPDVEYLAGKVDDNGGAYFVPAFSGLFAPYWRPDARGALVGLTRYVNRNHVARAALEAVAFQTREVMDAMRADSGVDLTELKVDGGMVANNLLMQFQADQVGVDVVRPEVAETTALGAAYAAGIAVGFWQGEQDVRDNWVEGQRWTPSMPQDERERLYREWKKAVTKTFDWVDADTKPGPT0018435_2060DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018435-glpK-K00864NANA
AK018_04990735glpF_2COG0580putative glycerol uptake facilitator proteinATGTCAACAGGCGAACTCTTCGTCACCGAGATGCTCGGGACCGGGATGCTGCTGCTCCTCGGTGCCGGCGTGGTGGCGAACGTCATCCTGCCCAAGAACAAGGGCTTCAACGGGGGATGGCTGCTCATCAACTTCGGATGGGGCCTGGGTGTGTTCTCCGGTGTGTACGTCGCCTTCGCGAGCGGCGCGCACATCAACCCGGCCGTCACCTTCGGCATCTGGGCCAGCGGCGCCGCGGAGTTCGGCCCCGGTATCCCCGTCACGTTCACCAACGGCGTCACCTACATCGGCGCGCAGATCGTCGGCGCGGCGCTCGGTTCGGCGATCGCGTTCCTCGCCTACAAGAAGCACTTCGACGAGGAGGCCCCCGCGGCGACGAAGCTCGCGGTCTTCTCCACCGGACCGGAGATCCGCTCCTACCCGTGGAACTTCGTCACCGAGGTCATCGGCACCTTCGTGCTGGTGTTCGTGGTGCTGAACTTCGGCAACTGGCCCGGCGACATCGGCCCGCTCGCCGTCGCCCTGCTGGTGGTCGGGATCGGCGCGAGCCTCGGTGGCCCCACCGGCTACGCCATCAACCCGGCCCGTGACCTCGGTCCTCGTATCGCGCACGCGCTGCTGCCGATCAAGGGCAAGGGATCGAGCGACTGGGGCTACTCCTGGGTGCCGGTCCTCGGCCCGATCGTCGGCGGCGTGCTCGCCGGCCTGCTCGCCCCCGTGGTCGCCTTCGGCTGAMSTGELFVTEMLGTGMLLLLGAGVVANVILPKNKGFNGGWLLINFGWGLGVFSGVYVAFASGAHINPAVTFGIWASGAAEFGPGIPVTFTNGVTYIGAQIVGAALGSAIAFLAYKKHFDEEAPAATKLAVFSTGPEIRSYPWNFVTEVIGTFVLVFVVLNFGNWPGDIGPLAVALLVVGIGASLGGPTGYAINPARDLGPRIAHALLPIKGKGSSDWGYSWVPVLGPIVGGVLAGLLAPVVAFGPGPT0004760_1986DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLYCEROL_UPTAKE,PGPT0004760-glpF|pduF-K02440NANA
AK018_049911743glpD2_2COG0578Glycerol-3-phosphate dehydrogenase 2ATGGCCTCCCGACTCACTGCCGAGTCACGCACCCGCGCCCTGGCGGCGCTCGAGAGCTCGCAGGACTCCGCCACCGAGCTCGACGTCCTCGTCATCGGTGGCGGCGTCACCGGCGCCGGCATCGCGCTCGACGCCGTCACCCGCGGCCTGTCCACCGCGATCGTCGAGGCCCAGGACTGGTCCGCCGGCACCTCGAGCTGGTCCAGCAAGCTCGTCCACGGCGGTCTGCGCTACCTGCAGATGCTCGACTTCTCCCTCGTCCACGAGGCCCTGACCGAGCGCGACCTGCTCCTCAAGGAGCTCGCCCCGCACCTCGTCAAGCCGGTCCCGTTCCTGTACCCGCTCGAGCACCGCATGTGGGAACGCGCCTACGTCGGCGCCGGCATCGCCCTGTACGACACCCTCGCCTCGGTCGCCCCCGGCAAGCGCGCGATGCCGCTGCACCGGCACCTGACGCGCCGGCAGATCAGCCGCAAGTTCCCCGACCTGGCGCACGAGGCCGCCATCGGCGCCGTCCAGTACTGGGACGCGTCGGTGGACGACTCTCGCCTGGTCGCGACCCTCGTGCGCACCGCCGTCGACTACGGCGCCCACGCCGCGACGCGCACCCAGGTCGTCGAGCTCACCAAGAGCGCCACGGGCACCGTCAACGGCGCCGTCGTCGTCGACCTGGAGACCGGTCGCGAGATCACCGTCCGCGCCCGCCACGTCATCAACGCCACGGGCGTGTGGACCGAGGACACCGAGGCCCTCGCCGGCGACGAGGGGGGCCTGCACGTGCTGGCCTCCAAGGGCATCCACATCGTCGTCCCCCGGGAGCGCATCAAGGGGCAGGTCGGCCTGATCCTGCAGACCGAGAAGTCGGTGCTGTTCATCATCCCCTGGTCCCGGTACTGGATCATCGGCACCACCGACACCCCGTGGGAGCTGGACCCGGTGCACCCGGTGGCCACGGCCGCCGACATCGACTACGTGCTCGACCACGCCAACGCCGTGCTGGCCCACCCGCTCACGCGCGAGGACGTCATCGGCACCTACGCCGGCCTGCGCCCGCTGCTGCAGCCGGGCACCAAGGAGGGCACCAGCTCGGCGAAGGTCTCGCGCGAGCACACCGTCGCCTCCCCCGCGCCCGGCCTGACCGTCATCGCCGGCGGCAAGCTGACCACCTACCGCGTCATGGCCAAGGACGCCGTCGACTTCGCCATCGGCCAGCGGGCGCACGCCCTGCCGTCGGTGACCCACCAGATCCCGCTCGTCGGCGCGGTCGGGCTGTCCGCCGTCCGGCGCCAGGCCCGGTCCTGGGCGCAGCGGTACGGCTGGAGCCCGGCGATGGTCGACCACCTCCTGCACCGGTACGGCTCCGCGCTGCGCGAGCTCGTCACGCTCTGCGAGGAGGACCCCTCGCTCGCCGAGCCGCTCGAGCACGCACCCGCCTACCTGCGCGCCGAGATCCACTACGCCGTCAGCCACGAGGGCGCGCTGCACCTGGAGGACCTGCTGGTCCGCCGGACACGGCTCGTCTACGAGGTGGCGGACAAGGGCCGGGCCGCGCTGCCCGAGATCGCCGACGTCGTCGCACCCCTGCTGGGCTGGGACGACGCCACGAAGCAGAGCGAGATCGACAGCTACACCGCCCGGGCCGATGCCGAGGACGCGGCCGCCGCCGCGACCGACGACGAGGCCGCTGCCGTCGCGCGCGGCCGGGCCGGCGACGTGGCGTCGATGCGACCCCTGCGCACCTGAMASRLTAESRTRALAALESSQDSATELDVLVIGGGVTGAGIALDAVTRGLSTAIVEAQDWSAGTSSWSSKLVHGGLRYLQMLDFSLVHEALTERDLLLKELAPHLVKPVPFLYPLEHRMWERAYVGAGIALYDTLASVAPGKRAMPLHRHLTRRQISRKFPDLAHEAAIGAVQYWDASVDDSRLVATLVRTAVDYGAHAATRTQVVELTKSATGTVNGAVVVDLETGREITVRARHVINATGVWTEDTEALAGDEGGLHVLASKGIHIVVPRERIKGQVGLILQTEKSVLFIIPWSRYWIIGTTDTPWELDPVHPVATAADIDYVLDHANAVLAHPLTREDVIGTYAGLRPLLQPGTKEGTSSAKVSREHTVASPAPGLTVIAGGKLTTYRVMAKDAVDFAIGQRAHALPSVTHQIPLVGAVGLSAVRRQARSWAQRYGWSPAMVDHLLHRYGSALRELVTLCEEDPSLAEPLEHAPAYLRAEIHYAVSHEGALHLEDLLVRRTRLVYEVADKGRAALPEIADVVAPLLGWDDATKQSEIDSYTARADAEDAAAAATDDEAAAVARGRAGDVASMRPLRTPGPT0006775_1022DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0006775-glpA|glpD-K00111NANA
AK018_04992924deoR_3COG2390Deoxyribonucleoside regulatorATGGCGGCGACCATGTACTACCTGCAGGACATGAAGATGGAGTCGATCGCGAGGCACCTGCGCACCTCGCGGTCGACGGTCTCGCGGCTGCTCAAGAGGGCGCGGGAGACGGGCGTCGTGGAGATCACGCTGCGCCCCACGCACACGCGTGCACCCGGGCTGGGTCAGCGGCTCGCGGCGGAGCACGACATCGACACCTACGTCGTGCCCGTCCCGGACTCCGCCGACGACGCGGAGCGGCTCCGGCAGGTGGCCCGCACGACGGCGCGACTGGTCACCCGGTGGTTCGACTCCGACATGGTCCTGGGCATCGCCTGGGGCACGACGCTGGCCGCCGTCGCGGAGCACCTCATGGACAAGCCCACGCGCGGGTCCGCCGTCGTCCAGCTCAACGGCGCGGCCAACAACCGCACCTCGGGGGTCGCCTACGCCGGCGACCTGCTCGACCGGATCGCCGCGACCTTCGAGGCCCAGGCGCACCCGTTCCCGGTGCCCGCCTTCTTCGACTTCGCCGAGACCCGCGACGCGATGTGGCGCGAGCGGTCGGTGCGTCGCGTGCTGGACGTGCAGGCCCGGACCGACCTCGCCGTGTTCTCCGTCGGGGCGCTGACCGGCGGCGTCCCGTCGCACGTGTACACCGCGGGCTACCTCGAGCCCGAGGACGTCGCGGCGCTGGAGGCCGCCGACGTCGTCGGCGACGTCTGCACGGTGTTCCTGCGCCCCGACGGGTCGTTCCGCGACATCGCCATCAACGCCCGGGCGACCGGCCCCACGCCCGACCAGCTGCGGCGGTTCCGTCGTCGCCTGTGCGCCGCCGCGGGCGACAACAAGGTCGCACCGCTGCGGGCGGCGCTCGCTGCCGGCGTCGTCACCGACCTGGTGATCGACGAGATCACCGCAGCGCGGCTCGTCGGCCAGGACTGAMAATMYYLQDMKMESIARHLRTSRSTVSRLLKRARETGVVEITLRPTHTRAPGLGQRLAAEHDIDTYVVPVPDSADDAERLRQVARTTARLVTRWFDSDMVLGIAWGTTLAAVAEHLMDKPTRGSAVVQLNGAANNRTSGVAYAGDLLDRIAATFEAQAHPFPVPAFFDFAETRDAMWRERSVRRVLDVQARTDLAVFSVGALTGGVPSHVYTAGYLEPEDVAALEAADVVGDVCTVFLRPDGSFRDIAINARATGPTPDQLRRFRRRLCAAAGDNKVAPLRAALAAGVVTDLVIDEITAARLVGQDNANANANANA
AK018_04993519argA_2COG1246Amino-acid acetyltransferaseGTGCACGACCACCAGAACGCGCCCTTCCGCATCCGGCCCGCGCTCCCGGCGGACATCCGCGGCGTGCGCGACCTGGTGGCGCCCTACGCCGCCGAGCGGATCCTGCTGGCCAAGGAGCTGGTCGGCTACTACGAGTCGGTGCAGGAGTTCCTGGTGGCCGACGCCGGGCCGGACGGGCTGGTCGGCTGCGGTGCCCTGCACGTGATGTGGTCCGATCTCGCCGAGATCCGCACGCTCGCCGTGGACCCGACGTGGAAGGGTCGCGGGCTCGGGCACGCGCTGGTGGAGGAGCTGATCCTCCGGGCGCGCCAGATGGGTCTGCAGCGCCTGTTCTGCCTGACCTTCGAGGTGGAGTTCTTCGCCGCCCACGGGTTCCACGAGATCGACGGCACGCCCGTGACCGGCGAGGTGTACACCGAGCTGCTGCGGTCGCACGACGACGGCGTCGCAGAGTTCCTCGACCTGGCGCGGGTGAAGCCGAACACCCTCGGCAACACCCGCATGCTGCTGGATCTCTGAMHDHQNAPFRIRPALPADIRGVRDLVAPYAAERILLAKELVGYYESVQEFLVADAGPDGLVGCGALHVMWSDLAEIRTLAVDPTWKGRGLGHALVEELILRARQMGLQRLFCLTFEVEFFAAHGFHEIDGTPVTGEVYTELLRSHDDGVAEFLDLARVKPNTLGNTRMLLDLPGPT0014241_319DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014241-argA-K00619NANA
AK018_049941071lacI_1COG1609Lactose operon repressorGTGACCGAGCGGACCACCGAGGACCCGGACGCCGCTGCGTCTACGGCCGTCCGCCCGCTCCCCCCAGCGCCCGTCCGACCGGTCTCGATGGCCGACGTCGCACGCCGCGCCGGCGTGTCCTCGCAGACGGTCTCCCGCGTGTCGAACGGGTACCCCGGCGTCGTCGAGGCGACGCGGCGCCAGGTCCTCGACGCGATGGCCGAGCTGGGCTACCGACCGAACAGCGCGGCGCGGGCGCTGCGCAGCGGCCGGTTCCGCACGATCGGCGTCATCCTCTTCTCGCTGTCCACCACCGGCAACGTGCGCACCCTCGAGGCCATCGCGACGTCCGCCGCCGCCCAGGGCTACGCCATCACGGTGATCCCGGTCGAGGCCCCGACCCAGGGCGGCGTGCGCGGCGCCTTCACCCGGCTCGGCGAGCTCGCCGTGGACGCCGTCATCCTGCTGATGGAGGTGCACCTGCTCGACGCGGCCGACCTCACCCTGCCGGACGGCGTCCCCGTCGTCGTGGCCGACTCCGACGCCGACGACCGGTACCCCGTCATCGACACCGACCAGGCGGACGGCAGCCGCACGGCCGTGCAGCACCTGCTCGACCTCGGTCACCGCACGGTCGTGCACCTGGCCGGCCCGGAGCAGTCCTTCGCCGGCCAGCGTCGCGAGGACGCGTGGCGGCGCACTCTCACCGACGCCGGGTGCGAGGTCCCCGAGGTCTACCGGGGGGACTGGAGCGCCTTGTCCGGGTACGAGGTGGGCCGCGAGATCGCGCGCACCGACGCCACCGCCGTCTTCGCCGCCAACGACCAGATGGCGCTCGGGCTGATGCGTGCCCTCGCCGAGTCGGGCCGCGCGGTCCCCGACGACGTCAGCGTCGTCGGGTTCGACGACGTCCCCGACGCCGTGGCCTACCGGCCGCCGCTGACCACCATCCACCAGGACTTCGCCGAGGTCGGACGGCGGTGCGTCGAGCTCGTGCTGCACCGGCTCGACGCCGGAGCGGCCGACCACGGCGCCACGCTCGTCCCCGTCCGACTCGTCGAGCGGGCGAGCACCGCCCCGCCGCCCACCTGAMTERTTEDPDAAASTAVRPLPPAPVRPVSMADVARRAGVSSQTVSRVSNGYPGVVEATRRQVLDAMAELGYRPNSAARALRSGRFRTIGVILFSLSTTGNVRTLEAIATSAAAQGYAITVIPVEAPTQGGVRGAFTRLGELAVDAVILLMEVHLLDAADLTLPDGVPVVVADSDADDRYPVIDTDQADGSRTAVQHLLDLGHRTVVHLAGPEQSFAGQRREDAWRRTLTDAGCEVPEVYRGDWSALSGYEVGREIARTDATAVFAANDQMALGLMRALAESGRAVPDDVSVVGFDDVPDAVAYRPPLTTIHQDFAEVGRRCVELVLHRLDAGAADHGATLVPVRLVERASTAPPPTPGPT0017992_8402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_049952043beta-galIIIBeta-galactosidase IIIATGACCGACGCACGCCGTCTGCTCGGCGGTCCCGAGCTCGACATCCCGCCACGGATCGGCTTCGGCGCCGACTACAACCCCGACCAGTGGCCGCGCGAGGTGTGGGCCGAGGACGTCCGGCTCATGCAGGCTGCCGGTGTCAACGTCGTCTCGCTCGCCATCTTCTCCTGGGCGCGGCTGCAGCCCGGGCCGGACGAGTGGGACTTCGCCTGGCTCGACGAGGTCATGGACCTGCTGCACGCCCACGGCATCAGCGTCGACCTCGCCACCGCGACGGCCTCGCCCCCGCCGTGGCTGACCGCACTGCACCCCGAGATCCTGCCCGTGACCCGGACCGGGGAGACCCTGTGGCCGGGCGGCCGCCAGCAGTGGCGGCCCACCTCGCCGGTGTTCCGCCGGTACGCCCTGGCCCTGGTCGAGAGGCTGGCCGAGCGCTACGGCGACCACCCGGCGCTCGCCGGGTGGCACGTCAGCAACGAGCTCGGGTGCCACAACGCGCATGACTACTCCGACGACGCCGCGCGTGCCTTCCGGCACTGGCTCCAGGAGCGCTACACGACGCTGGACCGGCTCAACGAGGCCTGGGGCACGGCCTTCTGGTCGCAGCGGTACACGGACTGGGAGCAGATCCTGCCCCCGCGGCTCGCGGCGTCGTACCCGAACCCCACCCAGCAGATCGACTTCAAGCGGTTCTCCTCGGACGCCCTGGTCGAGCACCTGCGCGTCGAGCGCGACGTGCTGCGCCGCATCACGCCCGGGATCCCCGTGACCACCAACTTCATGGTGATGGGCGAGACCCAGGCCATGAACTACCCGACCTGGGCGCCCGAGATCGACTTCGTGTCCAACGACCACTACCTCCACCCCGGCCCGCAGGGCATGGACGAGCTGTCGTTCTCCGCGAACCTCACCAGCGGCGTGGCCGGCGGAGACCCCTGGTTCCTCATGGAGCACTCCACGTCAGCCGTGAACTGGCAGGAGATCAACACTCCCAAGCTGCCCGGCGAGCTCGCGCGGGACTCGCTCACGCACGTGGCGCACGGTGCCGACGCCGTCTGCTTCTTCCAGTGGCGGCAGTCCGCGGCCGGGGCCGAGAAGTACCACTCGGCGATGGTCCCGCACGCCGGCGAGGACAGCCGGCTGTTCCGGGACGTCGTCGCGCTCGGCGAGACGCTGGCCGGCCTCGCCCCCGTCGTGGGTGCGGGTCGTGCCCGAGCACGGGTGGCGATCCTGTTCGACTGGGAGTCCTGGTGGGCGAGCGAGCTCGACTCGCACCCCACCGAGCGGCTCCGCTATCGCCAGGAGGCCCTGGACTGGTACTCCGCGTTCCTCGCCGCGGGCCACCGGGCGGACGTGGTCCCCGCGGCGACGGACGTCGACGGGTACGACGTCGTCGTGGCCCCGGTGCTGCACATGGTCTCGGCCGAGCGCGCCGCGAGCCTGCGGGAGTTCGTCGAGCAGGGCGGCCACCTGGTCACCACCTACTTCTCGGGCGTCGTGGACACCGACGACCACATCTGGCTGGGCGGCTACCCCGGTGCCTTCCGCGACCTGCTCGGCATCCGTGTCGAGGAGTTCGCGCCGCTGCGCGACGGGGACGACGTCCGCCTCGACGACGGCTCGGTCGGCACGCTGTGGGCCGACCCGGTCGACCTGGTCGCCGAGGACGTCGAGGTGCTCGCGTCCTACGCCGACGGCCGGTACGCCGGCCGACCGGCGATCACCCGCCGTCCGGTCGGCCAGGGCTCGGCCGCCTACGTCGCCACGCGGCTCGGGCCCCACGGGCTCGTGCCCGTCGTCGAGCGGCTGCTCGCCGACGCCGGCGTGACCAGCGAGCTGCCGACGACGCTGCGGGGGAAGGTCGAGCTCACGGTGCGACGCCGGGACGACGTCACGTTCTGGTTCCTCGTCAACCGCACCGCGGAGCCGCTCCCGCTGGCGGGGATCGAGGGAGAGGTCCTGGTCAGCACCGGGGCCGGGGACGACGCCGGACCCGACCATCTGCAGCCCCGCGGCGTCGTCGTGCTGCGCCGACCCGCCTGAMTDARRLLGGPELDIPPRIGFGADYNPDQWPREVWAEDVRLMQAAGVNVVSLAIFSWARLQPGPDEWDFAWLDEVMDLLHAHGISVDLATATASPPPWLTALHPEILPVTRTGETLWPGGRQQWRPTSPVFRRYALALVERLAERYGDHPALAGWHVSNELGCHNAHDYSDDAARAFRHWLQERYTTLDRLNEAWGTAFWSQRYTDWEQILPPRLAASYPNPTQQIDFKRFSSDALVEHLRVERDVLRRITPGIPVTTNFMVMGETQAMNYPTWAPEIDFVSNDHYLHPGPQGMDELSFSANLTSGVAGGDPWFLMEHSTSAVNWQEINTPKLPGELARDSLTHVAHGADAVCFFQWRQSAAGAEKYHSAMVPHAGEDSRLFRDVVALGETLAGLAPVVGAGRARARVAILFDWESWWASELDSHPTERLRYRQEALDWYSAFLAAGHRADVVPAATDVDGYDVVVAPVLHMVSAERAASLREFVEQGGHLVTTYFSGVVDTDDHIWLGGYPGAFRDLLGIRVEEFAPLRDGDDVRLDDGSVGTLWADPVDLVAEDVEVLASYADGRYAGRPAITRRPVGQGSAAYVATRLGPHGLVPVVERLLADAGVTSELPTTLRGKVELTVRRRDDVTFWFLVNRTAEPLPLAGIEGEVLVSTGAGDDAGPDHLQPRGVVVLRRPAPGPT0017815_313DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_04996870mutY_2COG1194Adenine DNA glycosylaseGTGGATGCTCTGGTCGAACGAGTCACGGCATGGTTCGCCGACGCCGCCCGCGACCTGCCCTGGCGCGCCCCGGACCGGACGCCCTGGGGCGTGCTCGTCAGCGAGGTCATGCTCCAGCAGACCCCCGTGGTCCGCGTCGAGCCGGTCTGGCACGAGTGGATGGGACGCTGGCCGAGCCCGGCCGACCTCGCCGCGGCGCCGACGTCCGAGGTGCTGCGCGCCTGGGGCCGGCTCGGCTACCCCCGCCGAGCGCTGCGGCTGGCCGACTGCGCCCGGACGATCGTCGAGCGCCACGGCGGCGCCGTGCCGTCCGACGAGGAGGCGCTGCGAGCGCTGCCGGGTGTCGGCGAGTACACCGCCGCGGCGGTCCGGGCCTTCGCCTTCGGGCGCCGGGCCGTCGTGGTGGACACGAACGTGCGCCGCGTGCAGGCACGCGCGGTCACCGGCGACGCCCTCCCGGCGCCGTCGTACACGGCGGCCGAGCGTCGGCTCGCCGCGTCCCTGGTGCCCGACGGCGACACGGACGCCGCCGCGTGGGCCGCGGCCTCGATGGAGCTCGGTGCCGTGGTGTGCACGGCCCGTGTCCCGCGGTGCGACGTCTGCCCGGTCCGCGACCTGTGCGCCTGGCGTCTGGCGGGCTTCCCCCCGGACGAGCACGCCCACCGCCGGCGCACCCAGTCGTGGGACGGGACCGACCGGCAGGTGCGTGGTCGGGTGATGGCGGCGCTGCGCGGCGCCGACGGCCCCGTGCACCGGGCCCTGCTGTCCGACGCGGGGCCGGAGGCGCAGCTCGACCGCTGCCTGGCCGGTCTGGTCGAGGACGGGCTGGCCGAGACCGACGACGTCGGTCGCTTCATGCTCCCGGTCTGAMDALVERVTAWFADAARDLPWRAPDRTPWGVLVSEVMLQQTPVVRVEPVWHEWMGRWPSPADLAAAPTSEVLRAWGRLGYPRRALRLADCARTIVERHGGAVPSDEEALRALPGVGEYTAAAVRAFAFGRRAVVVDTNVRRVQARAVTGDALPAPSYTAAERRLAASLVPDGDTDAAAWAAASMELGAVVCTARVPRCDVCPVRDLCAWRLAGFPPDEHAHRRRTQSWDGTDRQVRGRVMAALRGADGPVHRALLSDAGPEAQLDRCLAGLVEDGLAETDDVGRFMLPVPGPT0014770_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-SPORULATION_SIGNALLING,PGPT0014770-disA-K07067NANA
AK018_04997891hypothetical proteinGTGACGACCAACGGGCTGGTGGCCCCCGGGAGCACGCCGCGGCCCCGGTCGCGCACGGCCCCGGCGACGCGTCGACGGCGCACCCACCGCGGGTTCGCCGTCGTCCTGCTGGTGATCGGGCTGCTCGTGGGCACCGGGACGGCGGCGGGCTACGGCATCGGCCGGGCCGTGGACTGGGTCCGTGACGCCTGGCCCGAGCCGCCGCTGGAGTTGGTGGCCGACAAGGCCGCGCCGCCCGAGGCGCTCGACCCCGCGGGTGTCGCCGAGACCTGCGACCCCTCGGCGGTCCGCGCCGAGCTCACCGGGAACCGGACCTCTCTCGTGCTGGACGAGGCGATGTCGATGACGATGAGCGTGACCAACGGGGGACGGGTGCCGTGCCTGCTGGACGGGCACCGCTCGAGCATGCAGGTCGTCGTCACGGAGGCGGACGGCGGCGACCGTGTCTGGTCCTCGGCGGACTGCGTCGGAGGGGGCGAGGAGCTCGTCCTGCTCGGTACCGACCAGCGCTGGGAGCTGACGGTCCGGTGGACCGGCAGCGGCTCCACGCCCGACTGCGCGTCGGTGGGTGACGTCCCGGCCGGCGCCTACACGGCCTCGGTCCGGCTCGACGACGTCCCCGGGGTGCGGGGCGAGCCGCTCACGATCGCGGTGGAGGAGGCGCCGGAGCCCGAGCCGCAGGACGAGGAGGGCGCCCAGGCGGCCGACGGCGAGGCGTCCGGGGACACGGCGGACGGTACCCAGGAGCAGGCCGACGGCGAGACCTCCGAGCAGGACGGCCCCGGGGACAAGGCGTCCGAGAAGTCGGGCGGCCGGTCCGAGTCCGGGCAGAAGAAGGGGGACAAGCAGGACGGCGAGGCGTCCGACCGCGGCGGCCGGGGCGGGGACTGAMTTNGLVAPGSTPRPRSRTAPATRRRRTHRGFAVVLLVIGLLVGTGTAAGYGIGRAVDWVRDAWPEPPLELVADKAAPPEALDPAGVAETCDPSAVRAELTGNRTSLVLDEAMSMTMSVTNGGRVPCLLDGHRSSMQVVVTEADGGDRVWSSADCVGGGEELVLLGTDQRWELTVRWTGSGSTPDCASVGDVPAGAYTASVRLDDVPGVRGEPLTIAVEEAPEPEPQDEEGAQAADGEASGDTADGTQEQADGETSEQDGPGDKASEKSGGRSESGQKKGDKQDGEASDRGGRGGDNANANANANA
AK018_049981086disA_2COG1623DNA integrity scanning protein DisAGTGGCCCCCTCCATCGCGCAACCCGACGCCCTGCTGCGGGAGACGCTTGCCGCCGTCGCGCCGGGCACCGAGCTCCGCGACGGTCTGGAGCGCATCCTGCGGGGCCGCACCGGCGCCTTGATCGTGCTCGGCCTGGACAAGACGGTCGAGGAGATCTGCTCCGGCGGGTTCGAGCTGGACGTCGAGTTCTCCGCGACGCGCCTGCGCGAGCTGTCCAAGATGGACGGCGCGGTCGTGCTCGACCGTGACGCCACCCGCATCCGCCGCGCCGCCGTCCAGCTGCTGCCGGACCCGACCATCGAGACCAGCGAGTCGGGCACCCGGCACCGGACCGCCGAGCGGGTCGCGAAGCAGACGGGGTTCCCCATCGTCTCGGTCAGCCAGTCGATGCGGATCGTGGCGATCTACACCGGGTCGGTGCGTCACGTGCTGGAGGACTCCGACACCATCCTGGGCCGCGCCAACCAGGCCCTGGCCACCCTCGAGCGCTACCGCTCCCGCCTCGACGAGGTCTCCGGCACGCTGTCCGCGCTGGAGATCGAGGACCTGGTCACCGTGCGGGACGTCTGCGCGGTGGTCCAGCGCCTCGAGATGGTCCGGCGCATCTCGGACGAGATCGACGGCTACGTGGTCGAGCTCGGCACCGACGGGCGCCTGCTCGCGCTCCAGCTCGACGAGCTGCTCGGCGGCATCGGCTCGGACCGCGACCTCGTCGTGCGCGACTACGTCGACGTCGAGCGCACCGGCCGCAGCCTGACGGCCGTGCACGCCGACCTGGCGCGGCTCGACTCCTCCCAGCTCCTCGACCTGTCGGAGATCGGCCGGGTCCTGCGGATGCCCGGTGCGGGCGTCGCGCTCGACGCCGCCGTGGCGCCGCACGGCTACCGGCTGCTGTCCAAGGTCCCGCGCCTGCCCGGCACCATCGTCGAGCGTCTGGTCGCCCACTTCGGGGGCCTGCAGAAACTGCTCGCCGCGAGCGTCGACGACCTCATGAGCGTCGAGGGCGTCGGGGACCACCGGGCACGCGCCGTCCGCGAGGGCCTGTCGCGTCTGGCGGAGTCCAGCATCCTCGAACGGTACGTCTGAMAPSIAQPDALLRETLAAVAPGTELRDGLERILRGRTGALIVLGLDKTVEEICSGGFELDVEFSATRLRELSKMDGAVVLDRDATRIRRAAVQLLPDPTIETSESGTRHRTAERVAKQTGFPIVSVSQSMRIVAIYTGSVRHVLEDSDTILGRANQALATLERYRSRLDEVSGTLSALEIEDLVTVRDVCAVVQRLEMVRRISDEIDGYVVELGTDGRLLALQLDELLGGIGSDRDLVVRDYVDVERTGRSLTAVHADLARLDSSQLLDLSEIGRVLRMPGAGVALDAAVAPHGYRLLSKVPRLPGTIVERLVAHFGGLQKLLAASVDDLMSVEGVGDHRARAVREGLSRLAESSILERYVPGPT0014770_217DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-SPORULATION_SIGNALLING,PGPT0014770-disA-K07067NANA
AK018_049991455radA_2COG1066DNA repair protein RadAGTGGCGCCGCCTAGCGTGACCTTCGTGAGCACCACGACCTCCTCGCGCGCGGGCCGCGCCAAGAGCTCCCGGCCGACCTTCCGCTGCACCGAGTGCGGCTGGACGACGGTGAAGTGGGTGGGTCGCTGCGGAGAGTGCCAGGCGTGGGGCACCGTCGCCGAGGAGGGTCCGGCGGCCGCCGGGCCGCGCACGACGGCGGTGAACCCGGTGCGCTCGGCCGCCCGGCCGATCGCGGAGATCGACGTCGACGCGGCACGCGCCACCCCGACGGGCGTGGCGGAGCTGGACCGCGTCCTGGGCGGCGGGCTGGTGCCGGGAGCGGTCGTCCTGCTCGCCGGCGAGCCCGGCGTCGGCAAGTCCACGCTGCTGCTGTCCGTCGCCTCGAACGCGGCGCGCGGCGCCGACGGCGAGGGCCCGCGCACGGTGCTGTACGTGACCGGCGAGGAGTCGGCCGGTCAGGTGCGGCTGCGCGCCGAGCGGATCGGCGCGCTGGCCCCCACCCTGCTCCTGGCGGCGGAGACCGACCTGGCCACCCTGCTCGGCCACCTGGACGCCGCCGACCCCGCGCTGCTCGTCGTGGACTCGGTGCAGACGATCGCCTCCGCCGAGGTCGAGGGGGTACCCGGCGGCGTCAGCCAGGTGCGCGAGGTCGCCGGCGCGCTCATCGCCGCCGCGAAGGAGCGGCAGGTCCCGGTGCTCCTGGTCGGGCACGTGACGAAGGACGGCGCCGTCGCCGGCCCGCGGACCCTGGAGCACCTGGTCGACGTCGTCTGCCAGTTCGAGGGGGACCGGCACTCCCGGCTGCGGATGGTCCGGGCGGTCAAGAACCGTTTCGGCCCGACCGACGAGGTCGGGTGCTTCGACCTGTCCGAGTCGGGCATCGAGGGGCTGAGCGACCCGAGCGGGCTGTTCCTCTCCCACCTGGGGGCCGGCGTGCCGGGCACCTGCGTGACGGTCACGCTGGAAGGACGTCGTCCGCTGGCGCTGGAGATCCAGTCGCTCGTGGCGCCGTCGCCCCTGGCCAACCCGCGCCGAGCGACCAGCGGCGTCGAGTCGCAGCGGCTCGCGATGATCCTCGCGGTGCTGCACCGGCACGCCGGCCTGCGCCTCGCCGACGCCGACGTGTACGCCTCCACGATCGGCGGGGCCCGGGTCACGGAGCCCGCCGCCGACCTGGCCACCGCCCTGGCGATCGTCTCCGCACGCAACGGCGAGGCGCTGCCCGCCGGCACCGTCGCCGTCGGGGAGGTCGGGCTCGCCGGCGACATCCGTCCGGTGACGGGTCTGGAGCGGCGGCTCACCGAGGCGGCCCGGCTCGGGTTCAGCCGCGCCGTCGTCCCGGCAGGCGTCTCGGTCCGCGCGCCGGCGGGTCTGCGGCTGGCCGAGGCGCGGCACATCGCCGAGGCCGTCGAGCTGGCCTCCGCCGCGCCGGCCGAACCCGGCCGTAGCCGCTGAMAPPSVTFVSTTTSSRAGRAKSSRPTFRCTECGWTTVKWVGRCGECQAWGTVAEEGPAAAGPRTTAVNPVRSAARPIAEIDVDAARATPTGVAELDRVLGGGLVPGAVVLLAGEPGVGKSTLLLSVASNAARGADGEGPRTVLYVTGEESAGQVRLRAERIGALAPTLLLAAETDLATLLGHLDAADPALLVVDSVQTIASAEVEGVPGGVSQVREVAGALIAAAKERQVPVLLVGHVTKDGAVAGPRTLEHLVDVVCQFEGDRHSRLRMVRAVKNRFGPTDEVGCFDLSESGIEGLSDPSGLFLSHLGAGVPGTCVTVTLEGRRPLALEIQSLVAPSPLANPRRATSGVESQRLAMILAVLHRHAGLRLADADVYASTIGGARVTEPAADLATALAIVSARNGEALPAGTVAVGEVGLAGDIRPVTGLERRLTEAARLGFSRAVVPAGVSVRAPAGLRLAEARHIAEAVELASAAPAEPGRSRPGPT0014905_543DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014905-radA-K04485NANA
AK018_05000663hypothetical proteinATGGCCGACCGCAAGCCGGGGTACATGACCCCGGGATTCCGGACACCGGGGGAGAAGGTGCACCAGAAGAGCTCACGTGCGGCGCAGGTGCGCCGCCGCCGCGTCGTCCTGGCCGTCGTGCTCCTCGTCGTGGCCGCCGTCGCCGTCGTCACCGCGTTCTTCTGGCCCGGGTTCGCCCGGCAGGAGGCCGAGCCCCTCCCGGAGGTCACCGTCACCGCGGCCCCGCCGACGCCCACGGCCGAGGCGAGCCCGCTGCCCGAGGACGCCACCGACTTCCTGTCCGCGATGCCGGACTCCGCGCTGCAGCTCGTGCGTCTCGACACCGCCGAGGGCGGGTGGATCGAGGAGGTCGACGCCGTCGAGGCGTGGGAGATCGTGTACGCCGACGGGTCCGAGGGCGGTGAGCAGGTCGACCTCGTCACCGGTCAGTGGCCCGACGGGGACGCGGCCGCCGAGGTCTACACCTCCTTGCTGCAGGCCGCCGGCGAGCCGGTCGCCGAGGGGGACGTGACGGTCGGCGGCGAGGCGGTCGGCGACTACGCCGTCACCCCCGGGTCGGCGGCGGGCGAGTCCGTGGTCACCTGGCGCAACGACACGGCCGTCTTCCAGGCCACCGGCCCCGACCAGCTCGTCCAGGACTTCTACGAGACCTTCCCGATGTGAMADRKPGYMTPGFRTPGEKVHQKSSRAAQVRRRRVVLAVVLLVVAAVAVVTAFFWPGFARQEAEPLPEVTVTAAPPTPTAEASPLPEDATDFLSAMPDSALQLVRLDTAEGGWIEEVDAVEAWEIVYADGSEGGEQVDLVTGQWPDGDAAAEVYTSLLQAAGEPVAEGDVTVGGEAVGDYAVTPGSAAGESVVTWRNDTAVFQATGPDQLVQDFYETFPMNANANANANA
AK018_05001828proC_2COG0345Pyrroline-5-carboxylate reductaseGTGAGTACGCAGATCGCCGGGACGAGGGTCGCCGTCGTGGGGACCGGGACGATGGCGGAGGCCGTCCTGGCCGGTGCCCTGGCCTCGGGACTCGAGCCGGCCGACGTCGTGGCCACCGCGCGGCGCGAGGCCCGCGGGGCCGAGCTGGCCCGGACCTACGGCGTGGCCACCACGACGGACAACGCCGCCGCCGTGGCCGACGCACGGGTCGTCCTCGTCGGGGTCAAACCCAAGGACGTCGCCGCGGTGCTCGACGAGATCGGTCCGGCCCTGCCCGCGGACGCCGTGGTCGTCAGCGTCGCCGTCGGCCTGCCGCTGTCCCTGTACGCCCGGCACCTGCCCGACGGCCAGCCCGTGGTGCGCACCATGCCCAACACGCCGGCGCAGGTCGGCGCCGGGGTCACCGCCGTCGTGCCCGGACCGACGACCGCGGAGCCCGACGTCGCCCTCGTCGAGGCCCTGCTGGCCGGGACCGGGCAGACCCTGCGCATCACCGAGAAGGAGATCGACGCGTTCGGCGCGCTCGCCGGGTCCGGCCCCGCCTACGTGTTCTACGTCGTGGACGCCATGGCCGAGGCCGGCGTGCTCATGGGCCTGACCCGCGAGGTGGCGCGCAGCCTGGCCGTGCAGACGGTGCTCGGCTCCGGGCGCCTCCTCGCCGAGACGGGGGAGCACCCGGCGATCCTGCGCGAGAAGGTCTCCTCGCCCGGCGGCACCACGATCCAGGCGCTCAAGCGGCTCGACGACGGCGGCGTCCGGGCGGCCTTCCTCACCGCCCTGGAGGCGGCACGGGACCGCTCGGCGGAGCTCGGTCGCGAGCTCGGCTGAMSTQIAGTRVAVVGTGTMAEAVLAGALASGLEPADVVATARREARGAELARTYGVATTTDNAAAVADARVVLVGVKPKDVAAVLDEIGPALPADAVVVSVAVGLPLSLYARHLPDGQPVVRTMPNTPAQVGAGVTAVVPGPTTAEPDVALVEALLAGTGQTLRITEKEIDAFGALAGSGPAYVFYVVDAMAEAGVLMGLTREVARSLAVQTVLGSGRLLAETGEHPAILREKVSSPGGTTIQALKRLDDGGVRAAFLTALEAARDRSAELGRELGPGPT0014225_2001DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014225-proC-K00286NANA
AK018_05002612betI_3HTH-type transcriptional regulator BetIATGTCCGACCAGCCGCGCCGCGGACGCCGTCCTGCCGGTCACAGCACCCGCAGGACGGTGCTGGAGGCCGCCCGGGCGGAGTTCGACGAGCGGGGCTACGAGGCCGTGTCCGTGCGCGGCGTGGCCCGGCGGGCCGGTGTCGACCCGGGCACCGTGCGGCACTGGTTCGCCGGCAAGACCGAGCTGCTCGCCGCCACGCTGGGCCTGACCGACATCGACCCGTCGGCCATCACGCGGTCCGCCGCCGAGGGCCCGGTCGAGGACCTGGGCGAACGGCTCGTGCGGGCGGTCGTGCGGGCGTGGGACGCCGACGGCGGCGCGACGGTGCGCATGGTGGTCCCGGCGATCATGGCCGACCCGGGGCTGCGGACCCTGCTGCAGCGGTTCCTGGGCGCCGAGGTGCTCGGGCCGATCGTGCGGCGGCTGGACGTCTCGGACGCCGAGCTGCGCACCACGCTGGCCGGGTCGCAGGTGGCCGGGCTGATGATGCTGCGCTACGTGGTCGGCGTCGAACCGCTGGCGTCCCTGCCGGCCGACGAGCTCGCGCCGCTGGTGGGTCCGACGCTGCAGCGCTATCTCACCGGGGACCTGGACGCGACGACTGCTCGATGAMSDQPRRGRRPAGHSTRRTVLEAARAEFDERGYEAVSVRGVARRAGVDPGTVRHWFAGKTELLAATLGLTDIDPSAITRSAAEGPVEDLGERLVRAVVRAWDADGGATVRMVVPAIMADPGLRTLLQRFLGAEVLGPIVRRLDVSDAELRTTLAGSQVAGLMMLRYVVGVEPLASLPADELAPLVGPTLQRYLTGDLDATTARNANANANANA
AK018_05003876btuD_20Vitamin B12 import ATP-binding protein BtuDATGACCGTCCTCGTCCGCGCCGACGACGTCACCAAGCGATTCGGCCGCTTCGCCGCCGTGGAGGACATGTCCCTGGAGGTCCGTCCCGGGGAGATCGTCGGCCTGCTCGGGTCCAACGGCGCCGGCAAGACCACCCTCCTGCGCGTGCTGCTCGGGCTCGAGGCCGCCGACGCGGGCCGCGTCGAGGTCCTCGGCGACCCGCCGGCCGACGCCGACCGGCACGCCCTCGGCTACGTGCCCCAGGGGCTCGGGCTCTCGCAGTCGCTCAGCGTGCGGCAGAACGTCGACTTCATGGCCGCCACCTTCTCGGTGCGCCACGCCCCGGCGCTGCCCGCGGCCCTGCAGTCCGTCGCCGGCGAACCGGTCGGGCGCATCGGCCTCGGTCGCCAGCGCCAGCTCGCCTTCCACTGCGCCCTGCTGCACTCCCCGCGGCTGCTCGTGCTCGACGAGCCGACCTCCGGGGTCGACCCGCTCGCCCGGGCGCGGCTGTGGGACACGATCCACGCCCAGGCCGAGGCAGGGACCGGTGTGCTCGTCACGACGCACTACATGCAGGAGGGCGAGCAGTGCGACCGCCTGGTGATCATGTCCCGGGGACGCGGCGTGGCCCGCGGCACGGTCGACGACATCACGGCGTCCTCGCGAACCGCCGTCGTGCGCTCCGAGGACTGGGCCGCGGCCTTCGCCGCGCTGGACGACGCCGAGCTGCCCGTCGTGCTTGCCGGCCGCACCAGCCGCGTGGCCGGGACGGAGCCCGGGGACGTGCGGGCCGTCCTGGACGCGGCGGGCGTGGACGCCGAGGTCACCGCGGAACCGGCCACCCTCGAGGAGGCGATGGTGCTCATCGAGCAGTCGTCGCGTCCAGGTCCCCGGTGAMTVLVRADDVTKRFGRFAAVEDMSLEVRPGEIVGLLGSNGAGKTTLLRVLLGLEAADAGRVEVLGDPPADADRHALGYVPQGLGLSQSLSVRQNVDFMAATFSVRHAPALPAALQSVAGEPVGRIGLGRQRQLAFHCALLHSPRLLVLDEPTSGVDPLARARLWDTIHAQAEAGTGVLVTTHYMQEGEQCDRLVIMSRGRGVARGTVDDITASSRTAVVRSEDWAAAFAALDDAELPVVLAGRTSRVAGTEPGDVRAVLDAAGVDAEVTAEPATLEEAMVLIEQSSRPGPRPGPT0006725_273DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_05004813btuD_21Vitamin B12 import ATP-binding protein BtuDATGCCCGGCGCCCGCGACCTCACCGTCGAGCTGGGCGGCACGACGGCGCTGTCCGGCGTGAGCGTCGACCTCCCTGCCGGTCAGGTGACCGCCGTCGTCGGCGGCGACGGAGCCGGCAAGACGACGCTGCTGCGTGCCCTGCTGGGCCGCGTCGCCACCAGCGGCGGCACGGTGGACGTCCCGCCCCCGGAGCGCATCGGCTACGAGCCGTCCACGTCCGGGGTCTGGCCCACCCTGTCGGTCAGCGAGAACGTCGAGTTCGTCGGCTCGGCCTACGGGCTCTCCGGCGACCGGCTCCGCTCGCGCGCCGGCACGTTGCTGGCGACGGCCGGGATCGACGACGTGCCCGACCGCCTCGGTCGGGACCTGTCCGGCGGGATGCGGCAGAAGCTCGGGTTCTGCCTGGCGATGCTGCACTCCCCCGACCTGCTGCTGCTGGACGAGCCGTCGACCGGCGTCGACCCGGTCAGCCGGGTCGAGCTGTGGCGACTCGTCACGGCCGCGGCCCGGGACGGGGCCTCCGTCCTGATGACCACGACCTACCTCGACGAGGCCGAGCGGGCTGCGACGGTCGTGGCCCTGCAGGAGGGCCGTGTCCTCGCGTCCGGCGGGCCCGACGACGTCGTCGGCACCGTGCCGGGGACGGTCTCGGTCGGCGACGCCCCGCCCGGTGGGCACCGCGCCTGGCGTCGCGGGCGCTCGTTCCACAGCTGGACGCCCGACGGCGAGGAGCCCCCGGGCCGACCGGTCGTGCCGGACCTGGAGGACACCCTCATCGCCCTGACGCTCGCCCGATCCGAGGAGCCCCGATGAMPGARDLTVELGGTTALSGVSVDLPAGQVTAVVGGDGAGKTTLLRALLGRVATSGGTVDVPPPERIGYEPSTSGVWPTLSVSENVEFVGSAYGLSGDRLRSRAGTLLATAGIDDVPDRLGRDLSGGMRQKLGFCLAMLHSPDLLLLDEPSTGVDPVSRVELWRLVTAAARDGASVLMTTTYLDEAERAATVVALQEGRVLASGGPDDVVGTVPGTVSVGDAPPGGHRAWRRGRSFHSWTPDGEEPPGRPVVPDLEDTLIALTLARSEEPRPGPT0006725_273DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_050051062ybhRCOG0842putative multidrug ABC transporter permease YbhRGTGCGCGCGATGATCGTCAAGGAGTTCCGCGAGCTGCGCCGGGACCGGCGCACCGTCGCGATGCTCGTCGCCCTGCCCCTGCTGATGCTGGTGATCTTCGGGTACGCCGCGAACTTCACCGTCGACGAGCTGAGGGTCGCCGTCGTGGGCGACCTGGCCGAGCAGGCCGAGCAGCAGATCACCCAGCAGGTGCCCGCCGACGCGCCCGCCACGCTGGACCTGGTCGACGTCGACCCGGACGCCGGCGCGCAGCAGGCACGCGACGCGCTCCGCGACGACGAGGTCGACCTCGCCATCCTCACCGGGGACGCGTCGGACGCCGACGGCGGCCGCCCCACCGTCCTCGTCGACGGCTCCAACCTCTTCGCCGCCCAGAGCGCGTCGGTCCTGGTCGCCCAGCTCGGCGACCGCGTCGAGTCCGAGATCCTCTACAACCCGGACCTCGAGACCTCCTGGGTGATGGTCCCGGCGATCATCGGCCTGATCCTGACCTTCATCGGGACGATCATCACGAGCATCGGGCTCGTCAGGGAACGGGAGGCGGGCACCCTCGAGCAGCTCGCGGTGATGCCGCTGTCCCCGACGTCGGTCGTGACGGGCAAGATCTCGCCGTACTTCCTGCTCGCCTGCTTCGACATGGTCCTGGTGACCCTGCTCGGCGTCTGGCTGTTCGGGGTCCCGTTCCGCGGCTCGGTACTGCTCTTCGCCATCGGCGCGGCGATCTTCCTGTTCGCCGTCCTCGGCATCGGCGTGCTCATCTCGACGGTCTCGCAGACCACCGGCCAGGCCGTGCAGGTCGCCCTGATGACGATGCTGCCGCAGATCCTGCTGTCCGGGATGATCTTCCCCCTGGACGCCATGGCCCCGGGCGTGCGCTGGATCGGCTATCTGCTGCCGCTGACGTGGTTCGTCAAGCTCTCCCAGGGCATCATGCTGCGCGGCGCCGGCTGGGAGTCGATGTGGCTGCCCGTCGTCGTCCTGACCGGGATGGCGATCCTCGTCTTCGGCGTCGCGGTGATCCGCCTGCGCCGCGACATCGCCCCGGCACGGGGAGCCCGCTGAMRAMIVKEFRELRRDRRTVAMLVALPLLMLVIFGYAANFTVDELRVAVVGDLAEQAEQQITQQVPADAPATLDLVDVDPDAGAQQARDALRDDEVDLAILTGDASDADGGRPTVLVDGSNLFAAQSASVLVAQLGDRVESEILYNPDLETSWVMVPAIIGLILTFIGTIITSIGLVREREAGTLEQLAVMPLSPTSVVTGKISPYFLLACFDMVLVTLLGVWLFGVPFRGSVLLFAIGAAIFLFAVLGIGVLISTVSQTTGQAVQVALMTMLPQILLSGMIFPLDAMAPGVRWIGYLLPLTWFVKLSQGIMLRGAGWESMWLPVVVLTGMAILVFGVAVIRLRRDIAPARGARPGPT0006730_8092DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_05006669ktrA_2COG0569Ktr system potassium uptake protein AGTGGCAGAGAAGAAGGACGACCGCGACGCCGGCGTGCTGGTCATCGGGCTGGGCCGCTTCGGCTCGTCGTTGGCGACGACCCTGGACCGGCTCGGCCAGGACGTCCTCGCCGTCGAGAGCGACGACCGCCTCGTCACGCAGTGGTCGGGGCGCCTGCCGCTGGTCCAGGCGGACGCGTCCAACCCGGAGGCGCTCGAGCAGCTCGGTGCGCAGGACTTCGGCGTCGCGGTGGTCGGCGTGGGCACGGAGCTCGAGGCCTCGGTCCTCATCACCGGCAACCTCGTGGACCTGGGCACGCCGCAGATCTGGGCGAAGGCCGTCTCGGCCGAGCACGGCCGCATCCTGACCCGGATCGGCGCCCACCACGTCGTCTACCCCGAGTCCGACGCCGGTTCGCGGGTCGCGCACCTGGTCAGCGGCAAGATGCTCGACTACATCGAGGTGGAGGACGGGTTCACGATCGTCAAGATGCGTCCGCCGCGCGAGATGCAGGGCTTCACCCTGGCCCAGTCGGACATCCGCAAGAAGTACGGCATCACGGTGATCGGCGTGAAGTCGCCGGGCATCGAGTTCACCTACGCGACCCCGGAGACGCGGGTCAGCGCGAACGACCTGCTGGTCTGCTCCGGCCACGCCGACCTGCTGGAGCGGTTCTCGGCGCGGCCGTGAMAEKKDDRDAGVLVIGLGRFGSSLATTLDRLGQDVLAVESDDRLVTQWSGRLPLVQADASNPEALEQLGAQDFGVAVVGVGTELEASVLITGNLVDLGTPQIWAKAVSAEHGRILTRIGAHHVVYPESDAGSRVAHLVSGKMLDYIEVEDGFTIVKMRPPREMQGFTLAQSDIRKKYGITVIGVKSPGIEFTYATPETRVSANDLLVCSGHADLLERFSARPPGPT0002710_3509DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
AK018_050071395ktrB_4COG0168Ktr system potassium uptake protein BGTGGCACGATCGGTGCAGGACCGCGCGACCTCGGTCCGCGAATGGGTGGACCGGACGGCACGGGAGTACCCGGCACGTCTGGCCATGACCGTCTTCGCCGCCGTCATCACGCTGTTCACGCTGCTGCTCCTGCCGCCGTGGGCGACCGCGTCCGACACCGGGGCGCGGTTCGTGGACGCGTTGTTCACCGCGACGTCCGCGGTCTGCATCACCGGCCTGACGGTGGTGGACACCGCCACGTACTGGTCGGAGTACGGGCGCGCCGTCATCCTCGTCGGGATCAAGGTCGGAGGCCTGGGCGTCATGACGCTCGCCTCCCTGCTCGGGCTGGCGGTCTCGCGGCGCATCGGTCTGACGCAGAAGCTGCTGACCGCCTCGGAGACCAAGACCGGTACCACGCGGCTCGGTGAGGTCGGTTCCCTGATCCGGCTGATCATCGTGGTCTCCACCTCGATCGAGCTGGCGATCGCCCTGATCCTGCTCCCCCGCTTCATCGCCCTCGACGAGCACCTGGGGCTCGCCGTCTGGCACTCGACGTTCTACGGCATCTCGGCCTTCAACAACGCCGGCTTCGTGCCCACCGTGGACGGTCTGACGCCGTACGCCTCGGACTGGCTGGTCATCGTGCCGATCGTCGTGGGGGTGTTCATCGGCGCCCTCGGGTTCCCGGTGATGCTGAACCTCCTGCAGGCGCGCCGGTACGGGCGCCGGTTCGTGCGGCACCTGTCGCTGCACACCAAGCTGACGATCACGACCAGCGTGGCTCTCATGGTCGCGGGGTTCGTGACGATCGGGGCGATGGAGTGGGCGAACCCGGCCACGCTCGGCGGTCAGGACCTGCACACCAAGTTCCTCTCGGCCCTCACGGCGGCGGTGATGCCCCGCTCCGGCGGCTTCAGCACCTTCGACGTCGGCGAGATGCGGGCGGAGTCGTGGCTCATCACCGACGCACTGATGTTCGTCGGTGGCGGGTCCGCGTCCACGGCCGGCGGCATCAAGGTCACCACCCTGGCCGTCATGCTCCTGGCGATCGTGGCCGAGGCGCGCGGCGACCGGGACGTCGACGTCTTCGGCCGACGCATCCCGCGGGACACCCTGCGCCTGTCCATCGCGGTGGTGTTCATCGGCGCCACGATGGTGCTGGTGTCCTGCATCGCGCTGGTCCGGCTCACCGACTTCTCGCTCTCGCAGATCCTGTTCGAGGTCATCTCCGCCTTCGCGACGGTGGGACTGTCGACGGGGATCACCGGTGACCTGCCGGACGGCGCGAAGTACTGGTTGAGCGCCCTGATGTACCTCGGACGCGTCGGCACGATCTCGGTGCTCGGTGCGCTGGCGCTGCGCGACCGGCGCCGCGTCATACGCTTCCCCGAGGAGCGCCCCATCATCGGGTGAMARSVQDRATSVREWVDRTAREYPARLAMTVFAAVITLFTLLLLPPWATASDTGARFVDALFTATSAVCITGLTVVDTATYWSEYGRAVILVGIKVGGLGVMTLASLLGLAVSRRIGLTQKLLTASETKTGTTRLGEVGSLIRLIIVVSTSIELAIALILLPRFIALDEHLGLAVWHSTFYGISAFNNAGFVPTVDGLTPYASDWLVIVPIVVGVFIGALGFPVMLNLLQARRYGRRFVRHLSLHTKLTITTSVALMVAGFVTIGAMEWANPATLGGQDLHTKFLSALTAAVMPRSGGFSTFDVGEMRAESWLITDALMFVGGGSASTAGGIKVTTLAVMLLAIVAEARGDRDVDVFGRRIPRDTLRLSIAVVFIGATMVLVSCIALVRLTDFSLSQILFEVISAFATVGLSTGITGDLPDGAKYWLSALMYLGRVGTISVLGALALRDRRRVIRFPEERPIIGPGPT0002735_3394DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498NANA
AK018_050081176acuC_2Acetoin utilization protein AcuCATGTCGGTCGCCCAGTTGCTGTGGAGTCCCGAGCTGCTGCGCTACGACTTCGGCCCCGGTCATCCCATGGCACCGGCGCGACTCGACCTGACGATGCGCCTCGTGGAGGCTCTCGGGCTGCTCGACGCGCCCGGTCTCGAGGTCGTCGACCCGGTCTGCGCGCCCGACGAGGTCGTCGAGACGGTGCACGACGCCGAGTACGTCGCCGCCGTGCGGCGGGCGGCCGAGACGGGGGAGCCGGACGTCGCCCGCGGGCTCGGGACCGAGGACGACCCTGTGTTCCCGGCCATGCACGAGGCCGCTGCCCGTCTCGTCGGCGCCTCCGTCGGCGCCGCGGACGCCGTGTGGGAGGGCCGCGCCCAGCACGCGCTGAACATCGCGGGCGGCATGCACCACGCCCAGCGGGGTGCGGCGTCGGGGTTCTGCGTCTACAACGACGCCGCGGCCGCCGTGCAGCGCCTCCTCGACCGGGGCGCCGAGCGTGTCGCGTACGTCGACCTCGACGCCCACCACGGCGACGGCGTCGAGGCCATCTTCTGGGACGAACCGCGGGTGCTGACCTTCTCGATCCACCAGGACGGCCACACGCTCTTCCCGGGCACCGGGAACCCGGCCGACACGGGCGCCGGTCTGCACCACTGCACCGCGGTCAACGTGGCGGTCCCGCCGCGGACCGACTCCGCGCGCTGGCTGCGCGCCGTCGACGCGGTGCTGCCGACGGTCCTGCGCGAGTTCGCCCCCGACGCCATCGTGTCCCAGCACGGCGCCGATGCCCACGGCAACGACCCGCTCACCGACCTGTCGGTGGGGGTCCACGCCCAGAAGACGGCGGCGCACTGGGTGCACGAGCTGGCGCACGAGCTCTGCGACGGCCGGTGGGTCGCCCTGGGCGGCGGGGGCTACGCCGTCGTCGACGTCGTCCCCCTCGTCTGGGCGGCCCTGGTGGCCGAGGCGGCGCACGCGCCGCTCACGACGGGGATGCCGCTGCCGACGGCGTGGCGCGAGGCGGCCGAGGAGATGTCAGGGCTGCGGGCGGCCTCGATGCTGGGCCGGGGCGAGGTCTCCTGGCAGCCCTGGTCGCAGGGGTACGACCCCTCGGACCCGATCGACCGGGCCGTCCTCGCCACCCGACGGCACGTCTTCCCCGAGTTCGGGCTGGACCCGTACCTGGACTGAMSVAQLLWSPELLRYDFGPGHPMAPARLDLTMRLVEALGLLDAPGLEVVDPVCAPDEVVETVHDAEYVAAVRRAAETGEPDVARGLGTEDDPVFPAMHEAAARLVGASVGAADAVWEGRAQHALNIAGGMHHAQRGAASGFCVYNDAAAAVQRLLDRGAERVAYVDLDAHHGDGVEAIFWDEPRVLTFSIHQDGHTLFPGTGNPADTGAGLHHCTAVNVAVPPRTDSARWLRAVDAVLPTVLREFAPDAIVSQHGADAHGNDPLTDLSVGVHAQKTAAHWVHELAHELCDGRWVALGGGGYAVVDVVPLVWAALVAEAAHAPLTTGMPLPTAWREAAEEMSGLRAASMLGRGEVSWQPWSQGYDPSDPIDRAVLATRRHVFPEFGLDPYLDPGPT0008225_309DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008225-acuC-K04768NANA
AK018_0500999hypothetical proteinATGGGCTCCGTCATCAAGAAGCGCCGCAAGCGCATGGCGAAGAAGAAGCACCGCAAGCTGCTGCGCAGGACGCGTCACCAGCGTCGCAACAAGAAGTGAMGSVIKKRRKRMAKKKHRKLLRRTRHQRRNKKNANANANANA
AK018_05010816serB1_2COG0560Phosphoserine phosphatase SerB1ATGCCGTCTCATGCCGACTCCCCGGTCAGCCCGCCGGCGGCAGCCTTCTTCGACGTCGACAACACGATCATCCGCGGCGCCAGCTCGTTCCACCTGGCCCGCGCGCTCTACCGACGTCGGTTCTTCGGGACCGTGGACCTGCTCAGGTTCGGCGTGATCCAGGCCAAGTACCTGCTCTTCGGCGAGTCACGCTCCCAGATCGAGACCGTCCGCAGCCGCGCGCTGTCCCTCATCGCGGGCCGCTCGGTCGCCGAGATCACCGCCGTCGGCGACGAGGTGTACGACACCGTGCTGGAGCTGCGGATCTTCCCCGGCACCAAGCGACTCCTCGACGAGCACCTGGCCGCCGGCGACCAGGTCTGGCTCGTCACCGCCACCCCGGTGGAGATCGGCGGCCTCATCGCCCGCCGGCTCGGGGCGACCGGCTGCCTCGGGACGATCGCCGACCACGAGGGCGGGTACTACACGGGAGCCCTCGTGGGAGACCTCATGCACGGCGAGGCCAAGGGCGCGGCGGTGCGCGAGCTCGCCGACCGCGAGGGCCTGGACCTGGAGGGGTCCTACGCCTACGGCGACTCGCTGAACGACCTGCCGATGATGCGGTCCGTCGGCCACCCGTGCCCGATCAACCCGGACGCGCGCCTGCGTCGGTACGCCAAGGAGGTCGGCTGGCCGATCCGGGAGTTCCGCGGGCGGGGACAGCGCGTCGCCCACCGCGGGGTGCGGACGGCGTCCTGGGCCGGCGCGGCCTGGGTCGCCGGCCTCGTGCTCCGGGCGGCGCAGCGCACCGTGCGCCGACGCATCCGGGGCCGCTGAMPSHADSPVSPPAAAFFDVDNTIIRGASSFHLARALYRRRFFGTVDLLRFGVIQAKYLLFGESRSQIETVRSRALSLIAGRSVAEITAVGDEVYDTVLELRIFPGTKRLLDEHLAAGDQVWLVTATPVEIGGLIARRLGATGCLGTIADHEGGYYTGALVGDLMHGEAKGAAVRELADREGLDLEGSYAYGDSLNDLPMMRSVGHPCPINPDARLRRYAKEVGWPIREFRGRGQRVAHRGVRTASWAGAAWVAGLVLRAAQRTVRRRIRGRNANANANANA
AK018_05011249hypothetical proteinGTGGTGATGTACACCCGCCCCGGCTGCCACCTGTGCGACGACGCACGGGAGGTCGTGGCCTCGGTGTGCGAGCAGGCGGGCGCGGCGTGGCGGGAGATCGACATCGAGACCGATGCCGCGCTGACCGAGCGGTACGGCGACTACGTGCCCGTCGTCGAGGTGGACGGCGTGCAGCAGGGGTTCTGGCGGGTGGACGCGGCGAGGCTGGCGCGACGTCTGGCGGCACCTGCGGGAGGGAAGCGGACGTGAMVMYTRPGCHLCDDAREVVASVCEQAGAAWREIDIETDAALTERYGDYVPVVEVDGVQQGFWRVDAARLARRLAAPAGGKRTNANANANANA
AK018_05012693rex_2COG2344Redox-sensing transcriptional repressor RexGTGATCGAGATCGGCGAGGTGACGGTGCCCGCGGCGACGGTGTCGCGGCTGCCGTACTACTTGCGCGCCCTGCGCGACCTGCTGCGTGACGGGGTGACGACGACGTCGTCCTCGGCGCTGGCGGAACGCTCCGGCGTGGGCTCCGCGCAGCTGCGCAAGGACCTGTCCTACCTGGGGTCGTTCGGGACGCGCGGCGTGGGTTACGAGGTCGAGACGCTCGCGTCCTCGATCAGCACGGCGCTGGGCCTGGGCTCGGAGCACCGGCTCGCGATCGTCGGCGTCGGCAACCTCGGCAACGCGCTGGCGAACTACTCGGGCTACGCGGCGAGGGGGTTCCGGCTCGTGGCGCTGATCGACGCCGACCCCGACGTCGTCGGCCGACGCGCGGCAGGCCTGGAGGTGGAGCACTCCGACGGGCTCGAGGAGATCCTGGCCGCGCGGGGAGTGTCCATGGTGATCCTGGCGACCCCCGGCGCGGCGGCGCAGGTCGTCGCCGAGCGGATCGTGGCGTGCGGTGTCCGGGAGATCCTGTCGTTCTCCCCGGTGGCGCTGCAGCTGCCCGACGACGTCGTCGTGCGCAGCGTCGACGTCGCCGGCGAGCTGCAGATCCTCGCGTTCCACGCGGCGGCACGCCACGCGCAGGAAGGCGCGACGGTCGACGGCCGGACCGCCCCGGCCGCCCCCGCGAGGTAGMIEIGEVTVPAATVSRLPYYLRALRDLLRDGVTTTSSSALAERSGVGSAQLRKDLSYLGSFGTRGVGYEVETLASSISTALGLGSEHRLAIVGVGNLGNALANYSGYAARGFRLVALIDADPDVVGRRAAGLEVEHSDGLEEILAARGVSMVILATPGAAAQVVAERIVACGVREILSFSPVALQLPDDVVVRSVDVAGELQILAFHAAARHAQEGATVDGRTAPAAPARNANANANANA
AK018_05013552hypothetical proteinATGGCCACGCCCCTGCCTTCGGACCTGTCCACCGGTACCTACACCGTCGACGCCGGCCACTCCACCGCGTCGTTCTCCGTCCGCCACGCCGGGATCTCGAAGGTCCGCGGGACCATCGGCATCACCGCCGGCACCATCACCGTCGGCGAGGACCTCGAGTCCTCCGCCGTCGCCGTCGAGCTCGACGCCGCCGCGATCAACACCGGTGACGAGAACCGTGACCAGCACCTCAAGAGCGCAGACTTCTGGCACGCCGAGGAGCGCCCGACCTGGACCTTCAACTCGACGGCCGTCACCGCCGACGACGACGGCTACGTCGTGACCGGCGACCTGACGATCAACGGCGTGACCCAGAGCATCGACCTGCCGGTCGCCTTCGAGGGCGCCGCGGTGGACCCGTTCGGCAACAAGCGTGCCGGCTTCGAGTCCGAGCTGGTCATCAACCGCAAGGACTTCGGCCTGACCTGGAACGCCGCGCTCGAGACCGGCGGCGTCCTGGTGGGCGAGAAGGTCAAGATCGCTCTGGACGTCTCGGCGATCGAGCAGAACTGAMATPLPSDLSTGTYTVDAGHSTASFSVRHAGISKVRGTIGITAGTITVGEDLESSAVAVELDAAAINTGDENRDQHLKSADFWHAEERPTWTFNSTAVTADDDGYVVTGDLTINGVTQSIDLPVAFEGAAVDPFGNKRAGFESELVINRKDFGLTWNAALETGGVLVGEKVKIALDVSAIEQNNANANANANA
AK018_05014645COG0406putative proteinATGGCCACCACCACCGTCCATCTGTTGCGGCACGGCGAGGTCCACAACCCCGACGGCGTCCTGTACGGACGCATCCCCGGGTACCGGCTGTCCGACCGCGGCCAGCAGATGGCCCGGCGTGTCGCGGAGCACCTGTCCGGCGCGGGCCGGGACGTCGCCGCCGTCGTGGCGAGCCCGCTCCAGCGCGCCCAGGAGACGGCGCAGCCGATCGCCGACGCCTTCGCGCTCGACCTGGCCACCGACGACCGCCTGATCGAGGCGGGCAACCGGTTCGAGGGCACGACCATCGGCAAGAACCCGTCCCAGCTCGCGCACCCGCGGTACTGGAAGCTGCTGTGGAACCCGCTGCGGCCGTCGTGGGGCGAGGCCTACGCCGACCAGGCCGTGCGCATGCGGGCCGCCGTCGACGACGCACGCCGCGCCTTCGCCGGGCACGAGGTCGTCCTGGTCAGCCACCAGCTGCCCGTCTGGCTGACGCGTCGGTCCTACGAGGGGCGCCGGCTGGCGCACGACCCGCGACGCCGCCAGTGCTCCCTCGCCTCGCTGACGTCGTTGACCTTCACCGACGACCGGTTCGCCGCCCTGCACTACGCGGAGCCCGCGGCCGACCTGCTCCTCGACGCCGACCCCACCCCGGGCGCCTGAMATTTVHLLRHGEVHNPDGVLYGRIPGYRLSDRGQQMARRVAEHLSGAGRDVAAVVASPLQRAQETAQPIADAFALDLATDDRLIEAGNRFEGTTIGKNPSQLAHPRYWKLLWNPLRPSWGEAYADQAVRMRAAVDDARRAFAGHEVVLVSHQLPVWLTRRSYEGRRLAHDPRRRQCSLASLTSLTFTDDRFAALHYAEPAADLLLDADPTPGANANANANANA
AK018_05015582resA_4Thiol-disulfide oxidoreductase ResAATGCGGCGCCGCCACGCGGCGGGCCTCGCGCTCGCCCTCGGTGCCGCCGTCGGCCTGGCCGGCTGCGGTGCCGCCGACTCCGGCGCGGGCGACGTCGTCGGCCAGGGCTTCGTCTCCGGCGACGGCACCGTCCAGCAGTGGGAACCGGACGACCGCACCGACCCGGTGGTCGTCGAGGGCACCAGCTTCGAGGGCGACGAGGTCTCCACCGCCGACTGGCGCGGCGACGTGGTCGTGCTCAACACCTGGTACGCCGGCTGCGCGCCCTGTCGTGCCGAGGCGCCGGCCCTGGTCGAGATCGCCACCGAGCGCGCCGACGAGGGCGTGCACCTGCTGGGGGTCAACACCGAGGACGAGGCCGGAGCCGCGCTGGCCTTCCAGCGCACCTTCGAGGTGCCGTACCCGTCCATCGAGGACCGCAGCGGCCAGGTCGTGGCCGGCCTCTCCGGCGTCGTGCCCCTGCAGGCCGTCCCGTCCACGGTGGTGCTCGACGCCGAGGGCCGGGTGGCGGCTCGTGTCGTCGGCGAGGTCTCCGGCACGACCCTGAACGGCCTGATCGACGACGCGCTGGCGGACGCCTGAMRRRHAAGLALALGAAVGLAGCGAADSGAGDVVGQGFVSGDGTVQQWEPDDRTDPVVVEGTSFEGDEVSTADWRGDVVVLNTWYAGCAPCRAEAPALVEIATERADEGVHLLGVNTEDEAGAALAFQRTFEVPYPSIEDRSGQVVAGLSGVVPLQAVPSTVVLDAEGRVAARVVGEVSGTTLNGLIDDALADANANANANANA
AK018_05016795hypothetical proteinATGGGGGAGGTCTTCGCGACGACGGCGGTGAGCGGCTCGATGCTGCTCGCCGTCCCGGTCGCGCTGGTCGCGGGGCTGGTCTCCTTCGCCTCGCCCTGCGTGCTGCCCCTGGTTCCCGGCTACGTCGGCTACGTGGGCGGGATGGCCGCGGCGAACGCCGGCCCGGCACCGGCCTCCCGGGGCGGCACCACGACGGCGGCTCCGCCGGCGGCACCGGCCCGCGGACGCGTCGTGGCCGGGGTCGGGCTCTTCGTGCTCGGCTTCACCGCCGTGTTCGTCGCGCTCATGGCCGCCGCGGGCGCCGTGGGGGCGTACCTGGTGCGCTACGAGGACCTCCTGACGCGGGTGCTCGGCGTCGTCGTCATCCTCATGGGGGTGGCGTTCCTCGGCGGGATCGGCTGGTTGCAGCGGGAGCGCCGTCTGCACGTCAGCCCGAGGGCCGGGCTGTGGGGGGCTCCGCTGCTCGGCGTCGTCTTCGGGCTGGGCTGGACGCCCTGCCTGGGGCCGACGCTGGCCGCCGTGCAGTCCCTCGCGCTCGACGAGGCCTCCGCCACGCGCGGCGTCGTCCTCGGCATCGCGTACTGCGTCGGCCTCGGCGTGCCCTTCCTGCTGGTGGCGCTCGGCCTGCAGTCGTCGCAGCGGATGCTCGGGTTCCTGCGCGACCACCGCCGCACGATCATGCGCGTCGGCGGCGGGCTGCTCATCGTGATCGGCCTGGCGATGGTGACCGGCCTGTGGGGGGCGACCACCAGCCTGCTGCAGAGCTGGATCAGCGGATACACGACGGTGGTGTGAMGEVFATTAVSGSMLLAVPVALVAGLVSFASPCVLPLVPGYVGYVGGMAAANAGPAPASRGGTTTAAPPAAPARGRVVAGVGLFVLGFTAVFVALMAAAGAVGAYLVRYEDLLTRVLGVVVILMGVAFLGGIGWLQRERRLHVSPRAGLWGAPLLGVVFGLGWTPCLGPTLAAVQSLALDEASATRGVVLGIAYCVGLGVPFLLVALGLQSSQRMLGFLRDHRRTIMRVGGGLLIVIGLAMVTGLWGATTSLLQSWISGYTTVVNANANANANA
AK018_050171734ccs1_2Cytochrome c biogenesis protein Ccs1ATGAGCGAGCGGACCTACCGTCCCGAGGGCATCGCGGACGACTTCACCACCGGCGCGCCCACGTCGACGGCGGACGCGGGGCCGCGAGCGGCCGGGCAGCGGCCGTCGGCCCCCCGTGCCCCGCAGCTCGGCTGGCGAGGGATGCTCCGCTGGACCTGGCGCCAGCTGACCAGCATGCGCGTGGCCCTGATGCTGCTCATGCTGCTGGCCGTCGCGGCCCTGCCCGGCTCGATCCTGCCGCAGCGCGACCAGGACCCCTCCGCCGTGGTGGAGTACCTCGGCGAGCACCCGACGGCGGGGGAGTGGCTGGACCGCTTCGGCTTCTTCGACGTCTACACCTCGGTCTGGTTCTCGGCCATCTACCTGCTGCTGCTCGTCTCCCTGGTGGGCTGCATCGTGCCGCGCACGATCGCGCACGCCCGGGCGCTGCGGGCCCGGCCCCCGCGGACCCCCGTCCGGTTCGAACGGTTCCCGGTCCACGTCACCGGGACGACGGCGGAGAGCCCGGACGAGGTCGCCGAGGCGGCCGCCGCGCACCTGCGCGGCCGGTGGCGCCGGATGCCCGCTTTCCGCGTCGAGGCCGGGGCCGAGGACGCCCGGCCCGCCCGGGGCAAGGTCCCGGCGCGCCCGGCCACGCGGACCGTCGCCGCCGAGCGGGGGTACCTGCGCGAGACCGGGAACCTGCTCTTCCACCTGGCGCTGGTGGGCCTCGTGATCTCCGTCGCCGTCGGCCAGCTCCTGCACTACCGCGGCCAGGCGATCATCACCGAGGACCGCGGCTTCGCCAACGCCGTCGTCGACTACGACACGTTCGAGTCCGGCGCGTGGTTCTCCCCGGAGTCCCTCGTGCCGTTCGCGATGACGCTGGACGCCTTCGAGTCCGAGTTCGCCACCGACACCGTGGCGTTCGCCCAGTCGCGCGACTTCACCGCCGAGGTCACCGTGCACGAGCCGGACGGGTCGTCGCGGGCCGAGACCATCAAGGTCAACCACCCGCTCGACGTCGACGGCGCGAAGATCTACCTGCAGGGCAACGGGTACGCCCCGGAGATCAGCGTCGCCGACGCCGAGGGCGCCACGGCGTTCGACGGACGCGTGCCCTTCCTGCCCGAGGACCAGGTGTACACCTCGCGCGGCGTGGTCAAGGTCCCGGACGTCTCGCCGGGTCTCGACCAGATCGGGCTCATCGGGTACTTCCTGCCCACGGCGGTGCTCAACGACGACGGGACCGCCGAGTCGGTGTTCCCGCTGCCGGAGGACCCGCTGCTCGTGCTCGAGGTGTACCGCGGTGACCTGGGGCTCGACGAGGGCGTCCCGCAGAACGTCTACCGCCTGGACACGGCGAACCTCACCGCCTCGGTGGACGACGACGGCGAACGGGTCACGCTGCTGCTCGAACCCGGCGACACCGTCGAGCTGCCCGACGGGCTGGGCACGGTGACCCTCGGCGAGGACGTGCCCCGGTTCGTCGCGCTGGACCTGCGCCACGACCCGTCGTTGGCGTGGGTGCTCACCTTCGCGCTGCTGGCGCTGGTCGGGCTGACGGGGTCGCTGTTCCTGCCGCGGCGGCGCGTCTGGGTGCGATCATGGACGTCCGACGGCGTCACGCACGTGGAGGTCGCCGGCCTGGCCCGCGGGGACGACGCCGGGCTGAAGCCCGAGGTCGACCGGCTGCTGACCGCGCTGCCCGGCCTGGAGCGGGCCGAACCGACGAGAACGAGCGAGGAAGACTGAMSERTYRPEGIADDFTTGAPTSTADAGPRAAGQRPSAPRAPQLGWRGMLRWTWRQLTSMRVALMLLMLLAVAALPGSILPQRDQDPSAVVEYLGEHPTAGEWLDRFGFFDVYTSVWFSAIYLLLLVSLVGCIVPRTIAHARALRARPPRTPVRFERFPVHVTGTTAESPDEVAEAAAAHLRGRWRRMPAFRVEAGAEDARPARGKVPARPATRTVAAERGYLRETGNLLFHLALVGLVISVAVGQLLHYRGQAIITEDRGFANAVVDYDTFESGAWFSPESLVPFAMTLDAFESEFATDTVAFAQSRDFTAEVTVHEPDGSSRAETIKVNHPLDVDGAKIYLQGNGYAPEISVADAEGATAFDGRVPFLPEDQVYTSRGVVKVPDVSPGLDQIGLIGYFLPTAVLNDDGTAESVFPLPEDPLLVLEVYRGDLGLDEGVPQNVYRLDTANLTASVDDDGERVTLLLEPGDTVELPDGLGTVTLGEDVPRFVALDLRHDPSLAWVLTFALLALVGLTGSLFLPRRRVWVRSWTSDGVTHVEVAGLARGDDAGLKPEVDRLLTALPGLERAEPTRTSEEDNANANANANA
AK018_05018978ccsA_2Cytochrome c biogenesis protein CcsAATGGAGATCGGCGACCTGAGCGACCTGCTCGTGTGGGCGGCGGCGACGACCCTCGCCCTCGCGATGATCGCGTTCGCGATCGACCTGGGACGCCGCACCGACGAACGCCTCGAGGCGCGCACCGAGACCCGGGCCGCCGTCGGGGCCGGGGTCGGCGCGCCGGAGGCGGGGTCGGCGTCGGGCAGCGGCTCCGTGCCCGCCGAGGCCTCCGCGCCTCCTCGCCGGGCCGCCGGGATCGGCCTGTCGACGTCCTGGCTCGGCACCATCCTGCTCGGCGTCGCGATCCTGCTCCGCGGCGTCGCCGCCGGACGGACGCCGTGGGCCAACATGTACGAGTTCACGCTCGTGGGGTCGTTCGTGGCGATGACGGTGTTCCTGGTGTGGAACCTGCGCCGCGACGTGCGGTTCCTCGGTGCGTTCGTCACCGGCCTGGTCACCCTGTTCATCGTCGTGGGGCTGAACTCGTTCCACGTCGCGGCGACCGGTGTGCAGCCTGCGCTGCAGAACTACTGGCTGGTCATCCACGTCGGCGTCGCGATCGCGGCGACCGGGATCTTCACGATCGCCTTCGTGCTCTCCGCCCTGCAGCTGCTGCGGGACGCACGCGACACCGGGTCGCCGTTCCTGACCCGGCCCGGGTTCCGCTGGCTCGACCGGATGCCGACCCCGACGTCGCTGGAGTCGATGTCGTTCCGGCTCAACGCGGTCGGCTTCGTGATGTGGACCTTCACGATCATCGGCGGCGCGATCTGGGCCGAGGACGCCTGGGGCCGCTACTGGGGCTGGGACCCCAAGGAGGTCTGGAGCTTCATCATCTGGGTCGTGTACGCGGCCTACCTGCACGCGCGCACGACGCGGGGCTGGTCCGGACGACGGGCCGCCTGGTTCGTCGTCGTCGGCTACGCCTGCGTGCTGTTCAACTTCACCGGCGTGAACCTGATCTTCAACGGCATGCACTCGTACTCGGGCATCAGCTGAMEIGDLSDLLVWAAATTLALAMIAFAIDLGRRTDERLEARTETRAAVGAGVGAPEAGSASGSGSVPAEASAPPRRAAGIGLSTSWLGTILLGVAILLRGVAAGRTPWANMYEFTLVGSFVAMTVFLVWNLRRDVRFLGAFVTGLVTLFIVVGLNSFHVAATGVQPALQNYWLVIHVGVAIAATGIFTIAFVLSALQLLRDARDTGSPFLTRPGFRWLDRMPTPTSLESMSFRLNAVGFVMWTFTIIGGAIWAEDAWGRYWGWDPKEVWSFIIWVVYAAYLHARTTRGWSGRRAAWFVVVGYACVLFNFTGVNLIFNGMHSYSGISNANANANANA
AK018_05019363hypothetical proteinATGTTCCGCGTCGTGGTGGTCCTGCTCGTGATCGGCCTGATGGTCTACAGCCTCGCCGACCTGGCCGGGTCGGAGGAGGAGGACCGGGGTGGCCTGCCCACCTGGCTGTGGCTGATCATCATCGTGTTCCTGCCGGTCTTCGGCCCGATCACCTGGATCGTCACCAAGCGCACGCGCCGCCGCGGGTCCGGCGGACTCACCGGCCGTCCCGGACGCGGACCGCGGCGCCCGTCCGGACCCGTCGCGCCGGACGACGACCCGGACTTCCTGTGGCGCATCGAGCAGGAGAAGCGACGTGAGGAACGTCGCAGGAAGAAGAGCGACGGCGAGGGACCCGACTCCCCGCCCGCCGACGGCGCCTGAMFRVVVVLLVIGLMVYSLADLAGSEEEDRGGLPTWLWLIIIVFLPVFGPITWIVTKRTRRRGSGGLTGRPGRGPRRPSGPVAPDDDPDFLWRIEQEKRREERRRKKSDGEGPDSPPADGANANANANANA
AK018_05020333hypothetical proteinGTGCCTCTGGTCATCTACTCCGCGCTGCGGCTGCTCATCCTCGTGGCCGTGCTCGTCCTCGGCTACGTCGTCGGTCTGGGCGGGTGGCTCCTGCCGCTCGTGGCCCTCGTCGTGGCGTTCGCCGTCTCCTACCTCGCCCTGCCGCGGCAGCGCGACGCGGCTGCGCTCTGGCTCGCCGAGCGTGACCGCGAGCGCAAGGAACGCCGCGAGCAAGTGGTCGACGAGGACGCCGCCGCCGAGGACGCCGCGCTCGACGGCGATCCGGCGGCGCGGACGGACGACCCGGCCGAGCGGACGGACGACCCGGCCGGCAGCCCGCAGCAGCGTTCCTGAMPLVIYSALRLLILVAVLVLGYVVGLGGWLLPLVALVVAFAVSYLALPRQRDAAALWLAERDRERKERREQVVDEDAAAEDAALDGDPAARTDDPAERTDDPAGSPQQRSNANANANANA
AK018_05021870menA_2COG15751,4-dihydroxy-2-naphthoate octaprenyltransferaseATGGCCACCGCCGCCGAGTGGGTCGCCGGCGCCCGCCCCCGCACGCTGCCGGCCGCCGCGGCCCCCGTCGCCATCGGGACCGGCGCGGCCGCGCAGGTCGACGCCTTCGGCTGGCTGCCCGCCGTGCTCGCCCTCGGCGTCGCGCTGGCGCTGCAGATCGGGGTCAACTACGCCAACGACTACTCCGACGGCGTGCGGGGCACCGACGTCGACCGGGTCGGCCCGCTGCGGCTCACCGCCGCCGGCCTGGCCCGCCCGGGGCACGTCAAGGCGGCCGCGTTCGGGTCGTTCGGCCTCGCCGGCGTGCTGGGGATCGCCCTGTGCGCCGTGTCCGGGCACTGGTGGCTGATCGCCGTCGGTGCGCTGAGCATGGCGGCCGGCTGGTACTACACCGGTGGGAAGCGGCCGTACGGCTACGCCGGTCTCGGCGAGGTCGGGGTCTTCGTGTTCTTCGGCCTGGTCGCCACGCTCGGCACCACGTACACCCAGGCCGACCGGATCACGTGGCCCGCCGTGCTGGGCGCCGTCGGCGTCGGCCTGATCGCCTGCGCGATCCTCATGGCCAACAACCTGCGCGACATCCCCACCGACGTCCTGGCGGGCAAGCGCACGCTCGCGGTGCGCGTCGGCGACCACCGGGCCCGCCGGCTGTACGCGCTGTGGCTGGTCGTGGCGGTGCTGCTCGGCATCGCCTGCGCGGCGTGGAACCCGTGGGCCTTCCTGGTGACCCTGCTCCTGCTGCCGACGGTACTGCTCGTGGTCCCGGTGCTGGCCGGGGCGCAGGGGCGCGCACTGGTCCCGGTGCTGGCCGGGACCGGCCTGTTCGAGCTCGCCTACGGGGTGCTGCTGGGGCTCGGTCTGGCGCTCTGAMATAAEWVAGARPRTLPAAAAPVAIGTGAAAQVDAFGWLPAVLALGVALALQIGVNYANDYSDGVRGTDVDRVGPLRLTAAGLARPGHVKAAAFGSFGLAGVLGIALCAVSGHWWLIAVGALSMAAGWYYTGGKRPYGYAGLGEVGVFVFFGLVATLGTTYTQADRITWPAVLGAVGVGLIACAILMANNLRDIPTDVLAGKRTLAVRVGDHRARRLYALWLVVAVLLGIACAAWNPWAFLVTLLLLPTVLLVVPVLAGAQGRALVPVLAGTGLFELAYGVLLGLGLALPGPT0009395_2543DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009395-menA-K02548NANA
AK018_050221167menE_3COG0318putative 2-succinylbenzoate--CoA ligaseGTGACCTGCGTGCTCCACCCCGAGGTGTCCGCGTTCGTGGACCGCACGCGCCGTGCCCTGGACGACGGCCCTCCGGTCGTGCCGCTGCCCCGGCTGAGCGACGCGGAGGCACCGCCGGGCACCGCGGCCGTCGTGCGCACGTCCGGGTCGACGGGCACGCCCCGCGAGGTGGCGCTCAGCGCCGCGGCGCTGCGGGCCTCCGCGGCCGCCACGGCCGAGCGTCTCGGAGCGCCGGGCCGGTGGGTGCTGACCCTGCCGACCACGCACGTCGCCGGGGTCCAGGTCGTGGTGCGCTCCGTGCTGGCGGGCACACCGCTGGTCGCGGCGTCGCCGGAGGCGTCGTTCACCCCGTCCGGCCTCGCGGACCTGCTCGCCGAGGCGCTGTCCGGGCACGACCCCGTGCACGTCTCGCTCGTGCCCACCCAGCTGCACCGGGTCGTGCAGGCCGCCGACGACGGCGCCCCGGCCGCCCTGCGAGCGTTGGCCCGGTGCGGGGCCGTCCTGCTGGGCGGGGCCGCCGCGCCGGCCCCCCTGGTCCGCCGGGCGCGCGAGAGCGGCGTCCCGGTGGTGCGGACCTACGGCATGTCCGAGACGTCGGGCGGCTGCGTGTACGACGGCGTCCCGCTGCCCGGCGTGCGCGTCCGGGTCGACCCGGTCACCGGTGGGCAGGGCGTGGTCGAGCTCGCCGGGCCGGTGCTGGCCACCGGGTACCTGGGGGACGACGCCGCGACGGCCGCCGCGTTCGATGACCGGCCCGACGGCCGCTGGTTCCGCACCAGCGACCTGGGCCACCTCCAGGACGGCGTGCTGCAGGTGCTCGGCCGGGCGGACGACGTCGTGGTCACCGGGGGCGAGAACGTCGCGCCGGCCGCCGTGGAGGCGGTGCTGGCCGAGCTGCTCGACGACGAGGTCTGCGTCGTCGGCGTGCCGGACCCGGAGTGGGGCCAGGCCGTCGTGGCGGTCGTCGGCCGCCCGGGGACCCCGGCCGGCGCGTGGCTGCCGACGGAGCGGCTGACGTCGGCACGGTCCGAGGTCGCGGCTAGGCTGGGCCGGCCCGCGGCCCCGCGACGGATCCTGCAGGTCCCCGAGCTCCCGCGGCGCGGACCCGGCAAGGTCGACCGCGCCGCCGTCGTCGATCTCGTGCGTCGTCACGACGCACGCCGCTGAMTCVLHPEVSAFVDRTRRALDDGPPVVPLPRLSDAEAPPGTAAVVRTSGSTGTPREVALSAAALRASAAATAERLGAPGRWVLTLPTTHVAGVQVVVRSVLAGTPLVAASPEASFTPSGLADLLAEALSGHDPVHVSLVPTQLHRVVQAADDGAPAALRALARCGAVLLGGAAAPAPLVRRARESGVPVVRTYGMSETSGGCVYDGVPLPGVRVRVDPVTGGQGVVELAGPVLATGYLGDDAATAAAFDDRPDGRWFRTSDLGHLQDGVLQVLGRADDVVVTGGENVAPAAVEAVLAELLDDEVCVVGVPDPEWGQAVVAVVGRPGTPAGAWLPTERLTSARSEVAARLGRPAAPRRILQVPELPRRGPGKVDRAAVVDLVRRHDARRPGPT0009380_1408DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009380-menE-K01911NANA
AK018_050231083yerB_3Putative lipoprotein YerBGTGGCCGCACGACGTCCCGTGGCGCTCGCCCTGGTGCTGGCGCTGATCGCGCTGGGCGCGTGCTCCGACCAGCCGCCTCTCGAGGCGCCCACGGTCACGGTGGCGCCGGACGTGTCGCGGGCGAAGATCGCGCCGCCGTCGCCCCCGGCGCCGGAGCCCACGCCGTCGCCGACCCCGGAGGTGCCGCGCTGGCCGCTGACCGGCCAGCGCACGGACAAGGTGCCGAAGCGACCGGCGGTCGCGGTGAAGATCGAGAACTCCCCGGCCGCGCGTCCGCACACCGGGCTGCACCGCGCAGACGTCGTGTGGGAGCAGGTCGTCGAGGGCGGCATCACGCGGTTCGTCGCCGTCTACCACTCGGACTACCCGGACGAGGTGGGCCCGATCCGGTCGGTGCGGCCGATGGACCCGGCCACGGTCGCCCCGATGCGGGGCCTCCTGGCGGCGTCCGGGGGGATCGGCTCCTACCTGCGTGCCGTGGAACGGACGGGCACCCAGCTGGTGATCAACGACGACGGCGACCCGGGGTTCTGGCGCTGGTCCGGCCGATACGCCCCGCACAACGTGTACGGCGACGTGCGGACCTTCGCCCGGCAGGCGGACCGCCGTCGCGCCGAGCCGCCGCCCGCCCAGTTCCGGTACGCCCCCGGGGCGAAGAAGGCCACGGCCCGGACCGCGGGGAAGCAGGCCCGGACGGCAGACGTGCGGCTGTCCGCGGCCCAGCGCACCACCTGGACGTGGAACCGTGGCGACGGCGCGTACCGCCGCAGCGACAACGGGACCCCCTCGATCTCCTCCGGTCAGCGGGTCACCGCCCGCAACGTCGTGCTGCTGCGGATGAAGGTCAGCCTGACCTCCCAGCGGGACGCCTCCGGAGCCCGCGTGCCGAAGACCGAGCTGGTGGGCAGCGGCTCCGGCCGCGTGCTCAGCGGCGGCCGGTCGGTCGCGGTCGAGTGGTCCAAGAAGGGCCCGCGCAAGCCGCTGCGCCTGACCCGGCCGAACGGCGACACGGTGCGCCTGGCCCCCGGGACGACGTGGGTCGAGCTCGTCCCGCGCGGGGACGGGTCCTGGTCCGTGTCCTGAMAARRPVALALVLALIALGACSDQPPLEAPTVTVAPDVSRAKIAPPSPPAPEPTPSPTPEVPRWPLTGQRTDKVPKRPAVAVKIENSPAARPHTGLHRADVVWEQVVEGGITRFVAVYHSDYPDEVGPIRSVRPMDPATVAPMRGLLAASGGIGSYLRAVERTGTQLVINDDGDPGFWRWSGRYAPHNVYGDVRTFARQADRRRAEPPPAQFRYAPGAKKATARTAGKQARTADVRLSAAQRTTWTWNRGDGAYRRSDNGTPSISSGQRVTARNVVLLRMKVSLTSQRDASGARVPKTELVGSGSGRVLSGGRSVAVEWSKKGPRKPLRLTRPNGDTVRLAPGTTWVELVPRGDGSWSVSNANANANANA
AK018_050241092yerB_4Putative lipoprotein YerBATGCGACACGGTGTGCACGGCCGGACGGGCGCGGCGCTCGTCGGGCTGCTCGCCCTGGCCACGGCGCTGGCCGGCTGCACGGGCGGCGACCCCGAGCCGGCCCCGACGACGACGGTCGCGGCGTCGGGCGCGCCCGTCGCCAAGGGTGCGCCACCGGCGCCCGAGGCGACGACCCGGTGGCCGCTCACCGGCGTGGAGACGGACGACGTCGCCGCGCGTCCGGCCCTGGCCGTGAAGATCGAGAACTCCCCGGCGGCTCGCCCGCAGGTCGGCCTCAACGAGGCGGACCTGGTGTGGGAAGAGGTCGTCGAGGGCGGCATCAGCCGGTTCGTCGCCGTCTACCACTCCCAGGTCCCGGAGATCGTCGAACCCGTGCGGTCGGTCCGGCCGATGGACCCGGCGATCACCGCACCGCTGGGCGGGGTGTTCGCCTACTCCGGCGGCCAGTGGCCCTTCATCGACGCGATCGCCGACGCCGGCGTGCAGTCGGTGATCATGGACGCGGGCGACGCGGGGTTCTCCCGCGACCCGGCGCGCCCGGCGCCGCACGACGTCGTCGGCGACCCGCAGACGTTCCTCGACCAGGCGGACGACGAGCGGACCGTCCCGCCGCCGGCCCAGTTCACGTTCGCGTCGGAGGACGCGAACGCCACCGCGGCTGTCGACCCGGTCGACGAGGACGATCCCCCCACGCTGGAGGTGCGGCTGTCATCGGCGCAGACCAGCGGCTGGGTGTGGGACCCCGCGTCCGCGACCTGGCTGCGCAGCGAGGGGTCGTCGCCGTCGGAGTCCGCCGCGGGGGAGCGGCACGGGGCCACGAACGTCGTGGCGCTGCAGGTGGAGGTCGTCGACACCCCGTACCGGGACGCCTCCGGCGCGGCGGTGCCGGAGACGCAGCTCGTCGACTCCGAGGGCGTCGCCCTGGTCGCCAGCGCGGGCGGGTTCGTCGCGGCGCAGTGGTCCAAGGGCTCGCTGTCCGACCCGATCGAGCTCACCCACGACGGCGAGCCGGTGGAGCTGGCCCCGGGCAGCACCTGGATCGAGCTCGTGCCGCGCGACGGCGGCTCGTGGACCGCCGGGCCCCCTCAGTAGMRHGVHGRTGAALVGLLALATALAGCTGGDPEPAPTTTVAASGAPVAKGAPPAPEATTRWPLTGVETDDVAARPALAVKIENSPAARPQVGLNEADLVWEEVVEGGISRFVAVYHSQVPEIVEPVRSVRPMDPAITAPLGGVFAYSGGQWPFIDAIADAGVQSVIMDAGDAGFSRDPARPAPHDVVGDPQTFLDQADDERTVPPPAQFTFASEDANATAAVDPVDEDDPPTLEVRLSSAQTSGWVWDPASATWLRSEGSSPSESAAGERHGATNVVALQVEVVDTPYRDASGAAVPETQLVDSEGVALVASAGGFVAAQWSKGSLSDPIELTHDGEPVELAPGSTWIELVPRDGGSWTAGPPQNANANANANA
AK018_050251053menB_2COG04471,4-dihydroxy-2-naphthoyl-CoA synthaseATGACGCGCACATCTCGGGTGATCGGTGTGTCGAGCCGCGACTACCCTGAGGCCGTGAGCCGATCCGACAGCACGCCCGACGTCCCCGCGCAGGTCTCGCACACCTTCGACCCGAGGCGATGGCGCACGGTCGCCGGGTTCGAGGACCTGACCGACCTGACCTACCACCGGGGTGTGGAGCAGTCGACGGCGGACGACGGGACCGAGCAGGCGCGCGACCTGCCCGTGGTGCGGGTCGCCTTCGACCGCCCCGAGGTGCGCAACGCGTTCCGTCCGCACACCGTCGACGAGCTGTACCGGGTGCTGGACCACGCCCGCATGACCTCCGACGTCGGCACCGTGCTGCTCACGGGCAACGGACCGAGCCCGAAGGACGGCGGCTGGGCGTTCTGCTCCGGCGGCGACCAGCGCATCCGCGGCCGGTCGGGCTACCAGTACACGACGGCGCCCGACGGCGGCGGGGACGTGCACACGCGCGACGCCGTCGACCCGGCGCGGGCCGGACGCCTGCACATCCTCGAGGTGCAGCGCCTGATCCGCACCATGCCCAAGGTGGTGATCGCCGTCGTCGACGGGTGGGCCGCCGGGGGCGGGCACTCCCTGCACGTCGTCGCCGACCTGTCGATCGCGTGCCGCGAGCACGGGAGGTTCAAGCAGACCGACGCCGACGTCGGGTCGTTCGACGGCGGGTACGGCTCGGCCTACCTGGCCAAGCAGGTGGGCCAGAAGCGCGCCCGGGAGATCTTCTTCCTCGCCCGGGAGTACTCCGCCGACGACGCCGAGCGCTGGGGCGGGGTCAACGAGGTCGCCGAGCACGCGGACCTCGAGGCGCTGGGCATCGAGTACGCCCGCACCGTCGCCGGCAAGTCGCCGCAGGCCATCCGCATGCTGAAGTTCGCGTTCAACCTGGCCGACGACGGCCTGATGGGCCAGCAGGTGTTCGCCGGGGAGGCCACGCGCCTGGCGTACCTCACCGACGAGGCCGTGGAGGGCCGCGACGCGTTCCTGGGCAAGCGCGAGCCCGACTGGAGCCGGTTCCCCTACGCCTACTGAMTRTSRVIGVSSRDYPEAVSRSDSTPDVPAQVSHTFDPRRWRTVAGFEDLTDLTYHRGVEQSTADDGTEQARDLPVVRVAFDRPEVRNAFRPHTVDELYRVLDHARMTSDVGTVLLTGNGPSPKDGGWAFCSGGDQRIRGRSGYQYTTAPDGGGDVHTRDAVDPARAGRLHILEVQRLIRTMPKVVIAVVDGWAAGGGHSLHVVADLSIACREHGRFKQTDADVGSFDGGYGSAYLAKQVGQKRAREIFFLAREYSADDAERWGGVNEVAEHADLEALGIEYARTVAGKSPQAIRMLKFAFNLADDGLMGQQVFAGEATRLAYLTDEAVEGRDAFLGKREPDWSRFPYAYPGPT0009385_176DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009385-menB-K01661NANA
AK018_05026180hypothetical proteinATGACGCGATCCCACAGCTCCGAGGTCGCTGACCCGGACGAGGTCGTGGACGAGCTGATCGCCTACGACGCGGCCGAGGTACGGCGTGCCACCGCCACGACGCAGGCCCTGCCCGTCACCACCGTGAGCGCGCCCGGGGCCTGGACGTTCCGCACCACGCCGGACGAGTTCACGGACTGAMTRSHSSEVADPDEVVDELIAYDAAEVRRATATTQALPVTTVSAPGAWTFRTTPDEFTDNANANANANA
AK018_050271017menC_2COG4948o-succinylbenzoate synthaseGTGTCCGCCTCCCTGTCCGCGACGCTGCAGCGCCGGTTCGTCTGGTCCACGCCGCTGCGCACGCGCTTCCGTGACCTGACCAGCCGCGACGGCCTGCTGCTGCGCGGCGACGCCGGCTGGGGCGAGCTGAGCCCCTTCTGGGAGTACGACGACGCCGAGTCGGCCACGTGGCTGCGCGCGGCCCGGGAGGCGGCGGACCTCGGCTTCCCCGCCCCGGTCCGCGACCGCGTGCCGGTCAACGTCACCGTGCCCGCGGTCGACGCGGAGCGCGCCCGCGAGATCGTGCTCGCCTCGGGCGGGTGCACGACGGCGAAGGTCAAGGTGGGCCAGCGGCTCGCCGACGGGTCGGTGGAGCCCGTCGAGGCCGAGGTGGAGCGGGTGCAGGCCGTGCGCGAGGTGCTCGACACGCTGCACGGCCCGTCCGTCGGCCGGATCCGGGTCGACGTCAACGGCACTTGGGACGTCGACGAGGCCCGGCGACGCATCCCCCGGCTCGACGCCGCGGCCGGGGGACTGGAGTACGTCGAGCAGCCGTGCCGCACCGTCGACGAGCTCGCGGCCGTGCGCCGGAGCGTCGAGGTCCCGGTCGCCGCCGACGAGTCCGTCCGCCGCGCCGAGGACCCGCTGCGGGTCGTGCGTGCCGAGGCGGCCGACGTCGTCGTGCTCAAGGTCCAGCCGCTGGGCGGCGTGCGGGCCTGCCTCGACCTGGCCGAGCAGGTCGGTCTGCCGGTCGTGGTGTCCTCCGCGCTGGAGTCCTCGGTGGGGCTGGCGGCCGGGGTGGCGCTCGCCGCGGCGCTGCCGGAGCTCCCGCACGCCTGCGGTCTGGCGACCTCGCAGCTGCTCGCCCGGGACGTCACCGACGACCCGTTGCGGCCGGTGGACGGGGCCCTGCCGGTGCGCCGCGTCGCCCCCGACGCCGGTGCGCTCGCGGCCGTCGCCGCACCGCCGGACCTCGAGCAGCGCTGGCTCGAACGCCACGACCGGCTCGCCGCCGTCCTCGACCGGGCCCGCGCATGAMSASLSATLQRRFVWSTPLRTRFRDLTSRDGLLLRGDAGWGELSPFWEYDDAESATWLRAAREAADLGFPAPVRDRVPVNVTVPAVDAERAREIVLASGGCTTAKVKVGQRLADGSVEPVEAEVERVQAVREVLDTLHGPSVGRIRVDVNGTWDVDEARRRIPRLDAAAGGLEYVEQPCRTVDELAAVRRSVEVPVAADESVRRAEDPLRVVRAEAADVVVLKVQPLGGVRACLDLAEQVGLPVVVSSALESSVGLAAGVALAAALPELPHACGLATSQLLARDVTDDPLRPVDGALPVRRVAPDAGALAAVAAPPDLEQRWLERHDRLAAVLDRARAPGPT0009375_1073DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009375-menC-K02549NANA
AK018_050281839menD_2COG11652-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylate synthaseATGAGCGCCGCGCCCTCCGGGAGCCCCGCCGTGGACTCCGCCCGCGCCCTGGTGGCCGACCTCGCCGCCCAGGGCGTGCACGACGTCGTCCTGGCACCCGGGTCCCGGTCGGCCCCGCTGGCGTACGCCCTGGCCGAGGCGGCCGCCGCCGGGCGGGTGCGGCTGCACGTGCGGATCGACGAGCGGTCGGCGGCCTTCCTCGCGCTGGGGCTGTCACGCGGGGCGGCCCTGCCGGGCCCCGGCACCGGGCCGGACGGTGCACCGGAGGTCGCGGACGCCCCGGCCGCTCCGGCGCCCGTGGCGGTCGTGACGACGTCGGGCACGGCGGTGGCCAACCTGCACCCGGCGGTCCTGGAGGCCTCGCACGCCGGACTGCCGCTGGTCGTGCTCACCGCGGACCGCCCTCACGAGCTGCGCGGGACCGGGGCCTCGCAGACGACCGACCAGGTCGGGATCTTCGGCACCGCGGTGCGCTACGCCGTCGACGTCCCGGCGCCCGACGGCCGCGACGGCGAGGCCCGCGACCTGCTGGCCACGGCCCGGCGGGCGCTGGCCGCCGCCCGGGGGCTGCGCGACCGCCGTCCCGGTCCCGTCCAGCTCGATCTGGCCTACCGCGACCCACTGCACCCCGTGGACGGTCCGGAGCCCCCGTCCGCCCCGGAACCCTCGCCCGGGGTCGCGGTGGTGCCGCCCGCACCCGGCCCCGGCGCGGACCCGGCCCTGCCCGGGGACGCGGCCCGCACCCTGGTCGTCGCCGGCGACGGCGCGGGACCGGACGCGCGGCGGCTCGCCGAGGCGCGCGGCTGGCCGCTGCTCGCCGAACCGACGTCGGGTGCCTGCGGGGGACCGCGGGCCGTGGCCGCCTACCGCTCCGTCCTGGGCGCCGACGGCATCGCCGCCGACGTCGAGCACGTCGTCGTCCTCGGCCGCCCCACGCTGTCCCGGCCCGTCCAGCGGCTGCTCGCGCGCCCGGACGTCACCGTCACCGTCGTCGCGCCCGGCGGCGGTCCCTGGCCCGACCCCGCCCGGCACGCCGCCCGCGTCGTCGAGCGGCTCGCCGAGCGATGGTTCGTCCCGGCCGAGCCGTCCGACGGCGGGATCTTCGCCGCTCGCTGGGCGGCGGCGAGCCTCGCCGCCGCTGCGCAGGTCGACGCCGCCACGCGGGACCAGGCGGTCGGCGCCGACCTGTCCACGGGGCGGCACGCGGCGCTCGCGGTCGCGCGGGCCGTCGTCGCGGCGACCGGTCCCGAGGACGTCCTGGTCGTCGGGGCCTCCAACCCGGTGCGCGACGTCGACCTCGTCCTCGGGCTCGACCCGCCCGCCGACGCCCCGCCGCCGCAGATCCTGGCCAACCGCGGGCTGGCCGGCATCGACGGGACGATCGCCACGGCCACCGGCGTCGCGCTGGCCGCTGCCCGCCGGGGGCTGCGCACCCGGGCGCTCGTCGGCGACCTGACGTTCCTGCACGACGTCGGCGGCCTGCTGCGCGGCCCGGACGAGGACCCCGTCGACCTGCAGGTCGTCGTCGCCCACGACGACGGCGGCTCCATCTTCGCCACCCTCGAGCACGGGCAGCTCGCCCAGGACGGGCCGACGGCGGCCGCGACCTTCGAGCGGGTGTTCGGCACCCCGCACGGCGCCGACCTGGGGGCCTTGTGCGCCGGTTACGGCGTGGCGCACCGACGGGTCGGGGACGTCGCCGCGCTGCGTGCGGCGCTCGCGGAGCCGCCCGGCGGGGTGAGCGTGGTCGAGGTGCGGGTGCCGCGGGCCGACCGGCTCGCCGAGTCGCGCGGGCTGGCCACGCGGGTCGCCGAGGCGGTGCGCACGGCGATCGACTAGMSAAPSGSPAVDSARALVADLAAQGVHDVVLAPGSRSAPLAYALAEAAAAGRVRLHVRIDERSAAFLALGLSRGAALPGPGTGPDGAPEVADAPAAPAPVAVVTTSGTAVANLHPAVLEASHAGLPLVVLTADRPHELRGTGASQTTDQVGIFGTAVRYAVDVPAPDGRDGEARDLLATARRALAAARGLRDRRPGPVQLDLAYRDPLHPVDGPEPPSAPEPSPGVAVVPPAPGPGADPALPGDAARTLVVAGDGAGPDARRLAEARGWPLLAEPTSGACGGPRAVAAYRSVLGADGIAADVEHVVVLGRPTLSRPVQRLLARPDVTVTVVAPGGGPWPDPARHAARVVERLAERWFVPAEPSDGGIFAARWAAASLAAAAQVDAATRDQAVGADLSTGRHAALAVARAVVAATGPEDVLVVGASNPVRDVDLVLGLDPPADAPPPQILANRGLAGIDGTIATATGVALAAARRGLRTRALVGDLTFLHDVGGLLRGPDEDPVDLQVVVAHDDGGSIFATLEHGQLAQDGPTAAATFERVFGTPHGADLGALCAGYGVAHRRVGDVAALRAALAEPPGGVSVVEVRVPRADRLAESRGLATRVAEAVRTAIDPGPT0009365_163DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009365-menD-K02551NANA
AK018_05029246hypothetical proteinGTGTTCCATGGTGCCGCCGTCCTCACGACCGTCCTCGGTGCCGTGTGCCTCGTGGCGGCCCTCGTCCTGGGGTACACGACCGGAGTCGTCGCGGACCGGCCCGAGGCCGAGCTGGCCTTCCGGGACGCAGAGCTGACGACCATGGTCGTCGCGGCCCTCACCATCGCCGTGGCGGGCGCTCTGCTCGTGCTCGTGGGAGCCGGGTCGGTGCTGGCCTCGGCCCTGGTCCGCCGCCGTCCCGACTAGMFHGAAVLTTVLGAVCLVAALVLGYTTGVVADRPEAELAFRDAELTTMVVAALTIAVAGALLVLVGAGSVLASALVRRRPDNANANANANA
AK018_050301611hypothetical proteinATGAGCACCGACCAGAACCCCGCACCGCAGCAGCCGTCGGGCCCGCAGCACCCCGTCGAGCAGCCGACCACTCCGCTGCCGACGTCGACGGCCCCGCAGCGCGACACCGAGGCCGCGGAGCCGTCGGCGGCACACGCGCAGCAGGCGCCGCAGCAGCCGGCCGCCCAGCAGCCGAGCGCTCAGCAGACGCCGCAACAGCACGCCCCGCAGCAGCCCGCCGGCGCGTTCGGCGCGCCGGCGTACCAGGCGGCTCCCGCGCACGGCGGGTACGCCGGTGGCCCGACGTCCTACCCGCCGGCCTACCAGCAGAACCCGCAGCCGGTCCCGGAGCGGCGTCGCACCCCGTGGGTGCCGATCGTCGCCGTGGCCGCCGGGGCGGCCGTGATCGCCAGCGCGGCCACCGCCGGCGCGATCACGCTGCTCGACGACGACACGGCCGGCTCCTCGCTCGCCGAGGTCGGCGCCTCGCAGAGCTCCGACGCGGCCCCCGTGGCGAGCTCCACGAGCGAGAACCCGGACTGGCAGGCCGTCACCGCCGCGGTGGCGCCGTCCGTGGTCGCCATCCAGGTATCCAGCCAGGGCGGCGGCTCCGAGGGCTCCGGCGTCGTCATCGACGAGGCCGGGCACGTGCTGACGAACAACCACGTCGTGGCGGGCGCGTCGAACGACACCGTCCAGGTCACGCTGTCGGACGGACGTCTGTACGAGGCGACCATCGTCGGCACCGACCCCACCACGGACCTCGCCGTGGTCCGGCTCTCCGACCCGCCGCAGGACCTGCGGCCCGCCGCCTTCGGTGACTCCGACGCCGTGCAGGTCGGCGACTCCGTGCTGGCGGTCGGCAACCCGCTCGGCCTGGCGAACACCGCCACGACCGGCATCGTCTCTGCCCTGGACCGCCCGGTGGCGGCCTCCGGCCGGGGTGGCGGGGACGTCGTGGTGACCAACGCGATCCAGATCGACGCCGCGGTGAACCCCGGCAACTCGGGCGGACCGCTGTTCGACGCGCAGGGCCGCGTCGTCGGCATCACCTCGTCCATCGCGACCATGTCCGGGGGAGCGGGCGGCTCGTCCGGGTCCATCGGCCTCGGGTTCGCCATCCCGGTGAACCTGGCCACGAACGTCTCCGACCAGCTCATCGAGGACGGCACCGCCGAGCACGCGTTCCTGGGCGTCTCGCTGACGGACGCCACCGCGACGGCCGACGGCGTCACCCGTCGCGGCGCGGAGGTCGTCGAGGCCGTGCCGGGGTCGCCCGCCGCCGAGGCCGGCCTGCAGGCCGGTGACGTCATCGTCGCCATCGACGACGACGCCGTGAACGGCGCCGAGTCCCTGACCGCCTACGTGCGCGAGCGCACCGCCGGCGAGCAGGCGTCCGTCACCTACGTGCGCGACGGCCGGGCGACGTCGGTCGACGTGTCCTTCGCCGTGCGCGAGGAGGCGGCGTCCGGGTCCCAGGGTCAGGGCGGGTCCGGGCAGATGCCGGGCTCCGGCCAGGGCCAGCAGGACCAGGAGCAGGAGCGGGACCAGGACCAGCAGCAGGACGGGTCCTCCGACCCGACGCAGCCGGACAACATCCCGAACTGGCTGCGCGAGCTGTTCGGCAACTGAMSTDQNPAPQQPSGPQHPVEQPTTPLPTSTAPQRDTEAAEPSAAHAQQAPQQPAAQQPSAQQTPQQHAPQQPAGAFGAPAYQAAPAHGGYAGGPTSYPPAYQQNPQPVPERRRTPWVPIVAVAAGAAVIASAATAGAITLLDDDTAGSSLAEVGASQSSDAAPVASSTSENPDWQAVTAAVAPSVVAIQVSSQGGGSEGSGVVIDEAGHVLTNNHVVAGASNDTVQVTLSDGRLYEATIVGTDPTTDLAVVRLSDPPQDLRPAAFGDSDAVQVGDSVLAVGNPLGLANTATTGIVSALDRPVAASGRGGGDVVVTNAIQIDAAVNPGNSGGPLFDAQGRVVGITSSIATMSGGAGGSSGSIGLGFAIPVNLATNVSDQLIEDGTAEHAFLGVSLTDATATADGVTRRGAEVVEAVPGSPAAEAGLQAGDVIVAIDDDAVNGAESLTAYVRERTAGEQASVTYVRDGRATSVDVSFAVREEAASGSQGQGGSGQMPGSGQGQQDQEQERDQDQQQDGSSDPTQPDNIPNWLRELFGNPGPT0021000_163DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021000-pepD-K08372NANA
AK018_05031354hypothetical proteinATGAGCATGATTCCGATGGAGCTGCCCAGCGGCCGGACCGTCCTGGTGCCGGCGTTCGACGGGGCCTCAGGGGCCCCGGGAGGAGGTGCCCCTGGGGACGCGACCGATGAGCTCGTCTTCGAGGACGTCGGGCTCGGTATCGGCTACCAGGACCTTGCCGAGACCGCAGCCGAGATCGGTGGGCTCATCCGCGCAGCGGCGGCGCGTGCTCGCCCGAGCAAGGTCACCGCTCAGGTCGCGATCGGCGTCGACGCCAAGTCCGGGAAGTTGGCGAGCCTCGTCGTCGAGGGCAACGCGCACGCTGCGCTCACGGTCACGTTTGAGTGGAACCTGTCGGGGCAGGACGCTCCGTGAMSMIPMELPSGRTVLVPAFDGASGAPGGGAPGDATDELVFEDVGLGIGYQDLAETAAEIGGLIRAAAARARPSKVTAQVAIGVDAKSGKLASLVVEGNAHAALTVTFEWNLSGQDAPNANANANANA
AK018_050324731hypothetical proteinGTGACCCGCGCCCTCGAGTCGCTGCTGCGACGAGCAACGGTCCGGATCGAGGCGTCCGGGCGTCCAGTCGGTTCCGGCTTCTTCGTGGCCGGGAGCCTGGTGCTCACGGCGGCGCACGTCGTCCGCGGGCACGACGACCTGGTGGCGTTCTGTGACGCGGAGCGGCTCGGGAACCTGACGGCCCGTGCCGTTTGGCCGGAGCGGACGGATGCTGGCGGCATGGAGCCGCTCCCAGACCTCGCGCTGCTCGAGCTGACGGACGGGCCGCAGGACATGGTCCCCGTCGTGGAGCTCGGGGACGCCACTCCGGGCGAGGGCGACATCTACGTGGCAGGGTGCCGTGCGGCGACGACCGGACCGATTGTGGTCGACGGAGCCCGGCTGCGGCTCGAGTCCTGGACCTCCGTCGACGGTGTCGCCGTCGTCACGCTCAAGGACTCGGCTGTCGGGAGCGGCATGAGCGGCGGCCCGGTGCTTGATCTCGCGACGGGCCGCGTCGTCGGTGTGCTGAAGCAGAGCCGCAGCGTCAGGGGCCCGCGGGGGACCGACGTCGTCGGGCCGCTCGGTGCTGTGGCGGTGGCCGTGTCGGCGTTGAGGAACTTGGCGCCCAAGGTCTGGGAGGCGAGCTTCGAGGGCGCGCGGGCCCATCCGCAGTGGGAGTTCGCCCGGCGCGCGGGAACCTCGACGACGCAGCCGGTCGACGCGACGCGACGGTATCTCGCGCACGTCCGGGAGGTGGTCAGGGCGCGCCCCGCGATCGTCCCGCCTGGACGGGACGCCGAGTCCATCGAGCAGACGCTGCCACTTCGCGAGGTCCGCCCCGAGGACGCGGAGGCTCTTTCCGGGGAGGCTGCCCGTTCGACCGAGGACGACCCACCGGCCCTGGTCGACGGCGGTACGTCAGGCGCAACGCGACGAATTTGGTGGAACCCTCTCCGGCCTCCGTCCCGGGTCGTGGTGGTCTCCGGTGCTCCGGGGTCGGGAAAGTCCTCGTTGGTGAATCGGCACACCCGGGTGACGGCGGAGGCGGCCGATGCCCGCATGCGCGAGGACGACACGGCGTCGTTCCTCGTCGAGGTCCCCGTGGTCGCGGACTGTGCGGTGCTCGCGCGGAACCTCGGTGAGCGTGCCGATCGGGAATTTGTCCTCGCCGCGCTCACACGGGGCGCGGTCTCCGGTGCGCGTACCGACGACGAGATGCTGGCCGACGACGCCTGCCACGCGGTCGTCGAGGTCGCCCTCCGGAGCGGGCGCGCGATCGTGTGCCTGGACGCCCTTGACGAGGTCCCGGAGGCCGGACGCCCGCTCGTCCAGAGCGCCCTCGGTCACATCGCGGACCTCGGGAATCAGCTGGTGGTGACCTCGCGGCCCAGGCCCCAGCTCGAGGTGGACATCGCGCAACTTCGTGGGACGTTCCGTGCGGAGGCGCTCGGGTTCGAGCCCTCGCAGTCCGTGGCGTTCGTCAGGGCGTGGTTCACCGCGGCGTCCGACCCGCGTCTGGGTGAACGGGTCGCGCGAGAGACGGTTGTGCGGCCCGAGCTCGCCGAGCTCATGAGGGTCCCTCTGCTCGCCGCGCTGCTGTGCGGGCTCGTGATGACAAGAAGCACGGTCGAGGCGCTCCCGACCTCGGCGGCCACGCTCCTCGACGCGGTCGTCACGGCCGCACTCCGCGGCGAGTGGCGGGCCGAGGACGACCGCGTGGTACACCCGGAATCGCCACCAGATGACGGAGTTCGCCTCCCTCTGCTCGCGCGCGCCGTGGGGCGCCTCTGCGCCGGCTGGCGGGTCCGTCCGCACCGCTTCGCTGCCGCGGAGTTCGACGCCGCGCTACGCGAGGATCGGGAGTACGAGCAGGCGCGCCGTGCGGCCCAGCTGCGGTGGAGCCTGTGGGCGGAGTGGCAGACCGGCGAGCCGACCCCTCCGCCTGACGTAGTGCGCTGGGAGCTGCTGCACGACGGTCTGCTGACGTACGAGACCGCCGTGTCGGGGCGGCCGCTGTTCCTGCGCTTCGTCCACTCGGCCCTGGCCGACTACTGCTTGGCGCGTCAGGTCGCCGGGCTCACGGGGGCGGGTCTGCGCGACGTGATTGAGTCGCACCGCTGGTTCGACAGCGGCTGGGAGCAGGTGTGGCCCCTGGTGGGGGAGCTGGCGCAGGCTCCGGGAGAGATCGTCGAGGACCTGCTCGACCACGCGGACGACGCATGGTTCGAGCAGACGCGGCTCGCCTGCTGCGTTGCGGCCGGCGCCGGTGCAAACCTGCCCGCCGACGTTGCGGAGCGGTTGACAAGCAGAGTGGGGAAATGGGCGTCCTCGTCACGTCTCGTGGACAGGGAGCGGGCGGTGACGAGCCTCGTCCGGCTCGTCCGAGCCGGTGTGCCTGGCGCGGTCGGGCTGGCCGTCGCGATCGACCCGAAGCGGATCCCCCTGCGCGCGCAAGCAGCCGTGCTCGCCGCGCGCGCCGACGTAGGCGACGCAGAGGCTGTCGACCGGGCACTTGCGCTCCTGGTCGACGCGGCCCGCCCCGTCGCCTTCCGCAGAGCCCTTGCTCCGGTGGCGACCCGCGTGGGCGGGGAGCGCGGTGTGTCCGCACTCGTCGACGCGTTGCGGAGCGTGTCCTCCCGGACCGCGGCGTTCCAGCAGCTCGCCGCGGGGATCGCCGTCGAGACCGGGCCGGGCGCGGAGGTCGCGACGGAGCTCGTGCGAGACAGACGTCTCCCCGACTCCTCCCGTGCCGTCCTGGGGAGCCTGCTGATCGATCGCGGTGACTTCAAGACGGTCACTGCGGTGCGGGAGATGGCCCTCGACCCGTTGACGAACGGTCCGTTGCGTGCGGCGCTGCTGGCGTCGTTGCTGTACCGCGGGGATGCTGACGCCACGTTGCTCGAGGCGGGCGTGCGGCTCGCACAGGACCCGAATCTGACCGAGGCGGGCGCGATCGACCTCATCGAGGCACTCGTCAGACTGGGCGAGCTGCAGGTGCTCACGGACGCGGCGCGCTACCTAGTGCGGTCGAGCGTACGCTGGCAGGCAAGGCAACGGCTGGCGCGGGCGGTCGCACAGTCCGGCGCGGACGGGGTCGAGCTGTTGGAGCGGACGGTCGCTGCGACGCTGCCGCTCGGGTTGAAGGTGCGACCAATTATCGCGCTCGTCGAGGTCGGGCGCGGCACGGCCGAGGCGCTCCGCATCGCGCAGGACTCCGGGACCGAGCTATGGATCCGTCTGCGGTGCGCGACGGCGCTCGCGCGCCACGGGTCCGGCGGCCTCGACACAGACGCGCTGGAGCTCCTTGTCGAGAGCGCGGAGGGTGAGGAGGTCGACTTCGCGGCAGAGTTGGTTTCGACGGCGGCGACGCAGGGCCTCGGGTCCTCGGCGAGGCTTGCGGTCGCGCTCGTCCGTGCCGCGGGCAGCGATCTCTCAGGCACCGGGCAGCGCACCGCAACCCTGCTCCGGGCGCTCGGCAGGTCCGGGCGGGTCGGGGCCCACGCGCTCGCGCGGATCGCCTCCGATCCGGAGTGCGACGAGCACTACCGAGCGCTGGCCATCGTCTCCCTTGCGGCGGGGTCTCCCGTGGACGCGGCGCGCCTGGCCTCCGAACATCTCGACAAGTTCGGAGCCGTAGTGCGTGATCGTCTGGTGGTCATGCTGGCGGAGCGGGACGTGGTCGAGGTGCTCGACCTCGTCCCTGGTTCGGTGCTCGACGCGGAGGAGCGGTACCGGACCGTCCTCGGGCTCGTCGGCGGCGACCGTGCGGCGCAGCACGACCACGTGCGCGGGCGCGGCTTGCTCGCCAGTGCCGAGCCGGGACGCCCGGACGACGGGGCCCTACGTCGGTCCGTCGCCCGGGAGACGATCGGCGAGGAGCTGCTTGCCGCGGGCGTCGAGTGGGGCTCCGAGGCGGAGCGCGAGCACATGATCGAGTGGTTCATGGGCCGGGTCGAGCTCCGCGTCGGTGCCCGCATCGCCGTGTTCCTCAGCGACGAGCTGCAGGACGAGTTCGACCAGCAGGAGCACGAGGAGGAGCAGGAGGAGTTCCGGCGGAGCTACTTCGGGCCGGACAGGTTGATCGTGCAGGAGGCACTCGAGGCCGCCTACGTGGAGGTACGGCGGGACCCCGGCCAGGTACCTCGGCTCGAGGTCCGGTCGCAGGACTCGGGGATGGGCAAAATCGTCACGACGGCGCAGGTCCTGCGCGAGTGGGCGAGGATCGCGGAGCAGGGCGAGCCGAACCCGCTTGCCGACTTCTTCGCGTCCAACGCGCCGGTGCTCGCGTCGACCCTGGCCTTCGAGTTGCTCGCCCTGGTCTCGCACCACCACGCCGCACATTACCCGTACAGGGGCCTGACGTACCTCGTCAAGCGTGCGCTCGAGACGCACGGCATCGAGGAGACGGTCCGCTTCGTCGTCGACTCCAGCCATCAGCACGACATGCTGCGCCGTCACCTGGCGGAGGGGCAGGGGGGGCATCTCTTCCACGGCGCGCTTGCCGGACTTCTCGTGGCGCCCCGTTCGGCGTCCTTGCACTTCTACGGCGCGCTGGGCGCCGAGCTGGAAAAGGCCGAGGCCTTCGCAACCGAGCTGATGACGGCCAGCCACGGGTACGCGACGGACGACCAGCGCGTGCAGGGCGTGGCGACGATCCGCGCCACGAGCGGGAGATGCGGGTGGACCGCGGACCGGGAAGCCGCACTGGTTCGAGCGCTGGAGACGGGCACCGCCAAGGAGCCGTCCTGAMTRALESLLRRATVRIEASGRPVGSGFFVAGSLVLTAAHVVRGHDDLVAFCDAERLGNLTARAVWPERTDAGGMEPLPDLALLELTDGPQDMVPVVELGDATPGEGDIYVAGCRAATTGPIVVDGARLRLESWTSVDGVAVVTLKDSAVGSGMSGGPVLDLATGRVVGVLKQSRSVRGPRGTDVVGPLGAVAVAVSALRNLAPKVWEASFEGARAHPQWEFARRAGTSTTQPVDATRRYLAHVREVVRARPAIVPPGRDAESIEQTLPLREVRPEDAEALSGEAARSTEDDPPALVDGGTSGATRRIWWNPLRPPSRVVVVSGAPGSGKSSLVNRHTRVTAEAADARMREDDTASFLVEVPVVADCAVLARNLGERADREFVLAALTRGAVSGARTDDEMLADDACHAVVEVALRSGRAIVCLDALDEVPEAGRPLVQSALGHIADLGNQLVVTSRPRPQLEVDIAQLRGTFRAEALGFEPSQSVAFVRAWFTAASDPRLGERVARETVVRPELAELMRVPLLAALLCGLVMTRSTVEALPTSAATLLDAVVTAALRGEWRAEDDRVVHPESPPDDGVRLPLLARAVGRLCAGWRVRPHRFAAAEFDAALREDREYEQARRAAQLRWSLWAEWQTGEPTPPPDVVRWELLHDGLLTYETAVSGRPLFLRFVHSALADYCLARQVAGLTGAGLRDVIESHRWFDSGWEQVWPLVGELAQAPGEIVEDLLDHADDAWFEQTRLACCVAAGAGANLPADVAERLTSRVGKWASSSRLVDRERAVTSLVRLVRAGVPGAVGLAVAIDPKRIPLRAQAAVLAARADVGDAEAVDRALALLVDAARPVAFRRALAPVATRVGGERGVSALVDALRSVSSRTAAFQQLAAGIAVETGPGAEVATELVRDRRLPDSSRAVLGSLLIDRGDFKTVTAVREMALDPLTNGPLRAALLASLLYRGDADATLLEAGVRLAQDPNLTEAGAIDLIEALVRLGELQVLTDAARYLVRSSVRWQARQRLARAVAQSGADGVELLERTVAATLPLGLKVRPIIALVEVGRGTAEALRIAQDSGTELWIRLRCATALARHGSGGLDTDALELLVESAEGEEVDFAAELVSTAATQGLGSSARLAVALVRAAGSDLSGTGQRTATLLRALGRSGRVGAHALARIASDPECDEHYRALAIVSLAAGSPVDAARLASEHLDKFGAVVRDRLVVMLAERDVVEVLDLVPGSVLDAEERYRTVLGLVGGDRAAQHDHVRGRGLLASAEPGRPDDGALRRSVARETIGEELLAAGVEWGSEAEREHMIEWFMGRVELRVGARIAVFLSDELQDEFDQQEHEEEQEEFRRSYFGPDRLIVQEALEAAYVEVRRDPGQVPRLEVRSQDSGMGKIVTTAQVLREWARIAEQGEPNPLADFFASNAPVLASTLAFELLALVSHHHAAHYPYRGLTYLVKRALETHGIEETVRFVVDSSHQHDMLRRHLAEGQGGHLFHGALAGLLVAPRSASLHFYGALGAELEKAEAFATELMTASHGYATDDQRVQGVATIRATSGRCGWTADREAALVRALETGTAKEPSNANANANANA
AK018_05033471IS256 family transposase IS1554GTGCAGACCTGCATCGTGCACCTGACGCGCAACAGTTTCCGGTACGCCTCCCGGGCGCACTGGGACGCGATCTCCCGCGCCCTAACGCCCGTCTACCAGGCCGCGACCCTCGCCGAGGCCGAGGCCAGGTTCGAGGACTTCGTCGGGGCCTCGCAAGACACCTACCCCGCGATCGTGCGCCTGTGGCGCAACGCGTGGGCCAAGTTCGTGCCGCTCCTCGCGTTCGACCGCGAGATCCGCAGGATCATCTGCACGACCAACGCGATCGAGTCCGTCAACACCCGAATCCGCAAGACGGTCCGGGCCCGTGGCCACTTTCCCAACGATCAAGTGCGTCTACCTCGCCGTGATGGCCCTAGACACGACCGGGACCGGCAGGGCCCGGTGGACCATGCGGTGGAAGCAGGCACTGAACGCGTTCGTCATCACGTTCGATGGACGCCTCAGCGCGCACCGCCGCTGACCTCTTAAMQTCIVHLTRNSFRYASRAHWDAISRALTPVYQAATLAEAEARFEDFVGASQDTYPAIVRLWRNAWAKFVPLLAFDREIRRIICTTNAIESVNTRIRKTVRARGHFPNDQVRLPRRDGPRHDRDRQGPVDHAVEAGTERVRHHVRWTPQRAPPLTSPGPT0030665_806DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493NANA
AK018_050341392IS701 family transposase ISSav2GTGCTTGTGTGGAACAACGAGCCGTCGGCGGTGGCCGCGGAACACAGGGTAGACGCTGAGCGGTGGGATGCGGAGTTCGCCTCCGCGGTGGGACGGATCTCGGGCCGGTTCGCCCGGCGTGAGCCGCTGGCTCATGCGCGTGATCTCGTCGCAGGGCTCGTCGCGGGACTCGAGCGCAAGAACTGCTGGACGATCGCCGAGCACGCCGGTCACGCGTCGCCGCACAGGCTGCAGCACCTGCTGGGCCGGGCGGCCTGGGACGCCGACGGCGCCCGGGACGACGTGCGCGGCTACGTGCTCGACCACCTCGCCGATGACACCGCGGTCCTGGTGCTGGACGAGACCGGGGACCTGAAGAAGGGCGCCGCGACGGTCGGGGTGCTGCGCCAGTACACCGGCACCGCCGGGCGGATCGAGAACTCCCAGGTCGCGGTCTACCTGACCTACGCCGCCTGCGCCGGGCATGCGTTCATCGACCGGGCCCTGTACTTGCCGAAGTCCTGGTGCCAAGACCCCGACCGGCTCGCACGCGCCGGCGTGCCCGACGACGTGCAGTTCGCGACCAAACCGCAGCTGGCCGGGGCGATGATCGACCAGGCCGTCGCCGCCGGCACCCCGGCCGCGTGGGCCGCCGCCGACGAGGTCTACGGCGGCGACAAGATGCTGCGCGCGAAGATCCGCGCCCACCAGCTGGGATACGTCATGCAGATCGCCGCCAACCGGCAGGTGACCACCCGCACCGGTCGCATCGCGGTGCGCGACCTCGCCGCACAGATGCCCGCCACGGCGTGGCAGACCTACTCCGCGGGCGAGGGGTCCAAGGGGCCGCGCTACTACTCCTGGGCTCTGATCGGCATCGAACCCGAGCCCGAAGACGACACCGAGCCCACCGCCACGAACGACGAGGACACGACCACCGGCGGGGAGCAAATGCTGCTGGTGCGCCGCAACGAGACCACCGGCCAGCTCGCCTACCACCTGTGCCACGCCCCGACACCGACCCCGATGCGCACGCTGGTGCGCGTGGCCGGGCAGCGGTGGCGCATCGAGGAGAACTTCCAGGCCGCCAAGGGCCTGGTCGGGCTCGACCAGCACCAGGTGCGCCGCTGGGACTCCTGGCACCGCTGGACCACCCTGGCCATGCTCGCCCACGCGCTCCTGACCGTCCTGGCCGCCCTTGCCCGCAACGACAAGAACCCCCAACCCGGGCTGATCGCGATCACCGTCGCCGAGGCCCGACGCCTGTTCAACACCCTCGTCGCCGTCGTGACACGAGCCGCCAACGACGCCCTGCACTGGTCCACCTGGCGACGACGACACCAAGCACGAGCCCGCACCGCGCACTACCATCGACGCATCACCGCAGGTCAAGGTCACGATCTACGGCTGTAGMLVWNNEPSAVAAEHRVDAERWDAEFASAVGRISGRFARREPLAHARDLVAGLVAGLERKNCWTIAEHAGHASPHRLQHLLGRAAWDADGARDDVRGYVLDHLADDTAVLVLDETGDLKKGAATVGVLRQYTGTAGRIENSQVAVYLTYAACAGHAFIDRALYLPKSWCQDPDRLARAGVPDDVQFATKPQLAGAMIDQAVAAGTPAAWAAADEVYGGDKMLRAKIRAHQLGYVMQIAANRQVTTRTGRIAVRDLAAQMPATAWQTYSAGEGSKGPRYYSWALIGIEPEPEDDTEPTATNDEDTTTGGEQMLLVRRNETTGQLAYHLCHAPTPTPMRTLVRVAGQRWRIEENFQAAKGLVGLDQHQVRRWDSWHRWTTLAMLAHALLTVLAALARNDKNPQPGLIAITVAEARRLFNTLVAVVTRAANDALHWSTWRRRHQARARTAHYHRRITAGQGHDLRLNANANANANA
AK018_05035735hypothetical proteinGTGCCCGAGAAGTCGTCAGTCGCCGATACCGAGCCGGTCGTGGCGAAAGACCCACCACGTTCCCGAGCCGGAGGCTTCGTCCGCGCGTTCCTGGGCACTCTGCTCGGCATGGTCGCCGTGCTGGTGCTGCTGGGTGCTGTCGCGTGGGGTGCCGTCCGTTCCGAGGCGATCTCGCTCCCCGCCGCGTTGAATCCCTTCGCCACCGAAGAAGTCGACCGCTCCGAACGCCCGGTGCTGGTCAGCATTCAGAACCTGGCTCGCTTCGTCGCGGCTCAAGGCAGCTACCAGGTGGTCCTCGACATGGAGCAGGACACGAAGTACGTGCCGGACTGGCTGATGGGGGAGCGCACGATCTTCCTCGCGGACGGCTTCGTCGAGGTGTACGTGGACTTCCGCGAGCTCACCGAGGACTCGGTGGTCGTGTCCGAGGACGGGTCCACGGCGACGGTCATGCTGCCTGAGCCGGCGCTGGCGGAGCCGCGGATCGACCTCGAGCAGAGCCGGGCGCTCTCGGAGTCGCGCGGGCTGATCAACCGTGCCGAGGACTTCTTCGCCGATGACGTGGGGAGTAGGCAGGAGACGCTGCTCAAGGCGGAGGGCCTGCTCACCGAAGCGGCCGAGGCGAGCGGTCTGACGACCCGCGCCGAGGAGAACACACGCAGGACACTCGAGGGGCTGCTCGGCGGGCTGGGCTACGAGACGGTGGACGTCGTCTTCGTCGATGCTGCGACCTGAMPEKSSVADTEPVVAKDPPRSRAGGFVRAFLGTLLGMVAVLVLLGAVAWGAVRSEAISLPAALNPFATEEVDRSERPVLVSIQNLARFVAAQGSYQVVLDMEQDTKYVPDWLMGERTIFLADGFVEVYVDFRELTEDSVVVSEDGSTATVMLPEPALAEPRIDLEQSRALSESRGLINRAEDFFADDVGSRQETLLKAEGLLTEAAEASGLTTRAEENTRRTLEGLLGGLGYETVDVVFVDAATNANANANANA
AK018_05036621hypothetical proteinGTGATTCCTCCTGCTGACGTGACGGCGTGGTCCGTCGACCATCCTTGGCCCACGCTCGAACAGATCGAGCAGGACCTGCTGCTGTCACGCGCCATCTGCGCGATCGCCGCGCATCCCTACCTCGGTGACGAGCTGGCGTTCCGTGGCGGGACGGCGCTTCACAAGCTGCACCTGCCCGATCCGTACCGGTACAGCGATGACCTCGACTACGTTCGCTCGACGTCAGGTGGGATCGTCGACCTCACGCGTGCGCTCACCGACCTGGGAGAGTCGCTCGGATACACGGTGCGTACCCGGATCGGTCGGCATCCGAAGGTCTTCTGGCGCACCACGGCCTCTACGGGCATCCCCCTCCGGCTCAAGATCGAGGTCAACACCCACGAGCGTTCACCGGCGCTGCCGCTGACCACCATTGAGCACAACGTCGATTCCGCATGGTGGACCGGAGGGGCGCAGGTGCGCACCTTCCGACGGGCAGAGCTCGTCGCGACGAAGATCCGTGCGCTGTATCAGCGATCCAAGGGCGCGATCTGTTCGATCTCTGGCTCGCTCTCACCGACCTCGAGGAGTCACCCGACGACATCCTGGCCGCGTTCCACCCGTATCGACCCGACGGATTGAMIPPADVTAWSVDHPWPTLEQIEQDLLLSRAICAIAAHPYLGDELAFRGGTALHKLHLPDPYRYSDDLDYVRSTSGGIVDLTRALTDLGESLGYTVRTRIGRHPKVFWRTTASTGIPLRLKIEVNTHERSPALPLTTIEHNVDSAWWTGGAQVRTFRRAELVATKIRALYQRSKGAICSISGSLSPTSRSHPTTSWPRSTRIDPTDPGPT0027691_5000DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_AbiEii_TOXIN-ANTITOXIN_SYSTEM,PGPT0027691-toxin_AbiEii-naNANA
AK018_05037642hypothetical proteinGTGCGTCCGCTCCAGGGTCTGTGGATCCCGGTGCCGGCCGAGTACCGCACGTGGGGAGCTCCGCCAGGCCTTGAGGTCGTCGACACGTTGATGCGGCACCTCGGCACCGACTACTACGTGGGGTGGCTCACTGCAGCCGCTCTGCACGGGGCGGCGCACCAGGCGCCGCAAGTCTTCCAGGTCGCGACGTCGCGCGACGTCCGAGACCTAGTCGTCGGCCGAACGCGGTTCCGTCACCGGACCAGATCGAACCTCACCCGGGTAGCGACCCTGGACTGGCCGACACGGTCGGGGACCGCCCGAGTCTCCACGGTGGAGACGACGCTGCTTGATCTCGCCACCGACGTCGACGCCGCGGGGGGCCTGGACAATGCCGCGACAGTTCTCGTCGAGCTCAGAGAGAACGATGCTCTTCACACCGACGCCCTCATGGAGATGCTCGGGCTGTTCCCCGCGGCCGCCTTCCGACGCCTCGGGTGGATCCTGGAGAACTTCGGCGGCGTCGAGCTCGATGAGCTCGCGGCACGTGTCGTACCGCTGACTCGCACCCCGTCCCGGCTCGATCCGGGGAGGCCGCAGACCGGCCCTCTCGACGACCGATGGAACATCCGCCTCAATGCTGATGTGGAGCCCGACCTGTGAMRPLQGLWIPVPAEYRTWGAPPGLEVVDTLMRHLGTDYYVGWLTAAALHGAAHQAPQVFQVATSRDVRDLVVGRTRFRHRTRSNLTRVATLDWPTRSGTARVSTVETTLLDLATDVDAAGGLDNAATVLVELRENDALHTDALMEMLGLFPAAAFRRLGWILENFGGVELDELAARVVPLTRTPSRLDPGRPQTGPLDDRWNIRLNADVEPDLNANANANANA
AK018_050381629dinG_43'-5' exonuclease DinGGTGGGGATCCTCGGACAGCTCTTCGGCAAGCGGAAGACGACCACCACCGAGCAGCCGTCGACGCTCCCGGATGTCGCCGGGGCTGCCGCGCCCCGCCGCGCAGAGCCGACCTTCGCCGTCGTCGACGTGGAGACGACTGGCCTGAGTCCCCGGGTGGACCGCATCGTGGAGCTCGCGGTCGTCCGGATCGACACTCATGGCCTCGTGGTCGACGAATGGTCGGGACGGTTCGACCCGCAGGGACCGGTCGGCGCGACCCACATCCATGGCATCACCGAGTCAGACGTGGTCGGCGCGCCCCTGTTCCGCGACCGTTCGCACGACGTCGCCACGATGCTCCGCGGTGCGGCGGTCGTCGCGCACAACGCCCGATTCGACCTGGCGTTCCTGCGCGCCGAGTTCGAGCGCAGCGGGTGGGATCTGCCGTACGTCCCGGCGTTCTGCACGCTGGACGGCAGCCACCACTACCTGCCGCAGCTCGATCGTCGGCGGCTCGCGGACTGCTGTGCAGCGACCGGAGTCCGCCTCGCGAACGCCCACTCGGCGCTGGGGGACGCGCGAGCCACGGCTGAGCTGATGCAGCGCTACCTGACGATGCCACGGGTGCCCCGACACCGTGACCTGGGTCGACTCTCGGCGGAGGCGTCGACGATCTCCTGGCCGAGCGGCCCGACGCGGGAACCTGTTGCGGCACCGTCGCGACCACGCACTGCGGGCGGAGCGCGCGGGACCCGCCGCGCCCGGCCTCGGCCGCAGCAGCCGCCACTCGTCCAGCAGCTCGCGGACCTCGGCCTGACCGATCTGCTCGACGACGGCGCCCCGGCTGGTTCGACGTCGTACCTCGAACTCCTGGTCGGCGTCCTCGAGGACGGTGTCATCACCGAGAGCGAGGCGGGGGCGCTCAACGACCTGATCGAGGTCTACGGGATGGGGCGCGACGAGGTGGCGACGGCCCACAGAGCGTTCGTCACGGCGTTGGCGCATCGCGCGCTCGATGACGGGCATGTCTCGCGCAACGAACGCGCCGAGCTGTACGAGATCGCCGAGCTCCTCGAGGTGGCGCCGTCGACGGTGCGCGAGGTCATCCAGCACGCGGATGACGCCCGCGCGGCGCGGCTGAGCGCCGGGCTGAAGCCGCTCCCGGACGACTGGCCGTTCGGCGAACCGCTGCGGGTCGGAGACAAGGTGGCGTTCACCGGTTGCGACGACACGCAACGGGAGCGGCTCGAGCGGCGCGCAGAGAAGTTCGGCGTCCGCGTGATGAACAACGTCTCGCGCCGGACGGCGATGCTCGTCACCGACGGGTCGTTCTCGGGCGGAAAGCAGGCGAAGGCCACCGAGCTCGGCACCCGGGTCGTCACGCCGGACGACTTCGACGTGCTGCTGGCACACCTGCAGCCCCCAGTGCAGACCGGTCCTGCAGCCCGGGCGCCCAAGCCCCGTGTGGCCACGACCGCTCCGGCGAGGCGCGCAGCGTCACCTCCGAAGCCGGCGGCCACATCGTCTGCCGCCAGTCCTGCCGAGATCCGCGCGTGGGCGACAGCGCGAGGGTTCGAGGTCAGTTCTCGTGGGCGGCTCCCGCGCGCTGTCGTCGAGGCGTTCGAGCAGGATCAGCACGCACACGACTGAMGILGQLFGKRKTTTTEQPSTLPDVAGAAAPRRAEPTFAVVDVETTGLSPRVDRIVELAVVRIDTHGLVVDEWSGRFDPQGPVGATHIHGITESDVVGAPLFRDRSHDVATMLRGAAVVAHNARFDLAFLRAEFERSGWDLPYVPAFCTLDGSHHYLPQLDRRRLADCCAATGVRLANAHSALGDARATAELMQRYLTMPRVPRHRDLGRLSAEASTISWPSGPTREPVAAPSRPRTAGGARGTRRARPRPQQPPLVQQLADLGLTDLLDDGAPAGSTSYLELLVGVLEDGVITESEAGALNDLIEVYGMGRDEVATAHRAFVTALAHRALDDGHVSRNERAELYEIAELLEVAPSTVREVIQHADDARAARLSAGLKPLPDDWPFGEPLRVGDKVAFTGCDDTQRERLERRAEKFGVRVMNNVSRRTAMLVTDGSFSGGKQAKATELGTRVVTPDDFDVLLAHLQPPVQTGPAARAPKPRVATTAPARRAASPPKPAATSSAASPAEIRAWATARGFEVSSRGRLPRAVVEAFEQDQHAHDNANANANANA
AK018_05039993hypothetical proteinATGACCCCGCCACAGCATCTCCGGGCACGCGGGACTCGCCGTTACGACAAGCCTGCCCTCGATCACGACGAGCTGGTCGACCGCATGATTGGCCGCGGCCTCGTCGTCCCGGACCGAGACCGCACCCGACGGTACCTGCGTCACATCGGCTACTACCGGTTCTCGCCATACCTGATCCCGTTCCGGGAGTCGCCGTCCCACGAGCAACTGAGGCAAGGAACCACCTTCGACCAGGTCCTCGACCTCTACGTGTTCGACCGCAAGCTCCGACTGCTCGTCATGGACGCCATCGAACGGATCGAGGTCGCGGTCCGCGCCGCCCTGACCGACGCGATGTCGCTCCAGCACGGAGGTCCGTTCTGGTACCTCGATCCCGAGCACTTCGCCGATGTTGCGAGGCACGACGGTCTGCTGCGCCACGTCCGGAAGTCCTGCCGCGAGCAGCTGCGCGACGGTGAGGACGCACCATCCGGCGAGCTGACGCACGCCTCGGCGCTCGAGCACTACCTGACCACCTACGGCGAGCCGGAGCTGCCGCCGTCGTGGCTCGTGGTCGAGAGCCTCACCCTGGGCCAGCTCGACAAGGTGATCGCCAACTTGAGGCGACCGGCGGACGTGAAGCGCATCGCCCGGCCCCTCGGACTCACCGCCCCGGTGCTGGTCTCCTGGCTCCGCACCTATGTGCGCGTGCGGAACATCTGCGCCCACCACGGTCGGCTGTGGAACGTCGGCCTCGGCGTCTACCCGGCCATTCCGAAACCGACCACCGTGGCCTGGCTTCGCGACGCGGAGACGTTCACGGACGCCCCGGACCGCCGCAAGCGTCTCTACCCGGTGCTGGTCTCGCTGCAGAGCGTGCTCTCGACCGTCTCGCCACGCTCTTCGTGGGCGCAGCGCCTGAGCGATCTGCTCGATGCCCACCCTCGGGTTCCGCTACGAGGCATGGGCATCCCCGCACAGTGGCGCGACGATCCCTTCTGGCCGCTCTCGTAGMTPPQHLRARGTRRYDKPALDHDELVDRMIGRGLVVPDRDRTRRYLRHIGYYRFSPYLIPFRESPSHEQLRQGTTFDQVLDLYVFDRKLRLLVMDAIERIEVAVRAALTDAMSLQHGGPFWYLDPEHFADVARHDGLLRHVRKSCREQLRDGEDAPSGELTHASALEHYLTTYGEPELPPSWLVVESLTLGQLDKVIANLRRPADVKRIARPLGLTAPVLVSWLRTYVRVRNICAHHGRLWNVGLGVYPAIPKPTTVAWLRDAETFTDAPDRRKRLYPVLVSLQSVLSTVSPRSSWAQRLSDLLDAHPRVPLRGMGIPAQWRDDPFWPLSNANANANANA
AK018_050411158hypothetical proteinGTGGCTGAGACGACGATTGGCGGCCTGGCGGCTGCAGGCGTCCTCTCGATGGGCGACGGCTACCGCACCAAACGTTCCGAGCACGGGCGTCCGGGCTTCCGCATCATCCGCGTGGCCGATGTCCGGGGCGACACCGTGCATCTCGACGGTGACGACTTCGTGTCCATTGACTACACGACGCAGATGGGCGCGAAGGTTGCGTCCGCCGGGGATGTCTTGCTGACTACGAAGGGGACGGTCGGGCGTGTCGCGGTGATGCCCACGACGGACGAACCGGCCGTGTACTCGCCGCAGTTGTGCTACTTCCGCGTGCATGAGCCGGAAGTTGTTGACCCGCGCTTCCTTCGCTACTGGCTCCAGTCGGCCGAGTTTCTGAGCCAGGCTGCGTACCTTCAAGGCAACACTGACATGGCGCCGTACATCAGCTTGTCCGACCTCCGTGCTTCGCGGATAACGATTCGGGCGATTGGTGAGCAGCGCGCGATCGCGGACGTCCTGGGCGCCCTCGACGACAAGATCGCGGCCAACACCAAGCTCGCCACCACCGCCGACGAGCTTGCGAGCTCCCTGGTTCGTGCCGCCGTGCTTGAGCAGGGCGAGCCGCTGTCGATCGCGGACGTTGCAGAGTTTCACAACCGTCGAAGGGTCCCGCTGTCCTCTCGTGAGCGTGAGGGCAGGCCGGGTCAGGTGCCCTACTACGGAGCGAATGGTCAGGTCGACACCGTGGATGAGTACCTGTTCGACGATGATCTCGTCCTGGTCGGCGAAGACGGCACGGTCATCAACGGTAATGGTTCTCCGGTCGCCAACTTCATCTGGGGGCCTGCGTGGGTGAACAACCATGCGCACGTCATGTCGGGCTCTGGCGTGTCCACGCCCATGCTCTATCACCTCGTTCGCTCCGCGCGGGTCGAATCAGCCGTGACCGGCGCTGTGCAGCCCAAGTTGAGTATGACGAGCTTGAAGGCGGTCACGGTGGAGGTGCCCGTGGGCGAGCGGGTCGCTCAACTGGAGTCCCAAGTTGGCGCCTTGATGGCCTCCCACAAGTCGCTCAATGACGAGTGCAGCCAGTTGGCGGCCACCCGTGACGCCCTCCTGCCCGCTCTGATGTCCGGAAGGCTCCGCGTCGAGGAGGCCGCCGAGGTGGCCGGCCTGTGAMAETTIGGLAAAGVLSMGDGYRTKRSEHGRPGFRIIRVADVRGDTVHLDGDDFVSIDYTTQMGAKVASAGDVLLTTKGTVGRVAVMPTTDEPAVYSPQLCYFRVHEPEVVDPRFLRYWLQSAEFLSQAAYLQGNTDMAPYISLSDLRASRITIRAIGEQRAIADVLGALDDKIAANTKLATTADELASSLVRAAVLEQGEPLSIADVAEFHNRRRVPLSSREREGRPGQVPYYGANGQVDTVDEYLFDDDLVLVGEDGTVINGNGSPVANFIWGPAWVNNHAHVMSGSGVSTPMLYHLVRSARVESAVTGAVQPKLSMTSLKAVTVEVPVGERVAQLESQVGALMASHKSLNDECSQLAATRDALLPALMSGRLRVEEAAEVAGLPGPT0027175_3202DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027175-hsdS-K01154NANA
AK018_050421620hypothetical proteinGTGCCACCGAGGACGAAGGCCCAGGCGCCGTCGGTCGCCACGGCGACCACCATGAAGGAGCTGAAGGACACGCTCTGGAAGGCTGCGGACAAGCTCCGCGGGTCGATGGACGCGAGCCAGTACAAGGACGTGATCCTGGGGCTGGTGTTCCTCAAGTACGTCTCGGACGCGTTCACCGAGCGCCGCGAGGCGATCCTCGCCGAGTGCGAGGCGGACGGGCTGAGCGTCGAGGAGGCCGAGCCGCTGCTCGAGGACGTCGACGAGTACCGCAGCGCCGGGGTGTTCTGGGTGCCGGAGCGAGCGCGGTGGGGCTATCTGGCCCAGCACGCCAAGGGGCGCGTGGCGACGCTCGACGAGCACGAAGCCTCGATCGGGCAGCTCGTCGACGACGCGATGGCCCACATCATGGGCGCGAATCCGTCGCTGGCAGGGACGCTGCCCACGATGTTCAACAAGGACAACGTCGACCAGCGCCGGCTCGGCGAGCTCGTCGACCTGTTCTCCTCGGCGCGGTTCACGGGCGTCGGGGGTGACGGGCAGAAGGTGTCCAAGGCCCGCGACGTGCTGGGGGAGGTGTACGAGTACTTCCTCGGCAAGTTCGCCGCCGCCGAGGGCAAGCGGGGCGGCGAGTTCTACACGCCCCCTGGTGTGGTGCGCGTGCTCGTCGAGATGCTGGAGCCGTATTCGGGGCGGGTGTACGACCCGTGCTGCGGGTCGGGCGGCATGTTCGTGCAGGCCGAGAAGTTCCTGGAGCGGCACGGCGCGAACCCTCAGGCGATCAATGTGGTGGGCCAGGAGCTCAACGAGCGCACCTGGCGCATGGCCAAGATGAACCTGGCCGTGCACGGCCTGACCGGTGACCTCGGGCCGCGCTGGGGCGACACGTTCGCCCGCGACCTGCACCCGGACCTGCAGGCCGACTACGTGATGGCCAACCCGCCGTTCAACATCAAGGACTGGGCGCGTACGACCGACGACGCCCGCTGGAAGTACGGCGTGCCGCCGAAGGGCAATGCGAACTACGCGTGGATCCAGCACATCCTGTCCAAGCTGGCACCCGGTGGGTCCGCGGGCGTGGTGATGGCGAACGGGTCGATGTCCTCGAACTCCGGGGGTGAGGGCGAGATCCGGGCGCAGCTCGTCGAGGCGGACCTCGTCTCCTGCATGGTGGCGTTGCCGACGCAGCTCTTCCGGTCGACGGGGATCCCCGTGTGCGTGTGGTTCCTGGCGAAGGACAAGGGCAACCGGGCCGGCGAGGTGCTCTTCCTCGATGCTCGGAACCTCGGGCACATGGTGGATCGTGCCGAGCGTGCGCTGTCCGAGGACGACATCGCCAAGATCGCCGGGACGTACCACGCGTGGCTCGGGACGCCGTCTGCCGAAGGGGCCGAGTACGCCGACGAGGCCGGGTTCTGCTACTCGGCGTCGCTGGGGGAGATCAAGGACGCCGGCTACGCGCTGACGCCGGGGCGGTACGTCGGCGTGCCCGAGGTCGAGGACGACGGCGAGCCTCTGGATGAGAAGATCTCGCGGCTCACGGGGGAGCTGTTCGCGCAGTTCGACGAGTCGGCGCGGCTGGAGAAGGTCGTCCGCGAGCAGCTCGGGAGGGTTCGTGGCTGAMPPRTKAQAPSVATATTMKELKDTLWKAADKLRGSMDASQYKDVILGLVFLKYVSDAFTERREAILAECEADGLSVEEAEPLLEDVDEYRSAGVFWVPERARWGYLAQHAKGRVATLDEHEASIGQLVDDAMAHIMGANPSLAGTLPTMFNKDNVDQRRLGELVDLFSSARFTGVGGDGQKVSKARDVLGEVYEYFLGKFAAAEGKRGGEFYTPPGVVRVLVEMLEPYSGRVYDPCCGSGGMFVQAEKFLERHGANPQAINVVGQELNERTWRMAKMNLAVHGLTGDLGPRWGDTFARDLHPDLQADYVMANPPFNIKDWARTTDDARWKYGVPPKGNANYAWIQHILSKLAPGGSAGVVMANGSMSSNSGGEGEIRAQLVEADLVSCMVALPTQLFRSTGIPVCVWFLAKDKGNRAGEVLFLDARNLGHMVDRAERALSEDDIAKIAGTYHAWLGTPSAEGAEYADEAGFCYSASLGEIKDAGYALTPGRYVGVPEVEDDGEPLDEKISRLTGELFAQFDESARLEKVVREQLGRVRGPGPT0027180_2087DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027180-hsdM-K03427NANA
AK018_050432070hypothetical proteinATGCCCGACGCCGGCACCCCCGCCGTGATGGACCGCCTGCACGTCTCGCTGCCGGACATCGCCGAGATCGCCCGCGTGCAGCGGCCGGTGGTATCCACCTGGCGGCGCCGGTACGCCCGCCATGACCTCCCGTTCCCCGAGCCGGTGGCACGCCACGACGACGGCGCGCTCCGCTTCCGCGCGGTCGACGTCGCCGACTGGATCGAGGCGACCGGCCGCGGCAACAACCCGCACTTCCGGGCCGACGTCGCCCTGCGCGCCTCGCTCGCGGTGGACGACCCGTCGCGTGCCCACCGGCTGCACGAGGGACTCGCCGCGATGCTGTGCCTGAAGGACGTCAGCGACGAGCCCCTCGGATCACTGGCAGACGGCGACCTGCTCGACCTGGCCGACGAGCTGGACCCCGACGACGCGTTCCTCTTCACCGAGGTGCAGGCGCTCGGCGCCGACCGCCGCACCGCCGCCGAGCTGGCGGACCTCGTCGCCGACGCCGCCTACACCCCGGGCCGTGCCGCCGAGGCGATGACGCTCCGCACCCGGCGCGCGGACCTCGTCTCCGCGCTCGGCCCGGCTGCGCTCTACGTCGCGGCGCGCATCGCGTCCCAGATTGCCGACCACGGCCCCGTCGCGGACCCCGTCCCGGGGGCCGGCGACCTGCTGCGCGCCGTGCTCGCCGACTCCGGCCGCCTCGACCCGCCGGCCACGCTCCTCCCGGCCGGGCACCGGGCGGCCCGGCGGCGTCTCGCCGCGCACGGCTGGGACGTCGGCACCCTGGAGTCCGACGGCGTCGCCCCGTCGCCCCCCGCGGATGCCCTCGTCGTCACCCAGGTGCCACCCGCCGGTGCCGCCGAGCTCGCCCCCGTCGAGGTGCTCGAGCGGGTCGAGGAGCTCGTCCTCGGCCTGCACCCCGACCAGCGGGCGGTCGTCGTCGGTCCCGCGAACGCTCTGGTCGACGCCCTCGACGGCCGCGCCGAGTCCGTCCGCTCCGCGCTGCTGCGCACCGACCGGCTGCGTGCCGCTGTCGTCCTCCCGCCGGGCCTCGTCGTGGACCGCTCACGGCAGCGGCTCGCCGTGTGGGTGCTCGGGGCCCCGCCGGCCGAGGTGCCGATCGCCGAGCGGTGGACGATGGTCGCCGACCTGTCCGAGCTCCGCGTCGACGACCTGCTCGACCAGGCCGTGCTCGAGGACCTCCTGACCGACGTCGAGGCCGCCCTCGGCGGTCCCGCCGACGTGCGCTCCCACGCCTTCCGGTTCGCCCGGTTCGTACGCATGGCGGGCCTGCTCGCCGTCGGCGGCAGCCTCGTCAACGCAGGACGTCCGGTCGTCGCCGGCGTGCGGGACGACGGCGGTGCTGCGGCCGTGCGCGTCACCGAGCTCGCCGCAGGGCTCGCCGCCGAAGACGCGACCCGGCCTGTCCTCGACGTGCAGGTCGAGCGGGGCGAGGCGGCCGCCGTCCGGGCCGTGCCGCTGTGGGCGCTCGCGGACCAGCGCAGGTTGCGGCGGCTGCCGGGCAACCGTGTCGATCCCGGGCAGGTGGTGGAGGCCCCGGACCGCGACCCGGCGTTGTTGCGGGTGGTGGGTGTGCCGGAGCTGACCGGCGCGTCGCCGTGGGGTGTCCGAGCGGTCGAGCGGCTCCGGTTGGTCGAGTCGAACCCGTCGGGCCGGCTGACCGAGCCCGGAGACGTGGTCGTCACCACGACGCCCAGGCCCGCCGCCGTCGTCGACCACGAGGGGTTCTCGGTGGTGGAGTACCCGGCTCAGGTCCTGCGGATCATGCCCCCGGCCCCGACGGCCGACGGCGCGTCGCCGCCTGCCGCCGTCGTGCCCGAGGTGCTGGCGCGTGACATCTGCGCCCAGCCCGACGGCGCCAAGTGGTGGCGCGCGTGGGAGACCCGGCTCGTGCCGGCCGACCAGGCCGACGAGGTCGCCCGTGTGCTGCGCGCGGTGAGCGAGCGGGCGGCCGCGGCCCGCCGCGAGCTGCGTGACCTTGACGAGCTCGCCGGGACGCTGGCCGACGGCGTGACCTCCGGTGTCGTACGCATGAGGTTGGATGGGGGCGACCCCCTGTGAMPDAGTPAVMDRLHVSLPDIAEIARVQRPVVSTWRRRYARHDLPFPEPVARHDDGALRFRAVDVADWIEATGRGNNPHFRADVALRASLAVDDPSRAHRLHEGLAAMLCLKDVSDEPLGSLADGDLLDLADELDPDDAFLFTEVQALGADRRTAAELADLVADAAYTPGRAAEAMTLRTRRADLVSALGPAALYVAARIASQIADHGPVADPVPGAGDLLRAVLADSGRLDPPATLLPAGHRAARRRLAAHGWDVGTLESDGVAPSPPADALVVTQVPPAGAAELAPVEVLERVEELVLGLHPDQRAVVVGPANALVDALDGRAESVRSALLRTDRLRAAVVLPPGLVVDRSRQRLAVWVLGAPPAEVPIAERWTMVADLSELRVDDLLDQAVLEDLLTDVEAALGGPADVRSHAFRFARFVRMAGLLAVGGSLVNAGRPVVAGVRDDGGAAAVRVTELAAGLAAEDATRPVLDVQVERGEAAAVRAVPLWALADQRRLRRLPGNRVDPGQVVEAPDRDPALLRVVGVPELTGASPWGVRAVERLRLVESNPSGRLTEPGDVVVTTTPRPAAVVDHEGFSVVEYPAQVLRIMPPAPTADGASPPAAVVPEVLARDICAQPDGAKWWRAWETRLVPADQADEVARVLRAVSERAAAARRELRDLDELAGTLADGVTSGVVRMRLDGGDPLNANANANANA
AK018_05044666hypothetical proteinATGCCCACCCGCCCCACCGACGCACCCGATGCGGAGCAGCCCGCCGCGAGCGGAACCGCACGCACCACACCGACCGACGCGACCGCTGCCGTCGACCGCCGCTGGCGTACCGCGACCGTCGCGCTCGCCGTGCTGCTCGTCGCCGCCGTGGTCTACGGCGTCAGCGCCGGTGTGGCCAACATCCAGTGGTCCGACCGCGCCGACGAGCTGGAGGCAGACAACGCCGAGCTGACGTCGGTCCTCGCCCAGGCGGAGGACGACGAGGCCACGGCGATCGAGCGCGCCGAGCAGGCCGAGGCCGCCCACACCGAGCTGACCGAGGCGACCGAACAGCGGGAGGCCGAGCTCGACGAACGGGCAGCCGCTCTCGACGAGCGCGAGGAGGACGTCTCGGCCCGCGAGGACGCGGTGACGAAGACCGAGGAGCGCATCGCCGCGAACCGGATCTCCGACGGCACCTGGACGGTCGGCGACGACGTCGAGCCCGGCACCTACCGCACCACGGACGCCGTCTCCGGCGACTGCTACTGGGGCATCTACCGCTCCGGCACGAACAAGCGCGACATCGTCGCCAACGACATCGTCGACGGCGGCCACCCCACCGTCACGCTCCGCGACGGCCAGGACTTCGAGTCCAGCCGGTGCGGCAGCTGGGACAAGCAGTAAMPTRPTDAPDAEQPAASGTARTTPTDATAAVDRRWRTATVALAVLLVAAVVYGVSAGVANIQWSDRADELEADNAELTSVLAQAEDDEATAIERAEQAEAAHTELTEATEQREAELDERAAALDEREEDVSAREDAVTKTEERIAANRISDGTWTVGDDVEPGTYRTTDAVSGDCYWGIYRSGTNKRDIVANDIVDGGHPTVTLRDGQDFESSRCGSWDKQNANANANANA
AK018_05045873hypothetical proteinATGTCCACCCCCTTCCCGCAGGCTCCCGCGCCTGCACCTGCCGCCCCGGCCCGCTCCAACGGCCTCGCCGTCGCCGGCTTCGTCGTCGGGCTCGTGTCCCTGGTCCTGTGCCTGGTCCCGATCTTGAACAACGCGGTGTTCCTCACCGCGCTCGTCGGGCTCGTGCTGGCGGTCGTCGGGCTCGTCAAGGCTCGGCGCGGTGCGCCGCGTCGTGGTCTGGCGATCGCCGGGATCGTCCTGTCCGTGCTCGCCGGCGTCGGCGTGCTGGCCTCGCAGGCGTTCTACACCTCGGTGCTCGACGACGTCTCCGAGTCCCTGGACGACACCCCGACCTCGGACGCCGCCGCGGCGGCCGAGGACGAGCCGGCCGAGGGGTCCGGCGAGGTCGCGGAGCCGGCCGCCCAGGACACCGAGGAGGCCGCGGCCGAGGAGCCCGAGCCGGAGCCCGCTCCGGAGCAGGGCACGCGCGACAACCCGTTCCGGTTCTCGGACACGGTCGGCAACGACGACTGGACCGTCGACCTGGGCAAGCCGCGCGAGGCGTGGGACGACATCCGCGCGGAGAACCAGTTCAACGACGCTCCCGCCGACGAGATGGAGTACTGGATCGTCCCGGTCGAGGCAACCTACACCGGCACCGAGACCGGCACGCCGTGGATCGACCTGACCATCGAGTTCGTCGGCGACGACAACGCCACGTACAGCGACAGCTGCGGCGTCATCCCGGACGACCTCATGGACGTCGACGAGCTCTACGAGGGCGGCGCCGGCACGGGCAACGTCTGCGTGACGGTGCCGGCCGGGGCCGAGGGGACGTGGACGCTGACTGCCGGCTGGTTCGCCGACCCGGTCTTCTTCCGCGCCAAGGGCTGAMSTPFPQAPAPAPAAPARSNGLAVAGFVVGLVSLVLCLVPILNNAVFLTALVGLVLAVVGLVKARRGAPRRGLAIAGIVLSVLAGVGVLASQAFYTSVLDDVSESLDDTPTSDAAAAAEDEPAEGSGEVAEPAAQDTEEAAAEEPEPEPAPEQGTRDNPFRFSDTVGNDDWTVDLGKPREAWDDIRAENQFNDAPADEMEYWIVPVEATYTGTETGTPWIDLTIEFVGDDNATYSDSCGVIPDDLMDVDELYEGGAGTGNVCVTVPAGAEGTWTLTAGWFADPVFFRAKGNANANANANA
AK018_050461632hypothetical proteinGTGACCGACTTCATCGTGACGGCGTTCGCCGACCCGATCACCAGAACGTTCTGCGCCGCCATCTTCGGCATCGCCGTCATCACAGTGGTCCAGGTGCTGCGCGCCAAGGCGCGAGCCGAGTCACGCATCCGGGGCGTCCGCGAGCTGATCGACACCGACGGCCCCGTTCGCAAGGAGCACCGCTCGGGTATGCGCCGCAAGGCCCTCGAGTCCGGGAGCGACGTCGGTCATCTGTGGCAGGAGTTCGACGAGACCCTCGTCGAGGGCCCCGACGGAAACCTGCTCAACACCCACGACGCCGACTACTACTTCCGGTCGGACTCGATGGCCCCCGAGCTGCTGCACAGCCGCATCCTGCTCACGAGGCCGGCCGTCCTGACGGTCATCGGCGTCCTGGGCACGTTCTTCGGTCTCGTCGTGGGCCTGACGGCGATCGAGATCGACGGGGACGCCGATCAGCTGACGGAGGGCGTGCGCGAGCTCATCGGTGGCGCGAGCGTCGCCTTCGTCACCTCGGTCGCCGGCGTGTTCTTCAGCATCGTCGTCGCCGCGATCGAGAAGTGGGCCAGCCGCAGCATCGACGACGACGTGCGGTCGCTCCAGGCGTTCGTCGACGAGCGATTCGAGAAGCAGACCTCCGAGGCATCACTCGTCAGCATCATGCGCAGCTCGGCCACGAGCGAGGAGCACCTCGCCACGCTTGGTGAGCAGATCGGCAAGTCGCTCCAGGAGGTCGTCGGCCCGGCGATGGAGAAGATGGCCCATCAGGCCGCGCACCAGTCGGAGGAGGTGTTCGAACGCCTCGTGGGCAAGTTCCACGAGAGCTTCTCGGAGCTCGGTAGCGGTCTCGCCGAGCGCCTCGACGAGAGCACCCGAGGCCTGTCGGACACCATCGGCTACCTGGGCGAGAAGCTCGCCGAGCAGGCCGACGAGCACCACGCTCGCATGACCGAGATCCGCGAGGCGACCCGCCGGCAGGTCGAGCTGCTCGAGGAGCGTCTACCGGCCGTCGTCGACCGCCTGGACACGGTGACCGACCGACTCGACGGCGTGTCCCGCCAGCTCACTCCGGCAGCCGCGCACCTGCAGGCGACCGCGCAGGCCTTCGAGTCGACGAGCGAGCGCTTCAGTGGCGTGCTGGCCGAGAGCGTCGAGAGCCTGGACCGGATCTCCGAGCAGCAGGCCCGAGCCACCCACGACATCACCGTGCTCTCCCAACGCCTCGACGGCCTCACCGAGTCCGCCGTGTCCGCTGCAGGGATGCTCGAGGGTGCATCGAGCACCTTGCGCGAGGGGATCGAGGGCATCGACGAGCAGCAGAAGCAGCTGCTGGGCTCGATGCGCGACCAGCAGAGCTCCTTCCTCGAGGGGATGCGCACCCACCAGGACGAAGTGCTCACCAGGCTCCGGACCGAGGTGGAGGGATTCAGCGACTCGCTGTCGGCATGGTTCGCCCAGTACTCCGAGGCTGTCGCGAACCACACCCGTGAGCGCATGGACGTCTGGAACGAACAGACCCACGCGTACACGTCGTCGATGCTCGACGCCGCCAAGGCCCTGTCCGCCACCGTCGAGGAGATCGACACCGCACTGCAGCGTCGGGACGATGACGTCACCGGGGCCGCCGCATGAMTDFIVTAFADPITRTFCAAIFGIAVITVVQVLRAKARAESRIRGVRELIDTDGPVRKEHRSGMRRKALESGSDVGHLWQEFDETLVEGPDGNLLNTHDADYYFRSDSMAPELLHSRILLTRPAVLTVIGVLGTFFGLVVGLTAIEIDGDADQLTEGVRELIGGASVAFVTSVAGVFFSIVVAAIEKWASRSIDDDVRSLQAFVDERFEKQTSEASLVSIMRSSATSEEHLATLGEQIGKSLQEVVGPAMEKMAHQAAHQSEEVFERLVGKFHESFSELGSGLAERLDESTRGLSDTIGYLGEKLAEQADEHHARMTEIREATRRQVELLEERLPAVVDRLDTVTDRLDGVSRQLTPAAAHLQATAQAFESTSERFSGVLAESVESLDRISEQQARATHDITVLSQRLDGLTESAVSAAGMLEGASSTLREGIEGIDEQQKQLLGSMRDQQSSFLEGMRTHQDEVLTRLRTEVEGFSDSLSAWFAQYSEAVANHTRERMDVWNEQTHAYTSSMLDAAKALSATVEEIDTALQRRDDDVTGAAANANANANANA
AK018_05047834hypothetical proteinATGAGACGGTCCGCCCGCCGCTGGAGTGCCCGGGACTCAGAAGACTCCTCGCACTGGATCTCGTTCTCCGACCTGATGTCCGCGCTGCTCCTGGTCTTCCTGCTCGCCGTCGTCCTGCTGATCCTGACCCTCACCACCAAGCAGCAGGAGCTGATCGCCCAGGAAGCCGAGGCCGAGCGGGCCGAGGCCGTCTTCGCCAACCAACGTGACCTGCTGGAGACACAGGTGGCGACTCTCAGTGAACGCGAGGAGATCCGGTCCCGGCTGGTCCGGGAGATCGCCGCGGAGCTCCACGAGCGGGGCATCGAGGTGACGATCAGCGAGGACGCCTCGGTGCTGCACATCCCCACGTCGGCTCTCGGTTTCGCCTCCGGCTCCTACGAGATCCGGTCCGCCCACGAGGACGTCGCTCTCACCATCGGCCGTGTCATGTCCGCCACCGTCCGCGAGGACGAACGGTTCGAGGCCCTCGACACCGTGTTCGTCGAGGGCCACACCGACAGCCAGGCGTTCAGCGGGCTCGAGGGCACAGGCAACTGGGGGCTGTCGACGTTCCGCGCGATCTCCCTGTGGCGCCTCTGGGGTGACCGCCTCACGACGTCGGAGCGACTCGACAACCTGCTCCGCGAGGACGGCCGGCCCGTCTTCTCCGTCTCCGGATACGCGGACACCCGTCCGGTCGAGGCCGAGCAGAGCACCGACGTGCAGAAGGCGGCCAACCGGCGCATCGACATCCGCTTCACCGTCAAGGGGCCCACCGCCGAGGAGCTGGCGACCATCGTCGAGGACTCCCTGGACGGTAGTGCCGCTGAGGCGGCAGGAGCCGACTCATGAMRRSARRWSARDSEDSSHWISFSDLMSALLLVFLLAVVLLILTLTTKQQELIAQEAEAERAEAVFANQRDLLETQVATLSEREEIRSRLVREIAAELHERGIEVTISEDASVLHIPTSALGFASGSYEIRSAHEDVALTIGRVMSATVREDERFEALDTVFVEGHTDSQAFSGLEGTGNWGLSTFRAISLWRLWGDRLTTSERLDNLLREDGRPVFSVSGYADTRPVEAEQSTDVQKAANRRIDIRFTVKGPTAEELATIVEDSLDGSAAEAAGADSNANANANANA
AK018_050481521hypothetical proteinATGACGCTGGCGCTCCCCGCACCGGAGGTCCGCCGCGAGGCCTGGTCGCGCGACCTGACCGAGCAGTGGCACGACGCCGGGGAACGCGCGGCAGAGATCGCACGCCGCGCAGGCACGGGCTACCGCTATCCTCCGCTGCTCGCCGAAGCACAGCGTCTTCTGGAGCATCGTGACACGAGACGCACTGTCGAACGGATGCGGGACCGGCTGTTCACCCGGGCCGTGTGCGAGTGGTGGGCCACGGACGAACGGCTGGCGCAGCGTTCCATGACGCCGGCCGTGCTGGAAGCGGTCGCCCAGCCGGAACGACGCGCCTCGCGACTGGCCACGACCTCGCTGATCACCGCCCTGCTCGGATACTTCGACCGCCTGGACGACTGGGAGGAAGGCCGTCTCGAAGCGGTGGGTTCCGCCGTCGATCGTGCCGTCCGTGGCTGCCGGCGACGTGACGACGCCGACGTGGTGGAGATCGTCCGTTCCTCGCCCCACTACGTGACGTCGGCCGACGGACCTCATGCGCTGGCGCGGGACCTGATTCGCGACGGCCGTCGGCTCGAGACGGATCCGGTCGCCTCGGCGCTGTGCCAGGACGACCGGGGGCGGTTCGCCCAGATGGTGCGGAACGAGTACTACCTGGGCCTCATCGAGGCAGCCGACCACACCTCGGCGCATCACGACTTCCTGCACGACGCCACGGATCGCGCCACCGCCCTGCGCCGGGACGACAACGACCACCGCTTCGGCATCGCCGTGCTGCGCGGGCTGTGCGACAAGCCCGACACCGTCGTGCCGAGCGCGGCCTGGGTCGACGCGGTCCTCCGCATCGGCGGGGACCCCCGCCACGAGCAGAGCTCCAGCTGGCACGACTGGTGGTCGCACCTCGAGCCGGCGTTGCGGCAACGCGCCGTGCGGTGGATGTCCGGCGCTGACCTTCGGGCGTTCCTCGATGCCGTCCGCGTCTACGGCGACGAGACCGCGAACACTTCCCTGCAGCGGATGTACCCCCGACGTCGACGATTCCTGATGGGCCTGTACGAGTCCGGCCTGGTCCAGGACACCCGACTGATCCTCGGCAGCAACATCCGCGCGACCGTGAAGCGCGTGACCGATGTCAGCCTCGCCGGCGTCGCGCAGTTCTCCGACCAGGCACGGGACACGGCGATCGTCCTCGTCGACTGCGGTGACTTCCACCTGATCGAGGGCTCGCACACCTTCAAGCTCCACGCCTACATCGGCCCCCCGGGCCCCGAGATCACCGACTCCTCCCGGCGGTACTTCACTCGGACATACCTCAACAGCGTGCTCCCCCAGAAGCACTGCGAGCGCCACCCGAAGCAGTACGAGGCCTACCGCTCGTGGACGCACGACCCGGGGGGCAACTGGACCGGCAACGCTCTCGACTTCCTCCGCGGTCACGGCATCCACCTCGACGCGTCCGCGCTGCTCGACGACCGCAGCCTGGCCAGGCTCGCGCGACGACGAACCCCGACCACCGCCGGCCGATCCTGGAGACGCCGATGAMTLALPAPEVRREAWSRDLTEQWHDAGERAAEIARRAGTGYRYPPLLAEAQRLLEHRDTRRTVERMRDRLFTRAVCEWWATDERLAQRSMTPAVLEAVAQPERRASRLATTSLITALLGYFDRLDDWEEGRLEAVGSAVDRAVRGCRRRDDADVVEIVRSSPHYVTSADGPHALARDLIRDGRRLETDPVASALCQDDRGRFAQMVRNEYYLGLIEAADHTSAHHDFLHDATDRATALRRDDNDHRFGIAVLRGLCDKPDTVVPSAAWVDAVLRIGGDPRHEQSSSWHDWWSHLEPALRQRAVRWMSGADLRAFLDAVRVYGDETANTSLQRMYPRRRRFLMGLYESGLVQDTRLILGSNIRATVKRVTDVSLAGVAQFSDQARDTAIVLVDCGDFHLIEGSHTFKLHAYIGPPGPEITDSSRRYFTRTYLNSVLPQKHCERHPKQYEAYRSWTHDPGGNWTGNALDFLRGHGIHLDASALLDDRSLARLARRRTPTTAGRSWRRRNANANANANA
AK018_050493024hypothetical proteinATGAAGCTCCGCGACCTGCTCCGCCGCGCGCCCGCCACGCGCCCCGACCCGACGTCGGACCCGGTGCCCACGTTCGACGTCGAGCACGGTGACGTCACCACCTTCACCACGTCGCCGGAGCGGATCACCGCCCTGTTCGACGGCGAGGCGCACGTCAGCATCACCGAGCAGTTCCTGGTGCTGGACTCGCTCGCCGACGAGGGCAGGGCTCGGGCGACGGACCGGGGCTTCGAGGTGACGGCCGACGACCTCGCCCGTCTCGACCCGGACGAGGCGCGGATCCTCGGACTGCCGGCGCGCTTCACCGGTCGGCTCGGCACCGCCATCACCGGGACGACGGCACGGCCCGACTTCTCCGTCGACCTCGCCGTGCGGCTGGACAAGTACGACGAGGCCTACCGCCGTGACGGAGTCCTGCTCACGGTCGGCATGCCGCCCTACGAGCAGACGTTCCGGCTGAGCCCCCCGACGTTGCGGGCGCTGCGGGGCGTCGAGCGTCACGCCGCTGTCCCTGTCGGGAGACGGTCCGAGACCCACAACATCCGGTTGGTCGCCGAGCTCCAGGGTGCGCAGCGCATGGCGACTGCGGACGATCCCGCCGTGGCGGACCCGGACTTCTCGCTCACCCTGCACCACTTCGACCGCTTCACGACGGTCGAGCCCGGGAAGGTCGGTGTGGCTGTCGCTCCCCAGCCGGACGGTTCTCTGCGGCTGACACCCCATCTGGGGGACGGACTCCATCCGGACGACCTCGACGCACGATGGCACCAGCTTCCGGGACGACCCGACGCCGACGGCGGCGTGATGCGGGTCGACAAGGACCTCGTGCTCCTCGAGCGTGACCAGCTCGAGGGCGTCCGCGAAGTCCAGCGGCAGGGCAGCATCCCGAAGGAGCAGGTCCCACAGTTCCTCGAGGCCCCGGGGTCGTTCCTCGACCACGAGAAGGTCGACATCGAGCTGACCTTCGCCTGGCTGGTCGCCGGCCTCGGTCGGATCGCTCCGGTCCCCTTCGCCCAGGCAGCGCAGCAGGGCCCACAGTGGATCTCCGAGGACCATGGGACGACAGCGCCGGAGGTCCTGGTCGACCGCCCGCAGTCGCTGGCCGAGCACGAGGAGATCACCGAGCAGATCGACGAGGCCTGGGAACGCGGCGCCGACGTCGTCCCGCTCGGCGGCGACCTCGTCGACGTCTCGGACCGAGACCGGGTGCGCGAGTGCCAGCAACAGGCACGAGAGCGACTCGAGGGCCTCGGCGTGACGCCAGGGCACGACGAGGGGGCAGACGAACAGGCACCGAGCGCTGACGGCCCGCAGGTCCAGGTCGGGTGGGAGCTCGACGATGCGACCGAGCTGGCCGACCACCTCCGAGCGGCCGGGGTTTCCGCGACGCTCGACCGCCCGGTGGACCACAGCATGCTGAAGTTCTCGCCGTTCCCGCACCAGGTCGAGGGCATCGAGTGGATGACGCGGCTCATGCAGGCCTCGCTCGACGGCACCGATCACGACCCCGGCCGCATCCGGGGCGCGCTGCTGGCCGACGACATGGGTCTGGGCAAGACCTTCATGACCCTCGCCGCCCTCGGGGAGACGGTGCGGTCCGAGCAGGAGCACGGTGGGCCCCTTCGCCCGCACCTCGCGGTCATGCCGGTGGCCCTCCTGGAGAACTGGCTCCGCGAGATCGAGTCGGTGTTCGGTTCCCGGACCGGTCCCTTCGACGAGGTCGTCGTCCTCCAGGGCGCCGGCGTCGCGCCCTTCCGCACCGGCAAGGGCAAGGAGTCCGCGGTCGCCGAGGACCAGCTCGACCACCGCGGCATGGTCCGGGACGACGTGCTCGCGGACCTGATGCTGCTGCGCGTCGGCGACCAGTTCGGCGACGCCCGGTTGGACCGGCCCGGCACGCTGGTGCTCACCACCTACGACACCGTCTCGCGGTACCAGGTCTCGCTGTCCCAGGCCGACTGGGGGGTCGTCGTCCTCGACGAGGCCCAGAACGTCAAGAACCCCGACATCCTGCGGACGCGCGCGGCCAAGGCGCTGCGCGCCCGGTTCAAGCTCGCCGCGACCGGCACCCCGGTGGAGAACTCGCTCCGCGACTTCTGGAGCATGCTGGACCTTGTCCAACCGGGCCTGCTCGGCACCTGGGCGCAGTTCCGCGACCGGTGGGAGGCCCCGATGAGCGAGGCCGCGGGTGAGCGCAAGGCAGAGCTGGGCCGGGCGCTCCGTGACGCCGTCGGCCCCTTCATGCTGCGCCGGGTCAAGGAGGATCACCTCAGCGACCTGCCCACCAAGCACGTGCACGACGGCGGCGAGCACGCCGCCCCGATGCCGGCGGTCCAGCGGCAGGCGTACGACGACGCCGTCGCCCGCTACCGCGCCGGGGCCGGGAAGAAGGGCGCGATGCTCGGGGCGCTGCACGACCTGGGCCAGGTCTGCCTGCACCCCGGACTGGTGCACGACGAACTCCTGGAGACGGCGGACCCGCTCACGCACTCCGCCCGCACGGCCATGGCCGTCACCCCGATCCTCGACGAGATCCGCGCGGCCGACGAGAAGGCGATCGTGTTCGTCCGGACCAAGGCCATGCAGCGGGCGCTGGCGACCTGGCTCCGCGAGCGCTACGGCGTTCCGGTCGACGTGGTCAACGGCGACACTCCCGCGACCGGAGGCGACGACTCGCGCGTCAAGCGGATCCGGCGCTTCGAGGCCCGGCCGGGATTCGGCGTCATCATCATGTCGCCGCTGGCCGTCGGCGTCGGGCTCACCGTCGTCGGTGCCAACCACGCCATCCACCTCGAGCGGCACTGGAACCCCGCCAAGGAGGCGCAGGCGACCGACCGCATCTACCGCATCGGCCAGACCCGGGACGTGCACGTCTACTACCCGATGGCGCTGCATCCCGACGCCGACTCGTTCGACGTCAACCTGGAACGACTGCTCCGGTCGAAGGTGTCGCTCTCCGGAGCCGTGGTCGTGCCCGAGCAGGTATCCGAGGAGGAGGTCGCACGTGCGATGGGCCTGAGCTGAMKLRDLLRRAPATRPDPTSDPVPTFDVEHGDVTTFTTSPERITALFDGEAHVSITEQFLVLDSLADEGRARATDRGFEVTADDLARLDPDEARILGLPARFTGRLGTAITGTTARPDFSVDLAVRLDKYDEAYRRDGVLLTVGMPPYEQTFRLSPPTLRALRGVERHAAVPVGRRSETHNIRLVAELQGAQRMATADDPAVADPDFSLTLHHFDRFTTVEPGKVGVAVAPQPDGSLRLTPHLGDGLHPDDLDARWHQLPGRPDADGGVMRVDKDLVLLERDQLEGVREVQRQGSIPKEQVPQFLEAPGSFLDHEKVDIELTFAWLVAGLGRIAPVPFAQAAQQGPQWISEDHGTTAPEVLVDRPQSLAEHEEITEQIDEAWERGADVVPLGGDLVDVSDRDRVRECQQQARERLEGLGVTPGHDEGADEQAPSADGPQVQVGWELDDATELADHLRAAGVSATLDRPVDHSMLKFSPFPHQVEGIEWMTRLMQASLDGTDHDPGRIRGALLADDMGLGKTFMTLAALGETVRSEQEHGGPLRPHLAVMPVALLENWLREIESVFGSRTGPFDEVVVLQGAGVAPFRTGKGKESAVAEDQLDHRGMVRDDVLADLMLLRVGDQFGDARLDRPGTLVLTTYDTVSRYQVSLSQADWGVVVLDEAQNVKNPDILRTRAAKALRARFKLAATGTPVENSLRDFWSMLDLVQPGLLGTWAQFRDRWEAPMSEAAGERKAELGRALRDAVGPFMLRRVKEDHLSDLPTKHVHDGGEHAAPMPAVQRQAYDDAVARYRAGAGKKGAMLGALHDLGQVCLHPGLVHDELLETADPLTHSARTAMAVTPILDEIRAADEKAIVFVRTKAMQRALATWLRERYGVPVDVVNGDTPATGGDDSRVKRIRRFEARPGFGVIIMSPLAVGVGLTVVGANHAIHLERHWNPAKEAQATDRIYRIGQTRDVHVYYPMALHPDADSFDVNLERLLRSKVSLSGAVVVPEQVSEEEVARAMGLSNANANANANA
AK018_05050438hypothetical proteinATGGACACCACCACGACACCCCCGCAGCCCGTCCGCCCCGGCGACCTGGTCCTGACCGACGACGACCGGCTCGCCCTCGCCACCACCCTCGCCGCCGCGGCGCTGCCTCGATCACGCACGCTGTGCCTGACGTGGATCGGCCCCGACGACCGTGCCTCCGGGGTGGCGGTCCCGGTCCGCGACGTCCCCGAGAAGCCCGACGTCGACGACGCCCGCCGCTTCGGCATGGTGATCGCCTCGGTCACGGAGCAGTCCGCCGCGGGCGGGAGCGTCGTCGCGGTCCTGTGCCGACCCGGCGACGAGACGATCACCGACGCCGACCGCGCCTGGAACGCGGCGCTGCGCGAGCAGGCGGCCACGCACGGCTTCCGCCTGCACGGCCTCTTCGTCGGCTCGGGGTCGGTCGTGCGTCCGCTCGCGATGGACGACGCCGGGTAGMDTTTTPPQPVRPGDLVLTDDDRLALATTLAAAALPRSRTLCLTWIGPDDRASGVAVPVRDVPEKPDVDDARRFGMVIASVTEQSAAGGSVVAVLCRPGDETITDADRAWNAALREQAATHGFRLHGLFVGSGSVVRPLAMDDAGNANANANANA
AK018_05051930hypothetical proteinATGGCACCTGCGCGGAAGTCCGATCCCGCCGGCGAGGTCTTCGCCGACGTGGTGGCCGACCACGTCCGCCGTGTCGAGCAGCGCATCCCGCGGGCCCTCGCCGACGAGGACGACGCCGTGCACCGGCTGCGGACCGCCGTGCGTCGGCTGCGCACCGTCCTCGCGGTCTACCGGCCGGCGTTCGAGCGCGACCAGGTGAAGGACCTGCGCCGACGTCTCGCCGAGCTGGGCGACGTCCTCGGCGAGGCCCGCGACCTCGAGGTGCGGCGGGCGGACGTCGAGTCGGTCGGCGGCGCCGCGAGCGTCCCGCGCCAGGCCCGGGAACAGATCGTCGAGGACCTCGATCGCCAGCACGCCACCGCCCACGCCCGGTTCGTGGACTACGCCGGCAGCCCGACCATGGCGGTGACGACGGCGGAGCTGATCCGCTGGGTGCAGGAGCCCCCGCTCGGCAAGGCCGCCGACCGGAAGGCCGCCACGGTGGCACGCCAGCGCCTGCGCAAGGCGGTCCGCCGGGCCGAGCGGGCAGCGGCCGAGCTGGATCTGGCGGCACTGGCCGAGGCCACGGTCGAGGACGTCGACACGTCCGAGAACCTCGAGCATCTGCTGGCCCGCGCCCACGGGGTGCGCAAGGCCGGCCGACGCGTCTCCCAGGCGACCCGCGCGGTGACGCGCAGCCCCACGAGGGTGCTGGGCTCGTCGGCCAAGGACCTCGGTGCCGCCGGCAAGACGATCCAGTCGACGCTCGGCGACCATCGCGACGCGATGCTGCTCGCGGCCCTCGCGAGCGAGCACGGCGACCGGGCGGAGGCCGCCGGGGAGGACCGCGGGCCGTACGACCGGCTCGCCCGGGCGGCCGTCCGGCGGGCGCGATCAGCCCTCGAGGCCGTTCCCGACGCCCTCGAGCGCCTGCAGTCCACGACGCCGTAGMAPARKSDPAGEVFADVVADHVRRVEQRIPRALADEDDAVHRLRTAVRRLRTVLAVYRPAFERDQVKDLRRRLAELGDVLGEARDLEVRRADVESVGGAASVPRQAREQIVEDLDRQHATAHARFVDYAGSPTMAVTTAELIRWVQEPPLGKAADRKAATVARQRLRKAVRRAERAAAELDLAALAEATVEDVDTSENLEHLLARAHGVRKAGRRVSQATRAVTRSPTRVLGSSAKDLGAAGKTIQSTLGDHRDAMLLAALASEHGDRAEAAGEDRGPYDRLARAAVRRARSALEAVPDALERLQSTTPNANANANANA
AK018_05052474hypothetical proteinGTGGCCGACGTGCTGGTCCTCAACGCCGGCTACGAGCCGCTGCACCGCGTGTCGGTCAAGCACGCCATCACGATGCTGGTGCGCGAGGTGGCGGTGGTCGAGGAGTCGGTCGACGGGATGTCCTTCGGTCCGTACCCGCTCCCCCGCGTCCTGCGGCTCGTGCGCTACGTCGCGATGCGGTGGCTCTACCGCGGCGGCCGACCCACGGTCACCAAGGACGGCGTGAAGCGGCGCGACGGTGCGTGCGCCTACTGCGGCGGTCCGGCCCAGACGGTCGACCACGTGGTGCCCCGGTCCCGCGGCGGCGACAGCTCGTGGCTGAACCTCGTCGCGGCCTGCCGCGCCTGCAACCACCGCAAGGCGAACCGGACGCCGCTCGAGGCCGGGATGCCCCTGCGGCTCACACCGCGCATCCCGACCCCCGAGCACGGGATGGTCCGGCGACGCCCGCGCGCACGGCCGCTCGCCGCCTGAMADVLVLNAGYEPLHRVSVKHAITMLVREVAVVEESVDGMSFGPYPLPRVLRLVRYVAMRWLYRGGRPTVTKDGVKRRDGACAYCGGPAQTVDHVVPRSRGGDSSWLNLVAACRACNHRKANRTPLEAGMPLRLTPRIPTPEHGMVRRRPRARPLAANANANANANA
AK018_050531056hypothetical proteinATGTTGCATGCCGTGAGCACCGAAGCAGAGGCCCTCCCGTCCGTGTCGTCGCTCCCGGCGTGGCTCGTGCCGTCCGTGTACCTGAACTGGTCCACCGACTGGCTGCGCGAGTCGGTCGCCATCGCGACGCGTTCTCGTGAGCACCACCTGCCCGGCGGGCCCGACGGCCCCAAGCGCGGCGACGTCGTCGTGACCGTGCTGGGCGACGCCGGCGTCGTGGCGGCGGTGGAGCTCATGGGGTCCTCCGACGGCGACTCCTGGGTCACCGACGAGCTCTTCGGCCCCGACCGGCCCATCGTGTGGGCGGACCTGTTCGACGGCGCCGACTCCTACATCGGCTCCTCCGGCTGGCTGCCCGCCGAGCACGCGCGCGCCGTGCTCGACGGCGTCGCGAACCAGTTCCACGACGGTCCGGTGCACACCATCGACCCGGGCGACTGCGGGGCCGGGGACGCCGCCCCGGACGTGCACGCGCTGCGCATCATCGGCCACCGGGCTGTGACCGGGTGGGCGCTGCGCCGCGAGGAGCGCTGCGCCACCTGCGAGCAGTTCGTCGACGTGCGCGAGATGCAGGCGCACGACGACGGTGCCGTGCGCCTGGGCACGACGACGGCCGGCGGCCGCACGCTGGAGCAGGTCATCCGCGACGTGCACCTGCTGTGCGCGCACTGCCACGAGCTGATGCACGAGCACTCGGTGATCGCGCAGCGCAACCGGCTGCGACCGCAGTGCCCCGGCTGCGGCGTGCGCGGCAAGACCAAGCGCATCGTGTGGGGCATGACCTTCTCCGACGACGTCGTCAGTGCCGAGCCGGACGTCGTCTACGGCGGGTTCGAGGTCCCGGTGCCGGCGCCGGAGTGGTACTGCACCGACTGCCACGCCAACTTCGGCAGCACCGTGGTCGCCTCGCGGATGCTCGACGCCGACGGCCCCGCCGTCCCGCAGCCGGTCACCGGTGCCATGGCGACGGTGCAGGACGACCCGCTGACCGCGGGCTCGGCCACCGAGCCGACGCCCGAGACCGACGGTCGCTGGGAGCCGACGCACGGGATCTGAMLHAVSTEAEALPSVSSLPAWLVPSVYLNWSTDWLRESVAIATRSREHHLPGGPDGPKRGDVVVTVLGDAGVVAAVELMGSSDGDSWVTDELFGPDRPIVWADLFDGADSYIGSSGWLPAEHARAVLDGVANQFHDGPVHTIDPGDCGAGDAAPDVHALRIIGHRAVTGWALRREERCATCEQFVDVREMQAHDDGAVRLGTTTAGGRTLEQVIRDVHLLCAHCHELMHEHSVIAQRNRLRPQCPGCGVRGKTKRIVWGMTFSDDVVSAEPDVVYGGFEVPVPAPEWYCTDCHANFGSTVVASRMLDADGPAVPQPVTGAMATVQDDPLTAGSATEPTPETDGRWEPTHGINANANANANA
AK018_05054297hypothetical proteinATGGCACCGGAGCACGACGGCGGCCACGGCGAGCGGTGGTCGCAGGACGTCACCGAGCGCTCCGACGCGCTCGACCTCGAGCAGGACGTCTTCACGCTCGACGACCCGGCCCGGATCGCCGAGTCGCTGCGGCGGTCGGCCGAGGCCAGCGACCGGCGCAAGACCTCTCCGTACGCCTCGGCGATGTCGATGCTGACGTTCTACCTCAACCGGGCGGGCCGCACCCTGCCGCCCGAGCGGCGCGAGGTGCTCGAGCAGGCCAAGGTCGAGCTGCGGCGCCTGTACGGGCGGGAGTGAMAPEHDGGHGERWSQDVTERSDALDLEQDVFTLDDPARIAESLRRSAEASDRRKTSPYASAMSMLTFYLNRAGRTLPPERREVLEQAKVELRRLYGRENANANANANA
AK018_05055414hypothetical proteinATGATCGACGACGACGGGTCCGACCGACCCGCCCGCGTCGCCGTCACCGACGCCGCGGCCGAGCTCCTGGCTCGGCTGCGGCGTCGTCACGGCGACCTGATGTTCCACCAGTCCGGCGGCTGCTGCGACGGGTCGAGCCCCATGTGCTACCCGGCCGGCGACTTCCTCACCTCGGACGCGGACGTCCACCTGGGCGACCTCTCGCTGTCCGACGACGGCGAGGAGTTCGTCGTGCCGGTCTGGATGAGCCGGGCGCAGTTCGAGTACTGGAGCCACACCCACCTGACGATCGACGTCGTGCCCGGCCGCGGTGCCGGGTTCAGCGTGGAGGCGCCGGAGGGGGTGCGGTTCCTCATCCGCTCGCGGCTGCTCACCGACGCCGAGCTCGCGACGCTGGGCCCGGCCCGGGGGTAGMIDDDGSDRPARVAVTDAAAELLARLRRRHGDLMFHQSGGCCDGSSPMCYPAGDFLTSDADVHLGDLSLSDDGEEFVVPVWMSRAQFEYWSHTHLTIDVVPGRGAGFSVEAPEGVRFLIRSRLLTDAELATLGPARGPGPT0017992_21DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_050561524thcA_1COG1012EPTC-inducible aldehyde dehydrogenaseATGACCGTCTACACCCCACCGGGACGGACCGGGTCGATCGTGGAGTTCCGCAGCCGGTACGACCACTGGATCGGCGGCGAGTACGTCCCCCCGGCGAGCGGGGAGTACTTCGAGAACCCCACCCCCGTCACCGGGCAGACCTTCTGCGAGGTCGCCCGCGGCAACGCCGAGGACATCGAGCGCGCGCTGGACGCCGCGCACGGCGCCGCCCCCGCCTGGGGCCGCACGTCCGTCACCGAGCGCGCCAACGTCCTCAACGCCATCGCCGACCGCATCGAGGCCAACCTCGAGAAGATCGCCGTCGCCGAGAGCTGGGAGAACGGCAAGGCCGTGCGCGAGACGCTCGGCGCCGACATCCCGCTGGCCGTCGACCACTTCCGGTACTTCGCCGGCGCGATCCGCGCCCAGGAGGGCTCGATCTCCGAGATCGACGGCGACACCATCGCCTACCACTTCCACGAGCCGCTCGGCGTCGTCGGGCAGATCATCCCGTGGAACTTCCCGATCCTCATGGCCACCTGGAAGCTGGCCCCGGCGCTCGCGGCGGGCAACGCCGTCGTGCTCAAGCCGGCCGAGCAGACCCCGGCGTCGATCCTGTACCTGATGGACATCATCGGCGACCTGCTGCCGCCGGGCGTCGTCAACGTCGTCAACGGGTTCGGGGCCGAGGCGGGCAAGCCGCTCGCGTCGTCGTCGCGGATCCGCAAGATCGCCTTCACCGGCGAGACGACGACGGGCCGGCTGATCATGCAGTACGCCTCGGCCAACATCATCCCGGTGACCCTCGAGCTCGGCGGCAAGAGCCCGAACGTGTTCTTCTCCGACGTCGCGGCCGCGCAGGACGACTTCTACGACAAGGCCCTCGAGGGCTTCACGATGTTCGCCTTCAACCAGGGCGAGGTCTGCACGTGCCCGTCGCGGGCGCTCATCCAGTCCGACATCTACGACCAGTTCGTCGGCGACGCCCTCAAGCGCACCGAGGCGGCGGTCCAGGGCAACCCGCTGGACACCGAGACGATGGTCGGGGCGCAGGCCAGCAACGACCAGCTCGAGAAGATCCTGTCGTACATCGACATCGGCCAGGCCGAGGGCGCCACGATCCTCACCGGCGGCGCGCGCGCCGACCTCGGCGGAGACCTGTCCGGCGGCTACTACGTGCAGCCGACCGTGTTCGAGGGCAAGAACTCGATGCGCATCTTCCAGGAGGAGATCTTCGGGCCCGTGGTCTCCGTGACGGACTTCGCCGACTACGACGACGCGATCAAGACCGCCAACGACACCCTGTACGGGCTCGGCGCCGGGGTGTGGACCCGCAACGGCACGACGGCGTACCGGGCCGGGCGGGACATCGAGGCCGGCCGGATCTGGACCAACTGCTACCACGCCTACCCGGCGGCGGCGGCGTTCGGCGGGTACAAGGGGTCCGGCGTCGGGCGCGAGAACCACAAGATGATGCTCGACCACTACCAGCAGACGAAGAACCTGCTCGTCAGCTACTCCGGCGTGCGGGACGGGTTCTTCTAGMTVYTPPGRTGSIVEFRSRYDHWIGGEYVPPASGEYFENPTPVTGQTFCEVARGNAEDIERALDAAHGAAPAWGRTSVTERANVLNAIADRIEANLEKIAVAESWENGKAVRETLGADIPLAVDHFRYFAGAIRAQEGSISEIDGDTIAYHFHEPLGVVGQIIPWNFPILMATWKLAPALAAGNAVVLKPAEQTPASILYLMDIIGDLLPPGVVNVVNGFGAEAGKPLASSSRIRKIAFTGETTTGRLIMQYASANIIPVTLELGGKSPNVFFSDVAAAQDDFYDKALEGFTMFAFNQGEVCTCPSRALIQSDIYDQFVGDALKRTEAAVQGNPLDTETMVGAQASNDQLEKILSYIDIGQAEGATILTGGARADLGGDLSGGYYVQPTVFEGKNSMRIFQEEIFGPVVSVTDFADYDDAIKTANDTLYGLGAGVWTRNGTTAYRAGRDIEAGRIWTNCYHAYPAAAAFGGYKGSGVGRENHKMMLDHYQQTKNLLVSYSGVRDGFFPGPT0007176_549DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138NANA
AK018_050571284hypothetical proteinATGGGGCATCGGCCCGCCACACCGCACGGCGACCTCGCCCGCGCGCTCTCGCCCGCCGTCCCGGTCCGCCGCGACCGACGGTCCGTGCGCAGCGCCTACGACACGTTCCTCGACACCGGCGCGCTCCCGGCCGGGCTGGACCCGTTGGTCGCCGCGTCGTGGCGGCGCAGCCGGTCCTGCGGCGTCGACCCCGACACCCCGCACGTCACGCTCGGGCTCGCCCCCGACGAGCTCGAGGCCTACCGCGCCGCCCACCCGCTGGCCGCCCTCATGCCCGCCGTGCGCGACCTCGTCGGCGAGGCCGCCCGCGACGACGGGCTCGTCGTGGCCGTCTCGGACGACACCGGACGCCTGCTGTGGGTCGAGGGCGACACCCGCACGCGGGGGACCGCGGAGAGCGTGGGGTTCGTCGCCGGGGCCGTCTGGCGCGAGGAGGACGTGGGCACCAACGCCCCCGGCACGGCCCTGGCCACCCGGCGGCCGGTCCAGGTGCTCGGCGCCGAGCACTTCTCCCGGCCGGTCCAGCGCCTCAACTGCGCCGCCGCACCGATCCAGGGCCCCGACGGGCGCGTCCTCGGCGTCCTCGACGTCACCGGGGGGCGTGCCGCCGGCTCGCACGTGGCCCTCTCCCTCGTGCGCGCCACCGTGGCCAGCCTCGAGCGCGAGCTCGCCGCCCGCGACGGCGCCGCCCGCGCGGCGGCCGGCGGCGTCGGCCCCATCGTCCGCCTGCTCGGCAGCCCCGCGTGGCAGGCGGCCGACGGCGAGCACCGCCTCTCCGGCCGGCACGCCGAGATCCTGGCCCTGCTCGGCGAGCACCCCCGGGGCCTGACCGCCGAGGAGCTCGCCGTGCTGCTGCATCCCGGCGAGCTGTCCGAGGTGACGGTCCGCGCCGAGATCTCCCGCCTGCGCCGCGCCGCCGGGAGGCTCGTCACCGGGTCGCGGCCCTACCAGCTCGCCCCCGGCGTGCGCCGCGACGTCGACGTCGTGCGCGAGCGCCTGGCCGCCGGGGACGTCGCCGCCGCCGTGGCCGCCTACACCGGACCGCTGCTGCCGCGGTCCTTCGCCCCCGGCGTCGAACGGGTCAGGGCCGAGCTGTCCGCCGAGCTCCGCTCCGCCGTGCTCGGCACCGCCGACCCCGCCGTGCTGGACGCCTGGACACGGACCGACGACGGCGCCGACGACGTCGAGGCCTGGCGCGCGCTCGTGGCCCGCTCGGAACCCGGCGGACCCCGGTGGGCCCGCGCCCGGGCCCACCTCGCCGTCGTCGACGCCGCGCTGCGCTGAMGHRPATPHGDLARALSPAVPVRRDRRSVRSAYDTFLDTGALPAGLDPLVAASWRRSRSCGVDPDTPHVTLGLAPDELEAYRAAHPLAALMPAVRDLVGEAARDDGLVVAVSDDTGRLLWVEGDTRTRGTAESVGFVAGAVWREEDVGTNAPGTALATRRPVQVLGAEHFSRPVQRLNCAAAPIQGPDGRVLGVLDVTGGRAAGSHVALSLVRATVASLERELAARDGAARAAAGGVGPIVRLLGSPAWQAADGEHRLSGRHAEILALLGEHPRGLTAEELAVLLHPGELSEVTVRAEISRLRRAAGRLVTGSRPYQLAPGVRRDVDVVRERLAAGDVAAAVAAYTGPLLPRSFAPGVERVRAELSAELRSAVLGTADPAVLDAWTRTDDGADDVEAWRALVARSEPGGPRWARARAHLAVVDAALRPGPT0007176_1DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138NANA
AK018_05058906sseA_1COG2897Putative thiosulfate sulfurtransferase SseAATGCCCGCACCGCTCGACCCCACCCCGCGGCTCCAGGAGTACGCCCACCCGGAGCGCCTCGTCACCACCGAGTGGCTCGCCGAGCACCGCGACGACCCGGGCCTCGTGGTCGTCGAGTCCGACGAGGACGTGCTCCTGTACGAGACCGGCCACATCCCCGGCGCCGTGAAGGTCGACTGGCACACCGACCTGCTCCTGCCCGTCGAGCGCGACTACCTCGACGGCCCCGGCTTCGCCGAGCTCCTCGGCTCCAGGGGCATCGCCCGTGACACGACCATCGTGCTCTACGGCGACAAGAACAACTGGTGGGCCGCGTACACCGCCTGGGTCTTCACCCTCTTCGGCCACGCCGACGTCCGGCTCCTCGACGGCGGCCGCAACCTGTGGGTGGCCGAGGGCCGCGAGCTCACCACCGACGTCCCGACCCCGACGCCGGCCGAGTACCCGGCCGTCGAGCGCGACGACGTCACCTTCCGCGCCTTCAAGGAGGACGTGCTCGCCCACCTGGGCCACGGACCGCTCGTGGACATCCGTTCGCCGCAGGAGTTCACCGGCGAGCGGCTGCACATCCCCGACTACCCGGAGGAGGGCGTGCTGCGCGGCGGCCACATCCCCACCGCGCACAACGTGCCGTGGGCCACCGCCGTGTCCGAGGACGGCACGTACAAGCCCCGGGCCGAGCTCGAGGCGATCTACCAGGCGGGCGGCCTCGGCATCACCGACGAGGACAAGGTCATCACGTACTGCCGGATCGGCGAGCGGTCCAGCCACACGTGGTTCGCCCTGCACTTCCTGCTCGGCATCCCGGACGTGCGCAACTACGACGGCTCCTGGACCGAGTGGGGCAACGCCGTGCGCGTGCCGATCGTCGCGGGCGAGGAGTCCGGCGAGGCTCCCGCGGCCTGAMPAPLDPTPRLQEYAHPERLVTTEWLAEHRDDPGLVVVESDEDVLLYETGHIPGAVKVDWHTDLLLPVERDYLDGPGFAELLGSRGIARDTTIVLYGDKNNWWAAYTAWVFTLFGHADVRLLDGGRNLWVAEGRELTTDVPTPTPAEYPAVERDDVTFRAFKEDVLAHLGHGPLVDIRSPQEFTGERLHIPDYPEEGVLRGGHIPTAHNVPWATAVSEDGTYKPRAELEAIYQAGGLGITDEDKVITYCRIGERSSHTWFALHFLLGIPDVRNYDGSWTEWGNAVRVPIVAGEESGEAPAAPGPT0002045_853DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
AK018_05059459COG2166putative SufE-like proteinATGACCGACGACGCCGCGCAGCCCACGCCCGAGCTCCCCGAGCAGCTCGCCGAGATCCGCGAGGACTTCCTCGCCCTGACCGAGTCCGAACGGCTGCAGCTCCTGCTCGAGTTCTCCCGCGAGCTGCCGGACCTGCCCGCCCGGTACGCCGACTCGCCCGCCCTGCTGGAGAAGGTCGAGGAGTGCCAGTCGCCCGTGCACGCCTTCGCCGAGGTCAGCGACGGCGTCGTGCACTTCCACGCCACCGCGCCGCCGGAGGCCCCCACGACGCGCGGGTTCGCGTCGATCCTCGCCCAGGGGCTGTCCGGGCTCACGCCCCGGCAGGTCCTGGACGTCCCCGAGGACTTCCCCCTGCAGCTCGGTCTGACCCGGGCCGTCTCCGCGCTGCGGCTCAACGGGATGACGGGCATGCTCACCCGCGCCAAGCGCCAGATCGTCGAACAGCTCGCCGCCGCCTGAMTDDAAQPTPELPEQLAEIREDFLALTESERLQLLLEFSRELPDLPARYADSPALLEKVEECQSPVHAFAEVSDGVVHFHATAPPEAPTTRGFASILAQGLSGLTPRQVLDVPEDFPLQLGLTRAVSALRLNGMTGMLTRAKRQIVEQLAAANANANANANA
AK018_050601104hypothetical proteinGTGAGCCTCGTCAGCGTCCTGCTCCTGCTCGCCGGGTTCGTGCTGCTCGTCGGCGGCGGCGAGGCCCTCGTCCGCGGGGCGGCGTCGCTGGCCCGCACCCTGGGCATGTCCGCCCTCGTCGTCGGCCTGACCGTCGTCTCCTTCGCCACCTCCAGCCCCGAGCTGGCCGTCAGCGCCGGGTCCGCCCTGACCGGCTCGCCCGGGCTCGCCGTCGGCAACGTCGTCGGCAGCAACATCGCCAACATCCTGCTCGTGCTCGGGGTCGCGGCGATCGTCGTCCCGCTGGCGGTCACGCACCGCCTGGTGCGGACGGACATCCCCGTGATGGTCGGGATGTCCGTCCTCGCGCTCCTGCTGTCCCTCGACGGGACGATCAGCACCACCGACGGCGTCCTCCTGCTCGGCCTGCTCGCCGCCTACCTGGCCGTGACCACGATCGTCGCCCGCCGCGCGCAGACCGACCTGCCGCGCGGGACCGCCGACGACGACTCCCTCGCCCGGTTCCGCACCAGCCGGGCCCGGTCGATGGGGATCGACGTGGCGCTCGTGGCCGTCGGCGTGGCGCTGCTGGTCGTCGGCGCCCGCTTCCTGGTGGACGGGGCCACGCAGATCGCCTCCGCGTTCGGCGTGAGCGACCTGGTGATCGGCCTCACCGTCGTCGCGATCGGCACCTCCCTGCCCGAGCTCGCCACCAGCGTCATCGCCGTGCGCCGCGGCGAGCAGGAGATGGCCGTGGGCAACATCGTCGGCAGCAACATCTTCAACGTCGGCGCGGTCCTCGGTCTGACCGCCGTCATCGCGCCGGGCGGCATCGACGTCGCCCCGGCCGCCGTGAACCTCGACCTGCCGGTGATGATCGCCGTCGCCCTGGTCCTGCTCCCCGTCGCGTTCACCGGGCAGGCGATCGTGCGCTGGGAGGGCGTGCTGTTCGTCGTCCTCTACCTGACCTACCTCGCCTACGTGCTGCTCGCCGCCACCGACCACGACGCCCAGGGCCCCTTCGGCGGCGCGATGTTCGGCTTCGTGCTCCCGGTCACCGCCGTGTGGCTCGTGGCGCTCGCGGCCTACGAGCTCGGACTGCGCCGCGGCCGCCGTCAGGTGTGAMSLVSVLLLLAGFVLLVGGGEALVRGAASLARTLGMSALVVGLTVVSFATSSPELAVSAGSALTGSPGLAVGNVVGSNIANILLVLGVAAIVVPLAVTHRLVRTDIPVMVGMSVLALLLSLDGTISTTDGVLLLGLLAAYLAVTTIVARRAQTDLPRGTADDDSLARFRTSRARSMGIDVALVAVGVALLVVGARFLVDGATQIASAFGVSDLVIGLTVVAIGTSLPELATSVIAVRRGEQEMAVGNIVGSNIFNVGAVLGLTAVIAPGGIDVAPAAVNLDLPVMIAVALVLLPVAFTGQAIVRWEGVLFVVLYLTYLAYVLLAATDHDAQGPFGGAMFGFVLPVTAVWLVALAAYELGLRRGRRQVPGPT0014400_289DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0014400-yrbG-K07301NANA
AK018_05061375Universal stress proteinATGACGGTGCTCGTGGCCTATCGCGCCTGCCCGCACGGCGAGGCAGCTGTCCGGACCGCGCTGGAGGAGTCGCGTCGACGCGACCTGCCGCTCCAGGTGCTCGTGCTCGACGAGCATGATCCCGACACCGGCCCCTCGGACGCGCTCGCCGCCGTCCTCGGCGACGCCGCCGTGGAGATCGCCTACCGGGACGAGCACACCGAGCCCGCGGACGCGATCCTGGACCGCGCGGACGACGTCGGGGCGAGCCTCGTCGTCGTGGGCTCGCGCAAGCGCTCCAGCCAGGGCACGTTCCTCATGGGCACGACGACGCAGCGCGTGCTGCTCGACGCCTCCGTGCCGGTCCTCGTGGTCAAGGACGCCTACGACTCCTGAMTVLVAYRACPHGEAAVRTALEESRRRDLPLQVLVLDEHDPDTGPSDALAAVLGDAAVEIAYRDEHTEPADAILDRADDVGASLVVVGSRKRSSQGTFLMGTTTQRVLLDASVPVLVVKDAYDSNANANANANA
AK018_050621170hypothetical proteinATGAAGCGCCTGATCCTGTGCTGCGACGGGACCTGGAACCACGCGGCGAACCAGTACGTGTCCAACGTCGAGAAGATCGCCCGCGTCCTGAAGCGCGGCCCGGTCGGCGACGGCGTCGTGCAGATCGTCGAGTACGTCGGCGGGGTGGGCTCGCAGGGATACCTCCTCGACAAGCTGCTCGGGGGTGCGTTCGGCTCCGGACTGACCCAGAACGTCGTCGAGGGCTACCGGTTCCTGGCGATGAACTACGCGCCCGGCGACGAGATCGTCGTCCTCGGCTACTCCCGCGGTGCCTACACCGCGCGCAGCGTGGTCGGGATGGTCGGGGCCGTCGGCCTCCTGACCCGCGAGGCGCTCGCGGCCGGTGCGCTGCACGACGCCGTGCGCCTGTACCGCGAGCCGGCCGACGACGACGCCGCGCGCCGCGCCCGCGAGGAGGAACGCGCCGCCTTCCGGCGCGAGCACTCGCACGGCGGCGACGCCGGGACGCCGGTCCGGTTCCTGGGCGTCTTCGACACCGTCGGCACCCTGGGCGTGCCCGGGCTGACGCGGCGCCGTTACCGGTTCCACGACGTCCGGCTCGGCGACGACGTCGAGGTGGCGCGGCAGGCCCTCGCGGTCGACGAGCGCCGGCTGTCGTACGCGCCGTGCCTGTGGCAGGTCCCGGCCGACAGCCCGGAGGGCCGCGTGCAGCAGGTCTGGTTCGTCGGCGGCCACGGCGACGTGGGGGGCGGCGGACCGCGGTGCGGGCTGTCCGACGCCGCGCTGGAGTGGATGGTGGACGAGCTGCGCACGGTCGGCGTCGTCGTCGACGACGCGCTGTGGTCGTCGCAGTGCACGCACCAGGAGGAGCTCGTCCTGGACGTGCAGCCCCGGCTGCTGTTCCGGCTGATCAACCGGGCCAAGCGCCTGCTGCCGGGCAGCGCGAGCGTGGGCGGCCGGAAGGTCTTCCGCCACGGCCTGCGCGTGCTCGCCCGCCGGGACGGCGAGGTGTGGGGCGACGGGGTGTGCGTCGCCGGGCCCGTCGTGCGCTACGTGGAGCGCGACGGGTACGCCGAGCACGCGCCGAACCTGCAGCGTTGGTTGGACGAGGCCGGCGGCGTGGACCAGGTGCCCGTCGTCCCCGTCGAGGCGTGGCGCGACGACGAGCGGCGGCTGGTCGTGCGCTGAMKRLILCCDGTWNHAANQYVSNVEKIARVLKRGPVGDGVVQIVEYVGGVGSQGYLLDKLLGGAFGSGLTQNVVEGYRFLAMNYAPGDEIVVLGYSRGAYTARSVVGMVGAVGLLTREALAAGALHDAVRLYREPADDDAARRAREEERAAFRREHSHGGDAGTPVRFLGVFDTVGTLGVPGLTRRRYRFHDVRLGDDVEVARQALAVDERRLSYAPCLWQVPADSPEGRVQQVWFVGGHGDVGGGGPRCGLSDAALEWMVDELRTVGVVVDDALWSSQCTHQEELVLDVQPRLLFRLINRAKRLLPGSASVGGRKVFRHGLRVLARRDGEVWGDGVCVAGPVVRYVERDGYAEHAPNLQRWLDEAGGVDQVPVVPVEAWRDDERRLVVRNANANANANA
AK018_05063762glnQ_5Glutamine transport ATP-binding protein GlnQATGACCGCGGCGCCGCTGCTCAGCCTGCGCGAGGTGCGCAAGTCCTTCCCCGCCGGTCCGGGCCGACGTGCGGGTCGCCGCGTCGTGCTGGACGGCATCGACCTGGACGTGGCCGAGCACCAGTGCGTGGTGCTGGTCGGCTCCTCGGGGTCCGGCAAGTCGACGCTCCTGCGGGTCGTCGACCTGCTCGAGGACGTCGACGACGGCCAGGTGCTCCTCGACGGCGTCGACGTCGCCGACCCGTGGGTGGACGCCGACGCCGTGCGGGCCCGGCTCGCGATGGTCTTCCAGCAGTACAACCTGTTCCCGCACCTGACCGTCCTGGACAACGTCACGCTGGCCCCGCGCCTGGTGCACCGCCGGCCGCGGGCCGACGCCGAGGAGGCGGGCCGGGCGATGCTGGCCCGGGTCGGGCTGGCGGACAAGGCGGACGGCTACCCGGACCAGCTCTCCGGCGGTGAGCAGCAGCGGGCGGCGATCGCCCGGGCCCTCGTCGGGGGCCCCGAGCTGCTGCTGCTCGACGAGGTCACCTCCGCCCTCGACCCGGAGCTGGTCGGCGAGGTGCTGGACCTGCTGCTGGACCTGCGCGCCGAGGGCACCACGATGCTGGTGGCCACCCACGAGATGGACTTCGCCCGCCAGGTCGCCGACGAGGTGGTGTTTCTGCACGAGGGGCGCGTGCACGAGCGGGGCACCCCCGCCCAGGTCCTCGACGACCCGCAGCGCGAGCGCACCCGGGAGTTCCTCCGTCGCCTCCGCTGAMTAAPLLSLREVRKSFPAGPGRRAGRRVVLDGIDLDVAEHQCVVLVGSSGSGKSTLLRVVDLLEDVDDGQVLLDGVDVADPWVDADAVRARLAMVFQQYNLFPHLTVLDNVTLAPRLVHRRPRADAEEAGRAMLARVGLADKADGYPDQLSGGEQQRAAIARALVGGPELLLLDEVTSALDPELVGEVLDLLLDLRAEGTTMLVATHEMDFARQVADEVVFLHEGRVHERGTPAQVLDDPQRERTREFLRRLRPGPT0020790_1820DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
AK018_05064882hypothetical proteinATGAGCGGCGCGAACCAGGGCCGACCGCCGTCGGCGCGGGCCCGGGCCCGGCAGGACTACCGCCGGGCCCAGCACCGCCGTGCCCTGCTCGTGGCCGCGGTGGCGACCGCCGTCGTGCTCGCCGCCGTCGTCGCCGTCGTCACCACGGCCCCCGGCTGGGAGCGGGCCCGGGAGGCGTTCTTCTCCCCGGAGCGGGCCTGGGAGGTCCTGCCCGAGGTCGCCGAGGGGCTCTGGCTGAACCTGCGCGTGTGGGTCGTGGCCTCCGTCGTCGGACTGACCGTGGGACTGCTCCTCGCCGTCGTGCGCACCTCGCGGCTGCCCGCGCTGTTCCCCGTGCGGGTGCTGACGGTGCTCTACGTCGACGTCTTCCGCGGCGTGCCGGTGCTGCTGGTGCTGCTGCTGGTCGGGTTCGGGCTGCCGGCCCTGCGGCTGGAGTGGCTGCCGGTCAGCGCGGCGTTCCTCGGCGGCCTCGCCATCGTGCTCACCTACACCGCCTACCTCGCCGAGATCTTCCGCTCCGGGATCGAGGCGGTGCACCCCTCGCAGGTGGCCGCCGCCCGGTCGCTGGGCCTGACCCGGGGCCAGACGGTGCGCCGGGTCGTGCTGCCGCAGGCGGTCCGGAACGTCTCGGCGCCCGTGGCGAGCATGCTGGTCTCCCTGCAGAAGGACTCCGGGCTGATCTCCATCCTCGGTGCCGTGGACGCGATCCGGGCCGCGCAGATCGCCACCACCGGCGACTACAACTTCACGCCGTACGTGGTCGCCGGCGCACTGTTCCTGCTGGTCTCGATCCCGCTGACCCGGCTCGTGGACGCCTGGTCGGCGCGCCAGGGCTGGCGCGGCTCGCTGCGGGGCGTCAGCGGGGCGGGGGTGGTCCGATGAMSGANQGRPPSARARARQDYRRAQHRRALLVAAVATAVVLAAVVAVVTTAPGWERAREAFFSPERAWEVLPEVAEGLWLNLRVWVVASVVGLTVGLLLAVVRTSRLPALFPVRVLTVLYVDVFRGVPVLLVLLLVGFGLPALRLEWLPVSAAFLGGLAIVLTYTAYLAEIFRSGIEAVHPSQVAAARSLGLTRGQTVRRVVLPQAVRNVSAPVASMLVSLQKDSGLISILGAVDAIRAAQIATTGDYNFTPYVVAGALFLLVSIPLTRLVDAWSARQGWRGSLRGVSGAGVVRPGPT0020795_2181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
AK018_05065870glnH_3COG0834ABC transporter glutamine-binding protein GlnHGTGCGAGCTCGTCCCGCATCCGTCGCCGTGCTGGCCCCCGTCGTCCTGCTCGGGCTGGCCGCCTGTTCGACGGACGACGCCCCGGACGCCGAGGAGGCCGGCGCGACCTCGGCCGAGGCCACGGCCGACGCCTGCGCCGCCGGCGAGCTGCCCACCCTGACCGACGGCACCCTGACCGTCGGCGCGGGCGAGCCGTTCGAGCCGTGGTACGTCGGTGAGCCCACCAGCGGGGACGGTTTCGAGTCCGCCCTGGTCTACGCGGTCGCCGACGAGCTCGGCTACGGCGAGGACGACGTCGTGTGGGAGACGGTGACGTTCGAGCAGATCATCTCCCCGGCGATCAAGCCCTTCGACCTGGCCGCCTACCAGACCACCATCACCGAGGAGCGCGCCGAGGCCGTCGACTTCTCCAGCCCGTACCTGACCAGCCACCAGGGCGTCATCGTGGCCGACGACGGCGAGTACGCCGACGCGTCGAGCCTGGCGGACCTGGAGGGCGCCCGCATCGGCGTGACCGCCGCCCAGACCTCCCTCGACGCCGCCGAGGCCGCCTGGGGCGACGCGGTGGAGATCACCCCGTTCAGCGCCGCGGGCGACGGGATGACCGCGCTGACCTCCGGCACCGTCGACGCGATGGTCATGGACGTCGACCAGGGCGTGGCCGCCTCGACCGTGTACTTCCCGGACACGCAGGTCGTGGGCACGCTGCCCGACGTCGGCGAGCCGGAGCAGCTCGGGCTCGTGCTGGACAAGGACTCGGCACTGACCGGGTGCGTCTCGCAGGCCGTCGACGCCCTCGAGGCGGACGGCACCCTGGACGAGCTGCGCACCGAGTGGTTGAAGTCGGACGACATCCCCGAGCTGTCCTGAMRARPASVAVLAPVVLLGLAACSTDDAPDAEEAGATSAEATADACAAGELPTLTDGTLTVGAGEPFEPWYVGEPTSGDGFESALVYAVADELGYGEDDVVWETVTFEQIISPAIKPFDLAAYQTTITEERAEAVDFSSPYLTSHQGVIVADDGEYADASSLADLEGARIGVTAAQTSLDAAEAAWGDAVEITPFSAAGDGMTALTSGTVDAMVMDVDQGVAASTVYFPDTQVVGTLPDVGEPEQLGLVLDKDSALTGCVSQAVDALEADGTLDELRTEWLKSDDIPELSPGPT0020800_4467DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
AK018_05066546hypothetical proteinATGGAAGGACAGGTTCCGGAGCTCGACGGCGAGACGGAGGCGAGCGGCATGAAGGCGTCGGTGGGGGACAGGATCATCACGGCGTCCGGCGTGGTGGGCGGTGCGGTACGGGACGGGATCGTCGTGGACTGCCCGCACGACGACGGCTCGCCGCCCTACCAGGTGCGTTGGTCGGACACGGGCGAGGAGTCGCTGGTCTACCCGGGCCCGGACTCGCTCGTGCAGCACGACGACGGCGACGCCGCCGAGGACGACGAGGTGCGCACCGCGCGGGCGGTCACGTGGACCATCCAGGTGTCCCTGGTCGAGGCCTCCGGCAGCACGACGGCCGAGGCCGTGCTCGTCGTCGGCCCCGGGGAGCACTCCGACGTGCCCCTGCGGTCCGTGGGCCACGCGCGCAAGGACCCGCACGACACGGAGATCCCGGTCATCGGCGACGAGGTGGCGGCGGGCCGGGCGCTGCGCCGGCTGGCCGACGCGCTGCTGGGCCAGGCCGAGGAGGACATCACCGCCTCGACCGGGGTGCCGGCGCACGTGCACGACTGAMEGQVPELDGETEASGMKASVGDRIITASGVVGGAVRDGIVVDCPHDDGSPPYQVRWSDTGEESLVYPGPDSLVQHDDGDAAEDDEVRTARAVTWTIQVSLVEASGSTTAEAVLVVGPGEHSDVPLRSVGHARKDPHDTEIPVIGDEVAAGRALRRLADALLGQAEEDITASTGVPAHVHDNANANANANA
AK018_05067165hypothetical proteinGTGCCCGTCCCACGATGGAGGGGACGTGGCCGCGAGGGCGGCGAGGCCCCGGCCTACGAGGACTGGACCGTCGACGAGCTGCGCGAGCGCGCGGCCGACCTCGACGTCGAGGGGCGTTCCACGATGCGCAAGGACGAGCTGATCGACGCCCTGCGCTCGCGCTGAMPVPRWRGRGREGGEAPAYEDWTVDELRERAADLDVEGRSTMRKDELIDALRSRNANANANANA
AK018_050682748nagZ_5Beta-hexosaminidaseATGGCAACACGCAGCGAGATCAAGAAGGCGGCCGTCGCGCGCGTCCGGGAGGACCGCGCGGTGCGCCGCGCCCGCCGGGCCGAGCTCAAGGCCATGCCGGCCGCCGAGCGCCGGGCGGCCCGCGCCGCCGACACGGCCGCCGCGCGCGAGGCGAAGAAGGCCGCGAAGGCCGGACGCGCCGAGGACCGGGCCGACATGAACCGCGCCGAGCGTCGCGAGGCCACGCGGCGCGAGCGCGTGTACCGGAAGGTGAAGCACCGTCCCCGCCGCGCCGTCGGCTGGGGCGTCGTCGCCGTCGCCGTGGTCGGGGTCGGAGCGCTGGCCGCGCCGTACGCGACCGGCCTCGCCCGCGTCGCCTCGCTCGAGTTCACCGACACCACCGCCGAGGCGGTCGCGGCTCGCGAGGCCGCGGTCGGCGTCGCCGAGGCCGTCTCCGACGAGGGCATGGTCCTGCTGAAGAACGACGGCGACGCGCTGCCGCTCGACGGCGGCGTCAACGTCTTCTCGTTCGCCTCCTTCAACCTCCGCCTCGGGGGCGGCGGCTCCGGCGGCTCGAACACCGCCGGCGCGCCCACGCTCTACGAGGCGCTCGAGGCGCAGGGGGTCGAGTACAACACCGAGCTCTACGCCGCCATGGAGGAGGCGGGAGCCGAGCACACCGACGGCTCGGGCAACGCCTTCGTGCAGATCGCCCAGGGCATGCTCGGCGGCGACGACGACGAGCCCGCGCCCGACTACCTCACCGACGACGTCCTGGACCAGGCGCAGGAGTTCTCCGACACGGCGATCGTCGTGGTCGGCAACGACGGCTCGGAGGGCTCCGACTTCACCGCCGAGCAGCTCCGGCTCACCGACGCGCAGCGCGACCTGCTCGACAAGGTGACGTCCGTGCAGGACGACGTGATCGTCGTCGTGAACTCCGGCAACCAGATGGAGCTCGGCTTCCTCGACGAGTACCCGGAGATCACCGCCGCCGTGTGGATGGGCACACCCGGCCCGCAGGGTGCGACGTCGCTCGCCAAGGTGCTGACCGGCGCGGTGAACCCGTCCGGCCACCTCACCGACACCTACGCCTACGACGTCTCCTCGGCGCCCGCCACCGAGAACTTCGGCGACTACACGTACACCGACGTCTCGCGCGGCTTCCTCGACTACGCCGAGGGCATCTACGTCGGCTACCGCTACTACGAGACGCGGTACCTCGACGACGAGGAAGGATACGCGGCCGCGGTGCAGTACCCGTTCGGGTACGGCCTGAGCTACACCGACTTCGCGTGGGACGTCGCCGAGCCGGTCGTCACCGAGGACACCGTGACCGTGGACGTCACCGTCACCAACACCGGTGACGTCGCGGGCAAGGACGTGGTGCAGGTCTACTTCTCCGCGCCGTACACCCCCGGCGGCATCGAGAAGTCCGCGATCGAGCTCGCGGGCTACGCCAAGACCTCGGAGCTCGAGCCCGGTGCCTCGGAGACCGTGACGGTCGACTTCGCCGTGCGCGACATGGCGTCGTGGGACACCGCCGCGGGCGGCGCCTACGTGCTGGAGGCCGGCGACTACGAGATCTCGGCGCGCACCGACGTGCACACGCCGGTCGCCTCCGTCACCACCGAGGTGGCCGAGGACGTCGTGTACGCCGAGGACGCCGACACCGGCACGGCGTACGAGAACCGCTTCGCCGACGTCGAGGGGGACCTCGCCTCGCTCTCCCGCGACGACTGGGAGGGCACCTACCCCGTCGCCCCGGACGGCACCGAGACGGCCTCGGACCAGGAGCTCGCGCTCATGGACCCGCAGATCGACCCGGTCGAGGGCGACGTGCCGACCTACGGCGCGGACAACGGCCTGGTGCTCGCAGACATGGTGGGGCTCGAGCACGACGACCCGGCGTGGGACGCGTTCCTCGACCAGCTCACGCTGGAGGAGCAGATCGACCTGTTCTCGTACGGTGCGTACCAGTCGGTCGCGATCGAGCGCCTGGGCGTCCCGTCGATCACGATGCTGGACAGCCCGGCCGGCCTCAACTCGCTCTTCTCGCCGCTCGAGGCGGCGGCCTACCCGACCGAGGTGGTCGTGGCGTCGACCTGGAACGACGAGATGGCCTACGCGCTGGGCGAGTCGGTGGGCACCGAGGCGAACGCCTACGGCATCGAGGTCTGGTACTCGCCCGGCATGAACCTGCACCGCACGGCGATGGGCGGGCGCGGCTTCGAGTACTTCTCGGAGGACCCGCTGCTGACGGGGAAGATGGCCGCGGCGATGGTCTCGGGCTCGCAGGACCGGGGCGTGCTCACCACGATCAAGCACTTCGTCCTCAACGACCAGGAGGTCAACGCGCGCTCGGGCATCAACGTGTCCGTCTCGGAGCAGGCCCTGCGCGAGCTGTACCTGCAGCCCTTCGAGATCGCCGTCAAGGACGCCGACCCGGCGGGTGCCATGAGCTCGTTCATCAACCTGGGCGGCCGCTGGGCCGGCGGCCACGAGGGCCTGCTGCAGGAGGTGCTGCGCGGCGAGTGGGGCTTCGACGGCTTCGTCTCGACCGACGCCGTGCTGGGCGCCTGGATGGACCCGGAGCTCGCGGCGCGCTACGGCAACGACTGGATGCTCGCCGTGTTCCCGGACGCGACCGTCGAGGCGCTCACCGAGGCGGTGGAGGCCGACCCCGTCGGCGTCGGCCAGGCCCTGCGCGAGCGCGTGCACACGATCCTGCACACCGTGGCGCGGTCGACCGCGATGTCCGTGTCCTGAMATRSEIKKAAVARVREDRAVRRARRAELKAMPAAERRAARAADTAAAREAKKAAKAGRAEDRADMNRAERREATRRERVYRKVKHRPRRAVGWGVVAVAVVGVGALAAPYATGLARVASLEFTDTTAEAVAAREAAVGVAEAVSDEGMVLLKNDGDALPLDGGVNVFSFASFNLRLGGGGSGGSNTAGAPTLYEALEAQGVEYNTELYAAMEEAGAEHTDGSGNAFVQIAQGMLGGDDDEPAPDYLTDDVLDQAQEFSDTAIVVVGNDGSEGSDFTAEQLRLTDAQRDLLDKVTSVQDDVIVVVNSGNQMELGFLDEYPEITAAVWMGTPGPQGATSLAKVLTGAVNPSGHLTDTYAYDVSSAPATENFGDYTYTDVSRGFLDYAEGIYVGYRYYETRYLDDEEGYAAAVQYPFGYGLSYTDFAWDVAEPVVTEDTVTVDVTVTNTGDVAGKDVVQVYFSAPYTPGGIEKSAIELAGYAKTSELEPGASETVTVDFAVRDMASWDTAAGGAYVLEAGDYEISARTDVHTPVASVTTEVAEDVVYAEDADTGTAYENRFADVEGDLASLSRDDWEGTYPVAPDGTETASDQELALMDPQIDPVEGDVPTYGADNGLVLADMVGLEHDDPAWDAFLDQLTLEEQIDLFSYGAYQSVAIERLGVPSITMLDSPAGLNSLFSPLEAAAYPTEVVVASTWNDEMAYALGESVGTEANAYGIEVWYSPGMNLHRTAMGGRGFEYFSEDPLLTGKMAAAMVSGSQDRGVLTTIKHFVLNDQEVNARSGINVSVSEQALRELYLQPFEIAVKDADPAGAMSSFINLGGRWAGGHEGLLQEVLRGEWGFDGFVSTDAVLGAWMDPELAARYGNDWMLAVFPDATVEALTEAVEADPVGVGQALRERVHTILHTVARSTAMSVSPGPT0019110_700DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_050692460bglB_4COG1472Thermostable beta-glucosidase BATGACCTCCTCCGACAGTCGACACGCGCGCGGCGGCCCCGGCCTCCGGCGGCTGCGTACCGAGATGACTCTCGCGGAGAAGGCCTCCCTCGCTTCCGGCGCGAACTTCTGGAACACGACGGCGGTCGACCGGCTCGGGGTGCCGTCGGCCATGCTCACCGACGGGCCGCACGGCCTGCGCAAGCAGGGCGGCGCCGCGGACCACCTGGGCCTGAACGCCAGCATCCCGGCGACCTGCTTCCCCCCGGCCGCGACCCTGGCGAACAGCTGGGACCCCGGTCTCGTCGAGCGAATCGGCACGGCCCTGGGGGCCGAGGCCGCCGCCGAGGACGTCAGCGTCCTGCTGGGCCCGGGTCTGAACATCAAGCGCAACCCGCTGGCCGGGCGCAGCTTCGAGTACTTCTCCGAGGACCCGCTGCTCGCGGGCACCCTGGCGGCGGCGATGGTCCGCGGCATCCAGTCCCGTGGCGTCGCGGCGTGCGTCAAGCACTTCGCGGTGAACAGCCAGGAGACCCACCGGATGAGCATCGACGAGGTCGTCGACGAGCGTGCTCTGCACGAGCTCTACCTCGAGGGCTTCCGCCTCGCGATCACCGAGGGCCGCCCGTGGACGGTGATGAGCTCCTACAACAAGGTCAACGGCACCTACGCCAACGAGCACCCCGAGCTGCTGACCGGTGTCCTGCGCGACACGTGGGGCTTCGACGGCCTCGTCGTGACCGACTGGGGCGGCAACAACGACCGCGTCGCGGGTCTGCTCGCGGGCAACGCGCTCGAGATGCCGTCGACCGACGGTGTCACCGACCGCGAGATCGTCCGCGCCGTCGAGTCGGGACGCCTGGACGAGGCGGTGCTCGACGCGCGCGTCGACGAGCTGCTCACCCTCCTCGACCGCACGGCGGGCGCGCGCGTCGACGCCGACGCGGTCGACCGCGCCGCCCACCACGAGCTCGCCGTCGAGGCGGCTCGGCGCTCGCTCGTACTCCTGCGCAACGAGGGCGACGCCCTGCCGCTCGGTCCGGGCGCCGGCCGCGTCGCCGTCGTCGGCGACTTCGCCGCGCGGCCCCGCTACCAGGGTGCCGGCAGCTCGCTCGTCAACCCCACCCGGGTCGACGACGCCCTCGAGGCGCTGCGGGCGTCCGACCTCGACGTCGTCGGCTTCGAGCCCGGCTTCGCCCGCCGGGACAAGCCGTCACGGCGCCGTCGGGACCGCGCCGTGCGCCTGGCCGCCCGTGCCGACGTCGTGCTGCTGTTCCTGGGCCTCGACGAGTCCGCCGAGGCGGAGGGTGTCGACCGGACCCACCTGCGCCTCGCCGCGAACCAGCTCGCCCTGACGCGCGAGATCGTGGCGCTCGGCAAGCGCGTGGTGGTCGTGCTCTCCGGCGGCGCGCCGGTCGAGCTGCCCTTCGCCGACGACGTCGACGCGATCCTGCACGCCTACCTGCCCGGTCAGGGCGGCGGTCGCGCCGTCGTCGACCTGCTCACCGGCGCCGCCTGCCCCGCGGGGCGCCTCGCCGAGACGTACCCGCTGCGCGGCGAGGACATCCCGTCCTCGGCGACGTTCGGGCGGACCGAGGCCACCTCGGAGCACCGCGAGAGCATCTACCTCGGCTACCGATGGTTCGACAAGGTCGGCGCACCGGTCCGCTACCCGTTCGGGCACGGGCTGAGCTACACGACCTTCGTCCACTCCGACCTCGACGCCGGCCCGACGTCGGCCCGGGTCACGGTCACCAACACCGGCGACCGCGCCGGTACCGAGACGGTCCAGCTCTACGCCGAGGCACCCGGGGCGGCGGCCGGCGAGCTCCGCGCCCCCCGCGAGCTCGTCGGGTACGCCACCGTCCCGCTCGAGCCCGGGCAGAGCGAGACCGTCGAGATCGTCTACGCCCAGCACGCCTTCGACGTCTACGACGCCGAGGCCCACCGGTGGCGCACGGTCGGCGGCACCTACACCGTCCTGGCCGGCGCGTCGTCGCGCGACGTGCGTCTGCGGGCCCCGCTCGCGGTGGTGGGCGAGGACTGGACGACCCCCGACGCCGACCACCTGCCGCACTATCTCACCGGCCGGATCGCCCGCGTCGACGACGCGGAGTTCGAGGCGCTGCTCGGCCGGCCCCTGCCGCCGTCGCGGTGGGAGACGGGCCGACCGCTGACCCGCGACGACATCATCGCCCAGGCCCGGGGGCGCGGCGGGTTCGCGAGCCTGCTCCACGCCGCGATCGACGGCACCGGCGCGCTGCTCATGGCGCTGGGCCGACCGCACGCGGCGAACAACACACGCTTCGTGCTCGACCTGCCGTTCCGGTCGGTCGCACGCATGAGCGGCGGGAGGGTCGACGACGACATGCTCGACGGCCTGCTGCTCATGGTCAACCGTCGATTCCTCGCCGGCGTGCGCCGGGTGGTGTCGGCCTGGCGCGCTCGTCGACGGAGCGGGCGCGCACCACGCGAGAACTGAMTSSDSRHARGGPGLRRLRTEMTLAEKASLASGANFWNTTAVDRLGVPSAMLTDGPHGLRKQGGAADHLGLNASIPATCFPPAATLANSWDPGLVERIGTALGAEAAAEDVSVLLGPGLNIKRNPLAGRSFEYFSEDPLLAGTLAAAMVRGIQSRGVAACVKHFAVNSQETHRMSIDEVVDERALHELYLEGFRLAITEGRPWTVMSSYNKVNGTYANEHPELLTGVLRDTWGFDGLVVTDWGGNNDRVAGLLAGNALEMPSTDGVTDREIVRAVESGRLDEAVLDARVDELLTLLDRTAGARVDADAVDRAAHHELAVEAARRSLVLLRNEGDALPLGPGAGRVAVVGDFAARPRYQGAGSSLVNPTRVDDALEALRASDLDVVGFEPGFARRDKPSRRRRDRAVRLAARADVVLLFLGLDESAEAEGVDRTHLRLAANQLALTREIVALGKRVVVVLSGGAPVELPFADDVDAILHAYLPGQGGGRAVVDLLTGAACPAGRLAETYPLRGEDIPSSATFGRTEATSEHRESIYLGYRWFDKVGAPVRYPFGHGLSYTTFVHSDLDAGPTSARVTVTNTGDRAGTETVQLYAEAPGAAAGELRAPRELVGYATVPLEPGQSETVEIVYAQHAFDVYDAEAHRWRTVGGTYTVLAGASSRDVRLRAPLAVVGEDWTTPDADHLPHYLTGRIARVDDAEFEALLGRPLPPSRWETGRPLTRDDIIAQARGRGGFASLLHAAIDGTGALLMALGRPHAANNTRFVLDLPFRSVARMSGGRVDDDMLDGLLLMVNRRFLAGVRRVVSAWRARRRSGRAPRENPGPT0019110_2259DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
AK018_05070612hypothetical proteinGTGCCCGAGGAGAGCACCACGGGACGCGCGGAGGGGTACGCCACCGGACGCGCGACCAAGCAGTCGATCGTGGAGAGCGCGGCGACCGCGTTCTCCCAGACGGGCTTCTACGGCACGTCCTTGCGCAGCATCGCCCGCGAGGCGGGGGTGGACCACTCCACGCTCCTGCACCACTTCGGCACGAAGACCGCCCTGCTGCTGGCCGTCATCGAGTGGCACGACACGCAGCAGATGCCGTCGGAGCTCCCGCGCGACCTCTCGGCCGAGTTCATCGCGGACGGCTTCGCCGCCACGGCCGCACGCAACGCCGAGACACCGGGCCTGGTCCAGCTGCTGTCCGTGCTGACGGCCGAGGCCGGCGCCGAGGGCCACCCGGCCCGCGAGACGCTGCAACGCCGCCACGACGTCGTCACCGCCCTCATCGCGTGGACCATCCGGACCCAGCGCGAGTCGCTGGGCCTCACCGACGACCCCCTCACTCCCGAGGACCGCGCCGCCGTCGTCGTCGCGACCTGGGACGGGCTGCAGATGTACGACGCCCTGCACCCCGGTCGGCTCGACGTGCCCGCGCTGGTCGGACGCTCGCTGCGCGACGCCTTCGGGCTCGACTGAMPEESTTGRAEGYATGRATKQSIVESAATAFSQTGFYGTSLRSIAREAGVDHSTLLHHFGTKTALLLAVIEWHDTQQMPSELPRDLSAEFIADGFAATAARNAETPGLVQLLSVLTAEAGAEGHPARETLQRRHDVVTALIAWTIRTQRESLGLTDDPLTPEDRAAVVVATWDGLQMYDALHPGRLDVPALVGRSLRDAFGLDNANANANANA
AK018_050712610hypothetical proteinATGGACCTGCGGGAGCGGGACACCCAGCTCGCGGCGCTCGACGAGCTGCTCGGCGACGCACGGACCGGACGGGGCGCCGTCGTGCTCGTGCCCGGTGAGGCCGGCGCGGGCAAGTCCGTGCTGCTGGCCGCGACCGAACGCCGCAGCCCGTGGGCCCGCTGGGCGTGGGGACACTGCGACAGCCTGGCGACGCCCCGCCCCCTGGGGCCCCTGCACGACGTCGCCCAGCGCCTCGGCGGCGACCTCCCCGCGGCGCTGCGGCGCGGCGCCTCGCGCGACGAGCTGTTCGACGCCGCGATCGACGCGGTCTCCGCCGGGAGGCCCGGTGCGCCCGTGGTGCTGGTCGTGGAGGACGTGCACTGGGCCGACGAGGCCACCGCCGACCTGGTCCGCTTCCTCGCACGCCGCCTGCGTGACCGCCCCGCCGTGCTGGTCCTGACCTACCGCGACGACGAGCGCTCCCGGTCGGCCTGGACCACCACGCTCGGCGAGGTCGGCTCCCTGCCCTCCGCGCACCGGGTCGACGTGCCACCGCTGAGCCGGTCGGCGGTGACGGACCTCGCCGTCGAGGCCGGGCTGGACCCGACCGCGGTGTTCGAGCTCACCGGCGGCAACGCGTTCTTCGTCGCCGAGGTCGTGCGATCGGGCCACGCGACGCTCCCCGCCTCGGTCCGCGACGCCGTGCTGGCTCGGGCAGACCGCCTCGGTACCGAGGCGCGGCGGACGCTGGACACTGCCGCCCTCGTCGGCCGCCGGGTCCCGCCGGACCTGCTGCTCGCGGCCACCGGCGCCGACCCGCGGGCGGTCGACGAGATGCTGACGTGCGCCGTGGTCGGCTCGGGACCCGACGGGTTCGTCTTCCGCCACGAGCTCGGGCGGCTCGCCGTCGCCGAGGCCCTGCCCGCACACCGGGCGCAGGAGACGCACGCCAGGATCCTGGCCGCCTACGAGGGCCGCCCCGAGGACGACGCGATCCGCGCCTTCCACGCCGAGGCGGCCGGGGACGCCCCCGCCACGCTGCGGCACGCGACGGCGGCCGCCGAGCTGGCCGACCGGCTCGGGTCCCACCGGGAGGCGCTCGCCCAGTACGAGCGCGCCCTGCGTGCCGCGCCGGCGGACGACCCGGCGCTGCGGGCGCGGCTGCACGACGACGCCGGCGTCCAGGCCGCGCACCTCGACGAGATCGACCGTGCCCTGCGGGGTTACGAGACGGCGCTCGGGCTGTGGCGTGCCGTCGGTGACCGGCGCCGCGAGGCGGTGACGCTGGCGCGGATCAGTTCGATGCGTTATCGGGAGGGCCGAGGGCAGGCTGCCACCGCCCTGCTGGAGGAGGCAGCCGCCCTGGTCGACGACACCGACTCCGCGGAGATGGTGGACGTGCTCGCCTCGCTGGCCGCCTACAGAATGCTGCACGCACGCAGCGCCGAGGCCGTACGACTGTGCCACCAGGTGCTGCCGGTCGCGGAGCGGCTCGGCCTGGTCGAGGAGCAGGCGGAGATCCTCAACACCCTCGGCTGCGCCCTCGCGCCCCAGGGCGGGGACTGGGAGACGCCCCTGCGCCGGTCCTTCGGCCTCGCCGTCGAGCACGGTCTGGCCCCGTCCGCCGCCCGGGCGTCGGTCAACCTCCTCAACGAGCTCGTCGACGCCTCCCGGTGTGCCGACGCCGAGCGCGTCTTCGCCGACGGCGACCGGTACTGTGCCCGGCACGACCTGGACTTCCTGCGATGGTGCCTGCGACGCGAACGGTGCCGCGCCCTGACCCTGACGGGCCGCTGGGACGAGGCGCGAGCCCTGTGCCACCAGATGGTGACCGACTGCCCCTCACGGTGGAACCGGGTGCACGTCACGGCGACCGCAGCCGTGCTGCGGGCGTACCTCGACCCCGTGGCCGCGGCCACGATGCTCGAGGCGGCGCAGCCCGCCGTGCACGAGATCGGCGAGACCCAGCTCAGGATGCCGCACGCGGTCGCGCGGGCGGAGACCTGCTGGCTCGCGGGCGACGTGAGCGCGGCTCGGGCCGCGCTGAGCGAGGTCGCCCCGCTGCTGGGCGGGGCCGGTCCCGGCGACACGGCTCGCTTCGTGCTCTGGTCACGTCGCCTGCAGGTGCCGCACGCCGCCGTCGTCGGCGCCCTGCCGGAGCCGGTCGCCGCCGAGCTGGCCGGCGACCATGCCGCCGCGGCGCGGGCCTGGGACGACGCCGGGAGTCCGTACGGCGCCGCACTCGCGCTGTCCTGGTCCGACGATCCGCACCACCTGCGCGAGGCCGTCGACCGGTGGCGGCGGCTCGGGGCGACCGCCGGCGTCCGCGCGACGCGTCGCCGCGCTCGCGAGCTCGGGCACCGGTCGGTCCCCGCCGGGGCACGCCGGGCGACGCGCCGGCACCCGGCCGGCCTCACCGCACGCGAGAGCGAGGTCCTGCGGCTGCTCGCCGAGCACCGGACCAACGCCGAGATCGCCGAGGAGCTGGTCCTCAGCGTGCGGACGGTCGAGCACCACGTGGCCTCGGTGCTGGCCAAGCTGGGCGTGCCGACCCGGCGGGACGCGGCCGCCCGGGCACGTCGGGGCGATCTGCTCACCGGGCTCGACGCGCCCACCGCACATCCCGGGTAGMDLRERDTQLAALDELLGDARTGRGAVVLVPGEAGAGKSVLLAATERRSPWARWAWGHCDSLATPRPLGPLHDVAQRLGGDLPAALRRGASRDELFDAAIDAVSAGRPGAPVVLVVEDVHWADEATADLVRFLARRLRDRPAVLVLTYRDDERSRSAWTTTLGEVGSLPSAHRVDVPPLSRSAVTDLAVEAGLDPTAVFELTGGNAFFVAEVVRSGHATLPASVRDAVLARADRLGTEARRTLDTAALVGRRVPPDLLLAATGADPRAVDEMLTCAVVGSGPDGFVFRHELGRLAVAEALPAHRAQETHARILAAYEGRPEDDAIRAFHAEAAGDAPATLRHATAAAELADRLGSHREALAQYERALRAAPADDPALRARLHDDAGVQAAHLDEIDRALRGYETALGLWRAVGDRRREAVTLARISSMRYREGRGQAATALLEEAAALVDDTDSAEMVDVLASLAAYRMLHARSAEAVRLCHQVLPVAERLGLVEEQAEILNTLGCALAPQGGDWETPLRRSFGLAVEHGLAPSAARASVNLLNELVDASRCADAERVFADGDRYCARHDLDFLRWCLRRERCRALTLTGRWDEARALCHQMVTDCPSRWNRVHVTATAAVLRAYLDPVAAATMLEAAQPAVHEIGETQLRMPHAVARAETCWLAGDVSAARAALSEVAPLLGGAGPGDTARFVLWSRRLQVPHAAVVGALPEPVAAELAGDHAAAARAWDDAGSPYGAALALSWSDDPHHLREAVDRWRRLGATAGVRATRRRARELGHRSVPAGARRATRRHPAGLTARESEVLRLLAEHRTNAEIAEELVLSVRTVEHHVASVLAKLGVPTRRDAAARARRGDLLTGLDAPTAHPGNANANANANA
AK018_05072252hypothetical proteinATGGCTCTGTTCATGGACGTCCACACCCTCGGATCCGGCGTGACGATGGAGGACGTCGCCCAGGCGCACGTCGCCGACCTGCAGAAGCAGGGCGAGCACGACGTGCAGTACCTGCGGTACTGGGTCGACGAGTCGGCGGGCAAGATCTTCTGCCTGGCCGACGCCCCCTCGGCCGACGCCGCGGCCACGGTGCACCGGGAGGCGCACGGCCTGGTCGCCGACGAGATCTACCCGGTCCAGGAAGGCGTCTGAMALFMDVHTLGSGVTMEDVAQAHVADLQKQGEHDVQYLRYWVDESAGKIFCLADAPSADAAATVHREAHGLVADEIYPVQEGVNANANANANA
AK018_05073567hypothetical proteinATGGAGCGAGCGGCGCTCGCCCTGGCGCTCGAGCACGGCCTGGACCAGGTGACCGTCGAGATGATCTGCGAGGCGGCCGAGGTCTCGCCCCGCACCTTCTACAACTACTTCGGCACCAAGGAGGCCGTGCTGCTCGGCCCGGCCCCCGCGCCTCCCGCCCCGAGTCTGCTCGAGGAGTTCCTGCACGCCGACGGGCCGCTGTTCGAGGACGTCGTCGCCGTGCTCGTCGCGGCCTTCCTGGCCGCCACGCACGACGCCGAGCTGATGACGCTCCGACGTCGGCTCTTCGACCGGGAGCCACGCCTCCAGGCGCTCCAGCACGCCCGCTGGGCTCCCCAGCGGCAGGTGCTGACCGACCACGTGGTCCGGCGGCTCGCCGTGCAGCAGCCCGACCTCTCCCCCGACGCCGCCCGTGACGAGGCCCGGGTCGTCATGGGCGTGGCGACGAGCACCTACCCGATTCTCAGCCGGCTCTGGCTGGAGGGCGGGGAGGGAGCGCCCGACCCGGGCCGCTACGTGGCCGCGGCCGTCGACGGCGTCCGGCGTGCCGTGACCGCGCGTCGGTGAMERAALALALEHGLDQVTVEMICEAAEVSPRTFYNYFGTKEAVLLGPAPAPPAPSLLEEFLHADGPLFEDVVAVLVAAFLAATHDAELMTLRRRLFDREPRLQALQHARWAPQRQVLTDHVVRRLAVQQPDLSPDAARDEARVVMGVATSTYPILSRLWLEGGEGAPDPGRYVAAAVDGVRRAVTARRNANANANANA
AK018_050741566bmr3_6Multidrug resistance protein 3GTGCCGGTGTTCGCCGGCCTCCTGACGGGCATGATGCTGTCCTCGCTGAGCCAGACGATCTTCGCGACAGCCCTGCCCACGATCGTCGGCGAGCTCCGCGGCGTGGACCAGATGCTGTGGGTGACGACGGCGTACATCCTGGCCGCGACGGTGGTGGTCCCCGTCTACGGCAAGCTCGGCGACCTCGTCGGTCGCAAGGGCCTGTTCGTCGCGGCGATCGGCATCTTCGTCGCGGGCTCGCTCGCGGGCGGGTTCGCCGGGTCCATGCCGGTGCTCGTGGCGGCCCGAGCCGTCCAGGGCCTCGGAGGCGGCGGTCTGATCGTCCTCGCCCAGGCGATCGTCGCCGAGGTGGTCCCGGCCCGGCAGCGCGGGAAGTACCTGGGGATCATGGGGGCCGGGTTCGCGGTGTCGTCGGTCGCGGGCCCGCTGCTCGGGGGCTGGTTCACCGAGGGTCCCGGATGGCGCTGGGGGCTGTGGGTCAACGTCCCCCTCGGCCTCGCGGCGATCGTGCTCGCGAGCGTGTTCCTCCAGCCGTCCGCGCGGCGTCCGGAACGCCCGCACATCGACGTGGCCGGCATGACGCTGCTGGCCCTGACGACCACGGCGCTCGTGCTGATCACCTCCTTCGGCGGGCGGTCCGTGGAGTGGGTCTCGCTGCCGATCGGTGGTCTCGCCGCGCTCGCCGTGGTGGCGGGCGCCGCCTTCGTCCTCGTCGAGCGACGGGCCGTGGAACCGGTGATCCCGCTGCGGCTCTTCTCCGACCGCACCTTCTGCCTGGCGACGACGGCGGCGCTGCTGACCGGGGTCAGCATGTTCGGCGTGCTCGGCTACATGCCGACCTACCTGCAGATGGTCGGCGGCGTCGACGCCACCGAGGCGGGCCTGCTCACCACGCCGATGATGCTCCTGATGCTCGTCACGTCCACCGTGGCGGGCGCGCTGGTGTCGCGGACCGGACGCTACCGGGCGTTCCCGGTGGCGGGGAGCGGCGTCATGGCCGTCGCGCTGCTGCTGCTCTCGACGCTCGAGCCGGGCACCTCGGTGCGGGTCGCCGGCGGGTACCTCGCCCTGTTCGGCGTGGGCCTCGGCCTGACCACCCAGATCCTGGTGCTGATCGTCCAGAACGCGTTCGCGCTGCGCATCGTCGGCACGGCCACGGCCGCGACCAACTACTTCCGGCAGGTCGGCGCCTCGATAGGGACCGCCGTCGTGGGCTCCCTCTTCACCGCCCGCCTCACGACGCTGCTCGCCGAACGCCTGCCGCCGGGGGCGACGACGGGACCGAGCGAGGCCGGCTCGTTCACCCCCGCCGCGGTCGCCGGGCTGCCCGGGCCGGTGCGCGACGTCGTCACGACCTCCTACGCCGACGCGATGACCCCCGTGTTCCTCGTGCTGCTGCCGCTGGCTCTCCTCGCCGCGGTCCTGCTGCTGTTCGTGCGGGAGGTGCCGTTGCGCACCACCCTCGACGAGGAGGTCGACGGGGGCGCGACCGGTCCGGACCGGGAGAGGGGTACTCGGGGGACTCCTCTGCGCAGCCTCTCCCACCGACGGGCCGAGCAGTGCTGAMPVFAGLLTGMMLSSLSQTIFATALPTIVGELRGVDQMLWVTTAYILAATVVVPVYGKLGDLVGRKGLFVAAIGIFVAGSLAGGFAGSMPVLVAARAVQGLGGGGLIVLAQAIVAEVVPARQRGKYLGIMGAGFAVSSVAGPLLGGWFTEGPGWRWGLWVNVPLGLAAIVLASVFLQPSARRPERPHIDVAGMTLLALTTTALVLITSFGGRSVEWVSLPIGGLAALAVVAGAAFVLVERRAVEPVIPLRLFSDRTFCLATTAALLTGVSMFGVLGYMPTYLQMVGGVDATEAGLLTTPMMLLMLVTSTVAGALVSRTGRYRAFPVAGSGVMAVALLLLSTLEPGTSVRVAGGYLALFGVGLGLTTQILVLIVQNAFALRIVGTATAATNYFRQVGASIGTAVVGSLFTARLTTLLAERLPPGATTGPSEAGSFTPAAVAGLPGPVRDVVTTSYADAMTPVFLVLLPLALLAAVLLLFVREVPLRTTLDEEVDGGATGPDRERGTRGTPLRSLSHRRAEQCNANANANANA
AK018_050751059xynYEndo-1,4-beta-xylanase YATGAGCACCGCACGACGGACGACCCGCACCCGGACGATCATGGCCGGGCTCGGCGTGACCCTGCTCAGCGCGTGCAACCCACCGGACCCGTCCCCCGACGTCGAGGGGCGCGAGGCACCGAGCGCCGCGGGGACGCACTCCCCGGCCGCGCCGGCACCGGGCGCCGGCCCGTCGGGGTGGGAGGCCGTGCCCGACGGCTACGAGACGCCGGCCGAGCAGCGCGGCAGCCTCGTGGAGCTGACCTACACCACGACCCACACCGTCGCGCAGGACGGCGCCCAGGACAAGGACGCACTCGTCTACCTCCCGCCGGGCTACGACCCGGACGACGACGTCACCCGGTATCCCGTCCTCTACCTCATGCACGGCCTCGGAGGGGACCAGTACTCCTGGACGGGGCGTCCGGACCGGCCGACGCCGTTGCCGGCGATCTTCGACCACGCGATCACCGACGGGAGGATCGACCCCGTCATCGTCGTCACCCCGACGTACGACCCGAGCCCGGACTCCTTCGGCACGGCGGTCGCCGCGTTCCAGCAGGAGCTGGTCGAGGACCTCGTGCCCGCCGTGGAGAGCACCTACCCCACCTTCGCGGAGACCGTCGACGCCGACGGCCTGCGTGCGTCGCGCGAGCACCGTGCGTTCGGTGGCTTCTCCATGGGGGGCGTGACGACGTGGTACCTGCTGGAGCACGCGCCGGACGTCTTCGCCGGCTTCCTGCCCATGGCCGGCGACAGCTGGAACGTGGTCATGTTCGGCGGGCTCGAACGGCCCGAGGAGACGGCCGCGAGCCTCGCCCGGGGCATCACCGGTGCCGGGTACGGGACCGAGGACCTCGACGTGCTCGCGGCCACGGGGTCGGAGGACTTCACGACCCCGAACATGGAGGCACAGATCCCCGCGATGGCCGAGCACCCGGAGGTCTTCGACCGCACCGACGACGGCTTCGAGGACGGCAACCTCGTCTACCACGTGGTCCCCGGCAACGCGCACGACTACCCCTGGGGGTACGAGTACGTCTACAACGGCCTGCGGATGCTGCCGGCGCTGCGGGACTGAMSTARRTTRTRTIMAGLGVTLLSACNPPDPSPDVEGREAPSAAGTHSPAAPAPGAGPSGWEAVPDGYETPAEQRGSLVELTYTTTHTVAQDGAQDKDALVYLPPGYDPDDDVTRYPVLYLMHGLGGDQYSWTGRPDRPTPLPAIFDHAITDGRIDPVIVVTPTYDPSPDSFGTAVAAFQQELVEDLVPAVESTYPTFAETVDADGLRASREHRAFGGFSMGGVTTWYLLEHAPDVFAGFLPMAGDSWNVVMFGGLERPEETAASLARGITGAGYGTEDLDVLAATGSEDFTTPNMEAQIPAMAEHPEVFDRTDDGFEDGNLVYHVVPGNAHDYPWGYEYVYNGLRMLPALRDNANANANANA
AK018_05076888hypothetical proteinATGACGAGCCGTGACGACGTCCGCGAGTTCCTGTCGAGCCGACGCGCCAAGGTCAGCCCGGAGATGGTCGGCCTGCCCTCGGTCGGTCCACGGCGCGTGCCGGGCCTGCGGCGGGGCGAGGTCGCGACGGTGGCGGGCGTCAGCGTCGAGTACTACACGAAGCTCGAGCGCGGCGACCTGCGCGGGGTCTCCGACGAGGTCGTCGAGGCGATCGCCAGCGCCCTGCGCCTCGACGCCGCCGAGCGGTCCCACCTGGTCGACCTCGCCCGGACCGCGAACGCCGGGACCCGGGCACGCCGCCGTCCGGCACCGCGCACCAGCCTGCGACCGAGCCTTCGCCACCTCGTGGACTCGATCACGACGGGGGCCGCCGTCCTGGGCAACCTGCGCGGCGACGTCGTGGCGACCAACGAGCTCGCCCGCGCGCTCTACGACCCCGTCTACCGGTCGCAGCCGGAACCCCCGAGCTTCCCGCGGTTCACCTTCTTCGACCCGGCCGCGCGGGAGTTCTACCCGGACTGGGACGAGATCGCCGACTCCTCGGTGGCGAGCCTCCGCACCATCGCCGGCCGCCACCCGTTCGACAAGGAGATCACCGACCTCGTCGGCGAGCTGTCGACGCGGTCCGAGGAGTTCCGCACCCGCTGGGCACGCCACGACGTGCGCCTGCACATCGAGGGGATCAAGCGGATGCGGCACCCGGTGGTCGGGCTGCTGGAGCTCGAGTACAACACCCTGGGCCTGCCCGGCGACGAGGGCCTCGGGATGACCGTGTACACCGCCGCCCCGGGGTCCGAGGCGCAGGAGAAGCTGGACCTCCTCGCCAGCTGGTGGGCCGCGGAGAAGGCCGCGAGGACCCCCGGAGCCACGACGGCGTCGGAGCGCTGAMTSRDDVREFLSSRRAKVSPEMVGLPSVGPRRVPGLRRGEVATVAGVSVEYYTKLERGDLRGVSDEVVEAIASALRLDAAERSHLVDLARTANAGTRARRRPAPRTSLRPSLRHLVDSITTGAAVLGNLRGDVVATNELARALYDPVYRSQPEPPSFPRFTFFDPAAREFYPDWDEIADSSVASLRTIAGRHPFDKEITDLVGELSTRSEEFRTRWARHDVRLHIEGIKRMRHPVVGLLELEYNTLGLPGDEGLGMTVYTAAPGSEAQEKLDLLASWWAAEKAARTPGATTASERNANANANANA
AK018_05077909yvgN_2COG0656Glyoxal reductaseATGATCCTGTCCGAGCACTACACGCTGTCCAACGGGGTCGAGATCCCGAAGCTGGGGCTGGGGACCTGGTTCATCAACAACCGGGACGTCGTCCGGGCCGTCCAGGACGCCGTCGACGTCGGCTACCGCCACATCGACACCGCTCAGGCCTACCGGAACGAGAAGGGCGTCGGCGAGGCGGTCCGAGCCAGCAGCGTGCCGCGCGAGGACCTCTTCGTCACCACCAAGCTCGGTGCCGGCGCGAAGTCCTACCGCAAGGCCGTCGCCGGGATCGACCGCTCCCTGCGGACGCTGGGCCTGGACCACATCGACCTCATGATCATCCACAGCCCGCAGCCGTGGTCGTCCTTCCGGGGCGACAACCGGTACCTCGAGGAGAACCGCGAGGTGTGGCGTGCTCTGGAGGAGGCCTACAGCGCGGGCAAGCTGCGCGCGATCGGGGTGTCGAACTTCGACGAGCAGGACCTGGACAACATCCTCGGGACCGCCACGGTCGCGCCGATGGTCAACCAGGTCCTCGCCCACGTCAGCAACACCCCGCACGAGCTGATCGACTACTGCCAGAGCCGGGACGTCCTGGTCGAGGCCTACTCCCCCGTGGCCCACGGCGAGCTGCTCACGAACGACCAGGTCGCCGAGATCGCCGCGCGGTACGACGTCTCGGTCCCGCAGCTCTCCATCCGCTACGACCTCCAGCTCGGGCTGCTGCCCCTGCCGAAGACCACGAAGGTCGCGCACATGAAGAACAACGCGGACCTGGACTTCGTCATCTCCGACGAGGACATGGACATCCTGCGCCACGTCGACCGGATCGAGGACTACGGCGACGCGAGCATGATGCCGGTCTACGGCGGCCAGATGAACCTGCGCTCGATGGCCCGCATGATCCGGCACTCGATGCGGCGCTGAMILSEHYTLSNGVEIPKLGLGTWFINNRDVVRAVQDAVDVGYRHIDTAQAYRNEKGVGEAVRASSVPREDLFVTTKLGAGAKSYRKAVAGIDRSLRTLGLDHIDLMIIHSPQPWSSFRGDNRYLEENREVWRALEEAYSAGKLRAIGVSNFDEQDLDNILGTATVAPMVNQVLAHVSNTPHELIDYCQSRDVLVEAYSPVAHGELLTNDQVAEIAARYDVSVPQLSIRYDLQLGLLPLPKTTKVAHMKNNADLDFVISDEDMDILRHVDRIEDYGDASMMPVYGGQMNLRSMARMIRHSMRRPGPT0014985_76DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0014985-yvgN-K23257NANA
AK018_050793045hypothetical proteinGTGTCCTTCGCTCCGCCCCGACGTCCAGACGGTCCGCCCCCGGCCCGACGTCGCAGCCCGCTGCTCATCACCCTGGTGGTGCTGGCTGCCCTGGTGGTCGTGCTGCTCTTCCTGACCAACTTCTGGACCGAGGTGCTGTGGTTCACCCAGGTCGGGTACGCCAACGTGGTCTGGACGCACTGGATCTCCCGCGGCGTGCTGTTCGTCGTCGGCTTCCTGCTCATGGCGGCCGCCGTCTACAGCTCGTTCGCGATCGGCTACCGGACGCGTCCGGTCTACGCCCCGTCGACGCCCGAGCAGGCGACCCTGGACCAGTACCGCGAGGCGGTCGAGCCGCTGCGCAAGGTCGTGACCTACGCGGGCCCCGTGCTCATCGGCTTCTTCGCCGGCGTCGCGGCGTCGGCCCAGTGGGAGACCGTCCTGCTGGCCCTCAACGGGCAGTCGTTCGGCAGCGCGGACCCCGAGTTCGGCATCGACGTCGGCTTCTACGTCTTCACGCTGCCCGTCCTGCGGTTCGTGGTCAGCTTCCTCATGGCCGTGCTCGTCATCTCGGCCATCGCGGCCGTGGTGACCCACTACCTCTACGGCGGCGTCCGCATCGGCGCGATCACCGACGGCTCGCCGCGCACCACCACCGCGGCGCGCGTGCACCTGGCCGTGCTGGGCACGCTGATCATGCTGCTCATCGCCGCGAACTACTGGCTGGACCGGTACTCGATCCTCACCAGCCGCCACGAGCGGTACGACGGCGCCAACTACACGGACGTGCACGCGGTCATCCCGTCCCGCGAGATCCTCTTCGGCGTCGCCGTGCTCGTCGCGATCCTCTTCGTCGTCGCCGCCTTCCGGGACACCTGGCGGCTGCCGGCGATCGGCGTGGGACTCATGGTCGTCTCCGCGATCGCGATCGGGGCCATCTACCCGGCGATCGTGCAGCGGTTCCAGGTCGACCCGAACGCCCAGTCGCTCGAGGCGCCGTACATCCAGCGCAACATCGACGCCACGCTGGAGGCGTTCGACATCGACGAGGTCGAGTCGCAGCAGTACGAGGCGACCACCGAGGCCGAGGCCGGCCAGCTGCGCGACGACGCGGGCACGACCACCCAGGTGCGGCTCCTCGACCCGCAGGTCGTCAGCCCCTCGTTCCGCCAGCTGCAGCAGAACAAGCAGTACTACAACTTCACGGACAACCTGGCCGTCGACCGCTACGACATCGACGGTGAGTCCCGCGACACCGTCATCGCGGTGCGCGAGCTGAACCTCAGCGGTCTGGCCGACCGGAACTGGACCAACGACCGCACGGTCTACACCCACGGGTTCGGCGTCGTGGCGGCCTACGGCAACCAGCCCGGCCCGGACGGCCAGCCGGCGTTCTTCGAGGGCGGCATCCCCACCCAGGGCGCGCTGACGGACATGTTCTCCGGCGGGTACGAGCCGCGCATCTACTTCAGCCCCGAGGCCCCGCCGTACTCCATCGTGGGCGCCCCCGAGGGCACCGACCCGTGGGAGCTGGACTACCAGGCGGACGCCGAGGGTGGCCAGCAGGAGCTGTACAGCTTCCCGACCGACGAGGTCACGGCCGGTCCGGGCATCGGGACGTTCATGCAGCGGCTGCTCTACGCGCTGCGGTTCGGCGACGAGGAGATCTTCTTCTCCGACCGTGTCACCGAGGTCTCGCAGATCCTGTACCACCGCGACCCGCAGGAGCGCGTCGCGAAGGTCGCCCCGTGGCTGACCCTGGACAACAAGGTCTACCCGGCCGTCGTCGACGGCCGCGTGAAGTGGGTCGTGGACGCGTACACCACCTCGGACGCGTACCCGTACTCCGCGAGCACGCAGATGCAGGAGGCCACGACGGACTCGCTGACGGCGGCGGCCCAGGGTCTGCCGGTCGAGGCGCCGCCCGAGGTCAACTACATCCGCAACTCGGTCAAGGCCACCGTGGACGCCTACGACGGCTCGGTGACGCTGTACGCCTGGGACGACGAGGACCCGCTGCTGCAGGCCTGGAACGACGTCTTCCCGGACTCGGTGCGCCCGATCTCGGAGATGTCCGGCGACCTGATGTCGCACGTGCGCTACCCCGAGGACATGTTCAAGGTGCAGCGCACGCTGCTCGAGCGCTACCACGTCACCGAGGCCCAGCAGTTCTTCGCCGGCTCGGACGAGTGGCGGACCCCGGACGACCCGGTGGGTGGCGACGACACGCTGGCCTCCAAGCAGCCGCCGTACTACCTGACGCTGCAGATGCCGGGCGAGGAGGACCCCGCGTTCTCCCTGACGAGCACCTTCATCCCGGGTGGTTTCACCGACCGGGAGATCCTCACCGGATACCTGGCGGCGGACGCCGACGCCGGGTCGACCGACGGGGAGGTCGACGAGGGCTACGGCACGCTCCGGCTGCTCGAGCTGCCGCGTGACTCGACGGTGCCCGGCCCCGGTCAGGTGCAGAACAACTTCAACTCGAACCCGACGATCTCGGAGCAGCTGAACATCCTGGGTCGTGGTGACTCGGAGGTCGTGCGCGGCAACCAGCTGACGCTGCCGGTCGGCGGCGGTCTGCTGTACGTCCAGCCGGTCTACATCCAGTCCGGGTCGGGGACGCAGTTCCCGCTGCTGCGTCGCGTGCTGGTGGCCTTCGGCGACCAGACCGGCTATGCCGAGACGCTCGACGAGGCGCTGGACCAGGTGTTCGGCGGCGACTCGGGTGCCGAGGCCGGGGACGCGGACGAGGCCGAGTCCGAGGTGCCGACCGACCAGGTGGACCCGGAGACCGGCGAGCCGGTGGAGCCGACGCCGGAGCCGACTGCCGAGGAGACGACCGAGCCGACGCCGGAGCCCACCGAGACGCAGGACACCGGTGACGCCACGGACGGGTCGCCGCAGGCCCGGCTCGACGCGGCGCTGCAGGACGCCAACGAGGCGCTCACCGACAGCAACCAGGCGCTGCAGGACGGCGACTGGGCCGCCTACGGCGAGGCGCAGGAGCGTCTGCAGGCGGCGCTGGAGGAGGCGCTGGCGGCCGAGGGTGAGCTGAACCCCTGAMSFAPPRRPDGPPPARRRSPLLITLVVLAALVVVLLFLTNFWTEVLWFTQVGYANVVWTHWISRGVLFVVGFLLMAAAVYSSFAIGYRTRPVYAPSTPEQATLDQYREAVEPLRKVVTYAGPVLIGFFAGVAASAQWETVLLALNGQSFGSADPEFGIDVGFYVFTLPVLRFVVSFLMAVLVISAIAAVVTHYLYGGVRIGAITDGSPRTTTAARVHLAVLGTLIMLLIAANYWLDRYSILTSRHERYDGANYTDVHAVIPSREILFGVAVLVAILFVVAAFRDTWRLPAIGVGLMVVSAIAIGAIYPAIVQRFQVDPNAQSLEAPYIQRNIDATLEAFDIDEVESQQYEATTEAEAGQLRDDAGTTTQVRLLDPQVVSPSFRQLQQNKQYYNFTDNLAVDRYDIDGESRDTVIAVRELNLSGLADRNWTNDRTVYTHGFGVVAAYGNQPGPDGQPAFFEGGIPTQGALTDMFSGGYEPRIYFSPEAPPYSIVGAPEGTDPWELDYQADAEGGQQELYSFPTDEVTAGPGIGTFMQRLLYALRFGDEEIFFSDRVTEVSQILYHRDPQERVAKVAPWLTLDNKVYPAVVDGRVKWVVDAYTTSDAYPYSASTQMQEATTDSLTAAAQGLPVEAPPEVNYIRNSVKATVDAYDGSVTLYAWDDEDPLLQAWNDVFPDSVRPISEMSGDLMSHVRYPEDMFKVQRTLLERYHVTEAQQFFAGSDEWRTPDDPVGGDDTLASKQPPYYLTLQMPGEEDPAFSLTSTFIPGGFTDREILTGYLAADADAGSTDGEVDEGYGTLRLLELPRDSTVPGPGQVQNNFNSNPTISEQLNILGRGDSEVVRGNQLTLPVGGGLLYVQPVYIQSGSGTQFPLLRRVLVAFGDQTGYAETLDEALDQVFGGDSGAEAGDADEAESEVPTDQVDPETGEPVEPTPEPTAEETTEPTPEPTETQDTGDATDGSPQARLDAALQDANEALTDSNQALQDGDWAAYGEAQERLQAALEEALAAEGELNPNANANANANA
AK018_050801185ylbLCOG3480putative protein YlbLGTGAGCTTCGAGGACCGCAGTCATCAGCCGTACGCGAGCTACGGGCAGGCCCTGGCCCCGATCGACGTGCCCCGCGCCCGCGAGGGCGTGCCGCACCGCCGGATGAGCCCGCGGTCGGTGACGCTCGTCGCCTCGCTGCTGGCCACCGCGATCCTGGCGGCGGTGCTCATGGTGACGCCCGCCCCGTACGCGATCCGCACGCCGGGGCCGACCGAGGACACCCTGGGGGCGCAGGACGCCGGTGACGGGCAGAGCGCCACGGAGGTGCCCCTCATCGAGATCTCGGGCGCCGAGACCTACCCCGACTCGGGCGAGCTGCGCCTGACCACGGTCTCGGTCTTCGGCGGACCGGGGGGCGACGTGCTCTTCGGCGACGTGCTGTGGGGCTGGACCTCGCAGGAGCGGTCGGTGCAGCCCGTCGAGGCGATCTTCCCCGAGCCGATCACCTCCGAGGAGCAGCAGGAGCAGGGCCAGGCCCAGATGCTCAGCTCCCAGGAGTCCGCGACGGTCGCGGCGCTGACCGAGCTCGGCTACGAGGTCCCCACCACGATGACGGTGGTCGCCGCGGCCGAGGGCACCGGGGCCGAGGGCGTGGTCGAGGAGGGCGACGTCATCGTCGCCCTGGACGGGGAGCCCGTGGACACCTATCCGCAGCTGCTGGCCGCGCTCGACGACGTGACGCCGGGCGACGACGTCGTGCTGGGCGTGGAGCGCGACGGCGAGCCCGCCGACGTCACGGTCACCACCGGCCAGGGCGACGACCGGGCCCTGCTCGGCGTCCTCCTCGACCCCGAGTACGACTTCCCGGTGGACGTCACGATCCAGCTCGAGGACATCGGCGGCCCGAGCGCGGGCAGCATGTTCGCCCTGGGGATCGTGGACCTGCTGACGCCCGAGGACGAGCTCGGCGGCGCCGTGGTGGCCGGGACCGGGACGATGGACGTCGACGGGCGTGTCGGCCCCATCGGCGGGATCGAGCAGAAGATGTACGGCGCGCTGCGCGACGGAGCGAGCTGGTTCCTCGCGCCGTCGGACAACTGCCCCCAGGTGGTCGGCCACGTCCCCGCCGGGCTGGGCGTCGTGTCCGTGAGCACCCTCGCCGAGGCCCGTGACGCGATGGGGGCCATCGGTGCCGGGGAGACCTCCGGTCTGCCCACCTGCGAGGCCGACGCCGCAGGCGCCTGAMSFEDRSHQPYASYGQALAPIDVPRAREGVPHRRMSPRSVTLVASLLATAILAAVLMVTPAPYAIRTPGPTEDTLGAQDAGDGQSATEVPLIEISGAETYPDSGELRLTTVSVFGGPGGDVLFGDVLWGWTSQERSVQPVEAIFPEPITSEEQQEQGQAQMLSSQESATVAALTELGYEVPTTMTVVAAAEGTGAEGVVEEGDVIVALDGEPVDTYPQLLAALDDVTPGDDVVLGVERDGEPADVTVTTGQGDDRALLGVLLDPEYDFPVDVTIQLEDIGGPSAGSMFALGIVDLLTPEDELGGAVVAGTGTMDVDGRVGPIGGIEQKMYGALRDGASWFLAPSDNCPQVVGHVPAGLGVVSVSTLAEARDAMGAIGAGETSGLPTCEADAAGANANANANANA
AK018_050811443hypothetical proteinATGAGCGACCTGCCCGACGACCACGACGACCGCGAGCAGATGCTGCGGGACGCGCTGCGCGGCATCTTCGGCGACCGGACCGACGAGGTGCTGAGCCAGATGCGGGCGCAGGGACTGGACCCTGCGGCCCTGATGGGCGGCGCCGCCCCCGACCCGGCGACCATGCAGCGGCTGATGTCCCAGCTCCAGCGGGTGTTCACCTCCTCCGAGGGCCCCGTGAACGCCGAGGTCGCGCACGACCTGGCACGCCAGGTCGCGGTCGCCGAGGGCGACCCGTCCCTGACCGGCGGGCAGGCGAAGTCGGCGACGGAGGCCCTGCGCGTCGCCGAGCTGTGGCTCGACGCCGTCACCGACCTGCCGCCGTCGGGCGGTCCGACCCGGGCCTGGAGCCGCAGCGAGTGGGTCGAGGCGACCCTGCCGGCCTGGCAGCGGCTGGTGGCGCCCGTCGCGTCCTCCGTCGCGGACGCGCTGGCCACGGTGCTGCGCGACCAGCTCGGCGACGAGGGCGCGGGGGCGCTCGGCATGCCGGGCATGCCCGTGTTCCCCGGCGGCGGGCTGGGCGACCTGGACCCGGCCTCGATGATGCGCGGGCTCGGGTCCGCGGTCTACGGCATGCAGGTCGGCCAGGCCGCGGGCACGCTGTCGCGCGAGGTCTTCGGCTCGACCGACGTCGGCCTCCCGCTGCTCGAGGACCACGCCACCGTGCTGCTGCCCACCAACGTGGCCGCCTTCGCCGAGGGGCTCGACACCCCCTACGACGAGGTGCAGCTCTACCTGGCGCTGCGCGAGGCGGCCCACGCCCGGCTGTTCGTCCACGTCCCCTGGCTCCGGGCGCACCTGCACGCCCTCGTGGAGCAGTACGCCCGCGGGATCACCATCGACCTCGACGCGCTCGAGGAGCAGGTGCGCGGCGTCGACATGTCCGACCCGGAGGCGCTGCGGGGCGCGCTGTCCGGCGACGTGTTCGGGCTGCACAACACCGACGAGCAGAAGGCGACGCTGCTGCGGCTGGAGACCGCGCTCGCGCTCGTCGAGGGCTGGGTCTCGGAGGTCGCGGCGACCGCGTCCCTCGCGCACCTGCCGCACTCCGTGCCGCTGCGCGAGATGATCCGGCGACGTCGCGCGGCGGGCGGCCCGGCCGAGCACACCTTCAAGTCGCTCGTCGGCCTGGAGCTGCGTCCGCGCCGTTCCCGGGACGCGGCCGCGCTCTTCGCGCACCTGCTGGCCACCGGCGGGCCCGAGTCCCGCGACGCCGTCTGGGACCACCCCGACCTGCTGCCGGGCACCGAGGACCTCGACGACCCGGCCGGCTACCTGGACCGTCGGCGGGCGCAGGCCGAGGAGCAGTCGGACGTGGACGCGGCCCTGGCGCAGATCTTCGGCGAGTCCGACGACGACCGGGGGCCGGACGCGGACGGGCGCCCGGAGGACTCCGGGTCCTGAMSDLPDDHDDREQMLRDALRGIFGDRTDEVLSQMRAQGLDPAALMGGAAPDPATMQRLMSQLQRVFTSSEGPVNAEVAHDLARQVAVAEGDPSLTGGQAKSATEALRVAELWLDAVTDLPPSGGPTRAWSRSEWVEATLPAWQRLVAPVASSVADALATVLRDQLGDEGAGALGMPGMPVFPGGGLGDLDPASMMRGLGSAVYGMQVGQAAGTLSREVFGSTDVGLPLLEDHATVLLPTNVAAFAEGLDTPYDEVQLYLALREAAHARLFVHVPWLRAHLHALVEQYARGITIDLDALEEQVRGVDMSDPEALRGALSGDVFGLHNTDEQKATLLRLETALALVEGWVSEVAATASLAHLPHSVPLREMIRRRRAAGGPAEHTFKSLVGLELRPRRSRDAAALFAHLLATGGPESRDAVWDHPDLLPGTEDLDDPAGYLDRRRAQAEEQSDVDAALAQIFGESDDDRGPDADGRPEDSGSNANANANANA
AK018_05082489hypothetical proteinGTGAGCGCTTTTCGCGACGGCGACCGCACCGTCGTCGCGATCCCCGCGCGCTTCTCCCAGGCCCAGGAGCGCGAGTGGGTGGCCAAGATGCTCGCTCGCCTCGAGGACAAGGAGCGGCGTCGCCGCCCGTCCGACGACGAGCTCGTCGAGCGGGCGCACGAGCTCTCGGTGAAGTACCTCGACGGCCGGGCGCGGCCCACCAGCGTGCGCTGGGTGTCCAACCAGGAGCGCCGCTGGGGCTCGTGCACGCTCGTGGACGGCTCCATCCGGCTGTCGACCCGCCTGCAGGGGATGCCGGAGTGGGTCATCGACTACGTGCTCCTGCACGAGCTGGCACACCTGCTGCACGCCGGCCACGGCCCCGACTTCTGGCGCCTGCTCGAGTCCTACCCCCGCACCGAGCGGGCGCGCGGGTTCCTCGAGGGCGTGTCCTTCGCCGGGGACGGTGCCCCGGACGACGACGCCGACTCCGGGTCGTCGGCCGGCTGAMSAFRDGDRTVVAIPARFSQAQEREWVAKMLARLEDKERRRRPSDDELVERAHELSVKYLDGRARPTSVRWVSNQERRWGSCTLVDGSIRLSTRLQGMPEWVIDYVLLHELAHLLHAGHGPDFWRLLESYPRTERARGFLEGVSFAGDGAPDDDADSGSSAGNANANANANA
AK018_050831095hypothetical proteinATGGCCTCTGCCGACACGTCCGCCCCCGCCCGCCGACTGCGGCTGCGCCGGGGGACACCGGTCCTGGACCGCGGCTCCGGGACGCTCCAGCTCGGGTCGGACCACCGGTGGTCGCTCCTGGTCTCCGGGCTGTCCGACGCCGAACGGACCTGGTTGCACGAGGCCGCCGCCGCGCGCCACGGCGACCTGGAGCACGGCGCCGCCCGGCACCGGGTCGCGCCGGAGCGACGCGCCCGGATCCTCAGGCTGCTGGCCGACGCCGGCTTCCTCGTCCCGCCGGCCGCCCCCGCGGCGCAGGTCCGGGCCGCGGCCGGTGGTGCGGCGGACGCGCCGGCTCTCGCCGCGCTCCGCATCGACGGCGACGGGCTGCGCACCCTCGCCGGGCGGGCACGCTCCCGGGTGGCCGTGGTCGGGCTGGGGCGGCTCGGCGCGCTGCTGGCGGCACACCTCGCCACCGCCGGGGTCGGCACCGTGCTGCTCGACGACGACTCCCCCGTCCAGCTCGTCGACCTGGGAGTCGGTGCCTACCTCGAGGCCGACGTCGGGCACCGGCGCGCGTCGCGCCTGCGGCGCCGGCTGGCGGAGCAGCACCCCGGGACCCGCGTGGCGACGACGTGGCGTGACGAGGCTCCGCCCGACGCGGTGGTCGTCTGCACCGGTGCGGGCCGACCGGAGGACTTCGCCCGGCTGATGAGTCACGGCATCACCCACCTGCCGGTCGTGGCCGGCGAGGCCGGTCTGGAGGTCGGGCCGTTCGTGCGACCCGGCGCGACGGCCTGCGTGGCCTGCCGGTTCCACCACGACGTGGACGCCGACCCCGACTGGCCGCGACTCGTCGGCCAGCTCGCCGGATGGGCCCTGCACGCCGGGCACGAGACGGTGCTGGCCACGACCGGGGCCGCCCTCGCCACCGGTCAGGTGCTCGCCCACCTGGACGGCGGTCGGCCCGCCGCGGCGGGCGCGGTGCTGCAGGTCGGGCTGCCGGACGCCCTGGCACGGGTCCGCACGCTGCCGCCGCACCCGGACTGCGGGTGCACGGCGCCGACGCCTCCCCCGGTCCGCCGGGTCCCGGCGACGCGGCCGGCGCACCCGTAGMASADTSAPARRLRLRRGTPVLDRGSGTLQLGSDHRWSLLVSGLSDAERTWLHEAAAARHGDLEHGAARHRVAPERRARILRLLADAGFLVPPAAPAAQVRAAAGGAADAPALAALRIDGDGLRTLAGRARSRVAVVGLGRLGALLAAHLATAGVGTVLLDDDSPVQLVDLGVGAYLEADVGHRRASRLRRRLAEQHPGTRVATTWRDEAPPDAVVVCTGAGRPEDFARLMSHGITHLPVVAGEAGLEVGPFVRPGATACVACRFHHDVDADPDWPRLVGQLAGWALHAGHETVLATTGAALATGQVLAHLDGGRPAAAGAVLQVGLPDALARVRTLPPHPDCGCTAPTPPPVRRVPATRPAHPNANANANANA
AK018_05084369whiB_3Transcriptional regulator WhiBGTGCGTCTCGCACAGCTGTTGGACGAGCGGCTGGTCGATGCGACCCCCGCCGGCGGCAGCCGCCAGTGGACCCCCCACCAACCCGTGACCCAGGACCCGGCCGAGGCGGCCGCGCTGGACCGGCAGTTCGCCGAGCTGCTGCCGTGCCGGACCAACGACCCCGAGCTCTGGTTCGCGGAGCACACCAGCGAGGTCGAGCGGGCCAAGGCCCTGTGCCGGACCTGCCCGCTGCAGGCGGGCTGCCTGGCCGGCGCCCTCGACCGCAACGAGCCCTGGGGCGTCTGGGGCGGCGAGGTGTTCGTCGACGGTGTCGTCGTGGCCCGCAAGCGGGGCCGGGGCCGGCCGCGCAAGAGCGAGCAGGCGGCCTGAMRLAQLLDERLVDATPAGGSRQWTPHQPVTQDPAEAAALDRQFAELLPCRTNDPELWFAEHTSEVERAKALCRTCPLQAGCLAGALDRNEPWGVWGGEVFVDGVVVARKRGRGRPRKSEQAANANANANANA
AK018_05085168hypothetical proteinATGAACACGATGACGCAGAACATCGGCGCGACCGGCATCGCGACGGGGGAGAAGCACGCCTTCATCACTGTCGTTCCGGCTGTGCGTCTGCGCACGCGCGGCGGAGCAGGCGTTGCTCTCGTCGATCTCGCACCCGGCTCCGCTCCCTGGAGGCATCCGGTCCACTGAMNTMTQNIGATGIATGEKHAFITVVPAVRLRTRGGAGVALVDLAPGSAPWRHPVHNANANANANA
AK018_050862046uvrD2_1COG0210ATP-dependent DNA helicase UvrD2ATGTCCCTCACGACCAACTCACCGGGCGCCCCGCTTCATCCCGACGCGATCCTGGACGCCCTCGACCCCGAGCAGCGCGACGTCGCGCTCGCGCTGACCGGTCCCGTCTGCGTGCTCGCGGGCGCCGGCACGGGCAAGACCCGGGCGATCACCCACCGGATCGCCTACGGCGTGCGCACCGGGGCCTACCCGCCGACGTCGGTGCTCGCCGTGACCTTCACCGCCCGGGCGGCGGGGGAGATGCGCACCCGCCTGCGCGACCTGGGTGCCCACGGCGTGCAGGCGCGCACGTTCCACGCGGCCGCCCTGCGCCAGCTCGGCTACTTCTGGCCGCGCGTCGTCGGCGGCGCGCCGCCCCAGATCCTCGAGCACAAGGCACCGGCGGTGGCCGAGGCCGCGCGGCGCGTGGGGGCGAGCGTCGACCGCGTCGCCGTGCGTGACCTGTCCAGCGAGGTCGAGTGGTCCAAGGTGTCGCTCGTCACCGCCGAGGACTACGTGCGGGCCGCCGCGGCCGACGACCGACCGCCGCCGTCGGGCTACGACCACCAGACGGTGGCGCGCCTCATCAGCGCCTACGAGGACGTCAAGACCGAGCGCGGGGTCATCGACTTCGAGGACGTGCTGCTGATGCTCGCCGACATGCTCGGCTCGCACCCGCACGTCGCCGACCAGGTGCGCTCCCAGTACCGCCACTTCGTCGTCGACGAGTTCCAGGACGTCTCGCCGTTGCAGCACTTCCTGCTGAACCAGTGGTTGGGGGACCGGCGCGAGCTGTGCGTGGTGGGCGACCCCTCGCAGACCATCTACTCGTTCACGGGTGCGACGCCGCACTACCTGCTCGACTTCACGCGCACGTACCGCGACGCCCAGGTCGTCAGGCTCGTGCGGGACTACCGCTCCACCCCGCAGGTGGTCTCCCTGGCCAACGACCTGCTGCGCCGCGGCCGGGTCACGGGGGCGCTGGAGCTCGTGGCGCAGCGACCCTCGGGTCCGGCGGTGTCCTTCACCACCCACGACGACGACGAGGCCGAGGCGGCCGGCATCGCCGCGCGGGCCGCGCGCCTCGTCGCCGACGGCGTGCGGCCCAGCGAGATCGCTGTGCTGTACCGCACCAACGCGCAGTCGGCCTCCTTCGAGTCGGCGCTGTCCGAGGCCGGCGTCAGCTATCAGGTGCGCGGCGGCGAACGCTTCTTCACCCGCAAGGACGTCCGCGACGCCATCGTGCTGCTGCGGGGTGCCGCGCGCTCCGCCGACCCCGACCAGCCGATGCCGGAGCAGGTGCGCGACGTGCTCGTCTCGGCCGGCTGGTCCGCCGAGCCGCCCCACGCCCGGGGCGCGGCGCGCGAGCGCTGGGAGGCCATGCAGGCGCTGGTGGCGCTCGCGGACGACCTGGCCGCCGCCGCACCGGAGGACGCGCCGGCGACGCTGCCGATGCTGGTCGACGAGCTCGCCGAACGGGCGGCCTCCCAGCACGCACCGACGGTCGAGGGCGTCACGCTGGCCTCGCTGCACTCGGCCAAGGGGCTCGAGTGGGACGCGGTGTTCCTCGCGGGCATGAGCGAGGGGCTCATGCCGATCTCCCTGGCCGAGACCCCCGAGGGTGTCGAGGAGGAGCGCCGGCTGCTGTACGTCGGGATCACCCGGGCGCGCGAGCACCTGGAGATCTCCTACGCCCGGTCCCGCAACCCCGGCGGACGGGCCTCGCGCAAGCGCACCCGGTTCCTCGACGGTCTGTGGCCCGACGACAGTCGCGGTCGGCGCGGGGGCGCCGGGCGGGGCGCTCGCGGGCAGGCCCGGTCCCAGCTGTCCGGGGAGGCCGACGTGGCGCTGTTCGACGCCCTGCGCGAGTGGCGGCTGTCCGTGGCCCGCGAGGTCGACAAGCCCGCGTTCACGATCCTGGGTGACGCGACGCTGGCCGCGATCGCCGAGCTGCGGCCGTCGTCGACCGCCCAGCTGGCGCGGATCAACGGCATCGGACCGGCCAAGATCGACCGCTACGGCGAGACCCTGCTCGACCTGGTGCGCAGGGCGTCCGAGGCCTCCTGAMSLTTNSPGAPLHPDAILDALDPEQRDVALALTGPVCVLAGAGTGKTRAITHRIAYGVRTGAYPPTSVLAVTFTARAAGEMRTRLRDLGAHGVQARTFHAAALRQLGYFWPRVVGGAPPQILEHKAPAVAEAARRVGASVDRVAVRDLSSEVEWSKVSLVTAEDYVRAAAADDRPPPSGYDHQTVARLISAYEDVKTERGVIDFEDVLLMLADMLGSHPHVADQVRSQYRHFVVDEFQDVSPLQHFLLNQWLGDRRELCVVGDPSQTIYSFTGATPHYLLDFTRTYRDAQVVRLVRDYRSTPQVVSLANDLLRRGRVTGALELVAQRPSGPAVSFTTHDDDEAEAAGIAARAARLVADGVRPSEIAVLYRTNAQSASFESALSEAGVSYQVRGGERFFTRKDVRDAIVLLRGAARSADPDQPMPEQVRDVLVSAGWSAEPPHARGAARERWEAMQALVALADDLAAAAPEDAPATLPMLVDELAERAASQHAPTVEGVTLASLHSAKGLEWDAVFLAGMSEGLMPISLAETPEGVEEERRLLYVGITRAREHLEISYARSRNPGGRASRKRTRFLDGLWPDDSRGRRGGAGRGARGQARSQLSGEADVALFDALREWRLSVAREVDKPAFTILGDATLAAIAELRPSSTAQLARINGIGPAKIDRYGETLLDLVRRASEASNANANANANA
AK018_05087264COG0695Putative glutaredoxin.1ATGACCCTCGCCCCGACGCTGCCCGAGCCCGGCACCATCACGATGTACTCCACGCCGTGGTGCGGCTACTGCCGGCGCCTGCGCACGCAGCTCGACTCCGAGGGCATCGGCTACACGGTGATCGACATCGAGGAGCAGCCCGAGACGGCCGCGTACGTCGAGCGGGTCAACGGCGGCAACCGCACCGTGCCGACGGTCGTCTACCCCGACGGGTCCGCCGCGACCAACCCGTCGCTGGCCGACGTGCGCTCCGCCCTGTCCTGAMTLAPTLPEPGTITMYSTPWCGYCRRLRTQLDSEGIGYTVIDIEEQPETAAYVERVNGGNRTVPTVVYPDGSAATNPSLADVRSALSNANANANANA
AK018_05088972nudC_2NADH pyrophosphataseGTGTCCTGGCGTACGGTCGCAGGCGTGAACCCCCTGGAGCTGCCGTTCTCCCGCACCCGCCACGACCGCGCCGCGCACCGGCGCTCCGAGAGCGACCTCGTCGACCGGCTGCGGCGGGGACCTGACACCCGGGTGCTGGTCCTGCACCGCAAGCGTCTCGCCGTCGTCGGCCACGAGTCGCCGCGCGCGGCGCTGCTCGCCCCGGGCGGGCTGCCCGAGGGGACCTGGGTCTACCTCGGCGAGGACCACGGCGCGTCCTACGCGGCGCTGCTGCTGCCCGACGACGAGGACCTCGCACCGCCGGAGGGCGCCGACGGGTGGTCGGGGCTGCGCGAGCTGACGTCCGGCCAGGCCGAGGCGCTGGCGGAGGACGACGACGCGACGGTCCTGGTGCACGGCCTGTCGGTGGAGGCCGTGGCCCTGGCGGGCTGGCACGCCACGCACCGACGCTGCGGTCGCTGCGGCACACCGACCCTCGTGGTCCAGGGTGGCTGGGCGCGCCACTGCCCGGTGGACGAGCGCGAGACCTATCCGCGCACCGACCCCGCGGTCATCATGGCCGTCGTGGACGACGCCGACCGGCTGCTGCTCGGGCACGCGGCCACGTGGCCGGCGGGACGGTTCTCGACGCTGGCCGGTTTCGTCGAGGCGGGCGAGGCGCTGGAGGACACGGTGCGTCGCGAGGTGGCCGAGGAGTCCGGCGTCGTCGTCGGCACCGAGCCGGGCGACGTGGTCTACCGGGGCTCGCAGGCCTGGCCGTTCCCGGCCTCGCTCATGCTCGGCTTCCGGGCGCGGGCGATCGGGACCGAGGTGCGCACCGACGACGAGGAGGTCACCGACGCGCGCTGGTTCGCGCGCGACGAGCTGTACGACGCGGCCGCCTCCCGCGAGCTGCTGCTGCCCGGGCGGCACTCGATCGCCCGGGCCCTCATCGAGGAGTGGTACGGCGCGGAGCTGCCGGGCACCTGGTGAMSWRTVAGVNPLELPFSRTRHDRAAHRRSESDLVDRLRRGPDTRVLVLHRKRLAVVGHESPRAALLAPGGLPEGTWVYLGEDHGASYAALLLPDDEDLAPPEGADGWSGLRELTSGQAEALAEDDDATVLVHGLSVEAVALAGWHATHRRCGRCGTPTLVVQGGWARHCPVDERETYPRTDPAVIMAVVDDADRLLLGHAATWPAGRFSTLAGFVEAGEALEDTVRREVAEESGVVVGTEPGDVVYRGSQAWPFPASLMLGFRARAIGTEVRTDDEEVTDARWFARDELYDAAASRELLLPGRHSIARALIEEWYGAELPGTWPGPT0013440_990DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013440-nudC-K03426NANA
AK018_05089924hypothetical proteinGTGCCCCGAAGTCCCCTCGCTCTCGCCGCGCTCGCCACGGCTGCCGTGCCCGGCCTCGACGCGCGGTCCGTGCACCCCGACGACGTGCCGGGCGACTACGACGTCGCCATCGTCACGACCGGGGACGGCGCGGAGTGGCTGGTCCGCGCACCGTCGACGACGCTCGCCGGCGCCGCCCTCGAGGCCGAGATCGAGCTGCTCGAGTCGCTGCACCTGTACGTCGAGGCGGGCGTGCTGCCCTTCACCGTGCCCCGCGTCGCCGGGTCGGCGCTGCTTCCCGAGGGCGGTCGCGCCGTCGTCCACCGGCGCCTGAGCGGCAGCCCCCTGGACGTCGCCGCGCTGCGCCCCGGGCCGGGGCTCGCCGCCGACCTGGGGCGCACGCTCGCCGCGGTGCACGAGCTGCCGGTGGCGGTCGTCGAGGCGTGCGGGCTGCCCTGCTACACCGCGGCCGAGTACCGCGAGCGCCGCCTGGTCGAGCTGGACGAGGCGGCCGCGACCCGGCGCGTGCCGACGCGGCTGCTGCGCCGGTGGGAGGCCGCGCTGGAGGACATCAGCCTGTGGCGGTTCCAGCCGGTCGTGGTGCACGGGGACCTCGCCCCCGACCAGGTGCTGGCCTCCGGGAACCGGGTGGGCAGCATCAGCGGATGGTCGGAGGCGCGGGTCGCCGACCCGGCCGACGATCTCGCCTGGCTGCTCGCCGCGGCGCCGCCGGAGTGCGTGGACGCGATCATGGAGGCCTACCGGCTGCGCCGGACCGAGCTGGCGGACCCTCGCCTCGTCGACCGCGCCCTGCTCGTGGGCGAGCTGGCCCTGGCCCGGTGGCTCATGCACGGGGTGCGCCGCGGCCTGCCGGACGTCGTGGCCGACGCGGAGTCGATGCTCGCCGACCTCGACGAGGCCACCCGGGAGGACACCCCCGCGTGAMPRSPLALAALATAAVPGLDARSVHPDDVPGDYDVAIVTTGDGAEWLVRAPSTTLAGAALEAEIELLESLHLYVEAGVLPFTVPRVAGSALLPEGGRAVVHRRLSGSPLDVAALRPGPGLAADLGRTLAAVHELPVAVVEACGLPCYTAAEYRERRLVELDEAAATRRVPTRLLRRWEAALEDISLWRFQPVVVHGDLAPDQVLASGNRVGSISGWSEARVADPADDLAWLLAAAPPECVDAIMEAYRLRRTELADPRLVDRALLVGELALARWLMHGVRRGLPDVVADAESMLADLDEATREDTPAPGPT0028010_209DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0028010-mph-K06979NANA
AK018_05090372hypothetical proteinGTGGTCGCAGCCGTGGGTCTCGTCGTCGTCCTGGCACTGCTCGCTCTGTTCCAGGTGCTGGTCGCCTGCGGCGCCCCGCTGGGTGCCTTCGTCTGGGGCGGCCGCCACCGGGTGCTCCCGGCGCGGCTCCGCGTCGGCAGCCTGGTCGCCGTGCTGGTCTACGCGGCGGTCTCCGTCGTCGCGCTGGACCGCGCGGGCGTGATCGACGTGCTGCCCGACGGCGTCGCCCGGGTGGCGATGTGGGTGGTCGTCGGGTGGTTCGCGCTGTCGATCGTGCCCAACGCCATCTCCCGCAGCCGCCCCGAGCGGCTCCTGATGACACCCGTCACCGTGGTACTCGCCGTGCTCGCCCTCCTGGTCGCCCTCTCCTGAMVAAVGLVVVLALLALFQVLVACGAPLGAFVWGGRHRVLPARLRVGSLVAVLVYAAVSVVALDRAGVIDVLPDGVARVAMWVVVGWFALSIVPNAISRSRPERLLMTPVTVVLAVLALLVALSNANANANANA
AK018_050913525rep_1ATP-dependent DNA helicase RepGTGACGACGTCGGACGCCGGCCGGCCGCGCCGCGACGAGGAGCTGCTGCTCGACGACGCCGCCTGGTCCGCCCTGCCGGAGCAGGACCGCAGCACGCAGCTCGGCTTCCCCGCGCTGGCCGGCCCGGACGACGAGGACGCGCAGCCCGCGGCGCCACGGCTGTCGGCCCGGGACATCGCCGGGCTGCTCGGGCGTCCCGCCCCCACCGACGAGCAGTTGGCCGTCATCGAGGCGCCGCTGGAGCCGGTGCTGGTCGTGGCCGGCGCCGGGTCGGGCAAGACCGAGACGATGGCGGCCCGCGTCGTGTGGCTCCTGGCCAACGAGCTGGTCGAGCCCGAGGAGGTGCTGGGCCTGACCTTCACCCGCAAGGCGGCCGGCGAGCTGTCCGCGCGGGTGCAGTCCCGCCTCGGGCAGCTCGCGCGGGCGCGGGGCGGGTCGTCGTCCGACCTGGACCTGCTGGCCCGCCCGACCGTCGCCACATATCACGCGTACGCCGCCTCCCTGGTGGGCGACCACGGGCTGCGCCTCGGCGTCGAGCCCGGGTCGCGGCTGCTCGGCGAGGCGAACCAGTGGCAGCTCGCGGCGGAGATCGTCGAGTCCTGGGACGGGGACCTGGGCACCGAGAAGGCGGTCAGCACCGTGGTCGGGGCCGTGCTGTCGCTGTCCGGGGCGCTGGGGGAGCACCTGCGCGACGTCGACGAGGCCCGCGCGGCGCTCGAGGACGTCGTCGAGCGTCTCGAGAACCTGCCGCTCGGTCCGCGCCAGCGGCAGCGCACCAAGGAGGTCGAGGCGCTCATCGGCTCGGTGGCCGAGCGGGCCCGCCTGCTCGACCTCGTCGCCGAGTACCGGCGTCGCAAGCGCCACACCGACTCCCTCGACTTCGGCGACCAGGTGGCGTTCGCCGCCGAGCTCGCGCGCACCGTGCCCGCGGTCGGCGCGGCCGAACGCGCGCGCTACCGCGTCGTGCTGCTCGACGAGTACCAGGACACCTCCCACGCGCAGGTCGAGCTGCTCGCCGGCCTGTTCGGCGGGGGGCACCCCGTGACCGCCGTGGGAGACCCGCACCAGTCCATCTACGGCTGGCGCGGGGCCTCCGCGTCCGGTCTGTCGCGGTTCCCCGACCGGTTCCGGCACGCCGACGGCGGCACGGCCGCCGTGCGCTACCTGAACACGTCGTGGCGGAACGACGCCGCCGTCCTGCAGGCCGCCAACGTGGCGTCCCGCCCGCTGCGCGAGGAGAACGGCGCCGGTGCTGTCCGGGTGCCCCCGCTGGACCTGCGCCCCGGCGCCGGCACGGGGTCCGTGACCGCCCACGTGGCCGCCACCCTGGAGGAGGAGGCCGAGGCCGTCGCGGACTTCGTGGCCGCCCGCTGGCGCCGGTCGAGCCGCCCGGACGACTCCGACCGGGTCACCGCCGCGGTGCTGTGCCGCGTGCGGTCGCAGTTCCCGGCCCTGGAGACGGCGCTGCGCCGGCGCGGGCTGCCCGTGGAGGTGGTCGGCCTCGGCGGCCTGCTGAGCACGCCCGAGGTGGTCGACGTCGTCGCGCTGCTGGAGGCCGTCCACGACCCCTCGCGGGGCGACTCGCTGCTGCGGCTGCTGACCGGGCCGCGCGTGAACCTCGGAGCCGCCGACCTGCACGCGCTGGGATCCTGGGCCGCCGACCTGGCGCGCCGCGACGCCCCGCGGCCCTCCCCGTCGCGCACCGACGCCGCCGCCGAGGGGTCCGAAGGGATCGAGGGGCCGGAGGCGGACGACCCCACGGTCGTGGAGGGCGACGTCGTCGACCACCGCTCCCTCGTCGACGCCCTGGACGACCTGCCCGAGCCCGGCCGGGCCGCCCGGGACGGCCGCGTGCTCACCCCCGACGGGCATGCCCGGCTGGCCGCGCTGTCCCGGCTGCTGCGCGGGCTGCGCTCCCTGACCTACCTGTCCCTGCCCGAGCTGGTCGTCGTCGCCGAGCGGGCGCTCGGGCTCGACGTCGAGGTCGCCACGGCGGAGATCCTCGCCGACGGGCTGGTCGCCACCGGCGGTGCGACGGCCGCCGAACGGGTGAGCCGTCGGGGCCGCGAGCACCTGGACGCGTTCCGCGACGTCGCCGCCGGGTTCGCCCAGTCCGCCGACGTGGCGACGCTGGGCGCGTTCCTGGCCTGGCTGGGCGTCGCCGACGACCAGGAGCGCGGACTGGACATGCCCGTGCGGGAGCCCGACCCCGACGCGGTGCAGATCATCACCGCGCACGCCGCCAAGGGCCTGGAGTGGGACGTCGTGGCGGTGCCCGGACTGGTCGACGGCGTCTTCCCGACCAACGCCGAGACCTCGAAGGGTCGCACCGACTCCGGCTGGCTCACGGGCCTCGGCGAGCTGCCCTACCCGCTGCGCGGCGACGCGGACGACCTGCCCGTCTTCCGCCTCGACGAGGCGACCGACACCAAGGACCTCGTCGCCCGCCGGGACGAGTTCGTCCTGGACTGCGGGGCCCACCAGCTCGCCGAGGAGCGCCGGCTCGCCTACGTCGCCTTCACCCGGGCCCGCCGCGAGCTCTTCTGCACCGCGCACCGGTGGGGGACGGGGTCCCGGCCGCGCCAGGTCTCGCCGTTCCTGGTCGAGCTCGCCGCCGAGGGCCTCGTCGACACCAGCGGCTGGCACGCGCTGCCCGACGCCACGGACGGCAACCCCCGGGACGACCTCGAGCGGTCCGGCGTGTGGCCGGCGCCGCGGGACACCGCAGGTCCGGAGGTCTCCCCGCGCGACGTCCTGCGTGCCACCGCCGCCCGCGTCACCGAGGCGGCCCGGCAGGGCGCGGTGCCGGACGACGGCGCGCTGCGCGACGACGCCGGGCACGACCTCGTCGAGCTGTCCCGGATCCTGCTCGCCGAGCAGGCCGAGCACGACGAGCCCACCGTCGAGATGCCCGCGCACGTCTCGGCCTCCGGGCTGGTGCGCCTGTCCCGCGACCGGGACGAGTTCGCGCGCCAGCTGCGCCGGCCGGTGCCTGCCGAACCCACGGTGCACGCCCGCCGCGGGACGCTGTTCCACGCCTGGGTCGAGCAGTTCTACTCCGCGGCCTCCCTCGTGGACGTCGACGACCTGCCCGGTGCCGACGAGCAGGACACCGCCACGGACCTCGCCCTGGACGAGCTGCGCCGACGCTTCGAGCAGACGCCCTGGGCGGCGCGGACCCCCGTCGCCGTCGAGCAGGACGTGGAGACGCCCATCGCCGGTGTCATGGTGCGCTCGCGCATGGACGCCGTCTTCGTCGATCCCGACGCACCGCCGCCGGCGCCCGGCGAGCCGCCCGCCGTCGTCGTCGTGGACTGGAAGACGGGACGCGAACCCACCGATCCCGCCGACCGCGCCCAGCGGGAGGTCCAGCTCGCCGCCTACCGGCTGGCGTGGTCGCGCTGGACGGGGCTGCCCGTGGAGAAGGTCGGCGCGGCGTTCGTCTACGTCACCTCCGGGACGACGGTGCGGCCCGCCGAGCTGCTCGACGAGGCCGGGCTGGAAGCCCTCGTCCGCGGCTCGTAGMTTSDAGRPRRDEELLLDDAAWSALPEQDRSTQLGFPALAGPDDEDAQPAAPRLSARDIAGLLGRPAPTDEQLAVIEAPLEPVLVVAGAGSGKTETMAARVVWLLANELVEPEEVLGLTFTRKAAGELSARVQSRLGQLARARGGSSSDLDLLARPTVATYHAYAASLVGDHGLRLGVEPGSRLLGEANQWQLAAEIVESWDGDLGTEKAVSTVVGAVLSLSGALGEHLRDVDEARAALEDVVERLENLPLGPRQRQRTKEVEALIGSVAERARLLDLVAEYRRRKRHTDSLDFGDQVAFAAELARTVPAVGAAERARYRVVLLDEYQDTSHAQVELLAGLFGGGHPVTAVGDPHQSIYGWRGASASGLSRFPDRFRHADGGTAAVRYLNTSWRNDAAVLQAANVASRPLREENGAGAVRVPPLDLRPGAGTGSVTAHVAATLEEEAEAVADFVAARWRRSSRPDDSDRVTAAVLCRVRSQFPALETALRRRGLPVEVVGLGGLLSTPEVVDVVALLEAVHDPSRGDSLLRLLTGPRVNLGAADLHALGSWAADLARRDAPRPSPSRTDAAAEGSEGIEGPEADDPTVVEGDVVDHRSLVDALDDLPEPGRAARDGRVLTPDGHARLAALSRLLRGLRSLTYLSLPELVVVAERALGLDVEVATAEILADGLVATGGATAAERVSRRGREHLDAFRDVAAGFAQSADVATLGAFLAWLGVADDQERGLDMPVREPDPDAVQIITAHAAKGLEWDVVAVPGLVDGVFPTNAETSKGRTDSGWLTGLGELPYPLRGDADDLPVFRLDEATDTKDLVARRDEFVLDCGAHQLAEERRLAYVAFTRARRELFCTAHRWGTGSRPRQVSPFLVELAAEGLVDTSGWHALPDATDGNPRDDLERSGVWPAPRDTAGPEVSPRDVLRATAARVTEAARQGAVPDDGALRDDAGHDLVELSRILLAEQAEHDEPTVEMPAHVSASGLVRLSRDRDEFARQLRRPVPAEPTVHARRGTLFHAWVEQFYSAASLVDVDDLPGADEQDTATDLALDELRRRFEQTPWAARTPVAVEQDVETPIAGVMVRSRMDAVFVDPDAPPPAPGEPPAVVVVDWKTGREPTDPADRAQREVQLAAYRLAWSRWTGLPVEKVGAAFVYVTSGTTVRPAELLDEAGLEALVRGSNANANANANA
AK018_050923333hypothetical proteinGTGCCGCCGGCCCCCGCGCAGGACGCCGGGGCCGGGGTGGTGCTGGACGAGACGCAGGAGGCCGCGGTCGCCGAGGCGCTCACGGCGCCCGCCTGCCTCGTCGTGGGCGCACCGGGCACGGGTCGGACGACGGTCGCGCGCGAGATCGCCGTGCGGGCGATCCGCGACGGACTGGACCCGGCCCGCGTCCTGGTGCTCGCCGCGACCCGGCGTTCGGCGGCACGCCTGCGCGACGAGGTGGCCGCCGGTGCGGACCGGACGATCGGGGCGCCGATGGTGCGCACCGCGGCGTCGGCGGCGTTCTCGGTGCTGCGCACCCGGGCCGGGGCGCTGGGCGAACCGGCGCCCACCCTGGTCTCGGGGCCCGAGCAGGACCTCGTGCTCGCCGAGCTCCTGGAGGGTCGGCTCGCGGGGGAGGGGACCCCGCTGCCGCTGCCCGACGGGCTGCCCGAGGAGTCGCTGGGCCTGCGCGGGCTGCGCCAGGAGCTGCGCGACCTGCTGATGCGGGCCGCCGAGCGGGGGCTCGCCCCCGCCGACCTCGCCGCGCTGGGCCGCCGCCACGAGCGGCCCGAGTGGGAGCTCGGGGCGCGCCTGTACGAGGAGTACCTGGACGTCATGGCGCTGCGCCTCGGCACCCCGGACGCCGGGGAGCGCTACGACCCGGCCGTCGTCGTCGACGAGGCGGCGCACGCGCTGGCCACCTGGCGCGACGAGCTCCCCGACACCCCCGCGCCGCGCTGGGACCTCGTCGTGGTCGACGACTACCAGGAAGCCACGGTGGCCACCGCGCGGCTGCTCGGCGTGCTGCACGACGACGGCGCCCGGCTCGCGCTCCTCGCCGACCCGGACGTCGCGGTGCAGGGCTTCCGTGGTGCCGTGCCCGGGCTGGTCGGCCGTGCCGCCGCGCGCCAGGGCGAGGTCGGGGCCTTCGACGCGCGCACCGTCGTCCTGGGGACCGCGTGGCGTCAGCCCGAGCGGCTGCGCGACGTCACCCGCGCGGTCACGTCCCGCGTCGCGACCGTCTCGGGCGCCCTGCACCGCGGCGCGGCCGCCCGGCCGGACGACGGCGACACCCGAGCGGAGGACGGCGCCGACCGGCCGGACGACGACGCACGGGCCGACGTCGCCGTGCTCGCCGGCGCCGCCCAGGAGGCCGCGTACATCGCCCGCGAGCTCCGGGCGGAGCACCTGCTGCACGGCACCCCCTGGGAGCGCATGGCCGTGGTGGCCCGCAGCGGCGACCGGCTCGCCTCCCTGCGGCGCGACCTCGTCGCGGCCTCGGTGCCGGTGGCCCTGCTCGGGTCGGACGTCCCGCTGCGCGACGAGCCCGCCGTCGTGCCGCTGCTCGCCGCCCTGCGGGTCTGCGCCGGACCGGGACCCCTGGACCGGATCCTGGCCGAGGGCTCCCCGGAACCGCCGCCCCTGCTCGACCCGGAGACCGCGGCGCTGCTGCTCACCTCACCGCTCGGCGGCCTGGACGTCGTCGCGCTGCGGAGGCTGCGCCGCGCGCTGCGGGCCGAGGAGCTCTCGGGCGGGGGCGGGCGATCGTCGGACGCGCTGCTGGTCGAGGTGCTCGGCGACCCGGACCGTGCGGCGACCCTGCCGGCCGTCGTGCGCCGCGGGCCCCTCGCCGTGGCACGGGTGCTCGCCGCGGGCCGGGACGCCGCCGCCGTCGAGGGGGCGACCGCCCAGACCGTGCTGTGGGCCGTGTGGGCCGCCACGGGCCTCGCGGACCGTTGGCGCGACCTGGCGCTCGCGGGCGGTCCGGCCGGTGTGCGGGCCGACCGGGACCTGGACGCCGCGCTCGCGCTGTTCCGCGCGGCCGAGACGTACGTCGAGCGCATGCCCGGGGCGCCGGTCGGGGCGTTCGTCGACTACCTCGCTTCTCAGGACCTCCCGGCCGACTCGCTCGCGGCCTCGGCGACCGGGACCCGGTCGGTCGAGGCGTTGACACCGGCCGGGGCCGCGGGGCGGGAGTGGGACGTAGTCGTGGTCGCCGGCGTCCAGGACGGTGTGTGGCCCGACCTGCGGCTGCGCGACTCCCTGCTCGGGTCGCAGGCGCTGGTGGAGCTGCTCGCCGGCCGGTCCGCGGACGCCCACGGCGTGGGCAAGGAGGCGCGGGCCCAGGTGCTCGCCGACGAGCTGCGCGCCTTCGCCGTCGCCACCTCGCGGGCCCGCCGCCGTCTGCTCGTCACGGCGGTCGAGGACGCCGAGGACAGCCCCTCGGTGTTCTGCGACCTCGTCGCCCCCCGCGGCGACGACGGCGAGGGTCCCGACCCGCGTCGCGTCGGCGTCGGCCCGCCGCTGGACCTGCGCGGGATCGTCGCGGCCGCGCGGGCGGAGCTGGTCCGGGCCGCCACGGCACGCCTCGCCGCGGGGGAGGTGCCTGACGCCGCCGACGTCCACGCGGGCACCGGTGCGGGCCCGGGTACCGACGGGGGCGCCGCTGACGCGGACACCGCCGCCGGGACGGCGGCCGCGCTGCTGGCCCGGCTGGCGGAGGCGGGGATCGCCGAGGCCGACCCGCGGACCTGGTACGGCGTCGCGCACGCCTCCAGCGACGCGCCCCTGTGGGGACCCGAGGACGAGGTGACCGTCTCGCCCTCCAAGGTCGACACGGTGGACTCCTGCGCGCTGCGCTGGGCCTTCGAGTCCGCGGGGGGAACCGCGCCCGACGCCACGCACCAGAGCCTCGGCACGCTGGTGCACAGCATCGCCGAGGAGCACCCCGCCGCGTCGCTGTCGGTGCTGCGCGCCGAGCTCGACCGCCGCTGGCCCGAGCTCGCGCTGCCCGAGGGATGGCCCACCCGCCAGCTCCGGCGCCGCGCCGAGGCCATGATCGAGCGGCTGGCGGCCTACACCGCCGAGCACGGTGAGCCGCTGCTCGTCGAGCCCGCGTTCGACCTGACGGTCGGCCGTGCGCGCTTGCGCGGCAAGATCGACCGGGTCGAGCCCGACGACGACGGCGTGGTCGTCGCCGACCTCAAGACCGGCCGGTCGATGCCCGCGCAGGCGAAGGCGGCGGAGAACCCGCAGCTCGGCGCGTACCAGCTCGCCGTCGAGTCCGGTGCCCTGGACCTCCCCGACGGCGTCCGCAGCGCGGGGGCGCGGCTCGTCTACGTCGCCAACGGCGCCCGCGGTGCCACCCTGCGCACCCAGCCGGCCCTGGAGGTCGAGTCCGACGGGTCGAGCTGGGCGCGTGCGCTCGTCGAGCAGGCGGCCGACACCATGGCCGCCTCGGCGTTCACCGCCCGGGAGAACGACCTGTGCACCATGTGCCCCGTGCGGCGCAGCTGCCCCGTGCAGACCGAGGGACGGAGCGTGGTCTCGTGAMPPAPAQDAGAGVVLDETQEAAVAEALTAPACLVVGAPGTGRTTVAREIAVRAIRDGLDPARVLVLAATRRSAARLRDEVAAGADRTIGAPMVRTAASAAFSVLRTRAGALGEPAPTLVSGPEQDLVLAELLEGRLAGEGTPLPLPDGLPEESLGLRGLRQELRDLLMRAAERGLAPADLAALGRRHERPEWELGARLYEEYLDVMALRLGTPDAGERYDPAVVVDEAAHALATWRDELPDTPAPRWDLVVVDDYQEATVATARLLGVLHDDGARLALLADPDVAVQGFRGAVPGLVGRAAARQGEVGAFDARTVVLGTAWRQPERLRDVTRAVTSRVATVSGALHRGAAARPDDGDTRAEDGADRPDDDARADVAVLAGAAQEAAYIARELRAEHLLHGTPWERMAVVARSGDRLASLRRDLVAASVPVALLGSDVPLRDEPAVVPLLAALRVCAGPGPLDRILAEGSPEPPPLLDPETAALLLTSPLGGLDVVALRRLRRALRAEELSGGGGRSSDALLVEVLGDPDRAATLPAVVRRGPLAVARVLAAGRDAAAVEGATAQTVLWAVWAATGLADRWRDLALAGGPAGVRADRDLDAALALFRAAETYVERMPGAPVGAFVDYLASQDLPADSLAASATGTRSVEALTPAGAAGREWDVVVVAGVQDGVWPDLRLRDSLLGSQALVELLAGRSADAHGVGKEARAQVLADELRAFAVATSRARRRLLVTAVEDAEDSPSVFCDLVAPRGDDGEGPDPRRVGVGPPLDLRGIVAAARAELVRAATARLAAGEVPDAADVHAGTGAGPGTDGGAADADTAAGTAAALLARLAEAGIAEADPRTWYGVAHASSDAPLWGPEDEVTVSPSKVDTVDSCALRWAFESAGGTAPDATHQSLGTLVHSIAEEHPAASLSVLRAELDRRWPELALPEGWPTRQLRRRAEAMIERLAAYTAEHGEPLLVEPAFDLTVGRARLRGKIDRVEPDDDGVVVADLKTGRSMPAQAKAAENPQLGAYQLAVESGALDLPDGVRSAGARLVYVANGARGATLRTQPALEVESDGSSWARALVEQAADTMAASAFTARENDLCTMCPVRRSCPVQTEGRSVVSNANANANANA
AK018_05093225hypothetical proteinGTGGAGATCACGATCGGTGTGCAGAACCTGAACCGCGAGCTGGTGGTGGAGACCGACCAGAAGCCCGAGGAGGTCGCCGAGGCGGTCCGCGCGGCGCTCGAGGGTGGCAAGCCCTTCGAGGTCAAGGACACCAAGGGGCGCCAGATCATCGTGCCGTCGTCCGTGCTCGGCTACGTGGAGATCGGCAGCGGCGAGCAGCGCCCGGTCGGGTTCGGCTCGCTCTGAMEITIGVQNLNRELVVETDQKPEEVAEAVRAALEGGKPFEVKDTKGRQIIVPSSVLGYVEIGSGEQRPVGFGSLNANANANANA
AK018_050941107tmpC_2COG1744Membrane lipoprotein TmpCGTGAAGAGTGCGATCAAGTTCACCGCCCTCGCCGGCGCGGCGGCACTGACTCTCGCGGCGTGCGGCGCGGCCCCGGAGGAGACCCCCACCGAGGAGACCACCGAGACGGAGATGGCGGAGAGCGAGTCCGTCGACTACCAGCCGTGCATCGTCTCCGACCAGGGCGGCTTCGACGACAAGAGCTTCAACCAGCTCAGCTACGAGGGCACCCAGCAGGCTGCCGAGGAGCTCGGCCAGGACGTCATCGACGTGCAGTCGCAGTCCGAGACCGACTTCCAGCCGAACCTGCAGTCGCTGGTCGACCAGAGCTGCGACGCGATCGTCTCGGTCGGGTTCGCCCTGTCGGCGGACACCATCGAGTCCGCGAACGCCAACCCCGAGATCGACTACTTCCTGGTCGACGACGCCGCGGACGCGGACTTCGACGGTCAGGCGGACGCCGACAACATCAAGCCGCTGCTGTACAACACGGCCGAGGCCGCGTTCCTCGCCGGCTACCTGTCGGCCGGCTACTCCGAGGCCGGCAAGGTCGGCACGTTCGGTGGTCAGCCGTTCCCGACCGTGACGATCTTCATGGACGGGTTCAAGCAGGGCGTCGAGTACTACAACGAGAACAACGACGCCGAGGTCGAGGTCATCGGCTACTCCGGCGGTGAGGACGGCTCGTTCACCGGCGGCTTCGAGGCCAACCAGACCGCCAAGACCACGGCGACGAACATCCTGGACCAGGGTGTCGACGTGATCCTGCCCGTCGGTGGTCCGATCTACCAGTCGGCGATCGCCGCCATCGAGGACTCCGGCCGCGACGTCGCCCTCGTCGGCGTCGACGCGGACTTCTACGAGACCGACCCGAGCACCCAGCCGTACGTGCTGACCTCCATCCTCAAGAAGATGGACGTCTCCACGCACGACGCGCTCATGACCGCGGCGACCGAGGAGTTCGACCCGGAGCCGTACATCGGCACCCTCGAGAACGAGGGCGTGGGCCTGGCCCCGCTGCACGAGTTCGAGGACGAGGTCGACCCCGAGCTGATGAGCGAGGTCGAGGACCTGCAGCAGCAGATCATCGACGGCGAGCTCGAGGTCACCTCCTACCTCGACGAGTGAMKSAIKFTALAGAAALTLAACGAAPEETPTEETTETEMAESESVDYQPCIVSDQGGFDDKSFNQLSYEGTQQAAEELGQDVIDVQSQSETDFQPNLQSLVDQSCDAIVSVGFALSADTIESANANPEIDYFLVDDAADADFDGQADADNIKPLLYNTAEAAFLAGYLSAGYSEAGKVGTFGGQPFPTVTIFMDGFKQGVEYYNENNDAEVEVIGYSGGEDGSFTGGFEANQTAKTTATNILDQGVDVILPVGGPIYQSAIAAIEDSGRDVALVGVDADFYETDPSTQPYVLTSILKKMDVSTHDALMTAATEEFDPEPYIGTLENEGVGLAPLHEFEDEVDPELMSEVEDLQQQIIDGELEVTSYLDEPGPT0021055_1758DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021055-bmpA-K07335NANA
AK018_050951179scmP_2COG1473N-acetylcysteine deacetylaseGTGAGCGCCGCGGCCCGGGCGCGCCTGGACGAGGTCGTCGCGACGCTGGAGGACGAGCTCGTGGCGGTGCGCCGCGACCTGCACGCCCACCCCGAGACGGCGCGCGAGGAGTTCCGGACGACGGCGGTGCTGGCCGACCGGCTGCGGGCGGCCGGGCTGCAGCCCCGGCTGCTGGAGGGCACCGGGCTGACGTGCGACATCGGTCCCGAGGTGCCGGGGCGGGGGCGGACGGCGGTGCGCGCCGACATCGACGCGCTGCCGCTGGACGACCTGTGCGGGTGCAACTTCGCCTCGACGGTGCCGGGCGTGGCGCACGCCTGCGGCCACGACGTGCACGCGGCCGTCGTCCTCGGGGCCGGCCTGGCGCTGGCCCGGCTCGCCGAGGAGGGGTTGCTGGAGTCCGGGGTCCGGCTGATCTTCCAGCCGGCCGAGGAGATCATGCCGGGCGGCGCCCACGACGTGCTCGCCCAGGGCGTGCTCGACGGCGTCGCGCGGATCGTGGCGGTGCACACCGAGCCGAAGCTCGACGTCGGGCAGCTCGGGACACGCATCGGCCCGATCACCTCCGCCTCGGACCTGGTCACGGTGACCCTGTCCTCGAGCGGCGGCCACACCTCCCGGCCGCACCTGACGGGCGACGTCGTCTACGCCCTCGGCCAGGTCATCACCCAGGTCCCGGCGGTCCTGGGGCGCCGGCTGGACCCTCGCTCCGGTGTCAACCTGACGTGGGGTGCGGTCGAGGCGGGCAACGCGCACAACGCCATCCCCGCCACCGGCGTGGCCAAGGGCACGCTGCGCTGCCTGGACGTGCGGGCGTGGGAGCGGGCCGGCCAGGTGCTGCTCGACGCCGTCGAGCAGGTCGTGGCCCCGTACGACGTCGAGGTGAGCGTGCACCACGTCCGGGGCGTCCCGCCGGTGGACAACGACGCCGACGTCACCGCGGCGCTCGAGGTGGCGGGTGCGTCCGTGCTCGGCGAGGACGGCGTCGTGCTCACCGAGCAGTCGCTCGGCGGGGAGGACTTCGCCTGGTACCTGACGAAGGTGCCCGGGGCGATGGCGCGGCTGGGCACGGCGATCCCGGGGGAGCATCGGTACGACATCCACCAGGGCGACCTCCGGGTCGACGAACGGGCGATCGCGATCGGTGCCCGTGTGCTGGCGCGCGTCGCTCTCGGATGAMSAAARARLDEVVATLEDELVAVRRDLHAHPETAREEFRTTAVLADRLRAAGLQPRLLEGTGLTCDIGPEVPGRGRTAVRADIDALPLDDLCGCNFASTVPGVAHACGHDVHAAVVLGAGLALARLAEEGLLESGVRLIFQPAEEIMPGGAHDVLAQGVLDGVARIVAVHTEPKLDVGQLGTRIGPITSASDLVTVTLSSSGGHTSRPHLTGDVVYALGQVITQVPAVLGRRLDPRSGVNLTWGAVEAGNAHNAIPATGVAKGTLRCLDVRAWERAGQVLLDAVEQVVAPYDVEVSVHHVRGVPPVDNDADVTAALEVAGASVLGEDGVVLTEQSLGGEDFAWYLTKVPGAMARLGTAIPGEHRYDIHQGDLRVDERAIAIGARVLARVALGPGPT0026300_361DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
AK018_050961119algA_2COG0662Alginate biosynthesis protein AlgAATGCCCTCTTCCGCCATCCCCGGATTCCGTGCCGTCATTCCCGCCGGAGGTTCCGGGACCCGGTTGTGGCCGGTGTCGCGGGCGGGTGCCCCCAAGTTCCTGCACGACCTCAGCGGTTCCGGGCGCAGCCTGCTCCAGGGCACCGCCGACCGTCTCGCACCGCTGGCGGGCCGCGACGGCATCGTCGTGGTCACGGGAACCCGGCACGCGGACGCCGTGCGCGACCAGCTGCCCGAGCTCGGTGCGGACCAGGTGCTGGCCGAACCGTCCCCCCGGGACTCCATGGCCGCGATCGGCCTGGCGGCGGCCGTCCTGGAACAGCGTCACGGGGTGGTCGTCCTCGGCTCCTTCGCCGCCGACCAGGTGATCTCGGGCACCCGGGAGTTCGAGCGGTCCGTCCGTGAGGCCGTGGCGGCCGCCCGGGCCGGCTACGTGACGACGGTGGGCATCGCCGCCTCGCGCCCGTCGACGGCGTTCGGGTACGTCCACGGCGCCGACCCGCTGGGGATCGCGGGAGCGCCCAGCGCCGTGCACGTCAGCGGATTCACCGAGAAGCCGGACGCCCAGACGGCGCGGGGGTACCTCGCCTCGGGCGAGTACCGCTGGAACGCGGGGATCTTCGTCGCCACGACGGACGTGCTGCTCGGTCACCTCGCCGAGCAGCGCCCGGCGCTGCACGACGGTCTGCGCCGCATCGCCGCCGCCTGGGACTCCCCCGACCGTGACCGGGTGCTGGCCGAGACGTGGCCCGGTCTGGAGAAGACCGCGATCGACCACGCCGTGGCGGAGCCGGTCGCGGCCGCCGGCGGGGTCGCGATGGTCCCCGGGCCGTTCGGGTGGGACGACGTGGGGGACTTCAACTCCCTGGCCGCCCTGCTGCCGGCCGACGACGACGCCGGTTCGAAGGTGCTCGGCGACAGCGCCGACGTGGTCCGCGTCCAGAGCGCGGGGTCCGTCGTGGTGCCCGCGAGCGGCCGGACCGTGACGCTGCTCGGGATCGACGACGTCGTGGTGGTCGACACCCCGGACGCCGTGCTGGTCACGACCCGCGCCCGCGCCCAGCAGGTGCGCAGCATGGTCGACGCCGTCCGCGCCCACGGGCGGGAGGACCTGCTGTGAMPSSAIPGFRAVIPAGGSGTRLWPVSRAGAPKFLHDLSGSGRSLLQGTADRLAPLAGRDGIVVVTGTRHADAVRDQLPELGADQVLAEPSPRDSMAAIGLAAAVLEQRHGVVVLGSFAADQVISGTREFERSVREAVAAARAGYVTTVGIAASRPSTAFGYVHGADPLGIAGAPSAVHVSGFTEKPDAQTARGYLASGEYRWNAGIFVATTDVLLGHLAEQRPALHDGLRRIAAAWDSPDRDRVLAETWPGLEKTAIDHAVAEPVAAAGGVAMVPGPFGWDDVGDFNSLAALLPADDDAGSKVLGDSADVVRVQSAGSVVVPASGRTVTLLGIDDVVVVDTPDAVLVTTRARAQQVRSMVDAVRAHGREDLLPGPT0022660_1039DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0022660-manC|cpsB-K00971NANA
AK018_05097381sdhC_2COG2009Succinate dehydrogenase 2 membrane subunit SdhCGTGCCGACTGCCCCCGCTGGCACGCTCTACCGCGGCCGTGAAGGTATGTGGTCCTGGGTCGCGCACCGCGTGACCGGCGTGTCGATCTTCTTCTTCCTGCTCGTGCACGTGCTCGACACGTCGCTCGTGCGTGTCTCGCCCGAGGCGTACAACGCCGTCATCGGCACGTACCAGACCCCGATCATGGGGCTGGGAGAGGCCGGCCTCGTGGCCGCGATCGTCTTCCACGCGTTCAACGGTCTGCGCATCGCACTCGTCGACTTCTGGTCGAAGGGCCCCCGCTACCAGCGCGTCATGCTCTGGGTCGTCCTCGGCCTGCTCGTCGTGACGATGGCCGGATTCCTGCCCCGCCACCTGATGAACGTGTTCGGAGCCCACTGAMPTAPAGTLYRGREGMWSWVAHRVTGVSIFFFLLVHVLDTSLVRVSPEAYNAVIGTYQTPIMGLGEAGLVAAIVFHAFNGLRIALVDFWSKGPRYQRVMLWVVLGLLVVTMAGFLPRHLMNVFGAHPGPT0001595_3211DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001595-sdhC|frdC-K00241NANA
AK018_05098453hypothetical proteinATGACTGCGCAGACCGACATCCCCACGCCCCGCTCCCCCTACGTGCGTCGCAAGACCACCCGGGGCAACTTCGAGCTGTACTCGTGGGTCTTCATGCGGGCCTCCGGCGTCGTCCTCGTGGTGCTGGTCTTCGGCCACCTCTTCGTCAACCTCATGGTCGGCGACGGCGTCAAGGCCATCGACTTCGCCTTCGTCGGCGGCAAGTGGTCGAGCCCGTTCTGGCAGATCTGGGACCTGCTGATGCTGTGGCTCGCCATGATCCACGGCACCAACGGCGTGCGGACGATCATCAACGACTACGCCCAGCGGGACCTCACCCGCGGCGTGCTCAAGAGCCTGCTGTACCTGGCGTTCACGATCACCGTGGTGCTCGGCACGCTGGTGATCTTCACCTTCGAGCCCTGCCCGCCCGGCGCCCCGGCCGAGCTGCTCGCCTCGATCTGCACGGCCTGAMTAQTDIPTPRSPYVRRKTTRGNFELYSWVFMRASGVVLVVLVFGHLFVNLMVGDGVKAIDFAFVGGKWSSPFWQIWDLLMLWLAMIHGTNGVRTIINDYAQRDLTRGVLKSLLYLAFTITVVLGTLVIFTFEPCPPGAPAELLASICTAPGPT0001590_278DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001590-sdhD|frdD-K00242NANA
AK018_050991836sdhA_2COG1053Succinate dehydrogenase flavoprotein subunitATGCAGACCCACCAGTACGACGTCGTCATCGTCGGCGCAGGCGGCGCCGGCATGCGCGCGGCGCTCGAGGCGTCGAAGGGCGCCCGCACCGCGGTCATCTCCAAGCTGTACCCCACGCGTTCCCACACCGGCGCCGCCCAGGGCGGCATGTGCGCCGCCCTGGCGAACGTCGAGGAGGACAACTGGGAGTGGCACACCTTCGACACCATCAAGGGTGGCGACTACCTCGTCGACCAGGACGCCGCGGAGGTGATGGCCAAGGAGGCCATCGACGCCGTGCTCGACCTGGAGCGGATGGGCCTGCCGTTCAACCGCACGCCGGAGGGGCGGATCGACCAGCGCCGCTTCGGCGGGCACACCCGCAACCACGGTGAGGCCGCCGTGCGCCGCGCCTGCTACGCCGCGGACCGCACCGGCCACATGATCCTGCAGACGCTGTACCAGAACTGCGTGAAGCAGGACGTCGAGTTCTACAACGAGTTCTACGTCCTGGACCTGCTCACCGACCACGACCTGACCACGGAGGACATCGAGGACGGCGCCGAGGTCAACGCCACCGGCGTGGTCGCCTACGACCTCGCCACCGGCGAGCTGCACGTCTTCCAGACCAAGGCGGTCGTGTTCGCCACCGGCGGCGCGGGCAAGATCTTCAAGACGACGTCGAACGCCCACACCCTCACCGGTGACGGCATGGCGCTGGCCTACCGCCGCGGCCTGCCGCTGGAGGACATGGAGTTCTTCCAGTTCCACCCGACGGGTCTGGCCGGCCTGGGCATCCTGCTGTCGGAGGCGGCCCGCGGCGAGGGCGGCATCCTGCGCAACGCCGACGGCGAACGGTTCATGGAGCGCTACGCACCGACGATCAAGGACCTGGCGCCCCGCGACATCGTCGCCCGGTCGATGGCCAACGAGGTCCGCGAGGGCCGCGGCGCCGGCCCGAACAAGGACTACGTCCTGCTCGACCTGACGCACCTCGAGCCGGCGCACATCGACGCCAAGCTGCCGGACATCACCGAGTTCGCCCGCACCTACCTCGGCATCGAGCCGTACACCGAGCCGGTGCCCGTCTACCCCACCGCGCACTACGCGATGGGCGGCGTGCCCACGAACATCAAGGGCGAGGTCCTCCGCGACGGCCACAACGTCGTCAAGGGGCTGTACGCCGCCGGCGAGGTCGCCTGCGTCTCCGTGCACGGGTCCAACCGCCTCGGCACGAACTCCCTGCTCGACATCAACGTCTTCGGCAAGCGCGCCGGCCGCTCGGCCGCCGCGTACGCGCAGACCGTCGAGCAGCACCTGCCGATCCTCGAGGGGCCGACGGCACGCGTCGAGGCGCAGCTGTCCGAGATGCGCGACCGCCCCGACGGCGAGCGCGTCGCCGACGTGCGCCAGGCGCTGCAGGAGACCATGGACGCCAACGCGCAGGTCTTCCGCACCGACGAGTCGCTGAACAAGGCCGCCGCCGACATCCGCGAGCTGCAGAAGCGGTACCGCAACGTGTCGGTCCAGGACAAGGGCTCGCTGTTCAACACGGACCTGCTGGAGGCGATCGAGCTGGGCTTCCTGCTCGACATCGCCGAGGTCACCGTCGTCGCCGCGCTCAACCGCCGCGAGTCCCGCGGCGGTCACTACCGCGAGGACTTCCCGGACCGGGACGACGACAACTACATGCTGCACACGATGGCGTACCGCCGTCCGACGTCGGCTCCCGACGCCGCCGACGGGCACGTCGCGGGCTACTTCGACCACGTCGAGGACTTCGGGGACTACAAGGTCGTCCTGGGGTCCAAGCCCGTCACCATGACGCGCTACGAGCCGATGGAGCGGAAGTACTGAMQTHQYDVVIVGAGGAGMRAALEASKGARTAVISKLYPTRSHTGAAQGGMCAALANVEEDNWEWHTFDTIKGGDYLVDQDAAEVMAKEAIDAVLDLERMGLPFNRTPEGRIDQRRFGGHTRNHGEAAVRRACYAADRTGHMILQTLYQNCVKQDVEFYNEFYVLDLLTDHDLTTEDIEDGAEVNATGVVAYDLATGELHVFQTKAVVFATGGAGKIFKTTSNAHTLTGDGMALAYRRGLPLEDMEFFQFHPTGLAGLGILLSEAARGEGGILRNADGERFMERYAPTIKDLAPRDIVARSMANEVREGRGAGPNKDYVLLDLTHLEPAHIDAKLPDITEFARTYLGIEPYTEPVPVYPTAHYAMGGVPTNIKGEVLRDGHNVVKGLYAAGEVACVSVHGSNRLGTNSLLDINVFGKRAGRSAAAYAQTVEQHLPILEGPTARVEAQLSEMRDRPDGERVADVRQALQETMDANAQVFRTDESLNKAAADIRELQKRYRNVSVQDKGSLFNTDLLEAIELGFLLDIAEVTVVAALNRRESRGGHYREDFPDRDDDNYMLHTMAYRRPTSAPDAADGHVAGYFDHVEDFGDYKVVLGSKPVTMTRYEPMERKYPGPT0001605_1658DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001605-sdhA|frdA-K00239NANA
AK018_05100774sdhB_2COG0479Succinate dehydrogenase iron-sulfur subunitATGACTGCTGTTCTCGAGAACTCGACCGACACCTCCGGCTCCGAGGCGCAGGCCGGCGCCGTGTCGTCCTTCCAGGTGACCCTGAGGATCCGCCGGTACAACCCGGAGGTCGCCGAGGAGGCCTGGTGGGAGGAGCACACGGTCACGGCCCACGGCACCGACCGTGTGCTGGACGCCCTGCACAAGATCAAGTGGGAGCTCGACGGCTCGCTGACGTTCCGGCGCTCCTGCGCCCACGGCGTGTGCGGCTCGGACGCGATGCGGATCAACGGCCGCAACCGCCTGGCCTGCAAGACGCTGCTCAAGGACGTCAACCCGGACAAGCCGATCACCGTCGAGGCCATCAAGGGCCTGCCGGTGCTCAAGGACCTCGTGGTCGACATGGAGCCGTTCTTCGCCTCCTACCGCGAGATCATGCCGTTCCTCATCACGTCCGGGAACGAGCCGAGCCGGGAGAACATCCAGTCCCAGGCCGACCGCGACCGGTTCGACGACACCACCAAGTGCATCCTGTGCGCCGCGTGCACGTCGTCCTGCCCGGTGTTCTGGACCGACGGCCAGTACTTCGGCCCGGCGGCGATCGTCAACGCGCACCGGTTCATCTTCGACTCCCGCGACCAGGGCGGCACCCAGCGCCTCGAGGTCCTCAACGACAAGGAGGGCGTGTGGCGCTGCCGCACGACCTTCAACTGCACCGAGGCCTGCCCGCGCGGCATCGAGGTCACCAAGGCGATCCAGGAGGTCAAGCGGGCGATGATCACCCGCGCCTTCTGAMTAVLENSTDTSGSEAQAGAVSSFQVTLRIRRYNPEVAEEAWWEEHTVTAHGTDRVLDALHKIKWELDGSLTFRRSCAHGVCGSDAMRINGRNRLACKTLLKDVNPDKPITVEAIKGLPVLKDLVVDMEPFFASYREIMPFLITSGNEPSRENIQSQADRDRFDDTTKCILCAACTSSCPVFWTDGQYFGPAAIVNAHRFIFDSRDQGGTQRLEVLNDKEGVWRCRTTFNCTEACPRGIEVTKAIQEVKRAMITRAFPGPT0001600_1769DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001600-sdhB|frdB-K00240NANA
AK018_051011020hypothetical proteinGTGTCGGAGCGCATCGATCGGTGGAAGGACCGGGCGACCCGCCTGGTCGGCTGGGTCAAGGACCGGCGTGAGGTCCGTGCCGTCCAGTGGTACATGGCCCGCCGCGGGAACCTGCTCTCCGGCGGGATCGCCTACTCGGCGATCTTCGCCATCGGTGCGAGCCTGACGATCGGGTTCTCCGTGTTCTCGGCGACCCTGGGCAGCCGGCCCGAGCTGATGGCGGCGGTGACCGACCAGATCGAGCTGTGGCTACCCGGCCTGATCGGTGACGGTGAGAACCAGCTGAACCCCGACGACCTGGTGGTCACCAACATCTGGAACGCGGCGACGCTCATCGCCACCGTGGTGCTGCTGTGGACGGCGATCAGCTTCATGGGTGCCCTGCGGCACTCGATCCGCTCGATGTTCGACGCCCCCGTGGTCGGGGTCAACCCGGTGATGGCCAAGGTCTGGCAGCTCGTCGGGTTCGTCGTCCTCGGGGCCATGATCGTCGTGACGGCCGCCGCCAGCATCGTGTCCCAGACGGTAGAGACCCAGCTCGAGAACTGGTTCGGAGACTCCCGGGCCCTCGGTGAGCTCCTCCGCTTCGGCAGCCTCGGGGTCGCCGTCGTGCTCGACGCCGTCGTGGTGTACCTGATCGTCCGGGTCGTCGGGCAGGTGCGTCCACGGCGCACCGGCGACCTCGTGATCGGGTGCCTCTTGGCAGGGCTGGCCTCGGGTGCCCTGCGCTACGCCGGGACGTCGCTGGTGACCTCGAGCGTGTCGAGCAACATCGTGCTCGGCTCGTTCGTCACCATCGGCACGATCCTGCTGCTGGCCAACTTCCTGTCCCGCATGCTGCTGATGGTCTGCGCCTGGATGTACGCCCCGCCGCGGATGGACGAGATCGCTCGCGCCGAGGCCGAGCTCGCGGCGATGCGGCACCAGGAGGAGGTCGACCGGCTGGTCGCTCAGGGCGCCGGCAGCGGCAAGCCGTACAGTCCGGTCGTCCGCGGCGTACGCCGCGGCATCTACTCCTGAMSERIDRWKDRATRLVGWVKDRREVRAVQWYMARRGNLLSGGIAYSAIFAIGASLTIGFSVFSATLGSRPELMAAVTDQIELWLPGLIGDGENQLNPDDLVVTNIWNAATLIATVVLLWTAISFMGALRHSIRSMFDAPVVGVNPVMAKVWQLVGFVVLGAMIVVTAAASIVSQTVETQLENWFGDSRALGELLRFGSLGVAVVLDAVVVYLIVRVVGQVRPRRTGDLVIGCLLAGLASGALRYAGTSLVTSSVSSNIVLGSFVTIGTILLLANFLSRMLLMVCAWMYAPPRMDEIARAEAELAAMRHQEEVDRLVAQGAGSGKPYSPVVRGVRRGIYSPGPT0014525_2653DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
AK018_05102564yjcG_2COG1514Putative phosphoesterase YjcGGTGAGGATCCCGGCACGAGGTCCTGACCAGCTCCGGATCGGTATCGCGATCGCGGTGCCGGATCCCTACGCCGCGCGCCTGCAGGAGGCCCGGGCGGAGTTCGACGACCCGCTGGCACGGGTGATCCCGCCGCACATCACTGTCATCGGACCGACGGTCGTGGACCGTGCCGACATGCCGTCGGTGGGGGAGCACCTCGGCAAGGTCGCGGACGAGATGCCGCCCTTCCGGGTCCACCTGCGCGGCACCGGGACGTTCCGCCCCGTCTCGCCGGTCGTCTTCGTCTCGCTCGCCGAGGGCATCGCCGAGTGCGAGCTGCTCGAGCAGCAGACCCGGTCCGGGGTGCTCGCCCAGGACCTGCGGTTCAACTACCACCCGCACGTCACGATCGCGCACGAGGTCCCCGACGACGCCCTCGACCGGGCCTTCACGGAGATGGCCGACTTCGAGGCCGTCTTCGACGTGTCGGCGATCTGGCAGTACGAGCACGGCGACGACGGCGTGTGGCGTCCGCAGCGGTCCTACGAGCTGCGCGGCGGGCGCGAGTACCTCCGGATGCGCTGAMRIPARGPDQLRIGIAIAVPDPYAARLQEARAEFDDPLARVIPPHITVIGPTVVDRADMPSVGEHLGKVADEMPPFRVHLRGTGTFRPVSPVVFVSLAEGIAECELLEQQTRSGVLAQDLRFNYHPHVTIAHEVPDDALDRAFTEMADFEAVFDVSAIWQYEHGDDGVWRPQRSYELRGGREYLRMRNANANANANA
AK018_051031065trpS_2COG0180Tryptophan--tRNA ligaseATGAAGACCATGTCCGACCTCCCCTCCGCACCGGGCGCGCAGTCCGGATCCCGTCCTCGCATCCTGTCCGGCATGCAGCCGACCGACTCGTCGCTGCACCTGGGCAACTACCTGGGTGCCCTGACGCAGTGGGTGGCCCTGCAGGACGACTACCAGGCGCTCTACTGCGTGGTGGACCTGCACGCGCTCACCGTCAACCCGGACCCCGCGGCGCTGCGGGAGCGGACCCGCGCGACGGCCGCGCAGTACCTGGCCGGCGGCGTCGACCCGGCCCGGTCGGCCCTGTTCGTGCAGTCGCACGTGCCGGAGCACACCGAGGTCGCGTGGCTGCTGAGCTGTCAGACGGGGTTCGGCGAGGCCAGCCGCATGACGCAGTTCAAGGACAAGTCGGCGCGGCAGGGGACCGAGGGGACCACGGTCGGGCTGTTCACCTATCCGGTGCTGATGGCGGCCGACATCCTCGTCTACGACGCCGCCCTCGTCCCGGTCGGCGAGGACCAGCGTCAGCACCTCGAGCTGACCCGGAACCTGGCCGAGCGCCTGAACGCCCGGTTCGGGGCGGGTACCGCCGTCGTGCCCGATGCCCACATCGTCACCGCCACCGCCAAGATCCAGGACCTGCAGAACCCGACAGCGAAGATGTCGAAGTCGAACGCGGGCGGCAAGGGGGTCATCTGGCTGCTGGAGAACCCGAAGAAGGCTGCCAAGGCGATCAAGTCGGCCGTCACCGACGCCGACGACTCCTACGCCGTCTACTTCGACCGCGAGGCCAAGCCCGGCATCTCCAACCTGCTGTCGATCTACTCCGCCGTCACCGGCCGCGGGGTCGACGACATCGCCGCCGAGTACGACGGCCGCGGCTACGGGTACCTCAAGGTCGACCTGGCCGACGCCGTCGTGGCCTTCCTCGAGCCGTTCCAGGAGCGGGCGAACACCTACCTGTCCGACCCCGCCGAGCTCGACAAGGTCCTCGACGACGGCGCCGCCCGGGCCCGGGAGATCGCCGGCGGCGTGCGCGACCGGCTCTTCGACCGCTTCGGCCTGCTGCCCCGGGGCCACCGGTGAMKTMSDLPSAPGAQSGSRPRILSGMQPTDSSLHLGNYLGALTQWVALQDDYQALYCVVDLHALTVNPDPAALRERTRATAAQYLAGGVDPARSALFVQSHVPEHTEVAWLLSCQTGFGEASRMTQFKDKSARQGTEGTTVGLFTYPVLMAADILVYDAALVPVGEDQRQHLELTRNLAERLNARFGAGTAVVPDAHIVTATAKIQDLQNPTAKMSKSNAGGKGVIWLLENPKKAAKAIKSAVTDADDSYAVYFDREAKPGISNLLSIYSAVTGRGVDDIAAEYDGRGYGYLKVDLADAVVAFLEPFQERANTYLSDPAELDKVLDDGAARAREIAGGVRDRLFDRFGLLPRGHRPGPT0007120_2643DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007120-trpS-K01867NANA
AK018_05104432tatB_2Sec-independent protein translocase protein TatBGTGGGAGTCTTCGGGATCAACGGGGGCGAGCTCGTCGTCATCATCGTGCTGGCGCTCGTGCTCATCGGGCCCGAGCGCCTGCCCCGCTACGCCGCACAGCTCGGCGGTCTGGTCCGCCAGGGCAAGGTGCTGCTGCGGGACGCCAAGAGCCGGGTCGACGACGAGCTCGGCGACGAGCTCCGCGACGTGGACTGGCAGAAGCTCGACCCGCGGCAGTACGACCCGCGGCGCATCGTCAAGGAAGCGCTGCTGGACGACGACCCGGCGCCGACGCGCACCGCCGCGAACCGCACCGCCCGCGCGGCCGGTACCGGGGCGGCCGGTGCCGCCGGTGCCGCCGGGTTCGCGGGTGCCGGGTCGGCCGCGGTGCCCGCAGCGCCGCACGGGCCGCCGTCGTCCGGTCCGGCTCCGTTCGACGACGAAGCCACGTAGMGVFGINGGELVVIIVLALVLIGPERLPRYAAQLGGLVRQGKVLLRDAKSRVDDELGDELRDVDWQKLDPRQYDPRRIVKEALLDDDPAPTRTAANRTARAAGTGAAGAAGAAGFAGAGSAAVPAAPHGPPSSGPAPFDDEATPGPT0014360_2480DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0014360-tatB-K03117NANA
AK018_051051335hypothetical proteinATGACACCCCAGGATCCCGACCTCTTCGCCTCCCCGGAGCCCCCGGCCCGCCGGCCCGACCCCGCACCGCCGGTGGCCGCGCACCCCGACCCCGCACCGCCGGTGGCCGCGCACCCCGCGCCCGCGACGTCGGCCCCGGCCGCGGACACCCCGCCGTCGGTGCCGCCGTCGGCGCCGCAGCCCGCGGGCACCCCGGCCGGGGGCGCACCGGCGTCCCGGCGGCCGGCCCGGCTCGGCGCCGGCCGCACGGCCGTGATCCTGGTCCTGGCGCTCGTGGTCGGCCTGGTCGGCGGCGTGCTCGGCGACCGGATCGCCGACGGCGCCCAGGACGAGGCCCCCGTCAGCGCCGACCTGCCGGTCAGCCCCGGGTCGCAGGACGACGGCGCCGACGACTCCCGCCCGGCGGGCTCGCACGCGGCCATCGCGGCCGAGGTGCTGCCGTCGGTGGTCTCGCTGGAGATCTCCGGTGCCGGGGGGCGCGGGTCCTCGGGCTCGGGCTTCGTGCTGCGCGAGGACGGCTACATCCTCACCAACGACCACGTGGTCACCGCCGGCGGAGGGGGCGGCGACGTGGTCGTCGTCCTCTCCGACGGCTCCGAGCACGCGGGCGAGGTCGTCGGGAGCACCCCCGACTACGACCTGGCCGTGGTCAAGATCGACGTCGACGGGCTGACGCCGCTCGTGCTGGGCGACTCGGACGACGTCGTGGTCGGGGACGCCGTGCTGGCCGTCGGCGCACCGCTGGGTCTCGACTCCACGGTCACCGCCGGGATCGTCAGCGCGCTGCACCGGCCCGTGCAGGCCGGGGACCAGGCGACGACCGCGTTCATCGACGCCATCCAGACCGACGCCGCGATCAACCCCGGCAACTCCGGCGGGCCGCTCGTCGACGCCGACGGCGAGGTCGTGGGCATCAACTCCGCGATCGCCCAGCCGCCCGGTGCCACGCAGGCCACCGGGAGCATCGGCCTCGGGTTCGCCATCCCGGCCAACCAGGCACGCACGACGGCGGAGCAGCTCATCGAGACCGGTCAGGCGACCTACCCCGTGATCGGCGTGCTGCTGGACACCTCCTACTCCGGGGAGGGCGTCCAGGTGTCGTCCGAGGCCCAGCAGGGCATCCCGCCCGTGACGCCGGACGGTCCGGCGGACCTGGCCGGGGTCCGCGCCGGGGACGTCATCCTGGCGATCGACGGCCGCCCGGTGTCCCGCAGCGACGAGCTCATCGTGGCGATCCGTGCGCGCCAGCCGGGTGACGCCGTCACCCTGCGCGTCCGCAGCGACGGCGAGGAGCGCGAGGTGCGCGTCGTGCTGCAGGAGCGGGCGAGCGAGTGAMTPQDPDLFASPEPPARRPDPAPPVAAHPDPAPPVAAHPAPATSAPAADTPPSVPPSAPQPAGTPAGGAPASRRPARLGAGRTAVILVLALVVGLVGGVLGDRIADGAQDEAPVSADLPVSPGSQDDGADDSRPAGSHAAIAAEVLPSVVSLEISGAGGRGSSGSGFVLREDGYILTNDHVVTAGGGGGDVVVVLSDGSEHAGEVVGSTPDYDLAVVKIDVDGLTPLVLGDSDDVVVGDAVLAVGAPLGLDSTVTAGIVSALHRPVQAGDQATTAFIDAIQTDAAINPGNSGGPLVDADGEVVGINSAIAQPPGATQATGSIGLGFAIPANQARTTAEQLIETGQATYPVIGVLLDTSYSGEGVQVSSEAQQGIPPVTPDGPADLAGVRAGDVILAIDGRPVSRSDELIVAIRARQPGDAVTLRVRSDGEEREVRVVLQERASEPGPT0021000_674DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021000-pepD-K08372NANA
AK018_05106894hypothetical proteinATGAGCGCCCATCTCGGCGACCGCGTCAGCGCGCTGGCCGACGGCCAGCTGCCGCCGGCCGATGCCGAGCGTGCTTTGGCGCACGTCGCGTGCTGCTCGCTGTGCGCCGCCGAGCTCGAGACGGCACGGTCCGCGCGCCGGCACCTCGCCGCCGCCGGGGACGTCACCCCGACGGCGGAGCTGACCCAGCGGCTCCTGGACCTCTCGGCCTCCATCCCGCCCGCCGACGGCGACCCCCTGCGGGCCCCCGACCGGGACACCGGGTGGGCCGCACCCGAGGCGTGGCACCCGCCCCTGACCGGCGACGTCCTGGGCGCGGAGCGACGACGGCGCCGCCGTCGGGTCGCGCTCGTGGGCGCCGGGGGAGCGGGTGTGCTGGGCTGTGCCCTGTTCGTGCTCGGCCAGGCACCCGTGGTCACCCCCGACACCTCGCGCGTCGCCGCCCTGACCACCCTGGCGGGGGCGGGCGGCACGTCCGGCGACACGGTGACCGAGGCCGGGCTCGGCCGTGCGGGGTTCGTGGCGCCGTCGTCGTTGCCGCCGGGGTACGAGGTGGTGGCCGTGCGCACCGGCCCGACGTCGTGCGAGATCGACCTGACCGGCCCCGACGGGCCCGTGGTCGTCCGCCAGGAGCAGGGCCGGCTGGCGGCGGGGACCGGGTCGACGGCGCGGACCGAGGTCGCCGGGCGCGGTGACGTCGTGGTGCTGTCCCAGGACCCCTGGCACGTCGCCTGGCAGGTCGGCGACGTCGTCGTGGAGGTCACGACGGACGCCCCCGACGACGTCCTGTCCGAGGTCGTCGCCGCTTTCCCCGTACGTGACTACGACGGGGGCGTCCTGCCCCAGATCACTCGTGGCTGGTCGACCGTGACAGGAGCTCTCACCCTTCCATGAMSAHLGDRVSALADGQLPPADAERALAHVACCSLCAAELETARSARRHLAAAGDVTPTAELTQRLLDLSASIPPADGDPLRAPDRDTGWAAPEAWHPPLTGDVLGAERRRRRRRVALVGAGGAGVLGCALFVLGQAPVVTPDTSRVAALTTLAGAGGTSGDTVTEAGLGRAGFVAPSSLPPGYEVVAVRTGPTSCEIDLTGPDGPVVVRQEQGRLAAGTGSTARTEVAGRGDVVVLSQDPWHVAWQVGDVVVEVTTDAPDDVLSEVVAAFPVRDYDGGVLPQITRGWSTVTGALTLPNANANANANA
AK018_05107555sigE_2COG1595ECF RNA polymerase sigma factor SigEATGACCAAGACCGTGGAGTCCGACACCGCCTCGTGGGTGCCCCCGACCTGGGACGAGATCGTCCGGGAGCACTCCGCGCGCGTGTACCGGCTCGCCTATCGTCTGACCGGTGACCGGCAGGACGCCGAGGACCTGACGCAGGAGACGTTCCTGCGGGTGTTCCGGTCGCTGTCCAGCTACACCCCCGGCACCTTCGAGGGCTGGCTGCACCGCATCACGACCAACCTCTTCCTGGACCAGGTCCGCCGCAAGAAGCGGATCCGCTTCGAGGCCATGGGCGAGGACGCCTCGCGGGTCCAGTCCACCGACGACCGCGGCCGGCCCGAGCGCGGCTTCGAGCACGGCAACCTCGACCACGACGTCCAGGCCGCCCTCGACGGCCTGCGACCCGAGTACCGCGCCGCCGTCGTCCTGTGCGACATCGAAGGTCTCAGCTACGAGGAGATCGCGGTCACCCTGGGCATCAAGATCGGCACGGTGCGCTCGCGGATCCACCGCGCGCGGGCCCAGCTGCGCGACGCGCTGGAGCACCGACGCGAGGACGTGCGGCGATGAMTKTVESDTASWVPPTWDEIVREHSARVYRLAYRLTGDRQDAEDLTQETFLRVFRSLSSYTPGTFEGWLHRITTNLFLDQVRRKKRIRFEAMGEDASRVQSTDDRGRPERGFEHGNLDHDVQAALDGLRPEYRAAVVLCDIEGLSYEEIAVTLGIKIGTVRSRIHRARAQLRDALEHRREDVRRPGPT0014960_3674DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_05108432COG4122Putative O-methyltransferaseATGCTGCCGGACGGTGTCCTGACCACCATCGACCCGGACGCGGCACGGCAGCGCGCCGCGAAGACGGCGTTCGCGGACGAGGAGGTGGCGTCCTCGCGCACGCGGGTGATCACCCGCCCGCCGCTGGACGTGCTGCCACGACTGACGGACGGCGCCTACGACCTGGTGCTGGTCGCGGTCGACCCCCTCGTGCTGGCCCCGCACGTCGAGGCGGCGGTCCGGCTGCTGCGCGAGGGGGGCGTGCTGGGGATCGTCGACCCGGCGCTCAGCGGGCGGGTCGCCGACCCGACACGGCTCGAGGCACCCACCGTGGCGGTCCGGGAGACGGCGCACGCCGTCCGCGCGGACGAACGCCTGGTGCCGGCGATGGTCCCGACCGGCGACGGGCTGCTGCTCGCGGTGCGCCGCGCACCGCGGCACCCGTCCGCCTGAMLPDGVLTTIDPDAARQRAAKTAFADEEVASSRTRVITRPPLDVLPRLTDGAYDLVLVAVDPLVLAPHVEAAVRLLREGGVLGIVDPALSGRVADPTRLEAPTVAVRETAHAVRADERLVPAMVPTGDGLLLAVRRAPRHPSANANANANANA
AK018_05109168hypothetical proteinATGGCTGCGATGAAGCCGCGGACGGGCGACGGGCCCCTCGAGGTCACCAAGGAGGGACGCGGCATCGTCATGCGTGTTCCGCTGGAGGGCGGTGGTCGGCTGGTCGTCGAGCTGAACGCGACCGAGGCCGGCGAGCTGGGCGAGGCCCTCCAGGGCGTCGTCGGCTGAMAAMKPRTGDGPLEVTKEGRGIVMRVPLEGGGRLVVELNATEAGELGEALQGVVGNANANANANA
AK018_05110933folP2_2COG0294Inactive dihydropteroate synthase 2GTGATCCCACCGGCGGGGGCGCCGCTCGTCCTGCGCGGCCGCGAGGTCGGCCGGGACGCCGACGGCGTGCTGCGCCCCGTGGTGATGGCGATCGTCAACCGCACCACCGACTCCTTCTACGCCCCGGCCCGGCTGGCCGACGACGGCGCGGCCCTGGACGCCGCCCACGCCGCCTGGGCCGACGGTGCCGCGATCCTCGACGTCGGTGGGGTGCGCGCGGGCACCGGGCCCGCGGTGAGCGAGTCCGAGGAGATCGAGCGCGTCGTGCCGTTCGTGGCGAAGGTCCGGGCCGAGCTGCCCGACCTGCTGCTCAGCGTCGACACGTGGCGCGCCGAGGTGGCCCGGGCCGCGATCGAGGCCGGTGCCGACCTCATCAACGACACCTGGGCCGGCCACGACCCGGGTCTCGTCGAGGTCGCCGGCGCCGCCGGGGTCGGCGTCGTCTGCTCCCACACCGGAGGAGCCCTGCCCCGCACGGACCCGTACCGCGTGTCCTACCCGACGCCGGAGGGAGCCGACGGCGGCGACCCGCGCGACGGCGTCACCCGCGACGTGCTCGCCACGCTGCGTGCGGCCGCCGACCGTGCCGTCGCCTGCGGCGTGCCGCCGTCGTCCGTGCTCGTCGACCCGACGCACGACTTCGGCAAGAACACCTGGCACTCGCTGCACCTGCTGCGCCGGACCGATGCGCTGACCGCCCTCGGGTACCCGGTGCTCATGGCGCTCAGCCGCAAGGACTTCGTCGGCGAGACCCTCGACCTGCCTCCCGACGACCGGCTGGCCGGCACCCTCGCGGCCACGGCGCTCGCCGCCTGGCACGGTGCCCGCGTGTTCCGCAGCCACGACGTCGCGGCCACGCGGCACGCCCTGGAGATGGTGGCGGCGGTCCGCGACGAGGCGCCTCCACGGGTCGCGCGTCGCGGCCTGGCCTGAMIPPAGAPLVLRGREVGRDADGVLRPVVMAIVNRTTDSFYAPARLADDGAALDAAHAAWADGAAILDVGGVRAGTGPAVSESEEIERVVPFVAKVRAELPDLLLSVDTWRAEVARAAIEAGADLINDTWAGHDPGLVEVAGAAGVGVVCSHTGGALPRTDPYRVSYPTPEGADGGDPRDGVTRDVLATLRAAADRAVACGVPPSSVLVDPTHDFGKNTWHSLHLLRRTDALTALGYPVLMALSRKDFVGETLDLPPDDRLAGTLAATALAAWHGARVFRSHDVAATRHALEMVAAVRDEAPPRVARRGLAPGPT0007915_929DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796NANA
AK018_05111780hypothetical proteinATGAGCGAACGTACCGACGACGGCGTCCCGGAGTCCGGCCGCGGATACCGCAAGGGACCGGTCCTGCTGCGGGGCACGCAGATCCCGGACTCGACCACGGACCAGCGGCTGCTGGCTCCGGGGGAGGGGACCGAGTGGGTCCACACCGACCCGTGGCGCGTGATGCGTATCCAGGCCGAGTTCGTCGAGGGGTTCGGGGCGCTGGCCGAGGTCGGACCGGCGGTCTCGGTGTTCGGCTCGGCACGCACCGCCCCGGACCACCCGGACTACGTGCTCGGTGAGCAGATCGGCAAGCTGCTCGTCTCCTCGGGGTACTCGGTGATCACCGGCGGGGGCCCCGGCATCATGGAGGCCGCCAACAAGGGCGCGGCCGAGGCCGGCGGCACGTCCATCGGGCTGGGGATCGAGCTGCCGTTCGAGCAGGGGATGAACCCGCACGTCAACCGGGGAGTGAGCTTCCGCTACTTCTTCGCCCGCAAGACGATGTTCGTCAAGTACGCCCAGGGGTTCGTCGTCCTGCCGGGTGGCTTCGGCACCTTCGACGAGCTCTTCGAGGCCCTCACGCTCGTCCAGACGCACAAGGTCACCGGCTTCCCCGTCGTGCTGGTCGGCAGCGACTACTGGGGCGGGCTGCTCGACTGGCTGCGCACCGCCGTCGTCGACCGCGGCATGATCAACCCGGCCGACCTGGACCTGCTGCACGTGACCGACACGGCCGAGGAGGCCGTCTCGCACGTCATCGAACGCGGGCGGGCGCTGGCCGCCGAGTTCCGCACGTGAMSERTDDGVPESGRGYRKGPVLLRGTQIPDSTTDQRLLAPGEGTEWVHTDPWRVMRIQAEFVEGFGALAEVGPAVSVFGSARTAPDHPDYVLGEQIGKLLVSSGYSVITGGGPGIMEAANKGAAEAGGTSIGLGIELPFEQGMNPHVNRGVSFRYFFARKTMFVKYAQGFVVLPGGFGTFDELFEALTLVQTHKVTGFPVVLVGSDYWGGLLDWLRTAVVDRGMINPADLDLLHVTDTAEEAVSHVIERGRALAAEFRTNANANANANA
AK018_051125097hypothetical proteinATGCGCAGCAGGACTTCTCACCGCTACGCCGCGAACGCGCCACGCAGAGGCCGGTTCTTCCGGCCTCTCGCCGCGCTGACAGCCACGACGCTCGCGCTGGGCTCCGTCGTCGCTCTCGGGACGAGCGCGGCCGCCGTCGGCAGCGACTTCGAGATCGACCGCAACCAGGTCAACAACGGCGGCTTCGACTGGGAAGATCTCGCTGTCGGTGACGACGGCTTCGAGGTCGTCCGCGACCCCATCGGGAACGACGACACCTCCACGTTCGGCGAGGGGACGAGCGAGAGCGACTATCCCGCCTGGTCCGAGGGATCGGACGGTAGCGCCTCGGGCAAGTCCGACATCGGCAACGTGCTGGTGTACTCCGACATCGAGGACGCCACGCTCGACCAGTGGCTCTTCCTCGCCTTCGACCGCGGCAGCGGGACGGGCACCGGCCGGTACTACATCGAGCTCAACCAGCTCGAGCAGAGCGGCATCGTCCCGACCCGCACGGGCGGCGACCTGCGCATCTCCATCGGGGACCGTGGCAACCAGGGGCTGGCCTGCCAGACGGTCGACGTGTGGAGCGGAGGTGCTTGGGCGACGGGGCCCGACTGCTCGGCATTCGAGGTCAGGGCCAACCTCTTACCGATCGCAGACTTCTTCGACTCCCCCAACGCCAACGACAACGGCAACATCCCCCCCAACCGGTTCGTCGAGCTGAAGCTCAACCTGACGGATCTCGGGATCGGCGGGCTCTGCCCCAGCAATGGTTTCGCCGGCCTGCAGATGCGGTCTCAGGAGGGCAACTTCTCCGGCGACACGAGTGCCCTCAAGGACTACGCCGTCGGAACGATCGACGTGCCGAGCCTGTGCTCGGACCTGACGATCCTCAAGGAGAGCGAGGACGGTGTCCCGCTGCCGGGGGCGACCTTCGAGATCAGCCCGAACCCGAGGGGAGAAGGCCCCGACCCGCTCGAGTTCACCACCGGCGAGGACGGCACGTACACCTTCGCGACGATCGGCGAGGACTTCTGGGGCACCGAGTTCACGGTCACCGAGACCGCCGCACCCGACGGCTACCTCCTGCCCGCCGACCGCGACCAGACGATCACCATCGACGCCGGTGAGTCGGCCTCGCTGACCTTCGTCGACCCGACGCCGTGGGAACCGTTGACGATCGACGTCGAAGGTTCGGCCGAGCAGTTCATCACGCGCACCTGGACCAACGACAAGCAGACCTCCGGTGAGGACTCGATCCTGCTGCCGGCCGACCAGACCTCGGTCGAGCTCGAGTACGTCATCGAGGTCACCGAGAGCGACGAAGAGGTCACCGCCGAGGACCGCAGCATCACCGTCGTGGTCGACAACCCCAACCCGGACGGCGTCGTCGGCACGCTCGAGGTCGCCATCGACGGCGAGGCGTGCACCGTCGAGGGAGCGACCGACGTCTCCGCGGCCCCTGGCCTGCAGGTCGACTTCGGCCCGGACATCACCGGCTTCGACGTCACGTGCCCGAACCCTCCGCTCGACGGCACGGTCCAGGCGACGGTGACCTGGGACCTGGGCGACTACCCCCAGACCCAGGACCACGTCGACGACCCCGAGAACGCCGGCGACGACACCGCCAGCGACTCGGTGGAGATCACCGCCGTGGTGACCGACGAGGGCGTGCAGTCCGTCGACGTCTACGACGACTTCACCAACCCCGACCTCGAGCCCGAGTACGTCGGGACCGTCACGGCCACCGGGAGCGAGAGCACCACCCAGTTCGACGTCACCCAGGTGATCGAGGTCGGCCCCGGCGAGTGCCTCGAGGTCACCAACGACGGCTACATCGTCGCCACCGACGCCGGCCCCGACGGCGACCGCATCGACACCGCCACCGAGGTCGTCGAGGTCTGCCGCGAGGCGCCCGCCGACCTGACCATCTACAAGGAGGACGAGGACGGCCAGCCGCTGCCCGGCGCCACCTTCACCATCAGCCCGAACCCGGTCGACCCGGCTGGCGACGACCCGCTGGAGTTCACCGTCGACGAGAACGGCGTGTACACCTTCTCCGACGTCGTCCACTTCGGCGAGTACACCGTCACCGAGACCATCGCCCCTGAGGGCTACCTGCTCCCCGCCGACCGCGACCAGACCGTCACCCTGGTCACCGGCGCCGACGAAGCCCTCACCTTCGTCGACCCGCTGATCTGGGAGCCGCTGACCGTGAACGTGGCGGCTTCGCAGTTCGTCACCCGGACCTGGGCGAACGACAAGGCGGTGGACGCCACCACGATCGACCTCCGCGCCGACGAGGAGTCGGCAACGATCAACTACACGATCGAGGTCGTCGAGGGCGACACGGTCCTGGACGACTCCGAGGACCCGTCGCGCACCGTGACCGTGACGGTCGACAACCCCAACGCGGGCACCGTCACCGGCACGCTCGACGTCGACCTCGACGGCACCGTGTGCACCCTCGAGGGCACCGACGCCGACGACCTGTCCTACGACTTCGTCTCCGGCGCGAACATCCTGCAGCTCGACTGCCCGAACCCGCCGCTGTTCGGCACCGTCACGGCGACCGTGACCTGGGACCTGGGCGACTACCCCCAGACCCAGGACCACGTCGACGACCCCGAGAACGCCGGCGACGACACCGCCACCGACACCCTCGACCTCGCCGAGGTCACCACCGACAACGGCGTGCAGTCCGTCGACGTGTGGGACGACTTCACCAACCCGGACACCGCGCCGGTCCTGGTGGACACCGTCGCGGCCACGGGCGCGGAGACGACCACCCTCGTGGAGTTCTCCGAGACCTTCGAGGTCGCCCAGGGCGAGTGCCTCGAGGTGGACAACACCGCCTTCCTCGTCGCGACCGACGCCGGCCCCGACGGCGACCGCCTCGACGAGTCCAGCGCCTCGGTGACGATCTGCCGCGACGCGCCCGCCGAGCTGGACATCGTCAAGGTCGGCGAGGACGAGACCCCGATCCCGGGGGTCACGTTCGAGGTGAGCCCGAACCCGCTGGGCGGCGCCGACGCCCTGGTCGTCGTGACCGGCGAGGACGGCACGTACACCATCGACCAGATCGCCGACTTCGGCGAGTACGACGTCACCGAGATCTCGGTCCCGGCCGAGTCCGGCTACCTCCTGCCGCCGCCGGGCGACCGTACCCAGACGGTCGAGCTCGTCGAGGGCGAGACCACCGAGGTCGAGTTCGTCGACCCGCTGGCCTGGGAGCCGTTGACGGTGGACGTCTCGGCCGATCAGTTCGTGACCCGCACGTGGACCGACGACAAGCAGACCTCCGGTGAGGACTCGATCCTGGTGCCGGCCGATCAGACCTCGGTCGAGCTCGAGTACGTCATCGAGGTCGTCGAGGGCGACACGGTCCTGGACGACTCCGAGGACCCGTCGCGCACCGTGACCGTGACGGTCGACAACCCCAACGCGGGCACCGTCACCGGCACGCTCGACGTCGGCCTCGACGGCACCGTGTGCACCCTCGAGGGCACCGACGCCGACGACCTGTCCTACGACTTCGTCTCCGGCGCGAACATCCTGCAGCTCGACTGCCCGAACCCGCCGCTGTTCGGCACCGTCACGGCGACCGTGACCTGGGACCTGGGCGACTACCCCCAGACCCAGGACCACGTCGACGACCCCGAGAACGCCGGCGACGACACCGCCACCGACACCCTCGACCTCGCCGAGGTCACCACCGACAACGGCGTGCAGTCCGTCGACGTCTACGACGACTTCACCAACCCCGACCTCGAGCCCGAGTACCTCGGGACCGTCACGGCCACCGGGAGCGAGAGCACCACCCAGTTCGACGTCACCCAGGTGATCGAGGTCGGCCCCGGCGAGTGCCTCGAGGTCACCAACGACGGCTACATCGTCGCCACCGACGCCGGCCCCGACGGCGACCGCATCGACACCGCCACCGAGGTCGTCGAGGTCTGCCGCGAGGCGCCCGCCGACCTGACCATCTACAAGGAGGACGAGGACGGCCAGCCGCTGCCCGGCGCCACCTTCACCATCAGCCCGAACCCGGTCGACCCGGCCGGCGACGACCCGCTGGAGTTCACCGTCGACGAGAACGGCGTGTACACCTTCTCCGACGTCGTCCACTTCGGCGAGTACACCGTCACCGAGACCATCGCCCCCGAGGGCTACCTGCTCCCCGCCGACCGCGACCAGACCGTCACCCTGGTCACCGGCGCCGACGAAGCCCTCACCTTCGTCGACCCGCTGATCTGGGAGCCGCTCGACATCGAGGTCCAGGGCGAAGGACAGCAGTTCGTCAGCCGGACCTTCGCCGTCGACAAGGAGCCGGGCACCGACCCGGTCACCCTGCCGGCCGACCAGGCCGAGACCCGGGTGGAGTTCACCGTCCAGGTCGTGGAGGGTCCCACCACGCTCGACGACGCCACGCTCGAGGCGGGCGCGACCGTGACCAACCCGAACGCCGGCGACGTCCTGGGAACCGTGGCCGCGGACTTCGAGGAGGTCGCGTGCACCGTCACGGACGGTGACGGAGCGGTGGTCGACGGGCCGTACCTGTTCGGAGGGTCCGAGGCGACGTCGTTCACGCTCACCTGTGAGAACGTGAACGACTTCGAGGGCACCCTCGCCGCGTCGGTCACCTGGGACCTCGGGGACCACCCGCAGACCCAGGAGCACGTCGACGACCCCGAGGGCGCCGGCGACGCCGTGGCCTCCGACGCGATCGAGATCGACCCGGGCGTGGTCGACGAGGGTCCGGCCTCGGTCGAGGTCTGGGACGACTGGGGCAACCCGGACTACGCGCCGGTGCTGCTCGGGACCGTCGAGGCCCAGGAGCCCGGCGCCGTCACCGAGTTCCCGGTCGGCACGACCGTGTCGGTCGAGCAGGGCCGCTGCGTGCTGGTCACCAACGAGGCCTACGTCCTCGACGGGGCCCGCGAGCTCGACCGCGACGGCGCGTCCGTCCAGGTCTGCCGCGACGTCCCGGTGACGCCGCCGCAGCCGCCGCTGCCGCAGACCGGCACGAACACGGCCCTGGCCGCGATCGGTGCGCTGCTGCTCATCGGTACCGGCGCCGGGATGATGTTCGTCCGTCGCCGCACCCGGGGCTGAMRSRTSHRYAANAPRRGRFFRPLAALTATTLALGSVVALGTSAAAVGSDFEIDRNQVNNGGFDWEDLAVGDDGFEVVRDPIGNDDTSTFGEGTSESDYPAWSEGSDGSASGKSDIGNVLVYSDIEDATLDQWLFLAFDRGSGTGTGRYYIELNQLEQSGIVPTRTGGDLRISIGDRGNQGLACQTVDVWSGGAWATGPDCSAFEVRANLLPIADFFDSPNANDNGNIPPNRFVELKLNLTDLGIGGLCPSNGFAGLQMRSQEGNFSGDTSALKDYAVGTIDVPSLCSDLTILKESEDGVPLPGATFEISPNPRGEGPDPLEFTTGEDGTYTFATIGEDFWGTEFTVTETAAPDGYLLPADRDQTITIDAGESASLTFVDPTPWEPLTIDVEGSAEQFITRTWTNDKQTSGEDSILLPADQTSVELEYVIEVTESDEEVTAEDRSITVVVDNPNPDGVVGTLEVAIDGEACTVEGATDVSAAPGLQVDFGPDITGFDVTCPNPPLDGTVQATVTWDLGDYPQTQDHVDDPENAGDDTASDSVEITAVVTDEGVQSVDVYDDFTNPDLEPEYVGTVTATGSESTTQFDVTQVIEVGPGECLEVTNDGYIVATDAGPDGDRIDTATEVVEVCREAPADLTIYKEDEDGQPLPGATFTISPNPVDPAGDDPLEFTVDENGVYTFSDVVHFGEYTVTETIAPEGYLLPADRDQTVTLVTGADEALTFVDPLIWEPLTVNVAASQFVTRTWANDKAVDATTIDLRADEESATINYTIEVVEGDTVLDDSEDPSRTVTVTVDNPNAGTVTGTLDVDLDGTVCTLEGTDADDLSYDFVSGANILQLDCPNPPLFGTVTATVTWDLGDYPQTQDHVDDPENAGDDTATDTLDLAEVTTDNGVQSVDVWDDFTNPDTAPVLVDTVAATGAETTTLVEFSETFEVAQGECLEVDNTAFLVATDAGPDGDRLDESSASVTICRDAPAELDIVKVGEDETPIPGVTFEVSPNPLGGADALVVVTGEDGTYTIDQIADFGEYDVTEISVPAESGYLLPPPGDRTQTVELVEGETTEVEFVDPLAWEPLTVDVSADQFVTRTWTDDKQTSGEDSILVPADQTSVELEYVIEVVEGDTVLDDSEDPSRTVTVTVDNPNAGTVTGTLDVGLDGTVCTLEGTDADDLSYDFVSGANILQLDCPNPPLFGTVTATVTWDLGDYPQTQDHVDDPENAGDDTATDTLDLAEVTTDNGVQSVDVYDDFTNPDLEPEYLGTVTATGSESTTQFDVTQVIEVGPGECLEVTNDGYIVATDAGPDGDRIDTATEVVEVCREAPADLTIYKEDEDGQPLPGATFTISPNPVDPAGDDPLEFTVDENGVYTFSDVVHFGEYTVTETIAPEGYLLPADRDQTVTLVTGADEALTFVDPLIWEPLDIEVQGEGQQFVSRTFAVDKEPGTDPVTLPADQAETRVEFTVQVVEGPTTLDDATLEAGATVTNPNAGDVLGTVAADFEEVACTVTDGDGAVVDGPYLFGGSEATSFTLTCENVNDFEGTLAASVTWDLGDHPQTQEHVDDPEGAGDAVASDAIEIDPGVVDEGPASVEVWDDWGNPDYAPVLLGTVEAQEPGAVTEFPVGTTVSVEQGRCVLVTNEAYVLDGARELDRDGASVQVCRDVPVTPPQPPLPQTGTNTALAAIGALLLIGTGAGMMFVRRRTRGNANANANANA
AK018_051131146dapE_6COG0624Putative succinyl-diaminopimelate desuccinylase DapEGTGACCGCAGCGCAGACACGACTTCCCGCGACCCTGACGGATCCCGCGACGCTCCCGAGCTCCGACCTCGTCGACCTGCTCGCCGCGATCTGCGACATCGAGTCCGTCTCGGGCGACGAGGCCGCACTCGCGGACGCCGTCGAGGCGCTGCTGGGCGACCAGCCGCACCTGGAGGTGCACCGTGACGGTGACGCCGTCGTCGCCCGCACGGCGCTCGGGCGCGACCGTCGGGTCGTGCTCGCCGGCCACCTCGACACGGTGCCGCTGACCGACCCGCCCAACCTGCCGACGCGGCTGGCCGGCGAGGGTGACGACCGCGAGCTCTGGGGCCGAGGGACCGTCGACATGAAGGCCGGGGTCGCCGTCATGCTGGCGCTGGCCGTGGAGCTCGGGCGTCCGGGCGCAGAGCCGGTGGCGGACCTGACCTACGTGTTCTACGACCACGAGGAGGTCGAGGAGTCCAAGAGCGGGCTCAAGCGGCTCGCGCGGCACCGCCCGGACCTGCTGGCCGGGGACTTCGCCGTCCTCGGGGAACCGACGTCCGCCGACATCGAGGGAGGCTGTCAGGGCACGATCCGGGTCGACGTGACCACCCGCGGCGTGGCGGCCCACTCGGCGCGGTCCTGGCGGGGCGAGAACGCCATCCACGGGGCCGCCCCGATCCTGACTCTCCTGGCCGGCTACGAGGCCGCGCAGGTCGAGGTCGACGGGCTGCTGTACCGCGAGGGCCTCAACGCCGTGGGCATCCGCGGCGGCATCGCCGGCAACGTCGTGCCCGACGCCTGCGCCGTGACGGTCAACTACCGCTTCGCGCCGTCGCGCACGCTGGCGGAGGCCGAGGAGCACCTGCGCGAGCTGTTCGACGGCTACGAGGTCGTCGTCACCGACGCCTCGCCGGCCGCCCGCCCGGGCCTGGACGACCCGCTCGCCGCCGAGTTCGTCGCCGCCGTCCTGGACCGGACCGGGGGAGCGCCGAAGCCCAAGTACGGCTGGACGGACGTGGCGCGCTTCGCCGAGCTCGGGATCCCCGCGGTGAACTTCGGCCCCGGCGACGCGCTCCTGGCCCACGCCGACGACGAGCGCGTGCGGGTCGCCGAGCTCGCCGTCTGCCGGGACGCCCTGCGGGCCTGGCTCGTGGGCGCGTAGMTAAQTRLPATLTDPATLPSSDLVDLLAAICDIESVSGDEAALADAVEALLGDQPHLEVHRDGDAVVARTALGRDRRVVLAGHLDTVPLTDPPNLPTRLAGEGDDRELWGRGTVDMKAGVAVMLALAVELGRPGAEPVADLTYVFYDHEEVEESKSGLKRLARHRPDLLAGDFAVLGEPTSADIEGGCQGTIRVDVTTRGVAAHSARSWRGENAIHGAAPILTLLAGYEAAQVEVDGLLYREGLNAVGIRGGIAGNVVPDACAVTVNYRFAPSRTLAEAEEHLRELFDGYEVVVTDASPAARPGLDDPLAAEFVAAVLDRTGGAPKPKYGWTDVARFAELGIPAVNFGPGDALLAHADDERVRVAELAVCRDALRAWLVGANANANANANA
AK018_05114969dapD_2COG21712,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-succinyltransferaseATGACGACGCCCAGCACCTCTCCCCGCACCGCCTGGGGCCTCGGCCTCGCCACGGTCGCCGACGACGGCAGCACGCTCGACGTCTGGTACCCGTCGCCCGCGCTCGGCACGGCCCCGGACGACGTCGACGTCCCCGTCGACCTCGCCGCGCTCACGCGCCGTGACGACGCCCGCCGCGTCGACGTCTCGGTGGTGCGCACCGAGATCGACCTGGACGCGCCGCCGGCGGACACCGCGGACGCCTACCTGCGCCTGCACCTGATCTCCGCGCGGCTCGTCCAGCCGCACGGGCTGAACGTCGAGGGCATCTTCGGCAAGCTGACCAACGTCGTGTGGACGTCGCGCGGTCCCTGTGCGGTCGCCGACTTCGAGATGACGCGCCTGCGGCTGCGGGCCGCGGCGGACGCCCCGGTCACGGTCTACGGCGTGGACAAGTTCCCCCGCATGGTCGACTACGTGGTGCCGACCGGCGTGCGCATCGCCGACGCCGACCGCGTCCGCCTCGGCGCGCACCTGTCCGAGGGGACGACGGTGATGCACGAGGGCTTCGTGAACTTCAACGCCGGCACCCTGGGGTCCTCCATGGTCGAGGGCCGCATCTCGGCGGGCGTCGTCGTGGGCGACGGGTCCGACGTCGGCGGCGGCGCCTCGATCATGGGCACGCTGTCCGGCGGGGGCAAGGAGGTCATCTCCCTCGGCGAGCGCTGCCTGCTCGGCGCCAACGCCGGTCTCGGCATCGCGCTCGGCGACGACTGCGTGGTCGAGGCCGGTCTGTACGTGACCGCCGGGACCAAGGTGACGGTCCTGGACGAGATGGGCGACGAGGGCGAGCCGCGCGTGGTCAAGGCCCGCGACCTGTCCGGCCGCGACGGTCTGCTCCTGCGCCGCAACTCGCGCACGGGCGCCGTGGAGGCGCTCACGCGCCAGGGTGTCGGCGTCGAGCTGAACGCCGCGCTGCACGCCAACTGAMTTPSTSPRTAWGLGLATVADDGSTLDVWYPSPALGTAPDDVDVPVDLAALTRRDDARRVDVSVVRTEIDLDAPPADTADAYLRLHLISARLVQPHGLNVEGIFGKLTNVVWTSRGPCAVADFEMTRLRLRAAADAPVTVYGVDKFPRMVDYVVPTGVRIADADRVRLGAHLSEGTTVMHEGFVNFNAGTLGSSMVEGRISAGVVVGDGSDVGGGASIMGTLSGGGKEVISLGERCLLGANAGLGIALGDDCVVEAGLYVTAGTKVTVLDEMGDEGEPRVVKARDLSGRDGLLLRRNSRTGAVEALTRQGVGVELNAALHANNANANANANA
AK018_05115894hypothetical proteinATGGCCGCACGACGGCACTCGGCCGCGCGGTCGGCCGGCGCCGTCGGGGCGGTGCTCACCGTCGGCCTCGCGGCCGTCCTCGGTGTGCTGCTCCTGCTGTGGGCCCGCGACGACGGTCCCCGCGCCGCCGAGCGGTGCACCGCCCGCCTCGACGGCACGGACTGGCCGCTCACGACCGAGCAGGCGGAGAACTCCGCCCTGGTCGTCGGCTCGACGATCCGTCGGGGCCTGCCCGCGCGGGCGGCGACCATCGGCGTGGCCACGGCGCTGCAGGAGTCTCGGCTGGTCAACATCGACTACGGCGACCGGGACTCGCTGGGCCTGTTCCAGCAGCGCCCCTCGCAGGGCTGGGGCACCCCGGAGCAGATCATGGACCCGGTGTACTCCACGAACGCCTTCTACGACGGTCTCGTCGAGGTCGAGGGCTGGCAGGACGCCGAGGTCACGGTCGCCGCGCAGGCGGTGCAGCGGTCGGCCTTCCCCGACGCGTACGCCCAGCACGAGACCCGCGCGCGGGCCTGGGCGTCGTCGTTGACGGGCCACTCCCCCGGATCGGTCACCTGCGACGTGCCGCCGGCGGACCCGCAGGCCTCTCACGTCGCCGTGGCCGAGCGTGTCGACCGCGACCTCGGGCTCGGCGGCCGGGCGGTCCGCGGCGACGGCGCGACGACGAGGATCGACGCGACGGCGCTGCGCTACGACGACACGACCCGGTCGACCTGGGCCGTGGCCCACTGGGCGGTCGCGACGGCCCAGGCCACCGGAGCCGTCGAGGTCCGGGCCGACGGCCGGGTCTGGACCCGCGAGTCCGCCGCCTGGACGGCCCTCGGCCCCGACGAGAACGGCCCGCGCGACGGCGTCGTCCGCGTCCGGGTCGTCGAACCCACCGCCTGAMAARRHSAARSAGAVGAVLTVGLAAVLGVLLLLWARDDGPRAAERCTARLDGTDWPLTTEQAENSALVVGSTIRRGLPARAATIGVATALQESRLVNIDYGDRDSLGLFQQRPSQGWGTPEQIMDPVYSTNAFYDGLVEVEGWQDAEVTVAAQAVQRSAFPDAYAQHETRARAWASSLTGHSPGSVTCDVPPADPQASHVAVAERVDRDLGLGGRAVRGDGATTRIDATALRYDDTTRSTWAVAHWAVATAQATGAVEVRADGRVWTRESAAWTALGPDENGPRDGVVRVRVVEPTANANANANANA
AK018_051161302gltA2_2COG0372Citrate synthase 1ATGACGTCCACCCAGCAGACCGCCACGGTCGAGCTCAGCGTCGACGGCACGAGCCGAGAACTGCCCGTGGTGCCGGCGACGGAAGGCAACGACGGCATCGTCGTGTCCTCCTTGCTCAAGGACACCGGCATGGTGACCGTCGACCCCGGGTTCACCAACACCGCCTCCTGCGAGTCCGCGATCACCTACATCGACGGCGGCCAGGGCATCCTGCGCTACCGCGGCTACCCGATCGAGCAGCTCGCCGACTCCTCGTCGTTCCTCGAGGTCTCGTACCTGCTCATCCACGGCGAGCTGCCGACCCCCGCCGAGCTCGAGGCGTTCACCGAGCGGATCAACCGGCACACCCTCGTGCCCGAGGCGTTCCGCACCTTCCTCGGCACCTTCCCGCGCGGCGGCCACCCGATGGCGATCATGGCCTCGGCGGTCAACGCGCTGGCGACCTACTACCCGGAGTCGCTCGACCCGCACGACGACGAGGCGGTCGAGCTCGCGACGGTGCTGATCCTCGCCAAGATCCGCACCATCACCTCCTACGTGCACCGGTCCATGCGCGACGAGCCGCTGCTCTACCCGGACGCGGCGCGCGGCTACGTCGACGACTTCCTGCGCATGACCTTCGCCCGCCCCTACGAGGAGTGGCAGGCCAACCCCACGCTCGTCTCGGCGATGGACAAGCTGCTCATCCTGCACGCCGACCACGAGCAGAACTGCTCCACGTCGACCGTCCGCGTCGTCGGCTCGTCCAACGCGACCCTGTACGCGTCGGTGTCGGCCGGCATCAACGCCCTGTCCGGCCCCTCGCACGGCGGTGCCAACGAGGCCGTGCTGCTCATGCTGGAGAACATCCGCTCCGGCGAGGACTCCGTCGAGACCTTCATGAAGAAGGTCAAGAACAAGGAGGACGGCGTCCGGCTCATGGGCTTCGGCCACCGGGTCTACAAGAGCTACGACCCGCGCGCCGCCATCGTCAAGAAGCACGCCGACGCCGTGCTCGACGAGCTGGGTGCCAAGGACGAGCTGCTCGACATCGCTCGGGGCCTCGAGGACATCGCGCTCAACGACGACTACTTCGTCGAGCGCAAGCTCTACCCGAACGTCGACTTCTACACGGGCCTCATCTACAAGGCCATGGGCTTCTCGCCGGCCATGTTCACCCCGCTGTTCGCGATGGGCCGGATGCCCGGCTGGATCGCCCAGTGGCGCGAGATGATGAAGGACCCGCAGACGAAGATCGGCCGTCCGCGGCAGATCTACACCGGGCCGACCGAGCGGGACTACGTGGCGCTCGACCAGCGCTGAMTSTQQTATVELSVDGTSRELPVVPATEGNDGIVVSSLLKDTGMVTVDPGFTNTASCESAITYIDGGQGILRYRGYPIEQLADSSSFLEVSYLLIHGELPTPAELEAFTERINRHTLVPEAFRTFLGTFPRGGHPMAIMASAVNALATYYPESLDPHDDEAVELATVLILAKIRTITSYVHRSMRDEPLLYPDAARGYVDDFLRMTFARPYEEWQANPTLVSAMDKLLILHADHEQNCSTSTVRVVGSSNATLYASVSAGINALSGPSHGGANEAVLLMLENIRSGEDSVETFMKKVKNKEDGVRLMGFGHRVYKSYDPRAAIVKKHADAVLDELGAKDELLDIARGLEDIALNDDYFVERKLYPNVDFYTGLIYKAMGFSPAMFTPLFAMGRMPGWIAQWREMMKDPQTKIGRPRQIYTGPTERDYVALDQRPGPT0001455_2062DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001455-CS|gltA-K01647NANA
AK018_051171146dapL_2COG0436LL-diaminopimelate aminotransferaseATGGGTTTCGCCGACCTGCGCGACCTGCCCTACCCCTGGGACACCCTCGGTGACGTCCGTGCGACGGCCGCGGCGCACCCCGGCGGGATGGTGGACCTGTCCGTCGGGACGCCCGTCGACCCCACCCCGCGGGTCGTCCAGGACGCGCTGACGGCCGCCGCCGACGCTCCGGGCTACCCGACGACGCACGGCACCGCCGCGCTGCGCGAGACGGTCGTGGACTGGTTCGCGCGGCGCCGCGGCGTGCCGGGTCTCGACCCGGACGGCGTCATGCCGACGGTCGGGTCCAAGGAGCTGGTCGGGCTGCTGCCCTCCCTGCTGCGGCTCGGCCCCGGCGACGTCGTCGTCCACCCCGAGATCGCGTACCCCACCTACGACGTGGGGGCGCGGCTCGCGGGAGCCACCGCGCTGCCGGCCGACGACGTCGCCACCTGGGCCGGGCGCGAGGACGTCCGTCTGGTGTGGGTCAACTCGCCGTCCAACCCCACCGGTGCGGTGGCCGACGTCGAGCACCTGCGCGCCGTGGTGGCCGCGGCGCGCGAGACCGGCGCCGTCGTGGTGTCCGACGAGTGCTACGCCGAGCTCGCCTGGGACGAGCCGTGGGCCGGCGCGGACGGGGTCGGCCGGGTGCCGAGCCTGCTCGACCCGCGGGTCACGGACGGGTCGCTCGACGGCCTGCTCGTCGCCTACTCGGTCTCCAAGCAGTCGAACCTCGCCGGGTACCGGGCCGCCTTCGTCGCCGGGGACCCGCGGCTGGTCGCCGACCTGGTCGCCACCCGCAAGCACCTCGGGATGATCATGCCCGCGCCGGTGCAGGCCGCGCTCCGGGTCGCCCTGTCCGACGACGCCCACGTGGACGCCCAGCGCGAGCGGTACCGCCGGCGTCGGGACGCCCTGCTGCCGGCGCTGCACCAGGGCGGTCTCGCCGTCGACCACTCCGCAGCCGGTCTGTACCTGTGGACGCGTCCGGCCGACGCGGCGGACGTCGCGACGTCGCGGGACCTGGCCCGACGGTTCGCGCAGCTCGGCATCCTGGTCGGTCCCGGCGAGTTCTACGGGGCGGCCGGCGCGTCGCACGTGCGCGTGGCCTTGACCGCGTCGGACCAGGCCGTGACCGATGCTGTGGCACGAATCACATCGTCTTGAMGFADLRDLPYPWDTLGDVRATAAAHPGGMVDLSVGTPVDPTPRVVQDALTAAADAPGYPTTHGTAALRETVVDWFARRRGVPGLDPDGVMPTVGSKELVGLLPSLLRLGPGDVVVHPEIAYPTYDVGARLAGATALPADDVATWAGREDVRLVWVNSPSNPTGAVADVEHLRAVVAAARETGAVVVSDECYAELAWDEPWAGADGVGRVPSLLDPRVTDGSLDGLLVAYSVSKQSNLAGYRAAFVAGDPRLVADLVATRKHLGMIMPAPVQAALRVALSDDAHVDAQRERYRRRRDALLPALHQGGLAVDHSAAGLYLWTRPADAADVATSRDLARRFAQLGILVGPGEFYGAAGASHVRVALTASDQAVTDAVARITSSPGPT0010335_2DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-TYPE_II_POLYKETIDE-OXY-|CHLOR-|TETRACYCLINE_METABOLISM,PGPT0010335-oxyQ-K14254NANA
AK018_05118318COG1146FerredoxinGTGACCTACGTGATCGCTCAGCCGTGCGTCGACCTCAAGGACAAGGCGTGCATCGAGGAGTGTCCCGTGGACTGCATCTACGAGGGGTCGCGCTCGCTGTACATCCACCCGGACGAGTGCGTCGACTGCGGCGCCTGCGAGCCGGTGTGCCCGGTCGAGGCCATCTACTACGAGGACGACGTCCCCGAGGAGTGGACCGACTACTACCGGGCGAACGTCGAGTTCTTCGACGACATCGGCTCCCCGGGCGGCGCGGCCAAGATGGGCGTCATCGAGAAGGACGACCCGATGATCGCCGCCCTGCCCCCGCAGGGCTGAMTYVIAQPCVDLKDKACIEECPVDCIYEGSRSLYIHPDECVDCGACEPVCPVEAIYYEDDVPEEWTDYYRANVEFFDDIGSPGGAAKMGVIEKDDPMIAALPPQGPGPT0030810_836PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0030810-fdxA-K05524
AK018_05119300hypothetical proteinGTGAGAATCTCGCACGCCGCCGGCGGATCGTCCGCCTGGCGAGACTGGACGGCCGGGACCCGGGTCGTCGTGCGGCGTCGGCTCTCCGTCGAGGAGGCCCGGCGCAGCGGGAAACGGTCCACGGACGTCATCGGCCTGGTGGTGACGTCCGACACGTCGGGGGTCACGCTCCGTCGCGACCCCGCGCGTCCGTCGGCGCCGGGTGCGGGGACCGAGGTCCGCATCGAGGCCGAGGAGATCGAGGCCACGCGGGTGCTGCCGCCACGGCCCGAGCGCCGACCTCCCCGCGCCGGCGACTGAMRISHAAGGSSAWRDWTAGTRVVVRRRLSVEEARRSGKRSTDVIGLVVTSDTSGVTLRRDPARPSAPGAGTEVRIEAEEIEATRVLPPRPERRPPRAGDNANANANANA
AK018_051201014tyrACOG0287Prephenate dehydrogenaseGTGGTGACCGGGACGCGGACGCCGCCGCACGGCCGGGTCGCCGTCGTCGGGCTGGGCCTGATCGGCGGGTCCCTGGCGCGCCTGCTCGCGGCGCGCGGGGCGGACGTCGTGGCGACCGACGCCTCCCCGTCCGCGCGTGCGGCGGCCCGGCGGGCCGGGCTGACCGTGACGGACGACGTCGCGGCCTGCGTCGACGCCGTCGACCTCGTGGTGCTGGCCGTGCCGCTGCGGGCGATGACGACGGTGGCCGAGCACGTGGCCGCGCACGCACCGGCGACGGCGACCGTCACGGACGTCGGCAGCGTCAAGAGCCCCGTGCGGGCCGCGGTCGCCGCGGCCGGCCTCGCCGGGCGGTACGTCGGCGCGCACCCCATGGCCGGGACCGAGCACAGCGGGTTCGACGCCTCCGACGTCGGGCTGCTCGACGGCGTGGTGTGGGCGGTGACCGTGGACGACGCCGCGGTGGTCGACCCGGACCGGGTCGCCACGGTGCTCGCGTGGGTCACGGGGGCGTGCGCGGGCCGCGCGGTGGTGCTCACCGACGACGTGCACGACGAGGCGGCCGCCCTGGTCAGCCACGTCCCGCACGTCGTGGCGACCCAGCTCCTCAACGCGGTGGCCGGCGCACCGGTCGGGCCGGTGGCGCGTCTGCTGGCGGCGGGCAGCTTCCGGGACGGGACGCGGGTCGCCCTGACGGACCCGGCCCGCACCGAGGCGATGGTGACCGAGAACGCGGCCTGGGTGGCGCCCGCGCTGCGCAAGGTGGTGCGCGACCTCGAGGTGGTGGTGCACCGGCTGGAGTCGAACGCCTCGGTGCACGACTTCTTCCACGCCGCGGACGAGCTGCGCGTCGAGCGTCGTGCCGCAGCCGGTTCCACGGCCCCCGCGCCGGGGGACTCCGAGACGCTGGCCCGGGGCGCGGGGTGGCCCGCCCTGCTCGTGGAGCGGTGCACCGGCGGCGCCGTCGTGACCGGTCTGGACGGGCGGGCGATCCACCTGACGCCGTCGGCCTGAMVTGTRTPPHGRVAVVGLGLIGGSLARLLAARGADVVATDASPSARAAARRAGLTVTDDVAACVDAVDLVVLAVPLRAMTTVAEHVAAHAPATATVTDVGSVKSPVRAAVAAAGLAGRYVGAHPMAGTEHSGFDASDVGLLDGVVWAVTVDDAAVVDPDRVATVLAWVTGACAGRAVVLTDDVHDEAAALVSHVPHVVATQLLNAVAGAPVGPVARLLAAGSFRDGTRVALTDPARTEAMVTENAAWVAPALRKVVRDLEVVVHRLESNASVHDFFHAADELRVERRAAAGSTAPAPGDSETLARGAGWPALLVERCTGGAVVTGLDGRAIHLTPSANANANANANA
AK018_05121933pheA_2COG0077Prephenate dehydrataseGTGAGGGTCGCCTACCTGGGGCCGGAAGGCACCTTCACCCACCAGGCCGCCCGCCGGTGGACGGACCGCGCCGACGCGGGGGCCGACGTCGTGCCCTGCGCGGACGTGCCGGCCGTGCACGACGCGGTGGCCTCGGGGCAGGCCGCCGTCGGTGTGGTGGCGATCGAGAGCTCGGTGGAGGGCTACGTCGTGCCGTCGGTCGACGCCCTCCTGGCCAGCGCGGACGTGGTCGCCGTGGACGAGGTCGTCCTGGACATCACCTTCGACGCGTTCGTGCGTCCCGGCCACGGCGAGCTCGTCGAGGCGACGGCGCACCCGCACGGCCTGGCGCAGTGCGCTCGCTTCGTCGCGGCGCGCGGCCTGGCTCCCGTGCCCGCCGCGTCGAACGCGGCCGCCTGCCGGGACGTGGGGGACCACCAGGTGGCCCTGGGGCCGCCCCTGTGCGGCGAGCTGTACGGCCTGGACACCCTCGCGGAGTCCGTGGCGGACTTCGCCGGCGCCCGAACCCGGTTCCTCGTCCTGGACCGCCGGGACCGTGCCCGCGCCCGGCTCGGGGCAGGGCACGACGGCGCGACGTGGCGCACGATGCTGGCGGTCACGCCGACCGTCACGGGTCCGGGGGTGCTGGCCCGCGTCACCGACGCCTTCGCCGTGCGCGGGGTCAACATGTCGAGCCTGGTCACCCGGCCGCTCAAGGCGCGCGAGGGGCAGTACGTGTTCGTCGTGACCCTCGACGCCGCCCCGTGGGAGCCGGCCGTGCGCGACCTGTTCGGCGACCTTCTGGCCGCCGGCGACGCGCTGAAGGTGCTCGGCGCCTACCCCGCGGCGCCGGGGGAGGGCGGTCTCGACGGTGCGCTGGCGGACGAGGCCCCGACGGGGTCGGTGCGCGCCGGCGACCCGGACGAGGTCGTGGACCAGGGGCTGCTGTGGTGAMRVAYLGPEGTFTHQAARRWTDRADAGADVVPCADVPAVHDAVASGQAAVGVVAIESSVEGYVVPSVDALLASADVVAVDEVVLDITFDAFVRPGHGELVEATAHPHGLAQCARFVAARGLAPVPAASNAAACRDVGDHQVALGPPLCGELYGLDTLAESVADFAGARTRFLVLDRRDRARARLGAGHDGATWRTMLAVTPTVTGPGVLARVTDAFAVRGVNMSSLVTRPLKAREGQYVFVVTLDAAPWEPAVRDLFGDLLAAGDALKVLGAYPAAPGEGGLDGALADEAPTGSVRAGDPDEVVDQGLLWNANANANANA
AK018_05122891hypothetical proteinATGCTCGGACGGATCTCCCGCGAGTCGTCGGCGCACGCCGCGCTCGCCGCGCACGACGCCGGCTGGTCCGGCGTGGCCGCGGGGTCGGCGGTGATCTCCGCGGTCCCCGACGAGTCGACCGAGCTGCTCGACCTCGGCACGATGCCCCAGGCGCTGGCGACGGTGGCCGGCATCGACGACCTGGCCGCCGTCGTGCACCTCGGTCACCCGGAGCAGCCGTCGCCCGCCCTGGAGCAGGCGCTGCTCGACGGCGACCCGCGGCTGATCGTCACCGCCGCCGCCACCGTGGGGACCCAGTGGGTCTGGGTCGCCCCGCCGGGCGTGGTCGGCGGACAGGTCGTGGTCGACGAGGCGGGCATGCGCGACTGCGCCGACGTGCTGCGCAGCATGGGCGTCAGCCCGCGCCTCGTGCCGACGGCGACACCGGTGGCCGAGCGCGCGGCCCTGGCGGGGGAGCAGGGCTCGCTCGTGCTGGAGCGCCCCCGGGTGCCGGCCGGGTGGACCGAGGTCCCCGGCAGCGAGCACCTGGGCGAGCAGCCCCCGGTCTGGTACGGGCTGCTCGAGGCGCGGGGCGCCTGGCCGCAGTTCTCCGCCCCCGCCCAGGTCTGGCTGGCGTTCGGGCCGAGCGCCGACCACCGCGGGTCCCTGCGCCAGACGCTGGGCCTCCTCGCCGACGCGGGAGTGGACCTGCAGCACCTGCGCAGCCACCCCTCGACCTACGGTCCGCACGTGTTCTTCAGCTCCTTCCGCTGCCCGGACGTGGCGGTGCTCGACGCCCTGGTCGCCGAGCTGGACGCCCGGTCGGTGTCGCACCGCACGCTGGCGGTCCTGCCGGGCGACCGGTTCGCGCCCGGACCGGAGGCGCTCACCCCCCGGTGGGTCGGCGCGTGAMLGRISRESSAHAALAAHDAGWSGVAAGSAVISAVPDESTELLDLGTMPQALATVAGIDDLAAVVHLGHPEQPSPALEQALLDGDPRLIVTAAATVGTQWVWVAPPGVVGGQVVVDEAGMRDCADVLRSMGVSPRLVPTATPVAERAALAGEQGSLVLERPRVPAGWTEVPGSEHLGEQPPVWYGLLEARGAWPQFSAPAQVWLAFGPSADHRGSLRQTLGLLADAGVDLQHLRSHPSTYGPHVFFSSFRCPDVAVLDALVAELDARSVSHRTLAVLPGDRFAPGPEALTPRWVGANANANANANA
AK018_051232139hypothetical proteinATGGGCCAGCCGACCGAGGGTGACGACCAGGTGCGCGCGTCGCAGAACTCGGCCTCGTCGCCGGGCGACGCCTCCGCCGCCGGGGACACCCCGTACGAGCCTGCGGTGCGGGCCTGGGAGGAACCGGACGCCGGCGACGCCGAGCCCGCCGGGACCGCGGGCTCTCCGTCCGCCGGGACCCCGGACGCGCCCGCGCAGGACGCGCCGGAGGACCCGGACGTCCCGTACGAGCCCAGCGTGCGCGCCTGGGAGCAGCCCCGTTCCGTGGCCACCGTGCGGGCACCGTCCAGCACGCCCCCCGCCGCCCCGACCGAGGCCATCCCGGCGGTGTCCGCGACGTCCGCCGCCGGCGCCGGGAGCCCGGCCGGCGAGCAGTCCCCGGCGGTCCCGCCGTCGGACGGTGCCGGGACCCCGCTGGAGGGCCTGCAGGGTGACGGTGCGCCGAGCCGCACCCCGAAGGTGCTGCTCGGCGCCCTGGCCGGGGTCGTCGTCCTCGCGGGCCTGTACGTGGGCGCGCAGTGGCTGGTCGCCGACAGCGTGCCGAAGGGCACCACCGTGGCGGGTGTCGACATCGGCGGTCTGCCCACGGCCGAGGCCGTGACCGCCCTGGACGAGGGCCTCGGCCCCCGCGCCGCCGAGCCGGTCACCGTCCGCGCCGGCGAGTCCACGAGCACGATCGACCCGGCCGAGGCGGGGCTGAGCCTCGACTCCGCCGGCACGGTGGAGGACCTGACCGGCTTCACCCTGGAGCCGTCGCGACTGCTGGAGCACCTCGTCGGCGGCGACGAGGTGCCCCCGGTGGTGGGGGTCGACCGCCCCACGCTGCGGACCGCCGTCGGCGGCGTGGCCCAGTCGTTGGCGACCGAGCCCGTCGACGGCACGGTCCGGTTCGCCGACGGCGACGCGGTGGCGACCGAGGCCGTCGCGGGCACGCAGGTCGTCCAGGACACCGCCGACGACGCGATCGTCTCCGCCTGGCTGGTGACCGACGGCCCCGTCGACCTGCCGACCGAGCCGGTCGAGCCGGCGATCGACCAGGCGGACACCGACGCCGCCCTGGCCGAGGCCGAGGAGGTCGTCTCGGGGCCGGTGACCGTGGAGGTCGACACCCAGAACCCGGAGCTCCCGGCGCGCGTGCTGGCCCGGTCCACGTCGTTCGTGCCGCAGGACGGCGCTCTGGTGGCGCAGTTCGACGGCGACCGGCTGACGTCCGCGATCGTCGAGCGGACGAACGACCTGCTGCGCGAGCCGAACGACGCCCACTTCGAGTTCTCCGGCGGCGAGCCGGTCATCGTCGGCGGGGAGGCGGGCACCACCCTCGACCCCGAGCAGGTCGCCGACGCCGTCGGCGGCGCCGCGCTGTCTCCCGGACGTGCCACGCAGGTCGAGCTCGTCGAGGAGGACCCGGAGGACACGCGGGCCTCGCTGGAGGAGCTGGGCGTGCAGGAGGTCGTCTCGGAGTTCTCCACGCCGCTGACCAGCGAACCCGTGCGCACCAGGAACCTCGTGCGCGGCGCCGAGCTGGTCAACGGCACCCTGGTGCGCCCGGACGAGACGTTCTCCCTCATCGACACGCTCTCGCCCATCGAGGTCTCCAACGGCTACTTCGCCGCCGGCGTGGTGAGCAACGGCGTGCACGTCGACGCCGTCGGCGGCGGGCTGTCGCAGATGGCCACCACCAGCTACAACGCGGGCTTCTTCGCGGGCTTCGACGACGTCGAGCACCGTCAGCACAGCTACTGGTTCAGCCGCTACCCGGCGGGGCGCGAGGCCACGATCTACGTCGGCGCGATCGACATGAAGTTCCGCAACGACACCCCGTACGGGGCGCTGCTGCAGAGCTACGTCTCCGGCGGGCGGCTGTACGTCAAGATCTGGTCGACGGAGTACTACGACGTCGAGACCTCCGACTCCGGCAGGCAGGAGGTCGAGCCGGTCTCCGAGGTCGACATGTCCAGCAGCCCCGACTGCGAGCCCTACCCGGGCGGGCAGCCCGGGTTCGCCATCACCGTGTACCGCAAGGTGTACCTCGACGGCGACCTGGTCAAGGACGAGTCCGACTTCTGGCGGTACAAGCCCGACGACGCGGTGACCTGCACCCCGCCGGAGCAGGGGAACGACGAGGACGGGGACGACTGAMGQPTEGDDQVRASQNSASSPGDASAAGDTPYEPAVRAWEEPDAGDAEPAGTAGSPSAGTPDAPAQDAPEDPDVPYEPSVRAWEQPRSVATVRAPSSTPPAAPTEAIPAVSATSAAGAGSPAGEQSPAVPPSDGAGTPLEGLQGDGAPSRTPKVLLGALAGVVVLAGLYVGAQWLVADSVPKGTTVAGVDIGGLPTAEAVTALDEGLGPRAAEPVTVRAGESTSTIDPAEAGLSLDSAGTVEDLTGFTLEPSRLLEHLVGGDEVPPVVGVDRPTLRTAVGGVAQSLATEPVDGTVRFADGDAVATEAVAGTQVVQDTADDAIVSAWLVTDGPVDLPTEPVEPAIDQADTDAALAEAEEVVSGPVTVEVDTQNPELPARVLARSTSFVPQDGALVAQFDGDRLTSAIVERTNDLLREPNDAHFEFSGGEPVIVGGEAGTTLDPEQVADAVGGAALSPGRATQVELVEEDPEDTRASLEELGVQEVVSEFSTPLTSEPVRTRNLVRGAELVNGTLVRPDETFSLIDTLSPIEVSNGYFAAGVVSNGVHVDAVGGGLSQMATTSYNAGFFAGFDDVEHRQHSYWFSRYPAGREATIYVGAIDMKFRNDTPYGALLQSYVSGGRLYVKIWSTEYYDVETSDSGRQEVEPVSEVDMSSSPDCEPYPGGQPGFAITVYRKVYLDGDLVKDESDFWRYKPDDAVTCTPPEQGNDEDGDDNANANANANA
AK018_05124414hypothetical proteinGTGATCTCCACCCCGCCCCACCACTCCCCGAGTGCACCGCGCCGCAGCGGGGTGCTGCTGGTCGTCTGGCGGCTGGTCCTCGGCCTGCTGCTCGGCGGGGTCGTCGGGCTCATCGGCACCGTCGGTCACCGCATGGCGTGGTGGGACCTGCCGCTCGGCCTCGTGCTCTCGCTCGCCCTGACGCTCTCCGCGGCCGTGCTCTGCCGCGCGTGGGCCGGCGTCGGCACGCTGCTCGCCTGCGGTGCGGGCTGGCTGGTGACCGTGCAGCTCCTCGCCGCCGAGGGCCCGGGCGGCGACGTCCTGGTCCCGGCCGACACCGCCGGGTACGTGTGGACGTACGGGGGGCTGCTCCTCTTCGCCGTCGCGGCGTTCCTGCCGCGGCGGTGGTTCGTGGACGACCCCGACGCCGGGTGAMISTPPHHSPSAPRRSGVLLVVWRLVLGLLLGGVVGLIGTVGHRMAWWDLPLGLVLSLALTLSAAVLCRAWAGVGTLLACGAGWLVTVQLLAAEGPGGDVLVPADTAGYVWTYGGLLLFAVAAFLPRRWFVDDPDAGNANANANANA
AK018_05125990mshB_31D-myo-inositol 2-acetamido-2-deoxy-alpha-D-glucopyranoside deacetylaseATGCAGGACGCGGGGGAGACCTCGACGGCGGCGGCCCGCCGGGCCGACCCGTCGGTCGGGCCGCTGCTCGCGGTGCACGCGCACCCGGACGACGAGACGCTGGCCACCGGCGCGCTGCTGGCGGCCTGGGCCGTGGCCGGGTCGCCGGCGACCGTGGTCACGTGCACGCGCGGCGAGCGCGGCGAGGTCATCGACTCCGTCGCGCACCCGACGGGTCTCGCGCACCTCGAGGACGACGGCCCGGCGCTCGCCGTCCACCGCGAGCGGGAGCTGGCGGCCGCGCTCGAGGCGCTCGGCGTGCCCGACCACGTGTTCCTCGACACCGTGCCGCCCGCGACGCCCCCCGCGAGCGCGTCGGGCCGCTTCGAGGACTCGGGCATGGCCTGGGTGGCCCCCGGCATCGCCGGTCCGGCGCCGGACTCCGGACCGGCGGCGCTGAGCCGGGTGCCGCTCGAGGCCGCCGCGTCCCGCCTCGCCGCGGTGGTGCGCGACCGTCGTCCGGCCGTCGTCGTCACCTACGAGGCGGGCGGCGGGTACCGCCACCCCGACCACGTGCGCACCTACGAGCTGACCGTGCGCGCCCTCGAGCTCGCCGCCGACCCGGCCGCCGACGTCGTCGGGGATCCCTGGGCGGTCCCGGAGCGCTGGGAGGTCGTGGCCCCGGCCGACCGGTGGCGCGCCGCGCGCACCGCGCTGTCCACCTCCCCGGACGCGGTGCGGCCGGCCCGCGCGGCGGACCTGACGCTGCCCGACCCGGACGCGGACCCGCCGCCGCTGGTCGTGGACCCCGCGGAGCTCGCCCGCGACGAGGTGGTCTCGGTCGCGGTGGAGCCGGTCCTGGACCGTCTGCTCGCCGCGCTGGCCGCCCACGCCACGCAGGTCCAGCACGTCGCCGCCGTCTCCCTGCCGGGCGTGGTGGCGCACTACGCCCTGAGCAACGGCGAGCTCGCGCCCGTGCTCGCCGCGTCCACCGCCCGCGTGCGCCGGTAAMQDAGETSTAAARRADPSVGPLLAVHAHPDDETLATGALLAAWAVAGSPATVVTCTRGERGEVIDSVAHPTGLAHLEDDGPALAVHRERELAAALEALGVPDHVFLDTVPPATPPASASGRFEDSGMAWVAPGIAGPAPDSGPAALSRVPLEAAASRLAAVVRDRRPAVVVTYEAGGGYRHPDHVRTYELTVRALELAADPAADVVGDPWAVPERWEVVAPADRWRAARTALSTSPDAVRPARAADLTLPDPDADPPPLVVDPAELARDEVVSVAVEPVLDRLLAALAAHATQVQHVAAVSLPGVVAHYALSNGELAPVLAASTARVRRNANANANANA
AK018_051261911typA_2COG1217GTP-binding protein TypA/BipAATGTCTGTGCGCTCCGACCTGCGCAACGTGGCGATCGTCGCCCACGTCGACCACGGCAAGACCACCCTGGTCGACGCCATGCTGCGGCAGGCCGGCGCCTTCGCGGCGCACCAGCAGGTCGACGACCGCGTCATGGACTCCGGTGACCTGGAGCGGGAGAAGGGCATCACGATCCTCGCCAAGAACACGGCGATCCGGTACGCCGGACCGTCGGCGGCCGAGGTCGGCGAGGCCGACGGCATCACGATCAACGTGATCGACACGCCGGGCCACGCCGACTTCGGCGGCGAGGTCGAGCGCGGCCTGTCCATGGTCGACGGCGTCGTGCTGCTCGTGGACGCCTCCGAGGGCCCGCTGCCGCAGACCCGCTTCGTGCTGCGCAAGGCGCTCGCCGCCAAGCTGCCCGTCATCGTCGTGGTCAACAAGGTCGACCGGCCCGACTCGCGGATCACCGAGGTCGTCGCCGAGACGACCGACCTGCTGCTGGGGCTCGCCAGCGACCTGGCGGACGAGGTCCCCGACCTCGACGTCGACGCCGTGCTCGACGTGCCCGTGGTCTACGCCTCGGCCAAGGCCGGGCGCGCCTCCACCGAGCAGCCCGCCGACGGCGAGCTGCCGGCGAACGAGGACCTCGAGCCGCTGTTCTCCACCGTGCTGCAGACCGTCCCGGCGCCGACGTACGACGAGACGATGCCGCTGCAGGCGCACGTGACCAACCTCGACGCCTCGCCGTTCCTCGGCCGCCTCGCGCTGCTGCGCGTGCACAACGGCACCCTGCGCAAGGGTCAGACGGTCGCGTGGGCGCGCCAGGACGGCACCCTGAGCCAGGTGAAGATCACCGAGCTGCTCGAGACCAAGGCGCTGGACCGCGTGCCCGCCGAGTCCGCCGGCCCCGGGGACATCGTCGCCGTGGCGGGCATCGCCGACATCATGATCGGCGAGACGCTCACCGACGCCGACGACCCGCGGCCGCTGCCGCGCATCACGGTCGACGACCCGGCGATCTCGATGACGATCGGCATCAACACCTCCCCGCTGGCCGGCAAGGGCGGCAAGGGCCACAAGGTCACGGCCCGCCAGGTCAAGGACCGCCTGGACGCCGAGCTCATCGGCAACGTCTCGCTGCGCGTGCTGCCCACCGACCGCCCCGACGCGTGGGAGGTCCAGGGTCGGGGCGAGCTCGCGCTGGCGATCCTCGTCGAGCAGATGCGCCGGGAGGGCTTCGAGCTGACCGTCGGCAAGCCGCAGGTCGTCACCAAGCAGGTCGACGGCAAGACCTGCGAGCCGATGGAGCGCATGACGATCGACGTGCCCGAGGAGTACCTCGGCGCCGTCACGCAGCTCATGGCCGCCCGCAAGGGCCGCATGGAGACGATGGCGAACCACGGCACCGGCTGGGTGCGCATGGAGTTCGTCGTCCCGGCCCGCGGCCTCATCGGGTTCCGGACCCGGTTCCTCACCGAGACCCGCGGCACCGGCATCGCCTCGTCCTACGCCGAGGGCTACGAGCCGTGGCACGGCCCCATCGAGTCCCGGCTGACCGGTTCGCTGGTCGCGGACCGGGCCGGGTCCGTGACGCCGTTCGCCATGATCAACCTGCAGGAGCGCGGCACGTTCTTCGTCGACCCCACCCAGGAGGTCTACGAGGGCATGATCGTCGGCGAGAACTCCCGCAACGAGGACATGGACGTCAACATCACCAAGGAGAAGAAGCTGACGAACATGCGGTCCTCGACCGCCGACAGCTTCGAGAACCTGGTGCCGCCGAAGAAGCTCACGCTCGAGGAGTCGCTGGAGTTCGCGGCCGAGGACGAGTGCGTCGAGATCACGCCCGAGATCGTCCGCATCCGCAAGGTCGACCTCGACGCCACGGCGCGTGCGCGGGCCGCGGCGCGGGCCAAGCGCGCCTGAMSVRSDLRNVAIVAHVDHGKTTLVDAMLRQAGAFAAHQQVDDRVMDSGDLEREKGITILAKNTAIRYAGPSAAEVGEADGITINVIDTPGHADFGGEVERGLSMVDGVVLLVDASEGPLPQTRFVLRKALAAKLPVIVVVNKVDRPDSRITEVVAETTDLLLGLASDLADEVPDLDVDAVLDVPVVYASAKAGRASTEQPADGELPANEDLEPLFSTVLQTVPAPTYDETMPLQAHVTNLDASPFLGRLALLRVHNGTLRKGQTVAWARQDGTLSQVKITELLETKALDRVPAESAGPGDIVAVAGIADIMIGETLTDADDPRPLPRITVDDPAISMTIGINTSPLAGKGGKGHKVTARQVKDRLDAELIGNVSLRVLPTDRPDAWEVQGRGELALAILVEQMRREGFELTVGKPQVVTKQVDGKTCEPMERMTIDVPEEYLGAVTQLMAARKGRMETMANHGTGWVRMEFVVPARGLIGFRTRFLTETRGTGIASSYAEGYEPWHGPIESRLTGSLVADRAGSVTPFAMINLQERGTFFVDPTQEVYEGMIVGENSRNEDMDVNITKEKKLTNMRSSTADSFENLVPPKKLTLEESLEFAAEDECVEITPEIVRIRKVDLDATARARAAARAKRAPGPT0023720_542DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0023720-typA|bipA-K06207NANA
AK018_051271776betLCOG1292Glycine betaine transporter BetLATGTCGACGCGCCGATCAACCCTCGCCCCAGCCGTCTTCTACCCAGCGGGCGGACTGATCCTCCTCTTCGTCCTGCTGGGGATCTTCGCCACCGACGCGACCGCCGAGGTCATGGCCACCCTCCAGTCGAAGGTCATCAACGGCTTCGGCTGGTACTACGTGCTCATCGTGGCGGCCTTCGTGATCTTCGCGATCTACGTGGGCCTGAGCCGCTTCGGCGACATCACCCTCGGCAAGGACGAGGAGACCCCCGACTTCAAGCTGCCCGTGTGGTTCGCGATGCTGTTCGCCACCGGCATGGGGATCGGGCTCGTCTACTACGGCGTCGCGGAGCCGCTGTGGCACTACACCGACCCGAAGCCGGGCGTCACCGGTGACGACGCCTCGATCGCCGGGCAGGCGATGGGCCAGACCTACCTGCACTGGGGCGTGCACGCCTGGGCGATCTACGTCGTCATCGGCCTGGCCCTGGCCTACGCGATCCACCGCAAGGGGCGCCCGGTGTCGATCCGGTGGGCCCTCGAGCCGCTGCTGGGTGAGGAGCGCGTCAAGGGCTGGCTCGGCAACGTCATCGACGTGCTGGCGATCTTCGGCACGGTGTTCGGCGTGGCCACCTCGCTCGGCCTCGGTGTGCTGCAGCTGTCGGCCGGGCTCGAGTACCTCGGCGTCGCCGAGTCGACCGTCGCGCTGCAGATGGGGCTCATCGCCGCCATCACCGCGGTCGCCGCGCTCTCGGTGGCGTCCGGTCTCGAACGCGGCATCAAGTGGCTGTCCAACGGCAACATGATGCTCGCGGGCGCGCTGGTGGTCGCGGTGCTGATCATGGGGTCCTCGCTCTACCTGATGCGCGAGTGGGTCCAGTCGCTCGGCTTCTACCTCCAGAACGTCATGCAGATGACCTTCGACACCCTGGCGTTCCAGGGCGAGGCGGGCCTCGCCTGGGAGTCGGGCTGGACGATCTTCTACTGGGGCTGGTGGATCTCCTGGGCGCCCTTCGTCGGGCTGTTCATCGCCCGCATCTCGCGCGGACGGACCGTGCGCGAGTTCGTCCTCGGTACCCTCATCGTCCCGATGCTGGTGACGACGGTGTGGTTCAGCGTCTTCGGCGGGAGCGCACTGCGGCAGGAGATGATCGAGCCGGGCTCGCTGCTCGACGCCGAGACGGGGGCGGTCAACTCCGACACGGCGATGTTCCAGCTGTTCGAGACGCTGCCCGGCGGGGGCGCCTGGCTCGCCGTGATCGCCATGATCCTCGTCGTCGTGTTCTTCGTGACGTCCTCGGACTCGGGGTCGTTCGTCGTGGACATGCTGGCCAACGGCGGCGACCAGAACCCGCCCCTGTGGAGCCGGCTGTTCTGGGCGATCCTCGAGGGTGGTGTCGCCGCGGCGCTGCTCTACGCCGGGGGTCTGGCGACGTTGCAGACGGCGTCGATCCTCACGGCCCTGCCGTTCTCGGTGGTGCTGGTCGCCATGGCCGTCTCGGTGTGGAAGGCGCTGGACGCCGAGCACAGGGCGATCGTGCGCACCGAGCGACGGCTGCGGCGGCGTGAGTTCAAGCAGGAGGTGACCGAGCACGTCACGGAGCACGTGACCGAGCACGTGACCGAGCACGTGACCGAGCACGTCAACACCCAGCTGTCGGAGATGACCGGGCAGGTCCCGGTCGTGACGGACGCCGACTCCGAGGGCAACGGGACCTCGGGCGCCGCACGTCGCCGGGGTCCGCGGAGCTGGCGCCGTCGAGCACCCGGGCCGGAGACGGACACCTCCGGGTAGMSTRRSTLAPAVFYPAGGLILLFVLLGIFATDATAEVMATLQSKVINGFGWYYVLIVAAFVIFAIYVGLSRFGDITLGKDEETPDFKLPVWFAMLFATGMGIGLVYYGVAEPLWHYTDPKPGVTGDDASIAGQAMGQTYLHWGVHAWAIYVVIGLALAYAIHRKGRPVSIRWALEPLLGEERVKGWLGNVIDVLAIFGTVFGVATSLGLGVLQLSAGLEYLGVAESTVALQMGLIAAITAVAALSVASGLERGIKWLSNGNMMLAGALVVAVLIMGSSLYLMREWVQSLGFYLQNVMQMTFDTLAFQGEAGLAWESGWTIFYWGWWISWAPFVGLFIARISRGRTVREFVLGTLIVPMLVTTVWFSVFGGSALRQEMIEPGSLLDAETGAVNSDTAMFQLFETLPGGGAWLAVIAMILVVVFFVTSSDSGSFVVDMLANGGDQNPPLWSRLFWAILEGGVAAALLYAGGLATLQTASILTALPFSVVLVAMAVSVWKALDAEHRAIVRTERRLRRREFKQEVTEHVTEHVTEHVTEHVTEHVNTQLSEMTGQVPVVTDADSEGNGTSGAARRRGPRSWRRRAPGPETDTSGPGPT0013600_990DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020NANA
AK018_051281752COG1123putative ABC transporter ATP-binding proteinATGACGACACAGTTCCCCGTGAGCGACGGCAACGCGACGCCCGAGTCCGCCCCCGCCGTCGCCGACCCGAACAAGCCCCTCCTGGAGATCCGCGACCTGCAGATCTCCTTCACCACCGGGGTCGGCGAGGTGCACGCCGTGCGCGGCGCGAACCTCACCGTCTACCCCGGTCAGAACGTGGCCATCGTCGGCGAGTCCGGATCGGGCAAGTCGACGACGGCCGCCTCGATCATCGACCTGCTGCCCGGGACCGGCAAGGTGACCGGCGGGTCCATCATGTTCGACGGTCGCGAGCTCGTCGGCGCGCCCCGCGCCGAGACCGAGGCCCTGCGGGGTCGGGCGATCGGCATGGTGCCGCAGGACCCGATGTCGAACCTCAACCCGGTCTGGCGCATCGGCACCCAGGTGACCGAGGCGCTGAAGGCCAACGGGTTCAAGGGATCGAAGGCCGAGCTGCGCACCCGCGTCGCGGACGTCCTCGCCGAGGCCGGTCTGCCCGACGCCGAGCGCCGCGCGCGCCAGTACCCGCACGAGTTCTCGGGCGGCATGCGCCAGCGCGCGCTCATCGGCATCGGCCTGGCCTCGCGGCCGCAGCTGCTCATCGCCGACGAGCCCACGTCGGCCCTCGACGTGACCGTGCAGCGCCAGATCCTGGACCACCTGGGCGACATGACGCGGGACCTCGGCACCGCCGTGCTGTTCATCACCCACGACCTCGGGCTCGCCGCCGAGCGGGCCGAGCACCTCGTGGTCATGTTCAAGGGTCAGGTCGTCGAGTCCGGCCCCGCCCAGCAGATCCTCGCCGACCCGCAGCACCCGTACACGAAGCGGCTGGTCGCCTCGGCGCCGTCGCTGGCCTCGCGCCGGATCCAGACGGCGCACGTCTCCGGGCAGGAGTCCGCCGAGCTGCACGCCCACCACGTGGGAGAGAAGCCGCCGGCCTCGAACGAGGCGGTCAAGGTCGAGCACCTGACCAAGGTGTTCCAGATCCGCGGGGCCCGCCCCGGGTCGTCCACGGACTTCACGGCGGTCGACGACGTCTCGTTCACCCTCGGGCGCGGCAGGACGCTCGCCCTGGTCGGCGAGTCCGGCTCGGGCAAGTCCACGGCCGCCAACATGGTGCTGGGGCTGCTGGAGCCGACGTCGGGCACCGTGGAGTTCGACGGCACCGACGTCTCGACGCTCAACCCGAAGCAGGCCTTCGCCTTCCGACGGCGGATCCAGCCGGTCTTCCAGAACCCGTACGGGTCGCTGGACCCGATGTTCTCGATCTATCGCTCCATCGAGGAACCCCTCAAGCTGCACAACGTGGGGTCGAAGAAGTCGCGCGAGAAGCGGGTCCGCGAGCTGCTGGACATGGTCTCGCTGCCGCAGTCGGCGATGCGCCGCTTCCCGAACGAGCTCTCCGGCGGCCAGCGCCAGCGCATCGCCATCGCGCGGGCCCTGGCGCTCAAGCCCGAGGTCGTCGTGCTCGACGAGGCGGTCTCCGCCCTCGACGTGCTCGTCCAGGCGCAGATCCTCGACCTGCTCGACGAGCTGCAGACCGACCTGGGCCTGAGCTACCTGTTCATCACCCACGACCTGGCCGTCGTCCGGCAGATCGCCGACGACGTGGTGGTCATGCAGAACGGCAAGGTGGTCGAGCAGGCCACCACCGACGAGGTCTTCGACGACCCGCGCCAGCAGTACACCCGTGACCTCCTCGAGGCCATCCCGGGTGCTCATCTGGTGGGGAACGTCGCCGGCGGCTGAMTTQFPVSDGNATPESAPAVADPNKPLLEIRDLQISFTTGVGEVHAVRGANLTVYPGQNVAIVGESGSGKSTTAASIIDLLPGTGKVTGGSIMFDGRELVGAPRAETEALRGRAIGMVPQDPMSNLNPVWRIGTQVTEALKANGFKGSKAELRTRVADVLAEAGLPDAERRARQYPHEFSGGMRQRALIGIGLASRPQLLIADEPTSALDVTVQRQILDHLGDMTRDLGTAVLFITHDLGLAAERAEHLVVMFKGQVVESGPAQQILADPQHPYTKRLVASAPSLASRRIQTAHVSGQESAELHAHHVGEKPPASNEAVKVEHLTKVFQIRGARPGSSTDFTAVDDVSFTLGRGRTLALVGESGSGKSTAANMVLGLLEPTSGTVEFDGTDVSTLNPKQAFAFRRRIQPVFQNPYGSLDPMFSIYRSIEEPLKLHNVGSKKSREKRVRELLDMVSLPQSAMRRFPNELSGGQRQRIAIARALALKPEVVVLDEAVSALDVLVQAQILDLLDELQTDLGLSYLFITHDLAVVRQIADDVVVMQNGKVVEQATTDEVFDDPRQQYTRDLLEAIPGAHLVGNVAGGPGPT0004435_2524DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
AK018_05129981oppC_3COG1173Oligopeptide transport system permease protein OppCATGCCTGAGAACCGCTACGAACCCGTGGGCCGGTCGGCGACCCCGGCCCCGCGCCCCGGCCAGGAGCACTTCACCGCGCCGGCCGACGAGGGCGGCCTCGGCGCCGTCGACGCCGTCGCGACCGACGAGACGCCCACCAGCCTCTGGCGCGACGCCTGGCACCAGATGCGCCGGCGTCCGCTGTTCTGGGTGTCCGGGACGGTCATCGTCGTCGTCGTGCTGGTGGCGGCCTTCCCCGGCCTGTTCACCTCGATCGACCCGCGCGCCTGCGACCTGGCCCGCGCGCTCGAGGGCCCGCAGGCCGGCCACCCGTTCGGGTTCGACCGCCAGGGCTGCGACATCTACTCCCGGACGATGTACGGCGCCCGGGCCTCCGTCGTCGTCGGCGTGCTGGCGACCTCGATGGTCGTGATCCTCGGCACGACGATCGGCGCGATCGCCGGGTACTACGGCAAGTGGTTCGACACGATCCTCAGCCGGATCACCGACATCTTCTTCGCCATCCCGCTGGTGCTCGGCGCCATCGTCATCATGTCGATCGCGACCAACCGCACGAGCTTCCTGGTCGCCTTCGTGCTGGCGGTCTTCGGCTGGACCCAGATCGCCCGCATCACGCGCGGCACCGTGCTGTCGGTGAAGAACAACGAGTTCGTCACCGCGGCGAAGTCCCTCGGCATGGGCCGCGGGCAGATCCTGGTGCGGCACGTGCTGCCGAACTCCGCGGCGCCGATCATCGTCTACGCGACCGTGGCCCTGGGCCAGTTCATCGTCGCCGAGGCGACGCTGAGCTTCCTCGGCATCGGTCTGCCGCCGGACGTGGTCTCCTGGGGCGGCGACATCAGCGCCGCCCAGGGCGCGATCCGGACCGACCCCGAGATCCTGCTCTACCCGGCAGGCGGCCTGGCCGTGACGGTGCTCGGCTTCATGATGATGGGCGACGTGGTGCGCGACGCCCTCGACCCGAAGGCGCGGAAGCGATGAMPENRYEPVGRSATPAPRPGQEHFTAPADEGGLGAVDAVATDETPTSLWRDAWHQMRRRPLFWVSGTVIVVVVLVAAFPGLFTSIDPRACDLARALEGPQAGHPFGFDRQGCDIYSRTMYGARASVVVGVLATSMVVILGTTIGAIAGYYGKWFDTILSRITDIFFAIPLVLGAIVIMSIATNRTSFLVAFVLAVFGWTQIARITRGTVLSVKNNEFVTAAKSLGMGRGQILVRHVLPNSAAPIIVYATVALGQFIVAEATLSFLGIGLPPDVVSWGGDISAAQGAIRTDPEILLYPAGGLAVTVLGFMMMGDVVRDALDPKARKRPGPT0021025_993DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021025-oppC-K15582NANA
AK018_05130927dppB_5COG0601Dipeptide transport system permease protein DppBATGCTCTGGTATCTCGGACGCAGGCTGCTGCAGGTGATCCCTGTGTTCCTGGGGGCCACCCTGCTGCTGTACGCGCTGGTGTTCCTGCGGCCCGGTGACCCGATCGCCGGCCTGGGTGGTGAGCGTGGTCTGCCCGAAGCGGTGCAGGAGCAGATCCGCGCCCAGTACAACCTGGACCAACCGTTCATCATCCAGTACCTGCTCTTCCTGCGCGGCGTGGTGACGCTCGACTTCGGCGTCGACTTCCGCGGCCGCGAGATCACCGAGGTGATCGCCAACGCGTTCCCCGTCACGATCCAGCTCGCCCTCATGGCGCTGGTCATCGAGGCGGTCTTCGGCATCGGCTTCGGCCTGGTCGCCGGGATGCGCAAGGGTGGCATCTTCGACGCGACCGCCCTGGTCGTCAGCCTCTTCTTCATCGCGGTGCCGACGTTCGTCGTCGGTTTCGTCATGCAGATCGTCGTGGGCGTCCGGCTCGGCTGGCTGCCCGTCACCGCGGGACGAGATCCCGACTTCATCAGTCTGCTGATGCCGGCCATGGTGCTCGCCGCGGTGTCCTTCGCCTACGTGCTGCGCCTGACGCGCACGTCGGTCGCGGAGAACCTGTCCGCCGACTACGTCCGCACGGCGCGCGCCCGCGGTCTGCGTCGCTCGCAGGTCACCGGACGCCACGTGCTGCGCAACTCCCTCATCCCCGTGGTGACGTTCCTCGGCGCCGACATCGGCGCCCTGATGAGCGGGGCGATCATCACCGAGGGCATCTTCAACATCAACGGCGTCGGCGGCACGCTCTACGACGCGATCATCCGCGGCGAGAGCATCACCGTCGTGTCGCTGACCACCGTGCTGGTGCTGGTCTACATCGGGGCGAACCTCCTGGTGGACCTGCTCTACGCCGCCCTCGACCCGAGGATCCGCTATGCCTGAMLWYLGRRLLQVIPVFLGATLLLYALVFLRPGDPIAGLGGERGLPEAVQEQIRAQYNLDQPFIIQYLLFLRGVVTLDFGVDFRGREITEVIANAFPVTIQLALMALVIEAVFGIGFGLVAGMRKGGIFDATALVVSLFFIAVPTFVVGFVMQIVVGVRLGWLPVTAGRDPDFISLLMPAMVLAAVSFAYVLRLTRTSVAENLSADYVRTARARGLRRSQVTGRHVLRNSLIPVVTFLGADIGALMSGAIITEGIFNINGVGGTLYDAIIRGESITVVSLTTVLVLVYIGANLLVDLLYAALDPRIRYAPGPT0021020_1429DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021020-oppB-K15581NANA
AK018_051311623oppA_2COG4166Oligopeptide-binding protein OppAGTGACACCTCGCGGACGTATGGCAGGCATCGGGGCCTTCACCCTGGCCTCGGCCCTGCTGCTCTCGGCTTGCGGCGGCTCTGGCAGCTCCGACGAAGGCGACTCGACCGCGGCTGCGGAGGGCGACAGCACCGGCGTCGTCTCCATCAGCAGCGGCGAGCCCCAGAACCCGCTGACCCCCGGCATGACCAACGAGGTCTACGGCGGTCTGGTGGTCAAGAACATCTACTCCGGTCTCGTCTACTACGACGCGGACGGTGCGATCGAGAACGAGGTCGCCGAGTCCATCGAGTCCGAGGACAACCAGAACTGGACGATCACGATCCAGGACGGCTGGACCTTCTCGGACGGCACCCCCGTCACGGCCCAGAGCTTCGTCGACGCGTGGAAGTACGTCGCGAACCTGGACAACGCCCAGAACCAGCAGTACTTCTTCAACGGCTTCGCCGGCTTCAGCTTCGAGGAGCCGTCCGACATCGCCGTCGAGGTCGTGGACGAGACGACCTTCACGGCCGAGCTCTCCCAGCCCGCCTCGGACTTCCCGCTGTGGCTCGGTTACTCGGCGTTCAACCCGATGCCCGAGGCCTTCTTCGAGGACCCGGAGGGCTTCGGCTCGGAGCCGATCGGCAACGGCCCGTACGAGCTCGAGTCGTGGGAGAACGACAGCCTCATCACGCTCGTGCCCCGCGAGGGCTACGAGGGTCCGCGCCAGCCGGCCAACGGCGGGCTCGAGATGGTCGCGTACGTCGAGGAGGACACGGCGTACAACGACATGCTCGACGGCAACCTCGACGTGCTGCCGAACGTGCCGTCCTCGGCCTTCGCGACCTTCGAGGACGAGCTCGGCGAGCGCGCCGTGAACCAGCCGGCGGCCGTCATCCAGGTCGTCAACGTGCCCGAGTGGCTCCCCGAGTTCCAGGGCGAGGCCGGCGTCATGCGTCGCCAGGCCATCTCCATGGCGATCGACCGCGAGACGATCACCGAGACGCTCTACAGCGGCTCGCGCACCCCGGCCAGCGACTTCACCTCGCCGGTCATCGACGGGTTCTCCGACGACATCCCCGGCTCCGAGATCCTCGACTACGACCCCGAGGGCGCTGCCGAGATGTGGGAGCAGGCCGAGGAGATGGACCCGATCGGCGACTACACGCTGCAGATCGCGTCCAACGCCGACTCGGACCACCAGGACTGGATCGACGCGGCCTGCAACACCATCCGCACCGACCTGGGCATCGGCTGCGAGTTCGCGCCGTACACCACCTTCGACGAGTTCCTCAACGCGCGTGACGACGAGTCCGTCGAGGGCATCTTCCGCGGTGGCTGGCAGGCCGACTGGCCGTCGATGAGCAACTTCCTGGGCCCGATCTACGGCACCGGGGCCGGCTCGAACGACATGAACTACTCGAACGAGGAGTTCGACGCCCTGCTCTCCGAAGCGGCCGCCGCCGAGGACACGGCCACCGCGACCGAGCTCTACAAGGAGGCCCAGGAGATCCTGTTCCAGGACGTCCCGGGCATCCCGCTGTGGTACCAGAACGCGACCGGCGGCTACGCGGAGACCGTCGAGAACGTCGAGTTCGGCTGGGACAGCGACCCGATCCTGTACCAGATCACCAAGGAGTGAMTPRGRMAGIGAFTLASALLLSACGGSGSSDEGDSTAAAEGDSTGVVSISSGEPQNPLTPGMTNEVYGGLVVKNIYSGLVYYDADGAIENEVAESIESEDNQNWTITIQDGWTFSDGTPVTAQSFVDAWKYVANLDNAQNQQYFFNGFAGFSFEEPSDIAVEVVDETTFTAELSQPASDFPLWLGYSAFNPMPEAFFEDPEGFGSEPIGNGPYELESWENDSLITLVPREGYEGPRQPANGGLEMVAYVEEDTAYNDMLDGNLDVLPNVPSSAFATFEDELGERAVNQPAAVIQVVNVPEWLPEFQGEAGVMRRQAISMAIDRETITETLYSGSRTPASDFTSPVIDGFSDDIPGSEILDYDPEGAAEMWEQAEEMDPIGDYTLQIASNADSDHQDWIDAACNTIRTDLGIGCEFAPYTTFDEFLNARDDESVEGIFRGGWQADWPSMSNFLGPIYGTGAGSNDMNYSNEEFDALLSEAAAAEDTATATELYKEAQEILFQDVPGIPLWYQNATGGYAETVENVEFGWDSDPILYQITKEPGPT0021015_3524DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021015-oppA|mppA-K15580NANA
AK018_05132705ytrE_2COG1136ABC transporter ATP-binding protein YtrEATGCCGACGACGGCGAAGACGCCGGGGACGACGCCGGTCCTGCGGACCGAGGACGTGCGCCGCACGTTCGGCCGGGGGGCCGGCGAGGTGCACGCCCTGCGCGGGGTGTCCGTGGAGGTCGCGGCGGGCGAGCTGCTCGTGGTGCGCGGTCCGTCGGGGTCGGGCAAGACCACGCTGCTCAACGTGCTCGGCGGGCTGGACACGCCGTCGTCGGGCCGGGTGTGGCTGGACGACCGCGAGCTGACGGCGCTGGACCCGGACGAGGTGCTGGCGCTGCGGCGCGACGAGGTCGGCTACGTCTTCCAGTCCTTCGGTCTGCTGCCGGTGCTGTCCGCCGCGGAGAACGTCGAGGTGCCGCTCCGGCTGCGCCGGGTCCCGCCGGCCGAGCGGGCAGAACGCGTGGCGGACGCCCTGGACCGGGTGGGACTCGCCGACCACGCCGACCAGCGGCCCTACGAGCTCTCCGGAGGTCAGCAGCAGCGCGTCGGCATCGCCCGGGCCCTGGTGGCGGCCCCCCGGGTGCTCCTCGCGGACGAACCCACCGGCCAGCTCGACACGGCGACCGGGCGGCGAGTGATGGACGTGCTGGCCGAGCTCGTGCACACCGCGGGGGTCGCCGCGGTCGTCACGACGCACGACCCGGAGCTGGTCCGGCGGGCGGACCGGGTGGTGGACCTGCACGACGGTGCGACCGCCGAGGCCTGAMPTTAKTPGTTPVLRTEDVRRTFGRGAGEVHALRGVSVEVAAGELLVVRGPSGSGKTTLLNVLGGLDTPSSGRVWLDDRELTALDPDEVLALRRDEVGYVFQSFGLLPVLSAAENVEVPLRLRRVPPAERAERVADALDRVGLADHADQRPYELSGGQQQRVGIARALVAAPRVLLADEPTGQLDTATGRRVMDVLAELVHTAGVAAVVTTHDPELVRRADRVVDLHDGATAEAPGPT0013345_4544DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_05133930btuD_22Vitamin B12 import ATP-binding protein BtuDATGAGCGAGATCCTGTGCCGCGGGCTGGTGCGCATCTTCGCCACCGACGGCGTGGAGGTCCAGGCCCTGCAGGGCCTGGACCTGGAGGTCGAGGCCGGCGACCTGGTGGCCGTCGTGGGTGCCTCCGGGTCGGGGAAGTCCACGCTGCTGGGCATCCTGTCCGGGCTGGACACCCCCACCGGAGGGTCGGCCGTCGTGGCGGGCACGGACCTGCTCACGATGGGGCGCCGGGACCGGGTCGTCTACCAGCGCCGCACGGTCGGGTTCGTCTGGCAGCAGACCTCCCGCAACCTGCTGCCGTACCTCACGGCGGCCGAGAACGTCCGTCTCGTGCTCGACCTGGGCGGCGGTCCGCGGAGCGAGCGGGCGGCGCGCACCGACGAGCTGCTCGACCTGCTGCAGGTGGCCGACGTCGCCGACCGGTACCCGGCCGAGATGTCCGGCGGGCAGCAGCAGCGGGTCGCGATCGCCGTCGCGGTGGCGAACCGCCCGCGCGTCCTGCTCGCCGACGAGCCGACCGGCGAGCTCGACGAGGCCACCAGTGCGGACGTGCTGGAGGCGCTGCGCGCGGTCAACGCGGCCACGGGCACGACGACGCTCATCGTCACGCACGACCCGACGGTGTCGGAGCACGTGGCCCGCACGGTGCAGATCCGCGACGGACGCACCTCCACCGAGGTGCTGCGCCGGACCGCCACGGACGCCGACGGCGTGCGGCGCGACGTCGCGGAGGAGTTCGCGGTGCTGGACCGGGTCGGGCGCCTGCAGCTGCCGCACGACGTCGTCGAGGCCCTGGACCTGCGCGACCGGGTCCGGCTGCGGCTGCAGGACGACCACGTCCAGGTCCGGCCGGACCGCGACGACACGTGCGACGAGACCCGTGGCGACACCCGCGAGGACGCCCGCGGGGCCACGGGGGAGGAGATCTGAMSEILCRGLVRIFATDGVEVQALQGLDLEVEAGDLVAVVGASGSGKSTLLGILSGLDTPTGGSAVVAGTDLLTMGRRDRVVYQRRTVGFVWQQTSRNLLPYLTAAENVRLVLDLGGGPRSERAARTDELLDLLQVADVADRYPAEMSGGQQQRVAIAVAVANRPRVLLADEPTGELDEATSADVLEALRAVNAATGTTTLIVTHDPTVSEHVARTVQIRDGRTSTEVLRRTATDADGVRRDVAEEFAVLDRVGRLQLPHDVVEALDLRDRVRLRLQDDHVQVRPDRDDTCDETRGDTREDARGATGEEIPGPT0013345_1130DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_051342814hypothetical proteinATGAGCCTGCTGCTCCTGGTGCGTCGGCACCTGCGCACCGCGGCCGGCGCCGTGCTGGCCCTGGCGGCGGTGACCGTCCTCGCCGCCGGCACCCTGTCCACGGTGCCGCGGGCGGTCGCTGCGGTGCACGCCGACCAGCTCGCGCACGTCACGGCGACGACGTCGGCCTTGACGTCCGACGTCATCGCGACGACGCCGGTGTTCCCCGGCTACGGCGAGGACTACGACGCCTACGGCGGCGTGCACCGCGAGGGTCCGACCGACGGGGAGGTCGACCCGCCGGTGCCCGACCTCGACGGCTACCTCGCCGGGCTGCGCGACCTCGCCGCCTCGCGACCGGCCCCGCTGTCCGGCGTCCTCGGCGAGCCCGACCTGGTCGTCGCGGCGGACCGCACCGGGGTGGAGCGGGTCGAGGGCAACGACGTCGCCGCGCCGGGGATCGTGCTGCAGGCGGGCCCGTCGGCGTCGGCGCAGGTCCAGGTGGTCGAGGGGCGCTGGCCGGCCTCCACGCCCGTGCCTGCCGACCCGACGGCGATGCTGCCCGGGTCCGACGGCGTGGTGGAGTTCGAGCCCACCGCGATGGAGGTGGCGGTCTCGACCGCGGTCGCCGCCGAGCTCGACTGGGCCCTCGACTCGGTGCACGCCACCGACGAGCCGCTGCTGCCGCCGCTGCACGTCGTGGGCCTGTGGGAACCGCAGGACGCCGACGCCGACTACTGGGCGCACGTCCCGCGCACGATGACGCCCGAGATCGTGTTCGACCCCAACATCGGCAAGATCGTCACGGCGGGGGTCTTCGCCGACCCGGCCACGCTCGGCTCCTGGGTCCCTGCGCCGTCGGCGCGTGTCTGGTTCCCGGTCGACACCTCCGGCGTCGCCGCGCAGGACGCGCCGGCCCTGCTCGCCCAGCTGCGCGGCCTGACGGCCACGACCACCACCGTCGTCGACGGCGACTCCGCCGTGCTGGAACCGGCCACGGGGTTGCTCGACGTGCTGGAGACCGCGCTGGGCCAGCGCGCCGGCATCGACGCGATCGTCACGGTGCTCGCCGTCGGACCGCTGGGCGCGCTGGCCGCCGTCCTCGTGCTCGCCGCCGGGCTGGTCGTCGACCGGCGCCGCGCGGCGCTGGCGCTCGCACGGGCGCGGGGTGCGTCGATGACGTGGGTCCGCGGGGTGGTCGCGCTCGAGGGCCTGGTCGTCGGTCTGCCCGCGGCCGCGCTGGGGTTCGCGGCCGGGCTCGCCGTGGTGCCCGGGACCGTGACGTCCGGGCAGGTCGGCGCGGCGGTGCTCTGCGGGCTCGCGCCGGCGCTCGTGCTGGCCGCCGTCACCCCGGCCGCCGGGCTGCGGGCCGGCCGCGCGGACCTCGGTGCCGTCCCCGCCCGACGCCGGCACCTGCGCCTCGGGGTGGAGGCCGGCGTCGTGCTCGCCGCGGCCGGGACGTCGTGGCTCGCGGTGGACCGGGGCGTCGTCGCCGCGACGGGTTCCTCGACGGGCCCGACCGGCACCGGCGGCGGTGTCGACCCGCTCCTGGCCGTGGCCCCGCTGCTGGTCGGCGTCGCGGTCGCGCTGGTCACGTTCCGGCTCGTGCCGCCGGTGGCGCGCGCGGTGGAACACCTCGCCGCGCGGGGCTCGGGACTCGTGCCGTTCCTCGGGGCGGCGCGCGTGCGCCGTGACCCGGCCGGGGGCCCGCTGCCCGCGGTGGCGCTGGTGCTCGCCGTCGGCGTCGCCCTGTCGTCCGTGGTGCTGTCCGGCACGGTGCGCCAGGGCGTCACCGACGAGGCCTGGGCCGAGGTCGGGGGAGACGTGCGGGTGGCCGGTCCGGTCGTCGACGGCCCGACGGCCGACGCCCTGCGCGGGATCGACGGCGTGGCCGCGGTCGCGCCCGTCGCCGACGCCGGCCGGTTCGCGCTCGGCCGTGTCGGCAGCGGCAGCCCCGTGACCGTGTGGACCACCGACGCGGCCGAGCTCGCGCGGGTGCAGCAGGACGTGCCGGGAGCGCCGGACGGGCTGGACCGGCTCGCGGCCACCGACGACGGACGACTCCCCGTCGTCGCGGTCGGCTCCGGGGCCGGGCAGGTGACCGACGGACAGGTGCTGTCCGGGCCCGGGGGCGCTCGCACGGAGGTCGTCGTCGTGGACCGCGTCGACGCCCTGCCCGGCCTGCCGCCGTCGTCGGGCGCCCTGCTGGTCGACGCGACCGCGGCCGGGGACCGGGTGGGGATCGCACCGGGGACCGCGCGCCTCGCGCTGGTCGGCCTGACCGGCGCCGCCGACGCCGCCGAGGCTCCGGACCCCGCCCGGGTCGAGGCGGAGATCGGCGTGCTGCTGCCCACCGCCGTCGTCGACGACCCGCGCGAGGGCGAGCAGGCGCTGCTGTCCTCGCCGGCCGCCGCCGGTCTGGCGGCGGCGTTCACCGTCGCCGTCGCGCTCTCGGCGCTGCTGTGCGTGGCGACCGTGACGCTGATGCTCGTCCTGGCCACGCCGGCCCGCACCCGCGTGCTGGCCGTGCTGCGCACCCTCGGTCTGCCCCGCCGCGCCGAGCGCGGACTGGTGGCGTGGGAGGTCGGGCCCTGGGCGGTCGCCGCGCTGCTGGCGGGCGGCGTCGTGGGCGTGCTGGTGCCGGCGCTCGTGCTGGCGGTCGTCGACCTGACCCCGCTGACCGGGGGTGCGGCGTCGCCCGCGCTGGTGGTCGACCCCTGGGGGCCCGCGGCGCTCGCCGGGGGCCTGCTCGTCGCGGTGGTCGCCGGCACGCTGGTGGCCGGGTCGGTGGGGCGGCGCCGGGGTGCCGAGACGTGGCGGACGGCGACGGACTGAMSLLLLVRRHLRTAAGAVLALAAVTVLAAGTLSTVPRAVAAVHADQLAHVTATTSALTSDVIATTPVFPGYGEDYDAYGGVHREGPTDGEVDPPVPDLDGYLAGLRDLAASRPAPLSGVLGEPDLVVAADRTGVERVEGNDVAAPGIVLQAGPSASAQVQVVEGRWPASTPVPADPTAMLPGSDGVVEFEPTAMEVAVSTAVAAELDWALDSVHATDEPLLPPLHVVGLWEPQDADADYWAHVPRTMTPEIVFDPNIGKIVTAGVFADPATLGSWVPAPSARVWFPVDTSGVAAQDAPALLAQLRGLTATTTTVVDGDSAVLEPATGLLDVLETALGQRAGIDAIVTVLAVGPLGALAAVLVLAAGLVVDRRRAALALARARGASMTWVRGVVALEGLVVGLPAAALGFAAGLAVVPGTVTSGQVGAAVLCGLAPALVLAAVTPAAGLRAGRADLGAVPARRRHLRLGVEAGVVLAAAGTSWLAVDRGVVAATGSSTGPTGTGGGVDPLLAVAPLLVGVAVALVTFRLVPPVARAVEHLAARGSGLVPFLGAARVRRDPAGGPLPAVALVLAVGVALSSVVLSGTVRQGVTDEAWAEVGGDVRVAGPVVDGPTADALRGIDGVAAVAPVADAGRFALGRVGSGSPVTVWTTDAAELARVQQDVPGAPDGLDRLAATDDGRLPVVAVGSGAGQVTDGQVLSGPGGARTEVVVVDRVDALPGLPPSSGALLVDATAAGDRVGIAPGTARLALVGLTGAADAAEAPDPARVEAEIGVLLPTAVVDDPREGEQALLSSPAAAGLAAAFTVAVALSALLCVATVTLMLVLATPARTRVLAVLRTLGLPRRAERGLVAWEVGPWAVAALLAGGVVGVLVPALVLAVVDLTPLTGGAASPALVVDPWGPAALAGGLLVAVVAGTLVAGSVGRRRGAETWRTATDPGPT0013350_908DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
AK018_051352835hypothetical proteinATGCTGCGGTCCGCGTGGCGGCGTGCTGTCTCGCACCGCGGCCTGCTCGCGCTGGTCGCCCTGCTCGTCGCCGCGATCGCGGCGACGAGCGGGGTGACCGCGGGGGCGGTCGCCGCCACGACGACGGACGCCGCCCGCACGGCCCTCGGTGACGGCTCGACGGCGTCGCTGCAGGTGACGACACGGGTTGCCGAGGACGCGGCGGCCCAGGACGCCGGGGTGCGCTCCACCGTCGCCGACCTGTTCGGCGACGCCCCGCTGCGCGTCGACCGCACCGAACGCCCCGACGGCGACGACACCCCGTTCGTGGAGTGGACGCTGACTCCGGTCGTGACGGAGGTCGTGCCCGCCGACCTCGCCGGGTTCGCCGCGGGCGGCGACGCGCTGCACGGTGTGCTGCGGGCCGACGACGCGGTGGCCGTCCGCGGCCTGACCGTCGAGGGCGACCTGGCGCAGCGTGCGGTCACCGAGCAGCAGGCCCAGGCCGCCGCCCGGGCGGTGCTCACGGTGCCGGTCGCGCTGCTCGTCCTGGTGGCTCTGGTCGCGCTGGTGCAGGTCGCCCGCCTGCTCGCGCAGGCCCGGGAGCGCGAGACCGAGATCCTCGTCGCCCGCGGCGCCGACCCGGGCCGGCTGACGGCCGCTGCGCTCGGAGAGTCGGCGACGGTGTGCCTGCTCGCCGCCGCCGCGGGTTCCGTGGCCGCCGCCGGTGCCCTGAGCGTGGCCGGCACCCCCTCGCCGGCTCCGACGGTGCTGGTCGCGGGGGGCCTGGCCACCGTGGTCGCCGGTACGACCGTGCTCACCGTCGTGGCCGGTTCCCGGGCACGCGCCGTCGCGCGCCGTCGGCTCGCCGACCGGTCGGGACGGCTGCAGCGCGCCGCGGCCGCCGGCACCGTCGCCGGTGTCGGGCTGCTCGCCGTCGCCGGCATGTGGCGGCTGCGCTCCCTCGGGTCGCCGCTGGTCGTGGCGGACGGCGCCACGACCTGGGACCCTCTCGCCGCCGCGGGGCCGGCGCTCGCGCTCGCCGCGCTGGGCCTGCTCGCGCTGGCCCTCCTGGGTCCGCTCGCGCGGGCCGGAGCGCGGCTGGCCGCGGGGGGTCGCGGTGCGACCGCCGTGCTGGCCGCCCGCCAGGTCTCCCGCGGCCTGCGGGTCGCCGTCGTCCCGGTGGTGCTGCTGGTGCTCGCCGGGGGGTCGTCGGTCCTGGCCGCGGCCTACGCCGGTACGGCCCCGCAGGCGCGGACCGACCTGGCCACGCAGCAGCTCGGCACCGACGTCCGAGCCGTCGACGATGCCGGGGCACGGCTGGCGCCGGGCCGCCCGCCGGTCCGGACCGCGCGGCTCGCGGACCTGGACGGGGCGTCCGGCGCGGTCCCCGTCCTGGCCCAGGACGCCACGGTGCAGGGCGACCCTCTCGGGCTCGTCGCGATGCCGGCCGACGCCGCGCCGGACGCGGTCCGTCCCGTCGAGGCCGCCGCGGCCGTCGCCCCGCTGCGCGGCACGGACCCGTTCGCCGCCGCGCCCGTCCTGCCGTCCGGGACGACGGGGCTCACGATCGACCTGACGGGGACCGCTGTCGCCGATACCGCCGCGCTGCCCCTCGGGACCCGCGACCGGTCCGAGCAGGCGCTGGACGTCGCCGTCACGGTGTGGCTCGTCGACGCGCACGGAGCCCTGGTCGTCCTGGACGCCGGCGCGCTGACGCTGACGGACGGATCCGCCGGAACCGAGCTGGCCGTCCCCGTCCCCGCAGCCCTCGCCGACGCTTCCGAGCTGCGGGTCGCGGCGCTCGAGCTGGACCTGCCGGGCGTCCTTGTCCCCACCGAGGTGTCCGTCGCGGTGACCGGCCTCGACGCGGACGTCGAGGGCGCACGGGTCCCCGTGGACGTCGCCGGGACCCGCTGGGCCGCCGCGGGGACCGCCCCGACCGCCTCCGACGACGGCGTTCTCGGCGCCGACCTGACGCTCGGGTCGCGTGACGGGACCTGGCTGCGCCTGCTGGCCGCCGACGGGCCGGGAGTGCCGCGACGCCCGGTGGTCCCGGCGGTGGTCACCGACGCGGCGGCGCAGCGCTGGGACGCCGCCGTGGGGGACGAGCTGGAGGCCACCGTGGCCGGTGCCGAGGTGGTCCTCCGGGTCGCCGCGACCACCGACGCGGTGCCCGGGGAGTCGACGGCCGAGGCCGCCTGGGTCGATCTCGGGACCCTGGACGCCGCGCTGCTCGCCACCACGGGGCAGCTGCCCCGGCCCGCCGAGGCGTGGGTCGCGGCGGACGAGCCCGGCGACGCCGCCGCCGTCGAGCGCCTCGCCGACGACGTGGCACAGCTCCTCGGTCCGACGGACGCCACCGACGCCGGCGACGGCAGCCCCGGCGTCGTGGTCCGGACCGTCGCCGACGTCACCGCGTCCGACGCCGGGGCACCGGTCCGCCTCGCCGTCGTCCTCGCGGCCGCCGGGGCGACGGTGCTGGCCGTCCTCGGCCTCGCCGTCGTGGCCGTCACCACCCTGGCCGCGCGACGCGGCGAGGTCGCCGTGCTCCGCGCGCTGGGCGTGGGCCCCCGGCAGCAGGGCAGGGGGCGCGCCGGCGAGCTCGTCGTGCTCGGCGGCGTCGGTCTCGGCGCCGGCGTCCTGGCCGGGGCGGTCCTCGCGGCCGTCACCGTGCCCGGTCTCGCGCACGCCGTGGTGCGGGGCGGGACGACGCCGGATGTCGTGGTCGACGCCGGGGTGCTGGTGCCGCTGCTCCTGGCGGCCGTGGCCGGTGTGCTGCTGGTCGGCGCCGTGGTCGCCTCCCGGGTGGCCGCGCAGGCGCGCGACACGACCTACCGGGCGGAGGTGCGATGAMLRSAWRRAVSHRGLLALVALLVAAIAATSGVTAGAVAATTTDAARTALGDGSTASLQVTTRVAEDAAAQDAGVRSTVADLFGDAPLRVDRTERPDGDDTPFVEWTLTPVVTEVVPADLAGFAAGGDALHGVLRADDAVAVRGLTVEGDLAQRAVTEQQAQAAARAVLTVPVALLVLVALVALVQVARLLAQARERETEILVARGADPGRLTAAALGESATVCLLAAAAGSVAAAGALSVAGTPSPAPTVLVAGGLATVVAGTTVLTVVAGSRARAVARRRLADRSGRLQRAAAAGTVAGVGLLAVAGMWRLRSLGSPLVVADGATTWDPLAAAGPALALAALGLLALALLGPLARAGARLAAGGRGATAVLAARQVSRGLRVAVVPVVLLVLAGGSSVLAAAYAGTAPQARTDLATQQLGTDVRAVDDAGARLAPGRPPVRTARLADLDGASGAVPVLAQDATVQGDPLGLVAMPADAAPDAVRPVEAAAAVAPLRGTDPFAAAPVLPSGTTGLTIDLTGTAVADTAALPLGTRDRSEQALDVAVTVWLVDAHGALVVLDAGALTLTDGSAGTELAVPVPAALADASELRVAALELDLPGVLVPTEVSVAVTGLDADVEGARVPVDVAGTRWAAAGTAPTASDDGVLGADLTLGSRDGTWLRLLAADGPGVPRRPVVPAVVTDAAAQRWDAAVGDELEATVAGAEVVLRVAATTDAVPGESTAEAAWVDLGTLDAALLATTGQLPRPAEAWVAADEPGDAAAVERLADDVAQLLGPTDATDAGDGSPGVVVRTVADVTASDAGAPVRLAVVLAAAGATVLAVLGLAVVAVTTLAARRGEVAVLRALGVGPRQQGRGRAGELVVLGGVGLGAGVLAGAVLAAVTVPGLAHAVVRGGTTPDVVVDAGVLVPLLLAAVAGVLLVGAVVASRVAAQARDTTYRAEVRNANANANANA
AK018_051361755gsiA_4COG1123Glutathione import ATP-binding protein GsiAATGACCACCCTCGATCTCTCCTCCGCGCCGGACGCCACCACCCCCGGCGACGCCGTGCTGTCCTTCACCGACCTCGAGGTGACCTTCGGCACCGAGTTCGGCGACGTCCACGCCGTCAAGGGCATCTCCCTGGAGGTGCGTCCCGGTGAGGTCGTCGCCCTGGTGGGCGAGTCCGGGTCCGGCAAGTCCGTGACGTCGACGACGGCGCTCGGCCTCCTGCCGGGCAACGCCCGCGTCTCGGGACGGGTCCAGGTCGGCGACCAGATCGTCGGCGACCTGGACCAGGCGGGGCTGCGCAAGATGCGCGGCAACGACATCGCCATGGTGTTCCAGGAGCCGATGACGGCGCTCAACCCGGTGCTGACGATCGGCGACCAGCTCACCGAGGCGCTGCAGCTGCACGGCATCGCCTTCGGCAAGCAGGCGATGGCCCGGGCCGCCGAGCTGCTCGACATGGTCGGCATCCCGGAGCCGGAGCGGCGTCTCAAGCAGTACCCGCACGAGCTGTCCGGCGGTCAGCGCCAGCGCGTCGTCATCGCCATGGCGATCTCCTGCGACCCCAAGGTGATCATCGCCGACGAGCCGACCACGGCCCTCGACGTCACCGTGCAGGCCGACATCCTCGACCTGCTGCGCTCGTTGAAGGACAAGCTCGACACCGGCATCCTGCTCATCACCCACAACATGGGTGTGGTCGCCGACATGGCCGACCGCGTCGCGGTGATGTTCAAGGGCGACCTCGTCGAGACCGGCAGCGCCGCCCAGGTGCTGACCGACCCGCAGCACGACTACACCAAGCGGCTGCTCAAGGCGGTGCCGCACCTCGGCGAGGGCCGGGGCCAGGACGACGCGGCGGTGGCCCGCGCGGTGGAGACCGAGCACGCCGACGCCGAGACCCCGGCGCTCGAGCTGGACCAGCTGGTCATCGAGTACCACCGGCTCGGCAAGCCGCCGTTCCGCGCGGTCGACGACGTCTCCTTCACCGTCGGGGCCGGCGAGATCGTCGGACTGGTGGGCGAGTCCGGCTCGGGCAAGTCCACGATCGCCAAGTGCGCCCTCGGTCTCATCCCGGCGCGCTCGGGCTCGGTGCGGATCCTCGGCGAGGACTTCGGCGCGATGCGCAAGAAGCAGCTCAAGGACCTGCGCCGGCGCATCGGCGTCGTCTTCCAGGACCCGGCGGCCTCGATCAACCCGCGCTTCCCCGTGGGCGAGGCCATCAACGAGCCGCTGGCCGTGCACAAGATCGGCGACGCGGCCTCGCGGCAGAAGCGGGTCATGGAGCTGCTGGACGCCGTCGAGCTGCCCCGGTCGTACTACAACCGGTACCCGCACGAGCTGTCCGGCGGTCAGCGCCAGCGCGTCTCCATCGCGCGGGCGCTCACCCTCGAGCCGGAGCTCATGGTGGCCGACGAGCCGACCTCGGCCCTCGACGTGTCGGTCCAGGCCGCCGTGCTGGAGATGTTCCTGGACCTGCAGAGCGAGTTCGGGTTCGCGTGCCTGTTCGTCAGCCACGACCTGGCCGTCATCGACATGCTCGCCCACCAGGTGGTCGTCATGCAGGAGGGCCGCATCGTCGAGAAGGGGACCCGCGACCGGGTGCTGCGCTCCCCGCAGGAGGAGTACACCAAGCGACTCCTCGCCGCGGCGCCGGTTCCGGACCCGACCGAGCAGAAGGAGCGTCGCGAGGAGCGGCACCGGCTGCTCGCCGAGTGGGGCGACGACGTCTCCGAGATCCGCCTGCGCGACGGGGCCTGAMTTLDLSSAPDATTPGDAVLSFTDLEVTFGTEFGDVHAVKGISLEVRPGEVVALVGESGSGKSVTSTTALGLLPGNARVSGRVQVGDQIVGDLDQAGLRKMRGNDIAMVFQEPMTALNPVLTIGDQLTEALQLHGIAFGKQAMARAAELLDMVGIPEPERRLKQYPHELSGGQRQRVVIAMAISCDPKVIIADEPTTALDVTVQADILDLLRSLKDKLDTGILLITHNMGVVADMADRVAVMFKGDLVETGSAAQVLTDPQHDYTKRLLKAVPHLGEGRGQDDAAVARAVETEHADAETPALELDQLVIEYHRLGKPPFRAVDDVSFTVGAGEIVGLVGESGSGKSTIAKCALGLIPARSGSVRILGEDFGAMRKKQLKDLRRRIGVVFQDPAASINPRFPVGEAINEPLAVHKIGDAASRQKRVMELLDAVELPRSYYNRYPHELSGGQRQRVSIARALTLEPELMVADEPTSALDVSVQAAVLEMFLDLQSEFGFACLFVSHDLAVIDMLAHQVVVMQEGRIVEKGTRDRVLRSPQEEYTKRLLAAAPVPDPTEQKERREERHRLLAEWGDDVSEIRLRDGAPGPT0004435_1837DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
AK018_05137909hypothetical proteinATGACTGACCTGAAGAATCCGCCGGCCGAGGAGAAGTCCTACAGCCAGGGCCAGCTCGTGCGGATGCGGTTCTTCCGCCACAAGGGAGCCATCATCTCGATGGCGGTCATGGCGCTCGTGGTCCTGATCGCCTTCACCTCGATCGGCATCGGCCCGATCCCCGGCTGGTGGGACAAGGTGCCCGAGCTGCAGTACCCGAAGATCGGCGACGGCGCCCCCAGCTGGGAGCACCCGTTCGGTCAGGACACCGGCGGCAAGGACTACTTCGCCCTGGTGATGCTCGGGACCCAGAAGTCCCTCATCATCGCGTTCGGCGTGGGGATCATCTCCACCGTCATCGGCACGCTGGTCGGGGCCCTGGCCGGCTACTTCCGCGGCTGGGTCGAGGCCGTGCTCATGCGCATGACGGACCTGCTGCTCGTCATCCCGCTGCTGGTGCTCGCCGCGGTGCTGGGCAAGATGGCCAGCTCCTGGGGCATCTGGGGACTGACGCTCATGCTCGGCATCGTCACCTGGACCGGTCTCGCCCGCCTGGTGCGCGGCGAGGTGCTGTCCCTGCGCGAGCGCGAGTTCGTCGTGGCGGCCTACGCCGTCGGCACGAGCAGCAGCCGGACGATCTTCAAGCACATCCTGCCCAACGCCATCGGCACGATCATCGTCTCGGCGACGCTGGCCATCTCGGCCGCGATCCTGCTCGAGACGGCGCTCAGCTTCCTCGGGTACGGCGTGCAGGCACCGGACACCTCGCTGGGACTGCTGATCCAGCAGTACCAGACGGCGTTCACCACGCGCCCGTGGCTCTTCTGGTGGCCTGGACTGATGATCCTCGCCATCGCCCTGAGCGTGAACTTCATCGGCGACGGTCTGCGCGACGCGTTCGACCCCCGCCAGAACAGGACCAAGGCCTGAMTDLKNPPAEEKSYSQGQLVRMRFFRHKGAIISMAVMALVVLIAFTSIGIGPIPGWWDKVPELQYPKIGDGAPSWEHPFGQDTGGKDYFALVMLGTQKSLIIAFGVGIISTVIGTLVGALAGYFRGWVEAVLMRMTDLLLVIPLLVLAAVLGKMASSWGIWGLTLMLGIVTWTGLARLVRGEVLSLREREFVVAAYAVGTSSSRTIFKHILPNAIGTIIVSATLAISAAILLETALSFLGYGVQAPDTSLGLLIQQYQTAFTTRPWLFWWPGLMILAIALSVNFIGDGLRDAFDPRQNRTKAPGPT0004450_3225DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
AK018_051381518hypothetical proteinGTGCTCAAGTTCATCCTTCGACGACTGGGGATCTCGTTCCTCGTGCTGTGGGCGGCGTCGCTGCTCATCTTCGTGCTGACGATCAACGCGGGCGACCCCCTGGCAGATCTGCGCGAGTCCAACGCCGAGAACCGCGAGAGCCTCATGGCCCTGCGCACCGAGCAGATGGGCCTCGACATGCCCTGGTACGAGCGCTACTGGGAGTGGCTCTCCGGCGTGGGCGGCTGCTTCACGGGGAGCTGTGACCTGGGAACGACGGTCAACGGCGCGAACGTCCTCGACCTGACGGCACAGGCCGCCGGCTCGACGCTGCGACTGGTGACGCTGGCGACCCTGCTGGCGATCGTCGTCGGCATCGCCGCGGGTATCGTCTCCGCGATCCGTCAGTACACCGGCTTCGACTACGGCGTCACGTTCCTCGCCTTCCTCTTCTTCTCGCTGCCCGTGTTCTGGGCGGCGGTGCTCCTCAAGGAGTACGGCGCGATCCGCTTCAACGACTGGATCGCCAGCGGCGACATGGAACCACCGATGATCCTCGGCTTCGCGCTGGTCGCGGCGGTGATCATCCCCGCGGTGCTGGGCGGCCCCTGGCGTCGCCGGCTCTACACCGGCGCGGCCACCTTCGCCTTCGTCGCCGTGCTGCTGTACGTGCTGAACGTCCTGGACTGGTACCGGAACCCGTTCTTCGGGCTCGGCATGGTCCTGCTCACCTCGTTGGGTGCGGCGGTGCTCGTCACGGCACTCGTCGCCGGGCTCGGCAACCGCCGCGTGCTGTACGCGGCGCTGACGACCGCCGTCGTCGGGACGCTGAGCTACCTGCTCTTCAGCGGGATCCTGCTCGAGCCCACGTGGCTGCAGCTGGTCGGCCTGTTCGTGCTGGCGATCGTCGTGTCGGTCGCGATCGGCGCCGCCTGGGGCGGGTACGCCCGCAAGCAGGCCATGTTCATCTCGGCGGTCACCGGCGTCATCACCTCCGGGGTGATCGTCTTCGACATCCTGGTGGCGCACTGGGCCGGCTTCCTCGAGCTCAAGTCGCGGCCGATCTCCACGATCGGGTCGCAGACGCCGAACTTCACCGGCGACTTCTGGGAGTCGGTGCTGGACTCCGGGATGCAGCTGATCCTGCCGACGATCGTGCTGACCCTCGTGTCGGTCGCCTCGTACTCCCGGTACACGCGGTCCTCGATGCTCGAGGTGATGAACCAGGACTACGTCCGTACGGCGCGCTCGAAGGGCCTGTCCGAGCGGGCGGTCATCACCAAGCACGCGTTCCGCAACGCCCTGATCCCGATCACCACGATCGTGGCCTTCGACTTCGCGGGCCTCATCGGCGGCGCGGTGATCACCGAGCGCGTCTTCGGCTGGAAGGGCATGGGTGCCATGTTCCAGGAGGGCCTGGACCGGGTCGACCCCGACCCGGTGATGGCCTTCTTCCTGGTCACGGGCACGGCGGCGGTGCTGATGAACATGCTCGCCGACATCGCCTACGCCTACCTCGACCCACGGATCCGGCGGTGAMLKFILRRLGISFLVLWAASLLIFVLTINAGDPLADLRESNAENRESLMALRTEQMGLDMPWYERYWEWLSGVGGCFTGSCDLGTTVNGANVLDLTAQAAGSTLRLVTLATLLAIVVGIAAGIVSAIRQYTGFDYGVTFLAFLFFSLPVFWAAVLLKEYGAIRFNDWIASGDMEPPMILGFALVAAVIIPAVLGGPWRRRLYTGAATFAFVAVLLYVLNVLDWYRNPFFGLGMVLLTSLGAAVLVTALVAGLGNRRVLYAALTTAVVGTLSYLLFSGILLEPTWLQLVGLFVLAIVVSVAIGAAWGGYARKQAMFISAVTGVITSGVIVFDILVAHWAGFLELKSRPISTIGSQTPNFTGDFWESVLDSGMQLILPTIVLTLVSVASYSRYTRSSMLEVMNQDYVRTARSKGLSERAVITKHAFRNALIPITTIVAFDFAGLIGGAVITERVFGWKGMGAMFQEGLDRVDPDPVMAFFLVTGTAAVLMNMLADIAYAYLDPRIRRPGPT0004445_258DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
AK018_051391845COG0747putative lipoproteinGTGAAGATCAGGCGTGCAAGCGCGGCCGTCGCGGCCGTCGCCACCGGCGCTCTCCTGCTGTCGGCCTGCTCGAGCCCGGCCGCGGACGACCAGCCGGAGACCGAGGAGACCATGGCGGAGGAAGAGACCGCCGACACCGAAGAGATCACGGACTCGTGCAAGGTCGACACCGGTGTCACCGAGTCGGCCGACGGCGAGATCCAGTACTCGGCCGGTGAGGTGCAGTGGGCCGGCTACAACGGCAACCTGCCCGACACCTACTCGACCTACAACTCCGTCGTGAACGACCGCATGATGGGCGGCTTCATGTACTTCGGCGTCGACGGCACCGTCTGCCAGGACGAGGAGTACGGCTCGTTCGAGGCCGTGTCCGAGGACCCGCTGCAGGTGCAGTACACCCTCGCCGACGACGCGACGTGGTCCGACGGCACCCCGATCACCTACGCCGACTACCTGCTCGACTGGGCGACCCAGGCGGTCACCGTCGACGGCACGATCACCGAGGACGCCTCGGAGGAGCCGCTGTTCAACAACGTCAGCGGCCTGACCCTGGGCGACTACGTCCCCGAGGGCCCGCAGGCGGACTCGGCGGACGCCAAGTCGTTCCAGTACGACTACGAGCGCGTCTACGCCGACTGGCAGCTCAACGTCTCCGGCGCCTTCCCGGCGCACGTCGTGGCCGAGCAGGCCGGCGTCACCACCGAGGAGCTCGTCACCGCCATCGAGGAGCTCGACATGTCGGTCCTCGAGCCGGCCGCCGAGTTCTGGAACACCGGCTGGCTGTCCTCGACCCCGGGCGAGCTGCCGGACCCGGCGCTGGTCCCGGTCTCCGGTCCGTACATGCTCAAGGAGGACGGCTGGATCGCCGGTCAGTCCATCACGCTGACCGAGAACGAGAACTACTGGGGCACCCCGCCCGCGACGAAGGAGCTCACCTTCCGCTTCGCGGCCGCGGACACCCACGTGCAGGCGCTGCAGAACGGTGACCTCGACGTCATCGAGCCGCAGGCCACGGTCGACACGATCCCGCAGCTCGAGCAGATCGGCTCGTCCGTCGAGGTCCTCACCGGTCAGACCCTGATCTGGGAGCACCTGGACTACAACTTCGGTGACAGCTCGGTCTTCGCCGACAACCTGGCCGCCCGCGAGGCCTTCGCCTACTGCGTGCCGCGTCAGAAGATCGTCGACGACCTGATCGCGCCGATCGACGAGAACGCGGTCGTCATGAACGCCCGCGAGGTCTTCCCGTACCAGACCGAGAAGTACGAGGAGGTCACGGCGGAGTCCTACGACGGCCGCTACGACGAGGTCGACCTGGAGATGGCCACGGAGAAGTTCGCCGAGGCCGGTCTCGAGGAGGGCACCGAGATCCGCATCGGTTACTCCGCGCCGAACCCGCGTCGTGCCGACGAGGTCGCCGCCATCAAGTCGTCCTGCGACCAGGTGGGCTTCAACATCGTCGACGCCGGTGACCCGGAGTTCTTCGCCGCCGGTGGTGCGCTGGAGACCGGTGACTGGGAGATCGCCCTGTTCGCCTGGGCCGGTTCCGGTCAGATCGCCTCCGGTCAGAACATCTACGCCTCCGGTCGCCCGCAGAACTTCGGCGGGTACTCCAACGAGACGGTCGACGAGGCCTGGGACACCCTGGCCTCGACGGTCGACGAGTCGGTCCACCTGGAGCAGACCAAGGTGATCGAGTCCGAGCTGTGGGACACCCTGTACGGCATCCCGCTGTTCGCTCACCCGGGTGTCGTCGCGCACTCGGCCGACCTGGAGAACGTCCGCTTCACCGCGGCCCAGGACGGGATCGTCTGGAACGCCGAGCAGTGGTCTCGCGCCTCCTGAMKIRRASAAVAAVATGALLLSACSSPAADDQPETEETMAEEETADTEEITDSCKVDTGVTESADGEIQYSAGEVQWAGYNGNLPDTYSTYNSVVNDRMMGGFMYFGVDGTVCQDEEYGSFEAVSEDPLQVQYTLADDATWSDGTPITYADYLLDWATQAVTVDGTITEDASEEPLFNNVSGLTLGDYVPEGPQADSADAKSFQYDYERVYADWQLNVSGAFPAHVVAEQAGVTTEELVTAIEELDMSVLEPAAEFWNTGWLSSTPGELPDPALVPVSGPYMLKEDGWIAGQSITLTENENYWGTPPATKELTFRFAAADTHVQALQNGDLDVIEPQATVDTIPQLEQIGSSVEVLTGQTLIWEHLDYNFGDSSVFADNLAAREAFAYCVPRQKIVDDLIAPIDENAVVMNAREVFPYQTEKYEEVTAESYDGRYDEVDLEMATEKFAEAGLEEGTEIRIGYSAPNPRRADEVAAIKSSCDQVGFNIVDAGDPEFFAAGGALETGDWEIALFAWAGSGQIASGQNIYASGRPQNFGGYSNETVDEAWDTLASTVDESVHLEQTKVIESELWDTLYGIPLFAHPGVVAHSADLENVRFTAAQDGIVWNAEQWSRASPGPT0004430_1702DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
AK018_05140417hypothetical proteinGTGCCCGTGACCACCATGGCCACCGTCGGCGCGGCGGCCGCCTGGTCGACGCCGGTCGACATGCTGCGGTACGCCGAGGCGCTGGTCGGCGGCGGGGCGAACAGGCACGGCCGCGCGCTGGCGCCGACGAGCGTCGCGGACACGGTCGCGCCGCACTACCAGCCCGACCCGCGGATCCCCGGGATGGGCCTCGCGTTCTTCCGGGGGCGCCTGGGCGACCGCCCGATCGTCGGCGCCGGGATCCAGGTGCGAGTCGGGCCGGACGGCGATGCACCTGGAGGTCATGCCGCTGACGGCGTACCGGCGTGGACGTGCCACGACGTGAACGTCCGCGCGCGACACCCAGCCGCTCACCGACACCCGGCGCCGGGCTACTCCGACTCGTACTTGAACGACAGCTGGAGCCTGGTCCGGTAGMPVTTMATVGAAAAWSTPVDMLRYAEALVGGGANRHGRALAPTSVADTVAPHYQPDPRIPGMGLAFFRGRLGDRPIVGAGIQVRVGPDGDAPGGHAADGVPAWTCHDVNVRARHPAAHRHPAPGYSDSYLNDSWSLVRNANANANANA
AK018_05141207secE2COG3360Calcium dodecinATGAGCGTGTACCGGGTGATCGACGTGATCGGGACGAGCTCCTCCTCCTGGGAGGAAGCGGCGGCAGAGGCCATCAGGACCGCGAAGGGATCGCTGCGCGACATCAGAGTGGCCGAGGTGACCCAGCAGGACGTCGTCGTGGGAGATGACGGGGAACTGGTCTACCGGACCAGGCTCCAGCTGTCGTTCAAGTACGAGTCGGAGTAGMSVYRVIDVIGTSSSSWEEAAAEAIRTAKGSLRDIRVAEVTQQDVVVGDDGELVYRTRLQLSFKYESENANANANANA
AK018_051421086ychF_2COG0012Ribosome-binding ATPase YchFGTGGCTCTCACTATCGGCATCGTCGGCCTGCCCAACGTCGGCAAGTCCACGCTCTTCAACGCACTGACCCGGAACTCCGCGCTCGCGGCGAACTACCCGTTCGCGACGATCGAGCCCAACGTCGGGGTGGTCCCGCTGCCGGACGAGCGGCTGGGCAAGCTCGCGGAGATCTTCTCCTCGGAGCGCGTGCTGCCGGCCACGGTGTCGTTCGTGGACATCGCCGGCATCGTCAAGGGCGCCTCGGAGGGCGAGGGGCTGGGCAACCAGTTCCTGGCCAACATCCGCGAGGCCGACGCCATCTGCCAGGTGACCCGCGCGTTCGACGACGGCGACGTGATCCGCGTCGAGGGGTCCACCGACGCCTCCGGCGACATCGAGACCATCTCCACCGAGCTCATCCTGGCCGACCTCCAGACGCTCGAGAAGGCGCTGCCGCGCATGGAGAAGGAGGTCAAGATCAAGAAGGGCGACCCCGTCCTGTTCGCCGCGGCGAAGAAGGCCCAGGAGATCCTCGAGGAGGGCACCACGCTCTTCCAGGGCGCGGCCGCCGCCGGCCTCGACCTCACCGAGGTGGCCCCGCTGCAGCTCATGACGGCCAAGCCGTTCATCTACGTCTTCAACACCGACGACGCCGGGCTGGCGGACGAGGCCATGCAGACGACGATGCGCGAGCTCGTCGCCCCGGCCGAGGCGATCTTCCTGGACGCCAAGTTCGAGGCCGAGCTCGTCGAGCTCGAGCCGGACGAGGCCGCGGAGATGCTCGCCGAGACGGGCCAGGAGGAGTCCGGCCTGGACCAGCTGGCCCACGTCGGCTTCGACACGCTGGGTCTGCAGACGTACCTCACCGCCGGCCCCAAGGAGGCCCGTGCGTGGACGATCCGCAAGGGCTGGACCGCCCCGCAGGCGGCCGGCGTCATCCACACCGACTTCGAGCGCGGCTTCATCAAGGCCGAGGTCATCTCCTTCGAGGACCTCGTCGAGGCCGGGTCCGTCGCCGCCGTCAAGGCCGCGGGCAAGGCGCGCGTCGAGGGCAAGGACTACGTCATGCGCGACGGCGACGTCGTGGAGTTCCGCTTCAACGTCTAGMALTIGIVGLPNVGKSTLFNALTRNSALAANYPFATIEPNVGVVPLPDERLGKLAEIFSSERVLPATVSFVDIAGIVKGASEGEGLGNQFLANIREADAICQVTRAFDDGDVIRVEGSTDASGDIETISTELILADLQTLEKALPRMEKEVKIKKGDPVLFAAAKKAQEILEEGTTLFQGAAAAGLDLTEVAPLQLMTAKPFIYVFNTDDAGLADEAMQTTMRELVAPAEAIFLDAKFEAELVELEPDEAAEMLAETGQEESGLDQLAHVGFDTLGLQTYLTAGPKEARAWTIRKGWTAPQAAGVIHTDFERGFIKAEVISFEDLVEAGSVAAVKAAGKARVEGKDYVMRDGDVVEFRFNVNANANANANA
AK018_051431053hypothetical proteinGTGAATCCCGAGAACGACCGACCTTCCGTGACGCTGCCCGACGGCTGGACGGTGGTGGTTCCCGACCTGGCCGACGCCGCTCGGCTGGGCGAGCTGCGGGCGCTCCAGGCGGCTCCGCACACCGGTTCCGACACCCCCGACACGGCCCAGATCGAGAACGAGATCGCCGGCGCCGCCTCGTGGACCCGGCGGCACCTCGCGGTCCAGGACGCCGACGGCGAGATCCGCGCCTGGGCCCACGCGCACGACCGGGCGGCGGGCCGGACCGTGCTCGGCATCGAGATCGACCGGTCGCTGCCCCGCGAGACCCAGGACCGGCTGGCGGCCTGGTGCTACGGCGAGCTCGCCGCCGTCGGGCGGGAGATGGCCCAGCTGCGTGGCGAGTCCGCGACGCAGCTCGACGCCGGTGCCTTCGCCGGGGACGAGCGGCTGCGCGGCTGGCTCGCCGACGCCGGGTTCACCCACGTGCGCACGTGGTGGCAGATGACGCGCCCGGTCACGCCGGACGAGGCCGAGCCGGGGGTCTTCCCCGAGCCGAAGCCGGGGGTGGAGATCCGCCGGGTCGCGCAGCACGAGAACGGCATGCCGGTCGCCGAGGACCTCAACGCCGTGCACCAGGTGCTCGAGACCGCCTTCACGGACCACTTCAACTCCTACCAGGAGTACTTCACCGAGTTCGTGCAGCGGCTGCGCGAGGACCCGGGCCACCGCTGGGACCACTGGTGGCTCGCCTGCGTCGACGACCCGGAGGACCCCGACGCCGACCTGCTCCCGGCCGGTGCCCTGGTGGGCTCGGAGCTGGTCCCCGACGCCTCCGGGGTGCGCGGGACCTACATCGACTACATCGGCGCGCTGGCCGAGGCCCGCGGCCGCGGGGTGGCCACCGCCCTGCTGCACGCCGTCATCGCCGACGCCGCCTCCCGGGGCCGCAACCGCGTGGGCCTCGAGGTGGACGCCGACAGCCCCACGGGTGCAGAGTCGCTGTACACGAAGCTCGGGTGGCGCACGAAGTACGTCACCGAGTCCTGGCACCGCGAGATCACCGTCGACTGAMNPENDRPSVTLPDGWTVVVPDLADAARLGELRALQAAPHTGSDTPDTAQIENEIAGAASWTRRHLAVQDADGEIRAWAHAHDRAAGRTVLGIEIDRSLPRETQDRLAAWCYGELAAVGREMAQLRGESATQLDAGAFAGDERLRGWLADAGFTHVRTWWQMTRPVTPDEAEPGVFPEPKPGVEIRRVAQHENGMPVAEDLNAVHQVLETAFTDHFNSYQEYFTEFVQRLREDPGHRWDHWWLACVDDPEDPDADLLPAGALVGSELVPDASGVRGTYIDYIGALAEARGRGVATALLHAVIADAASRGRNRVGLEVDADSPTGAESLYTKLGWRTKYVTESWHREITVDNANANANANA
AK018_051441605hypothetical proteinGTGGTTGCGCACTTCGTCCGACTGAAGCTGACGCTGCTCGGCAACACGCTCCGGCGCAGCGTGTGGCAGGCGATCGGGCTGGTCGTCGCGGTGCTGTACGGCGCCGGGGTCGTCGCCCTCGCCGTCAGTGCCGCCGTCGCCGGCGGGATCGCCGCCCCCGTGGTCACCGGGCAGGTCCTGACCGTGGTGGGTTCCGCCGTCGTGCTGGGCTGGTGGATCGTCCCGCTGTTCGCGTTCGGGCTGGACTCCACGCTCGACCCGATGCGGTTCACGACCTTCGCCGTCCCGCGGCGGCAGCTGTTGGCCGGCCTGGCCGCGGCCGCGCTCGTGTCCGTGCCGGCCGTCGGGACCCTGCTGGCCGCCCTCGGCGTCTCGTTCGCCTGGGTCACCGACCCGGTCGCGCTGCTGGCTGCGCTCGTCGGTGCGCTCGTCGCGGTGCTGCTCTGCGTGGTGGGGGCCCGGGCGACGACGACGCTCCTCGCCCCGCTGCTGGACTCACGCCGCTACCGCGAGGTGCTGATGATCGTCGGGGTGGTCCCGCTGCTGGCGATCGGACCGTTCTTCGCCTGGATGTCCGACGGGTCCTCGGGCGGCGGGGTGTCGGTCGGCGGGCCGGAGGACCTCGTGCCCGCGGTCGTCGAACCGGCCGCGCGCGTCCTGGCGTGGACGCCGTTCGGCGCCCCGTGGGCCCTGCCGGGTGCGGTGCACGACGGCGCCTGGGGGCTCGCCGTCGTCCGTCTCGGTATCGCCCTGGCCACGCTGGCCCTGGCCGCCGTCGTCTGGGACCGGGCGACGGCGCGGGCCCTGGTCAGTCCCCGCGGCGGTGCGGAGGCCGGGACGGCTCGCGGTCTGGGTTGGTTCGGCCGCGTGCCACAGACGCCGACGGGCGCCGTCGTCGCCCGGTGCGCCACCTACTGGTTCCGCGACCCGCGGTATGCCGCCTCCATGGCGATGGTCCCGTTGCTGCCGCTGGTCGTGGTCTTCCCCGCGCTGTTCGGCGGGGTCGGCACCGAGATGCTGCTCGTCGCCGCGCCGCTGGCCGCCTTCATCCTCGGCCTCGGGCTCTCGAACGACATCGGCTACGACAACACGGCGTTCGCGCTCCACGTGTCCGCCGGGGTGCCCGGCCGGGCGGACCGGTGGGGGCGGGTGATCCCCGTGCTGGTCGGCGGCGTGCCGCTGGTCGTGGCGCTCGCCGTCGCCGGAGCCGGCGTCTCTGGCCGGTGGGACGCGCTGCCCGCACTGCTCGGGGTCACGCTCGGCGTGCTCGGCGCGGCACTGGGTACGTCGAGCGTCGCCTCGGCGCGCATGGTGTACCCGGTGCCGAAGCCGGGGGAGAGCGCCTTCAAGACCCCGCAGGGCGCGACGACGGCGACGGTCGTGGCCCAGATGGCCGCGTTCGGCGTGATCCTCGCCCTGATGATCCCGACGCTCGCCCTCGCGCTGCCCGCGATCCTGCTGCCGAGCGTCACGCTCGGGTGGGTCGCCGCCGGGGTCGGGCTCGTGACGGCCGTCGCGGTCCTCGTCGTCGGCGTGCGCTGGGGCGCCCGGGTCTACGAGCGGCGTCAGCCCGAACTGTTGACGCAGGTCGCCGCCTTCGCCTGAMVAHFVRLKLTLLGNTLRRSVWQAIGLVVAVLYGAGVVALAVSAAVAGGIAAPVVTGQVLTVVGSAVVLGWWIVPLFAFGLDSTLDPMRFTTFAVPRRQLLAGLAAAALVSVPAVGTLLAALGVSFAWVTDPVALLAALVGALVAVLLCVVGARATTTLLAPLLDSRRYREVLMIVGVVPLLAIGPFFAWMSDGSSGGGVSVGGPEDLVPAVVEPAARVLAWTPFGAPWALPGAVHDGAWGLAVVRLGIALATLALAAVVWDRATARALVSPRGGAEAGTARGLGWFGRVPQTPTGAVVARCATYWFRDPRYAASMAMVPLLPLVVVFPALFGGVGTEMLLVAAPLAAFILGLGLSNDIGYDNTAFALHVSAGVPGRADRWGRVIPVLVGGVPLVVALAVAGAGVSGRWDALPALLGVTLGVLGAALGTSSVASARMVYPVPKPGESAFKTPQGATTATVVAQMAAFGVILALMIPTLALALPAILLPSVTLGWVAAGVGLVTAVAVLVVGVRWGARVYERRQPELLTQVAAFAPGPT0006730_1139DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_05145792natACOG4555ABC transporter ATP-binding protein NatAGTGACACAGCAGCCCACCGCCCCGCCGGACCCGGCGGCAGCCCTCAGCCTGCGCGGCCTGTGGAGACGCTTCGGGGACAAGATCGCCGTCGCCGGTATCGACCTCGACGTCCCGCGCGGGTCGTTCTTCGGGCTCGTCGGGCCCAACGGCGCCGGCAAGACGACGGCGCTGTCGATGGCCACCGGCCTGCTGCGGCCGGACTTCGGCACGGCGCACGTGCTCGGCACCGACCTGTGGGCCCGTCCGGACGAGGCCAAGCCGCTCCTCGGCGTCCTGCCCGACGGGATGCGGCTCTTCGACCGGCTCACCGGCGCCCAGCTCCTGACCTACTCCGGGCTGCTGCGCGGCCTGGACCGGGACACCGTGGCCGCGCGCAGAGAGGACCTGCTGGCCGCGATGGACCTCACCGCCGACCGCGACACCCTCGTCGTGGACTACTCGGCGGGCATGACCAAGAAGATCGCTCTGGCCGGGGCGATGATCCACGCCCCGCGCGTGCTCGTGCTCGACGAACCCTTCGAGGCCGTCGACCCGGTCAGCGCGGCCAACATCCGCGACATCCTGCGCCGGTACGTCGACGACGGCGGCACCGTCGTCGTCTCGAGCCACGTCATGGACCTGGTGCAGCGCATGTGCTCGCACGTGGCGATCATCGCCGGCGGCCACGTGCTGGACGCCGGGACGGTCGACGCCGTGCGCGGTGAGCAGAATCTCGAGGACCGGTTCGTCGACCTGGTCGGCGGGCGCAAGGAGTCGGAGGGCCTGGCGTGGTTGCGCACTTCGTCCGACTGAMTQQPTAPPDPAAALSLRGLWRRFGDKIAVAGIDLDVPRGSFFGLVGPNGAGKTTALSMATGLLRPDFGTAHVLGTDLWARPDEAKPLLGVLPDGMRLFDRLTGAQLLTYSGLLRGLDRDTVAARREDLLAAMDLTADRDTLVVDYSAGMTKKIALAGAMIHAPRVLVLDEPFEAVDPVSAANIRDILRRYVDDGGTVVVSSHVMDLVQRMCSHVAIIAGGHVLDAGTVDAVRGEQNLEDRFVDLVGGRKESEGLAWLRTSSDPGPT0006725_20487DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_051461563hypothetical proteinATGTCGGTGCCGCGTGGCAGCCTGGCGGGCATGGAGACGACGACCGCCCTGCTGCTCTCGCTCGGCACCCTGGCCGTGGGGGTGCTCCTCGGCTGGCTCTGGCACGCGCTGCGCACCGCGGGCCGGCACCGGTCCCAGGAGATGGAGTCGGTACGCCTGCACAGCGAGCTCGAGTCGGTCCGCCGGGAGAGCGCCCACCTGCGTGAGCAGGTCGAGGCCGCGCGGGACGACGGCGACCGCCGGGTCGCGGAGGCCCAGGAGCGCCACCAGCGCGAGACGAACGCGGTGCGCGAGCAGGCCGACCGGCAGCTCGCCGAGGTCAAGGGCGACCAGGAGCGCATGGCCCAGCAGTTCCGCTCCCTGGCCGGTGAGGCGCTGTCCTCGTCCAACAAGCAGTTCCTGGAGCTGGCCGAGCAGCGGCTCAAGCAGTCCACGGTCCGCCACGACGAGACGCTCGCCCAGCGCGAGGAGGCGTTCAAGGCGCTCGTCGACCCGATCGGGAAGAGCCTGGAGAGGGTCCGCACGGAGGTCGCCGAGCAGGAGAAGCGGCGCATCGAGTTCGACTCCCGCCTCACCGAGAACATGCGCAGCCTGGCCGACGTCTCCGGCGAGCTGCGCAAGGGCACGAGCGACCTGGTCACCGCGCTGCGGTCCTCCCAGGAGCGGGGCGCCTGGGGCGAGCTGCAGCTGCAGCGGGTCGTCGAGGCGGCGGGCATGATCGAGCAGGTCGACTTCGACGTCCAGGTGCACGCCACCAACGACGACGGCGAGACCCTGCGCCCGGACCTCGTGGTGAACCTCGCCGGCGGCAAGCACATCGTCGTCGACTCCAAGGTGGCCTTCCTCGGCTATCTCGAGGCCCAGCAGTCCGAGGACCCGGCGGTCCGCGACCAGCGGCTCGCGGCGCACGTGCGGCACATGCGCAAGCACGTCGACGACCTGGCGTCCAAGCGGTACTGGGACCTGTTCGACAACGCCCCGGAGTTCGTGGTCATGTTCGTGCCCGCCGAGTCGTTCCTGTCGGCGGCCCTCGAGCGGGACCCGGCTCTCATGGAGGACGCGGCCCGCAAGAACGTCATCCTGGCCAGCCCGGTGACGCTGCTGGCGCTGCTGCGCACGGTGGCCTACTCGTGGCGGCAGCAGGCCCTCGCGGACAACGCCCAGCGGGTGCTCAAGGTCGGCAAGGAGCTGCACTCGCGGCTGGTGACCATGACCGACCACGTCACCAAGATGGGTAAGTCGCTGGACGGGGCCACGAAGAACTACAACAAGATGATCGGGTCGCTCGAGCGCAACGTGCTCACCTCGGCGCGCCGCATGGTCGAGCTCGACGTGGTCGACGCCAAGGACGAGATCGACGAGATGAAGGGCCTCGAGGAGACGACCCGCCCCATCACCAAGCCCGAGCTGCTGGCCGCCGACGAGGGCGGGGTCGTCGGGATCGGCCAGGTGAGCATCGACGACGACCGGTCCGCGGTGGAGGCGCTGGTCGACTCCGACCGGCGTGCGCTGCAGCGCGCCCAGGAGACGTCGACGCAGGACGACGAGTCCGCCGCGGGCTGAMSVPRGSLAGMETTTALLLSLGTLAVGVLLGWLWHALRTAGRHRSQEMESVRLHSELESVRRESAHLREQVEAARDDGDRRVAEAQERHQRETNAVREQADRQLAEVKGDQERMAQQFRSLAGEALSSSNKQFLELAEQRLKQSTVRHDETLAQREEAFKALVDPIGKSLERVRTEVAEQEKRRIEFDSRLTENMRSLADVSGELRKGTSDLVTALRSSQERGAWGELQLQRVVEAAGMIEQVDFDVQVHATNDDGETLRPDLVVNLAGGKHIVVDSKVAFLGYLEAQQSEDPAVRDQRLAAHVRHMRKHVDDLASKRYWDLFDNAPEFVVMFVPAESFLSAALERDPALMEDAARKNVILASPVTLLALLRTVAYSWRQQALADNAQRVLKVGKELHSRLVTMTDHVTKMGKSLDGATKNYNKMIGSLERNVLTSARRMVELDVVDAKDEIDEMKGLEETTRPITKPELLAADEGGVVGIGQVSIDDDRSAVEALVDSDRRALQRAQETSTQDDESAAGNANANANANA
AK018_05147957ispH2_2COG07614-hydroxy-3-methylbut-2-enyl diphosphate reductase 2GTGCTGCTCGCGGCGCCGCGCGGCTACTGCGCCGGCGTCGACCGCGCCGTGGTCGCCGTCGAGAAGGCGCTGGAGAACTACGGCGCCCCCGTGTACGTCCGCAAGGAGATCGTGCACAACAAGCACGTGGTGGAGACGCTGAGCGAACGCGGCGCGATCTTCGTCGAGGAGGCCGACGAGGTCCCGCGCGGGGCGCGCGTGGTGTTCTCCGCCCACGGCGTCTCCCCGGCCGTGCGTGAGTCCGCCGCCTCGCGGGACCTGCAGACCATCGACGCCACCTGCCCGCTGGTCACCAAGGTCCACAAGGAGGCGGTGCGGTTCGCCAAGGCGGACAAGACGATCCTGCTCATCGGCCACGACGGCCACGAGGAGGTCGAGGGCACCGCCGGCGAGGCGCCGGAGCACACCATCGTGGTGAACTCGCCCGAGGAGGCGGACGTCGTCGAGGTCCCGGACCCTGACAACGTCGTGTGGCTGTCGCAGACCACGCTGTCCGTCGACGAGACGATGGAGACGGTGCGCCGCCTGCGCGAGCGGTTCCCGAGCCTGGCCGACCCGCCCAGCGACGACATCTGCTACGCGACCCAGAACCGCCAGGTGGCGGTCAAGAAGCTCTCGCCGGAGTGCGACCTGGTCATCGTCGTGGGGTCGGCGAACTCGTCGAACTCCGTGCGGCTGGTCGAGGTCGCCCTCGACGCCGGCGCGACGACGGCCTACCGGGTGGACCGCGCCACCGAGATCCAGGACGCCTGGTTCGAGGGCGTGAGCACCGTCGGCGTGACGTCGGGGGCGTCCGTGCCGGAGATCCTCGTCGACGACGTGCTGCGCCAGCTCGACGGGCGCGGCTACGGCGAGGCGGAGGAGGTGCGCACCGCGACCGAGGACCTGGTGTTCTCGCTGCCGCGCGAGCTGCGTCCGCCGCGCGACGCCCGTCAGCTCCCGATCCAGCCGGCCTGAMLLAAPRGYCAGVDRAVVAVEKALENYGAPVYVRKEIVHNKHVVETLSERGAIFVEEADEVPRGARVVFSAHGVSPAVRESAASRDLQTIDATCPLVTKVHKEAVRFAKADKTILLIGHDGHEEVEGTAGEAPEHTIVVNSPEEADVVEVPDPDNVVWLSQTTLSVDETMETVRRLRERFPSLADPPSDDICYATQNRQVAVKKLSPECDLVIVVGSANSSNSVRLVEVALDAGATTAYRVDRATEIQDAWFEGVSTVGVTSGASVPEILVDDVLRQLDGRGYGEAEEVRTATEDLVFSLPRELRPPRDARQLPIQPAPGPT0007615_387DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527NANA
AK018_051481347xseA_2COG1570Exodeoxyribonuclease 7 large subunitGTGTGGAGGGTCGGTGACGGACGGCCCGACCCGTCGCGGTCGCTGTGGGTGCCGTGGGGCATGCTGGGTGCCGTGACCGACGCGACCGGACCCGACACACCTGGCCACGACGTCCAGCCGCTGCCCGAGCGGGCCGCCGAGACGACGGCCGAGCGCCCCTGGCCGGTACGCCTGCTGTCGAGCAAGATCCGCGACTACGTCGCCCGCATGTCGCCCGTGTGGGTCGAGGGTCAGGTCATCGAGCACACCTACCGTCGCACCTCGGGGATGCAGTTCCTCACGTTGCGCGACACCGACGTCGAGGCCTCCCTGCCGGTGAACATGCTCACCCGCGCCTTCGACGGCCTGGACGCGCGGCCCGAGGTGGGCGACCACGTCGTGGTGCACGCCAAGCCGGAGTTCTGGATCAAGGCGGGCCGGATGTCGCTGCGAGCGGCGGCCATCCGGCAGGTCGGCGTGGGCGAGCTGCTCGCCCGGATCGAGCAGCTGCGCCGCGTGCTGGCCGCCGAGGGGCTGTTCGACGTCGGTCGCAAGCGTCCCCTGCCGTTCCTGCCGGCCGTCGTCGGCCTGGTCTGCGGGCGGGAGTCGAAGGCCGAGCACGACGTCGTGGTCAACGCCCGCGCCCGCTGGCCCCAGGTGCGCTTCGAGATCCGCGAGGTCGCCGTCCAGGGCGTCAACGCGGTGGCGGAGGTCTCGCAGGCGGTCTCCGAGCTGGACGCCGACCCGTCGGTCGAGGTGATCGTCCTGGCCCGTGGGGGCGGCTCCGTCGAGGACCTGCTGCCGTTCAGCAACGAGGCGCTGGTGCGCCGCGTCTCCGCGTGCACGACGCCGGTGGTCAGCGCGATCGGCCACGAGACCGACACCCCGCTGGTGGATCTGGTGGCCGACCACCGGGCGTCGACCCCGACGGACGCCGCCAAGTGCGTCGTCCCCGACGTCGCGGAGGAACGGCAGCGGGTCGCCCAGGCGCGCCAGCGGATGCGCGGCGCCGTCCAGGGACTGCTGCAGCGCGAGCAGCACGGCCTCGATGCCGTGCGCTCGCGCCCGGTGCTGGCCCGCCCGGAGACGATGGTCGAGGGCCGCGAGGCACAGGTCGCCGAGCGGCTCCGGCACGCCCGGCACCTGCTGCAGGCGGCTCTGCTGACGGCGTCCGGCGACGTCGGTCGGCTCGCTGCGCAGGTGCGTGCCCTGTCGCCCGCCTCCACGCTCGAGCGCGGGTACGCCGTCGTGCAGCGCGGCGACGGTGCGGTGGTACGGGCCGCGGACGAGGTCTCCCCCGGCGACGGCGTGCACGTGCGGCTCGCCGCCGGCGCCCTGGACGCCGAGGTCACCTCGACCACGCCCTGAMWRVGDGRPDPSRSLWVPWGMLGAVTDATGPDTPGHDVQPLPERAAETTAERPWPVRLLSSKIRDYVARMSPVWVEGQVIEHTYRRTSGMQFLTLRDTDVEASLPVNMLTRAFDGLDARPEVGDHVVVHAKPEFWIKAGRMSLRAAAIRQVGVGELLARIEQLRRVLAAEGLFDVGRKRPLPFLPAVVGLVCGRESKAEHDVVVNARARWPQVRFEIREVAVQGVNAVAEVSQAVSELDADPSVEVIVLARGGGSVEDLLPFSNEALVRRVSACTTPVVSAIGHETDTPLVDLVADHRASTPTDAAKCVVPDVAEERQRVAQARQRMRGAVQGLLQREQHGLDAVRSRPVLARPETMVEGREAQVAERLRHARHLLQAALLTASGDVGRLAAQVRALSPASTLERGYAVVQRGDGAVVRAADEVSPGDGVHVRLAAGALDAEVTSTTPNANANANANA
AK018_05149516hypothetical proteinATGGGTCACCTCGAGGTGGCGCACGTCTCCTCCGTGCTGCCGGACGGACGCGGGCTGCTCGACGACGTCTCCTTCCGGGTCGGTGAGGGCAGCACGACGGCGCTCGTCGGCCCCAACGGCGCCGGGAAGACCACCCTGCTGCGCATCCTGACCGGTGCGCTCCGGCCCGACGCCGGGACGGTGACGGCCTCCGGCGGCCTGGGCGTGATGTCGCAGTTCGTCGGCTCCGTGCGCGACGCCACGACGGTGCGCCAGCTCCTGGCCTCCGTCGCGCCGGACCCCCGAGCCGGTGTGGGACGAGGACCGCGTCGAGCGCGTCCGCTGACCTCCCGTCCCCCCGCCGCTTCCGTTGTGGGCATGAAATCTGCAGGTCAGCGGGCGGTGGCGACTGCAGATTTCATGCCCACAACGTGGGCGGGTGGCGGCGTGGTGGGCGTGGTGGGCATGGCGGCATGGCGGCGTCGTGGGGATGGCGGGCGGCGGGTGCGGTGCAGAGTCAGGGCGTGGTCGAGGTGAMGHLEVAHVSSVLPDGRGLLDDVSFRVGEGSTTALVGPNGAGKTTLLRILTGALRPDAGTVTASGGLGVMSQFVGSVRDATTVRQLLASVAPDPRAGVGRGPRRARPLTSRPPAASVVGMKSAGQRAVATADFMPTTWAGGGVVGVVGMAAWRRRGDGGRRVRCRVRAWSRNANANANANA
AK018_05150285xseB_2Exodeoxyribonuclease 7 small subunitGTGCGGTTCACTGGTGTCGTGACCGACGCAGACCTCACCCCCGCCCCGACCGACGCCCCCGACGTCGGCACGCTGACGTACGAGCAGGCGCGCGACGAGCTGGTCCAGGTCGTCTCCCGGCTGGAGGCCGGCGGCGAGCCGCTGGAGACGTCGCTCGCCCTGTGGGAGCGCGGCGAGGCCCTGGCCGCCCGCTGCCAGGAGTGGCTCGACGGCGCGCGCGAGCGGCTCGCCGCCGCCCAGTCGGCCTCGAGCGCCGAGACCGCCGCACCGGACGGACAGGGCTGAMRFTGVVTDADLTPAPTDAPDVGTLTYEQARDELVQVVSRLEAGGEPLETSLALWERGEALAARCQEWLDGARERLAAAQSASSAETAAPDGQGNANANANANA
AK018_05151924scrK_3COG0524FructokinaseATGGCCGGCCACGTCCTCGCCGTCGGGGAGGCGCTGGTCGACGTCGTCCACCGACCCGACGGCACGAGCGCCGAGCACCCGGGCGGCTCGCTGGCCAACGTCGCGCTCACGCTCGGCCGCCTCGGACGGGACGCCCGGCTGGCCACCTGGCTCGGGCGGGACGAACGCGGCGACACCGTGCGGTCCTGGCTGGCCGCCTCGGGCGTGACGCTGGCGCCGGGCAGCGACGGCGCGGCGCGCACGTCCGTGGCGCAGGCCACGCTGGACGACGCCGGGACCGCCACCTACGCGTTCGACCTCGACTGGCAGGTACCCGCCGGGACGGCCGCGGACGCCGGGACGCTGGCCGTGCACACCGGCTCGATCGCGGCCGTGCTGGAGCCGGGCGCCACCGACGTCCGCGCCGTCGTCGAGGCCGCACGCGCGACGTCGACCATCACCTACGACCCGAACGCCCGTCCCGTCCTCATGGGGGACGCGGCCGGGGCCCGTGCGCAGGTCGAGGTGCTCGTCCGGCTGGCCGACGTGGTCAAGGTCAGCGACGAGGACCTCGCCTGGCTCGCACCGGAGACGGCAGCCCTGGACGTCGCGCGCGCCTGGGTGCACGACCTCGGCGCGGCGCTGGTGGTCGTGACCTTCGGCGGGGAGGGCTCGACGGCGGTCACGGCGACGGGCGAGGTGCACGTGCCGTCCCGACCGGTCGAGGTCGTGGACACCGTCGGGGCCGGCGACTCGTTCATGGGCGCCCTGCTCGACGGCCTGTGGTCGGCCGACCTGCTCGGGGCCGACCGCCGCGAGGCACTGGCTACGATCGACCACGCCACGGTCGAGCGGCTGCTCTCGCGCTGCGCCGCCGTGGCGGCCGTGACCGTGTCGCGTGCGGGAGCGAACCCGCCGTGGAACGACGACCTGGAGGATGCATGAMAGHVLAVGEALVDVVHRPDGTSAEHPGGSLANVALTLGRLGRDARLATWLGRDERGDTVRSWLAASGVTLAPGSDGAARTSVAQATLDDAGTATYAFDLDWQVPAGTAADAGTLAVHTGSIAAVLEPGATDVRAVVEAARATSTITYDPNARPVLMGDAAGARAQVEVLVRLADVVKVSDEDLAWLAPETAALDVARAWVHDLGAALVVVTFGGEGSTAVTATGEVHVPSRPVEVVDTVGAGDSFMGALLDGLWSADLLGADRREALATIDHATVERLLSRCAAVAAVTVSRAGANPPWNDDLEDAPGPT0017625_2889DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847NANA
AK018_05152645cynT_2COG0288Carbonic anhydraseATGACCCCGAAGGAAGCCTGGGCCGCGCTGCGGGCCGGCAACGAGCGCTTCGTCCACGACGAGCCGGCCGAGAGGTCGCAGATGTCGGTGCGTCGCGCCGAGCTGACCGCCGCGCAGCACCCGCACACCGTGGTGTTCGGCTGCTCCGACTCGCGGGTGGCGGCGGAGATCATCTTCGACCAGGGCCTCGGGGACGTGTTCGTGGTCCGCACGGCCGGGCACGTGGTGGACACCACGGTCCTGGGGTCGATCGAGTACGGCGTGGAGGTCCTGGGAGCGCCGCTGATCGTGGTCCTGGGGCACGACTCGTGCGGCGCGGTCGGCGCGACGGCGCACACGCTGCGCACCGGCGAGCAGCCGCCCGGGTTCGTCCGCTCCGTCGTCGACAAGGTGATCCCCTCGATCGCCGAGCTCTCCGGCTCGCCCGACGAGTCCGAGGACGAGGACGAGGCGGTCCTGGCCGACCGGCTGCGCACGGCGCACGTGCGGCACACCGTCACGACGCTGCGGGGCTACTCCCGCGCCCTGGACGCGGCCGTCACGGAGGGGCGCACGGCGATCGTCGGCGTCGAGTACGACCTCGCCGAGGGCTCCGCGCGGCTCATCGAGGTCGCCGGTGACGTGGGCGAGGAGCCGCTGCGCTGAMTPKEAWAALRAGNERFVHDEPAERSQMSVRRAELTAAQHPHTVVFGCSDSRVAAEIIFDQGLGDVFVVRTAGHVVDTTVLGSIEYGVEVLGAPLIVVLGHDSCGAVGATAHTLRTGEQPPGFVRSVVDKVIPSIAELSGSPDESEDEDEAVLADRLRTAHVRHTVTTLRGYSRALDAAVTEGRTAIVGVEYDLAEGSARLIEVAGDVGEEPLRPGPT0002415_3958DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673NANA
AK018_051531434fumC_2COG0114Fumarate hydratase class IIATGACTTCCGACACCGCCGCCGGTGGCGCCGACGCGCCCGCGACCGAGTACCGCATCGAGCACGACACGATGGGCGAGGTCCGTGTCCCCGCCCACGCTCTCTACCGCGCCCAGACGCAGCGTGCGGTCGAGAACTTCCCCATCTCCGGCACGCCGCTGGAGCGCAGCCACATCGAGGCGCTCGCCCGGGTGAAGAAGGCCGCGGCGCTCACCAACGCCGAGCTCGGCGTGCTCGACCGGGACGTCGCGGACGCCATCGCCGCCGCCGCCGACCAGGTCGCCTCGGGCGAGCTGGACGCCCACTTCCCGGTGGACGTCTTCCAGACGGGGTCGGGCACCTCGTCGAACATGAACACCAACGAGGTGCTGGCCACGCTGGCCACGCGGTCCCTGGGCCGCGACGTGCACCCGAACGACCACGTCAACGCCTCGCAGTCCTCGAACGACGTCTTCCCGACGTCGGTGCACGTGGCCGCCACGGCCGGCGTCGTCCGCGACCTCGTCCCGGCCCTGCAGCACCTCGCCGAGGCGCTGTCGGCCAAGGCCGAGGAGTACGCCGAGGTCGTGAAGTCGGGCCGCACGCACCTCATGGACGCCACGCCGGTCACGCTCGGCCAGGAGTTCGGCGGGTACGCCGCCGCGGTGCGGTACGGCATCGAGCGCGTCGAGGCCGCGCTGCCCCGCGCCGCCGAGGTCCCCCTGGGCGGGACGGCCGTGGGCACGGGCATCAACACCCCGGCCGGCTTCCCGCAGCGCGTGATCGAGCTGCTGCGCGAGGACACGGGGCTGCCGCTGACGGAGGCCCGCGACCACTTCGAGGCCCAGTCCGCCCGGGACGGCCTCGTCGAGCTGTCCGGTGCGCTGCGCACCATCGCCGTGTCGGTCACCAAGATCTGCAACGACCTGCGCTGGATGGGGTCCGGCCCGAACACGGGTCTCGGCGAGATCGCCATCCCGGACCTGCAGCCGGGGTCGTCGATCATGCCGGGCAAGGTCAACCCCGTGATCCCCGAGGCCGTGCTCATGGTCGCGGCGCGCGTCGTCGGCAACGACGCGACCGTCGCGTGGGCCGGCGCCACGGGCACCTTCGAGCTCAACGTCCAGATCCCGGTGATCGCCCAGGGCGTGCTGGAGTCGATCCGTCTGCTGTCCAACGCCTCGCGCGTGCTGGCCGACAAGACGGTCGCCGGCCTGACGGCCAACGTCGACAGGGCCCGCGCCTTCGCCGAGTCCTCGCCGTCGATCGTCACGCCGCTCAACCGCGTGATCGGCTACGAGGCCGCGGCCAAGGTCGCCAAGAAGGCGGTGGCCGAGGGGATCACGGTCCGCGAGGCCGTGGTGGCGCTCGGGTTCGTCGAGCGGGGCGAGGTCACCGAGGCCCAGCTCGACGCCGCGCTCGACGTGCTGTCGATGACGCGCCCGCCGCAGGCCTGAMTSDTAAGGADAPATEYRIEHDTMGEVRVPAHALYRAQTQRAVENFPISGTPLERSHIEALARVKKAAALTNAELGVLDRDVADAIAAAADQVASGELDAHFPVDVFQTGSGTSSNMNTNEVLATLATRSLGRDVHPNDHVNASQSSNDVFPTSVHVAATAGVVRDLVPALQHLAEALSAKAEEYAEVVKSGRTHLMDATPVTLGQEFGGYAAAVRYGIERVEAALPRAAEVPLGGTAVGTGINTPAGFPQRVIELLREDTGLPLTEARDHFEAQSARDGLVELSGALRTIAVSVTKICNDLRWMGSGPNTGLGEIAIPDLQPGSSIMPGKVNPVIPEAVLMVAARVVGNDATVAWAGATGTFELNVQIPVIAQGVLESIRLLSNASRVLADKTVAGLTANVDRARAFAESSPSIVTPLNRVIGYEAAAKVAKKAVAEGITVREAVVALGFVERGEVTEAQLDAALDVLSMTRPPQAPGPT0001650_712DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001650-fumC-K01679NANA
AK018_05154525hypothetical proteinATGGAACTACCGTGGCGTCGTCCCTATCCTGGGCGGGTGGACTACATCGAGAGGGTGCGGGCCCGGTGGGCCGAGCTGCTGCCGGAGGTCGACACGGCACCGGCCGAGACCGGCGCGCGGATCCGCAGGATCGCGGGCCTGCTCGAGGCCGCGCTGGCCGACGAGCTCGCGGCCCACGACGTCTCGCGGGCCGAGCTGGACGTGCTGACGGCGCTGCGGCGCGCCGATCGCCCGCTGCGTGCGGGGGAGATCACCACCATGACGGGGTCGCCCGGGGCGTCGATCACCAAGCGGCTCGGGCGGCTGGAACGCGACGGGCTGGTGGAGCGCGCCGTCCACGAGCGTGATCGTCGCGGTGTCGTCGTGGCGCTGACCGACCGCGGCCGTGCGGTGGTCGACGAGCTGTTCCCGCGGCAGGTCGAGCACGAGCGGGCGGCCGTCGCGGACCTGTCGGCGGCGGAGCGGGCCGAGCTGGCCCGGCTCCTGGCCGTCGTCCTGCGTCGGTTGGATCCGCAGGACTACTGAMELPWRRPYPGRVDYIERVRARWAELLPEVDTAPAETGARIRRIAGLLEAALADELAAHDVSRAELDVLTALRRADRPLRAGEITTMTGSPGASITKRLGRLERDGLVERAVHERDRRGVVVALTDRGRAVVDELFPRQVEHERAAVADLSAAERAELARLLAVVLRRLDPQDYNANANANANA
AK018_051551395hypothetical proteinATGCGCCTCGCCTCCTCCCCCGTCGTCACCACCGCTCGCGACGTCCTCGACACCCAGCACCTGCGCGCCGCACTGCGCGTCAGCCCCGCCGACGCCACGCTGGCCGCGGCCCTGCGCTGCGGCGCGGCCGTCGGGCTCGCCCTGGCCGTCTGCGCCGCGACCGGCCACCGTGACCTGGCCGGCTTCGCGGCGCTCGGAGCGCTGGCCTCCCTGTTCGGACGGTTCGACCCGTACCGCCGCCGGGCGTCCGTGCTCGCCCTGCTCGGCGGCCTCCTGACGACCGCCCTCGTGGCGACCTCCGCCCTGACCGCCGCCGGGGCGGCACCGGCCGTCACCCTGCTCGCCGTCGCCGCGATCGCCGGCGCCACGACCGTGCTCTGCCGACTCGTCCGCACCGGGCCGCCCGGCGCCACGATCGTCGTGTTCGCCGCCGCGGGCGGGCTCGCCGGACCGCTCGGCTGGGCCGACGTGGTCGAGCGTGGCGGAGCGGCCCTCGTCGGTGCGGCGATCGCCTGGACCGTGGGCATGAGCGGCTACCTCGCGCGACCGTCGGCACCGGCCCGGCTGGCCGTGCGGCGGGCCGCGGACGCCGTGCGGCGGGCCGCACCCTCCGCCGACACCGCCGGCGACCTGCGCCACGGCGACGCCGTACGCACCGCCCGCGCCGCGATCGACACGGCGCGGGCGGCCCTCGCCGACGACGGCTCGCACCGCCGGACGCGCGGGACCGCCCGGTCGCTGACCGCCGAGCTCGACGCCGTGGAACGCGTGCTCGACGACGCCACCGGCAGCCCGGCGCCGGACCGCCCGCGGCCCGCCCGGACGAGCCTGCGCGAGCAGGCCGTCCGGAACGCACGGTCCTCCCCGTGGCGGCTCACCGGCGTCCGTGTCGTGCTGGCGAGCCTGGGCGCCGGTCTGCTGGCGACGGCCGGCGGTCTGGCCCACCCCGCCTGGGCCCAGATGGGGGCCACGGCGACGTTGCAGGGCACGACGGCGCAGCACGCGGTCGTCCGGGCCCTGCAGCGGGCGGCGGGGACCGCCGTCGGCGCGCTCGTCGCCTGGCTCCTGCTCGACGCCGACCTCGGCTTCGCCGCGACCTGCGTGCTCGTCGTGGCGCTGCAGGTCGTCACCGAGCTGGTCGTCGGCCGCCACTACGGGCTCGCGATGCTGACGATCACCCCGATGGCGCTCCTCATGACCTCGCTGGCCACGCCCGCCGACGACGGCGGCATCGCGCTGGCACGGGCGCTCGACACGGTGCTCGGCGCCGCCGTCGGGGTCGGCGCCGTGGTCCTGGTCCACCCGCGCCGCCGCCGTCGGGGCCCCGCCGACGACGGCCCGGACCCCGACGGCTCGGGAGGACTCAGATCTCCAGGCCCTCGAGCATCTCGGTGAMRLASSPVVTTARDVLDTQHLRAALRVSPADATLAAALRCGAAVGLALAVCAATGHRDLAGFAALGALASLFGRFDPYRRRASVLALLGGLLTTALVATSALTAAGAAPAVTLLAVAAIAGATTVLCRLVRTGPPGATIVVFAAAGGLAGPLGWADVVERGGAALVGAAIAWTVGMSGYLARPSAPARLAVRRAADAVRRAAPSADTAGDLRHGDAVRTARAAIDTARAALADDGSHRRTRGTARSLTAELDAVERVLDDATGSPAPDRPRPARTSLREQAVRNARSSPWRLTGVRVVLASLGAGLLATAGGLAHPAWAQMGATATLQGTTAQHAVVRALQRAAGTAVGALVAWLLLDADLGFAATCVLVVALQVVTELVVGRHYGLAMLTITPMALLMTSLATPADDGGIALARALDTVLGAAVGVGAVVLVHPRRRRRGPADDGPDPDGSGGLRSPGPRASRNANANANANA
AK018_051561338hypothetical proteinGTGGCCCACACCGATCCCACCGCCCACCCCCGGACGTTCGTCGTCGACACGTCCGTGCTGCTGTCCGACCCCCGCGCCATCCACCGGTTCGCCGAGCACGACGTCGTGCTGCCCGTCGTCGTCGTCACCGAGCTCGAGGCCAAGCGGCACCACGCCGAGCTCGGCTACTTCGCCCGCAGCGCCCTGCGGGCCCTCGACGACCTGCGGATCACGCACGGTCGCCTGGACGCCCCGATCCCCATCGGTGACGACGGTGGGACGTTGCGGGTCGAGCTGAACCACAGCGACCCGGAGGTGCTGCCCGCCGGGTTCCGGCTCGGGGACAACGACACCCGCATCCTGGCGGTGGCCGCGAACCTCGCGGCCGAGGGCCGCGACGTCACCGTGGTGTCCAAGGACCTGCCCATGCGGGTGAAGGCCTCCGCCGTCGGGCTGCGGGCCGAGGAGTACCGCCACGAGCTCGCGGTCGACTCCGGGTGGACCGGGATGCGCGAGATCGCCGTCACCGACGACCAGCTCTCCGCCCTGTACGACGGGACCGAGCTCGAGCTCGCGTCCCTCGCCCCGGAGGTCATGGCCGAGGCCTCCCCGCTGCTGTGCCACACCGGACTGGTCATCCACGGCGGGGGCGGGTCGGCGCTCGGCCGGGTCACGGCCGACAAGCGGATCCGGCTGGTGCGCGGCGACCAGGACGTGTTCGGGGTGCACGGCCGCTCCGCCGAGCAGCGGGTCGCCATCGACCTGCTCAACGACCCGGACGTCGGCATCGTCTCGATGGGCGGTCGCGCCGGGACGGGCAAGTCGGCCCTGGCCCTCTGCGCGGGCCTCGAGGCGGTGCTCGAGCGCCGGCAGCACCGCAAGATCCTCGTCTTCCGTCCGCTGTACGCCGTCGGCGGGCAGGAGCTGGGCTACCTGCCGGGGTCCGAGTCGGAGAAGATGAACCCGTGGGCCCAGGCCGTCTACGACACCCTCGGTGCCCTGGTCTCCCCGCACGTCGTCGACGAGGTCATCGACCGCGAGATGCTCGAGGTGCTGCCGCTGACGCACATCCGCGGACGGTCCCTGCACGACGCCTTCGTCATCGTCGACGAGGCCCAGTCGCTCGAGCGCAACGTGCTGCTCACGGTCCTGTCCCGGATCGGGCAGGGGTCGCGGGTGGTGCTCACCCACGACGTCGCCCAGCGGGACAACCTCCGCGTCGGGCGCCACGACGGTGTCGCCGCGGTGATCGAGGCGATGAAGGGGCACCCGCTGTTCGCCCACGTCACCCTGACCCGGTCCGAGCGCTCCCCGGTGGCGGCGCTCGTCACCGAGATGCTCGAGGGCCTGGAGATCTGAMAHTDPTAHPRTFVVDTSVLLSDPRAIHRFAEHDVVLPVVVVTELEAKRHHAELGYFARSALRALDDLRITHGRLDAPIPIGDDGGTLRVELNHSDPEVLPAGFRLGDNDTRILAVAANLAAEGRDVTVVSKDLPMRVKASAVGLRAEEYRHELAVDSGWTGMREIAVTDDQLSALYDGTELELASLAPEVMAEASPLLCHTGLVIHGGGGSALGRVTADKRIRLVRGDQDVFGVHGRSAEQRVAIDLLNDPDVGIVSMGGRAGTGKSALALCAGLEAVLERRQHRKILVFRPLYAVGGQELGYLPGSESEKMNPWAQAVYDTLGALVSPHVVDEVIDREMLEVLPLTHIRGRSLHDAFVIVDEAQSLERNVLLTVLSRIGQGSRVVLTHDVAQRDNLRVGRHDGVAAVIEAMKGHPLFAHVTLTRSERSPVAALVTEMLEGLEINANANANANA
AK018_05157558hypothetical proteinATGACGAGCTACGTGGTGCTGCTGCGCGGGGTCAACCTCGGCCCGCACCGCCGGGTCGCGGCGGCCGACCTGCGCGCCGCGGCGGCCGAGGCAGGTCTCCGCGACGCCCGCACGTACGCGACCAGCGGGAACCTCGTGGCGTCGTCGGGCACGGACGCCCCGGACGACGCCCCGGGCGTCGCCGCGGGGGTGGGCGCCGCGCTGGCCGCGACCCTGGGTGCGCCGGTGCCGCTGCTCGCGGTGTCCGGGGCCCGGCTGACGCACCTGGTCGCGGCGAACCCCTTCCCCGGACCCGCGCAGGACGACCCCTCCCACCTGCAGCTCCACCTCGGCCCCGACCCGGTGGACGTCGACGGCGTGGCACGGCTCGCGGCCGACCACGACGGCCCGGAACGGCTGGCGACGGCCGACGGCGCGCTGTTCGTGCACTACCCGGACGGCATCGGACGCAGCCGCCTGACGAGCGCACGCCTGGACCGCGCCACCGGGACGTGGACCACTGGCCGCAACTGGCGCACGGTGCTCCGGCTCCGGGGGATGACCGACGACACGCCCTGAMTSYVVLLRGVNLGPHRRVAAADLRAAAAEAGLRDARTYATSGNLVASSGTDAPDDAPGVAAGVGAALAATLGAPVPLLAVSGARLTHLVAANPFPGPAQDDPSHLQLHLGPDPVDVDGVARLAADHDGPERLATADGALFVHYPDGIGRSRLTSARLDRATGTWTTGRNWRTVLRLRGMTDDTPNANANANANA
AK018_051581200nhaA_4COG3004Na(+)/H(+) antiporter NhaAGTGATCGCGCTGATCTTCGCCAACTCACCGTGGCGGGAGGCCTACGAGACGCTGTCCCAGACGGTGGTGGGCCCGGCGTACATCGGCCCCGTGTACATCCACCTCGACCTGACGCTGGCGAAGTGGGCCGCCGACGGCCTGCTCGCGATCTTCTTCTTCACGGTCGGCCTGGAGCTCAAGCACGAGTTCGTCGCCGGCTCGTTGCGCAGCCCCAAGCAGGCCGGCGTCCCGATGCTGGCCGCCGTCGGCGGCATGGCCCTGCCGGCGATCTTCTACGTCGTCGTGGTCCTCACGCTCGGCAGCTCGGAGGCCCTGCACGGTTGGGCCATCCCCACCGCCACCGACATCGCCTTCGCGCTCGCGATCCTGGCCGTCTTCGGCAAGGGCCTGCCCGTGGCGATCCGCACCTTCCTGCTCACGCTGGCGGTGGTCGACGACCTGCTGGCGATCATCATCATCGCGGTCTTCTACACCAGCGAGATCAACGGCGCCTGGCTGGGCGGCTCGCTCGTCGTCATCGCGGTCTTCGCCTGGTACGTCCGCACCCGGTCGCCGAAGTGGTGGATCCTCGTCCCGCTGTTCGTCATCGCCTGGGCGTTCATGCACGCCTCGGGGGTGCACGCCACGATCGCGGGTGTCCTGATGGGCTTCGCGGCCACGGCCCGTCCGATCCACGGCGAGCACGAGACGCGGACGCACCACTACGAGCACGCGGTCAAGCCGTGGTCGCAGGGTCTCGCCCTGCCCGTCTTCGCCTTCTTCTCGGCCGGTGTGAACCTGGTCGACGGCGGCGGTCCGGCCGAGATCCTGGGCCAGCCGGTGGTGTACGCGATCGTCGCGGGCCTGGTGCTCGGCAAGCTCCTGGGCATCCTGGGCACGACCTGGCTGGTCACCCGGGTGACCCCGTTGCGGCTGGCCCAGGGCATCGGGGTACGCGACCTGCTGCCCGTCGCCTTCCTGGCGGGCATCGGGTTCACGGTCTCGCTGCTCATCGCCGAGCTGTCCTTCGAGGAGGGCTCGGAGTACACGCTGGGGGCCAAGGCCGCCATCCTCATCGCGTCCGTCGTCGCCGCCACGCTGGGCGCCCTCACCCTGCGGTGGGACGCCAAGCAGGAGCGCGGCCCGGACATGAACCGCGACGACCTGCCCGACGAGGTCACCACGGTCATCGGCGACGAGGAGGACCGCAGGGAGCACTGAMIALIFANSPWREAYETLSQTVVGPAYIGPVYIHLDLTLAKWAADGLLAIFFFTVGLELKHEFVAGSLRSPKQAGVPMLAAVGGMALPAIFYVVVVLTLGSSEALHGWAIPTATDIAFALAILAVFGKGLPVAIRTFLLTLAVVDDLLAIIIIAVFYTSEINGAWLGGSLVVIAVFAWYVRTRSPKWWILVPLFVIAWAFMHASGVHATIAGVLMGFAATARPIHGEHETRTHHYEHAVKPWSQGLALPVFAFFSAGVNLVDGGGPAEILGQPVVYAIVAGLVLGKLLGILGTTWLVTRVTPLRLAQGIGVRDLLPVAFLAGIGFTVSLLIAELSFEEGSEYTLGAKAAILIASVVAATLGALTLRWDAKQERGPDMNRDDLPDEVTTVIGDEEDRREHPGPT0013935_354DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313NANA
AK018_05159552COG1399putative proteinGTGCTCGACACGCACGAGCTCTCGCGGCGTCCCGGGACCATGCGGGAGGTCGCGACCGTCGTCGCCGCGCCCGCAGACCTGGGCACGGCGGTCATCGGTGTGCCCGAGGGCGCCGACCTGACGCTCGGGCTGCGCCTCGAGGCCGTCATGGAGGGCGTGCTGGTCTCCGGCGTCGTGCGCGGTACCGCGGTCGGGGAGTGCGTGCGGTGCCTGGACGAGGTCTCCGAGCAGGTGACCGTGCGCGTCCAGGAGCTGTTCGTCTACCCCGAGCGGGCCGAGGCGGCCGAGGACGCCGGTGACGAGGAGGCCGAGGACGAGGCCCTGCTGACCGACGACCTGGCGGACATCGAGCCCACGGTTCGGGATTCGCTGGTCACTGCATTACCATTTCAACCGCTGTGCCGGCCGGACTGCCCCGGTCTGTGCTCCGAGTGCGGAGCACGACTGGAGGACGATCCCGAGCACCACCACGACATCGTCGACCCACGATGGGCGGCGCTGCAGACCATGCTCGAGGAGTCGAGCGTGTCCGACGAGACGAAAGAGAGCTGAMLDTHELSRRPGTMREVATVVAAPADLGTAVIGVPEGADLTLGLRLEAVMEGVLVSGVVRGTAVGECVRCLDEVSEQVTVRVQELFVYPERAEAAEDAGDEEAEDEALLTDDLADIEPTVRDSLVTALPFQPLCRPDCPGLCSECGARLEDDPEHHHDIVDPRWAALQTMLEESSVSDETKESNANANANANA
AK018_05160564hypothetical proteinATGACCGACACCACCCAGAACCCCACCGCCGGGCTGCTCGAGATCCTCGACGACCTGGCCGCGCTCGTCGAGAACGCGCGCACCTCGCCGCTGTCGACGAACGTCAAGGTCGACCGCGAGCAGGCGCTCGGGCTCGTGGCCGAGCTGCGCGAGAACCTGCCCACCCAGGTCGCGCGCGCGGACGACGTCCTCGCCGACGCCGAGCGCACACTGGCCGACGCGCACCGCCGGGCCGAGGAGATCGTCGCCACGGCGCGGGCGCGGGCGATCGAGCTCGTGCAGGACGAGCAGGTCGTCGTGCAGGCGGAGTCCCGCGCGGCGGACATCGTCGCCGAGGCGGAGCGCCGGGCTGCCGGGCTGCGCGCCGACGCCGACGAGTACTGCGACGGTCGGCTCGCCGACTTCGAGGCGGACCTGGGCCGGCTGACCTCCCAGGTGCAGGCCGGGCGGGCCAGGCTCGCCGAACGCCTGGAGGCGTCCTCGGGAGCGCCCCGGGTGCGGTGGGACGCCGTGCCGGACCCCGCGTGGCCGGCCGGCGACGAGGACGACCGCCGCAGCGCCTGAMTDTTQNPTAGLLEILDDLAALVENARTSPLSTNVKVDREQALGLVAELRENLPTQVARADDVLADAERTLADAHRRAEEIVATARARAIELVQDEQVVVQAESRAADIVAEAERRAAGLRADADEYCDGRLADFEADLGRLTSQVQAGRARLAERLEASSGAPRVRWDAVPDPAWPAGDEDDRRSANANANANANA
AK018_05161519coaD_2COG0669Phosphopantetheine adenylyltransferaseGTGACCGGCCGTCCTACCGTGGGCAGCGTGAGCATCGCCGTCTGTCCCGGGTCCTTCGACCCGATCACGCTCGGGCACCTCGACATCGTGCGCCGGGCGAACCGCCTGTTCGACGTCGTCGTGGTGGGCGTGGCCCGCAACGCCGCCAAGAACGCCCTGCTCACCGCCGACGAGCGGGTGGAGGTGGCACGCGCCGCCGTCGCCGCCGACCCGGACACCGCCGACGTCCGGGTCGACGTGGTGCCCGGCCTGCTGGTCGACTTCTGTCGCGAGGTCGGCGCCCTCGCGGTGGTCAAGGGGCTGCGCGGCGGCGCCGACTTCGACGGCGAGCATCCGATGGCCCTGATGAACCGCCACCTGAGCGGTGTGGAGACCGTCTTCCTGCCGGCCGAGCAGCAGCACGCCCACGTGGCGTCGTCGCTGGTCAAGGACATCGCCCGGCACGGCGGCCCGATCGACGACCTCGTGCCGTCCGCGGCGGCCGAGGCGGTGCGCTCCGCCGTGGCGCACCGTGCGTGAMTGRPTVGSVSIAVCPGSFDPITLGHLDIVRRANRLFDVVVVGVARNAAKNALLTADERVEVARAAVAADPDTADVRVDVVPGLLVDFCREVGALAVVKGLRGGADFDGEHPMALMNRHLSGVETVFLPAEQQHAHVASSLVKDIARHGGPIDDLVPSAAAEAVRSAVAHRAPGPT0008825_2215DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008825-coaD|kdtB-K00954NANA
AK018_05162600rsmDCOG0742Ribosomal RNA small subunit methyltransferase DATGACCAGGATCGTCGCCGGAACCGTCGGCGGGCGCTCGCTGACCGTGCCGCCGTCGGGGACCCGCCCCACCAGCGAACGCGTCCGGGAGGCGATGTTCTCCCGGCTCGAGCACCTCGGCGTCGTCGACGGTGCCCGCGTGCTGGACCTGTTCGCCGGGTCGGGTGCGCTCGGCCTCGAGGCCGCCAGCCGGGGCGCGGCCGAGGTCGTGCTCGTCGACGCGGCACGGCAGGCCGCCGACGTCGCCCGCCGCAACGCCGCCGACCTCGGGCTCGGCCGCCGGGTCCGGGTGCTCGCCGAGCCCGCCGAGCGGGCCGCCGCACGCCTGGCCGCCGACGGCGCACGGTCCGGCGGCTTCGACCTCGTGCTCGTCGACCCGCCGTACGACCTCGACCCCGCGGTCCTGAACCGGGTGCTGGCCGACCTCGCCGCTCCCGGCGTGCTGGCGCCGGACGCCGTCGTCGTCCTCGAGCAGGCCCGCCGCGGCGCTCCGTTCACCTGGCCGGACGCGCTCACCGAGCTGTCGGCCAAGCGGTACGGCGACACGGTCGTCCACTACGCGGAACCGCGCCAGGCCGAGGAAGATCCCCGCGAATCGTGAMTRIVAGTVGGRSLTVPPSGTRPTSERVREAMFSRLEHLGVVDGARVLDLFAGSGALGLEAASRGAAEVVLVDAARQAADVARRNAADLGLGRRVRVLAEPAERAAARLAADGARSGGFDLVLVDPPYDLDPAVLNRVLADLAAPGVLAPDAVVVLEQARRGAPFTWPDALTELSAKRYGDTVVHYAEPRQAEEDPRESNANANANANA
AK018_051632271recG_2ATP-dependent DNA helicase RecGATGAGCCCGCGGCTGGCCGAGCCGCTGACCACCACGCTGGGCAAGCGCGCGGCCGGCCCGCTGGCGAAGATGGGGCTGGTCACCATCGACGACCTGCTGCGCCACTACCCGCGCCGGTACGGCGACCCGGGCACGCTGACCGACATGGACCGCCTGCAGCTCGGGGAGCACGTCACGGTCATGGCACGGGTCGCCGGCGCCACGGTGCGGCCGATGCGCAGCCGCGGCGGGGCCCTGCTGCAGGCGCGGGTGACCGACGGCCGCCACGAGCTGGCCCTGACCTTCTTCGCCAAGCGTGCCGGGGCGCTGCGACCGCACGAGGACAAGCTGCGGCCCGGCCGCTCGGGTCTGTTCACCGGGGTGGTCTCCGAGTACCGCGGTACCCGCCAGCTCACCCACCCGGACTACGTCCTGGTGGGGGTCGACGCCGACGACGACGAGGCCGCCATGATGGAGGCGTCGCGACCGATCCCGATCTACCCGGCCACGGCCTCGGTGCCGACCTGGCGGATCCAGAAGGCTGTGCGCGCGGTGCTGGACCCGCTCACGGAGGACGAGGTCCCGGACCCCGTGCCCGACGAGGTCCGGGCGCGGCTCGGGCTGCCGACCCGGCTGGACGCCCTGCGCGCCGTGCACGTGCCGGACTCGGCGCAGCACTGGCAGAGCGGGCGCCGCCGGCTCCGCTTCGAGGAGGCGTTCGTGCTGCAGTCGGCGCTCGCCCAGCGCCGCGCCGCGGTCGCGGCCCAGGAGGCCACCGCGCGGCCGCCCCGCGCCGCGGCCGAGAGCGGCCTGCTCGCCGACTTCGACGCCGCGCTGCCCTTCACCCTCACCGACGGCCAGCGCGCGGTCGGGGCCGAGATCGCCGACGAGCTCGCGCGGCCCCGCCCGATGCAGCGGCTGCTGCAGGGCGAGGTCGGCTCCGGCAAGACGGTGGTCGCCCTGCGCGCCATGCTGCAGGTCATCGACGCCGGGGGACAGGCCGCGCTGCTCGCCCCGACCGAGGTGCTCGCCGCCCAGCACGCCCGCACGCTGCGCACGATGCTGGGACCGCTGGCCGAGGGCGGGCTGCTCGGCGGCGCGGCGCACGGCACCCGCGTCGCCCTGCTCACCGGTTCGCTGCACGCCGCGGCCCGCAAGGAGGCCCTGCTGGACGCCGCGAGCGGCGAGGCCGGGATCGTCGTCGGCACGCACGCGCTGCTGGGCGACCAGGTGCAGTTCGCCGACCTGGGCCTCGTGGTGGTCGACGAGCAGCACCGGTTCGGCGTCGAGCAGCGCGACGCCCTGCGCGCCAAGGCACGCGTCGCCCCGCACCTGCTGGTCATGACCGCGACGCCGATCCCGCGCACCGTGGCGATGACGGTGTTCGGCGACCTGACGACCTCCACGCTCACCGAGATCCCCGCGGGCCGCTCCGGCATCACCTCCCACGTCGTGCCGGCGGAGAACCCCCGCTGGATGCAGCGCGTGTGGGAGAAGGTCCGCGAGGAGGTCGACGCCGGCCGGCGCGCCTACGTCGTGTGCCCGCGGATCCATCCCGACGACGACGGCGCCGCGGGCCGGGGAGGGGACACCGGCGACTTCGACGAGGTCCCGGAGTTCCTCGACCTGACCGACGGTGCTGCCGGCGGTACCGGCGAGGCCGCCGGCGACCGCGCCCCGCTGCGGGCCGTGCTCGAGGTCGCCGAGGCGCTGCGTGCCGAGCCCCGGCTCGACGGCGTCGAGATCGGCGTGCTGCACGGGCAGATGGCCCCCGCCGACAAGGACGCCGCGATGGCGCGCTTCGCCGCGGGGGACGCGCCCGTCCTGGTGTCCACGACGGTCGTCGAGGTCGGCGTCGACGTGCCCGAGGCCACGGTGATGGTCGTGTTCGACGCCGACCGCTTCGGCATCTCCCAGCTGCACCAGCTGCGCGGGCGCGTCGGGCGCGGCGCCGATGCCGGGCTGTGCCTGCTCGTGTCGACCGCCCGGCCGGGTACCCCGGCGGCGGCGCGGGTCGAGGCGCTGGCCGCCACGACCGACGGCTTCGAGCTCGCCACCCTCGACCTGGAGCTGCGGTCCGAGGGAGACGTGCTGGGCGCCGCGCAGTCGGGCCGGGCGAGCTCGCTGCGCCTGCTGCGGGTCGTGCAGGACGCCGACCTCATCGCCTCCGCCCGCACCGAGTCGACCGGCGTCGTCGAGGCCGACCCGGACCTCGGGCGGCATCCCGCCCTGGCCGCCGCGATCGCGGCCCAGCTCGACGCCGAGCAGGAGGAGTTCCTCGAGCGTGCCTGAMSPRLAEPLTTTLGKRAAGPLAKMGLVTIDDLLRHYPRRYGDPGTLTDMDRLQLGEHVTVMARVAGATVRPMRSRGGALLQARVTDGRHELALTFFAKRAGALRPHEDKLRPGRSGLFTGVVSEYRGTRQLTHPDYVLVGVDADDDEAAMMEASRPIPIYPATASVPTWRIQKAVRAVLDPLTEDEVPDPVPDEVRARLGLPTRLDALRAVHVPDSAQHWQSGRRRLRFEEAFVLQSALAQRRAAVAAQEATARPPRAAAESGLLADFDAALPFTLTDGQRAVGAEIADELARPRPMQRLLQGEVGSGKTVVALRAMLQVIDAGGQAALLAPTEVLAAQHARTLRTMLGPLAEGGLLGGAAHGTRVALLTGSLHAAARKEALLDAASGEAGIVVGTHALLGDQVQFADLGLVVVDEQHRFGVEQRDALRAKARVAPHLLVMTATPIPRTVAMTVFGDLTTSTLTEIPAGRSGITSHVVPAENPRWMQRVWEKVREEVDAGRRAYVVCPRIHPDDDGAAGRGGDTGDFDEVPEFLDLTDGAAGGTGEAAGDRAPLRAVLEVAEALRAEPRLDGVEIGVLHGQMAPADKDAAMARFAAGDAPVLVSTTVVEVGVDVPEATVMVVFDADRFGISQLHQLRGRVGRGADAGLCLLVSTARPGTPAAARVEALAATTDGFELATLDLELRSEGDVLGAAQSGRASSLRLLRVVQDADLIASARTESTGVVEADPDLGRHPALAAAIAAQLDAEQEEFLERANANANANANA
AK018_051641722hypothetical proteinGTGGATCAGCCCGAGCTCCTGGACGCCGCCGTGGTGCGCACCTGGGCGCACACCGTCGTCGAGGCCCTCGACGCGGCGCGCTCGGAGCTCGACGGGGTCAACGTCTTCCCGGTCGCCGACGGTGACACCGGCACCAACATGTACCTCACGCTGCGCGAGGCGGCGGGCGCCGTCCACGACGCGAACGCGGACGACGGCGGCGCGAAGCTCCTGCGGGTCGCCGCCCGGGCCGCCCTGCTCGGGGCTCGCGGCAACTCGGGGATCATCCTCAGCGAGTGGCTGCGCGGGTTCGCCGTCGCCGCGAGCCGGCAGGACACGCTCGGCCTCGCGCTCGACGTGGCCGCGCGCTCCGCACGGCGCGCCGTCGCCCATCCCGTGCCCGGCACCATCCTCACGGCCGCGGACGCCGCCGCGGCCGCCGCCCGGCACGCCGAGGCCGGCGGGATGGTCGGTCCCCTCGGCGCGCCGCGACGGCTCAGCGTCCTCGACGCCGCACGGCGCGGGGCGCGCGAGGCGGCCCTGCGCAGCGTCGGGTCGCTGGCACCGCTGCGCGCGGCCGGGGTCCTCGACGCCGGCGCCTGCGGCCTGGTCCTGGTGCTGGCCGCGCTGGCGGCCGCCCAGCGGGCCGCCGGGGAGCGCGGCGCGTCCCCGGTGCCCGGCAGCACGGCTCCGGTCCGGCTCGACCTGGACCTCCGTGGCCACGACCCGGACGACCACGACGCCCCGGCGATGCCCGAGGGTGCGTCCGTGCCGGAGCCCGGGAGCCTCGACGAGGTCGAGCTCATGTTCGTGCTGCACCGGTCCGCCGACGCCGAGGGCTTCGTCCCCGGCGCCGTGGCGGACGCGCTGCGGGCCGACCTGGACCAGGTCGGCAACTCCGTGGTCGTGGTCGGCGGCGCCGCGGGCGAGGCGCACGCCGACGACGTCGACTCGCTGTGGCAGGCGCACGTGCACGCCCCGGACCTCGACGCGGCCCTCGCGGTCCCGCGGCGCTGGTCCCGGCGCGGAGCCATCTCGCACGTGCACGTCCGCCACCTCGCGGTGCCGCCCACGGACTGGGCGGTCGTGGTGACCACGTCGGCCCCGGCCCTGGCCGCCGAGCTGGCCACCGGCGGGGCTGCGGTGCTGCTCGACCTCGACACGGCTCCGACGACGGCGGACCTGGCGCAGGCGGCCCTGGCGGCCGGGACCCCGAACGTGCTGGTCCTGGCCCCGCCGGACGTGCTGGCCGACGTCGACGACGCCGTCGCCGAGCTCGTCGCCCGCGACCTCGCCCGCGGGGGACCCGGGGCGCGGCCCCGGCTCGCCGCCGTGCCGGCGCCCCAGGACGTCCACCTCGTCACCGCCGTTTCCGCCCTGGCCGGCGCCCTGGACGCCGTCGGTGCCGACCAGGGCTCCCTGGACGTCCCGGGCGTGGTGCGCTCGGCGCACCGGCGCCTGCGGGCCGACCGGGTGCCGTCGCAGAGCGCCGCGACCGCCGTGGCCCGGCTGGTCCACGACTGCGAGGACGACCCCGGCATCGTCGCCGTGCTGCCCGACGCCGACGTCGGCGACGCCGCCCTGGACGAGGTCGTCGCCCGCGCCGGCACGTGCGCCCCGGGGGCCGACGTCGTCGTGCTGGCCACCGGCCGGCCCGGCGACCGCATCGGGCTCGGCGTGGAGCCCGCCGAGGACGTCGTCGACCTGCCGCTGCCGACCGTGCGGGACGGAGAGGGCCGATGAMDQPELLDAAVVRTWAHTVVEALDAARSELDGVNVFPVADGDTGTNMYLTLREAAGAVHDANADDGGAKLLRVAARAALLGARGNSGIILSEWLRGFAVAASRQDTLGLALDVAARSARRAVAHPVPGTILTAADAAAAAARHAEAGGMVGPLGAPRRLSVLDAARRGAREAALRSVGSLAPLRAAGVLDAGACGLVLVLAALAAAQRAAGERGASPVPGSTAPVRLDLDLRGHDPDDHDAPAMPEGASVPEPGSLDEVELMFVLHRSADAEGFVPGAVADALRADLDQVGNSVVVVGGAAGEAHADDVDSLWQAHVHAPDLDAALAVPRRWSRRGAISHVHVRHLAVPPTDWAVVVTTSAPALAAELATGGAAVLLDLDTAPTTADLAQAALAAGTPNVLVLAPPDVLADVDDAVAELVARDLARGGPGARPRLAAVPAPQDVHLVTAVSALAGALDAVGADQGSLDVPGVVRSAHRRLRADRVPSQSAATAVARLVHDCEDDPGIVAVLPDADVGDAALDEVVARAGTCAPGADVVVLATGRPGDRIGLGVEPAEDVVDLPLPTVRDGEGRNANANANANA
AK018_05165192rpmB_3COG022750S ribosomal protein L28GTGGCTGCCAACTGCGACGTCTGCGGCAAGGGCCCGGGCTTCGGGCACAGCGTTTCGCACTCCCACATCCGGACCAAGCGCCGCTGGAACCCGAACATCCAGCGCGTGCGCGCCGTCGTCGCGGGCACCCCCAAGCGCGTGAACGTGTGCACCTCGTGCCTCAAGGCCGGCAAGGTGCAGCGCCAGGCCTGAMAANCDVCGKGPGFGHSVSHSHIRTKRRWNPNIQRVRAVVAGTPKRVNVCTSCLKAGKVQRQANANANANANA
AK018_05166528mshD_6Mycothiol acetyltransferaseATGATGGTGGAGACCGACAACGACGTGGTGATCCGATCGGCGAGCACGTCCGACGCCGGTGCGATCGCTCGGGTGCACCTGACCTCCTGGCGCAGCGCCTACGCGCACGTCCTGCCGGCGGGCTACCTCGAGTCGCTCGACGTCGGTGAGCGCACCGCCGAGTGGGAGAAGATCCTCCACCAGGGCCGCAGCAGCACGATCGTCGCCGAGGCCGACGGACGCACCCTCGGCTTCGCCAGCTACGGACCGTCCCGCGACGAGGACGCCGAGGACGACTGCCTCGAGCTCTACGCCATCTACCTCGACCCCGAGGCCTGGGGACGCGGCGTCGCCCGCGACCTGATGCGCACTCTGCTCGGCGACGTCGGCCCGCGGGCCCGGATCACGCTCTGGGTGCTCTCCGAGAACGAGCGGGCCCACCACTTCTACCGCCGCCACGGCTTCCAGCCCGACGGGATCGAGCGCATGGAGGACATCGCCGACGTCCCCGTCACCGAGCTGCGCTTCGTCCGCGAGCCCGAGCGCTGAMMVETDNDVVIRSASTSDAGAIARVHLTSWRSAYAHVLPAGYLESLDVGERTAEWEKILHQGRSSTIVAEADGRTLGFASYGPSRDEDAEDDCLELYAIYLDPEAWGRGVARDLMRTLLGDVGPRARITLWVLSENERAHHFYRRHGFQPDGIERMEDIADVPVTELRFVREPERNANANANANA
AK018_051671035thiL_2COG0611Thiamine-monophosphate kinaseGTGACCGACCCCACCCTGCGCGTGCGCGACCTCGACGAGACCGAGCTGCTGGCGCGGATCTTCCCGCTGCTGCCCACCGGTGACGGCGTCGACGTCGGACCGGGCGACGACGCCGCCGTGGTGCGCGCCGACGACGGCCGCTTCGTCGTGACCACCGACGTGCTCGTCGAGGGGCGCCACTTCCGGCGCGCGTGGTCGAGCGGGTACGACGTCGGCTACCGGGCGGCGGTGCAGAACCTCGCCGACGTCGCGGCCATGGGCGCCCGTCCCACGTCGATGGTGGTCTCCCTGGTGATGCCCGCCGACCTGCCGGTGGCGTGGGTGACGGACTTCGCGCGGGGGCTGGCCGACGCGTCCGGGCCGGCGACCGTCGTCGGCGGCGACCTGTCGGGCGGCGACGCGGTGGTCGTGTCGGTGACCGTCCACGGCGACCTCGACGGTCGTGCCCCCGTGCTGCGGTCGGGGGCCCGGCCGGGCGACGTCGTCGCGCACGCGGGCACGCTGGGTGCCTCGGCGGCCGGCTTCGACCTGCTCTCCAGCGGGGCGGGGAGCCCTGGGGACGGCGCCCCGGGCGTCTCGAACCCCCGCAGCCCCTACGTGACGGCGTTCCTGCGCCCCGAGACGCCACTCGCGGCGGGGCCCGCAGCGGCCCGCGCGGGGGCGACGGCGATGCTCGACGTCTCGGACGGGCTGCTGCGCGACGCCGGCCGTCTCGCCCGCGCCAGCGGCGTCGACGTCGACCTCGCCGAGGGGGTGCTGATGCGGGACGTGACCGCGCTGGTGCCGGCCGCCGTCGACGTGGCGGTCGCGACCGACGACGCCGACGGCGCCCACCGGGCGCGCACGTGGGTGCTGTCCGGAGGAGAGGACCACGGGCTGCTCGCGACGTTCCCGCCCGAGGTGGCCGAGGAGGGGCTGCCGGCGGGTTTCCGCCCGATCGGCGACGTCCGGGACGCCGGGGAGGCCGGGCCGCGGGTGCTGCTCGACGGCGAGCCGCCGCACGAGGCGACCGGCTGGGACCACTTCCGCCCCTGAMTDPTLRVRDLDETELLARIFPLLPTGDGVDVGPGDDAAVVRADDGRFVVTTDVLVEGRHFRRAWSSGYDVGYRAAVQNLADVAAMGARPTSMVVSLVMPADLPVAWVTDFARGLADASGPATVVGGDLSGGDAVVVSVTVHGDLDGRAPVLRSGARPGDVVAHAGTLGASAAGFDLLSSGAGSPGDGAPGVSNPRSPYVTAFLRPETPLAAGPAAARAGATAMLDVSDGLLRDAGRLARASGVDVDLAEGVLMRDVTALVPAAVDVAVATDDADGAHRARTWVLSGGEDHGLLATFPPEVAEEGLPAGFRPIGDVRDAGEAGPRVLLDGEPPHEATGWDHFRPPGPT0009010_612DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009010-thiL-K00946NANA
AK018_05168468hypothetical proteinGTGCTGGTCCGTCGTCTCGCCGTGCTGCTGTCCCTGCCGTGCCTCGCGCTGCTCGCCGCCTGCACGCCGACCATCGGCGTGGAGCCGGCCCCGGACGCCGCCGACCCCGACTGCGCGCCCGTCATGCTCGCCCTGCCGGACGTCGTCGCGGGCGACCTCGAGCGTGCGAAGGTCAACGCCCAGGCGACGGCGGCGTGGGGCGAGCCCGGCGCGGCGGTGACGCTGCGGTGCGGCGTCGAGCAGCCCGGCCCGTCGCCCGACTGCCAGCGGATCGAGACGGCGAACGGGTCGGTGGACTGGATCGTCGAGAGCAACGACACCGGCACCTGGCGGTTCACGACCTACGGACGCAACCCGGCGATCGAGGTCACGGTGCCGCCGGCGGTCACCACGGACCACTCCACGTCGTTCATCGCCGACCTGACGGCGGCGGTCGGTCAGGTCCCGCAGACGCGGCAGTGCACCTGAMLVRRLAVLLSLPCLALLAACTPTIGVEPAPDAADPDCAPVMLALPDVVAGDLERAKVNAQATAAWGEPGAAVTLRCGVEQPGPSPDCQRIETANGSVDWIVESNDTGTWRFTTYGRNPAIEVTVPPAVTTDHSTSFIADLTAAVGQVPQTRQCTNANANANANA
AK018_051691137ddl_2COG1181D-alanine--D-alanine ligaseATGCTCGACACCCAGTCCTCCGCCCCCGCGCGCAAGCCGCGCGTCGCCCTCCTGTTCGGGGGGCGTTCCGGCGAGCACGCGATCTCCGCCGCCACCGCCGCCGGGGTGCTCGGCGCCATCGACCGCGACGTCTACGACGTCGTCCCGATCGGCATCACCCGCGCCGGCCGCTGGGTGGTCGCCGAGGACGACGCCGAGCGCTGGCAGATCACCGCCGGCCGGCTCCCCGAGGTCACCTCCGACGAGGGTGCCGAGGTCGTGCTCTCGCTGACGGCGGGGGAGCGGACGCTGCGTACCCTGGAGCCCGGCCAGGTGCCGGACGTCCTGGGCCAGGTCGACGTCGTCTTCCCGCTGCTGCACGGCCCCTTCGGCGAGGACGGCACCGTCCAGGGCCTGCTCGAGCTGGCCGACGTGCGCTACGTCGGGGCCGGCGTGCTGGCCTCCGCCGTCGGCATGGACAAGCACTTCATGAAGCTGGTGCTCGCCGGCCACGACATCCCCGTGGGTCCGTTCGAGGTCGTCCGGCCACGGGACTGGGAGGCCGACCCCGAGGCGTGCGTCGCGCGGGTCGAGGGACTGGGCCTGCCCGTGTTCGTCAAGCCCGCCCGCGCCGGGTCCTCGCTCGGCATCACCCGCGTCGACGACCTGGCCGACCTGCCGGCCGCCGTCGAGGAGGCCCGCGAGCACGACCCCAAGGTGATCGTGGAGGCCGCGATCGACGGCCGCGAGATCGAGTGCGCCGTCCTCGGCGGTCGCGGGGGCGAGCGTCCCCGCGCGTCGCTGCCCGGCGAGATCGTCGTCGACGGCACGCACGCCTTCTACGACTTCGAGGCCAAGTACCTCGACGAGGCGCACGTGGAGCTGGCCTGCCCCGCCGACCTGCCCGAGCCGGTCGTCAAGGAGATCCGCGAGCTCGCGGTGCGCACCTTCGAGGCGGTGGAGGCCGAGGGGCTGTCGCGGGTCGACGTCTTCGTCACGCCCGACCACCGGGTGATCGTCAACGAGATCAACACCATGCCGGGGTTCACGCCGTTCTCGATGTACCCGCGCATGTGGGAGGCCACCGGGATGAGCTACCCCGAGCTCGTCGACGAGCTGATCCGGCTCGCCCTCGAGCGGCCCACCGGCCTGCGCTGAMLDTQSSAPARKPRVALLFGGRSGEHAISAATAAGVLGAIDRDVYDVVPIGITRAGRWVVAEDDAERWQITAGRLPEVTSDEGAEVVLSLTAGERTLRTLEPGQVPDVLGQVDVVFPLLHGPFGEDGTVQGLLELADVRYVGAGVLASAVGMDKHFMKLVLAGHDIPVGPFEVVRPRDWEADPEACVARVEGLGLPVFVKPARAGSSLGITRVDDLADLPAAVEEAREHDPKVIVEAAIDGREIECAVLGGRGGERPRASLPGEIVVDGTHAFYDFEAKYLDEAHVELACPADLPEPVVKEIRELAVRTFEAVEAEGLSRVDVFVTPDHRVIVNEINTMPGFTPFSMYPRMWEATGMSYPELVDELIRLALERPTGLRPGPT0020050_594DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921NANA
AK018_051701152ydbM_2Putative acyl-CoA dehydrogenase YdbMATGACGACGCTGCTCTCCGACGACCTGCTGGCCACGATCCGCGGCCGGGCCGCGATCCACGACCGCGAGAACTCGTTCTTCGCCGACGACCTGGCGGACCTGCGCGCGGCCGGCTACCTCGCGGCGCTCGTCCCGACGTCGATGGGCGGCGCCGGCCTGACGCTGCGCGAGCTCTGCCACGAGCAGGCGGCGCTCGCCGGTGCCGCACCCGCCACGGCGCTGGCCGTGAACATGCACCACGTGTGGACCGGTGTCGCGCGCTACCTGCACGAGCGCGGCGACGACTCGCTGGACTGGCTGCTCGCCGAGGCGTCCGCGGGCGAGGTCTTCGGGTTCGGGTACTCCGAGGCGGGCAACGACCTGGTGCTGCTCGGCTCGCGCACGGAGGCCCGGCCGGACGGCGCGGGCGGCTACACCTTCCACGGCCGCAAGATCTTCACCTCCAACTCCCCCGGCTGGACCCGTCTGGGGGTGATGGGTCTGGACTCGACCACCGACCCCGAGGACCCGCGCATCGTCCACGCGTTCGTCGCGCGCGACGCCGGCGGGTTCCAGATCCTCGACGACTGGGACACGGTCGGGATGCGGGCCTCCCAGTCCTGCACCACCGTGCTCGACGGCGCCCCCGCGCCCGCCGAGCGCGTCATGCGCCGGATCGCACCGGGCCCGAGCCTGGACCCGTACGTGCTGGGGATCTTCACCAGCTTCGAGATCCTGCTGGCGTCGGTGTACGCGGGGGTCGCGGACCGGGCGCTCGAGGTCGCGGTCGCCGCGGTGGGGCGCCGCACCTCGATGAAGACGGGCAAGGCGTACTCCCAGGACCCGGACATCCGGTGGCGCATCGCCACGGCGGCCCTCGCCCAGGACGGCATCTGGCCGCAGATCGACCAGATCGCGGGCGGCATCGACGCCCGGGAGGACCGCGGGGCCGGATGGTTCCGCGCGACGTCGGGCCTCAAGGTGCGCGCCACCGAGACCGCGCGGCAGGTCGTCGACGAGGCGATCCGCTGCTCGGGCGGTTCGAGCTACTTCAACCGGTCCGAGCTGGGACGCCTGTACCGGGACGTGCTGGCCGGCATCTTCCACCCCAGCGACGACGAGTCGGCCCACTCCCAGGTGGCGCAGTCCCTCCTCGGCCCGCTGGAGGACTGAMTTLLSDDLLATIRGRAAIHDRENSFFADDLADLRAAGYLAALVPTSMGGAGLTLRELCHEQAALAGAAPATALAVNMHHVWTGVARYLHERGDDSLDWLLAEASAGEVFGFGYSEAGNDLVLLGSRTEARPDGAGGYTFHGRKIFTSNSPGWTRLGVMGLDSTTDPEDPRIVHAFVARDAGGFQILDDWDTVGMRASQSCTTVLDGAPAPAERVMRRIAPGPSLDPYVLGIFTSFEILLASVYAGVADRALEVAVAAVGRRTSMKTGKAYSQDPDIRWRIATAALAQDGIWPQIDQIAGGIDAREDRGAGWFRATSGLKVRATETARQVVDEAIRCSGGSSYFNRSELGRLYRDVLAGIFHPSDDESAHSQVAQSLLGPLEDNANANANANA
AK018_05171669hypothetical proteinGTGTCGAACGGGTTGAACCGTGACCGCGTGCTGGAGTCCGCCGTGGCGCTCGCGGACGCCGAGGGGCTGGACGCGGTGACCATGCGCGGCGTCGCGACGCGGCTCGGGGTCGAGGCGATGTCGCTCTACCACCACCTGCCCGGCAAGAAGGACGAGCTGCTCGACGGCCTCGTCGACGTCGTCGCCGCCGAGATCCACGCCGGCCTGGCCGCCCGCGACGGAGTCGCGGACGACTGGGTCGCCGACGTCCGGTCGCGGTGCCTCGTGGCCCGCGAGGTGGTGCTGCGCCACCCGTGGCTCCCCGCGCTGCTGGGTTCGCGCCCCGCGATCCGCCCCGGGGTCTACGCGCTCTACGACGGCGTGCTGGGCGCGATGCTCCGCGGCGGGTGCTCCTACCGGCTCGGGCACCGCGCCATGCACGCCCTGGGCAGCATGGTGCTGGGGTTCACCCCGGAGCTGTTCAGCCCCGAGGCGGGTGACGAGGACGCGACGCCCGAGGCGCTCGAGGCGATGGCGCAGACCGTGCCGCACATCACGGCCATGGTCGCCGCCGAGCTGCACGACCCGGCCGACCCGACGCTCGGCTGGTGCGACAGCCAGACCGAGTTCGAGTTCACCCTCGGGCTGCTGCTCGACGGGATCGAACGGTCCCGCCGCGCCGGCGTCTGAMSNGLNRDRVLESAVALADAEGLDAVTMRGVATRLGVEAMSLYHHLPGKKDELLDGLVDVVAAEIHAGLAARDGVADDWVADVRSRCLVAREVVLRHPWLPALLGSRPAIRPGVYALYDGVLGAMLRGGCSYRLGHRAMHALGSMVLGFTPELFSPEAGDEDATPEALEAMAQTVPHITAMVAAELHDPADPTLGWCDSQTEFEFTLGLLLDGIERSRRAGVNANANANANA
AK018_05172693hypothetical proteinATGGACCAGCGCATCGCCCGCCCGGTGGCCCGCACCACCGGACTGCTCTACCTCGCACTCGGCCTCGCCGGCATGGCCGGCTTCCTGCTCGTCCGCCCGCAGGTCTTCGATCCCACCGACGCCGCGGCCACCGCCGCGCTGCTCGTCGACCACGAGCTGCTGGCCCGCGCCGGCATCGCCCTCGAGCTCGCGACCGTGGTCAGCCAGGCGCTGGCCGCGCTGTGGTTCGTCCGGCTCTTCCGCCCGGTGGACGCCTTCGCCGCCTCCGCCGTCGGCGCGCTGGGCATGATGAACGCCGTGGCGATCCTCGGCAGCACGGCCGCCCTCGGCACCGCCCTCGACAGCGCCCTCGCCGGCGACCAGGCCGCGCCGCAGCTCCTGTACGGGCTGTCGGAGAACCTCTGGGCCGCCGGGGCCGCGTTCTTCGGGCTGTGGCTGATCCCGATGGGACGGCTGGTGCTGCGCTCCGGCCTGCCGCGCGTGCTCGGCTGGTTCCTCGTCGTCGGCGGCGCCGGGTACCTGCTGCAGTCCTTCGTGACGTTCCTGGTCCCCGACGCCGGCCCGCTCGCCGAGCTGCTGGTCGTGGCGGCCACGGTCGGCGAGCTGTGGATGATCGGCCTGCTGCTCGTGATCGGGTTCCGGCGCGACCGCGCGGACGACACCGCCACCACCGAGCCGGCGCTGCGCCCCTGAMDQRIARPVARTTGLLYLALGLAGMAGFLLVRPQVFDPTDAAATAALLVDHELLARAGIALELATVVSQALAALWFVRLFRPVDAFAASAVGALGMMNAVAILGSTAALGTALDSALAGDQAAPQLLYGLSENLWAAGAAFFGLWLIPMGRLVLRSGLPRVLGWFLVVGGAGYLLQSFVTFLVPDAGPLAELLVVAATVGELWMIGLLLVIGFRRDRADDTATTEPALRPNANANANANA
AK018_051731413yagG_2COG2211Putative glycoside/cation symporter YagGATGAGTCTGCACAGGGGCACCGTCGCCCGGTACGCCGTCGGATCCGTCGGCACCGGAGGCTTCGGCACGCTGCCCGGGCTGGTGCTGGTCTACTACCTCACCGACACGCTCGGGGTGGCGGCGCTGGCCGCCGGGCTCATCGTGACGCTCGCCAAGGTGTGGGACGTGGTCGTCGACCCCGTCATCGGGGCCGCCAGCGACCGGGACCGCGCCGCGCACGGCACGCGCCGCCGGCTGATGATCGTCGGCGGCGTGCTGCTGCCGGTGTTCTTCCTGCTGACCTTCGCCGTCCCGCCGTCGCTCGGGTCGCTCGCCGGCGCCGTCTGGGTGCTCGTCGCCTTCCTGTGCGCCGCGACGGCGTTCAGCCTGTTCCAGGTCCCCTACATCGCCCTGCCCGCCGAGCTCACCGGCAGCTACGACGAGCGCACCCGCCTGCTCACGGCCCGCGTCGTGGTGCTGACCGTGGCGATCCTCGCCTTCGGCGGCGGAGCGCCCGCGCTGCGCGGGCTGGTGCCGGACGAGCACGCCGGGTACCTGCTGATGGGGGCCGTGGCCGGGCTGGTGCTCGGCGCGTCCCTGCTCGTGGCGGCCGGCGTCGAGGGCCGGGTCCGACGGCGCGACCCCGGCCGGGCCGCCGACGGCGTCCCGCAGGGCCCGGGGGTCGCGTCCCCGGAGGCGCCGCCCCCCGGCGTGCTGGCGCACTACCGCGCGGGCCTCGTCGTGCTGCGCACCAGCCCGCCGTTCCGCGCGCTGCTGTCCGCGTTCGTCCTGCAGGCGCTGGCCACCGGCACCATGCTCGCCGGCGCCCAGTACGTGGCCACGTGGGTGCTCGACGACGAGGGTGCCGTGACGTTCCTGTTCGCGGCGCTGGTCGGCCCGGCCGTCGTCTTCGCGCCGGTGTGGGGCCGGACCGCGCGCCGGATCGGCAAGGAGCGGGCCTTCGCCGTCGCCTCGGGCGTCTTCCTCGTGGCGGCCGCCGCGCTCGTCGTCATGTACTGGTCCCCCGGCGTCTGGGTGTACGCCGTCGTCGCGGTCGCGGGCGCCGCGTACGCCGGGCTGCAGTCCCTGCCGATGGCGATGCTGCCCGACGTCGTCAGCCACGACGCCGTCACCCGCGGCCCGGGCCGCGCCGGCACGTTCTCCGGGCTGTGGACCGCCGGGGAGACCACCGGGTTCGGCCTCGGCACCGCCGTGCTCGCCACGGTCCTGGCCACCACGGGCTACGTGGAGTCGCGCGCCGAGGCCGTCGTCGTCCAGCCGGACAGCGCGGTGCTCGGCATCGTGCTGGCCTTCACCCTGCTGCCGGCCGCCCTGGTCGCCGTCAGCCTCGTCCCCCTGCGCCGCTACCCGCTGCGCCGGACCGACATCGAGGCGGCACACACCGCCGCCCGGACCGAGGAGCACCGCGCATGAMSLHRGTVARYAVGSVGTGGFGTLPGLVLVYYLTDTLGVAALAAGLIVTLAKVWDVVVDPVIGAASDRDRAAHGTRRRLMIVGGVLLPVFFLLTFAVPPSLGSLAGAVWVLVAFLCAATAFSLFQVPYIALPAELTGSYDERTRLLTARVVVLTVAILAFGGGAPALRGLVPDEHAGYLLMGAVAGLVLGASLLVAAGVEGRVRRRDPGRAADGVPQGPGVASPEAPPPGVLAHYRAGLVVLRTSPPFRALLSAFVLQALATGTMLAGAQYVATWVLDDEGAVTFLFAALVGPAVVFAPVWGRTARRIGKERAFAVASGVFLVAAAALVVMYWSPGVWVYAVVAVAGAAYAGLQSLPMAMLPDVVSHDAVTRGPGRAGTFSGLWTAGETTGFGLGTAVLATVLATTGYVESRAEAVVVQPDSAVLGIVLAFTLLPAALVAVSLVPLRRYPLRRTDIEAAHTAARTEEHRAPGPT0014410_379DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-CAPSULAR_COLANIC_ACID_BIOSYNTHESIS,PGPT0014410-TC_GPH|yihO|xynP-K03292NANA
AK018_051741527hypothetical proteinATGAAGTTCGCCACCAGCCCCGAGACCGTCCTGGAGCGCCTGACAGCCCTGCGCGCCCACGACGCGCCCACCCACGGCGGCCACGTGCTCAGCTACGTGTACGACTCCGGGGAGCCCGAGCTCGACCGGCTCGCCGGCGAGGCGATCCGCGCGATGCAGCCCGTCAACGGCCTCGACCCCACGACGTTCGGCTCCGTGGCCGCCCTGGAGCGAGACCTGGTGGGCTTCACGCGCGACCTGCTCGGCGGGGACGACGAGGTCGTCGGCACCGTCACCTCGGGGGGCACGGAGAGCTGCCTGCTCGCCGTCAAGACCGCCCGGGACGCCTGGCTCGCCGCCCACGGCCTGCGCCCGGGCGAGGCCCGGCCGCGGCTGGTGCTGCCGACGACGGCGCACGCCGCCTTCCGCAAGGCCGCGCACTACTTCGGCCTCGAGACCGACCTCGTGCCCGTCACGGCCACCGGCGAGGTCACCGCCGCGGCCGTGGCCGAGCGCGTGAGCGGGCCGGCCGCGCACGACGTCGCGCTCGTCGTCGTCTCCGCGCCCTCCTACCCGCACGCCGCGCTCGACCCCGTGGTCGACGTCGCAGCGATCGCGGCCGACGCCGGCGTCCCCGTGCACGTGGACGCCTGCATCGGCGGCATGGCGCTGCCGTTCTGGCCCGACCTGCCCGACTGGGACCTGCGGGTGCCCGGGGTGACCAGCCTGAGCGTCGACCTGCACAAGTACGGGTACGCGCCCAAGGGCGTCTCGGTGCTCCTGCAGCGCGGTCGTGACCGCCAGCGTGGCCAGTACTTCGCCACCACGCGCTGGCCCGGGTACCCCGTGGTCAACCCGACGCTGCTCGGCTCCCGCTCCGGCGGGCCGCTGGCCGCCGCCTGGGCGATCGTCCAGGCGCTCGGCCACGAGGGGTTCGCCGAGCTCGCCGGACGGTCGCGCCGCGCCACCGACGCCCTGCGCGACGCCGTCGGGGCCGTCGAGGGGCTGCGCGTCGTCGGCGACCCCGTCGGCCCGCTGCTCGCCGTCGCCACCGACGACGCCGTCCCCGCCGACCGTCGCGTCGACCCGCACCGCTGGGCGGACGCGGCCACGGGGCACGGCTGGGTGCTGCAGGCGCAGCCCGCCTACAGCCAGGACGACGGCACCCGGCTGCCGCACACCACGCACCTGACCATCACGCCCGTGACCGAGTCCGTCCTCGGCGAGCTCGTCCCCGCCCTGGAGGCCGCCGCCGACGCCGTGCGCGGAGAGCCCCGGCCGGACGCGACCGCGCTGCTGGCCGCCCTGCCGGCAGCCGGAGCGCCCGCCGACGGCGTCCCGGGGGCGGACCCCGGCACCCTCGACGCGGAGACGGCCGCCGGGCTGCTGGGGACGCTGGGGCTGGACGCCTCGCGGCTCGGCGACGACGGCCCCGGCGTCGGACCGATGGCCCCGCTGCTCGCCGCCGTGGAGGCCCTGCCGGCGCCGGTGGCCGAGCGGTTGCTCACCGAGCTGCTCGCGCGCCTGGTCGAGCCGCGGCACCCGTAGMKFATSPETVLERLTALRAHDAPTHGGHVLSYVYDSGEPELDRLAGEAIRAMQPVNGLDPTTFGSVAALERDLVGFTRDLLGGDDEVVGTVTSGGTESCLLAVKTARDAWLAAHGLRPGEARPRLVLPTTAHAAFRKAAHYFGLETDLVPVTATGEVTAAAVAERVSGPAAHDVALVVVSAPSYPHAALDPVVDVAAIAADAGVPVHVDACIGGMALPFWPDLPDWDLRVPGVTSLSVDLHKYGYAPKGVSVLLQRGRDRQRGQYFATTRWPGYPVVNPTLLGSRSGGPLAAAWAIVQALGHEGFAELAGRSRRATDALRDAVGAVEGLRVVGDPVGPLLAVATDDAVPADRRVDPHRWADAATGHGWVLQAQPAYSQDDGTRLPHTTHLTITPVTESVLGELVPALEAAADAVRGEPRPDATALLAALPAAGAPADGVPGADPGTLDAETAAGLLGTLGLDASRLGDDGPGVGPMAPLLAAVEALPAPVAERLLTELLARLVEPRHPNANANANANA
AK018_051751137metB_2COG0626Cystathionine gamma-synthaseATGACGCACGACCCGCACCTCGCCCCCGCCACCGTCGCCGTGACCGCCGGCCGGCCCGCCCGGACCCAGGGCGGCCCGGTCAACGCACCGGTCTCGCTGACCTCCACCTACGTCTCGCGCGGCGTGCCCGGCGACGAGCTGCTCTACGCCCGCGGCGGCAACGAGACCTGGGAGACCTTCGAGGAGACGCTCGCCGCGCTCGAGGGCGCGGCCCACGGCGTCGTCCTCGCCTCCGGCATGGCCGCGATCGCCGCGGCCGTCGGCGACCTGCCCCCGGGCAGCGTCGTCGTCGTGCCCCGGCACGCCTACCAGGTCACGCTCGGCTACCTGGACGACCGGGCCACGCGGTACGACGTCGAGGTGCGGCGCGTGGACGTCGCGGACACCGACGCCGTCGTCGCGGCGCTCGACGGCGCCGCCCTGCTCGTGCTCGAGTCGCCGACGAACCCGATGCTGGAGGTCGCCGACCTGCCCGCCGTCCTGGCCGCCGCCCGCGAGCGCGGCGTGCGGTCGGTGGTGGACAACACGTTCGCCACTCCCCTGGGCCAGCAGCCCCTCGCCCTGGGCGCGGACGTCGTCGTGCACTCGGTGACCAAGTACCTCTCCGGCCACTCCGACGTCGTCCTCGGCGCGGTGCTGACGAACGACGCGCAGCGGGCCGACGAGGTCCGCGCCTACCGGACCCTGCACGGCGCGATCGCGGGCCCGATGGAGGTCTTCCTGGCGCTGCGCGGGCTGCGCACGCTGCACCTGCGCGTCGAGCGCGCCACCGCCAACGCCGCCGAGATCGCCCGCCGCCTGCGCGAGCACCCGGCCGTGGCCGAGGTGCGGCACCCCTCCCTGCCCGACGACCCCGGCCACGCGCGGGCGGCGGCGCAGATGGCGCACTTCGGTGCCGTCGTGGGGGTGCGGCCCGTCGGCGGGCCGGCGGGGGCGGACGCGCTGGTCGACGCGGTGCGGCTGTGGGTGCCGGCGACGTCCCTGGGCGGCGTGGAGTCGATGCTGGAGCGCCGACGGCGGCTCGCGACCGAGTCCCCCACGGTGCCCGAGGACCTGGTCCGGCTCTCGGTGGGCGTCGAGGACGTCGAGGACCTGTGGGCGGACCTCGCCCAGGCGCTCGACCACGTCGCCTCCTGAMTHDPHLAPATVAVTAGRPARTQGGPVNAPVSLTSTYVSRGVPGDELLYARGGNETWETFEETLAALEGAAHGVVLASGMAAIAAAVGDLPPGSVVVVPRHAYQVTLGYLDDRATRYDVEVRRVDVADTDAVVAALDGAALLVLESPTNPMLEVADLPAVLAAARERGVRSVVDNTFATPLGQQPLALGADVVVHSVTKYLSGHSDVVLGAVLTNDAQRADEVRAYRTLHGAIAGPMEVFLALRGLRTLHLRVERATANAAEIARRLREHPAVAEVRHPSLPDDPGHARAAAQMAHFGAVVGVRPVGGPAGADALVDAVRLWVPATSLGGVESMLERRRRLATESPTVPEDLVRLSVGVEDVEDLWADLAQALDHVASPGPT0001980_1147DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001980-metB|met|cysA-K01758NANA
AK018_05176723hypothetical proteinGTGCAGCGCTCACCGCACCGTCGTCGGACCGCGGGGGCCGTCGCGCTCGTGGCGACCGCCGCCCTGCTCGCCGCGTGCGGGGACGGCGACGGGCTGCCCGGCTACGGCGGCGGCGCGCCCGCGACGGAGTCGTCGTCGCCCACCGCCGCGTCGAGCGCGCCCGAGGACGAGGAGACGCCGACCGACGAGGCCACCGAGGAGCCGACCGACGAGGCCACCGAGGAGCCGACCGAGGAGCCGACCGAGGAGCCGACCGAGGAGCCGACCCCGACCGAGCCCGAGACCCCGTTCGAGGGCGGCACCGCCCTGGACGAGTCCACCGCGAGCGACGACGCGCTGCTGACCGTCACGGACGTCCGCGTCGGCTCCCACGACGGCTACGACCGGGTCGTGTTCGACCTGGAGGGCACCGGGACGCCCGGGTGGCGGGCGCAGTACGTCGAGGCCGCGCTCGAGCCGGGCCGCGGCGAGGAGCTCGACGTCGGCGGGGACTCGGTGCTGGAGGTCGGGATCACCGGGACCGGCTACCCGACGGACACCGGCGTCACCGAGTACGGCGGCGACCCCGTCGCGGGGCCCGGCGGCTCCGTCGAGGAGGTCGTCTACAGCTTCGTCTTCGAGGGCACGACGACGGCGTTCGTCGGCGTCGACGGCGAGCCGCGGCCGTTCCGCATGTTCTCCCTGGAGGACCCCACGCGGGTCGTGCTGGACGTCGCCGGCTGAMQRSPHRRRTAGAVALVATAALLAACGDGDGLPGYGGGAPATESSSPTAASSAPEDEETPTDEATEEPTDEATEEPTEEPTEEPTEEPTPTEPETPFEGGTALDESTASDDALLTVTDVRVGSHDGYDRVVFDLEGTGTPGWRAQYVEAALEPGRGEELDVGGDSVLEVGITGTGYPTDTGVTEYGGDPVAGPGGSVEEVVYSFVFEGTTTAFVGVDGEPRPFRMFSLEDPTRVVLDVAGNANANANANA
AK018_051771011gpsA_2COG0240Glycerol-3-phosphate dehydrogenase [NAD(P)+]GTGAGCGGCCCGACGACCGCCGTCCTGGGCTCCGGCTCCTGGGGCACGACCTTCGCCATGGTCATGGCCGACGCCGGCTGCGACGTGACGCTGTGGGGCCGCGACGAGGCCCTGGTCCGCCAGGTCGCCGAGGAGCGGCGCAACAGCAAGTACCTGCCCGACGTCGAGCTCCCCGCCATGGCCGCCACGACCGACGCCGCCGCCGCCCTCGCCGGCGCGAAGATCGTCGTCGTCGCCGTGCCGTCCCAGGTGGCCCGCCGCACGCTGGAGCCGCTGCGCGAGCACCTCGAGCCCGACGCCGTCGTGGTCTCGCTGATGAAGGGTGTCGAGCTCAGCACCGACAAGCGGATGAGCCAGGTCGTCGCCGAGGCGCTCGACGTCCCGGCCGGGCGCGTCGCCGTCGTCTCCGGACCGAACCTGGCCAAGGAGATCGCCGCCCGGCAGCCCACCGCGACCGTCGTGGCGTGCTCCGACCCGGACAACGCCCGGCTGGTCGCCGACGCGTGCTCGAGCTCGTACTTCCGCCCGTACACCAACACCGACGTCGTCGGCGTCGAGCTGTGCGGCGCGGTGAAGAACATCATCGCGCTCGCCGTCGGCATGGCGCAGGGCAGCGGCTTCGGCTGGAACACCACTGCGACCGTCATCACCCGCGGCCTGGTGGAGATCACCCGGCTGGGACGTGCCCTCGGCGCCGAGCAGGAGACCTTCTCCGGGCTGGCGGGCATGGGTGACCTCGTCGCGACCTGCGCCTCGCCGCTGTCCCGCAACCACTCGCTGGGCAAGTACGTCGGCCAGGGCATGACGCTCGACGAGGCGCTCGAGGCCACCGGGACGACGGCGGAGGGCGTGAAGTCCTCGCGCTCGGTCCTGGAGCTGGCCCAGCAGCACGACGTGGACATGCCGATCACGGCCGGCGTGGTGGCGGTGCTGCACGAGGGCCTCTCGGTCGACGAGATGGCCCGGGCGCTGCTCTCCCGCCCGCAGAAGTCCGAGAGCGTCGCCGACTGAMSGPTTAVLGSGSWGTTFAMVMADAGCDVTLWGRDEALVRQVAEERRNSKYLPDVELPAMAATTDAAAALAGAKIVVVAVPSQVARRTLEPLREHLEPDAVVVSLMKGVELSTDKRMSQVVAEALDVPAGRVAVVSGPNLAKEIAARQPTATVVACSDPDNARLVADACSSSYFRPYTNTDVVGVELCGAVKNIIALAVGMAQGSGFGWNTTATVITRGLVEITRLGRALGAEQETFSGLAGMGDLVATCASPLSRNHSLGKYVGQGMTLDEALEATGTTAEGVKSSRSVLELAQQHDVDMPITAGVVAVLHEGLSVDEMARALLSRPQKSESVADPGPT0024330_2328DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057NANA
AK018_05178756plsC_2COG02041-acyl-sn-glycerol-3-phosphate acyltransferaseGTGCCCATCGCCAGACCTGAGTCACGGCTCTACCGCCTCGTCGCGAAGATCGTGCGGCCGGTGATGTTCTCGATGTGCCGCTACGAGTGGAGCGGCAGCGAGAACTTCCCGACCGACGGCGGTTTCATCGCGGCCGCCAACCACGCCACGGAGCTCGACGCGCTGACCTTCGTGCACTACCTGTTCGACCACGGCGTCGAACCGCGCGTGCTCGCCAAGCGGGGCCTGTTCGAGACCCCGGTCGTGGGCGGGGTGCTGCGGGCGACGAACATGATTCCCGTCGACCGCGGCAGCAAGGCGGCCGCGGCCTCGCTCGAGCGCGCCGGCCGCGAGCTCGGCGAGGGGGCCTGCGTGGCCGTGTTCCCCGAGGGCACCCTGACCCGCGACCCGGACCTGTGGCCGATGGAGCCGAAGACGGGCCTGGCCCGGATCGCCCTGGCGTCGCGGCTCCCGGTCGTCCCGATCGCCCAGTGGGGCGCCACGGAGATCCTGCCGCGGTACGGCAAGCTGCCGCGTCCGTTCCCGCGCAAGCGGGTGCAGACCACCGCCGGCCCGCCGGTGGACCTGTCCGACCTGTACGACCGGCCGCTGGACGCGGCCACCCTGCGCGAGGCGATGGACCGGGTGATGGACGCCATCACCGCCCAGCTCGCCACGCTGCGGGACGAGGTCCCGCCGGAGCACCGGTTCGACCTGCGCAAGCACCCCGACTACGAAGCGAGACAGATGCACTACCCGCCGGTGGAGCGCCCGTGAMPIARPESRLYRLVAKIVRPVMFSMCRYEWSGSENFPTDGGFIAAANHATELDALTFVHYLFDHGVEPRVLAKRGLFETPVVGGVLRATNMIPVDRGSKAAAASLERAGRELGEGACVAVFPEGTLTRDPDLWPMEPKTGLARIALASRLPVVPIAQWGATEILPRYGKLPRPFPRKRVQTTAGPPVDLSDLYDRPLDAATLREAMDRVMDAITAQLATLRDEVPPEHRFDLRKHPDYEARQMHYPPVERPPGPT0024330_4DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057NANA
AK018_051791317murAA_2COG0766UDP-N-acetylglucosamine 1-carboxyvinyltransferase 1ATGACTGATCTGCTGTACGTCAACGGCGGCACGCCGCTGCAGGGCACCATCGAGGTGCGCGGGGCGAAGAACTTCGTGTCCAAGGCGATGGTGGCGTCGCTGCTGGGGGAGTCGCCGAGCGTGCTGCGCAACGTGCCGCAGATCCGTGACGTCGCGGTCGTGTCCGGTCTGCTCGAGCTGCACGGGGTCAACGTCAAGTACGACCCCGACGCCGGCATCCTCGACCTGGACCCCTCGAACGTCGAGTCGGCGCACGTCGCGGACATCGACGCCCACGCCGGCTCCAGCCGTATTCCGATCCTGTTCTGCGGCCCGCTGCTGCACCGCCTGGGCGAGGCGTTCATCCCCGACCTCGGCGGCTGCCGGATCGGCGACCGGCCGATCAACTACCACCTGGACATCCTGCGGCAGTTCGGTGCCGTGGTCGACAAGCGGCCCAACGGCATCCACCTGCGCGCGCCGCGGCGTCTGCAGGGCACCAAGATCGAGCTGCCCTACCCGTCGGTGGGGGCGACCGAGCAGCTGCTGCTGACGGCCGTGCGCGCCGAGGGCATCACCGAGCTGACCGGTGCGGCCACCGAGCCCGAGATCATGGACCTCATCGCCGTGCTGCAGAAGATGGGCGCGATCATCTCGGTCGACACCGACCGCGTGATCCGGATCGAGGGCGTCGACCAGCTGTGCGGCTACTCGCACACGGCGCTGGGCGACCGCATCGAGGCGGCCTCCTGGGCGTCCGCGGCGCTCGCGACCGGCGGCGACGTGACGATCAAGGGCGCCTCGCAGCCCGAGATGATGACGTTCCTGAACACCTACCGCAAGGTCGGCGGCCAGTTCGACGTCCAGGACGACGGCATCCGGTTCTGGCACCCGGGCGGCGAGCTGCGCTCGATCGTCCTGGAGACCGACGTCCACCCCGGGTTCATGACCGACTGGCAGCAGCCGCTGGTCGTAGCGCTGACCCAGGCCACGGGGCTGTCGATCGTGCACGAGACCGTGTACGAGAACCGCTTCGGGTTCACCGAGGCGCTGCGTCAGATGGGCGCCACGATCCAGGTCTACAAGGAGTGCCTGGGCGGGGCCGCCTGCCGGTTCGGCCGCCGCAACTTCCAGCACTCCGCCGTCGTGTCCGGTCCGACCACGCTCGAGGCCGCCGACATCGAGGTGCCGGACCTGCGCGGCGGGTTCTCCCACCTCATCGCCGCCCTCGCGGCCAAGGGCTCCTCGACGGTGCGCGGGATCAGCCTCATCGACCGCGGCTACGAGTCCTTCCAGGACAAGCTCGAGGCGCTCGGCGCGGACGTCACCCGCGGCTGAMTDLLYVNGGTPLQGTIEVRGAKNFVSKAMVASLLGESPSVLRNVPQIRDVAVVSGLLELHGVNVKYDPDAGILDLDPSNVESAHVADIDAHAGSSRIPILFCGPLLHRLGEAFIPDLGGCRIGDRPINYHLDILRQFGAVVDKRPNGIHLRAPRRLQGTKIELPYPSVGATEQLLLTAVRAEGITELTGAATEPEIMDLIAVLQKMGAIISVDTDRVIRIEGVDQLCGYSHTALGDRIEAASWASAALATGGDVTIKGASQPEMMTFLNTYRKVGGQFDVQDDGIRFWHPGGELRSIVLETDVHPGFMTDWQQPLVVALTQATGLSIVHETVYENRFGFTEALRQMGATIQVYKECLGGAACRFGRRNFQHSAVVSGPTTLEAADIEVPDLRGGFSHLIAALAAKGSSTVRGISLIDRGYESFQDKLEALGADVTRGPGPT0024090_977DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLGLUCOSAMINE_MODIFICATION,PGPT0024090-murA-K00790NANA
AK018_051801197COG0446Sulfide-quinone reductaseATGACCGCACGTGTCCTGGTTCTCGGCGGCAGCTTCGCAGGGATGACGGCCGCCCTGTCCATCAAGTCCGACCTGGGCGAGGAGGCCGAGGTCACGGTCGTGTCGGCCTCCGACCGGTTCGTCTTCAACCCCTCGCTGATCTGGCTGCCCTTCGGGCGCCGGGGCCGCACCGACATCACGTTCCCGCTGGAGCCGACGTTCACCAAGCAGGGCGTGCGGTTCGTGCACGGGTCCGCGACCTACGTCGACCCCGACCACCACCGGGTGGAGACCACCGAGGGGACGTTCGACTACGACTACCTGGTCATCGCCACCGGGTACCGCAACGACCTCGACGTCGTCCCCGGGATGCGCGACACGCCGACCATCACCACCCTGCACGACGCCGAGCGCACCTACGACGCCTGGCGCCGGTTCCTCGACGACCCGGGCGACGTCGTCATCGGCGCGACGCAGCGCGCGAGCTGCTTCGGGGCGGCGTACGAGTTCCTGTTCAACACCTCCTACCAGCTGCGCCGCGCCGGCCTGCACGGCAAGGTCAAGCTGACGTACGTCACCTCCGAGCCCTTCGCCGGCCACTTCGGCATCGACGGCATGCCGGGAGCCAAGCCGCTGATGAAGATGTTCGCCAGGAAGGAGGGCATCACCGTCGAGCCGAACCAGTCGATCGCGGAGATCAAGCCCGACGTCGTCGTGCTGTCCGACGGCCGCGAGCTGCCGTACAAGTTCGCGATGATCGTCCCGCCGTTCCGCGGCCAGGACTTCCTCGCCAAGACCCCCGACCTGGTCGACGCCGGCAACTACGTCACGGTCCGCCCGACCTACCAGTCGGAGAAGTGGGACGACGTCTACGCGATCGGCATCGCCGCCGCCGTGCCCGTGCCCTGGACCACGCAGGTCGCGACCGGCATCCCGAAGACCGGCTTCCCCAGCGAGCAGCAGGCGCACGTCGCGGCCAAGAACATCGTCTCCCAGGTGCGCGGCGAGGAGCCGACCCAGGAGAAGGAGTTCTCGAAGATCCCGGCGCTGTGCGTCATGGACGCCGGCAACAACGGCGTCGCGATGGTCGCCGACCACATGCTGCCCCCGCGCAAGGCCGCCGTCATGGTGCCCGGACCGCAGAACCACGCGTTCAAGATCGGCTTCGAGAAGTACTCCCTGGCCAAGATGAAGGCCGGCAAGGTCAAGCTGCCGTGAMTARVLVLGGSFAGMTAALSIKSDLGEEAEVTVVSASDRFVFNPSLIWLPFGRRGRTDITFPLEPTFTKQGVRFVHGSATYVDPDHHRVETTEGTFDYDYLVIATGYRNDLDVVPGMRDTPTITTLHDAERTYDAWRRFLDDPGDVVIGATQRASCFGAAYEFLFNTSYQLRRAGLHGKVKLTYVTSEPFAGHFGIDGMPGAKPLMKMFARKEGITVEPNQSIAEIKPDVVVLSDGRELPYKFAMIVPPFRGQDFLAKTPDLVDAGNYVTVRPTYQSEKWDDVYAIGIAAAVPVPWTTQVATGIPKTGFPSEQQAHVAAKNIVSQVRGEEPTQEKEFSKIPALCVMDAGNNGVAMVADHMLPPRKAAVMVPGPQNHAFKIGFEKYSLAKMKAGKVKLPNANANANANA
AK018_05181438hypothetical proteinATGACGGGCACGGAGACGACCGCGCGACGCCCCTCCGCCGCCTCGCGGCGGGTCGGCTACGCCGTCGCCGTGCTCGTGAACGGTCTGCTGCTCGTGCTGATCCACGGGTGGCCGGGCTGGGAGGCGGTGCCGTTCCTGACGCCGCGGACCACCGAGGTGCTGACGGCGGTCGACGCCTCGATCGTCGTCGGCATCGTCGCGAACCTCGTCTACCTCCTGGCGGACCCGCCGCGGCTGCGCGCCCTGGGCGACGTCGTGACCACGGCGGTGGGACTCGTCGCGGTCGTGGTCGTGTGGCGGGTCTTCCCGTTCGACTTCGCCGGCACCTTCGACTGGGCGCTGGTGGTCCGTATCCTGCTCGTCGTCGCGATGGTGGGCAGCACGATCGGGATCGTCGTCAGCCTCGTCCGGCTGGCGACCGGACGAGGGAGACCCTGAMTGTETTARRPSAASRRVGYAVAVLVNGLLLVLIHGWPGWEAVPFLTPRTTEVLTAVDASIVVGIVANLVYLLADPPRLRALGDVVTTAVGLVAVVVVWRVFPFDFAGTFDWALVVRILLVVAMVGSTIGIVVSLVRLATGRGRPNANANANANA
AK018_05182726hypothetical proteinATGACCGTGATGCCAGAGAAGCCCCGCACCGGCTACCCGCTGCGGATGGAGGCCGAACCACCCGCCGAGCTCTCCCGGGGGCTCTGGCTGGTCAAGTGGCTGCTGATCCTCCCGCACGTCGTGGTGCTGATCGGCCTGTGGATCGCCTTCGTCGTGCTGACGGTCGTGGCGTTCTTCGCGATCCTGTTCACCGGCCGCTACCCGCAGAGCATCTTCACCTTCAACGTCGGCGTCCTGCGCTGGTGCTGGCGCGTCGCGTACTACTCCTACGGCGCGCTGGGCACCGACCGCTACCCGCCGTTCACGCTCGACGAGGTGCCCGACTACCCCACCCACCTGGACGTCACGCCGCCGCAGCGGCTCTCCCGCGGCCTGGTGCTCGTCAAGTGGTGGCTGCTCGCGATCCCGCACTACGTCGTCGTCGGTATCTTCCTGGGCACCAGCTCCCGCACGACGGAGATCGCCTCCGACGGCACCGTCGTCGTCAGCGACTGGCCCCCCGGTGTCGGGCTCGTCGGCGTGCTCGTCCTGTTCGCCGCCGTGGTGCTCCTCTTCCGCGGCACCTACCCGCGCAGCATGTTCGACCTGGTCCTGGGGCTGCAGCGCTGGGCCCTGCGTGTGGCCGCCTACGCCGCCCTCATGACGGACGACTACCCGCCGTTCCGCCTCGACCTGGGCACCCACGAACCGACCGGCACCGTGCCGCAGCAGAGTCCCCCGGCCTGAMTVMPEKPRTGYPLRMEAEPPAELSRGLWLVKWLLILPHVVVLIGLWIAFVVLTVVAFFAILFTGRYPQSIFTFNVGVLRWCWRVAYYSYGALGTDRYPPFTLDEVPDYPTHLDVTPPQRLSRGLVLVKWWLLAIPHYVVVGIFLGTSSRTTEIASDGTVVVSDWPPGVGLVGVLVLFAAVVLLFRGTYPRSMFDLVLGLQRWALRVAAYAALMTDDYPPFRLDLGTHEPTGTVPQQSPPANANANANANA
AK018_05183282hypothetical proteinATGGCGCACACCTGGACGATCACCGTCCACCTCGTCGAGACCGAGGACACCGATCCCGACCGGGGCATCACCTCCGCCCACGCGGTGCTGACCACCTCGAGCGGCACGACGCTCGAGGGCCGCGGCACGGCGCGTCGCAACCCCGACGACGTCGAGGTCGAGGCGATCGGCGAGGAGCTCGCGACGGCGCGGGCGCTCCGCGACCTCTCGGACCGGCTCCTGCAGGAGACGTCGGACGACCTCGCCGAGATCGAGCAGCATCCGGTGCACCTGCGCTCGTGAMAHTWTITVHLVETEDTDPDRGITSAHAVLTTSSGTTLEGRGTARRNPDDVEVEAIGEELATARALRDLSDRLLQETSDDLAEIEQHPVHLRSNANANANANA
AK018_051841572oxyL6-methylpretetramide 4-monooxygenaseGTGACCGACGTCCTGGTCGTGGGCGCCGGACCCACCGGGCTGGCGACGGCCCTGCAGGCACACGACCACGGCGCCGTGGTGCGCGTCGTCGAGCGGCGTCCGACGGCGTGGCGGCCGTCGCGCGCGATGATCGTCCACCCGCACACGCTGGAGTCGCTGCGCCCCCTCGGCGTGGCCGACGCCCTGCTGGACCGTGCCGACCGCTCGCCCCGCGCGCAGGTGCACCTCGGGCGGCGCCTGGTCGACGTCCAGCTGGCCGACGTCGACTGGTCCGCCACCCCGTACCCGCACCTGACGATGGTGCGCCAGGCCGACGTCGAGGACGTGCTCGCGCAGGCGCTCGCGGCCCGGGGCGTCACGGTGGACCGGGGCACGGAGTGCGTCGCGGCCCGGGACTGCGGCACGGCCGGCACGGACGCCGGTGCCGTGCGTGCCGTGCTGCGCGCCGAGGGCGGCGACGAGGAGGCCACGGCCCGCTTCCTCGTCGGCTGCGACGGCCCGGACAGCACCGTGCGGCGCGGCGCCGGGACCGCCTGGCGCGGCGGCCCGTACCCGGTGGAGGTCCTGCTGGCCGACCTCGGGCTCGACGGCGACCTCGCCCCGGGCGTGCTGCACGCCGTCGTCGCCCGTCGCGGTCTGGTGTTCCTCTTCGCGCTGGGGGAGGGCGCCCCGTGGCGGCTGCTCGCGACGCGTCCGGCGTCCGACGGCGGCGCACCCGTGGGACAGCCCGGTGCGCCGGTCCCGGCAGACGAGGTCGCGGCGCTCCTCGACGACGCCGGGCTGGGCGCCACGCTCGCCGACCTGCGCTGGTCGGCACGCGTGCGGCTGCAGCACCGGGTCGCCGGGGCGTTCCGCCAGGGCCGGATCTTCCTCGCCGGGGACGCCGCCCACACCCACTCGCCGGCAGCGGCGCAGGGCATGAACTCCGGCCTCCTCGACGCCGTCAACCTCGGGTGGAAGCTCGCCCTCGCCGCCGGGACCGCGGACCCCTCCGGCGACACCGACAGCCCCCTGCTGGCCTCCTACGACGCCGAGCGGCGCCCGGTGGCCCGTCAGGTCCTCGCCCTGACCCACCTCGTGTTCTTCGGCGAGGCGTCCACGCACCCGCTGCCCGCCCTGCTGCGCGGGACGGTGCTGCCCCTCGCGGCCCCGGTGGTGCCGCTGGCGGTGCGCCGACGTCGGCTCATGGGCCTGGTCGTCCGGCTGCTGTCGCAGGACTGGGTCGCCTACCGGCACAGCCCCCTGACGGTCGCGGGACGCCCCGCCCGGGCGGCGCCCCGACCCGGGCACCGACTGCGGGACCGGGACGTCACCTGTGCCGGGCGCACCCGCCGCCTGCACGAGCTCACCGCGAGCCCGGGCGTCCACGTCCTGCTCGACCGCGACGCCCCGGTGCTCGACCCCCGCGCCCTCGGCCCGCACGTGTCCGCCCACCGCCTCGCGAGCAGTCCCGGGCGGGGCGTCGTCGCCGTGCGCCCCGACGGGTTCGTCGGGTACACGGACGCCGGCGGCGCCCCCCGGGGGCTCACCGACTGGCTGCGCCGCGCCGGGGCGCGTCCGTCGGCCCGCTGAMTDVLVVGAGPTGLATALQAHDHGAVVRVVERRPTAWRPSRAMIVHPHTLESLRPLGVADALLDRADRSPRAQVHLGRRLVDVQLADVDWSATPYPHLTMVRQADVEDVLAQALAARGVTVDRGTECVAARDCGTAGTDAGAVRAVLRAEGGDEEATARFLVGCDGPDSTVRRGAGTAWRGGPYPVEVLLADLGLDGDLAPGVLHAVVARRGLVFLFALGEGAPWRLLATRPASDGGAPVGQPGAPVPADEVAALLDDAGLGATLADLRWSARVRLQHRVAGAFRQGRIFLAGDAAHTHSPAAAQGMNSGLLDAVNLGWKLALAAGTADPSGDTDSPLLASYDAERRPVARQVLALTHLVFFGEASTHPLPALLRGTVLPLAAPVVPLAVRRRRLMGLVVRLLSQDWVAYRHSPLTVAGRPARAAPRPGHRLRDRDVTCAGRTRRLHELTASPGVHVLLDRDAPVLDPRALGPHVSAHRLASSPGRGVVAVRPDGFVGYTDAGGAPRGLTDWLRRAGARPSARNANANANANA
AK018_05185606hypothetical proteinATGAGCCCGACCCCGGAGTCCCGCCCCGCGCCGCGCCCGGCAGCCCGCCCGGCCGCCCGCCCGGCCGCCCGCCCCGAAGCATGGCGCGCCGTCGGGCGCTGTGCCGTCGCCAGTACGTCCCTGCTCGTGCGGGGTCGGGTGCGCCAGCCGCGGTCCCGCGTCGGACGGGTCGTGCGGTTCGCCGACGGCACGCAGGGCCGCGTCTACCGGGAGACGGTCGTCGCCCGCGTGCCCGCCGAGCCCTGCTTCCTGGCCGTCGCCTTCCGGCTGCGGTGGGTCCACGACCCCCGGGGACACGCCGTGTTCCGCGCCGAGAGCCTGCTCAACACCCCGCTGTTCGTCGGCTTCCCCGGCTTCGTGTCCAAGCTGTGGCTGGCCGCCGACGAGCGGCACGTCTACCGGGGCCTGTACGAGTGGGACGGCGCCGGTCGTGCCGAGGGCTACGCCCGCTCCCTGTGGCGCGTGCTCGAGCTCGTCAGCGAGCCCGGTTCGATCGACTACCGGGTCGTGCCCGGTCTGACCCGCGACGAGGCGCTGGCGCGGCTCGTGCCGACGGGCACCGGCGACGCCGCGCCGGACGACGGCTGGTGGCGGGTGGTCCCGTGAMSPTPESRPAPRPAARPAARPAARPEAWRAVGRCAVASTSLLVRGRVRQPRSRVGRVVRFADGTQGRVYRETVVARVPAEPCFLAVAFRLRWVHDPRGHAVFRAESLLNTPLFVGFPGFVSKLWLAADERHVYRGLYEWDGAGRAEGYARSLWRVLELVSEPGSIDYRVVPGLTRDEALARLVPTGTGDAAPDDGWWRVVPNANANANANA
AK018_051861173COG0265Serine proteaseGTGACCCCCCTCGACGTCGTGCTCGTCGTCCTCCTCGTCGCCGCGCTCGCGACCGGGCTGACGCGTGGCGTGCTGTCCACGGTCGGCGGGCTCGTCGGCCTCGTCCTCGGCGGCGCGGTGGCGTTCCTGGCGGTGCCTGTCGTGGTCGACGCGCTGCCCGTGTCCGAGTGGCGTGGGGCGGCCACGGTGCTCCTGGCGGTGGCCGTCCCGCTGCTGGGCCTGTCGCTCGGCGCCGGGGTGGGACGCCGCCTGCGCCATCAGGTCGACCGCACCCGCGCCGTCCCGCTCGAGCGTCTCCTCGGCGGGGTCGCGAGCCTGCTGGTGGCCGCCGTCGCGCTCTCGTTCGTGGGCTCGACGATCAAGGCCACGGGGACCCCGGTCCTGGCCCCGGCCGTCTCGTCGTCGGCGGTCCTGCGCACCATCGACGCGTACACGCCGGCGCCGGTGACGCGGACCCTGGCCCAGGCGCGCGCCGCGGTGCTCGACGACGGTCTGCCGCAGCTGGACGGGCTGCTCGACCCGCGCCGGAGCAGGACGGCCCCCGCCGTCGACCTCGCGGACCCGGCGCTGGAGGCCTCCGCGCAGTCCGTCGCCCGCGTCTGGGGCACCGCCTACGAGTGCGGCACGGGCGTGACCGGGTCCGGCTTCGTCGCGGCGCCGGACCGCGTCGTGACCAACGCGCACGTCGTGGCCGGCGTGGAGCGGCCGCTCGTCGAGCTGCCCGGGCGGACGGCCGAGGAGGGGCGGGTCGTCTACTACGACCCGGAGGCCGACCTCGCCGTCGTGGCGGTCGACGGGCTGGACGCCACCCCGCTGACCATCGCGCCCGCACTCGAGCGCGGCGACGCGGCGGTCGTGCAGGGCTATCCGTACGGGGGACCGTTCACCTCGACCGGCGCGGAGGTGCTCGACGCCGGGGGAGTGCGGATCCCGGCGTCCGACGGGACGGGCACCGTCGAGCGCGACGTCTACGCCCTCGCCGCGACCGTGCACGGCGGGAGCTCGGGTGGCCCCGTGCTCTCGCCCGACGGCGAGGTCGTCGGCGTGATCTTCGGTCAGTCCCAGTCGGACGACGAGCTGGCCTACGGCGTGACGTCCACCGAGCTGATGCCCGTGGCGGCCCGGCTCGCCGACCTGGACGACGCGGTCGCGCCGGGGCGCTGCGCCGCCTGAMTPLDVVLVVLLVAALATGLTRGVLSTVGGLVGLVLGGAVAFLAVPVVVDALPVSEWRGAATVLLAVAVPLLGLSLGAGVGRRLRHQVDRTRAVPLERLLGGVASLLVAAVALSFVGSTIKATGTPVLAPAVSSSAVLRTIDAYTPAPVTRTLAQARAAVLDDGLPQLDGLLDPRRSRTAPAVDLADPALEASAQSVARVWGTAYECGTGVTGSGFVAAPDRVVTNAHVVAGVERPLVELPGRTAEEGRVVYYDPEADLAVVAVDGLDATPLTIAPALERGDAAVVQGYPYGGPFTSTGAEVLDAGGVRIPASDGTGTVERDVYALAATVHGGSSGGPVLSPDGEVVGVIFGQSQSDDELAYGVTSTELMPVAARLADLDDAVAPGRCAANANANANANA
AK018_051871404lpdC_2COG1249Dihydrolipoyl dehydrogenaseATGGCTTCCCACTACGACGTCGTCCTCCTTGGAGCTGGCCCCGGCGGCTACGTCGCCGCCATCCGCGCGGCACAGCTCGGCAAGTCCGTCGCCATCATCGAGGAGAAGTACTGGGGTGGTGTGTGCCTCAACGTGGGCTGCATCCCCTCCAAGGCTCTCCTGCGCAACGCCGAGCTGGCGCACATCTTCCACGACCAGGCCGACTACTTCGGCATGTCGGGGGACGTGAGCTTCGACTTCGGCAAGGCGTTCGACCGGTCCCGCGAGGTCGCGGACGGCCGCACCAAGGGCGTCCACTTCCTCATGAAGAAGAACAAGATCACCGAGTACGACGGCCGCGGCACCTTCCGTGACGCGAACACGATCGAGGTGGCGCTGAACGACGGCGGCACCGAGACCGTGACCGGCGACGACGTGATCATCGCGACGGGCTCGCAGGTCAAGCTCCTCCCGGGCGTCGAGCTCTCCGAGAACGTCGTGACCTACGAGAAGCAGATCATGACGCGCGAGCTGCCGTCGTCGATCGCCATCGTGGGCGCCGGCGCCATCGGCATGGAGTTCGCCTACGTCATGAAGAACTACGGCGTGGACGTCACCATCGTGGAGTTCCTCGATCGCGCCCTGCCGAACGAGGACGCCGAGGTCTCCAAGGAGATCGCCAAGCAGTACAAGAAGCTCGGCATCAAGATCCTCACCTCGACCGCGGTGCAGTCCGTCAAGGACAACGGCTCCTCGGTCACCGTCGACTACAAGGGCGTCAAGGACGACAAGCCCGGCTCGCTCGAGGTCGACAAGGTCCTCATGGCGGTCGGCTTCGCGCCGGCGGTGGAGGGCTTCGGCTTGGAGAACACCGGCGTGCAGCTCGACGAGCGCGGCGCGATCGCGATCGACGACCACATGCGCACCAACGTGCCGCACGTCTTCGCCATCGGTGACGTCACCGCGAAGCTCATGCTCGCCCACGTGGCCGAGGCCATGGGCGTCGTCGCGGCCGAGACGATCGCCGGCGCCGAGACCATGACGCTCGGCGACTACCGCATGATGCCGCGCGCGACGTTCTGCTCGCCGCAGGTCGCCTCCTTCGGACTCACCGAGGCGCAGGCGAAGGACGAGGGCTACGACGTCAAGGTGTCGAAGTTCCCGTTCATGGCCAACGGCAAGGCCCACGGCCTGGGCGAGACCGCCGGCTTCGTCAAGCTCGTCGCGGACTCCACGTACAACGAGCTGCTCGGTGCCCACATGATCGGCCCGGACGTCTCGGAGATGCTGCCCGAGCTCACGCTGGCCCAGAAGTGGGACCTCACGGCCGACGAGGTGGCGCGCAACGTGCACACCCACCCGACGCTGTCGGAGTCGGTCCAGGAGGCCGTGCACGGCCTCGCGGGGCACATGATCAACCTCTGAMASHYDVVLLGAGPGGYVAAIRAAQLGKSVAIIEEKYWGGVCLNVGCIPSKALLRNAELAHIFHDQADYFGMSGDVSFDFGKAFDRSREVADGRTKGVHFLMKKNKITEYDGRGTFRDANTIEVALNDGGTETVTGDDVIIATGSQVKLLPGVELSENVVTYEKQIMTRELPSSIAIVGAGAIGMEFAYVMKNYGVDVTIVEFLDRALPNEDAEVSKEIAKQYKKLGIKILTSTAVQSVKDNGSSVTVDYKGVKDDKPGSLEVDKVLMAVGFAPAVEGFGLENTGVQLDERGAIAIDDHMRTNVPHVFAIGDVTAKLMLAHVAEAMGVVAAETIAGAETMTLGDYRMMPRATFCSPQVASFGLTEAQAKDEGYDVKVSKFPFMANGKAHGLGETAGFVKLVADSTYNELLGAHMIGPDVSEMLPELTLAQKWDLTADEVARNVHTHPTLSESVQEAVHGLAGHMINLPGPT0001380_5945DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001380-lpd|pdhD-K00382NANA
AK018_05188444rnhA_4COG0328Ribonuclease HIGTGAGCGACAAGCCGACCGTGGAGATCTGGACCGACGGCGCCTGCAAGGGCAACCCCGGACTCGGGGGATGGGGCGCCCTGCTGCGTTCCGGGGAGCACAGCAAGGAGCTGTTCGGCGGCGAGAAGGTCACCACGAACAACCGCATGGAGCTGACGGCCGTCGTCGAGGCCCTGCGGGCGCTCAAGGGCCCCAGCGAGGTCACGCTGCACGTCGACTCCCAGTACGTCATGAACGGCATGAAGTCGTGGATCGCCGGCTGGAAGCGCAACGGCTGGCAGACGTCGGCCAAGAAGCCCGTCAAGAACGTCGACCTGTGGCAGGCCCTGGACGCCGAGGTCGCCGAGCACGACGTGCGCTGGGTCTGGGTCAGGGGCCACGCGGGTGACCCCGGCAACGAGCGCGCCGACCAGCTCGCCAACGCCGGCGTCGACTCCGTGCGCTGAMSDKPTVEIWTDGACKGNPGLGGWGALLRSGEHSKELFGGEKVTTNNRMELTAVVEALRALKGPSEVTLHVDSQYVMNGMKSWIAGWKRNGWQTSAKKPVKNVDLWQALDAEVAEHDVRWVWVRGHAGDPGNERADQLANAGVDSVRPGPT0003760_50DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_05189867fgd_12F420-dependent glucose-6-phosphate dehydrogenaseGTGAAGTTCGGGTTCATCGGGAGCTACGGCACGCCCGCCCAGCAGGTCCGACTCGCACGCGAGTGCGAGGAGCACGGCTGGGACGGGTTCTTCACGTGGGACGGGGTCAGCCTGGACGCCGACGGGTTCGACGCGCACCCGACATGGGACCCGTTCGCCCTGCTCGCCGCGGCGGCGGCCGTGACGGAACGCCTCACCCTGGGGGCGGTCGTCTTCGCCGTGCCCCGGCGTCGCCCGTGGGAGCTCGCCCAGCAGGCCCTGACCGTCGACCACCTCTCCGGCGGGCGCCTGGTGCTGCCCGTCGGCGTCGGGGTCCCGGTCGACCGGGCGTTCACCTCGGTGCCGGGGCAGCCGACGACGCTGCGCGACCGTGCCCGGGCCCTGGACGAGATCCTGGACTGGCTCGAGACGTCGTGGGCGGGCGAGGAGTTCACGCACGACGGCGCGTGGGCGGCCACCGGGGCCTTCCGGTTCCCCGTCGCCCCGGTGCGCGGTCGCATCCCGGTCTGGCCGGTCGGTGTCTGGGACGCGCAGGAGCCCCCGCGGCGGAGCCTGGACCGGGCCCTGCGCTGGGACGGGATCGTCCCGCAGGTGCGGGGCGACTCCCCGGAGGACGCCGAGCCGACGGCGGAGAGTCTGCGTACGCTCACCGCGTGGGTGGCCGAGCACCGCGACCCCGCCACCGGGCCCTTCGACGTCGTCCACCAGGGCCGCCTCGACGCCGACCCGGAGGTGGCGCGGCAGCAGGCCGCCGAGGCGGCCGACGCGGGCGCGACGTGGTGGATGGAGTCCTGGTGGGACCCCGCCTCCACGACGCCGGAGAGCCTCCTCGAGCGCGTCCGCCGCGGCCCGCCCCCGCTGACCTGAMKFGFIGSYGTPAQQVRLARECEEHGWDGFFTWDGVSLDADGFDAHPTWDPFALLAAAAAVTERLTLGAVVFAVPRRRPWELAQQALTVDHLSGGRLVLPVGVGVPVDRAFTSVPGQPTTLRDRARALDEILDWLETSWAGEEFTHDGAWAATGAFRFPVAPVRGRIPVWPVGVWDAQEPPRRSLDRALRWDGIVPQVRGDSPEDAEPTAESLRTLTAWVAEHRDPATGPFDVVHQGRLDADPEVARQQAAEAADAGATWWMESWWDPASTTPESLLERVRRGPPPLTNANANANANA
AK018_05190639leuD_2COG00663-isopropylmalate dehydratase small subunitATGGAGAAGATCGTCACCCACACCGGCGTCGGGGTCCCGCTGCGCCGCAGCAACGTCGACACCGACCAGATCATCCCCGCCGTGTACCTCAAGCGGGTCACGCGCACGGGCTTCGAGGACGCGCTGTTCGCCGCCTGGCGCGGCGACGAGTCGTTCGTCCTCAACCAGGACGCCTACCGCAACGGCTCGGTGCTCGTGGCCGGTCCGGACTTCGGCACGGGCTCCTCGCGCGAGCACGCCGTGTGGGCGCTGAAGGACTACGGCTTCCGCGTCGTGCTGGCCTCCCGGTTCGCCGACATCTTCCGCGGCAACTCGGGCAAGCAGGGCCTCGTGGCCGGCATGGTCGCCCAGGACGACATCGAGCTGCTCTGGAAGATCCTCGAGACCAAGCCGGGCACCGAGGTCACGGTCGACCTGGAGCAGCGCACCGTGCACGCCGACGACGTCACCGTGCCGTTCCAGATCGACGAATACACCCGCTGGCGGCTGATGGAGGGGCTCGACGACATCGGCCTCACCCTGCAGCACGAGGAGGACATCTCCGCCTACGAGGCGTCGCGGTCGTCCTGGCGCCCGACGACGCTGCCGGCCAAGCACCTGCCGAAGGTCGAGATCGAGCCGGCGCGGCCCGTCGCCTGAMEKIVTHTGVGVPLRRSNVDTDQIIPAVYLKRVTRTGFEDALFAAWRGDESFVLNQDAYRNGSVLVAGPDFGTGSSREHAVWALKDYGFRVVLASRFADIFRGNSGKQGLVAGMVAQDDIELLWKILETKPGTEVTVDLEQRTVHADDVTVPFQIDEYTRWRLMEGLDDIGLTLQHEEDISAYEASRSSWRPTTLPAKHLPKVEIEPARPVAPGPT0001443_1154DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001443-leuD-K01704NANA
AK018_051911518leuC_2COG00653-isopropylmalate dehydratase large subunitATGAACGACAGCCGCCCCGGGGCGGCGGACGAGGAGCTCGCCATGGCCGGCACGCTGGCAGAGAAGGTCTGGGAGGCGCACCTGGTGCGCCAGGGCACCGACGGGGCACCGGACCTGCTCTACATCGACCTGCACCTGGTGCACGAGGTCACCAGCCCGCAGGCCTTCGAAGGTCTGCGCCTGGCCGGGCGGCCCGTGCGCCGGCCCGACCTGACGATCGCGACCGAGGACCACAACACCCCCACCCTCGACATCGACCTGCCGATCGCCGACCCGACGAGCCGGACCCAGATCGACACGCTGCGCAACAACGCCGCCGAGTTCGGCGTGCGCATCCACTCCCTCGGCGACGCCGACCAGGGCATCGTCCACCAGGTGGGCCCGCAGCTCGGCCTGACGATGCCGGGGCTGACCGTGGTCTGCGGCGACTCGCACACCTCGACCCACGGCGCCTTCGGTGCTCTCGCCTTCGGCATCGGCACCTCCGAGGTCGAGCACGTCCTGGCGACCCAGACGCTGCCGCTCGCCCCGTTCAAGACGATGGCGATCACCGTCAACGGCGACCTGCCGCCCGGCACCACCTCCAAGGACATCATCCTGGCGATCATCGCCAAGATCGGCACCGGCGGCGGCCAGGGCTACGTGCTCGAGTACCGCGGCGAGGCCATCCGGCAGCTGTCGATGGAGGCGCGGATGACCATCTGCAACATGTCCATCGAGGCCGGGGCCCGCGCCGGCATGATCGCCCCGGACGAGACGACCTTCGAGTACCTCAAGGGCCGCCCGCACGCCCCCGAGGGGGAGGACTGGGACGCCGCCGTCGAGTACTGGAGCACGCTGCGCAGCGACGACGACGCCGAGTTCGACGCCGAGGTGGTCCTCGAGGCCGCCGACCTCGAGCCGTTCGTCACCTGGGGCACCAACCCCGGTCAGGGTCTGCCGCTGTCCGCCTCCGTGCCCGTGCCCGCCGAGATCGCCGAGGAGGGCGAGCGCGTCGCCGCCGAGCGGTCCCTGGAGTACATGGGCCTCGAGCCCGGCACCCCGCTGCGCGACATCGCCGTGGACACGGTGTTCATCGGTTCGTGCACCAACGGGCGCATCGAGGACCTGCGGTCGGTCGCCAAGGTCCTCCAGGGCCGCACCAAGGCCGACGACGTCCGCGTGCTCGTCGTGCCGGCGTCGGCCCGCGTGCGCCTGCAGGCCGAGGCCGAGGGCCTGGACGTCGTCTTCAAGGACTTCGGCGCCGAGTGGCGCAACGCCGGGTGCTCGATGTGCCTCGGCATGAACCCCGACCAGCTGCAGCCGGGGGAGCGGGCCGCCTCGACGTCGAACCGCAACTTCGAGGGCCGCCAGGGCAAGGGCGGCCGCACGCACCTGGTCTCGCCGCTGGTGGCGGCCGCGACCGCCGTGCGCGGCACGCTGTCCTCCGTGGCCGACCTCGACCTGGGCGAGGACGTCGACCTGACCACGTTCGACGGGTCCCCGCTGGCGCCGCTGACCGCGCCGTCGTTCGTCTGAMNDSRPGAADEELAMAGTLAEKVWEAHLVRQGTDGAPDLLYIDLHLVHEVTSPQAFEGLRLAGRPVRRPDLTIATEDHNTPTLDIDLPIADPTSRTQIDTLRNNAAEFGVRIHSLGDADQGIVHQVGPQLGLTMPGLTVVCGDSHTSTHGAFGALAFGIGTSEVEHVLATQTLPLAPFKTMAITVNGDLPPGTTSKDIILAIIAKIGTGGGQGYVLEYRGEAIRQLSMEARMTICNMSIEAGARAGMIAPDETTFEYLKGRPHAPEGEDWDAAVEYWSTLRSDDDAEFDAEVVLEAADLEPFVTWGTNPGQGLPLSASVPVPAEIAEEGERVAAERSLEYMGLEPGTPLRDIAVDTVFIGSCTNGRIEDLRSVAKVLQGRTKADDVRVLVVPASARVRLQAEAEGLDVVFKDFGAEWRNAGCSMCLGMNPDQLQPGERAASTSNRNFEGRQGKGGRTHLVSPLVAAATAVRGTLSSVADLDLGEDVDLTTFDGSPLAPLTAPSFVPGPT0001442_344DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001442-leuC-K01703NANA
AK018_05192720iclR_2COG1414Transcriptional repressor IclRATGGACGATACTAGCGGAGTCGGCGTACTGGACAAGGCCGCGTCCGTACTGGGCGCACTGGAGGCCGGTCCGGCCACCCTCGCGCAGCTGGTCGCCTCGACCGGCCTGGCGCGTCCGACCGCGCACCGCCTCGCGGTCGCGCTCGAGCACCATCGGTTCGTGGCGCGCGACATGCAGGGCCGTTTCGTGCTCGGACCCCGGCTCAACGAGCTGGCGACCGCGGCCGGGGAGGACAGGCTGCTCGCCGCGGCGAACCCCGTGCTCACGGCGCTGCGGGACCACACCGGGGAGAGCGCTCAGCTCTATCGCCGACAGGGTGACCACCGCGTGTGCGTGGCCGCCGCCGAGCGGCCGGTCGGCCTGCGCGACTCCATCCCGGTCGGGGCCACGCTGACGATGCACGCGGGCTCCGCGGCGCAGATCCTGCTCGCGTGGGAGGAGCCGGACCGCCTGCACCGCGGGCTGCGCGAGGCCGTGTTCACCGCGACGATCCTGTCGGGTGTCCGGCGCCGCGGCTGGGCCCAGTCCGTCTCCGAGCGCGAGCTCGGGGTGGCCTCGGTCTCGGCACCGGTGCGCGGACCGTCCGGGCGGATCGTCGCCGCGGTCTCGGTCTCGGGCCCGGTCGAGCGACTGACCCGTCAGCCGGGACGCCTGCACTCGGCCTCCGTGGTCGCGGCCGCGAACCGGCTCACCGAGGTCCTGCAGCGCGCCGGCGACTGAMDDTSGVGVLDKAASVLGALEAGPATLAQLVASTGLARPTAHRLAVALEHHRFVARDMQGRFVLGPRLNELATAAGEDRLLAAANPVLTALRDHTGESAQLYRRQGDHRVCVAAAERPVGLRDSIPVGATLTMHAGSAAQILLAWEEPDRLHRGLREAVFTATILSGVRRRGWAQSVSERELGVASVSAPVRGPSGRIVAAVSVSGPVERLTRQPGRLHSASVVAAANRLTEVLQRAGDNANANANANA
AK018_05193168hypothetical proteinATGCCGGCCAAGGCCAAGACCCTGCTGATCTGGCTCGTCGTGATCTTCCTGATCTACGCGATCGTGACGAGCCCCGAGCGTGCTGCCGACATCGTCCAGGCCCTCTGGGACGTCATCGCGGGAGCCTTCGCCAGCTTCGGGGAGTTCCTCGCGAACCTGACGTCATGAMPAKAKTLLIWLVVIFLIYAIVTSPERAADIVQALWDVIAGAFASFGEFLANLTSNANANANANA
AK018_05194810hypothetical proteinATGAACGGCGCGGACCCCGACCTCGCGGTCCGTCGGCACAGCCACCTGCGGCGCTACGTGCTGGCCGGCGAACGGGTGTCGGTGGCCACACGGCTGCACTGGGCCAAGCTGATCGAGCCGATCGCGACGACTCTGGCCGCGACGGTGCTCGTGGCCTGGTTGCACTCCACGAGCGGGTCCGGACTCGTCTGGGTGCTGTGGCTGGTGCCCGCCGGGCGCCTGTTCGTCCGCTGGGCCGAGTGGCACTACGAGTGGTTCGTCGCGACCGACAAGCGCCTGCTCCTCACCTACGGGTTCATCATCCACAAGGTCGCGATGATGCCGCTGGCCAAGGTCACCGACATGGGCTACACCCGCACCCCGGTGGGCCAGGTGCTCGGCTACGGGCGCTTCGTCATGGAGTCCGCGGGCCAGGACCAGGCGCTGCGCCAGATCGACTTCGTGCCCGACCCGGACCAGACCTATCGCACGCTGTGCGACACGATCTTCACGCCGAAGCCGCCCCTGGGGGACGGCGGCAGCCCCTCGCCGCCGCCGGCGATCGCCCCGAGCGGCCGCGCGGCGCCGCGCCCGACGACGGCGGAGATCCCCGTCGTGCCCGTCGGGACGCCAGACCCCGCACCGGCGCCCCCGGCAGCGGCCACCGGTCGTGCCAGGCCGGTCGACGGCGGGGCGGACCCGCGGCCGGCGAGGGCGGAGACCCGGCACCCGGGTCGCCGCGGCTGGATCCCGGCCCGGCGTCGGCCCGTGCGCGATACCCCGCCGGACACCGGAGACGGCGGACCGATCGTCCCGGACCCGTTCCTCTAGMNGADPDLAVRRHSHLRRYVLAGERVSVATRLHWAKLIEPIATTLAATVLVAWLHSTSGSGLVWVLWLVPAGRLFVRWAEWHYEWFVATDKRLLLTYGFIIHKVAMMPLAKVTDMGYTRTPVGQVLGYGRFVMESAGQDQALRQIDFVPDPDQTYRTLCDTIFTPKPPLGDGGSPSPPPAIAPSGRAAPRPTTAEIPVVPVGTPDPAPAPPAAATGRARPVDGGADPRPARAETRHPGRRGWIPARRRPVRDTPPDTGDGGPIVPDPFLNANANANANA
AK018_05198765COG0500putative methyltransferaseATGACCACCCACCCGGACCCCACGTCCCGCGCCGACCGAGCCGCCTCCTTCACCCGGGGCGCCGACGTCTACGCCCGTGTCCGTCCCGGATACCCCGCCGAGGCCGTGTCCTGGCTGCTGGAGGGGACGACCGGCCCCGTCCTCGACCTCGCCGCCGGCACCGGGCTCCTCACGCGCCGCCTCGTCGGGCTCGGGGCCGACGTCGTCGCCGTCGACCCGGCCGCCGCGATGCTCGAGGAGCTCTCGGCGGCGCTGCCGGGCGTGGACACCCGGACAGGGACCGCCGAGCGGATCCCGCTGGCCGACGCCGGCGTCGGGGCCGTCGTCGTCGGGCAGGCCTGGCACTGGTTCGACCCGCCGCGCGCCGCGGCGGAGATCGCCCGCGTCCTGCGCCCCGGCGGCACGCTCGGCGTGCTGACCAACGACCGCGACGAGCGGGTCGACTGGGTCGCCCGCTTCGGCGAGATCCTGCACGAGGGCGACTCCCTCGCTCCGGACTCCGCGCAGAGCGCGGCCCCGCCCGCGCTGGACGAGAGCTTCGGTCCGGCGGAGCGCTTCGAGCACTCCTGGCACCACCACCTGCCGACGGCGGAGCTCGGCCCGCTGGCCGCCTCGCGCAGCTACGCCCTGACGCTGTCCCCGGAGGACCGCGAGCACCTCGTGCAGCGCGTCGAGGACCTCGCCGCGACCCACGCCGACCTGTCGGGCACCACCGAGGTGGCCCTGCCCTACGTCACGACGGCGTACCGAGCGCGACGGCGCTGAMTTHPDPTSRADRAASFTRGADVYARVRPGYPAEAVSWLLEGTTGPVLDLAAGTGLLTRRLVGLGADVVAVDPAAAMLEELSAALPGVDTRTGTAERIPLADAGVGAVVVGQAWHWFDPPRAAAEIARVLRPGGTLGVLTNDRDERVDWVARFGEILHEGDSLAPDSAQSAAPPALDESFGPAERFEHSWHHHLPTAELGPLAASRSYALTLSPEDREHLVQRVEDLAATHADLSGTTEVALPYVTTAYRARRRNANANANANA
AK018_05199900putative HTH-type transcriptional regulatorATGGCAGAGCGCATCTCGCTGGCAGCCCTCGAGCTGCTCGTGGCCGTCGACACCCACGGCTCGATCAGCGCCGCCGCGCGGTCCCTCGGCGTCGCCCAGCCCACCGCGTCGGCCGGTCTGCGCCGGCTGGAGCAGCGCCTGGGCCTGGAGCTGCTGAGCCGCGGGGCGCGGGGCACGGCGCTCACCCCGTCGGGCCGCGCCGCGGCAGGCTGGGCGCGCGAGGTCGTGGAGGCGTCGGACCGCTTCCAGACGGCGGTCGCGGGCATGCGGGCGGGTGCCGCCTCGGCGCTGCGGGTCGCGGCCAGCCTGACGATCGCGGAGTACCTCGTGCCGCGCTGGCTGGGACTCCTGACCGGTGACGCCGACGCCCCGGAGATCGAGCTGACGGTGCGCAACTCCCAGGACGTCACCTCCCGGGTGCTCGCCGGCGACGCCGAGCTCGGCTTCGTCGAGAGTCCTGCGGTGGCCCGGGGCCTGCGCAGCCGGACGATCGCGCACGACGAGCTGGTCGCCGTCGTCGCCCCCGCCCATCCGTGGGCCGGCCGGGCCGGCGTGGGCCCCGAGGAGCTGGTCGCGGCCCGGCTCGTGCTGCGCGAGACCGGGTCCGGCACCCGCGAGATCCTCGAGCAGGCCCTGGCGGGCGCCGGGAGCGAGCTGCCCGAGCACCTGCCCGCCCTGGGCTCCACGGCAGCGCTGAAGGCCGCCGTGCAGCTCGGCGGGTCGGTCGCGGTGCTGTCGGCCCTGACGGTGGCGGAGGACGTCGCCGCGGGCCGTCTGGCCGTCGTACCGATCGACGGGCTCGACCTGGCCCGACGGCTCCGGGTGGTCTGGCGCACCGACGCGCCGCTGTCGGCGGCGGCCCGCCGGCTCAGCGCCGTCGCGCTCGGTACGCCGTCGTGAMAERISLAALELLVAVDTHGSISAAARSLGVAQPTASAGLRRLEQRLGLELLSRGARGTALTPSGRAAAGWAREVVEASDRFQTAVAGMRAGAASALRVAASLTIAEYLVPRWLGLLTGDADAPEIELTVRNSQDVTSRVLAGDAELGFVESPAVARGLRSRTIAHDELVAVVAPAHPWAGRAGVGPEELVAARLVLRETGSGTREILEQALAGAGSELPEHLPALGSTAALKAAVQLGGSVAVLSALTVAEDVAAGRLAVVPIDGLDLARRLRVVWRTDAPLSAAARRLSAVALGTPSNANANANANA
AK018_052001161hypothetical proteinATGACGCGACTCCTGCCCGGCCTCGCCCTGGCCGCCGCGGCGACCGCCGCGCTGCTGGGCCTGACCCCGGTCCTGGCGACCGCCGCCCCGTCGCTGTCACCCCTCGTGCTCGCCCTGCTCGCCGGTGCCGCGGCCGGGTCGGTGCTCGGCGTGCTGGCCCGGCGCGCCCCGGGCGGCGGGACCGCCCGCGTACGCGACGCCGTCGGCCCCGGCACCGCCTGGACGGCGCGGCACCTCCTGCGCGCCGGGGTGGTGCTGCTCGGGCTGCAGCTGTCGGTCGCGGACGTGCTCGGCCTGGGCTGGCGCGGGCTGGTGGTCGTGACGGTCACGGTGGCCACGACGTTCGCCGGCACGCTCGCGATCGGACGGCGGCTGCGCGTCCCCCGCGACACCGCCCTGCTGGTGGCCACGGGGTTCTCCATCTGCGGGGCGGCGGCCGTGTCGGCCGTCAGCGGGGTGCTCGACCGGACCCCGGCCCGCCCCGACCGCGCGCACCGGCACACCGGTGCGGACCGGCCCGCGGACGGCCCCGTCGAGGACCTCGCCGGGTCGACCGGTGCCGCGCTGGCGATGGTCGCCCTGTTCGGGACCGCCGCCGTGCTCGTGCTCCCGCCGCTCGCCGACGCGCTGGGCCTGCGGGCGGAGCAGGCCGGGCTGTGGCTCGGCGCGGGCGTCCAGGAGGTCGCCCAGGTCGTCGCCGCGGCCGGCGCGCTGCCGCTGGCCCCCGCGGCCGTGGCCACGGCCCTGGCCGGCGCGACCGTCGCCAAGCTGGCGCGGGTCGTGCTGCTGGCACCGCTGGTGGCCGGCGTCGGCGCCGTGCGCGGCCGGCGGGTCGCCCTCGCGGCACCCGTCGGCGCGGCAGGCCCCGCGCTCCGGACCCGCACGGCGGGGCGCGGTGGCCCGGCCCTGGTCCCGGGGTTCGTCGTCGGCTTCCTCGTCGCCGTCGGCCTGCGCAGCCTCGGCGTCGTGCCGGACGCGGTCCTGACCGCCGCCGGTCCTCTCGGCACCGGCCTGTTCGTGGCCGCGATGTTCTCCCTCGGGCTGGGAGTCGACGTGCCGCGGCTCGTGCGCAGCGGCGGCCGGACGCTGCTGCTCGGCGCGGTCTCCGCCGTCGTGGTCACCGGGACGTCGCTGGCCGCCGTCCTGCTCCTGGTCCCGTGAMTRLLPGLALAAAATAALLGLTPVLATAAPSLSPLVLALLAGAAAGSVLGVLARRAPGGGTARVRDAVGPGTAWTARHLLRAGVVLLGLQLSVADVLGLGWRGLVVVTVTVATTFAGTLAIGRRLRVPRDTALLVATGFSICGAAAVSAVSGVLDRTPARPDRAHRHTGADRPADGPVEDLAGSTGAALAMVALFGTAAVLVLPPLADALGLRAEQAGLWLGAGVQEVAQVVAAAGALPLAPAAVATALAGATVAKLARVVLLAPLVAGVGAVRGRRVALAAPVGAAGPALRTRTAGRGGPALVPGFVVGFLVAVGLRSLGVVPDAVLTAAGPLGTGLFVAAMFSLGLGVDVPRLVRSGGRTLLLGAVSAVVVTGTSLAAVLLLVPNANANANANA
AK018_05201783gph_11Phosphoglycolate phosphataseGTGACCGCGTTCGGCGTCGCCGCCGGTCGTGTCGACGGCGTGCTGCTCGACATCGACGACACTCTCGTGGACACCAAGGGGGCCTTCGCCGCGGCGCTGCGTGCCGTCGCGGAGGCGCACCTGCCCGAGGACGTCGACCACGCGGCGGTGCTGGACCACTGGCGCTCCGACCCGGCCGGGCACTACCGCCGGTACACCCGGGGCGAGACCGACCACCGCACCCAGCGTCGGCTGCGTGCCGACCTGCTGCACCGCACCTTCGGCGGGGCCCCGGTGGGCGAGGACGCCTTCGACGCCTGGGACGAGCTGTTCTGGGGCACCTTCGAGCGGTCGTGGCGCGCGTTCGACGACGCCGCGGCGTTCCTCGACCGGCTGCGCGCGCAGGGCCTGGCCACCGGCGTGGTGACGAACGCGGGCGTGGCGCTGCAGGAGCGCAAGCTCGCCGTCGTCGGGCTCGACCTGCCCGTGCTGGTGGGTGTCGACACGCTGGGCTACGGCAAGCCGCACCCGGACGTCTTCGTCGAGGGTGCGCGCCGGCTCGGCACGATCCCGCCGCGGACCGCCTACGTGGGCGACGAGCCGCGCGTCGACGCCACGGGGGCGCACGAGGCGGGTCTGGTGGGCGTCTGGCTGGACCGGCCCGGTGCCCGGCGTGCCGACGAGCACGACGCCGACGTCGCGGCGATGCGGGCCGCGGGCATCGTCGTCGTGCCCGGGCTGGCCGAGGCGTTCGCGGAGCTCACGGGACCAGGAGCAGGACGGCGGCCAGCGACGTCCCGGTGAMTAFGVAAGRVDGVLLDIDDTLVDTKGAFAAALRAVAEAHLPEDVDHAAVLDHWRSDPAGHYRRYTRGETDHRTQRRLRADLLHRTFGGAPVGEDAFDAWDELFWGTFERSWRAFDDAAAFLDRLRAQGLATGVVTNAGVALQERKLAVVGLDLPVLVGVDTLGYGKPHPDVFVEGARRLGTIPPRTAYVGDEPRVDATGAHEAGLVGVWLDRPGARRADEHDADVAAMRAAGIVVVPGLAEAFAELTGPGAGRRPATSRNANANANANA
AK018_052021452gltX_2COG0008Glutamate--tRNA ligaseGTGATCCCCGCAGCAGGTACCTCCTCCGTCCGTGTCCGCTTCGCCCCGTCCCCGACCGGCATGTTCCACGTCGGCGGCGCGCGCTCCGCGCTGTTCAACTGGGCCGTCGCCAAGCAGACGGGCGGGACGTTCGTGCTGCGCATCGAGGACACCGACGCCTCGCGCAACAAGCCCGAGTGGGTCGACGGCATCCTGGCCGCCCACGCGGCGCTCGGCATGCACGCCGACGACCCGACGTTCGAGGGTCCGTACTTCCAGTCCGCGAACGTCGACAAGCACCGCGAAGCACTCGCTCGTCTGCTGGAGTCCGGCAGCGCGTACTACTGCGACTGCACCCGCGACGACGTCGCCGCCCGGACCGGCAACCCGCACTCCGGCTACGACGCGTACTGCCGCGACCGCGGCCTGACCGAGGCACCCGGCCGCGCCCTGCGGTTCCGCACCCCGGACACCGGCGAGACGCGGGTCGTCGACCTGATCCGCGGCAACCCGGTCTTCCCCAACGACGCGATGGAGGACTTCGTCGTGGCCCGGGGGGACGGCTCGCCGGTCTTCCTGCTCGCCAACGTCGTGGACGACCTGGACGAGGGCATCACCCACGTCATCCGTGGCGAGGAGCACCTGTCCAACACGCCCAAGCAGCAGCTGCTGTGGGAGGCGCTGGGCGCCGAGCCGCCCGTGTGGGCGCACCTGCCCGTCATCGTCAACGAGAAGCGCCAGAAGCTCTCCAAGCGTCGGGACAAGGTGGCCCTCGAGGACTACCTCGCCGAGGGCTACCTGCCGGCCGCGATGGTCAACTACCTCATGCTGCTGGGCTGGGCGCCCGGCAACGACGAGGAGATCCTGCCGTTCGACGAGATGATCGAGCGGTTCCGCATCGAGGACGTGAACAGCGCCGCGTCGTTCTTCGACCTCAAGAAGCTCGCGGCGTTCAACGGCGAGTACATCCGGGCGCTGAGCGTCGACGAGTTCGTCGCCGCCGTCGGGCCCTGGCTGCGGGCCCCGCACGCCCCCTGGGCCGAGGAGCAGTTCGACCCCGCCGCGTTCGCCGCCGTGGCGCCGCTGGCCCAGTCCCGCGTGGCGCTGCTCAGCGACATCACCGACAACGTCGACTTCCTGTTCCTCGACCGGCCCGTCGACGACGAGCGGTCCTGGAAGAAGGCGATGAAGCCCGGCGCCGTCGAGCTCCTGACGGACGTGCGCACGACGCTGTCCACGCTGGAGCCGTGGGAGGCGGAGCCGCTGAAGAACGCCGTGGCGACGGCGGGGGAGTGGCACGGCCTCAAGCTCGGCAAGGCGCAGGCACCCGTGCGGGTGGCCGTCACCGGGCGCACGATCGGGCTGCCGCTGTTCGAGTCGCTCGAGGTGCTCGGGCGCGAGCGGACCCTCGGTCGGATCGACGCCGCCCTGGCCACCCTCGCCGAGAACCCGCCCCAGGCACCGGCGCAGTGAMIPAAGTSSVRVRFAPSPTGMFHVGGARSALFNWAVAKQTGGTFVLRIEDTDASRNKPEWVDGILAAHAALGMHADDPTFEGPYFQSANVDKHREALARLLESGSAYYCDCTRDDVAARTGNPHSGYDAYCRDRGLTEAPGRALRFRTPDTGETRVVDLIRGNPVFPNDAMEDFVVARGDGSPVFLLANVVDDLDEGITHVIRGEEHLSNTPKQQLLWEALGAEPPVWAHLPVIVNEKRQKLSKRRDKVALEDYLAEGYLPAAMVNYLMLLGWAPGNDEEILPFDEMIERFRIEDVNSAASFFDLKKLAAFNGEYIRALSVDEFVAAVGPWLRAPHAPWAEEQFDPAAFAAVAPLAQSRVALLSDITDNVDFLFLDRPVDDERSWKKAMKPGAVELLTDVRTTLSTLEPWEAEPLKNAVATAGEWHGLKLGKAQAPVRVAVTGRTIGLPLFESLEVLGRERTLGRIDAALATLAENPPQAPAQPGPT0008460_4903DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885NANA
AK018_05203642hypothetical proteinATGTCGGCGTGCTGCGAGCCGCAGGGGTACGAGAAGGTCTTCGACGACCGGGAGGCCCGGCGCGCCGCGGCGCGGTACGCGCGCTCGGGGCTGACCACGCTGCCCCGGCGCACCGTGGAGCTCTACCGCTCCGGCGTGGTCGGCGGAGCGACGCTCCTGGAGGTCGGGAGCGGGGTCGGGGACTTCTCGCTGGAGATGCTACGGGCCGGTGTCGAGCGTGCCACCTGCGTGGACATGTCGACCGGGTACGACGCCGTCGCGGCCCGGCTGCTGGCGGACGCCGGGGTGGCGGACCGGGTGCGCCGCCGCACCGGCGACCTGGTGACGCACCCGGACCTGGCCGGCCCGGCCGACGTCGTCGCGCTGCACAGCGTGGTCTGCTGCTACCCGGACGCCCGGGCGCTGGTCACCGCGGCCGCGGACCGGACCCGGCAGTACCTGGTGCTGGCGTTCCCGCGGCGCACCTGGTGGATGCGGGCGGCGGCACGCGTGCTCAACGTCTACCCGCGCCTGCGGGGCAGCGACTGGCGGTTCCGCGTCCACGACCCCGCCGAGGTCGTGCGCGCGGCCACGGACGCCGGGCTGCGGCAGGTACGCACCGAGCGGTTCGCGTTCGACCACCACTGGGTCTTCGCCCGCTGAMSACCEPQGYEKVFDDREARRAAARYARSGLTTLPRRTVELYRSGVVGGATLLEVGSGVGDFSLEMLRAGVERATCVDMSTGYDAVAARLLADAGVADRVRRRTGDLVTHPDLAGPADVVALHSVVCCYPDARALVTAAADRTRQYLVLAFPRRTWWMRAAARVLNVYPRLRGSDWRFRVHDPAEVVRAATDAGLRQVRTERFAFDHHWVFARNANANANANA
AK018_05204786hypothetical proteinGTGCGTATCGCGAGATTCACCACCGGTGACGACCCCCGCTTCGGATTTGTCCAGACCGAGGGCGACAGGACCTACCTGGCCGTCCTGAGCGGCGACCCGCTGTCCATGCCCGCCATGCCGACGGGCGAGCGGATCGAGCTCGGCGACGGGGTGCGCCTGCTGTCGCCCGTGATCCCGCGCTCGAAGGTGGTCGCCGTCGGGCGCAACTACCTGGACCATGTGCGGGAGATGGGCGGCGAGCCGCCGACGTCGCCGCTGCTGTTCCTCAAGCCCAACACCTCGGTGGTGGGCCCGGACGACCCGATCGTGCTGCCGGAGTGGACCTCCGAGGTCTCCTACGAGGCCGAGCTCGCCGTCGTCATCTCCAAGCCGTGCAAGGACGTCGAGCCGGAGAACGCCCGCGCCTACGTGCTGGGGTACACCGTCGCCAACGACGTCACGGCGCGTGACGCCCAGCGCACCGACGACCAGTGGGCGCGGGCCAAGGGCTTCGACACCGCCTGCCCGCTGGGGCCGTGGATCGAGACCGACCTGAACCCCGAGGACGTCGGCGTCGTCTCCCGCGTCAACGGCGAGACCAAGCAGGACGGCCGCACCGCCGAGATGATCTTCGACGTCGACTACCTGATCTCGTACGCCTCCAAGGCCATGACGCTGCTGCCCGGGGACGTGCTGCTGACCGGCACGCCGGCCGGGGTGGGCCGGATCGAGTCCGGCGACCGCGTCGAGTGCGAGGTCGAGGAGATCGGCGTCCTGGCCAACCCCGTGGTCCGGCGCGAGGACTGAMRIARFTTGDDPRFGFVQTEGDRTYLAVLSGDPLSMPAMPTGERIELGDGVRLLSPVIPRSKVVAVGRNYLDHVREMGGEPPTSPLLFLKPNTSVVGPDDPIVLPEWTSEVSYEAELAVVISKPCKDVEPENARAYVLGYTVANDVTARDAQRTDDQWARAKGFDTACPLGPWIETDLNPEDVGVVSRVNGETKQDGRTAEMIFDVDYLISYASKAMTLLPGDVLLTGTPAGVGRIESGDRVECEVEEIGVLANPVVRREDPGPT0001745_728DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336NANA
AK018_05205633hypothetical proteinATGAGCACGCCGCACGATCCCCCCGAACCGCACCAGCCCGGGACGCCGCAGCAGCCCTCGTCGTCCGGTGGCGCGTCCGACCCGTACGGCGCGCCGCCCCCGCCCGGCGGCACCCCCGCGCAGGGCCCCTCCGACCCGGGCCAGGCGCCGGGCCGGCAGCCGAGCTACCCCGGACAGGCACCCCCGCCCGGCGGAGCGAGCGGCAACCAGGGCTACGGCGGCGCGCAGGGCTACGGCGGCGCGCCGGGCTACTCCGGGTACGGCGCCGCGCCGCCGCGCCCGCCCTCGGAGCGCAAGGGGCTCGCGATCGCCGCGCTGGTGCTGGGCATCCTGGCGCTGCTCGGCAGCTGGATCCCGTTCGTCAACATCGGCGCGATCCTGCTCGGCGTCATCGGCCTGGTGCTGGGCATCGTCGCCCTGGTCCAGGTGTCGAAGGGGACGGCCGGCGGCAAGGCCACGGCGATCGTCGGCGCCGCCCTGTCGGCGTTCGCCGTCGTCGTGTCGATCGTCGTGACCGTGTTCGTCGTGCTGGCCATCGAGGAGCAGGCTCCCGCGATCCAGCAGGAGCTGGAGCGTCAGCTCGAGGAGCAGGGCTTGTCGGACGAGGAGATCGACGAGCTCCTGGGCGAGTGAMSTPHDPPEPHQPGTPQQPSSSGGASDPYGAPPPPGGTPAQGPSDPGQAPGRQPSYPGQAPPPGGASGNQGYGGAQGYGGAPGYSGYGAAPPRPPSERKGLAIAALVLGILALLGSWIPFVNIGAILLGVIGLVLGIVALVQVSKGTAGGKATAIVGAALSAFAVVVSIVVTVFVVLAIEEQAPAIQQELERQLEEQGLSDEEIDELLGENANANANANA
AK018_05206969COQ5_72-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialATGAGCGATCTGCCGCACGGTGCCGAGCCCGACTTCCCGGAGCCCCCGAGCCTGGGCAGCCCGGCCGAGGGCCCGAACGGGAACGCCTCCGACGAGCCGTCCGGGGCGGCGCTGTCCGACGCCATCGAGGCGCCGAGCTTCCACCAGACCGTGCCCAGCCAGGAGTCCGAGTCGTACACGCACGGCCACCACGAGTCCGTGCTGCGCGCCCACCGGGCGCGGACGGCGCAGAACTCCGCCGGCTTCCTGCTGCCGCACCTGAAGGACGACATGCACCTGCTCGACGTCGGCTGCGGCCCCGGGACCGTGACGACGGACCTGGGGCGGGTGCTCGCCGGGGGCAAGGTCGTGGGCGTCGACGCCTCGGCGACGGTGCTCGAGGCGGCCCAGGCGCACGCCGACGCTCTCGGGGCGTCGAACGTCCGGTTCGAGCAGGCCAACGCCTACGAGCTGCCGTTCGACGACGACACCTTCGACGTCGTCTACGCCCACCAGCTGCTGCAGCACCTGTCCGACCCCGTCGCCGCGCTGCGCGAGATGAAGCGCGTCACCAAGCCGGGCGGCCTCGTCGCGGCGCGCGACGCCGACTACGCGGCGATGGCCTGGTACCCGGAGTCGCCGGGACTGACGGAGTGGAACACGCTCTACCACGAGGTCACGCGCGCCTACGGCTTCGAGCCGGACGCCGGGCGCCGGCTCTTCTCGTGGGTGCTGCAGGCCGGGTTCGACGTGGCCGGCACGGTGCCCAGCGCGTCGTCGTGGTGCTACGCCACGCCCACCGACCGCGAGTGGTGGGGGCAGGTCTGGGCCGAGCGGTGCGTGGAGTCGAACTTCGCGCGCCAGGCCCAGGAGTCGAACCTGGCCGACGACGTCGCGCTCGAGCAGCTCGCCCACGACTGGCGGACCTGGGCCCAGGCGCCGGACGGCTGGTTCGCCGTGCTGCACGGCGAGGTGCTGGCCCGGGCCTGAMSDLPHGAEPDFPEPPSLGSPAEGPNGNASDEPSGAALSDAIEAPSFHQTVPSQESESYTHGHHESVLRAHRARTAQNSAGFLLPHLKDDMHLLDVGCGPGTVTTDLGRVLAGGKVVGVDASATVLEAAQAHADALGASNVRFEQANAYELPFDDDTFDVVYAHQLLQHLSDPVAALREMKRVTKPGGLVAARDADYAAMAWYPESPGLTEWNTLYHEVTRAYGFEPDAGRRLFSWVLQAGFDVAGTVPSASSWCYATPTDREWWGQVWAERCVESNFARQAQESNLADDVALEQLAHDWRTWAQAPDGWFAVLHGEVLARANANANANANA
AK018_052071140hypothetical proteinATGCCCACGGTCCGCGAACGTCTCCTCGGCGGTCCGGCGCGCGTGGTCGGGCTCGACGTGGCCCGCGGGCTGGCCGTGCTCGGCATGTTCACCGCCCACGTCGGTGTGGTCGACGACTCGACGCTGTGGCTCACCATCGCCGACGGCCGCTCGTCGGTGCTGTTCGCGCTGGTCGCCGGGGTGTCGCTCGCCCTCGTCACCGGCGGGCCCCGCCCGGTGGCCGGCGACGCGCTGGTCCACGCCCGGGCGCGGCTGCTGGTTCGCGCGGTCCTGCTCCTGGCCCTCGTGGCGCTGCTGGACCTGCTCGGCACCCGCGTCCTGCTCATCCTCGGCTTCTACGCGACCTACTTCGTCCTGGCGCTGCCGTTCGTGACGTGGGGGCCGCGGCGGCTGGCCCTGGCCGCGGTCGTGGTGGCCGTCGTCGGACCCCCGCTGGCCCACTGGGGCCCGGTGGCCCTGACCCGGGCCGGGCTGCACCTGCCCGACGACGGATCGGGCGCGGTGACCGACTTCCTGCTCACGGGCCACTACCCCGCCGTGGTGTGGATGGCGTACGTGTTCGCCGGCATGGCCGTGGGGCGGTGCGACCTGTCGTCGGCCGGGCTGCGCCGCGGGCTGGTGCTCGGAGGTCTGGGGGCGGTGGTCGTGGGCAACCTGCTGTCCGCCGAGGTCGTGGACCGCTTCGGCGGTCCGACCGCGGTGCGCGAGCAGGTCGAGTCGACCTCCGTGCCCGGGTGGGCCTGGGGCGACCCCTGGCCGACGGCGGCCTACCTGGCCCTGCCCGGCCCGCACGAGGAGAGCTGGCTCGAGGTGCTGGCCACCGGCGGGTTCGCGCTGGCCGTGCTGGGGCTGTGCCTGGCCGTGGGGGGCGTCGGGGCGTGGGTGCTGTCCCCGCTCGCGGCCGTGGGGTCGTTGGCCCTGACGGTCTACTCGCTGCAGATCGTGGCGATCTGGCACGGAGACCTGATCGACGCCGAGACCAACGGGCCGCTGCTGGTGATGATCGGGGTCTCGCTGCTCGCGGCCACCCTGTGGCGGCTGTGGCTCGGGCGCGGACCCCTGGAGCGGTTGTTCACCGCGGTGGCGCGACGCACCGCTCCCCCGCCGCCGCGCCAGGCCGCCGTCGGACCGGAGGAGTGAMPTVRERLLGGPARVVGLDVARGLAVLGMFTAHVGVVDDSTLWLTIADGRSSVLFALVAGVSLALVTGGPRPVAGDALVHARARLLVRAVLLLALVALLDLLGTRVLLILGFYATYFVLALPFVTWGPRRLALAAVVVAVVGPPLAHWGPVALTRAGLHLPDDGSGAVTDFLLTGHYPAVVWMAYVFAGMAVGRCDLSSAGLRRGLVLGGLGAVVVGNLLSAEVVDRFGGPTAVREQVESTSVPGWAWGDPWPTAAYLALPGPHEESWLEVLATGGFALAVLGLCLAVGGVGAWVLSPLAAVGSLALTVYSLQIVAIWHGDLIDAETNGPLLVMIGVSLLAATLWRLWLGRGPLERLFTAVARRTAPPPPRQAAVGPEENANANANANA
AK018_05208264hypothetical proteinATGGAGACCGACCGTGACGAGCTGGCGCGACGACGGGCGAAGTATGCGACGGGACTGCTGTGGCACGTCGGCGCTTTCGTCATCATCAACGTGTTCTTCTGGGTGCTCGACCTGGCGCTCGGCCCGCCCGGCGCGACCTGGGCCTTCTGGGTCACGGGGTTCTGGGGACTCGGCCTGGCGTTCCACCTGCTGGCGTTCCTCATCGACGGCCGGCAGGTCGAGGACCGTCTGACGCGGAAGTACGAGCAGCGCCAGGACCGGTGAMETDRDELARRRAKYATGLLWHVGAFVIINVFFWVLDLALGPPGATWAFWVTGFWGLGLAFHLLAFLIDGRQVEDRLTRKYEQRQDRNANANANANA
AK018_05209837yddECOG0384putative isomerase YddEATGACGACGTTCCCCTTCCGCCAGGTCGACGTCTTCGGGGCCGGCCCGCTGGCCGGCAACCCCGTGGCCGTGGTGCACGACGCCGACGCCTGGGACGAGCCGCAGATGGCGGCCTTCGCGCGCTGGACCAACCTGTCCGAGACCACGTTCCTGCTGCCCGCCACCGACCCGGACGCGGACTACCGGGTGCGCATCTGGACCCCGGGCGGTGAGCTCCCGTTCGCGGGCCACCCGACGCTGGGGACCGCGCACGCCTGGCTGGAGGCCGGTGGCGTGCCGGCCGGCGAGGACGTCGTCCAGGAGTGCGGGGTCGGGCTGGTGACCGTCGCGCGTACCCCCGACGGGCTCGCGTTCGCGGGCCCGCCGCTGCGCCGGTCGGGTCCCGTGTCCGACGACGACCTCGGCCGCATCCTGCGCGGCCTGCGGATCGGGGCGGACGACGTCGTCGACGTCGCCTGGGTGGACAACGGGCCGGGCTGGGTCGGCGTGCGGCTGGCCGACGCCGCATCGGTCCTCGCCGTCGAGCCCGACCTCGCCGCCTTCGAGGGGCTCCACGTGGGGCTGGTCGGGTCGTACCCGCCCGGGGAGTCCGACGCCGACGTCGAGGTGCGCGCGTTCGTGCCGGACATCGGCGTCCCCGAGGACCCTGTCACGGGGTCCCTGAACGCCGGGCTCGGCCAGTGGCTCGCCGGTTCCGTGCTGCCCGCGGGCTACGTGGCCTCGCAGGGCACGGTGCTCGGTCGGCGCGGTCGGGTGCGCGTGCGTCGCGCCGACGACGGCGTCGTCTGGGTCGGCGGGTCCACGGTCACGACCGTGCACGGCGAGGTCACGCTCTGAMTTFPFRQVDVFGAGPLAGNPVAVVHDADAWDEPQMAAFARWTNLSETTFLLPATDPDADYRVRIWTPGGELPFAGHPTLGTAHAWLEAGGVPAGEDVVQECGVGLVTVARTPDGLAFAGPPLRRSGPVSDDDLGRILRGLRIGADDVVDVAWVDNGPGWVGVRLADAASVLAVEPDLAAFEGLHVGLVGSYPPGESDADVEVRAFVPDIGVPEDPVTGSLNAGLGQWLAGSVLPAGYVASQGTVLGRRGRVRVRRADDGVVWVGGSTVTTVHGEVTLPGPT0024545_43DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_MANNOSYLTRANSFERASE_ACTIVITY,PGPT0024545-pmt-K00728NANA
AK018_05210165hypothetical proteinATGGCCACCGTCGGGACGCAGTCGGACTTCGACCCGCACCAGGACGAGGTCGAACCCACGCCGCACGTTCCCCTGGACACCTGGATCGAACGGCACGGCACCACGATCGGTCTGATCCTCGGGGCCGGGGCCGTCGTCATGACGCTGCTGCGGTACATGGACTGAMATVGTQSDFDPHQDEVEPTPHVPLDTWIERHGTTIGLILGAGAVVMTLLRYMDNANANANANA
AK018_05211939hypothetical proteinGTGACAGCGCCCTCCGCACTCGCCGCTCGCGGGCACCGTCCCGGCCCCGCGGACGACGCCGTCCCGGGCGTCGTCGTGGACGGCTGGCGCGCGCTCGACACGGCGCACGCACGACGTGCCGACGCCCTGACCGCCGTGTGGCGCGCGGCGCGCGACCGCGGCGAGAAGCACGCGATCGAGGACTTCCTGTTCACCTACTACCCCACCCGGGCCGGCCACCTGCGCCGGTGGCACCCCGGCGTCGGGCAGGTGCTGCCCGACGCCCCGGACCACGCCGCCCGACGCTGGTACCGCACGGTCGCGCTGCCGGACGGCACCACCGGCGCCGTGCTCGACGTCCCCGAGTTCCGGGCCGACCGGGGCGACACGGTGCGGTACGTCCGCTCGCTCGTGGGGGCGACGGCAGGGCGACCGGGCACCTTCGGCTGCTTCGGGCTGCACGAGTGGGCGATGGTCTACCGCGACGCCGACGCCGGCCGCGACCACCGGCACCCGCTGCCGCTGCGCCTCGGGGGTGCCGGCACCGACGCGGTCGTCGAGTCGCACCGGGTGGGCTGCTCGCACTACGACGCCTTCCGGTTCTTCACCCCGGAGGCCCGGGACGCCAACCAGCTGCGCCCGACCCGCGAGCGCCAGGTCGCGATGGAGCAGCCGGGCTGTCTGCACGCCAACATGGACCTGTACAAGTGGTGCCAGAAGCTCGGCCCTGCCGTGCCCGGCGAGCTGCTGCTGGACGCCTTCGAGCTGGCCCGCGACATCCGGTACACCGACATGGCGGCCTCGCCCTACGACGTCTCGTCCTACGGCGTCGAGGCGGTCGAGATCGAGACGGCGGCCGGCAAGGCCGAGTACGTGCGACGCCAGCGCGCGTTCGCCGAGCGGGCGCAGGCGCTGCGCGGCCGGCTGCTGGACGTGTGCGACGCCGTGCTCGGTGCCTGAMTAPSALAARGHRPGPADDAVPGVVVDGWRALDTAHARRADALTAVWRAARDRGEKHAIEDFLFTYYPTRAGHLRRWHPGVGQVLPDAPDHAARRWYRTVALPDGTTGAVLDVPEFRADRGDTVRYVRSLVGATAGRPGTFGCFGLHEWAMVYRDADAGRDHRHPLPLRLGGAGTDAVVESHRVGCSHYDAFRFFTPEARDANQLRPTRERQVAMEQPGCLHANMDLYKWCQKLGPAVPGELLLDAFELARDIRYTDMAASPYDVSSYGVEAVEIETAAGKAEYVRRQRAFAERAQALRGRLLDVCDAVLGANANANANANA
AK018_052122754hypothetical proteinATGACTGCCACCGACACCGCCACCTCGTCCGTCGCCTCCGTCCCGCGCCCTGCCGGCACCCTGCTGCCGCACCTGCCCGCCCCCACCGGGCAGGCACCGGACCCGGACGCGCTGTTCGAGGGGTTCAGCGAGTGGGCGGCCTCGACCGGTCGTCCGCTGTACCCGCACCAGGAGGAGGCGCTGCTCGGGCTCATGACGGGCTCGCACGTCGTGCTGGCCACGCCGACCGGGTCCGGCAAGTCGATGGTGGCGATGGGGGCCCAGTTCGCGGCCCTGGCCGGGCGCCGGTCCGGGCTCGGCGGTCGCACCTACTACACGGCACCGCTCAAGGCGCTGGTCAGCGAGAAGTTCTTCGACCTCGTGGCCGCCTTCGGCTCGCGCAACGTGGGCATGATGACCGGCGACAGCGCCGTGAACCCCGACGCGCCGATCATCTGCTGCACCGCCGAGATCCTCGCGAACCTCGCGCTGCGCAACGGCGCGGGCAGCCCGGGCCAGGACCACTTCATCGGCCAGGTCGTCATGGACGAGTTCCACTTCTACGGCGACCCGCAGCGTGGCTGGGCCTGGCAGGTGCCGCTGCTGGAGCTGCCGCACACGCAGTTCCTGCTGATGTCCGGCACCCTCGGCGACACCAGCCGCCTGCGCGAGGACCTCACCGAGCGCACCGGCCGGGACGTCGCCGAGGTCACCGGCGCCGAACGACCGGTCCCGCTGGAGTTCTCCTACGTCCAGGACCCGCTGCCCGAGGTCATCGAGGAGCTCGTGCACACCCACCGGGCACCCGTGTACGTCGTGCACTTCACCCAGAAGGACGCCGTCGACCGCGCCCAGGCGCTGCTCAGCACCAAGCTCGCCTCCAAGGAGGAGAAGCAGGCGATCGTCGACGAGTTCGGCGCGTTCCGGTTCGGCACCGGGTTCGGCAAGATCCTGTCCAAGTACCTGCGCGCCGGCGTCGGCGTGCACCACGCCGGGATGCTGCCCAAGTACCGTCGCCTCGTCGAGCGGCTCACGCAGAAGGGGCTGCTCAAGGTCGTCTGCGGCACCGACACGCTCGGCGTGGGCATCAACGTCCCGATCCGTACGGTGCTCATGACCTCGCTGGTGAAGTTCGACGGCGAGCGCATGCGGCACCTGACCGCCCGCGAGTTCCACCAGATCGCCGGCCGGGCCGGTCGCGCCGGGTACGACACCCTCGGCGAGGTGCTCGTCATGGCGCCGGAGCACGTGATCGAGAACCGCAAGGCGCTCGCCAAGGCCGGGGACGACCCCAAGAAGAAGAAGAAGATCGTCCGCAAGAAGGCGCCGTCGGGTGCGGTCAACTGGACCGAGTCGACGTTCGAGCGCCTGCGCGACGCCCCGCCCGAGCCGCTGGCCAGCCAGTTCCACGTCAACCACGCGATGGTGCTCAACGTGCTGGCCCGCACGCGGCCCGACGGCGGGTCGGGGCACGACGGCGGCACGTCCGGCCCCGCTGTCGACCCCGTCGAGGCGATGCGCCACCTGCTCACCGCCAACCACGACACCGCCGCCCAGCAGGCCGGGCACGTGCGCCAGGCCCTGCGGATCTACCGCTCCCTGCGCGTGGCCGGCGTCGTGGAGAAGGTGCGCGTCCCCGACGACTCCCGCCCCGCGGGCTACCGCCCCAGCGTGCGGCTCGAGGTCGACCTGCCGCGCGACTTCGCGCTCAACGCTCCCCTGTCGCCGTTCGCGCTGGCGGCCATGGACCTGCTCGACGTCGAGTCGCCCACGCACGCCCTCGACGTCGTCTCCGTCATCGAGGCCACCCTCGACGACCCCCGACAGATCCTCTTCGGCCAGCAGAAGAAGGCCCGCGGCGAGGCCGTCGCCGCGATGAAGGCCGAAGGCATCGAGTACGACGAGCGCATGGAGCTGCTCGAGGAGGTCACCTGGCCCCGGCCGCTGGCCGACCTGCTCGAGCCCGCGTTCGCCCAGTACAAGCAGTCCAACCCGTGGGTCGCGGGCGCCGAGCCGGCTCCCAAGTCCGTGGTGCGCGACATGCTCGAGCAGGCCATGACGTTCGCCGAGCTGGTCAGCACCTACGGCCTGGAGCGCACCGAGGGCGTCGTGCTGCGCTACCTCGCCGACGCCTACCGGGCGGTGCGCCAGGTCGTGCCCGAGGAGCACCGCACCGAGGAGGTCGCCGAGATCGTCGAGTGGCTCGGCGAGCTCGTGCGCGGCGTCGACTCCTCGCTGCTGGACGAGTGGGAGCGGCTGCAGAACCCCGTCGACGACGATGCCGACGACGTCGTCCAGGGCGAGCTGGCCGAGGCCGGGGCCGAGGCGCCGGCGCGCCCCGTCACGGGCAACCCGCGCTCGTTCCGCCGCCTCGTGCGCAACGCCATGTTCCGCCGCGTCGAGCTCGCCGCCCGCGAGGACTACGACGCCCTCGAAGCCCTCGACAAGGCCTCCGGCTGGGACGGCGACGCCTGGGCCGACGCCCTGGAGGACCTGTTCGAGACCCAGGGCGACGACGCGATCGGGTTCGGGGCGGACGCCCGTGCCACCGCGCTGCTGACCATGCTGGAGCCGGGGGCCGCGCTGCCCGCCGACGCGACGACGTCGGACGGCGAGGCCCTGTCGACCGTGCCGGCCGACACCTGGTGGGTGCGCCAGGTCCTCGACGATGTGAACGGCGACCGGGACTGGTCGATCACCGCGCTGGTCGACCTGCCGGCCTCGGACGAGGCCGGGCGACCCGTGGTCCAGGTGCTGTCGGTCGGGCGCCGGTAGMTATDTATSSVASVPRPAGTLLPHLPAPTGQAPDPDALFEGFSEWAASTGRPLYPHQEEALLGLMTGSHVVLATPTGSGKSMVAMGAQFAALAGRRSGLGGRTYYTAPLKALVSEKFFDLVAAFGSRNVGMMTGDSAVNPDAPIICCTAEILANLALRNGAGSPGQDHFIGQVVMDEFHFYGDPQRGWAWQVPLLELPHTQFLLMSGTLGDTSRLREDLTERTGRDVAEVTGAERPVPLEFSYVQDPLPEVIEELVHTHRAPVYVVHFTQKDAVDRAQALLSTKLASKEEKQAIVDEFGAFRFGTGFGKILSKYLRAGVGVHHAGMLPKYRRLVERLTQKGLLKVVCGTDTLGVGINVPIRTVLMTSLVKFDGERMRHLTAREFHQIAGRAGRAGYDTLGEVLVMAPEHVIENRKALAKAGDDPKKKKKIVRKKAPSGAVNWTESTFERLRDAPPEPLASQFHVNHAMVLNVLARTRPDGGSGHDGGTSGPAVDPVEAMRHLLTANHDTAAQQAGHVRQALRIYRSLRVAGVVEKVRVPDDSRPAGYRPSVRLEVDLPRDFALNAPLSPFALAAMDLLDVESPTHALDVVSVIEATLDDPRQILFGQQKKARGEAVAAMKAEGIEYDERMELLEEVTWPRPLADLLEPAFAQYKQSNPWVAGAEPAPKSVVRDMLEQAMTFAELVSTYGLERTEGVVLRYLADAYRAVRQVVPEEHRTEEVAEIVEWLGELVRGVDSSLLDEWERLQNPVDDDADDVVQGELAEAGAEAPARPVTGNPRSFRRLVRNAMFRRVELAAREDYDALEALDKASGWDGDAWADALEDLFETQGDDAIGFGADARATALLTMLEPGAALPADATTSDGEALSTVPADTWWVRQVLDDVNGDRDWSITALVDLPASDEAGRPVVQVLSVGRRNANANANANA
AK018_05213765hypothetical proteinGTGGGGGCCGTGCTCGCCCTCCTCGTCCTCGCCATCCTCGTCGGTGGTGTCCTGCAACGGGTGACGGGCATGGGGTTCGGCCTCGTGGCCGGACCGTTCATCGTGCTCATCGTGGGCCCGCTCGAGGGCGTGCTGTTCGTGAACCTCGCCGGGGCGACGGCCTCGGCCCTGATCCTCGGCCGCGTCGTGCGCGACGTGGAGTGGCGCAAGTTCGCCTGGCTCACGCTGTCCTCGCTGGTCGTGACCGTGCCCGCGGCGCTCGCCCTGCGCGACGTCAGCGCCCCGGCGCTCGAGGTGACGATCGGCCTGTTCATCCTCGCGGCGATGACGCTGGCGGTGCTCACGACCCGGCTGCGCCGCGAGGGCAGGCACCCCGTGGACCCCGCGGCCGGCTGGCCGCTGGCCCTGACCGGCACGGCGAGCGGCATCGGCTCGGTCGCGGCCGGCATCGGCGGGCCTCCCGTGGCGGTCTACGCGGTGCTCAGCGGCTGGGACCCGCGGCGCTTCGCCGCCACCGCCCAGCCCTTCTTCGCCGCCAACGCGCTCGCCGCCCTGGTGGCCAAGCTGGTGCTCGCCGACGCCTCGTTCCCGACCATGGCCCCCTGGCAGTGGGTGCTGCTCATGGTCTCGATCCTCGGTGGGCTCGTCCTGGGGGACCTGCTCGCGCCGCGCGTCTCGGCCACGGCCACCCGACGCGTGCTCATCCTGCTGGCGTACGTCGGCGGCGTGGCCACGCTGGCGCGCGGCGTCACCGGCCTGGTCTGAMGAVLALLVLAILVGGVLQRVTGMGFGLVAGPFIVLIVGPLEGVLFVNLAGATASALILGRVVRDVEWRKFAWLTLSSLVVTVPAALALRDVSAPALEVTIGLFILAAMTLAVLTTRLRREGRHPVDPAAGWPLALTGTASGIGSVAAGIGGPPVAVYAVLSGWDPRRFAATAQPFFAANALAALVAKLVLADASFPTMAPWQWVLLMVSILGGLVLGDLLAPRVSATATRRVLILLAYVGGVATLARGVTGLVNANANANANA
AK018_05214492ybaK_2COG2606Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase YbaKGTGGCCCGCTCCAAGACCCGTGGATCGACCCCCGCCGTGCTCGCGCTCGAACGGGCCGGGGTCGCGCACACGCTGCACCCGTACGAGCACGACCCCCGCAGCGGGCTGAGCTTCGGCCTCGAGGCCGCCGCGGCGATCGGGGTCCCGGCCGAGCAGGTGTTCAAGACGCTCGTCGCGGACGTCGACGGAGACCTCGTGGTCGCCGTCGTCCCCGTGACCGGCGAGCTCGACCTCAAGGCGCTCGCCCGCGCCGTCGGCGGCAAGAAGGCCGCCATGGCCGCCGTGCCCCGCGCCGAACGCGCCACCGGCTACGTCGCGGGGGGCATCTCTCCCCTGGGCCAGCGATCGCGGCACACCACGGTCGTGGACGCGTCGGCCGCGTCGTTCGAGACCGTCTACGTCTCGGGCGGACGCCGGGGGCTCGACGTCTCGCTGGCTCCCGCCGACCTGGTGCGCCTCACCGTCGCCACCACCGCACCCCTGGGGCGCTGAMARSKTRGSTPAVLALERAGVAHTLHPYEHDPRSGLSFGLEAAAAIGVPAEQVFKTLVADVDGDLVVAVVPVTGELDLKALARAVGGKKAAMAAVPRAERATGYVAGGISPLGQRSRHTTVVDASAASFETVYVSGGRRGLDVSLAPADLVRLTVATTAPLGRNANANANANA
AK018_05215402yccF_2COG3304Inner membrane protein YccFGTGAAAGCGATCCTGAACGTCATCTGGCTGGTGCTCTCGGGCTTCTGGCTCGCCGTCGGCTACGTGCTCGCGGGCCTCGTCTGCTGCGTGCTCGTCGTGACGATCCCCTGGGGGATCGCCTCGTTCCGGATCGCCGGCTACGCGTTGTGGCCCTTCGGCCGCACCGTCGTCGACCGGCCCGGGTCCGGGGCGTTCTCGGTGCTGGGCAACGTCGTCTGGCTGGTCTTCGCGGGCTGGTGGCTGGCGCTGAGCCACATCATCACCGCGATCCCGCTGTTCGTGTCGATCATCGGCATCCCGCTGGGCATCGCGAACCTCAAGATGATCCCGATCTCGCTGCTGCCGCTCGGCAAGGACATCGTCTCGACCGACACGCGGTACCCCACCTACCGCCCGGCCTGAMKAILNVIWLVLSGFWLAVGYVLAGLVCCVLVVTIPWGIASFRIAGYALWPFGRTVVDRPGSGAFSVLGNVVWLVFAGWWLALSHIITAIPLFVSIIGIPLGIANLKMIPISLLPLGKDIVSTDTRYPTYRPANANANANANA
AK018_05216750yggS_2COG0325Pyridoxal phosphate homeostasis proteinATGCCGTCCGACCTGACCGACCGGATCGCCCGTGTGCGCGAACGCGTCGACCACGCCGCCACCGCCGCGGGACGCCGACCTGCCGACGTGCGCCTGATGCTCGCCACCAAGACCCAGGACGCCGAGACCGTGCTGGCCGCGGTCGCCGCGGCCACGGAGCTCGCCGCCGGCCGCGGGGACGACGGCCCGGTCCTGATCGGCGAGAACCGGGTCCAGGAGCTGGTCGCCAAGGCACCCGCCCTGGCCGACCTGGTCGCGGCCGGCCGCCTCGACGTGCACATGATCGGGTCGCTGCAGCGCAACAAGATCAACCAGATGCTGCCGACCGTCACCGGCCTGGCCGGCGTCGACCGGCTCTCGCTGGCGCAGGCCGTGGCCCAGCGGTGCGTCCGCGACGGGCGCACCCTCGACGTCATGGTGCAGGTCAACGTCTCCGGGGAGGACTCGAAGTCCGGTGCGGCGCCGTCGGACGCCGCGGACCTGGCCTCGGCCGTGGCGGCCCTGGACGGCCTGCACCTGACCGGCTTCATGACCATCGGCGCGAACACCTCCGACGAGGCGCAGGTGCGGGCCGGGTTCGCGCGGCTGCGCGAGATCCGCGACGAGGTCGTCGCCTCCGGTGCCCCGGGGACCGCCGACGCCCGCGAGCTGTCGATGGGCATGTCCACCGACCTCGAGCTCGCCGTGGCCGAGGGGGCCACGATCGTGCGCGTCGGCACGGCGGTGTTCGGCGAGCGCCCACCCGCCTGAMPSDLTDRIARVRERVDHAATAAGRRPADVRLMLATKTQDAETVLAAVAAATELAAGRGDDGPVLIGENRVQELVAKAPALADLVAAGRLDVHMIGSLQRNKINQMLPTVTGLAGVDRLSLAQAVAQRCVRDGRTLDVMVQVNVSGEDSKSGAAPSDAADLASAVAALDGLHLTGFMTIGANTSDEAQVRAGFARLREIRDEVVASGAPGTADARELSMGMSTDLELAVAEGATIVRVGTAVFGERPPANANANANANA
AK018_052171089lipM_2Octanoyltransferase LipMGTGCATGGTGAGTACAAGGTCCCCGGTGGCAAGCTCGTCGCGGTCGACCTCGAGGTCGACGACTCCGCCGACCCCGCCGTCCTGACGGCGGTGCGCCTGTCGGGCGACTTCTTCCTCGAGCCCGACGAGGCGCTGGGCGTCATCGACACCGCGCTGACCGGCCTGCCGGCCTCGACCGGCACCGGAGAGCTCCAGCGCACCGTCACCGAGGCGCTGGAGAAGGCCGAGCTGTCCGGCGAGATCGCCGGCCCGGTCGCGATGGTCGGCTTCGACGCCCGTGCCGTGGCGGTCGCCGTGCGGCGCGCCCTGGGCCTGGCCACGACGTGGCAGGACCACACCTTCGAGGTGCTGCGTCCCGGCCCGCTGCCGCCGCGCACGCTCGCCGCGCTCGACCAGGTGCTGACCGAGGAGCTCGCCGCCGGTCGACGCGGCCCGACCCTGCGGTTCTGGGACTGGGACGAGCGGGCCGTGTTCATCGGGTCCTTCCAGTCCTACCGGAACGAGATCGACGAGGACGGCGTGGCCGACCACGACGTCACGGTCGTGCGGCGCATCTCCGGCGGCGGGGCGATGTTCATGGAGGCCGGCAACTGCGTGACGTTCTCGCTCGTCGTGCCGGGCTCGCTCGTCGACGGGATGAGCTTCGAGCAGTCCTACGCCTTCCTGGACGCCTGGGTGCTCGGCGCGCTCGGCGAGCTGGGCGTCGAGGCCTACTTCAGCGGGATGAACGACGTCGCCTCACCGGGCGGCAAGCTCGCCGGCTCCGCCCAGAAGCGACTCGCCGGGGGAGCGGTGCTGCACCACATGACGATGGCCTACGACATCGACGCCGACAAGATGATGCAGGTGCTGCGCATCGGGCGCGAGAAGATGTCCGACAAGGGCACCCGCAGCGCCAACAAGCGCGTCGACCCGCTGCGCTCGCAGACCGGCCTGGCCCGCGACGAGGTCGTGGAGGCCTTCGCGGCCTACTTCGCCGACCGCCACCGCACCGAGGTCTCCGGCCTGCGTGCCGAGGAGCTGGAGCGGGCCGAGGACCTGGTGCGCACGAAGTTCGACACCGCCGAGTGGATCCACCGGGTGCCCTGAMHGEYKVPGGKLVAVDLEVDDSADPAVLTAVRLSGDFFLEPDEALGVIDTALTGLPASTGTGELQRTVTEALEKAELSGEIAGPVAMVGFDARAVAVAVRRALGLATTWQDHTFEVLRPGPLPPRTLAALDQVLTEELAAGRRGPTLRFWDWDERAVFIGSFQSYRNEIDEDGVADHDVTVVRRISGGGAMFMEAGNCVTFSLVVPGSLVDGMSFEQSYAFLDAWVLGALGELGVEAYFSGMNDVASPGGKLAGSAQKRLAGGAVLHHMTMAYDIDADKMMQVLRIGREKMSDKGTRSANKRVDPLRSQTGLARDEVVEAFAAYFADRHRTEVSGLRAEELERAEDLVRTKFDTAEWIHRVPPGPT0003945_236DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003945-lplA|lplJ|lipL1-K03800NANA
AK018_052181656cimA_2COG0119(R)-citramalate synthaseATGGCCACCGCCCCGTTCCACGTGTACGACACCACCCTGCGCGACGGCGCGCAGCAGGAGGGCATGAACCTCTCCGTCGCGGACAAGCTCGCGATCGCGCCGCTGCTCGACGAGCTCGGTGTGGGCTTCATCGAGGGTGGCTGGCCGGGCGCGATCCCCAAGGACACCGAGTTCTTCCGTCGCGCCGCCAAGGAGCTCGAGCTCAGCAACGCCGTGCTGGCGGCGTTCGGCTCCACCCGGCGCGCCGGCACCCGCGCCTGGGACGACCCGCAGGTCCGCGCGCTGCTCGACTCCGAGGCGCCGGTGGTCACGCTCGTGGCCAAGTCCGACGTCCGGCACGTCGAGCGGGCGCTGCGCACGACGCCGGACGAGGGCCTGGCGATGATCAGCGACACCGTGCGGTTCCTCGTGGGCGAGGGCCGCCGCGTCGTCGTCGACGCCGAGCACTTCTTCGACGGCTACCGGGACGACCCGGCCTACACGCGCTCCGCCGTGGAGGCAGCCTTCGAGGCCGGCGCCGAGGTCGTCGCGCTGTGCGACACCAACGGCGGCATGCTCCCGGACTGGGTGACCGACGTCGTCGGCGAGCTGCGCACGGCCCTCGACCTGCCGCACGGGCGCGACGCGCTGCCCGGCGACCCGCTGCTGGGCATGCACGCGCACAACGACTCGGGCTGCGCCGTGGCCAACACCCTCGCCGCCGTCGAGGCCGGGTGCGCCCACGTCCAGGGCACCGTCAACGGCTACGGCGAGCGCACGGGCAACGTCGACCTCGTGGCCGTCGTCGCGAACCTGGCCCTCAAGCGCGGCCTGCCCACGCTGGCCGGCGACGGGCTCGCCGACTCCACCCGGATCGCGCACGCCGTCGCCGAGATCACCAACATCGCGCCGTACACGCGCCAGCCGTACGTCGGGCCCAGCGCGTTCGCGCACAAGGCCGGCCTGCACGCCAGCGCCATCAAGATCGACCCCGACCTCTACCAGCACATCGACCCCACCGCCGTCGGCAACGACATGCGCATGCTCGTCTCCGACATGGCCGGCCGGGCGTCGGTGGAGCTCAAGGGCCGCGAGCTCGGCTTCGACCTGGCCGGGCAGGGCGAGCTGCTCACCCGGGTGACCAACCGGGTCAAGGACGCCGAGGCGCAGGGGTACACGTTCGACGCCGCGGACGCCTCTTTCGAGCTCATCCTGCGCGAGGAGCTCACCGGCCGGCGGCCCGCCTACTTCCAGGTCGAGTCCTGGCGCGCCATCGTCGAGACCACCGGCGGGCGCACCGGCGGGGTGCCCGACGCGGACCGGCGCGACGCCGAGGCGCTGGCCGAGGCGACCGTCAAGCTGCACGCCGGCGGGGAGCGCATCGTCGTCACCGGCGAGGGCAACGGCCCGGTCAACGCCCTCGACCAGGCGCTCCGGCACGCCCTGACGCGCGTCTACCCGACCATCGAGAAGTTCGAGCTCGTGGACTTCAAGGTGCGGATCATGGACGCCGAGCACGGCACCGACGCGACCACCCGGGTGCTGGTCGAGACCACCGACGGCCACCACACCTGGTCGACCGTCGGCGTCGGGCCCAACATCATCGAGGCCGCCTGGGAGGCGCTGATCGACGCGCACGTCTACGGGCTGCTGCACGCCGACGTCGCTCCCCGCTGAMATAPFHVYDTTLRDGAQQEGMNLSVADKLAIAPLLDELGVGFIEGGWPGAIPKDTEFFRRAAKELELSNAVLAAFGSTRRAGTRAWDDPQVRALLDSEAPVVTLVAKSDVRHVERALRTTPDEGLAMISDTVRFLVGEGRRVVVDAEHFFDGYRDDPAYTRSAVEAAFEAGAEVVALCDTNGGMLPDWVTDVVGELRTALDLPHGRDALPGDPLLGMHAHNDSGCAVANTLAAVEAGCAHVQGTVNGYGERTGNVDLVAVVANLALKRGLPTLAGDGLADSTRIAHAVAEITNIAPYTRQPYVGPSAFAHKAGLHASAIKIDPDLYQHIDPTAVGNDMRMLVSDMAGRASVELKGRELGFDLAGQGELLTRVTNRVKDAEAQGYTFDAADASFELILREELTGRRPAYFQVESWRAIVETTGGRTGGVPDADRRDAEALAEATVKLHAGGERIVVTGEGNGPVNALDQALRHALTRVYPTIEKFELVDFKVRIMDAEHGTDATTRVLVETTDGHHTWSTVGVGPNIIEAAWEALIDAHVYGLLHADVAPRNANANANANA
AK018_052191218hypothetical proteinATGCACCACGCGACCACGACCACCGCCGCGCCGGACACCCCGGCGTCGACCGGACGCACGGGCCTCTGGCTCGTCGGCGCCCGCGGCTCGGTGGCCACCACCGCCACGCTCGGCCTTGCCGCGCTCGCCGCCGGGCACGCCCCGCCGACCGGCTGCGTCACCGCCGCCGAGCCGTTCGACGGCCTCGCGCTGCCCGCGTTCGGCGACCTCGTCGTCGGCGGGCACGACGTCGCGCCCACGACGATGGTCAAGCAGGCCGAGGCGCTCGCCGCCGCCGGGATGATCCCCGGTCACCTTCTGTCCGCCACCCGCGACGCGCTCGCCGCGGCCGACGCCGAGGTCCGCCCCGGGTACGACCCCCGCCAGCACCACGGGTCGCAGCAGGAGGCCGCCGAGGCGCTGGCCGCCGACCTGACCGCCTTCCGCCGGACCCACGACCTGGACCGGGTCGTCGTCGTCGACGTCGCCTCGACCGAACCGCCCCTGGACCTGCTCCCCGAGCACGAGGACCCGGCGCTCCTGCGCGCGGCGCTGGCCGACCCCGACCAGGCCGTGCTCCCGGCGTCGTCGGTGACCGCCTACGCCGCGGTGCTGGCCGGCTGCGCGTACGCCTCCTTCACGCCGTCGGCCGGGATGACCGTGCCCGTGCTGGCGCGCTGGGCCGCCGAGGCGGGCCTGCCGGTGGCGGGCCAGGACGGCAAGACCGGGCAGACCTGGCTCCGCACCGTCCTGGCGCCCGCCTTCACCGCCCGCGGCATGCGCGTGCTGTCCTGGGCCGGCACCAACCTGCTCGGCGGCGGCGACGGCGCCACCCTGGCCGACCCCGTGGCCGCCCGCAGCAAGCTCACCTCCAAGAACCGCGGCCTGCGCGACCTCACCGGCACCGACGTCACCCCGCTGCACATCGACAACGTGCCCGACCTCGGCGACGTGAAGGTCGCCTGGGACCACGTGCACGTCGAGGGCTTCCTCGGCTCGCGGCTGACCCTGCAGACGACCTGGAGCGCCCACGACTCCATGCTCGCCGCCCCGATGATCCTCGACCTGGCCCGCCTCCTCGCGCTGGCCCACGCCGCCGGGGTGTCCGGCCCGGTGCCCGAGCTCGGCTACTTCTTCAAGGACCCCTGGGGCTCCGACGTGCACGGCGCCGCCGCCCAGGCGATCCAGCTGGCCGACTGGGCCCGCCGCACCGCCGACGTCGCGGGGCACCGGCCGTGAMHHATTTTAAPDTPASTGRTGLWLVGARGSVATTATLGLAALAAGHAPPTGCVTAAEPFDGLALPAFGDLVVGGHDVAPTTMVKQAEALAAAGMIPGHLLSATRDALAAADAEVRPGYDPRQHHGSQQEAAEALAADLTAFRRTHDLDRVVVVDVASTEPPLDLLPEHEDPALLRAALADPDQAVLPASSVTAYAAVLAGCAYASFTPSAGMTVPVLARWAAEAGLPVAGQDGKTGQTWLRTVLAPAFTARGMRVLSWAGTNLLGGGDGATLADPVAARSKLTSKNRGLRDLTGTDVTPLHIDNVPDLGDVKVAWDHVHVEGFLGSRLTLQTTWSAHDSMLAAPMILDLARLLALAHAAGVSGPVPELGYFFKDPWGSDVHGAAAQAIQLADWARRTADVAGHRPNANANANANA
AK018_05220912cyoE_2Protoheme IX farnesyltransferaseGTGAGGGCCGGAGACCTCGTCGAGCTCGTCCGCGCCCCGGCCGCCCTGACCGTCCTGGGCGACACCCTCGCCGGGATGGCCGCCGCACCGCCGACCACGCGCCGGGCACGCCACGGGCTGCTGCCCGTCGCCTCGGCCTGCCTCTACCTGGGCGGCATGGCGCTCAACGACTACGGCGACCGCGACCTCGACGCGCTCGAACGCCCCGAGCGCCCGATCCCGTCCGGCCGGGTGACCCCGGGCCAGGCGCTCGCCGTCGGCACGGGGCTCGTCGCGGCCGGCGTCGTGGCCGCGGGGGTCGCGAGCGGACGACGCGGGCTCGGGGTGGCGCTGCCGCTCGCGGCCTGCGTGCTCACCTACGACCTCGCCGCCAAGGACCGGCCGGCCGGCGCGGTCGTCATGGCCGCCTGCCGCGGCCTCGACGTCCTGCTGGGCGCGACGCCGACCTCGTGGCGGGCGGCCGCCCCGACCGCCGGCGTGTTCGCCACCCACACGCTGGCCGTGACCGCGCTGTCCCGGGGCGAGGTCCACGGCACGACCAGCACGGTGGCCCGCTGCGCCGTCGCCGGCACGGCGGCGGCCGCGACCGTGACCACCGCCGCGGCCCTGCGGCCCGCGACCGCCCGGCCCGCCGCCTCGCGGTCCGGTGCGGTGACCCGGACGCTCGGCGCCCTGGCCGCCACGGCCGGGTACGTGGCCACCTGCCTGCCGCCCCAGCTGCACGCGGCCGAGGACCGGTCGGCCGGGGCGGCCCGTGCCGCGACCCGGGCCGGCATCCAGGCGATGGTCCCGCTGCAGGCCGCCTGGACGCTGCGCGGCGGCCGGGCGGCGAGCACCGCCGTGCTCGCGGGCGCCCTGGTCGCCGGGCGCCTGCTGCGCCGCCGCGGCCGCAAGCAGGTGAGCATCACGTGAMRAGDLVELVRAPAALTVLGDTLAGMAAAPPTTRRARHGLLPVASACLYLGGMALNDYGDRDLDALERPERPIPSGRVTPGQALAVGTGLVAAGVVAAGVASGRRGLGVALPLAACVLTYDLAAKDRPAGAVVMAACRGLDVLLGATPTSWRAAAPTAGVFATHTLAVTALSRGEVHGTTSTVARCAVAGTAAAATVTTAAALRPATARPAASRSGAVTRTLGALAATAGYVATCLPPQLHAAEDRSAGAARAATRAGIQAMVPLQAAWTLRGGRAASTAVLAGALVAGRLLRRRGRKQVSITNANANANANA
AK018_05221903hypothetical proteinGTGAGCGGCTCCGCCTCCTCGTCCCCGCTCCCCTTCGCGATCGGCTACGGCACGAACGGGTTCGGGGACCACCCGCTGCCGTCCGCCCTCGACGTCCTGGACGCCCTGGGCTACGACGCCGTCGCCCTGACGGTCGGCTACCCGCACCTCGACCCCTTCGCGCCCGGGCTGTCGCAGACGACGGAGCGGCTGGCGCGGCGGCTCGGCCGGATGCGCGACGGCGCCGGTGCCGCCGCGGTCGTCGAGACCGGCACCCGGTTCACGCTTGACCCGTGGACCAAGCACCGTCCGACGCTCGTCAACGCCGAGGCCGGGCTGCGGATGCGCTACCTGACCCGGGCGATCGACGTCGCCGCGACGCTGGACGCGCGCTGCGTGTCGTTCTTCTCCGGCGTGCTGCCCGAGGACGACCGTCCCACCGAGGGGTGGGCCCGGCTGGTCGACCGGCTCCCCGTGCTCCTGGAGGAGGCCCGGGAGAGCGGGGTGCGCCTGGCGATCGAGCCCGAGCCGGGCATGCTCGTGGAGACCGTGGAGGACGCCCTGCGTCTGCGGTCCGCGCTGGGCGACCCGGACGACCTGGGACTGACCGTCGACGTCGGGCACTGTCTCGTCGTCGAGCCCGACGGCGTGGTCGGGGCCCTGCGCGCCGCGGCCCCCGTGCTGGCCAACGTCCAGCTCGACGACATGCCGCGCACGCACCACGAGCACCGGCCGTTCGGCGAGGGCGACCTCGACCTGCCGCTGGTGCTGGCCACGCTCGCCGAGATCGACTACCGCGGCGTCGCCGCCGTCGAGCTCCCCCGCCACTCCCACGACGCCCCGGCGCTCGCCCGCCGCAGCCTGGCCGCGCTGCGGCAGGCCTGGGCGGACGTCGTCGGGCACCCCCCGGAGGCCACCTCATGAMSGSASSSPLPFAIGYGTNGFGDHPLPSALDVLDALGYDAVALTVGYPHLDPFAPGLSQTTERLARRLGRMRDGAGAAAVVETGTRFTLDPWTKHRPTLVNAEAGLRMRYLTRAIDVAATLDARCVSFFSGVLPEDDRPTEGWARLVDRLPVLLEEARESGVRLAIEPEPGMLVETVEDALRLRSALGDPDDLGLTVDVGHCLVVEPDGVVGALRAAAPVLANVQLDDMPRTHHEHRPFGEGDLDLPLVLATLAEIDYRGVAAVELPRHSHDAPALARRSLAALRQAWADVVGHPPEATSPGPT0017530_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATIONPLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017530-ulaE|sgaU|sgbU-K03079NANA
AK018_05222678hypothetical proteinATGACCGACACCTGGATCGACCGGGCCCGGGCCGACGTCGCCCGCGACCCGCGGACGCTGACCCGCCTGTTCGCCCTCGCGCCACGACGCGCCGGCCGAGGCCCCCACGACCCGCAGGGCGACCCGCACGGCGTCGTGCGGGGCACCGCCGAGGACGACGCGCGCGCCGCCCTCGTCGTCGCGCTGGTCCGCGGCGTCGACGGCACCGGCAGCGACACCGGCGACGCGACGGCCGCGCGGCTGCGCGAGCTCTACGACCGGGGCGACACCGGCGAGCGCCGGGGCGTGCTGCGCGGTCTGGACGCCCTCGAGGCCGCCGGGGTCGTCCCCGGAGGCTCGCCGCTGGCGCGCACCGGCGTCGAGCTCGCCCAGGACGCCCACCGCGCCAACGACCCGTCCCTCGTGGCCGCCGCCGTCGGCCGGTTCGGCGGGCGGCACCTGGACCAGCACACCTGGCGGCACACGGTGCTCAAGCTCGTGTTCCTGGGCGTCCCCCTGGACGCCGTCGCCGGGCTGACCGACCGGCTCGACGACGAGACCGTCCGCATGGCGTCCGACTTCGCCGCCGAACGGCGCGCGGCCGGCCGGCCGGTCCCGGACGACGTCGACCGGATCCTGCACCCCCTCGACCCCGGCCGGCCCGCGCCGACCGCCCCGACCCCGAGCACCGCGGAGTGAMTDTWIDRARADVARDPRTLTRLFALAPRRAGRGPHDPQGDPHGVVRGTAEDDARAALVVALVRGVDGTGSDTGDATAARLRELYDRGDTGERRGVLRGLDALEAAGVVPGGSPLARTGVELAQDAHRANDPSLVAAAVGRFGGRHLDQHTWRHTVLKLVFLGVPLDAVAGLTDRLDDETVRMASDFAAERRAAGRPVPDDVDRILHPLDPGRPAPTAPTPSTAEPGPT0018975_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_FRUCTOSELYSINE_BIOSYNTHESIS,PGPT0018975-frlC-K10709NANA
AK018_05223876hypothetical proteinATGCGCATCTTCGACCCGCACATCCACATGACCAGCCGCACCACCGACGACTACGAGCGGATGTACGCCGCCGGGGTCCGCGCCGTCGTCGAACCCGCGTTCTGGCTCGGCCAGCCGCGCACCAGCGTGGCCTCCTTCTGCGACTACTTCGACTCCCTCGTGGGCTGGGAACGGTTCCGGGCCGAGCAGTTCGGCATCCGCCACCACGCGACCATCGCCCTCAACCCCAAGGAGGCGAACGACCCGCGCTGCCGCGACGTGCTGGACGAGGTGCCGCGGTACCTGCTCAAGGACGGCGTCGTGGCCGTGGGCGAGGTCGGCTACGACTCGATGACCCCGGCCGAGGACGAGGCGTTCGCCGCGCAGCTCCAGATGGCGCGCGAGGCCGAGCTGCCCGTGCTGGTGCACACCCCGCACCGCGACAAGCTGAACGGCACGCGGCGCACGCTCGACGTGGTGCGCGAGTCCGGCATCGACCCGTCGCGGGTGCTCGTGGACCACCTCAACGAGACCACCGTGGCGATGGTCCGCGACGCCGGGGCGTGGGCGGGCTTCTCCATCTACCCGGACACCAAGATGGACCCGCACCGCATGGTCGCGCTGCTGCACGAGTACGGCACCGAGCGGATGATCGTGAACTCCGCGGCCGACTGGGGGCGCAGCGACCCGCTGCGCACGGCGCGCACCGGGTCCGAGATGCTCGCCGCCGGGTTCACCGACCACGACGTCGACCGCGTGCTGTGGCGCAACCCGGTGGCCTTCTACGGCACCTCCGGCAACCTCGTGCTGGACCCCGTCCCCGGTTTCGTCCCCGGCGAGGTCCCGGCGCCCGCGGAGTTCGAGGGCTCCTCGGTGCTGCGCGGCGCGCGGGTCTGAMRIFDPHIHMTSRTTDDYERMYAAGVRAVVEPAFWLGQPRTSVASFCDYFDSLVGWERFRAEQFGIRHHATIALNPKEANDPRCRDVLDEVPRYLLKDGVVAVGEVGYDSMTPAEDEAFAAQLQMAREAELPVLVHTPHRDKLNGTRRTLDVVRESGIDPSRVLVDHLNETTVAMVRDAGAWAGFSIYPDTKMDPHRMVALLHEYGTERMIVNSAADWGRSDPLRTARTGSEMLAAGFTDHDVDRVLWRNPVAFYGTSGNLVLDPVPGFVPGEVPAPAEFEGSSVLRGARVNANANANANA
AK018_052241197hypothetical proteinATGCACCTGTCGTACTGCACCAACGTCCACCCCGCCGAGGACCTCGACGGCGTGCTGGCGCAGCTGGAACGCTACGCGGCACCGGTCCGGCGCGCCACCGGCCGCGAGCGCCTCGGGATCGGCCTGTGGCTGCCCGCCGCGCTCGCGCACCGGCTCGACGCCTCGGCCCCGGACCGCGACCGGCTGCGCGGAGCGCTGGACCGGCACGGCCTCGAGGTGCGCACGCTCAACGCCTTCCCCGCCGGCGGCTTCCACGCCGAGGTCGTGGGCCGCGACGTGTACCACCCGGACTGGACCCGGCCGGAACGGCTCGCGTACACCCTGGCCTGCGCCCGCGTGCTCACGGACCTGCTGCCGCCCGGCGCCACCGGGTCGATCTCCACCCTGCCGCTGGGCTGGCGCACCGGCTGGACGACGCGCGACGACGAGGCCGCCACCCGGGCGCTGGCCGCGCTGTCCGCGGAGCTGCGCGCCCTGGCCGACCGCACCGGTGTCGTGGTGCGGCTGGCCGTCGAACCGGAACCGGGGTGCGTGCTGGACACGGTCGACGACGTCGTCGGCTGGCTGGCGGACCGGACCGGTACCGACCGGCCCGCCGGGACGCGCATCGACCCCGCGCTCGTCGGGGTGTGCCTCGACACCTGCCACCTCGCGGTGTCGTTCGCGGACCCCGCCGCGGCGGTGCGTCGCGTCACCGACGCCGGGCTGCGCGTCGTCAAGGTCCAGGCGTCGGCCGCCCTGCACGTCGCCGACCCCGCCGACCCGGAGACCCGCAGCGCCCTGACCCGGTTCGCCGAGCCCCGCTACCTGCACCAGACCCGCGCGCTGGACGCCGCGGGCCGGGTGCACGGCGTCGACGACCTGCCCGAGGCCCTCGCCGGCGGTCTGCCCCGAACCGGTCCGTGGCGCGTGCACTTCCACGTGCCGCTGCATCACGACCCGGCTCCCCCGCTGTCGGCCACCACCGACGTGCTGCGCACCGCCGTCGACGCCGTGGCGCGCGCCCCGCACGGGCGCGAGACGCACCTGGACGTGGAGACCTACACCTGGGGGGTGCTCCCCGCCGACGTGCTGCCGACGGGGGCCGACGAGCTCGTCGCCGGCATCGCCGCCGAGCTGCGCTGGGCCGCCGACCACCTGGAGGCCGTGGAGGCCCCCGACGCCGTCCTGACCACCACCGGGAGGAACACGCTGTGAMHLSYCTNVHPAEDLDGVLAQLERYAAPVRRATGRERLGIGLWLPAALAHRLDASAPDRDRLRGALDRHGLEVRTLNAFPAGGFHAEVVGRDVYHPDWTRPERLAYTLACARVLTDLLPPGATGSISTLPLGWRTGWTTRDDEAATRALAALSAELRALADRTGVVVRLAVEPEPGCVLDTVDDVVGWLADRTGTDRPAGTRIDPALVGVCLDTCHLAVSFADPAAAVRRVTDAGLRVVKVQASAALHVADPADPETRSALTRFAEPRYLHQTRALDAAGRVHGVDDLPEALAGGLPRTGPWRVHFHVPLHHDPAPPLSATTDVLRTAVDAVARAPHGRETHLDVETYTWGVLPADVLPTGADELVAGIAAELRWAADHLEAVEAPDAVLTTTGRNTLNANANANANA
AK018_052251461hypothetical proteinGTGAGACCCGTCCTGCTGCTCGACGTCGTCGGCCTGACGCCCCGCGCGCTGGCCCACATGCCCCGGTTGCGCCGCCTCGCGGGCACCGGGTGGTCCTCGCCGCTGGCGACGGTGCTGCCCGCCGTGACCTGCACCGTGCAGTCGACGATGCTCACCGGCCTGTCCCCCGCCCAGCACGGCGCGGTCGCCAACGGCTGGTACTTCCGCGAGCTCGGCGAGGTGTTCCTGTGGCGGCAGCACAACCGTCTGGTCGCCGGCGAGACGGTCTGGGAGACCGGCCGCCGACGGCACCCGGACTACGCCGCCGTCAACGTGTGCTGGTGGTACGCGATGGGGATGACCACCGAGGTCACCGTGACGCCCCGGCCGATCTACCACGCCGACGGCCGCAAGTCCCCCGACGCCTACGTCCGCCCGCCGGGCCTGCACGACGAGCTCGTCGAACGGTTCGGCGACTTCCCCCTGTTCACCTACTGGGGTCCGACGGCGTCGCTCACCTCCAGCCGGTGGGTCGTGGACGCCACCCGGCACCTGCTGCGCACCCGCGCCGCGGACCTGACCACCGCGTACGTCCCGCACCTGGACTACGACCTGCAGCGGTTCGGCCCCGAGTCCCCGCAGGCCGACGCCGCCGCGGCCGACCTGGACGGCGTGCTCGCGCCGCTGCTGGACCAGGCCGAGGCCGACGGCGTGACTGTCGTCGTCGTGTCCGAGTACGGCATCACCCGCGCGGAGCGTCCCGTCCACCTCAACCGGGTGCTGCGCCGCGAGGGGCTGCTGGAGGTCTACACCCAGGCGGGCCGCGAACAGCTCGACCCGTGGACCTCGCGGGCGTTCGCCGTCGCCGACCACCAGGTCGCGCACGTGTACGTCGACGACGCCGCCGACGTCGCCCGGGTCGCCGACCTGCTGCGCGCCGTGCCCGGCGTCGACGAGGTGCTCGACCGCGAGGCCCAGGCCCGCTACGGGCTCGACCACGAGCGCTCCGGCGAGCTCGTCGTCGTCGCCGAGCCCGGGGCGTGGTTCACCTACTACTTCTGGCTGGACGACGACCGGGCCCCGGAGTACGCGCGCGCCGTGGACATCCACCGCAAGCCCGGCTTCGACCCGGCCGAGCTGTTCTTCGACCCGGCCGACCGGCTCGCGAAGGCCAAGGCCGGGCTGAACCTCGTGCGCAAGAAGCTCGGGCTGCGCTACGCGATGTCCACCGTGCCCCTGGACGCCTCCTGGGTGGGCGGCACGCACGGCCGCCTGCCCGACGACGCCGCGGACTCCCCGATGATCCTCTGCTCGGCCCCGGAGGTCCCCGACGTCGTGGCGCGGCAGGTGCACGACGACGACCGGTCGGTCCCGGCGGCCGCGGTCAAGGACCTCGTGCTCGCCCTGCAGGGGATCTCTCCCGGCGGGTCCCCGCAGCACGCCGTCCCGGGGGGCGCCGAGGCCGCGGATGTGGTCGGCTAGMRPVLLLDVVGLTPRALAHMPRLRRLAGTGWSSPLATVLPAVTCTVQSTMLTGLSPAQHGAVANGWYFRELGEVFLWRQHNRLVAGETVWETGRRRHPDYAAVNVCWWYAMGMTTEVTVTPRPIYHADGRKSPDAYVRPPGLHDELVERFGDFPLFTYWGPTASLTSSRWVVDATRHLLRTRAADLTTAYVPHLDYDLQRFGPESPQADAAAADLDGVLAPLLDQAEADGVTVVVVSEYGITRAERPVHLNRVLRREGLLEVYTQAGREQLDPWTSRAFAVADHQVAHVYVDDAADVARVADLLRAVPGVDEVLDREAQARYGLDHERSGELVVVAEPGAWFTYYFWLDDDRAPEYARAVDIHRKPGFDPAELFFDPADRLAKAKAGLNLVRKKLGLRYAMSTVPLDASWVGGTHGRLPDDAADSPMILCSAPEVPDVVARQVHDDDRSVPAAAVKDLVLALQGISPGGSPQHAVPGGAEAADVVGNANANANANA
AK018_05226567hypothetical proteinGTGAGCGATCAGCAGCGTCCGTACGGGTCCGAGGACCCGACGCAGCGCTACCGGCCGGTGAACCAGCCGGCGGACCAGCCCCCCGGGATGCCGCCCGCGGCGAAGCCCTCCTGGGAGGCTGCTCCGAAGGACCCGCCTCCCGAGCCGCGGCTCGACCTGGGCCGGTACTGGGCGGGGGCCGCGGCCACCGTCCTGGTGTGCGCCCTCCTGGGCTTCACCGCCTCGGTGATCTTCGACGAGGTCTTCGACATCGGGCTCATCCCGCCGCCCGACGCGTTCGGCGCGGGCGACGACGCCTCGTGGGCCGCCGCGGGGGCGCTCTTCGCCCTCGCCGCCGCCGTCGTGCTCAACCTGCTGGTCGTGGTGGCCCCGCGGCCGCGGATGTTCTTCGGCTGGCTCGTGGGCCTGGCCACGGTGATCCTGGCGGTGCTGCCGTTCACCGGCAACCCGGACCCGCTGCCCGGCGCGATGACCGCGCTGGTGTGGGTGATCCTGGGCATCGCGGTGTCCTCGATGCTCGGCAGCGTCATCGTGCGGACCCTCGTGGTCCCGACACCGCCGCGCTGAMSDQQRPYGSEDPTQRYRPVNQPADQPPGMPPAAKPSWEAAPKDPPPEPRLDLGRYWAGAAATVLVCALLGFTASVIFDEVFDIGLIPPPDAFGAGDDASWAAAGALFALAAAVVLNLLVVVAPRPRMFFGWLVGLATVILAVLPFTGNPDPLPGAMTALVWVILGIAVSSMLGSVIVRTLVVPTPPRNANANANANA
AK018_052271131ilvE_3COG0115Branched-chain-amino-acid aminotransferaseATGACCACGACCTCGCACAACGTGCTCCCCGAGGAGCTCGAGGACCTCGTCGCGCTCTTCGACGTCCGCGGAACCGACGAGCCCACCCCCGACGCCGAGCGCGAGGAGGCGCTCGCGTCACCCCGCTTCGGCACGGTCTTCACCGACCACATGGCCCGGGTCTCCTGGCGTCAGGAGGACGGTTGGCTCGACCGGCGGGTCGAGAAGTACGGACCGCTGCAGCTCGACCCCGCCACCGCCGTCCTGCACTACGCGCAGGAGATCTTCGAGGGCATGAAGGCGTACAAGCACGCCGACGGGTCGGTGTGGACCTTCCGCCCCGAGTCCAACGCCGCGCGGTTCGCGCGCTCCGCCCACCGGCTGGCGCTGCCCGCGCTCACCGTGGACGACTTCATCGGGTCGATCGCCGCGCTGGTGCGGACCGACCTGGCGTGGGTGCCCGACGGCGAGGACTCCAGCCTGTACCTGCGCCCCTTCATGTTCGCCTCGGAGCCGTTCCTCGGCGTCCGCCCGGCGGCGCAGGTCGAGTACCTGTGCATCGCCTCGCCGGTGGGCCCCTACTTCGCCGGCGGCGTGAAGCCGGTGTCGATCTGGGTCTCCCAGGACTACCACCGCGCAGGCCCGGGCGGCACCGGCGACGCCAAGTGCGGCGGCAACTACGCCGCCAGCCTCCTGCCGCAGACCGAGGCCCAGCAGAACGGCTGCGACCAGGTGTGCTTCCTGGACGCCACGACGAACTCCTCCCTCGAGGAGCTCGGCGGCATGAACATCTTCGTGGTGATGGACGACGGCACGGTCCACACCCCGGAGCTGACCGGCTCGATCCTCGAGGGCGTCACCCGCTCGTCGATCCTGCGCCTCGTCGCCGACCACGGGCGCGAGGTCGTCGAGCGCAAGATCCCGCTCGACGAGGTCGTCGCGGGTCTCGCGGACGGCAGCGTGCGGGAGATCTTCGCCTGCGGCACCGCCGCCGTCGTGACCCCGGTGGGCCGCCTGGCCGGCGGGACGTTCGACCACACGGTGGCCGACGGCGAGCCCGGCGAGCTGACGATGGCGGTGCGGACCGAGCTCACCGACATCCAGTACGGGCGCGCGCAGGACCGGCACGGCTGGATGCGCCGCCTGGCCTGAMTTTSHNVLPEELEDLVALFDVRGTDEPTPDAEREEALASPRFGTVFTDHMARVSWRQEDGWLDRRVEKYGPLQLDPATAVLHYAQEIFEGMKAYKHADGSVWTFRPESNAARFARSAHRLALPALTVDDFIGSIAALVRTDLAWVPDGEDSSLYLRPFMFASEPFLGVRPAAQVEYLCIASPVGPYFAGGVKPVSIWVSQDYHRAGPGGTGDAKCGGNYAASLLPQTEAQQNGCDQVCFLDATTNSSLEELGGMNIFVVMDDGTVHTPELTGSILEGVTRSSILRLVADHGREVVERKIPLDEVVAGLADGSVREIFACGTAAVVTPVGRLAGGTFDHTVADGEPGELTMAVRTELTDIQYGRAQDRHGWMRRLAPGPT0008860_1026DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826NANA
AK018_052281044leuB_2COG04733-isopropylmalate dehydrogenaseATGACGCGCAACATCGATCTGGCTGTGGTGGCAGGCGACGGCATCGGCCCCGAGGTCGTCGAGCAGGGTCTCGCCGTGCTCGACGCCGCACTGGCCGGCTCCGACGTGAAGGTCTCGACCACCGAGTTCGATCTCGGCGCGCGTCGCTGGCACGAGACCGGCGAGACGCTCACCGACGACGACCTCGCCCGGATCCGCGAGCACGACGCGATCCTGCTCGGTGCCATCGGCGACCCGTCGGTGCCCTCCGGCGTGCTCGAGCGCGGCCTGCTGCTCAAGCTGCGCTTCGCGCTGGACCACTACGTCAACCTGCGCCCCGGCACGCTCTACCCGGGCGTCACCAGCCCGCTGGCCGACCCGGGCGAGGTCGACTTCGTCGTCGTGCGCGAGGGCACCGAAGGGCCGTACGTCGGCAACGGCGGGTCCGTGCGCACCGGCACGCCGCACGAGATCGCCACCGAGGTGTCGGTCAACACCGCGTTCGGCGTCGAGCGGGTCGTCCGCGACGCCTTCGCCCGCGCCCAGGCGCGCCCCCGCAAGCACCTGACGCTGGTGCACAAGCACAACGTGCTCGTGCACGCCGGCCACCTGTGGCGGCGCACCGTCGAGGCCGTGGGCGCCGAGTTCCCCGACGTGACCACGGACTACCTCCACGTCGACGCGGCGACGATCTTCCTGACCACGAACCCCTCGCGGTTCGACGTCATCGTCACCGACAACCTGTTCGGCGACATCATCACCGACCAGGCGGCGGCCATCACCGGCGGCATCGGTCTGGCCGCGTCGGGCAACATCAACCCCGACCGGACGGCGCCGTCGATGTTCGAGCCCGTGCACGGCTCCGCCCCGGACATCGCCGGGCAGAGCAAGGCCGACCCGACGGCGACCGTGCTGTCCGTGTCGCTGCTGCTGGAGCACCTGGGCCTGACCGAGCAGGCGCGTCGCGTGGAGGCCGCCGTGTCCGCCGACCTGGCCGAGCGCGGGGACCGAGTACGCTCGACGGCCGAGGTCGGACGCGAGCTCGCCGCCCGCGTCGCCGGCTGAMTRNIDLAVVAGDGIGPEVVEQGLAVLDAALAGSDVKVSTTEFDLGARRWHETGETLTDDDLARIREHDAILLGAIGDPSVPSGVLERGLLLKLRFALDHYVNLRPGTLYPGVTSPLADPGEVDFVVVREGTEGPYVGNGGSVRTGTPHEIATEVSVNTAFGVERVVRDAFARAQARPRKHLTLVHKHNVLVHAGHLWRRTVEAVGAEFPDVTTDYLHVDAATIFLTTNPSRFDVIVTDNLFGDIITDQAAAITGGIGLAASGNINPDRTAPSMFEPVHGSAPDIAGQSKADPTATVLSVSLLLEHLGLTEQARRVEAAVSADLAERGDRVRSTAEVGRELAARVAGPGPT0001441_4250DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001441-leuB-K00052NANA
AK018_05229246hypothetical proteinGTGGCGTTGCGCTGGTACTCGACGGTCGTGGAGACCACCGATCCTCGCGCCCTGGCCGGCTGGTGGGCCGAGGCGCTGGGCCGGCAGTTCGCCCACACCTCCGACGACCGGGACGCCGAGATCGACCGGCTCGTCGCGCTCGGGGCGACGGTGATCGACGTCGGGCAGCCGGCGGACGCGTCCTGGACGGTCCTGGCGGACCCGGACGGCAACGAGTTCTGCGTCCTGTCGTCGCGCGAGTACTGAMALRWYSTVVETTDPRALAGWWAEALGRQFAHTSDDRDAEIDRLVALGATVIDVGQPADASWTVLADPDGNEFCVLSSREYNANANANANA
AK018_05230531hypothetical proteinATGACGGACGAGCAGGGACCGCACCTCGACGACGTGGCACAGGCCGAACGGATCACCGCCTTCTGGGACACCGCCCGGCCCTCCGCCGGGCGCACGAGCCACGGCGGTGCCGTCGGCGAGCGTTCCGAGAACGTCGTGCCGCCGCCGGCGTGGGCGTTCGGGGACAACCCGGCGCTGGCCGACGAGCTGCTCGGCCTGGTGCTCGCCGGCACCAAGACGGCGACGGCGTCGCTCGTCGTCGAGTACGAGGACGCCGCCGAGCCCGCACCCCGCAAGGGCGACCTGTCGATCCTCCTGGACGGCAGGGGTGAGCCCCGGGCGCTCGTGCGCACGACGCAGGTCGACCGGGTGCCGTTCCGCGACGTCACCGCGGAGCACGCGTGGCGCGAGGGGGAGGGCGACCGGACCCTGGAGTCCTGGCGCGAGGGCCACGAACGCTACTGGCGGCGCACCCTGGCCGGCACGCAGCACGAGTTCGACCCGTCCCTGGAGGTCCTCTGCGAGCGGTTCAAGGTCCTCTACTCCGAGTGAMTDEQGPHLDDVAQAERITAFWDTARPSAGRTSHGGAVGERSENVVPPPAWAFGDNPALADELLGLVLAGTKTATASLVVEYEDAAEPAPRKGDLSILLDGRGEPRALVRTTQVDRVPFRDVTAEHAWREGEGDRTLESWREGHERYWRRTLAGTQHEFDPSLEVLCERFKVLYSEPGPT0008170_121DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934NANA
AK018_05231492hypothetical proteinATGGCACCCATGTACCTGCGGGTGGCGGCCTACGCCGTGATCGTCGCCGACGGACAGGTCCTCCTGCCGCACTGGTCGGACCGACGGCGGTCCGGCTGGACGCTGCCCGGCGGGGGCATCGACCCGGGCGAGCACCCCGAGGACGCGGCCGTGCGGGAGGTCCGCGAGGAGACCGGCTACGGCGTGGAGCTCGACGGGCTGCTCGGCGTCGACAGCATCGTCGTCCCGCCCGAGCACCTCATCGGGTTCGACGACGACGCGGACGTCGACCCCCTGCACGGGATCCGCATCGTGTACCGGGCCCGCATCGTCGGCGGGTCGCTGACGGTCGAGCAGGACGGGTCCACCGACGACGTCGCCTGGCATCCCCTCGAGGGGGTCGCCCACCTGCCGCGGGTCGAGCTCGTCGACCGCGCGCTGGCGATGGCCGGGGTGCTGGACCTCTCCGCGCAGGACGGCGGTCCCGGCGCGACGGACGCCGTCCCGGGCTGAMAPMYLRVAAYAVIVADGQVLLPHWSDRRRSGWTLPGGGIDPGEHPEDAAVREVREETGYGVELDGLLGVDSIVVPPEHLIGFDDDADVDPLHGIRIVYRARIVGGSLTVEQDGSTDDVAWHPLEGVAHLPRVELVDRALAMAGVLDLSAQDGGPGATDAVPGNANANANANA
AK018_052321029ilvC_2COG0059Ketol-acid reductoisomerase (NADP(+))GTGGCTGAGATGTTCTACGAGGACGCCGCCGACCTGTCCATCATCCAGAGCAAGAAGGTCGCCGTCATCGGCTACGGCAGCCAGGGCCACGCCCACGCGCTGAACCTGCGCGACTCGGGTGTCGACGTCCGCGTCGGCCTGCGCGCCGGCTCGTCGTCGGCCGCCAAGGCGGAGGACCAGGGCCTGAAGGTCCTGCCCGTCGCCGAGGCCGTCGCCGAGGCCGACGTCGTCGTCGTCCTGGCGCCGGACCAGGTCCAGCGCGACCTGTACCGCGACGAGATCGCCCCGAACCTCCGCGAGGGCGCCGCCCTGGTCTTCGGCCACGGCTTCAACATCCGGTTCGGCTACATCAAGCCCGCGGCCGGTCACGACGTCTTCATGGTCGCCCCGAAGGGCCCCGGCCACCTCGTGCGTCGCGAGTACGTCGACGGCCGCGGCGTGCCGGTGATCGTCGCCGTCGAGCAGGACGCCAGCGGTTCCGCCTGGGACCTCGCCCTGTCGTACGCCGCGGGCATCGGCGGGCTGCGTGCCGGCGGCATCAAGACCACGTTCACCGAGGAGACCGAGACCGACCTGTTCGGCGAGCAGGCCGTGCTCTGCGGCGGTACCTCGCAGCTCGTCCAGTACGGCTTCGAGGTCCTCACCGAGGCCGGCTACCAGCCCGAGGTCGCGTACTTCGAGGTGCTGCACGAGCTGAAGCTCATCGTCGACCTCATGGTCGAGGGCGGTCTGGCCAAGCAGCGCTGGTCGATCTCCGACACCGCCGAGTACGGCGACTACGTCTCCGGCCCGCGCGTGATCTCGCCCGAGGTCAAGGAGAACATGAAGGCCGTGCTCGCGGACATCCAGTCGGGTGCCTTCGCCGAGCGCTTCATCGCCGACCAGGACGCCGGCGCCCCGGAGTTCACCGAGCTCCGCGCCAAGGGCGAGTCGCACCCGATCGAGACCACCGGTCGCGAGCTGCGCAAGATGTTCGCCTGGATCAAGCCTGCCGACTCGGACTACACCGAGGGCAGCGCCGCTCGCTGAMAEMFYEDAADLSIIQSKKVAVIGYGSQGHAHALNLRDSGVDVRVGLRAGSSSAAKAEDQGLKVLPVAEAVAEADVVVVLAPDQVQRDLYRDEIAPNLREGAALVFGHGFNIRFGYIKPAAGHDVFMVAPKGPGHLVRREYVDGRGVPVIVAVEQDASGSAWDLALSYAAGIGGLRAGGIKTTFTEETETDLFGEQAVLCGGTSQLVQYGFEVLTEAGYQPEVAYFEVLHELKLIVDLMVEGGLAKQRWSISDTAEYGDYVSGPRVISPEVKENMKAVLADIQSGAFAERFIADQDAGAPEFTELRAKGESHPIETTGRELRKMFAWIKPADSDYTEGSAARPGPT0008735_1630DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008735-ilvC-K00053NANA
AK018_05233522ilvH_2COG0440Acetolactate synthase small subunitATGAGCCGTCACACGTTGTCCGTGCTGGTCGAGGACAAGCCGGGTGTCCTGACCCGCGTCGCCGGGCTCTTCGCCCGACGCGCGTTCAACATCCAGTCCCTGGCGGTGGGTCCGACCGAGCACGCGGAGATCTCGCGGATCACCGTCGTGGTCGACGTCGAGGACCACCCGCTGGAGCAGGTCACCAAGCAGCTCAACAAGCTGGTGCACGTCATCAAGATCGTCGAGCTCGACCCGGAGTCCTCGGTCCAGCGCGAGCTGCTGCTGGTCAAGGTCAAGGCCGACCAGGCCACCCGGTCGGGCGTGCTCGAGGTCGTCGAGCTCTTCCGGGCCAAGGTCGTCGACGTCGTGCCCGACACGGTCGTCATCGAGGCGACCGGGACGGGGAGCAAGCTCGAGGCGCTGCTGACCGCGCTCGAGCCCTACGGCATCCGCGAGATCGTCAAGTCCGGGACCCTCGCCGTCGGGCGCGGGTCGCGATCCATCACCGACCGGGCGCTGGAGCGGGTCCGCAGCGCGTGAMSRHTLSVLVEDKPGVLTRVAGLFARRAFNIQSLAVGPTEHAEISRITVVVDVEDHPLEQVTKQLNKLVHVIKIVELDPESSVQRELLLVKVKADQATRSGVLEVVELFRAKVVDVVPDTVVIEATGTGSKLEALLTALEPYGIREIVKSGTLAVGRGSRSITDRALERVRSAPGPT0008205_1462DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008205-ilvH|ilvN-K01653NANA
AK018_052341824ilvB1_2COG0028Acetolactate synthase large subunit IlvB1ATGGGCCAGCCGAACCCGACACCAGCCCATGTGGCAGCGCGTACCGCCCCGCGCCCGGTCGAGCGCCGGGTCGACGAGCAGGTCACGGGGGCGGAGTCGATCGTCAAGTCGCTCGAGGCCGTCGGCGTCGACACCGTGTTCGGCATCCCGGGCGGCGCCATCCTGCCGACCTACGACCCGCTGATGGACTCGCAGAAGCTGCGCCACATCCTGGTGCGGCACGAGCAGGGCGGCGGGCACGCCGCCTCCGGGTACGCCCACGCGACCGGTCGGGTCGGCGTGACGATGGCGACCTCGGGCCCCGGCGCGACCAACCTGGTCACCCCGCTGGCGGACGCCAACATGGACTCGATCCCGATGGTCGCGATCACCGGCCAGGTGGCGGCGCCCGCGATCGGGACCGACGCGTTCCAGGAGGCGGACATCGTCGGCATCACGATGCCGATCACCAAGCACTCCTACCTGGTGACCGACCCGGCCGAGATCCCGCGGACCATCGCCGAGGCGTTCCACATCGCCTCGACGGGGCGTCCCGGTCCGGTGCTGGTCGACATCGCCAAGTCCGCGATGCAGGCCCAGACCACCTTCTCGTGGCCGCAGCAGCCCGCGCTGCCCGGCTACCACCCGGTGACCAAGCCGCACGCCAAGCAGATCCGCGAGGCCGCCAAGCTGCTGGCCACCGCGCGCCGGCCCGTGCTGTACGTCGGCGGCGGGGCCGTGCGCTCCGGGGCCGCGGCCGAGCTGCGCCGTCTGGTGGACGTCTCCGGCGCCGCCGTCGTGACGACCCTCATGGCACGCGGTGCGGTCCCCGACTCGCACCCCCAGCACCTGGGCATGCCCGGCATGCACGGCACGGTGCCCGCCGTGGCCGCGCTGCAGAAGGCCGACCTCATCGTCGCTCTCGGCGCGCGCTTCGACGACCGCGTGACGGGCAAGCTGTCCAGCTTCGCTCCGCACGCCGCCGTCGTCCACGCCGACATCGACCCGGCCGAGATCGGCAAGAACCGGGCCGTGGACGTGCCCATCGTCGGCGACCTGCGCGAGGTCATCGGCGACCTGGTCCCGGCGCTGGAGGCCGAGCACGCCAAGGTCGGCCGACCCGACGTCGAGGCCTGGTGGCACCAGATCGACACCTGGCGGGAGACCTACCCGCTCGGCTACACCTCCACGGACGACGGCCACCTGGCGCCGCAGTCGGTGATCTCCCGGCTCGGCGAGCTGGCCGGTCCCGACGCCATCTACGTCGCCGGTGTGGGGCAGCACCAGATGTGGGCCTCCCAGTTCATCCGCTACGAGCGGCCCAACACCTGGATCAACTCCGGTGGTCTGGGCACCATGGGGTACTCGGTCCCGGCGGCGATGGGCGCCAAGGCCGGAGCGCCCGACCGCGAGGTGTGGGCGATCGACGGCGACGGCTGCTTCCAGATGACCAACCAGGAGCTGGCCACCTGCGCGATCAACGACATCCCGATCAAGGTCGCGCTGATCAACAACAGCTCCCTCGGCATGGTCCGCCAGTGGCAGACGCTCTTCTACAACGAGCGGTACTCCAACACCGACCTGCACACCGGGCACGGCACGGCGCGCATCCCCGACTTCGTCAAGCTCGCCGAGGCGTACGGCTGCGTGGGGATCCGGGTGGAGCACCCCGGCGAGGTGGACGCCGCGATCAAGAAGGCCCAGGAGATCAACGACCGCCCGGTGGTCGTCGACTTCACCGTCTCGCGCGACGCGATGGTGTGGCCGATGGTCGCGGCCGGGGTCAGCAACGACGACATCCAGTACGCGCGGGGCATCTCGCCGGCCTGGGAACGAGAGGACTGAMGQPNPTPAHVAARTAPRPVERRVDEQVTGAESIVKSLEAVGVDTVFGIPGGAILPTYDPLMDSQKLRHILVRHEQGGGHAASGYAHATGRVGVTMATSGPGATNLVTPLADANMDSIPMVAITGQVAAPAIGTDAFQEADIVGITMPITKHSYLVTDPAEIPRTIAEAFHIASTGRPGPVLVDIAKSAMQAQTTFSWPQQPALPGYHPVTKPHAKQIREAAKLLATARRPVLYVGGGAVRSGAAAELRRLVDVSGAAVVTTLMARGAVPDSHPQHLGMPGMHGTVPAVAALQKADLIVALGARFDDRVTGKLSSFAPHAAVVHADIDPAEIGKNRAVDVPIVGDLREVIGDLVPALEAEHAKVGRPDVEAWWHQIDTWRETYPLGYTSTDDGHLAPQSVISRLGELAGPDAIYVAGVGQHQMWASQFIRYERPNTWINSGGLGTMGYSVPAAMGAKAGAPDREVWAIDGDGCFQMTNQELATCAINDIPIKVALINNSSLGMVRQWQTLFYNERYSNTDLHTGHGTARIPDFVKLAEAYGCVGIRVEHPGEVDAAIKKAQEINDRPVVVDFTVSRDAMVWPMVAAGVSNDDIQYARGISPAWEREDPGPT0008185_1178DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008185-budB|ilvK|alsS|ilvB|ilvG|ilvI-K01652NANA
AK018_052351089hypothetical proteinATGCGACTGCTCAGGGTGGAGCTGCGTCGGCTGTGGATGCGGCGCGTGACGTGGGGCGGCCTCCTGCTCGCGCTGGTCGTCGCGGGCCTCGGTGTCGCCGGGCAGATCGGCAGCGCCCAGCCGCCCACCGACCGGCAGGTCGCCGAGGCGGAGGCGTTCTACGCCGAGGAGCTCGAGCGCTGGGAGGAGACCGGCGAGCAGCAGGTCGAGCAGTGCGAGGAGGCCGAGGCGGAGGCCGCCGCGGACGACCCCGGTGCGGACTTCGGCTGCGACGACATGGCGCCCCGGCTGGAGTACTTCCTGCCGCCGACCGTGTCGTTCGTCCCCGACGCCGACGACCGGGAGGCCACCGTGCTCGGCCCGGGGTCCGACCACGGCGCGAGCCAGGACCCGCGCGTCGCGGAGATCGAGCAGTCGCTCTGGACCGGCTGGTCCGGTGTCGGGGCGGCGGCCGGCTACGCCCCGGCGTTCCTCATGCTCGCCTTCGTCGTCGGGGTGAGCTTCATGACGGCCGAGCGCAGCACGGGGGCGCTGGGCATGTGGCTCACGTTCGAGCCCCGGCGCTCGCGGGTGTACGGGTCGAAGGCGCTCGCGGCCGCGCTGGGGACCGTCCCGCTCGTCGTCGCGGGCTGGGCGGCGGTGGCCGGGGGCATCTACACGCTGCACGCCGTCTTCGGCACGGTGGGCACGGTCACCACGGAGGACTGGGTCGAGATCGGCGCCTTCTCGGTCCGTCTCGTGGGGGCCGGCGTGCTCTGTGCCGCGGTCGGCACGGCCCTCGGCGTCCTGCTGCGGCACGCCGTGGCGGCCGTCGGCGCGGTGGCCGTGGTCCTGTGGGCGGGTGCGGCCTTCGGCTACCCCCTGGGCGCCGCCCAGCGCTGGACCCCGACGACGAACCTGACCGCGTGGCTCGAGGGCGGCACCGCGTACGGCGTGGCCCTCGAGACCCGCGACGAGAGCGGCATGGTCACCACGACGTGGACCACCGAGGTGGTCACGGGCCTGCAGGGCGGGCTGTACCTGCTCGCCGTCGCGGCCGTGCTCACGCTGCTCGCCGTCGTCGTCTTCCGCCGCCGCGACGTCGCCTGAMRLLRVELRRLWMRRVTWGGLLLALVVAGLGVAGQIGSAQPPTDRQVAEAEAFYAEELERWEETGEQQVEQCEEAEAEAAADDPGADFGCDDMAPRLEYFLPPTVSFVPDADDREATVLGPGSDHGASQDPRVAEIEQSLWTGWSGVGAAAGYAPAFLMLAFVVGVSFMTAERSTGALGMWLTFEPRRSRVYGSKALAAALGTVPLVVAGWAAVAGGIYTLHAVFGTVGTVTTEDWVEIGAFSVRLVGAGVLCAAVGTALGVLLRHAVAAVGAVAVVLWAGAAFGYPLGAAQRWTPTTNLTAWLEGGTAYGVALETRDESGMVTTTWTTEVVTGLQGGLYLLAVAAVLTLLAVVVFRRRDVAPGPT0006730_7921DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_052361056bcrA_4Bacitracin transport ATP-binding protein BcrAGTGGCGGTCGACGGCGAGCTGGCGATCGAGACCCGCGGGCTGCGCAAGACCTACCGCAGCGTCCGCGGGCGGCGCGTCGGGGTCGAGGACCTCGACCTGCAGGTGCCCGTCGGCGGCGTGCACGGTTTCCTCGGCCCGAACGGCTCCGGCAAGACCACGACCATCCGGATGCTGCTCGGGCTGGTGCGCCCGGACCGGGGGAGCGCGACGATCTTCGGTCACGACGTGCCGCGACACCTGCCCGACGTCGTCGGTCGGGTCGGCGCGATCGTGGAGAGCCCGACGTTCTTCCCCGCCTTCAGCGCCCGGGCGAACCTGCGGCTCCTCGCCGACGGCATCGGGGCCCCGCGCGAGCGGGTCGACGCGGTCCTCGACGACGTCGGCCTGACCGGCCGGGCGAAGGACCGCTACCGGACCTACTCGCTCGGCATGAAGCAGCGCCTGGCGATCGCGGCGACCCTGCTCAAGGACCCGGACCTGCTGATCTTCGACGAGCCGACCAACGGCCTCGACCCGGCGGGCATCCACGAGATCCGGCGCACGATGCGCGACCTGGGCGACCAGGGCAAGACGGTGCTGGTCTCCAGCCACATCCTCGCCGAGGTCGAGCAGGTCGCCGACACCGTCTCCATCGTCGCGCGGGGCCGACTCGTGGCCTCCGGGCGGGTGACCGACCTGATCTCCGGGCAGGGCGGCGCGGCCGTGCGGGTCGTCGTCGCGCCCGACGACGTCGCGATCGCGACGAGCCTGCTGGCCTCCCGCGGGCTCGTCGCACGGCACGAGGACGACGCGCTCGTCGTCGAGGGCGCGGACCCCGCCGGCGTCAACCGCATGCTCGGCGAGCAGGGCGTCTGGGCTCGCGAGATCGCACCGCGCCAGGTCGACCTGGAGTCGGTGTTCCTCGGCCTGACCCAGCACGAGACGCCGGGCGGCCGTGACCACCGGGGCGGACGTCGTCGTCGGCGACGAGACGCCGAGCCGCCCGTCGGACCCGCCGCGACGGCGGCGGCCACGAGCTCCGGGACCGGCCGGGCGGACGGCGGCGAGGAGATCTGAMAVDGELAIETRGLRKTYRSVRGRRVGVEDLDLQVPVGGVHGFLGPNGSGKTTTIRMLLGLVRPDRGSATIFGHDVPRHLPDVVGRVGAIVESPTFFPAFSARANLRLLADGIGAPRERVDAVLDDVGLTGRAKDRYRTYSLGMKQRLAIAATLLKDPDLLIFDEPTNGLDPAGIHEIRRTMRDLGDQGKTVLVSSHILAEVEQVADTVSIVARGRLVASGRVTDLISGQGGAAVRVVVAPDDVAIATSLLASRGLVARHEDDALVVEGADPAGVNRMLGEQGVWAREIAPRQVDLESVFLGLTQHETPGGRDHRGGRRRRRRDAEPPVGPAATAAATSSGTGRADGGEEIPGPT0006725_1080DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_05237321Putative pterin-4-alpha-carbinolamine dehydrataseATGAGTGACCACATGACCCCCACGCAGTTCCGCGCCGCCGCAGGGACCGCGGACTGGCGGGTGCTCGACGACGGGCGGGCGACGGCGACCTTCCGCACCGGTGCCTTCACCACCGGGGTGCGGCTGGTCGAGGAGATCGGCGAGCTCGCCGAGGCCGCGAACCACCACCCCGACGTCGACCTGCGGTACGGCACCGTCGTCGTGCGCACCGTGTCCCACGACATCGGCGGGCTGAGCCAGCGGGACGCGGCGCTCGCGGCGCAGATCTCGGCGGCGGCGCGCGAGCTCGACATCCCCGCCGAGGCCCCGTCGTCCGCCTGAMSDHMTPTQFRAAAGTADWRVLDDGRATATFRTGAFTTGVRLVEEIGELAEAANHHPDVDLRYGTVVVRTVSHDIGGLSQRDAALAAQISAAARELDIPAEAPSSANANANANANA
AK018_052381338Putative pterin-4-alpha-carbinolamine dehydrataseATGTCCACCGAGTCCGACGATCCCGTCACGGACGAGCTGACCCCGGACCAGTTCGAGCAGGCCGACTCCACCGGCCACTGGCGGGTGCTGTCGCACGGGGCCTGCGCGCTCTTCCGCACCGGGACGCCGGGCGCCGGAGCCGTCCTGCTCGAGGACGTCGCGGTGCTCGCCGACGCCGCGAACCACCACCCGGACGTGGACCTGCGGCCCGACGGCGTCGTCGTGCGGTGCGTCTCGCACGACGTCGGCGGCCTGAGCCGGCGCGACGTCGCGCTCGCCCAGGACGTCTCGGCCGCGGCCGACCGGCTGGGGCTGACCGCCGACCCGGCGGCGCTGCAGGACGTCGAGCTGACGATCGACGCCACCGACCGCGAGCGCATCATGCCGTTCTGGGCCGTGGTGCTCGGGCACGAGCGGGCCGGCGAGGAGGACCTGCTCGACCCGGACGCGCGCTGGCCCGGCATCTGGTTCCAGCGGATGGACGAGCCCCGGCCGCTGCGGAACCGGCTGCACCTGGACGTGTTCGTGCCGCACGACGACCGGCCCGCCCGGGTCGAGGCCGCCCTGGCGGCCGGCGGGCGGCTCACCACCGAGGAGTTCGTGCCGCAGTGGTGGACGCTCGCCGACCCGGAGGGCAACGAGGCCGACGTCGAGGCGTGGGAGGGTTTCACCGACGAGCTGCCCGAGGGGCTCGTCTCCCCGGACGCCTTCCGCGCGGCCGACGGCGTCGAGGACTGGCGGGTGCTGCAGGGAGCGTGCGCGCGCTACCGGACCGGACGGTTCCGCACCGGGGTCGACCTGGCGGCGAGCGCGCAGCGGATCGCCGACGACGCCGGGGTCCGGCTCTCCACGGACCTGCGCTTCGGCCACGTCACCTTCCGGGTGGGCGCGCCCGAGGACGGCTGGATCGACGACGCGGCCCTCGCGGTGGCCCGCCGGATCCAGGCCGCCGCCCGCGCCGCCGACCTGGAGCCCGACCCGCGGGCCCTGCGGGACGTCCAGCTCACGTTCGACGCCTTGGACGTCGCCGCCGTGCAGCGGTTCTGGGCCGCCGCCCTCGGCTACACCACCCGCGAGGACACCGACCTGTTCGACCCGCTGCTGCGCGGTCCGGCGGTCTTCATCCAGCCGATGGCCGAGCCGCGCGAGCAGCGCAACCGGATCCACGTCGATGCGTTCGTCCCCGCCGACGTGGCGGACGAGAGGGTCGCGGCCGCCGTCGCCGCGGGCGGGCGCGTCGTGCGCGACGCCGAGGCGCCGCTGTGGCGGACGGTCGCGGACCCGGAGGGCAACGAGATCGACATCGCCGTCTCGATCGGGAGGGAAGAGCATGAGTGAMSTESDDPVTDELTPDQFEQADSTGHWRVLSHGACALFRTGTPGAGAVLLEDVAVLADAANHHPDVDLRPDGVVVRCVSHDVGGLSRRDVALAQDVSAAADRLGLTADPAALQDVELTIDATDRERIMPFWAVVLGHERAGEEDLLDPDARWPGIWFQRMDEPRPLRNRLHLDVFVPHDDRPARVEAALAAGGRLTTEEFVPQWWTLADPEGNEADVEAWEGFTDELPEGLVSPDAFRAADGVEDWRVLQGACARYRTGRFRTGVDLAASAQRIADDAGVRLSTDLRFGHVTFRVGAPEDGWIDDAALAVARRIQAAARAADLEPDPRALRDVQLTFDALDVAAVQRFWAAALGYTTREDTDLFDPLLRGPAVFIQPMAEPREQRNRIHVDAFVPADVADERVAAAVAAGGRVVRDAEAPLWRTVADPEGNEIDIAVSIGREEHENANANANANA
AK018_052391716ilvD_2COG0129Dihydroxy-acid dehydrataseATGACGAGCACCGAGCACCCGACGACGTCCGACATCAAGCCCCGCTCCCGCCAGGTGACCGACGGCCTGGAAGCGACCGCCGCCCGCGGCATGCTGCGCGCGGTCGGGATGGGTGACGAGGACTTCGCCAAGCCGCAGATCGGCGTCGCGAGCTCGTGGAACGAGATCACCCCGTGCAACCTGTCGCTGGACCGGCTGGGCGGCGCGGTGAAGAACGGCGTCCACGCCGGCGGCGGCTACCCGTTGGAGTTCGGCACGATCTCCGTCTCGGACGGCATCTCGATGGGCCACGAGGGGATGCACTTCTCGCTGGTCTCCCGGGACGTCATCGCCGACTCCGTCGAGACGGTCATGCAGGCCGAGCGCCTGGACGGCTCGGTGCTGCTGGCCGGCTGCGACAAGTCCCTGCCCGGCATGCTGATGGCCGCCGCCCGCCTGGACCTGGCCAGCGTGTTCCTCTACGCCGGGTCGATCATGCCCGGCTGGGTGAAGCTCGCGGACGGCACCGAGAAGGACGTGACGATCATCGACGCCTTCGAGGCCGTCGGTGCCTGCTCGCGCGGGCTGATGTCCCGCGACGACGTCGACCGCATCGAGCGGGCGATCTGCCCCGGCGAGGGTGCCTGCGGCGGCATGTTCACCGCGAACACCATGGCCTCGGTGGCCGAGGCCATGGGCATGTCCCTGCCGGGGTCGGCGGCCCCGCCGTCGGCCGACAGGCGCCGCGACTCCTTCGCGCACGCGTCCGGCGAGGCCGTGGTCGAGATGCTGCGCCGCGGCATCACCGCCCGCGACATCATGACCAAGGAGGCGTTCGAGAACGCCATCGCCGTCGTCATGGCGTTCGGCGGGTCCACCAACGCCGTGCTGCACCTGCTGGCCATCGCCCACGAGGCCGAGGTCGAGCTGACGCTCGAGGACTTCGACCGGGTGGCGAGCCGCGTGCCGCACCTGGGCGACCTCAAGCCGTTCGGCCGCTACGTGATGAACGACGTCGACCGCATCGGCGGGGTCCCCGTGATCATGAAGGCGCTGCTGGACGCCGGTCTGATCCACGGCGACTGCCTGACGGTCACCGGCCGCACCGTGCGTGAGAACCTGGCCGACATCGCCCCGCCGGACCCGGACGGCAAGATCCTGCGCGCCCTCGACCAGCCGATCCACCCCACCGGCGGCATCACGATCCTGCACGGGTCCCTCGCCCCCGAGGGTGCCGTGGTCAAGAGCGCCGGGTTCGATTCCGACGTCTTCGAGGGCACCGCCCGCGTCTTCGAGCGGGAGCGGCACGCCCTGGACGCGCTGGAGGACGGCACGATCACCGCCGGCGACGTCGTCGTCATCCGGTACGAGGGCCCCAAGGGCGGCCCCGGGATGCGCGAGATGCTGGCCATCACCGGCGCGATCAAGGGTGCGGGACTCGGCAAGGACGTCCTGCTCGTCACCGACGGCCGGTTCTCCGGCGGCACCACCGGGCTGTGCGTCGGGCACATCGCCCCGGAGGCCGTCGACGCCGGACCGATCGCGTTCGTGCGCGACGGCGACCGCATCCGCCTCGACGTCGCCGCCAAGACGCTCGACCTCCTGGTCGACGCCGACGAGCTGGCCGCCCGGCACACCGACGACTGGGAGCCCGTGCCGCACGGCTACACCCGCGGGGTGCTCGCCAAGTACACCAAGCTGGTGCAGTCCGCCTCGACGGGCGCGGTGCTCGGCTGAMTSTEHPTTSDIKPRSRQVTDGLEATAARGMLRAVGMGDEDFAKPQIGVASSWNEITPCNLSLDRLGGAVKNGVHAGGGYPLEFGTISVSDGISMGHEGMHFSLVSRDVIADSVETVMQAERLDGSVLLAGCDKSLPGMLMAAARLDLASVFLYAGSIMPGWVKLADGTEKDVTIIDAFEAVGACSRGLMSRDDVDRIERAICPGEGACGGMFTANTMASVAEAMGMSLPGSAAPPSADRRRDSFAHASGEAVVEMLRRGITARDIMTKEAFENAIAVVMAFGGSTNAVLHLLAIAHEAEVELTLEDFDRVASRVPHLGDLKPFGRYVMNDVDRIGGVPVIMKALLDAGLIHGDCLTVTGRTVRENLADIAPPDPDGKILRALDQPIHPTGGITILHGSLAPEGAVVKSAGFDSDVFEGTARVFERERHALDALEDGTITAGDVVVIRYEGPKGGPGMREMLAITGAIKGAGLGKDVLLVTDGRFSGGTTGLCVGHIAPEAVDAGPIAFVRDGDRIRLDVAAKTLDLLVDADELAARHTDDWEPVPHGYTRGVLAKYTKLVQSASTGAVLGPGPT0001875_3258DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0001875-ilvD-K01687NANA
AK018_05240405hypothetical proteinATGCCCACAACGGCTCCCGGTAGCCTCGACGCCGTGCAGAAGCTTCCCGCCTGGCCCGCGGTCGTGTGCGACCTGGTCTGCGTCCTCGTGTTCACTCTCGTCGGGACGGCGAGCCACGCCTCGGCCGGCTCCGCCTGGCACCTCGTGGCCGTCGCCGCGCCGTTCGTGATCGGACTGGCCGTCGGCTGGCTGGCGACGCGCGCCTGGCGGGCCCCGGCGCAGCCCTGGCCCACGGGGGTGGCGATCTGGTTCGCCACCGTGGCGCTCGGCGTGCTGCTGCGCCCGCTGTTCACCGGCGGCTTCGCCTGGACGTTCACCCTGGTCACGGCCGGGTTCCTGGCGCTGACGATGATCGGCTGGCGCCTGCTGGCCACTCTCGCTCAGCGCCGCCGCGCCGCCCCCTGAMPTTAPGSLDAVQKLPAWPAVVCDLVCVLVFTLVGTASHASAGSAWHLVAVAAPFVIGLAVGWLATRAWRAPAQPWPTGVAIWFATVALGVLLRPLFTGGFAWTFTLVTAGFLALTMIGWRLLATLAQRRRAAPNANANANANA
AK018_05241807COG1234putative proteinATGAGACTCGTGACCGTCGGTGTGTCCGGCTCGCTGCCGGGCCCGGACTCGCCCGCGTCCTGCTACCTGGTGCAGGCCGACGACGGCGAGCGGACCTGGAACGTCGTGCTGGACCTGGGGTCGGGCGCGCTCGGCCCGCTGCAGCGGCACGTCGACCCGGTGGACGTCGACGCGATCGGCCTGTCGCACCTGCACCCGGACCACTGCTCCGACCTGAGCGGGCTGTACGTCTACCTCAAGTACCACCCCGAGCGCGGCGTCGCCCGCACGGGGGTGCCGCGCGAGCTGCCCGTGCACGGCCCGTCGGGGACGCAGGAGCGCGCGGCGGCGATGTACGGCCTGGAGCCGGACGAGGACATGGCCACCGAGTACGTCTTCCGGACCTGGCGGCCGGGGACGGCGGTGCAGGTCGGTCCGCTGACGCTGGAGCCGTTCATCGTGAACCACCCCGTCGAGGCCTACGGCGTGCGGGTGACCGGGCCGTCGTCGGAGCGTCCGGGGGAGAGCGCGACCCTGGTCTTCTCCGGCGACACCGACGCGTGCCCCGGGCTGGTCGAGGGGTCGCGAGGGGCGGACCTGCTGCTGTGCGAGGCGGCGTTCCTCGAGGGACGCGACGACGGCGTGCAGCGCGGCATCCACCTGACGGGTCGCCGGGCGGGCAGTGTCGCGGCCGAGGCCGGGGTGGGCCGGCTGCTGCTGACGCACCTGCCGGCGTGGACGGACCCTGCCGAGACGCTGGCCGAGGCGCGCGGGGAGTTCGACGGTCCGATCGAGGTCGCGGTCGCGGACGGCGTGCACACCCTCTGAMRLVTVGVSGSLPGPDSPASCYLVQADDGERTWNVVLDLGSGALGPLQRHVDPVDVDAIGLSHLHPDHCSDLSGLYVYLKYHPERGVARTGVPRELPVHGPSGTQERAAAMYGLEPDEDMATEYVFRTWRPGTAVQVGPLTLEPFIVNHPVEAYGVRVTGPSSERPGESATLVFSGDTDACPGLVEGSRGADLLLCEAAFLEGRDDGVQRGIHLTGRRAGSVAAEAGVGRLLLTHLPAWTDPAETLAEARGEFDGPIEVAVADGVHTLNANANANANA
AK018_05242804murI_2COG0796Glutamate racemaseGTGAACGACGCCCCGATCGGGATCTTCGACAGCGGGGTGGGTGGTCTCACGGTCGCCCGCTCGATCCTCGACCAGCTCCCGCACGAACAGCTGCACTACATCGGTGACACGGCGAACGGCCCCTACGGGCCCAAGCCGCTCGCCGCCGTGCGCGCGATGGCGCTCGCGGTGATGGACCGGCTGGTCGACGACGGGGTCAAGATGCTCGTCATCGCCTGCAACTCCGCCTCGGCGGTCGCGCTGCGCGACGCCCGGGAGCGGTACACGGTGCGCCGGGGCATCCCGGTGGTCGAGGTGATCCTGCCGGCCGCGCGCCGCGCCGTCGTCGCCTCCCGCTCGGGACGCATCGGCGTGATCGGCACGCAGGCCACGGTGGAGTCCCTGGCCTACGACGACGCGTTCGCCGTCACCCCGGGGATCGAGGTGACCAGCCAGGCGTGCCCGGAGTTCGTGCGGCTGGTCGAGGAGGGCACGACGTCGGGACCGGAGGTCCTCGACATCGCCCACCGCTACCTCGACCCGGTCAAGGCGGCCGGCGTGGACACCCTCGTGCTGGGCTGCACGCACTACCCGCTGCTGGCGGGCCCGATCTCGTACGTGATGGGCCAGGACGTGACCCTGGTGTCCTCGGCGGAGGAGACCGCCCAGGACGTGTACCGCAAGCTCGTGGCGCACGACCTGGAGCGGTCGCCGGCGGCGGAGGAGCCCGTGCACCGGTTCGCCGCGACCGGGAGCCCGGCGCCGTTCGCCGACCTGGCCCGCCGGTTCCTCGGACCGGAGGTCGATCTGGTGGAGGCCGCATGAMNDAPIGIFDSGVGGLTVARSILDQLPHEQLHYIGDTANGPYGPKPLAAVRAMALAVMDRLVDDGVKMLVIACNSASAVALRDARERYTVRRGIPVVEVILPAARRAVVASRSGRIGVIGTQATVESLAYDDAFAVTPGIEVTSQACPEFVRLVEEGTTSGPEVLDIAHRYLDPVKAAGVDTLVLGCTHYPLLAGPISYVMGQDVTLVSSAEETAQDVYRKLVAHDLERSPAAEEPVHRFAATGSPAPFADLARRFLGPEVDLVEAAPGPT0020200_2834DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020200-murI-K01776NANA
AK018_05243678hypothetical proteinATGACACCCTTCCGGTCCACGCCGGCCGGGTACGTCGCGACCTGGGAGCCGGTCGAGCGCGAGGTGCTGGCCCGGGTCGCCCGCGACGTCGCCGGCCTCCTGAGCGCGGACTCCGGGCTGCCCGACGACGCCACGGAGGCCGAGGTGGCGTTCACCGGCGTCGCCCGGATGCCCCGGGACCCGGCCGTCCAGCGCCTGCTGCCGGACGCCCACCGCGAGGACGCCGAGGTGGCCGCGGAGTTCCGGCACCTGACCCAGACCGACCTGGCCGCGGGCAAGGTCGCCCGGCTGCACGCCTTCGCCGAGACGGTGGACCCCTCCACGGAACCCGTGACGGACGCCGGGGACGGCGACCAGGTGCTCGTCGCCCGCGACGACGCCCAGGACTTCGCCGCCGCCCTGACCGACGTCCGGCTCGTGCTCGCCGAACGGCTGGGGCTCGACGACGACGCGGACGTCGAGCACCTGCACACCGAGGTCCTGGCCGGGCTCGGCCCCGAGCAGGACGAGGACGACCTCGACCCCGCCGACGACGACCCGGACGACGACGGGGCCGCGGCGATGGACGCCGAGCAGCGGGTCTACTGGGGCGGGGTGTTCGTCGCCGCCGGGTTCGCCCAGGAGTCGCTGATGGACGAGCTCCTCGCCGACCTGCGGGCCCGCCGCAGCGCGGGGTGAMTPFRSTPAGYVATWEPVEREVLARVARDVAGLLSADSGLPDDATEAEVAFTGVARMPRDPAVQRLLPDAHREDAEVAAEFRHLTQTDLAAGKVARLHAFAETVDPSTEPVTDAGDGDQVLVARDDAQDFAAALTDVRLVLAERLGLDDDADVEHLHTEVLAGLGPEQDEDDLDPADDDPDDDGAAAMDAEQRVYWGGVFVAAGFAQESLMDELLADLRARRSAGNANANANANA
AK018_05244315clpS_2ATP-dependent Clp protease adapter protein ClpSATGACGGTCTCGGCGACGCAGGAGGACACCAGCACCGAGGAGGTGTCCCGGCTCGCCGACCCGTGGGTCACGATCGTGTGGAACGACCCGGTCAACCTCATGAGCTACGTGTCCTACGTCTTCGAGAGCTACTTCGGGTATCCCGAGGCCAAGGCGCGCCGGCTGATGCTGCAGGTCCACCACGAGGGGCGGGCCGTCGTCTCGACCGGCCCCAAGGAGCGCATGGAGGTCGACGTGCAGGCGATGCACGGGTTCGGGCTGTGGGCCACGATGCAGCAGTCGGACGCCCCCGGCGGGTCGGGGGAAGGCGCATGAMTVSATQEDTSTEEVSRLADPWVTIVWNDPVNLMSYVSYVFESYFGYPEAKARRLMLQVHHEGRAVVSTGPKERMEVDVQAMHGFGLWATMQQSDAPGGSGEGANANANANANA
AK018_052451437pncB1_2COG1488Nicotinate phosphoribosyltransferase pncB1ATGACCGACGAGCGACGGGGCAACGGCGTCCCGGCGACGAGCCCGCTGACCGTCCCGCAGTCACTACCCGCCGCACCGATGCCGACACTGAGACCTTCCCTGGCCCTGCTCACCGACCGCTACGAGCTGACGATGCTCGCCGCCGCGCTCGCCGACGGCACCGCCCACCGGCACTGCGTGTTCGAGGTGTTCACCCGCCGCCTGCCCGCCGGACGCCGCTACGGCGTCCTGGCCGGGACCGGACGGGTGCTGGAGGCGCTGGCCGCGTTCCGGTTCGGCGACGCCGAGCTGGGCTTCCTCGAGCGCCACCGCGTGGTCGACGACCGCACCCTGGACTTCCTGCGCGGGTTCCGGTTCACCGGCACGATCACCGGGTACGCCGAGGGCGAGACGTTCTTCCCCGGCTCGCCCGTGCTGCAGGTGGAGGGCACCTTCGCCGAGGCGGTGCTGCTGGAGACCCTCGTGCTGTCCATCCTCAACCACGACTCCGCCGTCGCCTCGGCCGCGTCGCGCATGACCAGTGCGGCCGTGGACCGGCCCGTGATGGAGATGGGGTCGCGGCGCACCCACGAGCAGGCCGCCGTCGCCGCCGCCCGGGCCGCCGTCGTCGGCGGGTTCGTCGGCACGTCGAACCTCGAGGCCGGCTACCGCTACGGGCTGGAGACCATCGGCACCGCCGCGCACGCCTTCACCATGCTGCACGACGACGAGGCGTCGGCCTTCGCCTCCCAGGTCGCCTGGCACGGGGTCGGGACCACGTTGCTGGTCGACACCTACGACGTGCGCCGCGGCGTCGAGCGGGCGATCGAGGCGGGCGGGACCGGGCTGGGCGCCGTCCGGCTCGACTCGGGCGACCTCGGCGCCATGGCCATCGAGGTGCGCGCCCAGCTCGACGAGCTCGGGGCGACCGGGACCAAGGTCGTGGTGACCTCCGACCTCGACGAGCACGCCATCGCCGGCCTCGCCGCCGCTCCGGTGGACTCCTACGGCGTGGGGACCTCGCTGGTGACCGGTTCCGGTGCACCGACGTGCGGCATGGTCTACAAGCTCGTCGCCCGCTCCGACGCCGCGGGGCGGATGCAGCCCGTGGCCAAGGCCTCCGCGCACAAGTCGGACCGGGGCGGGCGCAAGGCCGCCGCCCGACGCCTCGACGAGGACGGCCGAGCCCTCGAGGAGGTGCTCTACACCGGGCCCGACGAGGACGTGGTCGCGTGGGAGCCGCGAGCCGGGGGGTCCGGGGACGACGGCGGGCGGCTGCGCCCGCTGCACGTGCCGCTGGTGACCGACGGCGCGACGGACTCGCGATGGGTCGGCGCCTACGGGGTGCAGAACGCTGCCGAGCGCCACGCGTCCTCCCGCGGCGAGCTGCCGCGCGGGGCGCGCCGGCTCTCGGCCGGGGACCCGGCGATCCCCACCGTCGTCGAGTCGCTCGACTGAMTDERRGNGVPATSPLTVPQSLPAAPMPTLRPSLALLTDRYELTMLAAALADGTAHRHCVFEVFTRRLPAGRRYGVLAGTGRVLEALAAFRFGDAELGFLERHRVVDDRTLDFLRGFRFTGTITGYAEGETFFPGSPVLQVEGTFAEAVLLETLVLSILNHDSAVASAASRMTSAAVDRPVMEMGSRRTHEQAAVAAARAAVVGGFVGTSNLEAGYRYGLETIGTAAHAFTMLHDDEASAFASQVAWHGVGTTLLVDTYDVRRGVERAIEAGGTGLGAVRLDSGDLGAMAIEVRAQLDELGATGTKVVVTSDLDEHAIAGLAAAPVDSYGVGTSLVTGSGAPTCGMVYKLVARSDAAGRMQPVAKASAHKSDRGGRKAAARRLDEDGRALEEVLYTGPDEDVVAWEPRAGGSGDDGGRLRPLHVPLVTDGATDSRWVGAYGVQNAAERHASSRGELPRGARRLSAGDPAIPTVVESLDPGPT0013375_1462DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763NANA
AK018_052461524pucICOG1953putative allantoin permeaseATGACCGCGACCCTGCCCGCGGAGGAGTTCGACACGCACGTCGGACCCGACCCGAACCCGGCCCTGCACAACGACGACCTCGGCCCGCTGCCGCAGGAGCGTCGGCGCTGGGGGGCGTTCGAGATCTTCAACGTCTGGACGAACGACGTCCAGAGCCTCGCCGGCTACACGCTGGCCGCCAGCCTGTTCATCACCGCCGGCATCAACGGGTGGTGGGTGTTCGCCGCCATCGTCATCGCCGGGTTCTTCGTGAACTGGCTCGTGAACCTCACGGGGAAGCCGAGCGTGAAGTACGGCATCCCCTACGCCGTGATGGCCCGGTCCAGCATGGGGGTGCGCGGAGCCCAGTTCCCGGCCCTCGTCCGCGGGATCGTGGCGATCTTCTGGTACGGCGCGCAGACGTACTTCGCGTCCACCGCCGTCGCCCTCGCGCTCGACGCGATCTTCGGGGACCCGCAGCTGGCGGTGTTCCTCGGCATGGACCTCGTCGACTGGGTCTCCTACGTCGTCGTCGCCGCGCTGCAGGTGGTGCTGTTCGTCCGGGGGATCTCCTGGATCGAGCGGTTCCTGAACTTCGCGGGGCCCGCGGTCTACCTCGTGATGATCACGCTGCTCGTCGCCATCTGGGTCCAGGCCGGTGACCGGCTGCTCCCCGCCGTCGGGTCGATCTTCACGAACGACTCGGTCGAGGGCTGGGCGGCCGTCGGCGCCTTCGTCGGGGTGATCGGCACGATCATCGCCTACTTCTCCGCCGTCGTGATCAACTTCGGCGACTTCGCACGGTTCTCGCGCAGCGAGAAGGCGATGCGGCGGGGCAACTTCCTCGGTCTGCCGGTGAGCCTGACGTTCTTCACGTTCCTCAGCCTCTTCATCACCGCGGGCGCGTACATCGTGCTGCAGGACGGCCAGGGGGACCCGCTCACCAACCCCGCCGACATCGTCGGGCTCGTGGGGAACGTCTTCCTCACCATCGTCGCGGCGCTGACGTTCGTCGTGGCCACCGTGGGGATCAACCTCGTCGCGAACTTCATCCCGCCGGCCTACGACCTGTCCAACCTGGCACCGCAGCGCATCAGCTTCCGCCGGGGCGGCTACGTCACGGCGGCGGTCGGGTTCGTCGTGGGCGCCCTGTGGGTCGCGACCATCAGCCAGATCGGGCTGCCGACCTTCGTCGACACGCTCGGGGCGATCCTCGCCCCGCTCTACGGCGTGCTCGTCGCCGACTACTACGTCATCCAGCGGCGCAGCCTGAAGGTCGCCGACCTGTTCAGCATGGACCCGCAGAGCCGCTACTACTACCGCCGGGGATGGAACGTCCGGGCCCTGGCCGCGATCGGCATCGCGGGCGTGTTCTCCGTCGCCGCCGTGTGGGTGCCCGCCCTGGCCGTCCTCAGCGGGTTCGCGTGGGTCATCGGCGCCGTCCTCGGGGGGTGCCTGTACCTGCTCGTCATGTGGGGCTACCGCCCGGCCGGTGCGGACACCGGCACCGCACCGACCCCGGCCGCCGCCGAGTCGGACGTCTGAMTATLPAEEFDTHVGPDPNPALHNDDLGPLPQERRRWGAFEIFNVWTNDVQSLAGYTLAASLFITAGINGWWVFAAIVIAGFFVNWLVNLTGKPSVKYGIPYAVMARSSMGVRGAQFPALVRGIVAIFWYGAQTYFASTAVALALDAIFGDPQLAVFLGMDLVDWVSYVVVAALQVVLFVRGISWIERFLNFAGPAVYLVMITLLVAIWVQAGDRLLPAVGSIFTNDSVEGWAAVGAFVGVIGTIIAYFSAVVINFGDFARFSRSEKAMRRGNFLGLPVSLTFFTFLSLFITAGAYIVLQDGQGDPLTNPADIVGLVGNVFLTIVAALTFVVATVGINLVANFIPPAYDLSNLAPQRISFRRGGYVTAAVGFVVGALWVATISQIGLPTFVDTLGAILAPLYGVLVADYYVIQRRSLKVADLFSMDPQSRYYYRRGWNVRALAAIGIAGVFSVAAVWVPALAVLSGFAWVIGAVLGGCLYLLVMWGYRPAGADTGTAPTPAAAESDVPGPT0009075_787DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009075-cytX-K03457NANA
AK018_052471851hypothetical proteinGTGAGCTCGCCGGTTCCCGAGTCCGAGTCCGTCGACCTCTTCGCCGCCGCTGCCGAACCGACCAAGCCGCTCCCGCAGTCCCCGTCGGTCTCGGCCGCGTCCCACCTCAGCCCGGCCTACCCGCGCCGCGCACCGTGGGGCACGGCGTCGAACCTGCGCGCCTGGCAGGCCGAGGCCCTCGAGCTGTACCACCAGAGGTCGGCGCGCGACTTCCTCGCCGTCGCCACTCCGGGCGCGGGCAAGACGACGTTCGCGCTGCGCGTGGCCACCGAGCTGCTCGACGCCGGCGTCGTCCGGCGCGTGACGGTCGTCGCGCCCACGGAGCACCTCAAGCACCAGTGGGCCGACGCCGCGGCGCGGGTCGGCATCCGCATCGACCCGTCGTTCAAGAACGCCCAGGGCCGGCACGGCGCCCACTACGACGGCGTCGCGCTGACCTACGCCCAGGTCGCCTCCAAGCCGGCGCTGCACCGCGCCCGCACCGAGGCCGCCCCCACCCTGGTGATCCTCGACGAGGTGCACCACGGCGGGGACGCGCTGAGCTGGGGCGACGCCATCCGGGACGCCTTCGAGGACGCGACCCGACGCCTCGCCCTGACCGGCACGCCCTTCCGGTCGGACACCGCCTCGATCCCGTTCGTCACCTACGAGGCCGACGCCGAGGGGATCCGGCGCTCCAAGGCCGACTACATCTACGGCTACGGCGACGCGCTGCGCGACCACGTGGTGCGGCCGGTGCTGTTCATGACGTACTCGGGCGAGATGCGCTGGCGCACCCGGGCCGGTGACGAGGTCAGCGCCCGCCTCGGCGAGGACATGACCAAGGACATGCACGCCCAGGCCTGGCGCACCGCCCTGGACCCGCGCGGCGAGTGGATCCCGTCGGTGCTCGCGGCCGCCGACCGGCGCCTGACCGAGATGCGTCGCGCCGTGCCCGACGCCGGCGGGCTGGTCATCGCCTCCGACCAGACCGACGCCCGTGCCTACGCCGGGCACCTGGCCCGGATCACGGGCACCTCGCCGACGGTCGTGCTCAGCGACGACGACGGCGCGAGCGAGCGCATCGACGAGTTCGCGGCCGGGACGCAGCGCTGGATGGTCGCCGTGCGCATGGTCTCCGAGGGCGTCGACGTGCCACGTCTCGCCGTCGGCGTCTACGCCACCAGCACCTCGACGCCGCTGTTCTTCGCCCAGGCCGTGGGCCGGTTCGTCCGTGCCCGCAAGCGCGGCGAGACCGCCTCGGTGTTCCTGCCCAGCGTGCCGCTGCTGCTGGGGCTCGCCAACGAGCTCGAGGCCGAGCGGGACCACGCCCTCGACCGGCCCCAGACCGCCGAGGAGCAGGGCATCGAGTACGACCCCGAGGCCGCCCTGCTGGCCGCGGCGAACAAGGAGGAGAAGGCCTCGGGCGAGCTGACCGGCTCCTTCGAGGCGCTGGACGCGCAGGCCTCCTTCGACCGCGTGCTGTTCGACGGCGGCGAGTTCGGCACCGGTGGCGAGCTCGGGTCCGACGCCGAGCAGGACTTCCTGGGCATCCCCGGCCTGCTGGACGCGGACCAGGTCTCCACGCTGCTGCGTCAGCGCCAGGCGGCCCAGACCCAGGGGCGCGGCGGTGCCACGGACCGTGAGGCGGCCCTGCAGCAGTCCGAGCAGGAGCACCGCCGGGCCGCCGCCCTGCGCAAGGAGCTGTCGAAGCTGGTCTCGGCGTGGGCGCGCAAGAGCGGCACCCCGCACGGCAAGGTGCACGCCGAGCTGCGCCGCCGGTGCGGCGGTCCCGAGGTGCCCCTGGCCACGGCCGACCAGCTCGACTCCCGGGTGGAGATGGTGCGGGGCTGGTTCGTCGGCAAGCGGTGAMSSPVPESESVDLFAAAAEPTKPLPQSPSVSAASHLSPAYPRRAPWGTASNLRAWQAEALELYHQRSARDFLAVATPGAGKTTFALRVATELLDAGVVRRVTVVAPTEHLKHQWADAAARVGIRIDPSFKNAQGRHGAHYDGVALTYAQVASKPALHRARTEAAPTLVILDEVHHGGDALSWGDAIRDAFEDATRRLALTGTPFRSDTASIPFVTYEADAEGIRRSKADYIYGYGDALRDHVVRPVLFMTYSGEMRWRTRAGDEVSARLGEDMTKDMHAQAWRTALDPRGEWIPSVLAAADRRLTEMRRAVPDAGGLVIASDQTDARAYAGHLARITGTSPTVVLSDDDGASERIDEFAAGTQRWMVAVRMVSEGVDVPRLAVGVYATSTSTPLFFAQAVGRFVRARKRGETASVFLPSVPLLLGLANELEAERDHALDRPQTAEEQGIEYDPEAALLAAANKEEKASGELTGSFEALDAQASFDRVLFDGGEFGTGGELGSDAEQDFLGIPGLLDADQVSTLLRQRQAAQTQGRGGATDREAALQQSEQEHRRAAALRKELSKLVSAWARKSGTPHGKVHAELRRRCGGPEVPLATADQLDSRVEMVRGWFVGKRNANANANANA
AK018_05248318hypothetical proteinATGAGCGAGCCCCTCTCCACCCCGCCCGCCGACCCCTCGCAGGACACCGGCTCGGGGACGAGCGTGCTGGAGCGCCCGGACACGCGGGAGCAGTCCGCCGAACCGGGCGACCACGAGCGGTTTGCGCACTACGTGCGCAAGGAGAAGATCATGCAGTCGGCGATGTCCGGCAAGCCCGTGATCGCGCTCTGCGGCAAGGTCTGGGTTCCCGGTCGTGACCCGTCGAAGTTCCCCGTGTGCCCCGTGTGCAAGGAGATCTACGACGGCCTGCGCGACCCGCAGGACGGCGACGACGGAAACTCCGACTCCGAGTCGTGAMSEPLSTPPADPSQDTGSGTSVLERPDTREQSAEPGDHERFAHYVRKEKIMQSAMSGKPVIALCGKVWVPGRDPSKFPVCPVCKEIYDGLRDPQDGDDGNSDSESNANANANANA
AK018_05249783nagB_2COG0363Glucosamine-6-phosphate deaminaseATGGAGGTCGTCATCGCTCCCGAGCAGGAGCTGGCGGCGCTGGCCGCCGACGCGATCGAGTCGTCGCTGCGCCGTCGTCCCCGGACCGTGCTGGGGCTGGCCACCGGCTCGAGCCCGCTGAAGGTCTACGACGAGCTGGCCCGCCGCCACAGCGAGGACGGGCTGTCCTTCGCTGAGGCGCGGGGGTTCATGCTCGACGAGTACGTGGGTCTGGCCGCCGACCACCCGGAGCGGTACCGCAACGTCATCGCGACCGAGATCGCCGAGCGGGTGGACTGGCCCGCCGACCAGGTCCGGGGCCCGGACGGGCTGGCGGCGGACCTGCCGGCGGCGTGCGCCGCCTACGAGGAGTCGATCCGGGCGGCCGGGGGAGTGGACCTGCAGCTGCTGGGGATCGGGACCGACGGGCACATCGCGTTCAACGAGCCGGGGTCGTCGTTGGCCTCGCGCACGCGGATCAAGACGCTGACGCGCCAGACGCGGGTGGACAACGCGCGGTTCTTCGACGGTGACGTCGAGCGGGTGCCGACGCACTGCCTGACCCAGGGTCTCGGCACGATCATGGAGGCCCGTCACCTGGTGCTGCTGGCCACGGGCAAGCACAAGGCCGAGGCGGTGCACCAGCTCGTCGAGGGCCCGGTCTCGGCGTTGTGGCCGGCGACCGTGATGCAGTTCCACCCGCACGCCACGGTGCTGGTGGACGAGGCGGCCGCCTCGCGTCTGCAGCTGGCCGACTACTACCGCCAGACGTACGCCTCCAAGCCCGACTGGCAGGGGCTCTGAMEVVIAPEQELAALAADAIESSLRRRPRTVLGLATGSSPLKVYDELARRHSEDGLSFAEARGFMLDEYVGLAADHPERYRNVIATEIAERVDWPADQVRGPDGLAADLPAACAAYEESIRAAGGVDLQLLGIGTDGHIAFNEPGSSLASRTRIKTLTRQTRVDNARFFDGDVERVPTHCLTQGLGTIMEARHLVLLATGKHKAEAVHQLVEGPVSALWPATVMQFHPHATVLVDEAAASRLQLADYYRQTYASKPDWQGLPGPT0018865_1734DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018865-nagB-K02564NANA
AK018_052501317dasA_5COG1653Diacetylchitobiose binding protein DasAGTGCGCATCCGACGGACCCTGGCCGCGACGGTCGCCACCGGCGTCCTGGCCGCCTCCCTGACCGCCTGCGGACCCGAGGAGGTCGTGCCCGAGAGCTCGGACGACATCGTCCTGTGGCTCGTCGGGTCGGACACCGGCGACGAGCTGCGCGACCACCTCGTGACGACGTTCGAGGCGCGCAACCCCGGTGCGACGCTGGTGATCGAGGAGAAGCAGTGGCCCACCCTCGTCGACGAGCTCGACGAGGCGCTGGAGGACCCGGCCGCCACCCCCGACGTCGTCGAGCTCGGCAACACGCAGGCGCCGACGTTCACGAACGCGGGCGACTTCCGGGCGGTCTCCCCGGAGCTGTACGCCGAGCTGGGCGGTGACGACCTGCTGCCGTCGTTCGTCGAGGCCGGGTCGGTCGACGGCACGGTCTACGCCCTGCCGTACTACTTCGGCTCGCGCTACGTCTTCTACCGCAAGGACGTGTGGCGCGAGGCCGGCGTCGAGGTGCCGGACACGCTCGACGAGTTCGGCGACGCCGTCGCCGAGCTGACGACCGGCAACCGGGCCGGGTTCGCCATCGGCGGCCAGGACTGGCGCAACGGCATCTCGTGGGTGTTCGCCCACGGCGGCGAGCTGGCGGTCAAGCAGGGCGGCTCATGGGTCTCGACGCTGTCCGACCGGGACACCGTCGCCGGGCTCGAGGCCTGGCAGGACGTGTACGAGAGCGCCTCCTACCTGCCGGCGACCGAGGTCGACACCGGCTACTGGGCGTTCCTCAACGACGGCGTCGAGTCCGGCGAGCCGGCCGCCGCCGCGATGATGGCGCCCTCCTGGGCGCGGTGGGAGCTCGGGGACTGGGTGCGCAACGACGACGGCGCCGAGGTCCGCGACGGCATGGCCGACGACGAGACCTGGGGCATCTTCCCGCTGCCCGGCGTCGACGGCGGGGTCGCCCCCGTGTTCGCCGGAGGGTCCGTGCTGGCGGTCTCGGCGCTGACCCGCAACGCCGAGCTGTCCGAGGACCTGCTGCGGATCGTGTACGGCGACGAGTACCAGACGATGCTCGGCGAGTCGGGTCTCGGCCCGGCGAACACCGAGCTCACCGACGTGATGACCGGCGACAAGTTCGGGCGCACGCTGGTGGAGACGGCCGAGGCCTCCCAGCTCACCCCGCCGGCGCCGGGATGGGCCGAGATCGAGTCCCGCGGCCTGTACGAGGACATGTTCAAGGAGATCGCCCGCGGCGCCGACGTCGCGACGGTCGCCCGGGAGTACGACGCGCTCATCACCCCGCTCCTCGACGGCCCGGCCGTCGAGGGGGAGTGAMRIRRTLAATVATGVLAASLTACGPEEVVPESSDDIVLWLVGSDTGDELRDHLVTTFEARNPGATLVIEEKQWPTLVDELDEALEDPAATPDVVELGNTQAPTFTNAGDFRAVSPELYAELGGDDLLPSFVEAGSVDGTVYALPYYFGSRYVFYRKDVWREAGVEVPDTLDEFGDAVAELTTGNRAGFAIGGQDWRNGISWVFAHGGELAVKQGGSWVSTLSDRDTVAGLEAWQDVYESASYLPATEVDTGYWAFLNDGVESGEPAAAAMMAPSWARWELGDWVRNDDGAEVRDGMADDETWGIFPLPGVDGGVAPVFAGGSVLAVSALTRNAELSEDLLRIVYGDEYQTMLGESGLGPANTELTDVMTGDKFGRTLVETAEASQLTPPAPGWAEIESRGLYEDMFKEIARGADVATVAREYDALITPLLDGPAVEGEPGPT0016445_8DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016445-dasA-K17329NANA
AK018_05251996nanK_2COG1940N-acetylmannosamine kinaseGTGGGCGAGAGCAGCACGGTGACGCCGGTGGCGTCACCCGGTCTCAGCGTGGGTCTGGACATCGGCGGCACCAAGACGCTCGCCGTCGTGCTGGCCCCCGACGGGACCGTCATGGCACAGACGCGGCTCGCCACCTCGCGCGGCCACCACGGGGTCCTCGACGGCGCGGTCCGCGCCGTCGAGGGCGTCGCCCGGGCGGCCGGGGTCCCCGTCGAGGAGGTCACCGGCGTCGGCGTCGGCATCCCCGGCCTCGTGGACGCCGACGAGGGCACGGTGCGGCACGCGGTCAACCTCGGCCTGGACGGCGAGCCCCTCGAGCTCGCCACCCTGCTCTCGGCGCGCCTCGGCGGCGTCGGGGTCGGCGTCGAGAACGACCTGAACGTCGCCGCCGTCGGTGCGGCCCACCTCGTCGAGACCGCCGAGCCGACGACGGGTTCGACCGACCTGGCCTTCCTCGCCCTCGGCACCGGGCTCGCGGCCGGCATCGTGCTCGACGGCCGGCTGCGCCGCGGCAGCCACGGGGCGGCGGGGGAGATCGGGCACGTCCCGGTCGACCCGTCGGGTCCGCCGTGCGCCTGCGGACAGCGCGGCTGCCTCGAGCTGTACGCCTCGGGGTCCGCGGTCACCGCCGCCTGGCCGACGACCAGGGGACGGCCCGCGCCGGTCGAGCTCTTCGAGGCCGCCGACGCCGGAGACCCCGCGGCCGTCGCGGTGCGCGACCGGTACGCGCGCTCCGTGGCCGCGGCCGTGCGCATGCTCGTCCTGAGCGTCGACGTGCGCTACGTCGTCCTCGGCGGGGGCGTCTCTCAGCTCGGCGAGCCGCTGCTGCGCGTGGTGCAGGAGGCGCTCGAGGACGAGTCCGCGGCGTCGGCGTTCCTGCGCAGCCTCGACCTGCCCGGCCGCGTCCGGCTCGCCCCGGGCCGTGTCCCCGTGGGGGCCGTCGGTGCCGCCGTCGTCGGCCGCGGGTACGCCGCGCGGGTGCCCGACCTGCGCTGAMGESSTVTPVASPGLSVGLDIGGTKTLAVVLAPDGTVMAQTRLATSRGHHGVLDGAVRAVEGVARAAGVPVEEVTGVGVGIPGLVDADEGTVRHAVNLGLDGEPLELATLLSARLGGVGVGVENDLNVAAVGAAHLVETAEPTTGSTDLAFLALGTGLAAGIVLDGRLRRGSHGAAGEIGHVPVDPSGPPCACGQRGCLELYASGSAVTAAWPTTRGRPAPVELFEAADAGDPAAVAVRDRYARSVAAAVRMLVLSVDVRYVVLGGGVSQLGEPLLRVVQEALEDESAASAFLRSLDLPGRVRLAPGRVPVGAVGAAVVGRGYAARVPDLRNANANANANA
AK018_05252912dasC_8COG0395Diacetylchitobiose uptake system permease protein DasCATGAGCGCCGTCGTGACGGACACGGACACCCCGGCCCCCACGGCCCCCGCGAGCGACCTGCGTCCGCTGCGCCGCCGTCGGGTCCGCCCCGGCAAGGTCCTGCTCAGCGGGCTCGGCCTGCTGCTCGCCCTGGTGTGGGTCTTCCCGGTCTACTGGATGATGAACTCGGCGCTGACTCCGGACGCGATCCTCGGTGCCGACACCCCGAACTTCTTCCCCGTGCACTTCACGCTGACGAACCTGTCCTCGGTGCTGACCGACTCCGGGTTCCTCAACGCCCTCGGCATGAGCGTGATGGTGACCTTCCTGACCATCGCCCTCGTGCTGGCCTTCGCGTTCCTCGCCGCCCTGGCGATCAGCCGCTGGCGGTTCCGCGGTCGCACCAGCTTCATCCTCGCGGTGCTGTTCATCCAGATGCTGCCGGCCGAGGGCCTGTTCATCGCCCAGTACCAGATGATGTCCAGCCTCGGGCTGCTCAACCAGGTCATCGGTATCTCCGTGCTGTACGTCGCGATGCTCGTCCCGTTCACGGTCTGGATGCTCCGCGGCTTCGTCGCCGGCGTCCCGATCGAGCTGGAGGAGGCCGCGATGGTCGACGGTCTCTCCCGTCCCAAGGCCTTCATCCGGATCACCTTCCCCCTGCTGGCCCCCGGCCTGGTCGCCTCCGGCGTCTACGCGTTCCTGCAGGCCTGGAACGAGTTCACGACCGCGCTGGTCATCCTGCCGGCCGAGTCGGCCCAGACGCTGCCGATCTGGCTGCGCAGCTTCCTGTCGGCGTCGGCCAACCGTGGCATCAACTGGGCCGAGGTCATGGCGGCCTCCACGCTCATCGCGGTGCCGGTGATCATCTTCTTCCTGTTCGTGCAGGGACGGATGACATCGGGCCTGGTCTCGGGTGCGGTGAAGGGCTGAMSAVVTDTDTPAPTAPASDLRPLRRRRVRPGKVLLSGLGLLLALVWVFPVYWMMNSALTPDAILGADTPNFFPVHFTLTNLSSVLTDSGFLNALGMSVMVTFLTIALVLAFAFLAALAISRWRFRGRTSFILAVLFIQMLPAEGLFIAQYQMMSSLGLLNQVIGISVLYVAMLVPFTVWMLRGFVAGVPIELEEAAMVDGLSRPKAFIRITFPLLAPGLVASGVYAFLQAWNEFTTALVILPAESAQTLPIWLRSFLSASANRGINWAEVMAASTLIAVPVIIFFLFVQGRMTSGLVSGAVKGPGPT0016455_112DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016455-dasC-K17331NANA
AK018_05253942dasB_3COG1175Diacetylchitobiose uptake system permease protein DasBATGACCACGACCACCGGCGCGAGCACGGCATCGGACGGCATCGCGATCCGCCGTCGGCGCAAGCCGGCCACGCCTTATCTTCTGCTGATCCCTGCGGTCGCCGCCCTCCTGGTCGGCCTCGGCTACCCCGTCTACTGGCAGATCATCACCTCGCTGCAGGAGTTCGGGCTCATGCAGCAGTTCGGCGCTCCGCCGGAGTTCGTCGGGCTGGACAACTACGCCCGCATCTTCACCGACGCCGAGGTCTGGTCCGTCGTCGCGAAGTCCATCGCGTTCTGCCTCGTCAACGCCCTGCTGACCGTCGGCATCGGGCTCGGCCTCGCCGTGCTCATGCGGTCCGTGCACGGCTGGGTCCGCATCACGATGCAGATCACCCTGCTGCTGGCCTGGGCCACCCCGTTGGTCGCGGCCGTCACCGTCTTCCGCTGGCTCTTCGACGACCGCAACGGCGTCGTGAACTGGCTGTTCGTCCAGCTCGGCCAGGAGAACCTCGACGGGTACAACTGGCTCGGCAACGTGTGGACGTTCTTCATGGTGGCGTCCTTCATCGTCATCTGGATGTCGGTGCCGTTCGTGGCCCTGTCCATCTACGCCGGCCTGACCCAGGTCTCCGAGGAGGTCCTCGAGGCCGCCCGCATCGACGGCGCCGGCTCGCGGCAGATCCTGTGGCGGATCATCATGCCGCTGGTGCGGCCCGTCATCGCGATCGTGCTGCTGCTCCAGATCATCTGGGACCTGCGCGTCTTCGCCCAGATCCGGCTGCTGCAGGACGCCGGCGCCCCGATCTCCGAGACGAACCTGCTCGGCAACTACATCTACGAGCTCGGCGTCGGCAGCCAGGACTTCGCCGGTGCCGCCGCCGTCTCGCTCTTCGTCCTGGTGCTGACGATGGTCCTGTCGGGGCCGTACGTCCGCTATCTCATGAAGGAGGACGCGGCATGAMTTTTGASTASDGIAIRRRRKPATPYLLLIPAVAALLVGLGYPVYWQIITSLQEFGLMQQFGAPPEFVGLDNYARIFTDAEVWSVVAKSIAFCLVNALLTVGIGLGLAVLMRSVHGWVRITMQITLLLAWATPLVAAVTVFRWLFDDRNGVVNWLFVQLGQENLDGYNWLGNVWTFFMVASFIVIWMSVPFVALSIYAGLTQVSEEVLEAARIDGAGSRQILWRIIMPLVRPVIAIVLLLQIIWDLRVFAQIRLLQDAGAPISETNLLGNYIYELGVGSQDFAGAAAVSLFVLVLTMVLSGPYVRYLMKEDAAPGPT0016450_308DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016450-dasB-K17330NANA
AK018_052541356dasA_6COG1653Diacetylchitobiose binding protein DasAGTGAAGAGAACTCGACTCGTCGCCGCCACCGCGGCGTCGACGATCACCCTGGCCCTGGCGCTGACCGCGTGCAGCAGCGACACCACCGACGCCGGTGCGGAGAGCGGCAGCGACGCGGAGGAGACCACCGACGCCGCGCCGGAGGCCGCCGACCTGACGATGTGGGTCGCCGGTGGCGACACCCCGGACGAGCTGCGCGAGTACCTCATCGACACGTTCGAGGCCGAGAACGAGGGCTCGACGCTGACGATCGAGGAGCAGGACTGGGGCGACCTGGTCACCAAGCTGACCACCGCGCTGCCCGACGCCGAGAACACCCCCGACGTCGTCGAGCTGGGCAACACCCAGGCCCCGACCTTCACCAACGCCGGCGCGTTCCGCGAGATCTCGCCGGAGCTCTACGAGGAGCTGGGCGGGGACAACCTGCTCGAGTCCTTCGTCGAGGCCGGCACGGTCGACGGCACGGTCTACGCCCTGCCGTACTACTTCGGCTCGCGCTACATGTTCTACCGCGCCGACATCTGGTCGGACGCCGGTCTCGAGGTCCCGACCACGCTCGACGAGTTCGGCGAGGCCGTCAAGGAGCTCCGCACCGACGACATGTCCGGCTTCGCCCTCGGCGGCCAGGACTGGCGCAACGGCATCTCCTGGATCTTCGCCCACGACGGCGAGCTCGCCGTCAAGGAGGGCGAGGAGTGGGTCTCGACCCTCTCGGACGAGAACACGATCGCCGGTCTCGAGCAGTGGCAGGACGTCTACTCCGGCGCCTCGAACCTGCCGGCCACCGACCGCGACGTGGCCTACTGGGACTTCCTCAACGACACGGCCGACGGCGGCGCCCCGGACGCGGCGACCATCATGGCGCCGGGCTGGGCCCGCTGGTCGATCGGTGACCTCACCGAGAACGACGAGGGTGAAGAGGTCCGCGACGGCATGGCCGACGCGGAGAAGTTCGACATCTTCGCCCTGCCGGGCGTCGACGGCGGCGTGGCCCCGGTCTTCGCCGGTGGCTCGAACATGGCCATCTCGGCCCAGTCGCAGCACCCCGAGCTGTCCGAGAACCTGATGCGGATCATCTACTCGGACGAGTACCAGACCATGCTCGCCGAGAACGGTCTGGGGCCGGCCAACACCGAGTTCAACTCGATCATGGAGACGGACAAGTTCGGCGAGATCACCGTCGAGACCGCCGAGAGCTCCAAGCTCACGCCGGCCGCGCCGGGCTGGGCCGCCGTCGAGGGCGCCTCGGTCTACGAGGAGCTCTTCCAGAAGATCGCCGAGGGTGGTGACGTGGCCGAGCTCGCCGCCGAGTACGACGAGACGATCACGCCGATGCTCAACGGCCAGGCGGGCTGAMKRTRLVAATAASTITLALALTACSSDTTDAGAESGSDAEETTDAAPEAADLTMWVAGGDTPDELREYLIDTFEAENEGSTLTIEEQDWGDLVTKLTTALPDAENTPDVVELGNTQAPTFTNAGAFREISPELYEELGGDNLLESFVEAGTVDGTVYALPYYFGSRYMFYRADIWSDAGLEVPTTLDEFGEAVKELRTDDMSGFALGGQDWRNGISWIFAHDGELAVKEGEEWVSTLSDENTIAGLEQWQDVYSGASNLPATDRDVAYWDFLNDTADGGAPDAATIMAPGWARWSIGDLTENDEGEEVRDGMADAEKFDIFALPGVDGGVAPVFAGGSNMAISAQSQHPELSENLMRIIYSDEYQTMLAENGLGPANTEFNSIMETDKFGEITVETAESSKLTPAAPGWAAVEGASVYEELFQKIAEGGDVAELAAEYDETITPMLNGQAGPGPT0016445_32DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CHITOBIOSE_TRANSPORT_I,PGPT0016445-dasA-K17329NANA
AK018_052551155mlc_3COG1940Protein mlcATGACGACCACGACGACGCGCACCGGCCGACGAGGACTGGGCAGCGGCCTGCGAGCCACCTCGAAGGTGCTCCCCGAGCATGCTCGGGCGCACAACCGGTCGTTGGTGCTCCAGCAGCTCTTCCACGAGGGTCCGACCTCCCGGGCCGACCTGGCGCGGTCCACCGGCCTGACTCGGGTGACCGTCTCCGACCTCGTCGGCGTCCTGCTCGCCGAGGGGCTCGTGGAGGAGCTCGGCACCCAGCCGGGGCGTCGCGTCGGCAAGCCCGCGATCCTCGTCGGGATGCGGACCGACGCCTACCAGATCGTCGGTCTCGACCTCTCCGACGACACCGTGCTGCGCGGCGCGGTCCTCACCCTGACGGGGGAGGCCGTCGAGCGTCAGTCGCTGCCGGTCGACGGTCGGCGGGGCCAGGACCTCGTCGACCTGCTCGCCCGGTTCGCCCGGCGGCTCGTCGCGGGTGCCACGCGCCCGGTCATCGGCATCGGCGTCGGCTCGCCCGGCGTCGTCGACGCCTCCGGCCGCGTGGTCGAGGCGCCGAACGTCGAGTGGTACGACCTGCCGCTGGCCGAGCTGCTCACCGACCGGCTCGGCCTGCCGGTGCACGTGGCCAACGACGCCAACTCCGCGGCGCTGGCCGAGTACACCTACGGCGGTGCCGGCGACTCCATGCTCATGCTGACAGTGGGCAAGGGCGTCGGCGCGGGGGTCATGGTCGACGGCTCCCGCGTGCACGGGTCCGGCGACGCCGCCGGCGAGCTCGGGCACGTCACCGTCGTCGACGACGGCGGCGAGCCCTGCGCCTGCGGCCGCCGCGGCTGCCTCGAGACCATCCTGTCCGCCCCGGCGCTGCGCCGGGCCGTGGACGGGCTCGAGCGACCGGAGGCCGACGCCGTGCTGGCCGACGTCGGACGCACCCTGGGCAAGGCCCTCGCGCCCGTCGTGAGCGCCCTCAACCTCGGGGAGGTCATCCTCTCCGGACCGCCCGAGCTCCTCGCGGAACCGCTGCGTACGGCGGCCCGCGACACCATCACCGAGCGCACGATGCCGGCCACCTCGGCCGGCCTGGACCTGCGCATGGCCGCCCTCGACGACGACGTCGTCCTGGCCGGGGCGGCCGTGCTCGTCCTCGGCGCGCAGCTCGGTGTCTCCTGAMTTTTTRTGRRGLGSGLRATSKVLPEHARAHNRSLVLQQLFHEGPTSRADLARSTGLTRVTVSDLVGVLLAEGLVEELGTQPGRRVGKPAILVGMRTDAYQIVGLDLSDDTVLRGAVLTLTGEAVERQSLPVDGRRGQDLVDLLARFARRLVAGATRPVIGIGVGSPGVVDASGRVVEAPNVEWYDLPLAELLTDRLGLPVHVANDANSAALAEYTYGGAGDSMLMLTVGKGVGAGVMVDGSRVHGSGDAAGELGHVTVVDDGGEPCACGRRGCLETILSAPALRRAVDGLERPEADAVLADVGRTLGKALAPVVSALNLGEVILSGPPELLAEPLRTAARDTITERTMPATSAGLDLRMAALDDDVVLAGAAVLVLGAQLGVSNANANANANA
AK018_05256987hypothetical proteinATGCCGACCCGATCCCTCGGCCGCCGAGCCACCGCCCTGACCGTCGCCGCGATGCTGACGGTGGGCCTCGCGGCCTGCACCGGCTCCGACGACCGGGTCTCCGCCGGCGTCGACGCCGCCGTCACCGAGGAGTCGGACGGCCGCGCCGCCGCCGACGAGGCGGCCGCCGTCGCCGGGGAGTCCGTCGTCGCTCCGGAGCGCGACTCGTCCGGGGTCGTCGACCGCGAGGTCGTCGTCACGGGCTGGATCGAGCTGACCTCGCCGGACCCGTCCCGCACGACGGCGGAGCTGACCCGGATGGTCGAGCAGGCAGGCGGACGCGTCGAGCAGCTCACCGAGTCGCCCGACCACGACGGCGAGCCCGGGGCGGCGTCGATGACCGTGCGCATCCCGGCCGCGCGCACGACCAGCGCCGTCGACGCGATCTCCGACCTCGCGACCGTCCAGCAGGTCGAGATCTCCCGGGACGACGTCACCAGCCAGGGACAGAACCTCGACGCCCGCATCTCGGCACTGACCACCTCCACCGGCCGTCTGACCGAGCTGCTCTCCGAGGCCGGCTCGACCGAGGACCTGCTCGAGGTCGAGCGTGAGCTCGCGTCGCGTCAGGCCGAGCTCGACTCGCTCGTCGCGCAGCGCGAGGCGCTCAGCGACCGGGTGGCGATGTCCACCCTGCACATCCAGATCACGCCGCTCACGGCCCCGGTCACGGCGCCGTCGAGCGGGTTCACCGACGGTCTGGAGACCGGCTGGAGCGCTCTGGTCGCGTTCGTCCAGACGGTGGTCCTGGTCTTCGGCGTCCTGCTGCCGTGGCTCGTGCTGGCCGGCGCCGGGTTCCTCGTGTTCTGGATCGTGCGCCGGCGTCGGGCGTCCGCCACCCCGCCGTCCGGCCCGGGGGGCGCCGACGACGGCGCCGCGCCCGAGGACCCGCGCGATCCGGCACCGGCGGCGGGCTCTCCGGACCGCGAGCCCGAGCTGGTGCGCTGAMPTRSLGRRATALTVAAMLTVGLAACTGSDDRVSAGVDAAVTEESDGRAAADEAAAVAGESVVAPERDSSGVVDREVVVTGWIELTSPDPSRTTAELTRMVEQAGGRVEQLTESPDHDGEPGAASMTVRIPAARTTSAVDAISDLATVQQVEISRDDVTSQGQNLDARISALTTSTGRLTELLSEAGSTEDLLEVERELASRQAELDSLVAQREALSDRVAMSTLHIQITPLTAPVTAPSSGFTDGLETGWSALVAFVQTVVLVFGVLLPWLVLAGAGFLVFWIVRRRRASATPPSGPGGADDGAAPEDPRDPAPAAGSPDREPELVRNANANANANA
AK018_052571809ectP_2COG1292Ectoine/glycine betaine/proline transporter EctPATGGCAGAAGGAAAGCTCGATACGCTCGCGAGGAGGCTGGGCCTCCAGACCAACCCGACGATCTTCTTCACGTCGGCCGGGCTCATGATCCTCTTCCTGCTCCTGCTGCTGATCTTCCCCACGCAGATCGGTGACGCCTTCGGCGTGACACGGGAGTGGATCGTCACGAACCTGGGCTGGTTCTTCATCCTCGGGGTGTCGTTCTGGCTGGTGTTCCTCGCCTATGTCGCCCTGAGCAAGTACGGCAACCTCCGGCTGGGCGACAACGACTCGCGGCCCGAGTACTCGAACCTGTCGTGGTTCGCGATGCTCTTCGCCGGCGGCATCGGCACGGTGCTGATGTTCTGGGGCGTCGCCGAGCCCATCTCCCACTTCTCCTCGCCGCCCCTCGACGACGTGGCCCCGTACTCCGCCGAGGCAGCGAGCGACGCGATGTCGATCTCGCTGTACCACCTGAGCCTGCACACCTGGGCGATCTTCACGCTCCCGGGTCTGGCGTTCGGCTACTTCGTCTACCGCTACAAGCTGCCGCTGCGGGTCAGCTCGGTGTTCTACCCGTTCCTCCGGGAGCGCATCTACGGCCCCATCGGCAAGACCATCGACATCTTCGCGGTCCTCGGCACTCTCTTCGGGCTGGCGGTCTCGCTCGGGCTGGGGACGTCGCAGGTCGGCGCCGGCGTCAACGCGTTGTTCCCGAGCGTCGAGAACGGCACCCTGCTGCAGGTCGGCGTCATCACGGTGCTGACGATCGTCGCGGTGAGCTCGATCGTGGCCGGGCTGGACAAGGGCGTGCGGCGCCTGTCGAACATCAACATCCTCATGGCCGTCGGGCTGATGATCTTCGTGCTGATCATGGGCGACACCGTGTTCCTGCTCCGGCAGATCCCCGAGAGCGCCGGCGTCTACGTACAGGACCTCATCGGCCTGTCGTTCTGGAACGACGCGATGGCGCAGTTCACCGACGAGAACGGGTGGGGCTGGCAGGGCGGCTGGACGGTCTTCTACTGGACCTGGACCGTGACCTGGGCGCCCTTCATGGGCGTGTTCCTGGCCCGCATCTCGAAGGGGCGCACGATCCGGCAGTTCGTCGGCGGTGTCCTGGTGGCCCCGTCGCTGTTCACGCTGGTGTGGTTCGTCATCTTCGGCTGGTCGGCCATGGAGCTCGACGGGATCGGCGGCAGCGGAGGAGAGATCTCGGCGGCGGTCGCGGACAACGTCGCCCTGGCCATGTTCACCTTCTTCGAGAACTACCCGGCGGCCACGTTGATCTCCGGCATCGCGGTGGTCGTGGTGGCGCTGTTCTTCGCCACCTCCTCGGACTCGGCCTCGCTCGTGGTCGACATGCTGTGCGTCGGGACCTCCGAGTCCGGGCCCACCCGCCAGCGCGTGTTCTGGGGCGTCAGCGAGGGCCTGCTGGCCGCGTCGCTGATCATCCTCGGCGGGGTGACGGGACGGGACGGGCTCGCCGCGCTGCAGCAGGTGATCACCGTGATCGGGCTACCGATCTTCATCCTGAACTTCCTCATGGTGTTCAGCCTCTACAAGTCCCTGCGGACCGAGCGCCATACCGCCGTCGAGGCGCAGTTCGCCGGCGTGATGGCCCGATGGCGGTTCATGGGCCGGGCCACCGCGGGCGCGCGGGCGACGGCGGAGCGGGCGGCCCAGCACAACGCGACCGCCCGGTCGCGTTCGATCGCGACGTCCGGTGAGGGGATCCCGACCGTCGGGTCGACGACGGACGGAGCGTCCTCGACAGGTGCCGCGCCGACGGCCACCGCGGAGCGGGACAGCCGGAGCACCACGGACTGAMAEGKLDTLARRLGLQTNPTIFFTSAGLMILFLLLLLIFPTQIGDAFGVTREWIVTNLGWFFILGVSFWLVFLAYVALSKYGNLRLGDNDSRPEYSNLSWFAMLFAGGIGTVLMFWGVAEPISHFSSPPLDDVAPYSAEAASDAMSISLYHLSLHTWAIFTLPGLAFGYFVYRYKLPLRVSSVFYPFLRERIYGPIGKTIDIFAVLGTLFGLAVSLGLGTSQVGAGVNALFPSVENGTLLQVGVITVLTIVAVSSIVAGLDKGVRRLSNINILMAVGLMIFVLIMGDTVFLLRQIPESAGVYVQDLIGLSFWNDAMAQFTDENGWGWQGGWTVFYWTWTVTWAPFMGVFLARISKGRTIRQFVGGVLVAPSLFTLVWFVIFGWSAMELDGIGGSGGEISAAVADNVALAMFTFFENYPAATLISGIAVVVVALFFATSSDSASLVVDMLCVGTSESGPTRQRVFWGVSEGLLAASLIILGGVTGRDGLAALQQVITVIGLPIFILNFLMVFSLYKSLRTERHTAVEAQFAGVMARWRFMGRATAGARATAERAAQHNATARSRSIATSGEGIPTVGSTTDGASSTGAAPTATAERDSRSTTDPGPT0021960_475DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021960-TC_BCT-K03451NANA
AK018_05259507smpB_2COG0691SsrA-binding proteinGTGTCCAACAAGGCCAAGGGCGCCAAGAAGAAGCAGCAGTCCGCGGACCCGCGCCAGCTCGTGGCGAACAACAAGAAGGCCCGTCACGACTACGTGATCGAGGACGTGCTCGAGGCCGGCATCGTCCTGTCCGGGACCGAGGTCAAGGCTCTGCGCATGGGCCGCGCCTCGCTGGCCGAGAGCTACGTCGCCGTCGACCACGACGAGGCATGGCTGGAGAACGCGCACATCCCCGAGTACTTCCAGGGCACCTGGAACAACCACGCACCGCGGCGACGGCGCAAGCTGCTGCTGCATCGTGAGGAGATCGACCGCCTCGGGGTGAAGTCCCGGGAGAAGGGCAGGACGATCGTCCCGCTGCGCCTGTACTTCCTGGACGGCCGGGCCAAGGTCGAGATCGCCCTGGCGCGCGGCAAGAAGGAGTACGACAAGCGGCAGACGCTGCGCGAGAAGCAGGACATGCGCGAGGCGCAGCGCGCGATGCGGCGCCAGGAGCTGCTCACCTGAMSNKAKGAKKKQQSADPRQLVANNKKARHDYVIEDVLEAGIVLSGTEVKALRMGRASLAESYVAVDHDEAWLENAHIPEYFQGTWNNHAPRRRRKLLLHREEIDRLGVKSREKGRTIVPLRLYFLDGRAKVEIALARGKKEYDKRQTLREKQDMREAQRAMRRQELLTPGPT0014355_560DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RatA-RatB|YfjG-YfjF|RatAB-SsrAS_SYSTEM,PGPT0014355-smpB-K03664NANA
AK018_052601524hypothetical proteinGTGCCCGACGTCGTCCGCCTGCGCCGCGCCTTCGCCGGGGTGCTCGCGACCCTGCTGCTGATCGGCCCGACCGCGCCGGTCGTCGCCGACGAGCTCGACGACCAGCGGGCGGCCGCCGAGGAGGAGCAGCGCCAGAAGCGGCAGGAGCGGCAGGACCTGCAGCACGAGCTGGAGGACACCAACGCCGAGTTCGCCCAGGCCGTGCTCGACCTCAACGAGGTCGAGGGCCGGCTGCCCGTCGCCCAGGCCGAGCTCGCCGAGGCCCAGGCGGCCCTCGCCGAGGCGCGGCGCAAGGCCGCCGTCCTCGCCGACCGGCTGGCCGACGCCGAGGAGGAGGAGGAGACGGTCTCGGAGCAGATCGTCGCGGGAGAGGGCAAGGCCGAGGAGGCGCGGGGCGACGTCGCGGCCATGGCGCGTGAGGCGTACCGGCGCGGCGACGACGTGAGCACCATCGGGCTCGTCACCGGCGCGCAGTCGACCGAGGAGTTCCTCCGCGACGTGTCCGTGACGTCCTCGGCGGCGCGCAGCCGCTCGCGGTCGGTGGCCGAGCTGCAGGAGGCGGAGACCGTCGCCCGCAACCAGCAGGCCCGTCTCGACGCGATCCGCGAGACCATCGCCGACCTCAAGGCGGAGGCCGACGCCAACGTCGTCGCCGCCCAGGAGGCCGAGCAGCAGGCGGCGGAGCGCAAGGCCGAGGTCGAGCGGCTGATCGAGGAGCAGGAGCGGCTCAAGGCGTCGATCGCCTCCCAGCGGGACGAGACGATCGCCGAGCTGGAGGAGAACGAGGACGAGCGCGCCCAGCTCCGGTCCGAGATCAAGGACATCATCGCCCAGCAGGCCGAGCGGGACCGCCGGCTCGAGGAGGAGCGCCAGCGTCGCGAGGAGGAGGAGCGCCAGCGCCGTGAGGCCGAGGCCCGGCGCCAGGCCGAGCGCGAGGCCGAGCGCCGGGCCGAGCAGCGCGCCGAGCAGAACCAGAATTCCGGCGGCGGTGGGGGCGGTTCCAGCTCCGGAGGCGGCGGTTCCAGCTCCGCCGGGGGCGGCGGCTCCGGCTCGGGCGGCGGTGGCTCGAGCTCCGGCGGAGGCGGGGGTTCCAGCTCGGGCGGCGGGTCGTCGTCCTCGGGGCCGTTCCTCGGCTGGCCCACGAACTACCGGGTCGTCACCAGCAGCTACGGGATGCGGTACCTGGAGATGTACGGCTACACCCGGCTGCACGCCGGGACCGACATCCGCAGCTACTGCGGTACGCCCATCTACTCCTCCCAGAGCGGGTACGTCGAGCAGGCGTACTACGGCTCCGGCCCGGGCAACAACGTCCTGATCAACCACGGCAGGTACCGCGGCGACAGCGTCATGAGCCGCTACCTGCACCTGTCCCGCGACGTGGTGTCCGTGGGCCAGAAAGTCTCCAAGGGCCAGGTGATCGGGTACTCCGGCAGCACCGGGTCCTCCGGCGCGTGCCACCTGCACTACGAGGTGTGGGTCAACGGCAGCACCGTCGACCCGATGGGCGGCTGGCTCAACTGAMPDVVRLRRAFAGVLATLLLIGPTAPVVADELDDQRAAAEEEQRQKRQERQDLQHELEDTNAEFAQAVLDLNEVEGRLPVAQAELAEAQAALAEARRKAAVLADRLADAEEEEETVSEQIVAGEGKAEEARGDVAAMAREAYRRGDDVSTIGLVTGAQSTEEFLRDVSVTSSAARSRSRSVAELQEAETVARNQQARLDAIRETIADLKAEADANVVAAQEAEQQAAERKAEVERLIEEQERLKASIASQRDETIAELEENEDERAQLRSEIKDIIAQQAERDRRLEEERQRREEEERQRREAEARRQAEREAERRAEQRAEQNQNSGGGGGGSSSGGGGSSSAGGGGSGSGGGGSSSGGGGGSSSGGGSSSSGPFLGWPTNYRVVTSSYGMRYLEMYGYTRLHAGTDIRSYCGTPIYSSQSGYVEQAYYGSGPGNNVLINHGRYRGDSVMSRYLHLSRDVVSVGQKVSKGQVIGYSGSTGSSGACHLHYEVWVNGSTVDPMGGWLNNANANANANA
AK018_05261912ftsX_2COG2177Cell division protein FtsXGTGCGCCTGCAGTTCATCCTCGGCGAGGTCTTCCGCGGACTGAGCCGCAACGCCACGATGGTGGTCTCGGTCGTCCTCGTCACGTTCGTGTCGCTGACGTTCGTCGGGGCCGCGGCGCTGCTCCAGATGCAGATCGACAAGCTCCAGGGCGACTGGTACGACCTGGTCGAGGTGTCGGTCTTCCTCTGCCCGGAGGGGTCGACGGCGTCGACCTGCGCCGGGGGAGAGGCGACCGAGGAACAGATCAGCACCGTCGAGCGCACGATCAGCACCGAGCTCGACGACGTGGTGTCCACGGTCTACTTCGAGTCGAAGGAAGACGCGTTCGAGGCCTTCTCCGCCCAGTACCCGGACGGCTACCAGGGCACCCAGCTGACCGAGGACGACATGCAGGCGTCCTTCCGTCTCCAGCTCGCCGACCCCGAGCAGTACCAGGTGGTCGACGAGGTCCTCTCGGGGCGGGACGGCGTCGAGGTGGTCGAGGACCAGCGCGCGATCTTCGAACCGCTGTTCCTGGCCCTGAACCGTTCCTCGCTCGTCGCGGTCGGCCTGGCGTTCGTCATGCTCGTGGCCGCCGCCCTGCTCATCATCACGACCATCCGGCTGTCCGCCGTGTCCCGGCAGCGCGAGACCGGCATCATGCGGCTCGTGGGTGCTTCGACGCTGTTCGTCCAGCTGCCCTTCATGCTCGAGGGCGCCCTCGCGGCGCTGCTCGGCGCCGTGCTGGCCGTGATCGGGCTGTGGGCAGCCGTGCAGTACCTCGTGATCGACTGGCTCGCCGAGTCGGTCGACTGGGTCGAGCACGTCACCACGGCCGACGTGCTCACGATCGCCCCGCTGCTGCTGGGGCTGGCCGTGGCGGTCGCCGCCGTGTCCTCCGCCGTGACGCTCCACCGCTACACGAGGGTGTGAMRLQFILGEVFRGLSRNATMVVSVVLVTFVSLTFVGAAALLQMQIDKLQGDWYDLVEVSVFLCPEGSTASTCAGGEATEEQISTVERTISTELDDVVSTVYFESKEDAFEAFSAQYPDGYQGTQLTEDDMQASFRLQLADPEQYQVVDEVLSGRDGVEVVEDQRAIFEPLFLALNRSSLVAVGLAFVMLVAAALLIITTIRLSAVSRQRETGIMRLVGASTLFVQLPFMLEGALAALLGAVLAVIGLWAAVQYLVIDWLAESVDWVEHVTTADVLTIAPLLLGLAVAVAAVSSAVTLHRYTRVNANANANANA
AK018_05262918btuD_23Vitamin B12 import ATP-binding protein BtuDGTGATCCGGTTCGAGAACGTCTCGAAGGTCTATGCGCGGGGGGCGCGCCCTGCGCTGGACGACGTCTCCGTCGACGTCGAACGCGGTGAGTTCGTGTTCCTCGTGGGGGCCTCCGGCTCCGGGAAGTCGACGTTCCTGCGCCTCGTGCTGCGCGAGGAGCGCCCGACCGGCGGGCGCGTCTACGTCGCCGGCCGTGATCTGACGCGCCTCTCGCCGTGGCGGGTGCCCGGCCTGCGCCGCGGCATCGGCATGGTGTTCCAGGACTTCCGGCTGCTGCCGAACAAGACCGTCTACGAGAACGTCGCGTTCGCCCTGCAGGTCATCGGCCGTCCCCGCCACCACATCCGCACCACCGTGCCCGAGGTGCTGGAGTGGGTGGGCCTGGACGGCAAGGAGAAGCGCCGGCCGCACGAGCTGTCCGGCGGGGAGCAGCAGCGCGTCGCCATCGCGCGCGCCTTCGTCAACCGGCCCAAGATCCTGCTCGCCGACGAGCCCACCGGCAACCTCGACCCCACCACCTCGCAGGGCATCATGCGCCTGCTGGACCGCATCAACCGCACCGGCACCACCGTGGTCATGGCGACGCACGACGACGAGATCGTCAACGAGATGCGTCGACGCGTCGTCGAGCTGTCCACCGGGCGCATCGTGCGCGACGAGGTCGAGGCCGCCTACGGCCGTCGCGAGGAGATCCTGCCCCAGGTCGGACCCGTCGCCGTCCTCGACGCCCCCGGTCGCGGGGTGCCCGCTCGCCGCATCTCCGTGCGGCCGGAACCGGGCGACGTCGCGGCCGAGCGCGCTGCCGAGCGCGCTGCCGAGCAGGCGGCCGCCCGGGGCGTCGACCCCCCGCCGGCCGAGGTCGACGAGGACTCCCGCGAGATGTCGGGTGCCCTGGCGTCCCGGGCCGAGGAGGCCTGAMIRFENVSKVYARGARPALDDVSVDVERGEFVFLVGASGSGKSTFLRLVLREERPTGGRVYVAGRDLTRLSPWRVPGLRRGIGMVFQDFRLLPNKTVYENVAFALQVIGRPRHHIRTTVPEVLEWVGLDGKEKRRPHELSGGEQQRVAIARAFVNRPKILLADEPTGNLDPTTSQGIMRLLDRINRTGTTVVMATHDDEIVNEMRRRVVELSTGRIVRDEVEAAYGRREEILPQVGPVAVLDAPGRGVPARRISVRPEPGDVAAERAAERAAEQAAARGVDPPPAEVDEDSREMSGALASRAEEAPGPT0020520_4226DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071NANA
AK018_052631110prfB_2COG1186Peptide chain release factor 2GTGGCCACTATCGACTTCCCCGCCGAGATCAAGGGGCTCCGCTCCACCCTCGAGTCCATCGAGTCGGTGAGCGACCCCTCTGCCCTGGAGGCGAAGATCGCCGAGCTCTCCGAGCAGGCGGCCGCTCCCGACCTCTGGGACGACCAGGAGAACGCGCAGCGCGTCACTTCGGCCCTGTCGCACGCCCAGGACGAGCTCGACCGGGTCAAGAAGTTCAGCAGCCGCATCGACGACGTCGAGACGCTCGTCGAGCTCGGCCACGAGATGGACGACGCCGACTCGCTCGCCGAGGCCGAGACCGAGGTCGCCGCGCTGCGCAAGGAGCTCGACTCCCTCGAGGTGCGCACGCTGCTCAGCGGCGAGTACGACGCCCGCGAGGCCGTCGTGACGATCCGCGCCGGCGCCGGCGGCGTCGACGCCGCGGACTTCGCCGAGATGCTCATGCGCATGTACCTGCGCTGGGCCGAGCGGCACGGCTACCCGGCCAAGGTGATGGACACCTCCTACGCCGAGGAGGCGGGACTGAAGTCCGCCACGTTCGAGGTGAACACCCCGTACGCGTTCGGGCACCTGTCGGTCGAGGCCGGCACCCACCGCCTGGTGCGCATCTCGCCGTTCGACAACCAGGGCCGTCGCCAGACGTCGTTCGCGGCGGTCGAGGTCATCCCGCTCATCGAGCAGACCGACCACATCGAGATCGACGAGAACGAGCTGAAGATCGACGTCTTCCGCTCGTCCGGCCCGGGCGGGCAGTCGGTCAACACCACCGACTCGGCCGTGCGCATGACGCACATCCCGACCGGCACCGTGGTCTCGATGCAGAACGAGAAGTCGCAGATCCAGAACCGTGCCGCCGCGCTGCGCGTCATGCAGTCCCGCCTGCTGCTGATCCGTCAGCAGGAGGAGGCCGCCAAGAAGAAGGAGCTCGCCGGCGACATCAAGGCGAGCTGGGGCGACCAGATGCGCTCCTACGTGCTGCACCCGTACCAGATGGTCAAGGACCTGCGCACCGAGCACGAGTCCGGCAACACCCAGAACGTGTTCGACGGCGCGATCGACGACTTCATCGAGGCCGGCATCCGGTGGCGGCGCAACCAGGCGGACGACTGAMATIDFPAEIKGLRSTLESIESVSDPSALEAKIAELSEQAAAPDLWDDQENAQRVTSALSHAQDELDRVKKFSSRIDDVETLVELGHEMDDADSLAEAETEVAALRKELDSLEVRTLLSGEYDAREAVVTIRAGAGGVDAADFAEMLMRMYLRWAERHGYPAKVMDTSYAEEAGLKSATFEVNTPYAFGHLSVEAGTHRLVRISPFDNQGRRQTSFAAVEVIPLIEQTDHIEIDENELKIDVFRSSGPGGQSVNTTDSAVRMTHIPTGTVVSMQNEKSQIQNRAAALRVMQSRLLLIRQQEEAAKKKELAGDIKASWGDQMRSYVLHPYQMVKDLRTEHESGNTQNVFDGAIDDFIEAGIRWRRNQADDNANANANANA
AK018_05264369hypothetical proteinATGAGCGACGACCGGCTGCCCGTCGACCTGGACCAGATGTTCGACCTCGCCCGCGCCGGCGCGGACCTGCTGCTGGAGTTCGTCGACGACGGCGTCCCCGTCGACCTCGCCGACGTCCACGGCAACTCCCTGCTCATGCTCGCCGCCTACCACGGCCACGCCGACCTGGTCCGGGGCCTCGCGCAGCGGGGAGCCGACGTCGACCGGCTCAACGAGCGCGGCCAGTCCCCGCTCGCCGGCGCGGTGTTCAAGGGTGACCCGGCCGTCGTCGACGTCCTCGTCGCGGCGGGCGCCGACGTCGACGCCGGTCAGCCGAGCGCCCGCACGACGGCCCGGATGTTCGAGCGTCCGGTGCCGGGAGAGGCGTGAMSDDRLPVDLDQMFDLARAGADLLLEFVDDGVPVDLADVHGNSLLMLAAYHGHADLVRGLAQRGADVDRLNERGQSPLAGAVFKGDPAVVDVLVAAGADVDAGQPSARTTARMFERPVPGEANANANANANA
AK018_052651116hypothetical proteinATGACGCACGAGGACACCGGTGCCACGCCGTCGCGCCGTCGGGACCTGCTGCGGCGGCGGGCCGCTGCCGCGCCGCAGCCCGCGCCGGCCGAGGTCCCGCACCTGACCCGGTACGTCGAGGACGGCCGTCCGTCGCCGGCGCCGCCGGGCGCGAGCGTGGCCGACGGCCTGCGGTTCGCCGACTCCGCCGACGACCGCATGATCATGTCCCTCTACCCGCGGCCGACGGAGCCCGCCGTGCGGGAGCTGGCCGAGGCGTGGGACCTGCACCCGCTCGTCGTCGAGGACCTGCTGCACGCCCACCAGCGGCCGAAGCTGGAGCGCTACGGGGACATCCTGTTCCTCGTCGTGCGGTCGGCCTGGTACGTCGACGCCGAGGAGGACGTGGTCCTGGGGGAGTTCCACGTGCTCGTGCGGCCGGGGGCCGTGGCGGTCCTGTGCCAGGACGGTCGCTGGATCGACGGCACACCGGCCGCGGGCCTCGACGAGGAGACGGTGCGTGCGGACCGCACGGTGGGCACCCTGCTCGCCGACGAGCACCTGCTCCGGCTCGGGCCGGAGGCGGTCGCCTACCGGTTGCTGGACGCGATCGTCGACGGGTACGCGCCCGTGCTGCAGGGCGTCGGGATCGACAAGGAGCAGATCGAGCGGCAGGTCTTCAGCGGGGACGCCGCCGTGGCCGAACGCATCTACCGCCTCAGCCAGGAGGTCATCGACATGCAGCACGCGACGACGTCGCTGACCGAGGTACTCGAGTCCCTGCGCGCCGGGTTTGCCCAGCACGACGTCGCCCCCGAGCTGCAGGCGTACCTCCAGGACGTCTCGGACCACCTCACCCGCGCCGACGCGCGCGTACGGGAGTACCGCGAGGCGCTCGGGCAGATCCTCGACGTCAACGCGACGCTGGTCGCGCAGCGCCAGAACGAGGACATGAAGAAGATCTCCGGCTGGGCCGCGATCCTCTTCGCCCCGACCCTGGTCGCCGCCGTCTACGGCATGAACTTCGAGGTCATGCCCGAGCTGCACTGGGCGTTCGGCTACCCTCTGGCGGTCGGCCTGATGCTGACCTTCTCCGTGGTGCTCTACGTCGTCTTCAAGCGCGGTCGGTGGATGTAGMTHEDTGATPSRRRDLLRRRAAAAPQPAPAEVPHLTRYVEDGRPSPAPPGASVADGLRFADSADDRMIMSLYPRPTEPAVRELAEAWDLHPLVVEDLLHAHQRPKLERYGDILFLVVRSAWYVDAEEDVVLGEFHVLVRPGAVAVLCQDGRWIDGTPAAGLDEETVRADRTVGTLLADEHLLRLGPEAVAYRLLDAIVDGYAPVLQGVGIDKEQIERQVFSGDAAVAERIYRLSQEVIDMQHATTSLTEVLESLRAGFAQHDVAPELQAYLQDVSDHLTRADARVREYREALGQILDVNATLVAQRQNEDMKKISGWAAILFAPTLVAAVYGMNFEVMPELHWAFGYPLAVGLMLTFSVVLYVVFKRGRWMPGPT0014010_248DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284NANA
AK018_05266762hypothetical proteinATGCGTCGCACCCTCACAGGCCTGATCGCCGTCCTGCTCGCCGCCGTCGTCACGTTCGTGGCCACCGACCTCGACGAGCGGCTGAACCTCGACCTCGGCCTCGGGGCGGTGGTCTCCGAGGCGGCGGGCGCCGTCCTCGGCGACGGCGACCCCGCCGGCGGCGACTCCGGCGACGACTCGTCCGCCGTCCCGGACGGGTCGGTGGACGTCGACCAGGTCACTGCGCAGCTCGACGGGATCACCGTCAAGGGCAAGGCACCGCAGACCGGCTACGACCGCGACGAGTTCGACCACTGGACCGACCCGGACGGCAACGGCTGCGACGCCCGCAACGACATGCTCGCCCGGGACCTCGTCGACGAGGCGGTGGACGACGACGGCTGCACCGTGCTGGCCGGCACGATGGAGACCGAGCCGTACACCGGGGAGACCGACCGCGCGTTCGAGCGCGGCAGCGACGACCTGGCGCTGTCCCTCGACGCCGAGCACCTCGTCGCGCTGCAGAACGCGTGGATCTCCGGCGCGCACGCCTGGGACGAGGACCGCCGCGAGGAGTTCGCCAACGACCCGGCGAACCTCCTCATGGTCGACCCCAGCGAGAACCGCGCCAAGGGCGCGGCGAACGCCGCCGAGTGGCTGCCGCCGAACAGGGCCTTCCGCTGCCAGTACATCGCCGCCCAGATCGAGATCAAGGCCGACTACGACCTCGCCGTCACGCAGCCCGAGAAGGACGCCATGACGCGCGTGCTCGAGTCGTGCTGAMRRTLTGLIAVLLAAVVTFVATDLDERLNLDLGLGAVVSEAAGAVLGDGDPAGGDSGDDSSAVPDGSVDVDQVTAQLDGITVKGKAPQTGYDRDEFDHWTDPDGNGCDARNDMLARDLVDEAVDDDGCTVLAGTMETEPYTGETDRAFERGSDDLALSLDAEHLVALQNAWISGAHAWDEDRREEFANDPANLLMVDPSENRAKGAANAAEWLPPNRAFRCQYIAAQIEIKADYDLAVTQPEKDAMTRVLESCNANANANANA
AK018_05267699hypothetical proteinATGGACACCGTGAGCGACGCAGCGGACGGGTCGACGGCCTCCAGGGCGAGACGGCGCGCTGCGGTGGCCGTGCTCGCGGCGCCGGCGGTCGCCGGCCTCACCGCCGCGGCCGGCGTGGTCGCCACCGGTGCGCACCGGCGGCTCGGCACCACCGAGGCCGAGACGCGCGTCTGGCTGCCCGGCGACGAGCTGCTGGAGGGCGGCGTCGTCCAGGCCGACCGGGCGTGCACCATCGCGGCCCCGCCGCAGGACGTCTGGCCGTGGATCGCCCAGCTCGGCCAGGACAAGGCCGGCTTCTACTCGTTCGAGGCGCTGGAGAACCTCGTCGGCTGCCGGATCGCCGGCGCGACGACGATCCACCCCGAATGGCAGGACGTCCAGGTCGGCGACGCCTTCCGGCTGCACCCGGACCTGGCGCTGCGGGTGGCCGAGGTCGTGCCCGGCAGCCACCTGGTGGTGACCTCGCAGGGCGCCGACGGCGTACCCGAGGGCCACGACTTCACCTGGGCGTTCCACCTCGAGTCGGTCTCCGTCGGGCCGGCGCCGGCCACCCGGCTGCACCTGCGCGAGCGGTACGAGTCGAAGCGCCCGGTCGACCGGGCCGTGTCCGAGGCCCTCTGCCTGGTCAGCGCCGCGATGAGCCGGCGCATGATGCGCCGGCTCGCCGAGCTGGCGGCCGCTCCCCCGGTGCGTACCTGAMDTVSDAADGSTASRARRRAAVAVLAAPAVAGLTAAAGVVATGAHRRLGTTEAETRVWLPGDELLEGGVVQADRACTIAAPPQDVWPWIAQLGQDKAGFYSFEALENLVGCRIAGATTIHPEWQDVQVGDAFRLHPDLALRVAEVVPGSHLVVTSQGADGVPEGHDFTWAFHLESVSVGPAPATRLHLRERYESKRPVDRAVSEALCLVSAAMSRRMMRRLAELAAAPPVRTNANANANANA
AK018_05268426hypothetical proteinATGCTGCTCACCGCGGGCTTCGTGGCGGTGGGACTGATGCTGGTCGGCATGGTCGCCTCGGCGGCGTCGGTGCACCTGGACCGCAAGCATCTGTTCGACCTGGCGGACTCCCTCGCGGTGGCCGGGGCGGACTCGATGTCGCAGGCGACCTACTACGGCGGCGCCGCGGCGCCGGACTCCTCCGGGGTGCTGACCCTGACCGACACCGGCGTGCGCGCGGCGGTCGTCGAGCACCTGGAGGCACAGCCGACGTCGTCCGCCCCGGGCCTGCGCGGCGTCCGGGTGACCGAGGCGGTGACGCCGGACGGTCGCAGCGCCCGGGTGAGCCTCGTCGGCAGCTCCCACCCGCCGCTGGTGCGGTGGTTCACCGACGCCTTCGGCGCGGGCATCACCGTGACGGCCACGGCGACGGCACGGGCTGAGTAGMLLTAGFVAVGLMLVGMVASAASVHLDRKHLFDLADSLAVAGADSMSQATYYGGAAAPDSSGVLTLTDTGVRAAVVEHLEAQPTSSAPGLRGVRVTEAVTPDGRSARVSLVGSSHPPLVRWFTDAFGAGITVTATATARAENANANANANA
AK018_05269468hypothetical proteinATGACCACAGGGCCCGCGCGCACCAGGACGCCGTCGTCCGGCGAGCAGGGAGCCGCCGTCGTCGAGTTCCTGGGCGTCGGTGTGCTGCTGCTCGTCCCGCTCGTGTACCTGGTGGTGACGCTGGGCCAGCTCCACGCGGCGGGGTTCGCGGTCGAGGGCGCGGCACGTGATGCGGCGCGGGCCGTCGTGACGGCGGACTCCGCGGCGCAGGCGGCTGTCCATGCCCGCGCCGCGACCGAGGTGGCGCTCGCCGACCAGGGCTTCGTCGTCGACGGCGGCAACCTGCTGCAGCTGGAGTGCTCGGCGACGCCGTGCCTGACGCCGGGGGCGACGGTCGGGGTCCGGGTGCGCTACGAGGTGCCACTGCCCCTGGCGCCGGCGGCACTGCAGGACTGGGTGCCGCTGAGCATCCCGGTCGAGGCCGCACACGTGGCACCGGTCGAGGAGCACGTGGCGGCCCGCCCGTGAMTTGPARTRTPSSGEQGAAVVEFLGVGVLLLVPLVYLVVTLGQLHAAGFAVEGAARDAARAVVTADSAAQAAVHARAATEVALADQGFVVDGGNLLQLECSATPCLTPGATVGVRVRYEVPLPLAPAALQDWVPLSIPVEAAHVAPVEEHVAARPNANANANANA
AK018_05270435hypothetical proteinGTGAGCCGGCGTCGTCCGACGCCGCGACACGGATCGCTCGACGCGTCGCCCGACGACCGCGGCGCGGAGGAACGGGGATCGGCCGTCGTCGAGTTCGCGCTCGTCTCGGCGTTGCTCGTCGCGCTCTTCCTCGGCGTCGTCCAGGTCGCGCTGGCGCTGCACGTGCGGGCCGTGGTGATCGACGCGGCGGCCGAGGGTGCCCGACTCGCGGCGCGGACCGACCGTGAGCTGTCGGCCGGCGCGCAGCGCACCCGCGACCTGCTGAGCTCGGCGCTCAGCGACCGGTATGCCGGTGACATCGCCGTCGGTCGGACCCGCCGCGACGGGTTGGACCTGATCCGGGTGACGGTCCGTGCTCCACTGCCCGTCGTGGGGATCCTGGGGCCTACCGGCGCGATGACCGTCGACGGTCATGCCGTGGACGAGGCGTCGTGAMSRRRPTPRHGSLDASPDDRGAEERGSAVVEFALVSALLVALFLGVVQVALALHVRAVVIDAAAEGARLAARTDRELSAGAQRTRDLLSSALSDRYAGDIAVGRTRRDGLDLIRVTVRAPLPVVGILGPTGAMTVDGHAVDEASNANANANANA
AK018_05271192hypothetical proteinATGACCACTCGTCAGACCGACGGGCCCGTACGCGATCGGCCTGCTGCCGATGACCCCGAGCGGGGTGACGTCCCCGGCTGGGTCCTCGTCACGCTGATGACGGCCGGCCTGGTCGTCGCGCTGTGGGCGCTGGCCGGCCCCTTGCTGGAGGATGCCTTCACCCAGGCGATCGAGAGCGTCACGGGTCTGTGAMTTRQTDGPVRDRPAADDPERGDVPGWVLVTLMTAGLVVALWALAGPLLEDAFTQAIESVTGLNANANANANA
AK018_05272933hypothetical proteinATGACGCTCGCCGTGACCGGCGCCCTGCTCGGGCTCCTCGCCGGGGTCGGGCTGCTGCTCGCCCTGGCCGGGGTCCGCGGCCGCCGTATCTCGCTGGACGAACGCCTCGCCCCGGCGCTGCGTCGTCGCGACGCCACCTCCGGCCTGCTGCGCGACCAGGTGACCCGTTCGCCGTTCGGGGTCGTCGACCGTCTCGTCGCCCCGTGGGTCGCGGACGCGGCCGGGTGGTTCGAACGCCTCGGCTCCACGCGGGAGGACGTTCAACGTCGGCTCGACAGAGCCGGCCTGCGCGAGACGGTCGAGCAGTTCCGTGCCCGTCAGCTGGTCTGGACCACGCTGGGTCTGGCCGGTGGGCTCTTGCTGTCCGTCGTGCTCGCCGCGAGCCGCGGCTCCTCCGTCGTGGTGCTGGCCGCCCTGGTGCTCTTGGCGGGCGCCACGGGCTTCGTCGGGTGCGACCAGCGGCTCTCGGGCGCCGCGCGGCGTCGCGAGGAAAGGATGCTCGCCGAGTTCCCCACCGTCGCCGAGCTCCTCGCACTGGCCGTCACCGCCGGCGAGGGGCCGGTGCCGGCTCTCGAGCGCGTCGCGGCCACGGCGCGCGGCGAGCTGTCCGGCGAGCTCGCGACGATGCTCGCGGACGTCCGGGCGGGAGCGCCCATCACCGTGGCCCTCACCGCCATGGCCGACCGCACGGGCCTGCCGTCCCTGACGCGGTTCGCCGAAGGGGTGGCCGTCGCGCTCGAGCGTGGCACCCCGCTCGCCGACGTCCTGCGGGCCCAGGCGCAGGACGTCCGCGAGTCCGGACGCCGTGCCCTCATGGAGGCCGGAGGCAAGAAGGAGGTCGCCATGATGGTGCCGGTGGTCTTCCTCATCCTGCCGATCACGGTCGTCTTCGCCGTCTTCCCCTCGCTGGCCACGTTGCAGATCGGACTGTGAMTLAVTGALLGLLAGVGLLLALAGVRGRRISLDERLAPALRRRDATSGLLRDQVTRSPFGVVDRLVAPWVADAAGWFERLGSTREDVQRRLDRAGLRETVEQFRARQLVWTTLGLAGGLLLSVVLAASRGSSVVVLAALVLLAGATGFVGCDQRLSGAARRREERMLAEFPTVAELLALAVTAGEGPVPALERVAATARGELSGELATMLADVRAGAPITVALTAMADRTGLPSLTRFAEGVAVALERGTPLADVLRAQAQDVRESGRRALMEAGGKKEVAMMVPVVFLILPITVVFAVFPSLATLQIGLPGPT0022295_1124DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511NANA
AK018_05273858hypothetical proteinATGGGGGTCGTCGTCGGTCTCGTCGGTGGGGCCGGGCTGTTCTGTCTCTGGTGGTCCTGCTGGGAGCGGCCCGACCGCCGACGACGGCGCGGCCGCCGGTACCAGGCTGTGCAGGACCTCCTCGTCCAGGCCGGTGCGCCGACGGTCACGCCGGGGGCGCTGTGGGCGGTCAGCGCAGGGATCGCGCTCGTCGTGCTGCTCGTGGGGCTGGCCCTGACCCGGTCGCCGGCCATCGCCGCCTGCTTCGCCGTCATGGCTGCGGTGGCACCCGAGGCGTTGGTCCGCACGCGAGCCCGTCGACGACGTGAGGACCTGCGCGAGGTCTGGCCGGACGTCGTGGACCACCTCGCCTCGGGCGTGCGGGCCGGTCTCTCCCTCCCGGAGGCCGTCGCCCAGCTCGGCGAGCGAGGGCCCGAGGCCCTGCGCGAGCCGTTCGCGCAGTTCGCCGCGGACCACCGCGCGACCGGTCGGTTCGGCGAGTGCCTCGACCTGCTCAAGGACCGGCTCGCGGACCCCGTCGCCGACCGGATCATCGAGTCGCTCCGGCTGACCCGCGAGGTCGGCGGCACCGACCTCGGACGGCTGCTCCGCAGCCTGTCGAGCTTCCTGCGCCAGGACCTGCGGACCCGCGGAGAGCTGGAGGCGCGCCAGTCGTGGACCGTCAACGGTGCGCGGGTGGCGGCCGCCGGCCCGTGGGTCGTGCTGGCCCTCCTGGCCAGCCGACCCGAGACCGCACAGGCGTACAACTCCGCGGCCGGGGTGGCCGTGCTGCTCACCGGTGCCGGGTGCTCGGTGGTGGCCTACCGGGTCATGCGCAGGATCGGACGCCTGCCGGAGGAAGGGCGGGTGCTGCGATGAMGVVVGLVGGAGLFCLWWSCWERPDRRRRRGRRYQAVQDLLVQAGAPTVTPGALWAVSAGIALVVLLVGLALTRSPAIAACFAVMAAVAPEALVRTRARRRREDLREVWPDVVDHLASGVRAGLSLPEAVAQLGERGPEALREPFAQFAADHRATGRFGECLDLLKDRLADPVADRIIESLRLTREVGGTDLGRLLRSLSSFLRQDLRTRGELEARQSWTVNGARVAAAGPWVVLALLASRPETAQAYNSAAGVAVLLTGAGCSVVAYRVMRRIGRLPEEGRVLRPGPT0022290_2096DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
AK018_052741263hypothetical proteinGTGGACACCGACGTCCTGACCCGCGACGAGGCGGGGAGCCTGCTGACGAGCGAGGTCCGTGAGCTCGTGCGCCGGCGCGGCATCGATCCCGTGACCGACCGGCACGGGCTCGACCGCCTGGTGGCCGAGGCGGTGGCCGACTACAGCGACCGCGCGACGGCCGGCGTCGTGCCGCCTCTGGCGGATGCGGTCGGGACCACGCGGGCGCTCGTCGACGCCTTCGGCGGCTTCGGGCCGTTGCAGCCCTACCTCGACGATCCGGAGATCGAGGAGGTGTGGATCAACAACCCGGCCCAGGTGTTCGTCGCCCGGCGTGGTGTGAGCGAGCTGACGACGACCTTGCTCACGGCTCAGCAGGTCCGCGACCTCGTCGAGCGGATGTTGAAGTCCAGCGGTCGGCGGCTCGACCTGAGCTCCCCGTTCGTGGACGCGACGCTCCCGGGCGGGGAGCGGCTGCACGTCGTGATCCCGGACGTCACGCGCGAGCACCTGGCGGTGAACATCCGCAAGCACGTCGTGCGAGCGCACCATCTCGACCACCTCGTCCGACTCGGGTCGCTCACGGCGCACGCCGCCGCCTTCCTCGACGCGGCCGTGCGGGCCGGGGCGAACATCCTGGTGGCCGGGGCCACGCAGGCCGGCAAGACCACCATGCTCAACGCGCTCGCGGGGTCCACCCCGGCCGGGCAGCGGGTCGTCTCGTGCGAGGAGGTCTTCGAGCTGCGACTGCCGGTGCGCGACCACGTCGCGATGCAGTGCCGGCAGCCCAGCCTCGAGGGCACCGGGGAGATCCAGCTCCGGCGCCTGGTCAAGGAGGCGCTGCGGATGCGGCCGGACCGGATCGTCATCGGCGAGGTGCGGGAGGCGGAGAGCCTCGACATGCTCATCGCCCTGAACGCGGGTGTTCCCGGGATGGGCACCGTGCACGCGAACTCGGCGCGCGAGGCGGTCACGAAGATGTGCACGCTGCCGTTGCTCGCCGGTGAGAACATCTCGGACCGCTTCGTCACCCCGACGGTCGCGTCCGCGCTCGACGTCGTGGTCCATCTCGGGGTGACGCCCGACGGTGTGCGGCAGTGCCGGGAGATCGTCGCGGTCACCGGGCGCGTGGAGGAGGGACGCGTCGAGACGGCGCAGCTGTTCCGTCGTCGCCCGGCCCGCTTCGGCGGCGACCTCGTCCGGGGGGACGGCTTCCCCGCCGGCGTCGAGAAGTACGAACGCCTCGGTGTCGACGTGCACGCCCTGCTGGCGGGTGAGCGCTGAMDTDVLTRDEAGSLLTSEVRELVRRRGIDPVTDRHGLDRLVAEAVADYSDRATAGVVPPLADAVGTTRALVDAFGGFGPLQPYLDDPEIEEVWINNPAQVFVARRGVSELTTTLLTAQQVRDLVERMLKSSGRRLDLSSPFVDATLPGGERLHVVIPDVTREHLAVNIRKHVVRAHHLDHLVRLGSLTAHAAAFLDAAVRAGANILVAGATQAGKTTMLNALAGSTPAGQRVVSCEEVFELRLPVRDHVAMQCRQPSLEGTGEIQLRRLVKEALRMRPDRIVIGEVREAESLDMLIALNAGVPGMGTVHANSAREAVTKMCTLPLLAGENISDRFVTPTVASALDVVVHLGVTPDGVRQCREIVAVTGRVEEGRVETAQLFRRRPARFGGDLVRGDGFPAGVEKYERLGVDVHALLAGERPGPT0016025_2361DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
AK018_05275603hypothetical proteinGTGACCGCCGTCGACCCCAAGAAGACCTGGCGCGCGCTGTACTCGGCCCCGCGCGAGCCGGAGCTCGTGACCGTGCCGCCCCGGCCCTACCTGCTGGTCGACGGCGCGGGGGCGCCGGGCGGCCCGGCGTACCTCGCCGCGGTGACGAGCCTGTACCCGGTGGCCTACGCCCTGCGCGCTGCCGTCAAGGAGGCCACCGGCACCGCGTACACGGTGATGCCGCTGGAGGGCCTGTGGTGGGCCGAGGAGATCGAGCGGTTCCGCGAGCTTCCCCGCTCGGCGTGGCTGTGGACGATGATGATCAGCCTGCCCGACGACGTCGCGGCGGTCCCGGCGGCCGACGTCGTCGAGCGCACGACGGCGGCACGCGACCTGCCGGCTCCCGTCCGGCTGGAGCACTTCGGTGACGGCGAGGCCGCCCAGGTGCTCCACGTCGGTCCGTACTCCGCCGAGGCGCCGACGGTGGACGCGCTGCACGCGTTCGTCGCGGCCTCGGGACGAGACCTGACCGGACGGCACCACGAGATCTACCTGTCCGACCCGCGGCGGGTCGCGCCCGAACGGCTGCGGACGATCATCCGGCAGCCGATGACCTCTGGCTGAMTAVDPKKTWRALYSAPREPELVTVPPRPYLLVDGAGAPGGPAYLAAVTSLYPVAYALRAAVKEATGTAYTVMPLEGLWWAEEIERFRELPRSAWLWTMMISLPDDVAAVPAADVVERTTAARDLPAPVRLEHFGDGEAAQVLHVGPYSAEAPTVDALHAFVAASGRDLTGRHHEIYLSDPRRVAPERLRTIIRQPMTSGNANANANANA
AK018_05276297cysM_1COG0031Cysteine synthase BGTGGCCCAGCCCGCGGAGGGCTCGAGGATCCTCGGGATCCGCGCCTGGCCACCTCAGTACGTGCCGAGGATCTTCGACCCGTCGGCGGTGGACCGCACCGTGGAGGTCACCCAGACCGACGCCGAGGCGATGGCCCGGCGGCTGGCCCGCGAGGAGGGCATCTTCGGTGGTGTCTCGGCGGCCGGTGCGTGCTGGACCGCCCTGCAGGTGGCCAAGGAGGTCGAGGACGCGACGATCGTCTTCGTGGTCTGCGACCGCGGCGACCGGTACCTCTCCAGCGGCGTGTTCCCCGCCTGAMAQPAEGSRILGIRAWPPQYVPRIFDPSAVDRTVEVTQTDAEAMARRLAREEGIFGGVSAAGACWTALQVAKEVEDATIVFVVCDRGDRYLSSGVFPAPGPT0002820_1004DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0002820-cysM-K12339NANA
AK018_05277978hypothetical proteinATGAACGAACCCGCTCTGGGACCCAGCCAGGCGTACAAGAACCTCCTGCTGCGCGCACAGGATCTTCGCCCGCCACCTTCACCCACGCCCAACTCCCGTGCACCTCAGATCGTCGGTACCGTCTTCCCTATGTCGGGGGACACCAGTGCTTGGGTCGCAGCGATCGCGGCGTGCGTCGCAGCCGGCGTCGTGATCTGGCAGTCGATCGAAACACGACGCAGTGCCAACGCGTCGAAAGTAGCGGCACAGGTCGCAGCGCAGGGCTTGACCGTCGCTACCGATGCCCTCGCAGTGGCCAAGTCGGAGGAAGGCCACAGCCGTGAACTCGTCGCCGAAGCGTACCGAGCGCGTCTTGACGCCTCGTTGCCGGACATCACGGTGCACGCTGGCGGATCGATACCCGACCGCTGGTTCTGGAGGTCGCAAGACGGGGGTGCGACCTGGAGTGAAGCGGAACGCATGGGCAAATGGCACCTCGACAGTGACGCCAACGAGCTCCTAGGTGTCGTAGGACAAGCTTTCATTGGTAATGGATCAACGAAGCGCGTTGACGTATCGGTCGTTATGCACACAGCGGTCGGGACCAAAATACCCAGCGAACCGTTCACGGTCAGCGTCGAACCAGGCAAAACGCGCAAGGTCCAGTACATGGCGTGGACGTCGGTCCGGGCGTGGGCCGGAATATCCATTGGTGAGCCTGGGGAGATCAGCCAGGGCAACGTGGCAGGGCCACTCGTTCTGGTATACAGCGACCCGACGGACTGCGGTGTAGACAGAACATGGGTGGCTAAGATCTCCGGATCGCCGATATTTGAGTCAGCAATCGATGTCGGCGTGTGGAAGCACTGGGACCTATTCAACCCTGATCTCTACTCACCGGGGTCGCTGCCTCCAGCACTACCACAGCAACAGGCCCCAAGTGAGGCGCGCACCTACTGGCTATCTAGATCGCGACAAGTTCAAATCGGCAAATCGTGAMNEPALGPSQAYKNLLLRAQDLRPPPSPTPNSRAPQIVGTVFPMSGDTSAWVAAIAACVAAGVVIWQSIETRRSANASKVAAQVAAQGLTVATDALAVAKSEEGHSRELVAEAYRARLDASLPDITVHAGGSIPDRWFWRSQDGGATWSEAERMGKWHLDSDANELLGVVGQAFIGNGSTKRVDVSVVMHTAVGTKIPSEPFTVSVEPGKTRKVQYMAWTSVRAWAGISIGEPGEISQGNVAGPLVLVYSDPTDCGVDRTWVAKISGSPIFESAIDVGVWKHWDLFNPDLYSPGSLPPALPQQQAPSEARTYWLSRSRQVQIGKSNANANANANA
AK018_05278528cysM_2COG0031Cysteine synthase BATGGAGGACGTCATCGGCGGCACCCCGCTGGTGCGTCTGCAGCGCCTGCCGGGACCGGAGAACGACCGCCGCGGCAACGTGCTGCTCGCCAAGCTCGAGGGGAACAACCCGGCCGGCTCGGTGAAGGACCGGCCGGCGATCAACATGATCCGGGGCGCCGAGGAGCGCGGGGAGATCGCCCCCGGCGACACTCTGCTGGAGGCCACGTCCGGCAACACCGGGATCGCCTTGGCGATGGCGGCGGCGATCAGCGGCTACCCCCTGGTCATCGTGATGCCTGAGGACGCCTCCACCGAGCGGATCCGGACGATGAAGGCGTACGGAGCCGAGCTGGTGCTCACCTCGGCGAAGGGCGGCATGGAAGAGGCTCGCGACGCCGTGACGCGGATGGAGCGGGAGGGTCGCGGCCGGGTCCTGGACCAGTTCGGCAACCCGGACAACCCGCGTGCCCACGAGGTCGGCACGGGCCCGGAGCTGTGGCGCCAGACCGACGGGCGGATCACGCACTTCGTGTCCGCGATGGCATGAMEDVIGGTPLVRLQRLPGPENDRRGNVLLAKLEGNNPAGSVKDRPAINMIRGAEERGEIAPGDTLLEATSGNTGIALAMAAAISGYPLVIVMPEDASTERIRTMKAYGAELVLTSAKGGMEEARDAVTRMEREGRGRVLDQFGNPDNPRAHEVGTGPELWRQTDGRITHFVSAMAPGPT0002820_1009DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0002820-cysM-K12339NANA
AK018_052791212dapC_2COG0436putative N-succinyldiaminopimelate aminotransferase DapCATGACGTCCGCACCTCGGTGGCGCCAGGTCGCCGCCGCCACCGGCCTGCTGTCCGACGACGGGGCGATCGCGCAGACGATCTTCGCGGAGATGACGGTGCTGGCGAACAGCACCGGCGCGGTCAACCTCGGCCAGGGCTTCCCGGACGTCGACGGCCCGGACTGGATCAAGGAGGCGGCCAAGGCAGCCATCGACGCGGGGCGCAACCAGTACGCGCCCGGCGACGGCGTCCCCGAGCTGCGCCGCGCCATCGCCGACCACCAGCGCCGCCGCTACGGCCTCGACGTCGACCCGGACACCGAGGTGCTGGCCACCACCGGCGCCACCGAGGCCCTGACGGCCGCGATCCTCGCCCTGACCGGCCCCGGCGACGAGGTCATCACCCTCGAGCCGTTCTACGACTCCCACGCCGCCGCCATCGCCATGGCCGGCGCCACGCACGTCCCCGTGCCGCTCACGGCCGACCTGCGCCTGGACGCCGAGGCCCTGCGCGCCGCGGCCACCGACCGCACGGCGCTGATCCTGGTCAACACCCCGCACAACCCGACCGGCACCGTCCTGATGCGTGCCGAGCTGGAGCAGGTCGCCGCCGTCGCCCGCGAGCGCGACACGGTCGTGCTGACCGACGAGGTGTACGAGCACCTGGTCTACGACGACGCCGAGCACGTCCCGATGGCCACCTTGCCCGGCATGGCCGAACGGACCCTCACCGTGTCGAGCTCGGGCAAGACGTTCAGCCTGACGGGCTGGAAGGTCGGCTGGATGCACGGTCCGGCCGAGCTCGTCACCGCGGTGCGCACGGTCAAGCAGTTCATGACCTACACCTCGGGCTCGGCGTTCCAGCCGGCGATCGCCCAGGCCCTCGGGGATGACGAGGCGCCCCGGGCCCTGGCGGCGTCGCTCGCCGAGCGCCGCGACCTGCTGTGCGCGGGCCTGGAGCGGGCCGGGTTCGACGTCGTCGTCCCGCAGGGCACCTACTTCGTGGTGGCCGACGGCGCGGCGCACCTCGAGCGGCTCGGCCTCGCCGACGGCCACGAGCTGTGCCTGCGCCTGCCCGAGCTGGTCGGTGTGGTCGGCGTGCCGGTCTCGGCCTTCTGCCGGGCCGGGTCGACGGCGGCCGAGACGTTGCGCTCGCGCGTCCGGTTCACGTTCGTCAAGCGTCCCGAGGTGCTGCGCGACGGCGTGGAGCGGCTGACCGCGCTGACCCGCTGAMTSAPRWRQVAAATGLLSDDGAIAQTIFAEMTVLANSTGAVNLGQGFPDVDGPDWIKEAAKAAIDAGRNQYAPGDGVPELRRAIADHQRRRYGLDVDPDTEVLATTGATEALTAAILALTGPGDEVITLEPFYDSHAAAIAMAGATHVPVPLTADLRLDAEALRAAATDRTALILVNTPHNPTGTVLMRAELEQVAAVARERDTVVLTDEVYEHLVYDDAEHVPMATLPGMAERTLTVSSSGKTFSLTGWKVGWMHGPAELVTAVRTVKQFMTYTSGSAFQPAIAQALGDDEAPRALAASLAERRDLLCAGLERAGFDVVVPQGTYFVVADGAAHLERLGLADGHELCLRLPELVGVVGVPVSAFCRAGSTAAETLRSRVRFTFVKRPEVLRDGVERLTALTRPGPT0020025_98DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020025-ybdL-K14287NANA
AK018_05280627argO_2COG1279Arginine exporter protein ArgOGTGCTCGACGTGCTGGTCTTCCTCGCGGGCTTCGGGCTCGGTCTGTCCCTGATCCTGGCCATCGGCGCCCAGAACGCGTTCGTGCTGCGCCAGGGTGTGCGTCGCGAGCACGTCGGCGTCGTCGTGCTGGTCTGCGCTGCCTCGGACGCCGTGCTGTACGCCGCCGGGGGAGCGGGCCTCGGGGCCCTCGTCGAGCAGCACCCCGCGGTGGTCGACGTCGCGCGGTGGGCCGGGGCCGCCGTCGTGCTCGGGTACGGGGCGCTCGCGGCGCGGCGCGCCTGGCGCGGCGAGGAGGGGCTGACCGCCGCGGGGGAGGCGACCGTCGACGACGCCGGGCGTCGGCTGCGCCCGGTGCTGCTGACGACCCTCGCGCTGACGTGGCTGAACCCGCACGTCTACCTCGACACCGTGGTGCTCCAAGGGTCGGTGGCGGCCACCTACGGCGACGACCGGTGGCTGTTCAGCGCGGGCGCCGTGGTCTCGAGCCTCGTGTGGTTCAGCGCCCTCGGGTACGGCGCGCGGCTGCTCGCCCCGCTGCTGCGGCGGCCGGGAGCCTGGCGGGTGGTCGACGGCGTCATCGCGCTCATCATGCTCGCCGTGGCGGTCTCTCTGGTCGCCGGTCGCTGAMLDVLVFLAGFGLGLSLILAIGAQNAFVLRQGVRREHVGVVVLVCAASDAVLYAAGGAGLGALVEQHPAVVDVARWAGAAVVLGYGALAARRAWRGEEGLTAAGEATVDDAGRRLRPVLLTTLALTWLNPHVYLDTVVLQGSVAATYGDDRWLFSAGAVVSSLVWFSALGYGARLLAPLLRRPGAWRVVDGVIALIMLAVAVSLVAGRPGPT0020651_278DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020651-lysE|argO-K06895NANA
AK018_05281921COG0583putative HTH-type transcriptional regulatorATGCGATGGGAGTCCGGACAGCTCGCGGCCCTGGCGGCGGTCGTCAGCGAGGGGTCGTTCGACGCCGCCGCCCGTGTCCTGCACGTCACGCCGTCGGCGCTCAGCCAGCGTGTGCGCGCCCTGGAGAGCGCCGCGGGCGCCGTGCTGGTCCAGCGCACCCGCCCGGTGCGCCCCACCGGTCCGGGTCGGACCCTGCTGCGTCTCGCCCGGCAGGTCGACCTGCTCGGCAGCGAGGCCGCCGCGGAGCTCGGTCCCGCCGACGACGGCGACCGCCCGGTGACCGTCCCGCTCGCGGTGAACGCGGACTCGCTGGCGACGTGGCTGGTGCCGGCGCTGGCCGCCGTCGACGGCGTCGTGTTCGACCTGCACCTGGCCGACCAGGACCGCACCGTCGACCTGCTGCCGGCCGGGGAGGTCATGGCGGCCGTGACGTCCCAGCGGACGCCGGTGCAGGGCTGCACCGCGGTGCCGCTCGGCGTGACGCGCTACCAGCCGCGGGCCGACCGGGAGTTCGCGGCCCGGTGGTTCCCGCACGGGCCGACGCCCGAGGCGCTGGACGCCGCGCCCATGGTCGTCTTCGCCCGCACCGACGACCTGCAGGACGCCTGGCTGCGCCGGGTCGCGGACGCCGCCGGCACCGCCGTGCCCGACCCGCCGCGCCACCACGTGCCCGCCACGGCCGACTTCCTCGCCGCCGTCCGGCACGGGCTCGGCTGGGGCATGTGGGGGCCGCTCCCCCGCCCGGGCGCCCGGTTCGACGTCCTGGAGGCCGGCGACCCGGACGTCGTCGCGCTGAGCGACGACACCGTGGACGTCCCGCTCCACCTGCAGCAGTGGCGGCTGCGCTCGACCGTGCTGGACCGGGTCGCCGCGGCGATCCGCACCGCGGCGTCGCGGTCGCTGCCGCTCGCACCCGGCTGAMRWESGQLAALAAVVSEGSFDAAARVLHVTPSALSQRVRALESAAGAVLVQRTRPVRPTGPGRTLLRLARQVDLLGSEAAAELGPADDGDRPVTVPLAVNADSLATWLVPALAAVDGVVFDLHLADQDRTVDLLPAGEVMAAVTSQRTPVQGCTAVPLGVTRYQPRADREFAARWFPHGPTPEALDAAPMVVFARTDDLQDAWLRRVADAAGTAVPDPPRHHVPATADFLAAVRHGLGWGMWGPLPRPGARFDVLEAGDPDVVALSDDTVDVPLHLQQWRLRSTVLDRVAAAIRTAASRSLPLAPGNANANANANA
AK018_052821350tagU_8Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUGTGAAGGAATCCAGTCCCCGGCACGCGGGACACCATGCCGGGCATCGTGTCCTGCGCTGGGTCGCCCTCGTGCTCACCGGTGTGCTGGCCTTCGTCGGCACCGCCTCCGTCGCCGCCTACGTCGACCTGCAGTCGCAGATCGAGGTGTCCGACGTCGACGCGCTGATCGGCCGGGACCGGCCGGCCCCGCAGCCGCAGGCCGAGAGCTCCGAGGAGCCCGCCGACCCCAGCGACCCCTTCGCCGGCCAGGACCGGAACATCCTCGTGATGGGCACCGACTACCGCGACGCCGAGAACGCGGAGATCGCCGGCTCCGGCGACGAGTTCCACTCCGACACGACCCTGCTGGTGCACATCAGCGGCGACCGGTCGCGCATCGAGGCGGTCTCGATCCCGCGCGACTCGCTCGTCGACATCCCGTCCTGCCCGCGGCCCGACGGCAGCTCGACGGCGCCGCACAGCAACGCGATGTTCAACATGGCGTTCGCGCTGGGCGGTGGCCCCGAGCAGGACGTCACCGGCGCCGCGGCCTGCACGATCCTGACCGTCGAGTCGCTGACCGGCCTGACGATCGACGACCACGTCGTGGTGAAGATGACCGGCGTGGTCGACATCGTCGACGCGCTCGGCGGCGTGCCGATGTGCCTGCCCGAGCCGGTCGTGGGCGACTCCCGGTACAGCGACCTCGACCTCGCCGCGGGACGGCAGGTGCTCGATGGCGAGACCTCGATCCAGTTCCTGCGCGTCCGCAAGGGCGAGGGGATGGGTCTCGAGCTCGGCAGCGACCTGCAGCGCATCGAGCGGCAGCAGGCGTTCGTCGACTCCATGCTCCGCGAGGTCCTGGCCCAGAACGTCATCACCGACACCCCGCAGCTGTACCGCATGGTCCGTGCCGCCCTGCAGGCGATGTCCACCAGCCCGGATCTGGCCAGCCCCAGCGCGCTGGCCGGGCTGGCGTGGAGCCTGCGCGACGTCGACCCGTCGAGCATCGTCTTCGAGTCCGTCCCGGTGGCGGACGCCCCCACCGACTCCAACCGCGTCGTGTGGACCTGGGAGGCCGCCGAGCTGTGGGAGAGGTTCGCCGACGACGTCCCGCTGCACGGCGAGCCGTCCCCGAGCCCCAGCGCGTCCGCCCAGGACGGTCAGGTCGAGGCCGGCCCGGACGGCGGTGACGGTGCCGAGGGCTCGGCCGACGCCCAGGGCTCGGCCGACGCCGAGGGCTCCGACGCGGGCGAGGAGGCAGGCAGCGCTTCCGGGGGCGGCGGCCAGGGCGGTTCGGTGAGCACCGACGGCGGCGACGGGCCGAGCCCGTCGCCGAGCCCGTCGCTGCTGCCCGGCGTCTGCGGCTGAMKESSPRHAGHHAGHRVLRWVALVLTGVLAFVGTASVAAYVDLQSQIEVSDVDALIGRDRPAPQPQAESSEEPADPSDPFAGQDRNILVMGTDYRDAENAEIAGSGDEFHSDTTLLVHISGDRSRIEAVSIPRDSLVDIPSCPRPDGSSTAPHSNAMFNMAFALGGGPEQDVTGAAACTILTVESLTGLTIDDHVVVKMTGVVDIVDALGGVPMCLPEPVVGDSRYSDLDLAAGRQVLDGETSIQFLRVRKGEGMGLELGSDLQRIERQQAFVDSMLREVLAQNVITDTPQLYRMVRAALQAMSTSPDLASPSALAGLAWSLRDVDPSSIVFESVPVADAPTDSNRVVWTWEAAELWERFADDVPLHGEPSPSPSASAQDGQVEAGPDGGDGAEGSADAQGSADAEGSDAGEEAGSASGGGGQGGSVSTDGGDGPSPSPSPSLLPGVCGNANANANANA
AK018_052831239bcr_2Bicyclomycin resistance proteinATGGCGGCCATGCCCGAGAAGACCGCCGTACCCCAGCGCGCCCGTTCGTCGTTCCGCTGGGTCGTCATGCTCGGTGCGCTGGCGGCGATCCCGGCCTTCACGGTCGACATGTACCTGCCCTCGCTGCCCGAGGTCGCGGCCGACCTCGGGTCCAGCTCGTCCTTCGCGGCGCTGTCGGTCTCGATCATGCTCGTCGGCGGTGCCGCCGGCCAGCTCGTCATCGGGCCGCTGTCCGACCGGTACGGACGCCGCCGCCCCCTGATGGTCGGGCTGGGCATGCACGTCGTCATCTCCCTCCTCTGCGCCGTCGCGCCGAGCATGGGCGTCCTCGTCGTGCTCCGGCTCCTCCAGGGGTTCTTCAACGCCGCCTGCGGCGTCGCGGCCATGGCGATCGTGCGGGACCGGTTCGTCGGTGCCGAGGCCGCGCGGATCCTCTCCCGCCTCATGCTCATCATCGGGATCGCCCCGCTGCTCGCCCCGACCTTCGGCTCCGCCGTCGCCGAGGTCGCCTCGTGGCGCTGGGTGTTCGGCTTCCTCGCCCTGATCGGCGTGACGATGGGCGTCATCGTGTGGCGGTTCCTCCCCGAGACCCACCCCGCGCAGCGTCGGGCCACGGGGGGCGCGCGATCCGTCGTCGGCGGCTACGGCCACCTCCTGCGCGACCGGAACTTCATGGCCCTCGCGCTGCTCCCCGGGCTCGGGATGGCGGTGCTCATGAGCTACGTCGTGACGTCGCCGTTCGTCTTCCAGGAGGTCTACGGGCTCAGCCACGGCCAGTTCTCCCTGCTCTTCGCGCTCAACGGGGTGGGGCTCGTGGCGTCCGCCCAGATCAACGCGGCGCTCGTGCGGCGGGTGGCCCCGATCCGGATCCTGCGCACCGCGCTCGTGCTGCAGGGTCTCTTCGCCGTCGTCCTGGTCGTCGTGGCCGTCACCGGGGCCGGTGGCCTCGTCGGGCTGCTCGTCGCCCTGTGGTGCGTGCTGGCCTTCACCGGGCTCATCCCCGCCAACGCCTCGGCCATCGCGCTGTCCCGGCACGGGGAGCGGGCCGGGACGGCTGCGGCGGTCATCGGCGCGGTGCAGTCCGGCGTCGCCGGCGTCGTCTCGCCGCTCGCCGGCGCGCTCGGCGGTGACGCGGTCGCGATGACCGCCGTCATGCTCGCGGCGTGGACCGCCGCGATCGTCGTCCTGGCGTTCGCCACGCCCGCCTTCCGCCGCGGGGGCTGGGTCCAGCTCGCCTGAMAAMPEKTAVPQRARSSFRWVVMLGALAAIPAFTVDMYLPSLPEVAADLGSSSSFAALSVSIMLVGGAAGQLVIGPLSDRYGRRRPLMVGLGMHVVISLLCAVAPSMGVLVVLRLLQGFFNAACGVAAMAIVRDRFVGAEAARILSRLMLIIGIAPLLAPTFGSAVAEVASWRWVFGFLALIGVTMGVIVWRFLPETHPAQRRATGGARSVVGGYGHLLRDRNFMALALLPGLGMAVLMSYVVTSPFVFQEVYGLSHGQFSLLFALNGVGLVASAQINAALVRRVAPIRILRTALVLQGLFAVVLVVVAVTGAGGLVGLLVALWCVLAFTGLIPANASAIALSRHGERAGTAAAVIGAVQSGVAGVVSPLAGALGGDAVAMTAVMLAAWTAAIVVLAFATPAFRRGGWVQLAPGPT0029005_1882DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
AK018_05284783yedK_2COG2135SOS response-associated protein YedKATGTGCGGCCGCTTCGCGTCCTTCACCGACGCCCAGGACCTCGCCGACGAGCTCGCCGTCGCCGAGATCGCCGAGGACGCCCGCCTGCTCGGGCCACGCTGGAACGTCGCCCCGACCGACCCCGTGCGGATCGTCGTCGAGCGACCCCGGCGCGAGCCTCTGCCCGACGGCGGCACCACGGCAGGCGAGATCACCCGCTCCCTGCAGGTCGCCCGGTGGGGCCTGGTGCCGTCCTGGGCGAAGGACCCCGGGATCGGTCCGCGCATGATCAACGCCCGCCGCGAGACCCTGCTCGACAAGTCCGCGTTCGCCAGGCCGCTGGCCGTCCGGCGCTGCCTCGTCCCGGCCGACGGGTACTACGAGTGGCGCACGCTCGACGCACCCGCCGGCGCCCGGAAGACCCCCAAGCAGGCGTACTGGATCCACCCCGCCGACGACGGCGTCGCGGCCTTCGCCGGGCTGTACGAGTTCTGGCGCGACCGCAGCCGCGCCGACGACGACCCCGCACGGTGGCTGGTGTCCACCACCGTGATCACCACGGCCGCGTCCGACGGGCTCGAACGCATCCACGACCGCATGCCCGTGGCCCTGCCCCGCGCGGCGTGGGACTCCTGGCTGGACCCGTCGGTCGGCGCGCAGGACGCGAACGCCCTGCTCGAGGACGCGTCCGCACCCATGAGCACCTACCCGGTCGGCGCACGGGTCGGCAACGTCCGCTTCGACGACGCGGGGCTCGTCACGCCCGACCCCGACCCCCAGGACCCCGACCTCGTGCTGCTGTGAMCGRFASFTDAQDLADELAVAEIAEDARLLGPRWNVAPTDPVRIVVERPRREPLPDGGTTAGEITRSLQVARWGLVPSWAKDPGIGPRMINARRETLLDKSAFARPLAVRRCLVPADGYYEWRTLDAPAGARKTPKQAYWIHPADDGVAAFAGLYEFWRDRSRADDDPARWLVSTTVITTAASDGLERIHDRMPVALPRAAWDSWLDPSVGAQDANALLEDASAPMSTYPVGARVGNVRFDDAGLVTPDPDPQDPDLVLLNANANANANA
AK018_05285579dapH_22,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferaseATGACCGCGACCATCGACGACCTCCTCACCGCGCTGCGGGCCGGGAAGACCATCACCGGCGGCTCACCCCTGCACGAGGTGATGCACCGAGCCAGCCAGGAGGCCATGCTCGTCACCGCCGAGCTCAACGGCCCGTACCAGCCGCCCGAGCGTGTCCGCGAGCTGCTCTCCCGACTGACCGGCGCACCCGTCGACGACTCCGTCACGCTGTTCCCGCCGTTCACCGCGGACTTCGGCCGAGGCATCCGCCTCGGCAAGCGGGTGTTCATCAACTCCGGGTGCAGGTTCCAGGACCAGGGCGGCGTGACCATCGGGGACGACTGCCTCGTCGGGCACAACGCCGTCCTGGCGACCCTGAACCACGACCTCGACCCGAGCCGCCGGACCGATCTGCACCCCGCTCCCGTCGTGCTGGGGCGCAACGTCTGGGTCGGCGCGAACGTCACGATCCTGCCCGGGGTGACCGTCGGCGACGACGCGGTGATCGGTGCCGGCTCGCTCGTCACCAAGGACGTCCCGTCCGGCGTGGTCGTCGTCGGGTCGCCGGCGCGGGTCGTCCGCTCCGTGCAGCCCGGCTGAMTATIDDLLTALRAGKTITGGSPLHEVMHRASQEAMLVTAELNGPYQPPERVRELLSRLTGAPVDDSVTLFPPFTADFGRGIRLGKRVFINSGCRFQDQGGVTIGDDCLVGHNAVLATLNHDLDPSRRTDLHPAPVVLGRNVWVGANVTILPGVTVGDDAVIGAGSLVTKDVPSGVVVVGSPARVVRSVQPGPGPT0018611_770DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0018611-maa|nodL-K00661NANA
AK018_052861044putative proteinGTGACCAGCCAGACCCCCCAGGAACCGCGCGAGCGCGCTGCTCAGGAACGTGCCGACACGGCGCGCCGCACCGACGAGGCGATCCTCGGCGGCCCCCGCATCTACACGTTCGCCGACCTCGTGGAGGGGACGGGGCTGTCCCCGGAGTTCGTGGAGAACTACTGGCGCTGGCTGGGGCTGCCGGTGACGCACCCCGCCGAGGCGCGGTTCACCGCGGCCGACCTGGAGTCGCTGCGGGAGATCGGCGAGCTCATCGCGGCCGGCGAGCTGGACCAGCAGGCGCAGATGACGCTGGTGCGCTCGCTGGGGCACACCTCGGACCGGCTCGCCCTGTGGCAGGTGGAGGCGTTCGTCGAGCACCTGGGGCGGCGGTTCGACCTGGACGACGTCAGCGCCCGGCTGGCGGCGCTGGACCGCATCCCGGGGTTCGCGGACGTGCTGGCCCGCCAGCTCGAGCACGCGTGGCGTCGCCAGCTCGCGGCGCTGATGGGCCGGTTCGCCACCGAGTTCGGGGGCTCGCACGGCACCGAGCTGCCCGGCGACCAGCTGCCGCTCCGCCGCGCGATCGGGTTCGCCGACATCGTGTCCTTCACGAAGCGCACGGCCGGGCTCGGTTCGCAGGAGCTGTCCGAGTACGTCCAGCTCTTCGAGTCCCGCGCCCGCGACGTCATCACCGAGGCGGGCGGCCGCGTGGTCAAGACGATCGGCGACGCGGTGCTGTTCGTGGCCGACGACGTCGCCACCGGGGCCGAGTGCGCGCTCGGGCTGGCCGCCCCGTACTCCAGCGAGGAGGAGATCCCGGTGCGGGTCGGCTTCGTGTGGGGCCGGGTGCTGTCCCGCTTCGGCGACGTGTTCGGGCCGGACGTCAACCTGGCCTCTCGCATCTCGGAGCTGGCCGAGCCGGCGTCCGTGCTCGTCGACCCGCCGACGGCGGCGCTGCTCAGCTCCTCGGCGAAGTACGCCCTGACGGCCCAGCCCCCGCAGGACGTGCAGGGGCTGGGGGAGATCACGCCGGTCCGCCTGCAGCGGGCCTACACGGGGTAGMTSQTPQEPRERAAQERADTARRTDEAILGGPRIYTFADLVEGTGLSPEFVENYWRWLGLPVTHPAEARFTAADLESLREIGELIAAGELDQQAQMTLVRSLGHTSDRLALWQVEAFVEHLGRRFDLDDVSARLAALDRIPGFADVLARQLEHAWRRQLAALMGRFATEFGGSHGTELPGDQLPLRRAIGFADIVSFTKRTAGLGSQELSEYVQLFESRARDVITEAGGRVVKTIGDAVLFVADDVATGAECALGLAAPYSSEEEIPVRVGFVWGRVLSRFGDVFGPDVNLASRISELAEPASVLVDPPTAALLSSSAKYALTAQPPQDVQGLGEITPVRLQRAYTGPGPT0021560_5988DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021560-cyaB|gidA-K01768NANA
AK018_05287873birA_2COG0340Bifunctional ligase/repressor BirAATGACGCGCCCACCTCTCGACGTCGCCGCCCTGCGGCCCGCCCTGCTCGAGCCCACCGGACCCCTCGCCCGGGTCGACGTGGTGGAGGCCGCCGCCTCGACCAACACCGACCTCGTCGCCCGGGCGCGGGCCGGCGCCGAGATCCCGGCGGCGCTGGTCGCCGAGCACCAGCAGGCCGGGCGTGGGCGCGCCGGCCGGACGTGGGAGACGCCGGCCCACGCCGCGCTGACGGTCTCGTTCCTGCTGAGACCTCACGTCCCCACCGACGAGCTCGGGTGGATGCCGCTGCTGACCGGGCTCGCGCTGGCACGCACCCTGCGCGCCGAGGGGGTGCGGGCCCAGGTCAAGTGGCCCAACGACGTGCTGCTCCCGGCCCCGACGGCGGTCGAGGGGCTGGGCCGGTTCCGCAAGGTCGCCGGCGTGCTCGCCGAGGTGGTGCCCGACGCCGCGCCCGTCACCGCACCCGGCGATCCCGGGGACGCCGACGACGCACCCGTCGTCGTGGTCGGCGTGGGGCTCAACGTGGACCAGCGCGCCGAGGAGATGCCCGTGCCGACGGCGACCTCCGTGGCGCTCGCGGGCCGGGACCTGGACCGCGGGGAGCTGCTCGTGGGCCTGACCGGTGAGCTCTTCACGCTCGTGGCCCGGTGGGAGGCCGCCGGCGGGGACGCGGTCGAGGCGGGTCTCGCCGGCGAGTACGCCGAGGTCAGCGCGACCCTCGGCCGGACGGTGCGCGCCGAGCTCGCGGGCGGGGCGGGGTCCGTCGAGGGAGAGGCCGTCCGGGTGGCCGACGACGGCGCCCTGGTGCTGGCGACCGCGGCCGGCGAGCGCGTGGTCACCGCGGGCGACGTGCACCACCTGCGGCGCGTCTGAMTRPPLDVAALRPALLEPTGPLARVDVVEAAASTNTDLVARARAGAEIPAALVAEHQQAGRGRAGRTWETPAHAALTVSFLLRPHVPTDELGWMPLLTGLALARTLRAEGVRAQVKWPNDVLLPAPTAVEGLGRFRKVAGVLAEVVPDAAPVTAPGDPGDADDAPVVVVGVGLNVDQRAEEMPVPTATSVALAGRDLDRGELLVGLTGELFTLVARWEAAGGDAVEAGLAGEYAEVSATLGRTVRAELAGGAGSVEGEAVRVADDGALVLATAAGERVVTAGDVHHLRRVPGPT0022055_2845DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022055-birA|bpr-K03524NANA
AK018_052881578accD5_2COG4799putative propionyl-CoA carboxylase beta chain 5GTGAAGACCACTGCCGAGAAGCTCGCCGAGCTCGACCGACGCCGCGCGGCCGCGGTCACCGAGCCCGAGGAGAACGCCCGGACCAAGCAGCACGCGCGCGGCAAGAAGACCGCCCGCGAGCGCATCGACGACCTGCTCGACGAGGGCAGCTTCACCGAGCTGGACGCCCTCGCGATGCACCGCAGCCGCAACTTCGGCATGGACGCCAAGCGGCTGCCGGGTGACGGCGTCGTCGTCGGCCACGGCACCATCGACGGCCGCCAGGTCTGCGTGTTCTCCCAGGACTTCACCGTGTTCGGCGGGTCCCTCGGCGAGGTGCACGGCGAGAAGATCGCCAAGGTCCAGGACCTCGCGCTGCGCATCGGCGTGCCGATCATCGGCATCTCCGACGGCGGCGGCGCCCGCATCCAGGAGGGCGTGGCCGCGCTGACGCAGTTCGCCGAGATGTTCCGCCGCAACGTCGCGGCCTCCGGCGTCGTCCCGCAGATCTCGCTCATCCTCGGCCCGAGCGCCGGCGGGGCGGTCTACTCCCCCGCCCTGACCGACTTCGTCGTCATGGCCGACCAGACGTCGAACATGTTCATCACCGGCCCGGACGTCATCAAGACCGTCACCGGCGAGGACGTCGACTTCGAGACGCTCGGCGGCGGGCACACGCACAACGCCACCTCCGGCGTCGCGCACTACCTGGGCGCCGACGAGGACGACGCGATCGACTACGTGCGCCACCTGGTCGGCTACCTGCCGCAGAACAACCTCTCCGACGCCCCCACGTTCGCGCCCGAGGCGGAGACCGACCTGGACGTCACCGCCGACGACGAGGTGCTGGACACGATCGTGCCCGACGGCGACAACCAGCCGTACGACATGCGCGCCGTCGTCGAGACCGTGCTCGACCCGGACTCGTTCCTCGAGGTCCAGCCGCTGTACGCGCAGAACGTGCTCGTCGGGTTCGGGCACGTCGAGGGCCAGAGCGTCGGCATCATCGCCAACCAGCCGCAGTCGATGGCCGGCACCCTGGACATCGCCGCCTCGGAGAAGGCCGCGCGGTTCGTGCGCACCTGCGACGCGTTCAACATCCCGGTGCTGACGTTCGTCGACGTGCCCGGGTTCCTGCCCGGCGTCGGCCAGGAGCACGACGGCATCATCCGCCGCGGCGCCAAGCTCATCTACGCCTACGCCGAGGCCACGGTCCCGCTGGTCACCGTCATCACGCGCAAGGCCTACGGCGGCGCGTACATCGTCATGGGCTCCAAGCAGCTCGGCGCGGACGTCAACCTCGCCTGGCCGACGGCGCAGGTCGCCGTCATGGGCGCCTCCGGGGCGGTGAACATCCTGCACCGCCGGGCGCTGAAGGCCGCCGGCGAGGACGGCCGGGACGTCGAGGCGGAGCGCAGCCGGCTGACCGACGAGTACACCGAGGCCATCGTCAACCCGTGGGACGCGGCCGAGCGCGGCTACGTCGACGCGGTCATCCGGCCCTCCGAGACCCGCGTGCAGGTGGTCCGGTCGCTGCGTGCCCTGCGCACCAAGCGCGCCGGCCTCCCGCCGAAGAAGCACGGCAACATCCCGCTGTGAMKTTAEKLAELDRRRAAAVTEPEENARTKQHARGKKTARERIDDLLDEGSFTELDALAMHRSRNFGMDAKRLPGDGVVVGHGTIDGRQVCVFSQDFTVFGGSLGEVHGEKIAKVQDLALRIGVPIIGISDGGGARIQEGVAALTQFAEMFRRNVAASGVVPQISLILGPSAGGAVYSPALTDFVVMADQTSNMFITGPDVIKTVTGEDVDFETLGGGHTHNATSGVAHYLGADEDDAIDYVRHLVGYLPQNNLSDAPTFAPEAETDLDVTADDEVLDTIVPDGDNQPYDMRAVVETVLDPDSFLEVQPLYAQNVLVGFGHVEGQSVGIIANQPQSMAGTLDIAASEKAARFVRTCDAFNIPVLTFVDVPGFLPGVGQEHDGIIRRGAKLIYAYAEATVPLVTVITRKAYGGAYIVMGSKQLGADVNLAWPTAQVAVMGASGAVNILHRRALKAAGEDGRDVEAERSRLTDEYTEAIVNPWDAAERGYVDAVIRPSETRVQVVRSLRALRTKRAGLPPKKHGNIPLPGPT0001712_887DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_PROPIONATE|PROPANOATE_UTILIZATION,PGPT0001712-pccB-K01966NANA
AK018_05289546hypothetical proteinATGAGCCACGAGGACGCCACCCACGGTCCGGCGCCGCTGGGCGACGTGGACCCCGAACCGATGCACCGCGCGGTGGAGACGCTCGCCGCGGCGCTGCACCAGTACGTCGACGCCGCCGTGGGGGTGCGGGCCGAGTTCGGGGCGACCGAGGCGGACGAGGACCCGCGCATCCTCGCGCTGGAGAACCGGGTCGGCACGCTCAACGCCTCGCTGTTCGACACCCTGCACGACGCGCTCGGCATGCACCCGGACCTGACGACGTCGGTGTGGGAGCCCGAGCCCGGCAGCCGGCCGGAGGAGAGCGGTGAGGAGGACCTGCCCGAGGGCACGATCTCCGCGGAGGTGTTCTACCTCGGGTTCGTCGTCGCGGACCCGCCGCCGGGAGCCTCGATGACGCTGAACGGCGTCATCGAGCTGCTGGACGAGGCCGGTCAGGACGCCGCGGCACGGATGGCCGAGGGCGGGTACCAGGTGATGGAGTGGGCCGCCTCGCGCGGTCTGGCACCGGGTTTCGGCAACGACCCCGACGACGAGGAGGACGCATGAMSHEDATHGPAPLGDVDPEPMHRAVETLAAALHQYVDAAVGVRAEFGATEADEDPRILALENRVGTLNASLFDTLHDALGMHPDLTTSVWEPEPGSRPEESGEEDLPEGTISAEVFYLGFVVADPPPGASMTLNGVIELLDEAGQDAAARMAEGGYQVMEWAASRGLAPGFGNDPDDEEDANANANANANA
AK018_05290240hypothetical proteinATGACCCCGCAGGTGCGCGTGGTGCGCGGAGCACCGGACGACCTGGAGGTGGCCGCGCTCGTGGCCGGGCTGGCGGCCGTCACCGCGGACGACGAGCTGCCCGACGACGTCGCGCCCGTGGACGAGTGGACCAACCACGCCCGCAACCTGCGCGGCAACGGGGCGGCCACGGCCCGCAGCTTCGGGGGCCGGGCCGGCCGCCACAACATGGACGCCTGGCGCTGGAGCTTCCGGTCGTGAMTPQVRVVRGAPDDLEVAALVAGLAAVTADDELPDDVAPVDEWTNHARNLRGNGAATARSFGGRAGRHNMDAWRWSFRSNANANANANA
AK018_05291555hypothetical proteinGTGAGCGTGCGGTGGCAGCAGGTCGACTCCGTCGCCGACGTCGAGGCGCCGCTGGGCGACCTGCCCGACCCGGAGAAGCCCGGCTGGGTGCGCCGGTGGCTGTGGGCACCCGCGCTGGCGGCCTCCGTCGCCGTCTACGTCACCCAGCGGCTCGTCGAGAACCCCTCGGGCGAGCTCGAGATGTGGCTGATGCTCGCCCTGCTGGCCCTGCTCATGGTCACCGCCGTCGCGGCGCTGGTCCGCTACCGCGACGACCAGCACGTCGCCCGCGCGACCCAGGACGTCGCGGCCCTGCGGCGCGACGCCCGGTCCACGACGGGGTCGGTGACCGTCTCCGAGCGACCCGTCGGCGACGGCGTCATGCTGCGGGGGCTGCTCACCTACCCCCGCGAGGACGACACCGCCGAGGACACCTGGTCGCTGCTCGTGGCCGACGGCGACGCCCCGGGCCCCCGCCCCGGCGACCCGGCCGCCGTGTGGTGGGCCCCGGGCTCGGACACCGTCGTGGCGCGGTACCACCGCGGCTGGGCGGACGAGCTGCGCCGTCGGGCCTGAMSVRWQQVDSVADVEAPLGDLPDPEKPGWVRRWLWAPALAASVAVYVTQRLVENPSGELEMWLMLALLALLMVTAVAALVRYRDDQHVARATQDVAALRRDARSTTGSVTVSERPVGDGVMLRGLLTYPREDDTAEDTWSLLVADGDAPGPRPGDPAAVWWAPGSDTVVARYHRGWADELRRRANANANANANA
AK018_052921755hypothetical proteinGTGACCCACGACACCCCCGGCGCCCCGACCCCGAGCGCCGGCGCCACCGCGCCCCGCACCCCCACCGCCCTCGACGCCGCAGCCGACGCCTACGTCCGCCGCTTCGCCGCCCTGGAACCGATCGCCGCGTCCTTCATGGGCCTGCCCGGGCACGACCACGAGCTGCCCGACCTGTCCCCCGCCGGTCACGAGGCGCGGGCGGACCTGGACCGGGCGCTGCTGCGCGAGCTGGACGAGCTCGAGGCCGCGGGCACGACGCCCGTCGACGACGTCGACCGGGTCACCCTGGCCGCGATGCGCGAACGCATCGGCCTGCAGCTCGAGCTGCACGAGGCCGGTGAGCCCCAGGCGAGCCTGAACAACATCGAGTCGCCGGTCCAGCAGCTGCGCGACCTGTTCGACGTCGTCCCCACCGGGACCGTCGAGGCGTGGGAGAACATCGCCGCGCGCCTCAACGCCGTCCCGGAGGCGCTGGCCGGCTACACCGTGTCGCTGCGCCGGAGCGCCGAGCAGGGCCGCGTGGCAGCGATCCGTCAGGTGCGCGCCGCCACCTCCCAGGCCCGCGACCTCGCCGGTCCGGAGTCGACGTTCACCGCCCTGGTGCGGGGCGACGACGCCGCGCGCGTCCTGGACGACTCGGCCGCCTGCAGCCTCGTGCGGGCCGAGCTGGAGCGGGGTGCCGCCGCCGCGTGCGCGGCCTACGGCGAGCTGGCGGACTTCCTGGAGCACGAGCTGGCCCCGCAGGCGCCGGAGCAGGACGCCGTGGGCCGCGAGCGCTACGCCCTGTTCTCCCGCGAGTTCCTCGGCGCCGAGGTCGACCTGGACGAGACCTACGAGTGGGGACTGGCCGAGCTGGCCCGCATCGTCGCCGAGCAGGAGGCGGTCGCCCGCGAGATCGCCGGCCCCGACGCCACGGTGGCCGACGCCGTGGCGGTGCTGGACGCCGACGCCGACCGGCAGCTGCACGGGACCGACGCGCTGCGCGCCTGGATGCAGACCACCGCCGACGCGGCGATCGAGGACCTGGCCGGCACCCACGTCGACATCTCCGGGCCGGTGCGCACGATCGAGTGCCGCATCGCCCCGACCCAGACCGGCGGCATCTACTACACGCCGCCCAGCGACGACTTCTCGCGCCCGGGCCGCATGTGGTGGTCGGTGCCGCCGGGGGTCACCGAGTTCACCACCTGGCGCGAGACCACCACCGTCTACCACGAGGGCGTCCCCGGCCATCACCTGCAGTGCGCCGCCGCGGTCTCGGCCAAGGACAGCCTGAACTCCTGGCGCCGGCTGGCCTGCTGGGTCTCCGGCCACGGCGAGGGCTGGGCGCTCTACGCCGAACGCCTCATGGCCGACCTCGGCCACCTGGACGACCCGGGCGACCGGCTCGGGATGCTCGACGCCCAACGCCTGCGCGCGGCCCGCGTCGTCCTCGACCTGGGCGTGCACCTGGGCAAGCCGTGCCCCGAGGAGTGGGGCGGCGGCACCTGGGACGCCGACAAGGCCTGGGGTTTCCTGACCTCGAACGCCGACATGGACGCCGAGTTCCTGCGCTTCGAGCTGGACCGCTACCTCGGCTGGCCGGGCCAGGCGCCGTCGTACAAGGTCGGGCAGCGGCTGTGGGAGCAGATCCGCGACGACGCCCGCGCGGCCGCAGAGGCGCGCGGCGAGGAGTTCGACCTGCGCGCGTTCCACGCCCGGGCGCTGGGCCTCGGGTCGGTCGGGCTGGACGTGCTGCGCGCGGCGCTCGCCTGAMTHDTPGAPTPSAGATAPRTPTALDAAADAYVRRFAALEPIAASFMGLPGHDHELPDLSPAGHEARADLDRALLRELDELEAAGTTPVDDVDRVTLAAMRERIGLQLELHEAGEPQASLNNIESPVQQLRDLFDVVPTGTVEAWENIAARLNAVPEALAGYTVSLRRSAEQGRVAAIRQVRAATSQARDLAGPESTFTALVRGDDAARVLDDSAACSLVRAELERGAAAACAAYGELADFLEHELAPQAPEQDAVGRERYALFSREFLGAEVDLDETYEWGLAELARIVAEQEAVAREIAGPDATVADAVAVLDADADRQLHGTDALRAWMQTTADAAIEDLAGTHVDISGPVRTIECRIAPTQTGGIYYTPPSDDFSRPGRMWWSVPPGVTEFTTWRETTTVYHEGVPGHHLQCAAAVSAKDSLNSWRRLACWVSGHGEGWALYAERLMADLGHLDDPGDRLGMLDAQRLRAARVVLDLGVHLGKPCPEEWGGGTWDADKAWGFLTSNADMDAEFLRFELDRYLGWPGQAPSYKVGQRLWEQIRDDARAAAEARGEEFDLRAFHARALGLGSVGLDVLRAALANANANANANA
AK018_05293921hypothetical proteinGTGCAGGGTGTCGTCACCGGCTTCGCCATCATCGGCGTCGTCATCGTCGCCGGGTACGTGGCCGCAAGGCTGCGCATCGGCGGGCCGGGCGCCCGGGAGGCGCTGAACCGGGTCGGGTTCTTCATCGCGTCCCCGGCGCTGCTGTTCACGGTCGTGTCCGACGCCGACCTCGGTCGGCTGCTCGGTGCGCCGCTGCTGGTGCAGCTCGTCGCGGCAGTCACGGCGGCTGCCGTTTTCGTCGTCGTGAACCGGCTCTGGTGGCGGCTGCGGGTCCCGGAGGCGACGATCGGCGCGCTCGGGTCCGGGTACGTCAACGCCGGCAACATCGGGCTGCCCGTGGCGATCTACGTGCTCGGCGACGCGACGGCGGTGGTGCCGGTGATCGGCCTGCAGCTGCTGATCGTCTCGCCACTGGTGCTGCTCCTGCTGGACTCGGCCACGAGCCGGAAGGTCTCGCTCGGGTTCGTCGTGAGCCAGCCGGTGCGCAACCCGATCATCCTCGGCGCGCTGGCGGGCGCCGCGGTCTCCCTGACGGGGGTAGCGGTGCCGGACGTGGTGCTCGCACCGCTGGAGATCCTCGGCGGGGCGGCGGTGCCGATGATCCTGCTGGCCTTCGGCATGTCGCTGCACGGGTCGCGGCCGTTGCGGGGCGAGGAGGGCCGGGCGCCCGTGGTCGTGGCCACCGTGCTCAAGGCGCTGGTCATGCCCGCGGTCGCGTTCGCCGTCGCCCGGTTCGGTTTCGGCCTGGACGACGCCGCGGTCGCCACGGCGGTGACGCTCGCCGCACTGCCGACGGCGCAGAACATCTACAACTACGCCGCCCGGTTCCGCCGCGGCGAGGTGCTGGCCCGCGACACGGTGCTGATGACGACGCTCGCCTCCCCGGTGGTGATGATCGTCGCGGCCGCCCTGCTCACCTGAMQGVVTGFAIIGVVIVAGYVAARLRIGGPGAREALNRVGFFIASPALLFTVVSDADLGRLLGAPLLVQLVAAVTAAAVFVVVNRLWWRLRVPEATIGALGSGYVNAGNIGLPVAIYVLGDATAVVPVIGLQLLIVSPLVLLLLDSATSRKVSLGFVVSQPVRNPIILGALAGAAVSLTGVAVPDVVLAPLEILGGAAVPMILLAFGMSLHGSRPLRGEEGRAPVVVATVLKALVMPAVAFAVARFGFGLDDAAVATAVTLAALPTAQNIYNYAARFRRGEVLARDTVLMTTLASPVVMIVAAALLTPGPT0001720_2511DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0001720-mdcF-K13936NANA
AK018_05294726COG0424Nucleoside triphosphate pyrophosphataseGTGCCGACCGTGACGCGACTCGTGCTGGCCAGCCAGTCCCCCGCCCGCCTGTCCACGCTGCGCAGCGCCGGGGTCGACCCCGCCGTGATGGTCAGCGGCGTGGACGAGGACGCCGTGCTGGCCGACGCCCGCGAGCGCTACCCGGACCTGCCTCCGTCGGACGCCGTGCTGACGCTCGCGCAGGCCAAGGCCGAGGAGGTCGCCCACCGCCTCGAGGACGGCGACTCGCGCGACGACCACGACGACGTCGACGCACCCGCCGGTCTGGTGCTCGGTTGCGACTCCATGCTGGAGATCGACGGCGAGGTCGTCGGCAAGCCCGCCGACGCCGACGAGGCCCGCGAGCGCTGGCGGGCGATGCGCGGACGCGCCGGCGTGCTGCACAGCGGTCACTGGCTCGTCGACACCCGCGACCCGGACGACGGCGGCACCGGCGCGACGCTCGGCGCCACCAGCTCGACCACCGTCTGGTTCGCGGACCTCGACGACGACGAGATCGACGCCTACGTCGCCACGGGCGAGCCGCTGCACGTCGCGGGCGCGTTCACCATCGACGGACTCGGCGGACCGTACGTCGACCGCCTGGAGGGCGACCACCACGGCGTGGTCGGGGTGTCGCTGCCGCTGCTGCGCGCGCTGCTGGCCGAGATCGAGGTGCCGTGGCACACGCTGCGCGACGACAACCCCGCGGGCGACTCCGCCGGCACGTCCTCCAGCACCGCCTGAMPTVTRLVLASQSPARLSTLRSAGVDPAVMVSGVDEDAVLADARERYPDLPPSDAVLTLAQAKAEEVAHRLEDGDSRDDHDDVDAPAGLVLGCDSMLEIDGEVVGKPADADEARERWRAMRGRAGVLHSGHWLVDTRDPDDGGTGATLGATSSTTVWFADLDDDEIDAYVATGEPLHVAGAFTIDGLGGPYVDRLEGDHHGVVGVSLPLLRALLAEIEVPWHTLRDDNPAGDSAGTSSSTANANANANANA
AK018_052951806carB_4Carbamoyl-phosphate synthase large chainGTGCCCTCCATCAGCAAGGTCCTCATCGCCAACCGTGGTGAGATCGCCGTCCGCATCGCCCGTGCCTGCGCCGACGCCGGCATCGCCTCCGTCGCGGTCTACGCCGACCCGGACCGGCAGGCGCTGCACGCCCGGCTCGCCGACGAGGCGTTCGCGTTGAACGGCGCTCGCGCCGCCGACACCTACCTCGACGTGGACAAGCTGCTCGACGTCGCGCGCCGCTCCGGCGCCGACGCCGTGCACCCCGGCTACGGGTTCCTGTCGGAGAACGCGGGGTTCGCCCAGGCCGTCATCGACGCCGGGCTGACCTGGATCGGTCCGCCGCCGTCGGCGATCGAGTCGCTCGGCGACAAGGTCAGCGCCCGGCACATCGCCCAGCGGGCCGGAGCCCCGCTGGTCCCCGGCACGAAGGACCCCGTCGCCGACGCCGCGGAGGTCCGCGCGTTCGCCGCCGAGCACGGTCTGCCGATCGCCATCAAGGCCGCCTACGGGGGCGGCGGCCGCGGCCTGAAGGTGGCGCGCACGCACGAGGAGATCGACGAGCTGTACGACTCCGCCGTGCGCGAGGCCGTCGCGGCCTTCGGCCGGGGCGAGTGCTTCGTCGAGCGCTACCTCGACCGGCCCCGGCACGTGGAGACGCAGTGCCTGGCCGACACGCACGGCAACGTCGTGGTGGTCTCGACCCGCGACTGCTCCCTGCAGCGCCGGCACCAGAAGCTCGTCGAGGAGGCCCCCGCGCCGTTCCTCACCGCCGAGCAGGAGGCCGAGCTGGACCGCGCCTCGAAGGCCATCCTGCGCGAGGCCGGGTACGTGGGTGCCGGCACCTGCGAGTTCCTCGTGGGCACCGACGGCACGCTGTCCTTCCTCGAGGTCAACACCCGCCTGCAGGTCGAGCACCCCGTGACCGAGGAGGTCACCGGCATCGACCTGGTGCGCGAGCAGCTGCGGATCGCCGACAGCGCCGAGCTCGGCTACGAGGCCACCACCGTGCGCGGTCACAGCCTGGAGTTCCGCATCAACGGCGAGGACCCGGCCGCCGGGTTCCTGCCCGCTCCGGGCACCGTGTCCACGCTGCGCTGGCCGTCCGGGCCGGGCGTGCGCGTCGACACGGGCGTCGTCGAGGGCGACAGCATCTCGGGCCTGTTCGACTCCATGATCGCCAAGCTGATCGTCACCGGCGCCACGCGCACGCAGGCCGTGCAGCGGGCCCGTCGGGCGCTGCGCGAGCTGGAGGTCGCCGGCATCCCCACGGTCGTGCCTTTCCACCGTGCCGTGCTGGAGGCGCCGGACTTCGTCCCGGCCGCCGGCGAGGACGCCGGGGCGGACGACTTCGCCGTGCACACCCGGTGGATCGAGACGGACTTCGCCGACGAGCTGGCCGCCCTGTCCCCCGCCGCACCGGCACCGGTCGTCGACGAGGAGGAGCCGGCCGAGGCGTCCCCCGAGCGTGTCGTCGTCGAGGTCGGCGGACGCCGCCTCGAGGTGGTGCTGCCGGCCGGTCTGGGCATGGCCGCGGGCCGGGCCCGCCGCGCCGACGCCGCGCGCCCGCGCCGGGCACGCCGCAACGGGCGGGCCGCCGCCGCCGGGAACTCCGGCACCACCCTGGCCTCCCCCATGCAGGGCACCATCGTCAAGGTGGCCGTCACCGAGGGCGAGGAGGTCGCCGAGGGCGACCTCGTCGTCGTGCTCGAGGCCATGAAGATGGAGCAGCCCATCACCGCCCACCGCGCCGGCACGGTGACCGCGCTCACCCTGGAGCCGGGCGCGGGGGTCTCGGCGGGCACGGCCATCTGCGAGATCTCCTGAMPSISKVLIANRGEIAVRIARACADAGIASVAVYADPDRQALHARLADEAFALNGARAADTYLDVDKLLDVARRSGADAVHPGYGFLSENAGFAQAVIDAGLTWIGPPPSAIESLGDKVSARHIAQRAGAPLVPGTKDPVADAAEVRAFAAEHGLPIAIKAAYGGGGRGLKVARTHEEIDELYDSAVREAVAAFGRGECFVERYLDRPRHVETQCLADTHGNVVVVSTRDCSLQRRHQKLVEEAPAPFLTAEQEAELDRASKAILREAGYVGAGTCEFLVGTDGTLSFLEVNTRLQVEHPVTEEVTGIDLVREQLRIADSAELGYEATTVRGHSLEFRINGEDPAAGFLPAPGTVSTLRWPSGPGVRVDTGVVEGDSISGLFDSMIAKLIVTGATRTQAVQRARRALRELEVAGIPTVVPFHRAVLEAPDFVPAAGEDAGADDFAVHTRWIETDFADELAALSPAAPAPVVDEEEPAEASPERVVVEVGGRRLEVVLPAGLGMAAGRARRADAARPRRARRNGRAAAAGNSGTTLASPMQGTIVKVAVTEGEEVAEGDLVVVLEAMKMEQPITAHRAGTVTALTLEPGAGVSAGTAICEISPGPT0001705_3562DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001705-accC-K01961NANA
AK018_05296456mutT3_2COG0494Putative 8-oxo-dGTP diphosphatase 3GTGGCCTGCGGGGACCACCGGCACTGGGGGCTGCACGGCGCCGCCGGGCTGTTCCTCGTGCGCCACGACCTCGCGGCGTCGGCCGAGGCGACCCACGTCGTGCTCCAGCACCGCGCCACGTGGTCGCACGAGGGCGGCACCTGGGGCATCCCCGGCGGGGCCGTCCAGCCGACCGAGTCCGCCGAGACGGGGGCGCTGCGCGAGGCCGCCGAGGAGGCCGGGATCGACCCGGCGATCGTGCGGGTGGTCGGCGAGCACGTGCTCGACCACGGCGTGTGGACCTACACGACCGTCGTCGGCCACGTCACCGCCGGCGTCGAGCTGGTCCCGGCGGCGACCGACCACGAGAGCATCGAGGTGGCCTGGGTCCCGGTGTCGGCCCTGGCCACGCTGCCGCTGCACCCCGCCTTCGCGCAGGCCGTACCGCGCCTGCTCACGATAGCCTCACGAGGATGAMACGDHRHWGLHGAAGLFLVRHDLAASAEATHVVLQHRATWSHEGGTWGIPGGAVQPTESAETGALREAAEEAGIDPAIVRVVGEHVLDHGVWTYTTVVGHVTAGVELVPAATDHESIEVAWVPVSALATLPLHPAFAQAVPRLLTIASRGNANANANANA
AK018_052971998hypothetical proteinATGAGCCCGACCGCGCGCGACCGGCACTCGCTGCTGCTCCTCGCGCTGGTCACCGCGATCGTCGCCGAGCTCGTCCGGGCCAGCGGCCCCCTGCTGGACCACGCCTTCGCCGTGGGGGTCACCACGGCCGCGCTGGCCGCGCTGGCGACCTATCTCGCCCCGGCCGTGCTCGTCGCCGCTCTCACCGCCGGCCGCCCCGTGTCGGGACGCACCGTGCTGGTGGCCGTGTCTCTCCTGGTGGCCGCCCGCGTCGGGCTGCAGGCCCTCGGCGCCCGGATCGCCACCGTCCCGCCGGCCCCCGAGCTCGGCGAGCTGCGCGTCTACGGGGGCCTGAGCACCGTCGCGCTCGGGTTCGCCACGCTCGTCCTGGTGGCCGCGTTCGCCTCCGGGACGTCCGCGGAGCCGGCCGACGACGGCGCTCCACCGCCCGGGCCCGGGTCGCTCGTCGCCCGCGGCGTGACGCTGGGGCTGCTGGGCGCGGCGGCGGTCGCCGTGCTGCAGGGCACCTGGGACGCCGTGTGGCGGTCGGAGGCCGCGAGCTGGGCGGTCACCGGGCTCCTGGGCGCCGGGACGCTGGTCGTCGCGGTCCGGCTGCGCCGTCGCGGGCACCGGCCGGGGGCGCGCGGGCTCTGGCTGCTGGGCCCCTTCCTCGCGCTCGGCGTCCAGGCGTTCGCCAACCCCGCCTTCGTCGCCTCGACCACGGGACTGCCGCTCGCCGCGGCCTCCGGTGCCACCGCCGTGGCGGCGCTGGGGGTCGGCGTGGCGCTGTCGGTCCACCGGCCGGCGGTCGGCCCCTGGGCGGCCGCCGTGACGTTCGTCGGCGGCACCTGGCTGCTGTTCCTCACCGTGCCCCTCCTGGCGGACCCCGCCCCGGTGTGGTCGTGGGCCCTGCTCGTGGTGGCCACGGCGCTGCCGGCGGCCGGGGCGCGCACGCTCGCCGCGGCCTGGTCCCGGCCCACCCGGGTGCTGCGCGGCCGGCGGCTCGTGGGCGTCACCGCGGCCGCCGGGCTCGGTGCCGCCCTGCCGCTGCTGGTGTACCAGCTGCACTTCGAGGTCCCGCTGCCGGTGCCCGCGGGCCTGGTGCCCGTGGTCGCGGCCGCCGTCGTGGCGCTGCCCGCCCTCGTGGGGTCACGTCGGCTCGCCCGGCTGGCCCCCACCGCCGGACCGCTGCTGACGGGCGCCGTGGCGCTGCTCGCCGCGGCCGGCACGGTGACGGCCCTCGCGACCGGACCCGGCGCCGAGAGGGGGCCCGCGCAGGACGTCGCGGACGACGACGCGCTGACGGTGCTGTCGTGGAACGTGCACTACGGCGTCGGGCCGGGGCCGTCGGTGCGCCTGGGCGAGATGGCCGGCGTCGTCGAGGACTCCGGGGCCGACGTCGTCGCCCTGCAGGAGGTGTCCCGCGGCTGGGTGCTCGGCGGCGGTGCCGACATGCTCGCGTTCCTCGCCGACGCGACCGGGATGGAGCACGCCTTCGTCCCCGCCGCGGACCGGCGCTTCGGCAACGCGCTGCTGTGGGACCCGGACCGCGTCACGGCCTCCGACGTCGACCGGGTCGCGCTGCCGTTCGGCGACGGCCCGCAGGACCGCTCGGCGCTGGCGGCGACGTTCCGTCCGGCCGGCGGCGGCACGACGACGGACGGCGTCCGCGTCGTGGTCACGCACCTGCAGCACCGCGAGGAGAGCCGCACGACCCGGCTCGAGCAGCTCGACGCGCTCTTCGACGCCGAGCCGGTCGACGGTGCGTACGTGCTGGCCGGCGACCTCAACGCCGAGCCCGGGTGGCCCGAGATCGCCGCGCTCGAGGAGCGCGGCCTGGTCAGCGGCCAGGACGCCGTCGGCGACCCCGCCGCGCTGACCTCGCCCGCGGTGGACCCCCGCTACCGCGTGGACTGGATCCTCGCCTCCGAGGACCTGGAGCTCACCGCGTTCGAGGTGCTCGACGCGACGGCCTCGGACCACCGCCCGCTCGTCGCCACCGTCGCCCCGGCGGGCTGAMSPTARDRHSLLLLALVTAIVAELVRASGPLLDHAFAVGVTTAALAALATYLAPAVLVAALTAGRPVSGRTVLVAVSLLVAARVGLQALGARIATVPPAPELGELRVYGGLSTVALGFATLVLVAAFASGTSAEPADDGAPPPGPGSLVARGVTLGLLGAAAVAVLQGTWDAVWRSEAASWAVTGLLGAGTLVVAVRLRRRGHRPGARGLWLLGPFLALGVQAFANPAFVASTTGLPLAAASGATAVAALGVGVALSVHRPAVGPWAAAVTFVGGTWLLFLTVPLLADPAPVWSWALLVVATALPAAGARTLAAAWSRPTRVLRGRRLVGVTAAAGLGAALPLLVYQLHFEVPLPVPAGLVPVVAAAVVALPALVGSRRLARLAPTAGPLLTGAVALLAAAGTVTALATGPGAERGPAQDVADDDALTVLSWNVHYGVGPGPSVRLGEMAGVVEDSGADVVALQEVSRGWVLGGGADMLAFLADATGMEHAFVPAADRRFGNALLWDPDRVTASDVDRVALPFGDGPQDRSALAATFRPAGGGTTTDGVRVVVTHLQHREESRTTRLEQLDALFDAEPVDGAYVLAGDLNAEPGWPEIAALEERGLVSGQDAVGDPAALTSPAVDPRYRVDWILASEDLELTAFEVLDATASDHRPLVATVAPAGNANANANANA
AK018_052981461lpdA_2COG1249NAD(P)H dehydrogenase (quinone)ATGGCACCCGTGATGGCCGAGAAGAATGCCCCTGCCGGACCCAACCGCACCGTCGTCGTCATCGGCGGCGGACCTGGAGGCTACGAGGCCGCACTCGTGGCTCGCCGCGCCGGAGCCGAGGTGACGGTCGTCGAGCGGCACGGCCTCGGCGGCGCCGCCGTCCTGACCGACGTCGTGCCCTCCAAGACGCTCATCGCCACCGCCGAGTGGCTGACCCTGGCCGAGTCGGCGCCCGAGCTCGGCATCCGCTCCGGCAAGACGCCGGTCGCGCCCGGCGACGACCAGGAGGCCCGCCGCGCGCTCGTCGACCTGGAGGCGGTCAACACCCGCGTGCTGGCCCTGGCCGCCGCGCAGTCGGCCGACATCCGCGCCCGCCTGGAGCGCGAGGGTGTCGCCGTCGTCGAGGGCTCCGGCCGGCTCGACGGCCCCAGCCGCGTGGTCGTCACGCCGTCCGACGGCGGAGCGGAGCGCACGCTCGACGCCGACATCGTGCTGATCGCCACCGGGGCCACGCCCCGCACGCTGCCCACGGCCGCGCCGGACGGCGAGCGCATCCTGACCTGGACCCAGCTCTACGACCTCGACGAGCTGCCCGAGCGGCTGATCGTCGTCGGCTCCGGCGTCACCGGCGCCGAGTTCGCCGGCGCCTACCAGGCGCTCGGTTCCGACGTCGTGCTGGTGTCCTCCCGCGACCGCGTGCTGCCCGGCGAGGACGAGGACGCCGCCGAGCTCCTCGAGGGGGTCTTCCGGTCCCGCGGCATGACGGTCATGTCGCGCTCGCGGGCGGCCGCGGCCGAGCGGACCGAGGACGGCGTGGCCGTCACGCTGGAGGACGGCCGCGTGGTCGAGGGATCCCACGTGCTCATCGCCGTCGGCGGCGTGCCGAACACCGAGGACCTCGGGCTGGCCGAGGCCGGCGTCGAGGTCCGGTCGTCGGGCCACATCGAGGTCGACCGGGTCTCGCGCACCTCGGTGCGCGGCGTCTACGCGGCCGGCGACTGCACCGGGGTGCTGCCGCTGGCCTCGGTGGCGGCGATGCAGGGCCGCGTCGCCATGGCGCACGCCCTGGGCGACGCCGTCGCGCCGCTGCGCCTGGGCAACGTCGCGGCGAACATCTTCACCGCGCCGGAGATCGCCACGGTGGGGGAGTCCGAGGCGCGGCTGCGCGAGCGCGGGTCGCGCTACATCACCACGACGCTGCCGCTGGCGCGCAACCCGCGCGCGAAGATGCACGGCGTGCACGACGGGTTCGTCAAGCTGTTCGCCCACCCGGAGGCCGGTGTCGTGCTCGGCGGCGTGGTGGTCGCCCCGCGCGCGAGCGAGCTCATCTTCCCCGTCACCCTGGCCGTCTCGCACCGGCTGACGGTCGACGACGTGGCGGACGCCTTCACCGTATACCCGTCGCTGACCGGCACGATCGGCGAGACCGCCCGGGTGCTGCACGGCCAGCTCACGGTCTGAMAPVMAEKNAPAGPNRTVVVIGGGPGGYEAALVARRAGAEVTVVERHGLGGAAVLTDVVPSKTLIATAEWLTLAESAPELGIRSGKTPVAPGDDQEARRALVDLEAVNTRVLALAAAQSADIRARLEREGVAVVEGSGRLDGPSRVVVTPSDGGAERTLDADIVLIATGATPRTLPTAAPDGERILTWTQLYDLDELPERLIVVGSGVTGAEFAGAYQALGSDVVLVSSRDRVLPGEDEDAAELLEGVFRSRGMTVMSRSRAAAAERTEDGVAVTLEDGRVVEGSHVLIAVGGVPNTEDLGLAEAGVEVRSSGHIEVDRVSRTSVRGVYAAGDCTGVLPLASVAAMQGRVAMAHALGDAVAPLRLGNVAANIFTAPEIATVGESEARLRERGSRYITTTLPLARNPRAKMHGVHDGFVKLFAHPEAGVVLGGVVVAPRASELIFPVTLAVSHRLTVDDVADAFTVYPSLTGTIGETARVLHGQLTVPGPT0020470_60DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020470-lpdA-K23842NANA
AK018_05299852punA_2Purine nucleoside phosphorylaseATGAGCACCACACCTGCTACGACGCCGGATCTCGACGACCCGGCGACCGACCCGTTCGACGTCGCGCGGGCCGCGGCCGACCACATCGCCGAGGTGACGGGAGTCAGCGGCCACGACGTCGCCCTCGTCCTCGGGTCCGGCTGGGGCGGGGCCGCCGAGCTCGTCGGCGACGTGGTCGCCGAGGTCCCCACCCACGAGATCCCGGGGTTCGCGCGGCCCTCCGTGGTCGGCCACGCCGCGACGACGCGCTCCATCCGCGTCGAGCGGCCCGACGGCTCGACCCGCAATGCCCTGGTGATCGGCGGCCGCACGCACCTGTACGAGGGCCGCGGGGTCCGCCGGGTGGCGCACGGCGTCCGGACCGCGGCGGCGACGGGGTGCACGACGGCGGTGCTCACGAACGGCTGCGGCGGCCTGCACATGGCCTGGCGTCCCGGTCAGCCGGTGCTGATCAAGGACCACCTGAACCTCACGGCGACCTCCCCGCTGGAGGGGGCCACCTTCGTCGACCTCACCGAGGTGTACTCGGAGCGGCTGCGCGACCTGGCGCGGACGGTCGACCCCGAGCTGCCGGAGGGCGTGTACGCCCAGTTCCCCGGCCCGCACTACGAGACCCCGGCCGAGGTCCGCATGGCGGGCGTGCTCGGCGCGGACCTGGTGGGGATGTCCACGACGCTGGAGGCGATCGCGGCGCGGCACACCGGCATGGAGGTGCTGGGGATCTCCCTGGTGACCAACCTCGCCGCCGGCGTCAGCCCGCACCCGCTGTCGCACGACGAGGTGCTCGAGGCCGGCCGGGCGGCCGGCCCGCGGATCAGCGACCTGCTGGCCCGCATCGTCCGTGAGATCTAGMSTTPATTPDLDDPATDPFDVARAAADHIAEVTGVSGHDVALVLGSGWGGAAELVGDVVAEVPTHEIPGFARPSVVGHAATTRSIRVERPDGSTRNALVIGGRTHLYEGRGVRRVAHGVRTAAATGCTTAVLTNGCGGLHMAWRPGQPVLIKDHLNLTATSPLEGATFVDLTEVYSERLRDLARTVDPELPEGVYAQFPGPHYETPAEVRMAGVLGADLVGMSTTLEAIAARHTGMEVLGISLVTNLAAGVSPHPLSHDEVLEAGRAAGPRISDLLARIVREIPGPT0013380_650DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013380-punA-K03783NANA
AK018_053001767COG1109putative phosphomannomutaseATGACGGAGTCCTTGGACGAGCTGCTCGCCCGTGTCGAGCACTGGATCCGGCACGACGTCGACGACACGGACGTCGACGAGCTGACCCGGCTCGTCGGGTACGCGGCGGCCGACGGCGGCACCCGGCACCCGTCGGCGCTCGCGGAGCTGCGCGACCGGTTCGACGGCACGCTGGAGTTCGGCACGGCGGGGCTGCGCGGCACGATGGCCGCCGGCCCGAACCGGATGAACAGCGCCGTCGTCGTGCGCACCGCCGCCGGGCTCGGCACGTACCTGCACGAGGCGCTCGGCGCCGGGGCGGGGCCGCGCGTGGTGGTCGGCTACGACGCCCGGCACCGGTCCGCGGACTTCGCGCGCCGGACCGCCGAGGTGCTGACGGCGGCCGGGGTCGAGGTCCTGCTGCTGCCGGCCGCGCTGCCCACCCCCGTGCTCGCGTTCGCCGTCCGGCGTCTGGAGGCCGACGCGGGCGTGATGGTCACCGCGAGCCACAACCCCGCGGCCGACAACGGCTACAAGGTCTACCTCGGCGGACGGGTGGTGACCGACGAGGGCCAGGGCGCCCAGCTCGTCTCCCCGTACGACGAGCGCATCGCCGCCCACGTCGCGGCCGTCGGCCCGGCGGACGAGGTGCCGCGCCACGCCGAGGGGTGGACGGTGGTCGGCCGCGAGATCGTCGGCGACTACCTGGCCGCCCTGGCGCCGCTGCGCACGGCCGCCCCCGAGGCCGCCTCCCGGCTGACGATCGTGACGACGTCGCTGCACGGCGTGGGCGGGCCGCTGCTGGCCCGGGCGCTGGCCGACGCCGGCTTCACCCGTGTCATCCCCGTCGAGGAGCAGGTCGCCCCGGACCCCGACTTCCCGTCGGTGGCCTTCCCGAACCCGGAGGAAGCCGGCGCGATGGACCTCGCGCTGGGGCTCGCGATCGACTGCGGCGCCGACCTCGTCATCGCCAACGACCCCGACGCCGACCGGTGCGCCGTCGCCGTGCTGGACGTCACCCAGGGCACCCACCAGGGGGTCGAGACGGCCCGGTCCAGCGGCTGGCGGATGCTGCACGGCGACGAGGTGGGCATCCTGCTCGGCAGCGAGGCCGTGGCACGCGCGGTGGGCCGGCCCGGGGCGACGGTCGCCAGCTCGGTCGTGTCCTCGCGGGCGCTGTCCCGCATCGCCCGGGACGCGGGCGTGCAGCACGCCACGACGCTGACCGGGTTCAAGTGGATCTCCCGCGCCCCGGAGCTGGTCTTCGGCTACGAGGAGGCTCTCGGCTACTGCGTGGACCCCGAGAACGTGCGGGACAAGGACGGCATCAGCGCGGCCGTCGTGGTCGCCTCGCTCGCGGCCCGTCTCAAGGCGGCCGGCCGGACGCTCATCGACGACCTCGACGACGTCGCGCGGGCGCACGGGCTGTTCGTCACCGGGCAGCTCTCGGCCCGCTTCAGCGACCTCGCCGAGATCCCCGCGGCGATGTCGCGGCTGCGCTCGGACCCGCCCCGCGAGCTCGGCGGGTCGCCCGTGCGCGTGGTCGCCGACCTGGCGGACGGCTACGAGGGCCTGCCGCCCACGGACGGCGTGCTGCTGCTCGCCGAGGACGACACCCGCGTCGTCGTGCGCCCCTCGGGCACGGAGCCGAAGCTGAAGTGCTACCTGGAGGTCGTCACCCACGTGGCCTCGGGCGCGACGCCGCTCGACGTCGGGACGGCCCGTGTCGCGGCGCGGGAGCGCCTGGGCGACCTGTCCAAGGAGATGAACGCGGCGCTCGGGTTCTGAMTESLDELLARVEHWIRHDVDDTDVDELTRLVGYAAADGGTRHPSALAELRDRFDGTLEFGTAGLRGTMAAGPNRMNSAVVVRTAAGLGTYLHEALGAGAGPRVVVGYDARHRSADFARRTAEVLTAAGVEVLLLPAALPTPVLAFAVRRLEADAGVMVTASHNPAADNGYKVYLGGRVVTDEGQGAQLVSPYDERIAAHVAAVGPADEVPRHAEGWTVVGREIVGDYLAALAPLRTAAPEAASRLTIVTTSLHGVGGPLLARALADAGFTRVIPVEEQVAPDPDFPSVAFPNPEEAGAMDLALGLAIDCGADLVIANDPDADRCAVAVLDVTQGTHQGVETARSSGWRMLHGDEVGILLGSEAVARAVGRPGATVASSVVSSRALSRIARDAGVQHATTLTGFKWISRAPELVFGYEEALGYCVDPENVRDKDGISAAVVVASLAARLKAAGRTLIDDLDDVARAHGLFVTGQLSARFSDLAEIPAAMSRLRSDPPRELGGSPVRVVADLADGYEGLPPTDGVLLLAEDDTRVVVRPSGTEPKLKCYLEVVTHVASGATPLDVGTARVAARERLGDLSKEMNAALGFPGPT0017865_126DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0017865-manB|yhxB-K01840NANA
AK018_05301813COG2375putative proteinATGACCACGACGACACCGGGCCCCGACGCCCCCACAGCCCGCAAGCGCGCACCCAAGACGGCGACGGTCCGGGCGACGCGATGGATCACGCCGCACATGGTGCGGATCACGCTCGCCGGGGGCGACCTCGCCGACGTCGATGCCACCGAGTTCACCGACCGGTACGTCAAGCTCGTCGTCGGCCCGCCGCCGGTCGAGGGGGCCCGACCCGTGGTGCGCACCTACACGATCCGCGCGGTCCGCGACACCGAGTGGGACCTCGACTTCGTGGTCCACGGCGACGAGGGCCTCGGCGGCCCCTGGGCCGCGGTCGCGCGACCGGGGGAGCAGGTCACGTTCCTCGGCCCCGGCGGCGGGTACACCCCCGACCCCGAGGCGCCGTGGCACCTCCTCGTCGGTGACGACTCGGCCTGGCCCGCCGTCGCCGCGGCGCTCGAGGCGCTCCCCGCGGGCGCGCGGGCCCACGCCGTCGTCGAGGTCCCCGGACCGGAGGACGAGCAGGGGGTCGACTCCGCCGCGGACGTGACGATCACGTGGGTGCACCGCGGGGACGCCACCCTGGAGGACACCGTGCAGCGGCTGCACGCGGCCGGCGAGCTGCCCGACGGCGTCCCGCACGCGTTCCTGCACGGCGAGGCGGGGTGCGTGCGGACGCTGCGCCGCTGGGCCCGCTCCGTGCTCGGCGTCCCGCGCGAGCGGCTCTCGGCGTCGGGGTACTGGCGGCGCGGCCACGACGACGAGGCCTGGCGGGCCGCGAAGAAGGACTGGACCGCCGCCGTCGAGCAGGACGACGCCGCCCTCGCCACCCCCTGAMTTTTPGPDAPTARKRAPKTATVRATRWITPHMVRITLAGGDLADVDATEFTDRYVKLVVGPPPVEGARPVVRTYTIRAVRDTEWDLDFVVHGDEGLGGPWAAVARPGEQVTFLGPGGGYTPDPEAPWHLLVGDDSAWPAVAAALEALPAGARAHAVVEVPGPEDEQGVDSAADVTITWVHRGDATLEDTVQRLHAAGELPDGVPHAFLHGEAGCVRTLRRWARSVLGVPRERLSASGYWRRGHDDEAWRAAKKDWTAAVEQDDAALATPNANANANANA
AK018_05302477hypothetical proteinATGGTTGCCGCTATGGAAAGTTCCCTGGATCCCGTCCACCACCTCCGTGAGCTGGAACGGGCCGAAGCCGCCCCGTACGTCGGCCACGACCCGGCACCCCGGTGGTTCGCGCCGACGTTCGGCCTGCTGCTCGCGGCCTACGTCGGAGCGTTCGGACTCTGGGAACACCGGATCTCGTTCATCGTCGCCATGGTCCTGTTGGCGGCCGGTACAGGCGTCTTCCTGGGCTGGATCACCACCAGGTTCGGCGCACTGGCGATGCCCGGCCGAGGCAACCCCCCGCCGGAGATCCTGAGCGAGTACCGCCGATACGGCCTGGGACTTCTCGTCGTGGTGGCCGCCGTGGCCGCCGTCTGGTGGGGGGCCGGCGTCGCCGCAGCCGCAGGGACGACGTTCGTGCTGGTCACCGGAGGGATGGCCTGGTACCAGGTCCGCTACGAACGCGCCGCGCGCACCGTCCGGGACCGGCTCGCATGAMVAAMESSLDPVHHLRELERAEAAPYVGHDPAPRWFAPTFGLLLAAYVGAFGLWEHRISFIVAMVLLAAGTGVFLGWITTRFGALAMPGRGNPPPEILSEYRRYGLGLLVVVAAVAAVWWGAGVAAAAGTTFVLVTGGMAWYQVRYERAARTVRDRLANANANANANA
AK018_05303300hypothetical proteinATGAGCCTGCACGACCTCGACCCCGTGATCCACGCCCCGAAGCGGCTGGCGGCGATGGGGATGCTCGCCAACTCCGAGTACGCGACGGCCCGATTCCTCAAGGAACAGCTCGGACTGACCGACTCCGACCTGTCCAAGCAGATGTCGGCGCTCGAGTCGGCCGGCTACGTCAAGACCACCCGACGGGGTCGAGGCCCGGGTTCGGTCACGTCCTACGCGATGACCCGCCCCGGCAGGAACGCCTACCGCAGCCATCGTGCCGCCCTGTACGCGATGTTGGCCGAGGAGCGCCCAACCTGAMSLHDLDPVIHAPKRLAAMGMLANSEYATARFLKEQLGLTDSDLSKQMSALESAGYVKTTRRGRGPGSVTSYAMTRPGRNAYRSHRAALYAMLAEERPTNANANANANA
AK018_053041575hypothetical proteinGTGAGCGAGGAGTTCCTGCCCTACGGGCCGTGGCGCCGCTGGGTCCGTGCACTGCGTGCGCACCATCGCCGGCGGAGGTCCGGTGACGGCGCCGGCAACCGCCCGGAAGCCGACCCCGGCGACCGCATCTACCTGGCCTACGGGTTCACGCTGCTGGCCCTGATGTACGGGCCGATCCTGTGGTCCGCCGTCTCCCAGGCGGGCGCCCCCCTCGGCGAGGCCGGATCGTCCGACGTCCGCGGGGCCCTGATCGAGGCCGGCGCCGTCGTCATCGGCCTGGCCGGACTGGCCGGTGTCTTCGTCGCGCGGCTCGGGGCCCCGGTGTGGATCACGGCGACGGACGCCGCCTACTCGCTGAGCGGCATCTGGGACCCGCGGGTGGTGCTGTGGCGGCGGATCGGTGTCCTCGTGCTCGCGATGGCCGTGGTCGCAGCCCTGGTCGGGTCGGCACTCGCCGCCGGTGCGCTCGGCGCCGCCGCGCAGCCGGTGGGCGTCGTGGGCCTGCTGGCCTGGGCGGGATGCGCTGCCGGCGTGGCCCAGCTGCCCCTGGCGCTCGCGGTGGCGGCGCAGTGCCCGCGCTGGCGAGCCGTGGCCCGGGGTGTCGCCGTCACCGTGGCCGTCATCGGTGTGCTGGTGGCGGTGCAGGGGACGGGGCTCGTGGACGGCGCCTGCCTCGTCCCGGAGGCCTGTCCGGATCCGGTCGTCCAGCCCGGCCCGCCCGCCGTCGCCGTGGGCTGGGCCGCTGTGCTGATGGCAGGGTGCACCCCGCTGCTGTTCGCGGTGCTGCCCCGACATCTCGACGCCGACACGACGGCGGCGGCCTGGGGGCGGACCGTGTCGACCGGTGTGGCCGTGAGTGCCGGTGATTCGGGTGGTGTGCGGACCGTGGCGGGCGCGACGCCGCTGCGGGCTCGTGGGGTGTCGTTCCCGGGCCTGCTGGTCCGGTGGCTGCCGCTGGTCGCCCGCGACGTGCTGGGGCTGCGGCGTCGTGCCGGAGCGGTGGTGACCTCGACGATCGCCGGGGTGGCCGGCGTCGTCCTGGTCGGTGTCGCAGCGGACGGTGGTCCGGGTGCGGTGCTGGCCGCTGTCGGTGGTGGTCTGGTGCTCTACGCGGCGTCGGCGACGTGGGCCGGTGGCCTGCGGGACATGGCCGAACAGTCGGACCCGGCCGGGCTCCTGCCGGGCGGTCCCCGACGTGCGGCGCTTGCGCACCTGCCGGTGCCGGCGGGCGTGGCCGTGCTGGTCGGGGTGCTGGGGCTCCTGGTCGCGCAGACGCTCGTCGGCGTCGACGCTTCCTCCGTCGTCGCCTGCGCGGCAGCGCTGACGACCGTGCTGGGTGCGCGCGTGTGGGTGGCCGGCGCGACCCAGGCGCCGCCGGAGCTGTACACCCCGATGTCAGGGCCGGCCGGGGACATGAGCATGGTGGTCGTGGGGGGCTGGTTCCTGCGGGGGTGGCTCGCGGTGGTCGGCCTGCTGTGGTTGCTGGTCCGGTTCGGCACGCCGACGGCCGTCACCGTGGTGATGGTCGCCGCGTGGCTGGCGTTCTCGGGGCTGCGCCGGATCGGGAGGTCGTGAMSEEFLPYGPWRRWVRALRAHHRRRRSGDGAGNRPEADPGDRIYLAYGFTLLALMYGPILWSAVSQAGAPLGEAGSSDVRGALIEAGAVVIGLAGLAGVFVARLGAPVWITATDAAYSLSGIWDPRVVLWRRIGVLVLAMAVVAALVGSALAAGALGAAAQPVGVVGLLAWAGCAAGVAQLPLALAVAAQCPRWRAVARGVAVTVAVIGVLVAVQGTGLVDGACLVPEACPDPVVQPGPPAVAVGWAAVLMAGCTPLLFAVLPRHLDADTTAAAWGRTVSTGVAVSAGDSGGVRTVAGATPLRARGVSFPGLLVRWLPLVARDVLGLRRRAGAVVTSTIAGVAGVVLVGVAADGGPGAVLAAVGGGLVLYAASATWAGGLRDMAEQSDPAGLLPGGPRRAALAHLPVPAGVAVLVGVLGLLVAQTLVGVDASSVVACAAALTTVLGARVWVAGATQAPPELYTPMSGPAGDMSMVVVGGWFLRGWLAVVGLLWLLVRFGTPTAVTVVMVAAWLAFSGLRRIGRSNANANANANA
AK018_05305660artM_3COG1126Arginine transport ATP-binding protein ArtMGTGAGTGAAGCCAGCACCAGCGACCCGCTCGTCGACGTCGCCGCCGCCACCAAGACGTACGGCACCGTGCAGGTGCTCGCTCCCGCCTCGGTCCGCCTGCACGCGGGTCAGGGCGCCGCCGTCGTCGGCCCCAACGGGTCCGGCAAGTCGACGCTGCTGCGGCTGGTCGCCGGGACCCAGGAGCCGACATCGGGCACCGTCACCGTTCTCGGCGAACCCGCCGCCCGGGCGCGGCGTCGCCGCCGGGACCAGATCGTGCGGCTCATGGGTCCGCTGCCCACGTATCCCGACCTGACCGTGGCCGAGCACCTGCGGCTCATGCAGGTGGCCTGGGCCGGGCGGCATCCCGGACCCGACGTCGACGAGGCGCTGGCCGAGGCCACCCTGGACCGGGTGCGTGACCAGTTCCCCGCCGAGCTGTCCTCCGGCGAGACGCAGATGTTCGCCCTGGTGGCCACGCTGTACCGGCCGGCCGACCTGGTGCTGCTGGACGAACCCGAGCAGCGGCTCGACACCCGCTGGCGAGAGATCGCGCGGCAGATCGTGCTGCGCGCTCTGGACCAGGGGCGCACCGTGCTGGCGGCCACGCACGACCCGGGCCTGCGCGAGGTGCTGGCCGACCGGGGCCCCGTCGTCGAGCTCGCGGAGCCGAGCCGGTGAMSEASTSDPLVDVAAATKTYGTVQVLAPASVRLHAGQGAAVVGPNGSGKSTLLRLVAGTQEPTSGTVTVLGEPAARARRRRRDQIVRLMGPLPTYPDLTVAEHLRLMQVAWAGRHPGPDVDEALAEATLDRVRDQFPAELSSGETQMFALVATLYRPADLVLLDEPEQRLDTRWREIARQIVLRALDQGRTVLAATHDPGLREVLADRGPVVELAEPSRPGPT0006725_28509DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_05306753deoC_2COG0274Deoxyribose-phosphate aldolaseATGAGCGACGACACCAGCACGCCGGGCACCGGCACCGCCGTCCCGACCGACCGCGAGACCCTGGCCCGCTACGTCGACCACACGTTGCTCAAGCCCGAGGCCACGGCCGCCGACGTGACCGCACTGGTCACCGAGGGCGCCGCGCTCGGGGTGTTCTCCGTGTGCGTGTCGCCGACCTTCGTCAGCCACGCCGTCGAGGCCGCCGACGGGCGCCTCGCGGTGGCGACGGTCTGCGGCTTCCCGTCCGGCAAGCACGCCGGCGAGATCAAGGCCGCCGAGGCGGCCCGCTCCGTGCTGGACGGGGCCGACGAGGTCGACATGGTCATCGACGTCGGCGCGGCGAAGGCGGGCGGGTTCGACCTCGTCCAGGAGGACATTGCCGCCGTGCGCGCCGCCGTGCCGTCCGACAAGGTCCTCAAGGTCATCATCGAGTCCGCCGCGCTGACGGACACCGAGATCGTGGCGGCCTGCCGTGCCGCCGAGGCGGCCGGTGCCGACTTCGTCAAGACCTCCACCGGATTCCATCCCGCCGGCGGCGCCACCGTGCACGCCGTGGAGCTGATGGCGCAGACGGTCGGCGGGCGCCTCGGCGTCAAGGCGTCCGGTGGTGTGCGCACCCTCGCCGACGCCCGGGCGGTGATCGCCGCCGGCGCCACCCGACTCGGCCTGTCCGGCACGGCGGCGGTGCTCGCCGGGTTCGACGAGGACGATGGCGGCACGGGAGCCGGCACGCCTGCCGACGGCTCGTACTGAMSDDTSTPGTGTAVPTDRETLARYVDHTLLKPEATAADVTALVTEGAALGVFSVCVSPTFVSHAVEAADGRLAVATVCGFPSGKHAGEIKAAEAARSVLDGADEVDMVIDVGAAKAGGFDLVQEDIAAVRAAVPSDKVLKVIIESAALTDTEIVAACRAAEAAGADFVKTSTGFHPAGGATVHAVELMAQTVGGRLGVKASGGVRTLADARAVIAAGATRLGLSGTAAVLAGFDEDDGGTGAGTPADGSYPGPT0017445_1943DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017445-deoC-K01619NANA
AK018_053071104add_2COG1816Adenosine deaminaseATGACGCAAGCCCTCCTCGACGCCATCGGCGATCTGCCCAAGGTCCTGCTGCACGACCACCTCGACGGCGGGCTGCGCCCGCAGACCGTGCTCGAGCTGGCCGACGCCGTCGGTCACGAGCTGCCCGCCGGCGACGCCGACGCCCTGGCGACCTGGTTCCGCGACGCCGCCGACTCCGGCTCGCTGCCGCGGTACCTCGAGACCTTCGACCACACCCTCGCCGTCATGCAGACGCCGGAGGCCCTGGCCCGCGTCGCCCGCGAGGCCGTGCTCGACCTCGCGGCCGACGGCGTGGTGTACGCCGAGCAGCGCTGGGCCCCCGAGCAGCACCTGCAGCGCGGGATGTCGCTGCCCGACACCGTCGAGGCGGTGCAGCACGGCATCGACGCCGGCGTGCGCGAGGCCGCCGCGCAGGGCCGCACCATCCGGGTCGGCCAGCTCGTGACCGCCATGCGCCACACCGACCGCTGGGTGGAGGTCGCCGAGCTGGCCGTGGCCTACCGCGACGCGGGCGTGGTCGGCTTCGACATCGCCGGTCCCGAGGACGGCTTCGCCCCCGACCGCCACGCCGAGGTGTGGCGCTTCCTGGCCGAGCAGAACTTCCCGACGACGATCCACGCGGGCGAGGCCGCCGGTCTGGAGTCCATCGCGCAGGCGGTGCACCTCGGCCAGGCCGACCGGCTGGGCCACGGCGTGCGGATCACGGAGGACATCACGTTCTCGGAGCACGACCGTTCCGCGACGCTGGGCCGCCTGGCGCACTGGGTCCGGGACCACCAGATCGCTCTCGAGGTCTGCCCGGTCTCCAACCTGCAGACCGCCGCGGCGCCGGGCGCGTCCACCATCGCCGAGCACCCGATCACCCGGCTCAAGGAGCTGGACTTCGCGGTCACGCTCAACACCGACAACCGGCTGATGTCGCGCACGTCGATGTCGCACGAGATGCGACTGCTCGTCTCGGAGGCGGGCTGGACGATCGACGACCTCGCCGACGTCACGATGACGGCGGCGTGGAGCGCGTTCCTGCACCACGACGAGCGCCGCGACCTCGTCGACGACCTGATCCTGCCCGGCTACCAGAAGATCGAGGGGGCTCTGCGATGAMTQALLDAIGDLPKVLLHDHLDGGLRPQTVLELADAVGHELPAGDADALATWFRDAADSGSLPRYLETFDHTLAVMQTPEALARVAREAVLDLAADGVVYAEQRWAPEQHLQRGMSLPDTVEAVQHGIDAGVREAAAQGRTIRVGQLVTAMRHTDRWVEVAELAVAYRDAGVVGFDIAGPEDGFAPDRHAEVWRFLAEQNFPTTIHAGEAAGLESIAQAVHLGQADRLGHGVRITEDITFSEHDRSATLGRLAHWVRDHQIALEVCPVSNLQTAAAPGASTIAEHPITRLKELDFAVTLNTDNRLMSRTSMSHEMRLLVSEAGWTIDDLADVTMTAAWSAFLHHDERRDLVDDLILPGYQKIEGALRPGPT0021520_839DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488NANA
AK018_05308249hypothetical proteinATGAGCACGACGCCGAACGACGCCTGGCGCGACACCGGCCTGGAGACGCCCGAGGAGACCACGAGCCTGCTCGACGAGGCCGGGTCCGCGCCCGAGCAGCCGCAGCACGAGTCCGAGGCCGAGGAGTACCACCCGGGGTTCCCGCGGCCCGACCTGGACGGGTCGGCGAACGAGGCCGACGTCGTCGAGCAGGACATCGAGGTGCCGACCGACGACCCGGAGGCACCCGGCGACGACCTGTCCGCGTGAMSTTPNDAWRDTGLETPEETTSLLDEAGSAPEQPQHESEAEEYHPGFPRPDLDGSANEADVVEQDIEVPTDDPEAPGDDLSANANANANANA
AK018_053091296deoA_2COG0213Thymidine phosphorylaseATGAGCGAACCGTTCGACGCCGTCGACGTCATCCGCACCAAGCGGGACCGCCACCACCTGTCGTCCGCCCAGATCGACTGGGTGATCGACGCCTACACGCGCGGCGTGGTGGCCGAGGAGCAGATGTCGGCCCTGGCCATGGCGGTCCTGCTCAACGGCATGAGCCGGGGCGAGATCTCGCGGTGGACGCACGCCATGATCTCCTCCGGGGAGCGCATGGACTTCTCGTCGCTGTCCCGCCCCACGGCGGACAAGCATTCCACCGGCGGCGTGGGGGACAAGATCACCCTGCCGTTGGCACCGCTGGTGGCGGCCTTCGGGGTCGCGGTCCCGCAGCTGTCCGGACGCGGGCTCGGACACACCGGGGGGACGCTGGACAAGCTGGAGTCGATCCCCGGCTGGCGCGCCGCGCTGAGCAACGAGGACATGCTCGCCCAGCTCGACGACGTCGGCGCGGTCGTCTGCGCCGCCGGGGCGGGGCTCGCGCCGGCGGACAAGAAGCTCTACGCGTTGCGGGACGTCACCGGCACCGTCGAGGCCGTGCCGCTCATCGCGAGCTCGATCATGTCCAAGAAGATCGCCGAGGGCACCGGTGCGCTCGTGCTGGACGTCAAGGTCGGGTCCGGCGCCTTCATGAAGGACCTCGAGCAGGCGCGCGAGCTCGCGCGCACCATGGTCGAGCTCGGCACCGACGCCGGAGTCCGTACCGTGGCGTTGCTGACCGACATGTCGATCCCGCTCGGGCGCACGGCCGGCAACGCCCTCGAGGTGCGCGAGTCGGTCGAGGTGCTCGACGGCGCCGGCCCGGACGACGTCGTCGACCTCACCGTCGCGCTCGCCGTGGAGATGCTGGCCGCGGCCGGCCGTCCGGCGGACGAGGACGACGTCCGGCGCGCCCTGTCCGACGGGCGGGCGATGGACGTCTGGCGGCGCATGATCGCCGCCCAGGGCGGGGACCCGGACGCCCCCCTGCCGACCGCGCGGCACACGCACCAGGTCGTCGCCGACCGCGACGGCGTGGTCAGCGAGCTCGACGCCTACGCCGTCGGCGTGGCCGCGTGGCGTCTCGGCGCCGGACGATCGCGCAAGGAGGACCCCGTGCAGGCGGGCGCCGGCGTCGAGATCCACGCGCGGCCCGGTGAGCACGTGGCCGCCGGTGCGCCGGTGCTCACCCTGCACACCGACACCCCGGAGCGGTTCGAGCGCGCCCTCGACGCCCTCGACGGCGGCTGGGCCGTCGCCCCGGGCGGCACCGCCGTGTCCCGGCCCCCGATCGTGCTGGACCGGCTGCACTGAMSEPFDAVDVIRTKRDRHHLSSAQIDWVIDAYTRGVVAEEQMSALAMAVLLNGMSRGEISRWTHAMISSGERMDFSSLSRPTADKHSTGGVGDKITLPLAPLVAAFGVAVPQLSGRGLGHTGGTLDKLESIPGWRAALSNEDMLAQLDDVGAVVCAAGAGLAPADKKLYALRDVTGTVEAVPLIASSIMSKKIAEGTGALVLDVKVGSGAFMKDLEQARELARTMVELGTDAGVRTVALLTDMSIPLGRTAGNALEVRESVEVLDGAGPDDVVDLTVALAVEMLAAAGRPADEDDVRRALSDGRAMDVWRRMIAAQGGDPDAPLPTARHTHQVVADRDGVVSELDAYAVGVAAWRLGAGRSRKEDPVQAGAGVEIHARPGEHVAAGAPVLTLHTDTPERFERALDALDGGWAVAPGGTAVSRPPIVLDRLHPGPT0021365_1419DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021365-deoA-K00758NANA
AK018_05310396cdd_2COG0295Cytidine deaminaseGTGCCGTCCTCGGTCGACTGGGACGCTCTGCGGTCCGCCGCCACGGACGTGACCCGCCACGCCTACGTGCCCTACTCGGGGTACGCCGTCGGCGCCGCCGCCTACGCGGACGACGGGCGCCTGCTGGTGGGCTGCAACGTGGAGAACGCCGCCTACGGCGTCACCCTGTGCGCGGAGTGCTCCCTGGTCTCCGCGCTGGTCACGGGCGGCGGCGGCAGGCTGACCGCCTTCACCTGCGTGGACGGTCGCGGCCGCGTCATCACCCCGTGCGGCCGCTGCCGCCAGCTGCTGTGGGAGCACGGCGGCCCCGACCTGATCGTCGAGACGCCCCGCGGCGTCGTCACCATGTCCGACCTGCTGCCGCAGGCGTTCGGACCGGAGGACCTGGACCGATGAMPSSVDWDALRSAATDVTRHAYVPYSGYAVGAAAYADDGRLLVGCNVENAAYGVTLCAECSLVSALVTGGGGRLTAFTCVDGRGRVITPCGRCRQLLWEHGGPDLIVETPRGVVTMSDLLPQAFGPEDLDRPGPT0021360_3991DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021360-cdd-K01489NANA
AK018_053111296hypothetical proteinATGAGCGCGCCCACCGTCGACGGCGCCCCCACCGGGGCGTCGGACGCTCCCCGCACCGTCACCACCGTCTCGTGGAAGACCTCGATCGCGCTGGCGGTCGTGCTCGCCCTGTACGCCCTGCTGCTCCTGCTCGCCCCGCGCGAGGGCAGCGCACGCTTCTCGCTGTCGACGCCGACCGACTTCTTCCAGCTCCCGGTCTACGTGCTGCCCGGCATGGCGACCGCCTGGGTGTGCGCCGCCGTCGCCGCGGCGCTGCTCGTCGTCTCCGTCGTCGCCACCCGCGCGCAGCGCAAGACCCCGCTGTGGGCCACCGGCGTGTACGCCGCCGCGCTGCTGGTCGGCTTCCTGGCCTGGGCCGCCGCCGGCAGCCCGCGCGACCTGTCCGTCGTCGGGCTCCTCGGCGGGGCGATCGCCCTGTCGGTGCCGCTCGTGTACGGCTCGCTGAGCGGTGTCATCGGCGAGCGCTCCGGCACGATCAACATCGCCATCGAGAGCCAGCTCCTCGCGGGTGCCTTCACGGCCGCCGTGGCGGGCTCGCTGACCAACAGCCCGTGGGTGGGCCTGCTGGCGGCCATGATCGCCGCGGCCCTGGTCGGTCTCGTCCTGGCGGTCTTCACCATCACCTACCGCGTCAACCAGATCATCGTCGGTGTCGTCCTCAACGTGCTGGTGATCGGCCTGACGAGCTTCTTCTACTCGCTGGTGCTCGTGCCGAACACCGAGACGCTGAACTCCACGACCCGCTTCGAGCAGATCCCGATCCCGTTCCTCGAGCGGATCCCGGTCGTCGGCCCGGTGCTGTTCGACCAGACGATCGTGGTCTACCTGATGCCCGTCGTGGTGTTCCTCGTCTGGTACGGGCTCTTCCGCACCCGCTGGGGGCTGCGGCTGCGGGCCGTCGGCGAGCACCCGCGGGCGGCCGACACCGTCGGCATCGAGGTGCTGCGCACCCGGTACCGCGCGCTGCTGATCGCCGGCGCCGTCGGTGGCATGGGCGGTGCGTTCTACACCGTGGTGTCGATCAACCAGTTCGGCCGGGAGATGACCGCCGGCGCAGGCTTCATCGCGCTGGCCGCCATGATCTTCGGCAAGTGGAACCCCGTGCGGGCGGCCCTGGCCGGGCTGCTGTTCGGGTTCGCCACCAACCTGCAGAACGTGCTCTCCGTCGTCGGGTCCCCGGTGCCCAGCCAGTTCATGCTGATGCTGCCCTACGTGGTCACGCTGTTCGCCGTCGCCGGCCTCGTGGGCCGGTCGCGGCCGCCGGCAGCGCTCGCCACGCCGTACACGAAGGAGTAGMSAPTVDGAPTGASDAPRTVTTVSWKTSIALAVVLALYALLLLLAPREGSARFSLSTPTDFFQLPVYVLPGMATAWVCAAVAAALLVVSVVATRAQRKTPLWATGVYAAALLVGFLAWAAAGSPRDLSVVGLLGGAIALSVPLVYGSLSGVIGERSGTINIAIESQLLAGAFTAAVAGSLTNSPWVGLLAAMIAAALVGLVLAVFTITYRVNQIIVGVVLNVLVIGLTSFFYSLVLVPNTETLNSTTRFEQIPIPFLERIPVVGPVLFDQTIVVYLMPVVVFLVWYGLFRTRWGLRLRAVGEHPRAADTVGIEVLRTRYRALLIAGAVGGMGGAFYTVVSINQFGREMTAGAGFIALAAMIFGKWNPVRAALAGLLFGFATNLQNVLSVVGSPVPSQFMLMLPYVVTLFAVAGLVGRSRPPAALATPYTKEPGPT0021050_111DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021050-nupC|yufQ-K23536NANA
AK018_053121362rfuC_2COG4603putative riboflavin import permease protein RfuCGTGAGCGAGACCCCGGACCGGCACTCCGCCGACTCGTCCGACAACCGGCTCGAGGAGGACATCGAGCACGTCGACGCCTCCACCGACCCCGGGCTCGCCGAGGCGCTGGCGCAGGACCGCGCGCGCGAGGAGGGCGACCAGGAGTCCGACGACCAGCGCTGGCAGGACGCCTTCCGGCGGATCATCTCCGGCGGCTGGGCCGTCTCGCTCGGTGCGATCCTGCTGGCCGTGATCGCCGGGTCGCTGATGATCATCGTCACCGACGAGGCCGTCCAGGAAGCGTCGGCCTACTTCTTCTCCCGGCCCGCCGACACCTTCGCGGCGGTCGGCGAGGCCGTGGGCGGCGCCTACTCGGCCCTGTTCCAGGGCGCGGTCTACAACTTCCGGGCCGACACGTTCGCCGCCGGCATCCGGCCGCTGACGCAGACGCTGAACAACGCGACGCCGCTGATCGCCGCGGGTCTCGGTGTCGCGATCGCGTTCCGCGCCGGCCTGCTGAACATCGGTGGTCAGGGCCAGATGCTGATGTCCGCCGCCGCGGCCGGCTGGGTCGGCTTCGGCGTGACGGGCCTGCCCTTCCCGATCCACCTGATCCTCGCCCTGGTCGCGGGCATCCTGGCCGGTGCCCTGTGGGCCGGCATCGCCGGCCTCCTCAAGGCCCGCACCGGTGCCCACGAGGTCATCGTGACGATCATGCTCAACTACGTCGCGCTGTACCTGCTGTCGTACTTCCTCGCGACGCCCGGGCTCATGCAGGCTCCGGGCTCGGCGAACCCGAAGACGCCGCCGACGCCGGAGTCCGCCCAGCTGCCGTCGCTGCTGGGGGAGCGGTACACGCTGCACTGGGGCTTCGTCCTCGCCCTGGTGGCCGTCGCCGTGGTGTGGTGGATCCTCAACCGGTCGGCCGTCGGGTTCTCCTACCGCGCCGTCGGCGAGAACCCGCGGGCCGCCCGCGTCGCCGGCATCGACGTCTCACGGTCGACCGTCTCGGTCATGCTCGTCGCCGGTGCGCTGGTCGGGCTGGCCGGTGTGACCCAGGTGCTGGGGACCGTGACCACCGGGTTCGGCGCCGACATCGACGCCGGGATCGGCTTCGACGCGATCACCGTCGCCCTGCTGGGCAACTCCAACCCGATCGGCGTGCTCGGCGCCGGCATCCTGTTCGGCGCCTTCAAGGCCGGTGGTTCGGCGATGCAGGCCGCCGAGGGCATCCCGATCGAGATCGTGCTCGTCGTGCAGTCCCTCATCGTGCTGTTCATCGCCGCGCCGCCGCTGGTGCGGGCCGTGTTCCGGCTCCCGCAGCCGGGAGGCAAGCCGAGGAAGAAGCGGTCGAAGGCCGCGAGGAAGGAGGCGGCGGCATGAMSETPDRHSADSSDNRLEEDIEHVDASTDPGLAEALAQDRAREEGDQESDDQRWQDAFRRIISGGWAVSLGAILLAVIAGSLMIIVTDEAVQEASAYFFSRPADTFAAVGEAVGGAYSALFQGAVYNFRADTFAAGIRPLTQTLNNATPLIAAGLGVAIAFRAGLLNIGGQGQMLMSAAAAGWVGFGVTGLPFPIHLILALVAGILAGALWAGIAGLLKARTGAHEVIVTIMLNYVALYLLSYFLATPGLMQAPGSANPKTPPTPESAQLPSLLGERYTLHWGFVLALVAVAVVWWILNRSAVGFSYRAVGENPRAARVAGIDVSRSTVSVMLVAGALVGLAGVTQVLGTVTTGFGADIDAGIGFDAITVALLGNSNPIGVLGAGILFGAFKAGGSAMQAAEGIPIEIVLVVQSLIVLFIAAPPLVRAVFRLPQPGGKPRKKRSKAARKEAAAPGPT0021045_185DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021045-nupB|yufP-K23535NANA
AK018_053131521xylG_3COG1129Xylose import ATP-binding protein XylGATGAGGCTCGAGCTGCGTGGGATCACCAAGCGTTTCGGCGCGCTGGTGGCCAACGACCACATCGACCTGGTGGTCGAACCGGGTGAGATCCACTGTCTGCTGGGCGAGAACGGCGCGGGCAAGTCCACGCTGATGAACGTCCTGTACGGCCTGTACGACGCCGACGAGGGCGAGATCCTCCTCGACGGCGAGGTGCAGGACTTCGAAGGACCCGGCGACGCGATGAACGCGGGGATCGGCATGGTGCACCAGCACTTCATGCTCGTGCCGGTGTTCTCCGTCGCCGAGAACGTCATGCTCGGCCACGAGACGACGTCGGGCCCGGGCATCCTGGACCTGTCCGCCGCGCGGGAGACCGTCCGCAGCACCGCGGACCGGTTCGGCTTCCACGTGGACCCGGACGCGGTCGTCGAGGAGCTCCCGGTCGGCGTCCAGCAGCGCGTCGAGATCATCAAGGCCCTGAGCCGGGACGCGCAGGTGCTCGTCTTCGACGAGCCCACGGCGGTGCTCACGCCGCAGGAGACCGACGAGCTGATGGCGATCATGCGCCAGCTCAAGGACGAGGGCAAGGCCATCGTCTTCATCACCCACAAGCTCCGTGAGGTCCGCGAGGTCGCGGACCGCATCACGGTGGTCCGGCACGGCAAGGTCGTCGGCGAGGCCGACCCGACCGCACCGGACAACGAGCTCGCCTCCCTCATGGTCGGTCGTGCCGTGCAGCTGACCGTCGACAAGGAGGCGGCCCGCCACGGCGACAACGAGCTGGCCGTGCAGAACCTCGTCGTCGCGCGCCCCGACGGCCAGATCGTCGTCGACGACGTCAGCTTCTCGGTGCGCGGAGGCGAGATCCTCGTCATCGCCGGTGTGCAGGGCAACGGGCAGACCGAGCTCACCGAGGCGCTGATCGGTCTGCACCCGGACCTGCAGGGATCGATCCGTCTCGACGGCGAGGAGCTGCGGGGGCGGTCGGTCCGCAAGGTCCTGGACGCCGGCGTCGGCTTCGTCCCCGAGGACCGCAGCACGGACGGACTGGTCGGCGAGTTCACGATCGCCGAGAACCTCATCCTCGACCGCACCGACGGCGCGCCGTTCGTCCGCGCGGGCTCGCTGCAGCTCGGCCTGCGCGACGAGTTCGCGCGCGAGAAGGTCGACGAGTTCGACGTGCGCACCACCGGCATCGACCTGCCCGTCGGCCGCCTGTCCGGCGGCAACCAGCAGAAGGTCGTCCTCGCCCGCGAGCTGTCCCGCGACCTGCGCCTGCTCGTGGCCGCCCAGCCCACCCGCGGCGTCGACGTCGGCTCCATCGAGTTCATCCACAAGCGCATCGTCGAGACCCGGGACCACGGGATCCCGGTCATCGTGGTGTCGACGGAGCTCGACGAGGCGGTGGCCCTGGCCGACCGGATCATGGTCATGTACCGCGGTCGCGTCGTCGGCATCGTGCCCGCCGACACCCCGCGCGACGTGCTCGGCCTGATGATGGCCGGCGTCGCGCCCGAGAGCGAAGGAGACGCCGCGTGAMRLELRGITKRFGALVANDHIDLVVEPGEIHCLLGENGAGKSTLMNVLYGLYDADEGEILLDGEVQDFEGPGDAMNAGIGMVHQHFMLVPVFSVAENVMLGHETTSGPGILDLSAARETVRSTADRFGFHVDPDAVVEELPVGVQQRVEIIKALSRDAQVLVFDEPTAVLTPQETDELMAIMRQLKDEGKAIVFITHKLREVREVADRITVVRHGKVVGEADPTAPDNELASLMVGRAVQLTVDKEAARHGDNELAVQNLVVARPDGQIVVDDVSFSVRGGEILVIAGVQGNGQTELTEALIGLHPDLQGSIRLDGEELRGRSVRKVLDAGVGFVPEDRSTDGLVGEFTIAENLILDRTDGAPFVRAGSLQLGLRDEFAREKVDEFDVRTTGIDLPVGRLSGGNQQKVVLARELSRDLRLLVAAQPTRGVDVGSIEFIHKRIVETRDHGIPVIVVSTELDEAVALADRIMVMYRGRVVGIVPADTPRDVLGLMMAGVAPESEGDAAPGPT0021040_2763DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021040-nupA|yufO-K23537NANA
AK018_053151335hypothetical proteinATGAAGAAGTATCTGACGGCTGCCGCCGCCCTGGCCTCGGTCGCGCTCGTCGCGACCGGCTGCAGCGACCCGAGCGTCTCGGGGGCCGAGCCCGCCGCCGGCGACGGTCCGACGGAGGAGGCCGGCTACTGGCCGGAGCCGACCGCCGACCTCAGCGGCACCAGCCTGACGATCTGGGCCGCCCAGAACTCGACCACCGTGCCGGACTCGGTCGTCGGCGAGTTCGAGGCCGCCACCGGCGCCGAGGTCGACGTCGTCACCATCCCGGACCCGTACGAGCAGGGCGTGCAGACCAAGGTCGCCACGGGAGACCTGCCCGACCTGGCGTTCTGGCAGCCGACGGCGTCCATGCTCACGGCCCTCAACGCGCCGACGAACCTGCAGCCGCTCGACGACGCGCCCTGGCTGGACAGCTTCAGCCCCGGCGTGCGGGACATCACCGGCTTCCTGGACGACACCCGGTACGCGGCCCTCATCAGCAGCCCGGCCGTCGAGGGCGTCTACTACAACAAGGAGGTCTTCGCCGAGCACGGGATCACCGGGACGCCGGCCGACTGGGACGAGTTCCTCCAGATCGCCCGCGACCTCGAGGCCGAGGGCCAGACCCCGTTCTTCGAGATGGCGGGCGACCGGTGGGCGACCCAGTGGTGGGTGCAGGTCCAGCTGGCCGACGCCGCCGCCGACGGCCTCTGGGACCGGATCAACACCGGTGAGGAGGCGTTCACCGACGAGACCGTCCTCGGGGCGATCGAGACCTACCAGGGCCTGATCGACGAGGGCCTGTTCAACGAGGACATCGCCACGGCCACCTTCGAGGACCAGGGCGACGCGCTGCTCGCGGGCGACGCCGCCATGGCGGTCCAGGTCAACTCGTTCTTCGGGCAGCTCCAGGCCAAGGCCGACCCGGCCGAGCTCGACGAGACGATCGGGTTCTTCCCGATCTCGCCGAGCGGCAACGTCGGCACCTTCATCCCGGACCAGTCCAACGCGCTGGTCGCGTTCCGCACCGGCGACGCCGACCGCGAGGCGGCCGCCCGCCAGCTGCTGTCCTTCTGGCTCGGCGACGGGTACGAGGGCTTCGTCGAGGCGCAGAACACCGTCTCGCTGCGCACCGACGTCACGACGCCCGACTCCGTGCCGCAGGCGCTGCTCGACGTGCACGACTCCCTCGGCGACTCCGTCGGGTCGATGCAGGCGCTCGCCGTGGCCAACCCCGACCTCTACATCTACCTGGCCGACATGATCCAGGGGACCACCACCCCCGCCGAGGTCGCCCAGCAGACCCAGGACCAGTTCGCCCAGCTCGCGCGCGCCCAGGGCGTCGAGGGCTTCTGAMKKYLTAAAALASVALVATGCSDPSVSGAEPAAGDGPTEEAGYWPEPTADLSGTSLTIWAAQNSTTVPDSVVGEFEAATGAEVDVVTIPDPYEQGVQTKVATGDLPDLAFWQPTASMLTALNAPTNLQPLDDAPWLDSFSPGVRDITGFLDDTRYAALISSPAVEGVYYNKEVFAEHGITGTPADWDEFLQIARDLEAEGQTPFFEMAGDRWATQWWVQVQLADAAADGLWDRINTGEEAFTDETVLGAIETYQGLIDEGLFNEDIATATFEDQGDALLAGDAAMAVQVNSFFGQLQAKADPAELDETIGFFPISPSGNVGTFIPDQSNALVAFRTGDADREAAARQLLSFWLGDGYEGFVEAQNTVSLRTDVTTPDSVPQALLDVHDSLGDSVGSMQALAVANPDLYIYLADMIQGTTTPAEVAQQTQDQFAQLARAQGVEGFPGPT0016330_1029DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
AK018_053162118hypothetical proteinATGGACAGCACGACCCACGACCGCACGACCCTTCCCCTGTGGGAGCGGGGTGCGCACCTCGAGGTCTCCTGGTCCGACGACTCCCCGGTGACCGCGTACGTCGGCCACGCGGCGGAGGACGCCGCGGGCCGGCACGTCCAGCCGCTGGTCGAGATCCTCGCCGTGGGGCACGGGCACGCCCACGCGAACCTCCGGCACACCGCGACCGCCGTCGGCGCCCGCCTGCGGTACGTCGACCACGAGGTCGGGACGGGGGCGGGGCGGCGCGTCGTGACGGTCCGCCAGCGGGACGAGGTCACCGGTCTCGAGGTGACCTCGCACCTGGTGCTCCCGGACGGCCGCACGTCGCTCCAGGCCTGGACCACGGTGCACCACGGCGGCGAGGAGGAGATCGTCCTCCAGGCGGTGTCGTCCCTCGTCGTGGGAGACCCGGTCGGCGCCGGGCCCGTCGCCGACGTCCAGGTCGTCGAGGGCAGCAGCGAGTGGCTCGCCGAGTCCCGGTGGACGACCCGTGGTCTGCGCGACCAGGGCATGCTCGCCGAGGCCCACCTCGCGGTGCACCAGCAGCAGGACGCGCGGGGGAGCCACGCCGTCGTCGGCCGGGGCGCCTGGTCCTCGGGCGAACGCGTGCCGGCGGGCGCACTCGCCTCCCGGACGTCCGGGCTGGGGCTCGCCTGGCAGGTCGAGCACAACGGCCCGTGGCGGGCGGAGATCGCCGAGCGGCTCACGGCCGCGGGCGACGGGACGGTGTCGCTCGGGCTCTTCGGGCCGACCGACACCGACCACGCCTGGTCCCGCGTGCTGCGCCCCGGCGAGACCTTCACGAGCGTGCCCGTGTCGATCAGCGCCGTCGTCGGCGGCTGGCAGGACGCCGTGGCCGAGATGACGCGCCACCGCCGCCACCTGCGGTCCGCCCCGCGGGCCGGCGGCGCGATCGTCTTCAACGACTACATGAACACCCTGATGGGGGACCCGACCACCGAGAAGCTGCTGCCGCTGATCGACGCCGCGGCCGCGGTCGGCGCGGACTACTTCTGCGTCGACGCCGGCTGGTACGACGACGACGGCGACTGGTGGGACTCGGTCGGGCTCTGGGAACCCTCGCGGGCGCGCTTCCGCGACGGCGGCCTCGACCGGGTGCTCGACCACGTGCGGTCCGCGGGGATGGTGCCGGGCCTGTGGCTCGAGCCCGAGGTCGTCGGTGTGCGGAGCCCGCTGGCCGACTCGCTGCCGCACGAGGCGTTCCTGCAGCGGCGCGGGACCCGCGTGGTCGAGCAGGGACGGTACCTGCTCGACCTGCGCCACGAGAGCTCGCGCAAGCACCTCGACGCCGTGGTCGACCGCCTCGTGGACGACATGGGCGTCGGCTACCTCAAGCTGGACTACAACGTGACGCCGGGCGTCGGCACCGACCGCGCCGCGGACAGCCCCGGCGACGGCCTGCTCCAGCACGCGCTCGCGTACCAGTCGTGGCTCGACGGCGTGCTGCAGCGGCACCCCGACCTCGTCGTCGAGAACTGCGCCTCGGGCGGGCTGCGCGCGGACTTCGCGATGCTGTCCCGTCTCGAGCTGCAGTCGACCTCCGACCAGCAGGACCCGCTGCTGTACCCGCCGATCGCGGCCGGTGCCCTCGTGTCGATCCTGCCGGAGCAGGCCGCGAGCTGGGCCTACCCCCAGCCGGACATGAGCGCCGAGGAGATCGCGTTCACGATGATCACCGGGATCTCCGGGCGCCTCTACCTCTCGGGCCGGCTCGACCAGATGGACGCCGCGCAGCGGCGGCTGGTCCGCGAGGGGGTCGACGTCGCCCGCTCCTGGGACGACGCCGACCTCGACGGCGCACCGTTCTGGCCGATCGGCCTGCCGTCCTGGGAGGACGACTGGGTCGCCGTCGGCAAGTCGTCGGCGACGCACAGCCGGATCGCGCTCTGGGCGCGGTCGGGCTCCGCCACGACGATCGACCTGACCGTGCCCGAGGGCACGGCCGAGATCCTCTACCCGCGCGCGGCCACGGACGACTGGGAGGTCTCCGAGATCGCGCCCGGCCGTCTGCGGGTACGCGCCGGAGCCGCCCGGCCCGGCGCACGCCTGCTGCAGATCACCCACCCGACGGGCTGAMDSTTHDRTTLPLWERGAHLEVSWSDDSPVTAYVGHAAEDAAGRHVQPLVEILAVGHGHAHANLRHTATAVGARLRYVDHEVGTGAGRRVVTVRQRDEVTGLEVTSHLVLPDGRTSLQAWTTVHHGGEEEIVLQAVSSLVVGDPVGAGPVADVQVVEGSSEWLAESRWTTRGLRDQGMLAEAHLAVHQQQDARGSHAVVGRGAWSSGERVPAGALASRTSGLGLAWQVEHNGPWRAEIAERLTAAGDGTVSLGLFGPTDTDHAWSRVLRPGETFTSVPVSISAVVGGWQDAVAEMTRHRRHLRSAPRAGGAIVFNDYMNTLMGDPTTEKLLPLIDAAAAVGADYFCVDAGWYDDDGDWWDSVGLWEPSRARFRDGGLDRVLDHVRSAGMVPGLWLEPEVVGVRSPLADSLPHEAFLQRRGTRVVEQGRYLLDLRHESSRKHLDAVVDRLVDDMGVGYLKLDYNVTPGVGTDRAADSPGDGLLQHALAYQSWLDGVLQRHPDLVVENCASGGLRADFAMLSRLELQSTSDQQDPLLYPPIAAGALVSILPEQAASWAYPQPDMSAEEIAFTMITGISGRLYLSGRLDQMDAAQRRLVREGVDVARSWDDADLDGAPFWPIGLPSWEDDWVAVGKSSATHSRIALWARSGSATTIDLTVPEGTAEILYPRAATDDWEVSEIAPGRLRVRAGAARPGARLLQITHPTGPGPT0018835_1454DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
AK018_053171041lacI_2COG1609Lactose operon repressorATGGCCGACAGTCGTGGTGTGAAACCGCCCGTCATCGCCGACGTGGCGCGGGTTGCGGGCGTGTCGGTGCCGACGGTGTCGCGTGTCCTGAACGGTTCGGTGCCGGTGAGCGCCGAGCGCCGGGACCGGGTGCTGGCCGCGGTCAAGGAGCTGGGCTTCCGCCCCAACGGGGCCGCGCGGGCCCTGGCCAACCGCGGTCAGCCCATGATCGCGGTCTTCGCCGGCAACACCACGCGCTACGGCTACGCCTCCACGCTGCAGGGCATCGAGGAGGCGGCCCGGCAGGCCGGGTACATGGTCGTGATCTCGGTCGTGGAGTCGGCGCGGCCGGAGGTCGCCGAGCAGGCGATCGACCACGCGCTGCGGCAGCCGCTCGCGGGTGCCGTGGTGCTGGAGTTCGACCCCCCGGGGGCCGCGGCGCTCCGGGCCGTGCCGGCCTGGCTGCCCAAGGTGGCCGCCGCGGCCGGGAGCAGCTCCGGCGGCGAGTCGGTCCCGCACGCCTACATGGACGACCGCCTCGGGGCCTACCGTGCGACGCAGTACCTGCTCGACCTGGGGCACCGGACGGTCCACCACGTGTCCATCCCGTCGGTGGGCACCGAGAGCGCCCGCCTGGTCGGCTGGCGCGAGGCGCTCACGGAGGCCGGTGCACCCGTGCCGCCCGTGATCGGGGCCGACTGGAGCCCGATGTCCGGGTACGACGCCGGGTCCCGCCTCGCCGCCGACGACGAGGTCACCGCCGTCCTGGCGGGCAACGACGAGCTCGCCATGGGCATCGTCAAGGCGCTGGGCGACCAGGGTCGCCGGGTGCCCGACGACGTGTCCGTCGTCGGCTTCGACGACCATCCGCTGAGCGGGCTGTGGTCGCCGCCGCTGACCACCGTCCGGCAGGACTTCGTGGCGCTCGGACGCCGCGTCGTCGGCCTCCTCCTGGACCAGCTCGCCCCGGGCACGACGGCGTCGTCGGTCCGGATGGTGCCCGACCTGGTCGTCCGGGCCTCGACCGGTCGGGTCGAGGCGGCCGTGCACACCGCGTCCTGAMADSRGVKPPVIADVARVAGVSVPTVSRVLNGSVPVSAERRDRVLAAVKELGFRPNGAARALANRGQPMIAVFAGNTTRYGYASTLQGIEEAARQAGYMVVISVVESARPEVAEQAIDHALRQPLAGAVVLEFDPPGAAALRAVPAWLPKVAAAAGSSSGGESVPHAYMDDRLGAYRATQYLLDLGHRTVHHVSIPSVGTESARLVGWREALTEAGAPVPPVIGADWSPMSGYDAGSRLAADDEVTAVLAGNDELAMGIVKALGDQGRRVPDDVSVVGFDDHPLSGLWSPPLTTVRQDFVALGRRVVGLLLDQLAPGTTASSVRMVPDLVVRASTGRVEAAVHTASPGPT0014791_89DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_053181902hypBA1_3Non-reducing end beta-L-arabinofuranosidaseATGAGCGTGACCACGACAGCGACGAGGCGGCCCGTGCCGGTGATCCCGGCCCGCGGTGCCCTGCGTCCCCTGGGGCTCGACGAGGTCGAGCTGACCGGCGGCTTCTGGGCCGAGCGCCAGCGGCGCAACGCCGAGGTGTCCATCCCGCACTGCGACCACTGGGAGTCCCGGGTCGGCTGGATCGACAACTTCCGGCACGCGCTCGCCGGGACGGTCGAGCAGCGCACCGGGCGGGAGTTCGCCGACTCCGACGTCTACAAGCTCCTGGAGGCGATGGCCTGGGAGTCCGGCCGCACGAGCGACCCGCGCCTGGACGCGCGGATCGAGGAGATCGCGCTCCTGGTCGAGGCGGTCCAGGACGACGACGGCTACGTCAGCACCAAGTACGGCCGGCCCGGGCAGGAGCCGCGCTACTCCGACCTGGCCTGGGGGCACGAGCTCTACTGCTTCGGTCACCTGATCCAGGCCGCCGTCGCCCGCCTGCGCACCGGGCACGACGACACCCTCGTGCGGGTGGCGCGGCGCGCCGCCGACCACGTCTGCGTCGAGTTCGGCCCCTCCGGGCGCGACGACGTCTGCGGCCACCCGGAGATCGAGGTGGCGCTCGTCGAGCTCGCCCGCACCACCGGGGAGGAGCGCTACCTCGAGCAGGCGCGGCTCTTCCTCGAGCGGCGGGGGCGCGGCAGCCTGCCCGACATCGAGTTCGGCCGGGCCTACTACCAGGACGACGTGCCGGTCCGGGAGGCCGAGGTGCTGCGCGGCCACGCGGTCCGCGCGCTGTACCTCACGGCGGCCGCCGTGGACGTCGCGGTCGACACGGGCGACGACGAGCTCCTGCAGACCGTCCGCGACCAGTTCGCCCGGACGCTCGCCCGCCGGACGTACCTGACCGGGGGGATGGGGTCGCACCACCAGGACGAGGCCTACGGCGACGACTTCGAGCTGCCGTCGGACCGCGCCTACAGCGAGACCTGCGCCGGCATCGGGTCGGTGATGGTGGCGTGGCGCCTGCTGCTGGCCACGGGCGACACCCGGTGGGCCGACGTCGTCGAGCGCACGATGTACAACGTGGTGGCGACCTCGCCGTCCCGCGCCGGCGACGCCTTCTTCTACACCAACCCGCTGCACAAGCGGGAGCCGGGGGAGGAGGCCGACCCCGACGAGGCCAGCCCCCGCGCGCTCTCGCGCCTGCGGGCCCCGTGGTTCGAGGTGTCGTGCTGCCCGACCAACGTCGCGCGGACCCTGGCGTCGTTCGCCGCCTACGTCGCGACCGTCTCGGACGACGGCGTGCAGATCCACCAGCACGTGCCGAGCCGGATCGCCACGACGCTCGGCGACGGCCGCGAGGTCGAGCTCGAGGTGGAGACGTCCTACCCCGACGGCGGCGACGTCGTCGTGCGGGTGGTCGCGGCGCCGGCGGGGGAGGTCTCGATCTCCCTGCGGGTGCCCGAGTGGTCGGTGGGTCGGGCGAGCCTGGACGGGGAGCCCGTCGACGGCCCGGTGGCCACGACCCGGCGGCGCTTCGCCGCGGGGGACGAGGTCCGGCTGCGCCTCGACGTGCAGCCGCGGCTGACCGTGGCGGACGACCGGGTCGACGCCGTGCGCGGCTGCGCCGCCGTCGAGCGGGGCCCGCTCGTGCTGTGCGTCGAGTCGACCGACCTCCCGGCCGGCGTCGGCGTGGACCGGGTCCGGCTCGCGGCGGACGCCGTCCCGCACGACCTCGACGACGGCGTGCACGTCTCCGGCGAGCTCGTCGAGCGGGAGGAGGGTCCCTGGCCGTACCGGTCGCGTCCCGCGACCACCCCGGGCGCGACCCTCGACGTGCGGCTCGTGCCGTACCACGACTGGGCGAACCGTGGCCCCAGCACGATGCGCGTCTGGATCCCGCAGGACCGCCCGTGAMSVTTTATRRPVPVIPARGALRPLGLDEVELTGGFWAERQRRNAEVSIPHCDHWESRVGWIDNFRHALAGTVEQRTGREFADSDVYKLLEAMAWESGRTSDPRLDARIEEIALLVEAVQDDDGYVSTKYGRPGQEPRYSDLAWGHELYCFGHLIQAAVARLRTGHDDTLVRVARRAADHVCVEFGPSGRDDVCGHPEIEVALVELARTTGEERYLEQARLFLERRGRGSLPDIEFGRAYYQDDVPVREAEVLRGHAVRALYLTAAAVDVAVDTGDDELLQTVRDQFARTLARRTYLTGGMGSHHQDEAYGDDFELPSDRAYSETCAGIGSVMVAWRLLLATGDTRWADVVERTMYNVVATSPSRAGDAFFYTNPLHKREPGEEADPDEASPRALSRLRAPWFEVSCCPTNVARTLASFAAYVATVSDDGVQIHQHVPSRIATTLGDGREVELEVETSYPDGGDVVVRVVAAPAGEVSISLRVPEWSVGRASLDGEPVDGPVATTRRRFAAGDEVRLRLDVQPRLTVADDRVDAVRGCAAVERGPLVLCVESTDLPAGVGVDRVRLAADAVPHDLDDGVHVSGELVEREEGPWPYRSRPATTPGATLDVRLVPYHDWANRGPSTMRVWIPQDRPPGPT0019100_1502DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955NANA
AK018_05319825hypothetical proteinATGACTCGACTCAACCGCCTCGCCGGTCGCACACCGTTCTACGTGCTGACCGGTGGACTGGCGATCATCTTCCTCTACCCCATCATCTGGACGTCGATCTCCTCGGTGTCCCCGCAGCCCGGCTCCAACCAGGTCGACGGCTTCGGGTGGGGCAACTACGAGACCCTCGTGGCCTACCAGGACGGCGTCTGGCACTACCTGGGCAACTCGCTCGTCGTGTCGGCCGTGGCCGTGGTGACGACCCTCGTCGTCGCGACGCTGGGCGGGTACGCGTTCGCGCGCTTCACGTTCCCCGGCAAGGACGCCCTGTTCCTGCTCACGCTGGCCATCCTCATGGTCCCGTACGCGGCGCTGCTGGTGCCGCTGGTGATCTGGCTGAAGAACATCGGCCTCAACGACACCCTCGTGGGCGTCGGGCTCGTGCTGGCCGTGTTCCAGCTGCCCTTCGCGACCTTCATGATGCGTATCGCGTTCGAGGCGGTGCCGCGCGAGATGGAGGAGGCGGCGCTGGTCGACGGCTGCGGCACCTTCTCCGCGCTGCGCCGGGTGCTCCTGCACGCGGTCAAGCCGGGTCTGATCACGATCGGGCTGTTCGCGTTCCTCGCCGCGTGGAACGACTTCATGGTGCCGCTGTACCTGGTCAGCGGTGACAACCAGCCGCTGCCGCTGGCGCTGGTCAACATGCGGCAGCAGGTGATGGGCGTCATCGACTACGGGGCCACGCAGGCCGGCGTGGTCGTGCTGACGATCCCCTGCATCCTGCTGTTCCTCGTGCTGCAGCGGCACTACGTCAACGGATTCATGTCAGGAGCGTTGAAGGGATGAMTRLNRLAGRTPFYVLTGGLAIIFLYPIIWTSISSVSPQPGSNQVDGFGWGNYETLVAYQDGVWHYLGNSLVVSAVAVVTTLVVATLGGYAFARFTFPGKDALFLLTLAILMVPYAALLVPLVIWLKNIGLNDTLVGVGLVLAVFQLPFATFMMRIAFEAVPREMEEAALVDGCGTFSALRRVLLHAVKPGLITIGLFAFLAAWNDFMVPLYLVSGDNQPLPLALVNMRQQVMGVIDYGATQAGVVVLTIPCILLFLVLQRHYVNGFMSGALKGPGPT0016540_8483DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_05320951lacF_9Lactose transport system permease protein LacFATGTCCATCGCTCCCACCCGCCCTCGGGCCGTCGCCGCGGGGACGCCGGACGCCCCGCCGCCACGGCGCCGGCGCCGTGACCGCGGCGCCTGGCAGGGCTGGATCTACGCCAGCCCGACCGCCCTGCTCGTCACGCTGCTCTTCGTCGTGCCGCTCGTCCTCGTCGTGTGGATGTCCGCCGCGGACTGGACGCTGCTCGGCGGCAACTCGGGGGTCAACTTCCCCGAGAACTTCGTCGAGGTCGTCGACCACCGTCTGTTCTGGCCGTCGGTCTGGTTCACCCTGAAGTACACGGTGATCACCACGGCCATCCTCATCGCGCTGGCTCTCGGCCTGGCGATGCTCGTGCAGGAGAGCACGCGCTGGCGCGGCATCCTGCGGACCTCGTTCCTCATCCCGACGTCGCTCGGCCTCGCCTCGGCGTCCCTGCTCTTCTACGCGCTGTACTCGCCGCAGGTGGGACCGGTCTCGCCGGCGCTCGAGGCGCTCGGTCTGGCCGACGCGAACGTCAACGTGCTCGGGACCCCGTCCGGCGCCCTGTGGTCGACGGTCATCCTCATCGTCTGGCGGTTCGCCGGCTTCTTCATGCTCCTGCTGCTCGTGGGCCTGCAGGGGATCCCGCACGAGGTGTACGAGGCGGCACGCATCGACGGCGCCCGGCCGTGGCAGATCTTCGGCCGCATCACGCTCCCGCTGCTGCGCCCGTCGCTGGCGATGAGCACGATCCTGTGCGTCACCGGGTCCCTGCTCGCCTTCGACCAGTTCTTCATCCTGACCAAGGGCGGCCCCGACGGGTCGACGATGACGGTCGTGCAGCTGATCTACAGCTTCGCCTTCGAGTCGAAGCGGGACCTGGGCATGGCCGCCGCGCTGTCGGTGATCGTGCTCGCCGCCCTCGTGATCATCAACATCGTCCAGCTCAAGACGCTGCGGCGTTCGCCGGACGAGTGAMSIAPTRPRAVAAGTPDAPPPRRRRRDRGAWQGWIYASPTALLVTLLFVVPLVLVVWMSAADWTLLGGNSGVNFPENFVEVVDHRLFWPSVWFTLKYTVITTAILIALALGLAMLVQESTRWRGILRTSFLIPTSLGLASASLLFYALYSPQVGPVSPALEALGLADANVNVLGTPSGALWSTVILIVWRFAGFFMLLLLVGLQGIPHEVYEAARIDGARPWQIFGRITLPLLRPSLAMSTILCVTGSLLAFDQFFILTKGGPDGSTMTVVQLIYSFAFESKRDLGMAAALSVIVLAALVIINIVQLKTLRRSPDEPGPT0016535_2400DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_053211311dasA_7COG1653Diacetylchitobiose binding protein DasAATGACGTACCGCACCTTCCGGGGCGCGAAGGGCCTTGCCGCGGTCACCGTGGCCGGTCTGGCGCTCGCCGGACTGACCGCCTGCTCCGACGGCGGCACCAGCGCCGGGAGCGAGCCGGCGGAGATGTCGGCCACCGGCACGGACGACGGCACGACGCTGACGATGTGGACCCGGGCACCGCTGGAGCGCCAGGCGCGCACCCTGGTCGACGCCTACAACGCCTCGCACGAGAACCAGGTCGACCTGGAGATCGTCCCCAACGACGACATGGAGGGCAAGGTCGGCGCCGCCGCCACCAACGGCGAGCTGCCGGACCTCCTGGCCGGCGACGTCGTCCGCCTGCCCTACTGGGTCACCAACGGTCTCTTCACCGACCTGACCGCCCAGATCGACGGGCTCGACTACGTCGACGACATCACCCGCGGCCACGTGGACGCCGGGACCGACGTCGACGGGAACAAGCACACCCTGCCGTTCGTCACCGACATCTCGGTCATGGCGTGGAACAAGGACCTCTACCGCGAGGCCGGTCTGGACCCGGAGCAGGGGCCGACGACCGTGGACGAGTTCCGCGAGCACGCCGAGGCGATCGCCGCCCTGGACAAGGACGGCGTCTCGGGCACGTACTACGGCGGCAACTGCGGCGGATGCCTGGTCTTCACCTGGTTCCCCTCGATCTGGGCCTCCGGCGAGGAGGTCCTCTCCGAGGACGGACGCGAGTCGCTGCTCGACTCCGAGACCGCGCAGGCCGTCTACGACGCCTACGCGGCGATGAACGACGCCGGTGCCGTCGGTGCCGGCTCCGAGGAGGAGAACGGCGCCACCTGGACCGCCCCCTTCTCCAACGGCAACGTCGGCGTGATGCAGTACCCGAACACCGCCGTGTACGCCGCCCAGGAGGCCGGCATCGACGTGGGCGTCGGGGGCATCCCGGGCGTCGACGGCGGGCAGTCGACCTTCCTCGGCGGTGACGCCATGGGCATCTCGAAGGACTCCGAGAACGTCGACCAGGCCTGGAACTTCCTGGCCTGGATGCTCTCGGACGAGACGCAGCTCGAGGTCGTCGCCCAGAGCGGCGACGTCCCCGGTCGCAACAGCCTGCTCGACAACGAGTACGCGCAGGAGAACCCGCTGGCGCTCACCATGAACCAGCTCGCGGCCGACGGCCGGACCCCGGTCGCGGACTACTTCTCCGAGGCCTTCAACGCCGCCAACAGCCCGTGGCTGACGCTCACGCGCAACGCCACCTTCGGGCAGACGGGAACCGTGGCCGAGGACAACGAGGCCATCACGGCCGTCCTCGACCAGTGAMTYRTFRGAKGLAAVTVAGLALAGLTACSDGGTSAGSEPAEMSATGTDDGTTLTMWTRAPLERQARTLVDAYNASHENQVDLEIVPNDDMEGKVGAAATNGELPDLLAGDVVRLPYWVTNGLFTDLTAQIDGLDYVDDITRGHVDAGTDVDGNKHTLPFVTDISVMAWNKDLYREAGLDPEQGPTTVDEFREHAEAIAALDKDGVSGTYYGGNCGGCLVFTWFPSIWASGEEVLSEDGRESLLDSETAQAVYDAYAAMNDAGAVGAGSEEENGATWTAPFSNGNVGVMQYPNTAVYAAQEAGIDVGVGGIPGVDGGQSTFLGGDAMGISKDSENVDQAWNFLAWMLSDETQLEVVAQSGDVPGRNSLLDNEYAQENPLALTMNQLAADGRTPVADYFSEAFNAANSPWLTLTRNATFGQTGTVAEDNEAITAVLDQPGPT0016545_4910DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_053221029ccpA_12Catabolite control protein AATGCCGACGAAGCCTGAGAAGAAGCGCAGGCCCGCCACTCTCGCCGACGTCGCCCAGATGGCGGGGGTCTCGATCGCGACGGCCTCGAAAGCCTTGAACGGCCGGAGCCAGGTGAAGGCCGAAACCCGTGCACGAGTTTTCGCCGCTGCCGAGCAGCTGAAGTTCTCCCCGAACGCGATGGCGCAGAACCTCATCAGCGGCCGGTCGGGGACCATCGGGCTGGTGACGCACGACCTCGAGGGCCGCTTCTCGATCCCGACCCTCATGGGTGCCGAGGACGCCGCCGGCAACGGCCGCACCTCCGTGCTGCTCTGCGACGCGCGCGGCGACGCGCTCCGCGAGAAGTACCACGTGCAGACGCTGCTCGGCCGCCGCATCGACGGCCTCATCGTCGTCGGCGCCCGCCCGGACCCGCGCCCCTCCCTCGGACCGCTGCCGGTACCGGTCGTCTACGCCTACGCCCCGTCCGAGAACCCGCACGACACCTCGATCGTCACCGACAACCGGCTCGGGGGACGGCAGGCGGCCGAGCACATGCTCGCCTGCGGCCGGCGGCGGATCGCGCTCATCACCGGCGACGCGGACTACGGCGCCGCCCACGACCGTGTCGACGGCGCGCGCGAGGTCCTCGACGCGGCCGGCGCCGAGATCGTGCAGGGCGACGCCCTCTACGGCGCGTGGAGCGAGGAGTGGGGACGCACGGCCGCCGGTCTGGTCGTCGCCCAGCACCCCGACGTCGACGGGATCATCTGCGGCAGCGACCAGATCGCCCGCGGCGTCCTCGACACGCTGCGCGAGACCGGGCGCAAGGTGCCCGACGACGTCGCCGTCACGGGCCACGACAACTGGGAGATCCTCGCGCTCAACGCGCGCCCCCAGCTGACCAGCATCGACATGCGCCTGGAGGAGCTGGGACGACAGGCGGCCGCGCTCCTGTTCGACGCGATCGGCGGACGGGCCGACGAAGGGGTGCACGTCGTGGCCCCGCGCCTCATCCCGCGCGCCTCGACGGGGCCGCGCGTCGCCTGAMPTKPEKKRRPATLADVAQMAGVSIATASKALNGRSQVKAETRARVFAAAEQLKFSPNAMAQNLISGRSGTIGLVTHDLEGRFSIPTLMGAEDAAGNGRTSVLLCDARGDALREKYHVQTLLGRRIDGLIVVGARPDPRPSLGPLPVPVVYAYAPSENPHDTSIVTDNRLGGRQAAEHMLACGRRRIALITGDADYGAAHDRVDGAREVLDAAGAEIVQGDALYGAWSEEWGRTAAGLVVAQHPDVDGIICGSDQIARGVLDTLRETGRKVPDDVAVTGHDNWEILALNARPQLTSIDMRLEELGRQAAALLFDAIGGRADEGVHVVAPRLIPRASTGPRVAPGPT0017992_7680DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_053233882hypothetical proteinATGCTCTCCGCTTCGCTGGCGGCCGCAGTGGCCGCCGCAGCAGGCATGGTCGGCGTGACGGCGACAGCCGCCGCCACCGACGCCACGACCTCCGAGGCCACGTCCTGCTACCAGGCGCCTGCTCCGACGACGAACGCAGCCGTGCTCGCGACACCGACGGCTTCGTACACCGCGGCGTGGAACGACGTCCGTGCCGTGAACGACGGCACCGTGCTGCACACCGACGGGTCCCAGGACCAGATCTGGGGCACCTACTCCGGCGACCGGCCCGCCCAGCAGTGGCTGGAGCTCGACTGGGAGACGCCGCGGACGCTGACGTCCGTCGGCGTGGCGTTCTGGCACGACAACCCGTCCGCGACCGCCGGCGACGGGGTCGCGGTGCCCGCTGCCTGGACGCTGGAGGCCTGGGACGAGGCGTCGGGCGCGTGGCAGCCCGTCGAGCCGGCCGCGGGCAGCGAGTACGGCGTCGCCCCGGACGCGATGAACACCGTCGAGCTCGCCGCCCCCGTGTCGACGACGTCGCTGCGCGCGACCTTCGACGCGACCGGCGACGGCACCTCCTACGCCGCCGTCGCCGTCAGCGAGCTCGAGGCCCACGTCGGTGACGAGGACGCGTTCGTCGCGGACGACGATCAGGAGCGGCTGGTCTCCGACAGCTTCCACGTCGGTGTCAGTGCCGAGACCGGTGGTCTCTACACGCTGCAGAACAACGCCGACACCCCGACCTGCACCAACTACACGATGAACCCGGACATCCACCCGGCGTTCGACATCGACGACTCCCGGTGGACCGGCGACGTGACGCTGAAGGTCGACGGGACGCCGCGGGTGACCGGGCTGTCCGACGACGTGCGGACCGTCTCGCGCGAGGGCGACGCGGTGACCGTGGCGTACACCGGCGACGCGGCGCACCCGAACGGTATCCGCGGGTTCGACCTCGACGAGACCTACACCCTGACCGACGGGGGCAGCGCCCTCGACTGGTCCATCACGCTGGACAACACCTCCGGCGAGTCGGTCGAGGTGCAGGACCTCGCGGTGCCGATGCTCATGAACTCCTGGTGGAACGGGGGCGACCAGACCGGCATCTACGAGCAGAACGTGGGACGGCACTCCTTCGTCGCCCAGGACGGTTCCTACGTCTACTGGCAGCGGCCCAACGGCGTCGGGCCGTTCCTGGTGATGACCCCGAACCCCGGTACCTCCCTGGAGTTCCGGGACAAGGCCCGCACCGGCGAGGGGCCGTTCGGCGAGAACGACCCCGCGTGGGAGGGGCTCGTCGAGCTCGCGATCCACTCGGAGTCCCTGCAGCCGACGCGCCAGGGCAAGATCGAGGGCTACCTGCCCCCGAGCTCCCTCACGCTGCCGGCGGGCGAGGCGCAGACCTACGGCTTCTCCTTCCGGTGGGCCGACGACTACGCCGACCTGCGTGACGTGCTGTACGAGGCGGGCGTCGTCGACGTCGTCTCGCTGCCGGGGATGGTCGTCCCGCAGGACACGGCGGCGACCCTCGCCGTCCGGGCCCGGGACGGGATCGACGAGGTCGTCGGCGAGGACGGCCGCGACGTCTCGATCAGCCCGACCGGGGAGCGGAACGGCTACGAGACCTACGCCGTCGAGTTCGCCGACCAGGGCCCGCACCAGGTCACGGTGCGGTACGCCGGCGGCCGGGAGTCCGTGCTGCAGTACAACTCCGTCGCGCCCGTCGAGGAGCTCGTCGACGCCCGGGCACGCTTCCTCGTCGACCACCAGCAGGCCCGCGACACCGGTCGCGGCTACGAGGGCGCCTTCCTGCAGTGGGACATGAGCCGGGAGCGGCAGATCACGTGGCACGACTACCCGGGCGGCGGCTGGAAGCAGTGGATGGCCGGCGGGTCGGACGACCTGGGCCTGTCCCCGGCGGCGTTCCTGTCGGAGAAGAACCTGCTGGACCCCGACCAGGAACAGGTCAGCGCCCTCGACTACTACCTCGAGGAGTTCATCTGGGGGTACATGCAGACCCAGACGGACGCCGACGGTGAGCGGACCTACCGGATCTACCACTGGTACGACGGCACGGACGGCTCGTCGCCGGGGACCGCCGACGGCCTCGCGACCTGGCGGGTGATGAACTACCCGCACGTGTGGAACACGTACTACGCCATGTACCGCATCGCATCGACGTACCCCGGGGTCGAGACGGCTCTCTCCGCCGACGAGTACCTCCTGCGGGCGTTCCGCACCATGCGGGCCTACTTCACGCACCCGAACGTCGGCACCCTCGACGACGCCTCGCGGGAGATGGGATCGATGGGCGAGATGACGATGCCCGAGATCGTCGACGCCCTGAGCGCGGAGGACTACACCGCCGAGGCCGAGGAGCTGGAGGGGTACATCGCCACGAAGGCCGACGAGATGCTGCAGCGCGAGTACCCCTTCGCCTCCGAGATGAGCATCGACACCACGGCCTTCGAGGCGACCTACACCCTCGCCAAGCGCTACGGCGACGACGAGATGGTCGACAAGGTGACGCGGGCGTCGATGGCGTCGCGCGGCCTGCAGCCGCTCTGGTACTACTACGGCTCCGACAACCGCCACATGGGGGAGTCGTGGTGGAACCTGGGCTACGAGACCCAGCTCGGCGCGTGGCAGCAGCAGGACTTCCTGCTCACCGACGACGCGGCCGACGCCGGGCTCGATCCGGACGAGGTCATGCGGTCCACCTACGGCGCGTACCTGGCCGGATGGTCCAACATCAACACCGGCCAGATCAGCGAGCAGCCGGTGAACCACGGGGCGGCCTCCTGGCAGTTCCAGAGCCAGCAGGGTGCCGGCGAGGGCCAGTGGGGGTTCATGCCCATGCTGGACGGCTGGTGGGCCTGGTCCGGCGAGGCCGACCTCGGGTTCTGGGGCGGTCTGCGCACCGCGTCGGTCAACGTCGTCGACGACTCCGTCGTCGGTCCCTACGCCTACGGCGGCGAGATGACCCACGACAGCGGGACCTTCACGATCGTCCCGCGGGACGGGGTGCGTCAGCGCCTGGCGATGTACAACCTCGACAAGCTCCACCTCGAGCTCGAGGGGGCCACGTACTCCGAGGCACAGGTGGCCGACGACGCCTCCGACCTGCGGCTGGCGGTCGAGGCCGTCGCGCCCGGTGCGTCGGCGCGACTGACGCTCGGCAACCTGCCGGCGGGGGACTACCGGGTCACCGTGGACGGCGGCGACCCGCGGACCGTCGTGAGCGACGGCGACCGGGCGGTCGTCGACCTGGACGGCCTGTCCGGCGAGGGCGTCGTGACGGTGGCCGACGCGACCGCGCCGGCGACGGCGACGCCGCAGGTGTCGGTGGCGCAGCCGGACTGCGAGGCCGGGACGTCCGGGTCGATCGCCGGTGTGCCGGTCGACGGTGTGCAACGGTACGTGCTCAAGGAGTGGGTCGACGGCCAGGCCGGCGGTCACGTCGCGGCCGGCGAGGTCGGTCCGGGGACGTACGTCGTCCGCGCCTGGCCCGCCGATGGCACCGAGCTGCAGGCCGATGGCGACTGGGAGGCGATCTTCCGCGGCCGCACTCAGCTGATCGTCGAGATCGACGCGTGCGGTCCCGTCGTCCCGGCCTGGGACGCGGAGGTCGTCTACCGGGCCGGCGACCGGGTGGTCCTCGACGGCGCGGTCTTCGAGGCGACCTGGTGGACGCAGGACGAGGAACCCGGCGCGTCGGCCCACGGGTCCTGGCAGGAGATCGCCGAGACCGCGGACGGCGATGCCGTCTGGACGCCGTCGCGGATCTTCCACGCGGACGACGTCGTCGTCCACGACGGAGAGCGGTACGCCGCGCGGTGGTGGACGCGGAACGCCGAGCCCGGCACCACCCCGTGGGGTCCGTGGGAGCCGACGGGCTGAMLSASLAAAVAAAAGMVGVTATAAATDATTSEATSCYQAPAPTTNAAVLATPTASYTAAWNDVRAVNDGTVLHTDGSQDQIWGTYSGDRPAQQWLELDWETPRTLTSVGVAFWHDNPSATAGDGVAVPAAWTLEAWDEASGAWQPVEPAAGSEYGVAPDAMNTVELAAPVSTTSLRATFDATGDGTSYAAVAVSELEAHVGDEDAFVADDDQERLVSDSFHVGVSAETGGLYTLQNNADTPTCTNYTMNPDIHPAFDIDDSRWTGDVTLKVDGTPRVTGLSDDVRTVSREGDAVTVAYTGDAAHPNGIRGFDLDETYTLTDGGSALDWSITLDNTSGESVEVQDLAVPMLMNSWWNGGDQTGIYEQNVGRHSFVAQDGSYVYWQRPNGVGPFLVMTPNPGTSLEFRDKARTGEGPFGENDPAWEGLVELAIHSESLQPTRQGKIEGYLPPSSLTLPAGEAQTYGFSFRWADDYADLRDVLYEAGVVDVVSLPGMVVPQDTAATLAVRARDGIDEVVGEDGRDVSISPTGERNGYETYAVEFADQGPHQVTVRYAGGRESVLQYNSVAPVEELVDARARFLVDHQQARDTGRGYEGAFLQWDMSRERQITWHDYPGGGWKQWMAGGSDDLGLSPAAFLSEKNLLDPDQEQVSALDYYLEEFIWGYMQTQTDADGERTYRIYHWYDGTDGSSPGTADGLATWRVMNYPHVWNTYYAMYRIASTYPGVETALSADEYLLRAFRTMRAYFTHPNVGTLDDASREMGSMGEMTMPEIVDALSAEDYTAEAEELEGYIATKADEMLQREYPFASEMSIDTTAFEATYTLAKRYGDDEMVDKVTRASMASRGLQPLWYYYGSDNRHMGESWWNLGYETQLGAWQQQDFLLTDDAADAGLDPDEVMRSTYGAYLAGWSNINTGQISEQPVNHGAASWQFQSQQGAGEGQWGFMPMLDGWWAWSGEADLGFWGGLRTASVNVVDDSVVGPYAYGGEMTHDSGTFTIVPRDGVRQRLAMYNLDKLHLELEGATYSEAQVADDASDLRLAVEAVAPGASARLTLGNLPAGDYRVTVDGGDPRTVVSDGDRAVVDLDGLSGEGVVTVADATAPATATPQVSVAQPDCEAGTSGSIAGVPVDGVQRYVLKEWVDGQAGGHVAAGEVGPGTYVVRAWPADGTELQADGDWEAIFRGRTQLIVEIDACGPVVPAWDAEVVYRAGDRVVLDGAVFEATWWTQDEEPGASAHGSWQEIAETADGDAVWTPSRIFHADDVVVHDGERYAARWWTRNAEPGTTPWGPWEPTGNANANANANA
AK018_05324579hypothetical proteinATGGGTGTGCTGCTGGTGGCGACCGTGGGCGCCGGGACCGCAGCCGCCGAGGACGTGGACGACCAGGGGATCGACGTCTCGGTCGACATCACCGACCAGGGCGGCGGCGAGCTGTCCATGACCGTCGCCGCCAACGAGGGGGTCGACCTCGTCGAGGAGGGCTCGGACGAGTCCGCCCGGCAGTTCGTGGGGACGACGCCGACCGTCACCGTGACCGACACCCGCGACCCCGCCGACGTCCCCGAGGGCCACTACTGGGCCGTGCTCGGCCAGGCCGGCGAGTTCGTCGACGCCACCGACGGGACGAAGACGATCGGGGCGGAGTACCTGGGCTGGACCCCGACGCTGCTGTCGGAGAGCTCCACGGGACTCGTCTCCGAGGGCGAGCCGGTGGACAGCGCCGTGGACGCCGGCCCCGGTCTGGCGGGCCAGGAGCTGCTCGTCTCGACCTGGGAGTCGGGCGCGGAGAGCGGGACGTGGGACGTCGCCGCGGACCTCGCGCTGCGCACCCCGACGGACGTCGAGGCCGGGTCGTACTCGTCCACCATCACCCTGACCCTCATGGAGCAGTCCTTCTGAMGVLLVATVGAGTAAAEDVDDQGIDVSVDITDQGGGELSMTVAANEGVDLVEEGSDESARQFVGTTPTVTVTDTRDPADVPEGHYWAVLGQAGEFVDATDGTKTIGAEYLGWTPTLLSESSTGLVSEGEPVDSAVDAGPGLAGQELLVSTWESGAESGTWDVAADLALRTPTDVEAGSYSSTITLTLMEQSFNANANANANA
AK018_053251077hypothetical proteinATGCCCCGGAGCATCGCGCGTCTCGCGGCCGGCGCGGGCACGGCCGCCCTGCTGGTCGCCGGCGTCCCGGGAACGGCCGGTGCGGCCGCGCCCGGACCGGCCGTGACCACGGCCGACACCGACACCATCACCTGGTCGCTGACCCCCGCGGACGCCGAGGGCGCCGACGACCGGCGCCGCATCGCCCTGGAGCTGGAGCCCGGCGGATCGACGACCGAGCACGTCGCGCTGACGAACAGCAGCGCCACGAGCGTCACCTTCGACCTCTCCGCGGCGGACGGCTACCTCACCGCGAACGGCAGCTTCGACCTCCGGGCGGCCGACGTCGAACCCACCGGGGGCGGCGCCTGGATCGGACTCGAGGACGAGATCACCGTCGCCGCCGGCGAGACCAGCGTGATCCCCCTGACCGTGGCCGTCCCCGAGGACGCGGTGCCCGGCGACCACCCGGCGGGCGTGGCCGCCGCCGTCTCGACGAGCGACGGGCCGGTCACGGTCAGCAACCGCGTCGGCGTCCGCGTCGACGTCCACGTGCCCGGCGAGGTCTCCGCGGCGGTCGCCGTGGCGGACGTGACGGCGGCGCACGCCTCCTCCTGGAACCCGTTCGAGCCCGGCACCGTGGACGTGGAGGCCACCCTGACGGCCACCGGCAACGTCGCGGTCGCCGTCGACCGGGCGGCCGCGGCGAGCGGAGCGGCCGGGCTGGTCCCGCAGGCCCGCAGCGCCCCGACGACGCCGGTCGACCTCATCCCGGGCTCGAGCGTGCGCACCTCCGTCCAGGTCCCCCGGGTGTGGCCCCTGGGCCCCGTGTCCGTCGACCTGACGGTCACCCCCACCCCCGCGGACGGCGTCGACGCCGCCACGTCGCCGCAGACCGTCACCGTCACCGCCTGGGCGATCCCCTGGCCCCAGCTCCTCCTGGTTCTCCTCGCCGCGGCGACGGTCCTGGGGCTCCGCGCGGTGCGCGCCGCGCGCCGCGAGCGCCTGGACGCCCTGCTCGCCGCCGCCCGCGCCGAGGGCGCGGCGTCGGCCGCCCGCGACCGCGCGGAGCGGAGCCCGGTCGGCCCGCCCGGCTGAMPRSIARLAAGAGTAALLVAGVPGTAGAAAPGPAVTTADTDTITWSLTPADAEGADDRRRIALELEPGGSTTEHVALTNSSATSVTFDLSAADGYLTANGSFDLRAADVEPTGGGAWIGLEDEITVAAGETSVIPLTVAVPEDAVPGDHPAGVAAAVSTSDGPVTVSNRVGVRVDVHVPGEVSAAVAVADVTAAHASSWNPFEPGTVDVEATLTATGNVAVAVDRAAAASGAAGLVPQARSAPTTPVDLIPGSSVRTSVQVPRVWPLGPVSVDLTVTPTPADGVDAATSPQTVTVTAWAIPWPQLLLVLLAAATVLGLRAVRAARRERLDALLAAARAEGAASAARDRAERSPVGPPGNANANANANA
AK018_053264701hypBA2Beta-L-arabinobiosidaseATGTCAGCAAGACGCAGAAGCAGGCTCGTCGCGTGCGCGACGACCGGCGCCCTGGCACTGACCGGGCTGGGGGTGGTCCCCGCGGCGGCGGACGACCACGTCGTGCCCGGCAACGAGAGCGACGTCGGCGTGTACACCGACGGCACGACGGACTCCATGGACATCGGCGACCCGACGTACGCCGGCGTCGCCGAGACGACCGCCGCGCTCGAGCCCGGGGTCCCGTGGACCGCCGGCTCGATGCACCAGTCGATCTTCGACCAGGACCTCGCGGCCGGCGGGACCGACTACTACCTGGACCGCGTGCTCGGGGTCTCCGGGACGGCGAACAACGGCGTCCTGCAGACCCGCGGGCGCTCGCTCTACCTGCGTGGCAACAGCAGCTGGGGCGTCATGGGCTTCGCGGGTGACGCGCACGCCGGCGGACCGAACAACCTCGGCGACTTCTACCGCGTGACCGTGCCCGGCGAGGACGTGTCCGAGGTCGGCGCCGAACGCTTCAACGCCCCCAGCCACGCGAAGGCGCGCTACACGGTCGGCTCGACCGGGGTCACGGCCGACCTCAAGAAGTTCATCACGTACGACAACGTGGCCGTCTCCGCGGTCACCTTCACCAACGACGGCGACTCGGACGCCACGTTCACGGTCCGGGCGACGTCGCCCGTCGCGACGGGTACCGGGGAGGCGGCCGACGAGCTGACCGGCCGCCACACCCTCACCAGCGGCGCGAACAACGGTCTGGTCGACACGCCGTGGTCCACGGTGACGGTCGACCTCAAGGCCGCGGGCTTCGAGCGGTCCGGCGCGAACCTCGAGCGGGAGATCACGGTCCCCGCCGGGGGGTCGGTGGACCTGTCCGTCGTCGGCGCCCTGTACAGCGCGTCGATGCCCGACACCCGCCCGAGCCTGGAGGACTACGCCGCGCTCGAGCCCGCGGAGGCCTTCCGCCAGGGCGTCACGGAGTTCAACCGCCGCTGGGCCCAGGACATCCCCTACATCGACGTCCCCAGCGACCCGATCGAGAAGGCGATCGTCTACCGCTGGTGGGGCGAGCGCTACAACGTCCTCGACACCAACGAGCCCGGGTACGTCTACCAGTACCCGACGACCGTCGAGGGGTCGAACCTCTACCAGAACTCGGTCGCGCTCACCCAGCCGATGCACCTGCAGGACACCAAGTGGATCCGCAACCCGTACCTCGGGTACGGCCAGGTGCTCAACATCGGTGAGCTGTCCGGCTCGTCCGCGTTCCTGGACAGCCCCGGCCACACGAGCTGGAACAACCACTACTCGCAGTACCTCGGCACGGCGGGCCTGGAGGCCTTCAACGTCCACGGCGGAGGCGCCGACGTCGCCGAGCGGTTCGCGTCCTACTTCGAGTGGGACGGCGTCGGGCAGCTCGAGCACTACGACGGCAACGACGACAAGCTGATCGCCTACGACACCAACTACATGCCGGGCAACGACGCCGACGCGATCAGCTTCGGCTACCCGAAGGACGGCACCGGCGAGCCGGGGGCGTGGACGATCGAACGTCCCGAGTCGGCCTACGTCTGGGGCGACTTCGACGCGGCCCGCCAGCTCTACGAGATGGCCGGCGCCGACGCCGCGAAGGTCCAGGAGATGGGCGACACCGCCGACCAGATCCGTGACGCGATCCTCGGCCGGCTGTGGAGCGACGAGATGCGGATGTTCCTCGCGGGCACCTCGCACGGCGCCACGTCGGCGGGCAGCCAGAACCCGCTGTCCGAGGCCGAGCGGGACCTCATCCCCGCCAAGGAGTCGAACCTCTACGACGTCTACGCCCAGAACCTCATCCCGACCGACCAGGCGGAGCAGTACGTCGACGGGTTCCGGTTCCTGCGCTACGGGGACAACTTCCCGATCTTCCCGTTCTACACGGCGAACCAGTACGACAAGGACAAGTTCGGGATCGGCGGGTCGAACAACTTCTCCAACATCAACTTCACGGTCCAGTACCGCGCGGTGCGCTCCGCCCTGCGCCACTACGACCCGGAGGGGAAGTACATCACCCCCGAGTACGCCGCCCGCCTGCTCGACTGGATGGCGTGGAGCGTGTACCCGGACGGTGACACCCGGATCCCGAACCAGTCCGAGTACTACGCGAACTGGAACCCGGACACGCAGTCGTACAGCCGCGTGAACCCGAACCACGTGATGCTCGGCAACATGAACTACATCTACGTCGAGGACATGGGCGGCATCCAGCCGCGGTCCGACGACAAGATCGAGCTGTGGCCGATCGACCTCGGGTACGACCACTTCATGGTCAACAACCTGCGGTACCACGGCCACGACGTAACGATCGTCTGGGACCCGGACGGCTCGCACTACGGGCTCGGCGAGGGCTACAGCCTGTTCGTCGACGGCGAGCGCAAGGCCGCGGCCGACGGCCTGGGCCGCTTCGTCTACGACCCGGCCGCGCACGAGGTCGTGGAGTCCGACGACGGCCTGACCGTCGCGGTCGACGGGACCGAGGGAGCCGACCTGCCCGCGGCGGTCGACACCCCCATCGAGGACGAGCGCGTGGTCTCCTACCTCAAGACCGCCGGCATCGACGCCACCGAGGACGCGCCCGACCTGGCCACCGACGCGGTGCTCTCGTCGTCGGCCACCCAGGACGGTCCGCGCCCGACGCCGTGGCGCGAGTTCCACACGCCCGGCACCGGGTCGATGAACTACACGCCCGGCGCGATCAGCGCGACCGAGCGGCCCGTGTCCCTCGACGCGGTGACGGACGGCGTGACCGCCAACGAGCCGTACTGGGGCAACTACGGCACCGAGGGCGACACCGGGTACGTCGAGCTCGACCTCGGCGAGCCGACGTCGTTCGACAACGTCAAGGTGTGGTTCGTCAGCGACCGTCAGGACGGCGGCTACCACGAGCCCAGCCGGTACTCGATCCAGGTGCCCGACGGCGACGGCGGCTGGACCAGCGTGCCGGACACGTACAAGGCGCCGAAGATCCCGGGGCCGAAGTTCAACGAGGCCCTGTTCCCGACCGTCACGACGGACCGTGTCCGCGTGGCGTTCACGAACACCCCGGACCGCTGGACCGCGATCTCCGAGATCCAGGTCTTCGACTCCGGGCGGGACGTCCCCGCGGTCGTCAACGACGCACCCGTCGTCACGGCCTCGGCCGACCTGACCCAGGACGGCAACCTGTCCACGAGCCTCGTGGGCACCGTCGTCGACGACGGGCTGCCCGAGGGCGGCGAGCTGACCCACGCGTGGTCCGTGGCCTCCACCCCGGAGGGCGCCACCGCCATCGTCAACGACCCGGACGCCCTGACCACGACCGTCACCGGGACCGTCGAGGGCACCTACGTCTTCCGCCTCACCGCGGACGACGGCGAGCTGACCACGGAGCGGGACGTCGAGGTCGAGCTGACGGCGAAGGAGGCCTCCGCGGAGTTCGGGTCGGCCGCGTCGATCTCGACCAGCGGCTCGGCGTCGTGGGAGAACCCCTCCCTCGTCAACGACCCGAGCACGCCCTCGAGCTCGGGCCCCGGCGCGGGCAACGGCTGGGGCACCTGGGGCCAGCCGAACAACGGTTCCAGCGAGTCGAACGCGGCGTGGATCCAGTACGCCTGGGACTCGCCGGTCCTGGTCGCCTCGACCGAGATCTACTGGTACGACGACCAGGGCGGCACGCGCATGCCGCAGGCGGACGCGTACACGGTCGAGCACAGCCAGGACGGCGAGAGCTGGACGCCGGTCACCCTGACCGGCGACTCGTCCTACGCCGACGCCCTGCAGCGCGACACGTACAACCGGCTCGAGTTCGAGCCGGTCGAGGCGAGCCACCTGCGGATCCGCATCACCGGCATCCAGGGCGGTGCCGGCGGGACCGGCGTGCTGCGCTGGCGCGTCAACGGGGACACCGTCGACGAGCTGGCCAGCCCGGTGATCATGCGCACCGTCACGGGGACCGTGCCGACCCTGCCCACGTCGCTCGACGTCGTCTACTCCACCGGTCAGCGCGGCACGGTCGACTTCACCTGGCAGGAGATCACGCCGGACATGGTCGCCGAGACCAACGTGGACCCGTTCACCGTCTACGGCTCGAACACCACGTACGGCCTGATCGCCGAGGCCCAGATCTACGTGCGGCCCGAGGACTCCCCGGGCGGCATCTCGATCCAGGGCGCGGAGCAGTTCAGCGAGACCGTGGACGTCGGCGAGGAGCCCTGGCTGCCCACCACGGTCCAGGTCTCGTACAACGACGGCTCGCGCGACAACCAGGCGATCGGCGTCGAGTGGGACTACGACCCGTCCGTGGTGGAGACGCCCGGCGTGTACGAGATCCACGGTGACCTGGTGCTCCCGGAGTACGTCGGCACCGCCGGCACCACGACGACGACCCTGACGCTCACGGTCGGCGGCGGTCAGCCGGCCGGGCCGGAGGTGTCCGTCACGACGCAGACGCGCTGCCTCGGCGGGAAGGTCTACCTCGCGGTGCGGGCCACGAACGACGACGACGCGGCGCTCGCCGTCACGATCGACACGCCGTTCGGGTCGAAGGAGTTCGCCCACGTCGAGCCGGGCAAGAACGCCTTCCGGGCGTTCCCGGCCCGCGCGGCGTCGATCGACGCCGGCGAGGCGACCGTGGTCGCGACGGACGCCGAGGGCGCCTCGTCGACGGTCACGAGCGCCTACGAGGCCGCGAGCTGCGGCTGAMSARRRSRLVACATTGALALTGLGVVPAAADDHVVPGNESDVGVYTDGTTDSMDIGDPTYAGVAETTAALEPGVPWTAGSMHQSIFDQDLAAGGTDYYLDRVLGVSGTANNGVLQTRGRSLYLRGNSSWGVMGFAGDAHAGGPNNLGDFYRVTVPGEDVSEVGAERFNAPSHAKARYTVGSTGVTADLKKFITYDNVAVSAVTFTNDGDSDATFTVRATSPVATGTGEAADELTGRHTLTSGANNGLVDTPWSTVTVDLKAAGFERSGANLEREITVPAGGSVDLSVVGALYSASMPDTRPSLEDYAALEPAEAFRQGVTEFNRRWAQDIPYIDVPSDPIEKAIVYRWWGERYNVLDTNEPGYVYQYPTTVEGSNLYQNSVALTQPMHLQDTKWIRNPYLGYGQVLNIGELSGSSAFLDSPGHTSWNNHYSQYLGTAGLEAFNVHGGGADVAERFASYFEWDGVGQLEHYDGNDDKLIAYDTNYMPGNDADAISFGYPKDGTGEPGAWTIERPESAYVWGDFDAARQLYEMAGADAAKVQEMGDTADQIRDAILGRLWSDEMRMFLAGTSHGATSAGSQNPLSEAERDLIPAKESNLYDVYAQNLIPTDQAEQYVDGFRFLRYGDNFPIFPFYTANQYDKDKFGIGGSNNFSNINFTVQYRAVRSALRHYDPEGKYITPEYAARLLDWMAWSVYPDGDTRIPNQSEYYANWNPDTQSYSRVNPNHVMLGNMNYIYVEDMGGIQPRSDDKIELWPIDLGYDHFMVNNLRYHGHDVTIVWDPDGSHYGLGEGYSLFVDGERKAAADGLGRFVYDPAAHEVVESDDGLTVAVDGTEGADLPAAVDTPIEDERVVSYLKTAGIDATEDAPDLATDAVLSSSATQDGPRPTPWREFHTPGTGSMNYTPGAISATERPVSLDAVTDGVTANEPYWGNYGTEGDTGYVELDLGEPTSFDNVKVWFVSDRQDGGYHEPSRYSIQVPDGDGGWTSVPDTYKAPKIPGPKFNEALFPTVTTDRVRVAFTNTPDRWTAISEIQVFDSGRDVPAVVNDAPVVTASADLTQDGNLSTSLVGTVVDDGLPEGGELTHAWSVASTPEGATAIVNDPDALTTTVTGTVEGTYVFRLTADDGELTTERDVEVELTAKEASAEFGSAASISTSGSASWENPSLVNDPSTPSSSGPGAGNGWGTWGQPNNGSSESNAAWIQYAWDSPVLVASTEIYWYDDQGGTRMPQADAYTVEHSQDGESWTPVTLTGDSSYADALQRDTYNRLEFEPVEASHLRIRITGIQGGAGGTGVLRWRVNGDTVDELASPVIMRTVTGTVPTLPTSLDVVYSTGQRGTVDFTWQEITPDMVAETNVDPFTVYGSNTTYGLIAEAQIYVRPEDSPGGISIQGAEQFSETVDVGEEPWLPTTVQVSYNDGSRDNQAIGVEWDYDPSVVETPGVYEIHGDLVLPEYVGTAGTTTTTLTLTVGGGQPAGPEVSVTTQTRCLGGKVYLAVRATNDDDAALAVTIDTPFGSKEFAHVEPGKNAFRAFPARAASIDAGEATVVATDAEGASSTVTSAYEAASCGNANANANANA
AK018_053273150hypothetical proteinATGTTCCCTCGCAGCAGGAGCAGGACCCGGTCCGCCGTGCTCGTCGGGGTGCTGGCACCGACCCTCGCGCTGGGCGCGACCGTCGGAACGCTCGCCCCGGCGGCCGCCGCCGACCCGTACACCGTCACGTCCACCGAGAACCCGATCCTCGCCGACGGCAGCTACTACTCGGCCGACCCGGCCCCCCTGGTGGTCCCCGCGGGCGCCCCGGGGAACGACACCGCGCAGGACCAGCTCTTCGTCTACACGGGCCACGACGAGGCGGGCCCGACGCAGAACGACTTCATCATGAACGAGTGGGGGGCGTTCCGGACGACGGACGTCGACGCCGGGGAGTGGACCCACCACCCGTCCCTCATGCGCCCGGAGGAGGTCTTCGACTGGGCGACGCCGGGCCGCGCCTACGCCGGCCAGGTCGTCCAGGGCGTCGACCAGCGCTACTACTGGTACGTCCCCGTGGCCGAGCGGGACACCACCGCGTCCGACGCCTTCGGCATCGGCGTGGCCGTGTCCGACTCGCCGACGGGACCGTGGACCGACCACGTCGGCGGCCCGCTCATCTCCCAGCGCGTGCCGGAACCGAACACGATCCACAACATCGACCCGACCGTCCTCGTCGACGGCGAGGGCACCGACGCCCGGGTCTACGTGTGGTGGGGCAGCTTCGGCACGCTGCGCATGCTCGAGCTCGAGCAGGACATGCGCACGCCCGTCGGTGACATCCAGGCGGTCTCGGGGCTCGAGGGCTTCTTCGAGGCGGCGTGGGCCTTCGAGCGCGAGGGCACCTACTACCTGGCGTACGCCGGGAACAACGCCGGGCCGACGTCGTCGTGCACCCCCGCGACCTATCACGCGTGCATCGCCTACGCGACGGCTCCCTCGCCCCAGGGTCCGTGGACCTCCCGCGGCAGGATCCTGGCGCCGGTGTCGTCGACGACGAGCCACCCCGGCATCCTGGAGTTCGACGGCGAGTGGTGGATCGCGTACCACACGGCCGACGCCGAGGGCGGCAACCACTTCCGCCGCTCGGTGGCGATCGACCGCGTCGAGTGGGACGACACCCAGTCGCCGCCCCGGATGGAGGAGGTCGTCACGACGCCGCCGGCGGCCGAGCGCGACACGACACCACGGGCGAACGTCGCGCAGGAGGCCACGGTCCGCGTCTCCAACGAACCCGTGCCGACGCAGTACTGGACGAAGGCGCTCAACGACGAGCTCGTGCGGCCGAACCCCCTGCCCCCGGACATGTGGGGGACCTACACCGGGGACAACCCGCCGCAGCAGTGGGTGCAGTACACCTGGGACCAGCCGATGCGGCTGGCCGGGTCCCGGATCGACTTCTGGAACGACCAGCCGCAGGGCACCGGCGTCGGCGTCGCGGCGCCGGACTCCTGGCACCTGGAGTACTGGGACGCCGGCAGCGGCGGCTGGGCCGAGGTCCCGGACGCCGACGCCTACGGCACCGGGACCGACGGGTTCCAGGACACGACCTTCGCCCCCGTGACGACCACGCAGGTACGGGTGGTCCTGGACGCCTCGACCGACGGCAGCACGTACTCCGCTGTCGCGGTCGAGGAGTGGGAGGTGCACGCCGAGCAGCCCGTGTCGGTCGGCACGCCCGACCTGACCGTCGAGGTCGGCGAGACCGAGCTGCCGGGAACGGTCCCGCTCACCTTCGCCGACGGCGAGACGCTCGACCTCCCCGCCTGGTGGGACGACGTGACGGCCGACGACGTCGCCGCCCCCGGTACGTTCGCCGTCGAGGGGTCGGTGCTCGGGTACGCCGGGGGCCGGGTCGGCGCGGACGTGACCGTGATCCCGGCCGAGGCGCCGGCGGACGACGACACCGCCCCCGACGTCACGCTCACCCCGCTCGGCAGCGCCGGCGCCGAGGGCTGGTTCCGCTCCGCCGTGCGCGTACGCGTCGACGGCACCGACGACTCCGGCGGGCGCGTGGTGCTGACCACGGCGGTCGACGACGCCGAGCCCGTGGTCACCGACCACGTCCGGTCCACCGAGGTCGACGTCAGCGGCGAGGGCGCCCACCGCGTCGTCGCCACCGCGACCGACCGCGCGGGCAACGTCTCGGCCGAGCAGTCGCTCGACGTGCGCATCGACAGCGTCTCCCCGGAGGTCTCCGGGGAGCTGGACGCCGCGGCGCGGACCGTCACGGTCACGGCGAGCGACGAGACCTCGGGCGTGGCGCGCGTGGAGACCGCCGTCGGCACGGGCGAGTGGCAGGTCTACGACGGTCCGGTCGCCGCCCCCGACACGGGGCAGCACCGGGTGTCGTTCCGTGCCGTCGACACCGCCGGGAACGTCGGGACCCCGCGGTCCGTGACGGTCCCCGCCGACGTCTCCGGGCCGCTCAGCGGCAACGTCGGGCCGATCGCGACGGTGTCGGCGTCGTACACGGCGGGCTGGAACAGCGTCGACGCCCTCCACGACGACGCCGACCCGTCGAACCCGAGCCAGGCGCAGCTCTGGGGCACCTGGTCGGGCGACCGGCCGTCGTCGCAGTGGGTGCAGTACGAGTGGTCGCGCCCGATCCGGCTCACGGGCACGGAGCTGAAGTTCTGGCAGGACTCCCCCGCCGGCACCGGTGACGGCGTCGCCGCGCCGGACTCCTGGTCCGTGGAGTACTGGGACGACGCGGCCGAGGAGTGGGCGCCCGTGACCGGCGCGGACCCCTACGACGTGAGCACGACGGAGTTCACCACCGTGGGCTTCGACCCGGTGACGACGTCCCGGCTGCGGGCCACGTTCCACGCGAACGGCAACGGCAGCACGTACTCGGCCGTCGCCGTGACCGAGTGGCGCGTTCTCGCCGACGACCCGGGTGTCGACGGGTCGGAGCCCGACCTCGACGTCACGGCGACGGTGAGCACCCGCTGCCTGGGCGGTCGGGCCTACCTCGCGGTGCGGGCGCTGAACGAGGACGCGGTCCCGGCGGACCTCACCCTCACGACGCCGTTCGGCACCCGGACGGTCGAGGACGTGGCCCCGGGCGAGAACGCCTACCAGGCGTTCCCCACGCGGTCCGTCTCCGCCGCGGCGGGCTCCGTGACCGTGTCCGCGACGGGCGTCGTCGACGGCGAGGAGGTGAGCTCCGAGCAGACGGTCGAGCACGACGCGATCGACTGCTCCTGAMFPRSRSRTRSAVLVGVLAPTLALGATVGTLAPAAAADPYTVTSTENPILADGSYYSADPAPLVVPAGAPGNDTAQDQLFVYTGHDEAGPTQNDFIMNEWGAFRTTDVDAGEWTHHPSLMRPEEVFDWATPGRAYAGQVVQGVDQRYYWYVPVAERDTTASDAFGIGVAVSDSPTGPWTDHVGGPLISQRVPEPNTIHNIDPTVLVDGEGTDARVYVWWGSFGTLRMLELEQDMRTPVGDIQAVSGLEGFFEAAWAFEREGTYYLAYAGNNAGPTSSCTPATYHACIAYATAPSPQGPWTSRGRILAPVSSTTSHPGILEFDGEWWIAYHTADAEGGNHFRRSVAIDRVEWDDTQSPPRMEEVVTTPPAAERDTTPRANVAQEATVRVSNEPVPTQYWTKALNDELVRPNPLPPDMWGTYTGDNPPQQWVQYTWDQPMRLAGSRIDFWNDQPQGTGVGVAAPDSWHLEYWDAGSGGWAEVPDADAYGTGTDGFQDTTFAPVTTTQVRVVLDASTDGSTYSAVAVEEWEVHAEQPVSVGTPDLTVEVGETELPGTVPLTFADGETLDLPAWWDDVTADDVAAPGTFAVEGSVLGYAGGRVGADVTVIPAEAPADDDTAPDVTLTPLGSAGAEGWFRSAVRVRVDGTDDSGGRVVLTTAVDDAEPVVTDHVRSTEVDVSGEGAHRVVATATDRAGNVSAEQSLDVRIDSVSPEVSGELDAAARTVTVTASDETSGVARVETAVGTGEWQVYDGPVAAPDTGQHRVSFRAVDTAGNVGTPRSVTVPADVSGPLSGNVGPIATVSASYTAGWNSVDALHDDADPSNPSQAQLWGTWSGDRPSSQWVQYEWSRPIRLTGTELKFWQDSPAGTGDGVAAPDSWSVEYWDDAAEEWAPVTGADPYDVSTTEFTTVGFDPVTTSRLRATFHANGNGSTYSAVAVTEWRVLADDPGVDGSEPDLDVTATVSTRCLGGRAYLAVRALNEDAVPADLTLTTPFGTRTVEDVAPGENAYQAFPTRSVSAAAGSVTVSATGVVDGEEVSSEQTVEHDAIDCSNANANANANA
AK018_053282247hypothetical proteinATGCCTGACCCGACCTACTCACGGCGGTCCGTCCTGCGCCTCGGCGCGATGGCCGCCGGTGCCACGGCCGGTGCCGTCGCGCTCGCCGGCAGCGGGACCGCCGTCGCGACCGCGCCGCCCGTCCGTGCCTTCGCCCCGGCGGCACCCCCGGTGAGCCGCGGCTTCCTGCGGTCCCTGGACCGCACCGTCACCTTCGACGGCTGGACGGCGCGGCCGTTCGCGATGGCCGACGTCGACCTCGCCCCCAGCATCGCCACCCGGTCCCAGGACCAGATGCTGCACCTGGCGCGCGTCTACCCGGTCGACCGGGTGCTCGCCGTCTTCCGCCGCAACGCGGGCCTCGACGACCGCGGGGCGGCCCCGCCCGGCGGGTGGGAGGGCTTCGGGCACCCGAACGAGGACGCCTGGGGCCCGGACGACTACCCCGGCCGGGAGAACACCCAGACCGCGAACCTGCTGCGCGGCCACTACGGCGGGCACTTCCTGTCGATGGTGGCCCTGGCCTGGGCGAGCACCGGCGAGCAGGTCTTCGCGGACAAGGTCGACGCGATCGTCACGGGCCTCGGCGAGGTCCAGGCGGCGCTGGCCGAGACCGGCCGGTACTCCCACCCCGGGTTCCTCGCCGCGTACGGCGAGTGGCAGTTCAGCCGGCTCGAGGAGTACGCGCCCTACGGCGAGATCTGGGCGCCCTACTACACCTGCCACAAGATCGTCGCGGGGCTGCTCGAGGCGTACTCCCTCACCGACAACGACCAGGCCCTCGAGATCGCCACCTCGATGGCGCACTGGGTCCACGGCCGGCTGTCGGTGCTCCCGCGCGAGCAGCTCGACCGGATGTGGGGTCTCTACATCGCCGGCGAGTACGGCGGCATGAACGAGTCCCTGGCCGACCTGGCCGCGATCACCGGGGACGACACCCACCTGGAGTCCGCGCGGTGCTTCGACCTGACGCGACTCGTCGACGCCTGCGCCGCCGGCGACGACGTCCTCGACGGGCTGCACGCCAACCAGCACATCCCGCAGTTCCCCGGCTACCTCAAGCTCCACGACCTCACCGGCGAGCAGCGCTACCTCGACGCGGTCGAGGGTTTCTGGGACATGGTCGTCCCGGGCCGGACCTACGCCCACGGCGGCGACGGGGAGAGCGAGCACTGGGGCCCGCCGGACACGGTCGCCGGAGACATCGGTCCCCGCAACGCCGAGACCTGCGCCACCTACAACATGCTCAAGCTGTCGCGGCTGCTGTTCTTCCACACCCTCGACCCGCGGTACATGGAGTACTACGAGCGCGGCGTCCTCAACCAGATCGTGGGGTCGAAGAAGAACGTGCAGTCCGACACCTCGCCGGAGGTGACCTACATGTACCCGGTCGACCCCGGGACGTGGCGCGAGTACGGCAACATCGGGACCTGCTGCGGCGGGACGGGCCTCGAGAACCACGTGAAGTACCGCGACTCGGTGTACTTCCGCACCGCCTCCGGCGACGCCGTCTACGTCAACCTCTACCTCGCGTCCACGCTCGAGTGGCCGGAGCGCGGCGTCACGATCGTCCAGGAGACGGCCTACCCGCTCGAGGGCGCCAGCCGCCTCACCGTGCAGGGCGGCGGACCGCTCGACCTGCGGCTCCGGGTCCCCGGCTGGGTGCGCCGGGGCTTCACGGTCGCGGTCAACGGCGTCGTCCAGCAGGTGGACGCGACGCCCGGGACGTACGTCAGCGTGTCCCGGGACTGGTCGCCGGGCGACGTCGTGGACGTCACGATGCCGCTGAGCATCCGTGCGGTGCCCACGATCGACAACCCGGCGATCCAGAGCATCGAGAACGGCCCCACCGTGCTGGTGGCACGCAGCGCGTCGCGCGAGTTCCTCCGGCTCTCCCTCTACCCGCACATGGCCCTGGACGGGACGCTCGACGGCGCCTTCACCGACCTGGGCGACGGGTACCGCCGGCTCGGGGACCTCACCTTCGAGCCGGCGTGGTCCGGCGACGACACGCAGTACCACCTGTACGTCGAGCGGTCCGAGCCGCGCGTCGTGTTCGCGGGCCGCGACAGCCGGGTGGCGAACCCGGTCCGCGCCGACGGCACGTCGTTCCTCGACGCGGTCTGGGCCGACGGCGGGTTCGCCGACCGCGCCGCGTTCCTGCGCAGGGTGCAGAGCACCGTCGAGCAGTTCTCCGCCGACGGGCTCCTCAGCCGTCGCGACGGGCAACGGATCCTGGTCACGGCGGGGAAGGCGAGGTTCGCATGAMPDPTYSRRSVLRLGAMAAGATAGAVALAGSGTAVATAPPVRAFAPAAPPVSRGFLRSLDRTVTFDGWTARPFAMADVDLAPSIATRSQDQMLHLARVYPVDRVLAVFRRNAGLDDRGAAPPGGWEGFGHPNEDAWGPDDYPGRENTQTANLLRGHYGGHFLSMVALAWASTGEQVFADKVDAIVTGLGEVQAALAETGRYSHPGFLAAYGEWQFSRLEEYAPYGEIWAPYYTCHKIVAGLLEAYSLTDNDQALEIATSMAHWVHGRLSVLPREQLDRMWGLYIAGEYGGMNESLADLAAITGDDTHLESARCFDLTRLVDACAAGDDVLDGLHANQHIPQFPGYLKLHDLTGEQRYLDAVEGFWDMVVPGRTYAHGGDGESEHWGPPDTVAGDIGPRNAETCATYNMLKLSRLLFFHTLDPRYMEYYERGVLNQIVGSKKNVQSDTSPEVTYMYPVDPGTWREYGNIGTCCGGTGLENHVKYRDSVYFRTASGDAVYVNLYLASTLEWPERGVTIVQETAYPLEGASRLTVQGGGPLDLRLRVPGWVRRGFTVAVNGVVQQVDATPGTYVSVSRDWSPGDVVDVTMPLSIRAVPTIDNPAIQSIENGPTVLVARSASREFLRLSLYPHMALDGTLDGAFTDLGDGYRRLGDLTFEPAWSGDDTQYHLYVERSEPRVVFAGRDSRVANPVRADGTSFLDAVWADGGFADRAAFLRRVQSTVEQFSADGLLSRRDGQRILVTAGKARFAPGPT0019100_725DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955NANA
AK018_053292001hypothetical proteinATGAGCACGCACGGCAACGACACGGTCCTCCTCCCGCTCGGCGCCGTCGAGCGCCGCGTCCCCGACGGCTCGCGGCAGCGGCGGATCCTCGCCGGTGCCACCGCCCTGGCCCTCGCGGTCGCGGGCGCGGGCGCGGCCCTGTGGACGGCCGGGACGGGCGGCGGCACGGCCCCGGCCGTGGCGGCGGCCGCGGAGGACGACCCCGCGAACGTGGCGCTGGTCGGCACGCCGGAGGCCAGCTACACGGCACCGTGGCACCGCCTCGACGCCGTCCACGACGGCGAGGTGGCGCCGACCGGCACCTGGGAGCAGGCCTGGTCGACGTGGAGCGGGGAACGCCCCGCCTCCCACTGGCTGGAGTACTCGTGGCCGGTGCCGGTGACGGTCGACCGGTCGGTGATGTCCTTCTGGACGGACGGGACCGGCGCGAACGGCGACAACGTCCGGGTGCCGTCGTCGTGGTCGATCCAGTACTGGGACGCCGACGCCGAGCAGTTCGTCGACGTCCCGAGCCCCAGCGGGTTCGGTCTCGAGCGCACCACCCCGAACGAGACGACCTTCGACCCGGTCACCACGACCCGCGTCCGGGCGGACCTCGACGCCCTGCAGGGCACCGACGTCGACTCCTACTCGGCCGTGGGCGTCACCGAGTGGGAGCTCTGGGGCACCGGTGGCGTGGAGGAGCCCGACCCGGTCGACCCGCACGGGCCGATCGACCACGAGCCGGTGCACGTGCCCACCGACGTGGGCGTGCTGCCCGAGCTGCCCGCCGACCTCGACGCCGTCTACACCGACGGCCGGGTCGAGACCGCCGAGGTGAGCTGGGAGGAGGTCACGGCCGAGGACGTGGCCGAGCCCGGGTCGTTCACCGTCGCGGGCACCTCCCCCGAGCTCGTCGCCCCGGTCGAGGGCACGGTCCACGTGCGCGACGGCGAGCCCGGCGACGTCGTCGCCGTCGACTACGTCAGCGTCGTCACGCTCGCGGGCACCGCACCGGTCCTGCCCGGCACCGTGGTCGCCGAGTACGCGGACGGCACACGGGACAGCAGCGTCCCGGTGACGTGGGACGCCGTCGACCCGTCCGACCACGCGGAGGCCGGGAGCCTGTTCTTCGTCACCGGCGACGTCACCGGGACGGACGTCGCCGCCGAGGCCACCGTGTTCGTGGTGGCCCCGGACGACGGCGAGGACACCGTCGCCCCGACGGTGATCGTGTCCGCCGAGCCGGGCCCGGCGACGTCGGGCTGGTTCCTGAGCAGCCCGACGATCACCGTCACGGCCAGCGACGACCGCGATCCCACCCCCGCGGTCGAGGTCGCGGTCGACGGCGGGGACTGGTCCCCCGACGACGGGCCGTTCGTGCTCGAGGACGACGGCGAGCACACCGTGGCCGTCCGCGCCACGGACGCCGCGGGCAACGTGGGCGAGGGGTCGCGCACCCTCCGGGTCGACACCACCGCCCCGGCGACCACGGCGACGGTGCGCGATCTCGGCACGAGCGTCGAGGTCACCCTCGCCGCGACGGACGCCGGGTCCGGTGTGGACCGGATCCAGTGGGAGGGTCCCGGCACGTTCTGGGGCACGTACACCGAACCGTTCACCCGGGCGCTGACCGACACCGAGCAGGTCCTCGAGTTCGCGGCGACCGACGTCGCGGGCAACGTCGAGGAGCGGGGTCAGGTCGTGCTCCCGGCGCTCGACGCCGGGGACCGTCCGGCCGTCGAGGCGACGGTGCAGCAGCGCTGCCTGGGCGGCCGAGGCTACGTGGCGGTGCGGGCGCAGCACGCCGAGGAGGTCCCGGTCTCGCTCACCGTGGACACGCCCTACGGGTCCCGGACGGTCGAGGACGTCGAGCCGGGCGGGAGCGTCTACCGGGCCTTCCCGGCGCGCACCGGGTCCGTCCCGGCCGGCGAGGCGACGGTGACGGGCACCGCCATGATCGACGGCGAGGAGGTGTCCGCGACCGAGCGCGTCGGCTACGACGCGTTCGACTGCGGCTGAMSTHGNDTVLLPLGAVERRVPDGSRQRRILAGATALALAVAGAGAALWTAGTGGGTAPAVAAAAEDDPANVALVGTPEASYTAPWHRLDAVHDGEVAPTGTWEQAWSTWSGERPASHWLEYSWPVPVTVDRSVMSFWTDGTGANGDNVRVPSSWSIQYWDADAEQFVDVPSPSGFGLERTTPNETTFDPVTTTRVRADLDALQGTDVDSYSAVGVTEWELWGTGGVEEPDPVDPHGPIDHEPVHVPTDVGVLPELPADLDAVYTDGRVETAEVSWEEVTAEDVAEPGSFTVAGTSPELVAPVEGTVHVRDGEPGDVVAVDYVSVVTLAGTAPVLPGTVVAEYADGTRDSSVPVTWDAVDPSDHAEAGSLFFVTGDVTGTDVAAEATVFVVAPDDGEDTVAPTVIVSAEPGPATSGWFLSSPTITVTASDDRDPTPAVEVAVDGGDWSPDDGPFVLEDDGEHTVAVRATDAAGNVGEGSRTLRVDTTAPATTATVRDLGTSVEVTLAATDAGSGVDRIQWEGPGTFWGTYTEPFTRALTDTEQVLEFAATDVAGNVEERGQVVLPALDAGDRPAVEATVQQRCLGGRGYVAVRAQHAEEVPVSLTVDTPYGSRTVEDVEPGGSVYRAFPARTGSVPAGEATVTGTAMIDGEEVSATERVGYDAFDCGNANANANANA
AK018_053301248arcA_2COG2235Arginine deiminaseGTGACAGACCTGACGCCGACCCTCGGCGTGCACTCGGAGGTGGGTCGGCTCCGCAAGGTTCTGGTCTGCCGGCCGGGCCTGGCGCACGAGCGGCTGACGCCCAGCAACTCCGACGACCTGCTGTTCGACGACGTCATGTGGGTGGAGGCCGCCCAGCGCGACCACGCCGACTTCGTCGACGAGCTGACCGTCCGCGGGGTGGAGGTCGTCGAGCTGCACGACCTGCTCGCGCAGACGATGGCGGACCCGCAGGCACGCTCGTGGCTGCTGGACCGCAAGGTGGTCCCGAACCGGGTCGGCCTGGGGCTCGTGGAACCCGCGCGGGCCTACCTGGACGGGCTGGCGCCGGCAGAGCTGTCCCGATACCTCGTCGGCGGGCTGTCCACCGCCGACCTGCCCGACGACTACCGCACCGGCTACGTGTCCCTGGCCCACGAGTCGCCGGACGCCCGCGAGTACCTGCTCCCGCCGCTGCCCAACACGCTCTACACCCGGGACACCACGTGCTGGATCTACGGGGGCCTCACGCTCAACCCGCTGTACTGGCCGGCGCGCAAGGAGGAGACGCTGCTGATGAAGGCGGTCTACGCCTTCCACCCCGACTACCGCGACGCGACGGTGTGGTGGGGCGACCCGGAGGTCGACTGGGCCCAGGCCTCCCTGGAGGGCGGCGACGTCATGCCGGTCGGCGGCGGCGTCGTGCTCGTGGGGATGAGCGAGCGCACCTCGCGCCAGGCCATCAGCCAGCTCGCCAAGGCGCTGTTCGACGCCGGGGCGGCGCAGCAGGTGGTGGTGGCCGGCATGCCGCGGCTGCGGGCGGCGATGCACCTGGACACCGTGTTCACCTTCGCCGACCGCGACCTGGTGACCGTCCACCCGCGGATCGTCGACGGCATCCACCCCTACGTGCTCTACCCGAGCGACCGGTCGCCCGGCGTCGAGGTGGTCGACGCCCGGGGCAAGTCCTTCGTCGACGTCGTCGCGGAGGCGATGGGCCTGCCGCGCCTGCGGGTCGTGGAGACCGCCGGCGACGTGTACGCCTCCGAGCGTCAGCAGTGGGACTCCGGCAACAACGCCGTCGCCGTCGAGCCGGGCGTGGTGTTCACCTACGACCGCAACACCCAGACGAACGCCGCCCTGCGGAACGCCGGGGTCGAGGTGATCGAGATCGTCGGTGCCGAGCTGGGCCGCGGACGCGGCGGCGGGCACTGCATGACGTGCCCGATCGTGCGCGACCCGCTCGACTGAMTDLTPTLGVHSEVGRLRKVLVCRPGLAHERLTPSNSDDLLFDDVMWVEAAQRDHADFVDELTVRGVEVVELHDLLAQTMADPQARSWLLDRKVVPNRVGLGLVEPARAYLDGLAPAELSRYLVGGLSTADLPDDYRTGYVSLAHESPDAREYLLPPLPNTLYTRDTTCWIYGGLTLNPLYWPARKEETLLMKAVYAFHPDYRDATVWWGDPEVDWAQASLEGGDVMPVGGGVVLVGMSERTSRQAISQLAKALFDAGAAQQVVVAGMPRLRAAMHLDTVFTFADRDLVTVHPRIVDGIHPYVLYPSDRSPGVEVVDARGKSFVDVVAEAMGLPRLRVVETAGDVYASERQQWDSGNNAVAVEPGVVFTYDRNTQTNAALRNAGVEVIEIVGAELGRGRGGGHCMTCPIVRDPLDPGPT0020075_168DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020075-arcA-K01478NANA
AK018_05331405hypothetical proteinATGATCGCTGCCGGACTCGTCCTGGCCGCCCTGGCCGCGGCCCTGCACATCTACATCTTCTGGCTGGAGTCGTTCGCCTGGACGACCCGCGCGCGGGCGGTCTTCGGCACGACGGCGGAGCAGGCGGCGGCGACCCGCGAGCTCGCGTTCAACCAGGGTTTCTACAACCTGTTCCTCGCGATCATCGCCGTCGCCGGCATCGTCCTGACGCTGCTGACCGGGCCGTTCGACAGCCCGCGGCCGGACATTGCCGGCGCCTCGCTGATCCTGGCAGGCACGGGCGCGATGCTGGCCGCCGCTCTCGTGCTGCTCGCCTCGTCCCTCCGCCGGTGGCGTGCCGCCGTCGCGCAGGGCACGGTGCCGCTGCTCGCCGTCGTGACGGTCACCGCGACACTCGTGCCCTGAMIAAGLVLAALAAALHIYIFWLESFAWTTRARAVFGTTAEQAAATRELAFNQGFYNLFLAIIAVAGIVLTLLTGPFDSPRPDIAGASLILAGTGAMLAAALVLLASSLRRWRAAVAQGTVPLLAVVTVTATLVPNANANANANA
AK018_05332867mntB_3Manganese transport system membrane protein MntBATGACCCTCGTCGACCTGCTCGTCGAACCCTGGACGTACGACTTCATGGCCCGGGCCTTCGTCACCACGACGATCGCCGCGGTCGTCGCCGCGCTGCTGTCCTGCTGGCTGGTGCTCGTCGGTTGGTCCCTCATGGGCGACGCGGTCTCCCACGCGGTGCTGCCCGGCGTCGTCCTCGCCTACATCCTCGGCGCCCCGTTCGCCCTCGGGGCGCTCGTGTTCGGCGGTCTGGCGGTGGTGCTCATCGGGGCGGTCCGGGACACCGGCCGGGTCAAGGAGGACGCGGCCATCGGCATCGTGTTCACGACCCTCTTCGCCCTCGGGCTGGTGCTGGTCTCGGTGACCCCCAGCCAGACCGACCTGAGCCACATCATCTTCGGCAACGTCCTGGGGATCTCGTCGTCCGAGCTGCTGCAGGTGGCCGTGCTCGCCGTCGTCGGCTCCGCGGTGCTGCTGGTCAAGCGGCGGGACCTGGTCCTCTTCGCCTTCGACCCCACCCACGCCCACGCGATCGGGTTGTCCACCCGGCGGCTGTCCGCGCTGCTCCTGGGCGTGCTCGCCCTGACCGCCGTCGTGACGCTGCAGGTCGTCGGCGTGATCCTCGTCGTGGCGATGCTCATCATTCCCGGCGCGACGGCCTCGCTGCTCACCCGGCGCTTCGGCCGGATGCTGGTGCTGGCGCCGACGATCTCGGCGCTGTCCTCGATCGTGGGGATCTACCTGTCGTACTGGCTCGACGCCGCCTCGGGCGGGATGGTCGTGCTGGTGCAGGGGGCGGTCTTTGCCGTCGTGCTGCTGGCCGGTCCGCGTTCCGCGCTGCTGCGCGGGCGCGCACGGAGGCGCGTCAGGGCACGAGTGTCGCGGTGAMTLVDLLVEPWTYDFMARAFVTTTIAAVVAALLSCWLVLVGWSLMGDAVSHAVLPGVVLAYILGAPFALGALVFGGLAVVLIGAVRDTGRVKEDAAIGIVFTTLFALGLVLVSVTPSQTDLSHIIFGNVLGISSSELLQVAVLAVVGSAVLLVKRRDLVLFAFDPTHAHAIGLSTRRLSALLLGVLALTAVVTLQVVGVILVVAMLIIPGATASLLTRRFGRMLVLAPTISALSSIVGIYLSYWLDAASGGMVVLVQGAVFAVVLLAGPRSALLRGRARRRVRARVSRPGPT0004345_44DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004345-mntB1-K11602NANA
AK018_05333762mntB_4COG1121Manganese transport system ATP-binding protein MntBGTGACCGGCGCCGACGGCGCGCCCGCCCTCGAGGCCGACGGCGTCACCGTCCGGTACGGCGACGTGCTCGCCCTGGACGGTGTCACGCTCCGCCTCGGCCGCGGCACCGTGTGCGGGCTGATCGGGATGAACGGCTCGGGCAAGTCCACGCTGTTCAAGGCGCTGCTCGGCATGGTCGACCTCACCGCCGGCACGGTGCGGGTCGACGGCGGCACCCCGGCGCGTGCCCGCCGCAGGGGGGCGGTGGGCTACGTGCCCCAGACCGAGGCCGTCGACTGGGCCTTCCCCGTCTCGGTGCGGGACGTGGTGATGATGGGCCGGTACGGCCACCTCGGGATCACACGCCGACCGCGACCGGCCGACCACGAGGCGGTCGAGGCCGCGCTGGAGCGGGTGGAGCTGGCGGACCTGGCCGACCGCCAGATCGGACAGCTCTCCGGGGGCCAGCGCAAGCGGGCGTTCGTCGCCCGCGGCATCGCCCAGGACGCGCGCACGATGCTGCTCGACGAGCCGTTCGCCGGGGTCGACAAGCGCTCGGAGGCCACCATCGTGCGGCTGCTGCGCGAGCTGGCCGCCGACGGCCGCACCGTGCTCGTCTCCTCCCACGACCTGCACGCCCTGCCGCAGCTCGCCGACGAGGCGGTCCTGCTGCTGCGCCGCGTGCTGTTCCACGGGTCCGTCGCCGAGGCGCTGGAGCCGGACAACCTGGCGCGCACCTTCGGGCTCGACGTCACGGACGCCCGCGGCGGTGAGGCCGCATGAMTGADGAPALEADGVTVRYGDVLALDGVTLRLGRGTVCGLIGMNGSGKSTLFKALLGMVDLTAGTVRVDGGTPARARRRGAVGYVPQTEAVDWAFPVSVRDVVMMGRYGHLGITRRPRPADHEAVEAALERVELADLADRQIGQLSGGQRKRAFVARGIAQDARTMLLDEPFAGVDKRSEATIVRLLRELAADGRTVLVSSHDLHALPQLADEAVLLLRRVLFHGSVAEALEPDNLARTFGLDVTDARGGEAAPGPT0004340_136DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004340-mntA1-K11603NANA
AK018_05334918COG0803putative periplasmic iron-binding proteinATGGTGTCGATCGCGGCTGCCGCCGCCCTGCTCACCGCGTGCACCACGGCGTCGGGCCAGGACGCCGCCGACGACGACCGCCCCGTCGTGCTGACCACCTTCACGGTGCTGGCCGACATCGCCGAGAACGTCGGCGGCGACCACCTGCGGGTCGAGTCGATCACCAAGATCGGCAGCGAGATCCACGGGTACGAGCCGACCCCCGGCGACATCCGGCGTGCCTCCGACGCCGACCTGATCCTCGACAACGGGCTGAACCTCGAGGCGTGGTTCGCCCAGTTCGTGGCCGACGCCGACGCTCCGCACGTCGTCGTCTCCGAGGGGGTCGAGGTGCTCGACATCGCGGACGGCGCCTACGGCGGCACGCCCAACCCGCACGCGTGGATGAGCCCGCTGAACGTCCAGACCTACGTCGAGAACATGGTCACCGCGTTCTCCGACCTCGCCCCGGAGCACGCCGAGGACTTCGCCGCGAACGCCGCGGTCTACGACGCCGAGCTGCAGCAGGTGCAGGACGACCTCGTCGCCGAGGTCGAGACCCTGCCGGCCGCGCAGCGTGCGCTCGTGACCTGCGAGGGCGCGTTCTCCTACCTCGCGCGCGACGCCGGGCTGAGCGAGCACTACCTGTGGGCCGTCAACGCCGAGCAGCAGGCCACCCCGCAGCAGGTGGCCGGGGTCATCGAGGTCGTCGAGGCGCAGGACGTGCCGGCCGTGTTCTGCGAGTCCACGGTCTCCGACGCCGCCATGCAGCAGGTCGTCGAGGCCACGGGCGCGGCGTTCGGCGGCACGCTGTACGTCGACTCCCTGTCCGAGCCCGACGGTCCCGTGCCGACCTACCTCGAGCTGATCCGCCACGACGCCGACGTCATCGTCGCCGGGCTCACGGGCGCCACCGACGCAACCGGGGCGGACTCGTGAMVSIAAAAALLTACTTASGQDAADDDRPVVLTTFTVLADIAENVGGDHLRVESITKIGSEIHGYEPTPGDIRRASDADLILDNGLNLEAWFAQFVADADAPHVVVSEGVEVLDIADGAYGGTPNPHAWMSPLNVQTYVENMVTAFSDLAPEHAEDFAANAAVYDAELQQVQDDLVAEVETLPAAQRALVTCEGAFSYLARDAGLSEHYLWAVNAEQQATPQQVAGVIEVVEAQDVPAVFCESTVSDAAMQQVVEATGAAFGGTLYVDSLSEPDGPVPTYLELIRHDADVIVAGLTGATDATGADSPGPT0004350_101DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004350-mntC1-K11601NANA
AK018_05335261hypothetical proteinATGACCGTGACCGGGATCATCACCGCCATCGTCGTCGGCGCCGTCATCGGGGCGCTGGGACGTCTCGTGCTGCGGGGCAAGCAGAACATCTCGATCATCGCCACGATCCTCGTCGGGATCGTGGCGGCCCTGGTCGGTACCTGGCTGGCGAGCCTCGTGGGGGTGGCCGACACCGGCGGCATCGACTGGATCGAGCTGGCCTTCCAGATCGGGCTCGCGGCGATCGGCGTCTCGATCGTGGCGGGATCCGCCCGCCGCTGAMTVTGIITAIVVGAVIGALGRLVLRGKQNISIIATILVGIVAALVGTWLASLVGVADTGGIDWIELAFQIGLAAIGVSIVAGSARRNANANANANA
AK018_053362817ctpFCOG0474putative cation-transporting ATPase FATGGGATCCGCTGCCGCGGCCACGTCACCGCCCGAGTCGCCCTGGGCGTCACCGCCGCAGGCGGTGCTGAGCGCCCTGGGCACGGGGGCGGCGGGCCTGCGGACCGACGAGGCCGCCGAGCGGGTCGCCGCCGTCGGGCCGAACCGCCTCGCGACCGTGCGGCGCGACCCCCTGTGGAAGCGGGTCGGTGTCCACTTCGACGACATCCTCATCGAGATCCTGCTCGTGGCGGCTCTCCTCAAGGCGTTCCTGGGCGACTGGGTCGACGTCACCGTCATCCTCGCGGTGGCGGTGATCAACGCGGGGGTCGGGTTCGTCCAGGAGGGGCGGGCGGAGAAGGCCCTGGAGGGGATCCGCCGGATGCTGTCGGCCTCGGCCCAGGTGCGGCGCGACGACGCCTGGACCGAGATCCCGGCCGACGGCGTCGTCCCCGGCGACCTGCTGCGGGTGAGCTCGGGCGACCGTGTCCCGGCCGACGTCCGCCTGCTGCGCGCGACCAACCTGCGTGTCGACGAGTCCGCGCTGACCGGCGAGTCGGTGCCCGCCACCAAACAGGTGGACGCCGTCGCGGCCGACGCCGGGGTCGGGGACCGGACGAGCATGCTGTTCTCCGGCACCCTGGTCGCCGCGGGGCAGGGCGTGGGGGTCGTCACCGCCACCGGGCGGTCGACCGAGCTCGGGCGCATCCAGACCCTCATCGCCGACGTCCAGAGCCTCGAGACGCCGTTGACCCGCCGCCTCGACCGGTTCGGACGCATCCTGGCGGTGGTCATCGTCGCGATGGCGGTCCTCATGGTGGCCGTCGGGTGGTTCGTGCACGGGTTCGGCGTCGACGAGCTGGTCTCGGCGTCCATCGGCTTCGCGGTGGCCGCCATCCCGGAAGGCCTGCCGGCCCTGGTGACGATCACGCTGGCGCTGGGCGTGCAGCAGATGGCGAGGCGCCGGGCGATCACCCGCAAGCTGCCCGCCGTCGAGACCCTCGGTTCGGTGACCACGATCTGCTCGGACAAGACGGGCACGCTGACCAGGAACGAGATGACGGCCCGGACGGTGCGGACCGCGGCCCGGTCGTTCCTCGTCTCCGGCGCCGGGTACGCGCCGCACGGGATCGTCGAGCTCTCGCCCGACCACGGCGGCCGCCCCGCCGACCCGGCCGCGGACCCGGACCTCGTGGCCGTGGCCGAGGTCATGATGCTGTGCAACGACGCCCGCATCGTGCGCGACGGCGCGACCGACGACGGGTGGGCGCTCGTGGGCGAGCCCACCGAGGGTGCCCTGCGCACGCTCGGCCACAAGACCGGCGTCGACCACGCGGGCTGGCGGCGCGTGGACCTCGTGCCCTTCGAGTCCGACACCAAGTTCATGGTCACGCTCGACGAGGACCCGGCGGGCGGGCTGCACGTGCACCTCAAGGGCGCCCCGGACCACGTGCTCGACCGCTGCGCGACCCAGGTCGGCGCCGACGGCGCACCGGCCCCGCTCGACCGCGCGTTCTGGGACGTCCAGATCGAGGCGCTCGGCGCACAGGGGCTGCGGGTGCTGGCCGCGGCACGGTCCGACGCCCCGGAGGGGACCACGGAGGTCGACGTGCCCGACGTCGACGGCGGCCTGGAGCTGTGCGGACTGGTGGGGATCGTCGACCCGCCGCGACCCGAGGCCGTCGACGCGATAGCCCGGTGCCGGGACGCCGGGGTCCAGGTCACGATGATCACCGGTGACCACGCGGGCACCGCGCTCGCGGTCGCCCGCGAGATGGGCATCCACGGCGGTCCCGTGCCGGCCGACACGGTGCCGTCCGACACGGTGCTGTCCGACACGGTGCTGTCCGACACCGTGCTGACCGGGGCGGAGCTGGAGGCGATGAGCGCCGACGACCTGAGCGCCGTCGTCCAGGACGTCCACGTCTACGCACGCACCAGTCCCGAGCACAAGATCCGCATCGTCCAGGCGCTGCAGTCGCACGGCGAGGTCGTGGCGATGACCGGCGACGGCGTCAACGACGCGCCGGCGCTGACCCAGGCCGACGTCGGCGTGGCGATGGGTATCAAGGGGACGGAGGCCACCAAGGAGGCCGCGGACGTCGTGCTCGCCGACGACAACTTCGCCACCATCGAGCGGGCGGTCGAGGAGGGGCGGCGGATCTACGACAACATCCGCAAGTCCGTGCTCTTCCTGCTGCCGACCAACGGGGCCGAGTCGCTGGTGATGCTCGTCGCGGTGCTGTTCGGGCTCGCGCTGCCGCTCGAACCGGTGCAGGTGCTGTGGATCAACCTGATCACGGCGATCACCCTCACCCTGGCCCTGGCCTACGAGCCCGCCGAGAAGGACATCATGGCGCGCCCGCCCCGGCCGGCGGACGCCCCGATCCTGGACGGGGTCCTGATGCGCCGCATCGTGCTCGTCTCGCTGCTCATCGGCGGGGCGACCCTGTTCGTCTTCTACCGCGCGCGGGCCGCCGGCGTCCCCGTGGCGGAGGCGCAGACGACGGCGGTCACGATGCTCGCCCTGGGGCAGCTCGCCTACCTGTTCAACTGCCGCCTGCTGGACCGCAGCTCGCTGACGCTCGACGTCCTGCGCGGGAACCCGGCGGTGTGGATCTCCGTGACGGTGCTGCTCGTGCTGCAGGCGGGGTTCGTCTACGCCCCGTTCATGCACACCTGGTTCGGCTCGGCGCCGCTCGGGCCGTCCGAGTGGGCGTCGGCGGCCGCACTCTCCGGTGTCGTCTTCCTGCTGGTCGAGGGGGCCAAGGCGTGGGGGCGTGCGCACGGCCGGGGGAGTGCGGCGCCACGTCGCGCGCTCGCCCGGTCGATGTCCTAGMGSAAAATSPPESPWASPPQAVLSALGTGAAGLRTDEAAERVAAVGPNRLATVRRDPLWKRVGVHFDDILIEILLVAALLKAFLGDWVDVTVILAVAVINAGVGFVQEGRAEKALEGIRRMLSASAQVRRDDAWTEIPADGVVPGDLLRVSSGDRVPADVRLLRATNLRVDESALTGESVPATKQVDAVAADAGVGDRTSMLFSGTLVAAGQGVGVVTATGRSTELGRIQTLIADVQSLETPLTRRLDRFGRILAVVIVAMAVLMVAVGWFVHGFGVDELVSASIGFAVAAIPEGLPALVTITLALGVQQMARRRAITRKLPAVETLGSVTTICSDKTGTLTRNEMTARTVRTAARSFLVSGAGYAPHGIVELSPDHGGRPADPAADPDLVAVAEVMMLCNDARIVRDGATDDGWALVGEPTEGALRTLGHKTGVDHAGWRRVDLVPFESDTKFMVTLDEDPAGGLHVHLKGAPDHVLDRCATQVGADGAPAPLDRAFWDVQIEALGAQGLRVLAAARSDAPEGTTEVDVPDVDGGLELCGLVGIVDPPRPEAVDAIARCRDAGVQVTMITGDHAGTALAVAREMGIHGGPVPADTVPSDTVLSDTVLSDTVLTGAELEAMSADDLSAVVQDVHVYARTSPEHKIRIVQALQSHGEVVAMTGDGVNDAPALTQADVGVAMGIKGTEATKEAADVVLADDNFATIERAVEEGRRIYDNIRKSVLFLLPTNGAESLVMLVAVLFGLALPLEPVQVLWINLITAITLTLALAYEPAEKDIMARPPRPADAPILDGVLMRRIVLVSLLIGGATLFVFYRARAAGVPVAEAQTTAVTMLALGQLAYLFNCRLLDRSSLTLDVLRGNPAVWISVTVLLVLQAGFVYAPFMHTWFGSAPLGPSEWASAAALSGVVFLLVEGAKAWGRAHGRGSAAPRRALARSMSPGPT0013990_3133DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CALCIUM_TRANSPORT,PGPT0013990-yloB|ctpA-K01537NANA
AK018_053371752cdr_4Coenzyme A disulfide reductaseATGAGATACCCCAAGGGGTATATTCTCGCAGTCATGAAGATCGTCATCGTGGGTGGAGTCGCCGGCGGCATGAGTGCCGCCGCCCGGGCTCGGCGGCTCGACGAGAGCGCCGAGATCGTCGTGCTGGACCGCGGCGAGCACGTGTCGTGGGCCAGCTGCGGCCTGCCGTACCACGTCGGAGGCGAGATCCCCGAGGCCGACGACCTCCTCGTCCAGACGCCGGACAAGCTCCGCGCCGCGCTGAACCTCGACGTGCGCACCCGGCACGACGTCGTCGGCCTCGACACCGCGTCCCGCCGGCTCACCGTGCTCACCGACGACGGCACCGACACCGTCGACTACGACGCGCTGATCCTGTCCCCCGGCGCCCGGGCGGTCCGCCCGCCGCTGGACGGGCTCGACTCCTCTCGCGTGCACACCCTGCGCTCCATCGACGACGCCACCGCGCTGCGCGAGCAGCTCGACCGCGGCGCCGGGCGCGCCGTCGTCCTCGGTGCCGGGTTCATCGGCCTCGAGGCCGCCGAAACCCTCGCCGCGCGCGGGCTGGACGTGACCGTCGTCGAGCTCTCCTCCCACGTGCTGCCCCCGCTGGAGCACGAGGTCGCGTGGCGCGTCACCGCCGAGCTCGAGCGCCTCGGCGTCACCGTGCGCACCGGCCTGGCCGCGACCGCCGTCGAGCAGGGCGCCGACCACGACACCGTCGTGCTCGCCGACGGCACGCGCCTGCCGGCCGACGTCGTCGTGCTGTCCGTCGGCGTGCGCCCCGACACGGCCGTCTTCGAGCAGGCCGGCATCGCCACCGACCGTGGCGCCCTCGTCATCGACGAGCACGGCCGCACCAACGTCGACGGCGTCTGGGCCGTCGGTGACGCCGTCACGAGCACCGACGCCGTCACCGGGCTGCGCCGCCCCGTCGCGCTGGCCGGACCGGCGAACCGTGCCGGCCGGCTCGTGGCGGACGACATCCTGCGCCCCGGCAGCGCCCGGCCGCTGCCGCCCACGCTGTCCACCGCCGTCGTGCGCGTCGGGGAGCTGACCGCCGCCGCCACCGGAGCCGACCGTGCCGCCCTGCGCGCCACCGACGTCTGGTTCCACACGCTGCACCTGCACCCCAGCCACCACGTCGGCTGGTTCCCCGGGGCGGAGCAGATCCACATGATGATCCACTTCCGCGCCGGCGACGGGGTCCTGCTCGGCGCCCAGGCCGTCGGCCGCGCCGGTGTGGACAAGCGGATCGACGTGCTGGCCACCGCGATCCGCGGCGGCATGACCGTGGCCGACCTCGTCGACCTCGACCTGGCCTACGCCCCGCCCTACGGCGCTGCCAAGGACCCGGTGAACCTCGCCGGCATGGCCGCGAGCAACGTGCTCGACGGCACCCTGCACATCTGGCACGTCGACCAGCTCGAGGAGGTCCGGCGCGACGCCCTGGTGCTGGACGTCCGCAGCACCGCCGAGTTCGCCTCGGGCCACATCCCCGGCTCGCTCAACATCCCCCACACCGAGCTGCGCGAGCGGCTCGACGAGGTCACCGCCGCGGCGAAGGGCCACCCGGTCCGCGTGCTGTGCGCCTCCGGCGTCCGCTCGAACATCGCCCACCGCGTGCTCGCCCAGGCCGGGTTCGACTCGGCCTCGCTGTCCGGCGGCATGCTCACGCTGCGCGCGGCCCTCGGCCAGGCGGCCGACGACCTGCTCGTCCGCACCGCACCCACCGAGACCGCCGACCCCGCCCCGTCCCGTCCGGCGCGCTGAMRYPKGYILAVMKIVIVGGVAGGMSAAARARRLDESAEIVVLDRGEHVSWASCGLPYHVGGEIPEADDLLVQTPDKLRAALNLDVRTRHDVVGLDTASRRLTVLTDDGTDTVDYDALILSPGARAVRPPLDGLDSSRVHTLRSIDDATALREQLDRGAGRAVVLGAGFIGLEAAETLAARGLDVTVVELSSHVLPPLEHEVAWRVTAELERLGVTVRTGLAATAVEQGADHDTVVLADGTRLPADVVVLSVGVRPDTAVFEQAGIATDRGALVIDEHGRTNVDGVWAVGDAVTSTDAVTGLRRPVALAGPANRAGRLVADDILRPGSARPLPPTLSTAVVRVGELTAAATGADRAALRATDVWFHTLHLHPSHHVGWFPGAEQIHMMIHFRAGDGVLLGAQAVGRAGVDKRIDVLATAIRGGMTVADLVDLDLAYAPPYGAAKDPVNLAGMAASNVLDGTLHIWHVDQLEEVRRDALVLDVRSTAEFASGHIPGSLNIPHTELRERLDEVTAAAKGHPVRVLCASGVRSNIAHRVLAQAGFDSASLSGGMLTLRAALGQAADDLLVRTAPTETADPAPSRPARNANANANANA
AK018_05338273hypothetical proteinATGTCGACCCAGGACGCCGCCGCCCAGCGCAAGATCGTCAACCGGCTCAAGCGTGCCCGTGGGCAGCTCGACGCCCTCATCACCGCCGTCGAGGACGGCAAGAGCTGCCGCGACGTCGTCACCCAGCTCTCCGCCGTCGCCAGCGCGCTCGACAAGGCCGGCTACGCCGTCGTCGCGAACGCGATGCAGGAGTGCCTCGTCGACCCCGACCACACCACCGAGGACGGGCTCACGCCCGCCGAGCTCGAGAAGCTCTTCCTCACCCTCGCCTGAMSTQDAAAQRKIVNRLKRARGQLDALITAVEDGKSCRDVVTQLSAVASALDKAGYAVVANAMQECLVDPDHTTEDGLTPAELEKLFLTLAPGPT0004175_1363DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600NANA
AK018_05339168hypothetical proteinATGTGCTTCCCCGCCACCTGCTCCACCTGCGGCAAGACCACCTGGAGCGGCTGCGGCCAGCACGTCGCCGACGTGCGCCGCTCCGTGCCCGCGTCCCAGTGGTGCGACGGGCACGACGACGCACCGAACGCCGGCGGGAGCTTCTTCTCGCGCCTGTTCAACCGCTGAMCFPATCSTCGKTTWSGCGQHVADVRRSVPASQWCDGHDDAPNAGGSFFSRLFNRNANANANANA
AK018_053401167hypothetical proteinGTGCGCCTGACACCGGCCGGGCTCGGTCGCGCCACCCTGGCCCGCCAGCTCCTGCTGGAGCGGGCGGACCTGACCGTGCCGGACGCCGTCCACCGGGTCGGCGCGCTGCAGGCCCAGGAGCCCGCCGCGCCGTACGTTGCGCTCTGGAACCGGGTGCGCGGGTTCGACCCGGCCGACCTGGACGACGCCTTCGCCACCGGCGCGGTGGTGCGGGCCTCCCTGCTGCGGATCACCCTGCACGCCGTCCACCGCGACGACTGGGCGCCGTTCCACCGGGCGATGACCCACCCGTTGCGGGGGTCGCGCCTGAACGACCGCCGGTTCGCCCCGGCCCGCCTCACGCCCGCCGAGGCGAACGGCGTCCGCGACGCGCTGCTCGCCTTCGTGGACCGGCCCCGCACCCAGGACGAGATCCTCGCCGAGCTGACCCGGCTCCTGGACGCCGAACGGGCTCCGGCCACCTGGTTCGCCCTGCGGACCCTGGCCCCGCTGCACCACGTGCCGACCGGCCCGCCGTGGTCGTACTCGCCACGCGACCGGGTGTACCGCGCGGGGGCCACGACGGCCGCCGACGAGCCGCCACCCGGCGACGACCCCGCCGTCGTGCACCTGCTGCGCCGCTACCTCGCCGCCCTCGGCCCCGCCACGGAGGCCGACTTCGCGCAGTTCACGATGCTGCGCAAGCCCTGGACCGGGCCCGCCGTCGCAGCCCTGCGACCCGAGCTCGTCGAGCTCGACGGTCCCGGCGGCCCCCCGCTGCTCGACCTGGCCGACGCACCGCGCCCGGAGGCCGATACCCCCGCTCCCCCGCGCCTGCTGGGTATGTGGGACTCGGTGCTGCTCGCGCACGCCGACCGCTCCCGGGTGCTCCCGGAGCCGTTGCGCGGCCACGTGATCCGGCGCAACGGCGACACGCTGGCGACCGTGCTGGTGGACGGGCGCGTCGTCGGTTTCTGGCGGGCGACGGACGACGGTGTCGACGCCGCCGTCGTCGAGCCGCTGCCCGACGCCGCGTGGCGGGACCTGGCCGCCGAAGCCGCCCGCCTGCACGGGATGCTCGCCGACCGGGAGCCCGCGGTGTTCCGCCGCTACCGACGCTGGTGGGACCAGCTGCCCCGGGCAGAGGTGCGGCGGCTCGCCGACGCGCGGGACGCGGACGCCCGCTGAMRLTPAGLGRATLARQLLLERADLTVPDAVHRVGALQAQEPAAPYVALWNRVRGFDPADLDDAFATGAVVRASLLRITLHAVHRDDWAPFHRAMTHPLRGSRLNDRRFAPARLTPAEANGVRDALLAFVDRPRTQDEILAELTRLLDAERAPATWFALRTLAPLHHVPTGPPWSYSPRDRVYRAGATTAADEPPPGDDPAVVHLLRRYLAALGPATEADFAQFTMLRKPWTGPAVAALRPELVELDGPGGPPLLDLADAPRPEADTPAPPRLLGMWDSVLLAHADRSRVLPEPLRGHVIRRNGDTLATVLVDGRVVGFWRATDDGVDAAVVEPLPDAAWRDLAAEAARLHGMLADREPAVFRRYRRWWDQLPRAEVRRLADARDADARNANANANANA
AK018_053412502hypothetical proteinGTGCTCACACCGCCGCTGATCGGCCGCGACCGCGAACGGGCAGCGCTGGCGGACGCCCTCTCCTCCGGCGGATCGGTCCTGCTCGCCGGCCCGCCCGGCGTCGGCAAGACCGCCCTGGTGCGCGCCGTCGTGCACGACGACGAGCAGCCCCCGCTGGAACGGGTCCTCGCCGCGCCCGCGACGGCGTCCCACCCGTTCGGCTCCCTGGCCCCGCTCCGGCTGGTGTCCGACGACGACCCGCTCCCCCAGGCGGTCGCGGCCGTCCTGCGGGCGTGGTCGGCCCGCCCGGGGCTGGTCCTGTGGATCGACGACGCGCACCACCTCGACGCCACGACGGCGATGGTCGTGCGGCACGCGGTCCTGGGTGGCGTGATCCGGCTCGTCGCCACGCAGCGCGACCACCGGAGCGTGCCCGACGACCTCGAGGCGCTCGTCGTCGAGTCCGCCGTCCGCCGGATACCGCTCGACGTGCTCGACGCCCCGGCGACCCGGCGGCTGATCGAGCACTGGGCGGGGTCCCGGAGGCTCCCGGACACCGTCCTCGCCGAGATCACGGCGCTGTCCGGCGGCAACCCCCTGTACGCCCGCGAGCTCACGCGCGCGGCGCTCGACGGCGTCGCCGACCTGCGCGACGCACCGGCCCTGGACCAGCTCGTCGGCCGGGCCTGCCGCGTGCTCGACCCGCCGCAGCGCGAGGCCCTGGAGCTCGTGGCGGCCGCCGAGCCCGCGCCCGCCGACCTGATGGCTCGGTGGCGGGAGCCGGTGAACGCCCTGGAGGCGCTCGGGCTGGTGGACTCGCACGGCCGGACGCTGCGGGTCGACCACCCGCTGCGCCGCGCCTGGCTGCTGCACGCGGCGGAGGCCCGGCATCCCTTGATCTCCGGCACGCTCCTCGACGAGCTCGCCCGTCGGCCCGACGCCGACGTCGCGCCCCGGCTGGTCGTCGAGTGGCACGACCGCGCCGCCCGCCCGGTCGCCCCGGCGCTGCTCGAACGCACCGCGCGCCGCGCCGTCGCGCACGGGGACACGGCGACCGCCCACGCCGTCGCCGAGCGTCTCGACGGCGAGGTCCGCGAGCTGGTCGAGACCCAGGCGCTCGCGCTCGAGGGCCGCCTGGACGAGGCCCTGCCACGGCTCGAGCGGCTCGCGCTGGAGGGGACCTCCGAGCACGTCGCCGCCGCGCACTGGGCGGTGCGCTTCCACGGGGTCGCCCTGGGAGACCTCGAGCGGGCGCACCGGGTGGTCGCACGGTTCGCCGACCTGCCGGGCGACGACGCGCGGACGCTCGTGCTGCGCTCCACGCTCTGGCTGTGGACCTACCGGCCGCTGCCCCCGGACGCCGACCCGCTGGCGCTCGCCGCGGCGATCACCGCGCTGCCGGACGGTTCGCCGGCCGCGACCGAGACCAGGTCGGGGGTCGCGATCCTGGTGGCCAACACGCTGGGTCCCGACCAGGGCCGCGCACACCTGCCGGCCCTCGTGCGCTCGGCCGACGCCCTGCCCGTGTCCGACCCGATGCGCACCCAGGTGCCGTTCACCCGCGCCTGGCTGGCGCTGCAGTCCGGCGACGGCGACGCCACGGCACGGCACGCCGCCGAGGCGTTCTCCCTGGCCCGTGCCAGTCACGACGTCGAGCTCATCTCGATGGTCGGCGGCAGCATGGGACTGCTGGTGACCAGCACCGGCCGCGTCCGCGAGAGCGTGTGGATGTCCAGCACGCCCCCGGGTACCGGTGGCCCCGGACCGTTCCGGTTCGCCGAGCTCCAGCACGCCGCGCACGCGGGGTCGCTGGTCTACTTGGGCGACGTCGTGACCGCCAGGGAGTCCGCCGCGACCCTCGTGGACTCCGACGACCCGGGTCCCGACCCGCTCGAGCTGCTGACCTGGCGTGCACGGTGCCTCCTCGCCGACGCCGAGGGAACGGGCGCGCCGCCCGGACCGGACGCCGCGACCGTCGTCGGGCGCTGCCTCGCCTCCCGACGGTTCGGGTACGTCGCACTCGTGTACCTCGAGTGCGGGCCGGCCGAGGTCGTACCGCGCGCCGTGCACGAGCTGGTGGCTACAGGTCTGCCCGCGGAGATCGGCGGCATCAGCGCCTTGGCGCACGCCGCGGCCGCTGCGCGGGTCGCCGACGACGCCCTGGCATCGGTCGAGGTCGCGGCACGGCTCGAGGCCGGCGGCCTGGTCACGCCGGCGCTACGCCTCCTCGGAGCCGTGTGCCGCCGCGACGACCTCGACGCCACGGTGCGTGGTACGGCGCGGGCCGCCGTGCTGCGTCTGCTGCACCGCTGGGACGGCGCCGAGCCGTGGTGGCTCCCCGGGACCCCCACGCCCCGGCAGCGCGAGATCGCGTGGGCAGTGGTCGACGGCGCCACGCCGGCCGAGGTCGCGGCACGGCTCTCGCTGTCGCGCCGGACCGTGGAGAACCACCTGCAGCACGTCTACGACCACCTCGGGGTGCACCACCGCGACGCGCTCGTCGCCACGCTCCGACCGGCGTGAMLTPPLIGRDRERAALADALSSGGSVLLAGPPGVGKTALVRAVVHDDEQPPLERVLAAPATASHPFGSLAPLRLVSDDDPLPQAVAAVLRAWSARPGLVLWIDDAHHLDATTAMVVRHAVLGGVIRLVATQRDHRSVPDDLEALVVESAVRRIPLDVLDAPATRRLIEHWAGSRRLPDTVLAEITALSGGNPLYARELTRAALDGVADLRDAPALDQLVGRACRVLDPPQREALELVAAAEPAPADLMARWREPVNALEALGLVDSHGRTLRVDHPLRRAWLLHAAEARHPLISGTLLDELARRPDADVAPRLVVEWHDRAARPVAPALLERTARRAVAHGDTATAHAVAERLDGEVRELVETQALALEGRLDEALPRLERLALEGTSEHVAAAHWAVRFHGVALGDLERAHRVVARFADLPGDDARTLVLRSTLWLWTYRPLPPDADPLALAAAITALPDGSPAATETRSGVAILVANTLGPDQGRAHLPALVRSADALPVSDPMRTQVPFTRAWLALQSGDGDATARHAAEAFSLARASHDVELISMVGGSMGLLVTSTGRVRESVWMSSTPPGTGGPGPFRFAELQHAAHAGSLVYLGDVVTARESAATLVDSDDPGPDPLELLTWRARCLLADAEGTGAPPGPDAATVVGRCLASRRFGYVALVYLECGPAEVVPRAVHELVATGLPAEIGGISALAHAAAAARVADDALASVEVAARLEAGGLVTPALRLLGAVCRRDDLDATVRGTARAAVLRLLHRWDGAEPWWLPGTPTPRQREIAWAVVDGATPAEVAARLSLSRRTVENHLQHVYDHLGVHHRDALVATLRPANANANANANA
AK018_053421023hypothetical proteinATGGTCCACCCAGCACCACCTACCGGCGACGGCGCCCACCGGCTGCACGCGGCCGTCGTGGCGGCCGTGCTGGTCGTGAGCCTCCTCGGCCTACCCGGCGATGCGGTCACGAGCACCGGACCGGCGTCGCAGGCTTCGGCACTCGCTCCACGACAGTTCCCGGAGGAAGGGACGGCGTCCGCACCGGCGGACCCTGAGCCCACACCGCAGCCCACGCCGACCGCCGGCCGATGGCTGCCCTGCCCGCGGCCCGCGCAGGCCCTGGCCGCGCTCGCGGAGGTGACGGTGACGACGGACGACGCCCTGGCCGCCCGGCGGGACGCCCTGGTCGACCTGCTGGCGGACACCGCCTACTGGAGGACGCTCGAGGCGCTCCACCGCGCCCGGTCCGGTCATCCGGCGGCCGGCGACACCGGCCGGGAGCGGACAGCCCTCACGGTCGGGTTCTGGACGGTGGTGCGTCGCGGGACGCTGCACGCCGACGGCGACCCGCTCGACCGCTACCTCCGCCGCATGGGCGTCTCCGGGCCGGTCGCGGGCCGGCTGTCGCCGCGTCTGGAGGCGCGGTACGCCGCGGTCCACGACGACCTGGAGGCCACGCTGCGCGAAGGGCTCCGCCGCGGCGGGCGCCGCACGGACTTCGCCGAGGCCGTCGCGCTGCGGGACCGGGAGCACCGGGCCCTGGTCGCCGACCGGGTCGCCCACTTCCGCGCCGTGCTCTCCGTGGAGGCGGCGCTCGGAGACGCGACCGTCCCGGCGGACGACACCTGCGCCTGGTACCGCGAGGCGCGCAGCTACGCCGACCGCTTCGCGGCGACCGGGGCGGGAGGACCGGGTGCCGCGGGGTCGCCGGCAGGAGATCTCGTGGCATCGAGCACCCCTCACGGCGGGTCGTTGACGAACCGGAACCGCACCCGGACGTCGTCCATCGGCACGGCGAAGGTCGAGCCGTGCTCGGTCCAGACCTCCGGCACGAGGAACAGCACCCCCGACCCCTCGACGAGCAGCCGCAGCCCGCGGTAGMVHPAPPTGDGAHRLHAAVVAAVLVVSLLGLPGDAVTSTGPASQASALAPRQFPEEGTASAPADPEPTPQPTPTAGRWLPCPRPAQALAALAEVTVTTDDALAARRDALVDLLADTAYWRTLEALHRARSGHPAAGDTGRERTALTVGFWTVVRRGTLHADGDPLDRYLRRMGVSGPVAGRLSPRLEARYAAVHDDLEATLREGLRRGGRRTDFAEAVALRDREHRALVADRVAHFRAVLSVEAALGDATVPADDTCAWYREARSYADRFAATGAGGPGAAGSPAGDLVASSTPHGGSLTNRNRTRTSSIGTAKVEPCSVQTSGTRNSTPDPSTSSRSPRNANANANANA
AK018_05343924hypothetical proteinGTGACCCCGTCCCCCGACGCCGGCACGGTCGGGCGCGTCGGCGCGCTGCTCGGCTCGATCGTGGCACCGGCGACCCTGGTCACCGGCATCCTGTTCTACTTCGGCTACGTCTCCACGCGGGCCTACTTCCTGTACTTCGGCGTCGACGTCGACGTGCTCGGCTTCGGCACCCAGGACTACGTGATGCGCAGCCCGCAGCCGCTGCTCGTGCCGATGCTGCTCGTGCTCGTGGTGGGCGCCCTGCTGGTGCTGGGCGACGCGGCCGTGCGGCGCCGTGCCGCCCGGGCGTCGTCCCCGGTGGTCGGACACATGGTGCGTGTGGCCGTGGTCGGAGGTTCCGTGGTGCTGGTCGTCGGGCTCGGGCTGATGCTGGCCTACCCGGCACTCGGCGGCTGGGCACTGTTCCCCCTCGTGGCCCCGCTGGTCCTCGCCGCCGGTGCCGCCCTGCTCGCCTACGGGCTGTCGTGGGCCCGGCACCGCGCCGAGGCGACCCACCGCGCCGAGGCCACGGGGCACGGCCACGAGGCGACGCAGACGGCCGGCGGGCCCGAGCCCGGGAGGGCGGCGGTCCTGCTGCTCGTCCTGACCGTGCTGGCCGCGGTGTTCTGGGCCACCGCCACGGTGGCGCAGTGGTCGGGGACCGACCGCGCCAAGGCACGGGCCGCCGACCTGAGCACGCTGCCCGCCGTCGTGCTCGACACGCCGCAACGGATGTTCACCGGCGACGACACCATCGCCGAGACCCGCCTGGAGGACGGCGACCCCGGGGAGCCCGCCTACCGCTACCGCGGGCTGCGGCTGCTCGTCGAGGGGTCGGGGGTGCTGTTCCTCGTGCCGGAGGTCTGGACCGAGCACGGCTCGACCTTCGCCGTGCCGATGGACGACGTCCGGGTGCGGTTCCGGTTCGTCAACGACCCGCCGTGAMTPSPDAGTVGRVGALLGSIVAPATLVTGILFYFGYVSTRAYFLYFGVDVDVLGFGTQDYVMRSPQPLLVPMLLVLVVGALLVLGDAAVRRRAARASSPVVGHMVRVAVVGGSVVLVVGLGLMLAYPALGGWALFPLVAPLVLAAGAALLAYGLSWARHRAEATHRAEATGHGHEATQTAGGPEPGRAAVLLLVLTVLAAVFWATATVAQWSGTDRAKARAADLSTLPAVVLDTPQRMFTGDDTIAETRLEDGDPGEPAYRYRGLRLLVEGSGVLFLVPEVWTEHGSTFAVPMDDVRVRFRFVNDPPNANANANANA
AK018_05344723hypothetical proteinATGCGACGACGCACCAGCCGGGCGACGGCACTGCTGCTGGGAGCGCTGCTCGTCGCCGGATGCACCGCACCGGGGGACGACGACGGCGCGAGCCCCGTCCCGCCCGACCCTCCGCAGGACGTCGGGACCGCGGCGCCGCTCGACCCCGACGTCGGCGGCGAACCACCGCTCGAGGGCGGTGAGGAGCCGCCGCTGCCGCCGGACGACGCCGGCCCGACGCTGACGATCGCCGGGCTCCCGGCGGGCGGCGGGGTGGCCGACCTCGTGGACGACGCCTGGTGCGGCGCGATCGCCGTCGGCCAGGCCCCGCCCGACGGCGTGGACCTCGTGGTCACCGGGCTGCGGACCGACCCGGAGGGGCTGGAGACACCCGCTCTGGCGTGCCAGGACGTCCCGGCGTGCCTCGGCACCACGTTGAGCCAGGAGCAGCAGCTCTGCGCGATCGCCGTCGTCCCGCCGCCGGGGGCCGACCGGGTGCGTGCCGCCGTCGACGTGCGCCTGGAGTGCGCGGAGGTCGCGGCGTGCGAGGAGTACCGGGCGTCCGTGACGCCCGGGTTCTGGTGGGAGCTCGACCGGCCGGCCGAGGCCGGTCCGGCGACCGCGCCGAGCGGCGGGGTGCCGGACGAGCCCGAGGACGCGGACGAGCCCGAGGACCCGGACGAGGAGGAGGACCTGGACGAGCCGGAGGGTGCCCCGCCGGAGGACGGGGAGGGCTCGCCGTGAMRRRTSRATALLLGALLVAGCTAPGDDDGASPVPPDPPQDVGTAAPLDPDVGGEPPLEGGEEPPLPPDDAGPTLTIAGLPAGGGVADLVDDAWCGAIAVGQAPPDGVDLVVTGLRTDPEGLETPALACQDVPACLGTTLSQEQQLCAIAVVPPPGADRVRAAVDVRLECAEVAACEEYRASVTPGFWWELDRPAEAGPATAPSGGVPDEPEDADEPEDPDEEEDLDEPEGAPPEDGEGSPNANANANANA
AK018_05345798hypothetical proteinATGACGCACATCGACCCCACCACCGACGACCTCGCGGTGCTGCGCGACATCCTCGATCTGGCCGATCCGCGGCGGCATCCGCCGTCGGTCGACGTGGTGGGCGAGATCCTGCGGCACCTCGAGGCGTTGCTGCGGTCCGATGGCGTGGCCTTTCACGCGATGGACGTACGCGACTTCTCCCTCCAGCACGTGCAGGAGTCGTTCATGGGTGAGCTCTACGTGGCCGGGCCGGAGGAGCTGGGCCCACCGGACGTCGAGGCCGACGGGTGCCAGGTGCTCCTCGACCACTGGTGGACCTCGACGTGCAGCCTCATCGAACGCACGGCGGCGCCCGTGGCGACGAGCATCCGGGAGCACTACAGCGAGCGGCGCTGGGCGCAGCACCCGGTGCGCCGGGACTACCTGCCGTACGACGACGAGGTCCTCCTCGGCTACCCGGACGGGCCGTGGAAGTCCCTGCGCCTGCTGGCCGGGCGCGAGGGCGGCCCGATCTTCTCCGACCGCGAACTCACGATCTGCCGGCTCCTGCTGCCCTGGCTGCGTGATGTGCTCGCCGCCGTCGTGGCACCGCCTCCGCCGCCCGACGGGTGCCTGACCGACCGCCAGGTGGAGATCCTGCACCTGGTCGAGCTCGGCATGTCCAACCGGGAGATCGGTGAGGCGCTGGCGATCTCCGCCACGACCGTGCGCACCCATCTGGAGCACGCGTTCGAGCGGCTCGGGGTGACGACCCGGCTGGCGGCGGTCACCGCGGCGTTCGGCGGGCCGCTCGTCGGGGCTCCGGCCGCCGGCGCCTGAMTHIDPTTDDLAVLRDILDLADPRRHPPSVDVVGEILRHLEALLRSDGVAFHAMDVRDFSLQHVQESFMGELYVAGPEELGPPDVEADGCQVLLDHWWTSTCSLIERTAAPVATSIREHYSERRWAQHPVRRDYLPYDDEVLLGYPDGPWKSLRLLAGREGGPIFSDRELTICRLLLPWLRDVLAAVVAPPPPPDGCLTDRQVEILHLVELGMSNREIGEALAISATTVRTHLEHAFERLGVTTRLAAVTAAFGGPLVGAPAAGANANANANANA
AK018_05346642hypothetical proteinATGACCGTCCGAGCCCGCACGACCCCGCTGCACCGCCTCCGCCGTCGGACCGCGGTGCTCCTCTCCACGCTCCTCGTGGCCACCGCCACGACCACCGCGAACGCGACGACCGACGGCGACAACCCGCCACCGATCGCCGTCGAGGTGCTCGCCGGCCATGCCGGGTTCCCGGACGACGTCGGCGTGACCTTCACGCGCAAGCTGTCCGGGGAACGCCGCGAGGTGATCCGCGTCCGGGACGCCGGGCACCTCGTGGTCGCCCGGATCACCGTGCAGCCCGGAGCACGCTTCCCCTGGCACACCCACCCCGGCCCGGTCGTGGTGTCCGTCGTCGAGGGAGATCTCGTCTACCAGCAGGCGTCGGACTGCGTCGAGCGCGGCTACACGACCGGTGACGCGTTCCTCGACCCCGGCACCAAGGTCCACACCGCGTGGAACCCCGGGGACGCACCGACCGTGCTCGTGGCCACGTTCTCCGGGGTGCCGGACGGCGGGCAGGTCACCCTGCCGACCCCGGAGCAGCCGACGTCCTGCGACCGGACGGTGGCGAACGACCGGCGCGTCGAGCCGGTCGGCAGGGACCGCGTCCCCGGGAGGACCCCGCACACCGGCGAGGTCCCGGGCTGGGCCAGCGTTCGCTGAMTVRARTTPLHRLRRRTAVLLSTLLVATATTTANATTDGDNPPPIAVEVLAGHAGFPDDVGVTFTRKLSGERREVIRVRDAGHLVVARITVQPGARFPWHTHPGPVVVSVVEGDLVYQQASDCVERGYTTGDAFLDPGTKVHTAWNPGDAPTVLVATFSGVPDGGQVTLPTPEQPTSCDRTVANDRRVEPVGRDRVPGRTPHTGEVPGWASVRNANANANANA
AK018_053471572lutP_2COG1620L-lactate permeaseGTGCTGACCGCGCTCGCGACGCTCCCGATCGTCGCGATCCTCGTCCTCATGGTCGCGGTCAGGTGGTCCGCGGCCGCCGCGGGAGCCACCGCGGCCGTCGGCGCGATGGTGCTCGCGCTGACCGCCTTCGACTTCGGCGGCACGGGCTTCCCCTTCGGCCCCGTCGAGGGCATCGTCGGGGTGCTCGCCACCGCGGCCTGGGTCGCCCTGACGGTGATGCTGATCATCGGCCCGGCACTCGGCATCCACCACCTGCAGCAGCGCACCGGCGCCACCAAGGCGCTCGAGGCCGGTCTGGCCCGCATCACGCCCGACCCGAGGGTCGCGGCGCTGCTCATCGTCTGGTTCTTCTGCCTGCTCATCGAGGGCGCCGCCGGGTTCGGCACCCCGGTGGCGCTCGCGGCCCCCTTCCTCGTGGCCGCCGGGTTCAAGCCGGTCACCGCCGTCGTCGGCGCCATGGTCGGCCACGCCTCCGCGGTGCCGTTCGCCGCCGTCGGCACCCCCACGCTCGCCCAGCTGGCCATCGTCGACTACGCGCCCCGCGAGCTCTCCTGGGCGGTGGCCCCGTACATGGCCGTCGCGGGGCTGGTGCTCGCGTTCGTCGTCGCGCGTCTCGTCGGCACCCTGCTGCCCGCCGCGGGTCCGCCGTGGACGTGGATGGCGGTCGCCTACGTCGCGTTCTTCGCCCCGAACCTCCTCATCGCACGGTTCGTGGGGCCCGAGCTGCCGTCCCTGGTCGGGGCGATCGGCGGGGCGATCGTCTTCGTGCTGGTGGTGCGGGGGGTGGTCCGACGGCGGTCGTACGTGTCCCGCGCGGCGGCGGTCGGGGACCTGGAGGCCGAGGAGGAGGCCGAGGAGGCCGTCGTCGAGGCGGCCGCCGAGGAGCACGCCCCGCCCATGAGCTTCCTCGCCGCCACCGCCCCCTACCTCGTGCTCGTCGTCCTCGTGCTGGTCACCCGGTTGGTCGGTCCGGTCCAGGACGCGGCCCGGTCCGTCGTCTGGCAGTGGGAGCTGTTCGGCCACTTCTCCGAGAGCATCGAGCCGCTGTACCACCCGGGCCTGCTGCTGGCGCTGTCCTTCCTCGCCGGGGCCCTGTGGCAGCGCGCCGCCCTGGCCGACATGGGGGCCGCGTTCCGCCGGGCGACGCTCCAGGTGGTCCCCGTGTTCGTCGCCCTGGTGGCGATGGTGACCGTCGCCTTCACGATGTCCGAGTCCGGCATGACCACCCAGCTCGCCGTCGCCGCCGCCGGTGCCGGAGCGTTGTGGCCGGTGCTCTCGCCGTTCGTCGGCGCGCTCGGCACCTTCATGACCGGGTCCGCCACGGCGTCCAACATCCTGTTCACCGAGTTCCAGGACCAGACGGCGCTCGCGGCGGACCTCGACCCGGTGCCGCTGCTCGGGGCGCAGGGCTCCGGGGCCGCGATCGGCAACATCATCTGCCCGCACAACGTCGTCGCGGCCGCCGCGACGGTGGGTCTCGGCGGCCGCGAGGGCCAGGTGCTGCGCCAGGCGCTGCCGGTCGCCGCCGTGTGCCTGGTGCTCATCGGGGCGATGGCCTGGGTGATCGTGTGAMLTALATLPIVAILVLMVAVRWSAAAAGATAAVGAMVLALTAFDFGGTGFPFGPVEGIVGVLATAAWVALTVMLIIGPALGIHHLQQRTGATKALEAGLARITPDPRVAALLIVWFFCLLIEGAAGFGTPVALAAPFLVAAGFKPVTAVVGAMVGHASAVPFAAVGTPTLAQLAIVDYAPRELSWAVAPYMAVAGLVLAFVVARLVGTLLPAAGPPWTWMAVAYVAFFAPNLLIARFVGPELPSLVGAIGGAIVFVLVVRGVVRRRSYVSRAAAVGDLEAEEEAEEAVVEAAAEEHAPPMSFLAATAPYLVLVVLVLVTRLVGPVQDAARSVVWQWELFGHFSESIEPLYHPGLLLALSFLAGALWQRAALADMGAAFRRATLQVVPVFVALVAMVTVAFTMSESGMTTQLAVAAAGAGALWPVLSPFVGALGTFMTGSATASNILFTEFQDQTALAADLDPVPLLGAQGSGAAIGNIICPHNVVAAAATVGLGGREGQVLRQALPVAAVCLVLIGAMAWVIVPGPT0001800_1938DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_LACTATE_TRANSPORT,PGPT0001800-lctP-K03303NANA
AK018_05348990COG1816Adenine deaminaseATGACCTCCACGCTGCCGTTCGCCGAGCTGCACCTGCACCTCGAGGGGACCCTCGAACCCGAGCTCGTCCTGGAGCTGGCCGAGCGCAACGCCGTCCCGCTGCCCTTCGCCGACGTCGACGCGCTGCGCCGCGCCTACGCGTTCAGCGACCTGCAGTCCTTCCTGGACCTCTACTACGCGAACATGGCCGTGCTGCGCACGCCCGACGACTTCGCGGACATGACCCGTGCCTACCTGGCCCGTGCCGCGAGGGGCGGGGTGCGCCACGCCGAGGTGATGATCGACCCGCAGGCGCACCTCGTCCGCGGGGTGCCGCTCGAGGCCGTCATGGAGGGCGTCGACGACGCGCTGTCCACCAGCGAGCGCGACCACGGGGTCTCGACAGCGCTCTTCGCCGCGTTCCTGCGCGACCGCCCGGAGGGCGAGGCCCTCGACGTGCTCCACCACCTGCTCGGCATGCACGCCCCGATCACCGGCATCGGGCTGGACTCGGCCGAGGCAGGTCACCCGCCGTCCGACTTCGTCCGCCTGTACGACCGGGCGCGCGCCGAGGGTCTGCACCTCATCGCGCACGCCGGGGAGGAGGGGCCGCCGGCGTACGTCGTCGAGGCCCTGGACGTGCTCGGCGTGGACCGGATCGACCACGGCGTCCGCTCGCTGGAGGACGACGCCCTGGTCGAGCGGCTCGTCGCCGAGCAGGTGCCGCTGACCGTGTGCCCGCTGTCGAACGTGGCGCTGCGCGGCGTCGACCGGCTGGAGGACCACCCGGTGCTCGACATGCTCGACCGGGGGCTCAACGTCTCGGTCCACTCCGACGACCCCGCGTACTTCGGCGGCTACCTCGACGACAACCTCACGGCCCTGACCGACTCCCTGGGGATGACGGCGGAGCAGCGGGCGCGCCTCGCGGCCCACTCGATCCGCTCCGCCGTCCTGCCCGCCGACCGGCGTGCCGCCCTGCTGGCGGAGGTCGAACCGGACCCGACGTGAMTSTLPFAELHLHLEGTLEPELVLELAERNAVPLPFADVDALRRAYAFSDLQSFLDLYYANMAVLRTPDDFADMTRAYLARAARGGVRHAEVMIDPQAHLVRGVPLEAVMEGVDDALSTSERDHGVSTALFAAFLRDRPEGEALDVLHHLLGMHAPITGIGLDSAEAGHPPSDFVRLYDRARAEGLHLIAHAGEEGPPAYVVEALDVLGVDRIDHGVRSLEDDALVERLVAEQVPLTVCPLSNVALRGVDRLEDHPVLDMLDRGLNVSVHSDDPAYFGGYLDDNLTALTDSLGMTAEQRARLAAHSIRSAVLPADRRAALLAEVEPDPTPGPT0021520_2006DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488NANA
AK018_05349870hypothetical proteinGTGAGCGGGGCGCGGCCGGTCGACGACGACGGGTTCCGGCCCCTGTTCGACGGGTCGACCCTCGCGGGCTGGCACGCGGCGCCCCGCGTGGCGGGCCGCACCCGTCCGGGTGGCCCGCTGGTCGGCGACGTGCTCGCGGCGGCCGGGCACACCCCGCTCCCGGAGCCCGAGAAGCACCCCGCCCGATGGTTCGTGGACGACGACGGCTCCGTGGTCGGCGAGCAGGCGACGCCCGGATACGGCGGCTACCTGGTCTCCGACGAGTCCTTCGGGGACATCGAGCTGGTCGTCGAGGTGCGCCCCGACTGGCCCGCGGACACGGGGGTGATGCTCCGCCGTCGTCCGGACAGCTGGGAAGGGTTCCAGGTGCTGCTGGACCACCGCCCGTCCGGTGGCATCGGTGGTTTCTTCGGCAACGGTCTGGCGAGCTTCTCGGCGGTGCCGTTCGCGGTCGACGCCGTGCTGGACGACGCCGGACGCCCCGTCGGGCTGCGCGCCGACGACCCCGCGACCTCGACGGAGCCCGTGACCCCCGCCAAGCGGGAGCGGCTCACCTACGCGGCGGACGTGGACGAGCTGCTCGAGGTGTGGCGCTGGGGCGGCTGGAACGAGCTGCGGATCCGGTGCGTCGGTGCCCTGCCGACCATCACGACCTGGGTCGACGGCGTGAAGATCGCCGAGGTCGACACCTCGACGCGCCTCGCCGAGGACTACGTCCCGGACGACGTGCTCGGGCTGCTCGGCCCCCGTGGTCGTCTCGCGCTCGAGGTGCACGACAACGACCCGCTCTTCGGTGCGTCGCGCTGGGGTCCCGGCGCGCGCTGCCGGTGGCGGGACCTGCGCGTGCGCGAACTCGACACCACGAGCTGAMSGARPVDDDGFRPLFDGSTLAGWHAAPRVAGRTRPGGPLVGDVLAAAGHTPLPEPEKHPARWFVDDDGSVVGEQATPGYGGYLVSDESFGDIELVVEVRPDWPADTGVMLRRRPDSWEGFQVLLDHRPSGGIGGFFGNGLASFSAVPFAVDAVLDDAGRPVGLRADDPATSTEPVTPAKRERLTYAADVDELLEVWRWGGWNELRIRCVGALPTITTWVDGVKIAEVDTSTRLAEDYVPDDVLGLLGPRGRLALEVHDNDPLFGASRWGPGARCRWRDLRVRELDTTSNANANANANA
AK018_05350900COG0823putative proteinATGACGACGTTCCCGGCCTCGCCGCCGCCCCGCACCCTGGCCGCCGGCCAGCGGTGCCGCGTCCGGGTCGCCGACCTCGACGGCGCGGTGCGCACCGTCTGGGAGAGCGACGAGCTGCTCCTGGAGGCGCCGAACTGGCACCCGGACGGCGCGCTCGTCCTCAACGGCGCCGGGCGGCTCTGGGAGCTGCCCGCCGACGGCGGGCACGCCGTGCCGCTCGACACGCCCGGCCTGCCCGACGTGAACAACGACCACGTGCTGTCGCCCGACGGCGCCACGGTCTACGCCTCGGCCGACGACTGGCACCTGTACGCCGTCCCGCGCGCGGGCGGTGCGGTACGGCGGGTCACCCGCGACGACGGGCGCATGCATTTCCTGCACGGCGTCAGCCCGGACGGCCGCGAGCTCGCCTACGTCGCGCTCACCCCCGCGGGCGACGACTGGTGGGCGGCCGCGAACGTCCACGTCGTCGGCGTCGACGGCACCGGCGACCGGCAGCTCACGGCGTCGGCCTGCCCGGACGACGGGCCCGAGTACTCCCCGGACGGGGAGTGGCTGTACCTGAACACCGAGATGTTCACCGAGGCGCCCGGCCACGCGCAGATCGCCCGGATGCGTCCGGACGGGTCGGGCGTCGAGCGGCTGACGCACGGCGACCGCGTCGACTGGTTCCCGCACCTCGCGCCGCGGGGCGGGCACGCGACCTACCTGAGCTACCCGCCGGGGACGGTGGGGCACCCGCCGGACCTGCCGGTCCAGGTCTGCCTCGTGGCCGACGGCGACTGGGACGCCCCGGTGCGCCGGATCGACCTCTTCGGCGGCCAGGGCACGATCAACGTCAACAGCTGGTCGCCCGACGGCGCGCGGTTCGCCTTCGTCGACTACCCGGTGGCCTCGTGAMTTFPASPPPRTLAAGQRCRVRVADLDGAVRTVWESDELLLEAPNWHPDGALVLNGAGRLWELPADGGHAVPLDTPGLPDVNNDHVLSPDGATVYASADDWHLYAVPRAGGAVRRVTRDDGRMHFLHGVSPDGRELAYVALTPAGDDWWAAANVHVVGVDGTGDRQLTASACPDDGPEYSPDGEWLYLNTEMFTEAPGHAQIARMRPDGSGVERLTHGDRVDWFPHLAPRGGHATYLSYPPGTVGHPPDLPVQVCLVADGDWDAPVRRIDLFGGQGTINVNSWSPDGARFAFVDYPVASNANANANANA
AK018_053511104iolG_10Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACCGAGCCGGTGACCGGTGTCGGTGTCGTCGGAGCAGGCGTCATCAGCGAGCAGTACCTGCAGACCCTCTCGGGGGCCCCGGGCGTCGACGTCCGGTTCGTCGCCGACCGCGACCCCGAGCGGGCCCGTGCACGGGCCCAGGAGTTCGACGTCCCGGCCTGGGGCACGTACGACGACCTCCTCGCCGACCCCACCGTCGACCTCGTCGTGAACCTCACCGTGCCGCAGGCGCACGCCGAGGTGAGCGTGGCGGCGCTCGAGAGCGGCCGCCACGTGTGGTCCGAGAAGCCGCTCGCGACCACGCTCGAGGACGCCCGGGCCGTCCTGTCCGCCGCGGAGACCGCGGACCGGCGCGTCGGCGTCGCACCGGACACGTTCCTCGGCACCGGGCTGCAGACCGGTCTCGCCGCCATCCGCGACGGCCGCGTCGGTCGGCCCCGGTCGGCCTCCTGCGCCTTCCAGTACGGCGGGCCGGACATCTGGCACCCGTCCCCGGAGTTCCTCTTCGCCGAGGGCGGCGGACCCGTGCTGGACGTCGGCCCGTACCACGTGACGGCGCTCGTCCAGGTCTTCGGCCCGGTCCGCCGGGTGACCGCCCGCGGCGTCACGACCCGCCGCCGACGGCGCGTCGAGACCGGTCCGCGCGCGGGCACGGAGTTCGACGTCGAGGTGCCGACGCACGTGACGGCGCTGTACAAGTTCGCCGACGGCTCGGTCGCCGACGCGGTGTTCTCGTTCGACGCCCCGGTGCAGCGGATGGTCCTCGAGGTCGCCGGCACCGAGGGCGGGGTCCGCCTCGTCGACCCGAACCAGTTCACCGGGACGACCTCCCTGGTCGCCTTCGACGGCAGCGAGGAACCCCTCGAGCCGCGCGGGGCCGCCGTGGACGGCCGCGGGGCCGGCGTCGTCGACATCGCCCGGTCGCTGCACGACGGGACGCCCCACCGGGCGTCCGGGGAGCTGGCCCTGCACGTGCTCGAGGTCCTCCTGGCCACCGAGCGCTCGGTGGCGGACGGGTCGAGCGTCGAGATCACGAGCACCGTGGCCGCCGCCGACCTGCTGCCCGCGGACGCGACGCCCGCCGAGGCGGTGACGGCATGAMTEPVTGVGVVGAGVISEQYLQTLSGAPGVDVRFVADRDPERARARAQEFDVPAWGTYDDLLADPTVDLVVNLTVPQAHAEVSVAALESGRHVWSEKPLATTLEDARAVLSAAETADRRVGVAPDTFLGTGLQTGLAAIRDGRVGRPRSASCAFQYGGPDIWHPSPEFLFAEGGGPVLDVGPYHVTALVQVFGPVRRVTARGVTTRRRRRVETGPRAGTEFDVEVPTHVTALYKFADGSVADAVFSFDAPVQRMVLEVAGTEGGVRLVDPNQFTGTTSLVAFDGSEEPLEPRGAAVDGRGAGVVDIARSLHDGTPHRASGELALHVLEVLLATERSVADGSSVEITSTVAAADLLPADATPAEAVTANANANANANA
AK018_05352987degA_14COG1609HTH-type transcriptional regulator DegAATGCGCGACGTCGCCGACCACCTGGGCGTGTCCCGCCAGCTCGTCTCGCTCGTGATGCGGAACGCCCCCGGACCCAGCGACGAGTCGCGCCGACGGATCCTCGCCGCGGCGCGCGAGCTCGGGTACCGCCCGAACGCCTCCGCCCGGCTCCTGCGCCAGCACCGCACCCGCCTCCTCGGCACGATGTTCACGATGCGCAACCCCTTCCAGGTGCGCTTCGTGGAGCAGCTCGCGGCGCGGGCGGCCGAGCAGGGGTACGGCCTCACGCTCGGGCCGATCACCGCGGACGAGGCCACGGAGGACGTGGTGGCCCAGCTGATGGAGGAACGCGTCGAGGCGGTCGTCGCCTTCAACCCGGGCCCCGACTCCGCGTCGCTCGCCGAGGCCGGCGAGCGGGTACCCGTCGTCTGGCTGGGCGAGTGGGTGGAGGGACGCCCGGTCGACAACGTCCACGTCGACGAGGTCGAGGGGCTGCGGCTGGCGGTGGAGCACCTGACCGGCCTGGGCCACCGCGACATCGCCTACGTCGGCGAGACCGGGACCCGGCTGGGGCGGCACCGCGCGGCGGCGTACCGGGCGGCCATGGCCGGGGCCGGGCTGGCCGACCACGCCGAGGTCGTGCCCGGAGGGTTCGGGGAGGAGGACGGCGCCACGGCCGCACGAGAGATCGTCGCGCGGACCGAGCGCCCGACGGCCGTGGTGTGCTGCGGCGACCAGTGCGCCGCCGGCGTCCTGGCCGTCCTCGCCCGCTCCGGCGTGGCGGTCCCCGGCGAGATCTCCGTGGTCGGCTTCGACGACAGCTATCTGGCGTCGCTCTCCTACCATCGCCTGACCTCCGTGCACCAGGACGTGGGCGCCACGGTCGAGGCCGCGCTCTCGACGGCGCTGGCCCGGATCGGCGGCGACGACGGACCACCGCGCACCGTCGCCACCCCGACCACGCTGGTGGTCCGCGACTCGACAGGACCGGCGCCGGCCGGGCGCTGAMRDVADHLGVSRQLVSLVMRNAPGPSDESRRRILAAARELGYRPNASARLLRQHRTRLLGTMFTMRNPFQVRFVEQLAARAAEQGYGLTLGPITADEATEDVVAQLMEERVEAVVAFNPGPDSASLAEAGERVPVVWLGEWVEGRPVDNVHVDEVEGLRLAVEHLTGLGHRDIAYVGETGTRLGRHRAAAYRAAMAGAGLADHAEVVPGGFGEEDGATAAREIVARTERPTAVVCCGDQCAAGVLAVLARSGVAVPGEISVVGFDDSYLASLSYHRLTSVHQDVGATVEAALSTALARIGGDDGPPRTVATPTTLVVRDSTGPAPAGRNANANANANA
AK018_053531263hypothetical proteinATGTCGACGACGAAACTGCCCGTGCCCCAGTCCGCCGGCCCCGGGCCCACGCCCGTGGGCAACGGCTATCTCGCCGCGCTGGCCCTCGCCCAGTTCGGGATCTTCGTGGCGATCCTGTCGCCGGTCTTCGTGAGCATGCAGCTCAAGGCGCAGGAGCTGGACCCGCAGGACCCCGCGTCCGTCATCGGTGTGGCCCTGCCCGTCGGCGCCCTGGGCGCCCTCGTCGGCAACCCGGTCTTCGGCGCCCTGAGCGACGCGACGAGGACCCGCTGGGGCCGGCGCAAGCCGTGGCTGGTGGGCGGCATCGTCGCGCTGCTCGCCGGGCTCGCCGGGGTGGCGGCGAGCCAGGACCTGCTCACGCTGACCCTCGCCTGGCTCGTCTGCCAGCTGGCCTCGAACGCCGCCTCCGCGGCGCTGATCGCGAGCTTCGCCGACAACGTCCCCGAGGCGCAGCGGGGGCGTGCCTCGAGCCTGTTCGCGCTGGCGCAGAACGTCTCGATCCTGGCGGGGATCTACGGCGCGGTCCTGCTCGTGAACAACCTGCCGGTCCTGTTCGTCGTCCCCGGGCTCCTCGGTGTCGCCTGCGTCGTCGTCTACGTCCTCGTCACGCCGGACCGGCTCCCGGACACCCCGCCGGCCCCGTTCTCCCTCGCACGGATCGCCGGGACGTTCTGGACCAACCCGATCAAGCACCCGGACTTCGGCCTGGCCTGGTGGTCCCGGTTCCTCATCACCTTCGCGACCTTCCTGTTCACCACGTACCGGCTGCTCTACATGCAGGACCACCTGGGTCTGGGCGCCGCCGCCGCCGTCGCGGCGGTCGCCAACGGTGTGCTCTTCTACACGATCGCCCTGTTCGCCGGCGCCATGGTCTCGGGCTGGCTCTCCGACAAGGTCGAGCGTCGCAAGGTCTTCGTCGCCGGTTCGACGCTGATGTTCGGCGTCGGTCTGGTCATGCTCGTCTTCGCCGACAGCGTGGGTGCGTTCTACCTCGCGGAGGTGGTCATGGGGCTGGCGTACGGCATCTACACCGCGGTGGACACGGCCCTGGTCGTGGACGTGCTGCCCGACGCGCGCAACCCCGGCAAGGACCTGGGCGTCATCAACATCGCCAACTCCCTGCCGCAGTCCCTCGCCCCGGCCGTGGGGGTCGTCCTGCTGGGGCTGGGCGGCGGGGACAACTACCCGGCGCTGCTGTGGGGTGCGGGATTCGTCGCCCTCGTCGGCGCGCTCGTCGTCATCCCGATCCGCGGGGTGCGCTGAMSTTKLPVPQSAGPGPTPVGNGYLAALALAQFGIFVAILSPVFVSMQLKAQELDPQDPASVIGVALPVGALGALVGNPVFGALSDATRTRWGRRKPWLVGGIVALLAGLAGVAASQDLLTLTLAWLVCQLASNAASAALIASFADNVPEAQRGRASSLFALAQNVSILAGIYGAVLLVNNLPVLFVVPGLLGVACVVVYVLVTPDRLPDTPPAPFSLARIAGTFWTNPIKHPDFGLAWWSRFLITFATFLFTTYRLLYMQDHLGLGAAAAVAAVANGVLFYTIALFAGAMVSGWLSDKVERRKVFVAGSTLMFGVGLVMLVFADSVGAFYLAEVVMGLAYGIYTAVDTALVVDVLPDARNPGKDLGVINIANSLPQSLAPAVGVVLLGLGGGDNYPALLWGAGFVALVGALVVIPIRGVRNANANANANA
AK018_053541035iolU_3COG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolUATGCTGCCTGACCACCTCCCCGCCCCCGAGCTCTACCTGCCCGGCACCGGCGAGCCCTCGCTCGGCTGGGGGATCGTGGGGCCGGGGTGGATCGCCGGCGAGTTCGCGACGGCGCTGCGCCAGCACACCGCGCAGCGCGTCGTGGCCGTGGCGTCCCGCTCCGCCGAGCGCGCCGCCGCCTTCGCCGCGACGCACGGGATCGAGCACGCCGTCGGGTCGACCGAGCAGCTCCTCGGCCGTCCCGACGTCGACGTGGTCTACATCGCCACCCCGCAGAGCGAGCATCTCGCGCTCGGCCTCGCCGCGATCGCCGCGGGCAAGCACGTCCTCGTGGAGAAGCCCGTCGCCCTGAGCGCCGCCGAGGCACGGACGCTCGCCGACGCCGCGCGCTCCGCGGGCGTCCTGCTCATGGAGGCCCTGTGGAGCCGGTACCTGCCGCAGGCGTCCGTGCTGCGCCGCCTGCTGGCGGACGGGGTGCTCGGGGACGTGCGCGCCGTGCTCGCCGACCACGGGCAGGCGATCACGCCGGACCCCGGGCACCGCCTCTACCGGCCGGAGCTCGGCGGCGGCGCCCTGCTCGACCTGGGCATCTACCCGGTGCAGCTCGCCTCGATGGTCTTCGGCGCCCCGCGCGGCGTGACGGCCTCCGGCGGTATGACGGCGACCGGCGTGGACGCGTACTCGACCGTGATGCTCGACCAGGGACAGGGTGCGCAGGCGACCCTGTACTCCTCGATCCTGACCCGCACGCCCATGACGGCGGTCGTCGCGGGCTCGGAGGCGACGATCACCCTGGACGGCCCGTTCTACGTCCCGACGTCGTTCACCCTGTCGAGCGCCGACCACGCCGGACCCACGCTCACCTGGGAGGACCCGACGGACCTCCGGCTCTTCGACGGTCTGTCGTGGGAGGCTACCGCCCTCGCGCGGTTCGTGGGCGAGGGCCGGACGGAGTCACCCGTGCACACGCTCGACGAGACCGTCTCGATCCTCGCCACCATCGACGCCGCACGAGCCCAGCTCGCCGCGGCCTGAMLPDHLPAPELYLPGTGEPSLGWGIVGPGWIAGEFATALRQHTAQRVVAVASRSAERAAAFAATHGIEHAVGSTEQLLGRPDVDVVYIATPQSEHLALGLAAIAAGKHVLVEKPVALSAAEARTLADAARSAGVLLMEALWSRYLPQASVLRRLLADGVLGDVRAVLADHGQAITPDPGHRLYRPELGGGALLDLGIYPVQLASMVFGAPRGVTASGGMTATGVDAYSTVMLDQGQGAQATLYSSILTRTPMTAVVAGSEATITLDGPFYVPTSFTLSSADHAGPTLTWEDPTDLRLFDGLSWEATALARFVGEGRTESPVHTLDETVSILATIDAARAQLAAANANANANANA
AK018_05355465hypothetical proteinGTGACCGACCTCATCACCACGCTGGAGCGCCAGGAGCACGAGCTCGTCCTCGACTCCTTCGACCACACCGCGGCCTGGCGGCTCGGGTCGCGGATCACGGAGATCGCCCAGGAGGCCGGGCACGCCGTCGGGATCGACGTCCGGCGCCCGGGCCTGACCCTGTTCCGCGCGACGCTGCCCGGCGTGACCCCCGACCAGGAGGTGTGGATCGAGCGCAAGTCCGCGGTCGTCCTGCGCATGGAGAACAGCAGCGCGCTCGTCGACGCCCGCCTGTCCGCGGCCGGGATCGACCCCGCCGCCGTGGGCTGGCTCGGCGCGGACTACGCCGTCACCGGCGGCTCGTTCCCCGTCCGGGTCCGCGGCGTGGGCGTGGTCGCCGCCGTGACCGCGTCCGGACTGAGCTCCATGGACGACCACGACCTCGTCGTCGCGGGCCTGCGCGCCCACCTCGCCGCGGAGGGATGAMTDLITTLERQEHELVLDSFDHTAAWRLGSRITEIAQEAGHAVGIDVRRPGLTLFRATLPGVTPDQEVWIERKSAVVLRMENSSALVDARLSAAGIDPAAVGWLGADYAVTGGSFPVRVRGVGVVAAVTASGLSSMDDHDLVVAGLRAHLAAEGNANANANANA
AK018_05356312hypothetical proteinATGGACGTCGAGAAGAGCAACGAGAAGAAGAGCAGGAGCGGGCTCCAGAAGCTCTACAAGGCCGTGATGTTCGCGCTCGTCGTCGCGGCGGTCACCAAGGAGCTGCAGAAGGACCCCGCGGACCGCGAGTGGCACGGGACCGTGGCCGGTTTCGTGCCCTACGAGTTCCGGATCCCGACCTTCGCGCGGGCCAGGGAACGGCTGTGGGACCCGGAGGCCGAGCACGTCATCGGCCCGCAGGTCTTCGGCGTCGGGTGGACCGTGAACATCGGTCGCGTCGTCGCGGTGGTCAAGGACCGGTTCGCGGACTGAMDVEKSNEKKSRSGLQKLYKAVMFALVVAAVTKELQKDPADREWHGTVAGFVPYEFRIPTFARARERLWDPEAEHVIGPQVFGVGWTVNIGRVVAVVKDRFADNANANANANA
AK018_053571344COG1926Putative phosphoribosyl transferaseATGCCCTTCACCGACCGCACCCAGGCCGGACGGCGCCTCGCCGAGGCGCTCGCCGGGCTCCGCGACGAGGACGTCGTCGTCCTCGGCCTCCCCCGGGGCGGGGTCCCCGTGGCGTTCGAGGTCGCCGTCGCGCTGGACGCGCCGCTCGACGTGATCGTCGTGCGCAAGCTCGGCGTCCCTTTCCAGCCCGAGCTGGCGATGGGTGCGGTCGGTGAGGGCGACGTGCGCGTCGTGGACGACGAGGTCGTGCGACGCGCCCAGATCACGGCCGAGGAGCTCGCGGGTGCCGAGACCACCGAGCGCGCAGAGCTCGAGCGACGGCTGTTCCGGATACGGCGCGACCACCCGCTGGTCCCGATCGAGGGCCGGACGGCCGTCGTCGTGGACGACGGCGTCGCGACGGGGTCGACGGCCCGCACGGCCTGCCTGGTCGCGCGGGAGCGCGGCGCGGCACGTGTCGTCGTCGCCGTCCCCGTGGGGGCCGCCACGGCGCTCGACGCCCTGGAGGAGGTGGCAGATGAGGTGGTCTTCGTGGAGAGCCCCCGCGGATTCCGCGCCGTGGGCGAGTGGTACGCCGACTTCCGGCAGGTCGACGACGGACAGGTCATGGAGCTGCTCGACCGGGCGGCGAACCACCCCGGCGACCCGGTCGGGGACCCGGCGGACCCCCCGGCCCCACGGGACGAGGCCGTCGAGATCCGGGCCGGCGCCGTCATGCTGAACGGACAGCTCACCGTCCCGGACCGCCCCGTGGGGCTGGTCGTCTTCGCGCACGGCAGCGGCAGCAGCCGGCACAGCCCGCGCAACCGGCACGTCGCTCAGGTGCTCAACGAGGCGGGACTGGGCACCCTGCTGTTCGACCTGCTCACCGCCCGCGAGGAGTGGGAGCGGCCGATGGTGTTCGACATCCGGCGCATGGCGGCCCGGCTGGTGGACGCGACCTGGTGGCTGCGCGCCGAGCAGGGGTGGGACGACGTCCCGATCGGATACTTCGGAGCGAGCACCGGCGCCGCCGCCGCCCTGCGCGCCGCCGCGCAGCTCGGCCACGACGTCTCCGCCGTCGTCTCCCGCGGGGGCCGGCCCGACCTGGCCGCGGACTGGCTGCACGAGGTCAAGGCGCCGACCCTGCTCCTGGTCGGGAGCGAGGATCCGTGCGTGCTGGACCTCAACCGTCGGGCCCAACGTCGGCTGCGGTGCGAGAACGAGCTGTCGGTGGTGCCCGGTGCGACGCACCTCTTCGAGGAGCCCGGCACGCTGGACCAGGCGGCCGTGCTGGCCCGAGACTGGTTCCTCGGGCACCTGCCCCAGAGCACGACGACGCAGCACGCCGTCCTGCAGACCTGAMPFTDRTQAGRRLAEALAGLRDEDVVVLGLPRGGVPVAFEVAVALDAPLDVIVVRKLGVPFQPELAMGAVGEGDVRVVDDEVVRRAQITAEELAGAETTERAELERRLFRIRRDHPLVPIEGRTAVVVDDGVATGSTARTACLVARERGAARVVVAVPVGAATALDALEEVADEVVFVESPRGFRAVGEWYADFRQVDDGQVMELLDRAANHPGDPVGDPADPPAPRDEAVEIRAGAVMLNGQLTVPDRPVGLVVFAHGSGSSRHSPRNRHVAQVLNEAGLGTLLFDLLTAREEWERPMVFDIRRMAARLVDATWWLRAEQGWDDVPIGYFGASTGAAAALRAAAQLGHDVSAVVSRGGRPDLAADWLHEVKAPTLLLVGSEDPCVLDLNRRAQRRLRCENELSVVPGATHLFEEPGTLDQAAVLARDWFLGHLPQSTTTQHAVLQTNANANANANA
AK018_05358468ddn_2Deazaflavin-dependent nitroreductaseATGACCTTCAGCCACTCGACCGGCACCCGCGGAGCGCGCAAGCCGGGTCGGCTCGTGCGGTGGTTCAACGGTCTGGCGCTGCGCCGCATCCGACGCCGCGGCGGCCGGGTGCTGGGGATGCGCCTGCTGGCCCTGACGACGGTGGGACGGCGCAGCGGGCAGCCGCGCACCATCCCGCTGGCCTGGTTCCCCGGTGGCGAGGACCGGTGGTACGTCGTCGCCTCCGCCAACGGCGCGGCCACCAACCCCGCCTGGTACCTCAACCTCGCCGCCCGGCCGGACGACGTCGAGATCGTCGTGGACGGCGAGACCGTCCCGGTGCGCGCCCGCGAGCTGCAGGGCCCCGAGCGGGACGAGGTGTGGGGGCGCATCAAGGACTCCGCGTCCCAGTTCGCGACGTACGAACGCGCCACCGACCGGCACATCCCGGTCGTCGAGCTCACGCGGCGCGACACCGCCGGAGGCTGAMTFSHSTGTRGARKPGRLVRWFNGLALRRIRRRGGRVLGMRLLALTTVGRRSGQPRTIPLAWFPGGEDRWYVVASANGAATNPAWYLNLAARPDDVEIVVDGETVPVRARELQGPERDEVWGRIKDSASQFATYERATDRHIPVVELTRRDTAGGNANANANANA
AK018_05359561yfkM_2COG0693General stress protein 18ATGGCGACCGACCTCACCGACCGCACCGTCCTGGCCGTCGTGTCGAACTACGGCGTGGAGCAGGACGAGCTCGTCGTCCCGCTGGAGCACCTGCGCGACAGCGGCGCCGTCGTCACCGTCGCCGCCGCGACGTCCGACGACGTCGCCACGCTCGTGGGCGACAAGGACCCCGGCCGCACGGTCACCCCGGACGTGACGCTCGACGACGTCGACCCGGCCGGCTTCGACCTGCTGCTCGTGCCCGGCGGCACCCTCAACGCCGACACGCTGCGGCTGCAGCCCGCCGCGACCGAGATCGTGCGGTCCTTCACCCGGTCCGGGCGGCCCGTCGCGGCGATCTGCCACGGACCGTGGCTGCTCGTCGAGGCCGGCGTCGTCCCCGGCAAGACCGCGACGTCGTACCCGTCCCTCGAGACGGACCTGCGCAACGCCGGCGCCTCCTGGAAGGACGCCCCCGTGATCGTGGACCCGGCCGAGGGCTGGACGCTCATCACCTCCCGCACCCCCGACGACCTGGACGACTTCCTCGATGCCGTCGACGCCGCGCTCGCCGAGCGCTGAMATDLTDRTVLAVVSNYGVEQDELVVPLEHLRDSGAVVTVAAATSDDVATLVGDKDPGRTVTPDVTLDDVDPAGFDLLLVPGGTLNADTLRLQPAATEIVRSFTRSGRPVAAICHGPWLLVEAGVVPGKTATSYPSLETDLRNAGASWKDAPVIVDPAEGWTLITSRTPDDLDDFLDAVDAALAERPGPT0015010_1535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0015010-yfkM|pfpI|yraA-K05520NANA
AK018_05360837dkgB_32,5-diketo-D-gluconic acid reductase BATGCCGTCGACGCCGCGCTCGCCGAGCGCTGACCTGAGCCTGCCGCCCGTCGGGTTCGGCACCGCCGCCCTGCGCGGCGAGCACGGCGTGCGCACGGTCGCCGCGGCGCTGGACGCCGGCTACCGGCTGCTGGACTCCGCGTTCAACTACGAGAACGAGGGGGCGGTCGGCGCCGCCGTCCGGGCCTCCGGGGTCCCGCGCGACGAGGTGATCGTCACCTCCAAGCTGCCCGGGCGGCACCACGCCCACGACGCGGCCGTCGCCACGATCGAGGAGAGCGTCTACCGCACGGGCCTGGACCACCTCGACCTGTACCTGATCCACTGGCCGAACCCGTCGCAGGACCGGTACGTCGAGGCCTGGGGGGCGCTGATCGCGGCACGCGAGCGCGGCCTCGTGCGCCACATCGGGGTGTCGAACTTCCTGCCCGAGCACGTCGACCGCCTCGTGGCCGAGACGGGGGTGACGCCGGCGGTGAACCAGGTCGAGCTGCACCCCTACTTCCCCCAGGCCGAGCAGCGCGCGGCCGACGCCGCCCGCGGGATCGTCACCGAGGCGTGGAGCCCGCTCGGGCGCGCCAACAGCCTGCTGGACGAGCCGGTGCTGCAGCGGATCGCCGCGGACCGCGGCGTGACCGTGGCGCGGGTGATCCTGGCCTGGCACGTCGGGCTCGGCGTGCTGCCCCTGCCCAAGGCGACCTCGCCGGACCGGCAGCGCCAGAACCTCGAGGCCGCCGACCTGGAGCTCTCCGCCGAGGAGATGGCGGCCGTCGCGGGGCTCGCCCGCGCTGACGGCCGGAACAACGACCAGGACCCGGCCGTGTACGAGGAGTACTGAMPSTPRSPSADLSLPPVGFGTAALRGEHGVRTVAAALDAGYRLLDSAFNYENEGAVGAAVRASGVPRDEVIVTSKLPGRHHAHDAAVATIEESVYRTGLDHLDLYLIHWPNPSQDRYVEAWGALIAARERGLVRHIGVSNFLPEHVDRLVAETGVTPAVNQVELHPYFPQAEQRAADAARGIVTEAWSPLGRANSLLDEPVLQRIAADRGVTVARVILAWHVGLGVLPLPKATSPDRQRQNLEAADLELSAEEMAAVAGLARADGRNNDQDPAVYEEYPGPT0001320_1705DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
AK018_05361612hypothetical proteinATGACCGTGCTCGTCGAACCCGCCGGTGAGGCCGAGATCGAGGCCGGTGCCCGGCTGATCGCCGAGTCGTTCCGGGACGACGCCGTCGTGCGCCGGATCGTCCCGGGCGACCACGACCGGGTCGCACGCCTGACCGACGTCTACACCGCGGCGCTGCGCACGGGTGCCTGCGTGTCCGGGACCGTCGACGTCGCCCGCTCCGGTCCCGGCGGACCGATCCTCGGAGTAGCCGCGTGGGAGGGGCCGGAGCGACGGCGTCACCTGCCGACCGAGCTGCGGGAGCTCCCGCGCTACCTGCGGGCGCTCGGGCTGCGGCACCTACCCGCGGTGAGGTCCCGCCTGGCCCGCTGGGCGCGGCAGCGCCCGGCGACGGCGCACTGGTACCTGGCGGACCTCGCCGTGAGTCCCGCGGCCCGGGGCCGCGGCGTGGGCTCTGCCCTGATCGCGCACCGGCTGGGCGTCGTCGACGCGCAGGCCCGACCTGCGTACCTGGAGGCCACCGGTCCCGGCAACCAGCGTCTCTACGAGCGGTTCGGCTTCCGCGCCCAGGGCCCGGTCGCGGACGACGCCGACGCACCCGTCGGCATGCTGCGGCCCGCCGCGGAGGAGTGAMTVLVEPAGEAEIEAGARLIAESFRDDAVVRRIVPGDHDRVARLTDVYTAALRTGACVSGTVDVARSGPGGPILGVAAWEGPERRRHLPTELRELPRYLRALGLRHLPAVRSRLARWARQRPATAHWYLADLAVSPAARGRGVGSALIAHRLGVVDAQARPAYLEATGPGNQRLYERFGFRAQGPVADDADAPVGMLRPAAEENANANANANA
AK018_05362168rpmF_350S ribosomal protein L32ATGGCCGTCCCGAAGCGCAAGACGTCCCGGTCGCGCACCCGCAGCCGCCGGGCGCAGTGGAAGACGACCGAACCCACCCTGGTGCCGCTCGACGTCGGCGGGCGGACCGTGCAGGTCCCGCCCCGGCTGGCCCGCGCGGTCCGCGAGGGGAGGGTCGACGTGCCGTGAMAVPKRKTSRSRTRSRRAQWKTTEPTLVPLDVGGRTVQVPPRLARAVREGRVDVPNANANANANA
AK018_05363123hypothetical proteinATGAAGGTCCGTTCCTCGCTGCGATCCCTGAAGAACCAGCCGGGATCCAAGGTCGTGCGCCGCCGCGGGCGCACCTACGTCATCAACAGGCTCCACCCGAAGTTCAAGGCCCGCCAGGGCTGAMKVRSSLRSLKNQPGSKVVRRRGRTYVINRLHPKFKARQGNANANANANA
AK018_05364282rpmE2_2COG025450S ribosomal protein L31 type BGTGAAGAAGGACATCCACCCCACCTACGGCCCGGTCGTGTTCCGCGACGCCGGGGCCGGGTTCGCGTTCCTGACCCGGTCCACGCTCGCCGGGGACACCCCCTCCGGTCCGGGTCGGCCCACCGCGACGATCGAGTGGACCGACGGCCACACCTACCCGGTGATCGACGTCGAGATCTCCAGCGCCAGCCACCCGTTCTGGACCGGCAGCGCCCGCGTGGTCGACACCGCCGGCCGGGTCGAGAAGTTCCGCCGACGCTACGGAAAGGCAGACGCCCGATGAMKKDIHPTYGPVVFRDAGAGFAFLTRSTLAGDTPSGPGRPTATIEWTDGHTYPVIDVEISSASHPFWTGSARVVDTAGRVEKFRRRYGKADARPGPT0014325_395DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909NANA
AK018_05365306rpsN_2COG019930S ribosomal protein S14ATGGCCAAGAAGTCGAAGATCGCCGCGGAGGCCCGCCGCCGCGAGACGGTCGAGAAGTACGCCGAGCGACGCGCCGAGCTCCAGCGCGTCATCGCCTCGCCGTCGTCCACCGACGCCGAGCGCGCCGTGGCGACGATGGAGCTGCGCCGTCAGCCGCGCGACGCCAGCCGCACCCGGTTGCGCAACCGCGACGTCGTGGACGGCCGTCCGCGCGCCTACCACCGCACGTTCGGGCTCTCCCGCATCCGGCTGCGCCAGATGGCGCACCGCGGCGAGCTGCCCGGCGTGACCAAGTCGAGCTGGTGAMAKKSKIAAEARRRETVEKYAERRAELQRVIASPSSTDAERAVATMELRRQPRDASRTRLRNRDVVDGRPRAYHRTFGLSRIRLRQMAHRGELPGVTKSSWNANANANANA
AK018_05366168rpmG2_4COG026750S ribosomal protein L33 2ATGGCCCAGCGCACCGACCCGCGACCCATCATCAGGCTGCGCTCCACGGCGGGTACCGGGTTCACCTACGTGACCCGCAAGAACCGCCGCACGACCCCCGACCGGCTCGTGCTGCGCAAGTACGACCCCGTCGTCCGCCGCCACGTCGAGTTCAAGGAGACCCGCTGAMAQRTDPRPIIRLRSTAGTGFTYVTRKNRRTTPDRLVLRKYDPVVRRHVEFKETRNANANANANA
AK018_05367237rpmB_4COG022750S ribosomal protein L28ATGTCCGCCCACTGCCAGGTGCTCGGCACCTCGCCGGGCTTCGGGCACTCCGTCTCGCACTCCCACGTGCGGACGAAGCGACGGTTCGACCCGAACATCCAGACCAAGCGCTACTGGGTGCCGTCCCTGGGGCGGAAGGTCACGCTGCGGGTCAGCGCCCGCGGCATCAAGACCATCGACCGCCGCGGCATCGACGCGGTCGTCGCCGACATCCTCGCCCGGGGGGAGAAGGTCTGAMSAHCQVLGTSPGFGHSVSHSHVRTKRRFDPNIQTKRYWVPSLGRKVTLRVSARGIKTIDRRGIDAVVADILARGEKVNANANANANA
AK018_053681140hypothetical proteinATGCCGGACCACCACACCTCGCTCAGCGTCCTGGTCGGCGTCGACCCCGTGCTGCGGGACAGCGCCCTGACCGGGCTGGCCTTCGACGCCCCGAGCACCGTCACGGTCAAGCACGACCTGCTGATCGCCGAGAGCGCCCTGCGCCGCGTCGTCGTGGACGTGAACGGCGTCGTCGAGGACGAGACGCTCCCCCTGGAGCACGCCTGCGTCTCGTGCTGCGTGCGCCAGGACGCGGTCCCCACGATCGCCCGGCTGGCCGCGACCGGCCGCTGGACCGACGTCGTGCTCGCCCTGCCCGTGACGGCCGAGCCGCTGCCGATCACCCGCGGCCTGGCGGCGATGTGCGAGCCCGGCGGCGAGCTCGAGGACCTGCGCCTGGCCAGCAGCGGCGTCGTGGTCGATCTCACGACCGTCGAGGACGACCTGCTCGGCGACGACTGGTGCGCCGAGCGCGGCCTGGCCCTGACCGGCGACGACGAGCGCGGCGTCGGCGAGGCCCTGGCCACCCAGCTCGAGCAGGCCGACGTCGTCGTCACCAGCGGCACCGACGCCACCGGCTCGGGGCTCGTCGACCGACTGCGCGGCGCCGACTCACGGCGGGTCGACGGGCTGCACGCCCTCGTCGTGGACCAGCTCGCGGCGTTCCGGCACCGCAGCGAGTCCGCCGAGCGCCGCGCCCACCCCCTGGGTGCCCGCGGCGCGCTCGCCCCCGGTGGCGGTACGACCAGCGGCACCGGCGTCGACCGGAGCTGGAGCCTCGAGCTCACCTCGTCCCGGCCGTTCCACCCCGAGCGGCTCCTGGACCAGGTCGAGGAGCTCGGCACCGGACGCCTGCGCTCGCGCGGCGCCTTCGCCGTGGCCAACCGGCCGGACTCGCTGTGCCTGTGGGACGGCGCGGGCGGCCAGCTGTGCATCGCGGACCTCGGCACGTGGGACGAGGTCGCGGCGGGCGCGGCACCGCACACCCGGATCGTCGTGGTCGGCGCCGGCACCGTGGACGAGGGCGAGGCCCTGCGCGCGCGGCTGACCGCGGCGTTCCAGGCGGCCCTGGCCGCCTCGGACGAGATCGCCGACGGCGGGCTCGCCTGGCTGGGCAGCGAGGACGCGCTGGCGCCGTGGCTCGGTCAGCGCGCGGCGTAGMPDHHTSLSVLVGVDPVLRDSALTGLAFDAPSTVTVKHDLLIAESALRRVVVDVNGVVEDETLPLEHACVSCCVRQDAVPTIARLAATGRWTDVVLALPVTAEPLPITRGLAAMCEPGGELEDLRLASSGVVVDLTTVEDDLLGDDWCAERGLALTGDDERGVGEALATQLEQADVVVTSGTDATGSGLVDRLRGADSRRVDGLHALVVDQLAAFRHRSESAERRAHPLGARGALAPGGGTTSGTGVDRSWSLELTSSRPFHPERLLDQVEELGTGRLRSRGAFAVANRPDSLCLWDGAGGQLCIADLGTWDEVAAGAAPHTRIVVVGAGTVDEGEALRARLTAAFQAALAASDEIADGGLAWLGSEDALAPWLGQRAANANANANANA
AK018_05369480hypothetical proteinATGTGGCACTGGATCGCCGGCCTCGTCGGGGGCCTGCTGGCCCTGGCGCTGGCCGCCGTCGTCGGCCTCGTCGTCTCGATGCGCGCCAAGTGGCAGCCGGGACTGCGCCTCGTCCGGCGCGTCAACAAGCGGGTCACCAACCCGCGCGTGCTGGCCACGGCCGGTCGTCCCGGGGGGTCCGCGGCGGTGATCCGGCACGTCGGCCGCCGCTCCGGGCGGCCCTACGCGACGCCGATCGGTGTGGAGGTCGGCGACGGCGTCCTGGTCACCCTGCTGCCCTACGGCCCGACGACGGACTGGGTGCGCAACGTCCTCGCGGCCGGCGGCGCCCGGGTCACGGTCCAGGGCCGGACCTACGAGGTGACCGACCCGCGCGTCGTACCCGTCGCCGAGGCGTCCGCGCTGCTCCCGGCGGGGGAGCGCCGGCTGGCCGCGGTGTTCGGCGCGACGGAGGTCCTGCTGCTGACGCCCGCCGGGTGAMWHWIAGLVGGLLALALAAVVGLVVSMRAKWQPGLRLVRRVNKRVTNPRVLATAGRPGGSAAVIRHVGRRSGRPYATPIGVEVGDGVLVTLLPYGPTTDWVRNVLAAGGARVTVQGRTYEVTDPRVVPVAEASALLPAGERRLAAVFGATEVLLLTPAGNANANANANA
AK018_053701431bmr3_7Multidrug resistance protein 3GTGGGCCTGCGCTCCGAGCGCGGGCCCATCCTGCTGTCCCTCATGCTGTCCACGGCCCTGGTGGCCCTGGACGCGACGATCATCGCCACGGCGTCGGCCACGATCGCCCGGGAGCTCGGGGCGTTCGAGCAGGTGCCGTGGCTCTTCTCGTCCTACCTGCTGGCCCAGGCGGTCAGCACGCCGTTGGCGGGGCGGCTGTCGGACATCGTCGGACGCAAGCGGGCGATCCTCGCGGGGGTCGGGCTGTTCTTCCTGGGCTCGGTGCTGTGCGGTGCCGCGTGGTCCATGGGGGCACTCGTGGCGGGGCGGGTGCTGCAGGGCCTCGGGGCGGGCGCGGTGATGCCGGTCTCCCAGACGATCGCCGCCGACATCTACACGCTCGAGGAGCGCGCCAGGACGCAGGGCTACCTGGCCTCGGTGTGGGCGATCTCCTCCGTCGTGGGACCGACCCTCGGCGGGGTGTTCTCCGAGTTCGTCTCCTGGCGGTGGATCTTCTGGATCAACGTCCCGCTGTGCCTCCTGGCGGTCTGGATGCTGATCCGCCGCTACCACGAGTCCCCGCTCGGCGGTCGGCGCGAGCCCGTGGACTACGTGGGCGCCGCGCTGCTGACGGCGGGCAGCGCCCTGCTGCTCCTCGGGCTGCTCGAGGGGGGCACCTCCTGGGCGTGGCTGTCGGCGCCCTCGATCGGCGTGCTCACGGTCGCCGTCGTCCTGCTGGCGGTCTTCGCCCGGCACGTGCGGCGCGTCGCCCACCCGATCCTGGACCTGCGGCTGCTGCGGCGCCGGGTGATCGGCGTGGCTACGGCGATCTCGCTGGTGGTGGGCATGGTGGTCCTGGGACTGGTCACCTACGTGCCGATCTACGCCCAGGGGGTGCTGGGTTTCGGGCCGCTGCTGGCGGGCTTCGCGCTCGCGGCGATGATGGTGGGCTGGCCGCTGTCGGCGACGAACGCCGGGCGGCTCTACCTGCGTCTCGGCTTCCGGCTCACCGCGATGATCGGCTCGGCGCTGGTGGTCCTCGGCACGGCGTCGACGCTGCTGCTGGGTGCCGGCTCGCCGTTGGTGGCGGTGATGGGCACGACGTTCCTCGTCGGTACCGGCATGGGGCTGACGGCGGTGCCGACGCTCATCGCCGCGCAGTCGTCGGTGGACCACGGCGTCCGCGGCGCGGTCACCGGGGTGAACATCTTCGCCCGGTCCCTGGGCTCGGCGCTCGGCGTCGCCGTCTGCGGCGCGATCGTCAACTCCGTCGCGACGGTGGGTCCCGACGGCACCCCGTCCGGGCCCGACCTCATGGACGCGATCCGCCTGGTGTTCGTCGTGGTCGCGGTCTCCGGCGTCCTGATCGCGGTGCTGGCGGTGTTCCTGCCCGCCGACCGTCAGGCCGCCCGCGAGCGCCGTGCGGCCGGCGGTCGCGACGCTGCGGGCTAGMGLRSERGPILLSLMLSTALVALDATIIATASATIARELGAFEQVPWLFSSYLLAQAVSTPLAGRLSDIVGRKRAILAGVGLFFLGSVLCGAAWSMGALVAGRVLQGLGAGAVMPVSQTIAADIYTLEERARTQGYLASVWAISSVVGPTLGGVFSEFVSWRWIFWINVPLCLLAVWMLIRRYHESPLGGRREPVDYVGAALLTAGSALLLLGLLEGGTSWAWLSAPSIGVLTVAVVLLAVFARHVRRVAHPILDLRLLRRRVIGVATAISLVVGMVVLGLVTYVPIYAQGVLGFGPLLAGFALAAMMVGWPLSATNAGRLYLRLGFRLTAMIGSALVVLGTASTLLLGAGSPLVAVMGTTFLVGTGMGLTAVPTLIAAQSSVDHGVRGAVTGVNIFARSLGSALGVAVCGAIVNSVATVGPDGTPSGPDLMDAIRLVFVVVAVSGVLIAVLAVFLPADRQAARERRAAGGRDAAGNANANANANA
AK018_053711287proPProline/betaine transporterGTGCTCATCCAGGACGAAGTCGCCCACCCCACCAGGACCCGCCGCCGCGCGCTCGCCGCTGCGGTGTCCGGGCACGCCATCGAGTGGTACGAGTTCGCGGTCTACGGAGTCGTCGCGGCCTACGTCGCCGCCGCCGTCTTCCCTGCTGACGACCCGGAAGTCTCCCTGCTGCTCGTCTGGGCCGGCTACGCGACAGCATTCTTCGTCCGGCCGGTCGGCGGACTGGTCCTGGCGCACCTGGGAGACCGCCACGGGCGCAGGAAGGCGCTCTTCACGAGCGTACTGCTCATGAGCGCAGTCACCGTGGCCATGGGACTGGTGCCGGGCTACGAGGCCGCCGGCCTGGCCGCCCCGGTGCTCTTCGTCGCGCTGCGGGCAGCGCAGGGGTTCGCCGTCGGCGGCGAGATGTCGAGCGCTGTCTCGTACACCGCGGAGCACGCCGGTCCGGGTCGCCAGGTCCGCACGGCCAGCTGGCTCGCCGCGGGCACGTTCGGTGCATCGCTCGCCGGTTCGCTCGCCGCTACCGCATTATCCCTGGTGCTGTCCACAGAGGCGATGACCGCCTGGGGATGGCGCGTGCTGTTCCTGGTGACGGTCCCGCTCGGTGCGATCGCGATCGTCCTGCGCGCACGAGCACCCGAGAGCCCTGGACTCGCGGACCCCTCCCCGCCCCCGCGCCAGGCAGCGCGCCTGCCCGTGACCGATGCGCTGGCGACGCAGCGCGGGCCGATGCTGACCTTCGTCGGCATCGCCGTGCTCTACTGCATCGGGCTGTCCGTAGCGTTCGGCGGCCACCTCAACGAGATGCTCCTGCACGGGCTGACCGCGCCCGATGCCCTCGTCGCGAACACCGCGACGTACGCGGGGCTCGTCGTGTCCATCCTGCTGCTCGCCCCGGTGTGCGAGCGACTCGGGATCCGGCGCACGATGGCGGCCGCGGCCGCCGGCGTCGCCGCCGCCTTCCCCGTGCTGTTCCTGTGCGGCTCCTCCGGGTCGCTTCCCCTCGCCGTCGCCGGCGGCGTGGTCTTCTCCGTCCCCGTCGGCCTGAGCGCGACACCCGTCTATGTCGCACTGGCGCAGATGTTCCCAGCGAGGGTCCGCGTGACCGCCGGGGCCCTCACGTTCAACGCCGCGACCGCAGTCGCCAGCCTGGTGCCCGCTGTCACCCTGGGCCTGCGCACGGCGACCGGCTTCGAGCACGGTCTCGCGCTCTGGACAGCCCTCGGACTAGCCGTGTGCGTCGCCTCCCTCACCGTCGGCACCTGGCGGCAGGTTCACGATGCATGAMLIQDEVAHPTRTRRRALAAAVSGHAIEWYEFAVYGVVAAYVAAAVFPADDPEVSLLLVWAGYATAFFVRPVGGLVLAHLGDRHGRRKALFTSVLLMSAVTVAMGLVPGYEAAGLAAPVLFVALRAAQGFAVGGEMSSAVSYTAEHAGPGRQVRTASWLAAGTFGASLAGSLAATALSLVLSTEAMTAWGWRVLFLVTVPLGAIAIVLRARAPESPGLADPSPPPRQAARLPVTDALATQRGPMLTFVGIAVLYCIGLSVAFGGHLNEMLLHGLTAPDALVANTATYAGLVVSILLLAPVCERLGIRRTMAAAAAGVAAAFPVLFLCGSSGSLPLAVAGGVVFSVPVGLSATPVYVALAQMFPARVRVTAGALTFNAATAVASLVPAVTLGLRTATGFEHGLALWTALGLAVCVASLTVGTWRQVHDANANANANANA
AK018_05372930cynR_2HTH-type transcriptional regulator CynRATGCATGACCTGACCCCGCTCCACAGCCTCGTCGCCGTCGTCGACCACGGGTCGGTCGCAGCAGCCGCTCGACAGAGCGGATACAGCGCTCCGGCCGTGTCCCGTCACCTCGCCCAGCTCGAACGCAGCCTCGGGCTGACGCTCTTCGAGCGCACGGGACGGTCGATCCGCCCGTCCGTGGCCGCGCGGGTGCTCGCCGACAAGGCCCGGATCCTGATCGAGGAGGCCGACGCGTTCCGTCGCGACGCCCGAGCCCTCGCGTCCGGGCGCGAGGGAGTCGTCCGGCTGGGCTACTTCCGCGCGGCAGGCACCACGATCGTCCCGCCGGCGCTCGCGGACTTCGCGAGGCACCGCCCAGGAGCCGACGTCCAACTCGTGGAGCGGCCGCTCAGCGAGGACGTCGTGGATCTCATCAAGGCCCGGGAGGTGGACCTGGGGTTCGTCTGGGGGTTCCCGGAGCCTGCCGACGAAGACCTTCACCGTTCGTTGCTCCTCCGCGAATCGCTGGTCCTCGTCACCGCGCACGACCGCCACGACCTGCACGAGGACCCCGGGGACCTGTCGCGGCTCGTCGACGAGCCGTTCGCGTCGGCTCCTGGTCACCTCGGCGCACCACCGCACGTGGACCGCCTGTTCCTGGCCCAGGGACTACCCACGCCGACGGCGACGCATCGACCCCGGGACCACGCCATGCTGCGCAGTCTCGTGGCCGCCGGGATCGTGGTCGCTCTGCTGCCCGCTCTCGGAGTCTCCGACCCGTCACCAGGAGTCCGTCGATCCGTGGTGGCACCCGACTTCCGGCGCACGTACCTCGCCCACCGGTCCGGGGACTCGAATCCGCTCCTCCGACCGCTGGCGCACGCCATCCGCGCGTCGGCCCGCCGGTTCGACGGGTTCGGCCTGGAGGTCGCCGGCCGAGACGGAGGGTGAMHDLTPLHSLVAVVDHGSVAAAARQSGYSAPAVSRHLAQLERSLGLTLFERTGRSIRPSVAARVLADKARILIEEADAFRRDARALASGREGVVRLGYFRAAGTTIVPPALADFARHRPGADVQLVERPLSEDVVDLIKAREVDLGFVWGFPEPADEDLHRSLLLRESLVLVTAHDRHDLHEDPGDLSRLVDEPFASAPGHLGAPPHVDRLFLAQGLPTPTATHRPRDHAMLRSLVAAGIVVALLPALGVSDPSPGVRRSVVAPDFRRTYLAHRSGDSNPLLRPLAHAIRASARRFDGFGLEVAGRDGGNANANANANA
AK018_053731209ansZCOG0252L-asparaginase 2ATGGCCACGTCACGTCGCACCCTCGCCTCTCGGATACCGCTGGGCGTCGGGGCTCTCGCCCTGGCCCTCGTCGCCAGCGGCTGCACGACGGACGACCCCGAGCAGGCCGCGGCCGCCGCCTCCCCGCTCCCCACGGCAGCCGAGTTCGACGAGTCCGCGAGCACGGACCTCCCCAACGTCGTCATCCTGGACGGCGGAGGCACCATCACGTCGACCGCGGAGGGTCCCGCGGACTATACGAACTACGGCGGCGACGGTGTCCCCGAAGGTATCGCCGGGATCCTCGAGCGGATCCAGCCGGACATCGCGGAGGTCGCCGACCTGTCGATCGTGGACGGCGCCATCCCGGGCAGCTCGGCACGGACTACCGTGCACGAACTGTTCGACATGTCGACTCAGCTCAACGAGATTCTCGGGGACGACGAGGTCGACGCCGTCGTGGTCAACACCGGGACCAACATCATGGCGGAGATCGCCTACTGGAGCGATCTCACGGTCCAGTCGCCGAAGCCGGTCGTCTTCACCGGATCGATGCGGCAGTCGAACACCTTCTCGTTCGACGGGGAGGCGAACCTCTTCAACGCCATCCGACTCGCGGCCAGTCAGCAGACGACCTGCTACGGCACGGTCATGCTGATGAACGACCAGTACTACGCGGCTCGGGAGGTCACCAAGACCGACGCCTGGCGGACGGACACGTTCAACGGGGGCCGCTACGGGGCGCTCGGCACGGTCGATGGCCAGAACTTCCGTCACATGCGTCGGCCCGCCCGGATCCAGGACTGCGGCACCGACTCCTGGCAGACCCCGTTCGACCTGTCGACGGTGGAGTTCGACGATGTCGCGACGGCGGAGGTCGTCTTCAGCCACGTCGAGGCCTCGGCGGTGCCCATCGAGGCCCTCGTCGACGACGGTGTGGACGGCATCGTGACCGCCGGCCACGGCGCGGGCGGCATCTCGACTGCGCAGAGCGAGGCACGGGATGCGGGGGTCGAGGAGGGCGTGGTGTTCGTGACCACCACCCGCACCGGCTCCGGCTCCATCTATGACGGGGGCACCCCGGGCATCGTCGGCGGCCTCGACCTGACGCCGCAGAAGGCCCGCGTGCTGCTGTCGCTGGCCCTGACCTTCACCGACGACCCCGAGCAGGTCCGGGAATGGTTCCAGACGATCGGCAGCGCCGAGTTCGACAGCGCGGCGCAGGACTGAMATSRRTLASRIPLGVGALALALVASGCTTDDPEQAAAAASPLPTAAEFDESASTDLPNVVILDGGGTITSTAEGPADYTNYGGDGVPEGIAGILERIQPDIAEVADLSIVDGAIPGSSARTTVHELFDMSTQLNEILGDDEVDAVVVNTGTNIMAEIAYWSDLTVQSPKPVVFTGSMRQSNTFSFDGEANLFNAIRLAASQQTTCYGTVMLMNDQYYAAREVTKTDAWRTDTFNGGRYGALGTVDGQNFRHMRRPARIQDCGTDSWQTPFDLSTVEFDDVATAEVVFSHVEASAVPIEALVDDGVDGIVTAGHGAGGISTAQSEARDAGVEEGVVFVTTTRTGSGSIYDGGTPGIVGGLDLTPQKARVLLSLALTFTDDPEQVREWFQTIGSAEFDSAAQDPGPT0020180_188DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARAGINE_DEGRADATION,PGPT0020180-EC_3_5_1_1|ansA|ansB-K01424NANA
AK018_05374228hypothetical proteinATGCACGCCGGTCTGGACGAGCAGGCGGAGGAGGGCTACTCCCTGGAGACCCTGCTGCGCGCCGGTGGCGAGGCCGGGGTGCCGTTCTCCGTCGCCGGTGGCGTCAAGGAGAGCTCGATCGCGGCCGTGCAGGACTCCGGTGCCCAGGTCGCCGTCGCGGGCAGCTCGATCTACAGCGCCGACGACGTCGCCGCCGCGGCCGCCGCGCTGCGTGCCGCCATCGCCTGAMHAGLDEQAEEGYSLETLLRAGGEAGVPFSVAGGVKESSIAAVQDSGAQVAVAGSSIYSADDVAAAAAALRAAIAPGPT0013295_510DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-FORMALDEHYDE_FIXATION,PGPT0013295-hxlA|yckG-K08093NANA
AK018_053751440hypothetical proteinATGCGGGTCGAGAGGCGGATTCTCGCCGAAGCCGATAACGTAGGAGGACTCGCGAGGGTTGTCCCCGAGGGCGTAGTCGATCTGGCGCACGCCGAAGTCGTGGTACGTCTGCGCTCGGTCCGGGTCGCCGTTCTCGCGCAACCAGTCGCCGTAGGTCAGCGCGACGAACGAGGTGTTCGCGGCGTAGCGGAGCGAACCCCAGGTGTCGAGGTGGGCCTGGCCTCCGGGGGAGTACGAGATGCGGTCACCCTCGTAGCCGGTCGTCCAGTAGTCCAGCCAACGGTTGGTGTCGTCGATGTACTCCTGCTTGCCGGTCGCCTGGGCGAGCAGGGCGTACGACCCGTAGGACTTGTCGTCCCACGCAACGGTCCAGCGGTACGAGCGGGTGTCCGTCTGCGGCTCCGTCGACAGCCCGTCGTACTCGGCCTCGGCCTTCGCGAGGTAGGTCTCGTCACCGGTGGCCTCGTAGAGCCAGTACGCGCCCCACACGAGCTCGTCCTGGTAGCCGGACCACGAGTTGTAGAACTGCCCGGCGGGTACGCAGTCGGAGTACTCGCCGCGATGGGTGTCGGCGAAGTCGTACAGCTCGACGGCGTGCGAGGCCAGCTCGGCCGCGTAGTCCGGGTCGGAGTCGGCGAAGACCAGGGACGAGGAAGCCATCGCCGCCGCGGTCTCGGCGGCGACGTCGCTGCCCGGGCAGGACGGATCGACCTTGAACGCCGGACGCTCCATCGGCATCGCCTCGGCCGGGCCCCACCACTTGTGGTCGGCGTCGCCGTCGCCCACCTGTGCGTACAGCACGTTCGGTTCGGGGTGGGCCTTGATGAAGTAGTCGTTGACCCAGCGCAGCGAGTCGAGGAGCTCGTCGTCCTGACCGACCGACGAGTAGCCGTCCGGGCTCTCCAACGCGCCCCAGGCGAGCATCGTCGTGGTGAACGCCATCGGCAGGCCGAACTTCACGTGGTCACCGGCGTCGTACCAGCCGCCGGTCAGATCGAGCCCGACGTCGGACCCGTCGTCCATGCCCGAGTCTCCGCGCCAGGTCACCCGGAAGTCGTCGGGAAGGTCGCCGGAACGCTGGGCGTCGTAGAAGAAGAGGGACTTCTGCAGAGCTTCCGCATAGTCGAAGTCCGGCGCGGCGTGAGCCGCCGGGGGCGCCGTGACGAGTCCGGCGCCGAGCAGCGCGGCTGCTGCTCCGAGCGCCGCGGTCCGGGTGGCCACGGCACGTCGATGTGGTCGTACGGTCATGATGTGCTCTCCGCTCAGGATGGAACCCGCGGCCGGGACGGAGGTCCCGGCCGCGGGAGTTCGGAGGTGTCAGCCGAGGTCGCAGCTCACACCGTCGAGGGCGAAGTCGTCCGGCGCGGTGTTCGTCCCGCCGTGCGACCCGTTGAACCCGAACGACACGGATCCGCCGGCCGGGATCGTCGACGCCCATGAMRVERRILAEADNVGGLARVVPEGVVDLAHAEVVVRLRSVRVAVLAQPVAVGQRDERGVRGVAERTPGVEVGLASGGVRDAVTLVAGRPVVQPTVGVVDVLLLAGRLGEQGVRPVGLVVPRNGPAVRAGVRLRLRRQPVVLGLGLREVGLVTGGLVEPVRAPHELVLVAGPRVVELPGGYAVGVLAAMGVGEVVQLDGVRGQLGRVVRVGVGEDQGRGSHRRRGLGGDVAARAGRIDLERRTLHRHRLGRAPPLVVGVAVAHLCVQHVRFGVGLDEVVVDPAQRVEELVVLTDRRVAVRALQRAPGEHRRGERHRQAELHVVTGVVPAAGQIEPDVGPVVHARVSAPGHPEVVGKVAGTLGVVEEEGLLQSFRIVEVRRGVSRRGRRDESGAEQRGCCSERRGPGGHGTSMWSYGHDVLSAQDGTRGRDGGPGRGSSEVSAEVAAHTVEGEVVRRGVRPAVRPVEPERHGSAGRDRRRPNANANANANA
AK018_053762304cbhACOG5297Exoglucanase AGTGCGTTCACGATCCTTGCGACCCCGCAGCGCCGCGGCGGTCAGACCCCTCGCCGTCGCGGCAACCCTGACCCTCGGAGCGACGGCCCTGGTGGCCTCCGGCCCGGCCACCGCCGCCGAACGGGTGGACAACCCCTTCGTCGGCGCCGACCAGTACGTCAACTCCTACTGGTCCGCCAACGTCGCCCAAGCCGCCGCCCAGGTCGGCGGCGAGCTCAGCGACGACATGCTCGCCATCGCCGACACCCCGACGTCGGTTTGGATGGACCGCACGAGCGCCATCGAGGGCAACGCGGACGGCCCTGGCCTGCGCTACCACCTCGACGCCGCGCTCGATCAGCAGCAGGGCGACACGCCGCTGGTCTTCAACCTGGTGGTCTACAACCTGCCCGGACGCGACTGCTTCGCGCTCGCGTCCAACGGGCTGGTCCCCGCCACGCCGGAGGGGCTCGAGCACTACAAGCACGAGTACGTCGACGTCATCGCCGACATGCTGGCCGAGCCGCAGTACGCCGACCTCCGGGTGGCCGCGACGATCGAGCCCGACTCGTTGCCGAACATGGTCACCAACTCGTCCCACCAGCCGTGCCAGGTGGCGGCCCCGTACTACCGCGAGGGCATCGCCTACACGCTCGAGCGACTGTACGAGGCGGGCAACGTCTACTCGTACATCGACGCGGCGCACGCCGGCTGGCTCGGATGGGACAACAACGCCCAGGGCGCCGCACAGGAGTTCCACGACGTCATCACGGACAACACCTACGGCTACGACGCCGTCGCCGGGTTCGTGACCAACACGGCCAACTCCACGCCGACCGAGGAGCCGTTCCTCGAGGACGAGAACTTCACCACCGGGACGTTCGTGCGTCAGTCCGACTTCTACGAGTGGAACCCGCACTTCGACGAGCACTCGTGGACGGCCGAGCTGCACTCGCGAATGGTCGCGCAGGGTGCGCCGGAACGGATCGGCATGCTGATCGACACCTCCCGCAACGGCTGGGGCGGACCGAACCGTCCCGCCGCCGAGAGCACGTCGACCGACCTCAACACCTACGTGGACGAGTCCAGGGCCGACCGCCGCACCCATCGCGGCGCCTGGTGCAACCCTGCAGGCGCCGGGATCGGGGAACGGCCGACGGTGTCTCCGACCGGGAGCCCCGCGTCGCACCTGCACGCGTACGTCTGGGTCAAGCCGCCGGGCGAGTCGGACGGCAACTCCGAGGAGATCCCGAACGACCAGGGCAAGGGCTTCGACCGGATGTGCGACCCGACCTACTCCGACGACGCCCGCCTCGGCGGCAACATGACCGGCGCACTGCCGGACGCCCCCGTGGCCGGCCAGTGGTTCCAGGCCCAGTTCGAGATGCTGGTGACCAACGCCTACCCGCCCATCGACGGCGACCCGGTCGACCCGGACACCCAGGCCCCGACGGTCCCGACCGGACTGGCAGCCGACGAGGTGGCCGCCACCTCGGTAGCCCTGTCGTGGGAAGCATCCAGCGACGACACGGGAGTGACCGGCTACACGGTGAGCGTGGACGGCGAGACCGCGGCGACCAGTGGTTCGACGTCGACGACGCTGACCGGCCTGGCACCGGAGACCACCTACGAGATCACGGTGACGGCGCGCGACGCCGCGGGCAACGTCTCGGCCGCGTCCGCGCCGTTGTCGGTCACCACCGGCGCGGCACCCGACGACACCGAGGCACCCACCGTCCCGACCGGACTGGCAGCCGACGAGGTGACCGCCACCGCCCTGGCGCTGAGCTGGGACGCCGCCGATGACGACACCGGCGTGGCCGGCTACCTGGTGCACCGCGACGGCACCCAGGTGGCGGACGTGTCCGGCACCTCGTTGGCCGACTCGGGACTGACGGCGGACACGACGTACACCTACACCGTGTCCGCCTACGACGCTGCGGGCAACACCTCGGACGCGTCGGAGGCTCTCGCCGTCACGACGGCGTCCGAGCAGGTCACGCCTGGTTCCGGCTGCACCGTGGACTACACGGTGAACTCCTGGAACAACGGGTTCACCGGGAACCTCGTCGTCACCAACGACGGCGACGCCCCCGTGTCCGACTGGGAACTGACGTTCAGCTTCGCCGACGGCCAGCAGATCACTCAGACCTGGTCCGCGCAGTCCGCGCAGTCCGGCTCCGACGTCACGATCACGCCCGCGTCATGGGCGTCGACGATCCCGGCCGGCGGATCCGTGTCGTTCGGGTTCAACGGGTCGCACGGCGGGACGAACACCGCGCCGGACGACTTCGCCCTCGACGGTGTGAGCTGCGACCTCGGCTGAMRSRSLRPRSAAAVRPLAVAATLTLGATALVASGPATAAERVDNPFVGADQYVNSYWSANVAQAAAQVGGELSDDMLAIADTPTSVWMDRTSAIEGNADGPGLRYHLDAALDQQQGDTPLVFNLVVYNLPGRDCFALASNGLVPATPEGLEHYKHEYVDVIADMLAEPQYADLRVAATIEPDSLPNMVTNSSHQPCQVAAPYYREGIAYTLERLYEAGNVYSYIDAAHAGWLGWDNNAQGAAQEFHDVITDNTYGYDAVAGFVTNTANSTPTEEPFLEDENFTTGTFVRQSDFYEWNPHFDEHSWTAELHSRMVAQGAPERIGMLIDTSRNGWGGPNRPAAESTSTDLNTYVDESRADRRTHRGAWCNPAGAGIGERPTVSPTGSPASHLHAYVWVKPPGESDGNSEEIPNDQGKGFDRMCDPTYSDDARLGGNMTGALPDAPVAGQWFQAQFEMLVTNAYPPIDGDPVDPDTQAPTVPTGLAADEVAATSVALSWEASSDDTGVTGYTVSVDGETAATSGSTSTTLTGLAPETTYEITVTARDAAGNVSAASAPLSVTTGAAPDDTEAPTVPTGLAADEVTATALALSWDAADDDTGVAGYLVHRDGTQVADVSGTSLADSGLTADTTYTYTVSAYDAAGNTSDASEALAVTTASEQVTPGSGCTVDYTVNSWNNGFTGNLVVTNDGDAPVSDWELTFSFADGQQITQTWSAQSAQSGSDVTITPASWASTIPAGGSVSFGFNGSHGGTNTAPDDFALDGVSCDLGPGPT0018680_23DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-CELLOBIOSIDASE,PGPT0018680-cbhA-K19668NANA
AK018_053771113ccpA_13COG1609Catabolite control protein AATGCCCCGGGTGACGGCACAGTGTGGGAGCGTGCCCACACCTCACCGTAGGACAGACGCCCAGCCCGTCGCCGCTCGTCGCGTCACCATCACCGAGGTCGCCCATGCCGCCGGGGTGTCCATCGCCGTCGTCTCGTACGCCCTCAACGGCCGTCCTGGCGTCTCCGACAGCACCAGGCGGCACGTCCTGCGCGTGGCCGAGGATCTCGGCTGGCGACCGAACGCCGCGGCCAGGTCCCTTCGGTCGGCGGCAGCCGCCGGTGTCGGCCTGCAGCTGCTGGCGCGATCCGGCGCCGCGCTCGGCTCGCCGAGCGGGGTCGCACTCGCGGCGGGGCTGCGCACGGTGGCGCGCGACCTCGCACTGGCGGTCGACGTGGCCGTCGACCGCGAGACCGGCGCCCAGGACCTCGAGACCTTCTGGACCGAGCGGCGTCGTGCCGCGTTCGTCCTCACGGACCTGCTGCTCGACGACCCGCGGACCGGGACGGCCGCACGGATCCAGGCTCCTGTCGTCGCAGTCACCCCGCCTGGCCTCACCGCTGCCGAGGCGGTGCGCAGCGTATGGTTCGCGGGCCGGGCGACGGCACGTGCCGGGGGCTATCTGGCCGATCTGGGACACCGCCGGGTCGCACTCGTGGTGAGCGAGGCCCGGTCGGACACGGCCCGTGACCTGCAACGCGGGATCGACGAGTCCATGCCCGGCACGCAGTCGACCGTCGTCGAGGCGCCGACGCCCGCCGAAGCGGGTGCTGCGACGTCCCGACTCCTCTCTGCCGAGCGCCGCCCGACGGCCATCGTGACGGACGGGGACATCACCGCGCTCGCCGTGCTGGACGCCGCACGCCGACGCGGGACCGCGGTGCCGTGGGAGCTCTCCGTGGTCTCCGGGGCCGACGGCGACCCGTGCCGGCTGGTCCAGCCCCAGCTGACCGCGATCGCTCGGTCCTGGGAAGACCTCGCACCCGTCCTGCGGGACGTCCTGTCGGCCGCGACGGCCGGCGGATCACCTTCCACGGGTGCTCGACGAGCGACGCCGCAGGACGCGGGGGTCACCGTCCCGCACGAGCGGTTGGTCATCCGCGGGAGCACCGCGCCGCCACCCGACGGCGCCTAAMPRVTAQCGSVPTPHRRTDAQPVAARRVTITEVAHAAGVSIAVVSYALNGRPGVSDSTRRHVLRVAEDLGWRPNAAARSLRSAAAAGVGLQLLARSGAALGSPSGVALAAGLRTVARDLALAVDVAVDRETGAQDLETFWTERRRAAFVLTDLLLDDPRTGTAARIQAPVVAVTPPGLTAAEAVRSVWFAGRATARAGGYLADLGHRRVALVVSEARSDTARDLQRGIDESMPGTQSTVVEAPTPAEAGAATSRLLSAERRPTAIVTDGDITALAVLDAARRRGTAVPWELSVVSGADGDPCRLVQPQLTAIARSWEDLAPVLRDVLSAATAGGSPSTGARRATPQDAGVTVPHERLVIRGSTAPPPDGAPGPT0014791_152DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_053782631purR_4HTH-type transcriptional repressor PurRATGAAGGTGTCCCCGTGGGCACGTGACCCCGGCAAAACCGGCGGATCCTTGACGATCGGGGTGCTCTGCCCCGTGGTCGGTGGCTTCTACTTCGGTCGACTCCTGGCAGGGATGACACGCGTCCTGCGTGCCGGCGGCCACCGGTTGGTCGCGGTGCAGACCTATCCGGCCGACCTCGACAGGGACGAGTTCCCGGTGCCGCCCCACCGGAGGGAGCCTCCGGGCCTGGGCTCCTACGACGGTCTGGTCATCGTGACGTCGGCGCTCGCGGACGAGGACCTGCGTCGGATCGACGCGACCGACATTCCGCTGGTGGCGGTCGGCGTTGCCCACGACGACCTGCGCGCTCCGTCGGTCGCACCCGACAACAGCGGCGCCGTGAGAGCGCTCGTGGATCACCTGGTGGACCACGGGCACCGGCGCATCGGGTTCCTGGGCAACACCGACCAGGTCGACATCGCCGAGCGCTACGACGCCTTCCGTTCGGCCCTGGTCGAGCACGGGCTCGAGCACCCGCCCGAGGCCTTCCTGCACACGCGTGACCTGCAGGAGGCCTCCGCCGAGCTGGTGGGTCGCCGAGCCGTCGAGCGAGGGCTCGGCACGACGGCGACCGTCGCCGCCACGGATCGCAACGCCGTCGGCTTCCTGCGAGCGCTGCGCCAGGCGGGACTCACGGTCCCCGACGACCAGGCGGTGGTCGGTTTCGACAACTCCGACTCCGGCGCGCGGAGCTGGCCGCGGCTGACATCGGTGGACGTCCGGCACGACGCGGTCGGCCAGCGGGCTGCGGAGCTCCTCCTGGCGCGCATCCGTGGTGAGCGAGTCACCGGTCGGCATCGCCTCGACCACGCGGTCCTCGTGATGCGGGAGTCCTGTGGCTGCGGGGTGGGCACACGGAGCGCCCTCGTCGGGAGGGTGTCGCAGCCCGGGGACCCTGACCCGCTCGGCGCGGTCGCCGAGGTGGTGTTCGCCCACGCGAGCACCGCGGGGCGACGGGGCGGCCTCGACTCATGGCTGGCCACCTTGCGCCAGCTCGTCGAGGCGGCGGTCGCGACGGCGGCGGCACCTCCTGAGCCCGCGCTGCGCGTGCTCGGCGAGCGCACCGCGGCGCTGCGTCCCGCGCCGGGTGCCCTGGAGCAGCTCGTCCCGGCCGTCCATGCCGAGGCTGCGCGGGTCCGACGTCGGCTGAGCCGGCACGTGGGCGACGCGAGGGTCAGCGAGGGCGCCGGTCCTCCGGGAGGTCTCGACCTGGTCGACTCCGGCGCCGCCGGGGCCGCGCTGGAGCGAGTGGTGGTGGCTCTCGTACGAGGCTGCACCCACGGGGACCTCGCACGCGCGGGCAGGTTGGAGCAGGAGCTGACGGACCTGGAGCGTGTCGACCTGGAGCTGATGCGGTCCGACGGCCAGGCGCTGCGACGCCTGGACTGGGTGCCCCGGACCCGGACTGCCACGGCGGCACTTGCCTTGTGGGAGGGCGATCCCGACAGGCCCGGCCTGCGCCGACTGCGTGTCGTCGGCGCGCGTGGCGGGAGGGCCGGCGGAGACGCGCTGATCGGTCGGACGATGCGGGCGACGCAGTTCCCGCCGCCGGCCGTGACCGTCCCGAGCGCGCTGACCGTCGTCGTGCCGGTGGCTTTCGGGCGGTCGGACCGGGGCTATCTCGCGGTCGGCGGCCTGGTGGACACACGTGCCACGAGCACCCGGGCGCGTTACAACCACTGGGCGGCCATGCTCGCCGTCGCCCTGGAGGCCGAGGACTCGTTGACCTCGTTGCAGGCACAACGGCACCAGCTCGCCCAGGTCGCAGACCGACAGCGCGCGCTCGCGACAGACGTCGCCGCAGAGGAGGAGCGTGCGGCCCTCGCGTCCATCGCCGCCGACGGCGGTATCTGGGACTGGGACGTGGACGCGGGTGCCGTGCGGTACTCAGCCGCCTGGGCGCGCCTGGTCGGGGAGGAGCCCGGCGCCCTGCGGGAGGACCCGCAGGAGTGGTTCTGCCGGGTGCACCCCGACGATGTGCGCAAGCTGCACGAAGGGATCGCAGCCCAGCTCTCCGGGACGCGCGAGCCGCTAGCCGTCGAGCACAGGCTCCGGAGCGCAGGCGGACGCTACGTGCGCGTGTCCTGCCGCGCGGTGACCGTCCACGACGCAGCGGATCGGCCGGTCCGCATCGTCGGCTCGCTGATGCCAACGGCCTCGGCACCCCGTGCGGTCGCGGACCTGGCGGCACCGCCGGACCCTGCGCCGGTCGCGGGGCTGCTGCCCCGGGACCGATTTCACGATCTCCTCGAGCGGGCCGTCAGACGGGCGCGGCGGGTGCCCGGCTACCCGTGGCAGGTGCTCGCGGTTCGGTTCCGGCAACAGCTCGGCGAGGCGGAGCGGCGCCTGCTGCTCGCCGCGATACCACCGGACGAAGCGGCCGTGGCCGTCGGCGCACGGACCGTGGTCGTGCTGCTCGACGGGTGCACCGGGCCGGAGGTCGGACGGCTGGCGGGCCGTACGGCGGCAACCCTGGGAGACGCCGGGGTCGTGGGTGTGGTGCCGCTGGTCGACCCCGAGCCTGCCTCGGCCGAAGCGGTGATGCGGCGCGTGCCCGACGCGCTCGGTGACCCCGTGCGCTTCCGCGCCTAAMKVSPWARDPGKTGGSLTIGVLCPVVGGFYFGRLLAGMTRVLRAGGHRLVAVQTYPADLDRDEFPVPPHRREPPGLGSYDGLVIVTSALADEDLRRIDATDIPLVAVGVAHDDLRAPSVAPDNSGAVRALVDHLVDHGHRRIGFLGNTDQVDIAERYDAFRSALVEHGLEHPPEAFLHTRDLQEASAELVGRRAVERGLGTTATVAATDRNAVGFLRALRQAGLTVPDDQAVVGFDNSDSGARSWPRLTSVDVRHDAVGQRAAELLLARIRGERVTGRHRLDHAVLVMRESCGCGVGTRSALVGRVSQPGDPDPLGAVAEVVFAHASTAGRRGGLDSWLATLRQLVEAAVATAAAPPEPALRVLGERTAALRPAPGALEQLVPAVHAEAARVRRRLSRHVGDARVSEGAGPPGGLDLVDSGAAGAALERVVVALVRGCTHGDLARAGRLEQELTDLERVDLELMRSDGQALRRLDWVPRTRTATAALALWEGDPDRPGLRRLRVVGARGGRAGGDALIGRTMRATQFPPPAVTVPSALTVVVPVAFGRSDRGYLAVGGLVDTRATSTRARYNHWAAMLAVALEAEDSLTSLQAQRHQLAQVADRQRALATDVAAEEERAALASIAADGGIWDWDVDAGAVRYSAAWARLVGEEPGALREDPQEWFCRVHPDDVRKLHEGIAAQLSGTREPLAVEHRLRSAGGRYVRVSCRAVTVHDAADRPVRIVGSLMPTASAPRAVADLAAPPDPAPVAGLLPRDRFHDLLERAVRRARRVPGYPWQVLAVRFRQQLGEAERRLLLAAIPPDEAAVAVGARTVVVLLDGCTGPEVGRLAGRTAATLGDAGVVGVVPLVDPEPASAEAVMRRVPDALGDPVRFRAPGPT0014791_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_053792673cbhBExoglucanase BATGCCCCGAACGATCCTGAGGTCGCGCCTGGTCGCGGTGGCTGCCGCGTCGGCCGTGACCGCCGCGCTGTGCGCGGCGGTCCCCGCTGGTGCGGCACCCCCGTCGACCGTCCCCGCCCCGGCCGCGGTGCGCGCCGCGCTCGACACCGACGGCGAGTACACGCAACGATTCCTCGCGCTCTACGACAAGATCCACGACCCCGCCAACGGGTACTTCTCCCCGGAGGGCATCCCGTATCACGCGGTCGAGACCCTCATGGTCGAGGCGCCCGACCACGGCCACGAGACCACCAGCGAGGCCTACTCGTTCTGGCTGTGGCTCGAGACCTCCTACGGTCAGGTCACCGGTGACTGGGAGCCGTTCAACCACGCCTGGGACACGCTCGAGGCGTACATGATCCCTACCACGGAGAACCAGCCCACCAACGCCGCGTACGACCCGGGCAGCCCGGCGACGTACGCGCCCGAGTTCACCCACCCCAGCAGCTACCCTGCCGAGCTCGACAGCGGCGTCCCCGTCGGCACCGACCCGATCGGTGACGAGCTGGCCCAGACCTACGGCACGTCCGAGATCTACGGCATGCACTGGCTGGCCGACGTCGACAACGTCTACGGCTTCGGAGCCGCGCCCGGCTCGAGCGAGCTGCTCGGACCGGACCACGAGGGCACCAGCTACATCAACACGTTCCAGCGCGGCCCGCAGGAGTCGGTGTGGGAGACGATCCCGCAGCCGTCCATCGACGACTTCTCCTTCGGCGGCGAGAACGGCTATCTTGACCTGTTCACCGGTGACGCGTCGTACGCGAAGCAGTGGAAGTACACCAACGCCCCCGACGCCGACGCCCGCGCCGTCGAGGCCGCCTACTGGGCCAACAAGTTCGCCACGGAGCAGGGTCAGCCGGAGGCCGTCGCCGAGACTGTCGGCAAGGCCTCGAGAATGGGCGACTACCTGCGCTATGCGCTGTTCGACAAGTACTTCAAGACGCCCGGTTGCGAGTCGCCCTCCTGCCCCGCGGGCAGCGGCCGCGACAGCGCCCACTACCTGCTGAGCTGGTACTACGCTTGGGGCGGCGCCCTCGACACGCAGGCCCCGTGGGCTTGGCGCATCGGCTCCAGCCACGCCCACTTCGGCTACCAGAACCCCATGGCCGCCTGGGCGCTGGCCAACGAGCCCGCACTGGTGCCGGACTCGGCCACCGCCGACGACGACTGGGCCACGAGCCTCGACCGCCAGGTCGAGCTCTTCCAGTGGCTGCAGGCGCCCGAGGGCGGCATCGCCGGGGGATCGACCAACAGCTGGGACGGCCACTACGCCGAACGGCCCGGCGACGTCGCCACCTTCTACGGCATGGCCTACACCGAGGCGCCGGTCTACCACGACCCGCCGTCGAACGAGTGGATGGGCATGCAGGGCTGGGGCGTCGAGCGCATCGCCCAGCTGTTCCACGAGACCGGCGACGAGCGCGCAGGCGACATCCTCGACGACTGGGTGCCGTGGGTCATCGACCACATCACGGTCACCGACGAGTCCTGGGAGATTCCCTCCAACCTGGGCTGGTCCGGTCAGCCCGACGACTGGGATCCGGAGGACCCCGGTGACAACTCGGGCCTCAGCGTCGAGGTCACCGCCTACGGCCAGGACGTCGGCGTCGCCGGCGCGCTGGCACGCACGCTGATGTACTACGCGGCCGGGTCGGGCGACGTGACGGCACAGCAGACCGCCCACGACCTGCTCGAGGCGATCTGGACCCAGAACAGCGACCCGCTCGGCGTGGCCACGACCGAGACCCGCGGAGACTACTCACGGTTCGACGACGTCTACGCCGGTGGCGACTCCGACGGCGTCTACGTGCCCGAGGGGTGGTCCGGCACCATGCCCAACGGCGACGTCGTCGAACCCGGCGTCTCGTTCCTGGACATCCGTTCCTTCTACGAGGACGACCCCCAGTTCGACAAGGTCCAGGCCCACCTCGACGGTGGCCCGGCTCCCGAGTTCACCTACCATCGGTTCTGGGCGCAGACCGCTGTCGCCACGGCGCTCGCCGACTACGACCGGCTGTTCGGCGATGCCCCCGAGCTGCCGGAGGACACCGAGGCGCCCTCGGTGCCGGCAGGCCTGACCGCCGCCGTCGACGGCACCACCGTCGAGCTGACCTGGCAGGCGTCCACCGACGACGTGCGGGTCACCGGGTACGACGTGTCCCGCGACGGCGAGGTCGTCGCCGGAGTCGGCGGCACGACGACCTTCTGGACCGACGACGAGGCGGAACCCGGGACGACGTACACCTACACCGTCACGGCGCACGACGCCGCCGGCAACGTCTCGGCGGCGTCCGACCCGGTCACCGCCACCACCGAGGACGAGGTGGACCCCGGACCCGACGACGTCTGCACCGCCACCTACACCACGCCGAACGCGTGGCAGGACGGCTATCAAGGTGCCGTCACGGTCACGGCCGGGCCCGCAGGGGTGACCGACTGGGTCGTCACCGCACCCGACGGCCTGTCCCCGGCCAACGTGTGGGGCGGTCACGTCGACGGCGGGGATATCACCCCCGAGTCGTGGAACGCCACCGTCCCGCCCGACGGCTCGGTCACGGTCGGCCTCGTCGGAACCGGCACGCCGCCGGCGGACGCCGACCTCACCTGCACAGGGACGGTGCCAGCCGGCTGAMPRTILRSRLVAVAAASAVTAALCAAVPAGAAPPSTVPAPAAVRAALDTDGEYTQRFLALYDKIHDPANGYFSPEGIPYHAVETLMVEAPDHGHETTSEAYSFWLWLETSYGQVTGDWEPFNHAWDTLEAYMIPTTENQPTNAAYDPGSPATYAPEFTHPSSYPAELDSGVPVGTDPIGDELAQTYGTSEIYGMHWLADVDNVYGFGAAPGSSELLGPDHEGTSYINTFQRGPQESVWETIPQPSIDDFSFGGENGYLDLFTGDASYAKQWKYTNAPDADARAVEAAYWANKFATEQGQPEAVAETVGKASRMGDYLRYALFDKYFKTPGCESPSCPAGSGRDSAHYLLSWYYAWGGALDTQAPWAWRIGSSHAHFGYQNPMAAWALANEPALVPDSATADDDWATSLDRQVELFQWLQAPEGGIAGGSTNSWDGHYAERPGDVATFYGMAYTEAPVYHDPPSNEWMGMQGWGVERIAQLFHETGDERAGDILDDWVPWVIDHITVTDESWEIPSNLGWSGQPDDWDPEDPGDNSGLSVEVTAYGQDVGVAGALARTLMYYAAGSGDVTAQQTAHDLLEAIWTQNSDPLGVATTETRGDYSRFDDVYAGGDSDGVYVPEGWSGTMPNGDVVEPGVSFLDIRSFYEDDPQFDKVQAHLDGGPAPEFTYHRFWAQTAVATALADYDRLFGDAPELPEDTEAPSVPAGLTAAVDGTTVELTWQASTDDVRVTGYDVSRDGEVVAGVGGTTTFWTDDEAEPGTTYTYTVTAHDAAGNVSAASDPVTATTEDEVDPGPDDVCTATYTTPNAWQDGYQGAVTVTAGPAGVTDWVVTAPDGLSPANVWGGHVDGGDITPESWNATVPPDGSVTVGLVGTGTPPADADLTCTGTVPAGPGPT0018620_26DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-CELLULASES,PGPT0018620-celJ|eglA|eglS-K01179NANA
AK018_053801539hypothetical proteinGTGAAGGCTGCGGTCACGGGAGTCACGGGATATGTCGGCGGGCGCTTGGTGCCCGAGCTGCTGGCGGCGGGTCACGAGGTGCGCGCGCTGTCGCGCGACCCGGCGCGGCTGGCGGGGCGGCCGTGGGTGGACGACGTCGAGTCGGTGGCGGCGGACGTCGGCGACCTGGACGCCGTCCGGCAGGCCCTGACCGGCGCGGACGTCGCCTACTACCTCGTGCACTCGCTGGGCACGGGGCGCACCTTCGAGGCCCGTGACCGCCGCAACGCCCTGACGTTCGCGCGCGCCGCCCGGGAGGCGGGTGTCGGACGCATCGTCTACCTGGGCGGCCTGTACCCGGACGTGGCCGAGGGCGACCTGTCTGCCCACCTGGCCTCCCGCAAGGAGGTCGAGGAGGTGCTGCTGGCCTCGGGTGTTCCGACGACGGTGCTGCGCGCCGCGGTGATCCTGGGTTCGGGTTCGGCGTCGTTCGAGATGATGCGCTACCTGACCGAACGGCTGCCGGCGATGACGACGCCGCGGTGGGTGGACAACCGGATCCAGCCGATCGCGATCCGGGACGTGCTGCACTACCTGGTCGGCTCGGCGACGATGCCGGCCGACGTCTCGCGGGGTTTCGACATCGGCGGGCCGGACGTGGTCACGTACCGGCAGATGATGCAGACGTACGCCCGGGTGGCGGGCCTGCCGCGGCGCGTCGTGGTCTCCGTGCCGGTGCTGACGCCGCGGCTGTCGAGCCACTGGGTCGGTCTGGTCACGCCGGTGCCCTCGGGCATCGCCCGGCCGCTGGTGGAGTCGCTGGTGCACGAGGTGGTCTGCAAGGACGAGGACGTCAAGGATCTGGTCCCGGACCCCGAGGAGGGCCTCACGGGCGTCGCCGGCGCGATCGAGCTGGCCCTGACGCGCATCCACGACGGCGAGGTCACGACCCGCTGGACGTCGGCGTCGTCGGTGCCCGGTGCGCCGTCGGACCCCTTGCCGACGGACCCGGACTGGGCGGGCGGCTCACTCTACGTCGACGAGCGCCGCACCGTGGTGGAGGCGCCGCGCGACGTGCTGTGGCAGGTGATCGAGGAGATCGGCGGACAGGGCGGCTGGTACTCGTGGTCGCTGGCGTGGCACGCGCGCGGCCTGCTGGACCGGCTCGTGGGTGGACCAGGACTGCGTCGGGGCCGGCGCGACGAGCACAGCCTGCGCGTCGACGACGCCCTGGACTTCTGGCGGGTGGAGGCGCTCGAGCCGGGCAAGCGGCTGCTGCTGCGTGCCGAGATGCGGCTGCCGGGCCTGGCCTGGCTGGAGCTGCGCGTCGACGAGTCCGCCGAGGAGCTGTCCGACGCCGACGACGACGCCCCCGAGCCGCAGGACGCGGCGGGCCCGGGCCGCACCTACTTCGCCCAGCGGGCCCTGTTCGCGCCGCACGGGCTGCTCGGTCAGCTCTACTGGTGGTCCGTCGCTCCGTTCCACGGGGTGGTGTTCGGCGGGATGCAGCGCAACGTCGCCCAGGAGGCGCAGCGCCGCGCACGCGACGAGTCGGTCTGAMKAAVTGVTGYVGGRLVPELLAAGHEVRALSRDPARLAGRPWVDDVESVAADVGDLDAVRQALTGADVAYYLVHSLGTGRTFEARDRRNALTFARAAREAGVGRIVYLGGLYPDVAEGDLSAHLASRKEVEEVLLASGVPTTVLRAAVILGSGSASFEMMRYLTERLPAMTTPRWVDNRIQPIAIRDVLHYLVGSATMPADVSRGFDIGGPDVVTYRQMMQTYARVAGLPRRVVVSVPVLTPRLSSHWVGLVTPVPSGIARPLVESLVHEVVCKDEDVKDLVPDPEEGLTGVAGAIELALTRIHDGEVTTRWTSASSVPGAPSDPLPTDPDWAGGSLYVDERRTVVEAPRDVLWQVIEEIGGQGGWYSWSLAWHARGLLDRLVGGPGLRRGRRDEHSLRVDDALDFWRVEALEPGKRLLLRAEMRLPGLAWLELRVDESAEELSDADDDAPEPQDAAGPGRTYFAQRALFAPHGLLGQLYWWSVAPFHGVVFGGMQRNVAQEAQRRARDESVNANANANANA
AK018_05381897tesB_2COG1946Acyl-CoA thioesterase 2GTGACCGACCTGCCCGACGGCCCTCTGGAACGACTGCTGGCCGCACTGGACCTGCGCGAGATCGAGGGGTGGGGTCCGCGCGGCGAGGACGACGTCTGGCGCGGGGACTCGGTCCCGGGGCCGGCGCGGCGCGTGTACGGGGGTCAGGTGCTGGCCCAGGCGCTGCTGGCGTGCGGGCGCACGGTGGAGGACGACCGGTTGCCGCACTCGTTGCACGCGTACTTCCTGCGGGAGGGGGCGCTGGACTCCCCGATCGACTTCGCCGTCGAGCGGCTGCGCGACGGGCGGTCCTTCAGCGCCCGTCGTACGCACGCGATCCAGGCGGGGCGGCCGATCCTGTCGTTGACGGCGTCGTTCCAGGTCGACCAGCCGGGGTACGAGGCGCACGTGCCCATGCCGGACGACGTCCCGGCGCCGGAGGACGTGACGTCGGTGTTCGAGTCGCTCGCGGGCGTGGACCATCCGGCGGCGCGGTACTGGACGGACGGGTCGGCGTTCGAGCTGGCGCACGTCGGCGGGTCGGTGTACCTGGGGGCGGGGGACGACCCGCGCCCGGAGCAGATGGTGTGGATGCGCACCCGGCACGGCGTCGACTCGGACGACCGGCTGCTGCATCGGGCGCTGCTGGCGTTCGGCTGCGACCAGGTGATGCTGGAGCCGGTGCTGCGCGGTGCGGGCAAGTCGTGGCTGGACGTGGGCACATCGGTGCCGATGGCGTCGCTGGACCACGCGATGTGGTTCCACCGGGACGCCCGGGCGGACGAGTGGCTGCTGTACGTGCAGGAGTCGCCGGGTGCGCAGGGCGGTCGCGGTCTGGGTCTGGCGCGCGTGTACGACCGCGACGGCGCACTGGTCGCGACGATCGCCCAGGAGGGCATGGTGCGGCTGCCCGCCTGAMTDLPDGPLERLLAALDLREIEGWGPRGEDDVWRGDSVPGPARRVYGGQVLAQALLACGRTVEDDRLPHSLHAYFLREGALDSPIDFAVERLRDGRSFSARRTHAIQAGRPILSLTASFQVDQPGYEAHVPMPDDVPAPEDVTSVFESLAGVDHPAARYWTDGSAFELAHVGGSVYLGAGDDPRPEQMVWMRTRHGVDSDDRLLHRALLAFGCDQVMLEPVLRGAGKSWLDVGTSVPMASLDHAMWFHRDARADEWLLYVQESPGAQGGRGLGLARVYDRDGALVATIAQEGMVRLPAPGPT0001835_187DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001835-tesB-K10805NANA
AK018_05382384glbOCOG2346Group 2 truncated hemoglobin GlbOGTGACGACCCCCAGCTTCTACGACGACGTCGGCGGCCATGCGACGTTCGTGCGCCTCGTGGACGTGTTCTACGAGGGCGTGGCCACCGACGAGGTCCTGCGTCCCATGTATCCCGAGGAGGATCTCGGGCCGGCGAAGGAGCGCCTCACGCTGTTCCTGGAGCAGTTCTGGGGTGGTCCGACGACGTACAGCCAGCAGCGCGGGCATCCCCGGCTGCGGATGCGGCACGCGCCGTTCAAGGTCAACCCCGACGCCCGGGACCGCTGGCTGGCGCACATGCGCACCGCCGTGGACTCCCTGGACCTGGCGCCGGCCCACGAGTCTCAGCTGTGGGACTACCTGGAGCGAGCGGCCTTCAGCATGATCAATACTTTCGAGGAATGAMTTPSFYDDVGGHATFVRLVDVFYEGVATDEVLRPMYPEEDLGPAKERLTLFLEQFWGGPTTYSQQRGHPRLRMRHAPFKVNPDARDRWLAHMRTAVDSLDLAPAHESQLWDYLERAAFSMINTFEEPGPT0018560_1759DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_05383240nagF_2COG1264PTS system N-acetylglucosamine-specific EIIB componentATGAGCAAGGCGGAAGACATCCTCGCCGCCCTCGGCGGCACCACCAACGTCCTCGAGCTCGAGCCGTGCATCACCCGGCTGCGCGTCCAGGTCACCGACCCGCAGCTCGTCGACGAGCCGGCGCTGAAGCACTCCGGTGCGTTCGGCGTCGTGCGCTCCGGCCGCATCATCCAGGTCATCGTCGGCCCCGAGGCGGACAACCTCGCCGCCGAGCTCGACGGGCGGCTCGCCTCGGCCTGAMSKAEDILAALGGTTNVLELEPCITRLRVQVTDPQLVDEPALKHSGAFGVVRSGRIIQVIVGPEADNLAAELDGRLASAPGPT0016870_179DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0016870-ptsG|glcA|glcB-K20118NANA
AK018_053841071hypothetical proteinATGGTCCAGGTCGGCCGGTTTCGGTCGTCGGCGACGCCGGTTACGGTGGACGGCGTGCGTGATGCGATCGTGACCTCTCTCCTGCCGTTCGACACCGACCCGAGCCCCAGCCCCTCCGAGGGTGTCCTCGAGAACACCGTGGAAGGCGTCTCCGAGGCCGGGCAGTCCTTCTGGGACTGGTTCCTCGGGTGGCCCCTGCACGTCATCGTCATCCTCGCGGTGGGCATCGTCCTGCTGGTGCTGCTGCGCCGGGTCATCTCCCACGTGACCGAGCGGATCGCCGTGGGCGGCCAGGGGGCCGCCGAGAAGTCGTGGAAGGACTGGTTCCGCCGGGCGCCCCTCATGGAGGACGCGATCGCGGTGGCGAACCCGCTGACCTCCGAACGCCGCGCCCAGCGCGCCCGCACCGTCGGCTCGGTGCTGAACTCGACGGCGAACATCGTCATCGGCGTGATGATCCTGCTGAGCGTCCTGGCCCAGGTCGGCCTCGACGTCGGCCCGCTGCTGGCCTCCGCCGGTCTCGTGGGTGTCGCCATCGGTTTCGGTGCGCAGTCGCTGGTCACCGACTTCATCTCCGGCATCTTCATCCTCATCGAGGACCAGTACGGCGTGGGCGACGTGGTCGACCTCGGCGGCGGCGCGGAGGGCGTCATCGAGCAGGTCCAGCTGCGCACCACGCAGGTGCGCGCCCTGGACGGCACGCTGTGGTGGGTGCGCAACGGCGAGATCCTGCGGGCCGGCAACCGCACGCAGCGCTGGTCGCGGGCGATGGCCCAGGTGCGGGTGCCGGTGGACGCCGACGTCGAGGTGGTGCGGGCGGCGCTCGACCGGGCCTGCGAGACGGTGGCGGCGGACGCCGAGCTCGGCGGCGAGTTCCTCGAGCCGCCGGCCGTGCGCTCCGGTGTGGACGCCGTGGACGACTTCTCGATGACGTTCTCGATGATGGCCCAGGTCAAGCCGGGCATCCAGTGGGACGTCTCGCGTGCGCTGCTGCGCGCCGCCCAGTCGGAGCTGCGCTCGGTGGGGGTCCGGCGGGCCGTGCCGGTGGCCGCGCCGTCGGACGAGGGCTGAMVQVGRFRSSATPVTVDGVRDAIVTSLLPFDTDPSPSPSEGVLENTVEGVSEAGQSFWDWFLGWPLHVIVILAVGIVLLVLLRRVISHVTERIAVGGQGAAEKSWKDWFRRAPLMEDAIAVANPLTSERRAQRARTVGSVLNSTANIVIGVMILLSVLAQVGLDVGPLLASAGLVGVAIGFGAQSLVTDFISGIFILIEDQYGVGDVVDLGGGAEGVIEQVQLRTTQVRALDGTLWWVRNGEILRAGNRTQRWSRAMAQVRVPVDADVEVVRAALDRACETVAADAELGGEFLEPPAVRSGVDAVDDFSMTFSMMAQVKPGIQWDVSRALLRAAQSELRSVGVRRAVPVAAPSDEGPGPT0013695_1548DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013695-ykuT|ybiO-K22044NANA
AK018_053852175malQ_2COG16404-alpha-glucanotransferaseGTGAGCGAGACGGAGAACACCCAGGCCGTGCCCGACGGCGATGCGCGTTCCGAGCTGCAACAGCTCGCCGCCGCGCACGGCGTGCTCACCGAGTACCAGCGGTTCGGAGGGGACACCGTGGCGGTGTCCGACGCGACGCTGCGCGCGGTGCTGTCCGCGCTCGGCGTCGACGTCGGCGGGCCCCAGCAGGTCTCCCACGCGCTGCGTCGCGTACGGGACGCCGCCTGGCGCGACGTGCTGCCGCCCACGGTCGTCACCCGTCACGGCCACGAGCACCGGATCGCCGTGCACGTCACCGACGGCGCCTCGGTGCACGTCTGGCTGGAGCTCGACGGCGCCGAGCCCGCCTCGCGCGCGCACGCCGTGCGGCCGCGACGTGACCTGCAGCAGGTCGACGAGTACGTCGAGCCCCGCGACGTCGACGGGCGCCGCGTGGGGCGGGCCACGTTCGCGGTCCCCGCCGACGTCCCGCTGGGGTGGCACACCCTGCACGCGCTGTCCGAGGGGCACGAGTCCACCTCCACCCTCGTGGTCACCCCGGCGCGCCTCGAGCTCGGGGACGACCTGGAACGTCACCAGGCCTGGGGCGTGCTGGTCCAGCTGTACTCGGTGCGGTCGCACACCTCGTGGGGGCTCGGCGACCTCGCCGACCTGGCCGACCTCGCGTGGCTGACGTCGCACCGGGCCGGCGCGGACTTCGTCGCGGTCAACCCGTTGGCCGCCGCCGAACCGATCACCCCGATGACGCTGTCGCCCTACCTGCCGACCTCACGCCGGTTCGGCAACCCCCTGTACGTCCGCGTCGAGGACATCCTCGAGACCGCCTACCTCTCGGCCGCCGACCGGTCTCTCGTCGAGTGGGCGGCCGACCCCGTCCGCGACCTGGACGCCTCCGACGGCCCGATCGACCGCGACGCCGTCTGGTCGGCCAAGAAGGCCGCGCTCGAGGTGGTGCACACCGCTCCACGACGTGCCGCCCGGCAGGCCGCCTACGAGGAGTTCCTGGCGGTCCAGGGGGGCGGGCTGCAGGACTTCGCCACCTGGTGCGCCGTCACCGAGGAGCTCGCCGGACGCCCGTGGCCGGCTGAGCTCGCCGACCCCGCCGGACCCGGCGTCACGGCAGCACGCGAGCGGCTCGCCGACCGCGTCGACTTCTACTGCTGGCTGCAGTGGGTGTTCGACGAGCAGAAGCGCGCCGCGCAGCGCACCGCCGTCGAGTCCGGGATGCGTGTCGGCATCATGCACGACCTCGCCGTCGGGGTGCACCCCGAGGGCGCCGACGCCTGGGCGCACGCCGACGTCCTCGCCACCGGCGTCGGCGTCGGCGCACCGCCGGACATGTACAACCAGCAGGGTCAGAACTGGTCCCAGCCGCCGTGGAACCCCGAGGCGCTCGCCCGCGCCGGCTACGTCCCGTACCGGGACATGCTGCGCACCGCGCTGCGTCACGCCGGGGCGTTGCGCGTCGACCACATCCTCGGTCTGTTCCGGCTCTGGTGGGTGCCGGACGGCATGGCCCCGACCGAGGGCGCGTACGTCCGCTACGACCACGACGCGTTGATCGGCATCCTGTGCCTCGAGGCGCAGCGGGCCGGGGCGCACGTCATCGGCGAGGACCTCGGCGTCTTCGAACCCTGGGTGCGCGACTACCTCGCCGACCGCGGCGTGCTCGGCACCTCCGTGCTCTGGTTCGAGAAGACCGACGGCCGCCTCACCGCGCCGCAGGAGTACCGCCATCTGACGCTCGCCACCGTCGGCACCCACGACATGCCGCCGACGGCGGGGTACCTGGCGGGCGAGCACGTCGACCTGCGCGACCGGCTCGGGCTGCTCACCGAGGACGCGCAGGTGCTGCGCTCGCAGGCGCGCGCCGAGCGTGACGTCGCCGTGCGGGCGCTCGCCGAGCAGGGGCTCGTGGCCGACAACCCCTCCGAGCGGGAGGTCGTCGAGGCGCTGCACCGGTACCTGCGTCGCTCGCGGGCGGCCCTGGTCGGGGTACAGCTCGTCGACGCGGTGGGGGAGCGGCGGTCGCAGAACCAGCCCGGAACCGACACCGAGTACCCGAACTGGAAGGTGCCGCTGGGCGACTCGGCGGGCAACGTGGTGCTGGTGGAGGACCTGTTCGACAACGCCCGCCTGCGCTCGCTGTTCGCCGCCGTCGCCTCCGGCCGCTGAMSETENTQAVPDGDARSELQQLAAAHGVLTEYQRFGGDTVAVSDATLRAVLSALGVDVGGPQQVSHALRRVRDAAWRDVLPPTVVTRHGHEHRIAVHVTDGASVHVWLELDGAEPASRAHAVRPRRDLQQVDEYVEPRDVDGRRVGRATFAVPADVPLGWHTLHALSEGHESTSTLVVTPARLELGDDLERHQAWGVLVQLYSVRSHTSWGLGDLADLADLAWLTSHRAGADFVAVNPLAAAEPITPMTLSPYLPTSRRFGNPLYVRVEDILETAYLSAADRSLVEWAADPVRDLDASDGPIDRDAVWSAKKAALEVVHTAPRRAARQAAYEEFLAVQGGGLQDFATWCAVTEELAGRPWPAELADPAGPGVTAARERLADRVDFYCWLQWVFDEQKRAAQRTAVESGMRVGIMHDLAVGVHPEGADAWAHADVLATGVGVGAPPDMYNQQGQNWSQPPWNPEALARAGYVPYRDMLRTALRHAGALRVDHILGLFRLWWVPDGMAPTEGAYVRYDHDALIGILCLEAQRAGAHVIGEDLGVFEPWVRDYLADRGVLGTSVLWFEKTDGRLTAPQEYRHLTLATVGTHDMPPTAGYLAGEHVDLRDRLGLLTEDAQVLRSQARAERDVAVRALAEQGLVADNPSEREVVEALHRYLRRSRAALVGVQLVDAVGERRSQNQPGTDTEYPNWKVPLGDSAGNVVLVEDLFDNARLRSLFAAVASGRPGPT0018570_780DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018570-malQ-K00705NANA
AK018_053862568pepN_2Aminopeptidase NGTGCCCGGAGAGAACCTGACCCGCGTCGAAGCGATCGAGCGCGCCGACGTCGTCACCGCCGTCGAGGGCTACACGATCGACCTCGACCTGACCACCGGCCCCGAGGTGTTCTCCTCGACCACGACCATCCGGTTCTCCGCGACCGCGGGCGCCAGCACGTTCCTCGACCTCGTGGCTCCCACGGTGCACGAGATCGTGCTGAACGGCCGCACCCTCGACGTCGCCGAGGTCTTCGCGGACTCCCGCATCGCGCTGTCGGACCTCGCCGCCGAGAACGAGGTGCGCGTCGTCGCCGACTGCGCCTACATGAACACCGGCGAGGGCCTGCACCGGTTCGTCGACCCGGTCGACGGCGAGGTGTACCTCTACACCCAGTTCGAGGTGCCGGACGCCCGCCGCGTGTTCGCCACGTTCGAGCAGCCCGACCTCAAGGCGCCCTTCCAGCTGTCCGTGACGGCCCCCGCGCGCTGGCAGGTCGTCGCCAACCAGCCGACGCCGGAGCCGGTCGCCGCGACGCACGCGACCGACGGCGACGTCGAGGCCGCGCGCTGGGAGTTCGGTGCGACGCCGCGCATCTCCACCTACCTGGTGGCCCTGGTCGCCGGGCCGTACGCCGTCGAGCGCGGTGAGGTGACGTCGTCGGACGGGCGCGTGATCCCGCTGGGCGTGTACTGCCGCGCCTCGCTGTCCGAGCACCTGGACGCCGAGGCGATCATGGAGACCACCCGCCAGGGGTTCGACTTCTACGAGAAGACGTTCGACGTCCCGTACCCGTTCGACAAGTACGACCAGCTGTTCGTGCCCGAGTACAACATGGGCGCGATGGAGAACCCGGGCTGCGTGACCTTCACGGAGGCCTACGTCTTCCGCTCCCAGGTCACCGACGCTATCCGCGAGCGCCGGGTGGTCACGGTGCTGCACGAGCTGGCGCACATGTGGTTCGGCGACCTGGTGACCATGAAGTGGTGGAACGACCTGTGGCTCAACGAGTCGTTCGCCGAGTACGTCTCCACGCTCGCCACCGCCGAGGCGACCGAGTGGGACGCGGCGTGGACCACGTTCAACGCGATGGAGAAGACCTGGGCCTACCGCCAGGACCAGCTGCCCTCGACCCACCCGATCGTCGCGGCCATCAACGACCTGGAGGACGTGCAGGTCAACTTCGACGGCATCACCTACGCCAAGGGCGCGTCGGTGCTCAAGCAGCTCGTCGCCTGGGTGGGGCGCGACGAGTTCGTCGCCGGCGTCTCGGCGTACTTCCGCAAGCACGCCTGGGGCAACACCGAGCTGTCCGACCTGCTCGTCGAGCTCGAGGCCACCAGCGGCCGCGACCTGTCCGCGTGGTCGAAGCTCTGGCTCGAGACCGCCGGGGTCAACACCCTGCGCCCGGCGATCGAGCTGGACTCGCACGGCCGGATCACCTCGTTCGTCGTCGAGCAGACGGCGGTGGCCGACTACCCGACGATCCGACCGCACCGTCTGGGCATCGGCTTCTACGACTTCGACTCCGCCGGTGACGTCGTGCGCACGCGGTCGGTGCACGTGGACGTCGACGGCGAGCGGACCGAGGTCCCCGAGCTCATCGAGCTCGACAAGCCCGCGCTCGTGCTGGTCAACGACGAGGACCTCGCCTACGCCAAGGTGCGTCTCGACGAGGACTCGCTGGCCTTCGCGGTCGAGAACCTGTCGCGGATCTCCGACCCGCTGGCGCGCTCCCTCGTGTGGGGTTCGGTGTGGGACGCGGTGCGCGACGGCGAGACCCCGGCGTCGTCGTACGTCGACCTCGTGCTGGGCAACATCGCCGCCGAGACCGAGTCCACCACGGTCCGCACCACGCTCGCCCAGCTCGGGCTGGCCACGCGAACCTATGTGGCGCCGTCGCGCCGGGCCGAGACGCTGGAGCGGGTCGGTGACGCGCTGTGGTCGCTGGCTCAGCAGGCCCAGGCCGGCTCCGACCTGCAGCTGCAGCTCGTCAAGTACTTCGCGACGCTCGCCTCGACGTCGTCCCACGCCGCGCCGTTGCGCGGGCTGCTCGACGGCTCCGTGGTGCTCGACGGCCTGTCGGTGGACACGGACCTGCGCTGGGAGCTGCTGCAGGGTCTGGTGCTGCTCGGTGCCGCCGACGAGGCGGAGATCGACGCGGCGCTGGCCGCTGACGACACCGCGACCGGGCGCCAGGCGGCCGCCAAGGCCCGGGCCGCGATCCCGACCCGCGAGGGCAAGGAGCGGGCGTTCGCCTCCGTCGTCGACGACGCGGACGCGCCGAACGCCATCATCCGGGCCACCGCGGCAGGGTTCGTCCAGGTGACCGACCCGGCCGTGCTGGCGCCGTTCGCCCAGCGGTACGTCGACGCGCTGCTGCCGATCTGGGAGTCGCGCAGCTACCACATCGCCGAGGAGCTCGTCGAAGGGCTCTACCCGGCGCCGCTGGCCTCCGTCGAGCTGCGGGACACCGTGCGCGGCTGGCTCGAGGCGCACCCCGACGTCGCCCCGGCGCTGCGCCGGATGGTGGTCGAAGGGCTGGCTGGCACGGAGCGGGCGCTGGCGGCGCAGGCCGTCGACTCCTGAMPGENLTRVEAIERADVVTAVEGYTIDLDLTTGPEVFSSTTTIRFSATAGASTFLDLVAPTVHEIVLNGRTLDVAEVFADSRIALSDLAAENEVRVVADCAYMNTGEGLHRFVDPVDGEVYLYTQFEVPDARRVFATFEQPDLKAPFQLSVTAPARWQVVANQPTPEPVAATHATDGDVEAARWEFGATPRISTYLVALVAGPYAVERGEVTSSDGRVIPLGVYCRASLSEHLDAEAIMETTRQGFDFYEKTFDVPYPFDKYDQLFVPEYNMGAMENPGCVTFTEAYVFRSQVTDAIRERRVVTVLHELAHMWFGDLVTMKWWNDLWLNESFAEYVSTLATAEATEWDAAWTTFNAMEKTWAYRQDQLPSTHPIVAAINDLEDVQVNFDGITYAKGASVLKQLVAWVGRDEFVAGVSAYFRKHAWGNTELSDLLVELEATSGRDLSAWSKLWLETAGVNTLRPAIELDSHGRITSFVVEQTAVADYPTIRPHRLGIGFYDFDSAGDVVRTRSVHVDVDGERTEVPELIELDKPALVLVNDEDLAYAKVRLDEDSLAFAVENLSRISDPLARSLVWGSVWDAVRDGETPASSYVDLVLGNIAAETESTTVRTTLAQLGLATRTYVAPSRRAETLERVGDALWSLAQQAQAGSDLQLQLVKYFATLASTSSHAAPLRGLLDGSVVLDGLSVDTDLRWELLQGLVLLGAADEAEIDAALAADDTATGRQAAAKARAAIPTREGKERAFASVVDDADAPNAIIRATAAGFVQVTDPAVLAPFAQRYVDALLPIWESRSYHIAEELVEGLYPAPLASVELRDTVRGWLEAHPDVAPALRRMVVEGLAGTERALAAQAVDSNANANANANA
AK018_05387933hypothetical proteinATGTCCGGCACCGTGCCGCCACCACCGCCGCCGCCGGGTGGGTCGCAGGGCCCTGGCGGGGAGCCCGCACGCCCCGCAGCAGCCCGGAACGTGCACGCCCCGATCCCGCCGGCACCGACCGAGCGCAGCGCGCCGGTGCAGTCGCCGGCTCCGGCGCCGGCCCCGGTGCGGGCGCCGTCGTACCCGGCCGGGACGCAGCAGGGGGCCCCGCAGGCGCCCCCGCCCGCTCCGGCGGCCCACGGCCACCAGCAGCCGAGCGCGCCGCCGCAGTCCCCGCAGCAGTACGGCTACACTCCGCAGCAGTACGCCTACCAGCAGGCGGGCGGGCCGCCGCCCACGACGCAGAGCCCTGCCGTGGGCGACGACGACCGGCGCCGCCGGCTGACGCCCGGTTGGATCGCGTTCATCCTGCTGGACGTGGTCCTCGTCGTGGTGATGGTGGTGCTCGCCTTCGACCTGCTGGGCGGCCCGGACGACTCCGGCGAGCAGGACCCGGTCGCGGGCGCCTCGCAGGACGCCGGCACCGACACCTCGGGCGAGGACGGCACCGGCGACGAGGCCGCCCAGGACGCGGCCGGGGAGCGGGTGGCGGAGTTCGCCTCGCCGTCGCGCAACATCACCTGCCAGGTGTACGAGAACGAGGTCTCCTGCGGGCTCGCGGAGCTGGACCAGCAGCCCGCACCGGTCGAGGGCTGCGACGGCACCACCGGCTACGTGGTGACGCTCGACTCCGAGGGCAAGGTCGCGCTGCCGTGCGTGGCCAAGGGCGACAAGCCGAAGACCGCGCCGAAGAAGACCAGTCAGCTGGCCTACGGCGACTCGCGCACCGACGGCGACTTCACGTGCACGAGCGAGCAGGACGGCATGTACTGCCAGCACGACCCGACCGGGAACGGCTTCTCCCTGGCCCGCGCGGGCGTCGGGACGTACTGAMSGTVPPPPPPPGGSQGPGGEPARPAAARNVHAPIPPAPTERSAPVQSPAPAPAPVRAPSYPAGTQQGAPQAPPPAPAAHGHQQPSAPPQSPQQYGYTPQQYAYQQAGGPPPTTQSPAVGDDDRRRRLTPGWIAFILLDVVLVVVMVVLAFDLLGGPDDSGEQDPVAGASQDAGTDTSGEDGTGDEAAQDAAGERVAEFASPSRNITCQVYENEVSCGLAELDQQPAPVEGCDGTTGYVVTLDSEGKVALPCVAKGDKPKTAPKKTSQLAYGDSRTDGDFTCTSEQDGMYCQHDPTGNGFSLARAGVGTYNANANANANA
AK018_053882013pepO_2COG3590Neutral endopeptidaseATGACGACCGACGCGACCGGGCTGCGATCCGGTATCGACACCGAAGCACTCGACGAGTCCGTGCGCCCGCAGGACGACCTGTTCCGCCACGTCAACGGCCGCTGGCTCGCCTCGCACGAGATCCCCGCCGACCGCGCCATGGACGGCGCGTTCCGCGACCTGCACGACACCGCCGAGGAGCAGGTCCGCGAGATCATCACCGACGCCGGCGCCGCCGTCGAGGCGGGCACGGCCACCGGGTCCCAGGCGCAGATCGGCGCCCTGTACGCCGCGTTCATGGACACCGCACGCATCGAGGAGCTCGGCACCACACCCATCGCCCCCGAGCTCACCGCGGTCCGCGACGTCGCCGACCGCGCCGAGCTCACCCGCGTGCTGGGCCGCCTGCAGCGCACCGGCGCCGGCGGTGCCGTCGCGTTCGGCGTCGACAACGACGCCAAGGACCCCGAGCGGTACGTGACGGTCGTCGTCCAGGGCGGCCTCGGCCTGCCCGACGAGGCCTACTACCGCGAGGACCAGTACGCCCCGGTCCGCGCCGCATACACGCCGCACGTCGCCCGCATGCTCTCGATCGCCGGCGTCGGTACCGAGGCCTGGGGCATCACGCCCGAGGAGGCGGCCGAGCGCGTCGTGGCGCTCGAGACGCGTCTGGCCGCCCACCACTGGGACGTCGTCAAGGACCGTGACGCGACCCTGACGTACAACCCGATGACGTTCGCCGAGCTGACCGGCTCCGCGCCCGGGTTCGACTGGGAGGCGTGGGCCGAGGCGCTCGAGGCACCGAGCGGGTCGCTCGACGCGCTCGTCGTGCACGAGCCGTCGTTCCTCACGGGCTTCGCCGAGCTGTGGTCGAGCGCCGACCTGCTCGACTGGAAGCTCTGGGCCGCGTTCCACCTGGTCACCGCACGCGCCCCCTACCTGAGCGACGACGTCGTGCAGGCCAACTTCGACTTCTACGGGCGCACGCTGTCCGGCGCCCAGGAGCTGCGCGACCGGTGGAAGCGCGGCGTCACCGTGGTCCAGGGGGCGCTCGGGGAGGCCGTCGGCCGCGAGTACGTGGCCCGCCACTTCCCGCCGTCGCACAAGGAGCGCATGGACACGCTGGTGGCGAACCTCATCGCCGCCTACCGCGAGTCCATCGAGCAGCTCGACTGGATGACCCCCGAGACGAAGCAGCGGGCCCTGACCAAGCTGTCGAAGTTCACCCCGAAGGTGGGCTACCCGGCGAAGTGGCGCGACTACTCCGGGCTCGAGCTGTCCGCCGAGGACCTTGTCGGCGACGTCCGGCGCGCCCACGCGTTCGAGCAGGACCACGAGCTCGCCAAGATCGGCAAGCCGCTCGACCGCGACGAGTGGTTCATGACCCCGCAGACCGTCAACGCCTACTTCAACCCCGGGATGAACGAGATCGTGTTCCCGGCGGCGATCCTGCACCCGCCGTTCTTCGACCCGGACGCCGACGACGCCGTCAACTACGGCGGCATCGGCGCGGTCATCGGGCACGAGATCGGCCACGGGTTCGACGACCAGGGATCCAAGTACGACGGCGACGGCCGGCTCGAGGACTGGTGGACCGAGACCGACCGCACCGAGTTCGAGCGCCGCACCTCGGCGCTGATCGCCCAGTACGACGCGTTCCGGCCCGAACAGCTGCCCGACGACGCCCCCACCGTCAACGGGTCGCTCACCATCGGCGAGAACATCGGCGACCTCGGCGGGCTGTCCATCGCGATCAAGGCCTACCGCCTGGCGCTGGGCGGAGACCTCGACGACGCCCCCGTCATCGACGGCCTGACCGGGCTGCAGCGCGTGTTCCTCTCCTGGGCCCAGGTGTGGCAGGCCAAGGGCCGCGACGAGGAGGTGCTGCGTCGCCTGGCCACCGACCCGCACTCGCCCAACGAGTTCCGCTGCAACGGCGTGGTGCGTAACGTCGACGAGTTCTACGCGGCGTTCGACGTCGGCGCGGACGACGCGCTCTACCTGGCACCCGACGAGCGGGTCAGCATCTGGTGAMTTDATGLRSGIDTEALDESVRPQDDLFRHVNGRWLASHEIPADRAMDGAFRDLHDTAEEQVREIITDAGAAVEAGTATGSQAQIGALYAAFMDTARIEELGTTPIAPELTAVRDVADRAELTRVLGRLQRTGAGGAVAFGVDNDAKDPERYVTVVVQGGLGLPDEAYYREDQYAPVRAAYTPHVARMLSIAGVGTEAWGITPEEAAERVVALETRLAAHHWDVVKDRDATLTYNPMTFAELTGSAPGFDWEAWAEALEAPSGSLDALVVHEPSFLTGFAELWSSADLLDWKLWAAFHLVTARAPYLSDDVVQANFDFYGRTLSGAQELRDRWKRGVTVVQGALGEAVGREYVARHFPPSHKERMDTLVANLIAAYRESIEQLDWMTPETKQRALTKLSKFTPKVGYPAKWRDYSGLELSAEDLVGDVRRAHAFEQDHELAKIGKPLDRDEWFMTPQTVNAYFNPGMNEIVFPAAILHPPFFDPDADDAVNYGGIGAVIGHEIGHGFDDQGSKYDGDGRLEDWWTETDRTEFERRTSALIAQYDAFRPEQLPDDAPTVNGSLTIGENIGDLGGLSIAIKAYRLALGGDLDDAPVIDGLTGLQRVFLSWAQVWQAKGRDEEVLRRLATDPHSPNEFRCNGVVRNVDEFYAAFDVGADDALYLAPDERVSIWNANANANANA
AK018_05389471rpiB_2COG0698Ribose-5-phosphate isomerase BATGGGCCCCATGCGTCTGCACATCGCCGCCGATCACGCCGGATACGAGCTCAAGTCCCACCTCGTCGAGCACCTGCGCGCCGCCGGGCACGACGTCGTCGACCACGGCGCCCACACCTACGACGCCCTCGACGACTACCCGGCGTTCTGCTTCGCCGCGGGCGAGGCGGTCGTGGCCGAGCCCGGTTCGCTGGGGATCGTCATCGGAGGGTCGGGCAACGGCGAGCAGATCGCCGCGAACAAGGTTCCCGGCGTGCGCGCCGTCCTGGCGTGGTCGACCGAGACCGCGCAGCTGGGCCGCCAGCACAACGACGCCAACGTGATCGCCGTGGGCGGGCGGATGCACTCGGTGCAGGAGGCCACGGCCCTGGTCGAGACGTTCGTGGCCGAGCCCTTCTCCGGCGGCGCTCGCCACCAGCGCCGCATCGACCAGCTCGCCGCCTACGAGGCGGCCCGGCCGGCCGCCTCCTGAMGPMRLHIAADHAGYELKSHLVEHLRAAGHDVVDHGAHTYDALDDYPAFCFAAGEAVVAEPGSLGIVIGGSGNGEQIAANKVPGVRAVLAWSTETAQLGRQHNDANVIAVGGRMHSVQEATALVETFVAEPFSGGARHQRRIDQLAAYEAARPAASPGPT0017395_1194DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_D-ERYTHRULOSE|D-THREITOL_DEGRADATION,PGPT0017395-rpiB-K01808NANA
AK018_053901038nei1_2COG0266Endonuclease 8 1GTGCCGGAGGGTCACACCGTCCACCGGCTGGCCCGGACCCTGACGGGACTGTTCGTCGGTGAGCCGCTCGCCGTGCGCAGCCCGCAGGGTCGGTTCGACGCCGGCGCCGCGCTGCTCGACGGCGCCACGTTCGTCGGTGCGGAGGCGTGGGGCAAGCAGCTCTTCTGCCGGTTCGACGCCCGCGGCGCCGAGGACCGGTGGCTGCGGGTGCACCTGGGCCTCTACGGCGCCTGGACGTTCGCCGGCGACGGCAGCGCCGACGTCGTGCACGCCATCGGTGCGCCGCGTCGGCGGATCGGGGAGCGCGAGACCGCCGCTCCTCCCGGGCCACCGGTGTCGGGAGCGGCCGTTCTCGGCCGGGGCGCCGGCTCGGGGGAGTGGGAGGTGCCGGAGCCGCGCGGTGCGGTGCGGGTGCGGCTGCTGGGCGAGCACGCCGTCGCCGACCTGACCGGCCCGACCGCCTGCGAGGTGCTCACGCCCGCCGAGAAGACCGCCCTCGAGGGCCGCCTGGGACCGGACCCGATCCGGCCCGACGGCGGCCGCGGCTCGCTCGACGCGGCCCGCGACGCGTTCGTCGCCCGGGTGCGCCGCTCCCGCGTCACCGTCGGCCAGCAGCTCATGGACCAGGCCGTGGTGGCCGGGGTCGGCAACATCTACCGCGCCGAGGTGCTGTTCCGCGCCGGCGTCGACCCGCTGCGCCCCGGCCGCGACGTGCCCGCCGAGGACCTCGAGCGGATCTGGGACGACCTCGTGGTGCTGATGCGCGACGGCGCCGCCACCGGTCGCATCGTCACCACCCGTCCGGAGCACCGGGACGACGGCGGCGCCCCGGACGCGCAGGACGGCACCGCGTCGCTCGGCCCGGACCGCCGTCGGACCCGCCAGAACACCGACGACGACCCGGACGCCGTGCCCGCGCACGAGGCGTTCTACGTCTACCACCGCGACGGGCTGCCCTGCCGCGTGTGCGGCACCCCGGTGCTGCTCAAGGAGCTGGCGGGACGCAACCTGTTCTGGTGCGGCGCCTGCCAGAGCTGAMPEGHTVHRLARTLTGLFVGEPLAVRSPQGRFDAGAALLDGATFVGAEAWGKQLFCRFDARGAEDRWLRVHLGLYGAWTFAGDGSADVVHAIGAPRRRIGERETAAPPGPPVSGAAVLGRGAGSGEWEVPEPRGAVRVRLLGEHAVADLTGPTACEVLTPAEKTALEGRLGPDPIRPDGGRGSLDAARDAFVARVRRSRVTVGQQLMDQAVVAGVGNIYRAEVLFRAGVDPLRPGRDVPAEDLERIWDDLVVLMRDGAATGRIVTTRPEHRDDGGAPDAQDGTASLGPDRRRTRQNTDDDPDAVPAHEAFYVYHRDGLPCRVCGTPVLLKELAGRNLFWCGACQSNANANANANA
AK018_053911305eis_3COG4552N-acetyltransferase EisATGACCCTCGACTCCCCCGCGCCCGCCGGTTACCGGTTCCGCCAGCTGACCGCCGACGACGCCCACGCCGTGATCGACGTCGACTCGTGGGCCTTCCCGATCCCGGTCGACCCGGACGAGATGGTCAAGATCCCCTCCCCCCTCACCTGGGACCGCGCGGTCGGCGTCGAGGCCGACGACGCGCCGGCGGGGTCGCCCCTGGCGGCCATGCACGCCTCGTACCCGTTCACGGAGTTCCCGGTGCCGGGCGGCACGCTGCCGACCGCCGGGCTGACCTGGGTCGGCGTCCACCCGCAGCACCGCCGCCGGGGTGTCGCGTCGGCGATGATCGACCTGCACCTGGCCCGGTGCCGCGAGCGCGGCGAGCCGCTGTCGGCGCTGTTCGCCGCCGAGTACCCGATCTACGGGCGCTTCGGGTACGGCCGTGCGGCGGACGACGTGCGTGTCACCCTCGCCCGCGGTGCCGCGCTGCGCGACGTACCGGGTGCGGCGGAGCACACCGTGCGGATCGAGCACGCCGCGCGGGAGCGTCACAGCGACCTCGTGACCGCCGTGCACCGCGCGGCCGGGCACGACGCCGGCGGGCTCGGGGTGAACCGGCCCGGGTGGGCGAGCCCGCAGACCCCCGAGCTGCAGGCCCACCGCTGGCACGACGCGGCCCCGTTCCGGCGGGGGTTCGAGTCGCGACGGATCGTCGTCGTCGAGCGGGACGGCGAGCCCCGCGGCTACGCGCTGCTGCGCCGCAAGCTGGACTGGGAGACCACGGGACCGCGCGGCACGGTCAACGTCGGCGAGGCGGTGGCGCTCGACGCGCCCGCGGCCCGCGCCCTGTGGGGCGTGCTGGTGGATCTGGACCTGATGAGCGAGACGACGCCGTTCATCCTCGCTCCGGACGACCCGCTGCTCGGCCTGCTCGTGGACCGGCGCGGCGCCGACCTGCGGGTCGCCGACAACGTCTGGGTCCGCCTGGTCGACCTGCCCACGGCGCTGGCGGGCCGGCGGTACGCCGCCGACGTCGACGTCACGCTCGCGGTGACGGACGCCCGCCTGCCCGCGAACGACGGCGTGTGGCGGCTGAGCGGGACCGCGTTCGGTGCGGCGACCTGCGAACCCGCGGACGTGGCGGCCGCCGACGCGGACCTGGCCCTCGACGTGCGCGAGCTCGGTGCCGCCTACCTCGGTGGGACGTCGCTGGCCGAGCTCGCCGCCGCGGGTCTGGTCGAGCAGCGTTCGCCGGACGCTCTCGCCCGGGCGTCGACGGCGTTCGGCTGGCCCGTCGCCCCGGTGTGCGGCTGGGTGTTCTGAMTLDSPAPAGYRFRQLTADDAHAVIDVDSWAFPIPVDPDEMVKIPSPLTWDRAVGVEADDAPAGSPLAAMHASYPFTEFPVPGGTLPTAGLTWVGVHPQHRRRGVASAMIDLHLARCRERGEPLSALFAAEYPIYGRFGYGRAADDVRVTLARGAALRDVPGAAEHTVRIEHAARERHSDLVTAVHRAAGHDAGGLGVNRPGWASPQTPELQAHRWHDAAPFRRGFESRRIVVVERDGEPRGYALLRRKLDWETTGPRGTVNVGEAVALDAPAARALWGVLVDLDLMSETTPFILAPDDPLLGLLVDRRGADLRVADNVWVRLVDLPTALAGRRYAADVDVTLAVTDARLPANDGVWRLSGTAFGAATCEPADVAAADADLALDVRELGAAYLGGTSLAELAAAGLVEQRSPDALARASTAFGWPVAPVCGWVFNANANANANA
AK018_05392330hypothetical proteinGTGAGCGCCGACACGACCGTCCCGCCCGCCGAGGAGTACCTCGCCGAGGTGCTCGCCGTCGTCGAACGCGTGCCGGCCGGGCGCGCCACCACCTACGGGCTGGTGGCCGAGGCGGTCGCCGAGGTGCTCGGACGTGGCGGCCCGCGCCAGGTCGGCCAGGTGATGGCGCGGGCCGGCGCGGGAGTCGCCTGGTGGCGGGTCGTCAACGCGGCCGGGTCCCCGCCGGCCCATCACCTCGACGAGGCGCTCGCCGAGCTGCGGGCCGAGGGCTGCCCGCTGACGCGCGACGGACGCCGCGTCGACCTGCGGCGGGCGGTCTGGCTGCCCTGAMSADTTVPPAEEYLAEVLAVVERVPAGRATTYGLVAEAVAEVLGRGGPRQVGQVMARAGAGVAWWRVVNAAGSPPAHHLDEALAELRAEGCPLTRDGRRVDLRRAVWLPNANANANANA
AK018_053931041Putative coenzyme F420-dependent oxidoreductaseATGACCGCGCTGCGCATCGGCATTCAGACTGGCTACTGGTCCCGCAAGCCACCGACCGGCATCGTCGAGGCGTTGCAGCAGGGCGAGGCCGCAGGGCTCGACTCGGTCTGGACCGCCGAGGCGTACGGTTCCGACGCCTTCACCCCGCTGGCCTGGTGGGGCTCGCACACCTCTCGCCTGCGGCTCGGCACCGGCATCGCACAGATGGCCGCCCGCACGCCCACCGCGACCGCCATGCAGGCCCTCACCCTAGACCACCTGTCGGGCGGACGTTTCGTGCTCGGGCTCGGGGCCTCGGGCCCCCAGGTCGTCGAGGGCTGGTACGGCCAGCCGTACCGCCGCCCGCTGGCCCGCACCCGCGAGTACGTCGACATCGTGCGTGAGGTGATCGCCCGCGAACGACCCGTGGCGTACGACGGCGAGTTCTTCAGCCTCCCGGTCGACGCCGACGCCGCCGGGGCGACCGGCCTGGGCAAGGCCCTGAAGCCGACGGTGCATCCTCTGCGGCCCGAGATCCCCATCGTGCTGGCCGCGCAAGGGCCGAAGAACGTGGCGCTGGCCGCCGAGATCGCCGACGGATGGCTCGCCGGTTTCTACGCACCCACCGCCGACGCCGAGCACCGTGAGCAGCTGGCCGCCGGGTTCGCGCGCCGCGCCGACGAGCGGTCGGCCGCGGACGACTTCGAGGTCGCGGCGATGGTGCCGGTGGTGGTGCGTGACGACGTCGAGTCCGCCGCCGACCTGGTCCGCCCGCACGTCGCGCTGTACGTGGGTGGTATGGGCGCCAAGGGCGCGAACTTCCACAAGGACTCGTTGGACCGGCTGGGGTACGCCGAGGTCACCGACGAGGTCCAGCGGCTCTACCTGGACGGGCGCAAGGAGGATGCCGCACGGGCGATCCCCACCGAGCTCGTCGAGGAGATCGCCCTGGTCGGCCCGGCGCAGAAGGTCCGCACGGACCTGGCCCGCTGGGAGGGCACGGCGCTGACCACGCTGCTCGCCCAGGGCGACCCGGCGTCGGTCGCGGCTCTGCTCGGCTGAMTALRIGIQTGYWSRKPPTGIVEALQQGEAAGLDSVWTAEAYGSDAFTPLAWWGSHTSRLRLGTGIAQMAARTPTATAMQALTLDHLSGGRFVLGLGASGPQVVEGWYGQPYRRPLARTREYVDIVREVIARERPVAYDGEFFSLPVDADAAGATGLGKALKPTVHPLRPEIPIVLAAQGPKNVALAAEIADGWLAGFYAPTADAEHREQLAAGFARRADERSAADDFEVAAMVPVVVRDDVESAADLVRPHVALYVGGMGAKGANFHKDSLDRLGYAEVTDEVQRLYLDGRKEDAARAIPTELVEEIALVGPAQKVRTDLARWEGTALTTLLAQGDPASVAALLGNANANANANA
AK018_05394387hypothetical proteinATGGCCACGTACGACGACGTCGCTCGCCTCGCGCTCGCCCTTCCCGGCACGACGGAGGGCACCTCGCGCGGTTGGCGCGTGTGGAAGGTCGACGGGCGACAGTTCGTCTGGGAACGCCCGTTCAGCAAGGCCGACCTGCGACGGTTCGGCGACCGCCCGGTACCGGAGGGCGCCATCCTCGCGGCGGCCGTCGACGACCTCGGCGAGAAGGACGCAGTTCTCGGTGCGTACCCGGACTCGCACTTCACGATCGAGCACCTCGACGGCTATGCGGTGGTGCTGATTCGGCTCGAGGTCGTGCCAGACGACCTGCTCGCAGAGGCTGTGGAAGACGCCTGGGCGGCGCGGGCTCCGGCAGGCCGGCTCCGTGAGCTCTGCGGGCACTGAMATYDDVARLALALPGTTEGTSRGWRVWKVDGRQFVWERPFSKADLRRFGDRPVPEGAILAAAVDDLGEKDAVLGAYPDSHFTIEHLDGYAVVLIRLEVVPDDLLAEAVEDAWAARAPAGRLRELCGHNANANANANA
AK018_053951011hypothetical proteinATGAACGCTCACCACGACTCCCCCGCCCCCACCTGGCGACGGCGAGCCCGCCGGTCCATGCTCTGGTCCACCCTCGTCGGGCTCGGCCTGACGGGCGTCGCCGCCGCGGTGGTGTGGAGCTGGCGCGACCAGCTGCCCGACCAGGTCGCCACCCACTGGGGAGCCGGCGGCGTCCCGGACGACACGATGTCGGTCACGGGCATGATCGTCGTGGCGACGGCGACGACGGTCGGCCTGCTGATCCTGTTCGCGGCGATCGGCCTGGCCTGGGGCTCCAGCGCCTCGACCCGCCGTACCACCGCGGCCGCCGCCGTCTGGTCGGGAGCCCTGGGCGCCTCCCTCCTGCTGGTCACCGCGGGGTTCCAGCGCGGCAGCGACACACCCGACACGGCCACCCTGCCCGGCTGGGCGCTGGCCGTGGTGCTGCTGGCCCCGTTGGTCCCGGCCGGGGTGGCCGCGTTCCTCGTCCCCGGGGATCCGCACCAACCCGCCGAGGAGCCCGTGGACCCCGCGGCGCCGCGCGCCACCCTGTCCGACAGCGAGCGCGCCGTCTGGATCCGTCGCGTCACCGGCGGCCCGGGAGTGTGGATCGGCGTGGTCGCGGTCGCCGGCATCGTTCTGCTGTCCCTCCTCACCCAGCTGTGGGTGATGCTGGTCCTGGCAGCGGCGATGGCGGCGCTGTTCGCGGCGATGTTCGCCTTCGTCGTGCAGGTCGACTCCGCGGGCCTCGTGGCACGGTCGGCGCTCGGCTGGCCACGCGCACGCATCCCCGCCGACGAGGTGCTGTCCGCCTCGGTGATCCAGGTCAACCCGCTCGGCGACTTCGGTGGTTGGGGATGGCGCGTGGGCTTCCAGGGCGGCCGCGTCGGCATCGTGCTGCGCTCCGGCGAGGCGTTGCTCGTCGAGCGGTCCGGGGGGCGCGGGTTCGTCGTCACCGTCGACGGTGCCGCCGAGGCCGCGGCCCTGCTCAACACGATGGCCGACCGGGCCCGCTCCGACGCCGCGTCGTAGMNAHHDSPAPTWRRRARRSMLWSTLVGLGLTGVAAAVVWSWRDQLPDQVATHWGAGGVPDDTMSVTGMIVVATATTVGLLILFAAIGLAWGSSASTRRTTAAAAVWSGALGASLLLVTAGFQRGSDTPDTATLPGWALAVVLLAPLVPAGVAAFLVPGDPHQPAEEPVDPAAPRATLSDSERAVWIRRVTGGPGVWIGVVAVAGIVLLSLLTQLWVMLVLAAAMAALFAAMFAFVVQVDSAGLVARSALGWPRARIPADEVLSASVIQVNPLGDFGGWGWRVGFQGGRVGIVLRSGEALLVERSGGRGFVVTVDGAAEAAALLNTMADRARSDAASNANANANANA
AK018_05396354ytrA_2COG1725HTH-type transcriptional repressor YtrAATGCTCTGGACCGTCGACCCTGCGAGCGACGAGCCGCTGTACGCACAGCTCGTCACCCAGGCCCGCCTCGCCGTCACGCGCGGCGACCTGACCCCCGGCGAGCGGCTGCCCGCAGCCCGAGAGCTCGCCACGTCCCTGGACCTCAACGTGCACACGGTCCTGCGCGCCTACCAACAGCTCCGGGACGAGGGACTCGTCGATCTTCGACGCTCCCGCGGCGCCGTCGTCACCGGCACCCCGGCCGATCTCACCGCGGTCGAGGAAGCCCTCGCCCGCTTCGTCGCTGCCGCCCGCCAGGCACGACTCTCCCCCGAAGCCACGACCACCCTGCTCCAGGAGGAGCTCAAGCGATGAMLWTVDPASDEPLYAQLVTQARLAVTRGDLTPGERLPAARELATSLDLNVHTVLRAYQQLRDEGLVDLRRSRGAVVTGTPADLTAVEEALARFVAAARQARLSPEATTTLLQEELKRNANANANANA
AK018_05397603cysE_2COG1045Serine acetyltransferaseATGGCTGACTCCTCGGCGCGCGCGTTCCTCCGCCTCCTGCGCGAGGACGCGGAGGTCGCGCGCGCCCAGGACCCGGCGGCCGACTCCCTCGTCGCCGTCGCCCTGACCTACCCCGGCGTGCACGCCGTCTGGCACTACCGCGTCGCGCACGCACTGTGGCAGGCCCCCGGGCTGAGACTGCCGGCACGCGTCATCTCCCTGGTCTCGCGCCTCTTCACCGGCGTCGAGATCCATCCGGGCGCCAAGATCGGTCGTCGGCTGTTCATCGACCACGGGATGGGCGTCGTCATCGGGGCCACCGCCGAGGTCGGCGACGACTGCCTGCTGTTCCACGGCGTCACCCTGGGCGGCCGCACCATGAACCCCGGCAAGCGGCACCCCACCCTGGGCGACCGCGTGATGGTCGGCTCCGGAGCCAAGGTGCTGGGACCGCTCTGGATCGGCCACGACGCCAAGATCGGGGCGAACGCCGTGGTCACCAAGGACGTCCCCGCCGGTGCCGTCGCCGTCGGCGTGCCGGCACGCCTGCGCCACCCGGCGCCGGCACGCACCGAGGACCGGAGCTTCGAGGACCCCTCCCAGCTCATCGAGTACGTCATCTGAMADSSARAFLRLLREDAEVARAQDPAADSLVAVALTYPGVHAVWHYRVAHALWQAPGLRLPARVISLVSRLFTGVEIHPGAKIGRRLFIDHGMGVVIGATAEVGDDCLLFHGVTLGGRTMNPGKRHPTLGDRVMVGSGAKVLGPLWIGHDAKIGANAVVTKDVPAGAVAVGVPARLRHPAPARTEDRSFEDPSQLIEYVIPGPT0020265_3385DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTIONCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0020265-cysE-K00640NANA
AK018_05398936cysK1_2COG0031O-acetylserine sulfhydrylaseATGGTCACCATCTACGACGACGCGACGAAGCTCATCGGCCGCACCCCGCTGGTCCGCATCAACCGCCTCACGGAGGGCTCGGACGCGACCGTCGCCGCCAAGCTCGAGTTCTACAACCCCGCGAGCTCCGTCAAGGACCGCATCGGCGTCTCCATCATCGACGCGGCCGAGGCCTCCGGCGAGCTCCAGCCCGGCGGCACGATCGTCGAGGGCACCTCCGGCAACACCGGCATCGCGCTCGCGTTCGTCGGCGCCGCACGTGGCTACAACGTGGTCCTCGCCATGCCGGAGACCATGTCCAAGGAGCGCCGCGCGCTGCTGCGGGCCTACGGGGCCGAGCTCGTCCTCACGCCCGGCTCGGAGGGCATGAAGGGTGCCGTCGCCGCCGCGGAGAAGATCGCGGCCGAGCGGCCCGGCGCCGTCCTCGCCCGCCAGTTCGCCAACGAGGCCAACCCGAAGATCCACCGCGAGACCACCGCGGAGGAGATCTGGGCCGACACCGACGGCGGTGTCGACATCGTCGTGGCGGGCATCGGCACCGGCGGGACCATCACCGGCGTCGGGCAGGTCCTCAAGGAGCGCAAGCCCGAGGTCCAGATCATCGCCGTCGAGCCGGAGGAGTCCCCGATCCTCAACGGCGGCCAGCCCGGCCCCCACAAGATCCAGGGCATCGGCGCGAACTTCGTCCCGGAGATCCTCGACACCGAGATCTACGACGAGGTCATCGACGTCAACGCCGAGACCGCCGTCGAGTGGGCCAAGCGCGCCGCCCGCGAGGAGGGCCTGCTCGTGGGCATCTCCTCGGGTGCCGCGCTCAAGGCCGCGGCCGACGTGGCCGCCCGCCCGGAGAACGCCGGCAAGACGATCGTCGTCATCATCCCGAGCTTCGGCGAGCGCTACCTGTCCACCGTGCTCTTCTCGGACCTGCTGGACTGAMVTIYDDATKLIGRTPLVRINRLTEGSDATVAAKLEFYNPASSVKDRIGVSIIDAAEASGELQPGGTIVEGTSGNTGIALAFVGAARGYNVVLAMPETMSKERRALLRAYGAELVLTPGSEGMKGAVAAAEKIAAERPGAVLARQFANEANPKIHRETTAEEIWADTDGGVDIVVAGIGTGGTITGVGQVLKERKPEVQIIAVEPEESPILNGGQPGPHKIQGIGANFVPEILDTEIYDEVIDVNAETAVEWAKRAAREEGLLVGISSGAALKAAADVAARPENAGKTIVVIIPSFGERYLSTVLFSDLLDPGPT0002810_5166DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002810-cysK-K01738NANA
AK018_05401375hypothetical proteinGTGTCGAGCTACGGGACGCTGCTGGCGGTGCTTCTAAACCCGCCGAGCACGACGAACCGGGAGCACGGTCGACCGGGGCCGTACGCCGCCTTGCGAAGCTGCTCGACTACGAGGGCGGATCTGCGGCACTCGTTCGCGTCGATCCTCCGCCTCCGCCGCGACAAGATCGACAAGACCGGCTGCGTCACCCTGCGCATCGCCGGCAAGCTACGCCACATCGGCATCGGACGACCCCACGCCGGAACCCACGTCCTGCTCCTGATCCACGACCACGACGTGCAAGTCATCAACGCAGCCACCGGCGAGATCCTGCGCGAGCTCACCATCGACCTCACCCGCGACTACCAGCCACGCGGCACCAGCACCCGAAAATGAMSSYGTLLAVLLNPPSTTNREHGRPGPYAALRSCSTTRADLRHSFASILRLRRDKIDKTGCVTLRIAGKLRHIGIGRPHAGTHVLLLIHDHDVQVINAATGEILRELTIDLTRDYQPRGTSTRKNANANANANA
AK018_054021185hypothetical proteinTTGAGCAAGCTCTCCGTAGCCCACAAGACCTTCCTAGAGGCCGTACTCGACATGAAGGCCGGCACGGTCCTGGACTTCACCAACAACGGCTTCACGCAGTTCTTCGACGCCCTCGGCGTAGAGATCTATGACGAGCAGTACGCCGAGTACGGCCCTTCCAAAGCCAACAGACTGCGGAGTTTCTGGAAGAGTGGATCAGACAGTGAGGTCGCCGGAGCACTAGGGGCGCTTGCCGACTACCTGGACGCGAAGAGTCTGGTAGGCGAGTTGCGCGAGGACCTCACCGTCGAGCAGATCGCCGAGATCCGTAAGATCGCCAGGGACCTTGCGGGCGGCACTGAGCCAACCTCGTCAGGCGTTGAGTCAGTACCGATCACCTCCGAGGCAACGGTTAGCCAAGGTCGGATCTCGATCGAGATCCACGAGGACATCTACGGCCACGTTGGGCAATTCCTCGCAAGAGATGACTACTTCCAGGCGGTTGAAGAGGCATACAAGGTCGTGCGCGAGAAACTGCGCGAGTTGACGAGACTCGAGAAGGCCACCGACGTATTCAACCAGGCCTCGACCGGGAAGGCACATTACGAGGCGCTATTCGGCAAGACCGACGCTGCCAACGACGGAGAGGCCGACTTCTTCCGTGGCGTTGGCTACCTGCACTTGGGTGTGCAGTTCCTGCGCAACGAGAAGGCACACGCTCTGGCGGCACCACTAGAGCAGAACCTCGCCCTTCACTACATCTCACTGGCAAGCCTCGCCTACGACCTAATCACGCAGTACGTCAATGAGGAGACCATCCACGAGATCGAGGAGTTTGTCGAACGGATCCGCAGCCGTTACAGTACGGCAGAATTCTACCCGGTTCTCAAGAATGGCCAGTGGATCGAAACCCCTGGGCTACCCAATGCACTCAGGTCGGCAGCTGTACGCAAGGCACTCAAGGGAAAATGGCTAGTCGACGCCGACTTTACTCGCAGCTACAATCACAGCAATATCATCCTTATGCGGCTTGAGTTGGTGGTCGACCAATTAACAATGGAAGATATAGACACACTCCTGGATCTTCCGACCATCGGCGTTTTCGGTAACAGCCAGATGGCTGGCCTAGAGCAGTTCCTATATTTTGTGGACTCAAAGGACCCGCGCAAGATTTCCGTGAATGCGCGGAAGCGGATGCTGACCTGAMSKLSVAHKTFLEAVLDMKAGTVLDFTNNGFTQFFDALGVEIYDEQYAEYGPSKANRLRSFWKSGSDSEVAGALGALADYLDAKSLVGELREDLTVEQIAEIRKIARDLAGGTEPTSSGVESVPITSEATVSQGRISIEIHEDIYGHVGQFLARDDYFQAVEEAYKVVREKLRELTRLEKATDVFNQASTGKAHYEALFGKTDAANDGEADFFRGVGYLHLGVQFLRNEKAHALAAPLEQNLALHYISLASLAYDLITQYVNEETIHEIEEFVERIRSRYSTAEFYPVLKNGQWIETPGLPNALRSAAVRKALKGKWLVDADFTRSYNHSNIILMRLELVVDQLTMEDIDTLLDLPTIGVFGNSQMAGLEQFLYFVDSKDPRKISVNARKRMLTNANANANANA
AK018_05403906hypothetical proteinGTGATCTTCCTCGTCCAGAAGCAACTCGCTCAGGGCTCGACGGTCACTGAGTCCGCGATGCTCAAGGACTCCTCCACTGGCGAGCTACGCGAAGTGGACATCTACATCGAGGGCGAACTGCCTGGTGTCCCCGTGCCGCTGCGGATCTCCATCGAGTGCCGCGACCACAAGTCCAAGCAGGACGTGACGTGGGTTGAGGGGGCCAAATCCAAGCATGAGCATCTACCCACCGACGTGCTGATCCTCGCCTCGTCGTCAGGTTTCACCAGTCAAGCGAGTACGAAGGCTGAGCACCTGAAAGTTACGCTCTGGGAGCCCCGTGCTCCTGACGAGGATGTCTCACGAGAAATCGTGGGACGACTCAGTTCGCTCAGGGTGAAGCAACTCTCTTACCGGTCCGAAGAGATGCGTTTCCACGTCACACTCGAAGACCTCAACGGTCAGCCCGTGGACGACAGCATACTCGCCAGCGCTCTATCCGACGAGTTGGTCGATCTCGATGGCAACCCACTCGGCAGCATCCACGCAGTGATCCAGCACGCAATCTTCTCGAGCCAGGGCAACGACTTCCTCCGTGATGCTATGGACGGCGAGCCGACGCTGAACGTCTCGATTCCAAACTTCAAACTCACGAGAGCGGCCGACGGCACTCAAGTCTCGGCGTACATATACCCCACGGCCCAACCTGAGCAACGCATGCGGATCAAGAGCCTCGAAGCCAACGTGAAAGCGAAGCTTGTCGTGAATGAGGTACCGCTAACTCACCGCCAACTTCCGGACGCTCCGTACTCCTACGGCAGAGTCGACCTGCAGAGCGAGGACATGATCGTGCTCGTCACGGAGCCCAGCGGCACAGCGCCAGAGGTCTTCGTAGCCCCCTATGCACCACCGAAGAACAAGGCCTGAMIFLVQKQLAQGSTVTESAMLKDSSTGELREVDIYIEGELPGVPVPLRISIECRDHKSKQDVTWVEGAKSKHEHLPTDVLILASSSGFTSQASTKAEHLKVTLWEPRAPDEDVSREIVGRLSSLRVKQLSYRSEEMRFHVTLEDLNGQPVDDSILASALSDELVDLDGNPLGSIHAVIQHAIFSSQGNDFLRDAMDGEPTLNVSIPNFKLTRAADGTQVSAYIYPTAQPEQRMRIKSLEANVKAKLVVNEVPLTHRQLPDAPYSYGRVDLQSEDMIVLVTEPSGTAPEVFVAPYAPPKNKANANANANANA
AK018_054041128crtL_2Lycopene beta cyclaseATGGCTGACGTGGCGGTGGTCGGGCTCGGCCCTGCCGGGCGTGCGCTGGCCTCGCGGTGCGCGGCCCACGGCCTGTCGGTGATCGCGGTCGACCCGCGGCCCACCGCGACGTGGACCCCGACCTACGGCCTGTGGGCCGACGAGCTCGGTGACCTGCCCGTCTCCGTCGTCCGAGCGCGGGCGACGGCCCCCGAGCTGCGCGCCGTCGGCGAGCACCCGCTCGAGCGCGCCTACCTCGTCCTCGACAACGCGGCGCTGCAGCAGGCCCTGCCGCTGGACGGCGTCGAGGTCCGGACCGGACGGCTCGACGACGCCCAGGTCGCGGCCCTGCGCCGCGAGGCCACGGTGGTCGTCGACGCCCGCGGCGCTCGACCCGAGGGCCCGCGCCCCGACGACCCGTCGCCGCTGCAGACGGCCTACGGCGTCGTCGTCCCGGCTGCGGCGGCCCGGCCCGCCCTCCAGGGTGCCGAGTCGTTGCTGATGGACTGGCGCACGGACTGGTCGGACCGGGACCGTCCGACGTCGACCCCGACGTTCCTGTACGCGATCCCCGTGGGTGACGACCGGATGCTGCTCGAGGAGACCTGCCTGGCCGCGGCACCGGGACTGCCCGTGGCGGAGCTGCGGGCACGGCTGCGCCGGCGTCTGCTGGCGCGCGGGGTCGACCCGGACGTGGTGGACCGTCCCGTCGATCGCGAGGTCGTGCGGATCCCCATGCGCGGCCGGGACGCTCCCCCGCCCCCGGGCGTGCTCGCCGTCGGCACCGCGGGGCGCGGCGGCCACCTGATCACCGGGTACTCCGTCGCGCACGCGTTGCGCCGCGTCGACGCGCTCGCACGCTCCCTCGCGGAGGGTGACGTGCCGGAGCAGGCCGATCCGCGGGACGCCGCCGAACGGCTCCGGGAGGTGGGCCTGCGCGCGCTGCTGAGGCTCAGCGCGCAGGGCACCCTAGAGCTGTTCGAGGGATTCGGCCGGCTGCCCGCCGCCCGCCGGCACGACCTCCTGTCCCGCGACTCCGACGCGAGAGGCCTCACGCTCGCCATGTGGGGGATGTTCGCGTCGATGCCGGTGGCCGCCAAGGCGGACCTGGTCCGGGCCGCGCTCGGACCGGCGCGGCGGGCCGCCTGAMADVAVVGLGPAGRALASRCAAHGLSVIAVDPRPTATWTPTYGLWADELGDLPVSVVRARATAPELRAVGEHPLERAYLVLDNAALQQALPLDGVEVRTGRLDDAQVAALRREATVVVDARGARPEGPRPDDPSPLQTAYGVVVPAAAARPALQGAESLLMDWRTDWSDRDRPTSTPTFLYAIPVGDDRMLLEETCLAAAPGLPVAELRARLRRRLLARGVDPDVVDRPVDREVVRIPMRGRDAPPPPGVLAVGTAGRGGHLITGYSVAHALRRVDALARSLAEGDVPEQADPRDAAERLREVGLRALLRLSAQGTLELFEGFGRLPAARRHDLLSRDSDARGLTLAMWGMFASMPVAAKADLVRAALGPARRAAPGPT0007410_705DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007410-crtL1|crtY|lcyB-K06443NANA
AK018_05405444hypothetical proteinATGAGCCCAGGTCGACGGCCACGCCCGTCCGCGATGCCCCACCCGCACCTGATCTGGCTGCGCAGCGCCGCGACGGTGCTGCTGAGCTGCGTCGTCGGGCAGGCAGGCTGGGCGGCGGCCGTCCTCGGCGGCGACCCGCGTTACGTCGTCTACCACCAGGTCGGTGCCTGGGTGACGCTGGTGGTCGCCGTCGCCACGGCCGTCGTCTATCTCGTCCTGCGGCGTTCCGCAGGTCCGGTCAACGTGACCCTCGCCGTCGCGGCGGCGGTCGTGGTGACCGTGCAGTTCTCTCTCGGCGAGCTCGGTGTCGACCTCCGGGCGGTGCACATCTTCACCGGCGTGCTCCTGGCGATGCTCGTGACCGCCCTGACGTCGTGGACGTACCGCCATCGGATGCCTCAGGACGCGGCTGACAGCTCCAGTTCGAGCCCCCGCAGCGTGTAGMSPGRRPRPSAMPHPHLIWLRSAATVLLSCVVGQAGWAAAVLGGDPRYVVYHQVGAWVTLVVAVATAVVYLVLRRSAGPVNVTLAVAAAVVVTVQFSLGELGVDLRAVHIFTGVLLAMLVTALTSWTYRHRMPQDAADSSSSSPRSVNANANANANA
AK018_054061218Cytochrome P450(MEG)ATGACGGGGCGACGACGGGCGGTGCGCCCGGGCGAGCCGAGCACGCCTCGCGTCGAGCGGCAGGGCGCCGACGGGCGCCGCGGGGTCAGCACCGTGTGGCGCATCCGGTCGCTGGAGGCCGCACGACAGGTGCTGCGCGCGCGGCACGCCACGACGCAGGCCGGCTTCACCGCCGAGGCGATCCCCCAGCGGCTCAAGCACCACCCGATCCTCATCTCCGACGGACCGCAGCACGACGAGCAGCGTCGCAAGGTGGCCCGCTTCTTCGCCCCCGTGGTCGTGGCCGAGCGCTACACGGCGCCGATGGAGGAGTGCGCCGACCGCCTGCTCGGCGGGACGCCGCCGGGTGGCCGGCTGGTGCTCGACGAACTCGCGCTGCACTACACCGTCGAGGTCACCGCCGAAGCGGTCGGGCTGACCGCGTCGTCCGTGCCGCGCATGTCACGCCGGCTCGTGAGCTTCTTCCGCCAGCCGCCCTTCGACATCACCCGGCGCGACCTGGGACGCACCCGACGCCAGTGGATGCGGGCGGCCTTCAACGGGCTCCTGCCGGTCGCGCGGTTCTACCTCGCGGACGTGCGCCCGGCCGTCCGCGAGCGCCGCAGGCAGCGCCGCGAGGACATCATCAGCCACCTTCTCGACGAGGGGTACACCGACGTCGACATCCTCGTCGAGTGCGTCACCTACGGCACGGCCGGCATGGTGACCACGCGCGAGTTCGTGACGATGGCTGCCTGGCACCTGCTGCGCGACGACGCCCTGCGCGAGCGGTACGCCGTCGCCGGCCAGGAGGAGCGCTTCGCGATCCTGCACGAGATCATCCGGCTGGAGCCCGTCGTCGGGCACCTGTACCGGCGCGCGCAGGAGTCGATCGACGTCACGGACGGCGACCAGTCGTGGACGATCGAGGCCGGCGACCTGGTGGACGTCAGTGTCCGGTCCGCCAACGCCGACCCGCGGGCGCTCGACGAGGACGGCCTGGACCTGTGCCCCGGCCGCACCCTGCCGCGGGGCGTCAACGCCGCCGGCCTCACCTTCGGCGACGGCGCCCACAGGTGCCCCGGCCAGCCCCTGGCGATCCTGGAGTCCGACGTGCTGCTCACCCGGCTCCTGGCGCGCTCACCGCGGCTGGTGTCCGAGCCCGAGATCGGCTGGGACGACCTCATCGAGGGCTACACGCTGCGGGGGCTCGAACTGGAGCTGTCAGCCGCGTCCTGAMTGRRRAVRPGEPSTPRVERQGADGRRGVSTVWRIRSLEAARQVLRARHATTQAGFTAEAIPQRLKHHPILISDGPQHDEQRRKVARFFAPVVVAERYTAPMEECADRLLGGTPPGGRLVLDELALHYTVEVTAEAVGLTASSVPRMSRRLVSFFRQPPFDITRRDLGRTRRQWMRAAFNGLLPVARFYLADVRPAVRERRRQRREDIISHLLDEGYTDVDILVECVTYGTAGMVTTREFVTMAAWHLLRDDALRERYAVAGQEERFAILHEIIRLEPVVGHLYRRAQESIDVTDGDQSWTIEAGDLVDVSVRSANADPRALDEDGLDLCPGRTLPRGVNAAGLTFGDGAHRCPGQPLAILESDVLLTRLLARSPRLVSEPEIGWDDLIEGYTLRGLELELSAASNANANANANA
AK018_054071671mnmC_2tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmCATGACCCGCCCCGTGCCGCCCGGGCGTGACCGGGCGGCCGTGCTCCACCGCGCGGCCCCGGGCACCGGACGGGCCACGCAGGACCAGCACGTGGTCGTCGTCGGCGGCGGCATCGCCGGCCTGGCCGCGGCGACGATCCTCGCCGAGCGAGGCGTGCGGGTGACGGTGCTCGAGGCCTGCGACCAGCTCGGTGGCCGGGTCCGCGCGTGGCCCGTCGAGGAGCCGGTCGAGGACTCCGGGACGAACGGGGCCGAGGGCCGCACGATGAGCCGCGGCTTCCACGCCTTCTTCAAGCAGTACTACACGCTGCGCGCGCTGCTGCGCCGCGCCGACCCGGGGCTCGACCGCCTCGTCCCCGTGCCGGACTACCCGCTGCGCCGCGGCGACGGACTCACCGACAGCTTCGCCGCGCTGCCGCTGACGCCGCCGGTCAACCTCGCGGCGTTCGTCGTGCGCAGCCCCACCTTCCCCATCACCGCGCTGCCCCAGGTGCACCTGCCCAGCGCGATCGAGCTCGTCTCGGTCTCCTACCCCGCGAGCCACGAACGCTACGACGGCGAGTCCGCCCAGGACTTCCTGGACCGGCTGCGCTTCCCCGAGGGCGCCCGGCACCTGGCGCTCGAGGTCTTCGCCCGCTCCTTCTTCGCCCACCCCACCGAGTTCGGCGCCGGCGAGCTGGTGGGCATGTTCCACACCTACTTCGCCGGATCGTCGGAGGGCCTGCTCTTCGACGTGCCCGACGACGACTACGACACCGCGCTGTGGGCACCGCTGGGCCGCTACCTCGCCGGGCTGGGCGTCGACGTGCGGACCGGCACGCGGGCCGCGGCGCTCACGCGCGACGAGGACGGGACCTGGCACGTGGGCACCTCGTCCGAGGAGCTCGTCGCGGACGCGGTCGTGGTCGCCACCGACCCCCGGGCGGCTCGCAGCCTGCTCGCACCGCTCGCCGACGAGCCGGACCACGGCCTCGACCCCGCGGCGACGCAGCAGTGGCACCGCCGCGTCGCCGCCGGCCGCAACGCCCCGCCCTTCGCCGTGCTGCGGCTCTGGCTCGACGGCACGGTCGCGCCGGAGCGGGAGGCCTTCCTGGGCACGTCCGGCTACGACCTGCTCGACAACGTCACGGTCCTGGAGCGGTTCGAGCAGGGAGCGGCCGACTGGAGCGCCGAGCACGGCGGCTCGGTCGTGGAGCTCCACGGCTACGCCGTCGACCCCGAGCGGGACGCCGACCTGGCCGGCGACGGTCCGCGCGGGCTCGACACGGCACGTCTGCGCACGCGGCTCCTCGACGCCCTGCACGAGGTCTACCCCGAGACCCGCGGGCTGCGGGCGGTCCACTCCGAGCTGCTCGTCGAGGACGACTGCGGGCTCGTCGGCACCGGCCCGTGGCGCGACCGTCTCACCGTCGACACCCCGTACCCGGGCCTCGCCCTGGCGGGCGACGGGCTCCGGGTCGACTGGCCGATCGCGCTCATGGAGCGCGCCGCCGTCACCGGCGTGCTCGCCGCGAACCACCTGCTGCAGGGCTGGGGCGTGCGGGGCGAGGACGTCTGGACCGTGCCGCTGCAGGGTGTGCTCCGGCGCCGTCCCGACCTGTCGGCGGCGGGAGACGCCGTGGCCCGGACCGCACGGTCCGTGCGGGACCGCCTTCCCGTCGGACGGCGATGAMTRPVPPGRDRAAVLHRAAPGTGRATQDQHVVVVGGGIAGLAAATILAERGVRVTVLEACDQLGGRVRAWPVEEPVEDSGTNGAEGRTMSRGFHAFFKQYYTLRALLRRADPGLDRLVPVPDYPLRRGDGLTDSFAALPLTPPVNLAAFVVRSPTFPITALPQVHLPSAIELVSVSYPASHERYDGESAQDFLDRLRFPEGARHLALEVFARSFFAHPTEFGAGELVGMFHTYFAGSSEGLLFDVPDDDYDTALWAPLGRYLAGLGVDVRTGTRAAALTRDEDGTWHVGTSSEELVADAVVVATDPRAARSLLAPLADEPDHGLDPAATQQWHRRVAAGRNAPPFAVLRLWLDGTVAPEREAFLGTSGYDLLDNVTVLERFEQGAADWSAEHGGSVVELHGYAVDPERDADLAGDGPRGLDTARLRTRLLDALHEVYPETRGLRAVHSELLVEDDCGLVGTGPWRDRLTVDTPYPGLALAGDGLRVDWPIALMERAAVTGVLAANHLLQGWGVRGEDVWTVPLQGVLRRRPDLSAAGDAVARTARSVRDRLPVGRRPGPT0007465_63DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007465-crtU|cruE-K09879NANA
AK018_05408786COQ5_82-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialGTGCTCAGGAAACGCTCCGCCGCCGCGCGTCCCGACGAGTCGCGGGGAGAGGTGCTCTCCGACGAGTTCGACCGTGCCGCGGGCCGCTACGACCTGCTGACCCGGCTCAACCCCGGCTACCACGACGCCCTGAGCGCCGCGGCCCGCGCGCTGGTCTCGCGGCTGCGCGGGCGCGTCGGAGGCGAGCCGCTCGTCCTGTGGGACCTGGGGTGCGGATCCGGCCTGTCCACGCGGGCGCTGGTCGACGCCGCGGGCGACGACGCCCGCATCGTCGGACTGGACGCCTCGCCGGGCATGCTGGACCAGGCCCGGGCCAAGAACTGGCCGTCCGGGGTCCGGTTCATGCAGGCCTACGCCCAGGACCTGCCCGCGGTGGCGCACGAGCACGGGAAGACCGAGGCCGACGGCGCGTTCGCCGCCTACCTGCTGCGCAACGTCCCCGCGGAGCAGCGCGACGAGGTCGTGACGGCGATCCGCGACCAGGTCCGCCCCGGCGGCTGGATCACGTTGCAGGACTACCACGTCAAGGGCCGTCGCGCGGCCACCGCCGTGTGGACCGTCGTCTGCTGGGGCATCGTGATGCCCCTGTCCGTCCTCGTGCGCGGCAACCCGGCGATCTACCGCTACCTGTGGCGCAGCGTCCTCGACAACGACAGCACCACCCAGCTCCAGGCGCGCCTGGAGCGCGCGGGTCTCACGGACGTCAGCTGGCGCACCGGTACCGGCTGGCAGCGCGGCGTCCTGCACACGGTGCTGGCCCGCCGTCCTGCGGACGACGAGGCATGAMLRKRSAAARPDESRGEVLSDEFDRAAGRYDLLTRLNPGYHDALSAAARALVSRLRGRVGGEPLVLWDLGCGSGLSTRALVDAAGDDARIVGLDASPGMLDQARAKNWPSGVRFMQAYAQDLPAVAHEHGKTEADGAFAAYLLRNVPAEQRDEVVTAIRDQVRPGGWITLQDYHVKGRRAATAVWTVVCWGIVMPLSVLVRGNPAIYRYLWRSVLDNDSTTQLQARLERAGLTDVSWRTGTGWQRGVLHTVLARRPADDEANANANANANA
AK018_05409360hypothetical proteinATGAGCGATGCGTCCGCCGCGTCCTGCGCGCCCGCCACCCCGCCCGAGGTCCCGGGCCTGGCTGCCGAACGCACCGCCCTCGCCTGGCGCCGCACCCTGCTGTCGTTCACCGCCGCCTGCCTCGTGGCGGGACAGACGCTCCCCGGGGCGGACGGCGTCCGCACGCTGGCGCTGGCCGCGGCGGTGGCGCTGGTCCTGACGCCCCCCGGCTGGTGGTTCGCCCGCAGCCACGCCCGGCACACCGAACGGCACCTGCGGACGCCGGTCCCCCGGCTCCGGCACGGACGACGCATCGCGATCATCTGCGGTGCGACGAGCGCGCTGGGGGTCGGCGGGCTGACGCTCGTCCTCGTCCCCTGAMSDASAASCAPATPPEVPGLAAERTALAWRRTLLSFTAACLVAGQTLPGADGVRTLALAAAVALVLTPPGWWFARSHARHTERHLRTPVPRLRHGRRIAIICGATSALGVGGLTLVLVPNANANANANA
AK018_05410393yidHCOG2149Inner membrane protein YidHATGCCACCAGCCGACAGCGCACGCACCGCGGTCCGCGCGGACCGGTTCCCCCGGTGGGTGTACCGCCACGGGGCCGAACCGGACGCCCGGTTCTCGCTCGCCAACGAGCGCACGATCCTGGCGTGGGTCCGCACCTCGCTCGGGCTCATCGCCGGCGGGACGGCGCTCGAGACCCTCGACCTGCCGATGGAGCCGCACCTGCGGCTCGCCTCGGCGGTGCTGCTGCTCCTGGCCGGTGCCGCTGTCCCGGTCCTGGCCGCCCTGGAGTGGGCGCGCACCGAGCGAGCGATGCGCGAGAGCAGGCCGCTGCCGGGGGCACTGACCGGGCTGCTGCTCGTGGGCACCGTGACGACCGTGGGCGTCCTCCTGCTGCTCGCGCTGCTGCTGCGATGAMPPADSARTAVRADRFPRWVYRHGAEPDARFSLANERTILAWVRTSLGLIAGGTALETLDLPMEPHLRLASAVLLLLAGAAVPVLAALEWARTERAMRESRPLPGALTGLLLVGTVTTVGVLLLLALLLRNANANANANA
AK018_05411981fieF_2Ferrous-iron efflux pump FieFATGGCGGGAACGGACGACGGGCCACGGGTGGTGCGGGAGCCGGACGGCGGCGAGAGCACGGGCACCGTCGTCGTGGCCTTCGTGGCGAACGCCGTCGTGGCTCTCGCCAAGACCGGCGCGGCGATGATCACGGGGTCGGCCTCCATGCTGGCCGAGGCGGTGCACTCCTGGGCGGACACCGGCAACGAGGTGTTCCTGCTGGTCGCGGACCGCCGCTCGCGCCGCCCCGCGGACCGGGACCACCCCGTCGGGTTCGGTCGCGAGGCCTATGTGTGGGCCATGTTCGCGGCGATCGGGCTGTTCGCCGTCGGAGCTGGGGTGTCGGTGGCGCACGGGATCCAGGAGCTCGTCCACCCCGAGCCGGCGGAGAACTTGGGCATCGCCTACGCGGTGCTGGCGGTGGCGTTCGTGCTCGAGGGCGTCTCGTTCGTCAAGGCGGTGCGCCAGGCACGCGGCGAGGCGCGGCTCGCGCGGCAGGACGTCGTCGCGCACGTCGCGGAGACCTCGGACCCGACGCTGCGCGCGGTGGTGGCGGAGGACGCCGCCGCGCTGGTCGGGATCGTCATCGCCTTCCTCGGCGTGCTGCTGCACCAGCTCACCGGTTCGGCGGTGCCGGACGCTGTCGGCTCCATCGTCATCGGGCTGCTGCTGGCGGTGGTGTCGATCCTGCTCGTGGACCGCAACCGCCGGTTCCTCGTGGGTGAGGTGGCCCGGCCCGAGGTGCGCGACGCGATCCTGGACCGGCTGCTGGCCATGCCTCAGGTCGACCGTGTGACGTACCTGCGGCTCGAGTTCGTCGGACCGCGTGCGCTCTACCTGGTCGCGAGCGTCGACCTCGTGGGCGACGCGCGGGAGGCCGCCGTCGGGCGCCGCCTGGACGAGATCGAGCGGGCCGTGGTCGCCCACCCGCGCATCGCCGGGGCGGTGCTCACCGTCTCGGCGCCCGAGGACGTCTCGTTGCGGCCGTCCCCGCGCAGGTAGMAGTDDGPRVVREPDGGESTGTVVVAFVANAVVALAKTGAAMITGSASMLAEAVHSWADTGNEVFLLVADRRSRRPADRDHPVGFGREAYVWAMFAAIGLFAVGAGVSVAHGIQELVHPEPAENLGIAYAVLAVAFVLEGVSFVKAVRQARGEARLARQDVVAHVAETSDPTLRAVVAEDAAALVGIVIAFLGVLLHQLTGSAVPDAVGSIVIGLLLAVVSILLVDRNRRFLVGEVARPEVRDAILDRLLAMPQVDRVTYLRLEFVGPRALYLVASVDLVGDAREAAVGRRLDEIERAVVAHPRIAGAVLTVSAPEDVSLRPSPRRNANANANANA
AK018_05412585hypothetical proteinGTGACCGACCCCCACGACCCGTACGCCGCGCCGCGCGGCGAGCACCCGCAGCAGGAGCCGACGCAGCCCTTCGCGGTGCCGCCCCCGGCGTCGTCGGCCAGCACACCGTTCGACGCGCCGCGCCCGCCGGACGGCTACGCGGCACCGGGCGCCAGGCAGCCGACGACGCACCCGTACGCGGCCCCCGCGCCGCCGGGGATGCCGCAGCCCTACGAGGTGCCGGGCGCGTACCGGGGTGCTCCGGCGTACCAGGCCGGCGGGTACCCGCCGGGCCCGTACCAGGGCGGCGGGTATCCCGGGGCCGCGGCGCCGTACCCGTACGCCCCGCGGCGCACGAACGGGCTTGCGGTCGCGTCCCTGGTGGTCGGCATCCTGTGGCTGTACTGGGTGGGCAGCGTCCTGGCCCTGATCTTCGGGTACGTCGCGCTCGCCCAGATCCGCAAGGCGCCGGCGACCGCCCCGCAGGACGGGCGTGCGCTGGCGATCGCCGGCGTCGTGCTCGGCTGGGTCGGGGTGTCGACGCTGCTGCTGGTCGTCGCGCTGGGCGCGTTCCTCTTCTCCGCCCCGGGTCCGCAGTACTACTGAMTDPHDPYAAPRGEHPQQEPTQPFAVPPPASSASTPFDAPRPPDGYAAPGARQPTTHPYAAPAPPGMPQPYEVPGAYRGAPAYQAGGYPPGPYQGGGYPGAAAPYPYAPRRTNGLAVASLVVGILWLYWVGSVLALIFGYVALAQIRKAPATAPQDGRALAIAGVVLGWVGVSTLLLVVALGAFLFSAPGPQYYNANANANANA
AK018_05413966trxB_3Thioredoxin reductaseATGAGCGTCCCCCTGGACACGACCTACGACGTGCTGGTGATCGGCGGCGGTGCCGCCGGCCTCAGCGGAGCCCTCACCCTGGCGCGCGCCCGCTGGCGCGTCGCCGTCGTCGACGCCGGCTCGCCCCGCAACGCCCCGGCCGGTGCCGTGCACGGCCTGCTCGGCCGCGAGGGCGTCTCCCCCGCTGCCCTCCTCGAGACCGGACGGCGCGAGGTGCGCGCCGTCGGCGGGCAGGTCGTCGAGGGCCTGGTCCGCCAGGTCACCCGGGACGACGGCGGCACCCACCCCTTCACGGTCACGCTCGACGACGGCCGGGTGGCCCGGTCGCGCCGCCTGATGGTGGCGACCGGGCTGCGCGACGACCTCCCCGACCTCCCCGGTCTGGCCGCACGGTTCGGTCGCGACGTGCTGCACTGCCCCTTCTGCCACGGCCACGAGGTCCGCGACCGCCGCCTCGGCGTCCTGGCCACCGGGCCGCACGCCGTCCGTCAGGCCCTGCTGTTCCGCCAGTGGAGCCCGCACGTGACGCTGCTCGCCCACACCGGCGGCGAGCCGACGGGAGAGGACGCGGTGCGGCTCGCGGCCCGCGGGGTCGACGTCGTCACCGGCGTCGTGCGCGCGCTGGACGTCCACCACGACCGGTTGACCGGCGTCGTGCTGACGGACGGCACCGTCGTCGCCCTCGACGCCCTCGTCGTGGCGACCACCATGCGCGCCCGCACCGACGCCCTGACGCACCTCGGGCTCGAGACCGCGGCGCTGCCCGGCGGCCTCGGCGAGCACGTGGTCGCCGAGGCGGGCCGGACCGCCGTGCCGGGTGTGTGGGTGGCGGGCAACACCACGTCGCTGCACGCCCAGGTGACCACTGCCGCCTCCGAGGGCACCTGGGCCGCCGCCCAGATCACGGCCGACCTGGTCGAGGAGGACACCGCCGCGGCCGTGGCGGAATCCGTGCCGGCACCGTAGMSVPLDTTYDVLVIGGGAAGLSGALTLARARWRVAVVDAGSPRNAPAGAVHGLLGREGVSPAALLETGRREVRAVGGQVVEGLVRQVTRDDGGTHPFTVTLDDGRVARSRRLMVATGLRDDLPDLPGLAARFGRDVLHCPFCHGHEVRDRRLGVLATGPHAVRQALLFRQWSPHVTLLAHTGGEPTGEDAVRLAARGVDVVTGVVRALDVHHDRLTGVVLTDGTVVALDALVVATTMRARTDALTHLGLETAALPGGLGEHVVAEAGRTAVPGVWVAGNTTSLHAQVTTAASEGTWAAAQITADLVEEDTAAAVAESVPAPPGPT0013060_4213DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384NANA
AK018_05414615hypothetical proteinATGGCCCACCGGCACGACGACGGACCGTCCGCCCGCACGACGCTCGACGCCGCGCTCGGCACGGTCGGGCCGCGGCTGCGCAGTCTGCGGCAGGCCCGCGGGTCGACGCTCGCCGAGCTCTCCGCCACCACCGGGATCTCCACCAGCACGCTGTCGCGGCTCGAGTCCGGTGCGCGGCGCCCGACCCTCGAGCTGCTGCTCCCGCTCGCCCGGACGCACGGCGTGACGCTCGACGACCTCGTGGACGCCCCGACCACCGGCGACCCGCGCGTGCACCTCAAGCCCGTGACCACCGACGGCGCCACGACGATCCCGCTCACCCCGGGCGCCCCCGACGTCGGCGCCTACAAGATGATCCTGGAGGCGGGGTCGCGACCGACGGTCGACCCGCGCACCCACGAGGGGTACGAGTGGCTCTACGTGCTCGCCGGGCGGCTGAGGCTCGTCCTCGGCCACCACGACGTCGTCATGGGTCCGGGGGAGGCCGCCGAGTTCGACACCCGGGTGCCGCACTGGTTCGGTCCCGCCGACGACGAGGCGGTCGAGCTGCTCAGCCTCTTCGGCAAGCAGGGCCAGCGGATGCACACCCGGGTGCGGCCCAAGCGGCAGGAGTAGMAHRHDDGPSARTTLDAALGTVGPRLRSLRQARGSTLAELSATTGISTSTLSRLESGARRPTLELLLPLARTHGVTLDDLVDAPTTGDPRVHLKPVTTDGATTIPLTPGAPDVGAYKMILEAGSRPTVDPRTHEGYEWLYVLAGRLRLVLGHHDVVMGPGEAAEFDTRVPHWFGPADDEAVELLSLFGKQGQRMHTRVRPKRQENANANANANA
AK018_054151425tig_2COG0544Trigger factorGTGAAGAGCGCCGTCGAGACCCTGGAGCCCACCAAGGTCAAGCTGACCGTCGAGGTGGAGTACGACGAGCTCAAGCCGAGCATCGACCACGCCTACAAGCACATCGCGGAGCAGGTGAACATCCCCGGCTTCCGCAAGGGCAAGGTCCCCCCGCGCATCATCGACCAGCGCATCGGCTGGGGTGCCGTCGTCGAGCACGCCGTCAACGAGGGCCTGTCCGGCTTCTACCGCGACGCCATCGGTGCCGAGGAGCTGCGCCCGCTGGGCCAGCCCGAGGTCGAGGTCACCCAGATCCCCGAGAAGGCCGGCGAGGGCCAGCTCTCGTTCGTCGCCGAGGTCGAGGTCCGCCCCGAGCTCGAGCTGCCGGAGCTGTCCGGCATCGACCTGACCGTCGAGACCACCGAGGTCTCGGACGAGGACGTGGCCGAGCGCCTCGAGTCCCTGCGCGAGCGCTTCGGCACGCTGGTCGGCATCGACCGCCCGGCCGCCGAGGGCGACTACGTGGTCATCGACCTCAAGGCCGTCATCGGCGACGAGGAGATCGACTCGGTCTCCGGCGTCTCCTACCAGATCGGGTCGGGCAACATGCTCGACGGTCTGGACGAGGCCCTCACCGGTCTGTCCGCCGAGGAGACCACCACCTTCACCACGAAGCTGGCCGGCGGCGAGCACGAGGGCGAGGAGGCGACCGTCACCGTCACCGCCACCTCCGTCAAGGAGCGCGAGCTGCCCGAGGCGGACGACGACTTCGCCCAGATGGCCTCCGAGTTCGACACGATCGACGAGCTCAAGGCCGACCTGCGCGAGCAGGCCGCCTCCACCAAGACCAACGACCAGGCCGTCGCCGCCCGCGACGCCCTGCTCGAGAAGTTGCTCGAAGCCGTCGACGTCCCGGTGCCGTCCGGCGTCGTCGAGGCCGAGGTGCACCGTCACCTCGAGCAGGAGGGTCGCCTCGAGGACGACGAGCACCGCGCCGAGGTCACGGTCGACGCCACCAAGGCGATCACGAACCAGATCCTGCTCGACACCCTCGCCGAGAAGCTCGAGGTCCAGGTCGGCCAGGGCGAGCTCATCGAGTACCTGGTGCAGGCCTCCCAGCAGTACGGCATGGAGCCGCAGCAGTTCATCCAGACCCTCGACCAGTCCGGCCAGATCCCGGCCATGGTCGGCGAGGTCGCCCGGTCCAAGGCCCTGGCCGTCGCCCTGCGCGACATCGAGGTCAAGGACTCCGAGGGCAACGTGGTGGACCTGACCGAGTTCATCGGGTCGGCCGAGGACGACGAGGCCGCCGCGGCCGCCACCGAGGCGGCGCAGTCCGCCATCGCCGACTCGGCCGAGTCCGCGGACTCCTCGCCGGAGTCCGCCGAGTCGGCCGACTCCTCGCCGGAGTCGGCGGACTCCGCCGACGAGGCCACCAAGGCCTGAMKSAVETLEPTKVKLTVEVEYDELKPSIDHAYKHIAEQVNIPGFRKGKVPPRIIDQRIGWGAVVEHAVNEGLSGFYRDAIGAEELRPLGQPEVEVTQIPEKAGEGQLSFVAEVEVRPELELPELSGIDLTVETTEVSDEDVAERLESLRERFGTLVGIDRPAAEGDYVVIDLKAVIGDEEIDSVSGVSYQIGSGNMLDGLDEALTGLSAEETTTFTTKLAGGEHEGEEATVTVTATSVKERELPEADDDFAQMASEFDTIDELKADLREQAASTKTNDQAVAARDALLEKLLEAVDVPVPSGVVEAEVHRHLEQEGRLEDDEHRAEVTVDATKAITNQILLDTLAEKLEVQVGQGELIEYLVQASQQYGMEPQQFIQTLDQSGQIPAMVGEVARSKALAVALRDIEVKDSEGNVVDLTEFIGSAEDDEAAAAATEAAQSAIADSAESADSSPESAESADSSPESADSADEATKANANANANANA
AK018_05416639clpP1COG0740ATP-dependent Clp protease proteolytic subunit 1GTGACTGACCTGCTGCAGATGGACGACGCCGGGCCGCAGGCCCGTGGCGAGGGACAGGGCTTCGGCCTCAACGACTCCATCTACAACCGACTCCTCAGGGAGCGCATCATCTGGCTCGGCTCGGAGGTGCGCGACGAGAACGCGAACGCCATCTGCGCCCAGATGATGCTGCTCGCGGCGGAGGACCCCGACAAGGACATCTACCTCTACATCAACTCCCCGGGCGGCTCGATCACCGCCGGCATGGCGATCTACGACACCATGCAGTTCATCCAGCCCGACGTCGCCACGGTCGCGATGGGCATGGCGGCCTCGATGGGGCAGTTCCTGCTCTCCTCGGGCGCCAAGGGCAAGCGCTACATCACGCCGCACGCGCGCGTGCTCATGCACCAGCCCTCCGGCGGTGTCGGGGGCACGGCCACCGACGTGCGCATCGGCGCCCAGCTGATCATGCACATGAAGAAGGTGCTCGCGGAGCTGACCGCGGAGCAGACCGGCCAGCCGCTCGAGAAGATCCTCAAGGACAACGACCGTGACAGCTGGTTCACGGCGGACGAGGCCCTCGAGTACGGCTTCGTCGACCGCGTCGTCGCCAGCGCCTCCTCGGTGTCCGGGGGCGGCGGGACGACCGCCGACTGAMTDLLQMDDAGPQARGEGQGFGLNDSIYNRLLRERIIWLGSEVRDENANAICAQMMLLAAEDPDKDIYLYINSPGGSITAGMAIYDTMQFIQPDVATVAMGMAASMGQFLLSSGAKGKRYITPHARVLMHQPSGGVGGTATDVRIGAQLIMHMKKVLAELTAEQTGQPLEKILKDNDRDSWFTADEALEYGFVDRVVASASSVSGGGGTTADPGPT0014595_3920DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358NANA
AK018_05417714clpP2_2COG0740ATP-dependent Clp protease proteolytic subunit 2ATGAGCCACTCCGCCGAGTACCAGTTCGCGATGACCGCCGAGCGCCTCGCCGGCGGCGCCGCCCGCCCGGGTGGCGTCGCGCTGCCCCACGGTGCGCCGACCTCTCGGTACGTCCTGCCGCAGTTCGAGGAGCGCACCCCCTACGGGTTCAAGCGCCAGGACCCGTACACCAAACTGTTCGAGGACCGCATCATCTTCATGGGCGTGCAGGTCGACGACGCGTCGGCCGACGACATCATGGCCCAGCTGTTGGTCCTGGAATCCCAGGACCCCGACCGCGACGTGATGATCTACATCAACTCGCCCGGCGGCTCCTTCACCGCGATGACGGCGCTGTACGACACGATGCAGTTCATCAAGCCGCAGATCCAGACCGTCTGCCTCGGGCAGGCAGCGTCGGCGGCGTCGGTGCTGCTCGCGGCCGGCCAGCCCGGCAAGCGCCTCGCGCTGCCGAACGCCCGCGTGCTGATCCACCAGCCGGCGATGGAGGGCGGCGGCTACGCCCAGGCGTCCGACATCGAGATCCACGCCAACGAGCTCATCCGCATGCGCGAGTGGCTCGAGGAGACGCTGGCCCGGCACACCGGCAAGCCGGTCGAGGAGATCCGCGACGACATCGAGCGCGACAAGATCCTCACGGCCGCCGACGCCAAGGACTACGGCCTGGTCGACCAGGTGCTCGAGTCCCGCAAGCCCGCCGCGCTGCCGCGCTGAMSHSAEYQFAMTAERLAGGAARPGGVALPHGAPTSRYVLPQFEERTPYGFKRQDPYTKLFEDRIIFMGVQVDDASADDIMAQLLVLESQDPDRDVMIYINSPGGSFTAMTALYDTMQFIKPQIQTVCLGQAASAASVLLAAGQPGKRLALPNARVLIHQPAMEGGGYAQASDIEIHANELIRMREWLEETLARHTGKPVEEIRDDIERDKILTAADAKDYGLVDQVLESRKPAALPRPGPT0014595_1682DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358NANA
AK018_054181266clpX_2COG1219ATP-dependent Clp protease ATP-binding subunit ClpXGTGGCTCGAATCGGTGACGGCGCAGACCTGTTGAAGTGTTCCTTCTGCGGGAAGTCCCAGAAGCAGGTCAAGAAGCTCATCGCCGGGCCCGGCGTGTACATCTGCGACGAGTGCATCGACCTGTGCAACGAGATCATCGAGGAGGAGCTCGGCGAGGCCACCGAGCTCGGCATGACGGAGCTGCCCAAGCCCCGCGAGATCTTCGACTTCCTCGAGCAGTACGTGATCGGGCAGGAACCCGCCAAGCGGGCGCTCGCCGTCGCGGTGTACAACCACTACAAGCGGGTGCAGGCGCCGCCGGTCGTCAAGGACGACGACGACGCGGTCGAGATCGCCAAGTCCAACATCCTGCTGATCGGCCCGACCGGCACAGGCAAGACGTACCTGGCCCAGACGCTGGCCAAGATGCTCAACGTGCCGTTCGCCATCGCGGACGCCACCGCGCTGACCGAGGCGGGCTACGTCGGCGAGGACGTCGAGAACATCCTGCTCAAGCTCATCCAGGCCGCCGACTACGACGTCAAGAAGGCCGAGACGGGCATCATCTACATCGACGAGGTCGACAAGGTGGCCCGCAAAGCCGAGAACCCGTCGATCACGCGCGACGTCTCCGGCGAGGGCGTGCAGCAGGCGCTGCTGAAGATCATCGAGGGCACCAGCGCCTCGGTGCCGCCCCAGGGCGGGCGCAAGCACCCGCACCAGGAGTTCATCCAGATCGACACCTCGAACGTGCTGTTCATCGTCGCCGGCGCGTTTGCCGGGCTGGACGACATCATCGCGGCCCGCGCGCGCAAGCGCGGCATCGGGTTCTCCGCGCCGATGGAGTCCGCAGCCGACGAGGACCTGTTCTCCGAGGTGCGTCCGGAGGACCTGCACAAGTACGGGCTCATCCCCGAGTTCATCGGGCGGCTGCCCGTCATCGCCTCGGTCTCGCCGCTGGACCGCGACGCGCTCGTGCGCATCCTCACCGAGCCGCGCAACGCGCTCGTCAAGCAGTACCAGCGCATGTTCGAGATCGACGGCGTGCGCCTCGAGTTCGCCGACGACGCCGTGGACGCCATCGCCGAGCAGGCGCTGCTGCGGGGGACCGGTGCCCGCGGGCTGCGCGCCATCATGGAGGAGGTCCTCCAGCAGGTGATGTTCGACGTCCCGAGCCGCGACGACGTCGAGGGCGTCGTGGTCACGCGCGAGGTCGTCGAGGAGAACGTCAACCCGACGATCGTGCCGCGCAGCTCCGGGCCCGTGCGCAACCGCAAGTCCGCCTGAMARIGDGADLLKCSFCGKSQKQVKKLIAGPGVYICDECIDLCNEIIEEELGEATELGMTELPKPREIFDFLEQYVIGQEPAKRALAVAVYNHYKRVQAPPVVKDDDDAVEIAKSNILLIGPTGTGKTYLAQTLAKMLNVPFAIADATALTEAGYVGEDVENILLKLIQAADYDVKKAETGIIYIDEVDKVARKAENPSITRDVSGEGVQQALLKIIEGTSASVPPQGGRKHPHQEFIQIDTSNVLFIVAGAFAGLDDIIAARARKRGIGFSAPMESAADEDLFSEVRPEDLHKYGLIPEFIGRLPVIASVSPLDRDALVRILTEPRNALVKQYQRMFEIDGVRLEFADDAVDAIAEQALLRGTGARGLRAIMEEVLQQVMFDVPSRDDVEGVVVTREVVEENVNPTIVPRSSGPVRNRKSAPGPT0014600_3651DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014600-clpX-K03544NANA
AK018_05419378hypothetical proteinATGGCTGAGCCCTTCGACGAAGCACCCGTGCCCGAGACCGGGCGTGCGCTGCCGGCAGAGATCCTGGCCCTGCGGGGAACGATCGACAACATCGACGCCGCGCTGGTGCACCTGCTCGCCGAACGGTTCCGGGCCACCCACCGCGTGGGCGAGCTCAAGGCGACCCACGGGATGCCGCCCGCGGACCCGCAGCGCGACCGCCAGCAGATCGAGCGGCTCAAGACCATCGCCTCCGGCGCCGGGCTGGACCCGCAGTTCGCCGAGGAGTTCCGCCACTTCATCGTCTCCGAGGTGATCCGCCACCACGAGCGCATCGCCGCCGACCACGCCGCCGGCCGGCGCGCCGGCGAGGCGCCGCCCCTGGACACCTACAGTTGAMAEPFDEAPVPETGRALPAEILALRGTIDNIDAALVHLLAERFRATHRVGELKATHGMPPADPQRDRQQIERLKTIASGAGLDPQFAEEFRHFIVSEVIRHHERIAADHAAGRRAGEAPPLDTYSNANANANANA
AK018_054201245hypothetical proteinATGAGGATCGCATGGCTCAAGCCTCTGGTCGGACACCCCGGCCCGTTCGCCACCGTCTACCTGGACGCCACGCGTTCGATCGAGGCCGGTGACAAGAACGTCGCGAACCGCTGGCGTTCCGTCCGCCGATCGCTGGCCAAGCAGGGCGCCACGGACGACGTCCTGACCGACCTGGACGAGGCGGTGGACCGCCCCACACGGGTGCGCGGACCGCACGGACGGGTCCTGATCGCCGACGACGAGGACGGCGTGCTCGTCGACCGGGTGCTGCGCGAGCCGCCGCCGGTCACGGCCGGCGTCTGGCACCGTGTCCCCGTCCTGCTGCAGGCCGCACGGTCGGCCGACGAGCAGGTCGACGCCGTGTGCGTCGCCGTCGACCGGCTCGGCGCCGACTTCACACCCGTCGGGACCGACGGGTACGCCGCCGGCGAGCGGGAGACCTTCGAGGCGCCGCACGACGAGGTGTCCAAGTCCTCCAGCACGTCGACCAAGCGCGCCACGATCGAGTCCCGCGCCGAGGACTCGTGGGAGCGCAACGCGGAGGCCGTCGCCGGCGAGATCGACCGCCGGGTGGCCGATCACCGCCCGGAGATCGTCATGATCACCGGTGACGTCCGCGCGGTGAACCTCGTTAAGGCCGAGCTGGGCCAGCAGGCCGCGGAGGTGACCGTCGAGGTGCCGGGTGGCGGGCGTGACGAGGGCGTCCACCAGGACGCCTTCGCCGAGTCGGTCGCGGACGCCCTGGACTCCTACCGGGAGCGGCGCCGGGAGCAGGTGCTCGCCGACCTGCGTGAGGGCCTGGGCCGGGAGTCCGGCGCGGTCACGAGCATCGACGACGTCGTGCAGGTCCTGGCGCGCGGCCAGGTCGACCAGCTCGTGCTCTCCGAGGAGCTGGCCGACGACGCCTCGCGTGCGCTGCACGCCTGGGTCGACGGGTCGGTCGAGGCCCTGGGCCTGGGCGGGCTCGTCAACGGCCGCCAGCTGTGGACCGGCCCGGACCCCCTGCACGTCGCGGTCTCGCGCACCGAGATCGAGGGCGTCGGGGAGCTGGAGGAACTGCCGGCGGCCACGGCGCTGCTGCGTGCCGCCATCGGGCAGGACGCCGGCCTGGTGTTCGCCCCCGAGGGGTCCGTGGACCTCCGTGACGGCGTGGGCGCCACGCTGCGGTGGGACGACGGCGGTACGCCGCACGAGTCCGCCGCGAGCATGAGCGGCGACGACGGACGGGTGTCCGCCGCGCACTGAMRIAWLKPLVGHPGPFATVYLDATRSIEAGDKNVANRWRSVRRSLAKQGATDDVLTDLDEAVDRPTRVRGPHGRVLIADDEDGVLVDRVLREPPPVTAGVWHRVPVLLQAARSADEQVDAVCVAVDRLGADFTPVGTDGYAAGERETFEAPHDEVSKSSSTSTKRATIESRAEDSWERNAEAVAGEIDRRVADHRPEIVMITGDVRAVNLVKAELGQQAAEVTVEVPGGGRDEGVHQDAFAESVADALDSYRERRREQVLADLREGLGRESGAVTSIDDVVQVLARGQVDQLVLSEELADDASRALHAWVDGSVEALGLGGLVNGRQLWTGPDPLHVAVSRTEIEGVGELEELPAATALLRAAIGQDAGLVFAPEGSVDLRDGVGATLRWDDGGTPHESAASMSGDDGRVSAAHNANANANANA
AK018_054212778valS_2COG0525Valine--tRNA ligaseATGAGCGACTTCCCGAACTCCGGGGCGCCGACCGCGCCCGAGCAGACCCCCGCAGCGAACCCGACCCTCGCCACCACCGCCGGTGCCGACGTCGTGCGCGCGGTGGTCCGGGAGGTACCCGACAGGGTCAGCACCGACGGCCTGGAGGCCAAGTTCGACGAACGCTGGGCCGCCGAGGGCACGTTCGCCTTCGACCGCTCCGCCACCCGCGAGCAGGTGTACTCCATCGACACCCCGCCGCCCACGGTGTCCGGCTCGCTGCACGTGGGCCACGTGTTCAGCTACACCCACACCGACGTCGTCGCCCGGTTCCAGCGCATGCGCGGCAAGGAGGTCTTCTACCCGATGGGGTGGGACGACAACGGCCTGCCCACCGAGCGCCGGGTCCAGAACTACTTCGGCGTGCGCTGCGACCCGTCGCTGCCGTACGACCCGGACTTCACTCCCCCGCACCAGGGCACCGAGGGCAAGAAGGTCAAGCCCGGCGACCAGGTGCCGATCAGCCGCCGCAACTTCATCGAGCTGTGCGAGGAGCTGACGGCCGACGACGAGCGCCAGTTCGAGGAGCTGTGGCGCCGGCTCGGGCTGTCCGTCGACTGGGCGCAGACCTACCAGACCATCGACTCCACCTCGCGCGCCGCCTCCCAGCGGGCGTTCCTGCGCAACCTGTCCCGCGGCGAGGCCTACCAGGCCGAGGCCCCCGGCCTGTGGGACGTGACGTTCCAGACCGCCGTCGCCCAGGCCGAGCTCGAGGCCCGCGAGTACCCGGGCCACTACCACCGCGTGGCGTTCCACGGTGCCGACGGCGGCCCGGTGCACATCGAGACGACGCGACCCGAGCTGATCCCGTCCGTCGTGGCCCTCATCGCCCACCCCGACGACGAGCGCTACCAGCACCTGTTCGGCACCACCGTGACCTCGCCGCTGTTCGGCGTCGAGGTGCCGGTGCTCGCCCACCACGCCGCCGCGATGGACAAGGGTGCCGGCATCGCCATGTGCTGCACCTTCGGCGACCTCACCGACGTGCAGTGGTGGCGCGAGCTGCAGCTGCCCACCCGGTCCGTCATCGGCCGCGACGGCCGCCTGACCCGGGACACCCCGGCATGGCTCGCCGACGGCCCCGGCGCCGCGCTGTACGCCGAGGCCCTCGCCGGCAAGACCGCGTTCAGCGCCCGCACCGCCGTCGTCGACGCCCTGCGCGACTCCGGCGACCTGGACGGGGAGCCGAAGCCCACCCAGCGCATGACGAACTTCTACGAGAAGGGCGACAAGCCGCTCGAGATCGTCACCTCGCGCCAGTGGTACATCCGCAACGGCGGGCGGGCCTGGGAGCAGCGCGACCTGAAGGCCGAGCTGCTCGGGCGCGGCAAGGAGCTCGACTTCCACCCCGACTTCATGCGGGTGCGCTACGACAACTGGGTCAACGGCCTCAACGGCGACTGGCTCATCTCCCGCCAGCGGTTCTTCGGCGTGGCCGTGCCCGTCTGGTACGGCCTCGACGAGAACGGCGAGGTCGACTACGAGCGCCTCATCACGCCGTCCGAGGCCGAGCTGCCCGTCGACCCGACGTCGCAGGCGCCCGCCGGGTACACCGAGGACCAGCGCGGGACGCCGAACGGGTTCGTGGGCGACAACGACGTCATGGACACGTGGGCCACCTCGTCGCTGAGCCCGCTGATCGTGTCGGGCTGGGAGCGCGACGCCGACCTGTTCGACCGCGTCTACCCCATGGACCTGCGGCCCCAGGGCCAGGACATCATCCGCACCTGGCTGTTCTCCTCCGTGGTGCGCTCCCACCTCGAGTGCGACGTGCTGCCCTGGAAGAACGCCGCGATCTCCGGCTGGATCCTCGACCCGGACCGCAAGAAGATGTCCAAGTCCAAGGGCAACGTCGTCACGCCGATGGACCTGCTCGTCGAGCACGGGTCCGACGCCGTGCGGTACTGGGCGGCAGCAGCCCGCCTGGGCACCGACGCGGCGTTCGAGGTCGGTCAGATGAAGATCGGTCGCCGCCTGGCGATCAAGGTCCTCAACGCCTCGAAGTTCGCCCTGACGTTCGGCGTCGACCCCGAGACCGGTGCCGGCGAGATCGTGCTCGACCCGGCCGCCGTCACCGTCGACCTGGACCGCGCCATGCTGGCCGGGCTCGCCGACGTCGTCGACCAGGCCACCGCCGCACTGGAGGGCTACGACCACACGCGGGCACTGGAGATCACCGAGTCCTACTTCTGGGCGTTCTGCGACGACTACCTCGAGCTCGTCAAGGACCGCGCCTACGGGGCCGGGGCCGACACCGACCAGGTCTCGGCCGAGACCGTCTCCGCACGCACCGCGCTCGCGATCGCGCTCGACACGATGCTGCGCCTGCTCGCCCCGTTCATCCCGTTCGCCACCGAGGAGGTGTGGTCCTGGTGGCGCACCGGGTCCGTGCACCGTGCCCCGTGGCCGACGGCGGAGCCGCTGCGGTCGGCCGCGCAGGGCGTCGACCCGCTCGGCCTCACCGCCGCGGGACACGCGCTGGCGGCGCTGCGCAAGCTGAAGTCGGCGGCGAAGGTCTCCATGAAGACCCCGATCCTGTCCGGGACCGTCGCCGTGCCGGCCGCGCTGCTGCCGGGCGTGCGCTCGGCCCTCAAGGACGTCCGCGGCGCCGGTCGGGCGACCGGCACCCTCGACCTCGTCGAGGCGACCGACGGCCAGGGCGACCCCGACGTGCAGGGCGGGATCGTCGTCGTCTCCCACGAGCTCGGCGAGCCGCCGGCCAAGAAGCCGCGCGGCTGAMSDFPNSGAPTAPEQTPAANPTLATTAGADVVRAVVREVPDRVSTDGLEAKFDERWAAEGTFAFDRSATREQVYSIDTPPPTVSGSLHVGHVFSYTHTDVVARFQRMRGKEVFYPMGWDDNGLPTERRVQNYFGVRCDPSLPYDPDFTPPHQGTEGKKVKPGDQVPISRRNFIELCEELTADDERQFEELWRRLGLSVDWAQTYQTIDSTSRAASQRAFLRNLSRGEAYQAEAPGLWDVTFQTAVAQAELEAREYPGHYHRVAFHGADGGPVHIETTRPELIPSVVALIAHPDDERYQHLFGTTVTSPLFGVEVPVLAHHAAAMDKGAGIAMCCTFGDLTDVQWWRELQLPTRSVIGRDGRLTRDTPAWLADGPGAALYAEALAGKTAFSARTAVVDALRDSGDLDGEPKPTQRMTNFYEKGDKPLEIVTSRQWYIRNGGRAWEQRDLKAELLGRGKELDFHPDFMRVRYDNWVNGLNGDWLISRQRFFGVAVPVWYGLDENGEVDYERLITPSEAELPVDPTSQAPAGYTEDQRGTPNGFVGDNDVMDTWATSSLSPLIVSGWERDADLFDRVYPMDLRPQGQDIIRTWLFSSVVRSHLECDVLPWKNAAISGWILDPDRKKMSKSKGNVVTPMDLLVEHGSDAVRYWAAAARLGTDAAFEVGQMKIGRRLAIKVLNASKFALTFGVDPETGAGEIVLDPAAVTVDLDRAMLAGLADVVDQATAALEGYDHTRALEITESYFWAFCDDYLELVKDRAYGAGADTDQVSAETVSARTALAIALDTMLRLLAPFIPFATEEVWSWWRTGSVHRAPWPTAEPLRSAAQGVDPLGLTAAGHALAALRKLKSAAKVSMKTPILSGTVAVPAALLPGVRSALKDVRGAGRATGTLDLVEATDGQGDPDVQGGIVVVSHELGEPPAKKPRGNANANANANA
AK018_05422900hypothetical proteinATGACCATCTCGCCATCCGTCGACGTCGTGCGCCGCTTCAACCGCAGCTACACCCAGCGCGTCGGCGTGCTCGAGGAGTCGTTCCTCGGCCTCGACATGCCGCTCGGCACCGCCCGGCTCCTCTACGAGATCGGTGTCGCACCCGGGACCGCGCAGGCCCTGCGGACCCGGCTGGAGCTCGACTCCGGGTACCTCAGCAGGCTCCTGCGCCGGCTGCAGGACGACGGGCTCGTCAGCGTCGCACCCGACCCGGACGACCGCCGTCGTCGGCGGATCGACCTCACCCCCGCCGGCCGCGAGCGGTGGGACGAGCTCGAACGCCGGTCCGCCGAGCGGGCACGGCGCCTCGTCGCGCCCCTCAGCGACCGTCAGCAGGCCCGGCTGGTCGCCGCGCTCGCCGAGGCCGACCTGCTCGTGCGCGCCGCCACCATCGAGATCGCCACGGTCCCACCGGGCTCGGAGCTCGCCCGCCGTGCGGTCGCGGAGTACTTCGCCGAGGTCGGCGCACGGATCGACGGCACCGGAACCTTCGACGTCGACGCCGCGCTCGCCGCGGACGCCGACCGGCTCGTGGCACCGCGCGGCGCCTTCGTCGTCGCCACGTCCGCGGGCGAACCCGTCGCCTGCGGCGGCGTCCAGACCCTCGAGGACGGGTCCGGCGAGATCAAGCGCATGTGGGTCGACGGCTCCTGGCGCGGCGCCGGGCTCGGCGCCCGGCTGCTCCGGCATCTGGAGGACGTCGCGCGCGACCTGGGCCACGCCGTCGTGCACCTCGACACCAATGCGGCGCTGACCGAGGCGATCGCCATGTACGAGCGCTCGGGCTACCGGCGCGTGGAGCGGTACAACGACAACCCGCACGCCACGCACTTCTTCGCCAAGGACCTGACGGCCGGCTGAMTISPSVDVVRRFNRSYTQRVGVLEESFLGLDMPLGTARLLYEIGVAPGTAQALRTRLELDSGYLSRLLRRLQDDGLVSVAPDPDDRRRRRIDLTPAGRERWDELERRSAERARRLVAPLSDRQQARLVAALAEADLLVRAATIEIATVPPGSELARRAVAEYFAEVGARIDGTGTFDVDAALAADADRLVAPRGAFVVATSAGEPVACGGVQTLEDGSGEIKRMWVDGSWRGAGLGARLLRHLEDVARDLGHAVVHLDTNAALTEAIAMYERSGYRRVERYNDNPHATHFFAKDLTAGNANANANANA
AK018_054231011fgd1_3COG2141F420-dependent glucose-6-phosphate dehydrogenase 1ATGGCTGCCTCCGAAGACCTGACCATCGGCTATGCCGCGATGCTCGAGCAGTTCCACCCGACGGACGTCGTCGACTGGTCCGCCCACGCCGAGGAGCACGGCTTCTCCGGCGTCATGGCGGCCGACCACTTCCAGCCCTGGGTGCCGCAGCAGGGTGAGGCGGCCTTCGTGTGGAACGTGCTCACCGCGCTCGGCGAGCGCACGCGCGGCGACCTGGGCCCCGGCGTGACCTGCCCGTCCTTCCGGTTCCATCCGGCCGTCGTCGCGCAGGCGTCGGCCACCCTCGCCGCCATGTACCCCGGACGGCACTGGCTCGGGCTCGGGTCCGGCGAGGCGCTCAACGAGCACGTCACCGCGGGCTACTGGCCGGAGGCCCCCGAGCGCATCAACCGGATGTTCGAGGCCATCGACATCATCAAGAAGCTCTTCGCCTCCGGCATCGACGGCAAGGACGTCAAGCACTCCGGGCAGTACTTCAAGCTGGAGTCCACGCGGCTGTGGACCATGCCGGAGGTGCCCCCGGAGATCCTGGTGGCCACCGCCGGGCCCATCACCGCCAAGCGGGCCGGCAAGCACGCCGACGGCCTCATCACCGTCGGCGCGCCGCTGGAGAAGATCGAGATGCTCTTCGGGCGGTTCGACGCCGGCGTCAAGGAGTCCGGCCGCGACCCCGAGACGATGCCCAAGGTGCTGCAGGTGCACATGTCCTGGGCGGCCACCGACGAGGAGGCCATGGCCAACGCCATGACCGAATGGCCCAACGGCGGCATGAAGTTCCCCAAGGCGGACATCCGCTCGCCGCACGACTTCGCGCAGATGGCCAAGCTGGTGCGCCCCGAGGACTTCGAGGGCCGCATGGTGGTCTCCTCCGACCCGGACGAGCACCGTAAGGCCATCCAGCAGTACGTCGACCTCGGGTTCGACCGCATCTACCTGCACAACGTGGGTCGCAACCAGAAGGAGTGGATCGAGGTCTTCGGCCGCGAGGTGCTGCCGAAGCTCGCGCGATGAMAASEDLTIGYAAMLEQFHPTDVVDWSAHAEEHGFSGVMAADHFQPWVPQQGEAAFVWNVLTALGERTRGDLGPGVTCPSFRFHPAVVAQASATLAAMYPGRHWLGLGSGEALNEHVTAGYWPEAPERINRMFEAIDIIKKLFASGIDGKDVKHSGQYFKLESTRLWTMPEVPPEILVATAGPITAKRAGKHADGLITVGAPLEKIEMLFGRFDAGVKESGRDPETMPKVLQVHMSWAATDEEAMANAMTEWPNGGMKFPKADIRSPHDFAQMAKLVRPEDFEGRMVVSSDPDEHRKAIQQYVDLGFDRIYLHNVGRNQKEWIEVFGREVLPKLARNANANANANA
AK018_05424867fbiB_4COG0778Bifunctional F420 biosynthesis protein FbiBATGACCGGTGCGGCGGCGGTGCCCGACGGCGGCACGGACGTCCTCGACGGCGCCCGGCTGACGCTGTGGGCCCCGCCGGACCTGCCGGAGGTCCGGCCCGGCGACGACCTGGGCGTGCTGGTCGGCGACCTGCTCGCCGTGGACGCACGGCGCACCGGTGACCCGCTCGCCGAGGGCGACGTCGTCGTGGTCACCTCCAAGGTCGTCTCCAAGGCCGAGGGCCGGGTGGTGCGCGCCGCGGACCGGGAGCAGGCGATCACCGACGAGACCGTGCGCGTCGTCGCCACCCGGGAGCGTCCCGACGGCCAGCCGCCGCTGCGGATCGTCGAGAACCGGCTCGGTCTGGTGATGGCCGCGGCCGGGGTCGACGCCTCCAACACCCCGGACGGCACCGTGCTGCTGCTGCCCGAGGACCCGGACGCCTCGGCCCGAGCGCTGCGGGAGGTGCTGCGCGAGCGGTTCGGCCTGGACCGGCTCGGTATGGTCATCACGGACACCGCGGGCCGTCCGTGGCGCGACGGCGTGACCGACATCGCGATCGGGGCGGCCGGGCTGCGCGTGGTCGACGACCTGCGCGGGGGAGTCGACTCCCACGGCCGGGCACTGTCCGCGACCGTGACCGCCGTGGCCGACGAGATCGCCGCGGCCTCCGAGCTGGTCCGCGGCAAGGCCACCGGGCGCGCCGTCGCCGTCGTCCGCGGCCTGGCCCGCTACGTGCCGGGCGCAGCGTCCGACGACGGTGGTGCCGGCGTCGGACCGGGGGCGCGCAGCCTGGTGCGGACGGGACCCGACGACCTGTTCCGCGAGGGGGCCGCGGAGGCCTACGCCCGCGGGTTCGCCGACGGCCGCGCCGCACCCTCGAGGTAGMTGAAAVPDGGTDVLDGARLTLWAPPDLPEVRPGDDLGVLVGDLLAVDARRTGDPLAEGDVVVVTSKVVSKAEGRVVRAADREQAITDETVRVVATRERPDGQPPLRIVENRLGLVMAAAGVDASNTPDGTVLLLPEDPDASARALREVLRERFGLDRLGMVITDTAGRPWRDGVTDIAIGAAGLRVVDDLRGGVDSHGRALSATVTAVADEIAAASELVRGKATGRAVAVVRGLARYVPGAASDDGGAGVGPGARSLVRTGPDDLFREGAAEAYARGFADGRAAPSRNANANANANA
AK018_05425387hypothetical proteinATGGACCGCACGGACTGGATCGAGCACCGCCGCCCGGACGACCGCGAGCACATCGGGTGGATCCGGCCCGACGGCGACGCCTGGGTCGCTGTGTCCCTGCTCGGCGCCCCGCTGACCGGGCCCGTGGACTGGCTCGAGGCCGAGGAGGCCCTCGACGCCACGAGTCTGGCCTGGCTCGGCGAGGTGTGGATCCTCGAGGACGAGGACGGCGACCTGTTACGGGTGCGCCTGGTCGACGTCTCCCCGGGCGGCGTCGTCGTGCAGACGGACGACTTCGGCGCCATCGACGCCCCGGTGCGCCGCATCGACCTGCCCTGGCCGGCCCCGCCGACGCTCCGGCCGTGGCGGCCCGGAGACCCCGACGGCCGGACGATGTTCGGCGCCTGAMDRTDWIEHRRPDDREHIGWIRPDGDAWVAVSLLGAPLTGPVDWLEAEEALDATSLAWLGEVWILEDEDGDLLRVRLVDVSPGGVVVQTDDFGAIDAPVRRIDLPWPAPPTLRPWRPGDPDGRTMFGANANANANANA
AK018_05426492hypothetical proteinATGAGTTCTCCGACGACCTCACACCCCGCCGTCGACCAGGTCCGCGCCGCGCTCCTCGCCGCCGACGCCCACGCGTCCGCCGCCGGGATCCGCTGGTTCGACGACGCCGTCACCACCGCCGCGGCCGCCGCCGACGCCCTGGGCGTCGAGGTGGGCGCGATCGCCAACTCCCTGGTGTTCCTGCTGGACGACGAACCTCTCCTCGTCCTGACGTCCGGTGCCCACCGCGTCGACACGGCGTTCCTGGGTGAGCGTCTCGGCGGTCGAGTCGGCCGGGCGTCGAAGGAGGTCGTCAAGGACGCGACCGGACAGGTGATCGGTGGCGTCGCGCCCGTGGGCCACCCGACGCCGGTCCGCACGGTGGTCGACACCGCGCTGGCCGACTTCGACGTCGTGTGGGCGGCCGCGGGTCATGCGCGGACCGTGTTCCCGACGTCGTTCGACGAGCTGGTGCGTCTCACGGGCGGACGTCCTCTCGCGGTCGGGGGCTGAMSSPTTSHPAVDQVRAALLAADAHASAAGIRWFDDAVTTAAAAADALGVEVGAIANSLVFLLDDEPLLVLTSGAHRVDTAFLGERLGGRVGRASKEVVKDATGQVIGGVAPVGHPTPVRTVVDTALADFDVVWAAAGHARTVFPTSFDELVRLTGGRPLAVGGNANANANANA
AK018_05427789hypothetical proteinATGACGCACTACGTGACCAGCGGGGCCGGCGACCATGTCGGGTTCGACCCCTACGGCGAGGGCACCGCCGTCGTCTTCGTGGCCGGCGCGGGACCGTTCCGTGCCGTCGACCCCGTCACCACGAGGACCGCCGAGCTGTGCGCCGAGCACGGGCTGAGCGCCGTGGTGTACGACCGGCTCGGACGCGGGGACAGCCAGGCCGACGGCGTGCTCGACCTCGAGCGGGAGCTGTCGGCGCTGTCCGCCGTCATCGACGCCGCCGGGCCGCCGGTCGTGCTGGTGGGGCACTCCTCGGGCTGCGCGATCGCGCTGGCCGCCGCCGACGCCGAGATGCCGGTGGAAGGGCTGGTCCTGTGGGAGGCGCCGCTCGCCGGGACCGCCGAGGACGTGCGCGAGTGGATCGCCGAGTTCGAGCGGCGGTTGGACGCCGAAGACTACACGGGGGCCACCGAGCAGTACATGAAGGACATGCCTCCGCAGTGGCTCGAGGCGATGCGGCGCTCGCCCGAGTTCGAGCAGATGGCGCGTTCCTCGATCAGCCAGCGGGCCGACGGGCAGGCCCTGGTGCAGGTCACGGACCTGCTGGAGACCGAGGTGCTGCGCGAGCTCGCTGTGCCGGTCCTGGCTCTGTACGGCACGGAGACCTTCCCCGAGATGCCCGTTGCGGCACAGCGGATCGCCGACGCGACGACGCGCGGCGAGGTGGAGTCGCTCGACGGTGCCGAGCACTCCTGGGTCCCGGAGGCGATGGCCGAGCGGTTGGCGCGGTTCGTGCGCGAGAGCGTCTGAMTHYVTSGAGDHVGFDPYGEGTAVVFVAGAGPFRAVDPVTTRTAELCAEHGLSAVVYDRLGRGDSQADGVLDLERELSALSAVIDAAGPPVVLVGHSSGCAIALAAADAEMPVEGLVLWEAPLAGTAEDVREWIAEFERRLDAEDYTGATEQYMKDMPPQWLEAMRRSPEFEQMARSSISQRADGQALVQVTDLLETEVLRELAVPVLALYGTETFPEMPVAAQRIADATTRGEVESLDGAEHSWVPEAMAERLARFVRESVNANANANANA
AK018_054281176yhhTCOG0628Putative transport protein YhhTGTGACCTCGACGCCAACGCCCGCCCCGGACCGCCTGCCCACGCCGCCCGGGGCCCTGGGCCCCGGTGCCCGGACGCTGCTCGTGCTCGCCACCGCCGTCGTCGTCCTGGCCGGCATGCACGCGGCGTCCGAGATCCTCGCCCCGCTGCTGCTCGGCGCCGTCATCATCATCATCTGCCACCCCGTCCGCTTCCCGCTGCAGGCCCGCGGCTGGCCGAGCTGGGCCGCCACGACGGCGGTGATCGTGGTGGGCTACCTCATCCTGGCCGCACTGCTGGGCATGCTGGTCTGGGCCGGGTTCCAGTTCGCGGCGCTCGTGCGCGAGTTCCTGCCCGAGCTGTCCGCGTCGGTCGCCGACATCCAGGTCCAGCTCGCCGCGCTCGGTCTGGAGACCCAGCTCACCGACGCCGTCACCGAGTGGCTGCAGCCCGGCAACCTGCTGTCCCTGGCGGGCAGCGTGTCCGGCACGGCGCTCGGGATCGGCACCACGTTCTTCTTCGTGCTCGCCTACGCGGTGTTCATGGCGGCCGACGCCGGCCGGTACTCCACCGCCTCGCAGCACTTCGGCGTCTCGCACGCCGACGCCATCGAGCGCAGCACCCGGTTCAGCTCCGGCGTCCGCCGCTACTACGTGGTCAACGCGACGTTCGGCGCCATCGTGGCCGTGATCGACGGCATCGGTCTGGCCCTGCTGAACGTCCCCGGTGCGGCCATCTGGGCGATCCTGGCCTTTGTCACCAACTTCGTGCCCAACATCGGGTTCGTGCTCGGACTGGTCCCGCCGGCCATCATGGGCTTCGTCGCGGGCGGCTGGCAGCTCGCCCTCGTCGTGGTCGCCCTGTACTGCGTCGTCAACGTGGTGCTGCAGGTGTTCGTCCAACCCAAGTTCGTCTCCGACGCCGTGTCGCTGTCGCTGACGCTCAGCTTCATGTCGGTGGTGTTCTGGACGTTCGTCATCGGACCGCTCGGCGCGATCCTCTCGATTCCCCTGACGCTGCTGGTCCGGGCGCTGCTGCTCGAGGGCGACCCCCGCAACGCCTGGCTGCGGTGGCTCTCGGGCGACGTCGTCACCGATCCGCAGGCACCGCCGTCGGGCGCCGACCCGGCCACCGGTCCTGCAGACCAGCACGCCGACGCCGACACCGACGCCGACGCGGACGCCGACACCGCGAAGTAGMTSTPTPAPDRLPTPPGALGPGARTLLVLATAVVVLAGMHAASEILAPLLLGAVIIIICHPVRFPLQARGWPSWAATTAVIVVGYLILAALLGMLVWAGFQFAALVREFLPELSASVADIQVQLAALGLETQLTDAVTEWLQPGNLLSLAGSVSGTALGIGTTFFFVLAYAVFMAADAGRYSTASQHFGVSHADAIERSTRFSSGVRRYYVVNATFGAIVAVIDGIGLALLNVPGAAIWAILAFVTNFVPNIGFVLGLVPPAIMGFVAGGWQLALVVVALYCVVNVVLQVFVQPKFVSDAVSLSLTLSFMSVVFWTFVIGPLGAILSIPLTLLVRALLLEGDPRNAWLRWLSGDVVTDPQAPPSGADPATGPADQHADADTDADADADTAKPGPT0025496_15DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-BF-RELATED-AI-2_TRANSPORT,PGPT0025496-tqsA|ydgG-K11744NANA
AK018_05429459hypothetical proteinGTGCGCGGCAGCGTGGTGCGGTACGACGCGATCAAGGGGTACGCGTTCGTCGCGTCGGACGAGCTGGACGAGGACGTCTTCCTGCACGTCAACGACCTCGACTTCGACAAGGCCCTGATGGCGGTGGGTGCCGAGGTCGACTTCACGCACGAGGTCGGCGACCGCGGACCGCGGGCGCTGAGCGCCTCGCTGGTGCACTCCCCGGTCGCGGACGCCGTGCAGGCGGCACTGTCCGACGGCGGGAGGACGGCGGTGAGCGCCCAGGTGCCGGCTCCGGCCCCCGCGTCGGGCGACCACCCGCACGACGGGTTCGCCGACGTGCTCTCGGCCGCCGAGCTGCGGGGCGAGGTCACCGAGAAGTTGCTGGCCTCGGTCGGCGACCTCACCGGGCGCCAGGTGCTGGCGGTCCGGGCCGCCGTCGAGCAGATCGCCCGCTCCCACGGGTGGTTGGACGCCTGAMRGSVVRYDAIKGYAFVASDELDEDVFLHVNDLDFDKALMAVGAEVDFTHEVGDRGPRALSASLVHSPVADAVQAALSDGGRTAVSAQVPAPAPASGDHPHDGFADVLSAAELRGEVTEKLLASVGDLTGRQVLAVRAAVEQIARSHGWLDAPGPT0014675_833DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_054301167corA_2COG0598Cobalt/magnesium transport protein CorAATGGCCTTCAGCAGCTCCCACCGTTCGGTCCGAACCCGCCAGATGCTCGGCGCGCTGCGCGCCCGCCGCACCGGCGCGCCCGGCGCCGGTCCCGCCGGCGACGTCGCGCCCGGCGAGGCGCCCGTCACCCCGATCCGCGCCCGGTCGGCGATCATCGCGGCCGCCGTGTACGACGACGAGGGCAACCGCACCGCGAACTACACGCGGCTGGCGGACACCTTCCGCGCGCTGCGGTCCACGCCCGGCGGGATGGCCTGGATCGGTCTGGAGCGCCCCGACGAGCACGAGCTCGCCGCGCTGGCCCGGGAGTTCGACCTGCACCCGCTGGCCGTCGAGGACGCCATCCAGGCCCACCAGCGCCCCAAGATCGAGCGCTACGGCGACACCCTGTTCGTCGTCCTGCACGCCGCGCGCTACCTCGACTCGATCGAGGAGGTGGAGTTCTCCGAGCTGCACGTGTTCATCGGCCCCGACTTCGTGGTCACCGTGCGCCACGGCGACTCCCCCGACCTGCCCGCCGTCCGGGCCCGGCTGGAGTCGACCCCGCAGATGCTGGGCCGGGGTCCCGAGGCCGTGCTCTACGCGATCATGGACCGCGTCGTGGACGACTACGCGCCCGTCGTCTCGGGACTCGACTACGACATCGACCAGATCGAGGGCGAGGTCTTCTCCGGCGACGCGCACGTCTCGCGGCGCATCTACGAGCTGTCCCGCGAGGTGGTGGACTTCCAGCGCGCCGTGCGGCCCCTGCAGAACGTGTGCCTGTCGTTGGCCAAGGGCGCCGAGAAGTACCGGGTCGACGAGGAGATGCAGGCCTATCTGCGCGACGTCGCCGACCACCTCACCGAGGTCTCCGACTCGGTCGAGACGTTCCGCGCCGCGCTGCGCGACATCCTCACGGTGAACGCCACCCTGGTCGCGCAGCGCCAGAACGAGGAGATGACGCACCTGACCGAGGTGTCCATCAAGCAGGGCGAGGAGGTCAAGAAGATCTCCGGCTGGGCCGCCATCCTGTTCGCCCCGACCCTCGTCGGGGCCGTCTACGGCATGAACTTCGACGTCATGCCCGAGCTGCACGCCGTGTGGGGCTACCCCATGGCGTTGCTGCTGATGCTGGCCGTCAGCGTGGGCCTGTACGGCATCTTCCGCTGGAAGAAGTGGATGTAGMAFSSSHRSVRTRQMLGALRARRTGAPGAGPAGDVAPGEAPVTPIRARSAIIAAAVYDDEGNRTANYTRLADTFRALRSTPGGMAWIGLERPDEHELAALAREFDLHPLAVEDAIQAHQRPKIERYGDTLFVVLHAARYLDSIEEVEFSELHVFIGPDFVVTVRHGDSPDLPAVRARLESTPQMLGRGPEAVLYAIMDRVVDDYAPVVSGLDYDIDQIEGEVFSGDAHVSRRIYELSREVVDFQRAVRPLQNVCLSLAKGAEKYRVDEEMQAYLRDVADHLTEVSDSVETFRAALRDILTVNATLVAQRQNEEMTHLTEVSIKQGEEVKKISGWAAILFAPTLVGAVYGMNFDVMPELHAVWGYPMALLLMLAVSVGLYGIFRWKKWMPGPT0014010_319DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284NANA
AK018_05431699pspBCOG0406Putative phosphoserine phosphatase 2ATGACCCTCACCCTGACGCTGGTCCGCCACGGGCAGACCACCCTGAACGCGCGACGTCACCTGCAGGGCTCCTGCGACGCCCCGCTGACCCGCACCGGGCGCGCCGGCGTGCGGGTCACCGCCCAACACCTGTCCGGACACGACTTCGACGCCGTCTACTCCTCCCCGCAGGGGCGGGCCGTGCAGACGGCGGTGGAGATCCTCAAGCACCACCCGGAGCTGCGGCTGCGCATCGACGACGACCTGCGCGAGCTGTCGTTCGGAAGCCTCGAGCGGCGGCCGGAGCGGCTCCTGGACGCCGAGGTGCCGTGGGCGCGGTTCGTCCCCGACCTGCTGGCGGGGACGCACCCGGGTGTGGGCGGCGGCGAGCCCGCCGACCGGTTCATGGCGCGCGTCCGCGACGTGTTCGCGCGTGTCGTGACCGCGCACGGACCGGTGGCGAGCGGCACCGACGACAACGGCACGGCGGTCGACGGCGGCGGCCCGGACGCGCACGTGCTCGTCGTCGGGCACGGACTGACGCTCGCCGCGTACCTGTGGACGGTGGATCCCGAGGCGGTGGTCGCGCTGCCGAACGCGTCGGTGTCCACGGTCGAGGTGTCCGACGGCGCCGCTCGGGTCGTGCGCGCCGGGGTCGACGTGGCGGGCCACGGCTCCGGCGTCGTGCACACGGCCCGCAGGCCGGTCGCGGCGCGCTGAMTLTLTLVRHGQTTLNARRHLQGSCDAPLTRTGRAGVRVTAQHLSGHDFDAVYSSPQGRAVQTAVEILKHHPELRLRIDDDLRELSFGSLERRPERLLDAEVPWARFVPDLLAGTHPGVGGGEPADRFMARVRDVFARVVTAHGPVASGTDDNGTAVDGGGPDAHVLVVGHGLTLAAYLWTVDPEAVVALPNASVSTVEVSDGAARVVRAGVDVAGHGSGVVHTARRPVAARPGPT0018035_321DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018035-gpmB-K15634NANA
AK018_05432435hypothetical proteinATGGAGAACCTGTTCGGACCGCGCTACTACGACCTGGACGGCATGCCCGTCTCCGAGGCGCGGTGGGCCGTCATGTGGCACACGCAGGAACGGGTCGTGGCCCGCACCCTCGTCGGAGCCGACTACGTCGTCGAGGCGCGCTGGATCGGCACCGACCGCGAGGAGTACCTGCACACCCCGCCGCATATCTACCGCGTCAGCGTCCACCCGCTCGGCTACCTGCTGCCCGCCGACGCCGACGACGACACTCCTGCCAGCCTGCTCCTGACCGACGAGACCACCCACGAGGAGTCCGTCCCCGACCGGACCGCCGCGATCGTCACCCACGACCTGCTCGTCGCCTCGGTGCGCGAACGGCTGGCCGGAGCCCGGTTCGTGACCCGGCGATGCATCCCGCTGCGCGACCTCATCGCCGAACCCCCGCTGCCCGCCTGAMENLFGPRYYDLDGMPVSEARWAVMWHTQERVVARTLVGADYVVEARWIGTDREEYLHTPPHIYRVSVHPLGYLLPADADDDTPASLLLTDETTHEESVPDRTAAIVTHDLLVASVRERLAGARFVTRRCIPLRDLIAEPPLPANANANANANA
AK018_05433762ddaH_2COG1834N(G),N(G)-dimethylarginine dimethylaminohydrolaseATGTCCGGCACACTGCTCGTCCGCCCGCCGTCGCCCCGCCTCGCCGACGGCGAGCTGACCCACCTCGACCGCGTCCCCGTGGACGCCGGGCTGGCCCGCCGCCAGTGGGACGACTACCTCGCCGTCTTCGCCGACCGTGGCTGGCAGGTCCGTGAGCTCCCTGCCGCCGACGAGCATCCCGACGGCGTGTTCGTGGAGGACGCCGTGGTGGTCTTCGACGACCTGGCCGTCCTCACCCGCCCCGGAGCCGCCACCCGCCGCGGCGAGGTCGCGAGCATGCGCCCCGTCGTCGCCTCGCTCGGCCTGGAGGTCGCCGAGATCGAGGCCCCGGCCACCCTCGAGGGCGGCGACGTGCTGAAGGTGGGCCGCACCGTCTACGTCGGCCGCTCGAGCCGCACCGACGACGACGGCGTGGCGCGCCTGCGCACACTCCTCGAGCCGCGCGGGTGGCGGGTCGTGGCGGTGCCGGTCACCCGGGTGCTGCACCTCAAGAGCGCCGTCACGGCGCTGCCCGACGGGACGACGATCGGCCACGAACCCCTGGTCGAGGCGCCCGAGGTCTTCGAGAGCTTCCTGCCGGTCCCCGAACCGGAGGGCAACGCCGTCGTCGTCCTCGACGAGCGCACCGTGCTGCTGTCCGCGAGCGCCCCACGCACCGCCGACCTGCTGCGCGGCCGCGGTCTGGAGGTCGTCACGAGCCCGGTGACCGAGTTCGAGAAGCTCGAGGGGTGCGTCACCTGCCTGTCGGTCCGGGTGCGCTGAMSGTLLVRPPSPRLADGELTHLDRVPVDAGLARRQWDDYLAVFADRGWQVRELPAADEHPDGVFVEDAVVVFDDLAVLTRPGAATRRGEVASMRPVVASLGLEVAEIEAPATLEGGDVLKVGRTVYVGRSSRTDDDGVARLRTLLEPRGWRVVAVPVTRVLHLKSAVTALPDGTTIGHEPLVEAPEVFESFLPVPEPEGNAVVVLDERTVLLSASAPRTADLLRGRGLEVVTSPVTEFEKLEGCVTCLSVRVRNANANANANA
AK018_05434459hypothetical proteinGTGCTGCGGACGGTGATCCTGCTGGTGGCGCTGTCGGTCACCGGACCGGGCGGCTACTGGTACGGACTGTGGGCCGATCCGACCTCGCGGGCGCTCTACGTGACGATCGCGTTCGCGGCGTTCTGCCGGGTGCTCGCGGCGGCCTGGTTCGCGCTGCGCTCGCTCGGACTCGGACCGGCCGCGAGCGCCGGTCGCGTGCTGCTGGCCACGGCGACCCCGCTGCTCGTCGGCGGCCTGATCGTCGGCACGGTCGGGCTGGAGACCGTGCTGACCGCCTGGAACGACCAGATGATGGTGCTGCCGTGGGGCCTGTCGCGGATCCTCGGGCTGACGGTCCACCTCGGGATCCCGGTGGACCTGCCGTGGCTGGTGGCGGGGCTCGGCGCCGGGGTCGCCGTCGTCGGCGGGCTGCTGGCGGTGGCGGCTGCGCTGACGGGCCGCAGAGCCGCTCGCCGCTGAMLRTVILLVALSVTGPGGYWYGLWADPTSRALYVTIAFAAFCRVLAAAWFALRSLGLGPAASAGRVLLATATPLLVGGLIVGTVGLETVLTAWNDQMMVLPWGLSRILGLTVHLGIPVDLPWLVAGLGAGVAVVGGLLAVAAALTGRRAARRNANANANANA
AK018_054351854hypothetical proteinGTGCCCGACACCGACCGTCCCGCCGCGCGCCGTCGCCCCTGGTACGCGGCCGCCATTACCGTCGTCCTGCTGGTCCTGGGCTTCGTCGTCTCGACGCAGCTCTCCGGCCTGCTCGCCATCTCCGCCGAGCCGGTGACCGCCGCACCGGAGGACCCGCAGGCGGCACCCGCCGGCACGCCGGTCGCGGCGCCCGACCTGACCGAGGTGCGCACCGCGGACCGCACCCAGCTCACCCTGGCCGCGGACGCCGTCGTCGCCGCGCTGGCATCGCGCGGCACCACGGCCACGGCGGTGTCCGACGGCGGCACCCCGGACGACGGCGACGTCCCGGACGACGACGGCGCCCCGGGCGCCGCCGGGCCCGGCACGCTGACGGTCGTCACCGGAGTCGACCTCGACACCGCCCCCGCGAGCGTCAGCCGCGACGAGTCGTACCGCCTGACCAGCGGCGCGGACGGCTGGCTGCTGGAAGCCCCCGCGGACGACGGCGCGGCGCACGGCCTGTACACCGTGGCCGACCGCATCCGTACGGCGACGGACCCGCTGCCGGCCGCGGAGGACGGCGTCGTCCAGGCCCCGCAGATGAGCCTGCGCTTGGTGGACAAGGGCGCCACCGGCATCGCACCGGACCCCGAGGCCTGGCGCCACGACGACCCGTACTCGCACAACGGCGGCTCCTTCGCGAGCACGATCCTGTCCGAGGCCCCCTACGTGGACCCGGAGATCTTCGCCGCCGACGCCGACGACTTCCGCGGCTACGTCGCGAGCCAGCTCGCCCAGGGGTTCACCGGCGTCGTCATCCCCGGGTTCCTCGAGTACGTGACCTTCGCAGGGCTGGACGAGCCGGTGTACACCGGCGACGACGAGCACGTCGCCCGGGCCGAGACGATGCAGGCCGAGTTCGGCGGGCTGTGGGCCGACGCCGACGACGCCGGGATGGACGTCTACCTCCAGACGGACATGCTCATGCTCACCACTCCCCTGCAGGCCTACCTCGACGAGCGCGGCCTCGACACCACCGACCCCGAGCTGTGGGAGGTCTACGCCGCCGGCCTGGCGGAGGTCTTCGAGACGATGCCGGCCGTGGACGGGCTGATGATCCGCATCGGCGAGGCCGGCCGCATCTACGACCTGCCCGGCTGGGACTACTGGTCCGAGCTGGCCGTCACGGACACCGAGTCCGTGCGCGCCATGCTCACGGCGTTCACCGACGTCGCCGAGCAGCACGGCAAGGACGTCATCTTCCGCTCCTGGTCGGTCGGTGTCGGCGCGGTGGGCGACATGCACACCAACCCCGACTCGTACGAGGCCGTGCTGGCCGGCGTCGACTCGCCGTCGCTGGTGGTCTCGACCAAGCACGTCGCCGGCGACTTCTACTCCTGGTTGCCGCTCAACCCGACCCTGGAGATCGGCGACCAGCGGCGCATCGTCGAGCTGCAGTCGCGCCGCGAGTTCGAGGCGTTCGGCGCGCTGCCCAACGACCTCGGGTCGGCGTACGCCGAGGCGCTGCAGCACTACCTGCAGGTGAACCCGCACGTCGAGGGCGTGTGGGTCTGGGCCCAGGACGGCGGCCCGTGGAAGGCCGGCCCGATGTCGCTGTACCGCAAGTCCGGTTTCTGGCAGCTCTACGACCTCAACACCTACGCCGCGGCGCGCCTGGCCACGGACCCGCAGGCCGACCCCGGCGAGATCACCGCCGCGTGGCGTACACCTGGGCGCTGTCGTGGGTACACCTGCTCCTGGTGCTCGGGGCGTGGCTGGCGTTCGTCGCGGTGCTGCGTCTGCTCGTCGGCCGGGACGACGGGTTCACGTTGGCAGGCGCCGTCGGCGGGGCCGCGGTGCTGCGGACGGTGAMPDTDRPAARRRPWYAAAITVVLLVLGFVVSTQLSGLLAISAEPVTAAPEDPQAAPAGTPVAAPDLTEVRTADRTQLTLAADAVVAALASRGTTATAVSDGGTPDDGDVPDDDGAPGAAGPGTLTVVTGVDLDTAPASVSRDESYRLTSGADGWLLEAPADDGAAHGLYTVADRIRTATDPLPAAEDGVVQAPQMSLRLVDKGATGIAPDPEAWRHDDPYSHNGGSFASTILSEAPYVDPEIFAADADDFRGYVASQLAQGFTGVVIPGFLEYVTFAGLDEPVYTGDDEHVARAETMQAEFGGLWADADDAGMDVYLQTDMLMLTTPLQAYLDERGLDTTDPELWEVYAAGLAEVFETMPAVDGLMIRIGEAGRIYDLPGWDYWSELAVTDTESVRAMLTAFTDVAEQHGKDVIFRSWSVGVGAVGDMHTNPDSYEAVLAGVDSPSLVVSTKHVAGDFYSWLPLNPTLEIGDQRRIVELQSRREFEAFGALPNDLGSAYAEALQHYLQVNPHVEGVWVWAQDGGPWKAGPMSLYRKSGFWQLYDLNTYAAARLATDPQADPGEITAAWRTPGRCRGYTCSWCSGRGWRSSRCCVCSSAGTTGSRWQAPSAGPRCCGRNANANANANA
AK018_05436198hypothetical proteinATGGGGCACGAGGCGACGGTGTCCAAGGTGAGCGAGGACCAGCTGTTCTACCTCATGTCCCGAGGCCTGGACGAGACCGAGGCCATGGCCATGATCGTGCGCGGGTTCGTCGAGCCCATCGCGCGCGAGCTGCCCATGGAGTACGCGCTCGAGCTCAACCGCCTCATCGAGCTGCAGATGGAAGGGTCCGTCGGCTGAMGHEATVSKVSEDQLFYLMSRGLDETEAMAMIVRGFVEPIARELPMEYALELNRLIELQMEGSVGNANANANANA
AK018_054371206hypothetical proteinATGACTCTCACTACCGATCACACCCGCGCGACGGCCGACGGCACCCACTCCCACGGTGTCGTCCCCGCCGGCTCCCGCGCCGAGCGCAAGACCTCCTTCGACCTGGCGGACATCCCCGTGCCGTCCGGACGCGAGGAGGAGTGGCGGTTCTCGCCCGTGGCGCGGATCCAGCCGCTGTTCTCCGAGCAGCTCGGCAGCGACGGCGTCGCCGTGACCGTCGAGGCGGCCCCAGAGGTCAAGGTCGAGACCCTCGCCCGCGGTGACGAGCGCCTGGGGCGTGCCGGCAAGCCGGGAGACCGGACCGCCGTCGCCGCCTGGAACGCCGTGGCCGAGGCCACCGCCGTGACGATCCCGGCCGAGGCCGTGGCGTCCGACGTCACCTCCGTGCGCATCGACGGCGTCTCCAAGGACGCCACCGCCGCGCACCTCGTCGTCACCGCCGAGCGGCACTCCGAGGCCGTCGTCGTCATCGACCACCGCGGCGAGGCGCTGCTCAACCAGACCGTCGAGCTCGTCGTCGAGGACGGCGCGCACCTGACGGTCGTGTCCGTCCAGGACTGGGCCGACGGTGCGGTGCACGCCTCCAGCCACCGCGCCGCCATCGGCCGGGACGCCAAGCTCAAGCACGTCGTGGTGACGTTCGGCGGCGACGTCGTGCGGGTCACGCCGGACGCGACCTTCACCGCCGAGGGCGGCGAGGTCGAGATGGTCGGGCTATACTTCGCCGACGCCGACCAGCACCAGGAGCACCGGCTCTTCGTCGACCACGCCGTGCCGCGCTGCAAGTCCCGCGTCACCTACAAGGGTGCGCTGCAGGGCGCCTCGGCCCACACCGTGTGGGTCGGCGACGTGCTCATCCAGGCCGAGGCCGAGGGCACCGACACCTACGAGCTCAACCGCAACCTCGTCCTGACGGACGGGGCGCGCGCCGACTCGGTGCCGAACCTCGAGATCGAGACCGGCGAGATCGACGGCGCGGGTCACGCGTCGGCGACCGGCCGGTTCGACGACGAGCAGCTCTTCTACCTCATGGCCCGCGGCATCCCCGAGATCGACGCCCGCCGTCTCGTGGTGCGCGGCTTCTTCGCCGAGCTCATCCAGGACATCGGCGTCGCGTCGGTCCAGGACCGGCTGCTGGCCTCGATCGAGGCGGAGCTGGAGAAGTCGATGAGCGTCATCACGGGCGTCGCCTCCGACGCGGAGTGAMTLTTDHTRATADGTHSHGVVPAGSRAERKTSFDLADIPVPSGREEEWRFSPVARIQPLFSEQLGSDGVAVTVEAAPEVKVETLARGDERLGRAGKPGDRTAVAAWNAVAEATAVTIPAEAVASDVTSVRIDGVSKDATAAHLVVTAERHSEAVVVIDHRGEALLNQTVELVVEDGAHLTVVSVQDWADGAVHASSHRAAIGRDAKLKHVVVTFGGDVVRVTPDATFTAEGGEVEMVGLYFADADQHQEHRLFVDHAVPRCKSRVTYKGALQGASAHTVWVGDVLIQAEAEGTDTYELNRNLVLTDGARADSVPNLEIETGEIDGAGHASATGRFDDEQLFYLMARGIPEIDARRLVVRGFFAELIQDIGVASVQDRLLASIEAELEKSMSVITGVASDAENANANANANA
AK018_05438348hcaC_23-phenylpropionate/cinnamic acid dioxygenase ferredoxin subunitGTGAGCAACCAGATCGCCTGCGCCACCGACGACCTGGCCCCCGAGGAGGCCCTGCTCGTCGAGCTGACGTCCGCCGACGGTGCCGCCGTGCCCGTCGCCGTCGTCCGTGACGAGGACGGCGACTACCACGCCATCAGCGACGTGTGCTCCCACGGGGCCGTCTCGCTGTCCGACGGCGAGGTCGAGGGCTGCCTGGTCGAGTGCTGGCTGCACGGATCGCAGTTCGACCTGCGCACCGGCCGGCCGCTCCAGCTGCCCGCGATCCAGCCCGTGCCCGTCTACCCGGTGACGGTGGACGGCGACAAGGTGCTCGTCGACATCGACGCACCGCTCGCCGCCGCCTCCTGAMSNQIACATDDLAPEEALLVELTSADGAAVPVAVVRDEDGDYHAISDVCSHGAVSLSDGEVEGCLVECWLHGSQFDLRTGRPLQLPAIQPVPVYPVTVDGDKVLVDIDAPLAAASPGPT0019745_182DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019745-hcaC-K05710NANA
AK018_05439765sufC_1COG0396Vegetative protein 296ATGTCCACCCTGGAGATCCGCGACCTGCACGTCAGCGTCGAGACCAAGGAAGGCGCCAAGCCGATCCTGCGCGGCGTCGACCTGACCATCAAGTCCGGCGAGACGCACGCCATCATGGGCCCCAACGGCTCCGGCAAGTCCACCCTGGCCTCCGCCCTGGCCGGCCACCCCAAGTACGAGGTCACCTCGGGCACCGTCACGCTCGACGGCGAGGACGTCCTCGAGATGAGCGTCGACGAGCGCGCCCGGGCCGGCCTCTTCCTGGCCATGCAGTACCCCGTCGAGGTGCCCGGCGTGTCTGTGGCCAACTTCCTGCGCACCGCCAAGACCGCCATCGACGGCGAGGCCCCCGCCCTGCGCCACTGGGGCAAGGAGGTCAAGGGCGCGATGGAGAACCTGCGCATCGACTCCTCCTTCGCCGAGCGCTCCGTCAACGAGGGCTTCTCCGGCGGTGAGAAGAAGCGCCACGAGATCCTGCAGATGGAGCTGTTCAAGCCCCGCTTCGCGATCCTCGACGAGACCGACTCCGGTCTGGACGTCGACGCCCTGCGCGTCGTGTCCGAGGGCGTCAACCGGGCCAAGGAGACCACCGACGTCGGCGTGCTGCTCATCACGCACTACACGCGCATCCTGCGTTACATCAAGCCCGACTTCGTGCACGTCTTCGTCGACGGCAAGATCGCCGAGGAGGGCGGCCCCGAGCTCGCCGAGCGGCTCGAGGACGAGGGCTACGACCGCTTCCTGACCGCCGGCGCCACCGCCTGAMSTLEIRDLHVSVETKEGAKPILRGVDLTIKSGETHAIMGPNGSGKSTLASALAGHPKYEVTSGTVTLDGEDVLEMSVDERARAGLFLAMQYPVEVPGVSVANFLRTAKTAIDGEAPALRHWGKEVKGAMENLRIDSSFAERSVNEGFSGGEKKRHEILQMELFKPRFAILDETDSGLDVDALRVVSEGVNRAKETTDVGVLLITHYTRILRYIKPDFVHVFVDGKIAEEGGPELAERLEDEGYDRFLTAGATANANANANANA
AK018_054401296csd_1COG0520putative cysteine desulfuraseATGACCGCCACCGACACCGTGCGCCCGCTGACCGCGGCCGAGCTCGCCGCCGTGCGCGCCGACTTCCCGCTGCTCGGGCGCACGGTGCGGGGCGGCAAGCCGCTGGTCTACCTCGACTCGGCGGCCACCTCGCAGAAGCCGAACGTGGTCCTCGAGGCCGAGGTCGACTTCTACGAGCAGCGCAACGCCGCCGTGCACCGCGGAGCCCACCAGGTCGCCGAGGAGGCCACCGCAGCCTTCGAGGACGCACGGTCCGCCGTCGCGTCGTTCGTGGGCGCCGCCGACGACGAGATCGTGTGGACCCCCGGTGCCACGGCCGCGATCAACCTGGTCGCCTACGCCTTCGGCAACGCCACGGCCGGCCGCGGGGGAGCGGACGCCGAGAGGTTCCGCCTCGCCCCGGGCGACGAGATCGTCGTCACCGAGGCCGAGCACCACGCCAACCTGGTGCCCTGGCAGGAGCTGTGCGCCCGCACGGGTGCCGTGCTGCGGTGGTTCGGCGTCGACGACGACGGACGGCTCGACCTGTCCGACGTCGGCTCGGTGATCACCGAGCGCACCCGCGTCGTGGCCTTCGGGCACGTCTCGAACGTGACCGGCGCCGTCGCACCCGTGGAGACGCTCGTGGCCGCGGCCCGCGAGGTCGGGGCGTACACCGTGCTGGACGCCTGCCAGTCCGTGCCCCACCTGCCCGTGGACCTGCACGCCCTCGGCGTGGACTTCGCGGCGTTCAGCGCCCACAAGATGCTCGGCCCGACCGGCGTCGGTGCGCTGTACGGGCGGCGCGAGCTCCTCGAGGCCCTGCCACCTGTGACCACCGGCGGCTCCATGGTCGAGGTCGTCACGATGACCGAGACCACGTACATGCCGCCGCCGCAGCGCTTCGAGGCCGGCACCCAGATGGTCGCCCAGGCCGTCGGCATGGGGGTCGCCGCGCAGTGGCTCGACGAGCTCGGCATGGACCGGGTCGCCGCCCACGAGCGCGAGATCGCCGCCGAGCTGCTGAAGATCACCGAGATTCCCGGGATCCGTGTCATCGGGCCGAGCGACGACCGCGACCGGATCGGCGTCGTGTCGTTCGTCGTCGACGGCGTGCACGCCCACGACGTCTCCCAGGTGCTCGACGACCGCGGCATCGCCGTCCGGGTCGGGCACCACTGCGCCCAGCCGCTGCACCGGCGGTTCGGGGTCGCCGCCACGGCGAGGGCGTCCGCCTCGGTGTACACCGGGGTGGAGGACGTCGTCGCGTTCCGGGAAGCGTTGGCGGGGGTCCGCGCGTTCTTCGGGGCGGAGTGAMTATDTVRPLTAAELAAVRADFPLLGRTVRGGKPLVYLDSAATSQKPNVVLEAEVDFYEQRNAAVHRGAHQVAEEATAAFEDARSAVASFVGAADDEIVWTPGATAAINLVAYAFGNATAGRGGADAERFRLAPGDEIVVTEAEHHANLVPWQELCARTGAVLRWFGVDDDGRLDLSDVGSVITERTRVVAFGHVSNVTGAVAPVETLVAAAREVGAYTVLDACQSVPHLPVDLHALGVDFAAFSAHKMLGPTGVGALYGRRELLEALPPVTTGGSMVEVVTMTETTYMPPPQRFEAGTQMVAQAVGMGVAAQWLDELGMDRVAAHEREIAAELLKITEIPGIRVIGPSDDRDRIGVVSFVVDGVHAHDVSQVLDDRGIAVRVGHHCAQPLHRRFGVAATARASASVYTGVEDVVAFREALAGVRAFFGAEPGPT0020195_717DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0020195-sufS-K11717NANA
AK018_05441489sufU_1COG0822Zinc-dependent sulfurtransferase SufUATGAGCTCGCTGGAGCAGATGTACCAGCAGGTGATCCTGGACCACGCCAAGCACCCGCACGGGCGCGGCCTGGTCGACCCCGTCGTCGGACACCTGGCCGCCGAGTCGCACCAGGTGAACCCGACGTGCGGCGACGAGGTGACGCTGCGCGTGGACGTCTCGGACGGCACGGTCGAGACCGTGTCCTGGGAGGGTCAGGGCTGCTCGATCTCGCAGGCCTCGACCTCGGTGATGACCGAGCTCGTCACCGGGCGCCCGCTCGCCGAGGTCGCGGACCTGGACGCCGCGTTCCACGCGCTGATGGCCTCGCGGGGCAAGGGGCTGGACGACGACGCCGCGCTCGACGCGCTCGGGGACGCCGAGGCGTTCACCGGCGTCTCGCAGTACCCCGCCCGCATCAAGTGCGCGCTGCTCGGCTGGGCGGCGCTGAAGGACTCGCTGGCGCGCAGCGGCGCGCTGGCCGACCGACCCGGAGGATCGGATGACTGAMSSLEQMYQQVILDHAKHPHGRGLVDPVVGHLAAESHQVNPTCGDEVTLRVDVSDGTVETVSWEGQGCSISQASTSVMTELVTGRPLAEVADLDAAFHALMASRGKGLDDDAALDALGDAEAFTGVSQYPARIKCALLGWAALKDSLARSGALADRPGGSDDPGPT0000075_554DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATIONN-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000075-nifU|iscU-K04488NANA
AK018_05442360hypothetical proteinATGACTGACAACCCGACCGAGACCGCGCCCGAGCAGGCGACGGCACCCGGCGCGACCACCGCGGCCGACGTCGAGGAGGCGCTGCGCGACGTCATCGACCCCGAGCTCGGCATCAACGTGGTCGACCTCGGGCTCGTCTACGGCGTCGAGGTGGACCAGAACAACCACGCCACCATCGACATGACGCTCACCTCGGCGGCCTGCCCGCTGACCGACGTCATCGAGGACCAGGCCGGCCAGGCGCTCGAGGGCATCGTGACCGGTCAGCGCATCAACTGGGTCTGGATGCCGCCGTGGGGCCCGGAGAAGATCACCGACGAGGGCCGCGAGCAGCTGCGGATGCTCGGCTTCAACGTCTGAMTDNPTETAPEQATAPGATTAADVEEALRDVIDPELGINVVDLGLVYGVEVDQNNHATIDMTLTSAACPLTDVIEDQAGQALEGIVTGQRINWVWMPPWGPEKITDEGREQLRMLGFNVNANANANANA
AK018_05443921COG0589Universal stress proteinATGACCGAGTCGACCATCCTGGTCGGAGTCGACGACTCCGCCGAGGCCGCCAACGCCCTGGACTGGGCCGCCGCCTACGCCGGGCGCACCGGCGCCGCCCTGCACGTCGTGAGCAGCTACGCCCTGCCCGGGTTCTTCCTGCCCTTCGACGAGGACGGCAAGCGCATCGTCCCCGACGACGTCCGGGTCCGCACCGCCGTGGAGCGCACGCTCGCCCATGCCGCCGCGCGCGCCGAGCGGGCCGGGGCCACGGTCACCACCGAGGTCGCGACGGGCGATCCCACCGGGGTGCTCGTCGAGCGGTCGGGCGACCACGCGCTCGCGGTCGTGGGGTCGCGCGGGCACGGCGGGTTCGCCGAACGGCTGCTCGGCACGGTCTCCGCCACGCTGCCGGCCTACTCCCGCTGCCCCACCGTCGTGGTGCCGTTCCGCCAGGAGTCCGAGCCGCTCGTGCCGGACGACGACGCGTCCACCGACGAGGTGCGCCGGTACGGCCGCGTCGTCGTCGGCGTAGACGGCTCGTCGGGCTCGGACACCGCCATGCGGTTCGCGGCCACGGTCGCCCGTGCCCTGGACGCCGAGCTGCTCGTGGCGCACGCGGTCCCCGCGGACCGCTGGGGTCAGCTGCCGTGGACGCCGTCCCGTCCGGACCGCGACACCGTGCTCTCGTCCGCCACGGACGAGCTGGCGGCGGCCGTCGAGGCGTTGCGTGCGGACGCGCCCGCCGTGACCGTCACGCCCCGGGTGGTCGACGGCGGCGCGGGTCCGGCGCTGGCCCAGCTGTCCGAGACCGCCGACGTCGTCGTGGTCGGGTGCCGAGGACGCGGCGGGTTCCAGGGGCTGCTGCTCGGCTCCACCAGCCAGTCGGCGCTGCGCGGCGCCCACTGCCCGGTGCTCGTCGTGCGCGGTGAGGAAGCCTGAMTESTILVGVDDSAEAANALDWAAAYAGRTGAALHVVSSYALPGFFLPFDEDGKRIVPDDVRVRTAVERTLAHAAARAERAGATVTTEVATGDPTGVLVERSGDHALAVVGSRGHGGFAERLLGTVSATLPAYSRCPTVVVPFRQESEPLVPDDDASTDEVRRYGRVVVGVDGSSGSDTAMRFAATVARALDAELLVAHAVPADRWGQLPWTPSRPDRDTVLSSATDELAAAVEALRADAPAVTVTPRVVDGGAGPALAQLSETADVVVVGCRGRGGFQGLLLGSTSQSALRGAHCPVLVVRGEEANANANANANA
AK018_054441497hypothetical proteinGTGGCCCCACCCGACGTCCGTGTCCCCCGCGCTCTCCCGACGGTCGTCGCGGTCTCGACCGTCCTCGCGGGTCTCGGTGCGCGGGCGTTCCTGCGCGACGATGTCGCCGGCCCGGTCGGCGACGCCCTCTACGCCGCCCTGCTCGTGTGGCTCGTCGCGCTGGTCGCCCCCGCCGTCCGGCCGGCCACGGCCGCGGCGCTCGCGCTGCTGGTCGCCACCGCGGTCGAGCTGTCCCACCTCACGGACGTCCCGGCCACGGTCCTCGACCGGTTCCCTCTCGCCCGGTACGCGCTGGGCACGACGTTCAGCGCCGCGGACGTCCTCTGGTACGCGCTCGGTGCGGCGCTGGCCGGCGCGGTGCTGGCGCTCGCGCGACCGCGCGCCACCGTCGTCGACGAGGCCCTGCGGCACGTGCGCGAACGCCGCCGGCCACGGGCCCGGTGGGTCGCGGCCGTCGTCGTCCCCCTGGCCGTGCTGTGCGCCGTCGGTGCCGCAGGCGTGGGGGCCGAGCGCGCGCTGCGGCTCGAGGCGGACGACCTCACCGCACAGGTCATGGCCGCCGAGTCGGAGCTGGCCGCAGCGGAGGGCAGGGTCGCCGACCCCGCGACGCGCACTGCCCTGAGCGACTCCCTCGACGCCGCCACGGCGCTGCTGGCGAGCCGGCCCGTCCTCGACCGCGGGCCGGGCGACGCCGTCGTGGCCGGCGATCGCCTGGAGCAGGCTGCCGCGACCGTCCACGCGTCCCGTCGCACGTTCGCGACCGAGCAGATCGGTGCCCAGCGCGAGACCGTCGCCCCCGTGCGTCGCCGTGCCGAACGCATCCTGGCCGCGACGGACCGCCTGGCGGACGCCGGGACCGCAGCGAGCGAGGCAGCTCGGACCGCGCTGCGCGACGCCGTGGGCACGGCGGACGAGGCCGTGTCGGCCACCGCTGCGGACCGGCTGGACGCGATGGCGCTCGACGAGCTGGAGGACGCCGCCCCGGACCTCTCCGCACGGCGCGACGACGTCGACCGGGCGACCACCGCACTGATGGTCGCCCAGGACGCGGCCTCCTGCCCGGAGGACGACCAGCGCTGGTGGCCCCGGGGTGGCCGCCTCGCCGACGACGAGCTCGCGCCGATCCCCTGGGCCCCGGAGCACGAGATCCGCGCCGACCTCCTCGACGGCCTCGTCGCCCTCGACGAGGCCTACCGGGCCGAGTTCGGCGTGCACCTGACGGTGAACTCCGCGTACCGCTCCTACGACCAGCAGCTCGCGGTCCACGACCCGCAGGACCCGAACCCGCTGGCCGCTCCCCCGGGCTGCTCGAACCACGGGCTGGGCACCGCCGTCGACCTCAGCATGGGGCCGGGGAGCTTCGACGGGGCTCCGTACCTCTGGCTGCAGGAGCACGCCGGCGAGTTCGGCTGGCAGCACCCCGGGTGGGCGGGACCGGCCGGACGGCTCCCCGAACCGTGGCACTGGGAGTCGGTGGAGACACCCACGGAGTACTGAMAPPDVRVPRALPTVVAVSTVLAGLGARAFLRDDVAGPVGDALYAALLVWLVALVAPAVRPATAAALALLVATAVELSHLTDVPATVLDRFPLARYALGTTFSAADVLWYALGAALAGAVLALARPRATVVDEALRHVRERRRPRARWVAAVVVPLAVLCAVGAAGVGAERALRLEADDLTAQVMAAESELAAAEGRVADPATRTALSDSLDAATALLASRPVLDRGPGDAVVAGDRLEQAAATVHASRRTFATEQIGAQRETVAPVRRRAERILAATDRLADAGTAASEAARTALRDAVGTADEAVSATAADRLDAMALDELEDAAPDLSARRDDVDRATTALMVAQDAASCPEDDQRWWPRGGRLADDELAPIPWAPEHEIRADLLDGLVALDEAYRAEFGVHLTVNSAYRSYDQQLAVHDPQDPNPLAAPPGCSNHGLGTAVDLSMGPGSFDGAPYLWLQEHAGEFGWQHPGWAGPAGRLPEPWHWESVETPTEYPGPT0024055_52DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_054451599yheS_2COG0488putative ABC transporter ATP-binding protein YheSTTGATCACCGCCCACGGCGTCGAGCTGCGCTTCGGCGCCCGCGTCCTGCTGCACGAGGCCACCTTCCGGGTGGCCCCGGGCGACCGCGTCGGCCTGGTCGGCCGTAACGGCGCCGGCAAGACCACGCTCACGAAGACCCTGGCGGGCGAGACCCTGCCGGCCGGCGGGACGATCTCGCGCGGGAACGAGATCGGCTACCTACCGCAGGACCCGCGCACCGGCGACCTCGACGTCGTCGCCATGGACCGTGTGCTCAGCGCTCGCGGCCTGGACACCATCGTGACGAAGATGCGCCAGGCCGAGAAGGACATGGCCAGCGAGGACCCGGACGTCCAGGCGAAGGCGCTGGAGCGCTACCCGAGGCTGGAGACGCGGTTCCTGGCGGCCGGCGGCTACTCCGCGGAGTCCGAGGCCCACCGCATCACCAGCAACCTCGCCCTGGACGACCGCATCCTGGCCCAGCCGCTGCACACGCTCTCCGGTGGCCAGCGGCGCCGGGTCGAGCTGGCCAGGATCCTGTTCTCCGGCGTCGACACGCTCCTGCTCGACGAGCCCACCAACCACCTCGACGCCGACTCGATCGTGTGGCTGCGCGAGTACCTGCGGTCCTACTCCGGCGGGTTCATCGTGATCTCCCACGACGTCGAGCTGCTGCGGGCGACGGTGAACAGGGTCTTCCACCTGGACACCAACCGGGGCGAGCTCGACCAGTACAACCTGGGCTGGGACAAGTACCTCGAGCAGCGGGAGCAGGACGAGCGCCGGCGTCGGCGCGAGCGCGCCAACGCCGAGAAGAAGGCCGGCACGCTGCTGGCCCAGGCCAACAAGATGCGGGCCAAGGCGACCAAGGCGACCGCCGCGCAGAACATGATCAAGCGGGCCGAGCGGATGCTCGCGGACACCGAGACCGAGCGGCAGACCGACAAGGTGGCCGCGCTACGCTTCCCGAAGCCGGCACCCTGCGGCAAGACGCCCCTGACGGCGCGCGAGCTGTCCAAGAGCTACGGGTCGCTGGAGGTCTTCACCGGCGTGGACCTGGCGATCGACCGCGGCTCGCGCGTCGTGATCCTGGGGCTCAACGGTGCGGGCAAGACGACGATGCTGCGGCTGCTGGCTGGCGTCGAGACGCCCGACACCGGCGAGGTGCTCCCCGGGCACGGGCTCAAGATGGGCTACTACGCCCAGGAGCACGACATGCTCGACATGGACGCCACGGTCGTGGAGAACCTGCGGCACGCCGCCCCGGACCTCACCGACACCCAGGTGCGCACCACCCTCGGGTCGTTCCTGTTCAGCGGTGAGGACGCCGACAAGCCGGCACACGTGCTCTCCGGCGGGGAGAAGACGCGCCTCGCGCTGGCCACCCTCGTGGTCTCGAGCGCGAACGTCCTGCTGCTCGACGAGCCGACGAACAACCTCGACCCGGCCTCGCGCCGCGAGATCCTGGGCGCGCTGAACACCTACGAGGGTGCGGTCATCATGGTCACGCACGACGACGGTGCCGTCGACGCCCTCAACCCGGAACGGGTGCTGCTGCTCCCGGACGGCGACGAGGACCTGTGGTCGGACGACTACGCGGAGCTCGTGTCCCTGGCGTGAMITAHGVELRFGARVLLHEATFRVAPGDRVGLVGRNGAGKTTLTKTLAGETLPAGGTISRGNEIGYLPQDPRTGDLDVVAMDRVLSARGLDTIVTKMRQAEKDMASEDPDVQAKALERYPRLETRFLAAGGYSAESEAHRITSNLALDDRILAQPLHTLSGGQRRRVELARILFSGVDTLLLDEPTNHLDADSIVWLREYLRSYSGGFIVISHDVELLRATVNRVFHLDTNRGELDQYNLGWDKYLEQREQDERRRRRERANAEKKAGTLLAQANKMRAKATKATAAQNMIKRAERMLADTETERQTDKVAALRFPKPAPCGKTPLTARELSKSYGSLEVFTGVDLAIDRGSRVVILGLNGAGKTTMLRLLAGVETPDTGEVLPGHGLKMGYYAQEHDMLDMDATVVENLRHAAPDLTDTQVRTTLGSFLFSGEDADKPAHVLSGGEKTRLALATLVVSSANVLLLDEPTNNLDPASRREILGALNTYEGAVIMVTHDDGAVDALNPERVLLLPDGDEDLWSDDYAELVSLANANANANANA
AK018_05446996hypothetical proteinGTGAGGCGGACCCGCCGGCAGTGGGTCACGCTCGGCCTCGCCGCCGTCCTGCTCGCCGCGCTGTGCGTCGTGGCGGCGTTCTGGCAGTGGCACCGCTACACCGACCGCCAGGCCCAGATCGCGCTCGTGGAGTCCAACTACACCTCGCAGCCGGTCCCCCTGACCGACGTGCTGTCGGGGCCGGGCGACGCGCTGGACGGCGACGACGAATGGCGGCCCGCCGTCGTCGTCGGCGAGTACGCGACCGAGGACACCGTGCTGCTGCGCAACCGGCCGGTGAACGGCACGCCGGGCTTCCACGTGCTGGTGCCGCTGCGCACCGAGCTGGACGGCACCGCGACCGTGCTCGTGGTGGACCGGGGATTCGTGCCGCTCGGCGCGGACGCCAGCGGACCGGCCGCCGTCCCCGACCCGCCGGCGGGCGAGGTCACCGTGACCGTCACGCTGCGACCCGACGAGCCGGCGTCCGACCGCGGCGCGCCCGCCGGGCAGGTCCAGCGCATCAACACCGAGCAGGTGCTGGCCGAGGGCCGCGACGGCGGCGCCTGGGCCGACGGCGCGACCGTCGGGGCGTACGGGCAGCTGCGTGCCGAGGACCCGGCCGCCGCCGTGGCGCTGGTCCCGGCCCCCCGGCCCGACACGGATCCCGGGTCCCACCTGAGCTACACGTTCCAGTGGGTCATCTTCGCCCTCGGTGCCGTGGGCGGGTTCGTGCTGCTGTGGCGCCGCGAGACGCGCGCGGCGACGGTCACCGCCGGGGAGCTCCTCGCCGCCGAGGACCCCGACGGCACGTCACGGCCGCCGCGGCAGCGGCGCCGGCGGGTCGACGAGGAGTACGAGGACGCGCTGGTCGACGCCGCCCACCAGGTCCCCGGGGGGGGGGCCGCCCCCCCCCCGGGGGGGCCCCCCCGGGGGGGGGGGGCCCCCCCGGGGGGGGGGGACGCGCCCCCCCCGGGGGGCCGCNNNNNNNNNNCGAGATCGACGCACCCGGACTGAMRRTRRQWVTLGLAAVLLAALCVVAAFWQWHRYTDRQAQIALVESNYTSQPVPLTDVLSGPGDALDGDDEWRPAVVVGEYATEDTVLLRNRPVNGTPGFHVLVPLRTELDGTATVLVVDRGFVPLGADASGPAAVPDPPAGEVTVTVTLRPDEPASDRGAPAGQVQRINTEQVLAEGRDGGAWADGATVGAYGQLRAEDPAAAVALVPAPRPDTDPGSHLSYTFQWVIFALGAVGGFVLLWRRETRAATVTAGELLAAEDPDGTSRPPRQRRRRVDEEYEDALVDAAHQVPGGGAAPPPGGPPRGGGAPPGGGDAPPPGGRXXXXRSTHPDNANANANANA
AK018_05447240hypothetical proteinATGGACGTGCTCGGGCTCGGCGCCGACCCCGTCGCCACCGACGCGCTGGTCTGCTCGGCCAAGGGCTGCCGCTCTGACGCCCGCTGGGGCCTGCTGTGGAACAACCCGAAGCTGCACGCTCCCGCACGCCGCAAGGTGTGGCTCGCGTGCGACGACCACCGTGAGCACCTCGAACAGTTCCTCGGCGCGCGCGGCTTCTGGAAGCAGACCGTGGACGTCGACGACCTGGAGCACGTGTGAMDVLGLGADPVATDALVCSAKGCRSDARWGLLWNNPKLHAPARRKVWLACDDHREHLEQFLGARGFWKQTVDVDDLEHVNANANANANA
AK018_05448402hypothetical proteinGTGAGCACGCCCCGCCACCCCGAGGTCACCTCGATCACGGCGGTCCCGACCTCCATGGCCGAGGACCAGGGCCGACGCCTGCGCCAGTACATGGCGCAGATGGGCCTGCGGATCGTGCTCATCATGCTCGCGGCGTTCTTCGTGGACGGCTGGCTGCTGTGGGTGTGCATCGCCGGGGCGATCGTGCTGCCGTACACCGCGGTGATCTTCGCCAACGCCGGGCGCGACCGCACGACCCACGAGGTCGCCGCCGTCCCGCCGGTCCCGCCCGCCGAGCTGCCCGCCACGCCCACGGCGCCGCCGGCGGAGCAGCACCGGGTCGTGGAGCACCGCGTGGTGGACCACCAGGAGGGCGACCAGGCCGCGGGCACCGACGACACCGACCGGAAGGACGACGACTGAMSTPRHPEVTSITAVPTSMAEDQGRRLRQYMAQMGLRIVLIMLAAFFVDGWLLWVCIAGAIVLPYTAVIFANAGRDRTTHEVAAVPPVPPAELPATPTAPPAEQHRVVEHRVVDHQEGDQAAGTDDTDRKDDDNANANANANA
AK018_05449726fabG_33-oxoacyl-[acyl-carrier-protein] reductase FabGGTGGCACAGCCAGCAGAGCACACGGGCCGGGTCGTCGTCGTGACCGGTGCCGCCCGGGGGATCGGGCGCGCCATCGCCGAGCGGTTCGTGGCCGCGGGGGACACCGTCGCCACCCTCTACCGGGGCGGCGAGCTGCCCGACGGCGTCCACGGGTTCGTGGCCGACGTCACCGACAGCGCCGCCGTCGACGCGGCGTTCGGCGAGATCGAGCAGCAGCTCGGCGCGCCGACGGTGCTCGTCGCCAACGCGGGGGTCACCCGCGACCAGCTGCTGATGCGCATGAGCGACGACGAGTTCGACCAGGTGGTCGACGTCAACCTCACCGGGACGTTCCGCTGCGTGCGCCGGGCGTCCAAGGGGATGATCCGGGCGCGGACCGGCCGCATCGTGCTCATCGGGTCGGTCGTCGGGCTGTACGGCGGTCCGGGACAGGTCAACTACTCCTCGACCAAGGCCGCCCTGGTGGGCATGGCGCGGTCGATCACCCGCGAGCTGGGCGGGCGGGGCATCACCGCGAACGTCATCGCCCCCGGCTTCGTCGAGACCGACATGACGGCCGCGCTGCCCGAGGACACCCAGAAGAAGTACAAGGCCTCGATCCCCGCCGGCCGCTTCGCCGCCACCGAGGAGGTGGCCGGGGTGGTCGAGTTCCTCGCCTCGGACGCCGCCGGCTACGTCTCCGGCGCGGTCGTGCCCGTCGACGGCGGCCTCGGCATGGGGCACTGAMAQPAEHTGRVVVVTGAARGIGRAIAERFVAAGDTVATLYRGGELPDGVHGFVADVTDSAAVDAAFGEIEQQLGAPTVLVANAGVTRDQLLMRMSDDEFDQVVDVNLTGTFRCVRRASKGMIRARTGRIVLIGSVVGLYGGPGQVNYSSTKAALVGMARSITRELGGRGITANVIAPGFVETDMTAALPEDTQKKYKASIPAGRFAATEEVAGVVEFLASDAAGYVSGAVVPVDGGLGMGHPGPT0003180_21916DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_05450768inhA_1COG0623Enoyl-[acyl-carrier-protein] reductase [NADH]ATGCCTCTGCTCGCCGGCAAGAAGCTGCTCATCACCGGCGTCCTCACGGACAGCTCCATCGCCTTCCACGCCGCCCGGCTCGCCCAGTCCGAGGGGGCCGAGGTCGTCCTGACGTCGTTCGGGCGTCAGATGAAGCTCACCCAGGCCTTCGCCAAGCGCCTGCCGTCCCCGGCGCCCGTCGTCCAGCTCGACGTGACCAGCCCCGAGGACCTCGCCTCGCTCGCCGACCAGGTGCGTGAGCACATCGACCGGCTCGACGGCGTCGTGCACTCCATCGGTTTCGCCCCGCAGTCCGTCATGGGCGGCAACTTCCTGTCCGCCGAGTGGGACGACGTCGCCACCGCGCTGCAGATCTCGACCTACTCGTACAAGTCCCTGATCACGGCGGCCCAGCCGCTGATGACCGACGGCGGTGCCTACGTCGGCCTGACGTTCGACGCGGAGTTCGCCTGGCCGGTCTACGACTGGATGGGCGTGGCCAAGGCCGGCCTGGAGTCGGCGAACCGCTACCTCGCCCGCGACCTCGGCCCGGCCGGCATCCGGGCGAACCTGGTCTCGGCGGGCCCGATCCGCACCACGGCGGCCAAGTCGATCCCCGGCTTCGAGACGATGGAGGACAACTGGCCCCGGCGTGCCCCCCTCGGGTGGGACCAGACGACGGCGGAGCCGGCGGCGCGTGCCGTCGTCGCCCTCCTGTCGGACTGGTTCCCCGCGACGACGGGCGAGATCGTGCACGTGGACGGCGGCGTCCACGCGATGGGGCAGTGAMPLLAGKKLLITGVLTDSSIAFHAARLAQSEGAEVVLTSFGRQMKLTQAFAKRLPSPAPVVQLDVTSPEDLASLADQVREHIDRLDGVVHSIGFAPQSVMGGNFLSAEWDDVATALQISTYSYKSLITAAQPLMTDGGAYVGLTFDAEFAWPVYDWMGVAKAGLESANRYLARDLGPAGIRANLVSAGPIRTTAAKSIPGFETMEDNWPRRAPLGWDQTTAEPAARAVVALLSDWFPATTGEIVHVDGGVHAMGQPGPT0008370_3443DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008370-fabI-K00208NANA
AK018_05451558hypothetical proteinATGAAGCATCCCAGGCCGTCGGACGACGCCCCGCTGCCGGGGCGTCGTCTCGTCCTGCTCCGCCACGCCAAGGCGGAACCGGCGAAGAGCTCGGCGACCGACGTCGAGCGGCCGCTGGCGACCCAGGGTCGCAAGCAGGCCGGGCGCGTCGGGATGGCGCTGACGGCAGCGGGCCTCGTGCCCGAGCTCACGCTCGTGTCCTCGGCGCTGCGGACCCGCCAGACCTGGGACCTGGCCCGCCACCACCTCGGGCACCACCAGGCGGACCTGCCGTTCGAGGTGCGCCGGGAGCTGTACTCCGCGAGCGTCTCGGACGTCCTGGAGCTCGTGCGCGGCGTCGACCCGGACGTGCGCACGCTGCTCGTCATCGGCCACGAGCCGACGATGGCCGCCACGGCCGCGCACCTGGCCGACAAGAGCTCCGACGACGCGGCCCTGGCCCAGGTGCGGGTCGGGGTGCCCACCGCTACGTTCTCGGTGCTGCACGCGACCAAGCTGCCCTGGGACCGGTGGGGCAAGAAGTCCGCCACCCTGGCGCGGGTCGGCCGCCCGTCCTGAMKHPRPSDDAPLPGRRLVLLRHAKAEPAKSSATDVERPLATQGRKQAGRVGMALTAAGLVPELTLVSSALRTRQTWDLARHHLGHHQADLPFEVRRELYSASVSDVLELVRGVDPDVRTLLVIGHEPTMAATAAHLADKSSDDAALAQVRVGVPTATFSVLHATKLPWDRWGKKSATLARVGRPSNANANANANA
AK018_05452702serB_1COG0560Phosphoserine phosphataseTTGCCTGACCGCGCCACCGCGCCCCTGCCCGACCCGACCGATCTCGCCGGCACCGGCGGCCGCCGTCGCCTCGTCGTCACCGACGTCGACTCGACGTTCCTCACCGGCGAGGTCATCGAGCTGATCGCCGACCACGCGGGCACACGCGAGGCGGTCGCGGCCGTGACCGAGCGGGCCATGCGCGGCGAGCTCGACTTCGCCGAGTCGCTGCGCGAGCGCGTCGCGACGCTGGCGGGCGTACCGGTCACCGCCCTGGACGCCGTGCGGGACGCCGTCGTGCTCATGCCGGGCGCCGCCGAGCTGGTGGCCGAGGTCCGCCGTCGGGGATGGGAGTTCGGGCTGGTCTCCGGCGGGTTCGCGGAGGTCCTGGAGCCGCTCGCCGCCTCGCTCGGCATCACGCGCTGGCGGGCGAACCGCCTGGAGTCCGTCGACGGCGTCCTGACGGGCCGGACCGTCGGTCCCGTCGTGGACCGGGCCGTCAAGGAGGCCACCCTGCGCGGGTGGGCGGCCGACCTGGGGCTGTCGATGGCCGACACCGTCGCGGTCGGGGACGGCGCCAACGACCTCGACATGATCGGCGCGGCCGGGGTGGGCATCGCGTTCGCCGCCAAGCCGCTGGTGCGCGCCCAGGCGCCCTACAGCGTCGACGGGCCGCGCCTCGACGAGGTGCTGCGCGTCGTGGACGAGGTCGACGCGGCCTGAMPDRATAPLPDPTDLAGTGGRRRLVVTDVDSTFLTGEVIELIADHAGTREAVAAVTERAMRGELDFAESLRERVATLAGVPVTALDAVRDAVVLMPGAAELVAEVRRRGWEFGLVSGGFAEVLEPLAASLGITRWRANRLESVDGVLTGRTVGPVVDRAVKEATLRGWAADLGLSMADTVAVGDGANDLDMIGAAGVGIAFAAKPLVRAQAPYSVDGPRLDEVLRVVDEVDAAPGPT0014525_44DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
AK018_054531245glgC_1COG0448Glucose-1-phosphate adenylyltransferaseATGGCGTCGTCACATCCCCGGGTCCTGGCCATCGTCCTCGCCGGCGGCGAGGGGAAGCGGCTCATGCCGCTCACCTCCCAGCGGGCCAAGCCGGCGGTGCCGTTCGGCGGGATCTACCGGCTGGTCGACTTCGCCCTGTCGAACATCATCAACTCCCACTACCTGCACGTCATCGTGCTGACGCAGTACAAGTCGCACTCGCTGGACCGCCACATCTCCAAGACGTGGCGCATGTCCGCGCTGCTCGGCAACTTCGTGTCGTCCGTGCCGGCGCAGCAGCGCGTCGGCAAGCACTGGTACCTGGGTTCGGCCGACGCCATCTACCAGTGCCTCAACATCATCGACGACGAGCGTCCCGACATCGTGGTGGTGGTCGGCGCCGACCACGTCTACCGCATGGACTTCTCCCAGATGGTCGAGGCGCACGTGGAGTCGGGGGCGCGTGCCACCGTCGCCGCGATCCGCCAGCCGATCTCGCTGGCGGACCAGTTCGGCGTCATCGACGTCGACCCGGCCGACCCGACGCGCATCCGCGAGTTCCTGGAGAAGCCGGTGAACCCGGTCGGGCTGCCGGACTCCCCCACCGAGATCCTGGCCTCGATGGGCAACTACGTGTTCGACGCCGACGCGCTGGTCGAGGCGGTCACGAAGGACTCGACGAACCCGGACTCCCGGCACGACATGGGCGGCGACATCGTCCCCGCGTTCGTGGCCGACGGCACCGCGGGCGTGTACGACATGGTGCGCAACGAGGTCCCGGGTGCCACCGACCGCGACCGCTACTACTGGCGCGACGTCGGCACGATCGACGCCTACTTCGAGGCGAACAAGGACCTCATCGCCGTCCAGCCCGTCTTCAACCTCTACAACGAGGACTGGCCCCTGTTCACGGGCTACACGGGCCTGCCCCCGGCGAAGTTCGTGCATGCCGGGCCCGGCCGGCTCGGGCACGCCGCGGACTCGATCGTCTCACCAGGTGTCCTCGTCTCCGGCGCGACCGTCGCGGGGTCCATCCTGTCCCCCGGAGTGCACCTGCACTCCTGGGCGACCGTCACCGACTCCGTCCTCATGGACGGTGTCCAGGTGAACCGGCACGCCCAGGTCCACCGCGCCATCCTCGACAAGAACGTGGTGGTGGACGAGCGTGCCCGGATCGGCGTCGACCACGAGGAGGACCGGGCCCGCGGGTTCACCGTCACCGACTCGGGGATCACCGTCGTCCCGAAGGGTTCCCACGTTGCCTGAMASSHPRVLAIVLAGGEGKRLMPLTSQRAKPAVPFGGIYRLVDFALSNIINSHYLHVIVLTQYKSHSLDRHISKTWRMSALLGNFVSSVPAQQRVGKHWYLGSADAIYQCLNIIDDERPDIVVVVGADHVYRMDFSQMVEAHVESGARATVAAIRQPISLADQFGVIDVDPADPTRIREFLEKPVNPVGLPDSPTEILASMGNYVFDADALVEAVTKDSTNPDSRHDMGGDIVPAFVADGTAGVYDMVRNEVPGATDRDRYYWRDVGTIDAYFEANKDLIAVQPVFNLYNEDWPLFTGYTGLPPAKFVHAGPGRLGHAADSIVSPGVLVSGATVAGSILSPGVHLHSWATVTDSVLMDGVQVNRHAQVHRAILDKNVVVDERARIGVDHEEDRARGFTVTDSGITVVPKGSHVAPGPT0025885_2271DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0025885-glgC-K00975NANA
AK018_054541263glgM_1COG0438Alpha-maltose-1-phosphate synthaseATGCCGCGCGACGCGGCGGCAGACGATACCTTGGCCTGCGTGAGCACCGTACCGAGGGTCGACCTGCTGACCCGCGAGTTCCCGCCGCACGTCTACGGCGGCGCCGGCGTCCACGTCGCCGAGCTGTCCGCCGTCCTGCGCCCGCACGCCGACGTCCGCGTGCGCTGCTTCGACGGCCCCCGCCCGGACCCCGGCGTCACCGGCTACGACGTCCCCGACACGCTCGCCGGGGCGAACGCCGCGCTGCGCACTCTCGGTGTCGACCTGGCGATGGCCGACGACGTCGCCGGCGCCGACCTGGTGCACTCCCACACGTGGTACGCCAACCTCGCGGGGCACCTCGGGTCCCTGCTGCACGGCGTGCCGCACGTGATCACCGCGCACTCGCTCGAACCCCTGCGACCGTGGAAGGCCGAGCAGCTCGGCGGCGGCTACGCCGTCTCGAGCTGGGCCGAGCGCACCGCCTACCTGGGGGCGGCCGGCATCATCGCCGTCTCGGCCGGCATGCGCGCCGACATCCTGCGCTGCTACCCCGACCTGGACCCCGACCGCGTGCACGTGGTGCATAACGGCATCGACCTGGACGGCTGGGTGCGTCCCGGACCCGACGAGACCGCGCGCGTGGCGGTGTCGCACGGCATCGACCCGCAGCGTCCGGCCGTCGTGTTCGTCGGCCGCATCACGCGGCAGAAGGGCCTGCCCCACTTCCTGCGTGCGGCCGCACGCCTGCCCCGCGAGGTCCAGGTCGTGCTGTGCGCCGGAGCGCCCGACACCCCGGAGATCATGGCCGAGGTGCGCGGGCTGGTCGACGACCTGCGCACCGCCCGCGGCGGGGGAGACGCCGCCGGCGTGGTCTGGATCGAGCAGATGCTGCCCCGCCCCGAGCTCAGCGCGGTGCTCGCGGCATCCACGGCGTTCGTGTGCCCGTCGGTGTACGAGCCGCTCGGCATCGTCAACCTCGAGGCGATGGCGATCGGGCTGCCCGTGGTCGGCACCGCCACCGGCGGGATCCCCGAGGTCGTCGACGACGGCGTCACGGGAGTCCTGGTGCCGATCGACCAGGTCGACGACGGCACCGGCACCCCGGTCGACCCGGAGCGGTTCGAGACGGACCTCGCCGCGGCGCTCGCCGATGTCGTCGCCGACCCGGCTCGCGCCGCCGCGATGGGCGCGGCCGGCCGTCGTCGCGCCGAGGAGAGCTTCGCCTGGACCGCGGTCGCCGAGCGGACGATGGACGTCTACCGCGCCGTGCTGGCCCCGTGAMPRDAAADDTLACVSTVPRVDLLTREFPPHVYGGAGVHVAELSAVLRPHADVRVRCFDGPRPDPGVTGYDVPDTLAGANAALRTLGVDLAMADDVAGADLVHSHTWYANLAGHLGSLLHGVPHVITAHSLEPLRPWKAEQLGGGYAVSSWAERTAYLGAAGIIAVSAGMRADILRCYPDLDPDRVHVVHNGIDLDGWVRPGPDETARVAVSHGIDPQRPAVVFVGRITRQKGLPHFLRAAARLPREVQVVLCAGAPDTPEIMAEVRGLVDDLRTARGGGDAAGVVWIEQMLPRPELSAVLAASTAFVCPSVYEPLGIVNLEAMAIGLPVVGTATGGIPEVVDDGVTGVLVPIDQVDDGTGTPVDPERFETDLAAALADVVADPARAAAMGAAGRRRAEESFAWTAVAERTMDVYRAVLAPPGPT0017715_57DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017715-glgM-K16148NANA
AK018_05455612hypothetical proteinGTGAGCAACCGCGCGCCCCGTCGGCACGGTTCCCTCTGGGAGGACGTGCGCGGGCGCGGCGCCACCTTCAGCCCCGAGGAACAGGTCCGCCCGGCCGCGTTCCTGCGGGCGGGCCGCGGCGACGCCGCCACCCTGCTGGTCCTGCGCGCCGTGCGCCGCGCGGTCTGGCCGATCATCACCGTCGGCGCCGCCGTGGCGGTGCTGAACGGTGAGTTCACCGCCGAGGCGATCTCCCGCATCACCAACCCCGGGCAGTTCTTCGCCGTCATCCTGTCGCCGCTGGTCATCCTGGCCGCGGGCTGGGCGCTGCGGATCGTCGTCAACCTGGCCGGGCTCCTCCTGGCGGCGCCCCTCGCCCAGGCCGCCTGGGTCAAGGGCACCGAGGCGACTTCCCGCGGCCGGCGGCTGATCGACCTCGCCTACCTCTCCGCGGGCTACCGGTCGGTGCGGTGGTCGTACGCCGTCCAGCGCGAGGCCGTGCGCCGCTGCGGGATGCTCGGACGCCAGCTCGCGTGGGTGGAGACGCTCGGGAGGATCGCGCTGCCCGTCGCGATCGCGGTGTTCGTCGGGGCCGTCTGGTACCAGCTACCGACCGGGACGTCGGCGGGCTGAMSNRAPRRHGSLWEDVRGRGATFSPEEQVRPAAFLRAGRGDAATLLVLRAVRRAVWPIITVGAAVAVLNGEFTAEAISRITNPGQFFAVILSPLVILAAGWALRIVVNLAGLLLAAPLAQAAWVKGTEATSRGRRLIDLAYLSAGYRSVRWSYAVQREAVRRCGMLGRQLAWVETLGRIALPVAIAVFVGAVWYQLPTGTSAGNANANANANA
AK018_05456756COG4221putative oxidoreductaseATGTCGCACACCACCTCCACCAGCACCCCCGTCGCCGTCGTCACCGGCGCGAGCTCCGGCATCGGCGCAGCCACCGCCAGGTCGCTCGCGGCCGTGGGCTACGACGTCGTGCTCGGGGCGCGCCGGGTGGACAAGCTCGAGAAGATCGCCGCCGAGTGCGGCGGCCGGGCGATCCCGCTGGACGTCACCGACGACGACTCGGTGGCGGCGTTCGCCGCGCAGGTCGAGCGCTGCGACGTCCTCGTCAACAACGCGGGTGGAGCGCTCGGTACCGACTCGGTGGCCGAGGCCGATCTGGACGACTGGCAGTGGATGTACGACGTCAACGTGCTGGGCACGCTGCGTGTCACTCAGGCGCTGCTGAGCAAGCTGGTCGACTCGGGGGACGGTCAGGTCATCACGATCGGTTCCATCGCCGCGCGCGAGCCCTACAAGGGCGGGGCGGGCTACAACGCCGCGAAGCATGCCGTGGCCGCCCTGACCCGGGTCCTGCGCCTGGAGCTGCTCGGTCAGCCCGTCCGCGTCTGCGAGATCGACCCGGGCATGGTGCACACCGACTTCTCGCTCGTGCGGTTCAAAGGCGACCAGGCCAAGGCCGACGCCGTGTACGAGGGCGTCGAGCCGCTGACGGCCGAGGACGTCGCGGACACCGTGGGCTGGGTGGCCACCCGACCGCCGCACGTCAACATCGACCAGATCCTCATGCTCGCTCGCGACCAGACCTCCGCCCAGGTGGTCCACCGCCGCGAAGCCTGAMSHTTSTSTPVAVVTGASSGIGAATARSLAAVGYDVVLGARRVDKLEKIAAECGGRAIPLDVTDDDSVAAFAAQVERCDVLVNNAGGALGTDSVAEADLDDWQWMYDVNVLGTLRVTQALLSKLVDSGDGQVITIGSIAAREPYKGGAGYNAAKHAVAALTRVLRLELLGQPVRVCEIDPGMVHTDFSLVRFKGDQAKADAVYEGVEPLTAEDVADTVGWVATRPPHVNIDQILMLARDQTSAQVVHRREAPGPT0021285_544DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066NANA
AK018_05457726hypothetical proteinGTGAGCGTCCCGGTCGAGATCCTGCTGCTGGCCCTGGCGGCCGTCACCCTGTCGACGTTCGTGCAGTTCGCCACCGGGTCGGGGTTCGGGGTGCTCGGCGGACCGCTGCTGATGATCGTCGACCCCCGGCTGGTGCCCGGGCCGCTCCTGCTGCTCACGCTGGTGGTCATGGCGGCCGTGGTCGTGGTCGAGCGACGCGGCCTGCGCCACCTCGACCTGCTGTGGGCCGCCCTCGGCGGGATACCGGCCGCCGTCGGGGCGCTGTGGCTGGTCCGCGTCATGGACCAGCAGGTCACCGAGGTGGTGGTCGGGGCCGCCATCGCCCTGGGCACGATCGCGAGCCTGGCGGGATGGCGTGGGCGCCAGAACCGGGGGACGCTGGCGGCCGCCGGCGTCCTCGGCGGCGCCCTGTCGACGATCGCCGCGACCCCCGGGCCCCCGGCGGTCGTGGTCTACCGCGCCGACGACCCGTCGCGATACCGGGCCAACCTGTCGCTGTTCTTCCTGACCACGACGCTCGTGTCCCTGACGGTCTACGCCGTCTCCGGCGACCTCGGCCGCGGGGACCTGGAGGTCGCGTCCTGGCTCGTCTCCGGCGTGGGCCTCGGAGCGCTCGTCGCGCGGGTCCTGGTGCGCCGCATCCCCGCCGGTGCGATCCGGCCCGCCGCGCTCTGGTTGTGCCTGGTGTCCGCGGTGGGGCTGCTCGGCGGGGCGCTCGCGGGCTGAMSVPVEILLLALAAVTLSTFVQFATGSGFGVLGGPLLMIVDPRLVPGPLLLLTLVVMAAVVVVERRGLRHLDLLWAALGGIPAAVGALWLVRVMDQQVTEVVVGAAIALGTIASLAGWRGRQNRGTLAAAGVLGGALSTIAATPGPPAVVVYRADDPSRYRANLSLFFLTTTLVSLTVYAVSGDLGRGDLEVASWLVSGVGLGALVARVLVRRIPAGAIRPAALWLCLVSAVGLLGGALAGNANANANANA
AK018_054581272hypothetical proteinGTGAACCCCACCCACCGTCCGTCCCGCAGCGCGCGGACCGTCCTGACCGCCACGCTGGCGGCCGTGCTCGCCCTGGGCGTGACGCAGGCTGCCGGCGCCGAGGCGCCGGAGACGCCCCAGCGCGTCACGCTGAACCCGACCACCGCACCGGCCACGTCGCAGACGATCACCTGGCGCACGGCGGTGCGGACGGGATCCGTCGTCGAGCACGGACCGGCCGCCGGCGGAGCGACCACGACGTCGCCGGCCGCGGGGACCGGACAGGCCGGCGGAGGCTTCTACCACCGTGCCGAGCTCACCGGCCTGGCGCCGGGCACCACCTACCGCTACCGCGTCGGCGACGGCGAGGCGTGGAGCGGCTGGGCCGAGTTCACCACGGCGAGCGCCACCGCCGAGCCGTTCGAGCTGCTGTACTTCGGCGACGTGCAGAACGACATCACCGCCGGGGCCGCTCCGGTCGTGCGGGCCGCGTACGACGCCGTCCCGGACGCTGCGCTGGCGGTCCACGCCGGGGACCTGGTCAACGACCCCGAGTCGCAGAGCCAGTGGGACGAGTGGTACGCCGCTCAGGGCGACGCGACGGCCTCGATGAACCACGTGACGACGGTGGGCAACCACGAGTACGAGGACTGGGACCTCGCCTCGGTCTGGAACCACCAGTTCCCGGGCACGGGCAACGGTCCGGGCGACGACGACCTGGACGACACGGTCTGGTACACCGACTACCAGGGCGTGCGGTTCGTGACGTTGAACGGCAACTTCCAGGCGGCGCCGTGGTTCGACGTGAAGGACTGGATGGAGGACCAGGCGGCCTGGCTCGACCACGTCCTGAGCGACAACCCGAACGAGTGGACCGTGGTCACCTACCACCAGCCGATGTTCGGCAACTCCGAGGGGCGGTCCGGCGTGATCCCTCGGCACTACTGGCTGGACGTGATCGAGGAGCACGACGTCGACCTCGTGCTGCAGGGGCACGACCACTCCTACGGCCGCGGGGGCCTGCGCGAGAACGAGACCGGCCGGGCGGGCGTGACCACGGGTCCCGTCTACGTCGTCTCGGTGACCGGACCGAAGATGTACGAGCCGTCGCGGTTCGACTGGAACCTGGGCCGCGCCCGGGTGCGGACCCAGCTCGGCGACACGCAGACGTACCAGGTGATCTCCGTCGACGGCGACGTCCTCGGCTACGAGGCGCGCACCGTCGACGGCACCGTGGTCGACGCCTTCGAGATCGACAGGTCGGGCGACGCGAAGGTCGTGCGCGACCGCTGAMNPTHRPSRSARTVLTATLAAVLALGVTQAAGAEAPETPQRVTLNPTTAPATSQTITWRTAVRTGSVVEHGPAAGGATTTSPAAGTGQAGGGFYHRAELTGLAPGTTYRYRVGDGEAWSGWAEFTTASATAEPFELLYFGDVQNDITAGAAPVVRAAYDAVPDAALAVHAGDLVNDPESQSQWDEWYAAQGDATASMNHVTTVGNHEYEDWDLASVWNHQFPGTGNGPGDDDLDDTVWYTDYQGVRFVTLNGNFQAAPWFDVKDWMEDQAAWLDHVLSDNPNEWTVVTYHQPMFGNSEGRSGVIPRHYWLDVIEEHDVDLVLQGHDHSYGRGGLRENETGRAGVTTGPVYVVSVTGPKMYEPSRFDWNLGRARVRTQLGDTQTYQVISVDGDVLGYEARTVDGTVVDAFEIDRSGDAKVVRDRNANANANANA
AK018_05459765hypothetical proteinATGAGCGAGTCCACCGCCCTGCCCCGCAGCGTCGTGCTCGCCCTGTGGCTGCAGGCCACCGGCGCTTCGCACGGGCTCGCCGTCCGGTCGGTCACCGACGACGACGAGCCGCACACCGTCGTCGGGCTGCCGGGCAGCGCGGGCGAGGGCACCCTGGCGGACCTGGTCGCCGCGTTCTCCGCCGGCCCGCGCGAGGTCTGCGCCGCTCTGCCCGCACCCGGGGACCCCTGCGGGGTGCCGGCAGCGGCGGGTGCGCAGGCCACCGATGCCGGCGAGTGCGTGCTGCTCGCCACCCCGGCCGGGTCGTGGGCCGCCGTGCCCGAGGTGACGTTCTTCGGCAGCGAGCTCGAACCGGGTCATCTCGTCACCTGGCGGCTCCTCGAGGTGCCGGCGTGGTCCACGCTGGTGGCCGGGACGGTCGGCTCGCTGGCCGACGCCGAACGCGAGCTGCGCAGCAGCCTCGTCGTGGCCACCGAGGCCCTCGACTCCCTCGACGTCGCCCGGTGGCGGGACGACGCCGCCGACGCCATCGAGCACGTGCGCAGCTCGACCACCGCCGGCTGGCCCGTCCCCGAGCTCGAGGGACGCCGGGCCCGGGTGCTCCAGCTCGCCTGGAAGCTCCTCGCCATCGTGGACCTCGCGGGCGCCGACGACGGCGGGGCCGTCAACCTGTGGCAGGCCGACCAGCGCTCGACGGCGCTGCGCGAGGTGGAGCGCACGGCCCGTCGGGCCCTCGGGGCGGCCACCTACGCGGCGGTCCGCTGAMSESTALPRSVVLALWLQATGASHGLAVRSVTDDDEPHTVVGLPGSAGEGTLADLVAAFSAGPREVCAALPAPGDPCGVPAAAGAQATDAGECVLLATPAGSWAAVPEVTFFGSELEPGHLVTWRLLEVPAWSTLVAGTVGSLADAERELRSSLVVATEALDSLDVARWRDDAADAIEHVRSSTTAGWPVPELEGRRARVLQLAWKLLAIVDLAGADDGGAVNLWQADQRSTALREVERTARRALGAATYAAVRNANANANANA
AK018_05460807ylmA_1COG1119putative ABC transporter ATP-binding protein YlmAATGAGCGCGGTACTCGACCTGCAGGGTGTCACCGTCCGACGAGGCACCAACACCATCGTCGACAACATCGACTGGACCGTCTCGGAGGGGGAGCGCTGGATCGTGCTCGGCCCGAACGGGGCGGGCAAGACGACCCTGCTGCAGATCCTCGCCGCGAGGTCCCACCCGACGGCCGGCACGGTGGACCTGCTCGGCGAGCGGCTGGGCACCACGGACGTCTTCGAGTTGCGACCGCGCATCGGGTTCTCCTCCGCGGCGCTCGCCGACCGCATCCCCGGCGGGGAGACCGTGCGCGACGTCGTGCTGACCGCCGCCTACGGCGTCACCGGCCGGTGGCGCGAGGAGTACGAGCAGCTCGACGAGGACCAGGCCGCCGCCCTGCTGGCCGCGTTCGACGTCGCCGACCTCGTCGACCGGCGCTACGGCACCCTCTCGGAGGGGGAGCGCAAGCGCGTCCAGATCGCGCGGGCGCTGATGACGGACCCCGAGGTGCTGCTCCTGGACGAGCCCGCGGCCGGCCTGGACCTGGCCGGGCGCGAGGAGCTGGTCGGTGCCCTGAGCGAGCTGGCCGCGGATCCCGCGTCCCCGGTGCTGGTGCTCGTCACGCACCACGTGGAGGAGATCCCGCCCGGGTTCACCCACCTGCTGCTGCTCGGCGACGGCACGGTCGAGGCGGCCGGGCCGATCGAGGAGGTCCTCACGGCCGAGAACCTCTCGAAGGCGTTCGGGATGGACCTGCTGGTGGCCCACGGCGGCGGGCGGTGGCTGGCGCGCGCGGCGCGGTCCACGCGGACCTCCTCGCACTGAMSAVLDLQGVTVRRGTNTIVDNIDWTVSEGERWIVLGPNGAGKTTLLQILAARSHPTAGTVDLLGERLGTTDVFELRPRIGFSSAALADRIPGGETVRDVVLTAAYGVTGRWREEYEQLDEDQAAALLAAFDVADLVDRRYGTLSEGERKRVQIARALMTDPEVLLLDEPAAGLDLAGREELVGALSELAADPASPVLVLVTHHVEEIPPGFTHLLLLGDGTVEAAGPIEEVLTAENLSKAFGMDLLVAHGGGRWLARAARSTRTSSHPGPT0003760_3557DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_05461492hypothetical proteinATGGACGGCTGGTTGTGGTGGGTCGCCGGGGCGTTCGTCCTGGCCGTGGTGGAGATGCTGACCCTCGACCTGGTGTTCATCATGCTCGCCGGCGGCGCGGTGGCGGGTGGCATCACGGCGGGCGCCGGTGGGCCGCTGTGGCTCCAGATCGTCGTGGCCTGCGTGGTAGCGGTGCTGCTGCTCGGGGTGCTGCGGCCCTGGTTGCTGACCAACCTGCGTCAGCGTGAACCGCTGCAGGAGACCAACACCGCCGCCCAGGTGGGCCGGCTCGCCGTGGTCATCGCCGAGGTGACGGAGACCGGTGGGCGGGTCAAGCTCTCGGGCGAGGTCTGGTCGGCCCGCCTTCCCGACGACGGCATCGCCAACAGCAGCGGCCGCGTGCCCGAGGGGGTCGAGGTGCGGGTCGTGGCCATCGACGGCGCGACCGCCGTCGTCCAGCCCGCCGCCGCGCCGGACACGACCCCCACCGACGACGGCGGCCGGATCGCCTGAMDGWLWWVAGAFVLAVVEMLTLDLVFIMLAGGAVAGGITAGAGGPLWLQIVVACVVAVLLLGVLRPWLLTNLRQREPLQETNTAAQVGRLAVVIAEVTETGGRVKLSGEVWSARLPDDGIANSSGRVPEGVEVRVVAIDGATAVVQPAAAPDTTPTDDGGRIANANANANANA
AK018_054621185hypothetical proteinGTGGAACCAGGAACCATCATCCTCTGGATCGTCCTTCTCGCCTTCGTGGTCTTCGTGGTCACGGCGCTGTTCAAGATGGTCCGTGTCGTGCCGCAGGCCACCGCGCTGATCATCGAGCGCCTCGGCCGCTACCAGAAGACCTTCGACCCCGGCCTGCACTGGCTGGTGCCCTTCATCGACAAGGTGCGTGCCGGCGTCGACCTGCGTGAGCAGGTCGTCTCGTTCCCGCCGCAGCCGGTCATCACGTCCGACAACCTGGTCGTCGAGATCGACACCGTCATCTACTTCCAGGTGACCGAGCCCAAGTCGGCCGTCTACGAGATCTCGAACTACATCACCGGTATCGAGCAGCTCACCGTCACCACGCTGCGCAACGTCGTCGGCTCCATGGACCTCGAGCAGACGCTGACCAGCCGTGACCAGATCAACGGCCAGCTGCGCGGCGTCCTCGACGAGGCGACCGGACGCTGGGGCGTGCGCGTCAACCGCGTCGAGCTGAAGTCCATCGAGCCGCCCGCCTCCGTGCAGGGCGCGATGGAGCAGCAGATGCGTGCCGAGCGCGACCGCCGTGCCGCGATCCTCACCGCCGAGGGCGTCAAGCAGTCGCAGATCCTGACCGCCGAGGGTGAGAAGCAGTCCCAGATCCTCAAGGCCGAGGGTGACGCGCAGTCGGCGATCCTGCAGGCCGAGGGTGAGGCCCGCGCGATCCTGCAGGTGTTCGAGGCGATCCACCAGGGCAACCCGGACCCGAAGCTGCTGGCCTACCAGTACCTGCAGATGCTGCCGGAGATCGCCAACGGCTCGTCGTCCAAGCTGTGGGTGGTCCCCACCGAGTTCACCGCCGCGCTGGGCTCCATCGCGAAGGGCTTCGGCGGCACGCCGGGGACCCCGGGCATCCCCACCGAGCCGGGGGACGACGACGAGGGCGACGGCGGCGTCGGTGCCGCGCTGTCCTCGGCGCTGGGCCAGTCCGGGCTGCAGGACCCGGGCGAGGCGCTCGCCGAGGCCCGCCGCCAGGCCGAGGCCGCCACCGCTGACGCCACGAGCTCGGGCACCCGGTCGGGTTCGCCGTTCGACCCGTCGGTCGAGCGCGGGCAGCGCCCGGCGGGGGAGCAGCCGCCGGCGCCGCCGGCCTCGCCGCAGCCGCGCACGCTCGGTGACGAGGAGCAGCCTCCGCAGCAGTAGMEPGTIILWIVLLAFVVFVVTALFKMVRVVPQATALIIERLGRYQKTFDPGLHWLVPFIDKVRAGVDLREQVVSFPPQPVITSDNLVVEIDTVIYFQVTEPKSAVYEISNYITGIEQLTVTTLRNVVGSMDLEQTLTSRDQINGQLRGVLDEATGRWGVRVNRVELKSIEPPASVQGAMEQQMRAERDRRAAILTAEGVKQSQILTAEGEKQSQILKAEGDAQSAILQAEGEARAILQVFEAIHQGNPDPKLLAYQYLQMLPEIANGSSSKLWVVPTEFTAALGSIAKGFGGTPGTPGIPTEPGDDDEGDGGVGAALSSALGQSGLQDPGEALAEARRQAEAATADATSSGTRSGSPFDPSVERGQRPAGEQPPAPPASPQPRTLGDEEQPPQQNANANANANA
AK018_054631752COG1132putative ABC transporter ATP-binding proteinATGCTCGTCCCGCTGGCTCGCCGCTACCTGCGGCCCTACTACGCCGCCGTCGTGGTGCTGCTCGTGCTGCAGCTCGGCCAGACGCTCGGGTCGCTGTACCTGCCGTCGCTGAACGCCGACATCGTCGACGACGGGGTGACGACCGGCGACACCGGCTACATCATGCGGGTCGGCGGGTGGATGCTGCTCGTCAGTCTCGGCCAGGTCGTCTGCGCCGTCGGCGCCGTGTTCCTCGGGGCGCGGGCCGCGACCGCGTTCGGCCGTGACCTGCGTCGCGACCTGTTCGACGCCGTGCAGGGCTTCTCCGCGCGCGAGCTCGGCCGGTTCGGGGCGCCGTCGCTGATCACCCGCACCACCAACGACGTCCAGCAGGTCATGATGGTCGTCCTGATGACCTTCACGGTGATGGTCATGGCGCCGATCATGATGGTCGGCGGCATCGTCATGGCGCTGCGCGAGGACCCCTCGCTCTCGCTCCTGCTCGTGGTGATCGTGCCCGTGCTCGGCGTCGCGGTCGGCCTGCTCCTGTGGCGGATGGTGCCCTACTTCCGCGGCATGCAGGCGCGCATCGACACCATCAACGCGGTGCTGCGCGAGCAGATCACGGGCCTGCGCGTGGTCCGTGCGTTCGTGCGCGAACGCCGCGAGGTCGAACGCTTCGGTGCCGCCAACGAGCGGCTCTACGACGTGTCGCTGGCCGCCGGCAAGCTCATGGCGCTCGCCTTCCCCCTGGTGATGCTCATCATGAGCCTGTCCCAGGTGGCGGTCCTGTGGTTCGGGGCCGGTGAGGTCTCCGACGGCGACCTGCAGGTCGGCTCCCTGATGGCGTTCCTGTCCTACATCATGTTCATCCTCATGGCCGTGATGATGTCGACGATGATGTTCATGATGATCCCGCGCGCGTCCGTGGCGGCGGGGCGGATCAGCGAGGTGCTCGACACCGAGACGTCGGTGGTCGAGCCCGACGCCCCGGTCGCGTTGGAGTCGCTGTCCGACGGCGGAGGGCCGCGCGGGCGGCTGCGGTTCGAGTCCGTGCAGTTCGGGTACCCCGGGGCCGACGAGCCGGTCCTGCACGACATCACGTTCACCGCCGAGCCCGGGCGGACGACCGCGATCATCGGGTCCACCGGTGCGGGCAAGACCACCCTGCTGAACCTGGTGCCGCGACTCTTCGACGTCACGGGTGGCCGGGTGAGCATCGACGGTGTCGACGTGCGCGACCTCGCGCTCGGCGACCTGGGCGGCCTGCTCGGTCTGGTCCCGCAGAAGGCGTTCCTCTTCTCGGGCACGGTCGCCGACAACCTCCGGTACGGCAAGGCCGACGCCACCGAGGACGAGATGTGGGCCGCGCTCGAGGTCGCCCAGGCCCGCGAGTTCGTGGCCGCGCTGCCGGCCGGGCTCGAGGCACCGGTGGCCCAGGGCGGGACGACCTTCTCCGGCGGCCAGCGGCAACGTCTCGCCATCGCTCGGGCCGTGATCCGCGCACCGCGGGTGTACCTGTTCGACGACTCGTTCTCCGCGCTCGACTACGCGACCGACGCCAGGCTGCGCGCGGCGCTGCGCCCACGGACCCGGGACGCGACCGTGCTCGTCGTCGCGCAACGGGTCGCCACGATCCGTGACGCCGACCAGATTCTCGTGCTCGACCAGGGGCGCGTCGTCGGACGGGGGACGCACACCGAGCTGCTCGCGACGAACGAGACGTACGCGGAGATCGTGACGTCCCAGATGTCGCTGGAGGAGGCCGCATGAMLVPLARRYLRPYYAAVVVLLVLQLGQTLGSLYLPSLNADIVDDGVTTGDTGYIMRVGGWMLLVSLGQVVCAVGAVFLGARAATAFGRDLRRDLFDAVQGFSARELGRFGAPSLITRTTNDVQQVMMVVLMTFTVMVMAPIMMVGGIVMALREDPSLSLLLVVIVPVLGVAVGLLLWRMVPYFRGMQARIDTINAVLREQITGLRVVRAFVRERREVERFGAANERLYDVSLAAGKLMALAFPLVMLIMSLSQVAVLWFGAGEVSDGDLQVGSLMAFLSYIMFILMAVMMSTMMFMMIPRASVAAGRISEVLDTETSVVEPDAPVALESLSDGGGPRGRLRFESVQFGYPGADEPVLHDITFTAEPGRTTAIIGSTGAGKTTLLNLVPRLFDVTGGRVSIDGVDVRDLALGDLGGLLGLVPQKAFLFSGTVADNLRYGKADATEDEMWAALEVAQAREFVAALPAGLEAPVAQGGTTFSGGQRQRLAIARAVIRAPRVYLFDDSFSALDYATDARLRAALRPRTRDATVLVVAQRVATIRDADQILVLDQGRVVGRGTHTELLATNETYAEIVTSQMSLEEAAPGPT0029025_829DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029025-efrA-K18887NANA
AK018_054641995COG1132Fatty acid ABC transporter ATP-binding/permease proteinATGAGCGCCCCGGCCGGCCGCTCGGCGCCGCCGCGTCCCGGAGGCGGGCCGATGGGCGGCGGGGCCGGGATGCCGACGGCCAGAGCGATGGACTTCGCCGGGTCGTTGCGCCGCTTCGCCGGCACGATGCGGCCCGAGCGGGCTCGCGTCGCCGTGCTGACCGCGTGCGGCGTCGCCTCGGTCGCCCTGACCGTCCTGGGCCCCAAGATCCTCGGTGACGCCACGAACGTGATCTTCGCGGGTGTCGTCGGCCAGATGCTCGGTCGCACCCTGCCGGCGGGCACCACCACCGACGAGGCGGTCGCCGCGCTGCGGGCCGCCGGGGACGACACCCAGGCCGACATGCTCGCCTCGATGGGCGACGTCGTGCCCGGCCAGGGCGTCGACACCGAACAGCTGGCCCAGGTCCTCGGCACCGCAGTGCTCGTCTACCTCGGCGCGTTCGTGTTCGGCTGGCTGCAGTCGCGGCTCATGACGGTCGCTGTGCAGCACACGGTGCGCCGGCTGCGGGACGACGTCGAGGCCAAGCTCCACCGCATCCCCCTGAGCTACGTCGACAAGCAGGCCAAGGGCGACATCCTCTCGCGCGTCACCAACGACATCGACAACGTCGCGCAGACGACGACCCAGACGCTCGCCCAGCTCGTCACCGCGGTGCTCACCGTGGTGGGCGTGCTGGCGATGATGTTCTGGATCTCCTGGGTGCTCGCGCTCGTCGCCCTGGTGACCGTCCCGCTGTCGGTGCTGCTGACCATGGCGATCGCCAAGCGGTCGCAGCCGCAGTTCGTCGCCCAGTGGGCGGCCACGGGACGGCTCAACGCGCACGTCGAGGAGATGTTCACCGGGCACGCGCTGGTCAAGGTGTACGGCCGGCAGGCCGACGCCGCGGCGACGTTCGCCCGGGAGAACGAGGCGGTCTACGACGCGACCCGGCGCTCGCAGTTCATCAGCGGCACCATCCAGCCGTCGATGGGGTTCCTGGCGAACCTCAACTACGTGCTGGTGGCCGTCATCGGCGGGCTGCGGGTGGCGTCCGGCCAGCTCTCGATCGGTGACGTGCAGGCATTCATCCAGTACTCGCGCCAGTTCACCCAGCCGTTGACGCAGGTCGCCTCGATGATGAACCTGCTGCAGTCCGGCGTGGCGTCCGCCGAGCGGGTCTTCGAGCTGCTGGACGCGCCCGAGCAGCGGCCCGACCCGGATCCGGCCCGGGTCCCGGAGCGCACCGGCGGCCGGGTGGCGTTCGAGGGCGTCGCGTTCTCCTACGACTCCGACGAGCCGTTGATCGAGGACCTCGACCTCGTGGCCGAGCCCGGGCGGACGATCGCGATCGTGGGCCCGACCGGGGCGGGCAAGACGACGCTGGTGAACCTGCTGATGCGCTTCTACGAGGTCGACGCCGGACGGATCACGCTCGACGGTGTCGACACCCGGGAGCTGACCCGCGACGCGCTGCGCTCCCGCATCGGCATGGTGCTGCAGGACACGTGGCTCTTCGAGGGCACCATCGAGGAGAACCTGCGCTACGGCGTGCGCGACGGCGACGACGTCGACGAGGAGGCGTTCCTCGCCGCGACGCGGGCGACGTCGGTGGACCCGTTCGTGCGGACGCTGCCCGACGGCTACGACACGGTCCTGGACGGCGACGGCGGTGCGCTGTCCGCCGGCGAGCGCCAGCTGCTGACGATCGCGCGCGCGTTCCTGGCGGACCCGGACATCCTCGTGCTCGACGAGGCGACCAGCTCGGTGGACACCCGCACCGAGGTCCTCGTCCAGGAGGCGATGAACGCCCTGCGGTCCGGGCGCACCTCGTTCGTCATCGCCCACCGGCTCTCCACGATCCGCGACGCCGACCTCATCGTCGTGATGGAGCACGGCCGGATCGTCGAGCAGGGCGACCACGCGTGTCTGCTGGAGGCCGGCGGGGCGTACGCCCGGCTGTACGCGAGCCAGTTCGCGGCGCCGCTCACCGCCGCCGACGCCGGGCCGGAGTGAMSAPAGRSAPPRPGGGPMGGGAGMPTARAMDFAGSLRRFAGTMRPERARVAVLTACGVASVALTVLGPKILGDATNVIFAGVVGQMLGRTLPAGTTTDEAVAALRAAGDDTQADMLASMGDVVPGQGVDTEQLAQVLGTAVLVYLGAFVFGWLQSRLMTVAVQHTVRRLRDDVEAKLHRIPLSYVDKQAKGDILSRVTNDIDNVAQTTTQTLAQLVTAVLTVVGVLAMMFWISWVLALVALVTVPLSVLLTMAIAKRSQPQFVAQWAATGRLNAHVEEMFTGHALVKVYGRQADAAATFARENEAVYDATRRSQFISGTIQPSMGFLANLNYVLVAVIGGLRVASGQLSIGDVQAFIQYSRQFTQPLTQVASMMNLLQSGVASAERVFELLDAPEQRPDPDPARVPERTGGRVAFEGVAFSYDSDEPLIEDLDLVAEPGRTIAIVGPTGAGKTTLVNLLMRFYEVDAGRITLDGVDTRELTRDALRSRIGMVLQDTWLFEGTIEENLRYGVRDGDDVDEEAFLAATRATSVDPFVRTLPDGYDTVLDGDGGALSAGERQLLTIARAFLADPDILVLDEATSSVDTRTEVLVQEAMNALRSGRTSFVIAHRLSTIRDADLIVVMEHGRIVEQGDHACLLEAGGAYARLYASQFAAPLTAADAGPEPGPT0029030_181DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029030-efrB-K18888NANA
AK018_054651167hypothetical proteinGTGACCGAACCACCGCGACGCAGCCTCGTCGTCGCGGTCCTGGCCGTCGTCGCGCTGGTGCTGCTGGTGCCCGCCGCCGGTGCCCTCGTGCCCCAGGTGCCCGGGTGGGGCCACCTCGGGGCGGCCGCCTCGTCGTGGGCGGTGTGGCTGGGGGTCGGCGGGCTCGTCGTCCTGCTGGCGGGGACGGCCGCGCTGCTGCGCCGGGCGAGCGCCACCCGTCTCGGGGTGGTGCTCGCCGGGGCCGCCACCGTCGTGTGCGCGCTGACGGTGCTCACGCAGCAGCTGCTGGTCGCGCAGGAGCACGGCGTCGCCGTGCGCATCGGGGAGCTGTTCGCCGTCGAGCGGTCCGTGCGCCCGCCGGACCGCGACGCCGTGTACGCCCGGTACGAGGGCCGGCCCCTGGACCTGTCGGTGTGGGAACCGTCGTCGGGCGGCTCCGGCGTCCCGGTGGTCGTCCTGGTGCACGGCGGCGGCTGGGTCACCGGCGACCGGCGTCAGCCGGGCACCGCCGCGCACGCCGGCTGGTTCGCCGACCAGGGGTACGTGGCGGTCAGCGTCGACTACCCGCTGTCCGACGACGACGAGCACCGCTGGGACGTCGTCGGGCCGCAGGTGGCGTGCGCGCTGGTCTGGGTGGCGCGGCACGCGGCCGAGCACGGGGGAGACCCTGGCCGGGTCTTCCTGGTCGGTGACTCCGCGGGCGGCAACGTGGCGCTCGACGTCGCCTACCGGGCCCGCGCCGGCACGCTCAAGCCGGCCTGCGACGGCGACGTGCCCGAGATCGCCGCCGTGAGCACCCTGTACCCCGTCGCCGACCCGGCCGGGTTCCACGACAACCCGGACCCGCTGGTCGGCGACGACGCCCGGACGATGGCCGAGCGCTACACGGGCGGCAGCCCGGCCGAGGTCCCGCAGCGTTACGACGCCGTCACCCCCGCCACGCACGTGACGCCGTCGTCCCCGCCCACGGTGACGGTGACCGGCGCCGCCGACCACCTCGTCCCGCCGCAGGGCGCCGCCGACCTGGCGGCGACCCTGGCCGCCCACGACGTGGACCACCAGCACGTGGAGATCCCGGCCGCGGGGCACGTCGTGGACGCCGCGCCGGGAGGGGTGGGCACGCAGGTGTGGCGCGAGCTCACGCTGCGACTGTTCGCGACGTCGTGAMTEPPRRSLVVAVLAVVALVLLVPAAGALVPQVPGWGHLGAAASSWAVWLGVGGLVVLLAGTAALLRRASATRLGVVLAGAATVVCALTVLTQQLLVAQEHGVAVRIGELFAVERSVRPPDRDAVYARYEGRPLDLSVWEPSSGGSGVPVVVLVHGGGWVTGDRRQPGTAAHAGWFADQGYVAVSVDYPLSDDDEHRWDVVGPQVACALVWVARHAAEHGGDPGRVFLVGDSAGGNVALDVAYRARAGTLKPACDGDVPEIAAVSTLYPVADPAGFHDNPDPLVGDDARTMAERYTGGSPAEVPQRYDAVTPATHVTPSSPPTVTVTGAADHLVPPQGAADLAATLAAHDVDHQHVEIPAAGHVVDAAPGGVGTQVWRELTLRLFATSNANANANANA
AK018_05466906rlmB23S rRNA (guanosine-2'-O-)-methyltransferase RlmBGTGAGCCGCGCAGGTCCCCGCGACGAGGCTGAGACAATCCCTGGCGTGGACTTGCCGAACCTGGTCCGGGTGACCGACCCCTCCGACCCGCGCCTGCGCGACTACACCGACCTGACCGACGTCCGGCTGCGGACCGCGAGGGAACCGGCCGAAGGGCTGTTCATGGCCGAGTCCTCCAACGTCATCCGTCGCGCCCTGCGTACCGGGCACCGGCCGCGGTCGTTCCTCATGGCCGACAAGTGGCTCGAGTCGATGGCGGACGTGCTCGCCGCGCACCCCGACGTCCCCGTGTTCGTCGCCGACGAGGCCGTGCTGCGCGACATCACCGGGTTCCACCTGCACCGCGGGGCGCTCGCGGCGATGCACCGGCCCGTCCTCGCGGACGTCGCCACGCTCCTGGCCGGAGCCCGCGGCGGGCAGGGGGCCCGGCGCGTGGCGGTGCTCGAGGACATCGTCGACCACACCAACGTCGGTGCCGCAATCCGTTCGTGTGCTGCGCTGGAAGTCGATGCGTTGCTGGTCACGCCGCGTTGCGCTGACCCCCTGTACCGGCGCAGCGTGCGGGTCTCGATGGGCACCGTGTTTCAGGTGCCTTGGACTCGGATTGAAAACTGGCCCTGCGCGGCGGAGGGGTGCGGTCGCCCCGGTGGCATCGACCTACTTCGCGAGCTTGGGTTCACGGTTGCGGCTCTCGCGCTATCCGACGACGCCGTGAGTCTTGATGACTTCGCGGTCTACCCATCGGATCGGCTCGCTCTGGTGCTCGGAACCGAGGGGGAGGGGCTTCGCCCGAAGACGGTGGATGCGGCCGACGTGGTGGTGAAGATCCCGATGGCAGGCGGGGTTGACTCCCTGAACGTTGCGGCTGCCGCGGCCGTTGTGTTCTGGGCGACGCGGGTGAAATAGMSRAGPRDEAETIPGVDLPNLVRVTDPSDPRLRDYTDLTDVRLRTAREPAEGLFMAESSNVIRRALRTGHRPRSFLMADKWLESMADVLAAHPDVPVFVADEAVLRDITGFHLHRGALAAMHRPVLADVATLLAGARGGQGARRVAVLEDIVDHTNVGAAIRSCAALEVDALLVTPRCADPLYRRSVRVSMGTVFQVPWTRIENWPCAAEGCGRPGGIDLLRELGFTVAALALSDDAVSLDDFAVYPSDRLALVLGTEGEGLRPKTVDAADVVVKIPMAGGVDSLNVAAAAAVVFWATRVKNANANANANA
AK018_054671479hypothetical proteinGTGGATACTGTCAACTCGAACCGTGCAAGGTCGCTTGCCGATATCAGCTCATTCGGGGCCGTCGACGCGGACGCCGACCAACTTCTTGGAGCATGCTTTCAGGATCATGCCGCGTATCTATCGGTACGCGAGTTGCAGAGCTTTCTTATTGTGGGGCGCAAGGGGTCTGGAAAAACGGCAATCTACCGGCGCCTGATTAGCGATAGGTCGCCAGGTTCTTTCTCGATAGGATACTCGTTCGACGACTATCCGTGGGCGCATCACGATTTGCAGGCAGACAATGGCGTCCCGGAAGAGCGCCGGTACATTCACAGTTGGCGGTACTTGATATTGCTGGGACTCGCCAAGGTTCTGCTAAATGAGGATCAGAGTCAACCCTGGTCGGAAGAATCGCAGGAGGCTATGGAGGCCCTTGAGGCGTTTGTTGTTGACTCCTACGGTTCTACGAATCCTGACTTTAGTCAACTCTTCCGACCGGAGCAAGAGCTGCACTTTAAAGGAGGACTCAACTTCAAGTTCGCGAAACTTGACGTGGAGAGGGTCAAGGTTCGAGAACTACCAATTCACATTCAGTCCGTCAACAGGGCGATGGAGGATGCGGTCCTTGACGCATTGAATCCAGGGTTGAAGTATTTTGTGTGCTTCGACCAGCTGGATCTAGGTTTCTCTGTGCAGGACCCTAAGTATAGTCAGCGTCTCACTGGCCTAATTATCGCCGCTAAGGACATTTTCGTTCGTTCGAGAGAGCGTGGGAAGCGTCTCAATCCGGTGGTCCTACTCCGGGATGACATTTATCAGGACCTGCAATTCGAGGACAAGAACAAGGTCACTGAAAATTATGCCTCGCGGGTACTGTGGAGTGAGGAGAGTGATAATCTGACATTGAGGGGTCTAATGGAGAGTAGATTTCGAGAAACTCTGGGCTCGGGGGCATCCCCGATTCTTTGGCGGGACGTCTTCGATGAGTCGCGAGAGATGCCCGGACGGCAGAGTAAGTACCGTCACATATGTGATCGCACTTTCCTGCGTCCGCGCGACGTCATCAAGTTCTGCAACGAAGTCCTCAAGGCGCACGATTCCGACTCGCCAAAGTTCGATAATGAATCCGTCCATGCGGCTAGAGATGCGTACTCAGATTATCTGCTGAATGAGCTCGATGATGAGATGGCGAAGCATGTGCCAAACTATCGTGGGTATCTTGAGGTGCTGAAGTCGGTAGGTTCCGAAAAATTCAGCCTTGAGGATTTTGAGTCGTCACTTGTCCTTCGGCACGACGTCGGTGAGGTCGCGCCCATCGCTGCACTTGAAGAGTTGTTTGACTTTTCGGTCATCTCGTACCTGAAGCCCGGAGGGCGTGGTGGTGGGTCGGAGTATGTTTGGCGGTACAAGGATCCGAGGGCTCGATTCGATTCAACGGTGACGGCTTTCCGGGTACATCCAGGATTGAAGGAGGCTCTCGGACTTACCCGCTCGGCGTAGMDTVNSNRARSLADISSFGAVDADADQLLGACFQDHAAYLSVRELQSFLIVGRKGSGKTAIYRRLISDRSPGSFSIGYSFDDYPWAHHDLQADNGVPEERRYIHSWRYLILLGLAKVLLNEDQSQPWSEESQEAMEALEAFVVDSYGSTNPDFSQLFRPEQELHFKGGLNFKFAKLDVERVKVRELPIHIQSVNRAMEDAVLDALNPGLKYFVCFDQLDLGFSVQDPKYSQRLTGLIIAAKDIFVRSRERGKRLNPVVLLRDDIYQDLQFEDKNKVTENYASRVLWSEESDNLTLRGLMESRFRETLGSGASPILWRDVFDESREMPGRQSKYRHICDRTFLRPRDVIKFCNEVLKAHDSDSPKFDNESVHAARDAYSDYLLNELDDEMAKHVPNYRGYLEVLKSVGSEKFSLEDFESSLVLRHDVGEVAPIAALEELFDFSVISYLKPGGRGGGSEYVWRYKDPRARFDSTVTAFRVHPGLKEALGLTRSANANANANANA
AK018_05468375Putative TrmH family tRNA/rRNA methyltransferaseGTGCTGGTCACCCCGCGCTGCGCCGACCCGCTGTACCGGCGCAGCGTGCGGGTGTCGATGGGGACCGTCTTCCAGGTGCCGTGGACGCGGCTCGCGGCCTGGCCCACGGGGATCGACGACCTGCACGACGCCGGGTTCGACGTCGCGGCCCTGGCGCTCGGCGAGGACGCGGTGACGCTGGACGACCTGGCCGCGGACCCGCCGGAACGGCTCGTCCTGGTGCTCGGCACCGAAGGCGACGGCCTGTCGCGGGGCGCGGTCGCGGCGTCGGACCACGTCGTGCGGATCCCCATGGCAGGGCAGGTCGACTCGCTCAACGTCGCAGCGGCGTCGGCGGTCGCCTTCTGGGCGACGCGGCTTCCCGAGGCGGGGTGAMLVTPRCADPLYRRSVRVSMGTVFQVPWTRLAAWPTGIDDLHDAGFDVAALALGEDAVTLDDLAADPPERLVLVLGTEGDGLSRGAVAASDHVVRIPMAGQVDSLNVAAASAVAFWATRLPEAGNANANANANA
AK018_05469483hypothetical proteinATGACCACCTTGACGACGCACGACCACCACGGAGAGCTCGCGGTCTTCCTCATCGGTGCGCGGGTCGAGCGGCTCTGGCGCCCCGACGCGTGGTGGCCCGCGATGGCCGCGATGCGGCCGATGCTCGCCGAGCTCGCCGCCGATGCCGACTCCGGCTTCCTCGGCGGCACCACCCTGCTCGGAAGCCGGGGCCCGACGATGGTGCAGTACTGGCGCAGCGTCGAGCACGTCTACGCCTACGCGAACGACGACGCCCGCCGGCACCGTCCCGCCTGGGTGGAGTTCTACCGGCGTGCCCGCCGCGTGCCCGGTGCCGTCACGGTCTGGCACGAGACCTTCCGGGTGCCCGCCGACGGGCACGAGAGCCTGTACGTCGGCGCGCCGGCACGGTTCGGGCTCGCCGCCGCCACCGGCGCGGTCCCCGCCGCGCGGCGGGGACGCACGGCCCGCGAGCGCCTGGCCCACGCGTCCGAGGAGGCCTGAMTTLTTHDHHGELAVFLIGARVERLWRPDAWWPAMAAMRPMLAELAADADSGFLGGTTLLGSRGPTMVQYWRSVEHVYAYANDDARRHRPAWVEFYRRARRVPGAVTVWHETFRVPADGHESLYVGAPARFGLAAATGAVPAARRGRTARERLAHASEEANANANANANA
AK018_05470618hypothetical proteinATGCGCGTCTCCGCGTTGGCCGAGCGCACCGGCGTGCCGGTCGCGACGATCAAGTACTACCTGCGCGAGGGCCTGCTGCCCCCGGGGGTGCCGACGTCGCGCACTCAGGCCGTCTACGACGAGTCGCACGTCGAGCGCGTGCGGCTGGTCCGGGCGCTGACCGGCTCGGCAGGGCTGTCGCTCGCGGCGGTCCACGAGGTGCTGGCGGCGCTCGACGACCCGCCGTCGTCCCGGCACGGCCTGCTCGGCGCGGCGCAACGAGCCCTGGTCGCCGACGAGGCGCAGCAGGAGCCGCTCGCCGGTGCCGCGGCACGCCGCCGGGTGGACGAGCTCGTCGCGGCCCGCGGATGGTGCGACGACCCGGTGCTGACCGACCGCCTGGCCGCTCAGCTGGACGACGCCGAGAAGGCCGGGGTCCCGGTGTCGCCGGAGCATCTGACGGTCCTGGCGCAGGCCGCCGAGCAGGTCGCGCGCGGCGACCTCGCGACGGTGCCCGAGGTGCCGGCCGACGCGATGCGCCAGGTCGTCGCCGGCACCCTCCTGACCGATCCGGTGCTGCTGACGCTGCGTCGGCTCGCGCAGCAGTGGGCCAGCGGCGGCGCGGGCGAGGTGCGCTGAMRVSALAERTGVPVATIKYYLREGLLPPGVPTSRTQAVYDESHVERVRLVRALTGSAGLSLAAVHEVLAALDDPPSSRHGLLGAAQRALVADEAQQEPLAGAAARRRVDELVAARGWCDDPVLTDRLAAQLDDAEKAGVPVSPEHLTVLAQAAEQVARGDLATVPEVPADAMRQVVAGTLLTDPVLLTLRRLAQQWASGGAGEVRNANANANANA
AK018_054711005COG2375putative proteinGTGACTTCCTCCGCGACCGACGCCCGGACCGAGACGACCGAGACCGCCGTCGCGCCCCGCCCGTGGCGCATGTTCGACGTCGAGGTCAAGCGCGTCACGCGGCTCTGCCCGTCCTTCGTGCGGATCACGTTCACCGGCGACGACCTGCACGAGTTCGCCGACAACGGCTGCGACCAGCGCATCAAGTTCCTGCTGCCCGCGCCGTGCGGCGGGTGGGAGTACCTGGACCGGCAGAACCCGGACTGGTTCACCACCTGGCGGGCGCTGCCCGAGGAGCGCCGCAACCCGCTGCGCACCTACACCGTGCGAGCCGTCCGGCAGGACCTGCGCGAGGTCGACGTGGACATCGTCCTGCACGGGGACACCGGTCCCGCCTCGCGCTGGGCCAACGGTGCCCGGCCGGGTTCGCCCCTGGTGCTGCTCGGCCCCAACGACGCCCACGACGGACCCCACGGCGGCCTGGAGTTCGCGCCGCCCGCGACCAGCCACGCCCTGCTGCTCGCCGGTGACGAGACGGCGGTGCCCGCCATCGCCGCGATCTGCGAGTCGCTGCCCGCCGACGCCGTCGGCGAGGTGTTCCTCGAGGTCCCGCACCCCGAGGACCGCTGGACCCTCGCCGCTCCGGCGGGTGTGCGGGTCACCTGGCTCGGGCGTGACGACCGCTCGCACGGCGACCTGCTGCTGCCCGCCGTCCAGGAGGCCGCCGACCGGCTGCTCGCCATGGGCGTGCGCGCGTCGGTCGACGACGCACCGGCGGTCACCGCCGCGGGCGTCGACCTGGCGGGGGAGTTCGCCGACGTCGACGTCGACGCCGACATCCTCTGGGAGGTGCCGGTCGACGCCACGGGCAGGCCGCTGGCGCAGGACACCGTCCTGTACGCCTGGCTGGCCGGCGAGGCCGGCGTCATCAAGACGCTGCGGCGCTACCTGGTGAGCACCAAGGGCGTCGACCGCAAGGCGGTCGCGTTCATGGGCTACTGGCGGCAGGGGCGCGCCGAGCTCTGAMTSSATDARTETTETAVAPRPWRMFDVEVKRVTRLCPSFVRITFTGDDLHEFADNGCDQRIKFLLPAPCGGWEYLDRQNPDWFTTWRALPEERRNPLRTYTVRAVRQDLREVDVDIVLHGDTGPASRWANGARPGSPLVLLGPNDAHDGPHGGLEFAPPATSHALLLAGDETAVPAIAAICESLPADAVGEVFLEVPHPEDRWTLAAPAGVRVTWLGRDDRSHGDLLLPAVQEAADRLLAMGVRASVDDAPAVTAAGVDLAGEFADVDVDADILWEVPVDATGRPLAQDTVLYAWLAGEAGVIKTLRRYLVSTKGVDRKAVAFMGYWRQGRAELPGPT0003760_105DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_05472576hypothetical proteinATGAGCACGGGGCTGCCGACGCTGGGCGACCTCGACTGGCGTCCTGCCGTCGAGCACCGTGACCTGCTCGCCGACCCGGTCGCCGCCGCCCTGGTCGCCTGGGCCGGCGTCGACGCACGGGTCGCGACGCAGGTCGCGGTCGCCCCCATCGACCCCGAGCACGCGGACACCGCCACGCTCAACGAGGTGCACGCCCTGCCGCCGGAGGCCTCCGCGAACTGCGTGGTGGTGGCCGGACGGCGCGGCGAGGCCGAACGCGTCGCCGCCTGCGTCGTGCCGGCCACGACGTCTGCCGACGTCAACACGCGGGTGCGCAAGCTGCTGGACGCCCGCAAGGCGTCGTTCCTGCCCCAGGACCGCGCGACGGCGGAGTCCGGCATGGCCTACGGCGGCATCACACCGCTGGGCGTGCCCGAGTCCTGGCGGGTGCTGGTGGACGACCGCTTCGCCGCCCCCGGCACGCTCGCGCTCATGGGCTCGGGCGTGCGGCACTCCAAGGTGCTCATGCCCGGACCCCTGCTGTGCGAGGCACCGGGCGTCGAGGTCATCGACTCGCTCGGCGTCGAGCGCGGCTGAMSTGLPTLGDLDWRPAVEHRDLLADPVAAALVAWAGVDARVATQVAVAPIDPEHADTATLNEVHALPPEASANCVVVAGRRGEAERVAACVVPATTSADVNTRVRKLLDARKASFLPQDRATAESGMAYGGITPLGVPESWRVLVDDRFAAPGTLALMGSGVRHSKVLMPGPLLCEAPGVEVIDSLGVERGNANANANANA
AK018_05473531hypothetical proteinATGGATTTCACCCGGCCACTGCCCCCGGACCCCTACTCGCTGCTCCCCGTCCCGGCGACCTTCACCCTGACCAGCCCGGACATCACCGAGGGCGACCCGCTGCCCGCGGACCACGCCGTCGACGGCGGCAACACCTCGCCCGCGCTGGCCTGGTCCGGCCACCCCGAGCAGACGAGGTCGTTCGTGCTGAGCTGCTTCGACCCCGACGCGCCGACGCCGTCGGGCTACTGGCACTGGCACGTCCTCGACCTCCCCGCCACGACGACCTCGCTGCCCCGCGGTGCGGGTGCCGCCGAGGGCACCGACCTGCCGCCCGGCGCGTTCCAGCTCACCTCCGACGGCGGTCAGGTCGGGTTCGAGGGTGCCGGCCCGCCGCCCGGGGACCACGCGCACCGGTACGTGTTCGCCGTGCACGCGCTCGACGTCGAGTCCCTCGACCTGACCACCGAGAACACCAACGTCCACGCGGCATTCAACGTCTACTTCCACACGCTGGCCCGCGCCACCCTCACCGGGACGTACCGCCGATGAMDFTRPLPPDPYSLLPVPATFTLTSPDITEGDPLPADHAVDGGNTSPALAWSGHPEQTRSFVLSCFDPDAPTPSGYWHWHVLDLPATTTSLPRGAGAAEGTDLPPGAFQLTSDGGQVGFEGAGPPPGDHAHRYVFAVHALDVESLDLTTENTNVHAAFNVYFHTLARATLTGTYRRNANANANANA
AK018_05474738baiA_23-alpha-hydroxycholanate dehydrogenase (NADP(+))GTGCAGAGGTTCGCGGACAAGGTCGCGATCGTCACGGGTGGCAGCCGGGGCATCGGCCTCGCGGTCGCCCGGCGGATCGTGGCGGAGGGCGGCAGCGTGGTGATCACCGGCCGCAAGCCCGACTCGCTCGAGGAGGCCGTCGCCGGACTCGGCGAGCGCGCCTCGTTCGTGGCCGGCAAGGCCGACGACGCCGACCACCGCGGCGAGGCGATCGCGCACGCCGTCGACCGGTTCGGGGGGCTCGACCACCTCGTCAACAACGCCGGCATCAACCCCGCCTGGGGACCCGCGCTCGAGGTCGAGGCCTCCGTGGTGCGCAAGATCATCGACGTCAACGTGGTCGCCGCGCTGGAGTGGACGCGCGACGCCGTCGCCGCCGGTCTGCGCGGGTCCGTCGTCAACACCGCCTCGCTCGCCGGGACGGGCGCCAGCCCGAACATCGCCTTCTACGGCGTCTCCAAGGCCGCGCTGATCAACCTGACCGCCCAGCTTGCGCACGAGCTGGCGCCTCGGCTGCGCGTCAACGCCGTCGCCCCCGCCGTCGTCCGCACACGCCTCGCCGAGGCGCTCTTCGCGGACCGGGAGGAGGAGGTCGCGGCCGCCTACCCGCTACGGCGCCTGGGGGAGCCGGACGACGTCGCCGGTCCCGTGGCGTTCCTGCTGTCGGACGACGCCGCCTGGATCACCGGGCAGACACTCCGGATCGACGGTGGCGCCTCGATCGTCTCGGTCGGGTGAMQRFADKVAIVTGGSRGIGLAVARRIVAEGGSVVITGRKPDSLEEAVAGLGERASFVAGKADDADHRGEAIAHAVDRFGGLDHLVNNAGINPAWGPALEVEASVVRKIIDVNVVAALEWTRDAVAAGLRGSVVNTASLAGTGASPNIAFYGVSKAALINLTAQLAHELAPRLRVNAVAPAVVRTRLAEALFADREEEVAAAYPLRRLGEPDDVAGPVAFLLSDDAAWITGQTLRIDGGASIVSVGPGPT0003180_1815DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_05475585kstR2HTH-type transcriptional repressor KstR2ATGAGGACCACCAACGTCGCCGACTCCGTGCTCAAGGCCGCCCTGGACCTGTTCGCCACCCAGGGCTACGCCACCACCAGCGTCCAGCAGATCGTCGAGGCGGCGGGCGTCACCAAGGGCGCGATGTACCACTACTTCCAGTCCAAGGACGACCTGCTCTTCGCCATCTACGACCGGATGCTCACCCTGCAGCGCCGCCACCTCGACGACATCGTCGCCGCGGGCGGGCCGCCCCTCGAGGTGATCCGCGCGGCGTGCGTCGACGTCGTCGAGACGTCCATCGACCTGCTGCCCGAGGGCACGGTCTTCTTCCGGAGCATGCACATGCTGTCCCCGGCCCGCCACCAGGAGGTCACCCGGCGTCGTCGTGACTACCACGACGCCTTCGCCGCCCTGGTCGAGAAGGGCCAGGCCGAGGGCGTCGTGCGCACCGACGTGCCCCGCTCCGTGCTGATCGCCCACTTCTACTCCGACGTGCACTACCTGTCCTACTGGTACTCGCCGTCGGGTCCCGAGACCAAGACCGAGGTCGCCCAGCAGCTGGCCGACCTGTTCCTGCGAAGCATCACCGTGGAGGACGGATGAMRTTNVADSVLKAALDLFATQGYATTSVQQIVEAAGVTKGAMYHYFQSKDDLLFAIYDRMLTLQRRHLDDIVAAGGPPLEVIRAACVDVVETSIDLLPEGTVFFRSMHMLSPARHQEVTRRRRDYHDAFAALVEKGQAEGVVRTDVPRSVLIAHFYSDVHYLSYWYSPSGPETKTEVAQQLADLFLRSITVEDGNANANANANA
AK018_0547610022-haloacrylate reductaseATGACCGAGACGATGCGCGCCTGGCGCGTCCACCGCAACGGCGAGCCCCGCGAGGTGATGAGCCTCGACGAGGTCGATCGCCCCGCGCCGGGCCCCGGCCAGGCGCTGGTCCGCGTCCTGGCGGTCGCGGTGAACTTCCCCGACGTGCTCCTGGCGCGCGGTGAGTACCAGGTCCGGCCCGAGCCGCCGTTCGTGCCCGGCATCGAGATGTGCGCCGAGGTCGTCGAGGTCGGCGCGGACGTGGACCGGGTCGCCGTCGGCGACCGCGTGGTGGGCTCGCACATCGGCGTGCTGAGCGAGTACGCGGTGCTCAACCAGGGACTGCTGCACCGGGCGCCGGCCGCGCTGGACGACGCCCAGGCCGCCGCCCTGACCGTCGCGTACCAGACGGCCTGGTTCGGGCTGCACCGCCGCGCGGGGCTCCGCGAGGGCGAGACGCTGCTCGTGCACGCCGCCGCCGGGGGAGTGGGCACCGCCGCGTGCCAGCTCGGCGTCGCCGCCGGAGCCCGGGTGATCGGCGTGGTCGGCAGCGAGGCCAAGGCCGCCGTCGCCCGGGCGGCCGGGGCGGAGCACGTCCTGCTGCGGTCCGACGACGTGGCCGCCCGCGTCAAGGAGCTCACCGGGGGCGCCGGCGCGGACGTGGTCTTCGACCCGGTCGGGGGGCCGTCGTTCGCCGCGTCGACCAAGTGCATCGCCTTCGAGGGGCGGATCGTGGTGGTCGGCTTCGCCAGCGGCGAGATCCCGCCGGTACGCGCCAACCATGCGCTCGTCAAGAACTACGGGGTGCTCGGCCTGCACTGGGGGCTGTACGCCCAGCGCGACCCGGCGCTCGTCGACGCCGCCCACGCCGACCTGGTCCGGCTCGCCGACGCCGGCGCCGTGCGACCCGTGGTCGCCGACGTGCTCGACCTGACCAAGGCTCCCGAGGCGATCGAGCTGCTCGCCACCGGGACGACGACGGGTCGTCTCGTCGTCGAGGTCGCGACGGCGGGTGCGGCATGAMTETMRAWRVHRNGEPREVMSLDEVDRPAPGPGQALVRVLAVAVNFPDVLLARGEYQVRPEPPFVPGIEMCAEVVEVGADVDRVAVGDRVVGSHIGVLSEYAVLNQGLLHRAPAALDDAQAAALTVAYQTAWFGLHRRAGLREGETLLVHAAAGGVGTAACQLGVAAGARVIGVVGSEAKAAVARAAGAEHVLLRSDDVAARVKELTGGAGADVVFDPVGGPSFAASTKCIAFEGRIVVVGFASGEIPPVRANHALVKNYGVLGLHWGLYAQRDPALVDAAHADLVRLADAGAVRPVVADVLDLTKAPEAIELLATGTTTGRLVVEVATAGAAPGPT0013255_3798DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_05477738fabG33-alpha-(or 20-beta)-hydroxysteroid dehydrogenaseATGACGCGGGGCCTGGACGGCCGGGTCGCCGTCGTCACCGGCGGGGCCCGCGGCATCGGCGCCGCCTACGTGCGGGCCCTGCACGACGCCGGCGCCCGGGTGGTCGTCGCCGACCTGCTCGAGGCGGAGGGCGCCGCCCTCGTGGCCGACCTCGGCGAGCGGGCGCGGTTCGCCATGCTGGACGTCACGGACGAGGGCGCCTGGACGGCCGTCGTCGACGAGGTCGTGGCCGCCTGGGGCGGGGTCGACGTGCTGGTCAACAACGCCGGCATCGCCAACGCCGGCCCGATCGAGCACTACCCGCGGGCCAAGTGGGACGCCGTGATCGCCGTCAACCTCACCGGAACCTACCTCGGGTGCCGGGCCGTGGTCCCGACGATGAAGGCGGCCGGCCACGGGTCGATCGTCAACATCTCCTCGGTCGAGGGGATGCGGGGGAGCCGTGGCCTGCACGGCTACGTCGCCGCGAAGTTCGGGGTGCGGGGGCTGACAAAGTCGCTGGCCGTCGAGCTCGGCGGCGACGGCATCCGGGTCAACTCGATCCACCCCGGGTGGATCGACACCGACATGACCGCCCGCATCGACCCGTCCGGACTCCCGATCCCGATGCGGCGCGGTGGGCGTCCCGACGACCTCACCGGGACGGTGCTCTACCTCGCCGGTGACGACTCCGCCTATGTCACCGGCGCCGAGATCGTCGTCGACGGCGGCATGATCAACGGCGTGGGACACCTCTGAMTRGLDGRVAVVTGGARGIGAAYVRALHDAGARVVVADLLEAEGAALVADLGERARFAMLDVTDEGAWTAVVDEVVAAWGGVDVLVNNAGIANAGPIEHYPRAKWDAVIAVNLTGTYLGCRAVVPTMKAAGHGSIVNISSVEGMRGSRGLHGYVAAKFGVRGLTKSLAVELGGDGIRVNSIHPGWIDTDMTARIDPSGLPIPMRRGGRPDDLTGTVLYLAGDDSAYVTGAEIVVDGGMINGVGHLPGPT0008190_379DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008190-budC-K18009NANA
AK018_05478726lptB_4COG1137Lipopolysaccharide export system ATP-binding protein LptBATGTCCAGCTCAACCCCACGACTCGAGGTCGACGGTCTGACCGTCACCTTCTCCGGCCTGACCGCGCTCGACGACGTCGGCTTCACGGTCGGCGACGGCGAGACGGTCGCCCTGATCGGCCCCAACGGCGCCGGCAAGACGACCGTGTTCAACGCCGTCTGCTCCCTGGTCCGGCCCGCGTCCGGAAGCATCCGGATCGGCGGGCGTCGCGCGCCCGCCACGCCGACCGGGCTGCTGGAACGAGGCGTCGCGCGCACGCTGCAGGGACTCGGGCTCTTCGAGTCGCTCAGCGTCCTCGAGAACGTCCTCGTCCCGCTCTCGGGACGGCGCGACGGGTCCGGCCGCGACGCCGCGCTCGAGACCCTGCAACGGCTCGACCTCGCCGCCGACGCCGCCACGCCCGTCTCCGCGCTGTCCTACCCCGCCCGCAAGCGGGTCGCCCTCGCCCGTGCCCTGGTCGCTCGGCCGCAGCTGCTCCTCCTGGACGAGCCGGCCGGCGGGCTCGGGCCCGACGACATCGCCGAGCTCGCCGACGTCGTGCGGACCCTGTCCGCGCAGGGGTGCTCCGTGCTGCTCGTCGAGCACCACGTCGACTTCGTCATGGACGTCGCCGACCGCATCGTGGTCCTCGACTTCGGGCGGGTCGTGGCGTGCGGGACCCCGGACGAGGTCCGGGCCGACCCCGCCGTCGAGGCCGCCTACCTCGGTCTGGAGGCCGCCGCATGAMSSSTPRLEVDGLTVTFSGLTALDDVGFTVGDGETVALIGPNGAGKTTVFNAVCSLVRPASGSIRIGGRRAPATPTGLLERGVARTLQGLGLFESLSVLENVLVPLSGRRDGSGRDAALETLQRLDLAADAATPVSALSYPARKRVALARALVARPQLLLLDEPAGGLGPDDIAELADVVRTLSAQGCSVLLVEHHVDFVMDVADRIVVLDFGRVVACGTPDEVRADPAVEAAYLGLEAAAPGPT0020780_9264DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
AK018_05479783livF_3COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGAGCCCCGCGACCCCCCGGCCCACCACCGCGGCCGCCGCACCTGCCGAGGCCTCTCCAGCAGCCCCCGCCGCCCTGGCGGTGGAGGGACTCACCGTCGGGTACGCCGGCGCCCCCGTCATGGCCGACCTGACCCTCGAGGTCCCGGCCGGCCAGATCGTCGCCCTGCTGGGCGCGAACGGCGCGGGCAAGACGACCCTGCTCCGGACGGTCTCCGGCCTGCTGACCCCGCGGTCGGGGCGCGTGGTGCTCGACGGGGAGGACCTGTCCGCGGTGTCCGTCGAGGACCGCGTTCGCCGCGGCCTCGCGCAGGTTCCCGAGGGGCGCAGCGTCGTCGCCGAGCTCAGCGTCGAGGAGAACCTGCACCTCGGGGCCCTCTGGAAGATCCCGGCACGGCGTGCTCGCCGGGACGCAGTGGAGGCGATGTACGACGCGTTCGAGCCGCTGTCCCGACGGCGCAGGTCGCTGGGACACCAGCTCTCCGGGGGCGAGCGCCAGATGCTCTCCCTGGCCCGCGCGCTCATCGCGGAACCCCGGGTGCTGCTGCTCGACGAGCCCTCCCTGGGGCTGGCGCCCCGCGTGGTCGCCCAGCTCCTGGACACGCTGCGCGACACCGCCCGCCGGACCGGGCTGACCGTGCTGCTCGCCGAGCAGAACGTCACCAGCGCGCTGTCCGTCGCCGACCGGGGCGTCGTCCTCGGGCTCGGCGAGATCGTCGCCGACGCCCCGGCGGCCGACATCGCCGCCGACCCGGCCCTCCGCCACGCCTACCTGGGGTTCTGAMSPATPRPTTAAAAPAEASPAAPAALAVEGLTVGYAGAPVMADLTLEVPAGQIVALLGANGAGKTTLLRTVSGLLTPRSGRVVLDGEDLSAVSVEDRVRRGLAQVPEGRSVVAELSVEENLHLGALWKIPARRARRDAVEAMYDAFEPLSRRRRSLGHQLSGGERQMLSLARALIAEPRVLLLDEPSLGLAPRVVAQLLDTLRDTARRTGLTVLLAEQNVTSALSVADRGVVLGLGEIVADAPAADIAADPALRHAYLGFPGPT0020785_1473DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
AK018_05480879livH_2COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGGATCGCATCGCCTTTCTCCTCGCCACCGGGCTCGCGCGCGGCCTCGTGATCGCGCTGTTCGCCCTGTCCCTCGTCATCATCTGGCGTGCCGCGCGCATCGTGAACTTCGCGCAGGCCGCCATGGCCGTCGTGGCCGTGTTCGTCGCCTTCGCGGTCACGGCGCTGACCGACTCGTTCTGGCTCGGGCTCGTCGCCGCGCTCGTCGCCGGCGCCGTCGTCGGCTACGCCGTCGAGCGCTGGCTCATCCGCCTCGTGCCCGCCAGGACGCCCCTGCCGGGGATGATCGTGGCCATCGGGCTCGTCATGGTGCTCCAGGCCGGCATCGGCATCGCGTTCGGCCCGCAGCACCGTCCGATGGCGGCACCCTTCTCCGAGCAGCCCTTCACCGTGGGCGGGGTGCCAGTGCTCTCGCCGTACGACCTGTTCGTCCTGCTCGTGGCGCTCGGCGTCGTCGGCGGGCTGGCGCTGCTGTTCAACGGCACCACCCTCGGCCTGCAGATGCGGGCCTCCGCCATGGCGCCCGAGGTCTCCCGCCTGCTGGGCGTCCGGGTACCGCGGATGGTCACGCTGGGCTGGATGCTCTCGGCCGCCGTCGCGTCGCTCGCGGTGCTGCTCCTGGTCCCGACCGAGCTGGGGCTCAACGCCCACAGCGGCGACGTGCTGTTCGTGCACGCCTTCACCGTGGCCGTGCTCGGCGGGCTCGACTCCCCGGTCGGGGCCCTCGTCGGCGGGATCGTCGTCGGCGTCCTGATCAGCCTCGTCACCGGGTTCCTGGGTGCCGGGCTCGCGCCGATCGCCGTCCTGGCCCTGCTCACCCTCGTCCTGCTCGTCCGCCCGGGCGGCATCTTCGCGGTCAAGGAGGTACGCACCGCATGAMDRIAFLLATGLARGLVIALFALSLVIIWRAARIVNFAQAAMAVVAVFVAFAVTALTDSFWLGLVAALVAGAVVGYAVERWLIRLVPARTPLPGMIVAIGLVMVLQAGIGIAFGPQHRPMAAPFSEQPFTVGGVPVLSPYDLFVLLVALGVVGGLALLFNGTTLGLQMRASAMAPEVSRLLGVRVPRMVTLGWMLSAAVASLAVLLLVPTELGLNAHSGDVLFVHAFTVAVLGGLDSPVGALVGGIVVGVLISLVTGFLGAGLAPIAVLALLTLVLLVRPGGIFAVKEVRTAPGPT0020770_6709DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
AK018_054811068hypothetical proteinATGACCACTCCAGCACAACGCCGCCGGGCCGTCCTGGTGCGCTCCGCCGTCTGCACACTGCTCGCCGTCGGCGCGACCTTCGTCCTCGACTCCTACGCCAACTACCAGCTGGCCACCATCGCCGCGATCTTCTGCGCCACCGCCGGTCTCACCCTGCTCGTCGGCCTCACGGGCCAGCTCTCCCTGGGGCACGCCGTCCTGATGGCCGCCGGGGGCTACGGGTACGCGCTCACCGCCGCCCCGTTGGCCGACGCCGGGGTCGAGGGCGTGCTGCGCATCCTCGGCGGGTTGCTCGGCGCGCTCCTGCTGGCCGGCGCCGTCGGCGGCCTCCTCGGGCTGGCCGGCGCACGGCTGCGTGGCCCCTACCTGGCCGGGCTCACGCTGGCCCTGGTGATCGCGCTGCCCGCTATCAGCACCCAGGTGCCCGCACTCGGCGGCGCCCAGGGCGTGGGCGTCCCCTTCGAGGGCGTCCCCGACGCGCTCGGCGGCGTCGTGAGCATCGAGCAGTGGCACGCCTGGGTGGCCGTGCTCGTGGCGGCCCTCGCCGTCACACCGCTGGCGCTGGTGCGGTCGGGACGCAGCGGGCTGCGCATGCGCGCCGTCCACGACGACGAGACGGCCGCCCGCCTCGCGGGGATCTCGCCGGCACGCGTCAAGACCGGCGCGTTCGTCGCCGGAGCCCTCGCCGCAGGGCTCGGCGGCGGAGTCCTCGCCGTCGTCACCCAGAACGTCAGCCCGGGCGCCTACGACCTGGCCTTCTCCCTCCTGCTGCTCGTGGCCGTCGTCGTCGGCGGGCTCGGCAGCATCGGCGGGGCCGCCGTCGGCGCCGTCCTCGTCGTGCTGCTGCCCTGGCTGATCGACACCGGCGTCGCCGCCGTCGGCCTGCCGTCCGAGCTCGAGCAGCGGCTGTCCGGCAACGTCGCCGTCCTCGTCTTCGGTGCACTGCTGATCGCGGTCACCGTCGTGTGGCCCGGAGGGCTGTCCTACGCCCTCGGGGACCGCATCCGTTCCCTCACCACCAGGTTCCGGCCCTCCCGGACCGTCCCGCAACAGCTCACAGAGAGGTGAMTTPAQRRRAVLVRSAVCTLLAVGATFVLDSYANYQLATIAAIFCATAGLTLLVGLTGQLSLGHAVLMAAGGYGYALTAAPLADAGVEGVLRILGGLLGALLLAGAVGGLLGLAGARLRGPYLAGLTLALVIALPAISTQVPALGGAQGVGVPFEGVPDALGGVVSIEQWHAWVAVLVAALAVTPLALVRSGRSGLRMRAVHDDETAARLAGISPARVKTGAFVAGALAAGLGGGVLAVVTQNVSPGAYDLAFSLLLLVAVVVGGLGSIGGAAVGAVLVVLLPWLIDTGVAAVGLPSELEQRLSGNVAVLVFGALLIAVTVVWPGGLSYALGDRIRSLTTRFRPSRTVPQQLTERPGPT0020775_4642DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
AK018_054821281hypothetical proteinATGCGGACCCCCACCATCACCCGTGCCCCGGCACGGACCTTCGTCGCCGCCGCCGGCGCCGGAGCGCTCCTGCTGTCCCTGGCCGCCTGCGGCGGCGCCGACGAGGCCGTACCCGGCGTCTCGGAGGACACCATCACGATCGGTACCCACCAGCCGCTCACCGGTCCGGCCGCCGCCGGCTACTCGTCGATCTCGGCCGCCACAAGCGCCTACTTCGACTACGTCAACGCGAACGGCGGCGTCCACGGACGCCAGATCGAGTACATCGTCAAGGACGACGCCTACAACCCGGCGAACACCCAGACGGTGGTGCGCGAGCTCGTCCAGCAGGACGACGTCTTCGCCGTCGTCAACGGCCTCGGTACACCGACGCACTCCTCCGTGCTGGACTTCCTCAACCAGAACGAGGTGCCCGACCTGTTCGTCTCCTCGGGGTCGACGGCGTGGAACGACCCGGAGGAGTACCCGTACACCTTCGGGTACAACGCCGACTACCACGTCGAGGGCTCCGCGCTCGGCCAGTACGCCGCCGACGAGCACGCCGGCAAGAGCGTGTGCGTGCTCGGACAGGACGACGACTACGGCGAGACCTTCCTGGAGGGCGTCCAGATCGCTCTCGGGGAGGACGGCGTCACCACCTACGAGACCTACGAGACCTCCAACCAGGACGTCACCGCCCAGATCGGCGCCATGCAGTCCGCGGGGTGCGAGGTCGTCATGCTCGCGACCGTCAACGGCTTCACGGCGCTCGCCGTGGGCACCGCCGCGCAGATGGGCTTCATGCCGACCTGGATGGCGGCGTCCGCGGGTGGCGACTACCCGACGCTCGTGGAGTTCCTCGGCGAGGACGTGGCCGCGCAGGTGCTGCAGGGCTTCACCTCGGTGAACTACCTGCCGTTCAGCCCGGACGGGGAGTGGGTCGAGCTCTTCACCGAGATCAACGACGAGTACAACGGCAGCGCCGCCTTCGACGGCAACACCGTGTTCGGCATGGGCGTCGGGTACGCGTTCGTCGAGGCGCTGGAGGCCGCCGGCGAGGACCCGACCCGCGAGTCCCTCGTGGAGGCGCTCGAGTCCGGCGAGGTCGTGGGCAACGGCATCGTGCCCCTGGCCTACAGCGCGGAGAACCACTCCGGGTACGACGCCGTGGGGATCACCATGGTCGACGGCGGCGTGCAGGACTTCGTCGGGTCCACCTACCGCCTGGAGGGGGAGTCGGTGACGGCGATCGAGCCGGAGCAGCTGCCCCTGGACGGCAACGGGATCCCGGCCGCCGAGTGAMRTPTITRAPARTFVAAAGAGALLLSLAACGGADEAVPGVSEDTITIGTHQPLTGPAAAGYSSISAATSAYFDYVNANGGVHGRQIEYIVKDDAYNPANTQTVVRELVQQDDVFAVVNGLGTPTHSSVLDFLNQNEVPDLFVSSGSTAWNDPEEYPYTFGYNADYHVEGSALGQYAADEHAGKSVCVLGQDDDYGETFLEGVQIALGEDGVTTYETYETSNQDVTAQIGAMQSAGCEVVMLATVNGFTALAVGTAAQMGFMPTWMAASAGGDYPTLVEFLGEDVAAQVLQGFTSVNYLPFSPDGEWVELFTEINDEYNGSAAFDGNTVFGMGVGYAFVEALEAAGEDPTRESLVEALESGEVVGNGIVPLAYSAENHSGYDAVGITMVDGGVQDFVGSTYRLEGESVTAIEPEQLPLDGNGIPAAEPGPT0020765_2133DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
AK018_054831203bbsG_2(R)-benzylsuccinyl-CoA dehydrogenaseATGGACTTCGCCCCCGACGCCCGCACCACCGAGCTCGCCGAGACGGTGCACCGGTTCCTGCACGACCAGGTCCTGCCGGCCGAGCCCGTCCTGGACCGCCAGCTCGCCGACACCCCCGACGTCTGGACGTTCCGGCCGATCGTCGACGAGCTGCGCGCCAAGGCCCGCGCGGAGGGCCTGTGGAACCTGTTCCTGCCGTCCGAAGGCGGTGCCGGACTGACCAACCTGCAGTACGCACCGCTGGCCGAGCTCACCGGGTGGAGCCAGCGCCTGGCCCCGGTCGCGATGAACTGCGCCGCCCCGGACACCGGCAACATGGAGCTGCTGGCCGAGTTCGGCACTCCCGCGCAGCAGGAACGCTGGCTGGAGCCGCTGCTGGAGGCGCGCATCCGCTCGGCGTTCAGCATGACCGAACCGGACGTCGCGTCCTCGGATGCGTCCCAGATCGGCACCCGGATCCGCCGCGACGGCGACGAGTACGTCGTGACGGGGCGCAAGTGGTGGTCGACGGGAGCCATGAACCCGGACTGCCGGTTGCTCATCGTCATGGGCAAGACCGACCCGGACGCTCCGCGCCACCAGCAGCAGTCGATGGTCCTGGTCCCCCGCGACACCCCGGGGGTGCGGATCGTGCGCCCGCTGACCGTGTTCGGCTACGACGACCGCGACCACGGCGGGCACGCCGAGATCGTGTTCGACGACGTGCGCGTGCCGGTCGAGAACCTCCTCGGCACGGAGGGCGGCGGGTTCGCGATGGCCCAGGCCCGGCTCGGCCCGGGACGCATCCACCACTGCATGCGTGCGCTCGGCACGGCGGAGCGCGCGCTGGCGCTGGCCATCGAGCGGGCGCGGGAGCGGTCCACGTTCGGGGTGCCGCTGTCCGAGCAGGGGGTCATCCGCGAGTGGGTCGCCGAGTCCCGCGTCGAGATCGAGGCGCTGCGGCTGCTCGTGCTCAAGACCGCCTGGCTCATGGACACCGTGGGCAACCGCAAGGCGATGACGGAGATCCAGTCGATCAAGATCGCCGTGCCCCGTGCGGTGCAGCGGATCCTGGACCGCGTCATCCAGGTCTTCGGCGCTGCCGGGGTGTCGTCGGACCAGCCGCTGGCGGAGATGTTCGCCGGCAACCGGTCGCTGCGCATCGCCGACGGGCCCGACGAGGTCCACCTCGCCTCGCTGGGCCGCGCCCAGCTGCGCCGCTGAMDFAPDARTTELAETVHRFLHDQVLPAEPVLDRQLADTPDVWTFRPIVDELRAKARAEGLWNLFLPSEGGAGLTNLQYAPLAELTGWSQRLAPVAMNCAAPDTGNMELLAEFGTPAQQERWLEPLLEARIRSAFSMTEPDVASSDASQIGTRIRRDGDEYVVTGRKWWSTGAMNPDCRLLIVMGKTDPDAPRHQQQSMVLVPRDTPGVRIVRPLTVFGYDDRDHGGHAEIVFDDVRVPVENLLGTEGGGFAMAQARLGPGRIHHCMRALGTAERALALAIERARERSTFGVPLSEQGVIREWVAESRVEIEALRLLVLKTAWLMDTVGNRKAMTEIQSIKIAVPRAVQRILDRVIQVFGAAGVSSDQPLAEMFAGNRSLRIADGPDEVHLASLGRAQLRRPGPT0008385_4358DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
AK018_054841062hypothetical proteinATGACCGACGTCCCCGGCCTGGACCGCGCCGGCCTGACCGACTGGCTGGCACGAGAGCACCCGGAGCTGGTGCCCTCACCCGACGTGACGCTCACCGTCGAGGTCATCGCCGGCGGCCGCAGCAACCTGACCTACCGTGTCGACGGCGCCGCGCTGCCCCTGGTGCTGCGGCGTCCCCCGCTGGGCCACGTGCTCTCCAGCGCGCACGACATGCGACGCGAGCACCGGGTGATCTCCGCGCTCGAGGCCGGTGAGGTGCCCGTCCCCGCGACCGTCGACGTCGTCGACGACACCGCCACGAACGAGGTCACCGGGACGACGTTCTTCGTGATGGAACGTGTCGAGGGCGTCGTGCTGTCCCGCCCCGAGCAGAACGCCGACTACACCCCCGCCGGGCTGCACCGGTTGGGCATCGGGCTCGCCCGCACGCTCGCCGACCTGCACCGCGTCGAGCCCTCCGACGTCGGCCTGGCCGACTTCGGGCGCCCCGACGGGTATCTCGAGCGCCAGCTCGCGACGTGGCGCCGCCAGTACGACGCGTCGCGCTCCCGCGAGCTGCCCGACCTCGACGCGCTGCAGGACCGGCTCGCGTCCGGCGTCCCTGTGGCGCACCGGACCGGGATCGTCCACGGCGACTACCGCCTCGACAACGCCATCGTCACCGGCCCCGCGGACCGGCCCACCATCGCCGCCATCCTCGACTGGGAGATGGCGACCCTCGGCGACCCCCTCGTGGACCTCGGCCTCCTCGGCCTCTACTGGGACATCCGCGCCCTGAGCGACGACGGCGTCGCGGCCAGCGCCGTCGTCCCCGGTGTCGGCTACCCCACCTTCGACGAGCTCGTCGAGGCCTACGCGAACCGGGTCGACGTCGACCCGCCGGACCTGTGGTGGTACCGCGCGTTCGCCGCGTACAAGCTCGCCGTCATCCTCGAGGGGATCCACTACCGCTACCGCGCCGGCGAGACCGTCGGTGCCGGCTTCGACACGATCGGCGACCTCGTCGCCCCGCTCGCGGCCGACGGCCTCGCCCGTGCGTCCGCCCGACCCAGGAGCAGCTGAMTDVPGLDRAGLTDWLAREHPELVPSPDVTLTVEVIAGGRSNLTYRVDGAALPLVLRRPPLGHVLSSAHDMRREHRVISALEAGEVPVPATVDVVDDTATNEVTGTTFFVMERVEGVVLSRPEQNADYTPAGLHRLGIGLARTLADLHRVEPSDVGLADFGRPDGYLERQLATWRRQYDASRSRELPDLDALQDRLASGVPVAHRTGIVHGDYRLDNAIVTGPADRPTIAAILDWEMATLGDPLVDLGLLGLYWDIRALSDDGVAASAVVPGVGYPTFDELVEAYANRVDVDPPDLWWYRAFAAYKLAVILEGIHYRYRAGETVGAGFDTIGDLVAPLAADGLARASARPRSSNANANANANA
AK018_054851005hypothetical proteinGTGTCCGAGCCGGCCGCGCACTACGCTCGGCGGGTGACCACCACGCCCGTGGAGCGCTGGCTGCTGGACTCCGACCCCGCCCTGCGGTGGCAGGTCGAGCGCGACCTGCTCGGCGTCGACGACGCCGTCTGGCGTGCCACGCGGGAGCGCGTGGCGACCGAGGGGACGGGCGCCCGTCTGCTGGCCCGGCAGGACGACGACGGCCGGTGGGCGGGCGGCGCCTTCTTCCCGGGCGGGCAGGCGTGGTTCGCGCAGCAGGGCGCGGGTGCGCCCCAGCCGTGGACCGCGACGACCTGGGCGTTGACCTCGCTGCGCGAGTGGGGGCTGGACGCCGGGGTGCTGCGGGCGAACGGCACGCCCGAGCTCCTGGCCCGGCACTGCCGGTGGGAGTACGACGACCTGCCCTACTGGGACGGCGAGGTCGACTGCTGCATCAACGCCTTCACGCTCGCCAACGGCACCTGGCTCGGGGTCGACGTCGCCGGCATCCGGGACCGCCTCGTGACCGGGCGCATGCCCGACGGCGGCTGGAACTGCGAGTGGGTCGAGGGCGCCACGGTGTCCTCGTTCGTCTCCACCCTGAACGTGCTCAAGGGGCTGCTGGCCCACGAGCAGCTCGTCGGCGGTGACGCACGCGTGCGGGCGGCGCGCCGGACGGGGGAGGAGTACCTGCTGGCGCGGCGGTTGATGCGTCGGCTCTCGACCGGCGAGCAGTTCGCCCCGTGGGTGCGCCGGTTCGAGTACCCGTTCCGCGGCCGCTACAGCGTGCTCAACGCCGCCGACTACTTCCGGCGGGCCGCGCGGCACGACGGCGTCGCCCCGGACGAGCGGTTGTCGGAGGCCGTCGAGGTGGTCCGGGCCGCGCGGCGCGACGACGGCACGTGGGCTCGCGACCACCGTCACCCGGGCCGGGTGTGGTTCGAGGAGGACGTCGCCGTCGGGGAGTCGTCTCCGTGGCTGACCCTGACGGCCGAGCTCCTGCTGCGCTGGTGGGACGGGTGCTGAMSEPAAHYARRVTTTPVERWLLDSDPALRWQVERDLLGVDDAVWRATRERVATEGTGARLLARQDDDGRWAGGAFFPGGQAWFAQQGAGAPQPWTATTWALTSLREWGLDAGVLRANGTPELLARHCRWEYDDLPYWDGEVDCCINAFTLANGTWLGVDVAGIRDRLVTGRMPDGGWNCEWVEGATVSSFVSTLNVLKGLLAHEQLVGGDARVRAARRTGEEYLLARRLMRRLSTGEQFAPWVRRFEYPFRGRYSVLNAADYFRRAARHDGVAPDERLSEAVEVVRAARRDDGTWARDHRHPGRVWFEEDVAVGESSPWLTLTAELLLRWWDGCNANANANANA
AK018_05486414hypothetical proteinATGCCCGTCCGCCACCCGTTCGCCCTGCGCTGGAACGACAACGACCAGTACGGCCACGTCAACAACACCGTCTACTACCAGGCCATGGACACCGCGGTGAACACCTGGATGATCCGCGAGGCGGGGCTCGACCCCGCCGGGGCGGTGCGCGGCTACTGCGTGGCGTCGTCGTGCGAGTTCCGCTCCCCCGCCTCCTACCCGGACGACGACCTCGAGGTCGTCATCGGCGTCGAACGTCTCGGCACCACCAGCATCACGTGGGACCTGCCGATCGTGCGCGCCGGTACCGACACCGCGGTCGCCACCGGTCGGTTCACCCACGTGTTCGTCGACGCGACCACCCAGCGCCCCGTGCCGGTGCCGACGTCGATCCGCGCCGCCGTCGAGCAGCAGCTCGCACCCAGCGCCGCCTGAMPVRHPFALRWNDNDQYGHVNNTVYYQAMDTAVNTWMIREAGLDPAGAVRGYCVASSCEFRSPASYPDDDLEVVIGVERLGTTSITWDLPIVRAGTDTAVATGRFTHVFVDATTQRPVPVPTSIRAAVEQQLAPSAAPGPT0001850_6764DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
AK018_05487642hypothetical proteinATGCTGTCCCCGTCGAGCGACATCGCCACCGTGGGCCTGCGAGCCGCGCCGACCCGCCTGTCCGCACGGCTCGCTCCCGGCGTCCACCCCGATGCGCTGCGCGCCTTCGACCGCGCACGTGAGACCTTCGTCTCAGGTCGACGCATCGACATGGGCGGCCTGGCCGCCGAGCTCGCCGTCGACCGCACGTCGGTGTTCCGCTGGGTCGGCAACCGCGACGCGCTCCTGTGCGAGGTGCTGTGGTCGCTGGCGGTCCCCACGCTCGTCCAGGCGGAGCACGCCGCCGACGACGTCGCCCCCGACGGCGGGCCCGCCCACGTCGCGACGCTGCTCACACACTTCGCCACCGACCTGATCGAGGCCGAGTACTTCCGCACCTTCCTCGACCGCGAGCCCACCCGAGCGCTGCGCCTCATGACGACGACGGCCGCACCCATCCAGCGCCGCTACGTCGCGACCGTCGAGCACCTGGTGCAGGTCCACCTCGGCCCCACCCCGTTCGACGGCGCCATCGACGCCCACGCGCTGGCCTACCTGCTGGTGCGCGTGTCGGAGTCCTTCACCTACGCCGACCTCATCGCCGGCGAACCCCCGAGCCCCGACGCCGCCGGCTCGGCGTTCCGCCACCTGCTGCGCGTCTGAMLSPSSDIATVGLRAAPTRLSARLAPGVHPDALRAFDRARETFVSGRRIDMGGLAAELAVDRTSVFRWVGNRDALLCEVLWSLAVPTLVQAEHAADDVAPDGGPAHVATLLTHFATDLIEAEYFRTFLDREPTRALRLMTTTAAPIQRRYVATVEHLVQVHLGPTPFDGAIDAHALAYLLVRVSESFTYADLIAGEPPSPDAAGSAFRHLLRVNANANANANA
AK018_054881215mmgC_5COG1960Acyl-CoA dehydrogenaseATGACTCTCACCACCCCGGCGGCACCCGCCGCCCCCGCAGCCACCGAGCTGCTGGACGCCGACTTCTACGGCTTCCAGCACCAGCTCACCGCGACGGAACAGGCCGCCGTCGGACGCGTGCGCGACTTCATGGAGCGCGAGGTGCGACCCGTCGCGGACGACTACTGGGACCGCGCCGAGTGCCCGGTCCACCTGTTCAAGTCGTTCGCCGAGCTCGGCTCGGTCGGCGCCGCATGGTCCGAGACCGCCCAGTTCGAGAACAGCGCCGTCTTCCGCGGTTGGGTCGGGATGGAGCTCGCCCGCGTCGACTCCTCGTTCTGCACCTTCATCGGCGTGTCCAGCGGGCTGGCGATGAGCTCGATCGGGCTGGGCGGCTCCGCCGAGCAGCGGGCGCAGTGGCTGCCGCCCATGGCGCGCGGCGACCTCATCGGCGCGTTCGGCCTCACCGAGCCGCTGTCCGGGTCGGACACGGCCCGCGGCCTGCGCACCACCGCCACCCGCCACGGCGACACCTGGGTGCTCGACGGTGCCAAGCGCTGGATCGGCAACGCCACGTTCGCCGACGTCGTCGTCATCTGGGCCAAGGACACCGCCGACGACCAGGTCAAGGGCTTCCTGGTCCGCAAGGGGACGCCGGGCTTCACCGCCACGAAGATCGAGCGCAAGCAGTCGCTGCGCATCGTGCAGAACGCCGACATCACGCTCGACGGCGTCGAGATCGCCGAAGCCGACCGCCTGCAGGGCATCGACAGCTTCAAGGACCTGGCCAACGTGCTGCGGGTGACGCGTGACGGTGTCGCGTGGCAGTCGCTGGGCACCATGATCGGCGCCTACGAGGCCGCCGTGCGGTACACGGCCGAGCGTGAGCAGTTCGGCAACCCGATCGCCTCCTACCAGCTCGTCCAGGACAAGCTCGCCACCGCCCTCGGCAACATCACCGCGAGCCTGGCCACGTGCGTGCGCCTCGCACAGATGCAGGACGACGGCACCCAGCGTGACCAGCACGCCGCGCTGGCCAAGGCGTTCGTCACCACCCGCATGCGCGAGACCGTGGCGCTGGCGCGCGAGGTCTGCGGCGGCAACGGCATCACCCTCGACACCGGGGTGGCGCGCTACTTCGCCGACGCCGAGGCCGTCTACACCTTCGAGGGCACGCGCGACATGAACCAGCTCATCGTCGGACGCTCCATCACGGGCCACGCGGCCTTCGTCTGAMTLTTPAAPAAPAATELLDADFYGFQHQLTATEQAAVGRVRDFMEREVRPVADDYWDRAECPVHLFKSFAELGSVGAAWSETAQFENSAVFRGWVGMELARVDSSFCTFIGVSSGLAMSSIGLGGSAEQRAQWLPPMARGDLIGAFGLTEPLSGSDTARGLRTTATRHGDTWVLDGAKRWIGNATFADVVVIWAKDTADDQVKGFLVRKGTPGFTATKIERKQSLRIVQNADITLDGVEIAEADRLQGIDSFKDLANVLRVTRDGVAWQSLGTMIGAYEAAVRYTAEREQFGNPIASYQLVQDKLATALGNITASLATCVRLAQMQDDGTQRDQHAALAKAFVTTRMRETVALAREVCGGNGITLDTGVARYFADAEAVYTFEGTRDMNQLIVGRSITGHAAFVPGPT0021815_862DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
AK018_054891224fadA_3COG01833-ketoacyl-CoA thiolaseATGACCGAGGCCTACATCGTGGCCACGGCGCGCTCTCCGATCGGGCGCGCGTACAAGGGGTCGCTGCGCGAGCTGCGCGCCGACGACCTCGCCGCCCGGATGGTCCGCGCGGCGCTCGACAAGGTGCCCTCGCTCGACCCGGAGCGGATCGACGACCTGATCCTCGGCTGCGGGCTGCCCGGCGGCGAGCAGGGCATGAACATGGGTCGCATCGTGGCGGTCGCGCTCGGCCTGGACGGCGTCCCCGGTACCACCGTGACCCGGTACTGCTCGTCCAGCGTGCAGTCGACACGCATGGCGTTCCACGCGATCAAGGCCGGTGAGGGCGACGTGTTCGTCTCCGCCGGCGCCGAGTCGGTGAGCCGCATGGTCAAGGGCTCCTCGGACTACATCGAGGGACAGGACCTGGAGAACCCGCGGTTCGCCGAGGCCACCGAACGCACGGCCAAGCGTGCTGTCGGCGGCGCGGGCGTCTGGACCGACCCCCGCGCCGACGGGCTGGTCCCCGACCCGTACATCGCCATGGGGCAGACGGCCGAGAACGTGGCGTCGCTGCACGGGATCACCCGGGACGAGCAGGACGCGTTCGCCGCCCGCTCCCAGCAGCGCGCCGAGAAGGCGATCGCGGACGGATTCTGGTCACGGGAGATCACGCCGGTGACGCTCGACGACGGCACGGTCGTGTCCGCCGACGACGGCCCGCGGGCGGGTACCACCGTGGAGAAGCTCGCGACGCTCGACCCGGTGTTCCGGCTCGACGGCACGGTGACGGCCGGCAACGCCTGCCCGCTGAACGACGGCGCGGCAGCGCTGGTGATCGTCTCGGGTCGCGTCGTGGACGAGCTGGGCCTGCAGCCGGTCGCCCGGATCGTCTCCACCGGCGTCACGGGGCTGTCCCCGGAGATCATGGGCCTCGGTCCCGTGGAGGCGAGCCGGCAGGCGCTCGGCCGGGCCGGGCTCGGTATCGACGACATCGACCTGGTCGAGATCAACGAGGCGTTCGCCGCCCAGGTGATCCCGTCGGCCCGCGAGCTGGGTATCGACGAGGAGAAGCTCAACGTGCACGGCGGGGCCATCGCCGTCGGGCACCCGTTCGGCATGACCGGCGCGCGGATCACGACGACGCTGCTCAACGGGCTGGAGTCGACCGGCGGTCGCTACGGCCTGGAGACCATGTGTGTCGGAGGCGGCCAGGGCATGGCGATGGTGCTCGAGCGCCTCTGAMTEAYIVATARSPIGRAYKGSLRELRADDLAARMVRAALDKVPSLDPERIDDLILGCGLPGGEQGMNMGRIVAVALGLDGVPGTTVTRYCSSSVQSTRMAFHAIKAGEGDVFVSAGAESVSRMVKGSSDYIEGQDLENPRFAEATERTAKRAVGGAGVWTDPRADGLVPDPYIAMGQTAENVASLHGITRDEQDAFAARSQQRAEKAIADGFWSREITPVTLDDGTVVSADDGPRAGTTVEKLATLDPVFRLDGTVTAGNACPLNDGAAALVIVSGRVVDELGLQPVARIVSTGVTGLSPEIMGLGPVEASRQALGRAGLGIDDIDLVEINEAFAAQVIPSARELGIDEEKLNVHGGAIAVGHPFGMTGARITTTLLNGLESTGGRYGLETMCVGGGQGMAMVLERLPGPT0008320_2616DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
AK018_05490309hypothetical proteinGTGGTGCTCGCACTGTCCGCGTCGTCCCGCACCGCACGGAGCATCACCACGACGTCGACGACGCGGCTCGCGCTGGGCCACACCCGGGACGTCGTGCTCGTGGACGTCGTGCTCGAACGCACCGTGCCCGTGGCCCAGGCCCCCGCGGATCTCGCCGAGGGGTACGCCGCCCAGGCGGACTGGGATCCACGCGTCGCCCCGGACGGCTACGTCTACCTGGTCCTGCGGCCGGAACGCATCCAGGCGTGGCGTGAGGTGGACGAGATGCCCGGCAGGGTCCTCCTGCGCGACGGGGAGTGGGTCGTCTGAMVLALSASSRTARSITTTSTTRLALGHTRDVVLVDVVLERTVPVAQAPADLAEGYAAQADWDPRVAPDGYVYLVLRPERIQAWREVDEMPGRVLLRDGEWVVNANANANANA
AK018_05491465COG2030putative enoyl-CoA hydratase 1ATGAGCGACGTCATCCGTATCGAGAGCCCCGCCGCGCTGGGCGACGCCGTCGGCCAGCAGGCCACCGGGGAGTGGTTCGCCGTCGAACAGCCGCGCATCACCGCGTTCGCCGACGCCACCGAGGACCACCAGTGGATCCACCTCGACGCCGAGCGGGCCGCCCACGGGCCGTTCGGCGGCACCATCGCGCACGGCTACCTCACGCTGTCGCTGCTGCCGAAGCTCACCGGCGAGCTGGTGGAGGTCGGGCACACCGCGATGGCGGTGAACTACGGGCTCGACAAGGTCCGGTTCCTCACCCCGGTGCCCGCCGGCGGCCGCGTGCGCGCGGTCGTCGAGATCACCGGCGCCGAACCCACCGGCCAGGGCGTCCGGCTGGCGTCGACCGTCACCGTCGAGCTGGAGGGTGCCGACAAGCCGGCGCTCGTCGCCCAGACGCTGGCGCTGTACGTCCCGGCGGCGTAGMSDVIRIESPAALGDAVGQQATGEWFAVEQPRITAFADATEDHQWIHLDAERAAHGPFGGTIAHGYLTLSLLPKLTGELVEVGHTAMAVNYGLDKVRFLTPVPAGGRVRAVVEITGAEPTGQGVRLASTVTVELEGADKPALVAQTLALYVPAAPGPT0015281_80DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0015281-nodN-NANANA
AK018_05492762novJShort-chain reductase protein NovJATGACCTCCCCCACCGCACGCGTCGCGATCGTCACCGGAGGCGCCCGCGGCATCGGTGCCGCCGTCGCCGGACGCCTCGCCGCGGACGGCTACGCCGTCGCCGTGCTCGACCTGCTCGAGGACGTCGCCGCCGAGACCGCCGCGAAGCTCACCGCCGACGGCCACCGGGCCCTCGGCGTCGGCGTGGACGTCGCCGACGAGGACTCCGTGGCCGCCGCCGTCGACCGCGTCGTCGCGGAGCTCGGGGCACCGACCGTCCTGGTCAACAACGCCGGGATCCTGCGCGACAACCTGCTGTTCAAGATGTCCGCCGACGACTGGGACTCGGTGCTCGGCGTGCACCTGCGCGGCGCCTTCCTGGTGACCCGGGCCGTCCAGAAGCACATGATCGAGGCCAAGTGGGGGCGCATCGTCAACCTGTCGAGCACCTCGGCGCTCGGCAACCGCGGGCAGGCCAACTACTCCGCGGCCAAGGCCGGCATGCAGGGGTTCACCAAGACCCTCGCCATCGAGCTCGGCAAGTTCGGCGTCACCGCCAACGCGATCGCCCCCGGGGTGATCGCCACCGACATGATCGCCGAGACCGCCCAGCGTGTCGGCGTGCCCCTGGAGGACTTCCTGGCGCACATGGCCTCCGAGGTGCCGGTGGGGCGCGTCGGGCAGCCGGAGGACATCGCCGCCGCGGCGTCGTTCTTCTGCTCCGAGGAGGCGTCGTTCACCAGCGGCCAGGTGCTCTACGTGGCGGGCGGGCCGCGGGCATGAMTSPTARVAIVTGGARGIGAAVAGRLAADGYAVAVLDLLEDVAAETAAKLTADGHRALGVGVDVADEDSVAAAVDRVVAELGAPTVLVNNAGILRDNLLFKMSADDWDSVLGVHLRGAFLVTRAVQKHMIEAKWGRIVNLSSTSALGNRGQANYSAAKAGMQGFTKTLAIELGKFGVTANAIAPGVIATDMIAETAQRVGVPLEDFLAHMASEVPVGRVGQPEDIAAAASFFCSEEASFTSGQVLYVAGGPRAPGPT0003180_9374DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_054931128S-(hydroxymethyl)mycothiol dehydrogenaseGTGCAGATCACCGGTGCCGTGCTGGAACGCTGCGGCGCACCCGCGCCCTGGAGCGAGTCCCGGCCGCTCACCCTGAGCACCCTGGAGCTCGACCCGCCCGGCCCGGGCGAGATCGCCGTACGCATCGAGGCCGCCGGGCTGTGCCACTCCGACCTGTCCGTCGTCGACGGCAACCGCGTCCGCCCCACCCCGATGCTGCTCGGCCACGAGGCCGCCGGGATCGTCGAGACCGTCGGCGAGGGCGTCCCGGACGACGCGGGCCTCTCCCCCGGCACCCGGGCGGTCATGACCTTCCTGCCGCGCTGCGGGCGGTGCGCGGCCTGCGCCACCGACGGCCGGCTGCCCTGCAGCGTCGGGTCCGCGGCCAACGCGGCCGGGGAGCTCGTCGGCGGCGCCCGCCGCCTGCACCGCGACGGCACCGACGTCCACCACCACCTGGGCGTCAGCGCGTTCGCCACCCACGCCGTCGTCGCCGCGGCCTCCGTCGTGCCCGTGCCCGACGACGTCCCCGCCGACGTCGCCGCCCTGCTCGGCTGCGCCGTGCTCACCGGCGGCGGGGCCGTGCTCAACGCCGGACGGCCCGCCCCGGGCGACGCCGTCGCCGTCGTCGGGCTCGGCGGCGTCGGGATGGCGGCGCTCCTCGTGGCCCACGCGCTCGGTCACGAGGTGATCGGCGTCGACACCGTCCCGGCCAAGCTCGAGCTCGCCCGCGAGCTCGGCGCCACCCGGGTCCTGACCCCCGCCCAGGTGGCCGACGGCAGCCTCCGGGCCCCCGTCGTCGTCGAGGCCGCCGGCAACGCCCGCGCCTTCGAGACCGCCTACGCCCTGACCGCCACCGGCGGCACCACCGTCACCGTCGGACTCCCCGGCCCGGACGCCCGCGCGAGCATCGCACCCCTGAGCCTGACCGCCGAGGCGCGCACCGTCATCGGCTCCTATCTCGGCTCGGCCGTGCCGAGCCGCGACATCCCCCGCTACGTGGAACTCTGGCGAGCAGGACGACTGCCGCTGGAACGACTCGTCTCGGCCCGCATCGGCCTCGACGAGCTGCCCCGCGCGCTGGACCGCCTCGCCGCCGGCGAGGAGCTGCGCCAGCTGATCACCTTCGACGAGAGGAACACCGCATGAMQITGAVLERCGAPAPWSESRPLTLSTLELDPPGPGEIAVRIEAAGLCHSDLSVVDGNRVRPTPMLLGHEAAGIVETVGEGVPDDAGLSPGTRAVMTFLPRCGRCAACATDGRLPCSVGSAANAAGELVGGARRLHRDGTDVHHHLGVSAFATHAVVAAASVVPVPDDVPADVAALLGCAVLTGGGAVLNAGRPAPGDAVAVVGLGGVGMAALLVAHALGHEVIGVDTVPAKLELARELGATRVLTPAQVADGSLRAPVVVEAAGNARAFETAYALTATGGTTVTVGLPGPDARASIAPLSLTAEARTVIGSYLGSAVPSRDIPRYVELWRAGRLPLERLVSARIGLDELPRALDRLAAGEELRQLITFDERNTAPGPT0006375_692DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
AK018_05494882hypothetical proteinGTGACCGTCGCTCCCGAGGCCCCGACCGAGCACGCGTCCCGGCACTCCCGGGCTCTCGCCGCCCTGCGGGCCGCTGAGCACCGGACAGCCGGCGGGCGCCGCTCTCTCCGCGCACCGACCGACGGCCCCGTCGCACGCCTCGTCGACGCCCCCGCCGCAGCCGAGCGACGGTCGGAGCCCGCCGCGCACCGGGTCGATCCTGCCGGTGCGGTCCATCGCTCGGGTGCCGGGCGCGCCGTCCACCCGGACCTCGCCGCGCTCCTTCCAGGCGGCGTCCTGCCGGTCGGGGGCGTGCTCGCCGTGCAGGGCTCGACCAGCCTGCTGCTCGGTCTGCTCGCCGCACCCTCCCGCGAGGGCGCCTGGACGGCGCTGGTCGGGGCACCCGCCGTCGGGCTGCTGGCGGCCGCCGACGCCGGGATCGACCTGGCGCGCACCGTCGTCGTGCCCGCTCCCGGCCCGGACGCGCCCGCGGTGCTGGCCGCGCTGCTGGACGGCATGGACCTGGTCGTCGTCGGGCCGCGCGCCGCCCTGACCGATACCGACCGCCGACGGCTCGCCGCCCGCACGCGTCAGCGCGACGCCGTCCTGCTCGCCACCGACCGCTGGGCCGGCGCGCACGTCACGCTCGACGCCCGCGGCGGTGCCTGGACCGGCGTGGACGCGGGCGCCGGGTGGCTGCGCCGTCGCACCCTGCGGGTGCTGCGCACCGGGCGCGGGGCCGCGGCGCGTCCGGTGGAGATCGACGTCGAGGTGCCGCTCGGTGGCGAGGAACCGGTCCTCGTGCCCGCGGCGGGCCGGTCCGACGGCGCCGCTCCGGCCGGGTCGCCGCGGCCGGACGCCGTCGGCGACGCTCCCGACGACCGGCACCTGCAGGTCGCATGAMTVAPEAPTEHASRHSRALAALRAAEHRTAGGRRSLRAPTDGPVARLVDAPAAAERRSEPAAHRVDPAGAVHRSGAGRAVHPDLAALLPGGVLPVGGVLAVQGSTSLLLGLLAAPSREGAWTALVGAPAVGLLAAADAGIDLARTVVVPAPGPDAPAVLAALLDGMDLVVVGPRAALTDTDRRRLAARTRQRDAVLLATDRWAGAHVTLDARGGAWTGVDAGAGWLRRRTLRVLRTGRGAAARPVEIDVEVPLGGEEPVLVPAAGRSDGAAPAGSPRPDAVGDAPDDRHLQVANANANANANA
AK018_054951728dinB_1DNA polymerase IVATGAGCACGAGCAGCCCTCGCGACGCCACCACCCGCACGGCGGTGCTCTGGGTCCCCGACTGGCCGGTGGTGGCCGCCCTGACCGCCGCCGACCTGGACGCGCACGTGCCGGCCGCCGTCCTCGGCGCACCCTCGGGCGGCGGGACGACGGCGGGCCGCAGCGTGGTGGCGACCTCCGCCGTCGCGCGCACCGCGGGGGTCCGTCGCGGCATGCGGCGCCGCCAGGCGCAGGAGGCGTGCCCCGACCTGGTGCTGCTGGAGGTCGACGACGAGCGCGACGCCCGCGCCTTCGAGCCGGTCGCCGCGGCGGCCGAGACGGTCGTAGCCGGTCTCGAGATCGCCCGGCCCGGGCTCCTGCTGCTCCCCGCCGACGGCGCCGCGCGCTACCACGGCTCGGAGCGGGCGCTGGCCGAGGCCCTCGTCGCCGCGGTGGCCGAGGCCGGGCACGAGTGCCAGGTCGGGGTGGCCGACGGACTGCTGGCCGCGGTGCTCGCCGCCCGCTCCGACGCCGTCGTGCCACCCGGCGGGTCGCCGGCCGCGCTCGCCGGGCGGCCGGTCGGCGAGCTCGTGCACGCCGTGTGCGACCCGGGCGTCGTGGCCGCCGTGCGTGACGCCGTCGGACTGTGGCGGCGGCTCGGTCTGCACACCCTCGGGGACCTGGCCGCGCTGCCTGCCGCGAGCGTGTCCGCCCGGTTCGGGGACCTCGGCACCTGGGCGCACCGCCTGGCCCGCGGCGAGGACGAGCGTCCGCCCGCCCGGCGCCGCATCGAGGCCGACCTGACGGTCGGCACCGACCTGGACCCGCCCGCCGACCGGGTCGACGCCGCCGCGTTCGCCGCCCGCCGCCTCGCCGAGGAGCTGCACGCCCTGCTCGTGACCCACGGCGCGGCGTGCGGACGCCTGCGCATCACCGCCCGGACCACCGAGGGCGAGCTGGAACGGCTCTGGCGCACGGACACCGCCGCCGGCGGGCTGTCGGCCGCACGGATCACCGACCGGGTGCGCTGGCAGCTCGAGGGCTGGCTCACCGACGCCGCCCGCCGTCGGACCGGCCCGGCGTCCGGCCCCGGGGTTGCGCCCGAGGTCGCCCCGGTGGTCCACCTCGCGCTCGCCGCCGAGGACGTCGCCCCCGCGGGCACCCACCAGCCCAGCCTGTGGGGTGCCGACGCCGGGCAGGACGAACGGGCCCGCCAGGCCCTGGACCGGGTGCAGGGGCTGCTCGGCGGGGACGCCGTGCTCACCGTCCGGCGGGCCGGCGGACGCCACCCGCGTCATCGCGTCCGGCTCGTGCCCTACGGCGAGGAGGCCGTCGTCGACCGGTCGCCGGACCGGCCGTGGCCCGGCGCCCTGCCCAGCCCGGCACCGGCCACCGTGCTGCCCGAGCCCGCGCCCGTGCGGCTCCTCGACGCCGCCGGGGCCGACGTCGTCGTCGACGCGCGCCTGGCGATGAGCGGCCGGCCCGCTCTGGTCCGCCGGCACCGAGATACCGGCTCGTCGACTGGCAGCCCTCTCCACGGCTGCGACGACCCGGTATCTCGGCGACCGGGCGGTATCTCGGGGGAGGAGAGGATCGTCGGCTGGGCCGGGCCGTGGCCGCTCGCCGAACGCTGGTGGGCGCCCGACGGCGGAACCCGGCGGGTGCACCTGCAGGCGGTGCTCGAGGACGGGCGCGGGCTGCTGCTCGCCCAGGTCGCCGGCGCCTGGCAGGTGGAGGCGCTCTATGACTGAMSTSSPRDATTRTAVLWVPDWPVVAALTAADLDAHVPAAVLGAPSGGGTTAGRSVVATSAVARTAGVRRGMRRRQAQEACPDLVLLEVDDERDARAFEPVAAAAETVVAGLEIARPGLLLLPADGAARYHGSERALAEALVAAVAEAGHECQVGVADGLLAAVLAARSDAVVPPGGSPAALAGRPVGELVHAVCDPGVVAAVRDAVGLWRRLGLHTLGDLAALPAASVSARFGDLGTWAHRLARGEDERPPARRRIEADLTVGTDLDPPADRVDAAAFAARRLAEELHALLVTHGAACGRLRITARTTEGELERLWRTDTAAGGLSAARITDRVRWQLEGWLTDAARRRTGPASGPGVAPEVAPVVHLALAAEDVAPAGTHQPSLWGADAGQDERARQALDRVQGLLGGDAVLTVRRAGGRHPRHRVRLVPYGEEAVVDRSPDRPWPGALPSPAPATVLPEPAPVRLLDAAGADVVVDARLAMSGRPALVRRHRDTGSSTGSPLHGCDDPVSRRPGGISGEERIVGWAGPWPLAERWWAPDGGTRRVHLQAVLEDGRGLLLAQVAGAWQVEALYDNANANANANA
AK018_054963630dnaE2_1Error-prone DNA polymeraseATGACTGAGCCGGAGGTGCAGCGGAGCGTGGGGGCCGAGGAACGAGGCGCGCGCGTGGAACGGAACCGCAGGCTCAGTCATCGATCAGCCCCGACTGAGCCGCGGAACAGGTACGCCGAGCTGCACGCCCACTCGGCCTTCAGCTTCCTCGACGGCGCCAGCCACCCGGCCGAGCTCGCTGCCGAGGCCGACCGTCTCGGCCTCGAGGCCCTGGCCCTGACCGACCACGACGGACTGTACGGCGTGGTCCGGTTCGCCGAGGCCGCGCGCGCCGTCGGGCTGCCCACGGTGTTCGGCGCCGAGCTGCACCTGCCTGCCCCCGTGCCGGGAGCAGCGCCGGTGCTCGACGAACCCACCGGCGTCCCCGACCCGCGCGCCACCCACCTGCTCGTGCTCGCGCGCGGCCCGGACGGCTACCGGAACCTGTCGCGCGCGATCGCCACCGCCCACCTCGAGGCCGGCGTCAAGGGCAAGGCCCGCTACGACCTCGAGCGGCTCGGCGCTGAGGCCGACGGACAGTGGCTGGTGCTCACCGGCTGCCGCAAGGGCGCCGTGCGGCGGGCGCTGGAAGGAGGCGCCGCGGCTGACAGACCGGACCCCCTGCGCGCTGCCCGCCGCGAGCTCGACCGGCTCACCGCCGTCTTCGGCCGGGACAACGTCGCCGTCGAGATCACCGCCACCGGAGACCCCCGCGACGCCGACCGGCACGACGCCCTGGCGGTGCTGGCCCGGGACGCGGGCCTGCCCCTGGTGGCCACCACCGCCGCCCACTACGCCCGGCCCCGCGACGCCGACCTGGCCGGGGCGCTCGCGGCCGTGCGCGCCCGCTCCTCGCTCGACGACCAGGACGGCTGGCTGCCCGGCGCCCCGACGGCCCACCTGCGCTCGGCCGCCGAGATGGCCCGGCTGCACCACCGCCACCCGCAGGCGGTCCCGACGGCCGCCGAGCTCGCCGCCGAGTGCGCGTTCGACCTGCACCTGGTGGCCCCCGACCTGCCGCCCTACCCGGTGCCGCACGGCCACGACGAGGCGAGCTGGCTGGGTGAGCTCGTGCGCCGCGGCGCCACCGACCGCTACGGGCCGCGACCCGGCACAGACGACGGCGGTCCGGTCCGTGGTCCCGCCGGCCGCGACGGCGACCCGCGGGCGTGGGCGCAGATCGACCACGAGCTGCGCGTCATCACCGACCTGAACTTCCCCGGGTACTTCCTGGTCGTCTACGACCTGGTCGAGTTCTGCCGCCGCGAGGGCATCCTGTGCCAGGGGCGGGGGAGCGCCGCCAACTCCGCGGTCTGCTACGCCCTCGGGATCACCGCCGTCGACGCCGTGCATCACGGGCTGCTGTTCGAACGGTTCCTCGCCCCCGAGCGCGACGGCCCGCCGGACATCGACATCGACATCGAGTCGGGGCGGCGCGAGGAGGTCATCCAGCACGTCTACACCCGGTTCGGGCGCACCCACGCCGCCCAGGTCGCCAACGTCATCTCCTACCGGCCACGCTCGGCGGTGCGCGACGCCGCTCGGGCGCTTGGGTACGACGTCGGGCAGCAGGACGCCTGGTCCAAGTCGATCGAACGCTGGGGGTCGTTGCGCGGTCCCGACCCGACCAGCCCGGCCGCCGACCGTGCCGCCGGGGCTGCGCGGGCGTCCGGCGGGGCACCCGTCACCGACCGTGACCGGCGCAAGGAGCAGGTCGCCGCCCGGTGGCAGCACGGCGCCCCGGACAGACCGGACGGCCGCGTCGTGGACCCGCTCGCCGTCGACGGCGGGTTGCGGCGTGCCGACGACCCGCACGACGTGGTGCCCGCGCACCAGCCGCCGTCGGCCGAGCAGGAGGGTCACATCCCGGCCGCCGTGCTGGACCTGGCCGAACGGTTCCTGCGCCTGCCCCGCCACCTGGGCATCCATTCCGGGGGGATGGTGATGTGCGACCGGCCCGTCATCGAGGTCTGCCCGGTCGAGTGGGCGCGGATGGAGGGCCGCACGGTGCTGCAGTGGGACAAGGAGGACTGCGCGGACGCGGGGCTGGTGAAGTTCGACCTGCTGGGCCTCGGGATGCTCACCGCGATCCGGTACGCCTTCGAGGCGGTCGAGGAGCGCACGGGGGAGCGGCCGGCCCTGCACACCCTCCCGGAGGACGACCCGCGGGTCTACGACCTGCTGTGCGCCGCCGACACCGTCGGGGTGTTCCAGGTCGAGTCCCGCGCCCAGATGGCGACCCTGCCGCGGCTGCAGCCCCGGACGTTCTACGACATCGTCGTCGAGGTCGCCCTCATCCGTCCCGGCCCGATCCAGGGGCGGTCGGTGCACCCGTACATCGAGCGGTCCCGGGGCCGCGAGGAGGTCACCTACCTGCACCCGCTGCTGGAGCCGTCCCTGCGGCGCACCCTCGGGGTGCCGCTGTTCCAGGAGCAGCTCATGCAGATGGCGATCGACGTCGCCGGGTTCACACCCGCTGAGTCCGACCGGCTGCGCCGGGCCATGGGCTCCAAGCGGTCGGTGGAACGCATGGAGGCGCTGCGGGGCCGACTGTTCGCGGGGATGACCGAGCGCGGCGTGCCGGCGGACGTGCAGGAGGAGATCTACGACAAGCTCAAGGCGTTCGCCGACTTCGGGTTCCCCGAGTCGCACGCCTACTCGTTCGCGTTCCTCGTCTACGCCAGCTCGTGGCTCAAGGTGCACGCGCCCGAGGCGTTCTACGCGGGCCTGCTCGCCGCGCAGCCCATGGGGTTCTACTCCCCGGCCTCGCTCGTGGCGGACGCCCGCCGGCACGGCGTGCGGGTGCTGCGCCCGGACGTCAACGCCTCGGCGGCGCTCGCCGGGGTCGAGGCGGTCCCGGACGGGAGCCCGCCCGACGGTGCGACCGGCCCGCCGGCGGGAGCGGGTGTCGGCAGCGGCTACGTTCCGCTCGACGTCGACGCCGGGCTCGCGGTGCGGCTCGGGCTCGGGGCGGTGCGCGGGCTGGGCGACGACGTCGCCGAGCGGATGGTCGCCGAGCGGGAGGCGCGCGGGCCGTTCACCGACCTGCGCGACCTGGTGCGCCGCGTCGAGCTGTCCACCGCACGGCTCGAGGCGCTGGCCACGGCCGGGGCACTGGAACCGTTGGGCGTCACCCGTCGCGAGGGGTTGTGGGCGGCCGGGGCGCTGGGCCAGGAGGGCCCCGGCACGCTCGAGGGGGTCAGCGTGGGCGTGACGGCTCCCGCGCTGCCGGGCATGGACCGCCTGGAGATCGACGTCGCCGACACCTGGGCGACCGGCATCACCCCCGACTCCACCTCACCCCTGGAGCACGTCCGCGCGGCGCTGGACCGGCAGGGGGTCCTCACGGTGGCCGCGGTGACGACGACCGAGCCGGGACGCCGCATCGCCGTCGGCGGGGTGGTCACCCACCGACAGCGTCCGGGGACCGCCAGCGGGGTGACGTTCCTGTCCCTGGAGGACGAGACCGGGCTGCTCAACGTCATCTGCACGCCCGGGCTGTGGCGCCGGTTCCGGACGGTGGCCCGCGGCGCACCCGCCCTGGTGGTGCGCGGTCAGGTGGAGCAGGCCGACGGCGCGGTCAACCTGCTCGCCGAGCACCTCGCCGCGCTGCCCCTGCCGGTGGCGACCCGGTCGCGCGACTTCCGGTAGMTEPEVQRSVGAEERGARVERNRRLSHRSAPTEPRNRYAELHAHSAFSFLDGASHPAELAAEADRLGLEALALTDHDGLYGVVRFAEAARAVGLPTVFGAELHLPAPVPGAAPVLDEPTGVPDPRATHLLVLARGPDGYRNLSRAIATAHLEAGVKGKARYDLERLGAEADGQWLVLTGCRKGAVRRALEGGAAADRPDPLRAARRELDRLTAVFGRDNVAVEITATGDPRDADRHDALAVLARDAGLPLVATTAAHYARPRDADLAGALAAVRARSSLDDQDGWLPGAPTAHLRSAAEMARLHHRHPQAVPTAAELAAECAFDLHLVAPDLPPYPVPHGHDEASWLGELVRRGATDRYGPRPGTDDGGPVRGPAGRDGDPRAWAQIDHELRVITDLNFPGYFLVVYDLVEFCRREGILCQGRGSAANSAVCYALGITAVDAVHHGLLFERFLAPERDGPPDIDIDIESGRREEVIQHVYTRFGRTHAAQVANVISYRPRSAVRDAARALGYDVGQQDAWSKSIERWGSLRGPDPTSPAADRAAGAARASGGAPVTDRDRRKEQVAARWQHGAPDRPDGRVVDPLAVDGGLRRADDPHDVVPAHQPPSAEQEGHIPAAVLDLAERFLRLPRHLGIHSGGMVMCDRPVIEVCPVEWARMEGRTVLQWDKEDCADAGLVKFDLLGLGMLTAIRYAFEAVEERTGERPALHTLPEDDPRVYDLLCAADTVGVFQVESRAQMATLPRLQPRTFYDIVVEVALIRPGPIQGRSVHPYIERSRGREEVTYLHPLLEPSLRRTLGVPLFQEQLMQMAIDVAGFTPAESDRLRRAMGSKRSVERMEALRGRLFAGMTERGVPADVQEEIYDKLKAFADFGFPESHAYSFAFLVYASSWLKVHAPEAFYAGLLAAQPMGFYSPASLVADARRHGVRVLRPDVNASAALAGVEAVPDGSPPDGATGPPAGAGVGSGYVPLDVDAGLAVRLGLGAVRGLGDDVAERMVAEREARGPFTDLRDLVRRVELSTARLEALATAGALEPLGVTRREGLWAAGALGQEGPGTLEGVSVGVTAPALPGMDRLEIDVADTWATGITPDSTSPLEHVRAALDRQGVLTVAAVTTTEPGRRIAVGGVVTHRQRPGTASGVTFLSLEDETGLLNVICTPGLWRRFRTVARGAPALVVRGQVEQADGAVNLLAEHLAALPLPVATRSRDFRNANANANANA
AK018_05497738hypothetical proteinATGCGACAGTGGCGATGGGGCGTGGTGCTCGCGGTGGCGATGGCGACGACGGGGTGCGCCGAGGCGGTCGGGACGGCGGGAGTCGACGGGACGGCGACGCCCGACCCGCGGGCCGACGAACCGGCCGGACCAGAGCTGCTGGCCGACCGGGCCGCCTATCACGGGATCCGCCCCGAGCTCGTGCTGATGGTGGACGGCTACCGACCGGCCCCCGGCGGTGGGGGAGCCTACGGCGCCGACGGGTACGCGGCCGTGCTGGTCGAGGTGCTGCCGGAGGGCGAGCGCCCGGACGAGGACACCGACGTCGTCCTCCTCGCGGCGGAGCCGGGGACCATCGACCTGGCCACGTGCCCCGCGATCCCCGTGCTGACGCCGACCGGTGCCGCGGCGGACGGCACGGTCGAGTGCGCGGCGGACGGTGAAACGTTCGCCCGCACGGCCGGGACGTGGCGCGGGTACGCCGTGCAGCGCGACGCGGCGGTGGTCCGGCTGGACGGCGAGGACGTGGAGGCCGGAGCGCTGCACGACGCGCTGGACTCGCTGCGCGTGCCGACCGTCGGCGAGCTCGACGTGATCCTGCCGCCACCGCCCGCACCGCCGTCGCCGACCGCGTCGGACGGGACGACGCCGACACCTGCGTCGACCCCGACTTCGACGCCGAGCCCCGGGCCCGTCGAGCGCGGCGACCTGCCGCCGGGAGACGGCGCCCCCGACAACAGCGTCGGCCTCGGCGGCTGAMRQWRWGVVLAVAMATTGCAEAVGTAGVDGTATPDPRADEPAGPELLADRAAYHGIRPELVLMVDGYRPAPGGGGAYGADGYAAVLVEVLPEGERPDEDTDVVLLAAEPGTIDLATCPAIPVLTPTGAAADGTVECAADGETFARTAGTWRGYAVQRDAAVVRLDGEDVEAGALHDALDSLRVPTVGELDVILPPPPAPPSPTASDGTTPTPASTPTSTPSPGPVERGDLPPGDGAPDNSVGLGGNANANANANA
AK018_05498900ectD_1Ectoine dioxygenaseATGACCGCCACGACGGACGTCACCACCGACCTGTACCCGACGCGGCTCGCCGAGCCGGGAGAGGTCGTCGAGCGGGAGCACCCCACCGTGTGGGGCCGGCCCGAGGACGGCCCGTTCGACGCCGAGGCCCTGGACGCCCACGCCGAGCGCGGCTTCTCCATCCTCAACGACTTCATCACCCCCGACGAGGTGCGGCAGTACAGCGCGGAGCTGAACCGCCTGTCCACGGACGAGAGCATCCAGGGCGACCACCGCGTCGTCACGGAGAAGACCTCCGGCGAGGTCCGCTCGATCTTCGAGGTCACGCAGCTCAGCGAGCAGATCGAGGCCCTCAGCCGTGACCCGCGGCTGCTCGACCGTGCCCGCCAGCTGCTCGGCTCGGACGTGTACCTGCACCAGACGCGCGTGAACTACATGCCGGGCTACAAGGGTGCCGGGTTCTACTGGCACTCCGACTTCGAGACCTGGCACGCCGAGGACGGCATGCCCGCCCCGCGGGCCGTGAGCTGCTCCATCGCGCTCACGCCGAACTACCCCTACAACGGCGGCCTGATGGTCATGCCGGGATCCCACCGCAGCTACGTGCCGTGCGTGGGCGAGACCCCGGCCGACTACCACAAGGACTCGCTCAAGGAGCAGAAGATCGGCGTCCCCACCGAGGAGGCCATCACCGAGCTCGCGTGGAAGTACGGCGTCGACCAGTTCACCGGGCCGGCTGGATCGGCCCTGTGGTTCGACTGCAACATCATGCACGGGTCCGGCAACAACATCACGCCGTTCCCGCGCTCGAACATCTTCCTGGTGTTCAACAGCGTCGAGAACACGCTCACCGAGCCGTACAGCGCGCCCGCGCCGCGGCCCGAGCACATCGGCAGCCGCGACTTCACGCCGCTGCGGTAGMTATTDVTTDLYPTRLAEPGEVVEREHPTVWGRPEDGPFDAEALDAHAERGFSILNDFITPDEVRQYSAELNRLSTDESIQGDHRVVTEKTSGEVRSIFEVTQLSEQIEALSRDPRLLDRARQLLGSDVYLHQTRVNYMPGYKGAGFYWHSDFETWHAEDGMPAPRAVSCSIALTPNYPYNGGLMVMPGSHRSYVPCVGETPADYHKDSLKEQKIGVPTEEAITELAWKYGVDQFTGPAGSALWFDCNIMHGSGNNITPFPRSNIFLVFNSVENTLTEPYSAPAPRPEHIGSRDFTPLRPGPT0014065_324DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014065-ectD-K10674NANA
AK018_05499858hypothetical proteinGTGCCTCTGCATTCCCCCGAACCCGTCCGCCTCACGCTCGAGTCCGGCGACGCCGCCGTCGGACCCGGCCCCGACCAACGCTGGTCCACCTGGACCTCCGTGGCGAAGGGCCAACGCGGCCCGCAGCCACGACCCGACTGGCTCGTGACCGCCGACGCCGCCCTCGACACCGAGCTCGGCGTCCTCAAGACCGGCAAGGAGGCGGACGTCTTCCTGGTCGAGCGCGCCGTCCCCGACGACCCGGACCGCACCTGCCTGCTCGCGGCCAAGCGGTACCGCGACCCCGACCACCGCCAGTTCCACCGCGACAGCGCCTACACCGACGGCCGGCGCGTGCGCCGCACCCGCGACCAGCGGGCGATCGAGGACCGCAGGTCGTCCTGGGGACGCGCCGTACGCGCCACCCAATGGGCCGACGCCGAGTTCACCACCCTGTGCGCCCTGTGGGACGCCGGCGCCGCCGTGCCCTATCCCGTCCAGGTCGACGGCACCGAGCTCCTCATGGAGTTCGTCGGGACCGTGGACGACGACGGCACACCGGTGGCCGCGCCCCGGCTCGCCCGCGAGCGCCCCGGGGCGTCGCTGCTGGCCGACTGGTTCGACGAGCTGCGCACCGCGATGGGCGTGCTGGCACGGCTCGGCTGGGCGCACGGCGACCTGTCGCCGTACAACGTGCTGGTCCACGACGAGCGTCTGGTGGTGATCGACCTGCCCCAGGTGGTCGACCTGGTGGCCAACCCGTTCGGTGCGGACCTGCTGCACCGAGACTGCCGCACGATGTGCGACTGGTTCGCGGCGCGCGGCCTGGCGGTGGACGCCGACGAGCTGTTCGCGGACGTGTTCGCCCAGGCGTGGTGAMPLHSPEPVRLTLESGDAAVGPGPDQRWSTWTSVAKGQRGPQPRPDWLVTADAALDTELGVLKTGKEADVFLVERAVPDDPDRTCLLAAKRYRDPDHRQFHRDSAYTDGRRVRRTRDQRAIEDRRSSWGRAVRATQWADAEFTTLCALWDAGAAVPYPVQVDGTELLMEFVGTVDDDGTPVAAPRLARERPGASLLADWFDELRTAMGVLARLGWAHGDLSPYNVLVHDERLVVIDLPQVVDLVANPFGADLLHRDCRTMCDWFAARGLAVDADELFADVFAQAWNANANANANA
AK018_05500822hypothetical proteinATGGGATTCGAGGTCGTGGCGGACGGTGTGCTGGTCCGCACGAGCCGGCGGCTGCGCACGACGACGTCTCTCTTGCTGGGCGGGAACGGTTCGCACGGGCGGGGTGCGGTCCTCGTCGACCCGTCCTGGGAGCCGGACGAGCTCGCCGCCGTGGCCGCCGAGGCCCGCGAGCGCGAGGTGCAGGTGCTGGCGGGGTTCGCGACGCACGTCCACCACGACCACCTGCTGTGGCCTCCGGGGCTCGCCGGGCCGGTGCCGCGGTGGGCCACGGCGACGACGGCGCGGATCGCGCGGCGCGAGCGCGCCCGGCTGCTGGCCGAGGCCGGCCGTGACGCGGCACGGTACGGCGGCCGGCCGCCGACGCCGGAGATCCTCGATCTGCTCGGCCGGGTCGACGCGCTGCCGGCGGGGGCCACGACGGTCCCGGACCCGCTCGGCCTGCTCCCACGTGTGGAGGTCGTCGAGCACGACGCGCACGCGCCCGGTCATGCGGCGTTGTGGTTGCCCGGTCCGCGCGTGCTGCTCGCCGGGGACATGCTCAGCGACGTCGAGCCGCCGCTGGTGCTGGACGAGATCACCGGCACGGGCGGGCTCGCGGTGTACCGGGCCGGGTTGGAGACGCTGGCGCCGTACGCGGCGCGGGCGTCCGTCGTCGTGCCGGGTCACGGGGCACCGACGGCGCGGGGCGCCGAGCGGTTGGACGCCGACCGGCGCTATCTCGACGCCGTCGCAGCGGGCAGGGAACCCGACGACGTGCGGCTCGGCACGCCCGACGGCCGGGCGGCGTACGAGGAGCTCCGCAGCGCCCTGCGCGGCGGTTGAMGFEVVADGVLVRTSRRLRTTTSLLLGGNGSHGRGAVLVDPSWEPDELAAVAAEAREREVQVLAGFATHVHHDHLLWPPGLAGPVPRWATATTARIARRERARLLAEAGRDAARYGGRPPTPEILDLLGRVDALPAGATTVPDPLGLLPRVEVVEHDAHAPGHAALWLPGPRVLLAGDMLSDVEPPLVLDEITGTGGLAVYRAGLETLAPYAARASVVVPGHGAPTARGAERLDADRRYLDAVAAGREPDDVRLGTPDGRAAYEELRSALRGGPGPT0001770_4366DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
AK018_05501837hypothetical proteinATGATGGGTGGGCACCACGCCGCCTCCGGGGCGGCCGCCTGGGTGGCCGTCACCGCGACGACGCCGATCGCGTTCGGCTGGTACCCGGTGTCCGACGTCGGCATCATGACGGGCGCTCTCGTCTGCGCGGGCGCCGCCCTGCTGCCCGACGCCGACCACCACAACGGCACCATCTCGCACTCCCTGCCCCCGGTCTCCGAGGGCCTGACCAAGTTCGTGTCCACCGTCTCCGGCGGGCACCGCAACGGAACGCACTCGCTGGTCGGGATCGCGGTGTTCACGGCGATCGCGTGGCTCATGGGTCAGCTGACGGTGCGCACGGAACGCTTCGGCGAGGTGCTGATCGGTCCGGGGATCATGGCCGTGGTCCTGATCGCGTTCGCCGTCCGTGCCCTGAAGCTCACCGGGCAGCGACGCTGGTGGACGTGGACGCTTTCGGTCTCGCTGGCGGCGTTCGTGGCCGTGTTCGCACCCGAGGAGTGGTACTGGATGCCGTTCTGCGTGGGTCTCGGATGCACGGTGCACATCCTCGGCGACTTCCTGACCACCCGCGGCGTCCCGCTGCTGTGGCCGCTGCGGTTCCGCTCCCCGCGGTGGGTGCGCCGCCACCGCTGGCTACCCTTCGACGACATGTGGAGCCCCCGCGGCAACCTGTCGCTGCCGCTCCTCGGCGACGCCGGCTCGTGGCGCGAGTGGGTGCTGACGACCCCGGTCAGCATCTACGCCCTGGTCGGCGTCGCGTGGGCGATGCTGGACCAGATGGGGTTCGACACCGCCGGCGCCTGGGCGTCGGCCACGGACCTGGCGGCGGAGGCGACACGGTCCGTGCTGGGCTGAMMGGHHAASGAAAWVAVTATTPIAFGWYPVSDVGIMTGALVCAGAALLPDADHHNGTISHSLPPVSEGLTKFVSTVSGGHRNGTHSLVGIAVFTAIAWLMGQLTVRTERFGEVLIGPGIMAVVLIAFAVRALKLTGQRRWWTWTLSVSLAAFVAVFAPEEWYWMPFCVGLGCTVHILGDFLTTRGVPLLWPLRFRSPRWVRRHRWLPFDDMWSPRGNLSLPLLGDAGSWREWVLTTPVSIYALVGVAWAMLDQMGFDTAGAWASATDLAAEATRSVLGNANANANANA
AK018_05502498hypothetical proteinATGTCGACCGACCACCCGAACGACGAGCCCACGGAGCGCGAGATGGTCCGCGCGTTCCACGAGGCCTTCGACGTGCCCGTGCGCGACGCCGTGGACCTGGCCCTGCCGGACGACCGGCTGCGGATGCGCTACCGCCTCGTGGCCGAGGAGTTCGCCGAGCTCACCGGCGCGATCCTCGGCCCGGACGCCCGCGCCGTCGTCGAACGGGCCGTCGCCTCCGTGATCGACTCCCCCACCGACGCCGCCGACCCCGTCGGGACCGCCGACGCCACCGGCGACCTGCGCTACGTGCTGCACGGCCTTGAGCTGGAGTGCGGCATCCCCGGCGACGAGGTGTTCGCCGCGATCCACGCCTCGAACATGGCCAAGCTCGGCCCGGACGGCGTGGCGCTGCGCCGTGCGGACGGCAAGGTGCTCAAGCCCGCGGGCTGGTCCCCGCCGGACGTGGCGGGCGTGCTGGCCAGAGCCGGTTTCCGGGGTGTCGGGGGCGACGTGTAGMSTDHPNDEPTEREMVRAFHEAFDVPVRDAVDLALPDDRLRMRYRLVAEEFAELTGAILGPDARAVVERAVASVIDSPTDAADPVGTADATGDLRYVLHGLELECGIPGDEVFAAIHASNMAKLGPDGVALRRADGKVLKPAGWSPPDVAGVLARAGFRGVGGDVNANANANANA
AK018_055031050COG1063D-altritol 5-dehydrogenaseGTGCGAGCCCTCACCGTCGTCCCCGGCCGTACCGGCACCCTCGCCGTCACCGACGTCGCCGACCGGGACCGCGCACCCGACGAGCTGCTCGTCGACGGCGTGGCCGTCGGCATCTGCGGCACCGATCACGAGATCGCCGACGGCGAGCACGGGGCCGCGCCTCCGGGCCACGAGCGACTGATCGTCGGGCACGAGTCCCTCGGCCGGGTCCGCGAGGCACCGGACGGTTCCGGATTCGCCGTCGGCGACCTGGTGGTCGGCGTGGTGCGTCGCCCCGACCCGGTGCCCTGCGGAGCCTGCGCCCACGGCGAGTGGGACATGTGCCGCAACGGGCTGTTCACCGAGCACGGCATCAAGGAGCTCGACGGGTTCGCCGCCGAGCAGTGGACCATCGCCCCGGACCACGCGGTGCGGCTCGAGCCGTCCCTCGCCGACGTCGGTGTGCTCCTGGAGCCGACGACCGTCGTCGCGAAAGCCTGGGACCAGGTCGACAAGATCGGCAACCGCGGCTGGTTCGACCCGCGCACCGTCGTGGTCACCGGCGCTGGTCCCATCGGCCTGCTCGCCGCGCTCATCGGCGTGCAGCGCGGCCTGGACGTGCACGTCCTCGACCGGGTCACCGACGGCCCCAAGCCGGACCTCGTGCGGTCCCTGGGGGCCACGTACCACCACGAGGACCTGCCGACCGTGGCCGACGCCGTCGACCCGGGCATCATCATCGAGTGCACCGGGGCGCCGGCCGTCGTGGTCGACACGTTCACCTCGACCAAGCCGTACGGCATCACGGTGCTCACCGGGGTGTCGTCGTCGGGTCGGCACGTCCCCGTCGACGCCGGCGCCGCCAACCGCTCCGTGGTGCTGGAGAACGACGTGATCGTCGGCTCGGTCAACGCCAACATGAGCCACTACCGCACGGGCGCCGACGTCCTGGCGCGCGCGGACGCCGACTGGCTCGCCCGGCTCATCACCCGGCGCGTCCCGCTGGAGCGCGCCGCCGAGGCGTTCGAACGGCACGCCGACGACGTCAAGGTCGTCGTGGACATCGGCTAGMRALTVVPGRTGTLAVTDVADRDRAPDELLVDGVAVGICGTDHEIADGEHGAAPPGHERLIVGHESLGRVREAPDGSGFAVGDLVVGVVRRPDPVPCGACAHGEWDMCRNGLFTEHGIKELDGFAAEQWTIAPDHAVRLEPSLADVGVLLEPTTVVAKAWDQVDKIGNRGWFDPRTVVVTGAGPIGLLAALIGVQRGLDVHVLDRVTDGPKPDLVRSLGATYHHEDLPTVADAVDPGIIIECTGAPAVVVDTFTSTKPYGITVLTGVSSSGRHVPVDAGAANRSVVLENDVIVGSVNANMSHYRTGADVLARADADWLARLITRRVPLERAAEAFERHADDVKVVVDIGNANANANANA
AK018_05504252hypothetical proteinGTGAACGCCCTGCACGGCATCGGCCGGCGCGCCGAGGCGCGCGCGCTGTTCGAGCGGCTGCTCGGGCTGCGCAACGACCTCGGCCTGCTCGCCGAGGAGTTCGACGTCGCCTCCGGACGCCAGCTCGGCAACGTGCCGCAGGCCTTCAGCCACGTCGGGCTCGTCAACTCCGCGCGCATCCTGTCCGGCATCCCCGGCCCGGGTGCCGACGCCGACGGCCTGATCGAGCAGCCCGAACCCACCGAGCATTGAMNALHGIGRRAEARALFERLLGLRNDLGLLAEEFDVASGRQLGNVPQAFSHVGLVNSARILSGIPGPGADADGLIEQPEPTEHPGPT0018651_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-GLUCOAMYLASE_LIKE,PGPT0018651-glucoamylase_like-NANANA
AK018_055051500COG3387TrehalaseATGGCACTGCGCATCGAGGACTACGGCATCGTCGGCGACCTGCAGACGGTCGCTCTGGTGGGCGTCGACGGCTCGGTCGACTGGCTCTGCCTACCGGACGTCGACGACCCGGCCTGCTTCGCCGCGCTCCTCGGTGACGAGCGTCACGGGTTCTGGCGCGTCGCGCCGGCGTCGGGCGGACGGTGCACCCGGCGGCAGTACCGCGGTGAGTCGCTGGTGCTGGAGACGGAGTGGGAGACGCCCGACGGCCACGTCCGCGTCACCGACTTCATGCCGCCGCGCAACGGGACGGCGGACCTGATCCGCATCGTCGACGGCTTGAGCGGACGCGTCGCGGTGGAGTCGGTGCTGGTGCCCCGGTTCGACTACGGGCGGGTCCGGCCGTGGCTGACCCGCTCGGACTCCGTGCTCGGCCCGCACCGCGGCGGCGCCGTCGGCGCGATCGCGGGCCCGGACGCGCTCCACCTGACCGCCTCGGTCCCGCAGGACGTCTCGGTCGACGACGGCGTGGTGACGTCGCGCTTCGAGGTCTCTGCGGGCGACCGGGTGACGTTCTCGCTCGACCACCACCGCTCCCACGAGCCGGAACCCGAACCGGTCGACGCGCTCGAGGCGCTGGCCACCACGCTCTCCTTCTGGGAGGGCTGGAACGGCCGGACGCAGTACACCGGCGAGTGGCCGGACGCCGTGCGGCGCTCGCTGGTCACGTTGAAGTCGCTCACCTACGCCCCGACCGGCGGTATCGCGGCGGCCGCGACGACGTCGCTGCCCGAGCAGATCGGCGGGGTCCGCAACTGGGACTACCGCTACTGCTGGCTGCGGGACGCCTCCTTCACGCTGCAGGCTCTGCTCAGCACGGGCCACACCGACGAGGCGCGGGCGTGGCGCGAGTGGCTCCTGCGGTCGGTCGCCGGGGACCCCGCCGACCTGCGCATCATGTACGGGCTGGACGGCCGCCGTCGTCTGCCCGAGACGACTCTCGACTGGCTGCCGGGCTACGAGGGCAGCGCACCGGTCCGCATCGGCAACGGTGCGGCCGACCAGCTCCAGCTCGACGTCTGGGGCGAGACGCTCGTGACGCTGCACCTGGCACGCTGCAGCGGCGTCGCCGACGACGTCGACACCTGGAACCTGCAACGGTCCCTGCTGGACTTCCTCGAGAGCGACTGGGACGACGTCGACAACGGGCTGTGGGAGGTGCGGGGACCGCGTCAGGCGTTCGTGCACTCACGGGTGATGGCGTGGGCGGGCGTCGCGGTCATGGTCCGCGCCGCCGAACGGTACGGCCTCGAGGGTCCCGTCGACCGCTGGCGGGCGCTGCGCGAGACCATCCGCACCGACGTCCTCACCCACGGCTACGACGCCGAGCGCAACACGTTCACGCAGTTCTACGGCTCCGAGGGGCTGGACGCCTCGTTGCTGCTCATCCCCCGTGTCGGCTTCCTGCCCTGGAACGACCGTCGCGTGGTCGGCACCGTCGAGGCGGTCAGCGCGAGCTGAMALRIEDYGIVGDLQTVALVGVDGSVDWLCLPDVDDPACFAALLGDERHGFWRVAPASGGRCTRRQYRGESLVLETEWETPDGHVRVTDFMPPRNGTADLIRIVDGLSGRVAVESVLVPRFDYGRVRPWLTRSDSVLGPHRGGAVGAIAGPDALHLTASVPQDVSVDDGVVTSRFEVSAGDRVTFSLDHHRSHEPEPEPVDALEALATTLSFWEGWNGRTQYTGEWPDAVRRSLVTLKSLTYAPTGGIAAAATTSLPEQIGGVRNWDYRYCWLRDASFTLQALLSTGHTDEARAWREWLLRSVAGDPADLRIMYGLDGRRRLPETTLDWLPGYEGSAPVRIGNGAADQLQLDVWGETLVTLHLARCSGVADDVDTWNLQRSLLDFLESDWDDVDNGLWEVRGPRQAFVHSRVMAWAGVAVMVRAAERYGLEGPVDRWRALRETIRTDVLTHGYDAERNTFTQFYGSEGLDASLLLIPRVGFLPWNDRRVVGTVEAVSASPGPT0018651_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-GLUCOAMYLASE_LIKE,PGPT0018651-glucoamylase_like-NANANA
AK018_05507498hypothetical proteinATGGACGACGACGCATCACCACGATGGCTCGACGACGAGCAGATGCGCAGCTGGCTACGGCTCCAGGCCGTCATCGGGCTGCTTCCCGCGCTGCTCGACCAGCAGCTGCGGCACGACGCCGACCTGACTCACTTCGAGTACCTGACCCTGGCGATGCTGTCCCAGGCCGACGACCGCTCGTTGCGCATGAGCGACCTCGCCCGCCGGACGAACGCCACGCTCCCCCGCCTGTCCCACGTCGCGCGGCGCCTCGAGGACCGGGGGTTCCTCCGGCGCGGCCCCGCCCCCGACGACGGGCGGGTCACGGTCGCCACACTCACCGAGGCCGGCTGGCACAAGGTGGTCGCCAGCGCACCCGGCCACGCCCGGACCGTCCTGGAGAACGTCTACGACGACCTGGACCGCGACGACCTGCACGCCTTCACGCGCGTCCTCGACACCGTCCTGGCGCACGTCGACCCGCACGACTCCTTCGGCCTCCGGACCGGCCGTCCCTGAMDDDASPRWLDDEQMRSWLRLQAVIGLLPALLDQQLRHDADLTHFEYLTLAMLSQADDRSLRMSDLARRTNATLPRLSHVARRLEDRGFLRRGPAPDDGRVTVATLTEAGWHKVVASAPGHARTVLENVYDDLDRDDLHAFTRVLDTVLAHVDPHDSFGLRTGRPNANANANANA
AK018_05508618hypothetical proteinATGAGCAACAGCATCAGCGTCGTCGGAGCCGGCAGCATGGGCGCGGCCATCGCCCGCCTCGGCCTCGCCGCGGGCGGCCCGGTCCAGGTCGTCACCCGCGACGTCGCCGCGGCGCAGGCCGTCGACCCGGCCGTGGAGGCCACGGCCTTCGGCGATCCGCTCACCGGTGACGTGGTCGTGCTCGCCCTGCCGTACCCCGCGCTGGACGACGTCGTCGCGACCTACGGCGACCAGCTCGCGGGCCGGACCGTCGTCGACATCACCAACCCGCTCGACTTCTCGACCTTCGACTCCCTCGTGGTGCCCGCCGACTCCTCCGCCGCGACCGAGCTCGCCGCCAGGCTCCCCGGCGCGCAGGTGCTCAAGGCGTTCAACACCACTTTCGCCGCCACCCTCGCCACCGGGACGGTGGGCGACGTGCCGACCACCGTGCTCGTCGCGGGCGACGACCCCGACGCCAAGGGCGCCCTCACCGCCGCCTTCGACGGATCGGCCGTACGGATCGTCGACGCCGGTCCGCTGCGCCGCGCCCGCGAGCTCGAGGCGCTCGGCTTCCTCCAGCTCACGCTGGCCGCCGGCGAGAAGACGTCGTGGACCACCGGCTTCGCCCTGCTGTGAMSNSISVVGAGSMGAAIARLGLAAGGPVQVVTRDVAAAQAVDPAVEATAFGDPLTGDVVVLALPYPALDDVVATYGDQLAGRTVVDITNPLDFSTFDSLVVPADSSAATELAARLPGAQVLKAFNTTFAATLATGTVGDVPTTVLVAGDDPDAKGALTAAFDGSAVRIVDAGPLRRARELEALGFLQLTLAAGEKTSWTTGFALLNANANANANA
AK018_05509885catE_1COG2514Catechol-2,3-dioxygenaseGTGACCGCGGCCCAGAACCTCCGCCGCGACGACCTGCTCGCGGCGTCGACGACCATGGGAGCCGTCACGCTCCACGTCGGCGACCTCGTCGCCATGAGCGCCTACTACCGCGAGGCGCTCGCGCTGACCGAGCTGCCCGGCACCGGGGGGCCCGGCCGGGTGGTCCTCGGCAGGGGGCGCACGCCCGTCGTCGTGCTCCGGCACACGCCCGGACTCCCGCCCACCTCCCGGCACCAGGCCGGGCTGTTCCACACCGCCGTCCTCCTCGACACCGAGGAGGACCTCGCAGCCGCCGTGGCGCACGCCGCGCGGCACCCGCTGTCCCGGTTCGTCGGCAACGCCGACCACTGGGTCTCCCGGGCGTTCTACTTCACCGACCCCGAGGACAACGGCATCGAGCTCTACTGGGACCGTCCGCGGGACACCTGGCAGCGGTCCGGTGGTCGCGTGGCGATGGGCTCGGACTGGTTCGACCCGCAGGCCTATCTCCAGCAGCACCTGGACGAGTCGGCGCTGGCCGGCGCCTCGGGGCAGGGAGCCCGGGTGGGCCACGTCCACCTGCAGGTCGGCGACCTCACGGTGGCGCGTCGGTTCTACGTCGACACCCTCGGCTTCGAGCTCACGGCGAATCTTCCCGGCGCGCTCTTCGTCGCCGCCGGCGGGTACCACCACCACGTGGCCGTCAACACGTGGAACAGCGCCGGCGCAGCTCCGCGGGCGGCGTCGCTCGGCCTCGGGCAGGTCGCCCTGACCGTGCCCGGGCAGGACGACGTCGACGCGTTGCGCGACCGGCTGCGCCACGCCCGGGTCCCGGTGCGCGACGACGGTCGCACGCTGCGGTTCGACGACCCGTGGAACACGCTCGTCGAGGTCGCGGTCGCCTGAMTAAQNLRRDDLLAASTTMGAVTLHVGDLVAMSAYYREALALTELPGTGGPGRVVLGRGRTPVVVLRHTPGLPPTSRHQAGLFHTAVLLDTEEDLAAAVAHAARHPLSRFVGNADHWVSRAFYFTDPEDNGIELYWDRPRDTWQRSGGRVAMGSDWFDPQAYLQQHLDESALAGASGQGARVGHVHLQVGDLTVARRFYVDTLGFELTANLPGALFVAAGGYHHHVAVNTWNSAGAAPRAASLGLGQVALTVPGQDDVDALRDRLRHARVPVRDDGRTLRFDDPWNTLVEVAVAPGPT0005050_285DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-CATECHOL_RESISTANCE,PGPT0005050-catE-K07104NANA
AK018_05510900purU_1COG0788Formyltetrahydrofolate deformylaseATGGCGGACGTGACCACCGAGCCGACGCAGCCCCCCGCACCGACGACGGACCACCGACCCACCGAGTGGGTCCTGACGCTCTCGTGCCCCGACAGGCCTGGCATCGTCCACGCCGTGAGCGGGATGCTGGCCCAGCACGACGGCAACATCACCGAGTCGCAGCAGTTCGGCAACCCCGGCTCGGGGCTGTTCTTCATGCGCGTCCAGGTGGAGACGCACGCCGCCCGCGAGGAGCTGGCCGCGGCGATCGGCGAGGTGGCCGACCGGTTCGAGATGACGTGGACGCTCGACGTCGTCGGCCGCCCCGTGCGCACGCTCATCATGGTCTCCAGGGCGGCGCACTGCCTCGTCGACCTGCTGTACCGCGAGCGCAACCAGAAGATGCCGGTCGAGATCGTCGGCGTCGTCGGCAACCACCCCGACCTGGCCGAGCTGGCCGAGTTCTACGGCAAGCCGTTCCACCACGTCCCGGTCACGGCGGCGACCAAGGCCGACGCCGAGGACCGGCTGCGCGAGCTCGTCGACCGCCTCGACGTGGAGCTGGTGGTGCTCGCCCGCTACATGCAGATCCTGTCCGACGAGCTGTGCCGCGACCTGGCCGGCCACGTGATCAACATCCACCACTCGTTCCTGCCCTCGTTCAAGGGCGCGCGCCCGTACGCGCAGGCGCACGAGCGGGGCGTCAAGCTCATCGGCGCCACGTCGCACTACGTCACCGGCGACCTCGACGAGGGGCCGATCATCGAGCAGGACGTCGAGCGGGTGGACCACTCCCGGGCCGTGTCGGACCTGGTGGCGCTCGGTGAGGACGTCGAGCGGCGCACCCTGGCGCGGGCGGTGCGGTGGCACGCCGAGCACCGGGTGCTGCTCGACGGCCACCGCACGGTCGTCTTCCACTGAMADVTTEPTQPPAPTTDHRPTEWVLTLSCPDRPGIVHAVSGMLAQHDGNITESQQFGNPGSGLFFMRVQVETHAAREELAAAIGEVADRFEMTWTLDVVGRPVRTLIMVSRAAHCLVDLLYRERNQKMPVEIVGVVGNHPDLAELAEFYGKPFHHVPVTAATKADAEDRLRELVDRLDVELVVLARYMQILSDELCRDLAGHVINIHHSFLPSFKGARPYAQAHERGVKLIGATSHYVTGDLDEGPIIEQDVERVDHSRAVSDLVALGEDVERRTLARAVRWHAEHRVLLDGHRTVVFHPGPT0008155_752DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433NANA
AK018_05511579hypothetical proteinATGAGCGAGAGCACCGCCACCTCGGCCGGCACCGCCGGCGCCGCGGCCCACGACGCCCCCACCCGGATCGCGCTGGTCGACGACGACCACGCCGGCGAGCTGCTGACTTTGCGTCGTGCGGCGTTCGTCTCCGAGGCGCAGGTGTACGGCGACCCGAACATCCCGCCGCTGACGCAGACGTTGCCGGAGCTCCGCGAGGACATGGCCCGGGACGACGTCGTCACGATCGGGGCGTGGGACGGGCACCGCCTGGTCGGGTCCATCCGCGTCGAGATCGACGCCGAGCGCGCCACGCTGGGGCGGCTCGCCGTCGCCCCGGACCAGCAGGGCCGCGGGCTGGGCACGACGCTGCTGTTCGCGATCCTGGAGTTCCTGCCCGAGCAGATCTCGGAGATCTGGGCGTTCACGGGCAAGGACTCGCGGCAGAACCTGGCGATGTACACCAAGCACGGCTACGAGGCGCAGTACGACGAGGCCGCGGGTGAGCTGACGTACACCTACCTGCGCCGGGTGCTGCACGAGGTCGACGCTCGTCGGTCGGGGCAGGAGCCGGCGGGTCCGTCCGCCAGCGGCTCGTGAMSESTATSAGTAGAAAHDAPTRIALVDDDHAGELLTLRRAAFVSEAQVYGDPNIPPLTQTLPELREDMARDDVVTIGAWDGHRLVGSIRVEIDAERATLGRLAVAPDQQGRGLGTTLLFAILEFLPEQISEIWAFTGKDSRQNLAMYTKHGYEAQYDEAAGELTYTYLRRVLHEVDARRSGQEPAGPSASGSNANANANANA
AK018_055121020lacI_3COG1609Lactose operon repressorATGGCCGACGTCGCCCGGGTGGCGGGCGTCTCCCACCAGACGGTGTCACGGGTGCTGAACGAGCACCCGAGCGTGCGTCCGGAGACCCGGGAGCGCGTGCTGGCCGCGATCGACGAGCTCGGGTACCGCCGCAACAGCGCGGCCCGCACGCTGGTGACCTCGCGGTCGGCGACCCTCGGCGTGGTCACGACGGGCTCGGCGCTGTTCGGGCCCACCAGCACGCTCATCGCCGTCGAGGAGGCGGCGCGCGACCGCGGCTACTTCGTGTCCGTGGCCACGCTGCGCACCTACGACACCGCGGCGATGCACGCGGCGATGGAGCACTTCATGGCCCAGGGCGTCGACGGGATCGTGGTCATCGCCCCGCACGCCGACGTCGCCGCGGCGGTGGAGTCGTTCCGGGCGCCGGTGCCCGTCGTGGTCGTGGCGGCGCTCGACGACGGCGCGGAGGACCGCGGCGGCGGCTCGACGTCGGGCACCGTGTCGTTGGCCGTCGACCAGCGTTCGGGTGCTCGGCAGGCGACGGAGCTGCTGCTCGACCTGGGCCACCCGGACGTCGTGCACGTGGCCGGTCCGCAGGGCTGGTTCGACGCGCGCGAGCGCGCGGCCGGCTGGCGCGAGGCGCTGCAGTCGCGCGGGATCGAGCCGGCACGGCCCCGGCTGTGCTCGTGGTCGGCCGCGGACGGCTACGCGGCGGGGCGCGACCTGGCCGAGGCGGTCGTGGCGGGGGAGGGGCCGACGGCGGTGCTCGCGGGCAACGACCAGCTCGCCCTGGGGATCCTGCGCGCGCTGTGGGAGCGGGGGGTGCGGGTGCCCGACGACGTCTCGGTGGTGGGGTTCGACGACGTCGAGGGCGCGGCCTACTTCGTGCCGCCGCTGACCACGGTGCGTCAGCCGTTCGCCGAGCTCGGGTCCCGTGCCGTGGCGATGGTGGTGGCCTCGTTGGCCGGGGAGCCGGTCGCGGCGCAGCGGATCATGCCCGAGCTCGTGGTGCGGTCCTCGACGGCGCCGCCGCGCTGAMADVARVAGVSHQTVSRVLNEHPSVRPETRERVLAAIDELGYRRNSAARTLVTSRSATLGVVTTGSALFGPTSTLIAVEEAARDRGYFVSVATLRTYDTAAMHAAMEHFMAQGVDGIVVIAPHADVAAAVESFRAPVPVVVVAALDDGAEDRGGGSTSGTVSLAVDQRSGARQATELLLDLGHPDVVHVAGPQGWFDARERAAGWREALQSRGIEPARPRLCSWSAADGYAAGRDLAEAVVAGEGPTAVLAGNDQLALGILRALWERGVRVPDDVSVVGFDDVEGAAYFVPPLTTVRQPFAELGSRAVAMVVASLAGEPVAAQRIMPELVVRSSTAPPRPGPT0017992_8402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_055131614xylB_2Xylulose kinaseATGACGCTGCCAGACCAGGTGACCGAGGCGCGGGACGCCATCACCTCCGGGCGGACCACGCTCGGCATCGAGCTCGGCTCGACGAACATCAAGGCGTGCCTGATCGGACCCGAGCACCAGGTGCTCGCCGGCGGCTCGCACGCCTGGGAGAACGAGCTCGCCGACGGGCTGTGGACGTACCCGCTCGAGGCGGTCCACCGCGGGCTGCAGGGCGCCTACGCCGCGCTCGTCGCCGACGGCGAGCAGCGCTACGGCGTCCGGCCGACGACCTACGCGGCGCTCGGCGTCTCCGCGATGATGCACGGCTACCTGGCGTTCGACGCGGACGACCAGCTGCTGGTGCCGTTCCGCACGTGGCGCAACACCAGCACCGGACCGGCCGCCGCCGAGCTGTCGGAGCTCTTCGGGTACAACATCCCCCTGCGCTGGTCCATCGCGCACCTGTACCAGGCGATCCTCGACGACGAGCCGCACGTGCCGCAGATCGCCTCCTTCACCACGCTCGCCGGGTACGTCCACCGCGCGCTGACCGGTCGGCACGTCCTCGGCGTCGGGGACGCCTCCGGCATGTTCCCGATCGACCCCGCCACCCGTGACTACGACCAGCGCATGCTCGAGCAGTTCCGGCACCTGGCCGCCGCGAAGCGTCCCGGGCTGCACGTCGAAGGGCTGCTGCCCGAGGTGCTGCCCGCCGGCGCCGACGCCGGTCGTCTCACGGCCGACGGCGCCGCCCTGCTGGACCCCAGCGGCGAGCTGCGACCGGGCGTCCTGCTCTGCCCGCCCGAGGGCGACGCCGGGACCGGCATGGTCGCGACCAACGCCGTCGCGCCGCGGACCGGCAACATCAGTGCCGGCACGTCGATCTTCGCGATGGTCGTCCTCGAGAAGCCGCTGACCAGCGTCCACCACGAGCTCGACCTCGTCACCACCCCGGCCGGCGACCTCGTGGCGATGGTGCACTGCAACAACGGTGCGAGCGAGCTCGACGCCTGGGCCGGCGTCTTCGGCCAGTTCGCCGCGGCCCTGGGCCACCCCAGCTCGGCCGACGACGTCTTCGGCGCCCTGTTCGCCGCCGCCCTCGACGGCGACGCCGACGGCGGCGGGCTCCTGGCCTACAACTACCTCGCCGGCGAGCCCATCACCGGGCTCGAGGAGGGCCGCCCCCTCATCGTGCGCACCCCGGACAGCCGGCTCACCCTGGCCAACGTCATGCGCACCCAGATCTACGGCGCCTTCGGCACGCTGGCGCTCGGCATGAACGTGCTGCACGGCGAGGGCGTCGCCATCGACACGATGCTCGCGCACGGCGGCATGTTCCGGACCGCCGGCGTCGCCCAGCGGTTCCTCGCCGCCGCCGTCGACGCCCCGGTCGCCGTCGGGCAGACCGCCTCCGAGGGCGGCGCCTGGGGCATCGCCGTGCTCGCCGCCTACGCGGCCGCCGTCGACGGTGAGGACGGACCGACCCTCGACGCCTACCTGACCGAGCAGGTGTTCGCCGACGCCGCGCTCGACGTCGCGCGGCCCGACGCGGACGACGTCGCCGGGTTCGCCGCCTACCTCGAGCGGTACTCCGCCGGCCTCGCCGTCGAGCGGGCCGCCACCGAAGCCCTCTGAMTLPDQVTEARDAITSGRTTLGIELGSTNIKACLIGPEHQVLAGGSHAWENELADGLWTYPLEAVHRGLQGAYAALVADGEQRYGVRPTTYAALGVSAMMHGYLAFDADDQLLVPFRTWRNTSTGPAAAELSELFGYNIPLRWSIAHLYQAILDDEPHVPQIASFTTLAGYVHRALTGRHVLGVGDASGMFPIDPATRDYDQRMLEQFRHLAAAKRPGLHVEGLLPEVLPAGADAGRLTADGAALLDPSGELRPGVLLCPPEGDAGTGMVATNAVAPRTGNISAGTSIFAMVVLEKPLTSVHHELDLVTTPAGDLVAMVHCNNGASELDAWAGVFGQFAAALGHPSSADDVFGALFAAALDGDADGGGLLAYNYLAGEPITGLEEGRPLIVRTPDSRLTLANVMRTQIYGAFGTLALGMNVLHGEGVAIDTMLAHGGMFRTAGVAQRFLAAAVDAPVAVGQTASEGGAWGIAVLAAYAAAVDGEDGPTLDAYLTEQVFADAALDVARPDADDVAGFAAYLERYSAGLAVERAATEALPGPT0017410_891DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017410-araB|L_ribulokinase-K00853NANA
AK018_05514708ulaF_1COG0235L-ribulose-5-phosphate 4-epimerase UlaFATGTCGAACGACGCGCCCCTGACCGAGGTGCCCGCCCACCTGCGCACCGCCGTCGACACCGCCAAGCAGAAGGTCGCCGACCTGCACGCCGAGCTGCCCCGCTGGGAGCTCGTCGTGTGGACCGCCGGCAACGTCTCCGAGCGGGTGCGGAACGACCAGGGGGAGGACCTGCTGGTCATCAAGCCCTCCGGCGTCTCCTACGACGACATCACCGCCGAGGCCATGGTCGTGTGCGACCTCGACGGCAACCTCGTCGAGGGCGACCGCTCGCCCTCGTCCGACACCGCCGCCCACGCGTACGTCTACGCCCACATGCCCGAGGTCGGCGGCGTCGTGCACACCCACTCCACCTACGCGACCGCCTGGGCCGCACGCGGCGAGGAGATCCCCTGCGTGCTGACCATGATGGCCGACGAGTTCGGCGGACCGATCCCCGTCGGACCGTTCGCGATCATCGGCGACGACTCCATCGGCCGGGGCATCGTCGAGACCCTGCGCGGGTCCCGCTCCAAGGCCGTGCTCATGAAGAACCACGGCCCGTTCACCATCGGCGGCGACGCCAAGGGCGCCGTCAAGGCCGCGGTGCTCTGCGAGGAGGTCGCGCGCGCCGTGCACGTCTCGCGCCAGCTCGGCGAGCCGCTGCCCATCGAGCAGCAGCACGTCGACTCCCTGTACGAGCGCTACCAGAACGTCTACGGCCAGCGCTGAMSNDAPLTEVPAHLRTAVDTAKQKVADLHAELPRWELVVWTAGNVSERVRNDQGEDLLVIKPSGVSYDDITAEAMVVCDLDGNLVEGDRSPSSDTAAHAYVYAHMPEVGGVVHTHSTYATAWAARGEEIPCVLTMMADEFGGPIPVGPFAIIGDDSIGRGIVETLRGSRSKAVLMKNHGPFTIGGDAKGAVKAAVLCEEVARAVHVSRQLGEPLPIEQQHVDSLYERYQNVYGQRPGPT0017420_501DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATIONPLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017420-araD|ulaF|sgaE|sgbE-K03077NANA
AK018_055151512araA_1L-arabinose isomeraseATGCCCAAGCCCTACGGTGACCGCGAGATCTGGTTCCTCACCGGCAGCCAGGACCTCTACGGCCCCGAGACCCTCGAGCAGGTCGCCAGCCAGTCCCGCGAGGTCGCCGCCGCGCTCGACGCGTCCGCGGACGTCCCCGCCACGATCGTCTGGAAGCCCGTCCTCAAGGACGCGGCGTCGATCCGCCGCGCCATGCTCGACGCCAACAGCGACGACGGCGTGCTGGGCGTCATCACCTGGATGCACACCTTCAGCCCGGCCAAGATGTGGATCGCCGGCCTGGACGCGCTGCGCAAGCCGCTGCTGCACCTGCACGCGCAGGCGAACGTCGAGCTGCCCTGGTCCGACATCGACATGGACTTCATGAACCTCAACCAGGCCGCCCACGGCGACCGGGAGTACGGCTACATGCTGTCCCGGCTCGGCGTCGCGCGGACCACTGTGGTGGGGCACGCCTCGAACCCGGCCGTGCAGCGCCGCGTGGGCACCTGGGTCCGGGCCGCCGCCGGACGGCTGGCCACGCAGGAGCTCAAGCTGGTCCGCTTCGGCGACAACATGCGCAACGTCGGCGTGACCGAGGGCGACAAGACCGAGGCCGAGCTGCAGTTCGGCGTCAACGTCAGCACCTGGGGCGTCAACGACCTCGTCGCGGCCGTCGAGGCGGTGGCCGAGTCCGACGTCGACGCGCTCGTGGCCGAGTACGAGCAGCTCTACGACGTCGCGGCCGAGCTGCGGGCCGGGGGGGAGCGGCACGAGTCGCTGCGCTACGCCGCCCGGCAGGAGGCCGCCATGGAGGCGTTCCTCACCGAGCGCGGCGCCAAGGCCTTCACGACGAACTTCGAGGACCTCGGTGCCCTGCGCCAGCTCCCCGGCCTCGCGGTGCAGCGCCTCATGGCCAAGGGCTACGGGTTCGGCGCCGAGGGCGACTGGAAGACCGCCGTGCTGGTCCGCGCCGCCAAGGTGATGGGCGAGGGCCTGTCCGGCGGCGCCTCCCTCATGGAGGACTACACCTACGACCTCACGCCCGGGTCCGAGCTGATCCTCGGGGCCCACATGCTTGAGATCTGCCCGACCCTGACGACGTCGAAGCCGCGCGTGGAGATCCACCCGCTCGGCATCGGCGGCAAGGAGGACCCGGTGCGCATGGTGTTCGACACCGACGCCACCGAGGGGGCCGTCGTCGTGTCCCTGGCCGACATGCGCGACCGGTTCCGGCTCACCGCCAACGTCGTCGACGTCGTCCCGCCCACGCACGAGCTGCCGAACCTGCCCGTGGCGCGGGCCGTGTGGAAGCCGCGACCGGACTTCGCGACGTCGGCCGAGGCCTGGCTGACCGCCGGCGGCGCCCACCACACCGTCATGTCGACGGCGCTGGGCATCGAGGCCTTCGAGATGTTCGCCCAGATCTCCGGCACCGAGCTGCTGGTCATCGACGAGGACACCACGCGTCGCGGGTTCGCCGACCAGGTGCGCTGGAACCAGGTCTACTACAAGTTCGCGCAGGGTCTCTGAMPKPYGDREIWFLTGSQDLYGPETLEQVASQSREVAAALDASADVPATIVWKPVLKDAASIRRAMLDANSDDGVLGVITWMHTFSPAKMWIAGLDALRKPLLHLHAQANVELPWSDIDMDFMNLNQAAHGDREYGYMLSRLGVARTTVVGHASNPAVQRRVGTWVRAAAGRLATQELKLVRFGDNMRNVGVTEGDKTEAELQFGVNVSTWGVNDLVAAVEAVAESDVDALVAEYEQLYDVAAELRAGGERHESLRYAARQEAAMEAFLTERGAKAFTTNFEDLGALRQLPGLAVQRLMAKGYGFGAEGDWKTAVLVRAAKVMGEGLSGGASLMEDYTYDLTPGSELILGAHMLEICPTLTTSKPRVEIHPLGIGGKEDPVRMVFDTDATEGAVVVSLADMRDRFRLTANVVDVVPPTHELPNLPVARAVWKPRPDFATSAEAWLTAGGAHHTVMSTALGIEAFEMFAQISGTELLVIDEDTTRRGFADQVRWNQVYYKFAQGLPGPT0017450_148DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017450-araA-K01804NANA
AK018_055161407aqdA2_2putative N-octanoylanthranilate hydrolase AqdA2ATGACCGAACGGTCCACTACCCAGACCGACGCCGGCCCGGCCGGCGACCCCAGCCGCATCGAGACCCCGCTCGGCAGTTTCCACGCCCTGCGCGACGGCGACGTCGTCCGGGTGCGCAACATCCGCTACGCCCGTGCCGACCGCTTCGCGGCACCGTCACCGGTCGCGCCGGACCCCGCGGAGTCGGCACCGCTCCAGCACGTCCGCTACGCCTGCCCCCAACCACCGAGCCCGGCCGACCAGGTGTACGGGCCGCAGCTGCGCGGCGTCGAGCCCACCGAGGACTGCCTCCGGCTCAGCATCACCCGTCAGGCCGAGACCGACGGTGCGCTGCCGGTCCTCGTCTGGGTCCACGGGGGCGCCTACGTCTCGGGCGCGGGCGACCTGGCCGGCTACGACCCGACCGTGCTCGTGCGGGAGCACGGGGTCCTCGTGGTCAACGTGACGTATCGGCTCGGCGCACTCGGGTTCTTCTCCGACGGCGGCTCAGACGACGTCGCCGCAGCGGTCGAGGCCGGCCGCCCGGCGAACCTCGGGCTGCTCGACCTGCTGGCGGCGCTGCGCTGGGTGCGCGACCACGTGCACGCCTTCGGCGGCGACCCCGACCAGGTGACGCTCGTCGGACAGTCGGCCGGCGCCGACGCCATCGCACACCTGCTCGGCGCCGACGGCGCGGACGGCCTGTTCAGCCGCGCGATCCTGCAGAGTCCGCCGCTGGGAGTCCGCGGGGGCCGCGCCGAGGTCCACGCCGGTCTCGTCGAGGCCGCGGGACCGCTCGACCCGACGGGCACGGTCGACGACGTGCTGGCGGCCCAGCAGCGCGCCATGGCCGCCGTAGCCGGGATGAACGACCGGGCCGGCATGCCGTTCGCCCCCGAGTACGGCCGGGCTCCCCTGCCGTCCGAGGAGGAGTTCCTCGCGACGTGGCGTCGCCGGGCACCGGGGCTGGAGCTGATGGTGACCTGGACCTCCCAGGAGGGCGAGACGTTCGTCCAGCTCGACCCCCGGGGCAGGGCGCTGCGCGACAAGCCCGTCGTCGGCAGGCTGTCGGCGTGGTTCGTGTGCCGGAAGGTCACCGACACGTTGTTCCGCACGGGGTGCAAGGCCTTCGCGAAGGACATGGCCGACGCCGGTGCCGCCGTCGTCGCCGCCGAGCTCACGACCCGCCCGGTCGACGCCCCGATGGGCGCCACGCACGCCGTCGAGCTCGGCCTGCTGTTCCCGAACCCCGACCGGTGGGCCGAAGCACCGGTCATCGGACCGGCGGGGGCCCGGACGCTCGTCGAGGCAGGCCGCGACCTGCGGGCCGCCTGGGCGGAGTTCGCGCGGACCGGCCGGCTCGCGGGCGACCGGGTCGGGACCGGTCCCGGCTGGACCGGTGAGCTGCGGGTGACGCGCCGCTCCTGAMTERSTTQTDAGPAGDPSRIETPLGSFHALRDGDVVRVRNIRYARADRFAAPSPVAPDPAESAPLQHVRYACPQPPSPADQVYGPQLRGVEPTEDCLRLSITRQAETDGALPVLVWVHGGAYVSGAGDLAGYDPTVLVREHGVLVVNVTYRLGALGFFSDGGSDDVAAAVEAGRPANLGLLDLLAALRWVRDHVHAFGGDPDQVTLVGQSAGADAIAHLLGADGADGLFSRAILQSPPLGVRGGRAEVHAGLVEAAGPLDPTGTVDDVLAAQQRAMAAVAGMNDRAGMPFAPEYGRAPLPSEEEFLATWRRRAPGLELMVTWTSQEGETFVQLDPRGRALRDKPVVGRLSAWFVCRKVTDTLFRTGCKAFAKDMADAGAAVVAAELTTRPVDAPMGATHAVELGLLFPNPDRWAEAPVIGPAGARTLVEAGRDLRAAWAEFARTGRLAGDRVGTGPGWTGELRVTRRSPGPT0030515_2488PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TANNIN_DEGRADATIONPUTATIVE-TANNIN_DEGRADATION-1,PGPT0030515-pnbA-K03929
AK018_055171581hypothetical proteinGTGACTCAGCAGGACGTGCCGGCGACGACAGCGGGCGACGCCCCACCGAAACCCCGCTACCGCGGCCGGCACCTTCCCATGGTGGCCGTCGTCGTGGCGGCGTTCATCGCGACCGCGCTGGCCTACAGCGGCATGGTGCTGTTCGGCCTCGAGGTGGCGCACATGTCGCCGCTCGAGGCGTACGCGCTGGCAGGGTTCCTCGAGGTCAGCCTCGTGGCCGTCGCCCTGATGGCGCGCAACGCCGCGCTGGAGGGACGTCCCTACGGCGTCCTGCTGACGCTGACGTGGATTCTGTCCGGGACGTCGGGCGTGTTCGCGGCGCTGCACGAGATCGCCGTGCCGACCGAGAGCACCCCGTACATGGTGGTCTTCCGGTTCGTCCCCCCGCTGGTCGCCGCCCTGATGTGGCACCTGGCGCTCGTCGGCGAGCGGCACCTGGTCACCGGCCACACGCTCGACGAGCGGCGGCGTGAGCACCGTGTGCACCAGTACGTGACCGCGCTCGAGAGCTGGCGTGACGCCCGCCTCGACAGCACGGGCAACGCGCGCGGCATGCGCAAGGTGCGCCGGGCGCACCTCAAGCAGCGGGCGGCCCGCGACGGCGCCCTGAAGCTGCTGACGGTGGAGGACTTCGAGCGGCGCATGCAGGTGTGGGTCGATCGTCTGGAGGCCGCCGAGCGGCACGGGAACCGGTTGGACACGATCGGTGCCAGCTCGATCAAGCGGGGGACGAGCAAGGGGATCTCGCCCGAGGCGGTGGCTGCGGCCGCGGCTCCGGCGCGTACCGCTCCGAGCCTGGCGGCCACCGCGGCCGAGGCGGCGAGCGCGGACCGGGGCGCCCGGGAGCGGTCGGAGTCGCCGCAGGTGCCGGCAGCACCCGCGGCGGACCGGCTGCCCGTCCGGCCCTCGCGCGGTGGCTCGACCGGCGCCGCGGCGACCGCTGCGACGGCCTCCGGCACCCGGGGAGCCGCCCCCATGGCCGAGGTGACGCTGGAGAACGCCGAGGACGAGCCCTTGGTGGACGCCTTCGGCGCCGCGCTGCTGGCCGAGCGTGCCGTCGAGGAGGCCGCGACGTCGGCCCCGGAGGCGCCGCGCCGGCCGCTCCTGGAGCCGAGGACCGAGACGGGGCACACGCGCCGGGTCGAGGTGTTCGACCTGTACCGCGGCCGTCAGCAGGCCGAGGCCGAGGCCGCTGCTGCGCAGGAGGCTCCGGTCTGGCACTCCGTGCCGGAGGCGCCCGAGCCGGCGGCCGTCGGTGACGACGCCACGGGCGCTGCTCAGGAGCCTGCCGGTCCCTCGGGGCCCGTCGAGGAGGACGTCGCGCGGACGCTCGCCGCGGAAGCACCCACCGTCGAGGAGGGTGCCGGCGACGCGCGCGAGGGCGACGAGACCCCTGCCGAGGCTCCGACGTCGGACCGCGACCGCCGGATCGTCGAGCTCGCGCGCGAGGGGATGACGCAGCGGGAGATCGCCGAGGAGGTCTCCGCCTCGCGCTCGACGGTGAGCCGCGTGGTGCGCCGGTACGAGGACCAGAAGCCGCGCGGCGACCGGGACGAGGACCTGGCGCTGGCCCCGGCCTGAMTQQDVPATTAGDAPPKPRYRGRHLPMVAVVVAAFIATALAYSGMVLFGLEVAHMSPLEAYALAGFLEVSLVAVALMARNAALEGRPYGVLLTLTWILSGTSGVFAALHEIAVPTESTPYMVVFRFVPPLVAALMWHLALVGERHLVTGHTLDERRREHRVHQYVTALESWRDARLDSTGNARGMRKVRRAHLKQRAARDGALKLLTVEDFERRMQVWVDRLEAAERHGNRLDTIGASSIKRGTSKGISPEAVAAAAAPARTAPSLAATAAEAASADRGARERSESPQVPAAPAADRLPVRPSRGGSTGAAATAATASGTRGAAPMAEVTLENAEDEPLVDAFGAALLAERAVEEAATSAPEAPRRPLLEPRTETGHTRRVEVFDLYRGRQQAEAEAAAAQEAPVWHSVPEAPEPAAVGDDATGAAQEPAGPSGPVEEDVARTLAAEAPTVEEGAGDAREGDETPAEAPTSDRDRRIVELAREGMTQREIAEEVSASRSTVSRVVRRYEDQKPRGDRDEDLALAPANANANANANA
AK018_055181530abfA_1Intracellular exo-alpha-(1->5)-L-arabinofuranosidaseATGGCAGACGCCCGCATCACCCTCCACCCCGACTTCCGCCGCGGCACCGTCGACCGGCGCCTGTTCGGCTCGTTCGTCGAGCACCTCGGCCGTGCGGTGTACACCGGCATCCACGAGCCCGGGCACCCGCAGGCGGACGAGCACGGCTTCCGCCGCGACGTCGCGGACCTCATCGGCGAGCTCGGCGTCCCGATGGTCCGCTACCCCGGCGGCAACTTCGTGTCCAACTACGTCTGGGAGGACGCCGTCGGCCCCGTCGAGGACCGCAAGCCCTTCCTGGACCTGGCCTGGCGCACCGTCGAGCCCAACCTCGTGGGCACCGACGAGTTCCTGCAGTGGGCCGAGCGCGAGGGCATCGAGCCGATGATGGCCGTCAACCTCGGCACCCGCGGCGTCGCCGAGGCGGCCGCGCTGCTCGAGTACTGCAACGGTGAGGCCGGGACGCGCTGGGCCGACCTGCGCATCGCCAACGGCCGCGCCGAGCCCTACGGCGTCAAGCTCTGGTGCCTCGGCAACGAGATGGACGGCCCCTGGCAGATCGGCCACAAGGACGCCCACGAGTACGGCAAGCTCGCCGCCGAGGCCGGCAAGGCCATGAAGCTCGTCGACCCCTCGATCGAGCTGGTCGTGTGCGGGTCGTCGTCCATGCAGATGCCGACCTTCGGCGAGTGGGAGCGCACCGTCCTGTCGTACACCTACGACCTGGTCGACCACATCTCCATGCACGCCTACTACGAGGAGCACGACGGCGACCGCGGCTCGTTCCTCGCGTCCGGGACCGCCATGGACCGGTTCATCGACCGCGTGGTCGCCTCCGCCGACGCCGTCGGCGCCGAACGGCGGTCGGACAAGAAGATCACCATCAGCTTCGACGAGTGGAACGTCTGGTACCTCGAGACCCGGTTCCCCGGAGAGTCCAACCTGCCGATCCAGCGAGACGCCCCGCGCATCATCGAGGACGTCTACTCCGGGCTCGACGCCGTCGTCGTCGGCGACCTGCTGGTCACGCTGCTCAACCACGCCGACCGCGTGCCGGTGGCCGCGCTCGCCCAGCTCGTCAACGTCATCGCGCCGATCATGACCGAGCCCGGCGGCGAGGCCTGGCGCCAGCCCACCTTCCACCCGTTCGCGACCGCGTCCCGCCTCGCACGGGGCACCGCGCTCGACGTCCGCGTCGACGCGCCGTCGTACACGACGTCGCGGCACGGCGACGCCCCGACGGTGACCGCCGCAGCGACGGTGGCCGACGACGGCTCGCTCGGCCTCTTCCTCACCAACCGCACCGACCGGACCGTCGAGGTCGACCTCGCGCACGTCGGCGCGGCGCTGACGCTCACCGAGGGACACCGGATGGTCGCTGACCACGAGCCGGCCGAGCACGGACCCGAGCACGCCGCGAAGGTGACCCAGGCCTGCTGGTCGACGCTCGACGTCGACGACGCCGTCATCGGCTCCGCGGCCGGGACTACGACGCTGCGCCTCGCCCCGGAGTCGTGGACGGCCTTCGCCGGGACGTTCGCCCGGTCCTGAMADARITLHPDFRRGTVDRRLFGSFVEHLGRAVYTGIHEPGHPQADEHGFRRDVADLIGELGVPMVRYPGGNFVSNYVWEDAVGPVEDRKPFLDLAWRTVEPNLVGTDEFLQWAEREGIEPMMAVNLGTRGVAEAAALLEYCNGEAGTRWADLRIANGRAEPYGVKLWCLGNEMDGPWQIGHKDAHEYGKLAAEAGKAMKLVDPSIELVVCGSSSMQMPTFGEWERTVLSYTYDLVDHISMHAYYEEHDGDRGSFLASGTAMDRFIDRVVASADAVGAERRSDKKITISFDEWNVWYLETRFPGESNLPIQRDAPRIIEDVYSGLDAVVVGDLLVTLLNHADRVPVAALAQLVNVIAPIMTEPGGEAWRQPTFHPFATASRLARGTALDVRVDAPSYTTSRHGDAPTVTAAATVADDGSLGLFLTNRTDRTVEVDLAHVGAALTLTEGHRMVADHEPAEHGPEHAAKVTQACWSTLDVDDAVIGSAAGTTTLRLAPESWTAFAGTFARSPGPT0018655_1119DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
AK018_055191017ccpA_14COG1609Catabolite control protein AATGGCTGTGACCATGCACGACGTGGCGCACAGGGCGGGCGTCTCGATCAAGACCGTCTCGAACGTGGTCAACCAGTACCCCCACGTGCGCCCGGAGACCCGCCGGCGCGTCGAGGAGGCGATCGCCGAGCTCGGGTACCGGCTGAACACGACCGCGCGCAACCTGCGCCAGGGCCGGACGGGGATGATCGGCCTCGCGCTCCCGGAGCTCTCGCTGCCGTACTTCGCCGAGCTGGCGGACTCGGTGATGCGGGCCGCCGAGGCCCGCGGCGTCGTGGTGCTGATCGAGCAGACCGGCGCGCAGCGGGACCGGGAGCTGCAGGCGCTCGACTCCTCGCACCGCCGGCTCACCGACGGCCTGCTCTTCTCGCCGCTGGCCCTCGAGCCCGAGGAGACCGAACGTCTCGAGGTCGACTACCCGATGGTCCTGCTGGGTGAGCGCATGTTCGGCCCCGTGGACCACGTCACGATGGCGAACGTCGAGGCGGCCCGGGCGGCGACGCTGCACCTGGTCGAGCGCGGCTGTCGTCGGATCGCGACGATCGGAGCCCACCCCGGCGAGACGATGGGCTCCGCCCGGCTGCGGTTCGACGGCTACCGCAAGGCGCTGGCCGAGGCCGGCCTGCCGTTCGACCCCGACCTCGTGGGCGACGCCGGGCTCTGGCACCGCTCGACCGGTGCGGAGGCCATGACCCGGTTGCTCGACGCGGGGGTCGAGCTCGACGGTGTCTTCGGGATGAACGACGCGCTCGCGCTCGGGGCGCTGCACGTGCTGCACACCCGGGGGGTGGCCGTGCCGCACGACGTGGCCGTGATGGGGTTCGACGACGTCGACGACGCCCGCTACTCCGAGCCGTTGCTGAGCACCATCGACCCGGGTCGTGAGCAGATCGCGACCACGGCCGTCGACCTGCTGCTGGAGCGCATCGCGGGGTCGCAGGTCCCTCCGCGGCGTGTGGTGGCCGACTTCGAGATCGTCGCCAGGGAGTCGTGCCTGCTGGGACGCACCGTGCACTGAMAVTMHDVAHRAGVSIKTVSNVVNQYPHVRPETRRRVEEAIAELGYRLNTTARNLRQGRTGMIGLALPELSLPYFAELADSVMRAAEARGVVVLIEQTGAQRDRELQALDSSHRRLTDGLLFSPLALEPEETERLEVDYPMVLLGERMFGPVDHVTMANVEAARAATLHLVERGCRRIATIGAHPGETMGSARLRFDGYRKALAEAGLPFDPDLVGDAGLWHRSTGAEAMTRLLDAGVELDGVFGMNDALALGALHVLHTRGVAVPHDVAVMGFDDVDDARYSEPLLSTIDPGREQIATTAVDLLLERIAGSQVPPRRVVADFEIVARESCLLGRTVHPGPT0021075_439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
AK018_055201389hypothetical proteinATGCGCATCTCACAGCGCCGTGGAGCAGCAGCCGTTGCGGCATCGCTGACGCTCGGAGCAGTGCTGGCGGCCTGCTCGTCGGGGGGTTCGGGCGAGACCGACGCCGGTACGACCGACGGCGGCGCCACCGCCGGGGGCGGCGAGGCCAGCTGCACCAACACGATCCCCAAGCCCGACGCGACCGAGGTCTCGGTGTGGGCCTGGTACCCCGCGTTCGAGCCGGTCGTCGACCTGTTCAACGAGACCCACGACGACGTCCAGATCTGCTGGACCAACGCCGGCCAGGGCGCCGACGAGTACAACAAGTTCTCGACCGCCATCGAGGCCGGCAGCGGCGCACCGGACGTCATCATGCTCGAGTCCGAGATCCTGCCGACCTACACGATCCTCGACTCGCTGGCCGACCTGTCCGAGTTCGGCGCCGGCGAGCTGGAGAGCGAGTTCACCACCGGTTCGTGGTCGGACGTCTCCAGCGGCGAGGCGGTCCACGCCGTCCCGGTCGACGGCGGTCCGATGGGCATGCTGTACCGCGCCGACATCTTCGACGAGTACGGCGTCGAGCCGCCCACCACGTGGGACGAGTTCGCCCAGGCCGCCCAGGACCTGCGCGACGCCGGGTACGAGGGGTACATCACCAACTACCCGACCAACGGCAACGCGCTGAACTACGCGCTCTTCGCCCAGAACGGCTGGGAGCCCTTCGAGTACGACCCGGCGAACCCGACCGAGATCGGGATCGACGTGGCCAACCCGGAGGCCGAGGAGGTCCTGTCCTACTGGAACGAGCTCATCGACGCCGACCTCGTCGCCACCGACGACGCGTTCACGTCGGACTACAACACGAGCCTCGTGGACGGCACCTACGCCGTCTACCTCGCCGCCGCGTGGGGCCCGGGCTACCTGCAGGGTCTGTCCGACGCCGACTCCGACGCCGAGTGGAAGGCCGCCCCGCTGCCGCAGTGGGACCCGGCGAACCCGGTGCAGGTGAACTGGGGCGGCTCCACCTTCGCCGTCACCCAGCAGGCGCAGGACAAGGAGGCGGCGTACACCGTCGCCAGCGAGCTGTTCCGGTCGATGGAGTCCTGGGAGATCGGCATCGACGAGGCCGCGCTGTTCCCGCAGTGGAACGAGGCCCTCGAGTCCGACTTCTTCGTCGAGAAGGAGTACCCGTTCTTCGGCGGTCAGCAGATCAATCAGGACGTCTTCCTCGAGGCCGCGAACGGCTACGAGGGCTTCTCGTTCAGCCCGTTCCAGGTCTACGCGTACGACCAGCAGACGCAGGCGCTGTACGACATGGTCGAGTCCGGTGGTGACGCCGCGAGCACGCTGCAGACCATCCAGGACGCCCTCGTGTCCTACGCCCAGCAGCAGGGCTTCACCGTCAACTGAMRISQRRGAAAVAASLTLGAVLAACSSGGSGETDAGTTDGGATAGGGEASCTNTIPKPDATEVSVWAWYPAFEPVVDLFNETHDDVQICWTNAGQGADEYNKFSTAIEAGSGAPDVIMLESEILPTYTILDSLADLSEFGAGELESEFTTGSWSDVSSGEAVHAVPVDGGPMGMLYRADIFDEYGVEPPTTWDEFAQAAQDLRDAGYEGYITNYPTNGNALNYALFAQNGWEPFEYDPANPTEIGIDVANPEAEEVLSYWNELIDADLVATDDAFTSDYNTSLVDGTYAVYLAAAWGPGYLQGLSDADSDAEWKAAPLPQWDPANPVQVNWGGSTFAVTQQAQDKEAAYTVASELFRSMESWEIGIDEAALFPQWNEALESDFFVEKEYPFFGGQQINQDVFLEAANGYEGFSFSPFQVYAYDQQTQALYDMVESGGDAASTLQTIQDALVSYAQQQGFTVNPGPT0016545_3806DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_05521978lacF_10Lactose transport system permease protein LacFATGACAACGTCGTCGACGGCAGTCGACCGGGCTGCCGGATCCGCGGCCTCGGGCCAGCGTTCCACCAGGTCTCGGCGGAGCAGCTCGACCAGCACCATCGACAGCAAGCGGCAGTGGTGGGGCTGGATCTTCACCGCACCGTTCACGGTCGTGTTCGTGCTGTTCCTCATCGTCCCGCTCGCCTACGCGTTCTGGATGAGTCTGCACAACAAGGGGCTCGCCACCGGTGGCGAGTCGGTCTTCGTCGGGGTCGACAACTACGTCCGGGCCTTCACCGACCCCGTGTTCCTCGAGGGTCTGCTCCGCGTCGCGAAGTTCGTGGCCGTGATGGTCCCCATCCAGATCGGGCTGGCGCTGCTGTGCGCGCTCGTGCTGGACACGCTCGCCACCCGGCTGAGCAAGGCCTCACGGCTCCTGATCTTCGTGCCGTACGCTGTGCCGGCCGTCATCGGGGCGCTCATGTGGGGCTTCCTGTACAGCCCGCGCTTCGGGCCCGCCCAGGACATCTTCGGCCTCTTCGGGCTGACGGCGCCGGACTTCCTCAGCTCGTCGATGATCTTCACCTCGCTGGTGAACATCGTGACGTGGCAGTGGGTCGGCTACTACATGATCATCATCTACGCGGCCCTGCGGACGATCGACCCCTCGGTCTACGAGGCGGCTCGCATCGACGGTGCGGGCGGTGCCCAGATCGCCCTGCGCATCAAGGTGCCGATGGTGTCCTCGTCGATGGTGATGGTCGTGATCTTCTCGCTGATCGGCACGCTGCAGTTCTTCACCGAGCCCACGGTGCTGCGCTCGGTCGCGCAGGGCGCGATCCCGCCGGACTACACGCCGAACATGTACGCATACTCCCTGGCCTTCTCCTACAGCCAGTTCAACTACGCGTCCACGATCGCGTTCGCCCTCGGCATCTTCGTGTTCATCGGGTCTTACATCTTCCTGTACCTGACCCGCAAGCAGAGCGGACTGAAGTGAMTTSSTAVDRAAGSAASGQRSTRSRRSSSTSTIDSKRQWWGWIFTAPFTVVFVLFLIVPLAYAFWMSLHNKGLATGGESVFVGVDNYVRAFTDPVFLEGLLRVAKFVAVMVPIQIGLALLCALVLDTLATRLSKASRLLIFVPYAVPAVIGALMWGFLYSPRFGPAQDIFGLFGLTAPDFLSSSMIFTSLVNIVTWQWVGYYMIIIYAALRTIDPSVYEAARIDGAGGAQIALRIKVPMVSSSMVMVVIFSLIGTLQFFTEPTVLRSVAQGAIPPDYTPNMYAYSLAFSYSQFNYASTIAFALGIFVFIGSYIFLYLTRKQSGLKPGPT0016535_4193DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_05522915araQ_6COG0395L-arabinose transport system permease protein AraQATGACTACCGACCTCGAGACCAGCAAGGCCCCGCAGCGCCGCACGCGGCGGGCCGGCACCAGCAGCAAGCACAGCCGGAGGATCGGGTCGCACGCCTTCCTGCTGATCATGGCGCTGTACTTCGTCATCCCGCTGTGGTTCCTCATCGTGGGGTCGACGAAGTCGAACAGCGGTCTGTTCGTCGGGTCGGGCGGAGCGCTGTGGTTCAACGACAACTTCTCCCTGATCGAGAACATCCGCGGGCTGTTCGAGCATCAGGGCGGCATCTACTGGATCTGGCTGCGCAACTCGTTCATCTACGCCTTCGCCGGCGGGGTGGGCGCCACCGTGCTGGCGATCCTCGCCGGCTACGGCCTGGCCAAGTACCGGTTCCGGGGGCGCGGTGCCTACTTCACCGTGCTGCTCGGTTCGGTGATGGTGCCGCTGACCGCGCTGACCATCCCGACGTTCGTGCTCCTGAGCGACATCGGCCTGATCAACACCATGTGGGCGGTGATCCTGCCCTCGCTGCTCAGCCCGATCGGCGTGTACCTGATCCGCGTCTACTCGCAGGACGCGATCCCGGACGAGATGCTCGACGCCGGCCGCGTCGACGGCGCGGGCGAGCTGCGGCTCTTCTTCCGGGTCTCCCTGCCGCTGCTGCGGCCCGCGATGGTCACGGTGCTGCTGCTGACCACCGTCTTCAGCTGGAACAACTTCTTCCTGCCGCTGGCCGTGCTGCGGGACACCGACCTGCTGCCCGTCACGGTCGGACTGAACCAGTGGCAGGCCCTGTCCAACGCCGGCGCCGGCGGTGAACAGGTCTGGAACCTCATCGTCACCGGTGCGCTGGTGTCGATCATCCCGCTGATCGCGGCCTTCCTCGGCCTGCAGAAGTACTGGCAGGGCGGGCTCTCCCTCGGGTCGATCAAGTAGMTTDLETSKAPQRRTRRAGTSSKHSRRIGSHAFLLIMALYFVIPLWFLIVGSTKSNSGLFVGSGGALWFNDNFSLIENIRGLFEHQGGIYWIWLRNSFIYAFAGGVGATVLAILAGYGLAKYRFRGRGAYFTVLLGSVMVPLTALTIPTFVLLSDIGLINTMWAVILPSLLSPIGVYLIRVYSQDAIPDEMLDAGRVDGAGELRLFFRVSLPLLRPAMVTVLLLTTVFSWNNFFLPLAVLRDTDLLPVTVGLNQWQALSNAGAGGEQVWNLIVTGALVSIIPLIAAFLGLQKYWQGGLSLGSIKPGPT0016540_1155DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_055231515abfA_2Intracellular exo-alpha-(1->5)-L-arabinofuranosidaseATGCTGTCCGCATCCGTCACCGTGGACCCGGCCTTCGTCGTCGGACCCGTGCGCCGCCGCACGTTCGGCTCGTTCGTCGAGCACCTCGGCCGTTCCGTCTACACCGGTATCCACGACCCCGAGCACCCCACGGCCGACGCCGACGGCTTCCGCGGCGACGTGATCGAGCTCGTCCGTGAGCTCGGGGTGTCCACCGTCCGCTACCCGGGCGGCAACTTCCTGTCCGGCTACCGCTGGGAGGACGGCGTCGGCCCCGTCGCGGAGCGGCCGCGCCGGCTGGACCTCGCCTGGCACTCGACCGAGCCGAACCTCGTCGGCGTCGACGAGTTCATGCGGTGGGCCGAGCGGACGGGCGTCGAGCCCATGATGGCCGTGAACCTCGGGACGCGCGGCGTGCAGGAGGCGCTCGACCTGCTCGAGTACTGCAACGTCCCCGGCGGCACCGCCTGGAGCGACGCGCGCCGGGCGAACGGTGCCGAGGAGCCGTACCGCGTCAAGATGTGGTGCCTCGGCAACGAGATGGACGGGCCGTGGCAGATCGGCGCGAAGACCGCCGCCGAGTACGGCCGGCTCGCCACCGAGACCGCGCGTGCGATGCGGATGATCGACCCCGACCTCGAGCTGGTCGTGTGCGGCTCGTCCAACTCCGGGATGCCGACCTTCGGCGCCTGGGAGCACACCGTGCTCACCGAGGCCTACGAGCACGTCGACCACGTCTCCGCGCACGCCTACTACTGGGAGTCCGACGGCGACCTTGCCTCGTTCCTCGCCTCCGCGGTCGACATGGACCACTTCGTCGACTCGGTCGCGGCCACGGCCGACGCCGTCCGCGCGGCCGGCAAGCACACCAAGCGGATCCACCTCTCCTTCGACGAGTGGAACGTCTGGTACCAGAAGCGTGCCGAGTCCCGTCCGCCGTCGGGCGACGACTGGCCGGTCGCCCCGGTGCTGCTCGAGGACCGGTACAACGTGGCCGACGCCGTCGTGGTGGGCAACCTGCTCATCAGCCTGCTGCGCCACACCGACCGGGTGCACGCCGCCTCGCAGGCCCAGCTCGTCAACGTCATCGCGCCGATCATGACCGAGCCGGGCGGCCGCAGCTGGAAGCAGACCATCTTCCACCCGTTCGCGCTCACCTCCCGCCACGCCGCGGGCGAGGTGCTCCGGCTCGCGATCGACTCCCCGACGACGGATACCGCCCGGTTCGGCGAGGTCGACGTGCTCGACGCCGTCGCCACCCACGACGCCGAGACCGGCGAGGTCGTGGTCCTGGCCACCAATCGGTCGGTGACCGACGAGGTCACGCTCGACGTCGACCTGCGGGGGTTCGACGGGCTCCGCGTCGTCGAGGCGCTCACGCTGTCCAACCCCGACCACACCTGGACGGCCACCGCCGACGACGACAGCTCGGTCGCGCCCCGGGCCAACGCCTCCGCGCAGATCACCGACGGTCGGCTCGGTGCCGTCCTGCCGCCGGTCTCGTGGAGCATCGTCCGGCTCGGACCCGCCGCGTGAMLSASVTVDPAFVVGPVRRRTFGSFVEHLGRSVYTGIHDPEHPTADADGFRGDVIELVRELGVSTVRYPGGNFLSGYRWEDGVGPVAERPRRLDLAWHSTEPNLVGVDEFMRWAERTGVEPMMAVNLGTRGVQEALDLLEYCNVPGGTAWSDARRANGAEEPYRVKMWCLGNEMDGPWQIGAKTAAEYGRLATETARAMRMIDPDLELVVCGSSNSGMPTFGAWEHTVLTEAYEHVDHVSAHAYYWESDGDLASFLASAVDMDHFVDSVAATADAVRAAGKHTKRIHLSFDEWNVWYQKRAESRPPSGDDWPVAPVLLEDRYNVADAVVVGNLLISLLRHTDRVHAASQAQLVNVIAPIMTEPGGRSWKQTIFHPFALTSRHAAGEVLRLAIDSPTTDTARFGEVDVLDAVATHDAETGEVVVLATNRSVTDEVTLDVDLRGFDGLRVVEALTLSNPDHTWTATADDDSSVAPRANASAQITDGRLGAVLPPVSWSIVRLGPAAPGPT0018655_1402DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
AK018_055241029abn-ts_1Intracellular endo-alpha-(1->5)-L-arabinanaseGTGAGCCGCCGGCGCGCCGTCGTCGGGGTCCTCGCCGTCGTGGCGATCGTCGCCGGCGTCGCGCTCGCCGTGCTGCGGCCCTGGGAGGCGTCGACCGAGCCCGAGCCTCTGGCGCTCGACGGCGACCTGGCCACCCACGACCCGGCGCTCGTCGTCGGCGACGAGGGCGAGCCCTGGTTCGTCTACTCCACCGGTGCGCCCGGCAAGTCCCGCGGGGCGCCGCTGGTGCACCGGTCCGACGACGGCGGGACCACGTGGGAGGCGGTGGGGACGGCCTGGTCGTCCGACGAGGACCCGCAGTGGGTGCGCGACTCGATCGAGGGCGTCGAGCACTACTGGGCGCCCGAACTCGTCGAGCACGAGGGCACCTGGTACCTGTACTACTCGGCGTCCACCTTCGGGTCCAACACCTCGGCCATCGGGCTGGCCACGGGGTCCACGCTGGACCCGGACGATCCCGACTACGGCTGGACCCACCAGGGGGCGGTCTGGCGCTCGCAGTCGGGGGACCCGTACAACGCGATCGACCCCGGCGTGATCACGGACACCGACGGGACGCCGTGGCTGTTCTTCGGGTCCTTCTGGGACGGCATCCAGGTGCTGCCCCTCGAGTGGCCCTCGGGGATGCCCGCCGAGGGGGCCGAACCCGTCCAGGTGGCGTCCCGCGGTGACGGGGTGAACCAGATCGAGGCCCCCTACGTCGTCGAGCGCGACGGCTGGTACTACCTCTTCGTCTCGTGGGGGAAGTGCTGCTCGGGCGCGAGCTCGACGTACTCGATCCACGTGGGGCATTCCCGGGACGTCTCCGGCCCGTTCGTGGATGCCGAGGGTGTCGACATGGCCGACGGCGGCGGCACGCTCGTGCTCGGGTCGCGGGACGCGATGATCGGCCCTGGCGGGCAGTCCGTCTCGGACGGCTACCTCGGCTACCACTTCTACGACGGCGACAACTCCGGTGCGCACCGCCTGGCGATCCAGCGACTCGGCTGGGACGACGGGTGGCCGGTCGCGACGACGACGGTTCCCTGAMSRRRAVVGVLAVVAIVAGVALAVLRPWEASTEPEPLALDGDLATHDPALVVGDEGEPWFVYSTGAPGKSRGAPLVHRSDDGGTTWEAVGTAWSSDEDPQWVRDSIEGVEHYWAPELVEHEGTWYLYYSASTFGSNTSAIGLATGSTLDPDDPDYGWTHQGAVWRSQSGDPYNAIDPGVITDTDGTPWLFFGSFWDGIQVLPLEWPSGMPAEGAEPVQVASRGDGVNQIEAPYVVERDGWYYLFVSWGKCCSGASSTYSIHVGHSRDVSGPFVDAEGVDMADGGGTLVLGSRDAMIGPGGQSVSDGYLGYHFYDGDNSGAHRLAIQRLGWDDGWPVATTTVPPGPT0019090_529DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINANASE,PGPT0019090-abnA-K06113NANA
AK018_055252064hypothetical proteinATGCCGCTCGCAGAACGACACCTCCCGCCGCGCCGCGCGCGCCGCCGACCGTTGGCCGCACTGGTCACCCTCCTCCTCGCCGCCGGCGGACTGCTGGCCGCGACGCCGGCCACCGCTGCCGTACCGACCCCCGACCCCGTCGTCGACTCGCCGAACGGGCGCGGCGGCGTGATCGTGCAGATGTTCCAGTGGACCTGGGACGCGATCGCGGACGAGTGCACCTCGACGCTCGGCCCCGCGGGCTACGGCTACGTCCAGGTCTCCCCGCCGCAGGAGCACGTCCGCGGCGCCGAGTGGTGGACCTCGTACCAGCCCGTCAGCTACCGCATCGAGTCCAAGCTCGGCACGCGCTCCGAGTTCGCACACATGGTCGACACCTGCGCGGACGCCGGCGTCGGGATCGTCGCGGACGCCGTGATCAACCACACCACCGGTGCCGACCAGGGGTCGGGGACCGGCGTCGCCGGCAGCTCGTTCGGCGTCGACTCGTTCCCCGGCATCTACTCGGGGTCCGACTTCAACGACTGCCGCAGCAACATCACCAACTACGGGGACCGCTACCAGGTGCAGCACTGCCGGCTGCTGTCGCTGCAGGACCTGCGGACAGGGTCGGCGCACGTGCGCGACACCCTCGCGGCCTACCTGGACGATCTCATCGACCTCGGTGTCGCCGGCTTCCGCATCGACGCCGCCAAGCACATGCCCGCGGCCGACCTGGAGGCGATCCGCGCCCGGCTCTCGGACCAGGACGTGTTCTGGATCCACGAGGTCATCGGAGCCGCCGGTGAGCCGATCCAGCCGGCGGAGTACCTGGGCAGCGGCGACTCCCACGAGTTCGACTACGCGCGCGAGCTCAAGAGCCGCTTCGACGGCAGCATCGCGGGACTGCGCTCCATCGGCGACAGCAAGCTGCCGTCCGATCGCGCCGGAGTGTTCGTCGACAACCACGACACCGAGCGCAACGGCGAGACGATGACCGCGCAGTGGGGTGCCAAGTACCTCCTGGCGAACACCTTCATGCTGTCCTGGCCGTACGGGTCGCCGACGGTTTACTCCGGCTACGCCTACTCCGACAAGGACTCCGGAGCCCCCGGCGCCACGCAGACCTCCGTACCCGACGCCGACTGCGGCTCGGCCGCGTGGACCTGCACGCACGCCGCGACCGAGATCCGCGGCATGGTGGGCTTCCACAACGCCGTCGAGGGCACCCCGGTGACGAGCTGGTGGGACGACGGGAACAACCACGTCGCCTACGGGCGGGGCTCGGTCGGCTACGTGACCCTCAACAACACCGGGTCCTCGGTGACGCGCACCTACACGACGTCGCTGCCCGCGGGCACCTATTGCGACGTGGTCGCCGCCGACGACTGCTCGGTCACGCACGACGTCTCGGCCTCCGGGACCTTCTCCGCGACGGTGCCGGCCTACGGTGCCCTCGCACTGCTGGCGGGCGAGCCGACCGAGCCGCCCACCGGCGAGGCCACCACGGTCCACTACGCGACCGACGCCGGCTGGTCGGCCCACCGCATCCACTACCGCGTGGGGACCGGGTCCTGGACCGACGTCCCGGGCGAACCGATGGCGCCGGCGTGCGACGGCTGGGTCTCCCGGGAGATCGCGGCCGACGGCGCCACGATCACCGCCGCCTTCACCGACGGGGCGGGCGCCTGGGACAACAACGGGGGGCAGGACTACACGCTGACCGGCACCGACGTCGTCGTCTCCGGCGGCGAGGTCACGGCCGGCGACCCGTGCTCCGAGCCCGAGCCCGAGGCCGGCGACGTCGAGGTCTCGGTGGACGCCACCACCACGTGGGGCCAGACCGTGCACATGGTGGGCTCGCTGCCCGAGCTCGGCTCGTGGGCACCGCAGGACGCGCCTGCACTCGACGCCGGCAGCTACCCGACGTGGACCGGCACGGTGGAGCTGCCCGCCGGCACGTCCTTCGAGTACAAGTACGTGAAGGTCGACGCGTCCGGGAACGTCGTGTGGGAGAGCGGCGCGAACCGTACCGCCACGGTCGGCCCGGACGGGACCCTGGGCCTCCACGACACCTGGCGCTGAMPLAERHLPPRRARRRPLAALVTLLLAAGGLLAATPATAAVPTPDPVVDSPNGRGGVIVQMFQWTWDAIADECTSTLGPAGYGYVQVSPPQEHVRGAEWWTSYQPVSYRIESKLGTRSEFAHMVDTCADAGVGIVADAVINHTTGADQGSGTGVAGSSFGVDSFPGIYSGSDFNDCRSNITNYGDRYQVQHCRLLSLQDLRTGSAHVRDTLAAYLDDLIDLGVAGFRIDAAKHMPAADLEAIRARLSDQDVFWIHEVIGAAGEPIQPAEYLGSGDSHEFDYARELKSRFDGSIAGLRSIGDSKLPSDRAGVFVDNHDTERNGETMTAQWGAKYLLANTFMLSWPYGSPTVYSGYAYSDKDSGAPGATQTSVPDADCGSAAWTCTHAATEIRGMVGFHNAVEGTPVTSWWDDGNNHVAYGRGSVGYVTLNNTGSSVTRTYTTSLPAGTYCDVVAADDCSVTHDVSASGTFSATVPAYGALALLAGEPTEPPTGEATTVHYATDAGWSAHRIHYRVGTGSWTDVPGEPMAPACDGWVSREIAADGATITAAFTDGAGAWDNNGGQDYTLTGTDVVVSGGEVTAGDPCSEPEPEAGDVEVSVDATTTWGQTVHMVGSLPELGSWAPQDAPALDAGSYPTWTGTVELPAGTSFEYKYVKVDASGNVVWESGANRTATVGPDGTLGLHDTWRPGPT0018575_368DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0018575-amyA|malS-K01176NANA
AK018_055271284glyA1_1COG0112Serine hydroxymethyltransferase 1ATGAGCACTCCCGACCCCACGTTCGACGCCCCTCTCGCCGAGGTCGACCCGGAGATCGCCGCCGTCCTCGACGGTGAGCTGGCCCGGCAGCGCGACACCCTCGAGATGATCGCGTCGGAGAACTTCGTCCCCCGTGCCGTGCTGCAGGCCCAGGGCTCGGTGCTGACGAACAAGTACGCCGAGGGCTATCCAGGCAAGCGCTACTACGGCGGTTGCGAGCAGGTCGACATCGCCGAGAACCTGGCGATCGACCGGGCCAAGGCGCTGTTCGGGGCCGAGTACGCCAACGTCCAGCCGCACTCCGGTGCGCAGGCGAACGCCGCCGTCCTGCACGCGCTCATCCGGCCCGGTGACAAGATCATGGGGCTCGAGCTGGCCCACGGCGGTCACCTGACGCACGGCATGAAGATCAACTTCTCGGGCCGGCTCTACGACGTCGCCGGCTACGGCGTCGACCCGCAGAGCTACCGCATCGAGATGGACGAGGTGCGCAAGCGCGCCCTGGAGCACCGCCCCGACGTCATCATCGCCGGCTGGTCCGCGTATCCCCGCGAGCTGGACTTCGCGGCCTTCCGCGAGATCGCCGACGAGGTGGGCGCGAAGCTCTGGGTGGACATGGCGCACTTCGCCGGCCTCGTCGCCGCCGGCCTGCACCCGTCCCCGGTGCCGCACGCCGACGTCGTCTCCTCCACGGTCCACAAGACCATCGGCGGTCCGCGCTCCGGCTTCATCCTGTCCTCCGAGGAGTATGCCAAGAAGCTCAACTCCGCGGTGTTCCCCGGCCAGCAGGGCGGCCCGCTCATGCACGTCATCGCGGGCAAGGCCGTGGCGTTCAAGATCGCGGGCACCGACGCGTTCGTGGAGCGCCAGGAGCGCACCCGCCGCGGTGCACGCATCATCGCCGAGAGGCTCGGCCAGGCCGACGTCGCCGGGACCGGCGTGTCCGTGCTCACCGGCGGCACCGACGTCCACCTCGTGCTCGTCGACCTGCGGGACTCCGCGATGGACGGCCAGCAGGCCGAGGACCTTCTGCACTCGGTCGGCATCACCGTCAACCGCAACGCCGTGCCGTTCGACCCTCGGCCGCCGCGCGTGACCTCGGGTCTGCGGATCGGCACCCCGGCGCTCGCGACCCGCGGGTTCGGCGACGCCGAGTTCACCGAGGTGGCCGACATCATCGCGGCCGCGCTGCGCGACGGCACCTCCGCCGACGCCGAGGCGCTCCGGGCCCGCGTCGCGACGCTCACCGCGGACTTCCCGCTCTACCCCGGGCTGTCGCAGTGAMSTPDPTFDAPLAEVDPEIAAVLDGELARQRDTLEMIASENFVPRAVLQAQGSVLTNKYAEGYPGKRYYGGCEQVDIAENLAIDRAKALFGAEYANVQPHSGAQANAAVLHALIRPGDKIMGLELAHGGHLTHGMKINFSGRLYDVAGYGVDPQSYRIEMDEVRKRALEHRPDVIIAGWSAYPRELDFAAFREIADEVGAKLWVDMAHFAGLVAAGLHPSPVPHADVVSSTVHKTIGGPRSGFILSSEEYAKKLNSAVFPGQQGGPLMHVIAGKAVAFKIAGTDAFVERQERTRRGARIIAERLGQADVAGTGVSVLTGGTDVHLVLVDLRDSAMDGQQAEDLLHSVGITVNRNAVPFDPRPPRVTSGLRIGTPALATRGFGDAEFTEVADIIAAALRDGTSADAEALRARVATLTADFPLYPGLSQPGPT0008090_3305DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600NANA
AK018_05528846folD_1COG0190Bifunctional protein FolD proteinATGCTGCCGGGCAAGCCGGTCGCCGAGGCGGTGTTCGCCGAGATCGCGCCTCGCATCGACGCGCTCGTCGCCGCCGGCCACCGGCCCGGTCTGGGCACCATCCTCGTCGGGGACGACTCGGCGAGCGCCGGCTACATCCGCATGAAGATGGACAAGGCGACCGAGCTGGGGTTCACCTCCCCGCACATCCACCTGCCGCAGGACGCCTCCCAGGCGGACGTGCTGGCAGCGGTGCGGGAGATGAACGACGCCGACGACGTCGACTCCGTCCTCATCCAGCACCCCACGCCGCCGCAGATCGACTTCGACGCGGCGCTGCTGGCGCTCGACCCCGACAAGGACGTCGACGCGCTGCACCCGGTGAACATGGGACGCCTCGCCCTCGGGATGCCGGGCCCCGTCCCGGCGACGCCGGCGGGCATCGAGACGCTGCTGGCGCACTACGAGATCCCCGTGGCCGGTCGCGAGGTGTGCATCCTCGGGCGCGGCACCACGCTGGGCCGGCCGCTGGCGCTGCTGCTCTCGCAGAAGCGCCCGACGGCAAACGCCGCCGTGACCGTGGTGCACACGGGCGTGCCGGACTGGCCGGAGTACACCCGGCGCGCCGACGTGGTCATCGCCGCGGCGGGTGTCCCGGGCATCCTGCAGCCGGAGCACCTCACGCCGGGCGTCACGGTGATCGGCGGGGGAGTCCGCTACGAGGGGCGCAAGCTGCTGCCGGACGTCGACGAGTCCTGCGAGGAGGTCGCCGGCGCGATCACGCCGCGGATCGGCGGCGTCGGTCCCACCACGATCGCGATGCTCTTCCGCAGCGCCGTCGAGGCCGCGGAGCGCGCGGTCGCCTGAMLPGKPVAEAVFAEIAPRIDALVAAGHRPGLGTILVGDDSASAGYIRMKMDKATELGFTSPHIHLPQDASQADVLAAVREMNDADDVDSVLIQHPTPPQIDFDAALLALDPDKDVDALHPVNMGRLALGMPGPVPATPAGIETLLAHYEIPVAGREVCILGRGTTLGRPLALLLSQKRPTANAAVTVVHTGVPDWPEYTRRADVVIAAAGVPGILQPEHLTPGVTVIGGGVRYEGRKLLPDVDESCEEVAGAITPRIGGVGPTTIAMLFRSAVEAAERAVAPGPT0008075_3521DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008075-folD-K01491NANA
AK018_05529423hypothetical proteinATGACGATACGACGAACCCCGTTCCGGGCCGCCCTGGTGACAGTCCTCGCGGCGACGACGTTCGCCGCGTGCAGCGACTCGCTCGAGGAGAGCACCGCGGAGGCGTGCGAGAGCTGGGGAGCGTACAGCGAAGCCGTCAACGAGGTGGTCGCGACGCTCACGTCGCAGGACTCGACGGTCGGCGAGCTGCAGGACGCTCGCGCGGCCGCCGAGGAGGCGTACGGCGACATGGAGGACGCGGCCGCGGACGTCGCCGGCTACCGGCTGAACGACCTCCAGACGGCGTGGGACGAGCTCGGGTCGGCGGTCGACGACGTGGAGTCGGACGACACCCTGGCCGAGGCCGGCGCGTCGCTCGGGGAGCACGCCGCCGCGGTCCGCGAGGCGGCCGACGGCCTGGGAGCCGAGCTCGACTGCTCCTGAMTIRRTPFRAALVTVLAATTFAACSDSLEESTAEACESWGAYSEAVNEVVATLTSQDSTVGELQDARAAAEEAYGDMEDAAADVAGYRLNDLQTAWDELGSAVDDVESDDTLAEAGASLGEHAAAVREAADGLGAELDCSNANANANANA
AK018_05530483hypothetical proteinATGGTCACCGTCCGGCCGCACCTGTGGTTCGCCGACAACGACGCGCACGAGGCTGCCGCCTTCTACGCCGAGCACGTCCCCGACTCCCACGTCGACAGCACGCTCGTCGCCCCCGAGGGTGTGCCGGGCGTCGAGGCGGCCGGGCCGTTCATCGTCGAGGCGACGGTCTGCGGCATGCCCGTCGTGATGCTCGACGCCGGTCCCAGCCTCCGCCTGGACGAGGCCTTCAGCTTCTACCTGCTGTGCGACGGCCAGCGCGAGGTGGACCACTACTGGAACCTGTTCACGGCCGACGGCGGTTCCGAGGGGCCCTGCGGCTGGTGCAAGGACCGGTTCGGGGTGAGCTGGCAGGTGATCCCCCGCCGGCTCGAGGAGCTGTGCGGGGACTACACGACCCCGGCGAACCGGCGCGCGATGCAGGCGATGCTGCAGATGGGCAAGATCGACGTGGCGGCGCTGGAGGCGGCGTACGACGGCGGGTGAMVTVRPHLWFADNDAHEAAAFYAEHVPDSHVDSTLVAPEGVPGVEAAGPFIVEATVCGMPVVMLDAGPSLRLDEAFSFYLLCDGQREVDHYWNLFTADGGSEGPCGWCKDRFGVSWQVIPRRLEELCGDYTTPANRRAMQAMLQMGKIDVAALEAAYDGGNANANANANA
AK018_055311047hypothetical proteinATGGTGGTCAACGTCTGGTGGTCCGTGCTGTGGACGGCGATGTGGTGCCTCCTGTGGGCCGCCTGGCTCGCCTGGTCCATGCGCCGCGACCCCCGACGGCTGCGCAACGGGTTCCTGGCGATCGCCGTCGTGTACAGCACCGGGCTGCTGGCGAACGGTCTGCTGCGCCTGCAGCCGGACGGCGCGACGATCGCCGACTGGGTACGGCTCGCGCTGCTGCTGGTGCTCGGCGCCGGGCTGCTCGTCCTGCCGCTGCTCCTGGTGGCCAACGGTGTCACGATGGTCCGGCGTGAGCGCCGCACCCCCGCGAACCTTCTGTCCCTGGCGGCGGGACTCTTCCTGCTCGTGCTGCCCATGCTCGGCTGGCTGCTTGCCCGCGACGGGTCGGCGTACGGCACCGCGGTCGCCGTGGCGATCTTCCTCGTGACCGGCTGGCTGGGGTTCGTGTTCCTCGGCTTCGTCGCCCAGGCGCTCCTGTACCGGCGGGCGGCGCACCGGGTGGGGGCGACCGCCGTCGTCGTGCTGGGAGCCCGGGTGGTCGACGGCCGGGTGCCGCCGCTCCTGGCCGCACGGCTGCGCACCGCGGTGGCCGAGGCACGGCGGCTCGGGACGGACGAGCGACCCGTCCCGATCGTGCCCTCGGGCGGGCAGGGGCCGGACGAGACGCAGCCCGAGGGCGTCGCCATGGGTGCCTGGCTGCGCGCGGAGGGTGTGCCCGCGGACCTGGTCCTGGTCGAGGACAGGGCCCGGACCATCCGGGAGAACCTGCTCCTGTCGGTGGAACTGCTGCAGGCCCACGAGATCGACGGCCCCTACCTGGTCGCGACCAACGACTACCACGCGCCGCGGGCGGCGCTCGAGGCGATGGACCTGGGGCTCGACGTGCACGCCGTCGGCGGACCGACGGCCCGCTACTACCGACCGAGCGCGTTCCTGCGCGAGTTCGCCGCCGTCATCCAGCGGCGCCGCGGGGTGCACGCGGTCGCCGGTGCGGGCATCCTCGCGTTCTCGGTCCTGGTGCTGCTGGCGGGTCTCGCCGCGGCCTGAMVVNVWWSVLWTAMWCLLWAAWLAWSMRRDPRRLRNGFLAIAVVYSTGLLANGLLRLQPDGATIADWVRLALLLVLGAGLLVLPLLLVANGVTMVRRERRTPANLLSLAAGLFLLVLPMLGWLLARDGSAYGTAVAVAIFLVTGWLGFVFLGFVAQALLYRRAAHRVGATAVVVLGARVVDGRVPPLLAARLRTAVAEARRLGTDERPVPIVPSGGQGPDETQPEGVAMGAWLRAEGVPADLVLVEDRARTIRENLLLSVELLQAHEIDGPYLVATNDYHAPRAALEAMDLGLDVHAVGGPTARYYRPSAFLREFAAVIQRRRGVHAVAGAGILAFSVLVLLAGLAAANANANANANA
AK018_05532840exoA_2COG0708ExodeoxyribonucleaseATGTCGGCGGTCCGTGGTCTGATGACTCGCGTGCTGACCCTCGCCACCGCCAACGTCAACGGGATCCGTGCCGCCGTCCGCCGCGGCATCGACGACTGGATCACCCACCGCAGCCCCGACGTCCTGCTGCTGCAGGAGGTCCGCGCGCCCGACGACCTGGTGCGCGACCACTTCGCCGGGTGGCACGTGGCGCACCACCCGAGCGCGCTCAAGGGCCGCGCGGGTGTCGCCGTCGTCTCCCGGCTCCCGCTGGCCGCCGTGCGCGCCGGGCTGCCGACGTCGGACGGGGGACCCGAGGCCGACGTGGACAGCGGACGCTGGCTGGAGGCGGACCTCGAGCTGCCCGACGGCGGGACGCTCACCGTGGTCTCGGCCTACCTGCACTCCGGTTCGGCCAAGCCCGGCCAGGAGCACACCCTGAGCGCCAAGTACGCCCACCTGGACCGGGTGACGGACCGGCTGGCGGAGCTCGCCACCGGGGGACCCGTCGTCGTCGCCGGAGACGTCAACGTCGCCCACCGTGAGGTCGACATCGCGAACTGGAAGGGGAACCTGAAGAGCTCGGGGTTCCTGCCGGCCGAGCGCGCCTACCTCGACCGGTGGTTCGACGCCGGCTGGACCGACCTGGGCCGGGCCCACGGCGGAGACGGACCCGGCCCGTACACGTGGTGGACGTGGCGGGGGCAGGCGTTCGACAACGACAAGGGCTGGCGCATCGACTACCAGCTCGCCAACGCCGCGGTCGCCGACCGGGCGGTCAAGGTGGAGGTCGACCGGGCGCCGTCGTACGCGGAACGCTGGAGCGACCACGCCCCGGTCGTGGCGACCTACGACCTGTAGMSAVRGLMTRVLTLATANVNGIRAAVRRGIDDWITHRSPDVLLLQEVRAPDDLVRDHFAGWHVAHHPSALKGRAGVAVVSRLPLAAVRAGLPTSDGGPEADVDSGRWLEADLELPDGGTLTVVSAYLHSGSAKPGQEHTLSAKYAHLDRVTDRLAELATGGPVVVAGDVNVAHREVDIANWKGNLKSSGFLPAERAYLDRWFDAGWTDLGRAHGGDGPGPYTWWTWRGQAFDNDKGWRIDYQLANAAVADRAVKVEVDRAPSYAERWSDHAPVVATYDLNANANANANA
AK018_055331233hypothetical proteinATGACCGACGTCCTTCCCCAGGCGTCCGTGACCGCCGAGACCTCGGCTCCCGCCGAGACGCGTCGTCTCGTCAGCCCGTTCGAGCGCCTGGGCCTGCGGGGGCGGCCGCTGGCGACCGCGAACTGGCTCGGCGTCGCCGTCGGGGTGTACGTCCTGATCACCGCCGTCGAGCTCATCGGCTCCGGCTTCAAGGCAGCCACCGGGGACTCGGCCGAGTCGCTGTTCGCGTTCGCGTCCAACCCGTTCGTGGCCCTCATGGTGGGCGTGCTGTTCACCGCCGCCGTGCAGTCCAGCTCGACGACCACGTCGGTCACGGTCGGCCTGGTGGCCGGCGGGCTGCCGATCGACATCGCGATCCCGTTGCTCATGGGCGCGAACATCGGCACCACGCTGACCAACACCCTGGTCAGCCTCGGCATGGCCCGGGACAAGGAGAGCTTCCGCCGGGCGTTCTCCGCCGCGACGGTGCACGACTTCTACAACCTGGTCGCGGTGGCGATCTTCCTGCCGCTGGAGATGATGTTCGGGCTGCTCGAGCGGACCTCGTCCTGGCTGGCGCAGGCCACCTCGGGCTCGGACGGCGGCGTCGTCGCCACCGTCTTCTCCGGCATCGGCAGCGTGGTCGACACGGTCACCGAGCCGCTCGCCGCAGGGCTCGAGGGTGCGACGTCGTTCCTGCCGGACCCGTGGCACGGCATCGTCATGATCGTGCTCGGCATCGGCCTGATCCTCGCGGTCATCAACTGGCTCGGCCGGCTGCTGAAGGTGCTGCTCGTGGGCCGCGCGGCCCAGGTGCTGCACTCGTCGGTGGGGCGCGGCCCGATCAGCGGCATCGCCTCCGGCGCGGCCGTGACCATGATGGTGCAGTCCTCCTCGACGACGACGAGCCTGATGATCCCGCTGGCGGGCTCGGGCACGTTCTCCCTCAAGCAGATCTACCCGTTCACCGTGGGCGCCAACATCGGCACCACCGTCACCGCCCTGATCGCCGCGTTCGCCTTCTCCGGCGCCGAGGCCACCCTGGCGCTGCAGGCGGCGTTCGTGCACCTGCTCTTCAACGTGTTCGCCGCCCTGGTCGTCTTCGGCCTACCGCTGCTGCGCCAGCTCCCGCTGCGCGGTGCCACCTGGCTCGGCGACGTCGCCGCGACGAACAAGCTCTGGGCCGCGGGCTGGGTGCTCGGCGTGTTCGTCGGCATCCCGGCGCTGCTGATCGGGATCACGGTGCTGCTGTGAMTDVLPQASVTAETSAPAETRRLVSPFERLGLRGRPLATANWLGVAVGVYVLITAVELIGSGFKAATGDSAESLFAFASNPFVALMVGVLFTAAVQSSSTTTSVTVGLVAGGLPIDIAIPLLMGANIGTTLTNTLVSLGMARDKESFRRAFSAATVHDFYNLVAVAIFLPLEMMFGLLERTSSWLAQATSGSDGGVVATVFSGIGSVVDTVTEPLAAGLEGATSFLPDPWHGIVMIVLGIGLILAVINWLGRLLKVLLVGRAAQVLHSSVGRGPISGIASGAAVTMMVQSSSTTTSLMIPLAGSGTFSLKQIYPFTVGANIGTTVTALIAAFAFSGAEATLALQAAFVHLLFNVFAALVVFGLPLLRQLPLRGATWLGDVAATNKLWAAGWVLGVFVGIPALLIGITVLLNANANANANA
AK018_05534300hypothetical proteinGTGAGCGGCACCGAGCAGGTCCCGACGGCCGGCGGCCCCGGACGGACGCCCGCCGAGCGTCCGGAGGACGTGCTCGCGCTGGAGCGCGAGCTCGAACGCATCGTCACCGCCGCGCAGGCGGAGCTGGACCAGGTGCGCCGCGAGATCGCCGAGCACCGCCGCCAGGACGCCCAGCACGCGGAGATCGACCGTCTCGAGGAGCACCTGGCCAACGCCACCGTGCGCTGGAGCGAGGTGCGTGCCTTCTTCGACGAAGCCCTGGTCCAGCTGCGCGACGGCGCCCGGCAGCCCGCCGACTGAMSGTEQVPTAGGPGRTPAERPEDVLALERELERIVTAAQAELDQVRREIAEHRRQDAQHAEIDRLEEHLANATVRWSEVRAFFDEALVQLRDGARQPADNANANANANA
AK018_055351230galK_1COG0153GalactokinaseATGACGTCTCCCGCATGGCTCGAGTCCTGGTCCGCCGACGACGGCGCAGCACGCGTCCGCACGCTGTTCGCCGAGGCCTTCGGTGCCGACGGCGACCCGGGCGGTGTCTGGTCCGCCCCGGGACGGGTCAACCTCATCGGCGAGCACACCGACTACAACGCCGGGCTGGCGCTGCCGACGGCCCTGCCGCACCGCACGTACGTGGCGCTGCGCTCCCGCGGTGACGACGTCGTGCGCCTCGTCTCGGCACAGGCACCCGGCAAGGTCTGGGAGACCCGCCTGGCCGACGTCGCGCCGGGCGTCACCACCGGCTGGGGTGCCTACGTCGCCGGAGTCGCATGGGCCCTGCGCGAGGCGGGCCACGAGGTCGCCGGGTTCGACGCCGTCGTCGACTCGTGCGTGCCGTTCGGTGCCGGCCTGTCGTCGTCGGCGGCGCTCGAGTGCGCGGTCGCCGTCGCCCTGGACGCCGTGCACGGCCTCGGGCTGGCGGCCGACGACGCCGGGCGCGCCGCGCTGTCCGCGGCCTGCGTGCGGGCGGAGAACGAGATCGCGGGCGCCCCGACGGGCGGCATGGACCAGGCGGCCTCCCTGCGCTGCACCGCGGGCCACGCCCTGCTGCTCGACTGCCGCCCCGGCCTGTCGGCGCTGGAGTCGGCGCACGCCGTGCCGTTCGAGCTGGCGGGTGCGGGCCTGACGCTGCTGGTGGTCGACACCCGCGCCGAGCACGCCCTGGTGGACGGCCAGTACGCGCAGCGGCGTGCGTCGTGCGAGCATGCGGCCGCGCTGCTCGGGGTGCCCTCCCTGCGGGAGATCGACCCGGAGGGGCTGGACGAGACGCTCGCACGGCTCCAGGACGCCGACGACGCCGTGGTGCTGCAGCGCCGGGTGCGGCACGTCGTCACCGAGATCGCACGGACCGAGGAGTTCGCGACGCTCGTGCGCGACGGCCGGGTCGACGAGGTCGGCCCGCTGATGAACGCCTCCCACGCCTCCCTGCGCGGCGACTACGAGGTGTCCTGCCGCGAGCTGGACCTCGTGGTGGACTCGGCGCTCGACGCCGGGGCGCTCGGCGCGCGGATGACCGGCGGCGGGTTCGGCGGGTCGGCCATCGCGCTGGTCCGTGCCGACGACGTCGACGCGGTGGTCGCGGCCGTCGACGAAGCGTTCGCGGCCGCGGGGCTCACGGCTCCCGGCTTCCTGCTGGCTCCGCCGTCGGACCCGGCGCGCTGAMTSPAWLESWSADDGAARVRTLFAEAFGADGDPGGVWSAPGRVNLIGEHTDYNAGLALPTALPHRTYVALRSRGDDVVRLVSAQAPGKVWETRLADVAPGVTTGWGAYVAGVAWALREAGHEVAGFDAVVDSCVPFGAGLSSSAALECAVAVALDAVHGLGLAADDAGRAALSAACVRAENEIAGAPTGGMDQAASLRCTAGHALLLDCRPGLSALESAHAVPFELAGAGLTLLVVDTRAEHALVDGQYAQRRASCEHAAALLGVPSLREIDPEGLDETLARLQDADDAVVLQRRVRHVVTEIARTEEFATLVRDGRVDEVGPLMNASHASLRGDYEVSCRELDLVVDSALDAGALGARMTGGGFGGSAIALVRADDVDAVVAAVDEAFAAAGLTAPGFLLAPPSDPARPGPT0017840_520DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017840-galM-K00849NANA
AK018_055361152mrp_1COG0489Iron-sulfur cluster carrier proteinATGAGCAGCACCGATCTCGAGTCCCGGGTCCGCGACGCGCTGGCCGAGGTGATCGACCCCGAGATCCGGCGGCCGCTGACGGAGCTCGACATGATCCGCTCGGTCGAGGTCGCCAGAGCGTCGGACGACGACGGCGCCGGCGCGCACGTCACGGTCGGGGTGGACCTGACCGTCGCGGGCTGCCCTATGAAGTCGACGCTGGTCCGTGACGTCACCGCGGCCACGGAGGCGGTCGACGGTGTGGCCCGTGCGTCGGTGGACCTGGGGGTCATGACGGCCGAGCAGCGCCAGCAACTGCGCTCGAAGCTGCGCGGCGGCAGCGGGGACCCCGTGATCCCGTTCGCGCAGCCGGGGTCGCTGACCAAGGTGTACGCGATCGCCTCCGGCAAGGGCGGGGTCGGCAAGTCGAGCGTGACGGCCAACCTGGCGGCCGCGATGGCCGCCGACGGGCTCAGCGTGGGAGTGCTCGACGCGGACATCTACGGGTTCTCCGTGCCGCGCATGCTGGGCGTGGACCGCCAGCCCACCCGCGTGGACTCGATGCTGCTGCCGCCGATCGCGCACGGCGTGAAGGTGGTCTCGATCGGCATGTTCGTCCCCGAGGGCCAGCCGGTGGTCTGGCGTGGTCCGATGCTGCACCGCGCCCTGGAGCAGTTCCTCGCGGACGTGTTCTGGGGCGACCTGGACGTGCTGCTGCTGGACCTGCCGCCGGGCACGGGCGACATCGCGATCTCCGTGGCCCAGCTCCTGCCGAGCAGCGAGATCCTGGTGGTCACCACCCCGCAGGTGGCCGCCGCGGAGGTGGCCGAGCGTGCCGGGTCCGTGGCGACGCAGACCTCGCAGGGCGTGGTCGGGGTCGTCGAGAACATGTCGTGGCTGGAGCAGCAGGACGGCTCCCGGCTCGAGCTGTTCGGCTCCGGCGGCGGGCAGGCGGTGGCCGACCGGCTGGCGGGCACGCTCGGCACCGAGGTGCCGCTGCTCGGCCAGGTCCCGCTCGACGTCGCGGTCCGCGAGGGCGGCGACGGCGGCACGCCCGTGGTGCTGACGGCCCCGGAGTCCCCCGGTGCCCAGGTCCTGCAGGGGGTGGCGCGCTCCCTGGCGGGGCGTCGTCGGGGCCTGGCGGGGCGCCGTCTGGACGTCACTCCCGCCTGAMSSTDLESRVRDALAEVIDPEIRRPLTELDMIRSVEVARASDDDGAGAHVTVGVDLTVAGCPMKSTLVRDVTAATEAVDGVARASVDLGVMTAEQRQQLRSKLRGGSGDPVIPFAQPGSLTKVYAIASGKGGVGKSSVTANLAAAMAADGLSVGVLDADIYGFSVPRMLGVDRQPTRVDSMLLPPIAHGVKVVSIGMFVPEGQPVVWRGPMLHRALEQFLADVFWGDLDVLLLDLPPGTGDIAISVAQLLPSSEILVVTTPQVAAAEVAERAGSVATQTSQGVVGVVENMSWLEQQDGSRLELFGSGGGQAVADRLAGTLGTEVPLLGQVPLDVAVREGGDGGTPVVLTAPESPGAQVLQGVARSLAGRRRGLAGRRLDVTPAPGPT0013215_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
AK018_05538276hypothetical proteinATGCACGGACCCGACGACCTCATCCTGGCCCGCGAGCACCATCCGTCCGCGCTCGCCCGCGCCGTCGTGCGCCGCGAGATCGAGAGGATCCGCCCCGGCGCGTACGTCGAGGGTGGGGGCGACGCCGGGTCGCCGCACCGGGCAGCACGCCGCCGTCGTGCCCTGATCGCCCGTGCCGTGCACCTCCAGCTCCGCGCCGACCACACCTTCAGCGGTCCGACGGCGGCGCTGCTGTGGGGTGCGCCCTCTGGCGGCCGCCCGAGCGGACCCATGTGAMHGPDDLILAREHHPSALARAVVRREIERIRPGAYVEGGGDAGSPHRAARRRRALIARAVHLQLRADHTFSGPTAALLWGAPSGGRPSGPMNANANANANA
AK018_05539678hypothetical proteinGTGAACCAGGCCTACCGTCCGTCGAGCCGGGCGGCCTCCGACCTGGTCCGGCACGCCGGTTCCGTGCCTGCCGAGGAGACCGCCGAGGTCGAGGGGTTGCCGGTGACGGGCCGGCTGCGCACCCTGGCGGACTGTGCGTTGTGGTTGCCTCCGCTCGACGCTCTGGTGATCGCGGACTCCGCGCGGCGCCTGTGGCCGGAGCTGGATCTCGACGAAGCGGTCGACCTCCTCGCACGACGCGGTGCGGTCAACGGACGACGGCGGGCACGGTGGGTGCTCGAGCACGCCGACGGCGGGGCGGACTCGCCGTGGAAGACCTGGGTCCGGTACGTCGCTCTGCGGGTGGGACTGCCCAGGCCGCGGACGCAGGCCCCGGTGTCCGTCGCGGGTCGGGTCTACCGGTGCGATGTCGGTTGGCCGGAGCACGAGGTCTACGTCGAGTTCGACGGCAGGGTGAAGTACACCGCTGACGGTGTGCGGCCCGGGCACGATCCGGTCCAGGAGCTGCTGCGGGAGAAACGACGTGCGGACGACCTCGCTGACGTCGGGGTGCGGTCGGTGCGGGTCATGGCCGGCGACGCCCCACGGTCGGTCGAGTCCCGGGTGCTCGCGCGGTTCCCGGCTGCGGTGCGCCGGGAAGCACGGGTGCTGCGGTTCCTGCCGCCGGCCGACCGCTGAMNQAYRPSSRAASDLVRHAGSVPAEETAEVEGLPVTGRLRTLADCALWLPPLDALVIADSARRLWPELDLDEAVDLLARRGAVNGRRRARWVLEHADGGADSPWKTWVRYVALRVGLPRPRTQAPVSVAGRVYRCDVGWPEHEVYVEFDGRVKYTADGVRPGHDPVQELLREKRRADDLADVGVRSVRVMAGDAPRSVESRVLARFPAAVRREARVLRFLPPADRNANANANANA
AK018_055401518pepPI_1Xaa-Pro aminopeptidase 1ATGACCGACTCCACCCCCGTCGAGCAGACCGCCTCCGAGCGCGGGAGCAACCGTTCCCAGCGCCCCCGGTCGGAAGCCTTCAAGCAGTTCATCACCTCGCAGTGGGGCCCCCGTCCCGACCTCGGCGTCACGCCGGGCCGCGCGGTGCCCTTCACGGCGCAACGGCGCGCCCGGCTGTCCGAGCGGTTCGCCGGCACCCGACTCGTGCTGCCCGCCGGGCCCCTCAAGCAGCGGTCCAACGACACCGACTACCGGTTCCGGCCGCACTCCGCGTTCGCGCACCTGACCGGGTTCGGCACCGACCAGGAGCCCGACGCGGTGCTCGTGCTGCACCCCACCGCCGAGGGCGAGGGCGACGACGGGTCGCACCACCACGCCGTGCTGTACGTGCGTCCCCTCGCGCCGCGGGACACCGAGGAGTTCTATGCCGACGCCCGCTACGGCGAGTTCTGGGTGGGCGCCCGGCCCACGCTCGACGACGTCACCACCGCCACCGGCATCGAGGCGCGGCACGTCGACGAGCTGCGCGAGGCCCTGGCCAAGGACGTCGGCACCGACGGCGTCCAGGTCCTCGTGATCGCGGAGGCCGACGACGAGATCACCGCCGTCATCGAGGCGATCCGTACCGAGGCCGGCACCGAGGAGTCCGCGTCCGACGACGCGCTGGCCGAGGCGGCCTCCGAGCTGCGCCTGGTCAAGGACGAGCTCGAGATCGAGCTCATGCGCCAGGCCGTGGACCGCACGGTCGACGGGTTCGCGGAGGTCGTCCGCGCCCTGCCGCGCGCCGTCGCCCACCGCCGGGGCGAGCGCGTCATCGAGACCACGTTCGACGCCCACGCCCGGCTCGAGGGCAACGCGGTCGGCTACGAGACCATCGCCGCCGCCGGCGAGCACGCCACCACCCTGCACTGGATCACCAACGACGGCGTGGTCCGCTCCGGCGAGATGGTGCTGCTGGACGCCGGTGTCGAGATCGACGAGCTGTACACCGCCGACGTCACCCGCACCCTGCCCGTCGACGGTGAGTACACCGACGTGCAGCGCCGCGTCTACACCGCCGTGCTCGACGCCGCCGACGCCGCCTTCGCCGTCGCGAAGCCCGGGGCGAAGTTCCGCGACGTGCACGCCGCCGCCATGGAGGTCATCGCCGCCCGGCTCGAGGAGTGGGGCCTGCTGCCGGTGTCCGCCGAGGAGTCGCTGTCCGACGACGGCCAGCAGCACCGCCGCTGGATGGTGCACGGCACCTCGCACCACCTGGGCATGGACGTGCACGACTGCGCCCAGGCCCGCCGCGAGATGTACCTCGACGGCGTGCTCGAGCCGGGCATGGTGTTCACCATCGAGCCGGGCCTGTACTTCAAGGCCGACGACCTGGCCGTGCCGGAGGAGTACCGCGGCATCGGCGTGCGCATCGAGGACGACGTGCTCGTCACCGCTGACGGCAACGAGAACCTCTCAGCGGCGCTCCCCCGGCGGCCCGAGGACGTCGAGGCCTGGATGGCCCGCCTGCGCGGCTGAMTDSTPVEQTASERGSNRSQRPRSEAFKQFITSQWGPRPDLGVTPGRAVPFTAQRRARLSERFAGTRLVLPAGPLKQRSNDTDYRFRPHSAFAHLTGFGTDQEPDAVLVLHPTAEGEGDDGSHHHAVLYVRPLAPRDTEEFYADARYGEFWVGARPTLDDVTTATGIEARHVDELREALAKDVGTDGVQVLVIAEADDEITAVIEAIRTEAGTEESASDDALAEAASELRLVKDELEIELMRQAVDRTVDGFAEVVRALPRAVAHRRGERVIETTFDAHARLEGNAVGYETIAAAGEHATTLHWITNDGVVRSGEMVLLDAGVEIDELYTADVTRTLPVDGEYTDVQRRVYTAVLDAADAAFAVAKPGAKFRDVHAAAMEVIAARLEEWGLLPVSAEESLSDDGQQHRRWMVHGTSHHLGMDVHDCAQARREMYLDGVLEPGMVFTIEPGLYFKADDLAVPEEYRGIGVRIEDDVLVTADGNENLSAALPRRPEDVEAWMARLRGPGPT0006770_2963DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006770-pepP-K01262NANA
AK018_05541774menH_32-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGGAGACGATGGCACTCACGACCGCTCTTCCCCCGGCCGCCCCGACCCGCACCGCCGGCGTGGTGCTGGTGCACGGCATGCGGCAGGACGCCACCGCCTGGGGGGCCCAGGTCGAGCACCTGCGCTCCGCGGGCCACGGCGTGGCCCCTGTCGATCTGCCCGGTCACGGCACCCGGCTGGACGAGCGGTTCGCCCTCGACCGCGCCTGGGACCTCATCGACGAGGCGGCGGCGGGTTTCGGCCCCGGCACCCCGCTGCTGCTGGTCGGGCAGTCCCTCGGCGGGTACGTCTCGCTGGGGTGGGCGGCGCGCCACGCCCGCTCCGACACCGACGGTCCCCGGCTGGCGGGAGTCGTGGCGTCGGGGTGCAGCACGGAACCGCGCGGCAAGCCGGTGGCGCTGTACCGCGACGTCGCCGATGCCGTCGTGCGGGCCGGCTCCGCCGTCCGACGTCGGGTGGCGCCCGGCGCCGGAGGCTTCGGCAAGCGATCCGCGACCGAGGCGCGGCGGCCGGGCTGGGACCTGGTGACCGACGCGCTCGGGGAGCTCGCCGGCCGGTCCGCGCTGGCCGACCTCGCCTCGGTGCGGTCCCCGGTGTGGTTCGTCAACGGCGCACGGTGCCACCTGCGCTGGCAGGAGCAGCGGTTCCTGCGCGGGGCCCGGCGCGGGGCTCTCGTCGTCGTGCCGCGGGTGGGCCACGATGTCCATCTCGAGGCGCCCGACGTGTACAACCGGGTGCTCACCCGCGCGCTGGCAGACTTCACGTCGCGATGAMETMALTTALPPAAPTRTAGVVLVHGMRQDATAWGAQVEHLRSAGHGVAPVDLPGHGTRLDERFALDRAWDLIDEAAAGFGPGTPLLLVGQSLGGYVSLGWAARHARSDTDGPRLAGVVASGCSTEPRGKPVALYRDVADAVVRAGSAVRRRVAPGAGGFGKRSATEARRPGWDLVTDALGELAGRSALADLASVRSPVWFVNGARCHLRWQEQRFLRGARRGALVVVPRVGHDVHLEAPDVYNRVLTRALADFTSRNANANANANA
AK018_05542921COG06133',5'-nucleoside bisphosphate phosphataseGTGGAGACCCTGTGGCGAGCGTGTGCGAGCGGCGGCCGGCTGCTCTCTAGACTGTGCCGGGTGATCGACCTCCACACGCACTCCTGCGAGTCCGACGGCACGCAGACACCACGCCAGGTGCTCCAGGCCGCCGCCGCGGCGGGGGTGCGGACGGTGGCGCTCACCGACCACGACACCACCGCCGGCTGGGCGCAGGCCGCGCAGGCCGTGGACGAGACGGACGTGGCGCTCGTGCGCGGCATCGAGATCTCGACGCGGGCCGCCACCCCCGACGGTGGCATCAGCGTGCACCTGCTGGCCTACCTGCACGACCCCGAGCACCCCGCCCTCCTCGCCGAGCTGACGCGCACCCGCGACGACCGGGTCGCGCGCGCCCGGCGCATGACGGAGCGCCTCGCGGAGGACTTCCCGCTCACCTGGGACGACGTCGTCGCCCAGACCTCGCACGGCGCCACCGTCGGCAGGCCGCACCTCGCGGACGCCCTGGTCGCGGCCGGCGTCGTCGAGCACCGCGACGAGGCGTTCGCGACGATGCTGCACCCGGGAGCCCCCTACTACGTGCCCCACTACGCACCGGACACCGCGGACGCCGTGCAGGCGGTGCTGGCTGCCGGCGGGGTGCCGGTCATGGCGCACCCGCGGGCCGGGCAGCGCGGGCGGGTCGTCACGGAGCAGACCATCGCCGAGCTGGCCACCGTGGGCCTCGCCGGCCTGGAGGTGGACCATCGCGACCACGACGCGTCCGACCGGGCCCGGCTGCGGGAGCTCGCGGCCGAGCTCGGGCTGCTCGTGACCGGCGCCAGCGACTACCACGGGGCCGGCAAGCAGAACCGCCTCGGCGAGCACACGACGGACCCGGCGGTCCTGGCCGAGATCGAGGACCGGGGGACGTTGGAGGTGCTGCGCCCGTGGAGCAGGTGAMETLWRACASGGRLLSRLCRVIDLHTHSCESDGTQTPRQVLQAAAAAGVRTVALTDHDTTAGWAQAAQAVDETDVALVRGIEISTRAATPDGGISVHLLAYLHDPEHPALLAELTRTRDDRVARARRMTERLAEDFPLTWDDVVAQTSHGATVGRPHLADALVAAGVVEHRDEAFATMLHPGAPYYVPHYAPDTADAVQAVLAAGGVPVMAHPRAGQRGRVVTEQTIAELATVGLAGLEVDHRDHDASDRARLRELAAELGLLVTGASDYHGAGKQNRLGEHTTDPAVLAEIEDRGTLEVLRPWSRNANANANANA
AK018_05543636hypothetical proteinGTGGAGCAGGTGATCGACCTGACCCTGTTCACCCAGGCGTTCGTCACGCTGTGGGTGATCATGGACCCGCCCGGCACCATCCCGGTGTTCCTGGCGCTGACCTCCACCATGGGGGCCAAGCAGCGCAGCCGGGCGGCGCTGCAGGCCGTCGCGGTCGCGTTCGGCGTCATCGTGACGTTCGCGCTGTTCGGGCAGCAGGTGCTGTCGTACATGGGGATCTCCCTGGCCGCGCTGCAGGCGTCCGGCGGTCTGCTGCTGCTGATCGTGGCGATGCAGCTGCTGACCGGGCACTTCGAGAACGGCGAGGCGACGGCGGCGACACCCGGCGCGAACGTCGCCCTGGTGCCGTTGGGCACGCCGCTGCTCGCCGGACCGGGTGCCATCGTGGCCACCATGGTGTTCGTGCAGCAGGCGGACACCCAGGACGACTGGGTGCCACCGGTCGTGGCGATCGCCCTGGCGATCGTGCTCGTGCACGTCTCGCTCTACCTGGCCATGCGGTTCGCGGAGGTGCTGCACCGGGTGCTCAAGGACTCCGGGGTCACGCTCATCACGCGCATCGCAGGCATCCTGCTCGCGGCGATCGCCGTCCAACAGATCGCGGACGCCGTCATGGAGTTCATCGAGACGGCCTGAMEQVIDLTLFTQAFVTLWVIMDPPGTIPVFLALTSTMGAKQRSRAALQAVAVAFGVIVTFALFGQQVLSYMGISLAALQASGGLLLLIVAMQLLTGHFENGEATAATPGANVALVPLGTPLLAGPGAIVATMVFVQQADTQDDWVPPVVAIALAIVLVHVSLYLAMRFAEVLHRVLKDSGVTLITRIAGILLAAIAVQQIADAVMEFIETAPGPT0029250_1274DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029250-marC-K05595NANA
AK018_05544300hypothetical proteinATGCAGCTCACGTTCACCGCGCCGCTGTGGCAGTGGGACGCACGCCAGGACGACGCCTGGTGGTTCGTGACGATCCCGCCCGACGAGTCCGACCTGCTCGCCGAGGTGCCCCTGCCGCCCCGCGGCTTCGGCTCGATCCGCGTGCAGGTGACCGTGGGCACGACGACCTGGCGGACGTCGGTGTTCCCCTCGAAGGAGCAGGCCGGCTACGTCCTGCCGATGAAGAAGGCCGTCCGACGCGCGGAGGGTCTCGCCCCCGGGGCGGCGGTCGAGGTCACGCTGCGGCCGGTCGACGTCTGAMQLTFTAPLWQWDARQDDAWWFVTIPPDESDLLAEVPLPPRGFGSIRVQVTVGTTTWRTSVFPSKEQAGYVLPMKKAVRRAEGLAPGAAVEVTLRPVDVNANANANANA
AK018_055451674deaD_4ATP-dependent RNA helicase DeaDGTGACCACCACGAACATCACCGCCGACGACGCCGCCCCGGCCGCCGGCAGCACCGATCAGCCGTCCGACCGCACGGACTTCTCGTCCGCCGCCGCCATCCAGGCCCAGGACGTCAGCTTCGCCGACTTCGGCGTCCGTGACGAGATCGTCGAGGCCCTCCGCGACGGGGGCATCACCCACCCGTTCCCGATCCAGGCGATGACGCTGCCCGTGGCCCTGCAGGGCCACGACATCATCGGCCAGGCGAAGACCGGCACCGGCAAGACGCTGGGGTTCGGCGTCCCGCTGCTGCACCGCGTCGCCGCCCCGGGCGAGCCCGAGTACGACCTGCTGCCCGCCCCGGGCAAGCCGCAGGCCATCGTCGTGGCCCCCACCCGCGAGCTCGCCGTGCAGGTCGCCAAGGACCTGGAGTCGGCCTCGAAGCGCCGCTCGGTCCGCATCGTGCAGATCTACGGCGGCCGCGCCTACGAGCCGCAGATCGAGACGCTGAACTCCGGCGTCGAGGTCGTCGTCGGCACGCCGGGCCGCATCGTCGACCTGATGAACCAGGGCCACCTCAACCTGTCCCGCGCCGCCACGGTGGTGCTCGACGAGGCCGACGAGATGCTCGACCTCGGGTTCCTGCCCGACGTCGAGAAGATCCTGGCGCGCACGCCCGCCGTCCGGCACACGATGCTGTTCTCGGCCACCATGCCCGGCCCCGTGGTCTCCATGGCCCGCCGGTACATGAAGCAGCCGACGCACATCCGTGCCGCCGACCCGGACGACGACGGCGCCACCGTGAAGAACACCCGCCAGGTGGTCTACCGCGCCCACGCGCTGGACAAGGTCGAGGTGCTCGCCCGCATCCTGCAGTCCGAGGGTCGTGGCCGCACCATCGTCTTCACCCGCACCAAGCGCACCGCCGCGAAGGTCTCCGACGAGCTGCGCTCGCGCGGGTTCGCGGCCGGCGCCATCCACGGCGACCTGGGCCAGGGCGCCCGCGAGCAGGCCCTGCGCGCCCTGCGCCACGGCAACATCGACGTGCTGGTGGCCACCGACGTCGCCGCCCGCGGCATCGACGTCACGGACGTCACCCACGTGGTCAACTACCAGTGCCCCGAGGACGAGCGCACGTACCTGCACCGCATCGGCCGCACCGGTCGCGCGGGCAACAAGGGCACGGCGATCACCTTCGTCGACTGGGACGACGTGCCCCGCTGGCAGCTCATCAACAAGGCGCTCGACCTCGGCTTCCCCGAGCCCGTCGAGACCTACTCCTCCTCGCCGCACCTGTACACCGACCTCTCGATCCCCGAGGGCACCAAGGGCCGGCTGCCGAAGGAGAAGCGCCGGCTCGGCGGCCTGGAGGCCGAGGAGCTCGAGGACCTCGGCGAGACGGGCAAGCGTTCGGGCGGCCAGGACCGTCAGGGCGGTCGCGGTGGTCAGGGTCGTGGCGGCCAGGGCGGTCGCGGCGGCTCCCGTGGTGGCGGCGGACAGTCCCGCGGCGGCCGTGGCGGCCAGGGTCCGCGGTCCGACGGCGGAGCGCGCCCGGAGCAGTCCGGCCCCGCCGGCCAGGGCGCCGACCAGGCCTCGAACGGCGAGGGCGGTCAGCGCCGTCGTCGTCGCCGTCGCCGCCGCAGCGGTGCGGGCGAGGGCCAGGGCGGCAGCGCGCCGTCGGCCACCACCGACTGAMTTTNITADDAAPAAGSTDQPSDRTDFSSAAAIQAQDVSFADFGVRDEIVEALRDGGITHPFPIQAMTLPVALQGHDIIGQAKTGTGKTLGFGVPLLHRVAAPGEPEYDLLPAPGKPQAIVVAPTRELAVQVAKDLESASKRRSVRIVQIYGGRAYEPQIETLNSGVEVVVGTPGRIVDLMNQGHLNLSRAATVVLDEADEMLDLGFLPDVEKILARTPAVRHTMLFSATMPGPVVSMARRYMKQPTHIRAADPDDDGATVKNTRQVVYRAHALDKVEVLARILQSEGRGRTIVFTRTKRTAAKVSDELRSRGFAAGAIHGDLGQGAREQALRALRHGNIDVLVATDVAARGIDVTDVTHVVNYQCPEDERTYLHRIGRTGRAGNKGTAITFVDWDDVPRWQLINKALDLGFPEPVETYSSSPHLYTDLSIPEGTKGRLPKEKRRLGGLEAEELEDLGETGKRSGGQDRQGGRGGQGRGGQGGRGGSRGGGGQSRGGRGGQGPRSDGGARPEQSGPAGQGADQASNGEGGQRRRRRRRRRSGAGEGQGGSAPSATTDPGPT0013740_2344DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
AK018_05546711hypothetical proteinGTGCCCCCCGTCGACCCGTCCACCCCGGCCCCGGTCTCCGCGCTCGTGGGGATCGCCGCCTACACCGAGCTGGCCGGCTTCGGGCTGCTCGCGGCCCGTTCGGTCGACGCGCCCGACCTGGCCACGCGCCAGTCGCTCGCTCTCGGCGCCGAGCGTGCCCTGAGCCGTCAGCAGGCGCTCGTGGGTCTGGTGGCGCCGGGCGCGGGGGTGCCGGCGGCGGCGGCGCTCATGGGTCCGTTCGAGGGGGCGCTCGTGGAGTTCGACACACGGACCCGGACCGACGACTGGGCCGAGGGGGTCCTCAAGGGTGTGGTGGGGCACGGCGTCGCGCAGGACTTCTGCCGGACGCTGGCCGCCGGCGTCGGCGGCCAGCACGGCAAGCGGCTGCGCGAGGTGCTGGAGGTCGCCGGAGCGAGTCCCGCCGCACGCGACGGGGCGGACGCCGAGGCGCTGTCCGTGCTGGTGCGGCTGGCCTCCGCCGACGACGTCCTGGCGTCCCGGCTCGCCCTGTGGGGCCGCCGCGTGGTGGGGGAGGCGCTGAACCTCGTCACCGCGCTGCTGGAGCAGCACGCGGAGCTGGAGGGTCTGACGGCCGCGTCGGCGGCGGCGCTGGGCCACGACGCCGCGGACGGCAGCGTGCGGTCCTGGTTGGTCGCGCGGCTCACCGCGGAGCACACGCGCCGCATGGACCGGCTCGGCCTCGCGGCCTGAMPPVDPSTPAPVSALVGIAAYTELAGFGLLAARSVDAPDLATRQSLALGAERALSRQQALVGLVAPGAGVPAAAALMGPFEGALVEFDTRTRTDDWAEGVLKGVVGHGVAQDFCRTLAAGVGGQHGKRLREVLEVAGASPAARDGADAEALSVLVRLASADDVLASRLALWGRRVVGEALNLVTALLEQHAELEGLTAASAAALGHDAADGSVRSWLVARLTAEHTRRMDRLGLAANANANANANA
AK018_05547225hypothetical proteinGTGGAGATCACGATCGGTGTGCAGAACCTGAACCGCGAGCTGGTGGTGGAGACCGACCAGAAGCCCGAGGAGGTCGCCAAGGCCGTCCGGGCGGCGCTCGACGGGGCGCCGTCGCTGGAGCTGAAGGACTCGAAGGGCAAGCTGGTCATCGTCCCGACCGCCTCGCTCGGCTACGTCGAGATCGGCAGCGGTGAGCAGCGTCCGGTCGGCTTCGGCTCGCTCTGAMEITIGVQNLNRELVVETDQKPEEVAKAVRAALDGAPSLELKDSKGKLVIVPTASLGYVEIGSGEQRPVGFGSLNANANANANA
AK018_055483288rep_2ATP-dependent DNA helicase RepGTGCCGCCGGCGCCCGGTCCGGGCCCCGGCGGCGACGTCGTGCTGGACGAGACGCAGCAGGCCGCCGTCGACGCGTCGTCGACGGGTCCGGCGACGCTCGTGGTGGGGGCGCCCGGGACGGGCAAGACGACGGTGGCGCGCGAGGTCGCGGTCCGGCAGGTGCGGGCCGGCGGCGACCCGTCGCGGGTGCTGGTGCTCGCGGCCTCGCGGCGGTCGGCCGCGCGGCTGCGCGACGAGGTCGCCGCCGGGGCGGGCCGCACCATCGGCGCGCCGATGGTCCGCACGGCGGCGTCGGCCGCGTTCTCGGTGCTGCGACGGCGGGCCGACGCCCTCGGCGAACCGGCACCCACGCTGGTCTCGGGCCCGGAGCAGGACCTGGTGCTCGCCGAGCTCCTGGCCGGGCACGCCGCCGGCGAGGGGGCCCCGCTCGCGCTCCCGGACGGGCTGCCGGCCGAGGCGCTGGGCCTGCGCGGCCTGCGTCAGGAGCTGCGCGACCTGCTGATGCGCGCCGCGGAGCGCGGTCTGACGCCGGACGATCTCGCCCGCCTCGGACGTCGGCACGATCGTCCGGAGTGGGAGCTGGCCGCCACCCTCTACGACGAGTACCTCGGCGTGACCGCTCTGCGGGGCGCGACGCCCGACGTGGGGGAGCGGTACGACCCCGCCGTCGTCGTCGACGAGGCCGCCTGGGCGCTGGACACGTGGGAGGAGCAGGTCCCGCACGTCGAGAGGCCGGGATGGGACCTCGTGGTGGTCGACGACTACCAGGAGGCGACGGTGGCGACGGCGCGGCTGCTGGGCGTCCTGCACGCCGCGGGCGCGCGCCTCGTGCTGCTCGCCGACCCGGACACCGCGGTGCAGGGGTTCCGCGGTGCGGTGCCTGCGCTGGTGGGGCGTGCCGCGGCGCGCGCCGGGGAGGTCGGGGCCTTCGACGCGAGCACCGTCGTGCTCGGCACCGCGTGGCGCGCTCCGGAGCGGCTGCGGGAGATCACCCGGACCATCACCTCGCGCGTGGCGACGGTCTCCGGGGCGCTGCACCGTCTCGCGGGCCCGCGGCCCGACGGTGCCCACGGGTCCGCCGAGGTCGCCGTGCTCGCCGGGGCGGCGCAGGAGGCCGCCCACATCGCGCGCGAGCTGCGCGCCGAGCACCTCCTGCACGGCACCCCGTGGGACCGCATGGCGGTCCTGGCCCGCAGCGGGGACCGCCTGGCGTCGCTGCGGCGGGACCTCGTGGCCGCCTCCGTGCCGGTGGCCCTGCTGGGCTCCGACGTGCCGCTGCGCGACGAGCCCGCCGTCGTCCCGCTGCTCGCCGCGCTGCGTGTGGCGGCCCGGCCTGCCGGCGTCGACGGGATGCTCGGCGAGACGTCCACGGAACCGCCGCCGGCGCTCGACCCCGAGACGGCCGCGCTGCTGCTCACCTCGCCGCTGGGTGGGCTCGACGCCGTGTCGTTGCGTCGGTTGCGGCGCGCGCTGCGGGCCGAGGAGCTGTCCGGCGGCGGTGGTCGCTCGTCGGACGCCCTGCTCGTGGAGGTGCTGGGGGACCCCGCGCGGGCGGTGACCCTGCCGTCGCCGGTGCGGCGCGGCCCGCTCGCCGTGGCGCGCGTGCTCGCCGCCGGCCGCGAGGCCGCGGGCGCGGAGGGCGCGACCGCGCAGACGGTGCTGTGGGCGGTGTGGGCCGCCACCGGCCTGGCCGAGAGGTGGCGCGACCTGGCGCTGGCCGGCGGGCCGGCCGGGGTGCGCGCCGACCGTGACCTCGACGCCGTCCTCGCGCTGTTCCGTGCGGCCGAGACGTACGTGGAGCGGATGCCCGGCGCCCCCGTGGCGGCGTTCGTCGACTACCTCGCCTCGCAGGACCTGCCGGCCGACTCGTTGGCGGCGTCGGCCACGGGCGCTCGAGCGGTCGAAGCGCTCACCCCGGCCGGTGCGGCCGGACGCGAGTGGGACGTCGTGGTGGTCGCGGGTGTGCAGGACGGGGTGTGGCCGGACCTGCGCCTGCGCGACTCCCTGCTCGGTTCGCAGGCGCTCGTGGAGCTGCTCGCCGGCCGGTCCGCCGACGCCCACGGCGTCGGCAAGGAGGCGCGTGCGCAGGTGCTGGCCGACGAGCTACGCGCGTTCGCCGTCGCCACCTCCCGCGCACGGCGGCGACTGCTGGTCACGGCCGTCGAGGACGCGGACGACTCGCCGTCGGTCCTCTGCGACCTGGTCGCACCCCGGCCGGACGGCGACGGCGAGGGTCCCGACCCCCGTCGCGTCGCCGTCGGACCGCCGCTCGACCTGCGCGGCATCGTCGCGGCCGCTCGCGCCGAGCTGGTGCGTGACGTCACCGCGCGGCTCGCCGCCGGCGGGGGCACCCCGGACGACGGGACCGACGCCGAGAGCGACGACCCCGGGACCGACGGCGTCGGGATCGACGACCCCGGGACCGCGGCCGCGCTCCTGGCACGCCTCGCCGCGGCGGGCGTCGCCGAGGCGGACCCGCGCACCTGGTACGGCGTCGCGCACGCCTCCAGCACCGCGCCGCTGTGGGGTCCGGAGGACGAGGTGCGGGTCTCGCCGTCCAAGGTCGACACCGTCAGCACGTGCGCGCTGCGCTGGGCGTTCGAGTCGGCCGGCGGGACGGCCCCCGACGCGACCCACCAGAGCCTGGGCACCCTGGTGCACAGCATCGCCGAGGAGCATCCCGCCGCCTCGCCGGCGGTGCTGAGGGCCGAGCTGGACCGGCGCTGGCCCGAGCTGGCGCTGCCCGAGGGCTGGCCGACGCGACAGCTGCGCCGCCGGGCCGAGGCGATGGTCGAACGGCTCGCCGCCTACACGGCGACCAGCGGCGAGCCGCTGCTCGTCGAGCCCGAGTTCGACGTCACGGTGGGCCGGGCCCGGCTGCGCGGCAAGATCGACCGGGTCGAGCCCGACGGCGAGGACGGCGTGATCGTGGCCGATCTGAAGACGGGCCGCAACGCCCCGTCGAAGGACAAGGCTCTCGAGAACCCCCAGCTCGGCGCCTACCAGCTGGCGGTGAGCGAGGGCGCGCTCGACCTGCCCGACGGCACCCGACCCGCGGGAGCACGACTCGTGTTCGTCGGCACGGACACCAAGGGGCCCGCGCTGCGGGAGCAGCCCGCGCTGGAGCCCGCCGAGGACGGCTCGACCTGGGCGCACCACCTGGTCATGCAGGCGGCGGACACCATGGCCGCCTCGGCCTTCGAGGCCCGCGAGAACGACCTGTGCCCGAGGTGCCCGGTGCGCCGCAGCTGCCCGGTCCAGAACGAGGGACGGAGCGTGATCCCGTGAMPPAPGPGPGGDVVLDETQQAAVDASSTGPATLVVGAPGTGKTTVAREVAVRQVRAGGDPSRVLVLAASRRSAARLRDEVAAGAGRTIGAPMVRTAASAAFSVLRRRADALGEPAPTLVSGPEQDLVLAELLAGHAAGEGAPLALPDGLPAEALGLRGLRQELRDLLMRAAERGLTPDDLARLGRRHDRPEWELAATLYDEYLGVTALRGATPDVGERYDPAVVVDEAAWALDTWEEQVPHVERPGWDLVVVDDYQEATVATARLLGVLHAAGARLVLLADPDTAVQGFRGAVPALVGRAAARAGEVGAFDASTVVLGTAWRAPERLREITRTITSRVATVSGALHRLAGPRPDGAHGSAEVAVLAGAAQEAAHIARELRAEHLLHGTPWDRMAVLARSGDRLASLRRDLVAASVPVALLGSDVPLRDEPAVVPLLAALRVAARPAGVDGMLGETSTEPPPALDPETAALLLTSPLGGLDAVSLRRLRRALRAEELSGGGGRSSDALLVEVLGDPARAVTLPSPVRRGPLAVARVLAAGREAAGAEGATAQTVLWAVWAATGLAERWRDLALAGGPAGVRADRDLDAVLALFRAAETYVERMPGAPVAAFVDYLASQDLPADSLAASATGARAVEALTPAGAAGREWDVVVVAGVQDGVWPDLRLRDSLLGSQALVELLAGRSADAHGVGKEARAQVLADELRAFAVATSRARRRLLVTAVEDADDSPSVLCDLVAPRPDGDGEGPDPRRVAVGPPLDLRGIVAAARAELVRDVTARLAAGGGTPDDGTDAESDDPGTDGVGIDDPGTAAALLARLAAAGVAEADPRTWYGVAHASSTAPLWGPEDEVRVSPSKVDTVSTCALRWAFESAGGTAPDATHQSLGTLVHSIAEEHPAASPAVLRAELDRRWPELALPEGWPTRQLRRRAEAMVERLAAYTATSGEPLLVEPEFDVTVGRARLRGKIDRVEPDGEDGVIVADLKTGRNAPSKDKALENPQLGAYQLAVSEGALDLPDGTRPAGARLVFVGTDTKGPALREQPALEPAEDGSTWAHHLVMQAADTMAASAFEARENDLCPRCPVRRSCPVQNEGRSVIPNANANANANA
AK018_055493546rep_3ATP-dependent DNA helicase RepGTGACGACGCCGGACGGCCTCGCACCGCACGAGCGGTCGCCGCAGGAGCAGACCCCGGACGCCGCGCCGCTGCAGGGCGTCGACTGGACCGCCCTCGCCGAACCCGGGCGGGACGGCGCGCTCGGCTTCCCCGAGCTCGAGCCGCCCGAGACGTCGGGGCCCGAGGCTCCCGGCCCTGACGCCGTTGAGCCGGCCGCGCGCCTGTCCGCCCGGGACATCGCCGACCTCCTGCGGCGTCCGGCGCCCACCGACGAGCAGGTCGCCGTGATCGAGGCACCCCTGGAGCCGGTGCTGGTCGTGGCCGGCGCCGGCTCGGGCAAGACCGAGACGATGGCGGCGCGGGTGGTCTGGCTGATCGCGAACGGGCTGGTCGAGCCGGAGGAGGTGCTCGGCCTGACGTTCACCCGCAAGGCCGCCGGTGAGCTCTCGACCCGGGTGCAGACCCGTCTCGCCCAGCTCACGCGCGCCCGCGGTGGTGCGGCGTCGGACCTGGACCTGCTGGCCCGGCCGACCATCGCGACGTACAACGCCTACGCCGCATCCCTGGTGGGTGACCACGGGCTGCGGCTCGGGGTCGAGCCGGGCTCGCGGCTGCTCGGGGAGGCCAACCAGTGGCAGCTCGCCGCGGAGGTCGTGGAGTCCTGGGACGGCGACCTCGGGACGGACAAGGCGGTCAGCACGGTCGTCGGCGCGGTGCTGTCGTTGTCCGCCGCGCTGGGCGAGCACCTGCGCGACGTCGACGAGGCCCGCGAGGCGCTGGAGGGCATCGTCGCCCGGCTCGACGCGCTGCCGCTCGGACCTCGTCAGAAGCAGCGGACCAAGGACGTCGAGTCGCTCCTGTCGTCGGTGGCGGAGCGCGCCCGGCTGCTGGACCTCGTGGCGGAGTACCGCCGTCGCAAGCGGCTGTCGGACTCCCTCGACTTCGGCGACCAGGTGGCGTTCGCGGCCGAGCTGGCCCGCACGGTCCCGGCGGTGGGTCGGGCGGAACGGTCCCGGTACCGCGTCGTGCTCCTCGACGAGTACCAGGACACGTCGCACGCGCAGGTCGAGCTCCTGGCGGGCCTGTTCGGCGGTGGGCACGCCGTGACGGCCGTCGGGGACCCGCACCAGTCCATCTACGGGTGGCGCGGTGCCTCGGCGTCGGGCCTGTCGCGGTTCCCCGACCGGTTCCGGCACGCCGACGGCGGTGCGGCGGCCGTGCGCTACCTGAGCACGTCGTGGCGCAACGACGCCGCGATCCTGGCGGCCGCCAACGTCGTCTCGGCGCCGTTGCGCGGCCCCGGTGCGACGACGGTGCCCGTGCCGCCGCTGGACCTGCGCCCGGATGCCGGGCCGGGCCGGGTGTCCGCGCACGTGGCGGCCACATTGGAGGACGAGGCCGAGGCCGTCGCGGAGCTCGTCGCCGCGCGTTGGCGTCGCGCGACCCGGCCGGACGGCTCCGACCGGGTGACCGCCGCGGTGCTGTGCCGGGTCCGTTCGCAGTTCCCCGTGCTCGAGACCGCGCTGCGGCGCCGCGGGCTGCCGGTCGAGGTGGTCGGTCTGGGCGGTCTGCTGTCCACGCCGGAGGTGGTCGACGTCGTCGCCCTCCTGGAGGCGGTGCACGACCCGTCCCGCGGCGACTCCCTGCTGCGGCTGCTCACCGGACCGCGGGTGAACCTGGGGGCCGCCGACCTGCACGCGCTGGGTTCGTGGGCCGCCGACCTCTCGCGCCGGGACGCCCCCCGGCGTCCCGAGGACGGGCCGGTGCCGGACGCCGAGGCCGACGACGACGCCGCGGCCGTGGTCGAGGGCGACGTCGTCGACCACCGCTCGATCGTCGACGCGCTGGACGACCTGCCGCACCCGGGTCAGGCAGCCCGGGACGGACGCGTGCTGACGACCGACGCGCACGCCCGGCTGGCGGCGCTGTCGCGGCTGCTGCGCGAGCTGCGGGGCCTGACGTACCTGTCGCTGCCGGAGCTGGTGGTGGCGGCCGAGCGAGCGCTGGGCCTGGACGTCGAGGTCGCCACCGCCGAGATGCTCACGGACTCGTTGCTGGCCGCCGGGGCCGCCGGCGCGGCGGAGGGCATCAGCCGGCGCGGCCGGGAGCACCTCGACGCGTTCCGCGACGTCGCCGCCGGTTTCGCCCAGTCCGCGGACGTCGCGACGCTCGGGTCGTTCCTCGCCTGGCTGGGGGTGGCCGACGACGCCGAGCGCGGCCTCGACATGCCCGTCCGCGAGCCCGACCCGGACGCGGTGCAGATCATCACCGCGCACGCCGCGAAGGGTCTGGAGTGGGACGTGGTCGCCGTGGCCGGCCTGGTCGACGGCACCTTCCCGACCTGCGCGGAGTCCGCGAAGGGCCGCACCTCCTCGGGCTGGCTGACCGGGCTGGGCGAGCTGCCCTACCCGCTGCGCGGCGACGCCGAGGACCTGCCCCGGTTCCGCATCGACGAGGCCACGGACACCAAGGACCTGATGGCGCGCCGCGAGGAGTTCACGCTCGACTGCGGCGCCCATCAGCTCGCCGAGGAGCGCCGGCTCGCCTACGTGGCCCTGACCCGGGCGCGCCGGGAGCTGTTCTGCACCGCGCACTGGTGGGGGACCGCGACCCGCCCGCGCACCCTGTCGCCGTTCCTGGTGGAGCTCGCCGACGCGGGCCTGGTGGACCCGGGCGGCTGGGAGCAGGCGCCGCAGCCCGGCGGCCCCAACCCGCGCGACGGCGTCGAGAAGGCCGGGGTCTGGCCCGCCCCGAGGGGGGACGAGCCGGCCGCCGGCGTCGACCCGCGGGACGTGCTGCGGGCCACCGCCGACAGGGTCCGTGCCGCCTCACGGGCGGGGGAGGACCCGCAGGACGGCGCCCTGCGGGACGCCGCCGGGCACGACCTGGTCGAGCTGTCCCGGATCCTGCTCGCCGAGCGGGCGGAGCACGAGCACCCGAGCGTCGAGATGCCCGCCCACGTCTCGGCGTCGGGCCTGGTGCGGCTCGCCCGCGACCGCGACGAGTTCGCCCGCCAGCTGCGCCGTCCGGTGCCCGCCGAGCCGACGGTGCACGCCCGGCGCGGGACCCTGTTCCACGCCTGGGTGGAGCGGTACTACTCGGCGGCCGCCCTGATGGATGTCGAGGACCTGCCCGGCGCCGACGAGCCGGACGCCGCGACCGACCTGGCCCTGGACGAGCTGCAGCGCCGGTTCGAGCGCACGCCCTGGGCCTCGCGCACCCCCGTCGCCGTCGAGCAGGACGTCGAGACGCCGATCGCCGGCGTCATGGTGCGGTCGCGCATGGACGCCGTGTTCGTCGACCCGGACGCGCCGGCGCCGGGCCCGGGGGAGGAGCCGGCGGTCGTCGTCGTGGACTGGAAGACCGGGCAGGAGCCCCGCGACCCCGCCGAGCGGGCGCAGCGCGAGGTCCAGCTCGCCGCCTACCGGCTGGCGTGGTCGCGGTGGTCCGGGCTCCCTGTGGAGAAGGTCGACGCCGCGTTCGTCTACGTGGCCTCCGGCACCACGGTGCGGCCCGCGCAGCTCCTGGACGAGCCGGGTCTCGAGGCCCTGGTCCGCGGCGCCTGAMTTPDGLAPHERSPQEQTPDAAPLQGVDWTALAEPGRDGALGFPELEPPETSGPEAPGPDAVEPAARLSARDIADLLRRPAPTDEQVAVIEAPLEPVLVVAGAGSGKTETMAARVVWLIANGLVEPEEVLGLTFTRKAAGELSTRVQTRLAQLTRARGGAASDLDLLARPTIATYNAYAASLVGDHGLRLGVEPGSRLLGEANQWQLAAEVVESWDGDLGTDKAVSTVVGAVLSLSAALGEHLRDVDEAREALEGIVARLDALPLGPRQKQRTKDVESLLSSVAERARLLDLVAEYRRRKRLSDSLDFGDQVAFAAELARTVPAVGRAERSRYRVVLLDEYQDTSHAQVELLAGLFGGGHAVTAVGDPHQSIYGWRGASASGLSRFPDRFRHADGGAAAVRYLSTSWRNDAAILAAANVVSAPLRGPGATTVPVPPLDLRPDAGPGRVSAHVAATLEDEAEAVAELVAARWRRATRPDGSDRVTAAVLCRVRSQFPVLETALRRRGLPVEVVGLGGLLSTPEVVDVVALLEAVHDPSRGDSLLRLLTGPRVNLGAADLHALGSWAADLSRRDAPRRPEDGPVPDAEADDDAAAVVEGDVVDHRSIVDALDDLPHPGQAARDGRVLTTDAHARLAALSRLLRELRGLTYLSLPELVVAAERALGLDVEVATAEMLTDSLLAAGAAGAAEGISRRGREHLDAFRDVAAGFAQSADVATLGSFLAWLGVADDAERGLDMPVREPDPDAVQIITAHAAKGLEWDVVAVAGLVDGTFPTCAESAKGRTSSGWLTGLGELPYPLRGDAEDLPRFRIDEATDTKDLMARREEFTLDCGAHQLAEERRLAYVALTRARRELFCTAHWWGTATRPRTLSPFLVELADAGLVDPGGWEQAPQPGGPNPRDGVEKAGVWPAPRGDEPAAGVDPRDVLRATADRVRAASRAGEDPQDGALRDAAGHDLVELSRILLAERAEHEHPSVEMPAHVSASGLVRLARDRDEFARQLRRPVPAEPTVHARRGTLFHAWVERYYSAAALMDVEDLPGADEPDAATDLALDELQRRFERTPWASRTPVAVEQDVETPIAGVMVRSRMDAVFVDPDAPAPGPGEEPAVVVVDWKTGQEPRDPAERAQREVQLAAYRLAWSRWSGLPVEKVDAAFVYVASGTTVRPAQLLDEPGLEALVRGANANANANANA
AK018_05550924hypothetical proteinGTGCCCCGTAGTCCGCTCGCCCTCGCCGCGCTGTCGACGGCCGCCGTGCCCGGCCTCGACGCCCGCTCCGTGCACGCCGAGGACCTGCCGGGCGACTACGACGTCGCGGTCGTCACGACCGGCGACGGCACAGAGTGGATGGTGCGCGCGCCGTCCACGACCCTCGCGGGTGCGGCGCTCGAGGCCGAGGTCGAGCTGCTGGAGACCCTGCACCTGTACGTCGAGGCCGGCGTGCTGCCCTTCGCCGTACCGCGCGTGGCCGGGTCCGCCCTGCTGCCCGAGGGAGGCCGCGCCGTCGTGCACCGTCGGCTGACCGGCGGGCCGCTCGACGTCTCCGCCCTGCGACCCGGCCCCGGGCTGGCCGCCGACCTGGGCCGCACCCTCGCCGCCGTGCACGAGCTGCCCGTCGCCGTCGTCGAGGCCTGCGGGCTGCCGTCCTACACCGCCGCGGAGTACCGCGAGCGCCGCCTGGTCGAGCTCGACGAGGCCGCCGCCACCCGCCGGGTGCCCGCGTCGCTGCTGCGCCGGTGGGAGACCGCGCTGGAGGACGTCAGCCTGTGGCGGTTCCAGCCCGTCGTGGTGCACGGGGACCTCGCGCCCGACCAGGTGCTGGTCACGGGCCAGCGGGTCACCAGCGTCGCCGGGTGGTCCGAGGCGCGCGTCGCCGACCCGGCGGACGACCTGGCCTGGCTGCTGGCCGCGGCACCGCCGGACTGCGTGGACGCGATCATGGAGGCGTACCGGCTGCGGCGCACCGAGCTGACCGACCCGCGCCTCGTGGACCGCGCGCTGCTCGTCGGCGAGCTCGCGCTGGCTCGCTGGCTCCTGCACGGGGTGCGGCGGCGGCTGCCCGACGTCGTCGCCGACGCCGAGTCCATGTTGGCCGACCTGGACGAGGCCACCCGGGAGGACACCCCCGCCTGAMPRSPLALAALSTAAVPGLDARSVHAEDLPGDYDVAVVTTGDGTEWMVRAPSTTLAGAALEAEVELLETLHLYVEAGVLPFAVPRVAGSALLPEGGRAVVHRRLTGGPLDVSALRPGPGLAADLGRTLAAVHELPVAVVEACGLPSYTAAEYRERRLVELDEAAATRRVPASLLRRWETALEDVSLWRFQPVVVHGDLAPDQVLVTGQRVTSVAGWSEARVADPADDLAWLLAAAPPDCVDAIMEAYRLRRTELTDPRLVDRALLVGELALARWLLHGVRRRLPDVVADAESMLADLDEATREDTPAPGPT0028010_209DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0028010-mph-K06979NANA
AK018_05551951nudC_3NADH pyrophosphataseGTGCATCCCCTCGAGCTGCCCTTCTCCCGCTCCCGGCACGACCGTGCCGCGCACCGCCGTGCGGAGCCCGACCTGGTGGCACGGTCGCTGACCGCGCCCACCACGCGGGTCCTGGTGCTGCACCGGGGGCGGGTCGCCGTTGTCGACCCCGAGGCGCCGCGGGCGGCGCTCGTGGGGCCGGGGGCGGCGCCGGACGGGCTGGGTCTGTTCCTCGGCGAGCACGACGGCGCGGCGCTGCTGGCGGTGGTGGTGCCCGACGGTGACGAGGACCCGGCGCCCCCGCCCGGCAGCGACGCCTGGGCCGGGCTGCGGGACGTGGCGGGGGCTCAGCTCGCGGCGCTCGAGTCGGGCGACGAGGCGGCGGAGCTCGCGCACGGGCTGGCGGTGGAGGCCGTCGCCCTGGCGGGGTGGCACGCGACGCACCCGGTCTGCGCCGTGTGCGGCACGCCGACGCAGGTCGGTCAGGCGGGCTGGGAACGTCGCTGTCCGGTGGACGAGCGCCGCACCTATCCGCGCACCGACCCGGCGGTGATCATGGCGGTCGTGGACGACGACGACCGCCTGCTGCTGGGGCACGCGGCGCGCTGGCCCGCCGGGCGCTACTCGACGCTCGCGGGCTTCGTGGAGGCCGGCGAGGCGCTGGAGGACACCGTGCGTCGCGAGGTCGCCGAGGAGTCCGGCGTGCTGGTCGGATCGGGAGCGGGCGACGTCGTCTACCGGGGCTCGCAGGCCTGGCCGTTCCCCGCGTCGCTGATGCTCGGGTTCCGGGCCCGGGCCGTCGACACGCGGGTGCGCACCGATGACGAGGAGATCACCGACGCGCGCTGGTTCACCCGCGACGAGCTGTCCGACGCCGTGACCCGCGGCGAGGTGGGGCTGCCCGGCCGGGCGTCGATCGCGCGGGCGCTGATCGAGGAGTGGTTCGGGGCCGAGCTGCCCGGCGCCTGGTGAMHPLELPFSRSRHDRAAHRRAEPDLVARSLTAPTTRVLVLHRGRVAVVDPEAPRAALVGPGAAPDGLGLFLGEHDGAALLAVVVPDGDEDPAPPPGSDAWAGLRDVAGAQLAALESGDEAAELAHGLAVEAVALAGWHATHPVCAVCGTPTQVGQAGWERRCPVDERRTYPRTDPAVIMAVVDDDDRLLLGHAARWPAGRYSTLAGFVEAGEALEDTVRREVAEESGVLVGSGAGDVVYRGSQAWPFPASLMLGFRARAVDTRVRTDDEEITDARWFTRDELSDAVTRGEVGLPGRASIARALIEEWFGAELPGAWPGPT0013440_990DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013440-nudC-K03426NANA
AK018_05552633hypothetical proteinGTGGCCGGCCGGCCCGCCCACGACGTCGGCGGGTCGCCCGAGGACGCCGAGGACCGCTGGGAGCGGCGGTTCGCCTGGCCCGTGATCGTCGCGGCGCTCGCCTCGGTCCCCGCCGTCTGGCTCACGCTGCTCGAGGAGCCGTACGCGACCGCCGGCACCGTCGGCAGCCTGCTCACCGGCGCCGTGCTCCTGGCCGAGACGGTCGTGCTGTTCGCCGTCTCGACCGACAAGCGCGAGTGGCTGTGGAAGCACCGGTGGCTGGTCGCGGTGACCGCCGCGATCGTGGTCTCCGCCGTGCTGGCGATCGGTCCCACCCAGCTGCTGCGCCTGGTGCGCGCCGTCGGCGCCCTGCGCCTGCTGCGCGCCCGGCACATCGTGCGCGCCGGACGGCGCGTCGTCGGGCACGCGTCCCTGACCAGGCGGTGGGAGCGGGTCGTCACGGGCGTCGTGGTCGCCGTCGTGGCCGCGTTCGTCGCCGTGGTGCTCGCCGACCCGACGTCGCAGAGCCGCGTGCTGCTCGAGGGACTCGTCGGCGGCCCGGCGTACGTGTGGGTGGTGGTCGCCGCCGGGCTGGTGCTGTCCGCGGCGATCTTCGTGCTGGTCCGTGCCCGCCTGCGCGGCGACCCCGACTGAMAGRPAHDVGGSPEDAEDRWERRFAWPVIVAALASVPAVWLTLLEEPYATAGTVGSLLTGAVLLAETVVLFAVSTDKREWLWKHRWLVAVTAAIVVSAVLAIGPTQLLRLVRAVGALRLLRARHIVRAGRRVVGHASLTRRWERVVTGVVVAVVAAFVAVVLADPTSQSRVLLEGLVGGPAYVWVVVAAGLVLSAAIFVLVRARLRGDPDPGPT0004175_15DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600NANA
AK018_05553273COG0695Putative glutaredoxin.1ATGACGGCCACGCCGAGCCTGCCCGACCGCGGCACGGTCACGATGTACTCGACCACGTGGTGCGGCTACTGCCGCCGGCTGCGCACCCAGCTCGACTCCGAGGGCATCGGCTACACGGTGATCGACATCGAGGACGACCCGGAGACCGCTGAGTTCGTCGAGCAGGTCAACGGCGGCAACCGCACCGTGCCCACCGTCGTCTACCCGGACGGCTCGTCCGCCACGAACCCGTCCCTGGCGGACGTCAAGGCCGCCCTCGCCGTGTCCGCCTGAMTATPSLPDRGTVTMYSTTWCGYCRRLRTQLDSEGIGYTVIDIEDDPETAEFVEQVNGGNRTVPTVVYPDGSSATNPSLADVKAALAVSANANANANANA
AK018_055542049uvrD2_2COG0210ATP-dependent DNA helicase UvrD2ATGTCCCTCACGACCAACTCCCCGGATGCCCCGTCTCATCCCGACGCGATCCTCGACGCGCTCGACCCCGAGCAGCGCGACGTCGCCCTGGCGCTGGCGGGTCCCGTCTGCGTGCTGGCGGGCGCGGGCACCGGCAAGACGCGAGCCATCACCCACCGGATCGCCTACGGGGTGCGCACGGGCGCCTACCCGCCGACGTCGGTGCTCGCGGTGACGTTCACCGCCCGCGCGGCGGGGGAGATGCGCACCCGGCTGCGGGACCTCGGCGTCGTCGGGGTGCAGGCCCGCACGTTCCACGCCGCCGCGCTGCGCCAGCTCGGCTACTTCTGGCCCCGCATCGTCGGCGGGGCACCGCCCCAGATCCTCGAGCACAAGGCGCCCGCCGTGGCGGAGGCCGCCCGGCGCGTGGGGCTCTCCGTCGACCGCGTCGCGGTGCGCGACCTGTCCAGCGAGGTCGAGTGGGCCAAGGTCTCCCTGGTCACGGCCGAGGACTACGTCACCGCGGCGGCCGCGGACGACCGGCCGCCGCCCTCGGGCTTCGACCACCAGTCGGTGGCACGGCTGATCACCGCCTACGAGGACGTCAAGACCGAGCGGGGCGTCATCGACTTCGAGGACGTGCTGCTCATGCTGGCCGACATGCTCGGCTCGCACCCGCACGTGGCGGACCAGGTGCGGTCGCAGTACCGGCACTTCGTGGTCGACGAGTTCCAGGACGTCTCCCCGCTGCAGCACTTCCTGCTCGACCAGTGGCTCGGCAAGCGCCGCGAACTGTGCGTCGTGGGCGACCCGTCGCAGACCATCTACTCGTTCACGGGTGCCACGCCGCACTACCTGCTGGACTTCACGCGCACCTACCGCGACGCCCAGGTGATCCGCCTGGTGCGCGACTACCGCTCCACGCCCCAGGTGGTCGCGCTCGCCAACGACGTGCTGCGCCGCGGCCGCGTGGTCGGCGCGCTCGAGCTGGTGGCGCAGCGTCCCTCGGGACCCGCCGCGGCGTTCACCACCTACGACGACGACGAGGCGGAGGCGGCCGGCATCGCCGCCCGCGCCGCACGGCTCGTCGCGGACGGCGTGCGGCCCAGCGAGATCGCCGTGCTCTACCGCACCAACGCCCAGTCGGCCGCCTTCGAGTCCGCGCTGTCCGACGCCGGTGTCAGCTACCAGGTGCGCGGCGGCCAACGCTTCTTCACCCGCAAGGACGTGCGCGACGCCGTCGTCCTGCTGCGCGGTGCCGCGCGTTCCGCGGACCCCGACCAGCCGATGCCCGAACAGGTCCGCGACGTGCTGATCTCCGCCGGGTGGTCCCACGAGCCGCCCACCGCCCGCGGCGCCACCCGGGAACGCTGGGAGGCGATGCAGGCCCTCGTGGCGCTCGCGGACGACCTGGCGGCAGCGGCCCCCGAGGATGCGCCCGCCACCATGGCCACCCTGGTCGACGAGCTCGCCGAGCGCGCGTCCGCGCAGCACGCCCCGACGGTGGAGGGCGTGACGCTGGCGTCCCTGCACTCGGCCAAGGGCCTGGAGTGGGACGCCGTGTTCCTGGCGGGGATGAGCGAGGGCCTCATGCCCATCTCGCTGGCGGAGACCGACGAGGGCGTCGCCGAGGAGCGCCGGCTGCTGTACGTGGGCATCACACGGGCGCGCGAGCACCTGGAGATCTCCTACGCCCGCGCCCGCAACCCCGGCGGCCGCGCCTCGCGCAAGCGCACGCGGTTCCTGGACGGGATGTGGCCCGACGACGGCCGGGGGCGCGGACGGTCGGCGTCCGGCCGGTCGTCGCGCGGTCAGGCCCGGTCGCGGCTGTCGGGCGAGGCGGACGTCGCCCTGTTCGACGCGCTGCGCGAGTGGCGGCTGACGGTGGCCCGGGAGACCGACAAGCCGGCCTACACCGTCCTGGGGGACGCGACGCTCGCGGCGATCGCCGAGCTGCGGCCCACCACCACGTCCCAGCTCGCCCGGATCAACGGGATCGGGCCGGCCAAGATCGACCGGTACGGCGAGACGCTGATCGCGCTGGTGGACGGTGCTCCGGAGGGCTCGTAGMSLTTNSPDAPSHPDAILDALDPEQRDVALALAGPVCVLAGAGTGKTRAITHRIAYGVRTGAYPPTSVLAVTFTARAAGEMRTRLRDLGVVGVQARTFHAAALRQLGYFWPRIVGGAPPQILEHKAPAVAEAARRVGLSVDRVAVRDLSSEVEWAKVSLVTAEDYVTAAAADDRPPPSGFDHQSVARLITAYEDVKTERGVIDFEDVLLMLADMLGSHPHVADQVRSQYRHFVVDEFQDVSPLQHFLLDQWLGKRRELCVVGDPSQTIYSFTGATPHYLLDFTRTYRDAQVIRLVRDYRSTPQVVALANDVLRRGRVVGALELVAQRPSGPAAAFTTYDDDEAEAAGIAARAARLVADGVRPSEIAVLYRTNAQSAAFESALSDAGVSYQVRGGQRFFTRKDVRDAVVLLRGAARSADPDQPMPEQVRDVLISAGWSHEPPTARGATRERWEAMQALVALADDLAAAAPEDAPATMATLVDELAERASAQHAPTVEGVTLASLHSAKGLEWDAVFLAGMSEGLMPISLAETDEGVAEERRLLYVGITRAREHLEISYARARNPGGRASRKRTRFLDGMWPDDGRGRGRSASGRSSRGQARSRLSGEADVALFDALREWRLTVARETDKPAYTVLGDATLAAIAELRPTTTSQLARINGIGPAKIDRYGETLIALVDGAPEGSNANANANANA
AK018_05555168hypothetical proteinATGGACACGATGAAGCAGATCATCGGCGCAACCGGCATCGCGGCGGGGGAGAACTCTGCCCGGTACGCCTTCGTGCCGACCACGCGTCTGCGCAAGCGGCTGGGAGCAGGCAGCTCTCTCGTCGATCTCGCACCCGACTCCGCATCCTGGAGGCATCCGGTCCACTGAMDTMKQIIGATGIAAGENSARYAFVPTTRLRKRLGAGSSLVDLAPDSASWRHPVHNANANANANA
AK018_05556372whiB_4Transcriptional regulator WhiBGTGCGTCTCGCACAGCTGTTGGACGAGCGGCTGGTCGACGCGGCCCCCGCCGGCGGCAGCCGCCAGTGGACACCCCACCAACCCGTGACCCAGGACCCGGCCGAGGCGGCAGCGCTCGACCGGCAGTTCGCCGAGCTCCTGCCCTGCCGGACCCACGACCCCGAGCTCTGGTTCGCCGAGCACACCAGCGAGGTCGAGCGTGCCAAGGCCCTGTGCCGGGAGTGCCCGCTGCAGGCCGGCTGCCTCGCCGGCGCCCTCGACCGGAGCGAGCCGTGGGGCGTGTGGGGCGGCGAGGTCTTCGTCGACGGCGCCGTCGTGGCCCGCAAGCGGGGGCGCGGCCGCCCGCGCAAGTCGGAGCAGGCCGCGGCCTGAMRLAQLLDERLVDAAPAGGSRQWTPHQPVTQDPAEAAALDRQFAELLPCRTHDPELWFAEHTSEVERAKALCRECPLQAGCLAGALDRSEPWGVWGGEVFVDGAVVARKRGRGRPRKSEQAAANANANANANA
AK018_055571149hypothetical proteinATGCCGTCCCCCCGCCACCCCGGACCCGACCTCGCCGACCTGCGGCTGCGCCCCGGCACACCGGTCCTCGACCGCGGCGGCGGCCAGGTCCAGCTCGGCACCGACGACCGCTGGGCCCTCGTCGTGGACGGCCTGTCGGACGCCGAGGCACGGTGGCTCCACCACGCCGCCTCCACCCGGCACGTCGGGCTCGCGGCATCGGCAGCACGTCACGGCGTGAGCGCCGACCGCCAGGACCGCATCGCGCGCCTGCTCGCCGACTGCGGGTTCCTCGTCCCGCCGCCGGCCACCCGCCTCGACGTCACCGCCACCGCCGCCGGCGCCGCGGACGCCGCAGCGCTCGGAGCCCTGCGCCCCGACGGCGCCGGCCAGGTCACGCTCGCCCGGCGCGCCGTGCGCACCGTCGGCGTCAGCGGCCTGGGCCGGCTCGGCGCGTCCCTCGTCACCCACCTCGCCGCTGCGGGCGTCGGCATGCTCCTGCTCGACGACACCGCACCCGTCCAGGTGACCGACCTCGGGGCGGGCCCCTACCGCCAGACCGACGTCGGCGGCCGCCGCGCCGACCGGCTCCACGCCGCCCTCGCCGAGCACCGCCCCCGCACCCGCGTCCGGACCGTGTGGCCCGCCGACGCGACACCCGACGTGGTCGTCGTGGTCCGCGACCACGTCGTGGGGATCGAGACGTCCGCCCGGCTGATGAGCGCCGGCGTCCCGCACCTCGCCGTGACCGTCGTCGAGGCCGGCATCGAGCTCGGACCCTTCGTCCTGCCCGGCACCACCGCGTGCCTGGGCTGCCGGCACCGCCGCGCGGCCGACGACGACGAGGGCTGGCCGCGCCTCGCCGACCAGCTGCGCGCGTGGCCCGGCCCCGCGCCCCAGGAGACCGTCCTGGCGGCGACGGCGGCGGCGCTCGCAGCCGGCATGGTCACGGCCCACCTGGACGGCACCCGCCCGGTCGCGGCGGACCGGCTGATCCACGTCCGCCTCCCGGACGCCGTCCCCCGGCTGCGCGACCTGCCGCCCCACCCGCGTTGCGGGTGCACGGCCGACGGCGGTCCGGCAGCGGGCGCCCGGGCGGATCCGGGCGCCGGTGCCCGAACGGATCCGGCCGCCGGTGCTCGGGCGACGTCCCGGGGTGCCACGACATGAMPSPRHPGPDLADLRLRPGTPVLDRGGGQVQLGTDDRWALVVDGLSDAEARWLHHAASTRHVGLAASAARHGVSADRQDRIARLLADCGFLVPPPATRLDVTATAAGAADAAALGALRPDGAGQVTLARRAVRTVGVSGLGRLGASLVTHLAAAGVGMLLLDDTAPVQVTDLGAGPYRQTDVGGRRADRLHAALAEHRPRTRVRTVWPADATPDVVVVVRDHVVGIETSARLMSAGVPHLAVTVVEAGIELGPFVLPGTTACLGCRHRRAADDDEGWPRLADQLRAWPGPAPQETVLAATAAALAAGMVTAHLDGTRPVAADRLIHVRLPDAVPRLRDLPPHPRCGCTADGGPAAGARADPGAGARTDPAAGARATSRGATTNANANANANA
AK018_05558489hypothetical proteinGTGAGCGCCTACCGGGACGGCGACCGCACGGTCGTGGCCATCCCGGCCCGGTTCTCGCAGGCCCAGGAGCGCGAGTGGGTGGCGAAGATGGTGGCGCGCCTGGAGGACAAGGAGCGGCGCCGTCGCCCGTCCGACGCGGAGCTGGTCGAACGCGCCCAGGAACTCTCGATCAAGTATCTCGAGGGCCGGGCGCTGCCGACCAGCGTGCGCTGGGCGGCGAACCAGGAACGCCGGTGGGGGTCGTGCACCCTGGTCGACGGTTCGATCCGGCTCTCCACGCGGTTGCAGGGCATGCCCGAGTGGGTGATCGACTACGTCCTGCTGCACGAGCTGGCGCACCTGCTGCACGCCGGGCACGGCCCCGACTTCTGGCGGCTGCTGGAGTCCTATCCCCGCACGGAGCGGGCGCGCGGGTTCCTGGAGGGCGTCTCGTTCAGCTCCGAGGGGCAGGGCGAGGACGACGTCGACTCCGGCTCGTCGGCGTCCTGAMSAYRDGDRTVVAIPARFSQAQEREWVAKMVARLEDKERRRRPSDAELVERAQELSIKYLEGRALPTSVRWAANQERRWGSCTLVDGSIRLSTRLQGMPEWVIDYVLLHELAHLLHAGHGPDFWRLLESYPRTERARGFLEGVSFSSEGQGEDDVDSGSSASNANANANANA
AK018_055591413hypothetical proteinATGAGCAACCTGCCCGACGACCCCGACGACCGCGACCGCATGATCCGCGAGGCGCTGCAGGGCATCTTCGGCGACCGCACCGACGAGGTGCTGGCGCAGATGCGCTCGCAGGGCCTGGACCCGGCCGCGCTGTTCGGCGGCGGTGCCCCCGACCCCGCCACGATGCAGCGCCTGATGGACCAGCTCCAGCGCCTGTTCACCTCCGACGACGGACCCGTGAACGCGCAGGTGGCGCACGACCTGGCGCGCCAGGTCGCCGTCGCCGAGGGCGACCCGTCGCTCACCGGCGGCCAGGCGCGGTCCGCCACCGAGGCGCTGAAGGTCGCCGAGCTGTGGCTCGACGCCGTGACGGACCTGCCGCCGTCGGGCGGACCGGCGCACGCCTGGAGCCGCAGCGAGTGGGTCGAGGCGACCCTTCCGGCGTGGCAGCGCCTGGTGGCCCCGGTCGCCTCGTCGGCCGCCGACGCCCTGGCCACGGTGCTGCGCGACCAGGTCGGCGACGACGACCTCGGCGGGCTCGGCGTGCCGGGCCTGCCCGTCTTCCCCGGCGGCGGGCTCGGCGACCTCGACCCGGCGGCGATGATGCGCTCGCTGGGCTCGGCCGTGTACGGCATGCAGGTGGGTCAGGCCGCGGGCACCCTGTCGCGCGAGGTTTTCGGCGCCACCGACGTCGGCGTCCCGCTGCTCGCCGAGCCCGCCACGGTGCTGGTGCCGACCAACGTGGCCGAGTTCGCCGAGGGGCTCGACTCCCCCTTCGACGAGGTCCAGCTCTACATGGCCGTGCGCGAGGCCGCCCACGCCCGCCTGTTCGTGCACGTCCCGTGGCTGCGGGCCCACCTGCACGGTCTCGTCGAGCAGTACGCGCACGGCATCACCATCGACCTCGAGGCGCTCGAGGAGCAGGTGCGCGGCGTCGACATGTCCGACCCCGAGGCGCTGCGCGGGGCCCTGAGCGGCGACGTCTTCGGCCTGCACAACACGCCCGAGCAGCAGGCCACGCTGCTGCGCCTCGAGACGGCGCTGGCCCTGGTGGAGGGCTGGGTGTCCGAGGTCGCCGCGACCGCCGTCCTGCCGCACCTGCCGCACTCCGTGCCGCTGCGCGAGATGATCCGCCGTCGTCGGGCCGCCGGCGGACCGGCCGAGCACACGTTCAAGTCGCTGGTGGGGCTCGAGCTGCGGCCCCGCCGCTCCCGGGACGCCGCCGCCCTGTTCGCCCACCTGGTGGCCACGGGCGGACCCGAGGCGCGCGACGCCGTGTGGGACCACCCGGACCTGCTGCCCGGCACCGAGGACCTCGACGACCCGTCGGGCTACGCCGACCGGCGGCGCGCCCAGGCCGAGGAGCACTCGGACGTCGACGCCGCGCTGGCGCAGATCTTCAGCGAGTCCGGCGGGGACGACGACCGGGGGTGAMSNLPDDPDDRDRMIREALQGIFGDRTDEVLAQMRSQGLDPAALFGGGAPDPATMQRLMDQLQRLFTSDDGPVNAQVAHDLARQVAVAEGDPSLTGGQARSATEALKVAELWLDAVTDLPPSGGPAHAWSRSEWVEATLPAWQRLVAPVASSAADALATVLRDQVGDDDLGGLGVPGLPVFPGGGLGDLDPAAMMRSLGSAVYGMQVGQAAGTLSREVFGATDVGVPLLAEPATVLVPTNVAEFAEGLDSPFDEVQLYMAVREAAHARLFVHVPWLRAHLHGLVEQYAHGITIDLEALEEQVRGVDMSDPEALRGALSGDVFGLHNTPEQQATLLRLETALALVEGWVSEVAATAVLPHLPHSVPLREMIRRRRAAGGPAEHTFKSLVGLELRPRRSRDAAALFAHLVATGGPEARDAVWDHPDLLPGTEDLDDPSGYADRRRAQAEEHSDVDAALAQIFSESGGDDDRGNANANANANA
AK018_055601293hypothetical proteinATGCCCGACGCCGGCGGGCCCGTGCGCGTTCCGGCTTTCGCTCTGGGCGCACCGGCCGGCCCCGACGCCGTGACGCGGGCACCTGCACCGATCGGTGATGATGGGACGGTGAGTCCCGACCGCAGTCATCAGCCGTTCGAGTCGTTCGGCCAGGCCCTGGCCTCCCCGCGGCCCGACGAGGACGACCCGCGGACGCGTCGGCCGGCCCACCGCGGGGCGAGCCCCCGGTCCGTCACGCTCGTGGTCTCGTTGCTGGTGACCGCCGTCGTCGCCGCCGTGCTCATCGTCATGCCCACCGCCTACGCGGTGCGTACCCCCGGGCCCACGGAGGACACCCTCGGCACGCAGGACCGCGGCGCGGGCCAGAGCGCCACCGAGCTGCCGCTCATCGAGATCTCGGGTGCCGACACCTACCCCGCCTCGGGGGAGCTGCGGCTGACCACGGTGTCGGTGTACGGCGGTCCGGGCGGTGACGTGCTGCTCGGCGACGTGCTGTGGGGGTGGGTGTCGCAGGAACGCTCGGTCCAGCCGGTCGAGGCGATCTTCCCCGAGCCGATCACCTCCGAGGAGCAGCAGGAGCAGGGACAGGCGCAGATGCTCAGCTCGCAGGAGTCGGCCACGGTGGCGGCGCTGACGGAGCTCGGCTACGACGTGCCCACCACCATGACGGTCGTGGCGGCGGCCGAGGGCACCGGTGCCGAGGGTGTCGTCGCCGAGGGCGACGTCATCGTGTCGCTCGACGGCGAGCCGCTCGAGACGTACCCCGAGCTGCTCGCCGAGCTGGACGGCGTCACCCCGGGCGACGACGTCGTGCTGGGGGTGGAGCGCGACGGCGAGCCGCTCGACCTGACCGTCACCACCGGGCAGGGCGACGACCGCGCGCTGCTCGGGGTCCTCATCGACCCGCAGTACGACTTCCCCGTGGACGTCACCATCCAGATCGAGGACATCGGCGGTCCGAGCGCGGGCACGATGTTCGCGCTCGGGATCATCGACCTCATGACGCCGGAGGACGAGCTGGACGGAGCCGTCGTGGCCGGGACCGGCACGATGGACGTCGACGGCCGGGTCGGCCCGATCGGCGGCATCGAGCAGAAGATGTACGGCGCGCTGCGCGACGGCGCCGGCTGGTTCCTCGCGCCGTCGGACAACTGTCCGCAGGTGGTCGGTCACGAGCCCGAGGGCCTCGAGGTCGTGTCCGTGGCGACGCTGTCCGAGGCCCGTGCGGCGATGGAGGCCATCGGTACCGGGGACGGGGCGGACCTGCCGCGGTGCGAGGCCGACGGATCGTGAMPDAGGPVRVPAFALGAPAGPDAVTRAPAPIGDDGTVSPDRSHQPFESFGQALASPRPDEDDPRTRRPAHRGASPRSVTLVVSLLVTAVVAAVLIVMPTAYAVRTPGPTEDTLGTQDRGAGQSATELPLIEISGADTYPASGELRLTTVSVYGGPGGDVLLGDVLWGWVSQERSVQPVEAIFPEPITSEEQQEQGQAQMLSSQESATVAALTELGYDVPTTMTVVAAAEGTGAEGVVAEGDVIVSLDGEPLETYPELLAELDGVTPGDDVVLGVERDGEPLDLTVTTGQGDDRALLGVLIDPQYDFPVDVTIQIEDIGGPSAGTMFALGIIDLMTPEDELDGAVVAGTGTMDVDGRVGPIGGIEQKMYGALRDGAGWFLAPSDNCPQVVGHEPEGLEVVSVATLSEARAAMEAIGTGDGADLPRCEADGSNANANANANA
AK018_055613045hypothetical proteinGTGTCCTTCGCCCCGCCCCGCCGTCAGGACGGGCCACCACCGGCGCGACGCCGTAGTCCGCTGCTGATCACCCTGGTGGTGCTCGCCGTGCTGGTGGTCGCGCTGCTGTTCCTGACGAACTTCTGGACCGAGGTCCTCTGGTTCACCCAGGTCGGCTTCGCCAACGTCATCTGGACCCAGTGGATCGCGCGCGCCGTGCTGTTCGTCGCCGCGTTCGTGATCATGGGTCTGGCCGTGTGGAGCTCGTTCGCGATCGGCTACCGCTCGCGACCCGTCTACGCGCCGTCCACTCCCGAGCAGGCCACGCTGGACCAGTACCGCGAGGCCGTCGAGCCGCTGCGCAAGATCGTGACGTATGCCGGGCCGGTGCTCATCGGCTTCTTCGCCGGTGCCGCGGCCTCCGCGCAGTGGGAGTCGGTCCTGCTGGCGCTGAACGGCAGCTCGTTCGGCACGTCCGACCCCGAGTTCGGCATCGACGTCGGGTTCTACGTCTTCACCCTGCCCGTGCTGCGGTTCGCCGTGAGCTTCCTGATGGCCGTCGTCGTCATCTCCGCGATCGCCGCGGTGGTCACGCACTACCTGTACGGCGGGCTGCGGATCGGATCTCTGCCGGCGGGGACGTCGCGCACCACGACCGAGGCGCGCGTGCACCTGGCCGTGCTGGGCACCCTGCTGATGCTGCTCATCGGGGCGAACTACTGGCTGGACCGGTACTCGATCCTGACCACGCAGAACGAGCGGTACGACGGGGCGTCCTACACCGACGTGCACGCCGTCATCCCGTCCAAGGAGATCCTGACGGGCGTCGCCGTGCTCGTGGCGATCCTGTTCGTCGTCGCGGCGTTCCGGGACACCTGGCGCCTGCCCGCGATCGGCGTCGGCCTCATGGTCGTCTCCGCCATCGCCATCGGCGGGATCTACCCCGCCGTCGTCCAGCGGTTCCAGGTGGACCCCAACGCCCAGTCGCTCGAGGCGCCGTACATCCAGCGCAACATCGAGGCGACCCGCGAGGCCTTCGACATCGACGACGTCGAGTCGCAGCCCTACGACGCCACCACGCAGGCCGAGGAGGGTCAGCTGCGCGACGACGCCGCCACCACCACCCAGGTGCGCCTGCTGGACCCGCAGGTGGTCAGCCCGTCGTTCCGCCAGCTGCAGCAGAACAAGCAGTTCTACAACTTCTCCGACAACCTGTCGGTGGACCGCTACGACATCGACGGGGAGTCGCGGGACACGGTCATCGCCGTGCGCGAGCTCAACCTGGACGGCCTGGCGGACCGGAACTGGGTGAACGACCACACCGTGTACACCCACGGGTTCGGCGTGGTGGCCGCCTACGGCAACCAGCCCGGGCCCGACGGGCAGCCGGCGTTCTTCGAGGGCGGCATCCCCACGCAGGGTTCGCTGACCGACAAGTTCGACGGCGGGTACGAGCCGCGGATCTACTTCAGCCCCGAGGCGCCGGAGTACTCGATCGTCGGCGCCCCCGAGGACCAGGACCCCTGGGAGCTGGACTACCAGGCGGACGAGCAGGGCGGCCAGCAGATCCTCTACGGCTTCCCGACCGACGAGGTCGAGGCCGGACCGGGGATCGGCAACTTCCTGCACGAGCTGCTCTACGCCCTGAAGTTCGGCGACGAGCAGATCTTCTTCTCCGACCGCGTGAACTCCGCGTCGCAGATCCTCTACGACCGCGACCCGCAGGAGCGGATCCAGAAGGTCGCCCCGTGGCTGACCCTCGACAGCGAGGTCTACCCCGCGGTCGTGGACGGCCGGGTCAAGTGGGTCGTGGACGCCTACACGACGTCGGACGCCTACCCCTACTCGACGCGGGAGGCGACGCAGGAGGCCACCACCGACTCGCTCACCCTCGCCGCGCAGGGCGTCCCGGTCGAGCTCCCGCCGGAGGTCAACTACATCCGCAACTCGGTCAAGGCCACGGTCGACGCCTACGACGGCTCGGTGGACCTGTACGCCTGGGAGCCGGAGGACCCGCTGCTGCAGGCCTGGGAAGAGATCTTCCCCGGGTCCCTGCAGCCGATCGACGAGATGTCCGGCGAGCTGATGTCGCACGTGCGGTACCCGCAGGACCTGTTCAAGGTCCAGCGCACGCTGCTCGAGCGCTACCACGTGACCGACGCCGTGGCGCTGTTCACGGGTTCGGACGAGTGGGAGACGCCGGACGACCCGGTCGCCGGCGGCGACACGGTCGCCTCCAAGCAGCCGCCGTACTACCTCACCCTGCAGATGCCGGGCGAGGAGACGCCGGCGTTCTCGCTGACCAGCACCTTCATCCCCGGCGGCAACACGAACCGCGAGATCCTCACGGGGTATCTCGCGGCGGACGCCGACGCCGGGTCGGAGGACGGCCAGGTCGCCGAGAGCTACGGCACCCTGCGTCTGCTGGAGCTGCCGCGTGACTCCACGGTCCCCGGACCGGGTCAGGTGCAGAACAACTTCAACTCCAACCCGACGATCTCCGAGCAGCTCAACATCCTGGGCCGCGGGGACTCCGAGGTCGTGCGCGGCAACCAGCTGACGCTGCCCGTCGGTGGTGGCCTGCTCTACGTGCAGCCGGTCTACATCCAGTCCGGGTCCGGGACGCAGTTCCCGCTGCTGCGCCGTGTGCTGGTCGCCTTCGGTGACCAGACCGGCTACGCCGAGACCCTGGACGAGGCGCTTGACCAGGTGTTCGGCGGCGACTCGGGTGCGGAGGCCGGCGACGCCGACGAGGCCGAGTCCGAGGTGCCGACCGACCAGGTCGACCCGGAGACGGGGGAGACCCTCGAGCCGACGCCGGAGCCCACGGAGACCGAGACCACGGAGCCGACGCCGGAGCCCACCGAGACCGAGGACACCGGCGACGCGACCGACGGATCGCCGCAGGCCCGGCTCGACGCGGCGCTGCAGGACGCCAACCAGGCCCTGACCGACAGCAACCAGGCGCTGCAGGACGGCGACTGGACCGCCTACGGCGAGGCTCAGGAGCGGCTGCAGGCCGCTCTCGAGGAGGCCCTGGCCGCGGAGGGTGAGCTGAACCAGTGAMSFAPPRRQDGPPPARRRSPLLITLVVLAVLVVALLFLTNFWTEVLWFTQVGFANVIWTQWIARAVLFVAAFVIMGLAVWSSFAIGYRSRPVYAPSTPEQATLDQYREAVEPLRKIVTYAGPVLIGFFAGAAASAQWESVLLALNGSSFGTSDPEFGIDVGFYVFTLPVLRFAVSFLMAVVVISAIAAVVTHYLYGGLRIGSLPAGTSRTTTEARVHLAVLGTLLMLLIGANYWLDRYSILTTQNERYDGASYTDVHAVIPSKEILTGVAVLVAILFVVAAFRDTWRLPAIGVGLMVVSAIAIGGIYPAVVQRFQVDPNAQSLEAPYIQRNIEATREAFDIDDVESQPYDATTQAEEGQLRDDAATTTQVRLLDPQVVSPSFRQLQQNKQFYNFSDNLSVDRYDIDGESRDTVIAVRELNLDGLADRNWVNDHTVYTHGFGVVAAYGNQPGPDGQPAFFEGGIPTQGSLTDKFDGGYEPRIYFSPEAPEYSIVGAPEDQDPWELDYQADEQGGQQILYGFPTDEVEAGPGIGNFLHELLYALKFGDEQIFFSDRVNSASQILYDRDPQERIQKVAPWLTLDSEVYPAVVDGRVKWVVDAYTTSDAYPYSTREATQEATTDSLTLAAQGVPVELPPEVNYIRNSVKATVDAYDGSVDLYAWEPEDPLLQAWEEIFPGSLQPIDEMSGELMSHVRYPQDLFKVQRTLLERYHVTDAVALFTGSDEWETPDDPVAGGDTVASKQPPYYLTLQMPGEETPAFSLTSTFIPGGNTNREILTGYLAADADAGSEDGQVAESYGTLRLLELPRDSTVPGPGQVQNNFNSNPTISEQLNILGRGDSEVVRGNQLTLPVGGGLLYVQPVYIQSGSGTQFPLLRRVLVAFGDQTGYAETLDEALDQVFGGDSGAEAGDADEAESEVPTDQVDPETGETLEPTPEPTETETTEPTPEPTETEDTGDATDGSPQARLDAALQDANQALTDSNQALQDGDWTAYGEAQERLQAALEEALAAEGELNQNANANANANA
AK018_055631179hypothetical proteinATGGCCCTCTTGTCCCCCACCAAGCCGGCGCACGCCCGCGGCGGCACCGACCGCCCGCCGCGACGCGTCGGGTTCTCCCAACGACTCGGCCGGCTGGACGTCAAGGTCTCGCCCTACCTGTACATCTCCCCGTTCTTCCTCCTCTTCGCCGTCGTCGGGCTCTTCCCCCTGGCCTACACCGCCGTGGTGTCGGTCTACGAGTGGAACCTCCTCGGGGGCCAGGGCGAGTTCGTCGGCATGCAGAACTACATCGACGTGCTCGGCCAGCCGACGTTCTGGAAGTCCGTCGTCAACACGTTCTCGATCTTCCTGTTCTCCTCGGTCCCGCAGGTGATCATGGCGATCACGATCGCCGCCCTGCTCGACCAGAACCTCCGCGCCGCCACGTTCTGGCGCATGGGCGTGCTCGTGCCCTTCATCGTGGCGCCCGTCGCCATCTCGATGATCTTCGGCCGCCTGTTCGCCGACCAGTACGGGTTCATCAACGAGCTCCTCGGGATCATCGGCGTCGACCCGGTGGCGTGGCACGGCGACCGCCTGGCCAGCCACTTCGCGATCGCCACGATGGTCAACTACCGCTGGACCGGCTACAACACCCTCATCTTCCTCGCCGCCATGCAGGCGGTCCCCCGCGACCTGTACGAGGCCGCCGTCATCGACGGCGCAGGCCGGGTCCGGCAGTTCTTCTCGGTCACGGTGCCCCAGATCCGCGCCACCGTGATCTTCGTGGTCATCACCTCGACGGTCGGCGGCATGCAGATCTTCGACGAGGTCCGCATGTACGACGCCGGAGGTCTCGGCGGCCCCGACCGCGACTGGATGACGACCGTCGTCTACCTGTACGACGTGGCGTGGGGCAACCAGAAGAACTTCGGCCGCGCCGCCGCGGTCGCATGGCTGCTGTTCCTCATCATCGTCGCCGTCGGCATGGTCAACTTCCTCATGACCCAGCGGATCGCGACCGCGGGCCCGAAGGGCGCCAAGGTCAGCCGCCGGCACACCAAGCGCCTGATGGCCGAGGCGCGCGCCGCCGCGGCCCGCGGCGAGACCCCGACGCCGTCGGCCACGCCCGGCGGAGCTCCCGGTATCCAGCCCGGGTCGCCGCCACCGCCACCGTCGATCCCACCTACGTCGAGCACCGGCTCGCCCGACACGAACCACGGGGAGGACGCCCGATGAMALLSPTKPAHARGGTDRPPRRVGFSQRLGRLDVKVSPYLYISPFFLLFAVVGLFPLAYTAVVSVYEWNLLGGQGEFVGMQNYIDVLGQPTFWKSVVNTFSIFLFSSVPQVIMAITIAALLDQNLRAATFWRMGVLVPFIVAPVAISMIFGRLFADQYGFINELLGIIGVDPVAWHGDRLASHFAIATMVNYRWTGYNTLIFLAAMQAVPRDLYEAAVIDGAGRVRQFFSVTVPQIRATVIFVVITSTVGGMQIFDEVRMYDAGGLGGPDRDWMTTVVYLYDVAWGNQKNFGRAAAVAWLLFLIIVAVGMVNFLMTQRIATAGPKGAKVSRRHTKRLMAEARAAAARGETPTPSATPGGAPGIQPGSPPPPPSIPPTSSTGSPDTNHGEDARPGPT0016435_7DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016435-cebF-K10241NANA
AK018_05564918araQ_7COG0395L-arabinose transport system permease protein AraQATGAGCTCCGTCGCCGTCACCGCACAGACCGCGGGCCGAGGCGCTGCCCGCGCCGCAGCCAAGCGCCGTCGTCGGGTCCCCATCGGGGGCTCGGCACGACGGGCCGGACGTCTCACGTACTTCCTGCTCGCCGCGGTCCTGCTGATCTCGATCTTCCCGCTGTACTACACGCTGCTGCTCGGGTCCTCCGACCCGGTCTCCATCGCGCAGAACCCGGTCCCGCAGTGGCTGCCGGACCTCAGCCTCTTCCAGCAGTTCCAGACGGTCATCACCGACTCGAACATCAACTTCTGGAAGGCGCTGTGGAACTCGACGCTGATCGGGGTCCTGTCCTCGGTCTCCGTGGTGTTCTTCTCGACGCTCGCCGGGTACTCGTTCGCGAAGCTGAACTTCCGCGGCCGCGGGCCGCTGCTGGTGTTCGTCATCGCCACGATGGCGGTGCCGGTCCAGCTCGGCATCATCCCGCTGTACATCCTGATGAGCGAGATCGGCTGGTACGGCCAGGTCCAGGCGGTCATCGTCCCGGGTCTGGTGACCGCGTTCGGCGTGTTCTGGATGACGCAGTACCTGTCCGAGGCGCTGCCGTACGAGCTGATCGAGGCCGCCCGCGTGGACGGGGCGTCGATGTTCCGCACCTTCTGGTCGGTGGCGATGCCGGCCGCCCTGCCGGCGGCGGCCATGCTCGGGCTGTTCCAGTTCGTCCAGCAGTGGACCAACTTCTTCTGGCCGTCGATCATCCTGACCTCGGAGAACCCGACGCTGCCGCTCGTGGTCCAGTCCCTGCGGGACAACTACTTCGTGGACTACTCGCTGGTCATGGGCGGCGTCTTCCTGGTCACCCTGCCCCTGCTGGTCCTGTTCTTCTTCATCGGTCGCCAGCTCGTCGCCGGGATCATGGCCGGCGCCGTCAAGGGCTGAMSSVAVTAQTAGRGAARAAAKRRRRVPIGGSARRAGRLTYFLLAAVLLISIFPLYYTLLLGSSDPVSIAQNPVPQWLPDLSLFQQFQTVITDSNINFWKALWNSTLIGVLSSVSVVFFSTLAGYSFAKLNFRGRGPLLVFVIATMAVPVQLGIIPLYILMSEIGWYGQVQAVIVPGLVTAFGVFWMTQYLSEALPYELIEAARVDGASMFRTFWSVAMPAALPAAAMLGLFQFVQQWTNFFWPSIILTSENPTLPLVVQSLRDNYFVDYSLVMGGVFLVTLPLLVLFFFIGRQLVAGIMAGAVKGPGPT0016440_58DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016440-cebG-K10242NANA
AK018_055651554bglB_5Beta-glucosidase BATGACACTGAGCACGACGGGCACGGGCGCCCGCATCGCCGCACCGGGCACGGCCGTCCCCTTCGCCCCGACGGCCCCGCTGACCGTGCCGACGGCCAACGCGACCGGTCGCGTCGAGTTCCCGGACGGGTTCGTCTGGGGCACCGCAACCGCGGCCTACCAGGTCGAGGGGGCCGGGGCCGAGGACGGCCGCGGCGCCTCCGTGTGGGACGTCTTCTGCCGTGTCCCCGGTGCGGTGGTCGACGGCGACGACGGCATGGTCGCGTGCGACCACTACCACCGCTACCGCGAGGACGTCGCGCTGATGCGCAGCCTGCACCTCGGCGCGTACCGCTTCTCGACGTCGTGGGCCCGGGTCATGCCGGACGGGCGAACGCTCAACCCGGCGGGCGTCGACTTCTACTCGCGGCTCGTCGACGAGCTGCTGGCCGCGGACATCCTGCCGTGGCTGACCCTCTACCACTGGGACCTGCCGCAGGCGCTGGAGGACCGGGGCGGGTGGCCGGAACGGGACACGGCGTACCGGTTCGCGGACTACGCGGTGGCGATGCACGAGGCCCTCGGCGACCGGGTGGGCGTGTGGACGACGCTCAACGAGCCGTGGTGCTCGGCTTTCCTGGGCTACACCGCGGGCGTGCACGCCCCCGGCCGCCAGTCCCCGGCCGACGGCCTCGCGGCCGCGCACCACCTGATGCTGGGCCACGGCCTGGCCGTGGGAGCGCTGCGCGAGCGCGCCCCGGAGGCCTCGCTCGGGCTCACCCTGAACTTCACCGTCTCGGACCCCGTGGACCCGGCCGACCCGGCCGACGTGGACGCGGCCCGCCGCGACGACGGCATGTTCAACCGGATCTTCCTCGATCCCATCCTGCGAGGTGCGTATCCGCAGGACATCCTGGACGACGTGGCCCACCTCGGACTGGCCGACCGCATCCACGACGGCGACCTGGACATCATCTCCACGCCCATCGACGTGCTCGGCGTGAACTACTACAACGGGGGTGCGGTGTCGGCCAGGCCTGCCCCCGAGACGGGGCAGGACGGCACCGCCGGCCCCGACGGTGCCCGCGCCGCCGGCGACGGCCCGGTCCGGACCACGAGCTCGCCCAACCCGGTGCCGGACGGCGTGCACGCCCACAGCCGTGGCCTGCCCACCACCGACATGGGGTGGGAGATCCAGCCCGAGGGCCTGACGCGGCTGCTCACCCGGCTCCAGCGCGACTACACCGGACCGCGGGGTACGGCGCTCGTCGTCACCGAGAACGGCGCAGCCTTCCCCGACGTCGTCGAGCCCGACGGCAGCGTGGACGACCAGGACCGCCTCGAGTTCATCGACCGCCACCTGCGTGCCGTCAAGGACGCGATCGACGTCGGCGTCGACGTCCGGGGGTACTTCGCCTGGTCGCTGATGGACAACTTCGAGTGGGCGCTGGGCTACTCGAAGCGATTCGGGATCACTCGTGTCGACTACGAGACCCAGGACCGGACGGTCAAGGCGTCCGGCCGGTGGTACGCCACGGTGGCTCGGGACAACGCGGTCCCGAGCAGGACGGAATAGMTLSTTGTGARIAAPGTAVPFAPTAPLTVPTANATGRVEFPDGFVWGTATAAYQVEGAGAEDGRGASVWDVFCRVPGAVVDGDDGMVACDHYHRYREDVALMRSLHLGAYRFSTSWARVMPDGRTLNPAGVDFYSRLVDELLAADILPWLTLYHWDLPQALEDRGGWPERDTAYRFADYAVAMHEALGDRVGVWTTLNEPWCSAFLGYTAGVHAPGRQSPADGLAAAHHLMLGHGLAVGALRERAPEASLGLTLNFTVSDPVDPADPADVDAARRDDGMFNRIFLDPILRGAYPQDILDDVAHLGLADRIHDGDLDIISTPIDVLGVNYYNGGAVSARPAPETGQDGTAGPDGARAAGDGPVRTTSSPNPVPDGVHAHSRGLPTTDMGWEIQPEGLTRLLTRLQRDYTGPRGTALVVTENGAAFPDVVEPDGSVDDQDRLEFIDRHLRAVKDAIDVGVDVRGYFAWSLMDNFEWALGYSKRFGITRVDYETQDRTVKASGRWYATVARDNAVPSRTEPGPT0019165_390DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
AK018_055661014rbsR_6COG1609Ribose operon repressorATGGTGGTCACGAAGAACATCGCCCCGACGCTCGACGACGTCGCGCGCGCAGCAGGCGTGTCCCGGTCGACGGCGTCGCGGGCGATCAACGGCGGCGAACGCGTCTCGCCCGAGGCGCAGCAGGCCGTCGACGCCGCGATCGCACGGCTCGGGTACGCCCCGAACCGCGCGGCGCGCTCTCTCGTGACCCGGCGGACCGACTCGATCGCCCTGGTCGTCCCGGAGCCGGACGCCCGCATCCTGACCGACCCGTTCCTCGCCGGAGTCGTGCGCGGCGTCAGCGAGGGCCTCGGCGGGACGGACCTGCAGCTCGTGCTGCTGCTGGCCCGGCCCGGCGAGCGCCCGGGCCACATCGCCCGCTACCTCAACAGCGGGCACGTCGACGGCGTCATCATCGCCTCGCACCACAAGGACGACGCGCTGGAGCCTGAGCTGCGGTCGGGCAGCCTGCCGGGCGTGTTCGTCGGCCGTCCCTTCGACGCCACCGGGCTGCACTACGTCGACGTCGACAACCGGGCCGGCGGGCGCGTGGCCACCCAGCGGCTCGTGGACCGCGGCTGCCGCACGATCGCCTCGATCACGGGTCCTCAGGACATGACCGCGGCTCTGGACCGGTTCGACGGGTGGCGCACCACGCTGTCCCGGGCGGGACTCGCGTCCGACATCGTCGCGAACGGGGACTTCACGGTCGAGGGCGGCGCCGCCGCGATGGAGCAGATCCTCGCCGAGCGTCCCGACGTGGACGGCGTGTTCGCGGCGTCGGATCTCATGGCCAGCGGCGCGCTGCAGGTCCTGCAGGCCCACGGCCGCCGCGTGCCCGACGACGTCGCGATCGTCGGTTTCGACGCTCTCGGCGCCGAGCGCACGACCCCACGGCTCACCACCGTGCTGCAGCCCGTCGTCGAGATGGTGGCCGCCGCGACGTCGTCGCTGCTGGACATGCTGGCCGGCGCGGACACGCACCCGGAGCCGCGGATCTTCGTGCCGCGGCTCGTCGAGGGCGGCTCCGCCTGAMVVTKNIAPTLDDVARAAGVSRSTASRAINGGERVSPEAQQAVDAAIARLGYAPNRAARSLVTRRTDSIALVVPEPDARILTDPFLAGVVRGVSEGLGGTDLQLVLLLARPGERPGHIARYLNSGHVDGVIIASHHKDDALEPELRSGSLPGVFVGRPFDATGLHYVDVDNRAGGRVATQRLVDRGCRTIASITGPQDMTAALDRFDGWRTTLSRAGLASDIVANGDFTVEGGAAAMEQILAERPDVDGVFAASDLMASGALQVLQAHGRRVPDDVAIVGFDALGAERTTPRLTTVLQPVVEMVAAATSSLLDMLAGADTHPEPRIFVPRLVEGGSAPGPT0017992_5908DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_055671023hypothetical proteinATGATCGCGCCGCCACCGGTCTGGGTCCGGCGTGTGGTGCTCGGGCCGCTCGTCGTGGCCCTGGCGGTGCTGATGGTGCCGACCACCCTGATGTTCGCGCTCGTGGTCGGCGCGGCCCTGACGTGGGTCCTGCCGGGCCGCCTGCGCGTGGTCCGGGTGCTGTGGATGATCGCGTTCTACGTCGTCTGGGACGCGGCCGCGCTGCTGGCGATGCTCGGCCTCTGGATCGCCGCGGGCTGCGGGCTGTTCGCCGACCGCGCCTGGTACCGACGGGCGCACGTGCGCCTGGCCCGCGGGATGCTCGCGCTGTTCTTCTGGCAGGTGCGCTGGACGCTGCGGCTGCGGATCGTCGTCGACGTCGCCGACGAGGCCGCGCTGCCGGACGCCCCGCTCGTCGTGCTCAGCCGGCACGCCGGTCCCGGCGACTCGTTCATCCTGGTCGACCGGCTGCTCGGCCTCGCGGGGAGGGCGCCGGCCGTCGTGCTCAAGGACACCCTGCAGTGGGATCCCGCGATCGACGTGCTGCTGCACCGGCTGCCGTCCGCCTTCGTGACGCCGTCGTCCCGTCGCCGACCCGGCCAGCCCGGCGCGCGGCGGACGGTGCGCCGCATCGCGGAGGGTCTGACGGCCGACGACGCGCTCGTGCTGTTCCCCGAGGGCGGCAACGTGACCGCGCGGCGGCGGGCGGGGCGCATCGCGACGCTGCGGGAGGCCGGCCAGGACCGGTTGGCCGACCGGGCGGAGGGCATGGCCAACGTCATGGCACCCCACGTGGGCGGGTTCGAGGCGGCGCTGGACGGATCGCCCGACGCTGCCGTCCTCGTCGTCGCGCACACGGGCCTCGAACGGCTCGTCACCGTCGGCGACATCTGGCGCGAGCTGCCGATGGACAAGACCATCCGGCTGGCCGGGTGGCTGCACCCTGCCGGGGCGGTGCCCCGCGACGGCGAGGCCCGGGAGGACTGGCTGTTCGACCAGTGGGGCGTGGTCGACCGGTGGATCGGCGACCGCGTCCCGAGCTGAMIAPPPVWVRRVVLGPLVVALAVLMVPTTLMFALVVGAALTWVLPGRLRVVRVLWMIAFYVVWDAAALLAMLGLWIAAGCGLFADRAWYRRAHVRLARGMLALFFWQVRWTLRLRIVVDVADEAALPDAPLVVLSRHAGPGDSFILVDRLLGLAGRAPAVVLKDTLQWDPAIDVLLHRLPSAFVTPSSRRRPGQPGARRTVRRIAEGLTADDALVLFPEGGNVTARRRAGRIATLREAGQDRLADRAEGMANVMAPHVGGFEAALDGSPDAAVLVVAHTGLERLVTVGDIWRELPMDKTIRLAGWLHPAGAVPRDGEAREDWLFDQWGVVDRWIGDRVPSNANANANANA
AK018_05568843hypothetical proteinGTGGCGTGCGACGATGTCGCCGTGACGACTGCGTTCGTGCTGGGTGGCGGCGGTGTGCGCGGTGCCGTGCACGTCGGGATGGTGCGCGCGCTGCTCGAGCGGGGCGTCCGGCCCGACCTGGTGGTCGGCACCTCTATCGGGGCGATCAGCGGTGCCGCCGTGGCCGCCGACCCGACGCCCGCCGTCGTCGAGCGCATGCTCGAGGCGTGGGCGTCACCCGTGGCCGCGAGCGTCTACGGCGAGCCCTGGTACCGGCAGGTCGGCCAGCTCGCACGGTCGCGCACCCACGTGTTCGACCCCGGCAAGCTGCGCACCCTCATCGAGTCGACGCTGGGCGACCACCGCGTCTTCGCCGACCTCGAGGTGCCGCTCGTCGTCGCGGCCGCCAGCATCGAGGGCGCCTGCGAGCACTGGTTCGACGCCGGCCCTCTGGTCCCGGCCGTCCTCGCCTCCGCGTCGGTCCCCGGCGCGCTGCCCCCGACCGAGATCGACGGCGAGCACTTCGTCGACGGGGGCGTCGTCAACTCCATCCCGCTCGGGGAAGCCGTCCGCCGCGGTGCCACCACGGTGTACGTGCTCCAGGTGGGCCGGATCGAGGAACCGCTCACTGCTCCCCGCAACCCCTCCGACGTCGCCAAGGTCGCCTTCGAGATCGCCCGCCGGCACCGGTTCCACCGGGAGCTCGCCGAGGTGCCGGACGGCGTCGCCGTCCACGTGCTGCCCTCGGGCGGCCCCGTGCCCGGCGACGAGAAGGTCGGCTCGTTCCGGCGGCTCGACGCGACCCGACGCCGCATCGAGCAGTCCTACGCCGCCGGGCTGACCTACCTGGACGAGCACGCATGAMACDDVAVTTAFVLGGGGVRGAVHVGMVRALLERGVRPDLVVGTSIGAISGAAVAADPTPAVVERMLEAWASPVAASVYGEPWYRQVGQLARSRTHVFDPGKLRTLIESTLGDHRVFADLEVPLVVAAASIEGACEHWFDAGPLVPAVLASASVPGALPPTEIDGEHFVDGGVVNSIPLGEAVRRGATTVYVLQVGRIEEPLTAPRNPSDVAKVAFEIARRHRFHRELAEVPDGVAVHVLPSGGPVPGDEKVGSFRRLDATRRRIEQSYAAGLTYLDEHANANANANANA
AK018_055693648rocA_21-pyrroline-5-carboxylate dehydrogenaseATGAGCACACACTCCGCCGCGCGCGGGACCGGGACGGGCGGAACCCGCACGTCCGGCCCCGCCGACATCGAGTCCCTCGTCGAGGACGCCGTCGCCCTGGCGCACTCCTGGATCGCCGCGGCCGACGGCACCGGCGCCGCGGCCAGCCGCGCGGACCGGCGCACACGCGCCACCGCCGAACGCCTCGGCGCGCTCGTCGCCGACCCCGCCGGGCTCGACCTGGCAGTCGGGTTCGTCGACGACGTCGCCCGCCCCCAGGACGTGCGCGTCGCCGCCAAGGCGCTGGCCCGGCTCGGCCGCGACGCCGGCGCCGCCTCGTTCCTCTCCCCGGTCGACCGCACCCTGTTCCGCGTCGGTGCCGCCGTCGCCCCCGCCCTGCCGGGCGTCGTCGTGCCCGCTGCACGGGTCCGGCTGCGCCAGCTCGTCGGGCACCTCGTGGCCGACGCCGGCCGCGGGCTCGGTGCGCACCTCGCGCGGACGCGGGACGAGGGGTACACGCTCAACGTCAACCTCCTGGGCGAGATGGTGCTCGGCGAGGACGAGGCCCGCGCGCGCCTGCAGCGCACCCTCGACCTGGTGCGCCGCCCGGACGTCGACTACGTGTCGGTGAAGGTGTCCTCCGTCGCCGCCCAGCTCGTCACGTGGGACCTCGACGGGTCGCGCGAGCGCGTCGTCGAGCGGCTGCTGCCCCTCTACCGGGCCGCCCGCGACCACGGGGTCTTCGTGAACCTCGACATGGAGGAGTACAAGGACCTGGCGCTCACCACGGCGGTGTTCCGCGACGTCCTCGACCGCGACGAGCTGCGCGACCTGCAGGCCGGCGTCGTGCTGCAGGCCTACCTGCCCGACGCGCTCGGCGCGTTGGACGAGCTCACCGCGTGGGCGCAGCAGCGCGTCGCCGACGGCGGGGCGCCGGTCAAGGTGCGCCTGGTCAAGGGCGCGAACCTCGCCATGGAGCACGTCGAGGCCGAGCTGCACGACTGGGCGGTCGCCCCCTACGGCAGCAAGGCCGAGGTCGACGCCAACTACGTGCGCGTCCTCGACCATCACCTGACCCCGGAGCGCACCGCGGCCGTGCGCCTCGGCGTCGCCTCCCACAACCTGTTCCACGTGGCGCTCGCCGTCCTGCTGGGCCGGGCCCGCGGCGTCAGCGACGGCCTCGACGTGGAGATGCTGCAGGGCATGGCCCCGATCGAGGCTCGCCAGGTGCAGGCCGAGGTCGCCCGCGACGGCGGCCGCGTCGTCCTGTACACCCCGGTGGTGCGACCGCAGGACTTCGACGTCGCCATCTCCTACCTGGTGCGGCGCCTCGAGGAGAACGCCGCGGAGCAGAACTTCCTGCACGCCTCGTTCGCCCCGCCGTCGTCCGTCCCGGGAGTCTCCGCCACGCCGATGGACCGCCAGGAGGTCGCGTTCCGCGCCTCGGTGTCCGACGCGGTGCCCTTCGAGGCCGCCGACGTGGCGCCGCGGCGCCGGTCGCGCTTCGAGGGCGACGCGTCCGCCCCCGACACCGTCCCGCCAGGTCGTACCTCCCGTCCCGAGGTCGTACCCGCGGGGTACGACGGCGAGACGGACGGCACGACCTCGTGGCCCGGTGCAGAGCGGCCCGGTGGCGAGGAGTCCGGTGGTGGGCGGCCCGGCTCGCCGACCGGCTTCCGCAACGCCGTCGACACCGACCCGTCCGTCGCGGCGCACCGCGAGTGGGCCGCACAGATCGTCGGCCCCGGCAGCGGGTTCGTCCCGGTCCGGTCCGCCGAGGTCACCGGCACCGCCGCCGTCGACGCCGCCGTCGCCCGGGCCGTCGAGGTCCGCGAGCAGTGGGCCGCCGTGCCGCCCGCCGGCCGCGCCCGGGTGCTGCGCGAGGCCGCCCGCCGGCTCGAGGACCGCCGCACGGACCTGATCGCCGCCGCCGTGCACGAGGTCGGCAAGACCGTCGCGGAGACGGACCCCGAGGTCACCGAGGCCATCGACTTCGCCAACTACTACGCGGCGGCCGCCGAGGCCCTCGACACCGTCGACGGCGCCACCTTCGCGCCCGACGGCGTCACCCTCGTCACGCCCCCCTGGAACTTCCCGGTCGCCATCCCGATCGGCGGCGCGCTCGCCGCGCTCGCGGCGGGCTCCACGGTGCTCGCCAAGCCCGCCCCGCCGACGCCGCGCTGCTACGAGCTCGCGGTCGAGGCGGTGCACGCCGCGCTGGAGGCCGTCGCACCCGACATCGGCCTCGACCCCGCCGTGGCCCGCGACGCTGTGCAGTTCCTGCGGGTGCCCGACGGCGACGTCGGCAAGCACCTGGTCACCCACCCCGACGTGTCCCGGGTGGTGCTCACCGGCGCCCTCGAGACCGCCGAGATGTTCGCCTCCTGGCGTCCCGACCGGCCCGTCCTGGCGGAGACCTCCGGCAAGAACGCGCTGATCGTCACCCCGTCCGCCGACCTCGACCTGGCGGTCGCCGACGTGCTGCGCAGCGCGTTCGGGCACGCCGGCCAGAAGTGCTCGGCGGCCTCCCTGGTGATCCTCGTCGGCTCCGTCGGGGACGCCGCCACCGTCACCGGCGAGCGGTTCGGCCGCCAGCTCGTCGACGCCGTCCGGTCGCTGGCCGTCGGTCCGGCCACCTCGCTGTCCACCGTCATGGGGCCGCTCACCGAGCCCGCCGCCGGCAAGCTGCACCGCGCCCTGACCTCGTTGGAGCCGGGGGAGTCGTGGCTGGTCGAGCCGCAGCGGCTCGACGACGTCGCCGCGGCCGCCGGGATCGACCCGGACCGGATGTGGACGCCCGGGCTGCGCGACGGCGTGGCGCCCGGCTCGTTCTTCCACCTCACCGAGGTGTTCGGCCCCGTGCTCGGCATCATGCGCGCTGAGACACTCGACGAGGCGATCGAGCTGCAGAACGCCGTCTCCTTCGGCCTGACCGGCGGCATCCACTCCCTGGACGCCGAGGAGGTCGAGCACTGGCTCGACCGCGTCGAGGTCGGCAATGCCTACGTCAACCGCCACATCACCGGCGCCATCGTCCAGCGCCAGTCGTTCGGCGGGTGGAAGGGGTCCGTCGTCGGACCGGGTGCGAAGGCGGGCGGCCCCAACTACGTCGCCCAGCTCGGCACCTGGTCGGACGCCGCGGCCGACGCCGGGGGACCGCCGTCGCGCGGGAACGACCCGGCGGGCTGGCTCGCGTGGGCGGAGGCCTCCGACGCCGACGCCTGGGCCCGGGAGTTCGGCGTCGCGCACGACGAGACCGGCCTGGCCGTGGAGGAGAACACCTTCCGCTACCGCCCCGTCGAGCAGGTCACGGTGCGCGTCGGCGACGGCGCCCTGCCGGTCGAGGTGCGCCGCGTCCTGGCCGGTGCGCGCCGCGCCGGCGTCCACGCCGTCGTCGTCCCCGCGTCCGACGCCGGTTGGGGCGTGCCGCACGACGCCCCCGTGCCGCACGCGGAGTTCGCTGCCGCCGTCGCCGACGGCCGGGTCTCCGGGCGGGTGCGCGTGCTCGGCGAGGCGCCCGGGCTGCGGGAGGCCGCCGCCGGCCGCCTCGGTGAGGTCACCGTCCTGGACGGCCCGGTGCTGGCCGCCGGCCGGCGCGAGCTGCTGACGTTCCTGCGCGAGCAGGCGATCAGCCGCACCAAGCACCGCTACGGCCACCTGCGCGACTGAMSTHSAARGTGTGGTRTSGPADIESLVEDAVALAHSWIAAADGTGAAASRADRRTRATAERLGALVADPAGLDLAVGFVDDVARPQDVRVAAKALARLGRDAGAASFLSPVDRTLFRVGAAVAPALPGVVVPAARVRLRQLVGHLVADAGRGLGAHLARTRDEGYTLNVNLLGEMVLGEDEARARLQRTLDLVRRPDVDYVSVKVSSVAAQLVTWDLDGSRERVVERLLPLYRAARDHGVFVNLDMEEYKDLALTTAVFRDVLDRDELRDLQAGVVLQAYLPDALGALDELTAWAQQRVADGGAPVKVRLVKGANLAMEHVEAELHDWAVAPYGSKAEVDANYVRVLDHHLTPERTAAVRLGVASHNLFHVALAVLLGRARGVSDGLDVEMLQGMAPIEARQVQAEVARDGGRVVLYTPVVRPQDFDVAISYLVRRLEENAAEQNFLHASFAPPSSVPGVSATPMDRQEVAFRASVSDAVPFEAADVAPRRRSRFEGDASAPDTVPPGRTSRPEVVPAGYDGETDGTTSWPGAERPGGEESGGGRPGSPTGFRNAVDTDPSVAAHREWAAQIVGPGSGFVPVRSAEVTGTAAVDAAVARAVEVREQWAAVPPAGRARVLREAARRLEDRRTDLIAAAVHEVGKTVAETDPEVTEAIDFANYYAAAAEALDTVDGATFAPDGVTLVTPPWNFPVAIPIGGALAALAAGSTVLAKPAPPTPRCYELAVEAVHAALEAVAPDIGLDPAVARDAVQFLRVPDGDVGKHLVTHPDVSRVVLTGALETAEMFASWRPDRPVLAETSGKNALIVTPSADLDLAVADVLRSAFGHAGQKCSAASLVILVGSVGDAATVTGERFGRQLVDAVRSLAVGPATSLSTVMGPLTEPAAGKLHRALTSLEPGESWLVEPQRLDDVAAAAGIDPDRMWTPGLRDGVAPGSFFHLTEVFGPVLGIMRAETLDEAIELQNAVSFGLTGGIHSLDAEEVEHWLDRVEVGNAYVNRHITGAIVQRQSFGGWKGSVVGPGAKAGGPNYVAQLGTWSDAAADAGGPPSRGNDPAGWLAWAEASDADAWAREFGVAHDETGLAVEENTFRYRPVEQVTVRVGDGALPVEVRRVLAGARRAGVHAVVVPASDAGWGVPHDAPVPHAEFAAAVADGRVSGRVRVLGEAPGLREAAAGRLGEVTVLDGPVLAAGRRELLTFLREQAISRTKHRYGHLRDPGPT0020210_1428DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020210-putA-K13821NANA
AK018_05570798prmC_6Release factor glutamine methyltransferaseGTGGGCACCGCCGCGCGACTCACGGAGCGGCTGCGCGCCGCGGGGTGCGTGTTCGCCGAGGAGGAGGCGGCGCTGCTGCTCGCCTCGACGGACGACCCGGAGCTGCTGGAGCGCCGGGTGACGCGGCGCACGGCCGGCGAGCCGTTGGAGCACGTGCTGGGCCGGGTGGAGCTCGCGGGCCGGTCCTGGTCGGTGGGGCCCGGGGTGTTCGTGCCGCGACGGCGCAGCGAACGGCTCGTGGCGGCGGCGCTCGACCTGCCCGCCGCGCGTGCGGACGCGACCGTCGTCGACCTGTGCTGCGGGAGCGGGGCGATCGGCGGCGCGCTGCTCCTGGGCCTTCCCGACGGCGGACGGTCCGCGCGGCTGCACGCGGCGGACGTGGACCCCCGGGCGGTGGCCCACGCCCGCGCCAACGTCGCTCCGTGGGGCGGGACGGTCAGCACGGGCGACCTCTGGGACGCGCTGCCGGACTCGCTGCGGGGCCGGGTGGACCTGCTGCTCTGCCACGCCCCGTACGTCCCGACGTCGGCGCTGGCCACGCTGCCTGCCGAGGCCCGCGACCACGAACCGCGCGCGGCCCTGGACGGGGGGCACGACGGCCTGGACGTGCTGCGCCGCGTGGTGGCCGGAGCCCCGTCGTGGCTGGCACGCGGCGGAGCGCTGCTGTTCGAGGTGGCGGGTGTTCAGGTGACGGCGGCCACGCGCCTGGTGACGGCGGCCGGACTGGGGGTCGGGGTCCTGCGGGACGACGAGACCGACGGCGCGGTCATGGTCGCGAGCGTCGGCGCAGCAGGCTGAMGTAARLTERLRAAGCVFAEEEAALLLASTDDPELLERRVTRRTAGEPLEHVLGRVELAGRSWSVGPGVFVPRRRSERLVAAALDLPAARADATVVDLCCGSGAIGGALLLGLPDGGRSARLHAADVDPRAVAHARANVAPWGGTVSTGDLWDALPDSLRGRVDLLLCHAPYVPTSALATLPAEARDHEPRAALDGGHDGLDVLRRVVAGAPSWLARGGALLFEVAGVQVTAATRLVTAAGLGVGVLRDDETDGAVMVASVGAAGNANANANANA
AK018_05571822hypothetical proteinATGACCACCACCGCAGCATCCCGCGCGACCACCGCCGACCGCGTCCGCCAGGTCGTGGTCGTCGTCGGCGCCCTGCTGGCCGTCGCCGGCGCCGCCTACGGCTCCGGCGCGTTCGGCGGCCAGCCCATCGAGGAGGCCGCCGGCGGCGCGCTCTCCGCCGACGCGACCGTGATGGCCCCGGCCGGTCCCGCCTTCTCGATCTGGTCCGTGATCTACACCGGGCTGCTCCTGTTCGCACTGCTGCAGGCGCTGCCGGGCCGGGCCGCCGACCCGAGGATGCGCGCGGTGTCGTGGTGGGTGCTCGCCTCCATGGTGCTCAACGCCGCCTGGATCGGGGTCGTCCAGCTCGGCCTGCTGTGGCTGAGCGTGCTGGTCATCGTGGCCCTCGTCGCCGTGCTGGCCGCCGTCGTGGTCCGCTTGCTGCGCGTCGAGCCGACACGACGCCTCGACGCCCTCGTCACCGAGGGCACGGTCGGTCTCTACCTCGGCTGGGTCTGCGTCGCTACCATCGCCGACGTCGCGGCCACCCTGGTCGACGCCGAGGTAGGCGACCTGCTGCTCGGCGCCACCGCGTGGGGCGTGGTGCTGTGCGTGGTGGCCGCCCTGCTCGTGGTGCTGATCGCCACCCGGACGGCGTCCCGCCCCACTGTGGCCGTCGCCGTCGGGCTGGCGGCCGGATGGGGACTGGCCTGGATCGCGTTCGCCCGTTCGCAGGGCCCCCTGCTCGACTCCGGTGTCTCCTACGCCGCCGGGGTGGCCGCCGTCGTCGCCGTCGCCGGGCCGGTCGTGATCAGCCTGCTGCGCCGACGCTCGCGACCATGAMTTTAASRATTADRVRQVVVVVGALLAVAGAAYGSGAFGGQPIEEAAGGALSADATVMAPAGPAFSIWSVIYTGLLLFALLQALPGRAADPRMRAVSWWVLASMVLNAAWIGVVQLGLLWLSVLVIVALVAVLAAVVVRLLRVEPTRRLDALVTEGTVGLYLGWVCVATIADVAATLVDAEVGDLLLGATAWGVVLCVVAALLVVLIATRTASRPTVAVAVGLAAGWGLAWIAFARSQGPLLDSGVSYAAGVAAVVAVAGPVVISLLRRRSRPPGPT0014330_13DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014330-ytaB-K05770NANA
AK018_05572765COG3253putative protein/MSMEI_2713ATGACCGACCGGCACGTGCACGCGGACACCGGCGAGGCCGTCGACACCGCGGCGATCAACGCCTCGATCCGCTACGCGATGATCGCGGTGTTCTCGTCCGTGGCGCCCGTCCCCGCGGACGCCGGCGCCCGCGCCGAGGTCGCCGCCGAGGCCGCCGACGCGCTCTGGGACGGCGCCGCCGAGGGCGACCGTGACGCCTCCCGGGCCGACGGCGACGTCGTCGTGCGTGGCGTGTACGACGTGGCCGGGCTGCGGGCCGACGCCGACCTCATGGTCTGGGTGCACGGCCCCAGCGTCGAGTCCGTGCAGGGCGCCTACCGCCGGCTGCTCGCCTCCCGGCTCGGGGCGACGCTGGCGCCGGTGTGGTCCGTCGTCGCGCTGCACCGTGCCGCGGAGTTCAACAAGGGGCACGTCCCGGCGTTCCTCGCGGGCGAGGCCCCGCGCGACTACCTGTGCGTCTACCCGTTCGTGCGCTCCTACGAGTGGTACCTGCTCCCCGACGACGAGCGGCGCACCATGCTGCGCGACCACGGGATCGCCGCCGCCGGGTACGCGGACGTGCGGGCCAACACCATGAGCACCTTCGCGCTGAGCGACTACGAGTGGCTGCTCGCCTTCGAGGCCGACGAGCTGCACCGCATCGTCGACCTCATGCGCGACCTGCGGGCCACCGAGGCGCGCCGGCACGTCCGCGAGGAGGTGCCGTTCTTCACCGGGCCGCGCACCGGCCTGGCGCAGTGGGTGGAGGCCCGCCCGCGCGCCTGAMTDRHVHADTGEAVDTAAINASIRYAMIAVFSSVAPVPADAGARAEVAAEAADALWDGAAEGDRDASRADGDVVVRGVYDVAGLRADADLMVWVHGPSVESVQGAYRRLLASRLGATLAPVWSVVALHRAAEFNKGHVPAFLAGEAPRDYLCVYPFVRSYEWYLLPDDERRTMLRDHGIAAAGYADVRANTMSTFALSDYEWLLAFEADELHRIVDLMRDLRATEARRHVREEVPFFTGPRTGLAQWVEARPRAPGPT0008490_103DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSOTHER_BIOTIC_STRESS_RESISTANCE_GENESBIOTIC_STRESS_RESISTANCE-BACILYSIN_METABOLISM,PGPT0008490-hemQ-K00435NANA
AK018_055731146hemH_2COG0276FerrochelataseATGCCGACGACCCCCCGGTCCGATCTCGCGAGCCCTTACGACGCCCTGCTCCTGTACTCCTTCGGAGGTCCGAACAAGGCGGAGGACGTCGTGCCGTTCCTCCGCAACGTGACCGCCGGCAAGGGGATCCCCGACTCCCGCCTCGAGGAGGTCGGCGAGCACTACTACGGCTTTGGCGGCAAGAGCCCCATCAACGAGCAGAACCTCGCGCTGAAGGCGGCGCTCGAGGCCGAGCTCGCCGAGCGGGGCATCGACCTGCCCGTCGTGTGGGGCAACCGCAACTGGGAGCCGTACACCGACGACGCCGTCACCGAGCTCGAGAGCCTCGGCGCCGAGCGCGCGGTGGCGCTGGTGACCTCGGCGTACTCCAGCTACTCCGGCTGCCGCCAGTACCGCGAGGACCTGGCCGTCACGCTGGACAAGCGCGGCCAGCTCGGCGAGGACGGCTCCACCACCGTCGAGTTCGACAAGATCCGGTCCTACTTCAACCACCCCGGGTTCGTGCAGGCGAACGTCGACGCGGTGCTCGACGGGTTCGCCGCGCTCGAGGCGAAGGGCGGGTCGCCCGCCGACGCCACCCTGGTGTTCGTCACCCACTCCATCCCGGACACGATGGAGGCCGCCTCGCGCATCTCGCAGGCCACCTACTCCGAGCAGCACCTCGACGTCGCGGCCGTCATCGCCGAGCGCGTGGGTGCGGTCCGCGGGCACGAGGTCACCTGGGAGCTCGCCTACTGCTCCCGCTCGGGCCCGCCGACGCAGCCGTGGCTGGAGCCCGACGTCAACGACCTGCTCACCGAGCGCGCGGGCGAAGGTCTGCGCGACGTCGTCATGGCGCCGATCGGGTTCGTCTCGGACCACATGGAGGTCGCCTACGATCTGGACACCGAGGCCATGGAGACCGCGACCGAGCTCGGCCTGACGGCGGTGCGGGCCGGGACGGTCGGCACCCGGGCCCCGTTCGTGGCCGGCCTGGTCGACCTCCTGCTCGAGCGGGCGGCGATCGCCCGCGGCGAGGCCGTCGAGGAGGCCACCGTCGGCAGCCTGCCGCCCTTCCGCTCGGTGTGCGAGGTCGACTGCTGCCTGCGCCGCGACGGCGAGCCCAGCGGCGTGCCTGCCCTGTGCGGCGTCGACCTGCGCCGCTGAMPTTPRSDLASPYDALLLYSFGGPNKAEDVVPFLRNVTAGKGIPDSRLEEVGEHYYGFGGKSPINEQNLALKAALEAELAERGIDLPVVWGNRNWEPYTDDAVTELESLGAERAVALVTSAYSSYSGCRQYREDLAVTLDKRGQLGEDGSTTVEFDKIRSYFNHPGFVQANVDAVLDGFAALEAKGGSPADATLVFVTHSIPDTMEAASRISQATYSEQHLDVAAVIAERVGAVRGHEVTWELAYCSRSGPPTQPWLEPDVNDLLTERAGEGLRDVVMAPIGFVSDHMEVAYDLDTEAMETATELGLTAVRAGTVGTRAPFVAGLVDLLLERAAIARGEAVEEATVGSLPPFRSVCEVDCCLRRDGEPSGVPALCGVDLRRPGPT0008485_965DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008485-hemH|ywfI-K01772NANA
AK018_055741920hypothetical proteinGTGACCCGCACCCCCACGGCCCCCGTCGTCGACGCTCTGACCAGCGGAGACGTCCCGTCGTCGGTCGGCCGTGTCCGCGACCCCGACGAGGCGGAGGCCCTGGCCGCGCGGCTGCAGGACCCCTCCCGTGCCTGGCCGGTGGTGGTCGTGTCCACGCCGCGCGAGCACGGCGTGCCCTACGTCGACCCGGACCGCGTGCTGGACGACGTCCGCGGCCTCGCCGAGGTCGTCGTCGTGCGCACCGGCGAGGCGTCGTGGGCGTTCTCCCACGCGATGCCGCCCGGCACCCAGGTCTACGGCGGCGCCTCACGCGTCTACCCCGTCGGCCTCGACTGGGTGCACGACGTCGGCCGCTCGCCGTTGTGGTTCGCCTACGACGACGCCGAGGGCACCCGGGTGCGCGACCGTCTCGTCCAGGACGCCCTGACGGCGGCCGCCGCGGCCGGGCTGACCGGCAGCGCCTCCACGCCGGACTCCCCCGCGACCGTCGGCGCGACGGTCCTGGGCGTGGTCGGGACCCGGGCCCTGGTGCGGACCGACGAGGGCACGACGGCCCAGGTCGCCCAGGAGCTCACCCTGCCCATCGTGCCCGTCGACCGCCTCCTCGCGCCGGGCATGACCCTGCGGGGCGTCCTCGACCCCGGCGCCCAGCGTCTCGACGTCCGCGGCATGCTGCCCGACTCCGCGGCGCAGGCCGAGCTGGCCCGGCAGGCCTACCCGACCGGGACCGTGGCTCCCGTGCAGGTCCACGACGTCACCACCGACGAGGTCGTGCTGGCCCTGGCACCCGCCGTACCGGTCCGGGTCGGCCGAGCCGCGGCGTCGGGCAGCGAGCTCGAGGACCTGCGCGACCTGTTCTCCGTCGGCGAGATCGTCGCCGCGCGCGTGCTCCCCGGTCGGCCGGTGCCAGGCCCCGCCGGGCCGCGGCTGCGCCCGGACCTGAGCCTGCACGACGTCGCCGACACCGAGGACGTCGCCGCAGCGCTGAGCCTGCTGCCCGGCGGCCCGCCCTGGCTGCCCGCACCGACCGCCGTCGCCGACTCCGCCACCTCGCCCGACACCACCACCGACGACGACCCGCCCGCGGGCCGCGACGAGCCGATCGACCCGGCCGGCGAGGACGACGGCCCGCCCGTGCCCAAGCCGGGCCCGGGACGGCGACCCGCCGTGCCGCCCCGCGGCCGGGCCCTGCCGGCGCCGCCGCCACCCCCGCCGTCGGACACCGCGGAACCAAGCCCGGCCCGCAGCGAGCACCGGGTGCTGGTCAACCAGCTCGAGCTGTCCGTGCACGAGCAGCGGGCCCGCGCGGACGGCGCCGAGCAGGAGCTCGCCGAGAGCCGCGCCGCCGTCCGCCAGCTCGAGCTCGAGGTGGCCGGCCTGCGCGACCTCACCCGCGAGCAGCGCGACCAGGTCGAGCGGCTGCGGCGCGACGTCGAGCGCTACAAGACCCGCATCCGCACCGCGCGCAAGGAACGTCCGCGCGCCGAGGAGCCCCGGCCCGCGGGTCCCCTGTTCCTCGACCCCGTCGACCAGCTGCGGTACGACGTGCGACGCACCTGGGCCCAGATCGTCCACGCCGAGGAGAAGGCGCGGTTCCCGCTCCCGGAGTACGACGTCGGACCGGCGTTCTGCGCCAGCCTCGCCGACGCCGGACGCGGGCTCGAGGAGAAGGTCCACCGCGCCGTCGTCCTCGTGCTGATCGGCCGCGCCCCGGAGATCGCCGGCTACGAGCTGCACCGGCTGCGCCGCGGGGACGGCGGCGGCGACCCGTACCGCGTCCGCGACCACGACGGCGCCCAGGCGTGGCGGCTGTCCCTGCAGGTGAACACGCCGCAGGCGCGCCGGATGCACTACTGGGTGCTGCCCGGCGGTCGCGTCGAGCTGTCCCGCGTGGTGCTGCACGACGACGTCGAGCCCTGAMTRTPTAPVVDALTSGDVPSSVGRVRDPDEAEALAARLQDPSRAWPVVVVSTPREHGVPYVDPDRVLDDVRGLAEVVVVRTGEASWAFSHAMPPGTQVYGGASRVYPVGLDWVHDVGRSPLWFAYDDAEGTRVRDRLVQDALTAAAAAGLTGSASTPDSPATVGATVLGVVGTRALVRTDEGTTAQVAQELTLPIVPVDRLLAPGMTLRGVLDPGAQRLDVRGMLPDSAAQAELARQAYPTGTVAPVQVHDVTTDEVVLALAPAVPVRVGRAAASGSELEDLRDLFSVGEIVAARVLPGRPVPGPAGPRLRPDLSLHDVADTEDVAAALSLLPGGPPWLPAPTAVADSATSPDTTTDDDPPAGRDEPIDPAGEDDGPPVPKPGPGRRPAVPPRGRALPAPPPPPPSDTAEPSPARSEHRVLVNQLELSVHEQRARADGAEQELAESRAAVRQLELEVAGLRDLTREQRDQVERLRRDVERYKTRIRTARKERPRAEEPRPAGPLFLDPVDQLRYDVRRTWAQIVHAEEKARFPLPEYDVGPAFCASLADAGRGLEEKVHRAVVLVLIGRAPEIAGYELHRLRRGDGGGDPYRVRDHDGAQAWRLSLQVNTPQARRMHYWVLPGGRVELSRVVLHDDVEPNANANANANA
AK018_05575810hypothetical proteinATGGATCAGTTCACGATGGTGGTGCTGCTGGTCGGCGGCGGTGCGGTGGTCTTCGGCGCGACTCTGCTCGTGCGGCGCGTCCGGCCCGGTCTGGCGGACGTCGACACGGCACCGGCCGGATCGATCCTGTCGTACGTCGCGGCGACCTTCGGGATCCTCGTCGGGTTCCTCATCGTCGTCCTGCTCGGCGAGGCGACCAGCGCTCGGCACGCGATCGGCGACGAGGCGACCTCCATCGGCACGGCATTCGACGAGGCCCAGCTCTTCCCGGAGAACGAGACCGACCTGCAGCACGCCCTGATCTGCTACGCCCGCTCGGTCACGGAGAAGGAGTGGCCGGCGCTGGCCGAGGGCAGCTCGGCACCTGAGACCGACGCGGCGTACCGCGCGCTCATCGCCGCCTACGGGGCGGTGGACGAGCCGACGGGCGGAACCTTCCAGTCCGCGGCCGCGACCAACAGCTTCGTCCAGATCGGCGGCATCTCCACCGCGCGGGAGACCCGGCTCGTCGCCTCGGAGCTCGACCTGGGTCCGCTGATCTGGACCGTGCTCATCGGTGCGGCTCTGCTGGTGGTCTTCCTGCTCTTCGTCGTCACCCTGCCGGCCCGGCCGCTCGTGCAGGCGTCGCTGCTGGGTCTGGTCGGACTCTTCACCACGGTCCTGCTGGTCCTGCTGATGGCGTTGAGCAGCCCGTTCCGGGAGGGGACGAGGCTGGCGTCGCCGGAACTGATCGAGGAGAACACCGCCCGCATGGTGTCGCTCGCCCCGGAGGCCGCGGAACGGCCGTGCGCCTTCGACGACGCGGGCTGAMDQFTMVVLLVGGGAVVFGATLLVRRVRPGLADVDTAPAGSILSYVAATFGILVGFLIVVLLGEATSARHAIGDEATSIGTAFDEAQLFPENETDLQHALICYARSVTEKEWPALAEGSSAPETDAAYRALIAAYGAVDEPTGGTFQSAAATNSFVQIGGISTARETRLVASELDLGPLIWTVLIGAALLVVFLLFVVTLPARPLVQASLLGLVGLFTTVLLVLLMALSSPFREGTRLASPELIEENTARMVSLAPEAAERPCAFDDAGNANANANANA
AK018_055761194garK_2COG1929Glycerate 2-kinaseGTGACCCCGACGAACCAGCCCGAGCCCACGTCCGACGTCGCGGCACCGGCGGGCCCGCACGTCGTCGTCGTGCCCGACTCCTTCAAGGGCAGCCTGGACGCCGGCCAGGTCGCCGCGGCCCTGCGCGAGGGCGTGCTGGCAGCCGCCCCCGACGCCCGGGTGACCTGCCTGGCGATGGCCGACGGCGGCGAGGGCACGCTGGACGCCCTGCTGTCGACCTGGCGGACCCCGGTCCGCACCGTGACGACCTGCGACGCCGTGGGCCGACCGGCGACGGCGCGGTGGGCGACGTCGCCCGACGGGAGGGTCGGCGTCGTCGAGCTGGCCGAGGCCAGCGGGCTGCCCGCCGTGAGCGACCAGCCGTTGCAGCCGCTGCACGCCCACACCCGCGGCACCGGCGACGTCGCGGCCGCGGTGCTCGACGCCGGGGTCGAGGAGGTGCTCGTCTGCCTGGGTGGTTCGGCCTCGACCGACGGGGGTGCCGGGATCCTGACCGGTCTCGGTGCACGGCTCCTGGACGCCGAGGGCCGCGTGGTGCCTGACGGCGGCGAGGGCCTGGCCGGCGTGGCCGCGCTCGATCTCGACGGGCTGCACCCGCGGGCACGGCAGGTGCGCTGGCGTCTCGCCGTCGACGTGTCGAACCCGCTCGTCGGCGAGCTCGGCTCGGCGGCCGTGTTCGCCCCGCAGAAGGGCGCCGGGCCGGGTGAGGTCGCGTTCCTCGACGAGGCGCTGACCCGTTGGGCCAACCTGCTCGAGCGGGAGACGGGCGTCCGCGTCCACGAGCTCCCGGGCGCCGGTGCGGCGGGTGGCGTTCCGGCCGCGCTCGCTGCCGTGCTCGGCGCCGGGCTGGAGCCGGGCGCCGCGCTCGTCGCCGAGGCCGTGGGCCTGCCCGCCGTCCTCGACGACGCCGCCCTCGTGCTCACGGGGGAGGGCTCCTTCGACTCGCAGTCGGTGCGCGGCAAGGTGGCCGACGGCGTGGCGCGCGTCGCGGCCGCGTCCCCGGCCCGCCCACCGGTCGTGGTCGTGGCGGGCCAGGTGCTGCTGCCCGCCGACCAGACCCGCGCGGCCGGCATCGCGGCGGCGTTCTCCATCGCCCCGGGCCCGATCGACCTCGACGACCTGCTCGGCCGGACGGCGGGACGCCTCACCGAGGTAGCGGCATCGGTGACGAGCCTGGTGCTCGCCGCCCGCTGAMTPTNQPEPTSDVAAPAGPHVVVVPDSFKGSLDAGQVAAALREGVLAAAPDARVTCLAMADGGEGTLDALLSTWRTPVRTVTTCDAVGRPATARWATSPDGRVGVVELAEASGLPAVSDQPLQPLHAHTRGTGDVAAAVLDAGVEEVLVCLGGSASTDGGAGILTGLGARLLDAEGRVVPDGGEGLAGVAALDLDGLHPRARQVRWRLAVDVSNPLVGELGSAAVFAPQKGAGPGEVAFLDEALTRWANLLERETGVRVHELPGAGAAGGVPAALAAVLGAGLEPGAALVAEAVGLPAVLDDAALVLTGEGSFDSQSVRGKVADGVARVAAASPARPPVVVVAGQVLLPADQTRAAGIAAAFSIAPGPIDLDDLLGRTAGRLTEVAASVTSLVLAARPGPT0018175_484DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018175-garK|glxK-K00865NANA
AK018_05577486hypothetical proteinATGACCACGACGCACCGGACGTCCGGCACCGCGCAGCGCGCCGCCGCGACCTGGGAGGCTCTGTTCCGCAGCCAGGTCACCCTGATGCGGCGGTTCCAGACCGACGAGGTCTGGGTGGAGCTGACCATGCGCGAGTACGACGTGCTGTTCACGCTGTCGCGCGCCCACGACGGGATCCTGCGGCTGCGCGACCTCAACGAGAACGTGCTGCTCGCCCAGTCGTCGCTGTCCCGCATGGTGGAGCGGCTGGAGGAGCGCGGGCTGGTCACCCGGTCGGTGCCGTGCGAGGACGGCCGGGGCACGCTCGTGGCCCTGACGGACGAGGGTCGCCGGCTGCAGCGGCGCGTCGGACGGCGGCACGTGCGGGCCATGGAGCAGTACGTCGGGTCCGCGCTCGACGACGACGAGCAGGCCGAGCTGACCCGCCTGCTCGACAAGCTGCGCACCGCCCAGCCCGACATCGCGGACTGGTCCCCGCGCGGGTGAMTTTHRTSGTAQRAAATWEALFRSQVTLMRRFQTDEVWVELTMREYDVLFTLSRAHDGILRLRDLNENVLLAQSSLSRMVERLEERGLVTRSVPCEDGRGTLVALTDEGRRLQRRVGRRHVRAMEQYVGSALDDDEQAELTRLLDKLRTAQPDIADWSPRGPGPT0013155_4520DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
AK018_05578762COG0020(2Z,6E)-farnesyl diphosphate synthaseGTGCGCCTGCCCCACCCGCTGTACAGCCTGTACGAGCGACGGCTCGCCGCGTCGATGCCGAGCGCGTCCCTGCCCCGGCACGTCGGCGTCATCCTCGACGGCAACCGTCGGTGGGCCAAGTCGTTCGGCGAGACCGCCGCGACGGGTCACCGCAAGGGCGCGGACAAGATCGCGCAGTTCTTGGGGTGGGCCGAGGAGTTCGGCATCGAGGTCGTCACGCTGTGGATGCTCTCCACCGACAACCTCTCCCGCTCCGAGGACGAGCTCGCCGACCTCCTCGACATCATCTCCGACGCCGTCCGCGACCTCGCGGAGACGCGGCGCTGGCGGCTGCGCATCGTGGGTCGGCTCGACCTGCTGCCCGAGCGGCTCGTCGGGGCCGTGCGCGAGGCCGCGGCCGCGACGGCCGACGTCGACGGCCTGCACGTCAACATCGCGGTCGGGTACGGCGGCCGGCACGAGATCGCGGACGCCGTGCGTTCCTACCTCCGGGCCGAGCAGGCTCGCGGCGCCACGCTCGCCGAGCTCGCCGAACGGCTCGACGTCTCCGACATCGCCGACCACCTGTACACCAAGGGCCAGCCCGACCCCGAGCTCGTCATCCGCACCTCGGGCGAGCTGCGGGTCGGCGGCTTCCTCATGTGGCAGAGCGCGCACTCCGAGCTCTACTTCTGCGAGGCCTTCTGGCCGGACTTCCGGCGCGTGGACTTCCTGCGCGCCCTGCGAGACTTCTCCCGGCGCGAGCGCCGGCTGGGACGATAGMRLPHPLYSLYERRLAASMPSASLPRHVGVILDGNRRWAKSFGETAATGHRKGADKIAQFLGWAEEFGIEVVTLWMLSTDNLSRSEDELADLLDIISDAVRDLAETRRWRLRIVGRLDLLPERLVGAVREAAAATADVDGLHVNIAVGYGGRHEIADAVRSYLRAEQARGATLAELAERLDVSDIADHLYTKGQPDPELVIRTSGELRVGGFLMWQSAHSELYFCEAFWPDFRRVDFLRALRDFSRRERRLGRPGPT0007535_607DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007535-uppS-K12503NANA
AK018_05579792hypothetical proteinGTGGCCGGAGCCGCCCCGCACGAGCGCCAGTCCGTACCCGACCCGGCCGACGCCGACCACACCGCCTCGGACGTCGCGCGCCAGGCCGTGCACGGCGCCCGCGAGAGCGTCACCGGCGCCGTGCAGACCGTCACCGCGAGCGCCGCCACCCAGGCCCGCCGCCTCAAGCCCAAGCTGCGCGGCTGGATCCACCTGGTCACGACGCCGCTCGCCCTGGCGGCCACCATCGTGCTCGTCGTGCTCGCCGAACCGGTGGCCGGCAAGGTCGCGGCCGCGATCTTCGGGCTCAGCGCGCTCATGCTCTTCGGCACCAGCGCCGTCTACCACCGCGGGACGTGGTCGCCGCGCGTCGAGGCCGTGCTGCGACGCATGGACCACGCGAACATCTTCCTCATCATCGCCGGCACCTACACGCCGCTGGCCGTGGCCCTGCTGGACCCCGAGTCCGCCACCGTGCTGCTGTCCATCGTGTGGGGCGGCGCGATCCTCGGTCTGCTCGCGCGCGTCATCTGGATGAACGCTCCGCGCTGGGTCTACGTGCCGGTCTACGTCGCGCTCGGGTGGGTCGCGGTGGCCTACCTGGGACAGTTCGGGGCCACCGGCGGACCGGCGGTGGTGTGGCTGGTGGCCGGCGGCGGCCTCGCCTACACCCTGGGCGCCGTCGTCTACGGCACGAAGTTCCCCGACCCGTCTCCGCTCTGGTTCGGCTTCCACGAGATCTTCCACGCGCTGACGGTGGTCGGGTTCGCCTGCCACACGGTGGCGATCTACCTCGCCTGGCTCGCCGTCTGAMAGAAPHERQSVPDPADADHTASDVARQAVHGARESVTGAVQTVTASAATQARRLKPKLRGWIHLVTTPLALAATIVLVVLAEPVAGKVAAAIFGLSALMLFGTSAVYHRGTWSPRVEAVLRRMDHANIFLIIAGTYTPLAVALLDPESATVLLSIVWGGAILGLLARVIWMNAPRWVYVPVYVALGWVAVAYLGQFGATGGPAVVWLVAGGGLAYTLGAVVYGTKFPDPSPLWFGFHEIFHALTVVGFACHTVAIYLAWLAVNANANANANA
AK018_05580813ybeM_2Deaminated glutathione amidaseATGACCGTGCGGGTCACGATCGGCCAGGTGACCGTGGCGGACGACCACGAGGCCAACCGCTACATGGTCGCCGACGCCGTGGCCGAGGCCGCCCGCGTGGGCGCCGACCTGCTGGTGCTGCCCGAGTACGCCTCCGGGTACCACCGCCACGGTGTCGGGATCGAGCACGCCGAGGACCTCGAGGGGCCGTTCGTGTCCCTGCTGCGTCGGCTCGCCGGCGAGCACGGGCTCGCGATCATCGCCGGCACGACCCTGCCCGGCGCCGACCCGGCACCCGGCGAGACCCGCAAGGGTGTCAACGCCGTCGTCGCCGTGGACGCCTCCGGCGGGCTCGCCGGCGTCTACCGCAAGGTGCACCTGTACGACGCGTTCGGCACCCGGGAGTCCGACCGCCTCGAACCCGGGCCCGTCGACGCCGAACCCCTCACGCTGCGGGTCGGCGACCTGACGTTCGGGGTCATCACCTGCTACGACCTGCGCTTCCCCGAGTCGGCGCGTCGGGTGGTCGACGCCGGCGCGGACGTCGTCGTCGTGCCGGCCGCCTGGGTGTCCGGTCCGCTGAAGGCGGAGCACTGGCGCGCCCTGCTCACGGCCCGGGCGATCGAGAACACCGTGGTGGCCGTCGGGGTCGGCATGGCGGGCAAGAGCGTCACCGGGTGCTCGACGCTCGTCGGGCCGGACGGCGTCGTCGGGCTCGAGGCCGACGAGGCCCCGCAGCTGCGCACGGTCGACCTGGACCCGGAGCAGCTCGCGGCCGTGCGGCGCTCGAACCCGTCGCTCGCCAACCGGCGCTACGCCGTCGTCCCGCGGTAGMTVRVTIGQVTVADDHEANRYMVADAVAEAARVGADLLVLPEYASGYHRHGVGIEHAEDLEGPFVSLLRRLAGEHGLAIIAGTTLPGADPAPGETRKGVNAVVAVDASGGLAGVYRKVHLYDAFGTRESDRLEPGPVDAEPLTLRVGDLTFGVITCYDLRFPESARRVVDAGADVVVVPAAWVSGPLKAEHWRALLTARAIENTVVAVGVGMAGKSVTGCSTLVGPDGVVGLEADEAPQLRTVDLDPEQLAAVRRSNPSLANRRYAVVPRNANANANANA
AK018_05581387hypothetical proteinATGCCGCTGGCGCAGTTCGGCGCCCTGCTCGCCGACGTCGACCCCGCCCCCGCGCCGAGCCCCACGGCCCGCGTGCTGGAGGACTGGGAGGTCACGCCCGGGCTCGAGGGCTTCCTGGCCACGTTCGCCGTCGCCGCGGCCGCCGTCGTGCTCTTCCTGTCGTTGAGCCGGCACCTGCGCAAGGCGGATGCCAACGCCCGCGAGCTGGGCTACGACGTCCCCGAGCGCAAGGGGATCGCCGTGCGCCGGTCCGACGCCGGCACGGACGCGGACGGCACCGGCCCGGCGGGGGAGGGTGACCGGGAGGCGACGGCCTCCGCCGACGTGGGGGCGACGCCGGAGTCCCCGGACGTCGCCGGCGAGGACGACCGGCGGGGCCCCGCATGAMPLAQFGALLADVDPAPAPSPTARVLEDWEVTPGLEGFLATFAVAAAAVVLFLSLSRHLRKADANARELGYDVPERKGIAVRRSDAGTDADGTGPAGEGDREATASADVGATPESPDVAGEDDRRGPANANANANANA
AK018_05582897mca_3COG2120Mycothiol S-conjugate amidaseGTGACCGGCGAACCGCTGCGGCTCATGGCGGTGCACGCGCACCCCGACGACGAGTCGAGCAAGGGTGCGGCGACGACGGCCCGCTACGCGGCCGAGGGCGTCGACGTCCTGGTGGTCACGTGCACGGGCGGGGAGCGGGGCGACGTGCTCAACCCGTCGTTCGAGGTCCCCACCGGTCACGAGTTCGAGTCCGTCGAGGGCAAACGGGCCGTGCGCCGCCTGGAGATGGCGGCCGCCGCCGACGCGCTCGGCGTGCGTCAGACGTGGCTCGGGTTCGTCGACTCCGGGCTGCCCGAGGGCGACCCGCTGCCGCCGTTGCCGGAGGGCTGCTTCGCGCTGCTGCCGCTGGAGGAGGCCTCCGCGCCGCTGGTCGAGCTGGTCCGCGAGTTCCGGCCGCACGTGATGACCACCTACGACCCGTCGGGCGGCTACCCGCACCCGGACCACATCCGCTGCCACGAGGTCGCCTTCGAGGCGTACCACGCGGCGGGTGACGCCGGCCGGTACGTCGTCGACGGCGGTGCCGAGCCGTGGGCGCCGCTCAAGCTGTACTACAACCACGGGTTCTCGATGGCGCGCCTGCGTGCCGCGCACGAGGCCATGGAGGGAGCCGGCCTGGAGTCGCCGTTCGGGGACTGGATCGAGTCGCGCGCCGCCCGCGAGATCCCCGAGCGGACCGCGACGACCAGCGTCGACGTCGCCGCCTACTTCCCGCAGCGCGACGCGGCGCTCACCGCGCACGCCTCCCAGATCGACCCCGAGGGGTTCTTCTTCGCGGTCCCGCGCGACCTCGAGGCCGACGTCTGGCCGACCGAGGAGTTCGAGCTCGCGGACGCCCGCGTCCCCACCACCACGCCGGAGGACGACCTGTTCGCCGGCATCCGGAAGGAGTCCTGAMTGEPLRLMAVHAHPDDESSKGAATTARYAAEGVDVLVVTCTGGERGDVLNPSFEVPTGHEFESVEGKRAVRRLEMAAAADALGVRQTWLGFVDSGLPEGDPLPPLPEGCFALLPLEEASAPLVELVREFRPHVMTTYDPSGGYPHPDHIRCHEVAFEAYHAAGDAGRYVVDGGAEPWAPLKLYYNHGFSMARLRAAHEAMEGAGLESPFGDWIESRAAREIPERTATTSVDVAAYFPQRDAALTAHASQIDPEGFFFAVPRDLEADVWPTEEFELADARVPTTTPEDDLFAGIRKESNANANANANA
AK018_05583429hypothetical proteinATGACCGAGTCCTCGCCCCCCGCCGTGCCCGCGGACCGCTACGGAGCCGCGCGCCCGAGCACGGGCCGCGGTGGCGCCGGACGCCGCGGGCGCACGACCGCCGTGGTGGTCGCGCTGGTCGTGGCCGTGCTGGCGGTCGCCGGCTACACGTTCTGGCTGCAGCAGGACGATCCCGTCGAGTACGACATGGTCGGGTTCGACGTGGTGGACGCCGAGACCGTCGAGGCCTCGTTCCAGGTGCACATGGCGCCCGACACGACGGCGGTGTGCACCGTCGAGGCGCTGGCGCCCAGCTACGCGCAGGTCGGCACGGTGGACGTGACCGTGGGTCCCGCCGAGACCAGGACGTCCGCCTACGAGGTCACGATCGGCACCTCCCAGGAGGCGACGTCGGCCGTGGTGGCCCGCTGCGCCGCCGTCGACGGCTGAMTESSPPAVPADRYGAARPSTGRGGAGRRGRTTAVVVALVVAVLAVAGYTFWLQQDDPVEYDMVGFDVVDAETVEASFQVHMAPDTTAVCTVEALAPSYAQVGTVDVTVGPAETRTSAYEVTIGTSQEATSAVVARCAAVDGNANANANANA
AK018_05584483greA_2COG0782Transcription elongation factor GreAGTGACCGAGAGCAACGTCACCTGGCTCACCCAGGAGGCTCACGACCGGCTGACGGCCGAGCTGGAGCACCTCTCCGGCCCCGCCCGCGCCGAGATCGCCGAGCGCATCGCTGCCGCCCGCGACGAGGGTGACCTCAAGGAGAACGGCGGCTACCACGCCGCCCGCGAGGAGCAGGCGAAGAACGAGGCCCGCATCCGCGAGCTGACCGAGAAGCTGCGCTACGTGGCGGTCGGCAGCCCGGCCGACGACGGCACCGTCGAGGCCGGCATGGTCGTCACCGCGTCGGTGGCCGGGAACGAGATGACGTTCCTGCTCGGGTCGCGCGAGATCGCCGGCACCACGGACATGGACGTCTACTCGCCCACGTCGCCGCTGGGTGCCGCCATCGACGGCCACCAGGTCGGGGACAAGGTCAGCTACACCGCGCCGAACGGCCGCGAGATCCCGGTCGAGGTCCTCAAGGCCACCCCGTTCTCCGGCTGAMTESNVTWLTQEAHDRLTAELEHLSGPARAEIAERIAAARDEGDLKENGGYHAAREEQAKNEARIRELTEKLRYVAVGSPADDGTVEAGMVVTASVAGNEMTFLLGSREIAGTTDMDVYSPTSPLGAAIDGHQVGDKVSYTAPNGREIPVEVLKATPFSGPGPT0030495_1540PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TRANSCRIPTIONAL_CONTROLPUTATIVE-TRANSCRIPTIONAL_CONTROL-1,PGPT0030495-greA-K03624
AK018_05585513ectA_2L-2,4-diaminobutyric acid acetyltransferaseGTGCCCGGCGGAGCGACGCCCGGGCACGATTCCGTCGACCTCCAGATCCGACCGCCCGCCCTCGCCGACGGTGGCGAGATGTGGCGGGTCGCCCGCGACTCGGGCAGCCTCGACCTCAACTCCTCGTACAGCTACCTGCTGCTCGCGGACCACTTCTCGGACACCTGCCGCGTCGCCGTCCTGGACGGCCGCGTCGTCGGCTTCCTCAGCGGTTACCTCCTGCCCCGCGACCCCAGCCGCTTCTTCCTGTGGCAGGTCGCCGTGGACGACGCCGCCCGCGGCCACCGTGTGGCCGGCCGGCTCGTCGACTCGGTCATCGACGGGCTGCCCGGGGTAGACTCGTTGGTGACCACGGTGACCGAGGACAACACGTCCTCCCGACGAGTCTTCCAGCGCTGGGCCGCCGAGCGCGGAGCCACGCTCTCGGAGGTGACCGGTTTCGAGGCGGAGCACTTCCCCGACGGCCACGAGGCCGAACCACTGCTCGTCATCGAGGGCATCCGCCGTTCCTGAMPGGATPGHDSVDLQIRPPALADGGEMWRVARDSGSLDLNSSYSYLLLADHFSDTCRVAVLDGRVVGFLSGYLLPRDPSRFFLWQVAVDDAARGHRVAGRLVDSVIDGLPGVDSLVTTVTEDNTSSRRVFQRWAAERGATLSEVTGFEAEHFPDGHEAEPLLVIEGIRRSPGPT0014055_73DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014055-ectA-K06718NANA
AK018_055861296ectB_4Diaminobutyrate--2-oxoglutarate transaminaseGTGACAACCTTGACCCCCCCGAACGACGCGTCGACCACCGAGGACCCGACCGGCTTCACCGCCCTCGAGTCCGGGGTCCGCAGTTACTCGCGCGCCTGGCCGGTCGTGTTCGACCGTGCGGTCGGTGCCACCGTCTACACCGAGGACGGCGACGCCTACCTGGACTTCTTCGCCGGCGCCGGGTCCCTCAACTACGGGCACAACAACCCCGTGCTGAAGAAGGTCCTGATCGACTACCTCGCCGACGACCGCATGGTGCACTCGCTCGACATGTTCACCACGGCCCGTCGCGACTTCCTCGAGACGTTCCACTCGCTGATCCTGGAGCCGCGCGGGCTCGACCACAAGGTCGTCTTCCCCGGCCCCGGTGGCGCGAACTCCGTCGAGGCCGCGCTGAAGCTGGCCCGCAAGGTCACCGGTCGCGAGTCGGTCATCAACTTCACCAACGCGTTCCACGGCATGACGCTCGGCGCACTGTCCGTCACCGGCAACTCGATGAAGCGTGGCGGTGCCGGCATCCCGCTCGTGCACGCCACGCCCATGCCGTACGACGACTACTTCGACGGCGACGTGGACGACTTCCAGTACTTCCGGCGGATGCTCGAGGACGGCGGTTCCGGCCTCAACGAGCCGGCCGCCGTCATCGTCGAGACGGTGCAGGGCGAGGGCGGCATCAACGCCGCGCGCGCCGAATGGCTGCGCAGCCTCGCCGAGCTCTGCAAGGAGCACGGCATCCTGCTCATCCTCGACGACATCCAGATGGGCTGCGGCCGCACGGGCGGGTTCTTCTCGTTCGAGGAGGCCGGCATCAACCCGGACATCATCTGCCTGTCGAAGTCGATCTCCGGCTACGGCCTGCCGATGGCCATCACCCTGGTCCGTCCCGAGCTGGACGTCTGGGAGCCCGGCGAGCACAACGGCACCTTCCGCGGTCTCGCCCCGGCGTTCGCCACGGCGGCCGAGGCCATCCGCACCTACTGGTCGGACGACACGCTCGAGAAGGAGATCCTCGCCAAGGGCCTGCTGATCGAGGCGCACTTCAACGGTCTCGTGTCGCGCTACCCGGAGCTCGGTCTCGTGAACAAGGGGCGCGGCCTGGCCCGCGGCCTGCAGATGCCCTCGGGCGAGCTCGCCGACAAGGTGACCACCGGCGCGTTCGAGCGCGGGCTGCTCGTCGAGACCTCCGGTCCCGAGAGCGAGGTCGTCAAGCTCCTGCCGCCGCTGACCATCACCGAGGACGAGCTCCGCAAGGGCCTGGCCATCATCGACGAGGCGCTCGCCGCCGCCGTCGCCTGAMTTLTPPNDASTTEDPTGFTALESGVRSYSRAWPVVFDRAVGATVYTEDGDAYLDFFAGAGSLNYGHNNPVLKKVLIDYLADDRMVHSLDMFTTARRDFLETFHSLILEPRGLDHKVVFPGPGGANSVEAALKLARKVTGRESVINFTNAFHGMTLGALSVTGNSMKRGGAGIPLVHATPMPYDDYFDGDVDDFQYFRRMLEDGGSGLNEPAAVIVETVQGEGGINAARAEWLRSLAELCKEHGILLILDDIQMGCGRTGGFFSFEEAGINPDIICLSKSISGYGLPMAITLVRPELDVWEPGEHNGTFRGLAPAFATAAEAIRTYWSDDTLEKEILAKGLLIEAHFNGLVSRYPELGLVNKGRGLARGLQMPSGELADKVTTGAFERGLLVETSGPESEVVKLLPPLTITEDELRKGLAIIDEALAAAVAPGPT0014050_948DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836NANA
AK018_05587423ectC_2L-ectoine synthaseATGATCGTCCGCAGCCTCGACGAGATCACCGACACCGAAGCCGACATCAAGAGCGAGAACTGGCGCTCCAAGCGCATCATCCTCGCCAAGGAGGGTGTCGGGTTCTCGGTGCACGAGACCACGCTGTACGCGGGGACCGACAACTTCTTCTGGTACGCCAACCACATCGAGGCCGTCTTCATCACGTCCGGCGAGGGCGAGATCGAGGACCTGGCCACCGGTGAGGTGCACGAGCTCAAGCCGGGCACGCTGTACCTGCTCAACGACCACGACAAGCACAAGGTGCGGCCCAAGACCGACATCACCTGCGTGTGCGTGTTCAACCCGCCGGTCACCGGCCGCGAGGTGCACGACGAGAACGGCGTGTACCCGCTGATCACCGAGCCGGAGACCAGCACCGAGCCGCAGGCTGCGGCCGGCTGAMIVRSLDEITDTEADIKSENWRSKRIILAKEGVGFSVHETTLYAGTDNFFWYANHIEAVFITSGEGEIEDLATGEVHELKPGTLYLLNDHDKHKVRPKTDITCVCVFNPPVTGREVHDENGVYPLITEPETSTEPQAAAGPGPT0014060_162DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014060-ectC-K06720NANA
AK018_055881221tdcB_3COG1171L-threonine ammonia-lyaseGTGAATCTTCCGACCCCGCTGGACCGCGTGACGCTCGACGACGTCAGGGCTGCCGCCACCCTGCTGGAGCCGGTGGTGACACGGACACCCGTGCTGCCGTTCCGGGCGCTGACGCAGCTCACGGGTACCGACGTCGTCCTCAAGTGCGAGAACCTCCAACGCGCCGGGTCGTTCAAGATCCGTGGCGCCTACACGCGCCTCGCCCGGCTGACGCCCGAGGAGCAGCAGCGCGGCGTCATCGCCGCCTCGGCCGGCAACCACGCCCAGGGCGTGGCCCTCGCCGCCCAGCAGCTCGACATCCCCGCCGTCGTGTACATGCCGCAGGGAGCCTCGGTGCCCAAGTTGCAGGCCACCCGGGGATACGGCGCCGAGGTGCGCCAGGTCGGCACCAGCGTCGACGAGGCGCTCGCCGCCGCACGCTCCGAGTCGGCGCGCACCGGCCAGGTCCTCGTGCACCCGTTCGACCACGCCGACGTCGTGGCCGGGCAGGGGACCGTGGCGCTGGAGATCCTCGAGCAGGTGCCCGACGTCGGCACGGTCGTCGTGCCGCTCGGCGGCGGTGGCCTCGTGGCCGGGATCGCCACGGTGCTCGCCGAGGCGGCGCCGCACGTCCGCGTCGTCGGCGTCCAGGCGGCGTCCGCTGCCGCCTACCCGGCCTCGCTCGCGGCCGGCAAGCCGGTGCCCGGTCAGCTCGGGTCGACGATGGCCGACGGGATCGCCGTCGGGACGCCCGGCGAGGTCCCCTTCGAGGTGCTGCACCGCCTCGGCGTCGAGGTGCGCACCGTGTCCGAGGCGGAGATCTCCCGGGCCCTGCTGCTCGTCGCGGAGCGTGCGAAGCAGGTGGTCGAGCCCGCCGGTGTCGCCGCCGTCGCCGCCGTGGTCGCCGCGCAGGGCCTGTTCGCGGGGACGGTCGTACCCGTCCTGACCGGAGGCAACATCGACCCGCTGCTCCTGCAGCGCGTCATCCAGCACGGTCTGGTGGCCGCCGGGCGCTACCTGCAGATCTCGGTCCGGCTCGACGACGAGCCCGGGGCCCTGGCCTCCCTGCTGGACTCGGTCGCCGCGGCCGAGGGCAACATCGTGCGTGTCGACCACCGCCGCACCGACACCACGCTCGAGGTGTCCGAGGTGCTGGTCACCCTGCAGCTCGAGACCGAGGGGCCGGACCACTGCGCCCGCGTGCTGGAGCGCCTGCGGCGTGACGGCTACCACCTGACCTGAMNLPTPLDRVTLDDVRAAATLLEPVVTRTPVLPFRALTQLTGTDVVLKCENLQRAGSFKIRGAYTRLARLTPEEQQRGVIAASAGNHAQGVALAAQQLDIPAVVYMPQGASVPKLQATRGYGAEVRQVGTSVDEALAAARSESARTGQVLVHPFDHADVVAGQGTVALEILEQVPDVGTVVVPLGGGGLVAGIATVLAEAAPHVRVVGVQAASAAAYPASLAAGKPVPGQLGSTMADGIAVGTPGEVPFEVLHRLGVEVRTVSEAEISRALLLVAERAKQVVEPAGVAAVAAVVAAQGLFAGTVVPVLTGGNIDPLLLQRVIQHGLVAAGRYLQISVRLDDEPGALASLLDSVAAAEGNIVRVDHRRTDTTLEVSEVLVTLQLETEGPDHCARVLERLRRDGYHLTPGPT0001960_4066DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
AK018_055891263COG0628Putative transport proteinGTGAACAGCGAGCCGGGTCGGATCAGCGGGGCGGACACCGTCCCGCTCAGCGTGCGGGGCGCGGCCGCGTGGTCGTGGCGGCTGCTGCTCATCGCCGCCGGGGTGGCGGGGCTGGTGTGGCTGCTCAGCCAGCTCAAGACCATCGCCGTCCCGGTCGCGATCGCCCTGCTCATCACCGTCCTGCTGCGGCCCGTGCGCGTCACCCTCCAGCGCTGGGGCGTCAACCGGGGCGTGGCGAGCGCGATCTCGATCCTCGGGCTGATCGCGTTCGTCACGGGCCTGATCGTCCTCGCCGGGCAGTCGATCGTCTCCGGGTTCCAGGACCTGTGGGACCAGGCCGTCGCCGGGTTCGAGGAGTTCCTCGCGTGGCTGTCCGACGGCCCGCTCGGACTGGACACCGCCACGCTGGAGAACGTCGGCCAGCAGGCCCAGGACTGGGCCTCCGACCAGAGCTCCACGCTCATCACCGGGGCGCTCGGTGCGGCGACGACCGTCGGCCACGTCCTCGTCGGCATCATCATCGCGATCTTCTGCCTGATCTTCTTCCTGCAGGACGGCCGCAGCATCTGGACCTGGGTGGTCAACCTGCTGCCGGTCGCCGCCCGCGAGACCGTGCACCAGGCCGGCCGGCGCGGCATGGTCACCCTGTCGTCCTACGTGCGCACCCAGATCCTCGTGGCCCTCGTCGACGCGATCGGCATCGGGGTCGGTGCGGCGTTCTTCGTGCCCGCACTGGCCATCCCGATCGGCATCCTCGTCTTCGTCGGCTCGTTCATCCCCATCCTGGGCGCCATCGTCACCGGCGCCATCGCCACCGCCGTGGTGCTGGTCGCCGAGGGCTGGATCGCCGCGCTGATCATGCTCGGCATCGTCCTGTTCGTCCAGCAGGCCGAGAGCCACATCCTGCAACCGTTCCTCATGGGTCACGCCGTCTCGCTGCACCCCGTCGCCGTCGTGCTCGTGGTCGCCGCCGGGAGCCTGGCGGCAGGCCTGATCGGGGCGCTGTTCGCCGTGCCGCTCGCCGCCGTCCTGAACACCGTCATCCAGTACCTCCACGGCCACGACAAGTTCCCCGAGCTCGGCACCGACGACCACGTGCCGCTGCTGCGACGGCGACCCTCGTTCGCCGACCTGCCGGGCACCCTGCTGTGGACCCACCGCTCCGGCTCGGACGACGCCGCAGCCCCCGGGGCCGCGGCGCCCGGCGCCGACGCCGGACGCGGCGAGGACCCGCGGACCCGCGGCGAGACCCCGGACCGCTGAMNSEPGRISGADTVPLSVRGAAAWSWRLLLIAAGVAGLVWLLSQLKTIAVPVAIALLITVLLRPVRVTLQRWGVNRGVASAISILGLIAFVTGLIVLAGQSIVSGFQDLWDQAVAGFEEFLAWLSDGPLGLDTATLENVGQQAQDWASDQSSTLITGALGAATTVGHVLVGIIIAIFCLIFFLQDGRSIWTWVVNLLPVAARETVHQAGRRGMVTLSSYVRTQILVALVDAIGIGVGAAFFVPALAIPIGILVFVGSFIPILGAIVTGAIATAVVLVAEGWIAALIMLGIVLFVQQAESHILQPFLMGHAVSLHPVAVVLVVAAGSLAAGLIGALFAVPLAAVLNTVIQYLHGHDKFPELGTDDHVPLLRRRPSFADLPGTLLWTHRSGSDDAAAPGAAAPGADAGRGEDPRTRGETPDRNANANANANA
AK018_055902061hypothetical proteinGTGGCCGCGCTGGCCCGACTCGCCGCGAGAGTCCGGGAACCGCATCTCCGCCGACGGCTACGGTTCGGCGTCGTCCGTTGGGACGACGTACCTGGTCTGGTGCCGACCGTCCTCGACGCTGCCGTCGAAGCCCTGGACCTGGGTAGGCCGTCGAGCGCCTACGACCTCGCGCGCGCTGCGGTCGCCGTCGTGCCGCAGAGCCGCCAGGCGCACCGGACGCTCGCGCACGTCCACGGCACGCGAGGCGACTGGGAAGAAGCCCGCCGCGAGTGGGCGGAGGCCATGCATCACCGCCCCGGCGCCGATGCCTCGGCACGTGAACGTGTCGCCGTGGAACGGCGGTTGTCTGCCGTCCGGGACGCGGTCCGCCTGCTCGCTGCGAGCGACACCGGTGCGGCGGCCGGGCCTGCCTCGGAGGGGCTGGCCGGCCTCTCTGCCGCCGCTGAGCGAATCAGCGAAGGTCCCAGGTTCGCCATCGAGACAGAGCGTTGGCTCGCCGCGACGATCACCGACGCACGATGCGTTCCTCCGGAGATGGCCACGGCCTACGCCGCGACGCGACAGAGCAAGGAGCGGACCCCCTCCGAGGTCTCACGAGCCATCGAGGTGGCTCGCGGACGGAAGGACGACGCGGAGTACGACGAGGCGTTGGCCGTGCTGGCCGGCGTCACCGACGTCCCGGGGGTCCTCGTCACGGAGTTCGTCTTCCTCGCGGCCGAGCTGCTGCGGGCTCGGAGCCACTACGACGCGGCGCGGTGCGCCCTACGGCTCGCCGAGCGCGACCGTTCCACGACGGCTCGCGCGGCGACCGCTGCCGCGCAGGCCGCGTGGATCCAGCACGACTACGGCGGCGGGATCATCGAGGCTCGACGCGCGCTGGAGTCCGAGCCCGGCCACGCCGTCGCCCCGTTCACGCTGCGCAGGCTCGAGAACCCGGACACCCCGACACCCGGAGACGCCCCGTCGGGCGGGATCGGCCACGTCGCGTTCTACGCGGCGCGCGGGGGCAACTTCGGCGACCTCGCGCTGCCCGTCGCCGTCCGGCAGGCCGTCGAGTCGGCCACGGGCACGGTCGCCTGGCTGCCGTTCCACGCCCACCAGGTGTTCGACGGCCCACGGCTCGAGCTCGCCAACGCACAACGCGCTCTCGTGGTCGGCGGCGGCGGGCTGTTCCTCCCCGACACCTCACCGAACGGGAACAGCGGCTGGCAGTGGAACGTGCCCCGCCCGTCCCTCAACGCTCTCTCCGTGCCGCTGCACGTGTTCGCGGTCGGCTACAACCTCTTCAGAGGGCAGTCCTATCCCGGTGGGCTTTTCGAACCCAATCTCGTCGCGCTCGCCGAGCGAGCGACGTCCGTCGGCCTGCGCAACCACGGCTCCATCGCGCGCGTGCGTGACCTGCTGCCGACCGAACTGCACGACAAGGTGCACTTCGTCCCGTGCCCCACCACGGTGCTGGAGCACATCCACCCCGGCCTACCCCCGGCCGAGAGCGGGACCGGCCTGGTCCTCGTCAATGCGGCGTTCGATCGGAGCGCGCGCCGATTCGCGGACTCGTACGCCCAGTTCCTCGACCAGACCGCCCGCTACATCATCGCGGTCAGAGCCGCAGGGGCGTCCGTCGAGCTCGTCGCCCACCTGCCCGGCGACGAGAAGCTGGGCAAGGACCTCGCCGACGAGCACGGGATCGACGTCGAGATCCGTCGTCTCTACCCTTTGACGCCCGACGAGGGCTACGCCGTCTACCGGCGCGCGAGCGTCGTCGTCGGCATGCGAGGCCACGCCACGATGATCCCCTTCGGGCTCGGGACCCCGGTGCTGAGCCTCGTCTCCCATCCCAAGATGCGCTTCTTCCTCGAAGACCTCGACCGGACCGAATGGGGCTTCGACGTGCACGACGAGAACTTCGTCGCCGCCCTGACGGATCGCACGCTCGACATCCTCGCGAACGAGGACGTCTACCGGCACGACGTGGCCTCGCTGCAGCAGATGCTCCTGACCCACGTCAACGCCGCGGCGGCGCGCGTCGCGGGCGGCGCCGCGGTGGGCGGCATCGGATGAMAALARLAARVREPHLRRRLRFGVVRWDDVPGLVPTVLDAAVEALDLGRPSSAYDLARAAVAVVPQSRQAHRTLAHVHGTRGDWEEARREWAEAMHHRPGADASARERVAVERRLSAVRDAVRLLAASDTGAAAGPASEGLAGLSAAAERISEGPRFAIETERWLAATITDARCVPPEMATAYAATRQSKERTPSEVSRAIEVARGRKDDAEYDEALAVLAGVTDVPGVLVTEFVFLAAELLRARSHYDAARCALRLAERDRSTTARAATAAAQAAWIQHDYGGGIIEARRALESEPGHAVAPFTLRRLENPDTPTPGDAPSGGIGHVAFYAARGGNFGDLALPVAVRQAVESATGTVAWLPFHAHQVFDGPRLELANAQRALVVGGGGLFLPDTSPNGNSGWQWNVPRPSLNALSVPLHVFAVGYNLFRGQSYPGGLFEPNLVALAERATSVGLRNHGSIARVRDLLPTELHDKVHFVPCPTTVLEHIHPGLPPAESGTGLVLVNAAFDRSARRFADSYAQFLDQTARYIIAVRAAGASVELVAHLPGDEKLGKDLADEHGIDVEIRRLYPLTPDEGYAVYRRASVVVGMRGHATMIPFGLGTPVLSLVSHPKMRFFLEDLDRTEWGFDVHDENFVAALTDRTLDILANEDVYRHDVASLQQMLLTHVNAAAARVAGGAAVGGIGNANANANANA
AK018_055911533gtfAUDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase GtfA subunitATGAGGAGCAGACGGGCCGACACCGACGTCGTGATGTTCGTCCGCACACTCGCTCCGGGCATCGCAGGTGGTACGAGAGCGGTGCTGCAGCGAGCAGCGGCCTTTGCAGACGCGGGATATCAGGTCTCGATCGTGGCGACCCAGGTGGTTCCTGACGACGGCGCCTGGGCGCGGAACGAAGGGCTCCTGCATCCTCGGGCTCGGCTCCTGCAGCTGTGGCGGGACGCGCCCCGGGCCGTGGATCGCCGTCCGGCGAGTTCCTCGGCGCCGGTCACCCTGCCACGGATCCCGGACGGCGAAGGAGTCAGCCGCAGGCGCCGGACGACCCCGGACGAGACTCGGCTCGAGACGTGGGTCGACGGTCGGCGCCGGACGCGCGAACACACCGATGCCCGGACCGGTTCGACGACCAAGTTCTCGGTGTTCCGAGAGGACGGCACGCTGGCCACCAACTGGTTCCTGGTCGACGACGTGCCGGTCGCCTACGACGACGTCGACGAACGCCGGGGGCTTTTGGTCCGCCACTTCTTCGTCGATGGTCGTGACGAGTGGTTGGTCAGCGACGTGGCCGGCACGGTCGGTACCGGATCGGCGACGCTGCGCGCCGACTCCTGGCCACGCGCTGGTATGGCCCCACCGTCGGACTACGCCTCGGTCATCGCCGCATGGCTCGACGACGAGTTCGCCACGTCCTCGAGCCTCGTGGTGTTCGCCGACGGTGAGAACGTCTGGCAGCGCACGCTGCGCCACATGCGGCACCCGAGGGTGCGCGGCGTCTCCGTCCTGCACAACTCCCACCTCGATGCACCGTACGACGAGTCCGCGCCCACCAAGAAACACTGGGCTGGCTTCTTCGACGACGTCACAAACGTCGACACGATGGTGTGCCTCACCGATCGGCAGCGCGAACACCTTCTGCACCGGTATCCCGGTCTACCGCTGCGCGTGCTCCGACACGCGGCGAGCCGGCCCGCGGTGGGCGCAGTTCGTCGCGACCCGCGTACCGTCGTCTTCGTCGGCCGCCTCGCCGGACAGAAGCAGCTCGACCATCTGGTGCGCGCGTTCGCTCTGGTCCTTGAGCGAGTTCCCGACGCCGTCCTCGACGTCTACGGGGCCGGCCCGGAAGCGACCTCCGTGCGAGAGCATGCGAACCGGCTCGGCATCACCGAGCGGGTCCGCATGCGTGGGCTGACCGACAGCCCGCTGGAGGCCTTCGCCTCCGCGCGGGTGGCTGCGATGAGCTCCTTCCACGAAGGGCTGCCTCTCACCATCACCGAAGCGATGTCGGTCGGCACCCCCTACGTCGCCTACGACTGCCACTACGGTCCCGCAGAACTGATCCGGGACGGCATCGATGGATTCGTCGTCCCACGCAACGATGTTGAGGCCTTGGCCGGTCGCCTCGTCGAGATCCTGCAGGACGACAGGCTCGCCCGCCGGACGAGCCGCCGCGCACGCCGAGTGGTCAGACGGTTCTCGACCCGGCGGTACCGTCGTGCCTGGTTGACCTTGCTCGACGAGGTGGCCCGCTGAMRSRRADTDVVMFVRTLAPGIAGGTRAVLQRAAAFADAGYQVSIVATQVVPDDGAWARNEGLLHPRARLLQLWRDAPRAVDRRPASSSAPVTLPRIPDGEGVSRRRRTTPDETRLETWVDGRRRTREHTDARTGSTTKFSVFREDGTLATNWFLVDDVPVAYDDVDERRGLLVRHFFVDGRDEWLVSDVAGTVGTGSATLRADSWPRAGMAPPSDYASVIAAWLDDEFATSSSLVVFADGENVWQRTLRHMRHPRVRGVSVLHNSHLDAPYDESAPTKKHWAGFFDDVTNVDTMVCLTDRQREHLLHRYPGLPLRVLRHAASRPAVGAVRRDPRTVVFVGRLAGQKQLDHLVRAFALVLERVPDAVLDVYGAGPEATSVREHANRLGITERVRMRGLTDSPLEAFASARVAAMSSFHEGLPLTITEAMSVGTPYVAYDCHYGPAELIRDGIDGFVVPRNDVEALAGRLVEILQDDRLARRTSRRARRVVRRFSTRRYRRAWLTLLDEVARPGPT0026690_77DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0026690-tagE-K00712NANA
AK018_055922733hypothetical proteinATGTTCACCCACCGTCGGCCCTCCCGCGTGGACGGCCTCCTGCGACGTCTGGCCCACTCTGCGGCACGTCGCTCCGGAACGCCGCTGGTCGACAAGGCCACGGTCGATGCCGCCGAGGCGCGAGCCGCCGAGGCGGAGGCGGAGCTCAAGGCGCTGCGGCGTGAGTCGGCGCGCTACGTCCGCTGGTATCGGTACCTCTTCGCCGCCGACCGGGGGGTGTCGGTCGATGCTCTCGACCCGAGACACGCTGCGCCGGTCTTCGACAACGTCGCCGCGGTCCGTGAGTCCTTGTACGACGCCGCGTTCGCCCGCCAGCTCCGGCGGGGCGACTCCGTGCCCGCTGCCGCCGTGGCGACGATCCGCCCCCTCCTCGGGAAGTGGAGCCGGATCCCCGACGCCCGGTCGTTCTGTCACGGGTTGCAGGCGCAGCCTGAGACACGTTCCGCAGGCGACATCGCCGGCGCGCTCCTTGCCCACCGTTCCGACCTCTACGATCTGGCCTGGGAACTGTTCGGGAGGGTGCCGGCGGACTTGGTGGCCGAGCTCGCACCGGTGGAGTTCGCGCGGACCTCGCTGCTGGTGGAGAAACCGTCCGCCCTCGACGACGTCGCCAAGTGGGTCGACGACGGCCGCGTCGGTGGCGCCGACGACCTGATCGGCGTGGCGGAGGTGCTGTTCGCCGCCAAGCAGTTCGCCGCAGCGGCACAGGCGGCGGACAAGGCCTTGGCGTGCGACCTGGACGACGTCACGCGCCGTCGGACCGCTCTGCTGCGGCAGTGGACCGAGAGGGGTCTCGCCTCGGCGGCCGCGCCCGAGGTCCCCGCAGGCTCCGTCTCCTTCGGCGTGATCGACTACAAGCAGCCCGACGAGATCGCGACCTCGTCCAACCTCGGCGACTACGTCCAGACCATCGCCAGCCTGGGTCACCTGGTGCGCCATGCGGGCCTCCGGTTCACTGGCGATCCGGACCTGGTCGAGGTGGTCGAAGATCTGCACGGGCGGGTGAGGCCGGAGCTCCGCGTCGATGGTCCTGGTGCTGCCGTCCATCTCACGACCTTCAACCGTGACGGATCGAGCCTCGATGCCGTTCCCGAGCCGACCTGGGCGATCGCGTTCGGGTGGTACATGCAGAACTCGTTCGGCCTGCACTACGACTTCCCGTTCCACCCGAACATCAGGCCTTTGTTCATCTCGTTCCACGTGAACCGGCCCGCGATGCTGACCGATGAGGCCGTGGAGTACCTTCGGGCTCATGGCCCGATCGGCTGCCGGGACTGGAACACAGTCTACCTCTTGCTCAACCGCGGGGTCCCGGCCTTCTTCTCGGGGTGCCTCACCACGACGACCAGCACCGTCTTCCCGCACGACGCGCCAGAGATCGCGGACGACGCACCGACCGTGTACGTCGACACCAAGGCTCCCGTCGACGGCGCCGAGACGCTGACGCAGGCGCGTGAGGACGTGCGGTGGCAGGCGATCGCTCCGAGCATGCGGGAGGCGCTCGGTCTGCTGGAGCGCTACCGCACCGACTTCGGTCGCGTGGTCACGTCGCGGCTGCACTGCTACCTGCCGTCGTGGTCCATCGGCGCGAACGTGGAGTTCACGCCGAAGAACCGGGCCGACGTCCGCTTCGCCGGACTCCTCGACGCGGACGAGTCCGACCTGCGCGCCATGCAGGAGCGCATCCGTGACCTGCTGGCTCCGGTAGTCGGGCAGCTGCTGCGAGGCGCCCCCGAGGACACCGTCTACGCCGAGTGGCGCCGGGTCTGCCAGCCCGAGGTCGACAAGGCGCGGAGGGCGTTCGAACGCCGCGCGGTCGAGCTCCCGCTGTCCTTCGACGCGGCCGAGGCATGCCGGACGGCGCGCTCGTCACGCGTGGTCGTCGAAGCGACGAGTCCACGTGAGGGCGAGCGGATCACCGTGGCGGTCGCGCTGGACGCGAACCTCAAGCAGCAGCTGGAGGTCGTCGTCGGAGGGCTCGTGCACAACAGCACCCGTCCGCTGCACGTGGTGGCCCTCACGCGCGACCACACCACGGAGGACCACCAGCGGCTCGCGCTGCTCTTCCCCGAGGTCACCTTCGAGTGGGTCGCCTGTGACGACATCGACTATGGCCCGGTTCTCGGGATGTTGTCGCACATCACGGTCTCCACGATGGACCGGTTGTTGCTGCCGGAGCTCTTGCCGGACGTCGACCGTGTCCTCTACCACGACATCGACGCACTCGCGGTGGCGGACGTCGCGCCCCTCTTCGACGTCCAGCTCGACGGCGCACCGCTGGCAGCCCGGTCGTCCGTCGGGCACGGCGTGCGATCCGGGCTCGGGCAGATCCTCAAGTCCGGTCGTCGTCTCAGTGAGAGCCCTGAGGCCGCGAACGAGTTCCTGCGCCACATGTACCGGCGCCACCCTGGCGACTTTCGTGCGTTCAACGCCGGCATCCTCGTGATGGACCTGGCGGTGATGCGCGCGGACCGCTTCACCGAGCTGTTCGTGCCGTTCGTCGAGCACTACGGGCTCAACGATCAGGAGCTGCTGAACGCCTACGCCGGCTCCCGCTACCACGAGCTGGAACCGGAGTGGAACAACTGGCCGTCGCAGGAGGTCGTCACCGATCCGCGGATCATCCACTGGGCCGGTCACCTGAAGCCATGGGACGCCTCACGGTACGTCGCTCTCCGTCAGTACTGGGACGATGCAGCGGTCGAGGTCGAGGAGCGTCGCAGGGGCAGCTGAMFTHRRPSRVDGLLRRLAHSAARRSGTPLVDKATVDAAEARAAEAEAELKALRRESARYVRWYRYLFAADRGVSVDALDPRHAAPVFDNVAAVRESLYDAAFARQLRRGDSVPAAAVATIRPLLGKWSRIPDARSFCHGLQAQPETRSAGDIAGALLAHRSDLYDLAWELFGRVPADLVAELAPVEFARTSLLVEKPSALDDVAKWVDDGRVGGADDLIGVAEVLFAAKQFAAAAQAADKALACDLDDVTRRRTALLRQWTERGLASAAAPEVPAGSVSFGVIDYKQPDEIATSSNLGDYVQTIASLGHLVRHAGLRFTGDPDLVEVVEDLHGRVRPELRVDGPGAAVHLTTFNRDGSSLDAVPEPTWAIAFGWYMQNSFGLHYDFPFHPNIRPLFISFHVNRPAMLTDEAVEYLRAHGPIGCRDWNTVYLLLNRGVPAFFSGCLTTTTSTVFPHDAPEIADDAPTVYVDTKAPVDGAETLTQAREDVRWQAIAPSMREALGLLERYRTDFGRVVTSRLHCYLPSWSIGANVEFTPKNRADVRFAGLLDADESDLRAMQERIRDLLAPVVGQLLRGAPEDTVYAEWRRVCQPEVDKARRAFERRAVELPLSFDAAEACRTARSSRVVVEATSPREGERITVAVALDANLKQQLEVVVGGLVHNSTRPLHVVALTRDHTTEDHQRLALLFPEVTFEWVACDDIDYGPVLGMLSHITVSTMDRLLLPELLPDVDRVLYHDIDALAVADVAPLFDVQLDGAPLAARSSVGHGVRSGLGQILKSGRRLSESPEAANEFLRHMYRRHPGDFRAFNAGILVMDLAVMRADRFTELFVPFVEHYGLNDQELLNAYAGSRYHELEPEWNNWPSQEVVTDPRIIHWAGHLKPWDASRYVALRQYWDDAAVEVEERRRGSNANANANANA
AK018_05593621hypothetical proteinATGGCGACCCCATCGGACGACCCCCTCCTGCTCCCTGACGCCGCAGCCTGGCGATCCTGGCTCGACGACCACGAGGACTCCGCGCACGGCGGCGTGTGGCTCGTGCTCGCCCGCAAGGGGCGTGACGACGCGCCCACCACGCTGCGACGCGACGAAGCGCTCGAGGAGGCCCTGTGCAGCGGCTGGATCGACGGCCAGGCACGACGCCGTGACACCGACACGACGCTGCAGCGTTTCAGCCCGCGGCGCCCGCGCAGCACCTGGTCCCTGCGCAACCGCGAGATTGTGGGCCGGCTCGTCGACCAGGGGCGCATGCGCCCCCGCGGGCAGGCCGAGATCGACCGCGCCCGGCAGGACGGCCGGTGGGACGCCGCCTACGCCGGCCCCGCCTCCATCGAGATCCCGCCCGAGCTGGCCGCCGTGCTCGCCGACAGCCCGCGGGCGACCGCCGCGTGGGACCGGCTCACGGCACGCAACCGGTACGCGATCCTGCACCGCCTCGTGACCCTGCGCACCGACGACGCCCGCGTGCGCAACGCCGCGCGCTTCGTCGAGATGCTCGAGCGGGGCGAGACGCCCTACCCGCAGCGCCGGCGGTTGCACGGCGAGGCGGAGGTATGAMATPSDDPLLLPDAAAWRSWLDDHEDSAHGGVWLVLARKGRDDAPTTLRRDEALEEALCSGWIDGQARRRDTDTTLQRFSPRRPRSTWSLRNREIVGRLVDQGRMRPRGQAEIDRARQDGRWDAAYAGPASIEIPPELAAVLADSPRATAAWDRLTARNRYAILHRLVTLRTDDARVRNAARFVEMLERGETPYPQRRRLHGEAEVNANANANANA
AK018_055941593nhaKCOG0025Sodium, potassium, lithium and rubidium/H(+) antiporterATGTCGTCGATCGCCCTGTGGGGCGTGATCATCGCCGGCATCGTGGTGCTGACGCCGCTCGCGGACCGGATCCGGGTGCCGTTGCCCGTCCTGCTGACGCTGTTCGGGATCCTGCTCCCGCTGATCCCGGGCACGCCCGGGCTTCGCCTCGATCCCGAGCTGGTGCTGCCCGTGGTGCTGCCGCCGCTGCTGTTCGCCGCGACCCAGCGTTCCACGGCCCGCGAGTTCCGCAGCCAGGCGCGGCCGATCCTCATCACCGCGGTGGGGCTGACGATCGCGTCGGCGGGCGTCGTGGCGGTGATCGCGCACGCCGCCGGGGCGCCGTGGGCGGTGGCGTGGGTGCTGGGCGCCATCGTCGCTCCCCCGGACCCCGTGGCCGCGACGGCGGTGGCGCGACGCCTGCGGCTGCCGGGCCGCGTGGTGACGGTCCTCGAGGGTGAGGGGATGTTCAACGACGCGACGGCCCTGGTGCTCTACCACGTGGCGGTCGCGGCGGTGGTGGCCGGGAGCGTGACGGCGGCCGAGGTAGGACTCGACCTGTTGCTCGCGGTCGTGGTGGGGATCGCCGTCGGCGCCGCCGGGGGCTGGCTGGGCCACCTGCTGCTGGGTCGCATCCGAGTCCCGGCGGCCGAGACGACGGTGACGATCGCGCTGCCCTTCGCCGCCTACCTGGTGGCCGAGGAGCTGCTGGGTTCCGGTGTGCTCGCCGTCCTGACCCTCGGGCTGTGGCTGCGCTCGGTGTCGCACACGTCGGTGTCCTCCGGCGGCTGGCTGCTGGGCCGCTCGGTGTGGGAGTACGCCGACTACCTCATCACCGGGGTGGTGTTCGTCCTCATCGGCTTCGAGCTCACGTCCGTGCTGGACGGCAACCCCGTCGCCGACATCGCCCTGCCGCTGTCGCTGGCCGTGGTCGCCGCGCTGATCCTGCTGCGGTTCGCCTGGATGTTCCCGGCGGTGTGGTGGCTGGAGCGCGGCATGGCGGACCGTGCGCGCCGTCAGGGCGTGCCGGAGCACGTGGCCGGGATCGGGGCGTTCACGCAGCGCGAGACCCTGGTGATCTCGTGGGCGGGGATGCGCGGCGTCGTCTCCGTGGCGTCCGCGCTGGCCCTGCCGCACCTGGTGGCCTCGGGCGAGGAGTTCCCGCAGCGGGACACGGTGGTCTTCGTGGGGCTCGTCGTCGTGCTGGCGACGCTCGTGCTGCAGGGCCTCACGCTGGCGCCGGTGGTGCGACGCCTCGGCGTGGGCACGACGGCGGACGAGACGGCCGAGGTCGCCGAGCTGCGGGAGCGTGCGACCCGGGCGGCGCTCGACGCGGTGCTGGCGCGCGGGGACCTGCCCGCGCCGGTGCGGGACGCCGTCGCGCAGCAGTACGAGGGGTACCTCGCGGCCCAGCAGGCGCTGTCGGAGGCGCGGCAGGAGGGCGGTGACGCCGAGGGCCGGTACGGCGAGCTGGTGGACGAGCTGCTGCGCGACGCCGTGGAGGTCGAGCGGGACGTGTGCGTCCAGGCGCGCAACGCCGGCGAGGTGAGTCCGCACGTGGCCGACGAGGTGCTGGCGGACGTGGAGGCCCGCGCCGTCCGCGACCTCGACTGAMSSIALWGVIIAGIVVLTPLADRIRVPLPVLLTLFGILLPLIPGTPGLRLDPELVLPVVLPPLLFAATQRSTAREFRSQARPILITAVGLTIASAGVVAVIAHAAGAPWAVAWVLGAIVAPPDPVAATAVARRLRLPGRVVTVLEGEGMFNDATALVLYHVAVAAVVAGSVTAAEVGLDLLLAVVVGIAVGAAGGWLGHLLLGRIRVPAAETTVTIALPFAAYLVAEELLGSGVLAVLTLGLWLRSVSHTSVSSGGWLLGRSVWEYADYLITGVVFVLIGFELTSVLDGNPVADIALPLSLAVVAALILLRFAWMFPAVWWLERGMADRARRQGVPEHVAGIGAFTQRETLVISWAGMRGVVSVASALALPHLVASGEEFPQRDTVVFVGLVVVLATLVLQGLTLAPVVRRLGVGTTADETAEVAELRERATRAALDAVLARGDLPAPVRDAVAQQYEGYLAAQQALSEARQEGGDAEGRYGELVDELLRDAVEVERDVCVQARNAGEVSPHVADEVLADVEARAVRDLDNANANANANA
AK018_05595669msrA_2COG0225Peptide methionine sulfoxide reductase MsrAATGTTCGAGAACCTGTTCGGCAGCGGCAAGACCACGATGATCGCGCCCGAGGACGCGCTGCCCGGCCGTGAGGGCCCCGTGCTGGCCGCGCCCCGGCCGCACACCGTCCTGGGGACCTCGATCGTCGGCCCCTGGGAGCCCGGCACCCGCGTGCTCTACCTCGCGATGGGCTGCTTCTGGGGCGCCGAGGAGATCTACTGGCAGGTCCCGGGCGTGGTGAGCACCGCGGTCGGCTACATGGGCGGCACGACGCCGAACCCCACGTACGAGGAGGTCTGCACCGCGCGCACGGGGCACACCGAGACGGCGATGGTCGCCTACGACCCGTCCCGGGTGTCCGAGGAGGAGTTGCTGCGCCTCTTCTGGGAGCGGCACGACCCGACCCAGGGCTACCGCCAGGGCAACGACGTCGGCACCCAGTACCGCTCGGGCGTCTACTGGACGACGCCGGAGCAGGCGGAGGCGGTGCGCTCCACCGCCGAGCGGTACGCCGAGGTGCTGGCGGCCAAGGGGTACGACCCGATCACCACCGAGATGCGGCCCGCGGCGGAGGCCGGCCCGTTCTTCTACGCCGAGGACTACCACCAGCAGTACCTGTCCGACGCGAAGAACCCGCACGGTTACCGCTGCCACGCCACGACCGGCGTGCCGTTCCCCACGGCCGCCTGAMFENLFGSGKTTMIAPEDALPGREGPVLAAPRPHTVLGTSIVGPWEPGTRVLYLAMGCFWGAEEIYWQVPGVVSTAVGYMGGTTPNPTYEEVCTARTGHTETAMVAYDPSRVSEEELLRLFWERHDPTQGYRQGNDVGTQYRSGVYWTTPEQAEAVRSTAERYAEVLAAKGYDPITTEMRPAAEAGPFFYAEDYHQQYLSDAKNPHGYRCHATTGVPFPTAAPGPT0013065_1676DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013065-msrA-K07304NANA
AK018_05596669hypothetical proteinATGCCGGCAGAGAGCGAGAGAGTCATGGCACGCATCACCGTCATCGGAGGCACCGGTTACGCCGGGGAGCACATCGTCCGCGAGGCCGTCGCGCGCGGTCACGAGGTCACCTCGCTGAGCCGGTCCGAGCCCACCGCGCCCGTCGACGGCGTGCGGTACACCACCGGCTCCGTCCTGGACGAGTCGACCGTGGACAGCGCCGCGGAGGGAGCCGACGTCGTCGTCGCGACCGTCTCCCCGCGCGGTGACATGGCCGGCCAGGTCCGCCCCGCCTACGCCCGGATCGCGAACCGGGCCGCCGCGCACGACGCGCGCCTCGCCGTCGTCGGCGGCGCCGGATCCCTCAAGGTCAGCGAGGACGGCCCGCGCGTCGTCGACGGCCCCGACTTCCCGGACGCGTTCAAGGCCGAGGCGCTGGAGTTCACCGACATCCTCGCTGACCTGCAGGACGCGCCGGAGAGCCTCGACTGGTTCTACCTCAGCCCGCCGGCCGTGTTCGGCGCCTACGCCCCCGGCGAGAGGACCGGCACGTACCGCACCGGCGGTGACGTGCTCCTGGCCGACGACGAGGGCAGCTCGTCCATCTCGGGCGCCGATTTCGCGACCGCGCTGGTCGACGAGCTGGAGAACCCGACGCACCGTCGTCGGCGGTTCACCGTCGCGAACTGAMPAESERVMARITVIGGTGYAGEHIVREAVARGHEVTSLSRSEPTAPVDGVRYTTGSVLDESTVDSAAEGADVVVATVSPRGDMAGQVRPAYARIANRAAAHDARLAVVGGAGSLKVSEDGPRVVDGPDFPDAFKAEALEFTDILADLQDAPESLDWFYLSPPAVFGAYAPGERTGTYRTGGDVLLADDEGSSSISGADFATALVDELENPTHRRRRFTVANPGPT0020900_491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020900-putative_saccharopine_dehydrogenase-K07118NANA
AK018_05597375hypothetical proteinGTGACCGAGATCCCGTTCGACCCGTACCTCAAGGCCTGCCCGAGCCGCACGGTCCTGGACCGCGTCGCCGACCGGTGGACCGTCCTCGTCGTCGGCGCCCTGGCCGACGGCCCGCAACGCTTCTCAGCGCTGGCGCAGCGCGTCGACGGCGTCTCGCAGAAGATGCTCACCCGGACGCTGCGCGGCCTCGAGCGGGACGGCCTCGTGCAGCGCACGGTGCACGCGGAGGTCCCGCCGCGCGTCGAGTACGAGCTCACCGCCGCCGGGCACGACGTGCTCGGCCCCCTGCAGGCTCTCGAACGCTGGACCCTGGACCACTCCGCCGACGTGCTCGCCGCCCGCGAGGCCTACGACACGGCGCACGCCACCTCCTGAMTEIPFDPYLKACPSRTVLDRVADRWTVLVVGALADGPQRFSALAQRVDGVSQKMLTRTLRGLERDGLVQRTVHAEVPPRVEYELTAAGHDVLGPLQALERWTLDHSADVLAAREAYDTAHATSNANANANANA
AK018_055981578ligB_2COG1793DNA ligase BGTGCTGCTCGCCGAGCTGGTCACCACGCACGCCGCGGTCGCCGCGACGCGCTCCCGCCTGCGCAAGCGCGAACTGCTCGCCGAGGCGCTGCGGGCCGCCGCTCCCCCGGCGGATGCCGCGTCCGACGACCCGGAGGCCGACGAGATCGAGATCGTCGCCTCGTACCTGTCCGGCCGGCTGCGGCAACGCCGCACGGGGATCGGCTGGCGCACCCTGGCCGACCTGCCGCCTGCGGCGGAGGCCGCCGTGCTGACGCCCGTCGAGGTCGACGCGGCCCTGGCCGCGATGCAGGCGCTCGCGGGCACGGGCTCCCACACGGCACGCACGTACGCCTTCACCGAGCTGTTCTCCCGGGCCACGGCCGACGAGCAGCAGTTCCTGTCCGGGATGCTGCGCGGCGAGCTGCGCCAGGGCGCCTCGGACTCGCTGCTGCTCGACGCGATCGCCGAGGCGGCCGACGTCCCCGGGCGGTCCGTGCGCCGGGCCGCGATGTTCAGCGCGCTGTCCGGGCCGATCGCCCGCGCCGCACTGACCGGCGGCGCCGGGGCGCTGGAGTCCTTCACGCTGCGGGTCGGCCGCCCGGTGCGGCCCATGCTGGCCTCGTCCGCGCCCGACGTCCCCACGGCCGTGGACAAGTTCGGCGACGCCGCCGTCGCCGCCGACACCAAGCTCGACGGCATCCGCGTCCAGGTGCACGTCACCGGCGACGACGTCGCGGTGTTCACCCGGTCGCTCGACGACATCACCGAGCGGCTCCCGGAGGTCGTCGCGCTGGCCCGATCCCTGGAGGTGGACGCCGCCGTGCTCGACGGCGAGGCCCTCGCCCTGGATGACGCCGGACGGCCCCGGCCGTTCCAGGAGACGGCGTCGCGCACCGGCACCCACGACGCCGAACCCGGCGCCCTCCCCCTCACCGTCCGCTTCTTCGACCTGCTGCACCTCGACGGCACGGACCTCATCGACGCACCGGCCCGCGAGCGCCTGGCCGCGCTCGACCGGGTGGTCCCCGCGGACGCCGTCGTTCCCCGCCTCGTCGACGCCGACGCCGCGGCGCTGGCGGAGTTCTTCGAGCGGGTCGTCGCCGCCGGGCACGAGGGGGTCGTGGTCAAGGACCTCGACGCGCCCTACGCGGCCGGCAAGCGCGGGTCCGCGTGGGTCAAGGTCAAGCCGCGCCACACCCTGGACCTGGTAGTGCTGGCCGTCGAGCGGGGCTCGGGACGGCGCAGCGGCTGGCTGTCGAACATCCACCTCGGTGCGCGGGACCCCGCCGGGGACGGGTTCGTCATGCTGGGCAAGACGTTCAAGGGCATGACCGACGAGATGCTCGCCTGGCAGACCGAGCGCTTCACCGAGCTCGCCGAGGGGCCCACCGACGGCTACGTCGTCCACGTGCGGCCCGAGCAGATCGTCGAGATCGCGTTCGACGGCGTCCAGCGCTCCACCCGCTACCCCGGCGGCGTCGCGCTGCGGTTCGCCCGCGTGCTGCGCTACCGGGACGACAAGACGGCCGCCGAGGCGGACACGATCGAGGCGGTGCGTGGGCTCCTGACCGGCAACGGAGCGGCACCGGGCGACTGAMLLAELVTTHAAVAATRSRLRKRELLAEALRAAAPPADAASDDPEADEIEIVASYLSGRLRQRRTGIGWRTLADLPPAAEAAVLTPVEVDAALAAMQALAGTGSHTARTYAFTELFSRATADEQQFLSGMLRGELRQGASDSLLLDAIAEAADVPGRSVRRAAMFSALSGPIARAALTGGAGALESFTLRVGRPVRPMLASSAPDVPTAVDKFGDAAVAADTKLDGIRVQVHVTGDDVAVFTRSLDDITERLPEVVALARSLEVDAAVLDGEALALDDAGRPRPFQETASRTGTHDAEPGALPLTVRFFDLLHLDGTDLIDAPARERLAALDRVVPADAVVPRLVDADAAALAEFFERVVAAGHEGVVVKDLDAPYAAGKRGSAWVKVKPRHTLDLVVLAVERGSGRRSGWLSNIHLGARDPAGDGFVMLGKTFKGMTDEMLAWQTERFTELAEGPTDGYVVHVRPEQIVEIAFDGVQRSTRYPGGVALRFARVLRYRDDKTAAEADTIEAVRGLLTGNGAAPGDNANANANANA
AK018_05599885hypothetical proteinGTGAGCGAGGACACGGCCCCGGCCGACGACGGCGGCCCCGACATGGCAGGCAGCCCCCGGTTCCGGCTGGGCTACGTCTCGGGCGCGACCCCGGGCAAGTGGGCGCGCACGTGGGAGCAGCGACTGCGTGACGTGCCCCTGGACCTCGTGCAGGTCGAGGCCGCGGACGTGGCCGGCACCCTGCATGCCAGGGAGGTCGACGCCGCGATCGGTCGGTTGCCCGTCGACAAGGAGGACTTCCACGCCATCGCGCTGTACGACGAGGTGCCGATGGTCGTGGTCTCCCGTGACCACCTGCTCGCCGCCACCGAGGAGTCGGAGCACGTCACGGCCGCCGACCTCGCCGAGGACGTCCTGTGGGTGCCGGCCGACGACGTGCTGTTCACCGGCGACGAGCCACGCCCCGGAAAGGCTCCGGAGGCGTACGACGACGGCACGGGGGCCCTGGTGACACCGGCGCCCGCGACGACGGCGGAGGCGATCGCCTGGGCCGCCGCCGGCAGCGGCGCCGTCGTCGTGCCGATGTCCCTGGCCCGCCTGCACCGGCGCAAGGACGTCGTGCACCGCGTGCTCGACGGCGGCCCCGAGGCGCCCGTCGGCCTGGTCTGGCTGCGTGACGGTTTGTCCGAGGAGACGGCTGAGCTCGTCGAGGAGATGGTCGGCATCGTGCGCGGCCGGACCGCGAACAGCTCCCGCGGACGGGCGGGGGGGTCCGCGCGGTCCTCCACCAAGGCGGCCGCCGGCACGAAGGCCTCCGGCGGTGCCGGGAAGAAGTCAGGGACGCCCGGCGGACGCGGAGGAGCGTCGGGCTCCCGACGTGGCGCGTCCCCGGGCGGCCGCCGCGGCCGTCCCGGCGGTGGCAAGGGGCGCGGCAAGCGCCGCTGAMSEDTAPADDGGPDMAGSPRFRLGYVSGATPGKWARTWEQRLRDVPLDLVQVEAADVAGTLHAREVDAAIGRLPVDKEDFHAIALYDEVPMVVVSRDHLLAATEESEHVTAADLAEDVLWVPADDVLFTGDEPRPGKAPEAYDDGTGALVTPAPATTAEAIAWAAAGSGAVVVPMSLARLHRRKDVVHRVLDGGPEAPVGLVWLRDGLSEETAELVEEMVGIVRGRTANSSRGRAGGSARSSTKAAAGTKASGGAGKKSGTPGGRGGASGSRRGASPGGRRGRPGGGKGRGKRRNANANANANA
AK018_05600384hypothetical proteinATGGCCGGTACACCCTTCTCCCAGCAGGTCCTCAAGCCGATGAACGCGGCGAAGAAGCTCGGCGTCTACCTGCCCGCCACGCCGGCGGAGTTCCAGGAGAAGGGCATCACCCGCGCCGAGCTGGAACAGCTGGAGACCAACCCGCCGCAGTGGCTGGACGACCTGCGCCGCAACGGTCCGCACCCGCGCCCCGTGGTGGCCGGGCGGCTCGGCATCTCGATCGGCGGGCTGGCCCGGGGCGGCGTCACCGAGCCGCTGACCACCGAGCAGATCGACGAGCTGCGCGAGGACCCGCCCGAGTGGCTCGTCCGCGAGCGCGAGACGGCCGCGAAGGTGCGCGCCGAGGAGGAGCGCGTCGCCGCGGAGCGCAAGACCACGGACTGAMAGTPFSQQVLKPMNAAKKLGVYLPATPAEFQEKGITRAELEQLETNPPQWLDDLRRNGPHPRPVVAGRLGISIGGLARGGVTEPLTTEQIDELREDPPEWLVRERETAAKVRAEEERVAAERKTTDNANANANANA
AK018_05601324hypothetical proteinATGACCGAAGCCACGTCGTCCGACGCCCGTGTGACGATCACCTACTGCACGCAGTGCCGCTGGCTGATGCGGGCCGCCTGGGTGGCCCAGGAGCTGTTGCAGACCTTCCGCACCCGCCTCGGCGAGGTGGCGCTGGTGCCGGGCACCGGCGGCGTGTTCCGGGTGGAGCTGGTCCCCGGGCCCGGTGCGGAGCCGGTGCTGCTGTGGGACCGCAAGGCGGAGGGCGGGTTCCCGGAGATCCCGCCGCTGAAGAAGGCGGTGCGGGACGCCGTCGCGCCGGACCTGTCCCTCGGGCACACCGACCGGGTGGCCGCCGCCGAGTGAMTEATSSDARVTITYCTQCRWLMRAAWVAQELLQTFRTRLGEVALVPGTGGVFRVELVPGPGAEPVLLWDRKAEGGFPEIPPLKKAVRDAVAPDLSLGHTDRVAAAENANANANANA
AK018_056021206rlmG_2COG2813Ribosomal RNA large subunit methyltransferase GGTGCTGCCCGCCTCCGTGACCGCCGTGCTCGACCGGCTCGTGCCCTGGCCCGACGACGGCACCCGTGCCGACGGTCCCGTCGCGGTGGACGCCACCGACCGGCTGCTGCTCACCGAGGCCGCCGAGCGCCTCGCCACGGCGGGAACGAGTGACGTGGTCGTGGTCGGCGACCGGTTCGGGGCGCTCACGGTGGGCGCACTGGCTCTCGGCGCACCGGACGTGCGCACCCACACCGACGCGGTCGACGCCGAGGTGGCCCTGCAGCACAACCTGCAGGCGGCGGAGCTCCCGGCCGGGCCGACGGCGGTGGTCCACGGAACCCTCGAGCCGTCGCTGCTCGACGGCGCCCGCCTGGTGCTGCTGCAGCTGCCCAAGTCGCTCGCCGAGCTCACGGAGATCGCCGAGGCCGTCGCCCGGCACGCGGCCGACGACGTCACGGTGCTCGCCGGCGGCCGCATCAAGCACATGACGCGGGCCATGAACGACGTGCTCGGCGACCGGTTCGTCGAGGTGCACGCCACGCTCGCCCGCAGCAAGTCGCGCGCCCTGGTGGCGTCCGGGACGCGTCCCGAGGCTCGCGTCGCCGACCCGCTCCACCCGGCCCGCGAGCGCCTCGTCGACCCCGAGCTGCTCGCCGCGGCCACGCCGACCGACGGCGGCACGCCCCCGGACCATCTCGACGTGGTCGCCCACGGCGGCACGTTCGCTGGCCCGGCCCTGGACCACGGCACCCGGTTCCTGCTCGGCACCGCCGGACGGTGGCCCGCCGCCGACCGCGTGCGCGACGCCGTCGACCTCGGGTCGGGCACCGGTCTGCTGTCCGTGGTGCTGGCCCGCCGCTACCCGGACGCCCGCGTCGTGGCCTCGGACCGGTCCGCGGCCGCGGTGGCCTCCACCCGGGCGACGCTGGCCGCCAACGGGGTCTCCGCCGTCGTGCAGCGTGGCGACGCCGGAGCCGACCTGCCGGACGCGAGCGCCGACGTCGTCCTGCTCAACCCGCCGTTCCACGACCGCGCCGGCGTGAGCACCGACGCCGCGCACCGCATGTTCGCGGCGGCCGGGCGGATCCTGCGGCCGGGCGGCGAGCTGTGGTGCGTGTACAACACGCGGCTGCGCTACCGCGGGTCGCTCGCCCGTGCGGTGGGGCCCACGGACCACGTCGCCCAGGACCCGCGCTTCACGGTGACCCGGTCGCGCAAGGTCTGAMLPASVTAVLDRLVPWPDDGTRADGPVAVDATDRLLLTEAAERLATAGTSDVVVVGDRFGALTVGALALGAPDVRTHTDAVDAEVALQHNLQAAELPAGPTAVVHGTLEPSLLDGARLVLLQLPKSLAELTEIAEAVARHAADDVTVLAGGRIKHMTRAMNDVLGDRFVEVHATLARSKSRALVASGTRPEARVADPLHPARERLVDPELLAAATPTDGGTPPDHLDVVAHGGTFAGPALDHGTRFLLGTAGRWPAADRVRDAVDLGSGTGLLSVVLARRYPDARVVASDRSAAAVASTRATLAANGVSAVVQRGDAGADLPDASADVVLLNPPFHDRAGVSTDAAHRMFAAAGRILRPGGELWCVYNTRLRYRGSLARAVGPTDHVAQDPRFTVTRSRKVNANANANANA
AK018_05603402fkbP_2FK506-binding proteinGTGACCACGCTGCCCACCGCCACCGGCTCCTTCGGCGACAAGCCCGAGATCACCTTCCCCGCGGGCGACGCCCCGTCCGGTCTGCAGGTGCAGGTGCTCGAGGAGGGCTCCGGCCCCGTCGTCGACGCCGGCCGCACCATCGTCGTCAACTACTACGGCCAGACCTGGGGCGGCCAGATGTTCGACAACTCCTGGGACCGCGGCCAGACCATCGACTTCCCGATCGGTGTCGGCGCCGTCATCGGCGGCTGGGACAAGGGCCTCGTCGGCCGCAACGTCGGCGACCGCGTGCTGCTGTCCATCCCGTCCGAGCACGGCTATGGCACGCGCGGCGTCCCGCAGGCCGGCATCCCCGGCGGTGCGACCCTGGTCTTCGTGGTGGACGTCGTCGACGTCAAGTGAMTTLPTATGSFGDKPEITFPAGDAPSGLQVQVLEEGSGPVVDAGRTIVVNYYGQTWGGQMFDNSWDRGQTIDFPIGVGAVIGGWDKGLVGRNVGDRVLLSIPSEHGYGTRGVPQAGIPGGATLVFVVDVVDVKPGPT0015110_204DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
AK018_056041404hypothetical proteinGTGGCGCCAGGAGCTCGGGACGGAGTGAGCGGCGTGCCCGACGGCGGCACCGCGGCGGGCGCTCCGGCGTCCGACGGCGGTACCCCGGACGAGCGGCGCGGCGTCGGGGCCGCCGAGGGTCCCGACGCCGCGCGGCGTGCTGTCGAGGCGACCTGGCGGATCGACTCCGCCCGCATCGTCGGCGCGCTCGCCCGGTACACCGGTGACCTCGCCCTCGCCGAGGACGTCGCCTCGGAGGCACTGGCGGAGGCGCTGGTCGCCTGGCCGCGGGACGGCCGGCCCCGCGACCCGACGGCCTGGCTGCTGGCCACCGCGCGCCGCCGAGCGATCGACGCGTTCCGCCGTCGTGCCGGACGCGACGACCGGTACGCCGCCCTCGGCCGCGACCTGGCCGAGGGGCAGGCCCACTCCGGGGCACCGCCGTCGGAGACCCGTGAGGCGGACCTGCTGTGGGACCCGGACCAGATCGAGGACGACCGGCTCGCGCTGATCTTCACCGCCTGCCACCCGGTGCTGTCCAAGGAGGCCCGCGTGGCGCTCACGCTGCGGGTCGTGGCCGGGCTGTCGAGCGACGAGATCGCGCGGGCCTTCCTGGTGCCGCGCGCCACGGTGCAGGCGCGCATCACCCGGGCCAAGAAGACGCTCGGCGCCGCGCGGGTCCCGTTCGAGGTGCCGACCGCCGCGGACCGGCCCGAGCGTCTGGGCTCGGTGCTCAACGTGCTGTACGTGATCTTCACCGAGGGGGCCACGGCGTCGTCGGGCAGCGACTGGATGCGCACGGACCTGGCGTCCGAGGCGATCCGCCTGGCGCGCGTGCTGCGGCGGCTGGCCCCGCGCGAGCCCGAGGTCGCCGGGCTGCTCGCCCTGCTGGAGCTCACCGCGGCGCGGTTCCCCGCGCGCACGGGACCGGACGGCGAACCCGTGCTGCTGGCCGACCAGGACCGGCGGCGCTGGGACACGGGCGCGATCCGCCGGGGTCGGGCCGCGCTCGCCCAGGCGGTCGGCGCCGGGCGCGGCCTCGGACCCTACGGGTTGCAGGCCGCGATCGCCGAGCAGCACGCCGTCGCCCGGTCCGTGCAGGCCACCGACTGGGAGCGCATCGTCGTGCTGTACGAGGCGCTCGGCCAGGTGGCGCCCTCGCCCGTGGTGGAGCTCAACCGGGCGGTCGCGGTGTCCATGGCAGCCGGCCCGGCCGCCGCGCTGGAGATCGTCGACGACCTGGTCGCCCGGGAAGTGCTGACCGGCACCTACCTGCTGCCGAGCGTGCGCGGCGAGCTGCTGGCCCGGCTCGGGCGTCGCGACGAGGCACGCGCCGAGCTGGAACTCGCGGCGCGCCTCTGCGGCAACGAGCGCGAGCGCGGGGTCCTGGCGGCCAAGGCCGCGGCGCTCGGTGCGCCGTCGTAGMAPGARDGVSGVPDGGTAAGAPASDGGTPDERRGVGAAEGPDAARRAVEATWRIDSARIVGALARYTGDLALAEDVASEALAEALVAWPRDGRPRDPTAWLLATARRRAIDAFRRRAGRDDRYAALGRDLAEGQAHSGAPPSETREADLLWDPDQIEDDRLALIFTACHPVLSKEARVALTLRVVAGLSSDEIARAFLVPRATVQARITRAKKTLGAARVPFEVPTAADRPERLGSVLNVLYVIFTEGATASSGSDWMRTDLASEAIRLARVLRRLAPREPEVAGLLALLELTAARFPARTGPDGEPVLLADQDRRRWDTGAIRRGRAALAQAVGAGRGLGPYGLQAAIAEQHAVARSVQATDWERIVVLYEALGQVAPSPVVELNRAVAVSMAAGPAAALEIVDDLVAREVLTGTYLLPSVRGELLARLGRRDEARAELELAARLCGNERERGVLAAKAAALGAPSPGPT0014960_87DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_05605423hypothetical proteinATGGCCAAGTACATGCTGATCATGCGCGGAAGCGACGAGGGTCGGGCGGCCTACGAGGAGATGGACTTCACCGAGGTCATCGCCGCGATGGGTCGCTACAACGAGCAGATGATGGACGCCGGCGTGCTCACGGCCGGCGAGGGTCTGGCGGACGCCGCGGAGGGCGCCGTCGTCGACTTCTCCACCGACACGCCGGTCGTGACGGACGGGCCGTACGGGGAGACGAAGGAGCTGTTCAACGGGTTCTGGATCCTGGACGTCGCCTCGCAGGCGGAGGCGATCGAGTGGGCCAAGCGTGCCCCGCTGAGCGGGCCGGGCACCAAGCTCGAGGTGCGCCGCGTGCACGGCGAGGAGGACTTCCCGGCGGACAACGAGTGGATCCAGAAGGAGAAGCAGTGGCGCCAGGAGCTCGGGACGGAGTGAMAKYMLIMRGSDEGRAAYEEMDFTEVIAAMGRYNEQMMDAGVLTAGEGLADAAEGAVVDFSTDTPVVTDGPYGETKELFNGFWILDVASQAEAIEWAKRAPLSGPGTKLEVRRVHGEEDFPADNEWIQKEKQWRQELGTEPGPT0030505_37PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
AK018_05606429hypothetical proteinATGGCCAAGTACATGCTGATCATGCGAGCCAGCGACGAGGCGCAGGAGGCGTTCGCCGAGGCGGGGATCGACTTCGACGAGATGCTGGCCACGATGGGCCGGTTCAACGAGGAGATGATCACGGCGGGCGTGCTGGTCGCGGCCGAGGGCCTCGAGGAGCCGGAGAAGGGCGTGGTGGTCGACTACTCGGGTGACGAGCCGGTCGCCACCGACGGTCCGTACGGCGAGACGAAGGAGCTGTTCAACGGCTTCTGGGTGCTGGACGTGCCGACGATGGACGACGCCGTCGCCTGGGCCAGGAGGGCGCCGCTGGCCGGCCCGGGGATGAAGGCCGAGATCCGCCGCATCCCGGGGATCGACGAGTTCCCGCAGGACAACGAGTGGGTCCGCCGCGAGCGCGCCTGGCGCGAGCGCACCGGCCAGCTCTGAMAKYMLIMRASDEAQEAFAEAGIDFDEMLATMGRFNEEMITAGVLVAAEGLEEPEKGVVVDYSGDEPVATDGPYGETKELFNGFWVLDVPTMDDAVAWARRAPLAGPGMKAEIRRIPGIDEFPQDNEWVRRERAWRERTGQLNANANANANA
AK018_056071917COG3387TrehalaseATGACGCTCGACTCCCAGGCACCACCGCGGCCGGACGGACGCAGCACCTTCCCGTCCATCGCGGAATACGCCTTCCTGTCCGACTGCGAGACGAACGCCCTGGTCGCACCCAGCGGCGCCGTGGAGTGGATGTGCGCGCCACGCCCCGACTCGCCCAGCGTCTTCGCCGCGATCCTCGACCGCGGGGCAGGCACGTTCCGGGTCGGGCCGCACGCCGTGCGGGTGCCCGTCGCCCGTCGCTACATCCCCGGCACGCTCATCCTCGAGACCACGTGGCAGACCTCGACCGGATGGCTCGTGGTGCGCGACGCGATGGTGATGGGCCCGTGGCACAACGTCGACGAGCGCTCCCAGACGCACCGGCGCACCCCCACCGACCACGACGCCGAGCACATCCTGCTCCGCACCGTGAAGTGCGTCTCCGGCACGGTCGACCTCGAGGTCATTTGCTCGCCGATGTCCGACTACGGCCGGCACGAGCCCACGTGGGAGTACCTCGACGAGGGCTACTCCTCGGTCGTGGCCCGCACGGGTGACGAGAACCCGGACCTGCGGCTCAGCTCGTCCCTGCGGTTCGGGCTCGAGGGCCGCCGCGCCCAGGCGCGCACCCGGATGGACGCCGGCGACACCCAGTACGTCGCCCTGGCGTGGTCGCCGCTGCCGGCCCCCGCCTCCTTCGACGAGGCCGCCGAGAAGATGTGGCGCACCGAGCAGTTCTGGCGCGACTGGATCACCCAGGGCTCCTTCCCCGACCACCCATGGCGCATCTACCTGCAGCGCTCGGCCCTGACCCTCAAGGGCCTGACCTACGCGCCGTCGGGCGCCCTGCTCGCCGCGGCCACGACATCGCTCCCCGAGACCCCCGGCGGCGAACGCAACTGGGACTACCGGTACGCGTGGATCCGTGACTCCACGTTCGCCCTGTGGGGCCTGTACACCCTCGGGCTGGACCGTGAGGCGAACGACTTCTTCGCCTTCATCCAGGACGCCTGCCACGACAACAAGCGTCTGCAGATCATGTACGGCGTCGACGGCGAGGAGAAGCTCGACGAGTCCGTGCTGACGCACCTCACGGGCTACGAGGGCGCCCAGCCCGTGCGCGTCGGCAACGCCGCCTACAACCAACGCCAGCACGACGTCTGGGGCGCGGTCCTCGACTCCGTCTACCTGCACACCCGCAACCGCGAACAGCTCCCCGAGGCGCTGTGGCCGGTGCTCAAGCGCCAGGTCGAGGAGGCCGCCAAGCACTGGCACCTGCCCGACCGGGGCATCTGGGAGGTGCGGGGCGAACCGCAGCACTTCACGTCCTCCAAGCTCATGTGCTGGGTCGCCCTCGACCGCGGGGCACGCCTCGCGCGCCTGTACGACGAGCTCGACTTCGCCGAGCAGTGGCAGAAGCTCGCCGACGAGATCCACGCCGACATCTGCTCCAAGGGCGTCGACGAGCGCGGCGTGTTCACCCAGCGCTACGGCGACGACGCCCTCGACGCCTCGCTGCTGCTCATCCCCCTGCTGCGGTTCCTGCCGCCCGACGACGAACGCGTGCGCGCCACAGTCACCGCCATCGCCGAGGAGCTCACCGAGGACGGCCTCGTGCTGCGCTACCGCACCGACGAGACCGACGACGGCATGTCCGGCGAGGAGGGCACGTTCACCATCTGCTCGTTCTGGCTGGTCTCCGCCCTGTGCGAGATCGGCGAGATCGACCAGGCCCGGACGCTGTGCGAGCGGCTGCTGTCCTTCGCGTCCTCGCTGAACCTCTACGCCGAGGAGATCGACCCCCGCACCGGCCGCCACCTCGGGAACTTCCCGCAGGCGTTCACGCACCTGGCGCTCATCAACGCCGTCATGCACGTGATCCGCGCCGAGGAGGACCCGGGCGACCACCGCGCCTTCCGCACGCCCAGCCGGGCGTGAMTLDSQAPPRPDGRSTFPSIAEYAFLSDCETNALVAPSGAVEWMCAPRPDSPSVFAAILDRGAGTFRVGPHAVRVPVARRYIPGTLILETTWQTSTGWLVVRDAMVMGPWHNVDERSQTHRRTPTDHDAEHILLRTVKCVSGTVDLEVICSPMSDYGRHEPTWEYLDEGYSSVVARTGDENPDLRLSSSLRFGLEGRRAQARTRMDAGDTQYVALAWSPLPAPASFDEAAEKMWRTEQFWRDWITQGSFPDHPWRIYLQRSALTLKGLTYAPSGALLAAATTSLPETPGGERNWDYRYAWIRDSTFALWGLYTLGLDREANDFFAFIQDACHDNKRLQIMYGVDGEEKLDESVLTHLTGYEGAQPVRVGNAAYNQRQHDVWGAVLDSVYLHTRNREQLPEALWPVLKRQVEEAAKHWHLPDRGIWEVRGEPQHFTSSKLMCWVALDRGARLARLYDELDFAEQWQKLADEIHADICSKGVDERGVFTQRYGDDALDASLLLIPLLRFLPPDDERVRATVTAIAEELTEDGLVLRYRTDETDDGMSGEEGTFTICSFWLVSALCEIGEIDQARTLCERLLSFASSLNLYAEEIDPRTGRHLGNFPQAFTHLALINAVMHVIRAEEDPGDHRAFRTPSRAPGPT0014070_147DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-TREHALASE,PGPT0014070-EC_3_2_1_28|alpha_trehalase-K22934NANA
AK018_05608834hypothetical proteinATGAGCAACCCCGTCTTCTCGAACAGCGACGTGTTCGGCGAGCCCCGCCGCACGGCGCGCGGTGGTGCCACCACGGCGCCGCCCCGCGGCCAGGCCCAGTACGGGGCCTACGGCGCGCAGGCCGCCGACGCCGCATCCCTGCAGAACATGTACGAGTCGCCGTCGGCCACGCCGGTCGACACCAAGCGCCTCACCTACACCGACGTCATCATGAAGACGGCCGGGCTGCTCGCGCTGCTCGTCGTCGTGGCCGCGGCCACCTGGGTGATCGCCCCGGGACTGTGGATCTTCGGCATGATCGCGGGCCTCGTGCTCGGCCTGGTCAACGCCTTCAAGAAGAACCCGAGCCCCGTGCTCATCACCCTGTACACGATCGCCCAGGGTGTGTTCCTCGGTGGCATCTCGGCGTTCTACGAGACGCAGTTCAACGGCATCGTCGGCCAGGCCGTCCTGCTGACACTGTGCGTCTTCGCCGCCGCGCTGGGCCTGTACAGCTCCGGCAAGGTGCGCGTCACCCCGAAGTTCACGCGATTCCTGCTGATCGGCATGGTCGGCTACCTGCTGTTCTCCCTGGTCAACGTGGTCCTCGTCTGGACGGGCGTCCTCGAGGGCTGGGGCATGCGCGGCGGGACGCTGGGCATCGTCATCGGCCTGTTCGCCGTCGTCCTGGCAGCCATGTCGCTGATCATGGACTTCGACTTCATTAAGCGTGGCGTCGAGCAGGGCGTCCCGGCCAAGTTCGCCTGGTCGGCGGCCTTCGGCCTCATCGTCACGCTGGTCTGGCTGTACCTGGAGATCCTGCGCCTGCTGGCGATCATGCAGAGCAGCGACTGAMSNPVFSNSDVFGEPRRTARGGATTAPPRGQAQYGAYGAQAADAASLQNMYESPSATPVDTKRLTYTDVIMKTAGLLALLVVVAAATWVIAPGLWIFGMIAGLVLGLVNAFKKNPSPVLITLYTIAQGVFLGGISAFYETQFNGIVGQAVLLTLCVFAAALGLYSSGKVRVTPKFTRFLLIGMVGYLLFSLVNVVLVWTGVLEGWGMRGGTLGIVIGLFAVVLAAMSLIMDFDFIKRGVEQGVPAKFAWSAAFGLIVTLVWLYLEILRLLAIMQSSDNANANANANA
AK018_056093378mdtC_2Multidrug resistance protein MdtCGTGTTCCGCCTTGCCCGCCTGTCCCTGGCGAATCGTGCCGTGGTCGCCCTGGCCACGGTCGCGATCTTCGTCTTCGGAGCGCTGAGCCTGACCTCGCTGAAGCAGGAGCTCATCCCCTCCCTGGAGCTGCCCGCCGGCGTCGTCGTCGCCACGTACCAGGGCGCCTCCCCGCAGGTGGTCGAGGAGAACGTCACCGAACCGCTCGAGGCTGCCGCGCAGACCGTCGACGGCATCGAGTCGATCAGCTCGACCGCGTCCACCGGCATGTCCACCACGACGGTGGAGTTCACGTACGGCACCGACATGGACGCCGCCACCCAGCGGCTCACCACGGCGATCACACGCACCCAGTCCCAGCTCCCCGAGGACGTCGAGGCGCAGGTCATCACCGGTTCGCTCGACGACCTGCCCGTCATCCAGCTCGCCGTGGCGGGCGACGGCGACCTCGCCGAGCTCGCCGACGAGGTCGACACGGTGCTCGTGCCCGCGCTCGAGGACATCGACGACGTCCGGTCCGTGGCCGTCACCGGAGGCGTCGAGGACCAGATCCGCATCGACGTCGACCAGGCCGACCTCGCCGCCGAGGGTCTCGAGCTCAGCCAGGTCACCGACGTGTTGGCCGACTACGGCGTCGTGATCCCCGCCGGGACCGTCACCGAGGACGGCGCCACCTACTCGCTGCAGGCCGGCACGCGCCTCGAGAGCGTCGAGGACCTCGAGGAGCTCCCGCTGGTCCCCACGGCCACCGCGAGCACCGGGAGCACCGGGTCCGACGGCGGCACCACCGCGGGCGGGGCCGACGACGGCGCGACGCTCCCCGACAGCGGCACCGACGTGCCGTCGTCGGACGGCGAGAGCGCCGCCGGAGCCGCCGAGGGCAGCACGGGCACCGACACCGAGCTGCTCCCGGACGCCAACGCGCCCCCGGCCGTCCCGGAGCCCGTGCTCCTCGGCGACGTCGCCGAGATCTCCGTCGCCGAGACCGACGCGACCTCCTACTCCCGCCTCGACGGCGAGCCGTCGCTCGGCATCGCCATCACCAAGACCCCGCAGGGCAACACCGTCGACGTCTCCCACGCCGTCCAGGACGTGCTGGACGACTCGGCCGCCGAGCTCGACGAGGCCGGCATCTCCACCGCCGTCGTCTTCGACCAGGCACCGTTCATCGAGGAGTCCATCGAGGGACTGGCCACCGAGGGCGGTCTCGGCCTCATCTTCGCGATCGTCATCATCCTGGTGTTCCTGCTGTCGCTGCGGGCCACCCTGGTCTCCGCGGTGTCCATCCCGCTGTCCCTGGCCACGGCGTTCCTCGTCATGGAGGCCACCGGCTACACGCTCAACATCCTCACGCTCGCCGCGCTGACGATCTCCATCGGCCGCGTGGTCGACGACGCCATCGTCGTCATCGAGAACATCAAGAGACACCTGTCCTACGGCGAGGACAAGATCGAGGCGATCCTCAACGCCGTGCGCGAGGTGGGCGGCGCCATCACCTCGTCCACCATCTGCACCGTCGCCGTGTTCCTGCCGCTCGGGCTCGTGACCGGCATGACGGGAGAGCTGTTCCGGCCGTTCGCGTTCACCGTCGCCATCGCGATGCTCGCCTCGCTGCTGGTCGCGCTGACGATCGTGCCCGTGCTGGCCTACTGGTTCGTCAAGGCCCCGAAGGGCACCGAGGACGCCACCGACGGCGGCCAGGCGATCCGCGAGGCCGCCGAGGCCAAGGAGCGGCGCGGCCTGTGGCAGCGGGCGTACATCCCGAGCCTCGCCACCGCGCTGCGGCACCCGTGGATCTCGCTGGTGCTCGCCGTCGGCATCCTCGCCGGCACGCTCGCGCTGGTGCCGCGCCTGGAGACCAACTTCATCGGCGACTCCGGCCAGGACACCGTCACCGTCACCCAGACGTTCGAGGACACGACCTCCCTCGAGGCGCAGGACGACGCCGCGCGCGAGGTCGAGCAGGCCATCGGCGACGTCGAGGGCGTCGAGACCGTCCAGACGTCCGTCGGGTCCGCCGGGGGCCCGGAGGCCGCGTTCTTCGGCGGCGGGGCAGCGCCCACCGCGACCTACTCGGTCACCCTGGACGAGGAGGCCGACGGCGTCGCCGTCCAGGACGAGGTGCGCGCCGCCGTCGAGGGCTTCGCCGGTGACGGTCCGACGACGGAGGTCAGCGTGGCCGGGGGCGACTCCGGCTTCGGGTCCACCACCGTCGACCTGGTGGTCAGCGCCAACGGTTCCGACGAGCTGACCGAGGCGGCCGAGGCCGTCCAGGACGCCGTCGCGGACCTCGACGGTGTCGCCGAGGTCAGCAACGACCTCGCGTCGTCGCAGACGATCCTGCAGGTGTCCGTCGACCGGGAGGCCGCCGCCGAGGCGGGGCTGACCGAGACGCAGGTCGCCGGCATCGTGTCCGGGACCATGAACCCGGAGCAGGCGGTCGGCGAGGTCGACCTCGGGGAGGGACCGCTGGAGACCGTCGTCGTCACCGGTGAGGCGCCCGCGACGCAGGCCGAGGTCGAGGAGATCGAGATCCCGACCGCGACCGGCATGGTGCCGCTCACCGACGTCGCGACCGTCGAGGAGGTCCCGACCCCGACGTCCGTCAGCCGCATCGACGGGCAGCGGTCCGCCACCGTCTCGGTGACCCCGGGTGCGCAGGACCTCGGCACCCTGAGCGCCGAGATCACCACGGCGGTCGACGAGGTCGAGCTGCCGGCCGGTGCCGACGTGACGATCGGCGGCGTCGCGGCCGACCAGGAGGAGGCCTTCGCCGACCTCGGCCTGGCGCTGATGGCGGCGATCGCGATCGTCTACCTGATCATGGTCGCGACCTTCAAGTCGCTGATCCAGCCGCTCATCCTGCTGGTGTCGGTCCCGCTGTCCGCCACCGGCGCGCTCGTGGCGCTGCTGGTCACCGACACCCCGCTCGGCGTGCCGGCGCTGATCGGCGTGCTGATGCTGGTCGGCATCGTGGTGTCCAACGCCATCGTGCTCATCGACCTCATCAACCAGTACCGCGAGCGCGGGCGCGGGCTCGACGACGCGGTGCGCGAGGGTGCCCGCAAGCGTCTGCGCCCCATCGTCATGACGGCGCTGGCCACGATCTGCGCCCTGACGCCGATGGCGTTCGGGCTCACCGGCGGCGGGGCGTTCATCTCGCAGCCGCTGGCCCTCGTGGTCATCGGTGGGCTGATCTCGTCGACGCTGCTGACGCTGCTCATCGTCCCGGTGCTGTACGTGCTGGTCGAGGGGCGCAAGGACCGCCGGGCCGACCGCCGTCGTCGGCGGGCCGAGAAGCGGGAGCGCAAGGAGCTCGACCGCCGTGACCGGGCTGCCGCCCGGGAGGCCTCCGAGGCGTCCGGGCCGGCCGCGTCCTGAMFRLARLSLANRAVVALATVAIFVFGALSLTSLKQELIPSLELPAGVVVATYQGASPQVVEENVTEPLEAAAQTVDGIESISSTASTGMSTTTVEFTYGTDMDAATQRLTTAITRTQSQLPEDVEAQVITGSLDDLPVIQLAVAGDGDLAELADEVDTVLVPALEDIDDVRSVAVTGGVEDQIRIDVDQADLAAEGLELSQVTDVLADYGVVIPAGTVTEDGATYSLQAGTRLESVEDLEELPLVPTATASTGSTGSDGGTTAGGADDGATLPDSGTDVPSSDGESAAGAAEGSTGTDTELLPDANAPPAVPEPVLLGDVAEISVAETDATSYSRLDGEPSLGIAITKTPQGNTVDVSHAVQDVLDDSAAELDEAGISTAVVFDQAPFIEESIEGLATEGGLGLIFAIVIILVFLLSLRATLVSAVSIPLSLATAFLVMEATGYTLNILTLAALTISIGRVVDDAIVVIENIKRHLSYGEDKIEAILNAVREVGGAITSSTICTVAVFLPLGLVTGMTGELFRPFAFTVAIAMLASLLVALTIVPVLAYWFVKAPKGTEDATDGGQAIREAAEAKERRGLWQRAYIPSLATALRHPWISLVLAVGILAGTLALVPRLETNFIGDSGQDTVTVTQTFEDTTSLEAQDDAAREVEQAIGDVEGVETVQTSVGSAGGPEAAFFGGGAAPTATYSVTLDEEADGVAVQDEVRAAVEGFAGDGPTTEVSVAGGDSGFGSTTVDLVVSANGSDELTEAAEAVQDAVADLDGVAEVSNDLASSQTILQVSVDREAAAEAGLTETQVAGIVSGTMNPEQAVGEVDLGEGPLETVVVTGEAPATQAEVEEIEIPTATGMVPLTDVATVEEVPTPTSVSRIDGQRSATVSVTPGAQDLGTLSAEITTAVDEVELPAGADVTIGGVAADQEEAFADLGLALMAAIAIVYLIMVATFKSLIQPLILLVSVPLSATGALVALLVTDTPLGVPALIGVLMLVGIVVSNAIVLIDLINQYRERGRGLDDAVREGARKRLRPIVMTALATICALTPMAFGLTGGGAFISQPLALVVIGGLISSTLLTLLIVPVLYVLVEGRKDRRADRRRRRAEKRERKELDRRDRAAAREASEASGPAASPGPT0016195_1236DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-SURFACTIN_RESISTANCE,PGPT0016195-swrC|yerP-K03296NANA
AK018_05610240hypothetical proteinATGATCATCGCCGTCGCCGCCCCGCCCCAGCCCCGCCTGACCGCCCTGGACCGCCTCGTCGAGGGCGCTGGGCGAGCTCTCCTCGCCGCCGGGACGCGGCTGGCCGACGCCGGTCACCGACGCGTCGAGCGGCGTCGGGCCTCCCTGCCAGCCCGGGTGGCGACGGCGGACCGTCGGCACGACCTGACCGAGCGGGTCCGCGACAACGCCGCGCAGATCCACCCGCTCGGCCTGCGCTGAMIIAVAAPPQPRLTALDRLVEGAGRALLAAGTRLADAGHRRVERRRASLPARVATADRRHDLTERVRDNAAQIHPLGLRNANANANANA
AK018_05611636hypothetical proteinATGGGAACAGAGCCGGCACCGGGAACACCGCAGCCGTCGCGAGACGTCGACTCGACCCGGCTGAAGGGCCTGTCGCACCCCCTGCGCCTCACGATCCTCGACCTGCTGCACACCCACGGCGAGCTCACGGCCAGCCGACTGGCCGAGCTGGTCGGCGAGTCCAGCGGATCGACCAGCTATCACCTGCGCCAGCTCGCCAAGCACGACTTCGTCACCGAGGTCGAGGGTCGGGGCACGGCCCGGGAGCGCTGGTGGAAGGCCACCCCCGGCGGCTACAGCATCAGGATCGACGACGAGGACGACGTCGGCACCCGCACCGCGAAGTCCCTCGTCAACGCCGAGTCCGAGCGCTCACGCCAGGCGAAGGTGTGGAGGCTGCTCGAGGCGATGGGACGGGCGGACGGCAGCGACCCCCGCTACGCCCGCTGGCGCGACGCGGTCGCGCTCAACACCGCACACCTCTGGGCGACGCCCGAGCAGCTGGAGGACGTGATCGCGGCGTACCACCGGTTCGTCGAGGAGCACCTGCTTCCCCTGCGCGACCAGGAGGGCACCCCCGGAGCGGCCCCCGTCCAGATCCACTTCAACGCGTTCCCACTGGTGGACGAGCTCCCGGGCGAGCCTGGGACGGACTGAMGTEPAPGTPQPSRDVDSTRLKGLSHPLRLTILDLLHTHGELTASRLAELVGESSGSTSYHLRQLAKHDFVTEVEGRGTARERWWKATPGGYSIRIDDEDDVGTRTAKSLVNAESERSRQAKVWRLLEAMGRADGSDPRYARWRDAVALNTAHLWATPEQLEDVIAAYHRFVEEHLLPLRDQEGTPGAAPVQIHFNAFPLVDELPGEPGTDNANANANANA
AK018_05612924eamA_2COG0697putative amino-acid metabolite efflux pumpATGGGTCTCGTGCCGACCCGCCACCACCTCCTCGCCGTCGTCGTCGCCCTGCTGTGGGGCCTGAACTTCCTGGCCATCGACGCCTCGCTCGGGCACTTCCCCCCGATGTTCCTGGTGGCGCTGCGGTTCGCCGTGCTGGCGGTGCCGACCGTGCTGCTCGTGCCACGGCCGCAGGTGCCGGTGCGGTGGCTGATCGGGTACGGCCTCGGTTTCGGCGTGCTGCAGTTCACGTTCCTCTACTGGGGGATGGCCGCCGGGATGCCCGCAGGGCTGGCGTCGCTGGTGCTGCAGGCCTCGGGACCGTTCACGGTGGTGCTCGGTGCCACGTTCCTGCGGGAGCGGGTCAGCGGTCGGCAGGTGCTCGGCGTCCTGATCGCGGTGGCCGGGCTCGCCGTCGTGGGCTGGCAGCGCGCCGAGCACGCCGCCGTCCTGCCGTTCCTGCTCACGCTCGCGGGGGCCTTCGGCTGGGCGATCGGCAACGTGTGCAACCGCCGGGCGCAGCCGCGCAACCCGATGCACCTGGCGCTGTGGATGACGGTGGTCCCGCCGTTGCCGATGCTGGCCGTCTCGCTGGTCGTGGAGGGCCCGGACGCGATCGTGGGCTCGTTGACGACGCTCGGGGCACCAGGCGCCGGTGCCGCCCTGGCGGGTCTCGCCTACACGGTGATCTTCGGCACGGTGGTCGGCTCCAGCCTGTGGACGTGGCTGATGGCCCGGCACCCGTCCGGCGTCGTCGCGCCGTTCTCGATGCTCGTGCCCGTGTTCGGCATGTCGGCCGCCTGGCTGGTGCTGGGGGAGACCGTCAGGCCCGGGGAGCTCGCCGGCGGCGTGCTGGTGGTGGTCGGCGTGCTGCTCGGCAGCCGCGCCGCCCTCAGTCCGTCCCAGGCTCGCCCGGGAGCTCGTCCACCAGTGGGAACGCGTTGAMGLVPTRHHLLAVVVALLWGLNFLAIDASLGHFPPMFLVALRFAVLAVPTVLLVPRPQVPVRWLIGYGLGFGVLQFTFLYWGMAAGMPAGLASLVLQASGPFTVVLGATFLRERVSGRQVLGVLIAVAGLAVVGWQRAEHAAVLPFLLTLAGAFGWAIGNVCNRRAQPRNPMHLALWMTVVPPLPMLAVSLVVEGPDAIVGSLTTLGAPGAGAALAGLAYTVIFGTVVGSSLWTWLMARHPSGVVAPFSMLVPVFGMSAAWLVLGETVRPGELAGGVLVVVGVLLGSRAALSPSQARPGARPPVGTRNANANANANA
AK018_05613921cmpRHTH-type transcriptional activator CmpRATGGACGCCCGTCATCTCGACCTGCTGCGCGAGCTGTCGGACCGCGGCAGCATCTCCGCCGTCGCCGCCGCGACCCACCGCACGCCGTCGGCGGTGTCGCAACAGCTCAAGACCGCCCAGCGCGAGCTCGGCGTCGCCCTCGTGGAACCGCACGGCCGCGGGGTCCGGCTGACCGACGCCGGGCGCCTGCTCGCCGCAGGCGGTGCCGAGGTCGCCGCTGCCCTGGCCGAGGTGCAGGCACGGTGGGACGCGTTCCGCGACTCCCCCGCCGGAACCGTGTCCGTCGCGGCGCTGCCCAGCGGGGCGACGTTCCTGTTCCCCGCCCTCGAACGCGCGCTGGCGGGCTCCGGGATCGAGCTGCGGCTGACCGACTCCGACCGCGCCGAGGACGCCTACGGCGCCCTGGCCGCCGATCACGACGTCGTCGTCGGCCACAGCATGACGAGCGTGAGGCCACCGGGCACCGCGGGGCTCGTCGTCGTGCCCGTGGTGGACGAGCCGATCGACGTGGCGATGGCCTCGAGCCACCCCCTGGCCTCCCAGGACACGGTCAGCGCCGAGGACGTCGCACCCCATCCCTGGATCGGCGTCCCGCCGGGATTCCCGTTCGACACGGTGCTGCAGAACGTCGAGCGGGCCACCGGCGCACGGCTCGACGTCCGCCAGCGCCTGCTCGACAACCGGCTCGTGGAGGCGTGCGTCGCGTCCGGCCCGTACCTCGCGGCGCTCCCCCGGTTCACCACGCCGACGACGGGCGGGCTGACGCTGCGCCCGCTGACCGGCGTCCCCGCCGTCCGCCACCTCACGGCGCTCGTGCGGCCGGACCGCGCCCGCCGGCTCGCCGTGCGCCGCGTGCTCGACGCCGTCGTCCGGGCGGGGGCCGACGTCGCCGCGCGCCACGGCGTCGACCGCCCGCCCTGAMDARHLDLLRELSDRGSISAVAAATHRTPSAVSQQLKTAQRELGVALVEPHGRGVRLTDAGRLLAAGGAEVAAALAEVQARWDAFRDSPAGTVSVAALPSGATFLFPALERALAGSGIELRLTDSDRAEDAYGALAADHDVVVGHSMTSVRPPGTAGLVVVPVVDEPIDVAMASSHPLASQDTVSAEDVAPHPWIGVPPGFPFDTVLQNVERATGARLDVRQRLLDNRLVEACVASGPYLAALPRFTTPTTGGLTLRPLTGVPAVRHLTALVRPDRARRLAVRRVLDAVVRAGADVAARHGVDRPPNANANANANA
AK018_05614393hypothetical proteinATGACCATCGACCTCGCGGCCCTCGCCACGTTCCTGCACGAGCGGCTGGACGAGGACGTGGGCACCGCTCAGGACGCCAACGCGACCCGATGGTCGCCGACCGGGACGGAGGTGGACTTCGAGATCTGGTCGGACCGGCTGCGCGACGGCGTCACGCTGTCCCGGCTCGAGGCGTTGAACCGGGCGAACGTCTGGCACATCGTCAACTGGGCCCCACCCCGGGTCCTGGCCGAGGTCGAGTCGAAGCGCCGCATCATCCGGATCTGCCTCGACGAATGGGTGGTTCCCACGGACCTCGGCCTCCGGTCCCGACGGGACCACGTGCTCCGCCTGCTCAGCCTGCCCTACGCCAGACACCCGCAGTACCGCACCGAGTGGCGGCCGACGGCCTGAMTIDLAALATFLHERLDEDVGTAQDANATRWSPTGTEVDFEIWSDRLRDGVTLSRLEALNRANVWHIVNWAPPRVLAEVESKRRIIRICLDEWVVPTDLGLRSRRDHVLRLLSLPYARHPQYRTEWRPTANANANANANA
AK018_056161470hypothetical proteinATGCCTCAGAACGTTCTGACGACGGACACCCCTGCCCAGGACGCGTCAGCGCCCGCCCCGCGCCCGCGGAAGGTGCCGCGGATCGTCGTGCTCGGCGGTGGATCCGTCGGCCTGTACGTGGCGCGCCGGCTGCGCAAGAAGCTCGGCAAGCGTGAGGCGGCCATCGTGGTCGTCGACCCGCGCCCGTACATGACGTACGCGCCGTTCCTGCCGGAGGCCGGCGCGGGCTCGATCGACGCCCGCGACGTCGTCGCCCCGCACCGCATCGCGCTCAAGGGCATCGACGTGCTGCAGGGCAAGGTCACGAAGATCGCCCACGGCGACAAGAAGATCACGATCTCGCCGGAGGAGGGCCTGGACTACGAGGTCTCCTACGACCACGTCGTCGTCGGACTCGGCTCGGTCTCCCGCACGCTGCCGATCCCCGGGCTCGCCGAGCACGGCATCGGGTTCAAGAACGTCGAGGAAGCGATCGCGGTCCGCAACCACGTGCTCAACCGGATGGACGTCGCCTCGTCCACCTGGGACGCGGACCTGCGCAAGCAGATGCTGACCTTCACGTTCGTCGGCGGCGGTTTCGCCGGGATCGAGGCGCTGGCCGAGATCGAGGACATGGCGCGCTACGCGACGCGCAACTACCCGACGATCGAGGAGTCGGACCTCCGCTTCGTCATGATCGAGGGCGCGGGCCGCATCCTGCCCGAGGTCTCCGAGCCCATGGGTGAGTGGGCGCTGGAGGAGATGAAGAAGCGCGGCATCGAGTTCCACCTCAACACCTTCCTGTCGTCCTGCGAGGACGGGCACGTCGTGACCTCCACGGGCGTCGAGTTCGACACCGAGACGATCGTGTGGACCGCGGGCGTCAAGGCGAACCCGGTCATCAAGGAGGCCTCCGACCTGCCCAGCGACCGGATGGGCCGCGTGACGGTGCTGCCGACGCTGCAGGTCGCGGTCACGAACGATGACGGCACCGAGGGTGAGGTCGTGCAGGACGCCTGGGCCGCCGGCGACTGCGCCGCTGTCCCGGACCTGATCAACCCGGGCTCGTTCTGCCCACCGAACGCCCAGCACGCGATCCGCGAGGCGACCCAGCTCGCCGACAACATCATCGCGACGCTCAAGGGCGACCCGCTGGTCGAGTACAAGCACAAGAGCGTCGGCGTGGTGGCCTCCCTCGGCCTGTACAAGGGCGTGGCCGAGCTGTTCGGCTTCCTCAAGCTCAAGGGTCCGCTCGCCTGGATGGCGCACCGCAGCTACCACGTGATGGCGATGCCGACCGGCAACCGCAAGCTGCGCATCCTCATCGGCTGGATCGGTCAGTTCCTCATGGGCCGCGAGATCGTCTCGCTGGGTTCGTTGCACGACCCGCGCGACGAGTTCCGCAAGGCGTCGGTGCCGCCGAAGCCGTCCGGCGACGCCAAGGTGGAGCAGAAGGCCGAGTCCTCGGCGGCCAAGGCCGAGAAGGGCTGAMPQNVLTTDTPAQDASAPAPRPRKVPRIVVLGGGSVGLYVARRLRKKLGKREAAIVVVDPRPYMTYAPFLPEAGAGSIDARDVVAPHRIALKGIDVLQGKVTKIAHGDKKITISPEEGLDYEVSYDHVVVGLGSVSRTLPIPGLAEHGIGFKNVEEAIAVRNHVLNRMDVASSTWDADLRKQMLTFTFVGGGFAGIEALAEIEDMARYATRNYPTIEESDLRFVMIEGAGRILPEVSEPMGEWALEEMKKRGIEFHLNTFLSSCEDGHVVTSTGVEFDTETIVWTAGVKANPVIKEASDLPSDRMGRVTVLPTLQVAVTNDDGTEGEVVQDAWAAGDCAAVPDLINPGSFCPPNAQHAIREATQLADNIIATLKGDPLVEYKHKSVGVVASLGLYKGVAELFGFLKLKGPLAWMAHRSYHVMAMPTGNRKLRILIGWIGQFLMGREIVSLGSLHDPRDEFRKASVPPKPSGDAKVEQKAESSAAKAEKGPGPT0004020_535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885NANA
AK018_05617951ppx2_2COG0248Exopolyphosphatase 2ATGAGCAGCACCCGTGTGGCCGCCGTGGACTGCGGCACGAACTCCATCAGGCTCCTCGTGGCGGACGTCGCTCCCGACGGCACCCTCACCGAGCTGGACCGGCGCATGCAGATCGTGCGGCTCGGCCAGGGCGTCGACCGCACCGGAGAGCTCGCGCCGGAGGCCCTCGCGCGCACCCTGACGGCCTCGGGGGAGTACGCGAAGATCGCCGCCGAGCTGGGGGCGACGCGTACCCGGTTCGTGGCGACGTCGGCCACCCGCGACGCGCGCAACCGGGACGTCTTCGCCGAGGGCGTCCGCGCGACGCTGGGCGTGGACCCGGAGGTCATCACGGGCGACGAGGAGGCCGCGTTGTCGTTCCGCGGGGCGATCAGCGGGGAGGCGGCGTCCCATCCCGGCCCGTACCTCGTGGTGGACCTCGGGGGCGGGTCGACCGAGCTGGTGCACGGGACGACGGCGCCGGACGCCGCGGTCTCGATGGACGTCGGTTCCGTGCGGCTCACCGAACGCCACCTGCACTCCGACCCGCCGACGGCCACCGAGGTCGACCGGGCCCGTGCGGACGTCGACGCCGCGCTCGACGCGGCCTCCGCCGTCGTCCCGCTGGGCCGCACGTCGACGTTGGTAGGGCTGGCGGGCTCGGTGACGTCGGTGACCGCGCACGCGCTCGGCCTGGACGCCTACCGCCGCGAGAAGATCAACGGCACGGTGCTCGGTGTGCCGCAGGTGCTGGCGGCGTGCGAGGACCTGCTCGGCCGCACGCGCGAGCAGCGGCTCGATCTCGGGTTCATGCACCCGGGGCGCGCCGACGTCATCGGCGCGGGCGCGCTGGTCTGGGCGCAGGTCGTGGCACGGGTGCGCGACGACGTGGCGGCGTCGGGCGGCGAGCTCACGCAGGTCGTGACCAGCGAGAGCGACATCCTCGACGGGATCGCGCTCTCGCTGGCCTGAMSSTRVAAVDCGTNSIRLLVADVAPDGTLTELDRRMQIVRLGQGVDRTGELAPEALARTLTASGEYAKIAAELGATRTRFVATSATRDARNRDVFAEGVRATLGVDPEVITGDEEAALSFRGAISGEAASHPGPYLVVDLGGGSTELVHGTTAPDAAVSMDVGSVRLTERHLHSDPPTATEVDRARADVDAALDAASAVVPLGRTSTLVGLAGSVTSVTAHALGLDAYRREKINGTVLGVPQVLAACEDLLGRTREQRLDLGFMHPGRADVIGAGALVWAQVVARVRDDVAASGGELTQVVTSESDILDGIALSLAPGPT0002595_4615DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
AK018_05618513hypothetical proteinGTGGCAACCGCGACCTCTGACGACCCGACCACGGCGACCGACCGCGACCTCGAGGTGATGGCCGAGCAGCTCGGCCGCGAACCCCGCGGGGTGGTGGGCATCGCCGCACGCTGCGTGTGCGGACGGCCGCTCGTGGCCCGCACCGCCCCGCGGCTGCCGGACGGCACCCCCTTCCCGACCACCTACTACCTGACCCACCCGGGTGCGGTGGCGGCGGCGTCGCGCCTGGAGGCGGAGGGCGTGATGAAGGAGATGACCGAGCGGCTCGCCCAGGACGAGGAGCTGGCCGCGGCCTACCGCGGGGCCCACGAGCACTACCTCGCCCGGCGCGCCGAGCTGGGGCACGTCGAGGAGATCGAGGGGATCTCGGCCGGCGGGATGCCGACCCGCGTGAAGTGCCTGCACGTCCTGCTCGCCCACAGCCTGGCGGCCGGCCCGGGGGTCAACCCGCTGGGCGACGAGGCGCTGGACCGGGTCCGCGACCAGTGGCGTCCCGACCGGTGCTCGTGCTGAMATATSDDPTTATDRDLEVMAEQLGREPRGVVGIAARCVCGRPLVARTAPRLPDGTPFPTTYYLTHPGAVAAASRLEAEGVMKEMTERLAQDEELAAAYRGAHEHYLARRAELGHVEEIEGISAGGMPTRVKCLHVLLAHSLAAGPGVNPLGDEALDRVRDQWRPDRCSCPGPT0002595_2705DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
AK018_05619678hypothetical proteinGTGGCCTCCCGTCGACCGTCCGCACCGCGCCGCCCCGCCTCCCGGCCGGGCGCCCGCTCGACCGCGCGCTCCGGGGCCCGGACCACCGCACGCTCCCGGAGCACGGGGGCGACCCGCACCGCCTCGAACGCGACGAAGCCGCCCCGCCGCCCCTCGGGCCCGGCCCGCGACGAGCGCCGGCGCAGCCGCCTGGGACTGGTGCTGCCGGAGGTCCTGACCGTCCGGCTCCTCGTCCTCGGCGTGGTGCTCATGCTGTCGTTCGTGCTGCTGCTGCCCACCGTGCGCGGCGCCGTCCAGCAGCAGGCGGAGATCGACCGGCTCGAGGCCGAGCTGAGCGCCCACCGTGCGGAGCTGTCCGAGCTGGAGGACGAGCTGGCGCGCTGGGACGACCGCACCTACGTCGTCCAGCAGGCCCGCAGCCGGCTCAACTACGTGCTGCCGGGGGACACGGCGTGGCGGGTGGTGGACGGCGACGCGGTGTCCGACGGCGGCACCACCGCGACGGACGACGCCCCGCAGCCGGTGGCCACGGGCACCCCGGCGGTCCCCTGGTACCAGGGGATGTGGGAGTCGGTGCAGGTGACCGACGAGGTCGGCGCGGACGCCGCGGGGGAGCCGGACCGTGACGCGTCCGACGTCGACGGCGCCGCGGACGAGGGCGAGGACGGGGGAGAATAGMASRRPSAPRRPASRPGARSTARSGARTTARSRSTGATRTASNATKPPRRPSGPARDERRRSRLGLVLPEVLTVRLLVLGVVLMLSFVLLLPTVRGAVQQQAEIDRLEAELSAHRAELSELEDELARWDDRTYVVQQARSRLNYVLPGDTAWRVVDGDAVSDGGTTATDDAPQPVATGTPAVPWYQGMWESVQVTDEVGADAAGEPDRDASDVDGAADEGEDGGENANANANANA
AK018_05620852groL1_1COG045960 kDa chaperonin 1GTGCTGAACAAGATCCGCGGCACCTTCAAGTCCGTCGCCGTCAAGGCCCCGGGCTTCGGCGACCGCCGCAAGGCCATGCTGCAGGACATCGCGATCCTGACCGGCGGCCAGGTCATCACCGAGACCGTCGGCCTCAAGCTGGAGAACGCCACGCTCGAGGAGCTCGGCCAGGCGCGCAAGGTCGTCGTCACCAAGGACGAGACCACGATCGTCGAGGGTGCCGGCGACGCCGACCTCATCGAGGGTCGCGTCCAGCAGATCCGCTCCGAGATCGACAAGTCGGACTCGGACTACGACCGCGAGAAGCTCCAGGAGCGCCTCGCCAAGCTGGCCGGCGGCGTGGCCGTCATCAAGGCCGGCGCGGCCACCGAGGTCGAGCTCAAGGAGCGCAAGCACCGCATCGAGGACGCCGTCCGCAACGCGAAGGCTGCCGTCGAGGAGGGCATCGTCGCCGGTGGTGGCGTCGCGCTGCTGCAGGCCGGTGCCGTGGCGTTCGAGAAGCTGGAGCTGGACGGCGACGAGGCGACCGGTTCGCAGATCGTCAACGCGGCGATCTCGGCCCCGCTGAAGCAGATCGCCATCAACGCCGGCCTCGAGGGCGGCGTCGTGGCGGAGAAGGTCAAGAACCTCCCCTCGGGCCACGGCCTGAACGCCGCGACCGGCGAGTACGAGGACCTGCTGGCCGCGGGCGTCAACGACCCGGTCAAGGTCACGCGCTCGGCGCTGCAGAACGCCGCGTCCATCGCCGCGCTGTTCCTCACCACCGAGGCGGTCGTCGCCGACAAGCCGGAGCCCGCCGCGGCCCCGGCCGGCGACGGCGGCATGGGCGACATGGGCGGCATGGGCTTCTGAMLNKIRGTFKSVAVKAPGFGDRRKAMLQDIAILTGGQVITETVGLKLENATLEELGQARKVVVTKDETTIVEGAGDADLIEGRVQQIRSEIDKSDSDYDREKLQERLAKLAGGVAVIKAGAATEVELKERKHRIEDAVRNAKAAVEEGIVAGGGVALLQAGAVAFEKLELDGDEATGSQIVNAAISAPLKQIAINAGLEGGVVAEKVKNLPSGHGLNAATGEYEDLLAAGVNDPVKVTRSALQNAASIAALFLTTEAVVADKPEPAAAPAGDGGMGDMGGMGFPGPT0014570_5472DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014570-groEL|mopA-K04077NANA
AK018_05621291hypothetical proteinGTGCGATACGAGGTCGACAGCGATCGGGTGGCGCAGGCGAGCGCGGCGGTGAACGGTTCCGTCGGGGCGATCCGCGCCGAGGTCGGCGCGATGATGCGTCACCTGCAGGATCTCCAGGCGAGCTGGCACGGCAGCGCGGCGACGTCGTTCGCCGGCGTGATGACGCAGTGGCAGTCCGCCCAGACCCAGGTCGAGACCGCCCTGGACTCGGTCACCACCGCTCTGCAGGCGGCGTCGCAGACCTACTCCGACGCGGAGAGCCAGGCGACCCGCCTCTTCGCGACCCGCTGAMRYEVDSDRVAQASAAVNGSVGAIRAEVGAMMRHLQDLQASWHGSAATSFAGVMTQWQSAQTQVETALDSVTTALQAASQTYSDAESQATRLFATRNANANANANA
AK018_05622729hypothetical proteinATGGGCGTGCTCCACGCCGACGCACCACAGTGGTTCCTCTCCGCGTTCGTCCGGACGTGTCACGGAGCCGGCGCCACCGCCTCGGAGGACGACGTCCGAGCGGTCGGGACCGAGCTCATCGACCGATGGTCGGAGACGGATCGCCACTTCCACAACCTGCGCCATCTCGCCGCCGTCCTGCACCGGGTCGACGAGCTCGCGCACGAGACGCACGAGCCGGACCTGGTCCGCCTCGCGGCCTGGTACCACGGCGCCGTGTTCGACGCCGACCGCAAGATCGCCTACGCGACGCGCGGCGGCGAGCAGACCACGTTGAGCGCCGAGCTGGCACGCGACCAGCTCACGGGGCTCGGAGTGCCCGCCCCGCGGGCCGATCGCGTCGCCGAGCTGGTCGAGACCATGGCCCGCCACAAGGCGCTGCCGGGGGACTTCGACTCGGCGGTGCTCAACGACGCCGACCTCGGCATGCTGGCCGCGGAGCCGCAGCGCTACAAGGAGTACGTGGCGGCGATCCGCGCCGAGTACGCGCACATCCCGCTGCCGGACTACCTCGAGGCGCGGATCAAGGTGATCTCGAAGCTGCTCGGGCGGCCCCAGCTCTTCGTCAGCCCGCTGGGGCTGACGTGGGAGGAGCCGGCCCGGCAGAACCTCGACGCGGAGCTCCACCGGCTGGTCAAGGAGCGTCGTCGGCTCGAGGCCCAGACCCCCGCGGGGCCGGCCCGCCAGTAGMGVLHADAPQWFLSAFVRTCHGAGATASEDDVRAVGTELIDRWSETDRHFHNLRHLAAVLHRVDELAHETHEPDLVRLAAWYHGAVFDADRKIAYATRGGEQTTLSAELARDQLTGLGVPAPRADRVAELVETMARHKALPGDFDSAVLNDADLGMLAAEPQRYKEYVAAIRAEYAHIPLPDYLEARIKVISKLLGRPQLFVSPLGLTWEEPARQNLDAELHRLVKERRRLEAQTPAGPARQNANANANANA
AK018_056231494sasA_16Adaptive-response sensory-kinase SasAATGACGGACCCGCTGCCCGACGGCGAGCGCCGCTGGAGCTGGGTCGCGCGCACGCCGCTGCGTGTCCGTCTGGTGGCGATCATCGTCCTGCTGCTCGGCGCCGGGCTCGTGCTGGCCGGGCTGACGACCCGGACGGTGGTGTCGAACTATCTCGTCGACGAGCTGGACAGCCAGCTCACCCAGTCCGCCCAGAGCGTGGCGCGCCTGACGACGCTGAACCCGGCGGAGGGCGGCCAGCGCATCCCCAGCGACTACGCGGTGACGCTGCGCAGCTGCAACGGGCTCGACGGCGGCCCGGTGGGCTGGGAGGAGACCCTCGACCGCTTCGGCGAGCCGGAGATCCCCGACGAGTCGCTGGACACCGTCGTGGCCCGCGGGATCAAACCGTTCACGGTGGGCTCCTCCGGCGGCGGCGACCCGTCCCAGTGGCGTGTCGTGTCGATCCCGTGCAGCCCGTTCCGCGGGGCGGAGGTGCAGGGCGCCGCCTACGTCGCGCTGCCGATGGCAGACGTCGAGGAGACGAGCGAGTACCTGGGCCGTTCGCTGCTGTGGATCGGCCTCGGCATCGTGCTGCTCGGCGGGGCCCTGGCGCTGTGGCTGGTCCAGCGCGCCTTCCGGCCGCTGCGCCGGATCGAGGCGACGGCGGCCGCGATCGCCGAGGGCGACCTGTCGCAGCGCGTGCCGGAGGACCAGCCCGCCAGCACCGAGGTCGGGTCGCTCTCGCTGTCCTTGAACGCGATGCTCACCCAGATCGAGGCGGCGTTCGCCGCGCAGGAGGCCTCGGAGCAGCGCATGCGCCGGTTCGTCTCCGACGCCAGCCACGAGCTGCGCACGCCGCTGGCCACCGTCAAGGGGTACGGCGAGCTGTACCGGATGGGCGCCCTGGACTCGGCCGACAAGGTCGAGGACACCATGGGCCGGATCGAGGACTCGGCACGCCGGATGGGTTCGCTGGTCAACGACCTGCTGGTGCTCGCCCGGCTGGACGAGGGCCGTCCGCTGCGCCGGGAGCCCGTGGACCTGGCCGCCCTGGCACGGGACACCGCCCAGGACCTGCACGCCCTGGACCCAGGACGGTCCGTCCACGTGACCGGGCTGCGGCCCGGCGAGCCCCCGCCGTCGGCCCTGCCGGTCACGGGTGACGCCGACCGGCTGCGGCAGGTGCTGACCAACCTGGTGGGCAACGTCGCCCGGCACACGCCGGCCGGCTCGCCGGCAGAGCTGGCCGTGGGCACGTCGCCCGAGGGCGACGCCGTGGTCGAGGTCCGCGACCACGGACCGGGGGTCTCCGCGGAGCAGGCGGACAAGATCTTCGAACGGTTCTACCGGGCCGACTCCTCGCGCAACCGGGAGTCCGGGGGCTCGGGCCTCGGCCTGGCGATCGTGGCCGCGATCCTGGGAGCCCACGGTGGCAGCACCTCGGTGCACGAGACGCCCGGCGGCGGTCTGACCGTGCGGGTTCAGCTTCCGCGCGCAGGCGGCTACGATGCGTGAMTDPLPDGERRWSWVARTPLRVRLVAIIVLLLGAGLVLAGLTTRTVVSNYLVDELDSQLTQSAQSVARLTTLNPAEGGQRIPSDYAVTLRSCNGLDGGPVGWEETLDRFGEPEIPDESLDTVVARGIKPFTVGSSGGGDPSQWRVVSIPCSPFRGAEVQGAAYVALPMADVEETSEYLGRSLLWIGLGIVLLGGALALWLVQRAFRPLRRIEATAAAIAEGDLSQRVPEDQPASTEVGSLSLSLNAMLTQIEAAFAAQEASEQRMRRFVSDASHELRTPLATVKGYGELYRMGALDSADKVEDTMGRIEDSARRMGSLVNDLLVLARLDEGRPLRREPVDLAALARDTAQDLHALDPGRSVHVTGLRPGEPPPSALPVTGDADRLRQVLTNLVGNVARHTPAGSPAELAVGTSPEGDAVVEVRDHGPGVSAEQADKIFERFYRADSSRNRESGGSGLGLAIVAAILGAHGGSTSVHETPGGGLTVRVQLPRAGGYDAPGPT0004100_636DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
AK018_05624747tcrX_1COG0745putative transcriptional regulatory protein TcrXATGGCCACCACCGACGCCAACGCACCCGAGGCACGCCTCGTCGTCGTCGACGACGAGCCCAACATCCGCGAGCTGCTGTCCACCTCGCTGCGCTTCGCCGGCTTCGAGGTGCACGCCGCCGAGGACGGGGCCGGTGCGTTGCAGCTGGTGCGGGACACCGAGCCGGACCTGGTGGTGCTCGACGTGATGCTGCCCGACATGGACGGGTTCACCGTCACCCGACGCATGCGCGCCACCGGACGGCACACCCCGGTGCTGTTCCTGACCGCACGCGACGACACCCAGGACAAGGTCCAGGGGCTGACGGTCGGCGGCGACGACTACGTGACCAAGCCGTTCAGCCTCGAGGAGGTCGTGGCGCGCATCCGTGCCGTCCTGCGCCGCACGGCCGGCGGCGAGCCCGAGGACGACGCCGTGCTGCGCGTGGGGGACCTGGAGCTCGACGAGGACTCCCACGAGGTGCACCGTGCCGGGGTCGAGATCGACCTCTCCCCCACCGAGTTCAAGCTGCTGCGCTACCTCATGCTCAACGCCGGCCGAGTGCTGTCCAAGGCGCAGATCCTCGACCACGTCTGGCAGTACGACTGGGGCGGGGACGCCAACATCGTCGAGTCCTACATCTCCTACCTGCGCCGCAAGATCGACCACGTGACGGTCCCCGGCCCCGACGGCACCGACGTCGACCTCCCGGCCCTCATCCACACCAAGCGGGGCGTGGGCTACCTGCTGCGGACTCCGCCGCGATGAMATTDANAPEARLVVVDDEPNIRELLSTSLRFAGFEVHAAEDGAGALQLVRDTEPDLVVLDVMLPDMDGFTVTRRMRATGRHTPVLFLTARDDTQDKVQGLTVGGDDYVTKPFSLEEVVARIRAVLRRTAGGEPEDDAVLRVGDLELDEDSHEVHRAGVEIDLSPTEFKLLRYLMLNAGRVLSKAQILDHVWQYDWGGDANIVESYISYLRRKIDHVTVPGPDGTDVDLPALIHTKRGVGYLLRTPPRPGPT0002665_1055DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002665-phoP|phoB1-K07658NANA
AK018_056251392hypothetical proteinGTGACCCAGCAGTCCCCGCCCGAGCAGCCCGTCCGTCCCGTCGGTCGCGGACCCGTGGTGCGCCGTTGGGTCGCCGGCGCGATGGTCGTGATCACCACGTTGCTGGTGGTGGCCTCCTGCCTCGCCCTGTGGGCCCACCGCACGGTGCTCGACACCGACCAGTTCGTGGACACCGTCGAGCCCGCGCTCGACGACCCGGCGTTCTACGACGCCCTGGCCGACACCGTCTCCGACGAGGTGCTGCTCGCGCTCGACCTCGACACCCGGGTCGCGGAGCGTCTCGACCAGCTCGACGCCGCGCTCGTGGCAGCCCTGGCGGCCCGGGTCGACGTCGAACGCGGTCCGCTGCTGGAGGCACTGGGCGGGCAGGTCGAGCGGCCGTCGCTCGCCGCCCTGACCCCGTTGATCGTCGAGCCGCTCGAGGAGCGGGTCGACTCCGCCGTGGACCGCGCCCTCACCTCCGACGCCGTCGCGGACCGGGTGCCGCAGCTCGTCGAGCGTGCGCACGCCGGGGTGGTCGCCGTGGCCCGGGCCGACGTCGACGAACGACCGAACGTCTACCTGACCGACGACGCGGTCATGCTCAACACGCTGCCGTTGGTCGCGGACGCGCTGCGCGAGTCGCTCGGGGAGGCGGGGGCCGTCGTCGGCGACATCCCCGTGCCGGACGTGGTGTCCGAGCGGGCGCCGGAGGCGCGGGAACAGCTCGTCGAGGCGCTCGGCCGGCAGCTCCCCGAGGGCTTCGGCCAGGTGGAGCTGATGGACCGGGAGACCTTCGACGGGGTCCAGGGCGCGGTGACGCTCGTGGACCGGGCCGTGTGGGCGCTGGTGGCGCTGACGGTGCTGGCGATCGTGGCCACGGTGTGGGTCGCGCCGGACCGGCGCCGCGGCGCCGTCCAGCTCGCCCTCGGGGTGCTCGCCGGCGTCGTCGTGGTCACGGCGCTCGTCGCCCAGCTGCGCACCCTGGTGGTGGACGTGGCGCGCACCGCGGACGGCGAGCGGGTCGCCACCACCCTCTACGAGGCCGTCGCCGGGGAGATCCACGAGATCTTCTGGCTCGTGGGCGTCGTCGCGGTCGTGACCGTCGTCGTCGGCGTGCTGCTCGGTCGTCCGCGCTGGCTGGTCGCCGCCGGCCGCCGCTGGCCGTGGGTGGCCACGGTGACGGCCCAGGACGGCCGGCTCGCCCGCTGGGTCGGCGCGCACGCGGACGCGCTGCGCGTCGCCGTGCTGGTCGCGGCCGTCCTCGTCGTGGTCCTGACCGGCTTCCTTTGGGTGGTGCTCGTGCTGACCGTCCTGGGGGCGATCGCCGCGCTGTGGGCGATCACGATCGCCCAGCGGTCCGCGGCGCTCCCCGGCGAGCGCCGGCGGGACGTGCCCGCCGACATCGCGTAGMTQQSPPEQPVRPVGRGPVVRRWVAGAMVVITTLLVVASCLALWAHRTVLDTDQFVDTVEPALDDPAFYDALADTVSDEVLLALDLDTRVAERLDQLDAALVAALAARVDVERGPLLEALGGQVERPSLAALTPLIVEPLEERVDSAVDRALTSDAVADRVPQLVERAHAGVVAVARADVDERPNVYLTDDAVMLNTLPLVADALRESLGEAGAVVGDIPVPDVVSERAPEAREQLVEALGRQLPEGFGQVELMDRETFDGVQGAVTLVDRAVWALVALTVLAIVATVWVAPDRRRGAVQLALGVLAGVVVVTALVAQLRTLVVDVARTADGERVATTLYEAVAGEIHEIFWLVGVVAVVTVVVGVLLGRPRWLVAAGRRWPWVATVTAQDGRLARWVGAHADALRVAVLVAAVLVVVLTGFLWVVLVLTVLGAIAALWAITIAQRSAALPGERRRDVPADIANANANANANA
AK018_05626603hypothetical proteinATGGCCTCCCCCTTCTCCGAGCCGACCACCGTGCCGACGCGCGGCACCGCGCGCACCACCTACCTGCTGGTGGACGGCGAGAACATCGACGCCACCCTCGGCATGAACGTCCTCAACCGCCGCCCGAACCCCGAGGAGCGGCCCCGCTGGGACCGGATCACCGGGTTCGCCCAGCGCGTCTGGGGGCAGGACGTCGTCCCCCTGTTCTTCCTCAACGCCACCAACGGCCAGATGCCGATGTCGTTCGTCCAGGCGCTGCTGGCGATGGGCTACCGTCCGATCCCGCTGGCCGCCAGCGGGGACGAGAAGGTCGTCGACGTCGGTATCCAGCGCACGCTGGAGGCCATCGCCGACCGCGAGGCGGACGTGCTGCTGGCCAGCCACGACGGCGACTTCCTGCCGCAGATCGAGCGGCTCCTCGACGAGGACCGGCGGGTCGGCCTGCTGGCGTTCCGCGAGTTCGTCAACATGCAGCTCGCGGGGCTGACCGCCTCCGGCCTGGAGATCTTCGACCTGGAGGGCGACGTGGACGCGTTCACGAGCCCGCTGCCGCGCGTGCGGATCATCCCGATCGACGAGTTCGACCCGCTGCGCTTCCTCTGAMASPFSEPTTVPTRGTARTTYLLVDGENIDATLGMNVLNRRPNPEERPRWDRITGFAQRVWGQDVVPLFFLNATNGQMPMSFVQALLAMGYRPIPLAASGDEKVVDVGIQRTLEAIADREADVLLASHDGDFLPQIERLLDEDRRVGLLAFREFVNMQLAGLTASGLEIFDLEGDVDAFTSPLPRVRIIPIDEFDPLRFLNANANANANA
AK018_05627834hypothetical proteinGTGTCCGAGTTCGAGTTCTCCGCGGTGCCTCGAGTCACCGTCCTGCAGCACAGCTCCGACGTCCCCGTCGACCGGTGGCGGTCGGCGCTCGGCGACACCCGCGTGGTCCGGCTGTTCGCCGGCGAGCCCGTCCCGACGCTCGCCGAGTGCGGCGACGGTCTCGTGGTGCTCGGCGGGCAGATGCACGCCTACGCCGACGACGAGGCGCCCTGGCTGCCCGGCGTCCGGTCGCTCCTGGCCGAGGCCGTCACCGCCGACCTGCCCACCCTCGGGGTCTGCCTCGGGGCGCAGCTCCTGGCCGTCGCCGGCGGCGGGAGCGTGGCCGTGGCCGCCCCGCCCGGGCGCGAGGCCGGCGTCGTCCCCGTCTACTGGCGCACCGAGGCCCTCGACGACCCCGTCGTCGCCCCGCTCGCGCGGGCCGCCGGCGCCGAGGACACCGAGGACCTCGACGGCCGGGGCGCTGCGACGTCCTTCGTGCAGATGCACTCCGACGCCGTGATCGAGCCGCCGCAGGACGCGCAGTGGCTGGCGTGGTCGGAGATGTACCCCTACCAGGCATTCCGGTGGGGGTCGGCGCTCGGCGTGCAGTTCCACCCCGAGGCCGGCCCGACGACGGCGGTGCGCTGGGCGCTCGCGCACGTCGACGTGGAGACGGCTGCCGTGCACGCGCAGATGGTCGAGCACGACGTCGAGCTCGCGCGCTCGGGGGCGATGCTGGCCGAGGCGTTCCTGGGCCAGGTGGCCGCCGGCGTCGGACGGGGCGCCGATTCGCGGGCTGACGCGCGGGCCGACGCGCGGGGTGCCGACACGCCGACCGATGCCGAGGCCGCCTGAMSEFEFSAVPRVTVLQHSSDVPVDRWRSALGDTRVVRLFAGEPVPTLAECGDGLVVLGGQMHAYADDEAPWLPGVRSLLAEAVTADLPTLGVCLGAQLLAVAGGGSVAVAAPPGREAGVVPVYWRTEALDDPVVAPLARAAGAEDTEDLDGRGAATSFVQMHSDAVIEPPQDAQWLAWSEMYPYQAFRWGSALGVQFHPEAGPTTAVRWALAHVDVETAAVHAQMVEHDVELARSGAMLAEAFLGQVAAGVGRGADSRADARADARGADTPTDAEAAPGPT0021580_5805DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
AK018_05628741hypothetical proteinATGAACCAGAAGCAGAGCATCCTCGGCCGGATCGGCCAGCTCGCGAAGGCGAACATCAACGCGCTCATCGACCGCGCCGAGGACCCGCAGAAGATGCTCGACCAGCTCATCCGCGACTACACGAACAACATCGCCGAGGCCGAGCAGGCGATCGCCCAGACCATCGGCAACCTGCGCATGGCCGAGCAGGACTACCACGAGGACACCCAGTCGGTGCAGGAGTGGGGCGCCAAGGCGCTGGCGGCGTCGCGCAAGGCCGACGAGCGGCGGGCGGCCGGCGACACCCCGAACGCCGACAAGTTCGACCAGCTCGCGAAGATCGCGCTGCGCAAGCAGCTCGACGCCGAGAACGAGGTCACCACCGCCCGGCCGATGATCGAGCAGCAGCGGGTCACGGTCGAGAAGCTCAAGACCGGTCTGGCGCAGATGAAGGACAAGCTGGTCGACCTCAAGTCCAAGCGCGACCAGCTCGTCGCGCGGCAGAAGGCGGCCGAGGCGCAGCAGACCGTGCAGGGTGCGATCAGCTCGATCAACGTCATGGACCCGACCAGCGAGCTCAACCGCTTCGAGGAGGCCGTCCGGCGCGAGGAGGCGCAGGCCATGGGGCAGGCGGAGATCGCGGCGTCGTCGCTGGACTCGCAGTTCGCCGAGCTGGAGGGGTCGATGGAGGACCTCGAGCTCGAGGCCCGGCTCGCGGCCCTGAAGTCCGGGTCCCCGCAGCCGGGACAGCTCGAGTCCTGAMNQKQSILGRIGQLAKANINALIDRAEDPQKMLDQLIRDYTNNIAEAEQAIAQTIGNLRMAEQDYHEDTQSVQEWGAKALAASRKADERRAAGDTPNADKFDQLAKIALRKQLDAENEVTTARPMIEQQRVTVEKLKTGLAQMKDKLVDLKSKRDQLVARQKAAEAQQTVQGAISSINVMDPTSELNRFEEAVRREEAQAMGQAEIAASSLDSQFAELEGSMEDLELEARLAALKSGSPQPGQLESPGPT0014646_743DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_SHOCK_PROTEINS,PGPT0014646-pspA-K03969NANA
AK018_056292160hypothetical proteinATGCAGATCGTGATCCCCTCTCTCCGGACCGAGCGGCGACGCCCGGTCTCACCGGTCGTCGCCGTCCTGACGCTCGCCGTCGCGGTCGCCGCCCTCGGGGCGGTCGCCACCGGGCCCGCCCACGCCGTCGGCCCCGTGACCGCCGAGGCTCCGCTCTCCGAGCTCGACGGAGACGTCACCGACGTCGCCGGCGTGCTGGACGAGACCGGTGCCGCCGAGGTGCAGACCTCCCTGGACGAGCTCGCGACGGAGACGCCGTACCAGCTGTTCGTCGTCTACGTCGACCGGTTCGACGGTCTCGACGGCCGCGAATGGGCGGACGCCACCGCGAACAACGCCCGGCTCGGCACCGAGGACGTCCTGCTCGCCGTCGCGACCGAGGACCGGCTGTACGGCATGAGCTGGGACAACAACATCGACCTCAGCGAGCAGCAGCTCGACGCCGTCCGCGACGCCGCCGTCGACGCGCTGCGCGCCGACGACTGGGCCGGTGCCACCGTCGCCGCCGTCGACACCCTGCTCGCCGTCACCGGGTCCGACGGCGCCTCCAGCGGGGCCGCCGCCGGCACGGGTACCGGCGACGGAGGCGGCGGAGGCGTTCCCGGGATCCTCGTGTGGGTCGCGATCGGCGCCGTGGTCGTCGTCGGTGGGTTCTTCCTCGTGCGCCGCGCCCGGCAGAAGGACGCCGACCTCGCCCGGCGCGGGGCCGCCGCGGCGGCACGCCGACGTCGGACCGCCGCCTCCCCAGCGGCGCGCCCCGGTCGGGGCCGCACCGCGGGGCCCGACCCGGACCGCTTCGCCGGGCTCGGCCTGGAGGAGATGCGGCAGCGGGCCGGCAGCGCGCTGGTGGCGGTCGACGACGCCGTCAAGACCTCCGAGCAGGAGCTCGCGTTCGCCGAGGCCGAGTTCGGTGTCGAGGAGACCCGCGAGTTCAGCGCCGCTCTGGACGCCGCGCGTCAGGAGGTCGCCGCGGCCTTCCACGCCCGCCAGGTCCTCGAGGAGACACCGGACGACACGTTCGGCGAGCACGAGGAGCTGGCAGCGATCATCACCCGCTGCGAGACCGCCGCCGCCTCCCTGGACGCCCAGACCGACGCCTTCGACGAGCTGCGGCGCATCCGGGCCCGCGCGCCGGAGATCCTCGACGAGGCCGAGCGGCGCGCCGGGGAGATCAGCGCGCGCATCGAGATCGCCCGTCACACCGTCGCCGGGCTGGCCGCGACCTACCCGGCCTCGGCGCTGGCCTCGATCAGCACCAACCCCGACCAGGCCGAGTCGCTGGTGGCCAACGCCCGCGAGATCGTCGCCTCCGGCCGCGAGGCGCTGCGCCGGCGCAAGCGGGCCGTCGCCGTCACCGACGCGCGGGCCGCCCAGAACGCGCTCGGCCAGGCCATGACCCTGCTCGAGTCCGTCGCGAGCGCCGGGGACGATCTCGCCGACGCCGGCACGCGCCTCGAGACGGGGATCGCCTCCATCACCCAGGACATCGTCGACGCCGACCGGCTGGCCCCCGGCGACGAGCGGGTCCGGTCCGCCGCCGCCGAGGCCCGCGAGGCCGCGGACCAGGCCCGGGACGCGAAGGACGGCGGAGACCCGCTGGCCGCCCTCACCCGGCTCGCCGCGGCCGAGGCCGCCCTCGACGACGCGCTCGCCCCGTCACGGCAGCGGGCCGAGTCCGACGCCCGCGCCCGCGCCCTGCTGCGCGACGTCCTCGGGCGCACCGAGTCCCACCTGCGCTCCACGCGGGACTACATCACCACCCGGCGTGGCGCCGTCGGACCCGACGCACGCACCCGGCTGGCCGAGGCCGAGCGGCTCGTCGCCGAGGCCCGGTCGCTGCAGCGCACCGACCCGCAGGCGGCCCTGGCCGCCGCGCAGCAGGCCGAGCGCTACGGGCAGCAGGCCGCGCAGATGGCCCAGCAGGACACCACCGGGTGGGACATGCGCTACGGCAGCGGCGGGCCACGCCGGGGGGCCGACGTCGGCGGCATGATCCTCGGCGGCATCCTCATCGACTCGATGATGCGCGGCGGGCGGCGGCGCGGCCGCTTCGGCTCGACCGGCGGGTTCGGCGGCGGCTTCGGTGGTGGTCTCGGTGGTGGCGGCCGCGGTGGCCTCGGCGGCGGCTTCGGTGGCGGCGGAGCCGGAGGCCGGTTCTGAMQIVIPSLRTERRRPVSPVVAVLTLAVAVAALGAVATGPAHAVGPVTAEAPLSELDGDVTDVAGVLDETGAAEVQTSLDELATETPYQLFVVYVDRFDGLDGREWADATANNARLGTEDVLLAVATEDRLYGMSWDNNIDLSEQQLDAVRDAAVDALRADDWAGATVAAVDTLLAVTGSDGASSGAAAGTGTGDGGGGGVPGILVWVAIGAVVVVGGFFLVRRARQKDADLARRGAAAAARRRRTAASPAARPGRGRTAGPDPDRFAGLGLEEMRQRAGSALVAVDDAVKTSEQELAFAEAEFGVEETREFSAALDAARQEVAAAFHARQVLEETPDDTFGEHEELAAIITRCETAAASLDAQTDAFDELRRIRARAPEILDEAERRAGEISARIEIARHTVAGLAATYPASALASISTNPDQAESLVANAREIVASGREALRRRKRAVAVTDARAAQNALGQAMTLLESVASAGDDLADAGTRLETGIASITQDIVDADRLAPGDERVRSAAAEAREAADQARDAKDGGDPLAALTRLAAAEAALDDALAPSRQRAESDARARALLRDVLGRTESHLRSTRDYITTRRGAVGPDARTRLAEAERLVAEARSLQRTDPQAALAAAQQAERYGQQAAQMAQQDTTGWDMRYGSGGPRRGADVGGMILGGILIDSMMRGGRRRGRFGSTGGFGGGFGGGLGGGGRGGLGGGFGGGGAGGRFNANANANANA
AK018_05630780hypothetical proteinGTGCTGAGAACCGCAACCACCGCCCTGCTGGGCGCCGGGGCCGTGACGCTGGTGCTGACCGGCTGCGGGGCCGACGAGGGGGCCGACGTCGTCGACCTGGCGGCGCTGTCGCAGCGGATGGACGAGGCGCAGGCCGAGCAGGGGTCGGTGCACGTCGAGACCACCTTCGCCGGGGAGCTCGCCGAGCGGACCGGGATGACCGAGTCCGCGCAGAGCGGGGACGTGATCGTCGGGGAGGGCCTCGAGGACTCCGCCTTCGCGATGTCGATCGGCGCGGTGGGGACCGAGATGGAGATGATCCTGCTCGAGGGCACCATGTACGTCGACATGAGCGCCCTCAGCGGCGGCGAGGTCGACTGGGTCGCGATGTCGGCGGACGAGGTCGCCCAGGACCCGACGTTCGCCGGGACCATGGACTCGATGCTCGCGATGGACCCCGCCGGGCAGGCGGAGATGATGGCCGACGCCGTGACGGCGTTCGCGCACGGGGGCACCGAGGAGCTCGACGGGCGGACGGTGGACGTGTACACGATGACGCTCGACCCGACACGTCTCGAGGCCGCGGCCGGAGCCGCGCCGACGGCCGTCGACCAGATGGACGACATGACGGCGGAGTTCCGCGTCACCGAGGACGGCCTGCCGCTGGCGGTGGACACGACGGTGGAGATCGACGGTCAGGAACTCGTGACCGCGACCACCTTCTCGGGCTGGGGCGAGCCGGTCGAGATCGAGGCGCCGCCCGCCGACCGGGTCACCGACTACGGCGAGCTGATGGGCTGAMLRTATTALLGAGAVTLVLTGCGADEGADVVDLAALSQRMDEAQAEQGSVHVETTFAGELAERTGMTESAQSGDVIVGEGLEDSAFAMSIGAVGTEMEMILLEGTMYVDMSALSGGEVDWVAMSADEVAQDPTFAGTMDSMLAMDPAGQAEMMADAVTAFAHGGTEELDGRTVDVYTMTLDPTRLEAAAGAAPTAVDQMDDMTAEFRVTEDGLPLAVDTTVEIDGQELVTATTFSGWGEPVEIEAPPADRVTDYGELMGNANANANANA
AK018_056311254COG0628Putative transport proteinATGACCGACGACGACGCCGCACCGGAGACGGAGCAGGACGCGGCCGAGACCGGTTCGCCGGCAGCACCGCCGCACGACGACGACCGCCCGCTCCAGCACGACGACCGGCGTCCGCCGCGCTGGGTACCGCGCGTGCTCGTCATGGGCGCCGCCGCCGTGTTCGCCGCCGTGTGGGTCTGGGGGGCGATCCAGCAGCTCAACACCCTCTTCGTCTACCTGCTCATCGCAGGCTTCGTCGCCCTCGCCCTCGAACCGGTCGTCGTGTGGCTCGTGCGGCACGGCTGGCGGCGCGGTGTCGCGGCCGCCGCCGCGTTCTTCGGGTCCGTCCTCCTCGGGATCGGGATCCTGGCGCTGTTCGGCAACCTGTTCATCCAGCAGCTGATCCAGCTCGTCGGCACCCTGCCCGACGTCTACGTGGCGGCCCAGGAACGCCTGCAGGCCAACCTCGACGTCGAGCTGCCGTCCTCCGACGACCTCCTGCAGCAGCTCGTCGAGGAGTACGGCTCCGACGTCGCGTCCGGCACCCTCGCCGTCGGCACCACCGTCGTCGGGTTCGTGTTCGCCGCGCTGACGATCGGGCTCGTCACCTACTACCTCATGGCGGCCGGGCCGCAGTTCCGCGCCGCCGTGTGCCGGTGGCTCAGCCCGGACCGGCAGACCGAGGTGCTGCGGATGTGGGAGATCACGCAGGTGAAGGTCTCGGACTTCATCAGCTCCCGCGTCGTCCTCGCGGCGCTGTCGGCGGCGTTCACCGCGGTGTTCCTCATCGTCCTCGGCACGCCCTACGCGCTCCCGCTGGCCCTGTTCACCGGACTGGTCTCGCAGTTCATCCCCACCATCGGCACGTACATCGGCGGCGCGCTGCCCGTCGCCGTCGCGCTGACCTCCCAGGGTGTGCCCCAGGCCGTCGCCGTGCTGGCCTTCATCATCGCCTACCAGCAGCTGGAGAACCTGTACTTCTCACCGAAGATCTCCGCGCGGGCGCTGGAGATGAACCCCGCCGTCAGCTTCGTCGTCGTGCTCGCGTTCGGGGCGGTGTTCGGGGCCCTGGGGGCGTTCCTGGCACTGCCGGTGGCCGCGACCATCCAGGCCATCGCCAACACGTACCTGACGCGGCACGAGCTGGTCGACTCCGACATGCTGCGGGACCCGGACCGGCAGCCGCCGAAGGGGTCACGCCGGTCGCGCAACCTGCGCGCCGCGCGGGAAGCCGCGCGCACGGTCGCCGAGCGCCGGGCCGACGGCGTGGGGTGAMTDDDAAPETEQDAAETGSPAAPPHDDDRPLQHDDRRPPRWVPRVLVMGAAAVFAAVWVWGAIQQLNTLFVYLLIAGFVALALEPVVVWLVRHGWRRGVAAAAAFFGSVLLGIGILALFGNLFIQQLIQLVGTLPDVYVAAQERLQANLDVELPSSDDLLQQLVEEYGSDVASGTLAVGTTVVGFVFAALTIGLVTYYLMAAGPQFRAAVCRWLSPDRQTEVLRMWEITQVKVSDFISSRVVLAALSAAFTAVFLIVLGTPYALPLALFTGLVSQFIPTIGTYIGGALPVAVALTSQGVPQAVAVLAFIIAYQQLENLYFSPKISARALEMNPAVSFVVVLAFGAVFGALGAFLALPVAATIQAIANTYLTRHELVDSDMLRDPDRQPPKGSRRSRNLRAAREAARTVAERRADGVGNANANANANA
AK018_056321680hypothetical proteinATGCCCGACGGCCCCCTGATCGTCCAGAGCGACAAGTCGATCCTGCTCGAGGTCGACCACGCGCGCGCCGAGGAGGCGCGCCGCGCCATCGCGCCGTTCGCCGAGCTCGAGCGCGCCCCCGAGCACGTGCACACCTACCGGCTGACGAACCTCGGCCTGTGGAACGCCCGCGCCGCCGGCCACGACGCCGAGCAGGTCGTCGACACGCTCATCGCGTACTCGCGCTACCCCGTCCCCCACTCGCTGCTGGTTGACGTCGCCGAGACGATGGGCCGCTACGGCCGCCTCACGCTGCACTCCCACCCCACGCACGGGCTCGTGCTGGAGTCCACCGACGCCGCGGTGCTGGCCGAGGTGCTCAAGTCCAAGCGGACCACCGGGCTGGTGGGCGAGCGGGTCGACGGCAGCTCCGTGGTCGTCCACCCCTCCGAGCGCGGAAACCTCAAGCAGGCGCTGGTCAAGCTCGGCTGGCCCGCCGAGGACCTCGCCGGGTACGTCGACGGCGAGGCGCACGCGATCGACCTGCGGACCACCACGACGCCGGTCTACCCGGGCGAGGAGGCCTCCGACTGGACGCCGCGGCCGTACCAGCAGCAGGCCGTCGACGGCTTCTTCCACGGCGGGTCCGGCGTCGTCGTGCTGCCCTGCGGCGCCGGCAAGACGATCGTCGGCGCCGGGGCCATGGCCGAGGCCAAGACCACCACGCTGATCCTGGTGACCAACACCGTCTCCGCGCGCCAGTGGCGCGACGAGCTGGTGCGCCGGACCTCGCTCACCGAGGACGAGATCGGCGAGTACTCGGGCTCGCGCAAGGAGATCCGCCCGGTCACCATCGCGACCTACCAGGTGCTGACGACCAAGCGGAAGGGCGTCTACACCCACCTGGAGCTGCTGGACGCCCGCGACTGGGGCCTCATCGTCTACGACGAGGTGCACCTGCTGCCCGCCCCGATCTTCCGCATGACCGCCGACCTGCAGGCCCGGCGTCGGCTCGGCCTGACGGCGACGCTCGTGCGCGAGGACGGCCGCGAGGACGAGGTGTTCTCCCTCATCGGCCCCAAGCGGTACGACGCGCCGTGGAAGGACATCGAGGCGCAGGGCTACATCGCGCCCGCCGACTGCGTCGAGGTGCGGCTCACCCTGCCCGAGCACGAGCGCATGCTCTACGCGACCGCCGAGCCGGAGGACAAGTACCGGCTCGCCGCGTGCGCCCCCGGCAAGAACCGCGTCGTCGAGCAGATCGTCGCCGACCACCCCGACGACCAGGTGCTGGTGATCGGGCAGTACATCGACCAGCTCGAGGAGCTCGCCGAGCACCTGGACTCCCCGCTGATCACCGGGTCGACCACCGTCCGCGAGCGCCAGAAGCTGTTCGCGGCGTTCCGGGCCGGCGAGATCTCCCGGTTGGTGGTGTCCAAGGTCGCGAACTTCTCCATCGACCTGCCCGAGGCGTCGGTGGCGATCCAGGTCTCCGGCTCGTTCGGCTCCCGGCAGGAGGAGGCCCAGCGCCTCGGCCGGGTCATGCGCCCCAAGCAGGACGGCCGCACGGCGCACTTCTACGCCGTCGTCGCCCGGGACACCGTCGACCAGGACTTCGCGGCGCACCGCCAGCGGTTCCTGGCCGAGCAGGGCTACGCCTACCGCATCGTCGACGCCGAGGACCTGGACGCCGTGCCGTAGMPDGPLIVQSDKSILLEVDHARAEEARRAIAPFAELERAPEHVHTYRLTNLGLWNARAAGHDAEQVVDTLIAYSRYPVPHSLLVDVAETMGRYGRLTLHSHPTHGLVLESTDAAVLAEVLKSKRTTGLVGERVDGSSVVVHPSERGNLKQALVKLGWPAEDLAGYVDGEAHAIDLRTTTTPVYPGEEASDWTPRPYQQQAVDGFFHGGSGVVVLPCGAGKTIVGAGAMAEAKTTTLILVTNTVSARQWRDELVRRTSLTEDEIGEYSGSRKEIRPVTIATYQVLTTKRKGVYTHLELLDARDWGLIVYDEVHLLPAPIFRMTADLQARRRLGLTATLVREDGREDEVFSLIGPKRYDAPWKDIEAQGYIAPADCVEVRLTLPEHERMLYATAEPEDKYRLAACAPGKNRVVEQIVADHPDDQVLVIGQYIDQLEELAEHLDSPLITGSTTVRERQKLFAAFRAGEISRLVVSKVANFSIDLPEASVAIQVSGSFGSRQEEAQRLGRVMRPKQDGRTAHFYAVVARDTVDQDFAAHRQRFLAEQGYAYRIVDAEDLDAVPNANANANANA
AK018_056331698hypothetical proteinATGACGAACCATCCCCGATCTCGCCTGCGCCGCGGCGCACGCCTCGTCGCCGCGCTGGCCGCGATGCTGGCGCTCGCCGCGCCGCTCGCCCCCGCGACGGCCACCGACGACGCCGGCACGGTCGACGTGACGCTCGCCGCCGCCGACTGCACGGCCATGGCCGGCACCACCATCACCGCCCCCGACGACGCCGAGGAGTCCGGCACCGTGTCCGCCGTCGTCGAGACCGCCCAGGTCGTCGACGGCTCCTGCGAGCTGAGCGGGACGGCCGGCGGCACCGTCGGCTACACCCTGCAGCTGCCGCTGGAGGACTGGAACGGCCGCTACTTCCAGACGGGCTGCGGCGGCTTCTGCGGCTCCGTGCCCATCGCGGACTGCGCCGAGCCGCTCGCCGACGGGTTCGCCGTCGGGGCCGAGAACACCGGGCACGTCGGATCCAGCGCCGACGCGTTCCTCGACGACCCCCAGGCCGAGGCGGACTGGGGCTACCGGTCCCCGCACGTGCTCGCCGTCGTCGCCAAGGCCACCCTCGCCGAGCTGTACGGCACGCCGCCGTCGACCTCGTACTTCATGGGCTGCTCCACGGGCGGCCGCCAGGCCCTCAGCGAGGCCCAGCGCTACCCGGAGGACTTCGACGGGATCGTCGCCGGCGCCCCCGCCCTCTACCAGAACTACCTCGCGGTGCTCTCCCAGGGGCACTTCGAGACGGCCAACCGGGACGCCGACGGGGGCCTCGTCCTCGACACGACCGACGTGGGCCTGGTGTCCGACGCCGTGCTGGCGTCCTGCGACCTCGACGACGGCCGGGCCGACGGCGTCGTGGGGGACCCGCTGACCTGCGCCTTCGACCCGGCGACCCTGCTGTGCGCCGACGGCGGGGACGGCACGGACTGCCTGACCGCCACCCAGGTCGAGACCCTCGAGGCGCTCTACAGCGCGCCCACCACCGACGACGGCGAGCTGCTCTACCCCGACGGCCTCGCCCTCGGCTCGGAGGCCGGCTGGCCGTTCATGACCGTGGCCACGAGCGAGGGTTCGATGTCCATCAGCGGCGACTACGCCCAGAACGTGCTGCGCTACCTGGCCTTCCCCGAGGACCCGGGCGCCGAGTACTCCCTGGGCGACTTCGACCCGTCGACCGAGGCCGACCTGCTGCACACCCAGGCCGCGGTCTACAACGCCGACGACGTCGACCTGTCGGCGTTCCGCGAGCGGGGTGGCAAGCTCATCCTCTGGCACGGCTGGGCCGACCCGCTCATCACGCCGTACGGCACCCTCGACTACTACGAGCGCGTGGTCGACGCCGACGGCGGGGCGCGCGTGACCGACTCCTACCTGCGTACCTTCATGCTGCCGGGCGTCTACCACTGCAGCGGTGGACCCGGGCAGGACGAGGTCGACTGGATGTCCGCGATCTCCGCCTGGGTCGAGGACGACGTGGCCCCCGAGTCCGTCACCGCGACCGGCAACGGCGCGACCCGCGTGGTCGAGCGGTACGAGGCCGGCGGTGTCGAGACGGTCGACTGGATCGGTGCGCCGCAGGCCCCGGCCCCGGGTGCCTCGGGCGACGCCCCGGGTGCCTCGGGCGACGCCCCGGGCCGTACCGGTCGGACGCCGGGGCACGGCGGGGACGTCCCCGGCCGGACCGGCACGGCTCCGGGTCTCGCCGGCGTCGCGCCGGGCCGCCTGAACGGCTGAMTNHPRSRLRRGARLVAALAAMLALAAPLAPATATDDAGTVDVTLAAADCTAMAGTTITAPDDAEESGTVSAVVETAQVVDGSCELSGTAGGTVGYTLQLPLEDWNGRYFQTGCGGFCGSVPIADCAEPLADGFAVGAENTGHVGSSADAFLDDPQAEADWGYRSPHVLAVVAKATLAELYGTPPSTSYFMGCSTGGRQALSEAQRYPEDFDGIVAGAPALYQNYLAVLSQGHFETANRDADGGLVLDTTDVGLVSDAVLASCDLDDGRADGVVGDPLTCAFDPATLLCADGGDGTDCLTATQVETLEALYSAPTTDDGELLYPDGLALGSEAGWPFMTVATSEGSMSISGDYAQNVLRYLAFPEDPGAEYSLGDFDPSTEADLLHTQAAVYNADDVDLSAFRERGGKLILWHGWADPLITPYGTLDYYERVVDADGGARVTDSYLRTFMLPGVYHCSGGPGQDEVDWMSAISAWVEDDVAPESVTATGNGATRVVERYEAGGVETVDWIGAPQAPAPGASGDAPGASGDAPGRTGRTPGHGGDVPGRTGTAPGLAGVAPGRLNGNANANANANA
AK018_05634771kipRCOG1414HTH-type transcriptional regulator KipRGTGCCCGAGGACCACCGTTCGTCGACGACGCACCGCGTCGCACAGGTGCTGCTGGCGTTCACGGGGCAGCAGCGCTGGCTGGGTGTCACGGAGCTGGCCCGGCGGCTGGGGCTGGGCAAGGCCGTCGTGCACCGCATCCTGCAGGCGCTGGTGGAGACAGGCCTCGTCCGCTACGACGAGAACCGCCGGCTGTACGCGCTCGGCCCCACGGCGGTGGCGCTGGGCCGCGGTGCGGACGCCGCCAACGAGCTGCTCACCGCGGCACGCCCGGTGATCGCCCACCTCAGCCACGCCACCGGCGAGACGACCACCGTCACCCAGCGCACCGGGCACACCCGGACCTACGTCGGCCAGGCGGAGAGCGCCCAGCACATCCGGATCGCCATCACGCTCGGCGAGCACCAGCCGCTGACGAACGGCGCGAGCGGGCTGAGCATCCTGGCCTTCCTGCCCGAGGAGGACGTCGACCTGGTCCTCCAGGTGCCGCTACCGCAGTTCACCCCTCGCACCGTCACCGACCCGGACGCCATCCGCGAGCGCCTGGCCGAGATCCGCGAGCGCGGCTGGGCCTACACGGCGTCCGAGCGCGTGCCGCACTCGAGCAGCGTGGCCGCGCCGATCTACGACGTCACCGGTGCCGCGGTCGGCTCCCTGTCCGTGGCCTACCTCGACTCGCGCTTCGACGAGCGCGAGGTGCCCCGCCTGGCCGACCTCGTCGTCGAGGCGGCGGAGTCCGCGACGCAGCGACTGGTCGCGGCACAGCGCGGCTGAMPEDHRSSTTHRVAQVLLAFTGQQRWLGVTELARRLGLGKAVVHRILQALVETGLVRYDENRRLYALGPTAVALGRGADAANELLTAARPVIAHLSHATGETTTVTQRTGHTRTYVGQAESAQHIRIAITLGEHQPLTNGASGLSILAFLPEEDVDLVLQVPLPQFTPRTVTDPDAIRERLAEIRERGWAYTASERVPHSSSVAAPIYDVTGAAVGSLSVAYLDSRFDEREVPRLADLVVEAAESATQRLVAAQRGPGPT0018213_312DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
AK018_056351260COG0683Leu/Ile/Val-binding proteinATGAAGCGCAGCCTGCGGAACTGGTCCGTGGTCGGACTGGCCGGAGCGACGCTCGCACTGAGCGGGTGCGCCGGCTCGGCCGTCAGCGCGGCCGGCGGCGACGCGGAGGCCACCACCGAGGACGTGGCCGAGATCCACATCGGCGCCCTGCACCCGCTCACCGGGTCCAACGCGGCGGACGGCCAGCAGATGGCCGCTGCGGCCCAGATGGCCGTCGACGCCGTCAACGAGGCCGGGGGCATCGAGTCGCTCGGCGGGGCCGAGCTCGTCCTCGACTCGGCGGACACCCAGGGCGAGGCCGAGACGGGCCAGAGCGAGGCCACCCGCCTCATCGAGGAGGGGGCCGTCGCACTGCTCGGCACCTTCCAGAGCGGCACCAGCGCGAACGTCGCGTCGGTGGCGGAGCGCAACCAGGTGCCGTTCGTCATGGACGTCTCCGCCCTCGACGAGATCCTCGAGCAGGGCTACACCTACTCGTTCCGCCTCCAGCCCAGTGCCAGCCAGATGGGCACCCAGGGAGCCGAGTCGCTGCTGTCGCTCGTGGAGGACTCCGGCGCCGAGGTGGACCAGGTCGCCTACCTGTACGAGCAGGGCAACTACGGTGCCGCGGCCTACGAGACCTTCCTCGCCGAGGCCGAGGAGGCCGGACTGACCGTCGACCCGGTGATCCAGTACGACCCCGCCGCGGTCAACGACATGACCACCCAGATCACGCAGGTCGCCGCCTCGGACGCCGACGCGCTCGTGGTGACCGGCTACTACCGCGACTCCCTGCTCGTGGCGCAGGCGGTCGACATCGTCGAGCCGGACCTGCAGGCCGTGTACGGCGTCGCCAACGGCGCCTACGACCAGCCCGACTTCGTCAACGACGCCCCGAACGGCGGCGACGGCTACTTCGACGCCAACTACCACTGGGACGTCACCAACGCCGACTCCCAGGCGCTGGCCGAGGCGTTCGAGGCCGAGCACGGCGAGCCGATCCGCAGCTCCGCCGTCCTGTCCTACGACGCCGTGATGGTCATCGCCGAGGCGCTCGAGCGCGCCGGGTCCACCGACACCACGGCCGTGCGCGACGCGGTCACCGAGACCGGGTACACGCCGCTGATGGTCGCCAACGGACCCGTCACCTTCGACGAGACCGGCCAGAACACCAACGCCGCCGTCGTGGTGATGCAGATCCAGGACGGCGACATCGTCCAGGTCTTCCCGCAGGAGTTCGCCGAGACGGACTACGTCTTCCCCGCTGCGCCGACCGAGTGAMKRSLRNWSVVGLAGATLALSGCAGSAVSAAGGDAEATTEDVAEIHIGALHPLTGSNAADGQQMAAAAQMAVDAVNEAGGIESLGGAELVLDSADTQGEAETGQSEATRLIEEGAVALLGTFQSGTSANVASVAERNQVPFVMDVSALDEILEQGYTYSFRLQPSASQMGTQGAESLLSLVEDSGAEVDQVAYLYEQGNYGAAAYETFLAEAEEAGLTVDPVIQYDPAAVNDMTTQITQVAASDADALVVTGYYRDSLLVAQAVDIVEPDLQAVYGVANGAYDQPDFVNDAPNGGDGYFDANYHWDVTNADSQALAEAFEAEHGEPIRSSAVLSYDAVMVIAEALERAGSTDTTAVRDAVTETGYTPLMVANGPVTFDETGQNTNAAVVVMQIQDGDIVQVFPQEFAETDYVFPAAPTEPGPT0020765_2837DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
AK018_056361005livH_3COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGGCCACGAGCCTGCAGAACGCGCCGGAGACCACCGGCTCGGCCGCGCGGCGGCCCACCCTGTCCGAACGCCAGAAGGTCGCGATCGTCACGGTCTCGGTCCTGGCGGTCGTGACCGCGGTCGCCGCGCTCCGCGCCGGGAGCAGCACCGTGCTGGTCCAGGCACTCGTCACCGGCGTGCTCACCGGTGGCATCTACAGCCTCGTGGCCATGGGCCTCACGCTCATCTACGGGGTCCTGCACATCATCAACTTCGCCAACGGCGCCCTCGTGGCGCTGGCGATGTACCTGACGTTCGTCACCGTCGACACGATGGGCGTCCACCCCTACACCGCCCTGCTGGTCGTCGTCCCCGCGATGGGCGTGCTCGGCGCCCTGCTGCAGACGTCGCTGCTCAACCCGGTCATGCGGGCGCCGATCCAGATCCAGCTCCTGGTCACCATCGGCCTCGCGCTGGCGATCGAGAACGTCCTGCTCCTGGTGTTCGGGCCCACCCCGCGCTCCGTCCAGCTGCCCGGCAACGTCGGGGTCAGCATCCTCGGCGCCACCGTCGAGCTGTCGCGGATCTACGCGTTCGTCGGCGCGCTGGTGCTCGTGGCGATCCTGTCGCTCGTGCTGCAGAGGACGGCGATCGGCACCTCGATCCGCGCCGTGGCCGCCAACCCCGAGGGCGCCCGGCTGGTCGGCATCAACACCAGGGCGATCTACTCGGTGACCTTCGCGCTCGGCGCCATGGCCGCCGGTGCCGCCGGCGTGCTCGTCGCCCCCTTCACGACGATCGAGCCCACCAGCGGGGCGATCTTCAACCTCACGGCGTTCGTCGTCGTCGTCCTCGGCGGGATGGGCAACATCCCCGGCGCCCTGGTCGGCGGGCTCGTCGTCGGGCTCACCGAGCAGCTGGCGGGTCTGATCCTGCCGGACGAGAGCCCGCTGCTGGCCGTGTTCGTCGTCTTCCTCATCGTCCTGTTCATCCGCCCCAAGGGTGTCTTCGGGAGGGCCTCGTGAMATSLQNAPETTGSAARRPTLSERQKVAIVTVSVLAVVTAVAALRAGSSTVLVQALVTGVLTGGIYSLVAMGLTLIYGVLHIINFANGALVALAMYLTFVTVDTMGVHPYTALLVVVPAMGVLGALLQTSLLNPVMRAPIQIQLLVTIGLALAIENVLLLVFGPTPRSVQLPGNVGVSILGATVELSRIYAFVGALVLVAILSLVLQRTAIGTSIRAVAANPEGARLVGINTRAIYSVTFALGAMAAGAAGVLVAPFTTIEPTSGAIFNLTAFVVVVLGGMGNIPGALVGGLVVGLTEQLAGLILPDESPLLAVFVVFLIVLFIRPKGVFGRASPGPT0020770_1274DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
AK018_056371071hypothetical proteinGTGACCACCACCGCAACCCCACGCACCTCGACCTCCGCAGGCGGCGGGCTGACCGGCCGCCTCACCACCGACACCGGGTCGCAGCGCTCGCGCGGCGACTACGTCGTCCTCGCCGTGTTCGTCGCCGTCGCCGCGGCCGTGCCGTTCGTCCTGTCCGCCTCGGACATGGCCATCGCCAACCGCGTCCTGATCTTCGCGATCATGGGTGTGGGCTGGAACATCATGGCCGGGTTCGGGGGCATGTTCTCCTTCGGCCACGCCGCCTACTTCGGCATCGGGGCCTACGCGACCGCCTACGGCGTCGTCGTCCTGGGACTCAGCCCCTGGCTCGGGATGCTCCTCGGCATCGCGATCTCCGTCGCGGCCGGTGTCGGCATCTCCTACCTGGCGCTGCGGTACAAGCTCACCGGCGCCTACTACACGATGTCGACGTTCGCGTTCGCCGAGGCGCTGCGCCTGTTCGTCATCGGCAACGACGCGCTGAACCGCACGGTCGGCTTCACGATCCCCGTGCAGCAGGGCTCGTCCCTGGTGGACTTCCAGTTCCCGGCGGGCTCGCCCTGGTACTACTGGATCGGGCTGGGCCTGCTCGGCATGTGCCTGCTGGCCTCGATCCTCTTCGTCCGGTCCCGGCCCGGCCGCTTCACCATCGCCGCCCGGGACGACGACGTGGCCGCCGCCGCGCTCGGCATCGACGTGCTGCGGCACAAGCTGTTCGCCGTGGCCGTCTCGGCCGCGATCACCGCCGTCGCGGGCACGTACTACGTGCAGTACTACATGTTCGTCGACCCGGAGATCGCCTTCGGCGCCGCCGCATCGAACGACGCCATCATCACCGCGGTCGTGGGCGGCACGGGCACCATCTGGGGCCCGATCGTCGGCGCGATCATCATGGCGCCGCTGTCGGACGTCGTCACCGGGTTCCTGCGCACACCGCCGCCCGGGTTCGACTGGCTCGCCGGCCACGGCGGCCTCGACATCATCCTCTACGCCGTGATCCTCGTCGCGGTCGTGATCCTGCTCCCCAAGGGCGTGTACGGCACGCTCGTGTCCCGTCGGAGGAAGTCGTGAMTTTATPRTSTSAGGGLTGRLTTDTGSQRSRGDYVVLAVFVAVAAAVPFVLSASDMAIANRVLIFAIMGVGWNIMAGFGGMFSFGHAAYFGIGAYATAYGVVVLGLSPWLGMLLGIAISVAAGVGISYLALRYKLTGAYYTMSTFAFAEALRLFVIGNDALNRTVGFTIPVQQGSSLVDFQFPAGSPWYYWIGLGLLGMCLLASILFVRSRPGRFTIAARDDDVAAAALGIDVLRHKLFAVAVSAAITAVAGTYYVQYYMFVDPEIAFGAAASNDAIITAVVGGTGTIWGPIVGAIIMAPLSDVVTGFLRTPPPGFDWLAGHGGLDIILYAVILVAVVILLPKGVYGTLVSRRRKSPGPT0020775_6542DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
AK018_05638732gbuA_2Glycine betaine/carnitine transport ATP-binding protein GbuAGTGACCGCTGTTCTCGAGGCCACCGGCATCAGCAAGTCCTTCCGCGGCCTGCAGGCCCTGCGCGGGGTCGACATCTCCGTCGAGGAGGGGCAGATCCTGGGCATCATCGGCGCCAACGGCGCCGGCAAGACGACCCTGTTCAACTGCATCACCGGCAACTTCCCGCCGACGTCCGGCACGGTCCGGCTCGACGGCGCGGACGTCACCGGGCAGCCCGCGCACAAGCTCGCGCACCGCGGCATGGTCCGTACGTTCCAGCTCATGCGGCCGTTCCACACCATGACCGTGCTGGAGAACGTGGAGATCGCGGCGATGAGCCGCGGCGCGCGCGGCGGCACGGCACGCCGGGAAGCCGGCGAGACCGTCGAGCGGACCGGGCTGGCGGAGTGGGCCGACCAGCTGTCCGGCTCGCTGCCCGCCGCGATGCAGAAGCGTCTCGAGCTGGCCCGCGCGCTCGCCATGCGTCCTCGGGTCCTGCTGCTCGACGAGGTGCTCGCCGGGCTCGTCCCGGCCGAGCGCGCTCCCGTGCTGGACCTGCTGGAGAACCTCCGTGACACCGAAGGGATGACGATGGTCTTCATCGAGCACATCATGGCCGCGGTCCGGCGGCTGTCCGACCACGTCGTGATGATGGACTCCGGTGCCGTGCTGGCCACCGGCTCGGCCGACGAGGTCCTCACCGACCCGCAGGTCGTCGAGGCCTACCTGGGCAAGGAGGCCTCCGATGCTTGAMTAVLEATGISKSFRGLQALRGVDISVEEGQILGIIGANGAGKTTLFNCITGNFPPTSGTVRLDGADVTGQPAHKLAHRGMVRTFQLMRPFHTMTVLENVEIAAMSRGARGGTARREAGETVERTGLAEWADQLSGSLPAAMQKRLELARALAMRPRVLLLDEVLAGLVPAERAPVLDLLENLRDTEGMTMVFIEHIMAAVRRLSDHVVMMDSGAVLATGSADEVLTDPQVVEAYLGKEASDAPGPT0020780_9221DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
AK018_05639699livF_4COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGCTTGAGCTCACGGGTGTCCGCAGCGGCTATCACGGCCTGGAGATCCTCCACGAGGTGAACCTGACGGTGCAGCCGGGCGAGATCGTCGCGATCGTCGGTGCCAACGGCGCCGGCAAGTCCACCACGCTGCGCACGATCGTCGGCGAGGTGAAGCTCCAGGGCGGGTCGGTCACCTTCAAGGACCATCCCGTCGTGGGTGGGCGCAGCCACGAGCTCGCCCGCCGCGGGCTCATGCTCGTGCCCGAGCACCGGGCGCTGTTCGGGTCGCTGACGGTCGACGAGAACCTCACCATGGGTGCCCGCGCCCGCAAGGGGCGCTGGGGGTTCGAGAAGGACTGGATCCTCGACCTCTTCCCCATCCTGCGCGAGCGGCGCACGCAGCTCGCCGAGACCATGTCGGGCGGTCAGCAGCAGATGCTCGCCATCGCCCGGGCGCTCATGGGGTCGCCGGACCTCCTGCTGCTCGACGAACCGTCCACCGGCCTGTCGCCCAAGCTGACCTGGACGGTGTTCGACGCCGTCAAGGCGATCCGCGACCGCGGGGTCAGCGTGCTGATCGTCGAGCAGAACGCCTCCCAGGTGCTGTCCTTCGCCGACCGGGCCTACGTGCTCGAGTCGGGGTCGGTCGTGCTCGAGGGATCCGGTGCCGACCTGGCGGACGACGCGCGCGTCCAGGCCGCCTACCTCGGGGGCTGAMLELTGVRSGYHGLEILHEVNLTVQPGEIVAIVGANGAGKSTTLRTIVGEVKLQGGSVTFKDHPVVGGRSHELARRGLMLVPEHRALFGSLTVDENLTMGARARKGRWGFEKDWILDLFPILRERRTQLAETMSGGQQQMLAIARALMGSPDLLLLDEPSTGLSPKLTWTVFDAVKAIRDRGVSVLIVEQNASQVLSFADRAYVLESGSVVLEGSGADLADDARVQAAYLGGPGPT0020785_9115DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
AK018_056401341prpD2_2COG20792-methylcitrate dehydratase 2ATGACGCTCAGCGGACTGGCGTCCTGGGCCGCCGCGCTGCGGCTCGACGACGTCACCCCGGACGCGCGGGCCGCCCTGGAGGACGTGCTGGCGAACCTGCTGGCCGTCACCGCGGGCGGGCACGGGACACCGGCGATGCGCCGGCTCGTGGACGTCTGGGACCCCGCACCCGGACCGTGCACGCTCGTCGGTGTCCCCGCGCAAGGGGTCACCGTCGAGGCCGCCGCGTGGCTGAACTCGGCCGCGGCCGTGCGGACCGAGCTCGACGACGGCAACCGCTTCGCCGCCGGTCACCCGGCCGCGCTGAGCCTCTTCGGCGTGCTGGCGCAGGCGGAGGCGACGGGGGCGAGCGGCAGCAAGCTGCTCGAGGCGCTCGTCGTGGCGTACGAGGTCTCCGCGCGGATCGGCCGGGCCACCACCCTCGCGGCCGACGTGCACACCCACGGCACGCTCGGTGCACCGGGGACGGCGGCCGGGTGCGCGGTGCTGGCCGACGCCGGTGCCGACGTCGTCGAACGGGCCGTGCGCACCGCGCTCGGCGGGCTCGTCGCGACCTCCTGGACCCCGGTGCTCGCCGGCTCGGACGTCCGTGACACCTGGGCGGGCACCGGAGCGGTCGCCGGCCTGGCCGCCGCCCGCGTCGCGCGCGCCGGCTGGGCGGCACCCGGCACCGGGATGCCGCCGGCCGTCGGCGAGCTGGACCCGGAACAGCTGGTGCCCGTCGGCACCGACCTGCTCCTCGCCCACGGCTACCTGAAGCAGCACGCGGCCTGCGCGTACACGCACGCCCCCGCGGACGCCGCGCTCGCGGTGCGCGAGCGGCTGGCCGCCGCCGGACGCGACCTCGACGACGTCGCGTCGATCACCGTCGCCACGGCCCCGGCCGGGGTGCGGCTCGCCGCCCGGCGGTGGAGCACCCCGCACGGTGCGCACTTCTCCACCCCGTTCGCCGTCGCCAGCGCCCTCGTGCACGGCGACGTGGCCCCGCACCGGTCCGACCCCCTCCGGGCGCCCGCCGTGTCCGGGGTCGCCGACCGGGTCGAGCTGGAGACGCTGGAACCCGGCGACCCCGGCGCCCGTCCGGCGCGCGTCCGGCTCACGCTGGACGACGGCACGGTCCTCGAGGCCGCCGTCGACCACCCGGCCGGGGACCGCGACCTGACCCCCTTCGACGCCGCCGACCGGCGGCGTCTGCTCACCCAGGCGCTCGCCGCCGGGGCGTCGCGCGTCACCGCGGACGACGTCGCCGGCGTCGTGCGCTCGCTCGCCGACGCACCGCGGTGCGACGAGCCGCTCGCGAGGCTGCGGCCCCGCCCGACCACGAGGAGGAACCACCCATGAMTLSGLASWAAALRLDDVTPDARAALEDVLANLLAVTAGGHGTPAMRRLVDVWDPAPGPCTLVGVPAQGVTVEAAAWLNSAAAVRTELDDGNRFAAGHPAALSLFGVLAQAEATGASGSKLLEALVVAYEVSARIGRATTLAADVHTHGTLGAPGTAAGCAVLADAGADVVERAVRTALGGLVATSWTPVLAGSDVRDTWAGTGAVAGLAAARVARAGWAAPGTGMPPAVGELDPEQLVPVGTDLLLAHGYLKQHAACAYTHAPADAALAVRERLAAAGRDLDDVASITVATAPAGVRLAARRWSTPHGAHFSTPFAVASALVHGDVAPHRSDPLRAPAVSGVADRVELETLEPGDPGARPARVRLTLDDGTVLEAAVDHPAGDRDLTPFDAADRRRLLTQALAAGASRVTADDVAGVVRSLADAPRCDEPLARLRPRPTTRRNHPNANANANANA
AK018_05641678nicFCOG1335Maleamate amidohydrolaseATGACGGACTGGAACGCGGAGGTCGAGACCATCCGCCGCCGGCGCGCCGAGCGCACGAAGGTCGGACCGGGCGAGCGTCCTGCGGTCGTCGTCGTCGACTTCCAGCGCGCCTTCACCGAGCACGAGAACATCGGTCCGGGCACCGCCGTCGCCCTCGAGCACACCCAGCGGCTGCTCACGGCGGCCCGCGCCGCGGACGTCCCGGTGATCTACCTGGTGATGGTCCTCGACGACCTGGACGACCGGATGCTCGCCCAGCGGGTGCGCTCGTCGCTCACCGAGCGCTGCCTGCGCGGCGACCCGTGGACGGAGATCAGCCCCGCCGTGCCGCCGGCCCCGCAGGACCACGTCGTGGAGAAGACCGTCGCGTCCGGCTTCTGGCGCACCCGCCTGGACGACCTGCTCGCCGAGCTCGGGGTCGACGAGCTGGTGATGACGGGCACGTCGACCAGCGGCTGCGTGCGCGCCACCGTCGTCGACGCGGCCTACCGCAGCCTGCGCGTGAGCGTCGTCGAGGAGTGCTGCGACGACTTCCGCGTGCTGTCCGGCGAGACCAGCCTGTGGGACATGCAGGACCGGTTCGGCGACGTCGTCTCCCTGGACGAGACGCTCGAGCGGTTCGCCGCCCGGGCGGCGGGACCGGGCCGGACGGTCGACGACGCGGCGGTGCACGCGTGAMTDWNAEVETIRRRRAERTKVGPGERPAVVVVDFQRAFTEHENIGPGTAVALEHTQRLLTAARAADVPVIYLVMVLDDLDDRMLAQRVRSSLTERCLRGDPWTEISPAVPPAPQDHVVEKTVASGFWRTRLDDLLAELGVDELVMTGTSTSGCVRATVVDAAYRSLRVSVVEECCDDFRVLSGETSLWDMQDRFGDVVSLDETLERFAARAAGPGRTVDDAAVHAPGPT0019705_105DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_NICOTINATE_DEGRADATION,PGPT0019705-nicF-K13995NANA
AK018_05642942hypothetical proteinGTGACGCCCGCGGCCCGGCTGACCACCGACGACCGGCTCGTCTACGCCCCGCTGCCCCTGCGCCCGCGGGTCACCTGGCCCGGCGGCAAGGGCGTGGCCGTGTGGCACGCCCCGAACGTCGAGCACTACGACTACGTCCCGCCGGGCGGCGGCAGCCCCCAGGGCCGGGTCGCCGCGCCGGACGTGCAGCACTACATGCACCGCGCGGCCGGCAACCGGGTGGCGCTGTGGCGGATGCTGCGCGCCGTGGACCGCTACGAGATCCCGTCCACGGTGTCGCTGAGCCTGACGCTGCTGGAGGACGACCCGGACGTGCGCGACGCGATGCGCGAGCGCGACTGGGAGGTCATGAGCCACGGCATCTCCAACCTGCGGCCGATCTACGACCTGTCGTGGTCCGAGGAGGACGCCTTCCTCGCGCAGTCGCAGCGGCTGGCCGAGACGTACTACGGCACGCGGTTGCAGGGCATGCTCGGCCCGAAGATCTCCGGCACCGACGCCACGCCCGACCTCATGGTCGCGCACGGCATGACGTACCACGCCGACTGGATCCACGACGAGCAGCCGCGGCCGCTGGCCACCCGCGACGGCGGCCGGCTGGTGTCGATGCCCTACAGCTACATGCTGAACGACGTCCCGATGCTGCACGCCAAGAACCTGTCGCCCGAGGACTTCGTGTCCCTCGTGCTGGCCCAGGTCGACCGGCTCGCCCGGGACGCCGAGCGGGACGGCCAGGCACGGGTGGCCTGCCTGGCCACGCACCCGTTCCTGCTGGGCCAGCCCCACATGCTGCGGTACCTGGAGGAGATCTTCGACCGGCTGCGCGGCGACGACCGGCTGTGGCTGACCCGGGCCGGCGACATCGCCGACCACTACCTGGCCCACCACTACGACACCCAGCTCGCCCACGCGCGGGCTCTGGCCGAGGAGGTGGCCGCGTGAMTPAARLTTDDRLVYAPLPLRPRVTWPGGKGVAVWHAPNVEHYDYVPPGGGSPQGRVAAPDVQHYMHRAAGNRVALWRMLRAVDRYEIPSTVSLSLTLLEDDPDVRDAMRERDWEVMSHGISNLRPIYDLSWSEEDAFLAQSQRLAETYYGTRLQGMLGPKISGTDATPDLMVAHGMTYHADWIHDEQPRPLATRDGGRLVSMPYSYMLNDVPMLHAKNLSPEDFVSLVLAQVDRLARDAERDGQARVACLATHPFLLGQPHMLRYLEEIFDRLRGDDRLWLTRAGDIADHYLAHHYDTQLAHARALAEEVAAPGPT0000885_618DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0000885-hpxB-K16842NANA
AK018_05643915hypothetical proteinGTGAGCCTCGTGACGAACCCGGACGACGCCGTCGTCCACGCGCCGAACCTGCCCCGGAGCAACGACCTGCGGCGCGACCCGTGGGCGCCCCGCCAGGACGCCCGGCTGGTCGTGAGCGTGCTGCTGCACGCCCCGGCCTACCAGGACGTCGTGCCGGCCGGCACCACCACGCCGCAGTCGATGCCCGGCGGCGTCGGCCGCGACACGTCCGAACCGCGGCACGGGCAGGTGGCCCGGCTCTCGCAGTGGGACTTCGGGCTCACCGTCGGTGTCTGGCGGCTGCTCGACGCCGCGGCCGACGCCGGCGTCCCGGTGGCCGTCGCGCTCGACGAGCGGGGGGTGCGGCGCATGCCGGGCCTCGGGCGGCTCGTGGGGGAGCGGGCGGCCGAGGTCGTCGCGCGCGGCCGGGCCGCGAACGTGCTCACCCCGCCCGACGCCGACCTGGCCGCCGAGACGGCCGCCGTGCGCGCGAGCGTGGACGCCGTCGCGGCCGCCACGGGGCGGGAGGTCACCGGCTGGTTCTCCCCGGAGCGCGCCGAGACGCCGCGGACCACCCGCGCCCTGCACGACGCCGGGCTGCACTGGTTCGGCGACTGGCCGGTCGACGAGCGACCCGTGGCCCTCGACGGGGACGCGACGGGGCTGACCGCCCTGCCGTTCTCGCTGGAGACCGAGGACGTGTTCGCCCTGTACACGCGCGGCGTGACCGCCGACGCGTACGAGCGGATCCTGCACGCCACGATCGACCAGCTCCTGGCCGACGCCGACGTGCTCGGTCCGCGGTTCCTCGGGCTGAGCTGGTTCGGCTGGGTGCTCGGCCAGGCCTGCTTCGCCGACGTGGCCGAGCGGGTGCTGCGGCGTCTCGCGACCGAGCCCGGGGTCGTCGTCGTCCCGCCGGGGGACGTCGCCCCGTGAMSLVTNPDDAVVHAPNLPRSNDLRRDPWAPRQDARLVVSVLLHAPAYQDVVPAGTTTPQSMPGGVGRDTSEPRHGQVARLSQWDFGLTVGVWRLLDAAADAGVPVAVALDERGVRRMPGLGRLVGERAAEVVARGRAANVLTPPDADLAAETAAVRASVDAVAAATGREVTGWFSPERAETPRTTRALHDAGLHWFGDWPVDERPVALDGDATGLTALPFSLETEDVFALYTRGVTADAYERILHATIDQLLADADVLGPRFLGLSWFGWVLGQACFADVAERVLRRLATEPGVVVVPPGDVAPPGPT0000885_519DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0000885-hpxB-K16842NANA
AK018_056441383mdtD_7Putative multidrug resistance protein MdtDGTGACCACGACGACGGCGGCGCAGCTCCCGCGGCCGATGAGCTGGGCCCTGGGCTCGGGCACGATCCTGCAGGGCCTGAACTCGGCGGTCCTGGCCGTCGCGCTGGTCTCCATCGGTGCCGACCTGGGCACCGGGCCGGCGACGGCGTGGATCGTGTCGGCGCTGTACCTGTCCGCGGCGGTCTGCTCGCCGACCGGCGGCCGGCTCGCCGACCTGTTCGGCCCGCGCCGGGTCTACCTCGTGGGCCTGGCGATCACGCTGGTGTCCTCGGTGGCGGGGCCGTTCGTGCCCAGCCTGGAGTGGCTGGTCGCCGACCGGTTCCTGCTCGGGGTGGGCACGGCGCTGCAGTTCCCGACGGCGATGGCGATCATCCGCCGCGAGGCGCAGCGTCGACGCACGTCCCCGGCGTCGGCGCTGGGCGTCATCGCCCTGTGCGGCCAGACCACCGCGGCCCTGGGCCCCGCCGTCGGCGGGCCGATCGTGGCGGTCTGGGGCTGGGAGGGCATCTTCTGGGTCAACGTCCCGATGGTGGCCAACGCGGCCTTCTGGGTGCTGCGCACGGTGCCCGCCGACCCGCCCCGCGCCTCCGTCGGGTTCGTCGGGACGCTGCGCGCCATCGACCCGGTCGGGCTGGTCGCGTTCGTGGCGACGCTGGCCACGCTCATGCTCGGCCTGCTGTCCCTGGAGACCGGTGCCCGGTGGTGGTGGTTCGTCGCGGCCGCCGTCGGCGTGGTCGTCCTGGTCCTGTGGTCCGCACGGTCGCCCCAGCCGTTCCTCGACGTGCGGCTGCTCACCCGGAACCCGGCGCTGTGGCGCACCTGCGTGCGCGCCATGGTCACGTTCGTCTCCTTCTACACGATCTTCTACGGCCTGCCGCAGTGGCTCGAGGCCTCGCGCGGGCTGGGGCCCGCCGGTGCCGGGCTGCTCATGGTCCCGGTGTTCGGCGTCGGCGTCGTGTCGACCGTGGTCGCCACCCGGCTCGGCTCCCGCGTCCCGGCCCACCTGCTGCTGGTGGTCGGCGGCGCGGCGATGGTGGCGGCCGGGGCGCTCGCCGTCTGGGCCGTGACCGTCGACTCGCCGGTGTGGCTGTTCGTCCTGCTGGGCGGGCTGCTCGGGCTGCCCAACGGGTTCAACAACATCGGCAACCAGCTCCAGCTGCACTCCGCGGTGGAGCAGCAGCAGGCCGGTGTGGCCAGCGGGCTGTACCGCACGTCCCAGTACGTCGGCGCCGCGCTGGCCGCCGTCGTCGTCGCCGCCGGCGTCACCCCCGCCGGCGACGACGGCATCCACGCCCTCGGCGCCTGGGTCGGCGGGATCGGGCTGCTGCTCGTCCTGCTCTCCCTCGCCGCGCTTCTCGTCTCCCGGAGGTCCACCGCACGATGAMTTTTAAQLPRPMSWALGSGTILQGLNSAVLAVALVSIGADLGTGPATAWIVSALYLSAAVCSPTGGRLADLFGPRRVYLVGLAITLVSSVAGPFVPSLEWLVADRFLLGVGTALQFPTAMAIIRREAQRRRTSPASALGVIALCGQTTAALGPAVGGPIVAVWGWEGIFWVNVPMVANAAFWVLRTVPADPPRASVGFVGTLRAIDPVGLVAFVATLATLMLGLLSLETGARWWWFVAAAVGVVVLVLWSARSPQPFLDVRLLTRNPALWRTCVRAMVTFVSFYTIFYGLPQWLEASRGLGPAGAGLLMVPVFGVGVVSTVVATRLGSRVPAHLLLVVGGAAMVAAGALAVWAVTVDSPVWLFVLLGGLLGLPNGFNNIGNQLQLHSAVEQQQAGVASGLYRTSQYVGAALAAVVVAAGVTPAGDDGIHALGAWVGGIGLLLVLLSLAALLVSRRSTARNANANANANA
AK018_056451116namACOG1902NADPH dehydrogenaseATGACTGCCCTGTTCACCCCCCTCACGCTGCGCGGCACCACGTTCGCCAACCGCGCCTGGACGTCGCCGATGTGCATGTACGCCTGCGAGGACCGCACGGGCCGCGTCACGGCCTGGCACCGTGCGCACTACGCCCAGTTCGCCCTCGGCGGGGCCGGTCTCGTCGTCACCGAGGCCACGGCCGTGCTGCCCGAGGGTCGCGTGACCCCGCAGGACGCCGGGCTGTGGAACGACAGCCAGACGGCGGCGTGGGCCACCGTCACCGAGGCCGTGCACGCCGTGGGCGGGAAGATCGCTGTCCAGCTCGCCCACGCCGGCCGCAAGGGCGGCAAGTACCGCGGTCTGCCCGGCGACGCCCACCGCAACCGGTCCGTGCCGGTCGAGGAGGGCGGCTGGTCGACGCTCGGCGCCTCGGACGAGCCGTTCGGCGACTACGCGCCGCCGCGGCCGGCGACCGGCGACGAGCTCGACCAGGTGGTCCAGGCGTTCGCCGTCTCGGCTCGCCGCGCCGTGGCGGCCGGGTTCGACGCCATCGAGCTCCACGGCGCGCACGGGTACCTGCTGCACGAGCTGCTGTCACCCGTGACCAACCGCCGCGACGACGACTGGGGCGGCGGCGGGCGGGAGCGGCTGCTCGTGGCCGCCGCCGCGGCCGTGCGCGTCGCGATCGGCGACGAGATGCCCCTGCTCGTGCGGGTCAGCGCCGAGGACGTGGCCCCGGGCGGGCTGGACGCGCACGACACCGCGCGCCTCGCCCGTCGGCTGCGCGAGGTGGGGGTCGACCTGGTCGACTGCTCGTCCGGCGGGCTCGTGGCGGGCGCCGACTACTCCGAGGAGCCCGGCTACCAGGTGCCCGGCGCCGCGGTCGTCCGGGCGGAGGGCGGTGTGCCGACGGCCGCCGTCGGGCGCATCACCGACGCGTGGCAGGCCGAGCAGGTCCTGCGCGACGGCAGCGCCGACGCGGTGATGATCGGGCGCGCCATGCTGCGCGACCCGCACTGGGCCCGGCACGCCGCCGCGGAGCTCGACGCGCCGGGTGCGCCGGTCGAGCCGCGCTACTACCGGGCGTGGCGCGGGACCGTCCTCGACGGGCTCACCGTGCCGACCCCGGTCTGAMTALFTPLTLRGTTFANRAWTSPMCMYACEDRTGRVTAWHRAHYAQFALGGAGLVVTEATAVLPEGRVTPQDAGLWNDSQTAAWATVTEAVHAVGGKIAVQLAHAGRKGGKYRGLPGDAHRNRSVPVEEGGWSTLGASDEPFGDYAPPRPATGDELDQVVQAFAVSARRAVAAGFDAIELHGAHGYLLHELLSPVTNRRDDDWGGGGRERLLVAAAAAVRVAIGDEMPLLVRVSAEDVAPGGLDAHDTARLARRLREVGVDLVDCSSGGLVAGADYSEEPGYQVPGAAVVRAEGGVPTAAVGRITDAWQAEQVLRDGSADAVMIGRAMLRDPHWARHAAAELDAPGAPVEPRYYRAWRGTVLDGLTVPTPVPGPT0005575_541DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_NITRO-|AMINOBENZOATE_DEGRADATION,PGPT0005575-namA-K09461NANA
AK018_056462328hypothetical proteinATGGCCGGTACGTTCACCGAGTGGGTGCGCTCGCGCACGGACGACGAGCTCGTGACGTTGCTCCGTGTGCGCCCCGACCTCGGCACACCCTCTCCCTCCACGCTGCGCTCCCTCGCCGCGCGCGCCGCCAGCCGCACCAGCACCGAGCGGGCCGTCGCCCACCTGGACGCCGGCACGCTGCAGGTCCTGGAGTCGCTGCTCGCGCTGTCCGACGGCGACACCCCCGTCGGGGCGGCAGCGGTCACCGACGCGCTCGGCGCACCGGGGTCCGCGGACGCCGTCGGTCGCGTCCTGGCCGCCGCCCGCGACGCGGCCCTGGTGTGGGACGACGACGGCGGGGTGCGGCCCGCACCCGGCCTCGACGAGGTGCTCGGCCCCTACCCCGCCGGCCTCGGCCCCGTCCGGGAGGACGACGCCCCGCCGGTCGACGTCGGGGCCCTGTCCCCCGCCGCCCGGCACGTCCTCGACGCGCTCGCCTGGGGGCCGCCCGTCGGCGTCGTCCCGCCCGCCGGCTCCGCGCCCCGCGCCGCCGTCGACCAGCTCGTCCACGACGGACTCCTGCAGCGCTCCGACGCCCGGCACGTGGTGCTGCCCCGCGACGTCGGTCTGGCGCTGCGGGGCGGTCGCACCCACCGGGCGCCCGACCTCGAGCCACCCCGGCCGGACGGACGCACCGTCCCGGAGCCGACCGTGGACGCCGAGGCCGCCGGTGCCGCGCTGGAGATCGTGCGGCAGGTCGCGCACGTCCTCGTCGCCTGGGACGACACCCCGCCCGTCGTGCTGCGCGCCGGCGGGCTCGGCGTCCGCGACCTGCGCCGCACGGCGCGGCTGCTCGAGACCGACGAGGCCACCGCCGCGACCGTCGTCGAGCTGGCCGCGAGCGCCGGGCTGGTCGCGGACGACGGCGACGCCCCCGCGTCGTTCCGGCCGACCACGCGCTCCGACGGCTGGGAGGAGGCGGACGACGCCGACCGATGGGCCACGCTGGCCGAGGCCTGGCGACGCTCCCGCCGCACGCCGTGGCAGGTCGGCACCCGCGACGAGAAGGGTGCGGTGCGCGCGCCGCTGTCCGCGGACCTGCAGCGGCCCTGGGTGCCGCGGCTGCGCCAGCAGGTGCTCGAGGTGCTCGACGCCCAGCCGGGCGTGGCGCTCGGGGTCGACGACGTGCTCGCCGTGCTGCGGTGGCGGTCGCCGCGGGCGGTGCCCCCGGAGGCCGCGGTGTCGGGGCTGCTGCGCGAGGCGGCGATGCTGGGCGTCACCGGTGCCGGGGTGCTGTCCACCCCGGGGCGCGCGGTGCGTGGGACCAGCGAGGACGCCCCGGCCACGGACCTGGGCACGGTCATGCGCTCGGTGTTCCCCGAGGAGGTGCACGAGTTCCTCCTGCAGGGCGACCTGACCGGGATCGTGCCCGGTCGTCCTTCGCCCGACCTCGCACGGCTCATCGACCAGTCCGCCGAGGTCGAGTCCCGGGGTGCCGCCACCACGGTGCGGTTCACCACCGGGTCCGTGACCCGGGCGCTGGACCACGGCCGCAGCGGCGAGGACCTGCTGGCCGAGATCGCCCGCCGGTCCGCCGTCCCGGTGCCGCAGCCACTGGAGTACCTGGTCAAGGACACCGCGCGCCGCCACGAGGCGCTGCGGGTCGGCTCGGCGCAGTCCTACGTACGCGCCGCCGACCCCGCGATGCTCGCCGGCCTGGCCGAGGACCCGCGGCTGTCCGCCCTGGGACTGGTCCGGCTCGCCCCGACGGTGCTCGCCGCGTCGGTCCCGGCCGCCGAGCTGCACGAGGTGCTCCGCGACCGGGGCCTGCTCTCGGCGCTCGAGGGTCCGGACGGCCGGCCGCTCGGCCGGGTCCGCCGTCCCGACCGGCTGGACCGCGACGTCTGGTCCCGGCGCCGCGGGACCGGGACGGTCCGCGGCGTCACGGACGCCGCACGGCGCGAGCTGGTCGACCGGATGCGGGGCAAGAGCACGGGTCGCGGTGCCGGGACACCGCCGGACGGCGCCGGCCAGGAGCTGCCGCCGGCCGTCGACGGCGCCTCGCCCGGCCCCGGGGGCGCCGTCGGACCGGGTACCGCCGTCGGACCGGGTGCCGCCGTCGGGGAGCCCGTGCGCGAGCCCGGGGACGTGCAGGCCGAGCTGAGCGAGGCGCTGCGCGACGGGCGCTCCGTGTGGGTCGAGCTGGTCGGGGCGTCCGGCGGGCTGGAGCGGCGCGAGCTGCGACCGATGCGGCTCGAGGGCGGCCGGTTGCGGGCGCTGGACGCCGTGCGGGAGGCCGAGCTGACGATCGCCGTGCACCGCATCGCCTCGGTGCAGCCGACCGACTGAMAGTFTEWVRSRTDDELVTLLRVRPDLGTPSPSTLRSLAARAASRTSTERAVAHLDAGTLQVLESLLALSDGDTPVGAAAVTDALGAPGSADAVGRVLAAARDAALVWDDDGGVRPAPGLDEVLGPYPAGLGPVREDDAPPVDVGALSPAARHVLDALAWGPPVGVVPPAGSAPRAAVDQLVHDGLLQRSDARHVVLPRDVGLALRGGRTHRAPDLEPPRPDGRTVPEPTVDAEAAGAALEIVRQVAHVLVAWDDTPPVVLRAGGLGVRDLRRTARLLETDEATAATVVELAASAGLVADDGDAPASFRPTTRSDGWEEADDADRWATLAEAWRRSRRTPWQVGTRDEKGAVRAPLSADLQRPWVPRLRQQVLEVLDAQPGVALGVDDVLAVLRWRSPRAVPPEAAVSGLLREAAMLGVTGAGVLSTPGRAVRGTSEDAPATDLGTVMRSVFPEEVHEFLLQGDLTGIVPGRPSPDLARLIDQSAEVESRGAATTVRFTTGSVTRALDHGRSGEDLLAEIARRSAVPVPQPLEYLVKDTARRHEALRVGSAQSYVRAADPAMLAGLAEDPRLSALGLVRLAPTVLAASVPAAELHEVLRDRGLLSALEGPDGRPLGRVRRPDRLDRDVWSRRRGTGTVRGVTDAARRELVDRMRGKSTGRGAGTPPDGAGQELPPAVDGASPGPGGAVGPGTAVGPGAAVGEPVREPGDVQAELSEALRDGRSVWVELVGASGGLERRELRPMRLEGGRLRALDAVREAELTIAVHRIASVQPTDNANANANANA
AK018_05647918hypothetical proteinATGAGTCGTCATCTCGTCGTGGGCGCCGGCCCCGTCGGCCACCAGGTCGCCACCCTCCTCGCCGCTGCCGGCGAGGACGTCACCGTGGCCACGCGGTCCGGCCGGGACACCGGCCTGGAGGGCGTGCGCCACGTCGCCGTCGACGCGGCCGACCCGGACGCGCTCTGCGCCGTCGACCCGGACGCCGACGTGCTCTACAACTGCGCCAATCCGGCCGACTACACCCGCTGGGACGAGCTCTGGCCGCCGCTGGCCGCCTCGCTGCTGACCAGCGCCGAGCGGCTCGGCGCCGTCTACGCGATCACCGGGAACCTCTACCCCTACGGCCCCGTCGACGGCCCGATGACCGAGGGGCCGCCCGACGCCGCCACCGACCACAAGGGCCGGCTGCGGGCGCGGATGTGGGCCGACGCGCTCGCCGCCCACCGGGCCGGGCGCCTGCGGGCCGTCGAGGTCCGCGGCTCCGACTACGTCGGGCCCGGCGTCGGCGAGAACGGCCACGTCTCGCGCGTGCTGCCCGCCGCTCGGCAGGGCCGCGCCGTGAGCATGTTCGGCCGCACCGACCAGCCGCACACCTTCACCGACGTGCGCGACGTCGCCCGCACCCTGGTGGCCGCCGCCGCGGACCACGACGCGCACGGACGGGTCTGGCACGTGCCCTCCAACCCGCCGGTCACCCAGCGCGAGGTGCTCACCGACGCGCTCGCCGCCGTCGGGAAGCCGCCCGTGAAGGTGCGCGAGCTGCGCGGCGCCACCGTCGCCGTGGCCTCCTGGTTCTCCCCGTTGGTACGAGAACTGCGCCAGCTGATGTACCAGTGGGAGCGGCCGTACGTGCTCGACTCCACCGCCGCCCAGGAACGGTTCGGGATCACTCCGACCCCGTGGCCCGAGGTGTGCCGGGGGACCGCGGCGGACTGAMSRHLVVGAGPVGHQVATLLAAAGEDVTVATRSGRDTGLEGVRHVAVDAADPDALCAVDPDADVLYNCANPADYTRWDELWPPLAASLLTSAERLGAVYAITGNLYPYGPVDGPMTEGPPDAATDHKGRLRARMWADALAAHRAGRLRAVEVRGSDYVGPGVGENGHVSRVLPAARQGRAVSMFGRTDQPHTFTDVRDVARTLVAAAADHDAHGRVWHVPSNPPVTQREVLTDALAAVGKPPVKVRELRGATVAVASWFSPLVRELRQLMYQWERPYVLDSTAAQERFGITPTPWPEVCRGTAADNANANANANA
AK018_056481608hypothetical proteinATGACGGTCGCGGAGTCTCGGAACGGACTTACTGACGCCTGGTCGTGGGCGCGTGTTCCCCGGAAGGCGACCTGGCGTGCCCGGACTCGGACCGACGCCTGGCAGACCCGCTACCGGCACCGGCTGATGGCCACCGACGCCGTCCTGGTGATCGTCGCCTGCCTCGTGGCTCTCGTCGTGCGCGGGGCCGTCGCCGGCACGCCGAGCACGGGCGCTGCCATCGCGGTGCTGCTGGCGCTGCTGACGGTCGGAGCCGTGGGCTGGCCCGTCGCGATCGCGATGAGCGGCGGCTACGACCCACGCGTCCTCGGCGAGGGAAGCCAGGAGTACCACCGCATCGCCGACGCCACGGTGCGCGCCTTCGTCGTGGCCGCGCTCCTGGCTCTCCTGGTCCCGGCCCCTGGCCTGCCCACCTTCGCGCTCACCGTCTTCCCGCTCGGTCTCGTGCTCCTGCTCGCCGGACGGCTGGCCTGGCGCGGGCACCTCGTCCGGGAACGACGGCGCGGCGGGTGCACCACGACGGTCCTGGCCGTCGGGCCACGCGTGCAGGTCGAACGGCTCGTCGACGAGCTGCACGACCGTCCGTCGGGCTACCGCGTCGTGGCCGTCTGCCTGCCGGACGAGGGCACCGACGTGCCGGTCGACGCGCCGACCGACGCGCCGTCGGAGCTGCAGGTCGACCTGCTGACCGACGCGCCGTCCGACGCCACGCCCGACATCACGCCCGACATCACGCCCGACATCACGCCCGACGTGGCCGGTGTCCCCGTCCTGGGCGGCCTGGCGGACGCGGCGGCCGTGGCCTCGCTCACCGGCGCGCAGGCGGTCGCGGTGTGCGGGTCCGAGACGGTCAACGCCGACGTCGTGCAGCGTCTGGGGTGGGACCTGGAGCCGCTGGGCGTGAGCCTGATGCTGACCGCCGAGCTGGAGGGCGTCGCGCGGACCCGGATCACGGTGGTCCCCGAGCGGTCCGTGTCGTTGATGCACGTGAGCGCCCCCCGGTTCGCCGGCCCGAAGTACCTCGCGAAGTCGCTCATCGACCGGGTCGGTGCGCTCGCGCTGACCTTCCTGATCCTGCCGGTGCTGCTGGGTGTCGCGGTCGTCGTCGCGATGACGAGCAAGGGGCCGGTCCTGTACCCGCAGGAGCGGGTGGGGCGCGACGGCACGATGTTCCGGATGCTGAAGTTCCGCACCATGCGGGTGGGGGCGGACGCCGAGGACTACCTGCAGGGACGCAACGACGCCGACGGGCTGCTCTTCAAGCGGCACGACGACCCGCGGGTCACCCGGGTGGGACGCGTGCTGCGCCGGTACTCGCTCGACGAGCTGCCCCAGCTGTTCAACGTGCTGCGGGGCCAGATGTCGCTGGTCGGTCCCCGGCCGCCGCTGCCGCACGAGGCGGCGAAGTACGAGGCGCACGTCCGTCGCCGGCTCCTGGTCAAGCCGGGCATGACCGGGCTCTGGCAGGTCAGCGGGCGGTGCGACCTGCCGTGGGACGAGGCGGTGCGGCTGGACATCTTCTACGCGGAGAACTGGACCCCGCTGGACGACCTGGTCATCCTCGCGCGGACGGTCCGGGCGGTGCTCTCCGCGCGCGGCGCGTACTGAMTVAESRNGLTDAWSWARVPRKATWRARTRTDAWQTRYRHRLMATDAVLVIVACLVALVVRGAVAGTPSTGAAIAVLLALLTVGAVGWPVAIAMSGGYDPRVLGEGSQEYHRIADATVRAFVVAALLALLVPAPGLPTFALTVFPLGLVLLLAGRLAWRGHLVRERRRGGCTTTVLAVGPRVQVERLVDELHDRPSGYRVVAVCLPDEGTDVPVDAPTDAPSELQVDLLTDAPSDATPDITPDITPDITPDVAGVPVLGGLADAAAVASLTGAQAVAVCGSETVNADVVQRLGWDLEPLGVSLMLTAELEGVARTRITVVPERSVSLMHVSAPRFAGPKYLAKSLIDRVGALALTFLILPVLLGVAVVVAMTSKGPVLYPQERVGRDGTMFRMLKFRTMRVGADAEDYLQGRNDADGLLFKRHDDPRVTRVGRVLRRYSLDELPQLFNVLRGQMSLVGPRPPLPHEAAKYEAHVRRRLLVKPGMTGLWQVSGRCDLPWDEAVRLDIFYAENWTPLDDLVILARTVRAVLSARGAYNANANANANA
AK018_05649687putative HTH-type transcriptional regulatorATGGCTGCCACCGCCCGCGAGATCGCCCGCACCGAGATCACCCGGCGGATCCACGCTGCGGCCCGGGAACGCCTCGGCGCCGAGGGACCCGCCGCGCTGTCCCTGCGCGCCGTCGCCCGCGACGTGGGGATGGTGTCCTCGGCGGTGTACCGGTACGTCGAGTCCCGCGACGCCCTGCTCACCGCGCTGCTGGTCGAGTGCTACGACGAGCTCGGTGCCGCCGTCGAGCAGGCGGAGCAGGCCGTGCCCGGCGCCGACCACGCGGCCCGCTGGCTGGCCGCCTGCCGTGCGGCGCGCACCTGGTGCGTCGAGCACCCGGGGGAGTTCGCCCTGCTCTACGGCACCCCCGTGCCCGGGTACGCGGCCCCGCAGGACACCGTGGAGCCGGCGATCCGGGTGGTCCTGGTGCTGGCCGGCATCGCCGCGGAGGCGGACGGGGACCCGGGACCGCCGGTGTCCGACGTCGCCGCCGTCGTCGCGCCGGCGCGTGCCGCCGTCGTGCAGCGCGGCTTCCCCGCGCCGGGCCCGGAGGTCGTGGCCCGCACCCTGATGGCCTGGTCGGGGCTGTTCGGCTCGATCTCCTTCGAGCTGTTCGGTCACCTGCACAACGCGGTGTCCGACCCGGCGGACTGGTTCGACGCCGTCGCCGCCCGCCTCGGCGCCGACGCAGGCATCGTGCCCGCCTGAMAATAREIARTEITRRIHAAARERLGAEGPAALSLRAVARDVGMVSSAVYRYVESRDALLTALLVECYDELGAAVEQAEQAVPGADHAARWLAACRAARTWCVEHPGEFALLYGTPVPGYAAPQDTVEPAIRVVLVLAGIAAEADGDPGPPVSDVAAVVAPARAAVVQRGFPAPGPEVVARTLMAWSGLFGSISFELFGHLHNAVSDPADWFDAVAARLGADAGIVPANANANANANA
AK018_05650384hypothetical proteinGTGCCCACCGGCAAGGTCAAGTGGTACGACGCGGATCGCGGTTTCGGTTTCATCGCCCACGCCGACGGCGGCGAAGTGTTCCTGCACGCCTCCGCGCTGCCGGCCGACGTGCCGAACCCGAAGCCGGGCACCCGCGTGGAGTTCGGCGTCGCGGACGGGCGCCGCGGCCCGTCGGCGCTCGCCGTGCGGGTCGTCGACCCCCAGCCGTCGGTGGCGAAGGCGAAGCGCAAGCCGCCGTCGGAGATGGCCGGCATCGTCGAGGACCTCATCCGCGTGCTCGACCGTACGGGCGACCAGCTCAAGCGTGGCAAGTACCCCGAGGGCGAGGCGGGCCAGCGCATCGCCACCATGCTGCGCGCCGTCGCCGACAACCTCGATTCCTGAMPTGKVKWYDADRGFGFIAHADGGEVFLHASALPADVPNPKPGTRVEFGVADGRRGPSALAVRVVDPQPSVAKAKRKPPSEMAGIVEDLIRVLDRTGDQLKRGKYPEGEAGQRIATMLRAVADNLDSPGPT0014675_1361DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_05651852hypothetical proteinATGGCATCCGCCGAGGCGCCCGCGAAGGCACGCCGCGTGAGCTCGCGCGCCCGCAACGACGCCGTCCTGCTCGGCGCCGCCGAGCTGGCGCGCGCGGCGGCGCTGGAGGTCGCGTCCGGCCCGGACGACGTCGGCGAGCACCTCGGGGCCGTCGCCGAGGGCGAACGCCTGATGTCCCACCGGTTCGCGGCCGGGATGCGCGGCTACCACGGCTGGCACTGGACCGTGACGGTGGCGCGCGTGCCGCGTGGCCGCAGGGCCACGGTCTGCGAGGTCGAGCTGCTGCCGGGCGACGAGGCGATCCTGGCCCCGGCCTGGGTGCCGTGGTCGGAGCGGCTGCGTCCGGGGGACGTCCGCCCGGGCGACACGCTGCCCTTCCGCGCGGACGACCCGCGCCTCGAGCCCGGCTGGACGCCGACCGGCGACGAGGAGCAGGACGAGGTCGCCATCGAGGAGCTGGCGCTGGCCCGCCAGCGGGTGCTCTCCCCGCAGGGTCGCGACGAGGCCGCCGAGCGCTGGTACCGCGGCTCGCAGGGACCGACGTCGCGAGGCGCGGTCGCCTCGGACGCCGAGTGCACGACCTGCGGCTTCCTCGTGCCGCTGCAGGGCCCGCTGGGCCAGCTGTTCGGCGTGTGCGCGAACGCGTGGTCGCCCGACGACGGCACGGTGGTCTCCCTCGACCACGGCTGCGGGGCGCACTCCGAGACGGACGTGAGCCGCCGCCGCAGCGAGTGGCCGGACCCGGCACCGATCATCGACGAGTCCACGGTCGAGCAGGTGGACCTGGGCCCCCGGGAGCCGGAGCAGCCGGCAGCCCCGTCCGACGAGCCGGAAGGTGACGAGAACGCGTGAMASAEAPAKARRVSSRARNDAVLLGAAELARAAALEVASGPDDVGEHLGAVAEGERLMSHRFAAGMRGYHGWHWTVTVARVPRGRRATVCEVELLPGDEAILAPAWVPWSERLRPGDVRPGDTLPFRADDPRLEPGWTPTGDEEQDEVAIEELALARQRVLSPQGRDEAAERWYRGSQGPTSRGAVASDAECTTCGFLVPLQGPLGQLFGVCANAWSPDDGTVVSLDHGCGAHSETDVSRRRSEWPDPAPIIDESTVEQVDLGPREPEQPAAPSDEPEGDENANANANANANA
AK018_056523147hypothetical proteinGTGACGACCGACGTCTTCGGGACCGCCGCGCTGCGGCACGCGGTCACGGAGGCGTGGCTCGGGTCCGCCACACGCTTCCGTGAGGACGCGAACTCCGAGGAGGACCACGCGCGCGGGCACTACCGCGACCGCGTCGTGGTCGAGCTCCTGCAGAACGCCGCCGACGCCGCGGCCCGCGCGGGTGCCGCCGGCCGGGTCGAGGTCGTCCTCGACCCCGAGCGCCGGGTGCTGCGCGTGGCGAACTCCGGTCACGCCCTCGACGCCGACGGGGTCGCCTCGCTGGCGTCGTTGCGCGCCTCCGCGAAGGACGACGCGGCCGGGCAGGTGGGTCGTTTCGGCGTCGGTTTCGCGGCGGTGCGGGCGGTGTCCGACGACGTCTCGGTCGCCTCGCGCGACGGCGGCGTGCGCTTCGCCCTGGACGAGACCCGCGCGGCGCTCGCCTCGCTGACCAGCGAAGGCACGGCCGACGCGGCGGCGCAGCGGCTGGCGGCCGACGTCGCGGGCCGCGGTGACGACCTGCCGGTGCTCCGCTTGCCCTTCCCGGCCCCGGGACTGGACGCCGACGCCTCGTTCGACACCGTCGTGGAGGTGCGGCTGCGCGACGCCGCCGCCGCGGAGGCGGTGCGCGACCAGCTCGACGCGATCGACGACGTGCTGCTGCTCGCGTTCCCCGGCATCGCGGCCCTGCACGTGATGGTGACCACGGGCGCCGGCGTGGAGCACCAGGCCACGTGGGACGGTTCGGCCCAGAAGGCCGCCCCGCAGGTGCACCGCAGCGGGCGGTTCACCGCGGCGGACCTCGCCGAGCTGCCGCGCGAGCACCGCCGGACGGACTGGTCGCTGGTCTGGACGGTGCCGGACGGCGGCACCCCGGACGACGGCGGCACTCCGGGCAGCGGCACCCCGGACGACGGCGGCACCCCGGGTGGGCCTGCCGCTCGGCGCCGGGTGCTGCACGCCCCGACGCCCACCGACGTCGTCGTCGACCTGCCCGCCGTGCTGCTCGCGACGTTCCCGGTGGACGCCGGCCGCCGCCGGGTGCTGCCCGGGGCGGCCACCGACCACCTGGCGGCCGAGGCGGGCGTCGCCTACGCCGAGCTCCTCGGCACCCTGGCCGCGGACCGCGCGCGGGCCGCCGACCCGACCGCCGTGCCGGACCCCCTGGACCTGGTGCCGACGGGCCTGCCCGGCTCCGACCTGGACGCCGCGGTCCGCGAGGCCGCCACCTCGGCGCTGACCCGCACGCCGCTGCTGGCGGCGCCCGGCGTCGAGGACGGCGACCACCCGGGCCACGGTGGCCGCCCCGCGCTCGAGACGCCGCAGGACGCGCTCGTCGTCGCGGGCGACCCGGGCGGCGACGCCGACCTCGTCGCGGCGCTCGCCCCGGTGCTGCCGGGTCTGGTCCTCGTCCCGGCCCGTCACCAGGCCACCGTGCGCAGCCTGGGGGCGACGGTCGCGTCGCTGGCGGACCTGGTCGACGACCTGCCCGGCGGGTTGCCGGCCGAGCGCTGGCACGCCCTGCTGGACGCCCTGGCGCCGTACGCGAACGAGCCGGGGGTGCTCGAGTCGCTGGCCGGTGCCCGCGTCCCGCTGGCCGACGGCCGGGTGGCCGGGGTGCGCAGCGCCGTCGTGCTGCCCGAGGGGTCGGTGGACGACGGCGACGAGGCGTCCCTGGCGGCGTCGGCGCGCGTGCTCGGGCTGCGGGTGGTGCACCCGGACGTCGCCCACCCGCTGCTCGTCCGTGCCGGGGCCGTGGCCACGGACGCCTACCGGATGCTGCAGGACCCGGAGGTCCGCCGCGCCGCCCTGGACGCCGCCGAGACGGTCCAGGACGGCGACGAGGACGACGGCGCCCGGGAGATCGTCGCCTCGGCGCTGGCCCTGGTGCGGCTCACCGGGGGAGCGGACGCCCCGTTCTGGGCGGGTGAGCTGCCCGTGCCGACGGCGGACGGCGACCTGGTGGCGCTGCGCGAGGCGACGCTGCCCGGCACGTGGGCGGCGGAGGTGCTGGACGGCCTGGCCCCGGTCAGTGCCGAGTACGTGGCCCGCTACGGCGCGCCGGTGCTGACGGCGGCGGGTGCGCGCACCGACCCGGACGTGTACATCGTGCCGGACGTCGTCACCCCGGAGGCGGACGAGGAGGACGACGACGGTGGCCCGGACGACGCCGCGGGCTGGCTCGGCGGGTGGTCGGACTACCTGCGCCTGCTCGGGGCGCGGTTCGGACCCGGGGTCGCGGTCGGCGACCTGGTGGCCGTGGCGGACCTGGACGCCGTCGCGGACGACGCCTGGCCGCGGGTGCTGGCCCGTCTGGCCGGCGAGCCGGACACGCGCCGCGCTCTGTTGACGCCGGTGCGGCGCGGCCGGGTCTCGGCACCGTCGTACTCGGCCTGGTGGTTGCGCGAACGCTTCGGCGCACCCTTCGCCCTGCACGAGGGCGTCCCGCTGCTGCCCGCCGAGCCGCGGGCGGTGGCGGGGCTCGACGTCGCGGTGCGGCGCGCCCTGGGCGGTGCCGACGCGCTCGGCGACCTGGACGCGACGGACTGGCCTGCCGCGCTCGAGCGGCTGCCGGCCGCCGGCTCGACCCTGCCGCTGCGCGACGCGCTGGTGGTGTGGCGGGGACTGGCGAGCCTGGCCGCGCGCCTGGACGCCGACGACCGGTCGACGGCCCTGGACCCCCTGCCGGACCGGTTGCCGGTGCTGGACGCGAGCGACGTCGTCGTGCACCGCGCCGAGGACGTCGTGGTGGCCGGGACGGCCCGCTGGGCCGCGCTCGGCGCCGTGGTCCCCGCCCCGGAGGCGGAGGCCGAGGGGCTGGCCGAGCTGCTCGACCTGCCGCTGGCCGGGCAGGACGGCCTGCCGTCGCCGGACTCGCTGGGCACCGAGCGCGAGCTGGACCCGCGGGTGACCGCGCTGGACCACCGGATGCCGTCGGTGTGGTTCCACCACGAGCGGCTGTCCGTGGCCGGCGGGCCGGTGCCGTGGTGGGTGGACGCCCAAGCGCGCGTGCACGCGACGTCGGAGGCCGGGCTGGCCGCGGGGCTGGCGGACGTGCTGGGCCGGCCGGACCGGGTGGCGCTGCTCACCGCGGTGCTGCGCGAGCCGGAGCGTGCGGTGGCGCTCTGGGCGACGACCGCCTGGGGCTGAMTTDVFGTAALRHAVTEAWLGSATRFREDANSEEDHARGHYRDRVVVELLQNAADAAARAGAAGRVEVVLDPERRVLRVANSGHALDADGVASLASLRASAKDDAAGQVGRFGVGFAAVRAVSDDVSVASRDGGVRFALDETRAALASLTSEGTADAAAQRLAADVAGRGDDLPVLRLPFPAPGLDADASFDTVVEVRLRDAAAAEAVRDQLDAIDDVLLLAFPGIAALHVMVTTGAGVEHQATWDGSAQKAAPQVHRSGRFTAADLAELPREHRRTDWSLVWTVPDGGTPDDGGTPGSGTPDDGGTPGGPAARRRVLHAPTPTDVVVDLPAVLLATFPVDAGRRRVLPGAATDHLAAEAGVAYAELLGTLAADRARAADPTAVPDPLDLVPTGLPGSDLDAAVREAATSALTRTPLLAAPGVEDGDHPGHGGRPALETPQDALVVAGDPGGDADLVAALAPVLPGLVLVPARHQATVRSLGATVASLADLVDDLPGGLPAERWHALLDALAPYANEPGVLESLAGARVPLADGRVAGVRSAVVLPEGSVDDGDEASLAASARVLGLRVVHPDVAHPLLVRAGAVATDAYRMLQDPEVRRAALDAAETVQDGDEDDGAREIVASALALVRLTGGADAPFWAGELPVPTADGDLVALREATLPGTWAAEVLDGLAPVSAEYVARYGAPVLTAAGARTDPDVYIVPDVVTPEADEEDDDGGPDDAAGWLGGWSDYLRLLGARFGPGVAVGDLVAVADLDAVADDAWPRVLARLAGEPDTRRALLTPVRRGRVSAPSYSAWWLRERFGAPFALHEGVPLLPAEPRAVAGLDVAVRRALGGADALGDLDATDWPAALERLPAAGSTLPLRDALVVWRGLASLAARLDADDRSTALDPLPDRLPVLDASDVVVHRAEDVVVAGTARWAALGAVVPAPEAEAEGLAELLDLPLAGQDGLPSPDSLGTERELDPRVTALDHRMPSVWFHHERLSVAGGPVPWWVDAQARVHATSEAGLAAGLADVLGRPDRVALLTAVLREPERAVALWATTAWGNANANANANA
AK018_05653882hypothetical proteinGTGCGCGACCTGGTCGACGTCGTGGACCGCGCCGCCAGGATCAGGGACCGCTACGACGTCGATGCGGTCGTGGTCGCTGCGCGCTATGTCGCGACGCAGGTCGGCGAGGGCCTCGAACGCCAGGGCATCGGGTATGTCGACGCGACGGGCAACATGCGCGTCAGTCTGACGCTGCCCGGCTTGTTCGTCTTCGACAAGGGGGCGACCGCCGACCCGTGGCGCGGTCCAGGGCGTCGGCGCGACACCCTCAAGGGAGAGCCGGCAGCACGAGTCGTCCGAACACTTGCTGATCGCGTCGGGCCGTGGCGCATCAGTCGGCTCATCAAGGAGTCGGGAGTGTCAACCGGGTCCGTCTATCGAGTCGTCGAGCTGCTCGAGGCCGAGGATCTCGTCCAGCGCACTTCGGATGGCGAGATCGCGGTCGAGGACTGGCCGAGCATGCTTCGGCGCTGGGCCTCCGACTACCAGTTTCTCGAGACCAATGCGATCACGCGGTGGATTGCTCCGCGCGGAGTGGAAAGTGTGCTCCAGAAGCTCAGCCGAGGGACAACGGGCGACTACGCCGTGACGGGTTCCTTTGCTGCATCTGCGTGGGAGAGCTATGCGCCGGCGCGTTCGTTGTGGGTCTATGCAGAGGATCCCGACGGACTGGCCAGAAGCGTAGGTCTTCGGGAGTCGGAGACGGGTGTCAACGTGCTCGTCGCCAGGCCCGCCTATCCGGTCGTCATAGCTGCGGGTTCCCGAACACTCGACGGGGTGCGTTTGTCGTGTCCGACGCAGGTCGCCGTCGACCTGATGAACGGGCCGGGCCGAGCGCCCGCAGAAGCAGACGCCCTCATGACGTGGTTGGAGCGGAACGAGAGTGAATGGCGTGTCTCCTGAMRDLVDVVDRAARIRDRYDVDAVVVAARYVATQVGEGLERQGIGYVDATGNMRVSLTLPGLFVFDKGATADPWRGPGRRRDTLKGEPAARVVRTLADRVGPWRISRLIKESGVSTGSVYRVVELLEAEDLVQRTSDGEIAVEDWPSMLRRWASDYQFLETNAITRWIAPRGVESVLQKLSRGTTGDYAVTGSFAASAWESYAPARSLWVYAEDPDGLARSVGLRESETGVNVLVARPAYPVVIAAGSRTLDGVRLSCPTQVAVDLMNGPGRAPAEADALMTWLERNESEWRVSNANANANANA
AK018_05654897hypothetical proteinGTGAATGGCGTGTCTCCTGACCTTCTCGTGCTCTCGAGATCGGCGCTGCTCGATGCCGCCGAGGCGCTTGGCGAGCACATCGCCTCGGTCATCGTGATCGGGGCGCAAGCGGTCTACCTGCATACAGGGTCTCTTCGCGTGGCACTCGCAGAAGCGACCAAGGACAGCGACGTCGCTCTCGACCCCCGACTCCTCGGCGATGATCCTCGGGTCGACGACGCCATGGAGGCTGCCGGGTTCATGCCAGCTGATCAGCCGGGTTCGTGGGTCACCGCAGATGGTGTCACTGTCGATCTCATGGTTCCCGAAGCGCTGGCCGGACACGGAGGGCGACGGGGTGCACGCATCCCTCCCCACGGGAGAAGAGCAGCTCGTCGTGTGGTCGGCCTCGAAGCGGCGCTCGTCGACCATCGTCAGATGCCTGTCAGCGCGCTGGCCGCCGACGATTCACGTGAGGCGACTCTGAAGGTGGCAGGCCCCGCGGCCCTGATCGTCGCGAAGATGCACAAGATCGCGGAGCGCCTCGTGAGCCCGCGGTCCAACGACAAGGACGCTCACGACGTCTACCGCCTCTTCCGTCAGTTCGAGACGGACGAACTCGCGGACTCGTTCATGCGGCTCTTGGCGGACGACATCAGTGCCGACGTGACAGAACTGAGCCTGCAGCACGTGGGGAACCTTCTGGCCACAGGGCCAGAAGCTGAGGTATCCGTGATGGCGGGACGGGCGGAGGCCGGTGTCGGCCTCCGTTGCCTTCCTCGCTGCCGATCTCATCGAGGCGCTAGGGCGCTGACGGTCAGTCGCCGCGGTGGCGGCGCGCCCAGGGCAGACCGAGCAGCCCGAGCAGGATGCCGGCGCCGCAGATGGCCACGGCCTCCACGGGCACGACGCCGGTAGMNGVSPDLLVLSRSALLDAAEALGEHIASVIVIGAQAVYLHTGSLRVALAEATKDSDVALDPRLLGDDPRVDDAMEAAGFMPADQPGSWVTADGVTVDLMVPEALAGHGGRRGARIPPHGRRAARRVVGLEAALVDHRQMPVSALAADDSREATLKVAGPAALIVAKMHKIAERLVSPRSNDKDAHDVYRLFRQFETDELADSFMRLLADDISADVTELSLQHVGNLLATGPEAEVSVMAGRAEAGVGLRCLPRCRSHRGARALTVSRRGGGAPRADRAARAGCRRRRWPRPPRARRRNANANANANA
AK018_05655231hypothetical proteinATGACGCTGCTGCTCCACCCCGAGCGCCGCCGGCCCACGCCTGCGCCGCCCGCGGCCGACCTGGTGCGCGTGGTGCTCGTCGGCGTCGCCGTCTGGACTCTCGCGCTGGTCGTCGTGGGCGTCCTCGCGGCTACCGGCGTCGTGCCCGTGGAGGCCGTGGCCATCTGCGGCGCCGGCATCCTGCTCGGGCTGCTCGGTCTGCCCTGGGCGCGCCGCCACCGCGGCGACTGAMTLLLHPERRRPTPAPPAADLVRVVLVGVAVWTLALVVVGVLAATGVVPVEAVAICGAGILLGLLGLPWARRHRGDNANANANANA
AK018_056561455pbuG_1COG2252Guanine/hypoxanthine permease PbuGATGGCGAACCAGACCAGCGCGCCCTCGGAGGGGCTCAGCGCGATCGACCGCTTCTTCCAGATCACCCAGCGCGGATCGACCCTCGGGGCGGAGATCCGTGGCGGCCTGGTCACGTTCTTCGCGATGAGCTACATCGTCGTGCTGAACCCGCTGATCATCGGCACGGTCCCGGACGGCACCGGCGAGTTCCTCGGCGGCGGCGACGCCCCGAACCTCGGCATGGTCGCGGCGGCGACGGCGCTGATCGCCGGCGTCGTGACCCTCGCCATGGGCGTGTTCGCCAACTTCCCGATCGGTCTGGCCGCGGGGCTGGGGCTCAACGCGGTGGTCGCCTACTCGATCGCCGGCCTGCCCGACATGACCTGGGCGGACGCCATGGGTCTGGTGGTCATCGAGGGTCTGATCATCCTCGTGCTGGTACTGACCGGGTTCCGGGAGGCCGTGTTCAACGCTGTCCCCGTCGAGCTCAAGACGGCGATCAGCGTCGGCATCGGCCTGTTCATCGCGTTGATCGGCCTGGTCAACGCCGGGTTCGTCGTGCCGGGCGACGGCACCATCGTGGCGCTCGGCAACCTCGCCACCTGGCCGATGCTCGTGTTCGTCGTCGGACTGATCCTCACGATCGTCCTGTGGGTCCGCCGCATCCGCGGTGCGCTGCTCATCGCGATCCTCACGGCGACCGCGCTGGCCGTCGTCCTGGAGAACACGCTGAACATCGGCGCGAGGGCGCCGGACGGCTCGAACCCCACGGGCTTCAACCTGAACGCCCCGACGTTCTCCGGCGTCGTCGAGGTGCCGGACTTCGGCCTGCTCGGGCAGTTCTCGCTGCTGGGCTCGTTCGAGAACATCGCGGTGGTCTCGGTGCTGCTGCTGATCTTCTCGCTGCTGCTCGCGGACTTCTTCGACACGATGGGCACGATGGTCGCCGTCGGGGCTGAGGCGAAGCTGCTCGACGAGAGGGGCAACCCGCCGCGCACCCGCGCGATCCTGGTCGTCGACTCGTTCGGCGCGATCGCCGGTGGCGCCGGCTCGGTGTCATCGAACACGGCCTACGTCGAGTCGACGACGGGTGTCGGCGAGGGCGCCAAGACCGGGTTCGCCTCCGTGGTCACCGGCGTGGCCTTCCTGCTCGCGACGTTCCTGTCCCCGCTGGTGGCGCTGGTGCCCTACGAGGCCGCCGCGCCGGCGCTGGTGCTCGTCGGGTTCCTCATGATGGCCCAGGTGGCGGGCATCAACTGGCGCAACATGGAGATCGCCATCCCGGCGTTCCTGACGATGATCATCATGCCGTTCACGTACTCGATCGCGGACGGCATCGGCGCGGGCTTCATCGCGTTCGTGGTGATCAAGCTGGCGCTGGGCAAGATCCGCCAGATCCACCCGCTGATGTGGGTCTCCTCGCTGCTGTTCGTCGTGTACTTCCTGCTCGAACCGTTGCAGGCCGCCATCGGCTGAMANQTSAPSEGLSAIDRFFQITQRGSTLGAEIRGGLVTFFAMSYIVVLNPLIIGTVPDGTGEFLGGGDAPNLGMVAAATALIAGVVTLAMGVFANFPIGLAAGLGLNAVVAYSIAGLPDMTWADAMGLVVIEGLIILVLVLTGFREAVFNAVPVELKTAISVGIGLFIALIGLVNAGFVVPGDGTIVALGNLATWPMLVFVVGLILTIVLWVRRIRGALLIAILTATALAVVLENTLNIGARAPDGSNPTGFNLNAPTFSGVVEVPDFGLLGQFSLLGSFENIAVVSVLLLIFSLLLADFFDTMGTMVAVGAEAKLLDERGNPPRTRAILVVDSFGAIAGGAGSVSSNTAYVESTTGVGEGAKTGFASVVTGVAFLLATFLSPLVALVPYEAAAPALVLVGFLMMAQVAGINWRNMEIAIPAFLTMIIMPFTYSIADGIGAGFIAFVVIKLALGKIRQIHPLMWVSSLLFVVYFLLEPLQAAIGPGPT0007325_958DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007325-pbuG|azgA|ghxP|ghxQ|adeQ-K06901NANA
AK018_056571905hypothetical proteinGTGGAACTGGAGAACTTCGTGCGCACGCGACGGGCCGGGTGGCTCCAGACCACCCGCAAAGGCCTGTGGCACCTGCGTCACGGTGGTCTCGATCAGGTCCGGGTCTTCCTGCGCCGCCGGCGGCTGCTGGGCGACCACGCCCCCCGCGGCGCACGCCTGACGAAGCAGGGGCTCGTCTACGAGCCGTGGACGACGGCGGAGCGAGCGTCCGCGCGTCGGCTGCGGGTCGGCGTGGTGCTGGACGACTTCTCCCGGATGGCGTTCGGGGACGAGTGGGAGCAGGTGCTGCTCAAGCCGTCCACGTGGGCCGAGCAGCTCGAGGGGCTGGACCTCGTCTTCCTCGAGTCGGCCTGGGCCGGCAACGGCGGCGCGTGGAAGTACCACCTCACGGGGCCGACGGCGCCGCGCCCGGCGGTGACCGAGATGCTCGCCGCCGCGCGCGACCGGGGCATCCCGACGGTCTTCTGGAACAAGGAGGACCCGGTCCACTTCGAGGACTTCCTCGACACCGCCCGGCTCGTCGACCGCGTCTACACCACCGACGTGCACCGGCTGCCCGCCTACCGCGAGTCTCTCGGGCACGACCGCGTCGGGGTGCTCGCGTTCGGCGCGCAGCCGGCGATCCACAACCCGATCCGCACGCACGGAGCCGGTCCGGAACGGGACGTCGCCTTCGCGGGGACCTGGTTCGCGCACAAGTACCCGGAGCGTCGCGAGCAGATGCACACGCTGCTCGGCGGCGCGCTGGACGCCTCGCCGACGATGGATCTCGGGCTGGAGATCTACTCCCGGTTCACGGGCCAGGACGAGCGGTACGAGTTCCCCGCGCCGTACGCCGCCCGGGTGGTGGGATCGCTGCCGTACGAGCAGATGCTCACCGCCTACCGGGACTACAAGGTCTTCCTCAACGTGAACTCGGTGGTGGACTCGCCGAGCATGTGCGCGCGGCGGATCTTCGAGATCACCGCCTGCGGCACGCCGGTGGTGACGACGCCGAGCGCCGCGACGGGGGAGTTCTTCCCCGGCGACGAGGTCTTCGACGTCGCCACGCGGGACGAGGCCGCCGCGACCGTGCGGGCGCTGGTCCGGTCGCCGGAGCTGCGGGACCGCGCCGTGCACCTCGGGCAGCGGCGCATCTGGCGCGAGCACACCTACGGGGCGCGGGCTCAGCGCGTGCTGCACGACGTCGGCCTGGCGGACTCCGCCGTCGTGCCCCGGCCGCGGGTGACCGCGCTGGTCTCGACGAACCGGCCGCACCAGCTCGACCACGTGCTGCGCTCGGTCGGGTCGCAGGAGGGCGTGGACGTCCAGCTCGCGCTGCTCACGCACGGCTTCACCGAGCCCGAGGGCGACCTGCGGCTGCGGGCCAAGGAAGCCGGCGTCGAGGACCTGGTGCTGCTGCAGGCCGAGCAGGAGGTGCCGCTGGGCGCCTGCCTGAACCGACTGGTCGGCGTCGCGGACGGGGACGTGGTCGCCAAGATGGACGACGACGACCTCTACGGCCCGCAGTACCTGTCGGACCAGCTCTACGCGCTCGACTACTCCGCCGCGGACGTCGTGGGCAAGCAGGCCCACTACATGTACCTGGAGTCCCAGGACGCGACGCTGCTGCGCTTCGCGGACCGGGAGCACCGCTTCACGGACTTCGTCATGGGGCCGACGATCGTGGCGCGACGGGGCCTGGCGACCGACGTCCGGTTCGCCGAGACGTCGACGGGCGAGGACACCGGGTTCCTGCGTGGCGTCGCGGAGGCCGGTGCGCGGATCTACTCCGCCGACCGATTCAACTTCGTCCAGATGCGGTCCGGGGCGGGACAGCACACGTGGACGGTGACCGATGCCGAGCTGCTCGCGGGCGGCACGGTGACCAGCTATGGACGTGCCGACCGGCACGTTCTTGTCTGAMELENFVRTRRAGWLQTTRKGLWHLRHGGLDQVRVFLRRRRLLGDHAPRGARLTKQGLVYEPWTTAERASARRLRVGVVLDDFSRMAFGDEWEQVLLKPSTWAEQLEGLDLVFLESAWAGNGGAWKYHLTGPTAPRPAVTEMLAAARDRGIPTVFWNKEDPVHFEDFLDTARLVDRVYTTDVHRLPAYRESLGHDRVGVLAFGAQPAIHNPIRTHGAGPERDVAFAGTWFAHKYPERREQMHTLLGGALDASPTMDLGLEIYSRFTGQDERYEFPAPYAARVVGSLPYEQMLTAYRDYKVFLNVNSVVDSPSMCARRIFEITACGTPVVTTPSAATGEFFPGDEVFDVATRDEAAATVRALVRSPELRDRAVHLGQRRIWREHTYGARAQRVLHDVGLADSAVVPRPRVTALVSTNRPHQLDHVLRSVGSQEGVDVQLALLTHGFTEPEGDLRLRAKEAGVEDLVLLQAEQEVPLGACLNRLVGVADGDVVAKMDDDDLYGPQYLSDQLYALDYSAADVVGKQAHYMYLESQDATLLRFADREHRFTDFVMGPTIVARRGLATDVRFAETSTGEDTGFLRGVAEAGARIYSADRFNFVQMRSGAGQHTWTVTDAELLAGGTVTSYGRADRHVLVNANANANANA
AK018_056581245wecCCOG0677UDP-N-acetyl-D-mannosamine dehydrogenaseATGGAGATCAACACCGTCGGCGTGATCGGGCTCGGCTACATCGGGCTCCCGACCGCCGCCGTCCTGGCGTCGAAGGACGTGAAGGTCATCGGCGTGGACGTGGACCCGTCCACCGTCGAGGCCGTCAACCGTGGCGACGTGCCCTTCGTCGAACCGGACCTGGCCACGTACGTCAGCGGTGCCGTGCAGCACGGGACGCTCAAGGCGGCCGATGTCCCCGAGCCGGCGGACGCGTTCATCCTGGCGGTGCCGACGCCGTTCCGCGGCGACCACGAGCCGGACCTCAGCTACATCGAGTCCGCGGCGCGGTCGGTGGCCGCGGTGCTGGGCGGCGGTGAGCTGGTGATCCTCGAGTCGACGTCCCCGCCGGACGCCACCCGCAAGATGGCGCAGTGGATCCTCGAGGAGCGTCCCGACCTGTCCCTGGACGGCACCGACGGGCGCCCCGTCATCCACGTGGCGCACTGCCCCGAGCGGGTGCTGCCCGGCCGCGTCATGATCGAGCTCGTCACCAACGACCGTGTGGTCGGAGGGCTCACGCCCGAGGCGGCGCAGCACGCCAAGGAGCTTTACGGCATCTTCTGCCAGGGCGAGGTGCTGCTGACCGACGCCACCACCGCCGAGATGGTCAAGCTCGCCGAGAACGCCTACCGCGACGTCAACATCGCGTTCGCCAACGAGCTCTCGCTCATCGCCGACCAGGTCGACGTCAACGTCTGGGAACTCATCCGGCTGGCGAACCACCATCCGCGCGTGAACATCCTGCAGCCCGGACCCGGTGTGGGTGGCCACTGCATCGCCGTGGACCCGTGGTTCCTTGTGGATGCCGCGCCCGAGCAGGCGCGGCTCATCCGGTCCGCGCGGGAGGTCAACGACTCCAAGCCCGACTGGGTGGTCCAGAAGGTGCTGGACGCCGTGAAGGGCATCGAGAAGCCCGTCATTGCTGCGCTCGGACTGAGCTTCAAGAAGGACATCGACGACCTGCGGGAGTCGCCGGCCGTCGAGATCGTGGCCCAGATCGCCGATCGCTGCCTCGGCGGCGAGGTGCTCGCCGTGGAGCCGCACATCGAGGCGCTGCCGGCGGCACTGGCGAACCGCCGCAACGTCGCGCTCTGCTCCCTCGACGACGCGCTCGAGGAAGCGGACGTCACCGTCGCGCTCGTCGACCACAGCGCCTTCCGTCCGGATCTCGTCGCGCAGGGGTCCGGGAAGACCCTCGTCGACACTCGAGGCGTGCTCGGGTGAMEINTVGVIGLGYIGLPTAAVLASKDVKVIGVDVDPSTVEAVNRGDVPFVEPDLATYVSGAVQHGTLKAADVPEPADAFILAVPTPFRGDHEPDLSYIESAARSVAAVLGGGELVILESTSPPDATRKMAQWILEERPDLSLDGTDGRPVIHVAHCPERVLPGRVMIELVTNDRVVGGLTPEAAQHAKELYGIFCQGEVLLTDATTAEMVKLAENAYRDVNIAFANELSLIADQVDVNVWELIRLANHHPRVNILQPGPGVGGHCIAVDPWFLVDAAPEQARLIRSAREVNDSKPDWVVQKVLDAVKGIEKPVIAALGLSFKKDIDDLRESPAVEIVAQIADRCLGGEVLAVEPHIEALPAALANRRNVALCSLDDALEEADVTVALVDHSAFRPDLVAQGSGKTLVDTRGVLGPGPT0022670_973DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-UDP-N-ACETYL-D-MANNOSAMINE_METABOLISMCE-EPS-UDP-N_ACETYL_D_MANNOSAMINE_MODIFICATION,PGPT0022670-wecC-K02472NANA
AK018_056591461murG_3UDP-N-acetylglucosamine--N-acetylmuramyl-(pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferaseGTGAAGTTCCTGGCCAGCGCCCGACGGTGGCGCGCAGTCCTCGCGGTCGCTTCGGCCGTCATCACGGTCGCCGCGGCTGCTCTCGCGGCCGCGGCCGTGCGGCAGCCCTCGCCGTGGCTGGTCTTCGCCGGCGTCCTGGGGCTCGTCCTCGCCACAGGACTCAGCACCGCGACCGTCGGCACGTGGCTGATCGCACGGTCCGAACGGCGCATCCTGCGCCGGGTCGACCGCGTCGAGTCCACCGTTGAGCGCACTCGTGCCAAGGCCTCACGCCACGAGTACCACCAGGAGCAGTCCCTCGATCGCCTGGAGCTGACGACCCGCGAGGTCGCCGCGACGACTGCGGGTATCGCATGGGCAAAGCCCAGGAAGGCTCTTGAGCCGAGGACGGACAGGCTCCCGGACGTGCTGTTCGTGACCAGCAATGGCGGCGGTATGGGGCATATCGCTCGCTGCGCAGCGGTGCTGCGCCATTCGTCGGGCCTCATCACCGGCCGGATCCTTACTCTTTCGACTGCCGCCGAGACCGTGCAGAAGGCTGGCTTCGACGTCGAGTACTTCCCGAGCCGTACCGCGACCGATCGAGGACCGGACCGCTGGCGCCGGCAGTTCACGCGAAAGCTGCTCGAGGAGGTGTCCGAGCGAAGACCCGACGTGGTGGTCTTCGATGGCACGTGGGTCTACCCCTCCCTGACCGATGTCGCGGAGTATGCAGATCTTCCGCTCGTCTGGCTGCGGCGCGGTCTCTGGCGCAACGACGTCCCCTTGACGCAAGTCGAGGGCTGGCGTGACGTCGTGACATCCGTCATCGTGCCTGCCGACATTGCTGAGGACCAGGACAGCGCACCCGAGGTGTTCCGCGACGCTACGTGGACTCCGCCTGCTTCTCTTGCACCGACATCGTTGCCCACCCGAGAGAGCGCCCTGGCGAAGCTCGGACTTGACCCGGACCATCGCTACGCTCTGGTGCAGTTGTCTGGGGGCAACGGCGACGGCTCAGCGACGGCCGTGGCCGTGGAGGCGATCCGCAGCGCTGGCGACACGGTTCCGGTGGTCGTGAAGTCCCCTCTGCTGCCCGAGTCCGTGCTCCACGACGCCCAGACAATCGAGGCAAGCTTCCCGCTCGTCGATGTTGCGTCCGCGTGGGACTTCACCGTCACAGGCGCCGGCTACAACTCAGTTTACGAGAATATTCACACCGGCACGCCAGGCATCTACGTTCCGAGTCGATCGACCATCACGGACGATCAAGTCCGCCGCGCTAGAACCATCGATCAAGAAGGCATGGGATTCGCAGTGACCGACGCGAAAGGTCTGGCAGAAATCGTCGAACGATTAGCCGGGTCCGAGGAACCGATCACGCAAAGTATGCGTCGAAGCATAAGCGATGCGCGAGTTTCAAACGGCGCCAACGAAGTGGCACGAATCATGGCATCTGTTGCGAGCCGGGGCGGATTCTAGMKFLASARRWRAVLAVASAVITVAAAALAAAAVRQPSPWLVFAGVLGLVLATGLSTATVGTWLIARSERRILRRVDRVESTVERTRAKASRHEYHQEQSLDRLELTTREVAATTAGIAWAKPRKALEPRTDRLPDVLFVTSNGGGMGHIARCAAVLRHSSGLITGRILTLSTAAETVQKAGFDVEYFPSRTATDRGPDRWRRQFTRKLLEEVSERRPDVVVFDGTWVYPSLTDVAEYADLPLVWLRRGLWRNDVPLTQVEGWRDVVTSVIVPADIAEDQDSAPEVFRDATWTPPASLAPTSLPTRESALAKLGLDPDHRYALVQLSGGNGDGSATAVAVEAIRSAGDTVPVVVKSPLLPESVLHDAQTIEASFPLVDVASAWDFTVTGAGYNSVYENIHTGTPGIYVPSRSTITDDQVRRARTIDQEGMGFAVTDAKGLAEIVERLAGSEEPITQSMRRSISDARVSNGANEVARIMASVASRGGFNANANANANA
AK018_056602577mshA_7D-inositol-3-phosphate glycosyltransferaseATGTCCGTCGAAGCGAGCATGAGCACCCACGTAATGGGCAGGCGTCCCTTGGTCCCCTTGGTCTCCATCGTCATTGCGGTGCACAACGACGAGGAATACGTGGCGAAAGCGCTCGATAGCGCCATCTCGCAGTCCCTTCCCGCTATCGAGATCATATGCGTCGACGACCTCTCAACGGATGGAACCTGCGGTGTCGTGGAGGAATATCTCACTGACCCTCGTGTCCACCTGATCCGACATGATAAGAACGGGTCCGCCTTCCAAGCGCGGCGCACCGGAATCGAAGCAGCGACTGCACCGTACGTTCTCTTTCTTGACGGCGACGACGAATTGGCTCCTCGAGCGGCCGAATTGGCTGTGGCGCGCGCCAAAGAAACCGGGGCCGATATTGTCGGATTCGGTGTTGAGGTCGTCATGCCTCCAGGCGAGGGTGCGCCGCGGTTTGAAGGGACCCTCCAGCCGAGACACGCGGAACTGAACGAATCGGAAATCGTCTCCGGTCTTTTCCCAATAGGCGAACCGGCTCAAGGCCACCTGTGGCGCTACTTGTTCGGCGTTGAGTTGCTGCGCGAAGCCTACAACAACTTTGACCGCGACGTCGCGTTCTATCGTGCCAATGATATCCCGATCGCATTCCTGGCGATCGCTGCTGCGGCCAAGTATGTCTCGACGAGAGATAAGTTGTATCGCTACTTCTTCCGCCGGGGCACGAGCGGGCACAGGATTTCAATTCTCGACCATTTCCTATTCTACCTCGGAGCAATCGATTCGATTGACAGTATCGACGCCGCGGTCGAACGGCTTAGCCTGTCGGCAGACAAAGGGGACGCCGTTCAGCATTCCTACGATTCTGCGCGCCGTTCCGTCATCGCCAACGTGCTCCAGTACTGCGAGGGCATCTCCGCTGAGAACCTTCGAAACGAGTGCCTGAATCTGCTTGCCTCCAGGGTCGGTGAACTCGACCTCGTCCTTGCTGCGGCAGACTTCCGTAGGGGAGCTCTGGAGATCCTGGTTCGGAGAAGCAAGCAGTTGCACGAGCATGTCGAACCCCCGGCCCGTGCGACGAGCGTTGTCTTGACGACATCGAATCTGGGTACAGGAGGTCTCCAGGGCGTCCTCGTTGCGCAGGCGCACCATCTGGTACGTGCGGGAATCGATGTCACCGTAGTGGTTCATCGTGATGGCCCCGTTGAGCACGAGATGCCTTTCGGCGTGTCAGTCGTACGGGCCCAGGGAAGGACTTGGGCCAGCAAGATCGAAGAATTCCTGAGTATCTGTGCCAATGCCGGAGCCGAAACGGTAATCGACCACCACCTGCTCTATAACGAGTACTGGCCGTTCTATGCGTTGGCGGCGCGAGCAGTTGGCATCTCGACAATCGGATGGCTACACAACTTCGCACTGCGGCCGATGTTCGACGGTACGACACGTGCTTCATTCCTTATCGCAAATCTGCCCGTTCTGCACACGGTTGTGGCGCTCTCACGTACTGACGTCGCATTCTGGAAGCTCAACGGTGTCGAGAACGTCGTATTCTTGCCGAACCCGTTGCCACCACTGCTAGTTGAGCTCGAGGCCAGCACCGAGCCGAAACATCGGAGCAACTCAAGGGTCGAACTCGTATGGTGGGGCCGGCTTCAGCAGGCTACCAAGCAGGTGAGAGAGCTTATCAAGGTAGCGAAGGCCTTGCGCGAATGCGGAACGGAGTTCCGACTCACGATCATCGGTCCCGACGGACCAGACTTGTCTCGCAAGCAGTTGATGGCAGCGGCGCGAGAGGCCGGCGTCAGGGATTCCGTGAGTCTTCCGGGGCCGTTGCAGGGTGACGCGCTAATCAGTGCGCTCTCTGCTGCCGATATTTGCCTGATGACCAGTGCGATTGAAGGCTACCCCCTGACCCTCGTTGAGGCGCAGGCCGTCGGCCTGCCTGTGGTCATGTATGAGCTGCCCTGGGTCGCCTTCCTTGAGGGGAATGGCGGCGTGCTGACAGTTCCCCAGGACGATCACCGCGGCATGGCGGAGAAGATTGCATGGCTGGCATCCGACGAGGAGGGCTACAGTCTGGCTTCAGCAGGCGCACTAGCGGCTCTGCGGAGGCTTCGGGAAATCGACTTCGCAAGCTTGTATCGGCAGCTGATCGAAGGTGAGTTGACAGAGGATCATTCTCCCGAAGCTCGTCCGGAAGATTTCGCACTGCTATCAAGATTGAGCGTTCTATACAGCGAACGAACTGCGCGAGCGGTACGCAGAGCACAGACGCGAGTGGCACGGATGGAATCCCAAATCTCGCGAGATTCGAGATCGATTGCACCAAACGGCGCTCGATCCCATGTGCCAGCTATCGATCAGTTCAGCAAGTACCGTGCACGGAGCAAGCCACGCTGGCGCCAGGCGATCACCCGAGTAATCCCCAGCACTTGGCGGCAAGCTAACCATCTTGCTGAGAAGCAAGCGAAGTGGAGTTCTTCTGCTCTTTCTGAGATCGCGGCAGAGCAGGCCAGGCTCTCTGATTCGGTGCGCCGGGTCGAGCAACTTATACGGGATTCGCGCGTGTCCAGGAACAGGCGACGAGAATGAMSVEASMSTHVMGRRPLVPLVSIVIAVHNDEEYVAKALDSAISQSLPAIEIICVDDLSTDGTCGVVEEYLTDPRVHLIRHDKNGSAFQARRTGIEAATAPYVLFLDGDDELAPRAAELAVARAKETGADIVGFGVEVVMPPGEGAPRFEGTLQPRHAELNESEIVSGLFPIGEPAQGHLWRYLFGVELLREAYNNFDRDVAFYRANDIPIAFLAIAAAAKYVSTRDKLYRYFFRRGTSGHRISILDHFLFYLGAIDSIDSIDAAVERLSLSADKGDAVQHSYDSARRSVIANVLQYCEGISAENLRNECLNLLASRVGELDLVLAAADFRRGALEILVRRSKQLHEHVEPPARATSVVLTTSNLGTGGLQGVLVAQAHHLVRAGIDVTVVVHRDGPVEHEMPFGVSVVRAQGRTWASKIEEFLSICANAGAETVIDHHLLYNEYWPFYALAARAVGISTIGWLHNFALRPMFDGTTRASFLIANLPVLHTVVALSRTDVAFWKLNGVENVVFLPNPLPPLLVELEASTEPKHRSNSRVELVWWGRLQQATKQVRELIKVAKALRECGTEFRLTIIGPDGPDLSRKQLMAAAREAGVRDSVSLPGPLQGDALISALSAADICLMTSAIEGYPLTLVEAQAVGLPVVMYELPWVAFLEGNGGVLTVPQDDHRGMAEKIAWLASDEEGYSLASAGALAALRRLREIDFASLYRQLIEGELTEDHSPEARPEDFALLSRLSVLYSERTARAVRRAQTRVARMESQISRDSRSIAPNGARSHVPAIDQFSKYRARSKPRWRQAITRVIPSTWRQANHLAEKQAKWSSSALSEIAAEQARLSDSVRRVEQLIRDSRVSRNRRRENANANANANA
AK018_056612235hypothetical proteinATGACGGCAAGCCACTCCTCCCCCGATGTTCGCAGAAGTATCGCCATCGAAATGCAGAATGGCGTACTTCGCTGTGCTCTACCTGACGACCTGGTTGGCAACAGTGGGGTAGTTTGGACACTTCATCGGGGCGATTTCAATGAGCGTCGCGCGTCGGAACCCGTGGTCGCAGGCAGTACATGCGATTTTGAGCTTCCCGACATGACGACAGGCTATGCCGTGCGCGCCGAGGTCGACGGTGTACTTCACCAGAGTGAGTGGATTCAGCACTTCGGTACCGAGACAGTGCGCAGTTTCGAAGACTGGCGGCTCGATTGGCTCGCGCAGGGACATGAGGCGCCTGCGGAAATACCTTTGTTCCGCTACGAGGAGCCATTCGATAATATTGCCTTCGTATGCCATGACGCTGAATCTCAGGTCGAGCAATTGACGTCATTTGCGTCGAACAACGGCCTGGCCGTGGAACATCATAGTGGCGTCCACTGGCAGAACCTTACCGTAGTCAGCGGTTGCGGTTCGGAAGTTGATGCAGACGGCAACCGTTATGTCTTTAGTGGAATCACGCGCGATTCAGAGCGTCTCATTTTCGGTGCCGACGATGCCGTCGAACATGTGTCGAGTATCGAAAGCATTCGCGACTCCATCGGGGAGTTTCACCTCCTTTCATGGGATGATCGCCGGATTTCCTTCAGTCACGACTACATAGGCCAAGGGCACCTATTCTATTATGCAACCGAGACCATGTTTGCGGCTGCAAACGGGCTTCATCTCTTGGCTTTGGTCTTGCGTGAGCTCGGAGTAGCGCTAACTTTGGACGTTCCCGTCGTCAAATCGAAATTCTTTTCAACTTCGTATGCTTTCGAGTTCCAGCACGGGCCGCGCACAGATTTTGCTGAGATCAGACGCGTTCCTGTATTCGAGAGCCTTGAGATTGACTCTCGTGGACTGCGTAGCACCAAGACACAGCTTTGGTCGGATGATTCCGATGGCCAGTTTAGTGAAGAATTGTACGAGAGTCTGCTCGCGCAAGCGGCAAGCGACATTGTCGATAATGTTCGAATTGCACTTGACCACCCGCGATTTCAGAATGTAGTCGTTGAACTTTCAGCGGGGCTCGATTCACGGATCGTATATAGCGCATTGACGCGTCTCCCTCGGTCTCAAAAAGTGCGGATATCGACGAGGAAGAGCCCTGAGGAGCGTACTGCTGCCGCAATCAACAATCTATATAGGTACCCGTGGGATGATCTTCCCAGGGTTTACTCACACCGCAAGTCTACGCGGCGAACAGAACTTCCGGATACTTCGCACTCGGTATTCATGGACGGCTACTACATCGAGTCGATGTTCAAGCCGCGCGAGAATTTCGAGGAAGAAGCCCTGCTGCTTACGGGACATGGCGGTGAGGCGTTCTCGAGAGTCATGAGCATCGATGGATACTTCGCCCGCAACTTCAATGGCAGATTCCCTGACAAGTACGAGAATGTAGAGGGCGTTCTTCAGGATCTTCTGCGCTACATTGGGAATCATCAAGTTTGGTTCGCAGCGGGGCGAGAGTTCTTCGCGGATATCTTAAGCGGGAGTTTGGAGGAGAGCCCTTCTGAGGACTTCGCGAAGCGCTTCGCGGACATTTATGTCAGTCAGCGGAGTCCATTCGTTTCAGGGTCGGTCTTCCGAGGCGCGATGTCGGCACCTCAGTGGCGCCCAATGCATAGTAGGGCGCTGTTTCGGTTGAGGTCGTTGTGGTTCCAGCAGCAGCAGGATTTTAGGTTGCAGTTCGATCTCATTCGATCTCTCAACCCCCTCGTTAGCGAGGTGCCCTACGGTAAGGACGTCGAGCTGGCTAGGCAGCGCGAGTTCGAGGCTTTTCGTGCACCCTTTTCCATTGCTGAGCCGATTCAGTATGACGAGGACACTCAGAGTCTGGTGGAGGCACGCTCAGCGGCCAGCGCGAGGTCCTCGTGGCTGCCCAGCCGGGAGGCATTCAACTCGACGCGTTCGAAGATTCGTAGGTATGAGGAGAGCGCTGATAGTTTCCTTGATCCCCTCGGACATATCTTAGACCTTGCTCCCGAACTACAGGACATGGGCCTTCCGGTGTACTCGTATGTAGAACGCGTGGTTAACCGTGAGAACCCGCGGGCTTTCTCGAAGCGACACAATATTAGGAACAAGCTGCATATCCTACTGCAGGAGGTCCTGTTGACGTCGCGTGGTGGGTCGAGTCGCTGCTAGMTASHSSPDVRRSIAIEMQNGVLRCALPDDLVGNSGVVWTLHRGDFNERRASEPVVAGSTCDFELPDMTTGYAVRAEVDGVLHQSEWIQHFGTETVRSFEDWRLDWLAQGHEAPAEIPLFRYEEPFDNIAFVCHDAESQVEQLTSFASNNGLAVEHHSGVHWQNLTVVSGCGSEVDADGNRYVFSGITRDSERLIFGADDAVEHVSSIESIRDSIGEFHLLSWDDRRISFSHDYIGQGHLFYYATETMFAAANGLHLLALVLRELGVALTLDVPVVKSKFFSTSYAFEFQHGPRTDFAEIRRVPVFESLEIDSRGLRSTKTQLWSDDSDGQFSEELYESLLAQAASDIVDNVRIALDHPRFQNVVVELSAGLDSRIVYSALTRLPRSQKVRISTRKSPEERTAAAINNLYRYPWDDLPRVYSHRKSTRRTELPDTSHSVFMDGYYIESMFKPRENFEEEALLLTGHGGEAFSRVMSIDGYFARNFNGRFPDKYENVEGVLQDLLRYIGNHQVWFAAGREFFADILSGSLEESPSEDFAKRFADIYVSQRSPFVSGSVFRGAMSAPQWRPMHSRALFRLRSLWFQQQQDFRLQFDLIRSLNPLVSEVPYGKDVELARQREFEAFRAPFSIAEPIQYDEDTQSLVEARSAASARSSWLPSREAFNSTRSKIRRYEESADSFLDPLGHILDLAPELQDMGLPVYSYVERVVNRENPRAFSKRHNIRNKLHILLQEVLLTSRGGSSRCNANANANANA
AK018_056621089IS481 family transposase ISArsp2GTGTCGAGTCCGGGGCGGGTCGATGCGGACCTGGTGGCCATCGCCGTGGAGGTGCGTCGTGACCTGGTCGCCGCGGGCTTGGACCACGGCCCGTTGTCGGTGATCGACCGGATGCGCCGGGCGGGCCTGCGGCCGCCGTCGCGGGCCACGCTGGCCCGCTACTTCCAGGCAGCCGGTCGCGTGGTGCCTGAGCCTCGTAAACGACCGCGGGCCGCGATGCGCCGGTTCGTCTACCCGGCGCCGAACTGCATGTGGCAGATCGACGCGTTCGACTGGACGCTGGCCGACGGCTCCGCGGCGGTGGTGTTCCAGGTCATCGACGACCATTCCCGGCTCGCGCTGGCTTCCCTGGCCGCGCGCGGGGAGACCTCCCACGCCGCGATCGAGGTCGTTGGCACCGCGATGGACCGCTGGGGCGTCCCGCAGCGGCTCTTGTCGGACAACGGCGGCGCGTTCAACCCCACCCGCCGGGGTCACACCGGCAGGCTCGTGGAGTACTTGACCGCCAGAGGGACCGAGGCCGTGACCGGGCGGCCGGGCAGACGGACCACGCAGGGCAAGAACGAACGCATCCACCAAACGATGCTGCGCTACCTGCACGCCCGGCCGCCCGCCGAGACGATCGGTGAGCTCCAGGACCAGATCGAGACCTTCGATGCTTACTACAACCACGAGCGCGGTCACCAGAGCCTGCCCGGACCCGACGGCCTGCTGACCCCGGCCGAGGCCTGGCAGGGCACCGCACCAGCCGAACCGCCCCAGCCCCCGTCCGGCCACGAAACAAGCCAGACGCTGCCTGCACCGCCACCGCGCCCCCGACCGGCACGCCAGCCGCAGGGCTACCTGCCGCCCGAGACACGCACCACCGTCGCAGCAGCCGGCCGAGCCACCGCCCACGGCACCGAGTTCCACGTCGGGAACCAGCACGCCACCCACACCGTGATCATCACGTTCACCAGCACGACCGTGCTGATCGTCGCGGCCCGCACCGGCGAACTCCTGCGCCGCTACGCACGCCCCGCCCCCGGAACCCGATACGCCGGACCACGCACCCACCCCGACCCCGAGACCGAGACCGAGACCGACTGAMSSPGRVDADLVAIAVEVRRDLVAAGLDHGPLSVIDRMRRAGLRPPSRATLARYFQAAGRVVPEPRKRPRAAMRRFVYPAPNCMWQIDAFDWTLADGSAAVVFQVIDDHSRLALASLAARGETSHAAIEVVGTAMDRWGVPQRLLSDNGGAFNPTRRGHTGRLVEYLTARGTEAVTGRPGRRTTQGKNERIHQTMLRYLHARPPAETIGELQDQIETFDAYYNHERGHQSLPGPDGLLTPAEAWQGTAPAEPPQPPSGHETSQTLPAPPPRPRPARQPQGYLPPETRTTVAAAGRATAHGTEFHVGNQHATHTVIITFTSTTVLIVAARTGELLRRYARPAPGTRYAGPRTHPDPETETETDNANANANANA
AK018_056631491hypothetical proteinGTGGACGACGCTACCTTCTGCACACCTGACCTGACGACGTTCTGTCGCCTCGACGAGCTCGGTCTCGTCGTGGTCGGGCAGCGTCTGGAGCCCGACCGGGCGGTGCTCGAGTGCCGCGTCGTGGCGCGCGACGACGATGCGTTCTGTCGTGGCTGCGGCGCCGAGGGCACACCGCGGGGAACGGCGTCTCGGCGACTTGCGCACGAACCGTTCGGGTGGCGGCCGACGACCCTGCTGGTGCGGGTGCGGCGCTACCGTTGCGAGGGCTGCCGACGGGTGTGGCGCCAGGAGACCTCGGCCGCGGCCGAGCCGCGGGCGAAGCTCTCAAGGGCGGCGGTGCGCTGGGCCTTGGTCGCCCTGGTGACACAGCATCTGACGGTCGCGCGGGTGGCCGAAGCCCTGGCAGTGTCGTGGCACACCGCCAACGACGCTGTCCTGGCCGAAGGGCAGCGGGTGTTGATCGACGACGAGGCCCGCTTCGACGGCGTCGCCGTGATCGGCGTGGACGAGCACGTGTGGCGTCACACGAGGCGCGGGGAGAAGTACGTGACCGTGGTCATCGACCTGACCCCGATCCGTGACGGCACCGGCCCAGCAAGGCTGCTCGACATGGTCGAGGGGCGCTCCAAGCAGGCCTTCAAGCAGTGGCTCGCCACCCGCCCGAAGACCTGGCGAGATCAGGTGGAGGTGGTCGCGATGGACGGCTTCACCGGCTTCAAGACCGCCACCGCCGAAGAGCTTCCCACCGCGACGGCGGTGATGGACCCGTTCCACGTGATTCGCCTCGCCGGGGATGCCTTGGACCGCTGCCGGCGCCGCATCCAGCAGGACCTCCATGGCCACCGCGGCCGCGCAGACGACCCGCTCTACAAGGCTCGGCGGACCCTGCACACCGGCGCCGACCTGCTCACCGAGAAGCAAGCGAGGAGGCTGGAGGCGTTGTTCGCCGACGAGGAGCACGTCGAGGTCGAGGCGACCTGGGGCATCTACCAGCGCATGATCACCGCCTACCGCCACCCCGACCGCGCCACCGGGCGCACCCTCATGACCGCCGTCATCGACTCCGTGACCCACGGCGTTCCAGCCGTCCTGAGCGAGCTCGTCACCCTCGGACGGACCCTGCACAAGCGTGCCGCCGATGTCCTGGCGTTCTTCGACCTCCCCGGCACGAGCAACGGACCCACCGAGGTCATCAACGGACGCCTCGAACACCTTCGCGGCTCCGCCCTCGGCTTCCGGAACCTAACTCACCACATCGCCCGATCCCTGCTCGAGGCCGGAGGCTTCAGAGCACGGATATGTGATGTCTCAGGACATCGTGCACAGTTCTGCTGTCTCAGGACATCGTGCACAGTCAGTCGGTCTCGGTCTCGGTCTCGGGGTCGGGGTGGGTGCGTGGTCCGGCGTATCGGGTTCCGGGGGCGGGGCGTGCGTAGCGGCGCAGGAGTTCGCCGGTGCGGGCCGCGACGATCAGCACGGTCGTGCTGGTGAMDDATFCTPDLTTFCRLDELGLVVVGQRLEPDRAVLECRVVARDDDAFCRGCGAEGTPRGTASRRLAHEPFGWRPTTLLVRVRRYRCEGCRRVWRQETSAAAEPRAKLSRAAVRWALVALVTQHLTVARVAEALAVSWHTANDAVLAEGQRVLIDDEARFDGVAVIGVDEHVWRHTRRGEKYVTVVIDLTPIRDGTGPARLLDMVEGRSKQAFKQWLATRPKTWRDQVEVVAMDGFTGFKTATAEELPTATAVMDPFHVIRLAGDALDRCRRRIQQDLHGHRGRADDPLYKARRTLHTGADLLTEKQARRLEALFADEEHVEVEATWGIYQRMITAYRHPDRATGRTLMTAVIDSVTHGVPAVLSELVTLGRTLHKRAADVLAFFDLPGTSNGPTEVINGRLEHLRGSALGFRNLTHHIARSLLEAGGFRARICDVSGHRAQFCCLRTSCTVSRSRSRSRGRGGCVVRRIGFRGRGVRSGAGVRRCGPRRSARSCWPGPT0030630_416DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030630-tnpA-K07485NANA
AK018_056641650hypothetical proteinATGAGTAAGACCAACGTGTTTATCTACGGGTCGTGCGTCTCGCGCGACACGTTCGAGCACTTCGATCCTCAGCACTTCGAGCTGACTCAGTACGTCGCACGCCAGTCGGCGCTCAGCGCGTACACACGTCCAGTCGAGATGGTGTCCCCGCCGCAGGTCGCCTCGCGATTCCAGCAGCGCATGCTCACCGGTGACTTCCAGTGCAGCCTCCAGCAACTCGTTCCCGAGGCGGGCCCGACGACGGACCTTGTCCTCGTCGATCTGGTCGACGAGCGCCTCGGCGCCTACGTGCTGCCGGACGGCTCGGTCATCACTCGATCGATGGAACTGATCAACTCAGGGGCAGAGCAGCAGCTTCCGGAGGGATCTCAGCACCTGCCCTTCGGTTCGGAGCAGCACTTCCAGTACTGGACCGGGGCGATCCAGGCTGTGGGCGACATGTTCCGTGCAGCAATGCCGCGAGCCGCAGTCGTACTCCTCGACATCCCGTGGGCCGAATGGTCTGAGACTGGAGAAGCAGCACCCGACAGCTTCGGCATCACCGCCCAGCACGCGAACCCCATCTTCAACGCCTATGCTCGCGTGGCGGCGGAGGCGCTCCAGGCCCGCATGATTTCACTAGACCCGAGCAGCGTCAGGTCGAACGCTAACCATCCTTGGGGCGAGGCACCCTTCCACTACTCGGAATCCGTCTACCTGGACACTGTCCAGCAGATAACCGGCACACCTGGCCGAGCTGTATGGGGACTTGAGCCCCCCGTCGACCCGACACCCCTCCATCAAGAACACCCAAGCGTGCAGGAGCAGCCTGCATCAGGAACCGATCGCGCTCAGAATAATTCATTGATCCCACCAGGCAGCGGCCCGGACTTTATTATCACCGGCGCCCGACATTCTGGCGCAGAGTGGTTCGCAACACAATTGGCGAAGCATCCAGATGTCTTTGTCGCTGGAGACAAAGGCTGCAACTACTTCAATCGTCCGTCCAGAGTCGAGTCCAAGGACGAGACCGATCTCTACCTAAAGGCATTGAACGAGGACCCGTCGGCACGTTGGCGAGGCGACTGTACCCCAGAGTACTTCTGGTACGCCCCTGGTGGACCTTTCGGACCGAAACGGCCGAACGCGGCCATCCGGATTAAGGACGCCATCGACAGCGATGCTCCGATCTTTCTAGTCCTACGCAGCCCTGTGGCACGGGCAGTTCACGCTTACTGGCATCAGTTCTCAAACGGTCGCATCGATCCGCGTTCTGGCGTATTTCGCGCGCCGAAGAATCTTGGCTTGATCGACCAGGGATTCTATGCGCGAGCTTTGCGTAAGTGGTCCTCTGCACTAGGAGAAGGAAGACTGCATGTCCTCCTCCACGACGATCTTGTTGACGACGCTCAAATGGTCCTCGAGCGATCCCTCGCAGATCTCGGACTGACTGCGCACGAAGACTACTGGCGAGAGGTCGACTTGCGACCACAGATGCGCCTAAAATCGTGGCTCACCGTGTTTCAGAAGCAGCACCCTCTAGAGCCTCAGGAATTGGCCGCTCTAGTAGACGTGTATCGTCGAGACATTTCAGAGGTAGAAGCCTTCCTGCAACGCGAACTATCTCAATGGCGAGATGTGGACGGAATCGTAGAGGCGCTCTCGAAGTAGMSKTNVFIYGSCVSRDTFEHFDPQHFELTQYVARQSALSAYTRPVEMVSPPQVASRFQQRMLTGDFQCSLQQLVPEAGPTTDLVLVDLVDERLGAYVLPDGSVITRSMELINSGAEQQLPEGSQHLPFGSEQHFQYWTGAIQAVGDMFRAAMPRAAVVLLDIPWAEWSETGEAAPDSFGITAQHANPIFNAYARVAAEALQARMISLDPSSVRSNANHPWGEAPFHYSESVYLDTVQQITGTPGRAVWGLEPPVDPTPLHQEHPSVQEQPASGTDRAQNNSLIPPGSGPDFIITGARHSGAEWFATQLAKHPDVFVAGDKGCNYFNRPSRVESKDETDLYLKALNEDPSARWRGDCTPEYFWYAPGGPFGPKRPNAAIRIKDAIDSDAPIFLVLRSPVARAVHAYWHQFSNGRIDPRSGVFRAPKNLGLIDQGFYARALRKWSSALGEGRLHVLLHDDLVDDAQMVLERSLADLGLTAHEDYWREVDLRPQMRLKSWLTVFQKQHPLEPQELAALVDVYRRDISEVEAFLQRELSQWRDVDGIVEALSKNANANANANA
AK018_056651161wecBCOG0381UDP-N-acetylglucosamine 2-epimeraseGTGCCCGTACGGCCACGCGTCATGACCGTCTACGGCACACGACCGGAAGCGATCAAGGTCGCCCCGGTAGTCCGTGCCCTGGAAACCAGCGACACACTCGATTCCGTCACCGTCGTCACGGGTCAGCACCGCGAGATGCTGGACCAGGTGAATGCGGTGTTCGGTATCGCCCCCGACCACGACCTGGACATCATGAGCCACGGTCAGTCGTTGGCGCAGGTGTTCAGCCGTGTGCTGGAAGGGCTCGATGCGATCCTCGAGGAGGAACGGCCCTCCGCCGTCGTCGTGCAGGGCGATACCTCGACGTCCACCGCTGCGGCCCTGGCGGCCTTCTATCGGCAGATCCCGGTGGTCCACCTGGAGGCCGGCCTGCGTAGCGGCGACATCGCGTCGCCGTTCCCCGAGGAAGCCAACCGCAAGCTGACCTCTCAGATCGCGGCCCTGCATCTCGCGCCGACGGAGGGCAGCCGGGCGAACCTCCTCGCCGAAGGCGTGGATCCCGGGACCATCACGGTCACCGGCAACACCGTCATCGACGCGCTGCTGACGACGGTCCGTGACGCTCCGAACTTCGACGACGACGATCTTTCCCGGCTGACCCGCTCCGGGCGTCGCATCATCCTCGTCACGACCCATCGGAGGGAGAACTGGGGCGCTGCGATGCACGGCGTGGGCCGAGCACTACGCCGCGTGGCCGACACCTACCCGGACGCCGAGGTCGTTCTCCCCGCACATCGCAACCCGGTTGTCCGCGAGGCTGTGCTCCCACAGCTCGCCGGCGCGGAGAACATCACCGTGACCGAGCCGATGCCGTACGGACAGTTCACGCGGTTGCTGGACGCGGCGGAGATCGTCCTGACCGACTCGGGCGGCATCCAGGAGGAGGCACCGAGCCTCGGCAAGCCCGTCCTCGTGATGCGCGACAACACAGAGCGACCCGAAGCGGTCGACGCCGGCACGGTGCGCCTGGTCGGCACAGACGAAGACCGCCTGGTCGAGGCCGTGAGCGGTCTCCTAGACTCCCGCGAGCAATACGAGGCCATGGCGAACGTGGTCAACCCCTACGGCGACGGCGACAGCGCAAGGCGCGCCGTCGCGGCGATCGCGCACCTCCTGGGGATCGGCCCACGAGCAGACCAGTGGACAGAAGGCAAGGTATGAMPVRPRVMTVYGTRPEAIKVAPVVRALETSDTLDSVTVVTGQHREMLDQVNAVFGIAPDHDLDIMSHGQSLAQVFSRVLEGLDAILEEERPSAVVVQGDTSTSTAAALAAFYRQIPVVHLEAGLRSGDIASPFPEEANRKLTSQIAALHLAPTEGSRANLLAEGVDPGTITVTGNTVIDALLTTVRDAPNFDDDDLSRLTRSGRRIILVTTHRRENWGAAMHGVGRALRRVADTYPDAEVVLPAHRNPVVREAVLPQLAGAENITVTEPMPYGQFTRLLDAAEIVLTDSGGIQEEAPSLGKPVLVMRDNTERPEAVDAGTVRLVGTDEDRLVEAVSGLLDSREQYEAMANVVNPYGDGDSARRAVAAIAHLLGIGPRADQWTEGKVPGPT0018905_2542DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0018905-wecB-K01791NANA
AK018_05666939tagHTeichoic acids export ATP-binding protein TagHATGGCCGAGCCTAGGTCGAACCCCTTCGCACAGGCGACCGTCGCCGTACAGAATGTGCACGTCCGCTATCGCGTGCCGTCGACAGATGCCGCTGAGCGTCGTCGTGGCTCCAACTTCGTCAAGCGGGCGGCCCGGACGGTGCTCGGCAACGACCCCAAGGTGCTCGTGCGCGCCCTGTCGGGGATCTCCTTCGTCGCCAAGTCCGGCGAGCAGATCGGACTGGTGGGCCAGAACGGGTCGGGCAAGAGCACACTCCTGCGCATCATCGCCGGCTTGGAGAACCCGGCCAAGGGCCGCGTCCTGGCAGAAAGCACTCCGGTGCTCATCGGGGTCAACGCTGCGCTGGTACCGGACCTCTCCGGTGAGCAGAACATCCGTCTCGGCTGCCTCGCCATGGGCCTCACGCCGGAACAGGCGGAGGAAGCCGTGCCGGACGTCAAACAGCTGGCCGGCCTCGGCAAGTCGATCTATCTCCCGATGAAGACCTACTCCTCGGGCATGGGCGCTCGACTGCGCTTCGCCATCGCCACCGCCGCGAACCCGCACATCCTCCTGATCGACGAAGCCCTCGCCACGGGTGACGCGGCGTTCAAGGAACGGAGCGAGGCGCGGATGCAGCGCCTGCGGGAGAGTGCAGGAACCGTGTTCCTCGTCAGTCACGCCGCGCAGACGATCGAGGAGAGCTGCACCCGCGCCATCTGGCTCAACCACGGCCGCCTCGTCCTCGATGGTCCCGCGCAGGACGTCGCACTGCGCTATCGCAAGTGGGCATGGGCCGTGGCGAAGGACAAGCCCGACGAGGCGAAGCAGATCATCGAGAAGGCCTTCGCCGAACGAGAGCAGACCCACGTCCAGGTCGAGGAGCCTGTGAAACCGCGCCTCTACACCCCACGCCACGTCCGATCGCGCGGCGCTCCGGCCCGCAGTCAGGAGAGTTGAMAEPRSNPFAQATVAVQNVHVRYRVPSTDAAERRRGSNFVKRAARTVLGNDPKVLVRALSGISFVAKSGEQIGLVGQNGSGKSTLLRIIAGLENPAKGRVLAESTPVLIGVNAALVPDLSGEQNIRLGCLAMGLTPEQAEEAVPDVKQLAGLGKSIYLPMKTYSSGMGARLRFAIATAANPHILLIDEALATGDAAFKERSEARMQRLRESAGTVFLVSHAAQTIEESCTRAIWLNHGRLVLDGPAQDVALRYRKWAWAVAKDKPDEAKQIIEKAFAEREQTHVQVEEPVKPRLYTPRHVRSRGAPARSQESPGPT0023470_365DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023470-tagH-K09693NANA
AK018_05667942hypothetical proteinATGAGTGCACCGGTCCCTGCGCAGCAGTCGGCGTCTTCTGCGACGTCGGCCGATGTCGCAGACCTGTACGCGGAGATCTTCGCGCGGCAGTCGACCTCGCTCGAAGTGGTCTCGACCGATCGCTTGACGCAGGTCGGAGCGCGTCCACCGATCGGCGCCTACCTCAGGCAGCTCTGGGGGCGCCGACACTTCCTCTGGGCGGAAGCCCGAGCCAAGGTCACGAGCGGCACCCGCGAGACACTGCTGGGTCAGGCCTGGCTGGTGATCAACCCCATACTCAATGGCCTGGCCTTCTACCTGATCTTCGGGCTGATCCTCAACACCAGTCGCGGGATCGACAACTTCGTCGGCTACTTGGTCATCGGCGTCTTCCTGTTTCAGTTCACCACCCAGTGCGTGACCAACGGCGCGAAATCGATCCAGAGCGGCCGGAACCTGATCCGCGCGTTCACCTTTCCCCGGGCCTCGCTGCCGATCTCCGTGGTGTTGAGAAGCATCTTGAACCTCATCCCGACGATCGCCGCGATGCTCCTCATCATCGTGCTGCTTCCCCCCGGCGAGGACTGGTCACTGGCGGCACTCCTCTTTCCCGTCGTCCTCGTCCTGCAAGTGATGCTGGCCACGGGTCTGGCCCTGTTCTTCGCTCGGATGACCACCGTGCTGCCGGACATCAGCCAGCTCATCGGCGTCGCCATGAGGATCTGGCTCTACGCCTCGGCCGTGTTCTTCTCGGTCGACCGCTTCGAGGAGTACCCGTCGATCGTCGGGATCATGGAAGCCAATCCGATGTTCATGGTCCTCGACGCCGCCCGCGACTGTCTTCTCTATGCCACAGTGCCTGACGTCAGCACGTGGATCGGGCTCGGCGCATGGTCGTTCGGCGCTCTCGTCGTAGGGTTCCTCTTCTTCTGGCGAGGAGAGGAATCGTATGGCCGAGCCTAGMSAPVPAQQSASSATSADVADLYAEIFARQSTSLEVVSTDRLTQVGARPPIGAYLRQLWGRRHFLWAEARAKVTSGTRETLLGQAWLVINPILNGLAFYLIFGLILNTSRGIDNFVGYLVIGVFLFQFTTQCVTNGAKSIQSGRNLIRAFTFPRASLPISVVLRSILNLIPTIAAMLLIIVLLPPGEDWSLAALLFPVVLVLQVMLATGLALFFARMTTVLPDISQLIGVAMRIWLYASAVFFSVDRFEEYPSIVGIMEANPMFMVLDAARDCLLYATVPDVSTWIGLGAWSFGALVVGFLFFWRGEESYGRAPGPT0023465_161DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023465-tagG-K09692NANA
AK018_056681965hypothetical proteinATGACCATCCACCACGTCGCCACGACCGGGTCCGACACCGCCGACGGCTCCGCGGGCGCACCCCTGCGCACCATCAACCGCGCCGCGGCGCTCGCCCGGCCCGGCGACACCGTCCGCGTCCACGGCGGCGAGTACCGCGAGTGGGTCCGACCGGCCCGCGGCGGGCTCAGCGACCTGCGCCGCATCACCTACGAGGCCGCCGACGGCGAGCACGTGGTGATCAAGGGGTCCGAGCCGGTGACCGCCTGGCACCGCGAGGACGGTGACGTCTGGCGCGCCGAGGTGCCGAACAGCCTGTTCGGGGACCGCAACCCGTTCGTCGAGACCGTCGACGGCGACTGGCTCGTCCCGCCGGCGACCGGGGAGAGGCAGCACCTCGGCGAGGTCTACCTCGACGGGCGGAGCCTGTCCGAGGTGCACGACCGCGCCACCGTGTCCGCCCCGGTGGCGCGCACCGAGGCCGTGGACGGCTGGACCGGCACCACCGAGCCCGTCGAGGACCCGGAGTGGACCCGCGCCGTCTGGTACGCCGAGGTCGGCGAGGACACGACGACCATCTGGGCGAACTTCCTGGGGGCCGACCCGACCGGCGCGCTGGTCGAGATCAACGTGCGCCCGGCCGTCTTCTACCCGACCGAGCACCACCTCGACTACATCACCGTGCGCGGGTTCGAGCTCGCCCAGGCCGCGACCCCGTGGACCCCGCCGACCGCCGACCAGCCCGGGCTGATCGGGCCCAACTGGGCCAAGGGCTGGATCATCGAGGACAACGTCATCCACGACGCCAAGTGCTCGGCCGTGTCGCTGGGCAAGGAGATCTCGACGGGCCACAACTACGCCACCGAGCGCGGCGACAAGCCCGGCTACCAGTACCAGCTCGAGTCGGTGTTCGCGGCCCGCCAGATCGGGTGGGACCGCGAGCGCGTCGGCTCCCACGTGGTGCGCCGCAACACGATCTTCGACTGCGGGCAGAACGGCGTCGTCGGCCATCTGGGTGCGGTGTTCTCGACAGTCGAGGACAACCACATCCACCACATCGCGACGAAGCGCGAGTTCTACGGCTACGAGATCGGCGGCATCAAGCTGCACGCCGCCGTCGACGTGCAGATCGTGCACAACCGCATCCACGACTGCACCCTCGGGGTGTGGCTGGACTGGCAGACGCAGGGCACGCGGGTGGCGCGCAACCTGTTCTACGCGAACACGCGCGACCTGTTCGTCGAGGTCAGCCACGGTCCGTACGTCGTGGACCACAACGTCTTCGCCTCGCCGGTCGCGCTGGAGGTGTTCAGCCAGGGCGGCGCGTACGTCAACAACCTCGTCGCGGGCGCGGTGCGCCTCGAGCAGGTCATGGACCGCGCCACGCCGTACCACCGGCCGCACAGCACCGAGGTCGCGGGGTTCGCCGTGGTCTGCGGCGGCGACGACCGCTACGTCGGCAACCTGTTCCTCGGCGGTGACGCCGACCGCGCGTTCGCCCCGGGCAGCAAGGGCCACCGGCTCACGACCTACGGCACGCACGGCTACGACGGCTGCCCGGCGAGCCTCGAGGAGTACCTCGGCGGCATGGACCAGTCCAAGGGCGATCACGAGCGGTTCCACGGCCTGCGCCAGCCCGCGTACGTGCACCACAACGCCTACGCCGGCGGTGCGGCGCCGTACGAGCAGGAGAAGGACGCCCTGGTGCTGGACGACGCCGTGACGTGCGCCGTCGTCGACCACGGCGACCAGGTCGTGCTCGAGACGAACCTGCCGGAGGCGCTCGTGGCCGAGCACGTCGGCCTCGTCACGGCGGCCGACCTGCCGCGCGTGCGGTACGTCGACGCGGACTTCGAGGAGCCGGACGGGACGCCGCTGGTGGTGGGGACCGATCTGCTGGGCCGGGAGAAGGAGGCCGGTGCGGGCTACCCCGTCGGACCGCTCGCCGCGGTCGACGCCGGCCTGTCCCGCGTCCGCGTCTGGTGAMTIHHVATTGSDTADGSAGAPLRTINRAAALARPGDTVRVHGGEYREWVRPARGGLSDLRRITYEAADGEHVVIKGSEPVTAWHREDGDVWRAEVPNSLFGDRNPFVETVDGDWLVPPATGERQHLGEVYLDGRSLSEVHDRATVSAPVARTEAVDGWTGTTEPVEDPEWTRAVWYAEVGEDTTTIWANFLGADPTGALVEINVRPAVFYPTEHHLDYITVRGFELAQAATPWTPPTADQPGLIGPNWAKGWIIEDNVIHDAKCSAVSLGKEISTGHNYATERGDKPGYQYQLESVFAARQIGWDRERVGSHVVRRNTIFDCGQNGVVGHLGAVFSTVEDNHIHHIATKREFYGYEIGGIKLHAAVDVQIVHNRIHDCTLGVWLDWQTQGTRVARNLFYANTRDLFVEVSHGPYVVDHNVFASPVALEVFSQGGAYVNNLVAGAVRLEQVMDRATPYHRPHSTEVAGFAVVCGGDDRYVGNLFLGGDADRAFAPGSKGHRLTTYGTHGYDGCPASLEEYLGGMDQSKGDHERFHGLRQPAYVHHNAYAGGAAPYEQEKDALVLDDAVTCAVVDHGDQVVLETNLPEALVAEHVGLVTAADLPRVRYVDADFEEPDGTPLVVGTDLLGREKEAGAGYPVGPLAAVDAGLSRVRVWPGPT0018655_560DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
AK018_05669834ngcG_7COG0395Diacetylchitobiose uptake system permease protein NgcGATGACCGCGCGCAGCACCCGCACCACCCCGAATGTCCTCGGCGGGCTCGGGGGGTGGCTGTGGCTCCTCGTCGTGATCGTGCCGATCTACTACATCGTGGTCACCAGCCTGCGTCCGCAGGCCGACTACTACACCGAGAACCCCCTGTCGTGGCCGTCCGCGCCCACGATCGACGCCTACCGACAGGTGCTCGAGAACGACTTCCTGCGGTACTTCGCCAACTCGGTGATCGTCACCGGGACCTCGGTGGTCGTCATCCTCGCGGTCTCGCTCATGGCGTCCTACGTCGTGGTGCGCTCCGTCCGGCGCTCGACCTCGCGGCTCTTCCAGGTCTTCCTGCTGGGGATCGCCATCCCGATCCAGGCGACGATCATCCCCGTCTACTACCTCATCGTGCAGCTGGGGCTCTACGACACCCTGCTCGCGCTGATCCTGCCCTCCATCGCCTTCGCGATCCCGCTGTCGGTCCTCATCCTGACCAACTTCCTGCGCGACGTGCCCGGCGAGCTGTTCGAGTCCATGCGGGTCGACGGCGCGGGGGAGTGGCGCACGCTGTGGAGCCTGGCGCTGCCCCTGACGCGCCCGGCCATCGTCACCGTGGGCATCTACGACGGCCTGATGATCTGGAACGGGTTCCTGTTCCCCCTGGTCCTGACCCAGAGCGCCGAGACCCGCGTGCTGCCCCTGTCCCTGTGGGCCTTCCAGGGCGAGTTCTCCGTGAACGTGCCGGCCGTCCTGGCCGCCGTCGTCCTGTCCGTGCTCCCCATCCTGGCCGCCTACGCCGTCGGCCGCCGCCAGCTCGTCTCCGGGCTGACGGCCGGGTTCGGCAAGTAGMTARSTRTTPNVLGGLGGWLWLLVVIVPIYYIVVTSLRPQADYYTENPLSWPSAPTIDAYRQVLENDFLRYFANSVIVTGTSVVVILAVSLMASYVVVRSVRRSTSRLFQVFLLGIAIPIQATIIPVYYLIVQLGLYDTLLALILPSIAFAIPLSVLILTNFLRDVPGELFESMRVDGAGEWRTLWSLALPLTRPAIVTVGIYDGLMIWNGFLFPLVLTQSAETRVLPLSLWAFQGEFSVNVPAVLAAVVLSVLPILAAYAVGRRQLVSGLTAGFGKPGPT0016340_1747DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_05670936melD_10COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGACTGCCCCCGCCACCACCGACGTGACCCGGGAGGCCCGCCCCGTGCGGCGGGCCCCCCGGGGCCGGGCGGCGGGCCCCAGCCTGTGGATGGCGGGCCCGGCCCTGGCCTTCTTCGGCCTGTTCGCGTTCGTCCCGCTGATCGGTGTCGTGGTGCTGTCCTTCATGAGCTGGGACGGCCTCGGCACCCCGACGTGGGCCGGGCTCGACAACTGGGGCCGCACGCTGACCGACCCGGTCACGCAGAACGCGATGTGGCTGACCGTCGTGCTGACGGTCGGGACCTGGCTCTTCCAGGCACCCGTCTCGCTGCTGCTCGGCGTCTTCATGGCGGGCCGCCAGCGCTACCGCGCCGTGCTGTCCGTGCTGTTCTTCCTGCCGCTGCTCTTCTCGGCCGCGGCGGTGGCCATCGCCTTCACCGCGCTGCTGGACCCCAACTTCGGGCTCGGCGCCGCACTGGGGGCCGAGTGGCTCGCGCAGGACTGGATCGGCGACCCCGACCTGGCGATGTGGCTGGTGATCTTCGTCATCGGCTGGAGCTTCATCCCGCTGCACTCGCTGCTCTACCAGTCCGGCGTCCGGCAGATCCCGGCCTCGATGTACGAGGCCGCCCTGCTCGACGGCGCCGGCCGCGTGCAGCAGTTCTTCCGCATCACCGTCCCCCAGCTGAAGTACACGATGGTCACGTCCTCGACGCTGATGATCGTGGGCTCGCTGACGTACTTCGACCTGATCTTCGTCCTCACCGGCGGCGGCCCGGGCAACGCGACCCGCGTCCTGCCGCTGGACATGTACCTCACCGGATTCCGCTCCTACGACATGGGCAAGGCGAGCGTCATCGCCGTCCTGCTCGTCGTCGTCGGGCTGCTGGTCTCGCTCGCCCTCAACCGGCTCTCGGGCGCGAACCGCATGGAGTCGCAGCAGGAGGGAGTCTGAMTAPATTDVTREARPVRRAPRGRAAGPSLWMAGPALAFFGLFAFVPLIGVVVLSFMSWDGLGTPTWAGLDNWGRTLTDPVTQNAMWLTVVLTVGTWLFQAPVSLLLGVFMAGRQRYRAVLSVLFFLPLLFSAAAVAIAFTALLDPNFGLGAALGAEWLAQDWIGDPDLAMWLVIFVIGWSFIPLHSLLYQSGVRQIPASMYEAALLDGAGRVQQFFRITVPQLKYTMVTSSTLMIVGSLTYFDLIFVLTGGGPGNATRVLPLDMYLTGFRSYDMGKASVIAVLLVVVGLLVSLALNRLSGANRMESQQEGVPGPT0016335_1686DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_056711302hypothetical proteinATGAAGCTGAGGACAGCACGACGCACCGGCGCCATGGCGACCGCGGTGGCGGTCGCCGCGACGCTGGCCGCGTGCGGCGGGGGCAACCAGCCGGGCGGCGCGTCGAGCGACGGTGCCAGCGCGTGGGCGCTGACCGGGGGGAGCGAGGACATGTTCCGAGCGTCCTTCGAGGACTGGAACACCGAGAACCCCGAGCGGGAGATCGCCGTCGACTGGTTCGCCAACGACGCCTACAAGGAGAAGATCCGTACCGCCGTCGGGTCCGGCAACGCCCCGACGCTGGTCTACTCCTGGGCCGGCGGGACGCTCGCCGACTACGCCGAGAACGGCAACGTCGTCGACATCTCCGACGGCACGCAGGACCTCCTGGACCGGGTCATCCCGTCCGTGGCCGCCAACGGACAGATCGACGGCACGACCTACGCGGTGCCGAACACGCAGAGCCAGCCGGTCATCCTGTACTACAACCAGGAGGTCCTGGACGCCGCGGGCGTCGAGGTCCCCACCACCTACGACGAGTTGCTCGACGCCGCGGCCGCGCTCCAGGAGGCCGACGTCATCCCCGTCGCCCTGGCCGGCCAGAGCGTCTGGCCCGAGCTGATGTGGATCCAGTACCTCACCGACCGCATCGGCGGACCCGAGGTCTTCCAGGCCGTGCTCGACGGCGAGGAGGGTGCGTGGTCGGACCCGGCGATCGTCGAGGCGACCACGCGCATCCAGGAGCTCGTCGACGCGGGCGCCTTCGGGGACGCGTTCGGCTCGGTCAACGCTGACCAGAACGCTGACATCGCGCTCGTGCAGACCGGAAAGGCCGCCTTCGTGCTGCAGGGCAGCTGGGTCTACCCCAACTTCCTCGAGTCGTCGCCCGAGCTGGTCGAGTCCGGAGGACTCGGCTACACCACCTTCCCCGCGGTCGACGGCGGCGCCGGCGACCCGACGAACATCGTGGGCAACCCGTCCAACTTCTGGTCCGTCTCGGCCTCGGCCTCTCCCGAGGCGCAGGAGACCGCCAAGGAGTACATCAGCACGCAGGTGCTGTCCGACGAGGCGGTCGACGAGCTGCTGGCGATCGGCACCGTGCCCCCGCTGACGGGCCTCGAGGACCGGATCGCGGAGCAGGAGAACCCCGAGTACCTGGAGTTCGTCTACGGCATGGTCCGCGACGCCCCGCACTTCCAGCTCTCCTGGGACCAGGCGCTGCCGGCCGACCAGGCGCAGGCCCTGCTGGACAACCTCAGCCAGGTGTTCCTGGGGCAGATCGACCCGCAGCAGTTCAGCGAGACGATGGACGCGACGCTGTGAMKLRTARRTGAMATAVAVAATLAACGGGNQPGGASSDGASAWALTGGSEDMFRASFEDWNTENPEREIAVDWFANDAYKEKIRTAVGSGNAPTLVYSWAGGTLADYAENGNVVDISDGTQDLLDRVIPSVAANGQIDGTTYAVPNTQSQPVILYYNQEVLDAAGVEVPTTYDELLDAAAALQEADVIPVALAGQSVWPELMWIQYLTDRIGGPEVFQAVLDGEEGAWSDPAIVEATTRIQELVDAGAFGDAFGSVNADQNADIALVQTGKAAFVLQGSWVYPNFLESSPELVESGGLGYTTFPAVDGGAGDPTNIVGNPSNFWSVSASASPEAQETAKEYISTQVLSDEAVDELLAIGTVPPLTGLEDRIAEQENPEYLEFVYGMVRDAPHFQLSWDQALPADQAQALLDNLSQVFLGQIDPQQFSETMDATLPGPT0016330_1953DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
AK018_056721053degA_15COG1609HTH-type transcriptional regulator DegAATGACCACGACGGGACCACCCCGCGCCACGCTGGCACACGTCGCCCGCCTGGCCGGGGTCTCGAAGGCCACGGCGTCCAAGGTGCTCAACCGACGTCCCGACGTGTCCCCGCGCACCCGCGAACGGGTCGAGCAGGTGATCGACGAGCTCGGCTACGTCCCGAGCACAGGACCGCGCGGGGGCGACACCCTGGAGAAGGTCAACGTCGTCTTCGACACGCTCGTCAACGTGTACTCGATGCAGGTCCTCGACGGCATCATCACCGCCGCCGACGCCCACGGGGTCGAGGTCCTCGTCGACAAGCTCGACCCGGACCCCGAGGGCGACGGCCCGCTGTCGGCGACGTGGATCCGACGGCTCGGGGCCCACGGCCGCACGGGCGTGATCGTCGTGACCTCCGAGCTCACGGCCTCCCAACGCACGTTGATGCGTCGCCTGGGACTGAGCATCGTCGTGATCGACCCCCTCAACCCGCTCGACGACGACGTGGCCTCCGTGGGCGCCACGAACTTCACCGGAGGGGTGCAGGCCACCCAGCACCTGCTCGACCTGGGCCACCGCCGGATCGGGTTCGCCGGCGGCCTGTCGGCGTCCATGGCGTCCCGCGAGCGCCTGCAGGGGTTCCTCAGCGCCATGAGCTCGGCCGACGTGCCGGTCGACCCGGACCTCGTGCTCGAACAGGGCTTCACCTTCACCGCCGGGCTGGAGATGACCCGCCGCATGATGGCGAGCCCCGACCCGCCCACCGCCGTCTTCGCCGGCAGCGACGCGTCCGCCCTCGGCGTGCTGGAGGCGGCGCGCCAGCGCGGGCTGCGCATCCCCGAGGACCTGTCCGTCGTGGGGTTCGACGACACGTACGCCGCCGTGTCGACGGCGCCGCCGCTGACGACCGTGCGCCAGCCGATCATCGACATGGGCCGGGTGGCCCTGCGCACCCTGCTGCAGCAGGCGCGGGGGGAGCAGGCCGACTCCCACCACGTCCAGCTCTCGACCCAGCTCGTGGTGCGCGAGTCGACGGCGCCCGCCGAGCACCCGCAGGCCGATACCCGATGAMTTTGPPRATLAHVARLAGVSKATASKVLNRRPDVSPRTRERVEQVIDELGYVPSTGPRGGDTLEKVNVVFDTLVNVYSMQVLDGIITAADAHGVEVLVDKLDPDPEGDGPLSATWIRRLGAHGRTGVIVVTSELTASQRTLMRRLGLSIVVIDPLNPLDDDVASVGATNFTGGVQATQHLLDLGHRRIGFAGGLSASMASRERLQGFLSAMSSADVPVDPDLVLEQGFTFTAGLEMTRRMMASPDPPTAVFAGSDASALGVLEAARQRGLRIPEDLSVVGFDDTYAAVSTAPPLTTVRQPIIDMGRVALRTLLQQARGEQADSHHVQLSTQLVVRESTAPAEHPQADTRPGPT0017992_2999DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_05673597puuR_2HTH-type transcriptional regulator PuuRATGACAACGCCGGACAACGCTGCGATGGGCACCCGGGTGCGGGAGCTCCGTTCCGTCACCGGCCTGTCGATGCGCAACCTCGCCTCACGGGCCGGCGTGAGCGCCGGCTACGTCAGCCAGATCGAGCACGGACAGGCCAACCCCAGCCTCGCCGTGCTGCGTGCGATCGCCGAGGCGTTCGGCGTGACGTGGCTGGAGCTGTTCCAGTCCCCCACGAACAAGGGCCGGGTCCTGCGCAGCTCGGACCGTCCCCGCGTCCTCACCGACGGCGGCGTGGTCCACTACGAGATCACCCAGCCGCCGCTCGGCAACGTCGAGGTCCTGGTCACGCAGTACGAACCGGGCCAGGGCACCGGCGACGACGGCTACACCCACGGTGAGTCCCAGGAGATCTGTCTCGTCACCCGCGGACAGCTCCACGTCACCGTCGACGGCGAGACCACGACCCTCGCCGCCGGCGACAGCATCGAGTACCGCACGAACGTGCCGCACGCTGTCCACAACCCGGGGCCCGACCCCGCCGAGGCCGTCTGGGTGGTGTCCCCACCGTCCTTCCCCGGCTCGGCCGGCCACAGCGCCTCCAGCGCCGACGCCTGAMTTPDNAAMGTRVRELRSVTGLSMRNLASRAGVSAGYVSQIEHGQANPSLAVLRAIAEAFGVTWLELFQSPTNKGRVLRSSDRPRVLTDGGVVHYEITQPPLGNVEVLVTQYEPGQGTGDDGYTHGESQEICLVTRGQLHVTVDGETTTLAAGDSIEYRTNVPHAVHNPGPDPAEAVWVVSPPSFPGSAGHSASSADANANANANANA
AK018_056741107thiY_1COG0715Formylaminopyrimidine-binding proteinGTGTCCGTCCCCACCCGTCGGTCGCTCATCGGAGCCACCGCCACCGTCCTGCTCGGCGCCGCGGCGCTGACGGCCTGCTCGTCCGGTACCGAATCCGCCGACAGCACGGACGAGCCCGTCACCGTGCGCTTCGGCATCCCCACTCAGATGGGAGCCAACAACTCCCCGATGGCCGTGGGCCAGCACCTCGGCTACTTCGAGGAGGAAGGCATCGACCTGGAGATCGTCCACACGACCGACTCGACGTCGATCGTCCAGGGGATCAACACCGGCGCCCTGGAGATCGGCTCCACGCCTCCCGAGCCGCTCTGGCAGGCGATCGAGTCCGGCACCGACCTGCAGCTCGTCTACAACTACATCCGCCAGCAGACCGGGTCGATCGTGTCGCTGGCCGACGGCCCGGTCCAGGAGCTGACCGACCTGGAGGGCGCCGCCATCGGGCAGGCCAGCCTCGGCGCCAGCAACCTGCTGCTCTCCAACGGGATCCTCGACTCGGTCGGGTTCACCGAGGGCGAGGACTTCACGAACGTCGCCGTCGGGACCGGCGCCGCCGCCCTGCAGGCGATGGAGACCGACGAGGTCCAGGCCCTCTCCCTGTGGGACACCGAGTACGCCGCGTTCGAGGCCACCGGCGCCGAGCTCAACTACTTCACCACGCCCGAGGTCGAGTCGCTCTTCTCCACGACATACTTCACCTCCCCCGACTACGTCGAGTCCTCGCCGGAGGCCCTCGAGGGATTCGGTCGCGCCGTCGCCAAGGCCACGCTCTTCACGGCCACCAACCCCGAGGCGGCGTTGCAGATCATGTACGCCGACTACCCGGAGACGCGGCTGGCCGGAGTCAGCGAGGACGAACAGCTCGCGATCGACCTGACGTCGCTGGAACGGCGCATCGACCTGCTGGTCGCCGACGACCCCGCGGCGAACGGCACCTGGGGTGCCTACTCCGCCGACGCCGTCACGTCGTGGGCCGACTTCGCGGAGTCGGCGGGCATCATCGGCGAACCGATCGACGCCCAGGCTCACGTACAGAACTTCTTCGTCGAGGCGTACAACGACTTCGACCAGGACGCCGTCGTGGCGGCCGCCGAGGAGTGGTCCGAGTGAMSVPTRRSLIGATATVLLGAAALTACSSGTESADSTDEPVTVRFGIPTQMGANNSPMAVGQHLGYFEEEGIDLEIVHTTDSTSIVQGINTGALEIGSTPPEPLWQAIESGTDLQLVYNYIRQQTGSIVSLADGPVQELTDLEGAAIGQASLGASNLLLSNGILDSVGFTEGEDFTNVAVGTGAAALQAMETDEVQALSLWDTEYAAFEATGAELNYFTTPEVESLFSTTYFTSPDYVESSPEALEGFGRAVAKATLFTATNPEAALQIMYADYPETRLAGVSEDEQLAIDLTSLERRIDLLVADDPAANGTWGAYSADAVTSWADFAESAGIIGEPIDAQAHVQNFFVEAYNDFDQDAVVAAAEEWSEPGPT0001135_1345DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
AK018_056751362hypothetical proteinGTGAGCACCCCGCGCTACACCGAGGGCATCCCCGCGATCGACCACCACTCGCACGCCGGGTACGTCCGGCCCGGTCAGCCCGTCACGGGCGTCGACCACTACCTGCTCGAGGTGGCTCACGGCCACGTCGAGGGTCGCGTCCCCCACGACGACTACCAGCACTACATGAGCCTGCACGAGAGCGGTGACGAGGCGGGTGCCCACCGGCTGGCGGACGAGCTGGGGATCCCTCGCCTGATCCAGGAGAGCCGCACGTTCCAGCAGACATCCGTCCACGCCGTCGCGCTGCGCGAGGGGTGCGAGGCCCTGTACGGACCGGTGCCGACCGACCGGATCGACGAGGTCAGCCGCCATGCGCGGCAGACCGACCCGGCCGGGCTCTACGACCGCGCCCTGCTGCTCTCGGGGACGTCGGCAGTGCTCACCGACATCCCCGAGATCGACCCCGACGTCTGGCCGCACGAGCGGTACAAGCCGGTCGCGCGGATCGACCCGTACCTCTACCCGTTCGGCCACCCCCGGTGGGAGGGACGCGGGACCGATGCGCCCCGGTTCCGCCGGATCTTCTGGCGCATCCTCCAGCGACAGCTCGAGATCGCCGGGACGTCGCGTCCGGCCACCCTGTCGGAGTACACGGAGTTCGTGCTCGCCTCGCTGGCACGACGGCGGGACGCCGGGTTCGTCGGGCTGAAGATCGCCTCGGCCTACGTGCGGTCCCTCGACTTCGTGCGCACCGACCGCGAGACCGCCGAGTCCGCCTGGGCCACGCTGCGCACCGGGGCCGAGCGACCGTTCGACGGGCGCGAGGGCGAGGCAGACCTCGACGCGGCCGCCCACAAGGCACTGGCCGACCACCTGGCCTATGCCATCGCGGAGTGGGCCGTGCAGGCCCGGATGCCGATGCAGATCCACACCGGCTTCGGCCACACCGAGCCGGGCCTGCGGGTCTCGACCGCGAACCCCCTCCTGCTCGAGGAGTTCCTCGGGGACCCGGCCCTCAACACGCTGCGGGTCGTGCTGATCCACGGTGGGTACCCCTACTCCTCGAACCTGGCAGCGCTCGCGCAGATGCACGGCAACGTCCGCCTGGACTTCTCCTGGATGCCGTACCTGCACCACCACGCCGTCGTGCGCGTCCTCGAGGAGTGGCTCGAGCTGCTGCCGGCCGACCGTGTCCTCTTCGGCACCGACACCGGGTCCCCCGAGCTCCACGTCTCGGCGACCGCCCGCAGCCGGACGGCCCTGGACCGTGTGCTGCACGCCGGCGTGACCGACCGGCTCTGGACCGTCGGTCAGGCCACCTGGCTCGCCGAACGGGTGCTGCACCGCAACCTCTGCGACGTCTACGGGATCGACCCGTGAMSTPRYTEGIPAIDHHSHAGYVRPGQPVTGVDHYLLEVAHGHVEGRVPHDDYQHYMSLHESGDEAGAHRLADELGIPRLIQESRTFQQTSVHAVALREGCEALYGPVPTDRIDEVSRHARQTDPAGLYDRALLLSGTSAVLTDIPEIDPDVWPHERYKPVARIDPYLYPFGHPRWEGRGTDAPRFRRIFWRILQRQLEIAGTSRPATLSEYTEFVLASLARRRDAGFVGLKIASAYVRSLDFVRTDRETAESAWATLRTGAERPFDGREGEADLDAAAHKALADHLAYAIAEWAVQARMPMQIHTGFGHTEPGLRVSTANPLLLEEFLGDPALNTLRVVLIHGGYPYSSNLAALAQMHGNVRLDFSWMPYLHHHAVVRVLEEWLELLPADRVLFGTDTGSPELHVSATARSRTALDRVLHAGVTDRLWTVGQATWLAERVLHRNLCDVYGIDPNANANANANA
AK018_05676768cmpD_1Bicarbonate transport ATP-binding protein CmpDGTGAGCGCGCTGGTCGAGCTCGACCGGCTCGGAAAGGTCTACAGCACGCGCACCGGCGACGTCACCGCGCTCGGCGAGGTGTCCCTGACCATCGAGGACGGCGAGTTCGTCGCCGTCGTCGGACCCTCGGGCTGCGGCAAGACGACGCTGCTCAAGATCCTGGCGAACCTCGAGCAGCACACGTCGGGCGTCGGCATCCTGGGCAACAAGGAGCTCGGGGCGAACCGCTCCGACGACGTCGGCATGGTGTTCCAGAAGGCCACCCTGCTGCCCTGGCTCGACATCCTGTCCAACGTGCTGCTGCCGGTGACCCTCAAGCGGCGGGCCACCGCGGCCGACCGGGAGAACGCTCTCGACCTGCTGCGCATGGTGGGACTCGGCGAGTTCGCCGCCAAGCGTCCGCACGAGCTCTCGGGCGGCATGCAGCAGCGCGCGGCGATCTGCCGAGCGTTGGTGCACGAACCGTCGCTGCTGCTCATGGACGAACCCTTCGGAGCGCTCGACGCGATGACCCGGGACGTGCTGAACGTGGAGGTCAACCGCATCTGGCGAGACACGCACAAGACAGCCGTCCTCATCACGCACTCCATCCCCGAAGCCGTGTTCCTGGCCCAGAGGGTGGTCGTCATGAGCCCACGTCCGGGGCGGATCGTCGAGGAGATCACCGTCCCCTTCGGCCCGGAGCGCACCCTCGAGCTGCTGGGCACTCCCGAGTTCGGCGCCCTGTGCGCCCAGATCCGTCGACACTTCGAGGTGAGCGCCGCATGAMSALVELDRLGKVYSTRTGDVTALGEVSLTIEDGEFVAVVGPSGCGKTTLLKILANLEQHTSGVGILGNKELGANRSDDVGMVFQKATLLPWLDILSNVLLPVTLKRRATAADRENALDLLRMVGLGEFAAKRPHELSGGMQQRAAICRALVHEPSLLLMDEPFGALDAMTRDVLNVEVNRIWRDTHKTAVLITHSIPEAVFLAQRVVVMSPRPGRIVEEITVPFGPERTLELLGTPEFGALCAQIRRHFEVSAAPGPT0001140_6461DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
AK018_05677834ribX_5Riboflavin transport system permease protein RibXATGAGCACCACCACGGCACCGGACACCCGCACCACGGGCCGCCCGGCACGAACGCCCGGGTCCCGACGCCATCGCGACCCGGGACGGCGACGCCAGCTCGTCGGATCGCTCGTCGTGCTGGCGATCCTGCTGCTCAGCTGGCAGTTCCTGCCCACAGCCCTGGGGACACCGTCGTACGTCGTACCCGTCTTCAGTGACGTCCTCGCGGCGCTGACCGACCCCACGGCCCTCCCCGTCTACCTCGAGGCGACCGCCGCCACGATGACGGAGGTCCTGCTCGGGCTGGCCATCGGGGTGACGCTGGGGCTCGTGCTGGCGATCACGCTCGCACAGCTGCCCACGGTGTACGGGATCGTCTTCCCCTACATCGTCGCGATCGAATCCATCCCGAAGGTCGCCGTCGCCCCGCTGTTCGTGATCTGGTTCGGGTTCGGCCTGTCGTCCAAGGTCGTGGTCGTCGTGCTCCTGGCCTTCTTCCCGGTCCTGGTCAACACGCTCCACGGGCTGCGCGGGGTCGACAGAGACCAGGTGGACCTGTTCCGCGTCAACGGCGCGAGCCCCATGCAGATGCGTCTGCGGCTCCTCGTCCCGGCCGCGCTGCCGCAGATCTTCAGCGGCCTCGAGCTGGCCGTGGCCAACGCGATGATCGGTGCGATCGTGGCGGAGTTCGTCGGAGCCCAGCAGGGCCTCGGTGTCCTGATCCTGCAGGCACAGGGCCGGATGGAGACGCCGGCCGTCTTCGCCCTGCTGATCATCCTGTCCGCGCTCGGCATCACGCTGAACGTCCTGGTCCGGCTGCTGCGGCGCGTCGTCGTGTCGTGGGAGCACCACTGAMSTTTAPDTRTTGRPARTPGSRRHRDPGRRRQLVGSLVVLAILLLSWQFLPTALGTPSYVVPVFSDVLAALTDPTALPVYLEATAATMTEVLLGLAIGVTLGLVLAITLAQLPTVYGIVFPYIVAIESIPKVAVAPLFVIWFGFGLSSKVVVVVLLAFFPVLVNTLHGLRGVDRDQVDLFRVNGASPMQMRLRLLVPAALPQIFSGLELAVANAMIGAIVAEFVGAQQGLGVLILQAQGRMETPAVFALLIILSALGITLNVLVRLLRRVVVSWEHHPGPT0001145_6176DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_05678966ppsC_4Phthiocerol synthesis polyketide synthase type I PpsCATGACCACGATGACCGCCCTGCAGACCACGCCCGGTGCGGTGCGACCGGAGCTCGTCCGGGTCCCCGTCCCCGGACCCGCCGACGACCAGGTCCTGGTGCGCACCCGGGCCGTGGCCGTGAACAACGCCGACGTCACCGAGGCGTCCGACGTGCGGATCCCCGGGTTCGAGTTCAGCGGCGAGGTGGTCGCCGCGGGGTCGGCCGTCGACCCGGCGGTCGTGGGCACCGCCGTCATGGGCGTGGGCCCGGGCGCCTTCGCCGAGTACGTCGCGGTCCACCACCGCCACGTCATGCCGGTGCCCGACGGCGTGCCCTTCGACGTGGCCGCCGGTCTGCCCACCGCGCTGCTCACCGAGTACGGGGCCCTGCGGCGTGCGCCGCTGTCCGCGGGCGACACCGTGCTGCTCACCGCCGCGACGTCGGCGATCGGGCTGGTGGGCGTCCAGGTCGCCACCGAGCTCGGCGCCGGCCGCGTCATCGCCACGACCCGCAGCGAGGAGCGGCGTCCGCTGCTGGAGGGCGTCGGTGCCCACGACGGCGTCGTGACGGGGACGGAGGACCTGGTGGCCCGCGTGCGCGAGCTGACCGGCGGCACGGGCGCCGACGTCGTCCTGGACCACGTCGGCGGTGCCGTCCTCGACGACGCGATCGCCGCCGTCCGACCGGGCGGGCGCGTCGTCAGCGTGGGGCGGCTGGCCGGCCCGACGGCCGAGATCGACCTCTTCGCGCTCGCGCGCAGCGGTGCCGTGCTGCAGTCCGTGTCCTTCGGGTTCACCCCGGTCGAGGTCATCGGGGATCTCCTGGAGGGCGTGACACGGGACCTGTCGGACGCGGTCTCGCAGGGGCGGGTCGCGCCGGTCGTGGGGCGACACACCGCCTTCACGAAGCTGCCTGCGACGCTCGCGGCGCTGGCCGCGGGCGAGCAGGTCGACGGCAAGACCGTCGCGAGCCTCGGCGACGCCTGAMTTMTALQTTPGAVRPELVRVPVPGPADDQVLVRTRAVAVNNADVTEASDVRIPGFEFSGEVVAAGSAVDPAVVGTAVMGVGPGAFAEYVAVHHRHVMPVPDGVPFDVAAGLPTALLTEYGALRRAPLSAGDTVLLTAATSAIGLVGVQVATELGAGRVIATTRSEERRPLLEGVGAHDGVVTGTEDLVARVRELTGGTGADVVLDHVGGAVLDDAIAAVRPGGRVVSVGRLAGPTAEIDLFALARSGAVLQSVSFGFTPVEVIGDLLEGVTRDLSDAVSQGRVAPVVGRHTAFTKLPATLAALAAGEQVDGKTVASLGDAPGPT0013255_4206DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_05679384hypothetical proteinGTGGGCACGCTGCTCGTCTCGTGGGGGCTCGCGAACCTGGCCAAGCTGGCCGTCGGACGGGTGCGGCCGGAGATCGACGAGGTGATCCTCAGCGCCCCCGGGCTCAGCTTCCCGTCCGGGCACGCGACGTCGTCGACGACGGCCGCCGTGACGCTCACCCTGCTCGTCTGGCCCGTCCTCGGCCGCGCCGGACGCGTCGTCGTCCCCCTCGCCGCGACGACGTTCGCGCTGATCACCGCCGCGGACCGGATCTTCCTCGGGGTGCACTACCCCTCCGACGTCCTCGGCGGCCTCCTCCTGGGCGTCACCATCTCCGGCGCCTCCTACCTCGGTGACCGCGGGTGGTCACCCCCGACCCGCACGACAGATGCGGAGCATCGATGAMGTLLVSWGLANLAKLAVGRVRPEIDEVILSAPGLSFPSGHATSSTTAAVTLTLLVWPVLGRAGRVVVPLAATTFALITAADRIFLGVHYPSDVLGGLLLGVTISGASYLGDRGWSPPTRTTDAEHRPGPT0024170_329DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024170-bcrC-K19302NANA
AK018_05680246hypothetical proteinATGCGGAGCATCGATGAACACGTTCGTCCACCGTTGCTCGCCCAGCGCATCGAGAACCCGGTGCTGTGCCGGGTGGTCACCGTGGTCTGCGTGACGATCCCGTTCGTCGTCGGCCTCTCGCGGATCGACCGGGGCATGCACGGCCCGCTGGACGTCGTGTTCGGCCTGCTCGACGGTCTGCTGTGCGTGGTCGTGGCCTGGTGGCACCTGCGGCGGGACACGTCGACCGGCACGGCGCGGCGCTGAMRSIDEHVRPPLLAQRIENPVLCRVVTVVCVTIPFVVGLSRIDRGMHGPLDVVFGLLDGLLCVVVAWWHLRRDTSTGTARRNANANANANA
AK018_05681591hypothetical proteinGTGGGGCTGGCCACCGTCGGGTTCAGCTGCCTGCAGCTCGGGATCCTCAGCACCGCCGAGGAGAGCACGGCGGCGCTCGCCGTCCTCGTGCTCACCGTCCCGCTGCAGCTGCTGGCCGCGATCATCGGGTTCGGTGCCCGCGACCCCACCGCGGGTACCGGGATGGCCGTGGTGTCGGGGGTGTGGGCGATGCTGGCCGTGTCGACGCTGACCTCCCCGCCGGGGACGTCCAGCCCCGCGCTCGGCGTCCTGCTGCTGACGGCGGCGCTCGCGATGGTGGTCCCGGCCCTGGCGGCGGGCGGCAAGATCGTCGCGGCCGCCGTCATGATCGGCTCCGGCGTGCGGTTCGCGGTGACCGGCGTCGCGGAGTTCACCGGGTCCGGCGGCTGGGAGACGACAGGCGGCGTCCTCGGGCTGGTCCTGGCCGCGATGGCGCTGTACGCCGCCCTCGGGTTCGTGCTCGAGGAGGTCGACCACCCCGTCCGTCTCCCGGTGCTGCGCCGCGGCGCCGGCCTCAAGCCCCTGCGCGACGACCTCGAGGAGCAGGTCGAGGGCGTCGCGCGGTCGGCCGGCGTCCGCCAGCAGCTCTGAMGLATVGFSCLQLGILSTAEESTAALAVLVLTVPLQLLAAIIGFGARDPTAGTGMAVVSGVWAMLAVSTLTSPPGTSSPALGVLLLTAALAMVVPALAAGGKIVAAAVMIGSGVRFAVTGVAEFTGSGGWETTGGVLGLVLAAMALYAALGFVLEEVDHPVRLPVLRRGAGLKPLRDDLEEQVEGVARSAGVRQQLNANANANANA
AK018_05682213hypothetical proteinATGAGCACGAACCAGTACCAGGTCACCGGCATGACCTGCGGACACTGCGAGATGTCGGTCCGCGAGGAGGTCGGCGCGGTCCCCGGGGTCGAGGAGGTCCAGGTGAGCGCGGAGTCCGGCACGCTCGTCGTCACCGGATCCGACGCCGTCGAGGAGTCGAAGGTCCTGGCGGCCGTCGACGAGGCGGGCTACTCCGCGGTCCCCGTCGCCTGAMSTNQYQVTGMTCGHCEMSVREEVGAVPGVEEVQVSAESGTLVVTGSDAVEESKVLAAVDEAGYSAVPVAPGPT0004125_1700DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213NANA
AK018_056831065hypothetical proteinATGACCGAGCAGCACCGCACCGACCGGACCGACGCCGAGGGCGCGACGACCGACGCCGAGGGCGCGACGACCGACGGCGGGGACGCGACGCAGGCAGTCCCGGCGCCGACCGGCCGGTTCCGGACCGACCCCTCGACGCCGGACACGCAGGTGCTCGGCGCGGGCGACCCGCAGGAGACCCGGCCGCTCGGCGTCGGCGCCGGCGAGGACACGCGGGTCGTCGACGCGGGTGCGGGCCAGGACACCCAGGTCCTCCCCGGGGGCGGCGTACCGCCGACCCGACCCCTGACCGGCCGGCCGCACCGGGAGTCCGTGATGCCCGCGGACCGGGGGTACGGCGCCGCCCCGTGGCCGGCCGAACGGTCCGCGCCGGCCGTCGGACCGCCGTCGGGTCGCACCGCTCCGCGCTCCGCGGCACCCGCCGGCGCCGCACCGGCGGGTCCGTCCTCCCCGGCACCGGCGCAGCACCCCGCACCGTGGCCCGGGACGGCGGCACCGCAGCGAGGGCCCGCGACGCCGCAGCGTCCGGCACGACCTGCCCCGGCGCAGCGCGCGCAGACCGGCGGCTCGGGCGGACGTCGCGGCACCGAGCCGACGGCGGTCGCGTCCCTGGTCACCGGCCTGCTCGGCATCGTGGTGCCCCTGGTGGGCGTCCTGGCGATCGTGCTCGGCGGCATCGGCCTGGACCGCACCCGCCGGCGCGGGACGAACGGGCGTGGCATGGCGCGGACGGGGCTGACGCTCGGGTCGCTGCAGGTGCTGTTCACGACGCTGCTGGTCGTCGGCGGCCTGATGTTCTGGAACGCCTACGGCGAGGACATCGAGGCCGGCCTGGCCCAGGTCGACGCGATCGCCGAGGGCGAGATCAGCGTCCCGGACGTCGTCCTCGGCGGCCTCACCGGGGACTACTCCTTCGACGACCTGCAGGAGCTCGGCGGCCTGGTCGGCGACACCGACGAGCTGCAGGAGCTCGGCGGTCAGTGCCGCGCGGGCGAGGCCGCGGCGTGCGAGGACCTGCTCGACCTGGTGCCCGACGACCTGCTGCAGAGCTTCGGCGGGCCGTGAMTEQHRTDRTDAEGATTDAEGATTDGGDATQAVPAPTGRFRTDPSTPDTQVLGAGDPQETRPLGVGAGEDTRVVDAGAGQDTQVLPGGGVPPTRPLTGRPHRESVMPADRGYGAAPWPAERSAPAVGPPSGRTAPRSAAPAGAAPAGPSSPAPAQHPAPWPGTAAPQRGPATPQRPARPAPAQRAQTGGSGGRRGTEPTAVASLVTGLLGIVVPLVGVLAIVLGGIGLDRTRRRGTNGRGMARTGLTLGSLQVLFTTLLVVGGLMFWNAYGEDIEAGLAQVDAIAEGEISVPDVVLGGLTGDYSFDDLQELGGLVGDTDELQELGGQCRAGEAAACEDLLDLVPDDLLQSFGGPNANANANANA
AK018_056841404hypothetical proteinGTGAGCACGTCACCGGATCCTGGGCCGCCGGCACCGGCGCGCCGCCGTCGTGCCCGCTGGTGGTGGCTCGGGGGCACGCTCGTCCTGCTGCTCACCGGCGCGGCGTTCGTCGCGGCCGAGCTGGAGCACCGTGCCTGGGTCGAGACGGTGGCGGAGTACGAGGCGGAGGTCGCTCGGGTCACCGCGGAGGCGGAGACCTCGCGCGCCCGGGCCGAGGAGGCCTACGCCGACGGCCTCGCCACGCTCACCGGGGCGATCGACCAGGCCCGGCCGGTCTACCGGGCGAGCGAGGACCAGGTGGCCGACCCCGCGGTGCGGGACCCGCTCGACGACGCCCTGGCTGAGGGCCGCCGGCTCCGCGACGCCGAGGTCGCCTACCCCGTCGAGACCCGCACGGTGGAGGCGGTGACCCGGCCGAACCCGTTCTTCGCCGAGGAGCTCCCCGCGGTGACCGTCGAGGTCGTCGACACCGCGCAGCCGGAGCCGGCAACGCTCGAGTCCGCGGCGACCGACCTCGTGTCGACCGCGGACGCCGTGGCGGCGGCCCGACGCGAGTGGGCCGTCGCGGAGCTGCGGCCCGCCACCGACGAGGGGCGCTACGCCCTGACCGGCCTGCGCGCGCAGGACGCGGACCTCGGCCTCGGCGCCCTCGACGACGCGGTCACCGCGGCCGAGGCCGTCCTGGACGCCGGGGTGGACGCCGTCGACCCGGACGCGGCCGTGCGCCTGCGGGACACCCTGCTCGAGACGTCCGCGTCGCTGTGGCGCACCCGGCTGGACCAGATCACCGCCGAGCGCCGTGCGGCGGCGCGTGCCGACGGCGTCGACTGCCGGGTGGACAGGTGCGTCGCCCTGACCTTCGACGACGGTCCGGTCGCGGAGACCGAACGCCTGCTGCGCATCCTGGAGCGCAAGGACGCGCCCGCCACGTTCTTCATGGTCGGCGACAACGTCGCGCGGAACCCGCAGATCGCCCGGGCGGTGGCCGACGGCGGGCACCTGGTCGCGAACCACTCCTGGAGCCACCCGCAGCTCACCACGCTGGACGACGCCGCGGTCCGGGAGGAGCTGCGCAGCACCTCCGACGCGATCCGCGAGGCCACCGGGACCGCCCCGTTCCTGCTGCGGCCGCCGTACGGGGACGTGGACGGGCGGGTCCGCTCGCTCGCCACCCGCGCCGGTCTCGACGTCATGCTGTGGAACCTGGACACGCTCGACTGGGAGACCCGCGACGCGAAGGAGGCCCGGCGGGCGGTGCGGAAGCAGGTGGAGCCCGGCAGCAACGTGCTGATGCACGACATCCACGCCACCACGGTCGACGCCGTCGGCAAGATCATCAAGGACCTGCGCGGCGAGGACTACGTGCTCGTCACGGCCGACCTGCTCGTCGCCGACGAGGACTGAMSTSPDPGPPAPARRRRARWWWLGGTLVLLLTGAAFVAAELEHRAWVETVAEYEAEVARVTAEAETSRARAEEAYADGLATLTGAIDQARPVYRASEDQVADPAVRDPLDDALAEGRRLRDAEVAYPVETRTVEAVTRPNPFFAEELPAVTVEVVDTAQPEPATLESAATDLVSTADAVAAARREWAVAELRPATDEGRYALTGLRAQDADLGLGALDDAVTAAEAVLDAGVDAVDPDAAVRLRDTLLETSASLWRTRLDQITAERRAAARADGVDCRVDRCVALTFDDGPVAETERLLRILERKDAPATFFMVGDNVARNPQIARAVADGGHLVANHSWSHPQLTTLDDAAVREELRSTSDAIREATGTAPFLLRPPYGDVDGRVRSLATRAGLDVMLWNLDTLDWETRDAKEARRAVRKQVEPGSNVLMHDIHATTVDAVGKIIKDLRGEDYVLVTADLLVADEDPGPT0018645_551DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
AK018_056852442hypothetical proteinATGAGCAGGACGAGATCAGTCCGGACCGTGACCGCACTTCTCGCCGCGGCCGCCGTCGCCGCGCTCCCGGCCCTGGCGGCGCAGGGCTACGACCCGACCGGCGGGACCGTCTACGAGCTGGGCGACGAGCCGTGCCTGAAGGGCACCGGCAACTGCGCGATCTACCCGAAGTCCGTCCAGCTGCCGTCGGGGCGGCTCGTGATGGCCTTCGAGCGGTCGACCGTCGTGGCGGAGACCGGCAGCGCCGACGGGCAGACCATGCCGGTCTACGCGAGCGACGACCACGGCGAGTCGTGGCAGCCGCTGTCCGAGGTCGATCCTCCCGCCTACCTGAGCGACGACCCCGAGTACGACCCGTACATCAGCAACTGGACCAACCCCAACCTGTACGTGCTGCCCCAGGACGTCGGTGACCTCGCGGCCGGGACGCTGCTGCTGGCCAGCGTCGTCTCCGGCGACGACCACTACTTCCTCGAGCAGAAGGCCGCGGACCCCTCGTGGGTGCCGGACAACGACGGCGACCGGAGCGACCTGGCGATCGCGCTGTTCGCCTCGACCGACGAGGGCGCCTCGTGGGACGTCGTCGACATCGTCGCCCGGGGCGGGTGGCAGGGAGGCTCGGCCGGCGCGATCGGCGGCCGGATCTCCTCGGCCAACACCTTCGCGCAGGTCGACCCGGTGTGGGAGCCGCAGCTGATGGTGCACGACGGTCTGCTCGTCGCCTACTACTCCGACGAGAACGACTACCTCGGATTCGACCCCGCGACCGGCGTCGCGCAGCTCGACCCGGACAACGACACGGCGCCGGACTCGCACGGCCAGATCCTGGTCCACCGGACCTGGGACGGCGTCGGCGCCGAGTGGAGCGACCCGGTCGTGGACACCCCGGGGCTGACGGTCGACCGCGGGGCGGGCAAGACGCAGATCGGTGGCGGCCGGCCCGGCATGACGTACGTCGTGCCGACCAGCGACGACCAGTGGCTGATGACGTTCGAGTACTTCGGCGGCGGGACCGTCGCGCGCTACAAGATCGCCGACGACCCGCTCGCGTTCCACGCCGACGGGACGGCCGCCGGTGCCGGCATCGAGGGGCTGCCGGTGACCCCGGGGTCCGGCACGCTGGCCCCGGGCGGCAGCCCGGTGCTCGAGCGGTTGCCCGACGGCCGGATCCTGTACAACTCCTTCGGCAGCGGCAACATCTGGGTCAACGAGTCCGGGGCGAGCGACGGGACCTGGACGGAGCACCAGGCGCCCATCGGCACCGGCTACAGCCGGGCGCTGCAGTACGTCGAGGGCACCGGACGCGTCGCCATCCTCCAGGCCGTCTGGGGCGGCCCGACGAGCGGCGCCGTCGTCCGGCACGCCGAGGTCGACCTCGGCGACTCGGACGGGACCTACTACCGGCTGACCAACCGCGCCTCCGGCCAGGTGATCGGGACCGGCGGCAACACCACGGACGCGAACATCGGCAACGCGGACGTGCCGGACGTCGTCGCCGAGCCGCAGGACGCGGCCGCCGACACCCAGTACTGGCACGTCATGACGCGGCCCGACGGCGCGGAGACCTTCCTCAACAAGTCCGGCGGGCGGGCAGCCGCGGTGTGGACCGGGTTCCCCGGCGTGGGCCAGCGGGTCGGCCAGTGGGTCGACGACCAGGACACGGGCAGCTGGCACCTCGTCGAGACCGGCGACGGGGGCTACCGGATCCAGGCGGCGGAGGCGACCGACCTCTACCTGACCGCCCCGGCGGGGCCCGGCGCGGTGACGCTGCAGAACGCCACCGGGGACGACACCCAGGTGTGGGAGCTGACCCCGCTGGCCCCGACGGGGGAGGACCTGACCGGCACGCACCGCTCGGAGAGCCTGATCGGGGCCGACCCGGAGGGCGCCGGGGCCGAGCTGCCGCTCGACGCCGCCGGGTTCGACCCGGCGGGCGACCCGCTGCGGGCGGGCACGACAGGTCACGCCTACGTCCTCACGGACGCCGGCGTCACCTCCCTGGGTCCGGTCGAGCTCGACGCCGCGCAGCAGGGCGTCGTGACCCTTCCGGGAGACCTCGCCGCGGGCACGTCGTTCCGGGTCGCGGTGCTGACCGACGACGCCCCGGTCGTCTGGGACGAGGCGGTCGTCGGAGGTGACGTGTCCGAGCCGGTGCTCCCGACGGAGGTGAGGGTGAAGCCGCGGTGCATGGCGGGAACGGCGTACGTGGCGGTCCGCGTCCGGAACGTCGGCGACGTCGCGATCGACGTCGAGGTCGTCACGCTGGCCGGCAGCACGACGTTCACCGACGTCGAGCCGGGCCGGCACGCGTACCAGTCGTTCTCGACGGGGGAGCCGTCGGTCCCGGCGAGCACCGTGACGGTCACGGCGTCGGCGCAGGTCGCCGGCGAGGAGGTCGTCACCACGCACGAGGAGCCCGTGGACCCGATCGGCTGCGGCTGAMSRTRSVRTVTALLAAAAVAALPALAAQGYDPTGGTVYELGDEPCLKGTGNCAIYPKSVQLPSGRLVMAFERSTVVAETGSADGQTMPVYASDDHGESWQPLSEVDPPAYLSDDPEYDPYISNWTNPNLYVLPQDVGDLAAGTLLLASVVSGDDHYFLEQKAADPSWVPDNDGDRSDLAIALFASTDEGASWDVVDIVARGGWQGGSAGAIGGRISSANTFAQVDPVWEPQLMVHDGLLVAYYSDENDYLGFDPATGVAQLDPDNDTAPDSHGQILVHRTWDGVGAEWSDPVVDTPGLTVDRGAGKTQIGGGRPGMTYVVPTSDDQWLMTFEYFGGGTVARYKIADDPLAFHADGTAAGAGIEGLPVTPGSGTLAPGGSPVLERLPDGRILYNSFGSGNIWVNESGASDGTWTEHQAPIGTGYSRALQYVEGTGRVAILQAVWGGPTSGAVVRHAEVDLGDSDGTYYRLTNRASGQVIGTGGNTTDANIGNADVPDVVAEPQDAAADTQYWHVMTRPDGAETFLNKSGGRAAAVWTGFPGVGQRVGQWVDDQDTGSWHLVETGDGGYRIQAAEATDLYLTAPAGPGAVTLQNATGDDTQVWELTPLAPTGEDLTGTHRSESLIGADPEGAGAELPLDAAGFDPAGDPLRAGTTGHAYVLTDAGVTSLGPVELDAAQQGVVTLPGDLAAGTSFRVAVLTDDAPVVWDEAVVGGDVSEPVLPTEVRVKPRCMAGTAYVAVRVRNVGDVAIDVEVVTLAGSTTFTDVEPGRHAYQSFSTGEPSVPASTVTVTASAQVAGEEVVTTHEEPVDPIGCGNANANANANA
AK018_056861365hypothetical proteinATGCGCACCACCATCCGCCCACAGGCTCGCCGAGCCTCCGCCGCCGTCGCCGCCGGCCTCCTCGCAGCAGGCCTGCTCAGCGCCTGCGGAGGAGCCGAGACGGGGACCGACGCCGGATCCTCCGAGCCCGACCCCGAGGCCGCGGCCGACCTCGACGCCGCCCTCGAGGAGGGTGGCGAGCTGACCTACTGGACGTGGACGCCGTCCGGCGAGGACCAGGCCGCCGCGTTCATGGAGCAGTACCCGAACGTCACGGTCGAGGTGGTCAACGCCGGCACCGCGACGGACGAGTACACCAAGCTCCAGAACGCGATCGCGGCCGGCTCGGGAGCCCCCGACGTGGCGCAGATCGAGTACTACGCCCTGCAGCAGTTCGCGATCTCCGACAGCCTCGTGGACCTGAACACCCTGGGGCTCGGCAGCCTCGAGGACCAGTACACGGCCTCGACCTGGGCGCAGGTCAGCGTCGAGGGCGGCCTGTACGGCCTGCCGCAGGACTCCGGCCCGCTGGTCCTGATGTACAACCAGGACATCTTCGACGAGCACGGCATCGAGGTGCCGACCACCTGGGACGAGTACGTGGCCGCCGCCGAGACGCTGCACGAGGCCGACCCGTCGACGTACATCACCAACGACGCCGGGGACCCCGGCTTCGTCCAGCCGCTCATCTGGCAGGCCGGCGGTCACCCGTACACCGTCGACGGCACGACCGTGAGCATCGACCTGCAGGACGAGGGCTCCCAGCGCTGGGCCGACATGTGGAACCAGATGCTCGAGCCGGGCCTGCTGGCCGACATCCCCACCTGGTCGGACGACTGGTGGAAGGCGCTGGGCAACGACACGCTCGCCACGATCGTCACCGGCGCCTGGATGCCGGGCATCCTCGAGGGCTCCGTGCCCGAGGGCGCCGGCAAGTGGCGAGTCGCCCCGATCCCGAGCTACGACGGTGACCCGACCACCGCGGAGAACGGCGGCAGCTCCCAGGCCGTCATCAAGCAGTCCGAGAACCCCGAGCTCGCGGCGGCGTTCGTGCGCTGGCTCAACAGCTCCGAGGAGAGCGTGGACGTGTTCCTCGAGTCCGGCGGCTTCCCGTCCACGACGGCGCACCTCAACGACCCGGAGTTCCTCGAGGCCGCGCCGGAGTACTTCGGTGGCCAGAAGATCAACGAGGTCCTCGTCGAGGCGTCCGAGAACGTGTCGACCGACTGGCAGTACCTGCCGTTCCAGGTCTACGCCAACAGCGTCTTCCCGGACACCGTGGGCCAGGCCTACACGCAGAAGAGCGACCTCAACGGGGGCCTCGTCGCCTGGCAGGACAACCTCGTCTCGTACGGCAGCTCCCAGGGCTTCACCGTCGAGCAGTGAMRTTIRPQARRASAAVAAGLLAAGLLSACGGAETGTDAGSSEPDPEAAADLDAALEEGGELTYWTWTPSGEDQAAAFMEQYPNVTVEVVNAGTATDEYTKLQNAIAAGSGAPDVAQIEYYALQQFAISDSLVDLNTLGLGSLEDQYTASTWAQVSVEGGLYGLPQDSGPLVLMYNQDIFDEHGIEVPTTWDEYVAAAETLHEADPSTYITNDAGDPGFVQPLIWQAGGHPYTVDGTTVSIDLQDEGSQRWADMWNQMLEPGLLADIPTWSDDWWKALGNDTLATIVTGAWMPGILEGSVPEGAGKWRVAPIPSYDGDPTTAENGGSSQAVIKQSENPELAAAFVRWLNSSEESVDVFLESGGFPSTTAHLNDPEFLEAAPEYFGGQKINEVLVEASENVSTDWQYLPFQVYANSVFPDTVGQAYTQKSDLNGGLVAWQDNLVSYGSSQGFTVEQPGPT0016545_2841DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_05687900araQ_8COG0395L-arabinose transport system permease protein AraQATGGTCCGGCCACGCACGATCAACCCGCGGGTCCGCCGTCGGGCCTTCTCGGTCACCCGGCCGCCGAAGTCCACGGCCCTGACCCTGGTCATGGTCCTCTTCCTCTTCTACGCGCTGGTGCCGCTGGTGTGGCTGTTCATCAACGCCACCAAGACGCAGGGCGACCTGTTCTCCTCGTTCGGCCTGGCGTTCGGCGGCTCGTTCGCGCTGTGGGACAACATCGCGGCGACGTTCACCTACGACGACGGGATCTACCTCCGCTGGCTCGGCAACACGCTGCTGTACGTCGTCGTCGGCGCCGGCGGGGCGACCCTGCTGGCCACGCTCGCCGGCTACGGACTGGCGAAGTTCCGCTTCCCCGGGCGCAGCGCCTACTTCGCCGTCGTGCTCGGAGCGGTGGCCGTGCCCGGCACGGCGCTCGCGGTGCCGACGTTCCTGCTGTTCAGCCAGCTGGGACTGACCAACACGCCCTGGTCGATCATCATCCCGTCGCTGATCAGCCCGTTCGGCCTCTACCTGATCTGGGTCTACACGATCGACTCGGTCCCGACCGAGCTGCTGGAGGCGGCCCGGCTCGACGGCGCCACCGAGATGCGGACGTTCTTCACCGTCTCGGTCCGCCTGCTCACGCCGGGCATCGTGACGGTGGCGCTGTTCACCATCGTGGCGACCTGGAACAACTACTTCCTGCCCCTGATCATGCTCAGCGACCCGCAGTGGTTCCCGCTGACGGTGGGGCTCAACCAGTGGAGCTCGCAGGCCGCCGGCGTCGCGGCCGAGCCCATCTTCAACCTGGTGATCACCGGCTCGCTCGTCGCGATCGTGCCGATCATCGCCGTCTTCCTCTTCCTGCAGCGCTTCTGGCAGTCCGGCCTGAGCGCCGGGAGCGTCAAGCAGTAGMVRPRTINPRVRRRAFSVTRPPKSTALTLVMVLFLFYALVPLVWLFINATKTQGDLFSSFGLAFGGSFALWDNIAATFTYDDGIYLRWLGNTLLYVVVGAGGATLLATLAGYGLAKFRFPGRSAYFAVVLGAVAVPGTALAVPTFLLFSQLGLTNTPWSIIIPSLISPFGLYLIWVYTIDSVPTELLEAARLDGATEMRTFFTVSVRLLTPGIVTVALFTIVATWNNYFLPLIMLSDPQWFPLTVGLNQWSSQAAGVAAEPIFNLVITGSLVAIVPIIAVFLFLQRFWQSGLSAGSVKQPGPT0016540_1216DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_05688927lacF_11Lactose transport system permease protein LacFATGACCACGCTCACCCCCTCGAGGGTGACCCCGGCACGGGTCACCCAGGAGATCCGCACACCGAAGCGGCGTTGGACCGGTTGGCAGTTCACCTGGCCGTTCGCCGCCGTGTTCGTCGTCGCGTTCATCGCGCCGCTGCTCTACGCCCTGTGGCTCAGCCTCTTCCAGAACCAGCTCGTCGGCGGCAACGCGTTCGTCGGCCTCGACAACTACGTCCTGGCGTTCAACGACCCGGCCTTCTGGGCGGGCTTCGGGCGTGTCTTCCTGTTCCTGCTCGTGCAGGTCCCGATCATGCTGCTCCTCGCCCTCGCGGCCGCCCTCGCGATCGACAGCGCACGGCTGTACGCGACCGGGTTCTTCCGCATCGTGATCTTCCTGCCGTACGCCGTGCCCGCCGTCGTCGCCGTGCTCATGTGGGGCTTCATCTACGGCGACAACTTCGGCCTCACCGCGAGCATCAACGACTGGCTCGGCAGCGACGTGCTGGCGCCGTTCGCCCCGCAGTGGATGCTCGTCTCGATCGGCAACATCGTGACCTGGGAGTTCGTCGGCTACAACATGGTGATCTTCTACTCGGCGCTCAAGACGATCCCCACGGACCTCTACGAGGCGGCCGAGATCGACGGGGCCCGGGGCTGGCAGGTCATCCAGGCCATCAAGCTCCCCGCCGCCCGCGGCGCGATCGTCATCGCCACGATCTTCTCGATCATCGGCAGCTTCCAGCTCTTCAACGAGCCGAACGTGCTGCAGCCGCTGGCCAACAACGTCATCACCAGCTCGTACACCCCGAACATGTACGCCTACTCGCTGTCCTTCGCCGGCCAGCAGTACAACTACTCCGCCACCGTCGCCATCATCATGGGCGTCATCACCGCGGCCATCGCCTACGTGGTGCAGCTGCGCGGTTCCCGGAAGGAGGACCGCTGAMTTLTPSRVTPARVTQEIRTPKRRWTGWQFTWPFAAVFVVAFIAPLLYALWLSLFQNQLVGGNAFVGLDNYVLAFNDPAFWAGFGRVFLFLLVQVPIMLLLALAAALAIDSARLYATGFFRIVIFLPYAVPAVVAVLMWGFIYGDNFGLTASINDWLGSDVLAPFAPQWMLVSIGNIVTWEFVGYNMVIFYSALKTIPTDLYEAAEIDGARGWQVIQAIKLPAARGAIVIATIFSIIGSFQLFNEPNVLQPLANNVITSSYTPNMYAYSLSFAGQQYNYSATVAIIMGVITAAIAYVVQLRGSRKEDRPGPT0016535_5051DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_056892136bgaACOG1874Beta-galactosidase BgaAATGGACCCACGCCCCGCGCCCTCGCTCCCGACCGGAGCGCTGTTCGGCGTCGCCTACTACCCCGAGTACCACCAGCGCGACCGGATGATCGAGGACCTCGACCTCATGGTGCAGGCGTCGATCACCGTGATCCGCGTCGGCGAGTCCGTCTGGTCCACCTGGGAGCCGGAGGACGGCCGCTTCGAGCTCGAGTGGCTGGCCCCGGTGCTGGACGCCGCGCACGAGCGGGGGATCGCCGTCGTCCTCGGGACCCCGACCTACGCGGTCCCGCCGTGGCTGCAGACGGCTCACCCCGAGATCGCGGGGGAGCGCCGCACCGGCGAGCCCATCCCGTGGGGCGCCCGGCAGGAGGTCGACTACACCAACCCGACGTTCCGCCACTACGCCGAGCGGATCGTCCGCCGCATCACCGCGCGGTACGCCGACCACCCGGCCGTGATCGGCTACCAGGTGGACAACGAGCCGGGCCTGGAGCTCTTCCACAACCACAGCGTGTTCACGCGGTTCGTCCGGTCGCTCAAGCGGCAGTACGGCGACGTCGAGACGCTCAACCGCGAGTGGGGACTGACCTACTGGTCGCACCGCCTCGCGGACTGGAGCGAGCTGTGGCGGCCCGACGGCAACTCGTTCCCCCAGTACGACCTGGCGTGGCGACGGTTCCAGGCCGAGCAGACCTCGGAGTTCATCGCCTGGCAGGCGCACATCGTCCGCGAGTACGCCCGGCCCGAGCAGTTCGTCACCACGTGCCTGCAGTACCCGCGCCGGGGCCTCGACGACCGCGGGCTCTTCACCTCGCTCGACGTCACCGCCGGCAACCCGTACTACGGGATGCAGGACCGGCTCGACGCCTCGGTGGAGAAGTCCCCGCCGAACTACTGGACCACCACCGGTGTCGCCGGGCTCTTCCGGCAGGCCGACCGGCTCTACTCCTCCCAGCAGGACCGCTACCTCGTCACCGAGACCAACGCCCAGGCCATCGACGACGCGTCGACCAACTTCCCGCCCTACCCGGGCCAGCTCAAGCAGGCCGCGATGGCGTTCGTCTCCCGCGGTGCCGCGATGATCGAGTACTGGCACTGGCACACGCTGCCCTACGGGGCCGAGACCTACTGGGGCGGCGTGCTCCCGCACAGCCTCGTCCCCGGGCGCGTCTACGACGAGGTGTCCGAGATCGGCGCCGAGCTGCGCGAGATCTCGCCGCTGCTCGACGGCTACGAGCCGGACGCCGACGTCGCGGTGCTGTGGTCGAACCCGAGCCGGTACGCGCTGCAGTACATGCCGCCCTTCACGATCGGCGGCACGCCGGACGACGAGTCGTTCGAGCACGTCTTCGACGCCTTCCACGCCGCCGTCGTCGAGACCGGCCGCCAGGCCCGGGTGCTGCACCTGGAGCAGGCCCTCGAGCGCGGCGCGGCCGAGATGGCGCGCCGGTTCCCCGTGCTGGTCGCCGCCGGCCTGTACGTCACGACCGACGCCGAGCTGGCCTTCCTGCGCGAGTACGCCGAGCACGGCGGCCACCTCGTGCTCGGCGTGCGCACCGGGTACGCCGACGACGAGGCCCGGGCCCGGGTCGACGTCGCCCCGCCGGGGCTCGCGGCCGCCGCCGGCGCCTCCTACGAGGAGTTCTCGAACCTGGAGGACGAGGTCACCGTCATCGGGTCCGACGAGCTCCCCCTCCCGCTCGCGGCGATCGGCCGGTACTGGGTCGAGTGCCTGCGGCCCGACGGCGCGACGACGCTCGCGACGTACGCGCACCCCCGGTTCGGCGACTTCGCCGCCGTGACCACCCACGAGCACGGCGCCGGCCGCGTGACGACGGTGGGCTGCGTGCCCGGCCGCGACCTGGCACGCGCCGTCGTCGAGCTCGTCGACCCGCGACCGGACGACGGCGCCACGACCGCGACGCTGCCGGTCACCGTCGCGTCGGGAACGGTGCGGGACGGGCGGCGGGTCCGATTCGCCTTCAACTGGAGCTGGGACCGGACCGCCGTCGTGCTCGACGAGGACGTCGTCGAACCGGTCGGCGGCACGCGCTACCCGGCCGGCAAGGAGCTGGACCTCGAGCCGTGGGGCTGCCGGGTCTTCGTCTCCGACGGTCCCTCCGACCAGCCGCACCACCCGGGAGACGTCCGATGAMDPRPAPSLPTGALFGVAYYPEYHQRDRMIEDLDLMVQASITVIRVGESVWSTWEPEDGRFELEWLAPVLDAAHERGIAVVLGTPTYAVPPWLQTAHPEIAGERRTGEPIPWGARQEVDYTNPTFRHYAERIVRRITARYADHPAVIGYQVDNEPGLELFHNHSVFTRFVRSLKRQYGDVETLNREWGLTYWSHRLADWSELWRPDGNSFPQYDLAWRRFQAEQTSEFIAWQAHIVREYARPEQFVTTCLQYPRRGLDDRGLFTSLDVTAGNPYYGMQDRLDASVEKSPPNYWTTTGVAGLFRQADRLYSSQQDRYLVTETNAQAIDDASTNFPPYPGQLKQAAMAFVSRGAAMIEYWHWHTLPYGAETYWGGVLPHSLVPGRVYDEVSEIGAELREISPLLDGYEPDADVAVLWSNPSRYALQYMPPFTIGGTPDDESFEHVFDAFHAAVVETGRQARVLHLEQALERGAAEMARRFPVLVAAGLYVTTDAELAFLREYAEHGGHLVLGVRTGYADDEARARVDVAPPGLAAAAGASYEEFSNLEDEVTVIGSDELPLPLAAIGRYWVECLRPDGATTLATYAHPRFGDFAAVTTHEHGAGRVTTVGCVPGRDLARAVVELVDPRPDDGATTATLPVTVASGTVRDGRRVRFAFNWSWDRTAVVLDEDVVEPVGGTRYPAGKELDLEPWGCRVFVSDGPSDQPHHPGDVRPGPT0017815_438DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
AK018_056901113lacI_4COG1609Lactose operon repressorATGGACCCGCACACGACGGTGGACGACGCTCCGACCGGCGACGACGTCGGCGGCGAGCTGCCCGGACGCCCACGGCGGCCCGCGCTGTCGACCCTGCAGCGGGCCTCCGCGCCAGGCAGCGACAAGCCCCCCACGATCTACGACGTCGCCAAGGCGGCCGGCGTCTCGCACCAGACGGTGACCCGCTACCTGCGCGGGTACGAGGGCATCCGTCCCGCGACCCGGGACCGCGTGGTCGCGGCGCTGGAAGAGCTCGACTACCGGCCCAACCTCACGGCGCGGTCCCTGACGACGGGCCGCTCCCACCGCATCGGCGCCCTCACCCACGAGATCGACAAGCACGGGCCGAGCAACATCGCCCAGGGTGCCGCCGCCGCGGCCCGCCGAGCGGGCTACGTGCTGGACATCTTCACGCTCGACATGAGCGATCCGCGCTCGATCCGGGACACGCTCAAGATGCTCCGGCAGCACGACCTCGCCGGCATCCTGGCGCTGACCTCGACCGACGCGATGACGCGCGCCATCGAGGCGGCGAAGTTCACCGTCCCCGTCTACCTCGGCGGCGAGCCCGACGAGACCCCCACCGAGCACTCCGAGCTCACCGGGATCGGCTTCCCCGCCCTCGTCGACCACCTGGCCGGGCTGGGCCACCGGACGTTCCTGCACATCGCCGGCCCCGCCACCTGGCCGGCCGCGCGCAACCGCACCCAGGCCTACGAGGAAGCGGTCGCCGCCCGGGGGCTGCGGTCCGCCGGCGTCCTGCCCGGGGACTGGACCGCGCGATCCGGGCACGACGCCGTCGCCGCCCTCGGCGAGGATCTCGGCGCGACCGCCATCGTGGCGGCCAACGACCAGATGGCGCTGGGCGCGATGCTCGCCCTGCGGCGACGGGGCCTCTCCGTCCCCGGCGACGTCAGCGTCACCGGCGTCGACGACATCCCCGACGCCGCCTACTTCGCCCCGCCCCTGACCACGCTCCGCGTCGACTTCGCGGCCCAGGGCCGCAACATCGTCGACGGGCTCCTGGCCCAGATCGACGGCCGGCCCCCCGTGCGGTCCATCACCCCGCACTCCGAGCTCGTGGTCCGGGAGTCCACGGGACCCGCACGGTAGMDPHTTVDDAPTGDDVGGELPGRPRRPALSTLQRASAPGSDKPPTIYDVAKAAGVSHQTVTRYLRGYEGIRPATRDRVVAALEELDYRPNLTARSLTTGRSHRIGALTHEIDKHGPSNIAQGAAAAARRAGYVLDIFTLDMSDPRSIRDTLKMLRQHDLAGILALTSTDAMTRAIEAAKFTVPVYLGGEPDETPTEHSELTGIGFPALVDHLAGLGHRTFLHIAGPATWPAARNRTQAYEEAVAARGLRSAGVLPGDWTARSGHDAVAALGEDLGATAIVAANDQMALGAMLALRRRGLSVPGDVSVTGVDDIPDAAYFAPPLTTLRVDFAAQGRNIVDGLLAQIDGRPPVRSITPHSELVVRESTGPARPGPT0017992_8402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_05691987hypothetical proteinATGTCCACCGTCCTGGTCACCGGAGCCTCCGGCTTCATCGCCAAGCACGTCCTGCGCGAGCTGCTCGACGCCGGGCACACCGTCCGCGCCGGCGTCCGGTCGGAGCGTCGGCGCGCCCAGGTCGAGGCGCTCTTCCCCGGCGCCGGGATCGAGTTCGTCGAGCTGGACCTCACCTCCGACGACGGCTGGGACGAGGCCCTGGCCGGGGTCGACGTCCTGATCCACACCGCCTCCCCCTTCCCGGCCGCCCCGCCCCGTGACCCTCAGGACCTCATCCGGCCCGCGGTGGGCGGGACCCTGCGCGCCCTGCGCGCCGCCCGCGCCGCCGGAGTGCACCGCGTGGTGCTGACCTCGACGTGCGGGGCGATCTACAAGCCCGCCGACCATCAGTGGTCGCGGCGCAAGACCCGGGAGGACTGGACCGAGGCCGACGGCCCGAAGACGTCGGCGTACGAGGCGTCCAAGACGCTCGCCGAGCAGGCGGCGTGGCGGTTCGTCGACGAGCACCCGGAGATGCGACTGACCGTGATCAACCCCGGCATGGTGTTCGGGCCCGCGATGGACGAGCACTACGGGTCCTCCCTGGAGACCGTCGAGCAGCTCGTCAGCGGCGCGATGCCGCTGCTCCCGCGGATGAGCATGCCCGTCGTCGACGTCCGCGACGTGGCGCGCATCCACGTCCGGGCGATGGCCGACGACGGCACCGTCGGGCAGCGGTTCCCGGCGAACGCCGGTGTGCTGTCGATCCCCGAGATGGCGGAGGTGCTCCGCGAGGCCTATCCGGACGCGAAGATCGCCCGCCGCGTCGCCCCGGACTGGCTGATCCGCGGCCTGTCCCGCGTGGTGCCGCTGATGCGGACCGCGGCCCAGGGCCTCGGCCTCAACCCCGACGTGGACGGCTCCGACGCCCCGCGCGAGCTCGGCGTCGAGTACATCCCTCCGCGCGACGCCCTGCTGGCCGCGGCCGCCTCCGTGCGGCGTCCGTGAMSTVLVTGASGFIAKHVLRELLDAGHTVRAGVRSERRRAQVEALFPGAGIEFVELDLTSDDGWDEALAGVDVLIHTASPFPAAPPRDPQDLIRPAVGGTLRALRAARAAGVHRVVLTSTCGAIYKPADHQWSRRKTREDWTEADGPKTSAYEASKTLAEQAAWRFVDEHPEMRLTVINPGMVFGPAMDEHYGSSLETVEQLVSGAMPLLPRMSMPVVDVRDVARIHVRAMADDGTVGQRFPANAGVLSIPEMAEVLREAYPDAKIARRVAPDWLIRGLSRVVPLMRTAAQGLGLNPDVDGSDAPRELGVEYIPPRDALLAAAASVRRPNANANANANA
AK018_05693945hypothetical proteinATGAGGCACGCCCGCGACACGCCTCTGCCCCGCGCCACCACCTCCACCGCGACCCGGACCTCGCCCCGCGGCCCGGGTCGGCACGTCGCCTCGTCCGCGGACCGACGACGCCGCACCGGACCGACCTGGTCCTCCCTCGCCCCCACGAGCTGGCCGCTGAGCATCGGCATCGGGATCGCCGTCACGATGGCCACCACGACGGGCATGGCGGTGGCGGACGGGACCCCGCAGCCGGTGCGCTCGGCCGCGCCGGACACCGCACCGTCCGGGATCCGCGCCACCCCGGACACCCCGCCGGACGCCGCCGAGACGAAGCGGGACACCGCCGCCGTCGTGGCCGCCGCCCGCCAGGCCGTGCTGGTCGACCGGGAGCAGGGCGCGTCCCGCAGCGGCGCCCGGACCGCGCGCACGGCGGCGCAGGCCGCCGGCGGCGTCGTCGTCCCGAGCGACGCCACGATGTCCGGCGAGACGGTGTCGCTCGACGTCGAGTCCGCTCCCGAGCCCCCGGTCCTGCCGGGGTGCGACGGCTACGCCACCGGGGCCGGGTCCAACGGCTACATCTCTTCCACCGAGATGTGCACCCTGTGGGACGGCAAGACCCTGGTCCGCGCCGACGCGGCCGTGGCCCTCGCCCGGCTGAACGAGTCCTACCGCGCGACCTTCGGCGAGAACATGTGCATCACCGACGGCTACCGCAGCTACGCCCTGCAGGTCTCGACCCGCGCGGCGAAGGGCTCCCTGGCGGCCCCTCCCGGCACGTCGAACCACGGCTGGGGTCTGGCCGTGGACATCTGCCCGGACTCGTATGCGGGCAGCCGCTACGACTGGCTCCGGGCCAACGCCCCGACCTACGGCTGGGACAACCCGGCCTGGGCACGACCCGGTGGCTCGAAGTACGAGCCGTGGCACTGGGAGTTCACTGCCGCCGTCGCGCAGATGAACTGAMRHARDTPLPRATTSTATRTSPRGPGRHVASSADRRRRTGPTWSSLAPTSWPLSIGIGIAVTMATTTGMAVADGTPQPVRSAAPDTAPSGIRATPDTPPDAAETKRDTAAVVAAARQAVLVDREQGASRSGARTARTAAQAAGGVVVPSDATMSGETVSLDVESAPEPPVLPGCDGYATGAGSNGYISSTEMCTLWDGKTLVRADAAVALARLNESYRATFGENMCITDGYRSYALQVSTRAAKGSLAAPPGTSNHGWGLAVDICPDSYAGSRYDWLRANAPTYGWDNPAWARPGGSKYEPWHWEFTAAVAQMNPGPT0024055_314DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_056941533sucPCOG0366Sucrose phosphorylaseATGGCCAGGCAGGACCAGGTCCAGCTCATCGCCTATGCCGACCGGCTCGGCGGTGACCTGCGCCGGCTCACCGACTTCCTGCGGCGTGACGAGGTCGCCGGAGCGTTCGGCGGCGTGCACGTGCTGCCGTTCTACACGCCGTTCGACGGCGCGGACGCGGGCTTCGACCCGATCGACCACACCGCCGTCGACCCGCGGCTGGGCACGTGGGACGACGTGCGCGAGCTGGCCCGCACGCACGACGTGATGGTCGACCTCATCGTCAACCACGTGTCCGCCGACTCGGCCGCGTTCCGCGACGTCGTCGCCCGCGGGGACGCCTCGCCGTGGGCGCCGATGTTCCTGACGATGTCGTCGGTGTTCCCCGACGGCGCGCGGGAGGAGGAGCTCGCCCGCATCTACCGGCCCCGGCCCGGGCTGCCCTTCACGGCGATCCGTCTCGGGGACCGGCTGCGGTACGTGTGGACGACGTTCACGCCCCAGCAGATCGACGTCGACGTCTCCTCGGCCCTCGGGCGCGAGTACCTGACCTCGATCCTGGACGCCGCGGCCGGCGCGGGCGTCCGGCTCGTCCGCCTCGACGCCGTCGGCTACGCGGTCAAGACGCCGGGCACCACGTGCTTCATGACGCCCGAGACGTTCGACTTCATCGCGGACTTCGCCGGGCAGGCGCGCCAGCGCGGTGTCGACCTGCTGGTCGAGGTGCACTCGTACTACCGGCGTCAGGTCGAGATCGCTCGCGAGGTCGACCTCGTCTACGACTTCGCCCTGCCGCCGCTGGTGCTGCACGCCCTGTACACGGGCGACGGCACGGCGCTGGTGGACTGGTTGCGCGAGCGTCCGCGCAACGCGGTCACGGTGCTCGACACCCACGACGGCATCGGGGTGATCGACGTCGGACCGGACCAGACGGTCGCCCCGGGCGAGGCCGAGCGGCCGGGGCTCCTCACGCCCGAGCAGATCGACGCGCTCGTCGAGGGCATCCACGAGCGCACCGGCGGCGCCTCGGCGCGTGCGACCGGGGCCGCGGCGTCGAACCTCGACCTGTACCAGGTGAACTCGACGTTCTACGACGCGCTCGGCCGCGACGACGCCCGCTACCTCGCCGCGCGGGCGATCCAGCTCTTCACGCCGGGCATCGCGCAGGTCTACTACGTCGGGCTGCTCGCGGGGGAGAACGACGTCGAGCTGCTGGAACGCACCGGCGTGGGACGGGACGTCAACCGGCACCACTACACGTCCGCCGAGGTCGACGCCGCCCTGGCCACCCCGCTGGTCCAGCGCCTGCTCGCGCTGTGCCGCTTCCGCAGCACCTTCCCCGCGTTCGACGGCGACGTGGACACCGCCCTCGACGGGTCCCGCCTCACCCTGGAGCGCCGTGGCGCCGAGGTGCCCGACGCCGTCGCTCGTCTCGAGGTGGACCTGGTCTCCGGCGCGGGGTCGCTGCGCTGGTCCCACGGGGAGGGCGCCGAGGCCACGATCGACCTCGGCGGCTTCGCGCCCGAGGAGCTCGCGGGTCGCGAGGGCCGGTGAMARQDQVQLIAYADRLGGDLRRLTDFLRRDEVAGAFGGVHVLPFYTPFDGADAGFDPIDHTAVDPRLGTWDDVRELARTHDVMVDLIVNHVSADSAAFRDVVARGDASPWAPMFLTMSSVFPDGAREEELARIYRPRPGLPFTAIRLGDRLRYVWTTFTPQQIDVDVSSALGREYLTSILDAAAGAGVRLVRLDAVGYAVKTPGTTCFMTPETFDFIADFAGQARQRGVDLLVEVHSYYRRQVEIAREVDLVYDFALPPLVLHALYTGDGTALVDWLRERPRNAVTVLDTHDGIGVIDVGPDQTVAPGEAERPGLLTPEQIDALVEGIHERTGGASARATGAAASNLDLYQVNSTFYDALGRDDARYLAARAIQLFTPGIAQVYYVGLLAGENDVELLERTGVGRDVNRHHYTSAEVDAALATPLVQRLLALCRFRSTFPAFDGDVDTALDGSRLTLERRGAEVPDAVARLEVDLVSGAGSLRWSHGEGAEATIDLGGFAPEELAGREGRPGPT0014210_233DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SUCROSE_METABOLSIM,PGPT0014210-gtfA|ycjM-K00690NANA
AK018_05695219hypothetical proteinATGAACTGCTTCGAATGTGCCACCGAGCAGCAGACCACGACGCCCGCGGTGACCGTGTGCTCACAGTGCGGAGCCGCCTCGTGCACCCGGCACACCCGGGTCGCGCACGCGCACGAAGAGGTGGAGTACTCCCCCGGCGCCCCGAGCGAGACCGACCTCGGCCGGCGGATGTTCTGCACGACCTGCGCACCCCGGACGGCGAAGACGGTCGCGGCCTGAMNCFECATEQQTTTPAVTVCSQCGAASCTRHTRVAHAHEEVEYSPGAPSETDLGRRMFCTTCAPRTAKTVAANANANANANA
AK018_056961389hypothetical proteinATGAACCAGCACATCGGTGTCGCGATCTCCGGCGGGGGGCACCGCGCGACGGTCTGGGGCCTCGGCACGCTGCTCTACCTGGTCGACAGCGGGAAGAACCGCGAGGTGTCGGCGATCTCCTCGGTGTCCGGCGGGTCGATCACCAACGGCGTCGTGGCGCAGGAGACCGACTTCCCCACCACGGATCCGGATGCGTTCGACCGCGCCGTCGGTCGCCTGGTACGTCACGTCGCTACCACCGGGCTCTTCTTCTGGGGCCGGCCGACCAACGCCTACGTGGTGTCGGTGTTCGTCGGGGCGGGCCTCGCCGTCGGCTCCCTGCTCACCGGTGCCGTCCTCGCTTTCGTCGACGGGCTCTCGTGGCGGTCCGGGCTCACGCTCCTGGCCGGGATCGTCCTCGCCGTGGTCACGGCGCGCCGGTTCGAGCACCGCTCGCACGTCGTCGACCGCGCCCTGAGCCGGACCCATTTCGAGCGCGACGGAGAACCGACCCTGCTCGCGGACGTCGCGCGGTCCGTCGACCACGTCGTGTGTGCGACGGAGCTGCACTCGGCCGAGCATCTCTATCTGACACCCCGGTTCCTGTACTCCTCCGGGCTGGGGACGGGTTCGCCGGCGGACTTGAGGCTGTCCACCGCCGTCCAGGCCTCCCTGGGCATGCCCGGGGTGTTCACCCCGCGGCGGCTGAGGACGGCGCCGCACGTGTTCCAGGGCGGGACCACGGAGGGCAGGGACGCCCGGGACTTCCTGCTCACCGACGGCGGCGTGTTCGACAACCTGGCGGACCGGTGGATCGACCGTCTCGACGCCCGGCTGGAGCGCGAGCCGGACCTGCCCGTCGTCGGCCGCCACATCGACGAGGTCATCGTCGCCAACGCCACGACGGCGTTGAACTGGCGGCGGCTGCGCTACGCCCGGCGCTTCGTCCTCGGCGAGCTGGAGACCCTGCAGCGGGCGACCGGCGTGATGTACCAGATCCCGACCGAACGCCATCAGGACGTCCTGGTGCGCAGGTGGGTCGAGTGCGAACGCACTGGCGACGGCCAGCGGGGCGCGATCATCCAGATCCAGCAGTCCCCGTACCGGATCGCCGACGCCTTCCTCGAGTCCGACGACCCGGACCGGGCTCGACGGGCGCGCCAGGTGCTCGACCTCCTCGGCGACGACGCCGACTCCCGCCGGGCGTGGCAGGACCGGGCGCAGTCCGACGCCGCGGTCCCCACCGTGCTGCGCCGGCTCGGGAGCCGCGCCACCGTGGACCTGCTGGAACACGCGTACGTCCTGACGATGTGCAACCTGCACGTCCTGCACGGGTACCCGCTGCTCGAGCTGCCGGGACGTGAGCGGTTCGAGCGTCTCCTCGAGGAGGAGCGGGCGTCGGCAGGCTAGMNQHIGVAISGGGHRATVWGLGTLLYLVDSGKNREVSAISSVSGGSITNGVVAQETDFPTTDPDAFDRAVGRLVRHVATTGLFFWGRPTNAYVVSVFVGAGLAVGSLLTGAVLAFVDGLSWRSGLTLLAGIVLAVVTARRFEHRSHVVDRALSRTHFERDGEPTLLADVARSVDHVVCATELHSAEHLYLTPRFLYSSGLGTGSPADLRLSTAVQASLGMPGVFTPRRLRTAPHVFQGGTTEGRDARDFLLTDGGVFDNLADRWIDRLDARLEREPDLPVVGRHIDEVIVANATTALNWRRLRYARRFVLGELETLQRATGVMYQIPTERHQDVLVRRWVECERTGDGQRGAIIQIQQSPYRIADAFLESDDPDRARRARQVLDLLGDDADSRRAWQDRAQSDAAVPTVLRRLGSRATVDLLEHAYVLTMCNLHVLHGYPLLELPGRERFERLLEEERASAGNANANANANA
AK018_056971653treS_4COG0366Trehalose synthase/amylase TreSATGACAGCGGCAGAGTCCGGACGACGCAGCGACGACCCGACCGGCGCGCCACCCGGATGGCTGGCCGACGCCGTCGTCTACGAGATCTATCCGCAGTCCTTCGCCGACTCGGACGGTGACGGGATCGGGGACCTGCCGGGCGTCATCGACCACCTCGACCACCTGGAGTGGCTCGGGGTGGACGTCATCTGGTTCAACCCGTGCTTCGCCTCGCCGTTCCGGGACGCGGGCTACGACGTCGTCGACTACCTGAGCATCGCGCCGCGGTACGGGACGAACGAGGACATGGTCGAGCTCGTCGAGCAGGCTCGCCGGCGCGGTATCCGGGTGCTGCTCGACCTCGTCGCGGGGCACACGTCGATCGACCACCCGTGGTTCGTCCAGGCCCTGGCCGACCCGGCCGACGACCGGTACATCTGGGCCGACCGCGACGGGCCGGCGCTCGTCCCGTCGCCCGGGCCGCGTCCGGGCTGGTTCCTGAAGAACTTCTTCGACTCCCAGCCGGCGCTGAACTTCGGCTACGCCCGGCCGCATCCCGACGAGCCGTGGCGGCAGGCGACCGACGCCCCGGGGCCGACGCGCAACCGCGAAGCCCTGCAGGAGATCATCGGGTTCTGGCTGGACCGCGGGGTGGCCGGCTTCCGGGTGGACCTGGCCTTCTCGCTCGTGAAGGACGACCCCGACCTCGAGGCGACCACCGCGCTGTGGCGCGAGATCGCGGGCTGGATGCACGCGCGGTACCCGGACGCGGTGCTGCTGCCGGAGGCCGACGACGACAACACCGCCGACGCCGGGCTGCGCGGCGGGTTCGACGCGGACTTCGCGCTCGTCATCCAACGCGAGCACAGCGCGCTGTTCAACAACGGCGCCACCGGCTACCTGACGTGGCAGGACCCGGCGGTGGCCGAACCCTGCTACTTCGACCCCGACGTCGACGTGGCGGACGGCACCCGCGCGCTCGAGACCTTCCTGACCGAGTGGGACGTGCGGGAGCGCGCGGCGGGTGCGGACCGGCTGGTCGTCCTGCCGACCGCGGACCACGACTTCTCCCGGCTCGCCGCGGGACCGCGCACCGGCGACCAGCTGCGCCCCGCCTTCACGTTCCTGCTGACCTGGGGATCGCTGCCGTCGATCTACTACGGCGACGAGATCGGGATGCGCAACCTGCCCGAGGCGCCGGAGACGGAGGGGAGCCGCTGGAACCCGGGCTACGACCGCGCGGGCTGCCGCACCCCGATGCAGTGGGACGACGCGCTGGCGAACAGCGGCTTCTCGACGGCACCGGCCGAGCGGCTCTACCTCCCGCAGGACCCGGACCCGGGCCGTCCGACGGTCGCCGCCCAGCGGGACGACCCGGGGTCGCTCCTGCACCACGTGCGTGACCTCGTGGACCTCCGCCGGCGCACCCCGGCCCTGCGCACCGGCGGGCCGCGCACCGTGCTGCACGTCGGGTACCCGTTCGTCTACCGGCGCGGCGAGAAGCACCTCGTCGTCGTCAACCCGCGTCGCGAGGCGGCCCGGGCCACGATCCCGGCGCTCGCGGGCGCGACCGCGACGACGCTCCTCGGTGACGGGGTCGAGGTCACCGACGGCGTGGTGCAGGTGGTCGGCGGAGGCCACGCGGTGCTCGCCCTGACGGGACCCGGGAGCTGAMTAAESGRRSDDPTGAPPGWLADAVVYEIYPQSFADSDGDGIGDLPGVIDHLDHLEWLGVDVIWFNPCFASPFRDAGYDVVDYLSIAPRYGTNEDMVELVEQARRRGIRVLLDLVAGHTSIDHPWFVQALADPADDRYIWADRDGPALVPSPGPRPGWFLKNFFDSQPALNFGYARPHPDEPWRQATDAPGPTRNREALQEIIGFWLDRGVAGFRVDLAFSLVKDDPDLEATTALWREIAGWMHARYPDAVLLPEADDDNTADAGLRGGFDADFALVIQREHSALFNNGATGYLTWQDPAVAEPCYFDPDVDVADGTRALETFLTEWDVRERAAGADRLVVLPTADHDFSRLAAGPRTGDQLRPAFTFLLTWGSLPSIYYGDEIGMRNLPEAPETEGSRWNPGYDRAGCRTPMQWDDALANSGFSTAPAERLYLPQDPDPGRPTVAAQRDDPGSLLHHVRDLVDLRRRTPALRTGGPRTVLHVGYPFVYRRGEKHLVVVNPRREAARATIPALAGATATTLLGDGVEVTDGVVQVVGGGHAVLALTGPGSPGPT0018560_3294DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_056981029hypothetical proteinGTGACCCGACGCTCCGGCCGTCCGAGCTCCCTGTGGCGAGGGGTGCGGCAATGGGTCGACCCGTTCGTCGTCGCCATCGTCCTCGCCCTCCTGATCGGCGTCGTCGTCCCCGTCCCGGACGACGTGCGCGGCGTGCTCGACGTCGTCACGGACGTCGCGATCGCCCTGCTGTTCCTGCTCTACGGCGCGCGGCTGCCGACGCGGGAGATCTGGCGGTCGCTGACCAACTGGCGCCTCCAGGGTTCCCTCCTCGTTGCGACGTTCATCGCGTTCCCGCTCGCCGGGCTCGCCCTCTCCGCGGCCGTCGGCCCGCTCGTCGGCCAGGGGATCGCCGTCGGGCTGCTCTGCGTCTCGCTCCTCCCGTCCACGGTGAACTCCGCCGTCGCGTTCACGTCCGTGGCCCGCGGCGACGTCGCCGGCGCGATCTGCGGGGCCACCGTGTCGAACGTCGTCGGCATGGTCGCCACTCCCCTGCTGGTGCTCGGTCTGATGAGCGGGGCGGTCGCCGGTGACGGGGCCGTCGGGGTGGACGGTCTGCAGACGGTCCTGCTGCAGCTCCTCGCGCCGCTCGTGCTCGGCCAGCTCCTGCAGCCCTGGGTGGGCGGGCTCGTGCGGCGGCACAAGGCCGTCACCACGGCCGTGGACCGCGGGACGATCCTGCTCATCGTGTTCACGGCCATCAGCGGCGCGACCGCCGAGGGTATCTGGGCGGACATGACCGTGTGGGTCGTGCTCGTGCTGGTCGGGTCGGCCGGGGTGCTGCTGGGCGTCATGCTGGCCGCCACCTGGTGGGGTGGCCGCGCGCTGGGGCTGCCGCGCGACCAGCGGGTCACCCTGCTGCTCGTCGGAGGGATGAAGTCGCTGGCCACCGGCCTGCCGATGGCCTCGGCGCTGCTGCCCGCCGCCACGCTCGCCGTCGTCGTCGTGCCGCTGGTCGTCTTCCACCAGCTCCAGCTCGTGGTGTGCTCCGTGCTGGCCCGCCGGCTCGGGCAGGAGCCGGTGGCGGCCGAGGCGGGGCAGGGCTCCTGAMTRRSGRPSSLWRGVRQWVDPFVVAIVLALLIGVVVPVPDDVRGVLDVVTDVAIALLFLLYGARLPTREIWRSLTNWRLQGSLLVATFIAFPLAGLALSAAVGPLVGQGIAVGLLCVSLLPSTVNSAVAFTSVARGDVAGAICGATVSNVVGMVATPLLVLGLMSGAVAGDGAVGVDGLQTVLLQLLAPLVLGQLLQPWVGGLVRRHKAVTTAVDRGTILLIVFTAISGATAEGIWADMTVWVVLVLVGSAGVLLGVMLAATWWGGRALGLPRDQRVTLLLVGGMKSLATGLPMASALLPAATLAVVVVPLVVFHQLQLVVCSVLARRLGQEPVAAEAGQGSNANANANANA
AK018_056991632stp_6Multidrug resistance protein StpATGACCCAGACCACCGCTGCGCACGAGACCCAGGAACGGGCCTCGTGGGTCCCCATGATCGGCCTGTTCCTCGCTCAGGTGCTGATGTCGTTCAACGTCGCGGCGCTGCCGATCTCGATCGGTGGCATGGTCGACGAGTTCGGCGTGCCGCCGACCGTCGTGAGCTCGACGATCGTCACCTACGGCCTCGCGGTGGCGGCGCTCGTGATGACGGGCGCCAAGCTCGGCCAGCGGATCGGCTGGGTCGTGGTGTTCCGGGTCGTCATCGCGACGTTCGCCGGCTCCGCCCTGATGATGATCTTCTCGCCGACGGTCGGCTGGGCGATCGCCGGGCAGGCCGTCGCCGGGGCATCGGCCGCGATCATCGTGCCGTCCCTGGTGGCGCTCGTCGCGGAGAACTACCACGGGCCCCAGCAGGCGACGGCGATCGGGTCCCTCGGCTCCGCCCGCGCGATCTCCGGCGTGAGCGCGTTCTTCATCGGGGGGACCCTGGGCACGCTCGTGGGATGGCGCCCGGTGTTCGGCCTCGTGCTGGGCCTGGCGGTGGTGGTCTTCCTGCTCAGCTTCCGGCTGCGGTCCGACGCCGGCGACCCCGGCATCCGGATCGACCTGGTGGCCGCGGTCCTCATCGGCGCCGCGATCGTGTCGTTGACGCTCGGGTTCAACAACCTCAACGCGTGGGGCCTGTTCTACGCCCGGGACGGTGCGCCGTTCGACCTCCTGGGTCTCTCGCCCGCGCCCCTGCTCGTCGTGCTCGGCGTGGTGCTCGGCCAGGTGTTCTTCGGGTGGACCCGACGCCGCATGGCGGACGGCAAGGTCCCGCTCGTCGACCTGAGCGTGCTGGGCCGCGCCAGCGAGCGGGCCGCGGTGTACGCGATGTTCATCGTCGTCGCGCTCGAGGCGGCCCTGAACTTCACCGTCCCGCTGTACATCCAGATCGTGCAGGGGCGGACCCCGTTCGACACGGCGTTGGCGATGATGCCGTTCAACCTGACCGTCTTCGTCACGGCCACGCTCATCGTGCGCTTCTACCGGCGCTACCCGCCCCGCACGATCGGCGTGTTCGGGTTCGTCCTGACCACCGTCGCCCTCGGGTGGCTGGCCTTCGTGGTGACGAACAACTGGGAGACGCTCCCCACGATCCTCGGGCTGTTCGTCTTCGGCGTCGGTCAGGGGGCCCTGGTCACGCTCGTGTTCAACGTCCTGGTGACCGCCGCGCCCAAGCGACTGGCCGGCGACGTCGGCTCGATCCGCGGGACGACGCAGAACCTGGCCTCGGCGGTCGGTACCGCTCTCGCCGGTGCCCTGCTGGTCACGGTCCTCAGCGTGGGGGTGGGACGTGCCGTCGTCGACCACCCCGAGCTGCCGCCGGAGCTGGTGGCCCAGGTGGACCTCGACAACGTCAACTTCGTCAGCAACGACGACCTGCGCGAGGTCCTCGCCGGCACCGACGCGGACGACCAGCAGGTCGAGGCCGCCGTGGCGCTCAACGAGGAGGCGCGGCTCGACACGTTGCGCATCGGGCTGCTGATCCTGGCAGGTCTCAGCGCGACGGCCATCCTGCCGGCCAGCCGGTTGCCCCGGTACCGGCCCGACGAGATCCCCGACCCCCGGCCGGCCCCGACGTCGTGAMTQTTAAHETQERASWVPMIGLFLAQVLMSFNVAALPISIGGMVDEFGVPPTVVSSTIVTYGLAVAALVMTGAKLGQRIGWVVVFRVVIATFAGSALMMIFSPTVGWAIAGQAVAGASAAIIVPSLVALVAENYHGPQQATAIGSLGSARAISGVSAFFIGGTLGTLVGWRPVFGLVLGLAVVVFLLSFRLRSDAGDPGIRIDLVAAVLIGAAIVSLTLGFNNLNAWGLFYARDGAPFDLLGLSPAPLLVVLGVVLGQVFFGWTRRRMADGKVPLVDLSVLGRASERAAVYAMFIVVALEAALNFTVPLYIQIVQGRTPFDTALAMMPFNLTVFVTATLIVRFYRRYPPRTIGVFGFVLTTVALGWLAFVVTNNWETLPTILGLFVFGVGQGALVTLVFNVLVTAAPKRLAGDVGSIRGTTQNLASAVGTALAGALLVTVLSVGVGRAVVDHPELPPELVAQVDLDNVNFVSNDDLREVLAGTDADDQQVEAAVALNEEARLDTLRIGLLILAGLSATAILPASRLPRYRPDEIPDPRPAPTSNANANANANA
AK018_057001035glsA1_2COG2066Glutaminase 1GTGGATCTCGACGTGACGGATGTCGAGCAGCAGGTATCGACGGGCGTACTGCCCGCGCGGAGCAGGATCGACGAGCTGGTCGACGACGCGCACGCGCGCTACCGGGACCTCGAGGACGGTCGGGTGGCCGACTACATCCCGGTGCTCGCCGGCGTCGACCCGCGTCTCTTCGGCCTGTGCGTCGCCGAGGTGGGCGGCGGCCTCCACGGTGCGGGCGACGCGGGGGTGGAGTTCTCGGTCCAGTCGATCTCGAAGGCGTTCGTCTACGCCCTGGTGTGCGAGGCCTTCGGCCACGAGGGTGTGCTGGACCGGGTCGGCGTCAACAACACCGGGTTGCCCTTCAACTCGGTGATGGCGCTCGAGCTCAACGACGGTCACCCGATGAACCCCATGGTCAACGCCGGCGCGATCGCCACGACGGCCCTGGTCCCCGGGACGACGCCGGCCGAGCAGTGGGAGAACGTGCGCACCGGCCTGTCCCGGTTCGCCGGCCGGCAGCTCGAGCTCGACCGCGAGGTCTACCGCTCGGAGTCCGAGACGAACGCGCGCAACAAGGCGATCGCGCGGTTGCTCCAGAGCTACGGACGGATCGACGTCGACCCCCTCGACGCGGTGGACGTCTACACGCGCCAGTGCGCGCTGCGGGTCAGCGCCCAGGACCTCGCCGTCATGGGCGCCACGCTGGCCGACGGCGGCGTCAACCCGCTGACGGGCGAACGGGTGGTCTCGGCGCAGGTGTGCCGGGACACGCTGGCGGTGCTGGCGTCGACCGGCATGTACGAGCGGTCCGGCGAGTGGTTGTTCGAGATCGGCCTGCCCGCGAAGTCGGGCGTCGCGGGCGGCATCGTCGCGGTCGCGCCGGGCAAGGGCGCGATCGGCACGTTCTCCCCGCCCCTGGACCCGGCGGGGAACAGCGTGCGGGGTCAGCGCGCCGTCGCCCACCTGTCGCGCAGCCTGGGCCTGAACGTCTTCGCCTCGTCCGTCCACGTCCCCGAACGTGCCGAACCCCTCGAACGGCAGGTGCCCCTCGCATGAMDLDVTDVEQQVSTGVLPARSRIDELVDDAHARYRDLEDGRVADYIPVLAGVDPRLFGLCVAEVGGGLHGAGDAGVEFSVQSISKAFVYALVCEAFGHEGVLDRVGVNNTGLPFNSVMALELNDGHPMNPMVNAGAIATTALVPGTTPAEQWENVRTGLSRFAGRQLELDREVYRSESETNARNKAIARLLQSYGRIDVDPLDAVDVYTRQCALRVSAQDLAVMGATLADGGVNPLTGERVVSAQVCRDTLAVLASTGMYERSGEWLFEIGLPAKSGVAGGIVAVAPGKGAIGTFSPPLDPAGNSVRGQRAVAHLSRSLGLNVFASSVHVPERAEPLERQVPLAPGPT0020215_944DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0020215-glsA-K01425NANA
AK018_05701759hypothetical proteinGTGACCGATGCACCCGTGGTGCTGATCTCTCCCGCGATGGGCATCGGTTCTCGCTACTACCGGCCCGTGGTCGCGGCGTTCGAGGACGCCGGGTGGGAGGCGCGCGCCCTGACACGTCGCGGCTTCGAGGACCCGACGATCACGGCCGCCCGCGGCCGGGACTGGAGCTACCGGGACGAGATCGACGACATCGCGGCCGCCGTCGTCGCGGCACGCCGCGAGCGCCCGGACCGCCCCGTGCTGCTGCTCGGCCACAGCCTCGGCGCCCAGCTCGCGGCGGGCTACCTGCTGACCGGTGGCGCGGTGGACGGGCTGATCACCGTCGCGGGGGCCCTCCCCGACCACCGCCACTTCCCGTACGGCGGTCTGCACCTCGTGCTCATGGGTGGCGTCATCGTGCCGGCGCTCACGGCCGTCTTCGGCTACCTGCCCAAACCCGCGTTCGGCGGTCCCGGCGCCCGCACCCTCATGCGCGAGTGGGCGGCGATGGCCCGCAACGGGCGGCCGCCCTTCCCGACCGCGCCACCCATCGGGACGCCGTCGTTCGTCGTCAGCCTCGAGGGCGACACGCTGGCACCCCGCCGGGCGGTCGAGGCGTTCGCCCGGGACCTGTTCGACCCCGAGGTCGTCACCCGCTGGGACTACGCCGACCGCGAGGTGCCCGCCGGAGCGAGCAACGACCACATCCGGTGGGTCCGCTCCCCCGAGCGGGTGGTCTCCGCCGCGGTGCAGTGGTGGTCGGGCCGTCCGCGCCACTGAMTDAPVVLISPAMGIGSRYYRPVVAAFEDAGWEARALTRRGFEDPTITAARGRDWSYRDEIDDIAAAVVAARRERPDRPVLLLGHSLGAQLAAGYLLTGGAVDGLITVAGALPDHRHFPYGGLHLVLMGGVIVPALTAVFGYLPKPAFGGPGARTLMREWAAMARNGRPPFPTAPPIGTPSFVVSLEGDTLAPRRAVEAFARDLFDPEVVTRWDYADREVPAGASNDHIRWVRSPERVVSAAVQWWSGRPRHNANANANANA
AK018_057021044mccFMicrocin C7 self-immunity protein MccFATGGATCTCGTCTCGCCCCGCAAGGCTTCCCCCGGTGACCAGGTCGCCGTCGTCTCGCCGTCGTTCGCCGCGCCCGGGTTCGCCCCCGCGGTGCACGAGCAGGCGATGCACCGCCTGCAGGAGCTCACGGGCCTGGTCCCCGTCGAGTACCCGACCACCCGACGTCTCGGTGCGACGCCGCAGGACCGTGCCGCGGACCTCAACGCGGCCTTCGCGGACCCCGAGATCCGCGCCGTGCTGGCCACGATCGGCGGCGAGGACCAGATCACCGTGATCCCCCACCTCGACGCCGAGCTCGTGCGCGCGGACCCGAAGCCGTTCCTCGGGTACAGCGACAACACGAACCTGCTGAGCTGGTTGTGGACGCACGGCGTCGCGGGCTTCTACGGCGGGTCGACCCAGGTGCACGTCGGGCCCGGGCCCTCCGTCGACCCGGTGCACGCCGCCTCGCTGCGCGCCGCGCTGCTCACCGGCGAGCGCCTGGTGATCACCGAGCCCGGCGAGTCCGAGGACTTCGGCATCGACTGGCAGGACCCGGCGGCGCTCACCGCGCACGGCCACCGCGAGCGCACCGAGCCGTGGACGTGGGCCGGACCCGAGCGGTCCGTCACGGGCCGCACCTGGGGAGGCTGCCTCGACGTGCTGTCCTGGATCCTCACCGCGGGCCGTTTCCCGGCCGACCCGGGGGTCCTCGACGGCGGGGTGCTGCTGCTCGAGACCTCCGAGGAGCTCCCGCCGGCCCGCGAGGTCGGCTGGATCGTGCGGTCGCTCGGCGAGCGCGGCCTTCTCGAGGCTGTGGACGCCGTCGTCGTCGCCCGCCCGCCGACGTCGTCGTTCGAGGTGGAGCGCACGACGGCGGAGCGCGCCGCCCAGCGTGCCGAGCAGCGCGACGTCGTCGTCGAGACCGTGCAGCGCTACCACCCCGACGCCGTGATCGTCGTCGGAGTGCCGTTCGGCCACACCCGGCCGCAGTGGATCCTGCCCTACGGGGGCGTGCTCACGGTCGACGGTGCGCGGCAGCGGGTCTGGGCGGAGTACGCCTGAMDLVSPRKASPGDQVAVVSPSFAAPGFAPAVHEQAMHRLQELTGLVPVEYPTTRRLGATPQDRAADLNAAFADPEIRAVLATIGGEDQITVIPHLDAELVRADPKPFLGYSDNTNLLSWLWTHGVAGFYGGSTQVHVGPGPSVDPVHAASLRAALLTGERLVITEPGESEDFGIDWQDPAALTAHGHRERTEPWTWAGPERSVTGRTWGGCLDVLSWILTAGRFPADPGVLDGGVLLLETSEELPPAREVGWIVRSLGERGLLEAVDAVVVARPPTSSFEVERTTAERAAQRAEQRDVVVETVQRYHPDAVIVVGVPFGHTRPQWILPYGGVLTVDGARQRVWAEYANANANANANA
AK018_057031176COG0628Putative transport proteinATGGGACTCTTCGGCCGTCGTGCGCGACGCATCGACCGCAGCCCGGCTCAGGTGACGCGGGTCGAGTCGCGGCCGCCCCGTGATCCCGAGCCGAGCGGAGCCTCGAAGCTGTGGTCCGACGGCGTGGGCCGGGTCGCGACACGCTCGCTGCAGGTCCTCGCGGTGATCGCCGTCGTCGCCGTCCTCGCCTTCGCCGGCACGCGCCTGACCCTCGTCGTGATCCCGCTCCTCATCGCGCTGGTCCTGGCGGCGGCGATCTCGCCGCTGGTGTCCTGGCTGCGCCGCCGCGGGGTGCAGTCGATCCTCGCGACCTGGCTCGCGCTCCTCGCGCTGATCGCCATCCTGGCCGCCGTCCTGTGGCTGGTGGTGCGGGCCGTCGTCGACCAGTGGGACGAGCTGCAGCAGCAGGCGCTCGACGGCTTCGACTCCCTGCAGTCCTACGTCCAGGACCTGCCGTTCCAGATCTCGGAGGAGCAGATCAGCTCCGTGCGCGACTCCGCGCTGAACTTCCTGCAGTCCAGCGCGGTGGGGTCCGGTGCGCTCCAGGGCGTGTCGCAGACCGCGGACTTCGTCGCCGGCTTCTTCATCATGGTGGTCGTGCTGTTCTTCTTCCTGAAGGACGGCCCGGCCATGTGGGAGTTCCTCCTGCGCCCGTTCGACGGCGAGGCGTACCAGCGCGGCCGCCGGGTCGGGACGGCGACCATTCAGACACTCGGCAACTACGTCCGCGGGACGGCGATCGTGGCGGCGGCCGACGCCGTCGGTATCGGGATCGGCCTCGCGATCGTGGGCGTGCCCCTGGCGCTCCCGCTGTCGGTCCTGGTCTTCCTGCTCGCCTTCATCCCCCTCGTCGGTGCCACCCTGGCGGGCATCCTCGCCGCGCTGGTCGCGCTGGTCGCCGTGGGTCCGGTCGAGGCGCTGATCGTCGTCGCGATCGTCGTCGGTGTGAACCAGCTCGAGGGCAACTTCCTCCAGCCGATCGTCATGGGCCGGACCCTGCAGCTGCACCCGCTGGCCATCCTCTTCGCCCTGACGGCCGGCACGGTGCTCGTCGGCATCACCGGCGCCGTGCTCGCCGTGCCGATCGCCGCGTCGATCTGGCGGGCGATCCAGGTGTGGGACGGGCCGAACCTGCCGGCGAAGTTCGCGCGCCAGAAGCGGTCCGAGACGGTCTGAMGLFGRRARRIDRSPAQVTRVESRPPRDPEPSGASKLWSDGVGRVATRSLQVLAVIAVVAVLAFAGTRLTLVVIPLLIALVLAAAISPLVSWLRRRGVQSILATWLALLALIAILAAVLWLVVRAVVDQWDELQQQALDGFDSLQSYVQDLPFQISEEQISSVRDSALNFLQSSAVGSGALQGVSQTADFVAGFFIMVVVLFFFLKDGPAMWEFLLRPFDGEAYQRGRRVGTATIQTLGNYVRGTAIVAAADAVGIGIGLAIVGVPLALPLSVLVFLLAFIPLVGATLAGILAALVALVAVGPVEALIVVAIVVGVNQLEGNFLQPIVMGRTLQLHPLAILFALTAGTVLVGITGAVLAVPIAASIWRAIQVWDGPNLPAKFARQKRSETVNANANANANA
AK018_05704861hypothetical proteinATGTCGTTCCGCTCGCTGTTGTCCGCCGTCATCGCCTGCGTGCTCGCAGCCACGATCGGTCTCGTCGTCCCCACGGTCACCGCCGCACCTGCCGAGGCCGCCGGCGACAAGGTCTCCGCACGCAAGCTGCTGCGGCAGCTACCGGTACGGTCCGAGACGAACAAGGGCTACGACCGGTCGAAGTTCCGCCACTGGATCGACACCGGCGACAAGGACGTGTGCGACACGCGCGAGGAGGTCCTCATCGCCGAGGCCGTCCGCACGCCCCGCGTCCGCGCGTCGACCTGCGCGATCTCCGGCGGGAAGTGGCGCTCGAAGTACGACCGGCGTACCACGACGAACCCGTCGACGTTCGACATCGACCATCTCGTGCCGCTCAAGGAGGCCTGGGCCTCCGGGGCGAAGAAGTGGACCAAGAACACGCGCAAGCGGTTCGCCAACGACCTGCGCTACAAGCACTCCCTCATCGCGGTGTCCGCGTCGTCCAACCGGTCCAAGGGCTCCCGCGAACCGCACCAGTGGATGCCCCCGAACAGCTCCTACCGCTGCGTCTACGTCAAGCAGTGGATCGCCGTGAAGTGGCGCTGGAAGATGAGCGTCAACACGAAGGAGAAGCGCTACCTCAACGCGCGGCTGGACAAGTGCAAGAGCGTCCAGGTCCTCAAGCCCACCCGCGCCACGGTCAAGCTCCGGTCGACCAGCACGAGCTCGGGGTCGACCGACCAGCGCAGCGCCCCCTGGAACCAGCCCGGACCCGACCTGGACTGCTCCGACATCCGCAAGAAGGTCCGCGTCTACCCGCCCGACTATCACCGCCTCGACGCCGACGGTGACGGCTGGGGCTGCGAGTCGTACGGCTGAMSFRSLLSAVIACVLAATIGLVVPTVTAAPAEAAGDKVSARKLLRQLPVRSETNKGYDRSKFRHWIDTGDKDVCDTREEVLIAEAVRTPRVRASTCAISGGKWRSKYDRRTTTNPSTFDIDHLVPLKEAWASGAKKWTKNTRKRFANDLRYKHSLIAVSASSNRSKGSREPHQWMPPNSSYRCVYVKQWIAVKWRWKMSVNTKEKRYLNARLDKCKSVQVLKPTRATVKLRSTSTSSGSTDQRSAPWNQPGPDLDCSDIRKKVRVYPPDYHRLDADGDGWGCESYGNANANANANA
AK018_05705486hypothetical proteinGTGGTCACCTCCCGCGGCATCGTCCAGCATGGCGGGATGCGTCCGGATGACGACCTCGAGGAACGTCTCGACCGGCTGGAGTCGACCCAGGCTCTCCACCGCGTGGTCGCGGAGTACGCCCACGGAGCGGACAACCGTGACCTCTCCCGCTTCCTGGCGACGTTCCATCCCGACGGCGCGTGGGACGTCGGCGTAGCCCGCTTCGTCGGCCACGACCAGATCCGGGCCGCCATCGAGCACCAGTGGGACGCGCAGCCGCAGATGCACCACTGGACCAGCAACACCTCCATCACCCTGACCGGGCGGGACGCGGCCGAGGGCGTCTCCAGCGTCGCGGCGTTGACGCGACGGGCCGACGGACGGTGGCTCCTCTCGGCGGGCAGCTACCTGGACTCCTTCGAGCGGCGTGCCGGCAGCTGGGCGATCGCGACGCGCCGTGCCGTCGTGCACTCGAGCGTCGACCTCGCCACAGACGAAACAAGCTAGMVTSRGIVQHGGMRPDDDLEERLDRLESTQALHRVVAEYAHGADNRDLSRFLATFHPDGAWDVGVARFVGHDQIRAAIEHQWDAQPQMHHWTSNTSITLTGRDAAEGVSSVAALTRRADGRWLLSAGSYLDSFERRAGSWAIATRRAVVHSSVDLATDETSNANANANANA
AK018_05706315hypothetical proteinGTGTTGCGACCACCGGTTGAGCCCGGGCAGTACACGTCCTGGATCTTCGGCCACCGGCTGCGCGCCGCCGGCCTCCTGGGATCGATGGGTCGGGTGGCGTCCAGCGTGGACAACTCGATGATCGAGTCGTTCTGGTCCTCGATGCAGCGAGAGCTCCTGGACCGCCAGCAGTGGCACACACGCGCCGAGCTCGCCTCGGCGATCTTCGAGTGGATAGAGGGCTTCTACAACCCCGTGCGTCGTCACTCCGGACTCGGCTACCGCAGCCCCATCGAGTTCGAGGGCCTTCACACCGCCGCCCCAGGCGCGGCATGAMLRPPVEPGQYTSWIFGHRLRAAGLLGSMGRVASSVDNSMIESFWSSMQRELLDRQQWHTRAELASAIFEWIEGFYNPVRRHSGLGYRSPIEFEGLHTAAPGAANANANANANA
AK018_057071398COG2826IS30 family transposase ISPa37GTGGGACGACCGTCGAGATGGGTGACGGAGGTGGCCAAGCGGGGGCCGATGCGGTCTCCGGGACATCCGGGCCATCAGCGCGCGGTGGAGCGCGCGTTCTGGGATGAGGTCGCGATGGGGAAGCTGCCGCGGGAGGCCGCCGAAGCCGTGGGCGTGGCGCAGGCCGTGGGGCAGCGGTGGTTCCGCCACGCTGGCGGGATGACGCCATACTCCTGGCCTGCCCCGTCGGGCCGGTACCTGTCGTTCGCAGAGCGAGAGGAGATCGCGATCCTCAACGCGCTCGGCAAGGGCGTTCGCGAGATCGCCGGCGCGCTCGGGCGGAGCCCGTCAACGATCTCGAGGGAGCTGCGCCGCAACGCGGCAACCCGCAGCGGCAAGGTCGAGTACCGGGCGTCGGTGGCGCAGTGGAAGGCGGAGCTGTACGCCCGCCGACCCAAGGCCGCAAAGCTCGCGACGAACCCCGAGCTACGGAAGTACGTCGAGGAACGCCTCGCCGGTCAGATCCGCCTGCCGAACGGTGAGATCGTGCCCGGTCCGACAGAGCGGGAGTGGAAGGGGCTGAACAAGCCGCACCGTCAGGATCGCCGGTGGGTCAACGCGTGGAGCCCCGAGCAGATCTCACACCGGCTCAAGATCGACCACCCCGATGATGAGTCCATGCGGATCAGCCACGAGGCGATCTACCAGGCCCTGTTCATCGAGGCCAGGGGCGCGCTCAAGCGCGAACTCATCCTCTGCCTGCGCACCGGTCGGGCGCTGCGCATGCCTCGCGCCCGCTCCAAGCGAGTGGCCTGGGCGCACGTCACCCCCGACGTCCTGATCAGCGAGAGGCCCGCAGAGGCAGACGACCGGGCCGTTCCAGGTCATCACGAGGGCGATCTGATCATCGGGATCAACAGGTCAGCGATCGGGACCGTCGTCGAGCGCACCACGGGCTTCACGACGCTCGTCCATCTACCGCGAGAGGTCGGGTGGCGCGAGCAGCCCCTCGTCAAGAACGGGGTCGCGCTCTCGGGCTACGGCGCCATCTCGATGAACAAGGCGCTGGCGGCGGCGCTGGCATCGATGCCTGAGGATCTGAAGCGGTCACTGACCTGGGACCGCGGCAAGGAGATGTCGGCCCACGCGCAGTTCACCATCGACACCGGCCTGAAGGTCTACTTCGCCGACCCCCGCAGCCCTTGGCAGCGCGGGACGAACGAGAACACCAACGGGCTGCTGCGCCAGTACTTCCCCAAGGGCACCGACCTCGCCCGGTGGAGACCGGATGACCTCCAGGCCGTCGCTCACGCTCTGAACACCCGCCCCCGCAAGAGACTCGGCTGGCGCACCCCCGCCGAAGCCTGGAACGAGCACCTACTATCCCTGGAACAGCAACGTGTTGCGACGACCAGTTGAMGRPSRWVTEVAKRGPMRSPGHPGHQRAVERAFWDEVAMGKLPREAAEAVGVAQAVGQRWFRHAGGMTPYSWPAPSGRYLSFAEREEIAILNALGKGVREIAGALGRSPSTISRELRRNAATRSGKVEYRASVAQWKAELYARRPKAAKLATNPELRKYVEERLAGQIRLPNGEIVPGPTEREWKGLNKPHRQDRRWVNAWSPEQISHRLKIDHPDDESMRISHEAIYQALFIEARGALKRELILCLRTGRALRMPRARSKRVAWAHVTPDVLISERPAEADDRAVPGHHEGDLIIGINRSAIGTVVERTTGFTTLVHLPREVGWREQPLVKNGVALSGYGAISMNKALAAALASMPEDLKRSLTWDRGKEMSAHAQFTIDTGLKVYFADPRSPWQRGTNENTNGLLRQYFPKGTDLARWRPDDLQAVAHALNTRPRKRLGWRTPAEAWNEHLLSLEQQRVATTSPGPT0030610_46DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030610-IS30_family-K07482NANA
AK018_05708324IS3 family transposase ISMyma3ATGGCACGTCCCTCGAAGTACCCGCCGGAGCTGCGTGAGCGAGCGGTGCGGATGGTCGCTGAGGTGCGACCGAACTACGGCTCGGAGTACGAAGCGATCCGTGCGGTCGCGACCAGGCTCGGGGTCACTAGCGCGGAGTCGGTGCGCAAGTGGGTGCGCCAGGCCCAGGTCGACTCGGGTCAGCGGCCCGGGGTCAGCACCGAGGAGTCCGCAGAGCTCAAGCGGCTGCGGCGCGAGAACGCCGAGCTGCGCCGGGCGAACGAGATCCTCAAGGCGGCGTCGGCTTTCTTTGCGGCCGAGCTCGACCGGCCCTCGACGAGATAGMARPSKYPPELRERAVRMVAEVRPNYGSEYEAIRAVATRLGVTSAESVRKWVRQAQVDSGQRPGVSTEESAELKRLRRENAELRRANEILKAASAFFAAELDRPSTRNANANANANA
AK018_05709954hypothetical proteinGTGGCGACTCAAAGACGAGTAGTTGTCCCACTAGTTCTGGCCGCCTTCGCGGTCGTCTCCCTTGGCTTCGTGCCAGCCTTCAGCCAGAGTGCTGCCGTGTTCTGGATCGGTGGCTTCGTCCTGATGTTGCTCACTCTCTTCGTCGCCTTCCGCGCCGAAAAGGGCTCGTCCGAGAGCCCCAGAAAGTCGACGCGCATGGTCTCTGCCGTGGCCATAGCCGTGGCCGCAGCGGTCCTCGCGGTTGGGACGGTTCAGGCTGTGAACAGCGCGCCCGCGCCCAGCGCAGATGCCTTCAACGTGGATGTGCAGAGCGATGCGATGGCCGTCACCTCGATCTCGCGCGATCATGTCACGCCTGATCTCAGCAACGAGAACGTTGAGAGAATCGCAGAAGAGGCATATAGCCTCAACAGCGTCGCAACCCCGATCAAAGGTGCGCGCGCGGATCAATGGATCGATGCCGCTCGAAGCTCGGGCTACGAGCCAAAGAGTGGGCTGGTGGCCGACTACAGCAATGCATCCGTAACTGACTATGGAGGTACGACCGCTGTAGTCATACCACTTGCGGGGACAGACCTACCCGAGGTCACTCAGGTGACGTTCCTTCAGACTGGCGACGAGAGCTCAATCAACGAAATCGCAGCATCGATGATTGATGCGGATCATGTTGATCTGAAGATCTGGGAGAACGGCGCGCAGACAACGAACACAGTACTTGCAAACCCGAACGCCGAGACCAGCGATGGCGGCGGAATCGTGCAGACGGGCGTCGACTGGGGCGAGCTGAACAACTGCCTGAACAGCATCGGCATTAGCTGGGCGGTCCTCGCAGTGATCTCGGTGGCCTGTGCCGCTGCCTGTGCCGCTGTTGTGGCCTGCGGACTTTGCATTGCCGCGATGGCGGGCTGGACTGGCGGATCGATCGGCGCTTGCGTCGAAAGAGCATGGGTCTAGMATQRRVVVPLVLAAFAVVSLGFVPAFSQSAAVFWIGGFVLMLLTLFVAFRAEKGSSESPRKSTRMVSAVAIAVAAAVLAVGTVQAVNSAPAPSADAFNVDVQSDAMAVTSISRDHVTPDLSNENVERIAEEAYSLNSVATPIKGARADQWIDAARSSGYEPKSGLVADYSNASVTDYGGTTAVVIPLAGTDLPEVTQVTFLQTGDESSINEIAASMIDADHVDLKIWENGAQTTNTVLANPNAETSDGGGIVQTGVDWGELNNCLNSIGISWAVLAVISVACAAACAAVVACGLCIAAMAGWTGGSIGACVERAWVNANANANANA
AK018_057101614hypothetical proteinATGTCGGCGACCGCGCATGATCCGGAGCATCAGACGCGCCCTGGGATCCACGTTTCCGACGGCCGGATCCTCGAGGCGGACGGGTCCGACCTCGTCCTGCGGGGAGTCAACCACGCACACACGTGGTACCCGACGGAGACCGGGGCGTTCGCTGACATCAAGGCGACCGGGGCCAACGCGGTGCGCGTGGTCCTCTCAAGCGGGGATCAGTGGGAGCGGAACGACCCCGAGGATGTCGCGAGGGTGGTCCACGAGTGCGACGTCCAGCGGCTCGTGTGCCTGCTGGAAGTGCACGACACGACCGGCTATGGCGACGAGTATGCGCCAGACGCCGTTTCCCTCGACCGCGCCGTCGACTACTGGGAGGACCTGTACCCGGTCCTTCAGGGCACGCAGGACCGCGTCATGATCAACCTCGGAAACGAGCCGATCGGCAACGGCGACATCGTCGAGGAGTGGGCGTCCGCGACATCGGACGCGATTCAGCGGCTCCGCGAGATCGGCTACGAGCACGCGCTGGTCGCCGACGCGCCGAACTGGGGGCAGGACTGGAGCGGGACCATGCGGTCCCAGGCCGATCAGGTGCTCGACGCCGACCCGGAGGCGAATACCGTCTTCTCGGTGCACATGTACGAGGTGTACGGCGAGGCGCAGACCGTGACCGACTACCTGGAGGCGTTCGTCGCCGCCGGACTGCCGGTGATGGTCGGAGAGTTTGGGCCGGCACACTACGGCAACGAGGTGGACGAGGACACGATCCTGGCCGAGACGCGCCGCCTCGGGCTGGGTTGGTTCGGCTGGTCGTGGAGCGGCAACAGCGGCGGAGTGGAGGACCTGGACCTCGTCCAGGACTTCGATGCCGACCGTCCGAGCCCCTGGGGCGAACGGCTGTTCGACGGGCCGGACGGTATCGCCGAGACATCGCAAGAGGCCTCGGTCTTCGCCGGGCGCGTCGATGGGTGCACAGCGCAGCTCGAGATCCTCTACCAGTGGCCGGGCGGATATCAGGGGCAGGTCCGACTCGAGGTCGGTGAGGCGGCTGCCTCGTCGTGGTCGACGTCGTGGCGCGTGCCGGCGGGCAGCGCGCTCGTCCAGACCTGGCACGGCGCCCTGTCGATCGACGACGGCGTCGCTACGGTCGCGGCGGAATCGTGGAACGCGTCGGTACCGTCGGGCGGGTCGGTCGTCTACGGCTTCTCGAGCCGAGGCGAAGCTCCTGCCCTGCCGCCAGCCGTGGAGTCCCCCGCACGCTGTGGCGCGGGGCGCGCAAGACGCGGGGCGATATCGCCCGCGGGCCGGCGGCACACTGGGGCCGGCCGTCGTGCGTCGTGTCGTAGGAGCCACTTTCGATCATCAACTCGGGGAGGCTGCGGGCCGGCGAGTCCTCGACTGTGTGAGTTCTCGGGTGGAGGGCGGGCCGCTAGCCGCGGCAATCCGTTGGCCAGGCACGATGCAACCTACCTTGCGCACCCACCGCGACACGCCCGAGATCGCGCAAAGTGCAGCGGCGTGTCCGCGCAATCTGCGTTGCACGTCGACAGGTTTGTCGACGTGCAACCGACCCTTCAGACACTTACAGATTTGATTCATAATCAAATCCGAACGATGAGTTAAMSATAHDPEHQTRPGIHVSDGRILEADGSDLVLRGVNHAHTWYPTETGAFADIKATGANAVRVVLSSGDQWERNDPEDVARVVHECDVQRLVCLLEVHDTTGYGDEYAPDAVSLDRAVDYWEDLYPVLQGTQDRVMINLGNEPIGNGDIVEEWASATSDAIQRLREIGYEHALVADAPNWGQDWSGTMRSQADQVLDADPEANTVFSVHMYEVYGEAQTVTDYLEAFVAAGLPVMVGEFGPAHYGNEVDEDTILAETRRLGLGWFGWSWSGNSGGVEDLDLVQDFDADRPSPWGERLFDGPDGIAETSQEASVFAGRVDGCTAQLEILYQWPGGYQGQVRLEVGEAAASSWSTSWRVPAGSALVQTWHGALSIDDGVATVAAESWNASVPSGGSVVYGFSSRGEAPALPPAVESPARCGAGRARRGAISPAGRRHTGAGRRASCRRSHFRSSTRGGCGPASPRLCEFSGGGRAASRGNPLARHDATYLAHPPRHARDRAKCSGVSAQSALHVDRFVDVQPTLQTLTDLIHNQIRTMSPGPT0018725_471DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-MANNOSIDASE,PGPT0018725-manA-K01218NANA
AK018_05711216hypothetical proteinATGCTGAAGACCGTGTTGCTGTCAGCGGCGGCCACCATCTCGGCGCTGTCGCGCATGGTGAACGACCAGTCCTGTCCCCAGTTCGGCGCGTCAGCGACGAGCGTGTGGGTCAGCCCGGCTGCCCGAACGGTGCTGATCGCGGCGATGGTGTCCGCCGCCCAGCTCTCGTACCCGGTGTTGCCGAACGGCTCGTTGCCGAGGTTGATCATCACGTAGMLKTVLLSAAATISALSRMVNDQSCPQFGASATSVWVSPAARTVLIAAMVSAAQLSYPVLPNGSLPRLIITNANANANANA
AK018_057121893RBKSRibokinaseATGAACCGGGGCACGACGGGACACGTGCTCGTGGTCGGCGAGGCACTCGTGGACGTGGTCCCCGACGCAAACGGGCCGCGGGACCTGCCCGGCGGCAGCCCCGCCAACGTCGCCGTGACGATGGCCCGGCTTGGACAAGACGTCCGCCTGGCCACCACCCTCGGCGACGACGAGCGCGGCGCGCTCGTCCGACGTTGGCTCGAGGACGACGGCGTACACGTGGACGCCACGTCCCCAGCCGTAGGGCACACGTCATCCGCCGTCGTCACACTCGCGACGGACGGCTCAGCGAACTACCGCTTCGACCTTTCGTGGGACCTCGGCCGCGTGGACGTGGCCGGAGCCGACGTACTGCACGTCGGCTCCGTCGCGACCGTCCTCGGCGTCGGTGCGGACGCCGTGCGCGACGCCGTGCGGCGTGCCCGCGCGCACGCAGTGGTGAGCCTCGACCCCAACGCCCGCCCCGCTCTCACGCCCGACCCCGGCACGGTGCTGGACCGGGTCGAGGAACTGGTCGCACTGGCCGACGTCGTCAAGGCCAGCGACGAGGACCTCGCCTGGTACCACCCCGGCGAGGACCCGCTCGACGTCGCCCGCCGGTGGGCGACCTGGGGGGCGGGCCTGGTCGTCGTCACCCGGGGCGGCTCAGGCGCCACCCTGGTGCGGGCCGACGGCACCGCGCTCGACGTGCCCGGTCGCAGCGTGCCGGTGGCCGACACCGTGGGCGCCGGCGACACCTTCTCCGGCGCGCTGCTCGACGCGCTTGCCACCATGGGCGTGCGCGGTCCCGAGGGACGAGCCCGACTTCGCCGGCTGTCCGACGCCGCGGTGCGGCGTGCGGCCCAAGTGGCCGCCGCGGCTGCCTCCGTGACGGTCTCGCGCCCCGGGGCAGATCCGCCGTCCCGCGCCGAGCTCGCCGCAGCGCTTGGTCCGGTGCGCCCCGAACCCTTCGAGGGCGCACCCGTGGCGGGGATGACCTGGGGCTGGACCGGGGTGCGAGGCACCTGGACCGGGCCGCAGGCCGAGCGTTCCATGGGCGAGCTCGCCGCCATCGACACCGTGAACTGGGTGGCGATCGCCTATGCCACCGAGCAGGCCACCGCGATCTCCACCGAGGTTCCCCTCGACGCCCCGCCCGTCGTGACCGACGACGAGGTGCGCACCGCCGTCCGAGCGGCCCACGCACGAGGCTGGAAGGTCTGCCTCAAGCCCGTGGTGAACGTCGCCGACGGGACATGGCGCGCGCACATCGGGTTCTTCGACGACGACGTGCCGGGCGAGCCGACCTGGTCCGAGTGGTTCGCGTCGTACAGCGCCTTCGTCCTGCACCACGCCCGCATCGCTGCGGAGGAGGGCGCGGAGATGTTCTGCGTCGGCTGCGAAATGGTGCGCGCCGACGCCCGGGAGGACGACTGGCGCGACCTGGTCCGCCGGGTCCGCGAGGTCTACCCCGGGCTGGTCACCTACAACTGCGACAAGTACCAGGAAGACAGGGTTACCTGGTGGGACGCCGTCGACGTTATCGGCTCCTCCGGGTACTACCCGGCCGGGACCTGGGAAGATCACCTGGACCGGATCGAAGCGGTCGTCGCGCGCGAGGACAAGCCGTTCGTCTTCCTCGAGGCGGGCTGCCCGAGCCGAGTCGGTTCCGCAGCACGTCCGAACGACTGGAACCTTGTGGGCGCCCCCTCGGGGAAGGAACAGGCCGGCTACCTTGCCGAGATGTTCGCCGCGTGCGCCACCCGCCCGTGGGTGTCCGGGTTCTTCCTGTGGGACTGGCCGGCCGAACTGTACGGCCTGGAGGACGCCTCGGCGAACGACGACTACTGCGTCTACGGCAAGCCCGGCGCGGCGGTCGTCCGGGCGGCGTTCGAGAGGCTTCGCCCGGAGTGAMNRGTTGHVLVVGEALVDVVPDANGPRDLPGGSPANVAVTMARLGQDVRLATTLGDDERGALVRRWLEDDGVHVDATSPAVGHTSSAVVTLATDGSANYRFDLSWDLGRVDVAGADVLHVGSVATVLGVGADAVRDAVRRARAHAVVSLDPNARPALTPDPGTVLDRVEELVALADVVKASDEDLAWYHPGEDPLDVARRWATWGAGLVVVTRGGSGATLVRADGTALDVPGRSVPVADTVGAGDTFSGALLDALATMGVRGPEGRARLRRLSDAAVRRAAQVAAAAASVTVSRPGADPPSRAELAAALGPVRPEPFEGAPVAGMTWGWTGVRGTWTGPQAERSMGELAAIDTVNWVAIAYATEQATAISTEVPLDAPPVVTDDEVRTAVRAAHARGWKVCLKPVVNVADGTWRAHIGFFDDDVPGEPTWSEWFASYSAFVLHHARIAAEEGAEMFCVGCEMVRADAREDDWRDLVRRVREVYPGLVTYNCDKYQEDRVTWWDAVDVIGSSGYYPAGTWEDHLDRIEAVVAREDKPFVFLEAGCPSRVGSAARPNDWNLVGAPSGKEQAGYLAEMFAACATRPWVSGFFLWDWPAELYGLEDASANDDYCVYGKPGAAVVRAAFERLRPENANANANANA
AK018_057131248yihS_4COG2942Sulfoquinovose isomeraseATGACGGCGACGCCCTGGACGTCCCTGCCCACACACCGCGCGTGGCTCGACGCCGAGCTCCGACGACTGCTCGCCTTCGGCGCCGACGTCGTGCACCCCGGTGGCGGCGCCGCGTACCTCGACGAGGACGGGCACCCGGACCTCTCTCGGCCCGTGCACACGTGGATCACCGCACGCACCGTGCACGTGTACTCCCTCGGCGCCCTGCTAGGGGTGCCCGGCAGCGCCGCCGTCGCGCGGGGTGCGCTGGCAGGCCTGACCGGCCGGCTGCGCGATCCCGAGCACGGCGGCTGGTTCCACGCCGTGGACGCGGCTGGTTCGCCCGACGTCGCAGCGGGCAAATCGTGCTACGACCACGCCTTCGTGGTGCTCGCTGCGTCGAGTGCCGCCGTCGCTGGGCTGCCCGGCGGTCGTGAGCTGCTGGACGAGGCGGCCGCCGTCCTGCTCGACCGGTTCTGGGACGACGACGCCGGGCGCTGCGTGGACCGCTGGGACCATGCCTGGGAGCAGCTCGACCCGTACCGCGGGCTCAACGCGAACATGCACGCCGTCGAAGCGATGCTCGCCGCGGCCGATGCGCTCGGCGGGGGCGACGGCGACCGGTGGCGCGAACGGGCGGCGCGGGTGGCGAGCTTCGTGACGGAGCTCGCCGGAGCCCACGACGACCGCCTGCCCGAGCACTTCGACGCCGCCTGGGGCGCGGTGCCGGACCTCAACCGCGACCGACCGGACGACCAGTTCAAGCCCTTCGGCGCCACACCGGGGCACGGCTTCGAATGGGCACGCCTGCTCGTCCAGCTCGACGCCGCGCTCCGCGACGGCGCCCCCGTCGGCCTGGTCCCGGCCGCGGTGCAGCTCTTCGACCGCGCCGCCGCGGACTCCTGGGCAGTCGACGGGGCCGACGGGTTCGTCTACACCACCGACTGGGACGGGGAACCCGTGGTCCGCGACCGCATGCACTGGGTCGCGGCGGAGGCAGTGGCGGCCGCCGACGCGCTCCACCGTGCCACCGGCGAGCCAAGGTTCGCCGAGCGGTACGGGCCGTGGTGGGACTTCGTCGCCACGCACCTCATCGACTCGGAGCGGGGTTCGTGGCACCACCAGCTCGACTCGACGAACCACCCCGACGGTGGCGTCTGGCCAGGCAAGCCGGACCTGTACCACGCCGTGCAGGCGACGCTGCTCCCGCGCGCGCCGCTGGCTCCCACGCTGGCACGGGCCGCGGCCGACGGATCGGTCACCGCATGAMTATPWTSLPTHRAWLDAELRRLLAFGADVVHPGGGAAYLDEDGHPDLSRPVHTWITARTVHVYSLGALLGVPGSAAVARGALAGLTGRLRDPEHGGWFHAVDAAGSPDVAAGKSCYDHAFVVLAASSAAVAGLPGGRELLDEAAAVLLDRFWDDDAGRCVDRWDHAWEQLDPYRGLNANMHAVEAMLAAADALGGGDGDRWRERAARVASFVTELAGAHDDRLPEHFDAAWGAVPDLNRDRPDDQFKPFGATPGHGFEWARLLVQLDAALRDGAPVGLVPAAVQLFDRAAADSWAVDGADGFVYTTDWDGEPVVRDRMHWVAAEAVAAADALHRATGEPRFAERYGPWWDFVATHLIDSERGSWHHQLDSTNHPDGGVWPGKPDLYHAVQATLLPRAPLAPTLARAAADGSVTANANANANANA
AK018_057142562csxAExo-beta-D-glucosaminidaseGTGACCCACCCGACGTCCGTCCGCACCCGCCACGACCTGCACGACGGCTGGACGCTGTCCGCGGCCGGCGGCCCGGTGCCCGCGGGCGCGTCCGTGCAGGACGTGCCGGCGACCGTCCCGGGCTCAGTACACACCGACCTGCTCGCCGCGGGCCTGATCCCCGACCCGTACCTGGACGACAACGAGGCGCTGCTGAAGTGGATCGGGGCGTGCGACTGGGAGTACCGCACCACGTTCGCGTGGTCGCCCGACGGTCACGACCGCTACGACCTCGTCTTCGACGGCCTGGACACCGTCGCCGAGGTGCGGCTGAACGGCGTCGTGGTCGGCACGACGGCGAACATGCACCGGACCTACCGGTTCGATGTGCGCCCGGCGCTCGTGCGCGGCGATAACGAGCTGGTGGTGCGGTTCTCCTCCCCGGTGCGGTACGCGGACGCGCAGAGCCTGGAGCTCGGCTACCGGCCGCAGGTCAACCACCACCCGTTCAACGCGATGCGCAAGATGGCATGCAGCTTCGGCTGGGACTGGGGGATCGACACCGCGACGTCGGGAATCTGGCGGCCCGTGCGACTCGAGTCGTGGAGCGCGGCCCGCCTCGCCGCCGTGCGGCCGGTCGTCACGGTCGCGCAGGACGACGTGCACGGTGACGCGCCGGTCGCCGGCAGCGTCGCGGTGCACGTCGACCTGCAGCGCACCTCGGCGGCGGACCTCCGCCTCTCCGCGACGGTGGGCGGCCACGGCACGAGCAGCACCGCCGTCGTGACCGTGCCGACAGGCCAGACGTCCGCGGTCGTCGAGGTGGTTGTCGACGACGTTCGCCTGTGGTGGCCGCGCGGGTACGGCGAGCAGCCCCTGTACGACGTCGACGTCACGCTCGAGCCCCTCGCCGGCGGCGCCCTCGACACCTGGTCGGGCCGGATCGGGTTCCGCACCGTACGGCTCGACGTCCTGCCCGACGACCTGGGCACGTCCTTCACGTTTGTCCTCAACGGCCGGCCCGTGTGGGTCAAGGGCGCCAACTGGATCCCCGACGACGCCTTCCCGCACCGGGTCACGCGCGAGCGGTACGCCGCGCGCCTCGACCAGGCCGAGCAGGCGAACCTCAACCTCCTGAGGGTGTGGGGCGGGGGCATTTACGAGGCCGACGACTTCTATGACCTGTGCGACGAGCGCGGCATCCTCACCTGGCAGGACTTCGCCCTCGCCTGCGCCGCCTACAGTGAAGCCGAGCCGTTGCGCGGCGAGATCGAGGCCGAGGCGCGCGACAACGTCACCCGCCTCATGCCGCACCCCAGCCTCGTGCTGTGGAACGGCAGCAACGAGAACATTTGGGGCATGACCGTCTGGGGCTTCCTCAAGCGCCTGGACGGCAAGGCGTGGGGCCTGGACTACTACGAGAACCTGCTGCCCTCGGTGGTCTCCCAGCTCGACCCGGGCCGCCCCTACACGCCGTCGAGCCCGTGGTCGGGCGAGACGCCGATCGACATGGGGCGTGACCAGAACGACCCAGACCACGGGTCGATGCACTCGTGGGAGCTGTGGAACCGCGAGGACTGGCCGCACTACCGCGACGTCGTGCCCCGCTTCATGGCGGAATTCGGCTGGCAGGGTCCGCCCACCTGGTCGGCGCTCACCCGGTCGATCAGCGACGACCCACTGACGCCGGAGTCGCCGGGGATGCAGGTGCACCAGAAGGCCTTGCAGGGCAACGACAAGCTCACCGACGGCCTGGTGGCGCACGTGCCACTGCCGGACGACATGGCGGACTGGCACTGGGCGATGTCGTGGAACCAGGCCACGGCCGTACGGGTCGCACTCGAACACCTGCGCTCCTGGGCCCCGCGGTGCATGGGCGCCGTCGTGTGGCAGCTCAACGACTGCTGGCCCGTGACCTCGTGGGCCGCAGTGGACGGCGACGGCCACGCAAAGCCGCTGCTGCACGGCATCCGGCGGGCGTTCGCCGACCGGCTCGTATCGATCCAGCCGCGCTCCGCCGGCGGCGGCGAGCCGACGGGTGACGGAACCGACGGCCTCGCGGTGGTGCTCGTCAACGACACCAACGAGCCATGGTCGGGCGATATCGTGCTGCAGCGCCTCCGGTTCGACGGTGTCGAGGTGGCGGGGACCAAGCACCCCGTCGAGGTCGGGCCCCGGGGCACGCTCAGTGTGCCCGTGCCGACGGAGGTGGCCGTTCCGGGCGCCGCCGGGAGCGAGCTGGTCGTGGCCGAGATGGGCGAGGAGCGGGGCAGCTGGTACTTCGTCGAGGCGCGCGACTCGGCCCTGGAGGCGCCGGAGCTCGACCTCGCCGTCGAGCCAAGCGGCGCCGGGTGCCGGGTACGGGTCACCGCCACCAGCCTGGTGCGCGACGTCACCTTGCTCGTTGACAAGGTCCATCCCGACGCCGACGTCGACGAGATGCTCGTCGACCTGTTGCCCGGCGAGAGCGCCACCTTCGAGGTGACGCTGCCCGCCGGCGTCGAGGTGACCGCAGCGGACCTGGTCGCAGCCGGAGCGCTGCGCTCGCTCAATGACCTGGTCGTTCCCGGGGCGGTGCGATGAMTHPTSVRTRHDLHDGWTLSAAGGPVPAGASVQDVPATVPGSVHTDLLAAGLIPDPYLDDNEALLKWIGACDWEYRTTFAWSPDGHDRYDLVFDGLDTVAEVRLNGVVVGTTANMHRTYRFDVRPALVRGDNELVVRFSSPVRYADAQSLELGYRPQVNHHPFNAMRKMACSFGWDWGIDTATSGIWRPVRLESWSAARLAAVRPVVTVAQDDVHGDAPVAGSVAVHVDLQRTSAADLRLSATVGGHGTSSTAVVTVPTGQTSAVVEVVVDDVRLWWPRGYGEQPLYDVDVTLEPLAGGALDTWSGRIGFRTVRLDVLPDDLGTSFTFVLNGRPVWVKGANWIPDDAFPHRVTRERYAARLDQAEQANLNLLRVWGGGIYEADDFYDLCDERGILTWQDFALACAAYSEAEPLRGEIEAEARDNVTRLMPHPSLVLWNGSNENIWGMTVWGFLKRLDGKAWGLDYYENLLPSVVSQLDPGRPYTPSSPWSGETPIDMGRDQNDPDHGSMHSWELWNREDWPHYRDVVPRFMAEFGWQGPPTWSALTRSISDDPLTPESPGMQVHQKALQGNDKLTDGLVAHVPLPDDMADWHWAMSWNQATAVRVALEHLRSWAPRCMGAVVWQLNDCWPVTSWAAVDGDGHAKPLLHGIRRAFADRLVSIQPRSAGGGEPTGDGTDGLAVVLVNDTNEPWSGDIVLQRLRFDGVEVAGTKHPVEVGPRGTLSVPVPTEVAVPGAAGSELVVAEMGEERGSWYFVEARDSALEAPELDLAVEPSGAGCRVRVTATSLVRDVTLLVDKVHPDADVDEMLVDLLPGESATFEVTLPAGVEVTAADLVAAGALRSLNDLVVPGAVRPGPT0018765_502DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-MANNOSIDASE,PGPT0018765-manB-K01192NANA
AK018_05715900araQ_9COG0395L-arabinose transport system permease protein AraQATGAGCGCCCTCGACCTTACCGTCACCGACCGGGCCAGGCTCGGCGTCGTGCGCTTCCGAAGCGCCGCGGCCCCGATCTCCGGGCCGCTCGGCACCACGTTCAAGTACGCGTCCATCCTGATCGCTTGCGCCTGCGCGGTGATCCCGCTGGTGACCCTCGTCTTTGCCGCTTTCAAGGACACCAGGGAGTACAACACCACGGGGCCCCTCGACCTGCCGCAGAACTGGACAAATCTCGAGAACTTCGCGACGGCCTTCATGCAGGGCCGCATGCTCCAAGGATTCATCAACACGTCGATCATCCTGGTCGTCGCGCTGCTGGGCACCATCATCATCGGCACGATGACGGCCTATGCCGTGGACCGCTTTGACTTCCGAGGGCGAGGCCTCGTCATGGGCGGCTTCCTCATGGCCACGCTCGTGCCCGCCGTCACGACCCAGGTGGCCACGTTCCAGATCATCAACGGCCTTGGCCTGTTCAACACCCGGTGGGCCGCGATCGCCCTGTTCATGGGCACAGACATCATCGCGATCTACATCTTCCTGCAGTTCATGAAGTCGATCCCGCGGTCCCTCGACGAGGCCGCCATGATCGATGGCGCGAACCGCTTCACGATCTACGCGCGGATTATCTTCCCGCTGCTACGCCCCGCGATCGCGACCGTCGTCATCGTCAAGGGGATCGCGATCTACAACGAGTTCTACATCCCGTTCCTCTACATGCCTGCGCGCGACCTAGGGGTCATCTCGACGGCCCTGTTCCGGTTCAAGGGGCCGTTCGGCTCCCAGTGGGAGGTCATCGCGGCCGGGACGATCCTCATCATCGTGCCCACTTTGATCGCTTTCCTCCTTCTCCAGCGCCACATCTACAACGGCCTCACCTCAGGAGCAGTCAAGTGAMSALDLTVTDRARLGVVRFRSAAAPISGPLGTTFKYASILIACACAVIPLVTLVFAAFKDTREYNTTGPLDLPQNWTNLENFATAFMQGRMLQGFINTSIILVVALLGTIIIGTMTAYAVDRFDFRGRGLVMGGFLMATLVPAVTTQVATFQIINGLGLFNTRWAAIALFMGTDIIAIYIFLQFMKSIPRSLDEAAMIDGANRFTIYARIIFPLLRPAIATVVIVKGIAIYNEFYIPFLYMPARDLGVISTALFRFKGPFGSQWEVIAAGTILIIVPTLIAFLLLQRHIYNGLTSGAVKPGPT0016340_79DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_05716957ngcF_1COG1175Diacetylchitobiose uptake system permease protein NgcFATGGCCGTCATGAATTCTCCCCGCGCGCCCGGAAACGCGGCGCCCTCCTTGTCCGGCGGCACCGGCCGGACAAGTCCCGGCACACGCGCGACGCGCCGGGGTTGGAGGGCCACTCCGTGGCTCTTCCTTGTGATCCCTCTCGGACTGCTGGTGCTGTTCACCTACATCCCGGTCGGGAATATGGTGTGGTACAGCTTCACCTCCTGGAATGGGATAGACCCCGTCAAGGAGCCTGTCGGCCTCGACAACTACGTGAGCATCTTCACGGACCCGTCGATCTTCCGTGTCTTCCTGGTGAGCACGTACTACCTCGTCGGGGCGTTCGTGCAACTTGCGCTCGCGTTGTACTTCGCCACGATCCTCAGTTTCAGCACGCGCTTCCGGAATCTGTTCAAGGGGGTCTTGTTCTTCCCGTACTTGCTGAACGGAGTCGCGATCGGTCTAGCGTTCCTCTACTTCTTCCGCCCCGACGGCACTCTCGATGCTCTGCTCGCGCTCGTTGGTGTCACCGAGCCGCCACAGTGGCTCGGTGACCGTTCGATCGCCAACTACTCCCTGGCGCTGACGTCCGTGTGGCGGTACATGGGCCTGAACTTCGTCCTGTTCCTCGGCGCGATTCAGTCGATTCCCGGCGAGCTGTACGAGGCGGCTGACCTCGACGGCGCGACGTCCTGGCAGAAGTTCCGGTTCATCATCCTGCCCGGCATCCGGCAGATCGTGGGCCTCTCTCTTGTGCTCGCTGTGTCAGGGGCGCTTTCGGTGTTCGAGATCCCGTTCGTCATGACCGGCGGAGCGAACGGCACCTCGACCTTCGTCATCGAGACGATCAACACCGCCTTCAACTTCTCCAAGGTCGGTCTCGCGTCGGCCATGGCCATCGTGCTACTGGCTCTCGTCCTGGCAATCACCTGGGTCCAGCGCAAGCTCTTCCCGGAAGAGAAGGGAGACCTCGTATGAMAVMNSPRAPGNAAPSLSGGTGRTSPGTRATRRGWRATPWLFLVIPLGLLVLFTYIPVGNMVWYSFTSWNGIDPVKEPVGLDNYVSIFTDPSIFRVFLVSTYYLVGAFVQLALALYFATILSFSTRFRNLFKGVLFFPYLLNGVAIGLAFLYFFRPDGTLDALLALVGVTEPPQWLGDRSIANYSLALTSVWRYMGLNFVLFLGAIQSIPGELYEAADLDGATSWQKFRFIILPGIRQIVGLSLVLAVSGALSVFEIPFVMTGGANGTSTFVIETINTAFNFSKVGLASAMAIVLLALVLAITWVQRKLFPEEKGDLVPGPT0016335_602DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_057171305dasA_8COG1653Diacetylchitobiose binding protein DasAATGATGGCAAAGAAGCACGCCGTGCTCGCTGCTACGACGACTGCGGCTCTGGCACTGACGCTCGGGGCATGCTCGTCGGGCGACGAAGAGGAGTCGGGCAGCGGGCTCTCGGGCGAGATCACGGTCCTGACGAACCGCACGGACATCGTCGACACCAAGCTCGCCGGCTACGTCGAGGAGTTCCAGGAGATCTACCCGGACATCGACGTCGAGTTCGAACCTCTCACCGACTACGAGGGCGACGTCTCCATCCGGCTCAACTCGCAGGACTACGGCGACGTTCTGCTCATCCCGAACTCGGTGTCTCAGGACCAGCTACCGACGTTCTTCGAGCCCTTGGGCAGCACCGCGGAGCTCTCCGAGGAATACCAGTTCATCAACGAGAAGTCCTACGACGGCCAGGTCTACGGCATCGCGACCTTCGGGACCGCGATGGGTCTGGTGGTCAACACCAAGGTGTGGGCCGACGCGGGAGTCACCGAACCCCCGACCACGCGCCAGGAGCTCCTGGACGGCCTCGAGGCGATCCGAGAGCAGACGGACGCCGACCCGTACTACACGAACTACAAGGACAAGTGGCCGCTGGACCAATGGCAGAACAACCAGGGCAGTGTCGCCGGCGCCGATGCGGTGCAGGAGCGCACCCAGAGCGACGCCCCCTGGAGCGAGGGGCAGGAGCAGTTCGCCATCGACGGCCTGCTCTACGACATCGTCGATGGCGGCCTCAGCGAGGCCGACCCGACGACCACCAACTGGGAGGAGTCGAAGAACCTGCTCGCCCAGGGCAAGGTCGGATCGATGGTCCTCGGCTCGTGGGCTGTGCCGCAGTTCCAGGCAGCTGCTGAGAACGTCGGCGGATCGCCCGACGACATCGCCTTCTGGCCCATTCCCTTCACCGAGGACGGCGCGCTCACGTCGACCATCAGCGGCGACTACAAGATCGGTGTCTCGAAGAACTCGGGGAACAAGGAGGCCGCCCGGGCGTGGGTGGACTGGTTCCTCAACGAGTCGGGATTTGCCGAGAGTGAGGGCGGCATCGCCACCGCGGTGGGCTCGCAGCTGCCGGATAGCCTCGGTACCTTCGACGACCTGGGCGTCGAGCTCGTCGAGCTCGACCCGATGCCCGAGGGGCAGGAGTCGCTCGACAACGACATCGCGAACGGGGCCGAGATCGACCTCTTCGGGAGCCAGTACCGCCAGGAGCTGGTGGACACCGCTCGAGGCGCAGTCGATGGCGACAAGGCGTCGTTCTTCGAAGGGCTGAACCAGCGCTGGGCGGACGCCCGCGCCGCCGTGACCGACTGAMMAKKHAVLAATTTAALALTLGACSSGDEEESGSGLSGEITVLTNRTDIVDTKLAGYVEEFQEIYPDIDVEFEPLTDYEGDVSIRLNSQDYGDVLLIPNSVSQDQLPTFFEPLGSTAELSEEYQFINEKSYDGQVYGIATFGTAMGLVVNTKVWADAGVTEPPTTRQELLDGLEAIREQTDADPYYTNYKDKWPLDQWQNNQGSVAGADAVQERTQSDAPWSEGQEQFAIDGLLYDIVDGGLSEADPTTTNWEESKNLLAQGKVGSMVLGSWAVPQFQAAAENVGGSPDDIAFWPIPFTEDGALTSTISGDYKIGVSKNSGNKEAARAWVDWFLNESGFAESEGGIATAVGSQLPDSLGTFDDLGVELVELDPMPEGQESLDNDIANGAEIDLFGSQYRQELVDTARGAVDGDKASFFEGLNQRWADARAAVTDPGPT0016330_1445DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
AK018_057181077exuRCOG1609putative HTH-type transcriptional repressor ExuRGTGGCGCGGATCACGATTGCGGACATTGCCCGTCGCGCAGGGGTATCGACGGGGGCGGTGTCGTACGCCCTGAACGACAAGCCGGGCGTCTCGGAGGAGACACGAGCTCGCGTCATCGCGATCGCGGCCGAGCTCGGCTGGGCACCGAGCTCTGCGGCCAGGTCACTTTCGGGGTCCCGCAGTGAGACCGTGGGCCTGGTGCTTGCTCGCGATCCCAACACGTTGGGCGTGGAGTCCTTCTACATGCAGTTCCTCGCTGGCATCGAGTCGGAACTCTCTAAGCGGTCGTATGCCCTCTTGCTGCAGGTGGTGCCGGACCTGGATGCCGAGCTCCGTGCCTACCGTGCTTGGCAAGCTGCACGGAGGGTCGATGGTGTCATCGTCGTGGATCCGCGCTTGAACGATCCTCGGTTGGCCTTCTTCCGCCGCAAGGACGCCCTGCGTGCCGTCGTCGTGGGCGATACCAGCCTTGCCGGGGGTCTGACGAACGTGTGGACAGACGACGCAGCCGCGATGCGAGAGTCGCTGCGATACCTGCACGCGATGGGTCATCGGCGGATCGCACGCGTAGGTGGCATGGAGACTTTCGGCCACACGCTCATTCGTGACCGTGCCTTCGACGAGGAGGTCGCGGCGCTCGGAGCCGAGGGGCTCGTCGCGCGCACCGACTACACGGCAGTGCAGGGGGCCGGAGCGACTCGCGCCCTGCTGACGAGCGCAGAGCCGCCGTCCGCGATCATCTACGACAACGACGTGATGGCCGTAGCCGGGCTCGGCGTGGCGAGCGAGTTCGGTGTCGACGTCCCCAGGGACCTCTCGGTGATCGCATGGGACGACTCACCGCTGTGTGAGGCGACCTTCCCACGGCTCTCGGCCCTGAGCCACGACGTCACGCGCTACGGCGCTCATGTGGCCCGACGACTCTTCGACCTCATGGACGGCCACGAGGCGGGCAGCTTCCTCGACTCCGTGCCTACGCTGCGCACCCGGGGCTCGACGGCGCGCCAGCGTGCCTCGACTAGCGCTGCCCTCCACGGCCCAGCATCGGCGGGCGATGCTCCCGAGCTCTCACGCTGAMARITIADIARRAGVSTGAVSYALNDKPGVSEETRARVIAIAAELGWAPSSAARSLSGSRSETVGLVLARDPNTLGVESFYMQFLAGIESELSKRSYALLLQVVPDLDAELRAYRAWQAARRVDGVIVVDPRLNDPRLAFFRRKDALRAVVVGDTSLAGGLTNVWTDDAAAMRESLRYLHAMGHRRIARVGGMETFGHTLIRDRAFDEEVAALGAEGLVARTDYTAVQGAGATRALLTSAEPPSAIIYDNDVMAVAGLGVASEFGVDVPRDLSVIAWDDSPLCEATFPRLSALSHDVTRYGAHVARRLFDLMDGHEAGSFLDSVPTLRTRGSTARQRASTSAALHGPASAGDAPELSRPGPT0014791_41DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
AK018_05719405COG3039IS5 family transposase ISBli8GTGGTCACCGGCGGACAGCGCAACGACGGCGCGATGCTCGAACAGGTCCTGGCAGACATCCGCGTCCCGCGGGTGGGCCGGGGGCGCCCGCGCACCACACCGGACGCCGTCATCGCGGACCGCGCCTACACCAGCGGCAAGACCCGCCGCATGCTTTCCGGCCGCGGCATCAAGGCAGTGATCCCGCAGAAGTCCGACGAGATCGCCGCTCGTCGCCGCAAGGGCTCGGCCGGCGGACGCCCTCCGACGCTGGACACCGTGACCTACAAGGGCCGCAACGTCGTCGAACGCACCTTCGCACTCGCCAAGCAGTGGCGCGCCCTGGCCACCCGCTACGACAAGCTCGCCATCACCTACCGCGCCGCCATCGTGCTCTCAGCCTGCATCACCTGGACCCGCATATAGMVTGGQRNDGAMLEQVLADIRVPRVGRGRPRTTPDAVIADRAYTSGKTRRMLSGRGIKAVIPQKSDEIAARRRKGSAGGRPPTLDTVTYKGRNVVERTFALAKQWRALATRYDKLAITYRAAIVLSACITWTRIPGPT0030660_105DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030660-putative_transposase-K07492NANA
AK018_057202706ppdK_2COG0574Pyruvate, phosphate dikinaseATGAGCGACCAGTCCGAGCAGGCCCGCACCGACCAGTCCGACGGCGCAGCGCCCGGGAGCCCCGGGGAACGTCGGCTCGTGTACGACCTCGCGGAGGGCAGCGCCGCGATGAAGCCGCTGCTGGGCGGCAAGGGCGCCGGCGTGGCGGAGATGAGCCGCATCGGGGTGCCGGTGCCCGACGGGTTCACGGTCACGACCGCGGCGTGCGTGGCGGCGATGGAGGCGGGCGGCACGTGGCCGGACGGGCTCTGGGAGGAGATCCTCGCCCGGCTCGACGCGCTGGAGGAGCGCACCGGCCGGCGCCTGGGGGCCGCGGAACGCCCGCTGCTGGTGTCGGTGCGCTCGGGTGCGGTGATCTCCATGCCCGGGATGATGGACACGATCCTCAACCTGGGGATCTCGGACGAGTCCGTCGTCGCGCTGGCCACCGAGTCCGGCAGTCCGCGGTTCGCCTGGGACTGCTACCGGCGGTTCCTGCAGATGTACGGCGAGGTCGTCGAGGGGGTGCCGGCGCACGCCTTCTCCGACGAGATCGCGGCGCTCAAGGGGCGCCGCGGCGTCGAGCAGGACACCGACCTGACGGTCGAGGACCTGCAGGAGCTCGTCGAGACGTTCCGGACCGTGGCGCTGCGGCACACCGGTGAGGAGCTGCCGACCGACCCGCGTGAGCAGCTGCGCCGGGCGGTGCACGCCGTCTTCGCCTCCTGGGACACCCCGCGGGCCGGGGTCTACCGCAAGGCCCACGACATCCCCGACGACCTGGGCACCGCCGTCAACGTCATGCAGATGGTGTTCGGCAACCGGGGCGACACGTCCGCCACCGGGGTGTGCTTCACGCGCAACCCGTCCACGGGCGCGAAGGAGCTCTACGGCGAGTTCCTCGTCAACGCCCAGGGTGAGGACGTCGTTGCCGGCATCCGCACGCCGCTGCCCCTGGCGCAGATGGAGCAGGTGCTCCCGGCCGCCTACGGCGAGCTCCTGGACACGATGAACCGCCTCGAGCAGCACTACGGCGACATGCAGGACATCGAGTTCACGGTCGACGACGGCAAGCTCTACCTGCTGCAGACCCGCACCGGGAAGCGCACGGCGGCGGCCGCGCTCAAGGTGGCCCGTGACCTGGTGGCCGAGGGGGTCATCGACCGGGAGACGGCGCTGCGGCGCATCGAGCCCGCCCAGCTCGACCAGCTGCTGCACCCCGGGCTGGACCCGGAGCACGGTCGGGAGCCGCTGACGCGCGGTCTCAACGCCTCGCCCGGTGCGGGTGTGGGGACGGTGGTGTTCGACGCCGATACCGCGGCCGACCGCGGCGGTGCCGGCGAGCCGGTGGTCCTGGTGCGCTGGGAGACCACCCCCGACGACATCCACGGCGTCATCGCCGCGCACGGGGTGCTGACGTCGCACGGGGGCATGACCTCGCACGCCGCCGTCGTCGCGCGCGGGATGGGCAAGCCGTGCGTCGCCGGCGCCGGGGACCTGCACATCGATGTCGAGGCCCGCACCGTCGCCGTGGGGGACACGGTGCTCACCGAGGGCGACACGATCACCATCGACGGCACCACCGGTGAGGTCTTCGCCGGGGCGCTGGAGCTCGTGCCGCCGCAGATCACGGACGACTTCACCGAGGTGCTGTCCTGGGCGGACGACGTGCGGCGCCTCGGCGTGCGGGCCAACGCGGACACCGGGGCCGACGCCGCCAAGGCCCGCGAGCTCGGTGCCGAGGGGATCGGGCTGTGCCGCACCGAGCACATGTTCATGGACGCCGAACGGCTCCCGGCGGTGCAGGCGATGATCCTCGCCGAGAAGCGGGAGGAACGGGCCGAGGCCCTGGAGCGCCTCCTGCCGATGCAGCAGGCGGACTTCACCGAGCTCTTCACGGCGATGAGCGGGCTCCCGGTCACGATCCGGCTCATCGACCCGCCGCTGCACGAGTTCCTGCCTGATCTCGTCGAGCAGTCCGTGCTGGTCCAGAGGCTGGAGGACTCGGGGGTGACGGGCCGCGAGCTCGACGACGCCCGCACGGTGCTCGGGCACGTCAAGCGGCTCAGCGAGATGAACCCGATGCTGGGGACCCGCGGGGTGCGGCTCGCGCTGCTGTACCCGGAGATCGCGCAGATGCAGGTGCGGGCGATCGCGCGGGCCGCGGCGGCGGTGCGCGAGCAGGGCGGTGACCCGCGCGTGGAGATCATGGTGCCGCTGGTCGGTTTCGACGAGGAGCTGCGCCGCATGCGCGCCGTCGTCACCGAGACGTGGGCCGAGGAGACGGCCGGTGCCGAGGTGCCGCACACGGTGGGGACGATGATCGAGCTGCCGCGGGCGGCCCTCGTCGCCGACGCGATCGCCGAGCACGCCGACTTCTTCTCGTTCGGCACCAACGACCTGACGCAGACGACGGTCGGCATCTCGCGCGACGACGCCGAGGGGTCGTTCCTCAACGCCTACGTCGACGGCGGCATCCTGCCCGCCAACCCGTTCGCGAGCATCGACGTCGACGGCGTGGGCGAGCTGGTCCGCCTGGGCGTGCGCAAGGGACGCGGCACGACGCCGGACCTCAAGACCGGCGTGTGCGGCGAGCACGGGGGAGACCCGGCGTCCATCGCCCTGTTCGACGAGATCGGCCTGGACTACGTGTCCTGCTCGCCGTACCGGGTGCCGATCGCCCGCCTCGCGGCCGCCCAGGTCACGCTCGACCGCCCCGCGAGGTAGMSDQSEQARTDQSDGAAPGSPGERRLVYDLAEGSAAMKPLLGGKGAGVAEMSRIGVPVPDGFTVTTAACVAAMEAGGTWPDGLWEEILARLDALEERTGRRLGAAERPLLVSVRSGAVISMPGMMDTILNLGISDESVVALATESGSPRFAWDCYRRFLQMYGEVVEGVPAHAFSDEIAALKGRRGVEQDTDLTVEDLQELVETFRTVALRHTGEELPTDPREQLRRAVHAVFASWDTPRAGVYRKAHDIPDDLGTAVNVMQMVFGNRGDTSATGVCFTRNPSTGAKELYGEFLVNAQGEDVVAGIRTPLPLAQMEQVLPAAYGELLDTMNRLEQHYGDMQDIEFTVDDGKLYLLQTRTGKRTAAAALKVARDLVAEGVIDRETALRRIEPAQLDQLLHPGLDPEHGREPLTRGLNASPGAGVGTVVFDADTAADRGGAGEPVVLVRWETTPDDIHGVIAAHGVLTSHGGMTSHAAVVARGMGKPCVAGAGDLHIDVEARTVAVGDTVLTEGDTITIDGTTGEVFAGALELVPPQITDDFTEVLSWADDVRRLGVRANADTGADAAKARELGAEGIGLCRTEHMFMDAERLPAVQAMILAEKREERAEALERLLPMQQADFTELFTAMSGLPVTIRLIDPPLHEFLPDLVEQSVLVQRLEDSGVTGRELDDARTVLGHVKRLSEMNPMLGTRGVRLALLYPEIAQMQVRAIARAAAAVREQGGDPRVEIMVPLVGFDEELRRMRAVVTETWAEETAGAEVPHTVGTMIELPRAALVADAIAEHADFFSFGTNDLTQTTVGISRDDAEGSFLNAYVDGGILPANPFASIDVDGVGELVRLGVRKGRGTTPDLKTGVCGEHGGDPASIALFDEIGLDYVSCSPYRVPIARLAAAQVTLDRPARPGPT0002040_349DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002040-ppdK-K01006NANA
AK018_05721921yqfL_2COG1806Putative pyruvate, phosphate dikinase regulatory proteinATGACCCCGACGGAGCAGGTCGTCATCCATGTCGTCGCGGACTCCACGGGTGACACGGGTGCCCGCGTGGCCCGTGCCGTGCAGTCGCAGTACCCGGGCCTGGACGTCGCGGTGGTGCGCCATCCTCGGTTGCACAGCCAGGATGGCCTGGACGACGTCGTGGAGCAGCTCCGCGCGGATCCGGCGCCGGCGGTGGTCTACTGCACGGTCGTCGACGAGACGTTGCACCAGCAGGTGCTGGACCGGTGCGCGGAGCTCGGCATCCCGTGCGCGGACCTGCTGACGCCGGCGCTGGACGCCGTGGCGGAACGGACCGGCGCCACCCCGACGCGCCTGGTGCAACCCGTGGGACTCGCGGCCGACTACTTCGAACGCATCCACGCCATGGAGTTCGCCATCGCGAACGACGACGGCAATGCGACGCCGGAGGGTCTCGCGGAGGCGCAGATCGTCCTGGTGGGGGCCTCGCGCACCGGCAAGACGCCGCTGTCGATGTACCTGGGCTATCTCGGGTACCGCACGGCGAACATCCCGCTGGTCGCGGGGGTGGCGCCGCCGTCGGTGCTCGGGTCGATCGACCGCTGGAAGATCGTCGGCCTGACGATCGACCCGGAGCGGCTGCTGACGATCCGACGACGGCGGGTGGACCTCATGGGTGCCGGGCGGCAGGACGGAGGTCGCCTGGGCGGCTACGCGGATCTCGCCCGCATCCTCGAGGAGCTCGACGACATCGCCGCCACGCAGCGGCGTCTGGGCTGTCCGGTGCTGGACACGACGTCTCTCGCGCTGGAGGAGGCGGCGGGTCGCATCATCGACCTGGTGACAGCGCGGCGCCGGGCCAATACAGTCCTGTCCGAGCACGTCGACGGGCGCAGCACACCCACCTCGCCCGGAGCCGAGACGGAGGCGAGGAAGCCATGAMTPTEQVVIHVVADSTGDTGARVARAVQSQYPGLDVAVVRHPRLHSQDGLDDVVEQLRADPAPAVVYCTVVDETLHQQVLDRCAELGIPCADLLTPALDAVAERTGATPTRLVQPVGLAADYFERIHAMEFAIANDDGNATPEGLAEAQIVLVGASRTGKTPLSMYLGYLGYRTANIPLVAGVAPPSVLGSIDRWKIVGLTIDPERLLTIRRRRVDLMGAGRQDGGRLGGYADLARILEELDDIAATQRRLGCPVLDTTSLALEEAAGRIIDLVTARRRANTVLSEHVDGRSTPTSPGAETEARKPNANANANANA
AK018_05722417hypothetical proteinATGACGACAACGAACCCCGACGGCCCCGCCCACGTCCCCGAGCTCGCCCGGACCCTCGTCGCCGGCACCCACGTCGCCCACCTCGCCACGCTGCTGCCCGACGGCTCACCGCACGTCGTGCCCCTCTGGGTCTCCTGGGAGGCCGACCGCCTCGCCTTCCTCACCGGACCCGGGTCCCGCAAGGCCCGCAACCTCGCGCGCGACCCGCGCGTCGCCGTGTCGGTGGCACACACCGAACGCCCCTGGGAGATGGCGATGCTGCGGGGGCGCGTGGCCCGGACGGTCGACGGGCCGGCGGGCTGGACGATCGTCGACCGGATCGCCGACTCCTACACCGGCGCGCCGTACCCGCGCGGCGAGGAACGCGTGGCGTACCTGGTCGACGTCGAGCACGCGACGGCGGCGGACTTCGGCTGAMTTTNPDGPAHVPELARTLVAGTHVAHLATLLPDGSPHVVPLWVSWEADRLAFLTGPGSRKARNLARDPRVAVSVAHTERPWEMAMLRGRVARTVDGPAGWTIVDRIADSYTGAPYPRGEERVAYLVDVEHATAADFGNANANANANA
AK018_05723915hypothetical proteinATGGCCAGACCGCGGATCTCCGTCGTCCTCGCCACCAACCGGGACAGCCCGTTCCTGCCGGAGTCGTTGCAGTCGCTCACGGACCAGACGTGGTCGGACTGGGAGCTGGTCGTCGTCGACAACGGTGTCCCCGACCAGGCCCGGCTCCACGAGCTCGTCGGCGCGGTGCCGCGGTCACGGATCGTCGAGGCGACGCCCTGGACGTTGGCGCGCTCGCGGAACGTCGGGGTGGCGGCGAGCGTCGGCGACCTGCTGGTCTTCCACGACGACGACGACGTCTGGGCGCCGACGAGGCTGGAACGGCAGGTCGACGCGCTCGACGCGGCGCCCGGCGCGGTGGCGTCCTCCGTCGGCGGATGGCACCTCGACGAGCACGGCCGGCGGATCGGTGCGGGTTTCCCCGCCCGTGCGGCGAGCGCCGAGGCGATCCTCGCAGGACGCTCCCCGACGCCGCACATCTGTGGTGCGCTGATGGTGCGTCGCGAGGCGCACCTGGAGGCGGGCGGGTTCGCGCCCGAGCTCTCGATCATGGAGGACTTCGAGTACATGCTGCGTCTGCTGATGCTCGGAGAGCTGGCGTGCGTGCCGGAAGAGCTCCTCGGTTACCGGCGGCACAGCGAGAACATGACCAGCACCGACCTCGGCAACTACCGGCTGCGGAGGCACGTCATGGACGAGTCGCTGGAACGTCTGCGGTGGTCCGCGGAGGCTCGGGGGGACGCCCGGACGCAGGCTCTGCTGGCCGAGCACCGCGACCGGTTCCGTTCCGAGGCGGCGGTGGTCGCCGGGGGAGACGTCGTCCGGCTGCTGCGTCGGGGGAACCTGCGCGATGCCGTGGGCGAGCTCGCCTGGGGTGTGCGCGCCGGACCACGCCGGGTGGTCTCGGGCGCCTGGAGACGTGTGGTGCGGCGCTGAMARPRISVVLATNRDSPFLPESLQSLTDQTWSDWELVVVDNGVPDQARLHELVGAVPRSRIVEATPWTLARSRNVGVAASVGDLLVFHDDDDVWAPTRLERQVDALDAAPGAVASSVGGWHLDEHGRRIGAGFPARAASAEAILAGRSPTPHICGALMVRREAHLEAGGFAPELSIMEDFEYMLRLLMLGELACVPEELLGYRRHSENMTSTDLGNYRLRRHVMDESLERLRWSAEARGDARTQALLAEHRDRFRSEAAVVAGGDVVRLLRRGNLRDAVGELAWGVRAGPRRVVSGAWRRVVRRNANANANANA
AK018_057243621mfd_2COG1197Transcription-repair-coupling factorATGAACCTCACCGGCATCGTCCCCGCCCTGCTCGACGACCCCGGAGCGGCCGCCGCCCTCGAGGCGGTCCGGACCGGGGGAGAGGTCGACGTGGTCGGGCCGAAGGGCGTCCGCCCCCCGCTGCTGGCTGCGGCCGCGGAGCAGCGCCCCCTGGTGGTCGTCACCGCGACGGGCCGCGACGCCGACGAGCTCGCCGCGTCGCTCCGTGCCTACCTGCCGGACGACCGCGCCGACGACGTGGCCGTGCTGCCGGCCTGGGAGACGTTGCCGCACGAGCGTCTGAGCCCCCGCGCGGACACGGTGGCCAAGCGTCTGGCGGTCTTCCGGCGCCTCGCCCATCCCACGGAGCAGCGTGGCCAGGCCGGTCCCGTGAACATCCTCGTGATGCCGGTGCGTGCCCTGCTGCAGCCGGTGGTCGAGGGTCTGGGCGAGCTGGTCCCGGTGGAGCTCCGCACCGGACAGGAGGCCGACCTGACCGCGGTCGGCGATGCCCTCGTGGCCGCCGCGTACACCCGGGTGGACATGGTGGAGCGTCGTGGCGAGTTCGCGGTGCGCGGCGGGATCCTGGACGTCTTCCCGCCGACGGAGGACCACCCGCTGCGCATCGAGTTCTGGGGTGACGAGGTCAGCGAGATCCGCTGGTTCGCCGTCGCCGACCAGCGCTCGCTGGAGATCGCCGAGCACGGACTGTGGGCCCCGCCGTGCCGGGAGATCCTGCTGACGGCGTCGGTGCGCGCCCGCGCCGCGGACCTGGTCCAGCAGCTGCCGGGCGCCACGGACATGCTGGACAAGCTCGCCGCGGGTGTGGCGGTGGAGGGCATGGAGTCCCTCGCGCCGGTGCTGGTGGACCGGATGGTGCCGGTCCTGGAGCTGGTGCGCGAGGACGCGCTGCTGGTCCTCGACGAGCCGGAGCGGGTCCGTCGTCGAGCGCACGACCTGGTCGCCACCACCGAGGAGTTCCTCGCCGCCGCGTGGACGGGCGCGGTGGCCGGGGCGGACGCCCCGATCGACCTGTCGGCGGCGTCGTTCGCCACGTTCGCCGAGACGCGCGAGGTGGCGGCCCGACGCGGGCTCGGCTGGTGGACGCTCTCGGCGTTCTCCCTGGAGGGCGCGGAGTCCGGGGACGACGGCGGCACGGACGTCGCGTCGTCGGCCCCGGTCGTGCCGGGGGCCGACGGCGGCACCACCGTGACGATCGCGGCGCGCGACGTCGAGTCCTACCGCGGGGACGTCGCGCGGGCGCTCGACGACGTCCAGGGGCTGCAGAGGGCCGGCTGGCACCTGGTGCTCACCACGGAGGGTCCTGGACCGGCCCGGCGCATGGTCGAGCAGCTCGGCGCGGCCGACACCGCGGCCCGCCTGTCCACGGACCTGACCGACCGGCCCGAGGGCGGCGTCGTGCACGTCGTCCCGGCGCTCGTGGGCAAGGGGTTCGTGGTCCCCGAGCTGCGGCTCGCCGTGTTCAGCGAGGCCGACCTGACGGGTCGCCAGGGGTCGACCACCCGCGACATGCGCAAGATGCCCTCGCGGCGGCGCAACGTCGTCGACCCGCTGCAGCTCCAGGCCGGGGACTACGTCGTGCACGAGCAGCACGGTGTGGGCCGGTTCGTCGAGATGGTGCAGCGCACCCTCGGGGCGGCCGGCAACCGGGCGACCCGCGAGTACCTGGTCATCGAGTACGCCTCCTCCAAGCGGGGGCACCCGGGGGACCGGCTGTTCGTGCCGATGGACCAGCTCGACCAGGTCACCAAGTACACCGGCGGCGAGGTGCCCAGCCTGAACAAGATGGGCGGTGCCGACTGGAAGAACACCAAGTCTCGCGCCCGCAAGCACGTCAAGGAGATCGCGAGCGAGCTGATCCGCCTGTACTCGGCGCGCATGGCCACCGAGGGGCACGCGTTCGGCCCGGACACGCCGTGGCAGCGCGAGCTCGAGGACGCGTTCGCCTACATCGAGACGCCCGACCAGCTCGTCACCATCGACGAGGTCAAGGCCGACATGGAGAAGACGGTCCCCATGGACCGGCTGATCTGCGGCGACGTCGGCTACGGCAAGACCGAGATCGCGATCCGGGCGGCGTTCAAGGCGGTCCAGGACGGCAAGCAGGTCGCCGTGCTGGTGCCGACCACCCTGCTCGTCCAGCAGCACTTCGACACGTTCTCCGAGCGGTACGCCGGGTTTCCCGTCAACGTCCGCGCGCTGTCCCGGTTCCAGAGCGCCAAGGAGTCCGCCGAGACGCTCGAAGGGCTCAAGGACGGTTCGGTCGACGTCGTCATCGGCACCCACCGCCTCATCACCGGTTCGGTGCACTTCAAGAGCCTCGGCCTGGTGGTCGTCGACGAGGAGCAGCGGTTCGGCGTCGAGCACAAGGAGACCCTCAAGCAGCTGCGCACCAACGTCGACGTCCTGGCCATGTCCGCCACGCCGATCCCGCGCACCCTGGAGATGGCCGTCACCGGCATCCGCGAGATGTCCACCCTCGCCACGCCCCCGGAGGAGCGCCACCCCGTGCTCACCTACGTCGGTGCCTACGAGGAGAAGCAGATCTCGGCGGCCGTGCGCCGCGAGCTCCTGCGCGAGGGCCAGGTGTTCTACATCCACAACAAGGTCGAGTCCATCGACCGGCAGGCCGCGCGCCTCCGCGAGCTCGTCCCCGAGGCCCGTGTCGGCGTCGCGCACGGCAAGATGAGCGAGTCCCAGCTCGACCAGATCATCCGCGCCTTCTGGGAACGCGAGATCGACGTCCTGGTCTGCACCACGATCGTCGAGACGGGCCTGGACATCTCCAACGCGAACACGCTCATCCTGGAGCGTGCCGACACGTTCGGGCTGTCCCAGCTGCACCAGCTGCGCGGCCGCGTGGGCCGCGGACGCGAACGCGCCTACGCCTACTTCCTCTACCCGCCCGAGCGGCCGCTGACCGACACCGCCCACGATCGGCTCGCCACCATGGCCGCCCACACCGACCTCGGCGCCGGCATGCAGATCGCCATGAAGGACCTCGAGATCCGCGGCGCCGGCAACCTGCTCGGCGGCGAGCAGTCCGGGCACATCGCCGGCGTCGGGTTCGACCTCTACGTCCGCATGGTCGGCGAGGCCGTGGCCGCGTTCCGCGGCGACCGCGAGGAGGAACAGCCCGAGGTCACCATCGAGCTGCCCGTCGACGCACACCTGCCCGAGTCGTACATCGCCACCGAACGCCTCCGCCTCGAGGCCTACAAGAAGATCGCCGCCGCGCACGACTCGGCGGCGCTCGCGGAGATCCGCGCCGAGCTCACCGACCGGTACGGCACGCTCCCGGAACCCACCGAGGCGCTCTTCGAGGTCGCCGAGTTCCGCAACCACGCCCGGCGGGCCGGCCTGACGGACATCACCGCGCAGGGCAAGCACATCCGGTTCGCCCCGGTGGACCTGCCCGAGTCGGCCCAGCTCCGGCTCAAGCGGCTCTACCCGGGCACCATCCTCAAGCCCGGCATCCGCGCCGTCCTCGTGCCGTTCCCGACGACCGCACGCATCGGCGGCAAGCCGCTGCGTGGTGCCGCGCTGCTGGAGTGGGCGCGTCAGCTCATCGACGGGGTGATCCTCGGGGAGGTGGCGGCCGCCGCGGCGGCGTCCCGCTAGMNLTGIVPALLDDPGAAAALEAVRTGGEVDVVGPKGVRPPLLAAAAEQRPLVVVTATGRDADELAASLRAYLPDDRADDVAVLPAWETLPHERLSPRADTVAKRLAVFRRLAHPTEQRGQAGPVNILVMPVRALLQPVVEGLGELVPVELRTGQEADLTAVGDALVAAAYTRVDMVERRGEFAVRGGILDVFPPTEDHPLRIEFWGDEVSEIRWFAVADQRSLEIAEHGLWAPPCREILLTASVRARAADLVQQLPGATDMLDKLAAGVAVEGMESLAPVLVDRMVPVLELVREDALLVLDEPERVRRRAHDLVATTEEFLAAAWTGAVAGADAPIDLSAASFATFAETREVAARRGLGWWTLSAFSLEGAESGDDGGTDVASSAPVVPGADGGTTVTIAARDVESYRGDVARALDDVQGLQRAGWHLVLTTEGPGPARRMVEQLGAADTAARLSTDLTDRPEGGVVHVVPALVGKGFVVPELRLAVFSEADLTGRQGSTTRDMRKMPSRRRNVVDPLQLQAGDYVVHEQHGVGRFVEMVQRTLGAAGNRATREYLVIEYASSKRGHPGDRLFVPMDQLDQVTKYTGGEVPSLNKMGGADWKNTKSRARKHVKEIASELIRLYSARMATEGHAFGPDTPWQRELEDAFAYIETPDQLVTIDEVKADMEKTVPMDRLICGDVGYGKTEIAIRAAFKAVQDGKQVAVLVPTTLLVQQHFDTFSERYAGFPVNVRALSRFQSAKESAETLEGLKDGSVDVVIGTHRLITGSVHFKSLGLVVVDEEQRFGVEHKETLKQLRTNVDVLAMSATPIPRTLEMAVTGIREMSTLATPPEERHPVLTYVGAYEEKQISAAVRRELLREGQVFYIHNKVESIDRQAARLRELVPEARVGVAHGKMSESQLDQIIRAFWEREIDVLVCTTIVETGLDISNANTLILERADTFGLSQLHQLRGRVGRGRERAYAYFLYPPERPLTDTAHDRLATMAAHTDLGAGMQIAMKDLEIRGAGNLLGGEQSGHIAGVGFDLYVRMVGEAVAAFRGDREEEQPEVTIELPVDAHLPESYIATERLRLEAYKKIAAAHDSAALAEIRAELTDRYGTLPEPTEALFEVAEFRNHARRAGLTDITAQGKHIRFAPVDLPESAQLRLKRLYPGTILKPGIRAVLVPFPTTARIGGKPLRGAALLEWARQLIDGVILGEVAAAAAASRNANANANANA
AK018_05725930hypothetical proteinGTGGACGAGGCGACGCGACGGCCGGAGCCGCCGGAACCACTGGTCTCCGTCGTCGTCCCGACCCATCGGCCGGGGCCGGACCTGCGGGCGGCGGTCCTCTCCGTCGTCGCGCAGACGGAGACCGCGTGGGAGGTGATCGTCGTCGACGACGGGTCCGGTCAGGACCTCGGCGGCGTGGAAGACCTGGACGCACGCGTCCGCGTCGTCCGTCAGGCGCACGGGGGCGTCTCGACCGCGCGCAACACCGGCGCGGCGCACGCCCGCGCCCCGTGGGTGGCCTTCCTCGACGACGACGACCGCTGGCTGCCCGGCAAGCTGCGCGATCAGCTCGACCTGCTGCGCAGCACCGACGCCGACCTGTCCCACACCGCCTTCCGCTGGGTCACGGAGACGGAGGACGGCACGAGCACGTTCGTCCGCCGGTACCCCGAGGAGATCAGCTACCGAGGGATGCTCGTCGGCGACCACGTGTGCACCTCGAGCGTCGTCGTGCGCCGCTCCACGCTCGAGGCCGCGGGCGGGTTCCGGCCCGACCTGGACCGCGCGGAGGACCTGGAGCTCTGGCTCCGGCTGCTCCGCTCCGGTGCCCGGTTCGCCGTCGCCGACGTCCCGCTGCTCGAGTACCGCACGCATGCCGCCGGCGCGTCGGCAGACTACGAGCGCACCTTCCGGCAGCGGCGCGACGTGCTGCGGGGGCATCTGCGCTCGGCGCGCAGGGCCGGCGACCGGTCGACGGCGGCGGCAGCGCGGCGCGGTCTGCGTCGCGGCCGCGAGCTCTGCGCGGCGCAGGCCTTCGACGCCGCCCGCGCCGACTCCGGGGCAGGCCGGCTGCACCATCTGTTCAGGGCGTCGGTCCGCGACCCCAGGTTCGTCGCGCGCTCTCTGTGGCGGGGCCGCCGGTCACGCCGCGACGCCCTCGCGGGCGCGTGAMDEATRRPEPPEPLVSVVVPTHRPGPDLRAAVLSVVAQTETAWEVIVVDDGSGQDLGGVEDLDARVRVVRQAHGGVSTARNTGAAHARAPWVAFLDDDDRWLPGKLRDQLDLLRSTDADLSHTAFRWVTETEDGTSTFVRRYPEEISYRGMLVGDHVCTSSVVVRRSTLEAAGGFRPDLDRAEDLELWLRLLRSGARFAVADVPLLEYRTHAAGASADYERTFRQRRDVLRGHLRSARRAGDRSTAAAARRGLRRGRELCAAQAFDAARADSGAGRLHHLFRASVRDPRFVARSLWRGRRSRRDALAGANANANANANA
AK018_057261203hypothetical proteinGTGCACGAGCCTCGCAGCAGCCCGCGCCGCGACACCCTGCGACGTGCCGCGGTCGCGGTGGCCTGGCTGGTCACCGCCGCCGTCGCCGGGCTGCTCGCCGTCGTGAGGTACCGCGGCGTCGTCGGCGACCCCAGTGCCGGTCACGACCTGTGGATCTTCGTCGACGCCGCCGCGTCGGTCAGTGCCGGGGGCAGTCCGTACGACGTCGCGGGCTACGTCTATCCGCCGCTGCTCGCCGTGGTGCTCGCCCCGGTGGCCGGTGTCGACCTGCTCGCGGCCTGGACCGTCGCGGCCCTCGCCGCGTTCCTCGCCGGCATCGTCGCGGTGCTCCTGAGCGTCTGGGAGCGGGTGGCGACGTGGGAACGTCCGGCGGTGGCGCTCCTGGCGGTGGTCACGCTGCTGTGGTCCCACCCCACGTCGTTCTCGTTGTGGCTCGGTCAGACCGACGCCTTCGTCTTCCTCGCGCTCGCGCTCGCGACCCTGGCCGCCGTCCGGGGCAGGCCGGGCGCCGCCGGGCTCGCGCTCGCCGTCGCCGCCGCCGTCAAGACCTGGCCGGCGCTCGTCGGTGTGTCCGTCTTCCGGCGCGGTGCGGTCGGCAGGTGGCGCACGGTCGCCGTCGCGACGGGCTCGTTCGTGGTCCTCGTGCTGCTGGCCGCGCTGCCGCTCGGGATCGACGGCGTCGCGGACTGGTGGCGCCGGACCGCCTCGATGTCCGACCAGCCGCTCGCCGCCTATTCGGTCTGGGGCGTCGGGCGCGACCTGTTCTCGGCGACCGGCGTGATGGCGCCGATGCTGGAGGTACCCGTCCTGGGCACGGCCGTGACCGTCGTCCTCCTGGTGGTCGTGGTGGCGCTGCTCGCCGTCGCCCTGCGCTTCCCGGGCGACCCGGTGCTCGTGCACTGGCACGTCGTGGCCTGCGTGCTGCTGCTTCTGCCCGTGTCGCACGTCTGGTACCTGCCCATGACGCTGCCGATGCTGTGGGTGTGGGCCGTCCGACGGCGCGAGGCGGGCACGGTGCGATGGGCCGTGGTGACCGGCGTGCTCCTCGTGTGCTGGTGGGTCGTGTTCCGCACGTGGGCCGGGGACCCGCGCGAACCCGAGACGACCGGCTACGCGATGGTCGTCGTCGCCGAGATCGTGGCGCTCGCGGTCTCGGTCCTGGCCTCCCGGACGTCACGCGCCCGCGAGGGCGTCGCGGCGTGAMHEPRSSPRRDTLRRAAVAVAWLVTAAVAGLLAVVRYRGVVGDPSAGHDLWIFVDAAASVSAGGSPYDVAGYVYPPLLAVVLAPVAGVDLLAAWTVAALAAFLAGIVAVLLSVWERVATWERPAVALLAVVTLLWSHPTSFSLWLGQTDAFVFLALALATLAAVRGRPGAAGLALAVAAAVKTWPALVGVSVFRRGAVGRWRTVAVATGSFVVLVLLAALPLGIDGVADWWRRTASMSDQPLAAYSVWGVGRDLFSATGVMAPMLEVPVLGTAVTVVLLVVVVALLAVALRFPGDPVLVHWHVVACVLLLLPVSHVWYLPMTLPMLWVWAVRRREAGTVRWAVVTGVLLVCWWVVFRTWAGDPREPETTGYAMVVVAEIVALAVSVLASRTSRAREGVAAPGPT0024310_242DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024310-pimE-K13669NANA
AK018_05727606hypothetical proteinATGGCAGCACCGCGGTGGGTGGCCGTCGCCCTCCTCACCGTCACGTTCTGCGCCCTGTACCTGGTGTCGGTCCGCACCGCGCTCGGACAGCGGCTCGACATCGTCGTGTTCTCCGAGGCCCAGGCCTGGAACCCGACGCTCGAACCGCTGGTGGGCGGTCCCAGGCAGGGCATCCCCGTCGTCCTCGGAGCCGCGTTCGGCGTCCTCGTCGTGCACGCCCTGGCCCGGCGTGCGTGGGGGCGGGCCGTGCGCGCCGTCGCCGTGGTGGTGCTGGTGACCGTGCTCGCGTGGGTGCTCAAGCGAGTCCTCGACCGCCCGTACCTGATGGATGCCGGGTACCTCGAGAACACCTTCCCGTCGGGTCACGTCGCCGTCTCGGCAGCACTCGTCCTGGCCGTGCTGTCGCTGTGGCCGGTGGCACCACCCCGGACGCTGCTCGTCGTCGCCGCTCTGGTGATCCTGGCGGCGTGCCTGGTCAACATCGTGGGGCACGCGCACCGGCCGTCCGACACGCTCGGTGCGGTCGTCCTCGCCGGCGCGGTCCAGCTCGCCCTGACCAGCACGCGGCCGCTCGCCGTGCGGCCGGACGAAGTCGCGCTCCGATGAMAAPRWVAVALLTVTFCALYLVSVRTALGQRLDIVVFSEAQAWNPTLEPLVGGPRQGIPVVLGAAFGVLVVHALARRAWGRAVRAVAVVVLVTVLAWVLKRVLDRPYLMDAGYLENTFPSGHVAVSAALVLAVLSLWPVAPPRTLLVVAALVILAACLVNIVGHAHRPSDTLGAVVLAGAVQLALTSTRPLAVRPDEVALRNANANANANA
AK018_057281131kanEAlpha-D-kanosaminyltransferaseGTGGCCGACGTCGTGCTCGTGACGAGCTCCTTCCTCCCGCGCATCGGCGGGGTGGAGGAGCACGTGCTGCACGCCGCCCGGGCGCTCGCCGCTCGTGGCACGGACGTCGCGATCTGGACGGTGGACCAGGGCGACCAGGTGCCCGACGCCGTGGACGGCATCCCCGTGCGGGTCCTGCCCTGCCCGCTGCCCGCCCGGTCTGCCGTGGCACTCGCCGCGTTCGCGGTCCGGGCACCGCTCGCCGCGGCGCGCTGGGCGGCGGCGCTCCGACGCGACCGGCCCCGCGTGCTGCACGTGCACTGCTTCGGTCCGAACGGCCCGTGGGCGGCGACGGCCGCCGCGGTGACACGGCGGCCCCTGGTGCTGACCGCCCACGGCGAGACCTTCATGGACGCGCACCGGGTGTTCGACAGCTCCGCGCTGCTCCGCCGGGCCCTGCGCTCGGCGTTGCGCCGGGCTGCCGCCGTGACCGCGTGCTCGCGGGCCGCGGCACGCGACCTCGTCCGGTTCGGCGCCGACCTGGACCGGGTGGAGGTCGTGTTCAACGGCATCGACCCGGACGTGCCGCCCGAGCCGCCCCCGCCCGCGCTGCCGGACCGCTACGTCCTGGCCCTCGGACGGCTCGTGGAGAACAAGGGGTTCGACCTGCTCGTCGACGCCTTCGCCGCGGCCCGTCTCCCGCAGGACGTCCACCTCGTCGTCGCGGGGACCGGCCCCTGCTCCGGGTCGTTGCGCGACCGGGCGGCCGCGCGCGGTGCGGGATCCCGGGTGCACCTGCCGGGTCGGCTCGAGCGCGGACAGGTCGTCACCGTCGCCGCGGCCTCTCTCGGTCTCGTCGTGCCGAGCCGGGTCGAGGCCTTCGGGATCGTCGTCCTGGAGGGCTGGCGCGCCGGCGTCCCGGTCGTCGCGACGACGCACGGCGGCCCGGCCGAGTTCGTGCGCGACGGCGAGACCGGGCTCCTCGTCGACCCGACCGACGTGCCGGCGCTCGCGAGGGCGCTGGAGCGTGTGGTCGGCGACCCGGCGACGGCTCAGCGGCTCGGCCGTGCCGGTCGGGCGCGGGTCGGCGACTTCACCTGGCCCGGCGTGGCGGACCGCTACCGCGAGATCTACCGCCGCGTCGCGGGCTGAMADVVLVTSSFLPRIGGVEEHVLHAARALAARGTDVAIWTVDQGDQVPDAVDGIPVRVLPCPLPARSAVALAAFAVRAPLAAARWAAALRRDRPRVLHVHCFGPNGPWAATAAAVTRRPLVLTAHGETFMDAHRVFDSSALLRRALRSALRRAAAVTACSRAAARDLVRFGADLDRVEVVFNGIDPDVPPEPPPPALPDRYVLALGRLVENKGFDLLVDAFAAARLPQDVHLVVAGTGPCSGSLRDRAAARGAGSRVHLPGRLERGQVVTVAAASLGLVVPSRVEAFGIVVLEGWRAGVPVVATTHGGPAEFVRDGETGLLVDPTDVPALARALERVVGDPATAQRLGRAGRARVGDFTWPGVADRYREIYRRVAGPGPT0018547_756DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0018547-yqgM-K16150NANA
AK018_057291062mshA_8D-inositol-3-phosphate glycosyltransferaseGTGAGCAGCATCATCACCTTCGTCACCACGGCGAGCCCGGCACCGATGGGGATGCAGGTGTACGAGGAAGAGGTGATCGGCCGTTCCCAGCGGGAGCTGGGCGACGAGGCGACCACCACCCGGACGATCCTGCGGTCCCTGCGCTCACCCCTGCCGGGCACGCACCGTGTTCCCGCCAGGCTGCTGATCGACGCACCGACCTCCCTCCGGCGCGCCGTGGGCGGCGTCCTCTACCGCGGCGCCGACGTCGTGCACCGCATGAGCCTGGGCCACCCCCCGGCGCGGGTGCCGGAGATCGTCACCATCCACGACACCGTGGCTTGGCGGTTCCCCGACGAGGTGTCCCCCGAGCCCTTCGCGGCAGCCGAGACCCGGCGTGCCGCGGCCGTCATCGCGCCGTCGACCTTCTCGGCCCACGACGTCGCCGAGCGCCTGGGCCTCGACCGTGTCATCGCGATACCCAACGGGGTGGACGCGCGGTTCTTCGACGCCGACCCGCTCGACACCGCGGCGCTGGAGGCGCGCGGCGTGCCGGGCCGGTTCGTCCTGCACGCGGGCGGCTCGGCACGGCGCAAGAACCTCGACGCGCTGGCCGCGGCGTGGCCCGCGGTCCGGTCCGCCCACCCGGACGTGTCGCTCGTCCTGTGCGGGCCGGAGTCGGACCGCCGCACGGCGCTCTTCGGCCCCCTGGACGGCACCGTCCTGACCGGGCGGCTCCCTGACGAGGTCCTGACCGGGCTCGTCGCCGCGGCGGAAGCGGTCGTCGTCCCCTCCCTGCACGAAGGGTTCGGCCTGCCGGCACTGGAGGCGATGGCGGCCGGGACCCAGGTGGTCGCCGCGAACCGCACCGCGCTGCCGGAGGTCGTGGGCGAGGCCGGCATCCTGGTCGAGCCCGACGCCGCGTCGCTCGCCGACGGACTGGTGCACGCCCTCGACGGCGACGGGGCCGCGGAGCGCCGCCGCGCCGGCCGGTCCCGGGCCGCGGGCTTCACCTGGGAGGCCAGTGCGGCCGCGCACGGCATGGTCTGGCGGGACGTCCTCGCCGGCCGGTCGCCGGCGTGAMSSIITFVTTASPAPMGMQVYEEEVIGRSQRELGDEATTTRTILRSLRSPLPGTHRVPARLLIDAPTSLRRAVGGVLYRGADVVHRMSLGHPPARVPEIVTIHDTVAWRFPDEVSPEPFAAAETRRAAAVIAPSTFSAHDVAERLGLDRVIAIPNGVDARFFDADPLDTAALEARGVPGRFVLHAGGSARRKNLDALAAAWPAVRSAHPDVSLVLCGPESDRRTALFGPLDGTVLTGRLPDEVLTGLVAAAEAVVVPSLHEGFGLPALEAMAAGTQVVAANRTALPEVVGEAGILVEPDAASLADGLVHALDGDGAAERRRAGRSRAAGFTWEASAAAHGMVWRDVLAGRSPANANANANANA
AK018_05730843hypothetical proteinATGCGACGCCACGCCTACGTCCTGGCTGCGGACCCGCACTTCCTGACGGCGAGCATCCGCTCCTACTACGACCACGTCGACCGGATCGTCGTCTCCTACGACAGGACGTCGACGTCCTGGACCGGCACCCCCGTCCCGGTCGGGCAGTGCCTCGCCGCGGTGCGGGCGCTCGACGTGGAGGGCAAGTGCGTCGAGGCGCCCGGCTCGTTCGCCGACCTCGACCGCGACCCGCTGGACAACGACACCCGCCAACGACAGGTCGCGCTCGACCAGGCGTCCGACGGCGCGGACTGGGTCGTCCAGCTCGACACGGACGAGGTCATGGCCAACCCCCACCGGTTCTTCAGCGTGCTCGACCACGCGGACGAGGCGGCGGCGGACGGGCTCGACTACCCCGCCCGCTGGCTCTACACCCGCGTCGGCCACGAACGGTTCCTGGAGTCCAGCAGCCGGTTCGGCAGACCGGCGGCCAGCTTCCCCGGCCCCCTCGCCGTGCGGTCCGGGACGACCCTCGCGCTGAGCCGGCAGGCCGACGTCCCGCTCTACCGGGCCGATCTGCGCCCCTGGAACACGGACACCCACCATCCGCGGACCGCCGTCGTCCACGAGGTCGTGGACCTCCACGACGCCGTGGTGCACTACTCCTGGGTGCGGCCCCCCGAGGTCATGCGCCGCAAGTTCGCCTGGTCGGGGCACGCGGCCGAGTACGGCCGCAAGGGCGTCTACGAGCGGTGGGAGTCGTTCACGCGGCGCCCCCGGCTGGCCGCCCTGACCTCCCCGCTGCGTCCCGACGACTGGTTCCGGGTCGGGCGCGTGCCGGACGCCGAGAAGGAGTCGCTGTGAMRRHAYVLAADPHFLTASIRSYYDHVDRIVVSYDRTSTSWTGTPVPVGQCLAAVRALDVEGKCVEAPGSFADLDRDPLDNDTRQRQVALDQASDGADWVVQLDTDEVMANPHRFFSVLDHADEAAADGLDYPARWLYTRVGHERFLESSSRFGRPAASFPGPLAVRSGTTLALSRQADVPLYRADLRPWNTDTHHPRTAVVHEVVDLHDAVVHYSWVRPPEVMRRKFAWSGHAAEYGRKGVYERWESFTRRPRLAALTSPLRPDDWFRVGRVPDAEKESLNANANANANA
AK018_05731975hypothetical proteinGTGAACATCTCGTCCGGCGTGCTGCCGACCGTCAGCGTGGTGATCATCACCTACGCCCGCCCCGACTACGTCCAGGAGTGCCTGGAGCACCTCGGCAAGCTCACCACGGCGCCGCACGAGGTGATCGTCGTGGACGGATCCCCCGACGACCGGACACGCCGGCTGGTCCGGGATCTCTTCGACGGTGTGCGGCTCGTACCGCACCGGCTCGGCCCGGGCACCATGCCCGAGTCCCGCCAGCTCGGGCTCGAGGTCGCGAGCGGTGACGTCGTGGCCTTCATCGACGACGACGCGTACGTCGACCCGACATGGCTGGACGAGCTCGTGACGCCCTACGCCGACCCGTCGGTGCACGGCGTGGGAGGCAGGGCGGTCAACGGCATCGAGGGCGAGGAGACCGAGGGTCTCGGACAGATCGGCAGGTTCCTGCCGAACGGCATGCTGACGGGCGGGTTCGGTGCGGACCCCGGGCGCCCCGTCGAGGTGCACCACATGCTGGGTGCCAACATGTCGTTCCGCCGCAGCGCGCTGCTGGCGATCGGCGGGATCCGCGGCAACTATCCCGGGACGTGCCTGTGCGAGGAGTCGGACATCTCGTTCCGCGTCCGTGCCGCCGGTGGACGGCTCCTGTACCAGCCCGACGCCGTCGTGCGGCACGTGGCTGCGCCGTACACCACCGGCGGCCAGCGGTTCGACCGCCGGTACCTCTACTACGCACGCAGGAACCATCTCGTGCTGCTGGTGCGCAACCTCGGCTGGCGCGCCCCGGTGGTCCGCCACTTCACGTGGACCGTGCTCCGCAGCCAGCGGCACTACCTGCGCAAGGCGGTCGACCGCCTCCGGAAGGGGCGTGTCGTGGGTGCCGTGCTGATCGCCAGCCGCGCGGTCTTCGAGGTGGTCGGTCTCGCTGCGGGAGTCCCTGCCGCCCTCGTGGCTCGGAGCCGGGACCGGCGGGCCGGGGTCCCTACGCCATGAMNISSGVLPTVSVVIITYARPDYVQECLEHLGKLTTAPHEVIVVDGSPDDRTRRLVRDLFDGVRLVPHRLGPGTMPESRQLGLEVASGDVVAFIDDDAYVDPTWLDELVTPYADPSVHGVGGRAVNGIEGEETEGLGQIGRFLPNGMLTGGFGADPGRPVEVHHMLGANMSFRRSALLAIGGIRGNYPGTCLCEESDISFRVRAAGGRLLYQPDAVVRHVAAPYTTGGQRFDRRYLYYARRNHLVLLVRNLGWRAPVVRHFTWTVLRSQRHYLRKAVDRLRKGRVVGAVLIASRAVFEVVGLAAGVPAALVARSRDRRAGVPTPPGPT0024600_9DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_S-LAYER_GLYCOPROTEIN_DECORATION,PGPT0024600-aglG-K22844NANA
AK018_057321209btuD_24Vitamin B12 import ATP-binding protein BtuDGTGACTGCGACACCCGCTCTCTCGGTCGACGGACTGGGGAAGACGTACCGCCTGGGGGCCCAGGGCGAGCGACCGGACACGGCTGTCCAAGCCGCGTTCCAGTGGCTCAGGTCCACCGGCAAGGCGAAGTACACGCTCTTCGACGCGCTGGACGACATCACCTTCGAGGTGCCGAAGGGCGAGGCGCTCGGCATCGTCGGGCGCAACGGCGCCGGCAAGTCCACGCTGCTGAAGCTGCTGACCCGTGTCACCGGACCCACCCGCGGCCAGATCACCCTGAACGGCCGGGTGGGTTCCCTCCTCGAGGTCGGTACCGGCTTCCACCCCGAGCTGACCGGCAGGGAGAACATCTTCCTCAACGGCGCGATCCTCGGCATGACGCGCAAGGAGATCCTGCGCCGCTACGACGAGATCGTGGACTTCTCGGGCATCGAGAAGTTCCTGGCCACGCCGGTCAAGCGCTACTCCTCCGGGATGTACGTGCGACTGGCGTTCTCCGTCGCGGCCCACCTGGACACCGAGATCCTGGCGATCGACGAGGTGCTGGCCGTCGGCGACGCGGAGTTCCAGCGCCGGTCCATCGCCAAGATGCGCGAGGCCGCCAACGGGGGCCGGACGGTGCTCTACGTCAGCCACCAGCTCCAGACCGTCCAGGCGCTGTGCAGCTCGGCGCTCCTGCTCGACCGGGGACGGCTGACCTACTCGGGCACGGTCGAGGGCACGCTGGAGGCCTACCGGCACAGCTTCGAGAGCTTCGCCGCCGCCCAGACCGACCCGGACGCCCGGCCGGGCGACGGCCAGGTGCGACTCTCCTCGGTGTCGATGTCGGACGTCTTCGTCAAGTCCTCCGACGACATCGCGGTGGACTTCGTGGCCCCACCGAGCAAGCACCTCGTGGGCACGTACTTCGTCTCCATGCACATCAACAACGACCAGGGTGCGGTCATCGCCCAGTGCGACTCCCGGCTCGTCGGCCAGTACTTCGACCCGAAGCGCGAGGAGCGGGGCACGCTGGTGATCCGCGACCTGTGGCTCAAGCCGGGCCAGTACACCGTGGACGTCTTCGTGTGCCAGTCCGGCGTCCTCGACGCCTGGGAGGGTGCCTGGAAGTTCGAGGTCCTCCCGGACCTGCCCTACCCGGAGTTCACGGAACCGTCCGGCACGGCGAAGGGGCTCGTCTTCGTCGACTTCGACTACGAGAGGTCCTGAMTATPALSVDGLGKTYRLGAQGERPDTAVQAAFQWLRSTGKAKYTLFDALDDITFEVPKGEALGIVGRNGAGKSTLLKLLTRVTGPTRGQITLNGRVGSLLEVGTGFHPELTGRENIFLNGAILGMTRKEILRRYDEIVDFSGIEKFLATPVKRYSSGMYVRLAFSVAAHLDTEILAIDEVLAVGDAEFQRRSIAKMREAANGGRTVLYVSHQLQTVQALCSSALLLDRGRLTYSGTVEGTLEAYRHSFESFAAAQTDPDARPGDGQVRLSSVSMSDVFVKSSDDIAVDFVAPPSKHLVGTYFVSMHINNDQGAVIAQCDSRLVGQYFDPKREERGTLVIRDLWLKPGQYTVDVFVCQSGVLDAWEGAWKFEVLPDLPYPEFTEPSGTAKGLVFVDFDYERSPGPT0023305_1193DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023305-ABC_2_LPSE_A|wzt|rfbB|tagH-K09691NANA
AK018_05733831tagGCOG1682Teichoic acid translocation permease protein TagGGTGGAGACCGTCGTCCCCACCATGGTGATCAAGCCGTCCGGGCGGCTCAACATGCCCGCCTGGGGCGAGCTGTGGCGAGCCCGCGAGGTCGCCGTCCGTCTCGCCCAGCGGGACATCATCGTCCGGTACCGCCAGACCTACCTCGGCATCACCTGGGTCCTGGTCCAGCCCCTCGTCAGCGCCGGCATCTTCACCATCGTCTTCGGGGAGATCGCCGGGCTGTCCACCGGGGAGGTGCCGACCTTCGTCTTCACGTTGGTCGGGATGCTCGCCTGGAACCTGTTCAGCGGCTCGTTGAACAGGTCGTCGGCGTCGATGGTCGGCAACCGGGCGCTCGTGCAGAAGGTCTTCTTCCCACGGCTGCTGGTGCCCCTGTCGAGCCTGGCCTCGCTGGTGCTCGACTTCCTAGTCGCGCTCGTGCTCGCCGTCTGCCTGCTCTTCGCCTTCTCGATCAACCCGGGATGGCCGGTGCTCCTGCTGCCCGTGTGGGTGCTGCTCATCCTCCTGGTGGGCACCGGGATCGGCCTGGCGGCAGCCGCCTACATGGTCAAGTACCGCGACGTCGGCTACGTCCTGCCGTGGCTGGTCCAGCTCATCATGTACGGCAGCCCGTTGGCCTACCAGGTCTCGGAGGTGCCCGACCACCTGCGGTGGATCTTCGAGATCAACCCGGTGACATGGTTCCTGGAGGCGTTCCGCTGGTCCCTGATCGGCACCGACCCGCCGGCAGGGTGGCAGATCGCTGCGCTCGCCGTGGCCGCACCGCTGTTCTTCCTGGTGGGAACGCTGATCTTCCAGAAGAACGAGCGCGAGTTCGCGGACTACATCTGAMETVVPTMVIKPSGRLNMPAWGELWRAREVAVRLAQRDIIVRYRQTYLGITWVLVQPLVSAGIFTIVFGEIAGLSTGEVPTFVFTLVGMLAWNLFSGSLNRSSASMVGNRALVQKVFFPRLLVPLSSLASLVLDFLVALVLAVCLLFAFSINPGWPVLLLPVWVLLILLVGTGIGLAAAAYMVKYRDVGYVLPWLVQLIMYGSPLAYQVSEVPDHLRWIFEINPVTWFLEAFRWSLIGTDPPAGWQIAALAVAAPLFFLVGTLIFQKNEREFADYIPGPT0023304_851DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023304-ABC_2_LPSE_P|wzm|rfbA|tagG-K09690NANA
AK018_057341188mshA_9D-inositol-3-phosphate glycosyltransferaseATGCGTGCGCGCCCGGTCCACCTCATCACCCCAGGCGACCACTACTCGCCCTCGACGGGTAGTGCGGTCCCGAGCGTCGTGCACGGTCTGAGCGCAGCCGCCGTCGGCTCCCGGCCCGCGGTGCTCGTCGCCCGGGGGACCTACTCCGACCGCTACGCCAGCGCGGACGTGGTGGAGTACGAGGACCCGCCCACGTCCTGGCTGGCCACCCGGGCGGGCCGGTACCTCGACGTCGTTGCGGGACCGACCCTCGGGACGCGCCCGACGGCACGACGGCGGCTCCGAGCAACGCTCGGGGGGCAGTCCGAGTGGGCCGACTCGGTGGTGCTCGCCCACAACCTCCCGCAGGCCGTACCGCTGGTCGACGAGACGAGGCACCTGCCGGTGCTGTATGCGCACAACGACCTCCTGCGCACCTACACGCGCCGCGAGGCAGGCCGCGTCCTCTCCCACGCCGGTGCCGTCGTGTGCGTCAGCGACTACCTCGCCGAGGTCACCGCAGGGCGTCTCCCTCGAGAGATCGCTGCCCGCGTCGCGGTCGTCCGCAACGGCGTCGACGCGAACCAGTTCGCGGCTCCTCCCCGACCGGCCGACGACCATCTCCGGGTGGTGTTCATCGGCCGCGCCATCCCCGACAAGGGGGCACACGTGCTCGTCGACGCGGTGGTCCGGCTCGACCGACCCGACATCAGTCTCGAGGTCGTCGGCGGCGCCGGGTTCGCCCCGGATGCGCCGCTGACCCCTTACGAGGAGAACCTGAGGCGCCGGGCGGCGCCCGCCGGGGACCGGGTCACTTTCTGTCCGTTCGTCCCGCGCTCCGGCGTCCCGGAGGTGCTGGGCGAGGCCGACGTCGCCGTCGTCCCCTCGGTCTGGCCGGACCCGTGTCCGTTGACCGTCCTCGAGGGCGCCGCGTCGGGTGCCGCGGTCGTGGCGTCCCGCATCGGCGGGATCCCGGAGATCGCCGGACCGGGAGCCGTTCTGGTACCGCCCGGCGACGTCGACGAGCTCGCCGCCGCCCTCGAGGCGCTGGCCGACAGCGCGTCGGAGCTGCGCCGCCGCCAACGCGCGTCCGCGGAGCACGCGGCGGCGTCGTCGTGGGGTGCGGCCGCCGAGCGGCTCGACGCCGTCCTCGTGGGGGTCGGGCAGCCGGCGACACCCGGCGCAGCCGCACGAGGCGACGCAGCGTGAMRARPVHLITPGDHYSPSTGSAVPSVVHGLSAAAVGSRPAVLVARGTYSDRYASADVVEYEDPPTSWLATRAGRYLDVVAGPTLGTRPTARRRLRATLGGQSEWADSVVLAHNLPQAVPLVDETRHLPVLYAHNDLLRTYTRREAGRVLSHAGAVVCVSDYLAEVTAGRLPREIAARVAVVRNGVDANQFAAPPRPADDHLRVVFIGRAIPDKGAHVLVDAVVRLDRPDISLEVVGGAGFAPDAPLTPYEENLRRRAAPAGDRVTFCPFVPRSGVPEVLGEADVAVVPSVWPDPCPLTVLEGAASGAAVVASRIGGIPEIAGPGAVLVPPGDVDELAAALEALADSASELRRRQRASAEHAAASSWGAAAERLDAVLVGVGQPATPGAAARGDAAPGPT0018547_746DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0018547-yqgM-K16150NANA
AK018_057351209hypothetical proteinGTGAGCACCGTGACCTCGGTCCGCTCCGGGACGACGACCCGGACACTGGCGATCGACGACGTCGGCGGCGCGGACGCGGCACGCTGGGCGGAACTCGCCGACCGCGCGCTCGACCCGCACCCCTTCCTGCACCCGGACTTCGTCCTGCCGGCTCGGCGGCCGTTCCCGCCCCGGGAGTCCGGCAGGCCGTTCCCGTCGGCCCTCGGGCTGCGACTGGTGGTCGTGGAGCGTGACGACAGGTGGCTCGCTCTGCTCCCGGTGGCCCGGCGACCACGCTTCGAGGGCACCCCCCTGCCCTACACGACGACGGCAGGACCGTTCGTCGACACCCGGGCCCCCGTGTGCGCTCCCCTGGTCGACCGCGACCACGCGACGGAGGCCGTGGACGCCCTGCTGGACCACCTCGCCTCGCGCAGGTCGGGCCTGCCCGGGCTCGTCGAGCTCACGCTGGTCCCCACCGGCTCCCTCACCGAGCTCCTGCGCGAGCGGGCGGCACGCCGACGCGTCCCGATCCGTGTGCGATGGGAGTTCGAGCGCTCCTGCTGGACTCCGACCGACGAGTCCTGGCGCCGACGGGTGAGCGGTTCGCGCCGCTCGAAGCTCAAGCGCTGGGCTGCTGCGATCGCGCGGGAGACCGGCGCCGAGCTCCGGGTACGCGACGCGGCAGACGTCCCGACCGCCCTGGACCGCGTTCTCGATCTCGAGGCCTCCGGGTGGAAGGGGGATCGTGCGAGCCGCGGCGGAGCGCTCCGCCGGGTGCCCGGAGCCTCGGAGTGGGTCGCCGACGTCGCCCGCGGGTTCCGCGAGCGGGGACGGCTGCACGTCTTCCTGGTGGAGGCCGGCGACCGACTCGTCTACGGAGCCGTCTGTCTCGAGGCGGGGACGTCCGTCTTCGGTGTGCTCGACGCCTACGACGACGATCTCGCCGCGTCGAGCCCCGGCTCGGTCGGTCGCGCCCTCGTGCTCGACCACGTGGAGAGCACCGGGGGGACGTTGTTGTTCGACCCGTGCATGCACCCTCGCTACGAGGTCGCGTCAGGCGTCTTCCCCGACCGCCGCACCGTCGTCGGGCTGCTCGTCGGCGCGCGCGGCCCGGGCCGCGCTCTCGTGCGCTGGCACGACCCTCTCGTCAGGGTGCGCGGGAGCGGGCGCCGGGTACGGCGTGCGATCGCCACACGTCTGCCGGCCGGTCGGGGAGCGGCCCGATGAMSTVTSVRSGTTTRTLAIDDVGGADAARWAELADRALDPHPFLHPDFVLPARRPFPPRESGRPFPSALGLRLVVVERDDRWLALLPVARRPRFEGTPLPYTTTAGPFVDTRAPVCAPLVDRDHATEAVDALLDHLASRRSGLPGLVELTLVPTGSLTELLRERAARRRVPIRVRWEFERSCWTPTDESWRRRVSGSRRSKLKRWAAAIARETGAELRVRDAADVPTALDRVLDLEASGWKGDRASRGGALRRVPGASEWVADVARGFRERGRLHVFLVEAGDRLVYGAVCLEAGTSVFGVLDAYDDDLAASSPGSVGRALVLDHVESTGGTLLFDPCMHPRYEVASGVFPDRRTVVGLLVGARGPGRALVRWHDPLVRVRGSGRRVRRAIATRLPAGRGAARNANANANANA
AK018_057361152hypothetical proteinATGATCGACGGCGCCATCACCGTCCGAGCGATGGACGTCTCCGCCGTCAAGGACGGCGAGGCGGCACGCTGGGCCCGGCTCACAGCCACGACGCTGGAACCGAATCCTTACCTGCACCCGGCCGTGGTGCTGGGTGCGCACCGCTGGATGGGCAGCACCGAGGGGCTCTGGCTGGTCGTCGCCGAGGAAGGTGACCGGTGGGTCGGTGTCCTCGGACTGCGCGTCCTCGGTCGCTTCCCGGGGACACCGCTGCACTACGCCTCGACCACGGGGCGCGTCCTGGAAGAGGTCGCGGCGGTCCGCACCCCCCTGATCGACCGCCGGGCCGCGACCGACGTGCTCGAGGCGATGCTGCGGTTCCTCGGCTCGCCCGAGAGCCCGGTCCCCGGACTCGTCGAGCTCACGTGGCAGCTCGGCGACGGTCCGTTCGTCGAGATCCTGCGGCACGTCTGCCGTCGGCTGCGCATGCCGTGCCAGGTGCGGGCCCGCTTCGAGCGTGCCTACGCCTACGCGGACCCGGGCCGCAGCCCCCGGGAGCATCTCAGCAGCCGTCGCCGCAAGCAGCTCGGCCGCCACACCCGTGGCCTGGAGCGCGAGCTCGGGGCCACCCTGGAGCTCGTCGACCACGGCGGCTCCCCGGGGGCGGTCGACGCGTTCCGCAGGCTGCGCGACGCCGGCTGGAAGGGACGCCCGCACGACGACGACGTCCCGCAGGAGCACCGTGGGGGTTGGTTCGTGGAGGCGATGTCCGCCTTCGCCGACTCCGGGATGCTGCACGTGTTCGAGCTGCGCGGCGGCGGGGTCGCGCTCTACATGTCGGTCGTCGTCCGGGCCGGAGGGACCTGCCTCGGCATCGCGGACACCTACAACGAGGACTACGCCAGGTACAGCCCCGGAGCCCTGGGGCGGCTGCTCGAGCTGGAACACCTGATGACGGTCGACGGGGTGACCGAGGTCGACCCGTGCCTGCACCCGCGTTACGTCGAGGCCACCGGGCTCTACCCCGACCTCCGCCCGACGCTCACCCTGCTCATCGCGACCCGCGGCGCGGCACGTCTGCTGCTGCCTGCCCGTCCGGCGGTCGCTGCCGCGGGCAGGACGGCGGCGACGGCCGTGGCCGGGGCCCGTCGCCTCCTCCGGAGCGGACGATGAMIDGAITVRAMDVSAVKDGEAARWARLTATTLEPNPYLHPAVVLGAHRWMGSTEGLWLVVAEEGDRWVGVLGLRVLGRFPGTPLHYASTTGRVLEEVAAVRTPLIDRRAATDVLEAMLRFLGSPESPVPGLVELTWQLGDGPFVEILRHVCRRLRMPCQVRARFERAYAYADPGRSPREHLSSRRRKQLGRHTRGLERELGATLELVDHGGSPGAVDAFRRLRDAGWKGRPHDDDVPQEHRGGWFVEAMSAFADSGMLHVFELRGGGVALYMSVVVRAGGTCLGIADTYNEDYARYSPGALGRLLELEHLMTVDGVTEVDPCLHPRYVEATGLYPDLRPTLTLLIATRGAARLLLPARPAVAAAGRTAATAVAGARRLLRSGRNANANANANA
AK018_05737963hypothetical proteinATGACCGCAGACGCCCCCGTGCTGAGCGTGATCATCGCCGCCTACGACGCCGAGTCGACCCTCGGCGCCCAGCTCGACGCGCTGGAGCGCCAGCGCCCCACGTGGCCGTGGGAGGTCCTCGTGTGCGACAACGGGTCCACGGACGGTACCCGGGCGCTCGTCGCACAGCACCGACGCCGGATGCCGGAGCTGCGCCTCGTGGATGCCTCCGCCCGCCGCGGGCCGGCCGCGGCGCGGAACATCGGCGTCGAGCGGTCACGCGGCAGGTCCGTCGCGTTCTGCGACGCCGACGACGTGGTCGGCGAGGGGTGGGTCGAGGCGGTGCGGCGCGCACTGGACGACCACGAGATCGTCGCGGGACCGTTCGAGGTCGAGATGCTCGGCGGCGGGTCTCCGTTCCAGGTGACCTGGTCGCCCCAGCTCGACGGTCTGACGCGCAGCGGCGTCCTCGCCGGGCTGGTGACCGCCGGCGCGGGGAACCTGGCGCTGCACCGCACCGTGTTCGACGCCGTCGGCGGGTTCGACGAGACGTTCCGGACGGCCGAGGACGACGACTTCTGCCTCCGGCTCCAGGTCGCCGGGCACCGGTTCTCCTACGAGCCGGCGATGGTCCTGCACGTGCGGCGTCGCGGTGGGCTGCGCCAGGTCGCGCGACAGGCCTACGCCTATGGGGCGGGGCACCGGCTGCTCGAGCACCGGTGGGCCCGGGTGGCCGCGTCGTGGCAGCCGCAGGAGCCGGTGGCCGGCGGGGAGACCGGAGCGCGGCCCGCCACGTCGCGGGCGCAGGAGGTCCGCGTCCGGGCCGTCGTGCTCGGCCGCGCTCTGCGACTGGCCGTGCGGCTGTGGCGACCGGACAAGCTCGCGGACGCCGTCTGGAAGGCCTCGTGGGCACTCGGCCACCGGTTCACGGACCCCGGCGGGACGGCCCAGCTGCCTGCGCCGGACGTCAGCCGCTCGGTCTGAMTADAPVLSVIIAAYDAESTLGAQLDALERQRPTWPWEVLVCDNGSTDGTRALVAQHRRRMPELRLVDASARRGPAAARNIGVERSRGRSVAFCDADDVVGEGWVEAVRRALDDHEIVAGPFEVEMLGGGSPFQVTWSPQLDGLTRSGVLAGLVTAGAGNLALHRTVFDAVGGFDETFRTAEDDDFCLRLQVAGHRFSYEPAMVLHVRRRGGLRQVARQAYAYGAGHRLLEHRWARVAASWQPQEPVAGGETGARPATSRAQEVRVRAVVLGRALRLAVRLWRPDKLADAVWKASWALGHRFTDPGGTAQLPAPDVSRSVNANANANANA
AK018_05738807hypothetical proteinATGATCGCCTCGACGTGGCCCTTGCTCGTGCGGCGGTCGGCCCTCGAGGGCGCCGCGGCCGGTGGCGGAGGACGGTTCCGTCGTGCTGCGGTCCCGCCGTTCCCGGTGCCGGGGCGTCTGGCCGGCGACTTCGGCGTGTACTGCGCTGACACGACCGAACGGGTCGTGGCTCTCACCTATGACGACGGGCCGCACCCGGAGCACACGCCGCGTCTTCTGGACGTGCTGGCCGATCAGGGCGCGACGGCGACGTTCTTCGTGCTCGCGCCGCAGGTGGTGAAGCATCCGACGGTGGCTCGACGCATCGTGGCGGACGGTCACGAGATCGCGCTGCACGGCCCTCATCACCGCTCCCTGCTCACCATGGGTGACCGGGAGGCCGTCGTCGCGGTCCGCGGCGCGCGCGAACAGGTCGAGGACGCGGTCGGGACCGCCGTCGGGCTGTACCGACCGCCGTACGGGCACCACACCCCGGGGCAGGCCCGCGGCATCCGCGCCTCGGGACTCGAGCTGGTCATCTGGTCGGCGGACGCTCTCGACTGGCGCCACGACAGCGTCGAGAACATCGTCGCCCGCGTCCGGGCAGGCGTCTTCGCCGGAGGCGTCGTGCTGATGCACGACCACCGTGCGGACCCGGAGGCCGCGACCGATCCCCTGGAGCTGCCGAGGTTCGACCGTTCTGCGGTGCTGACGTCCGTCCTGAGCGGGCTGGCCCAGGACGGGTTCCGCACGACGACCGTGGGGGGCCTGCTCCGCGCGTACCGGCCCGTCCGGAGCAGGTCGGCGACGGTCAGACCGAGCGGCTGAMIASTWPLLVRRSALEGAAAGGGGRFRRAAVPPFPVPGRLAGDFGVYCADTTERVVALTYDDGPHPEHTPRLLDVLADQGATATFFVLAPQVVKHPTVARRIVADGHEIALHGPHHRSLLTMGDREAVVAVRGAREQVEDAVGTAVGLYRPPYGHHTPGQARGIRASGLELVIWSADALDWRHDSVENIVARVRAGVFAGGVVLMHDHRADPEAATDPLELPRFDRSAVLTSVLSGLAQDGFRTTTVGGLLRAYRPVRSRSATVRPSGPGPT0018645_4228DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
AK018_05739909hypothetical proteinGTGAGCCCGAGCGCCCGCCCCACGGTCACCGTGATCATCCCGGTCCACGACGACGTCGACCGGCTCGGAGTCTGCCTCGCGGCGATCCAGGCACAGGACTACCCGCCGGAGCTGGTCGACGTCGTCGTCGCCGACAACAACTCGACCCAGGACGTCCGGTCGGCGCTGCCCGTCGACGACGCTCGCTTCACGCTGGTGCACGAGTCGCGCCCCGGCTCCTACGTGGCACGCAACGCAGCCGTGCAGGAGGCTCGCGGCGAGATCCTCGCGTTCACCGACGCAGACTGCATCCCTCGGCCGCAGTGGCTGAGCGCAGCGGTCGACGCGCTCGGCGGGCCGGACGCCCCGGACGCCGTCGGTGGTGACATCGCCATCAAGTTCCGCGCGGGGACGGCGCCGACCACGGGACCCGAGCTCTACGAGGACTCCGAGGGGTTCGACCAGGAGAGCTTCGTGCGCCACAACCATTTCGCCGCGACCGCCAACCTCGTGGTCCCGGCCGAGGTGTTCACCGCCGTCGGGCCCTTCAACCCCGCGCTCCGTTCCGGTGGCGACCTGGAATGGGGCCAACGTCTCGCGAGGACCGGACGGCGCATGGCGTTCGCGCCGGACGCGGTCGTCGACCACCCGTCACGGCCGACGTGGAGCGAGCTCACCCACAAGACGATCCGCATCGCGAACGGCCATGTGGACCTCACGCTCGACCCGGAGACCGCCGGGTTCGCGGACCACTCCTGGCACGACCCCAAGCAGACCTTCACGATCTGGCTGAGGGTCTGGCAGCATCCCTGGCCGGACGACGCGGCGCAGAAGCTGAAGTTCGCCGCGGCGCGCAGCTGGGCCGGACTGCTCGAGCTCGGGGTGCGGGCGCGCCGTGGCGAGCTGGCCCGGAGGCTGCGGCGCGCCTGAMSPSARPTVTVIIPVHDDVDRLGVCLAAIQAQDYPPELVDVVVADNNSTQDVRSALPVDDARFTLVHESRPGSYVARNAAVQEARGEILAFTDADCIPRPQWLSAAVDALGGPDAPDAVGGDIAIKFRAGTAPTTGPELYEDSEGFDQESFVRHNHFAATANLVVPAEVFTAVGPFNPALRSGGDLEWGQRLARTGRRMAFAPDAVVDHPSRPTWSELTHKTIRIANGHVDLTLDPETAGFADHSWHDPKQTFTIWLRVWQHPWPDDAAQKLKFAAARSWAGLLELGVRARRGELARRLRRANANANANANA
AK018_05740942hypothetical proteinATGACCGAGGCCTCGACCGAGGAGCAGGTGCCCGCCTCGCGGGAGCTTCCCTCGGTCACGGTGATCGTCCCCGTCTACGACGACCTCGACCGCCTGCGCCTCTGCCTGCAGCACCTCGGGCGTCAGGACTACGCGGGCACCTTCGACGTCGTCGTGGTGGACAACGCGTCCAGCGTCGACCTGCGTGCAGGGCTCCCGCCCGAGGACCCGCGGTTCGTGCTGGTGCGCGAGGAACGACCCGGTTCGTACGCGGCTCGCAACGCCGGCCTCGCGCACGCCTCGGGTGAGCTCGTCGCCTTCACCGACGCCGACTGCCGGCCCCGCCACGACTGGCTGTCCGAGGCGGTCGCCGTGCTCGCCGGACCGCTCGCCCCGGACGCCGTGGGCGGACGGATCCACCTGGTCTACGAGCAGGGCGAAGAACCGGTGAGCGGCCCCGAGCTGTACGAGTCGCTCAACGACTTCGACCAGGAGTCCGACGTCGCGAACCACCACTTCGCCGCCACCGCCAACCTCGTCACCACGCGGGCCGTCCTCGACCGGGTGGGGCCGTTCGACCTCTCCCTGCGGTCCGGCGGCGACCTGGAGTGGGGCGGACGGCTGCACGCCGCCGACGGACGTCTCGTGTACGTCGACAGCGCCGTCGTCGACCACCCCTCGAGATCCACCTGGGGCGACCTGACCCGCAAGTCCGCCCGTGTCGGTCGCGGGCTGGCGTCCCTCGCCGCCGGGGAGGGCGCTCGCGCCGACCTCCGGTTCTGCGCGGCGCAGGCCCGTTCGGTCGCCCGCGCCGCGGTGACCACCGTGCGGGAGGGACGACCGCCGACGGCGGGCGCCAAGGTGCGCTACGTCCTGGCGTTCGCGTGGTCGCGCACGGTGTGGTGCGCGGTCCGTGTGCGTGCCCGTCTCGCGCCCGAGTCCGCCTCCTCCGTCCGGGAGTGAMTEASTEEQVPASRELPSVTVIVPVYDDLDRLRLCLQHLGRQDYAGTFDVVVVDNASSVDLRAGLPPEDPRFVLVREERPGSYAARNAGLAHASGELVAFTDADCRPRHDWLSEAVAVLAGPLAPDAVGGRIHLVYEQGEEPVSGPELYESLNDFDQESDVANHHFAATANLVTTRAVLDRVGPFDLSLRSGGDLEWGGRLHAADGRLVYVDSAVVDHPSRSTWGDLTRKSARVGRGLASLAAGEGARADLRFCAAQARSVARAAVTTVREGRPPTAGAKVRYVLAFAWSRTVWCAVRVRARLAPESASSVREPGPT0024615_22DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_S-LAYER_GLYCOPROTEIN_DECORATION,PGPT0024615-aglI-K23685NANA
AK018_057412265hypothetical proteinATGGTGCCTGGTACCGGACTGCCGACGTGGACGCGCGTGGTCGACGTCGGGGCGCCCGACGACGGGCTCGCGCGCGAGCTTGGGGCCGCCGGGATCGACCATTACCTCGGGCTGGTGGAGCCGCGCGCGCTCGACACCGTCCGGGAGTCCGCACGGGAGCGCGCCGCGCGCTTCCGACCGCTGGAGGACGTGGGCGTGGTCTCGCGATGCTCGGCGGACCTGCTCGTCCTGCGCTCCGGGTTCCAGCGGCTGGCCTGGGTCCCGGACGACCTGGCGGACTTCCGCTGGATCGCCGTGGAGCGGGCCGGCGCGGTCGCAGGCGTGGAGGTCCGTGCCGCGGTGCGGTTCGGGCTCGCCAGAGGGCGACTGCGCCACGCAGGGCGCTGGCAGCATGCGGGGTCCGAGTTCGACGTCTTCGACATCGGTGAGCCGGGACCGCGCCCGGAACGTGCCCGGACCTACTTCCATCCGGCCTGGGGTGTGGAAGGCCTCGCCGAGCGGCTGAACGACGCCGGTCTGAGCTATGCCGTGCTGCGCTGGTTCGAGGCGCTCCCGGTGATGGAGCCCGGCGAGGACCTGGACATCCTGGTCGCGGACGAGGACGTGCGCGCGTTCCGCGCGATCGTCGAGTCCGAGCCGGGGACCGTGCCCATCGACCTGTACAGCGTGTCGGGACTGTCCGGGACCGACTACCAGGGTGCCGCGTACTACGCCCCCGGCCTCGCGCGCTCGCTCCTCGCCGGGGCCGAGCCGCACCGCAGCGGGATGCGCGTCCCGGCCCCGACCGACCACCTCCACTCGCTCGCCTACCACGCGCTCTACCACAAGGGGACCCGGTCCGGGCTGGCGTCGACGCTGGTGGACGACGTCGTGGACGACCCCGAGCACGACTACCGGGTCGCGCTCGACAAGGTGGCCGCGACCTGCGGCGTCCAGCTCCCGCCGGACATGGAGGGTATCGACGCCTATCTCGGCGAGGTCGGCTGGCGTCCCCCGGTCGACGCGCTCCGGCGACTCTCGGTCCACAACCCGTGGCTGCGCGAGCTCCTGGGAGCAGAGAGCCCCGCTGCCGGGAACGGGCCGCAGCTCGCCGTCTTCCTCGTGCGCGAGCGGACGCTCGAGACCCTGCCCGAGCCGGTCGTCGTCGCGACCCTCCAGCGACTGGGCTTCGAGCCGCTCGTCGTCAGGCACCTCGACGAGAGGACGCGGGAGCTGGGATCGCGGCGCCTGCGGGGCGGGAACTGGGGTGCCGGACCCTATCCGGCGAGCGGCGGCAGGCCTGCCCTGCTCGTCGCGGCCGTCCACTACGCGCCGGACCCGGTCGCGCCCGACCTGCAGCACCGCTATCCCCACCTGACCAACGAGTCCATCTACTACGCCAAGCAGGCGGTCCGTGACACGCTCGCGGACCATGTCGACCCCGGGGCGATGTTCAACGCCATCCACTCCGCGGACGACGAGGCCGAGGCGTGGGAGTACCTGGAGGTGCTCGCACCGGAGGTGCTCGACGACGTGCGTGACCGGCTGCGACGGTGCATCGACCGGCAGAGCGCCGGTGCCGACGTCGTGCGGACGCTCAGCCGGGGCCGCCGTGCTCGCGTGGACGTGGTCGAGGGGCCTGACGGGCTCGAGGTGCGCAAGACCTTCGCCCCCGTCGGACGCGAGCACCTCCACCGCGAGGTGGAGGCGTTGCGGGCGCTCGGGGGCCGCGTCGCCGCCGTTCCCGCACTCCTCGACAGCGGGGACGACTGGTTTACGATCCCCTACTACGACGACTCGTTGCGGTTGCGACCCGGACGCATGCTCCCGCTGCGGACACTGCGTCAGATGGTCCGCATCCTGCGCGAGATCCACGACGCCGGCTGGGACCTCGTCGACGCCAGACCCGCGAACTTCGTCCGTGACGCCACGCACGGGCTGGTGGCCGTCGACTTCGAGTTCGCCTATCCTCGCTCGCCCCAGGACGCCACACCGTTCGCCGACGGTCCGGCGTTCCGCAATCCCGACCGGCGGCTCTACCCGGACCTGCCCGTCGGCGACTCGACCTACCGTGTCCGATGGCTGCCCGTCGTCGGGATGCCGCGGGACGTCCTGCTGTCCGGGTCGGCGTTCGAGCAGCGTGCACACCGCGCGCGGTACCGGGTGCGAGCCGCTACCGTGGGCCCCGACTCGCGGCTGCGCGGCGCGGCCCGCCGGTCGCGCGACCTCGCCCGCGAGCTCTTCCTGACGACGACCCGCCGACGCGCCTGGAGCGTTTCGCCATGAMVPGTGLPTWTRVVDVGAPDDGLARELGAAGIDHYLGLVEPRALDTVRESARERAARFRPLEDVGVVSRCSADLLVLRSGFQRLAWVPDDLADFRWIAVERAGAVAGVEVRAAVRFGLARGRLRHAGRWQHAGSEFDVFDIGEPGPRPERARTYFHPAWGVEGLAERLNDAGLSYAVLRWFEALPVMEPGEDLDILVADEDVRAFRAIVESEPGTVPIDLYSVSGLSGTDYQGAAYYAPGLARSLLAGAEPHRSGMRVPAPTDHLHSLAYHALYHKGTRSGLASTLVDDVVDDPEHDYRVALDKVAATCGVQLPPDMEGIDAYLGEVGWRPPVDALRRLSVHNPWLRELLGAESPAAGNGPQLAVFLVRERTLETLPEPVVVATLQRLGFEPLVVRHLDERTRELGSRRLRGGNWGAGPYPASGGRPALLVAAVHYAPDPVAPDLQHRYPHLTNESIYYAKQAVRDTLADHVDPGAMFNAIHSADDEAEAWEYLEVLAPEVLDDVRDRLRRCIDRQSAGADVVRTLSRGRRARVDVVEGPDGLEVRKTFAPVGREHLHREVEALRALGGRVAAVPALLDSGDDWFTIPYYDDSLRLRPGRMLPLRTLRQMVRILREIHDAGWDLVDARPANFVRDATHGLVAVDFEFAYPRSPQDATPFADGPAFRNPDRRLYPDLPVGDSTYRVRWLPVVGMPRDVLLSGSAFEQRAHRARYRVRAATVGPDSRLRGAARRSRDLARELFLTTTRRRAWSVSPNANANANANA
AK018_05742894hypothetical proteinATGGTGCGAGAACCGCTGGTGAGCGTCGTCGTCGCGACGAACCGGGGCGGCCCTTTCCTGGGGGAGGCGCTCGACTCCGTGCTGGCCCAGACCTACCGCCGCCTGGAGGTGCTCGTCGTCGACGACGGCAGCCCGGACGGCGCGGAGGTCGCCGACGCCCTCGCCGGGCGGCAGGGCGTCCGGCTCGACCGGATCGCCGCCACCGGGGTCTCCGGCGCGCGCAACCACGGTGTGCGGTCCACGTCGGGCGAGCTCCTCGTCTTCCTCGACGACGACGACCGGTGGCAGCCGGAGCGCGTCCGCCGGCAGGCGGAGCTGATGGTCGCACGCCCCGAGGTCGTCGCCTCGTACTGCGGGATGCGCACGATCGGGACGGACGGCGAAGAGCTCGTCGGTGCCGACCAGCGACCGGCGCGCACCCGCGCCGACGTCGTGCGCGGACCCGGCGCGATGCTGCCGAACCTCATGGTGCGGCGCACGGCGTTCGACGCCGTCGGAGGGTTCGACCCGGCGATCCGTCAGGGTGAGGACCTCGACCTGGTCCTCGCCCTGTCCGCGCTCGGTCCGCTCGAGCTCGTCGAGGACACCCTCGTCGACTACCGGTTCCACGGCGCGAACACGACCGCCCGCCACCGAGAGCTGGCGGAGTCCTTGCGCCGCATCCTGCGCAGCCACCGGCGGCGGGCCGCGGCGGAGGACCTGTCCGACGTGGTCGCCGCCTACGACGACCGGCTGGCGGCCAACGACCGGTTCGCGTGGTGGAGCGCGCTGCGGGCCGCGCGCTCGTCGTGGCGCGCACGGCGTCCGCTGCCGGCGCTGGGCGAGATCGCGTGGGCGGTCCGGTTCGCGCCCCGCGCCCCTGTGCAGCGGCTCCATGCCGGCCGATCGGGCTGAMVREPLVSVVVATNRGGPFLGEALDSVLAQTYRRLEVLVVDDGSPDGAEVADALAGRQGVRLDRIAATGVSGARNHGVRSTSGELLVFLDDDDRWQPERVRRQAELMVARPEVVASYCGMRTIGTDGEELVGADQRPARTRADVVRGPGAMLPNLMVRRTAFDAVGGFDPAIRQGEDLDLVLALSALGPLELVEDTLVDYRFHGANTTARHRELAESLRRILRSHRRRAAAEDLSDVVAAYDDRLAANDRFAWWSALRAARSSWRARRPLPALGEIAWAVRFAPRAPVQRLHAGRSGNANANANANA
AK018_057431992mshA_10D-inositol-3-phosphate glycosyltransferaseATGAGGGTGCTGCGCGTCTCGCACAGCGCGGTCGTCGACGCCTGGCGCGAGCGGGAACGCGCACTGGTCCGCTCCGGAGTCGACGTCGCGCTGCTCAGCGCGCGCGCCTGGGACGAGGGCGGGCGGCTCGTCCCCCTCGCGCCACGGCGCGACGAGGCGGTCGTCGGGGTACGGACCTGGGGGTCGCACCCGGCGCTGTTCGTGTACGACCCCGTGGCGCTCTGGAGAGCTCTGGGCACACCGCACGACGTGCTCGACGTCCACGAGGAACCGTTCTCGCTCGCGACCGCGGAGATCCTGGCGCTGCGGAGCCTGCGCGCGCTCCGACCCGGCCGGCAGACCGCGCCGTACGTGCTGTACTCGGCGCAGAACCTGCACAAGCGGTACCCGCCCCCGTTCCGCTGGTTCGAACGTCGGGCGCTGGCCGGCACCGCAGGCGTGAGCGTGTGCAACGACGAGGCCGGGCGGATCGTCAGAGAGCGCGGGGCGCGCCACGCCGTCACGATCCCCCTCGGCGTGGACCGGGACCTCTTCTCGCCCGATCCCGCCGCCGTCGCTCCCTCCGACCACCTGCACGTCGGGTACGCCGGGCGGCTCGCCCACCACAAGGGAGTCGACCTGCTGCTGCAGGCGGTGGCCGGCGACGGACGTCTGTCGTTGTCCCTCGCCGGCGACGGACCCGAGGCGGCCGGGCTGCGCGACGCCGCCGCCCCGCTCGGGGAGCGCGTGCGGTTCGTCGGGGCGCTGGCCGACCACGACCTCGCCGCCTTCTACCGATCGCTCGACGTGCTGGTCGTGCCGTCGCGGGAGACGCCGGGCTGGGTCGAGCAGTTCGGTCGGGTCGCCGTCGAGGCGATGGCCTGCGGTGTGCCGGTGATCGCGTCCGCCACCGGCGCGCTGCCCGACGTCGTCGGGGGCGCGGGCCTCCTCGTCGCCCCGCGGTCCGCGGCGCTGCACGGTGCGCTGGCCAGGCTCCTGGGCGAACCCGGGCTGTGGGCCGAGCTCCGGGCCTCCGGGCTGCGGCGCGCGCAGGAGTGCTCGTGGACCGAGGTGGCGCGAGGCTACGAGCACCTGTACCGACGCGCGCTGGGCGAGTCCGCTCCCGGCACCGGCGCGGGCACCGACGGCACCCCGCAACCTCCCGAGGTCGTCGTCGTCGCCTACGGTGCACCGGACCTGCTGCGCCAGGCGCTCACGCCGCTGCTGGGCAAGCTCCAGGTGACCGTCGTCGACAACTCGTCGCTGCCGTCGGTCCGCGCGGTCGCCGAAGAGCTCGGTGCCGTCTACCTCGACCCCGGGCGGAACGGAGGGTTCGCCGCGGGGGTGAACCACGCCCTGGCGCACCGGCAGGCCCCCGGGACGGACGTCCTGCTCCTGAACCCCGACGCCGTCGTCGCCCCTGAGGCGGTCCTGGCCCTGCAGGAGGCGGCGCACGCCGACGGCCGGATCGCGTCCACCGCGCCGCGCCAGGTCGACGGTGCCGGGCACGAGGCCCGGGTCCGCTGGCCGTTCCCCACCCCGGCAGGCACCTGGCTCGAGGCGGTCGGCCTCGGACGCCTCCGCGGGCGGCGGAGTCGGGGGACGTTCGTGATCGGCTCGGTCCTGCATCTGCGCGCCGACGCACTGGAGGACGTCGGCGCGTTCGACGAGGGGTACTTCCTGTATGCGGAGGAGACCGACTGGGCCTACCGGGCCTCCCGGCGAGGGTGGGAGCACCGGCTGGCTCCGGACGTCACCGCGACCCACGTCGGTGGCGCCACGAGCACCGACCCCCTCCGACGCGAGACCCACTTCCACGCCTCGCAGGAGCGCTACGTCCGCAAGCACTTCGGACGGGCGGGGTGGCTCGCCGCCCGGACGGGCCAGATCGCCGGCGCGACCGTCCGCAGCCTCGTGCTGAGCGGCGAGCGCCGCGCCGCGGCACGACGGCGGCTCGGGCTCTACCTGACCGGACCGGTCCGGGCGGAGACCGCCCTCGAGGCGGCCCCGTGAMRVLRVSHSAVVDAWRERERALVRSGVDVALLSARAWDEGGRLVPLAPRRDEAVVGVRTWGSHPALFVYDPVALWRALGTPHDVLDVHEEPFSLATAEILALRSLRALRPGRQTAPYVLYSAQNLHKRYPPPFRWFERRALAGTAGVSVCNDEAGRIVRERGARHAVTIPLGVDRDLFSPDPAAVAPSDHLHVGYAGRLAHHKGVDLLLQAVAGDGRLSLSLAGDGPEAAGLRDAAAPLGERVRFVGALADHDLAAFYRSLDVLVVPSRETPGWVEQFGRVAVEAMACGVPVIASATGALPDVVGGAGLLVAPRSAALHGALARLLGEPGLWAELRASGLRRAQECSWTEVARGYEHLYRRALGESAPGTGAGTDGTPQPPEVVVVAYGAPDLLRQALTPLLGKLQVTVVDNSSLPSVRAVAEELGAVYLDPGRNGGFAAGVNHALAHRQAPGTDVLLLNPDAVVAPEAVLALQEAAHADGRIASTAPRQVDGAGHEARVRWPFPTPAGTWLEAVGLGRLRGRRSRGTFVIGSVLHLRADALEDVGAFDEGYFLYAEETDWAYRASRRGWEHRLAPDVTATHVGGATSTDPLRRETHFHASQERYVRKHFGRAGWLAARTGQIAGATVRSLVLSGERRAAARRRLGLYLTGPVRAETALEAAPNANANANANA
AK018_057441371hypothetical proteinGTGACACGCGAGACCTCCGGGCGCCGTGCTCTGGCTGTCGCCGACCTGCGAGCCCTGATCCGGGACGGGTCCGCCGAGAGGCTGGCCGGTGTGCTGCTGGCACTCGTGTTCCTCGTCGTCGCCTCGCTGGTGGTCGGGGCGCTCGCCGTGCCGTACGGGTGGTTCGTGGTCGCAGGGGTCGGGCTGGTCGTCCTGCTGGCCGCCACGACGCTGGAGAGAGCGGCGGTACCGATCCTCGCGCTGCCGGGCCTCGTGGTGATCCAGCGGGTCGCCGGGTTCATCTCCGTCAGCGACGCCCTGCTCGTCGTGGCCTTCTTCTTCGCACTGCTCTTCGCCGTCAGACCCTTCTCCGTCACGATGCGGTCGCTGCTGTGGCTCAGCGTCGTCTACCAGGTCGCGACCCTGTTCACGGTCGTCGTGAACCCGTACACGGCCAACACCGTGGAGTGGTTCCACGCGTGGCTGTCCGTCGGCGGGGCTCTCGTGGTCGGCTGGGCGGTGGGCCGCTCCGGCCGCGCACGGTTCGGCCTCTCGTTGTTCATGCTCGCGTGCCTGGCCATCGCCGTGCTGACGTGCCTGACCGCCGCGTTGCAGTTCGCCCGCGGCGACTTCGGCCCGGTCTATCTCGAGTGGCCGATCAGCATGCACAAGAACCTCATCGGCTGCCTGCTGGGTTTCGCCGCCGTCCTGGCGTACGCCCGCCCCTACTGGATCGGGTGGCCGCGCAACCTCGCCCTGGCCGCCTTCTGGGTCTGCAGCCTCGCCGTGCTCGCCTCCCAGGCCCGCCAGGCGCTCCTCGGCCTGGTGGCCGGTGTGCTGTTCCTCGCGCTGCGCAAGGATCCCGACCGCAAGCGCTCGAAGCTCATCCTCGCCGGACTGCTGCCGGCGATGATCTTCGTCGCGAGCATGGTGCGCGAACAGCTCGAGGAGGACAACCCGTTCAACTCGGCCAACCAACGGATCGAGTGGTACCAGCAGGCCATCGAGATCTGGCAGAAGAACATCTGGGTCGGCGTCGGGCTGCGCTGGTGGGAGTCGGGGCGGCACGAGTACGTCTTCCAGCCCCCGAACGCGGAGCTCGAACAGCTCTCCGCCACCGGCGTCGTCGGCCTGGCCGGGTTCCTGGTGCTCTTCCTCGGCGCGATCGTCGTGCTGTGGGGGATGGAGTCCCGCTTCGCGAACGTCGCCATCGCGCTGCTGATCACCCGACTCGTCCAGGGCCAGTTCGACCTGTTCTGGTCCGCCGTGGTCGTCTCCGTCCCCTTCGTCCTCGTGGGGGTCGCCGTCGGCGCGCACGCCTACGCCGAGGAGCATCGCGGGCGACGCCGGGACGCGCTCGCGCACCCGACCGACGCCGAGGCGGTGCCATGAMTRETSGRRALAVADLRALIRDGSAERLAGVLLALVFLVVASLVVGALAVPYGWFVVAGVGLVVLLAATTLERAAVPILALPGLVVIQRVAGFISVSDALLVVAFFFALLFAVRPFSVTMRSLLWLSVVYQVATLFTVVVNPYTANTVEWFHAWLSVGGALVVGWAVGRSGRARFGLSLFMLACLAIAVLTCLTAALQFARGDFGPVYLEWPISMHKNLIGCLLGFAAVLAYARPYWIGWPRNLALAAFWVCSLAVLASQARQALLGLVAGVLFLALRKDPDRKRSKLILAGLLPAMIFVASMVREQLEEDNPFNSANQRIEWYQQAIEIWQKNIWVGVGLRWWESGRHEYVFQPPNAELEQLSATGVVGLAGFLVLFLGAIVVLWGMESRFANVAIALLITRLVQGQFDLFWSAVVVSVPFVLVGVAVGAHAYAEEHRGRRRDALAHPTDAEAVPPGPT0026055_96DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PSL_POLYSACCHARIDE_METABOLISMCE-EPS-PSL_POLYSACCHARIDES_BIOSYNTHESIS,PGPT0026055-pslJ-K21003NANA
AK018_057451140mshA_11D-inositol-3-phosphate glycosyltransferaseATGACGTCGACGTCGCGTCCACTGACGGTCCTGCAGATCGCGCCCGAGATCGGTCCCGGTACCGGCGTGGGCGCCGTCGCGTTCCACCTCGAGCAGGAGCTGGCTGCCCTCGGGCTGACGACCGAGCGCTTCACCCTCGCCGACGCCCACGGTGCATGGCTGCCGGAGCCCGGTCCCGGGGTGCGCGGCAAGCTCGCGCTGCTGGCCCGCGTCGTCTGGTTCTCGACCGTCGGCACGGTGCTCGCCCGCCGTCGGCTCGCCGCGGCGCCGCGCAGCGTGGGGCTCTGCCACAACGACGTCGTGGCCGGGCAGGTCTACGTCAACCACGGAATCCTCCAGGTGGCCATGGCTGCCCGCGGCTCGTCCGTCCGGCGCCTCGCGCGCAACCCCCTGCACCTGTTCGTGCTGGCCCGCGACCACCTGCGCTTCCGGTCCCGGACCCATCGCGTGGTCGTGAACCTGTCGGCCGTGGAGGAGACGGCCCTGCGAGCCACCTACCGTGGCCTCGCGCCACGGACGACGGTCATCGGTAACGGCGTCGACCTGGAGCGCTACCGGCCCGCCGCCACGCACGAGAGGGTCGCGGCCCGCGCAGCCCTCGGACTCCGGGCCGACGACGTCGCCCTGGTGTTCGTCGGTCACGAGTACGACCGCAAGGGACTTCCTGTCGCCCTCCGGGCGCTGGCGGCCTCCGACCCGAGGACGCGCCTCGTCGTCGTGGGCGGGACGGCGGACATGGTCGCGGACGCCGCGCGGACGGCCGACGAGCTCGGCGTCCGGGAGCGTGTCGTGGTCGTCGGCCGCCGGCCCGACCCGCGTCCCTACCTGCACGCCGGGGACGCCTTCGTGCTGCCGGCCGCCTACGAGTCGTACGGGCTCGTCGTCGTCGAGGCGCTCGCCTGCGGGCTCCCGGTGATCGCCACCGCGACGGGTTGCGTCCCCGACCTGGTGGACGACGGGACCAACGGCTGGATCGTCGAGCCGACCGTGGCGTCCGTCGGCGCGGCGATCGGTGCCCTGCTCCGTGCGGACCGCGCCGCGCTGCGGACCGCGGCCCGCGCAGCGGCGGAGACACAGGCCTGGTCGTCCGTCGCACGCCGCTACGCGCAGCTGTTGAACTCGGTGGGAGGGGTGGGATGAMTSTSRPLTVLQIAPEIGPGTGVGAVAFHLEQELAALGLTTERFTLADAHGAWLPEPGPGVRGKLALLARVVWFSTVGTVLARRRLAAAPRSVGLCHNDVVAGQVYVNHGILQVAMAARGSSVRRLARNPLHLFVLARDHLRFRSRTHRVVVNLSAVEETALRATYRGLAPRTTVIGNGVDLERYRPAATHERVAARAALGLRADDVALVFVGHEYDRKGLPVALRALAASDPRTRLVVVGGTADMVADAARTADELGVRERVVVVGRRPDPRPYLHAGDAFVLPAAYESYGLVVVEALACGLPVIATATGCVPDLVDDGTNGWIVEPTVASVGAAIGALLRADRAALRTAARAAAETQAWSSVARRYAQLLNSVGGVGNANANANANA
AK018_057461059mshA_12D-inositol-3-phosphate glycosyltransferaseATGAGGATCCTGCACGCCGTTCGGTCGGACGGTTTCGCAGGCGTGGAACGTCACGTCGCAGACCTCGCGCTCGCTCAGGCCGCGGCCGGCGACACCGTGCGCGTCGTGGGGGGTGACCCCGCGTCGATGACCGAGGCTCTCGGGCGGGCCGTCGATCACCGTGCCGCCTCACGCACGGCCGACGTGGTCCGCGCGCTCATGACCTGGGCCCCGAGCAGCGACGTCGTGCACGTGCACATGACGGCCGCCGAGGTGGCTGCCACGACAGCGGCCGTGTTGCGGCCCGCGCTGCGCCAGGTCCCCGTGGTCTCCACCCGGCACTTCGCGGGCCCTCGGGGCAGCGGGGCACTGGGTCCGCTGGTCGGTGCCGTCGCACGACGGCGTGTGATGGAGCAGGTGGCGATCAGTCGGTACGTCGCCGGGCATGTCGAGGGTCGGACGACGATCGTGCATCCCGGCGTCACGGCACCACCGAGCGTGCCGCCCGCGGCGGACAGAGCGCCCGTCGTCCTCATGGCCCAGCGACTCGAGCCGGAGAAGGGTGCGGACGTGGGTCTTCGTGCCTTCGCCGCCTCCGGCCTGGTCGAGCACGGGTGGCGGCTCGAGGTGGCCGGCGCCGGGTCGTTGAGCACGCCGCTCCAGGAGCGTGCGGTCACGCTGGGCATCGCGCCGGCCACCCGGTTCGTCGGCCCACGGGACGACGTCCCGCAGCTCATGGCGCGTGCCGCGCTGCTCCTCGCGCCCTGCCCGGTCGAAGGCCTGGGACTGAGCGTGCTGGAGGCGATGGCTTCCGGGCTGCCCGCCGTCGTCTCGGCGGCCGGCGGACACCTCGAGACCGTCGGCGCGCTGGACGCGCCCGAGCTGCTCTTCCCGCCGGGCGACGCCACGTCCGCCGGCCGGAGCCTCGCCGCCCTCGCGAAGGACCCGGCCCGCCGTGACGAGATCGGTCGGGCTGCGCGGGAGCTCCAGCGCGCGCGGTTCACCCCGGAGTCGCACGCCGATGGCGTCGCCGAGGTGTACGTACGGGCGCTCGCCGGGCGGAAGGCTCCCGTCGGATGAMRILHAVRSDGFAGVERHVADLALAQAAAGDTVRVVGGDPASMTEALGRAVDHRAASRTADVVRALMTWAPSSDVVHVHMTAAEVAATTAAVLRPALRQVPVVSTRHFAGPRGSGALGPLVGAVARRRVMEQVAISRYVAGHVEGRTTIVHPGVTAPPSVPPAADRAPVVLMAQRLEPEKGADVGLRAFAASGLVEHGWRLEVAGAGSLSTPLQERAVTLGIAPATRFVGPRDDVPQLMARAALLLAPCPVEGLGLSVLEAMASGLPAVVSAAGGHLETVGALDAPELLFPPGDATSAGRSLAALAKDPARRDEIGRAARELQRARFTPESHADGVAEVYVRALAGRKAPVGNANANANANA
AK018_057471182hypothetical proteinATGACGGCCACGGACGACCTCGTCGTCGTCTCCCTCGAGGCCTGGGACGACGTCTGGCGGCGCAACCAGCACCTGGTGGCCAGGCTCCTGCGCGACCGGCCGCGGCTGCGCGTGCTCTTCGTCGAGCCGTCCGCCGACCCCGCCTACGCCCTGGCTCGTCGACGACGTCCTCGGGTCGGCCGAGGACTGCGCCGCGGACCCGACCTGCCGGGCGTCGGCCCGGACGGATCGGGACGGCCCAGGCTCTGGTTGCACGAACCCACCAAGCCTCTCCCCCGACGCGTCGACGCCCGCGCCGACGACCGGCTCGCGGCGTCGGTGTCCCGGGCCGCGAGGCGCCTCTCGATGCGTGACCCGAGCCTGTGGATCAACGACCCGTCCGGGGCACGGATGATGCGGCACACGGCCTGGCCCGCGCTCTACGACGTCACCGACGACTGGGCGCGCGCGGTACGTGGTCCGGCGGAGACCGCACGCCTGCACACCGACGAGGACCTCCTGCTGCGCCGGTGCGAGCAGGTCACGGTGTGCTCGCCGCAGCTCGCGCGGTCCAAGGGACCGGCCCGCACGGCGCACGGGCTCCCCGATCCGGTGCTCGTCACCAACGCCGTCGACGTCGATCGCTACCGGGTCCCGCAGCCTCGGCCCGGCGACCTGCCTGCGGGACGGGTCGCCCTCTACCTCGGTACCGTGCACCCGGACCGGTTCGACGTACCGCTGGCCACGGAGACCGCCCGGTGCCTGGCGGGCCGTGCGACGGTCGTCCTGGTCGGTCCCGTGGTCGACCTGACGCCGACGCAGCTGGCCGGGCTGCAGGAAGCCGGCGTGCACCTGCTCGGTCCACGACCGTTCGAGCAGGTGCCCGGCTACCTGCAGCACGCCGACGTCCTGCTGGTCCCCCACGTCCTCGACCCGTTCACCGACAGCCTCGACCCGATCAAGCTGTACGAGTACCGGGCCGTCGGTCGCCCCGTCGTGTCCACCCCGGTGGCCGGGTTCCGGGACCTGGGCACGGCGGACGGGACCACCGTGACTCCTGCACCGGCGTTCCCCGGAGCCGTGGCGAGGGTCGTCGCCGACCCGCCGCCCCCGGTCCCCCACCCCGACGTCACGACCTGGGACGACCAGGCGGTGCTGATGGGTGGCGTGCTCGACGGCCTGCGACGTCCTGCCAGACCGTGAMTATDDLVVVSLEAWDDVWRRNQHLVARLLRDRPRLRVLFVEPSADPAYALARRRRPRVGRGLRRGPDLPGVGPDGSGRPRLWLHEPTKPLPRRVDARADDRLAASVSRAARRLSMRDPSLWINDPSGARMMRHTAWPALYDVTDDWARAVRGPAETARLHTDEDLLLRRCEQVTVCSPQLARSKGPARTAHGLPDPVLVTNAVDVDRYRVPQPRPGDLPAGRVALYLGTVHPDRFDVPLATETARCLAGRATVVLVGPVVDLTPTQLAGLQEAGVHLLGPRPFEQVPGYLQHADVLLVPHVLDPFTDSLDPIKLYEYRAVGRPVVSTPVAGFRDLGTADGTTVTPAPAFPGAVARVVADPPPPVPHPDVTTWDDQAVLMGGVLDGLRRPARPPGPT0015225_82DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISMCE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015225-tuaH-K16699NANA
AK018_057481215mshA_13D-inositol-3-phosphate glycosyltransferaseGTGACCCTGCGGGTCGTCGTCCTCGACCACACGGCCGAGCCCGGCGGCGCCGAGCTGGCGCTGCTGCGCGTCGTCGAGGCGCTGGGTCGACGTGCCCGCGTCCACGTGCTGCTGTTCGAGGACGGGCCGATGGTCCGACGGCTCCGCGAGGCCGGCGCGACGACCGAGATCCTCGCCCTGGCGCCCCGGGTGGTGCACCGCGGCAGGTACGACGTCTCTGCTCGCTCGCTCGGCGCTGCATGGCGAACGGTGACCGCCGTCGGTGCGCTGATCGGGTTCGAGCTCCGACTGGCGCTCCGGCTCCGGCGGCTGCGACCCGACGTCGTGCACGCGACCTCGCTGAAGGCCGACGTCCTCTCGGTGGTCCCGGCCGGCGTCGCCCGCCGTCCGCTCGTGTGGCACGTGCACGACCGCATCGCGGAGGACTACCTGCCCGCACCGCTGGTGCGCGCGTTCCGGTGGGCGGCGCGACACCTCCCGACGGCCGTCGTGGCGAACTCCAGGGCTACCGCGCTGACTCTTCCGGGGGCGCGCGGTCTGACGGTCGTGCGCCCGGGACTCGCCCCCGGGCAGGTGCGCGACCGGCCACGTCCGGCGCCCGCGGTGGACGTGGTGGGGCTGGTCGGTCGCCTCAGCGCCACGAAGGGTCAGCTCGAGCTGGTCCGCGCCGCTCCCGCGATCCTGCGGTCCAGGCCCGGGACGCGGTTCCGGTTCGTGGGCGCTGCGCTGTTCGGCGCCGACGAGTACGTCGATGCGGTCCGGGAGGAGATCGACCGTCTCGGCCTGACCGACGTCGTCGAGTGGGCGGGCTTCGTCGACGACCCGCGGCCCGAGCTCGATGCCATGGCCGTGTGCGTCCACGCCTCGCCGGTGGCGGAGCCCTACGGGCAGGTCGTGGCCGAGGCCCTGGCACGCGGTGTGCCGGTCGTCGCCACGCGGGCCGGCGGGGTGCCCGAGATCCTCGAACCTTCCGACGACGCACCTGCTCGTGGTGTCCTGGTACCGCCGGGTGACGTCGCCGCCCTGGCGAACGGCGTGCTCAGCGTCCTCGAGAACCGCGCCGTCGCCGAGCAGCGTGCGCGCGACGCGCACCTGGACGCGGGTGCGTCCCTGGGCATCGACCGGACCGCGGAGGGTCTGCTCACGGTCTGGCAGGACGTCGCAGGCCGTCGAGCACGCCACCCATCAGCACCGCCTGGTCGTCCCAGGTCGTGAMTLRVVVLDHTAEPGGAELALLRVVEALGRRARVHVLLFEDGPMVRRLREAGATTEILALAPRVVHRGRYDVSARSLGAAWRTVTAVGALIGFELRLALRLRRLRPDVVHATSLKADVLSVVPAGVARRPLVWHVHDRIAEDYLPAPLVRAFRWAARHLPTAVVANSRATALTLPGARGLTVVRPGLAPGQVRDRPRPAPAVDVVGLVGRLSATKGQLELVRAAPAILRSRPGTRFRFVGAALFGADEYVDAVREEIDRLGLTDVVEWAGFVDDPRPELDAMAVCVHASPVAEPYGQVVAEALARGVPVVATRAGGVPEILEPSDDAPARGVLVPPGDVAALANGVLSVLENRAVAEQRARDAHLDAGASLGIDRTAEGLLTVWQDVAGRRARHPSAPPGRPRSNANANANANA
AK018_057491758hypothetical proteinATGACCGTCCGGGAGTTCCTGCGCACCGTCTGGGCGGGCAAGTACCTGGTTGCCCTGGCGATGGTCGTCGCGATGATGGGCGCCTTCGTCTACGTCGACCAGCAGGGCACGATCTACCAGTCGGACGCGGTCGTCAGCGTCGCCAGCGCGAACGACGGCGACATCACCGTCGCCGCCTCGGGCGGTGACGTCACCGACCCGGCGGTGATCGAGGCGGCTGCTGAGACGCTGGGCGTCGACCCCGCGGAGCTGCCGGAGATCACGGGCGAGACCACGGAGGACGGGAGCGTCGTCGTGAGTGCGCGCTCGGCGGACCCCTCCGACCTGCCCGCCGTGGCGGACGCCGTCGCCGCGGCCTTCGTCGACCACGCCGACACCATCCGTGACGCCCAGGTCGCGGAGCTGGAGGAGCAGCGGGGAGGTTACGAGCAGAGCCTGCAGCCGGTGCAGGAGCGCCTCGACGCCGACCCGGACGACCTTCTCGCCGGGGTCGAGCAGGAGACCATCGTCAACGGGTTCGGCGGTCTGGCGCAGGAGATCGTCGAGCTGTCGGCGATCATCGAACCCGCCGAGGTGGTCCAGGTGGCGAGCGAGCCGACGATCCCCGGCGTCGACCTGCGCGCAGCGATACCGGTGGCGGCACTCGCCGGGCTGGTCCTGGGTGTGGCGCTGGCGCTGGCCCGTCGCGGACTGGACTTCCGGGTCCGCGACGCGGCGAACGCGGGGGCGATCGCCGAGGTTCCCGTCCTCGCGTCGCTCTTCGGCGTGCGTCAGGCCGACAAGAGCTTCCGGCACGGGAGCGTGCTGCCGGTCTCGAGCCGCGACGCGACCCCCTTCACCGAGTCGATCCGGGAGCTGCGCACGGCGGTGCAGATGGCCTCGGCGACGCCGCAGCACGTCGTGGTCGTCACCGCGGCCGACCCCCGGCCGCCCCGGACGTTCATCACCGCGAACCTCGCTGCGTCGTTCGCGCTCTCGGGGTTGCGCACCATCGTGGTCTCCGGCGACCTGCGGCGCTCGAACCTGGACGACTTCCTGCCCGTGCCGGACGGCGAGCACGAGTCCGGCACGGAGCCGCGCGAGACGATGGTGGCCAACCTCGAGCTCGTCCGGATCTACGACGACACCCTGGATCCTGCCGACTACCTGGCCAGCACCCCGGTCCGCGAGCTCGTGGCGACACTTCGTGAGCGCGCCGACGTCGTCGTGATCGACGCGCCGCCGGCGCTGGCCGCCGCCGACGCCACCATCCTCGGACGCTACGCGGACGGCGTCGTCCTCGTGGTGTCCGCGGGCAAGACCTATCGCGGTGTCCTCGCCGAGGCCGCCACGCGGCTGCGCATCAACAACGTGCCGCTCATGGGCGTGGCTCTCGCCGGGGTCTCCGGCGACCGCCGCAAGCTCTACGCGACCACCTACGAGGCCGATCGTGCGTCGACGCGGGTCCGGCGGATGCTGCCCTGGTCCAGGCCCGCGCAGCAGCGGAGCACGGGCTCCTCCGCCGCGGAGGGCGAGCCGGACGCGCCGCCGGCTGACGCCGTCACCCCGTCTCCCGGCTCCTCCCGCTCCTCCCGCTCCTCCGGCTCCTCGGCGTCAGCGGCCTCGGCGTCGGACAGCGCGCCCCGGACGCCGAACTGGGCCGCGGTCCCGGTCGCCTTCCCCCCGCGGTCCTCCGCGCCCGACCCACGCTCTGCGGTCGCGACCGCAGACCCTGACGGCGGCGGCGGGGGCTCGGCGAAGAGCTCCGGCGGGCAGTGAMTVREFLRTVWAGKYLVALAMVVAMMGAFVYVDQQGTIYQSDAVVSVASANDGDITVAASGGDVTDPAVIEAAAETLGVDPAELPEITGETTEDGSVVVSARSADPSDLPAVADAVAAAFVDHADTIRDAQVAELEEQRGGYEQSLQPVQERLDADPDDLLAGVEQETIVNGFGGLAQEIVELSAIIEPAEVVQVASEPTIPGVDLRAAIPVAALAGLVLGVALALARRGLDFRVRDAANAGAIAEVPVLASLFGVRQADKSFRHGSVLPVSSRDATPFTESIRELRTAVQMASATPQHVVVVTAADPRPPRTFITANLAASFALSGLRTIVVSGDLRRSNLDDFLPVPDGEHESGTEPRETMVANLELVRIYDDTLDPADYLASTPVRELVATLRERADVVVIDAPPALAAADATILGRYADGVVLVVSAGKTYRGVLAEAATRLRINNVPLMGVALAGVSGDRRKLYATTYEADRASTRVRRMLPWSRPAQQRSTGSSAAEGEPDAPPADAVTPSPGSSRSSRSSGSSASAASASDSAPRTPNWAAVPVAFPPRSSAPDPRSAVATADPDGGGGGSAKSSGGQPGPT0023285_1597DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0023285-etk_wzc|epsB-K16692NANA
AK018_057501164mshA_14D-inositol-3-phosphate glycosyltransferaseATGGCCGCAGGTGTCGTGCTCGCGCACGACTACGCCACACAACGTGGTGGAGCAGAGCGTGTGGCGCTCCTGATGGCGCGAGCGTTCCCCGGATCACCGATGTACACCACGCTCTACGACGCCGCGGGGACCTTCCCCGAGTTCGCGGACCTGGATCTGCGCACGTCCCGCCTGGACCGGATCGGCCCGCTGCGGCGTCACCACCGGGCGGCCCTGCCGTTCCTCGCCGGAGCCGTGGACGCGCAGCACGTCGAGGGCGACGTCCTGCTCGCCAGCTCGACGGGATGGGCGCACGGCTATCGTGGCGCCCGTCGGACGGTCGTCTACTGCCACGCCCCGGCACGGTGGCTCTACCAGCGCGACCGGTACCTCGGCGCTCATGCTCCCGCGGGGAGCCTCGCGGACAGGCTCCGGTCGGGTGCGGCCCGCGCCGCTCTGTCCGGCCTGGCGACCAGGTTGCGCGCCTGGGACCAGCGGGCGGCCCACGGCGCCGACCTGTACCTCGCCAACTCGACCGTCACCCGCGAGGCGATCCGCGCCGTGTACGGCATCGATGCCCAGGTGGTACCGCCCCCGCCCTGCCTCCTGCCCGACGGTGAGGAGCGGGCGCCGGCCGACCTGGAGCCGGGCTTCCTGCTGTGCGTCGCGCGGCTGCTGCCGTACAAGAACGTCGACGTCGTCGTCGCGGCGGCCGCGGAGACAGGTCGGCGGCTCGTGGTGGTCGGGGACGGCCCCGACCGTCGTCGGCTCGAGGAGCAGGCCGCCACGCTCCGCGCCGGACAGGTGACCTTCGTCGGACGGGTGCCGGACGAGGGGGTGCGGTGGCTCTACCGGAACGCGGCCATGCTCGTCGCTGCGTCCTACGAGGACTACGGACTGACCCCGCTCGAGGCCGGCGCGTTCGGGACACCGGTGGCAGCACTGCGGGACGGCGGCTATCTCGACACGGTCTCCGAGCGTGTCAACGGCATCTTCTTCGACAGCCCCGTCGTCGACGAGGTGGCCCGTGCGATACATCGGGTCGATGACGTGGACTGGGACCCGGCGGCCATCGAGGGTCATCTCGACGGTTTCGGCGCCGAGCGGTTCCAGCGCGCGCTCCAGGATGCCGTCGCGCAGCAGCGGGCGAGCGGACCGGTGCGCGTCGAGGAGCCGGTGCCATGAMAAGVVLAHDYATQRGGAERVALLMARAFPGSPMYTTLYDAAGTFPEFADLDLRTSRLDRIGPLRRHHRAALPFLAGAVDAQHVEGDVLLASSTGWAHGYRGARRTVVYCHAPARWLYQRDRYLGAHAPAGSLADRLRSGAARAALSGLATRLRAWDQRAAHGADLYLANSTVTREAIRAVYGIDAQVVPPPPCLLPDGEERAPADLEPGFLLCVARLLPYKNVDVVVAAAAETGRRLVVVGDGPDRRRLEEQAATLRAGQVTFVGRVPDEGVRWLYRNAAMLVAASYEDYGLTPLEAGAFGTPVAALRDGGYLDTVSERVNGIFFDSPVVDEVARAIHRVDDVDWDPAAIEGHLDGFGAERFQRALQDAVAQQRASGPVRVEEPVPNANANANANA
AK018_05751606pth_2COG0193Peptidyl-tRNA hydrolaseATGACTGACGGCCCCTGGCTCGTGGTCGGGCTCGGCAACCCCGGGCCGAAGTACGCCGGAAACCGGCACAACGTCGGACAGATGGTGCTCGACCTGCTGGCCTCGCGGACCGGCGCCCGGTTCGCGAGGCATCCCCGCGCGCAGGCCGTCGTCGCCGAGGCGCGTCTGGGTGTGCTGCCCGGTGGTGCTCCCGGCCCCCGCGTCGTCCTCGCCAAGCCCACCACCTACATGAACACGTCCGGTGGGCCCACGTCGACGCTCGCGAAGTACTACTCGATCGACCCCGAGCAGGTCGTCGCCGTCCACGACGAGGTGGACATCCCCTTCGACACCATCAAGCTCAAGACCGGCGGGGGAGAGGGCGGCCACAACGGCCTGCGCGACATCTCCAAGGCGCTCGGGACGCGGGACTACGTGCGGGTGCGTGTCGGCGTCGGGCGACCGCCCGGGCGCATGGACACGGCGGACTACGTCCTGAAGGACTTCTCCGGCACGGAGCGCAAGGAGCTGCCGATGCTCGTGGACGACGCCGCGGACGCCGTCGAGATGGTCGTGACCGAGGGGCTGCTGGCCGCCCAGGGGAAGTACCACGCGGCGCGCCCATGAMTDGPWLVVGLGNPGPKYAGNRHNVGQMVLDLLASRTGARFARHPRAQAVVAEARLGVLPGGAPGPRVVLAKPTTYMNTSGGPTSTLAKYYSIDPEQVVAVHDEVDIPFDTIKLKTGGGEGGHNGLRDISKALGTRDYVRVRVGVGRPPGRMDTADYVLKDFSGTERKELPMLVDDAADAVEMVVTEGLLAAQGKYHAARPNANANANANA
AK018_05752615rplY_2COG182550S ribosomal protein L25ATGGCCGAGATCAAGCTCGCCGCCGAGATGCGTACCGAGTTCGGCAAGGGTGCGGCCCGCCGCATCCGTCGCGCCGACAACATCCCCGCCGTCCTCTACGGGCACGGCACCGACCCGGTTCACGTGACCCTCCCGGGCCACGCCACGATGCTCGCCGTGCGTCACACCAACGCGCTCATCGAGCTGGCCTTCGACAACGGCACCGAGCTCGCCGTCGTCAAGGACGTCCAGCGCAACGTCGTGCGCGAGGAGATCGAGCACGTCGACCTGCTCATCGTGAAGAAGGGCGAGAAGATCGCCGTCGACATCACCGTGCACGTCACCGGTGAGTCCGCCCCCGGCACGATCCACCTCGTCGACTACCAGACCCTGACGGTCGAGGTCGACGCCACCAACATCCCCGAGTACGCCGAGGTCTCCATCGAGGGCCGCGAGGCGGGCGACCACATCTCCGCCGGCGACATCGAGCTGCCGAACGGCGCCACGCTGCTCACCGACCCGGAGTACACGGTCGTGTCGATCACCGAGCCGCGCGGCGAGGAGTCCGCCGACGAGGACGAGGCGTCCGCCGAGTCCGCCGAGGCGCCGGCCGAGGGCGAGTCCTCCGCCGAGTGAMAEIKLAAEMRTEFGKGAARRIRRADNIPAVLYGHGTDPVHVTLPGHATMLAVRHTNALIELAFDNGTELAVVKDVQRNVVREEIEHVDLLIVKKGEKIAVDITVHVTGESAPGTIHLVDYQTLTVEVDATNIPEYAEVSIEGREAGDHISAGDIELPNGATLLTDPEYTVVSITEPRGEESADEDEASAESAEAPAEGESSAENANANANANA
AK018_057535208hypothetical proteinATGAACCGGAACGTGACGACGCACGAGCGCGGACGCACCGGGCGACGCGCACTGCTGGGGATGTCCCTGGTGCTGACGCTCTTCGTCGGGTCGGTGCTCGTCACCGACGCGATGCCGGGCGGGCCGTGGACGGCGGAGCCGTCCGTCGCCGCGGACACCGACATCGAGGGTGACACGCCCCAGGACTCCCGTGCCGTCGGGGGCACGAGCGGGCAGGACGTGGCAGCCAACTTCCCCGCTGCCCAGGCCGGCCCCGAGGCGCCGACCGCCGTCGCCCGCTCCCTGTGGTGGACGTGGCGCGCCCCCAGGGCGGACCTCATGCGGTTCACGACCCACGGCAGCGAGCTGGACACCGTGCTGACGGTGCGTGAGGGGAGTCCGACCGGACCGGTCGTCGCCGTGAACGACGACGACGGCGACCTCGTCACCTCGGGCGTGACCTTCGGGGCCGAGGAGTCCACCGAGTACTACGTCGAGGTGAGCTCCCAGGACCCTGACGCCGGGCTCGTCACGCTGTCGTGGCAGGACACCGACGCCGACCAGGAGCCGTTGGCCGAGCCGCAGGCACCTGCGCCGCCGAACGCGCTGACGGTCTCCGACATCCCCGTCGCGGGCAACACGGGGGAGAAGCCGCAGTCCAAGACGTGGTTCCACGCCGGTACCTGGTGGGCCGTGCTCGCCTCGCAGGACACGGATCCCGAGGGGACGTGGATCTGGCGTCACGACCCCGTCGCCGACACCTGGACCAACGTGCTCCAGGTCTCGTCGGCCACCGACGTGCGAGCCGACGTCGAGCCGGTCGGCTCGGTGGCGCACATCCTGCTGCACGGCCCGACGAGCACGCTCGTCTCCGTGGAGCACGACGGCGGCACGTACGTGCCCTGGAGCGCCCGGAGCTCCGCCACGACGGTCCCGCTGCCCGGCAGCGAGACCGCGGCGATCGCCCAGGACTCGACGGGCCGACTCTGGGTCGCCGCAGACGCCGGCACCGACGTGCAGGTCCGGTACGCCGACGCGCCCTACACGGCGTTCTCGTCGCCCGTGACGCTGGCGAGCGGCGTGTCGGACGACGACGTCGCGGCCGTCACGGCGTTGCCCGACGGCACCGTCGGGGTGCTCTGGTCCGACCAGGAACGACGTCGCTTCGGGTTCCGCACGCACGTCGACGGGAGCGCTCCGGGGTCCTGGACCGCCGACGAGCGGCCCGCGTCGTCGTCGGCCCTGTCCCTCGGGGGTGGCCAGGCGGACGACCACCTCAACCTGGCGGTGGCCGGTGACGGCACCCTCTACGCCGCGGTCAAGACCTCGTACGACACCGGCTCGGCACCGGTCATCGGGCTCCTCGTGCGGCACCCGGACGGCTCCTGGGACCCGCTGCACGACGTGGACCGCACCGGGACGAGGCCGATCGTCGTGGTCGACGACACGACAGGGATGCTGCGTGTGCTGTACACGCGCACCACCCAGCTCGACGACATCCTCGAGAAGACCGCACCGTTGGACGACCTCGACTTCTCCGAGGACGCCGAGACCGTCATGGACGGGTCGTACAACAACGTGACGGGGCCCCGGACCTCTGCCGCGGGTGCCGCCGTCGTCCTGGCGGCCGGGAGCACCACGGCCCGGCACGCCCGGCTGGCATGGTCCGACCCGGATCAGCCCCGGGCGATCGACGGGGTGACGTCGACGACCGTCGACCTCCCGGTGGACGGCGTGCTCGAAGGCGGCGCGGGGCAGGGCGCCGCGCTCGAGTTCGAGATCGTCGACGGCGCCGGGCACGGTGAGGCAGTCCTCCAGGACACGGCGACCGGTGCCTTCACGTACACCCCGGACCCGGGCTACGTCGGCGCCGACGCGTTCACGTTCCGCGTCGGCAGTGCCGGCACCTGGTCCGCCGCGGCCGTCATGTCGATCCGCGTGGTCCGCAGCGACGGGTTGCTGGGGTCCTGGTCGATGGACGAGGGCAGCGGCGGACTCACCGCCGACACCTCCGGATGGGGGCACGACGGTGCCCTGGAGGGTGGCGCCGAGTGGGTCGCAGGGCTGGGGACCGCGGCCGTCGGGCTCGACGGACTGACGGGGCACGTCGCCGTGCCCTCCTCGACCGGTCTCGACACCAGCGAGGAGCTGACGGCCTCCGTGTGGATCCGGCCGTCGCGCACGGGAACCCAGTACGCGATGAAGAAGGCCGCCCAGGGCAGCGTCGACGGGTGGGAGATCGGGCTGTCGAGCAGCGGTACCCCGTTCTTCCGCATGGCGCAGGCCAGCGAGGGTAACGCCTACCGGGTGGACGCGACGTCCCCGTACCCGAGCGACGGCGAGACCTGGATGCACCTGGTGGGCACCTACGACGGCGAGCACATGCGTATCTACGTCGACGGCACCGAGGAGGGATCGATCGAGGGACCGGAGGCGGTGCCGGTCAACGATCTCGACCTGGGTATCGGTGCCGGGGCGGACGGATATCGTCCCATGGCGGGCGCCGTCGACGAGGCCAGGCTGTACGGACGCGCCCTCGGTGCCGAGGAGGTCGCAGAACTCTCGGCCGGGACGGAGGTGCCGCCCGAAGCGCCGGTCGCCGTCGCGGCCTCCTACACGACCACGCCGGGCACGACCGTCGAGGGCGCGCTCGAGGCCACCGTCGGTGACGTCGCGACCCCGCTCGTCTTCGAGATCGTCGATCCGCCGCAGACCGGCGACGTCGAACTCGTCGACGCCTCGACCGGCGCCTTCGTCTATACCGCCGGTGCGGCCGTCGGGACCGACACCTTCACCTTCCGGGCCGGGACGGACGGCACCTGGTCGCTGCCCGCGGAGATCGCCGTCACCATCGGCCGGGACGACGGACTCCTGGGCGCGTGGGACCTCGACGAAGGCACCGGATCGACGGCCGCCGACGCCTCGGGGTGGGGGCACGACGGCGCGCTCGTCGCCGGCGCCACCTGGGGTGCGGGTGCCGTCGGTGGCGGTCTCGACCTGGACGGTACGGGCCACGTGCTGGTGCCGCACACCGCTGCGCTGGACGTCGCGGCGGGGCTGACCGTCTCCGCGTGGGTCCGGCCCGAGCAGCGGGCCACCCAGTACGTCGTGAAGAAGGCGTACCACGGCGACGTCGACGGGTTCGAGCTCGGGCTCTCGGGTGGTGGATGGCCCTTCCTGCGGTTCAACAACGCCACGTTGGGCAACACCTACCGGGTCGATGCGACGTCGCCGTACCCGACCGACGGGGACACCTGGATGCACCTGGTGGGCACCTACGACGGCGAGACGATGCGGATCTACGTCGACGGCGAGGAACAGGCCTCCGCGCCCGGTCCGGACGCCGTGGCCACCAACGCGCTCCCGCTCGGCCTGGGCGCCGAGTCCGACGGCTCGCGCGCACTTCTCGGGGGACTCGACGGGGTCAGGATGTTCGACCGGGCCCTGGACGCCGAGGGCGTGTCCGCCCTGCACGGCAGCAGCGGTCCCGCGGAGCCGCCCGAGGCCTCCGGAGCGACGTTCACGACGACCGCCGCCACGCCGGTCCAGGGCCGGCTGACCGGCGAGGGAGGCTCGGTGGCCTCACCGCAGTTCCTGGTAGTCGATCCTCCGTCCGGCGGCAGCGTCGTGGTGGACCCGTCGACCGGCGACTTCGAGTACACCCCCGACGCGGAGTTCGTCGGTTACGACGGCTTCACCTTCCGGGTGGGCGCGGACGAGCTCTGGTCAGACCCCGCACCGATCACCGTGGCGGTCGTGGCGGAGTCGGGAGCCCGAGGGATCTGGGACCTCGACGAGGGTGAGGGCCTGGTTGCCTCGGACTCGTCCGGGCTGGGCATGGACGGCCAGGTCGGCACCTCGGCGACCTGGACCGAACGGTCGGGTTCACCGGCGCTGCAGGTCGACGGCTCGGGAGCGGGCGTCGTCGTCCCGGACGACGCGGCGCTCGACGTGACGGACGCCCTGACGGTGTCCGCCTGGGTCAGGCCCGACCGGGCGGCGACCCAGTACCTGGTCAAGAAGGCGGAGCAGGGACAGGTCGACGGGTTCGAGCTGAGCCTCGGCAGCGGCGGCAAGGCCTTCGTCCGGCTGAACCAGGACTCGTCGGGCAACACCTACCGGGTCACGTCCACCAGCGACTACCCGACCGACGGCCAGACCTGGATGCACCTGGCAGCGACGTACGACGGCGCCACGCTGCGGCTCTTCGTGGACGGCGTCGAGGAGGGGTCCGTCGCCGGACCGGACCTCGTGGCCGTCAACGACCTGCCGCTGGTCGTGGGCGCCGGCCAGGACGGCGACCGTGCGCTGCGCGGAGGCATCGACTCCGTGCGGCTCCTCGGCCGAGCCATGACGCCGGCCGAGGTGGCGGATCTGGCGGCGGTCGGGACCCCCGAGCCGACTCCGTCGCCGTCGCCCAGCCCGACGCCGACCCCTTCGTCGTCGCCGACTCCGACGCCGTCGCCCACGCCGACGCCGTCGCCCACGCCGACGCCGACGCCGTCGCCCACGCCGTCGCCCACGCCGACGCCCACGCCGACGCCGACGCCGACGCCGTCGCCCACGCCGACGCCGACGCCGTCGCCCACGCCGACCCCCGAGGCCGGCCTGATCGGACACTGGCGCCTGGACGACGGAGCCGGGTCCGTGGCCGTGGACGACTCGGGTTCCGGGCACGACGGTTCGTTCGGGTCGGGCGTTTCCTGGGTGCCGGGCGTGCTGGGGGGCGCGGTGGATCTCGACGGCTCGGTCGGTCACATCCTCGTCCCGCACGCCTCGACGCTGTCCCCGACGCCCGGTCTGACCGTGGCGGCATGGGTCCGACCGGAGCGGACGGGAACCCAGTACGTGGTGAAGAAGGCGGTCAAGAGCTCGACCGACGGGTTCGAGCTGGGCCTGGCCAACCCCGGGACGGCGTTCCTGCGGCTCAACGAGGCGACCTCCGGCAACACCTTCCGGGTCGACACGGCGACCGACTACCCGGACGACGGGGACACGTGGGTCCACCTCGTCGGGACCTACGACGGAGCGGAGATCCGGATCTACGTGGACGGTGAGCTGTCGTCCTCGGCGCCCGGGCCGCAGGCCCTGGCGTCCAACACGGTGCCGATGTCGCTCGGGGCGGAACCTGACGGGAGCCGCTCCGTCGAGGGCGCTCTCGACGACGTGCGGGTCTACGACCGCGCGCTGGACGCCCAGGAGGTCGCCGATCTCGCGCTCGGACAGTGAMNRNVTTHERGRTGRRALLGMSLVLTLFVGSVLVTDAMPGGPWTAEPSVAADTDIEGDTPQDSRAVGGTSGQDVAANFPAAQAGPEAPTAVARSLWWTWRAPRADLMRFTTHGSELDTVLTVREGSPTGPVVAVNDDDGDLVTSGVTFGAEESTEYYVEVSSQDPDAGLVTLSWQDTDADQEPLAEPQAPAPPNALTVSDIPVAGNTGEKPQSKTWFHAGTWWAVLASQDTDPEGTWIWRHDPVADTWTNVLQVSSATDVRADVEPVGSVAHILLHGPTSTLVSVEHDGGTYVPWSARSSATTVPLPGSETAAIAQDSTGRLWVAADAGTDVQVRYADAPYTAFSSPVTLASGVSDDDVAAVTALPDGTVGVLWSDQERRRFGFRTHVDGSAPGSWTADERPASSSALSLGGGQADDHLNLAVAGDGTLYAAVKTSYDTGSAPVIGLLVRHPDGSWDPLHDVDRTGTRPIVVVDDTTGMLRVLYTRTTQLDDILEKTAPLDDLDFSEDAETVMDGSYNNVTGPRTSAAGAAVVLAAGSTTARHARLAWSDPDQPRAIDGVTSTTVDLPVDGVLEGGAGQGAALEFEIVDGAGHGEAVLQDTATGAFTYTPDPGYVGADAFTFRVGSAGTWSAAAVMSIRVVRSDGLLGSWSMDEGSGGLTADTSGWGHDGALEGGAEWVAGLGTAAVGLDGLTGHVAVPSSTGLDTSEELTASVWIRPSRTGTQYAMKKAAQGSVDGWEIGLSSSGTPFFRMAQASEGNAYRVDATSPYPSDGETWMHLVGTYDGEHMRIYVDGTEEGSIEGPEAVPVNDLDLGIGAGADGYRPMAGAVDEARLYGRALGAEEVAELSAGTEVPPEAPVAVAASYTTTPGTTVEGALEATVGDVATPLVFEIVDPPQTGDVELVDASTGAFVYTAGAAVGTDTFTFRAGTDGTWSLPAEIAVTIGRDDGLLGAWDLDEGTGSTAADASGWGHDGALVAGATWGAGAVGGGLDLDGTGHVLVPHTAALDVAAGLTVSAWVRPEQRATQYVVKKAYHGDVDGFELGLSGGGWPFLRFNNATLGNTYRVDATSPYPTDGDTWMHLVGTYDGETMRIYVDGEEQASAPGPDAVATNALPLGLGAESDGSRALLGGLDGVRMFDRALDAEGVSALHGSSGPAEPPEASGATFTTTAATPVQGRLTGEGGSVASPQFLVVDPPSGGSVVVDPSTGDFEYTPDAEFVGYDGFTFRVGADELWSDPAPITVAVVAESGARGIWDLDEGEGLVASDSSGLGMDGQVGTSATWTERSGSPALQVDGSGAGVVVPDDAALDVTDALTVSAWVRPDRAATQYLVKKAEQGQVDGFELSLGSGGKAFVRLNQDSSGNTYRVTSTSDYPTDGQTWMHLAATYDGATLRLFVDGVEEGSVAGPDLVAVNDLPLVVGAGQDGDRALRGGIDSVRLLGRAMTPAEVADLAAVGTPEPTPSPSPSPTPTPSSSPTPTPSPTPTPSPTPTPTPSPTPSPTPTPTPTPTPTPSPTPTPTPSPTPTPEAGLIGHWRLDDGAGSVAVDDSGSGHDGSFGSGVSWVPGVLGGAVDLDGSVGHILVPHASTLSPTPGLTVAAWVRPERTGTQYVVKKAVKSSTDGFELGLANPGTAFLRLNEATSGNTFRVDTATDYPDDGDTWVHLVGTYDGAEIRIYVDGELSSSAPGPQALASNTVPMSLGAEPDGSRSVEGALDDVRVYDRALDAQEVADLALGQNANANANANA
AK018_057541143arnCUndecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferaseGTGGAACTCACCGTGGTGGTCCCCACGTTCAACGAGGGACCGAACGTTCCCGAGCTCGTGCGTCGCCTGGCCACGGCCCTGCAGGGCGTGGATGCCGAGGTGCTGTTCGTCGACGACTCGACCGACGACACCCCGCAGGTCATCGCCGCGACCGCGGCCGGTGCGGACCTCCCGGTCCGTCTCCTTCACCGTGACCGGGCCGAGGGGGGTCTCTCGGGAGCCGTCGTCGAGGGGCTGCGGTCCGCCGACGGTGCGCACGTGATCGTGATGGACGGTGACCTCCAGCACCCGCCCGAGATGGTCCCGGTGCTCCTGGCCCGGGCGGTCGAGAGCACCGCTGACGTCGTCGTCGCCTCCCGCTACCTCGGCCGGGGCGACGCCGGCGGGCTGGACGGGTGGCGCCGCAAGCTGGTCTCGCGGGCGTCCGGTCTCGTGGCTCGATCGATGTTCCCCCTGCGCCTGCGCAACGTCACCGACCCCATGACCGGTTTCTTCGTGGTCCGCGGCGGGGCGGTCGACCCGGACGCCTTGCATCCGCGCGGCTTCAAGATCCTGCTCGAGATCCTCGCGCGGCAACGCCTGGCCGTCGAGGAGGAGCCGTTCGTCTTCGGCGAGCGGTTCGCCGGCCGCTCCAAGGCGAGCCTGGCCAACGGTGCGCGCTACCTCCAACAGCTGGCCTCGCTCCGGTTCGGCCGGCTGTCACCGTTCGCACTGGTCGGCGCCACCGGGGCCGTCGCCAACCTCGCCATCCTGGCCCTTCTCCAGGTGTTCGGCGTGCACTACCTCCCGGCAGCCGTCGCCGCGAACGTGCTGACCATCGTCGGCAACTTCCTGCTGCAGGAGCGGTTCGTCTTCGCGGATCTGCGGCAGGAGGGCCGGTTCGGGGTCTGGCTCCGGTTCGCCCAGGCGTTCACGTTCAACGGGGCCGAGGCGCTCGCGCGGACCCTGGCGCTCTGGTGGATCGTCGAGCAGGCGCTGCCGTATCCCGAGCTGGTGCAGGCCGCCCTCATCCTGGTGGCGTTCCTGGTCCGTTACGTCTTCATGGCGCAGTTCGTGTACCGGCCGCGCCGGACGGACGCCCCGGACGCGACAGGTCCCGAGACGACGGCCGCTCTCGGCGACGACGTGCCGCGTCGTCCGTGAMELTVVVPTFNEGPNVPELVRRLATALQGVDAEVLFVDDSTDDTPQVIAATAAGADLPVRLLHRDRAEGGLSGAVVEGLRSADGAHVIVMDGDLQHPPEMVPVLLARAVESTADVVVASRYLGRGDAGGLDGWRRKLVSRASGLVARSMFPLRLRNVTDPMTGFFVVRGGAVDPDALHPRGFKILLEILARQRLAVEEEPFVFGERFAGRSKASLANGARYLQQLASLRFGRLSPFALVGATGAVANLAILALLQVFGVHYLPAAVAANVLTIVGNFLLQERFVFADLRQEGRFGVWLRFAQAFTFNGAEALARTLALWWIVEQALPYPELVQAALILVAFLVRYVFMAQFVYRPRRTDAPDATGPETTAALGDDVPRRPPGPT0017834_188DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0017834-DPM1_like|arnC|ppm1|wcaA-K00721NANA
AK018_05755984prs_2COG0462Ribose-phosphate pyrophosphokinaseATGAACACCTCGATCCCTGGCACCGGAGAGCGCACCCTCGTCCTCGCCGCCGGCCGTGCGCACCCGGCGCTCGCCGAGGACGTCGCCGAGGAGCTGGGCATCGGCCTGCTGCCGACCTCCGCCTACGACTTCGCCAACAGCGAGACCTACGTCCGCTTCGGCGAGTCCGTGCGCGGGTCGGACATCTTCCTGCTGCAGAGCCACACCGCGCCGGTCAACCAGTGGCTCATGGAGCACCTGCTCATGGTCGACGCCGCCAAGCGAGCCTCGGCCCGCACCATCACCGTCGTCGCGCCCTTCTACGCCTACGCCCGTCAGGACAAGAAGTCCCGCGGCCGCGAGCCCATCTCGGCGCGTCTGGTGGCGGACATGCTGCACACGGCCGGCGCCGACCGGATCATGAGCGTCGACCTGCACACCGCGCAGATCCAGGGCTTCTTCGACGGCCCCGTCGACCACCTGTGGGCCATGCCGGTGCTCACCGACTACGTGCGCACCCGCGTCGACACCTCCAACGTCACCGTCGTCTCGCCCGACGCCGGCCGCATCCGCGTCGCCGAGCAGTGGGCCGCCAAGCTCGGCGGCGGACCCCTGGCGTTCGTGCACAAGACGCGCGACGTCACCCGACCCAACCAAGCCGTCGCCAACCGCGTCGTCGGCGACGTCGAGGGCCGCGACTGCGTGCTCGTCGACGACCTCATCGACACCGGCGGCACCATCTCCGAGGCCGCCAAGGTCTGCATGGACGCCGGCGCCAAGTCCGTCATCGTCGCAGCCACCCACGGCGTGCTCTCCGACCCCGCCGCCCAGCGGCTCTCCGAGTCCGGGGCCCTCGAGGTCGTCGTCACCGACACGCTGCCCATCCCCGCCGAGAAGCGGTTCGAGAACCTCACCGTGCTGTCCATCGCGCCGCTCATCGCCCGCGCCATCCGCGAGGTCTTCGACGACGGGTCGGTGACGTCGCTGTTCGACGGGAACAGCTGAMNTSIPGTGERTLVLAAGRAHPALAEDVAEELGIGLLPTSAYDFANSETYVRFGESVRGSDIFLLQSHTAPVNQWLMEHLLMVDAAKRASARTITVVAPFYAYARQDKKSRGREPISARLVADMLHTAGADRIMSVDLHTAQIQGFFDGPVDHLWAMPVLTDYVRTRVDTSNVTVVSPDAGRIRVAEQWAAKLGGGPLAFVHKTRDVTRPNQAVANRVVGDVEGRDCVLVDDLIDTGGTISEAAKVCMDAGAKSVIVAATHGVLSDPAAQRLSESGALEVVVTDTLPIPAEKRFENLTVLSIAPLIARAIREVFDDGSVTSLFDGNSPGPT0021480_1731DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021480-prsA-K00948NANA
AK018_057561692glmU_2COG1207Bifunctional protein GlmUGTGGTAGCCACGGCCCCTCACGGCGAGACGACCGCAGACCAGACGCCCGCACCGCAGCAGACGCCACGGCCCGCCGCCGTCGTCGTCCTCGCCGCCGGCCAGGGCACCCGGATGAAGTCCGCGACGCCCAAGGTGCTGCACGCCCTCGGCGGGCGCACGATGCTCGGCCACGCCATGACCGCCGCCGGCGAGCTCGCCCCCGAGCACCTCGCCGTCGTCGTGCGGCACGAGCGCGAGCAGGTCGCCGCCGCCGCGCTCGACCTCGACGCCGGTGCCCTCGTCGTCGACCAGGACGAGATCCCCGGCACCGGACGGGCCGTGCAGTGCGCCCTCGACGCCCTCGACGCCCGCGTGCACGCCACCCGCGCCGCGACGCTCGCGCAGAGCGACACGGTGCACGACGACGAGGACGGCGAGCACCCCCTCGGCGACGGCGTCGACGGCGCCGTCGTCGTCCTGGCCGGGGACATCCCGCTGCTCGACGGCGCCACCCTCGCCGAGCTGCTCGCCGCCCACCACGCCGACGGCAACGCCGTGACGATCCTGACCACCGAGCTCGAGGACGCCACCGGATACGGCCGCATCGTGCGCGAGACCGGCACCGGCGACGTCACCGCCATCGTCGAGCACAAGGACGCCACCGCCGGTCAGCGCGAGATCCGCGAGATCAACTCCTCGGTCTACGTCTTCGACGCCGCGGTGCTGCGCCGCGGCCTCGGAGGGCTCGGCAGCGACAACGCCCAGGGCGAGGTGTACCTGACCGACGTCGTCGCCTCCGCCCGCGCCGAGGGCGGGGCCGTGCGGGCCCTGCTGTCCGACGACCCGATGCTCGTCGAGGGCGTCAACGACCGGCTCGCGCTGGCCACCCTCGGCGCCGAGCTCAACCGCCGCACCCTCGAGCACTGGATGCGCGACGGCGTCACCGTCGTCGACCCCGCCACCACCTGGGTCGACGCCGACGTCGAGCTCGCGCCCGACGTCACCCTCCTGCCCGGCACCCAGCTGCACGGCGCCACCACCGTCGCCGCCGGCGCCACCGTCGGCCCGGACACCACCCTGACCGACGTCGAGATCGGCGCCGGGGCCACCGTCGTGCGCACCCACGGCTCGCTGTCCGTCATCGGCGAGGGCGCCTCCGTCGGGCCGTTCGCCTACCTGCGCCCCGGCACCGTGCTCGGGACGAAGGGCAAGATCGGCACGTTCGTCGAGACCAAGAACGCCGAGATCGGCGCCGGGTCCAAGGTGCCGCACCTGTCCTACGTCGGCGACGCCGTCATCGGCGAGCAGTCCAACATCGGCGCCGCGTCCGTCACCGTCAACTACGACGGCGTCGCCAAGCACCGCACCGTCATCGGCTCGCACGCCCGCACCGGCGCCGACAACATGTTCGTCGCCCCCGTCACCGTCGGTGACGGCGCCTACACCGCCGCCGGCAGCATCATCACGCGCGACGTGCCCGCCGGGTCGCTCGGCGTCAGCCGCGCCCAGCAGAAGAACATCGACGGATGGGTCGAGAGCCGCCGCCCCGGCACCCCCGCCGCCGAGGCCGCGGCGCGCACCCGCGACGCCGCCGGCGACGACGCCACGCTCGCCCCGCAGGCGAAGCGCGAGCTCGCCGAGCACAATGCCCTGAACGGGGCGAACCCCTCGTCGGACGACGAGGACGCGTCCGCCTCGACCGGATCCGCCTGAMVATAPHGETTADQTPAPQQTPRPAAVVVLAAGQGTRMKSATPKVLHALGGRTMLGHAMTAAGELAPEHLAVVVRHEREQVAAAALDLDAGALVVDQDEIPGTGRAVQCALDALDARVHATRAATLAQSDTVHDDEDGEHPLGDGVDGAVVVLAGDIPLLDGATLAELLAAHHADGNAVTILTTELEDATGYGRIVRETGTGDVTAIVEHKDATAGQREIREINSSVYVFDAAVLRRGLGGLGSDNAQGEVYLTDVVASARAEGGAVRALLSDDPMLVEGVNDRLALATLGAELNRRTLEHWMRDGVTVVDPATTWVDADVELAPDVTLLPGTQLHGATTVAAGATVGPDTTLTDVEIGAGATVVRTHGSLSVIGEGASVGPFAYLRPGTVLGTKGKIGTFVETKNAEIGAGSKVPHLSYVGDAVIGEQSNIGAASVTVNYDGVAKHRTVIGSHARTGADNMFVAPVTVGDGAYTAAGSIITRDVPAGSLGVSRAQQKNIDGWVESRRPGTPAAEAAARTRDAAGDDATLAPQAKRELAEHNALNGANPSSDDEDASASTGSAPGPT0018955_9DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCOSAMINE_MODIFICATION,PGPT0018955-glmU-K04042NANA
AK018_05758642hypothetical proteinATGCCTGCCGAACCTCGCGACGCCAAGCGCGCCCCGCGCGCCCGCATGACGGCGAGCCAGCGCCGCGAGCAGCTCCTGGCGGTGAGCCGCGGCCTGTTCGCGACGAAGGGTTTCGACGGCACGAGCGTGGAGGAGATCGCCTCGACGGCGGGCGTGTCGAAGCCGGTGGTGTACGAGCACTTCGGCGGCAAGGAGGGCATCTACGCGGTCATCGTGGACCGTGAGGTCCAGGCCCTGACCGGTGCGCTGACGGGTGCGCTGGCCGAGGGCGGGCACCCGAAGGTGATGGTGGAGCGCACGGCACTGGCGCTGCTCGGCTATATCGAGTCCTCGGAGGACGGGTTCCGCATCCTCGTGCGCGACTCCCCCGTCGCCCAGGCCACGGGCACGTTCTCCTCGTTGATCGGCGACGTCGCCACGCAGGTGGAGCACATCCTGGCCGACGAGTTCCGCAGCAACGGCCTGGACCCCAAGATCGCCCCGCTGTACGCGCAGATGCTGGTCGGCATGGTGGCCCTGACCGGCCAGTACTGGCTGGACGCCCGCCGCCCCAAGAAGGCCGACGTCGCCGCGCACCTAGTGAACCTGGCGTGGAACGGCCTGGCGGGCATGGAGCGCAAGCCGGGTCTGATCGGCCGCTGAMPAEPRDAKRAPRARMTASQRREQLLAVSRGLFATKGFDGTSVEEIASTAGVSKPVVYEHFGGKEGIYAVIVDREVQALTGALTGALAEGGHPKVMVERTALALLGYIESSEDGFRILVRDSPVAQATGTFSSLIGDVATQVEHILADEFRSNGLDPKIAPLYAQMLVGMVALTGQYWLDARRPKKADVAAHLVNLAWNGLAGMERKPGLIGRNANANANANA
AK018_05759507hypothetical proteinATGGACAGCACGCAGCACGCCGGCGACGAGGTCGACCGCATCGTCGCCGCCTGGCAGCGCGAACGTCCCGACCTGGACGTCGAGCCGCTGACCGTCTTCTCCCGCGTCAGCCGCCTCGCCCGCCACCTCGACCGGGCGCGCCGCATCGCGTTCGAGCGGCACCACCTCGAGACGTGGGAGTTCGACGTGCTCTCGGCCCTCCGCCGCGCCGGCGAGCCGTACCGCCTCTCCCCCGGCCGCCTCGTCGCGCAGACCCTCGTCACCAGCGGCACCATGACCAACCGCATCGACCGGCTCGAGCAGCGCGGCCTCGTCGAACGGCACCGCTCCCCCGACGACCGCCGCGGCGTCCTCGTCCACCTCACCGCCGCCGGCCGCGCCCGCGTCGACGCCGCGATGAGCGACCTGCTCGACGTCGAGGCCCAGGTCCTCGACGCCCTGCCCGCCGCGGAACGACCGCGGCTCGCCGCCCTCCTGAGGACCCTCGGCGCCCAGTTCGATGAGTAGMDSTQHAGDEVDRIVAAWQRERPDLDVEPLTVFSRVSRLARHLDRARRIAFERHHLETWEFDVLSALRRAGEPYRLSPGRLVAQTLVTSGTMTNRIDRLEQRGLVERHRSPDDRRGVLVHLTAAGRARVDAAMSDLLDVEAQVLDALPAAERPRLAALLRTLGAQFDENANANANANA
AK018_057601269nimTCOG28072-nitroimidazole transporterATGAGTAGCGCCGACGACGGCGGCACCCCGGCCGACCGGTCGGCGTCCGGCCCCGGCGGCTCCGGGTCCGACGGCGGCACCCGCCCGGGTGCGGCGCTCGCCGCGGGTGCCGGCGGACTCGTCCTCGCGGCCCTGCTGCTGGTGTCGGTCAATCTGCGCGCCCCGCTGACCGCGCTGGCACCGGTGGTGGACGACGTCGCCACCGGACTGGGGATGACCTCGGCCGGTGTCGGCCTGCTGACCTCCATCCCCGTGCTGTGCTTCGCGCTGTGCACACCGGCCGCTGCGGCCCTGGTGGGTCGCTGGGGTCAGGAACGCGCCCTCGTCCTCGCGCTGGTCGCCGTGCTCGGCGGCACCCTGCTGCGCTCCAGCGGCTCGGTCACGACGGCCCTGCTCGGCACCGCGGTGCTCGGCGTCGGCATCACCCTCGGCAACGTCGCCGTCCCGGTGATCATCACCCGCGACTTCCGACCCCGCGCCGCCGGGGTGACCGGCGCCTACACGGCGACGATGAACGCCGGGTCCACCGTCACGACCCTCTTCACCGCACCGCTCGCCGCCGCGTTCGGATGGCAGTGGGCCCTGGCGGGCTGGGGCGTGCTGGCGTTCGCAGCACTGGTCGCCTGGGTTCCCGCCGGCCGCACGCTGGCCGCCCGGCACGCCGGAGCACCGCCGTCGGACACCACGCCGCAGGCGGCGGACGCGACGGTGCAGCGCGGCCTGGCCGTCCTGCTCATGGTCGCGTTCGCCGGGCAGACGTCCGGCTACTACGCGATGTCGACCTGGCTGCCGTCGATCCTGGCCGACCGGATCGGGTTCGACGCCGCGGCCGCCGGGGGTGCGGCTGCCCCGTTCCAGCTCGCCGCCGTGGCGGGCGCGTTCCTGGTGCCGCTGGGTCTGCGCGGACGCCTGTCCGAGCGGACCGTCGCGACCGTGCTGTGCACGTTCTGGATGAGCCTGCCGGTGCTCCTGCTCGTGGCGCCGCAGGCCTGGTGGGTCGGGGTGTGCCTGGCGGGCGCCGCACAGGGCGGCGTGTTCACCGTGATCTTCACGCTCATCGCGCGGCGCTCGCCGTCCGTGGGTGCCGCCCGCCGGACCTCCGCCGTCGTGCAGACGGGTGGCTACGCCTGCGGAGCGCTGGCCCCGACGCTGCTGGGTGCGTTGCACGAGGCCACCAGCTCGTGGACGGCGTCGCTCGGCGTGATCGTCGGGCTGGTGGTGGCGATGGCGGCGGCGCTGTGGGTCGCGGCGGGTGATCGGGGCCGCTGAMSSADDGGTPADRSASGPGGSGSDGGTRPGAALAAGAGGLVLAALLLVSVNLRAPLTALAPVVDDVATGLGMTSAGVGLLTSIPVLCFALCTPAAAALVGRWGQERALVLALVAVLGGTLLRSSGSVTTALLGTAVLGVGITLGNVAVPVIITRDFRPRAAGVTGAYTATMNAGSTVTTLFTAPLAAAFGWQWALAGWGVLAFAALVAWVPAGRTLAARHAGAPPSDTTPQAADATVQRGLAVLLMVAFAGQTSGYYAMSTWLPSILADRIGFDAAAAGGAAAPFQLAAVAGAFLVPLGLRGRLSERTVATVLCTFWMSLPVLLLVAPQAWWVGVCLAGAAQGGVFTVIFTLIARRSPSVGAARRTSAVVQTGGYACGALAPTLLGALHEATSSWTASLGVIVGLVVAMAAALWVAAGDRGRPGPT0005211_1303DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_CYANATE_DETOXIFICATIONXENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449NANA
AK018_05761897cynR_3HTH-type transcriptional regulator CynRATGGAGCTGCGGCAGATGGAGTACCTGGTGGCGGTGGCCGAGGAGGGCCACTTCACCCGCGCGGCCGCGCTGTGCGGGGTGACCCAGTCCGGTCTGTCCGCCGCCATCCGCAACCTGGAGAAAGAGCTGGGTGCGTCGCTGTTCGCCCGCACCACGCGACAGGTCGCGCTGACGGATGCCGGCCGCGCGCTGCTGCCGTTCGCCCGGCGCATGCTCGCGCAGGCCTCCGCGGGCCGCGACGCCGTCGCGCGGGCGAGCCAGCAGCTCTCCGGCCGGCTGCGGCTCGGGTCCGAGCAGTGCCTCGGCGTGGTCGACGTCGGCCCGCTGCTGGAGCGCTTCCGGCTGCGGTACCCGCTCGTCGACGTCCAGTTCACCCAGGCGGGGTCCGCCGAGCTCGCCGCGCAGGTGCGCGGCGGGGAGCTCGACGTCGCGTTCCTCGCCACCACGCAGCATCTCGGCTCGCTGCGGAGGCTCGAGCTCGGCCGCCGGCCCGTGGTCGGCCTGGTGCACCCCACCGACGACCTGGCCCGCTCCGACCAGGTGACGTGGGAGGACCTGGCCGTCCGTGACTTCGTGGACTTCCGGGAGCCCTGGGCCATCCGGCAGCTCGTGGACGCGGCGTTCGCCGACCGCCACCTCGAGCGCCGGGTGCGGATGAGCGTCGACGACGTCCACACGCTGCTCGACTTCGTCCAGCGCGGCCTGGGGGTCGCCGTCGTGCCGCAGCACGTGGCCGCCAAGCCGCAGGCCGCCGGCCTGGTGACCCTCGAGCTGCCTGCCGGCACCACCCCGCAGTGGGTCGTCTCGGCGGTCTCGGGGCCGACGGCGGAACCGACCGCCACGCGCCTGCTCGAGCTGCTCGGGGAGGCCAACCTCGCCGTCGCCCAACCGGCCTGAMELRQMEYLVAVAEEGHFTRAAALCGVTQSGLSAAIRNLEKELGASLFARTTRQVALTDAGRALLPFARRMLAQASAGRDAVARASQQLSGRLRLGSEQCLGVVDVGPLLERFRLRYPLVDVQFTQAGSAELAAQVRGGELDVAFLATTQHLGSLRRLELGRRPVVGLVHPTDDLARSDQVTWEDLAVRDFVDFREPWAIRQLVDAAFADRHLERRVRMSVDDVHTLLDFVQRGLGVAVVPQHVAAKPQAAGLVTLELPAGTTPQWVVSAVSGPTAEPTATRLLELLGEANLAVAQPANANANANANA
AK018_05762861pdxIPyridoxine 4-dehydrogenaseGTGGAATCTCGCACCATCGGACACCGCACCGTCAGCGCCGTCGGACTCGGCGGGATGCCGCTGTCCATCGAGGGACGCCCCGACCGCGACCGCGCGATCGCCACCGTCCACGCCGCCCTCGACGCGGGCGTCACGCTCATCGACACCGCCGACGCCTACCACCGCGACGCCGGCGAGGTCGGCCACAACGAGGAGCTGATCGCCGAGGCCCTGCGCACCTGGGGCGGCGACCACTCCGCCGTGCTCGTCGCGACCAAGGGCGGGCACCTGCGCCCCGGCGACGGGTCCTGGACCAAGGACGGCCGTCCCGAGCACCTCAAGGCCGCGGCCAAGGCCTCCGCCCAGCGCCTCGGCGTCGACGCGATCGGCCTGTACCAGTTCCACCGCCCCGACCCGTCCGTGCCCTACGCCGAGTCCATCGGCGCGCTGGTCGAGCTCCTCGACGAGGGCGTGATCCAGCAGGCCGGCATCTCCAACGCGAACGTCGCCCAGATCGACGAGGCGAACGAGGTGCTCGGCGGACGCCTCGCCTCCGTGCAGAACCAGTTCTCGCCCGCCTTCCGTTCCAGCCTGGGCGAGCTGCAGCACTGCGCCGGGCTCGGCATCGCGTTCCTGCCCTGGTCACCGCTCGGCGGCATCGCCCGGGCCGGCGAGGTCGGCACGGCCCACGCGGCGTTCGGCCGCGTCGCCGAGAGCCGCGGCGTCAGCCCCCAGCAGGTCACGCTCGCCTGGGAGCTCGCGCTCGCCCCCGTCGTCGTGCCCATCCCCGGGTCCTCACGGCCTGCGAGCATCCAGGACTCGGTCCGCGCCGTCGACCTGGACCTCACCGCCGACGAGCTCGCCGAGCTCTCGGCCTCCTGAMESRTIGHRTVSAVGLGGMPLSIEGRPDRDRAIATVHAALDAGVTLIDTADAYHRDAGEVGHNEELIAEALRTWGGDHSAVLVATKGGHLRPGDGSWTKDGRPEHLKAAAKASAQRLGVDAIGLYQFHRPDPSVPYAESIGALVELLDEGVIQQAGISNANVAQIDEANEVLGGRLASVQNQFSPAFRSSLGELQHCAGLGIAFLPWSPLGGIARAGEVGTAHAAFGRVAESRGVSPQQVTLAWELALAPVVVPIPGSSRPASIQDSVRAVDLDLTADELAELSASPGPT0009140_735DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275NANA
AK018_05763936ydhF_2COG4989Oxidoreductase YdhFATGAAGACCGTCCCCCTGGGCACCACGGGCCGCCAGGTCCCCAACGTCGTCCTCGGCCTGATGCGCATCGCGCAGATGGACGACGACGCCGTGCGCACCCTGGTGCGCACCGCCCGCGACGCCGGCATCGACTTCGTCGACCACGCCGACGTCTACGGCGACGAGCTGCACGGCTGCGAGCGCCGGTTCGCCGAGACCATGCAGCTCACGTCGTCGCAGCGCGAGGAGCTGACCATCCAGTCGAAGGCCGGCATCGTGCCGGACGGGCCGTACTTCGACTACTCGTACGACCACCTCGTGTCCTCCGTCGAGGGCTCCCTGGAGGCGCTGGGCACCGACTACCTCGACGTGCTGCTGCTGCACCGTCCCGACGCCCTCGTGGAGCCGGACGAGGTCGCCCGCGCGTTCGACCACCTGGAGTCGAGCGGCAAGGTGCGCGCCTTCGGCGTCTCCAACCACACGCCCGGACAGATCGAGCTGCTGAAGAAGTCGGTGCGCCAGCCTCTGGTGGCCAACCAGGTCCAGCTCTCGATCACGCATGCACCGCTGGTCGCGCAGGGCGTGGCGGCCAACATGGCCGGGCTGGACCAGTCGGCCGTGCGCGACGGTGGCGGGCTGCTTGACTACTGCCGCCTGCACGACATCACCGTGCAGGCCTGGTCGCCGTTCCAGGCCGGGTTCTTCACCGGGGTGTTCCTCGGCTCCGAGGAGTACCCGGAGCTCAACGCCGTCATCGACCGGCTGGCCGCGAAGTACGACGTGCCCGCCATCGCGATCGCGACCGCGTGGATCACGCGGCACCCCGCCGGGATGCAGGTGGTCCTCGGCACGACGACGCCGGAGCGCGTCGCCGGTGCCGCGCAGGGTTCCGACGTCCCCCTGACCCGGGCCGAGTGGTACGAACTGTTCCGCGCGGCGGGCTACACCGTGCCGTAGMKTVPLGTTGRQVPNVVLGLMRIAQMDDDAVRTLVRTARDAGIDFVDHADVYGDELHGCERRFAETMQLTSSQREELTIQSKAGIVPDGPYFDYSYDHLVSSVEGSLEALGTDYLDVLLLHRPDALVEPDEVARAFDHLESSGKVRAFGVSNHTPGQIELLKKSVRQPLVANQVQLSITHAPLVAQGVAANMAGLDQSAVRDGGGLLDYCRLHDITVQAWSPFQAGFFTGVFLGSEEYPELNAVIDRLAAKYDVPAIAIATAWITRHPAGMQVVLGTTTPERVAGAAQGSDVPLTRAEWYELFRAAGYTVPNANANANANA
AK018_057641434hypothetical proteinATGGCGTTCCACGGCAGGTCCGCAGACCTTCGCCTGCTCCGACGGCAACTCGAGGACGTCCGCACGGGTGCAGGCACGACGCCCGGCCGCGCGCTGATGGTCAGCGGTCGGCGACGGGTGGGCAAGTCACGGCTCGTGCAGGAGCTGTGCGACCGCGCGGACGTCCCGTCCGTCGTCTTCCAGGCGACACGGCGCCGCAGCACCAGCGCCGAACGCCGAGACTTCCTCGACACGGTGTCCCATGCCGGTCTGCCCGGCTCGGACCTCGTCGCCGGACTCACCGCCTCCGACTGGAACCAGGCGCTCCGCTCCCTCGCGATCGCACTGCCGGACGACCGACCCGCCATCGTCGTCATCGACGAGCTCCCCTGGCTGGCCGAACAGGATCCCGAGCTCGAGGGCGCACTGCAGACGGTGTGGGACCAGCACCTCGCGCAGAAACCGGTGCTGCTGATCCTCGTCGGCAGCGACCTGTCCGTGATGACCGCCCTGCAACAGCAGGGCCGCCCCTTCTTCGGGCGTGCACGGCCGATGCACATCGAGCCGCTGCACGTCGCAGACGTCCAGGACGCCACAGGGCTCGATGCCGCCGCCGCCATCGACGCCTACCTCGTCACCGGCGGATTCCCGGAGGTCGTCCAGTCGTGGCAGCCGGGAACACCGCTGCGCGCCTTCCTCCACGAGTCCCTGACCGACCCGCTCTCCCCGCTGCTCGTCTCCGGTGAGCTCTCCCTGCTCGGCGAGTTTCCCGAACCGACCGCAGCGCGCGCGGTCCTCGACGCCGTCGGCTCAGGCGAGCGCACCTTCAGCACGATCGCCGCGGCAGCCGGCAACGACGGCCCCCTGAAGTCCGGCACGTTCGGGCCGCTCCTCACCTCTCTGCTCAGCAGAAGCGTGCTCGCTGCGGACAGCCCTCTGTCGACACGGGCCGACACCAAGAACAAGCGATACCGCATCGCCGACACCTACCTACGGTTCTGGCTCGCCTCCATCCGTCGCGCGATCCCCCTCGCCGAACGGGGTCACGGCGAACGCGCACTGGAGCACATCGAGCGGTCGTGGACATCCTGGCGCGGTCGCGCCGTCGAGCCGCTGGTTCGCACGTCGCTGGAACGGCTGCTCCCCGACGACTCCTGGCCCACCGCTACTGCCGTGGGCGGATGGTGGAACCGTCAGAACAACCCCGAGGTCGACCTGGTCGGCGCCGATCGTGAGCCCGTCGCGCGGTCCATCGAGTTCGTCGGCTCGGTGAAGTGGCACGACACCCGACCCTTCGACCGGCGCGAGTACGACGCTTTGGCCCGCGCAGCCGTCGCCGTCCCCGGAGCGGACGAGGACGTACCCCTGGTCGGGGTGTCCCGGTCGGGCTTCAGCGACGGGCTGCCGCTGGCGGCCACCTGGGGACCCGAGGACCTGGTGGCTGCCTGGCGGTAGMAFHGRSADLRLLRRQLEDVRTGAGTTPGRALMVSGRRRVGKSRLVQELCDRADVPSVVFQATRRRSTSAERRDFLDTVSHAGLPGSDLVAGLTASDWNQALRSLAIALPDDRPAIVVIDELPWLAEQDPELEGALQTVWDQHLAQKPVLLILVGSDLSVMTALQQQGRPFFGRARPMHIEPLHVADVQDATGLDAAAAIDAYLVTGGFPEVVQSWQPGTPLRAFLHESLTDPLSPLLVSGELSLLGEFPEPTAARAVLDAVGSGERTFSTIAAAAGNDGPLKSGTFGPLLTSLLSRSVLAADSPLSTRADTKNKRYRIADTYLRFWLASIRRAIPLAERGHGERALEHIERSWTSWRGRAVEPLVRTSLERLLPDDSWPTATAVGGWWNRQNNPEVDLVGADREPVARSIEFVGSVKWHDTRPFDRREYDALARAAVAVPGADEDVPLVGVSRSGFSDGLPLAATWGPEDLVAAWRNANANANANA
AK018_057651839ettA_3COG0488Energy-dependent translational throttle protein EttAGTGGCACATCTCCTCGGCGCGGACAGCATCTCGCTGACCATCGGCACCCGCACCCTGCTCGACGACGTCTCCCTCGGGCTCGACGACGGCGACCGGATCGGCGTCGTCGGCCCCAACGGTGCGGGGAAGTCCACGCTGCTGCGGATGCTCGCCGGCACGGCCTCGCCCGACGGCGGTCGCATCACCCGGGTGGGCGGCTCGCGGCTGGGGATGCTCGACCAGCGCGACGACGTCCCCGAGGGCGCCACCGTCCTGGACCTGGTGCACGGCGACGACGAGACCCACGAGTGGGCCTCCGACCCGCGGATCCGTGCCGTCCACGCCGGGCTGCTCGCCGACCTCGACCTCGACAAGCCGGCCACCACGCTCTCCGGTGGCCAGCGCCGTCGCGTGGCCCTGGCCCACCTGCTCGTCGAGGACCCGGACGTGCTGCTGCTCGACGAGCCGACCAACCACCTCGACGTCGAGGGTGTGGCCTGGCTCGCCGAGCACCTGCGGAACCGGTACGGCCGCCCCGGTGCGACGGGTGCGCTCGTGGTCGTCACCCACGACCGCTGGTTCCTCGACGCGGTGTGCTCGCGCATGTGGGAGGTCCGCGGCGACGGGACCGGCGCCGTCGACGGGTACGAGGGCGGGTACGCCGCCTACATCCTGGCCCGCGCCGAACGGTCCCGGCAGGCCGCCGCCGCGGCCGAGAAGCGGAACAACCTGCTCCGCAAGGAGCTCGCCTGGCTCAAGCGCGGCGCCCCGGCCCGCACCTCCAAGCCGAAGTTCCGTGTCGAGGCGGCTCAGACCCTCATCGCGGATGAGCCGCCGCCGCGCGACCAGCTTGAGCTGACGCAGATGGCCACGAAGCGGCTCGGCAAGGACGTCCTCGACCTCGAGGACGTCACGGTGCGCATCCCCCTGCCCGACGGCGGGGAGCGCACCCTGCTCGACGACGTCACGTGGCGGCTCGGGCCCGGCGACCGGTACGGCGTCGTCGGGGTCAACGGTGCCGGCAAGACGACGCTGCTCGCCCTGCTCGCCGGGCGGCGCGATCCCGAGGAGGGGCGCGTGCGCCGCGGCAAGACGGTCGAGGTCGCCGAGCTGACCCAGGAGGTCACCGAGCTCGACCAGGTCGGGGACCTGACCGCGGTGCAGGTGGTGGACCGGGAGAAGCGCACCGTCGTCGTGGACGGCAAGGAGCTCACGGCCGGGCAGCTCACCGAACGGCTCGGGTTCACGCGCGAGCGCGCCCACACCGTGGTGCGTAACCTCTCCGGAGGGGAGCGGCGCCGGTTGCAGCTGCTGCGGCTGCTCGTCTCGGAGCCGAACGTGCTGCTGCTCGACGAGCCCACCAACGACCTCGACACCGACACCCTGGCCGCCGTGGAGGACCTGCTCGACGGCTGGCCCGGCACGCTGATCGTGGTCTCCCACGACCGGTACCTGCTGGAGCGGGTCTGCGACCGGCAGTGGGCGCTGCTCGGCGACGGGGCGCTGAGGGACCTGCCCGGCGGCGTCGAGCAGTATCTCGACCTGCGCCGCGCTGCGACGTCCGGCGCGCCGGCGTCCGGCGGAGAGCCCACCTCTCGAGGGGCGGCGTCCGCGCCGTCGGCCGCCGCGACCCCCGCGCCGTCGGCCGCCGACCAGCGGCAGGCCAAGAAGACCGTCCAGCGCCTGGAGAAGCAGCTCGCCCGGCTGACCGACGAGGAGGCCCGGCTGCACGAGCGGATGGCCGCCGACCCCACCGACTTCGAGGCGACCGCCAAGCTGGACGCGCGCCTTCGTGAGCTCGGCGCTGAGAAAGACGAGCTGGAGATGCAGTGGCTGGAGGCTGCCGAGCTCGCCGACTGAMAHLLGADSISLTIGTRTLLDDVSLGLDDGDRIGVVGPNGAGKSTLLRMLAGTASPDGGRITRVGGSRLGMLDQRDDVPEGATVLDLVHGDDETHEWASDPRIRAVHAGLLADLDLDKPATTLSGGQRRRVALAHLLVEDPDVLLLDEPTNHLDVEGVAWLAEHLRNRYGRPGATGALVVVTHDRWFLDAVCSRMWEVRGDGTGAVDGYEGGYAAYILARAERSRQAAAAAEKRNNLLRKELAWLKRGAPARTSKPKFRVEAAQTLIADEPPPRDQLELTQMATKRLGKDVLDLEDVTVRIPLPDGGERTLLDDVTWRLGPGDRYGVVGVNGAGKTTLLALLAGRRDPEEGRVRRGKTVEVAELTQEVTELDQVGDLTAVQVVDREKRTVVVDGKELTAGQLTERLGFTRERAHTVVRNLSGGERRRLQLLRLLVSEPNVLLLDEPTNDLDTDTLAAVEDLLDGWPGTLIVVSHDRYLLERVCDRQWALLGDGALRDLPGGVEQYLDLRRAATSGAPASGGEPTSRGAASAPSAAATPAPSAADQRQAKKTVQRLEKQLARLTDEEARLHERMAADPTDFEATAKLDARLRELGAEKDELEMQWLEAAELADNANANANANA
AK018_057661491xylB_3COG1070Xylulose kinaseATGCCCCTCGTGGCCGGCGTGGACACCTCCACGCAGTCCTGCAAGATCGTCGTGCGCGACGCCGAGACCGGCGCCCTGGTGCGCAGCGGCTCCGCCAAGCACCCCGACGGCACCGAGATCCACCCCGACCACTGGTGGGACGCCTTCCGCGAGGCCGCACGCGAGGCCGGCGGGCTCGACGACGTCGCCGCGATCGCCGTCGGCGGCCAGCAGCACGGCATGGTCGCCCTCGACGCCGACGGCCGCGTCATCCGCGACGCCCTGCTGTGGAACGACACCCGCTCCGCACCCGCCGCCGAGGACCTGATCCGCGAGCTCGGCGACGGCGACCGGGCCACCGGCGCCCAGCGCTGGGCCGACGTCACCGGCTCCGTCCTCGTCGCCTCCCTGACCATCACCAAGCTGCGCTGGCTGCGCGACGCCGAGCCCGACAACGCCGCCCGCGTCGCCGCCGTCGCGCTCCCCCACGACTGGCTGTCCTGGCGCATCGCCGGCTACGGCCCCGCCGACGGGTCCCCCCTCGGCCCGGACCTCGACGCGCTCTGCACCGACCGCTCCGACGCGTCCGGCACCGGGTACTACGACGCGCAGGCGTCCGACGGCGGGACCACCGGGGCGTACCGCCGCGACCTGCTGCGCCTCGGGCTCGGCCGCGACGACGTGACGCTCCCCCGCGTGCTCGCCCGGTCGGAGCCGGGCGGCGTCGCCCACCCGTCGATCGCCGGCGGTGCCGTCGACGGCGGCGCGCTCATCGGGCCCGGCACCGGCGACAACGCCGGTGCCGCCCTGGGCCTGGGCATGCAGCCGGGCGACATCGCGATCTCCCTCGGCACCTCCGGCGTCGTCTCCGCCGTCGCCCCGCGCCGCACCGCGGACGGCTCCGGCGCGATCAACGGGTTCGCCGACGCCACCGGCAACGCCCTCATGCTCGCCGTCACGCTCAACGCGGCGCGTGTGCTCGATGCCGCCCGCAGCGTGCTGGGCGCGAGCTTCGACGAGCTCTCCGACCTGGCTCTCGCCGCGCCGGCCGGGTCGGACGGGCTGGTGCTCGTGCCCTACCTCGAGGGCGAGCGCACCCCCAACCGCCCTGACGCCACCGGCACGCTGCACGGCATCCGGCTGGCGACCTCCACGCGGGAGCACCTCGCCCGCGCCTACGTCGAGGGCATGCTGTGCGGGCTGGCGGACGGCCTCGACGCCCTGCGCGCCCAGGACGTGCCCGTCGAGCGGGTGCTCCTCATCGGCGGGGCCGCCCAGTCCCCCGCCGTCCAGGAGGTCGCCACCCAGGTGTTCGGACTGCCGATCTCCATCCCCGAGCCCGGCGAGTACGTGGCCGACGGCGCGGCCCGGCAGGCGGCGTGGGTCCTCGCGACTGCCGGATCCCCGGGCGCCGGCGCGCCCGAGTGGTCCGCCGCCGTCGCCCGGACGCTCGACGCCGACCCCCGCCCCGTGGTGCGCGAGCAGTACGCGGCGGTGCGCGACCTGGTCTGAMPLVAGVDTSTQSCKIVVRDAETGALVRSGSAKHPDGTEIHPDHWWDAFREAAREAGGLDDVAAIAVGGQQHGMVALDADGRVIRDALLWNDTRSAPAAEDLIRELGDGDRATGAQRWADVTGSVLVASLTITKLRWLRDAEPDNAARVAAVALPHDWLSWRIAGYGPADGSPLGPDLDALCTDRSDASGTGYYDAQASDGGTTGAYRRDLLRLGLGRDDVTLPRVLARSEPGGVAHPSIAGGAVDGGALIGPGTGDNAGAALGLGMQPGDIAISLGTSGVVSAVAPRRTADGSGAINGFADATGNALMLAVTLNAARVLDAARSVLGASFDELSDLALAAPAGSDGLVLVPYLEGERTPNRPDATGTLHGIRLATSTREHLARAYVEGMLCGLADGLDALRAQDVPVERVLLIGGAAQSPAVQEVATQVFGLPISIPEPGEYVADGAARQAAWVLATAGSPGAGAPEWSAAVARTLDADPRPVVREQYAAVRDLVPGPT0017535_2022DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017535-xylB-K00854NANA
AK018_057671314hypothetical proteinGTGCTGACCGACCCCACGACCGACCCGGACATCACCCCGACCGGGGTTCACGCTCCCGACGCCGCCGCGCTCGAGACCGACACTTGGCAGGCCGCGATCGACGCGTCGGCCGCTGCCGGCGGCGGGACCGTCGTCGTCCCCGCCGGTGTGCACCCCACCGGGTCGCTGCGCCTGCGCTCGCACGTCGAGCTGCACCTGGAGGCCGGCGCGGTCCTGCGGTTCGTGCCCGACCCTGCCTTCTACCCGCCGGTCGAGGGACGGTGGGAGGGTGCGCCCGAGACGATCCACCAGCCGTGCCTGTACGCGCGCGGCGAGACGAACGTGTCGATCACCGGCTTCGGCACCATCGACGGCCAGGGCGCCCCGTGGTGGGACACGTTCCGCCACCGCCGCGACGAGCTCGCCCACCCGCGCCCCACCCTGCTCGGCCTGCACGAGTGCCGGCGCGTCACCGTCCGTGACGTGACCCTGCGCGACTCGCCGTCGTGGACCGTCCACCCGCTGCTGTGCGACGGCGTGACGCTGACCAACCTGCAGATCGTCAACCCGCCCGATTCGCCCAACACCGACGGCATCGACCCGGAGTCGAGCCGCAACGTGCGTATCAGCGACTGCCACATCGACGTCGGCGACGACTGCATCGCGATCAAGGCCGGCACCGAGCGTTCCCCGGAACGGGTGCCCTGCGAGAACATCACGATCACCAACTGCACGATGGTGCACGGGCACGGCGGTGTCGTCCTCGGCTCGGAGATGTCCGGCGGCGTGCGGGGCGTCGTGATCAGCAACTGCGTGTTCGAGGGGACCGACCGGGGCATCCGCTTCAAGTCCCGGCGCGGGCGCGGCGGCGTGGTCGAGGACGTCCGCGTGGTCAACGTGATCATGCGCGGGGTGATGTGCCCGTTCGTGGTCAACCCGTTCTACTTCTGCGGTCCGGGCGGTGACGACCCGTCCGTCGCCGACCGCGCACCGCACCCGGTCGACGGCTCGACGCCGGTCTTCCGCCGCATCCACGTCGCCCACGTCTCCGCCCGCGACGTCCACGCCGCCGCCGGGTACCTGTACGGACTGCCGGAGCAGCCGCTCGACGACGTGACGTTCGACGACGTCTCGATCTCGTTCGCCGCGAACGCCGAGCCGGGTGTCCCCGCGATGGCCGACGGCGTCGACGCCGTGGTGCGCGCCGGCTTCCGGGTCGGGTTCCTGTCCGGCGCGCACTTCTCCCGGGTGCGCGTCGCGGGCGTCGAGGGGCCGGCCGTGGTGGCCGAGCAGGCGCCCGACCTCCCGGTCGAGGTCACCGGCTCCGCGAGGTAGMLTDPTTDPDITPTGVHAPDAAALETDTWQAAIDASAAAGGGTVVVPAGVHPTGSLRLRSHVELHLEAGAVLRFVPDPAFYPPVEGRWEGAPETIHQPCLYARGETNVSITGFGTIDGQGAPWWDTFRHRRDELAHPRPTLLGLHECRRVTVRDVTLRDSPSWTVHPLLCDGVTLTNLQIVNPPDSPNTDGIDPESSRNVRISDCHIDVGDDCIAIKAGTERSPERVPCENITITNCTMVHGHGGVVLGSEMSGGVRGVVISNCVFEGTDRGIRFKSRRGRGGVVEDVRVVNVIMRGVMCPFVVNPFYFCGPGGDDPSVADRAPHPVDGSTPVFRRIHVAHVSARDVHAAAGYLYGLPEQPLDDVTFDDVSISFAANAEPGVPAMADGVDAVVRAGFRVGFLSGAHFSRVRVAGVEGPAVVAEQAPDLPVEVTGSARNANANANANA
AK018_057681371cenACOG5297Endoglucanase AATGCCGCAGGGACGACGCCGGACCCGCTGGACCGCACTCACCGCCACGCTGGGCCTCGTGGCCGCCGGCACCACCGGGGTGGTCGCGGCCACCGGTGCTGCCGCAGCCGCGGGCTGCGAGGTCGACTACCGCATCACCAACCAGTGGTCGGGCGGGTTCCAGGCCGACGTCACCGTGACGAACCTGGGTGACCCGGTCGACGACTGGGAACTGACCTGGACGGCCGCGTCCGGCCAGTCGGTGACCCAGGCGTGGAACGCCGAGGTCGCGCGGTCGGGATCGACGCTCCGGGCCACGGGAGTCGGCTGGAACGCCGATCTCGACAGCGGCGCCAGTGCCGGCTTCGGATTCGTCGGCACATGGTCCGGCAGCAACCCGGTGCCCGACGACCTCGCCCTCGACGGTGCGCCGTGCACCGGCGGCGTCAGCGACCCGGACCCGACAGCCAGCACCGACCCCTCCGACGGCCCGACCGGCGAGCCCACCGGAGAGCCGACGTCGGACCCGACCGTCGACCCCACGCCGGCACCGCACGGCGAGCTCTACGTCGACACGGCGAACCAGGCCTACGCGGCATGGCAGTCCGCGAGCGGGAGCACCAAGGACCTGCTGGCCAAGATCTCACTGACCCCCCAGTCCTACTGGGTCGGCAACTGGAACGATGCCACGACGGAGCGGGCTGCGGTGGCGGACTACACCGGCCGTGCGGCGGCGGACGGCGCGACGCCGATGCTCACGGTGTACGCCATCCCGGGCCGGGACTGCGGCAACCACTCGGCAGGTGGCGTCGAGCAGAGCGAGTACGCGGCGTGGATCGACGAGGTGGCGGCCGGCATCCAGGGTGAGCCGTACATCGTGCTCGAACCGGATGCGCTCGCCCAGCTCGGCGACTGCGACGGTCAGGGCGACCGGCTCGGCTACCTGCGATACGCCGCCGAGACGTTGTCGGCGGCGGGTGGCCGCGTCTACATCGACGCCGGACACTCGGGCTGGCTGAGCCCGGCAGAGGCCGCGGACCGGCTGAACCAGGTCGGGTTCGAGCACGCCGTCGGGTTCGCGCTGAACACCTCGAACTACAACACCACGTCCGCCGAGCGCGCCTACGGCGAGCAGATCTCAGCGCTGACCGGCGGGGCCCGGTTCGTCATCGACACGTCACGCAACGGCAACGGGTCGAACGGACAGTGGTGCAACCCGAGCGGCCGCGCGCTCGGTGAGCGGCCGGTGGTGCTGAACGAGCCCGGCGGTCTGGACGCCCTGTTGTGGGTCAAGCTGCCCGGCGAGTCGGACGGCACGTGCAACGGCGGCCCGCAGGCAGGTGCCTGGTGGCAGGAGATGGCTCTGGAGCTGGCCGGCAACGCCTCCTGGTGAMPQGRRRTRWTALTATLGLVAAGTTGVVAATGAAAAAGCEVDYRITNQWSGGFQADVTVTNLGDPVDDWELTWTAASGQSVTQAWNAEVARSGSTLRATGVGWNADLDSGASAGFGFVGTWSGSNPVPDDLALDGAPCTGGVSDPDPTASTDPSDGPTGEPTGEPTSDPTVDPTPAPHGELYVDTANQAYAAWQSASGSTKDLLAKISLTPQSYWVGNWNDATTERAAVADYTGRAAADGATPMLTVYAIPGRDCGNHSAGGVEQSEYAAWIDEVAAGIQGEPYIVLEPDALAQLGDCDGQGDRLGYLRYAAETLSAAGGRVYIDAGHSGWLSPAEAADRLNQVGFEHAVGFALNTSNYNTTSAERAYGEQISALTGGARFVIDTSRNGNGSNGQWCNPSGRALGERPVVLNEPGGLDALLWVKLPGESDGTCNGGPQAGAWWQEMALELAGNASWPGPT0018620_4183DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-CELLULASES,PGPT0018620-celJ|eglA|eglS-K01179NANA
AK018_05769579folA_2COG0262Dihydrofolate reductaseATGATCGGACTCATCTGGGCCCAGGCCCGCGACGCCGCCGGCCGTGCCGTCATCGGGGCCGACGGCGGCATCCCCTGGCACGTACCCGAGGACTTCGCGCACTTCCAGCGCACGACGGCGGGACACCCCGTGGTCATGGGACGGCTCACGTGGGCCTCGCTCCCGGACCGGGCACGACCCCTGCCGCGGCGGACCAACGTCGTCGTCACGCGGGGTGCTGCCGAGAACGTGCTGGCGCTCGCCGTGGCTGCTCGGCGCGACGACGTCCGGGTGGCGGCGTCGCTCGAGTCGGCGCTGGGGCTCGCCGCCGAAGCACCCGGCGGCGACGAGGTCTGGGTCATGGGAGGTTCGCGCGTCTACGCCGAAGCGCTGCCGCTCGCGGACGTCTGTCTGGTGACGGAGGTCGACCTCGAGGTGGTCGGTGAGGTGTACGCCCCGGATCTCGACCCGCGGGAGTGGGTGCTCCAGGATGGCGGCGGGTCCACCGGCACCGGGCCCGGCGACGGCGGGTGGGTGACGTCGTCGGGCACGGACGGGCTGCGCTTCGGAGTCCGCACGTACCGCCGTCGTCCCTCCTGAMIGLIWAQARDAAGRAVIGADGGIPWHVPEDFAHFQRTTAGHPVVMGRLTWASLPDRARPLPRRTNVVVTRGAAENVLALAVAARRDDVRVAASLESALGLAAEAPGGDEVWVMGGSRVYAEALPLADVCLVTEVDLEVVGEVYAPDLDPREWVLQDGGGSTGTGPGDGGWVTSSGTDGLRFGVRTYRRRPSPGPT0007945_875DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287NANA
AK018_05770816thyA_2COG0207Thymidylate synthase ThyAATGAGCGCAGCAGCGGCGTCGATCCCCACCCCGTACGAGGACCTCCTGCGCGACGTCCTCGCCACCGGCACCCCCAAGGGTGACCGCACCGGGACCGGCACCCGCAGCGTGTTCGGGCGCCAGATCCGCTACGACCTGTCCGCCGGGTTCCCCCTGATCACGACCAAGCGGGTGCACCTGAAGTCCGTGCTCTACGAGCTGCTGTGGTTCCTGCGGGGCGAGAGCAACGTGCGCTGGCTCCAGGAACGCGGCGTGACCATCTGGGACGAGTGGGCCGACGACGACGGCGAGCTCGGCCCCGTCTACGGCGTCCAGTGGCGCTCCTGGCCGACGCCGGACGGGCGCCACCTCGATCAGATCGCGGCCGTCGTCGAGCAGATCCGCACCAACCCGGACTCCCGCCGGCACGTCGTCACCGCCTGGAACCCGGCGGAGGTCGACCAGATGGCGCTGCCGCCCTGCCACGTGATGTTCCAGTTCTACGTCGCCGACGGCAAGCTGAGCTGCCAGCTCTACCAGCGCTCGGCGGACCTGTTCCTCGGCGTGCCGTTCAACATCGCCTCCTACGCGCTGCTCACCCACATGGTCGCCGCGCAGACCGGGCTCAAGGTCGGCGACTTCGTGTGGACCGGCGGCGACTGCCACATCTACGACAACCACGTCGAGCAGGTCGAACGCCAGCTCGCCCGCGACCCCTACCCCTACCCGACCCTGCGGCTCGCACCCCGGGACTCGATCTTCGACTACGAGTACGACGACATCGAGGTCCTCGGCTACCAGCACCACCCCGGCATCAAGGCACCGGTCGCCGTCTGAMSAAAASIPTPYEDLLRDVLATGTPKGDRTGTGTRSVFGRQIRYDLSAGFPLITTKRVHLKSVLYELLWFLRGESNVRWLQERGVTIWDEWADDDGELGPVYGVQWRSWPTPDGRHLDQIAAVVEQIRTNPDSRRHVVTAWNPAEVDQMALPPCHVMFQFYVADGKLSCQLYQRSADLFLGVPFNIASYALLTHMVAAQTGLKVGDFVWTGGDCHIYDNHVEQVERQLARDPYPYPTLRLAPRDSIFDYEYDDIEVLGYQHHPGIKAPVAVPGPT0008145_1968DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0008145-thyA-K00560NANA
AK018_05771603hypothetical proteinGTGCCGCGACGTGCGATGCCCGGACGCGGGTTCGCCACGGGTGGGCTGGCCGGGCTGGTCTCGGTGCTGGTCGTGCTGCTGGTGGCGGCGCGGATCGGACGTCGGCTCGACGAACCGGGCGTGTGGGTGGGGATCGCCGTGCTCGTGACGGTGGCGGTCCTCGCGGTGCTGGGCTGGTTCGGCTTCACCACCGCTCGGGTACGGGGCCAGGTCCGGCACGTCGAGCGGTATCGGCCGGGGGTGCCGCTGGTGGTCGGGCGTCCGACGACGGCGCTGACGGCCGAGGCGCGGGCGTTGCGTGCCGGGACGCGCGGCCTGCCCCCGGACTGTCCCGACCGGGAGCACGTGGTGTACGCGTTCGGCCCGGACCGCGTCGAACTGTGGGTGCGCGGGGACGACTCCCCGCGCTGGTGGGTGACGCTGCCGGCGCCGGTCGCCACGGGCACCGCCCGCCCCGGGAACCGGGAGCTGACCGCCCTGACCATCCGCGACGCGGCGGCGCGGCTGCAGCTCGTGCCGACGTCGCACGAGGCGCGCGCGTGGCCGTCGGCAGTGCACCGGGAGGCCGCCGTCGTGCGCACGCAGGAGCTGCTGGTGCGGTGAMPRRAMPGRGFATGGLAGLVSVLVVLLVAARIGRRLDEPGVWVGIAVLVTVAVLAVLGWFGFTTARVRGQVRHVERYRPGVPLVVGRPTTALTAEARALRAGTRGLPPDCPDREHVVYAFGPDRVELWVRGDDSPRWWVTLPAPVATGTARPGNRELTALTIRDAAARLQLVPTSHEARAWPSAVHREAAVVRTQELLVRNANANANANA
AK018_05772312hypothetical proteinATGAGCACACGGGACAAGTCCGACTTCGGCTCCGGCAAGATCCTGCCCGAGGAGCTCGACGACGGCGCCGTGCCGGCGGCCGATGGCGACGGCGACCCGCACCCCGACCGCGACTGGGCCACCGGTCCGGACGTCGCGGCCGCCGAGGACGCTCCCGACGGCGGCTCGGACGACGTCGGCTCGGACGACGGCGGCGCCGAGGCGGGCCACCGCCCCGTCGAGCAGGGCGCCCACTTCCGCGACGACCCGCTCGCCCGGTCGGACGAGCCCGTCGAGCTCGACCACCGCCCCCGGCACGGCGCCGACGACTAGMSTRDKSDFGSGKILPEELDDGAVPAADGDGDPHPDRDWATGPDVAAAEDAPDGGSDDVGSDDGGAEAGHRPVEQGAHFRDDPLARSDEPVELDHRPRHGADDNANANANANA
AK018_05773471COG1765putative proteinATGACCGACCAGAACCTCACCGAGGAAGCCCCCGCCGCCGTCACCCCGACGCCCACCGACCCGCTGTGGGTGGAGCGCACCGGCACCCGCACCTACCGCGGGTACACGGCCCGGGGCGCGAGCGTCGAGATCGGCCCGGCCTCGGCGGGCGCCGTCTTCACCCCGGGCGAGCTGCTGAAGATCGCGCTGGCCGCGTGCGCGGGCATGTCCAGCGACACCAAGTTCGCGCGCGTGCTCGGCGACGACTACGAGACCACCATCCGGGTCGAGGACCCCAAGGACATGGCCGAGGACCTGTACCCGGTGCTCACCGAGAAGTTCGAGATCGACCTGTCGGGCCTGGACGACAAGACCCGCGAGAAGACGCTGCTGCTGGCCCAGCGGTCGATCGACCGGGCCTGCACCGTCGGACGCACGCTCAAGGCCGGCGCCGAGGTGCCGCCCGCGGAGTTCCACCAGCCGGAGTCCTGAMTDQNLTEEAPAAVTPTPTDPLWVERTGTRTYRGYTARGASVEIGPASAGAVFTPGELLKIALAACAGMSSDTKFARVLGDDYETTIRVEDPKDMAEDLYPVLTEKFEIDLSGLDDKTREKTLLLAQRSIDRACTVGRTLKAGAEVPPAEFHQPESNANANANANA
AK018_05774477hypothetical proteinGTGGCCGCCTACCGGATCGAGGTCGCACGGGTCGTGCCCGTGCCGGCGAGCGTCGCCTTCGCGTGGGTCGCCGACCCGCGCACGCACCCCCGGTTCATCCCGCTGACGCACCTCGTGCCGGAGCCGACGGCGCCCCTCGGGCCGGGTGACGAGTTCACCATGGTCAGCGGGCCCGGCGTGCGCCGCGGGCTGCCCGGGTTCGCGGACACCATGGTGATCACGACCGAGGAGCCGCCCGCGGCGGGACGGGTCGGGCGCAGCGCGGTGCGCAAGGTGGGCCCGTACCTGGTCGGGGAGGCGGGGTTCGACGTCGTCGCGGTCGACGAGCACCGCACGCGCGTCGTGTGGTGGGAGGAGGCCCGGTTCGCCGGTCCGTGGCCGCGCCGCCTCAACGAGCGCGCCGTCGGGCTGTTCCTGCGCGGCATGATGCACGTGTCGCTGCACCGTCTGGCTCGCCTCCTGCGGCGGCATCGGTAGMAAYRIEVARVVPVPASVAFAWVADPRTHPRFIPLTHLVPEPTAPLGPGDEFTMVSGPGVRRGLPGFADTMVITTEEPPAAGRVGRSAVRKVGPYLVGEAGFDVVAVDEHRTRVVWWEEARFAGPWPRRLNERAVGLFLRGMMHVSLHRLARLLRRHRNANANANANA
AK018_05775855hypothetical proteinGTGACGCTGCACGACGACGGCCCGCCCGGCGGGCGCACCGGTGCCGGCCCCGCGGACGCGAGGCAGGAGCTCGAGTCCTGGACCCGCTACCGCCCCACGCCCGTGCTCGACGCACTGCTCACGAAGGCCGTGACCATCCCGTCGGCGGCGATCCACCGGCACGTCGACTCGGTGCGCCGCCGCAACCCCGAGGCCGACCCGGCGGGCGTCATCCGCATCCTGGAGAAGGAGTACCTGACGCTCGTGGCGACGGCCGGCGGGGCGGTCGGTGCGGCCGCCGCGGCCCCGGCCGTGGGCACGGGTGCCGCCGCGGCGCTGACCACCAGCGACATCGCGACGTTCTTCGCGTCGTCGGCCGCGTTCTCGCTGGCCGTCGCGGACGTGCACGGCGTCCCGATCGACGACGTGCAGCGCCGTCGCGCCCTGCTGCTGGCGTCCGTGCTCGGCGAGTCCGGCGCGCGCGACGTCGAGAAGGCCGCCGCCGGGTCGCAGCTCGCCTGGGGCAAGGTGCTGCTGACGTCCATGCCGCAGACCACGCTCAAGCGGGTCAACAAGGTGCTGACCCACCAGTTCCTGAAGAAGCAGCTCGCCAAGCAGGGCACGCTCGCGCTCGGCCGGATGATCCCGTTCGGCGTCGGTGCCGTGGTCGGTTTCGCCGGGGGGCGGGCGCTCGGGCACGGCGTCGTCGGGCAGTCCCGGTCAGCGTTCGGGGCACCCCCGGACCACTTCCCGCGGGTGATCGAGCAGCCGCCTGCGGCGCTCGAGGAACCGGCGAAGCGTTCTGTGCGGGTCGGTCGGTTCCGGCGCCGAGGTTCTGAGGTCCCGCACGACGACGGCGGTACGGCGGACGCGTAGMTLHDDGPPGGRTGAGPADARQELESWTRYRPTPVLDALLTKAVTIPSAAIHRHVDSVRRRNPEADPAGVIRILEKEYLTLVATAGGAVGAAAAAPAVGTGAAAALTTSDIATFFASSAAFSLAVADVHGVPIDDVQRRRALLLASVLGESGARDVEKAAAGSQLAWGKVLLTSMPQTTLKRVNKVLTHQFLKKQLAKQGTLALGRMIPFGVGAVVGFAGGRALGHGVVGQSRSAFGAPPDHFPRVIEQPPAALEEPAKRSVRVGRFRRRGSEVPHDDGGTADANANANANANA
AK018_057761281COG1167Putative aminotransferase/MSMEI_6121GTGAGTACCTCACCGGAACAAGCCACCGTCGTCGACCCCGAGCTCGCCACCCGCCTGCCCGAGCTGCGCGAGCAGTACGCCGCGCTCCAGGCCCGTGGACTGTCCCTCGATCTGACCCGCGGCAAGCCGTCGGCCGAGCAGCTCGACCTGTCCGAACCGCTGCTGTCGCTGCCCGGCGAGGGCAACCACACCTCCGCCGCCGGGACGGACGTGCGCAACTACGGCGGGCTGACCGGGCTGCCGGAGCTGCGCGAGATCTTCGCCGAGCTGCTCGGTGTGCCCGTCGAGCAGCTCCTCGCCCAGGACAACGCCTCGCTGCGGCTGATGTACGACTGCGTGGTGCAGGCGATGCTGTTCGGCGTGCCCGGCGGTGAGCCGTGGTCCGCCACGGACGGGCCGATCACGTTCCTGTGCCCGGTGCCCGGGTACGACCGGCACTTCGCGATCTGCGAGGAGCTGGGCATCCGCATGGTCACGGTGCCGATGACGCCCGACGGTCCCGACGCGGAGGCCGTGGCCGAGCTCGTCGCCGAGGACCCGTCGATCAAGGGCATGTGGTGCGTGCCGACGTACGCCAACCCGGACGGCTCGGTGGTGTCCGAGGCCGTCGCGCGGCGTCTGGTGTCGATGCCGACGGCGGCGCCGGACTTCCGGATCTTCTGGGACAACGCCTACGCGGTGCACCACCTGACCGAGCACGAGACCAAGTCGGCGAACGCGATCGACCTCGCCGACGAGGCGGGCAACCCCGACCGGGTGCTGATGTTCGCCTCGACGTCCAAGGTGACCTTCGCCGGCGCCGGGGTGTCGTTCCTGGCGTCGTCGCCGGCGAACATCGCCTGGTTCTCCGAGCACCTGTCGTTCCGGTCGATCGGGCCGGACAAGGTCAACCAGCTCCGCCACGCGCTGTTCTTCGGCGACGCCGCCGGGGTGCGGGCCCACATGGCGAAGCACCGGGCGATCCTGGCGCCGAAGTTCGCGGCGGTGACACGGATCCTCGCGGAGCGGCTCGGCGACCTCGGCGTGGCGACGTGGACCGACCCGGACGGCGGGTACTTCGTGTCCGTCGACGTGGTGCCGGGCACCGCCTCGCGCGTGGTGGAGCTGGCCGGCGAGGCGGGCATCAAGCTGACGCCCGCCGGGGCGACGTTCCCGTACGGCGAGGACCCGCGGAACGCGAACATCCGCCTGGCGCCGTCGATGCCCCCGCTGGACGAGGTCGAGGTCGCGATGGACGCCGTGGCGACCTGCATCCTGCTGGCGGCCGCCGAGTCCGCCTGAMSTSPEQATVVDPELATRLPELREQYAALQARGLSLDLTRGKPSAEQLDLSEPLLSLPGEGNHTSAAGTDVRNYGGLTGLPELREIFAELLGVPVEQLLAQDNASLRLMYDCVVQAMLFGVPGGEPWSATDGPITFLCPVPGYDRHFAICEELGIRMVTVPMTPDGPDAEAVAELVAEDPSIKGMWCVPTYANPDGSVVSEAVARRLVSMPTAAPDFRIFWDNAYAVHHLTEHETKSANAIDLADEAGNPDRVLMFASTSKVTFAGAGVSFLASSPANIAWFSEHLSFRSIGPDKVNQLRHALFFGDAAGVRAHMAKHRAILAPKFAAVTRILAERLGDLGVATWTDPDGGYFVSVDVVPGTASRVVELAGEAGIKLTPAGATFPYGEDPRNANIRLAPSMPPLDEVEVAMDAVATCILLAAAESANANANANANA
AK018_057771050hypothetical proteinGTGACCGCGACCAGCCCTCCCCCGACCGAGCAGCGCGACGGCGCGCCCGCCCAGGAGCCCGAGCCCACCCGGCTCTCGATCACCCAGATCGTCGCCAGCGCGCTCGCGGCTGTCTCCACCACCGTCGCGCTGTCGTTCTTCGGCATCGCCGGGACGATCATCGGCGCCGGCGTGGCCAGCGTCCTGACCGTCGTCGCGAACTTCCTCTACACCCGCTCGATCGAGAAGACGCACGCCCAACTCAAGCCCGTCGTCGGGCAGATCAAGCGACCGCGCTCAGCACAGGCGGGGCCCGACGGCGGCACGGCGGCGGCGCTCGACGGCGGCGCGACGGCGGCGCTCGAGACCACCCGCGGTGGCACCCGCGTCGAGGCGAACGCCGACGAGAACTCCCCCGGCGAGGCCGCAGGTGACCCGGGCACGGCGGCGGACGGCGTGGACGATTCCGAGGCTCTGCCGCGCAACCGCTGGCTGCGGATGATCCGCCGGCACGGCAAGGTGCGGGTGCTGGCGGCCTCCGCGGCGGTCGTGTTCGTGGCCGTGATGGGCGTGGTGCTGGCCGTCGAGCTGCTGATCGGCAAGCCGCTGGCGGATGCGGTCCAGGGTCAGGACGGCTCGGGGACCAGCATCAGCCGGACCGTCGGGGCCGACCGCTCGGCATCGTCCAGCACCACGGACGACGGCGACGGGGTCGACCGGGCCGGTCGGAGCTCCACCGGCACGGACGAGGACCAGGGTGCCTCGGACGGCGCGCAGGCCGGCAGCACCGGGACAGGAACCGACAGCTCCGAAAGCTCGGACGACTCCGAGACCTCCGAGCCCACGACGGACCCGACCCCGGAGCCCACCGAGCCCGCGGAGCCTTCAGAGCCCACGTCTCCGACGGAGCCCACGGAGCCGACCGCTCCCGAGACTCCCGAGACGGGCGGGTCGGACGGTTCGACGGAGGGGTCCGGCGGCGTCACGAGCCCCGGCTCGGGATCCGGGTCGACCGGCACGGTCGGCGGCACGGAGTCCTCGTCGGGCGAGAGCTCGTCGAGCACCGACTGAMTATSPPPTEQRDGAPAQEPEPTRLSITQIVASALAAVSTTVALSFFGIAGTIIGAGVASVLTVVANFLYTRSIEKTHAQLKPVVGQIKRPRSAQAGPDGGTAAALDGGATAALETTRGGTRVEANADENSPGEAAGDPGTAADGVDDSEALPRNRWLRMIRRHGKVRVLAASAAVVFVAVMGVVLAVELLIGKPLADAVQGQDGSGTSISRTVGADRSASSSTTDDGDGVDRAGRSSTGTDEDQGASDGAQAGSTGTGTDSSESSDDSETSEPTTDPTPEPTEPAEPSEPTSPTEPTEPTAPETPETGGSDGSTEGSGGVTSPGSGSGSTGTVGGTESSSGESSSSTDNANANANANA
AK018_05778789artM_4COG1126Arginine transport ATP-binding protein ArtMATGACCAACACCTCGGGCGACGTGCCCGCCATCGAGTTCCGGGACGTCACCAAGCGTTTCGGCGACAACGTCGTGCTGGACGGGCTGAACTTCTCCGTCCCGCAGGGCCAGCGGATCACGCTCATCGGCCCGTCGGGATCGGGCAAGACCACGATCCTGCGGCTGCTGATGACGCTCGAGGAGCTCAGCGGCGGTCTCATCCTCATCGACGGTGACCCGTACACCCACGAGTACAAGGGTGAGAAGTGGGTAGCCGTCCCCGAGAAGCGCCGCCGTGTGGTGCGTAACCGCGTGGGGATGGTCTTCCAGCAGTTCAACCTCTTCCCGAACATGACGGTGCTCGAGAACATCATCGAGTCGCCGGTGCACGTCCTGGGCAAGTCCAAGGCCGACGCGATCGCGGACGCCGAACGGCTGCTCGAGAAGGTCGGCATGTCCGAGAAGCGGGACTTCAACACCAACCAGCTCTCCGGTGGTCAGCAGCAGCGCGTGGCGATCGCCCGCGCGCTGGCGATGGACCCGGAGATCCTGCTGCTGGACGAGGTCACCTCGGCGCTCGACCCCGAGATCGTCGCGGACGTCCTCGACGTGCTCCGCGAGATCGCCGAGACCACGGACATCACGATGCTCCTGGTCACGCACGAGATGCAGTTCGCCCGCGAGGTGTCGGACCGCGTGCTCATGTTCGACAAGGGGCAGATCGTCGAAGAGGCTGACCCCGAGACGATGTTCACCAACCCCTCCCACGAGCGGACCAAGGAATTCCTCAAGGCCGTCCTCGGCGGCTGAMTNTSGDVPAIEFRDVTKRFGDNVVLDGLNFSVPQGQRITLIGPSGSGKTTILRLLMTLEELSGGLILIDGDPYTHEYKGEKWVAVPEKRRRVVRNRVGMVFQQFNLFPNMTVLENIIESPVHVLGKSKADAIADAERLLEKVGMSEKRDFNTNQLSGGQQQRVAIARALAMDPEILLLDEVTSALDPEIVADVLDVLREIAETTDITMLLVTHEMQFAREVSDRVLMFDKGQIVEEADPETMFTNPSHERTKEFLKAVLGGPGPT0020790_2770DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
AK018_05779648glnPCOG0765Glutamine transport system permease protein GlnPGTGAACGACGACAGCATCTGGGACTGGGAACGCGCCTGGGAGGTGCTTCCCGACCTGCTCGCGGGCCTCTGGGTCACGATCCAGATCACCGTGCTCGGCATGATCATCGCCTCGGTCCTCGGTCTCTTCATCGCCTTGGCGATGCGGACGCCGAGCAAGTGGCTGACCACGCCCCTGAAGTTCCTCGTGGACTTCATCCGGATGACTCCGGTGCTGGTCCAGCTCGTGTTCGTCTACCTGCTGCTGACGGCCGTGCCCGGCTACGTGGTCGGGTTCGTCGTGCTCGGCGTGCACTACGCGACGTACATGTCCGAGGTGTACCGCGCCGGCATCGAGGCGGTCCCGAAGGGGCAGTGGGAGGCCGCCACGGCCCTGAACATGTCGAAGGGCCGGACCTGGCGCGCGGTGATCCTGCCGCAGGCCATCCGCAACACGTTGCCCGGACTGGGGAACTACGCGATCTCCATGTTCAAGGAGACGCCGTTCCTCTTCGCCATCTCCGTGACGGAGATGTACAAGGCGGGCCAGGACTACGGTGCCAACACGTTCTCGTACATCGAGGCGCTGACGATGGTCGGTCTGCTCTTCCTCGCGGTGAGCTACCCGACGTCGTTGCTGGTGCGCAGGATGGAGATCCGCCTTGCCTGAMNDDSIWDWERAWEVLPDLLAGLWVTIQITVLGMIIASVLGLFIALAMRTPSKWLTTPLKFLVDFIRMTPVLVQLVFVYLLLTAVPGYVVGFVVLGVHYATYMSEVYRAGIEAVPKGQWEAATALNMSKGRTWRAVILPQAIRNTLPGLGNYAISMFKETPFLFAISVTEMYKAGQDYGANTFSYIEALTMVGLLFLAVSYPTSLLVRRMEIRLAPGPT0020795_11264DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
AK018_05780759yecS_2COG0765L-cystine transport system permease protein YecSATGACGGATGACATCCAGGAGCTCATCGACAGGCTTCCAGCCCTCGGCGATGCAGTTCTGGTCACCCTGGAGATGACACTCGGCGGGGCTCTCCTCGCCATCGTCATCGCCGTCGTGCTCGGGTTCGGCTCGCGCACCCAGTCCCTCTGGGTGCGCGGGCCGTCCCGCGTGATCGTGGAGTTCTTCCGCGGCACGTCGCTGGTGGTCCAGCTCTTCTGGCTCTTCTACGTGCTGCCGGTCTTCGGCTTCAAGATGGAAGCGCTCGCCGTGGCGATCGTGGCCCTCGGTCTCAACTACGGCGCCTACGCGTCCGAGGTGGTCCGCGGTTCGATCGCCTCCGTGCCGCAGGGCCAGTGGGAGGCCGCGACGGCGTTGAACATGACCTGGTTCCACAAGGTGCGCCGGGTCATCTTCCCGCAGGCCTGGGCGCTGATGATCCCGATGCTGGCGAACCTGCTGATCCAGCTCGTCAAGGGTTCGGCGCTGGCCTACTACATCACCCTGCAGGACGTGAACTTCTGGACCGTCGAGCTGCGGCGGGCCACGGCGGACACGTTCTTCAGCTACACCGCCGGCCTGATCGTCTACTTCATCATCGCCTACCTGCTGACCTGGGGGATGAACATTCTCGAGGAGCGTGCCAAGCGGCGCCTGGGTCGCGGAACCCGGCCGACGTTGCGTGAGACGTTCAGCCTCAAGCCGCCGACCAACCCGCGGCTGGCGAACACGCAGATGCCCGCGGGGGGTGGTGCTGCGTGAMTDDIQELIDRLPALGDAVLVTLEMTLGGALLAIVIAVVLGFGSRTQSLWVRGPSRVIVEFFRGTSLVVQLFWLFYVLPVFGFKMEALAVAIVALGLNYGAYASEVVRGSIASVPQGQWEAATALNMTWFHKVRRVIFPQAWALMIPMLANLLIQLVKGSALAYYITLQDVNFWTVELRRATADTFFSYTAGLIVYFIIAYLLTWGMNILEERAKRRLGRGTRPTLRETFSLKPPTNPRLANTQMPAGGGAAPGPT0020795_3787DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
AK018_05781963hypothetical proteinGTGCAGTCCATCCGGACCACGAATCGCCGCCGCGCACTGGCCGCGGCCGGCTCTGTACTTGCTCTGACCGCCCTGACCGCCTGCTCGAGCGTCGACGACGGCGGTTCGAGCGACGGTGACAGCGGCGACAGCGGCGACAGCGAGTCCATGTCGACCCTGGCCGACCTGCAGGACGCCGGCTCGATCAACGTCGGATTCTTCGGTGAGGTGCCCTACTCCTACGAGGAGGACGGCGAGCTGACCGGTGCCACCATCGAGCTGGGCCGCGCCATCTACGGCGAGCTCGGCATCGACGAGGTCACCGGTACCCAGGTCGAGTGGGGTGCTCTCATCCCCGGCGTCAACGCCGACCGGTTCGACGCCGTCAGCGCCGGCATGTCGATCCTGCCGGAGCGCTGCGAAGAGGTCGCCTTCGCCGACCCGACCATCATGTACACCACCGCCTTCCTCGTCCCCGAGGGCAACCCCGAGGGCCTGACCGACTGGCAGTCGGTCGAGGGCAGCGGCCTGACGCTTGCCGTCACCTCCGGTGCCATCGAGGCCGGCTACGCCGAGGAGACCGACGTCGACGCCATGGAGGTCCCGGACCGCCAGGCGGGCCTGGACGCCGTGGTGTCCGGCCGTGCCGACGCCTACGCGCTGACCGGCATCTCCCTGCGCGCCCTGGCCGAGGAGACCGACCAGCCCGTCGAGGCGACCGAGGCCTTCACCGCCACCATCAACGGTGAGCCGCAGATCGGTGCCGGCGCCGAGGTCTTCCGCCAGGACGACACCGAGCTGCTCGACGCCTACAACGAGGGTCTCGCCACCTACCTGGAGGACGAGGCCGCCTGGCTCGAGATCATGGAGCCGTTCGGCTTCAGCGCCGCCGAGTTCCCGCCCAGCGGCCTGACCGCCGAGCAGCTGTGCGACCCGGACCAGGACCTCTCCGACCTCGCCGACGAGCTGGGCATGGACTACTGAMQSIRTTNRRRALAAAGSVLALTALTACSSVDDGGSSDGDSGDSGDSESMSTLADLQDAGSINVGFFGEVPYSYEEDGELTGATIELGRAIYGELGIDEVTGTQVEWGALIPGVNADRFDAVSAGMSILPERCEEVAFADPTIMYTTAFLVPEGNPEGLTDWQSVEGSGLTLAVTSGAIEAGYAEETDVDAMEVPDRQAGLDAVVSGRADAYALTGISLRALAEETDQPVEATEAFTATINGEPQIGAGAEVFRQDDTELLDAYNEGLATYLEDEAAWLEIMEPFGFSAAEFPPSGLTAEQLCDPDQDLSDLADELGMDYPGPT0020800_2153DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
AK018_05782756hypothetical proteinATGCCCCCCTCGCACCGCCCGGCCCCCGGAGCCGCCCCGACCCTGTCCCCGGTGACCCGCCCCTCGACGGTGGACCTGATCACCGTCGAGCTGCGCAACGCCATCTACACCGGGGCGCTGCGCGTCGGCTCCCCGATCCGCGAGGTCGAGATGGCCGGTCAGCTCGGTGTCAGCCGGGGCCCGTTCCGCGAGGCCGCCCAGCGCCTCGTCGCCGAGGGACTCGTGGTGGCCACCCCGGGGCGTGGCCTCTCGGTGCGTCGGATCGACCGGGACCGCATCCCGGCGCTGTACACCGCGCGCACGATGGTGGAGACGACGGCGGCACGCCTCGCCGTCGAGCACGCCACGGACGAGCAGGTCGCCGTCGTGCGGCGGGCGCACGACGCGCTCGTCCGCGCCGACGCGACCCACGACGCCCTGCAGATCGGCGCCGCCGACCTCAACGTGCACTGGGAGCTCGTCGCCGCGGGCGGCAATCCCTGGCTGCTGAGCTGGATGAGCACCCTCATCGTCGAGGTGCGCATCGCCAGCTTCACCGTCAGCGAGGAGTACGCCGTCCGTCGCGACGCGGGGCCGTCGCACGCACCGATCGTCGAGCTGCTCGAGGCGCGGGACGCCGACGCCCTCGACGCCGCGATCCGCGCCAACCTGGACGACGCCGTCGCGCGGCTCCTGGCGCCGGAGGCGACCGGGGTGCCCATGCTCGAGGAGCCGCGCCCGCTGCCGGCCCCGCGCCTGGACCCGCTCGACCTCTGAMPPSHRPAPGAAPTLSPVTRPSTVDLITVELRNAIYTGALRVGSPIREVEMAGQLGVSRGPFREAAQRLVAEGLVVATPGRGLSVRRIDRDRIPALYTARTMVETTAARLAVEHATDEQVAVVRRAHDALVRADATHDALQIGAADLNVHWELVAAGGNPWLLSWMSTLIVEVRIASFTVSEEYAVRRDAGPSHAPIVELLEARDADALDAAIRANLDDAVARLLAPEATGVPMLEEPRPLPAPRLDPLDLNANANANANA
AK018_057831509dap_3D-aminopeptidaseATGACCCTCACCGGAACCGCGCCGGACCCTGCCCGCGCCACCGCACCGACGTCGGGCGGGCTGGACTACCTGCACGACTGGGCCGCGACCCAGGCCGGTCTGGCCCGTGTCCCCGGCGTCCAGTACGCGGTGCTGGTCGGCGACGACGTCGTGGCCGACGGCGCCTGGGGCGTCACCGACATCACCTCCGGCACACCCTTGCGCAGCGACCACGTCTTCCGCGTCGCGTCGCACTCCAAGACGTTCACCGCCACGGCGATCGCCCGCCTGGTCGACGCCGGCCACCTGCGCTGGGACGACCCCCTCGGCGACCACGTGCTCGAGCTCGACGGCTCCGACGCCGGGCACGTCACCGTCCGCGAGGCGCTCGGTCACACCGGCGGCCTGCTGCGCGACGGACGCGACGCCGACTTCTGGCAGCTCGCCACCCCGTTCCCCGACCGGGCGGCCCTCCTCGACTCCGTGCTGCACGGCGGCGACGTCTACGGCCGCGGCGAGCACTTCAAGTACTCCAACCTCGCCTACGGCCTGCTCGGCCTCGTCGTCGAGGCCGTCACCGGCCGCCCCTACGACGAGCACCTGCGCGCCGACCTGCTCGAGCCCCTCGGGCTGGCCGACACCCTGCCCGAGCTGGACGACGACGTCGCCCGGCGTGCCGTCGTCGGACACTCCGCACGCGCCCTGGCCACCCCCGGGCTGGCCACGACGTTCGCCGACGGTCGCCTGCCCGTCGCGGGCGTGACCACGGGGGCGCTCGCGGCGGCCACGGGGTTCTGCTCGACGGCGCGCGACCTGGTGCGCTGGGCGGCGGCGCACTTCGACGGCGCGGGTCTGGTGCGTCCCGAGACGCTGCGGCTGCTGCAGCGCGACGAGTCCGTCATCGACCGGCCGCACGCGCCGCGTCGGACCTACGGTCTGGGGTTCGAGTCGCGCACGGTGGCCGGGCGGCGGCTGCTGGGCCACTCGGGCGGGTTCCCGGGACAGATCACGCGCACGTGGTTCGACCCGTCCGCGCGCATCGCGGTCTCGGTGCTGACCAACGCGGTCGACGGGCCCGCGGACCAGATCGCGCAGGGCCTGTTCGCGCTGGTCACCACGGCTCTGGAGGGTTCCGGGACGTCGGTGCACGACGGCGGTGCGGGCGCGGGTGCGCCGGTGGCGGAGGGTGCGGCACCGGCGTCGGACCCGGCCGCCACGGCGGGGCACCCGCTGGACCGGTGGACCGGGCGGTTCGCGAACCTGTGGGGCATGACGGACCTGGTGCGTCTGGGTGATGCGCTGTGGCTGGTGGACCCGCGGCGCGCCGACCCGTTGGAGGGCGCCGAGCGGTTGTCCGTGGACGGCGAGGTGCTGCGACCGGAGGCTCATGCCGGGTTCGGTCCGGTGGGGGAGCCGATCCACGTCCTGCGCGACGGGGCGGGCGAGCCGAGTGCCGTCGTCGTCGGCGGGATGACGTCCTGGCGGGCGGACGAGTTCGAGCGGGCGCGCCGGGAGCAGACCGCCCGCTGAMTLTGTAPDPARATAPTSGGLDYLHDWAATQAGLARVPGVQYAVLVGDDVVADGAWGVTDITSGTPLRSDHVFRVASHSKTFTATAIARLVDAGHLRWDDPLGDHVLELDGSDAGHVTVREALGHTGGLLRDGRDADFWQLATPFPDRAALLDSVLHGGDVYGRGEHFKYSNLAYGLLGLVVEAVTGRPYDEHLRADLLEPLGLADTLPELDDDVARRAVVGHSARALATPGLATTFADGRLPVAGVTTGALAAATGFCSTARDLVRWAAAHFDGAGLVRPETLRLLQRDESVIDRPHAPRRTYGLGFESRTVAGRRLLGHSGGFPGQITRTWFDPSARIAVSVLTNAVDGPADQIAQGLFALVTTALEGSGTSVHDGGAGAGAPVAEGAAPASDPAATAGHPLDRWTGRFANLWGMTDLVRLGDALWLVDPRRADPLEGAERLSVDGEVLRPEAHAGFGPVGEPIHVLRDGAGEPSAVVVGGMTSWRADEFERARREQTARNANANANANA
AK018_057841017drrA_6Daunorubicin/doxorubicin resistance ATP-binding protein DrrAATGCGCGACGCGTCCGGTCCGGCTGTCGAGGCAGCCGGCCTCGTCAAGCACTTCACGTCCGGCAAGAAGACGACCAAGGCGGTCGACGGCGTCGACCTGTCGATCCCCGCCGGCACCGTGTTCGGCCTGCTGGGGCCCAACGGTGCGGGCAAGACGACGGTGGTGCGCATGCTCGCCACGCTGCTGCGCCCCGACGCGGGCACGGCACGGGTGCTGGGGCACGACGTCGTGCAGGACGCCGACGCCGTGCGCGGTGCCGTCGGGCTCACCGGCCAGTACGCGTCCGTGGACGAGGACCTCACCGGCACCGAGAACCTCCTCATGCTCGCGCGGCTGTACGGGTTCCGCGGCACCGCGGCCAGGACGCGCGTGAGCGAGCTGCTGGAGGCGTTCAGCCTGACCGACGCCGGGTCACGGCAGGTCAAGACGTACTCGGGCGGTATGCGACGGCGGATCGACCTGGCCGCGTCGCTGGTGCTCTCCCCGCGGGTGCTGTTCCTCGACGAGCCGACCACGGGGCTGGACCCTCGCTCGCGCAACCAGGTGTGGGACATCGTGCGGGTGCTCGTCGACGACGGCGCCACCATGCTGCTGACCACGCAGTACCTCGAGGAGGCGGACCAGCTCGCCGACCGTATCGCCGTGATCGACCACGGCAAGCTCATCGCGGAGGGCACCTCCAGCGAGCTGAAGCGGTCGGTCGGCCAGGGTGCGGTGGACCTGCGCCTGGCCGACGCCTCCCGGCGCGGCGAGGCGGCCGACGTCGTGCAGCGGGTGCTCGGTACGGAGCCGACGCTGCCCACCGACCCGTACGCACTGTCCGCGCGGGTGCCCGACGACGGAGCGCACCTGGTCGCGCAGGTGCTGCCCGCGCTGGGCGAGGCCGGGATCGCCGTGCCGGAGTTCTCCCTCGGCCAGCCCAGCCTGGACGAGGTCTTCCTGACGCTGACCGGCCAGCCGTTGCCGGACGAGCAGGGCTCCGAGGAGCCCGCCCCTGCCCCGGAGGTGTCCCGATGAMRDASGPAVEAAGLVKHFTSGKKTTKAVDGVDLSIPAGTVFGLLGPNGAGKTTVVRMLATLLRPDAGTARVLGHDVVQDADAVRGAVGLTGQYASVDEDLTGTENLLMLARLYGFRGTAARTRVSELLEAFSLTDAGSRQVKTYSGGMRRRIDLAASLVLSPRVLFLDEPTTGLDPRSRNQVWDIVRVLVDDGATMLLTTQYLEEADQLADRIAVIDHGKLIAEGTSSELKRSVGQGAVDLRLADASRRGEAADVVQRVLGTEPTLPTDPYALSARVPDDGAHLVAQVLPALGEAGIAVPEFSLGQPSLDEVFLTLTGQPLPDEQGSEEPAPAPEVSRPGPT0006725_1110DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_05785825drrB_3Daunorubicin/doxorubicin resistance ABC transporter permease protein DrrBATGAGCGCCGTCGACATCAGCACGACCACCCTGCGCGACGCCGTCGCGCTCGAGACCCGGCCCACCCGACCGTCCGCCGTGTCCACGTCCCTGACGTTCGCCTGGCGGGCTCTGCTGAAGATCAAGCACGTCCCGGAGCAGCTGTTCGACGTGCTGGTCTCCCCCGTGATCTTCACGCTGATGTTCACGTACCTGTTCGGCGGGGCGCTGGCCGGGTCGACGGACGCCTACATCCAGTTCCTGCTCCCGGGGATCCTGGTGCAGACGATCATCATCGTGACCGTCTACACCGGCTACACCCTCAACACGGACATCACCAAGGGGGTGTTCGACCGGTTCCGCTCGCTGCCGATCTGGCGTGCGGCGCCGATCGTGGGCGCGCTGCTGGGCGACACCGTGCGGTACACGATCGCGTCGATCATGTGCATCGGGCTGGGGCTGCTCATCGGATTCCGGCCCGACGGCGGGGTCCTCGGCGTGGTCGGGGGCGTCGCGCTGCTGCTGGTGTTCGCGTTCGCCCTGAGCTGGATCTTCACCATCCTGGGGCTGCTGCTGCGCACCCCGAACGCCGTGATGGGCGTGTCGATGATGGTGCTGATGCCGCTGACGTTCGCGTCGAACATCTTCGTCGACCCGTCGACCATGCCGTCCGGGCTGCAGGCCTTCGTGGACATCAACCCGGTGTCCCACCTGGTGACCGCCGTCCGCGGGCTCATGGGCGGGGTGGCAGACACCGGCGACGTCGTGACGGTGCTGATCTCCGCGGTGGTCATGACCGCCGTGTTCGCGCCGATCACGATGTACCTGTACCGCACCCGTCACTGAMSAVDISTTTLRDAVALETRPTRPSAVSTSLTFAWRALLKIKHVPEQLFDVLVSPVIFTLMFTYLFGGALAGSTDAYIQFLLPGILVQTIIIVTVYTGYTLNTDITKGVFDRFRSLPIWRAAPIVGALLGDTVRYTIASIMCIGLGLLIGFRPDGGVLGVVGGVALLLVFAFALSWIFTILGLLLRTPNAVMGVSMMVLMPLTFASNIFVDPSTMPSGLQAFVDINPVSHLVTAVRGLMGGVADTGDVVTVLISAVVMTAVFAPITMYLYRTRHPGPT0006730_14418DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_05786879hypothetical proteinATGCGACAGCGAATTCGCGCCTTCTCCGTCGGCGCCGCCCGAGCGCAGGGCGTCGGTGCCGAGGCCCTGCGGGCCGGCGGCCAGTACGCCGTGCCGTTCCGCGGGGTCCGGACGACCGGCGAGCCCCGCGACCTGTTCGAGCGCTGCGTCGCGTTGAGCACAGTGCTGCACGACGACGTCGTCTTCAGTCACGTGACCGCGCTGCGACTCCTCGGTGTCGACGTGCCGTGGACCGTCGAGGACGACCGGCGACTGCATGTCGTGACTCCCTCCGCGAGTCATAGGGTCCGTCGCCCCGGCGTCGTGGCCCACCGCAGTCGCCAGGACGCGATCTCGGCAGTCGACCTCGACGGGTTGCTCGTGACCGCACCGGCGCAGACCTTCGTCCAGGTCGGGGTGGGGTTGCGCCTTCCGGACGACGTCGTCGTCCTCGGAGACGCGTTCCTGCGTCGCAAGCGCATGCTGACGAGCATCTCGGAACTACAGCGGACCGCTGCCGCGACGACGAAGGTGAAGGGGATCGCGCAGGTGCGGGACCAGCTCGCGCGGGTCCGGCCGGGGACGGACTCGCCGATGGAGACGCGGACACGCCTGTTGCTGACGAGCGCCGGACTGCCCTGTCCGCTGGTCAACGAGGTGGTGCGGCTCGACGACGGGACCTACGTGAAGCGCTGCGACATGTACTACCCGGGGGCGCGGGTGGCGATCGAGTACGACGGCGACCAGCACCGGACCGACAAGGCGCAATGGCGCGACGACGTCCGGCGTCGGCGCTGGCTGGAGGAGATCGGTGTCACCGTGATCGTCGTCGTGGCCGACGATGTCATCGGGGACGGGACACGGCTCGTCGCTCGCGTACGTCAGGCGCTCGCCCGATGAMRQRIRAFSVGAARAQGVGAEALRAGGQYAVPFRGVRTTGEPRDLFERCVALSTVLHDDVVFSHVTALRLLGVDVPWTVEDDRRLHVVTPSASHRVRRPGVVAHRSRQDAISAVDLDGLLVTAPAQTFVQVGVGLRLPDDVVVLGDAFLRRKRMLTSISELQRTAAATTKVKGIAQVRDQLARVRPGTDSPMETRTRLLLTSAGLPCPLVNEVVRLDDGTYVKRCDMYYPGARVAIEYDGDQHRTDKAQWRDDVRRRRWLEEIGVTVIVVVADDVIGDGTRLVARVRQALARNANANANANA
AK018_05787951COG0589Universal stress proteinATGACACGTCCAGAGGTTGTCCTGGTAGGGGTGGACGGATCCGCGGCCAGCCTGCACGCCCTGGACTGGGCCGCCGCGTACGCCGAGCGGGTCGGATGGTCGCTGCACATCGTGTGCAGCTACTCGTTGCCGTCGTTCACCGCCGCCTCGCTCGACGGCGGGTACGCCGCCCTGGACGACACGGCGATCGCCGAGGGCGCCAAGGCGGTCCTGTCCGAGGCGCGGGCACGGGTCGCCGGCTTCTCGGGGCGTGTCGAGGGGTCGGTCGTCACCGGCGACGCCGCCGGGGTGCTCGTGGAACTGTCCACGGAGCACAGCCTCGCTGTGGTCGGCACCCGCGGCCGTGGCGGGTTCACCGAGCGTCTGCTCGGTACCGTGTCCTCGGCGCTTCCGGCGCACGCCCACTGTCCTACCGTCGTCGTGCCCTACCGGGAGGCTGCCGTGGACGCCGCCGATCCCGAACGAGGGGACGGGGACCGGGTCCACGAGGTCCGTCGGATCGTCGTCGGCGTCGACGGATCGCCGTCGGCCGAGGTCGCTCTGCGCCACGCCGTCGAGCAGGCCCTCGCCTGGGACGCCGAGCTCGTCGCGGTCGCCGGCGTGCCCCTCGGCAGCGGGGTCGGGGTGCTCGCCTGGTTGCCGTCGCAGATCGACCACGAGCAGGTGCTCGAGGATGTCCGGGCGGGCCTGGACGTGATCGTCGACCGTGTCCAGGCGGAGAACCCGGGCCTGGAGATCAAGCGGCACGTACTCGATGGTTCGGGTGCCGAGCTGCTGACCGAGTTCTCGGGGGCGTCGGACCTCGTGGTCGTGGGATCGCGGGGCCGCGGCGGGTTCCGCGGGCTGCTGCTGGGGTCGACCAGCCAGGCTGTGCTGCACCACTCGAAGTGCCCGGTGCTCGTGGTGACGCGCAAGTGCGACGAGGAGATGCAGGCCGAGTCGGCCGCCTGAMTRPEVVLVGVDGSAASLHALDWAAAYAERVGWSLHIVCSYSLPSFTAASLDGGYAALDDTAIAEGAKAVLSEARARVAGFSGRVEGSVVTGDAAGVLVELSTEHSLAVVGTRGRGGFTERLLGTVSSALPAHAHCPTVVVPYREAAVDAADPERGDGDRVHEVRRIVVGVDGSPSAEVALRHAVEQALAWDAELVAVAGVPLGSGVGVLAWLPSQIDHEQVLEDVRAGLDVIVDRVQAENPGLEIKRHVLDGSGAELLTEFSGASDLVVVGSRGRGGFRGLLLGSTSQAVLHHSKCPVLVVTRKCDEEMQAESAANANANANANA
AK018_05788795hypothetical proteinATGGCGGCACCGTCCGCCGCTGCGGGTCGCCGCGCCGCCGTCGTCGCGACCGCCGGTGGCCTGCTGGTGTCGACCATCGGTGGCGCCACGGCGGCACAGGCGGCTCCGGTCGAGTCGGACGCCGCGAAGAAGCTCAGCACCGTCGACCTCGGTGCGCTGACCGATCAGGCCCGTCAGGCCCTGGAGTCGGCTCCGGTCGTGACCGTGGACGCCAAGTCCGAGGTCACGGTCGAGAAGGTCACCTCGAAGGTCGTCAAGAAGGCCGGCATCAAGGCCGCGCCGGAACCCGAGCCGGAGCCCGTGCGCGAGGTCGCACCGTCCCGCTCGGCCGAGCGGACCTCGCTCGAGTCGACCTCGACCTCGACCTCGACGTCGTCGTCGTCCTCGTCGAGCTCCGAGTCCAGTTCGAGCAGCAGCTCCGCGAGCACCACGACCGCGACCTCCAGCGGTTCCTACTCGTCGGCGGTGTCCATCGCGGCCCGGTACATCGGCACCCCGTACGTCGTGGGCGGCTCCTCGCCGTCCGGCTTCGACTGCTCGGGCCTCGTGACCTACGTCTACGCCCAGCTCGGCGTCTCGCTGCCGCACTCGTCCAGCGCGATCCGCAACGCATCGAACACCACGGTGATCTCGAGCTCCGAGGCGCAGCCGGGCGACCTCATCTGGTCCCCAGGGCACATCTCGATCTACATCGGCAACGGCCAGCAGATCGAGGCGACCCGCCCGGGTGGCTGGACCGTGCGTCAGGCCAGCATCTGGCAGTCCAGCCCGACGTTCCTGCGCGTCACGGGCTGAMAAPSAAAGRRAAVVATAGGLLVSTIGGATAAQAAPVESDAAKKLSTVDLGALTDQARQALESAPVVTVDAKSEVTVEKVTSKVVKKAGIKAAPEPEPEPVREVAPSRSAERTSLESTSTSTSTSSSSSSSSESSSSSSSASTTTATSSGSYSSAVSIAARYIGTPYVVGGSSPSGFDCSGLVTYVYAQLGVSLPHSSSAIRNASNTTVISSSEAQPGDLIWSPGHISIYIGNGQQIEATRPGGWTVRQASIWQSSPTFLRVTGPGPT0023995_3595DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
AK018_05790747hypothetical proteinATGATCGCAGCGCCGTCCGCTGCCGCGGGCCGCCGTGCCGCCGTCGTCGCCACCGCCGGTGGCCTGCTGGTCTCCACCATCGGTGGCGCCACGGCCGCGCACGCCGCCCCGGTGGACTCCGACGCCGCGAAGAAGCTCAGCACCGTCGACCTGGGCGCGCTGACCGACCAGGCCCGCCAGGCCCTGGAGTCCGCTCCGGTCGTGACCGTCGACGCGAAGTCGGAGATCACGGTCGAGAAGGTCACCTCGAAGGTCGTCAAGAAGGCCGACATCAAGGCCGCTCCCGAGCCCGAGCCGGAGCCCGTGCGCGAGGTCGCACCGTCGCGCTCCGGCGAGCGCGAGGCGATCTCGACCTCCTCGGAGTCGAGCACGTCGTCCTCGACCGAGACCACGACGGCGGTGCCGGACTCCGCGGTCGGCTCCTCGGTGATCTCCGTCGCGTCGCGCTACGTCGGTGTGCCGTACGTCTCCGGCGGCAGCAGCCCGTCCGGGTTCGACTGCTCCGGGTTCACCCAGTACGTCTTCGCCCAGGTCGGCATCTCGCTCCCGCGCGCCTCGTCCGCGCAGCGCTACGCCGGCACCGTGGTGTCGCGGTCCGCCGCGCAGCCGGGCGACCTGATCTGGTCCCCGGGCCACATCGCGATCTACGCCGGCGGCAACACGCAGATCGACGCGCCGCGCCCCGGCAAGACGATCCAGTTCCGCAGCATCTGGCAGTCCAACCCGACGTTCATCCGGGTCGGCTGAMIAAPSAAAGRRAAVVATAGGLLVSTIGGATAAHAAPVDSDAAKKLSTVDLGALTDQARQALESAPVVTVDAKSEITVEKVTSKVVKKADIKAAPEPEPEPVREVAPSRSGEREAISTSSESSTSSSTETTTAVPDSAVGSSVISVASRYVGVPYVSGGSSPSGFDCSGFTQYVFAQVGISLPRASSAQRYAGTVVSRSAAQPGDLIWSPGHIAIYAGGNTQIDAPRPGKTIQFRSIWQSNPTFIRVGPGPT0023995_3500DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
AK018_05792702ideR_2COG1321Iron-dependent repressor IdeRGTGACGGACCTGATCGACACCACAGAGATGTACCTCAAGACGATCTACGAGCTCGGGGAGGAAGGCATCACGCCCCTGCGCGCTCGGATCGCGGAGCGTCTGGGGCACTCGGGACCCACGGTGTCGCAGACCGTCGCACGCATGGAGCGCGACGGGCTCGTCGTCGTCACCGGCGACCGCCACCTCGAGCTCACCGACGCCGGCCAGGAGAAGGCCGTGCGCGTCATGCGCAAGCACCGGCTCGCCGAGCGGCTGCTCACCGATGTCATCAAGCTCGACTGGGAGCACGTGCACAACGAGGCGTGCCGCTGGGAGCACGTCATGAGCGACCTCGTGGAGCGTCGGCTCGTGACCCTGCTCGACCACCCGCACCAGGACCCGTACGGCAACCCCATCCCGGGCCTGTCCGAGCTGGGGGAGCAGTACGAGGAGGTGCCGTTTCTCGACGGCGTCCAGTCGCTCCCGCTCTACTTGCAGTCGGCGTCCGACGACGGCGCCCCGCTGGTGCTGCAGCGCATCGCCGAGCCCGTCCAGGTCGACGACGAGTTCCTGGCGCGCCTGCAGTCCGTCGGGCTCACGCCCGGCGCCAGGATCGCCGCCGAGCGGATCGGCGGGGCGTTCGTGGTGCGTGCCGAGGGCGGCGACGACGCGCTCGAGCTTCCCGAGGACCTCGCCAAGCACCTCTTCGTCGCGGCGCGCTGAMTDLIDTTEMYLKTIYELGEEGITPLRARIAERLGHSGPTVSQTVARMERDGLVVVTGDRHLELTDAGQEKAVRVMRKHRLAERLLTDVIKLDWEHVHNEACRWEHVMSDLVERRLVTLLDHPHQDPYGNPIPGLSELGEQYEEVPFLDGVQSLPLYLQSASDDGAPLVLQRIAEPVQVDDEFLARLQSVGLTPGARIAAERIGGAFVVRAEGGDDALELPEDLAKHLFVAARPGPT0003890_476DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003890-troR-K03709NANA
AK018_057931128serC_2COG1932Phosphoserine aminotransferaseATGTCCTTGCAGATCCCCGCCTCGCTGCTGCCCGCCGACGGCCGGTTCGGCTCCGGCCCGTCCAAGGTGCGGCCGGCGCAGGTCGACGCCGTGGTCGCGGCGGGCGCGCCGGCCCGGCCGGTGCTGGGGACCTCGCACCGCCAGGCGCCCGTGAAGGACCTGGCGCGTCGGGTGCGCTCGGGACTCGCGGAGCTGTTCGACCTGCCGGACGGCTACGAGGTGGCGCTGGGCAACGGCGGGTCGACGGCGTTCTGGGAGGTGGCGACGGCGTCTCTCGTGCGGGAGCGGGCGCAGCACGCGACGTTCGGCGAGTTCGGCGCGAAGTTCGCGGCGGCCACGCGGCGGGCGCCGTTCCTCACGGACCCGGAAGTAGTCGACGCCGCGCCGGGCGGCGTGGCGTACGTGACGCCGTCGGACGCCGTGGACGTGTACGCGACGCCCCACAACGAGACCTCGACGGGCGCGATGGCGCCGGTGCGCCGCGTGGGATCCGGCGACCAGCTCGTGCTGACGGACGCGACGTCGGGTGCCGGCGCGCTGCCCGTGGACGTGTCGGAGACCGACGTGTACTACTTCGGGCCGCAGAAGGCGTTCGCGTCCGACGGCGGTCTGTGGCTTGCGCTGTGCTCCCCGGCGGCGGTGGCCCGTGCGCAGGAGGTCGAGGCCTCGGGCGGGGACCGGTGGGTGCCGGAGTTCCTGTCGCTGACGACGGCGCTGGACAACTCCCGCAAGGACCAGACGCTGAACACGCCCGCGGTGGCCACGCTGGTGATGCTCGCCGACCAGGTCGAGTGGCTGCTGGGGAACGGGGGCCTGGAGTGGTCGGCGGGCCGCTGCGCCGCCTCGGCCGCCCACCTGTACGGCTGGGCCGAGTCCCGCGAGTGGGCGGCGCCGTTCGTCGCCGAGCCCGCGGAGCGCTCCACCGTGGTGGGCACCGTCGACCTGGACGACGCGATCGACGCGAGCGCCGTCGTCGGGCACCTGCGCGATCACGGGGTGCTGGACGTGTTCCCGTACCGCAAGCTCGGGCGCAACCAGATCCGGGTGGGGATGTTCCCGGCGGTGGAGCCGGACGACGTCGCGGCGCTGACGGCGTGCGTGGACTACGTCGTCGAGCGGATCGCCTGAMSLQIPASLLPADGRFGSGPSKVRPAQVDAVVAAGAPARPVLGTSHRQAPVKDLARRVRSGLAELFDLPDGYEVALGNGGSTAFWEVATASLVRERAQHATFGEFGAKFAAATRRAPFLTDPEVVDAAPGGVAYVTPSDAVDVYATPHNETSTGAMAPVRRVGSGDQLVLTDATSGAGALPVDVSETDVYYFGPQKAFASDGGLWLALCSPAAVARAQEVEASGGDRWVPEFLSLTTALDNSRKDQTLNTPAVATLVMLADQVEWLLGNGGLEWSAGRCAASAAHLYGWAESREWAAPFVAEPAERSTVVGTVDLDDAIDASAVVGHLRDHGVLDVFPYRKLGRNQIRVGMFPAVEPDDVAALTACVDYVVERIAPGPT0009160_1343DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009160-serC|pdxF-K00831NANA
AK018_057941290entS_3Enterobactin exporter EntSATGAGTGCGACCTTCACCTCCCTGCAGTACCCGAACTACCGGCTGTGGTTCGGCGCTGCCCTGGTCGCCAACGTCGGCACCTGGATGCAACGCATCGCCCAGGACTGGCTCGTGCTCACCGTCCTGACCGACGACTCCGGCGTCGCCGTCGGTATCACCACCGCGCTGCAGTTCCTCCCGTTCCTGCTCATCGGACCCTGGACCGGGCTGCTCGCCGACCGCCTGCCGCGCCGCCGGCTGCTCATGGCGACCCAGGGGGCGATGGGCCTCCTCGCGCTCGGCCTCGGCGCCCTCGTCCTGTCCGGGAACGCCGAGCTGTGGCACGTCTACGCGTTCGCCCTCGGCCTCGGGTTCGCCACCGCGTTCGACAACCCGGTGCGCCAGACCTTCGTCGCCGAGCTCGTCCCGCCCGAGCGGCTCGCCAACGCCGTCGGCCTCAACAGCGCCTCCTTCAACGCCGCACGCCTTATCGGGCCGGGCGTCGCCGGGCTGCTGATCGCCGCCGTCGGGCCCGGCTGGGTGTTCGTCGTCAACGGGCTGACGTTCGCCGCCACCATCGCCGCCATCGCCCTGATGAAGCCCGCCGCGCTGTGGGCCAAGGACCGCGCGCCCCGGGCCAAGGGGCAGATCCGCGAGGGCCTGCGCTACGTGCGGGGCCGCTCCGACATCGTCGTGATCATGGTCGTGATGGCCGTCGTGTCCACGTTCGGGCTCAACTTCCAGCTGACGTCCGCGATGATGGCGCGCGTCGAGTTCGGGCGCGGCGCGAGCGAGTTCGGGCTGCTCGGCTCGGTCCTCGCGATCGGGTCGCTCACCGGCGCCCTGCTCGCCGCCCGGCGCGAACGCCCGCGCGTCCGGCTCGTCATCGGGGCGGCGTTCGCGTTCGCCGTCGCCACCGCCGTCGGCGCGCTGATGCCGACCTACTGGGGTTACGTGCTCATGTGCATCCCCGTCGGGCTGGCGTCGCTGACCATGCTGACCGCCGCCAACTCCGCGATCCAGACGTCCGTCGACCCCGTCATGCGCGGGCGCGTCATGGCGCTGTACATGATGGTGCTGCTCGGCTCGACGCCGATCGGTTCGCCGATCGTCGGCTGGATCGGGGAGGCGATCGGACCGCGGTGGGCGATCCTGGTCGGCTCGATCACGACGCTCCTCGTCGCCGTGGCCGCCACGCTCTGGGCCCGCCGCTCCTGGAACGTCACCGTGCGCTACTCGATCCGTCGACGGCCGCACCTCGAGGTGGTCTACCTCGACGGCCCCGCGCCGGAGCACGTCCGCGCCGCCTGAMSATFTSLQYPNYRLWFGAALVANVGTWMQRIAQDWLVLTVLTDDSGVAVGITTALQFLPFLLIGPWTGLLADRLPRRRLLMATQGAMGLLALGLGALVLSGNAELWHVYAFALGLGFATAFDNPVRQTFVAELVPPERLANAVGLNSASFNAARLIGPGVAGLLIAAVGPGWVFVVNGLTFAATIAAIALMKPAALWAKDRAPRAKGQIREGLRYVRGRSDIVVIMVVMAVVSTFGLNFQLTSAMMARVEFGRGASEFGLLGSVLAIGSLTGALLAARRERPRVRLVIGAAFAFAVATAVGALMPTYWGYVLMCIPVGLASLTMLTAANSAIQTSVDPVMRGRVMALYMMVLLGSTPIGSPIVGWIGEAIGPRWAILVGSITTLLVAVAATLWARRSWNVTVRYSIRRRPHLEVVYLDGPAPEHVRAANANANANANA
AK018_057952271hypothetical proteinGTGCGACAGGACCAGAACTTCGAGACGACCCTGCTGAACACCACCGTGGTGGGCCAGCCCTGGGCGGACGCCTACCAGGTCGGCGCCGGCGTCGACGCCGTAACGGGCCAGCTGCGCAGCCCGGCGATCGAGAAGCCGACGTTGACCCCCAGCAAGAATCAGCGCACCGAGTACAGCTACGCCCTGATGGAGTCGCAGAAGGACCTCGAGCAGCTCGTCGAGACGTCCCTCAAGGGCTCCTACAACATCGAGGGGGTGAAGACCTCGGCGAGCACGTCGTTCCTGGAGAAGATCGTCGTCTCCGAGCTCGCGGTCACGGTCGTCGCCACGATCGCCGTCGAGGACAGCGAGTACTCCCTCGCGCCCGACTACGTCCTGTCCGTCTCCCCGGGCCCGGGCTTCCGGGAGCGTCATGGCGACTACTTCGTGGCCGGCTACCGGGCGGGGTCCTCGCTGCACGCGGTCTATCAGTGCCGCTTCTCGTCCACCGAGCAGCGGCAGGAGTTCTCTGCCGCGCTCTCCGCCGAGGTGCCGGACGTCCTCAGCGCCGAGGGCAGCGTGGCGTTCCAGAGGGTTGCCAGCTCGCACCGGGCGCGCGTCAACGTCGACGTCGTCGTCGACGGCGTCCAGGGCACCCTGCCCTCCCCGAAGGACGGATGGACCCCGGGCACGATCCTGTCCGAGGCGATTCCCTGGTTCAACGAGAACCGCGAGCCGGTGCCGCTGGAGAGCTACCTCGAGCACTACCGGATGATCGACCCGGAGATCCCCGGCGAGGTCCCCATCGCCCCGTCCGTGTTCGCCGACCTCAGCTACCTCTACTCTTCCTTCTGGGTGGCCCGGGCACGCGAACGCACCTGCCCCGCGTTCGGCAAGCGGCTCGTCTCCGGGCCCTTCGAGCGGCTGCGCATCGACCTCGAGGCGCACCAGGCCTCGCTCGCCACCGATCCCGAGTCGGTGCGCTCGTTCACGGCCGACGTCGAGGACCTGTTGGGAACCCTCGACGAGATCGACAACCGGCAAGCCTTCTACTCCCAGGTCGTCAAGGCCGCGGCCACCGAACCGGCGAAGAACCATCGCGTCGATGCGGACAAGGGCACCGTCCGGTGGGGGTACGGGTTCCAGGACGGCACCGGCGTCGGCGTGGAGGTCGGCAGCGAGAAGTTCGACTACAAGGCGGATGCCAAGCCATTCGGCTGGCGGGAGCACGGGTTCACGTACCGGAACACGGCCCGCGTGGTCGTGGGCTGGGACGTGACGTGCCACTGGACCGACTTCGGCGGCGACTGGGAGAAGCGCAGCGACCGGATCATCGGCCGCGACGGCGGAACCGTCTGGGTCAAGAGCGACTACTGGCGCAGCTGCTCGTGGTCGGTGGTGTTCTACACGGTCGACGCCGCGCTCTACCCGGTCGGGCCCTGGACCGCCGGCGCGGTGCACTCCTCCGGGTTCACGGTGCACGAGGCCCCGTCGGTGGCGTCCGCCGAGGAATACTGGACGGCCGAGCGGATGCGCGCCGCCACGCCCGTCGACCGTGGGACGACGGGCGTGGGGCCTGTGGTCGTCGACGAGCGTTCTGAGGACCTCGGGCCCAGTGAGACCGCGACGGCCGTGGCGACCACGGCGCCGGTCACGGACATCGGGGCGTACCCGGCCCGGACCGTGGGCAAGTTGTTCTTCGTCATGGGCGATCAGGACTGCGTGGCCTCGGGTGTCGTGGTGCACCGGCACGGGATCATGACCGCGGCCCACTGCCTGGTCATGGATCACGAGGCGCACAGCATGGTGTTCGTCCCGGCCTACGTCGACGGCGACGCGCCGTTCGGCCGCTGGCCGGTCCCCGTGTTCGCGTGGCCCGACGCGTGGCGGCAGGGACGGTCAACAGCCGACGACCTGGGCTTCGGCCGGGTCGCGACGGCCCCCGACGGCACTGAGATCGGGGACCTGGTCGGATGGGTCGGCATCACCACGCGTCCCGACGTGCGTCGGTGGGACGACGTCGGCTACCCGGCCGAGGCGATCGCGCGGTTCCCGTTCGACGGGCAGCGGCCGTGGCAGAGCGCCGGTGCGCGGCTGGCGTCGGACGACGAGCGCGTCGTGGCCAAGGCGGACGACCTCACCGCTGGTGGCAGCGGAGGGCCGTGGTTCGCGTCCGACGACCCGACGGCGGTCAACGGGGTGTTCAGCACGTACAACACGTCCCAGCACGTCGTGCGGAGCCCTGAGTTCGCTGCTTGGGTGCTGACGTTCTACCGGCACGTCTTCGGCTGAMRQDQNFETTLLNTTVVGQPWADAYQVGAGVDAVTGQLRSPAIEKPTLTPSKNQRTEYSYALMESQKDLEQLVETSLKGSYNIEGVKTSASTSFLEKIVVSELAVTVVATIAVEDSEYSLAPDYVLSVSPGPGFRERHGDYFVAGYRAGSSLHAVYQCRFSSTEQRQEFSAALSAEVPDVLSAEGSVAFQRVASSHRARVNVDVVVDGVQGTLPSPKDGWTPGTILSEAIPWFNENREPVPLESYLEHYRMIDPEIPGEVPIAPSVFADLSYLYSSFWVARARERTCPAFGKRLVSGPFERLRIDLEAHQASLATDPESVRSFTADVEDLLGTLDEIDNRQAFYSQVVKAAATEPAKNHRVDADKGTVRWGYGFQDGTGVGVEVGSEKFDYKADAKPFGWREHGFTYRNTARVVVGWDVTCHWTDFGGDWEKRSDRIIGRDGGTVWVKSDYWRSCSWSVVFYTVDAALYPVGPWTAGAVHSSGFTVHEAPSVASAEEYWTAERMRAATPVDRGTTGVGPVVVDERSEDLGPSETATAVATTAPVTDIGAYPARTVGKLFFVMGDQDCVASGVVVHRHGIMTAAHCLVMDHEAHSMVFVPAYVDGDAPFGRWPVPVFAWPDAWRQGRSTADDLGFGRVATAPDGTEIGDLVGWVGITTRPDVRRWDDVGYPAEAIARFPFDGQRPWQSAGARLASDDERVVAKADDLTAGGSGGPWFASDDPTAVNGVFSTYNTSQHVVRSPEFAAWVLTFYRHVFGNANANANANA
AK018_05796675hypothetical proteinATGCAGAGTGTGCCGCGAGCAATCACGCTGGTGATCCCCGAGGGAGCGACCCTCGGACACGCGCTCTCGGCCGCTCTGTCCAGCCGGGGCTGGACCGTCCTCGTGCGGTACGGTCACGACGCTCTGACTGACGTCGGCGGGCAGGACGTCGTGGAACTCGTCGAGGACGACCACGGTAACTGGACCTGCGGCCGTCCCGCCGTGACAGTTCGGACCTGGGTCTGCATCGGGTCGGTGCGGTCGTTGCCCGGTCTTCTCGAGATGCATCGACGCGGAGCGGTGGTGCTCAATCAGTCGGCACCGATGCTGACCCTCGTGTGCCACGTGGAGAGCGCTGTGACCCGGCCCACGTCCCTCGGTCCCGTTGCTGCCAGGGTGCTGCGTCGACGAGCCACCGAGCACGTCGGCCTCCAGCTGCTCACCACCACCGAGGAAGCCGTCCTGCGGGCGATGCTCGCAGGGGCCAGCGCCGCGCAGATCGGCCTCCACCGGCACGCGTCGGTCAACACGGTCCGTACCCACATCAAGGCTGTCCTGACCAAGCTCGGCGTCCGGTCCCAGCTCGAGGCCGTGGCGGTCGCGCACCGGGCGGGGTGCATGGAGTGGTTGTTCGACGCGATGGTGAAGTTCACCAATTCTGGTGACGACGACCTCGAGTGCGGCGGGCAACAGTAGMQSVPRAITLVIPEGATLGHALSAALSSRGWTVLVRYGHDALTDVGGQDVVELVEDDHGNWTCGRPAVTVRTWVCIGSVRSLPGLLEMHRRGAVVLNQSAPMLTLVCHVESAVTRPTSLGPVAARVLRRRATEHVGLQLLTTTEEAVLRAMLAGASAAQIGLHRHASVNTVRTHIKAVLTKLGVRSQLEAVAVAHRAGCMEWLFDAMVKFTNSGDDDLECGGQQNANANANANA
AK018_05797753COQ3_4Ubiquinone biosynthesis O-methyltransferase, mitochondrialGTGAGCCTGCCACCGCTGACCCTGTTCGGTGCCCTGCGCTGGGACGTCGTGCGGCGACGCCTGGACGACCTGGCCCTCCCGCCCGGTGCGAGCGTGCTCGAGGTCGGGTGCGGGCAGGGGGCCGTCGGGGTGCGACTGGCCGCCGCCGGGTACGAGTACACGGGCGTCGAGCTCGACGCCGCCAGCGCCGAGGTGGCCTCCGACCGGCTCGCCGGCGCGGAGCTGCCGGGGCGGGTGGTCTGCGGGTCCGTCGAGTCCTCGGGGCTGGACGCCGGGTTCGACCTGCTGTGCGCGTTCGAGGTGCTCGAGCATCTCGAGGACGACGCCGGAGCGCTCGCCGCGTGGCTGCCGTTGCTGCGTCCGGGCGGGTCGGTGCTCGTCTCGACCCCCGCGTGGCAGCACCGGTTCGGCCCGATGGACTCCGCCGTCGGGCACCACCGCCGCTTCGACCCGCCGCGGATGCGCGCGCTGCTCGACGGCGCCGGGCTGACCGACGTCGGGGGCCGGCTGTACGGGATGCCGCTCGGGTACGCGTTGGAGGCGGTGCGCAACCGGGTGGCGCGGCGGCGGCTGGACTCCGACGGGACGACGACGGCGGAGCGCACCGCGCGCTCGGGGCGGCTGTTCCAGCCGTCGTCGCGGGCGGTCGGTGCCGCCGTGGGGGTCGGGACGTGGCCGTTCCGGGTCGCCCAGCGGGCGTTCCCCGCGACCGGGCCGGCGCTGATCGCCTGGGGCACCCGGCCGCGCGGCTGAMSLPPLTLFGALRWDVVRRRLDDLALPPGASVLEVGCGQGAVGVRLAAAGYEYTGVELDAASAEVASDRLAGAELPGRVVCGSVESSGLDAGFDLLCAFEVLEHLEDDAGALAAWLPLLRPGGSVLVSTPAWQHRFGPMDSAVGHHRRFDPPRMRALLDGAGLTDVGGRLYGMPLGYALEAVRNRVARRRLDSDGTTTAERTARSGRLFQPSSRAVGAAVGVGTWPFRVAQRAFPATGPALIAWGTRPRGNANANANANA
AK018_057981854COQ3_5Ubiquinone biosynthesis O-methyltransferase, mitochondrialGTGACCGGCACCCCACCCGTCAGCACCGCACCACGGCCCGGTACCACCGCCCGCGTCCTCGCCGTGCTGCGCTCACCGTGGGTGCGCTGGGGGTTCCTCGTCCTCGCGCTGGCGCTCGCGGTCTACGCCGTCGTCGCCGTGCGCGAGGACCTCGCCGACGCCGCCGCAGCGCTCTCCGGCGTCCGCATCGCCGGAGCGGCACTCCTCGCCGTCGCGTTCGTCGGCTGCACGCTGCTGTCGTGGCGGGCCGTGCTCACCGACCTCGGCTCCCGGCTCAACCACCGGGCCGCCGTCACCGTGTTCGGGATCAGCCAGCTCGGCAAGTACGTGCCCGGCGGGGTGTGGAACGTGGTGGCCGCCGCCGAGGTCGGCGCCGACCACGGCGTCCCGCGCCGCCGCACCGCCACCGCCACCGCCGTCGCGACCGGCGTCGGCGTCGTCTCCGGGGCGGTCGTCGGCGTCCTCGCGCTGCCGTTCGTCGCCGCCGGAGCACTCGACGACTGGGCCTGGGCGCTCTGGCTGCTGCCCGCCGTCGTCGTGCTGCTCCTGCCGCCCGTGCTCAACCGGCTGCTCGCCGCCGCGTTGCGCCTCGCCCGGCGCCCCTCGCTCGAGCACCCCCTGTCATGGGGTGGTCTCGGCGCCGCCGCCGGATGGGCCGCCGCCGGCTGGGTGCTCGCCGGCATGCAGGTGTGGCTGCTCGCCACCGGGCTCGGCATGGCGAGCGACGTGCGCACCCTCGCGCTCGCCGTCGGCGGGTACGCGCTGGCCTGGATGGTCGGATTCCTCGTCGTCGTGGTCCCCGCCGGCGCCGGCGCCCGCGAGCTCGTGCTCCTCGCCGTGCTCACCGGCGCCCTGCCGCACGCCGAGGTGCTGCTCGTCGTGCTCGTCAGCCGGGTCCTCGTCACCCTCGCCGACCTGTTCCTCGCCGGGCTCGGGGCGCTGATGCGGCGTCCGGCCGGCGTCCGGTTCGCGCCGCTCGCCCCCCGAGCCTGGCTGCGCTGGGACACGGTGCGCCGGACCCTGCCCGCCCGGCGCTCCACGGTGCTCGAGATCGGCTGCGGGCAGGGCGCCGTCGGCATGCGGATCGCCGCCCGGCACGACTACACGGCCGTCGAGCTCGACGTCGACTCCTGGGCGCTCGCCGCGCCGCGGGTGGCCATGGTGTCGGCCGAGGCCCGGGTGCTGCACGGCGACCTGTCGGCGCTCCCGGCGGCGGAACGGTTCGACGTCGTGTGCGCGTTCGAGGTCATCGAGCACGTGGACGACGACGCCGGTGCGCTGCGCTCGTGGGCCGCGCGGGTGCGACCTGGCGGCGAGCTGGTGCTGTCCACGCCGGCCGACCCCGGGAGGTTCGGACCCTGGGACACCCTCGCCGGGCACTACCGGCGCTACGAGCCGGCGCGACTCGCCGCGCTCCTGGAGGACGCCGGCCTGGTCGACGTCCGGGTGCGCCGCTACGACGCACCCCTCGGGTTCCTGCTCGAAGCGGTCCGTGACCGGGTCGCGCGACGGCAGGTGGCGCCGTCGGGCCAGGTGGCGCCGTCGGGCCCGGTGCCGGCGCCGGACCCTGCTGCCGGCTCCGCGGGCGGGCGGACCGAGGTCGACGACGCGCTCGCCACCGCCACGGCCGGGTCGGGGCGGCGGCTGCAACCGCGCTCGCGGCTCGTCGGCAGCGCGATCGTCGTCGGCATCTGGCCGTTCCTGCTGCTGCAGCGGGCCCTGCCCCGGCACGGCACGGGACTCGTCGCGCGGGGACGACGGCCCGCGCCGGTGAACGCCGGTGACATGCGCGACGGCGCGCCCGGCGCGGGGTCTGGCGCCGCGCCGCCCGACCAGGGATCCTCGGGACCGTGAMTGTPPVSTAPRPGTTARVLAVLRSPWVRWGFLVLALALAVYAVVAVREDLADAAAALSGVRIAGAALLAVAFVGCTLLSWRAVLTDLGSRLNHRAAVTVFGISQLGKYVPGGVWNVVAAAEVGADHGVPRRRTATATAVATGVGVVSGAVVGVLALPFVAAGALDDWAWALWLLPAVVVLLLPPVLNRLLAAALRLARRPSLEHPLSWGGLGAAAGWAAAGWVLAGMQVWLLATGLGMASDVRTLALAVGGYALAWMVGFLVVVVPAGAGARELVLLAVLTGALPHAEVLLVVLVSRVLVTLADLFLAGLGALMRRPAGVRFAPLAPRAWLRWDTVRRTLPARRSTVLEIGCGQGAVGMRIAARHDYTAVELDVDSWALAAPRVAMVSAEARVLHGDLSALPAAERFDVVCAFEVIEHVDDDAGALRSWAARVRPGGELVLSTPADPGRFGPWDTLAGHYRRYEPARLAALLEDAGLVDVRVRRYDAPLGFLLEAVRDRVARRQVAPSGQVAPSGPVPAPDPAAGSAGGRTEVDDALATATAGSGRRLQPRSRLVGSAIVVGIWPFLLLQRALPRHGTGLVARGRRPAPVNAGDMRDGAPGAGSGAAPPDQGSSGPNANANANANA
AK018_057991263hypothetical proteinGTGATCGTCGCGTTCGGCACTTACGACGCCGCCCGGCATCCCCGCGTCGGCATCCTGGTCGCCGGGCTGCGCGCCCACGGCTACCGCGTCGACGAGCTGAACCGGCCCCTCGGGTTCTCCACCGCCGAGCGGGTGCAGATGCTGCGCCGGCCGTGGCGGCTCCCGCTGCTGGTGCTGCGGCTGCTGACCTGCTGGCTCGCCCTGATCCGGGACGACGTCGGACACCGCCGTGCGCACGGGGCTCCGGACGCGCTGCTGGTCGGCTACCTCGGTCACTTCGACGTGGTGCTCGCCCGGCTGCTGCACCCCCGCACCCCCGTGATCCTCGACCATCTCGTCTTCGCGGCCGACACCGCCACCGACCGGGGCGCCCGCGGGCTGCGGGTCCGGTTGCTGCACGGGCTGGACCGGCTCGCGCTCGCCTGTGCCGACGTCGTCGTGCTGGACACCGACGAGCACCGGGAGCTGCTGCCTCCGTCCTTCCGACGTCGTCGAGCGTCTCTGAATGCATCCCGTCAGCCCCCGATCAGCGGCATCCAGAGACGCTCGACGGCGGGAAGGACCGTGGTCGTGCCCGTCGGGGCCCCGGACACCTGGTTCCCCCCTCCTCGCCGAGATGCCGATCGGTCGGTGAGATACCGGGGCGTCGAGTCGACGGAGCGGTATCTCGGCGACGAGCCGGTATCTCGGCACGGGAAAGACCCCGAGCCGCTGCGTGTCGTGTTCTTCGGCCTCTTCACCCCGCTGCAGGGTGCGGTCACCATCGCCCGGGCGCTCGCCGACGCCCTGCCCCGGGCCGCCGCGCAGGGCCGGCCGATCACCACGACCCTCGCCGGCAGCGGCCAGGACCACGCCGCCGCCCGCACCGCGCTCGCCGACACGCCCGGGGTCACCTGGCACGACTGGGTCGACCCCGACGAGCTCCCCGGACTCGTCGCCCAGCACGACGTCTGCCTCGGCATCCTCGGCACCACCGCAAAGGCGCTGCGCGTGATCCCCAACAAGGTGTTCCAGGGGCTCGCCGCCGGCTGCGTCGTCGTCACCTCCGACACCCCGCCCCAGCGCCGGCTGCTCCGCGATCACCTCGAGCTCGTGCCACCCGGCGACGCCGCAGCCCTCGCCGACCGGCTCCTCACCCTCACCGACCCGGCCGCACTCGCCGCCGCCCGGACCCGAGCGCACGCCGGCCGCGACGCCGTCCGCCCGGCCGCCGTCGTCGGACCCCTGCTCGACGCCCTCGCCACCCGCGGGATCCACCCGTGAMIVAFGTYDAARHPRVGILVAGLRAHGYRVDELNRPLGFSTAERVQMLRRPWRLPLLVLRLLTCWLALIRDDVGHRRAHGAPDALLVGYLGHFDVVLARLLHPRTPVILDHLVFAADTATDRGARGLRVRLLHGLDRLALACADVVVLDTDEHRELLPPSFRRRRASLNASRQPPISGIQRRSTAGRTVVVPVGAPDTWFPPPRRDADRSVRYRGVESTERYLGDEPVSRHGKDPEPLRVVFFGLFTPLQGAVTIARALADALPRAAAQGRPITTTLAGSGQDHAAARTALADTPGVTWHDWVDPDELPGLVAQHDVCLGILGTTAKALRVIPNKVFQGLAAGCVVVTSDTPPQRRLLRDHLELVPPGDAAALADRLLTLTDPAALAAARTRAHAGRDAVRPAAVVGPLLDALATRGIHPNANANANANA
AK018_05800948hypothetical proteinATGAAGCTCGTCGTGCAGATCCCGTGCCTCAACGAGGCCGAGACGCTCCCCCTCGTGCTCGCCACCCTGCCGCGCGAGGTCCCCGGGTTCGACGAGGTCGAGTGGCTCGTCATCGACGACGGGTCCACCGACGGCACCGGCGACGTCGCACGCAACCTCGGCGTCGACCACGTGCTGCGGCACACCCGGACCATGGGGCTCGCCCGCTCGTTCCGCGACGGCATCGACCACGCCCTCGCCCACGGCGCCGACGTCGTCGTCAACACCGACGGCGACAACCAGTACCCCTCCGAACGCATCGGGGACCTGACCGCGCCGATCCTCGCCGGTGAGGCCGACATCGTCGTCGCCGACCGCCAGACCGCCACCATCGAGCACTTCAGCCCGTTCAAGAAGCGGATGCAGCGCCTCGGCTCCCGCGTGGTCAGCGCCGCCGCCAACACACCCCTGCCCGACGCCGCCAGCGGGTTCCGCGCCTACTCGCGGGCCGCGCTGCTGCGGCTCAACGTCGTCACCCAGTTCAGCTACACCATGGAGACGATCATCCAGGCGGGCAACAAGCACCTGCGCATCGTCTCCGTGCCCGTGGTCACCAACCCCAAGACGCGCGAGTCGCGGCTTTTCCGCAACATCTGGCAGCACATGGGCCGCTCCGGCCGGGCCATCGTGCGCTCGTGGATCATGTTCCGCCCCCACCTGGTGTTCCTGTCCCTCGCGGCACTGTTCTTCCTGGCATCCGCGGTGCCGGCCGTGCGGTTCCTCGTGTTCTTCGCCCAGGGCGAGGGCGGCGGGCACGTGCAGTCGCTCGTGTTCGCCGCCGCCATGCTGGTGGGGTCGCTGCTGTGCCTGGCGCTGCTGGTCATCGCCGACCTGCAGCGCACCAACCGGACGTTGATCGAGGACACGCTCGAACGGGTCAAGCAGGTCCAGTACGGGCGGGACGAGTGAMKLVVQIPCLNEAETLPLVLATLPREVPGFDEVEWLVIDDGSTDGTGDVARNLGVDHVLRHTRTMGLARSFRDGIDHALAHGADVVVNTDGDNQYPSERIGDLTAPILAGEADIVVADRQTATIEHFSPFKKRMQRLGSRVVSAAANTPLPDAASGFRAYSRAALLRLNVVTQFSYTMETIIQAGNKHLRIVSVPVVTNPKTRESRLFRNIWQHMGRSGRAIVRSWIMFRPHLVFLSLAALFFLASAVPAVRFLVFFAQGEGGGHVQSLVFAAAMLVGSLLCLALLVIADLQRTNRTLIEDTLERVKQVQYGRDENANANANANA
AK018_058011641hypothetical proteinGTGATCGCCGTCGCCTGCCACAATGGCCGGGTGACGCGAGACACGCCGTCGTGCGAGCGTGCCTACCGCCGCACCCTCGCCCTGCTCACCCTGGCCGTCGCCCTCTGGTCGGTGGCGTGGGCGGTGCTGACCCCGGGGTTCCGGTCGCCCGACGAGCAGAACCACCTCAACAGCGCCATCCGTCTCGCGTACGGGGGCGGGTGGCCGGCCCCCGGCGACGCCCACTTCGCACCCGTCATCGACCAGGCCGTCGCGGAGTCCACCTACCCGAGCGACCTGCCCGGACGGTTCAACGACCGCCCGCAGTGGCCCCAGTTCGTCGAGCTCACGCCGGTGCCCACCGAGGACCGCATCCACATCGACGCCGGCAACGCGCTGCCCGCCCCCGGCACCAGCGCCACCGTCGACCAGATGACCCAGCACCCGCCCGCCTACTACGCCCTCGGCGCCGCCGTCCTGCGCGCCACGGGCACCGCCGACGCGCAGTGGGACGTCGCCCTGCTCGCGTTGCGGCTGCTCGACGTGGCCCTGTTCGCCGCGACCGTCCCGCTCGCCGCCGCCACCACCCGACGTCTGACGGGATCCCGGTCCGCCGCCCTGCTCGCCGCCCCCTTCCCGATGCTGATCCCGCAGGTCGGCCACATCATGGGCGCCGCCAACAACGACGCCCTCGTGGTCCTCACCGGCGCCGGCGTCACCTACCTCGCCGCCCGCGTCGTCACCGGCGACCTGCGTTGGCGGGTCGTGGTCGGCCTCGGGCTGGTGCTCGGCGTCGGGCTGCTGACCAAGGTGATGCTCGCGTTCGCGATACCCGTGGTGGTCGCCGCCTACCTGCTGGCGCGTCCCGGTCCGACGGCGGTCCGGCGGGCCTGGCGTGCGTGCGTCGCGCTGGCCGTGGCGTTCGTCGTCGGCGGCTGGTGGTGGGCCCGCAACTGGCTCGTCGACGGGGCCGTGCAACCCGTCGGCCTGCCGCGCGACTACGCCAGCATGGCCCAGGTGCCCGGTTCCGAGGTGCTGCCCGAGTCGATCGGCCGCACCGCCCAGGCCTTCTTCGGCAACCTCGGCTGGCTCGAGATCCGCATGCACGGCACGCTGGTCGCGGTCGCCTCGACGCTGCTCGTGATCGCCGTGCTCGCCGCCGTCGTCCTACCCGGCGCGCGCCGCGGCGCGTTCACGATCGCGCTGCTGCCCCTCGCGCTCGCCGGAGGAGTGGTCGCCAACGCCGTGAGCCGCTGGGCCGAGACGGGCGTGCTCGTCGCTCTGCAGGGCCGATACGTGTTCGGCGGTCTGACCGCGCTGGCTGCCCTCTTCGCGATCGCCCTGTGGCAGGCCGCACGACGGCGGGAGCACCGGACCGCCGTCGTCGTCCCGGTGCTCACGGCGCTGGCCGGAGCGACTGCCGTCGCCGGGCTCGGATGGGGGTTCGCGGCGTTCTACCGGGCGCCGGGGGACTCGGCGGCGCAGGCGTGGGAGCGCTGGGTCGCGTGGAGCCCGCTCGGCGGGACCGTGATCGCGGCGGTGCTCGTGGTCGTGGCCGTGGGGCTGCTCGCCGGGGTCGTGGCCGCGTGGCGGTGGGCGGCGCTCGCGGGTGCACCTGTCCGGGACGTCGCGGTGAGCCAGGTGTCGCCGGTCGACGCCTGAMIAVACHNGRVTRDTPSCERAYRRTLALLTLAVALWSVAWAVLTPGFRSPDEQNHLNSAIRLAYGGGWPAPGDAHFAPVIDQAVAESTYPSDLPGRFNDRPQWPQFVELTPVPTEDRIHIDAGNALPAPGTSATVDQMTQHPPAYYALGAAVLRATGTADAQWDVALLALRLLDVALFAATVPLAAATTRRLTGSRSAALLAAPFPMLIPQVGHIMGAANNDALVVLTGAGVTYLAARVVTGDLRWRVVVGLGLVLGVGLLTKVMLAFAIPVVVAAYLLARPGPTAVRRAWRACVALAVAFVVGGWWWARNWLVDGAVQPVGLPRDYASMAQVPGSEVLPESIGRTAQAFFGNLGWLEIRMHGTLVAVASTLLVIAVLAAVVLPGARRGAFTIALLPLALAGGVVANAVSRWAETGVLVALQGRYVFGGLTALAALFAIALWQAARRREHRTAVVVPVLTALAGATAVAGLGWGFAAFYRAPGDSAAQAWERWVAWSPLGGTVIAAVLVVVAVGLLAGVVAAWRWAALAGAPVRDVAVSQVSPVDANANANANANA
AK018_058021320agaA_2Alpha-galactosidase AATGCGCAGCACGCGAACGGCCCGCGCCCCGATGGGCTGGAACTCCTGGGACTGCTACGGCACCACGGTGACCGAGGCGGAGGTGCTGGCCAACGCGCGGTTCCTGGCCGAGCACCTGCTGCCGTTCGGCTGGGACACGGTGGTGGTCGACATCGACTGGTCGGACCCGACGGCCCGCTCGCACGGCTACAACGCCGACGCCCCGCTGGCGATGGACACCCGCGGCCGGCTGCTGCCGGATCCGGGCCGGTTCCCGAGCGCTGCGGGCGGGGCCGGGTTCGGTCCGCTGGCCGAGCAGGTGCATGCGCTGGGGCTGCGGTTCGGCATCCACACGATGCGCGGGATCCCGCGACGGGCGGTGGAGCGTACGACGCCGGTCCTCGGCAGCGATGCGACGGCCGCGGACGTCGCGGACCCGGGCAACGCCTGCGAGTGGAACCCGGACATGGTGGGGCTGGACCACTCGCACCCGGGGGCGCAGGCCTACTACGACTCGACGCTCGAGCTGTACGCGGCGTGGGGTGTCGACTTCCTCAAGACGGACGACATGCTCTGGCCGTACCAGGCCGCGGACATCGAGGCGTACGCCCGGGCGATCGAGCGCACGGGCCGGCCGATCGAGCTGAGCCTCTCCCCCGGCCGCGACCTGTCGACGACGCACGCCGCCCACCTGCGCGAGCACGCCACGATGTGGCGCATCAGCGACGACCTGTGGGACCGGTGGGAGGACGTCGAGGCGAACTTTGCGCGGCTGGCGCGGTGGGCGCCGTTCTCGGGCGACGGCGGGTGGGCCGACGCCGACATGCTGCCGTTGGGGCGCATCGGCCTGCGCGCGGAGCGGGGTGAGCCGCGCGACGACGGTCTGACGCACCACGAGCGGGTCAGCCTGCTGACGCTGTGGATGATCGCCCGCTCGCCGCTGATGATCGGCGGCGACCTGCCGTCGTCGGACCCGGACACCGTGGCCCTGTTCCGCAACGCCGACGCCCTGGCCGTGCACCGCGACGGGCGGAACCAGCGGGAGGTGTTCCGCGAGGGTCCGCTGGTGATGTGGGCCGCCGACGGCCCGGACGGCACGGCGTTCGCGGCGGTGTTCAACCTGGGCGACGAGCCGTTGTCGTTGGCCCAGGACGTGGCGCGGGTCGGGTTCGCCGCCCGCGGCGGTCCCGAGGTGCGCGAGCTGTGGACCGGGACGACCGTGCCGCGCCGCGAGGTCGCGGTGCAGAGCGACGCGGCCCGCGGTGTGGCGCCGGGCAGCGCGGCGCTGGACCTGGAGCTGGCCCCGCACGGTGCGGTGCTGCTGAGCGGGCCGGCGGCATGAMRSTRTARAPMGWNSWDCYGTTVTEAEVLANARFLAEHLLPFGWDTVVVDIDWSDPTARSHGYNADAPLAMDTRGRLLPDPGRFPSAAGGAGFGPLAEQVHALGLRFGIHTMRGIPRRAVERTTPVLGSDATAADVADPGNACEWNPDMVGLDHSHPGAQAYYDSTLELYAAWGVDFLKTDDMLWPYQAADIEAYARAIERTGRPIELSLSPGRDLSTTHAAHLREHATMWRISDDLWDRWEDVEANFARLARWAPFSGDGGWADADMLPLGRIGLRAERGEPRDDGLTHHERVSLLTLWMIARSPLMIGGDLPSSDPDTVALFRNADALAVHRDGRNQREVFREGPLVMWAADGPDGTAFAAVFNLGDEPLSLAQDVARVGFAARGGPEVRELWTGTTVPRREVAVQSDAARGVAPGSAALDLELAPHGAVLLSGPAAPGPT0018835_2685DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
AK018_05803333hypothetical proteinGTGCTGTTCCACACCCGGCAACTCCGCTACGTCGTCGTCGAGCTCAAGGTGTCGCCGTTCGAACCGGGGCACCTCGGCCAGCTCGGGGCCTACGTCGCGGCTGTCGACGACAGGCTCCGCGACGCAGAGATCCACGCCCCGACCGTCGGCATCCTGCTGTGCACCGGCAAGAGCGGGGCCACGGTTCAGTACTCGCTGGCGTCCACGGCGGTACCGGTCGCCGTCGCCGACTACCGAGGGCTGCCGGCCGACGCGCGCGCGGCGCTGCCCAGTGACGTCGAGCTCGAGGCGATCGTCGATGCCGAGCTGCGGGGGCGCCGCGATGACGCGTAGMLFHTRQLRYVVVELKVSPFEPGHLGQLGAYVAAVDDRLRDAEIHAPTVGILLCTGKSGATVQYSLASTAVPVAVADYRGLPADARAALPSDVELEAIVDAELRGRRDDANANANANANA
AK018_05804678hypothetical proteinATGGCTACGCCTGACGATATCAGCGCGCCCCCACCACCCCCGGTGCGCATCAACGCCCATGCGCCCTTGTGGCGCCTCGTCGACGCCCTCGCCGCCGCCGGCTGGGGCGACCTGCGCGACGCACCCCAGAGCGTGCGCAGCTACCTCCACGCGCTGGCCCGCCTCGCCGACCCGCGCACCGCCGTCGTCGAGACCACCGACGCCCAGGCCGCCGAACGCGCCGGCCTCTCCCCGCGCACCATCGCCCGGGCCCGCACCTGGCTGCAGCGTCACGGCGTCGTCACCATGCTCCGCCGCGGCGCCCGGCAAGGCCTGCGCGGCGTGCCGTCGCTGCTGCGCGTGACCAAACGTGCCCTCGTCGCACTGCTGCCCGCCGCACGTCGCGCCAAGGACGCCCGCGCCCGACGTCGTGCCGCCCGGCCCGGCGGCGCCGCCCGCCTGCCCGTTCCCAACCGGACACGACGGCAGCCCCTCCCCTCCTGGCGGAGGAAGACGGCGCCCGCCGCGCCGCCGTCGTCGCGCCCCACGGAGGTACGACGGCGGCCCTCACCCGTCCAGGAACGCCTGCGTGCCGAAGCCGCGGACGCCGAGGCGACACCCCCGCGGGCCGCCACCATCGCGGCGGTCCGGGCCGCGCTGCGCCCGCTGTCGGTGGGTGCCGGGAGGGTGGGCGCGTGAMATPDDISAPPPPPVRINAHAPLWRLVDALAAAGWGDLRDAPQSVRSYLHALARLADPRTAVVETTDAQAAERAGLSPRTIARARTWLQRHGVVTMLRRGARQGLRGVPSLLRVTKRALVALLPAARRAKDARARRRAARPGGAARLPVPNRTRRQPLPSWRRKTAPAAPPSSRPTEVRRRPSPVQERLRAEAADAEATPPRAATIAAVRAALRPLSVGAGRVGANANANANANA
AK018_058051881hypothetical proteinATGAACACACTCTTCGACGACAGCCCGGTCCAGATCGCCGTCCGTTCGATCCTCGCCGCTCTCGACGACGGCCGCCCCGTGGACGACAGCGTCGAGCGCCAGGTCGTCGACCTCAAGGAGGAGCACGGCCGCCGGGACAAGCGCGGTGCCATCGGGCCGGGAAGTGCACACAACGAGGCGGCGGCCAAAGAGCTCGCCGCCGCAGCCGCCTGCATGGCCAACACTCCCGGCGGCGGCGCACTCATCGTCGGTGTCTCCGACCACGGTGACCTGATCGGCACCGAGATCGACACCGACTGGTTGCGCCACCGCCTGTGGGAGCTGAGCAACCGTACGCTCACGGTTGACATCGGCGTCAGGACCTGCCGTGACACCCGGCTCCTGGTGGTCCTCGCACCTCAAGCGTTGGAGCCGATCCGCATCAATGGCCGGATCCGGTGGCGCGTGGGCGCGAACTGTGTCGAGGTCGACCCCCACACCTGGCATGCGAAGCGGATGGCTGCCATGCACTACGACTGGTCTTCCGACCCGTCGACCGTCACCGCGGACCAGGTCCGACCAGGCGCTGTACAGCAGGCTCGGGACATGCTGCTCGCCTCGACGGAGCCACACGCAGCGGAGCTCGCAGCACAGTCGGACCTCGACCTGCTCCGCCGGTTGAATGTCGTGACCCCTGACGGATACCTCACCAACGCCGGCGTCATCGCGTTCGTGGGCCGCGGGGACCCGTGTCTCGACTACGTCAAGCGCGAGCACCAGGGCGGGGACAGCCTGACTCGAGTGCGACGACGGGGCCGGTCACTGCTCGAAGAGCTCGGCGAGCTGCTGAGAGCACTCGAGGCCAACACGCCGACCGTGCACGTCCGACGGGGACTGGTGATCGGGCAGCAACGAGAGATCCCGCTGCGCGCCGCACGAGAAGCGGTCGTCAACGGTGTCGCCCATCGCGAGTGGGCGAGCCCCGAGCCCACCCTGGTCGAGCAGGTCGGCCGGTCTCTCCGCGTGACGAGCCCCGGCGGCTTCGTGGGTGGCGTGACGCCGGACAACATCATCACGCACCCGTCCAGGTCGCGGAACCGTGCGCTCAGCGAGCTGCTCGCGGCCCTCCGCGTGGCTGAGCGGGAAGGCGTGGGCGTGGACCGGATGATCGGCGAGATGATCCGACGCGGTCACCCCCGCCCGCGGATCGAGGAGATCAGCGGGCCGAACGTTCGCGCGTCGCTGATCGCCGAAGAAGTAGACGAAGCCTGGGTTGCCTGGCTCGACGAGGTCGAACCGACCGAGCAGTCCGACGACGTCAATACCCTGCTCGTCCTGCGGCAGCTGGTCGATCGCCGTTGGACCGACCCGCTCCAGAGCTCTCTCCTCATCCAGGACACCGTCGAACGAGCCTCGGGAGTCCTCACCCGACTCTCACGCGCAGCCATCGGAGGACGACCGTTGGTCCAGAGGCTCAACGGTGTCCCTGACTCCGCAGATCCTGTGTGGACTCTGACGTCTGCCGCTCGGGAACGCCTCTCAGCCCTCGACCAGGAGCTGGCGTACACCCGGCCGGTGCTTCGCCGCGAGACCATTGCCCGGGACTATGTGAACGAGCGCGGACGCATCAGCTCGACCGAGCTCGGCGGGCTCATCGACGCGCATCCCACCAACGTCGGAGCCGTGCTCCGCGCCCTCGAGGACGAAGGAGTCGTCGAGCCTGCTTGGCCCTCCCGCCGCGGCAAGGGATTCCACTACGTGCTCTCGACGGGAGCAGCGGCGTCCGAGACGACGGACGAAGCGAAGCGTGATGAACGACGACGCAAGGCCCTCGAACTCTCGCGTCGGCACCGCGGTGTCTTCAGCACCGACCACCTCAGGGAGATGCGCGAAGGCTGGTAGMNTLFDDSPVQIAVRSILAALDDGRPVDDSVERQVVDLKEEHGRRDKRGAIGPGSAHNEAAAKELAAAAACMANTPGGGALIVGVSDHGDLIGTEIDTDWLRHRLWELSNRTLTVDIGVRTCRDTRLLVVLAPQALEPIRINGRIRWRVGANCVEVDPHTWHAKRMAAMHYDWSSDPSTVTADQVRPGAVQQARDMLLASTEPHAAELAAQSDLDLLRRLNVVTPDGYLTNAGVIAFVGRGDPCLDYVKREHQGGDSLTRVRRRGRSLLEELGELLRALEANTPTVHVRRGLVIGQQREIPLRAAREAVVNGVAHREWASPEPTLVEQVGRSLRVTSPGGFVGGVTPDNIITHPSRSRNRALSELLAALRVAEREGVGVDRMIGEMIRRGHPRPRIEEISGPNVRASLIAEEVDEAWVAWLDEVEPTEQSDDVNTLLVLRQLVDRRWTDPLQSSLLIQDTVERASGVLTRLSRAAIGGRPLVQRLNGVPDSADPVWTLTSAARERLSALDQELAYTRPVLRRETIARDYVNERGRISSTELGGLIDAHPTNVGAVLRALEDEGVVEPAWPSRRGKGFHYVLSTGAAASETTDEAKRDERRRKALELSRRHRGVFSTDHLREMREGWNANANANANA
AK018_05806942rmlA_2COG1209Glucose-1-phosphate thymidylyltransferaseATGCCGGGCGGGCGAAATCGCTTCGGAGCGCCCTCGGTCTCGATCGACGCACCACCACCCCGTGAGATCATCCGCGGTATGCGCGGCATCATCCTGGCCGGCGGTTCCGGCACTCGATTGCACCCGATCACTCTGGGCGTGAGCAAGCAGCTCGTGCCGGTGTACGACAAGCCGATGATCTACTACCCGCTCTCGACGCTGATGCTGGCGGGCATCCGGGACATCCTGGTGATCACGACCCCGCACGACGCCGACCAGTTCCACCGCCTGCTGGGCGACGGCTCGCAGTTCGGCGTGAACATCGAGTACACCGTGCAGGAGCAGCCGAACGGGCTCGCTCAGGCGTTCATGCTGGGCGAGGAGTTCATCGGCGACGACGCCGCGGCGCTGGTGCTGGGCGACAACATCTTCTACGGCCAGGGCCTGGGCGACCAGCTCCAGCGGTTCGACTCGATCACCGGTGGCGCGGTGTTCGCCTACCGTGTCGCGGACCCGACGGCGTACGGCGTGGTGGAGTTCGACGATGCCGGCCGCGCGATCTCCTTGGAGGAGAAGCCGGCGCAACCCAAGTCGAACTACGCGGTGCCGGGGTTGTATTTCTACGACAACGACGTGGTCGAGATCGCCAAGAATCTCGAGCCCTCGGCGCGCGGCGAGTACGAGATCACCGACGTCAACGCCGAGTACCTGCGCCGCGGCTCGCTGCAGGTCGAGGTGCTCCCCCGTGGCACGGCCTGGTTGGACACCGGCACGTTCGACTCGCTCATCGAGGCGAGCGACTTCGTGCGCACGATCGAGCAGCGCCAAGGCCTCAAGATCGGCGCTCCGGAGGAGGTGGCCTGGCGTCGCGGGTTCCTCACCGGCGACGAGCTGCGGGTCCGCGCGGAGAAGCTGGTCAAGTCCGGCTATGGCAGCTATTTGCTGGGCCTGCTCGACGAGTAGMPGGRNRFGAPSVSIDAPPPREIIRGMRGIILAGGSGTRLHPITLGVSKQLVPVYDKPMIYYPLSTLMLAGIRDILVITTPHDADQFHRLLGDGSQFGVNIEYTVQEQPNGLAQAFMLGEEFIGDDAAALVLGDNIFYGQGLGDQLQRFDSITGGAVFAYRVADPTAYGVVEFDDAGRAISLEEKPAQPKSNYAVPGLYFYDNDVVEIAKNLEPSARGEYEITDVNAEYLRRGSLQVEVLPRGTAWLDTGTFDSLIEASDFVRTIEQRQGLKIGAPEEVAWRRGFLTGDELRVRAEKLVKSGYGSYLLGLLDEPGPT0022600_4400DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022600-rfbA|rmlA|rffH-K00973NANA
AK018_05807312hypothetical proteinATGGACGTCCGTCCCAAGCCGCATGACCGGCCATCGGCCGTGCTGGAGGTCGCTCGAGAGAGCATCCTCGACGTCCTCGTCTCCCATGGCATCACCGAAGCGCGAGTCTTCGGCTCGGTCGCCCGCGGCGAGGACACCGCGGACTCCGACATCTATCTGCTCCTCAACGTCCCAGTTGGCTTCGACAACTTCGACAAGGCACTGCTCGTGCAGGAGCTCGAGGAGTTGCTCGGAGTCCACGTCGACCTGGTCGCCGCTGATGCGCGAGGCCCGCTGGCAGACCGCGCACGGTCGGAGGCTGTTCCACTCTGAMDVRPKPHDRPSAVLEVARESILDVLVSHGITEARVFGSVARGEDTADSDIYLLLNVPVGFDNFDKALLVQELEELLGVHVDLVAADARGPLADRARSEAVPLNANANANANA
AK018_05808873strLCOG1091dTDP-4-dehydrorhamnose reductaseGTGACGACAACGACTCCCCAGAGTGACCCCTGCCGCTGGCTGGTCGTCGGCTCTGGCGGCATGCTGGGCCGCGATCTGCTCGATGCCCTCACCAGGGCGGGGCGCGACGTGACGGCACTCGGCCGGGCCGAGCTCGATGTGACGGACGCCCAGGCCGTACGCAGCGCCGTCGGCGGCTACGACGTCGTCGTCAACGCCGCCGCTTGGACCGCCGTCGACGACGCCGAGACGCACGAGGCCGAAGCCTTCGCCGTCAACGCCACCGGGGCGGCGAACCTCGCCCGTGCTGCGGCGGCGGCGGGCGCCAGGCTGGTCCATGTCTCGACGGACTACGTGTTCGACGGCACGGCGACCGAGCCGTACGTGGAGGACGCCCCGATCGCGCCGCGCTCGGCGTACGGGCGCACCAAGGGCGCGGGGGAGTGGGCCGTGCGCGCCGAGGCCCCCGATCACCTCATCGTGCGCACCGCGTGGCTCTACGGCGCCCACGGGGGGTGCTTCCCGAAGACGATGGCGCGGCTCGGCGCCGAGAAGGACCGGCTCGCCGTCGTCGACGACCAGGTCGGCCAGCCCACCTGGACCCGGGACCTGGCGGATCTGATCCTGCGGCTGGTCGACGCCGAGACCCCCGCCGGGATCTACCACGGGACGTCGTCGGGCCAGACGTCCTGGTTCGGTTTTACCCAGCGGATCCTCGCGGAGGCCGGTCTGGCAACCCCGCTGGAGCCGACCACGAGCGCGGCGTTCGTGCGCCCGGCGCCGCGGCCCGCTTACTCGGTGCTGGGGCACGACGCCCTGCGCGCGGCCGGTGTCGAGCCGATCGGTGACTGGGTCGAGCGCTGGGAGGCCGCGGCGCCGTCCGTGCTCCCGTAGMTTTTPQSDPCRWLVVGSGGMLGRDLLDALTRAGRDVTALGRAELDVTDAQAVRSAVGGYDVVVNAAAWTAVDDAETHEAEAFAVNATGAANLARAAAAAGARLVHVSTDYVFDGTATEPYVEDAPIAPRSAYGRTKGAGEWAVRAEAPDHLIVRTAWLYGAHGGCFPKTMARLGAEKDRLAVVDDQVGQPTWTRDLADLILRLVDAETPAGIYHGTSSGQTSWFGFTQRILAEAGLATPLEPTTSAAFVRPAPRPAYSVLGHDALRAAGVEPIGDWVERWEAAAPSVLPPGPT0022630_2286DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0022630-rfbD|rmlD-K00067NANA
AK018_05809651rmlC_2COG1898dTDP-4-dehydrorhamnose 3,5-epimeraseATGCCGGAACCAGCTGAACCCGAGGGAGACCCTGTGCAGTACCGAGAGCTCGTCGTGCCCGGCGCCTACGAGATCATCCCGAAGCAGCACGGCGACCCGCGCGGTGTCTTCCTCGAGTGGTTCAAGGCACCGGCGTTCTCCGAGCACCTGGGCCATGGCCTGGACCTGCAGCAGGCCAACCTCTCGGTGTCCGCAGCCGGCGTGCTACGCGGGATCCACTTCGCCGACGTCCCGCCGGGGCAGGGCAAGTACGTGACATGCCCGAAGGGCGCCGTCCTGGACGTCGTCGTCGACATCCGCGTCGAGTCGCCGACGTTCGGGCAGTGGGACTCCGTGCTCCTCGACGACGTCGACCGCCGCGCGATCTACCTAGGGGAAGGCCTCGGGCACGCCTTCATGTCGCTGGAGGATGACTCGACCGTCATGTATCTCTGCTCGACGGGTTACAACCCGACGGCCGAGCACGGCGTGCATCCGCTGGACCCGGCGATCGGCATCGGGTGGCCGACGGCGGCACGGGACGGTTCCGCGATCACGCCGCAGCTGTCCGAGAAGGACACCGCCGCGCCGACACTGGCGGAGGCTCGGGAGCAGGGCCTGCTGCCGACCCTCGAGACCGTCGAGGCGTACGTGGCGTCGCTGCGCGGCTGAMPEPAEPEGDPVQYRELVVPGAYEIIPKQHGDPRGVFLEWFKAPAFSEHLGHGLDLQQANLSVSAAGVLRGIHFADVPPGQGKYVTCPKGAVLDVVVDIRVESPTFGQWDSVLLDDVDRRAIYLGEGLGHAFMSLEDDSTVMYLCSTGYNPTAEHGVHPLDPAIGIGWPTAARDGSAITPQLSEKDTAAPTLAEAREQGLLPTLETVEAYVASLRGPGPT0014300_113DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0014300-rfbC|rmlC-K01790NANA
AK018_05810996rmlB_2COG1088dTDP-glucose 4,6-dehydrataseATGCGAGTACTTGTCACCGGAGGAGCTGGCTTCATCGGTGCGAACTTCACCCAGCAGACGGTGAGGGAGCGGCCAGGCAGTCAGGTCACGGTGCTCGATGCCTTGACGTATGCAGGGGACGTCAAGTCGCTGGTCTCGGTGGCCGATCACGTGAACCTGGTGCAGGGGTCGATCACGGACGAGCCGCTCGTCGACCGCTTGGTCGGTGAGTCCGACCTGGTCGTCCACTTCGCCGCCGAGTCTCACAACGACAACTCGCTGAACGACCCGTCTCCGTTCCTGCAGACCAACCTGGTGGGCACGTTCACCCTGCTCGAGGCAGTGCGGAAGCACGGCGTACGGTTCCACCACATCTCGACCGACGAGGTCTACGGCGACCTGGAGTTGGACGATCCCGCGAAGTTCACCCCCGAGACGCCGTACAACCCGTCGAGCCCCTACTCGTCGACGAAGGCCGGCTCGGACCTACTGGTCCGAGCATGGGTGCGCTCGTTCGGGGTCCAGGCCACGATCTCGAACTGCTCGAACAACTACGGGCCCTACCAGCACATCGAGAAGTTCATCCCGCGCCAGATCACCAACCTCATCGACAGGGTGCGGCCCAAGCTGTACGGCGCAGGCCTGAACGTGCGGGACTGGATCCACGTCGAGGACCACAACACCGCTGTGTGGGCGATCATCGACAAAGGCCGGATCGGCGAGACCTATCTGATCGGTGCCGACGGCGAGAAGAACAACCTCGAGGTCGTCCAGACCCTGCTCGAGGTCTTCGGCCGGGACGCCGACGACTTCGACCACGTGGCCGACCGGCCGGGCCACGACATGCGCTACGCCATCGATGCCTCGCGGCTGCGCGACGAGCTCGGCTGGCAACCGCGGTTCACCGACTTCCGCAGCGGGCTCGAAGCGACGGTCGACTGGTACCGCGAGCACGAGTCCTGGTGGCGGCCCCGCAAGGCAGCCGTCGAGGCGAAGTACGCCACGACCGGCCAGTAGMRVLVTGGAGFIGANFTQQTVRERPGSQVTVLDALTYAGDVKSLVSVADHVNLVQGSITDEPLVDRLVGESDLVVHFAAESHNDNSLNDPSPFLQTNLVGTFTLLEAVRKHGVRFHHISTDEVYGDLELDDPAKFTPETPYNPSSPYSSTKAGSDLLVRAWVRSFGVQATISNCSNNYGPYQHIEKFIPRQITNLIDRVRPKLYGAGLNVRDWIHVEDHNTAVWAIIDKGRIGETYLIGADGEKNNLEVVQTLLEVFGRDADDFDHVADRPGHDMRYAIDASRLRDELGWQPRFTDFRSGLEATVDWYREHESWWRPRKAAVEAKYATTGQPGPT0022625_4300DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022625-rfbB|rmlB|rffG-K01710NANA
AK018_058111461pbuG_2COG2252Guanine/hypoxanthine permease PbuGATGGCGAACCAGACCACCGTGCCCTCGTCCGGGCAGAGCGGCCTCGACCGCTTCTTCAAGATCACCGAACGAGGCTCCACCGTGGGCCGCGAGATCCGTGGCGGCATCGTCACGTTCTTCGCGATGAGCTACATCATCGTCCTGAACCCGCTGATCATCGGCACGGTGCCGGACGGCACCGGGCAGGTGCTGGGCGGTGGTGCGGAGGCGACGCCGGACTCGCTGGGCATGGTGGCCGCGGCGACGGCCCTGGTGGCGGGTGTGGTCACGATCCTCATGGGCGTGTTCGCGAACTTTCCGATCGCGTTGGCGGCGGGTCTGGGCCTGAACGCGGTGGTGGCGTACTCGATCGCGGGGCTGCCGGACGTGACGTGGGCCGATGCGATGGGGCTGGTGGTCATCGAGGGCCTGATCATCCTGGTGCTGGTGCTGACCGGGTTCCGTGAGGCGGTGTTCAACGCGGTGCCGCTGGAGCTGAAGACGGCGATCAGCGTGGGTATCGGCATGTTCATCGCGCTGATCGGGTTTGTGAACGCCGGGTTCGTGGTGCAGGGCGAGGGCACGGCGCTGGCTCTCGGGAACCTGGGCACGTGGCCGATCCTGGTGTTCGTCGTCGGGCTGCTGCTGGTGATCGCGCTGTTCGTGCGCAAGGTGCGCGGGGCGATGCTGATCGGCATCCTGACCGCGACGATCCTGGCGGTGATCCTCGAGAACACGCTGAGCATCGGCAGCAAGGCGGGCGGCAACCCGAACGGCTTCAACCTGAACGCCCCCACGTGGGACGGCGTCGTGCAGATCCCGGACCTGGGCCTGCTGGGGCAGTTCTCGCTGCTGGGCTCGTTCGAGAGCATCGCGGCCGTCACGGTGCTGCTGCTGGTGTTCTCGCTGCTCATCGCGGACTTCTTCGACACGATGGGCACGATGGTGGCCGTGGGTGCCGAGGCGAACCTGCTGGACGAGAAGGGCAACCCGCCGAAGACGCGCGCGATCCTGGTGGTGGACTCGTTGGCCGCGATGTTCGGCGGCATGGGGTCGGTGTCCTCGAACACGGCGTTCGTGGAGTCGACGTCGGGTGTGGGCGACGGCGCGCGCACGGGTCTGGCGTCGGTGACGACGGGTGTGGCGTTCCTGCTGGCGACGTTCCTGTCCCCGCTGGTGGCTCTGGTGCCGTACGAGGCGGCCGCGCCGGCGCTGGTGTTCGTGGGCTACCTGATGATGATGCAGGTCGCGAACATCTCGTGGAAGAACGTGGAGATCGCGATCCCGGCGTTCCTGACGATCGTGATCATGCCGTTCACGTACTCGATCGCGGACGGCATCGGTGCGGGCTTCCTGGCGTTCGTGGTCATCAAGCTGGCCCTGGGCAAGGTGCGGCAGATCCACCCGCTGATGTGGATCGCATCGCTGCTGTTCGTCGTCTACTTCCTCCTGGAGCCGATCGAGCAGGCGTTCGGGCTCTGAMANQTTVPSSGQSGLDRFFKITERGSTVGREIRGGIVTFFAMSYIIVLNPLIIGTVPDGTGQVLGGGAEATPDSLGMVAAATALVAGVVTILMGVFANFPIALAAGLGLNAVVAYSIAGLPDVTWADAMGLVVIEGLIILVLVLTGFREAVFNAVPLELKTAISVGIGMFIALIGFVNAGFVVQGEGTALALGNLGTWPILVFVVGLLLVIALFVRKVRGAMLIGILTATILAVILENTLSIGSKAGGNPNGFNLNAPTWDGVVQIPDLGLLGQFSLLGSFESIAAVTVLLLVFSLLIADFFDTMGTMVAVGAEANLLDEKGNPPKTRAILVVDSLAAMFGGMGSVSSNTAFVESTSGVGDGARTGLASVTTGVAFLLATFLSPLVALVPYEAAAPALVFVGYLMMMQVANISWKNVEIAIPAFLTIVIMPFTYSIADGIGAGFLAFVVIKLALGKVRQIHPLMWIASLLFVVYFLLEPIEQAFGLPGPT0007325_1276DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007325-pbuG|azgA|ghxP|ghxQ|adeQ-K06901NANA
AK018_05812243hypothetical proteinGTGCCCTCCGTGCTCACGCTGCTGCTCCACCCCGAGCAGCGCCGACCGGCGCCTCCGCCGCCGCACGCCGACCTGACGCGCGTCATCTGGCTCGGGATCGCCGTCTGGGTCGTCGCCCTGCTGGTCGCGACCTCGCTGCTGCTGTTCGCGAGCGGGTCCGTGGAGTTCGTGGCGACCTGCGGGGCCGGCATCGCCCTCGGGCTGCTGGGGCTCCCCTGGGCCCGACGCCACCGCGACGACTGAMPSVLTLLLHPEQRRPAPPPPHADLTRVIWLGIAVWVVALLVATSLLLFASGSVEFVATCGAGIALGLLGLPWARRHRDDNANANANANA
AK018_058131209hypothetical proteinATGGGCACCGGCGTCCTGAAGTCCTCCGGAGGCTGGCCTCCGCTCGAGCACGAGGATCGCGAGTGGGTGTCCACGATCGAACCCGGGCACCTGTCGGTGTTCGAGCGGCGACGGATCGAGCGGCCCTACCGGGCGGCGGTCGTCCCGACGATCGCCGCGAACCCTGTCGAGCTCGCCCCCGAGACGATGACGGTGGTCGAAGCGGCCACGCAGGACGTCACACGGTTCGACGAGCAGATGTCGTCGCTCCCGGTCCCGATGCCGGCTGTCCTGCTGCGCAGCGAGTCGGCGTCGTCGTCACAGATCGAGCACCTGACCACGAACGCGCGCAACCTGGCCATGGCCAGCATCGGGATCGACTCGAAGCAGAACGCAGAACTGGTCGCGGCCAACGTCCGTGCCATGGCGGTGGCTGCCGGTGCCGCGGCCGACCAGCTGACTGCTGCCTCGATCCTCGACGTGCACCACGCGCTGATGCGCGACTCCGAACCGGACGTCGCCGGTTCTTGGCGTACGGAGCAAGTCTGGATCGGATCGCACGCGGCCTACCCGCACGGTGCAGACTTCATCCCGCCGCACCACGAGCGGGTACCGGCGGCCATCGACGACCTGGTGCAGTTCGCTCGCCGGACGGACGTCCCCGCCCTCGCGCACGCGGCCATCGTGCACGCGCAGTTCGAGACGATCCACCCCTTCACCGACGGCAACGGCCGCGCAGGTCGCGTCGTGCTGCAGTCGGCGCTGCGACAGCGAGGCGTCCTGCGCTCTACCACCGTTCCGGTGTCGGCAGGACTCCTGCGCGACCCCGAACGGTACTTCCGAGCACTGACCGCGTACCGGGAGGGCGACGTCGACCGGATCGTGGCCGACGTCGCCGAGGCCTCGATGACCGCCGCCGCGAACGGGCGCGCACTGGCGGAAGCAGTCGGTGACATCCGTGCGCGCTGGCGTGAGCAGATCACCGCCCGGTCGAACTCGTCCGCCTGGCGGCTGTCGGACGCGTTGTTCGCCCAGCCCGTCGTCACGGCGGACCACGTCGCGGCCCTCCTCGGGCTCTCGGACCGCGGCGCACGCAACACGATCGACGTGCTCGTGCGCGACGGGGTCCTCACCCCCGCTTCGACGGCCAAGCGCCGGCAGTACTGGCAGGCGCCGGAAGTCCTGTCGGCGATGGACGAGTTCGCACGGCGCGCCGGGCGGCGCAGCTGAMGTGVLKSSGGWPPLEHEDREWVSTIEPGHLSVFERRRIERPYRAAVVPTIAANPVELAPETMTVVEAATQDVTRFDEQMSSLPVPMPAVLLRSESASSSQIEHLTTNARNLAMASIGIDSKQNAELVAANVRAMAVAAGAAADQLTAASILDVHHALMRDSEPDVAGSWRTEQVWIGSHAAYPHGADFIPPHHERVPAAIDDLVQFARRTDVPALAHAAIVHAQFETIHPFTDGNGRAGRVVLQSALRQRGVLRSTTVPVSAGLLRDPERYFRALTAYREGDVDRIVADVAEASMTAAANGRALAEAVGDIRARWREQITARSNSSAWRLSDALFAQPVVTADHVAALLGLSDRGARNTIDVLVRDGVLTPASTAKRRQYWQAPEVLSAMDEFARRAGRRSNANANANANA
AK018_058143189hypothetical proteinGTGACGGACGACGTCTTCGGGACCGCCGCGCTGCGGCAGGGGGTCGCGGAGGCGTGGCTCGGGTCCGCCACACGCTTCCGTGAGGACGCGAACTCCGAGGAGGATCACGCCCGCGGCCACTACCGCGACCGCGTGGTGGTCGAGCTGTTGCAGAACGCCTCGGACGCCGCGGTGCGCGCCGCCGCCCCGGGTTCCGCCCCTGAGGGGCGCGTGCACCTGACCCTCGATGCCGCGCGGCGGGTGCTGCGCGTGTCGAACACGGGTGCGTCGCTGGATGCGGACGGGGTGGCGTCGTTGGCGTCGTTGCGCGCCTCGGCGAAGGACGACGAGGGCCAGGTGGGCCGGTTCGGCGTGGGTTTCGCGGCGGTGCGCGCGGTGTCCGACGACGTCACGGTGCGTTCGCGCACGGGTGGCGTGCGGTTCTCGCTGGACCAGACGCGCGACCTGGTGGACGGGTTGACGGCGCGGCCGGACGCGGTGCGGCTGGCGGGTGACGTCGTCGGGCGCGGCGACGACCTGCCGGTGCTGCGGCTGCCGTTCGCGGTGCCGCCGCTGGACGCCGAGGGTCCGTGGGACACGGTGGTGGAGCTGGTGCTGCGCGACGACGCGGCGGTGCGGGCGGTGGACGCGCAGGTGGCGCAGGTGGACGAGGTGCTGCTGCTCGCGTTCCCGGGGATCGCGGACCTGTCGTTGTCCGTGGCCCCGTCCGACGCCCTCCCTGACGCTGTGGGCGCAGAACGTGGGGTCGAGGATCGGGACGAACGACTCATCTCGGGCCAGAAGTCGCGCCCACAACGGACGGTGGGGGGCCGGTTCACGGACGCCGAGCTCGCCGACCTGCCGCGGGAGCACCGTCGCGCCGGGTGGTCGCTCACGTGGGCGTTGGTGCCCGACGGCGGCACCCCGGAGGGCGCGCCCCGCCTGCGCCGGGTGCTGCACGCCCCGACCCCGACCGACATCCGCGTCGACCTGCCCGCGGCGCTGATCGCGACGTTCCCGGTGGAGGCCGGTCGCCGCCACGTGCTGCCCGGCCCGGCGACCGACCGGCTTGCCGCCGAGGCCGGCCGCGCCTACGCCGAGCTCGTGGGTGACGTCGCCGCGCAGCTCTACCGCTCGGGCGGCTCCACCGGCACTACCGGCACCACCGGCGCCAGCGACACCACCGACAGCACCGACCGAGCCCTCGAGCGCGCCCCCGGGCACGCCACCGGGATCGAACCGCTGGACCTGGTCCCGACCGGGCTGCCGGCGTCGGACCTGGATGCCGCGATCCGCACCGCCGCCGTCGAGGCTCTGCGCGCCACTCCGGTGCTCCCGGCGCCCGGCGAGTCCGACACCCACCTGACGGCGCCGGCGGACGCGCTGGTGATCGCCGGGTCGGCGGGGGAGGACCGCGAGCTGGTCGCCGCGCTGGCCACGGTGCTGCCGGGGCTGGTCGCGGTGCCGGTCCGCCACCAGGCCACGGTCCGGTCGCTGGGTGCCACCGTGGCGCCGCTCGCGGACCTGGTCGACGACCTGCCGGACGGTGTGCCCACCGACCGCTGGCACGGCGTGCTGAGCGCCCTTGCGCCGCACGCCGACGAGCCGGGCGTACTCGAGGCGCTCTCGGGCGTCCGGGTGCCGCTGGCCGACGGCCGCATGGCCGGGGTGCGGGGCGCCGTCGTGCTGCCGGAGGGTTCGGTGGACGACGGCGACGAGGCGTCCCTGGCGGCCACGGCCCGCGTGCTGGGGCTGCGGGTGGTGCACCCGGACGTGGCGCACCCGCTACTGGTGCGCGCGGGTGCCGTGGTCACCGACGCCCAGCGCATGCTGCACGACCCTGAGGTCCGGCGCGCCGCCCTCGAGGCCGCCGAGGCGGTGCTGGACGGCGACGCGGACGACGGCGAGCAGGAGATCGTGGACTCGGCGCTCGCGCTGGTGCGCCTCACCGGGGGTGTGGACGCCCCGTTCTGGACGGGCGAGCTGCCGGTGCCGACGGCGTCGGGGGAGATGGCGGCGCTGCGCGAGGCGACGCTGCCCGGCACGTGGGCGGCGGAGGTGCTCGACGGCCTGGACCCCGTCGACGTGGAGTACGTGGCCCGGTACGGGGCGCCGGTGCTGGCCTCGGCGGGCGCCCGCACGGATCCGGACGTGTACACGGTGCGCGACGTCGTCACCCCGGAGGCGGACGAGTCGGACGCCGGTCTGGACGGCGGCGGCCCGGACGACCCGGCGGGCTGGCTCTCGGGCTGGTCGGACTACCTGCGGCTGCTGGCGGGCCGGTTCGGTGCGGGGGTCGCGCTCGGCGACCTGGAGGCGGTGGCCGACCTGGACGCGGTGGGCGACGCGGCGTGGGACGACGTGCTGGCCCACCTCGCGGTGGACCCGGTGATCCGCCAGGCGCTGCTCACGCCGGTGCGTCGCGGACGCGTCAGCGCGCCGTCGTACACGGCGTGGTGGCTGCGCGAGCGGCTCGGCGCCCCGTTCGCCCTGCACGACGGCGTCCCCCTGCTGCCGCCGGCACCGCGTGCGGTGGCGGGGCTCGACGCCGCGACCCGGCGGGCGCTCGGCGGCGCGGACTCGCTCGGTGACCTGGACGCCACGGACTGGCCGGCGGCGCTGGACCGGCTGCCGGACGTGGGTTCGGCGCTGCCGCTGCGCGACGCGCTCGTGGTGTGGCGGGGGCTGGCGAACCTGGCGAGCCGGCTCGACTCGGCGGACCGCTCGGCGGCGCTGGACCCGCTGCCCGACCGGCTGCCCGCCCTGGACGCGAGCTCCGTCGTCGTGCAGCGCGCCGACGACGTCGAGGTGGCCGGCACCGCACGCTGGGCGGCGCTCGGCGCGGTCATCCCGGCGCCCGCCGGGGACGCGGAGGCGCTGGCCGAGCTGCTGGACCTTCCCCTGGCCGGCCAGGACGGGCTGCCCGCCCCGGACCTGCTGGGCGACGAGCGCGAGCTCGAGCCGCGGGTGGCCGGGCTCGACCACCGGCTGCCGCGCGTCTGGTACTTCCACGAGCGGTTGTCCGTGGCCGGGCGGCCGGTGCCGTGGTGGGTGGACTCGGCGGGGCGCGTGCACGCGACGTCGGCGGCGGGCCTGGCCTCCGGGTTGGCGGACCGCCTCGGGCGTCCGGACCGGGTGGCGCTGCTGGCGGCGGTGCTCGCGGAGCCGGAGCGGGCGGTCGCGCTGTGGGCGACGACGGCGTGGGGCTGAMTDDVFGTAALRQGVAEAWLGSATRFREDANSEEDHARGHYRDRVVVELLQNASDAAVRAAAPGSAPEGRVHLTLDAARRVLRVSNTGASLDADGVASLASLRASAKDDEGQVGRFGVGFAAVRAVSDDVTVRSRTGGVRFSLDQTRDLVDGLTARPDAVRLAGDVVGRGDDLPVLRLPFAVPPLDAEGPWDTVVELVLRDDAAVRAVDAQVAQVDEVLLLAFPGIADLSLSVAPSDALPDAVGAERGVEDRDERLISGQKSRPQRTVGGRFTDAELADLPREHRRAGWSLTWALVPDGGTPEGAPRLRRVLHAPTPTDIRVDLPAALIATFPVEAGRRHVLPGPATDRLAAEAGRAYAELVGDVAAQLYRSGGSTGTTGTTGASDTTDSTDRALERAPGHATGIEPLDLVPTGLPASDLDAAIRTAAVEALRATPVLPAPGESDTHLTAPADALVIAGSAGEDRELVAALATVLPGLVAVPVRHQATVRSLGATVAPLADLVDDLPDGVPTDRWHGVLSALAPHADEPGVLEALSGVRVPLADGRMAGVRGAVVLPEGSVDDGDEASLAATARVLGLRVVHPDVAHPLLVRAGAVVTDAQRMLHDPEVRRAALEAAEAVLDGDADDGEQEIVDSALALVRLTGGVDAPFWTGELPVPTASGEMAALREATLPGTWAAEVLDGLDPVDVEYVARYGAPVLASAGARTDPDVYTVRDVVTPEADESDAGLDGGGPDDPAGWLSGWSDYLRLLAGRFGAGVALGDLEAVADLDAVGDAAWDDVLAHLAVDPVIRQALLTPVRRGRVSAPSYTAWWLRERLGAPFALHDGVPLLPPAPRAVAGLDAATRRALGGADSLGDLDATDWPAALDRLPDVGSALPLRDALVVWRGLANLASRLDSADRSAALDPLPDRLPALDASSVVVQRADDVEVAGTARWAALGAVIPAPAGDAEALAELLDLPLAGQDGLPAPDLLGDERELEPRVAGLDHRLPRVWYFHERLSVAGRPVPWWVDSAGRVHATSAAGLASGLADRLGRPDRVALLAAVLAEPERAVALWATTAWGNANANANANA
AK018_05815825putative proteinATGGCTTCGGCACCTGCCAAGGCGCGCCGCGTGAGCTCGCGCGCCCGCAACGACGCCGTCCTGCTGGGCGCCGTCGAGCTGGCGCGCGCCGCGGCGCAGGACGTCGCCGGGTCGCCGGACGACGTCGGTGAGCACCTGGGCACGCTGGCGGAGGGTGAGCGGCTCATGTCGCACCGCTTCGCCGCGGCGATGAAGGGCTATCACGGCTGGCACTGGACGGTGACGCTGGCCCGGGTGCCGCGCGGCCGGACGGCCACGGTGTGCGAGGTCGAGCTGCTGCCCGGGGACGACGCGATCCTGGCGCCGGAGTGGGTGCCGTGGTCGGAGCGGCTGCGTCCGGGTGACGTGCGCCCGGGGGACACGTTGCCGTTCCGCCCGGACGACCCGCGCCTGGAGCCGGGGTGGACGCCGTCGGGCGACGAGGAGCAGGACGAGGTCGCGATCGACGAGCTGGCGCTGGCCCGCCAGCGGGTGCTGTCCCCGCAGGGCCGCGACGAGGCCGCCGAGCGCTGGTACCGCGGCTCGCAGGGGCCGACGTCGCGCGGGGCTGTCGCCTCGGACTCCGAGTGCGCGACGTGCGGGTTCCTGGTGCCGTTGCAGGGGCCGCTGGGTCAGTTGTTCGCGGTGTGCGCCAACGAGTGGTCGCCCGACGACGGCAAAGTGGTGTCGCTGGACCACGGCTGCGGGGCGCACTCGGAGACGGACGTGCGCCGTCGGCGCAGCGAGTGGCCGGCGAACGACCCGCTGATCGACGAGTCGACGATCGAGCCGGTGGATCTGCCGGCGGGTCGTCCTGAGCAGACGGACGGTGACCCGGACGAGTGAMASAPAKARRVSSRARNDAVLLGAVELARAAAQDVAGSPDDVGEHLGTLAEGERLMSHRFAAAMKGYHGWHWTVTLARVPRGRTATVCEVELLPGDDAILAPEWVPWSERLRPGDVRPGDTLPFRPDDPRLEPGWTPSGDEEQDEVAIDELALARQRVLSPQGRDEAAERWYRGSQGPTSRGAVASDSECATCGFLVPLQGPLGQLFAVCANEWSPDDGKVVSLDHGCGAHSETDVRRRRSEWPANDPLIDESTIEPVDLPAGRPEQTDGDPDENANANANANA
AK018_05816384hypothetical proteinGTGCCCACCGGCAAGGTCAAGTGGTACGACGCCGATCGCGGCTTCGGATTCATCGCCGACGACGACGGCGGTGAGGTCTTCCTGCACGCCTCCGCGCTGCCGACCGACGAGCAGGCCCCCAAGCCGGGCGCGCGCGTCGAGTTCGGTGTGGCCGACGGACGGCGCGGCCCGTCGGCGCTCTCGGTGCGGCTGCTCGACCCCAAGCCGTCGGTCGTGCGCGCCAAGCGGAAGGCGCCGTCGGAGATGGCGGGGATCGTCGAGGACCTGATCCGTGTCCTCGACCGCACGGGCGACCAGCTCAAGCGCGGCAAGTATCCGGAGGGCGACGCCGGTCGGCGGATCGCCACGATGCTGCGCGCGGTCGCCGACAACCTCGATTCCTGAMPTGKVKWYDADRGFGFIADDDGGEVFLHASALPTDEQAPKPGARVEFGVADGRRGPSALSVRLLDPKPSVVRAKRKAPSEMAGIVEDLIRVLDRTGDQLKRGKYPEGDAGRRIATMLRAVADNLDSPGPT0014675_1361DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
AK018_05817699putative HTH-type transcriptional regulatorATGACCGCCCGCACCGCCCGTGAACGCGCCCGCGAGAGCATCACACGCGAGATCCTCGACGCCGCCCGCGCCCGGCTTGCCGCCGACGGTCCGGCCGCGCTGTCGCTGCGGGCGGTCGCGCGGGACGTAGGCATGGTCTCCTCGGCGGTCTACCGGTACTTCCCGAGCCGCGACGCGCTCCTGACCCGGCTGCTGGTGGAGTGCTACGACGAGCTGGGCGACGTCGTCGAGCACGCCGAGACCGAGGCGCCGCGTGCCGATCACGCCGCCCGCTGGCTCGCGACGTGCCGGGCGGCCCGGCAGTGGTGCGTCACGCATCCCGGCGAGTTCGCCCTGCTGTACGGCACGCCGGTGCCGGGGTACGCGGCCCCGCAGGACACGATCGAGCCGGCGATCCGCGTGGTGCTGCTGCTGGCCCGCATCGCCGCCGAGGCGCAGGGGGAGGCCGCACCGGTGGTCTCGGAGGTGGCGCCGCTCGTCGCCGGGGCGCGGGACGTCGTCGTGCAGCGCGGGTGGCCCGAACCGCCGCCGGAGGTGGTGGCGCGGGTGCTGATGGCGTGGACGGGGCTGTTCGGCACGGTCTCGTTCGAGCTGTTCGGGCATCTGAACAACGCGGTGAGCGACCCCGCGGACTGGTTCGACGCCGTCGTCGCCCGTCTCGGCGCCGACGCCGGCATCCGGCCCGCCGCCACCCCCTGAMTARTARERARESITREILDAARARLAADGPAALSLRAVARDVGMVSSAVYRYFPSRDALLTRLLVECYDELGDVVEHAETEAPRADHAARWLATCRAARQWCVTHPGEFALLYGTPVPGYAAPQDTIEPAIRVVLLLARIAAEAQGEAAPVVSEVAPLVAGARDVVVQRGWPEPPPEVVARVLMAWTGLFGTVSFELFGHLNNAVSDPADWFDAVVARLGADAGIRPAATPNANANANANA
AK018_058181500hypothetical proteinGTGTCGATCGCCGAGGTGCGGGCCCAGACCCGCAGTGCGCTGGCAGCAGTACGTGCCCAGCGCCTGCGCGAGGTCCGCGACACCTTCGGAGCGGGTCGGTGGCAGACTTCGTACCGCCGTCGGCTCATGGCCACCGACGCCGCCGTCGCGCTCCTCGCCGTCCTCGTGGCCGCGGTGCTGCGGGACGGCCCCTACGTGCTGACGGCGTCCGGCGTCCAGGTCCACCAGCTCGCGATCCTCGTGCTCGTCGTCGCGGCATGGCCGGTCTCCGTCGCGCTCAGCCGCGGCTACGACCCCCGCGTGTTCGCCTCCGGTCCCCAGGAGTTCCAGCGCGTCTTCGACGCCACCTGGCGACTCTTCGCCGCCCTGGCCCTCGTCTCGTTCCTGTTCGCCTGGCCCGGCCTGCGCGAGATCCTCCTGATCGCGTTCCCCGTGGGGCTCGTGCTGCTCCTGGTCGGGCGGTGGTCGTGGCGACGGTTCCTCATCCGGCGGCGCGGGCAGGGTGACTGCACGACGTCGGTGCTCGCCATCGGGCTGCGGGACCAGGCCGAACGACTCATCCACGAGCTCAACGACCGCCCCTCCGGCTACCGCGTCGTCGGAGTCTGCGTGCCCACGGGCACCATCCGCCCCGGCGAGACGATCCTGGGCGTGCCGGTGCTCGGCGACCTCGACGGCGCGGCCACGATCGCGAGCCAGACCCGCGCCCAGTGCGTGGCGGTCTCCGGGTCGGACTGCATCACCGCCGACGTGGTGCGCCGCCTGGGCTGGGAGCTCGAGCCCATCGGGGTGGACCTGATGCTGACGGCCGAGCTCGCCGACGTCGCCGGCCCCCGCATCACCATCACCCCCGAGCAGTCGGTCTCGCTGCTGCACGTCGACGCCCCGCGGTTCGCCGGACCCAAGTACGTGGCCAAGACCGCCATGGACTGGACGCTGACGGTGCTGGTGACGCTCGCCGTGCTGCCGGTCATGGTGGTCACCGCCCTGCTGGTGGGTCTGACGAGCACCGGGCCGGTGTTCTACACCCAGCACCGGGTCGGCCGCGGCGGGCGCACGTTCCCCATGCTGAAGTTCCGCACCATGCGGGTCGGCGCGGACCGTGAGCAGGAGGTGCTGGCCGGCCAGAACGACGGCGACGGCGTCCTGTTCAAGCGCCGCGACGACCCGCGCGTCACGGCGGTCGGCAAGCACCTGCGCCGCTACTCCCTGGACGAGCTGCCGCAGCTGTTCAACGTGCTCGCCGGGCAGATGTCGCTCGTCGGTCCGCGCCCGCCGCTGCCGCAGGAGGTCTCCCGCTACGAGGCGCGGATGCGGCGCCGGCTCCTGGTCAAGCCCGGGATCACCGGGCTGTGGCAGGTGGGTGGCCGTTCCGACCTGCCGTGGGAGGAGGCCGTGCGGCTCGACGTGTACTACGCGGAGAACTGGACGCCGTTCGGCGACGTGCTGATCCTGGCCCGCACCGCCCAGGCGGTGCTCCGGGGCAGCGGCGCCTACTAGMSIAEVRAQTRSALAAVRAQRLREVRDTFGAGRWQTSYRRRLMATDAAVALLAVLVAAVLRDGPYVLTASGVQVHQLAILVLVVAAWPVSVALSRGYDPRVFASGPQEFQRVFDATWRLFAALALVSFLFAWPGLREILLIAFPVGLVLLLVGRWSWRRFLIRRRGQGDCTTSVLAIGLRDQAERLIHELNDRPSGYRVVGVCVPTGTIRPGETILGVPVLGDLDGAATIASQTRAQCVAVSGSDCITADVVRRLGWELEPIGVDLMLTAELADVAGPRITITPEQSVSLLHVDAPRFAGPKYVAKTAMDWTLTVLVTLAVLPVMVVTALLVGLTSTGPVFYTQHRVGRGGRTFPMLKFRTMRVGADREQEVLAGQNDGDGVLFKRRDDPRVTAVGKHLRRYSLDELPQLFNVLAGQMSLVGPRPPLPQEVSRYEARMRRRLLVKPGITGLWQVGGRSDLPWEEAVRLDVYYAENWTPFGDVLILARTAQAVLRGSGAYNANANANANA
AK018_05819918hypothetical proteinATGGCCCATCACCTCGTCGTCGGCGCCGGACCCGTCGGGCGTGCCGTCACCGACCTCCTCGCCGCCGACGGCCACGACGTCACCGTCGTGACCCGCTCCGGCCGCGACACGGGCGTCCCTGGCGTCCGCCACGTCGCCGCCGACGCCTCCGCCCCCGACGCGCTGACCGCCGTCGTCCCTCCCGCCGACGTGCTCTACAACTGCGCCAACCCCACCGACTACACCCGCTGGGACACCGTCTGGCCGCCGCTCGCCACCTCGCTGCTCACCACCGCCGAACGCCTCGGCGCCGTCTACGCCATCACCGGCAACCTCTACCCCTACGGCCCCGTCGACCGGCCCATGACCGAGGACCTGCCCGACGCCGCCACCGACCACAAGGGGCGGCTGCGCGCCCGGATGTGGGCCGACGCGCTCGCCGCGCACCGCGAGGGCCGGGTGCGGGCCGTCGAGGTGCGCGGCTCGGACTACGTCGGCCCCGGCGTCGGGCAGAACGGCCACCTGTCCCGCGTGGTCCCGGCAGCGCTGCGGGGCCGCACCGCCGCGATGATGGGCCGCACCGACCAGCCGCACACGTTCACCGACGTGCGCGACGTCGCCCGCACCCTCGTCGCGGCCGCCACCGACCCGGGCGCGCACGGCCGCACCTGGCACGTGCCGTCGAACCCGCCCGTCACCCAGGCACGCGGCCTCGCGGACGTGCTCGCCGCCGTCGGACACCCACCCGTGCGCACCGTCGGGCTGCGCGGACCCGTCCTGGCCGCCGCCGCGGCGTTCTCCCCGCTGCTGCGCGAGCTGCGTCAGCTCATCTACCAGTTCGAGCGGCCCTACGTGCTCGACGACACCGCCGCTCGGGAGCGCTTCGGCATCACGCCGACGCCCTGGGCGGAGGTCTGCCGCGCCACCGCCGCCGGCTGAMAHHLVVGAGPVGRAVTDLLAADGHDVTVVTRSGRDTGVPGVRHVAADASAPDALTAVVPPADVLYNCANPTDYTRWDTVWPPLATSLLTTAERLGAVYAITGNLYPYGPVDRPMTEDLPDAATDHKGRLRARMWADALAAHREGRVRAVEVRGSDYVGPGVGQNGHLSRVVPAALRGRTAAMMGRTDQPHTFTDVRDVARTLVAAATDPGAHGRTWHVPSNPPVTQARGLADVLAAVGHPPVRTVGLRGPVLAAAAAFSPLLRELRQLIYQFERPYVLDDTAARERFGITPTPWAEVCRATAAGNANANANANA
AK018_058201227hypothetical proteinGTGACGCGCTCTGACCCGTCCGACGTCGCGACGCGACCCCGACAGACTCCCTCGGGCCAGGGCCGCTCGCCTAGGACGTACCTGCTCCTCGCGGTGGTGGCGTCGGGCGCCTTGGTCGATGCAGCGTTCTTCCTGCTGCTGCTCCTGTCCTCCTCGGCGACGGGCGTCAGTTGGTTCGTCACGGCGGTCATCGTCGCCAACCTGCTGCCACCGGTCCTGCTCGGGCCGGTGCTGGGCTGGCTCGTGGACCGCACGTCGGGGAGATGGGCCTGGTCCGTCGCCTTGCTGATCACCGCAGCATGCTGCCTCGGCATATCCGGCACCGGAACCGTCGGCGCCGTCGTCGCGCTGGCCGGACTACAAGCCGTCGCCTCGGTCGTCGTCAACGCGGCCGCCTTCAAGCTCCTGCCCGAGTCCCCCGGGCTCGACGAGAGGACCGCGAGCTCCTATGCCGTCGGCATGGGATCACTGGCCGCGATCGCGGGACCGCCCCTCGGCGCACTGGCAGCCAGCACGACCAGCAACGCGGGGGCCTTTCTGATTCTGGCGGGTTTTGCCCTCCTCGCGGCGCTCGGAGCGGCCGTTGCTGCTCCCCGTCTCGTGCACGTCCAGGTCGGGGCCACCCGATGGCGCGACGTCTGGCTCGGGACCCGGACCGCCCGCACGTTGACCTCCGTGCGCGCCTTCGCGCCCGTCGTCCTGGGTATCGTGCTCGTCACGTCGATGGAGGGCGTCGCCGGGGTCTTCTACCTCCAAGACGTCGCCCCCACCTCTATCGTCTACGCCTGCCTGCTGGCGATGTGGGCCCTCGGGTCCCTCGTTGGCGCATGGTGGACCGGCCGGCGCACCAGCAGGCTGGGCGTGCGCGCCTCGGTGCTCGTCGGAGGCCTGCTGATGTCCCTGGCGATCCTGCTCGAAGGCCTCGTCGCCGTCACCGTCGTCATCGCCGTCGTCTTCGTCGCAGGCGGGTTCGGCAACGCCGTCCACAACGTCGGCATCCGCAACCTCGTCTACCAGCACGTCCCCCGCGCCCAGCAGGCCCAGATCTGGTCCATGCTGGCCGCCGTCATGTCCGGCACCGCAGCCCTCGGCAACGCACTCGGCACCCCCGGACTCCTCGGCCCAGCGCAGGACGTCGTCGTTCTGTCGGGGGCTGTCGGAGTGGCCGCTGTGACCGTCACCGCGCTCCTCCTCCTGCATGCGTCCGCTTCGCGGAGCAGGCAGTGAMTRSDPSDVATRPRQTPSGQGRSPRTYLLLAVVASGALVDAAFFLLLLLSSSATGVSWFVTAVIVANLLPPVLLGPVLGWLVDRTSGRWAWSVALLITAACCLGISGTGTVGAVVALAGLQAVASVVVNAAAFKLLPESPGLDERTASSYAVGMGSLAAIAGPPLGALAASTTSNAGAFLILAGFALLAALGAAVAAPRLVHVQVGATRWRDVWLGTRTARTLTSVRAFAPVVLGIVLVTSMEGVAGVFYLQDVAPTSIVYACLLAMWALGSLVGAWWTGRRTSRLGVRASVLVGGLLMSLAILLEGLVAVTVVIAVVFVAGGFGNAVHNVGIRNLVYQHVPRAQQAQIWSMLAAVMSGTAALGNALGTPGLLGPAQDVVVLSGAVGVAAVTVTALLLLHASASRSRQNANANANANA
AK018_05821783xynR_4COG1414HTH-type transcriptional regulator XynRATGGCGGAGAGCTCGGCAGGACGTGCGACCAAGGACGGTGCCGTCCAGTCCGTCGACCGGGCCGCCGCGATCCTGGAGCTGCTCGCCACCGCCGGCGAGCTCGGCGTCAGCGAGATCGCCCGCGAGCTCGGGGTGCACCGTTCCACCGCGTTCCGCCTGCTGGCGACGTTGGAGGCGCACGACCTGGTGGAGCAGGAGGAGCGCCGCGGCACCTACGACCTCGGGGTCGGGCTGCTGCGGCTGGCCGGACGCGTGACGCGCCGCATGGACATCGCGACGGACGCCAGGGCGGTGTGCGACGACGTCACGGCCGAGGTCGACGAGACCAGCAACGTCGCGATCCTCGACGACGGCGCGGCGGTGAACATCACCCAGACCACGAGCTCGCAGCTCGTCGGGGTGGCCCGGCAGTACGTCGGCCAGCGCACCCCGCTGCACGCGACCTCGACCGGCAAGATGCTGCTCGCGCACGCCGGCGACGAGGTCCTGGCGACGGTGCTCGACGGCCCGCTCGAGGTGTGCACGGACCGCACGATCACGGACCCCGCGGCGCTGCGCACCGAGCTCGCCACGATCCGGCGTCGTGGCTGGGCGGCCGCCGTCGCCGAGTGGGAGCAGGACACCAACGCGCTCGCGGTCCCGGTGCACGGGACCGGTGGTCGCGTGGTGGCGGCGCTGAGCGTGACGGCGCCGAGCTTCCGGATGGCTCCCGAGGCCTTCGAGGAGATCGCGGCGGTGCTGACCCGGCACGCCGCGGGGCTCAGCACGCGGCTCGGCGCGTAGMAESSAGRATKDGAVQSVDRAAAILELLATAGELGVSEIARELGVHRSTAFRLLATLEAHDLVEQEERRGTYDLGVGLLRLAGRVTRRMDIATDARAVCDDVTAEVDETSNVAILDDGAAVNITQTTSSQLVGVARQYVGQRTPLHATSTGKMLLAHAGDEVLATVLDGPLEVCTDRTITDPAALRTELATIRRRGWAAAVAEWEQDTNALAVPVHGTGGRVVAALSVTAPSFRMAPEAFEEIAAVLTRHAAGLSTRLGAPGPT0018213_961DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
AK018_058222511dmg_2Dimethylglycine oxidaseATGACCGACCTGTCCCGCCTCGACCACCAGCCCCGCATCGTCGTGATCGGCCTCGGCGTCGTCGGCGCTGCGCTGGCCGACGAGCTCACTCAGCGCGGCATGCGGCACGTGACCGTCCTCGAGCAGGGTCCGCTGTGGGAGACCGGCGGCTCCTCCTCGCACGCGCCCGGCTTCGTCTTCCAGACCTCGCCGCACCGCACGATGAGCCTGCTGGCCCGCCGCACCCTCGACAAGCTCGACGGGCAGAAGGTGGACGGGCAGTGGCTGCTCAAGCGGCTCGGCGGCCTGGAGATCGCGACCACCCCCGAGCGCCTGCACGACCTGTTCCGCCGCCACGGCCTGGCGCAGTCCTGGGGCATCCCGTCCCGGCTCGTCGACCCCGACGAGTGCGCCGAGATCTGGCCTGGCCTCGACACGACGAGCGTGCTCGGCGGTTTCCACACCCCGACCGACGGTGTCGTCAAGTCCGTGCACGCCGTCCGCTGGCAGGCCGAGCGGGCCGTGGAGCACGGTGCCCGCCTCGTGCCGCACACACGGGTCGTCGGCGTCGCGCGGTCCCGCGGCCGCGTCACCGGGGTCGAGGTCCTCCCGGTCCCGGCACCCGACGGCGCGACGCCGGAGCACGTGCCGGCCGACGTCGTCGTCTCCTGCGCCGGCCTGTGGGGTCCTGGCCTGGCCCGCGACCTGCTCGGGTTCGAGCTGCCGATGATGCCCATGGAGCACTGCTTCGGCCTCTCCGCACCCGTGCCCGGACTGATCGGTCGGCACGACGTGCTCGACGAGGCCTCCCGCCCGATGCTCCGCCACCAGGACTTCTCGCTGTACCTGCGCGAGTACGTCGACCGGATCGGCATCGGGGCCTACCGCCACCGGCCGATACCCGTCGAGCCCGACGGCGTGGCGGGCGCCGACGAGTTCGCGGCCACCGGCGTGCACCCCGCGATGCACCCGCTGACCTGGGAGGACTTCGGCCCGTCGTGGGACGAGGCGCGCCGGTTGCTGCCCGAGCTGCGCGACGTCCCCTTCAGCGAGGGCTTCAACGGCATCTTCTCCTTCACGCCCGACGGCGGGCCGATGCTGGGTCCGGTCGCCGGGGTGGACGGGCTGTGGCTCGCGCAGGCCGTCTGGGTCACCCAGTCCGCCGGCGTCGGGCAGGTCATGGCCGACTGGATCGTGCGCGACGACCCGGGCGTCGACACCCACGGGCTGGAGTACACCCGCTTCGACCCCGCCGTCGTCAGCCGCGACTGGACCCGCGCCCGGGCGGCCGAGGCGTACGCGGAGGTCTACGACGTCGTCCACCCGCAGGCCTCCACCGCGGTGCAGCGGGGCCTGCGCACGAGCCCGTTCCACGACCGCCAGCGTGAGCTCGGGGCCGTGTTCGAGCAGGCGAACGGCTGGGAGCGGCCGCTGTGGTTCGAGGCCAACGCCCCGCTCGTCGACGACCTCGACCGCGTCCCGGAGCGCGAGAAGTGGGCCGCGCGGCACTGGTCGCCGATCGCGGCCGCGGAGGCCCACGCCACCCGCACCGCCGTCGGCCTGTACGACATGACCCCGCTGTCCCGCCTCGAGGTCTCCGGCCCCGGGGCGACCGCGTTCCTGCAGCACCTGGCCAGCAACGACGTCGACCGGGCCGTCGGTCGCGTCGTGTACGCGCTGCTGCTCGACGACGCGGGCGGCATCCGCTCGGACGTCACCGTGACCCGGCTCGGGCCCGAGCGCTACCTCGTCGGGACCAACGGGCACCGGGACCGCGTCTACCTGGAGAGCCGGTGCCCCGACGCCGTCCGGATCACCGAACTCACCGCGGGGACGTGCGGGCTCGGGCTGTGGGGACCGCGTGCCCGCGACGTCCTCGAACGCCTCACCGACGACGACGTCTCGCACGAGGCGCTCGGCTACTTCCGCGCGAAGCAGCTCCGGGTCGCGGGTGCGGACGTGCTGGCGATGCGCGTCAGCTACGTCGGCGAGCTCGGCTGGGAGCTGTGGACCACCGCCGACCAGGGCCGACGGTTGTGGGACAGCCTCTGGGAGGCCGGTGCGCCGTCGGGACTCGTCGCCGGAGGACGACGCGCGTTCCACGCGCTGCGCCTCGAGAAGGGCTACCGCGCCTACGGCGCCGACATCAGCCGCGAGCACTCCCCGGCGGAGGCCGGCCTCGGGTTCGCCGTGAGCCGCCGCGCGGGCGACTTCGTGGGCCGGGCGGCGCTCGAGGACCGGCCGGTCCGACGGCGGCTCGCCTGCCTCACGCTCGACGACCCGGACGCGGTCGTGCTCGGCGGCGAGCCGGTGCTGGTCCGGGGCGCCGGACCGGGCGAGAACGCCGTCGGGTACGTGACCAGCGCCGACCAGGCATACACGCTCGGGGTGACCGTGGCGTACGCCTGGCTGCCCCCGGAGCTGGCCGAGCCGGGCCGCGCCCTGGAGATCGAGTACTTCGGGCGCCGCCTGCCCGCTACCGTGCAGTCCGAACCGCTGGTCGACCCCGAGATGTCGCGCATCCTGCGCTGAMTDLSRLDHQPRIVVIGLGVVGAALADELTQRGMRHVTVLEQGPLWETGGSSSHAPGFVFQTSPHRTMSLLARRTLDKLDGQKVDGQWLLKRLGGLEIATTPERLHDLFRRHGLAQSWGIPSRLVDPDECAEIWPGLDTTSVLGGFHTPTDGVVKSVHAVRWQAERAVEHGARLVPHTRVVGVARSRGRVTGVEVLPVPAPDGATPEHVPADVVVSCAGLWGPGLARDLLGFELPMMPMEHCFGLSAPVPGLIGRHDVLDEASRPMLRHQDFSLYLREYVDRIGIGAYRHRPIPVEPDGVAGADEFAATGVHPAMHPLTWEDFGPSWDEARRLLPELRDVPFSEGFNGIFSFTPDGGPMLGPVAGVDGLWLAQAVWVTQSAGVGQVMADWIVRDDPGVDTHGLEYTRFDPAVVSRDWTRARAAEAYAEVYDVVHPQASTAVQRGLRTSPFHDRQRELGAVFEQANGWERPLWFEANAPLVDDLDRVPEREKWAARHWSPIAAAEAHATRTAVGLYDMTPLSRLEVSGPGATAFLQHLASNDVDRAVGRVVYALLLDDAGGIRSDVTVTRLGPERYLVGTNGHRDRVYLESRCPDAVRITELTAGTCGLGLWGPRARDVLERLTDDDVSHEALGYFRAKQLRVAGADVLAMRVSYVGELGWELWTTADQGRRLWDSLWEAGAPSGLVAGGRRAFHALRLEKGYRAYGADISREHSPAEAGLGFAVSRRAGDFVGRAALEDRPVRRRLACLTLDDPDAVVLGGEPVLVRGAGPGENAVGYVTSADQAYTLGVTVAYAWLPPELAEPGRALEIEYFGRRLPATVQSEPLVDPEMSRILRPGPT0013545_173DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013545-dmg_like-K00309NANA
AK018_058231158soxA_3Monomeric sarcosine oxidaseGTGCAGCACCACGACGTCATCGTCCTCGGCCTCGGCTCGATGGGCGGTGCGGCAGCCCACGAGCTCGCGGCGCGCGGCCTCGACGTCCTCGGCCTGGAGTCGTTCACCCCCGGCCACGACCAGGGCTCGGCGCACGGCGGGACGCGGATCGTGCGGCAGTCGTACTTCGAGTCCCCCGAGTACGTCCCCCTGCTGCGCCGGGCCTACGAGGGGTGGCACCGGCTCGAGGCCGAGTCGGGACGCGACCTGCTCACCCTGTGCGGCGGCATCTACCTCGGGGACCCGGCCAGCCCGACCTACGCGGGCAGCCGGGCGGCCGCCGAGGAGCACGGCCTGGACCACGAGGTGCTGGACGCCGCGGAGATCCGCCGCCGCTTCCCCACCATGGACCCGGCGGACGACGCGATGGGCTTGTACGAGTCGGCGGCGGGTTATGTACGCCCCGAGGAGACGGTGATCGCCAACACCGAGGTGGCGGCCCGCAACGGCGCGACGCTGCGCTTCGGGGAGCGGGTGCAGCGCTGGAGCGCGACCCCGGGCGGCGGCGTCGAGGTGGTCACCCCCGAGGGGACCTACGGCGCCGACCGGCTCGTGGTGACGCCGGGCGCATGGGCGCCGCAGATGCTGCCCGAGCTGGAGCTCCCGCTGTCCGTGGAGCGCATGGTCTTCTACTGGTTCACCCCGGACACCGACGCCGTCCCGGTCGAGCGGTGGTCGCAGGAGCAGCACCCCGTGTACATCGAGGAGACCCACGGCAACGGGCAGATCTACGGGTTCCCGATGACCGACGGCCCCGCCGGCGGGTTCAAGCTCGGCTACTTCCACCTCGGCACGCCGACCGACCCCGACGCCGTCGACCGCGTCGTGCACTCCGACGAGACCGCCGAGATGCGCCGTCGGGCCCTCGAGCTCTTCCCGCACCTGACCGGTCCCGTGGTCCAGGCCAAGACCTGCCTGTACACCGTGGCCCCCGACGAGCACTTCGTCATCGGCACCCACCCGCTGCACGACCAGGTCGCGATCGCCTGCGGGTTCAGCGGGCACGGGTTCAAGTTCGTGCCGGTGGTCGGCGAGATCCTGGCGGACCTGACGACCGACGGCACGACCGACCTGCCCATCGGACTGTTCGACCCCCGGCGTCCGGTGCTGCGGCCCTGAMQHHDVIVLGLGSMGGAAAHELAARGLDVLGLESFTPGHDQGSAHGGTRIVRQSYFESPEYVPLLRRAYEGWHRLEAESGRDLLTLCGGIYLGDPASPTYAGSRAAAEEHGLDHEVLDAAEIRRRFPTMDPADDAMGLYESAAGYVRPEETVIANTEVAARNGATLRFGERVQRWSATPGGGVEVVTPEGTYGADRLVVTPGAWAPQMLPELELPLSVERMVFYWFTPDTDAVPVERWSQEQHPVYIEETHGNGQIYGFPMTDGPAGGFKLGYFHLGTPTDPDAVDRVVHSDETAEMRRRALELFPHLTGPVVQAKTCLYTVAPDEHFVIGTHPLHDQVAIACGFSGHGFKFVPVVGEILADLTTDGTTDLPIGLFDPRRPVLRPPGPT0013530_226DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013530-soxA|solA-K00301NANA
AK018_058241128yeaW_2COG4638Carnitine monooxygenase oxygenase subunitATGATCATCGAGCAGCTCGACGAGCCCCTGCCGGGGTCGATCCTGCCCACGCTGGGCGGCAGCTGGTACACGGACCCCGACGTGTTCGCCCTGGAGCAGGAGCGCATCTTCTCCACGCAGTGGATGTGCGTGCTGCGCGCTGACGACATCCCCGGGGCGGGCGACTACCGCCTGGTGCAGGTCGGCCGCGAGCAGGTCGTGGTGTCCCGGAACCGTCGGGGCGAGATCCGCGCGTTCCTCAACGTGTGCCGGCACCGCGGCATGCGGGTGTGCACCGAGCCCGCCGGCACCGCCCGCAAGTTCCAGTGCGGCTACCACGCGTGGACGTACGACCTCGACGGACGGCTCGTCGCCGCCCCGAACCTCACCCGCATGCCCGACGTCGACCGCGACGCCTACGGGCTGCGCGGGGTCGCGGTGCACGAGTGGATGGGCTACGTGTGGGTCTGCCTGGCGGACTCGCCGCCGTCGTTCACCGAGACGGTGCTGGGCGAGCTCGTCACCCGGCTGGGGGAGGCCGAGACCTTCGACGCCTGGCAGGTCGCCGACCTGCGGCTCGGGAAGCGGATCGCCTACGACGTGCACGCCAACTGGAAGCTGATCATCGAGAACTTCATGGAGTGCTACCACTGCGCCACGATCCACCCCGAGCTCACCGAGGTCATCCCCGAGTTCGCCGACGGCTGGGCGGCGCAGACGTACGTCGGGCGCGGCGCGGAGTTCGGCGAGGGGGTCGAGGGGTTCACCGTCGACGGGTCCGCCGGCGTGGCGCCGCTGCCGCTGCTCGGCGCCGACCAGGAGCGGCGCTACTTCGCGGTGACGATCAAGCCGTCGGTGTTCGTCAACATGGTGCCGGACCACGTCGTCGTGCACCGCATGTTCCCCACCGCGGTGGACCGCACGTACGTCGAGTGCGACTGGCTGTTCCTGCCCGAGGTCGTCGAGGCGGGGACGGACGTGTCCGGGTCGGTGGAGCTGTTCGACCGGGTCAACCGGCAGGACTTCGAGGCCTGCGAGCGGACCCAGCCGGCGATGTCGTCGGCGGCCTACGTCGACGGCGGCTCCCTGGTGCCGGCCGAGCACCACATCGAGACCTTCCACACCTGGGTGCGCGAGCGGCTCGCGTGAMIIEQLDEPLPGSILPTLGGSWYTDPDVFALEQERIFSTQWMCVLRADDIPGAGDYRLVQVGREQVVVSRNRRGEIRAFLNVCRHRGMRVCTEPAGTARKFQCGYHAWTYDLDGRLVAAPNLTRMPDVDRDAYGLRGVAVHEWMGYVWVCLADSPPSFTETVLGELVTRLGEAETFDAWQVADLRLGKRIAYDVHANWKLIIENFMECYHCATIHPELTEVIPEFADGWAAQTYVGRGAEFGEGVEGFTVDGSAGVAPLPLLGADQERRYFAVTIKPSVFVNMVPDHVVVHRMFPTAVDRTYVECDWLFLPEVVEAGTDVSGSVELFDRVNRQDFEACERTQPAMSSAAYVDGGSLVPAEHHIETFHTWVRERLAPGPT0013680_712DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013680-gbcA-K00479NANA
AK018_058251179thcD_2Rhodocoxin reductaseATGACCGGGCCCGTCGCCGCCGTCACCCGCACCGGCGTCGTCGTGGTCGGCGCGGGCCTCGCCGGCTGGACCGTCGCCAGCACGCTGCGGACCGAGGGCTACACCGGCGACGTCGTCGTCATCGGCGCCGAGGAGCACGCGCCCTACGACCGCCCCCCGCTCAGCAAGGACTTCCTCGCCGGGCGGCTGCACCGGGGCGACCTCGCCCTGATCCCGCCGGACGGGGACGCCGGCGTCACCTGGCGGCTCGGCCGCCGGGCCGTCGCGCTGGACGTCGACGCCCGCGCCGTGACGCTCGACGACGGCACGGTCGTCGTCGGGGACCACGTGGTCGTCGCGACGGGAGCCGTCGCGCGGCGGCTGCCCGGTGCGGTGGCCGGGATCCACACGGTCGCCACGCTGGAGGACGCCGAGGCGCTGCGGTCCGCCGTCGGTCCCGGGGTCCGTGTCGTCGTGGCCGGCGCCGGGTTCCTGGGCCTCGAGGTCGCCGCGTCCCTGACGACGCTCGGTGCCCGGGTCACCGTGGCCTGCGCCGACGACGGACCGCTGCTGCGCACGATCGGTCCCGACGCGAGCGCCGCGGTGCAGACGCTGCACGCGTCGCACGGCGTCCGGATGGTCACCGGCGTGCGGGTCCTGAGCGCGCTCGCCGACGCCACCGGGTCCGGGACGGCCGGCGTCCTGCTCGACGACGGACGCGAGCTGCCGGCCGACGTCGTCGTCGCGGCCGCGGGCGCCGACCCCGCCGCCGGCTGGCTGTGGGGCAGCGGCCTGACGCTGGACGGCGGGGTCGTCTGCGACGCGACGGGCAACGCCGCGCCGGGGGTGCACGCCGTCGGCGACTGCGCGGTCTGGGCGGGCGAGCGCTGCTCCCACTGGACGCGCACCGTGCGCCAGGCGCGCCGCGTGGCCGCCGTCGTCGCCGACGGACGGCCGCCCGAGGCCGACGTCGAACCCGACTACGTCTGGTCCGACCAGTACGACGCCCGGCTGCAGATGGCGGGCAGCCTGCACGGCGGCGAGACCGGCGAGGTGCGGTCCGCCGACGGGGGGCTGTTCGTCGTCTTCAGCTCCGGCGACGACGAGGTCGCGGCCTTCGCCCTGAACCAGCCCCGCCGGCTGATGCGCTGGCGCAAGACCCACCGCCGTCGGCCCGCCTCCGAGAGGATCCCCGCATGAMTGPVAAVTRTGVVVVGAGLAGWTVASTLRTEGYTGDVVVIGAEEHAPYDRPPLSKDFLAGRLHRGDLALIPPDGDAGVTWRLGRRAVALDVDARAVTLDDGTVVVGDHVVVATGAVARRLPGAVAGIHTVATLEDAEALRSAVGPGVRVVVAGAGFLGLEVAASLTTLGARVTVACADDGPLLRTIGPDASAAVQTLHASHGVRMVTGVRVLSALADATGSGTAGVLLDDGRELPADVVVAAAGADPAAGWLWGSGLTLDGGVVCDATGNAAPGVHAVGDCAVWAGERCSHWTRTVRQARRVAAVVADGRPPEADVEPDYVWSDQYDARLQMAGSLHGGETGEVRSADGGLFVVFSSGDDEVAAFALNQPRRLMRWRKTHRRRPASERIPAPGPT0019730_2372DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
AK018_05826345hcaC_3COG21463-phenylpropionate/cinnamic acid dioxygenase ferredoxin subunitATGCATCGTCTGTGTTCGTTGAGCGACCTCACCCCGGGTGAGGGACTGCGGATCGACTCCGTCGCGCCGCCGGTCGCCGTCTTCCTCGCGGAGGACGGCACGGTGCACGCGATCGACGACACCTGCACCCACCAGGACGCCTCCCTCGCGGAGGGCTGGCTCGAGGACGGCGCGGTCGAGTGCCCGCTGCACGAGAGCCGGTTCTGCCTGCGCAGCGGGGTGCCCGACGGCGGCCCCGCGCGCGGCGGCGTGCGGGTGCACCGGGCGGAGGTGGTCGACGGCGAGGTCCTCGTCGAGCTGTCGACCGCCGCGCCCTGCCTGCCGCCCGGGGTGGTCTCCGCATGAMHRLCSLSDLTPGEGLRIDSVAPPVAVFLAEDGTVHAIDDTCTHQDASLAEGWLEDGAVECPLHESRFCLRSGVPDGGPARGGVRVHRAEVVDGEVLVELSTAAPCLPPGVVSAPGPT0019745_65DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019745-hcaC-K05710NANA
AK018_05827810menH_42-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGGTCCAGTCAGCGTCACCAGACCCGTGGTACGTCACGTCGCCGGACGGCACCCGGCTGGCGGTGTGGAGCACCGGGACCGGTCCCCCGTTGCTCCTGGTGCACGGGTCGATGTCCGACCACCGGCGCTGGCGCATCACCGAGTACCTCAGCGACGACCGGACGGTGCACGCGATGGACCGGCGCGGACGGGGCGGCAGCACGGACGGCCCGGACTGGGCACCGGAGCGTGAGGTCGAGGACGTCGTCGCGGTCGTCGAGGCCCTGGCCGCCGACGCCGGGCACCCGATCGAGGTGCTGGGCCACTCGTTCGGCGGCTACCTCTGCGTCCGGGCCGCGGGACGCACCGCGCAGGTGCGCCGGCTGGTGCTCTACGAACCGGCGGTCGTGCCGCACCCTCAGCCGCCCGATGTGGTCGCCCGGGTGCAGGCAGCCGTCGACGCCGGCCGGTACGAGGAGGCCGTCGAGATCATGATGCGCGACGTCCTGCACATGCCCGAGGCAGAGCTCGCCGCACTCAAGGAGCAGCCGAGCTGGCCGGCGCGCGTGGCCACGGCCCCGACCCTGCCGCGGGAGGAGAGCGTCCCGCTGCTGCTGGCTCCTGCCGAGGCGGCCGCCGTCACGGCGCCGACCCTGCTGATCCGGGGCGGGGACAGCCCGGAGTTCCTGCAGGACGCGATCCGGACCGTGGCGGGGTCCGTCCCGGACTGCCGGGTCGTGACGCTCGAGGGCCAGCAGCACGTGGCGGACCAGACCGACCCGGAGGGGTTCGCCCGCGTGGTGCGCGAGTTCGTCGGCCCGACCCCGTGAMVQSASPDPWYVTSPDGTRLAVWSTGTGPPLLLVHGSMSDHRRWRITEYLSDDRTVHAMDRRGRGGSTDGPDWAPEREVEDVVAVVEALAADAGHPIEVLGHSFGGYLCVRAAGRTAQVRRLVLYEPAVVPHPQPPDVVARVQAAVDAGRYEEAVEIMMRDVLHMPEAELAALKEQPSWPARVATAPTLPREESVPLLLAPAEAAAVTAPTLLIRGGDSPEFLQDAIRTVAGSVPDCRVVTLEGQQHVADQTDPEGFARVVREFVGPTPNANANANANA
AK018_05828105hypothetical proteinGTGACGATGTCGGTGCCGACCCCCGACGACCTCGCAGAGCCGACCGCCCGCGTCGGGCGGGTGCTCGACCGTGCGCTCATCCCGGCGGTGCAGACGGGACGCTGAMTMSVPTPDDLAEPTARVGRVLDRALIPAVQTGRNANANANANA
AK018_058291080czcO_3COG2072putative oxidoreductase CzcOATGCCTGATCTGTCCGACGACCCCGCGACCGTCGTGATCGGCGGCGGCCAGGCCGGCCTGGCGACGTCGTACCACCTGCGACGTCTCGGCGTGCCGCACGTCGTCTACGACGCCGCGCAGCGGGCCGGCGAGGCGTGGCGCCGCCGCTGGGACTCTCTGCGGCTTTTTACCCCGCCTCGTATCGACCGCCTCGACGGGACCCCGTTCCCGCGCGGCGGAGAGGTCCCCACCAAGGACGAGTTCGCCGACTACCTGGAGTCCTACGAGCGCGCCCACGACCTGCCCGTCCGGCACGGGACGCGCGTCACGGCGCTCGCGGCGGACGACGACGGCGGGTTCCGGCTGCGCACCGAGGTCGGCGGCCGCGTCGCGGACCGGGTGGTCGTCGCGATGAGCAGCCTGCAGGATCCTCACGTCCCGGCGATGGCCGGCGACCTGGCCCCGCACGTGCGGTCGCTGCACTCGGCGGAGTACCGCAATCCGGACCTGCTCCCGGCCGGGGACGTGCTGGTAGTCGGGGCAGGGAACAGCGGTGCCCAGATCGCCGTGGACGTCGCCCGCTCGGGCCGGGTCACCTGGCTGGCCGGCTCCGAGGCCGGGCACCTGCCGTTCCGCCTGGACGGCTGGTTCGGGCGGCACGTGGGCAGCCGAGTGCTCGGCGTGCTCTTCCTGCACGTGCTGAACACCGGCAACCCGGTCGGAAGGCAGGCTCGCCCGGCCATGCAGCTGCGGACCGACCCGCTGCTGAGCGACCGTCCGCCCGAGCTGCGGCGTGCCGGGGTGCGGCGCGTGCCCCGCGTCGTGGCGGTGCGCGACGGTCTGCCGGTCGCGCAGGACGGCACCGTGCTCGACGTCGCCGCGGTCGTGTGGTGCACCGGGTTCCGGCCTGGCCTGGAGGACTGGGTCCACCTGCCCGTGCTCGACGAGCGCGGGCTGCCCCGGCAGGTCCGGGGCGTCGCCGAGGACCTGCCGGGGCTGTTCTTCGTGGGGCAGAACTTCCTCTACTCCAAGGCCTCCGAGCAGATCCCCGGTGTCAGCCGGGACGCCCGCCACGTCGCCGAGCAGGTCGCCGCGGCCTGAMPDLSDDPATVVIGGGQAGLATSYHLRRLGVPHVVYDAAQRAGEAWRRRWDSLRLFTPPRIDRLDGTPFPRGGEVPTKDEFADYLESYERAHDLPVRHGTRVTALAADDDGGFRLRTEVGGRVADRVVVAMSSLQDPHVPAMAGDLAPHVRSLHSAEYRNPDLLPAGDVLVVGAGNSGAQIAVDVARSGRVTWLAGSEAGHLPFRLDGWFGRHVGSRVLGVLFLHVLNTGNPVGRQARPAMQLRTDPLLSDRPPELRRAGVRRVPRVVAVRDGLPVAQDGTVLDVAAVVWCTGFRPGLEDWVHLPVLDERGLPRQVRGVAEDLPGLFFVGQNFLYSKASEQIPGVSRDARHVAEQVAAAPGPT0013865_1342DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222NANA
AK018_05830753hypothetical proteinATGGATCAGGGCCACGGGCACGACGTCGGGCTGCGGGTCGAGCACGCGATCATGGCGCGGCTGCAGACGGAGTCGCCGGAGCTCGTGCTGGCGGACGACCGCGACGGGCTGCTGGCGCGGTTCCGGGAGCTGCGCACGGAGTTCCAGCGGCTGCGGCTCATCTACCAGTTCGGCATCGAAGAGGTGTCGACCAAGGTGAACATCCTGCGCCAGGAGTTCGAGAGCACCTACGACTACAGCCCGATCGAGCACGTGCGCAGCCGGCTCAAGGCCCCGGACAGCATCCTGACCAAGGCGGTGCGCCAGGGCACCGACCTCACCGTGCCGGCGATCCGGTCCGAGATCCGCGACATCGCCGGCATCCGGATCACGTGCTCGTTCGTCTCCGACGTCTACTGGATCGCGGAGATGCTCAGCACCCAGGCCGACCTGCGGCTGATGGCCACCAAGGACTACATCGCCGCGCCGAAGCCGAACGGCTACCGGTCGCTGCACCTCATCGTCGAGGTGCCGGTCTTCCTGTCCGACCACGTCGAGCACGTCCCGGTCGAGCTGCAGGTCCGCACCATCGCCATGGACTTCTGGGCCTCGATGGAGCACAAGCTGCACTACAAGTACGACGCCGACCTGCCGCCGGACCTCGCCGCCGAGATCGACGACGCCGCCCGCGTGGCGGCCGACCTGGACGCCCGCATGGGCCGGCTGCGCGACGAGGTCCGGCCCGCGCCGAGGGCCTCGACGACGACCGGCTGAMDQGHGHDVGLRVEHAIMARLQTESPELVLADDRDGLLARFRELRTEFQRLRLIYQFGIEEVSTKVNILRQEFESTYDYSPIEHVRSRLKAPDSILTKAVRQGTDLTVPAIRSEIRDIAGIRITCSFVSDVYWIAEMLSTQADLRLMATKDYIAAPKPNGYRSLHLIVEVPVFLSDHVEHVPVELQVRTIAMDFWASMEHKLHYKYDADLPPDLAAEIDDAARVAADLDARMGRLRDEVRPAPRASTTTGPGPT0014825_527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0014825-ywaC|yjbM-K07816NANA
AK018_05831789surA_2Chaperone SurAATGTCGATCAAGCGTCCGCTCGCCGCCGCCACCCTGGCTGCGGTCGTCGCCCTCGCAGGCTGCAGCGCCGGCTCCGAGAGCGAGGACACCTCGTCCGCGTCGGCCGCCCCCAGCGCCGAAGCCACGCCGGACGCCGGAGCCGCGCCCGAGGCAGGCGCCGCGCCCGAGGCCGACCTCGAGGACGTGCCCGACGTCGTCGCCGAGGTCAACGGGGAAAAGGTCGGCCGCGAGGAGTTCGTCAGGAGCTTCGAGGGACAGCTGCAGCAGGCAGCTCTGTCCCAGCAGCAGAGCGGTGCCGGTGCGGTCGACCAGGACGCGCTCAAGCAGCAGGTCGTCGAGCAGCTCGTGAACAACCGGCTCCTGACCCAGGCCGCGGCGGACGCCGGGATCGAGCCCACCGCGCAGGACGTCCAGTCCACGCTCGAGGACGTCGCCGCGCAGAACGGGCTCGAGTCCGCCGACGCGGTCGTCTCCGCGCTGGAAGAGCAGGGCCTGACGGAGGAGCAGGTGCGCGAGGACGCCGCGACCCAGTTCCAGGTCTCCACCTACATCGAGTCCGAGGCCGACGTGCAGGAGCCGTCCGAGCAGGAGCTGCGCGCGCAGTACGACACCCTCGTCGAGCAGATGGAGTCCCAGGGCGGCGACGGCGCGTCGGCACCCGAGGTCCCGCCGTTCGAGGACGTGCGCGACCAGCTCGCCCAGCAGGCCACCAGCCAGCAGCAGAGCGCGGCGATCGACACGATCGTCACCGACCTGCGCGAGGACGCGGACGTCACGATCCACCTGTGAMSIKRPLAAATLAAVVALAGCSAGSESEDTSSASAAPSAEATPDAGAAPEAGAAPEADLEDVPDVVAEVNGEKVGREEFVRSFEGQLQQAALSQQQSGAGAVDQDALKQQVVEQLVNNRLLTQAAADAGIEPTAQDVQSTLEDVAAQNGLESADAVVSALEEQGLTEEQVREDAATQFQVSTYIESEADVQEPSEQELRAQYDTLVEQMESQGGDGASAPEVPPFEDVRDQLAQQATSQQQSAAIDTIVTDLREDADVTIHLPGPT0014978_2763DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014978-surA-K03771NANA
AK018_058322265hypothetical proteinGTGCTGCCTCGCCGACCGTTCCACCTGTCCGAGCACCTCGCCGCCAAGGACGACCCCGCACTGATCGCCGCCGACGAGGCGCACTTCGCCGCGATCGCCGCCGCGATCGACCAGCAGGTCGCGGACCTGACCGCGCGCCTGGACGCCGCGCGTCGCGCCCCGGGTCGGTCCGGGCAGGCCGCCCTCGAGCGCGACCAGGAGATCCACCGCCTCTCCGCCCGGCTGCGGATGCTCCGGCGCTTCGGCGTCGACCTGTGCCTGGGCCGCATGGTGCGGACCGACGGGGTCACCTACGTCGGCCGGACCGGGCTGACCGACGCCGCGGGGGAGCGGCTGCTGCTCGACTGGCGCTCGCCCGCCGCCGAGCCGTTCTTCGGCGCTACGCACGGCGACCCGCGGGGGCTGGTCAGCCGACGGCGCTACCGGTGGACCGACGGGCGGGTCACCGACTACTGGGACGAGGTCTTCACCTCCGACGGGCTCGCGGGGCACGCCGCCCTGGACGACCAGTCCGCGTTCGTCGCGAGCCTGGGGGCCAGCCGTTCGCCCCGCATGCGCGACGTCCTCGCGACCATCGCGGCCGACCAGGACGCGATCGTGCGTGCAGGGTCGGCCGGCACCCTGGTGGTCGACGGCGGGCCGGGTACCGGCAAGACCGTCGTCGCCCTGCACCGGGCGGCGTACCTGCTGTACTCGGACCCGCACGTCGGCGAGCACCACGGGGGCGTGCTCTTCGTCGGCCCGCACCGGCCCTACCTCGACTACGTGGCCGACGTCCTGCCCGGCCTCGGTGAGGAGGGGGTGCGCACCTGCACCCTGGCGGACCTCGTGCCCGAGGGGGACGACGCCCCGCCCGAGACCGACCCGGTCGTCGCCCGGCTCAAGTCCGACGCGCGGATGGTGACCGTCGTCGACCCGGCCGTCGCGCTCTTCGAGCAGCCCCCGACCGAGGGGATGCTGGTCGAGACCCCGTCGGGCGACGTGTGGCTCGACCCGCGCGACTGGGCGGAGGCGTTCGACGCCCCCGACCCCGAGGCACCGCACAACGAGGCGGCCGACGAGGTCTTCGGCGCGCTGCTGACGATCCTCGCCGACAAGCTCGCCGACGCGGTCGGGGAACCCGCGGAGGAGGGGTTCGGGTCCGACGAGAACCCCGGCTGGGACGCCGTGCCCGGGGTGCGCCTCGGCGACGACGAGTTCGACGCCTACGGGACCGCCGGTCCCGAGCCCGGGGTCGACCTGCGCGAGGAGCTGGCCGCCGACGACGCGCTCCGGCGCGCCGTGGCACGCGCCTGGCCGCTGCTGGAACCCACCGACCTCGTCGGGGACCTGTGGACCGTGCCCGCGTACCTGCGCCGGTGCGCACCGTGGCTGACGGCGGACGAGGTCGCCGCGCTGCAGCGTCCGGACGCGCACGGGTGGACCGGGGCCGACCTGCCGCTCCTCGACGCGGCCCGCCGCCGGCTCGGGGACCCCGACGCTGCCCGCCGTCGCCACCGGGCCGAGGCGGCGCGGGCCGCCGAGCGCGCCCGGATCGCCGACGTCGTCGAGCACCTGATCGCCACCGACGACTCCGATCTCGGCGTGATGTCCATGCTGCGGGGCCAGGACCTGCAGGCGGCGCTGGTGGGCGACGCGGGGGTGACCGTCCCCACGCCGGACGCACTCGCCGGGCCGTTCGCGCACGTCGTCGTCGACGAGGCCCAGGAGCTCACGGACGCGCAGTGGCAGATGCTGCTGGCCCGCTGCCCGTCCCGCAGCCTCACCGTCGTGGGGGACCGGGCCCAGGCGCGGCACGGGTTCGCCGAGTCCTGGACCGAGCGGCTGACGTGGGTCGGGCTGGACCGCATCGGGCAGGCGTCGCTGACGATCAACTACCGCACGCCCGAGGAGGTCATGGCGGTGGCCGCCCCGGTGATCCGGGCGGCGGTCCCCGACGCCAACGTCCCGACGTCGGTGCGGCCCGGGGGCGCTCCGGTGCGGTGCGGGACGACGGCGGACCTCGTCCCGGTCGTGGACGCGTGGCTCGCGGAGCACCCCGAGGGCACCGTGTGCGTGATCGACGCGGGCCGGTCGGCCGACGCCGCCGTCGCGGGCCGCGACCGGGTGCGGTCCCTGACCCCCGAAACCGCCAAGGGCCTCGAGTTCGACCTCGTGGTGCTCGTGGAGCCGGAGCGGCTGGGTGACGGGATCGAGGGTGCCGTGGACCGGTACGTCAGCATGACCCGGGCCACCCGCGAGCTCGTGGTGCTGAGCCGACCGTGAMLPRRPFHLSEHLAAKDDPALIAADEAHFAAIAAAIDQQVADLTARLDAARRAPGRSGQAALERDQEIHRLSARLRMLRRFGVDLCLGRMVRTDGVTYVGRTGLTDAAGERLLLDWRSPAAEPFFGATHGDPRGLVSRRRYRWTDGRVTDYWDEVFTSDGLAGHAALDDQSAFVASLGASRSPRMRDVLATIAADQDAIVRAGSAGTLVVDGGPGTGKTVVALHRAAYLLYSDPHVGEHHGGVLFVGPHRPYLDYVADVLPGLGEEGVRTCTLADLVPEGDDAPPETDPVVARLKSDARMVTVVDPAVALFEQPPTEGMLVETPSGDVWLDPRDWAEAFDAPDPEAPHNEAADEVFGALLTILADKLADAVGEPAEEGFGSDENPGWDAVPGVRLGDDEFDAYGTAGPEPGVDLREELAADDALRRAVARAWPLLEPTDLVGDLWTVPAYLRRCAPWLTADEVAALQRPDAHGWTGADLPLLDAARRRLGDPDAARRRHRAEAARAAERARIADVVEHLIATDDSDLGVMSMLRGQDLQAALVGDAGVTVPTPDALAGPFAHVVVDEAQELTDAQWQMLLARCPSRSLTVVGDRAQARHGFAESWTERLTWVGLDRIGQASLTINYRTPEEVMAVAAPVIRAAVPDANVPTSVRPGGAPVRCGTTADLVPVVDAWLAEHPEGTVCVIDAGRSADAAVAGRDRVRSLTPETAKGLEFDLVVLVEPERLGDGIEGAVDRYVSMTRATRELVVLSRPNANANANANA
AK018_058331266hypothetical proteinGTGCCCACCGCTCCTGACGACGCCGAGATCGAGCTCATCCGCCGCTCGGGCGTGGCGCTGCGCGTCGGCCGGTTGTCCCTGTCCGCCGGGACGGGGTCCTACCGGGTCAAGGCCTCGATGGCCCGCGCCGCGCGCGCCCTGGGGATCGAACGACATCAGGCCCACGTGACGCTCACCGAGATCACGACCACGTCGCACCGCGGACCCAGCTTCCGCACCGAGGTCACCGAGGTGCGCAGCGTCGGGATCAACTCGGACCGCCTGTGCGCCCTGGAGCGCTTCGCCCAGGACGTCGAGCGGGACCGGCCCGTCAGCGTCGAGGACGCCACCGCACGGCTGGACCGCATCCAGGACAAGCCGCCGCTGTACCCCGCGGTCCTCAACGCCCTGTGGGCCGCGATCGCCTGCGCGGCGTTCGCCTTCCTCAACAACGGCGGCGTCGTCGAGATCGTCGGTGTCTTCCTCGGCGCAGGGTTCGGTCAGGCCCTGCGTCGCGCCCTGATCCACCGCGGCTGGAACCAGTTCGGGGTGACGATGCTGGCCGCGGCGCTGGCCACCTCCACCTACGTCGGCTTCCTCGCGGCGTTCGGCGCGCTCGGGGGTGCTGCGACCAACCACGAGGCCGGGTACGTCTCCGCGGTGCTCTTCCTGGTGCCCGGGTTCCCGCTGGTCACCGGCGCGCTGGACCTGGCCAAGCTGGACTTCTCGGCGGGGCTGGCCCGGCTGACGTACGCGCTGATGATCCTCACCTCGGCCGCGCTGGCGGTGTGGGGCGTCTCGATGGTCGTCGGGCTCTCCCCGGTCCCGGACGAACCGATGGGGCTCGACCCGGGCCTGCTGCTCGGGCTGCGGCTGCTGGCAAGCTTCCTGGGCGTGCTCGGGTTCGCGCTGATGTTCAACAGTCCGTGGTCGATGGCGCTGGCGGCGGCGTCCATCGGGATGGTCGCCAACGTCGGCCGGCTGTGGCTGGTCGACGCCGACGTCCCGGTCCAGGCCGCCGCGGCCGCCGCCGCGCTGGTGGTCGGGCTGCTCGCGGCCGTCGTCGCCCCGCGGATGAACGTGCCGCGCGTGACGGTGTCGGTCCCCGCCGTCGTGATCATGGTCCCGGGCGCCTCGGCGTACCGGGCGATCTACTACATGTCGAACGGCGCGACGTCGCAGGCCCTGGCCTACGCCGTCGAGGCCGGGCTGGTGGTGGCGGCGCTCGCCATCGGGCTGGCCGTGGCCCGGATGCTCACCGATCCGGAGTGGGGGTTCGAGCGCTGAMPTAPDDAEIELIRRSGVALRVGRLSLSAGTGSYRVKASMARAARALGIERHQAHVTLTEITTTSHRGPSFRTEVTEVRSVGINSDRLCALERFAQDVERDRPVSVEDATARLDRIQDKPPLYPAVLNALWAAIACAAFAFLNNGGVVEIVGVFLGAGFGQALRRALIHRGWNQFGVTMLAAALATSTYVGFLAAFGALGGAATNHEAGYVSAVLFLVPGFPLVTGALDLAKLDFSAGLARLTYALMILTSAALAVWGVSMVVGLSPVPDEPMGLDPGLLLGLRLLASFLGVLGFALMFNSPWSMALAAASIGMVANVGRLWLVDADVPVQAAAAAAALVVGLLAAVVAPRMNVPRVTVSVPAVVIMVPGASAYRAIYYMSNGATSQALAYAVEAGLVVAALAIGLAVARMLTDPEWGFERNANANANANA
AK018_05834690hypothetical proteinATGGCTGACACGGCGTCGGCCCCGGCACAGCCGGTACGCGCCGCCGAGGTCGCCGCGGCGCTCTGCCTGGCCACCGACCTCGGCATGGGCTTCCCCTGGGCGCACGGCCTCGAGGCGACCGCCGCGACGATGCGGCTGTGCGACGTCGCGGGGGTCGACGACGCCGTCCGTCGGCAGGCGTACTACCTCAGCCTCCTGGCGTACGCGGGCTGCGCCGCCGACGCGACGGTCAAGGCGGGCATCTTCGGGGGGCCGATCGCCGAGTCGATCGTCGACGTCATCTGGGGCAGCCGGCGCGAGCAGCGGGGCGTGATGCTGCGGTCGTTGCCCGACCCCGGGGCGTCGGTGCCCGTCGTCGTCGGGCAGACGGTCGCGCGACTGCCGCGGGCCGCCGCCTACGAGCCGCGCGAGTACCTGGCCCTGTGCGAGGTCGCCCAGCACCTGACCCGGCACCTGGGCCTCGGCGGCGTGGCGGAGGACCTGCACCACCTGACCGACCGCTGGGACGGGACCGGGGTGCTGGGACGTGGCCGGGGCGAGGAGATCCCGACCGCGCTGCGGCCGGGGGCAGCGCGCACGCGGCCGCCGTCGTCGCCGAGCGCGCGGGCCGCGCTCACGACCCGCGGTTCGCCGGCCTGCTCGCTCGCCACCACCAGGACGTCCTGGGCGGGCCGCGCGACGACGGTGTGAMADTASAPAQPVRAAEVAAALCLATDLGMGFPWAHGLEATAATMRLCDVAGVDDAVRRQAYYLSLLAYAGCAADATVKAGIFGGPIAESIVDVIWGSRREQRGVMLRSLPDPGASVPVVVGQTVARLPRAAAYEPREYLALCEVAQHLTRHLGLGGVAEDLHHLTDRWDGTGVLGRGRGEEIPTALRPGAARTRPPSSPSARAALTTRGSPACSLATTRTSWAGRATTVNANANANANA
AK018_05835870hypothetical proteinGTGACCTGGGAGGACGTGCTGGCCGCCGAACCCGGGGAGCCCGTCGAGATCCCGGCCGACGAGGTCGACGACGCCGTCGCGGCCCTCGGGGAGGTCGCCGACGTCGTCGGGCCGGCCTGGGCGGGCCGGTCCCGGCAGGTCGCGGCGCTCGCGGGCGGGGCGGCGGAGCTGGTCGGCATGGACGCGAGGGCCGTCCAGGAGGTCCGTCGGGCCGCCCTGCTGCAGGACGTGGGGCGGATCAGCGTCCCGGCGCGCACCTGGCTCGCACGCCGGCCGCTCACCGCCGAGGAGCGGGAGCAGGTGCGGCTGCACCCGTACTACACCGAGCGCGTCTGCGCCGCCTCGCCCTTCCTCGCCGCGCTGGCGCGGGACGCCGTCTGCCACCACGAGCGCCTGGACGGTTCCGGGTACCACCGGGGGCTGCCCGCGGACGCTCTCGGGGTGCCGGCACGGATCCTCGCCGCGGCGGACGCGATGCGGTCCGCCGTGGAGGATCCGCCGCACGGCTGGGGACTCCCGTCGGCCGCCGCCGTCCACGCCCTGGCACGCGACGTCGCGGACGGACGCCTCGACGCCGACGCCGTCGCCGCGGTGGTCGAGGCCGCCGGGCAGGAGCCGCCGCCGCTGCCGCGTCCGGCCGGCCTGACCGAGCGGGAGAGCCGCGTCGTGGGCCTGGTGGCGCGCGGGCTGGCCACCAAGCAGGTGGCCCGCGCTCTCGACATCAGCCCGAAGACGGCGGACCAGCACCTGCAGCACGCCTACCGCAAGATCGGGGTGTCCAGCCGGGCGGCGGTCGCGCTCTTCGCCGCCGACCACGGGCTCCTGGCCTGGGGAGAACTCCTGATACCGGGGCGGCGCACGGCTCCGTAGMTWEDVLAAEPGEPVEIPADEVDDAVAALGEVADVVGPAWAGRSRQVAALAGGAAELVGMDARAVQEVRRAALLQDVGRISVPARTWLARRPLTAEEREQVRLHPYYTERVCAASPFLAALARDAVCHHERLDGSGYHRGLPADALGVPARILAAADAMRSAVEDPPHGWGLPSAAAVHALARDVADGRLDADAVAAVVEAAGQEPPPLPRPAGLTERESRVVGLVARGLATKQVARALDISPKTADQHLQHAYRKIGVSSRAAVALFAADHGLLAWGELLIPGRRTAPNANANANANA
AK018_058361098czcO_4COG2072putative oxidoreductase CzcOATGAGCACCCAGCAGCACGAGGCACCCGTCGTGGTGGTCGGCGGGGGCCAGGCCGGACTGGCCACCTCGTACCACCTCTCGCGGCTGGGCGTCGAGCACGTGGTGCTCGACGCCGCCGCCCGGGCGGGGGACTCCTGGCGACACCGCTGGGACTCCCTGCGCCTCTTCACGCCGCCGCGGGTCGACCACCTGGACGGCCTGGACCTCGGGCGCCGCGGTCCGGTCCCGACGAAGGACGAGTTCGCGGACTACCTGGAGCGCTACGAGCGAGAGTTCGCCCTGCCCGTGCGGCACGGCGTCCGGGTCACCCGGCTCGCGGCCGACGGTGCCGGGTTCCGGCTGGAGGCGTCGGACGGCGAGCACCGGGCGGAGGCCGTCGTCGTCGCGATGGGTGGCCTCCAGGTTCCCCGGGTGCCGGAGCTCGCCGATCGCCTGAGCCCCGGGATCCGGACCCTGCACTCGACCGGGTACCGCAACCCTGCGCAGCTCGCCGACGGGCCGGTGCTGGTCGTGGGCGTCGGGAACAGCGGCGCCGAGATCGCCGTCGAGGCCGCCCGGGACCACGAGACCTGGTTGGCCGGCACCGAGGCCGGGCACCTGCCGTTCCGCATCGACGGCTGGTTCGGGCGGAACCTCGGCACCCGGGTCGTGGCCTTCGTGTTCCGGCACGTGCTGACGATCGACACGCCGATCGGTCGCCGGGCGCGGCCCGTCCTGCAGTCCCGGGCGGACCTGCTGGTGCGGGAGCGTCCCCGGGACCTGCGCCGGGCAGGCATCCGGCGGGTCCCGCGCATCGAGGACGTCAGCGACGGTCTGCCGGTCGCCGCGGACGGCACGGTGCTCGACGTCGGCACGGTGGTCTGGTGCACCGGGTTCCGCACGGGGCTCGAGGACTGGGTCGACCTGCCGGTGCTGGACGAGCACGGACGCGTGCGCCAGGTGCGCGGGGTCACCGACGTGCCGGGCCTCTACACCGTCGGGCAGGACTTCCAGTACGCCAAGGCGTCGGAGCAGATCCCGGGCGTGAGCCGCGACGCGCGGTACGTGGCGACCCGGGTCGCGGAGGAGCGGGTCGGGCGGCCGAGCCCGGTGGGCTGAMSTQQHEAPVVVVGGGQAGLATSYHLSRLGVEHVVLDAAARAGDSWRHRWDSLRLFTPPRVDHLDGLDLGRRGPVPTKDEFADYLERYEREFALPVRHGVRVTRLAADGAGFRLEASDGEHRAEAVVVAMGGLQVPRVPELADRLSPGIRTLHSTGYRNPAQLADGPVLVVGVGNSGAEIAVEAARDHETWLAGTEAGHLPFRIDGWFGRNLGTRVVAFVFRHVLTIDTPIGRRARPVLQSRADLLVRERPRDLRRAGIRRVPRIEDVSDGLPVAADGTVLDVGTVVWCTGFRTGLEDWVDLPVLDEHGRVRQVRGVTDVPGLYTVGQDFQYAKASEQIPGVSRDARYVATRVAEERVGRPSPVGPGPT0013865_1342DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222NANA
AK018_05837543hypothetical proteinGTGAGCACCGAGGTCACCGTCGAGACCGTCGTCGACGGCGAGCTGGCCGAGCGCCTCTGGGGGCTGTACCGCGAGGCGTTCGAGCCGCTGCGCACCCGGGCCGCGGCGCGGCACGTGCTGCACCGCCACGAGTTCGACGAGGAGATGGCCGACCCCCGGGTGCTCAAGCTCCTGGCCCACGACGAGTCCGGCGAGGCCGTCGGGCTCACGACCCTGGCCACGGACCTGGCGGCCGTGCCCTGGGTGAGCCCGGAGTTCTTCGCGGCGCGGTACCCGGAGCACGCCGCGCGCGACGCCGTCTGGTACATCGGCTTCACCCTCGCCCACCCGGGCCGGCGCTCCACCCGGACCTTCATGGACATGATCGACGCGCTGGTCGCCCGCCTGGCCGAGCACCGGGTCGTGTGCGCCTACGACGTGTCCCGCTTCAACGACGACGGCCTGCGGTTCGCCGACAACCTGCGCCGTCACCTGGAGCGGACCCGGGACGTCACCGTGGAGACCGTCGACCGGCAGACGTACTACGCGACGACGTTCCACTGAMSTEVTVETVVDGELAERLWGLYREAFEPLRTRAAARHVLHRHEFDEEMADPRVLKLLAHDESGEAVGLTTLATDLAAVPWVSPEFFAARYPEHAARDAVWYIGFTLAHPGRRSTRTFMDMIDALVARLAEHRVVCAYDVSRFNDDGLRFADNLRRHLERTRDVTVETVDRQTYYATTFHNANANANANA
AK018_05838501pdaD_2Pyruvoyl-dependent arginine decarboxylaseATGACCGACACCCTCGACATCCGCGTCAGCTCCGGCACCGGCACCGGGCGCACGACGCTGTCCGCCTTCGACGCCGCCCTGTCCGCCGCGGGCGTCGGCGACTTCAACCTCGTCCGGCTCAGCTCGGTCGTCCCGCCGGGCAGCATCGTCCACGAGGTCGACGGTCGCGACCAGCTCCAGGGTGCCCACGGCGACGCGCTGTACTGCGTGTACGCCGAGGCGCACGCCTCGTTGCCGGGCCACGAGGCGTGGGCCGGCATCGCCTGGTCGGCCCACGAGGACGGCAGCGGCGCCGGCCTGTTCGTCGAGCACGAGGGCCCGTCGCACGAGCAGGTGGCCGTCGACCTGTCGCACAGCCTCGACGACCTCTCCGTCACCCGCGGCGGCGTCTACCGCCCCGCGGGCCGGCTCATCGCCGGCATCACCTGCGACACCCTGCCGGTGTCCGCCGTCGTGGTCGCGACGTTCCGGCGCGCCGGGTGGCAGGATCTCCCGCTGTGAMTDTLDIRVSSGTGTGRTTLSAFDAALSAAGVGDFNLVRLSSVVPPGSIVHEVDGRDQLQGAHGDALYCVYAEAHASLPGHEAWAGIAWSAHEDGSGAGLFVEHEGPSHEQVAVDLSHSLDDLSVTRGGVYRPAGRLIAGITCDTLPVSAVVVATFRRAGWQDLPLPGPT0012230_184DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012230-pdaD|aaxB-K02626NANA
AK018_058392793sasA_17Adaptive-response sensory-kinase SasAATGGAGGACGCCCGAGGCGCCGCCACCCGCGCCCAGGACCGATTCGTCCGCTGGTGCTGGGTCGCCGGCGCGATGCTCGTCGTCCTCGTCGCCGTGCTCGCCGGTCCTGTCGACGCCGGTCTCCGCGAGCAGGTCGCGCGGTCCGCCATCGCCGCGGCCGGCGTCCTGGCCGCCCTGAGCTGCGGCTCGCGGGCCGTGAAGTCGACGGGGCGCCGTCGTCGCGCGTGGGGCGCTCTCGCCCTGGGCGCCGTCGTCGGGCTTCTGGGCAACCTGTGGGCGACGGTCGCCGGGGACCCGGCCACGGGCGACGTGGCATACATCGGCGCGCTCGCCCTCGGCGCCGTCGGGCTCGCGTTCTTCCCGACCGTGCGTCCCCGGGGCCAGGACCTCGTGCGCATGCTGCTCGACAGCATCGTCGTGGGTGGCTCGGTGCTCTACATCGCCGTGTTCGCCGTCGTGCTCGACGAGCCGGCGCTCTCGACCGGCCCGGCGCTGACCACGTATGCGCTACCGGTCGTCGACGCCCTCCTGGCCACCCTCGCCGTCCTGGTCATGACCCGCTCCGGCGCCGCGGAACGCGTCCCGCTCGTCCTCGTCGGCAGCGGCTTCGTGCTCTACGCGGTGGCCGACGTCGCGTTCGCGCTGCTCTCGGCGGGGACCGGCTTCACGTTCGGCAGCATCGTCGACATGGGCTGGATCGGTGGCTACGTCGCCATCGCGGTCGCCGCCCGCCACCCCGCCGCCTCGGGCAGCCCCGTCACCCACCGGCGGTCGGACGGATCGCCGGTGCTCGGCACCGTCGTGACCTTCCTGCTGTTCCTCGCCGCCGCCCTGGTCCGGGTCAGCGACTCCGGGCAGGACGTGCCGTGGATGGCGGACGCGCTGTGGGTCGCCGTGCTCGTCGCCGTCGTCGCTCGTCAGATCCTCGTCGTGGTGGACAACGAGTCGCTGCGCCGGAGCCTGGAGCGGAGGGTCCGGACGCGCACGGCCCAGCTGCGCGCGCTCGCCGGCGAGCGGGAGCGCACCCTCGAGTCGGTCGCCGACGGGATCTACGGCGTCGACGCCTCCGGACGCCTGACCTTCGTCAACGTCGCCGGCGCCCGCACGCTCGGCGTGTCGCCCGGCGACCTCGTCGGGCAGGACGTGCACGCCACCTTCCACGCACCGGGCCCGGACGGGGCCCCCTTCCCGGCGGAGCACTGCTACGTCACCGAGGCGGTGCGCGACGGCATCACCACCACGGCCGAGCAGGACGTCTACCGACGCCCGGACGGCAAGGACGTGCCCGTCGAGGTCACCGCGAGCCCGTTGCGCGCCGACGGCACCGTCCGCGGCGCGGTCGTCGTCTTCCGCGACGTCACCGAGCGCCGCGAGATGGAACGGATCAAGGACGACTTCGTCGCGGTCGTCTCCCACGAGCTGCGCACCCCGCTGACCTCGATCCGCGGGGCGCTCGGGCTGCTCGACAGCGGTCTGCTGGCGGGCTCTCCCGAGCGGGCCGGGCGCATGATCCGCATCGCCCTGACCAGCAGCGAGCGCCTGAGCCGGCTCGTCGACGACATCCTCGACATCGAGCGGATGGCCACCGGGTCGACCCCCCTCGACCTCGCCGAGCACCGCGTCGACGACCTGGTCGCCACTGCCGTGGACCAGGTCGCGATCGTGGCCGCCGAGGCCGGGGTGGACGTCGTGACGGTCGAGTCCGGCGAGATCGTCGGCGCCGACGGCGACCGCATCGTGCAGACGCTGACCAACCTGCTGTCCAACGCGGTGAAGTTCTCCCCTCCCGGCAGCACCGTGCGGGTGACGGCGGTCCCCGTCGGCGACCTCGTCGAGGTGTGCGTCGAGGACGAAGGACGCGGCATCCCGCCGGACAAGCTGGAGTCGATCTTCCGTCGGTTCGAGCAGATCGACGCCTCGGACGCCCGGGAGCGCGGGGGCACCGGCCTGGGTCTGGCGATCGCGCGCAGCGTCGTCGAACGGCACGGAGGGCGCATCTGGGCGGTGAGCGACGGGCCCGGGACCGGGGCGAGCCTCCGCTTCACGCTGCGTCGTGCCGCGGCGGGCGTCGACGGGGCGGACGGATCACCCCCGCAGGAGGTCGGGACGGCGGTCGGGGCCGACGACGGCCCGGACGACGCGCCCCCGACGGCCGCGCCGGACCGCGTGGTCGTCGCCGCCACCGACCCCTACGTCGTGCGCGCGCTCCGGTCCGTGCTGGAGGGAGCCGGCTACGACGTCGTCGGCTCCGCCGACGGCGAGGAGGCCGTGGCGCACGTGATCGCCGACCGGCCCGCCGCCCTGGTGCTCGACCCGGGGACTCGCGACAGTGACGGCATCGAGGTGCTGCGGCGGGTGCGCGAGGCCCGGACGGCCGCCCGGACACCGATCGTCGCCGTCTCCGGCACCGCGCGGCACGACGCGCAGATCGCGGAGCTGGCCGACCGCTGGCTGGTCGAGCCGGTCGCCCCGGACGACCTGCTGGAGGCCGTCCGGGAGGCCGTCCGCCGACGTCCCCACCGCGAGCAGGTCCTCGTGGTCGAGAGCGACGACGCGTTGCGCCACGCGCTGGCGACGTCCCTGGAGGGCGCCGGTCTCGTGGTCACCCCGGCCGGTTCGCTCGACGCCGCCCGCCGGGCGATGCGGGCCGGGACACGACCGGACCTGGTCCTGCTCGACCTGACGCTGCCCGACGTCACCGGACGCGACCTCGTCGCCGACCTCCTGGACCCGGCCGCCGGCCGGACCGCGGAGCCCACCGTCCCCCCGGCACCCCGCCCACCGAGGACCTGAMEDARGAATRAQDRFVRWCWVAGAMLVVLVAVLAGPVDAGLREQVARSAIAAAGVLAALSCGSRAVKSTGRRRRAWGALALGAVVGLLGNLWATVAGDPATGDVAYIGALALGAVGLAFFPTVRPRGQDLVRMLLDSIVVGGSVLYIAVFAVVLDEPALSTGPALTTYALPVVDALLATLAVLVMTRSGAAERVPLVLVGSGFVLYAVADVAFALLSAGTGFTFGSIVDMGWIGGYVAIAVAARHPAASGSPVTHRRSDGSPVLGTVVTFLLFLAAALVRVSDSGQDVPWMADALWVAVLVAVVARQILVVVDNESLRRSLERRVRTRTAQLRALAGERERTLESVADGIYGVDASGRLTFVNVAGARTLGVSPGDLVGQDVHATFHAPGPDGAPFPAEHCYVTEAVRDGITTTAEQDVYRRPDGKDVPVEVTASPLRADGTVRGAVVVFRDVTERREMERIKDDFVAVVSHELRTPLTSIRGALGLLDSGLLAGSPERAGRMIRIALTSSERLSRLVDDILDIERMATGSTPLDLAEHRVDDLVATAVDQVAIVAAEAGVDVVTVESGEIVGADGDRIVQTLTNLLSNAVKFSPPGSTVRVTAVPVGDLVEVCVEDEGRGIPPDKLESIFRRFEQIDASDARERGGTGLGLAIARSVVERHGGRIWAVSDGPGTGASLRFTLRRAAAGVDGADGSPPQEVGTAVGADDGPDDAPPTAAPDRVVVAATDPYVVRALRSVLEGAGYDVVGSADGEEAVAHVIADRPAALVLDPGTRDSDGIEVLRRVREARTAARTPIVAVSGTARHDAQIAELADRWLVEPVAPDDLLEAVREAVRRRPHREQVLVVESDDALRHALATSLEGAGLVVTPAGSLDAARRAMRAGTRPDLVLLDLTLPDVTGRDLVADLLDPAAGRTAEPTVPPAPRPPRTNANANANANA
AK018_05840387walR_5COG0745Transcriptional regulatory protein WalRGTGACGACGAGACCCCGCTGCGTGGTGGTGATCGACGACGACCCGTCGATCCGCGAGGTCGCGGAGCTGTCGCTGTCCGCCGTCGGCGGGTACGAGACGCACTCGGCCGGCGACGGGACGGAGGGGGTCGCGCTGGCCCGACGTGTCCGCCCGGACGCCATCCTGCTCGACGTCATGATGCCGACGCTCGACGGCCCGACCGTCCTGGCCCGACTGCGCGCGGTGGACGTCCTGCGGGACGTGCCCGTCGTCTTCCTCACGGCGAAGGTGGGTGCCCAGGACATCGCGGCCCTCGACGGGATGGGCGCGGCGGCCGTCATCACCAAGCCGTTCGACCCGCTCGAGCTGGCGCACCGGCTCGCCGCCGCCCTGGGGTGGGACACGTGAMTTRPRCVVVIDDDPSIREVAELSLSAVGGYETHSAGDGTEGVALARRVRPDAILLDVMMPTLDGPTVLARLRAVDVLRDVPVVFLTAKVGAQDIAALDGMGAAAVITKPFDPLELAHRLAAALGWDTPGPT0002660_2050DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002660-phoB-K07657NANA
AK018_05841345hypothetical proteinGTGACCGGCACGCCGGCCGGCCCGGACGACGACCGGCTGCAGGACACCGTCGCCGAGCTCGCCCGCAGCGCAGGGCGGCGCAACCGGGCCCGGTCCGACCGGGTCGCGGACCTGCTGCGCCTCGACGGTGGGGTGCGCGACCCGGACCGGCGGAGCGAGGCCGCCCGGCTGTGCCACACGATCGCCGGGTCCGCCGGCACGTTCGGTGACGGGATGCTCGCGGACGCGGCACGTGCCCTGCAGCACGTCCTCGAGAGCGACGGCGGCGACGACGCGCTCCTGGCCGCCCTCGAGCGGTTCCGCGCCACCGCGTCGGCCCGGCGTCCGGGCGGCGCGGGATCTTGAMTGTPAGPDDDRLQDTVAELARSAGRRNRARSDRVADLLRLDGGVRDPDRRSEAARLCHTIAGSAGTFGDGMLADAARALQHVLESDGGDDALLAALERFRATASARRPGGAGSNANANANANA
AK018_05842546hypothetical proteinGTGGCCTCGAGGTCGGTCCGCCAGTCTCGTGCTGTGACCACATCGACCGAGACGCGTGGCGGCTACTCCGACCCCGCTGCCCAGGTCACCGACGACGGCACCGCCGCGGTCCCCCGCGCGGCGGTGCCGTCAGTCCGGAAGCTGACCGATCCACCGGGAACCACCGCGGAGGTGGTGGCGGTCGCTCGTGCCTGGCACGAGCTGGTGGCCGAGCTCGACGGCGACGAGCGGGCCGTGGAGCGCTTCGCCACGATCTGGCTCCAGCTGCTGCCGCGCCGGCTCGCCGCCTGCCGCCGGGCGCTCGTGAGCGGCGAGGACGACGCGGCCCGTGTCCGGCTGCTCACCCTGCACAGCTCGGCGGTCATGCTGGGCCTCGACCGACTGGCCGAGGTCACCTGGCGCTGCCAGTCCGCGCTGGACGTTCCGACGGCCGCGGACGACGACCGGTCCGCCCGGTGCCAGGGGCGGGAGGTCATCGCCGAGGCGCAGAGCGCGGCGAGTCTGGTGCGGGCGGCGCTCGGTCACGCCCGTTGGTCGAAGCGGTAGMASRSVRQSRAVTTSTETRGGYSDPAAQVTDDGTAAVPRAAVPSVRKLTDPPGTTAEVVAVARAWHELVAELDGDERAVERFATIWLQLLPRRLAACRRALVSGEDDAARVRLLTLHSSAVMLGLDRLAEVTWRCQSALDVPTAADDDRSARCQGREVIAEAQSAASLVRAALGHARWSKRNANANANANA
AK018_05843783walR_6COG0745Transcriptional regulatory protein WalRATGGCGGTAGCAGCGGTCCCGGCCGGTGCGACCGGGGCCTCGGCCCCGGAACGCACCGCGGTCATCATCGAGGACGACGACGACGTCCGCGCCCTGCTCGAGGAGGTCCTGGGCCAGGCCGGGTTCGAGACGTCCAGCGCCGCCGACGGCCGCTCCGGGGTCGAGCTCGTGGAGCGGACGGACCCCCTGGTGACGACCCTCGACGTCAGCCTGCCCGACATCGACGGCTTCGAGGTGTGCCGCCGCATCCGGCGGGTGTCGGACACGATCGTCGTCATGCTCACGGCCCGTACCGACGAGGTCGACACCCTCATGGGCCTCGACGCCGGTGCGGACGACTACCAGACGAAACCGTTCCGGCCGCGCGAGCTGCGGGCCCGGATCGAGGCCATCATGCGTCGGCAGGGTCGGTCCGAGGCGCGGACCCCGGGGGGCTCAACGGACCCGGGGACCGCCACCACGGTGACGAGCGACGGTCTGGCGATCGACCTGCTCGGCCGTACGGTCAGCGTCGACGACGTCGAGGTCCACCTCACCCGCAGCGAGTTCGACCTGCTGGCGGCTCTCGCCGGCGAGCCCGGCCGCGTGCTCTCGAAGGACGGGCTCGTCCGCGTCCTGTGGGTCGACGAGTACGACGTCGGGACGCCGGTCACGGGCTCGGACCGCCGACGCGTCGAGGTCCACCTGGCCAACCTGCGCCGCAAGATCGGCGACGACCCCGCCGCACCGCGCTGGATCCGCACGGTCCGCGGTGTGGGCTACCGCTTCGACCAACGGGCGTGAMAVAAVPAGATGASAPERTAVIIEDDDDVRALLEEVLGQAGFETSSAADGRSGVELVERTDPLVTTLDVSLPDIDGFEVCRRIRRVSDTIVVMLTARTDEVDTLMGLDAGADDYQTKPFRPRELRARIEAIMRRQGRSEARTPGGSTDPGTATTVTSDGLAIDLLGRTVSVDDVEVHLTRSEFDLLAALAGEPGRVLSKDGLVRVLWVDEYDVGTPVTGSDRRRVEVHLANLRRKIGDDPAAPRWIRTVRGVGYRFDQRAPGPT0012985_11DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659NANA
AK018_05844390hypothetical proteinATGAGCTATACCCTGACCGCCACCGTGACCGCTCCCTTCGCCGAGACCGTGACGCAGGTCCGCGAGGCCCTGTCCGCGCAGGGCTTCGGGGTGCTCACCGAGATCGACATGGCCGCGACCCTGCAGACCAAGATCGGGGCCGAGATCGAGCCCTACCTCGTGCTCGGCGCCTGCAACCCGCCGCTCGCGCACCGGGCCCTGCAGGCCGACCGCTCCGTCGGCGCCCTGCTGCCCTGCAACGTCGTCGTGCGCGACCTGGGCGACGGCAGCACCGCCGTCGAGGCCGTCGACCCGCACGCCATGATGTCCGTGGCCGACAGCCCCGAGCTGAAGGCCGTGGCCGACGACGCCGCCGACCGGCTGCGCACCGCGCTCGGCTCGCTGTCCTGAMSYTLTATVTAPFAETVTQVREALSAQGFGVLTEIDMAATLQTKIGAEIEPYLVLGACNPPLAHRALQADRSVGALLPCNVVVRDLGDGSTAVEAVDPHAMMSVADSPELKAVADDAADRLRTALGSLSPGPT0018470_997DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
AK018_05845417hypothetical proteinGTGGCGACCCCGACCGAGCACCCCACCGAGCGTCCCACGGACGCCCGTCCGACACCCGCGCGACGCCGACGTCCGTCGGCGCGCACCGTCGTCGTCGGCGTCCTCGCCGCCGCCCTCCTCGCCGCGTGGTACCTCACCGCGGGCGGGGTGCCCGATCCCGTGTACGGCGGTCTCGTGATCGTCAGCGCCGCGCTGGGCGGCGCCACGCTGGCCACCTACGTGCCGCCGTCCGGCAGCACCTGGCGCAGCCGGCTCGGGTGCGGGCCGTGCGACGTCGCCGCGGCCGCGACCGTCGTCGTCCCGCCGATCCTGCTCGCACCGGCACCGACCGGGACCATGGCGCTCGTGGCCGTCGCGGCCACCGGCTTCGGCCTGTTCCAGCGCCGGGACGCCGCCGGCGCCTCCTGCCCCGTCTGAMATPTEHPTERPTDARPTPARRRRPSARTVVVGVLAAALLAAWYLTAGGVPDPVYGGLVIVSAALGGATLATYVPPSGSTWRSRLGCGPCDVAAAATVVVPPILLAPAPTGTMALVAVAATGFGLFQRRDAAGASCPVNANANANANA
AK018_05846489hypothetical proteinATGAGCGACGACACGGGCCGGTTCCCCGACCACGGCGGGCGCCCCGAGACGCCCGAGCAGCGCTCCGACCGCAACTGGAACGAGCTCCTGCAGGAGCTCCGGGTGCTCCAGACGGGCGTCCAGATCCTCACCGGCTTCCTGCTGATCCTGCCGTTCCAGGGGAACTTCTCCGACCTCGACGCCGTCCAGCGCGGCGTCTACCTCGTCGACATCCTCGTGTGCCTGGTGACCTCGGGACTGTTCATCGCCCCGGTGGCGATCCACCGGGGGCTGTTCCGCCGCCGGCTCAAGCTCGAGGTCGTCAGCCTCGGGGACCGCATGACCCGGGTCGGGCTCGCGCTGCTGGCCGTGGCGCTCTCCGCCACCGCGCTGCTCGTGTTCGACGTCGTCGTGGGTCGCGTCGCCGGGCTGGTGGTCGGGGGCGCGGTGGCCACGATGCTGCTCGGGCTGTGGGCGGTGCTGCCCGTGATGGTCCGCCGCCGCGCCTGAMSDDTGRFPDHGGRPETPEQRSDRNWNELLQELRVLQTGVQILTGFLLILPFQGNFSDLDAVQRGVYLVDILVCLVTSGLFIAPVAIHRGLFRRRLKLEVVSLGDRMTRVGLALLAVALSATALLVFDVVVGRVAGLVVGGAVATMLLGLWAVLPVMVRRRANANANANANA
AK018_05847930hypothetical proteinATGAAGTGGTCCGCCGACGGTCTGATCGCGGTGACGGGAGCCTCCGGCCGCGTCGGGTCCCGGCTCGCCTTCCGGCTGGCCGCGGAGGGAGCGCACCAACGCCTGGTCGTGCGCGACCCCTCCCGGGTGCCGCACCTCGACGACGGGCGCCCGCTGCCCGAGTGCGAGACCGCCGTCGCACAGGGGTACGACGACGAGGCGGGCATGCGCGCCGCGTTCGAGGGCGTGCAGACCGTGTTCCTGGTCAGCGCCCGCGAGTCCGCCGACCGCGTCGCCGAGCACGTCGCCGCGATCGACGCCGCCGTGCAGGCGGGGGTCGAGCGGATCGTCTACGTCTCCTTCGTGGGGGCCGCCCCGGACGCCACGTTCACCTTCGCCCGCGACCACTTCCACACCGAGCAGCACCTGCGCAGCACCGGACTGCGGTGGACCGTGCTGCGCGACAACCTCTACCACCAGGCGCTCGCCTCGTTCGTCGGGCCGGACGACGTCATCCGCGGTCCCGCGGGGGACGGACGCGTGGCGTCGGTCGCGCACGACGACGTCGCGGACGTCGCCACCGCGGTCCTGCTCGACGAGGACCCGACCCGTCACGACGGCGTCGTGTACGACGTGACCGGGCCCGAGGCGATCAGCCTGCTGGCGGTCGCCGCGGCCCTGACCGTCGCGACCGGGCGCGAGATCCGGTACCACGCCGAGTCCGTCCCCGAGGCGTACTCGTCGCGCGCACGGTTCAACGCCTCCGCCGTCGAGCTGGCGGGCTGGGTCTCCTCCTACGAGGCGATCGCGGCCGGGGAGATGGCGCACGTGTCCCACGACGTGGAGCGGCTGGTCGGGCGCCCGGCCCGGTCGTTCGCGCAGTGGCTCGACGACTACCCCCACGAGTGGGAGGCGCTGCGCCGGCGCGGACCCGCGGGGCCTCCGGCGTAAMKWSADGLIAVTGASGRVGSRLAFRLAAEGAHQRLVVRDPSRVPHLDDGRPLPECETAVAQGYDDEAGMRAAFEGVQTVFLVSARESADRVAEHVAAIDAAVQAGVERIVYVSFVGAAPDATFTFARDHFHTEQHLRSTGLRWTVLRDNLYHQALASFVGPDDVIRGPAGDGRVASVAHDDVADVATAVLLDEDPTRHDGVVYDVTGPEAISLLAVAAALTVATGREIRYHAESVPEAYSSRARFNASAVELAGWVSSYEAIAAGEMAHVSHDVERLVGRPARSFAQWLDDYPHEWEALRRRGPAGPPAPGPT0009465_97DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009465-qorB-K19267NANA
AK018_05848516ptpA_2COG0394putative low molecular weight protein-tyrosine-phosphataseGTGAGCGAATCGATCTACCGCGTGATGACCGTGTGCACCGGCAACATCTGCCGTTCCCCCATGGCCGAGGTCGTGCTGCGCGACCGCCTGGAGTCGGCCGGCCTGGCCCACCGGGTCACGGTGGACTCCACCGGTGTGAGCGACGAGGAGCACGGCAACCCCGTCGACCCGCGGGCCCGCCGCGCGCTCGCCTCCCGCGGGTACCCCGTCGGGGACGGCCACCGCGCCCGTCAGGTCGCGGCCGCGGATCTCTCCGCACGCGATCTCGTGCTGCCGATGACGTCGCGGCACGCTCAGGTGCTGCGGCGCCTCGCCAACGGTACGGATCCTCAGATCCTGATGTACAGGTCGTTCGACCCGGCGGCCCCGCAGGTCACGGGGGCCGGCGACGAGTCACGGCTGGACGTCGACGACCCCTGGTACGGGGACGCGGACGGGTTCGAGACCTGCCTCGACGAGATCGAGGCCGCCGCCGACGGGATCGTCGCGCACGTGCGGGCGCAGCTCGCTCGCTGAMSESIYRVMTVCTGNICRSPMAEVVLRDRLESAGLAHRVTVDSTGVSDEEHGNPVDPRARRALASRGYPVGDGHRARQVAAADLSARDLVLPMTSRHAQVLRRLANGTDPQILMYRSFDPAAPQVTGAGDESRLDVDDPWYGDADGFETCLDEIEAAADGIVAHVRAQLARPGPT0014530_4277DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
AK018_058491128hypothetical proteinATGCAGGACGGGGGAGCGCAGCGCGTGACGGGCACGCCGGCCGCGGGCGACGCCGCCCCGGGCCGCGGGCCCGGGTGGGCGCCCGACGTCCTGCCCGGCTTCGAGCGGTGGACGCTGCCGCTCGCGCCCGACTTCGAGGGCGAGGTCGTCGCCACGCTGGTCCGTCCGCGCCCCCCGCAGGACCCGGCGGCCCGGGCGGACCGGCCCGACATCGGCGTGGACCTGCTGTACGTGCACGGGTGGACCGACTACTTCTTCCAGACCCACCTGGCCGACTTCTGGGAGGGTCTCGGGGTCCGGTTCCACGCCCTGGACCTGCGCAAGTACGGCCGCAGCCTGCGCGAGCACCACACCCCCGGGTTCGTCACCCGCCTGGACACCTATGACGAGGACCTCGAGGCGGCGCTGTCCGCGATCGGGCACGGCGAGCACGACCGGACCGGACGGCGCCTGGTGCTCATGGGGCACTCCACCGGCGGGCTGGTCCTCAGCCTGTGGGCGGCGCACCACCCGGGCCGGGCCGCGGCGCTGGTGCTGAACAGCCCGTGGCTCGAGTTCCAGACGCGCAAGGTCGGCCGCCGCGTCCTGGAGCCCGGCATCCGCGCCCACGCCGCGCTCGCGCCCCGCAGCCACCTGGTGAACGTCGACCAGGGGTTCTACGTCCGGTCGATCTCGTCGCGGTACGAGGGGGTGTGGGACGTCGATCCGGCCTGGCGCCCGGACGACGGCTGGCGGGCCACGCCGGCCTGGCTGACCGCGATCTTCGACGGCCACGAGGAGGTGGCCGACGGCCTCGACCTGGAGATCCCGGTCCTGGTGATGCTCTCGACGCGGACGATCCCGCCGGTGCGATGGTCCGAGGAGATGCTGCGGGCGGACACCGTGCTCGACGTGGAGGGGATCGCCGAGCGGGCGGCGCGGCTCGGGCGGCTGGTGACGATCGCGCGGATCGAGGGGGCGCTGCACGACGTGACGCTGTCGGCGCCCGACGTGCGCGCCGTCGTCCGGCGGGAGACGGAACGCTGGTTCGGTGCCTATGTCCCGCCGCAGCAGGCCGAGCCGGAGCCGCCCCCGGAGCCGCGGGGCTGGCGTCGGTGGTTCCGGGCGCTCTCCCCGCGCTCGGACTGAMQDGGAQRVTGTPAAGDAAPGRGPGWAPDVLPGFERWTLPLAPDFEGEVVATLVRPRPPQDPAARADRPDIGVDLLYVHGWTDYFFQTHLADFWEGLGVRFHALDLRKYGRSLREHHTPGFVTRLDTYDEDLEAALSAIGHGEHDRTGRRLVLMGHSTGGLVLSLWAAHHPGRAAALVLNSPWLEFQTRKVGRRVLEPGIRAHAALAPRSHLVNVDQGFYVRSISSRYEGVWDVDPAWRPDDGWRATPAWLTAIFDGHEEVADGLDLEIPVLVMLSTRTIPPVRWSEEMLRADTVLDVEGIAERAARLGRLVTIARIEGALHDVTLSAPDVRAVVRRETERWFGAYVPPQQAEPEPPPEPRGWRRWFRALSPRSDNANANANANA
AK018_05850621hypothetical proteinGTGGACCTGCGGCGCGAGGCCCACGACGTCTCGTACCGTGGCGCCATGGGCACCGACGACCACGGACCCCGCCCCGACCCGGCCGCCCGCGAGCCGGGCGCCTCCGGCGACGACCCGGTGCGTCGCGCCGCGCAGTACCGGGTCGACCGGGAGGTCGAGCGCGAGCGCGCCGAGCAGGGCCTGCCGCCCCGGACTCCCGAGGAGGCCGCGGCGGACCGCGCCGAGCGGCCCCGGCCGCCGGAGCACGGCCGTGCGCGGTGGGCGGACACGCTGGTCGACCAGGCCATCCGGCGCGGCGAGTTCGACGACCTGCCGCTGCAGGGCAAGCCGCTGCCGGGCATCGGTGGCACCCACGACCCGGACTGGTGGCTGAAGAACCTCGTCGAGCGCGACCGCATCACCGGAGTCCTGCCCGCGGCCCAGCTGCGCCGGGACGACGCCGCGCTCGACACCACGCTCGACCGCGAGCGCGACGAACGACGTGTGCGAGAGCTGCTCGAGGACTTCAACGCCCGTGTCGTCGACGCCCGCCGCCAGCTCACCGGCGGTCCGCCCGTGGTCACCCCGACGCGCGACGTCGAGCAGGAGGTCGCCCGGTGGCGCGCACGACGCCGGCCCTGAMDLRREAHDVSYRGAMGTDDHGPRPDPAAREPGASGDDPVRRAAQYRVDREVERERAEQGLPPRTPEEAAADRAERPRPPEHGRARWADTLVDQAIRRGEFDDLPLQGKPLPGIGGTHDPDWWLKNLVERDRITGVLPAAQLRRDDAALDTTLDRERDERRVRELLEDFNARVVDARRQLTGGPPVVTPTRDVEQEVARWRARRRPNANANANANA
AK018_058511197aspC_2COG0436Aspartate aminotransferaseATGAAGGTCTCGCGCCGCAGCCAGGTCCCGCCGTTCGCCGTGATGGAGGTCCTGGCCGCCGCCAACACGCGGCGCAGCGCCGGGCACGACGTCCTCAACCTCTGCGCGGGCGAGCCGTCGACGGGCGCGTCCGACGTCGTGCGCGAACGCGCCGCGGAGATCCTGCGGCGCGCCGACCTCGGCTACACCGAGGCGATGGGCGTGCCCGCCCTGCGCGAGGAGATCGCCGGGCACTACCGGCGGTGGTACGGCCTCGACGTCGACCCGGGCCGGATCGCCGTGACCACGGGGTCCAGCGGCGGGTTCGTGCTGACGTTCCTGGCCGCGTTCGACGTCGGGGACCGCGTCGCGCTCGCCCGGCCGGGCTACCCCGCGTACAAGAACATCCTGGCGGCGCTGGGCTGCGAGGTCGTCGAGATCGACTGCGGCCCCGAGACGCGGTACCAGCCCACGGTCGCCCAGCTCGACCAGGTGACGGCCGACGGTCCGCTCGCCGGTCTGATCGTGGCGTCCCCGGCGAACCCGACGGGCACGATGATCCCCCCGGCCGAGCTCGACGCGGTCGCCCGCTGGTGCGCCGACCACGAGGTCCGGCTGGTCAGCGACGAGATCTACCACGGCATCGCCTACGGCACCGAGCTCGGCCAGGCCACGGCGGCCGTGCACGACGGGCGGGGCGCCGTCGTCGTCAACTCGTTCTCCAAGTACTGGGCGATGACGGGGTGGCGGCTCGGCTGGCTCGTGCTGCCCGAGGAGCTGGTCGCCCCGGTCGGGGCGCTGGCCGGCAACGTGGCGCTCTCCCCTCCCGCCCTGGCCCAGCACGCGGCGATCGCCGCCTTCTCCCCCGCCGGCTACCAGGCGGCGGCCGACAACGTCACGCGCTACCGCGCCTCGCGGGCCGCGCTGCTGGAGCGCCTGGACGAGCTGGGCTGGCGGCCGGTGGCCCCGGCGGACGGCGCGTTCTACCTGTACGGCAACATCTCGCGGTTCGGCCTGGACGCGGTCACGTACTGCTCGCGGCTGCTGGCCGAGGCGGACGTCGCGATCACGCCGGGGACCGACTTCGACGGCCGCGCGGGCGGCGACTGGGTCCGGCTGTCGTTCGCCGCCGACCCGTCGACCGTCGCGCGGGCGGTCGACCGCATCGTGGCCTGGCAGGGCGGTCTGGTGCGCACGGCCGGCGTGCCCCGGACATGAMKVSRRSQVPPFAVMEVLAAANTRRSAGHDVLNLCAGEPSTGASDVVRERAAEILRRADLGYTEAMGVPALREEIAGHYRRWYGLDVDPGRIAVTTGSSGGFVLTFLAAFDVGDRVALARPGYPAYKNILAALGCEVVEIDCGPETRYQPTVAQLDQVTADGPLAGLIVASPANPTGTMIPPAELDAVARWCADHEVRLVSDEIYHGIAYGTELGQATAAVHDGRGAVVVNSFSKYWAMTGWRLGWLVLPEELVAPVGALAGNVALSPPALAQHAAIAAFSPAGYQAAADNVTRYRASRAALLERLDELGWRPVAPADGAFYLYGNISRFGLDAVTYCSRLLAEADVAITPGTDFDGRAGGDWVRLSFAADPSTVARAVDRIVAWQGGLVRTAGVPRTNANANANANA
AK018_05852345hypothetical proteinATGTCGCAGACCCTGTCGCTCGTCATCACCGGGCTCGGGTGGTTCGGAGCTCTGATCGGACTCGTCGCGTATGCGATGGTCTCGAAGGGTCGCTGGGCCCCGAACTCCCTGCCGTTCCAGGTGGCCAACCTGACGGCCACCTCCACGCTGTTCCTCGTGGCCGCCGTCGAGGGCGTCTGGCCCTCGGTCTTCGCCAACGTGGCCTGGATGGTCATCGGCGTGCAGGCCCTCGCGGTCATCCGCAAGGCCCGCCGCACCGGCCGCGCCGTGACCCGCGTGGACGTCGCCCCCCGCGAACCCGCGGCCGAGCACGTCGGCGCCGTCGCCCCTCCCGTGCTGCGGTAGMSQTLSLVITGLGWFGALIGLVAYAMVSKGRWAPNSLPFQVANLTATSTLFLVAAVEGVWPSVFANVAWMVIGVQALAVIRKARRTGRAVTRVDVAPREPAAEHVGAVAPPVLRNANANANANA
AK018_05853810oxyR_2Hydrogen peroxide-inducible genes activatorGTGTCCCAGCAGATCGCCCGTTTAGAGGCCGAGGAGGGCTTCCCCGTCCTCGACCGCGGCCCCCGAGGCGTGAGCCTGACCCCGGCCGGGCGGGTGCTGGCCGACGCCGCCGAACGCATCGAGGCCGAGCTCCTGGAGGCCCACCAGGAGATCGCCAACCTCGGCGAGGGCGTGAGCGGCACGGTGACCATCGGCGCGTTCCAGTCCGCGATCCGGTCCGTCGTCGCCCCGTTGCTCGGACCGTTCGCCGAGGACTACCCCGGCGTCACCCTGGACGTGCGCGAGCACGAGCCGGCCGACGCCATCCGCATGCTGCGTGCCGGTGACCTCGACGTCGTCCTGCTCGAGCGCGACGTCGAGGTCGACTCCCCCGCGCCCCGCGGCGCGCACGACATCCCGCTGCTCGACGAGCCCTGGCTGCTCGTCGTGCCGTCCGCGCTCCCGCGGCCCGAACGGCTGGACGACCTGCGCGACATGCCGTGGGTCGGTGCGGTCCAGAACACCGCGGCCGACCGTGCGCTGCGTCGCCTCGGCCGGACTCTCGGCACCACGCTCAGCGTCCGGCACGCCTACTTCGACTTCGACACCGCGCTCGCCCTGGTGGACGCCGGGCAGGGCATCGCGATGCTGCCGGCGCTCGCCGTGCGCCGCTCCGAGGCTCCCGAGGGGGCCGAGGTCGTCGCCATGCCGGGTCTCGGCACGCGCCGCATCGTGGTGCGCCACCGCTCGACGCGGCACGAGCCGGGCCCCGCCGTGCGCGCCGTCGTCGACGCCATGGTGGAGGTCGCGCGCGACCTCGAGCTCACCTGAMSQQIARLEAEEGFPVLDRGPRGVSLTPAGRVLADAAERIEAELLEAHQEIANLGEGVSGTVTIGAFQSAIRSVVAPLLGPFAEDYPGVTLDVREHEPADAIRMLRAGDLDVVLLERDVEVDSPAPRGAHDIPLLDEPWLLVVPSALPRPERLDDLRDMPWVGAVQNTAADRALRRLGRTLGTTLSVRHAYFDFDTALALVDAGQGIAMLPALAVRRSEAPEGAEVVAMPGLGTRRIVVRHRSTRHEPGPAVRAVVDAMVEVARDLELTNANANANANA
AK018_058552901gcvP_2COG0403putative glycine dehydrogenase (decarboxylating)GTGACCCACTCCCCCTTCGACCCGGACGTCTTCGCCGACCGTCACATCGGACCGCGCGGCGACGAGACCGCCGCGATGCTGGACCAGCTCGGGTACACCGACCTCGACGCGCTCGTCGACGCCGCGGTCCCGTCCGCCATCCGCCAGCCGGACGCGCTGGACCTGCCGCCGGCGCGGACCGAGGCGGAGGTGCTGGACCACCTGCGCGCCGTCGCGGCGAAGAACGTGGTCAAGCGCCAGATGATCGGGCAGGGCTACTACCCGACGTTCACGCCGCCGGTGATCCGTCGGAACGTGCTGGAGGCCCCCGCCTGGTACACGGCCTACACGCCGTACCAGCCGGAGATCTCCCAGGGCCGGCTGGAGGCGCACCTCAACTTCCAGCAGGTGATCGAGGACCTCACGGGGCTGGAGATCGCCGGCGCGTCCCTGCTCGACGAGGCCACCGCCGTGGCCGAGGCCGTCGCCCTGATGTGGCGGGCCTCCCGGGCCAAGCAGGGCTACGTGGTGCTGGACACCGAGCTGTTCGGCCAGTCGCTCGCGGTGACCCGCGGCCGGGCGGAGGCCGTCGGGCTGCCCGTCGTCGTCGCGGACCTCTCCGACGGCCTCGACGCCGGTCTGGCGACCGTGGAGGCCACCGGGACCGCGCTGCCGGCGGGGAACCTCGTGGGTGTCGTCGTCCAGCAGTCCGGCGCCTCGGGCCGGGTGCTCGACCTGCGCACGGTGGTGGACGAGGCCAAGGCGCGCGGGGCCCAGGTCACGGTCGCGACCGACCCGCTCGCGCTGACGATGCTCCGCTCCCCCGGTGAGCTCGGTGCGGACGTCGCCGTCGGCTCGGCCCAGCGGTTCGGCGTCCCCCTCTTCCACGGCGGGCCGCACGCGGCCTACATCGCCGTGCGCAAGGGCCTGGAGCGCCAGCTCCCCGGCCGGCTCGTCGGGGTCTCGGTCGACGCCGACGGCGAGATCGGCTACCGCCTGGCCCTCGCCACCCGCGAGCAGCACATCCGGCGCGAGCGCGCGACGTCGAACATCTGCACCGCGCAGGCGCTGCTGGCCGTGGTGGCCTCGATGTACGCGGTCTACCACGGCCCCGAGGGGCTGCGCGCGATCGGTGAGCGGGTGCACGGCCGGGCGCTGTCGCTGGCCGCGGGGCTGCGGGCGGCCGGTGTCGAGGTCGTCCACGACGAGTTCTTCGACACGGTTCGGGTGGCCGTCCCCGGCCGCGCCCCCGAGGTCGGCGCCGCCGCCGTCGAGGCCGGGTACAACCTGTACATCGACGGAGCGGATCACGTACAGATCTCGTGCGACGAGACCACCACCGCTGACGACGTGGCGGCCCTGCTCGCGCTGTTCGACGCGTCCCCGGCCGACGCCGCCGACGAGGCCGCCCTCGGCGACGCGCTGCTGCGCACCACGGACTACCTGCAGCACCCGGTCTTCCACCGCCACCGGTCCGAGACCGCGATGCTGCGCTACCTGCGGGCGCTGGGCGACAAGGACCTCGCGCTGGACCGCACGATGATCCCGCTGGGCTCGTGCACGATGAAGCTCAACGCGACGGCCGAGATGGAGCCGATCAGCTGGCCGCAGTTCGCCGATCTGCACCCGTACGTCCCGGCCGACCAGGCCCGCGGCTACGCCGAGCTGGTGGGCACGCTCGAGGGGTGGCTGGCCGAGATCACCGGCTACGCCGCGGTGTCCGTCCAGCCCAACGCCGGCTCCCAGGGCGAGCTCGCGGGGCTGCTGGCGATCCGGGCCTACCACGCCTCGCGCGGCGAGGAGCAGCGCGACGTGGTGCTCATCCCGGCCTCGGCCCACGGGACCAACGCGGCCTCGGCGACGCTGGCCGGTCTGCGCGCGGTGGTCGTCAGGACCGCCGCCGACGGCGAGATCGACCTGGACGACCTGTACGCCGCGCTCGCCGAGCACGACGGTCGCGTAGCCGGGATCATGATCACCTACCCCTCCACCCACGGCGTCTACGAGCCGCACGTCCAGGACGTGTGCGCTGCAGTACACGACGCTGGTGGTCAGGTGTACATCGACGGGGCGAACCTCAACGCGCTCGTCGGCCTGGCCCGGCCGGGACGGTTCGGTGGCGACGTGTCGCACCTGAACCTGCACAAGACGTTCTGCATCCCGCACGGCGGGGGAGGACCCGGCGTCGGCCCGGTCGGCGTCGCCGAGCACCTCGTGCCGTTCCTGCCCGGCGACCCCACGCCGTCGGGCACGGGGGAGCCGCAGCCGGCCGGCGCGGTGCCGGCCGTCTCCGCGACCCGCCACGGCTCGGCCGGCATCCTGCCGATCTCGTACGCCTACCTGGCGCTCATGGGACCCGACGGGCTCACCTCGGCCACCGAGCACGCGGTGCTGACCGCCAACTACGTCGCTTCCCGCCTCGCCCCGCACTACCCGGTGCTCTACACGGGCGACCACGGGCTGGTCGCCCACGAGTGCATCCTCGACCTGCGCGACATCACCGCGGAGACCGGCGTGACCGTCGACGACGTCGCCAAGCGGCTCATCGACTTCGGCATCCACGCCCCGACGATGGCGTTCCCGGTGGCGGGCACGCTCATGGTCGAGCCGACCGAGTCCGAGGACCTCGGCGAGCTCGACCGGTTCGTCGACGCGATGATCGCCATCCGCGGCGAGATCGACGCCGTCGGGGCCGGCCGGTGGCCGCTCGAGGACTCGCCGCTGCGCAACGCGCCGCACACGGCCGCATCGGTCATGGTGGAGCAGTGGGACCACCCGTACACGCGCGAGCAGGCGGCGTTCCCCGTGACGAGCCTGCGCAGCGTCAAGTACTGGCCCCCGGTGCGCCGGATCGACCAGGCGCACGGCGACCGCAACCTGCAGTGCTCCTGCCCGCCCGTCGACGCCTACGCCGAGAGCTGAMTHSPFDPDVFADRHIGPRGDETAAMLDQLGYTDLDALVDAAVPSAIRQPDALDLPPARTEAEVLDHLRAVAAKNVVKRQMIGQGYYPTFTPPVIRRNVLEAPAWYTAYTPYQPEISQGRLEAHLNFQQVIEDLTGLEIAGASLLDEATAVAEAVALMWRASRAKQGYVVLDTELFGQSLAVTRGRAEAVGLPVVVADLSDGLDAGLATVEATGTALPAGNLVGVVVQQSGASGRVLDLRTVVDEAKARGAQVTVATDPLALTMLRSPGELGADVAVGSAQRFGVPLFHGGPHAAYIAVRKGLERQLPGRLVGVSVDADGEIGYRLALATREQHIRRERATSNICTAQALLAVVASMYAVYHGPEGLRAIGERVHGRALSLAAGLRAAGVEVVHDEFFDTVRVAVPGRAPEVGAAAVEAGYNLYIDGADHVQISCDETTTADDVAALLALFDASPADAADEAALGDALLRTTDYLQHPVFHRHRSETAMLRYLRALGDKDLALDRTMIPLGSCTMKLNATAEMEPISWPQFADLHPYVPADQARGYAELVGTLEGWLAEITGYAAVSVQPNAGSQGELAGLLAIRAYHASRGEEQRDVVLIPASAHGTNAASATLAGLRAVVVRTAADGEIDLDDLYAALAEHDGRVAGIMITYPSTHGVYEPHVQDVCAAVHDAGGQVYIDGANLNALVGLARPGRFGGDVSHLNLHKTFCIPHGGGGPGVGPVGVAEHLVPFLPGDPTPSGTGEPQPAGAVPAVSATRHGSAGILPISYAYLALMGPDGLTSATEHAVLTANYVASRLAPHYPVLYTGDHGLVAHECILDLRDITAETGVTVDDVAKRLIDFGIHAPTMAFPVAGTLMVEPTESEDLGELDRFVDAMIAIRGEIDAVGAGRWPLEDSPLRNAPHTAASVMVEQWDHPYTREQAAFPVTSLRSVKYWPPVRRIDQAHGDRNLQCSCPPVDAYAESPGPT0020480_1864DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020480-gcvP-K00281NANA
AK018_058561155gcvT_4COG0404AminomethyltransferaseATGACCACCAAGAAGTCGCCGCTGCACGACGAGCACGTCGCCCTCGGTGCCCACCTGACCGCGTTCGGCGGGTGGGACATGCCCCTGCGGTACACCTCCGACCTGGCCGAGCACCGGGCGGTCCGCGAGGCGGCGGGCCTGTTCGACCTGTCGCACATGGGCGGGATCAACGTGACCGGCCCGGAGGCCGCGGCGTTCCTCGACCACGCGCTGGTCGGGAACTTCTCGGCGCTGCGCCCGATGCGGGCGCGCTACACGATGATCTGCGCCGACGACGGGGGAGTGCTGGACGACCTGATCGTCTACCACAACGGCACCGACGAGTACTTCGCCGTGCCCAACGCGGCGAACGCGGACGCCGTGCTCGTGGCGATGCTGGAGCGCGCGGCCGGGTTCGACGTCGCCGTGCGGGACATCTCCGCGAGCCTGGCCCTGATCGCCGTGCAGGGTCCGCGTGCGGAGGAGATCCTGCGCGAGGTCCTCACCGAGGATCCCGAGATCTCCGGCGGGACGGCGCTGGACGACCTGCGGTACTACGCGTGCATGGGACTGCGGTTCGGCGCCGAGGGCGTCCTGGTCGCCCGCACCGGGTACACCGGCGAGGACGGGTTCGAGATCTGGGTCGACACCCCGCACGCCGTCGCGCTGTGGCGGGCGCTGCTCGCCGCCGGCGAGCCGTACGGCCTCGTCCCCGCCGGGCTGGCGGCCCGCGACTCGCTCCGTCTCGAGGCCGGCATGCCGCTGTACGGCAACGAGCTCGACACCACCACGACGCCCTTCGACGCGGGGGCCGGCCGCATCGTCAAGCTCGACAAGGCGCACGACGACGGTACGCCGGTCGACTTCGTCGGCCGCGAGGCCCTGGCCGCTCGCAGCGAGGCCGAGCCGGAGCGCGTGCTCGTCGGCCTGCGCGGGACCGGACGCCGTCCCGCGCGCGCCGGGTACGCCGTCGTGCGCACCACCGACGGCGGCGGCGTGGGCGAGCAGGTCGGCACGGTCACCTCGGGGGTGCCCTCGCCGACGCTCGGCCACCCGGTCGCCATGGCGTACGTCCGCCCCGACGTCGCCGCGGAGGGGACCGAGCTCGCCGTCGACGTGCGCGGCCGGGCCGAACCGTTCGTGGTGACGGCCATGCCGTTCTACCGTCGCGGCTGAMTTKKSPLHDEHVALGAHLTAFGGWDMPLRYTSDLAEHRAVREAAGLFDLSHMGGINVTGPEAAAFLDHALVGNFSALRPMRARYTMICADDGGVLDDLIVYHNGTDEYFAVPNAANADAVLVAMLERAAGFDVAVRDISASLALIAVQGPRAEEILREVLTEDPEISGGTALDDLRYYACMGLRFGAEGVLVARTGYTGEDGFEIWVDTPHAVALWRALLAAGEPYGLVPAGLAARDSLRLEAGMPLYGNELDTTTTPFDAGAGRIVKLDKAHDDGTPVDFVGREALAARSEAEPERVLVGLRGTGRRPARAGYAVVRTTDGGGVGEQVGTVTSGVPSPTLGHPVAMAYVRPDVAAEGTELAVDVRGRAEPFVVTAMPFYRRGPGPT0008130_951DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605NANA
AK018_05857369gcvH_2Glycine cleavage system H proteinATGGCCGACTACCCCAGCAACCTGCGCTACTCCGTCGAGCACGAGTGGATCGACGACGGCACCCCGGCGACCGTCGGCGTGACCTCCTACGCCGTCGAGGCGCTCGGCGACGTCGTCTACCTCGAGCTGCCCGAGGTGGGCGCCGAGATCGAGGCCGGCACCGTCGTCGGCGAGATCGAGTCCACCAAGTCCGTCTCCGAGCTGTACTCGCCCGTGTCCGGGACCGTCGTCGCGGTGAACGACACGGCGGTCGACGACCCGGCCCTGGTCAACTCCGAGCCATTCGGCGCGGGCTGGCTGTTCAAGGTCGAGGTGTCCGGCGAGGGCCAGCTCCTCAGTGCCGAGGAGTACGCCCAGCACGCGGGATGAMADYPSNLRYSVEHEWIDDGTPATVGVTSYAVEALGDVVYLELPEVGAEIEAGTVVGEIESTKSVSELYSPVSGTVVAVNDTAVDDPALVNSEPFGAGWLFKVEVSGEGQLLSAEEYAQHAGNANANANANA
AK018_05858234narLCOG2197putative transcriptional regulatory protein NarLATGAGTGCTATCGAACTGGAGCGCACCTCGCTCGGCCCGAGCCTGACGCGCCGGGAGCAGGTCGTGCTGTCGAACTTGTCCGAGGACGTGACGTTGGAGCAGATCGCCAGCAAGCTGTACGTGACGCGCAACACGGTGAAGTCGCAGGTGCGCAGCGTCTACCGCAAGCTCGGGGTCTCCACCCGGGCCGACGCCGTCGCCTGGGCTCGCCGGGCCGGCATCGGGTCGAGCTGAMSAIELERTSLGPSLTRREQVVLSNLSEDVTLEQIASKLYVTRNTVKSQVRSVYRKLGVSTRADAVAWARRAGIGSSPGPT0025270_49DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-SPORULATION_REGULATION,PGPT0025270-gerE-K01994NANA
AK018_05859420mutT2_2COG0494Putative 8-oxo-dGTP diphosphatase 2ATGACTCGTCGCCTCGTCGTCGCTGCCGCGATCGTCGACGCCACCGAGCGTCCGCGTCGTCTGCTCGCCGCACGACGGTCGCAGCCCGCCGAGCTGGCCGGACGCTGGGAGTTCCCCGGCGGCAAGGCCGAGCCGGGGGAGCACCCCGTCGACGCCCTGCACCGTGAGCTGCACGAGGAGCTCGGGGTCGGGGTCGACCTCGGAGACGAGGTCGTGGGTCCCGACGACGGTGGCTGGTTCATCACCGACCGGCACGTGCTGCGACTCTGGTTCGCCCGCGTGGTCTCGGGGGCTCCGGAACCGCTCGTCGAGCACGACGAGCTGCGCTGGCTGGACGCCGGCTCCCTGTGGGACGTGCACTGGCTCGACGGGGACGTGCGGATCGTCGAGGAGCTCGCGCAGACCCTCCAGCCGAGGTAGMTRRLVVAAAIVDATERPRRLLAARRSQPAELAGRWEFPGGKAEPGEHPVDALHRELHEELGVGVDLGDEVVGPDDGGWFITDRHVLRLWFARVVSGAPEPLVEHDELRWLDAGSLWDVHWLDGDVRIVEELAQTLQPRPGPT0024310_7DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024310-pimE-K13669NANA
AK018_05860564hypothetical proteinGTGGCGACCTTCGAGTACGCGGTCGAGATCGAGCACCTGCTCGTGTCTCCCGAGCACGCCTACTTCGGTCGCCCCCGTGACGGCGCCGCGGACGTGCCGACGTCGGACCGGGACGAGGCGGAGCTCGTCGCCGGGAAGGGGATCGTGGGGGACCGCTTCTTCGGCAAGGCTGCGCACATGGACGCTGCGGTCACGGTGTTCGCCGCCGAGGCGCTCGAGGAGATCGCCCGCGAGCTGGGGACCGGGCCGCTCGACCCGCTGCTGACCCGCCGGAACGTCGTGCTCCGTGGAGCCCAGCTCGCGCCGCTGATCGGGCACGATTTCACGCTCCGGACCTGGGACGCCGCCGTGACCCTGCACGGCGGCCGCCCGGCGAACCCGTGCGCGTGGATGGACCGCATGCTGGCGCCGGGTGTGCACGCCGCGATGCGGGGTCGTGGGGGAGTGCGGTGCACGCCGGTCTCCGACGGGGTGCTGCGGCGAGGACCTGCGGTACTGGTCAGCCCCGTGGAGCTCGATCCGTCACGCGCGGGGGAGGCCGTGCGGTGGCCGCGGCTGCCGTGAMATFEYAVEIEHLLVSPEHAYFGRPRDGAADVPTSDRDEAELVAGKGIVGDRFFGKAAHMDAAVTVFAAEALEEIARELGTGPLDPLLTRRNVVLRGAQLAPLIGHDFTLRTWDAAVTLHGGRPANPCAWMDRMLAPGVHAAMRGRGGVRCTPVSDGVLRRGPAVLVSPVELDPSRAGEAVRWPRLPNANANANANA
AK018_05861219hypothetical proteinATGAGCGACTTCCAGGTCAACCGCGCCCCGCAGAACGACGCCCCCGGGGCCATGCTCGGGCGCGTCATCGTCTCCTTCGTGCTCTTCGTCGCGGGGCTGGTCCTCATCGGTGTCGGCGCGGTGGCCGACCCGTCGCTCGCGCCCTTCGTGTTCACCGGCGGCATCGTCGCGGTCGGGCTGGCCTTCGGCCTGCCGATGATCGGCGGCACCGAGCGCTGAMSDFQVNRAPQNDAPGAMLGRVIVSFVLFVAGLVLIGVGAVADPSLAPFVFTGGIVAVGLAFGLPMIGGTERNANANANANA
AK018_05862501hypothetical proteinATGACTCCCCTCACCGAGACCCAGCTCCGGGCTGCCCTCGTCAACGCCACCCGCAGCGAGCGCCAGCGCCTGCTCCCGCCCGACCTCGACACCCAGCGGTGGGACCGCCTCGAGTTCCTCGGCTGGCGCGACCGCAAGCAGCCGCTCGCCGCCTACGTCGTCGCCGAGATCGGCGGCGCACCGACCGGCATCATCCTGCGCGCCCCCGAGACCGGCGCCCGGCGCTCCGCGATGTGCGCCTGGTGCGAGCACGCCGGCGACCCCGGCGACGTCGCGATGTTCGTCGCCCGGCGCGGCGGGGCGTCCGGCCGGAAGGGCAACACCATCGGCACGCTGATCTGCACCGACTTCCGGTGCTCACGCAACGTGCGGCGTCGCCCGACCCTCGCCGAGGCCGGGGCGGACGACGACGGCGCCCGTGCCGCCGTCGTCGAGCGACGCATCGCCGGGCTCACCGCACGGGTGACCGCGTTCGTCGAGCAGGTGCGCAGCACCGTCTGAMTPLTETQLRAALVNATRSERQRLLPPDLDTQRWDRLEFLGWRDRKQPLAAYVVAEIGGAPTGIILRAPETGARRSAMCAWCEHAGDPGDVAMFVARRGGASGRKGNTIGTLICTDFRCSRNVRRRPTLAEAGADDDGARAAVVERRIAGLTARVTAFVEQVRSTVNANANANANA
AK018_058632451metE_2COG06205-methyltetrahydropteroyltriglutamate--homocysteine methyltransferaseATGACCTCTCCGACCCCCACCGACACCACACCGTTCGCCCGCGGCACGATCCTGGGCTACCCGCGGATCGGCCGGCGCCGCGAGCTCAAGCGCGCCGTCGAGGCCTACTGGGCCGGCCGCACCGACGTCGTCGACCTCGAGGTCGCCGCCGGCGCGCTGCGCCGTGAGACCGTGCAGCGGCTCGTCGCGCTCGGCCTCGACCCGGACGACGGGTCCGTGCCCGGGTCGTTCTCGTACTACGACCAGGTGCTCGACGTCGTCGCGCTGCTCGGCGCCGTGCCGTCCCGGTTCCGGGACCTGATCGACGACGAGGACGGTTCCCTCGACCTGGACGGCTACTTCACCGTCGCCCGCGGTCGCGGCGAGGACGCCCCGCTGGAGATGACCAAGTGGTTCGACACGAACTACCACTACCTCGTCCCCGAGATCAGCGAGTCCACGCCGATCTCGTTCGCCGACCACCGCATCGTGCGCGAGTACGCCGAGGCCAAGGAGGCCGGCGTCACCACACGCCCGACGCTCGTCGGCCCGGTGACCTTCCTCGCGCTGTCGAAGGCGGCCGACGACGCGGGCGACGGGTTCCACCCGCTCGACCGGCTCGACGACGTGGTGGCCGCGTACGCCGAGCTGCTGCGGGCGCTGGCCGCCGTGGGCGTGCCGTGGGTCCAGCTCGACGAGCCCGTGCTCGTGGCGGACACCGTGGACGCCGACCCCGCGCGGGTCGACGCCGCGATCACGTCGGCCTACCGCGCCCTGGCGACCGACCTCGCGCCCGCGTCGGCGGACGACGCCCTCGACGTCATCCCGGAGCGGCCGCGCATCCTCGTGGCCGCGCCCTTCGGCGGGCTGGCCACCGCGGGCGCCGACGGTGCCCCGGCCCGCGACGGCCTGGCGCTGCTGGCCGCGACCGACGTCGACGCGATCGCGATCGACCTGGTCAAGGGCGCGGTGCCCACCGGGTCCGGCCCCGACGGGACCGTGCCGGGCCTGGCCGGCAAGACGCTCGTGGCCGGCGTCGTCGACGGGCACAACGTGTGGCGCACCGACCTCGCCGCGCGCCTCGGCACCCTCGACGCCCTGCGCGGGCTCGGCGCCGGATCGCTCGCCGTCGGCACCTCGACGTCCCTGCTGCACGTCCCGCACGACGTCGACGACGAGACCTGGGACGGCCCCGCGGCCGAGCGCGCGGGCCGCACCCCGGCGCTGCGCCGGTGGCTGGCCTTCGCCGACCAGAAGGTCGCCGAGGTCACCGTGCTCGCCCGGGCGCTCGCCGACGGACCGGAGTCCGTGCGCACCGAGCTCGACGAGGCGAGCGCCGCGCTGGCCGACCGCGCCGCCGCGGCCGGCGTCGTCGTCCACGCCGTGCGCGAGCGCCTCGCCGCCCTCGCCCCGGCCGACTTCGAGCGGGGGGCGCACGCCGAGCGCGTCGCCGCCCAGCGCGACCGCCTCGACCTGCCGCTGCTGCCGACGACGACGATCGGGTCGTTCCCGCAGACCGCCGAGATCCGCCGGGCACGGTCCGCGTGGGCGAAGGGCGAGCTGGCCGACGACGCCTACCGCACCGCGATGCGCGAGGAGATCGCCCGCGTCGTCGCGCTGCAGGAGGACGTCGGCCTCGACGTGCTCGTGCACGGCGAGCCGGAGCGCAACGACATGGTCCAGTACTTCGCCGAGCTGCTCGACGGGTTCGCGACGACGGACCTCGGCTGGGTGCAGTCCTACGGGTCGCGGTGCGTGCGCCCGCCGATCCTGTGGGGTGACGTGACCCGCCCGGCACCGATGACGGTCGAGTGGACCCGGTACGCCGCGTCCCTGACGTCGAAGCCGGTCAAGGGCATGCTCACGGGACCGGTGACGATCCTGGCCTGGTCGTTCGTACGCGACGACCAGCCCCTGGCGGACACCGCGAACCAGGTGGCGCTCGCCCTGCGCGACGAGGTGAGCGACCTCGAGGCCGCCGGGACCGCCGTCGTCCAGGTGGACGAGCCGGCGCTGCGCGAGCTGCTGCCGCTGCGGCGCGCGGACCAGCCCGCCTACCTGGCGTGGTCCGTGGGGTCCTTCCGCCTGGCCACGGCCGGTGCCGCCGCGTCGACCCAGGTGCACACCCACCTGTGCTACTCGGAGTTCGGCGAGGTCATCGGCGCGATCGACGGTCTGGACGCCGACGTGACCTCCATCGAGGCGGCGCGCTCGCGCATGGAGGTCGTCCCCGAGCTGCACGAGGCCGGGTACGCCCGCGGCGTCGGCCCCGGCGTCTACGACATCCATTCCCCCCGGGTGCCGTCGACGGCGGAGGTCACCGAGCTGCTCGGCCTCGCGGCGTCGTCCATCGACCCGGCGCTGGTGTGGGTCAACCCCGACTGCGGGCTCAAGACCCGCGGGTACGCCGAGGTCGAGCCGTCGCTGCGGCACCTCGTGGAGGCGGCGCGGACGGTGCGCGCCGGCCTCTGAMTSPTPTDTTPFARGTILGYPRIGRRRELKRAVEAYWAGRTDVVDLEVAAGALRRETVQRLVALGLDPDDGSVPGSFSYYDQVLDVVALLGAVPSRFRDLIDDEDGSLDLDGYFTVARGRGEDAPLEMTKWFDTNYHYLVPEISESTPISFADHRIVREYAEAKEAGVTTRPTLVGPVTFLALSKAADDAGDGFHPLDRLDDVVAAYAELLRALAAVGVPWVQLDEPVLVADTVDADPARVDAAITSAYRALATDLAPASADDALDVIPERPRILVAAPFGGLATAGADGAPARDGLALLAATDVDAIAIDLVKGAVPTGSGPDGTVPGLAGKTLVAGVVDGHNVWRTDLAARLGTLDALRGLGAGSLAVGTSTSLLHVPHDVDDETWDGPAAERAGRTPALRRWLAFADQKVAEVTVLARALADGPESVRTELDEASAALADRAAAAGVVVHAVRERLAALAPADFERGAHAERVAAQRDRLDLPLLPTTTIGSFPQTAEIRRARSAWAKGELADDAYRTAMREEIARVVALQEDVGLDVLVHGEPERNDMVQYFAELLDGFATTDLGWVQSYGSRCVRPPILWGDVTRPAPMTVEWTRYAASLTSKPVKGMLTGPVTILAWSFVRDDQPLADTANQVALALRDEVSDLEAAGTAVVQVDEPALRELLPLRRADQPAYLAWSVGSFRLATAGAAASTQVHTHLCYSEFGEVIGAIDGLDADVTSIEAARSRMEVVPELHEAGYARGVGPGVYDIHSPRVPSTAEVTELLGLAASSIDPALVWVNPDCGLKTRGYAEVEPSLRHLVEAARTVRAGLNANANANANA
AK018_058641017metF_2COG06855,10-methylenetetrahydrofolate reductaseATGGTCGCCGAGGCACCGACGTACCCGTACCGCCCGACGGTGAGCTTCGAGCTCATGCCGCCGCGGCGGCCCGACGCCGCACCCAGGTTCTGGGAGACGGCACGCCGGCTCGTGGCCGCGCGCCCCGACTTCGTCTCGGTGACCTACGGCGCCGGCGGCGGGGACCGAGACACCGCCCGTGACGTCGTCTCCCGCCTGCTGGCCGGCACTCCGGTGCTGCCGATCGCGCACCTGACCTGCGTGGGCGCCTCGCGGGAGAACGTCTCGGAGGTCGTCGACGAGTTCCTCGAGGCCGGCGTGCGGTCGTTCCTCGCGCTGCGCGGCGACCCGCCGCAGGACCAGCCCGACTGGCGCCCCCCGGCCGGCGGCGTGCACTCGGCCGTGGAGCTCGTGCACCTGCTGCGCGAGGTCGAGGCCCGCCGCTGCGCCGCGGACCCGGCCGCCGCCGTGCGCGGCGCCGCCCGCCCGTTGACGATCGCGGTGGCCACCTTCCCCGACGGCAACGTCCAGGCCGGGACGACCCGCACCCAGGAGGTGCACCGCCTGCTGGAGAAGCAGCAGGCCGGCGCCTCCTTCGCCATCACCCAGTTCTTCTACGAGGCCGAGAAGTACACCGACTTCGTCGCCGAGGCCCGTGCGGCCGGCGTGACGATCCCGATCCTCGCCGGGCTGCTGCCCACGACCGAGCCGCGCCGGCTCCGTCGTGTCGAGGAGCTCACCGGCGTCCGGGCGCCCCAGCACCTGCTGGACGCCCTGGACGCCCGGCCGGACCCGGAGGCGCAGTACGCCTACGGGACCGCGTACGGCACCGAGCTCGCCCAGCGCGTGCTCGACGCCGGCGCTCCCGGCCTGCACGTGTACACGTTCAACAAGTACCGCCCCGCTCTGGACCTGCTCGAGGGTGTTCACCTCGGCGGCCGGACGCCGGCGCCCGACGACGCGGCGCCCGACGTCCGAGACCTGGCCGGCCGGCCGTGGGTACCGAGCATCCCGACCCCCGCACCGGCCGTCCCCTGAMVAEAPTYPYRPTVSFELMPPRRPDAAPRFWETARRLVAARPDFVSVTYGAGGGDRDTARDVVSRLLAGTPVLPIAHLTCVGASRENVSEVVDEFLEAGVRSFLALRGDPPQDQPDWRPPAGGVHSAVELVHLLREVEARRCAADPAAAVRGAARPLTIAVATFPDGNVQAGTTRTQEVHRLLEKQQAGASFAITQFFYEAEKYTDFVAEARAAGVTIPILAGLLPTTEPRRLRRVEELTGVRAPQHLLDALDARPDPEAQYAYGTAYGTELAQRVLDAGAPGLHVYTFNKYRPALDLLEGVHLGGRTPAPDDAAPDVRDLAGRPWVPSIPTPAPAVPPGPT0008160_383DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008160-metF-K00297NANA
AK018_058669032-haloacrylate reductaseGTGCGCGCGATCGTGTTCACCGAGCTCGGCGGACCCGAGGTCCTGCACCCCGCCGAGGTCCCGGCGCCGGAGCCGGCCGCCGGCCAGGTCCGCGTCCGCGTCGAGGCGGCCGCTGTCAACGGCTGGGACCTCAAGACCCGCGCTGCCCGGATCCCCGGCGTCCCCCTGCCGGAGTTCCCCGCCGTGCCCGGTCTGGAGGTCGCGGGCGTCGTGGACGCCGTCGGCGACGGCGTGACGGGCGTGCAGCCCGGTGACCGCGTCGTCGGGTTCGCCGACACCGGCGGGTACGCAGAGCTGGCCCTGACCTCCACCTTCGCCCCGGTCCCGGACGACCTCGACCCGACCCGGGCCGTCACCATGCCGGTCTCGGCGGAGACGGCACGCCGCACGCTGCGCGCGCTCGGGGTGGCCGACGGCGACACCCTGCTCGTGCACGGCGCCTCCGGGTCGGTGGGCGAGCTCGCCGTGCAGCTCGCCCGGCGCCGCGGTACGACGGTGATCGGCACCGCGTCGCCGGCGAAGCAGGAGCGGGTCACGACGCTCGGCGCCACGGCGACCACCTACGGGCCGGGCCTGGTCGAGCGGGTGCGCGACCTGGCGCCGTCGGGCGTCGACGCGGTCCTGGACACCTCCGGCGCGGGCGTCCTGCCCGACTCGATCACGCTGCGCGGCGGGACGGAGCGCATCGTCACCATCGCGGATCCGGCGGCGTCCGACCTCGGGATCACCTTCAGCTCGGGCGCCCGGCGGGACCGCGACGCGCTGGCCGAGGACGTCGCCTCGCTCGCCCGGGGCGACCTCACCACGACGCTCGGGGACGTCCTGCGGCTCGACGACGCGGCACGCGCCCACGCGCTGGTCGAGAGCGGCGGGAGCGACGGCAAGGTCGTGCTCGTCCCCTGAMRAIVFTELGGPEVLHPAEVPAPEPAAGQVRVRVEAAAVNGWDLKTRAARIPGVPLPEFPAVPGLEVAGVVDAVGDGVTGVQPGDRVVGFADTGGYAELALTSTFAPVPDDLDPTRAVTMPVSAETARRTLRALGVADGDTLLVHGASGSVGELAVQLARRRGTTVIGTASPAKQERVTTLGATATTYGPGLVERVRDLAPSGVDAVLDTSGAGVLPDSITLRGGTERIVTIADPAASDLGITFSSGARRDRDALAEDVASLARGDLTTTLGDVLRLDDAARAHALVESGGSDGKVVLVPPGPT0013255_9519DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_058671206hypothetical proteinATGGAACGTGAAGAGCGCCTGGCCGTCTTCCTCGACTACGAGAACCTGGCGCTCGGCGCCCGGGAGCACCTGGGTGGGATGCAGTTCGACTTCGGTCCGATCGCGGACGCCCTCGCGGTGCGCGGGCGCGTCGTCACGCGCCGGGCGTACGCCGACTGGTCGTACTTCGACGAGGACCGGCGGATGCTGACCCGCCACCAGGTCGAGCTCATCGAGATGCCGCAGCGCATGGGCGCCTCGCGCAAGAACGCCGCCGACATCAAGATGGTCGTCGACGCGATCGAGATGGCGTTCGAGCGCGACTACATCACCACGTTCGTCATGTGCACGGGCGACTCGGACTTCTCGCCGCTGGTCACCAAGCTGCGCGAGCTCGACAAGAACGTCATCGGCGTCGGGGTCGAGAAGTCCACCTCCCGGCTGCTGCCGGGGGCCTGCGACGAGTTCCTCTTCTACGACCGCCTCGAGGGCGTCGACGTACCCGACGAGACCGAGCAGAGCTCCCGCAAGAAGTCCTCCAGCAAGCGCTCCGGAGGCTCGACGACGCGTGGCGGCGGGGGACGCCGCGGCACGGCGTCGTCCGGTGCCGCCGAGACCGCCGAGGCGCCGTCGTCGGCCGCGAAGAGCCGTCGGAAGAAGACCGAGCCGACCCCGGAGCCCGCGCCCGCACCCGCCGTCGAGCCCGAGCCCGCCCCGGCGCCCGAGGTCGACGAGGACGACACCCCCGCCGTCGAGCCGGCGACCATGGAGGTCAAGGTCGCCCAGACGCTCGCCGGGCTGCAGGCCTCCTCGTCCGGGTCGGTGACCGCCTCCCAGCTCAAGCGCACCCTGGTGCGCAAGGAGCCGACGTTCAGCGAGTCCGACTACGGGTTCCGGACGTTCACCGAGTTCCTGCGGTACCTCGCCGACCGTGACTTCGTCGTCCTCTCCGACGGCCCGTCGTCGGGCGACCCCGTCGTCGAGCTGCCCGCCCAGCCGGACAGCGCGCACGCCTTCGACCTGCTGCGCGTCGTCGTCGGCGAGACCGGGGGCAGCACGCCGCTGTCCGGCCTGAAGAACCTGCTGCGCAAGCAGCGCCCCGACTTCTCGGAGAAGGCGCTCGGCTACCGCGGGTTCCTGCAGTTCTGCAAGGGTGCCGAGGCCGCGGGCGCGGTGCGCCTGGCCTGGGACGACGAGACCGAGGACTACCTCGTCAGCCTGCCCTGAMEREERLAVFLDYENLALGAREHLGGMQFDFGPIADALAVRGRVVTRRAYADWSYFDEDRRMLTRHQVELIEMPQRMGASRKNAADIKMVVDAIEMAFERDYITTFVMCTGDSDFSPLVTKLRELDKNVIGVGVEKSTSRLLPGACDEFLFYDRLEGVDVPDETEQSSRKKSSSKRSGGSTTRGGGGRRGTASSGAAETAEAPSSAAKSRRKKTEPTPEPAPAPAVEPEPAPAPEVDEDDTPAVEPATMEVKVAQTLAGLQASSSGSVTASQLKRTLVRKEPTFSESDYGFRTFTEFLRYLADRDFVVLSDGPSSGDPVVELPAQPDSAHAFDLLRVVVGETGGSTPLSGLKNLLRKQRPDFSEKALGYRGFLQFCKGAEAAGAVRLAWDDETEDYLVSLPNANANANANA
AK018_05868648aas_2Bifunctional protein AasGTGACCTACCGCGTCCTGAAGCTCATCCTGTCGCTCCTGGTGTACGTGTTCCTGCGGCCGCAGGTCAGCGGGCTGCACAACCTGCCGCGGCGTGGGCCGGTCATCCTCGCGAGCAACCACCTGTCGTTCCTCGACTCGATCATCATCCCGCTGGTGACCCCGCGGCACGTCACCTTCATCGCCAAGGCCGAGTACTGGACCGGGCACGGGATCAAGGGGCGGATCTCCCGGTGGTTCTTCACCACGATGGGCCACATCCCCGTCGACCGGGAGGACCCCCGCGCCGGGCAGCGCTCCCTGCAGGACGCCCTGGCCGTGCTGCAGCGCGGGGACGCGTTCGGCATCTACCCCGAGGGCACGCGATCCCGCGACGGCCGCCTGCAGAAGGGGCACACCGGCGTGGCCTGGCTGGCGCTCGCCGGCCCCGCGCCGATCGTGCCCGTGGCGCTGAAGGGGACCGACAAGGTCCAGCCGGTCGGCAAGCGGCTGCCCCGCCCCTACCGCGGGATCCAGGTCGACTTCGGTTCGCCGATCATGCCGCAGCGCCAGCTCCCCGCCGGCATGCGCCCGGCGCAGGCGCGTCGCGAGCTGACCGACGAGGTCATGGCCTCGATCCACGCGATGAGCGGCCAGGAGCTCGACGCCTGAMTYRVLKLILSLLVYVFLRPQVSGLHNLPRRGPVILASNHLSFLDSIIIPLVTPRHVTFIAKAEYWTGHGIKGRISRWFFTTMGHIPVDREDPRAGQRSLQDALAVLQRGDAFGIYPEGTRSRDGRLQKGHTGVAWLALAGPAPIVPVALKGTDKVQPVGKRLPRPYRGIQVDFGSPIMPQRQLPAGMRPAQARRELTDEVMASIHAMSGQELDAPGPT0024380_5655DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
AK018_05869603hypothetical proteinATGTCCCGCGAGGCCCGGCTCGCGCAGATCATCGACGCCACCGTGCGGATCCTGGCCGTGCGCGGTTTTCACGGGCTGAGCCTGCGCGCCGTGGCCGAGGAGCTGGGCCTGAGCGAGGCGGGCCTGCTGCACTACGTGGGCACCAAGGAGGGCCTGCTCGCGCTGGTCGTGGAGCAGGCCTACGACCGTCGGTTCGACCCGGACGACTTCGTCGCCTCCGGCGACCCGGCGGCCACCCACCCCGACGGGGTGTCCTTCCCCGCCTACTGCCGGTTCCTGGTCCGTCACAACGCCGACGACCTGCGGCTCGTCCAGCTGTACTCGGTCCTCAACGCCGAGTCGATCTCCCCCGAGCACCCGGCCCACGACTACTTCGCCGACCGCCCCGCCAAGGTCTGGGAGCTCTACTCACGGACGACGTGGCGGCTCCCCCCGTCCGTGGGCGGCTGGGAGAACATGCGCGACCTCGTCGAGATGTCGATCGAGGCGATGGACGGCATCCAGGTCAGGGCGTTCCGCCGGCCCGCCGTCGACATGTACACCGAGTGGCTGCGGTTCGAGGAGGTCCTGTTCCCCTCCCCGCGGTGGGACGGCTACCGCTGAMSREARLAQIIDATVRILAVRGFHGLSLRAVAEELGLSEAGLLHYVGTKEGLLALVVEQAYDRRFDPDDFVASGDPAATHPDGVSFPAYCRFLVRHNADDLRLVQLYSVLNAESISPEHPAHDYFADRPAKVWELYSRTTWRLPPSVGGWENMRDLVEMSIEAMDGIQVRAFRRPAVDMYTEWLRFEEVLFPSPRWDGYRNANANANANA
AK018_058701311hypothetical proteinATGCAGAGCAGCAACGCGCCGGCGCCGGACGTCGACACCACGGGCCCCCTCGATCCTGCGAGCCTGGCTCCCGACACGGGCCTGCCGGTCGGCCGGGGCCGGATCCTCCGGTTCGGGTCCGGCTTCCTCCTGAACGGCGTGCTCTGGGCCGTCGGACTCGCGATCGTCTCCACCGTCCTGCTGCCGCAGCGCCTCCGTGACGTCGGGTACGACGCCGAGACCGCCGCGGCGCTGTTCGGCACCATCAACGCGGTCGCCGCGGTCGTCTCGCTGGTCGCGAACCTCGTCTTCGGCAACCTGTCCGACCGCACCCGGCTGCCGATGGGCCGCCGCGCCCCGTGGATCGCCGGCGGTGCGGTGCTCGGCGGCGTCTCCCTCGCCCTGACCGGCTTCCTGAACAGCGCCGTGACGATCACCCTCGTCTACGCCGTCGCCATGGTCGGGCTGAACATGATGCTCGCCCCCGCGCTGGCCGTGCTGGCCGACCGGGTCCCGCCGAAGGCACGGGGGACGATGTCGGCCTTCTACGGCACCGGTGTCGCCGTCGGCTACCCGCTCGGCTCGCTCGTGGGCGCCGCCTTCATCTCCTCGACCACCCCCGGGTTCCTCGTCGGCGGCGTCCTCCTCCTCGCCGGCGGTGTCGCGGCCCTCGCGCTGTGGCCCCGGGAGGTCTCGGCCGCGACGCTGCCCCCGGCCGCCGGCGGTCTGCGGGACCTGGTGCGTTCCTTCCGTCCGCCGCAGCACGCCCCGGACTTCTACTGGGCCTTCGCCGGGCGCCTGTTCATGCTGCTCAGCTACCAGATGATCTTCGCCTTCCAGCTGTACATCGCCCAGGACTACCTCGGGCAGACCACCGAGCAGTCCGCCGCGACGATCGCCGTCACCTCGGTCATCGTCCTCGTCGTGTCGCTGCTCGGGTCGGCCGCCGGCGGACCGATCTCCGACCTGCTGCGTCGCCGCAAGCTGCCGGTGGTGCTGTCCAGCGTCCTGTTCGCCGTCGGCATCGCCATGCCGTGGCTCCTCCCGACGACGACCGGCCTCTACCTCTTCGCGGGGATCGCCGGGTTCGGCTACGGCGTCTACACGTCGGTGGACCAGGCGCTCAACGTCGACGTGCTCCCGGACCCGGAGACGGCCGGCAAGGACCTCGGCATCCTCAACCTGTCCACGACGCTCGGCCAGACCGCCGGTCCGCTGGTGACCGGCTGGCTGGTCGCCGGGTTCGGCGGGTACGGCGCCGCCTTCCCCGTCTCGATCGCCGCGGCGCTCCTCGGTGCGTTCGCGATCACCCGCATCCGTGCCGTCCGCTGAMQSSNAPAPDVDTTGPLDPASLAPDTGLPVGRGRILRFGSGFLLNGVLWAVGLAIVSTVLLPQRLRDVGYDAETAAALFGTINAVAAVVSLVANLVFGNLSDRTRLPMGRRAPWIAGGAVLGGVSLALTGFLNSAVTITLVYAVAMVGLNMMLAPALAVLADRVPPKARGTMSAFYGTGVAVGYPLGSLVGAAFISSTTPGFLVGGVLLLAGGVAALALWPREVSAATLPPAAGGLRDLVRSFRPPQHAPDFYWAFAGRLFMLLSYQMIFAFQLYIAQDYLGQTTEQSAATIAVTSVIVLVVSLLGSAAGGPISDLLRRRKLPVVLSSVLFAVGIAMPWLLPTTTGLYLFAGIAGFGYGVYTSVDQALNVDVLPDPETAGKDLGILNLSTTLGQTAGPLVTGWLVAGFGGYGAAFPVSIAAALLGAFAITRIRAVRNANANANANA
AK018_058711344hypothetical proteinATGACCACCACGTGGCACACGTCCGACCCGACCGTGCGCTGGCGGGACGCCGGGGCGCCCCGCCCCGGCGCGACGTCGGACAAGGGCCTGACGCTGACGGCCGACCGCGGCCGGGAGCTGCTCGGGTTCGGCGGGACGTTCAACGAGCTCGGCCACCGGGCGATCAGCGCCCTGCCCGCGACGGACCAGGAGCAGGTGTACCGCGAGCTCTTCAGCCCGGACGAGCTCAACCTGCGGGTCAACCGGTCGCCCGTCGGGGCGAACGACTTCGCGACCGCCTGGTACAGCTACGACGAGACGCCGGGTGACCTGGCGCTCGAGGACTTCACGGTCGAGCGCGACGAGGAGCGGGTGATCCCGTACATCCGGCAGGCGCAGCGCTACCAGCCCGACATGGTGCTGCACTGCTCCCCGTGGAGCCCGCCGACCTGGATGAAGAACCCGCCCGTGTACAACCACGGCCGGATCGTCACCACGCCGGAGAACCTCGACGCGTACGCCCGGTACTTCGTCCGGTTCGTCCAGGACTACGCCGAGCGCGGCATCCGCGTCGACCAGCTCCACGTGCAGAACGAGGTCTTCGCCGACCAGAAGTTCCCGTCGTGCGTGTGGAGCGCCGAGGACCTGCGCGTCTTCGTCCGCGACCACCTCGGGCCCGCCTTCGAGGCGGCGGGGCTGACGACGAAGATCTTCCTCGGCACCCTCAACGGGCCCGAGGACATGGCCTTCACGGCGTCCGACCAGGTGCTGACCAACTACTCGGGGTACGTCGACCACATCCTGTTCGACGACGACGCCCGCCGCTACGTCGCCGGCGTCGGCTATCAGTGGGCGGGCCAGCACGCGATCGCCCGGACCCACGAGACGTGGCCGGAGCTCGAGCTGATGCAGACCGAGTCCGAGTGCGGGTTCGGGAGGAACAGCTGGCAGGACGCCGAGTACGTGTTCCACCTGGTGCGGCACTACCTGCAGCACGGCGCCACGGGGTACACGTACTGGAACATGGCGCTCGAGCCGGGAGGCCTGAGCACCTGGGGATGGCCGCAGAACTCGCTGTTCACGATCGACCCGGCCTCGGGCGAGATCGTGCGCAACCCCGAGTACTACGTGCTCAAGCACTACTCGTCGGCCGTCCGCCCCGGCGCCGTGCGGCGCGGGGCCACCGGCCGGTTCGCGGCCCAGGGGTCGGTGTACGAGAACACCGACGGGTCGCTGGCCGTCGTCGTGCAGAACGCGCTCGACCGGCCCGAGGAGTTCTCCTTCTCCGACCCCGAGGACCCGTCGACGGCGTTCACGGCCGAGCTGGCACCGCACTCGCTGAACACGTTCGTCGTGCGTCCGTGAMTTTWHTSDPTVRWRDAGAPRPGATSDKGLTLTADRGRELLGFGGTFNELGHRAISALPATDQEQVYRELFSPDELNLRVNRSPVGANDFATAWYSYDETPGDLALEDFTVERDEERVIPYIRQAQRYQPDMVLHCSPWSPPTWMKNPPVYNHGRIVTTPENLDAYARYFVRFVQDYAERGIRVDQLHVQNEVFADQKFPSCVWSAEDLRVFVRDHLGPAFEAAGLTTKIFLGTLNGPEDMAFTASDQVLTNYSGYVDHILFDDDARRYVAGVGYQWAGQHAIARTHETWPELELMQTESECGFGRNSWQDAEYVFHLVRHYLQHGATGYTYWNMALEPGGLSTWGWPQNSLFTIDPASGEIVRNPEYYVLKHYSSAVRPGAVRRGATGRFAAQGSVYENTDGSLAVVVQNALDRPEEFSFSDPEDPSTAFTAELAPHSLNTFVVRPPGPT0018770_1103DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCCOSYLCERAMIDASE,PGPT0018770-srfJ|xynC-K01201NANA
AK018_058721152hypothetical proteinATGGACGGATCCGAGGGTCACGAACGGCACCACGACCTGCGCGCGGCGCCGACGGCGCACCCGTCCCAGCGGCCGCACCTGGCCGCCGTCGTCGAGGACGCCTTCTACGACGTCGTGGGACGGGTCCTGCGCCGGCTCGGCTGGCGCCCGCGGCTGCTTGTGTACACGGGGTACGGCACGCCGGAGAAGGTGCGGGTGATGGCGCGCGTGCTGCTCGCTCCCGCCGGCGCGGCCCGGCGCGACGACCGTCGTCCGCTGCGGCGCGGGTTCCGGCACTTCCTCACGGTCCCGGCACCCGACAGCCCGGTCCGCGTCCGCGTGGGCACCCACGAGGTCGACAGCGTCACCGACCGGGCGGGGTACATCGACCTCGAGCTCACGCTGCCGGAGGGGGACACGCTGCCGGCCGGGCGCCAGGAGGCGGTGCTGACGAGCCTGGAGTCGCCGGAGGCGCCCTCGCCCCCGGCGCCGCTGCTCGTGCTCGACGGCGCGACACGCTTCGGTGTCGTCAGCGACATCGACGACACCACCCTGGTGACCGGTGTCCCCCGCCCGCTGCTGGCCACCTGGAACACGTTCGTGCGCCGGGCCGGGTCGCGCCGCGCGGTGCCGGGGATGGCGGCCCTGTACCGCACGCTGGAGGAGGCGCACCCGGACGCCGGGTTCTTCTACGTCTCCAACGGCGCGTGGAACACGGCCGCCGCCCTGCGGGCCTTCCTGGCCCGCAGCGGCTACCCGGCCGGCCCGCTGCTGCTGACCGACTGGGGGCCGACCCTGACAGGGTGGTTCCGCAGCGGCCCGCAGCACAAGCGGGCGAGCATCGACCTGCTCATGTCCTGGTTCCCGCACGTGCGATGGCTGCTGGTGGGCGACGACGGGCAGCACGACCCGGAGATCTACGCCGACGCCGTGCAGCGCTGGCCGGACCGGGTGTGCGCGGTCGCGATCCGGCAGGTCGCGCACGCGGGCGGGAACGACGCCGGGAGCGACGCCGTCGAGCACGAGCGAGCAGGGGACGAGCGACCGGGGTCGGGGCCGACGACGGCGGACCCGGCCGGCGGCGGGGAGCCCGGCACACCGGTGGTCCGGGGCCGCGACGGTGCGGTGCTGGCGGAGCGGCTGGGGCGCCTGCCCGGGGTGCTCGACGGCTGAMDGSEGHERHHDLRAAPTAHPSQRPHLAAVVEDAFYDVVGRVLRRLGWRPRLLVYTGYGTPEKVRVMARVLLAPAGAARRDDRRPLRRGFRHFLTVPAPDSPVRVRVGTHEVDSVTDRAGYIDLELTLPEGDTLPAGRQEAVLTSLESPEAPSPPAPLLVLDGATRFGVVSDIDDTTLVTGVPRPLLATWNTFVRRAGSRRAVPGMAALYRTLEEAHPDAGFFYVSNGAWNTAAALRAFLARSGYPAGPLLLTDWGPTLTGWFRSGPQHKRASIDLLMSWFPHVRWLLVGDDGQHDPEIYADAVQRWPDRVCAVAIRQVAHAGGNDAGSDAVEHERAGDERPGSGPTTADPAGGGEPGTPVVRGRDGAVLAERLGRLPGVLDGNANANANANA
AK018_05873459hypothetical proteinATGGATCTCGCCGAGCTCACGAAACCGACGCCCACCTCCCTGCCGCGGACGGTCGCCAGGGTCTGGCTCGGGCTGACCCTCGCCGGCGCCGGCGTCTCGCACCTGACCGTCGCCCGGGAGGAGTTCCGGGCCCAGGTGCCGGGCTGGTTCCCCGTCGACGAGGACGTCACGGTGCTCGCCTCGGGCGTGGTGGAGATCGTCGTCGGCGGCTCGCTGGTGGCCCTGTCCCGCTGGAAGGTGGCGGTCGGTCTCGTCGCCGCGGCGTTCTTCGTCGTGATCTTCCCCGGCAACATCGCCCAGTGGCTCGAGCACCAGGACGGCTTCGGGCTCGACACCGACGCCAAGCGGTTCGGACGGCTCTTCTTCCAGCCGGTGCTCGTGGCGCTCGCCCTGTGGTCGACCGGCGCCTGGGCGGCGACGCGGCGGGCGCTGGACGACGGCGGTCGCTCCGACGGGTGAMDLAELTKPTPTSLPRTVARVWLGLTLAGAGVSHLTVAREEFRAQVPGWFPVDEDVTVLASGVVEIVVGGSLVALSRWKVAVGLVAAAFFVVIFPGNIAQWLEHQDGFGLDTDAKRFGRLFFQPVLVALALWSTGAWAATRRALDDGGRSDGNANANANANA
AK018_05874471hypothetical proteinATGAGCGACAGCGACCTGCCCGACGGCGAGCACACGACGCCTCCCGGCGTCTCCGACGCCACGGTCGAGGCGCTCGGCGCGTTGAGCGAGGCGTTGGAGACGGTCGAACGTGCCCGCGGCCACCTGTACACGTTCCACCAGCTCACGGGCGAGGCGGACCTGGCGCTCGGCGCCGCCGTCGACCAGCTCCGCGAGGCCGGGCACGACGACGTCGCGCGGCGGATCGCGGAGGACCTCGTCGGCCGCAACGTGCTGCCGGGCCGGTGGACCTTCCAGATCGTCGAGGACTACGACGACGGCTACTGGGAGGTGTTCCGCGACCACGAGCGGCGTGCCCGCGAGGAGCTCGTCGGAGGCGTCCGCCACCTGGCCGAGGCGCGGATGAAGCAGGACCGCCGGACTCCCGGGCGCCCGGGGCACGAGGTGTCACCGGGGGACGTCGATGGCTACTGGCCGGACGCGACGTCCTGAMSDSDLPDGEHTTPPGVSDATVEALGALSEALETVERARGHLYTFHQLTGEADLALGAAVDQLREAGHDDVARRIAEDLVGRNVLPGRWTFQIVEDYDDGYWEVFRDHERRAREELVGGVRHLAEARMKQDRRTPGRPGHEVSPGDVDGYWPDATSNANANANANA
AK018_05875588tag_2COG2818DNA-3-methyladenine glycosylase 1ATGACGCAGCCCGACCGTCCCGCGCGTTGCTTCGGCGACGACGACCCGCTCTACGCCGCATACCACGACACCGAGTGGGGCCACCCGGTGCACGGGGAGGCCGCCCTGCTCGAGCGCATCGCGCTGGAGGGCTTCCAGTCGGGGCTGTCCTGGCTGACGATCCTGCGCAAGCGCGAGGCGTTCCGGGAGGTGTTCGGCGGTTTCGAGCCGCCGGCCGTGGCCGCGATGACGCCCGACGACGTCGAGCGCCTGATGGGTGATGCCCGGATCGTGCGCAACCGCGCCAAGATCGAGGCGACCGTGGCCAACGGGCGTGCCGTCGTGGCGCTGCACGACGCCGGCCGGAGCCTGGACGAGCTGTTCTGGTCGTTCGCGCCGCCGCCGCGCGACCGGCGGCCGGCGTCCCCCGCCGAGGTCCCGGCCACCACCCCGGAGTCGAAGGCCCTGGCCATGGCACTGAAGTCCGAGGGCTTCCGGTTCTTCGGGCCGACGACGGCGTACGCCGCGATGCAGGCGTGCGGCCTGGTCGACGACCACCTGGCCACGTGCCCCGTCGTCACCGGTCAGGACGTCGCGTCCGGCCAGTAGMTQPDRPARCFGDDDPLYAAYHDTEWGHPVHGEAALLERIALEGFQSGLSWLTILRKREAFREVFGGFEPPAVAAMTPDDVERLMGDARIVRNRAKIEATVANGRAVVALHDAGRSLDELFWSFAPPPRDRRPASPAEVPATTPESKALAMALKSEGFRFFGPTTAYAAMQACGLVDDHLATCPVVTGQDVASGQNANANANANA
AK018_058761272kasA_1COG03043-oxoacyl-[acyl-carrier-protein] synthase 1ATGCGGCACAGTGGCGGCAGAAGGTTGCGCCGGGCGGCGGACGGCGCGAGGGAGGACGGGGAGCGCGTGCACGAGACGGTGATCACCGGGCTGGGGGCCGTGACCCCCGTCGGCCTGAGCACCAAGGAGACGTGGCACGCACTCACGGCCGGGACCTCCGGAGTGGGGCCGCTGACGCAGGACTGGGCGCGGGACATCCCCGTCCGCATCGCCGCGGAGGTCGACGACGCCTTCGCCGATCCCCTCGGGACCGCCCTGCGGCGCCGGACGGACCGCAGCGAGCAGCTCGCCGTCGTCGCGGCCCGCCAGGCGTGGGAGCAGGCCGGCCGTCCCGAGGTCGAGCCCGAACGGCTCGGGGTGGCCGTCGGCACGGCCAACGGCGGCTTCGGGACGACCGTCTCCCAGCAGGACCTGTTCCGCGCCGGCGGCCACCGGAGGGTCAGCCCGCACGCGATCACCATGGTGATGCCGAACGGCCCCGCCGCCTGGACCTCGATCGACCTCGGCGCGCGGGCCGGGGCGCGGGCGCCCGTCAGCGCCTGCGCGGCCGGGGTCGAGGCGATCCTCACCGCCCGGTCGATGATCCGGTCCGGGGACGCCGACGTCGTCGTCTGCGGCGGGGTCGAGTCCAGCATCGTCGACCTGTGCCTGTCCGGCTTCGCCCGGGCCCGGGCGATGTCGACCCGCAACGACTCCCCGCAGCAGGCGTCCCGCCCGTTCGACCAGGACCGGGACGGGTTCGTCATGGGCGAGGGGTGCGTCGTCCTCGTGCTGGAGTCCGAGCGGCACGCGCGGGCCCGCGGGGCACCGGTGCTCGGTGCCGTCACCGGCGGCGCCCTGACCTCCGACGCCCACGACATCGTCGGCGGCGAGCCGGGGAACCAGGCCCGCACGATCGGGATGGCGCTGCGGTCGGCGGATCTGGACCCGGGCGACGTCGGCCTCGTGCACGCCCACGCCACCTCCACGCCGTCGGGCGACCTCAACGAGGCGCTGGCGCTGAGCAGCGTCTTCGGCACCCCGCCACCGGTGGTGGCCACCAAGGCCTCGACCGGTCACCTCATGGGTGCCTCAGGTGCGCTCGGGGCGCTGGTCGCCCTGCTGGCGATGCGTGACGGCGTCGTCCCGCCGACGCTCAACCTCGAGGCGCCCGACCCGCAGATCGACCTGGACGTGGTCACCGCGCTGCGGCCGACGACGGCGCGGCACGCCCTGGTCGACGCCTTCGGGTTCGGCGGGCACAGCGCCTCGCTCGTGGTGTCGGCGGCCTGAMRHSGGRRLRRAADGAREDGERVHETVITGLGAVTPVGLSTKETWHALTAGTSGVGPLTQDWARDIPVRIAAEVDDAFADPLGTALRRRTDRSEQLAVVAARQAWEQAGRPEVEPERLGVAVGTANGGFGTTVSQQDLFRAGGHRRVSPHAITMVMPNGPAAWTSIDLGARAGARAPVSACAAGVEAILTARSMIRSGDADVVVCGGVESSIVDLCLSGFARARAMSTRNDSPQQASRPFDQDRDGFVMGEGCVVLVLESERHARARGAPVLGAVTGGALTSDAHDIVGGEPGNQARTIGMALRSADLDPGDVGLVHAHATSTPSGDLNEALALSSVFGTPPPVVATKASTGHLMGASGALGALVALLAMRDGVVPPTLNLEAPDPQIDLDVVTALRPTTARHALVDAFGFGGHSASLVVSAAPGPT0008360_7645DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
AK018_05877522ymdB_1COG2110O-acetyl-ADP-ribose deacetylaseGTGCAGATCACCATCGAGCAGGGCGACATCACCACCGTCGAGGTCGACGCGATCGTCAACGCCGCCAACTCCTCGCTGCTCGGCGGCGGCGGGGTGGACGGCGCGATCCACGCGGCGGCCGGGCCGCGGCTGCTGGAGGCCTGCCGCGAGCTGCGCCGCTCCACGCTCCCCGACGGCCTCGGGGTGGGCGACGCCGTCGTGACCCCCGGCTTCGACCTGCCGGCCGACTGGGTCGTGCACACCGTCGGGCCCAACCGTCACCAGGGCGAGACCGACCCGGAGCTGCTCGCCTCGTGCTTCCGCACGTCGCTCGGGCTGGCCGCCGACGCCAAGTCCCGCACCCTCGCGTTCCCGGCCGTCAGCGCCGGCGTCTACGGCTGGGACGCCGACGAGGTCGCGCGGATCGCGGTCGACACCGTCCGCGCCTGGGACGACGAGAACCCGGCCGCGCTGGACGAGGTGCGGTTCGTACTGTTCAGCCAGGACGTGCGCGACGCATTCTCCCGCACGGCGCAGGGCTGAMQITIEQGDITTVEVDAIVNAANSSLLGGGGVDGAIHAAAGPRLLEACRELRRSTLPDGLGVGDAVVTPGFDLPADWVVHTVGPNRHQGETDPELLASCFRTSLGLAADAKSRTLAFPAVSAGVYGWDADEVARIAVDTVRAWDDENPAALDEVRFVLFSQDVRDAFSRTAQGPGPT0027680_2033DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-darG-darT_TOXIN-ANTITOXIN_SYSTEM,PGPT0027680-antitoxin_darG-K23518NANA
AK018_058781176araR_1COG1609Arabinose metabolism transcriptional repressorGTGAGCTCCGGGACCGAACACCGCTCCACGCTCCCGGCGGAGCGCCGCGCACACCTGCTCGCGGCGCTGGAGCGCGACGGCGTCGTCCGCGTCGCCGACCTGACCGCCGAGCTCGACGTCACCGCGGTGACGATCCGCCGGGACATCGGCCAGCTCGAGAGCGAGGGCCTGCTGCGCCGCGTGCACGGCGGCGCGGTGGCGGTGGGCACCCCGGGGGCGCCGACGGGCCGAGCGCCCGGACCGCCGGCGGCCCCGGGCACCGGGCCCGCGCCGTCGGCGACGCCGTCGGACACCCCCGGCGCGGTCGGCCCGGCCTCGAGCACGGGGACGATCGGCGTCCTCGTGCCCTCGCTCGACTACTACTGGCCCGGAGTCGTGCGCGGCATGGAGGCCGAGGCCCGCCGCCACGGCCTGCGCATCGTGCTGCGCGGGTCCTCCTACGACACGACGGACGAACGCCCCACGCTCGAGCGGCTGGCCCGGTCCGTGGCGACGGACGCCCTGATCGTGGCCCCGCGGACCGACGCCGGTCACGGGGCCGAGGCCGCGCGGTGGCTGGTCGACAGCGGGCTGCCCCACGTCCTCGTCGAGCGCGAGGCCGCCCTGGCCCCGCACCGGGAGGCCCTCGAGTCGGTCGTCTCCGACCACGCCCTCGGCGCTCTGATGGCGGTGCACCACCTGGCCGATCTCGGCCACCGCCGCGTCGGGCTCGTGCTGTCGCGCGAGTCCCCCACGTCCCGGAAGGTGGCCGCGGGGTGGCGTGCGGCCTGCGCCGAGCTCGGGCTGACCACCGACGAGCACTTCGAACGCCTCGCCCCCGACCGCCGCACCCCGGAGTTCGCGGGCGTCGTCGACGAGGTCGTCGAGACCGTCGTGGCCTCCGGCACGACGGCGCTGCTGGTGCACTCGGACCCCGAGGCCTCGGCCGTGGTGCAGCGCGCCGTGGACCACGGCCTCTCCGTCCCGGGCGACCTGTCCGTCGCCTCCTACGACGACGAGGTGGCCGAGCTGTTCAGCCCGGCCCTGACGGCGGTCCGGCCGCCGCGGGCCTGGGTGGGCCGGGCCGCGGTCGACCTGGTGGCACGCCGCCTGGCCGATCCCGCCCGGCCCGTGCACCGCGTGGCCATCAGCCCCCAGCTCGTCGTGCGGGAGTCGACGGGTCCGGCGCCGTCGTGAMSSGTEHRSTLPAERRAHLLAALERDGVVRVADLTAELDVTAVTIRRDIGQLESEGLLRRVHGGAVAVGTPGAPTGRAPGPPAAPGTGPAPSATPSDTPGAVGPASSTGTIGVLVPSLDYYWPGVVRGMEAEARRHGLRIVLRGSSYDTTDERPTLERLARSVATDALIVAPRTDAGHGAEAARWLVDSGLPHVLVEREAALAPHREALESVVSDHALGALMAVHHLADLGHRRVGLVLSRESPTSRKVAAGWRAACAELGLTTDEHFERLAPDRRTPEFAGVVDEVVETVVASGTTALLVHSDPEASAVVQRAVDHGLSVPGDLSVASYDDEVAELFSPALTAVRPPRAWVGRAAVDLVARRLADPARPVHRVAISPQLVVRESTGPAPSNANANANANA
AK018_05879672hypothetical proteinGTGCAGGCCGGCCAGGTCACCACCCTGGTAGAACCCCTTGTCCGTCGGGTCGAACCCGTGGTCGAGGGCGTCGCCCTCGATGCCGCCCGTGTCGTTGGTGGTGTCGCCGTTGGCGAACCGGTCGGTCATGACGAAGTAGAACTGCTCGTCGCCGCCGGCCTGCCGGGCCGGTGCCGCGACGAGCGCGTCGTCCGTGGCGGCGTCGTACTCCCCCGCGAGCTCGACCGGGGTGAGCGCGGTCAGGTGGGTGGCGTCGTCGTAGGTGACGCGCAGGCGGGTGTCACCGCCGAGCACGAGGGGTGCGTCGTCGCCGCCACCGTCGCGACCGTAGGCCTCGTCCCAGGCGTCGTCGATCGCGACCTTGTACGCGTAGGTACCGGCCGGGACGTCGAACTCGGCACTGTAGGTGCCGTCGCCGGCGGGCGCGAGCTCCGTGGCCTCGCAGGCGGGGTCCCAGTCGGCGCCGCAGCCGAGCTCGTCCTGGAGGTCGCCGACGAGGGCGACGGTGCGGTCCGCGGCGCCGGCAGCGGGGGCTCCCGCGAGCGCGACACCCCCGGCGACGGCGGGGACGGCGACGGCGAGCGCCGCCAGGGAGGCGATCGCACGACGGGGCGCCGTGGGAACCGGTACCGCGGGCGGCGGGACCGCCCGGGATGGCACCGCGTCCGTTGAMQAGQVTTLVEPLVRRVEPVVEGVALDAARVVGGVAVGEPVGHDEVELLVAAGLPGRCRDERVVRGGVVLPRELDRGERGQVGGVVVGDAQAGVTAEHEGCVVAATVATVGLVPGVVDRDLVRVGTGRDVELGTVGAVAGGRELRGLAGGVPVGAAAELVLEVADEGDGAVRGAGSGGSRERDTPGDGGDGDGERRQGGDRTTGRRGNRYRGRRDRPGWHRVRNANANANANA
AK018_058803564btuD_25Vitamin B12 import ATP-binding protein BtuDGTGATCGACGCTCCCGCACCCCCGACCGGGCGGCCGGCCGTCGCCGACGACTCGGCGCGGCGCCTGGACTGGCGGCGCCTGCGGGGGCCCGTGAGCGCCGTCGCGCTGGTCGCGCTCGCGGTCGGGACGGTCGGGACCGCGCTGGGGACCGCCGTCGCGGGCGGGCTCGCCGCCGACCCGACCCGCACCGGGGTGCTGCTGCTCACGCTATGCCTGGTGGGCGGGGCCCTGCTCGACGCCGTCGGCCAGGTCGCGTGGGCCGGCGTGGTCGACCGCGCCGAGGGACGGCTGCGCGGCGACCTGCTCAGCGCGGCGCTGCACCAGCCGCTCGGCGTCCTCACCGAGCAGGCCGTCGGCGAGATCCTCGACCGGGTCGACGACGACACGCACGCCGTCGGGGCGCTCGCCCGACGGCAGCTGTGGGGCATGGGCCGCACCGTCTTCGGCGTCGTGCCGATCTGGGTGGTGGCGGGTTTGACCTGGTGGCCGGCCGCGATCCTGTTCCCGCTGCTTGGCGCGGTCGTGTGGTGGCTCGTGCGGCCCCTGCTCGGGGAGATCGCCCGACGCAAGGTGGTCGAGGAGCGCGCCTGGACCGACAACGCCGCCGTGCTCGAGGAGGGCGTCGCCGCCCGCGACGACCTGCGCACTGCGGGCGGGCAGGCCTTCGCCCTGCGCGGCCTCGCGGAGATGTCCGCCCGCGTGCACCGCACCCTGCTCGCCGTGGTCCGGGTGGAGACCCGCCTCATGGGACGCGCCGGCGTCCTGCTGCACGCGCTGCTGGCCGGCGTCGTCGTGGCCGGGGTGGCACTCGCCGCCGGCGGCAGCATGTCGGTGGAGCGGCTCGTCACGCTGTTCCTCGCCACGTCGCTGTTCGTGGGGCAGGTGGACCGCCTGGCCCAGCACCTGCCGGACCTGCAGGAGGGGCTGGGCGCCGTGGTGCGCATCCGCCAGCTCCTCGACAGCGAGCCGGAGCCGTCCGGCGGTGCGGCGCTGCCCGACCGGCCGCTCGACATCGAGGTGCGCGGGCTGCACTTCGCCTACGCCGAGGGCACGTTCGCGCTGCAGGACGTCTCCTTGGCAGTGCCGGCCGGGCAGACCGTCGCCTTCGTGGGACGGACCGGCTCGGGCAAGACGACGCTCGCCTCCCTGCTGTCGCGGGCGGTCGAGCCGCCGCGGGGTGCCGTCTTCCTCGGGGGCGTGGACGTGCGCGACGCCGACCTGCAGCACCTGCGCGCCGGCGTCGGAGTGGTCACGCAGCGCACCGAGATCCTCGCGGGCACGCTCGCGCAGAACATCACGCTGTTCGCCGACGTGCCGCGCGCGGACGTCGAGGCCGCCGTGCGCGAGCTCGGGCTGACCGACTGGGTGGCCGGGCTGCCGGACGGGCTCGAGACGCTGCTCGGACCGGGCGGCACCTCGCTGTCGGCGGGGGAGGAGCAGCTCGTCGCGTTCGCGCGGCTGCTCGTGCGCGACGTGCGCCTGGTGGTGCTCGACGAGGCGACCGCCCGCATGGACCCGCACACCGAGGCGCGCGTGGTCGCGGCCTCGGAGCGCCTGCTCGCCGGTCGGACCGGCGTCGTCGTCGCCCACCGGCTCGGCACGGTGCGCCGGGCGCACCGCGTCGTCGTGCTCGACCACGGCCGCGTGCTCCAGCAGGGCGCGTCCCAGGACCTGGCCCGCGCGGCCGGCCCGTTCCGCGACCTGCTGGCCGCCGGGGGCGAGGCGGCGCTGCTCGACGGCGCGAGCCCGTCCGACCCGTCCGACCCGTCCAACCCGTCCGACCCGTCCGAGGGCGACGGCGTCGCGCCCGGTGGGGCCGGCGGCGTCGGCGGCCGGCGCCGGACCGGGGAGGCGCCGGTGCTCGCCGAGCCCGCCGGCGGCCCGAGCCTGGCGCGCAGCGTGCTGCACGCGCTGGTGACCCGCCCGCGCTGGGGTCTGGCGGGCGCGGTGCTGTTCCTGCTCACCAGCTTGTTCGCCGCGCAGGGGGCGCTCGCCGGTTTCCTGTGGGGGCGTGTCGTGGAGTCCCTGGCCGACGGCGGCGTGCCGCTGCTGCTGACCGCTGTGCTCGTGGTGATGCTGCTCGCCGCGCCGCTGTGCCTGGCCGTCGCGATCCGCCTGTACCCGTCGTGGTGGATCGAGCTGCTGCTGCGCGTGCGGGTGGGTGTCCTCGTGGGCCAGACGCGTCGCCACCGGCTGCGCCGGTCACCTCCGGGCGAGGTGGTCGCCCGTGCGCTCGACGCCGACCGGTTCGTGCTCTACGTCGACCGGTGGGTGGACCTGATCAACGGGTTCCTGGTCGTCCTGGTGACCTGGGCGGTGAGCGGGTCGGCCCTGGCGGGCCTGGTGCTGCTCGCCGTCATGGTCGTGACGGCGGTCTGCGCGCTGGCGGGCCGGCCCGTGGCGGGGCGCACGGCCACGCGCTCCGCCGAGGCCCGTGCCGGGTTCGGGCGCGCGCTGGTCTCCGTGCTGGACGCCGCGCGGACCGTCAAGCTCGCGGCCCGCACGCCGCAGACGCGCCGCCACCTGGACGAGGTCGACGCCGGTCGCGTCGAGGCCGCGATCCGGGAGCACCGGGTCCAGGCCGTGCTCGACGGGATCCCGACCATCATGGTGCAGGCCGGTGTGGTCGTGTCGTGGGCGCTCCTGCTCGCCGGGACGTGGGACCTGGCCACCACGCTGCTCGTCACGGCCGCGGTCGGCGGGTTCGCCTACTTCGGGGTGGTGGCCGGCGCGGTGATCACCGAGGCGCCCGGGACGCGCGCCTGGCTGCGCGCCACCCAGACGTTCGCCGCGGGGGCGGACCTCACCCGGCTGCCGGCCGGCGTCGACCTGGCCGCCGGCACCGCACCCGCACCCGTGTCCCCGGCGCCGCCGCTCGCGCCGCTGCGGCAGCTGGAGCTGCGCGGCCTGGAGGCGGTGCACGACGACGGCACGATCGGCGTGACCGACGTCGACCTGCGCGTCGAGCGGGGTGAGCTGGTGCTGCTGCTCGGGCAGGTGGGATCGGGCAAGTCGAGCCTGCTGTCGGCGCTCGCGGGCCTCATGGCCCACCGCGGCGAGGTGCGGTGGGACGGCGAGGCCGTCACGGACGCCGAGACGTTCCTGCGTCCTGCCCGGGTCGCGCACGTCGCCCAGGTGCCGCGGGTGCTGTCGGGGACGTTCGCCGAGAACGTCGCGCTGGACCACGCCCGCGACGTCGTGGGGCCGCTCGAGGCGGCCCGGATATCGCCCGACGTGGCCGACGCCGGCGGCCTGGACGCGCTGGTGGGGCACCGGGGGGTGCGGCTCTCGGGCGGGCAGGTGCAGCGGCTCGCTCTGGCCCGCGCGTTGGCGACGGGCTCCGAGGTGCTGCTCGCCGACGACGTCTCCAGTGCCCTGGACGCCGCCACCGAGGTCGAGCTGTGGGCGGCGCTGCGGGCGCAGGGGCTGACGGTCATCGGCTCGACGTCGAAGCGGGCGGCCCTGGCGCGGGCCGACCGGGTCGTGGTGCTCGTCGAGGGGCGTGTCGCCGCCGTGGGGCCGTGGGCGGAGCTGGCACGGCGCTGGACGCACCTGGCGGGGTGAMIDAPAPPTGRPAVADDSARRLDWRRLRGPVSAVALVALAVGTVGTALGTAVAGGLAADPTRTGVLLLTLCLVGGALLDAVGQVAWAGVVDRAEGRLRGDLLSAALHQPLGVLTEQAVGEILDRVDDDTHAVGALARRQLWGMGRTVFGVVPIWVVAGLTWWPAAILFPLLGAVVWWLVRPLLGEIARRKVVEERAWTDNAAVLEEGVAARDDLRTAGGQAFALRGLAEMSARVHRTLLAVVRVETRLMGRAGVLLHALLAGVVVAGVALAAGGSMSVERLVTLFLATSLFVGQVDRLAQHLPDLQEGLGAVVRIRQLLDSEPEPSGGAALPDRPLDIEVRGLHFAYAEGTFALQDVSLAVPAGQTVAFVGRTGSGKTTLASLLSRAVEPPRGAVFLGGVDVRDADLQHLRAGVGVVTQRTEILAGTLAQNITLFADVPRADVEAAVRELGLTDWVAGLPDGLETLLGPGGTSLSAGEEQLVAFARLLVRDVRLVVLDEATARMDPHTEARVVAASERLLAGRTGVVVAHRLGTVRRAHRVVVLDHGRVLQQGASQDLARAAGPFRDLLAAGGEAALLDGASPSDPSDPSNPSDPSEGDGVAPGGAGGVGGRRRTGEAPVLAEPAGGPSLARSVLHALVTRPRWGLAGAVLFLLTSLFAAQGALAGFLWGRVVESLADGGVPLLLTAVLVVMLLAAPLCLAVAIRLYPSWWIELLLRVRVGVLVGQTRRHRLRRSPPGEVVARALDADRFVLYVDRWVDLINGFLVVLVTWAVSGSALAGLVLLAVMVVTAVCALAGRPVAGRTATRSAEARAGFGRALVSVLDAARTVKLAARTPQTRRHLDEVDAGRVEAAIREHRVQAVLDGIPTIMVQAGVVVSWALLLAGTWDLATTLLVTAAVGGFAYFGVVAGAVITEAPGTRAWLRATQTFAAGADLTRLPAGVDLAAGTAPAPVSPAPPLAPLRQLELRGLEAVHDDGTIGVTDVDLRVERGELVLLLGQVGSGKSSLLSALAGLMAHRGEVRWDGEAVTDAETFLRPARVAHVAQVPRVLSGTFAENVALDHARDVVGPLEAARISPDVADAGGLDALVGHRGVRLSGGQVQRLALARALATGSEVLLADDVSSALDAATEVELWAALRAQGLTVIGSTSKRAALARADRVVVLVEGRVAAVGPWAELARRWTHLAGNANANANANA
AK018_05881987mdhCOG0039Malate dehydrogenaseATGAGGACTCCTGTGAACGTCACCGTGACCGGGGCCGCCGGTCAGATCGGGTACGCCCTGCTGTTCCGCATCGCCTCGGGCGCGATGCTGGGCCCCGACACCTCCGTGCGGCTGAAGCTGCTCGAGATCCCGCAGGGCGTCAAGGCCGCCGAGGGCACCGCGATGGAGCTCGACGACTGCGCCTTCCCGCTCCTGGACGGCATCGACATCGACGACGACGCGACGCGCGCCTTCGACGGCACGAACGTCGCGCTGCTGGTCGGGGCACGTCCGCGCGGGCCGGGCATGGAGCGCGCCGATCTGCTGGAGGCCAACGGAGGCATCTTCGGACCTCAGGGGAAGGCCATCAATGCCGGTGCGGCGGACGACGTGCGGGTCCTCGTGGTCGGGAACCCGGCCAACACCAACGCCCTCATCGCCTCGGCCCACGCTCCCGACGTCCCGGCCGAGCGGTTCACCGCGATGACGCGTCTCGACCACAATCGGGCGCTGTCGCAGGTGGCGCACAAGGCCGGCGTGCCGGTCTCGGAGGTGCGGCGCCTGACGATCTGGGGCAACCACTCGGCCACCCAGTACCCGGACCTGTTCCACGCCGACGTCGCGGGCAGCCCCGGCGGCACGCTGACGGCGGACACCGCGTGGCTCACCGACGACTTCATCCCGACCGTCGCCAAGCGTGGCGCGGCGATCATCGACGCCCGCGGCGCGTCGTCGGCGGCCTCGGCGGCGAACGCCGCGATCGACCATGTCCACGACTGGGTGCACGGCACGCCGGCGGGGGACTGGACCAGCGTCGGGCTGCCCTCGCGCGGCGAGTACGGCGTGCCGGAGGGGCTCGTGTGCTCCTTCCCGGTGACGTCGTCGGACGGCGCCTGGCACGTGGTCGAGGACCTGGAGATCGACGACTTCTCGCGCGAGCGCATCGACGCGAGCGTCGCCGAGCTCGCCGCCGAGCGGGACACCGTGCGGAGTCTCGGGCTGATCTGAMRTPVNVTVTGAAGQIGYALLFRIASGAMLGPDTSVRLKLLEIPQGVKAAEGTAMELDDCAFPLLDGIDIDDDATRAFDGTNVALLVGARPRGPGMERADLLEANGGIFGPQGKAINAGAADDVRVLVVGNPANTNALIASAHAPDVPAERFTAMTRLDHNRALSQVAHKAGVPVSEVRRLTIWGNHSATQYPDLFHADVAGSPGGTLTADTAWLTDDFIPTVAKRGAAIIDARGASSAASAANAAIDHVHDWVHGTPAGDWTSVGLPSRGEYGVPEGLVCSFPVTSSDGAWHVVEDLEIDDFSRERIDASVAELAAERDTVRSLGLIPGPT0001435_788DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001435-mdh-K00024NANA
AK018_058821038aqpZ_2Aquaporin ZATGGCCGAGCAGACCGCGACCGTACGCGACGTCGAGACGGCGCCGCCCCCACCGCGCCTCTTCACCCGGATGGCCGCCGAGGCCTTCGGCACCTTCGTCCTCGTCCTGGGCATCGTCGGCACCGCGACCTTCAACGCCGCCAACGGCGGGTCGATCATGACGGTCGCCTTCGCCGGTGGCATCGCCCTGATCGCCGCCATCGCCGCCGTCGGCCACCTCTCGGGCGGCCACTTCAACCCCGCGGTCACGTTCGGGCTCACCCTCGCCGGCCGTTCCTCCTGGGCCGACCTGCTGCCCTACTGGCTGGCGCAGTTCGTCGGCGCCGCCGCCTGCGGTGCGCTGCTGCTGCTGATCATCCCCGGCTCCTACGGCGCCCTGGTCGGGTCGGCCACGTCCGGCGAGGTCCTCGCCGCCACGGCCAACGGCTACGGCGACCACTCGCCGATGTTCGCCGTGTCCCAGGGGCAGGCGACCTTCGACCTGGGGGCCGCCGCCATCGTCGAGGTGCTCATCGCCGCGATCTTCGTGGGCGTCATCCTCGGCGTCACCAACCCGCGCGCCAAGATCGGCTACCCGGCCGTCGTCATCGGCCTCACGCTGGCCGCGCTGCACATCGTCTCGTGGCTGGTGACCAACACGTCGTTCAACCCGGCCCGCTCGCTGGCCTCCGTGATCTCCCCCGACGCCTGGGGCGAGGGCGGCGTCGGCGGCCAGCTGTGGCTGTTCCTCGTGGCGCCGCTCGTCGGCGGTGCGCTCGCGGCGCTGTTCGCCCGGGCGTTCGCCCCGGTGCCCGCCGTGGCCGAGCCCGCCGAGGGCTGGGAGGCCCAGCCGGGCACCGCCCCGGCCGCCGCCGAGGCCGCGACGGTGGCCGCCGTGGCCGCGGCGACCGCGACCGCGGTCGAGGAGCGCGAGGCCGTGGAGCCTCAGGCCGTGGAGCACGAGACCGTGGAGCACGAGTCGCCGTCGGCCGCGACCGAGGACACGACGTCCGAGGACTCCGAGGAGCCCGGCGACCCGGAGACCCCCGCTCGCCCGTGAMAEQTATVRDVETAPPPPRLFTRMAAEAFGTFVLVLGIVGTATFNAANGGSIMTVAFAGGIALIAAIAAVGHLSGGHFNPAVTFGLTLAGRSSWADLLPYWLAQFVGAAACGALLLLIIPGSYGALVGSATSGEVLAATANGYGDHSPMFAVSQGQATFDLGAAAIVEVLIAAIFVGVILGVTNPRAKIGYPAVVIGLTLAALHIVSWLVTNTSFNPARSLASVISPDAWGEGGVGGQLWLFLVAPLVGGALAALFARAFAPVPAVAEPAEGWEAQPGTAPAAAEAATVAAVAAATATAVEEREAVEPQAVEHETVEHESPSAATEDTTSEDSEEPGDPETPARPPGPT0004755_18DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ARSENIC_RESISTANCEARSENIC_RESISTANCE-ARSENIC_TRANSPORT,PGPT0004755-aqpZ-K06188NANA
AK018_05883336hypothetical proteinGTGGCCCCCGACCCCGAGCAGTCCGCGCAGCCGCACTGGCACACCGTCGACGCCGCCCCCCGCACCCCGCCGTCGGGCGCGGCGAGCACACCGGTCCCCGCGATCCTGATGGCGATCGGCGGCATCATGCTGGCCGTCGCGCTCGGGTTCCTGCTCTCGGCGCGCTGGGGCTCGCTGACCATCGCCGCGACGCTGGCCGTCGCCGGGCTGTGGCGGGCGACGTCGCCCTCCGGTCCGGCGGGGCTGGCCATCCGCACCCGCGGCTTCGACGTCTTCCTGTGCTGGACCGCCGCCGCGGCGGTGGGGTTCCTCGCCCTGACGGCCCCCGGCGTCTGAMAPDPEQSAQPHWHTVDAAPRTPPSGAASTPVPAILMAIGGIMLAVALGFLLSARWGSLTIAATLAVAGLWRATSPSGPAGLAIRTRGFDVFLCWTAAAAVGFLALTAPGVNANANANANA
AK018_058841260bedABenzene 1,2-dioxygenase system ferredoxin--NAD(+) reductase subunitGTGCACACCCCCACCTCCGAGGCCCCTGCCGCCCGCCCCGGGTCCGTCGTCGTCGTGGGTGCCGGCCTGGCGGGCGCCCAGACCGTGGCGGCGCTGCGCAAGCACGGCCACGACGGCCGCGTCACGGTGCTGGGCGACGAGGGCGTGGCGCCCTACGACCGGCCGCCGTTGTCGAAGGAGCTCTGGACCCGCCCCGAGCCCGTCTGGCTGCGCGACGACCTGGGGATCGACCTCGACGACCTGGCCGACGACGTGCGCCTCGACGATCCCGCCGTCGAGCTGTTGCCGGGCCCGACGGTCCGCACCCGCGGCGGCGAGGAGCTCACCGCGGACGCCGTCGTGGTGGCCTCCGGCTCGCGCCCGGTGCTCCCGCCGGGCTGGGACGCCGACGTGCTGCACACCGCGGCCGACGCCGCCCGCCTGCGTGCCGCGCTGCGGCCGGGTGCCCGGCTCCTCGTCGTCGGTGCCGGCTGGATCGGCGCGGAGGTCTCCGGCGCCGCCCGCGAGGCCGGGGCCGAGGTGACCGTGCTGGAGGCGGGAGATGCACCGCTCGAACGCCAGCTCGGGCACGCCGTCGGCGCCCACCTCGTGCCCTGGTTCGACGACGTCGGTGTCCGGCTGCGACTGCGCTCCCCCGCCCAGGAGGTGCGCCGTGACGGCGTGACGCTGGCGACGGGCGAGCGCGTCCCGGCGGACGTCGTCCTGGCGGCGGTCGGCGCGCGCCCGGCGACGGGCTGGCTCCGCGGCACCGTGCCGCAGCAGGCGTTCGACCCGGCGGGCAGCCTCCTCGTCGACGCGTCGGGAGCGGTGCCGGACGTCGCCGGCCTGTATGCCGTCGGGGACACCGCGTCCCGGCCGCACCCGGTCCTCGGCCGGGTCCCGGGCGGGCACTGGTCGGCGGCGCTGCACGACCCCGACGCCGTCGTGCGCGGGATGCTGGGCCTCGAGCTGCCCGACCCGCAGGCGCCGTACGTCTTCTCCCGGCAGCTCGGTCACGATCTCGCGCTCTTCGGCCTGCCCGCCGGAGAGCCGACGGCGTGGCGCGGCACGCCCGGCGAGGGGCCGTGGGCCGCGTTCTGGACCGACGCCGGCGACGTGCCCGACGACGGGGCCGCCGTCGTGCGGGCCGTGCTGCTGGTCGACGCCCCGCGCGAGGTGGGGGCGGTCCGGCGGCTCATGAACCGGCCCGAACCGCTGCGGCTCGACCTGGTCCGGGCGAGCGACCCGTCCGTACGGCTGCGCGACGCCGTCGCGCGCTGAMHTPTSEAPAARPGSVVVVGAGLAGAQTVAALRKHGHDGRVTVLGDEGVAPYDRPPLSKELWTRPEPVWLRDDLGIDLDDLADDVRLDDPAVELLPGPTVRTRGGEELTADAVVVASGSRPVLPPGWDADVLHTAADAARLRAALRPGARLLVVGAGWIGAEVSGAAREAGAEVTVLEAGDAPLERQLGHAVGAHLVPWFDDVGVRLRLRSPAQEVRRDGVTLATGERVPADVVLAAVGARPATGWLRGTVPQQAFDPAGSLLVDASGAVPDVAGLYAVGDTASRPHPVLGRVPGGHWSAALHDPDAVVRGMLGLELPDPQAPYVFSRQLGHDLALFGLPAGEPTAWRGTPGEGPWAAFWTDAGDVPDDGAAVVRAVLLVDAPREVGAVRRLMNRPEPLRLDLVRASDPSVRLRDAVARPGPT0019730_81DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
AK018_058851578COG3559Multidrug efflux system permease proteinATGAGCCGCGCACGCTCCGGGCTCGCCGTCGCCCTGCGCCTGCAGCTGCGCACCGGCTGGAAGGTGCTCGCGGCCTGGGTCGTCGGGCTCGTCGGCACGTACACCGCCACGGTCGCCGCCATCGACACCACCTACGGCACGCCGGAGCAGCTCGCCACCTACGGCGCCACCGTCGGCGCCGACCCCACCATGGCCGCCATCAACGGCACCCCCTACGGCGCCGACACCCTCGGCGGCGTCGTGTCCAACGAGTTCGGCTTCATCTCCGCCATCGCGATCCCGCTCATGGGGCTGCTGCTCGTGACCCGCTCCACCCGCGCCCCGGAGGAGACCGGGATGCTCGAGCTGCTGCGCTCGCGGTCGGTCTCCGCCCGCGCCCCGTGGACGGCAGCGTTGCTCGTCACCGGCGGCGCACTCGTCCTCGTCGCGCTCGGGATGCTCGCCACCCTGCTCACCTACGACGTCGACGCGGCCGACGCCGCCCTGTACGCCGCCTCGATCGCCGGGCTCGGCGTGGTCTTCGCCGGGATCGCGACGCTGGCCGGTCAGCTCCTGCGCCGCGCCGCCGGTGTCACCGCCGTCGGCGTCCTCGTGCTCGGCATCGCCTACGTCGCCCGTGCCGCCGGCGACGTCAAGGACACCGGGTGGCGCTGGCTGTCGCCCCTCGCGTGGCAGCAGGAGACCCGACCGTTCGCCGACGACGCCCGCGTGTGGCCGCTCCTCCTCGCCCTCGGGGTCGCCGCGACCCTGGTCGCCGCGGGAATGGTCCTCGTCGGACGCCGCGACCTCGGCAGCGCCCTGGTCGCCGGCCGGCCCGGCCCCGCCCGGGCGGGCCGCTTCCTGAGCAGTCTCCCGGGACTCGCCCTGCGCCAGCACGGCGCCGGGCTCGTCTCCTGGACCGTCGGTGCCGCCGTCGTCGGTGGCGTCTTCGGGGTCTTCACCGACGACATCGACGACGTCGTCGAGGCCAACCCGGACGTGCAGCAGCTCATGAGCGCCGGTGGCGGCGACGCCGCGACCTGGTACGTCGCCTACTGCCTCGTGCTGGTCCTGCTGATGGCCGTCGGCGCCGGCGTCCAGGTCGTCACCCGCGTGCGGCGCGAGGAGACCGGCGGACGGCTCGAGACGACCCTGTCGCGCGCCGTGCCGCGCGCCGGCTGGCTCGGGACGCACGCCGCGGTCGCCGTGCTCGGGGCGATGGCGGTGGCGCTCGCGGGCGGTGCCGGGCTCGGGGTCGCCGTGACCGCGAGCGGCGGCGACGTCGACACCCTGACCGCCACGGTCGAGTACCTGCCGGCCGTCGCCGCGGTACCCGCCCTGGGTGTGGCGCTGTTCGGGGCGCTGCCGCGCGGCACGTCGCTGGTGTGGGCGGCGTTCGGCTACGTCGCCGTCGTCGAGCTCATCGGGGAGGCGCTCTCGATGCCGGACTGGGCCCTGGACCTCTCGCCGTTCCACGCGGTCGGACGGCTGCCCGGCGACGACGCGTCGGGCCAGGCCGTGGCGGTCGTGTCGACGGTCGTGGTGGTGCTGCTGGCCGTCGGGCTGCTCGGCCTGCGACGCCGCGACGTGCCGCGCTGAMSRARSGLAVALRLQLRTGWKVLAAWVVGLVGTYTATVAAIDTTYGTPEQLATYGATVGADPTMAAINGTPYGADTLGGVVSNEFGFISAIAIPLMGLLLVTRSTRAPEETGMLELLRSRSVSARAPWTAALLVTGGALVLVALGMLATLLTYDVDAADAALYAASIAGLGVVFAGIATLAGQLLRRAAGVTAVGVLVLGIAYVARAAGDVKDTGWRWLSPLAWQQETRPFADDARVWPLLLALGVAATLVAAGMVLVGRRDLGSALVAGRPGPARAGRFLSSLPGLALRQHGAGLVSWTVGAAVVGGVFGVFTDDIDDVVEANPDVQQLMSAGGGDAATWYVAYCLVLVLLMAVGAGVQVVTRVRREETGGRLETTLSRAVPRAGWLGTHAAVAVLGAMAVALAGGAGLGVAVTASGGDVDTLTATVEYLPAVAAVPALGVALFGALPRGTSLVWAAFGYVAVVELIGEALSMPDWALDLSPFHAVGRLPGDDASGQAVAVVSTVVVVLLAVGLLGLRRRDVPRNANANANANA
AK018_05886981COG1131Multidrug efflux system ATP-binding proteinGTGACGGCACCGATCGTGAACATCCAGGGACTTGAGAAGACGTTCGGGTCGTTCCGCGCGCTCGACGGGCTCGACCTCCGGCTCGACCCCGGAGAGGTGCGCGGCTTCCTCGGCCCCAACGGCGCCGGGAAGTCCACCACCATCCGCGTCCTGCTCGGCCTGATGCGCCCCAGCGGCGGCGAGGTGCGGCTCTTCGACGAGGACCCGTGGAAGCACGCCGTCCGCCTGCACCGCCGTCTCACCTACGTGCCCGGCGACGTCGCCCTGTGGCCCGGCCTGACCGGGGGACAGTGCATCGACGTCCTGGGCGCGTCCGGTGCGCCGCTCGACCCGGCACGGCGCACCGAGCTCGTCGACAGGTTCGACCTCGACCCCACCAAGCGCGTGCGCGACTACTCCAAGGGCAACCGGCAGAAGGTCGCCCTGGTCGCCGCGTTCGCCGCGCGGGCCGACCTGCTCGTCCTGGACGAACCCACCTCCGGCCTCGACCCCCTCATGGAGGAGGTCTTCCGAGAGTGCGTCTCAGAACGCGCCGCCGACGGCGCCACCGTGCTGCTCAGCAGCCACATCCTCAGCGAGGTCGAGGCCCTGTGCTCGACGGTCACGATCGTGCGCCACGGCAAGGTCGTCCGCGACGGGTCGGTGGCCGAGCTGCGCAACCTCGCGCGCACCACCGTGCACGCGGTCACCCGCGGGCCCGCCCCGGACCTGCGCGACGACGACGGCGTGGCGGACCTCGTCGTCGAACCGGCCGGCGAGCCCGGCGGGTCCGGCGACGGCGCCGACGTCACCTTCACCGTCGAGCCCGCCCACCTCGACCGGGTCCTCAAGCCGCTGGTCGACGGCGGGCTGGACGCGCTCACCGTCCGGCCGCCCAGCCTCGACGAACTGTTCCTCTCCGAGTACGACGCCGGTCCCGACCGGGACGACGCGGCCGACGCGGCCGACCGGGCCGGGACGGCCGGCGAGGCGGACCGATGAMTAPIVNIQGLEKTFGSFRALDGLDLRLDPGEVRGFLGPNGAGKSTTIRVLLGLMRPSGGEVRLFDEDPWKHAVRLHRRLTYVPGDVALWPGLTGGQCIDVLGASGAPLDPARRTELVDRFDLDPTKRVRDYSKGNRQKVALVAAFAARADLLVLDEPTSGLDPLMEEVFRECVSERAADGATVLLSSHILSEVEALCSTVTIVRHGKVVRDGSVAELRNLARTTVHAVTRGPAPDLRDDDGVADLVVEPAGEPGGSGDGADVTFTVEPAHLDRVLKPLVDGGLDALTVRPPSLDELFLSEYDAGPDRDDAADAADRAGTAGEADRPGPT0006725_12463DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_05887546hypothetical proteinATGCGGCACGTCCAGTCCGTGGCGCTGGACCTGTTCGAGCGCCACGGGTTCGACGCCGTCACGGTCGCGGACGTCGCCGCGGCGGCCGAGGTCGCCGAACGCACCGTGTTCCGCCACTTCGGCACCAAGGAGATGCTGGTCGCCCACGACGACGCGGACGCCGCGTTCCTGGCGCAGGTCGCCGACCGCGCGACGGCCACCGGACTGCTCAGCGCCGTGCGCGACGTCGCCGCCCGGATCCCGCCCGGGGCCTGGACCGGCCGGACCGACCCGGGTGCCACCTGGCGGCGCAAGCTCCACCTGCTGCGCTCGACGCCGTCGCTCGCCCACGTCCTGGACGAGGAGTCGGGCCGGTTCGGCGACCTGCTCGCCCGCGTCGTGACGGGCAGCGAGCACCCGCCGTTCGTCGCCCGCGCCCGCGGGCGGGCCGTCGCCGCCGCGCTCACCGCCGCGATCACCGCGTGGGCCGAGGGCCCCGAGGACGACGACCTGCGCGACCGCGTCCTCGAGGCCCTCGCGGCGCTGGAGTCCCTCGACGCCCGCTGAMRHVQSVALDLFERHGFDAVTVADVAAAAEVAERTVFRHFGTKEMLVAHDDADAAFLAQVADRATATGLLSAVRDVAARIPPGAWTGRTDPGATWRRKLHLLRSTPSLAHVLDEESGRFGDLLARVVTGSEHPPFVARARGRAVAAALTAAITAWAEGPEDDDLRDRVLEALAALESLDARNANANANANA
AK018_058881623purH_2COG0138Bifunctional purine biosynthesis protein PurHATGTCCGGCATCCCCACGAACCCCGACGTCCAGCTCGCCGACGACGCCCGCCGCCCGATCCGCCGGGCCCTGCTGAGCGTCTACGACAAGACCGGCCTCGTCGAGCTCGCCACCGCCCTGCACGGCGCCGGTGTCGAGCTCGTCTCCACCGGGTCGACCGCGACGCGGATCGCCGACGCCGGTGTCCCGGTCACCCGCGTCGAGGAGCTCACCGGCTTCCCCGAGTGCCTCGAGGGCCGGGTCAAGACGCTTCACCCGCGCGTGCACGCCGGCATCCTGGCCGACACCCGCAAGCCCGACCACCTCGACCAGCTCCGCGAGCTGGAGATCGACACGTTCGAGCTCGTGGTGGTCAACCTGTACCCGTTCGCCGAGACCGTCGCCTCGGGCGCCGCCCCGGACGCCGTCGTCGAGCAGATCGACATCGGCGGGCCGTCCATGGTCCGGGCCGCCGCGAAGAACCACCCGAGCGTCGCCGTCGTCGTCGACCCCGCCCGGTACGACGACGTCACCGCCGCCGCGCAGGCGGGCGGCTTCACGTTCGCCGAGCGCAAGCGCCTGGCCGCTGCCGCGTTCGCGCACACCGCCACCTACGACGTCGCCGTCTCCGCCTGGTTCGCCAGCGCCTACGCCCCGGACGAGGCGGCGGGCGAGTCGGGCATGCCCGACGTCGTCGGCGCCACGTACGAGCGGTCGGACGTGCTGCGCTACGGCGAGAACCCGCACCAGCGCGCCGCCCTGTACACGGCGGCCGACGGCGCGACCGGGCTGGCGCAGGCCACCCAGCTGCACGGCAAGGCGATGAGCTACAACAACTACGTCGACGCCGACGCCGCGTGGCGCGCCGCGCACGACCACACCGACCCGGCCGTGGCGATCATCAAGCACGCCAACCCGTGCGGCATCGCCGTCGGGGCCGACGTCGCCCAGGCGCACGCCCGCGCCCACGCCACCGACCCGGTCTCGGCGTTCGGCGGGGTCATCGCCGCCAACCGCACGATCACCAAGGCGGCGGCCGAGCAGATCGCGCCGGTGTTCACCGAGGTGGTCGTGGCTCCGGGCTTCGAGCCGGAGGCGCTCGAGGTGCTGCAGGCCAAGAAGAACATCCGGCTGCTGACGGTGGACGCGCCGCCGTCGTCCCCGGTGGAGACGCGGCCGATCTCGGGCGGGCTGCTCGTCCAGGCCGTCGACCGGTTCCAGGCCGACGGCGACGACCCGGCCGCCTGGACGCTGGCGGCCGGCGAGCCCGCCGACAAGGCCACGCTGGCCGACCTGGCCTTCGCCTGGCGGGCCGTGCGGGCCGCGAAGTCGAACGCCATCCTGCTGGCCGCCGACGGTGCCGCCGTCGGGATCGGCATGGGTCAGGTCAACCGCGTGGACTCCTGCCGGCTGTCGGTCGAACGGGCCAACACCCTCGCGGACGACGCCGAGCGCGCCCGGGGTGCCGTCGCGGCGTCGGACGCGTTCTTCCCGTTCGCCGACGGGCTGCAGGTGCTGCTGGACGCCGGCGTGCGCGCCGTCGTGCAGCCCGGGGGGTCGATCCGGGACGAGGAGGTCGTCGCGGCCGCGCAGGAGGCGGGCGTGACGATGTACCTGACGGGGACGCGCCACTTCGCCCACTGAMSGIPTNPDVQLADDARRPIRRALLSVYDKTGLVELATALHGAGVELVSTGSTATRIADAGVPVTRVEELTGFPECLEGRVKTLHPRVHAGILADTRKPDHLDQLRELEIDTFELVVVNLYPFAETVASGAAPDAVVEQIDIGGPSMVRAAAKNHPSVAVVVDPARYDDVTAAAQAGGFTFAERKRLAAAAFAHTATYDVAVSAWFASAYAPDEAAGESGMPDVVGATYERSDVLRYGENPHQRAALYTAADGATGLAQATQLHGKAMSYNNYVDADAAWRAAHDHTDPAVAIIKHANPCGIAVGADVAQAHARAHATDPVSAFGGVIAANRTITKAAAEQIAPVFTEVVVAPGFEPEALEVLQAKKNIRLLTVDAPPSSPVETRPISGGLLVQAVDRFQADGDDPAAWTLAAGEPADKATLADLAFAWRAVRAAKSNAILLAADGAAVGIGMGQVNRVDSCRLSVERANTLADDAERARGAVAASDAFFPFADGLQVLLDAGVRAVVQPGGSIRDEEVVAAAQEAGVTMYLTGTRHFAHPGPT0008110_719DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008110-purH-K00602NANA
AK018_05889624hypothetical proteinATGTATGTCCGGATTCTCAGTCCTAAGGTAGCACTCGTGACCACCTCCGAGCCGAAGAGCACGCGACGCACCAACGCCGGCCCGCGGGCCGCAGCGCGCAACCGTGCGGCCCTCCTCGCGGCCGCCCGCGAGATCTTCGCCGAGCACGGCGCGCACGCGCCCCTGAACGCCGTCGCGCGACGGGCCGGCGTGGGGCAGGGCAGCCTGTATCGCCACTTCCCGGACCGGCTGGCGCTCGTGCTGGCCCTGTTCGAGGAGCAGGTGGCCACCGTGGAGGAACTGGCCCGCGACCCGCGGACCACGCTCGCCGACCTGCTCGGAGTCGTCACCCGGCACGCGATCGACTCGGTGGTCAGCATCGACCTGGCCGCGGGCAGCCCCGAGATCCGGCCCGACCCCCGCCTGGTGGACCTGCGCGACCGGATCGCCGACGTCCTCAGCACCCGCATCGGCCCGGCGATCGACGCCGGACTGGCGCGTCCCGGGACCACGGTCGAGGACGTCCTGCTCGGGGTGGAGATGGTGGCCGCCGCGCTCACGCGCCAGCCCGCCGACGATCGGGAGCGGTACGCCGTGCGCGCCTGGCGGTTGCTGGGCTTCGAGGTCACCCCGGCGCCGCGCTGAMYVRILSPKVALVTTSEPKSTRRTNAGPRAAARNRAALLAAAREIFAEHGAHAPLNAVARRAGVGQGSLYRHFPDRLALVLALFEEQVATVEELARDPRTTLADLLGVVTRHAIDSVVSIDLAAGSPEIRPDPRLVDLRDRIADVLSTRIGPAIDAGLARPGTTVEDVLLGVEMVAAALTRQPADDRERYAVRAWRLLGFEVTPAPRNANANANANA
AK018_058901077hcaB_43-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGGCAGACCTGACCCTGAACAACACCGTGGCGGAGTGGCTCGCGGACCCCGTCGGCGAGCGGGTCTTCTCCGACATGCTGGCCGAGGCCGGCGCCACCACGAAGTCGCTGGCCCCGGCCAAGCGCCTCAAGCTCGGCAAGCTCGTCAAGCTCTCGCGCGGCAAGTTCTCCGCCGAGGCCGCCGACGCGATGGTCGCCCGCGCGGCCGAGCTCAAGGCGGCCGGTGCCGACGCCCCCGTCGAGGGCGCCCCGGCGGAGACGACGGCCCCGACGGAGCAGGACGCCGCTCCGGAGCCTGCCGACTGGGACGAGCAGATCACGCCGGGCCGGTTCGCCGGGCAGACCGTCGTGGTCACCGGCGCCGCCTCCGGCATCGGCCGCGCCACCGCGTCCCGCGTCGCCCGTGAGGGCGGCCGCGTCGTCGCGGTCGACATGACCGAGGGCGGCCTGGACGACCTCGCCGCGGAGCTCGGCGGTTCGCTCCCCGACGGTGCCGCCGTCGTGCCGGTCACGGCCGACATCACTGACGACGCCGCGGTAGCCCGCATCGTCGAGGCCGCCGGAGGTCGGATCCACGCCCTGGCCAACGTCGCGGGCATCATGGACCGGTTCGCCCCCGTGCACACCGTCGACGACGCCACCTGGGACAAGGTGTTCGCCGTCAACGTCACCGGCACCATGAAGCTGATGCGCGCCGTCGTGCCCGGCATGCTCGCCGCCGCCGAGGGCCGGATCGTCAACGTCGCCTCGGAGGCCGGGCTGCGCGGCTCCGCGTCCGGCGCGGCCTACACGGCCTCGAAGCACGCCGTCGTCGGACTGACGAAGAACGCCGCGTTCATGTACACCGGCACCGGCGTCCGTGTGAACGCGGTCGCGCCCGGCGGGGTGGCCACCGGGATGAGCCCGCAGGACGTCGACGAGTTCGGCATGGGCCGGGTGCAGTCGGCCATGGGGATCATGGCGGACATCGCGATGCCGGAGCAGCTCGCGGCGTCGATCACGTTCCTGCTGTCCGCGGACTCGACGAACGTCAACGGCCAGATCCTCGCGTCCGACGGTGGCTGGTCCGCCGCCTGAMADLTLNNTVAEWLADPVGERVFSDMLAEAGATTKSLAPAKRLKLGKLVKLSRGKFSAEAADAMVARAAELKAAGADAPVEGAPAETTAPTEQDAAPEPADWDEQITPGRFAGQTVVVTGAASGIGRATASRVAREGGRVVAVDMTEGGLDDLAAELGGSLPDGAAVVPVTADITDDAAVARIVEAAGGRIHALANVAGIMDRFAPVHTVDDATWDKVFAVNVTGTMKLMRAVVPGMLAAAEGRIVNVASEAGLRGSASGAAYTASKHAVVGLTKNAAFMYTGTGVRVNAVAPGGVATGMSPQDVDEFGMGRVQSAMGIMADIAMPEQLAASITFLLSADSTNVNGQILASDGGWSAANANANANANA
AK018_058911263hypothetical proteinATGACGACGACCTCACCGGACACGGCGGCTCCGTCGAGCCTGCTGCGCAACCGCTCCTACATGCTGGTCATGAGCGGCCTGACCGCCCAGGCGTTCGGCGCCGGGGTCGCCGCGTTCGTCGTGCCGCTGCTGGCCTACGCCGTGACCGACTCCGTCTGGCAGGCCGGTCTGGTCACCGCCCTCGGGCACGTGGGTGCCCTGCTCGCCACGCTCCCGGCCGGCGTCGTCGCCGACCGGGTGGACCGCCGTCGGCTCGTGGTGCTGACCTCGGCCACGGCAGCCCTGGCCTGGGCGAGCGCCGGTGCCGCGGCGCTCGCCGGCGGTCTCACCGCCGTCCACCTGACCGCGGTGCTGCTCGTGTCCTCCGTCGCGGGGGCGTTCGTCGACCCGTCGGTCGCCGGGGCGTTCCGGTCCGTGGTGCCGGCCGCACAGCTCCCGACCGCCTATGCCGCGGCGCAGGGCAGGGACGCCGCGGCGAGCCTGGTCGCCGGCCCGCTCGGCGGCGTCCTGTACGGCATCGCGCACGCGGTCCCGCTGATCGCGGGCGCTGTGGGGCACCTCGCCACGGCGGTCTGCACCTGGCTGGTGCGCGAGCCGCTCAACGCCGACACGGCCGAGGCGCGCCGGACCCACCCCGTCGCCGCGCTGCGCGAGGGGCTGTGCTACGTCTGGTCCGTGCCGCTGTTCCGCCTGTGCCTCGGGCTGTTCGCGGTGATCAACGTGGCCATCAACGCGCTGCTGATGGCGATCGTCCTCGACCTGACCGCCGCCGGGACGTCCGCGGCCCGGATCGGGCTGGTGTCGGGCACGGCGGGGGCCTCGATGCTGCTCGGCGCGGTGCTGGCGCCCGTCCTGGTCCGCCGGTTCCGGGTCGGGGTGGTCACGCCCGTCGCGCTGGCGATGGTCGCCGCGGCCGCCGTCGTCATGGCTGCGTCGCAGGACCTCGTCGTCTACCTGCTGGCGCTCGGCCTGGGCGTGCTCGGGGTGCCGGCGGCCAACGCGGGGCTGGCGGGGTACGCCGCGGCGATCACGCCGCCGCAGATGCAGGGCCGGTTCTCCTCGGTCATGGAGCTCTCGGGGGTGGTCGCCATGCCGCTGGCGCCGCTGGTCGGGTCGGGCCTGCTCGCGCTCGCCGGTCTGCCGACGGCGCTCGTCGTCCTCGCCGCGGTGCTGGGGGCCGCCGTCGTCGGCGTGTGGTGCGCCCGGCCCGTGCGCCGGATCGGGCTGCCGGAGTCCTGGGCTGACGACGCGATCGACGGCTGAMTTTSPDTAAPSSLLRNRSYMLVMSGLTAQAFGAGVAAFVVPLLAYAVTDSVWQAGLVTALGHVGALLATLPAGVVADRVDRRRLVVLTSATAALAWASAGAAALAGGLTAVHLTAVLLVSSVAGAFVDPSVAGAFRSVVPAAQLPTAYAAAQGRDAAASLVAGPLGGVLYGIAHAVPLIAGAVGHLATAVCTWLVREPLNADTAEARRTHPVAALREGLCYVWSVPLFRLCLGLFAVINVAINALLMAIVLDLTAAGTSAARIGLVSGTAGASMLLGAVLAPVLVRRFRVGVVTPVALAMVAAAAVVMAASQDLVVYLLALGLGVLGVPAANAGLAGYAAAITPPQMQGRFSSVMELSGVVAMPLAPLVGSGLLALAGLPTALVVLAAVLGAAVVGVWCARPVRRIGLPESWADDAIDGNANANANANA
AK018_05892570hypothetical proteinATGGAGGAGACGTTCCTGGTGCAGAGCCCCGAGGAGCTCAAGGCGATCGCCCATCCCCTGCGCCAGAAGATCCTCATGCAGCTCGCGGTCCTGGAGCACGCGCGAGCCACGGACCTGGCCCAGGCCGTCGGCGAGCCCGCCAACTCGGTCAGCTTCCACCTGCGCACGCTCGCCAAGGCCGGCATGGTCGTCGAGGCCCCCGAGCTGGCGCGCGACAAGCGCGACCGCGTCTGGCGCAACGTCGCCGAGTCGTACCGCATCGACTCCAGCTCCCCCGGCGCGACGGCTCAGGCGATGCGCCCGGCGACGGCATGGCTCACGGACCTCGTCGCCCGGGCCTCGGACGGCGGGACTGCGGACGCCGACGGCCGGCGCCGCACGCTCGTGCTCAACAACGTGCTGCTGACGGCCGACGAGGCGGAGCAGTTCGGCAACGAGCTCGTCGAGCTCCAGGAACGCTGGACCGACCGCGCCCTCGCGGCCGCCCGCGAGCACCGCGGCGAGAGCCGCGAGTACTACCAGCTCCTGCTGGCCCTGGGTCCCCGCGACGCCGAGACGACGACGGACTAGMEETFLVQSPEELKAIAHPLRQKILMQLAVLEHARATDLAQAVGEPANSVSFHLRTLAKAGMVVEAPELARDKRDRVWRNVAESYRIDSSSPGATAQAMRPATAWLTDLVARASDGGTADADGRRRTLVLNNVLLTADEAEQFGNELVELQERWTDRALAAAREHRGESREYYQLLLALGPRDAETTTDNANANANANA
AK018_05893642purN_2COG0299Phosphoribosylglycinamide formyltransferaseGTGCAGACTCCCTCCGGCCATCTCGTGGATCCGGCGCGCGGCGCGCGCCTCGTCGTGCTCGCCTCCGGGGGCGGGTCGAACCTCGCGGCGCTGCTCGCCGCGCACGACGACGTCGCCTTCGGGGCGCGCGTCGTCGGCGTCGTGTCGGACAAGCCCGCCGCGGGAGCGCTCGACCTGGCGCGGGACGCGGGCGTCGCCTCCGTGGCCGTCGCCCCGGCCGACTTCGCCGACCGCGCCGCCTGGAACACCGGGATCGGCGAAGCCGTCGAGGTCTTCCGGCCCGACTGGGTGGTGCTCGCGGGGTTCATGCGCATCCTGTCGCCCGAGTTCCTGGCGCGGTTCCCCCAGCGGGTCATCAACACCCACCCGGCGCTGCTGCCGGCGTTCCCCGGTGCGCACGGGGTGCGGGACGCCCTGGCCTACGGCGTGAAGATGACCGGCTGCACCGTGCACGTCGTCGACGACGGCGTGGACACCGGCCCGATCGTCGCGCAGGCGGCGGTGCCGGTGCTGGACGACGACGACGAGGCGGCCCTGCACGAGCGCATCAAGGTGGCCGAGCGCTCGCTGCTGGTGGAGACCGTGGGGCGTGCTGCCCGCGAGGGGCTGCGCGTGGCGGGTCGCCGCGCCGTGTTCGGCTAGMQTPSGHLVDPARGARLVVLASGGGSNLAALLAAHDDVAFGARVVGVVSDKPAAGALDLARDAGVASVAVAPADFADRAAWNTGIGEAVEVFRPDWVVLAGFMRILSPEFLARFPQRVINTHPALLPAFPGAHGVRDALAYGVKMTGCTVHVVDDGVDTGPIVAQAAVPVLDDDDEAALHERIKVAERSLLVETVGRAAREGLRVAGRRAVFGPGPT0008095_1514DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008095-purN-K11175NANA
AK018_058941242hypothetical proteinGTGAGTGCTTCCCCCCGGACGAGTCCCCGCGTCGTCGAGCCGACCGCTCCCGGCAGGGTCCGGGAACGGTTCGCCCTGGCGTCCTCCGGGGTGTGGGCCGCGTTGCAGGCGTTCGGGCTGTCCTACGCGGTCGTCGCGCTGCTCGCGGTCACCGCGGTGCTGGACGCACCCAACGCGGCCGGGTCCGACGGCGGTCTGAGCGCAGGCGTCTCGGTGGCGACGGGCCTGTGGCTGCTCGGGCACGGCGTGCCCCTGTCCGCCGGTGGCGCGACGGTCACCGTCGTCCCCCTCGGGATCACGGCGCTGGCGCTGTTCACCCTGCACGTCGCCGCCAAGCGCTCGGCCGTGCCGACGCTCGCCGCCTGGATCGGCGGCACCGTCACCTACACGGCCGCGACCGCGGGTCTCGCCGTGGCCCTGGACCTCGGTGCGACGGCCGCGACCGGCGGATGGTCGGACATCGCCCTCCAGGTGGCCGCCGCGCTGGCGGGCGGCGCGCTCCTCGGTGGGGGCGGTCTGGCCCTCGGGATGTTCTCTGCGCCGGACGGGCCGCTGCTCGCCGGCATGACGCCCCGGCTCGACCCCTACCTCCCGGACACCCTGCGGCTCGGCCTGCGGGCCGGCGTCGTCGGTGCGGCGCTGCTCGTCGGCCTCGGCGGGCTGCTGACCGCGGTGTGGCTGGTCGTCGGGAGCGCCGCCGCGGGCGACGTCGCCGCGGGCCTCGGGGCCGGCTGGGTCGGCACCGTGGTGCTCGGACTCGCGCAGGCGGTCCTGGTGCCCAACCTCGTCGTCTGGGCGACGGCCTGGCTCGCCGGTCCCGGGTTCGCCGTCGGGACGGAGTCGGTGTTCTCGCCGGCGGTGACCGAGGCCGGCGCGCTCCCGGCGCTCCCGCTGCTGGGTGCACTGCCCGGACCGGACTGGAGCACGCCGTACGCCGTCTGGGCCCCCGCGCTCGTGGTCGCGTGCGGCGCCGCCGCCGGATGGTTCGCGTGGCGTCAGCTCGAACCGGCGTTCGTGCGGGTCCGGGACCTGGCGTGGATCGCGGGCGGCACGGCGCTCGCCGCCGGCGGCGCCACGGCCCTGCTCCAGTGGTCGGCCGGGGGCGCCGTCGGGGCGGACCACCTCGCCACGGTCGGGGCCGACCCGTGGGTGACCGCCGGGCTCGTCGCCGCCGAGATCGGCGGGGGAGCGGCGCTGGTGCTCGCCGGCTCGCTCGGCCGCCGGCGGTGGGGCGAGCGGTAGMSASPRTSPRVVEPTAPGRVRERFALASSGVWAALQAFGLSYAVVALLAVTAVLDAPNAAGSDGGLSAGVSVATGLWLLGHGVPLSAGGATVTVVPLGITALALFTLHVAAKRSAVPTLAAWIGGTVTYTAATAGLAVALDLGATAATGGWSDIALQVAAALAGGALLGGGGLALGMFSAPDGPLLAGMTPRLDPYLPDTLRLGLRAGVVGAALLVGLGGLLTAVWLVVGSAAAGDVAAGLGAGWVGTVVLGLAQAVLVPNLVVWATAWLAGPGFAVGTESVFSPAVTEAGALPALPLLGALPGPDWSTPYAVWAPALVVACGAAAGWFAWRQLEPAFVRVRDLAWIAGGTALAAGGATALLQWSAGGAVGADHLATVGADPWVTAGLVAAEIGGGAALVLAGSLGRRRWGERNANANANANA
AK018_05895897sucD_2COG0074Succinate--CoA ligase [ADP-forming] subunit alphaATGTCGATCTACCTGAACTCCGACTCCAAGATCATCGTCCAGGGCATCACCGGCGGGATGGGTGCCAAGCACACCGCCCTCATGCTCGACGCGGCCTCCACCATCGTCGGCGGCGTCAACGCCCGCAAGGCCGGCCAGACGGTCGACCACACCGACCACGAGGGCAACCCCGTCACCCTGCCGGTGTTCGGCACGGTGTCCGAGGCCATGTCCGAGACCGGCGCGAACGTCTCGGTCGTGTTCGTCCCGCCGGCGTTCACCAAGGACGCCTGCATCGAGGCGATCGACGCGGGCATCGAGCTGCTCGTCGTCATCACCGAGGGCGTGCCGGTCCAGGACACCGCCGAGGTGTTCGCCTACCTCGAGGGCAAGTCCACCCGGATGATCGGGCCGAACTGCCCCGGCATCATCACCCCGGGCGAGTCGCTGGCCGGCATCACCCCGCACACCATCACCGACTCCGGCCCCATCGGCCTGGTGTCCAAGTCGGGCACGCTGACCTACCAGATGATGTACGAGCTGCGGGACTTTGGGTTCTCCACCGCCATCGGCATCGGTGGCGACCCAGTCATCGGCACCACGCACATCGACGCGCTCGAGGCGTTCGAGAACGACCCCGACACGAAGGCGATCGTCATGATCGGCGAGATCGGCGGCGACGCCGAGGAGCGTGCGGCGGCGTACATCAAGGACCACGTGACCAAGCCGGTCGTCGGCTACGTCGCGGGCTTCACCGCCCCGGAGGGCAAGACGATGGGCCACGCCGGCGCCATCGTCTCCGGCTCGTCCGGCACCGCGCAGGCCAAGAAGGAGGCCCTCGAGGCCGTGGGCGTGAAGGTCGGCAAGACGCCGTCCGAGACCGCCCAGCTCATGCGGGAGATCCTGCAGAGCGCCTGAMSIYLNSDSKIIVQGITGGMGAKHTALMLDAASTIVGGVNARKAGQTVDHTDHEGNPVTLPVFGTVSEAMSETGANVSVVFVPPAFTKDACIEAIDAGIELLVVITEGVPVQDTAEVFAYLEGKSTRMIGPNCPGIITPGESLAGITPHTITDSGPIGLVSKSGTLTYQMMYELRDFGFSTAIGIGGDPVIGTTHIDALEAFENDPDTKAIVMIGEIGGDAEERAAAYIKDHVTKPVVGYVAGFTAPEGKTMGHAGAIVSGSSGTAQAKKEALEAVGVKVGKTPSETAQLMREILQSAPGPT0001540_1108DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001540-sucD-K01902NANA
AK018_058961167sucC_2COG0045Succinate--CoA ligase [ADP-forming] subunit betaGTGGACCTGTTCGAATACCAGGCTCGCGACATCTTCGAGAAGCACGGCGTCCCCGTGCTCGGGGGCGTCGTCGCGACGACGCCCGAGGAGGCTCGCGCAGGCGCAGAGAAGCTCGGCGGCGGAACGGTCGTCGTCAAGGCCCAGGTCAAGATCGGCGGCCGCGGCAAGGCCGGAGGCGTCAAGCTGGCGCACTCGCCGGAGGAGGCAGCGCAGAAGGCCTCCGAGATCCTCGGCATGGACATCAAGGGCCACACGGTCCACCGCGTGATGATCGCCGCGGGCGCCCAGATCGCCGAGGAGTACTACTTCTCGGTGCTGCTGGACCGCGCGAACCGCAACTACCTGGCGATGTGCTCCGTCGAGGGCGGTGTCGAGATCGAGGAGCTCGCCGTCGAGCGTCCCGAGGCGCTGGCCAAGGTCGCGGTCGACCCGGCCGTGGGCATCGACGCGGCCAAGGCCGCCGAGATCGTCGAGGCCGCCGGCTTCGAGGCCGACGTCAAGGACAAGGTCGCCGAGGCCATCCAGAAGCTGTGGACGGTGTTCTCGGAGGAGGACGCCACCCTGGTCGAGGTCAACCCGCTGGTCAAGACCGAGCAGGGCGACATCATCGCCCTGGACGGCAAGGTCACGCTCGACGCCAACGCGGACTTCCGGCACCCGGAGCACGCCGAGCTCGAGGACTCCGCGGCCACCGACCCGCTGGAGGCCAAGGCCAAGGAGCACGACCTCAACTACGTCAAGCTCGACGGCGAGGTCGGCATCATCGGCAACGGTGCGGGCCTGGTCATGTCCACGCTCGACGTCGTCGCGTACGCCGGCGAGGACCACGGCGGCGTCAAGCCCGCCAACTTCCTCGACATCGGTGGCGGCGCCAACGCCCAGGTCATGGCGGCCGGTCTCGACGTCATCCTGAACGACGACCAGGTCAAGTCGGTGTTCGTCAACGTCTTCGGCGGCATCACCGCCTGCGACGAGGTCGCCAAGGGCATCGTCGGCGCGCTGGAGATCCTCGGCGACGAGGCCTCCAAGCCGCTGGTCGTCCGCCTGGACGGCAACAGCGTCGAGAAGGGTCGCGCGATCCTCGCGGAGGCGAACCATCCCCTCGTGACCCTTGCCGAGACCATGGACGGCGGCGCCGACAAGGCAGCCGAGCTGGCCAACGCCTGAMDLFEYQARDIFEKHGVPVLGGVVATTPEEARAGAEKLGGGTVVVKAQVKIGGRGKAGGVKLAHSPEEAAQKASEILGMDIKGHTVHRVMIAAGAQIAEEYYFSVLLDRANRNYLAMCSVEGGVEIEELAVERPEALAKVAVDPAVGIDAAKAAEIVEAAGFEADVKDKVAEAIQKLWTVFSEEDATLVEVNPLVKTEQGDIIALDGKVTLDANADFRHPEHAELEDSAATDPLEAKAKEHDLNYVKLDGEVGIIGNGAGLVMSTLDVVAYAGEDHGGVKPANFLDIGGGANAQVMAAGLDVILNDDQVKSVFVNVFGGITACDEVAKGIVGALEILGDEASKPLVVRLDGNSVEKGRAILAEANHPLVTLAETMDGGADKAAELANAPGPT0019515_2309DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019515-sucC-K01903NANA
AK018_058972748uvrD1_2COG0210ATP-dependent DNA helicase UvrD1ATGACTTCGCTCTTCGACAGCCTGTCCCTGCCCGGCCTCGACCCTGCCCCGGCGGGCGACACAGCGCGCCTGCCGACCACGGCGCCGCGGTGGGACGACGACGGCGCGCCGGACTGGGTGCCGCGGCGTGCGGTCGGCCGGGAGGCCGCGCCCGACGACGGCCGGGATGAGGCCGCGGACGCGCTGCTGGAGGGGCTCAACGCACCGCAGCGGGACGCCGTCGTGCACGCGGGGTCCCCGCTGCTCATCGTCGCCGGGGCGGGCTCGGGCAAGACGCGGGTGCTCACCCACCGGATCGCCCACCTGCTCGCCACCCGGCGGGCGCGGCCGGGCCAGATCCTGGCGATCACCTTCACCAACAAGGCCGCGGCCGAGATGCGCGAGCGGGTCGAGCAGCTCGTCGGCCCGGCCGCCCAGCGCATGTGGGTCTCCACGTTCCACTCCGCGTGCGTGCGCATCCTGCGGCGCGAGGCCAAGACCCTCGGCCTGCGTTCCAGCTTCTCGATCTACGACGCCGCGGACTCCCAGCGCCTCATCACGCTGGTGTGCCGCGAGCTGGACCTGGACACCAAGAAGTACCCGGCGCGGTCCCTGGCCCACAAGATCAGCGACCTGAAGAACGAGCTGATCGACCCCGACGCCTACGCGCAGTCCTCCGGAGCGGACGCCACCGAGGAGGGCTGGCGGGAGCGCGCGCTGGCCGGCGGCGGCATCGCCGACCCGTCCGTGCCGGCGTTCGACACGGTGCTGGCCGACGTCTACCGGCGCTACCAGGCGCGCCTCGCCCAGGCGAACGCCCTGGACTTCGACGACATCATCATGACCACCGTCAACCTGCTGCAGGCGTTCCCGAACGTCGCCGAGCACTACCGCCGCCGGTTCCGGCACGTGCTGGTCGACGAGTACCAGGACACCAACCACGCGCAGTACGTCCTGGTGCGCGAGCTCGTCGGCGTCCCGGCGAGGAGTGAGCTTGCGAGCCCCGCAGTCCGGGCGCCAGAGGGTGCAGAGTTCCCGGCGAGGAGTGAGCTTGCGAGCCCCGCAGTCCGGGCGCCCGAGGGATCCGCGCCGGGTGACGTGGCCCTCGACCCGGCGGAGCTGACCGTCGTGGGCGACGCCGACCAGTCCATCTACGCGTTCCGCGGCGCCACCATCCGCAACATCGTCGAGTTCGAGCAGGACTACCCGGACGCGACGACGATCCTGCTGGAGCAGAACTACCGCTCCACCCAGAGCATCCTGTCGGCGGCCAACGCGGTGATCGCGCGCAACCCCGAGCGGCGGCCCAAGCGGCTGTGGACCGACGCGGGCGCCGGCGCGCAGATCGTCGGCTACGTGGCCGACGACGAGCACCACGAGGCCCGGTTCGTCGCCGAGGAGATCGACCGCCTCGGGGACACCGCAGGGGTCCGGCCGGGCGACGTCGCGATCTTCTACCGCACCAACGCCCAGTCCCGGGCGCTCGAGGAGGTGCTGATCCGCGTGGGGCTGCCGTACAAGGTGGTCGGCGGCACCCGCTTCTACGAGCGCAAGGAGATCAAGGACGCCGTCGCCTACCTGCGCGCCCTGGCCAACCCGGACGACGACGTCTCCCAGCGCCGGGTGCTCAACGTGCCCAAGCGCGGGCTGGGCGACAAGGCCGAGTCGCTCGTGGCAGGTTTCGCCGACGGCGAGCGGATCTCCTTCGGGGCTGCGCTGCAGCGGATCGACGAGATCCCGGGCATGACGACGCGCACCCTCAAGCCGTTGCGCACCTTCGCCGCGATGATGTCCGAGCTGCAGGCGATGGTCGACGACGGCGCCACGCCGGCCGAGATCCTCGGCGCGGTGCTCGACCGCACCGGCTACCTCGCCGAGCTGCGCGCCAGCGACGACCCGCAGGACGCCACGCGGGTCGAGAACCTCGCCGAGCTGCACGCCGTGGCCGCCGAGTTCACCGAGGCCGACCCGGAGGGCGATCTGGCGGACTTCCTGGAGCGGGTGTCCCTGGTGGCGGACGCCGACCAGATCCCCGACGAGGACGTCGCCGACGGCGGCGCGGAGCACGAGCACGAGGACGAGCCCGCCGAGGACCCGGGCGTCATCACACTGATGACGCTGCACACCGCCAAGGGCCTCGAGTTCCCCGTCGTGTTCCTTACCGGCATGGAGGACGGCACGTTCCCGCACATGCGTTCCCTGCACGACGACGCCGAGCTCGCCGAGGAGCGTCGGCTCGCCTACGTGGGGATCACCCGGGCGCGCGAACGGCTGTACCTGTCGCGGGCCGGCACGCGCTCGGCGTTCGGGATGGCCAACGAGTTCCCGCCGTCGCGGTTCCTCGACGAGATCCCCGCCGAGCTCCTCGACTGGCGCCGCCTCGAGTCCTCGACGCAGACGCTGCGGCGCGGCGGGTCGGCCTGGGGCGCGTACGGCGGGCCGCGGGCCGGCCGGGGCGGCTCGGGGGGCTCGTCGTGGGCCGAGCGCCGTGGCGCCGCGGGTGAGCGGCGCGGCACCGGGGGCCGTGCGGCCACGCGGGCGCCGTCGTCGGGCGGGAGCACGGGGGCGACGTTCGGGTCGGCCACCCCGCGCCAGGACACCGACATCCCGTCGCTGGCGGTGGGGGACAAGGTCACCCACGACGCCTACGGGATGGGCACGGTGATCGGCGTGGAGGGCGCCGGGCACAACGCGGTGGCGAAGATCGACTTCGGCGCGGACGGCACCAAGCGCCTGCTGCTGCGGTTCAGCCCCGTCACCAAGCTCTGAMTSLFDSLSLPGLDPAPAGDTARLPTTAPRWDDDGAPDWVPRRAVGREAAPDDGRDEAADALLEGLNAPQRDAVVHAGSPLLIVAGAGSGKTRVLTHRIAHLLATRRARPGQILAITFTNKAAAEMRERVEQLVGPAAQRMWVSTFHSACVRILRREAKTLGLRSSFSIYDAADSQRLITLVCRELDLDTKKYPARSLAHKISDLKNELIDPDAYAQSSGADATEEGWRERALAGGGIADPSVPAFDTVLADVYRRYQARLAQANALDFDDIIMTTVNLLQAFPNVAEHYRRRFRHVLVDEYQDTNHAQYVLVRELVGVPARSELASPAVRAPEGAEFPARSELASPAVRAPEGSAPGDVALDPAELTVVGDADQSIYAFRGATIRNIVEFEQDYPDATTILLEQNYRSTQSILSAANAVIARNPERRPKRLWTDAGAGAQIVGYVADDEHHEARFVAEEIDRLGDTAGVRPGDVAIFYRTNAQSRALEEVLIRVGLPYKVVGGTRFYERKEIKDAVAYLRALANPDDDVSQRRVLNVPKRGLGDKAESLVAGFADGERISFGAALQRIDEIPGMTTRTLKPLRTFAAMMSELQAMVDDGATPAEILGAVLDRTGYLAELRASDDPQDATRVENLAELHAVAAEFTEADPEGDLADFLERVSLVADADQIPDEDVADGGAEHEHEDEPAEDPGVITLMTLHTAKGLEFPVVFLTGMEDGTFPHMRSLHDDAELAEERRLAYVGITRARERLYLSRAGTRSAFGMANEFPPSRFLDEIPAELLDWRRLESSTQTLRRGGSAWGAYGGPRAGRGGSGGSSWAERRGAAGERRGTGGRAATRAPSSGGSTGATFGSATPRQDTDIPSLAVGDKVTHDAYGMGTVIGVEGAGHNAVAKIDFGADGTKRLLLRFSPVTKLNANANANANA
AK018_058981671hypothetical proteinATGAGTCGCACCGAGCCCGACGCGGGTCCCGCCGCCCGTCCGGCGTCCGCGCGCGAGCTGCTCGCCCACCCCGCGCGGCTGGTCAACCCCTCCACGCTCGGCGGGGCCGTCGCGCTCGCCGTCGGACTCGTGCTGGTGCTGGTGCCGGCCCTGTCGCACGGGCTCACGGAGACCGTGGTCGGCGTCGGCCTGCTGGCCTCCGGTGTCAACGACCTGTGGACCACCGCCCGACGTCGGCACGTGCGCACCGCGGGTCGTGTCACGGCGGCGGTGCGCGGCCTGGCGTCGGTCGCCCTGGCGCTGGTCTTCCTGCTCTCGGCCCGCGCGGCGCTAGCCGCGACGATCCTGCTGGGCGGCATCTACCTGCTGTTCCGCAGCCTGCTCACCCTGCTGCTCGCGGTGTTCAGCCGCGACCGGTCGCGGCGGGCGCCCCGGTTCGCGAGCGGAGGCGTGGGGCTGGCGTTCTCCGTGCTGATCCTCGCGGTGCCCGGCGCCTACGTCGACTGGATCGCCGCGGTGGTCGGTGCCGTGGCCATCTTCGGCGGCACGATCACACTGGCCTACGGCTACCGGGTCGCCTCGGGCTCGAGCCCCGCCCCGGACGGCCTGTACCCGTCGTTCACGGAGATCCTGTGGTCGTGGGTCGAGCACGTCGACGTGGGCCCGAAGCGTCGCACCCTGCTCGCCGACCAGCTCTACCTCGAGCGTCCGGAGATGGCGGCCAAGCAGGTCGCCTGGTGGACCATGCTGGTGCTCAGCGTGTGCATCGCCACCCTCGCGGTGCTGCAGGACTCCACCGCGGTGGTCATCGGCGCGATGCTCGTCGCACCCCTGATGACGCCGATCCTGGGGCTGTCGGCGGCGCTGGTCAGCGGCTGGGCGTACCGGGCGGTCCGGTCGCTGGCCCTCATCCTCGGCGGCACGGTGGTCGCCGTCGGCGTCGCGTTCGTCCTCGCCTCCTGGGTGCCGATCGTCGTGCCCTTCGACACGAACAGCCAGATCACCTCGCGCGTGGACCCCACCCTGCTGGACATGCTCATCGCGCTGGCCGCCGGTGCGGCGGGCGCGTTCGCGACGGTCGACCGCCGGGTGGCGGCCTCCCTCGGTGGCGTCGCGATCGCCGTCGCCCTCGTGCCCCCGTTGTCGGTGGTCGGGGTCGCGCTGAGCGACAACCGCCTGGAGGACGCGTTCGGGGCGCTGCTGCTGTTCGCCACCAACTTCGTCTCGATCGTGCTGGCGGCGGCGGTCGTGTTCGTCCTCGCGGGGGTCGCCGACCCCCGCAGCCTGCGCCGCGACGCCCGGCGCATCCTGTTCACCCTCACGCCGTTCGTCACGGCCGCCCTCTTCATCCTGCTGCCGCTGCTGCTGACGACGAACGGCCTGCTGACCACCTCGGCCCAGCAGCGCACCGCGCAGGACGTGGTGGACGACTGGCTGCCCGACGGCTCCGCGCTGGAACTCGGATCTGTCAGCGTGTCGGGCGACTCCGTGCGGGTCGAGCTGTCGGGCTCCCCCGACGACGTCCCCTCGACGTCCGACCTGCAGTCGGACCTGGACGACGCGCTCGGCGGCTCCTACGCCGTCGAGGTCGCGGTCACGCCCGTGCAGGTCGAGCAGGTGCCCGCGGTGTCGCCCTCACCGTCACCGTCGCTGCGCATCGACCTCGGCTGAMSRTEPDAGPAARPASARELLAHPARLVNPSTLGGAVALAVGLVLVLVPALSHGLTETVVGVGLLASGVNDLWTTARRRHVRTAGRVTAAVRGLASVALALVFLLSARAALAATILLGGIYLLFRSLLTLLLAVFSRDRSRRAPRFASGGVGLAFSVLILAVPGAYVDWIAAVVGAVAIFGGTITLAYGYRVASGSSPAPDGLYPSFTEILWSWVEHVDVGPKRRTLLADQLYLERPEMAAKQVAWWTMLVLSVCIATLAVLQDSTAVVIGAMLVAPLMTPILGLSAALVSGWAYRAVRSLALILGGTVVAVGVAFVLASWVPIVVPFDTNSQITSRVDPTLLDMLIALAAGAAGAFATVDRRVAASLGGVAIAVALVPPLSVVGVALSDNRLEDAFGALLLFATNFVSIVLAAAVVFVLAGVADPRSLRRDARRILFTLTPFVTAALFILLPLLLTTNGLLTTSAQQRTAQDVVDDWLPDGSALELGSVSVSGDSVRVELSGSPDDVPSTSDLQSDLDDALGGSYAVEVAVTPVQVEQVPAVSPSPSPSLRIDLGNANANANANA
AK018_05899462elaACOG2153Protein ElaAGTGGAGATCCTGACCCGCCGGCTCGACGAGCTCGCCCCCCGCACCGTCTTCGACCTGTGCCGCCTGCGCCAGGACGTGTTCGTCGTCGAGCAGGCCTGCGCCTACCCGGACCTCGACGACCGCGACCTCGAGCCCGGGACCCGGCACGTCGTGCTCGTCGACGACGACGGGGTGGCGGCCACGGCGCGGGTGCTCGACGACGGCGACAGCCAACGCGTGGGGCGCGTGGTGTGCCACCCCCGCGTGCGCGGCACGGGCGCGGCCGGTGACCTGATGCGCGCGGCCCTCGACGCCGCCGCGGCGGCCGACCCGACCGCCGACGTCGTCCTCGGTGCTCAGTCGCCGCTCGTCGACTTCTACGGCCGCTTCGGGTTCGTCCCGGACGGCCCCGAGTACCTCGAGGACGGCATCCCGCACACCCCGATGCGCCGGTCAGCCGAGGTCGATGCGCAGCGACGGTGAMEILTRRLDELAPRTVFDLCRLRQDVFVVEQACAYPDLDDRDLEPGTRHVVLVDDDGVAATARVLDDGDSQRVGRVVCHPRVRGTGAAGDLMRAALDAAAAADPTADVVLGAQSPLVDFYGRFGFVPDGPEYLEDGIPHTPMRRSAEVDAQRRNANANANANA
AK018_05900483hypothetical proteinGTGAGCGTCCTGGCCGAGGTGCTCGTCGGCCTGGCGATCGCCGTCGGGCTCGTCGGTATCGTCGTCCAGGTCCTGCCGGGCAACGCGCTGGTCCTCGGCGCGATCCTGGTATGGGCCTGGACGACCGGGGGCACCACCGCCTGGGTGTGTTTCGCCGTCGCCGCGCTCCTGATCGCCCTGGCCGAGACGGGCAACTGGCTCGTGGCCGGCCGGCACATGCGTCGGGCCGAGGTGCCGTGGTCCACCCTCGCCGTGGGCGGCGTCGCCGGCATCGTGGGCTTCTTCGTGGTGCCCGTCGTGGGGCTGTTCCTGTTCTTCACGCTCGCGGTGCTGGTCGTGGAGTACCTGCGCCGCCGCGACCGCGCGGCGGCCTGGCGGGCCACCGTCGCCGCCCTGCAGGCCACGGCCATCACCATCGGCATCCAGCTCCTCGGCGGGCTGCTCGCCACCGCCACGTGGATCGTCGGGCTCTGGCTGACCTGAMSVLAEVLVGLAIAVGLVGIVVQVLPGNALVLGAILVWAWTTGGTTAWVCFAVAALLIALAETGNWLVAGRHMRRAEVPWSTLAVGGVAGIVGFFVVPVVGLFLFFTLAVLVVEYLRRRDRAAAWRATVAALQATAITIGIQLLGGLLATATWIVGLWLTNANANANANA
AK018_05901372hypothetical proteinATGGAGTTCCTCTACAACGTCCTCGCCGTGCTGCACTTCGTCGGCTGGGCGATCGTCCTCGGCGGTTACCTCGCCTCCCTGCGCTCCCCGGGCCTGTACCGCGGCGTCTTCCACGGCGCGCTGTCGGCGCTGGTCGGCGGTATCGGCATGGTCGGCGTGGCCGAGGCGAGCGGGATGTGGGACGACGGCGGCCCCGACATGGCGAAGATCGGCGTGAAGCTGGCCGTCGCGCTGGTCATCAGCGTCCTGGCGTTCGTCGCCAAGCGCCAGGGCAGCAAGGGCGACAACGGCACCGGCGCCGTCACCCCCGGCCTCAAGCACACGATCGGCGGCCTGACGCTGGTCAACATCGTCGTCGCCGTCTTCTGGTGAMEFLYNVLAVLHFVGWAIVLGGYLASLRSPGLYRGVFHGALSALVGGIGMVGVAEASGMWDDGGPDMAKIGVKLAVALVISVLAFVAKRQGSKGDNGTGAVTPGLKHTIGGLTLVNIVVAVFWNANANANANA
AK018_059021728sir_2COG0155Sulfite reductase [ferredoxin]ATGACGACGCAGACCACCACCCCCGCGGCCCAGGACGCTCCCGCCCGTCCGGCCCGCCCCGCCCGCGCACCCAAGCCGAACGGCCAGTGGAAGATCGACGGCGACGCACCGCTGAACCACAACGAGGTCTTCAAGCAGGAGGGCCCGCCGCTCGAGGTGCGCGAGCGCATCGAGAACGTCTACGCCCACGAGGGTTTCGACTCCATCACCGACGACGACCTGCACGGCCGTTTCCGCTGGTGGGGCCTGTACACCCAGCGCAAGCCCGGGATCGACGGCGGCCGCACCGCCACGCTCGAGCCGCACGAGCTCGAGGACCGCTACTTCATGCTCCGCGTCCGCACGGACGGCGCCGAGCTGACCCCCGCCGCGCTGCGCGTCCTCGGGGAGATCTCCGACGAGTTCGGCCGCGGCACCGCCGACATCACCGACCGCCAGAACATCCAGTACCACTGGATCGAGGTCGAGGCGATGCCCGAGATCTGGCGCCGCCTCGACACCGTGGGGCTGGAGACCACCACCGCCTGCGGCGACTCCCCCCGCGCTTTCCTCGGCAGCCCGGTCGCCGGGATCGCCTCCGACGAGATCATCGACGCCACGCCCGTCATCGACGAGATCAAGCGTCGCTACATCGGCGACCCCGCCCTGGCGAACCTGCCGCGCAAGTTCAAGACGGCCATCTCGGGCCACCCGAGCCTCGACGTCGTGCACGAGATCAACGACATCTCGCTCGTCGGGGTCGAGCACCCCGAGCTCGGCGCCGGCTTCGACCTGTGGGTCGGCGGCGGCCTGTCCACCGCCCCGCGGCTCGGCGAGCGCCTCGGCGTCTTCGTCACCGCCGAGCAGGCACCCGACGTCTGGCACGGCGTCATCCGGATCTTCCGCGACTACGGTTACCGCCGGCTGCGCAACAAGGCCCGCCTGAAGTTCCTGCTCAAGGACTGGGGCACCGAGAGGTTCCGAGAAGTCCTCGAGTCGGAGTACCTCGGCTACACCCTGCCGGACGGCCCGCCCCCGGCACCGGCGACCCGACCGGGCGACCACGTGGGCGTCCACGAGCAGAAGGACGGCGACTTCTACGTCGGCGCGGCCCCGGTCGTCGGCCGGGTCGGCGGCGGCACCCTGACGGGGCTGGCCGACCTGATCGAGTCGGTCGGGGCCCGCTCGGCCCGGCTGACGGCCCACCAGAAGGTGGTGATCCTGGGCGTGCCCGCCGACCGCGTCGACGAGCTCGTCGACGGCCTCGAGCCCCTCGGCCTGACCGCCCGCCCGAGCCTGTTCCGCCGCAACACGATCGCGTGCACCGGCATCGAGTTCTGCAAGCTCGCCATCGTGGACACCAAGGACACCGCCGCCCGCGTCATCGGCGAGCTCGAGGAGCGCCTCGGCGAGGTGACCGAGCAGCTCGACCGCCCGATCTCGCTCAACGTCAACGGGTGCCCCAACTCGTGCGCCCGCATCCAGACGGCGGACATCGGCCTCAAGGGGCAGATCATCACGGTCGACGGCGAGCAGATGCCGGGCTTCCAGGTACACCTGGGCGGCAGCCTGGCCGGACGCGGGCAGGACGCCGGCGGACTCGGCCGCACCGTGCGCGGGCTGAAGGTGCCGGCCACCGAGCTCGGCGACTACGTCGAGCGGGTCGTGCGCCGCTATTCCGACGCGCGGGCCGACGACGAGTCGTTCGCCGAGTGGGCCCACCGCGCCGACGAGGAGGCCTTGCAGTGAMTTQTTTPAAQDAPARPARPARAPKPNGQWKIDGDAPLNHNEVFKQEGPPLEVRERIENVYAHEGFDSITDDDLHGRFRWWGLYTQRKPGIDGGRTATLEPHELEDRYFMLRVRTDGAELTPAALRVLGEISDEFGRGTADITDRQNIQYHWIEVEAMPEIWRRLDTVGLETTTACGDSPRAFLGSPVAGIASDEIIDATPVIDEIKRRYIGDPALANLPRKFKTAISGHPSLDVVHEINDISLVGVEHPELGAGFDLWVGGGLSTAPRLGERLGVFVTAEQAPDVWHGVIRIFRDYGYRRLRNKARLKFLLKDWGTERFREVLESEYLGYTLPDGPPPAPATRPGDHVGVHEQKDGDFYVGAAPVVGRVGGGTLTGLADLIESVGARSARLTAHQKVVILGVPADRVDELVDGLEPLGLTARPSLFRRNTIACTGIEFCKLAIVDTKDTAARVIGELEERLGEVTEQLDRPISLNVNGCPNSCARIQTADIGLKGQIITVDGEQMPGFQVHLGGSLAGRGQDAGGLGRTVRGLKVPATELGDYVERVVRRYSDARADDESFAEWAHRADEEALQPGPT0002825_616DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002825-sir-K00392NANA
AK018_05903885cysH_2Phosphoadenosine phosphosulfate reductaseGTGACAGCCGTGTCCGTCTCCCTCGGCGTCGGGCCCACGTCGTCGGTGGCCTCCCCGGCCGGGGAGTCCCCGCTGGCCGGCACGGCCGCCGAGGCCCGCCGTCGGGCCGCGGAGCGCGAGATGTCCCGCGCGCGCCGCAACGCCCGTGTGGACGGCCGCGAGCGCCGGCGCCGGTCCGACGCCGAGCTGTCGCAGATCGCCGAGCGCGGCCGGCGCGAGCTGGGTGGTTCCGGCCCGGGCTCGGCGGACGAGGCGACGGCGCACGAGGTGATCGCCTGGGCCGTCGAGCAGTTCGGCGACTCGCTCGCGGTGGCCTCCTCGATGACCGACTCGGTGCTGTCCGCGCTGGTCGCCGAGCAGCTGCCGTGGGTGGACGTGCTGTTCGGCGAGACCGGCTACCACTTCGCCGAGACGCTGGGCACCCGCGACGCCGTCGCGCACTCTCTCGACGTGACGGTCGTGGACGTGCGTCCGCTGCTGTCCGTGGCCGAGCAGGACGAGGCCTACGGGCCGGACCTGTTCGCCCGCGACCCCGAGGCGTGCTGCCGCATGCGCAAGGTCGAGCCGATGCGTCGGGTGCTGTCCGGGTACGAGGCGTGGGCCACGGGCGTGCGGCGCGCGGACTCGGGTTCTCGGGCGAAGGCGGAGCTGGTCTCCTGGGACGCGTCGAACAACCTGGTCAAGATCAATCCGATCGCGGCCTGGAGCGACGACGAGCTCGTCGGCTACGCCCTGCGCCACGGCCTGACCGTCAACCCGCTGCTCAACGACGGCTACCCGTCGATCGGCTGCGAGCCGTGCACCCGCCGCGTCAGCGCCGGTGAGGACGCCCGCGCCGGCCGCTGGTCCGGGGTGGACAAGTCCGAGTGCGGCCTGCACATCTGAMTAVSVSLGVGPTSSVASPAGESPLAGTAAEARRRAAEREMSRARRNARVDGRERRRRSDAELSQIAERGRRELGGSGPGSADEATAHEVIAWAVEQFGDSLAVASSMTDSVLSALVAEQLPWVDVLFGETGYHFAETLGTRDAVAHSLDVTVVDVRPLLSVAEQDEAYGPDLFARDPEACCRMRKVEPMRRVLSGYEAWATGVRRADSGSRAKAELVSWDASNNLVKINPIAAWSDDELVGYALRHGLTVNPLLNDGYPSIGCEPCTRRVSAGEDARAGRWSGVDKSECGLHIPGPT0002785_432DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002785-cysH-K00390NANA
AK018_059041272cysG_3COG0007Siroheme synthaseATGAGTGACCTGTACCCGCTGGGCCTGCGCGTGCGCGGCCGGCTCGTCGTCGTCGTCGGCGGCGGGCCGGTCGCGTCCCGGCGTGCGGGCGGCCTGCTCGACGCCGGGGCCCGCGTGCGCGTGGTGGCCCCCGACGTCGTCGACGAGCTCGCCGACCGGGCGGCCGCGGGCGACCTCGAGCACGTGGCGCGCGAGTACGCCCCGGGCGACCTGGACGGCGCCTGGCTCGTGCACACCGCGACCGGGGTGCCCGCCGTGGACCGCGCGGTGGCGGCCGACGCCGAGGCGCGGCAGACGTTCTGCGTGGTCGCCTCGGACGCCGAGGCAGCCTCCGCCTGGGTCCCGGCCGTGGCCCGCACGGCGGCGCCCGACGGCTCCGGCGGTGAGCTCGTCACCGCGGTGCACGCGGGGCGGGACCCGCGGCGCGCCGTACGCCTGCGCGACGGGATCGCCGCCGCGCTGGACGCGGGCGAGCTGCCGCTGCGCCGGGGGCGCCCGACCGCTCCGGCGGCCGACGGCGGCACCCGGCCCGGGTGGGTCGCGCTCGTCGGCGGCGGCCCCGGCGCCACCGGGCTGGTCACCGGCCGGGGGCGCCGGCTCCTGGCCAGCGCCGACGTCGTCGTGGTGGACCGGCTCGGCCCCCGCGCGCTGCTCGACACGCTCGCCGACGACGTCGAGGTGATTGACGTCGGCAAGACCGCCGGCAACCATCCGGTGCCGCAGGAGCGCATCAACGAGCTGCTCGTCGAGCACGCGTCCGCCGGCCGGGACGTGGTCCGCCTCAAGGGCGGCGACCCGTACGTGTTCGGCCGGGGCGGCGAGGAGCTCGCGGCGTGCCGTGCCGCGGGCATCGAGGTGGAGGTGGTGCCCGGGGTGACGTCCGCCGTCTCCGTGCCGGCCGCCGTCGGCATCCCGGTCACGCACCGCGGGGTCGCGGCAGGGTTCAGCGTGCTGACCGCGCACGAGGCGGTGGACTCCGTCCCGGGCGGGCCGCAGCACACCCTCGTGCTGCTCATGGGCGTCACGCGCCTCACGGCGACGGCCGCGGCACTGATCGCGGCCGGCCGACCCGCCGACACCCCGGTCGCCGTCGTCGAGGACGGCTACGGCCCCCGTCAGCGGGCGACGGTCGGCACCCTGGCCGACATCGGCGACCGCGCCGCCGCGGCCGGCGTTCGCCCGCCGGCCGTGACGGTCGTCGGCGACGTGGTGCGCCTGGCACCCGCCTGGGCGGCTCACGTCGCCGCGGGCGGCGCTGTGAGCACACCGTGAMSDLYPLGLRVRGRLVVVVGGGPVASRRAGGLLDAGARVRVVAPDVVDELADRAAAGDLEHVAREYAPGDLDGAWLVHTATGVPAVDRAVAADAEARQTFCVVASDAEAASAWVPAVARTAAPDGSGGELVTAVHAGRDPRRAVRLRDGIAAALDAGELPLRRGRPTAPAADGGTRPGWVALVGGGPGATGLVTGRGRRLLASADVVVVDRLGPRALLDTLADDVEVIDVGKTAGNHPVPQERINELLVEHASAGRDVVRLKGGDPYVFGRGGEELAACRAAGIEVEVVPGVTSAVSVPAAVGIPVTHRGVAAGFSVLTAHEAVDSVPGGPQHTLVLLMGVTRLTATAAALIAAGRPADTPVAVVEDGYGPRQRATVGTLADIGDRAAAAGVRPPAVTVVGDVVRLAPAWAAHVAAGGAVSTPPGPT0003690_1533DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302NANA
AK018_05905771hypothetical proteinGTGACAGACCGACACGTCGGCGACACCCGCCCGAACCACGCGCCGCGTAGCGTGGAGGGCATGCCCGCACCGACCCTGCTCGCCATCTCCCACGGCACGTCGTCCGCCACCGGGGCGGCCGCCGTCGCCGGACTGGTCGACGCCGTCGCCGCACGGCTCGACGACGAGGCGCCGGTGCGCGGCGGGTTCGTCGACGTCCAGCAGCCCGACGTGCCCGCCTGCCTCGACGAGCTGCGGGAGACCTCCACCGTGCTGGTCCCGCTGCTGCTGTCCGCCGGGTTCCACGTCCACGTCGACCTGCGCGAGGACGTCGACGCCGCGCTCGCCGACGGGATCGCCGTCCGGCTCGGCGGGGCGCTCGGTCCCGACACCCGCCTCGTGGACCTGCTCGCGCGGCGGCTCCACGAGGCCGGGCTCGCCGAGGGGGACGTGATCGTGCTCGCCGCCGCCGGGTCGTCGGACGCGCGGGCGGTGGCCGACTGCGAGCGCACCGGAGCCCTGCTCGCCGAGCGCACCGGACACCCGGTCCGCGTCGGCTACATCGCGAACGCCACCCCGCAGCTCGGCGACGTCGTCGGCTCGGTGCGCCTCGAGCACCCGGGCGCCCGCATCGTCACCGCGAGCTACCTCATCGCGCCCGGCTACTTCCAGACCCTGGCCGAGAAGGCGGGCGGCGACGTGACCACCGCTCCCCTGCTGCTGCCCGACGCCGCGGCCCCGGACGAGCTGGTCGACATCGTGGTCGACCGCTACCGCGCCGCACTGCCGTAGMTDRHVGDTRPNHAPRSVEGMPAPTLLAISHGTSSATGAAAVAGLVDAVAARLDDEAPVRGGFVDVQQPDVPACLDELRETSTVLVPLLLSAGFHVHVDLREDVDAALADGIAVRLGGALGPDTRLVDLLARRLHEAGLAEGDVIVLAAAGSSDARAVADCERTGALLAERTGHPVRVGYIANATPQLGDVVGSVRLEHPGARIVTASYLIAPGYFQTLAEKAGGDVTTAPLLLPDAAAPDELVDIVVDRYRAALPPGPT0003690_15DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302NANA
AK018_05906690nreC_4COG2197Oxygen regulatory protein NreCGTGACCGAGAGCCCCGCGCCGGAGAACCCTGTCGTGCCGGTTCCTGTGCCCGTCGTCCTGGTCGACGACCACCACATGTTCCGCACCGGCGTGCGTGCCAGCCTCGACGCGCGGGTGCGCGTCGTCGGGGAGGCCGCCGACGTCGAGGAGGCGGTCGCCGTGGTGCACGCCGAGCGCCCGCCGGTGGTGCTGCTCGACGTGCACCTGCCCGGCGGCAACGGGGGCGGCGGCGCCGAGGTGGTGCGCCGCTGCGCCGACCTGAACGGCACGACGCGGTTCCTCGCGCTGTCCGTGTCCGACGCCGCGGAGGACGTCGTGGCGGTGATCCGGGCCGGCGCCCGCGGTTACGTCACCAAGAACATCTCGGCGTCCGACCTGTCCGGTGCCGTGGTGCGCGTCGCCGGTGGGGACGCGGTGTTCTCGCCGCGGCTGGCCGGGTTCGTGCTCGACGCGTTCGGCACCGCCGCCGGCGACGTGGCCGTGGCCGACGACGAGCTCGACCGGCTCTCGAAGCGCGAGCAGGAGGTCATGCGGCTCATCGCCCGCGGCTACACCTACCGCGAGGTCGCGAGCGACCTGTTCATCTCCGTCAAGACGGTCGAGACCCACGTGTCCGCCGTGCTGCGCAAGCTGCAGCTCTCGAACCGCAACGAGCTCACGCGGTGGGCGGCGGCGCGGCGGCTGCTGTAAMTESPAPENPVVPVPVPVVLVDDHHMFRTGVRASLDARVRVVGEAADVEEAVAVVHAERPPVVLLDVHLPGGNGGGGAEVVRRCADLNGTTRFLALSVSDAAEDVVAVIRAGARGYVTKNISASDLSGAVVRVAGGDAVFSPRLAGFVLDAFGTAAGDVAVADDELDRLSKREQEVMRLIARGYTYREVASDLFISVKTVETHVSAVLRKLQLSNRNELTRWAAARRLLNANANANANA
AK018_059071290hypothetical proteinGTGAGCCCGTCCCCGTCCGTCCGCCTGCCGCTGCGCCGCCCCCGCCGGGGCCGGTGGCTGGGCGGGGTCTGCGCCGGCCTGGCGGCCCACCTGGGCGTGCCGGTCGCGGTGGTGCGCGCGGCGATCGTGGTGCTGACGTTCCTCGGCGGCACCGGGGCGGTCCTCTACGTGTTCTGGTGGGTGACGATCCCGGCCGGGGACCCCCACGACACCGCCGCCGAGACCCGGCCCGCCGCCGTCGCGCGGCTCGCGCCCCGGTTGCGGCGCAGCGGCGCCGTGCAGGACCTCTCGCGGCGCGACGTGGGGATCGGGCTCGCGCTGCTGGTCGGCGCGGCGCTCCTGGTCGCGGTCCGGGCCGGCTGGGACCTGCCCTCGACCTGGCTGCCGCTGCTGATCGTCGCCGGTGGCGCGGCGCTGGCGTGGAGCCAGCTCGACGCCGTGCAGCGGGCCCGGGCGTCGGGGGAGGCGACGTCCCGCTCCGGGATGCTGCTCCGGCTCGCCGGAGGGCTGGTGCTGGTCACCGCGGGCGTGCTGCTGCTGTTCGTGCAGGGCACGCCCCCGGCCGAGCTGCTGACCGTCATCCTGGCCTCCCTGGCGGTCCTCGTGGGCGTGGCGCTCGTGCTGGCGCCCTGGTGGTTGCGGCTGGTGCGCGAGCTGGGCGACGAGCGGGCCGCACGGGCGCGCGAGGCCGAGCGCGCCGACATCGCCGCCCACCTGCACGACTCGGTGCTGCAGACCCTGTCCCTGATCCGGGCGCGCGCCGGGGACGCCGCGGAGGTCACCCGCATGGCCCGTGCCCAGGAACGCGAGCTGCGTGAGTGGCTGTACGACGACCGCCCCGCGGCGGGCACGTCCCTGGCTGCCGAGCTGCGCACCCTCGTCGGAGAGGTGGAGGACGGCCGCGCGGTCGAGATCGAGCACGTCGTCGTCGGCGACTGCCCGCCGACCGAGGCGACCACCGCGCTGCTTCAGGCCACCCGTGAGGCGCTGGTGAACGCCGTCGTGCACGGGGCGCCGCCCGTGACCGTCTACCTGGAGGTGACGGACACCGTCGAGGTGTTCGTCCGCGACCGGGGCGACGGGTTCGACCTGGACACGATCGCCTCCGACCGGTTCGGGGTGCGCGAGTCCATCCTCGGTCGGGTCCGACGGCGCGGTGGCACCGCCGAGGTCGTCAGCCGGCCGGGGTGGGGCACCGAGGTGCGCCTGTGCGTCCCGATGACCGCAGCAACCAGCGCGTCGCCGGCCTCGGCCGGGTCCGCGCCCGAGACCGAAGGAGCCCGACCGTGAMSPSPSVRLPLRRPRRGRWLGGVCAGLAAHLGVPVAVVRAAIVVLTFLGGTGAVLYVFWWVTIPAGDPHDTAAETRPAAVARLAPRLRRSGAVQDLSRRDVGIGLALLVGAALLVAVRAGWDLPSTWLPLLIVAGGAALAWSQLDAVQRARASGEATSRSGMLLRLAGGLVLVTAGVLLLFVQGTPPAELLTVILASLAVLVGVALVLAPWWLRLVRELGDERAARAREAERADIAAHLHDSVLQTLSLIRARAGDAAEVTRMARAQERELREWLYDDRPAAGTSLAAELRTLVGEVEDGRAVEIEHVVVGDCPPTEATTALLQATREALVNAVVHGAPPVTVYLEVTDTVEVFVRDRGDGFDLDTIASDRFGVRESILGRVRRRGGTAEVVSRPGWGTEVRLCVPMTAATSASPASAGSAPETEGARPNANANANANA
AK018_059081473hypothetical proteinATGACCACGAACGACACCCCTCCGCCGCAGGGGACCCACCCCGCGGGGGCGGCCGGCGACGCGCCGCCCCCGCCCCCGGCCGGCGACGGCTTCTTCGACTCGGTGCGCCGCATCGGCGTCACCCGGTCCGACGACCGCTGGATCGGCGGCGTCGCCGCCGGCGTGGCCGACCGGTTCGGCCTCGACCCCCTGCTGGTGCGCGGACTGCTGATCCTCAGCGTCTTCGTCGCCGGTGCGGGCCTGGTGCTGTACGGCATCGCCTGGGCGCTGCTGCCGGAACGCTCCGACGGTCGCATCCACCTGCAGGAGACCGTCCGGGGCACGTTCGACGTCGCGATCGTCGGCGCCGGCCTCGCCGTCCTCCTCGGGCTGGTCGGAGGCGGCGGGTTCTGGCCCTGGTGGGGCGGACCCGCCGAGTGGGTCGCCGCGCTGTTCTGGATCGCGTTCTGGGTCGCCGTCGTGTGGCTGATCGTCAAGCTGGTCCGCTCCCGCCGGAGCGACGCGCGCCCCGGCCCCGCTCCCGGAGCACCGGGCGCGGCACCGACGGCGGCGCCGACGGTCGAGCACACGTCCGACCCGTCGACGGGCTGGGACCCGGCCACCCACGCCGCCGAGGGATTCACCCCGGCGCCCCGCGTGCACTACGCCCCCGCACCGACGACGACGCCCGGCGCGACGCCGTCGTCCCCCGGACCTGCGGCCCCCACGGCGCACACCGCACCCACGGGCGGGTATGCGCCGCCGCCCCCGCCGGGACCGCGGCCGCGGCGCGCCGCCGGCGGCGGGACGGTCGGTGTCGTGCTCGGGATCGTGCTGCTGCTCGGCGCCGGCCTGCTGGCCGCCGACGTGGCGGGCGGTCTGGCCTGGCCGCTGTGGCCGCTCTGGCTCGCGATCGCCGTCGCGGTGCTCGGCGCGGCGATCGTCGTGACGGGCCTGCGCGGCCTGCGCGGCGGCTGGCTGACCGCCCTGGCGTGGCTCGGGATCGTCGCCGTGGCCGTGACCTGGCCGTTCGCCGACCGGGACGACGACTGGCCGTTCGACGGCTGGTCCTGGGACGACCGGGCGCAGATCACCACCCAGGCCGGGACCGTCCTGGGCTCCGGCGAGGTCGCCCCGCGCTCGACCGAGGCCGCCGAGGCCGGCTACCGGCTCCAGTTCGGCGACTCCCGCGTGGACCTGACCGAGCTCGACCTGGACGACGTGCCGCCCGGGAACCCGGTCGTCGTGCCCGTCGACGCCACCGCGGGCAACGCCGTCGTCACGATCCCCGAGGACACCGCCGTCGAGGCCGTCGTCGACGTGAACGCCGGCACCTTCGAGTGGTTCGTCGACGACGAGCACCTGCGGGTCGACGGCTTCACCGGCGGCCCGGCCACCTACACCACCGACGAGGTCGACGAGCTCGGGGGCGCGGTGCTGCGGCTCGACGTCGACAGCCGCGCCGGCCGCCTCGTCATCCAGGAGGAACGATGAMTTNDTPPPQGTHPAGAAGDAPPPPPAGDGFFDSVRRIGVTRSDDRWIGGVAAGVADRFGLDPLLVRGLLILSVFVAGAGLVLYGIAWALLPERSDGRIHLQETVRGTFDVAIVGAGLAVLLGLVGGGGFWPWWGGPAEWVAALFWIAFWVAVVWLIVKLVRSRRSDARPGPAPGAPGAAPTAAPTVEHTSDPSTGWDPATHAAEGFTPAPRVHYAPAPTTTPGATPSSPGPAAPTAHTAPTGGYAPPPPPGPRPRRAAGGGTVGVVLGIVLLLGAGLLAADVAGGLAWPLWPLWLAIAVAVLGAAIVVTGLRGLRGGWLTALAWLGIVAVAVTWPFADRDDDWPFDGWSWDDRAQITTQAGTVLGSGEVAPRSTEAAEAGYRLQFGDSRVDLTELDLDDVPPGNPVVVPVDATAGNAVVTIPEDTAVEAVVDVNAGTFEWFVDDEHLRVDGFTGGPATYTTDEVDELGGAVLRLDVDSRAGRLVIQEERNANANANANA
AK018_05909462hypothetical proteinATGAACGACCAGCAGCGCCCCTGGGGCGAGGAGAGCTCGGACAGCACGGCCGCGGACGCCGTGCCCCCCACGCAGGAGCTCGACAGGACGCCCGCGGGCGACGACGAGCCGGCGACCGGCAACCCGGCCGGGACCGACCCCGTCGTCGACACGTCCGCGGTAGACCGCGACCCGTCGGTGCCCGAACCGGACACCGCATCGGGCGCTGCACCGGACGCCGAGTCGGACGCCGAGTCGGACGCCGGCGCCGCCGCCGTGGCCCCGCTGGTCCGGACCGGACCACGCGCCAGCACGATCGTCTGGGGACTGGTCGTGCTCGTCGTGGGTCTCGGCCTGCTCGCCCGGACCGCCGGTCTCGGCATCGACGGCCAGCTCACCGCGATCGTGCTGCTCGCGGCGGCCGGTGCCCTGCTGGTCGTCGCCTCCGTCGTGGGTGCCGTCCGGCGACGCGGACGCACCTGAMNDQQRPWGEESSDSTAADAVPPTQELDRTPAGDDEPATGNPAGTDPVVDTSAVDRDPSVPEPDTASGAAPDAESDAESDAGAAAVAPLVRTGPRASTIVWGLVVLVVGLGLLARTAGLGIDGQLTAIVLLAAAGALLVVASVVGAVRRRGRTNANANANANA
AK018_05910717hypothetical proteinATGTCGAGCACAGTCACCGTCCGGCCCGCCAAGGGAGCAGGCGGGATCGGGATGTTCTCCATCATCGTCGGCATCGTCCTCATCGTGGCCGGTGCCGTGGTCTGGGTGGTCGTCTCCCAGACCCTGGCCGACGAGCAGATCACCGTGTCCGAGGACGCGAGCTTCCTGGCCGGTGACGAGGTGGACGGGCCGTTCTCCGCGTACGCGCAGGCGGAGGTCATCAACGAGCACGCTCTCGAGGCCTCCGGCGGCATGACGTACGCCGAGCTCGACCAGGAGGACCCGACCCGGGCGACCGTGATGAACGCGTCGTTCCTGCGGGCGTCGCTGTTCACCTCGGTGGTGGCGTTCGGCGTCTGCGCCCTGGTGATCGGGCTGGGGCTGATGTTCCTGCTCATCGGTATCGCGTTGCGCAAGCTCGCCGGCGGCCCGTCGGTCGCCGTCGACACCCCGCACGCGGCCGCCCCCGCCGGGTCCGCGGGCCACACCACGACCGGTGAGGCGCCGGTGCGGCAGCCGGCGAGCGCCCACACGGCGGACCGTCCCGCGGCGACGCCGCCCGCGGCCGCGCCGTCGCCGGGCCGGTCCACCGGGACCCCCACGACCGGCGGGACCACCGCCGGGACGACGTCGGCCGAGGCCACCGGTCCGGGCAGCGAGACGACGCAGCACCCGACGCACCGGGCCGACGAGCGGCCGGACGACACCCGTCCCTGAMSSTVTVRPAKGAGGIGMFSIIVGIVLIVAGAVVWVVVSQTLADEQITVSEDASFLAGDEVDGPFSAYAQAEVINEHALEASGGMTYAELDQEDPTRATVMNASFLRASLFTSVVAFGVCALVIGLGLMFLLIGIALRKLAGGPSVAVDTPHAAAPAGSAGHTTTGEAPVRQPASAHTADRPAATPPAAAPSPGRSTGTPTTGGTTAGTTSAEATGPGSETTQHPTHRADERPDDTRPNANANANANA
AK018_05911699hypothetical proteinATGCTGTCGGCCGTGCTGGCCGCGGGCGACACCGTCAGCACCACGCTGGGCGTGGTGCAGACCGTGCTGGAGTACCTCGGCACCGTGGCCTTCGCCGTCTCGGGCGCTTTCGCGGCCGGTCGCAAGCAGATGGACCTGGTCGGGGTGGTCGTGCTCGGCAGCGCGGTGGCGGTGGGTGGCGGCACCGTGCGGGACCTGCTCCTGGGCGAGCTGCCGGTGTTCTGGGTGACGGAGCCGACGTTCCTGCTGGTCGGGGCGGCCACGGCTCTCGCCGTCGTGCCGTTGGCGCGCACCCGGACCCTGGACCTGCTGCAGCGTCTGCGCATCATCGAGGTCTCCGACGCGGCCGGCATGGCGCTGTTCGTGGTGATCGGGACCAACGTCGCGATCGACTCGGGTGCCGACGGGGTGTCCGCCGCGGTGGTCGGCGTCGTGGCCGGCGTGGGCGGCGGCGTCATCCGTGACGTGCTGGCCAACCGGCTGCCCGAGGTGCTCAGCAACGCCCAGTTCTACGCCACGGCGGCGCTCGTGGGTGCCGCCGCCTACCTCGGGCTGCTGCAGCTGGACGTGCCGGCCGAGGTCGCCTTCTGGGTGCCGATCGTGATCATCCTCGCGATCCGACTCCTGGCGCTGCGGCTCGGGTGGGGGATGCCGACGTTCACGGTGCCGGACGGCCGGGAGCCCCGGAACCGGTCGTGAMLSAVLAAGDTVSTTLGVVQTVLEYLGTVAFAVSGAFAAGRKQMDLVGVVVLGSAVAVGGGTVRDLLLGELPVFWVTEPTFLLVGAATALAVVPLARTRTLDLLQRLRIIEVSDAAGMALFVVIGTNVAIDSGADGVSAAVVGVVAGVGGGVIRDVLANRLPEVLSNAQFYATAALVGAAAYLGLLQLDVPAEVAFWVPIVIILAIRLLALRLGWGMPTFTVPDGREPRNRSNANANANANA
AK018_059121605guaA_2COG0518GMP synthase [glutamine-hydrolyzing]GTGACGTCTCCCGCCACCGCCCCCGAAGCTCCCGCAGCCGCCGCGACCCCGCGCCCGGTCCTGGTCGTCGACTTCGGCGCCCAGTACGCCCAGCTCATCGCACGCCGCGTGCGTGAGGCGAACGTCTACTCCGAGATCGTCCCGCACACGTGGACGCCGGAGCAGATGCTGGCCCGCGACCCGGCTGCGATCATCCTCTCCGGCGGTCCGTCGTCCGTGTACGCCACGGGTGCGCCATTCGTCGACGCCGCCCTGTTCGACGCCGGCGTGCCCGTGCTGGGCATCTGCTACGGCTTCCAGGCGATGGCGCAGGCCCTGGGCGGGAAGGTCGCCCAGACCGGCGTGCGCGAGTACGGCGGCACCGAGGTCGAGGTGTGCTCGGCAGGGGCGCTGCTCGCCGGCACCCCGGCGACCCAGACCACCTGGATGAGCCACGGCGACTCCGTGCACGCGGCGCCCGAGGGCTTCGAGGTGCTGGCCACGTCCTCCGGTTCGCCGGTCGCCGCGTTCGAGGACCGCGAGCGCCGCCTCTTCGGCGTCCAGTGGCACCCGGAGGTCAAGCACTCGGCGCACGGGCAGACGGTGCTGGAGCACTTCCTCTACGACGGTGCCGGCCTGGCCGCGGACTGGACCCCGGACAACGTCATCGCCGACCAGGTCGCCGCGATCCGCGCGCAGGTGGGTGACGCCCGGGTGGTCTGCGGGCTGTCGGGCGGCGTGGACTCCTCGGTCGCGGCGGCGCTGGTGCAGCGCGCGGTGGGGGACCAGCTCACGTGCGTGTTCGTGGACCACGGGCTGCTGCGCGAGGGCGAGGTGGAGCAGGTCGAGCGGGACTTCGTCGCCGCGACGGGCGTCAACCTGGTGGTGCGCGACGAGCGCAAGCGGTTCCTGAACGCCCTGGAGGGCCACTCCGACCCGGAGACGAAGCGCAAGATCATCGGCCGGGAGTTCATCCGGGTGTTCGAGGACGCGGCGCGCGACGTCGTCGCCGACGCCGGCGAGCACGGTGAGCAGGTGAAGTTCCTGGTCCAGGGCACGTTATACCCGGACGTGGTCGAGTCCGGCGGCGGTGAGGGTGCGGCCAACATCAAGAGCCACCACAACGTCGGGGGCCTGCCGGACGACCTGCAGTTCGAGCTCGTCGAGCCGCTGCGCACCCTGTTCAAGGACGAGGTGCGGGCCGTGGGCCGCGAGCTGGGCGTGCCCGAGCCGATCGTGGCCCGCCAGCCGTTCCCGGGGCCGGGGCTCGGCATCCGGATCATCGGTGAGGTCACGGCCGAGCGGCTGGAGATCCTGCGGCGCGCCGACGCGATCGCCCGCGAGGAGCTGACCCGGGCCGGTCTGGACGCCGAGATCTGGCAGTGCCCGGTGGTGCTGCTGGCGGACGTGCGCTCGGTGGGCGTCCAGGGCGACGGCCGCACCTACGGGCACCCGATCGTGCTGCGGCCCGTCTCCAGCGAGGACGCCATGACGGCGGACTGGACGCGGATGCCGTACGACGTGCTCTCGGCGATCTCGACGCGCATCACCAACGAGGTCAGCGAGGTGAACCGGGTGGTCCTCGACGTGACGAGCAAGCCGCCGGGCACCATCGAGTGGGAGTGAMTSPATAPEAPAAAATPRPVLVVDFGAQYAQLIARRVREANVYSEIVPHTWTPEQMLARDPAAIILSGGPSSVYATGAPFVDAALFDAGVPVLGICYGFQAMAQALGGKVAQTGVREYGGTEVEVCSAGALLAGTPATQTTWMSHGDSVHAAPEGFEVLATSSGSPVAAFEDRERRLFGVQWHPEVKHSAHGQTVLEHFLYDGAGLAADWTPDNVIADQVAAIRAQVGDARVVCGLSGGVDSSVAAALVQRAVGDQLTCVFVDHGLLREGEVEQVERDFVAATGVNLVVRDERKRFLNALEGHSDPETKRKIIGREFIRVFEDAARDVVADAGEHGEQVKFLVQGTLYPDVVESGGGEGAANIKSHHNVGGLPDDLQFELVEPLRTLFKDEVRAVGRELGVPEPIVARQPFPGPGLGIRIIGEVTAERLEILRRADAIAREELTRAGLDAEIWQCPVVLLADVRSVGVQGDGRTYGHPIVLRPVSSEDAMTADWTRMPYDVLSAISTRITNEVSEVNRVVLDVTSKPPGTIEWEPGPT0021580_1025DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
AK018_05913657thiE_2COG0352Thiamine-phosphate synthaseGTGAACTCCGACGCCGCCCGCCGCCGCCTGGCCGACGCCCGCCTCTACCTGTGCACCGACGCCCGCGAGGAGCACGGCGACCTCGAGGAGTTCCTGCACGCGGCGCTGCGCGGCGGGGTGGACGTGGTCCAGCTGCGGGACAAGACCCTCGACGTCGCGCGCGAGCTCGAGCTGCAGGACCTGGTCGCCCGTGTCGCGGCCGAGCACGACGCCCTGTGGGCGGTGAACGACCGGGCCGACGTCGCCCGGCTCACGGGCGCCCCGGTGGTGCACATGGGTCAGGGCGACCTGCCGGTACCCGCCGTTCGGACGCTGCTCGGACCCGAACCGGTGCTGGGACGCTCGACGCACTCGGCCGAGCAGGCCGCGACCGCGGACGCCGACGACGCCGTCGACTACTTCTGCGTCGGTCCCCTCTGGACCACCCCGACCAAGCCCGGGCGCCCCGCGGTCGGGCTCGACCTGCTGCGACAGGTCGCCGCCTCGGACCCGCGCACCCCGTGGTTCGCGATCGGCGGCATCGACGCCGAGCGGCTGGAGGCCGTGCTCGACGCCGGGGCGCGGCGCGTCGTCGTCGTCCGCGCGATCACGCAGGCGCCCGACCCGGAGCGTGCCGCACGGCAGCTGCGGGACCGGCTCGACGGCGTCCGGGCCTGAMNSDAARRRLADARLYLCTDAREEHGDLEEFLHAALRGGVDVVQLRDKTLDVARELELQDLVARVAAEHDALWAVNDRADVARLTGAPVVHMGQGDLPVPAVRTLLGPEPVLGRSTHSAEQAATADADDAVDYFCVGPLWTTPTKPGRPAVGLDLLRQVAASDPRTPWFAIGGIDAERLEAVLDAGARRVVVVRAITQAPDPERAARQLRDRLDGVRAPGPT0008995_660DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008995-thiE-K00788NANA
AK018_059151260dadA_2D-amino acid dehydrogenaseGTGGACGCTGCCACCACACCGCCCGACGGCGGCCGCGACCTCGTCGTCGTCGGCGGCGGGATCATCGGTCTCGCCGTGGCCTGGCGCGCCCTCGTCGCCGGCCTGAGCGTCACCGTCCTGGACCCGGAGCCCGGGGACGGTTCCACCCACGCCGCCGCGGGCATGCTGGCGCCCGCCACGGAGGCCGAGTTCGCCGAGGACGCCGCGCTGCACCTGCACCTCGCCGGTGCCGCGCACTGGTTATCGTTCGCCGCCGACCTGGAGGGCGCCACCGGGGTCGGGGTCGGCCTGCACGCGTCGGGGACGCTGACCGTCGCGCACGACCCCGACGACGCGGCGATGCTGCGGCGGATGCTCGGCCTGCACACCCGCCACGGCGTCACCTCCCGCGAGCTCACGGTCGCCGAGGCACGGCGCGAGGAACCCCTGCTGGGCCCCCGCATCTCCGGTGCGGCCTGGGTCCCCGGCGACCACGCCGTCGACCCGCGGGCGGCGCACCGGGCGCTCGTGCGTGCGGTGACGTCGGACCCGCGCGGCGCGCTCGTCGCCCGCTCCGCGGTCCACCTGGAGCAGGACGCCGGCGGCCGGGTGACCGGGGTGGTCGACGACGCCGAGCACGTCCACGCCGCCGGTGCCGTCGTGGTCGCCGCCGGCTGGGCGTCGGGAGCCCTGCTGGCCGGCGTGCGGGACGTCGCCGTCCCGACCCGCCCCGTCAAGGGGCAGACCCTGCGGCTGCAGACGGCGCCCGAGCTGGCGCCGCAGCACGTGATCCGCGGTCTGGTGCAGGGTCGCCCGGTGTACGTCGTGTCCCGTCCGCCCGCCGAGGACGGTCCGTGGGCCGGCACCAGCGAGCTCGTCGTCGGAGCCACCTCCGAGGAGAACCCCGACGACCGGCTCGCCACCGCGGGCGGGGTCTTCGCCCTGCTGCGGGACGCCCGCGCGCTCGTGCCGTCCCTGGACGAGGCGGCGCTCGTCGAGGTCACCCCCCGCGCCCGGCCGGCCACCCCTGACAACCTGCCGCTCGTGGGCGCCACCGCCGTGCCCGGCCTGCACCTGGCGACCGGCCACCACCGCAACGGCGTGCTCCTGGCACCGCTGACCGCCGACCTCGTCGTCGCCGGGCTCACGGGGACCTGGTTCGACGTCGAGTCGGCGGCCGCGGACCCGGGCGCGACGCTGGCGGCGCTGCACGCCACGGACCCCCGGCGGTTCGTCCCCCCGGTCCAGGACCCCCGCACCCCCGACGGAGCACACGGATGAMDAATTPPDGGRDLVVVGGGIIGLAVAWRALVAGLSVTVLDPEPGDGSTHAAAGMLAPATEAEFAEDAALHLHLAGAAHWLSFAADLEGATGVGVGLHASGTLTVAHDPDDAAMLRRMLGLHTRHGVTSRELTVAEARREEPLLGPRISGAAWVPGDHAVDPRAAHRALVRAVTSDPRGALVARSAVHLEQDAGGRVTGVVDDAEHVHAAGAVVVAAGWASGALLAGVRDVAVPTRPVKGQTLRLQTAPELAPQHVIRGLVQGRPVYVVSRPPAEDGPWAGTSELVVGATSEENPDDRLATAGGVFALLRDARALVPSLDEAALVEVTPRARPATPDNLPLVGATAVPGLHLATGHHRNGVLLAPLTADLVVAGLTGTWFDVESAAADPGATLAALHATDPRRFVPPVQDPRTPDGAHGPGPT0008955_163DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008955-thiO-K03153NANA
AK018_05916249hypothetical proteinATGAGCACGAGCACCCCGACCGGCACGACCGCCGTCGTCAACGGCGAGCCCTACGACCTCGGCACGACGGCCGGCGCCGCCGTGTCCGACGTCGTCGCCCACGTCCTGCCCCGGCACGTCGCCGACGGCGTGCCTCGCGGTGTCGCGGTCGCGATCGACGACGCCGTGGTGCCCCGCGGCGCCTGGGGCGCGACCGTGGTGCGTCCCGGCGACCGGGTCGAGGTCGTCACGGCCGTGCAGGGCGGCTGAMSTSTPTGTTAVVNGEPYDLGTTAGAAVSDVVAHVLPRHVADGVPRGVAVAIDDAVVPRGAWGATVVRPGDRVEVVTAVQGGPGPT0008970_204DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008970-thiS-K03154NANA
AK018_05917801thiG_2COG2022Thiazole synthaseATGAGCACCACCGACCCGCTGACCGTCGCCGGCACCGCGCTCGGCTCCCGCCTGGTGATGGGCACCGGCGGCGCGCACAACCTGCTCACGCTCGAGGAGGCGCTGATCGCCTCGGGCACCGAGCTGACCACCGTCGCGATGCGTCGTGTCGCCCCGCGCGCCGGCGGGGAGGCCGGCCGCGACGCCGGCATCTGGGGGCTGCTCGACCGGCTCGGCATCCGTGCGCTGCCGAACACGGCCGGCTGCTTCTCGGTGCGCGAGGCGGTCCTGACGGCGCAGCTCGCCCGGGAGGCCTGCGGGACGAACTGGATCAAGCTCGAGGTGATCGCCGACGACGTCACCCTGCTGCCCGACCCCGTCGGCCTGGTCGACGCCGCCGACGAGCTGGTCCGGGACGGCTTCGTCGTCCTGCCCTACACCAACGACGACCCCATCCTGGCGCGCCGCCTGCAGGACGTGGGCTGCGCCGCCGTCATGCCCCTCGGCGCACCGATCGGGTCGGGGCTGGGGATCCTCAACCCCCGCAACATCGAGGCGATCAGCGCCGAGGCCCGGGTGCCGGTGATCCTCGACGCCGGGGTCGGCACGGCCTCGGACGCCGCGCTCGCGATGGAGCTCGGCTGCGCCGGCGTCCTGCTGGCCACGGCCGTGACACGCGCCGAGGACCCCGTCCGCATGGCGCACGCGATGCGGCTCGGGGTCGAGGCGGGCCGGCTGGCGGCCGGTGCGGGCCGGATCCCCCGCCGCGAGGGTGCGCTGGCGAGCTCACCGACGGGCGGGCGCCTCGACCTGTCGCTGTAGMSTTDPLTVAGTALGSRLVMGTGGAHNLLTLEEALIASGTELTTVAMRRVAPRAGGEAGRDAGIWGLLDRLGIRALPNTAGCFSVREAVLTAQLAREACGTNWIKLEVIADDVTLLPDPVGLVDAADELVRDGFVVLPYTNDDPILARRLQDVGCAAVMPLGAPIGSGLGILNPRNIEAISAEARVPVILDAGVGTASDAALAMELGCAGVLLATAVTRAEDPVRMAHAMRLGVEAGRLAAGAGRIPRREGALASSPTGGRLDLSLPGPT0008965_333DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008965-thiG-K03149NANA
AK018_059181272moeZ_2COG0476putative adenylyltransferase/sulfurtransferase MoeZGTGACGGTGCACGACGGCGGCACGGGAGCGGACGCAGCGGCGGGCGCGGACGACGAGCAGCTCGCCCCCCTCGTCGAGCCGGGCCGGGACCTGACGGGTGCCGAGGCCGACCGGTACGCCCGGCACCTGGCGCTGCCCGGGCTGGGCCCCGAGGGTCAGCGACGGCTGGCCGCCGCCCGCGTGCTGGTGGTCGGTGCCGGCGGGCTCGGCAGCCCGGCGCTGCTCTACCTGGCGGCGGCCGGGGTGGGGGCGATCGGGATCGTCGACGACGACGTCGTGGACGTCACGAACCTGCAGCGTCAGGTCGCCCACGGCGAGGCCGACGTGGGCCGTCCCAAGACGACGTCGGCGCGCGCCACGATCGCGGGCCTCAACCCTCACGTCGACGTGGTGGAGCACCCGGCACGGCTCGGCCCGGACAACGTGCTGGACGTGCTGCGCGGCTACGACGTGGTGCTGGACGGCGCCGACAACTTCCCGACCCGGTACCTGGTCTCCGACGCCGCCGAGATCCTGGGGCTGCCGGTCGTGTGGGGCTCGATCGACCGGTTCGACGGCCAGGTCGCCGTCTTCTGGGGTGCGCCGCGGTTCCGCACGGCCGACGGCCTCGCGGTGCGCCGGGGCGCCACCTACCGGGACGTGTTCCCCGAGCCGCCGCCGCCCGGCGTCGTCCCGGACTGCGCGACCGGAGGCGTGCTTGGCGCGATGTGCGGCACGGTGGGCTCGGTGATGGCGACCGAGGCGGTCAAGCTGGTCGCCGGCGTCGGGCGCCCGCTGCTCGGCCGGCTCGCCGTCTACGACGCGCTGGCGCCCGACTGGCGCGAGCTCGCGGTCCGCCCCGACCCCACCCGCGAACCCGTCACCGAGCTGCTGGTCGGCGACGACGCCTACGCGGCCTTCTGCGGGCTCGCGCCCGCCGCCCCGTCTGCCGGGTCCGTCGGCGGCCCGGGCGGCGACCCGGAGGTCACCGCCGCCGAGGCGCGTGCCCTCCTCGGCGCGGACGCCGTGCTCGTCGACGTGCGTGAGGAGTGGGAGGCGCAGGTCCGGCCCGTCGAGGGCGCCCGCCGCGTCTCCAGCGGCACGTTCCTGGGCACCGCCGACGGCGGTCCGGACGACGCCGCCCGGGCCGCGCTGGCGGAGCTGCCCACCGACCGGACCGTGCTGCTCGTCTGCGCGGCCGGCCCCCGCTCGACCCGGGTGGCCGAGGTCGCCCGGGCGGCCGGGATCGACGCACGCTCCGTCGTCGGCGGCGTCCCCGCGCTGCTCGGCTGAMTVHDGGTGADAAAGADDEQLAPLVEPGRDLTGAEADRYARHLALPGLGPEGQRRLAAARVLVVGAGGLGSPALLYLAAAGVGAIGIVDDDVVDVTNLQRQVAHGEADVGRPKTTSARATIAGLNPHVDVVEHPARLGPDNVLDVLRGYDVVLDGADNFPTRYLVSDAAEILGLPVVWGSIDRFDGQVAVFWGAPRFRTADGLAVRRGATYRDVFPEPPPPGVVPDCATGGVLGAMCGTVGSVMATEAVKLVAGVGRPLLGRLAVYDALAPDWRELAVRPDPTREPVTELLVGDDAYAAFCGLAPAAPSAGSVGGPGGDPEVTAAEARALLGADAVLVDVREEWEAQVRPVEGARRVSSGTFLGTADGGPDDAARAALAELPTDRTVLLVCAAGPRSTRVAEVARAAGIDARSVVGGVPALLGNANANANANA
AK018_05919396putative proteinGTGAGCAGCCAGCAGAACACCCCCACCGCCACCGCCGAGCAGGCGGCCACCGCGATCCGCAAGGCACGCGGGGCGCTGACCCGGTACCGCGTGATGGCCCTGATCACCGGCGTGATGCTGCTGGTGCTGTGCGTCGAGATGTTCTTCAAGTACGTCGTCCCCGTGGACGCCGTGATCGACTACATGGGGTGGGTCCCCTTCGCCCACGGCTGGATCTACGTGGTCTACCTGGTCACCGTCCTGGACCTGTGGGCGAAGATGCGCTGGGGCTTCGGGCGCCTGGCCACCATGGTGTTCGCCGGCGTGGTGCCGGTGATGTCCTTCGTCCTGGAGAAGAAGGTGCACGCAGAGGCCGACGCGAAGCTGGCGGCCCTGGCGGAGCGCTACGGGGCGTGAMSSQQNTPTATAEQAATAIRKARGALTRYRVMALITGVMLLVLCVEMFFKYVVPVDAVIDYMGWVPFAHGWIYVVYLVTVLDLWAKMRWGFGRLATMVFAGVVPVMSFVLEKKVHAEADAKLAALAERYGANANANANANA
AK018_059201767yheI_2COG1132putative multidrug resistance ABC transporter ATP-binding/permease protein YheIGTGCGACCCCTCCCGCTGCCCGACCCGGGCACCCCTCCGCTCTCCTCGGCCGCACGGCTGCTGACCTGGCAGGCGTGGCGGCAGCGCGACGTCCTGACCAAGGCGATCGTCGCCGGCAGCGTCTCGCTGATGGCCTCGGCCGCCTCCCCGCTGCTGCTGGGCGGCGCCGTCGACTCCGGCCTGGCCGCGGGGTTCGGCAGCGAGCTCCTCGTCTGGTGCGGGTGGATGCTCGTGGCGGCCGTCACCATCGTCGTCTCCGGCGTGTTCAGCCACACCTACGACGTCGAGAACTGGCTGCGCGCCTCGTTCTCCTTCACCACGCTCGTCGGCCAGAAGGCCACCCGGTCGGGTCACGCCGTCACGAAGAAGCTGCCCACCGGCGAGGTCGTCGCCGCCGTGGCCAACGACGCGCTGCGCGCCGGCGACATGTTCGCGATGACGGGACGGTTCGTCGGCGGCGTGCTCGCCTACGTCGCCGCCGCGGGCTACCTGCTGTGGCAGGACCTGACGCTCGGCCTCGTCGTCGCGCTCGGCATCCCCGTCGTGGGCGGCGTGCTCGCGCTGCTCGTGCGTCCGCTGCAGCGTCGCCAGCAGACCCAGCGCGAGTCCGTCGGCCGGCTGACCGCGCTCGGCTCCGACACCGTCGCAGGCCTGCGGATCCTGCGCGGCATCGGCGGAGAGGACGTCTTCTCGGGCCGGTACGCCCGCCAGTCGCAGGAGGTGCGCCGCCGCGGCGTGCGGGTCGCCGGCGTGCAGTCCGTCCTCGACGGGCTCCAGGTGCTGCTGCCCGGCCTGCTCGGCGCCCTGGTGCTGTGGCTCGGGGCCCGCGCCGTCGTGCGCGGCGACCTGACCGCCGGCGAGCTCGTGACCTTCTACGGCTACACCGCGTTCCTGGCCTGGCCCGTGCAGATGGCCACCCAGATGCTGCAGATGACCACCAACGCCCTCGTCTCCGCGCGCAAGATCCTCGGGGTGCTGCGCGTGACCGAGGCGACGCCGCAGGCCGACGCACCCGCCGCGGCCCCGCCGTCGGGCAGCGACCTCGTCGACCACGCCTCCGGCCTGACCCTGCGTCCCGGACGCGTCGCGGCCCTCGTCTGCCCGGACCCCGACGTCGCGGCGGTCGTGGCCACGCGGCTCGGCCGGTTCGACGACGAGGCCGAGTCGGGCACGCCCGTCACCCTCGGCGGCGTGCCGCTGGCCGCCCTCGACAAGGAGGCCCTGCGGCACCGCGTCGTCGTCTCCGAGGCGACCGGGCACCTCTTCTCCGGGATCCTCGGCGAGGAGCTCGACGCCCGCGGCCGCGCCACCGAGGCCGACCTCACCGCGGCGATCCTGGCCGCCGACGCCCAGGACGTGCTCGACTCCCTGCCCGGCGGCCTGGCCGGCGAGCTGCCCGAGAAGGGTCGGTCGCTGTCCGGCGGGCAGCGCCAGCGCGTCGCCCTGGCCCGCGCGCTGCTCACCGACCCCGAGATCCTCGTGCTCGTCGAGCCCACCAGCGCCGTGGACGCCCACACCGAGGCGCGGATCGCCGAACGCGTCGCCGCGGCCCGCCGGGGACGGACCACCCTGGTCGTCACCGCCAGCCCGCTCGTGCTCGACCACGTCGACGACGTCGTCCTGCTGTCCCCCGACGGGAGCGTCGTCACCACCGGCACGCACGCCGACCTGCTCGCCCGCGGCGACGACGCCGGCACCCGCTACCGCGCCGTCGTCGGCCGCTCCCTGGCCGACGGCCACGACACCCTCGAAGGAGCCACGCGATGAMRPLPLPDPGTPPLSSAARLLTWQAWRQRDVLTKAIVAGSVSLMASAASPLLLGGAVDSGLAAGFGSELLVWCGWMLVAAVTIVVSGVFSHTYDVENWLRASFSFTTLVGQKATRSGHAVTKKLPTGEVVAAVANDALRAGDMFAMTGRFVGGVLAYVAAAGYLLWQDLTLGLVVALGIPVVGGVLALLVRPLQRRQQTQRESVGRLTALGSDTVAGLRILRGIGGEDVFSGRYARQSQEVRRRGVRVAGVQSVLDGLQVLLPGLLGALVLWLGARAVVRGDLTAGELVTFYGYTAFLAWPVQMATQMLQMTTNALVSARKILGVLRVTEATPQADAPAAAPPSGSDLVDHASGLTLRPGRVAALVCPDPDVAAVVATRLGRFDDEAESGTPVTLGGVPLAALDKEALRHRVVVSEATGHLFSGILGEELDARGRATEADLTAAILAADAQDVLDSLPGGLAGELPEKGRSLSGGQRQRVALARALLTDPEILVLVEPTSAVDAHTEARIAERVAAARRGRTTLVVTASPLVLDHVDDVVLLSPDGSVVTTGTHADLLARGDDAGTRYRAVVGRSLADGHDTLEGATRNANANANANA
AK018_059211773COG1132putative ABC transporter ATP-binding proteinATGAGCGCCGCGACCGCCACCGCGCCGGGCACGACGGCGAAGCAGCTGCCGATCGCCGACCGGCACGAGGTGAAGCGCACCGTCGGCCGGCTGTTCCGCAGCCACCGCGCCCAGCTCGCCGGGATCGCCGTCCTGCACTCCGTCGCCGCCGTCGCCGGGCTCGCCGGACCGTTCCTCATGGGGCGGTTCATCGACGAGGTCTCGGCCGGCACCACCCTGGCCCGAGTCAACCAGATCGCCCTGATCCTCGTGGGCGCCGTCGTCGTGCAGGCCGTCGTGACACGGTTCGCGCAGCGGCTGTCCATGGTGTTCGGCGAGCAGGTGTTCGCCGAGCTGCGCGAGGAGTTCATGCACACCGCCACCCGGCTGCCGCTGTCGGTGGTGGAGAAGGCCGGGACCGGTGACCTGGTGGCCCGCACCACCAACGACGTCAACAAGCTGCAGCACGCCGTCCGCTTCGGCGTGCCGCGGGTGCTGGTGTGCGTCGTGACCATCGGGCTGACCCTCGTCGCGTCGTTCCTCACCGACCCGCTGGTGGCGCTCGCGCTCCTCGTCGGCGTCCCGCTGATCGTGGTCGCCGTGCGCTGGTACCTGCGCCGGGCCACCCCCGGCTACCTGCGCGAGTCCGCCGCATACGCCACCGTCAACGGCACCATCACCGAGGCCGTCGAGGGGGCTCGCACCACCGACGCCCTGTGGCTGGGCTCCCGGCTGCGGCGCCGCCTGCGGGGCGACCTGTCGGAGGCGTTCGCCGCCGAGAGGTACACCCTCGGGCTGCGGCTGCGCCTCATCCCCGCGCTCGACACCGCGGTGGCGGTCGCGCCCGTCGCGGCGATCGTCTGGGGAGCCTGGCTCGTGTCCCAGGACGTCACCACGGTCGGCGCCGTCGCCACCATCGCCTTCTACGCCCACCAGATGGGCGGGCCCGTGTTCGACCTGGTGTTCTGGCTCGACGAGCTCCAGGTCGCCGCGGTGGCACTGGCCCGCGTGGTCGGCGTCGGGCTGGTCGGCCCGGACCGGACCGCCTCCGGCGAGGTCCCGGCGTCGGACGAGGTCCGCGCCCACGAGGTGCGCTACGCCTACCGCGAGGGCCACGACGTGCTGCACGGCGTCTCCGTCGACCTGCGCCCCGGGGAGCGGCTGGCCGTCGTCGGACCGTCCGGGGCCGGCAAGTCGACGCTCGGGCGCATGCTCGCCGGCATCCACCCGCCCACCGGCGGGACGGTGACAGTCGGCGGCGTGCCGTTGGTCGACCTGCCGCTGGAGGAGCTGCGCGGCCAGGTGGCGCTGGTCACCCAGGAGCACCACGTGTTCGTCGGGACGCTGGCGGAGAACCTGCAGCTCGCGGACACCGGCGCCTCCGAGGAGGCCCTCTGGGAGGCGCTCGAGGCCGTCGACGCCCGCGGCTGGGCGGCGTCGCTGCCCTCGGGGCTGGCCACGGAGGTGGGCTCGGGCGGGCACCCGTTGTCCCCGGCGCAGGCGCAGCAGTTGGCCCTCGCCCGGCTCGTGCTGCTCGACCCGCACACCCTCGTGCTCGACGAGGCGACCTCGCTGCTCGATCCGCGGGCGGCCCGACACCTGGAGCGGTCGCTCAACGCCGTGCTCACCGGACGCACCGTCGTGGCGATCGCCCACCGGCTGCACACCGCGCACGACGCCGACCGGGTGGCCGTCGTCGACGGCGGGCGGATCACGGAGATCGGGCCCCACGACGAGCTCGTGGCCGCCGGCGGCGAGTACGCCCGGCTGTGGCGGTCCTGGCAGGCCGGATAGMSAATATAPGTTAKQLPIADRHEVKRTVGRLFRSHRAQLAGIAVLHSVAAVAGLAGPFLMGRFIDEVSAGTTLARVNQIALILVGAVVVQAVVTRFAQRLSMVFGEQVFAELREEFMHTATRLPLSVVEKAGTGDLVARTTNDVNKLQHAVRFGVPRVLVCVVTIGLTLVASFLTDPLVALALLVGVPLIVVAVRWYLRRATPGYLRESAAYATVNGTITEAVEGARTTDALWLGSRLRRRLRGDLSEAFAAERYTLGLRLRLIPALDTAVAVAPVAAIVWGAWLVSQDVTTVGAVATIAFYAHQMGGPVFDLVFWLDELQVAAVALARVVGVGLVGPDRTASGEVPASDEVRAHEVRYAYREGHDVLHGVSVDLRPGERLAVVGPSGAGKSTLGRMLAGIHPPTGGTVTVGGVPLVDLPLEELRGQVALVTQEHHVFVGTLAENLQLADTGASEEALWEALEAVDARGWAASLPSGLATEVGSGGHPLSPAQAQQLALARLVLLDPHTLVLDEATSLLDPRAARHLERSLNAVLTGRTVVAIAHRLHTAHDADRVAVVDGGRITEIGPHDELVAAGGEYARLWRSWQAGNANANANANA
AK018_05922231hypothetical proteinGTGCCCATCACCGTGATCATGGTGGGTGGCAGCAGCCCGATGAGGCGCCGCAGTGCGGCGTGCACCGCCCGGACCTCGGTGACGGGTACCGCGATCCGGGTCGACCCGCGCATCGTGGCCCGCACCGGCTTCTCCAGCAGGGACAGGACCACGAAGATCCCGGTCGCCAGCGCGAAGCACGCCGTGGCGGCCGCCGTGACGAGAGCCGTCACCGCCCGTCCTCCGCCGTGAMPITVIMVGGSSPMRRRSAACTARTSVTGTAIRVDPRIVARTGFSSRDRTTKIPVASAKHAVAAAVTRAVTARPPPNANANANANA
AK018_059231635hypothetical proteinATGACCGCCCCGACCGTGCACGTGTTCAGCAAGCCCGACTGCGTCTACTGCCGCGCCGCCAAACACACCCTCGACAGCGCCGGCATCACCTACACCCAGCACGACGTCACCGCCGCCGAGCGCACCGCCGACACCGCCGCCTACTACTCGGGGCAGCACACCGTGCCCCAGGTCTTCGCCGGCGACACCTGGATCGACGCCCCCGACGACGTCAAGGCCCTCGCCGCCTCCGGCCGGCTCACCGACGTCGTCGCCCGCGCGACCGGCCCCGCACCCTGGGACGCCCCCGGCAGCGCCACGGACGGCGACCTCGCCCGCGGCGCCGAGGACGTCGCTCTGCACAGGTACCTCCCCGCGAGCGACGGCACCCACGACGACGACCCCGAGGCGTGGCCCATCCTGCGGTTCTACCGCGAGTTCTTTGGGTTCTGGCCGAACACCTTCGCCTACCTCCACCACTGGCCCACCGCGTACAAGCTGTTCGTGTACTGCCAGAACCTGGCGTCCGTGCGCGGCGCGATCGGCGTCGTCGGGCACGGCGGCATGGCCGCCATCGGGTACGCCACCTCCGCCGCGCAGGGCTGCACCTACTGCATGACGCACGCCGTCGCCTACGGAGGGAAGGACCTCGACGTCCCGGCAGCGCTGTCCGAGGTCCGCAAGGGCGGGTCCGACGACGGCCCCCTCGGACCGTTCGAGGCGGCGCTCGCGGACCTCGCCGCCCGGGCCACGCGGCACGCCGTCACCGCGAAGAGCCTCGAGGCCGTCCGCCGCACCGCGCCGCAGGCTCGCGTGGGCGCCGTCGACCCGACCTCCGCCGTCGAGGCCGCGACGCAAGTCGCCGCCTCGTTCGGGTTCCTCAACGTGTTCAACGACCTCGGCGGACTCGAGATCGAGGGGGACTGGGCCGCCACCGCCGCGGCCCGCGGCGTGGACTCGGGGCGGCACGGCGTCGCGGACGCCAACCCGGACAACCTGTCCCACGAGCTGCCGCAGGGCGGTCCCGGCCTGGAGGACATGCTCGCCGACTACGCCCGGCGGGTGGGGGACCCGGAGGCCTATGCCGCCGAGCACCTCGGCCTGGTCCCCGCCTGGGTCCGCGCCTGGCCCGAGGCCTCGCGGCGTCACCACGTCTACCTGTACGCGCAGCTCCTCGGCGACGGCGACGGGTCCCGCGTGCCGGCCGAGCTCAAGCACCTCATGGCCCGGGTGTCGGCCGTCGCACGCGATCACTCCTACCTCGCCGCGGTGGAGGGCTACCTGGCGACGCAGGCCACGGGAGCCACGGACCGCACCGTGGAGCGCGTGCGGCGCGCCTACGACGCGGCGTCGGGCCGGGACGACGGCGGCATCTTCGACGACGCCGAGCGGGCTGCGCTGCGGCTGGCCTGGCTGTCGGCCCAGGCGCCGCTCACGACGCCGCGCCGTGACGTCGAGGCGGTCACCGAGCACTTCGACACCCAGCAGGTCGTCGAGCTCATGGTCGCCTGCGCGGTGGCCTCGATGGTGCAGCGGTTCGTCGCGGTGACGGCTCCGGAGACCGAACCGGAGGTCGAGCGGTTCCTCGCCGCGCACGGCCTGGCGTCCGAGCCGCTGGAGATCCGCTACCCGGTCACGGCGGAGGACGGGCGGTGAMTAPTVHVFSKPDCVYCRAAKHTLDSAGITYTQHDVTAAERTADTAAYYSGQHTVPQVFAGDTWIDAPDDVKALAASGRLTDVVARATGPAPWDAPGSATDGDLARGAEDVALHRYLPASDGTHDDDPEAWPILRFYREFFGFWPNTFAYLHHWPTAYKLFVYCQNLASVRGAIGVVGHGGMAAIGYATSAAQGCTYCMTHAVAYGGKDLDVPAALSEVRKGGSDDGPLGPFEAALADLAARATRHAVTAKSLEAVRRTAPQARVGAVDPTSAVEAATQVAASFGFLNVFNDLGGLEIEGDWAATAAARGVDSGRHGVADANPDNLSHELPQGGPGLEDMLADYARRVGDPEAYAAEHLGLVPAWVRAWPEASRRHHVYLYAQLLGDGDGSRVPAELKHLMARVSAVARDHSYLAAVEGYLATQATGATDRTVERVRRAYDAASGRDDGGIFDDAERAALRLAWLSAQAPLTTPRRDVEAVTEHFDTQQVVELMVACAVASMVQRFVAVTAPETEPEVERFLAAHGLASEPLEIRYPVTAEDGRNANANANANA
AK018_05924582hypothetical proteinGTGGCACCTGAGCGACGACGACCCGACCCCCGCATCGAGCGCACCCGGGCGGCGGTGACCAGCACCGCGGCCGACCTGCTGGTGGCCGGCGGGGTGCGCGCCGTCACCATCGAGGCGGTGGTGGAGGCCTCCGGCGTCGCGCGCTCGACCATCTACCGGCACTGGCCGACCCGATCCGACGTCGTCGCCGCCGCGTTCGCCCACCTGCTGCCGCCCACCACTCCCCCGCCCGCCGAAGGCTCGCTCGCCGACCGGCTGCGTGCCGTGATGACGCCGCGGGTGACCGAGATGAACGGTGCCCGCTACGTACCGCTCATCTCCAGCCTGCTCGGGGAGGCGCCCCGCGATCCGGAGCTCGCCGACCTGCGCGAGCAGTTCGTGCGAACCCAGCAGGCCCCGCTGCTGGCGGTGCTGCGCGACGCCGTCGCCGCGGGCGAGCTGCCGGCCGGGCTCGACGTCGACGAGGCCACGTCCGCGCTGCTGGGGCCCCTGCTGTTCGAGCGGCTGATCCTCGGTCGCGAGATCGACCCGGGATTCGCCGAGCGCACCATCGACGCGTTCCTCGGCGCCGCAACGCCCTGAMAPERRRPDPRIERTRAAVTSTAADLLVAGGVRAVTIEAVVEASGVARSTIYRHWPTRSDVVAAAFAHLLPPTTPPPAEGSLADRLRAVMTPRVTEMNGARYVPLISSLLGEAPRDPELADLREQFVRTQQAPLLAVLRDAVAAGELPAGLDVDEATSALLGPLLFERLILGREIDPGFAERTIDAFLGAATPNANANANANA
AK018_05925759hypothetical proteinGTGCCGACCTGCTGCGACAGATTCGCGCCGTCGACGTGCCTCGACCTGGAGCACTGGTTCTCGCACACAAGCGCTGCGGTGCTGCACGGCTGCTGGACCTGGCGGCTGTCCGACGTCGTCCACCTGACCCAGCTCCGGCCTCCGAACCTGGAGCAGTCACGGGACCGGACGCTGCGGCGTCACTGGACCGATCTACCGGTGCGCGACCGCACCGAGGTGTCCGGGGTGCCGGCGACGACGCTGGAACGCACCGTCGTCGACTGCGCACGGATCCTGCGACCGGCCCAGGGCCTGGTCGTCGCCGACTCGGCGCTCCGCGGCGGCGCCGACCCCACGGTGATCGGCACGATCCTCGAGGAGTGCGGGCGCCGGCGTGGCGTCGTGCAGGCTCGGGAGGTGCTCGAGCTGGCGGACCCGCGGTCGGAGTCACCGGGAGAGACGGTCCTGCGGTGGATCGCCCACGACGAGGGTCTGCCGACGCCGGTGCCCGGGTTCGACGTCGAGACCGACCGCGGCAGGTTCTGGCTCGACCTCGCGTGGCCGGAGTGGAAGGTCGCCGTCGAGTTCGACGGCGCCGTGAAGTACTCGGGCGGAGACTACGGGAACCCGTCGGCACGGATCGTCGCGGAGAAGGCTCGCCAGGACGCCCTGGAGGAGGCCGGGTGGATCGTCATCCGCGTCGTCTGGCAGGACCTCGGCGACCCCGCGGGCACCGCCGAGCGGATCCGACGGGCACTGTGGAGCCGCGCTCGCCGGTGAMPTCCDRFAPSTCLDLEHWFSHTSAAVLHGCWTWRLSDVVHLTQLRPPNLEQSRDRTLRRHWTDLPVRDRTEVSGVPATTLERTVVDCARILRPAQGLVVADSALRGGADPTVIGTILEECGRRRGVVQAREVLELADPRSESPGETVLRWIAHDEGLPTPVPGFDVETDRGRFWLDLAWPEWKVAVEFDGAVKYSGGDYGNPSARIVAEKARQDALEEAGWIVIRVVWQDLGDPAGTAERIRRALWSRARRNANANANANA
AK018_05926882hypothetical proteinATGATCCTGGCGCTGCTGCTGCTCGCCGCTCTCGCGTGCGGGCGTCTCGGCGTCTGGCAGATCGACCGGGCCTACGAGCGGGCCAACCTCGCCGCCGAGCAGGAGGCCGCCGAGGCCGCGGCCGCCGGTGCCTCCGACCTGGGCGACCTGCTGGCCCCGCAGTCGGCGTTCCCCGGCGAGCTCGTGGGACGCGAGGTCGCGGTGACCGGGGTCTACGAGCCCGACGGGCAGCTGCTCGTCGCCGGCCGTGCTCTCGACGGTGCCGAGGGCTACCTGGTGCTCACGCCGCTGCGGGTGTCCGACGACGGCACCGGCGGGGCGTCGTGGGCCGACCTGTCCGGCGCCCCCGTGCTGCCCGTGGTGCGCGGCTGGGTGGAGTCGTCGACGCCGGGCGCCGAGGCCCTCGAGGTCCCCGACGGGGAGGTCGAGGTGACCGGCTGGTTGCAGGCCTCGGAGTCGACGGCGCGTGCCGGCGGGCTGCCGGAGAATCCCGGAGGCCCGCCCCTGACCCGCGACATCGCCTCGTCGGCGCTCGCCAACACCTGGGAGGGGCCCATCTACACCGGCTACGCGGTGCTGACGTCGTCGGACCCGGCGCAGGCCTCGGCGTCGGACGGCGGCCCGGCCCTGCTGCCGCGCCCGGAGCTGGAGGGCGGCGACGACGTCGACCTGCAGAACTTCTTCTACGCGCTGCAGTGGTGGGTGTTCGGGCTGTTCGCCGTCGCCCTGTGGGTGCGGCTGGTGCGCGACGAGATGGCCGGCGGACGGCGGGAGACGCGGCGCGATCGGCGCCGGCGGGGCGGCGATGACGGCGATGGCGACGACGGCGCTCGCGACGACGACCCGATCGGCACCGGCATCGCCGGGCTGCCCGCCCCCTGAMILALLLLAALACGRLGVWQIDRAYERANLAAEQEAAEAAAAGASDLGDLLAPQSAFPGELVGREVAVTGVYEPDGQLLVAGRALDGAEGYLVLTPLRVSDDGTGGASWADLSGAPVLPVVRGWVESSTPGAEALEVPDGEVEVTGWLQASESTARAGGLPENPGGPPLTRDIASSALANTWEGPIYTGYAVLTSSDPAQASASDGGPALLPRPELEGGDDVDLQNFFYALQWWVFGLFAVALWVRLVRDEMAGGRRETRRDRRRRGGDDGDGDDGARDDDPIGTGIAGLPAPNANANANANA
AK018_059272484xfp_2Xylulose-5-phosphate/fructose-6-phosphate phosphoketolaseATGACCCAGACCGCTTCCACCGACCCGACGCCCCGGACCTGGCCCGCCACGGGCGTCGCCGAGCTGTCGGACACCGACGTCGAGCGCCTCGACCAGTGGTGGCGTGCCGCCAACTACCTGTCGATCGGCCAGATCTACCTGCTCGACAACCCGATGCTGCGCCGGACGCTCGAGCGCGACGACGTCAAGCCGCGCCTGCTCGGTCACTGGGGCACGACGCCGGGCCTGAACTTCCTGTACGCGCACCTGAACCGCGTCATCCGCGAGCGCGAGCAGTCCACGATCTACGTCGCCGGTCCCGGACACGGCGGCCCCGGGCTCGTGGCGAACACCTACCTCGAGGGCACCTACTCGGAGATCTACACCGACGTCACCCAGGACGACGAGGGGCTGCGCCGCCTGTTCCGGCAGTTCTCGTTCCCGGGCGGGATCCCGAGCCACGTGGCACCCGAGACGCCGGGTTCGATCCACGAGGGCGGCGAGCTCGGCTACGCCCTGTCCCACGCCTACGGCGCGGCGTTCGACAACCCCGACCTGCTCGTCGCGGCGGTGGTCGGCGACGGCGAGGCGGAGACGGGCCCGCTGGCGACGAGCTGGCACTCGAACAAGTTCGTCAACGCCCGCACCGACGGCGTCGTGCTGCCGATCCTGCACCTGAACGGCTACAAGATCGCCAACCCGACGGTGCTCGCCCGCATCAGCGACGACGAGCTGCGTGACCTGATGATCGGCTACGGGCACACCCCGTACTTCTTCGTCGGCGGGTTCGACGGCGAGGACCACGCCGCGGTGCACCGCCGCTTCGCGAAGCTGCTCGACGAGGTGATGGAACACATCGCCCGCATCAAGGCCGACGCGGCGGCCGGGAACGACGAACGGCCCGCCTGGCCGATGATCGTGTTCCGCACCCCGAAGGGCTGGACGTGCCCGCCCGAGATCGACGGGCACAAGACGGAGGACTCCTGGCGCGCCCACCAGGTGCCGCTCGCGAGCGCGCGCGACACCCCCGAGCACCTGCAGGTGCTGCGCGACTGGATGGAGTCCTACCGCGCCCACGAGCTGTTCGACGACGGCGGACGCCTGCTGCCCGAGATCGCGGCGCAGGCGCCGGCCGGCGAGCTGCGCATGAGCGCCAACCCGCACGCCAACGGCGGGCTGCTGCTCAAGGACCTGCGGATGCCCGACTTCCGCGAGTTCGCCGTCGACGTGCCCGAGCACGGCGGCGCGGTGGCCGAGGCGACGCGCGTGCTGGGGACGTGGCTCAACGAGGTCGTGCGCCGCAACCCGGACAATTTCCGAATCTTCGGGCCGGACGAGACGGCGTCGAACCGGCTGCAGGCCGTGTACGAGACCACGGACAAGCAGTGGAACGCGGACTTCTACGGCCCGGACGTCGACGAGCACATGGCGCGGGCCGGCCGCGTCATGGAGATGCTGTCCGAGCACCAGTGCCAGGGCTGGCTCGAGGGCTACCTGCTCACGGGGCGCCACGGGCTGTTCACCAGCTACGAGGCGTTCATTCACATCGTCGACTCGATGTTCAACCAGCACGCCAAGTGGCTCAAGGTGACCAACCACATACAGTGGCGGCGTCCCCTCGCGAGCCTCAACTATCTGCTGTCCAGCCACACCTGGCGCCAGGACCACAACGGGTTCAGCCACCAGGACCCGGGGTTCATCGACCACGTCGTCAACAAGAAGGCCGAGATCGTGCGGGTGTACCTGCCGCCGGACGCGAACACGCTGCTGAGCACGTACGACCACTGCCTGCGCAGCCGCCAGTACGTCAACGTCGTGGTGGCCGGAAAGCAGCCCGGGCCGCAGTTCCTGTCGATGTCGGAGGCGATCGCGCACTGCACGCGCGGCGTCGGCATCTGGGAGTGGGCCGGGACCGAGACACCAGGTGAGGACCCGGACGTGGTGCTCGGCTGCGCCGGCGACATCCCGACGCTGGAGGTGCTGGCCGCCGTCGACATCTTGCGCAACGAGCTGCCGGACCTGAAGGTGCGCGTGGTCAACGTCGTCGACCTGATGCGGCTGCAGGACGAGCACGAGCACCCGCACGGCATGTCCGACAAGGACTTCGACGGCCTGTTCACGCCGGACAAGCCGGTGATCTTCAACTACCACGGCTACCCGTGGCTGATCCACCGGCTCACCTACCGCCGCAGCAACCACGCCAACATCCACGTGCGGGGGTACAAGGAGGAGGGCACCACGACCACGCCCTTCGACATGGCGATGCTCAACGACATCGACCGCTACCACCTGGTGCTCGACGTCATCGACCGCGTGCCGGGTCTCGGCTCGAAGGTCGCGGGCTTCCGCCAGCGGATGGTCGACGCCCGCCTCGCGGCACGGCAGTACACGCGCGAGCACGGCGAGGACATCCCCGAGGTGCGCGACTGGGTGTGGCCGGGCGCCCGCGAGGTCGTCGGCTCCGAGGCCTCCGGCATGGGCGACACCGGCGGCGACAACGACTGAMTQTASTDPTPRTWPATGVAELSDTDVERLDQWWRAANYLSIGQIYLLDNPMLRRTLERDDVKPRLLGHWGTTPGLNFLYAHLNRVIREREQSTIYVAGPGHGGPGLVANTYLEGTYSEIYTDVTQDDEGLRRLFRQFSFPGGIPSHVAPETPGSIHEGGELGYALSHAYGAAFDNPDLLVAAVVGDGEAETGPLATSWHSNKFVNARTDGVVLPILHLNGYKIANPTVLARISDDELRDLMIGYGHTPYFFVGGFDGEDHAAVHRRFAKLLDEVMEHIARIKADAAAGNDERPAWPMIVFRTPKGWTCPPEIDGHKTEDSWRAHQVPLASARDTPEHLQVLRDWMESYRAHELFDDGGRLLPEIAAQAPAGELRMSANPHANGGLLLKDLRMPDFREFAVDVPEHGGAVAEATRVLGTWLNEVVRRNPDNFRIFGPDETASNRLQAVYETTDKQWNADFYGPDVDEHMARAGRVMEMLSEHQCQGWLEGYLLTGRHGLFTSYEAFIHIVDSMFNQHAKWLKVTNHIQWRRPLASLNYLLSSHTWRQDHNGFSHQDPGFIDHVVNKKAEIVRVYLPPDANTLLSTYDHCLRSRQYVNVVVAGKQPGPQFLSMSEAIAHCTRGVGIWEWAGTETPGEDPDVVLGCAGDIPTLEVLAAVDILRNELPDLKVRVVNVVDLMRLQDEHEHPHGMSDKDFDGLFTPDKPVIFNYHGYPWLIHRLTYRRSNHANIHVRGYKEEGTTTTPFDMAMLNDIDRYHLVLDVIDRVPGLGSKVAGFRQRMVDARLAARQYTREHGEDIPEVRDWVWPGAREVVGSEASGMGDTGGDNDPGPT0017575_73DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017575-xfp-K01621NANA
AK018_059282133pta_2COG0280Phosphate acetyltransferaseGTGAGCACTCGGAGCATCTACATCGCCTCCCCCGAGGGGGACACCGGCAAGTCGACGGTCGCGCTGGGGGTGCTCGACCTCCTGGCCCGTCAGGTGCCGCGGGTCGGCGTCTTCCGCGCGGTGTCCCGCGTCCCGGAGCGTCCGGCGTCCGACGGCGGCACGGCGGTGCGCGACCACGTCCTGGAGCTGATGCTCGCGCACGACGGCGTGGACCTGTCGTACGGCGAGACCGTCGGCGTCACCTACGACGAGGTGCACGCCGACCCCGACGCGGCCCTGTCGCGCATCGTGGACCGGTACCACCGGGTGGCCGCGCAGTGCGACGCCGTGGTGGTGCTCGGCACCGACTACACGGACGTCTCGGGGGCCACCGAGCTGGCCTTCAACGCGCGGGTGGCCGCGAACCTCGACTCCCCCGTGCTGCTCGTGGTCTCCGGACGCGACCGCGGCATCGAGGACGTGACCACGCTGACGCGTCTCAGCCTCGCCGAGCTGCGCGCCAACCATGCCCAGCCGGTCGGCGTGATCGTCAACCGCGCCGAGGCCGGGGTGCACGACGCCGGTGCGACGGCCCGGGCGGAGATCTCCGGCGACGACCTGCCCACCTGGGTGATCGCCGAGGAGCCGTTCCTCGGTGCGCCGACGGTCGCGCAGCTCGCCGACGTGGTCGACGGGACCCTCCTGCTCGGCGACCGCGACCTGATGTCGCGCGAGGCGCTCGACGTCATCGTCGGGGCCATGACGTTCGAGCACATGCTCGGCCGCCTCGCCGACGGCACCGTGGTCATCACCCCGGGCGACCGCACCGACGTCGTGCTGGGGCTGCTCGCCGTGCAGGCCGCCACCCGGTTCCCGTCGCTGGCGGGGATCATCCTGACCGGCGGGCACCGGCCCGCGGGCCGGTCCGGGCAGCTCGCCGCCGCGCTGCAGCCGCACGTGCCGATCATCGCCACGGCCATGGACACCTACGAGGTGGCCCGCGCGGCCTCGCGCACCCGCGGCATCATGTCCACCGACGCCCAGCGCAAGCACGACGTCGCGCGGGCCATGTTCGAGCAGAGCGTCGACGCCGACGAGCTGCTCGCCCGCCTCGACGTCGCACGCACCCCCGTGGTGACGCCGCTGATGTTCGAGCACGAGCTCGTCGAGCGGGCCCGCGGCGACCGGCGCCGTGTCGTGCTGCCCGAGGGGGACGACGACCGCATCCTGCGCGCCGCCTCCACGGTGCTGGCCCGCGGCATCGCCGACCTGGTGATCCTCGGCGACGAGACGGCGATCCGCACCCGTGCCACCGAGCTGGGCCTCGACATCTCCGCAGCGCGGGTGCTGTCCCCCACCGACCCCGAGCACGTGGAGCGGTTCGCCGCCGAGTACGCGCGGCTGCGCGCGCACAAGGGCGTCACGATCGAACGTGCGCGCGAGATCGTCACCGACGTGTCCTACTTCGGCACGATGATGGTCCACCTCGGTCTGGCCGACGGGATGGTCTCCGGCGCCGCGCACACCACGGCGCACACCATCCGCCCCTCGTTCGAGATCATCAAGACCCAGCCGGGCGTGTCCGTGGTGTCCTCGGTGTTCCTCATGTGCCTGCCCGACCGGGTCCTCGCGTACGGCGACTGCGCCGTCAACCCGGACCCGACGGCGGAGCAGCTCGCCGACATCGCGGCGTCGTCGGCCGCCACGGCGGCCCAGTTCGGCGTGGAGCCGCGCGTGGCGATGCTGTCCTACTCGACCGGCAGCTCCGGCTCGGGCGCCGACGTGGACAAGGTGCGGGCCGCGACCGAGCTCGTCCGGGACCGCGACCCGGCGCTGAGCGTGGAGGGACCGATCCAGTACGACGCCGCCGTCGACGCCTCGGTCGCGGCCTCCAAGCTGCCCGACTCGTCGGTGGCCGGCAAGGCGACGGTGTTCATCTTCCCGGACCTCAACACCGGCAACAACACGTACAAGGCCGTGCAGCGCTCGGCCGGGGCGGTGGCGATCGGCCCGGTGCTGCAGGGGCTGAACAAGCCCGTCAACGACCTCTCGCGCGGGGCGCTCGTGGCCGACATCGTCAACACCGTCGCCATCACCGCGATCCAGGCGCAGGGCGTCGCCGCCCCCAGCACGTCGAACGGAGAGTCCGCATGAMSTRSIYIASPEGDTGKSTVALGVLDLLARQVPRVGVFRAVSRVPERPASDGGTAVRDHVLELMLAHDGVDLSYGETVGVTYDEVHADPDAALSRIVDRYHRVAAQCDAVVVLGTDYTDVSGATELAFNARVAANLDSPVLLVVSGRDRGIEDVTTLTRLSLAELRANHAQPVGVIVNRAEAGVHDAGATARAEISGDDLPTWVIAEEPFLGAPTVAQLADVVDGTLLLGDRDLMSREALDVIVGAMTFEHMLGRLADGTVVITPGDRTDVVLGLLAVQAATRFPSLAGIILTGGHRPAGRSGQLAAALQPHVPIIATAMDTYEVARAASRTRGIMSTDAQRKHDVARAMFEQSVDADELLARLDVARTPVVTPLMFEHELVERARGDRRRVVLPEGDDDRILRAASTVLARGIADLVILGDETAIRTRATELGLDISAARVLSPTDPEHVERFAAEYARLRAHKGVTIERAREIVTDVSYFGTMMVHLGLADGMVSGAAHTTAHTIRPSFEIIKTQPGVSVVSSVFLMCLPDRVLAYGDCAVNPDPTAEQLADIAASSAATAAQFGVEPRVAMLSYSTGSSGSGADVDKVRAATELVRDRDPALSVEGPIQYDAAVDASVAASKLPDSSVAGKATVFIFPDLNTGNNTYKAVQRSAGAVAIGPVLQGLNKPVNDLSRGALVADIVNTVAITAIQAQGVAAPSTSNGESAPGPT0001370_792DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_PROPANEDIOL_UTILIZATION,PGPT0001370-pta-K13788NANA
AK018_059291278ackA_2COG0282Acetate kinaseATGAGCATCCTGCCCGCCACCGAGCGCCCCAACCCGTACAGCGCCTACGGGGCGCACGGGTCGGTGCTGGTGCTGAACTCCGGGTCGTCCTCGTTGAAGTACCAGCTCGTCAACCCTGTCGGCGGCGAGGCAATCGCGGCCGGTACGGTCGAGCGGATCGGCGAGACGGGCGCGACCGGCATCGTCACGCACACCTATGCGGGCAACAAGACCCACCGCGAGCTCGAGGTCGCCGACCACGGCGCGGCGCTCAAGATCGCCCTCGGCATGTTCGACGAGGTCGGTCCGACGCTGGCCGACGCCGGGATCTACGCCGTCGGTCACCGGGTGGTGCACGGCGGGGCGGAGTTCTCCGGGCCGGTCGTCGTCGACGACGACATCATCGACCGGATCGAGGCCCTGGTGCCGCTCGCCCCGCTGCACAACCCCGCGAACGTGCAGGGCATCCGGGTGGCGCGGGACCTGCTCGGCGACGTGCCCCACGTCGCGGTGTTCGACACGGCGTTCTTCCAGGCGTTGCCCGCCGAGGCGTACACCTACGCGATCGACCGCGACGTCGCGCGCGAGCACGACGTGCGCCGCTACGGGTTCCACGGCACCAGCCACCAGTACGTGACCGGCAAGGTGGCCCGCGTGCTGGGCCGCCGCGTCGAGGACCTCAACACGATCGTGCTGCACCTGGGCAACGGCGCGTCGGCGTCGGCGGTGCGCGGCGGCGTGCCGATCGACACCTCGATGGGCCTGACGCCGCTCGAGGGGCTCGTGATGGGCACCCGGTCCGGCGACGTCGACCCCGCGGTGGTGTTCCACCTCGCGCGCAACGCCGGCATGGACATCGACGAGCTCGACACGCTGCTGAACAAGCGCTCCGGCGTGCTCGGCCTGTCCGGGGTCAACGACTTCCGCGAGCTGCACCGGCTGGTCGAGGACGGCGACGAGGACGCCGCCCTGGCGTTCGACGTCTACATCCACCGTCTGCGCAAGTACGTCGGCGCGTACACGGCGCTGCTCGGCCGGGTGGACGTCATCGCGTTCACCGCGGGGGTCGGGGAGAACGACGCCGCCGTGCGTGCCGCTGTCTGCGCCGACCTGGAGGCCCTGGGCATCGCCGTCGACGACGAGCGCAACGCCGCCCGCGGCGCCGAGCGCATCATCTCCCCCGACTGGACCAAGACGCTCGTCATGGTGATCCCCACGATGGAGGAGCTCGCCATCGCCCGCCAGAGCGTCGAGGCGGTGGACGGGTTGCACCCGACCTCGGCGGTCACCTCCGGCTGAMSILPATERPNPYSAYGAHGSVLVLNSGSSSLKYQLVNPVGGEAIAAGTVERIGETGATGIVTHTYAGNKTHRELEVADHGAALKIALGMFDEVGPTLADAGIYAVGHRVVHGGAEFSGPVVVDDDIIDRIEALVPLAPLHNPANVQGIRVARDLLGDVPHVAVFDTAFFQALPAEAYTYAIDRDVAREHDVRRYGFHGTSHQYVTGKVARVLGRRVEDLNTIVLHLGNGASASAVRGGVPIDTSMGLTPLEGLVMGTRSGDVDPAVVFHLARNAGMDIDELDTLLNKRSGVLGLSGVNDFRELHRLVEDGDEDAALAFDVYIHRLRKYVGAYTALLGRVDVIAFTAGVGENDAAVRAAVCADLEALGIAVDDERNAARGAERIISPDWTKTLVMVIPTMEELAIARQSVEAVDGLHPTSAVTSGPGPT0001360_150DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PROPIONIC_ACID_BIOSYNTHESIS,PGPT0001360-ackA-K00925NANA
AK018_059301383ygbN_2COG2610Inner membrane permease YgbNATGACTCCCGAGGACTGGACCCAGACCCTCACGGCCGGCCCCCTGCTCGCCATCGCCGCCGCCGCCGTCGCCCTGCTGCTCCTGCTCATCATCAAGGTCCGGCTGCACGCGTTCGTCGCGCTCATCCTGGTCAGCCTGCTCACCGCCGTCGCCGCCGGGCTGCCCGCCGGCGGGATCGTCGACGTGCTGCTCGACGGCTTCGGCTCCACGCTCGCCGCCGTCGCGCTGCTCGTCGGGCTCGGCGCCATGCTGGGCCGGCTCGTCGAGACCAGCGGCGGAGCCGCGGTCCTGACCGACGCGCTGATCTCCCGCTTCGGGGAACGGCGCGCCCCGCTCGCCCTCGGCATCGCCTCGCTGCTGTTCGGCTTCCCGATCTTCTTCGACGCCGGGCTCGTCGTCATGCTGCCCATCGTGTTCGCCGTCGCACGCCGCCTCGGCGGCTCCGTGCTGCTCTACGGGCTGCCCGTGGCCGGAGCCTTCTCCGTCATGCACATCTACGTGCCCCCGCACCCCGGACCCGTGGCCGCCTCGGAGTTCCTCGGCGCCAACGTCGGCATCGTGCTGCTCGTCGGGCTGGTCGCCGCGCTGCCCACCTGGTACGTCACCGCCTACCTGTTCGGCCGGTTCGCCGGGCGCCGCTTCGAGCTGCCCGTCCCCGAGATCCTCGGCCGCGCCGACGACGCCCAGACCGCGAACCCGCCGCGCTTCGGCGCCGTCGTGGGGATCCTGCTCCTGCCCCTGGTGCTCATCTTCGCCAACACCGGCCTGGAGACCGCGGCGTCGGCCGGCTGGGTCGACGGAGAGTCGGGGGTCGTGGCCGTGGCCGGCCTGCTCGGTTCGACGCCGGTCGCCCTGCTGATCACCGTACTGGTGGCCGCCTGGGTGCTGGGTCGGCGGCGCGGCATCGAGGGGACCGCCCTGGAGAAGACCCTCGACTCCGCCCTCGGGCCCGTGGCCTCCGTCATCCTCATCACCGGTGCGGGCGGCATGTTCGGCGGCGTGCTGCGCGCGACCGGCATCGGCGACGCCCTGGCCGACGTGCTCGGCGACCTCGGGCTGCCGGTCATCGTGGCCGGGTTCCTCATCGCCGCCGTGCTGCGCGTGGCCCAGGGCTCGGCCACCGTCGCCCTGACCACCGCCGCCGGGCTGATCGCGCCCGCCGTCGCGGCCGGTGGCTACGGCGCCGTGGAGCTGGCCGCCGTCGTCGTCGCCGTGGCCGCCGGGTCCGTGGTGCTCAGCCACGTCAACGACTCCGGCTTCTGGCTGGTCGGCCGGTTCTTCGACATGGACGTGCGCACCACGCTGCGCACCTGGACCGTCATGGAGACGGGGATCGGCGTGATGGGCTTCGGGATCGCCTGCCTCGTGTTCGCCGTCGCCTGAMTPEDWTQTLTAGPLLAIAAAAVALLLLLIIKVRLHAFVALILVSLLTAVAAGLPAGGIVDVLLDGFGSTLAAVALLVGLGAMLGRLVETSGGAAVLTDALISRFGERRAPLALGIASLLFGFPIFFDAGLVVMLPIVFAVARRLGGSVLLYGLPVAGAFSVMHIYVPPHPGPVAASEFLGANVGIVLLVGLVAALPTWYVTAYLFGRFAGRRFELPVPEILGRADDAQTANPPRFGAVVGILLLPLVLIFANTGLETAASAGWVDGESGVVAVAGLLGSTPVALLITVLVAAWVLGRRRGIEGTALEKTLDSALGPVASVILITGAGGMFGGVLRATGIGDALADVLGDLGLPVIVAGFLIAAVLRVAQGSATVALTTAAGLIAPAVAAGGYGAVELAAVVVAVAAGSVVLSHVNDSGFWLVGRFFDMDVRTTLRTWTVMETGIGVMGFGIACLVFAVAPGPT0001340_214DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_GLUCONATE_TRANSPORT,PGPT0001340-TC_GNTP-K03299NANA
AK018_05931555COG3265GluconokinaseATGGACACCGACGTCACCCCCCTCCCGCCCGGCGGGCGCACCGCGCCCGACGACGTCACGCACATCGTCGTCATGGGCGTCGCCGGCTCCGGCAAGACCACCGTCGCGACCCTCCTGGCCGCACGCCTCGGCGTCACCTACGCCGAGGCGGACCAGTTCCACTCGGCCGAGAACATCGCCAAGATGAGCGCAGGGAACGCCCTGACCGACGACGACCGCGAACCCTGGCTGGCGGCGATCCGCGACTGGCTCAGCGGCGAGGCCGAGGCGGGCCGCCCCGGCGTCGTCACCTGCTCGGCGCTCAAGCGGGCCTACCGCGACGCGCTGCGCACCGCCGTCGGCCGCGTCCGGTTCGTCCACCTCGACGGCCCCGCCGAGCTGCTCGCCGAACGGATGCAGGGCCGGTCCGGCCACTTCATGCCGGCGTCCCTGCTGCCGTCACAGCTCGCCACCCTCGAACCCCTGGCCGACGACGAGGACGGCCTGACCCTCGACATCACCTCCGAGCCCGGCGAGATCGTCGACACGGTCGTCGCCCGCCTCGCCTCCGCCTGAMDTDVTPLPPGGRTAPDDVTHIVVMGVAGSGKTTVATLLAARLGVTYAEADQFHSAENIAKMSAGNALTDDDREPWLAAIRDWLSGEAEAGRPGVVTCSALKRAYRDALRTAVGRVRFVHLDGPAELLAERMQGRSGHFMPASLLPSQLATLEPLADDEDGLTLDITSEPGEIVDTVVARLASAPGPT0018055_396DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851NANA
AK018_05932720hypothetical proteinATGCCCTCCCCCGCCCTGCACAGCGCCGTTCTCGAGGCCGTCGGGCGCTCCATCACCAGCGGGGACGTCCCCGCCGGCACCTCGCTGACGCTGGAGGCGATCGGCGCGGAGCACGGCGTCTCGCGCACCGTCGCGCGCGAGGTCATGCGCCTCCTCGAAGGGCTCGGGCTGGTCCGCTCCCGCCGTCGGGTCGGGATCGTCGTGCTGCCGATGGCCGAGTGGAACGTGCTCGACCCCCACGTCATCCGGTGGCGGCTGGCCGGCCCCGGCCGGGACGCCCAGCTGCGGACCCTCACCGAGCTGCGGCACGCCGTCGAGCCCCTGGCCGCCGCCGGGGCCGCGCGCCACGCCTCGCCCGAGGCACGCGCCGAGCTCGTCGACCTCGCGGCACGCATGCGGGTGCTCGGTTCGGCAGGCGACCTCGAGGAGTTCCTCACGCTCGACATCCGCATGCACGAGCTGCTCCTGCGCGCCAGCGGCAACGAGATGTTCGGCGCGCTGGCCGACGTCGTCGCCGAGGTCCTGTCCGGGCGCACCCACCTCGGCCTCATGCCCGCCTCCCCCGAGCCGGAGGCCCTCGACCAGCACGAGGCCGTCGCCCGCGCGGTCCGCGACGGCGACGCACCCGCGGCCGAGCAGGCGATGGCGGCGCTGGTCGGCGAGGTCCGCCGCGCCCTCGGCGCCGCCGACACCGCCGACACCCCCGGGGCCGCGTCGTGAMPSPALHSAVLEAVGRSITSGDVPAGTSLTLEAIGAEHGVSRTVAREVMRLLEGLGLVRSRRRVGIVVLPMAEWNVLDPHVIRWRLAGPGRDAQLRTLTELRHAVEPLAAAGAARHASPEARAELVDLAARMRVLGSAGDLEEFLTLDIRMHELLLRASGNEMFGALADVVAEVLSGRTHLGLMPASPEPEALDQHEAVARAVRDGDAPAAEQAMAALVGEVRRALGAADTADTPGAASNANANANANA
AK018_05933912hypothetical proteinGTGACCGTCCTCGTCGACCCGCCGCTCTGGCCGGCGCACGACCGGCTCTGGTCGCACCTCGTCTCCGACGTCTCCCTGCACGAGCTGCGCACGTTCGCCCGCGCCGCCGACCTGCCCGACCGGGCGTTCGACGTCGACCACTACGACGTGCCGGCCGAGCGTGTCGCCGACCTCGTGGCCGCGGGCGCCGTCCCGGTCGACGGCGGCGAGCTGAGCCGGCGGCTCGCCGCCTCCGGGCTGCGCGTCCCGGGACACGAACGGTCGCGTGCCAAGCGGCCGACGCTCCGGCGGCGCTGGGCCGGCCTGTGGCCCGACGGCGCCCTCGGCGCCGAGCAGGTCGCCGCCGTCGGGGAGGACCTGATCGACCGCTGGGCAGAACCCCACCGGGTCTACCACTCGCGCCTGCACCTGGCCGACACGCTCGACGCGCTCGAGCAGCTCTCGCCCGCCGCCGGTACCGACGGGACGGCCCGGGTCGCCGCGCTGGCCCTGTGGTTCCACGACGCGGTGCACGACGGCGTCGCCGGCGACGACGAGGAACGTTCGGCCGCGCTGGCCCGCGAGCTGCTCCCGGCCGGCCCGCAGGCCGCCGAGGTCGCCCGGCTCGTCCTGCTGACCGCCGGCCACGACCCGGACCCTGACGACGTCACCGGATGCCTGGTCAGCGACGCCGACCTCGCGATCCTCGGCGGCACGCCCGCCCGGTACGCGCGCTACGTCGCACAGGTGCGCGCCGAGTACTCCCACGTCGGCGACGACGACTTCCGGGCCGGCCGGGCCGCCGTCCTCGACCAGCTCCTCGCCCTGCACGCCGGACCGGGCCTGTTCCGCACACCGGCGGCCCGCGCTCGCTGGGCGGACGCCGCCGGGCGGAACCTGCGCCGAGAGCTCGCGAGCCTCGACGGACGGTGAMTVLVDPPLWPAHDRLWSHLVSDVSLHELRTFARAADLPDRAFDVDHYDVPAERVADLVAAGAVPVDGGELSRRLAASGLRVPGHERSRAKRPTLRRRWAGLWPDGALGAEQVAAVGEDLIDRWAEPHRVYHSRLHLADTLDALEQLSPAAGTDGTARVAALALWFHDAVHDGVAGDDEERSAALARELLPAGPQAAEVARLVLLTAGHDPDPDDVTGCLVSDADLAILGGTPARYARYVAQVRAEYSHVGDDDFRAGRAAVLDQLLALHAGPGLFRTPAARARWADAAGRNLRRELASLDGRNANANANANA
AK018_059341623gabD2_2COG1012Putative succinate-semialdehyde dehydrogenase [NADP(+)] 2ATGGCAACCGCGCACGAGAGCGACGGCGCTCTGGGCGACCTCATGGACCCCGAGCTGCCCGCCTCCACCTACGTCCTCGAACCCGACGTCGTCGCCCCGCTGGTCCGACGCGTCGCCACCTCCCAGGACGCGGGCACCCATCGCAGCACGCTGCCCTTCACCGGCGCACCGCTCGCCGCGATCCCGATCTCGTCGCCCGACGACGTGGCCGCGGCGGCCGGGCGGGCCCGCGCCGTGCAGCGCGACTGGTCCCACCAGTCCTTCGACGAGCGTGCCCGGGTCGTCGACCGGCTCGGGGCGCTGGTGCTGCAGCGGCAGTCGGAGATCCTCGACCTGATCCAGATGGAGTCCGGCAAGTCGCGGCGCAGCGCCTTCGAGGAGGTCGCCGACATCGCCCAGACGTGCCGGCACTACGTGGTGCGCGGGCGGCGCTACCTCGCCGACCGGCGCGAGCCCGGCGCGCTGTCGGTGCTCACGGGTGCCCGGGTCCACCGGCGCCCCGTCGGCGTCGTGGGCGTCATCGCCCCGTGGAACTACCCGCTGACCCTCGCGCTGTCCGAGGCGGTCCCCGCCCTGCTCGCGGGCAACGCCGTCGTGCTCAAGCCGGACCCGCAGACCACGCTGTCCGCGCTGTGGGCCGCTGAGCTGCTCGCCGAGGCCGGGCTGCCCGACGACGTGCTGACCGTCGTCGCCGGCGGCGGGGACGTGGGTGCCGCGCTCGTCGAGCACGTCGACCACGTCGCCTTCACCGGGTCGACGGCCACCGGTCGCAAGGTCGCCGCGCGGGCGGGGGAGCGCCTCATCGGCGCCACGCTCGAGCTCGGCGGCAAGAACCCGCTGTACGTGGCCGCCGACGCCGACCTCGAGGCGGCCGTGCCCGGCGTGGTGCGTGCCTGCTTCTCCAACGCCGGCCAGCTGTGCATGTCGATCGAGCGGCTCGTGCTGCACGAGCGGATCGCGGACGAGTTCCTCGAGCGGTTCGTCGAGGCGGTGCGAGGGCTGCGCCTCGGCGGCGAGCTGGACTACACCGCCGACGTCGGCTCGCTCGTCTCGGCCGACCAGCTCGAGAAGGTGTCCCGGCACGTCGACGACGCGCTGGCCAAGGGCGCCCGCGCCCTGGTCGGTGCCGTGCACCGCGGGGACGTCGGCCCGTACTTCTACGCCCCGACGGTGCTCGACGACGTGCCCGCGGACGCCGACTGCCTGCGCGAGGAGACCTTCGGACCCGTCGTGGCGGTGACGCGCGTGTCCGGCGACGACGAGGCCGTGCGGGTCATGAACGACTCCGAGTTCGGGCTCAACGCCTCGATCTGGTCCGGTGATGTGGCTAGGGCGCGGCGCCTCGCCGCCCGCGTCGAGGCCGGCACCGTCGCCATCAACGACGGCTACCTGCAGGCGTGGGGGTCGACGGCGGCACCCATGGGCGGCATGAAGGCGTCCGGCCTGGGCCGGCGGCACGGCCGCGAGGCGGTCGAGGCGGTCACCGAGACGCAGAGCGTCGTGGCCCAGCGCGGCCAGCGGTTCGGTCTGAGCGTGGACTCGCTCTACGCGTTGGGCGGGGAGGTGCCCAGCAGGGTGCTCACCGGCGCGCTGTCGGTCATGCGCCGGCTGCGGCTGCCGTAGMATAHESDGALGDLMDPELPASTYVLEPDVVAPLVRRVATSQDAGTHRSTLPFTGAPLAAIPISSPDDVAAAAGRARAVQRDWSHQSFDERARVVDRLGALVLQRQSEILDLIQMESGKSRRSAFEEVADIAQTCRHYVVRGRRYLADRREPGALSVLTGARVHRRPVGVVGVIAPWNYPLTLALSEAVPALLAGNAVVLKPDPQTTLSALWAAELLAEAGLPDDVLTVVAGGGDVGAALVEHVDHVAFTGSTATGRKVAARAGERLIGATLELGGKNPLYVAADADLEAAVPGVVRACFSNAGQLCMSIERLVLHERIADEFLERFVEAVRGLRLGGELDYTADVGSLVSADQLEKVSRHVDDALAKGARALVGAVHRGDVGPYFYAPTVLDDVPADADCLREETFGPVVAVTRVSGDDEAVRVMNDSEFGLNASIWSGDVARARRLAARVEAGTVAINDGYLQAWGSTAAPMGGMKASGLGRRHGREAVEAVTETQSVVAQRGQRFGLSVDSLYALGGEVPSRVLTGALSVMRRLRLPPGPT0001580_110DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
AK018_05935420ypeACOG0456Acetyltransferase YpeAGTGACGATCCGCGAGGTCGGGGACGACGACGTCGAGGCGGTCGTCGCGCTGTGGCGGGACTGCGGGCTGACGCGCCCGTGGAACGACCCGCACGCCGACGTCGCCGCGGCCCGGCGCAACCCCACGTCCACGGTGCTGGTCGCGCTCGACGAGAGCTCCGCCGTCGTCGGCACCGCCATGGCCGGCTACGAGGGGCACCGGGGGTGGCTGTACTACGTGGCGGTGGCGCCGGGCCTCCAGGGCACCGGACTGGGCCGCCGTGTCGTGGCCGCGGCCGAGGCCTGGCTGCAGGATGCCGGTGCCGCCGAGGTGCGCCTCATGGTGCGCACCTCGAACACCCGGGTGCTGGGGTTTTACGCCCGCCTCGGGTACACCGACCGGGAGGCGACCGTGCTCGGCCGGTCGCTGCTCTCACGCTGAMTIREVGDDDVEAVVALWRDCGLTRPWNDPHADVAAARRNPTSTVLVALDESSAVVGTAMAGYEGHRGWLYYVAVAPGLQGTGLGRRVVAAAEAWLQDAGAAEVRLMVRTSNTRVLGFYARLGYTDREATVLGRSLLSRNANANANANA
AK018_059361125COG0516putative oxidoreductase/MSMEI_1564GTGAGCAACGAGATCGAGATCGGACGTGGCAAGCGCGGTCGTCGCGCCTTCTCCTTCGACGACGTCGCGGTGGTGCCCTCGCGCCGCACCCGTGACCCGAAGGACGTGTCGACCGGCTGGCAGATCGACGCCTACCACTTCGACCTGCCGATCATGGCCGCGCCGATGGACTCGGTGATGAGCCCGGACACCGCCGTCGCGCTCGGCAACCTCGGCGGGCTCGGCGTGCTGGACCTCGAGGGTCTGTGGACCCGCTACGAGTCGCCGGAGCCGCTGCTCGCCGAGATCCGTGAGCTGCCGGCCGAGCAGGCCACGCGGCGCATGCAGGAGATCTACTCCGAACCGATCAAGCCCGAGCTCATTACCCAGCGGCTCCAGGAGATCCGGTCCGCCGGCGTCACCGTGGCGGGCGCGCTGTCGCCCCAGCGCACCCAGGAGCACTACCAGACGGTGGTCGACGCGGGCGTGGACCTGTTCGTCATCCGCGGCACCACGGTCTCCGCGGAGCACGTCTCCGGCAACGCCGAGCCGCTGAACCTCAAGCGGTTCATCTACGAGCTCGACGTACCGGTGGTGGTGGGCGGCGCCTCCACCTACACCGCGGCGCTGCACCTCATGCGCACCGGTGCCGCGGGCGTGCTCGTCGGCTTCGGCGGCGGTGCCGCCCACACCACCCGTGTCAGCCTCGGCATCCACGCGCCGATGGCCACCGCCGTGTCCGACGTCGCCGCGGCGCGCCGCGACTACCTCGACGAGTCGGGCGGCCGCTACGTGCACGTCATCGCCGACGGCGGTGTCGGCTACTCGGGGGACGTCGTCAAGGCGGTCGCGTGCGGGGCCGACGCCGTGATGCTCGGCGCCGCGCTCGCCCGCGCGGCCGAGGCCCCGGGACGCGGCTGGCACTGGGGCCCCGAGGCGCACCACTCCCAGCTGCCCCGCGGGGAGCGGGTCTCGGTCGGCACCGGGGGGACGCTCGAGGAGATCCTGTTCGGCCCGGGCCACCACGCCGACGGCACCACGAACCTGGTCGGTGCGCTGCGCCGCGCGATGGCCACGACCGGCTACTCCGACCTCAAGGAGTTCCAGCGGGTCGAGGTCGTGATCTCGCCCTACCAGCCCCGGTGAMSNEIEIGRGKRGRRAFSFDDVAVVPSRRTRDPKDVSTGWQIDAYHFDLPIMAAPMDSVMSPDTAVALGNLGGLGVLDLEGLWTRYESPEPLLAEIRELPAEQATRRMQEIYSEPIKPELITQRLQEIRSAGVTVAGALSPQRTQEHYQTVVDAGVDLFVIRGTTVSAEHVSGNAEPLNLKRFIYELDVPVVVGGASTYTAALHLMRTGAAGVLVGFGGGAAHTTRVSLGIHAPMATAVSDVAAARRDYLDESGGRYVHVIADGGVGYSGDVVKAVACGADAVMLGAALARAAEAPGRGWHWGPEAHHSQLPRGERVSVGTGGTLEEILFGPGHHADGTTNLVGALRRAMATTGYSDLKEFQRVEVVISPYQPRPGPT0021445_6347DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
AK018_05937723dinG_53'-5' exonuclease DinGATGCAGGACACGGGCTGGTCGAGCGGGCCGCTGGTCGGCTTCGACACCGAGACCACCGGCGTGGACGTGCGCTCGGACCGCATCGTCACGGCGGCCGTCGTCCTGCGCACGGCACTGACGACCGAGGTGCGGACCTGGCTGATCGACCCGGGCGTCGAGATCCCCGCGGAGGCCGCCGCGATCCACGGTGTGACCACCGAGCACGCCCGGGCCCACGGCGTCGACCCGGCGGGCGCGCTGGAGGAGATCGCGGCGGAGCTGGTGACGCACCTGCGCGACGACGTCCCCGTGGTGGCGTACAACGCGGCGTTCGACCTCACGCTGCTGGACGCCGAGCTGAGCCGGCACGGGCTGCCCACCCTGCCGGAACGTCTGGGACGGCCCGTGTCCCCCGTGCTCGACCCGCTGGTCATCGACCGGTGGCAGGACCGCTACCGCCGCGGCAAGCGGCGTCTCGGCGACCTGTGCGACCTGTACGGCATCACCGGCGACGGCGACCTGCACAGCGCCGACGTCGACGTGCTGGCCACGCTCGACGTCCTCGACGCGCAGGTGCTGCGGTTCCCCGACCTGCGGTCCGTCGCCCTCGACGCCCTGCACTCGGCGCAGCGGGACGCCCACCGGGCGTGGGCGGAGAACTTCAACGCCTGGCGCGAGCGGCAGGGGCTGAAGGGTCCGGGGGCCTCGACGGCCTGGCCGGTCGAGCCCCGGCGGGCCGGCTGAMQDTGWSSGPLVGFDTETTGVDVRSDRIVTAAVVLRTALTTEVRTWLIDPGVEIPAEAAAIHGVTTEHARAHGVDPAGALEEIAAELVTHLRDDVPVVAYNAAFDLTLLDAELSRHGLPTLPERLGRPVSPVLDPLVIDRWQDRYRRGKRRLGDLCDLYGITGDGDLHSADVDVLATLDVLDAQVLRFPDLRSVALDALHSAQRDAHRAWAENFNAWRERQGLKGPGASTAWPVEPRRAGNANANANANA
AK018_059381518guaB_2COG0516Inosine-5'-monophosphate dehydrogenaseATGACGGAGACGACCTCGCCCGCGCACGACCCGTTCGGTTTTCTCGGCCTGACCTACGACGACGTCCTGCTGCTGCCGGGGTACTCGGACCTCGCTCCGTCGGACATCGACACCACGTCGCGGCTGACCCGCGAGATCTCCCTGAAGGTCCCGCTCGTCTCCGCCGCGATGGACACGGTCACCGAGGCGCGCATGGCGATCGCGATGGCCCGTCAGGGCGGCCTCGGGGTGCTGCACCGCAACCTGTCGATCGCGGACCAGGCCTACCAGGTCGACCTCGTCAAGCGCACCCAGACCGGCATCATCTCCAACCCGGTCACGATCGGGCCCGACGCCACCCTGGAGCAGCTCGACCAGCGCGCGGGGGAGTACCGGGTCTCCGGGTTCCCGGTCCTGGACGTCTCCGGCAAGCTCGTCGGCATCGTCACCAACCGCGACCTGCGCTTCACCCCGGTCGCCGAGTGGGCCTCCACGACGGTCGCGGACGTCATGACGCCGCAGCCCCTGATCACCGGGCACGCGGGCATCTCCCGCGAGGACGCCACGGCGCTGCTGCGCAAGCACAAGCTGGAGCGGCTGCCGCTCGTCGACGACGAGGGTCACCTCGCCGGTCTCATCACCGTCAAGGACTTCGTGAAGTCCGAGCAGTTCCCGAACGCCTCCAAGGACTCCCAGGGTCGACTGCTCGTCGGTGCGGCCATCGGCTACTTCGGCGACGCCTGGGAGCGCGCGACGACGCTCGTCGATGCGGGGGTCGACGTCTTGGTCGCCGACACCGCGCACGGCAACGTGCGGATGCTCATCGAGATGGTGCACAAGCTCAAGACCGACCCGGCGACCCGGCACGTGCAGGTCATCGGCGGGAACGTCGCCACCCAGGAGGGCGCGCAAGCCTTCGTGGACGCCGGCGCGGACGGCATCAAGGTCGGCGTGGGACCGGGCTCCATCTGCACCACGCGGGTGGTCACGGGTGTCGGCGTCCCGCAGATCACCGCGGTGTACGAGGCCTCGCGGGCGGCACGCCCGGCGGGCGTCCCGGTGATCGCCGACGGCGGGATGCGGCACTCCGGCGAGATCGGCAAGGCGATCGTCGCGGGCGCCGAGGCGGTCATGCTGGGCTCGATGCTCGCCGGGACCGAGGAGTCGCCCGGCGACACGATCCTCATCAACGGCAAGCAGTTCAAGGCCTACCGGGGCATGGGCTCGATGGGCGCCATGTCGTCCCGCGGCAAGAAGTCCTACTCGAAGGACCGCTACTTCCAGGCCGAGGTCACCAGCGACGACATGATCGTGCCGGAGGGCGTCGAGGGCCAGGTGCCGTACAAGGGCACCCTGTCCACGGTGGCGCACCAGCTCGTGGGCGGGTTGCACCAGACTATGTTCTACGTCGGGGCGCGGACCGTGCCGGAGCTGCAGGAGCAGGGGCGGTTCGTGCGGATCACGTCGGCGTCGCTGGCCGAGTCGCACCCGCACGACATCAAGATGACGGTCGAGGCGCCCAACTACACCGTGGGCTGAMTETTSPAHDPFGFLGLTYDDVLLLPGYSDLAPSDIDTTSRLTREISLKVPLVSAAMDTVTEARMAIAMARQGGLGVLHRNLSIADQAYQVDLVKRTQTGIISNPVTIGPDATLEQLDQRAGEYRVSGFPVLDVSGKLVGIVTNRDLRFTPVAEWASTTVADVMTPQPLITGHAGISREDATALLRKHKLERLPLVDDEGHLAGLITVKDFVKSEQFPNASKDSQGRLLVGAAIGYFGDAWERATTLVDAGVDVLVADTAHGNVRMLIEMVHKLKTDPATRHVQVIGGNVATQEGAQAFVDAGADGIKVGVGPGSICTTRVVTGVGVPQITAVYEASRAARPAGVPVIADGGMRHSGEIGKAIVAGAEAVMLGSMLAGTEESPGDTILINGKQFKAYRGMGSMGAMSSRGKKSYSKDRYFQAEVTSDDMIVPEGVEGQVPYKGTLSTVAHQLVGGLHQTMFYVGARTVPELQEQGRFVRITSASLAESHPHDIKMTVEAPNYTVGPGPT0021445_1014DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
AK018_059391155hypothetical proteinGTGGCGGCGGCACGCGCGCCTGGGCAGAATCGACGCATGACCAACTCGCGACCTGCCCAGGACTCGGGCGGGTCACGCCTGTCCGGCCCCGGACTCGCGGTCGCCGCGGTCGCCCGACGTCTCGGCGTCGCCCCCGCCACGCTGCGGACCTGGGACCGGCGCTACGGCCTCGGACCGTCCGACCGCACCGCGGGCTCGCACCGGCGCTACACGGCGGAGGACGTCGCGCGCCTGCTCGTCATGCGCCGGCTCACGCTCGAGGGCGTGGCGCCCGTGGACGCGGCCGAGGCCGCTCTCGAGGCCGACCTCGAGCAGCTCGAGGACGCCCGGCGGGCCGGCACCCCGGTGCCGCCGTCACCGGAGGACGAGCCCGAGCCTCCCGCCGGCGAGAAGGAGTCGGCCGAGGAGCCGGGCGGCGGCCGCGCCCACCTGCGCGCGCTGCCCGGCGGTGGCCAGGGCGGCCGTCCCGCCGCCGGGGCTCCGGCCCCGGGGCAGGGCAAGGCCACCTCGGGCAAGGTGTCCGCCGTCGTCGACGCCGCCCTGTCCTACGACCAGGCTCGCTGCGACGACCTGCTGCGCATCCCCGCGCAGGGCGACCCGGCGGCGTGGTGGTCCCAGCTCCTGGAACCGGCCTGGAGCCGCGTCGCCGAGCGGACGGTCCTCGCCGGCCCGGGGGCCGTGCCCGAGATCGTGCTGGCGACCGCCGCCCTGCAGGCGTTGCGGTCCTTCACCGAGGCCTTCGAGCAGGCCGTCGTGCAGAACGGCGGCCCGCCGGCCAACCACCCCAGCCGGATGCGCAACATCGTGCTGATCTTCGCCGCCCCGGACGAGGCCGTCCCGCTCTCGGCGCACACGCTCGCCGCAGCGTTGACGTCGAAGGGCAAGACCGCACGGATCGTCACCGGCCCGGCCAGCACGCACCGCTCGCTCGAGCTGGTGACCATGGTGCGCCCGGCGGCGATGGTCCTGGCCACGACCCAGCGTCGCCCGGACCTCGACCTCGTGCAGGCCGTCCACGACGGCTTCCCCGAGCTGCCGATCTTCGTCGGGCTGCGCCGCGACGACGCCGCCGCGGACCTGCCGCTGGCCCCCCAGGTCCAGCGCGTCCGGTCGTTCACGGGGCTGCTGCACGAGGTGCTCGCGATCGTGTCCTGAMAAARAPGQNRRMTNSRPAQDSGGSRLSGPGLAVAAVARRLGVAPATLRTWDRRYGLGPSDRTAGSHRRYTAEDVARLLVMRRLTLEGVAPVDAAEAALEADLEQLEDARRAGTPVPPSPEDEPEPPAGEKESAEEPGGGRAHLRALPGGGQGGRPAAGAPAPGQGKATSGKVSAVVDAALSYDQARCDDLLRIPAQGDPAAWWSQLLEPAWSRVAERTVLAGPGAVPEIVLATAALQALRSFTEAFEQAVVQNGGPPANHPSRMRNIVLIFAAPDEAVPLSAHTLAAALTSKGKTARIVTGPASTHRSLELVTMVRPAAMVLATTQRRPDLDLVQAVHDGFPELPIFVGLRRDDAAADLPLAPQVQRVRSFTGLLHEVLAIVSNANANANANA
AK018_05940291whiD_3Transcriptional regulator WhiDATGACGGAGATCTCACGACTGCCCGGGCCGGTCATGGAACTGTGGGAGTGGCAGTACCAGGGTTCCTGCCGCGACGCCGACGACACGCTGTTCTTCCACCCCGAGGGTGAGCGGGGGTCCACCCGCCGACGACGTGCCGAGGCCGCCAAGGCGATCTGCCGCAGCTGCCCGGTGATGATGGAGTGCCGCGAGCAGTCCCTGCGGGTGCGCGAGCCCTACGGGGTGTGGGGCGGCCTCAGCGAGGACGAGCGGTCGGCCATCCTGGCCGGCCGGGAGCGCAAGGTCGGCTGAMTEISRLPGPVMELWEWQYQGSCRDADDTLFFHPEGERGSTRRRRAEAAKAICRSCPVMMECREQSLRVREPYGVWGGLSEDERSAILAGRERKVGNANANANANA
AK018_05941297groS_3COG023410 kDa chaperoninGTGTCGGTCCCCATCAAGCCGCTCGAGGACCGGATCGTCGTCAAGGCCGTCGAGGCCGAGACCACGACCGCTTCCGGCCTGGTCATCCCGGACACCGCCAAGGAGAAGCCCCAGGAGGGCGAGGTCCTCGCCGTGGGCGACGGCCGCTTCAACGACAAGGGCGAGCGTGTCCCGGTCGACGTGAAGGTCGGCGACAAGGTCATCTACAGCAAGTTCGGCGGCACCGAGGTCAAGTACGCCGGTGAGGACTACCTGGTCCTCTCGGCGCGCGACATCCTCGCCGTCGTCGTCGGCTGAMSVPIKPLEDRIVVKAVEAETTTASGLVIPDTAKEKPQEGEVLAVGDGRFNDKGERVPVDVKVGDKVIYSKFGGTEVKYAGEDYLVLSARDILAVVVGPGPT0014565_2287DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078NANA
AK018_059421233hypothetical proteinATGGACGTGGCCTCCCTGACCAAGCTGCTCAGCCCCGAGGGGTGGGCGCTGCTGAACGCCCTGCCGCCCTACGACGAGTCCCGGGCGATGGCGCTGGCCACGCGGCTGCGGTCCGAGGGCGTCGACCCGGACCTCGCCGCCGCCGCCCTGACCCAGTCCCGGCTGCGCGCCAAGGCGGCCGCCAAGCTCGGCCCGTTCGCCGAGGGCATGCTCTTCACCCCCCACGGCCTCGAGCAGGCCACCCGCCTGGTCGTGGCGGCCGTGCACGCCCGCCGCTACCTGAGTGCCGGTGTCGGCAAGGTCGCCGACCTCACCTGCGGGCTCGGCGCCGACGCCCTCGCCTTCGCCGGCGTCGGGCTCGACGTCCTGGCGGTCGACGTCGACGAGGCCACGGCCGCCCTGGCCACCGTGAACCTGCGGGCCTTCCCCGAGGCCGAGGTCCGGCACACCGACGGCCTCACCCTCGACCTGGTCGCCGAGGGGGTGGACGGCCTCTACGCGGACCCCGCAAGGCGCACCCGCGGCGGCAAACGGGTCTTCGACCCGGCGGCCTACGCGCCCCCGCTCGACGCCGTGTGGGCGCTGCGGGACCAGGTCCCCGCGCTCGGCATCAAGGTCGGCCCGGGCATCCCCCACCAGGGGCTGCCGGCGGACGCCGAGACGCAGTGGGTCTCCGTCGACGGCGACGTCGTCGAGGCCGGCCTGTGGTTCGGGCCGCTGGCGCCCGAGGGACCGGGTCGGTCCGCGCTGCTGCTGCAGACGCAGGACGACGGGCACCAGGCGGCGTCCTCCCGGGTGCTGCACGGCCGGCCCGGGGACGACCAGGTCCCCGACGTGGGCCCCGTGGGCTCCTACCTCTACGAGCCGGACGGCGCCGTGATCCGCGCCGGGCTGGTCGCGCCGGCCGCGGTCGAGCTCGGTGGGCGGCTCGTGGACCGCACCATCGCCTACGTCACCACCGACTCCCCCGCCCCGGCACCACCGTCGGGCACCGCCCCGCTGGCCACGGGGTACCGCGTGCTGGACGTCATGCCGTTCGGCCTCAAGAAGCTCAAGGCCTACCTGCGCGAGCGGGACGTCGGCCGGGTGACGATCAAGAAGCGGGGCACGGCCGTCACGCCCGAGCAGCTGCGCGCCCAGCTCTCCCTGCGCGGGGACGCCGAGGCGACGCTCGTGCTCACCCGGGTGGCGGGACGCCAGCACGTGCTGGTGGTCGACCCCTTGCCGAGGTAGMDVASLTKLLSPEGWALLNALPPYDESRAMALATRLRSEGVDPDLAAAALTQSRLRAKAAAKLGPFAEGMLFTPHGLEQATRLVVAAVHARRYLSAGVGKVADLTCGLGADALAFAGVGLDVLAVDVDEATAALATVNLRAFPEAEVRHTDGLTLDLVAEGVDGLYADPARRTRGGKRVFDPAAYAPPLDAVWALRDQVPALGIKVGPGIPHQGLPADAETQWVSVDGDVVEAGLWFGPLAPEGPGRSALLLQTQDDGHQAASSRVLHGRPGDDQVPDVGPVGSYLYEPDGAVIRAGLVAPAAVELGGRLVDRTIAYVTTDSPAPAPPSGTAPLATGYRVLDVMPFGLKKLKAYLRERDVGRVTIKKRGTAVTPEQLRAQLSLRGDAEATLVLTRVAGRQHVLVVDPLPRNANANANANA
AK018_059431182COG2170Putative glutamate--cysteine ligase 2ATGGTGCTGGAGTTCGAGACCTCCCGACGGTCGAGCGTCGGCCTGGAGTGGGAGCTCGCCCTGGTCGACGCCGACTCGGGCATCCTGCGCCAGGTGGCGCCCGCGGTGATGACCGAGCTCGGCCCCGACTCGCGGGCCCGGCACGTCAAACCCGAGTTCCTGCGCAACACCGTCGAGATCGTCTCCGACGTCAACGACACCGTCGCCGGCGCCATCGCCGACCTGGAGAACGGCGTCGCCCGCGTCCAGGAGGTCATCCGCCCCATGCGCGCCGAGCTCATGGGCGCCGGCACCCACCCGTTCGCCCCCTGGTCCCAGCAGCAGGTGACCGACAAGGAGCGGTACGCCACCGTCGTCGACCGCGCCCAGGTGTGGGGCCGCCAGCAGGTGGTCTACGGCGTGCACATGCACGTGGGCATCGAGGACCGCGACAAGGTGCTGCCGATCGTGCGCTCCCTGCTGGTCTACGTGGCCCACCTGCAGGCCCTGTCGGCGTCGTCGCCCTACTGGGACGCGGCTGACACCGGCTACGCCTCGATGCGGGCGCTGATCTTCCAGCAGCTGCCGACGGCGGGCCTGCCCTACCAGTTCACGGCCTGGGACGAGCTGGAGCGCTACGTGGCGGACATGCTCAAGACGGGCGTGATCGACGACTTCACGGAGGTGCGTTGGGACATCCGGCCGGCCCCGCACTTCGGCACCGTCGAGGTGCGCATCTGCGACGGCACCTCCAACGTCGCCGAGCTGGCCGCCCTCGGCGCCCTGGTGCACTGCCTCGTCGAGCACTTCTCCACCCTGCTCGACGAGGGCCGCCCGCTGCCCGTCATGCCGCGCTGGTACGTCCACGAGAACAAGTGGCGTGCCGCCCGCTACGGGATGGACGCCATCATCATCCTCGACGCCGACGGCAACGAGGAGCTGATCACCGACGCGCTGCCCCGGCTGCTCGACGACCTGGCGCCGGTGGCCGAACGGCTCGGCTGCGCGGCCGAGCTCGACGGGATCCGCGACATCGTGCGCCTCGGCGCCTCCTACCAGCGTCAGCGGGCGGTGGCGGCCGCGCACGGCGGCGGGCAACGCGGCCTGGAGGCCGTGGTCGGGGCGCTGGTGGCCGAGCTGCACGCGGGTCGGCCGCTCGACCCGGCCGTGTTGGGCCGGGGCGCGGCCGGCGCGGCGACCTAGMVLEFETSRRSSVGLEWELALVDADSGILRQVAPAVMTELGPDSRARHVKPEFLRNTVEIVSDVNDTVAGAIADLENGVARVQEVIRPMRAELMGAGTHPFAPWSQQQVTDKERYATVVDRAQVWGRQQVVYGVHMHVGIEDRDKVLPIVRSLLVYVAHLQALSASSPYWDAADTGYASMRALIFQQLPTAGLPYQFTAWDELERYVADMLKTGVIDDFTEVRWDIRPAPHFGTVEVRICDGTSNVAELAALGALVHCLVEHFSTLLDEGRPLPVMPRWYVHENKWRAARYGMDAIIILDADGNEELITDALPRLLDDLAPVAERLGCAAELDGIRDIVRLGASYQRQRAVAAAHGGGQRGLEAVVGALVAELHAGRPLDPAVLGRGAAGAATPGPT0026300_526DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
AK018_059441053tsaD_2COG0533tRNA N6-adenosine threonylcarbamoyltransferaseATGTGGGCCATGCCAGACCCCCTCGTGCTCGGTATCGAGACCTCCTGCGACGAGACCGGCGTCGCCCTCGTGCGCGGCGACACCCTCCTGTTCGACGCCGTGGCCAGCTCCATGGACGAGCACGCCCGGTACGGCGGGATCATCCCCGAGGTCGCCAGCCGCGCCCATCTCGAGGCCATGGTCCCCACCATCCGCCGCGCCCTCGGCGAGGCCGACGTCGACCTGTCCGAGATCGACGCGATCGCCGTCACCGCCGGACCGGGGCTCGTCGGCCCGCTGACGATCGGCGCCAGCGCCGCCAAGGCCCTGTCGATCGGCCTGAACAAGCCGCTGTACGGGGTCAACCACATCATCGGGCACGCCGCGGTCAACCAGCTCGTGGACGGCCCCTTCACCGAACGGTCCATGGCGCTGGTCGTCTCCGGCGGGCACAGCTCGCTGCTGCTCGTGGACGACATCGCGACGGACGTCACCGAGCTCGGCTCCACGCTCGACGACGCCGCGGGCGAGGCGTTCGACAAGGTCGGCCGCCTGCTCGGGCTGCCCTACCCGGGCGGCCCCCACATCGACCGCCTCGCGCGCGAGGGCGACCCCGAGACGATCCGCTTCCCGCGTGGCCTGACCGCCCGCAAGGACCAGGAGAAGCACGCCTACGACTTCAGCTTCTCCGGGCTCAAGACCGCGGTGGCCCGCTGGGTCGAGGCGTGCGAGGACTCCGGCAAGGAGGTGCCCGTCGCCGACGTCGCCGCCTCCTTCGCGGCCGCCGTCGTCGACGTCCTCACCGCCAAGACGATCGCCGCCTGCCGGGCGCACGACGTCGAGACGCTCGTGATCGGCGGCGGGTTCTCCGCCAACAGCCAGCTGCGCGAGCTGGCCGCCGCCCGGTGCGCCGAGGCCGGCATCGACCTGCGCATCCCGCCGATCCGCTACTGCACCGACAACGGGGCCATGATCGCCGCGCTCGGCTCCGCCGTCGTCCGCGCCGGGCTGCCGCCGTCGGACCTGGACATCGGGGTGGACTCCTCGATGCCGCTGACCACCGTCACGGTCTAGMWAMPDPLVLGIETSCDETGVALVRGDTLLFDAVASSMDEHARYGGIIPEVASRAHLEAMVPTIRRALGEADVDLSEIDAIAVTAGPGLVGPLTIGASAAKALSIGLNKPLYGVNHIIGHAAVNQLVDGPFTERSMALVVSGGHSSLLLVDDIATDVTELGSTLDDAAGEAFDKVGRLLGLPYPGGPHIDRLAREGDPETIRFPRGLTARKDQEKHAYDFSFSGLKTAVARWVEACEDSGKEVPVADVAASFAAAVVDVLTAKTIAACRAHDVETLVIGGGFSANSQLRELAAARCAEAGIDLRIPPIRYCTDNGAMIAALGSAVVRAGLPPSDLDIGVDSSMPLTTVTVNANANANANA
AK018_05945621rutE_2COG0778putative malonic semialdehyde reductase RutEATGACCGACACCCTGCTCGAGACCGCGCCCCTCGCCATCGACGAAGCGGCCGCGGACCGCATCTTCCGCCACGCCCGTTCCACTTCGCTGTGGACCACCGACGAGGTCACCGACGCCCGTCTCGAGGCGGCCTGGGACCTGGCCAAGCTCGGCCCGACGGCGATGAACACGCTGCCCCTGCGTCTGCTGGTGGTCCGCTCCCCCGAGGCGAAGCAGCGCCTGTCGGCGCACATGGCGGAGGGCAACAAGCCGAAGGTCGAGGCCGCCGCGGTCTCCCTGGTGCTGGCAGCCGACCCGGCGTTCCACGAGCACCTGGACGAGCTCTTCCCGGTCTACCCCGGGATCCGCGAGCAGCTGGCGCCGGCCACCGAGGTGCGCGAGCAGATGGCCCGCAAGAACGCGTTGCTGCAGGCCGGCTACCTGATCGTGGCGCTACGGGCGGTCGGCCTGGCCACCGGCCCGATGGACGGGATGGACGCCGACGGCATCGACGGCGAGTTTTTCGCCGGTTCCGGCTGGAAGTCGCTGCTGGTGGTCAACGTCGGTTTCGCCGACGGCGAGGGGTCCTCGCACCCGCGCGGCAAGCGACTCGGTTTCGAGCAGGTCGCCGAGGTCCTCTGAMTDTLLETAPLAIDEAAADRIFRHARSTSLWTTDEVTDARLEAAWDLAKLGPTAMNTLPLRLLVVRSPEAKQRLSAHMAEGNKPKVEAAAVSLVLAADPAFHEHLDELFPVYPGIREQLAPATEVREQMARKNALLQAGYLIVALRAVGLATGPMDGMDADGIDGEFFAGSGWKSLLVVNVGFADGEGSSHPRGKRLGFEQVAEVLPGPT0021290_139DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021290-rutE|ycdI-K09019NANA
AK018_05946879sseB_2COG2897Putative thiosulfate sulfurtransferase SseBGTGACGGACGGGTCGCCGTCGGCCCGGGACGCGGTGCTGGTGGACGCCGCGACGCTGGCGGCGGACCTGCAGCTCGGCGGGCTCGACGACCCCGCGGGCGGGGCCCCGGTGCTGCTGGACGTGCGATGGGCGCTCGGACGCTCCGACGGCCGGGACCGCTACGAGGAGGGACACCTCCCGGGCGCGGTGTACGTGGACCTGGACACGGAGCTGGCGGCAGCGCCGTCCCCGGCCGAGGGCCGGCACCCGCTGCCCGGAGCCGCCGCCTTCCAGGCCGCCGCCCGCGGGTGGGGCGTCTGTACAGATTCCCGCGTCGTCGTGTACGACGCCGTGGGCGGCACCTCGGCGGCGCGCGCGTGGTGGCTCCTGCGCTGGTTCGGGCACGACGCCGTTCGGATCCTGGACGGCGGGCTCGACGCGTGGGTGCGCGGCGGGTTCCCCCTCGAGTCCGGTGCGACGCGGCGCGAGCGGGGGGACGTCGTCGTCCGTCCCGGGCACCTGCCGGTGCTCGACGCCGACGGCGCCGCCGACTGGACGGACGACGGCGGTGTCCTGCTGGACGCCCGGGCCGCGGAGCGGTACCGCGGCGACGTCGAGCCGGTCGACCCCCGTGCGGGCCACGTGCCGGGTGCGGTCAGCGCTCCGACCACCGCGAACCTGTCCGACGACGGCACCTTCCGGTCCGCCGAGGAGCTGACGCGACGCTTCGCGGAGCTCGGTGCGACCGGACGGGCGCCGGTCGGCGTCTACTGCGGGTCCGGCGTCACCGCCGCCCACGAGGTCGCGGCGCTGGCCTCGATCGGTGTCGAGGCGGCGCTGTACCCCGGGTCGTGGTCGCAGTGGTCGAACGACCCGTACCGACCCGTCGCGACCGGCTGAMTDGSPSARDAVLVDAATLAADLQLGGLDDPAGGAPVLLDVRWALGRSDGRDRYEEGHLPGAVYVDLDTELAAAPSPAEGRHPLPGAAAFQAAARGWGVCTDSRVVVYDAVGGTSAARAWWLLRWFGHDAVRILDGGLDAWVRGGFPLESGATRRERGDVVVRPGHLPVLDADGAADWTDDGGVLLDARAAERYRGDVEPVDPRAGHVPGAVSAPTTANLSDDGTFRSAEELTRRFAELGATGRAPVGVYCGSGVTAAHEVAALASIGVEAALYPGSWSQWSNDPYRPVATGPGPT0002045_2426DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
AK018_05947528rimI_2COG0456N-alpha-acetyltransferase RimIATGAGCGACGACCCTCTGCAGGTGCGGATGCGGCCGCTGGCCAGCAGCGACTTCGACCGGGTGCTCGAGCTCGAGCGAGAGCTCTTCGGGCCGGGGGCGTGGACCTACGGGATGCTCGCCGACGAGCTCGCCGGCCTCGGCCGGTGGTACGTGGTGGCCGAGCCCGACGGGATCGACGCCCTGCGCTACGGGTTCGGCGCGCGCCCGGTGATCGGCTACGCCGGACTGTGGTTCGACGGCGACGTCGCCCAGGTGATGACGCTCGGCACGGCCCGGGAGTACCAGGGCCGCGGCGTCGGGCGGGCGCTGCTGCAGGCGCTGGTGGACCGCAGCCGGCAGCTCCGCGCGACGTCGCTGCTGCTGGAGGTGGCGACGGACAACGAGCACGCGCTGGCGCTGTACGCGTCGTTCGGGTTCGAGCGCCTCGGGATCCGCAAGCGCTATTACCAGCCGGAGGACAAGGACGCGTACACGATGCGGATGGACCTGAGGGCGTCGTCCACCGGCGGGCACGGGGACGCGGCGTGAMSDDPLQVRMRPLASSDFDRVLELERELFGPGAWTYGMLADELAGLGRWYVVAEPDGIDALRYGFGARPVIGYAGLWFDGDVAQVMTLGTAREYQGRGVGRALLQALVDRSRQLRATSLLLEVATDNEHALALYASFGFERLGIRKRYYQPEDKDAYTMRMDLRASSTGGHGDAAPGPT0002045_46DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
AK018_05948732COG1214putative proteinGTGGCCGTTCTCGCACTCGACACCTCCGCAGCCGTCGCCGTCGCCCTGACCGACGACGACGGCGGGCGGCTCGCCGTCCGCACCGCCGACGAGCGGCGCCGGCACGCCGAGTCCCTCGCCCCGATGATCGCCGAGGTCCTCGCCGAGGCCGGCGTTGACCGCACGGACCTGACCGCCGTCGTCGGCGGGACCGGCCCGGCCCCGTTCACCGGCCTGCGCGTCGGGCTGGTCACGGCGCGGACCCTGGCGCTGAGCCTCGACGTCCCGGCGCTCGGCGTGCCCAGCATCGACGCCGTCGCCGTCCAGGCGGTCGCGGACCTCGGCCTCGACCCGGGCGACGAGGTCCTCGTCGCGACCGACGCCCGGCGCAAGGAGGTGTACTGGGGGCGGTACCGCGTCGTCGCGCACGAGGGTCCGCACGGACTGCCCGTCGTGCAGACCCTGCACGGTCCGCAGGTCGCCCGGCCGGCCGACGTCGCGACCGGGGCGGCGCCCGCTCCGGACGGTCGTCTCGTCGTCGTCGGGGAGGGGGCCGACCTGTACGCCGAGCACCTCGCGGCGGACGAGGACGCGCCGCTGCGACCCGACGCCGTGGTGCTGGCGCGTCTGGCGCTGGCCCGCCGCGCCGCGGGCGAGGACCTGCCGACCGAGCCCCTGTACCTGCGCCGCCCGGACGTCCAGGAGCCCGCCGGCGCCAAGCGGGTGGTCCCCGCCACCGGGGGCACGGCATGAMAVLALDTSAAVAVALTDDDGGRLAVRTADERRRHAESLAPMIAEVLAEAGVDRTDLTAVVGGTGPAPFTGLRVGLVTARTLALSLDVPALGVPSIDAVAVQAVADLGLDPGDEVLVATDARRKEVYWGRYRVVAHEGPHGLPVVQTLHGPQVARPADVATGAAPAPDGRLVVVGEGADLYAEHLAADEDAPLRPDAVVLARLALARRAAGEDLPTEPLYLRRPDVQEPAGAKRVVPATGGTANANANANANA
AK018_05949543hypothetical proteinGTGAGCGACGTCGTCCGCACGGACCTGCCGGAGGCCGAGGACACCAGGGCGCTGGGTGCCTCGCTCGCCGCGGTGCTGTGCGCCGGTGACCTGGTGATCCTCACCGGTGACCTCGGCGCCGGGAAGACCACGCTGACGCAGGGGCTCGGCGAGGCGCTGGGGGTGCGCGGCCAGGTCGCCTCGCCGACGTTCATCGTGGCGCGCGAGCACCCGCCGCTGCCGCGCCCGGACGGCACGACGGGCCCGGCCCTGGTGCACGTGGACGCCTACCGGCTCGGTGACCTCGGCGAGCTCGACGCCCTCGACCTGGACTCGTCGCTGGACGAGTCGGTCACGGTCGTCGAGTGGGGGCGTGGGCTGGCCGAGGCGCTGACCGAGGACCGCCTCGAGATCGACCTGGAGCGGCCGCGGGGCGGCGAGGTGGACCTCGACCACCCGGACGCCGGCATCCGCCGCGTCACGCTGCGGGGCGTGGGGGACCGGTGGGCCGCCGTCGACCTGGCCCGAATCGTCGCGGGGCAGGCAGCCCGCGGCGAGCCGTAGMSDVVRTDLPEAEDTRALGASLAAVLCAGDLVILTGDLGAGKTTLTQGLGEALGVRGQVASPTFIVAREHPPLPRPDGTTGPALVHVDAYRLGDLGELDALDLDSSLDESVTVVEWGRGLAEALTEDRLEIDLERPRGGEVDLDHPDAGIRRVTLRGVGDRWAAVDLARIVAGQAARGEPPGPT0024095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024095-alr_murF-K01798NANA
AK018_059501215alr_2COG0787Alanine racemaseGTGACGCTCCCGCCCTTCCCCGACGGCGTGCCCGCCCGCGCCGTCGTCGACCTCGACGCCATCAGCGACAACGTCCGTGCCCTGCGCGAGCACGCGCCGTCGTCGGACCTCATGGCCGTGGTGAAGGCCGACGGGTACGGGCACGGGATGCTCCCGGCCGCCCGCGCGGCGCTCGCGGGCGGGGCGACGTGGCTCGGGGTGGCCACGGCCGCCGAGGCGCTGGCGCTGCGCGCGGGGCTGGGGCAGCACGTCCCGGTGCTCGTGTGGCTGCTGACGCCCGGGGCGCCGTTCGCTGACCTCGTGGCCGCCGACGTGGACGTCGCGGTGGCGGCCCCCTGGGCGGTCGACGAGGTCGCCGCCGGGGCGCGGGCCGCCGGTCGGGTCGCGCGCGTGCACCTCAAGGTGGACACCGGGCTGTCCCGCAACGGGGTCGCCTCGGGGGACCTGGGTGCCGTCGTCGAACGGCTCGCCGCGCTCGAGGCGTCCGGCGAGGTGCGCGTCGTCGGGGTGTTCTCCCACCTGGCGTGCGCCGACGAGCCCGACCACCCCTCGATCGCCCGGCAGGCCGCGGCGTTCGACGCCGCGCTCGGCGTCGTCGAGGCGGCCGGGCTGCGGCCCGAGGTGCGTCACCTGGCCAACTCGGCGGCCACGCTGACCCTGCCCGACCTGCACCACGACCTGGTCCGCCCCGGCATCTCCGTCTACGGCAACTCGCCCGGCCCGCTGCTCGGCCCGCCCGGTCGGTACGGCCTGCGCCCCGCGATGACTTTCCAGGCGCGGCTGGCGAGCGTCAAGCAGGTGGCCGCCGGCGAGGGCGTCTCCTACGGCCACCTGTACACGACGACGCAGGACACCACCGTGGGCCTCGTGCCCGTCGGGTACGGCGATGGCGTGCCGCGGCACGGCTCCGGCGGCTCGGCGGGCCCGGGCGGTCCCATCGCCGTCGGTCCGCCCGCGGCGCGTCGGGTGCTGCGCGTGGCCGGTCGCGTGTGCATGGACCAGCTCGTCCTCGACCTGGGTCCCGGCGCGACCGACAGCCCCGGCGACGTCGTCACCCTGTTCGGGGCGTCCGACGGCGTCGCGCACGGCGCCGACGTGCCGAACGCGCAGGACTGGGCCGACGCCGCCGGCACCATCAGCTACGAGATCGTCACCCGGCTGGCCGGCCGGGTGGTCCGCCAGTACGTCCCGACCGAAGGAGAGGGAGCATCGTGAMTLPPFPDGVPARAVVDLDAISDNVRALREHAPSSDLMAVVKADGYGHGMLPAARAALAGGATWLGVATAAEALALRAGLGQHVPVLVWLLTPGAPFADLVAADVDVAVAAPWAVDEVAAGARAAGRVARVHLKVDTGLSRNGVASGDLGAVVERLAALEASGEVRVVGVFSHLACADEPDHPSIARQAAAFDAALGVVEAAGLRPEVRHLANSAATLTLPDLHHDLVRPGISVYGNSPGPLLGPPGRYGLRPAMTFQARLASVKQVAAGEGVSYGHLYTTTQDTTVGLVPVGYGDGVPRHGSGGSAGPGGPIAVGPPAARRVLRVAGRVCMDQLVLDLGPGATDSPGDVVTLFGASDGVAHGADVPNAQDWADAAGTISYEIVTRLAGRVVRQYVPTEGEGASPGPT0020040_279DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020040-alr-K01775NANA
AK018_059511020hypothetical proteinATGCCGTCCCCGCGCAAGCACGTCCCCCCGCTGCCCGTGCGCGACGGCCTCAACCCCACCCGACTGGTGCTCCCGCACGACCCGGCCTCGGTGGCCCGTCACGCCACGGCGGCCGGATACCTGCTGGAACGGTTCCCCGACGACGCGGTCCGCCTGCGCGCGAAGATCGCCGCCGGCGAGGTCGTCACCGGCGACGGCACGCCGGTCGACGTCGGCACGCCCTACGTGCCGCGCGGGTTCCTGTACCTGTACCGGGACCCGCCGTCCGACGAGCCGGAGGTCCCCGAGCTCGCCGACCTGGAGATCCTGCACCGCGACGACGACCTCCTCGTCGTCGACAAGCCGCACCGTGTGGCCACCATGCCGCGCGGACGCTGGGTGATGCGCACGGTGCTCACCCACCTGCGGCGCGAGCTCGACCTGCCCGACCTGGTGCCGGCGCACCGCCTCGACCGGCCCACCGCCGGGGTCCTCGTGCTCACCGTCCGCCCCGAGGTGCGCGGCGCGTACCAGCTCGTCTTCCAGGAGCGCCGGGTGCGCAAGGTCTACGAGGCCGTCGCGCCGCTGCCGGACGGCGCCGAGGCCGACGTCGGTGGCACGGACGGCGCCAGTGTCACGGACGGCGCGGCGGACGACGACGGAGCGCCCGGCTTCCCGCGCACCGTGCGGTCGCGCATCGTCAAGCGCCGCGGGTCGGTCCGTGCCGAGGAGATCCCCGGCGAGCCCAACGCGGAGTCGTGGATCGACCTCGTCGCCCGCGACGACGCCCGCGGGGTGGGGCTGTACCGGCTCGAGCCCCGCACCGGCAGGACGCACCAGCTCCGCCTCCACATGGCGGGCCTCGGGCTGCCGCTGGTCGGTGATCCCTTCTGGCCCGAGGTGCTGCCGGACGGCGCCGAGGACTCCGGGACCCCGCTGCAGCTGCTCGCCCGCGCGGTGTCGTTCGCCGACCCGCTGACCGGCGAGCCCCGCACCTTCACCTCCCGGCGCCGTCTCGGCGGATGGCCGGCCGGCCGGTGAMPSPRKHVPPLPVRDGLNPTRLVLPHDPASVARHATAAGYLLERFPDDAVRLRAKIAAGEVVTGDGTPVDVGTPYVPRGFLYLYRDPPSDEPEVPELADLEILHRDDDLLVVDKPHRVATMPRGRWVMRTVLTHLRRELDLPDLVPAHRLDRPTAGVLVLTVRPEVRGAYQLVFQERRVRKVYEAVAPLPDGAEADVGGTDGASVTDGAADDDGAPGFPRTVRSRIVKRRGSVRAEEIPGEPNAESWIDLVARDDARGVGLYRLEPRTGRTHQLRLHMAGLGLPLVGDPFWPEVLPDGAEDSGTPLQLLARAVSFADPLTGEPRTFTSRRRLGGWPAGRNANANANANA
AK018_05952645resA_5Thiol-disulfide oxidoreductase ResAATGCGAACCACACGAGGTGCGGCGACGGCCGCCGCGACCCTGACCCTGCTGCTCGTCGCCGGGTGCGCCGCCGAGACCGAGCCGGCCGCGGACACCATGACGGCCTCCGAGGAGCCGATGGACGAGATGTCGGACGACACGGCCGACGACATGGACTCCGAGGACATGGCCGACGAGCCCGAGGAGGACATGGCGGAGGACCACGAGGACGACGCCATGGCGGACGACGCGGCCGGCGAGGACCTGCCTGCCGTCTACGACTTCACGGCCACCACGCTCGACGGCGAGGAGTTCTCCGGCGCCGAGCTCGCCGGCTCGCCGGCCGTGCTGTGGTTCTGGGCGCCGTGGTGCCCGACCTGCCGGGCGCAGATCCCTGCGGTGACCGCGCTGTCCGAGACCTACGGCGACGACGTGTCGGTCGTGGCGGTCGGCGGCCTCGACGATGCCGAGGCGATCAGCGCGATGGCGCAGAGCGACATCGCCGGGCCCACCCACCTGGTGGACGACGCGGGCGAGGTCTGGCAGCACTTCGGCATGACGCAGCAGTCCACGTTCGTGGTGCTGGACGACGCCGGCGAGGTCGTGCTCGAGGGCTCGGTGCCCGCGGACGAGCTCGACGCGACCGTCGCCGACCTCGCGGGCTGAMRTTRGAATAAATLTLLLVAGCAAETEPAADTMTASEEPMDEMSDDTADDMDSEDMADEPEEDMAEDHEDDAMADDAAGEDLPAVYDFTATTLDGEEFSGAELAGSPAVLWFWAPWCPTCRAQIPAVTALSETYGDDVSVVAVGGLDDAEAISAMAQSDIAGPTHLVDDAGEVWQHFGMTQQSTFVVLDDAGEVVLEGSVPADELDATVADLAGNANANANANA
AK018_05953840hypothetical proteinGTGGGCGAGGGATTCGCGCTCGCCCTCGGTGCGGGCCTGGTCGCGGCGGTGAACCCCTGCGGGTTCGCGCTGCTGCCCGCCTACCTCGCCACCCTGGTGCGGCCCGACGACGGCCGGGCCGCCGCCGTCGGGCGTGCGCTGCGCTCGACGGCGGCGCTCACCCTGGGGTTCGTGGCGGTGTTCGGCACGTTCGGGCTCGTGGTGGCGCCGGTGGCCAGCTCGGTCCAGCGCTGGCTGCCGGTCTTCACGCTGGTGCTCGGCGTCGTGCTGGCCGCGGCCGGCATCTGGGTCGTGGCCGGCCGCGAGCTGCCAGGCCTGCGCGTCCTGCGCACCGGGTCGGGGCGGCCGCTGACGGACCGCTGGTGGTCCGTCGTCGGGTTCGGCGCCTCGTACGCCCTGGCGTCGCTGACGTGCACCATCGCACCGTTCCTCGCCGTCGTCGTCACGGCGTTCCGGGCCGGGTCGATCGGTCAGGGCGTCGCCCTGTTCGCCACCTACGCGGCCGGCATGGCGCTGCTGGTCGGCACGGCCGCCGTCGTCGTCGCGGTCGCGGGAGCCGGCGTCGTGGGCCGCGCCCGCAGCGCCGGTCCGGTGCTCGCCCGCGTCGGCGGCGCCATCCTGCTGATCGCCGGGCTGTACGTCGCCTGGTACGGGTTCTGGGAGCTGCGCGTGCTGTACGGCGGCGCGGGCACCGACCCCGTGGTCGACGGCGCCGCCGCGGTCCAGCGCTGGCTGGCCGCCACGGCCGAGGGCCTTGGCTGGGTCGGGCTGCTCGCCGTCCTGGTCGTGGTCGCCGGTGCCACGCTGGGCCTGACCTGGTGGCGTCGCCGCAGGGCATGAMGEGFALALGAGLVAAVNPCGFALLPAYLATLVRPDDGRAAAVGRALRSTAALTLGFVAVFGTFGLVVAPVASSVQRWLPVFTLVLGVVLAAAGIWVVAGRELPGLRVLRTGSGRPLTDRWWSVVGFGASYALASLTCTIAPFLAVVVTAFRAGSIGQGVALFATYAAGMALLVGTAAVVVAVAGAGVVGRARSAGPVLARVGGAILLIAGLYVAWYGFWELRVLYGGAGTDPVVDGAAAVQRWLAATAEGLGWVGLLAVLVVVAGATLGLTWWRRRRANANANANANA
AK018_05954495btuE_2COG0386Thioredoxin/glutathione peroxidase BtuEATGATGGGCGGCATGGACATCTACGAGATCCCGTTCGACCGGATGGACGGCACGACCGCGACGCTGGCCGAGCACCGCGACGACGTGGTGATGGTCGTCAACGTCGCCTCGCGCTGCGGCTTGACGCCGCAGTACTCGGCGCTGGAGGACCTGCAGAAGCGGTACGCCGAGCGCGGGTTCACCGTGGTCGGGTTCCCCAGCAACCAGTTCCTGCAGGAGCTGTCCACCGACGACAAGATCGCCGAGTTCTGCTCGGCCACCTACGGCGTGACGTTCCCCGTGGTGTCCAAGGTCAAGGTGAACGGCAAGAAGGCCCACCCGCTCTACCAGGAGCTGACGAGGACGCCGGACGCCGACGGTCACGACGGACGGATCCGGTGGAACTTCGAGAAGTTCCTCGTGCTGCCCGGCGGCGAGGTCCGCCGCTACTCACCCAAGACCGTGCCGGACGACCCTGCGATCGTCGAGGTCATCGAGGCGCACCTGCCGCGCTGAMMGGMDIYEIPFDRMDGTTATLAEHRDDVVMVVNVASRCGLTPQYSALEDLQKRYAERGFTVVGFPSNQFLQELSTDDKIAEFCSATYGVTFPVVSKVKVNGKKAHPLYQELTRTPDADGHDGRIRWNFEKFLVLPGGEVRRYSPKTVPDDPAIVEVIEAHLPRPGPT0013115_4757DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432NANA
AK018_05955561mshD_7Mycothiol acetyltransferaseATGGACCCCGTGCCGCGTGCGACGACGGGCGGCGGCCTCGCGGTCCGGACGGCCACGCTCGAGGACCTGCCCGCCGTCGAGCGCGTCGACGCCGCCGCGGACCGGTCCGCCGAACCGGGCACGGTGCGGGCCGCGGTGCTCGACCCGCAGCGGCTCGTCGTCGTCGCCGAGGTCGACGGTGCGGTGGTCGGCTGGGCCAAGACGCACCTGTTCGCCCGCCCCGACGGCCCGGCGCCGGCAGGGCACTACCTCGGCGGGGTGACGGTCCACCCGGCCTGGCGGCGGCGCGGGCTCGGTGCGGCGTTGACGGAGGCACGGCTGGACTGGCTCGGCAAGCGCACCGACCGGGTGCACTACGTCGTCAACGCCGCCAACTCGGCCTCGATCGCGCTGCACCGCCGCTGGGGGTTCCAGGAGGTCGCGCGGGCGCCGTCGTTCCACCGCGTCCCGTTCGCCGGCGGCCTGGGGCTGCTGCTGACCGCGCGCCTGCCTCAGCGCGGCAGGTGCGCCTCGATGACCTCGACGATCGCAGGGTCGTCCGGCACGGTCTTGGGTGAGTAGMDPVPRATTGGGLAVRTATLEDLPAVERVDAAADRSAEPGTVRAAVLDPQRLVVVAEVDGAVVGWAKTHLFARPDGPAPAGHYLGGVTVHPAWRRRGLGAALTEARLDWLGKRTDRVHYVVNAANSASIALHRRWGFQEVARAPSFHRVPFAGGLGLLLTARLPQRGRCASMTSTIAGSSGTVLGEPGPT0028640_20DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028640-aac6_I|aacA7-K18816NANA
AK018_059561530nnr_2COG0062Bifunctional NAD(P)H-hydrate repair enzyme NnrATGATCTCCGCCTGGTCCGTCGCCGACGTCCGTGCCGCCGAGGAACCGCTGCTCGCCGCCGGGGTCCCGTTGATGGACCGGGCGGCGTTCGCCCTGGCCACCCAGGTCCTGGCCGACCTGCGTGCGCGACGCCGGTCGGTGCGTGGCTCCCGGGTGTCCGTCCTGGCCGGGGCCGGCAACAACGGGGGCGACGCCCTGTTCTCGGGAGCCGTCCTGGCGCGTCGCGGCGTGGCGGTCCGGGCGGTGCTCACCTCGGACCGGGCGCACGACGACGGCCTGGCCGCGCTGCGGGCGGCCGGCGGGCGGGTCGTGGATCTCGCCGCCGCGCCGGAGCGGGTGCGGGACGTGGCTGCGGAGGTCTCCCGGGACGACGTCGTGCTCGACGGGCTGGTCGGGATCGGCGCGTCGGGGGCGCTGCGCGGCCGGGCCGCCGAGCTCGTCACCGTCCTCGGCGAGGGGCCGTGGGTCGTCGCCGTCGACACCCCCTCGGGCATCGGGGTCGACGACGGGACCGTCCCCGGCCCCGTGCTCGCCGCCGACCGCACGGTCACGTTCGGGGCCGCGAAGCCCGGCCTGCTCCTGCCGCCCGCCGCGCACCTGGTCGGCGACCTCACCGTGGTCGACATCGGCCTGACCCTCACCGGACCCCCCGACGTGCGCCGCCTGGAGCCCACGGACATCGCCGGCACCTGGCCCGTGCCGGGCGCGCAGGACCACAAGTACACCCGCGGTGTGGTCGGCCTCGTCGCCGGCACGGCCACGTTCCCGGGGGCCGCCGTGCTCGCCGCCTCCGCCGCCGTGCGCACCGGGGCCGGGATGGTCCGCTACCGCGGCCCGGACGCCGTCGCCCGCACGGTGCTGGCCGCCCGGCCCGAGGTCGTCACCGCCCCCGGCCGGGTCCAGTCGTGGGTGATCGGTCCGGGCGTGCCGCCCACCGCCGACGACGCCGACGACGGTCAGCTCGACCGCGGGCGCGCCGGGCTGGCGGCGGCCCGCGGGGAGCTCGCCGGGCTGTCGCGGGGGCCGGTGCCTGCCGTCGTCGACGCCGGCGGGCTCAGCTTCGTCGCCGAGTCCTGCCCGCCGTGGTTCGTGCTGACCCCGCACGCCGGCGAGCTGCGCACCGTGCTGCGCCGTCACGGCGAGGACGTCCACCGCGCCGACGTCGAGGCTGCGCCGCTGACCTGGGCCCGCCGCGCGCACGAGCTGACCGGGGCGACCATCCTGCTCAAGGGGGCCGTGACCGTGGTGGTGGGCGACGGCGTCACCTACGCCCAGGCGGACGCCCCCGCCTGGCTGTCCACCGCCGGTGCGGGGGATGTCCTGTCCGGCATCCTCGGCACCATGCTGGCCGGCCGGTCCGCCGAGGTGGTCGAGGACCCGGCGCTCGCCGCCGAGGTCGCCGCGGGTGCCGCCGTCGTGCACGGCCTGGCCGCCGAACGTGCCGACCCGGGCGGCCCGGTCGCCGCGCTCGACGTGGCCGAGGCCGTGCCGGGCACCGTGGCGGAGCTGCTCGCCTCGCGCGGGGCGTGAMISAWSVADVRAAEEPLLAAGVPLMDRAAFALATQVLADLRARRRSVRGSRVSVLAGAGNNGGDALFSGAVLARRGVAVRAVLTSDRAHDDGLAALRAAGGRVVDLAAAPERVRDVAAEVSRDDVVLDGLVGIGASGALRGRAAELVTVLGEGPWVVAVDTPSGIGVDDGTVPGPVLAADRTVTFGAAKPGLLLPPAAHLVGDLTVVDIGLTLTGPPDVRRLEPTDIAGTWPVPGAQDHKYTRGVVGLVAGTATFPGAAVLAASAAVRTGAGMVRYRGPDAVARTVLAARPEVVTAPGRVQSWVIGPGVPPTADDADDGQLDRGRAGLAAARGELAGLSRGPVPAVVDAGGLSFVAESCPPWFVLTPHAGELRTVLRRHGEDVHRADVEAAPLTWARRAHELTGATILLKGAVTVVVGDGVTYAQADAPAWLSTAGAGDVLSGILGTMLAGRSAEVVEDPALAAEVAAGAAVVHGLAAERADPGGPVAALDVAEAVPGTVAELLASRGAPGPT0024095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024095-alr_murF-K01798NANA
AK018_059571056fgd_13F420-dependent glucose-6-phosphate dehydrogenaseATGCGATTCGGACTCTTCATCCCGCAGGGCTGGCGGATGTCACTGACGGACGTCCCGCCGGAGCAGCACTGGGAGACGATGCTGTCTCTCCTCCACTACGCCGACAACGCCGCCGCCGGCGAGGCCGTCCCGGGCGGCGAGTTCGCCTGGGAGTCGGTGTGGGTCTACGACCACTTCCACACCGTGCCCGTGCCCAGCACCGAGGCCACCCACGAGGCCTGGTCCCTGATGGCCGCCTTCGCGGCAGCCTCCCAGCGGGTCCGCCTGGGCCAGATGTGCACGTGCATGGCCTACCGCGAACCGACCTACCTCGCCAAGGTCGCCTCGACCGTGGACACGATCTCCGGCGGCCGCGTCGAGATGGGGATCGGCGCCGGCTGGTACGAGCACGAGTGGCGGGCGTACGGCTACGGCTTCCCGCGCGCGGGCGAGCGGCTGCGGGCCCTGGACGAGGGTGTGCAGATCATGGCGAACATGTGGCGCACGGGGTCCTCGGGACGTTTCGACGGCGAGCGCTACCAGGTGGACGGCGCGCTGTGCTACCCGCAGCCGCTGCAGCAGCTCCCGGTCGGTGACGGCGGCGCGGAGGTGCCCAGCATCCCGCTGTGGATCGCCGGCGGCGGGGAGAAGAAGACGCTGCGCATCGCGGCGCAGCACGCCCAGTACACGAACTTCTCGGGCGATCCGGAGGGCTTCGACCACAAGTCGCGGATCCTCGAGCAGCACTGCGCCGACGTGGGCACGGACTTCGGGGCGATCACCCGGTCGGCCAACTACAACGTGGTGATCGGCGAGAACCAGGCCGAGATCGACGACAAGCTCGCCTGGGTGGAGTCCCACTTCTCGCGCCACGCGCCGGGCGAGCCGGGCGAACGCGAGATCGCGAACTGGCGCAACGGCCCGCTGGTGGGCACCCCGGAGCAGATCGTGGAGACCCTCCGCGACCTGGAGGAGCGGGGCATGACGTACGCCATCACCTACTTCGCGAACGCCGTCGGCGACCGCGAGCAGATCGAGCTGTTCCAGCGGCAGGTCATCCCCGAGCTCCAGGGCTGAMRFGLFIPQGWRMSLTDVPPEQHWETMLSLLHYADNAAAGEAVPGGEFAWESVWVYDHFHTVPVPSTEATHEAWSLMAAFAAASQRVRLGQMCTCMAYREPTYLAKVASTVDTISGGRVEMGIGAGWYEHEWRAYGYGFPRAGERLRALDEGVQIMANMWRTGSSGRFDGERYQVDGALCYPQPLQQLPVGDGGAEVPSIPLWIAGGGEKKTLRIAAQHAQYTNFSGDPEGFDHKSRILEQHCADVGTDFGAITRSANYNVVIGENQAEIDDKLAWVESHFSRHAPGEPGEREIANWRNGPLVGTPEQIVETLRDLEERGMTYAITYFANAVGDREQIELFQRQVIPELQGNANANANANA
AK018_05958351acpS_2Holo-[acyl-carrier-protein] synthaseGTGATCATCGGGGTGGGGATCGACGTCGTGGACGTCGAGAGGTTCATGGCGACCCTCGACCGCACGCCCCGGCTGCGGGAGAAGCTGTTCACGGAGGCCGAGCGGGACCTGCCGGCGTCGTCGCTGGCGGCCCGGTTCGCGGCGAAGGAAGCCATCGCCAAGGCGCTCGGCGCGCCCGGGAACATGCACTGGCACGACGCGACCGTGCACCGGATCGTCGGCGGGCCCCCGCAGGTGGAGTTGCGCGGCTCCGTGCAGGCGCGGGCGGACGAGCTCGGGGTGCGGCACTGGCACCTGTCGATCTCCCACGACGCCGGGATCTCCTCGGCGATGGTGGTCGCCGAGGGCTGAMIIGVGIDVVDVERFMATLDRTPRLREKLFTEAERDLPASSLAARFAAKEAIAKALGAPGNMHWHDATVHRIVGGPPQVELRGSVQARADELGVRHWHLSISHDAGISSAMVVAEGPGPT0008840_3575DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0008840-acpS-K00997NANA
AK018_059591896glmS_2COG0449Glutamine--fructose-6-phosphate aminotransferase [isomerizing]ATGTGTGGCATCGTCGGATACGCCGGTACGTCCCTGCTCGCCGGGGACGACGCCGCGGCGTCGGGCGCCTCGGCGCGCCCCCTGGAGGTGGCCCTCGGCGGGCTGAAGCGGCTCGAGTACCGGGGGTACGACTCCGCTGGCGTCGCGCTGGTGGGACCCGGCAGCCCCACGGCCGCCTTCGCCAAGAAGGCCGGCAAGCTCGAGAACCTCGTCGCCGCGGTGGCGGAGCAGCCGCTGCCCGACGCGACCGCCGCCGTCGGGCACACCCGGTGGGCGACGCACGGCGGACCGACCGACGTCAACGCCCACCCCCACCTGGCCGACGAGGGCCGGCTCGCCGTCATCCACAACGGCATCATCGAGAACTTCAGCGAGCTGCGTCGGTCCCTGGAACGAGACGGCGTCTCGTTCCTGTCGGACACCGACACCGAGGTGGCCGCCCAGCTCCTCGCCCGTGAGTACCGGACCGCCGGTGACCTCACCGCCGCGATGGCCGCCACGGCCCGGCAGCTCGAGGGCACCTTCACCCTGCTCGCGGTCCACGCCGACGCGCCCGAGACCGTCGTCGGCGCGCGCCACGACTCGCCGCTGGTGGTCGGACTGGGGGAGGGGGAGAACTTCCTGGGGTCCGACGTCGCCGCGTTCGTCGCCCACACCAAGGAGGCGCTGGAGCTCGCGCAGGACCAGATCGTCACCATCACCCCGACGTCGGTCGAGGTGTCCGACTTCGCCGGCAACCCCGCCGAGGGCAAGCGGTTCACCGTGGACTGGGACGCCGCCGCCGCCGAGAAGGGCGGCTTCGACTCCTTCATGGACAAGGAGATCCACGACCAGCCGCACGCCGTCGCCGACACGCTGCTCGGCCGCACCGACTCCTCGGGGCGGATCATCCTCGACGACCTGCGCATCGACGAGTCCGTGCTGCGCAGCGTCGACAAGATCATCGTGATCGCCTGCGGGACCGCCGCCTACGCGGGGCACGTCGCCAAGTACGCCATCGAGCACTGGTGCCGCATCCCCGTGGAGGTCGAGCTCGCGCACGAGTTCCGCTACCGCGACCCGATCGTCGACGAGCGCACCCTCGTGGTCGCCATCTCCCAGTCCGGCGAGACCATGGACACCCTCATGGCGGTGCGCCACGCCCGTGAGCAGGGCGCCAAGGTGCTCGCCATCGTCAACACCAACGGCTCCACGATCCCGCGCGAGTCCGACGCCGTGCTGTACACGCACGCCGGACCGGAGATCGCCGTCGCCTCCACCAAGGCGTTCCTCGCGCAGATCACCGCCGCGTACATCCTCGGGCTGTACCTGGCGCAGCTGCGCGGCAACAAGTTCCCGGACGAGGTCGCCCAGCTCTTCGACGAGCTGCGCGACATGTCCCGCAAGGTGCAGACCGTCATCGAGCGCGGCGAGTACGTGCGCGCCACCGCCCGCTCGATGCAGGCCGCCGACAAGGTGCTGTTCCTCGGACGCCACGTCGGGTATCCCGTCGCGATGGAGGGGGCGCTCAAGCTCAAGGAGCTCGCCTACATCCACGCCGAGGGCTTCGCCGCCGGCGAGCTCAAGCACGGCCCCATCGCCCTCATCGACGAGGGCCAGCCGGTGTTCGTCGTCGTGCCCTCCCCGCGGGGCCGCGACCAGCTGCACTCCAAGGTGGTCTCCAACATCCAGGAGATCCGGGCGCGCGGCGCCCGCACGCTCGTGATCGCCGAGGACGGCGACGACGTGGTGCGCCAGTACGCCGACGAGATCTTCTGGATCCCGCAGGCGCCCTCGCTGCTCCAGCCGCTGCTCGCCGTCGTACCGCTGCAGATCTTCGCGATGGCGCTCGCCGGGGCCAAGGGCCTCGACGTGGACCAGCCCCGCAACCTGGCCAAGTCCGTCACCGTCGAGTAGMCGIVGYAGTSLLAGDDAAASGASARPLEVALGGLKRLEYRGYDSAGVALVGPGSPTAAFAKKAGKLENLVAAVAEQPLPDATAAVGHTRWATHGGPTDVNAHPHLADEGRLAVIHNGIIENFSELRRSLERDGVSFLSDTDTEVAAQLLAREYRTAGDLTAAMAATARQLEGTFTLLAVHADAPETVVGARHDSPLVVGLGEGENFLGSDVAAFVAHTKEALELAQDQIVTITPTSVEVSDFAGNPAEGKRFTVDWDAAAAEKGGFDSFMDKEIHDQPHAVADTLLGRTDSSGRIILDDLRIDESVLRSVDKIIVIACGTAAYAGHVAKYAIEHWCRIPVEVELAHEFRYRDPIVDERTLVVAISQSGETMDTLMAVRHAREQGAKVLAIVNTNGSTIPRESDAVLYTHAGPEIAVASTKAFLAQITAAYILGLYLAQLRGNKFPDEVAQLFDELRDMSRKVQTVIERGEYVRATARSMQAADKVLFLGRHVGYPVAMEGALKLKELAYIHAEGFAAGELKHGPIALIDEGQPVFVVVPSPRGRDQLHSKVVSNIQEIRARGARTLVIAEDGDDVVRQYADEIFWIPQAPSLLQPLLAVVPLQIFAMALAGAKGLDVDQPRNLAKSVTVEPGPT0017630_928DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820NANA
AK018_059601017coaA_2COG1072Pantothenate kinaseGTGACCTCCGCGAGCACGCCCGCACCCGCTGCCGGCGACCCTGCGCCGCCGCACCCCCTGAGCGAGCACCTGTCCCGGTTCGCCCCGGTCTCGCCGTACGTGGACTTCGACCGGGCGACGTGGAGCCGGCTGTCGGAGCAGACGCCGCTGCCGCTCACGGACGCCGACGTCGACCGGCTCCGCGGACTGGGCGACCCGATCGACCTCGCGGAGGTCGACGCCGTCTACCGTCCGCTGTCGCGGCTCCTCAACCTGTACGTGACCGCGACGTCGGGGCTGCACCGCGCGACGTCGACGTTCCTGGGCGAGGACCCGCCGCGCACCCCGTACGTCATCGGCGTGGCGGGATCCGTCGCGGTGGGCAAGTCGACCACGGCGCGCGTCCTGCGCGAGATGCTGGCCCGGTGGCCGGAGACGCCGCACGTGGAGCTCATCACCACCGACGGGTTCCTGTACCCGAACGCGGAGCTGGAGCGCCGCGGCCTCATGTCCCGCAAGGGCTTCCCCGAGTCGTACGACCGCCGCGCGCTCATCCGCTTCCTGTCCCGCGTCAAGGCCGGGCAGAGCGAGGTGCGGGCACCCGTCTACTCCCACGTCACCTACGACATCGTCCCGGACGAGCACACCGTGGTGCACCGCCCGGACGTGCTGATCGTCGAGGGCCTGAACGTTCTGCAGCCGGCGCGGTACTCCTCGATCGACGAGTCCACGGTGGCGGTCAGCGACTTCTTCGACTTCTCGATCTACGTCGACGCCCGCACCCGCACGATCCGGCAGTGGTACGTGGACCGGTTCCTCAAGCTGCGTCGGACGGCGTTCAGCCGGCCGGAGTCGTACTTCCGCCGCTACGCCGAGCTGTCGGACGCCCAGGCGACCGAACGCGCCCTGAGCATCTGGGAGTCGATCAACGCGGTCAACCTGGAGCAGAACGTGCTGCCGACCCGCGGTCGCGCCACCCTGGTCATGACCAAGGGCACCGACCACGCCGTCCAGCGCCTGCGGCTACGCAAGCTCTGAMTSASTPAPAAGDPAPPHPLSEHLSRFAPVSPYVDFDRATWSRLSEQTPLPLTDADVDRLRGLGDPIDLAEVDAVYRPLSRLLNLYVTATSGLHRATSTFLGEDPPRTPYVIGVAGSVAVGKSTTARVLREMLARWPETPHVELITTDGFLYPNAELERRGLMSRKGFPESYDRRALIRFLSRVKAGQSEVRAPVYSHVTYDIVPDEHTVVHRPDVLIVEGLNVLQPARYSSIDESTVAVSDFFDFSIYVDARTRTIRQWYVDRFLKLRRTAFSRPESYFRRYAELSDAQATERALSIWESINAVNLEQNVLPTRGRATLVMTKGTDHAVQRLRLRKLPGPT0008770_13DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008770-coaA-K00867NANA
AK018_05961786hypothetical proteinATGCGCGGCGGTCCGCGGGCCCCCTACGCTGGTGCACGGCACCGCCCGGTGCCGCCCACCGCCGGGACCGACCCGGCCGACGAAGCGAGGAATCGCGTGCCGGGTCTGACGACGCTGCTGGGGCAGATCGAGGAGTGGATCCTCGAGATCGCCGCGTCGTTGTGGATCTATCCCGCGATGTTCGCCTCGGCCTTCATCGACGGGTTCTTCCCGCCGGTCCCCAGCGAGTCGGTGCTCGTCACCCTGGTCATCTCCTCGCAGTCCACCGGCCAGCCGCTGTGGTGGCTGATCATCCCGATCGCGGGCATCGGCGCCTGGTTGGGCGACAACCTCGCCTACGTGCTCGGACGACGGGTGGGCACGGACCGGATCGGGCTCCTGCGCTCGCGGCGAGGCCGCAAGGCCGTCGCGTGGGCACGGCGGGCGCTCGCCCGGCGCGGAGCGGTCTTCATCATCGCCGCCCGCTACATCCCCGTGGGCCGCGTCGCCGTGAACATGACCGCCGGTGCCGTCGGCTACCCGCAGCGCCGGTTCATGACGTTCTCCGCCATCGCCGCCGTGCTCTGGTGCACCTACTCGGCGCTGATCGGTGTCGCTGCGGCCGAGGTGCTCGGGCACGACCCGCTGCTCGCCATGGTGGTCGGCGTCGTCGGCGGCGGTCTGCTCGGGCTCCTCGTCGACCGGGTCGTCCAGCTCTTCACACCGCGCGAGGAGGTGCTCGAGGAGATGCGCGAGCAGGCCCCGCTGCCCGACGAGCAGCCGGTGGAGTCCTCAGAGCTTGCGTAGMRGGPRAPYAGARHRPVPPTAGTDPADEARNRVPGLTTLLGQIEEWILEIAASLWIYPAMFASAFIDGFFPPVPSESVLVTLVISSQSTGQPLWWLIIPIAGIGAWLGDNLAYVLGRRVGTDRIGLLRSRRGRKAVAWARRALARRGAVFIIAARYIPVGRVAVNMTAGAVGYPQRRFMTFSAIAAVLWCTYSALIGVAAAEVLGHDPLLAMVVGVVGGGLLGLLVDRVVQLFTPREEVLEEMREQAPLPDEQPVESSELAPGPT0004890_341DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975NANA
AK018_05962684def_5Peptide deformylaseGTGAGCGACGGCCGTGCCTGGCCCGACGAGCCCGACGCGGACCTCGTCGAGGCGGTGGCCGGACTGCTCGACGCCGCCTTCGCGCGGGAGGGCCGGCCCGGCGTCCTGCCGATCGTGCAGGCCGGCGATCCCGTGCTGCGCCGGGTCGCGACCCCGTACACCGGACAGCTCGGCGCACAGCTGCCGCGGCTCGTCGAGGCGATGCGCCGCACCATGCTCGACGCCCCCGGCGTCGGGCTCGCTGCACCGCAGGTCGGCATCCCCCTGGCCGTCGCGGTGTGCGCGGACCCCGGCGTGCCCGGCGACGCCCGCGAGCGCGAGCCGCTGCCCTTCCGGGTCCTGGTCAACCCTCGCTACGAGCCGGTGCACGACGGCGGTACCCCGGACCGTGCGGCGCACTACGAGGGGTGCCTCTCGGTCGACGGCTGGCAGGCCGTCGTCGCGCGGCCCCGCAGGGTCCGCCTGACGGGGCAGGACGAGCACGGTGCGGCGTTCGACGAGGTGCTGCACGGCTGGCCCGCGCGCATCGTCCAGCACGAGACCGACCACCTGGCCGGCCGGCTGTACCTCGACCGCGCCGAGCCGCGATCGCTCACCTCCCACGAGAACCTGACCCGGTTCGGGGCGCCCGACGCCGCCGCGGAGCGCGCCGCCGTCGAGCTCGGTTTCCCGCTGCCCACCTGAMSDGRAWPDEPDADLVEAVAGLLDAAFAREGRPGVLPIVQAGDPVLRRVATPYTGQLGAQLPRLVEAMRRTMLDAPGVGLAAPQVGIPLAVAVCADPGVPGDAREREPLPFRVLVNPRYEPVHDGGTPDRAAHYEGCLSVDGWQAVVARPRRVRLTGQDEHGAAFDEVLHGWPARIVQHETDHLAGRLYLDRAEPRSLTSHENLTRFGAPDAAAERAAVELGFPLPTNANANANANA
AK018_059631359glmM_3COG1109Phosphoglucosamine mutaseATGGGACGACTGTTCGGCACGGACGGTGTTCGTGGACTGGCCAACCGTGACGTGACGGTCGAGCTCGCGCTCGACCTCGGCAGCGCCGCGGCGCAGGTGCTCGGTGCGCGCACCGACACGTCGCACCGGCCCAAGGCGGTGGTCGGTCGCGACCCGCGCGCCTCGGGGGAGTTCCTGTCCGCGGCCGTCGCCGCCGGGCTGGCGAGCTCCGGCGTCGACGTGGTCGACCTCGGCGTGCTGCCCACGCCCGCGCTCGCGCACCTCGTCAGCGCGATGCACGCGGACATCGGCGTCATGATCTCCGCCTCGCACAACGCCATGCCGGACAACGGCATCAAGTTCTTCGCCCGGGGCGGGCTCAAGCTCGACGACCGCCTCGAGGACGAGATCGAGGCCAACCTCGGCGCGGCGCGCGAGCGTCCCGTGGGGGCCGCCGTCGGGCGGATGCGCACCGACACGGGCATCGCGGCCCAGCAGTACGTCCAGCACCTGACCCGCAGCATCGGCGCGACGCCGGACCACCGGCCGCTGGACGGCCTGCGGATCGCGGTGGACGCCGCGAACGGCGCCGCGAGCCAGGTCGGTCCCGAGGCGCTGCGCGAGGCCGGTGCCGACGTCGTCGTCATCAACGCCAGCCCGGACGGACGCAACATCAACGAGAAGGCCGGGTCCACCCACCCGGAGCAGCTGCAGGCCGTCGTCGTCGCCGCCGAGGCCGACTTCGGCGTCGCGTTCGACGGCGACGCCGACCGGTGTCTCGCCGTCGACCACGGGGGAGTCCTCGTCGACGGCGACCAGATCCTCGGCATCCTCGCCAAGTCGCTGCGGGACGAGGACCGCCTCCCGGGCGACACGCTCGTCGTCACCGTGATGAGCAACCTCGGGCTGCTGCTCGCCATGAAGGACGCCGGCATCGCCACGCTGCAGACGGCGGTCGGCGACCGGTACGTCCTGGAGGAGATGCGTTCGGGCGGGTACGGCCTCGGTGGCGAGCAGTCGGGACACATCATCCTCGCCGAGCACGCCACCACGGGCGACGGCGTGCTCACCGCCCTGCACCTGGCCGCACGGGTGAAGGCGTCGGGTCGCCGCCTGGCCGACCTCGCCACCGAGATCCCGCGCCTGCCGCAGACGCTCGTCAACGTCAAGGGCGTCGACAAGGCGCGCACGGACGACGCCGACCTGGTCCGGGCCGTCGAGCACGCCGAGTCACTGCTCGGGGAGACCGGGCGGGTGCTGCTGCGGCCGTCCGGCACCGAGCCGGTGGTGCGCGTCATGGTCGAGGCGTCCTCGCAGACGCAGGCCGACGGCGTGGCCGAGACGCTCGCCGCCGTCGTGCGGGAGCGGCTCGCCCTGTGAMGRLFGTDGVRGLANRDVTVELALDLGSAAAQVLGARTDTSHRPKAVVGRDPRASGEFLSAAVAAGLASSGVDVVDLGVLPTPALAHLVSAMHADIGVMISASHNAMPDNGIKFFARGGLKLDDRLEDEIEANLGAARERPVGAAVGRMRTDTGIAAQQYVQHLTRSIGATPDHRPLDGLRIAVDAANGAASQVGPEALREAGADVVVINASPDGRNINEKAGSTHPEQLQAVVVAAEADFGVAFDGDADRCLAVDHGGVLVDGDQILGILAKSLRDEDRLPGDTLVVTVMSNLGLLLAMKDAGIATLQTAVGDRYVLEEMRSGGYGLGGEQSGHIILAEHATTGDGVLTALHLAARVKASGRRLADLATEIPRLPQTLVNVKGVDKARTDDADLVRAVEHAESLLGETGRVLLRPSGTEPVVRVMVEASSQTQADGVAETLAAVVRERLALPGPT0018950_573DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018950-glmM-K03431NANA
AK018_05964510rpsI_2COG010330S ribosomal protein S9ATGCCGAGCGAAGGAATCACCGTGGCTGACACCACCGTCGACACCGAGCTGGACGAGAACACGCCCAGCAACTACACCACCGAGACCGCCGCCCCCGTGGCGAACAGCGGTCAGTCCATCACCGCTCCCGGCCAGGCCCTGGGCCGCCGCAAGGAGGCCGTGGCGCGCGTGCGCCTCGTCCCCGGGACCGGGCAGTGGAAGATCAACGGTCGCACCCTCGAGGAGTACTTCCCGAACAAGGTGCACCAGCAGCTCGTCAACGACCCGCTGAAGCTGGTCGAGGTCGAGGGGCGTTTCGACGTCATCGCCCGTATCGCGGGTGGCGGCCCCTCCGGTCAGGCCGGTGCGCTGCGCCTGGGCATCGCCCGCGCGCTCGACCAGATCGACCGTGAGGCGAACCGCCCGGCCCTGAAGAAGGCCGGCTTCCTCACGCGCGACGACCGCGCCGTGGAGAGCAAGAAGGCCGGTCTGAAGAAGGCCCGCAAGGCTCCGCAGTACTCAAAGCGCTGAMPSEGITVADTTVDTELDENTPSNYTTETAAPVANSGQSITAPGQALGRRKEAVARVRLVPGTGQWKINGRTLEEYFPNKVHQQLVNDPLKLVEVEGRFDVIARIAGGGPSGQAGALRLGIARALDQIDREANRPALKKAGFLTRDDRAVESKKAGLKKARKAPQYSKRNANANANANA
AK018_05965450rplM_2COG010250S ribosomal protein L13GTGCGTACTTACACCCCGAAGCCCGGCGACGTCCAGCCGACGTGGCACGTCGTCGACGCGACCGACGTCGTCCTCGGACGCCTGGCCAGCCAGGTCGCCCAGCTCCTGCGCGGGAAGCACAAGCCGACCTTCGCCCCGCACGTCGACTCCGGTGACTTCGTCATCGTCGTCAACGCGGAGAAGGTCGCGCTCTCCGGCAACAAGCACGAGGACAAGCGGGCCTACCGTCACTCCGGCTACCCGGGTGGTCTTCGCTCCGTCTCGTACGGCGAGCTGCTCGAGAAGAACCCGGAGCAGGCCGTGGAGAAGGCCGTTCGCGGCATGCTCCCCAAGAACAAGCTCGGGCGCCAGCAGCTCACCAAGCTGAAGGTCTACCGTGGCGCGGAGCACCCGCACACGGCGCAGCAGCCCCAGCCGTTCGAGATCACCCAGCTTTCGCAGCAGGCCTGAMRTYTPKPGDVQPTWHVVDATDVVLGRLASQVAQLLRGKHKPTFAPHVDSGDFVIVVNAEKVALSGNKHEDKRAYRHSGYPGGLRSVSYGELLEKNPEQAVEKAVRGMLPKNKLGRQQLTKLKVYRGAEHPHTAQQPQPFEITQLSQQANANANANANA
AK018_05966414hypothetical proteinATGAGCGAGGACACCTCAGCGACACGACCGGACCCCGAGGGCGTGGCCGAGGGCGACAACGATCAGCTGCCCCACGAGGACACGCTGGTCGACCGCGGCATCCGCGACCCGCTGGACGAGGGGTACTCCCCGCCGGAGCGCCCGCGGCCCAACCACTGGGGCGAGACCGCGTGGGAGGAGTCCGTCGGGGAGCCGCTCGACCGGCGTCTCGCGGACGAGGTCCCCGACACCTGGGCCGACGAGCGCGCCGAACGCGTGGACACCACCCGCGCCGGGCGCCTCGTGTCGGACCCCGACGCCGACCCGAACGCCGACGGCGATCGGTCCAACGACCTGTACGGCACCGACGCCGGGATCGACGGTGCCGGAGCCACCGCCGAGGAGGCCGCCGTCCACTGGGTCGAGGAACCCTGAMSEDTSATRPDPEGVAEGDNDQLPHEDTLVDRGIRDPLDEGYSPPERPRPNHWGETAWEESVGEPLDRRLADEVPDTWADERAERVDTTRAGRLVSDPDADPNADGDRSNDLYGTDAGIDGAGATAEEAAVHWVEEPNANANANANA
AK018_05967924truA_2COG0101tRNA pseudouridine synthase AGTGAGCACGACGACAGCCACCCCGACGTCCGACGACGGTGCCGTCCGCGTGCGCCTGGACCTCGCGTACGCGGGTACGCACTTCGCCGGCTGGGCGGCTCAGCCCCGGCTGCGCACCGTGCAGGGCGTGCTCGAGGACGCGCTGGCGACCATCCTGCGCTGCGAGCCGCTCGGACTGCCCCGGCCGCGGCTGACGGTGGCGGGACGCACCGACGCCGGCGTGCACGCCCGGGGCCAGGTGGCGCACGTCGACGTGCCCAGGTCTCGCTGGGAGGTGTTGCCGGGGCGGTCGGACCGCACCCCCGGGCGGGCCCTGGTGGACCGGCTCTCCGGCGTCCTGCCGACCGACGTCGTCGTGCACCGTGCCGAGGCGGCGCCGGACGGGTTCGACGCCCGGTTCTCCGCGGCGGCGCGCACCTACCGCTACCGGATCGCCGACGACCACGCGCTGCGCGACCCGCTGCGGCGCGAGGCGGTGCTGTGGCACCGCCGTCGGCTGGACGTGGCCGCGATGGACGCCGGGTCCCGGCCGCTCGTGGGCCTGCACGACTTCGCCGCCTACTGCCGGCCCCGGGAGGGGGCCACGACGATCCGCGAGCTGACCCGGTTCACGTGGTCGCGTCCGGACGCCGGGCCGGACGCCGGGCTGGTGGTCGCCGAGGTGGTCGCCGACGCGTTCTGCCACTCGATGGTGCGGGCGCTGGTCGGGATGTCCCTGGCCGTGGGGGAGGGGCGCCGCGGCGGCGACGAGCCGGGCCGCGTGCTCGCCGGGCGCGACCGGTCGGCGGCGGCCGCCATCGCCCCGGCGCACGGGCTCACGCTGGAACGGGTGGACTACCCGCCGGACGACGAGCTCGCGGACCGTGCCGAGCGGATCCGCGCGCGGCGCTCGCCGGAGGAGGTCGCGCCCCGCCCCGCGCGGTAGMSTTTATPTSDDGAVRVRLDLAYAGTHFAGWAAQPRLRTVQGVLEDALATILRCEPLGLPRPRLTVAGRTDAGVHARGQVAHVDVPRSRWEVLPGRSDRTPGRALVDRLSGVLPTDVVVHRAEAAPDGFDARFSAAARTYRYRIADDHALRDPLRREAVLWHRRRLDVAAMDAGSRPLVGLHDFAAYCRPREGATTIRELTRFTWSRPDAGPDAGLVVAEVVADAFCHSMVRALVGMSLAVGEGRRGGDEPGRVLAGRDRSAAAAIAPAHGLTLERVDYPPDDELADRAERIRARRSPEEVAPRPARNANANANANA
AK018_05968759ppgK_3COG1940Polyphosphate glucokinaseGTGACCGGACCTCTGACACTCTCCGTGGACTGCGGCGGCAGCGGCATCAAGGCCAACGTGCTGGACGGCGCAGGGACCGCGCACGCCGCGCCCGTCCGCGTCCCGACCCCGTATCCTCTGCCGCCGGAGCTGCTCGTCGACACGATCGCAGGGATCGCCGCCGGGCTCCCGTCCGCCGACCGCGTCACCGTCGGCATGCCGGGGATGGTGCGCCACGGCGTCGTCGTGCACACCCCGCACTACGTGACCCGGGCCGGCCCCCGCACCCGCGTCGACCCCGACCTCGTCGGACGGTGGCGCAACGCGGACGTCCAGGCCGCGCTGCGCGACCGGTTCGGCGTCCCCACGCTGGTCCTCAACGACGCCGAGGTGCACGGTGCCGGCGTCGCCTCGGGCTCCGGGGTGGAGCTGGTGCTGACGCTCGGCACGGGCCTGGGTGCGGCGCTGTTCGACGGCGGGAGGCTCGCCCCGCACCTGGAGTGGTCCCGTGCGCCCGTGCGCCGCAACACCTCCTACGACGCGTACCTGGGCGAGCCGGAACGTCGCCGGCTCGGCGACGGGCTCTGGTCGCGGCGCGTCGTGACCGTCGTCGACGGCCTGCGGCCGGTGTTCTGGTGGGACCGGCTCTACGTCGGCGGCGGCAACTCGCGGCGCCTGACCGCGACGGCGCTCGCCCGGCTGGGCGACGACGTCGTCGTGGTGCCGAACTCCGCCGCGCTCGTCGGCGGGGTGCGCGCGTGGGACCTGCCGCGGCCGTAGMTGPLTLSVDCGGSGIKANVLDGAGTAHAAPVRVPTPYPLPPELLVDTIAGIAAGLPSADRVTVGMPGMVRHGVVVHTPHYVTRAGPRTRVDPDLVGRWRNADVQAALRDRFGVPTLVLNDAEVHGAGVASGSGVELVLTLGTGLGAALFDGGRLAPHLEWSRAPVRRNTSYDAYLGEPERRRLGDGLWSRRVVTVVDGLRPVFWWDRLYVGGGNSRRLTATALARLGDDVVVVPNSAALVGGVRAWDLPRPPGPT0017750_618DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017750-ppgK-K00886NANA
AK018_05969846menH_52-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGCTCCCGGTGGTGCTGCTGCACGGTTCGCGGACGTCGGCCACGATGTGGCGCCGGCAGGTCGACGCCCTGCACGCGGCCGGCGTGACCGTCGTCGCGCCCGACCTGCCCGGTCACGGCTCCCGGCGGGACGTGCCGTTCGGGCTGGACGACGCCGTGGCCACCGTGGGCGACGCCGTCGACTCCGTGGGGGGTCGGGCCCTCGTGGTCGGGCTGTCGCTCGGCGGGTACGTCGGCATCGAGCACCGTGCCCGCCGGCCGGAGCAGTGCGCCGGGCTCGTCGCCGCCTCGTGCTGCACGAGCCCGGACACGCCTCTGCGCGCGGCGTGGCTGCGCTTGGCGCGGTGGATCGAGCGCTGGCCGGACAGCGGGGCGTGGCTCAACGACACGTTCGTGCGCGGCATGCTCGACGAGGCCTCGGTGCGCGACCTGGCGGCCGGGGGGTTCGCCCTCGATGCCATGGGCGACGTCCTCGTCGAGGTGGGCGCTCTGGACACCCGGCGTGCGCTCGCCGCCGCCGACAGCCCGGTGCGGCTCGTGAACGGTCAGTGGGACCACTTCCGGGGGCACGAGCGCTCCATGCTGGCCGCGGCCCGCTCCTCGGGGGCGGACGCCCGCCTGGTGATCGTGCCGCGGGCGCGCCACCTGGTGAGCCTGGACGCGCCGGTCGCGTTCAGCCGGGCCGTGCTGGAGGCCCACGCGGCGTGCGCCGGCTACGGCCGCGGCAGGTCCCACGCGCGCACCCCGCCGACGAGCGCGGCGGAGTTCGGCACCACGACGACGTCGTCGCCCAGCCGGGCGAGCGCCGTCGCGGTCAGGCGCCGCGAGTTGCCGCCGCCGACGTAGMLPVVLLHGSRTSATMWRRQVDALHAAGVTVVAPDLPGHGSRRDVPFGLDDAVATVGDAVDSVGGRALVVGLSLGGYVGIEHRARRPEQCAGLVAASCCTSPDTPLRAAWLRLARWIERWPDSGAWLNDTFVRGMLDEASVRDLAAGGFALDAMGDVLVEVGALDTRRALAAADSPVRLVNGQWDHFRGHERSMLAAARSSGADARLVIVPRARHLVSLDAPVAFSRAVLEAHAACAGYGRGRSHARTPPTSAAEFGTTTTSSPSRASAVAVRRRELPPPTNANANANANA
AK018_05970525rplQCOG020350S ribosomal protein L17ATGCCTACCCCCACCAAGGGTCCGCGGCTCGGTGGCAGCCCGGCTCACGAGCGCCTGATCCTCGCGAACCTGTCGACGGCGCTGTTCGAGCACGGCCGGATCACCACGACCGAGACCAAGGCCAAGCGGCTGCGTCCGGTCGCCGAGCGCCTGATCACGTTCGCCAAGCGCGGCGACCTGCACGCCCGTCGTCGGGTGCTGCGCGTCGTGCGTGACCAGTCGGTCGTGCACACGCTGTTCACGGAGATCGCTCCGTCGATGGCCGAGCGCGACGGCGGCTACACGCGCATCACGAAGGTCGGCAACCGCAAGGGCGACAACGCCCCGATGGCCGTCATCGAGCTGGTGACCGAGCCGGTCAGCCCCAAGCAGGGCGTCGTCAAGGAGGCCACCCAGGCCGCCGAGAAGGCGTCGAAGCCCGAGGCCGAGAAGCCCGCCGAGGAGACCCCGGCGGAGGAGACCCCGGCCACCGAGGCGACCGAGGCCGAGGCGACCGAGTCGACCGAGGAGAAGAAGGAGGACTGAMPTPTKGPRLGGSPAHERLILANLSTALFEHGRITTTETKAKRLRPVAERLITFAKRGDLHARRRVLRVVRDQSVVHTLFTEIAPSMAERDGGYTRITKVGNRKGDNAPMAVIELVTEPVSPKQGVVKEATQAAEKASKPEAEKPAEETPAEETPATEATEAEATESTEEKKEDNANANANANA
AK018_059711011rpoA_2DNA-directed RNA polymerase subunit alphaGTGCTCATCGCACAGCGCCCCACGCTGACCGAAGAGGTCATCTCGGACTACCGTTCGCGGTTCTCCATCGAGCCGCTGGAGCCGGGCTTCGGCTACACGCTCGGCAACTCCCTGCGCCGGACGCTCCTGTCGTCCATCCCGGGCGCGGCGGTCACCTCCATCCGCATCGACGGTGTGCTCCACGAGTTCACCACCGTGCCGGGGGTGAAGGAGGACGTCACCGAGATCATCCTCAACATCAAGAACCTCGTGGTCTCCTCCGAGAACGACGAGCCGGTCGTGATGTACCTGCGCAAGCAGGGCGCCGGTGCGGCGACCGCGGCGGACATCGTTCCGCCGGCGGGTGTCGAGGTGCACAACCCCGACCTGCACATCGCCACGCTCAACGACGAGGGCACGCTCGAGATCGAGCTGACCGTCGAGCGGGGTCGTGGCTACGTGTCCGCCGCGCAGAACAAGACCCCGGACGCCGAGATCGGTCGGATCCCGGTGGACTCGATCTACTCACCGGTCCTGAAGGTCACCTACAAGGTCGAGGCGACCCGTGTGGAGCAGCGCACGGACTTCGACAAGCTGATCGTCGACGTCGAGACCAAGCAGGCCATCGCGCCGCGGGACGCGCTCGCGTCGGCCGGCAAGACGCTCGTCGAGCTCTTCGGCCTGGCCCGGGAGCTGAACGTCGAGGCCGAGGGCATCGAGATCGGTCCGTCCCCGACGGACTCCGCGCTGGCTGCCGACCTGGCGCTGCCGATCGAGGAGCTCAACCTCACCATCCGCTCGTACAACTGCCTCAAGCGCGAGGGCATCCACCAGGTCGGTGAGTTCGTCGCGCGCAGCGAGGCGGACCTGCTCGACATCCGCAACTTCGGTGCGAAGTCGATCAACGAGGTCAAGGAGAAGCTCGCGGAGCTCGGCCTTGCTCTCAAGGACTCCCCGCTCGACTTCGACCCGTCGGCGGCGCAGTACTTCGGGGACGACGAGACCGCGTACCCGGACGAGCAGACGTACTGAMLIAQRPTLTEEVISDYRSRFSIEPLEPGFGYTLGNSLRRTLLSSIPGAAVTSIRIDGVLHEFTTVPGVKEDVTEIILNIKNLVVSSENDEPVVMYLRKQGAGAATAADIVPPAGVEVHNPDLHIATLNDEGTLEIELTVERGRGYVSAAQNKTPDAEIGRIPVDSIYSPVLKVTYKVEATRVEQRTDFDKLIVDVETKQAIAPRDALASAGKTLVELFGLARELNVEAEGIEIGPSPTDSALAADLALPIEELNLTIRSYNCLKREGIHQVGEFVARSEADLLDIRNFGAKSINEVKEKLAELGLALKDSPLDFDPSAAQYFGDDETAYPDEQTYNANANANANA
AK018_05972573hypothetical proteinATGCCTCCCAAGACTCGCGCCACCGCCGCGCGCAAGCCGCGTCGCAAGGACAAGAAGAACGTCCCGCACGGCCAGGCACACATCAAGAGCACGTTCAACAACACGATCGTCTCGATCACCGACCCGTCGGGCGCCGTGATCTCGTGGGCGTCCGCCGGCCACGTCGGCTTCAAGGGCTCCCGCAAGTCCACGCCGTACGCCGCGCAGCTCGCCGCCGAGTCGGCTGCACGTCGTGCGCAGGACCACGGGGTCAAGAAGGTCGACGTCTTCGTCAAGGGCCCGGGTTCCGGTCGTGAGACCGCCATCCGCTCCCTGCAGGCGACCGGCATCGAGGTCGGCTCGATCCAGGACGACACCCCCCGGGCGAACACGGGTTGCCGCCCCCCTAAGCTGGGCCGCGTGTCACCTCGTGGACGGGCCGGCCCCGCGGGGCCGGCCGGTCCGCACCCTGCCCGGACGGGTGGACCGAGTCCCGCCCGGGGCCGCGCCAGAGCGCGGATCCGTGATGCGTCATATAGCGGACGCACACTGAAAGGACCAACACAGTGCTCATCGCACAGCGCCCCACGCTGAMPPKTRATAARKPRRKDKKNVPHGQAHIKSTFNNTIVSITDPSGAVISWASAGHVGFKGSRKSTPYAAQLAAESAARRAQDHGVKKVDVFVKGPGSGRETAIRSLQATGIEVGSIQDDTPRANTGCRPPKLGRVSPRGRAGPAGPAGPHPARTGGPSPARGRARARIRDASYSGRTLKGPTQCSSHSAPRNANANANANA
AK018_05973375rpsM_2COG009930S ribosomal protein S13ATGGCACGTCTTGTCGGCGTCGACCTCCCCCGCGAGAAGCGGGTCGTGGTCGCGCTCACCTACATCTACGGCGTCGGACGCACCCGCGCCGAGCAGGCCGTCGCGGCGACGGGGATCTCCCCGGACCAGCGCGTGAAGGACCTCGGCGACGCCGAGCTCGTCGCGCTCCGCGACTTCCTCGAGGGCAACTACCAGCTCGAGGGTGACCTCCGCCGCGAGGTCGCGGCCGACATCCGCCGCAAGGTGGAGATCGGCACCTACCAGGGTCTGCGTCACCGTCGCGGGCTGCCGGTGCGCGGTCAGCGCACCAAGACCAACGCGCGTACCCGCAAGGGCAAGAAGCGCACCGTCGCGGGCAAGAAGAAGGCCCGCTGAMARLVGVDLPREKRVVVALTYIYGVGRTRAEQAVAATGISPDQRVKDLGDAELVALRDFLEGNYQLEGDLRREVAADIRRKVEIGTYQGLRHRRGLPVRGQRTKTNARTRKGKKRTVAGKKKARNANANANANA
AK018_05974114rpmJ_2COG025750S ribosomal protein L36ATGAAGGTCAAGCCGAGCGTCAAGAAGATCTGCGACCAGTGCAAGGTGATCCGCCGGCACGGTCGCGTCATGGTGATCTGCTCGAACCAGCGCCACAAGCAGCGCCAGGGCTGAMKVKPSVKKICDQCKVIRRHGRVMVICSNQRHKQRQGNANANANANA
AK018_05975222infA_2COG0361Translation initiation factor IF-1ATGGCAAAGAAGGACGGTGTCATCGAGATCGAGGGCAGCGTGATCGAGGCCCTGCCGAACGCGATGTTCCGCGTGGAGCTGGCCAACGGTCACAAGGTTCTCGCGCACATCTCGGGCAAGATGCGTCAGCACTACATCCGGATCCTCCCCGAGGACCGGGTGGTCGTCGAGCTGAGCCCGTACGACCTGTCCCGTGGCCGGATCGTCTACCGCTACAAGTAGMAKKDGVIEIEGSVIEALPNAMFRVELANGHKVLAHISGKMRQHYIRILPEDRVVVELSPYDLSRGRIVYRYKNANANANANA
AK018_05976879map-1_2COG0024Methionine aminopeptidase 1GTGTTCCGCTCCCGCCCCCGCCTCAAGCTCAAGTCCCGCGAGCAGGTCCTGCACATGCGGCGGGCCGGGCTGGTGGTGGCGGACACGCTGGCCGCCGTGCGCGACGCCGCGCGGCCCGGGACGACGACGGCGGAGCTCGACCGCGTGGGGGCGGACGCCATCGCGTCGGCGGGCGCCACGCCGTCGTTCCTCGGCTACCAGGGGTTCCCGGCCACGATCTGCGCGTCGGTGAACGACCAGGTCGTGCACGGCATCCCGGGGGACCGGATCCTGCACGCCGGCGACCTGGTCTCCATCGACTGCGGTGCGGTCGTCGACGGCTGGCACGGGGACTCCGCGGTGACGTTCCTCGTCGGTCCGAACGGTGCGATGGACGACGACGCCGAGCCGGCGGCCGCCGTCGCCGATCCCGGCGACGCGCGGCTCTCGCGCGCCGCCAGGACGGCGATGTGGGCCGGCATCAGCGCGCTGGCGGGCGCCCGGCGCGTCGGCGAGGTCGGCGACGCGGTGGAGACCGCCGTGGAGCTGGCGGGGGAGATCGACGGTGCCGGGTACGGCATCGTCGAGGAGTACACCGGGCACGGGATCGGGACGGCGATGCACCTGCCGCCCGACGTGCTGAACTTCCGTGCCTCCGACCGCGGTCCGCGGGTCCGGCCGGGCCTCTGCCTCGCCGTCGAGCCCATGGTCACCCGCGGTGGTGCCGCGACCCGTGTGCTCGCCGACGACTGGACCGTCGTCACCACCGACGGGTCCCGCGCCGCGCACTGGGAACACACGGTCGCGGTGCTGGAGGACGGCATCGCGGTCCTGACGGCGCACGACCTGGGCGCCGCCGGGCTGGCGCCGTTCGAGGTGCAGCCGGTCGCCCTGGGCTGAMFRSRPRLKLKSREQVLHMRRAGLVVADTLAAVRDAARPGTTTAELDRVGADAIASAGATPSFLGYQGFPATICASVNDQVVHGIPGDRILHAGDLVSIDCGAVVDGWHGDSAVTFLVGPNGAMDDDAEPAAAVADPGDARLSRAARTAMWAGISALAGARRVGEVGDAVETAVELAGEIDGAGYGIVEEYTGHGIGTAMHLPPDVLNFRASDRGPRVRPGLCLAVEPMVTRGGAATRVLADDWTVVTTDGSRAAHWEHTVAVLEDGIAVLTAHDLGAAGLAPFEVQPVALGPGPT0020010_2222DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
AK018_05977642adk_2COG0563Adenylate kinaseTTGACCGAGTCGAACACCCCGACCACCCGCCGCGAGCTGCACGGCTCCCCGAGCGCCGAGGGCCGTCTGACGCGCCTGGTGATCATGGGGCCGCAGGGCGCCGGCAAGGGTACCCAGGCCGCCCGCCTGGCCGAGCTCTTCGGCATCCCCGCGATCTCGACGGGCGACATCTTCCGCGCGAACATCGCCGGCGGCACGGAGCTGGGCAAGCTTGCCCAGGAGTACTCGGCGAAGGGCGAGCTCGTCCCGGACGAGGTGACGGACTCGATGGTCCGGGACCGCCTGGCCGAGGACGACGTCCGCGGCGGGTTCCTCCTCGACGGCTACCCGCGCAACGCCCACCAGGTCGAGGCCCTGGACCAGATCCTGGGGGACCTCGACTGGGAGCTGGACGGCGTCGTGGAGCTCACCGCGGACCGTGACGAGCTGCTCGCCCGCATCGCCAAGCGGGCCGAGCTCGAGGGCCGCGAGGACGACACCCCGGACGCGATCGCGCGCCGTCTGGACATCTACGACGCCGAGACGGCGCCGCTGACCGCCGCCTACGCCGAGCGCGGGCTCCTGGCGCGGGTGGACGGCATCGGGGAGGTCTCCGAGGTCACGGACCGCGTCGTGGCGGCCCTCGCGCAGCAGCTCGGCTGAMTESNTPTTRRELHGSPSAEGRLTRLVIMGPQGAGKGTQAARLAELFGIPAISTGDIFRANIAGGTELGKLAQEYSAKGELVPDEVTDSMVRDRLAEDDVRGGFLLDGYPRNAHQVEALDQILGDLDWELDGVVELTADRDELLARIAKRAELEGREDDTPDAIARRLDIYDAETAPLTAAYAERGLLARVDGIGEVSEVTDRVVAALAQQLGPGPT0009040_5543DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0009040-adk|AK-K00939NANA
AK018_059781299secY_2COG0201Protein translocase subunit SecYGTGCTCAGCGCATTCGGCCGGGCTTTCCGGACACCGGACCTGCGGCGCAAGCTGCTGTTCACGATCGCGATCATGTCGCTCTTCCGCGTGGGGTCGTTCATCCCGACGCCGGGCGTGGACTACGCGAACGTCCAGCAGTGCGTGGCGGCACAGGAGGGCAGTACGTCGTTGCTGGGTCTCGTCAACACGTTCAGCGGTGGCGCGCTCCTGCAGCTGTCGGTGTTCGCCCTCGGGATCATGCCGTACATCACGGCCAGCATCATCACGCAACTCCTGCGTGTCGTGATCCCGCGGTTCGAGGCGCTGCACAAGGAGGGCCAGTCGGGTCAGGCCAAGCTGACGCAGTACACGCGCTACCTGACCATCGCGCTGGCGATCCTGCAGTCGACGACGATCATCACCACGGCCCGCACGGGGCTGCTGTTCCCCGGCTGCCCGGTCGACGTCGTCGTCGACGACAGCTTCATGACCGCCTTCCTCATGGTGGTCACCATGACCGCCGGTACCGGCCTGGTCATGTGGCTCGGTGAGCTGATCACCGAGAAGGGCATCGGCAACGGCATGTCGCTGCTGATCTTCACCTCGATCGTCGCCAGCTTCCCGACGGCCCTGTGGTCCATCGCCGGTGGCGCGAACGGCCCGCTGAACTTCATGATCATGATCGCCGTGATCGTCCTGGTGATCGGCATGGTCGTCTACGTGGAGCAGTCGCAGCGCCGGATCCCGGTGCAGTACGCCAAGCGCATGGTCGGTCGCCGGATGTACGGCGGGACGAGCACCTACATCCCGATCAAGATCAACATGGCCGGCGTGATCCCGGTGATCTTCGCGGCGTCGATCCTCGCGATCCCGGCGCTCCTCGCGCAGTTCGGCGACCAGACGGCCGGCTGGGTCATCTGGATCTCGAACAACCTCGCCCAGCAGGACCAGCCGATCTACATCGCGGTGTACGTCCTGATGATCGTGTTCTTCGCGTTCTTCTACACCTCGATCACGTTCAACCCGGACGAGGTCGCGGACAACATGAAGAAGTACGGGGGCTTCATCCCCGGTATCCGCGCCGGCCGGCCCACGGCCGAGTACCTGGACTACGTGATCACCCGCATCACGTCCGCCGGCGCCCTGTACCTCGCCATCGTCGCGCTCATCCCGACGCTGGTGCTGGTGTTCCTGGGCGTGACCACGAACATCCCGTTCGGCGGGACGTCGATCCTCATCATCGTCGGCGTCGGCCTGGAGTTCGTGAAGCAGGTCAACTCCCAGCTCCAGCAGCGACACTACGAAGGGTTCCTCCGTTGAMLSAFGRAFRTPDLRRKLLFTIAIMSLFRVGSFIPTPGVDYANVQQCVAAQEGSTSLLGLVNTFSGGALLQLSVFALGIMPYITASIITQLLRVVIPRFEALHKEGQSGQAKLTQYTRYLTIALAILQSTTIITTARTGLLFPGCPVDVVVDDSFMTAFLMVVTMTAGTGLVMWLGELITEKGIGNGMSLLIFTSIVASFPTALWSIAGGANGPLNFMIMIAVIVLVIGMVVYVEQSQRRIPVQYAKRMVGRRMYGGTSTYIPIKINMAGVIPVIFAASILAIPALLAQFGDQTAGWVIWISNNLAQQDQPIYIAVYVLMIVFFAFFYTSITFNPDEVADNMKKYGGFIPGIRAGRPTAEYLDYVITRITSAGALYLAIVALIPTLVLVFLGVTTNIPFGGTSILIIVGVGLEFVKQVNSQLQQRHYEGFLRPGPT0025725_3843DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025725-secY-K03076NANA
AK018_05979477rplO_2COG020050S ribosomal protein L15ATGGCCGACAGCACCCAGGACAAGGGCGCGCAGTCGCAGCCGCTGAAGGTCCACCACCTGCGTCCGGCCCCCGGCGCCAAGAAGGCCAAGACCCGTGTGGGTCGTGGTGAGGCTTCGAAGGGCAAGACGGCAGGTCGCGGCACCAAGGGCACCAAGGCCCGCTACCAGGTGCCGGTGGGCTTCGAGGGCGGGCAGATGCCGCTGCACATGCGTCTGCCGAAGCTGCGTGGCTTCAAGAATCCGTTCCGCGTCGAGTACCAGGTCGTGAACCTGGACAAGCTCGCCGCGCTGTACCCGGAGGGGGGCTCCGTCACGGTCGACGATCTCGTCGCCAAGGGCGCGGTCCGCTCCGGCCAGCCGGTGAAGGTGCTCGGCACGGGTGAGATCACCGTCAAGCTGGACGTCGCGGTCGACGCGATCTCCGGCTCCGCCAAGGACAAGGTCCTGGCGGCCGGCGGTTCGGTCTCGGAGGACTGAMADSTQDKGAQSQPLKVHHLRPAPGAKKAKTRVGRGEASKGKTAGRGTKGTKARYQVPVGFEGGQMPLHMRLPKLRGFKNPFRVEYQVVNLDKLAALYPEGGSVTVDDLVAKGAVRSGQPVKVLGTGEITVKLDVAVDAISGSAKDKVLAAGGSVSEDNANANANANA
AK018_05980183rpmD_2COG184150S ribosomal protein L30ATGGCTCGACTCAAGGTCACCCAGGTCAAGTCCGCCATCGGCGGCAAGCAGAACCAGCGTGACACGCTGCGGACCCTCGGCCTCAAGCGGATCGGCGACATCGCCGTGAAGGAGGACCGTCCGGAGATCCGTGGCATGGTCACCACGGTGGCGCATCTCGTCACCGTCGAGGAGGTCGACTGAMARLKVTQVKSAIGGKQNQRDTLRTLGLKRIGDIAVKEDRPEIRGMVTTVAHLVTVEEVDNANANANANA
AK018_05981666hypothetical proteinATGGCTGCAGGGCAGCGCAACACCGGCGCCCCCCAGGGCGCCAACGAGTCCAAGAACGACGGTCGCCGTTCCAACCGGCGCGACGACCGCCGCGGCAACAACCGCGGTGACGACAAGAACGCCTTCGTCGAGCGCGTGGTGACGATCAACCGCGTCGCCAAGGTCGTCAAGGGCGGCCGCCGCTTCAGCTTCACCGCGCTGGTCGTGGTGGGCGACGGCGACGGCACCGTCGGTGTCGGCTACGGCAAGGCCAAGGAGGTGCCCTCGGCGATCGCCAAGGGTGTCGAGGAGGCGAAGAAGAACTTCTTCCGCGTCCCGCGCATCCAGGGCACCATCCCGCACCCCATCCAGGGCGAGGAGGCTGCCGGCGTCGTGTTCCTGCGCCCGGCCTCCCCGGGTACCGGTGTGATCGCCGGTGGTCCGGTGCGCGCCGTGCTGGAGTGCGCCGGCATCCACGACGTGCTGAGCAAGTCGCTCGGCTCGTCGAACGCGATCAACATCGTGCACGCCACCGTCGCGGCCCTCAAGGGCCTCGAGGAGCCGGCCGCCGTGGCCGCGCGCCGTGGTCTGCCGCTCGAGGACGTGGCTCCGGCCCCGCTCCTGCGCGCGCAGGCCGCCGGTCTCGCCGCGAAGGCCGACAAGGCCGACGAGAAGGTGGGTGCGTGAMAAGQRNTGAPQGANESKNDGRRSNRRDDRRGNNRGDDKNAFVERVVTINRVAKVVKGGRRFSFTALVVVGDGDGTVGVGYGKAKEVPSAIAKGVEEAKKNFFRVPRIQGTIPHPIQGEEAAGVVFLRPASPGTGVIAGGPVRAVLECAGIHDVLSKSLGSSNAINIVHATVAALKGLEEPAAVAARRGLPLEDVAPAPLLRAQAAGLAAKADKADEKVGANANANANANA
AK018_05982372rplR_2COG025650S ribosomal protein L18ATGGCTCTCAAGGTTCTCGGCAAGGGCAAGAGCGTCGCTCGTCAGCGTCGTCACCTTCGCCTGCGCAAGAAGATCAAGGGCACCACGGCGCGTCCGCGCCTCGTCGTGACCCGTTCGTCGCGTCACATGGTGGCGCAGGTCGTGGACGACACGGTCGGCAAGACCGTCGCGTCCGCCTCGACGCTCGAGGCCGACCTGCGTGCGATGGACGGCGACAAGACCGCCAAGGCCCGCAAGGTCGGCGAGCTCGTCGCCGAGCGTGCGAAGTCTGCCGGTGTCGACGCCGTGGTCTTCGACCGTGGCGGCAACAAGTACCACGGTCGGGTGGCTGCAGTCGCCGACGGCGCGCGCGAAGGCGGTCTGGCGCTGTGAMALKVLGKGKSVARQRRHLRLRKKIKGTTARPRLVVTRSSRHMVAQVVDDTVGKTVASASTLEADLRAMDGDKTAKARKVGELVAERAKSAGVDAVVFDRGGNKYHGRVAAVADGAREGGLALNANANANANA
AK018_05983537rplF_2COG009750S ribosomal protein L6ATGTCTCGAATCGGCAAGCTCCCCGTTCCGGTCCCGTCCGGCGTGGAGATCACCATCAGCGGCGCGCTCGTGACGGTCAAGGGCCCCAAGGGGACCCTGGACCACACGGTCGCCGCCCCCATCACCGTCGAGCAGAACGACGGCACCCTCACGGTGCGTCGTCCTGACGACGAGCGCGAGTCGCGTGCGCTGCACGGTCTGACCCGCACGCTGCTGTCCAACATGATCGTCGGCGTGACGCAGGGCTACGAGAAGAAGCTCGAGATCGTCGGCACCGGTTACCGCGTGGTGGCCAAGGGGCAGGACCTCGAGTTCGCCCTCGGCTTCTCGCACCCGGTGAAGGTCTCCGCCCCGGAGGGCATCTCCTTCGCGGTCGAGAGCCCGACGAAGTTCTCCGTGGCCGGCATCGACAAGCAGCAGGTCGGCGAGGTCGCGGCGAACATCCGCAAGATCCGCAAGCCCGAGCCGTACAAGGGCAAGGGTGTGCGGTACGCCGACGAGGTCGTCCGTCGCAAGGTCGGAAAGGCTGGTAAGTGAMSRIGKLPVPVPSGVEITISGALVTVKGPKGTLDHTVAAPITVEQNDGTLTVRRPDDERESRALHGLTRTLLSNMIVGVTQGYEKKLEIVGTGYRVVAKGQDLEFALGFSHPVKVSAPEGISFAVESPTKFSVAGIDKQQVGEVAANIRKIRKPEPYKGKGVRYADEVVRRKVGKAGKNANANANANA
AK018_05984393rpsH_2COG009630S ribosomal protein S8ATGACCGACCCGATCGCAGACATGCTGACGCGTCTGCGCAACGCGAACTCGGCGCACCACGACACGGTCACCATGCCGTTCTCGAAGCTGAAGTCGCGCATCGCGGAGATCCTGCAGGCCGAGGGGTACATCGCCGGCTGGACCGTCGAGGACGCGACGGTGGGGCAGAACCTCACCCTCACCCTCAAGTACGGCCCGAGCCGTGAGCGCGCGCTGACCGGCGTGCGCCGCGTGTCCAAGCCCGGCCTCCGCGTCTACGCGAAGTCCACCAACCTGCCCAAGGTCCTCGGTGGCCTCGGCGTGGCCATCCTGTCCACCTCCTCCGGCCTCCTGACCGACCGTCAGGCGCAGGACAAGGGTGTGGGCGGCGAGGTCCTCGCCTACGTCTGGTAAMTDPIADMLTRLRNANSAHHDTVTMPFSKLKSRIAEILQAEGYIAGWTVEDATVGQNLTLTLKYGPSRERALTGVRRVSKPGLRVYAKSTNLPKVLGGLGVAILSTSSGLLTDRQAQDKGVGGEVLAYVWNANANANANA
AK018_05985186rpsZ_2COG019930S ribosomal protein S14 type ZATGGCGAAGAAGGCCCTGATCAACAAGGCGAACGCCAAGCCGAAGTTCGCCGTGCGTGCCTACACCCGGTGCCAGCGGTGCGGTCGTCCGCACTCGGTCTACCGCAAGTTCGGCCTGTGCCGGATCTGCCTGCGGGAGATGGCCCACCGCGGTGAGCTCCCCGGCGTCACCAAGAGCAGCTGGTAAMAKKALINKANAKPKFAVRAYTRCQRCGRPHSVYRKFGLCRICLREMAHRGELPGVTKSSWNANANANANA
AK018_05986573rplE_2COG009450S ribosomal protein L5ATGACCGACACCACTCTCGAGGCACCGGCGCTGCCGCGCCTCAAGCAGAAGTACCGCGAGGAGATCGTCGCGGCGCTCCGCGAGGAGTTCGGCCACGAGAACCTCCACCAGGTCGCCGGTCTGACGAAGATCGTCGTCAACATGGGTGTCGGTGACGCCGCCAAGGACTCGAAGCTCATCGAGGGCGCGATCCGCGACCTCACGGCGATCACGGGTCAGAAGCCGGCGATCAACCGGGCGAAGAAGTCCATCGCGCAGTTCAAGCTGCGCGAGGGCATGCCGATCGGTGCGCACGTCACGCTGCGCGGCGACCGTATGTGGGAGTTCCTCGACCGGCTGCTGTCGATCGCGCTGCCGCGCATCCGCGACTTCCGCGGTCTGAGCCCGAAGCAGTTCGACGGCCACGGCAACTACACGTTCGGTCTCACGGAGCAGTCGATGTTCCACGAGATCAACCAGGACAAGATCGACCGTGTCCGCGGTATGGACATCACGATCGTGACCACGGCGACGACCGACGACGAGGGCCGCTCCTTGCTGCGCCGTCTCGGTTTCCCCTTCAAGGAGAACTGAMTDTTLEAPALPRLKQKYREEIVAALREEFGHENLHQVAGLTKIVVNMGVGDAAKDSKLIEGAIRDLTAITGQKPAINRAKKSIAQFKLREGMPIGAHVTLRGDRMWEFLDRLLSIALPRIRDFRGLSPKQFDGHGNYTFGLTEQSMFHEINQDKIDRVRGMDITIVTTATTDDEGRSLLRRLGFPFKENNANANANANA
AK018_05987342rplX_2COG019850S ribosomal protein L24ATGGCGAAGATCAAGAAGGGCGACCAGGTCCAGGTGATCGCTGGTCGCGACAAGGGCAAGACGGGCCGCGTGCTCGAGGTCCTGACCGACACCGACCGTGTCGTCGTCGAGGGCGTCCAGCGCGTGACCAAGCACGTGAAGGCCGGCCAGTCGGCGCGCGGCACCCGCACGGGTGGCATCGAGACGGTCGAGGCCCCGATCCACGTGTCCAACGTGATGCTGGTCGACCCCGAGACCAAGAAGCCGACCCGCGTGGGCTTCCGCCTCGAGGAGGTCGAGCAGGACGGTCGCACCCGCACGGTGCGCGTCCGCTACGCCAAGCGTTCCGGGAAGGACATCTGAMAKIKKGDQVQVIAGRDKGKTGRVLEVLTDTDRVVVEGVQRVTKHVKAGQSARGTRTGGIETVEAPIHVSNVMLVDPETKKPTRVGFRLEEVEQDGRTRTVRVRYAKRSGKDINANANANANA
AK018_05988369rplN_2COG009350S ribosomal protein L14ATGATCCAGCAGGAGTCGCGACTGCGGGTCGCCGACAACACGGGTGCCAAGGAGATCCTCTGCATCCGCGTTCTCGGTGGCTCCGGCCGTCGCTACGCCGGTATCGGCGACACCATCGTCGCCACCGTCAAGGACGCGATCCCGGGCGGCAACGTGAAGAAGGGCGATGTCGTCAAGGCCGTCATCGTCCGGACCGTCAAGGAGCGCCGTCGTCCCGACGGTTCCTACATCAAGTTCGACGAGAACGCCGCCGTGATCCTGAAGAACGACGGCGAGCCCCGTGGCACCCGTATCTTCGGCCCGGTCGGCCGTGAGCTGCGTGACAAGCGGTTCATGAAGATCATCTCGCTGGCCCCGGAGGTGCTCTGAMIQQESRLRVADNTGAKEILCIRVLGGSGRRYAGIGDTIVATVKDAIPGGNVKKGDVVKAVIVRTVKERRRPDGSYIKFDENAAVILKNDGEPRGTRIFGPVGRELRDKRFMKIISLAPEVLNANANANANA
AK018_05989285rpsQ_2COG018630S ribosomal protein S17ATGAGCGAGAACACCGAGACGGTGACCACCGAGGAGCGGTCGACCCGCAAGGTGCGCCGTGGCTACGTCGTCAGCGACAAGATGGCCAAGACCATCGTCGTCGCCGTCGAGGACCGCGTGAAGCACCCCCTCTACGGCAAGGTCATGCGCCGGACCAACAAGGTCAAGGTGCACGACGAGCAGAACACCGCCGGCATCGGCGACCTGGTCGTCATCATGGAGACCCGCCCGCTGTCCGCGACCAAGCGGTGGCGCCTGGTGGAGATCCTCGAGAAGGCGAAGTAAMSENTETVTTEERSTRKVRRGYVVSDKMAKTIVVAVEDRVKHPLYGKVMRRTNKVKVHDEQNTAGIGDLVVIMETRPLSATKRWRLVEILEKAKNANANANANA
AK018_05990240rpmC_2COG025550S ribosomal protein L29ATGGCTATCGGTACCCAGGGCCTGGCCCCCGCCGACCTCGACGGCTTCGACGACGAGACCCTCGTCGCGAAGCTCAAGGAGTCGAAGGAAGAGCTCTTCAACCTGCGCTTCCAGGCCGCCACCGGCCAGCTCGAGTCGCACGGCCGCCTCAAGGCGGTCAAGCGCGACATCGCGCGGATCTACACGGTCCTGCGCGAGCGCGAGCTCGGCATCCGTACGGCCCCGAGCGTGAGTGAGTGAMAIGTQGLAPADLDGFDDETLVAKLKESKEELFNLRFQAATGQLESHGRLKAVKRDIARIYTVLRERELGIRTAPSVSENANANANANA
AK018_059921836COG3387TrehalaseATGACGCTCCGGATCGAGGACTACGGCCTGATCGGCGACCTGCAGACGGTCGCCCTCGTGGGGCGCGACGGCTCGATCGACTGGCTGTGCCTGCCCGACATCGACTCCCCCGCCTGCCTCGCGGCCCTGCTGGGGGACGACTCGCACGGGTCGTGGCGCATCGCTCCCGCCGGTATCGGGACGTGCACGCGGCGCCGCTACCGCGGGGAGACGCTCGTGCTGGAGACGGAGTGGGAGACGCCCGACGGCCACGTCCGGGTGACGGACCTCATGCCGCCGCGCGGTCGCACCCCCGACCTGGTCCGGATCGTCGAGGGGGTGAGCGGCCGCGTTCCGGTCGAGAGCACCCTGCGCCCCCGGTTCGACTACGGGGCCGTGGTCCCGTGGGTCACCGAGTCGCCGAGCATCCTGGGGACCGAGCGCAGCGGGACCGTCTGCGCGGTGGCGGGTCCCGACGCACTGAACCTCGCGGCGACCGTGCCCCACGCTGTGTCGGGCGAGACGATCAGCTCGCGCTTCGAGGTGGCGGCCGGCGACCGCGTCGCCTTCGTGCTCAGCTACCACCGCTCCTACGACCCGGTGCCCGAGCCGGTGGACGCCGAGGACGCGCTGGCCGACACCCTGGAGTTCTGGCAGGAGTGGGTCGGCAAGACTCGGTACGAGGGTCGCTGGGGCGACGCGGTGCGGCGATCGCTGATCACGCTCAAGTCGCTCACCTACGCCCCGACGGGGGCGATCGCCGCGGCGGCCACGACCTCGCTGCCCGAGCAGATCGGGGGCACCCGCAACTGGGACTACCGCTACTGCTGGCTGCGTGACGCTGCCTTCACCCTCCTCGCACTGCTGAGCACGGGGCACCGGGACGAGGCCAAGGCCTGGCGGGAGTGGCTGCTGCGCTCCGTCGCCGGAGACCCGGCCGACCTGCGGATCATGTACGGCCTCGACGGCCGCCGTCGCCTCCCCGAGGCGACGCTGGACTGGCTGCCCGGGTACGAAGGCAGCACCCCGGTGCGCGTCGGCAACGGCGCCGCCGACCAGCTCCAGCTGGACGTGTGGGGCGAGTCCCTGGTGGGCCTCAGCCTGACCCGGTCGAACGGCATCGCCGAGGACGACGACACGTGGCGGTTGCAGAGGTCCCTGCTGGACCACCTGGAGGGCCACTGGGACGACGTCGACAACGGCCTGTGGGAGGTGCGCGGGCCCCAGCGCCCGTTCGTGCACTCCCGGGTGATGGCCTGGGCGGGCGTCTCCGCGATGATCCGCGGCGTCGAGCGCTACGGCTTGGACGGACCGATCGACCGGTGGCGGATGCTGCGCGAGTCGATCCGCACCGACGTGCTGACCCACGGTTACGACGCCGAGCGCAACACCTTCACCCAGTTCTACGGGTCGCGCGGACTCGACGCCTCCCTGCTGCTCATCCCCCGGGTGGGCTTCCTACCGTGGTCGGACCACCGGGTGGTCGGCACGGTCGACGCCGTCCAGCGCGAGCTCAGCCGGGACGGCCTGCTCCTGCGCTACCGCCAGGACGCCGACGACGTCGACGGCCTGGAGGGCAGCGAGGGCACGTTCCTGATCTGCAGCTTCTGGCTCGTCGACGCCCTGCACGCGATCGGCCGCGACGCCGAGTCGCACGCGCTGTTCGACCGCCTGCTCGGCCTGCGCAACGACCTCGGGCTGCTGTCGGAGGAGTATGACGTCACCTCCGGGCGTCAGCTCGGCAACGTCCCCCAGGCGTTCAGCCACCTGGGCGTCGTGAACTCCGCGCGCATCCTGTCCGGCATCCGTGGCGCCGGCACCGACATGACGGGCATGCCCGAGCACCCCACCGCCTGAMTLRIEDYGLIGDLQTVALVGRDGSIDWLCLPDIDSPACLAALLGDDSHGSWRIAPAGIGTCTRRRYRGETLVLETEWETPDGHVRVTDLMPPRGRTPDLVRIVEGVSGRVPVESTLRPRFDYGAVVPWVTESPSILGTERSGTVCAVAGPDALNLAATVPHAVSGETISSRFEVAAGDRVAFVLSYHRSYDPVPEPVDAEDALADTLEFWQEWVGKTRYEGRWGDAVRRSLITLKSLTYAPTGAIAAAATTSLPEQIGGTRNWDYRYCWLRDAAFTLLALLSTGHRDEAKAWREWLLRSVAGDPADLRIMYGLDGRRRLPEATLDWLPGYEGSTPVRVGNGAADQLQLDVWGESLVGLSLTRSNGIAEDDDTWRLQRSLLDHLEGHWDDVDNGLWEVRGPQRPFVHSRVMAWAGVSAMIRGVERYGLDGPIDRWRMLRESIRTDVLTHGYDAERNTFTQFYGSRGLDASLLLIPRVGFLPWSDHRVVGTVDAVQRELSRDGLLLRYRQDADDVDGLEGSEGTFLICSFWLVDALHAIGRDAESHALFDRLLGLRNDLGLLSEEYDVTSGRQLGNVPQAFSHLGVVNSARILSGIRGAGTDMTGMPEHPTAPGPT0018651_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-GLUCOAMYLASE_LIKE,PGPT0018651-glucoamylase_like-NANANA
AK018_059931062camD5-exo-hydroxycamphor dehydrogenaseGTGAGAGCGCTGACCGTCGTCCCCGGACGCACCGGGACGCTGGACGTCACCGAGGTCGCCGACCGCACGGCCGGTGCGGACGAGCTCCTCGTCGACGGCGTCGCCGTCGGCGTCTGCGGCACCGACCACGAGATCGTCCGGGGCGAGCACGGCGCACCACCCCCCGGTCACGAGCGTCTCGTGCTCGGCCACGAGTCGCTCGGCCGGGTCCGCGAGGCGCCGGCCGGTTCCGGGTTCGAGCCCGGCGACCTCGTCGTCGGCGTCGTGCGCCGACCCGACCCCGTCCCGTGCGGCGCCTGCGCCCACGGCGAGTGGGACATGTGCCGCAACGGGCTGTTCACCGAGCACGGGATCAAGGAGGTCGACGGCTTCGCCGCCGAGCAGTGGACCATCGCCGCCGACCGTGCCGTCCGCCTCGACCCGGCGCTGGGCGACCTCGGTGTGCTCCTCGAACCGACGAGCATCGTGGCCAAGGCGTGGGACCAGGTCGACCGGATCGGCCGGCGCGCGTGGTTCGACCCCCGCACGGTGCTGGTCACCGGTGCCGGGCCGATCGGCCTGCTCGCCGCCCTCATCGGGGTCCAGCGCGGGCTCGACGTGCACGTCCTCGACCAGGTCTCCGACGGTCCCAAGCCCGACCTGGTGCGGGCGCTGGGTGCCACCTACCACCAGCAGGACCTGCCGACGGTCGCCGACCGGATCGAGCCCGACGTCATCGTCGAGTGCACGGGCGCGCCCTCCGTCGTCGTGGACACGTTCACCTCGACGAGGCCGTACGGCATCACCGTCCTGACCGGGGTGTCGTCGGCCGGTCGGCACGTCCCCGTGGACGCCGGCGCCGCCAACCGCTCGGTCGTGCTGGAGAACGACGTCATCGTGGGCTCGGTGAACGCCAACCTGGCCCACTACCGCGCCGGCGCCGAGGTGCTCGCCCGCGCGGACCGCGAGTGGTTGGCGGGCCTCGTCACCCGTCGCGTGCCGCTGGACCGGGCGACCGAGGCGTTCGAGCCGCACCAGGACGACGTCAAGGTCGTGCTCGACCTCGGCCGACCCCGCGGCTAGMRALTVVPGRTGTLDVTEVADRTAGADELLVDGVAVGVCGTDHEIVRGEHGAPPPGHERLVLGHESLGRVREAPAGSGFEPGDLVVGVVRRPDPVPCGACAHGEWDMCRNGLFTEHGIKEVDGFAAEQWTIAADRAVRLDPALGDLGVLLEPTSIVAKAWDQVDRIGRRAWFDPRTVLVTGAGPIGLLAALIGVQRGLDVHVLDQVSDGPKPDLVRALGATYHQQDLPTVADRIEPDVIVECTGAPSVVVDTFTSTRPYGITVLTGVSSAGRHVPVDAGAANRSVVLENDVIVGSVNANLAHYRAGAEVLARADREWLAGLVTRRVPLDRATEAFEPHQDDVKVVLDLGRPRGNANANANANA
AK018_05994474hypothetical proteinATGCCGACCGAACGCGAGATGGTCCGTCAGTTCCACGCCGCCTTCGAGGTCCCGGTGAACGACGGCGCCCCGGACCTCGACCTGCCCGACGACCGGCTGCGGCTGCGGTACCGGCTGGTGGCCGAGGAGTTCGCCGAGCTGACCGGGGCGATCCTCGGTGCGGAAGCCCGCGCCGTCGTCGAAGCCGCCGTGGAGCGCGTCGTCGAGGGTTCGACGGCGAAGGCCGACGCCGTGGCCACCGCCGACGCCACGGGCGACCTGCGCTACGTGCTGCACGGGCTCGAGCTGGAGTGCGGCATCCCCGAGTCCGTGTTCGCCGAGATCCACGCCTCCAACCTGGCCAAGCTCGGCCCGGACGGGACGGCCGTGCGCCGCGCCGACGGCAAGGTCCTCAAGCCCGCCGGGTGGCGGCCGCCCGACGTGGCGGGCGTGCTGGACGCGGCAGGTTTCCGCCGCGTCGGCGGCGACGTGTAGMPTEREMVRQFHAAFEVPVNDGAPDLDLPDDRLRLRYRLVAEEFAELTGAILGAEARAVVEAAVERVVEGSTAKADAVATADATGDLRYVLHGLELECGIPESVFAEIHASNLAKLGPDGTAVRRADGKVLKPAGWRPPDVAGVLDAAGFRRVGGDVNANANANANA
AK018_05995834hypothetical proteinATGATGGGTGGGCACCACGCCGCCTCGGGAGCGGCCGCCTGGGTGGCGGTCACCGCCACGACCCCGATCGCGTTCGGCTGGTACCCGGTCTCCGACGTGGGCGTGATGACCGGAGCCCTCGTCTGCGCGGGTGCCGCGCTGCTGCCCGACGCCGACCACCACAACGGCACGATCTCCCACTCCCTGCCGCCGCTGTCGGAGGCGATGACCAAGGCCGTCTCGACCGTCGCCGGCGGGCACCGCAACGCCACCCACTCGATCCTCGGCATCGCCGTCTTCACGCTCGTCGCCTGGGCCATGAGCTTCCTGACGATCAGCACCGAGACGTTCGGCCAGGTGCTGATCGGACCGGGCGTCATGGCGGTCGTGCTCATCGCCTTCGCCGTCCGGGCCCTGAAGCTGACCGGGCAGCGACGGTGGTGGACCTGGACCCTGTCGGTCTCCCTGGCGGCGTTCGTCGCGGTGTTCGCGCCCGAGGAGTGGTACTGGATGCCGTTCTGCGTCGGGCTGGGCTGCGCGGTGCACATCCTCGGCGACATGCTGACCACCCGCGGTGTGCCGCTGCTCTGGCCGATCCGCTTCCGGTCGCCCCGCTGGGTGCGGCGGCACCGCTGGCTGCCGTTCGACGACATGTGGAGCCCGCGCGGCAACATCTCGGTGCCGCTGCTCGGCGACGCCGGGTCGTGGCGCGAGTGGCTCGTCATGACTCCCGTCAGCCTCTACGCCCTCGTCGGCGTCGCCTGGGCGGTCCTGGACCAGATGGGTTTCGACACCGTGGGCGCCTGGGACGACGCGACGGCTCTCGTCGCGACCGCCGCCGGGTCGCTCGGCTGAMMGGHHAASGAAAWVAVTATTPIAFGWYPVSDVGVMTGALVCAGAALLPDADHHNGTISHSLPPLSEAMTKAVSTVAGGHRNATHSILGIAVFTLVAWAMSFLTISTETFGQVLIGPGVMAVVLIAFAVRALKLTGQRRWWTWTLSVSLAAFVAVFAPEEWYWMPFCVGLGCAVHILGDMLTTRGVPLLWPIRFRSPRWVRRHRWLPFDDMWSPRGNISVPLLGDAGSWREWLVMTPVSLYALVGVAWAVLDQMGFDTVGAWDDATALVATAAGSLGNANANANANA
AK018_05996750hypothetical proteinATGGCCTTCCATCCCGTGGCCGAGGACGTGCTGGTCCGTTCCAGCCGGCGCGACGCGACGACGTCGGTGCTGGCGCTCGGGGCACGTCGGCCTGGGGGTCGCCGTCCCGCTCTGCTCGTGGACCCGGCGTGGGACGACGACGAGCTGGCCTCGATCGCCGACGAGCTCGACGCGCGAGCGGTGCGGGTCGCCGCCGGGCTGTCGACGCACGCCCACCACGACCACCTGCTGTGGCACCCCCGGTTCGGCGACGTGCCGCGGTGGGCCTCGGCGCGGGCGGCCCGCGTCGCGCGGCAGCACCGCGGCGCCCTGGACGCCGCGCTGGCGCCCGAGCACCGCGCCCCGGACGTGCGGGCGCTGTTCGCGGCCGTCCGGCCGGTCGAGGGCGACGCCTTACCCGATCCCCACGCCGAGCTGCCGGCGACCGAGCTGGTCGTGCACGACGCGCACGCACCGGGGCACACCGCGCTGTGGCTGCCCGACGCCGCGGTGCTGGTGGCCGGTGACATGCTCTCCGACGTCGAGCCGCCCCTGCCGTGGGACGAGATCTCCGGTGCCACGGACCTGGCCGGCTACCGGGAGGGGCTGGAACGGCTGGCGCCGTTCGTGGCCCGGGCGGCCGTCGTCGTCCCCGGTCACGGGACGCCGTCGTGGCGCCCGCAGGAAAGGCTCGACGCCGACCGGCGCTACGTCGACGCGTTGCTCGCCGGGCGCGTCCCGGACGACCCGCGCGGAGCGGTCCCGGGCTGAMAFHPVAEDVLVRSSRRDATTSVLALGARRPGGRRPALLVDPAWDDDELASIADELDARAVRVAAGLSTHAHHDHLLWHPRFGDVPRWASARAARVARQHRGALDAALAPEHRAPDVRALFAAVRPVEGDALPDPHAELPATELVVHDAHAPGHTALWLPDAAVLVAGDMLSDVEPPLPWDEISGATDLAGYREGLERLAPFVARAAVVVPGHGTPSWRPQERLDADRRYVDALLAGRVPDDPRGAVPGPGPT0001770_4366DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
AK018_05997963hypothetical proteinGTGCCCCACGAACTCTCCCTGACCCTGACCACCTCCGACGACGACGGTCCCGGACCCGACCAACGCTGGTCGACCTGGACCACGGTCACCAAGGGCCAACGCGGCCCGACGCCGCGACCCGACTGGGTCGTCACGGCCGCCGCGGCCCTGGACACCGAGCTCGGCGTGCTCAAGACCGGCAAGGAGGCCGACGTCTTCCTCGTCGAGCGCGCCGTGCCGGACGACCCCGCGCAGAGCTCGCTCCTGGCGGCCAAGCGCTACCGCTCCCCCGACCACCGCCAGTTCCACCGTGACAGCACGTACACCGACGGGCGGCGGGTGCGGCGCACACGCGACCAGCGTGCGGTCGAGGACCGTCGGTCCTCCTGGGGTCGTGCGGTGCGCGCCACCCAGTGGGCCGACGCCGAGTTCACGACCCTGGGCACCCTGTGGGACGCCGGCGCGCCGGTGCCCTACCCCGTGCAGGTCGACGGCACCGAGATGCTCATGGAGTTCGTCGGGAGCGTCGACGACGACGGCGTCGCCGTGGCCGCCCCACGGCTGGACCGCAGCCGGCCGGACGCGGCGGAGCTGTCCGACTGGTTCGACCAGCTCTACGCCGCGATGAGCGTGCTGGCACGGCTCGGCTGGGCGCACGGCGACCTGTCGCCGTACAACGTGCTCGTCGACGACGGCCGTCTCGTCGTCATCGACCTGCCGCAGGTCGTCGACCTGGTCGCGAACCCGGCCGGCCCGGAGCTGCTGCACCGCGACTGCCGCACCGTGTGCCGATGGTCCGCCGCCCGGGGCTGGGTGGTCGCCGCCGCCGTGTTCTTCGCCTACGTGCGGGCCCCGGCCTGGTCCCAGCACCGGCGCCGGGGCGCGGGTGCGCACCGGCGCCAGGACCGACAGACCGGCGGCCGACCTGAGCCGGGCACACCGTGCCCGGACCAGCCCGGCTCCCGGACTACCGCAGCGGCGTGAMPHELSLTLTTSDDDGPGPDQRWSTWTTVTKGQRGPTPRPDWVVTAAAALDTELGVLKTGKEADVFLVERAVPDDPAQSSLLAAKRYRSPDHRQFHRDSTYTDGRRVRRTRDQRAVEDRRSSWGRAVRATQWADAEFTTLGTLWDAGAPVPYPVQVDGTEMLMEFVGSVDDDGVAVAAPRLDRSRPDAAELSDWFDQLYAAMSVLARLGWAHGDLSPYNVLVDDGRLVVIDLPQVVDLVANPAGPELLHRDCRTVCRWSAARGWVVAAAVFFAYVRAPAWSQHRRRGAGAHRRQDRQTGGRPEPGTPCPDQPGSRTTAAANANANANANA
AK018_05998900ectD_2Ectoine dioxygenaseATGACCGCCACGGTCGAGACCACGACCGACCTCTACCCGAGCCGTCTGGCCCAGCCCGGCGAGTTCATCGAGCGCGAGCACCCCACGGTGTGGGGCACGGCCGCCGACGGCCCGTTCGACGCCGACGCCCTCGACGCGCACGCGCAGCGGGGCTTCACCGTCCTCGAGGACTTCATCACCCCCGACGAGGTGACCCGGTACAGCGCGGAGCTGAGCCGGCTGTCCTCGGACGAGTCGCTGCAGGGCGACCCGCGCGTCGTCACCGAGAAGAGCTCCGGCGAGGTCCGGTCGATCTTCGAGGTGACGAAGCTCAGCGAGCGGATCGACGCGCTCGCCCGCGACCCCCGGCTGCTGGACCGCGCCCGCCAGCTGCTCGGCTCGGAGGTGTACCTGCACCAGACGCGCGTCAACTACATGCCCGGCTACAAGGGCGCCGGTTTCTACTGGCACTCGGACTTCGAGACCTGGCACGCCGAGGACGGCATGCCGGCCCCGCGTGCCGTGAGCTGCTCGATCGCGCTGACGCCCAACTACCCGTACAACGGCGGCCTGATGGTCATGCCGGGCTCGCACCGCACGTACGTGCCGTGCGTGGGCGAGACCCCGGAGAACTACCACCAGGACTCCCTCAAGGAGCAGAAGATCGGTGTGCCCTCGGAGGACGCCATCACCGAGCTCGCCTGGAGGTACGGCATCGACCAGTTCACCGGAGCGGCCGGCTCGGCGCTCTGGTTCGACGCGAACATCATGCACGGGTCCGGCAACAACATCACGCCGTTCCCGCGGTCGAACATCTTCCTGGTGTTCAACAGCGTCGAGAACGCGCTCACCGAGCCGTACAGCGCGCCCGCGCCGCGGCCCGAGCACATCGGCAGCCGCGACGTCACGCCGCTGCGGTAGMTATVETTTDLYPSRLAQPGEFIEREHPTVWGTAADGPFDADALDAHAQRGFTVLEDFITPDEVTRYSAELSRLSSDESLQGDPRVVTEKSSGEVRSIFEVTKLSERIDALARDPRLLDRARQLLGSEVYLHQTRVNYMPGYKGAGFYWHSDFETWHAEDGMPAPRAVSCSIALTPNYPYNGGLMVMPGSHRTYVPCVGETPENYHQDSLKEQKIGVPSEDAITELAWRYGIDQFTGAAGSALWFDANIMHGSGNNITPFPRSNIFLVFNSVENALTEPYSAPAPRPEHIGSRDVTPLRPGPT0014065_324DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014065-ectD-K10674NANA
AK018_05999432hypothetical proteinGTGTGTGGCGGGGACCCGGCCTACCGTGAGGAGATGGGCACGGACTTCGAGGACTACGACCACGAGGCGCTGCGCACGTACTTCGTCGAGCAGGGTCTGGCGCTCGGCTCCGGCGACCTCGAGGCGGTGGCCGACCGGTTCGACGCCGCCGCGGTGCTGGTCCTCGCCGAGGAGACCGTGGCGCTGCAGAGCCCCGAGCAGGTGCACGACCTGCTGCGCGAGCACGCCGGTGCCCCCGACCCGGGCGACGCCGTCGCCCTCGTGCCGGAAGTGACCGACAGCGCCGAGCTGGGCTGGGCGCTGCTGTGGGTCGAGGTGCGCTGGAGCCTGCGGGACGAGCTCGCCGCGGAGCGGGCCAGCCGGCACGTGCGCTATCTGCTGCGACGCGCCCGCGGCACCTTCGAGGTCTGCGTCGTCGTCCCGCTGCCCTGAMCGGDPAYREEMGTDFEDYDHEALRTYFVEQGLALGSGDLEAVADRFDAAAVLVLAEETVALQSPEQVHDLLREHAGAPDPGDAVALVPEVTDSAELGWALLWVEVRWSLRDELAAERASRHVRYLLRRARGTFEVCVVVPLPNANANANANA
AK018_06000618hypothetical proteinGTGCCGGACTACCGTGGGGCCATGGGCTACCGGATCGAGCCGGCCACGGCCGACAGGTTCGACGACGTCACCACGATCCTCAACCCGCGCGGGCACGAGCGGGCGTGCTGGTGCCTGGCCTGGCGCCGCCCCCGCGGGCTGCCGCCGGGTGGTGGCGGCGCGCACCTGCGCGAGCTCTGCGCGCACGACCCGCGCCCGGGACTGCTGGCCTACCTCGACGAGGACGGCGCGGAGGAGGTCGTGGGCTGGGTCGGTCTCGCCCCGCGGTCGGCGGCGCCCTCCCTGCAGCGGTCCCGCGTGCTGCCGCGGAGCGACCCGGAGACGGCGGAGACGACCTGGGTCGTGATGTGCTTCGTCGTGCGCCCCGGCTACCGGCGCCGCGGGGTCGCCCGGGCGCTGCTGCACGGCGCGGTCGAGCACGCCCGGGCCCACGGCGGCCGGGTGATCGAGGGATTCCCGGTCGAGCCCGAGCCGGGCCGCCGCGTCCCCGTCGGCGCGGCGTACGTCGGCACCGTGCCGCTGTTCGAGTCGGCGGGGTTCGACCGCGTCGGCGAGACGGCCGCGACGAGCGGGCGGCTGCCGCGGTGGGTGCTGCGCCGGGTGCTGGCCACCGACTGAMPDYRGAMGYRIEPATADRFDDVTTILNPRGHERACWCLAWRRPRGLPPGGGGAHLRELCAHDPRPGLLAYLDEDGAEEVVGWVGLAPRSAAPSLQRSRVLPRSDPETAETTWVVMCFVVRPGYRRRGVARALLHGAVEHARAHGGRVIEGFPVEPEPGRRVPVGAAYVGTVPLFESAGFDRVGETAATSGRLPRWVLRRVLATDNANANANANA
AK018_060013510dnaE2_2Error-prone DNA polymeraseATGACTGAGCCCCACCCGGCACCCCGGTACGCCGAGCTGCACGCCCACTCGGCCTTCAGCTTCCTCGACGGCGCCAGCCACCCCGCCGAGCTCGCCGCCGAGGCCGACCGGCTCGGGCTCGAGGCCCTGGCCCTGACCGACCACGACGGGCTGTACGGCGTGGTCCGGTTCGCCGAGGCCGCCCGCGCCGTCGGGCTGCCCACGGTGTTCGGCGCCGAGCTGCACCTGCCCGTCCCGGTGCCGGGCGCCGCGCCGGTCCTCGACGAGCCCACCGGCGTCCCCGACCCGCGGGCCACGCACCTGCTCGTGCTGGCCCGCGGGCCGGACGGCTACCGGAACCTGTCGCGCGCGATCGCCACCGCCCACCTCGAGGCCGGGGTCAAGGGCAAGGCCCGCTACGACCTCGACCGGCTGGGCGCCGAGGCCGACGGCCAGTGGCTGGTGCTCACCGGGTGCCGCAAGGGCGCCGTCCGGCGCGCGCTCGAGGCCCAGGGGCTCGACGGCGCGCGCCGCGAGCTCGACCGGCTCACCGCCGTCTTCGGCCGGGACAACGTCGCCGTGGAGATCACCGCCACCGGCGACCCCCGCGACGCCGACCTGCACGCAGCGCTCGCCGCGCTGTCGCAGGACGCGGGGCTGCCCCTGGTCGCCACCACCGCCGCCCACTACGCCCGCCCGCGCGACGCCGACCTGGCCGGGGCGCTCGCGGCCGTGCGCGCCCGCTCCTCCCTGGACGACCAGGACGGCTGGCTGCCCGGCGCCCCGACGGCGCACCTGCGCTCGGGCGCCGAGATGGCCCGGCTGCACCACCGGCACCCGCAGGCCGTGCCGACGGCCGCCGACCTGGCCGCCGAGTGCGCGTTCGACCTGCACCTGGTGGCGCCGCAGCTGCCGCCCTACCCGGTGCCCGCCGGCCACGACGAGGCGAGCTGGCTGCACGAGCTCGTCCTCCGGGGCGCCGAGGACCGGTACGGGCCGCGGGAGGCCGAGCGGGAGCCCGGCGCGTGGGCGCAGATCGACCACGAGCTGCGCGTCATCACGGACCTGAACTTCCCGGGGTACTTCCTCGTCGTCTACGACCTGGTCGAGTTCTGCCGCCGGGAGGGCATCCTGTGCCAGGGCCGGGGGAGCGCCGCCAACTCGGCGGTCTGCTACGCGCTGGGGATCACCGCCGTCGACGCCGTGCACCACGGCCTGCTGTTCGAGCGGTTCCTGGCCCCCGAGCGGGACGGACCCCCCGACATCGACATCGACATCGAGTCGGGCCGGCGCGAGGAGGTCATCCAGCACGTCTACGCCCGGTTCGGGCGCACGCACGCCGCGCAGGTCGCCAACGTCATCTCCTACCGGCCGCGCTCGGCGGTGCGCGACGCCGCCCGCGCGCTCGGGTACGACGTCGGGCAGGCCGACGCCTGGAGCAAGTCCATCGAGCGCTGGGGGTCGCTGCGCGGCCCCGACCCGACCAGCCCCGCGTCCGACCGGACGGCGGGTGCCGCGCGGGCGTCCGACGGCGCGCCGGTCACCGGTCGCGACCGGCGCCGGGCCGAGGTCGCCGCCCGCTGGCAGCACGGCGCCCCGGCGCGACCGGCCGCCCCCGTGGTCGACCCGCTCGCCGTCGACGGGGGCCTGCGGCGGTCCGACGACCCGCACGACGTCGTCCCCGCCCGACGTCCGCCGTCGGCCGAGCAGGAGGGCCAGATCCCCGACCCCGTGCTCGACCTCGCCGAACGGTTCCTGCGCCTGCCCCGCCACCTCGGCATCCACTCCGGGGGCATGGTGATGTGCGACCGGCCCGTCATCGAGGTCTGCCCGGTCGAGTGGGCCCGGATGGAGGGGCGCACCGTGCTGCAGTGGGACAAGGAGGACTGCGCCGACGCCGGGCTGGTGAAGTTCGACCTGCTGGGCCTGGGCATGCTCACCGCGATCCGGTACGCGTTCGCCTCGGTGCACGAGGCCACCGGTGAGCGGCTCGCGCTGCACACGCTGCCGGCCGAGGACCCGCGCGTGTACGACCTGCTGTGCGCCGCCGACACCGTCGGGGTGTTCCAGGTCGAGTCCCGCGCCCAGATGGCCACCCTGCCGCGGCTGCAGCCCCGGAGGTTCTACGACATCGTCGTCGAGGTCGCCCTCATCCGCCCCGGGCCGATCCAGGGGCGGTCCGTGCACCCGTACATCGAGCGCTCCCGGGGCCGCGAGGAGGTCACCTACCTGCACCCGCTGCTGGAGCCGTCCCTGCGGCGCACCCTCGGGGTACCGCTGTTCCAGGAGCAGCTCATGCAGATGGCGATCGACGTCGCCGGGTTCACGCCCGCCGAGTCCGACCGGCTGCGCCGGGCCATGGGCTCCAAGCGCTCCGTGGAACGCATGGAGGCGCTGCGGGGGCGCCTGTTCGCCGGGATGACCGAGCGCGGGATCCCGGACGACGTGCAGGAGGAGATCTACGACAAGCTCAAGGCGTTCGCCGACTTCGGCTTCCCCGAGTCGCACGCCTACTCCTTCGCGTTCCTCGTCTACGCCAGCTCGTGGCTCAAGGTGCACGCCCCCGAGGCGTTCTACGCCGGCCTGCTCGCCGCGCAGCCGATGGGGTTCTACTCCCCGGCGTCCCTCGTCGCCGACGCCCGCCGGCACGGCGTGCGGGTGCTGCGCCCGGACGTCAACGCCTCGACGGCGCTCGCGGGGGTCGAGGCGCAGCCGGACGGGCCCGTCGCCGGTCCGGCCGACGCGGTTGCCGGTCCGGACGATCCTGTCGGCGGCGCCGAGGGCCAGGTCGGCAGCGGGGGAGTGCCGCTCGACACCGACCCCGGGCTGGCCGTCCGGCTCGGGCTCTCCGCCGTGCGCGGGCTCGGCACCGACGTCGCCGAGCAGATGGTCGCCGAGCGCGACGCCCACGGCGAGTTCGCCGACCTGCGCGACCTCGTGCGCCGCGTCGAGCTGTCCACCGCCCGCCTGGAGGCCCTGGCCACCGCCGGGGCGCTGGCCTCGCTCGGTGTGACCCGGCGCGAGGGGCTGTGGGCCGCCGGTGCGCTCGGGCAGGAGGGGCCGGAGACGCTCGCGGGCGTCAGCGTCGGGGTGTCCGCGCCGCCGCTGCCGGACATGGACCCGCTCGAGATCGACGTCGCCGACACCTGGGCCACCGGCATCACCCCGGACTCCACCTCCCCGCTGGAGCACCTGCGCGACGGGCTGGAGCGCCAGGGCGTGGTGACCGTGGCCGCCGCGACGACGACGGAGCCCGGCCGCCGCATCGCCGTCGGCGGGGTGGTCACCCACCGGCAGCGGCCGGGCACCGCCGGGGGCGTCACCTTCCTGTCCCTGGAGGACGAGACCGGCCTGCTCAACGTCATCTGCACCCCCGGGCTGTGGCGACGCTTCCGGACCGTGGCGCGCGGTGCCCCGGCACTCGTCGTGCGCGGTCAGGTGGAGCGGGCCGACGGCGCGGTCAACCTGCTCGCCGAGCACCTCGCCCCGCTGCGCCTGCCGGTGGCGACCCGGTCGCGGGACTTCCGCTGAMTEPHPAPRYAELHAHSAFSFLDGASHPAELAAEADRLGLEALALTDHDGLYGVVRFAEAARAVGLPTVFGAELHLPVPVPGAAPVLDEPTGVPDPRATHLLVLARGPDGYRNLSRAIATAHLEAGVKGKARYDLDRLGAEADGQWLVLTGCRKGAVRRALEAQGLDGARRELDRLTAVFGRDNVAVEITATGDPRDADLHAALAALSQDAGLPLVATTAAHYARPRDADLAGALAAVRARSSLDDQDGWLPGAPTAHLRSGAEMARLHHRHPQAVPTAADLAAECAFDLHLVAPQLPPYPVPAGHDEASWLHELVLRGAEDRYGPREAEREPGAWAQIDHELRVITDLNFPGYFLVVYDLVEFCRREGILCQGRGSAANSAVCYALGITAVDAVHHGLLFERFLAPERDGPPDIDIDIESGRREEVIQHVYARFGRTHAAQVANVISYRPRSAVRDAARALGYDVGQADAWSKSIERWGSLRGPDPTSPASDRTAGAARASDGAPVTGRDRRRAEVAARWQHGAPARPAAPVVDPLAVDGGLRRSDDPHDVVPARRPPSAEQEGQIPDPVLDLAERFLRLPRHLGIHSGGMVMCDRPVIEVCPVEWARMEGRTVLQWDKEDCADAGLVKFDLLGLGMLTAIRYAFASVHEATGERLALHTLPAEDPRVYDLLCAADTVGVFQVESRAQMATLPRLQPRRFYDIVVEVALIRPGPIQGRSVHPYIERSRGREEVTYLHPLLEPSLRRTLGVPLFQEQLMQMAIDVAGFTPAESDRLRRAMGSKRSVERMEALRGRLFAGMTERGIPDDVQEEIYDKLKAFADFGFPESHAYSFAFLVYASSWLKVHAPEAFYAGLLAAQPMGFYSPASLVADARRHGVRVLRPDVNASTALAGVEAQPDGPVAGPADAVAGPDDPVGGAEGQVGSGGVPLDTDPGLAVRLGLSAVRGLGTDVAEQMVAERDAHGEFADLRDLVRRVELSTARLEALATAGALASLGVTRREGLWAAGALGQEGPETLAGVSVGVSAPPLPDMDPLEIDVADTWATGITPDSTSPLEHLRDGLERQGVVTVAAATTTEPGRRIAVGGVVTHRQRPGTAGGVTFLSLEDETGLLNVICTPGLWRRFRTVARGAPALVVRGQVERADGAVNLLAEHLAPLRLPVATRSRDFRNANANANANA
AK018_060021710dinB_2DNA polymerase IVATGAGCACGAGCAGCACAGGAGTCACCCGCACCGCGGTGCTCTGGGTCCCGGACTGGCCGGTGGTGGCCGCCCTGGCCGCCGCCGGGCTGGACGCGCACGTGCCCGCCGCCGTCCTCGGCGCGCCATCGGGCGGCGGGACCCGGGCCGGACGCAGCGTCGTGGCGACCTCCGCCGTCGCCCGCACCGCCGGGGTGCGACGCGGCATGCGGCGCCGCCAGGCCCAGGAGGCCTGCCCCGACCTGGTGCTGCTGGAGGCCGACGACGACCGGGACGCGCGCACCTTCGAACCCGTGGCCGCCGCCGCGGAGACCGTCGTGGCCGGCCTCGAGATCGCCCGCCCCGGCCTGCTGCTCCTGCCCGCCGACGGCGCCGCGCGCTACCACGGCTCCGAGCGGGCCCTGGCCGAGGCGCTCGTGACCGCCGTCGCCGGGACCGGCCACGAGTGCCAGGTCGGGGTGGCCGACGGGCTGCTGGCCGCGGTCCTCGCCGCCCGCTCCGACGCCGTCGTCCCGCCCGACGGGTCCCCGTCGGCCCTCGCCGGGCGCCCCGTCGGCGAGCTCGTGCACGCCGCGTGCGACCCGGGTGTCGTGGCCGCCGTGCGCGACGCCGTCGGCCTGTGGTGGCGGCTCGGCCTGCACACCCTCGGCGACCTGGCCGCCCTGCCCGTGGCGAGCGTGACCGCCCGGTTCGGCGAGCTCGGCACCTGGGCGCACCGGCTGGCCCGCGGCGAGGACGAACGCCCGCCCGCGCGCCGGCGCATCGAGGCCGACCTGGTCGTGGACACCGCGCTCGACCCGCCCGCCGACCGGGTCGACGTCGCCGCGTTCGCCGCCCGCCGTCTCGCCGAGGAGCTGCACGCGCTGCTCGTGGCCCACGGCGTGGCCTGCGGACGGCTGCGCATCACTGCCCGGACCACCGAGGGCGAGCTCGAGCGGCTCTGGCGCACCGACACCGTCGCCGGCGGGCTGTCCGCCGCCCGGATCACCGACCGGGTGCGCTGGCAGCTCGAGGGATGGCTGACCGACGCCGCCCGCCGGCGCACCGGCACCGAGGACTCGCCCGAGGTCGCCCCCGTGGTCCACCTCGCGCTCGCTGCCGAGGACGTCGCCCCCGCCGGGACGCACCAGCCCAGCCTGTGGGGCGCCGACGCCGGGCAGGACGAACGTGCCCGCCAGGTGCTGGACCGGGTGCAGGGGCTGCTCGGCGGCGACGGCGTGCTCACCGTCCGACGGGCCGGCGGGCGCCACCCGCGCCACCGCGTCCGGCTCGTGCCCTACGGCGAGGAGGCCGTCGTCGACCGGCCCCCGGACCGCCCCTGGCCCGGGGCGCTGCCCAGCCCGGCCCCGGCGACCCTGCTGCCCGAGCCCGCCCCCGCGCGGGTGCTCGACGCGGCCGGTGCCGACGTCGTCGTCGATGCCCGGCTGACGATGAGCGGCGTGCCCGCCCGTCTCCTCGTCCCCCGAGATACCGGCTCGTCGACCGAGAAACCGGTCGGTCGCGGCGACGATCCGGTTTCTCGGCGACCGGCCGGTATCTCGGGGGACGCGCGGGTCGTCGGCTGGGCCGGGCCGTGGCCGCTCGCCGAACGCTGGTGGGCGCCCGACGGCGGCACCCGGCGGGTGCACCTGCAGGCGGTGCTCGACGACGGCCGCGGGCTGCTGCTCGCCCAGGTCGGCGGCCGGTGGCAGGTGGAGGCACTGTATGACTGAMSTSSTGVTRTAVLWVPDWPVVAALAAAGLDAHVPAAVLGAPSGGGTRAGRSVVATSAVARTAGVRRGMRRRQAQEACPDLVLLEADDDRDARTFEPVAAAAETVVAGLEIARPGLLLLPADGAARYHGSERALAEALVTAVAGTGHECQVGVADGLLAAVLAARSDAVVPPDGSPSALAGRPVGELVHAACDPGVVAAVRDAVGLWWRLGLHTLGDLAALPVASVTARFGELGTWAHRLARGEDERPPARRRIEADLVVDTALDPPADRVDVAAFAARRLAEELHALLVAHGVACGRLRITARTTEGELERLWRTDTVAGGLSAARITDRVRWQLEGWLTDAARRRTGTEDSPEVAPVVHLALAAEDVAPAGTHQPSLWGADAGQDERARQVLDRVQGLLGGDGVLTVRRAGGRHPRHRVRLVPYGEEAVVDRPPDRPWPGALPSPAPATLLPEPAPARVLDAAGADVVVDARLTMSGVPARLLVPRDTGSSTEKPVGRGDDPVSRRPAGISGDARVVGWAGPWPLAERWWAPDGGTRRVHLQAVLDDGRGLLLAQVGGRWQVEALYDNANANANANA
AK018_06003897hypothetical proteinGTGACCGTCGTCCCCGAGGCCCCGCCCCGCACCGACCGTGCCGCACGGCACTCCCGGGCGCTGGCCGCCCTGCGTGCCGCCGAGCACGGGACGACGGCGCCGCGGCGGGCGGCCCCGGTCGAGGAACGCCCGGACGAGGAGCGCCCGGACGAGGAGCGCCCGGACGACGACGGCCCGCTCGGCGAGCTACCGCACGAGGCGAGGGCGTCCGTCCTCGACACGCCTCCTCGGGTCCCTGTCCGCGCCGGCCGGGCCGTGCATCCCGACCTCGCAGCGCTGCTGCCCGGCGGTGTGCTGCCGAGCGGCGGCGTCCTGGCGGTGCAGGGGTCGACCAGCCTGCTGCTCGGGCTGCTCGCCGCCCCCTCGCGCGACGGCGCCTGGACCGTCCTGGTCGGGGCTCCCGCCGTCGGGCTGCTGGCCGCCGCCGACGCCGGGATCGACCTGGCGCGCACCGTCGTCGTCCCCGCCCCCGGACCGGACGCCCCCGCGGTGCTGGCCGCGCTGCTGGACGGCATGGACGTCGTCGTGGTCGGGCCGCAGGCGGTGCTGACCGACACCGACCGGCGCCGCCTGGCCGCCCGGGCCCGGCAGCGCGAGGCCGTCCTGGTCGCGACCGGCCGCTGGGCGGGGGCCCACGTCACCCTCGACGCCCGCGGCGGGGCCTGGACCGGGGTGGACGCCGGTGCCGGCTGGTTGCGCCGCCGCACCCTGCGGGTGCTGCGCACCGGGCGCGGGGCCGCGGCCCGTCCGGTGGAGATCGACGTCGAGGTGCCGCTCGGCGGCGAGGAGCCCGTCCTCGCGCCCACGGCCGCCCGGCCCGACGTCGCAGCCCCTGCCGGGCCGACGTCCGCCACCACGGACGACTCGCCCCGCACCCGGCACCTGAAGGTCGCATGAMTVVPEAPPRTDRAARHSRALAALRAAEHGTTAPRRAAPVEERPDEERPDEERPDDDGPLGELPHEARASVLDTPPRVPVRAGRAVHPDLAALLPGGVLPSGGVLAVQGSTSLLLGLLAAPSRDGAWTVLVGAPAVGLLAAADAGIDLARTVVVPAPGPDAPAVLAALLDGMDVVVVGPQAVLTDTDRRRLAARARQREAVLVATGRWAGAHVTLDARGGAWTGVDAGAGWLRRRTLRVLRTGRGAAARPVEIDVEVPLGGEEPVLAPTAARPDVAAPAGPTSATTDDSPRTRHLKVANANANANANA
AK018_06004762fabG_43-oxoacyl-[acyl-carrier-protein] reductase FabGATGACCCCCACCACCGACCGCGTCGCGATCGTCACCGGCGCCGCCCGCGGCATCGGCGCCGCCACCGCCGCCCGCCTGGCCACCGACGGCCACGCCGTGGCGCTGCTCGACCTGCGCGAGGAGGCCGCCGCCGAGACCGCCGCCGCACTGGCGGCCGACGGCCACCGCGCGATCGGCGTCGGCGTGGACGTCGCCGACGAGCAGTCCGTGACCGACGCCGTCGAGCGCGTGGTCGCCGAGCTCGGCGCCCCGACGGTGCTCGTCAACAACGCCGGGATCCTGCGCGACAACCTGCTGTTCAAGATGTCGACCGACGACTGGGACGCCGTGCTCGGGGTGCACCTGCGCGGGGCGTTCCTCATGACCCGGGCCGTGCAGCAGCACATGGTCTCCGCCCGGTGGGGCCGCATCGTCAACCTGTCCAGCACCTCGGCCCTGGGCCACCGCGGCCAGGCGAACTACTCCGCCGCCAAGGCGGGCATGCAGGGCTTCACCAAGAGCCTCGCCATCGAGCTCGGCACGTTCGGGGTCACGGCGAACGCCGTGGCGCCCGGGGTCGTCGCGACCGACATGATCGCCGAGACCGCCGAGCGGGTCGGCGTCCCGCTGGAGGACTTCCTGGCCGGCATCGCCCAGGACGTGCCGGCAGGGCGCGTCGGCCGGCCCGAGGACATCGCCGCCGCGGTGGCATTCTTCTGCTCCACCGAGGCCTCGTTCACCAACGGCCAGGTGCTCTACGTCGCCGGAGGGCCGCAGGACTGAMTPTTDRVAIVTGAARGIGAATAARLATDGHAVALLDLREEAAAETAAALAADGHRAIGVGVDVADEQSVTDAVERVVAELGAPTVLVNNAGILRDNLLFKMSTDDWDAVLGVHLRGAFLMTRAVQQHMVSARWGRIVNLSSTSALGHRGQANYSAAKAGMQGFTKSLAIELGTFGVTANAVAPGVVATDMIAETAERVGVPLEDFLAGIAQDVPAGRVGRPEDIAAAVAFFCSTEASFTNGQVLYVAGGPQDPGPT0003180_9374DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_06005531hypothetical proteinATGGACTTCACACGGCCGACCCCACCGGACCCCTACTCCCTGCTCCCCGTCCCGGCGACGTTCGAGCTGACGAGCGCCGACATCACCGAGGGCGACCCGATGCCGGCGGACCACGCGGCCGACGGCGGCAACACCTCCCCCGCGCTGGCCTGGTCCGGGTTCCCGGCCGAGACGAAGTCGTTCGTGGTCAGCTGCTTCGACCCCGACGCGCCGACGCCGTCCGGCTACTGGCACTGGCACGTGCTCGACGTCCCGGCCTCGGTGACCTCGCTGCCGCGCGGCGCCGGGGCGGTCGACGGCAGCGGGCTGCCCGCCGGCGCCTTCCAGCTCCTCTCGGACGGCGGTCAGGTCGGCTTCGAGGGGGCGGGCCCGCCCCCGGGCGACCACGCCCACCGCTACGTCTTCGCCGTGCACGCGCTGGACGTCGACTCGCTCGGGCTGACCACGGAGAACACCAACGTGCACGCGGCGTTCAACGTCTACTTCCACGTCATCGCCCGCGCGACGCTGACCGGGACCTACCGCCGATGAMDFTRPTPPDPYSLLPVPATFELTSADITEGDPMPADHAADGGNTSPALAWSGFPAETKSFVVSCFDPDAPTPSGYWHWHVLDVPASVTSLPRGAGAVDGSGLPAGAFQLLSDGGQVGFEGAGPPPGDHAHRYVFAVHALDVDSLGLTTENTNVHAAFNVYFHVIARATLTGTYRRNANANANANA
AK018_06006588hypothetical proteinATGAGCGACGCGACCGGGGCGGGTCTGCCCACGCTGGGCGACCTGGGCTGGGTGCCCGCGCTCGAGCGTCCGGACCTGCTGGCCGACCCGGTCGCCGAGGCGCTGCGCGTCTGGGCGGAGACGGACGAGCGGGTCGCCGACCAGGTGGCCGTCGCCGAGATCGACCCCGACCACGCGGACACGGCCACGCTCAACGCGGTGCACGGGCTGCCGCCGGAGGCGTCGGCGAACTGCGTCGTGGTGGCCGGACGGCGCGGCGACGTCGAGCAGGTCGCGGCCTGCGTGGTGCCCGCCTCGACGTTCGCCGACGTCAACACCCGGGTGCGCAAGCTGCTCGACGCCCGCAAGGCGTCGTTCCTGCCGATGGACCGCGCCACCGAGGAGTCGGGGATGGCCTACGGCGGGATCACGCCGATCGGCGTGCCGTCGAGCTGGCGGGTCCTGGTGGACAGCCGCTTCGACGACGGCGCGGCGCCGGCGCTCCTGGGCAGCGGCCTGCGGGTGTCCAAGCTGCTCATGCCCGGCGACCTGCTGTGCAGCGCGCCGGGTGTCGAGGTCGTGGACGACCTGGGCGTGGTGCGGGGCTGAMSDATGAGLPTLGDLGWVPALERPDLLADPVAEALRVWAETDERVADQVAVAEIDPDHADTATLNAVHGLPPEASANCVVVAGRRGDVEQVAACVVPASTFADVNTRVRKLLDARKASFLPMDRATEESGMAYGGITPIGVPSSWRVLVDSRFDDGAAPALLGSGLRVSKLLMPGDLLCSAPGVEVVDDLGVVRGNANANANANA
AK018_06007999COG2375putative proteinGTGACTGAAGCCGTGACCGACGCCCGGACCGAGACCGCCGTCGCGCCCCGCCCCTGGCGCATGTTCGACGTCGAGGTCCTGCGGGTCACGCGCCTGTGCCCGTCCTTCGTGCGGATCACCTTCACCGGCGAGGACCTGCACGAGTTCGCCGACAACGGTCGCGACCAGCGCATCAAGTTCCTGCTCCCGGCCCCGTGCGGTGGCTGGGAGTACCTGGACCGGCAGAACCCCGACTGGTTCACCTCCTGGCGCGAGCTGCCCGACGAGCGCCGCAACCCCCTGCGGACCTACACCGTGCGCGCCGTCCGGCCCGCGCAGCGCGAGGTGGACGTCGACATCGTCCTGCACGGCGACACCGGCCCGGCGTCCCGCTGGGCGAACGGCGCCCGGCCCGGTTCCCCGCTCGTGATCCTCGGGCCGAACGCGGCCTACGACGGCGGTCCGCACGGCGGGCGCGACTTCGCGCCACCGCCGTCCAGCCACGCGCTGCTGCTCGCCGGCGACGAGACGGCCGTCCCGGCCATCGCCTCGATCTGCGAGTCCCTGCCCGCCGACGCCGTCGGCGAGGTCTTCCTCGAGGTGCCGCACGCGGAGGACCGCTGGACGCTCGCCGCGCCGGCGGGGGTGCGGGTCACGTGGCTGCCGCGCGACGGAGCCGAGCACGGGGACGTCCTGGTCCCGGCGGTGCAGGACGCCGCCGACCGCATGCTCGCCATGGGCGTCCGGCCGTCGGCCGACGGCGGCCCCGCGACGACGGCCACGGGTGTCGACCTGGACGCCGAGCTCGTCGACGTCGACGTCGACACCGACCTCCTCTGGGAGGTCCCGACGGACGCCGAGGGGCGCCCGCTGGTGCAGGACACCGTGCTCTACGCCTGGCTGGCCGGGGAGGCCGGTGTCATCAAGACGCTGCGCCGCTACCTCGTGCGCACCAAGGGCGTCGACCGCAAGTCCGTGGCGTTCATGGGCTACTGGCGCCGCGGCCGCTCGGAGTGCTGAMTEAVTDARTETAVAPRPWRMFDVEVLRVTRLCPSFVRITFTGEDLHEFADNGRDQRIKFLLPAPCGGWEYLDRQNPDWFTSWRELPDERRNPLRTYTVRAVRPAQREVDVDIVLHGDTGPASRWANGARPGSPLVILGPNAAYDGGPHGGRDFAPPPSSHALLLAGDETAVPAIASICESLPADAVGEVFLEVPHAEDRWTLAAPAGVRVTWLPRDGAEHGDVLVPAVQDAADRMLAMGVRPSADGGPATTATGVDLDAELVDVDVDTDLLWEVPTDAEGRPLVQDTVLYAWLAGEAGVIKTLRRYLVRTKGVDRKSVAFMGYWRRGRSECPGPT0003760_107DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_06008630hypothetical proteinATGCGGATCTCCGCGCTGGCCGACCGCACCGGGGTGCCGGTGGCCACGATCAAGTACTACCTGCGCGAGGGGCTGCTGCCGCCGGGCGAGGCGACGTCGCGCACGCAGGCCACCTACGGCGACGAGCACGTCGACCGGGTCCGACTGGTCCGCGCGATGACGGAGTCGGCCGGGCTGTCGCTGGCCGCCGTCCGCGACGTCCTGGCCGCCCTGGACGACCCGCCGCGGTCCCGGCACGACCTGCTCGGCGCGGCGCAGCACGCCCTGGTCGCCGACGAGGCGCGGTCCGACGGCGAGGTCGACGACGCCGTCCGACGGCGCGTGGACGCTCTCGTCGCGGCGCGGGGGTGGTACGACGACGCCGCCCTGGCCGGCCGTCTGGCGGCTCTGCTGCGCGACGCCGAGCGGGCCGGGGTGCCGGTGGGTGACGAGCACCTGGCCGTCCTCGCCGACGCCGCCGAGCTGGTGGCCCGCGCAGACCTCGCCACGGTGCCCGACGCCCCCGCCGACGCCGCACGCCAGGTCGTGGTCGGCACTCTCCTCACGGATCCGGTGCTCGTCGTCCTGCGCCGGTTCGCCCAGCAGCAGGCGAGCGCCCGGCAGGCCGACGGCGGTCAGGACGCGGTCTGAMRISALADRTGVPVATIKYYLREGLLPPGEATSRTQATYGDEHVDRVRLVRAMTESAGLSLAAVRDVLAALDDPPRSRHDLLGAAQHALVADEARSDGEVDDAVRRRVDALVAARGWYDDAALAGRLAALLRDAERAGVPVGDEHLAVLADAAELVARADLATVPDAPADAARQVVVGTLLTDPVLVVLRRFAQQQASARQADGGQDAVNANANANANA
AK018_06009489hypothetical proteinATGGTCACCCTGACGACGCACGACCACGACGGCGAGCTCGCCGTCTTCCTCATCGGCGCCCGGATCGAACGACCGTGGCGTCCCGACGGCTGGTGGCCCGCCCTCGCGGCGATGCGGCCGATGCTCGCCGAGCTCGCCGACGACCCCGGCTCCGGGTTCCTGGGCGCCACGACGCTGGTCGGCGCGCGCGGGCCGACGTCCGTGCAGTACTGGCGCAGCGTCGAGGACGTCTACGCCTACGCCAACGACGACGCCCGGCGGCACCGGCCGGCGTGGCTCGAGTTCTACCGGCAGGCGCGCCGGGTCCCCGGAGCCGTCACCGTGTGGCACGAGACCTACCGCGTCCCGGCGGGCGGCCACGAGAGCCTCTACGTCGGCCGGCCCGCGCACTTCGGCCTCGCCGCCGCGACCGGAGCGGTCCCGGCCGCCCGCCGTGGCCGGACCGCACGGGAGCGGCTGCGCAGCACCGCGGCGCAGGACGGCTCCTGAMVTLTTHDHDGELAVFLIGARIERPWRPDGWWPALAAMRPMLAELADDPGSGFLGATTLVGARGPTSVQYWRSVEDVYAYANDDARRHRPAWLEFYRQARRVPGAVTVWHETYRVPAGGHESLYVGRPAHFGLAAATGAVPAARRGRTARERLRSTAAQDGSNANANANANA
AK018_06010849Putative TrmH family tRNA/rRNA methyltransferaseGTGAACCTGCCTGCCGAGCTCGCCGCCGCCGTGGTGCCCGTGACCGATCCGGCCGACCCGCGGCTGCGGGACTACACCGACCTGACCGACGTCAAGCTGCGCACGGCCCGCGAGCCCGCCGAGGGCCTGTTCATGGCCGAGTCGTCGAACGTCATCCGCCGGGCGCTGGCCGCCGGGCACCGGCCGCGGTCCTTCCTCATGGCCGACAAGTGGCTCGACTCGATGGCCGACGTGCTCGCCGCCCACCCGGACGTGCCGGTCTTCGTCGCGGACGAGGTCGTCCTGCGCGAGATCACCGGGTTCCACCTGCACCGCGGGGCGCTCGCGGCGATGCACCGCCCGGCGCTGCCCGACGTCGGCGAGCTGCTGTCCCGCCGCGGGGCCGGCGGGGGAGCGCGGCGGGTCGCCGTCCTGGAGGACATCGTCGACCACACGAACGTCGGGGCGATCTTCCGCTCCGCCGCGGGCCTGGGCGTGGACGCCGTGCTGGTGACCCCGCGCTGCGCCGACCCCATGTACCGGCGGTCGGTGCGGGTCTCGATGGGCACGGTGTTCCAGGTGCCGTGGACGCGGCTGCCGGCCTGGCCGGCCGGTGTCGGCGAGCTGCAGGACCTGGGCTTCACCGTCGCCGCGCTGGCGCTGAGCGACGACGCCGTCACGCTCGACGAGCTGGCGGACGAGGCGCCCGAGCGCCTCGCCCTGGTGCTCGGGACCGAGGGCGACGGGCTCTCCCGCGGCGCCGTGGCCGCCGCCGACCGCGTGGTCCGCATCCCCATGGCCGGGGCGGTGGACTCGCTCAACGTGGCGGCGGCCTCGGCGGTCGCCTTCTGGGCGACCCGCACACGCTGAMNLPAELAAAVVPVTDPADPRLRDYTDLTDVKLRTAREPAEGLFMAESSNVIRRALAAGHRPRSFLMADKWLDSMADVLAAHPDVPVFVADEVVLREITGFHLHRGALAAMHRPALPDVGELLSRRGAGGGARRVAVLEDIVDHTNVGAIFRSAAGLGVDAVLVTPRCADPMYRRSVRVSMGTVFQVPWTRLPAWPAGVGELQDLGFTVAALALSDDAVTLDELADEAPERLALVLGTEGDGLSRGAVAAADRVVRIPMAGAVDSLNVAAASAVAFWATRTRNANANANANA
AK018_060111263hypothetical proteinGTGAGCACCGCACGGCGTGCCACAGTGGTGCGCGTGACCGCACCCGACACCCGGCCGGCCGCCGAGCCGGCGTCCGCGGCTCGCCCGGATCCCGGCGCCCGGCCGCGGCGCAGCGTCCTCGTCGGCGTGCTGCTCGCCGTGGCCCTGCCGCTCGCCGTGCTCTCGGTCGGCGCCCTCGTGCCGCAGGTGCCCTGGCTCGGGCACACCGGCGTCGCCGTCTCGCCCTGGGCGGTCTGGCTCGTGGCGGCCGGCGTCGTCGTGCTCGTCCTCGGCACCGTCGCGCTGCTGCGCCGGCCGTCCGTGCCACGTGTGATCGCGCTCGTCGCCGGGGCCACGACGGCCGTCTGCTCCTTCACCGTCGTCACCCAGCAGCTGCTCGTCGCCCAGGACCACGGCGTCGCCGTGCGGATCGGTGAGCTGTTCACCCTCGTCCGGGGCGACGTCTCGGCCGACCTCGACGCCGAGTACGCGCAGCTCGACGGGGAGCCGCAGGAGCTGTCCGCCTGGCTGCCCCGCACGGGACAGGACGGGGCGCCGGCACCCGTCGTGGTCCTCGTGCACGGCGGCGGGTGGACCTCCGAGGACCGGCTGCAGCCGACCACCGCCTCGCACGCCGCGTGGTTCGCGGAGCAGGGATTCCTGGCGATCAGCGTCGACTACCCCCTGTCGGACGACGAGGACCACCGGTGGGACGTCGTGGAGCCGCAGGTCGCCTGCGCCCTGGTCTGGGCGGGTGAGCACGCCGCCGAGCACGGGGGCGACCCGGCCGAGGTCCACCTCGTCGGCGACTCCGCCGGCGGGAACGTCGCCCTCGACGTGGCCTACCGCGCCGAGGCCGGGGAGCTGGAGCCCGCCTGCTCCGGCGAGCTGCCGCGCGTCGCCGCGGTGAGCACGCTGTACCCCGTGGCGGACCCGGTCGCGTTCCACGACAACGACGACCCGGTCGTCGGGGACGCCGCCCGGTCGATGGCCGAGCGGTACACCGGAGGAGCCCCCGGCGAGGTGCCCGAGCGCTACGCCGCCGTGTGGCCGGCCGAGCACGTCCGGGACGGGGCGCCCCCGACGCTGATGGTGCTCGGTGCCGCGGACCACCTCGTCCCGCCGGCCGGCGCGCAGGACCTGGCGGGCGTGCTGGCCCGCCACGACGTGGAGCACGAGCTCGTCGAGCTGCCGGCGGCGGGGCACGTGTTCGACGCCGCACCCGGGGGAGTGGGGACCCAGACCTGGCGCGAGCTGACGCTGCGGTGGTTCTCCGGGGGCTGAMSTARRATVVRVTAPDTRPAAEPASAARPDPGARPRRSVLVGVLLAVALPLAVLSVGALVPQVPWLGHTGVAVSPWAVWLVAAGVVVLVLGTVALLRRPSVPRVIALVAGATTAVCSFTVVTQQLLVAQDHGVAVRIGELFTLVRGDVSADLDAEYAQLDGEPQELSAWLPRTGQDGAPAPVVVLVHGGGWTSEDRLQPTTASHAAWFAEQGFLAISVDYPLSDDEDHRWDVVEPQVACALVWAGEHAAEHGGDPAEVHLVGDSAGGNVALDVAYRAEAGELEPACSGELPRVAAVSTLYPVADPVAFHDNDDPVVGDAARSMAERYTGGAPGEVPERYAAVWPAEHVRDGAPPTLMVLGAADHLVPPAGAQDLAGVLARHDVEHELVELPAAGHVFDAAPGGVGTQTWRELTLRWFSGGNANANANANA
AK018_060122004COG1132Fatty acid ABC transporter ATP-binding/permease proteinATGAGCCAGCAGACCTCCCACCGGCCGCCGCCCGGACCCCCGGCCGGCGGCCACGGGCCGCGCGCCGGGGTGGGTATGCCGACCGCCAAGCCCCTGGACTTCGGCGGGTCGCTGCGGCGGTTCGCCGGCGTCATGCGCCCCGAGCGGGTGCGCGTGGCCGTGCTGCTCGCGTGCGGGACGGTCTCGGTCGTGCTCACGGTGCTGGGCCCCAAGATCCTCGGCGACGCGACGGACGTCATCTTCACCGGGGTGGTCGGCCGGCTCCTCGGCAGCACGATGCCGCCGGGCACCACCACCGCGGAGGCGGTCGCGGCGCTCCGGGCCGCCGGCGACGAGAACCAGGCCGACATGATCGCGGCGATGAGCGACGTCGTGCCGGGCGAGGGGATCGACGTCGAGCGGCTCGCGCAGATCCTCGCCACGGTCGTCGCGGTCTACCTCGGGGCGTTCGTGTTCGGCTGGTGGCAGTCGCGCCTGATGACCGTGGCGGTGCAGAACACGGTGCGCCGGCTGCGCGACGACGTCGAGGCGAAGCTGCACCGCATCCCGCTGAGCTATGTCGACCGGCAGGCCAAGGGCGACATCCTCTCCCGGGTCACCAACGACATCGACAACGTCGCCCAGACGACCACGCAGACGCTGGCCCAGCTCGTCACCGCGCTGCTGACCGTCGTGGGCGTGCTGACGATGATGTTCTGGATCTCGTGGGTGCTGGCCCTGGTCGCCCTCGTCACGGTGCCGCTGTCGATCCTGCTGACCATGGCGATCGCCCGGCGGTCGCAGCCGCAGTTCATCGAGCAGTGGGCCGCCACCGGGCGGCTCAACGCGCACGTCGAGGAGATGTTCACCGGCCACGCCCTGGTCAAGGTGTACGGCCGCCAGGCCGACGCGGCCGCGACCTTCGCCCGGGAGAACGAGGCCGTCCACGACGCCTCCCGGCGCTCGCAGTTCATCTCGGGCACGATCCAGCCGACCATGGGCTTCCTCGCGAACCTCAACTACGTGCTGGTGGCCGTCATCGGCGGGCTGCGGGTCGCCTCCGGCCAGCTCTCCATCGGCGACGTGCAGGCCTTCATCCAGTACTCGCGCCAGTTCACCCAGCCGCTGAGCCAGATCGCCTCGATGATGAACCTGCTGCAGTCGGGCGTCGCCTCGGCCGAGCGCGTCTTCACGCTGCTCGACGCCCCCGAGCAGGATCCCGACCCGGTCCCGGCCCGCGACCCGGAGCGCGTGCGCGGCCGGGTCGAGTTCGACGACGTGTCGTTCTCCTACACCCCCGACGAGGAGCTCATCGAGCACCTCGACCTGGTGGCCGAGCCCGGCCAGACGATCGCGATCGTCGGACCGACCGGTGCCGGCAAGACGACGCTGGTCAACCTGCTCATGCGGTTCTACGAGATCGACGGGGGTCGGATCCTGCTCGACGGCGTCGACACCCGCGCGATGACGCGCGACGGGCTGCGGTCCCGCGTCGGGATGGTGCTGCAGGACGCCTGGCTGTTCGGCGGCACCATCGCCGAGAACATCCGCTACGGGGTGCGCGACGGACGCGAGGTGTCGGAGGAGGAGTTCCTGGCGGCCGCCCGGGCCACCTCCGTCGACCCGTTCGTGCGGACGCTGCCCGACGGGTACGACACCGTCCTCGACGACGGCGGCGCGTCGCTCTCCGCCGGCGAGAAGCAGCTGCTGACGATCGCGCGGGCGTTCCTCGCCGACCCCGACATCCTCGTCCTGGACGAGGCGACGAGCTCGGTGGACACCCGGACCGAGGTGCTGGTGCAGGAGGCGATGAACGCGCTGCGGTCGGGGCGGACCTCGTTCGTCATCGCCCACCGGCTCTCCACGATCCGCGAGGCCGACCTCATCGTGGTGATGGAGCACGGGCGGATCGTCGAGCAGGGCGACCACGACGGGCTGCTCGCTGCCGACGGTGCCTACGCCCGGCTCTACGCGAGCCAGTTCGCCGCGCCGATGACCGAGGATCCGGCCGGGTCCGGTGCGTGAMSQQTSHRPPPGPPAGGHGPRAGVGMPTAKPLDFGGSLRRFAGVMRPERVRVAVLLACGTVSVVLTVLGPKILGDATDVIFTGVVGRLLGSTMPPGTTTAEAVAALRAAGDENQADMIAAMSDVVPGEGIDVERLAQILATVVAVYLGAFVFGWWQSRLMTVAVQNTVRRLRDDVEAKLHRIPLSYVDRQAKGDILSRVTNDIDNVAQTTTQTLAQLVTALLTVVGVLTMMFWISWVLALVALVTVPLSILLTMAIARRSQPQFIEQWAATGRLNAHVEEMFTGHALVKVYGRQADAAATFARENEAVHDASRRSQFISGTIQPTMGFLANLNYVLVAVIGGLRVASGQLSIGDVQAFIQYSRQFTQPLSQIASMMNLLQSGVASAERVFTLLDAPEQDPDPVPARDPERVRGRVEFDDVSFSYTPDEELIEHLDLVAEPGQTIAIVGPTGAGKTTLVNLLMRFYEIDGGRILLDGVDTRAMTRDGLRSRVGMVLQDAWLFGGTIAENIRYGVRDGREVSEEEFLAAARATSVDPFVRTLPDGYDTVLDDGGASLSAGEKQLLTIARAFLADPDILVLDEATSSVDTRTEVLVQEAMNALRSGRTSFVIAHRLSTIREADLIVVMEHGRIVEQGDHDGLLAADGAYARLYASQFAAPMTEDPAGSGAPGPT0029030_181DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029030-efrB-K18888NANA
AK018_060131752COG1132putative ABC transporter ATP-binding proteinATGCTCGTCACGCTCGTCCGGCGCTACCTGCGCCCCTACCTCGGTGCCGTCGTCGTGCTGCTGGTGCTGCAGCTCGCGCAGACCCTGGCGACGCTGTACCTGCCGTCGCTCAACGCCGACATCGTCGACCAGGGCGTCGTCCAGGGGGACACCGGCTACATCCTCGAGGTCGGGGGAGTGATGCTCCTCGTCTCGCTGGGACAGGTGGTCTGCGCGATCGGGGCGATCGGCCTCGGGGCGCGGGCGGCGACGGCGTTCGGGCGTGACCTGCGGCGCGACCTGTTCGACGCGGTCCAGGGTTTCTCGGCCCGCGAGCTCGGGCAGTTCGGGGCGCCGTCGCTGATCACTCGGACGACCAACGACGTCCAGCAGGTCATGATGATGGTGCTGATGACCTTCACCATCATGGTCGTGGCGCCGATCATGATGGTCGGCGGCGTCGTCATGGCGCTGCGCGAGGACGGCAGCCTGTCGCTGCTCCTGCTCGTCGTGGTCCCGGTGCTCGGCGGTGTGCTCGGCGTGCTGCTGTGGCGGATGGTGCCCTACTTCCGGGCGATGCAGACGCGCATCGACGCGATCAACGGCGTCCTGCGCGAGCAGATCACCGGCCTGCGCGTGGTGCGGGCCTTCGTGCGCGAGCGTGCCGAGGCGGAACGCTTCGCCGCGGCGAACACGCGGCTGTACGACGTCTCCCTCGGCGCCGGCAAGCTGATGGCGCTCGCCTTCCCGGTGGTCATGCTCATCATGAACCTGTCGCAGGTGGCGGTGCTCTGGTTCGGCGCCGGCGAGGTCGCCGACGGGTCGCTGCAGGTCGGGTCCCTCATCGCCTTCCTCAGCTACATCATGTTCATCCTCATGGCGGTGATGATGTCGACGATGATGGTGATGATGGTGCCGCGGGCCTCCGTCGCCGCGGGCCGCATCGGCGAGGTGCTGGCCACCGAGACCTCCGTCGTCGAGCCCGCCGCACCGGTCGGTCTCGCCCAGCTGTCCGACGGCGCCGGGCCGCGGGGGCGCGTCGCGTTCGAGGGTGTGCGGTTCGGCTACCCGGGGGCCGACGACCCGGTGCTGCAGGACGTCGACCTCGTCGCGGAGCCGGGACGGACCACCGCGATCATCGGCTCGACCGGGTCCGGCAAGACGACGCTGCTGCACCTCGTGCCCCGGCTGTACGACGTCACCGCCGGCCGCGTCATGATCGACGGCGTCGACGTGCGGGACCTGTCCACGGCCGACCTGGGGTCCGTGCTGGGGCTCGTGCCGCAGCAGGCCTACCTGTTCTCCGGGACGATCGCCGACAACCTGCGGTACGGCAAGGCCGACGCCACCGAGGCGGAGATGTGGGACGCGCTCGAGGTGGCCCAGGCCCGCGACTTCGTCGAGGCCCTGCCCGACGGCCTGGAGGCGTCGGTGGCCCAGGGCGGCACCACGTTCTCCGGCGGTCAGCGCCAGCGCCTGGCGATCGCCCGGGCCGTGATCCGCCGTCCGCTCGTCTACCTCTTCGACGACTCGTTCTCCGCTCTGGACTACGCGACCGACGCCCGGCTCCGGGCCGCGCTGCGCCCGCGGACCGCCCGCGCGACGGTGCTCGTCGTCGCCCAGCGGGTCGCCACCATCCGTGACGCCGACCAGATCCTGGTGCTCGACCACGGCCGGGTCGTCGGACGGGGCACCCACGCCGAGCTGCTCGCCGAGAACGCCACGTACGCCGAGATCGTCACCTCCCAGATGTCGAGGGAGGAGGCGGCATGAMLVTLVRRYLRPYLGAVVVLLVLQLAQTLATLYLPSLNADIVDQGVVQGDTGYILEVGGVMLLVSLGQVVCAIGAIGLGARAATAFGRDLRRDLFDAVQGFSARELGQFGAPSLITRTTNDVQQVMMMVLMTFTIMVVAPIMMVGGVVMALREDGSLSLLLLVVVPVLGGVLGVLLWRMVPYFRAMQTRIDAINGVLREQITGLRVVRAFVRERAEAERFAAANTRLYDVSLGAGKLMALAFPVVMLIMNLSQVAVLWFGAGEVADGSLQVGSLIAFLSYIMFILMAVMMSTMMVMMVPRASVAAGRIGEVLATETSVVEPAAPVGLAQLSDGAGPRGRVAFEGVRFGYPGADDPVLQDVDLVAEPGRTTAIIGSTGSGKTTLLHLVPRLYDVTAGRVMIDGVDVRDLSTADLGSVLGLVPQQAYLFSGTIADNLRYGKADATEAEMWDALEVAQARDFVEALPDGLEASVAQGGTTFSGGQRQRLAIARAVIRRPLVYLFDDSFSALDYATDARLRAALRPRTARATVLVVAQRVATIRDADQILVLDHGRVVGRGTHAELLAENATYAEIVTSQMSREEAAPGPT0029025_829DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029025-efrA-K18887NANA
AK018_060141188hypothetical proteinGTGGAACTCGCCACCATCATCGGCTGGGTCGTCCTGCTCGCGTTCGTGGTCTTCGTGATCACGGCGCTGTTCAAGATGGTCCGCGTCGTGCCCCAGGCCACCGCGCTGATCATCGAGCGCCTCGGCCGCTACCAGAAGACCTTCGACCCCGGCCTGCACTGGCTGGTGCCGTTCATCGACAAGGTGCGGGCCGGCGTCGACCTGCGCGAGCAGGTCGTCTCGTTCCCGCCGCAGCCGGTGATCACCTCGGACAACCTCGTGGTCGAGATCGACACCGTCATCTACTTCCAGGTCACCGAGCCCAAGTCCGCGGTCTACGAGATCTCGAACTACATCACCGGTATCGAGCAGCTCACCGTCACCACGCTGCGTAACGTCGTCGGGTCCATGGACCTCGAGCAGACGCTGACCAGCCGTGACCAGATCAACGGCCAGCTCCGCGGGGTCCTCGACGAGGCGACGGGCCGCTGGGGCGTCCGCGTCAACCGTGTCGAGCTGAAGTCCATCGAGCCGCCGGCCTCCGTGCAGGGCGCGATGGAGCAGCAGATGCGCGCCGAGCGCGACCGCCGCGCCGCCATCCTCACCGCCGAGGGTGTCAAGCAGTCGCAGATCCTCACGGCCGAGGGTGAGAAGCAGTCCCAGATCCTGCGGGCCGAGGGTGACGCGCAGTCGGCGATCCTGCAGGCCGAGGGTGAGGCGCGGGCCATCCTCCAGGTCTTCGAGGCGATCCACCAGGGCAACCCCGACCCGAAGCTGCTGGCCTACCAGTACCTGCAGATGCTCCCCGAGATCGCCAACGGCAGCTCGTCCAAGCTGTGGGTCGTGCCGACCGAGTTCACCGCCGCCCTGGGCTCCATCGCCAAGGGCTTCGGCGGGACGCCGGGCACCCCGGGCATCCCCACCGAGCCCGGCGACGACGAGGACGACGGCGGCGCCGGAGCGGCGCTGTCCTCCGCGCTGGGGCAGTCGGGGCTGCAGGACCCGGGCGAGGCGCTCGCCGAGGCGCGCCGCCAGGCCGAGGCGGCCACGGCCGACGCCACGAGCTCCGGCACCCGTTCCGGGTCGCCGTTCGACCCGTCGGTCGAGCGCGGGCAGCGTCCCGCCGGCGAGCAGCCGCCGACGGCGCCCCCGTCGCCGCGGCCGCGGACGGTCGGCGACGACGAGCCGCCGGCCCCGCCCCAGCAGTGAMELATIIGWVVLLAFVVFVITALFKMVRVVPQATALIIERLGRYQKTFDPGLHWLVPFIDKVRAGVDLREQVVSFPPQPVITSDNLVVEIDTVIYFQVTEPKSAVYEISNYITGIEQLTVTTLRNVVGSMDLEQTLTSRDQINGQLRGVLDEATGRWGVRVNRVELKSIEPPASVQGAMEQQMRAERDRRAAILTAEGVKQSQILTAEGEKQSQILRAEGDAQSAILQAEGEARAILQVFEAIHQGNPDPKLLAYQYLQMLPEIANGSSSKLWVVPTEFTAALGSIAKGFGGTPGTPGIPTEPGDDEDDGGAGAALSSALGQSGLQDPGEALAEARRQAEAATADATSSGTRSGSPFDPSVERGQRPAGEQPPTAPPSPRPRTVGDDEPPAPPQQNANANANANA
AK018_06015492hypothetical proteinATGGACGGCTGGTTGTGGTGGATCGCCGGGGCGTTCGTCCTGGCGATCGTCGAGATGATCTCCCTCGACCTGGTGTTCATCATGCTCGCGGGCGGCGCGGTCGCCGGTGGCCTCACGGCGGCGGGAGGTGGACCCGTGTGGCTCCAGATCATCGTGGCGTGCGTCGTGGCGGTGCTGCTCCTGGCGGTGCTGCGTCCCTGGCTGCTGCAGAACCTGCGCCAGCGCACCGACCTGGTCGAGACCAACGCCGCGGCCCAGGTCGGACGGCTCGCGATCGTGCTCGCCGAGGTCACCGAGACCGGCGGCCGGGTCAAGCTCTCCGGTGAGGTGTGGTCGGCCCGCCTGCCCGACGACGGCGTCCCCGACAGCAGCGACCGGATCCCCGAGGGCGTGGAGGTCCGGGTCGTCGCCATCGACGGCGCGACCGCGGTCGTGACACCCGCGTCCTCCCCGAACTCACCGACCACCGACGACGGCGGTCGGCTCGTCTGAMDGWLWWIAGAFVLAIVEMISLDLVFIMLAGGAVAGGLTAAGGGPVWLQIIVACVVAVLLLAVLRPWLLQNLRQRTDLVETNAAAQVGRLAIVLAEVTETGGRVKLSGEVWSARLPDDGVPDSSDRIPEGVEVRVVAIDGATAVVTPASSPNSPTTDDGGRLVNANANANANA
AK018_06016798ylmA_2COG1119putative ABC transporter ATP-binding protein YlmAATGAGCGCGGTACTCGACCTGCAGGGCGTCACCGTCCGACGCGGCACCTCGACCATCGTCGACAGCATCGACTGGACCGTCTCCGAGGGGGAGCGGTGGATCGTGCTCGGGCCCAACGGCGCCGGCAAGACCACCCTGCTGCAGATCCTCGCCGCCCGGTCGCACCCGACCGCGGGGACCGCGACGCTGCTGGGCGAGCAGCTCGGCAGGACCGACGTGTTCGAGCTGCGTCCGCGGATCGGGTTCTCCTCGGCGGCGCTGGCCGACAAGATCCCGGCGGGGGAGACGGTGCGCGACGTCGTCCTGACGGCGGCGTACGGCGTCACCGGGCGGTGGCGCGAGGAGTACGAGGAGCTCGACGAGAAGCAGGCGCAGGACCTGCTCGCCGCCTTCGACGTCGGCGACCTGATCGACCGGCACTACGGCACCCTGTCCGAGGGGGAGCGCAAGCGGGTCCAGATCGCCCGCGCGCTGATGACGGACCCCGAGGTGCTGCTGCTCGACGAGCCCGCCGCCGGGCTGGACCTGGCCGGTCGCGAGGAGCTCGTGGGGGCGCTGGCCGAGCTGGCCGGGGACCCGGCCTCGCCGGTCCTGGTCGTGGTCACCCACCACGTGGAGGAGATCCCGCCGGGGTTCACCCACCTGCTGCTGCTCGGCGACGGCCACGTGCAGGCGTCCGGACCCCTCGAGGAGGTCCTCACCGCCGAGAACCTGTCGAAGGCGTTCGGCATGGACCTGCTGGTCGCGCACGGGGGCGGGCGCTGGCTGGCGCGCGCCGCACGCCCCGCCGGCCGCTGAMSAVLDLQGVTVRRGTSTIVDSIDWTVSEGERWIVLGPNGAGKTTLLQILAARSHPTAGTATLLGEQLGRTDVFELRPRIGFSSAALADKIPAGETVRDVVLTAAYGVTGRWREEYEELDEKQAQDLLAAFDVGDLIDRHYGTLSEGERKRVQIARALMTDPEVLLLDEPAAGLDLAGREELVGALAELAGDPASPVLVVVTHHVEEIPPGFTHLLLLGDGHVQASGPLEEVLTAENLSKAFGMDLLVAHGGGRWLARAARPAGRPGPT0003760_3557DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
AK018_06017768hypothetical proteinGTGGAAGCGAGCAACCTCCTGCCCCGCAGCGTCGTCCTGGCGCTGTGGCTCCAGGCCGTCGGCGCCTCGCACGGCGTGGCCGTGCGGTCGGTGACCGACGACGACGAGCCGCACACCGTCGTCGGGCTGCCCGGGTCCGCGGACACGTCCGGCACCCTGGCCGACCTCGTCGCCGCGTTCTCGACGGGTCCGCGCGAGGTGTGCGCCCTGCTGCCCGCCCCGGGCGACCCGTCCGGGGTGCCCGCACCCGCCGCCCACGACGCCGTCGAGTCCGGCGAGTGCGTGCTCGTCTCGACCGCCGAGGGGTCCTGGGCCGCGGTGCCGCACGTGACCGCCTTCGGCAGCGCGCTCGAACCGGGTCACCTGGTGTCCTGGGAGATCATCGCCGTGCCCCCGTGGTCGACCCTGGTGGCCGGCACCGTGGGCTCGCTCGCCGACGCCGAGCGCGAGCTGCGCAGCAGCCTGATCGTCGCCACCGACGCCCTGGACTCCCTCGACGTGGCGCGCTGGCGCGACGACGCGGCCGACGCCATCGAGCGGCTGCGCTCCTCGACGACGGCCGGCTGGCCCGTCCCCGAGCTCGAGGGGCGGCGCGCCCGCGTGCTCCAGCTCGCCTGGCGCCTGCTGCAGATCGTCGAGCTGGCGACCGCGGACGACGGCGGCGCGGTGAACCTCTGGCAGGCCGACCAGCGCTCCACCGCGCTGCGCGAGGTCGACCGCACGGCCCGGCGGGCGCTGGGCGCGGCGACCTACGCCGCGGTGCGGTAGMEASNLLPRSVVLALWLQAVGASHGVAVRSVTDDDEPHTVVGLPGSADTSGTLADLVAAFSTGPREVCALLPAPGDPSGVPAPAAHDAVESGECVLVSTAEGSWAAVPHVTAFGSALEPGHLVSWEIIAVPPWSTLVAGTVGSLADAERELRSSLIVATDALDSLDVARWRDDAADAIERLRSSTTAGWPVPELEGRRARVLQLAWRLLQIVELATADDGGAVNLWQADQRSTALREVDRTARRALGAATYAAVRNANANANANA
AK018_06018621hypothetical proteinGTGAGCCGGCAGGGCCGTCGACGGCGGCAGGGGTTGTGGGACGACGTGCGGGTCCGTGGGCTGAGCCCCGAGGAGCAGGTCCGTCCGGCGGCGTTCCTGCGCGCGGGCACGGTGGACGCGGCGACGCTGCTGGTGCTGCGCGCGCTGCGCCGGGCGGTGTGGCCCCTGGTGGTGATCGGCCTCGCGGTGGCGTGGGTGAGCGGCGACCTCACGAGCGGGGCGATGAGCTGGCTGACCGACCCGACGCAGCTGGTCGACCCCGCGGCGCTGCTCGGTCTGATCCTGTCGCCCCTGGTCGTCTTCGCGGCGGGAGTGGCGCTGCGCATCGTCGTCAACCTGGCCGGCCTCGCGATCGCCGCACCGCTGGCGCAGGGAGCCTGGGTGGCAGGGACGGAGGCCGTCTCCCGGGGGCGGCGGCTGATCGACCTGGCCTACCTCTCGGCGGGCTACCGGTCGGTGCGCTGGTCCTACGCGGTCCAGCGCGAGGCGGTCGCCCGGTGCGGGCTGCTGGGGCGACAGCTCGCGTTCGTCGAGACGCTGGGGCGCATCGCGCTGCCCGTGTCGATCGTCGTCTTCGTCTGGATCATCTACGACAGCGTGTCGACGGGCACCGTGGGCTGAMSRQGRRRRQGLWDDVRVRGLSPEEQVRPAAFLRAGTVDAATLLVLRALRRAVWPLVVIGLAVAWVSGDLTSGAMSWLTDPTQLVDPAALLGLILSPLVVFAAGVALRIVVNLAGLAIAAPLAQGAWVAGTEAVSRGRRLIDLAYLSAGYRSVRWSYAVQREAVARCGLLGRQLAFVETLGRIALPVSIVVFVWIIYDSVSTGTVGNANANANANA
AK018_060191227glgM_2COG0438Alpha-maltose-1-phosphate synthaseGTGAGCACCCGACCCGTCATCGACCTGCTGACCCGCGAGTACCCGCCGCACGTCTACGGCGGAGCCGGGGTGCACGTGGCCGAGCTCTCCCGCGTCCTGCGCGCCCACGCCGACGTGCGCGTGCGCTGCTTCGACGGTCCGCGTCCCGACGCCGAGGACGTGACCGGCTACGACGTGCCCGGCACGCTCACCGGCGCCAACGCCTCCCTGCGCACGCTCGGGGTGGACCTGGCGATGGCCGAGGACGTCGCCGGTGCCGACGTCGTGCACTCCCACACCTGGTACGCGAACATGGCGGGCCACCTGGGCGGACTGCTGCACGACGTCCCGCACGTGGTGACCGCGCACTCCCTGGAGCCGCTGCGGCCCTGGAAGGCCGAGCAGCTCGGCGGCGGGTACGCGGTCTCGAGCTGGGCCGAGCGCACCGCCTACCTCGGGGCGGCCGGGATCGTCGCCGTCTCGGCCGGCATGCGCGCCGACATCCTGCGCTGCTACCCCGAGCTCGACCCGGACCGCGTCCACGTCGTGCACAACGGGATCGACCTGGACGGCTGGGTCCGTCCGCACGAGGACTCCGTGGCCCGCGTCGCCGCGGAGCGCGGCATCGACACCGACCGGCCCGCCGTGGTGTTCGTCGGGCGCATCACCCGGCAGAAGGGGCTGCCGCACTTCCTGCGGGCGGCCGCCCAGCTGCCGCCCGAGGTGCAGGTAATCCTCTGCGCGGGCGCCCCGGACACCGACGAGATCATGGCCGAGGTGCGCGGGCTGGTCGACGACCTGCGCGCGGCCCGCGGCGGCGGGCCCGAGGCCGGCGTGGTGTGGATCGAGGAGATGCTGCCCCGTCCTGAGCTGTGCGCCGTGCTCGCCGCGTCGACGGTGTTCGTGTGTCCCTCGGTCTACGAGCCGCTGGGCATCGTCAACCTCGAGGCGATGGCGGTCGGGCTGCCCGTCGTGGGCTCCGCGACCGGCGGCATCCCCGAGGTCGTCGACGACGGCGTGACGGGCACGCTGGTCCCGATCGAGCAGTCCGACGACGGCACCGGGACGCCGCTCGACCCCGACCGTTTCGAGGCCGACCTGGCCGCCGCGCTGACGGACCTGGCCGGGGACCCCGTCCGGGCGGCCGCCTGGGGCGCGGCGGGCCGTCGTCGTGCGGAGGAGCACTTCGCGTGGTCCGCCATCGCCGAGCGCACGATGGACGTGTACCGCGGCGTGCTCGGCGCGTGAMSTRPVIDLLTREYPPHVYGGAGVHVAELSRVLRAHADVRVRCFDGPRPDAEDVTGYDVPGTLTGANASLRTLGVDLAMAEDVAGADVVHSHTWYANMAGHLGGLLHDVPHVVTAHSLEPLRPWKAEQLGGGYAVSSWAERTAYLGAAGIVAVSAGMRADILRCYPELDPDRVHVVHNGIDLDGWVRPHEDSVARVAAERGIDTDRPAVVFVGRITRQKGLPHFLRAAAQLPPEVQVILCAGAPDTDEIMAEVRGLVDDLRAARGGGPEAGVVWIEEMLPRPELCAVLAASTVFVCPSVYEPLGIVNLEAMAVGLPVVGSATGGIPEVVDDGVTGTLVPIEQSDDGTGTPLDPDRFEADLAAALTDLAGDPVRAAAWGAAGRRRAEEHFAWSAIAERTMDVYRGVLGAPGPT0017715_57DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017715-glgM-K16148NANA
AK018_060201245glgC_2COG0448Glucose-1-phosphate adenylyltransferaseATGGCGTCGTCACTCCCCCGGGTCCTGGCCATCGTCCTCGCCGGCGGCGAGGGCAAGCGACTGATGCCGTTGACGGCACAGCGGGCGAAACCCGCCGTGCCGTTCGGGGGGATCTACCGGCTCGTCGACTTCGCCCTGTCGAACATCATCAACTCCCACTACCTGCACGTCATCGTGCTGACGCAGTACAAGTCGCACTCGCTGGACCGGCACATCTCCAAGACGTGGCGCATGTCGGCCCTGCTGGGCAACTACGTCTCCTCGGTGCCCGCCCAGCAGCGGGTCGGCAAGCACTGGTACCTCGGCTCGGCCGACGCCATCCACCAGTCCCTCAACATCATCGAGGACGAACGCCCCGACATCGTCGTCGTCGTGGGCGCCGACCACGTCTACCGCATGGACTTCTCCCAGATGGTCGACGCGCACATCGAGTCCGGCGCCCGGGCGACGGTGTCCGCGATCCGCCAGCCCATCGCGATGGCGGACCAGTTCGGCGTCATCGACGTCGACCCGCAGGACCCCACGCGCATCCGCGAGTTCCTCGAGAAGCCCGTCGACCCCGTCGGCCTGCCCGACTCCCCCACCGAGGTGCTCGCCTCGATGGGCAACTACGTCTTCGACGCCGACGCCCTGGTCGAGGCCGTGACCAAGGACGCGGCCGACCCGGACTCCCGTCACGACATGGGGGGCGACATCATCCCCGCGTTCGTCGACGAGGGGACGGCGGGCGTGTACGACATGATCCGCAACGAGGTGCCCGGCGCGACGGACCGCGACCGCTACTACTGGCGCGACGTGGGGACCATCGACGCCTACTTCGACGCGAACAAGGACCTCATCGCCGTCCAGCCGGTCTTCAACCTCTACAACGAGGACTGGCCGCTGTACACGGGGTACACGGGGCTGCCGCCGGCGAAGTTCGTGCACGCCGGCCCGGGCCGGCTCGGCCACGCGGCCGACTCGATCGTCTCACCTGGTGTCCTCGTCTCCGGCGCGACGGTCGCAGGGTCCATCCTGTCCCCGGGCGTGCACCTGCACTCCTGGGCGACGCTGACCGACTCGGTCGTGATGGACGGCGTCCAGGTGCACCGGCACGCCCAGGTCCACCGCGCCATCCTCGACAAGAACGTGGTGGTGGACGAGCGGGCACGGATCGGCGTCGACCACGAGGAGGACCGCGCCCGCGGGTTCACCGTCACCGACTCGGGGATCACCGTCGTCCCGAAGGGTTCCCACGTTGCCTGAMASSLPRVLAIVLAGGEGKRLMPLTAQRAKPAVPFGGIYRLVDFALSNIINSHYLHVIVLTQYKSHSLDRHISKTWRMSALLGNYVSSVPAQQRVGKHWYLGSADAIHQSLNIIEDERPDIVVVVGADHVYRMDFSQMVDAHIESGARATVSAIRQPIAMADQFGVIDVDPQDPTRIREFLEKPVDPVGLPDSPTEVLASMGNYVFDADALVEAVTKDAADPDSRHDMGGDIIPAFVDEGTAGVYDMIRNEVPGATDRDRYYWRDVGTIDAYFDANKDLIAVQPVFNLYNEDWPLYTGYTGLPPAKFVHAGPGRLGHAADSIVSPGVLVSGATVAGSILSPGVHLHSWATLTDSVVMDGVQVHRHAQVHRAILDKNVVVDERARIGVDHEEDRARGFTVTDSGITVVPKGSHVAPGPT0025885_2271DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0025885-glgC-K00975NANA
AK018_06021723serB_2COG0560Phosphoserine phosphataseTTGCCTGACCGCGCCCCCGACGCGCCCCTGCCCGACCCGTCCGACGCACCGCACCGGCGCCTGGTCGTCACCGACGTCGACTCGACGTTCCTGACGCAGGAGGTCATCGAGCTCATCGCCGAGCACGCCGGCACCCGCGAGCAGGTCGCCGAGGTCACCGAGCGCGCGATGCGCGGCGAGCTCGACTTCGCCGATTCGCTGCGCGAGCGCGTGGCCACCCTGGCCGGCGTCCCCGTCAGCGCGCTGGAGGCGGTCCGCGACGCCGTCGTGCTCACGCCGGGTGCGGCGGAGCTGGTCGCCGAGGTGCAGCGGCGCGGATGGGAGTTCGGGCTCGTCTCGGGCGGGTTCGCCGAGATCCTCGAGCCGCTGGCGGACTCGCTGGGCATCACCCGGTGGCGCGCCAACCGGCTCGAGGCGGTCGACGGCGTGCTGACGGGCCGCACGACGGGACCGGTCGTGGACCGCGCCCTGAAGGAGTCGACGCTGCGCGAGTGGGCGGCCGACCTGGGCCTGTCGATGGCCGACACCGTGGCCGTGGGCGACGGGGCCAACGACCTGGACATGATCGGTGCCGCCGGCATCGGGGTCGCCTTCGCGGCCAAGCCGGCCGTGCGGGAGCAGGCGCCCTACTGTCTCGACGGTCCCCGGCTGGACGCGGTGCTGGACATCGTCGACGAGGTCGACGCCGGGCGTCGGCCCGTCACGGACGCCCAGCCCTCCTGAMPDRAPDAPLPDPSDAPHRRLVVTDVDSTFLTQEVIELIAEHAGTREQVAEVTERAMRGELDFADSLRERVATLAGVPVSALEAVRDAVVLTPGAAELVAEVQRRGWEFGLVSGGFAEILEPLADSLGITRWRANRLEAVDGVLTGRTTGPVVDRALKESTLREWAADLGLSMADTVAVGDGANDLDMIGAAGIGVAFAAKPAVREQAPYCLDGPRLDAVLDIVDEVDAGRRPVTDAQPSPGPT0014525_44DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
AK018_06022558hypothetical proteinATGAACGTGTCGTCGACGCACTCGCCGGACGTCCCGCGTCAGGGGCGCCGTCTCGTGCTGCTGCGGCACGCCAAGGCCGAACCGGCCCGCGACCCGCTCCCGGACGCCGACCGGCCGCTCGCGCTCAAGGGGCGCAAGCAGGCCGGTCGGGTCGGGATGGCGCTCACGGCGGCCCACCTCGTCCCCGACCTCGCGCTCGTCTCGTCGTCGCTGCGCACCCGACAGACCTGGGACCTGGCCGCCGCGCACCTCGCGGGCCGCGACGCGATCACCGTGGACGTGCGCGACGAGCTGTACGCGGCCAGCATCCGCGACGTGCTCGAGCTCGTGCGCGGGGCCGGCAGCGACGCGACGACGGTGCTCGTCGTCGGGCACGAGCCCACGATGGCGGCCACGGCCGCCTACCTGGCCGACCGGGACTCCGACGACGCCGCGCTCGCGCAGGTGCGCGTCGGCGTGCCGACGGCGACCTACTCGGTGCTGCACGCCGAGGACGTGCCCTGGTCGCAGTGGGGCAAGAAGTCCGCGACCCTGCTGCGGGTCGGCCGGCCGTCCTGAMNVSSTHSPDVPRQGRRLVLLRHAKAEPARDPLPDADRPLALKGRKQAGRVGMALTAAHLVPDLALVSSSLRTRQTWDLAAAHLAGRDAITVDVRDELYAASIRDVLELVRGAGSDATTVLVVGHEPTMAATAAYLADRDSDDAALAQVRVGVPTATYSVLHAEDVPWSQWGKKSATLLRVGRPSNANANANANA
AK018_06023768inhA_2COG0623Enoyl-[acyl-carrier-protein] reductase [NADH]ATGGCTCTGCTCGACGGCAAGAAGCTGCTCATCACGGGCGTCCTCACGGACAGCTCCATCGCCTTCCACGCCGCACGCCTCGCCCAGGACGAGGGCGCCGAGGTCGTCCTGACGTCCTTCGGGCGCCAGATGAAGCTCACGCAGGCCTTCGCCAAGCGCCTGCCCGTCACCGCCCCCGTCGTCGAGCTGGACGTCACCAGCGCCGAGGACCTCGGGGCGTTGGCGGAGCGCGTCGGGGAGCACACCGACCGCATCGACGGCGTCGTGCACTCGATCGGTTTCGCCCCCCAGAGCGTCATGGGCGGCAACTTCCTCACCGCCGAGTGGGACGACGTCGCCACCGCGATGCAGATCTCGACGTTCTCCTACAAGTCGCTCATCACGGCGGCGCAGCCGCTGATGACCGACGGCGGCTCCTACGTGGGCCTGACCTTCGACGCCCAGTTCGCCTGGCCGGTCTATGACTGGATGGGCGTGGCCAAGGCCGGCCTGGAGTCCGCGAACCGCTACGTGGCCCGCGACCTGGGCCCCGAGGGCATCCGCGCGAACCTCGTCTCGGCCGGCCCGATCCGCACCACCGCGGCGAAGTCCATCCCGGGCTTCGAGACGATGGAGGACGCCTGGCCGCAGCGCGCCCCGCTCGGCTGGGACCAGACGACCGCCGAGCCGGCCGCCCGCGCCGTCGTCGCGCTCCTGTCCGACTGGTTCCCGGCCACGACCGGCGAGATCGTGCACGTCGACGGTGGCCTGCACGCGATGGGGCAGTGAMALLDGKKLLITGVLTDSSIAFHAARLAQDEGAEVVLTSFGRQMKLTQAFAKRLPVTAPVVELDVTSAEDLGALAERVGEHTDRIDGVVHSIGFAPQSVMGGNFLTAEWDDVATAMQISTFSYKSLITAAQPLMTDGGSYVGLTFDAQFAWPVYDWMGVAKAGLESANRYVARDLGPEGIRANLVSAGPIRTTAAKSIPGFETMEDAWPQRAPLGWDQTTAEPAARAVVALLSDWFPATTGEIVHVDGGLHAMGQPGPT0008370_3443DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008370-fabI-K00208NANA
AK018_06024726fabG_53-oxoacyl-[acyl-carrier-protein] reductase FabGGTGGCAGAGCAGGCAGCAACCGGTGGCCGCACCGTGGTCGTGACCGGGGCCGCGCGCGGCATCGGGCGGGCGATCGCGGAGCGTTTCGTCGCCGCCGGCGACACCGTCGCGACGATCTACCGCGGGGGAGACCTGCCCGAGGGGGTGCACGGGTTCGTCGCCGACGTCACCGACAGCGTGGCCGTCGACGCGGCGTTCACCGAGATCGAGCAGCAGCTCGGCGCACCGACGGTGCTCGTGGCCAACGCCGGCGTCACCCGCGACCAGCTCTTGATGCGGATGAGCGACGAGGAGTTCGACCAGGTCGTCGACGTCAACCTCACCGGGACGTTCCGCTGCGTGCGGCGCGCCTCGAAGGGCATGATCCGCGCCCGGTCCGGCCGCATCGTCCTCATCGGCTCCGTCGTCGGGCTCTACGGCGGCCCGGGCCAGGTCAACTACTCCTCGACCAAGGCCGCCCTGGTGGGCATGGCCCGGTCCATCACGCGCGAGCTCGGCGGGCGCGGGATCACCGCGAACGTCGTCGCGCCCGGCTTCGTGGAGACCGACATGACCGCCGCGCTGCCCGAGGACACCCAGAAGAAGTACAAGTCCTCGATCCCCGCCGGACGGTTCGCCGACCCGGCCGAGGTGGCCGGCGTCGTCGAGTTCCTCGCCTCCGACGCCGCCGCCTACGTCTCCGGTGCCGTCGTGCCCGTCGACGGCGGGCTCGGCATGGGGCACTGAMAEQAATGGRTVVVTGAARGIGRAIAERFVAAGDTVATIYRGGDLPEGVHGFVADVTDSVAVDAAFTEIEQQLGAPTVLVANAGVTRDQLLMRMSDEEFDQVVDVNLTGTFRCVRRASKGMIRARSGRIVLIGSVVGLYGGPGQVNYSSTKAALVGMARSITRELGGRGITANVVAPGFVETDMTAALPEDTQKKYKSSIPAGRFADPAEVAGVVEFLASDAAAYVSGAVVPVDGGLGMGHPGPT0003180_21916DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
AK018_06025333hypothetical proteinGTGCACTCGATCACGGCCGTCCCGACGAACCTGTCGGACGACCAGCACCGGCGCATGCGGGCGTACCTCGTCCAGATGGGCCTGCGCGTGGTCCTCATCCTGACGGCGGTGCTGCTCGTCGACGGCTGGCTGCTGTGGGCCTGCATCGCCGGCGCCGTGATCCTGCCGTACACGGCCGTGCTCTTCGCCAACGCGGGCCGGGACCGCAGCGCGCGCGACGTCGAGTCGTTGCCGCCGGAGATGCCGCGCGAGCTGCCGACGACGCCCACGGCGCCACGGGACGACGTGCGCATCGTGGAGCACACCGACGACTCCGACCGGAAGGACGACTGAMHSITAVPTNLSDDQHRRMRAYLVQMGLRVVLILTAVLLVDGWLLWACIAGAVILPYTAVLFANAGRDRSARDVESLPPEMPRELPTTPTAPRDDVRIVEHTDDSDRKDDNANANANANA
AK018_06026240hypothetical proteinATGGACGTGCTCGGCCTGGGGGCCGACCCCGTCGCCGACGACGCCCTGGTCTGCTCGGCCAAGGGGTGCCGTGACGAGGCGCGCTGGGGCCTGCTGTGGAACAACCCCAAGCTGCACACGCCGGAGCGCCGCAAGGTGTGGCTCGCCTGCTCCGACCACCGTGACCACCTCGAGCGGTTCCTCGGCGCCCGAGGCTTCTGGAAGCAGACCGTCGGCGTCGACGAGCTGGAGCGTGCGTGAMDVLGLGADPVADDALVCSAKGCRDEARWGLLWNNPKLHTPERRKVWLACSDHRDHLERFLGARGFWKQTVGVDELERANANANANANA
AK018_06027897COG3346putative SURF1-like proteinGTGAGGCGGACCCGCCGGCAGTGGGTCACGCTCGGTCTGGCCGCCGTGCTGCTCGCCGCCCTGTGCGTCCTGGCGGCCCTGTGGCAGTGGCACCGCTACACCGACCGGCAGGCGCAGATCGACCTCGTCGAGGCCAACTACACCGCTGAGCCGGAGCCCCTGGCGACGTTCGTCGGCGGACCGGGCGAGGAGCTGGCGCCGCGGGACGTGTGGCGCCCCGCCGTCGTCACCGGCGAGTACGACCCCGCCGGTACGGTGCTGCTGCGCAACCGCCCCGTCGGCGGCACGCCCGGCTTCCATCTGCTGGTGCCGCTGCGCACGGCGCTCGGGGGCCAGGAGGTCGTCCTCGTCGTCGACCGGGGGTTCGTCCCGCTCGGCGCCGACGCCGGCGAGCCGGCGTTCGTGCCCGACCCGCCCGACGGCGAGGTCACCGTGACCATGACGCTGCGCGCCGACGAGCCGGCGTCCGACCGGGGCGCGCCGTCGGGCACGGTCGTGCGGATCAACACCGAGCAGGTGCTGGCCCAGGGGGCCTCCGACGGCGCGGCGACGTCGGCGGCGACGGTCGGGGCCTACGGACAGATGCGCAGCGAGGACCCGGCGGCGGCCGAGACGCCCGTGGCGCTCCCCCGCCCCGACACCGACCCCGGCTCGCACCTGAGCTACACGTTCCAGTGGGCGATCTTCGCGCTCGGGGCCGTCGGCGGCTACGTGCTGCTGTGGCGCCGCGAGACCCGGGCGGCCACCGTCACGGCCGGCGAGCTGCTGGCCGCCGACGACCCCGAGGGCACCTCACGACCGCGACGACCGCGCCGTCGGCACGTCGACGAGGACTACGAGGACGCCGTCCTGGACGCCGCCCACCAGGCCCCGGCGAGATCGACGCACCCGGACTGAMRRTRRQWVTLGLAAVLLAALCVLAALWQWHRYTDRQAQIDLVEANYTAEPEPLATFVGGPGEELAPRDVWRPAVVTGEYDPAGTVLLRNRPVGGTPGFHLLVPLRTALGGQEVVLVVDRGFVPLGADAGEPAFVPDPPDGEVTVTMTLRADEPASDRGAPSGTVVRINTEQVLAQGASDGAATSAATVGAYGQMRSEDPAAAETPVALPRPDTDPGSHLSYTFQWAIFALGAVGGYVLLWRRETRAATVTAGELLAADDPEGTSRPRRPRRRHVDEDYEDAVLDAAHQAPARSTHPDNANANANANA
AK018_060281599yheS_3COG0488putative ABC transporter ATP-binding protein YheSTTGATCACGGCCCACGGCGTCGAGTTGCGCTTCGGCGCGCGCACCCTGCTGCACGAGGCCACGTTCCGCGTGGCCCCGGGCGACCGTGTCGGCCTGGTCGGTCGCAACGGCGCCGGCAAGACCACGCTCACCAAGACCTTGGCGGGCGAGACGCTGCCGGCGGGCGGGACGATCACGCGCGGGAACGAGATCGGCTACCTGCCGCAGGACCCGCGCACCGGTGACCTCGACGTCGTGGCGATGGACCGGGTGCTCAGCGCTCGCGGCCTCGACGTCGTCGTGACGAGGATGCGCCAGGCCGAGAAGGAGATGGCCAGCGAGGACCCGCAGGTCCAGGCCGCGGCGCTGGAGCGGTACCCGAAGCTGGAGACGCGCTTCCTCGCGGCGGGCGGCTACTCGGCCGAGTCCGAGGCGCACCGCATCACGAGCAACCTGGCGCTCGACGACCGGATCCTCGCCCAGCCGCTGCACACCCTCTCCGGCGGCCAGCGCCGCCGCGTCGAGCTGGCGCGGATCCTGTTCTCCGGCGTGGACACGTTGCTGCTCGACGAGCCCACGAACCACCTCGACGCCGACTCCATCGTGTGGCTGCGCGAGTACCTGCGGTCCTACTCCGGGGGGTTCATCGTGATCTCCCACGACGTCGAGCTGCTGCGCGCCTGCGTGAACAAGGTCTTCCACCTCGACGCCAACCGCGGCGAGCTCGACCAGTACAACCTGGGCTGGGACAAGTACCTGGAGCAGCGCGAGCAGGACGAGCGCCGTCGTCGGCGCGAACGCGCCAACGCCGAGAAGAAGGCCGAGACGCTCATCGCCCAGGCGAACAAGATGCGCGCCAAGGCGACCAAGGCGACCGCCGCGCAGAACATGCTTAAGCGGGCCGAGCGGATGCTCGCCGGCACCGAGGGCGAGCGGCAGACGGACAAGGTGGCCGCGCTGCGGTTCCCGAAGCCGTCGCCCTGCGGCAAGACGCCCCTGATGGCACGGGAGCTGTCCAAGAGCTACGGCTCGCTGGAGGTCTTCACGGGCGTCGACCTGGCGATCGACCGGGGATCGCGGGTCGTCATCCTCGGGCTCAACGGTGCGGGCAAGACGACGATGCTGCGGATGCTCGCCGGTGTGGAGACACCGGACACGGGCGAGATCCTGCCGGGCCACGGGCTGAAGATGGGCTACTACGCCCAGGAGCACGACATGCTCGACATGGACGCCACCGTCGTGGAGAACCTGCGGCACGCCGCCCCCGACCTGACCGACACCCAGGTGCGCACCACGCTGGGGTCGTTCCTGTTCAGCGGCGACGACGCCGACAAGCCGGCGCACGTGCTCTCCGGCGGGGAGAAGACCCGCCTGGCGCTGGCCACGCTGGTCGTCTCGAGCGCGAACGTGCTGCTGCTCGACGAGCCGACGAACAACTTGGACCCGGCCTCGCGCCGGGAGATCCTCGGAGCGCTGAACACCTACGAGGGTGCGGTCATCATGGTCACCCACGACGACGGCGCGGTCGACGCGCTGAACCCGGAGCGGGTGCTCCTGCTGCCGGACGGCGACGAGGACCTGTGGTCGGACGACTACGCCGAGCTCGTCTCCCTGGCGTGAMITAHGVELRFGARTLLHEATFRVAPGDRVGLVGRNGAGKTTLTKTLAGETLPAGGTITRGNEIGYLPQDPRTGDLDVVAMDRVLSARGLDVVVTRMRQAEKEMASEDPQVQAAALERYPKLETRFLAAGGYSAESEAHRITSNLALDDRILAQPLHTLSGGQRRRVELARILFSGVDTLLLDEPTNHLDADSIVWLREYLRSYSGGFIVISHDVELLRACVNKVFHLDANRGELDQYNLGWDKYLEQREQDERRRRRERANAEKKAETLIAQANKMRAKATKATAAQNMLKRAERMLAGTEGERQTDKVAALRFPKPSPCGKTPLMARELSKSYGSLEVFTGVDLAIDRGSRVVILGLNGAGKTTMLRMLAGVETPDTGEILPGHGLKMGYYAQEHDMLDMDATVVENLRHAAPDLTDTQVRTTLGSFLFSGDDADKPAHVLSGGEKTRLALATLVVSSANVLLLDEPTNNLDPASRREILGALNTYEGAVIMVTHDDGAVDALNPERVLLLPDGDEDLWSDDYAELVSLANANANANANA
AK018_06029873nirCCOG2116Nitrite transporter NirCATGGATGATCAGGGCACGCTCTTCCCTGGCAAGCAGTTCATCTCCACGGTGCTGGACGCGCTGCGGACCAAGTCGACGATGAGCGGCGGGCTGGCACACATCTACCTCATGCGTGCCGCGATGGCCGGTGCACTCATCGGGATCATGTACATCACCTACTACACGGTGATCGCGACGTTCGCGGGGATCGGGGACGGCGACCTGGCCGGCCTCGGCAGCATGGTCGGCGCGCTCGTGTTCGGCTTCGCGCTCGTGTTCATCTACTTCAGCAAGTCCGAGCTGCTGACGTCGAACATGATGATCGTGTCGGTCGGGCGGTACTACAAGAAGATCTCCGCCTGGCGCGGGCTGCGCGTCCTACTGCTGTGCTACCTGGGCAACATCCTCGGCGGCCTCGCCGTCGCGCTGGCCGTGCTCGGCTCCACGCTCGGCGACGGCGCGGTGGGCGAGCAGATGCAGCACTCCGTGGACCACAAGCTCGGCTACCTCACCGAGGGCCTGGCGGGGTGGTCGGACCTGTTCGTCCGTGCGGTGCTGTGCAACTTCATGATCAACCTCGGCATGCTGCTCGTCTACAACGGCTTCGTGAAGAACGACGGCACCAAGGCGCTCATGATGATCATGAGCGTGTTCGTCTTCGCGTTCGTCGGCTTCGAGCACTCCGTGGCGAACACCGCGCTGTTCCTCATGGTCGGTCTCCACGACGGCATCGACGTCGGACTCGCGCTCGGCAACCTCGCCGTCGTGCTGGCGGGGAACTTCATCGGCGGTGGGCTGCTCATCGGCTACTACTACTCGTTCGCCAACGACGACCGGCGGTACCTGCGCAAGCAGGGCGCCCGCGCCGAGGCCGAGGCGGACACCGGGGCCTGAMDDQGTLFPGKQFISTVLDALRTKSTMSGGLAHIYLMRAAMAGALIGIMYITYYTVIATFAGIGDGDLAGLGSMVGALVFGFALVFIYFSKSELLTSNMMIVSVGRYYKKISAWRGLRVLLLCYLGNILGGLAVALAVLGSTLGDGAVGEQMQHSVDHKLGYLTEGLAGWSDLFVRAVLCNFMINLGMLLVYNGFVKNDGTKALMMIMSVFVFAFVGFEHSVANTALFLMVGLHDGIDVGLALGNLAVVLAGNFIGGGLLIGYYYSFANDDRRYLRKQGARAEAEADTGANANANANANA
AK018_060301497hypothetical proteinGTGACGGCCCACGCCCCCCGGGTCTCCCGAGCGATCTCGGCCGCCCTCGCCGCCACGACGATCGTGGTCGGCCTGGCCGGGCGCACCGTCCTCCCCGAGGCGGTCGGCGGCCCGCTCGGCGACGCGCTCTCCGCGGTGCTGGTCGTCTGGCTCGTGGTGCTGCTGGCTCCCCGGACGCCCCCGGCGGTCGCGGCCTCGGTGGCGCTCGCGGTCTGCGCGGTGATCGAGGCGTCCCACCTGACCCCGCTCGCCCCCGCGCTCCTCGACCGGTGGCCCACGGCCCGGTTCGTCGTCGGCACGACCTTCGCGGTGCAGGACCTGGCCTGGTACGCGCTGGGGGCGGCCCTGGCCGGGACGCTCGTCGCCGCCGTGACGCCCCGCCGGGGTGGGACCGGCCAGACGCTGCGGCACGCGCCCACCGCCGCCGCGGTGCGGGGCCGCCGTGCCGCCTCGGTGGTCGCCCCGCTGACGGTCCTCGGTCTTCTCGTGGCGGGCGGCGTCGTCCTCGGCCGGACCGTCGAGGCCGAGGCGGTCGAGCTGACCGCCGAGGTCACCACCGCGCAGCGGGAGCTGGGCACCTCCGCGGACAGGGTGGCCGACGACGCCGTCCGGGAGCGGCTCGCCGCGGCCCTCGACCGCGCGGGGTCGGTGCTCGGGGCCACCCCCGTGCTGCACCGGTTGCCGGGGGACGCCCGGGCGGCGGCCGTCGACCTTCAGGACGCGATCGAGACGGTGCGGGCGTCGCGGCGGGAGCACGCGACCGACCGGGCGACGACCGCCCGCGAGGAGGCGGCCCCCGTGCGCCGCCGTGCCGAACGCGTGCTGGATGCGGCCGACGCGCTCGCCGAGTCGGGGCAGGACGCCGGTGAGGCGACCCGGGCAGCGGTCCGTGACGCGCTGGGAGCCGTCGACGACACGGTCGCCCTCGCCGACCCGGAGCGCCTCGCCGAGATGCCGCTCGCCGACCTCGAGGAGGTCGCCCCCGTGCTCCGCGCGCGTCAGGACGTCGTCGGCACGGCGACCGCGGAGCTGATGTCGGCCCAGGAGGCCGTCGTCTGCCCGTTCCCCGACCAGGTCTGGTTCCCCGAGGGCGGCCGGATCGCCACCGACGATCTCGCGCCGATCCCGTGGGCACCGGAGCACTCGGTGCGGGCCGACCTCCTCGACGGGCTCGTCGCGCTCGACGAGGCCTATCTCGCGCAGTTCGGGGCGCACCTCGTCGTGAACTCCGCGTACCGGAGCGTGGACGAGCAGCGCGAGGTCTACCGGCCCGAGAACCCGAACCCGTTGGCGGCGCCGCCCGGGTGCTCGAACCACGGTCTGGGCACTGCCGTCGACCTCAGCGTGGGACCTGAAGGGTTCGACGGCGCGCGGTTCGCGTGGCTGACGGAGCACGCCGAGCAGTACGGCTGGACCCACCCGGACTGGGCCGGGCCGACCGGCCGCCTCCCGGAGCCCTGGCACTGGGAGTCGGTGGCGACCCCGGACGCCTACTGAMTAHAPRVSRAISAALAATTIVVGLAGRTVLPEAVGGPLGDALSAVLVVWLVVLLAPRTPPAVAASVALAVCAVIEASHLTPLAPALLDRWPTARFVVGTTFAVQDLAWYALGAALAGTLVAAVTPRRGGTGQTLRHAPTAAAVRGRRAASVVAPLTVLGLLVAGGVVLGRTVEAEAVELTAEVTTAQRELGTSADRVADDAVRERLAAALDRAGSVLGATPVLHRLPGDARAAAVDLQDAIETVRASRREHATDRATTAREEAAPVRRRAERVLDAADALAESGQDAGEATRAAVRDALGAVDDTVALADPERLAEMPLADLEEVAPVLRARQDVVGTATAELMSAQEAVVCPFPDQVWFPEGGRIATDDLAPIPWAPEHSVRADLLDGLVALDEAYLAQFGAHLVVNSAYRSVDEQREVYRPENPNPLAAPPGCSNHGLGTAVDLSVGPEGFDGARFAWLTEHAEQYGWTHPDWAGPTGRLPEPWHWESVATPDAYPGPT0024055_52DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_060311170araR_2COG1609Arabinose metabolism transcriptional repressorATGCCGACCGGCCCGTCCCGGCCCGGTGCACCGACCTCGCCGGCCGGTGCGCCGCCCGCCCAGCTCGGCGCGCGGCGCCGGGAGCACGTCCTGCGCCGGCTGCGGACCGACGGCACGGTGCGGGTGAACGACCTCGCCGCCGAGCTCGGTGTGTCGGCCATGACCGTCCGGCGCGACCTCAACGTGCTCGCGACGCGCGGGCTGCTCGACCGCGTCCACGGGGGCGCGACGCTCCCGGACCCCTTCGTCCCGGCGTCCGAGCGGGGGACGCCGGCCGGGCGGTCGCGCTTCACCGTCGGACTGGTGGTGCCGCAGCTCGACTACTACTTCCCGCCCCTGGTCGCCGGGGCCCGGGCAGCCGCCGCGGCGGCGGGGGTCCGGCTCGTCATCCGCACGACCGCCTACGACCCGGACGAGGAGCGGCACCAGGTCCGGCGCCTGGCCGAGACGCCGGGCATCGACGGTCTCGTCGTGGCTCCTGACGTCCGCGGTGCCGCCGGGGCCGAGCTGCTCCGCCGGCTGGACCGCCTGCCGCTGCCCGTGGTGCTGGCCGAGCGGCAGCCGCCCGGTCCGATGCCGCTCGCCCGCCTGGAGTGGGTGGCGGCGGACCACGTGGCGGGCGCGGCGACCGCGGTGTGGCACCTGCACGCCCAGGGCCACCGGAGCATCGGGCTGCTCACCCTGGCCGCGTCGACGACGTCGGACCTGCTGCACCGTGGGTGGTCCGACGCCCTGCGGTCGCTCGACGTCGATCCCGCGCAGCAGCTCACCGGTCCGACGGACGGCTTCGGGGCGCCCGGCCGTGCCGAAGTCCTGGCCGGCGTCCTCCACGACCTCGCCGCGTCCGGGACGACGGCGGTGGTCGTCCAGGGGGACCCGGCCGCCGTCAACCTGGCCCAGTACTGCGCCGAGGCCGGTGTCGTGGTGCCGGACGACCTGGCGATCGTGGCCTACGACGACCAGGTCGCCGAGCTGGCCGACCCGCCGCTGACCGCCGTCCGCCCGCCGCTGCCGGAGGTGGGGCGCCTGGCCGTGGAGACCGTCGTCGCGCGGCTGGTCGAGGGTGCGGAGCGGTCGGTCCACCGGTCGCTCATCGCGCCCGCGCTGGTGGTGCGGGCGTCCAGCACGGCCGTCGCCCGGTCGTCCGATGCCGTAGAGTCCTGCCCGTGAMPTGPSRPGAPTSPAGAPPAQLGARRREHVLRRLRTDGTVRVNDLAAELGVSAMTVRRDLNVLATRGLLDRVHGGATLPDPFVPASERGTPAGRSRFTVGLVVPQLDYYFPPLVAGARAAAAAAGVRLVIRTTAYDPDEERHQVRRLAETPGIDGLVVAPDVRGAAGAELLRRLDRLPLPVVLAERQPPGPMPLARLEWVAADHVAGAATAVWHLHAQGHRSIGLLTLAASTTSDLLHRGWSDALRSLDVDPAQQLTGPTDGFGAPGRAEVLAGVLHDLAASGTTAVVVQGDPAAVNLAQYCAEAGVVVPDDLAIVAYDDQVAELADPPLTAVRPPLPEVGRLAVETVVARLVEGAERSVHRSLIAPALVVRASSTAVARSSDAVESCPNANANANANA
AK018_060321710dapH_32,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferaseATGAGCCCGACGACCACCGCGCGGCCGACGACGACGTCCGGCCGCCACGACCTGGACTACGAGCCCTGGCGGTTCTGGTCCGAGGCCGACGCCGCGCAGCGAGACCGGCAGCAGGCTCTCCAGGAGGAGCTCGCGGGGCGCGGCGTCCGGTGCGGCGAGCGCTGCTTCGTCTCCGCGCTGGCGTCGGTCACCACCGACGTCCTGGAGCTCGGCGACCGCACCTACGTCGCCGCCGGCGCCGTGCTCTCCGGCGACGTCCGGGCCGGCCGCGACTGCTCGGTCAACCCGTACACCGTGGTGCGTGGCGAGGTCCGGATCGGCGACGCCGTCCGGATCGGTGCGCACACCTCGCTGCTCGGCTTCAACCACACGATGGACGACCCGGACACCGAGATCCACCGCCAGCCGCTGCGGGTGCAGGGCATCACGATCGGCGACGACGTCTGGATCGGTTCGCACGTGGTGGTGCTGGACGGCGTCCGCGTCGGCGACAAGGCCGTGCTGGCGGCCGGGGCCGTGGTGACCAAGGACGTCCCGCCGGGCGCCGTCGTCGGGGGGAACCCCGCCCGCGTCCTCAAGTGGCGCACGGCGCCGCCCGCGCCGGAGGCCGCGCCGCGCGACGACCTCGCGGCCGCCGTGGCGCGGTTCGCGGACGCCGCCCGCGCGCAGGCACGCGCCGTGCTGGACCGGTGCTGGGACCCCGCGGCGGGGCTCTTCCTCGACGCACCGGGCGCCTCGGCGACGGTCCGGGCGCAGTGCGACGCCGTCGAGGTGGCCGACCTCCTGCTCGACGGGCCACCCCCGCAGCTGCCCGCCACCGAGCAGGTGGACCGCCTGCGGTCGTGGCAGGACGCCGCCACCGGGATGGTGGGCGAGCTGGGTCCCGACGGCGTCCCGCGCCGCCCCGGGACCGGCCTGTTCGACCCGGAGGCCGCCTACCACGTGCTCAGCGTCGGGTACGCCCTGGAGCTGCTCGGCTCGCGCTTCGCGCACCCGGTCGCCGTCGTGTCCGACGCGTCGCTGGAGGACGTCCTGCACGGCCTGCGCGAGCAGGACCGGCTCGCCGACCCCTGGGCGACCGGTCACTGGGTCGACGTGCTCGGCACGGCGCTGCACCGCAACCGGGAGCTGGGCGTCGACACGCCGCCGGGCGCCACCGAGGCCCTGCTCGGCCGGCTGCTGTCACGGGCCGACCCGCGGACCGGCATGTGGGGCCGGCCCGGCCTGGACGGCGACCTGCTGCTGACGGTGAACGGCTACTACCGCGCCACGCGCGGCATTTTCGCCCAGCACGGCGTGCCCGTCCCGTACCCGGAGCGGGTCGTCGACACCGTCCTGGCGCACGTGCGCGACGCCCGCTACTTCCACCCCGGACGGCAGAACGCCTGCAACGTCCTCGACGTGGCCCACCCGCTGTGGCTCACGCGTGCCACGGGCCACCGGTCGGACGAGGTCGTCGACGTCGCCCGGACGCTCCTGGGCCAGGCGCTCGGCCGCTGGGTGCCGGACCAGGGCTTCGCCTTCCGGGCGTCGGACGCCTCGACGGCGTCGCTGCCGCAGGCGCGGCCGGGTCTGCAGGGCACGGAGATGTGGCTGGCCATCGTGTGGATCCTGGCCGATCTGGCCGGCGTCTCCGACGCGCTGGGCTACCGCCCGCGGGGCGTGCACCGCCCCGAGCCGGCCGCGGACCTCGGAGCGTCCCAGATCTGAMSPTTTARPTTTSGRHDLDYEPWRFWSEADAAQRDRQQALQEELAGRGVRCGERCFVSALASVTTDVLELGDRTYVAAGAVLSGDVRAGRDCSVNPYTVVRGEVRIGDAVRIGAHTSLLGFNHTMDDPDTEIHRQPLRVQGITIGDDVWIGSHVVVLDGVRVGDKAVLAAGAVVTKDVPPGAVVGGNPARVLKWRTAPPAPEAAPRDDLAAAVARFADAARAQARAVLDRCWDPAAGLFLDAPGASATVRAQCDAVEVADLLLDGPPPQLPATEQVDRLRSWQDAATGMVGELGPDGVPRRPGTGLFDPEAAYHVLSVGYALELLGSRFAHPVAVVSDASLEDVLHGLREQDRLADPWATGHWVDVLGTALHRNRELGVDTPPGATEALLGRLLSRADPRTGMWGRPGLDGDLLLTVNGYYRATRGIFAQHGVPVPYPERVVDTVLAHVRDARYFHPGRQNACNVLDVAHPLWLTRATGHRSDEVVDVARTLLGQALGRWVPDQGFAFRASDASTASLPQARPGLQGTEMWLAIVWILADLAGVSDALGYRPRGVHRPEPAADLGASQINANANANANA
AK018_06033282hypothetical proteinGTGTTGCCTGTTCTCTCCGACCCGGTCCCGACCGATGCTCCGCTCGGTATCGGCATGCTCCCCGGCCTGGCCGTCGCACTGGCCTTCGCCTCTCTGCTCGGGGCGGCCTGGTCACGGTGGACGCACGCGCGCGCGGTCCACCGCGATGCGAAGCAGCGGCTGCCCGCGCTGCGGCGGGCCCGGTGGCGGCAGTGGTCCGTGATGACGGGCTACGGCGTGCTCGTGCTGGCCGTCCTCGTGGTCGTCATGGTCGTCGGCGATCCCGGCGCCGGCAGCGGGTGAMLPVLSDPVPTDAPLGIGMLPGLAVALAFASLLGAAWSRWTHARAVHRDAKQRLPALRRARWRQWSVMTGYGVLVLAVLVVVMVVGDPGAGSGNANANANANA
AK018_06034363hypothetical proteinATGACTGACAACCCGACCGACACCGCCCCCGAGCAGGCGCCGGCGGCGCCGGGCGCGACCACCGCGGCCGACGTCGAGGAGGCGCTGCGCGACGTCATCGACCCCGAGCTCGGCATCAACGTCGTCGACCTCGGTCTCGTCTACGGCGTCGAGGTGGACCAGAACAACCACGCGACCATCGACATGACGCTCACGTCCGCGGCCTGCCCGCTGACCGACGTCATCGAGGACCAGTCCGCCCAGGCCCTGGAGGGCATCGTCACCGGGCACCGGATCAACTGGGTCTGGATGCCGCCGTGGGGTCCGGAGAAGATCACGGACGACGGTCGCGAGCAGCTGCGCATGCTCGGCTTCAACGTCTGAMTDNPTDTAPEQAPAAPGATTAADVEEALRDVIDPELGINVVDLGLVYGVEVDQNNHATIDMTLTSAACPLTDVIEDQSAQALEGIVTGHRINWVWMPPWGPEKITDDGREQLRMLGFNVNANANANANA
AK018_06035501sufU_2COG0822Zinc-dependent sulfurtransferase SufUATGAGCTCGCTGCAGGACCTGTACCAGCAGGTCATCCTGGACCACGCCAAGCATCCCCACGGACACGGTCTGGTCGACGTCCCCAGCGGTCATCTGGCGGGGGAGTCCCACCAGGTCAACACCACCTGCGGGGACGAGGTCACGCTGCGCGTGGACGTGCGGACCACCGACGACGGCGCCACGCTCGAGCGCGTGTCCTGGGAGGGACAGGGCTGCTCGATCTCGCAGGCGTCGGCCTCGGTGATGACCGAGCTGGTCACCGGCCAGGACCTGAGGGAGGTCGAGCGGCTGGACGCCGCCTTCCACGCCCTGATGGGTTCGCGGGGCAAGGGGCTCGACGACGAGGAGGTGCTGGACGCCCTGGGCGACGGCACGGCCTTCACCGGCGTCTCGCAGTACCCCGCCCGCATCAAGTGCGCGCTGCTCGGCTGGGCAGCGTTGAAGGACTCGCTGGCGCGCAGCGGCGCGCCGGCCGACCGACCCGGAGGATCGGATGACTGAMSSLQDLYQQVILDHAKHPHGHGLVDVPSGHLAGESHQVNTTCGDEVTLRVDVRTTDDGATLERVSWEGQGCSISQASASVMTELVTGQDLREVERLDAAFHALMGSRGKGLDDEEVLDALGDGTAFTGVSQYPARIKCALLGWAALKDSLARSGAPADRPGGSDDPGPT0000075_554DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATIONN-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000075-nifU|iscU-K04488NANA
AK018_060361305csd_2COG0520putative cysteine desulfuraseATGACCGCCACCGACACCGTGCGCCCGCACCAGCCGATGGGCTCGCGCGAGCTCGCCGCCGTGCGGGCCGACTTCCCGCTGCTCGGGCGCACGGTGCGGGGCGGCAAGCCGCTGGTCTACCTCGACTCGGCCGCGACCTCGCAGAAGCCGAACGTCGTGCTCGAGGCCGAGGTCGACTTCTACGAGCAGCGCAACGCCGCCGTGCACCGCGGGGCCCACCAGCTCGCCGAGGAGGCCACCGAGGCCTTCGAGGGCGCGCGGGCCGCCGTCGCGTCGTTCGTGGGCGCCGACGTCGACGAGATCGTGTGGACGTCCGGGGCGACCGCGGCGATCAACCTCGTCACCTACGCGCTGTCGAACGCGACGGCCGGGCGCGGGGGAGAGGCGGCCGAGCGGTCCCGGCTCGCCCCGGGCGACGAGATCGTCGTCACCGAGGCGGAGCACCACGCCAACCTCGTGCCGTGGCAGGAGCTGTGCGCCCGCACCGGTGCCACGCTGCGCTGGTTCGGCGTGGCCGACGACGGCCGGCTCGACGTCTCGGACGTCGACGCGGTGATCACCGACCGCACCCGGGTCGTGGCCTTCGGGCACGTGTCCAACGTGACGGGCGCGGTGGCGCCGGTGGCCGAGATCGTCGCCGCGGCGCGCCGAGTCGGGGCGCTCACCGTGCTGGACGCGTGCCAGTCGGTGCCGCACCTGCCGGTCGACCTGCACGCCCTGGGCGTCGACCTCGCGGCGTTCAGCGCCCACAAGATGCTCGGCCCCACGGGCGTCGGCGCGCTCTACGGGCGGCGCGAGCTGCTCGAGGCGATGCCGCCGGTGACCACCGGCGGGTCGATGGTCGAGGTCGTGACGATGACGGGCACGACGTACATGCCCCCGCCCCAGCGCTTCGAGGCCGGCACCCAGATGGTCGCCCAGGCCGTCGGCATGGGCGTGGCCGCGCAGTGGCTCGACGAGCTCGGCATGGACCGGGTCGCGGCGCACGAGCGCGAGCTCGCGGCCGAGCTGCTGCGGATCACCGAGATCCCGGGCGTCCGCGTCCTCGGCCCGACGGACCCGACGGACCGGATCGCCGTGGTGTCCTTCGTCGTGGACGGCGTGCACGCCCACGACGTCAACCAGGTGCTGGACGACCAGGGCATCGCCATCCGGGTGGGGCACCACTGCGCGCAGCCCCTGCACCGCCGTTTCGGCCTGGCCGCCACGGCGCGTGCCTCGGCCTCGGTGTACACAGGTGTCGAGGAGATCGTCGCGTTCCGCGAGGCCCTCGCGGGGGTCCGCGCGTTCTTCGGGGAGGAGTGAMTATDTVRPHQPMGSRELAAVRADFPLLGRTVRGGKPLVYLDSAATSQKPNVVLEAEVDFYEQRNAAVHRGAHQLAEEATEAFEGARAAVASFVGADVDEIVWTSGATAAINLVTYALSNATAGRGGEAAERSRLAPGDEIVVTEAEHHANLVPWQELCARTGATLRWFGVADDGRLDVSDVDAVITDRTRVVAFGHVSNVTGAVAPVAEIVAAARRVGALTVLDACQSVPHLPVDLHALGVDLAAFSAHKMLGPTGVGALYGRRELLEAMPPVTTGGSMVEVVTMTGTTYMPPPQRFEAGTQMVAQAVGMGVAAQWLDELGMDRVAAHERELAAELLRITEIPGVRVLGPTDPTDRIAVVSFVVDGVHAHDVNQVLDDQGIAIRVGHHCAQPLHRRFGLAATARASASVYTGVEEIVAFREALAGVRAFFGEEPGPT0020195_717DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0020195-sufS-K11717NANA
AK018_06037771sufC_2COG0396Vegetative protein 296ATGTCCACCCTGGAGATCCGCGACCTGCACGTCAGCGTCGACACCAAGGAAGGCGCCAAGCCGATCCTGCGCGGCGTCGACCTGACCATCAACTCCGGCGAGACGCACGCCATCATGGGCCCCAACGGCTCCGGCAAGTCCACGCTCGCCTCCGCCCTGGCCGGGCACCCCAAGTACGAGGTCACCTCGGGCACCGTGACGCTCGACGGCGAGGACGTCCTCGCCATGAGCGTCGACGAGCGCGCCCGTGCCGGCCTGTTCCTCGCGATGCAGTACCCCGTCGAGGTGCCCGGCGTCTCGGTGGCGAACTTCCTGCGCACCGCCAAGACCGCCATCGACGGCGACGCGCCGTCGCTGCGCCACTGGGCCAAGGAGGTCCGCGGCGCGATGGAGAACCTGCGCATCGACTCCTCCTTCGCCGAGCGCTCGGTCAACGAGGGCTTCTCCGGCGGTGAGAAGAAGCGCCACGAGATCCTGCAGATGGAGCTCTTCAAGCCCGGCTTCGCGATCCTCGACGAGACCGACTCGGGTCTCGACGTCGACGCCCTGCGCGTCGTGTCCGAGGGTGTGAACCGCGCCAAGGAGTCCACAGACGTCGGCGTGCTGCTCATCACGCACTACACGCGCATCCTGCGCTACATCAAGCCCGACTACGTGCACGTCTTCGTCGACGGCAAGATCGCCGAGGAGGGCGGGCCCGAGCTCGCCGAGCGTCTCGAGGAAGAGGGTTACGACCGCTTCCTGCCCGCGGGCGCGTCGGCCTCGGCCTGAMSTLEIRDLHVSVDTKEGAKPILRGVDLTINSGETHAIMGPNGSGKSTLASALAGHPKYEVTSGTVTLDGEDVLAMSVDERARAGLFLAMQYPVEVPGVSVANFLRTAKTAIDGDAPSLRHWAKEVRGAMENLRIDSSFAERSVNEGFSGGEKKRHEILQMELFKPGFAILDETDSGLDVDALRVVSEGVNRAKESTDVGVLLITHYTRILRYIKPDYVHVFVDGKIAEEGGPELAERLEEEGYDRFLPAGASASANANANANANA
AK018_06038348cmtAdCOG2146p-cumate 2,3-dioxygenase system, ferredoxin componentGTGACCGCACAGATCGCCTGCGCGACCGACGACCTCGGTCCCGAGGAGACGCTGCTCGTCGAGCTCACGTCCGCCGACGGCGCCTCCGTGGCCGTCGCGGTCGTGCGGGACGAGGACGGCGAGTTCCACGCCATCAGCGACGTCTGCTCCCACGGGGCGGTGTCGCTGTCCGACGGCGAGGTCGAGGGCTGCCGCGTGGAGTGCTGGTTGCACGGTTCGCAGTTCGACCTGCGCACCGGCCGGCCCCTGCAACTGCCCGCGACCCGGCCCGTACCCGTCTACCCGGTGACGGTGGACGGCGACAAGGTGCTCGTCGACATCGACGCACCGCTCGCCGCCGCGTCCTGAMTAQIACATDDLGPEETLLVELTSADGASVAVAVVRDEDGEFHAISDVCSHGAVSLSDGEVEGCRVECWLHGSQFDLRTGRPLQLPATRPVPVYPVTVDGDKVLVDIDAPLAAASPGPT0019745_182DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019745-hcaC-K05710NANA
AK018_060391200hypothetical proteinATGACTCTCACTACCGATCACTCCCGCGCGACCGCCGACGGCGCCCACACCCACGGCACCGTGCCGGCCGGTTCGCGCGCCGAGCGCAAGACCTCCTTCGACCTGGCGGACATCCCCGTGCCGTCGGGCCGCGAGGAGGAGTGGCGCTTCTCGCCGGTGGCGCGCCTGCAGCCGCTGTTCGCGGACGACCTCACGGGTGACGGCGTCGCCGTCACCGTCGACGCGGCCCCCGAGGTCGTCGTCGAGACCGTGGGCCGCGACGACGAGCGCCTGGGCCGTGCCGGCAAGCCGGGCGACCGGGCCGCCGTCACCGCCTGGAACGCTGTGCGCGAGGCCACCGTCGTGACGGTCCCGGCCGAGGCGGTCGCCACCGGTGCGACGTCGGTGCGCATCGACGGCACCTCGAAGGACGCCACGGCCTCCCACCTGCTGGTGCGCGCCGAGCGGCACTCCGAGGCCGTCGTGGTCATCGACCACCGTGGCGACGCGCTGCTGAACCAGACCGTCGAGATCCTCGTCGAGGACGGCGCCCACCTGACCGTCGTCTCCGTCCAGGACTGGGCCGACGGCGCCGTGCACGCCTCCTCGCACCGCGCGAGCATCGGCCGCGACGCCAAGCTCAAGCACGTCGTGGTGACGTTCGGCGGCGACGTCGTGCGGGTCACCCCCGACGCGACCTTCACCGCCGAGGGCGGCGAGGTCGAGATGGTCGGGCTGTACTTCGCCGACGCCGACCAGCACCAGGAGCACCGGCTCTTCGTGGACCACGCGGTCCCGCAGTGCACGTCGCGCGTGACCTACAAGGGAGCGCTCCAGGGCGCCTCCGCGCACACGGTGTGGGTGGGTGACGTGCTCATCCAGGCCGAGGCCGAGGGCACCGACACCTACGAGCTCAACCGCAACCTGGTGCTCACCGACGGCGCCCGCGCCGACTCGGTGCCGAACCTCGAGATCGAGACCGGCGAGATCGCGGGGGCGGGGCACGCCTCGGCCACCGGCCGGTTCGACGACGAGCAGCTCTTCTACCTCATGGCGCGCGGCATCCCCGAGATCGACGCTCGTCGCCTCGTGGTGCGCGGCTTCTTCGCCGAGCTGATCGACGAGATCGGCGTCGAGTCCGTCGAGGAGCGCCTGCTCGCCTCCATCGAGGCCGAGCTGGAGAAGTCGATGAGCGTCATCACCGGCGCTCCGGCGCAGTGAMTLTTDHSRATADGAHTHGTVPAGSRAERKTSFDLADIPVPSGREEEWRFSPVARLQPLFADDLTGDGVAVTVDAAPEVVVETVGRDDERLGRAGKPGDRAAVTAWNAVREATVVTVPAEAVATGATSVRIDGTSKDATASHLLVRAERHSEAVVVIDHRGDALLNQTVEILVEDGAHLTVVSVQDWADGAVHASSHRASIGRDAKLKHVVVTFGGDVVRVTPDATFTAEGGEVEMVGLYFADADQHQEHRLFVDHAVPQCTSRVTYKGALQGASAHTVWVGDVLIQAEAEGTDTYELNRNLVLTDGARADSVPNLEIETGEIAGAGHASATGRFDDEQLFYLMARGIPEIDARRLVVRGFFAELIDEIGVESVEERLLASIEAELEKSMSVITGAPAQNANANANANA
AK018_06040198hypothetical proteinATGGGGCACGAGGCGACGGTGTCCAAGGTGAGCGAGGACCAGCTGTTCTACCTCATGTCCCGAGGCATGGAGGAGACCGAGGCCATGGCCATGATCGTGCGCGGGTTCGTCGAGCCCATCGCGCGCGAGCTGCCCATGGAGTACGCCCTCGAGCTCAACCGCCTCATCGAGCTGCAGATGGAAGGGTCCGTCGGCTGAMGHEATVSKVSEDQLFYLMSRGMEETEAMAMIVRGFVEPIARELPMEYALELNRLIELQMEGSVGNANANANANA
AK018_06041159hypothetical proteinATGCCTGAGCCCGTCCAGCCGCTGACCTTCGTCGCGGCCGACGACGCCGCAATGTGCGACCCGGTGACCGGCGTCTGCGTGATCCCAACTTTCGGCGGGTCCGCGCCTGGGGAGGACGACGGCGCTCGAGGACGGTTGCGCCCGCCGACCGAGCAGTAGMPEPVQPLTFVAADDAAMCDPVTGVCVIPTFGGSAPGEDDGARGRLRPPTEQNANANANANA
AK018_06042411hypothetical proteinATGTCGGCCGCCCGACAGAACGCCCGCTTCCGTTCGGGGCCGAACTACTCCGTGCAGAACACGCTGGACATGCTGCGCCTGGTGCACCTTGGTAGCGAGCACGGTGTTGGCTGGCCGGACATGACGGCGATGCAGGCCGCGCTGTTCAGCGGTGACCCCGAGGCGTTCGCCGCCGACACCCTCGTGCGGCTCGGAACCGAGCTCGGCATCCCCGAGGCCGAGATCCGCGACGTGCTGGCGAGCGACCGTTACTCGGACGCCGTGCGCGCCGAGCACGACGAAGCCCTTGCGCTCGGCGCCCGCGGCGTGCCGTTCTCGGTGCTCGACCGTCGCCTCGGCATCCCCGGCGCGGTGCCGACCGAGTCCTACGGGCAGGCGATCGCCCAGGCGTGGGAGACCGTCGATGCCTGAMSAARQNARFRSGPNYSVQNTLDMLRLVHLGSEHGVGWPDMTAMQAALFSGDPEAFAADTLVRLGTELGIPEAEIRDVLASDRYSDAVRAEHDEALALGARGVPFSVLDRRLGIPGAVPTESYGQAIAQAWETVDANANANANANA
AK018_06043738hypothetical proteinGTGACCCCGACCATCCTGTTCGACTTCGACGGCACCCTCGCCGTCGGTGACGGCCCTGTGCTCGCGTTCGCCCGGCAGGTCGCGGGCCACGCCGGGTCCGGGTACTTCGAGCGGGTGATGGCCACGTTGCGCGACCACGACGCTGGCACGGCCACCCAGTTCCGCGACGGGTACGACGTCGTCGGCACCCTGGCCCGCCGGGACGGCGTCGACCCCACCGCCCTCCAGGACGCCTACCTCGCCAGCCGCCGCGTCCTCGGCACCCCTGAGGCACCCGTCGACGCGGCCCCCGGACTGGCACAACTCCTGGGCGCACTCCCCCACGACGTCCGCGTCGTCCTCGCCACGAACGCCCCCGGCGTCGGCGTCGAACGCCTCCTGACCACCTGGGGCGTCCGCGAGCGCTTCGCCGCCCTGCACTACGACGTCGGCAAGCCCGCCGGGCTGACGCCGATCGTCGAGGCCGCCCTCGCGGACGGCCCGGTGCTCGCCGTCGGCGACATCGTCGAGAACGACCTGGCACCTGCCACGGCGCTCGGCGCCGCGACGGCGCTGGTCGGCCCCACGGCCGACACTCCGCCCGCCGACGTGACGATGCACGCCCGGACCCTCGACTCCCTCGCCGCCGACATCACGGCGTGGGCCCGCCAAGCGGTCAACACGGCCCCCACCTCAGCCACCCCTGCGACCCACCCCGAGTCCGTGCCGACCGGCACGGCCGACTCCCTCGAAAGGTGAMTPTILFDFDGTLAVGDGPVLAFARQVAGHAGSGYFERVMATLRDHDAGTATQFRDGYDVVGTLARRDGVDPTALQDAYLASRRVLGTPEAPVDAAPGLAQLLGALPHDVRVVLATNAPGVGVERLLTTWGVRERFAALHYDVGKPAGLTPIVEAALADGPVLAVGDIVENDLAPATALGAATALVGPTADTPPADVTMHARTLDSLAADITAWARQAVNTAPTSATPATHPESVPTGTADSLERNANANANANA
AK018_060441026hypothetical proteinATGCGCAAGTCCCTGCTCGCTCCCGGCGCCGCCGCGGCGCTCGTCCTCGCGCTCGCCGGTTGCGCCGGAGCCGACGACGCCGGCAGCAGCGCCGACGCCGACTCGACCGACGCCGGCACCGAGTGGCCCGAGTCGATCACCATGTCGCTGGTGCCGTCCGTCGAGGGCGAGAACCTCGCCGAGGCGCTCGACCCCCTGACCACCTATCTCTCGGACGGTCTCGGCATCGAGGTCGAGGGCGTCGTCGCGAACGACTACACGGCCACGGTCGAGGCGCTCGGCGCCGACCAGGCGCAGGTCATCATCACCGACGCCGGCTCGCTGTATCAGGCGACCGAGCGCTACGGCGCCGAGCTCGTCCTGCGCGACGTGCGCTTCGGCGCCACGTCCTACGCGTCCGTCGCGTACACGAACAACCCCGACAAGTACTGCGAGGACGAGCCGGTCCTTTCCACCTACGAGGCGAGCGGCATCGAGCTGTCCTACTGCAATGGCCTGGAGGAGTCCGGTGCCGCCGCGACCGGTCAGGGCCCGGCCGCCACCGACGTCTTCGGCGACCTGGCCGGCGCCGACGTCGCCCTGCAGGCCGCCACCTCGCCGGCCGGCTACCAGTACCCGGTGGTCCTCATGCGCGAGGCGGGCCTGGACACCGACGCCGACATCACCCAGATCCCCGTCGAGGGCAACAACAACGCCGTGCTCGCCGTCGCCAACGGTGACGCCGAGGTCGGGTTCGCCTACTGGGACGCCCGCACCACGGTCACCGAGGAGGTCCCCGACATCGCCGACAAGGCCGTGGCCTTCGCCTACACCGACATGATCCCCAACGGCGGCGTCGCCGTCACCGACACCCTGCCCGACGACCTCGTCGCCGAGCTCACCCAGCTCATGGACGACTACGCCGACTCCTCCGACGAGGCTGCCGACGTCATGTTCGAGCTCGTCGGCCTGTCCGACTGGACGGCCGAGACCACCGACGACGAGATCGCCCGCTACGGCGAGATCCTCGAGCAGTTCGCCGGCTGAMRKSLLAPGAAAALVLALAGCAGADDAGSSADADSTDAGTEWPESITMSLVPSVEGENLAEALDPLTTYLSDGLGIEVEGVVANDYTATVEALGADQAQVIITDAGSLYQATERYGAELVLRDVRFGATSYASVAYTNNPDKYCEDEPVLSTYEASGIELSYCNGLEESGAAATGQGPAATDVFGDLAGADVALQAATSPAGYQYPVVLMREAGLDTDADITQIPVEGNNNAVLAVANGDAEVGFAYWDARTTVTEEVPDIADKAVAFAYTDMIPNGGVAVTDTLPDDLVAELTQLMDDYADSSDEAADVMFELVGLSDWTAETTDDEIARYGEILEQFAGPGPT0002525_546DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002525-phnD-K02044NANA
AK018_06045828phnC_3COG3638Phosphate-import ATP-binding protein PhnCATGACTCACGACACCCAGGCGGCGGAGGCCGGGCACGCCCCGGCCTCCGCCGCGTGGCCGATCCGCCTCGACGGCGTCTCGGTCACCTACCCCAACGGCACCACCGCGCTGCGCGACGTCTCCCTGGACATCGACGCCGGCGAGATGGTCTCGATCGTCGGCCTGTCCGGCTCGGGCAAGTCGACCCTGATCCGCACCATCAACGGCCTCGTGCCCGTCACGTCCGGCACCGTGACCGTCGGCCCGCACACCGTCTCCGGGCTGCACGGCCGCCGCCTGCGTGAGGTGCGCGGGCACGTCGGCATGATCTTCCAGGGCTTCAACCTGGCCACCCGGGTCGACGTCTACCGCAACACGCTGGTCGGCCGGTTCGCCCGCGCCGGGCGGCTGCGCACGCTCCTCGGGGTCGCCAGCGCCCGCGACCGCGAGGTCGCCCTCACTGCCCTGGACACCGTCGGCATGCTCGACAAGGTCTGGTCGCGCGCCGGGGCCCTGTCCGGCGGGCAGCAGCAGCGCGTCGCCATCGCCCGGGCGCTGTCCCAGGAGCCGAGCATCATGCTCGCCGACGAGCCCGTCGCCAGCCTCGACCCGCCCACCGCGCACGCCGTGATGTCCGAGCTGGAACGCATCAACGCCGACCGCCACCTCACGGTGCTGGTCAACCTGCACCTGATGGACCTCGCCCGGCAGTACACCCGCCGCATGATCGGGCTGCGCGACGGCGAGCTCGTCTACGACGGCCCCGCGGCCGAGGCCACCGAGGCCGACTTCGAGCAGATCTACGGCCGCCGCATCCGCCCGCAGGACCGGCTCGGGGATCGCACGTGAMTHDTQAAEAGHAPASAAWPIRLDGVSVTYPNGTTALRDVSLDIDAGEMVSIVGLSGSGKSTLIRTINGLVPVTSGTVTVGPHTVSGLHGRRLREVRGHVGMIFQGFNLATRVDVYRNTLVGRFARAGRLRTLLGVASARDREVALTALDTVGMLDKVWSRAGALSGGQQQRVAIARALSQEPSIMLADEPVASLDPPTAHAVMSELERINADRHLTVLVNLHLMDLARQYTRRMIGLRDGELVYDGPAAEATEADFEQIYGRRIRPQDRLGDRTPGPT0002520_618DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002520-phnC-K02041NANA
AK018_06046822hypothetical proteinGTGAGCGGCACGACGACGGAGCTCGCCGCGCGCCTCGACGTCCCGCCGCGTCCGCGCACCTGGCCGCGCCGCACCCTGGTCCTCTCGGCGCTGGCGGCGTTCACCGTGGCGACCTGCCTGCCCGCGATCGGCGGTGTCGAGATCGACCTGGCCGCCATCGCGCGCAACTGGCGCCACGGCGCGGCCAACCTGTCCGCGCTGCTGCAGCCGAACTGGTCGTTCGTCCCGCGCACGATCCAGCCGATGCTGGAGACCCTGCAGATGGCGTTCGTCGGCGCCGCCATCGCCGCCGCGCTGTCCGTGCCGCTGACGCTGTGGGCCGCCCGCCCCACCAACCCGAACACCGTCACCCGCACCGCGGTGCGCGCGGTGATCAACGTCGTCCGCGCCGTCCCGGACCTGGTCTGGGCGACCATCCTGGTGGCGATGGTGGGCGTCGGCGCGCTGCCCGGCCTGCTCACCCTCGTGCTGTTCGACGTCGGCATCGTGGTCAAGCTCGTCTCCGAGGCGATCGACTCGACCGACCACCCCTACCTCGAGGCGGCCCGCGCCGGCGGCGCCACCCAGGGCCGCATGAACCGCGCCCTCGCACTGCCCCAGAGCCTGCCGCTGTTCAGCAACCAGTGGCTCTACGCCCTCGAGCTGAACGTCCGCATCTCGGCGATCCTCGGCATCGTCGGCGCCGGCGGCATCGGCCGGCTGCTCGACGAACGGTTCGGGTTCTTCGCCTACGGCGACGTCTCGGTCATCATCCTCGAGATCCTCGTCGTCGTGCTCCTCATCGAGGCCGCCTCGAACGTCCTGCGCCGGAGGCTCGCATGAMSGTTTELAARLDVPPRPRTWPRRTLVLSALAAFTVATCLPAIGGVEIDLAAIARNWRHGAANLSALLQPNWSFVPRTIQPMLETLQMAFVGAAIAAALSVPLTLWAARPTNPNTVTRTAVRAVINVVRAVPDLVWATILVAMVGVGALPGLLTLVLFDVGIVVKLVSEAIDSTDHPYLEAARAGGATQGRMNRALALPQSLPLFSNQWLYALELNVRISAILGIVGAGGIGRLLDERFGFFAYGDVSVIILEILVVVLLIEAASNVLRRRLAPGPT0002530_2677DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042NANA
AK018_06047858hypothetical proteinATGAGCGGCATCCTGCAGACCCGAGGCTCCCGGTCCCGCACCACCACGTCACGCCCCGCCGGCGAGCAGCCCGCCCTCTCGCTGCCCCCGCGCCCGTCGCGACTCGGGCAGACCCTCGCGACCGCCGTCGTCGGCGTCGTGCTGCTCGCCTCCGTCGCGACCCTGGACGTCGAGTGGTCCGACCTGCGCGAGCTGCCCGCCGCCGTGGCCGAGTACGCCGCGTTGATGTTCGCCGACCCGGACTGGTCGCGCCTGCCGCGCGCCCTGTTCGAGATGTGGCGCTCGATCTCCATGGCCTGGCTCGGCGCGATGCTCTGCGTCGTCGTGTCCATCCCGCTCGGCATGCTCGCCGCCCACGGCGTCGGACCGGCCTGGCTGCGCCTGGGGCTGCGCGGGCTCTTCGCCGTCATCCGCGCCGTGCCCGAGGTGATCATCGCCCTCGTGCTGCTCACCGTCACCGGGCTCACGCCGTTCACCGGCGCGCTCGCCCTCGGCATCGCCGGGATCGGCACGCAGGGCAAGTGGACCTACGAGACCGTCGAGACGCTCCGCGACGGCGCCGCCGACGCCGTCCGGGCCGCGGGCGGCGGACGCATCGCCGTCGTCCGCTGGGCCCTGTGGCCCGCCGCGCTCCCCGCGCTGCTGTCCTTCGCGCTGTACCGGTTCGAGATCAACATCCGCATGTCCGCGGTGCTCGGCATCGTCGGCGCCGGCGGCATCGGCAGCATGCTGGCCAACTACACGAACTATCGTGAATGGGACACGGTCGGCATGCTGCTGATCGTGGTCGTCGTGACCACCATGGCCGTCGACGCCGTCTCGGGCGCGCTGCGCCGCCGCATCATGGAAGGGGCCTGAMSGILQTRGSRSRTTTSRPAGEQPALSLPPRPSRLGQTLATAVVGVVLLASVATLDVEWSDLRELPAAVAEYAALMFADPDWSRLPRALFEMWRSISMAWLGAMLCVVVSIPLGMLAAHGVGPAWLRLGLRGLFAVIRAVPEVIIALVLLTVTGLTPFTGALALGIAGIGTQGKWTYETVETLRDGAADAVRAAGGGRIAVVRWALWPAALPALLSFALYRFEINIRMSAVLGIVGAGGIGSMLANYTNYREWDTVGMLLIVVVVTTMAVDAVSGALRRRIMEGAPGPT0002530_1467DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042NANA
AK018_06048861murR_2HTH-type transcriptional regulator MurRGTGACCTGGACCGGCTCGGCCGACGCACCGCTGACCGCCCGCATCGTGGCGCTCGCGCCGTCGATGCACCCCGGCGAGCGCCGCGCCGCCGAGGCCATCGCCGCCGACCTGGACGCCGCCGTCGAACGCACCGCCCAGCAGGTGGCCGACGACGTCGGTGTGGGCCGGGCGACCGTCGTGCGCGCCGCGCAGACCCTCGGGTACGAGGGCTACCCGCAGCTGCGCGTCGCCGTCGCCCGCGAGCTCGCGCTGCGCCCGGCGTCGGACGGCTCGCCGGACGGCACCATGCTCGGCGCGGTGCGCGAGTCCGTCGACCGGTTCGCCGCCCGCCTCGGGCACACCGTGGCCGGGCTGACCGAGGACGGCCTGCAGGAGTTCGTCCGCATCCTCGACGACGCGCGGCGCGTGCTCGTCGTCGCCAACGGGCTCTCCTCCCCGCTCGGCCTCGACCTCGTGCTGCGCCTGACGGCCGCCGGCCGACCCGCCGAGCTGCTGGCCGACGCCCTCGCCCAGCGCATCGCCGCCCGGCAGCTCGGCCCCGAGGCCGTGTGCCTCGTCGTGTCCGGCTCCGGGGCCAACGAGGCCACGCTGGAGGTGATGCGGGCCGCGCACGACGGCGGCACCCCGGTCGTGGCGATCACCTCGTTCGCGCAGTCCCCCGTCGCCCAGCTCGCCGACACCGTGCTCGTCGTCCCGCCCGTCAACGAGTCGTTCCGCGACGAGCTGCTGCACACCTCCCGCGCGGCGCTGATGCTCATGATCGAGGCGCTCGTCGAGGTGCTGGTCGCCCGGCGCGGCGAACGCGGACGCGACGCCCGGGCCGCCGTCCTGCACGAGCTGGGCTCGGCGATCGAGGAGTAGMTWTGSADAPLTARIVALAPSMHPGERRAAEAIAADLDAAVERTAQQVADDVGVGRATVVRAAQTLGYEGYPQLRVAVARELALRPASDGSPDGTMLGAVRESVDRFAARLGHTVAGLTEDGLQEFVRILDDARRVLVVANGLSSPLGLDLVLRLTAAGRPAELLADALAQRIAARQLGPEAVCLVVSGSGANEATLEVMRAAHDGGTPVVAITSFAQSPVAQLADTVLVVPPVNESFRDELLHTSRAALMLMIEALVEVLVARRGERGRDARAAVLHELGSAIEEPGPT0017985_632DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017985-hexR|yebK-K19337NANA
AK018_06049222hypothetical proteinATGGCAGACGGCGCCGAGAGCCCCCGCAAGTCCGTGACCTTCCGCCCGACGGAGCGGGACCGCCGCATCATGGACCGCCTCAGCCACGAGGGGGTCTCGGCCAGCGACGCGGTGCGGCGCGGTCTCCAGCTCGTCGAGCAGGAACGCTGGCTCTACCAGGCGCGTGCCGACATGGTCGCAGCCCACGGCGAGAACCTGAACGACGAGCCGGACGCCTGGTGAMADGAESPRKSVTFRPTERDRRIMDRLSHEGVSASDAVRRGLQLVEQERWLYQARADMVAAHGENLNDEPDAWNANANANANA
AK018_06050447arfB_2COG1186Peptidyl-tRNA hydrolase ArfBATGCCCTCGTCGCCCCGCCCCGGACTCGTCGTCAGCCCGTCCCTGACGATCCCCCGGGCCGAGCTGACCGAGCGGTTCTCGCGGTCCTCCGGTCCCGGAGGTCAGGGCGTGAACACCACCGACTCGCGGGTGGAGCTGTCCTGGGACGTCGACCGCTCGGCCGTGCTGAGCCGCGTCCAGCGCGAGCGGATCCTCGCCCGGACGGGTCACCGGTTGGTCGACGGCGTCCTCACGGTGACCGCGTCCGAGCACCGTGAGCAGCGCCGAAACCGGGACGCGGCAGCACACCGGCTGGCGGCGCTCGTGGCCGACGCCGTCGCACCGCCCGGCCCTCGCCGTCGGGCGACCCGGCGCACCCGCGGGTCCCAGGAGCGGCGTCTGAAGGCCAAGAAGCAGCGGTCCGCGACCAAGCGGATGCGCTCGTCCCGGCCGTCGCGGGACGACTGAMPSSPRPGLVVSPSLTIPRAELTERFSRSSGPGGQGVNTTDSRVELSWDVDRSAVLSRVQRERILARTGHRLVDGVLTVTASEHREQRRNRDAAAHRLAALVADAVAPPGPRRRATRRTRGSQERRLKAKKQRSATKRMRSSRPSRDDNANANANANA
AK018_060511458hypothetical proteinATGACCGCTCGCTCCGTGGCTCCGCTCTCCGGCCGCTCGGACATCGTCGCCGCACTGACCAAGCATCTCGACGCGGTCCAGACCCATGGGCAAGGACGCATCGTCGCGGTCCGAGGTCGCCGCCAGGTCGGCAAGTCCACGGCGATCGACACCTTCGTCCGCGGCACCGACGTGCCGTACGTCTTCGCCGCAGGAACACTCGGCGCGCCGACGCACACCCAGGTTGCCGAAGCGACCGAGGCGCTCACGTCGTCGACCCGACCGCTGCCCGGCACCGAGATGGTCGGGGGCCTCCCCCTGCGCACGTGGCGCGACTGGTTCCGCGCGGTCGAGGCCGCAGCACGCCGGGGGCCGACCGTCGTCGTGCTCGACGAGTTCCCTTGGGCCGTCGCCGCCGACCCGTCTCTCGAGGGCACCCTCCAGAACCTCTGGGACCAGACCCTGGAAGGGCTTCCGGTGCTGCTCATCCTGGTCGGGTCCGACGTCGCGATGATGGACCGGCTCTCCGAGTACGGCCGAGCGCTGTTCGGGCGCGTCCGCCCGCTCGTCGTCGACCCGCTCAACCCGTCGGAGATCGCCCAGGCGATCCCCGACGCCACACCGACCGAGGTCTTCGACGCCTACCTCGTCACGGGTGGCTACCCCCGCCTCGTCACCGACCTCGCACGGTCGGGAGGCAGCGTGCCGCGGTACGTGGCCGATTCCTTCGCCGACCTGTACAGCCCGCTGGTCTCGACCGCACGATTCACGCTCGACGCAGAGTTCCCCGACTCCCCCGCCGCTGCGCGGGTGCTGGCGGCGATCGGCGCGGACGAGACGACCACACCGCGGTTCAACGACCTCATCCCCGCCGGCCTCGAAGACTCCGAGGTGACGCGCTACCAGACCAGCACCACCCGGGCACTACGCGTCCTGACCGACGACAAGCGGCTCGTCACGAAGGAGGTTCCCGCCTGGTCGCCGCAGAGGGGACGGCTGCGGCGGTACCGCGTCACCGACCCCTACCTGCGCTTCTGGTTCCGCTACGTGGAGCGGAGCCTGGAGCTGATCTCTCGCGGACGGGCCGACCACGCCTTCGGCCGCTTCGAGCGGGACTGGTCGTCCTGGCGAGGGCGCAGCATCGAGCCCGTCGTGCGTGAGTCCTTCGCGCGCCTCGCTCCGGACGACGCTCGCCTCGAGAGCATCGAGGGCGTCGGCGCCTGGTGGACCCGTGATGGGCAGACCGAGGTCGACCTCGTCGGGATGTCCCGCGAGCGCACCGTTCTGCTCGGGACCATCACGTGGCGCCCCGACGGCGAGATCTCCCGCCGCGAGATCATGCACCTGCGCAGCGTCACCGGCACGGTGCCACGCAGCAGCGACGCCCTCATCGCCGCCATCAGCCCCGGGGGACGACCGGTCGACGGCGCCGATCTCACGTTCGGCGCGGCCGACCTGCTCGGCGCCTGGCCGGTCTGAMTARSVAPLSGRSDIVAALTKHLDAVQTHGQGRIVAVRGRRQVGKSTAIDTFVRGTDVPYVFAAGTLGAPTHTQVAEATEALTSSTRPLPGTEMVGGLPLRTWRDWFRAVEAAARRGPTVVVLDEFPWAVAADPSLEGTLQNLWDQTLEGLPVLLILVGSDVAMMDRLSEYGRALFGRVRPLVVDPLNPSEIAQAIPDATPTEVFDAYLVTGGYPRLVTDLARSGGSVPRYVADSFADLYSPLVSTARFTLDAEFPDSPAAARVLAAIGADETTTPRFNDLIPAGLEDSEVTRYQTSTTRALRVLTDDKRLVTKEVPAWSPQRGRLRRYRVTDPYLRFWFRYVERSLELISRGRADHAFGRFERDWSSWRGRSIEPVVRESFARLAPDDARLESIEGVGAWWTRDGQTEVDLVGMSRERTVLLGTITWRPDGEISRREIMHLRSVTGTVPRSSDALIAAISPGGRPVDGADLTFGAADLLGAWPVNANANANANA
AK018_06052357hypothetical proteinATGCTGGGAATCGGGCTGACGCTGGCGGGGACCGTGGCGCTCGCCGCGTGCGCGCCGTCGGGCGACGGCGAGACCGCGACGCTGGAGACCGGGACGGTGGTGATCGACGTCCGCACGCCGGCCGAGTTCGCCGGCGGCCACCTCGAGGGTGCGCTGAACATCGACGTGCAGTCGCCGGACGCCACCCAGCAGCTCGCCGAGCTCGACCCGGACGGCTCGTACGTCCTGTACTGCCGCTCGGGCAACCGCGCCGGTGCGGCCCTCGACTTCCTGCAGGCGCAGGGCTTCGACGACGTCGTCAACGCGGGCAGCGTCCAGGAGGCGGCCGACGAGACGGGACTCGCGATCGTCGACTGAMLGIGLTLAGTVALAACAPSGDGETATLETGTVVIDVRTPAEFAGGHLEGALNIDVQSPDATQQLAELDPDGSYVLYCRSGNRAGAALDFLQAQGFDDVVNAGSVQEAADETGLAIVDPGPT0014648_368DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_SHOCK_PROTEINS,PGPT0014648-pspE-K03972NANA
AK018_06053180hypothetical proteinATGCCTGATCGCGCCGCAGGGCCGCTGACGTTCGTGACGGCGGACGACGCCGCGGTGTGCGACCCGGTCACCGGCGTCTGCTCGCCCGTGGCCGGGCAGGCCGGCGAGACCGAGGCGGCGCCGCGTGCGGTGGACGGCGACGACGGCGACCCCGGCCTAGATACCCCTAGGGGTATCTAGMPDRAAGPLTFVTADDAAVCDPVTGVCSPVAGQAGETEAAPRAVDGDDGDPGLDTPRGINANANANANA
AK018_06054666hypothetical proteinGTGACTGCTACCGACGTTACCGACACCCGCCTCGAGATCGAGGTCTGGTCCGACGTCCTGTGCCCGTGGTGCTACATCGGCGACGCGCGCCTCGAGGCCGCGATCCAGGACTCGCCCCAGGCCGACCGCATCGACGTGAAGATCCGTACCTTCCAGCTCGACCCCGACTTCCCGGCCGAGCCGGCGCCCGTCGTCGACTACCTGTCGGCCAAGAAGGGGCTGCCGGTCGAGCAGGCCCGGCAGATGGAGGACCAGGTCGCCGACCTGGCCCGCGCCGAGGGGCTCGCCTACGCGCCGAACCACCCCGTGCAGAACACCGTGGACATGCTGCGCCTGGTGCACCTGGGCAACGAGCACGGCGTCGGCTGGCAGTACATGACGGGCATGCAGGCGGCCCTGTTCAGCGGCGACCCCGAGGCCTTCGCCGCCGACACGCTGGTGCGGCTCGGGACCGAGCTGGGCATCCCCGGGGCCGAGATCCGCGACGTGCTCGGGTCCGACCGCTACGCCGACGCGGTCCGCGCCGAGCACGACGAGGCGATCGCGCTGGGTGCTCGCGGTGTGCCGTTCACCGTGCTCGGGCGCCGCCTCGGGATCCCCGGCGCCGTGCCGACCGAGGCCTACGGCCAGGCGATCGCGCAGGCGTGGGAGCAGGTCGATGCCTGAMTATDVTDTRLEIEVWSDVLCPWCYIGDARLEAAIQDSPQADRIDVKIRTFQLDPDFPAEPAPVVDYLSAKKGLPVEQARQMEDQVADLARAEGLAYAPNHPVQNTVDMLRLVHLGNEHGVGWQYMTGMQAALFSGDPEAFAADTLVRLGTELGIPGAEIRDVLGSDRYADAVRAEHDEAIALGARGVPFTVLGRRLGIPGAVPTEAYGQAIAQAWEQVDANANANANANA
AK018_06055951Alcohol dehydrogenaseATGCGCGCCTGGCGATTCCACGGCACCCACGAGCCGCTCACCCTCGAGGAGGTGCCGGAGCCCGAGGCCGGGCCCGGCGAGGTGGTCGTCGACATCAAGGCCGCCGGGGTCTGCCACTCCGACGTCAGCGCCCTGGACGACGAGACGTGGATGCCCCTGTTCCCCCAGCTCCCGGTGACGCCCGGTCACGAGAACGCCGGCGTCATCAGCCAGGTCGGCCCCGGCATGGAGCACTGGACGGTGGGCGACCGCGTCGGCCTTTCGCCGCTCACGGGCGACGGGTTCGCCCTCGGGTACGGCACGTGGGACGGCGGGTTCGGCGAGAAGCTGCGCGCCACCGACGAGAACCTGGTCCGGCTCCCGGACGAGGTCAGCTTCGAGATGGGCGCCATGGCCACCGACGCCGGCCTGACCTCGTACCACGCGATCGTCACCGCCGGTGGGCTCGAGCCCGGGATGCGGGTCGGCGTCATCGGCCTCGGCGGCCTGGGCTACATCGGCGCCCGCGTCGGCGTCCTCAAGGGGGCCGAGGTCTACGGCGCGGACATCAGCGCCGGTGCCCGCGAGCTCGCCGACGAGATCGGCCTGGCCGGGGTCGCCGAGTCCATCGAGGAGTTCGCGGACAAGAAGCTCGACCTCATCGTCGACTACGCCGGGTTCGGCACCACCACGACCGGAGCGCTGAACACGCTGGCCGAGTTCGGCACCTTCGTCCAGGTCGGCATGGGCAAGCTGGAGTTCGAGATCAGCACCTACCCGATCATCATCAACCAGCTGACGATCAAGGGCTCGAAGTCCGGCACCAAGCAGGACCTCGTCGAGCTCTACGACCTCATGCGGTCCGGCGACCTCAACCCGCCGGTCAACCACCTCACCCACGACGAGATCCCCGGGGCCATCGACCGGCTCCGCGAGGGCGGCGTCGTCGGTCGGCTCATCGCCACCTACTGAMRAWRFHGTHEPLTLEEVPEPEAGPGEVVVDIKAAGVCHSDVSALDDETWMPLFPQLPVTPGHENAGVISQVGPGMEHWTVGDRVGLSPLTGDGFALGYGTWDGGFGEKLRATDENLVRLPDEVSFEMGAMATDAGLTSYHAIVTAGGLEPGMRVGVIGLGGLGYIGARVGVLKGAEVYGADISAGARELADEIGLAGVAESIEEFADKKLDLIVDYAGFGTTTTGALNTLAEFGTFVQVGMGKLEFEISTYPIIINQLTIKGSKSGTKQDLVELYDLMRSGDLNPPVNHLTHDEIPGAIDRLREGGVVGRLIATYPGPT0006365_3065DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953NANA
AK018_06056912hypothetical proteinATGACTGGATCAGCGCCGCCCCAGCCGATCTCCCCCACCCGTGCATTCCTCCTGGGCGCAGGCGCCGCCGTCGTCAGTCTGCTTCCCTGGATCCTGGCCGGATGGCAGCCGTCGTGGCCGACCTACCCGAACACGCCCGACCTCTTCGTCCACACGTTCCTGCCGTTCTCGCCCGACCTCCTCGCGCTCATGCTCGGGGTCGTCGTCCTGCCCGGCGCGATCGTCGGCGTCGCCCTCCGCCGTCGCACCACAGCGATCCCGGGGCGCGTGGACGCCGCCGCGACCGCCGGACTGGTCCTGGTCATCGCCGGCGCGGCACTGCAGAGCGTCGCGGTGACGGCGCCGAGGGTCCGACCGGAGACGTCCGGTCTCCTCGATGTCGCCGCCGGCCTGACAGCCGTCGCGGTCGCGCTCGCGATCTCCGTCCTCGTCTCCCGAGTACTGGCCCGCCGCACCGTGCCGTCCGCCACCGTCGCCGCCGCCGCTGGTGCCGCGGCTGCCGGCTACTGGCTCGAGAGCGTCCTGCACATCCCGTGGGTCTGGGGGCTTCAGCTACCGGACGACGTCGTCGTCACGCTCGCCCTCATCACGCAGATCGTCCCCGCCGTCCTCCTCGGAGCCGCCCTGGCGTGGTGCGGCTGGACGCCCCGACGTCGGCTCTGGGCCTGGACTGTCGCCCTGCTGATCGTCTGGGTCGGTCAAGCCGTCCTGGACACGACGACGTACTGGTTCGTCACCACGCGGTCGATGGGTTCCTCGAGCCCCGCGCAGTACGTCGGCGTCGCCCTGGACGGCCTGGTCTGGAGCCTGCCGTACGCCGTCGCAGCGGTCCTGGTCGGCGTCGTCGGCCGCCTCGTCCTACCCCGCCTCCAGCGCTACCGCGAGAAGGAAACCACCGCGCCGACGGCGTGAMTGSAPPQPISPTRAFLLGAGAAVVSLLPWILAGWQPSWPTYPNTPDLFVHTFLPFSPDLLALMLGVVVLPGAIVGVALRRRTTAIPGRVDAAATAGLVLVIAGAALQSVAVTAPRVRPETSGLLDVAAGLTAVAVALAISVLVSRVLARRTVPSATVAAAAGAAAAGYWLESVLHIPWVWGLQLPDDVVVTLALITQIVPAVLLGAALAWCGWTPRRRLWAWTVALLIVWVGQAVLDTTTYWFVTTRSMGSSSPAQYVGVALDGLVWSLPYAVAAVLVGVVGRLVLPRLQRYREKETTAPTANANANANANA
AK018_06057615hypothetical proteinATGAGCCACGCACCTGCCGACGGCACGACGCCGGACCTGGGCCTGCGCGAGCTCGGCGAGCGCCGGTGGCGGCCCGCCGTCGCCGTGCTGCTCGTCGTGGCGGCGATCGTGTGGCGGGTCGTCAAGGACGACCTGGGCGCCCCGCCGAACCTGGAGCTGTCCACGGCGGCCGCGTTCGCGGCGGCCGGTCTGCTGCGGCACCGTCTGGCGATGCTCGCGCCGCTCGTCGTGGTCGCGATCAGCGACGTGCTGCTGACCAACTCCGCGATCCTGCTGTTCACGTGGACCGCGTGGGCCGCGATCGGCGTCGGCGCCTGGTGGACCCGCCGGTCGAGCGGCGGTCGCCGGGTCGTGGCCGCGCTCGGGTTCGGCGTCGGCTCCTCGCTGGTGTTCTACCTCTGGACGAACTTCGGTGTCTGGCTGCAGGGCCGCGGCACCTTCTACCCGGCGGGCCTGGATGGGCTGCTGGCCAGCTACGTGGCGGGGCTGCCGTTCCTGCGTCCCATGCTGCTCGGCAACCTCGTGCTCGTGCCGGTCGCCGCCGCCGTCGTGGCGCTGGTGGAGCGGCTCGAGCGGGCTCACGCCGTCGGCGCGGTGGTTTCCTTCTCGCGGTAGMSHAPADGTTPDLGLRELGERRWRPAVAVLLVVAAIVWRVVKDDLGAPPNLELSTAAAFAAAGLLRHRLAMLAPLVVVAISDVLLTNSAILLFTWTAWAAIGVGAWWTRRSSGGRRVVAALGFGVGSSLVFYLWTNFGVWLQGRGTFYPAGLDGLLASYVAGLPFLRPMLLGNLVLVPVAAAVVALVERLERAHAVGAVVSFSRNANANANANA
AK018_06058462hypothetical proteinGTGAAGATCGTGATGCGTACGACGTCGACCCGCCTGCTCTCCGCCGCTGCTGCCGGGGCTCTGTCGGTCTGCCTGCTGGCCGCCTGCGGGCAGGACGACACTCCCGCCGCTGACCCCGTGGACACCTCGGCCTCCGTCACTGCCACGCAGGAGACGTCCGACGCCGAGGACTCCGCTGACGCGGAGGACGCCGAGGAGTCCGCCGAGGACGTCACCGAGTTCACCTACCCCGGCCAGGACGGGGAGACCGCCCTGGACCTGCTGCTCGAGGCCGACCCCGAGGCCGAGGTGACCGGCGAGGGCGACATGGCCTACGTGACTGGGATCCAGGGCCACGCGGCGGACGAGGACGAGTTCTGGGCGCTGTCCGTCGACGGCGAGATGGCCCAGGTCGGTGCCGGCTCGCTGGAGACCGAGGACGGTCAGGAGATCCAGTGGAAGCTCGAGGAGATCGAGGAATGAMKIVMRTTSTRLLSAAAAGALSVCLLAACGQDDTPAADPVDTSASVTATQETSDAEDSADAEDAEESAEDVTEFTYPGQDGETALDLLLEADPEAEVTGEGDMAYVTGIQGHAADEDEFWALSVDGEMAQVGAGSLETEDGQEIQWKLEEIEENANANANANA
AK018_060591038ygeXCOG1171Diaminopropionate ammonia-lyaseATGATGGGCCACGTGACCCGATGGTTCAGCGCACCCGCCGCCCGCACCTGGAACGCGCCGACGACGCACGACAGCCCGCGCGACTTCCACCGCACGCTGCCCGGCTACTCCCCCACGCCGCTGGTCGAGCTCCCCGAGCTCGCTACCGAGCTCGGCGTGGGTCGCTTGTTCGTCAAGGACGAGTCGTCCCGGCTCGGTCTGCCCGCCTTCAAGATCCTCGGCGCCTCCTGGGCCTGCCGGCAGGTGCTGGAACGGCAGCCCGGCGCGGAGCTCGTCACGGCGACCGACGGCAACCACGGCCGGGCCGTGGCCCGCACGGCCCACCAGCTCAGCGTCCCCGCGACGGTCTTCGTGCCCGACGTCATGGAGCAGGCGACCCAGGCAGCCATCGAGGCCGAGGGGGCAAGCGTCGTGCGGCTCGACGTCGGGTACGACGACGCGGTCCGAGCCGCAGCGGACTACGCGGACGCCGCCGACACCCGGGCGCTGGTGCAGGACACCGCCTGGGAGGGCTACACCGACGTCCCCGCCTGGATCGTCGACGGCTACGGCACCCTGCTGGAGGAGGTCGACGAGCAGCTGGGCCGCGCACCGGACCTCGTCGCCGTGCCGGTGGGCGTCGGCTCGCTCGCCGAGGCCGTGGTGCGCCACTACCGGCGGCCGGACGCCCCGCACCCGAGCGTGCTGTCCGTCGAGCCCGACACCGCGGCCTGCACGCTGGAGAGCCTCGCCGCGCACGAGTCCGTGACCGTCCCGACGGGCTCGACGGTGATGGCGGGCCTGAACTGCGGCACCGTCTCCAGCACCGCCTGGCCCGTGCTGCACGCCGGCTGCGACGCCGCCGTCTCCGTCGGCGACGACGAGGCCGAGCGGGCCGTGGCCGACCTCGCGGGGCTCGGCGTCTCGTCCGGTCCCAGCGGTGCCGCCACCCTCGCCGGGGTCCGCGCCGCGCTGGCCGAACCGCACCGCCGTACCGCGCTCGACCTGCCGACGCACCCCGTCGTCGTGCTGCTCAGCACCGAGGGAGCCCAGGCATGAMMGHVTRWFSAPAARTWNAPTTHDSPRDFHRTLPGYSPTPLVELPELATELGVGRLFVKDESSRLGLPAFKILGASWACRQVLERQPGAELVTATDGNHGRAVARTAHQLSVPATVFVPDVMEQATQAAIEAEGASVVRLDVGYDDAVRAAADYADAADTRALVQDTAWEGYTDVPAWIVDGYGTLLEEVDEQLGRAPDLVAVPVGVGSLAEAVVRHYRRPDAPHPSVLSVEPDTAACTLESLAAHESVTVPTGSTVMAGLNCGTVSSTAWPVLHAGCDAAVSVGDDEAERAVADLAGLGVSSGPSGAATLAGVRAALAEPHRRTALDLPTHPVVVLLSTEGAQANANANANANA
AK018_060601230hipO_2COG1473Hippurate hydrolaseATGACCGCGAGCGCCAGCGGCCCGGCCACCCCCGGCCCGGGCGACGTGCCCGCGGCGCTCGTCGACCGGGTCCGCGCCTGGCGCCACGACCTGCACCGCATCCCCGAGACGGCCTTCGACGAGCACGCCACCGCCGACTACGCCGCCCGCGTGCTCGACGGGCTCGGGTACGACGTCGTCACCGGCGTGGGCGGCACCGGGGTCGTCGCCTCGCTGACGCGCGGGTCCTCGACGCGGACCGTGGGGCTGCGCTCCGAGCTGGACGGGTTGCCGATCACCGAGGCGAGCGGCGTCGAGTACGCCTCGACCCATCCGGGCGCGATGCACGCCTGCGGCCACGACGGGCACCTGGCGATGCTGCTGGGTGCCGCCGCGCTGCTCGCCGAGGACGGCGGGTTCGACGGCACCGTCCGGGTGATCCTGCAGCCGGCGGAGGAACCCGGGCGCGGGGCGCGGGCGATGCTCGAGGACGGGCTGTGCGCGCGGTTCGGCGTCGAGAGGCTGTTCGGGATCCACAACATCCCGGGCCTGCCCGCCGGGACCCTGCACACCCGCCCCGGACCGATCATGGCCGGCGAGGACAACTTCACCATCGCGGTCCGGGGCCGCGGGGGCCACGCCTCGGCACCGCACCTGGTGGTCGACGCGCTCGTGGTGGCCGCCGAGATCGTCGTCGCCCTGCAGCACGTCGTGGCGCGTAACGTCGACCCCGTGCACACGGCCGTGCTGTCCTGCACCGACCTGCGCACCGACGGGGCGCGCAACGCCATCCCGACGCACGCCACCATCACCGGCGACACCCGCAGCTTCGACCCGGACGTCAGCGCGCTGCTGGAACGCCGCATCCTGCAGATCAGCCAGGGCGTCGCCGCCGCCCACGGCGCCGCGGTCGACGTCGAGTACACCCACGAGTTCGAGCCGACCGTGAACGACGCCGACGCCGTCACGCTGGCCGGGCGCGCGGCGCGGCGGGCCCTCGGCGTCGAGCAGGTCGACGTGGCCGCCGCGCCGATCATGGGCAGCGAGGACTTCGGGGTGCTGGCCCGCCACGTACCGGCGTGCCTGGTGTTCCTCGGCAACGGCACCGCGCCCGGCGCGGGCGGGGTGCCGCTGCACAGCGCCGACTACGTCTTCAACGACGACGTGCTGGCGGCCGGCATGGCCTTCTACCGCGAGGCCGTGATCGAGAGCCTGGCCGCACCGTCAGCGTCCGGAGAGGACGTGATCTAGMTASASGPATPGPGDVPAALVDRVRAWRHDLHRIPETAFDEHATADYAARVLDGLGYDVVTGVGGTGVVASLTRGSSTRTVGLRSELDGLPITEASGVEYASTHPGAMHACGHDGHLAMLLGAAALLAEDGGFDGTVRVILQPAEEPGRGARAMLEDGLCARFGVERLFGIHNIPGLPAGTLHTRPGPIMAGEDNFTIAVRGRGGHASAPHLVVDALVVAAEIVVALQHVVARNVDPVHTAVLSCTDLRTDGARNAIPTHATITGDTRSFDPDVSALLERRILQISQGVAAAHGAAVDVEYTHEFEPTVNDADAVTLAGRAARRALGVEQVDVAAAPIMGSEDFGVLARHVPACLVFLGNGTAPGAGGVPLHSADYVFNDDVLAAGMAFYREAVIESLAAPSASGEDVINANANANANA
AK018_06061306hypothetical proteinGTGAACAGCAAGCAGCGGGTGAGGCGGCAGGGTCATGCCTTCGTCGACGAGAGCAAGCGGCGGGACTATCTCCTGGTGGCGGCGGTCGTCGACCCCAGCGAGACGGGCGGCCATGCACGGTTGCTGCTGGAACGTGACCAGACCTTGGTCAGGAGTGACCGCAAGGTGATCCAGCACTACGACCACGACACCGCGGCTCAGGAGACGCTGCTCTGCATCCCGGACGCGGTGGCGTGGGCGTTCAACCGTGGCGGCGACTTCCGCCGCCGAGCCGATCTGCTCGCCGACGACGTCATCGACCTCTAGMNSKQRVRRQGHAFVDESKRRDYLLVAAVVDPSETGGHARLLLERDQTLVRSDRKVIQHYDHDTAAQETLLCIPDAVAWAFNRGGDFRRRADLLADDVIDLNANANANANA
AK018_060622133gyrB_4COG0187DNA gyrase subunit BGTGCGCGTGACAGCCACGTCCGAGTCCGGTTACACCGCACGCCATCTCTCCGTCCTCGAGGGCCTCGAGGCGGTCCGCAAGCGACCCGGCATGTACATCGGGTCCACCGACTCCCGCGGCCTGATGCACTGCCTGTGGGAGATCATCGACAACTCCGTCGACGAGGCGCTCGGCGGCCACGCCACCGCGATCCGCGTCGTCCTGCACGCCGACTCCTCGGTGACCGTCGAGGACGACGGCCGCGGCATCCCCGTGGACGCCGAGCCCAAGACGGGCCTGTCCGGCGTCGAGGTGGTCTTCACCAAGCTGCACGCCGGCGGCAAGTTCGGCGGCGGCTCGTACACGGCCTCCGGCGGCCTGCACGGCGTGGGCGCCTCGGTCGTCAACGCCCTGTCCTCGCGCCTCGACGTCGAGGTCGACCGCGGCGGCAAGACCTACGGCATGCGGTTCCACCGCGGTGAGCCCGGCACGTTCGCGGACCCGGCCACCGGTCCGACGCCGGAGGCCCCGTTCGAGCCGTTCGTCGACCACTCGGAGCTCGAGGTCGTGGGCAAGGCGCCGCGCAAGCGCACCGGTACCCGCGTGCGCTACTGGGCCGACCGGCAGATCTTCCCGAAGTCGGCGGTGTTCTCCTACGACGAGCTGGTCACGCGGGCGCGCCAGACGACGTTCCTCGTGCCGGGCCTGCAGATCACCGTGCGCGACGAGCGCGGCCTGCCGGGCACGCCGGGGGAGTCCGGCCCGCACGAGGAGGTCTTCCAGCACTCCGGCGGCGCCGTGGACTTCGTGGAGTTCCTCGCGCCCGACACCCCCGTCACCTCGACCTGGCGGCTGCAGGGCTCGGGGTCCTTCACCGAGACGGTGCCCGTCCTGGACTCCCAGGGCCACATGACCTCCCAGGAGGTCAAGCGCGACTGCGAGGTCGACGTCGCGCTGCGGTGGGGCGTCGGCTACGAGACCGAGCTGCGCACCTTCGTCAACATCATCGCCACGCCCAAGGGCGGCTCGCACCGCACCGGGTTCGAGCAGGGGCTGCTCAAGACCATCCGCAAGCAGGTCGAGGCGAACGCCCGCCGGCTGAAGGTCTCCACGAAGGACTCCGCCGAGCGCATCGAGAAGGACGACGCGATGGCCGGCATGACGGCCGTGGTCACCGTGCGCCTGGCCGAGCCGCAGTTCGAGGGCCAGACCAAGGAGGTCCTCGGCACCGCGCCGGTGCGCCAGATCGTCTCGCGCGTGGTGGAGAACGAGCTCAAGGCGCTGCTGACGTCGACCAAGCGCGACGACAAGGCGCAGTCCGCGCTGCTGCTGGACAAGGTCGTCGCCGAGATGCGCGCGCGGGTCACCGCCCGCAAGCAGAAGGAGATCTCGCGGCGCAAGAACGCCCTGGAGTCCTCCTCGCTGCCGGCCAAGCTCGCCGACTGCCGCAGCGACGACGTCGAGCGCTCCGAGCTGTTCATCGTCGAGGGCGACAGCGCCCTCGGCACAGCCAAGCTGGCCCGCTCGTCGGACTTCCAGGCGCTGCTGCCGATCCGCGGCAAGATCCTCAACGTCCAGAAGGCGTCGATCAGCGACATGCTGCGCAACGTCGAGTGCGCCGCGATCATCCAGGTGCTCGGCGCCGGGTCGGGTCGCTCGTTCGACCTGGACGCCGCCCGGTACGGCAAGGTCGTGCTGATGACCGACGCCGACGTCGACGGCGCGCACATCCGCACGCTGCTGCTGACGCTGTTCTACCGGTACATGCGCCCGCTGCTCACCGAGGGTCGGGTCTTCGCCGCCGTGCCCCCGCTGCACCGGATCGAGGTGCTCGGCTCGGGCCGCCGCAAGGGCGAGTACCTGTACACCTACTCCGAGGCCGAGCTCAACGCGACGCTGAAGAAGCTCGACAAGGCCGGCCGCCGCTACAAGGACGACATCCAGCGGTACAAGGGTCTGGGCGAGATGGACGCCGACCAGCTCGCCGAGACGACGATGGACCCGCGCCACCGCACGCTGCGCCGGGTGACCGTCGAGCACGCCGAGGCCGCCGAGCGGGTCTTCGACCTGCTCATGGGGTCCGACGTCGCGCCGCGCAAGGAGTTCATCGTGGCCGGGGCGAACGCCCTGGACCGCGCCCAGATCGACGCCTAAMRVTATSESGYTARHLSVLEGLEAVRKRPGMYIGSTDSRGLMHCLWEIIDNSVDEALGGHATAIRVVLHADSSVTVEDDGRGIPVDAEPKTGLSGVEVVFTKLHAGGKFGGGSYTASGGLHGVGASVVNALSSRLDVEVDRGGKTYGMRFHRGEPGTFADPATGPTPEAPFEPFVDHSELEVVGKAPRKRTGTRVRYWADRQIFPKSAVFSYDELVTRARQTTFLVPGLQITVRDERGLPGTPGESGPHEEVFQHSGGAVDFVEFLAPDTPVTSTWRLQGSGSFTETVPVLDSQGHMTSQEVKRDCEVDVALRWGVGYETELRTFVNIIATPKGGSHRTGFEQGLLKTIRKQVEANARRLKVSTKDSAERIEKDDAMAGMTAVVTVRLAEPQFEGQTKEVLGTAPVRQIVSRVVENELKALLTSTKRDDKAQSALLLDKVVAEMRARVTARKQKEISRRKNALESSSLPAKLADCRSDDVERSELFIVEGDSALGTAKLARSSDFQALLPIRGKILNVQKASISDMLRNVECAAIIQVLGAGSGRSFDLDAARYGKVVLMTDADVDGAHIRTLLLTLFYRYMRPLLTEGRVFAAVPPLHRIEVLGSGRRKGEYLYTYSEAELNATLKKLDKAGRRYKDDIQRYKGLGEMDADQLAETTMDPRHRTLRRVTVEHAEAAERVFDLLMGSDVAPRKEFIVAGANALDRAQIDAPGPT0027710_1135DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622NANA
AK018_06063294hypothetical proteinGTGACCCGAACCGTGATTCGCCGGGAGCGAACCGGGCCCCCGTCCGGGAAGAATTCACGGGCGAGATGGTTTGATGGTGGCGTGAGCACTACGACCGAAGACACGACCCAGATGACCGCCGCCGACCGCTGTGACCGCTGCGGGGCCCAGGCCTACGTGCGTGTCGAGCTTCCCAGCGGGGAGCTGCTGTTCTGCGGCCATCACGCCCGTGCCCACGCCGACGCCTACCAGTCCGTGGCCACGCACATCCAGGACGAGACCGATCGTCTGCACGCCGAGCACGGCGCCGGCTGAMTRTVIRRERTGPPSGKNSRARWFDGGVSTTTEDTTQMTAADRCDRCGAQAYVRVELPSGELLFCGHHARAHADAYQSVATHIQDETDRLHAEHGAGNANANANANA
AK018_06064768hypothetical proteinATGCGTCTGCTCGGAAGGGTCGTCAGGTTCGCGTTCGCGATCGTCGCCGCGGCGATCCTCGCTGCTGCGGCGTCCGCGCCGGCCGCCGCGGCGGACGTGTCGCCCGGCCCCGGCCAGCCGAGGGTCGACGGCTTCGTGACGGTGAACGGCGACGTGGCGCCGCCGGGCCTGCGCGTCGCGGTCGTCGCCCTCGACGGGGACCAGGAGACGCGGTGCGGCGACTTCGTCACCGGCGAGGGGGCCACGTTCGAGCTCATCCTTCCCGCCGACTGCGGCCCGGGCACGACCGCTGTGTTCCGTGTCGACACCGGCACCCAGTCCGACACCGTCGTCGAGATCACCGAGGACCAGCGGTTCACGACCACCGTCGACTTCCAGCTCTCGGCCACGGAGCTGGTGTCCCTCGGGATCCAGCCGAGCACCACGCCCGAGGTCGCGGTGATCTCCAGCTCTCCCCTGCAGGGGACAGACCTGCGCGTCGTCGTGCTGAGCACCGTCATCCCGGCGACCCTGCTGCTGGTCGTCATGGTGCTGATGAAGGCCAGCTTCTGGCGACGCGGCACGTCCTCCGGCGGCGGGTCGACGCCGGATGACAAGGGGGACGGCACCTACCGCTCCCAGATCGAGGGCATGGTCCTGGTGATGGTGGTGCTCGCGGTCATCCTGCTGGGAGTCACGGACAAGATCGGCTCCGACGGACTCGTCTCGGTCCTGGCGGCCATCGTCGGGTACACCGTGGGCCGGCAGGTCGGTTCCCGCTCGACGTGAMRLLGRVVRFAFAIVAAAILAAAASAPAAAADVSPGPGQPRVDGFVTVNGDVAPPGLRVAVVALDGDQETRCGDFVTGEGATFELILPADCGPGTTAVFRVDTGTQSDTVVEITEDQRFTTTVDFQLSATELVSLGIQPSTTPEVAVISSSPLQGTDLRVVVLSTVIPATLLLVVMVLMKASFWRRGTSSGGGSTPDDKGDGTYRSQIEGMVLVMVVLAVILLGVTDKIGSDGLVSVLAAIVGYTVGRQVGSRSTNANANANANA
AK018_060651599rpoDRNA polymerase sigma factor RpoDGTGGCGTCCACTGCGCAGAACCCCCCGCTGCCCCGAGAGTTCGACCACCCTGCCCTGCAGGAGCTGCTCGACCGCGGCACCGCGAACGGTCGTGTCGACGCGGAGAGCTTCCGCTCTGCCTGCGAGCACGCGTCCGTGGGTGACCCCAAGCGCCTGAAGGCGGTGCTGCGCGCCTTCGCGGGCGCCGGTGTCGAGGTCGGCGTGCCCATGGCGGCGAAGGTCGCCGCGGCGGCCAGCTCCTCCACCAAGACCCAGACGCGGGCCAAGGCCCCGGCGCCGACGTCGGCTGCCAAGAAGTCGACGTCGTCGGCGGACGCGCCCGCGGACGACGCGTCCGACGTCGACAGCGGCTCGACGACGTCGACGACGAAGAAGCCGGCTGCCAAGAAGCCCGCCGCGAAGAGGACGGCGGCCAAGAAGTCGGCCGCGAAGAAGGCTGCCGGGACGGGCACGACCCGCAAGGCGGCCGCCAAGGCGCACAAGCCGGCCCCGGAGCCCGACGGCGTCCCCGTCGAGGACGAGGAGTCCGGCGACCAGCAGCGCGAGATCCACGTCACCGGCATCAAGCTCGGCCGGGGCAAGAAGGACGAGGAGGGCGGCGGCTTCGTCGTCTCCGACACCGACGACGAGGACCAGCCCGCGCAGCAGGTCGTCACCGCCGGCGCCACGGCAGACCCGGTCAAGGACTACCTCAAGCAGATCGGCAAGGTCGCGCTGCTGAACGCCGAGCAGGAGGTCGAGCTCGCCAAGCGCATCGAGGCCGGTCTGTTCGCCGAGGAGCGCCTCGCCCAGGACTACGCCGACTTCGACCGCACCAAGGCCACGGCCGACGAGCGCAAGATGTGGCGCGACCTGCGCTGGATCGCGCACGACGGCCGCCGCGCCAAGAACCACCTGCTCGAGGCGAACCTGCGACTCGTCGTCTCGCTCGCCAAGCGGTACACCGGCCGCGGGATGCTGTTCCTGGACCTCATCCAGGAGGGCAACCTCGGTCTGATCCGCGCGGTCGAGAAGTTCGACTACACCAAGGGCTACAAGTTCTCGACGTACGCCACCTGGTGGATCCGGCAGGCGATCACCCGCGCGATGGCCGACCAGGCCCGCACCATCCGTATCCCGGTGCACATGGTCGAGGTCATCAACAAGCTCGCCCGTGTGCAGCGCCAGATGCTCCAGGACCTGGGCCGCGAGCCCACGCCGGAGGAGCTGGCCAAGGAGCTCGACATGACGCCCGAGAAGGTCGTCGAGGTCCAGAAGTACGGTCGCGAGCCCATCTCGCTGCACACCCCGCTCGGCGAGGACGGCGACAGCGAGTTCGGTGACCTCATCGAGGACTCCGAGGCGATCGTGCCCTCGGACGCGGTGTCGTTCACGCTGCTGCAGGAGCAGCTGCACCAGGTGCTCGACACGCTCTCCGAGCGCGAGGCCGGCGTCGTCTCCATGCGGTTCGGCCTGCAGGACGGCCAGCCCAAGACGCTGGACGAGATCGGCAAGGTCTACGGGGTCACCCGTGAGCGGATCCGCCAGATCGAGTCCAAGACGATGTCGAAGCTGCGCCACCCGTCGCGCTCGCAGGTCCTGCGCGACTACCTCGACTGAMASTAQNPPLPREFDHPALQELLDRGTANGRVDAESFRSACEHASVGDPKRLKAVLRAFAGAGVEVGVPMAAKVAAAASSSTKTQTRAKAPAPTSAAKKSTSSADAPADDASDVDSGSTTSTTKKPAAKKPAAKRTAAKKSAAKKAAGTGTTRKAAAKAHKPAPEPDGVPVEDEESGDQQREIHVTGIKLGRGKKDEEGGGFVVSDTDDEDQPAQQVVTAGATADPVKDYLKQIGKVALLNAEQEVELAKRIEAGLFAEERLAQDYADFDRTKATADERKMWRDLRWIAHDGRRAKNHLLEANLRLVVSLAKRYTGRGMLFLDLIQEGNLGLIRAVEKFDYTKGYKFSTYATWWIRQAITRAMADQARTIRIPVHMVEVINKLARVQRQMLQDLGREPTPEELAKELDMTPEKVVEVQKYGREPISLHTPLGEDGDSEFGDLIEDSEAIVPSDAVSFTLLQEQLHQVLDTLSEREAGVVSMRFGLQDGQPKTLDEIGKVYGVTRERIRQIESKTMSKLRHPSRSQVLRDYLDNANANANANA
AK018_06066345Universal stress proteinATGGCGATCGTCGTGGGACACCTGAGCACCCCCGAGGGCGAGAAGGCGCTGGCGGCCGCCGAGGCGGAGGCGACGCAGCGCGGGACGCGACTCGTGGTCATCGGATCCGGCACCGGGGTCGAGGAGGTCGTGCAGCGACTCGAGGCGGCCGGCGTCGAGCACGCCGTCGTCCCGGGGACCGGCGACCTCGCCGAGGACCTGGTCCGTGAGGCCGTCGAGGCCCGGGCCGAGCTCATCGTGATCGGGCTACGACGTCGCAGCCCTGTGGGCAAGCTCATCCTGGGCTCCGGTGCGCAGCGGATCCTGCTCGAGGCTCCCTGCCCCGTGCTGGCCGTCAAACCGTGAMAIVVGHLSTPEGEKALAAAEAEATQRGTRLVVIGSGTGVEEVVQRLEAAGVEHAVVPGTGDLAEDLVREAVEARAELIVIGLRRRSPVGKLILGSGAQRILLEAPCPVLAVKPNANANANANA
AK018_060671197hypothetical proteinATGACCACCACCTGCGAACCCACTCCTGAGACCATCCGGCTGCGCGACGCCCACGACCTGCTCGCCGCCGTCCCGTACCGGCTCGGCTTCCGGCCCGCCGAGTCCGTCGTCCTGGCCTGCGTGACGGCGTCCGGACGCCTCGGGCTCGTCGCCCGCGTCGGCCTGGTCGACCTCGCCGGGATCGCGGGCCCCGGAGGTGCGGCGGCCCCGGGCGCGGCCGACACCTCCGCGCTGGAGCCGCTGGCCCGGGCCGTGGCCGACGTCGACCCGGCCTTCTGCCTGCTGGTGCTCTACACCGCGGGGGAGGCCTCCGCGGCGTCCGGCGGCGTCGAGGCCGTCCGGCGCGTCGTGGACCCGGCGGTCCGGGTGGAGAGCTGGCACGTGGCGCCCGAGTCCTACCGCGGGCTCGACTGCGACGACCCCGCCTGCTGCCCGCCCGGCGGGTTCCCGACGCGGGCGCTCGAGCACGGGGAGGTCGGTGCCGCGCACGTGCTCGCCGGCCGGGCGCTCGCGGGCTCGGCCGAGGAGGCGTTCCGGATCCCGCCCGCCCCGACCGCAGCCCGCGGGCTGTCCGCACGGGCCGCGCGGCGGCGTGAGGCGTCCCGCCCGACGACCGGGGACGACGGCGGCGCCCGGGGCTGGCGGGACGAGGCGTGGGCGGCGTGGCGGGCGGCGCTGCGGCAGGTCGACGACCCGGCGGGCCCCGCGCCGACGCTCCTCGGGCCCGCGCTGCTGGGCCGGGTGGGAGCGGGGCTCGCCGACCGGCGGGTCCGCGACGCGGCACTGCTGAGCCTGGTCCCGCACGGCGACGACGTCGCCGGGGCGGCCCTGGAGGGCCTCGAGGACGAGGCGCGCACGGCCCGCGCGATCTCCGCCGTCGTCGACGCCGACCGGGCCGTCGCGCCCGACCCGGCGCCGGTGCGCCGCGGCTGCGCCGTGCTCGAGCAGGTGGTGGCGCACGTGCCGCGACGCCTGCAGGTCGCGCCGCTGACCCTGCTCGCCTTCCTGGCCTGGTGGCAGGGCGACGGTCCGCGCGCCGCCCGCCGGGTCGAGGACGCCCTGGACGCCGACGCCGACTACCGGCTCGCGCGACTCGTGCAGGGCGTCGTGGTGGCCGGGCTGCCGCCGGGCTGGGTGTCTGCCGAGCAGGCGACCGACGGCTCGTCGGGGAGGCCCGCGGGCGGTCACGTCCGGTAGMTTTCEPTPETIRLRDAHDLLAAVPYRLGFRPAESVVLACVTASGRLGLVARVGLVDLAGIAGPGGAAAPGAADTSALEPLARAVADVDPAFCLLVLYTAGEASAASGGVEAVRRVVDPAVRVESWHVAPESYRGLDCDDPACCPPGGFPTRALEHGEVGAAHVLAGRALAGSAEEAFRIPPAPTAARGLSARAARRREASRPTTGDDGGARGWRDEAWAAWRAALRQVDDPAGPAPTLLGPALLGRVGAGLADRRVRDAALLSLVPHGDDVAGAALEGLEDEARTARAISAVVDADRAVAPDPAPVRRGCAVLEQVVAHVPRRLQVAPLTLLAFLAWWQGDGPRAARRVEDALDADADYRLARLVQGVVVAGLPPGWVSAEQATDGSSGRPAGGHVRNANANANANA
AK018_06068606hypothetical proteinGTGAGCGCCGACTACGGTGTCCCCGTGCCCACGACCTCGCGCCAGCGCACCGACCGTTCGGTGGGCCGGCGTGTGTCCGCCGTCCTGATGGCCGCCGCCCTGGCTGCGCTCACCGGCGGCTGCGACACGTTCGGCAGCGACGGACCGAGCCCGGCGACCGCCGCGAGCCGGGCACCGACACCGACCCCCGCCGACACCCCCACCGCGCTGCCGTCGTTCGACCCGTCCTCCGCCGTCGGCGACTACGCCCGCGGGTTCCCCACCGAGCTGCTCGGCGCACCGCAGCAGGCGACCGTGCTCGCCAGCTCGGCGCTGCCCGCCGAGAACGGCCTCGTCGAGGTCTCCCTGAACCTGGCGACCACCCAGCCGCCGCGCAAGATCGTCCAGCGCTACGCCCGCCGGCTGGACGAGGCCGGGTTCGCGGAGGCCGACGAGGTCGAGGCCTCAGGTCTGGCCGCCCGGTCGGTGTTCACCCGCACCCGCCAGGGCGAGGACGCCGTGGAGACGGTGCTGATCGGGGTGCTCGACGACGGCGAGCGACGGCTGGTCTCGCTGTCCGGCACCGTCGCGGCCGACCCCGAGGACCCCGCCGCCACCGAGGACTGAMSADYGVPVPTTSRQRTDRSVGRRVSAVLMAAALAALTGGCDTFGSDGPSPATAASRAPTPTPADTPTALPSFDPSSAVGDYARGFPTELLGAPQQATVLASSALPAENGLVEVSLNLATTQPPRKIVQRYARRLDEAGFAEADEVEASGLAARSVFTRTRQGEDAVETVLIGVLDDGERRLVSLSGTVAADPEDPAATEDNANANANANA
AK018_06069984hypothetical proteinATGGCTCTCGACGTCATCGGGATCACCGATTCCCAGCAGCGCGTCTACCAGGAGCTCCTCGGGCGCAGCTCGGCCGACGCCACCGAGCTGGCCGCGCGCACGGGTGTTGCACGTCACGCGATCCAGGAGCTGCTGGACCGGCTCGAGGCGATGGGTCTCGTCGCCCGCTCCGGAGCCCGCCACGACCGCTACGTGGCGGCACCGCCGGACGTGGCACTGTCCTCGCTGCTCCTCGACCACGAGGAGCGCACGCGCCGCGCCCGGACGGAGCTCAGCCGCCTCGAGGCCGTCTACCGCGAGGCGGCGCCGCGCCAGACCGAGGACGCGATCGACGTGGTTCGCGGCAGCGAGGCCGTGCGGCAGCGGTTCAACCAGCTCCAGCGCTCCGCTCGGGCCGAGGTGCTGGAGTTCGTCCGCGGCGACGTGGCCGTCGTCGAGCCCTCGCAGAACGTCGAGGAGGAGGCCGCGCTCGAGCGGGGGGTCGCCTACCGGTTCGTCATCGAGCGGCCGGCGATCGAGCGCGAAGGCGTGATCGAGGGCGTGCGGTCCACCGTCGAGCGCGGCGCGCAGGTCCGGCTCGTGCGCTCGCTGCCGACCCGCCTGCTCGTCGTGGACCGCCGGATCGCCATGGTGCCGTTCTCGGCCAGCAGCCGCGACCAGTCCGGCGGTGCCCTGCTGCTGCAGGCCGGGGGACTGCTCGACATGGCGACCGCCCTGTTCGAGCAGACGTGGCGCACCGCGTTCCCGCTGGGCGAGGACGACCAGGAACCGGTGGTCGCGCCCCAGCACGACGCCGACCTCGACCCCGCCGACCGGTACCTGCTGCAGCTGCTGAACGCCGGTCTGACCGACCGGACGATCGCCACCCGGCTCGGGGTGTCCATGCGCACGGTCCAGCGTCAGGTCCGCACCCTGATGGAGCGGGCCGGCGTCGACACCCGCCTCCAGCTCGGCGTCGCGGCCGCGCGGCACGGCTGGTTGTAGMALDVIGITDSQQRVYQELLGRSSADATELAARTGVARHAIQELLDRLEAMGLVARSGARHDRYVAAPPDVALSSLLLDHEERTRRARTELSRLEAVYREAAPRQTEDAIDVVRGSEAVRQRFNQLQRSARAEVLEFVRGDVAVVEPSQNVEEEAALERGVAYRFVIERPAIEREGVIEGVRSTVERGAQVRLVRSLPTRLLVVDRRIAMVPFSASSRDQSGGALLLQAGGLLDMATALFEQTWRTAFPLGEDDQEPVVAPQHDADLDPADRYLLQLLNAGLTDRTIATRLGVSMRTVQRQVRTLMERAGVDTRLQLGVAAARHGWLNANANANANA
AK018_060704101hypothetical proteinATGTCCCTTCACCGAAGAATGCTGCGACCCGCAGGCATCACGCTCGGTCTCGCCCTGGCCGGGACGACGCTCGTCGCCCCCGCGAGCGGCGCCCCGTCCCCCGACGCGGCCGACGTCGCGCAGCGGCTCACCGACGCCCAGCGCCAGACCCTCACCCAGGCCGGCGACCTCACGGTCCCGAGCGCCGTCGTCGACGAGGACATCGACACCACGTCGAGCGAGCCCGTCGACGTCATCGTCGAGCTCGCCACCCCGCCGGCGACCACCGCGCTCGCCCTGGCCGAGGCCGAGGGCCGCGACCTGACCGGCAAGGAGGCGCGCGCCGCGGTCCGTGCCTCCCAGCAGGCGCTCGAGGCCCTGCTGAAGGACACCGGCGCCGACGGCGAGCGCCGCAAGGCGCAGCGCCCCGCCGTGCGCCAGCAGTACACGCAGGCGTTCAACGGCGCCGCCGTCGAGCTGCCCGCCAGCGACGTCGAGGCGCTCGCCGCGTCCGACGACGTCGCCGCCGTGTGGGCCAACGACACCTGGACCGTCGACCTGCCCGAGACCGCGACGGTCGCCGTCGGCGCCTCCGCGGAGACCGACGACGTCGCCACGCTGCACGGCGAGGGCCTGACCGGCGCCGGCGTCAAGGTCGGCGTCCTGGACACCGGCATCGACTACACCCACCCGGCGCTCGCCGACGTCTACCAGGGCGGCTACGACCTGGTCGACGACGACGACGACCCGATGGAGACCACCTACGCCGACTGGCAGGAGGCCGGCGGGGCCGAGAGGAACCGCAACGGCAACACCTACTACACCCAGCACGGCACCCACGTGGCCGGCATCATCGCCGGTACCGACGAGCGGGGCACCTGGGGAGCGGCCGGCGTCGCACCCGAGGCCGACATCTACGCCTACCGCGTGCTCGGCCCGTTCGGCGGCGGCTCCACCGAGGACATCCTCGCCGGCATGGAGCGCGCGCTCGCCGACGGCATGGACGTCGTGAACATGTCGCTGGGCGGCAACGTCAACGACACCCAGAGCCCGCTGTCGATCGCCGCGAACCACCTGACGCTCGCGGGGGTGACCACCGTGCTGGCCGCCGGCAACTCCGGCGCGAACGGCGCGTTCTCGCTCGGCTCCCCGGCCGCCGCCCAGCTCGCCCTGACGGTCGGCGCGAACGACTTCGCGATCGAGGTCGCCACGCTCGGCGCCACCGTCGGGACCGCCGGGGCCGACCTGCAGCTCCTCGCCCGACCGACCCAGGACACGATCGCGGAGCTCGACGGCACCACGGCCACGATCGTGGACGCCGGCCTCGGCAAGGCGTCGGACTACCGCTACTACGACAGCGGCTGGCAGGACGTCGCCGCCGAGGGCAACGTCGTGCTGGTCCAGCGCGGTGAGATCTCCTTCCAGGAGAAGATGGAGCGCGCCGCCGACAAGGGCGCCGCCGCGCTGCTGATCGTCAACAACAACCCCGACGAGGAGCACCCGCCGTACTACTTCGGCGAGTCGGACACGTACGTGCCGACCTTCTCGGTCACGACCGCCCAGGGCGCCGCCCTGACCGCGGCCGTCGCCGACGGCGCGGAGGTCACGTTCTCCGGCTACGGCACGACGACGACCGGTGGCGGCAACCTCGCCGACTTCAGCTCGCGCGGGCCCGCCAAGGGCAACGGCGACATCAAGCCCGAGGTCACCGCCCCCGGTGTCAGCGTGCTGTCCGCGATCCCGGCGCACATGATCGACCCCGAGAACCTCGACGACCACTCGACGGCCTACGCCCGCCTGTCCGGCACGTCCATGGCGACGCCGTACGTGGCCGGCAGCGCCGCGCTGATGCTCCAGCACGACGAGGACCTCGACCCGATCGAGCTCAAGGCCCGCCTGATGAACACCGCGGACCCGCTCGACGAGGACCACAGCGTCTTCGCGATCGGCGCCGGCGAGGTGGACCCGTACCAGGCGGTGCACGCGGACACGTTCCTGCTGACCGCGGAGAAGGCCAGCACCCTGGCCCAGCGGGACGTCACCACCGCGACCGGCAGCACCCCGTGGTCGGCGGCGTCCGCCGAGGACGCCGAGATCGGCAGCGACCTGAGCTTCGGCGTGCACGCCCTGGGCACGGAGCTCTCCGACTCCCGCCGCCTGGAGATCGTCAACGAGTCCACCGAGCGGGCCCGCTACACCGTCGACGTCGTGCTCGACCAGGGCGTCGGCACCCAGGACGCGGCCGCGCAGGGCGTGACCGTGTCGACCAAGCACCAGGTGCAGGTGGCGGCCGGCGGCTCCGGCACCGTCCGCGTCGACCTCGACGTCCCCGCGACGGCCGAGGCCGGCACCTACGGCGGCTACGTCGAGGTCACCCGCGAGGGGGACGACGGCGAGGGCTACCGCGTGCCGTTCGGGTTCCGGATCACCGAGACCGGCTTCGCCGACTTCGCGTTCGTCAAGCAGGTCATGACCACGAACGTCACCAACGTGCTCGGCCCGCAGCTCGAGTGGGCCTTCGCGCTGAAGAACCACATGCGCTCGCTCGACTTCTTCGTCGCCGACACCGAGGGCAACGACGTCGGCTACATCGGGTCCCTGGACACGGTCGCCGCGGCCGAGGGCCGCATGTACGGCCCGATCGGCTGGATCGGCGGCTACTACCCGCTGACCGGTGACCGCGACTTCCCCGTCAGCCACGCGCTCAGCACGATCGAGCCCGGTGCGCACGTCCTCAAGGTCGTCGGCACCGACGACTCCGGACGCACGTTCACCGCCTCGGAGACCTTCTTCGTCGACAACACCGCACCCGAGATGGTGGTCGACCGTCCCGGCGACGTCATCGAGGTGCCGGCCGGCGAGTCCTCCTACGCCATCGGCGGCACGCTCGTCGACGGCGAGACCGCGGCGATGCGCGCGGCCGGCCTGGACGTCGACCAGAGCGACAACGGGTTCCTCGTGTACACGTACTCGGCGTTCATGCCCTCGGACCAGGTCCGCCCCGGGGCCGACGGCGCGTTCTCGTACACCGCCTCGTTCGGTCCCTCGCCGGTGGCCACGCACCGCTACCGCGGCATCGACGCGGCCGGGAACGTCGCCGAACAGCTCGAGTACACCGTGCTCACCGCGGGCGAGCCGTACATCGACGGCCAGAACGACCTCGAGTACGCGGCCCCGGGCGAGGACCTCACGACGACATTCACGCACCACCACGCCGAGGACCTCGGCACGGTGCGGGTCACCTTCCGCTACGACGCCGCACGCACCGAGGTCGTCGACGTCCGGCCCGCCGAGGGCCTGGCGGCCCACGGTGACCCGACGCTCGACGTCGAGATCCCCGAGGGCGACTCCGGTCTGGTGCAGGCCTCCGCCACCCTCACCTTCGACGGCGAGACGCCGGCGACCGCCGAGGAGCTGCCGCTGCTCGACGTCGTCACGCGGGGCCTCGAGGACGGTCCCTGGGCGCAGGGCGCCGGTCTGGTGACGGTCTCGGTGTACGTCCACGACGCCGAGGGCAGGTTCGTCCGCACGTGGCGCCGGTTCGACACGTCCCAGTACCTGCCGTCGCACGTCGACGTCACGGGCAGGTTCCTCGCCCAGGGCCTGTTCACCCCGGAGCTGGCCCACGACCCGGAGCGTGACCACTCCGCCGTCGGTGGCGAGGTCGTGCTGACGGCGCCCGACGGCACGGTGCACCACCCCGAGATCGCCGCCGACGGCAGCATCTCGGTCCCGAGCGTCCCGGTGACCGTCGAGCCGTACGTCCTCTCCGCGACCCTGCCGGGGCACCTCGACTTCCGCACCGAGGTCACGGTCGGGCACGAGCTCGCCGACGGCCGGGTGCTCGGCACCCCGGCCCAGGGCGTGGTCCAGCTCTACGGCGGCGACGTGACCGGTGACGACGTCGTCGACATCCTCGACGCGCTCGCGATCCAGGACGCGGCAGGCACCGCCGACCGTGCCGCGGACGTGAACGCGGACGGCGTGGTCGACGGCCAGGACCTGACGCTCGTCGAGCGCAACTGGCTGATGCGCAACCCGTCCGCCGAGACCGTCCCGGACCCGCGCGACCGCAAGGGTTCCTGGACTCTGGAGGACGTCCAGGCGGCACTCGCCGGCTGAMSLHRRMLRPAGITLGLALAGTTLVAPASGAPSPDAADVAQRLTDAQRQTLTQAGDLTVPSAVVDEDIDTTSSEPVDVIVELATPPATTALALAEAEGRDLTGKEARAAVRASQQALEALLKDTGADGERRKAQRPAVRQQYTQAFNGAAVELPASDVEALAASDDVAAVWANDTWTVDLPETATVAVGASAETDDVATLHGEGLTGAGVKVGVLDTGIDYTHPALADVYQGGYDLVDDDDDPMETTYADWQEAGGAERNRNGNTYYTQHGTHVAGIIAGTDERGTWGAAGVAPEADIYAYRVLGPFGGGSTEDILAGMERALADGMDVVNMSLGGNVNDTQSPLSIAANHLTLAGVTTVLAAGNSGANGAFSLGSPAAAQLALTVGANDFAIEVATLGATVGTAGADLQLLARPTQDTIAELDGTTATIVDAGLGKASDYRYYDSGWQDVAAEGNVVLVQRGEISFQEKMERAADKGAAALLIVNNNPDEEHPPYYFGESDTYVPTFSVTTAQGAALTAAVADGAEVTFSGYGTTTTGGGNLADFSSRGPAKGNGDIKPEVTAPGVSVLSAIPAHMIDPENLDDHSTAYARLSGTSMATPYVAGSAALMLQHDEDLDPIELKARLMNTADPLDEDHSVFAIGAGEVDPYQAVHADTFLLTAEKASTLAQRDVTTATGSTPWSAASAEDAEIGSDLSFGVHALGTELSDSRRLEIVNESTERARYTVDVVLDQGVGTQDAAAQGVTVSTKHQVQVAAGGSGTVRVDLDVPATAEAGTYGGYVEVTREGDDGEGYRVPFGFRITETGFADFAFVKQVMTTNVTNVLGPQLEWAFALKNHMRSLDFFVADTEGNDVGYIGSLDTVAAAEGRMYGPIGWIGGYYPLTGDRDFPVSHALSTIEPGAHVLKVVGTDDSGRTFTASETFFVDNTAPEMVVDRPGDVIEVPAGESSYAIGGTLVDGETAAMRAAGLDVDQSDNGFLVYTYSAFMPSDQVRPGADGAFSYTASFGPSPVATHRYRGIDAAGNVAEQLEYTVLTAGEPYIDGQNDLEYAAPGEDLTTTFTHHHAEDLGTVRVTFRYDAARTEVVDVRPAEGLAAHGDPTLDVEIPEGDSGLVQASATLTFDGETPATAEELPLLDVVTRGLEDGPWAQGAGLVTVSVYVHDAEGRFVRTWRRFDTSQYLPSHVDVTGRFLAQGLFTPELAHDPERDHSAVGGEVVLTAPDGTVHHPEIAADGSISVPSVPVTVEPYVLSATLPGHLDFRTEVTVGHELADGRVLGTPAQGVVQLYGGDVTGDDVVDILDALAIQDAAGTADRAADVNADGVVDGQDLTLVERNWLMRNPSAETVPDPRDRKGSWTLEDVQAALAGNANANANANA
AK018_060711110ispBCOG0142Octaprenyl diphosphate synthaseATGCCTGCTGCTGCGACCCCGTTGGTCGACCTCGAGAACCTCCGCACCGACGTCGACGCGGCGCTGCGAGCCCACCTCGACCGGCTCCGGGACGAGGCCGTGGGCATCGGCGCCGGCACCACCGCCCTCACCGAGCACGTGTCCACGCTGCTTGCCGGGGGCAAGCGCCTGCGGGCCGCGTTCTGCTACTGGTCGTTCCGTGCGCACGGCGGCGCCGCGACGGGGCCCGAGCGCGACGCCGTCGTCCGCATCGGCGCCGCCCTGGAGCTGTTCCAGGCGGCCGCGCTGCTGCACGACGACGTCATGGACGCCTCGGACACCCGCCGGGGCATGCCGACGGCCCACCGCGTCTTCGCCGCGCGGCACGAGGACAACGCCTGGACCGGTGACGGCGAGCGGTTCGGCACCGCGGCGGCGATCCTGCTCGGCGACCTGTGCCTGGTCGCCTGCCAGCGCGAGGCGGCCGCCGCCCTGGACGCCGTGGAGCCGGCCGTCGCCCGCACGGCGCGCGACCTGTTCGACACCATGACGAGCGAGGTGGTCGTCGGCCAGTACCTCGACGTGCTGGTGCAGGCCGAGCCCTGGGGGCTCGACCCCGCCGGCGACGAGGAGCGCGCCCGCACCGTGCTGCGCTCGAAGTCGGCGCGCTACTCGGTCGAGCGCCCGCTCACCCTGGGCGCCGTCCTGGCCGGCGCCGACCCGGAGCAGGTCGCCGCGATCAGCGCCGTCGGGCTGCCCGTCGGCGAGGCCTTCCAGCTGCGCGACGACCTGCTCGGGGTGTTCGGCGACCCCGCCGTGACCGGCAAGCCCGCCGGGGACGACCTGCGCGAGGGCAAGCACACGGTGCTCGTCGCGCGGACCCTGGCCGACGGCGACGACGAGGCGCGCGCGCTGCTGGCCAAGCACCTCGGCGACCCCGACCTGTCCGACGCGGACGTCACCGCGCTGCGCGAGACGATCACGGCCTCCGGGGCCGTCGAGGACGTCGAGGCGCTCATCGACGAGCTCGCCACCGGAGCGCTCGGGCGCCTGGGGGCCTCCGACCTGCGCTCCCCCGGTCGCGAGGTGCTCGCCGACCTGGCCCGGGTCGCCGTCAACCGCCGGGCCTGAMPAAATPLVDLENLRTDVDAALRAHLDRLRDEAVGIGAGTTALTEHVSTLLAGGKRLRAAFCYWSFRAHGGAATGPERDAVVRIGAALELFQAAALLHDDVMDASDTRRGMPTAHRVFAARHEDNAWTGDGERFGTAAAILLGDLCLVACQREAAAALDAVEPAVARTARDLFDTMTSEVVVGQYLDVLVQAEPWGLDPAGDEERARTVLRSKSARYSVERPLTLGAVLAGADPEQVAAISAVGLPVGEAFQLRDDLLGVFGDPAVTGKPAGDDLREGKHTVLVARTLADGDDEARALLAKHLGDPDLSDADVTALRETITASGAVEDVEALIDELATGALGRLGASDLRSPGREVLADLARVAVNRRAPGPT0007550_531DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007550-idsA-K13787NANA
AK018_06072381DNA-binding proteinGTGAGCGATGCATCCGCGCAGACCCCCCTGGACGACCTCGTCGGCGAGTGGCTGACCCTGCCCGACCTGGCCGAGGCCCTCGGCACCGACGTCAGCAGGGCCCGGGGGCTGGTCGCCTCCCGCCACGTCGTCGGCGTCAAGCGGGGCGAGCGCACCACCTTCCAGGTGCCGGCCGCCTTCGTGGTGGAGACCGACGACGGCCCGGCGGTGCTGGAGACGCTGCGCGGCACGCTGATCCTGCTGGGTGACGCCGGCTTCAGCGACCCCGAGGCGCTGCGGTGGCTGTTCACCGCGGACGAGTCGCTCGGGCGCAGCCCCGTGGAGGCCCTGCGTGCCGGCCAGCGCGCGCAGGTGCGCCGGCTCGCCCAGGCGATGGGCTGAMSDASAQTPLDDLVGEWLTLPDLAEALGTDVSRARGLVASRHVVGVKRGERTTFQVPAAFVVETDDGPAVLETLRGTLILLGDAGFSDPEALRWLFTADESLGRSPVEALRAGQRAQVRRLAQAMGNANANANANA
AK018_060732010spk1_2Serine/threonine-protein kinase PK-1GTGGCCTCCACGACGACCGACCCTCTGCTCGGCCGCCTGGTCGACGGGCGGTACGAGATCGTCGCGCGCGTGGCCCGCGGAGGCATGGCCACCGTCTACCGTGCCCGGGACCGGCGCCTGGGCCGCGAGGTCGCGGTCAAGGTGATGCACCCGCACCTCGCCGACGGCGTGGACGGCGCCAGCTTCGTCTCCCGCTTCCGGCGCGAGGCGCGCGCCGCCGCACGACTGTCGCACCCCGGCGTCGTCGCGGTGTTCGACCAGGGTCTCGACGGCGACACCTCCTACCTGACGATGGAGTACGTCGAGGGCAGCAACCTGCGCGCCGAGCTGCAGCAGGGGCCGCTGCCCGTCGGGCGGGCCCTCGACGTGGCCGCCCAGGTGCTGGAGGCGCTCGCCGCGGCGCACCGCGTCGGTCTGGTGCACCGCGACATCAAGCCGGAGAACGTCCTGCTGGGCTCGGACGGCACCGTCAAGGTCGCCGACTTCGGCCTGGCCCGCGCCGTGACCGAGGTGACCTCGACGGCCAGCGGGACGATCCTCGGCACGGTCGCCTACCTGGCGCCCGAGGTGATCACGTCCGGCGGGACGAGCCCCGCCACGGACGTCTTCGCCGTCGGCGTGCTGCTCTCGGAGATGCTGACGGGCACCGTGCCCTACCCGGGCGAGCCACCGATCGGCGTGGCCTTCCACCACGTCCACGAGGACCTCCCGGCGCCCTCGCAGCGGGTGGACTGGCTGCCCGCGGAGCTCGACCGCCTCGTGGCCTCGTTCACGGCCCGGGACCCGCACCGCCGCCCCGCGCACGCCGGCGCCGCGGGCGCGGCCGTCGCCGGGGCCCGGGCGCTGCTGGACCCGGACGTGCTCGCCCGCCGCGCGGATCGGCCGGTGCTGCCGGCCGAGGACGACGTCGACGGCGACCCGCACACGGGCCCTGACGACGACCCGGACGCCCCGCGTTCTGGGTCCGCCGACGCCGTCGACGAGATCCCCACGGCGTTCTTCACCGAGGTGCCCGCCGGCGAGCACCGGACCGAGCACCTGGTCACCGAGCCGACCCACGCCCTGGCGGGACCGGTCGCAGCCGGTCCGCCCGCCCCGGAGCGGACGCACCGGCGCGGCGCCGTGGTGTGGGCGGTGCTGCTGGTGCTGCTGCTGGGCGGGGGCGGCGCGGGCACCTGGTGGTGGTTCGCCGCCGGGCCCGGGGCCTGGACGACCGTGCCGGCGGGCCTGGTGGGTGCACCGGCCGAGGACGCCGGCGCCGCGCTCGCCGCGCAGGGCCTGGACGCCGAGACCCGGGAGCGGCACCACGACGACGTCCCGGCGGGCGACGTCGTCGCCACCGACCCGGCCCCGGGCGAGCGCGTGCGTCGCGACGGCAGCGTGGAGCTGGTCGTCTCGCTCGGGGTCCGGATGCTCACCGTGCCCGCAGACCTCGTGGGCTCGCCCCGGCAGGACGCCGAGGCCGCCCTGGACGCGGAAGGGTTCGCCGTCGAGGTCGACACCGTCCACGACGACGCCGCGCCCGAGGGCGAGGTCCTGGGCACCTCGGTCCCGGAGGGTTCCCGACAGCGGCACGACACGGTGGTGACCCTGACGGTGTCCGACGGGCCGGCGCCGGTCAGCGTGCCCCAGGTGGTCGGGCGCTCCGCCGACGAGGCCGAGGAGGACCTGGCCGCCGCCGGTCTCGAGGTCGCCTACGCCGACCCCGAGACCTCGACGGAGGTGGCCGAGGGGCGCGTGCTCGCCCAGGACCCGGAGCAGGGCACGACGGCGCGCCGCACCGACACGGTCACGCTGACGCTGTCCGCGGGTCCGCCGCAGGCCGAGGTGCCCGACGTCACGGGCATGACCGGTGACGAGGCCACGGCCGCGCTCGAGGAGGCGGGTTTCGAGGTCGAGGTGACCGGCCTGCTCGGCGGGTGGCTGCCCGCGTTCCGCGACGAGGTGCGCGAGCAGGAGCCCACCGGCAGCGCGCCGGTGGGCTCGACCGTGACGATCACCGTCTGGTGAMASTTTDPLLGRLVDGRYEIVARVARGGMATVYRARDRRLGREVAVKVMHPHLADGVDGASFVSRFRREARAAARLSHPGVVAVFDQGLDGDTSYLTMEYVEGSNLRAELQQGPLPVGRALDVAAQVLEALAAAHRVGLVHRDIKPENVLLGSDGTVKVADFGLARAVTEVTSTASGTILGTVAYLAPEVITSGGTSPATDVFAVGVLLSEMLTGTVPYPGEPPIGVAFHHVHEDLPAPSQRVDWLPAELDRLVASFTARDPHRRPAHAGAAGAAVAGARALLDPDVLARRADRPVLPAEDDVDGDPHTGPDDDPDAPRSGSADAVDEIPTAFFTEVPAGEHRTEHLVTEPTHALAGPVAAGPPAPERTHRRGAVVWAVLLVLLLGGGGAGTWWWFAAGPGAWTTVPAGLVGAPAEDAGAALAAQGLDAETRERHHDDVPAGDVVATDPAPGERVRRDGSVELVVSLGVRMLTVPADLVGSPRQDAEAALDAEGFAVEVDTVHDDAAPEGEVLGTSVPEGSRQRHDTVVTLTVSDGPAPVSVPQVVGRSADEAEEDLAAAGLEVAYADPETSTEVAEGRVLAQDPEQGTTARRTDTVTLTLSAGPPQAEVPDVTGMTGDEATAALEEAGFEVEVTGLLGGWLPAFRDEVREQEPTGSAPVGSTVTITVWNANANANANA
AK018_060741365aroH_2COG3200Phospho-2-dehydro-3-deoxyheptonate aldolaseATGAGCACCGCCGTCGACGTCGTCGCGCCCGGGACGGACCCGCAGGGGCTGGACCGGTTCCGCGACTTCGAGGCACGTCAGCAGCCGGTCTGGCCGGACGCCGACGCCCTGGACGCCGTCGCCGCCCGGCTGGCGGTCGCGGCGCCGCTCGTGGTGCCCGCCGAGGCGGACACGCTCACCGAACGTCTCGCCGCGGCCGCCCGCGGCGAGGCGTTCCTCCTGCAGGGCGGGGACTGCGCGGAGACGTTCGCCGACGCGAACGCGACGCGCATCCGCAACAAGGTCCGCACCATCCTGCAGATGGCCGTGATCCTCACCCACGGGGCGAGCACCCCCGTGGTGAAGATGGGCCGGCTCGCCGGGCAGTACGCCAAGCCGCGCTCGGCGGACACCGAGACGCGCGACGGCGTCACGCTGCCCTGCTACCGCGGCGACATGGTCAACGGGCACCCGTTCACCCCCGCGTCGCGGATCCCGGACCCCGACCGGCTGGAGCAGGCCTACCGGATCTCCGCCGCGACGGCGAACGTGGTGCGCGCCTTCACGCAGGGCGGCTACGCCGACCTGCGTCGCGTGCACGAGTGGAACCGCGGCTTCATGGAGAACCCGGCCTACGCCCGCTACGAGCGCACGGCCACGGAGATCGACCGGGCGATCCGGTTCATGGATGCCTGCGGGGCCGACTTCGACGCCCTGCGCACGGTCGAGTTCTTCCTCAGCCACGAGGCGCTCATCCTCGACTACGAGCGGGCCCTGACCCGCGTCGACCCCCGGTCCGGGCTGGCCTACGACACCAGCGCCCACTTCCTGTGGATCGGGGAGCGCACGCGCCAGCTCGATGGGGCGCACGTGGAGTTCCTGTCGCACGTGGCCAACCCCGTGGGCGTCAAGCTCGGGCCGACGACGACGCCGGACGACGCGATCGCGCTGGCCCGGCGGCTCAACCCGGACAACGTCCCCGGCCGCCTGACGTTCATCACGCGCATGGGCGCGGGTCGCGTGCGCGAGGTGCTGCCCGACGTCGTGCACCGGGTGACGGCGGCGGACATCGCGGTGACCTGGGTGACCGACCCGATGCACGGCAACACGATCACCTCGGACAGCGGCTTCAAGACCCGCCGGTTCACCGACGTGCTCGACGAGGTCACCGGCTTCTTCGAGGTGCACCGCGACCTGGGCACGGTGCCCGGCGGCCTGCACATGGAGCTCACCGGCGACGACGTCACCGAGGTCCTCGGCGGCAGCGAGGAGATCTCCGACGCCGGGCTGGCCGAGCGCTACGAGACCCTCGTGGACCCGCGCCTGAACCACCAGCAGTCCCTCGAGACCGCCTTCCAGGTCGCGGAGATGCTCACCAGACGGTGAMSTAVDVVAPGTDPQGLDRFRDFEARQQPVWPDADALDAVAARLAVAAPLVVPAEADTLTERLAAAARGEAFLLQGGDCAETFADANATRIRNKVRTILQMAVILTHGASTPVVKMGRLAGQYAKPRSADTETRDGVTLPCYRGDMVNGHPFTPASRIPDPDRLEQAYRISAATANVVRAFTQGGYADLRRVHEWNRGFMENPAYARYERTATEIDRAIRFMDACGADFDALRTVEFFLSHEALILDYERALTRVDPRSGLAYDTSAHFLWIGERTRQLDGAHVEFLSHVANPVGVKLGPTTTPDDAIALARRLNPDNVPGRLTFITRMGAGRVREVLPDVVHRVTAADIAVTWVTDPMHGNTITSDSGFKTRRFTDVLDEVTGFFEVHRDLGTVPGGLHMELTGDDVTEVLGGSEEISDAGLAERYETLVDPRLNHQQSLETAFQVAEMLTRRPGPT0012920_1523DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012920-3_deoxy_7_phosphoheptulonate_synthase|aroF|aroG|aroH-K01626NANA
AK018_060751227pfp_4Pyrophosphate--fructose 6-phosphate 1-phosphotransferaseATGTCGGTCCGTCGTGTGGCCCTGCTGACCGCCGGTGGCTTCGCCCCGTGCCTGTCGTCCGCGGTCGGTGGCCTCATCGAGCGCTACACCGAGCTCGACCCGTCGATCGAGATCATCGCCTACCAGTACGGCTACCACGGCCTGCTGACCGGCACGAAGATCGAGATCGACGCCGCGGGCCGCCGTCAGGCCGGCATCCTCCACCGCTTCGGCGGCTCGCCGATCGGCAACTCGCGCGTCAAGCTCACCAACGCCGCCGACTGCGTCAAGCGCGGCCTGGTCGCCGAGGGCCAGGACCCGCTGCACGTCGCCGCGGAGCAGCTCAAGGCCGACGGCGTGGACGTGCTGCACACGATCGGTGGCGACGACACCAACACCACCGCCGCCGACCTCGCCGCCTACCTGCACGAGAACGACTACGAGCTCACCGTGGTCGGTCTGCCCAAGACGATCGACAACGACGTGGTCCCGATCAAGCAGTCGCTCGGCGCCTGGACCGCGGCCGAGGAGGCCGCCGGGTTCGCCGCGAACGTCATCGGCGAGCACCGGTCGGGTCCGCGCATGCTCATCGTGCACGAGGTCATGGGCCGCCACTGCGGCTGGCTGACCGCCGCCGCGGCCGCGGAGTACCGCAGGTGGCTCGACGCCCAGGAGTTCGCCCCCGCGCTGGGCCTCACGCGCGAGCGCTGGGACGTGCACGCGGTGTTCCTGCCCGAGCTGGCCCTCGACATCGACGGCGAGGCCGAGCGCCTCAAGGCGATCATGGACACGCACGGCAACGTCAACATCTTCCTGTCCGAGGGTGCGGGCATGCACGAGATCGTCGCCCAGCTCGAGGCGTCCGGCGAGGAGGTCCAGCGCGACCCGTTCGGCCACGTCAAGCTCGACACGATCAACCCGGGCCAGTGGTTCGCGAAGCAGTTCGCCGAGAAGCTGGGCGCCGAGAAGGTCATGGTCCAGAAGTCCGGGTACTACTCGCGCGCCGCCGCGGCGAACGCCGAGGACCTGCGGCTCATCAAGTCGATGACCGACCTGGCGGTCGAGTGCGCCCTGCGCGGCGAGCCCGGCGTCATCGGCCACGACGAGGAGGACGAGGACAAGCTCAAGGCGATCGCCTTCCCGCGGATCGCCGGCGGCAAGGCCTTCGACGTCCACCAGGAGTGGTTCGGCGCGCTGCTGGCCGACCTCGGTCAGCCGCTCGTGCCGGCGCAGCCCTCCGAGCACTGAMSVRRVALLTAGGFAPCLSSAVGGLIERYTELDPSIEIIAYQYGYHGLLTGTKIEIDAAGRRQAGILHRFGGSPIGNSRVKLTNAADCVKRGLVAEGQDPLHVAAEQLKADGVDVLHTIGGDDTNTTAADLAAYLHENDYELTVVGLPKTIDNDVVPIKQSLGAWTAAEEAAGFAANVIGEHRSGPRMLIVHEVMGRHCGWLTAAAAAEYRRWLDAQEFAPALGLTRERWDVHAVFLPELALDIDGEAERLKAIMDTHGNVNIFLSEGAGMHEIVAQLEASGEEVQRDPFGHVKLDTINPGQWFAKQFAEKLGAEKVMVQKSGYYSRAAAANAEDLRLIKSMTDLAVECALRGEPGVIGHDEEDEDKLKAIAFPRIAGGKAFDVHQEWFGALLADLGQPLVPAQPSEHPGPT0017640_611DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017640-pfp-K00895NANA
AK018_06076777hypothetical proteinTTGTTCTACTGGGTGATGAAGCACGTGCTGGTGGGGCCGTGGCTCCGGCTGGCCTTCCGCCCGTGGACCCGTGGCGTGGAGCACCTGCCCGCGACGGGCGGCGCGATCCTCGCGAGCAACCACCTGGCCGTCATCGACTCCTTCGTGCTGCCGCTCGTGCTCGACCGGCAGGTGAAGTTCCTCGGCAAGTCCGACTACTTCACCGGCAGGGGGCTGCGCGGCCGCCTGGTGGCCGGGTTCATGCGCGGCGTCGGCACCATCCCGGTCGACCGCTCGGGGGGCAAGGCCAGCGAGGCCGCCCTGCGCACCGGGCTGCGGGTGCTGGACGAGGGTGACCTGTTCGGCATCTACCCCGAGGGCACGCGCAGCCCCGACGGGCGGCTGTACCGCGGCAAGACCGGGGTGGCCCGGCTCGCCCTGGAGTCCGGCGCCCCGGTGGTGCCCGTCGCGATGGTCGGCACGGACGTCGCCCAGCCGCTGGGGACGGTGCTGCCCAAGCCGATGCCGATCGGCGTCGTCATCGGCGAGCCCCTGGACTTCAGCCGCTACCGCGGCATGGAGAACGACCGGTTCGTGCTGCGCGCGGTGACCGACGAGATCGTCTACGCGATCATGCGGCTGAGCGAGCAGGAGTACGTCGACGTCTACGCGGCCACCGCCAAGGCGCGTATCGCCCAGGGACTGCCCGTCGACCCGACGCCGGGCGGCGGCACACCGGAGCGCCGGCCCGCCCCGGAGCCGTCGCCGCGACCGGAGCCGGAGCGACCCGAGCGCTGAMFYWVMKHVLVGPWLRLAFRPWTRGVEHLPATGGAILASNHLAVIDSFVLPLVLDRQVKFLGKSDYFTGRGLRGRLVAGFMRGVGTIPVDRSGGKASEAALRTGLRVLDEGDLFGIYPEGTRSPDGRLYRGKTGVARLALESGAPVVPVAMVGTDVAQPLGTVLPKPMPIGVVIGEPLDFSRYRGMENDRFVLRAVTDEIVYAIMRLSEQEYVDVYAATAKARIAQGLPVDPTPGGGTPERRPAPEPSPRPEPERPERPGPT0024380_1704DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
AK018_06077537hypothetical proteinATGGCTTCATCGAACCGGGACGCGGATCCGGACGACCTCCCGGACGCCGACGTCGACGCCCGTTGGACCGACATCGTCGCACGACTGAACGACGTGGAGCAGTCCGGCCGCGACGTCGCGCGGTCCACGCCGACCGGGCCCCGGGGCGAGGACGCCACGGGCGACGCCGACGACACGACCGCGACGCCGGAGGTCGCCGCCCCCTCCCCCGCGCCGCGTGCGCCGGGGCCCCGCGACTGGCCCGCCTCGCCGGAGGTCGAGCGGCGGGAAGAGACTGAGTCGCACTTCGTCCCCCCGGACCCCGCGCCCATCGGGCAGCGCGACCCGCTGCTCACCCTGGCCTGGACCGTCGTCGTCGCGGTGCCCGTGCTGACCGTGCTGAGCGTCGTGCTGCGCGCCGCGCTCGCCGAGCTGTCCGTGCCCGGCTGGCTCGGACCGGCCGCCGGCGCCGCGTTCGTCGCCGCCGTCGCCGTCCTGGTCTGGCGGATGCCGAACCGCCGCGACCCCGAGGACGACGACCCCGGGGCGGTCGTCTGAMASSNRDADPDDLPDADVDARWTDIVARLNDVEQSGRDVARSTPTGPRGEDATGDADDTTATPEVAAPSPAPRAPGPRDWPASPEVERREETESHFVPPDPAPIGQRDPLLTLAWTVVVAVPVLTVLSVVLRAALAELSVPGWLGPAAGAAFVAAVAVLVWRMPNRRDPEDDDPGAVVNANANANANA
AK018_06078945glkA_2GlucokinaseATGCACGCCATCGGAGTCGACATCGGCGGAACCAAGATCGCCGTCGGCGTCGTGGACGAGGCCGGGCGCATCCTGGCCCAGGTCCGGCGGGACACCGCCGCCGACGACGTCGCGAGCATCGACCGTGCGATCGCCGACGCCTGCACGGAGCTGGCCCGGGAGCACGAGGTCGGCGCGATCGGCCTGGCCGCGGCCGGTTTCGTCAGTCCGGACCGCTCCTCGGTGCTGTTCGCCCCCAACATCGCCTGGCGCGAGTACCCGCTGGCGCAGCGGGTCGGCGACCTGCTCGACGTGGACCTCCCGGTGGTCGTGGAGAACGACGCGAACGCCGCCGGCTGGGCCGAGTTCCGGTTCGGCGCCGCGCACGACGCCACCGACATGATCATGCTCACCGTCGGCACGGGGCTCGGCGGCGCCGTCGTCGTCGACCGCGAGCTGGTGCGCGGCAAGTGGGGCGTGGCCGCCGAGGTCGGGCACATGCGGGTCGTCCCGGGCGGCCACTACTGCGGGTGCGGCCACGAGGGCTGCTGGGAGCAGTACGCCTCCGGCTCCGCGCTGGTGCGCGACGCCCGGCAGGCCGCCGTGGCGAACCCCGACGCGGCCCGGCGCCTGGTGGAGCTGGCGGGCGGCGACCGGGAGGACATCCAGGGGCCGCACGTCACCCAGGCCGCCCAGGAGGGCGACCCGCTGGCGATCGAGCTCCTGGCCACGCTCGGGCGCTGGATCGGCGAGGGTGCCGCGTCGGTGGCCGCGCTGCTCGACCCGGAGCTGTTCGTCATCGGCGGCGGCGTCGGAGCGGCCGGGGACCTGCTGCTCCTGCCGGTCCGCAAGGCCTACGAGGCGCAGCTGTCCGCGCTCGGTCACCGGCCGGTGGCGCAGATCGAGCTCGCCGAGCACGGCAACGAGGCGGGCATCGTGGGCGCCGCGGACCTGGCCCGACGCTGAMHAIGVDIGGTKIAVGVVDEAGRILAQVRRDTAADDVASIDRAIADACTELAREHEVGAIGLAAAGFVSPDRSSVLFAPNIAWREYPLAQRVGDLLDVDLPVVVENDANAAGWAEFRFGAAHDATDMIMLTVGTGLGGAVVVDRELVRGKWGVAAEVGHMRVVPGGHYCGCGHEGCWEQYASGSALVRDARQAAVANPDAARRLVELAGGDREDIQGPHVTQAAQEGDPLAIELLATLGRWIGEGAASVAALLDPELFVIGGGVGAAGDLLLLPVRKAYEAQLSALGHRPVAQIELAEHGNEAGIVGAADLARRNANANANANA
AK018_060791809COG1022Long-chain-fatty-acid--CoA ligase FadD15ATGGACGAGATCACCACCCCGCAGCTCGTTGAGCTCCCCGCCACGTCGAACCTCAACGACCTTCTTGCCGAACGCATCGCCCCCGACCCGTCGGCGACGGTGCTCGAGCGCCCCGGGTCCTCCGGGTGGGAGGCGATCAGCGGGGCGGAGTTCGACGCGCAGGTCGTGGCGGTGGCCAAGGGGCTCGTCGCGAAGGGCGTGCAGCCCGGCGAGGCCGTCGGGATCATGTCGCACACCCGCTACGAGTGGACCCTCCTGGACTTCGCCGCCTGGGCGGCCGGCGCCGTGCCGGTGCCGATCTACGAGACCTCCTCGCGCGACCAGGTCGAGTGGATCGTCACCGACTCCGGCACGACGCTCGTCGTGGCCGAGGACGCCGAGATGGCCGGCATCGTCAAGCAGGTCCAGGAGACCGCACCCTCGCTGCGCGAGGTGTTGTCGATCGAGGACGGCGGGATCGCCGAGCTCACCGCGGCCGGCGCCGAGGTCGAGGACGCCGAGATCGAGCGCCGGCGCGGCCTGGCGAACCTCGACGACGTCGCCACCATCATCTACACCTCGGGCACGACCGGACGCCCCAAGGGTGCGGAGCTCACGCACGGCAACTTCGCGCTGCTGACCAAGAACGCCGTCGCGGCCGTGCCGGAGGTCTTCGCCTCCGGCGGTCGGACGCTGCTGTTCCTGCCGCTGGCGCACGTCTTCGCCCGGTTCGTCGAGGTGCTCGCCGTCGCCGGCGGCACGGTGCTCGGCCACTGGGGCGACACCAAGACGGTCACCGAGGGCCTGGCCGAGTTCAAGCCCACCTACGTGCTCGCCGTCCCGCGCGTGTTCGAGAAGGTCTACAACTCGGCGGAGCAGAAGGCCGCCGCGGGCGGCAAGCTGAAGATCTTCCACTGGGCGTCCGCCACGGCGATCGCCTGGTCGCGCGCCCAGGACACCGGCGGTCCCTCGTTCTGGCTGAACGTGCAGCACAAGGTCGCGGACCGGCTCGTCTACAGCAAGCTGCGCGGCGCGCTCGGCGGCGAGGCACGCCATGCCGTCTCCGGCGGCGGCCCGCTGGGCGAGCGGCTCGGCCACTTCTTCCGGGGCATCGGCCTGACGATCATCGAGGGCTACGGCCTGACCGAGACGACCGCGCCGACCTCCGTCAACCGGCCGGGCAACAACCGCATCGGCACCGTCGGCGAGCAGCTGCCCGGCTGCGGGGTCAAGATCGCCGAGGACGGCGAGATCCTGCTGCGCGGCGTGCAGGTCTTCCGCGGCTACCACGACAACCCCGAGGCGACGGCCGAGTCCTTCGAGGGCGACTGGTTCCGCACCGGCGACCTCGGCTCGCTGGACGACGACGGCTTCCTGCGGATCACCGGCCGCAAGAAGGAGATCATCGTGACCGCCGGCGGCAAGAACGTCGCCCCCGCGGTGCTCGAGGACCGCATCCGTGCGCACGCGCTGGTCAGCCAGTGCGTCGTCGTCGGGGACAACCGCCCGTTCATCGGCGCCCTGATCACCCTCGACCCGGAGGGTCTGCCCGGCTGGTGCAAGATGCACGACAAGCCGGAGCTGAGCGTGGCCCAGGCCAAGGAGGACCCGGACGTGCTGGCCGCCCTGGACCACGCCGTCAGCCGGGCCAACGAGGCCGTCTCGCGCGCGGAGTCGATCCGCAAGTTCGCCATCCTGCCGGAGGACCTGACGGTGGAGAACAGCTATCTCACGCCCTCGATGAAGGTCCGTCGCTCCGTCGTGCTCGGCGACTTCGCCGCCGACGTCGACGCGCTCTACGAGGACACCCGGGAGCAGTCCCCCAGCTGAMDEITTPQLVELPATSNLNDLLAERIAPDPSATVLERPGSSGWEAISGAEFDAQVVAVAKGLVAKGVQPGEAVGIMSHTRYEWTLLDFAAWAAGAVPVPIYETSSRDQVEWIVTDSGTTLVVAEDAEMAGIVKQVQETAPSLREVLSIEDGGIAELTAAGAEVEDAEIERRRGLANLDDVATIIYTSGTTGRPKGAELTHGNFALLTKNAVAAVPEVFASGGRTLLFLPLAHVFARFVEVLAVAGGTVLGHWGDTKTVTEGLAEFKPTYVLAVPRVFEKVYNSAEQKAAAGGKLKIFHWASATAIAWSRAQDTGGPSFWLNVQHKVADRLVYSKLRGALGGEARHAVSGGGPLGERLGHFFRGIGLTIIEGYGLTETTAPTSVNRPGNNRIGTVGEQLPGCGVKIAEDGEILLRGVQVFRGYHDNPEATAESFEGDWFRTGDLGSLDDDGFLRITGRKKEIIVTAGGKNVAPAVLEDRIRAHALVSQCVVVGDNRPFIGALITLDPEGLPGWCKMHDKPELSVAQAKEDPDVLAALDHAVSRANEAVSRAESIRKFAILPEDLTVENSYLTPSMKVRRSVVLGDFAADVDALYEDTREQSPSPGPT0008380_5731DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
AK018_060801764COG0322Putative bifunctional exonuclease/endonuclease proteinATGTCGATCACGTCCGCCCGGGCGGAGCCGGGGACGAGCGTCCAGCCGTCGTTCGCCGACCTGGGGACCCCGCTGCAGGACGTCACGTTCGTCGTCGTGGACCTGGAGACCACCGGCAGCCGCGCCGACGACGCCGGCATCACCGAGATCGGCGCGGTCAAGGTCCGCGGCGGCGAGGTGCTCGGCGAGTTCCAGTCGCTGGTCAACCCCGGCCGCCCCGTCCCGGCGTTCGTGGCCCGCCTGACGGGCATCACCACGCAGATGGTGGCCACGGCCCCCGACCCGGACCTGGTCCTGCCGAGCTTCCTGGAGTTCGCCCACGACGCGGTGCTCGTGGCGCACAACGCCCCGTTCGACGTCGGCTTCCTGCGGGCCGCGTGCGCCGAGCTCGGCTACGCGTGGCCGGGGTTCGCCGTCGTCGACACCCTGCCGCTGGCCCGGCGCGTCGTGACGCGCGACGAGGCCCGCAACCACAAGCTGTCCACCCTCGCGGCGCTGTTCCGCGCCGGCACCTCGCCCGACCACCGCGCGCTGGCCGACGCCCGCGCGACGGTGGACGTGCTGCACGGGCTGCTGGAACGACTCGCCCCGCTGGGCGTCACGCACCTGGAGGACCTGGCCACGGCGTCGGACCCGGTGCCCGCCGACGTGCGGCGCAAGGCGACGCTCGCCGACGGGCTGCCGTCCTCCCCCGGCGTCTACCTCTTCCGGGGGCCGGACGAGGAGGTGCTGTACGTGGGCACCTCGACCAACATCCGTCAACGGGTCCGGTCGTACTTCACCGCGGCCGAGAAGCGCCGTCGCATGACGGAGATGGTGCGCATCGCGCACGCCGTGACCCCCGTGGTGTGCGCGACGCCGCTCGAGGCCCGCGTACGCGAACTGCGGCTCATCGCCGAGCACTCCCCGCGCTACAACCGGCGCTCCAAGCATCCCGAACGACGCACCTGGGTGCGCCTGACCGACGAGGCCTACCCCCGGCTCTCGGTCGTGACCGAGGTCCGCGGCGACACGCCGCACATCGGACCGTTCACCTCGCGCCGCACGGCGACGGCCGCCGTCGACGCCCTGCACGACGCGCTCGGGCTGCGACAGTGCACCCAGCGACTGCCACTGGTGGCGCGGGAGCGGCGCAGCCCGTGCGCGCTCGCCGGCCTGGACCGGTGCTCGGCGCCGTGCACCGCCGTCGGGACGCCCGACGCCGGCTACGCCGACGTCGTGGCCGAGGCGACCCGGGCGCTGACCGGCGACCCCCAGGTCGTGCTGCGCGCCCTCGGCGACCGGGTAGCACGGCTGGCCGCCGAGGAGCGGTACGAGGAGGCGGGCCAGGTCACGGCCCGGCTGCGCGCCTTCGTCGGCGCGGCGGCGCGCGCCCAGCGGCTGGACCCCCTGAGCCGCTGCGCGGAGCTGGTGGCGGCGCGCCCGACGGCGGACGGAGGCTGGGAGCTGGTCGTCGTGCGGCACGCACGGCTCGCCGCGACGGCGGTCAGCCCGCCCGGCGAGGACCCGTGGCCGGTCGTGCACGCGCTGCGGGCGACCGCCGAAGTGGTCGAGGCGCCCGCACCGCCCGCACCGGCCGGGCACCCGGAAGAGGCGGCGCTGCTGCTGGACTGGCTCGAGCAGTCGGACGTGCGGCTCGTCGACGTCTCGGACCCGTGGACGTGCCCGGTCCGCTCGGCCGTGGCGCACGCCGACCTCGACGACGTGGCCGCCACCGTGGCGCTGGCGGTGGGCGGCGCCGTCGATACGATGGCGGCATGCTGAMSITSARAEPGTSVQPSFADLGTPLQDVTFVVVDLETTGSRADDAGITEIGAVKVRGGEVLGEFQSLVNPGRPVPAFVARLTGITTQMVATAPDPDLVLPSFLEFAHDAVLVAHNAPFDVGFLRAACAELGYAWPGFAVVDTLPLARRVVTRDEARNHKLSTLAALFRAGTSPDHRALADARATVDVLHGLLERLAPLGVTHLEDLATASDPVPADVRRKATLADGLPSSPGVYLFRGPDEEVLYVGTSTNIRQRVRSYFTAAEKRRRMTEMVRIAHAVTPVVCATPLEARVRELRLIAEHSPRYNRRSKHPERRTWVRLTDEAYPRLSVVTEVRGDTPHIGPFTSRRTATAAVDALHDALGLRQCTQRLPLVARERRSPCALAGLDRCSAPCTAVGTPDAGYADVVAEATRALTGDPQVVLRALGDRVARLAAEERYEEAGQVTARLRAFVGAAARAQRLDPLSRCAELVAARPTADGGWELVVVRHARLAATAVSPPGEDPWPVVHALRATAEVVEAPAPPAPAGHPEEAALLLDWLEQSDVRLVDVSDPWTCPVRSAVAHADLDDVAATVALAVGGAVDTMAACNANANANANA
AK018_06081282hypothetical proteinATGCTGACCGCCATCGTGCTGATCGACACCGCTGCCGACCAGATCCCCGAGGTCGCGTCCCGGGTCACCGACCTGCCCGGGGTGAGCGAGGTCTACTCGGTCACCGGCAAGGCGGACCTGGTCGCGATGGTGCGCGTGCGCGAGCACGACGCCCTGTCCGAGGTCATCGCCGACGGGATCAGCAAGGTGCCGGGCGTGCTCCGCACGGAGACGCTCATCGCCTTCCGCGCCTACTCGCACGTGGACCTCGAGCAGGCGTTCGCCCTCGGTCTGGACGACTGAMLTAIVLIDTAADQIPEVASRVTDLPGVSEVYSVTGKADLVAMVRVREHDALSEVIADGISKVPGVLRTETLIAFRAYSHVDLEQAFALGLDDNANANANANA
AK018_060821125trpD_2COG0547Anthranilate phosphoribosyltransferaseGTGGCGCCCGCTGCCCCGTCCGCCCTGCCCGTCGACCGCGAACCCCAGGAGAACACCGCCGTGCCCACCAGCGCCCCGACCGCACCCACCTGGCCCGGCGTGCTCTCCGAGCTCGTCGCCGGCCACGACCTCACCGCCGAGCAGACCGCCTGGGCGATGGACGAGGTCATGGCGGGCGAGGTCCCCCCGTCCCGGCTCGCGGGCTTCCTGGTCGGCCTGCGGGCCAAGGGGGAGACGGCCGCCGAGCTGACGGGTCTGGCCGACGCGATGCTCTCGCACGCGACCCGCATCGCGGTCCCCGGCCCGGCGGTCGACCTCGTCGGCACCGGCGGGGACCGGCACCACACCGTCAACATCTCGACCATGGCCGCGGTCGTGGTGGCCGGGACCGGCACGCGGGTGGTCAAGCACGGCAACCGGGCGGCGTCGTCGTCCTCCGGCTCGGCGGACGTCCTCGAGGCCCTCGGCGTCCGGCTCGACCAGCCGGCCGAACGGGTCGCCGAGATCGCCACCGAGGTCGGCATCACCTTCTGCTTCGCCGGGCTGTTCCACCCCTCGATGCGGCACGCCGGCACGGCGCGCCGCGACCTCGGGATCGCCACCGCGTTCAACTTCCTGGGGCCGCTGACGAACCCCGCCCAGCCGGGCGCCACGGCCGTGGGCTGCGCGGACGCGCGGATGGCTCCGTTGATGGCCGGGGTCCTCGCCGCCCGCGGCACCCGTGCCCTGGTGTTCCGCGGCGACGACGGGCTGGACGAGCTCGCGGCCACCGGCGGGACCGACGTGTGGGAGGTGCGCGAGGGCGCGGTGACCGAGGAACGGTTCGACGCCGCCGCCGACCTCGGCCTGCAGCGCATCGAGGTCGCCGACCTGCGCGGCGGCGACGCCGCGCACAACGCGGAGGTGGCGCGCGAGGTGTTCGCCGGCGCCGACCGCGGTCCCGTGCGCGAGACGGTGCTGCTCAATGCGGCGGCGGCGCTGGTGGCCGACGGGTCGCTGGCCGGCACGGCGCAGGGCACGCTCTCGCAGCGGCTGGCCGCGGGGGTCGAGCACGCCGCCCGCAGCATCGACGACGGGCGCACGAGCGACGTGCTGGAGCGCTGGGTCGCCGCGACGCAGCGGTGAMAPAAPSALPVDREPQENTAVPTSAPTAPTWPGVLSELVAGHDLTAEQTAWAMDEVMAGEVPPSRLAGFLVGLRAKGETAAELTGLADAMLSHATRIAVPGPAVDLVGTGGDRHHTVNISTMAAVVVAGTGTRVVKHGNRAASSSSGSADVLEALGVRLDQPAERVAEIATEVGITFCFAGLFHPSMRHAGTARRDLGIATAFNFLGPLTNPAQPGATAVGCADARMAPLMAGVLAARGTRALVFRGDDGLDELAATGGTDVWEVREGAVTEERFDAAADLGLQRIEVADLRGGDAAHNAEVAREVFAGADRGPVRETVLLNAAAALVADGSLAGTAQGTLSQRLAAGVEHAARSIDDGRTSDVLERWVAATQRPGPT0007090_912DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766NANA
AK018_06083390COG0784putative response regulatory proteinATGACGAACGGCCCCCGGGTGCTGCTGTACAGCGACGACCGCACGGTGCGTGAGCAGGTGCGACTCGCCGTCGGACCCCGGTTGGGTGCCGACGCTCCGTCGATCGAGTGGTTCGAGGCGGCGACCGCCCCGGCCGTGACGTCCGCGGTGTCCGCCCGCCGCTTCGACCTGCTCGTGCTCGACGGCGAGGCGGACAAGGCCGGCGGCATGGGCCTGTGCCGGCAGCTCAAGAACGAGGTCTACGACTGCCCGCCGATCGTCGTGCTGACCGGCCGCCCCGACGACGCCTGGCTGGCATCATGGTCGCTCGCGGACGCCGTGGTGCCGCGCCCGCTCGAGCCCTTCGCCGTGCAGCGCACCGTCGCGGACGCGCTGGCCCCGGTGGCCTGAMTNGPRVLLYSDDRTVREQVRLAVGPRLGADAPSIEWFEAATAPAVTSAVSARRFDLLVLDGEADKAGGMGLCRQLKNEVYDCPPIVVLTGRPDDAWLASWSLADAVVPRPLEPFAVQRTVADALAPVANANANANANA
AK018_06084654ctaE_2COG1845putative cytochrome c oxidase subunit 3ATGGGTCGCGTGTCGACCGCAACGGCTGCTGCCCCCCACGCCCACCAGCACGTGACCGTGAACCGACCGAACACCGTCTCGGTCGGGACGATCGTGTGGCTCGCCAGCGAGCTCATGTTCTTCGCGGGCCTCTTCGCGATGTACTTCACGGTGCGCTCCGTGATGCCCGAGGAGGAGTGGGCCGCCCAGGCCGACAACGTCTCGCTCGTGTTCCCGGCGATCAACACCACGATCCTGGTCCTGTCCTCGGTGACCTGCCAGCTGGGCGTCTGGGCCGCCGAGCGGTTCCAGCCGGTGCGGACCGGCTCGCTGCTGCAGGTGAACCGGTGGGGCATGAACGAGTGGATGACGCTCACCTACCTCATGGGCTCGTTCTTCATCGCCGGGCAGATCTTCGAGTACGCCGAGCTCGTCGAGCACGGCCTGACGATCTCCTCCAGCGCCTACGGCTCCGTCTTCTACCTCGCCACCGGGTTCCACGGTCTGCACGTGGTCGGCGGCCTGATCGCCTTCCTGTTCCTGCTCGGCCGGTCCTTCCGCGCCAAGCGGTTCACGCACCACGAGGTGACCACGGGTCTCGTGGTCTCCTACTACTGGCACTTCGTCGACGTCGTGTGGATCGCCCTCTTCGCGGTGATCTACCTGCTGAAGTGAMGRVSTATAAAPHAHQHVTVNRPNTVSVGTIVWLASELMFFAGLFAMYFTVRSVMPEEEWAAQADNVSLVFPAINTTILVLSSVTCQLGVWAAERFQPVRTGSLLQVNRWGMNEWMTLTYLMGSFFIAGQIFEYAELVEHGLTISSSAYGSVFYLATGFHGLHVVGGLIAFLFLLGRSFRAKRFTHHEVTTGLVVSYYWHFVDVVWIALFAVIYLLKPGPT0004035_2090DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276NANA
AK018_06085783qcrC_2COG2010Cytochrome bc1 complex cytochrome c subunitGTGAAGGCACTCGCCGCCCGCCGGCATCACCGGGCCGCCCCGGTCGTGCTGATGCTGCTGGCGCTGCTGCTCACGGGCGGCGTGTACGCCGTCCTGGCACCGAGCTCGGCCACGGCCGACACCGCCAGCACAGCGAACGACGTGGAAGAGGGCGAACGCCTCTTCCAGGCCAACTGCGCCACGTGCCACGGCCCGAACGCCGAGGGCACCTCCGAGGCGCCCTCGCTGGTGGGCGTGGGTGCGGCGTCGGTCGACTTCCAGGTCTCGACCGGTCGGATGCCGATGCAGATGAACGGCCCCCAGGCCGCGGCCAAGCCCCGGCAGATGGACGAGGAGCAGACGGCGCAGCTGGCTGCCTACGTCGCCTCGCTCGGGGCCGGTCCGGCGATCCCGACCGACGAGCAGGTGGACGGCACCGCGGGCGACCCGTCGAACGGCGCCCTGCTGTTCCGCACCAACTGCGCCATGTGCCACAACGCCGTCGGTGCCGGCGGCGCACTGTCGGAGGGCAAGTGGGCCCCGCCGCTGTACGACGTCTCGGAGCGGAACATCTACCAGGCCATGCTGACCGGCCCGCAGTCGATGCCGGTCTTCAACGACGCCAACATCACCCCCGAGGAGAAGCGCGACATCATCGCCTACCTCGTCGAGCAGCGTGACGGTTCCGCCGGCGGCCTCAGCCTCGGCTCTCTCGGGCCCGTCAGCGAAGGTCTGTGGGCATGGGTCGTCGGCCTCGGACTGATGATCGGTGCTGCAGTGTGGATCGGAGCGAAGTCCTCGTGAMKALAARRHHRAAPVVLMLLALLLTGGVYAVLAPSSATADTASTANDVEEGERLFQANCATCHGPNAEGTSEAPSLVGVGAASVDFQVSTGRMPMQMNGPQAAAKPRQMDEEQTAQLAAYVASLGAGPAIPTDEQVDGTAGDPSNGALLFRTNCAMCHNAVGAGGALSEGKWAPPLYDVSERNIYQAMLTGPQSMPVFNDANITPEEKRDIIAYLVEQRDGSAGGLSLGSLGPVSEGLWAWVVGLGLMIGAAVWIGAKSSNANANANANA
AK018_060861053qcrA_2COG0723Cytochrome bc1 complex Rieske iron-sulfur subunitGTGAGCGAGAACCAGAACCCCAACCCCGGACGCGACGTCGCCGCGACGTCGCAGGAGGCCGAGCACCCGGAGCGGTTCACCGACCCGGGCGTGCCCGCGCACAAGCCGCGCCTGACCGACACCGACCCGGCGGCGCGCAAGCGCAACGAGCGGATCGTCGTGATCCTGTTCGCGATCTCCTGCCTCGGCGCGATCGCCAGCCTCGTGGCCTACTTCGCGGTCCGTCCCGACGGCACCACCGAGGGCACCCGCCTCTCCACCGTCCTGCTGGGCACCACGATGGCCGTGTCGCTGCTCGGCATCGGCATCGCCGCGATCCACTGGGCCAAGTCGCTCATGAGCGACCACGAGCACGTGGACGAGCGCCACGAGCTCGCGAGCTCGCCCGAGGTCCGCGAGGTCGCCGTCCAGCACCTCACCGACGGGGTCGAGGACTCGGGCATCGCCCGCCGTGGGGTGCTCAAGGGCGCCGCGGTCTCCGCGCTCGCGCTCTTCCCGCTCACCTTCGCCGTGCCGCTGATCTCCAGCGTCGGCGGCGACTGGGACATCTCCAAGTTCCGGCACACCCTGTGGGAGCGGGGCAAGCGCCTCGCCTACGACCCCACGGGTCGGCCGATCAGGGCCGCCGACCTCACCGTCGGCTCCGCGGCGCACGTCATCCCGGAGGAGTCCGAGGAGTACATGCAGTCGCACGACTGGATCACCGAGAAGGCCAAGGCCGTCGTGCTGCTCGTCCGGCTCAACCCGGAGGACCTGCGGTCCGACCAGTCCCCCGAGGGCGAGACCTGGTCGTACGACGGAATCGTGGCATACTCGAAGATCTGCACCCACGTCGGATGCCCGGTGGCACTGTACGAGCAGCAGACGCACCACCTGCTCTGCCCGTGCCACCAGTCCACATTCGACATGGCCGATGGCGCGAAGGTCGTCTTCGGACCGGCGAACCGGCCGCTGCCCCAGCTGCCGATCACGGTCGACGACGAGGGCTACCTCATCGCGCAGGACGACTTCGCCGAGCCCGTCGGACCGAGTTTCTGGGAGCGACTGAAGTGAMSENQNPNPGRDVAATSQEAEHPERFTDPGVPAHKPRLTDTDPAARKRNERIVVILFAISCLGAIASLVAYFAVRPDGTTEGTRLSTVLLGTTMAVSLLGIGIAAIHWAKSLMSDHEHVDERHELASSPEVREVAVQHLTDGVEDSGIARRGVLKGAAVSALALFPLTFAVPLISSVGGDWDISKFRHTLWERGKRLAYDPTGRPIRAADLTVGSAAHVIPEESEEYMQSHDWITEKAKAVVLLVRLNPEDLRSDQSPEGETWSYDGIVAYSKICTHVGCPVALYEQQTHHLLCPCHQSTFDMADGAKVVFGPANRPLPQLPITVDDEGYLIAQDDFAEPVGPSFWERLKNANANANANA
AK018_060871707qcrB_2COG1290Cytochrome bc1 complex cytochrome b subunitGTGAGCACCGAGACCACCGCGTCGCGCGACGACGCCCCGAAGACCGCGGCCGGCAAGACCGCCGACTACCTCGACCAGCGCACCAGTGTCGGCGGCGCCGTCAAGGAGTTCGCGCGCAAGGTCTTCCCGGACCACTGGTCGTTCATGCTGGGCGAGATCGCCCTGTTCTCGTTCGTCGTGCTGCTGCTGACGGGCGTGTTCCTGACCATGTTCTTCGACCCGTCGATGGCGCTCGAGGAGTACCACGGCGCCGGCCCGGAGACCATGCAGGGCCAGCTCATGTCCGTGGCCTTCGCCTCGACGCTGGACCTCTCCTTCGAGGTCCGCGGCGGTCTGCTCATGCGGCAGATCCACCACTGGGCCGCCCTGGTCTTCATGGCCGCGATCGTCGTGCACATGATGCGTGTGTTCTTCACCGGTGCGTTCCGCAAGCCGCGCGAGATCAACTGGCTCGTGGGCACCGTGCTGCTGATCCTGGGCCTGGCCGCCGGCTTCTCGGGCTACTCGCTGCCGGACGACGTGCTGTCCGGCAACGGTCTGCGCATCACCGACGGCGTCATCAAGTCGATCCCCGTGATCGGCTCGTACATGTCCTACTTCGTCTTCGGTGGTGAGTTCCCGGGCGAGCACATCATCCCGCGCCTGTTCACCGTGCACATCCTGCTGGTGCCGGCGCTGATCCTCGCCCTGATCGGTGTGCACCTGTTCCTCATGGTGCTGCACAAGCACACCCAGTTCCCGGGTGGCGGCCGCACCGACAAGAACGTCGTCGGCTACCCGCTCTTCCCCGTCTACATCGCCAAGATGGGCGGCAACTTCTTCATCGTCTTCGGCATCCTCGCCCTGATGGGTGCCACGATGAGCATCAACAACGTCTGGAACTACGGGCCGTACGACCCCTCCCCCGTCGGCGCCGGCGCGCAGCCCGACTGGTACATGCTGTTCCTCGAGGGATCGTTGCGTCTGATGCCAGGTGCCGGGACGGAGTGGGTCCTCTTCGGCTACACGCTGTCCCTCAACGTGCTGATCCCCGCCGTGGTGATCCCGGGTCTGCTGTTCACGTTCCTGTTCGCCTACCCGTTCGTCGAGGCCAAGGTGACCGGTGACAAGCGTGAGCACCACGTCCTGGACCGCCCGCGCAACGTCCCCGTCCGCACGGGCCTGGGTGTCGCGTTCCTGACGGCGTTCATCATCCTGGCGCTCGCCGGGTCGAACGACCTCATCGCGACGCACTTCGGGATGTCGCTCAACCAGATCACCTGGGCCTTCCGCATCCTGTTCTTCGCCGGACCGGTCATCGCGTTCTGGATCACCAAGCGGATCTGCCTCGGCCTGCAGCGCAAGGACCGCGAGCTCGTCCTCCACGGGCACGAGACCGGTCGGATCGTGCGGTTCGCCAACGGCGAGTACATCGAGGTCCACCGTCCGCTGGACGAGCAGGAGCGCTGGCTGCGGGTCAACTACACCGCGCACAAGCCGCTCGAGATCGAGCCCGCCACGGACGCCCGGGGCGTCAAGCGTCCTGGCTACAAGGCGGAGAAGCGCTGGCAGCGTCTGTCGCGGTTCTTCTACGAGGACCGCGTCGAGCCGGTGACCCCGGCCGAGCTCGCCGCCGCCCACTCGCACGGTGAGCACGACGAGATCGCTGCCGCCCAGAGCTCCCCCGAGGTGACCTCGGGGGCGACGAACGTCGAGCAGGAGCGCTGAMSTETTASRDDAPKTAAGKTADYLDQRTSVGGAVKEFARKVFPDHWSFMLGEIALFSFVVLLLTGVFLTMFFDPSMALEEYHGAGPETMQGQLMSVAFASTLDLSFEVRGGLLMRQIHHWAALVFMAAIVVHMMRVFFTGAFRKPREINWLVGTVLLILGLAAGFSGYSLPDDVLSGNGLRITDGVIKSIPVIGSYMSYFVFGGEFPGEHIIPRLFTVHILLVPALILALIGVHLFLMVLHKHTQFPGGGRTDKNVVGYPLFPVYIAKMGGNFFIVFGILALMGATMSINNVWNYGPYDPSPVGAGAQPDWYMLFLEGSLRLMPGAGTEWVLFGYTLSLNVLIPAVVIPGLLFTFLFAYPFVEAKVTGDKREHHVLDRPRNVPVRTGLGVAFLTAFIILALAGSNDLIATHFGMSLNQITWAFRILFFAGPVIAFWITKRICLGLQRKDRELVLHGHETGRIVRFANGEYIEVHRPLDEQERWLRVNYTAHKPLEIEPATDARGVKRPGYKAEKRWQRLSRFFYEDRVEPVTPAELAAAHSHGEHDEIAAAQSSPEVTSGATNVEQERNANANANANA
AK018_06088381hypothetical proteinATGAACCCGTCGACCTCCTCGTTCATCAGCGGCGTCGGGTCGAAGTCGACGGGCACGACGGTGACGTCGCTCTCGTCGATCCCGTTGGCCTGCAGCAGTGCCGCGAACACGGACGCGTTGGAGTCCTGCACGCCGATCGTCTTGCCGACCAGGTCCTCCGGCGAGGAGATGTCGGCGCCGTCGGCGAGCGACAGGATCGTGAACGGGTTCTTCTGGAACGTCGCGCCGATGATCTTCAGCGGGGCGTCCTGCTCCGCGATCGCCGCGCCGATCGAGGCGGCGTCGCTCAGGGCGACCTCGACCGTGCCGGACAGCAGCTTGGCGACGCCGGTGTCCGGGCCGGAGATGCCGATGACGTCGTCGAACCCGGCCTCGTCGTAGMNPSTSSFISGVGSKSTGTTVTSLSSIPLACSSAANTDALESCTPIVLPTRSSGEEMSAPSASDRIVNGFFWNVAPMIFSGASCSAIAAPIEAASLRATSTVPDSSLATPVSGPEMPMTSSNPASSNANANANANA
AK018_060891824hypothetical proteinGTGGAGCCGGTCCTCGACTTCCGTGCCGTGTTCGACGCGTTGCCGACGCCCTACCTCGTCCTCGACAGCGAGCTGACGATCGTGGCGGCCAACCGGGCGCGCGAGACGGCGACGGGCCGTACCGCTGCGGAGGTCGTGGGCCGGCACCTGTTCGACGCGTTCCCCGATGATCCTGACGACCCCGATGCGGGTGGCACCTCGCTGCTGTCCCGGTCGTTGGAACGGGTGCTGCAGTCGGGCGAGACCGACGTCATGCCCGTGCAGCGCTACAACATCCCGGCCGCCGACGGAGGATTCGAGCAGCGGTGGTGGACGCCGGTCAACAGCCCCGTGCTGGACGACGCCGGTCGGGTCCGGTTCATCGTGCACCGTGTCTACGACGTCACCGACTACATGGCGGACATCGGTACCCGTGACGAGCTGGAGACGGCGCGCACCGAGGTCTACGTCCAGGGGCACGCGTTGCGTGACGCTCTGACCGCGGAAAAGACGACGGCCCAGCGTCTGGCGAGCCTGGTCGACGTCGCGCGAGAGCTCAGCGGGACCGCCACGGCGGCACACCTCACCGAGGTCGTCACCGGCAGGGGCCTGGCGGCTGTCGACGCCGACGGCGGCGCGGTCGCGGTGCTGACGGCCGACGGAGAGCACCTGGACGTCATGTTCGCGGACCCCGGCGACGGTGTCGGGCCGCGCAGCGCCGTCCTCGAGCTGAGCGGCCGCTCGCCCGCGGCCGTGGCGGCGTCGTCCGGTGACCCCGTCCTGCTGCCGGACCTGACGGGCCTCGGCCGCGACGCGGCAGAGGCCCTCGGCGACCCTGCGATCGCCGCTTGCGTGGCCTACCCGTTGCGCGTCGAGGACCGCGTGCTGGGGGCGTTGACCATCGGCTGGCACCGGCCGCGGACGTTCACCGACCGCGACCTCGGCATGATCGCAGCGCTGACCTCCCTGTGCGCCCAGACCCTGGACCGCATTCAGGTCCGTGTGCAGGAGCAGCACGTGATGGCGGTCGAGCGTGCCCTGTCCGAGGCGCTGCAACGCAGCCTGCTGTCGGAGCCGCCGCAGCCGCCGGGGACGGAGATCGCCGTGCGGTACCGACCGTCGGCGGACCACGCGGAGGTCGGGGGAGACTGGTACGACGCGTTCCTACTGTCCGCCGAACGGCTCACGGTCGCCGTGGGCGACGTCGCGGGGCACGACCGGCGGGCCGCCGCAGCGATGGCCCAGCTGCGCAGCATCCTGCGGGGGGTGAGCGTCAGCCTGCACGGCTCGCCGGCCGACACCCTGGCCGGCCTGGACCGTGCATTGAGTGCGTTGTCGGTGGACGCCGTCGCGACCGCGGTCGTCGCCGAGCTGGACCTGCGCCAGGACGCCGACGGCGGGTACGCGATGCGGTGGTCCAGCGCCGGCCACCTCCCGCCACTGGTCCTGTCCTCCGACGGCGAGGCGCGACTGCTCCGCGCCCCGCCGAACCTGCTGATGGGCGTGCGACCGGACACGCCACGCGACGATCACGAGACGGTGCTACCCCCCGGTTCGTCCATCGTGTTCTACACCGACGGACTCATCGAGCGCCGCGACCGACACCTCCTGGACGGCTTCGCCTGGCTCACCGACACCCTCCAGGGCTGCAGAGGCCTGTCCGCCGAGGAGCTGTGCGACCTGCTGCTGGAGGCCACCGACGGCGAGCAGGAGGACGACCTCGCCATCCTCGTGCTGCGCCTGGATCCCGCCACCGATCCGGCCACGAGCCCGGATCGGTCCGCGACGGATCCCGAGGAGCAGGTCAGTCGGGCTGGACGAGCCGCCACACGCGCTCGCGGGTGAMEPVLDFRAVFDALPTPYLVLDSELTIVAANRARETATGRTAAEVVGRHLFDAFPDDPDDPDAGGTSLLSRSLERVLQSGETDVMPVQRYNIPAADGGFEQRWWTPVNSPVLDDAGRVRFIVHRVYDVTDYMADIGTRDELETARTEVYVQGHALRDALTAEKTTAQRLASLVDVARELSGTATAAHLTEVVTGRGLAAVDADGGAVAVLTADGEHLDVMFADPGDGVGPRSAVLELSGRSPAAVAASSGDPVLLPDLTGLGRDAAEALGDPAIAACVAYPLRVEDRVLGALTIGWHRPRTFTDRDLGMIAALTSLCAQTLDRIQVRVQEQHVMAVERALSEALQRSLLSEPPQPPGTEIAVRYRPSADHAEVGGDWYDAFLLSAERLTVAVGDVAGHDRRAAAAMAQLRSILRGVSVSLHGSPADTLAGLDRALSALSVDAVATAVVAELDLRQDADGGYAMRWSSAGHLPPLVLSSDGEARLLRAPPNLLMGVRPDTPRDDHETVLPPGSSIVFYTDGLIERRDRHLLDGFAWLTDTLQGCRGLSAEELCDLLLEATDGEQEDDLAILVLRLDPATDPATSPDRSATDPEEQVSRAGRAATRARGNANANANANA
AK018_060902811hypothetical proteinATGAAGATCCACGTCAACGGCACCGGCCACGACACCGACCCGCGCCCCGGGCAGTGCCTGCGCACCCTGCTGCGCGAGCACGGGCACACCGAGGTCAAGAAGGGGTGCGACGCGGGCGACTGCGGGGCCTGCGCGGTGCTGCTGGACGGCAAGCCCGTGCACTCGTGCATCGTGCCCGCCCCGCGCGCCGAGGGCGCACAGGTCACCACGGCAGCGGGCCTCGCCCCCGGCGACGACCTGCACCCGGTGCAGGAGGCGCTCATCGACGAGTTCGGCTTCCAGTGCGGGTTCTGCACCCCCGGGATGAGCGTCACCGCGTCCTGCCTGACCGCCGACGACCTGCCCGACCTCGACCGGCGGCTCAAGGGCTCGCTGTGCCGCTGCACCGGCTACCGTCCGATCCGCGCGGCGATCCGCAAGGTCCTCGACGACGGCGCACCGACCGCGGCAGGCTCGGCGGGCTCGGCGGGCTCGGTGAGCTCGACCCCGGGGGCCGGGACGGACGACGGCGGCGGCACACCGGCCGGCGTCGGACGCTCGGTCTCCCCCGAACCCGCCCGACGCGTGGTCCAGGGCCTGGAGCCGTACACCTTCGACACCCCCGAGGCGACACGCACGCTGGTGCTGCGCGTCCTCGGCTCGCCGCACGCGCACGCCCGCATCACCGCGATCGACACCTCCGCCGCCCGCGCGCTGCCCGGCGTCGTCACCGTCCTCACCCACGCCGACGCCCCCACGACACGGTTCTCCACCGCCCGCCACGAGCACCGCACCGACGACCCCGACGACACCCGGGTGCTCGACGACACGGTCCGGTTCGTCGGCCAGCGCGTCACCGCCGTCGTCGCCGAGACCGCCGAGATCGCCGACGCCGCGCTCGGGCTGATCGACGTGACCTACGAGCCCCTGCCGTTCGTGCTCGACGCCGAGGAGGCACGGCAGCCGGACGCCCCGGCCGTCCACCCGGACCGGCCGGTCGCCGTCCAGGCCGACCCGGACCGCCCGAACGTGCTCGGCAGCCTGCACGCCGGCATCGGAGGCGACGTCGACACGGCGCTCGCCGCGAGCGCCGTCACCGTCGGCGGGACCTGGCAGACCGGGCGGGTGGCGCACGCCCAGCTCGAGACGCACGGCGCGCTCGGCCGACTCGACGACGACGGCCGGCTCGTCATCCGCTCCAGCACCCAGGTGCCGTTCCTCACCCGCAACGAGCTCGCGCACGTCTTCGACCTGCCCCGGGACCGCGTGCGGGTGCACGCCGCCCGGGTGGGCGGCGGGTTCGGCGGCAAGCAGGAGATGTTCGTCGAGGACCTGGTGGCGCTCGCGGTGCTGCGCACCGGCCGCCCGGTGTCCTACGAGTTCTCCCGTACCGACGAGTTCCGTCGCGCGGCCCTGCGCCATCCGTTCCGCGTGGAGGTCTCGCTCGGCGCGACGGCGGAGGGGACGCTGACGGCGCTGAAGGTCGACGTACTGAGCAACACCGGCGCGTACGGCAACCACGGAATCGGGGTGCTGTTCCACTCGGTGGCGGAGTCGATCAACGTCTACCGCTGCCCGGTCAAGCGGGTGGACGCCGAGTCGGTGTACACGAACGCGGTGCCGTCGGGGGCGTTCCGCGGGTACGGGCTGGGGCAGGTGATCCTCGGTGTGGAGTCGGCGATGGACATGCTGGCGCAGCGGCTCGGGATCGACCCGTTCGAGCTGCGCCGTCGCAACGCGGTGCGCGACGGCGACCCGCTGCTGACCGTCGACGACGAGCCCGAGCCGGACCTGCGGTGGGGCAGCTACGGGCTGGACCAGTGCCTCGACCTCGCTCAGGACGCGCTGCGGCGCGGCAACGGCGTCGAGGCGCCGCCCGGGTGGCGGGTCGGCGAGGGCATGGCGATCGCGTTCATCGCCGGGGCGGCACCGGGCGGCCACCACGCGCACGCGGCGGCCTCCCTGCGGCCCGACGGCACGTTCGCGCTGTCGGTCGGGACGGCCGAGTTCGGCAACGGCACGAGCACCGTGCACCGGCAGATCGCCGCCTCGACGCTGGCGGCGACGCCGGATCGGATCGTGCTCCGGGCCTCGGACACGGACCTGGTGGACCACGACACGGGGGCGTTCGCGTCGGCGGGCACGGTCGTGGCCGGCAAGGCCCTGGCGCGGGCCTGCACGGCGCTGCGTGGCCTGATGATCGACGTCGCGCGGCAGGTGTCCGACGGCGGTACCCCGGCGGGAGGTGCGGTTCCGCAGGCAGAGCTCGTCGCGGACGGCGTGCGGGTGGGCGACCGGCTCGTCGGCTTCGACGAGATTGTCGCCGCCGCCGGGGACCCGGAGAGCCGCGAGCTGACGACCCACGGCAGCGACGACGGCAAGGAGCGCAGTCTGGCGTTCAACGTGCACGCGGTGCGGGTCGCCGTCGAGGAGGAGACCGGGTCGGTGCGCGTGCTGCAGTCGGTGCAGGCCGCGGACGCCGGGTTCGTCATGAACCCGGCGCAGTGCCGCGGTCAGGTCGAGGGCGGCGCGGCCCAGGGCCTGGGCAGCGCGCTGTACGAGGAGGTGCTGGTCGACGAGCGCGGAGCCGTGACGAACCCGGTGTTCCGCACCTACCGCGTCCCGCAGTCGGCGGACGTCCCCGACACGGAGGTGTACTTCGCCGACACCTTCGACACGATCGGGCCGTTCGGCGCGAAGTCGATGAGCGAGTCGCCCTACAACCCGGTGGCGCCCGCCGTCGGCAACGCGATCGCCCGTGCGTTGGGCCGGCGGCCGTTCCGTCAGCCCTTCACCCGCGAGCGCGTGTGGCGGCTCGTCCAGCCCGACTGAMKIHVNGTGHDTDPRPGQCLRTLLREHGHTEVKKGCDAGDCGACAVLLDGKPVHSCIVPAPRAEGAQVTTAAGLAPGDDLHPVQEALIDEFGFQCGFCTPGMSVTASCLTADDLPDLDRRLKGSLCRCTGYRPIRAAIRKVLDDGAPTAAGSAGSAGSVSSTPGAGTDDGGGTPAGVGRSVSPEPARRVVQGLEPYTFDTPEATRTLVLRVLGSPHAHARITAIDTSAARALPGVVTVLTHADAPTTRFSTARHEHRTDDPDDTRVLDDTVRFVGQRVTAVVAETAEIADAALGLIDVTYEPLPFVLDAEEARQPDAPAVHPDRPVAVQADPDRPNVLGSLHAGIGGDVDTALAASAVTVGGTWQTGRVAHAQLETHGALGRLDDDGRLVIRSSTQVPFLTRNELAHVFDLPRDRVRVHAARVGGGFGGKQEMFVEDLVALAVLRTGRPVSYEFSRTDEFRRAALRHPFRVEVSLGATAEGTLTALKVDVLSNTGAYGNHGIGVLFHSVAESINVYRCPVKRVDAESVYTNAVPSGAFRGYGLGQVILGVESAMDMLAQRLGIDPFELRRRNAVRDGDPLLTVDDEPEPDLRWGSYGLDQCLDLAQDALRRGNGVEAPPGWRVGEGMAIAFIAGAAPGGHHAHAAASLRPDGTFALSVGTAEFGNGTSTVHRQIAASTLAATPDRIVLRASDTDLVDHDTGAFASAGTVVAGKALARACTALRGLMIDVARQVSDGGTPAGGAVPQAELVADGVRVGDRLVGFDEIVAAAGDPESRELTTHGSDDGKERSLAFNVHAVRVAVEEETGSVRVLQSVQAADAGFVMNPAQCRGQVEGGAAQGLGSALYEEVLVDERGAVTNPVFRTYRVPQSADVPDTEVYFADTFDTIGPFGAKSMSESPYNPVAPAVGNAIARALGRRPFRQPFTRERVWRLVQPDPGPT0004835_214DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_HOMEOSTASIS,PGPT0004835-xdhD-K12528NANA
AK018_06091855hypothetical proteinATGGACGTCACGTCCGTCACCGGATTCCGCACCGCCCGCACGCGCGCCGACCTCGTGCTGGACCCCGGCGAGGTGTTCCTCGGCGGGGGCACCTGGCTGATGAGCGAGCCCCAGCCCGGCACCACCGGGTTCGTCGACCTCACCACGCTCGGCTGGCCCGACCTGGAGGTGAGCGACGACGGCCTGCGCATCGCCGCGACCTGCACCGTCGCGAACCTGCGCGGCTGGGCCGAGGGCCGCGGCGCCGACCCCGTCCCGGCGGATTGGTCCGCGGCCGCGATGATCCCCGACGCCGCCGACGCGCTGCTGGCCTCCTTCAAGATCTGGAACACCGCCACCGTCGGCGGCAACGTCTGCCGGGCCTTCCCCGCCGCCGCGATGGTCTCCCTCGCCGTCGCGCTCGACGGCGTCGCCGAGGTGTGGACGCCCGACGGCGGCACGCGCCGACCGCTCGTCGAGGACCTGGTCACCGGGCCCGGCGAGACCGCCCTGGGCCACGGCGAGGTGCTGCGCGCGATCGAGCTGCCCGCGAGCGCCCTGCGCTCGCGCGCCGGGCTCCACAAGATCGCCTTGGCCGAGCTCGGCCGCTCCGGAGCCGTCGTCTCGGGCCGCCGCGACCTCGACGGCACATGCGTCGTCGCGGTGACGGCCGCCGTCGAGCGACCCGCCGTGCTGCGGTTCGCCGCGCTGCCCGACGCCGCCACGCTCGCGGCCGCCGTCGGCGACCTCGACGGCTGGTACACCGACTCGCTCGGCGCGGCCGACTGGCGGCGCGGCGTGAGCGGCGTCCTCGCCGAACGGCTGCGCCGGGATCTCGCCGGCGACCCGGAGAAGGACCCTGAGGACCCCGCATGAMDVTSVTGFRTARTRADLVLDPGEVFLGGGTWLMSEPQPGTTGFVDLTTLGWPDLEVSDDGLRIAATCTVANLRGWAEGRGADPVPADWSAAAMIPDAADALLASFKIWNTATVGGNVCRAFPAAAMVSLAVALDGVAEVWTPDGGTRRPLVEDLVTGPGETALGHGEVLRAIELPASALRSRAGLHKIALAELGRSGAVVSGRRDLDGTCVVAVTAAVERPAVLRFAALPDAATLAAAVGDLDGWYTDSLGAADWRRGVSGVLAERLRRDLAGDPEKDPEDPAPGPT0007270_243DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0007270-ygeT|xdhB-K13479NANA
AK018_060921359COG04028-oxoguanine deaminaseATGACCCGCACCCTCATCGAGAACGGCCACGTCGCCACCGTCGACGCCACCGGCACCGAGCACACGGCCGGGCACGTCGTCCTCGACGGCGGCGACATCGTGGCCGTGGGAGCGGGCCGCGCGCCGGAGCACCTGCGCGCCGGCGCCGACGTCGTCGACGCGACCGGCTGCCTGGTCACGCCGGGCCTGGTCAACACCCACCACCACCTGTACCAGTGGCTCACCCGCGGGTACGCCCAGGACTCGATCCTCTTCGACTGGCTGACCGCGCTGTACCCGCTGTGGTCCCGGATCGACGCCGGCCTGACCAGCACCGGGGCGGCCGGCGCGATGGCGGTCCTCGCGCGGTCGGGCTGCACCACCGTGGGCGACCACCACTACGTGTTCCCGCAGGGCTCGGGCGACATCGTCGGCGGGATCGTCGAGGCGGCCTCCCGCGTCGGGGTCCGCCTGCACGCCACCCGCGGGTCCATGGACCTCGGCGCCTCCCAGGGCGGGCTGCCGCCGGACTTCGCCGTCGAGACCACGGACGCGGCCCTCGCGGCGTCGTCCGAGGCCGTCGAGAAGTACCACGACGCCTCCCGCGAGGCGATGGTGCGCGTCGCCATCGCACCGTGCTCGCCGTTCTCGGTGACCGCCGACCTGCTGCGCGAGGCCGCCACGCTGGCCCGCTCGCTCGACGTGCGCCTGCACACCCACGCCTCGGAGACCGCCGAGGAGGACGCCTACTGCCTCGAGCACTTCGGCACCAGCCCGACGCAGTACCTGGAGGACCAGGGCTGGCTCGGCCCCGACGTCTGGATGGCGCACTGCGTGCACCTCGACGACCCGGCCATCGCGCGGTACGCCGCCACCGGCACCGGCGTGGCGCACTGCCCGTCGTCGAACGGGCGGCTGGCCGCCGGGATCGCACCCGTGCGCGCCCTGCTGGACGCCGGGGTGGCGGTAGGGCTCGGCGTCGACGGCGCCGCCTCCAACGAGTCGGGTCAGCTCGGCGTCGAGATCCGCGAGTCGGTGCTCATGAACCGGCTGCGCACCGGCGCGGACTCGATGAGCGTCCGCGACGGGCTGCGGGCCGCCACGATGGGTGGCGCGCGGGTCCTGGGGCGGGGCGACGAGATCGGCTCCCTCGAGGTCGGCAAGCTCGCCGACGTCGCCGTCTGGCAGGTCGACGGCGTCGAGCACGCCGGCATCCTCGACCCCGTCGCCGCGCTCGGGCTCGGCGCGCTACCGCCGCTGAAGCGCCTTTACGTGGGTGGCCGCGCCGTCGTCGAGGACGCGACGCTGACCACCACCGACGAGCGCAAGCTCGCGCACGAGGTGACCCTGGCCTCGCGCGAGCTCGCCGAGCGGCTCTGAMTRTLIENGHVATVDATGTEHTAGHVVLDGGDIVAVGAGRAPEHLRAGADVVDATGCLVTPGLVNTHHHLYQWLTRGYAQDSILFDWLTALYPLWSRIDAGLTSTGAAGAMAVLARSGCTTVGDHHYVFPQGSGDIVGGIVEAASRVGVRLHATRGSMDLGASQGGLPPDFAVETTDAALAASSEAVEKYHDASREAMVRVAIAPCSPFSVTADLLREAATLARSLDVRLHTHASETAEEDAYCLEHFGTSPTQYLEDQGWLGPDVWMAHCVHLDDPAIARYAATGTGVAHCPSSNGRLAAGIAPVRALLDAGVAVGLGVDGAASNESGQLGVEIRESVLMNRLRTGADSMSVRDGLRAATMGGARVLGRGDEIGSLEVGKLADVAVWQVDGVEHAGILDPVAALGLGALPPLKRLYVGGRAVVEDATLTTTDERKLAHEVTLASRELAERLNANANANANA
AK018_060931122pucA_2COG1975putative xanthine dehydrogenase subunit AATGCTTGAGATCGCCCGCGACCTGCTGCCCCTGGCCCGGTCGGGTTCACCGGTCGCCGTGGTGACCGTGACCCGCGTCGCCAGCAGCGCGCCGCGGGGTGTCGGCGCCGCGATGGCGGTCACCGGCGACGGCGCGGTGCTCGGCTCGATCTCGGGCGGCTGCGTCGAGGCCGATGCCGTGGTGCTCGCCCACGCGGCGCTCGCCACCGGGCGTCCGCAGTCGGCCCGGTTCGGGTTCGACGACGCCGCCGCCCACGCCGCCGGTCTGGCCTGCGGCGGGCAGGTCGACGTCCTCGCCCAACGCCTCGACCCGGCGGACACGATCACGATGCGGGCGCTGGAGGACGCGGCTGCCGACAGGCCAGCCGTCCTCGCGGTCGTCACGACCGGCCCGCACACCGGCCTGACCGTGGACGCGACCACGCTGGACGCCGCCACCACGGCCTGCCTCGCCGACCGCGAGACCCGGCTCCTGCCCGGTGCGCACGATGGCGCGGACCTGCTGGTCCTGCAGCGCGCACCGCGCGCACGCCTGATCGTGCTCGGCGCCGGTGAGCACGCCGCCGCGCTGTGCCACGTGGGTGCCGCGGCGGGCTTCGCGGTGACCGTGTGCGACCCGTGGGCCACGCTCGTCACCCGCGAGCGGTTCCCGGCGGCCGACGAGCTCGTCGTCGCGCTCCCCCACGAGTACCTCGCCGGGCTGGCCGCCCAGGAGACCGATGCCCGCACGGCCGTGTGCGTGCTCACGCACGACGAGCGGCTCGACGTCCCCGCGATCGGTCAGGCCCTGTCGATGCCGGTGGGCTTCGTCGGAGCGATGGGCGCCCGGGCCACCGTCGCCCGCCGCGCCGAGCGGTTGCGCGACGCCGGCGTGGACGACGTCGACCTCGCCCGGCTGCACTCCCCCCTCGGGCTCGACCTGGAGGGCTCGACCCCCGAGGAGACGGCGCTGTCGGTCCTGGCCGAGATCGTCGCCTCACGGCACGGCGGCTCCGGCCGCCCCCTGCGCGAGGCGAGCGGTCCCATCCACCGGGGCTCCGCCGTCGTACCCCACGCCAGAGCCACCACGTGCCCGGCACCGCCCGCGCAGCCCCTCGCCCGACCCGGAGGCACCCGACCATGAMLEIARDLLPLARSGSPVAVVTVTRVASSAPRGVGAAMAVTGDGAVLGSISGGCVEADAVVLAHAALATGRPQSARFGFDDAAAHAAGLACGGQVDVLAQRLDPADTITMRALEDAAADRPAVLAVVTTGPHTGLTVDATTLDAATTACLADRETRLLPGAHDGADLLVLQRAPRARLIVLGAGEHAAALCHVGAAAGFAVTVCDPWATLVTRERFPAADELVVALPHEYLAGLAAQETDARTAVCVLTHDERLDVPAIGQALSMPVGFVGAMGARATVARRAERLRDAGVDDVDLARLHSPLGLDLEGSTPEETALSVLAEIVASRHGGSGRPLREASGPIHRGSAVVPHARATTCPAPPAQPLARPGGTRPPGPT0007280_624DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_BIOSYNTHESIS,PGPT0007280-xdhC|paod|ygeB|pucA-K07402NANA
AK018_06094567nboR_2Nicotine blue oxidoreductaseGTGCGCACGACAGGGCTGGTCCTGGCCGCGGGAGCAGGTTCGCGGTTCGGCGGACCCAAGGGACTCGCACGCACGACGGCGGGCGAACCGTGGGTGCAGCGGGCCGTGCGGATGCTCGTCGCGGCCGGGTGTGACGACGTGCTGGTCGCCGTCGGCGCGCGGGGGGCCGACGTCGCCGCGCTGGTCCCGCCGTCGGCCCGCGTGGTGGTGGTCGACGACTGGGCCGACGGGCTCGCGGCGACCCTGCGGGCCGGGCTCGACGCCGTGGTTCCGAGCGGCGCCGAGGCGTTGGTCGTGTCGCCCGTCGACACCCCCGACGCGCCGGCGGAGGCCGTGCGGCGCGTGCTGCGGCGAGCCGGCAAGGAGCATGCGCCGTCGGACGTTCTCGCGCGCGCCGTCTACGCCGGCCGTCCCGGCCACCCCGTGGTGCTGGGCCGTGCCCACTGGGCCGGGGTCCGGGAGACCCTGGCCGGTGATGCCGGTGCCGGGCGCTACCTCGCCGCCCACGGGGCGGTCGAGGTCGAGTGCGGCGACCTGTGGTCCGGTACCGACGTAGACCGTGTCTAGMRTTGLVLAAGAGSRFGGPKGLARTTAGEPWVQRAVRMLVAAGCDDVLVAVGARGADVAALVPPSARVVVVDDWADGLAATLRAGLDAVVPSGAEALVVSPVDTPDAPAEAVRRVLRRAGKEHAPSDVLARAVYAGRPGHPVVLGRAHWAGVRETLAGDAGAGRYLAAHGAVEVECGDLWSGTDVDRVNANANANANA
AK018_060951647yheS_4COG0488putative ABC transporter ATP-binding protein YheSGTGCATCTCGTCGCCACCGACCTCGCCTTCGCCTACCCGGGCCGGCCCGTCCTGCAGGACGTGCAGGTCCGGGTGTCCGACGGCGTCCGGCTCGGTGTGGTGGGGGAGAACGGGTCCGGCAAGTCGACACTGCTGCACCTGCTCGCCGGGGACCTGACGCCCTCGGCCGGCGACGTCCGCCGCGCGGGGAGCGTCGCGCTCGTCACGCAGGAGCTCCACGTGACCCCCGGGCGGACGGTCGGCGACCTCGTCGAGGACACGCTCGCCCACCTGCGCGCACTGGTCACCGAGCTGGAGGCCGTGGCGGCCGGGTTTGACCACGACGGCGGGGACCTGGCCGAGCTGTCCGACGTGCTGGCGCGCGTCGAGCACCTCGCCGCCTGGGACGCGGACCGGCGCGTCGACGAGGCGCTCAGCCGGCTCGGTGCGGTGCGCGACCTGACCCGGCCGCTGGAGTCTCTCTCGGTCGGGCAGCGCTACCGGGTCCGGCTGGCCTGCCACCTGGCCGAGCGGGCCGATCTGCTGCTCTTGGACGAGCCGACGAACCACCTCGACGACTCCGGCGTCGCCTACCTGACCGAGACGCTGCAGTCGTGGCGCGGCGGCGTCGTGCTCGTCAGCCACGACCGCGAGCTGCTCGACGACGTCGCGACCGCGGTCTACGATCTCGACCCCTCGATGGACGGGCCACCGGTGCTCTACGGGCAGCCGGGCTACCACTCCTACCGGTTGAACAAGGCGCAGATGCTGGCGCGCTGGCGCCAGCGCTACCGCACCGAGCAGGAGCGCCGGGCGGCGCTCGAGTTCCGGCTGGACCGCTCCTACGAGGGGCTCTCCGACGAGTGGCGCCCGCCCAAGGGCTCGCAGAAGCACCGTCGCGGCACCCGTGCGCGCATCCACGTCAAGGCTGCCGACCGGCTCGTGGAGCAGCTCAAGGCCGAGGCCGTGGACGTCCCGCCGCCACCGCAGGAGCTCGCGTTCCCCGACCTGCCGTCGATGTCGCCGGGGTGGGACGCCGCCGAGGCCCTGGTGGAGCTGCGTTCGCCCCGGGTGGAGGCCCCGGACGGGGCCGTGCGGGTCGACCTGCCCGGCACCCGGCTGGCCGTGCCGCCGTCGGGCCGGCTGCTCGTGACCGGCGCCAACGACACCGGCAAGTCGACGCTGCTCGGGGCGCTGTGCGGCACGCTGCCCCTGTCGCGGGGGAGCCGCACGCTGCGCGAGGGAGTGCGCATCGGCGTCGTCGGGCAGGAGGGGCGGGTGCCCGACGACGGCCCCGACGCGGCGCGGTCCGGTTTCGACGCGTACGCGGCCGAGGCGCTCGAGCTGCTGTCCCGCGGCGAGCTGGACCCCGACCACCTCGTGCCCGTGGCCGCCCTGGGCCTGCTGAGCGAGGCCGAGCTGGAGCGGCCGTTGCGGGAGCTGAGCGTGGGGCAGCGACGCCGGTTCGACGTCGCGCTGGCCCTGCTGCACGCGCCGCACCTGCTGGTGCTCGACGAACCGACCAACCACCTGTCCGTCGACCTGGTGGACGCCCTCACGCTCGCGCTGCAGCGCACGTCCGCGGCCGTCGTCGTCGCCACCCACGACCGCCGGATGCGGGCCGACCTGGCCGACTGGCACCACCTCGACCTCCACAACCCGAGGTAGMHLVATDLAFAYPGRPVLQDVQVRVSDGVRLGVVGENGSGKSTLLHLLAGDLTPSAGDVRRAGSVALVTQELHVTPGRTVGDLVEDTLAHLRALVTELEAVAAGFDHDGGDLAELSDVLARVEHLAAWDADRRVDEALSRLGAVRDLTRPLESLSVGQRYRVRLACHLAERADLLLLDEPTNHLDDSGVAYLTETLQSWRGGVVLVSHDRELLDDVATAVYDLDPSMDGPPVLYGQPGYHSYRLNKAQMLARWRQRYRTEQERRAALEFRLDRSYEGLSDEWRPPKGSQKHRRGTRARIHVKAADRLVEQLKAEAVDVPPPPQELAFPDLPSMSPGWDAAEALVELRSPRVEAPDGAVRVDLPGTRLAVPPSGRLLVTGANDTGKSTLLGALCGTLPLSRGSRTLREGVRIGVVGQEGRVPDDGPDAARSGFDAYAAEALELLSRGELDPDHLVPVAALGLLSEAELERPLRELSVGQRRRFDVALALLHAPHLLVLDEPTNHLSVDLVDALTLALQRTSAAVVVATHDRRMRADLADWHHLDLHNPRPGPT0027935_122DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027935-tylC|oleB|carA|srmB-K18230NANA
AK018_06096570hypothetical proteinGTGACCGACACCGCCGAGTTCCCCCCTGACGACGAGCCGGGCCCCGAGTCCGGGGCCAACGGCTGGCTGACGCCCGAGGAGCTCGCCTCCGTCCGCGCCCAGCTCCCGCTCGTCTACGTCGACGCCGTGCCGGTGCGCGTGGACGAGTCGGGCGACGTCGTCGAGGTCGGGCTGCTGCTGCGCGCCACCCCGCTCGGCACCATGACCCGTGCGCTGGTCACCGGCCGCGTGCTGTACCACGAGCGGGTGCGCGACGCGCTGCTGCGCCACATCGAGAAGGACCTGGGGCCGGTGGCGCTGCCGCAGGTCCCGGCCTCGCCGCAGCCCTTCACGGTCGCCGAGTACTTCCCGACGCCGGGCATCACCCCGTTCCACGACCCGCGCCAGCACGCGATCTCCCTGGCCTACGTGGTGCCGGTCAACGGCGACTGTCGCCCGCAGCAGAACGCCCTCGACCTCGCGTGGCTGACGCCCGAGGAGGCCTGCAGCGACACGGTGCAGGCCGAGATGGTCAACGGTCAGGGCACCCTGGTGCGCCAGGCGATGGCGCACGTGGGCCGGCTCGACTGAMTDTAEFPPDDEPGPESGANGWLTPEELASVRAQLPLVYVDAVPVRVDESGDVVEVGLLLRATPLGTMTRALVTGRVLYHERVRDALLRHIEKDLGPVALPQVPASPQPFTVAEYFPTPGITPFHDPRQHAISLAYVVPVNGDCRPQQNALDLAWLTPEEACSDTVQAEMVNGQGTLVRQAMAHVGRLDNANANANANA
AK018_06097378trxC_2COG0526Putative thioredoxin 2ATGGCTACCGTCGAGCTCACCGACGACACCTTCGAGCAGACCATCAAGGACAACGACATCGTGCTGGTCGACTTCTGGGCGTCCTGGTGCGGCCCCTGCCGCCAGTTCGCGCCGGTCTTCGAGGCGTCCAGCGAGGACAACCCCGAGGTCGTCCACGGCAAGATCGACACCGAGGCCCAGCAGCGGATCGCGGGCGCCGCGGGCGTGACCGCCATCCCGACGCTGATGGCGTTCCGCGAGGGCGTGCTGGTGTTCAACCAGGCCGGCGCCCTGCCGGGCCCGCAGCTCAAGCAGGTCGTCGACGCCGTCAAGGACCTGGACATGGACGAGGTGCGCGCCCAGATCGCCGCGCAGCAGGACGGCCAGCCGCAGAGCTGAMATVELTDDTFEQTIKDNDIVLVDFWASWCGPCRQFAPVFEASSEDNPEVVHGKIDTEAQQRIAGAAGVTAIPTLMAFREGVLVFNQAGALPGPQLKQVVDAVKDLDMDEVRAQIAAQQDGQPQSPGPT0013055_3633DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671NANA
AK018_060982943hypothetical proteinATGTCCCTGTCCTGGAAGGACCCCGCCCACGCCCGCCGCACCGCCGGGCTCGCAGCCCTGACGCTGCTCACCGCCACGTTCGTGGCGACCGCCGCTCCCGCCAGCGCCGACGTCGTCGAGGTGGGGTCGGGCAGCTACACCACCGACACCGTCGGCCCGACGCCGGACGCCTGTCCCGCCGTCGAGGCCGACCCCCGCGCCTACGTCACCGACGACGCCCCCGCGACCCCGCTGCCCACCAACGACTGGTGGACCTCGCTGGCGTACAAGAAGCTGGACTGCGCGTTCAGCGAGCCGCTGCACGCCCACCCGGCGTCGTACCGGCCGTCGGCCGGCGGGCTCGGCATCTCCTACACCACGACGGCCGCTGTCACGGGCGACGGCACCGGCGTCGCCGAGTACCACTACCCGTACGCCGAGGACCTGCGCGCCGGGGTCGTCGGCCTCGACGCGCCGCACGTGGCGGTGGGGGGCTGGACCGACTGGACCGTCGACCCCGTCTGGGACGACGGCGAGCAGACCCTGCGGGCGACCATCGGGCACGGCCTGCCGATCTCCTGGTTCGAGGCCGACGGCGGTGATGCCCTGCTCACCCTGAACGGCGCGGCGGACCTGTGGCTCGACGAGCCGGGACGCGTCGGGCTCAGCGTCGGCGGGGCCGACTACCTCGCGGTGGCCCCCGAGGGCGTCTCCTGGTCGCGGGACGGCGACGCGCTGCGCGCCCCGGCCGCACGGTTCGCGATCGCGCTGCTTCCCGACGTCGACACCGACACCCGCGACGACCTCCTGGCGGCCTACACCGACGCCGCCCGCTCCCCCGTGACCGGCACCCGCGCCGACTACACCTACGACTCCAACGACGCCGTCGTGCGCACCACGTACGCGATCGAGACCACGCCGTGGCCCGGTGCCGACGACGGCGGCACGGTCGCCGCGCTGTACCCGCACCAGAGCGCGTACCTCACCGGCACCGAGCCGGCCGGACCCACCTACACCTCCCCGCGCGGCGACATGGCCGTGCTCACCGACACCACCGAGTTCACCACCGCGACCCCGTACACCGGTGTGCTGCCCGAGATCCCGGCGGTGGCGACGTCGTCGGGCGCCGACCGGGAGCAGCTCGAGACGCTGCTCGACGAGATCGACGACCCGCTCGACCAGCGCGAGGCCGACACCTACTGGACCGGCAAGGCCCTCGGCCGGGCGACGCGCGTGGTCGAGATCGCCGACCAGCTCGGCCGGGACCAGCAGCGCGACGCCGCCCTGGCCGACGTGCGCGCCGTGCTCACGGACTGGTTCACCGCGTCCGCGGGCAAGACCGAGCAGGTGTTCGCCTACGACGCCGACTGGGGCACGCTCGTCGGGCACCCGGGGTCCTACGGCTCGGACACCGAGCTCAACGACCACCACTTCCACTACGGCTACTTCGTGGCCGCGGCCGCGACGCTCGCGCGCTTCGACCCGCAGTGGGCCGCCGACTACGGCGGCATGGTCGACCTGCTGATCCGCGACGCCAACGGCTACGACCGCGGCGAGGAACGGTTCCCCTACCTGCGCGACTTCGACGTCTACGCCGGCCACGACTGGGCCTCCGGGCACGGCGCGTTCGCCGCCGGGAACAACCAGGAGTCCAGCTCGGAGGGCATGAACTTCGCCGGAGCGCTGATCCAGTGGGGCGAGGCCACCGGCGACACCGCCGTCCGCGACGCCGGCGTCTACCTGTTCGCCACGCAGGCCGCGGCGATCGAACGGTACTGGTTCGACGTCGACGGCGAGGTCTACCCCGACGAGTTCGGGCACCCCGTGGTCGGGATGGTCTGGGGCGACGGCGGCTCGTACGCCACCTGGTTCAGCGCCGAGGCCGAGATGATCCAGGGCATCAACACCCTGCCCGTCACCGGTTCCCACCTGTACCTGGGTTCGGACCCCGCGACCGTGCGCGCCGCCTACGACCACCTCGAGGAGGTCAACGGCGGACCGCCCACCGTGTGGCAGGACATCCTGTGGCAGTACCTCGCGCTCGGCGACGCCGACCGCGCGCTCGGCCTGCTCGACGGCGCGTCGTACACCCCCGAGGAGGGCGAGACACGCGCTCACACGTTCCACTGGGTCGCGAACCTCGCGGCGCTGGGCACCCTCGCGACCGAGGTCGGCGCCGACCACCCCCTGGCCGCGGCGTTCGACGGCGAGGACGGGCGCACCTACGTCGCCGCCAACGTCACGGCCACGGACCTGACGGTGGAGTTCTCCGACGGCCGGACCGTCGACGTCCCGCCGGGTCGCACGGTGGCGACCGGGGCGCACGAGTGGTCCGGCGGCTCCGGCGACGGCGGGCCCACCGCGTCGCCGTCACCGTCGCCCGAGCCCAGCGAACCCACCCCGGACCCGACGTCGACTCCTGAGCCGACGCCGGAGCCCACCGACCCGCCGACCTGCCCGACGCCGTCGCCCGACCCGACCGTCCCGCCGGGCTTCGCCGCCGAGGTGTTCCTGGGCCCGGACGGCACGCTCGTGCCCGAACCCGGCGACGACGGCCGCGTCGAGCTCGCCTCGGCCGACGGCGTCAACCGGGACGGCACCCCGCACCTGCCGGCCGTCCTCACCGCGACCGGGCTGACGGCGTCGTACACCGGAGCCGGCACCGCGTTCACGCTGGCCGTCGACGCCGGGGACGCCGTCGGGCAGGCCGTGCAGGCGCGCGTGTCCTACGACCTGACCGGGGACGGCACCGTCGACCGGGTCGAGACGTACGCCTACTTCGCCACCGACCCCGTGCCGGGCGACGAGACGTACCGCTCGCAGGGCCGCCTCGCCACGACCGAAGGAGAGCTCGGCGACCTCGACGGTGGCACGGTGCGCGTCGAGCTGTGGTCCGTGCTCGGCGACGGCACCCCCACCGTCGCGACCGGGTCCGCGTCGTCGGTCACCCTGCCGTTCGAGTGAMSLSWKDPAHARRTAGLAALTLLTATFVATAAPASADVVEVGSGSYTTDTVGPTPDACPAVEADPRAYVTDDAPATPLPTNDWWTSLAYKKLDCAFSEPLHAHPASYRPSAGGLGISYTTTAAVTGDGTGVAEYHYPYAEDLRAGVVGLDAPHVAVGGWTDWTVDPVWDDGEQTLRATIGHGLPISWFEADGGDALLTLNGAADLWLDEPGRVGLSVGGADYLAVAPEGVSWSRDGDALRAPAARFAIALLPDVDTDTRDDLLAAYTDAARSPVTGTRADYTYDSNDAVVRTTYAIETTPWPGADDGGTVAALYPHQSAYLTGTEPAGPTYTSPRGDMAVLTDTTEFTTATPYTGVLPEIPAVATSSGADREQLETLLDEIDDPLDQREADTYWTGKALGRATRVVEIADQLGRDQQRDAALADVRAVLTDWFTASAGKTEQVFAYDADWGTLVGHPGSYGSDTELNDHHFHYGYFVAAAATLARFDPQWAADYGGMVDLLIRDANGYDRGEERFPYLRDFDVYAGHDWASGHGAFAAGNNQESSSEGMNFAGALIQWGEATGDTAVRDAGVYLFATQAAAIERYWFDVDGEVYPDEFGHPVVGMVWGDGGSYATWFSAEAEMIQGINTLPVTGSHLYLGSDPATVRAAYDHLEEVNGGPPTVWQDILWQYLALGDADRALGLLDGASYTPEEGETRAHTFHWVANLAALGTLATEVGADHPLAAAFDGEDGRTYVAANVTATDLTVEFSDGRTVDVPPGRTVATGAHEWSGGSGDGGPTASPSPSPEPSEPTPDPTSTPEPTPEPTDPPTCPTPSPDPTVPPGFAAEVFLGPDGTLVPEPGDDGRVELASADGVNRDGTPHLPAVLTATGLTASYTGAGTAFTLAVDAGDAVGQAVQARVSYDLTGDGTVDRVETYAYFATDPVPGDETYRSQGRLATTEGELGDLDGGTVRVELWSVLGDGTPTVATGSASSVTLPFENANANANANA
AK018_06099276hypothetical proteinATGACTTCGTTGGCAGCCTTCGTCAAGGCGCGCGTCAGAGAGCTGCTGGCCCACGACGGGCGCCACCGCGCCGGCCGACGTCGGCACGTGCTCGACGCCGACGAGGTCAACCGGCTGCGCGAGCTGCACGACACGGCCGACCGGTACGAGCGGGGGCTGTTCGGGCCGGCCGAGGAGGCGCTCGCGGAGGGCCTGATGCGCGAGCGCGCCGCCGACTTCGCCGACCACCCCGACTACCGCGACGAGTGGCAGCACGAGTCGCGCCGGGCGACGTAGMTSLAAFVKARVRELLAHDGRHRAGRRRHVLDADEVNRLRELHDTADRYERGLFGPAEEALAEGLMRERAADFADHPDYRDEWQHESRRATNANANANANA
AK018_06101480bcp_2COG1225Putative peroxiredoxinGTGACGCGTCTGACCGCCGGCGACACCGCCCCCGACTTCACCCTGCCGACCGCCGACGGCGGCACCGTCTCCTTGGCGACGCTGCGCGGGCAGGCGGAGCGCGGCGTGGTCGTGTACTTCTACCCCGCCGCGATGACCCCGGGGTGCACCAAGGAGGCCTGCGACTTCCGCGACTCGCTGGACGCGCTGCAGGGCGCCGGGTACGCCATCGTCGGCGTCTCGCCGGACGAGCCCGCCAAGCTCGCCTCGTTCGTCGAGCGGGACGGCCTGACGTTCCCGCTCGCCTCCGACCCGGAGCACGAGGCCCTCGAGGCCTACGGGGCCTGGGGCGAGAAGAAGAACTACGGGCGCACCTACGTCGGCGTGATCCGCTCCACCGTCGTGGTCGGCGCCGACGGCACCGTCGAGCTCGCCCAGTACAACGTCAAGGCGACCGGTCACGTGGCGCGGCTGCGCACGAAGCTCGGGCTCGACGCCTGAMTRLTAGDTAPDFTLPTADGGTVSLATLRGQAERGVVVYFYPAAMTPGCTKEACDFRDSLDALQGAGYAIVGVSPDEPAKLASFVERDGLTFPLASDPEHEALEAYGAWGEKKNYGRTYVGVIRSTVVVGADGTVELAQYNVKATGHVARLRTKLGLDAPGPT0013120_2527DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013120-bcp|PRXQ|DOT5-K03564NANA
AK018_06102369groS_410 kDa chaperoninGTGGGCCCCGTGAGTCCCGCCGCACCCAGCTCCTCGTCGACGGACGGCACGGCCGAGCCGCTGCCCATCCGCATGCTCCACGACCGCGTCCTCGTGGACCCGGAGATCGACCGCGCGGAGCGGCAGTCGTCCGCCGGTCTGGTCATCCCCGCCACGGCTTCGGGGCCGAAGCGGCTGACCTGGGCCCGGGTCGTGGCCCAGGGTGAGCACGTGCGGCAGGTCGCCGTCGGCGACCGGGTGCTGTACGACCCGGAGGACCGGGCGGAGGTCGACCTGGGCGGCACCGACTACGTGCTGCTGCGCGAGCGCGACGTGCACGCGGTGGCCGAGGTCTCGGGCGAGGCCGGCACGACCGGCCTCTACCTGTGAMGPVSPAAPSSSSTDGTAEPLPIRMLHDRVLVDPEIDRAERQSSAGLVIPATASGPKRLTWARVVAQGEHVRQVAVGDRVLYDPEDRAEVDLGGTDYVLLRERDVHAVAEVSGEAGTTGLYLPGPT0014565_595DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078NANA
AK018_06105426hypothetical proteinATGCAGGACGACGTCCGCGCGGCACTCGACATCCACCCCGCCGCCCCGCCCCGCGACCGGACGATCGACATCACGACCTACGGTGCCTCCAGCGGGCAGCCCCGGCGGATCGAGACCTGGTTCCACCACGTCGACGGTCGGTGGTTCCTCAGCGGCAGCCCCGGCCGGCGTGACTGGTACGCGAACCTGCGGGCCGACCCGCGCCTCGTCGTCCACCTGAAGCACGGGGTGCGGGCCGACCTCGAAGCACGCGCCGTCCCGGTCGTCGACGCCGAGGAGAAGCGCCGGGTGATCACGCTGATCCTCGAGGCGCTGGAGGAGATGGGCGGGTGGACGACCGCCGCTCCGGAGAACGTCGACGCGTGGACGGCAGGGAGCCCCCTGGTCGAGCTCGAGTTCGGCGATGACCCGGAGGTCGCCGGGTAGMQDDVRAALDIHPAAPPRDRTIDITTYGASSGQPRRIETWFHHVDGRWFLSGSPGRRDWYANLRADPRLVVHLKHGVRADLEARAVPVVDAEEKRRVITLILEALEEMGGWTTAAPENVDAWTAGSPLVELEFGDDPEVAGNANANANANA
AK018_06106408hypothetical proteinATGATCTCCACCGAGCTCGCCGCCCGCCTGCGCGACGCGGGGCTGGTCTGGAAGCCCGTCGACGGCGACCGCTTCCAGATCGACTCGCCGCAGCTCACCGACCAGGTGTTCACCGTCTCCGCCCTCGTGGTCGAGACCCACCACTACGACACGGGCACGGTCCTGGGCTTCAACGGCACGACCGAGTGGGCGCTCGACTCGGTGGACATCGACGACACGCTCTGGCTGCCGCGCGAGGACCAGCTGCGCGAGCTGCTCGGGGGCACCTTCCGGTCGCTGCGGGACGACGGCGGCACGTTCGTCGTGGAGGTCGAGCTGCTCGGTCGGCCGCGCACCTTTACCGACCCCGACCCGTCGCAGGCCTACGGCGAGGCGCTGCTCGCCCTCGTGGAGCTGTCCGCCGGCTGAMISTELAARLRDAGLVWKPVDGDRFQIDSPQLTDQVFTVSALVVETHHYDTGTVLGFNGTTEWALDSVDIDDTLWLPREDQLRELLGGTFRSLRDDGGTFVVEVELLGRPRTFTDPDPSQAYGEALLALVELSAGNANANANANA
AK018_06107807trmB_2COG0220tRNA (guanine-N(7)-)-methyltransferaseGTGCCGAACTCAGAGCAGAACCCCGGGGCGACGCCCGCCCCGGGCGACGACACCGTCGATCCGCGCCACCACCGCCGCCCGCTCAGCTACGTGCGCCGGACCGCGCGGCTGACCGCGGGGCAGCAGAAGGCGTGGGACACGCGGCGGCAGCGCTACCTGGTCGACGTCCCCCACGAGCACCGGGAGCTCTCCGTCCACCCGGACTGGCGGTTCGACGCCGCCGCGGAGTTCGGCCGGTCCGCGCCGCTGGTGCTGGAGATCGGCACGGGCCAGGGCGAGTGCATCGTGCACGCCGCGGCGACCCACCCCGAGCGGGACCACCTCGCCGTCGAGGTCTACCGCCCCGGCGTGGCCCAGACGATCGTGCGCGCCGGGCACGCCGGCGCCGAACCCTCGGTGGCGGGCGGCAATCCGGGCCACGAGCTCGACAACCTGCGCATCATGCAGGTGGACGCCGCCGAGCTGCTCGGCCACGGCCTGCCGGAGGCGAGCCTGGACGAGCTGTGGGTGTTCTTCCCGGACCCGTGGCCCAAGACGCGCCACCACAAGCGCCGTCTGGTCACGCCCGCGTTCGCCGAGCTCGCGGCCCGGGCGATCCGGCCGGGCGGTCGCTGGCGCCTGGCCACCGACTGGGCCGAGTACGGCGAGGTCATGCTGGCGGTCGCAGACGCGGCGGAAGGATTCCGCAACGCCCACGGCCCGGGCGGCCGGGCGCCCCGCTTCGAGGGGCGGGTCATGACGAGCTTCGAGCGCAAGGGGCTGGACGCCGGCCGCAGCGTCACGGATCTGGAGTACGTGCGCCTCTGAMPNSEQNPGATPAPGDDTVDPRHHRRPLSYVRRTARLTAGQQKAWDTRRQRYLVDVPHEHRELSVHPDWRFDAAAEFGRSAPLVLEIGTGQGECIVHAAATHPERDHLAVEVYRPGVAQTIVRAGHAGAEPSVAGGNPGHELDNLRIMQVDAAELLGHGLPEASLDELWVFFPDPWPKTRHHKRRLVTPAFAELAARAIRPGGRWRLATDWAEYGEVMLAVADAAEGFRNAHGPGGRAPRFEGRVMTSFERKGLDAGRSVTDLEYVRLNANANANANA
AK018_06108570ecfT_3COG0619Energy-coupling factor transporter transmembrane protein EcfTGTGACGGCGCTGCACCGGCTCGGCGCGGGCACGAAGCTCGCGGGGCTCGCCGTGGCCTCGGTGGCCCTGCTGGCCGTCGACTCGCCCCAGGGCGTGGCGGTCGCCGTCGCCGTCGTGCTCGCGCTGCACGGTGCAGCGCGGCTCGGCCCGCGGGCGGTGTGGTCGCACGTGCGCCCGCTGCGCTGGTTCCTGCCGTGCCTGCTGGCGGTGCAGTGGTGGCTCGTCGGCCCGTCGGACGCCGTCGTGCTCTGCGCACGCCTGGCGGCGCTCGTGGCGCTGGCGGGGCTGGTGACCGCCACGACGTCCACCACCGCGATCCTCGACGCGCTCCGCCGGGGGCTGCGGCCGCTGGACCGGTGGGTGGACGCGGAGCGGGCGGCGCTCGTGCTCACGCTCGCGCTGCGCTCGGTGCCGGTCCTCGGCGATCTCGTCGAGCGCGTGCGGGACGCCCAGCGGGCACGCGGCCGGGAACGGGACCTGCGCGCCGCGGCCGTCCCGCTCGTGGTCGGGACCCTCCGTCGCGCCGACGCCCTCGGCGAGGCGCTGCAGGCCCGGGGCGCGGACGACTGAMTALHRLGAGTKLAGLAVASVALLAVDSPQGVAVAVAVVLALHGAARLGPRAVWSHVRPLRWFLPCLLAVQWWLVGPSDAVVLCARLAALVALAGLVTATTSTTAILDALRRGLRPLDRWVDAERAALVLTLALRSVPVLGDLVERVRDAQRARGRERDLRAAAVPLVVGTLRRADALGEALQARGADDNANANANANA
AK018_06109693bioM_2COG1122Biotin transport ATP-binding protein BioMATGAGCCCCGGGCCGGCGCCGATCGTGCTCGACGGCGTCCACGTGCGCCGCGAGGGCCGGCACGTGCTGCGCGGCGTCTCGTTGCGGCTGACCGAGCGGCGGGTGGCCGTCATCGGCGCCAACGGGTCCGGCAAGTCCACGCTCGCGCGGCTGCTGAACGGGCTGGTGCTGCCGACGTCGGGCCGCGTGCACGTGGACGGCCTGGACACCCGGCGCCACGGTGCGCGGGTGCGCCGCCGGGTCGGGTTCGTGTTCACCGACCCCGACGCCCAGATCGTCATGCCCACCGTCGCCGAGGACGTCGCCTACTCCCTGCGGCGGCGCGGGCTGTCCCGGGACGAGGTCGACGAGCGGGTGGCCCGCGAGCTGGAGCGTCACGGCCTGGCCGGGCACGCCGACCACCCGGCGCACCTGCTCTCCGGCGGGCAGAAGCAGCTCCTGGCGCTGTCCAGCGTGCTGGTGACCGAGCCGGCGCTGGTCGTGGCCGACGAGCCGACCACGCTGCTGGACCTGCGCCACACCCGGACGGTGGCCCGCCGGCTGGCCACGCTGGACCAGCAGGTGGTGCTGGTGACCCACGACCTGGACCTCGTCGCCGACTACGACCGGGTGCTCGTGGTCGACGAGGGCCGGGTGGTGGTCGACGACGGACCGGAGCGTGCCGTGGCCGCCTACCGCGAGCTGATGGCGTGAMSPGPAPIVLDGVHVRREGRHVLRGVSLRLTERRVAVIGANGSGKSTLARLLNGLVLPTSGRVHVDGLDTRRHGARVRRRVGFVFTDPDAQIVMPTVAEDVAYSLRRRGLSRDEVDERVARELERHGLAGHADHPAHLLSGGQKQLLALSSVLVTEPALVVADEPTTLLDLRHTRTVARRLATLDQQVVLVTHDLDLVADYDRVLVVDEGRVVVDDGPERAVAAYRELMAPGPT0022045_471DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_TRANSPORT,PGPT0022045-bioM-K16784NANA
AK018_061101134fadA_43-ketoacyl-CoA thiolaseGTGAGCACGATCGTGGCCGCGCGGCGCACCTGGATCGGGCTGCCCGGCCGGGGGCACGGCCGGCGCGACGAGACCGTCCTCGCCGCCGGCGTCCTGGCCGCCGCCGCCCGGGACGCCGGTGCGGCCGGACCCGTCGGCACCTCCGGACCCCACGGCGTTGCCGGATCCGACGGCCTCGAGGTCGTCCTCGGCAACGCGGCGGGGCACGGCGGCAACGTCGCCCGGCGGGCGTCTCTGGTCGGCCTGGGCGCCCGGGTGCCCGGTCTCACCGTGGACCGCCAGTGCGCCTCGGGGCTGGCCGCCGTGGCCGTCGGTGCGGCGCTGGTCGACTCCGGTCAGGCCGGCGCGGTGCTCGCGGGGGGCGTGGAGTCGGCCTCCCGTGCACCGGCACGCTCCCACGACGGCCGTGCCTACGTCCGCTCCTCGTTCGCGCCGCCGCCCTGGGCCGACCCGGAGGCGGGCGAGGCCGCGGACCGCCTCGCCCGCGAGCGCGACGTCCCGCGCGAGCGCCAGCACCGGTACGCGACGGCGTCGCACCGGCGCGTGCGCGCCGCACGTGCGGCGGGCCGGTTCTCCGGCGAGGTCGTCGCGGGCGGACCGACGCGTGACGAGCACGCGCGGGACCTCGTCGCGGCGGTCCTGGACCGGCTGCCCGGCGCGTTCACCACCGGCGGGAGCGTCACCGCGGCGTCGGCGGCACCGGCGGCGGACGGTGCAGCCGCCGTCGCGCTGGTGCCCGACGGCGTGCCCGGGCTGCGGCTGCGGGCCGTCGTCACCACGGCCGGGGACCCGGCGATGCCGCTGCTGGCACCGGTCGGGGCCGTGCGTGCCGCCTGCCGTCGCGGCGGGGTGACCGTCGACGACCTGGCGGCGGTCGAGCTCGTGGAGGCCTTCGCGGTGCAGGCGCTGTGCGTGGCCGACGACCTGGACATCGATCCCGCCGACCCCCGGTGGAACCCGGACGGCGGCACCCTGGGGTACGGCCATCCGTTCGGCGCGAGCGGCGCGGTCGCCGTCGTGCGGCTGTTCGCCCGGCTGGTGGACGGCGGGGCGCCGGCCGGCAGCCTCGGGGTGGCGTCCGTCGCCGGGACGGGAGGCCTCGGGGTGGCACTGCTCGCCGAGGTCGTGCGATGAMSTIVAARRTWIGLPGRGHGRRDETVLAAGVLAAAARDAGAAGPVGTSGPHGVAGSDGLEVVLGNAAGHGGNVARRASLVGLGARVPGLTVDRQCASGLAAVAVGAALVDSGQAGAVLAGGVESASRAPARSHDGRAYVRSSFAPPPWADPEAGEAADRLARERDVPRERQHRYATASHRRVRAARAAGRFSGEVVAGGPTRDEHARDLVAAVLDRLPGAFTTGGSVTAASAAPAADGAAAVALVPDGVPGLRLRAVVTTAGDPAMPLLAPVGAVRAACRRGGVTVDDLAAVELVEAFAVQALCVADDLDIDPADPRWNPDGGTLGYGHPFGASGAVAVVRLFARLVDGGAPAGSLGVASVAGTGGLGVALLAEVVRPGPT0008320_14219DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
AK018_061111395yhfTCOG0318putative acyl--CoA ligase YhfTGTGCCGGTCGCGCACCACGTCCTGGCCCACGGCGCCGGTCCGGCCGCTCGTCACGCGGCCCTGCGCCACGGCGACCGGTCGCGCACCTACGCCGAGCTCGCCGCCGACGTCGCCGCCGGGGCCGACCACCTGCGCGCCACCGGCACCCGGCCCGGCCAGCTCGTGGCCCTGACGCTCACCGACCCCGTCGACACGCTCGTCGCCCTGCTCGCCGCCGACCGCGCCGGGGCCGTCGGCCTCGTCGGCGACCCCGCCTGGGGGCACCATCAGCGCGCCGAGGTCCTGCGCACGCTCTCGCCCGACGTCGTCGTGCCCCTCCCCCTGCCCCGCGGGCTCGGCTCTCCCCCGGACCCCGGCCCCCCGCCCGACGGCGACACCCCCGCCTGGGCCGGATTCTCCTCCGGCAGCACCGGACGGCCCCGGGCCGTCGTGCGCAGCCGCCGTTCGTGGACCGGCTCCTTCGGGCACGTCGACCGACTCACCGGCATCCGCCCCGACGACACCGTGCTCGTCACGGGGCCGCTGGCCTCCTCCCTGCACTGCTTCGCCGCCGTGCACGCCCTGGCCCGCGGCGCCCGCGTCCACCTCGTCGACGGCCGAGCCGGCACGACGGCGGCGCTCGCCGACGCGGACGTCGCCCACGTGGTGCCCTCGCGGCTCGACGACCTGCTCGACGCCCTGGACGCCGGCGCGCCGAGCCGGCTGCGCACCGTCGTCGTCGGGGGCGCAGGCACCGACCGCGCCCAGCGGGCCCGCGCGGCCGCCCACCGCCTGGACGTGATCGCCTACTACGGGGCGGTCGAGCTCAGCTTCGTCGCCGTGGACACCGGCCGCGGGCTGCGCCCCTTCCCGGAGGTCGACGTCGAGGTCCGTCCGCAGCACGGCACCCGGCTCGGCGAGGTCTGGGTGCGCTCGCCGTGGACGTGCACCGGGTACCTCGCCGGCGCTCGCGGCCCGCTGCGCACCGAGGCCGGCTGGGCCACCGTCGGCGACCTCGCCGACCCCCCGGCACCCGGCGACGACGCCGCGCTGGTGCTGCGGGGCCGGGCCGACGGCGCGGTCCTGACCGCCGGTGCCACGGTGGTGCCCGAGGACGTCGAGTCCGCGCTGTGCCCCGTCCCCGGGGTCCGCGACGTCGTGGTCACCGGGGCCCCGCACCGCCGGCTCGGGGCCGTCGTCGTGGGGATCGTGGAGGCCGACGACCGTCCGGGCCTGCGCGCCCACCTGGACCGGGTGGCCCGCGCGAGCCTCGCACCCGCTCAGCGGCCCCGCCGCTGGTACCGCCTGGACGCCCTGCCCCGGACCTCCAACGGTAAGGCCGCCCGCGCCGCGCTCGGCGCCGCGGTGGCCGGCACCGACCCGGAGGTCCACCTGGGGCTGGAGGTGCTGCGGTGAMPVAHHVLAHGAGPAARHAALRHGDRSRTYAELAADVAAGADHLRATGTRPGQLVALTLTDPVDTLVALLAADRAGAVGLVGDPAWGHHQRAEVLRTLSPDVVVPLPLPRGLGSPPDPGPPPDGDTPAWAGFSSGSTGRPRAVVRSRRSWTGSFGHVDRLTGIRPDDTVLVTGPLASSLHCFAAVHALARGARVHLVDGRAGTTAALADADVAHVVPSRLDDLLDALDAGAPSRLRTVVVGGAGTDRAQRARAAAHRLDVIAYYGAVELSFVAVDTGRGLRPFPEVDVEVRPQHGTRLGEVWVRSPWTCTGYLAGARGPLRTEAGWATVGDLADPPAPGDDAALVLRGRADGAVLTAGATVVPEDVESALCPVPGVRDVVVTGAPHRRLGAVVVGIVEADDRPGLRAHLDRVARASLAPAQRPRRWYRLDALPRTSNGKAARAALGAAVAGTDPEVHLGLEVLRPGPT0008380_15990DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
AK018_06112594bioY_2COG1268Biotin transporter BioYGTGACCGACCCCACCGCCACCGCCCCCACCACGCGCGCCGGCCTGCACGCCGCCGACGCCGCGCGCGTGGCGACGTTCGCCGCCCTGATCGCCGTCCTCGGCCTGCCCGGCGCCCTGCCGCTGCTCGGCAACGCCGTCCCCGTGACCCTGCAGACCCTCGGCGTGATGCTGGCCGGCGCGATCCTCGGCGCGCGCCGCGGCGCCCTCGCGGTCCTGACGTTCCTGGCGCTCGCCGCCGCCGGGCTGCCCGTCCTGGCGGGCGGCCGGGGCGGTCTCGGGGCGTTCGTCGGCCCCTCGGCGGGCTACCTGGTCGGGTTCGTCGTCGGTGCGTGGGTGGTCGGGCTGCTCGTGCACCGGCTGCGCCGCGTGACGTTCCTCGGGGTGCTTGGGGCCGCCGTCGTCGGCGGCATCGGGGTCGTGTACGCCTGCGGCATCCCCGTCCAGGCCGCCGTCACCGGCGTCCCGGTGCCCGAGACGGCGCTGCTGTCGGCGGTGTTCCTGCCCGGCGACCTGCTCAAGGCCGTCGCCTGCGCCGCCGTCACCGTCGGCGTCGCCCGCGCCTACCCCGCGGCCCTGCGGCACCGGGAGGACTGAMTDPTATAPTTRAGLHAADAARVATFAALIAVLGLPGALPLLGNAVPVTLQTLGVMLAGAILGARRGALAVLTFLALAAAGLPVLAGGRGGLGAFVGPSAGYLVGFVVGAWVVGLLVHRLRRVTFLGVLGAAVVGGIGVVYACGIPVQAAVTGVPVPETALLSAVFLPGDLLKAVACAAVTVGVARAYPAALRHREDPGPT0022050_58DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_TRANSPORT,PGPT0022050-bioY-K03523NANA
AK018_061131482merAMercuric reductaseATGGAGCAGACGTTCGACGTGATCGTGCTCGGTGCCGGCCCGGTGGGGGAGAACGCCGCCGACCGTGCGTCGCGCACCGGCCTGTCCGTGGCCGTGGTGGAGGCCGAGCTGGTGGGTGGGGAGTGCTCGTACTGGGCGTGCATCCCGTCCAAGACGCTGCTGCGACCGGGCGCCGCCCGGGACGCGGCGGCGCAGGTGCCCGGGGTCGCCGACCCCGGTGCCCTCGACGCGGGCGCGGTGCTGGCCTGGCGCGACGAGATGACCGGCGAGGGCGACGACTCGGGTCAGGTGTCCTGGCTCGAGTCGATCGGCGTGACGGTCGTGCGCGGGCACGGACGGCTCGTCGCCGAGCGCGTCGTGGAGGTCACGCCCGCCCGGACCGTGGACGACGACGGACCGGGCGAGGTGCACCGGCTCGCGGCGCGCTGCGCCGTGGTGGTGGCCACCGGCAGCGAGGTCACCCTGCCGCCCGTGCCCGGCCTGGCCGCGGCCAACCCGTGGACGTCGCGCGAGGCGACCTCCGCCGAGACGGTGCCCGAGTCCCTCGTGATCGTCGGTGGCGGGGTGGTCGGCTGCGAGATGGCGACCGCGTACGCCGACCTCGGCGCCCACGTGACGCTCCTGGCGCGCTCGGGGCTGCTCGGCGGGGCGGAGGAGTTCGCGGGCGAGGCCGTCGCCGCCGCGCTGCGCGACGCCGGGGTGGACGTCCGCCTCGGCGCCGACGTGCGGGCCGTCTCCCGGCCCGAGGTCGGCGGGCGCGTCAGCGTCGAGGTGGACCACGACGGCAGCACCGAGCAGGTCGAGGCCGCCGAGCTCCTCGTCGCCACCGGGCGCCGGCCGCGCACTGGGGACGTCGGCCTGGACACCGTCGGGCTCACCCCGGGCGACCCGCTGACCATCGACGACAGCACCGCCGTCACCGGTGCGGGCGAGGACCCCCAGGGACGGCCCTGGCTGTACGCGTGCGGCGACGTGACCGGCCGCGTGACGACCACCCACCAGGGCAAGTACCAGGCGCGGGTGACCGGCGACGTCGTCGCGGCCCGCTTCGGACCCGGGGACGACCCCACCGCGCAGGAGTCGCCGTCGGGAACCTGGAGCCCCTACGCCGCGCGCGCCGACCACGGCGCGCAGACCCAGGCGGTCTTCACCCGCCCGCAGGTGGCGTGGGTCGGGCCCACCGAGCGCGAGGCCCGCGAGGCCGGACTCGCGGTGCAGGCCGTCGACTACGACCTCTCCGGCGTGGCCGGGGCGAGCGTGACCTCCCCGCACTACGCCGGCCGGGCGCGCATCCTCGTCGACACCGGGCGCCGCGTCCTGGTCGGGGCGACGTTCGTGGGACCCGACGCCGGCGAGATGCTGCACGCCGCCACCATCGCCGTCGTCGGCGAGGTGCCCCTGGACCGGCTGTGGCACGCCGTGCCCGCCTTCCCCACGGTCAGCGAGGTGTGGCTGCGGTTCTGCGAGGAGTTCGGGATGTGAMEQTFDVIVLGAGPVGENAADRASRTGLSVAVVEAELVGGECSYWACIPSKTLLRPGAARDAAAQVPGVADPGALDAGAVLAWRDEMTGEGDDSGQVSWLESIGVTVVRGHGRLVAERVVEVTPARTVDDDGPGEVHRLAARCAVVVATGSEVTLPPVPGLAAANPWTSREATSAETVPESLVIVGGGVVGCEMATAYADLGAHVTLLARSGLLGGAEEFAGEAVAAALRDAGVDVRLGADVRAVSRPEVGGRVSVEVDHDGSTEQVEAAELLVATGRRPRTGDVGLDTVGLTPGDPLTIDDSTAVTGAGEDPQGRPWLYACGDVTGRVTTTHQGKYQARVTGDVVAARFGPGDDPTAQESPSGTWSPYAARADHGAQTQAVFTRPQVAWVGPTEREAREAGLAVQAVDYDLSGVAGASVTSPHYAGRARILVDTGRRVLVGATFVGPDAGEMLHAATIAVVGEVPLDRLWHAVPAFPTVSEVWLRFCEEFGMNANANANANA
AK018_06114918dcsG_2Cycloserine biosynthesis protein DcsGGTGACCTCCTCGACGAAGCGAGTCGGACTCGCCACCTGCTCCGTCCTGCCCGACCTCGACGCCGACGACCGTCCGATCGTCCCCGCCCTGGCCGCCCGCGGCGTGACCGCCGAGCCCGTCGTCTGGGACGACCCCGACGTGGACTGGGCCGCCTACGACCTCGTCGTCGTGCGGTCCACCTACGACTACTCGCCGCGCCGCGACGAGTTCATCGCCTGGGCGCGCTCGGTCCCGAACCTGGCCAACAGCGCCGACGTCATCGCCTGGAACACCGACAAGACGTACCTGCAGGCCATGGACGACGCGGGCGTGCCCGTCATCCCGACGATCTGGCTCGACCCGGAGCGGCACCTGTCCAAGCGGGCCATCCACACGCGCATGCCCGCCTTCGGCGACTTCGTGGTCAAGCCCGTCGTCTCCGCCGGCGCCCAGGACACCGGCCGCTACCAGCCCGTCAGCTCCGAGTCGCGGGCGCTCGCGATCCAGCACGCCAAGGACCTGCTCGACGCCGGCCGCGCCATCATGATCCAGCCGTACGTGACCAGCGTGGACACCGCAGGCGAGACCTGCCTGATCTTCGTCGAGGGCGAGGTGCAGCACGCCGTGCGCAAGAACGCGCTGCTCACCGGGCCGAGCCGACCCACCCAGGGGCTGTACCGCAAGGAGACGATGCGCGCCGTGGAGGCGACCGACGTCCAGGTGGACGTCGCCCGCCGGGCCCTCGCCGTCGCGCACGAGCAGCTCGGCGTCACCGAGCCGTTCCTGTACGCCCGGGTGGACCTCGTCGGCGGGACCGAGGACGAGGCGCCCATGGTGATCGAGCTGGAGCTGACCGAGCCGTCGCTGTGGCTCAAGCACGCCGGGGACGCCGGCACGGCCGAGAAGTTCGCCGACGCGATCGTCGCCCGCCTGGGCTGAMTSSTKRVGLATCSVLPDLDADDRPIVPALAARGVTAEPVVWDDPDVDWAAYDLVVVRSTYDYSPRRDEFIAWARSVPNLANSADVIAWNTDKTYLQAMDDAGVPVIPTIWLDPERHLSKRAIHTRMPAFGDFVVKPVVSAGAQDTGRYQPVSSESRALAIQHAKDLLDAGRAIMIQPYVTSVDTAGETCLIFVEGEVQHAVRKNALLTGPSRPTQGLYRKETMRAVEATDVQVDVARRALAVAHEQLGVTEPFLYARVDLVGGTEDEAPMVIELELTEPSLWLKHAGDAGTAEKFADAIVARLGNANANANANA
AK018_06115915yehZ_2COG1732Glycine betaine-binding protein YehZATGCGCACCATCCGACGCACCACCACCCTCGTCGCCGGGGCGGCGGCCGCGCTGCTCACCCTGAGCGCCTGCGGCGGCGACTCCGACCCGCTGGAGCAGGACACCGGCGACAGCGGTGAGGACACGGCCTCCGACACGATCGTCGTCGGCTCCCAGGCGTACTACTCGAACGAGATCATCGCCGAGATCTACGCCCAGGCGCTCGAGGCCGACGGCTTCACGGTCGAGCGCAACTTCTCGATCGGGCAGCGCGACGCCTACATGCCCGCCCTCGAGAACGGCGAGGTGCAGGTGATCCCCGAGTACACCGGCAACCTGCTGCAGTACTTCGACCCGGAGACCACCGCGACCTCGGCCGAGGACGTCTACGCGGAGCTGGCGAACGCCGTGCCCGAGTCGCTGGCCGTTCTCGAGCAGTCCCCCGCCACCGACCAGGACTCCTACAACGTCACGGCCGACTTCGCCGAGTCGGAAGGGCTGACCTCGATCGGCGACCTGGCGGGCATCGACGGGCTGACCCTGGGCGGCCCGGCCGAGCTCGAGGAACGACCCTACGGACCGCAGGGTCTGGCCGACGTCTACGGCGTGGACGTGGCGTTCGAGGCGACGGGCGACACCACGGTCCAGGACCTGGTCGCCGGGACCGTCGACGTCGCGAACGTCTTCAGCGCCGACCCCCGCATCCAGACCGAGGACCTGGTCACCCTGGAGGACCCCGAGGGCCTGTTCCTCGCCTCCAACGTGGTGCCGCTGGTCGGCGCGGACGTGGTCGAGGACGTCGCCGCCGTGATCGACCCGGTCAGCGCGGCGCTCACCCCCGAGGGCCTGGTGGACCTCAACGTGCAGTCCACCGAGGAGCAGCGTTCCAGCGAGGACATCGCGGCCGACTGGCTCGCCGAGAACGGCCTGGCCTGAMRTIRRTTTLVAGAAAALLTLSACGGDSDPLEQDTGDSGEDTASDTIVVGSQAYYSNEIIAEIYAQALEADGFTVERNFSIGQRDAYMPALENGEVQVIPEYTGNLLQYFDPETTATSAEDVYAELANAVPESLAVLEQSPATDQDSYNVTADFAESEGLTSIGDLAGIDGLTLGGPAELEERPYGPQGLADVYGVDVAFEATGDTTVQDLVAGTVDVANVFSADPRIQTEDLVTLEDPEGLFLASNVVPLVGADVVEDVAAVIDPVSAALTPEGLVDLNVQSTEEQRSSEDIAADWLAENGLAPGPT0013595_2681DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013595-opuC|yehZ-K05845NANA
AK018_06116684opuCB_3COG1174Glycine betaine/carnitine/choline transport system permease protein OpuCBATGGACCTGTTCGCCGAGGCGATCGCGTGGATCTTCTCCCCCGACACGCAGTCGGGCTCCCTGCCGCTGTCCGAGGCGATCGCCACCCACCTGGCCTTCACCGTGGTCTCGGTGCTCATCGCGGCCGCGATCGCCGTGCCGGCCGGCTGGCTGGTGGGCCACACCGGCCGTGGACGGGAGATCGCCGTCGGGCTGTCGGGCGCCGCCCGGGCGGTGCCCTCGTTCGGGCTGGTGCTGCTGCTCGTGCTGGTGTTCGGCGTGACGCACAAGGTCGGGGCGTCGACGACGGCGTTCGTGCTGCTGGCGATCCCGCCGATCCTCGCCGGGGCGTACTCGGGCGTCGAAGCCGTGGAGCGGCGCATCGTCGACGGGGCCCGTGCGGTGGGCATGACCTCGTCCCAGGTGCTGGGCAAGGTCGAGATCCCGCTCGGCCTGCCGCTGCTGATCGGCGGGTTGCGGTCCGCCACGCTCCAGGTGGTCGCCACCGTGACGCTGGCCGGCTACGTCGGCAGCTGGGGCCTGGGCTTCTACATCGTGCAGGGCATCCAGATCCGCGACTTCGCGCAGATCCTCGGGGCGGCGCTGGTCATCGTGGTGCTGGCGGTACTCCTGGACCTGCTGTTCGCGCTGGCCGAGCGCGCCGTCGTCCCGCGGGGCGTCCGCGCCGGACGCGACGGCCGCTGAMDLFAEAIAWIFSPDTQSGSLPLSEAIATHLAFTVVSVLIAAAIAVPAGWLVGHTGRGREIAVGLSGAARAVPSFGLVLLLVLVFGVTHKVGASTTAFVLLAIPPILAGAYSGVEAVERRIVDGARAVGMTSSQVLGKVEIPLGLPLLIGGLRSATLQVVATVTLAGYVGSWGLGFYIVQGIQIRDFAQILGAALVIVVLAVLLDLLFALAERAVVPRGVRAGRDGRPGPT0013581_38DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013581-opuCB|yvbD-NANANA
AK018_06117639opuCB_4COG1174Glycine betaine/carnitine/choline transport system permease protein OpuCBATGACCTGGGTCGTCGACAACCTCGACCTCATCGGCCGTCTCACCGTGGAGCACCTGCGACAGAGCGCCCTGCCCATCCTGCTGGGGCTGCTGCTGTCCATCCCGCTCGGCTGGCTGGCGTTCCGGTTCCGCCTCACACGCGGTCTGATGCTCACCGTCGTCGGGCTGCTGTACACCATCCCGTCCCTGGCGCTGTTCGCCCTGCTGCCGCCGCTATTGGGCATCAGCTTCCTGTCGGAGATCAACCTCGTCATCGCCCTGACCATCTACGCCGTGGCGATCATGACCCGGTTCGTGGCCGACGCCCTGGCCTCCGTCGAGCCGCACGTGCGCCAGGCGGCAGACGCCGTGGGCTACGGTGCGTGGCGTCGTTTCTGGCAGGTCGACCTGCCGTTGGCCGGTCCCGTCGTGCTGGCGGGGCTGCGGGTCACGGCGGTCTCGACCATCTCGCTGTGCACGGTGGGCATCCTCATCGGCATCGACAACCTCGGCTACCTGTTCACCAACGGCTACCAGCGCCAGATCGTCGCCGAGATCCTCGCCGGCGTGGTGGCCGTCGTCGTGATCGCGCTGGTGATCGACCGGTTGCTGGTGGTGCTGGGGCGGGCCCTGATGCCGTGGGCCGGGAAGGGGGCGTGAMTWVVDNLDLIGRLTVEHLRQSALPILLGLLLSIPLGWLAFRFRLTRGLMLTVVGLLYTIPSLALFALLPPLLGISFLSEINLVIALTIYAVAIMTRFVADALASVEPHVRQAADAVGYGAWRRFWQVDLPLAGPVVLAGLRVTAVSTISLCTVGILIGIDNLGYLFTNGYQRQIVAEILAGVVAVVVIALVIDRLLVVLGRALMPWAGKGAPGPT0013581_123DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013581-opuCB|yvbD-NANANA
AK018_06118822opuBA_2COG1125Choline transport ATP-binding protein OpuBAATGATCGAGTTCCGGTCGGTCACCAAGACCTACCCCGACGGCACGGACGCCGTGGCGGACTTCTCGCTGGTCGTCCCGGCACACACCACCACCGTGCTCGTCGGGTCGTCCGGCAGCGGCAAGACCACCCTGCTGCGCATGATCAACCGGATGGTGGAGCCGACGTCCGGCAGCATCGAGATCGACGGCGAACCCATCGCGCAGCGCGACCCGGTCCGGCTGCGGCGCAGCATCGGGTACGTGCTGCAGAACGGCGGCCTGCTCCCCCACCACCGCGTGATCGACAACGTCGCCACCGTGCTGCGACTGGAGGGCATGCCGAAGCAGGAGGCCCGCGAGAAGGCGGCGGAGGTGCTCGACGTCGTCGGGCTCGACCGGTCGCTGGCGCAGCGGTACCCGAGCCAGCTGTCCGGCGGGCAGCAGCAGCGCGTCGGCGTCGCCCGGGCGCTGGCCGCCGACCCGAACATCCTGCTGATGGACGAGCCGTTCGGCGCCGTCGACCCGATCGTGCGGGCCGAGCTGCAGGCCGAGACGCTGCGCCTGCAGCAGGAGCTGCACAAGACCGTCGTGTTCGTCACCCACGACATCGACGAGGCGTTCCTGCTCGGCGACCAGGTCGTGATCCTGTCGACCGGCGCCCAGGTCGCTCAGGTCGGCTCGCCGAGCGAGATCATCGAGAACCCCGCCGACGACTTCGTGGCCTCGTTCATCGGCACCGAGCGCGGGGCCCGTGCCCTGCGGACCAAGCACACCGACCACGGCACCGTGCTCGTGGACGGCGCCGGCCGCACCCAGGGGCGTCTCGTCGAGAGCAGCTCATGAMIEFRSVTKTYPDGTDAVADFSLVVPAHTTTVLVGSSGSGKTTLLRMINRMVEPTSGSIEIDGEPIAQRDPVRLRRSIGYVLQNGGLLPHHRVIDNVATVLRLEGMPKQEAREKAAEVLDVVGLDRSLAQRYPSQLSGGQQQRVGVARALAADPNILLMDEPFGAVDPIVRAELQAETLRLQQELHKTVVFVTHDIDEAFLLGDQVVILSTGAQVAQVGSPSEIIENPADDFVASFIGTERGARALRTKHTDHGTVLVDGAGRTQGRLVESSSPGPT0013585_2624DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013585-opuA|osmV|yehX-K05847NANA
AK018_06119477hypothetical proteinATGTCCGAGCAGCCGTTCGCCGACCCGACGGTCGAGACCCGGCCGGAGCTGCATCTGGCGGTCGTGCGCGAGCAGGTCGCCCTGCCCGACATCCCGGCACTGTTCGACCGCGCGTTCCCCCTGATCTTCGCCGCGCTCGGCCGGGCCGGCCTCGAACCCGTCGCCCCACCGCTGGGCGTCAGCCACGGCATCCCCGCCGACACGCTCGACCTGTCCGTCGCGGTCCCGGTCGCCGCACCGTTCGCCGACGACGGCGAGGTCACCGGCGAGACGCTGCCCGGCGGGCGGGCGGCCACCGTGCTGGTGCGCGGCTCCTACGACCAGCTGGCCGCCGCCTACGAGCACGTCTTCGGCTGGGTCGCGACGCAGGGCCTGGTGCCGACCGGGGTCGCCTGGGAGCAGTACCTGACCGAGCCGGCACCGGGCGGCGACGTCGCACGCACCGAGACGCTCGTCGGGGTACAGCTCCTGGACTGAMSEQPFADPTVETRPELHLAVVREQVALPDIPALFDRAFPLIFAALGRAGLEPVAPPLGVSHGIPADTLDLSVAVPVAAPFADDGEVTGETLPGGRAATVLVRGSYDQLAAAYEHVFGWVATQGLVPTGVAWEQYLTEPAPGGDVARTETLVGVQLLDNANANANANA
AK018_06121639orn_2COG1949OligoribonucleaseGTGAGCCCGAGCAACCCGAACGACCGCATCGTGTGGATCGACTGCGAGATGACCGGCCTCGACACGAAGGCCGACGCCCTCGTCGAGGTGGCCGCCGTGGTCACCGACTCCGAGCTGAACGTGCTCGGCGACGGCGTCGACGTCGTCGTGCGCCCGCCCGCCGAGGCCCTCGAGCAGATGGGCGACTTCGTGCGCGACATGCACACCACGTCCGGGCTGCTCGAGGAGCTCGACGGCGGCACCACGTTGGCGGACGCCGAGGCCCAGGTGCTCGCCTACGTGCGCGAGCACGTGCCCGAGGTCCGCAAGGCACCGCTGGCCGGCAACTCCGTGGGCACGGACAAGATGTTCCTCGACCGCGACATGCCCGAGCTCATGGGGCACCTCCACTACCGGATCGTGGACGTGTCCTCGATCAAGGAGCTGGCGCGCCGCTGGTACCCGCGTGTCTACTTCGCCTCCCCGCCCAAGGACGGCGGCCACCGCGCCCTGGCAGACATCCTCGAGTCCATCGACGAGCTGCGGTACTACCGCGAGGCGCTGTTCGTGCCCCAGCCCGGACCCGACACCAGGACCGCCCGCGCCGTCTCGGCCCGGATCAAGGAGACGTCCGTCACCCGGGACGCGACGGTGTCCTGAMSPSNPNDRIVWIDCEMTGLDTKADALVEVAAVVTDSELNVLGDGVDVVVRPPAEALEQMGDFVRDMHTTSGLLEELDGGTTLADAEAQVLAYVREHVPEVRKAPLAGNSVGTDKMFLDRDMPELMGHLHYRIVDVSSIKELARRWYPRVYFASPPKDGGHRALADILESIDELRYYREALFVPQPGPDTRTARAVSARIKETSVTRDATVSPGPT0017710_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835NANA
AK018_06122198hypothetical proteinATGCACCCCCTCGAGGCGCACGCCGTCGCGCGTGCCGTCCATCAAGAACGCCTGGCGGACGCCGAGTCCGCCCGCCGGGCACGTCGCCAGCGCGAGTCCGCGGCGGCCGTACCGTCCGTGAGCCGGTCCCGCCGGCGGGTCCGTCGCACCCTGCGCCGGATGTTCGCCGACGGTCCGCTCGTCGGGCGACCGGCATGAMHPLEAHAVARAVHQERLADAESARRARRQRESAAAVPSVSRSRRRVRRTLRRMFADGPLVGRPANANANANANA
AK018_06124321hypothetical proteinATGGCCAGCTCCGAGCTCAAGCTGCAGGTCGACCTGCCCACGGAGCACGAGACGGGGGTGCCGGCGGACTTCGCCTCGGTCTGGCACACCTCCACGTCGTTCGTGCTCGACTTCGTGGCGGCCAAGTCGCCGGCCAAGCCCGCCGTCGACCAGGCGACCGGCGCCCAGACCGGGGGGCGGGTCATGCCGGCCCGGGTGGTCTCCCGGGTGCGGATCCCCCCGCAGCAGGTGTTCGAGCTCGCCCGCGCCCTGACCCAGCAGCTGGACGCCTGGGAGCGCGAGACCGGCCACAAGGCCGACGGGTCGGGGCCGAAGGACTGAMASSELKLQVDLPTEHETGVPADFASVWHTSTSFVLDFVAAKSPAKPAVDQATGAQTGGRVMPARVVSRVRIPPQQVFELARALTQQLDAWERETGHKADGSGPKDNANANANANA
AK018_061251653hypothetical proteinGTGACTTCTCCCACGCGCGCCAACCGCTTCCTGAGCGGGCGGCCGGACGCCGAGGCGGCCGAGGAGCTCGGCCTGACCGTGCACGACGTCGCCCGGGACCTGCGCCGGGACGTCGCCGCGGTCGAGCTGCCGCTGCCCGTCGACGGCGCCGAGGAGGCCCGCGGGTCGCGCGACCGGCTCGTCGCCCAGCTCGACGAGCACCTGCTGCCGCGGCTCGCCGAGCTCAGCTCGCCCGCCGTCGTCGTCGTCGCCGGGTCCACCGGGGCCGGGAAGTCCACCCTGTACAACTCGCTGCTCGGCGAGGAGGTCTCCCTGGCCGGGGTGCTGCGCCCCACGACCCGGGAGCCCGTGCTCGCCTTCAACCCCGCGGACGCCGACGTCATCGCCGACGGACCCGCGACCGAGCTCTCCCGCGTCATCCACCATCCCGGCGTGCCGCGCGGCACGGCGCTCCTCGACGCCCCGGACCTCGACTCGTTCGTCCAGGAGAACCGCACCACCGCCCAGCAGCTCCTCGAGGGCGCCGACCTGTGGCTTTTCGTCACCACCGCGTCGCGGTACGGCGACGCGCTGCCCTGGCAGGCGCTGGCCCGCGCCACCGAGCGGGGGGCGTCGGTGGCGATGGTGCTCAACCGGGTCCCGCAGGAGGACCTGGCCACCATCCGCGGCGACCTCATGGCCCGCCTGCGCGCCCACGGCATGACCGACACGCCCCTGTTCGTGGTGCCCGACGTCGGCCCGCACGAGGGCCTGCTCGCCGAGAAGGTGGTCCAGCCGGTCAAGCGGTGGCTGCACCTGCTGGCCGGGCCGGAACGCTCGCGCGCCGTCGTCGTGCGGACCCTCAAGGGTTCCCTCGGCGCGCTGCCCGGCTGGGTCACCTCCCTGGCCGACGCCGTCGAGAACCAGGCCGCCGCGGCCACCACGCTGCGCCGCGCCGTCGAGGCCGAGGTCCCGGCGGCGCGGCAGCTCGCCCGTGAGGCCGTCGCCGCGGGCGTCGTGGCCGGGGCGTCCGTCGACGCCCGCTGGCGCGAGTTGTCCGGCACCGCCGGCATCGACCGCGTCAAGGTCAAGGACGGCCGGGCCCGCAGCACCCGGCGGTCCGGGCGGGCCCGCTCCCGGGCGCTCGAGAGCCTGCGCGACGACGTCGACGGCGCCGCCGTGCGCACCCTCACCGCCGCCGGCGCCCGGGTGGCCGACCGGCTGCAGGCCGTGCTCGCCGGCCCGGCCGCACCGCCGGGCGGCGCCCACGTCGCGCCCGACCCGGACGAGCGGGTCGCCGCCCGGGAGGCGGCCGTGCCCGGGACGGTGGCCGAGTGGGCCGAGACGGCCGACCGTCGCGTCGCCGAGTTGCTCGCCGGCGGCGACGACCGGAAGACGGCGGCAGGCAAGGCGTTCGGCGACCGCGGCGTCGCCACGCTCCTCCTCGCCGGCGCGGCCGGCAGCGGCGACGCGAACCGGCTGCTCGACCGTGTGCTCGGCGCGAGCGCCGCCGAAGAGGTCGACGCACTGCGCACCGACCTCGCCGACCGGGCCGCCGCCGTCGTCGACGCCGAGGTCGACGCGGTCCTCGCCCGGCTGGACTCACCCGACCTGGCGGACGACGCGGCCACCGCCCTGCGCCTGCGTCTCGCCGAGCTCAGGAGGCTCACGTGAMTSPTRANRFLSGRPDAEAAEELGLTVHDVARDLRRDVAAVELPLPVDGAEEARGSRDRLVAQLDEHLLPRLAELSSPAVVVVAGSTGAGKSTLYNSLLGEEVSLAGVLRPTTREPVLAFNPADADVIADGPATELSRVIHHPGVPRGTALLDAPDLDSFVQENRTTAQQLLEGADLWLFVTTASRYGDALPWQALARATERGASVAMVLNRVPQEDLATIRGDLMARLRAHGMTDTPLFVVPDVGPHEGLLAEKVVQPVKRWLHLLAGPERSRAVVVRTLKGSLGALPGWVTSLADAVENQAAAATTLRRAVEAEVPAARQLAREAVAAGVVAGASVDARWRELSGTAGIDRVKVKDGRARSTRRSGRARSRALESLRDDVDGAAVRTLTAAGARVADRLQAVLAGPAAPPGGAHVAPDPDERVAAREAAVPGTVAEWAETADRRVAELLAGGDDRKTAAGKAFGDRGVATLLLAGAAGSGDANRLLDRVLGASAAEEVDALRTDLADRAAAVVDAEVDAVLARLDSPDLADDAATALRLRLAELRRLTNANANANANA
AK018_061261584hypothetical proteinGTGACCACCTCGCACGACGCGACCGTCCGGTCCCGCACCGACGACCTCGCCGAGGCGCTGAGCCTCGCCGGCACCCGCCTCGACGGCGCCACCGCGCAGCGGGTCGGCACCGCCGTCGAGGGCGTCCGGCAGCGCATCGCGCTGGGCGTGGACCACACCGTCGTGGCGCTCGCGGGCGGCACGGGGTCCGGCAAGTCCAGCCTGTTCAACAAGATCTCCCGTCTCACTTTCGCGGACGTGGGCGTCAAGCGTCCGACGACGGCCCGCGTCACGGCGTGCTCGTGGTCCGACGTCGCGGACCCGCTGCTGGACTGGATCGGCGTCGACCGCGAGCGCCGGATCGCCCACAGCGAGGACCTGGAGGGCGACGGCGCGGGGGCGCTGCAGGGACTGGTGCTCCTGGACCTGCCGGACCACGACTCGGTGGAGCCGGCGCACCGTGAGGTCGTGGACCGGGTGCTGCCGCTGGTGGACCTGCTGGTGTGGGTCGTGGACCCGCAGAAGTACGCCGACGACGCGCTGCACTCGGGCTACCTGCGCGAGCAGGTGGGATCGGAGTCGTCGATGGTGGTGCTGCTCAACCAGGTCGACGCGGTGCCGGACTCGCAGCGGGACAACCTCGTCGAGGACCTGGGCCGACTGCTGGCCGACGACGGCCTGACGGGCGTGCACGTGCAGCCGGTCTCGGCGCGGACGGGCGAGGGCGTCGCGGCGGTGCGCGAGATCCTCGAGGAGGCCTGCGGTCGCCGGTCGGTGGCGGCGGGGCGCGCGGCCGCCGAGTTGGACTCGGCGGCGCGGGCCCTGCTGGCGCAGACGCCGGGTGACGTGCCGTGGCAGATGGACGCGGCGGTGGACCGCGAGCTGGAGCCGATGGTGCAGGCCACCGGCCTGGACGCGGTGGCCAGCCAGGTGGGTGCGGCGGTGCGCAACGGTTACGGCATGCCGGAGGTGCCGGCCCCGGACCGGGACGCGATCGCGTTGTCGCGGGCGCGCTGGCTCACGCGGGCGGGTGCGGTGCTGCGTCCGGGCTGGCAGCGGTCGTTGGCGGAGTCGGCGGCCGGGGCGGACCAGCTGCGGGCGGCGGTGACGGCGGGGTTGCGGGACCTGGACCTGGACGTGCGGGGGCCGCGGTCCTCGCGGGCGTTGTGGCGCGCGGCGTGGGGGTGCCTGGGTCTGGGCGTGGTCCTGGTCGTCCTGGGGGTGCTGGCGCTGACGGGTGTGCTGCCGGTCGCGGCGCCGTGGGACGTGACGCTGGCGGCGGGCGGCGGCGTGCTGCTGGTGGCCGCCGCGGTGCTCGCGGTCGTGCGGTCCGTGGCGCGGCGGCGCCAGGCGGCGAGGCGGCGGGCGGAGGTGGCCTCGCAGGGGCGTGCCGCGGTGCGGGGGGTGCTCGTCGAGCTGCTGGGCGAGCCGACCGGAAAGGTGCTGGGGGAGCACCGGCGGGTGCGCGAGCTGGCGACGGGGGCGCGGGACCTGCCGTCGTCGGCACCGCTGACCGGGGCCGTCCGGCTACCCACCGACGGCGATCTGGCGACGGCGTCCACAGGCTCGGCGGGCGGGGCGGACAGGGCCACGGCCGGCGCGTGAMTTSHDATVRSRTDDLAEALSLAGTRLDGATAQRVGTAVEGVRQRIALGVDHTVVALAGGTGSGKSSLFNKISRLTFADVGVKRPTTARVTACSWSDVADPLLDWIGVDRERRIAHSEDLEGDGAGALQGLVLLDLPDHDSVEPAHREVVDRVLPLVDLLVWVVDPQKYADDALHSGYLREQVGSESSMVVLLNQVDAVPDSQRDNLVEDLGRLLADDGLTGVHVQPVSARTGEGVAAVREILEEACGRRSVAAGRAAAELDSAARALLAQTPGDVPWQMDAAVDRELEPMVQATGLDAVASQVGAAVRNGYGMPEVPAPDRDAIALSRARWLTRAGAVLRPGWQRSLAESAAGADQLRAAVTAGLRDLDLDVRGPRSSRALWRAAWGCLGLGVVLVVLGVLALTGVLPVAAPWDVTLAAGGGVLLVAAAVLAVVRSVARRRQAARRRAEVASQGRAAVRGVLVELLGEPTGKVLGEHRRVRELATGARDLPSSAPLTGAVRLPTDGDLATASTGSAGGADRATAGANANANANANA
AK018_06127582ssb_4COG0629Single-stranded DNA-binding proteinATGAGCCAGGCCACCGTGACCGTGACGGGATACGTGGGGACCACGCCGCCGCTGCACCTGTCGGCGAACCAGGTGCCGTGGACCAGCTTCCGGGTGGCGAGCACGCGGCGGGTGCGGGACGGCGTCACCGGCGAGTGGCAGGACGGGCGCACCACTTGGTTCACCGTCAAGGCGTTCGGGCGGGCGGCCCGCACCGTGACGGCGTCGCTGGTGCAGGGCCAGCCGGTGGTGGTCACCGGGCGGCTGTCGAGCGAGGAGTGGGTCGACAAGGAGGGCAGGGAGCGGTACGCGCTGATCGTCGAGGCGGACGCCGTCGGCCCGGACGCGACCCGCGGCCTGACGAGCTACACGAAGGTGGTGCTCGACGAGCTGCCCGGGCAGCCCGGCCCGGGTGGCGGCCAGGGGCAGCGTCCGGACCCGTGGCAGACGGGTCTGGCCCCGCAGTCGTCCGGCGCGGCGGGCGAGGTGCCCCCGGGCGCGGTGCCCTCGGCGTCGGACGACGGCTCGGCGGACGAGGACGACGTCGAGGAGTCCCTGACGGGCGCGGCGCGGCCGGCGGACGTCGAGCCCGTCGGCGCCTGAMSQATVTVTGYVGTTPPLHLSANQVPWTSFRVASTRRVRDGVTGEWQDGRTTWFTVKAFGRAARTVTASLVQGQPVVVTGRLSSEEWVDKEGRERYALIVEADAVGPDATRGLTSYTKVVLDELPGQPGPGGGQGQRPDPWQTGLAPQSSGAAGEVPPGAVPSASDDGSADEDDVEESLTGAARPADVEPVGANANANANANA
AK018_061281683ettA_4COG0488Energy-dependent translational throttle protein EttAGTGGCTGAGTTCATCTACTCCATGTACAAGGCGCGCAAGGCGCACGGCGACAAGGTCATCCTCGACGACGTGTCGCTGAACTTCCTTCCCGGCGCGAAGATCGGCGTCGTCGGTCCGAACGGGGCCGGCAAGTCGACGATCCTGAAGATCATGGCCGGTCTGGACGAGCCGTCCAACGGCGAGGCCCGCCTGTCGCCGGGCTACACGGTCGGCATCCTGCAGCAGGAGCCGCCGCTGAACGACGAGAAGACGGTCCTCGGCAACGTCGAGGAGGCGGTCGGCCCGATCAAGGCGAAGGTCGACCGGTTCAACGAGATCTCGGCGCTGATGGCCGAGCCCGACGCCGACTTCGACGCGCTGATGGCCGAGATGGGCGAGCTCCAGGAAGCCATCGACGCTGCTGACGCCTGGGACCTCGACAACCAGCTCGAGCAGGCAATGGACGCCCTGCGGTGCCCGCCGCCGGACGCCGACGTCAACGTGCTCTCCGGTGGTGAGCGCCGTCGCGTCGCGCTGTGCAAACTGCTGCTGGAGAAGCCGGACCTGCTGCTCCTCGACGAGCCCACCAACCACCTGGACGCCGAGTCGGTGCTGTGGCTCGAGCAGCACCTGGCGACCTACCCGGGCGCCGTCCTGGCCGTCACCCACGACCGGTACTTCCTCGACCACGTCGCCGAGTGGATCTGCGAGGTCGACCGCGGCCGCCTCTACCCCTACGAGGGCAACTACTCCACCTACCTGGAGAAGAAGCAGGCCCGCCTCGAGGTGCAGGGCAAGAAGGACGCCAAGCTGTCCAAACGCCTCAAGGACGAGCTGGAGTGGGTGCGCCAGAACGCCAAGGGTCGCCAGACCAAGTCCAAGGCACGTCTGGCGCGCTACGAGGAGATGGCGGCCGAGGCCGAGCGCACCAAGAAGCTCGACTTCGAGGAGATCCAGATCCCGGCCGGTCCTCGCCTGGGCAGCCTGGTCCTGGAGGCCGACAAGCTGCAGAAGGGCTTCGGCGACCGCCAGCTGATCGACGGGCTCAGCTTCACGCTGCCGCGCAACGGCATCGTGGGCGTCATCGGCCCGAACGGTGTCGGCAAGACGACGCTGTTCAAGACCATCGTGGGCATGGAGCCGCTCGACGGCGGCGACCTGAAGGTCGGCGAGTCGGTGAAGATCTCCTACGTGGACCAGTCCCGCGGCGGGATCGACCCGGACAAGTCGCTGTGGGAGGTCGTCTCCGACGGGCTGGACTTCATCCAGGTCGGCAACGTCGAGATCCCCTCGCGCGCGTACGTCGCGTCCTTCGGGTTCAAGGGCGCCGACCAGCAGAAGAAGGCCGGCGTGCTCTCCGGCGGTGAGCGCAACCGGCTGAACCTGGCGCTGACCCTGAAGCAGGGCGGCAACCTGCTGCTGCTCGACGAGCCCACCAACGACCTCGACGTCGAGACCCTCGGCTCGCTGGAGAACGCGCTGCTCGAGTTCCCGGGCTGCGCCGTCGTGGTCTCCCACGACCGCTGGTTCCTCGACCGCGTGGCCACGCACATCCTGGCCTACGAGGGCACCGACGAGGACCCGGCGAACTGGTACTGGTTCGAGGGCAACTTCGCCTCGTACGAGGAGAACAAGGTGGAGCGTCTGGGCGCGGAGGCCGCGCGCCCGCACCGCGTGACCTACCGCCGCCTCACCCGCGGCTGAMAEFIYSMYKARKAHGDKVILDDVSLNFLPGAKIGVVGPNGAGKSTILKIMAGLDEPSNGEARLSPGYTVGILQQEPPLNDEKTVLGNVEEAVGPIKAKVDRFNEISALMAEPDADFDALMAEMGELQEAIDAADAWDLDNQLEQAMDALRCPPPDADVNVLSGGERRRVALCKLLLEKPDLLLLDEPTNHLDAESVLWLEQHLATYPGAVLAVTHDRYFLDHVAEWICEVDRGRLYPYEGNYSTYLEKKQARLEVQGKKDAKLSKRLKDELEWVRQNAKGRQTKSKARLARYEEMAAEAERTKKLDFEEIQIPAGPRLGSLVLEADKLQKGFGDRQLIDGLSFTLPRNGIVGVIGPNGVGKTTLFKTIVGMEPLDGGDLKVGESVKISYVDQSRGGIDPDKSLWEVVSDGLDFIQVGNVEIPSRAYVASFGFKGADQQKKAGVLSGGERNRLNLALTLKQGGNLLLLDEPTNDLDVETLGSLENALLEFPGCAVVVSHDRWFLDRVATHILAYEGTDEDPANWYWFEGNFASYEENKVERLGAEAARPHRVTYRRLTRGNANANANANA
AK018_06129816hypothetical proteinATGGCATCGGTGACCACGCGACGTCGTCCCACCTGGGACGAGATCCCCCCGGAGGTGCGCGCCGCCGTCGAGCAGCGACTCGGTGCGCGCGTGACCGGATGGACCAGCCACGACGGCGGACACTCGCCCGGCCTGGCGTCCACGCTGCGCACGGACGACGGCGCGGTGTTCGTCAAGGCCGTGCCGGTGTCCCACGGGTACTCGGCGCGAGCGAACCGGCAGGAGGCGGCGCGGATGCGCGCGCTGCCGGAGGGCGTGCCCGCGCCGCGTGCTCACTGGCTCGAGGAGTTCGACGCCCACGGCGGTTGGGTCGCGGTCGCCTTCGAAGCGGTCGACGGTCGTGCGCCGACGACACCCCTCTCCGGGGGCGACCTCGACGCGCTGGCCTGGCTCGCCCTCGAGATCGGCTCGCACCAGATCGCGCCCGGGCTCCTGCCCGAGCTCGCCGACGAGCTGCCCTTCGACTGCAACACAGGCCTCGCCGGTGACCTCCCTGACGGCCTTGCCACCTACGACCCGTGGTTCACCGCGAACCTCGCACGACTGGCCGTTCTCGAGTCGTACGGCCCCGAAGTAGTCGCGGGGACCGCCGTCGTGCACGGCGACCTGCGCGGCGACAACGCCGTCCTGGTCGGTCGGGGAGCGGGCCTACGGGCGGTGGCCGTCGACTGGGCCCAGGTAAACCGAGGCTGCGCGTTCCACGACCTGTGCGGGATGCTCCCCTCCGTCCACGCCGGGGGAGGCCCGCCGCCCGAGGACGTCCTGGCCCGCCACCCGCTGCCGCCCGGCACCGACGACGACGCCGTCGACGCGTAGMASVTTRRRPTWDEIPPEVRAAVEQRLGARVTGWTSHDGGHSPGLASTLRTDDGAVFVKAVPVSHGYSARANRQEAARMRALPEGVPAPRAHWLEEFDAHGGWVAVAFEAVDGRAPTTPLSGGDLDALAWLALEIGSHQIAPGLLPELADELPFDCNTGLAGDLPDGLATYDPWFTANLARLAVLESYGPEVVAGTAVVHGDLRGDNAVLVGRGAGLRAVAVDWAQVNRGCAFHDLCGMLPSVHAGGGPPPEDVLARHPLPPGTDDDAVDANANANANANA
AK018_061302085hypothetical proteinATGACCGAGACCGGCGCTCCCGAGGACCCGCCCGCGTCGTCGAGCGACCACGCGGGCGGCCCTGCCGACGACCGCGACGGCGCCGCCCACGCCGAGGCGGTCACGGCCAGCTCCGCCCTGACCCCGGACTCCGGCACGGCGGCGCTGCTCGACGCCCTCGACACGCTGCGCGCCCGGCTGGGCGCCCTGCGGCTCCCGCTCGAGGCGCCCGGGGTCCACCACGCCCGCACCGACCTGGCGCGCGCGACCGACCAGCTCGACGACTACCTGCTGCCCCGGCTGCGCGCCGAGCGGGCGCCGCTGCTCGTCGTCGTCGGCGGCTCCACGGGGGCCGGCAAGTCCACGCTGGTCAACTCGCTTCTCGGCGAGCAGGCCACCACTCCCGGTGTGCTGCGGCCGACCACGCGATCGCCCGTGCTGATCCACCACCCGATGGACGGGCGCTGGTTCTCCTCCGACCGTGTGCTGCCCGGGCTCGCGCGCACCACCGAGCACGGGTCGGCGGGCACACCGGCGTCCGAGGAGTCGGGTGCCGCCGGAGGGGCCCGTGCCCTGCGGCTGGTGGCCTCCGGCAGCCTGCCCCAGGGGCTCGCGCTGCTGGACGCACCGGACGTCGACTCCGTGGAGGAGGCGAACCGCAAGCTCGCCACCCAGCTCCTGGGTGCCGCCGACCTGTGGCTGTTCGTCACGACGGCGGCCCGTTACGCGGACGCGGTGCCGTGGGAGCTGCTCGCCACGGCGGCCGGCCGGCGGGCGCAGGTGGCGCTGGTGCTGGACCGTGTCGACCCGGGGACCGAGGAGGTCGCGACCGACCTGCGCAGGCTCATGCGCGAGCACGGCCTGGCGGACGCGGCGCTGTTCGTCGTGCCCGAGGCCACGGGGGCGGACACGATGGTCGACGGGCTGCTGCCGGAGTCGGCCATCGGCGAGCTGGCCACGTGGCTGTCCGGGCTCGGCGGCGACCCGGACTCGCGGGCCCGCGTCATCGCGGCCACCCGCGACGGAGTCGTCGAGGACCTGGTGCGGCGCAGCAACGACCTCGCTGCGGCCGCTGACGACCAGCACGCCGCCGACGCCCGTCTGCGGGATGCCGTCGAGCGTCATCACGCCGAGGCGCTGCGCCAGGTGGAGGTGGCCACGTCCGACGGCGCGCTGCTGCGCGGCGAGGTGCTGGCCCGCTGGCAGGACTTCGTCGGCACGGGGGAGTTCTTCCGGGCGGTCGAGGCCGGTGTCGGCAAGGTCCGGGACGCCGTCGGCCGGTTCTTCCGCGGGCGTCCCAAGGAGGCGCCGCAGGTGGAGCAGGCGATCGCGCACGGCCTGGAGTCGGTGGTGCTCGACGCCGCCGAGCAGGCGGCCGAGCGGACCTACGCGGACTGGCGGGGCGACGCCGCCGGTGCGGGGCTGCTCGACGGGCTGGAGCTGTCCCGCACGGCCTCTGGCCTGCGCCCGGAGGTCGCCGAGTCCATCCGCGCGTGGCAGGGCGACGTGCTCGCCCTCGTGCGCGAGCAGGGCGAGTCGCGTCGCGGGACCGCCCGCGCCCTGTCCTTCGGTGTCAACGCGCTCGGCGTCAGCCTGATGGTCGTCGTGTTCGCCTCGACGGCGGGTCTGTCGGGCCTCGAGGTCGGGATCGCGGGCGGCACCGCGGTCGCCGCGCAGAAGCTCCTGGAGGCCGTGTTCGGGGACGACGCCGTGCGCCGGCTGGCCGCGCAGGCCAAGGACCGGCTGAGCGCCCGCGTCGACGCGGTGCTGCGCGGCCAGGCCGCCCGGTACACCTCCCAGCTCGACGCGCTCGGCACCGACGACGTGCGTGGCGACCGGCTGCGCGAGGCGGCCCGCGCCGTCTCGGACGCGGCGCGCGCCGAGCACGCCGCTCGTCCGCAGCCCGCGGACGGGCTCACGCGGCCGTGGAGCGGCGGGCTGCTGCGTGGCGCCGGCACGTTCCGCCCTCCGACGAGCCCCGACGGCGTACCCGTCGCACCCGGCACGACGGCGGGCACCGGCTCCGGGTCGCCGGGGGACGACGACGGGACCGCACCGGTGCACCGGCCGTTCTGGCGCCGGTGGCGACGCAAGGAGCAGGGATGAMTETGAPEDPPASSSDHAGGPADDRDGAAHAEAVTASSALTPDSGTAALLDALDTLRARLGALRLPLEAPGVHHARTDLARATDQLDDYLLPRLRAERAPLLVVVGGSTGAGKSTLVNSLLGEQATTPGVLRPTTRSPVLIHHPMDGRWFSSDRVLPGLARTTEHGSAGTPASEESGAAGGARALRLVASGSLPQGLALLDAPDVDSVEEANRKLATQLLGAADLWLFVTTAARYADAVPWELLATAAGRRAQVALVLDRVDPGTEEVATDLRRLMREHGLADAALFVVPEATGADTMVDGLLPESAIGELATWLSGLGGDPDSRARVIAATRDGVVEDLVRRSNDLAAAADDQHAADARLRDAVERHHAEALRQVEVATSDGALLRGEVLARWQDFVGTGEFFRAVEAGVGKVRDAVGRFFRGRPKEAPQVEQAIAHGLESVVLDAAEQAAERTYADWRGDAAGAGLLDGLELSRTASGLRPEVAESIRAWQGDVLALVREQGESRRGTARALSFGVNALGVSLMVVVFASTAGLSGLEVGIAGGTAVAAQKLLEAVFGDDAVRRLAAQAKDRLSARVDAVLRGQAARYTSQLDALGTDDVRGDRLREAARAVSDAARAEHAARPQPADGLTRPWSGGLLRGAGTFRPPTSPDGVPVAPGTTAGTGSGSPGDDDGTAPVHRPFWRRWRRKEQGNANANANANA
AK018_061311683hypothetical proteinATGAAGCCGGATCTGGCCACGCGGACCGATGCGCTCGAGCGCGCCGCGGCGGCGGGGCGGGGTCGGCTCGACCGCGAGCTCGTGGACGCTGCGCGTGCCGTCGTCGACCGTGCCCGCGAGCGCGGGGGCCTTGGCCCGGAGCACACCGTGGCCGCGCTGGCCGGGGCGACCGGGTCGGGCAAGTCGAGCGTGCTCAACGCCGTCGCGGACGCCGAGCTGGCGGCACCCGGCATCCACCGGCCGACGACGTCGCACGCCCTGGCCGCCGTGTGGGGCGAGGGTGCGGACGACCTGCTCGACTGGCTGGACGTGCCCCGGCGGCACGCGATGGATCCGGCCCCGGAACCCGCCGCCGGGGCAGGTGGCGGGCTGCTGCGGCGTGTGCGCCCGCCGGCGGGGATCAGCTCCGGCCTGGTGCTGCTCGACCTGCCGGACCACGACTCGGTCGTCGTGGAGCACCGGGTGCGCGCCGAGCGACTGGTCGAGCGCGCCGACCTGCTGGTGTGGGTCGTGGACCCGCAGAAGTATGCGGATGCGGCGCTGCACGAGCGCTACCTGCGGCCGCTGGCCGGCCGTTCCGACGTGGTCGTGGTGGCGCTGAACCAGGTGGACCGGCTCGGCAGGGACGAGCGTGACGCCGTCCTGGCGGACCTGCGGCGCCTGGTCGCCGCCGACGGGCTGTCCGGCGCCCGCGTGCTCCCCGTCTCGGCGCGGACCGGGGAGGGTGTCGACGCGCTGCGGAGCCTGCTGGCCGAGGCGGCCCGCCGTCGTGAGGCGGCGACCGCGCGCCTGACCGCCGACACCCGGGCGGTGGCCGCCCGTGTCGTGGACGCCTGCGGGCAGGCGCCCCCGGCGAAGGCGGCCGACCGTGCGGAGGGCCCGCTGGTCGACGCGCTCGAGGAGGCCGCGGGGGTCACCACCGTGGTGGAGGCGGTCCGCACCTCGGTGCGCCGCGACGCCCGGCTGGCCACCGGCTGGCCGGTGACGCGCTGGCTGTCGCGCCTGCGCAAGGATCCGCTGCAGCGCCTGGGACTGCGCAGCGACCAGCTGCGCGTGCCCGCCGACCGTCCGGACCTGGCGCGCACCTCCCTGCCGCAGACGCGTCCGAGCGTGCAGGCGGCGACGGGCACGGCCGTGCGCTCGTACGTGGACCGGGTGACCGCCGGGGCACCGGACGCCTGGGTCCTGGCCGCGCGGGAGCGGGCGAGCGGCGCCGTCGACCGGCTCCCCGACGCCCTCGACCAGGCGGTGGTGTCGACCGGACTGGAGGCCGAGCGTCGCCCGCGGTGGTGGCGCCTGGTCGGCGTGCTCCAGTGGCTGCTGCTGGCCGCGGCCGTGGTGGGGCTCGCCTGGCTGGGCGCCTCGGCCCTGCTGTCGTACTTCCAGCTGCCGCCGCTGCTGATGCCGGTGCTCACGCTGGACCTCACCGGCTGGGGCGGTGGGACGTTCGACGTGCCCTGGCCGACGCTCCTGGCGCTCGGCGGGGTCGCGGCCGGGCTGCTGCTGGCGCTGCTCGCCCGGTGGTGGGGTGCCTGGGGCGCCCGACGGCGGTCCCGGCGGGTGCGCCGACGGTTGCGCGAGTCGGTGCTCGCCGTGGCCCGCACGGAGCTGTGCGAACCGGTCGCCGAGGAGCTCGCCGCCCTGGAGACGTGCCGGCAGGCGGCCCGCACGGCCGCGGCCTGAMKPDLATRTDALERAAAAGRGRLDRELVDAARAVVDRARERGGLGPEHTVAALAGATGSGKSSVLNAVADAELAAPGIHRPTTSHALAAVWGEGADDLLDWLDVPRRHAMDPAPEPAAGAGGGLLRRVRPPAGISSGLVLLDLPDHDSVVVEHRVRAERLVERADLLVWVVDPQKYADAALHERYLRPLAGRSDVVVVALNQVDRLGRDERDAVLADLRRLVAADGLSGARVLPVSARTGEGVDALRSLLAEAARRREAATARLTADTRAVAARVVDACGQAPPAKAADRAEGPLVDALEEAAGVTTVVEAVRTSVRRDARLATGWPVTRWLSRLRKDPLQRLGLRSDQLRVPADRPDLARTSLPQTRPSVQAATGTAVRSYVDRVTAGAPDAWVLAARERASGAVDRLPDALDQAVVSTGLEAERRPRWWRLVGVLQWLLLAAAVVGLAWLGASALLSYFQLPPLLMPVLTLDLTGWGGGTFDVPWPTLLALGGVAAGLLLALLARWWGAWGARRRSRRVRRRLRESVLAVARTELCEPVAEELAALETCRQAARTAAANANANANANA
AK018_06132525hypothetical proteinGTGGCGCCGGCGTGCGACGATGCGGGCATGACTCGTCTGCACGTGCCCGTCTCGCTGCGCTGGTCGGATCTTGACGCCTACCAGCACGTCAACAACGTCGCGATGTTCCGGCTCCTGGAGGACGCCCGCATCACCGCGTTCTGGCGGCACCCCGAGGCCGAGGACCCGTGGCCGACCGCCGTCCTGGACACCGGCCCGCACGCGACGTCGCACACGTTGGTCGCGGGCCAGCAGATCGAGTACCTGCGTCCCCTGGAGTTCACGCGCGACCCCGTGCGGGTGGAGATGTGGATCGGGTCGATCGGCGGCGCCTCCCTCGAGGTCTGCTACGAGGTGCACGACGGCGGACCGGGCGGGTTCGCGCGCACGGGTCCGGCGTCCGGCACCTCCCCCTACACCCGCGCGGTGACGACGATCGTGGTGATCGACGCCGCCACCGGCAGCCCGCGGCGGATCACCCCCGACGAGCGGGCCGTGTTCGCGGAGTTCTCCGGGGAACCGATCGAGTTCCGCCGCCGTCGCTGAMAPACDDAGMTRLHVPVSLRWSDLDAYQHVNNVAMFRLLEDARITAFWRHPEAEDPWPTAVLDTGPHATSHTLVAGQQIEYLRPLEFTRDPVRVEMWIGSIGGASLEVCYEVHDGGPGGFARTGPASGTSPYTRAVTTIVVIDAATGSPRRITPDERAVFAEFSGEPIEFRRRRPGPT0001850_706DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
AK018_06133336hypothetical proteinATGACACGTTTCCTCTTCATCTACCACGCACCGATGACGCCGGAGAACGCCGCTCCCCCGACGCCCGAGCAGACCCAGGAGGTGATGGGTCGCTGGATGGCCTGGGCCGAGGGGGTCGGCGAGGCGATGGTGGACTTCGGCACGCCGCTGGCCGGCGGGATCCAGGTCACCGCCGACGGGGAGCTGCCGAGCGTGCGTGAAGTGGCCGGCTACACGCTCCTCGAGGCGGACGACATGGACGCCGCCCTGGAGCTCGCCCGCAACCACCCGCACCTGCAGATGCCCGGTGGTTGCACCATCGAAGTGCACGAGGCGCAGGCCGTCCCCGGCATGTGAMTRFLFIYHAPMTPENAAPPTPEQTQEVMGRWMAWAEGVGEAMVDFGTPLAGGIQVTADGELPSVREVAGYTLLEADDMDAALELARNHPHLQMPGGCTIEVHEAQAVPGMNANANANANA
AK018_06134795hypothetical proteinGTGAGGACGGACCGACCGGTCGGGGCGACGCCGGTGCACACCGCCGGGATCGACCTCTCGGCCGACCCGCGCAAGACCGGCGTGGCGACGCTCGCCTGGAGCGGTGAGGACGCCACCGTCGTCGAGCTGGCCGTGGGCGCGAACGACGACGACGCGCTGTGCGAGGTGGTGCGCACCGCCGCGACGACCGGGATCGACTGCCCCGTCGGCTGGCCGGACGCGTTCGTCGACTACGTCGTCGCACATCGCGCCGGCGGGCACGACTTGGTCGTCCCCGAGACCCGCAGGCCCTTGACCTACCGGGCGACCGACCTGCACGTCTGGCAGCGCACCGGAGTCCGACCGCTCGCCGTCTCGGCCGAGCGGATCGGCGCCGCCGCGATGCGGTGCGCGGCGCTCCTCGCGATGCTCACCCGGTCCGGGACCGTCGTCGACCGGGCCGGTGGTGGTCCGGTCCTCGAGGTGTACCCGGCCGCGTCGCTGAAGATCTGGCAGCTGCCGCACCGCGGGTACAAGGGCGACTCCCCGGAGAACCGCGCGACGCGCGAGGACCTCGTCGACCAGCTGGCGATCGCCTTCCCGTGGCTCGACCTCGCCGGGTTCGACCGGGCCTGCCGCGGCTCCGACGACGCCCTGGACGCGGTGCTGTGCGCGGTCGTCGCCGGCCTCGCCCACCACGGCCGCTGCGAGACGGTGCCCGAGGACCTGCGCGACACGGCGTCACGCGAGGGATGGATCGTCCTCCCGCTCGGCGCGTCCGACCCGACGCGCGACGGCACTCCCCTACCGCGGTGAMRTDRPVGATPVHTAGIDLSADPRKTGVATLAWSGEDATVVELAVGANDDDALCEVVRTAATTGIDCPVGWPDAFVDYVVAHRAGGHDLVVPETRRPLTYRATDLHVWQRTGVRPLAVSAERIGAAAMRCAALLAMLTRSGTVVDRAGGGPVLEVYPAASLKIWQLPHRGYKGDSPENRATREDLVDQLAIAFPWLDLAGFDRACRGSDDALDAVLCAVVAGLAHHGRCETVPEDLRDTASREGWIVLPLGASDPTRDGTPLPRNANANANANA
AK018_06135705gph_12Phosphoglycolate phosphataseATGGAACCGACTCCCGCCGCGCACGACGTCGTCCGCCCGCAGGTCGTCCTCCTCGACGTCAACGAGACGCTCTCGGACCTCGCGCCGATGGGTGAGGCCTTCGCCGACGTCGGTCTGGACGCCGGTGACGTCCCGGCGTGGTTCGCCGGCGTGTTGCGCGACGCCTTCGCCCTCACCGTCCTCGGGGACAACCCGTCGTTCGCGGACGTCGGTGCTGCGACGCTGCGGGTCCGGCTGGCCGCGGCGGGGGTGCCGGACCCCGCCGGCGGTGCCGAGCAGGTCATGGGCCGGTTCGCGAGCCTGGAGCCCCATCCGGACGTCGTCCCCGGCCTGCGCGGCCTGGCCGACGCCGGGTGCCGGATCGCGACGTTGAGCAACGGCTCCTCCGCCGTGGCGCGCGCCCTGCTCGACGGCACCGGGGCCGACGAGGTCGTCGAGGCCTATCTGGACGTCGCCGACGCCGGCTCCTGGAAGCCGGACGCGCGGGCCTACCGGTCGGCGCTGGCCACGCTGTCGGTCGACGCCGGCCAGGCGATGCTCGTCGCCGTGCACCCCTGGGACATCGAGGGTGCGCGGCGCGCCGGACTGCGCACGGCCTGGATCAACCGCACCGGGGCGGACTACCCCGACCACTTGGGCCGGGCCGACGTCGAGGCGGCGTCGTTCGTCGAGCTGGCGCAGCTGCTGGTCGACTCACCGCGGTAGMEPTPAAHDVVRPQVVLLDVNETLSDLAPMGEAFADVGLDAGDVPAWFAGVLRDAFALTVLGDNPSFADVGAATLRVRLAAAGVPDPAGGAEQVMGRFASLEPHPDVVPGLRGLADAGCRIATLSNGSSAVARALLDGTGADEVVEAYLDVADAGSWKPDARAYRSALATLSVDAGQAMLVAVHPWDIEGARRAGLRTAWINRTGADYPDHLGRADVEAASFVELAQLLVDSPRPGPT0006885_2089DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
AK018_06136990yedI_2COG2354Inner membrane protein YedIATGAGCGCAGGACTGCTGGGGCTGCTCGACGACGTCGCCGCGATCGCCAAGCTCGCGGCCGCCTCCCTGGACGACGTCGGAGCGGCAGCCGGGCGCGCGACGGCCAAGGCCGCGGGCGTGGTCGTGGACGACACGGCGGTGACCCCGCAGTACGTGCACGGCGTCGTGGCCGACCGCGAGCTACCGATCGTCAAGAAGATCGCCGTCGGCTCGATCCGCAACAAGGTCCTGATCATCCTGCCGATCGCCCTCGTGCTCAGCGAGTGGCTGCCGTGGCTGCTCACTCCGATCCTCATGGTCGGCGGCACCTACCTGGCGTTCGAGGGCGCCGAGAAGATCTGGCGACGCGTGCGCGGGCACACCGACCACGAGAAGCCGGCCGCCGCCGTCGGCCCGGAGGCCGAGAAGACGCTGGTCTCCGGCGCGATCCGCACCGACCTCATCCTGTCCGCGGAGATCATGGTCATCGCCCTCGACGAGGTCGCCGACGAGGGCTTCTGGGCGCGCCTGGCAATCCTGCTCGTCGTCGCCGTGGTCATCACCGTCATCGTGTACGGCGTCGTGGCGCTGATCGTGAAGATGGACGACGTCGGTCTGGCACTGGCGGGCAGGTCGTCCGCGGCCGCGCAACGGGTCGGGCGTGCCCTGGTGTCCGGTATGCCGAAGGTGCTGGCGATCATCTCCGTCGTGGGCACCGTGGCGATGCTGTGGGTCGGCGGGCACATCCTGCTCGTCGGCGTCGACGAGCTCGGCTGGCACGGGCTCTACGACCTGGTGCACCACGGCGAGGAGGCGATCGCCGCGGCGGTGCCCGGCGTCGGCGGGTTCCTGGCCTGGTGCTTCAACACGCTCTGCTCGGCGCTGGTCGGTCTCGTGGTGGGCGCCGTCGTCGTCGCGGTCATGCACGTGCTGCCCTTCGGCCACGACGACGACCCGCGGGACGCGAAGGATGCGGGTCCGGGCGTGCCGCAGCAGACGGACCCGGCGTAGMSAGLLGLLDDVAAIAKLAAASLDDVGAAAGRATAKAAGVVVDDTAVTPQYVHGVVADRELPIVKKIAVGSIRNKVLIILPIALVLSEWLPWLLTPILMVGGTYLAFEGAEKIWRRVRGHTDHEKPAAAVGPEAEKTLVSGAIRTDLILSAEIMVIALDEVADEGFWARLAILLVVAVVITVIVYGVVALIVKMDDVGLALAGRSSAAAQRVGRALVSGMPKVLAIISVVGTVAMLWVGGHILLVGVDELGWHGLYDLVHHGEEAIAAAVPGVGGFLAWCFNTLCSALVGLVVGAVVVAVMHVLPFGHDDDPRDAKDAGPGVPQQTDPANANANANANA
AK018_061373147glnE_2COG1391Bifunctional glutamine synthetase adenylyltransferase/adenylyl-removing enzymeGTGAGCTCGACCACCTCCGGGACCGGCAGACCGCAGACCACCACCCGTCGGCTGCTTCGTGCGGGCTTCGCGGACCTGACCAGGTCCGCGGGCCTGTGGGACGACGCCGAGCTGCAGCGGAGGCTGCCCGGCGACACCGAGGCCGCCGACGTCGTCCTGCGGGCCCTCGGAGCCACCGCCGACCCGGACCACGCGCTGCTCCAGCTCGTCCGACTGGCTGCCGTCCCCGCGGCCGAGGGCGCTCTGGAGCGGCTGCTGGCCGCGTCGGACGGCACGCCCGACGCCGCCGTGCGCGACCGTCTCCTCGCCGTCCTCGGTGCGTCCTCGGCCCTCGGGGACGAGATCGTGCGCCGCCCCGAGCTGTTGGACCTCCTCGGAGAGCCCGACCGCGGCATCGGCGTCGACCCGGCCGACGTCCGCGCCGAGCTGCTGCGGTCCGTCGGCGCCGACCCCGAGGACCCGGAGCCCGTCGCCGCCGACGACCCGCCCCCCGGGCAGGACGGGGCACCCGCCTGGCCGGACACCGAGGCGCCCACGGCGACCGACGCCCTGCGCCGGGCCTACCGCGGGCGGCTGCTGCGCATCGCCGCCACCGACCTGACCACCGCCGACCCCACGACGGCCCTGCCCGAGGTGTCCGCGGCGCTCGCCGACCTGGCCGCCGCCGCCGTCGAGGCGGCGCTCGCCGTGGCCCGCTCCCAGCTCCCCGACCACGGCGCCGGTGCGCGCCTGGCCGTGATCGGGATGGGGAAGACCGGCGGCCGCGAGCTCAACTACGTCTCCGACGTTGACGTCGTGTACGTCTGCGAGCCGGCCACGGGCGAGGACGGCGAACCCCTGGTCGACGAGCCGACGGCCATGCGCACCGGCACCCAGCTCGCCACCCGCCTGCAGAAGGTGTGCGGCGGGACCTCGCTGGAACCGGCCCTGTGGGAGGTGGACGCCGCCCTGCGACCCGAGGGCAAGCAGGGGCCGCTGGTGCGCTCCCTGGCCAGCCACGTGGCGTACTACGAGCGCTGGGCCCAGACCTGGGAGTTCCAGGCGCTGCTCAAGGCGCGCCCGATCGCCGGCGACGTCGAGCTCGGTGCTGCCTACCGCGAGGCGGTCGACCCGTTCGTGTGGGCCGCCGCCAACCGCGACCACTTCGTCGAGGACGCCCAGGCGATGCGGCGGCGCGTCGAGGCCCACGTCCCGGGCGCCGAGGCCGACCGGCAGATCAAGCTCGGCAAGGGCGGGCTGCGCGACGTCGAGTTCACCGTCCAGCTCCTGCAGCTCGTGCACGGGCGCACGGACGAGTCGATCCACTCCGCGAACACGCTGCGCGCCCTGGACGCCCTCGCCGGCGGCGGGTACGTGGGCCGTGAGCACGCCCGCCGCATGGCGGACTGCTACCGGCTGCTGCGCTCCCTCGAGCACCGCGTCCAGCTCTACCGGCTCAAGCGCACCCACCTGCTGCCCACGGACGACGACGACCTGCGCCGCCTCGCCCGGTCGCTCGGGATGCGCGGGCAGGGCGCCGACGAGCTGCGCAAGCGGTGGCGGGACACCCGCCGGGAGGTCCGGGCGCTGCACGAGGCCGTTTTTTACCGCCCGCTGCTGCCCGCCTGGGCCCAGCTGTCCGAGGACGAGCTGTCCCTGGCCCCGGACGCCGCCCGGGCGCGCTTCGCCGCCATCGGCTACCGCGACCCCGACGGCGCCATGCGGCACGTCGTCGCCCTCACCGAGGGCACCTCGCGCCGCGCCAAGCTGCAGCGCCAGCTCCTGCCCGTCATGCTCGGCTGGTTCGCCGAGGGCGCCGATCCCGACGCCGGCCTGCTCGCCTTCCGCAAGCTGTCCGAGAACCTCGGCGCCACCCCCTGGTACCTGCGGCTCCTGCGCGACTCCGGCAACGCCGCGTACCACCTCGCCCAGCTGCTGTCCTCGTCGCGCTACCTCGCCGACGCCCTGTCCCGGTCGCCCGAGTCCGTGCAGTGGCTCGCCGACACCACCCGCCTGCAGCCGCGCGGGCCGCAGCGGCTCGCCGAGGAGGCCGACGCCGTCCTGACCCGGTCCGACGAGCCCGGCCCGGCCGCCACGAAGCTGCGCGCGCTGCGGCGCCGCGAGCTCGCCCGCACCGGTGCGGGCGAGGTCCTCGACGTCCTCGACCCCGTGCAGGCCCAGGCCGCCATCTCCGACGCCGCGGACATGGTGCTCGTCGGGGGGCTGCGGGTCGCCGAGTACGCCGCCCGCGCCGAGCAGGGCCTCGGCCCCGAGCCGGCCGCCAACCCCACGCGGATGCTCGTCGTGGCGATGGGCCGGCTCGGCGGCCGCGAGATGGGCTACGGGTCCGACGCCGACGTCATGTTCGCCCACGACCCGTTGCCCGGCGCCGACCCCCAGCGGGCCCAGGAGTTCGCCCTGCTCGTCGCACGGACCCTGCAGAAGATGCTTTCCGCCGTCGGACCGGAGCCACCGCTGCCCATCGACGCCGACCTGCGGCCCGAGGGCCGCCAAGGTCCTCTGGTGCGCACCGTGGACTCCTACGCCGAGTACTACGAGCGGTGGTCCAGCACGTGGGAGCAGCAGGCCCTGCTGCGGGCCCGTCCGGTCGCCGGGGCCGGTGCCGACGACGTCGCCGAACGGTTCGCCGCGATCATCGAGCCGCTGCGGTACCCGACCGGCGGCCTCGCCGAACCGAAGCTGCGCGAGGTGCGCCGCATCAAGGCCCGCGTGGAGGCCGAACGTCTCCCGCGGGGCACCGACCCCAGCCGGCACCTCAAGCTCGGCCGCGGCGGCGTGTCCGACGTCGAGTGGACCGTCCAGCTCCTGCAGCTCCAGCATGCCGACTCCACTCCCGGCCTGCGCACCACCGAGACGGTGGCGGCGCTCGCCGCTGCCGAGGAGGCCGGGCTCGTCGAACCCGAGGAGGCCGAGTGCCTGCGGGAGGCCTGGCTGCTCGCCTCCCGGCTGCGCTCGGCGCTGGTGCTGTGGTCCGGCAAGGTCGGCGGTCCGCGCGCGGACGTGCTGCCCGCCGACGCCTGGGCCCTGTCCGGCCTGGCACGCCTGCTCGGCGACGTCGGCACCGGGCAGGAGCTCGAGGAGCTCTACCTGCGCACCGCGCGCCGCGCGCGCACCGTGATGGAACGCTTCGTCTACGGCGAGGACTGAMSSTTSGTGRPQTTTRRLLRAGFADLTRSAGLWDDAELQRRLPGDTEAADVVLRALGATADPDHALLQLVRLAAVPAAEGALERLLAASDGTPDAAVRDRLLAVLGASSALGDEIVRRPELLDLLGEPDRGIGVDPADVRAELLRSVGADPEDPEPVAADDPPPGQDGAPAWPDTEAPTATDALRRAYRGRLLRIAATDLTTADPTTALPEVSAALADLAAAAVEAALAVARSQLPDHGAGARLAVIGMGKTGGRELNYVSDVDVVYVCEPATGEDGEPLVDEPTAMRTGTQLATRLQKVCGGTSLEPALWEVDAALRPEGKQGPLVRSLASHVAYYERWAQTWEFQALLKARPIAGDVELGAAYREAVDPFVWAAANRDHFVEDAQAMRRRVEAHVPGAEADRQIKLGKGGLRDVEFTVQLLQLVHGRTDESIHSANTLRALDALAGGGYVGREHARRMADCYRLLRSLEHRVQLYRLKRTHLLPTDDDDLRRLARSLGMRGQGADELRKRWRDTRREVRALHEAVFYRPLLPAWAQLSEDELSLAPDAARARFAAIGYRDPDGAMRHVVALTEGTSRRAKLQRQLLPVMLGWFAEGADPDAGLLAFRKLSENLGATPWYLRLLRDSGNAAYHLAQLLSSSRYLADALSRSPESVQWLADTTRLQPRGPQRLAEEADAVLTRSDEPGPAATKLRALRRRELARTGAGEVLDVLDPVQAQAAISDAADMVLVGGLRVAEYAARAEQGLGPEPAANPTRMLVVAMGRLGGREMGYGSDADVMFAHDPLPGADPQRAQEFALLVARTLQKMLSAVGPEPPLPIDADLRPEGRQGPLVRTVDSYAEYYERWSSTWEQQALLRARPVAGAGADDVAERFAAIIEPLRYPTGGLAEPKLREVRRIKARVEAERLPRGTDPSRHLKLGRGGVSDVEWTVQLLQLQHADSTPGLRTTETVAALAAAEEAGLVEPEEAECLREAWLLASRLRSALVLWSGKVGGPRADVLPADAWALSGLARLLGDVGTGQELEELYLRTARRARTVMERFVYGEDPGPT0000655_210DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000655-glnE-K00982NANA
AK018_061381338glnA_3COG0174Glutamine synthetaseATGGACAGGCAGCAGGAGTTCGTGCTTCGCACGGTCGAGGAGCGCGACATCCGCTTCATCCGACTCTGGTTCACCGACGTGCTCGGGGTGCTCAAGTCCGTCGCGGTCGCCCCGGCTGAGCTCGAGCAGGCCTTCATCGAGGGCATCGGGTTCGACGGCAGCGCGATCGAGGGCCTGACCCGGGTCTACGAGGCGGACATGATCGCCAAGCCGGACCCCACCACGTTCCAGGTGCTGCCCTGGCGCGGCGAGCGGCACGGCACGGGCCGGATGTTCTGCGACCTGCTCACCCCGGAGGGGGAGCCGTCGCGCGCCGACTCGCGCAACGTGCTCAAGCGCACGCTGGCCAAGGCCGGCGACAAGGGCTTCACCTTCTACACCCACCCCGAGGTGGAGTTCTACCTGTTCAACCAGATGGCCTCCGCGGACGGCCCGCTGGTGCCCGTCGACGAGGGCGGCTACTTCGACCACCTGGCGCGCGGCAGCACGCACGACTTCCGCCGCGCGGCCATCTCGATGCTGGAGTCCATGGGCATCTCCGTGGAGTTCTCCCACCACGAGGCCGGGCCCGGGCAGAACGAGATCGACCTGCGCTACGCCGACGCGCTGACCACCGCGGACAACCTCATGACGTTCCGGACGGTCGTCAAGGAGGTGGCCCTGGAGCAGGGCGTCTTCGCCTCCTTCATGCCCAAGCCGTTCGCGGACCAGCCGGGCTCCGGGATGCACACGCACATGTCCCTGTTCGAGGAGGACCGCAACGCCTTCCACGAGCCGGGCGCGCAGTTCGAGCTGTCCAAGACCGGCCGCCAGTTCATCGCCGGCCTGCTGGTCCACGCGGGCGAGATCACCGCGGTGACCAACCAGCACGTTAACTCCTACAAGCGGCTGTGGGGCGGCGCCGAGGCACCCAGCTACATCTGCTGGGGGCACAACAACCGGTCCGCGCTCGTGCGGGTGCCGATGTACAAGCCCGGCAAGGGCAACTCCTCGCGCATCGAGTACCGCGCGCTGGACTCCGCGACCAACCCGTACCTGGCGTTCGCCGTCCTGCTGGCCGCCGGCCTCAAGGGCATCGAGGAGGGCTACGAGCTGCCCGACGCGACCGAGGACGACGTCTGGGAGCTCACGGGCGCCGAGCGCCGCGCGCTCGGCATCGCGCCGCTGCCCGAGTCCCTGGACGAGGCCATCGAGCTGATGGAGTCCTCCGAGCTCGTCGCCGAGACGCTCGGCGAGCACGTCTTCGACTACGTGCTGCGTAACAAGCGCAACGAGTGGGACGCCTACCGCGCGCAGGTCACCCCCTACGAGCTCAAGACGTCGCTGCAGTTCCTCTGAMDRQQEFVLRTVEERDIRFIRLWFTDVLGVLKSVAVAPAELEQAFIEGIGFDGSAIEGLTRVYEADMIAKPDPTTFQVLPWRGERHGTGRMFCDLLTPEGEPSRADSRNVLKRTLAKAGDKGFTFYTHPEVEFYLFNQMASADGPLVPVDEGGYFDHLARGSTHDFRRAAISMLESMGISVEFSHHEAGPGQNEIDLRYADALTTADNLMTFRTVVKEVALEQGVFASFMPKPFADQPGSGMHTHMSLFEEDRNAFHEPGAQFELSKTGRQFIAGLLVHAGEITAVTNQHVNSYKRLWGGAEAPSYICWGHNNRSALVRVPMYKPGKGNSSRIEYRALDSATNPYLAFAVLLAAGLKGIEEGYELPDATEDDVWELTGAERRALGIAPLPESLDEAIELMESSELVAETLGEHVFDYVLRNKRNEWDAYRAQVTPYELKTSLQFLPGPT0000645_7904DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
AK018_06139903panB_2COG04133-methyl-2-oxobutanoate hydroxymethyltransferaseATGGCAGCAACGGGCCACAACCCCTCACCTCAGGACGCACCCCACGCCGCTGTGACATCGGTCACCGCATCCTCGCAGAGCGCGCCGGACATCGCGCGGGGAGCGCGCCGGGTCCGCGTCCACCACCTGCAGCGCGCGAAGGAGCGCGGCGAGAAGATCACGATGCTCACGGCGTACGACGCACCCACCGCGGCGCTCTTCGACGCCGCCGGCATCGACACCCTCCTGGTGGGCGACTCCATCGGCAACACGATGCTCGGGCACGCCACGACCCTGCCGGTCACGCTGGACGACATGGTCCGCGCCGGCCGGGCGGTGTCCTCGGGCGTGCAGCGCGCGTTCGTCGTCGTCGACCTGCCGTTCGGCAGCTACGAGGCCGGTGCCGAGCAGGCGCTGGCCTCGGCCGTGCGCGTCATGAAGGAGACCGGGGCCTCGGCGGTCAAGCTCGAGGGCGGGCGTCGCAGCGCCGACCAGATCCGCGCCATCACCCGCGCGGGCATCCCCGTGGTGGGCCACCTCGGCTACACGCCGCAGTCGGAGAACGCGCTGGGCGGGCCGCGCGTGCAGGGTCGCGGCGACGACGCCGCCGAGGAGCTCAGCCAGGACGCGCTCGCCGTCCAGGAGGCCGGCGCCTGCGCCGTCGTGCTGGAGATGGTCCCGGCCGACCTGACGGCGCGGATCACGGAGTTCCTCGCGATCCCCACCATCGGCATCGGGGCGGGCACCGAGGCGGACGGTCAGGTGCTCGTGTGGACGGACATGGCCGGGATGACGGACTGGTCGCCGCGGTTCGCCCGGCGCTACGCCGAGCTCGGGGCGGCTCTGCGCCAGGCGGCGGCCGACTTCGCCGCCGACGTGCGCACCGGCCGCTTCCCCGCCGCCGAGCACGCCTTCGACGCCTGAMAATGHNPSPQDAPHAAVTSVTASSQSAPDIARGARRVRVHHLQRAKERGEKITMLTAYDAPTAALFDAAGIDTLLVGDSIGNTMLGHATTLPVTLDDMVRAGRAVSSGVQRAFVVVDLPFGSYEAGAEQALASAVRVMKETGASAVKLEGGRRSADQIRAITRAGIPVVGHLGYTPQSENALGGPRVQGRGDDAAEELSQDALAVQEAGACAVVLEMVPADLTARITEFLAIPTIGIGAGTEADGQVLVWTDMAGMTDWSPRFARRYAELGAALRQAAADFAADVRTGRFPAAEHAFDAPGPT0008740_366DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008740-panB-K00606NANA
AK018_06140198hypothetical proteinATGAGCGACAAAAGCAGCGGCGGGAGCTTCTGGTTCAACACCCGGACCGGCCAGGTCGAGGAGTCGGGCGAGAAGTCCTCGTGGACGCACCTGATGGGCCCCTACCCGACGCGCGAGGCCGCCGAGCACGCGCTGGACACCGCGGAGCGCCGCAACGACGACTGGGAGTCCGAGGACGAGGACTGGCGCAAGGGCTGAMSDKSSGGSFWFNTRTGQVEESGEKSSWTHLMGPYPTREAAEHALDTAERRNDDWESEDEDWRKGNANANANANA
AK018_06141765ppgK_4COG1940Polyphosphate glucokinaseATGGCTGAGCAGAGCGGGCCGGAGCTGGCCCTGGGCATCGACATCGGCGGTTCCGGCATCAAGGGCGCTCCCGTGGACCTGACCACCGGGGAGTTCGCCGCGGAACGGCAGCGCATCCCCACCCCGCACAAGTCCACACCGGAGGCGGTGACCGACGTGGTGGCCGAGCTGGTCGACGGGTTCGACCTGCCCGACGACGCCCCGGTCGGCGTCGCGTTCCCCGCACCTCTGGACCACGGCGTCGTGCGGTTCATCGCGAACCTGCACAAGTCGTGGAAGGGCGCCGACCTCCCGGCGCTCCTCCAGGAGGCCACGGGGCGTTCCGTCACGGCCGTGAACGACGCCGACGCGGCGGGTGTCGGCGAGGACCGCTACGGCGCGGCCCAGGGGCGTGACGGCGTCGTCCTGGTGGTGACGCTGGGAACCGGCATCGGCTCGGCGCTGCTCGTCGACGGCGTGCTCGTGCCCAACACGGAGCTCGGACACCTGGAGATCGACGGGCACGACGCCGAGTCCCGCGCCGCCGAGTCGGCCCGTGACCGCGACGACCTGTCCTGGGAGAAGTGGGCCAAGCGCCTCCAGCGGTACTTCGAGACCGTCGAGATGCTGCTGTCCCCCGACCTGATCGTCGTCGGCGGCGGCGTGTCCAAGCACCACCAGAAATTCCTGCCGCTGCTGGACCTGCGCGCCGAGATCATCCCGGCGACGCTGCGCAACCGGGCCGGCATCGTCGGCGCGGCCTCGCTCGCCGCGCGCCCGCACTGAMAEQSGPELALGIDIGGSGIKGAPVDLTTGEFAAERQRIPTPHKSTPEAVTDVVAELVDGFDLPDDAPVGVAFPAPLDHGVVRFIANLHKSWKGADLPALLQEATGRSVTAVNDADAAGVGEDRYGAAQGRDGVVLVVTLGTGIGSALLVDGVLVPNTELGHLEIDGHDAESRAAESARDRDDLSWEKWAKRLQRYFETVEMLLSPDLIVVGGGVSKHHQKFLPLLDLRAEIIPATLRNRAGIVGAASLAARPHPGPT0017750_521DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017750-ppgK-K00886NANA
AK018_06142324hypothetical proteinGTGACACTCACCAGCCAGGTGCGCGCCGGAGGCATCGCCCTCAGCGAGGGACCTCGGGCGACCATGGTGACCCTGTGGGGCGAGATCGACATCGCCCTGCGCAACGAGGCCTCGGCTGCTCTGGCCGGGGCGTTCCAGCGGGACCTGCCCGTGGTGGTCGACGCGTCCCGGGTGACGTTCATCGACTCCGCCGGCGTGGCGTTCCTCGTCCAGCTCTGCCGCATCGGGCGGGACGAGGGCATGCAGGTCTCGTTGCACGACCCGCCGGAGGCCGTCCGTACGATGCTCCGGACCCTCGAGCTGGACCCGTTCGTGGCGGGCTGAMTLTSQVRAGGIALSEGPRATMVTLWGEIDIALRNEASAALAGAFQRDLPVVVDASRVTFIDSAGVAFLVQLCRIGRDEGMQVSLHDPPEAVRTMLRTLELDPFVAGPGPT0014350_2778DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
AK018_06143597hypothetical proteinATGGAAGCCCTGGTGTTCCGCGCGGCCAACGAGGTCCCGTTCGACGACCTCCAGGACGTCCTCGGCACGTCCCAGGCGGGGCGCTGCCAGTGCCAGCGACAGGTCCTCGGCGATCGCGAGTGGTGGGACATGCCGGTCGAGGAGCGCCGGCTGCGGCTGGCCGAGCAGACGGGCGCCGACGACCCGGACGCGCCGGTGACCAGCGGCGTCGTCGCGTACGACGGGGAGGTGCCGATCGGCTGGGTGGCGGTCGCGCCGCGTCCCACCTACCGGCGGTACCACGGCCGCAGCCCCGTCGCGTGGCGCGGTCGGCGCGAGGACCGCGAGGACGATGGCGTGTGGCTCGTCGCCTGCTTCGTCGTGCGGGCGGGTCACCGCGGCCAGGGTGTCGTGCACGAGCTGGCGGTCGCCGCCGTGGAGTTCGCGCGGTCGCGCGGGGCGCGGGCGGTGGAGGGGTACCCGATCGTCGCCCGCGACGGCGGCGAGGTGATCTGGGACGAGGCCAGCGTCGGCACGCCGCAGGTGTTCGCCTCGGCGGGGATGACCGAGGTCTCGGCACCGACGACGCGGCGGCGCGTCATGCGGGTCGAGTGCTGAMEALVFRAANEVPFDDLQDVLGTSQAGRCQCQRQVLGDREWWDMPVEERRLRLAEQTGADDPDAPVTSGVVAYDGEVPIGWVAVAPRPTYRRYHGRSPVAWRGRREDREDDGVWLVACFVVRAGHRGQGVVHELAVAAVEFARSRGARAVEGYPIVARDGGEVIWDEASVGTPQVFASAGMTEVSAPTTRRRVMRVECNANANANANA
AK018_06145834yaaACOG3022Peroxide stress resistance protein YaaAGTGCTGATCTGCCTGCCGCCCTCCGAGGGCAAGACCCCGGCGCCCGACGAGGGCGCTCCCGTCGATCTGACGGCCCTCACGGCACCGGAGCTCACCGCGCACCGCGAGACCGTCCTGGACGCCCTGGCGGCGGTCAGCGCCCGCGACGACGCCACCACGGCCCTCAAGGTGGGCGCGAGCCTTGCCGAGGAGGTCGCCCGCAACACGACGTTGCGCACCGCGCCGACCGCGCCGGCGACCGACGTCTACACCGGCGTGCTCTACGCGGCCGCGGGGCTCGGCGACCTGGACGGCGACGCCGCGGCGCGGGCGGCCGACGACGTCCGCATCTTCTCCGGCCTGTGGGGCGTCGTCGCGCCGGCGGACCGCATCCCCGCCTACCGGTTGTCCATGGGCGTGACCCTGCCGGGCGTCGGTGGTCTGGCCGCCGCGTGGCGGCCGCACCTGGACGCCGCGCTCGCCGAGCGCGCCGCCGGGGACGTCGTGGTCGACTGCCGCTCGGCGGCCTACGTGTCCGCCTGGAAGCCCGCGACCACCGGTGACCTGGCCGCGGACTGGGTGGCGGTGCGCGTCGTGCGCGAGACCGACGGGGTGCGCACCGTGGTCTCGCACAACGCCAAGCACACCCGTGGTGTGCTCACCGGCCACGTGCTGCGCCGCGACGGGTCGCCGCCGTCCTCGGCGGACGAGCTGCTCGATGCCGCGCGCGAGCTCGACGGCGAGGTGATCGGCACCGAGGTCGGCACCGGGCTGAGCTACCGGATGGTCGAGGCCGTCCTGCACGACCCGACGAGCCGGCGCGGCCCGCGCACGCTCGAGCTCGTCATCTCCTGAMLICLPPSEGKTPAPDEGAPVDLTALTAPELTAHRETVLDALAAVSARDDATTALKVGASLAEEVARNTTLRTAPTAPATDVYTGVLYAAAGLGDLDGDAAARAADDVRIFSGLWGVVAPADRIPAYRLSMGVTLPGVGGLAAAWRPHLDAALAERAAGDVVVDCRSAAYVSAWKPATTGDLAADWVAVRVVRETDGVRTVVSHNAKHTRGVLTGHVLRRDGSPPSSADELLDAARELDGEVIGTEVGTGLSYRMVEAVLHDPTSRRGPRTLELVISNANANANANA
AK018_06146684gpmB_2phosphoglycerate mutase GpmBATGGCCCGGCCCGCCTCGGGGGCGCTCGCGCGGTACGACGGCGCGGTGCCCGCCACGCTCGTCCTCGTCCGGCACGGCGTGACGCCCCTGACCGAGGTCGGTGCGCTGTCCGGCGGGGACGTGCTCGGCCCGTCCCTCACGACCGTCGGCCGACGGCAGGCCGCGCAGGCCGCGGACGCCGTCTTCCGGCTCGGCACGGAGCGCTGGGCCGACCTCGCCCGCCCGGAGACGCTGGTGGCCTCGCCGATGGTGCGGGCCCAGGAGACGGCGGCGGCGATCGGGCGCCGGCTGGGCGCACCCGTCGACACCGACGACCGCCTCGCCGAGGTGCGGTTCGGCGCCTGGGAGTCCCTGACCCCGGTCGAGGTCGAGGCGTCCTGGCCCGGCGACCTGGCCAAGTGGGTCACCAGCGGCACCTTCGCCCCGCCGGAGGGGGAGTCGTACGCCGACCTGGGCGACCGGGTCGGCCCGGCGGTCGACGAGCTCGCGGCCGGGTCCGTGGGACGGACCACCGTGGTGGTGGCCCACGCCGCCGTGATCCGCAGCGTCGTCGGGCGAGCGCTCGACGCGCCGCCGTCCGCGTGGGGACGTGTCCGCGTGCCACCGTGCTCGCTGTCGATCGTGCGGATCTGGCCCGACGGCGACCGCGAGGTCACCGCCGTCGGGCACCCTGCCGCGGACTGAMARPASGALARYDGAVPATLVLVRHGVTPLTEVGALSGGDVLGPSLTTVGRRQAAQAADAVFRLGTERWADLARPETLVASPMVRAQETAAAIGRRLGAPVDTDDRLAEVRFGAWESLTPVEVEASWPGDLAKWVTSGTFAPPEGESYADLGDRVGPAVDELAAGSVGRTTVVVAHAAVIRSVVGRALDAPPSAWGRVRVPPCSLSIVRIWPDGDREVTAVGHPAADPGPT0004650_145DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004650-cobC|phpB-K02226NANA
AK018_06147741COG1579putative proteinATGGCCACCGCACCCCCTGAGGACCAGCGCCGCCTGCTCGAGGTCCAGGCTCTCGACACCCGCCTGCAGCAGCTCGCGCACCAGCGGCGCAACCACCCCTCCCTGGCCACGGTCGCCGAGCTGGAGTCGCGGATGGCCGACCTGCACGGCTCGCTCGTCGACTCGCGCACCGCCGTCGCCGACCTGGAACGCGAGGTCACCAAGGCGGAGACCGACGTCGAGCAGGTGCGCACCCGCGCCGAGCGCGACCAGCAGCGCCTGGACTCCGGGTCGCTGGGAGCCAAGGACGCGCAGGCCGTCGTCAGCGAGCTGGAGTCGCTGGCCCGCCGCCAGGGCGTCCTCGAGGAGACGCAGCTGGAGATCATGGAACGACTCGAGGCCCACCAGACGTCGCTCGGCGAGGTCGAGGCGGCCTACGGCGAGCTGCGGGCCGCCAAGGAGAAAGCCGAGTCGGAGCGGGACGCCGCGTTCGCCGAGATCGACGCGGCGTGTCGCGAGGTGGACGAGCAGCGAGCAGCCGCCGCGGCCGGGCTCGACGCGTCTTTGGTCACGCTGTACGACCGGCTGCGCAGCCAGCTCGGCGGCCTGGGTGCCGCCGCGCTGCGGGGCAACCGGTGCGAGGGCTGCCGCCTCGAGCTCAACCCCGGCGACCTCGCCACGGCCCGCGGCGCGGCACCGGACCAGGTCGTGCGGTGCGAGGAGTGCGGGCGCATCCTCGTGCGCGACGCCGACGCGGCCTGAMATAPPEDQRRLLEVQALDTRLQQLAHQRRNHPSLATVAELESRMADLHGSLVDSRTAVADLEREVTKAETDVEQVRTRAERDQQRLDSGSLGAKDAQAVVSELESLARRQGVLEETQLEIMERLEAHQTSLGEVEAAYGELRAAKEKAESERDAAFAEIDAACREVDEQRAAAAAGLDASLVTLYDRLRSQLGGLGAAALRGNRCEGCRLELNPGDLATARGAAPDQVVRCEECGRILVRDADAANANANANANA
AK018_06148870hypothetical proteinATGACCGCACCACCCACGCTGGCCGACGTCGTCTCCGTCCTGGAAGGGCTCTACCCGCCGTCCACGGCCGAGGCGTGGGACGCGGTCGGGCTCGTCGCGGGCGACCCGTACCGGCAGGTGCGCCGGGTGCTGCTCGCCGTCGACCCCGTGGCCGCCGTCGTCGACGAGGCCGTCGACTGGGAGGCCGACCTGGTCGTCACGCACCACCCGCTGTTCCTGCGCGGCGTGCACTCCGTGGCGGCCACGACCTTCAAGGGTGCCGTGGTGCACCGGCTCCTGGCCGCCGGCGCCGGCCTCTACGTGGCGCACACCAACGCCGACTCCGCCCCCCGCGGCGTGGCCGACGCGCTCGCGGACCTCGTGGGCCTGACCGACCGCCGTCCGCTCGTCGCGCACGTCGACGACGCCGAGCGGGGCCTGGGCCGCGTGGGCCGGCTCGAGCACCCGACGACGCTGCGCGAGTTCGCCGAGCACGTCGCGGCCGTGCTGCCGGCCACGGCCCAGGGAGTGCGGGTCGCGGGAGACCCGGACGCCGAGGTGACCCGGGTCGCGGTGCTCGGCGGGTCGGGCGACTCCCTGTTCGACGCCGTGCGCGCGGCGGGCGCCGACGCCTACCTCACCGCCGACCTGCGGCACCACCCCGCCTCCGAGCTGCGCGAGCGGGCCGCCTTCGAGGCGGCCGACCCCGCCCCGGGGGAGGCGGGCACCCCGTTCCTGGTGGACGTGGCCCACTTCGCCTCCGAGTGGCCCTGGCTGGCGTACGCCGCCGCGGACCTGGCCGCCGCGTTCGGAGAGGGTACGGTGACCACCAGGGTGAGCACCCTGGTGACCGACCCGTGGAGCGACCGGATCGCGAGCCCGGGGCACTGAMTAPPTLADVVSVLEGLYPPSTAEAWDAVGLVAGDPYRQVRRVLLAVDPVAAVVDEAVDWEADLVVTHHPLFLRGVHSVAATTFKGAVVHRLLAAGAGLYVAHTNADSAPRGVADALADLVGLTDRRPLVAHVDDAERGLGRVGRLEHPTTLREFAEHVAAVLPATAQGVRVAGDPDAEVTRVAVLGGSGDSLFDAVRAAGADAYLTADLRHHPASELRERAAFEAADPAPGEAGTPFLVDVAHFASEWPWLAYAAADLAAAFGEGTVTTRVSTLVTDPWSDRIASPGHNANANANANA
AK018_061491767hypothetical proteinGTGCACGTCCTCCTCACCCGCCTGTCCGGGAGCCGGGTCCGCCTCCGCCCGTCCGACGCCGGCCCGACGGCGGCCCCCGACCCGGCGGCGACGCAGGACGTCGAGGCCGCCGGGGCCGCCGCCGTCGTGCGCCGCCTCGAGGATGCCCGGCACCCACGATGGACGTGGGACGACACCGACGCGTGGTACCCCGGGCTCCTCGCCGACGGCGTGCGCCTGGACCGCGCCCACGACCTGCGCCTCGCCCACCGCGTGCTGCGCACCTCCGCGTTCACCCGTGCCACGGAGCTCGCCACCGCACCGCCCGGACCGTGGGACGCCCTCGAACCGGTCGCCGCACGCGACCCCCGGGCCGAACCACGAGGCCGGCAGCGCGAGTCCCTGTTCGACCTGGACGACGTCCCGGCCGGCTCGCCGAGCCCGCCCGGCTCGCCCGACCCGGCGCCCGACGACCTCGACCCGGCGGCCGAGCTCGCCGCCCAGCAGGCCGCCGTCGCCGGCTCCACCGCACCCGGACGCCTGCGCCTCCTGCTGGCCGCCGAGTCCGCCGGGACGCTCGCGGCCGCCGAGATGCACCACGCCGGCCTGCCGTGGCGGGCCGACGTCCACGACGCGATCCTGACCGACGCCCTGGGCCCGCGGCCCGCGGAGGGACGCCGTCCGGACCGGCTCGAGGCGCTCGCCGACCGCATCCGCGCCGCGCTGGACGCCCCGGCATCGCTCAACCCCGACTCCCACCCGGACCTCCTGCGCGCCATGGAGTACGCGGGCGTCGGCGCGCGGAGCCTGCGCAAGGGGGAGCTCGAGCGGCTCGACCATCCCGTCGTCGCACCGCTGCTGGAGTACAAGAGCCTGCACCGGCTCTGGACGGCGAACGGCTGGCACTGGCTCGACCAGTGGGTCCGCGACGGACGGTTCCGCACCGACTACGTGGTGGCCGGGGTCGTCACCGGGCGCTGGTCCTCCACGGGCGGGGGAGCGCTGCAGCTGCCGAAGGGGGTGCGCGACGCTGTCCGGGCCGACCCCGGCTGGACGCTCGTCGTCGCCGACGCCGCCCAGCTCGAACCGCGGGTGCTGGCCGCGATGGCAGGCGACGAGCCGATGGCGGCGGCAGGGCGCGACGGCGACCTGTACGCGGGCATCGTCGCCACCGGTGCGGTGGCCTCGCGCGAGCACGCCAAGGTCGGGATGCTCGGCGCGCTGTACGGCGGGACCACCGGTGTCAGCGGTCAGGTGCTGCCGCGGCTGCGGCGCACGTTCCCGCGGGCGATGGGGCTGGTCGAGGACGCTGCCGTCACCGGCGAGCGCGGGGGAGTGGTGACGACGTGGCTCGGCCGTTCCTCCCCGCCGCCCGGCCAGGCGTGGGACGCGGCCCAGTCCGGGGCCCTGGGAGACGGTGCGGCGCCGGACGCCGCGACGCTGGCGCGGTCCTCGGCGCGGGCCTGGGGGCGCTTCACCCGCAACTTCGTGGTCCAGGGCACCGCCGCCGAGTGGGCGCTGTGCTGGATCGCCGCCGTGCGCCGTCGGCTCTGGGCGCTCGACGACGGCGCCGCGGGACGCGCCCCCGAACCCTTCACGACCCGGGCCCACCTGGTGTTCTTTGTGCACGACGAGCTGGTGATCCACGCCCCGGCCGAGCTCGCGGACGCCGTCGCGCGGGAGGTGCGCGAGGCCGCGGCGGAGGCCGGTCGCCTGCTGTTCGGCGACTTCCCCGTGGACTTCCCCGTGACGGTCGCGGCGGTCGACGCCTACGCCGACGCCAAGTGAMHVLLTRLSGSRVRLRPSDAGPTAAPDPAATQDVEAAGAAAVVRRLEDARHPRWTWDDTDAWYPGLLADGVRLDRAHDLRLAHRVLRTSAFTRATELATAPPGPWDALEPVAARDPRAEPRGRQRESLFDLDDVPAGSPSPPGSPDPAPDDLDPAAELAAQQAAVAGSTAPGRLRLLLAAESAGTLAAAEMHHAGLPWRADVHDAILTDALGPRPAEGRRPDRLEALADRIRAALDAPASLNPDSHPDLLRAMEYAGVGARSLRKGELERLDHPVVAPLLEYKSLHRLWTANGWHWLDQWVRDGRFRTDYVVAGVVTGRWSSTGGGALQLPKGVRDAVRADPGWTLVVADAAQLEPRVLAAMAGDEPMAAAGRDGDLYAGIVATGAVASREHAKVGMLGALYGGTTGVSGQVLPRLRRTFPRAMGLVEDAAVTGERGGVVTTWLGRSSPPPGQAWDAAQSGALGDGAAPDAATLARSSARAWGRFTRNFVVQGTAAEWALCWIAAVRRRLWALDDGAAGRAPEPFTTRAHLVFFVHDELVIHAPAELADAVAREVREAAAEAGRLLFGDFPVDFPVTVAAVDAYADAKNANANANANA
AK018_06150915znuA_3COG0803High-affinity zinc uptake system binding-protein ZnuAGTGACCTGCTGTCCCCACCGCCCCGCCGCCGCGCTGACCGCCCTCGCCGTCGTCGGCGGCGCCTGCGCCGCCTGCACGCCGTCGTCCGCGCAGGAGTCGGTCGACGTGGTGGCCTCGTTCTACCCGCTGTACTACCTCGCCCACGAGGTCGGCGGTGAGCACGTCCAGGCCACCAACATCACACCGGCCGCCGCCGATCCCCACAGCCTCGAGCTGGCCCCGTCGCAGGTCCGCGACCTCGGGTCCGCCGACGTCGTGGTCTACCTGCCGGGGATGCAGCACGCGGTCGACGAGGCCGTCGCCGCCCGCCGGCCCGAGCGGCTCGTCGACACCGCCGAGGCCGCGGGTCTGGAGCGCGGGCCGAACGGCGAGTCCGCCGAGACGTCTCGCGGCGACGCCGTCGACCCCCACTTCTGGCAGGATCCCCGGCGCATGGCGCAGGTGGCCCACCGGGTGGCGGGCGAGCTCGCCGCCGCCGATCCCGCGCACGCCGACGACTACGCCGCCAACGCCGACGCGCTCGTCGACGAGCTCGACCGTCTCGACCAGGAGTACCGCACCGCACTGGCCCCGTGCGCCGGCGCGACCCTGGTGACCTCGCACGAGGCGTTCGGCTACCTCGCCGCCCGCTACGACCTCGACCAGGTCGGCATTTCCGGGCTCGCCCCGGAGATCGAGCCCTCGCCGGCGCGGCTGCGCGAGGTGAAGGCCGTCGTCGAGGACGCCGGTGTCGAGACCATCTACTTCGAGACCGTCACCAGCCCCGCCGTGGCCGAGACGCTGGCGTCCGACCTCGGCATCAGGACCGACCTGCTCGATCCGCTCGGCCGCCAGGTCGACGCGGACACCGACTACTTCGAGGTCATGCGCGCCAACCTCGACGCCCTCGAGGAGGGCCTCGCCTGCCGTCCCTGAMTCCPHRPAAALTALAVVGGACAACTPSSAQESVDVVASFYPLYYLAHEVGGEHVQATNITPAAADPHSLELAPSQVRDLGSADVVVYLPGMQHAVDEAVAARRPERLVDTAEAAGLERGPNGESAETSRGDAVDPHFWQDPRRMAQVAHRVAGELAAADPAHADDYAANADALVDELDRLDQEYRTALAPCAGATLVTSHEAFGYLAARYDLDQVGISGLAPEIEPSPARLREVKAVVEDAGVETIYFETVTSPAVAETLASDLGIRTDLLDPLGRQVDADTDYFEVMRANLDALEEGLACRPPGPT0004220_1202DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINROOT_COLONIZATION-ZINK_TRANSPORT_LIPOPROTEIN,PGPT0004220-znuA-K09815NANA
AK018_06151426zur_3COG0735Zinc uptake regulation proteinATGAGCGAGGGGTCGAGGCCCGCCCCGAGGGCGCAGCACCATGCGGTCGCGGCCGTGCTCGACGCGCTCGACGGCTTCGCCTCCGCGCGCGAGGTGCACGAGGCACTCGTGCGGTCCGGGTCGACCGTCGCCCTGGCCACCGTCTACCGGAACCTGCACGCCCTCAGCGCGGCGGGCAGGCTCGACGCCGTCTACGGCGCAGGCGGCGAGGTGCGCTATTGCGCGCTCGGCGCCCCCGGAGACCGTCACCTCGCCTGCCGCTCGTGCGGGTACGCCGTGGAGATCCCTGGCGCGCCGGTCGAGGAGTGGGCGGAGCGTGTCGGACGGGAGCACGACTTCGACGACGTCACCGCCGTGGTCGAGATGAGCGGGACCTGCAGCACCTGTCCCGCCGTTCCGTTGCCCGACACCGGCTGCGCCGGGTGAMSEGSRPAPRAQHHAVAAVLDALDGFASAREVHEALVRSGSTVALATVYRNLHALSAAGRLDAVYGAGGEVRYCALGAPGDRHLACRSCGYAVEIPGAPVEEWAERVGREHDFDDVTAVVEMSGTCSTCPAVPLPDTGCAGPGPT0003880_5346DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711NANA
AK018_06152429hypothetical proteinATGAACGACCGCGTGCTCCCGGTCGGCGCCGTGCCCGAGCGGCAGGAGGCGCCCGGGTCGCGAAATAGTACACAAACTGCTGTATCATCAGGAATCGTGGAGACCGTCACCCTGACGCATACCGCCGCCCTCGCGCGGCTCGGCTACGCACTGTCGGACGCGACCCGCACGCGCATCCTGCTGGCGCTGCGCGAGGCGCCGGCGTGCCCCTCGGACCTGGCGGACGCTTTCGGGGTGTCACGTCAGGCGATGTCGAACCAGCTGGCATGCCTGCGGGGGTGCGGCCTCGTCGAGGCTGTCCCGGACGGGCGGCGCAGCTGGTATCGCCTTGCCGACCCGCACCTCGCGCCCGCCCTCGACGACCTGGTCCGTCTCGTCGTGGCGGTCGACCCCGGGTGCTGTTCCGAGCAGGAGTGCGTCTGCTGCTGAMNDRVLPVGAVPERQEAPGSRNSTQTAVSSGIVETVTLTHTAALARLGYALSDATRTRILLALREAPACPSDLADAFGVSRQAMSNQLACLRGCGLVEAVPDGRRSWYRLADPHLAPALDDLVRLVVAVDPGCCSEQECVCCPGPT0004390_531DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-LEAD_HOMEOSTASIS,PGPT0004390-cmtR-K21885NANA
AK018_061531011yciCCOG0523Putative metal chaperone YciCATGACGGATCGCGTCCCCGTGGTCGCGCTGACCGGTTACCTCGGCGCGGGCAAGACGACGGTGCTCAACCACCTGCTCCAGCAGCCCGGCGCGCGGGTGGGGGTCGTCGTGAACGACTTCGGTGCGATCGACGTCGATGCGGGACTCGTGGCCGGCCAGGTCGACGAACCGGTGTCCATCGCTGGCGGTTGCCTGTGCCATCTGGCGGATGCGAGCGAGTTCGACGCTGCGCTGGAGAAGCTGACCCATCCGCGGCTGGCGCTCGACGTCGTGGTGGTGGAGGCCAGCGGTGTCGCCGACCCGGTCGCACTGGCGCAGATGATCCGGTTCAGCGGTGTCGAGCGGGTGCGGCCAGGAGGCGTGGTCGACGTCGTCGACGCGGTCGAGCACTTCGACTCCGTGGACGCGGGGGGTTCGCCGCCGGCCCGCTACCGGGCGAGCTCGCTCGTCGTGGTGAACAAGGCGGACCTGGTGGCGCCGTCGGACCGCGATCGAGTCCTGGCGAGCATCGAGCGGCGCGTCCACGAGGTGAACCCGCGGGCGCACGTGGTGCCGACCACGCGCGGCCGGATCGACCCGGCCCTGGTGTACGACGCCGCCACGACGACGGATCCTGGCGACCAGCTGCCGATTGCGGCTCTGCTGCGCAGCGAGGACGCTCACGACCATGTCCATGCGGACGCCGTCAGTGTGGCAGCGGCAGCCCCCGTGAACCCGTCGCGCCTGGTCGACCTTCTCGAGCGGCCGCCGACCGGTGTCTACCGCCTCAAGGGTCGGGTCCGGGTGCACACGGGCCGCACGGTACGGGGCTACCTCGTCAACGTCGTGGGGCGCTCGGTGCACGTGGTGTCCGCTCGCGTGCCCGACGACGGCGGCGAGCTGGTCGCCATCGGCATGGGCCTCGACGCCCGCGCCGTCCGGCAGCGCCTCGCCTGTGTCGCCGAGCCGTTCGTGCGGCCGGACGCGGCGGGGTTCGCCCGGCTGCAGCGTCGTCGGAGGCTCAGTCGATGAMTDRVPVVALTGYLGAGKTTVLNHLLQQPGARVGVVVNDFGAIDVDAGLVAGQVDEPVSIAGGCLCHLADASEFDAALEKLTHPRLALDVVVVEASGVADPVALAQMIRFSGVERVRPGGVVDVVDAVEHFDSVDAGGSPPARYRASSLVVVNKADLVAPSDRDRVLASIERRVHEVNPRAHVVPTTRGRIDPALVYDAATTTDPGDQLPIAALLRSEDAHDHVHADAVSVAAAAPVNPSRLVDLLERPPTGVYRLKGRVRVHTGRTVRGYLVNVVGRSVHVVSARVPDDGGELVAIGMGLDARAVRQRLACVAEPFVRPDAAGFARLQRRRRLSRNANANANANA
AK018_06154165hypothetical proteinATGAACGGATCATCCTTCTTCTCCACCGCGACGAACCGCCCGGCGGGCTGGTATGACGACCCCGCCGGATCGGGTCGTGACCGCTGGTTCGACGGCGCGACCTGGACCGATCTCTACCGCGGGACCGCGCCGCGACAGCAGCCCGGCTGCACCTGCGACTGCTGAMNGSSFFSTATNRPAGWYDDPAGSGRDRWFDGATWTDLYRGTAPRQQPGCTCDCNANANANANA
AK018_061551587hypothetical proteinATGGCTGAGCACACGAACCACCCGACCGTCGAACGCCACTGCGACGTGGCCGTGATCGGAGGGTCGGCCGCCGGGCTGGCCGCCGCCCTGCAGCTCGCCCGCCAGCGGCGGACGGTGTGCGTCGTCGACGACGGGTCGCCCCGCAACGCCCCGGCGGCGCACATGCACGGCTACCTCGGCCACGAGGCCGTGCCGCCGTCGGAGCTGGTGGAGGCTGGACGCGAGGAGGTGCGCGGCTACGGCGGCGAGATCCTCGACGGGCGCGTCGTGGCCGTCTCCCGCCTCGACGACGGCCGCTTCCGGGTCGAGCTCACCGGCGGCCACCACCTGGTGGCCCGGCGGGTTCTCGCCGCCACCGGGGTGGCCGACGAGCTGCCCGAGATCGACGGGCTCGTCGAACGCTGGGGGAGCGAGGTGATCCACTGCCCGTTCTGCCACGGCTACGAGGTGCGCGACCAGCGCGTGGTGCAGATCGTGACCCATCCGGCCGGACTGCACCCGACGGCGCTGGTGCGGCACCTGACCGACCGGCTCACGGTGGTCCTGCACGAGGCGGACGGGGTCGAAGAGGCGACCGTGGAGGCGCTGCGGGCGGCGGGCGTGGTGATCGAGCGCGACAAGGTCGCGCGGGCCGTCGCGGGCCGTGACGGTGCGCCGGTGGCGGTCGAGCTCGCCGGCGGCGGGATCCTGGACGCCGACGCCCTGCTCGTCGGTCCGCGCTTCCGTGCCCGGGCGGAGGTGCTCGACGGCCTCGGCGTGCGCCCGACGGCCCACCCGATGGGCCTCGGCAACTACCTCGAGGTCGACCAGACGGGTCAGACCTCGGTGCCGGGTCTCTACGGCGCCGGCAACCTGACCGACCCGAGCCTGCAGGTGCTCCCGGCGGCCGCGCACGGCAGCCGGGTGGGCGCGACGATCGCAGTCGGGCTCGCCGAGGAGGACCTCCAGGGGCCCCGCCGCTCCGGGGACGCCGCGGACTGGGAGCAGCGGTACGACGGCGAGACGATGTGGAGCGCGAACCCCAACGGCACGCTCGTGGCAGAGGCCGGCCCGCTGCAGTCCGGACGGGCGCTCGACGTCGGCGCCGGTGAGGGTGCCGACGCACTCTGGCTCGCCGAGCACGGTTGGGAGGTCACCGCCTCCGACATCTCGGGCAACGCTCTGGCCCGCCTGGCCGAGGAGGCCCGCCGCCGCGGGCTCGACGTGCGCCGGCTGCGCGCCGACGTCAACGCCCCGGCCGCCTTTGGCGCCGAGACGTACGACCTCGTGTCGCTGCAGTACGGGTCGTTCCACCGCACGCCCGACCGGCGCGGTCTGCACAACCTCCTCGACGCCGTCGCGCCGGGCGGCACGCTGCTCGTGGTGGGCCACGACCTCGCCCCGCTGCGCGAGCCGGTCGACGTGGCGACGCAGACGCGCATCTTCGACCCCGAGGCCTACGTGGGCGTGGACGAGGTGGCGGCGGCGCTCGCGGACGACGGCGGCTGGCACGTCGACGTCCACGAGACGCGACCCCGTCCGGCCGGTGCGGCCTCGACGCACCACGTCCACGACGTCGTCCTCCGGGCCACCCGGACGGTGCGGTGAMAEHTNHPTVERHCDVAVIGGSAAGLAAALQLARQRRTVCVVDDGSPRNAPAAHMHGYLGHEAVPPSELVEAGREEVRGYGGEILDGRVVAVSRLDDGRFRVELTGGHHLVARRVLAATGVADELPEIDGLVERWGSEVIHCPFCHGYEVRDQRVVQIVTHPAGLHPTALVRHLTDRLTVVLHEADGVEEATVEALRAAGVVIERDKVARAVAGRDGAPVAVELAGGGILDADALLVGPRFRARAEVLDGLGVRPTAHPMGLGNYLEVDQTGQTSVPGLYGAGNLTDPSLQVLPAAAHGSRVGATIAVGLAEEDLQGPRRSGDAADWEQRYDGETMWSANPNGTLVAEAGPLQSGRALDVGAGEGADALWLAEHGWEVTASDISGNALARLAEEARRRGLDVRRLRADVNAPAAFGAETYDLVSLQYGSFHRTPDRRGLHNLLDAVAPGGTLLVVGHDLAPLREPVDVATQTRIFDPEAYVGVDEVAAALADDGGWHVDVHETRPRPAGAASTHHVHDVVLRATRTVRNANANANANA
AK018_061561668pknD_6Serine/threonine-protein kinase PknDATGACCGGCACGCCACCCGAGGGAACGCCCGCCGCGTCACCCGACGGGCACGTGGTGCTCGGCGGCAAGTACGTCCTCGGCGACATCCTCGGCACCGGCGGCACATACACCGTCTACGAGGCCACCCGCCTCGACGCCGCCGCTCCGCCCGACGACGGCGACACCGGGTCCGCCCCCGCCGATCCGCTGCTCATCAAGATCCTCCACCCGCACCTGGTCGACGACGAGGCGACCCGTGCCGCCCTGGCCCGCGAGATCGCCGCCTCCGAGCGCGTCGACGACCCGCGCGTCGTCAAGGTCCTCGACACCGGCGAGGAGGAGGTCGCCGGCGCCACCGTGCCCTGGCTCCTGACCCGGCGAGTGCCCGGCGTCCCCCTCGCCGACCTCACCCCCGCGGACGGCCTGCCGTGGCCCCGGGCGATGCTCGTCGCCGACGGCCTCCTCGGGGCGCTCGCCGCAGTCCACGCCGCCGGTCTGGTGCACCGCGACGTCAGTCCCCGCAACGTCGTCGTCGACCAGGACGACGCCGGCCGGACCACCGTGGGCCTGATCGACCTCGGGCTCGCCGCGCCCGGTGGCGGCGACGGCGACGGCGCCACCGTCGCCGGGTCCGCCGCGTACATGTCCCCCGAGCAGGCCCAGGGCAAGCCCCTCGACGCCCGCAGCGACCTCTACTCCGCGGGAGCGCTGACCTACTTCGCGCTCACCGGGCACCCGCCCTACGAGCGTGCCGAGCCCGCCGACGTCCTGCGCGCCCACGTCGGCGCCCCGGTCCCCGCGCCGTCGGCACGGCGACCGGGCGTCCCCGCCTCCGTGGACCAGTTCGTCGCCCGCGCCATGGCGAAGGACCCGCAGCGCCGCTTCGACTCCGCCGCCGCGATGACCGCCGCCACCGCCGCCGTGCTCGGCCTCACGGCCGGCGCCGCGGCCGGCGCCGACCCCGAACGCACCGCTCCGCTCGACACCCTCGACGACCACGACCCCGACCGGACGGCCGCCCTCGGCGCCGCCGGGACGACGGCGGCGCTCGCGGCGGCCGCAGCGGCCGCGAGCGGGGCGGAGATCCACCGCACCCGGCAGCTCGACGCGGTCGACGCCGCCGGGCTCGCGGACGACGCTCCGGCCGTACCCGCCGATCCGGACGGCACGGCGGACGAGACGCCGAGCCGGCGCGGCGCATGGATCCTCGCCGCGCTCCTCGTGCTGCTCCTGGCCGCGGGTGCGGTGGCCCTGCTGACCTGGCCCTGGGGAGGCGACGACGGCGGCACCCCGGTGGCGCCCGCCCCGTCCAGCGCCTCACCCACCCCGTCGCCGTCCCCGTCGCCGACGGAGACGCCGAGCGAGGAACCGGTCGTCCCGCCCTCGGAGCCCACGTCGACCCCGACCGAGGAGACCGCCGAACCCACGCCGTCGCCGACGCCGAGCGAGGAGCCGTCGGAGGACCCGACACCCACCGACGACCCGACACCCACCGAGGAACCCACGGACGACCCGACCACGGCGGAACCCGACCCGACACCCACCGACGACGCCACGGACGAGCCCACCGAGGAACCGACCGACGACGCGACCGCCCCGGCCGGGCCGGACCCGACCGACGGCACGGACCCCGCCCCGGGCGGGGACGCCACGGGTGCTCCCGCGGGCGGAGCCTCTCCGGCACCCTGAMTGTPPEGTPAASPDGHVVLGGKYVLGDILGTGGTYTVYEATRLDAAAPPDDGDTGSAPADPLLIKILHPHLVDDEATRAALAREIAASERVDDPRVVKVLDTGEEEVAGATVPWLLTRRVPGVPLADLTPADGLPWPRAMLVADGLLGALAAVHAAGLVHRDVSPRNVVVDQDDAGRTTVGLIDLGLAAPGGGDGDGATVAGSAAYMSPEQAQGKPLDARSDLYSAGALTYFALTGHPPYERAEPADVLRAHVGAPVPAPSARRPGVPASVDQFVARAMAKDPQRRFDSAAAMTAATAAVLGLTAGAAAGADPERTAPLDTLDDHDPDRTAALGAAGTTAALAAAAAAASGAEIHRTRQLDAVDAAGLADDAPAVPADPDGTADETPSRRGAWILAALLVLLLAAGAVALLTWPWGGDDGGTPVAPAPSSASPTPSPSPSPTETPSEEPVVPPSEPTSTPTEETAEPTPSPTPSEEPSEDPTPTDDPTPTEEPTDDPTTAEPDPTPTDDATDEPTEEPTDDATAPAGPDPTDGTDPAPGGDATGAPAGGASPAPNANANANANA
AK018_06157441IMPDHInosine-5'-monophosphate dehydrogenaseATGAGGGTGACCGACACGTTGCGGCACAAGGGTGGCGGGGTCGTCACCGTGCTGCAGGAGACCACGGTGCGCGAGCTGCTGGCGCTGCTCGCCGAGCACCGGATCGGCGCGGTCGTGGTGTCCGACGACGGCGCTCACCTGGACGGCATCGTCAGCGAGCGCGACGTGGTCCGGCGCCTGCACAGCGACGGCGACGGGGTGCTCGACGCCCCGGTGGCGCAGATCATGACGGCGGACGTACACACGTGCGAGCCGGACACGCTGCTGGACGACCTGATGCCGGTGATGACGCAGCGCCGCATCCGGCACGTGCCCGTGCTGGACGAGGGCCGGCTGGTCGGCATCGTGAGCATCGGGGATGTGGTCAAGCGCCGGATGGCCGAGGTCCAGGCCGAGCGTGACCAGCTCACCGACTACATCACCGGCGGTCGCACGCGGTGAMRVTDTLRHKGGGVVTVLQETTVRELLALLAEHRIGAVVVSDDGAHLDGIVSERDVVRRLHSDGDGVLDAPVAQIMTADVHTCEPDTLLDDLMPVMTQRRIRHVPVLDEGRLVGIVSIGDVVKRRMAEVQAERDQLTDYITGGRTRNANANANANA
AK018_061581416mcrA_2Mitomycin radical oxidaseATGACGACGATCACCACCCTCGACGGAGGCACCGTCGGGCTCGGCCCGGAGCTCGACGCGCTGGCCCGCGACCTGACGGGCACCCTGGTCCGCGCCGGCGACGCGGAGTACGACGACGCCCGGGCGCTCTGGAACGCCGTGACCGAGCGGCGCCCGGCCGCCATCGTGCGCTGCGCCACGACCGAGGACGTCCGCCGCTGCGTCCTGCTCGCCGCCGAGCACCGGCTGCTCGTCGCCGTGCGGGCCGGTGGCCACAACGTCGCCGGGACCGCCGGGGTCGACGGCGGCCTCGTCATCGACCTGGGCCGGATGCGCGACGTCGTGGTCGACCCGGTCGCCCGGACCGCCCGGGTGGCCGGCGGGGCGCGCCTCGGCGACCTGGACGCGGCGACCCAGCAGCACGGCCTGGCCACCCCCGCCGGAGTCTTCTCGGACACGGGCATCGGCGGGCTCGGCCTGACGGGCGGGATCGGATGGCTCCGCCGCCGGTACGGGCTCACCTGCGACAACATCGTCGGAGCGACCCTGGTGACCGCCGACGGCACCGTCCACGAGATCGACGAGCACAGCGACCCCGCGCTGCTGCGCGGGCTGCGCGGCGGCGGTGGGAACCTCGGCGTGGTCACCGAGCTCGTGCTCCGGCTGCACCCGGTCGGGCCGGAGGTCTACGTCGGGTTCGTCATCCACCGGGCCGACCGCGCGCTGGAGGTGCTGCGCACGTTCCGGGACTGGACCGCCCACCTGCCCGACGAGGTCTCCGCCATGGCCGTGCTCGGCGCCGCACCGGAGGACGACGCCGTCCCGGCCGAGCTCGCCGGGCAGCCCTGCGTGATCGTGCTCGCCTGCGCCACCGACCTCGACCGCGGACCCGAGCTGCTCGCCCCGGTCCGTGACCTGCCCGACCCGGCAGCGGACCTCAGCGGCGTGATGCCGTACGTCGAGCTGCAGCAGATCTTCGACGCCGACTACCCGACCGGCATGCGGTACTACTGGCGCTCCCTGCACCTGCCCGAGCTGTCGGAGGAGGCGTTGCGCCGCGCCGTCGACCAGATGCACCGGCGTCCGTCCGCGCTGTCCACGATCGACCTGTGGCACCTCGGCGGGGCGATGTCGCGCACCGCCGCACCCGAGACCGTCTACGGCGACCGCAGCGCACCGTTCCTCGTGGGCATCGAGGCGAACTGGACCGACGCCGCCGACGACGACGCCAACGTGCGGTGGGCGCGCGCCTGCGCCGCCGACCTCGACGACCTGTCCACCGGACGGGAGTACCTCAACTTCCCCGGCTTCCAGGAGGGCGGGCAGGGCACGCTCCGCGCCGCGCACGGCGAGGAGGCCTACGAACACCTCAGGGCGCTGAAGCGGCGCCTCGACCCCCACAACCTCTTCCGGCTGCACCAGAACGTCGCGCCCTGAMTTITTLDGGTVGLGPELDALARDLTGTLVRAGDAEYDDARALWNAVTERRPAAIVRCATTEDVRRCVLLAAEHRLLVAVRAGGHNVAGTAGVDGGLVIDLGRMRDVVVDPVARTARVAGGARLGDLDAATQQHGLATPAGVFSDTGIGGLGLTGGIGWLRRRYGLTCDNIVGATLVTADGTVHEIDEHSDPALLRGLRGGGGNLGVVTELVLRLHPVGPEVYVGFVIHRADRALEVLRTFRDWTAHLPDEVSAMAVLGAAPEDDAVPAELAGQPCVIVLACATDLDRGPELLAPVRDLPDPAADLSGVMPYVELQQIFDADYPTGMRYYWRSLHLPELSEEALRRAVDQMHRRPSALSTIDLWHLGGAMSRTAAPETVYGDRSAPFLVGIEANWTDAADDDANVRWARACAADLDDLSTGREYLNFPGFQEGGQGTLRAAHGEEAYEHLRALKRRLDPHNLFRLHQNVAPNANANANANA
AK018_06159600hypothetical proteinATGGACCCTGCCCGCGTCCCGGTCAGGTGGGTGATCGTGGGAGCAGTGCTGCGGGTCACCGAGGAGACGATCGAGATGTCCGCACTGGTGGTCTACGAGTCCTGCTTCGGCAACACGGCCCTGGTGGCCCGTTCGGTCGGGGACGGGATCGCCGCCCGGATGCCCGTGCGGGTGTGCTCGGTCGCGGACCTGGACGCCCACGACCTCGACGCACAGGACCTGGTGGTCGTCGGCGGGTCGACGCACGCGTTCGGCATGGGCCGGCCCCGGACACGCCAGGAGGCCCGGGAACGACTCGGTGAAAGGCCGTCCGACGCGCCGGGGATCCGAGAGCTCATCGACGGGCTGACGCCGGACCGGCGGGTGCGGCTGTACGCCACGTTCGACACCCGGGTGGAGAAGGTGCGGCACCTGCCGGGTTCCGCCGCGCACTCCGCGGCGCGCGCCCTGCGACACGACGGGCACCGCGTGGTCGACCGGGGCGCGTCGTTCTACGTCGCCGACGTCGAGGGGCCGCTGCTGCCGCGGGAGCTCGACCGGGCCCGCGAGTGGGGTGACCGTCTGGCGCTGCGGTCGCTGCAGATGCTGCAGCGCGCGTGAMDPARVPVRWVIVGAVLRVTEETIEMSALVVYESCFGNTALVARSVGDGIAARMPVRVCSVADLDAHDLDAQDLVVVGGSTHAFGMGRPRTRQEARERLGERPSDAPGIRELIDGLTPDRRVRLYATFDTRVEKVRHLPGSAAHSAARALRHDGHRVVDRGASFYVADVEGPLLPRELDRAREWGDRLALRSLQMLQRANANANANANA
AK018_06161468ahpE_2COG1225Alkyl hydroperoxide reductase EGTGCCGGAGGTCCACTCGCCCGTCGCGGGCGACCCGGCACCGGACTTCACCCTCCCCGACACGCACGGCACGCCGACCCAGCTGGCCGACCTGCGGGGAGAGGCCGTCCTGGTGTTCTTCTTCCCGTTCGCCTTCTCCGGGACGTGCACGAGCGAGCTCGGCGAGATCCAGGAGAGCCTCGACGAGTTCGAGTCGGCCGGGGTGCGGATCCTCGGGGTGTCCACGGATCCCGTGTTCACCCTCAAGGCCTGGCAGGAGTCCGAGGGGTTCGACGTCGACCTGCTCAGCGACTTCTGGCCGCACGGCGCCGCGGCGCGCGCCTACGGGGTGTTCGACGACGCCTCCGGGCACGCGCTGCGCGGGTCGTTCCTGGTCGACGCCGACGGGATCGTGCGGTGGTCGGTGGTGAACCGGCGCGGGCAGCGACGCGACCTGGACTCGCACCTGCGGGCCCTCGCCGAGGTCTGAMPEVHSPVAGDPAPDFTLPDTHGTPTQLADLRGEAVLVFFFPFAFSGTCTSELGEIQESLDEFESAGVRILGVSTDPVFTLKAWQESEGFDVDLLSDFWPHGAAARAYGVFDDASGHALRGSFLVDADGIVRWSVVNRRGQRRDLDSHLRALAEVPGPT0013145_90DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013145-ahpE-K24120NANA
AK018_06162405putative proteinGTGGGACAGCAGGCGGACACCCTGGCGGCACGCTTCGGGTTCACCACCGGTCAGGTCGTGCAGGAGTTCGGGTGGGACGACGACGTCGACGAACCCTTGCGCGGGGCGATCGAGGCGGTGGTCGGCAGCGAGCTCGTCGACGAGGACTTCGACGACGTGATCGACGGCGTCCTGGTCTGGTGGCGCGAGGACGACGGCGACCTGACCGACATGCTCGTCGACGTGCAGACGGCGCTCGACGACGGCGGCCAGGTGTGGCTGCTGACCCGCAAGCCGGGTCGGGACGGCCACGTCGGCCACGACGAGATCCAGGAGGCGTCCACGACGGCGGGCCTGCACGCGACGAGCACGTTCGCCGCGGGCGACGACTGGTCGGCCACCCGCCTCGCCCCGCGCGGACGGTAGMGQQADTLAARFGFTTGQVVQEFGWDDDVDEPLRGAIEAVVGSELVDEDFDDVIDGVLVWWREDDGDLTDMLVDVQTALDDGGQVWLLTRKPGRDGHVGHDEIQEASTTAGLHATSTFAAGDDWSATRLAPRGRNANANANANA
AK018_061632745aceE_2COG2609Pyruvate dehydrogenase E1 componentGTGGCTTCGAACGAGACCGGACCGCTGATCGACGGTCTGCTCAGCGCCGTGCCGGACATCGACCCGTCGGAGACGTCGGAGTGGGTCGAGTCCCTGGACGGCCTCATCGACGACAAGGGCGGCCCCCGCGCCCGGTACGTCGTGCTGAACCTGCTGCGCCGTGCCCGTGAGCGGAACGTGCAGATCCCGACGTCGGTGGCGACGCCGTACGTCAACACGATCGGCGTGCACGAGGAGCCCTACTTCCCCGGCGACGAGGCGGTGGAGCGCCGGTACCGCTCCTGGATCCGCTGGAACGCCGCCGTCATGGTGACCCGCGCCCAGCGCCCGGACATCTCCGTCGGCGGCCACATCTCCTCCTACGCGTCGGTCGCGACCCTCACCGAGGTCGGCCTGAACCACTTCTTCCGAGGCAAGGACCACCCGGGTGGCGGCGACCAGGTCTACTTCCAGGGCCACTCCTCCCCCGGCCAGTACGCCCGCGGGTTCCTCGAGGGGCGCCTCAGCGCCGACCGCCTCGACGGGTTCCGCCAGGAGAAGTCGCACCCCGGTGGCGGCCTGCCGTCCTACCCGCACCCGCGCCTCATGCCGGACTTCTGGGAGTACCCGACGGTCTCCATGGGACTGGGCCCGGCCTCGGCCATCTACCAGGCGTGGACCAACAAGTACCTGCACAACCGCGGGATCAAGGACACGAGCCAGCAGGACGTGTGGGCGTACCTGGGCGACGGCGAGATGGACGAGCCCGAGTCGCGCGGCATGCTGCAGCACGCCGCCCACCAGGGCCTGGACAACCTCACGTTCGTGGTCAACTGCAACCTGCAGCGCCTCGACGGCCCGGTGCGCGGCAACGGCAAGATCATGCAGGAGCTCGAGGCGCAGTTCCGCGGCGCCGGCTGGAACGTCATCAAGGTCGTCTGGGGCCGCGAGTGGGACGCCCTGCTCAACGCGGACAAGGACCGGGCCCTGGTCAACCTCATGAACGCCACCCCGGACGGCGACTACCAGACCTACCGCGCCGAGTCGGGCGCGTTCATCCGCGAGCACTTCTTCGGCCGCGACCCGCGCACCAAGGCGCTCGTGGAGAACATGACCGACGAGGACATCTGGAACCTGCGCCGCGGCGGTCACGACTACCGCAAGATCTTCGCCGCCTACTCCGCGGCGCGGGCGCACACCGGCCAGCCGACGGTCATCCTGGCCCAGACGGTCAAGGGCTACGCACTGGGCTCCAGCTTCGCCGGCCGCAACGCGACCCACCAGATGAAGAAGGTCAAGAACGAGGACCTCAAGGCGCTGCGCGACAACCTGCGCATCCCGCTGAGCGACGAGGAGATCGACGCCGAGCCCGGGCTGCCGCCGTACTACCACCCCGGCATGGAGGACGAGACCATCCAGTACATGCTGGAGCGTCGTCGTCACCTCGGCGGCTTCGTGCCCGAGCGCCGGTCTTCCCCCAAGCCGGTGTCCCTGCCGGAGGCGAAGAAGTACGAGATTCTCAAGAAGGGCTCGGGCACCCAGCAGGTCGCCTCGACCATGGCGTTCGTGCGCCTGCTGAAGGACCTCATCAAGGACAAGGAGTTCGGCAAGCGCATCGTGCCGATCATCCCGGACGAGGCCCGCACCTTCGGCCTGGACTCGATCTTCCCGAGCGCGAAGATCTTCAACACCAACGGGCAGAACTACCTCGCCGTGGACCGCGAGCTCATGCTGAGCTACAAGGAGTCCGAGGCCGGGCAGATCATGCACACCGGCATCAACGAGGCGGGTTCCGCCGCCGCGTTCCAGTCCGTGGGCACCTCCTACGCCACCCACGGCGAGCACATGGTGCCCGTGTACATCTTCTACTCGATGTTCGGGTTCCAGCGCACCGGCGACCAGTTCTGGGCCGCCGGCGACCAGATGACCCGCGGGTTCATCATCGGCGCCACGGCCGGCCGCACCACGCTGACCGGTGAGGGCCTGCAGCACGCCGACGGCCACTCGCCGCTGCTCGCCGGCACCAACACCGCGATGGTGCAGTACGACCCGGCCTACGGCTACGAGATCCGCCACATCGTGCGCGACGGCATCGAGCGCATGTTCGGCGACGGCTCCGACGGTCGCGACCAGAACGTCATGTACTACCTGACCGTGTACAACGAGCCGATGGTCCAGCCGGCCGAGCCGGAGGACGTGGACGTCGACGGCATCCTGCGCGGCATCCACCGCATCTCGACCGCCGAGGGCGAGGGCCCCAAGGCCCAGCTGCTCGCCTCCGGCGTGGGCGTGCCGTGGGCGCTGGAGGCCCAGGAGCTCCTGCGCGAGGATTGGGGCGTGCAGGCCGACGTCTGGTCGGTCACGAGCTGGAACGAGCTGCGCCGCGACGCTCTCGCCGCGGAGAAGGACGCGCTGGTCGACCCGGCCGCCGACCCGCGCACCCCGTACGTGACCGAGAAGCTCTCGGGCGCCGAAGGGCCGTTCGTCGCCACCAGCGACTACGACCACCTGGTCCCCGACCAGATCCGCGCCTGGGTGCCCGGCGACTACGCGGTGCTCGGCGCGGACGGGTTCGGGTTCTCCGACACCCGCGCCGCGGCCCGCCGCCACTTCCTCATCGACGGCCCCTCGATGGTCGTCAAGACGCTCCAGCAGCTCGCCCGCCGTGGCGAGGTGGAGCAGAAGGTCGTGGCCGAGGCCATCGAGAAGTACCGCCTCACCGACGTGACCGCCGGCACCTCCGGCGTCGCGGGCGGCGACAGCTGAMASNETGPLIDGLLSAVPDIDPSETSEWVESLDGLIDDKGGPRARYVVLNLLRRARERNVQIPTSVATPYVNTIGVHEEPYFPGDEAVERRYRSWIRWNAAVMVTRAQRPDISVGGHISSYASVATLTEVGLNHFFRGKDHPGGGDQVYFQGHSSPGQYARGFLEGRLSADRLDGFRQEKSHPGGGLPSYPHPRLMPDFWEYPTVSMGLGPASAIYQAWTNKYLHNRGIKDTSQQDVWAYLGDGEMDEPESRGMLQHAAHQGLDNLTFVVNCNLQRLDGPVRGNGKIMQELEAQFRGAGWNVIKVVWGREWDALLNADKDRALVNLMNATPDGDYQTYRAESGAFIREHFFGRDPRTKALVENMTDEDIWNLRRGGHDYRKIFAAYSAARAHTGQPTVILAQTVKGYALGSSFAGRNATHQMKKVKNEDLKALRDNLRIPLSDEEIDAEPGLPPYYHPGMEDETIQYMLERRRHLGGFVPERRSSPKPVSLPEAKKYEILKKGSGTQQVASTMAFVRLLKDLIKDKEFGKRIVPIIPDEARTFGLDSIFPSAKIFNTNGQNYLAVDRELMLSYKESEAGQIMHTGINEAGSAAAFQSVGTSYATHGEHMVPVYIFYSMFGFQRTGDQFWAAGDQMTRGFIIGATAGRTTLTGEGLQHADGHSPLLAGTNTAMVQYDPAYGYEIRHIVRDGIERMFGDGSDGRDQNVMYYLTVYNEPMVQPAEPEDVDVDGILRGIHRISTAEGEGPKAQLLASGVGVPWALEAQELLREDWGVQADVWSVTSWNELRRDALAAEKDALVDPAADPRTPYVTEKLSGAEGPFVATSDYDHLVPDQIRAWVPGDYAVLGADGFGFSDTRAAARRHFLIDGPSMVVKTLQQLARRGEVEQKVVAEAIEKYRLTDVTAGTSGVAGGDSPGPT0001385_329DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001385-aceE-K00163NANA
AK018_06164585hypothetical proteinGTGCACGAGGACTCGCTGCGCGCCATGCTCCACGACGACCCGAACGACGAGCGCGCGTTCACCGCCCTGGCCGATCTCGTACGGCGCCACGCCGTCGAGTCGACGAACCCGGACGACCCGCTGACCGCGGCGGCCGAGGAGTCGCAGCGCGAGACGTCCGCCGACCTGGCGGTCTGGTCCCTGGCCGAGGAGCTGGCCGGGCATCCCAAGGCCTGGCGCCCGCTGGTCGAGCTGGGCCGCCTGTCCATCGCGGACGACCCCGAGGGGGCGCTGCGCCGGTTCGCCACCGCCGCCGAGCGCGACGAGACCGGGGAAGCCCTCGCCCAGGGGATCGAGGCGCTGCGCGACGCCGGACGCCCGGTGGACGGGCTCGGCCTCGGCATCGGCCACTGGCGCGTGCGCGAGCAGCGGGCCGAGGTCGGGCGGCAGCTCGTCCTGGCCGCTCTGGAGTCCGACCGCGTTTTCGAGGCGAAGCAGCACCTGGAGGCCATGGACTCGCACCCCGACACCGTCGCCGTGGCGCGACTGCGGCCCGAGCTCGTCGCGGCCGTCGAGGCCGCCGAGACGGCCGGCTCGCCCACCTGAMHEDSLRAMLHDDPNDERAFTALADLVRRHAVESTNPDDPLTAAAEESQRETSADLAVWSLAEELAGHPKAWRPLVELGRLSIADDPEGALRRFATAAERDETGEALAQGIEALRDAGRPVDGLGLGIGHWRVREQRAEVGRQLVLAALESDRVFEAKQHLEAMDSHPDTVAVARLRPELVAAVEAAETAGSPTNANANANANA
AK018_061651164COG2508putative proteinATGTCCACCTCGACCGTGTCCCGTGACGAGAACGTCCAGCGCGTGCGCGACGGGCTCGGGCTGCTCACCTCCGCCGCCATGCGCCGGCTCGACGAGGAGGTCGGGTGGTACCGCCAGCTGCCCGCCGAGGACCGTTCCTACGTCGCGCTCGTCGCCCAGGCCGGTATCAACGCGTTCGTGTCGTGGTTCACCGACCCGCGCCAGACGCCGCACGGCGTGGGCGAGATGTTCTCCGCCGCGCCGCCCGAGCTGACCCGGTCCATCTCCCTGCAGCACACGCTGCAGCTGGTCCGGCTCATGGTCGACGTCGTCGAGTCCCACTCGGACCGCATCGCTGCGCCGGGGCACGAGCGGGACCTGCGCGAGGCGGTCCTGCTGTACTCGCGCGAGGTCGCCTTCTCCGCCGCCGAGGTGTACGCCCGCGCCGCCGAGGTGCGCGGCGCGTGGGACGCCCGGCTCGAGGCGCTGGTGGTCGACGCGCTGGTGCGCGGGGACACCGACGACGCCCTGCGCTCGCGCATCTCGGCCCTCGGCTGGAGCGGGCGCGGCCAGGTCCTCGTGGTGGTCGGCGAGGCGACGGACGGGCTCGGCGACGTGGCCACCGCCGAGCTGCGGCGCGCCGCGCGGCGCGCCGCGGGCGACACGCTGGTGGGCATCCACGGCGACCGGCTCGTGCTGGTGCTCGGCGGCGAGGGCGACCTCGTCGCCGCCGCCACGTCGCTGGTGGACCGGTTCGGGCCGGGCCCGGTCGTCTTCGGTGCGGTGGTCGCGAGCGTGGCCGAGGCGACGGCGTCGGCCCGTTCGGCGCTGGCAGGCCTGGCCGCGGCGCCCGCGTGGCCGCAGGCGCCGCGGCCCGTGCTGGCCGACGACCTGCTGCCCGAGCGCGTCCTGACCGGCGACCGCACGGCGCGCCGCACCCTCGTGGCCCAGGCCTACCGCCCCCTGGAGGAGGCCACGGGCTCCGTCCTGGAGACCCTGTCCGCCTACCTGGGCACGGGCCGGTCCCTGGAGGCCGCGGCGCGGCGGCTGTACGTGCATCCCAACACCGTGCGGTACCGGCTGCGCAAGGTCTCCGACATCACCGGCTGGGACCCGCTGGACGCGCGCGAGTCGTTCGTGCTCCAGGTGGCGCTCGCGCTGGGTCAGCTCGACGCCGACCTCTAGMSTSTVSRDENVQRVRDGLGLLTSAAMRRLDEEVGWYRQLPAEDRSYVALVAQAGINAFVSWFTDPRQTPHGVGEMFSAAPPELTRSISLQHTLQLVRLMVDVVESHSDRIAAPGHERDLREAVLLYSREVAFSAAEVYARAAEVRGAWDARLEALVVDALVRGDTDDALRSRISALGWSGRGQVLVVVGEATDGLGDVATAELRRAARRAAGDTLVGIHGDRLVLVLGGEGDLVAAATSLVDRFGPGPVVFGAVVASVAEATASARSALAGLAAAPAWPQAPRPVLADDLLPERVLTGDRTARRTLVAQAYRPLEEATGSVLETLSAYLGTGRSLEAAARRLYVHPNTVRYRLRKVSDITGWDPLDARESFVLQVALALGQLDADLNANANANANA
AK018_06166930fabD_2COG0331Malonyl CoA-acyl carrier protein transacylaseATGCTCGGCCCCTGGCTGGAGCTGTCCGGAACCACCGACCTCGTCGACTCGTTCTCCGCGGCTGCCGGGACCGACCTGGCGCAGCACGGGACGACGTCGGACGCGGACACGATCCGTGACACGGCGGTCGCCCAGCCGCTGATCGTCTCGGCCTCCCTGGTCGCGCTACGCACCATCCTCGAGGGCCGGCCGACCAGCGACGTCGTCGACGTCACCGCCGGGCACTCCGTCGGCGAGCTGTCCGCCGCGGCCGTCGCCGGGGTGCTGGACGACGCCGGCGCGGTCGGCCTGGTCTCGCACCGCGCCCGGGCCATGGCGGACGCCGCAGCAGCGGCGCCGTCGGGCATGAGCGCCGTCGTCGGCGGCGACCCCGAGGAGGTCCTTGCCGCCGTCGAGGCCGCCGGGCTCTTCCCCGCCAACGTCAACGGCGGCGGGCAGCTCGTCGTCGCCGGGGACGTGGACCGGCTCGCCGCCCTCGCCGACGACGCACCCGCCCGCACCCGCGTCATCCCCCTGCCGGTCGCCGGAGCCTTCCACACGCCCTACATGGACACCGCGCGCGAGGCGTTCACCCAGGTCGCCACGACCTGGCTCGCCACCGACCCGCGCCTGCCGCTGCTGAGCAACGCCGACGGCGCCGCGTACAGCACGCTCGGCGAGGGCGCCCACGGCCAGGGCACGTCCACCGACGTGCTCTCCCGGCTCGCCGCCCAGGTCACCGCCCCGGTGCGGTGGGACCGGTGCCAGGCCACGCTGGCCGACCTCGGCGTCACCGGGCTGCTCGAGCTCGCGCCCGGCGGCGTGCTGACGGGTCTGGCCAAGCGGTCGCTGAAGGGCGTCGAGTCCGTCGCGGTGAAGTCGCCCGACGACGTCGGGGCCGCCCGGGACCTGATCGCCCGGCACTCGACCGCGGCAGGGTCGGCGCAGTGAMLGPWLELSGTTDLVDSFSAAAGTDLAQHGTTSDADTIRDTAVAQPLIVSASLVALRTILEGRPTSDVVDVTAGHSVGELSAAAVAGVLDDAGAVGLVSHRARAMADAAAAAPSGMSAVVGGDPEEVLAAVEAAGLFPANVNGGGQLVVAGDVDRLAALADDAPARTRVIPLPVAGAFHTPYMDTAREAFTQVATTWLATDPRLPLLSNADGAAYSTLGEGAHGQGTSTDVLSRLAAQVTAPVRWDRCQATLADLGVTGLLELAPGGVLTGLAKRSLKGVESVAVKSPDDVGAARDLIARHSTAAGSAQPGPT0008350_860DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008350-fabD|bmyD-K00645NANA
AK018_061671008fabH_43-oxoacyl-[acyl-carrier-protein] synthase 3GTGACCCGCCCGGTCCTGCGGCAGGCCGAACCGGTCCGGTGCTCGCGCATCCTGGCGATCGCCGGCGAGCGCGGTGACCAGGTCGTCGCGAACGACGACGTCGCCGGACCGATCGACTCCTCCGACGCGTGGATCCGCCAGCGCACCGGCATCGTGACCCGGCGCCGCGCCGCGCCCGACGTCGACGTGCTCGACCTCGCCGAGGCCGCGGCCCGCAAGGCGATGGCGGCGGCGGGCCTCGAGGGCCCCGACCTCGACGCCGTCGTGCTGTCCACGATCACCTACTTCCACCAGACGCCGTCGGCCGCCGCGGTGCTGGCCGAACGCCTGGGCGCCACACCCGCCGCGGCGTACGACGTGTCCGCCGCCTGCGCCGGGTACGCCTACGGCATCGGCCAGGCCGACGCCCTGGTCCGCTCCGGCGCTGCTCGTCACGTCCTGGTCATCGGGGCGGAGAAGCTCAGCGACTTCATCGACCCGACGGACCGGACCATCTCGTTCCTCCTCGGCGACGGCGCGGGAGCCGCGATCGTCGGCCCCTCCGACACCCCGGGCATCGGCCCGACCGTGTGGGGGTCCGACGGCTCCAAGGCGCAGGCCATCCGCCAGACGCACCCGTGGTCCGCGCTGCAGGAGGACGGCGACGCCGGCTGGCCCACGCTGCGCCAGGACGGCCAGACCGTCTTCAAGTGGGCGAGCTTCCAGATGGCGCCCGTCGCCGCCGAGGCGATGGAACGCGCCGGGGTGCGGGCCGAGGACATCCAGGTGTTCGTCCCGCACCAGGCGAACATGCGGATCATCGACCAGATGGTCAAGCAGCTCGGGCTGCCCGGGTCCGTGGTCGTGGCCCGCGACATCGCCCAGACCGGCAACACGTCGGCCGCGTCGATCCCTCTCGCCACGGAACGGCTGCTGGCCGAGGGCTCGGCGTCGTCGGGCGACCTGGCACTGCAGATCGGATTCGGTGCAGGACTCGTCTACGCCGCCCAGGTGGTCGTGCTGCCCTAGMTRPVLRQAEPVRCSRILAIAGERGDQVVANDDVAGPIDSSDAWIRQRTGIVTRRRAAPDVDVLDLAEAAARKAMAAAGLEGPDLDAVVLSTITYFHQTPSAAAVLAERLGATPAAAYDVSAACAGYAYGIGQADALVRSGAARHVLVIGAEKLSDFIDPTDRTISFLLGDGAGAAIVGPSDTPGIGPTVWGSDGSKAQAIRQTHPWSALQEDGDAGWPTLRQDGQTVFKWASFQMAPVAAEAMERAGVRAEDIQVFVPHQANMRIIDQMVKQLGLPGSVVVARDIAQTGNTSAASIPLATERLLAEGSASSGDLALQIGFGAGLVYAAQVVVLPPGPT0008355_2426DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648NANA
AK018_06168249acpP_3Acyl carrier proteinATGGCTCACACCGCTTCCGAGATCCTCGAAGGCCTCGCCGAGATCGTCGCCGAGGAGACCGGTCTGCCCACCGACGCCGTCGTCGCCGAGAAGTCCTTCACCGACGACCTCGACATCGACTCGCTGTCGATGATGACGATCGTCACCCACGCCGAGGACAAGTTCGGCGTCCGCATCCCGGACGACGAGGTCAAGAACCTCACGACCGTCGGCGACGCGGTGAAGTACATCGAGGGCGCCCAGGGCTGAMAHTASEILEGLAEIVAEETGLPTDAVVAEKSFTDDLDIDSLSMMTIVTHAEDKFGVRIPDDEVKNLTTVGDAVKYIEGAQGPGPT0011375_4258DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078NANA
AK018_061691242kasBCOG03043-oxoacyl-[acyl-carrier-protein] synthase 2ATGTCCACGCGCGATGTCGTCGTCACCGGTCTCGGTGCCACCACCCCCCTCGGCGGGGACGCCCCCACCACCTGGGCCGCCGCGCTCGCCGGTGAGTCCGGCGCCCGCACGATGGACAACGACTGGTCGGAGAAGTACGGCATCCCCGTCACGTTCGCCGCGACGATCAAGGAGGACCCCTCCGAGAAGTTGTCGCGCCCCGAGACCAAGCGGATGGACCCGTCGGCGCAGTACGCGATGATCGCAGCCCGGGAGGCCTGGCAGGACGCCGGCGCACCCGATGTCGACGGCGAACGGCTCGGCGCCGTGGTGTCCTCCGGCATCGGCGGCATCTGGACCACCCTGGACGGCTGGGACACCCTGCGCGAGCGCGGGGCCCGCCGCGTGCTGCCCATGACGGTTCCGATGCTCATGCCGAACTCGGCCGTCGCCTACGTCTCGCTCGAGCTGGGCGCCAAGGCGGGCGCGCACGCGCTCGTGTCGGCCTGCGCCTCGGGCGCCGAGGCGATCGGCTACGGCATCGACATGATCCGCGCCGGCCGCGCCGACGTCGTCGTGTGCGGCGGCACGGAGGCGACGATCCACCCGATGCCGATCGCCGCCTTCGCGGCGTCGCGCACCCTCTCGCTGCGCAACGACGACCCGGCGGGCGCCTCGCGCCCCTACGACGTCGACCGCGACGGGTTCGTCATCGGTGAGGGTGCCGCCGTCCTCGTCCTGGAGAGCGCGGAGCACGCCGCCGCCCGCGGCGCCCGCGTCTACGCACGGCTGGCCGGCGTCGGCCTGTCCTCGGACGCCTACCACATCACCTCCCCCGACCCGGACGGCACCGGGCAGGTCTCGGCGATGCGCCGTGCCCTCGACGACGCCGGCATCGCCGGGCGCGACGTCGTGCACATCAACGCCCACGCCACGTCCACGAAGGTCGGCGACCTCACCGAGACGCGGTCGATCCGCACGGTCCTCGGCGAGGAGACCGACCACGTCCAGCTCTCGGCCACCAAGTCGATGACCGGCCACCTGCTCGGTGGCGCCGGCGCGCTCGAGACCCTGTTCGCTGTCAAGGCGGTCCATGAGCGGCTCGCGCCGCCCACCATCAACGTCGCCAACCCCGACCCCGAGCTGCAGGTCCCGCTCGTGCGTGACGAGCCGGCCCGGCTGCCCGACGGGGACATCGCGGCGATCAACAACTCGTTCGGGTTCGGCGGGCACAACGTGGCGCTCGCGATCACCAACGGCTAGMSTRDVVVTGLGATTPLGGDAPTTWAAALAGESGARTMDNDWSEKYGIPVTFAATIKEDPSEKLSRPETKRMDPSAQYAMIAAREAWQDAGAPDVDGERLGAVVSSGIGGIWTTLDGWDTLRERGARRVLPMTVPMLMPNSAVAYVSLELGAKAGAHALVSACASGAEAIGYGIDMIRAGRADVVVCGGTEATIHPMPIAAFAASRTLSLRNDDPAGASRPYDVDRDGFVIGEGAAVLVLESAEHAAARGARVYARLAGVGLSSDAYHITSPDPDGTGQVSAMRRALDDAGIAGRDVVHINAHATSTKVGDLTETRSIRTVLGEETDHVQLSATKSMTGHLLGGAGALETLFAVKAVHERLAPPTINVANPDPELQVPLVRDEPARLPDGDIAAINNSFGFGGHNVALAITNGPGPT0008360_4759DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
AK018_06170972axeA_3COG3458Cephalosporin-C deacetylaseATGGCCCAGTTCGACCTGCCCGTCCCCGAGCTCGAGCAGTACCGTCCCGCCGTCGACGAGCCGGACGACTTCGACGAGTTCTGGAGGACGACGATCGCCGAGGCGCGCGGACTCGGCGACGACGTCCGCGTCGAGCGGGTCGACGCCGGGCTGACGGCGCTCACGGTCGACGACGTCACGTTCGCCGGGTTCGGCGGGCACCCGATCAAGGCGTGGCTCGTCCGGCCCTCGCAGGTCGACGGACCTCTGCCGACCGTCGTCGAGTTCCTCGGGTACGGCGGGGGCCGCGGGCTGGCGCACGAGCATCTCGGGTACGCGGCCGCCGGGTTCGCCCACCTGGTCGTGGACACCCGCGGACAGGGCTCCGCCTGGGGGTCCGGCGGCGACACGCCCGACCCGGTCGGCAGCGGCCCCGCCTCCCCCGGCTTCATGACCCGCGGCATCCTCGACCCGGCCGAGCACTACTACCGGCGGGTCTTCACCGACGGGGTGCGGGCCGTGGACGCCGTGCGGCAGATCGACGGGATCGACCCCGCACGGGTGGCCGTGGCCGGGACGTCGCAGGGTGGCGGCATCGCGATCGCCGTGGCCGGGCTGCTGCCCGACGTCGCCGCCGCCGCACCCAACGTGCCGTTCCTGTGCCACTTCCGGCGTGCTGTACAGATCGTCGATTCCCATCCCTACGGTGAGATCACGCAGTACCTGTCGGTGCACCGCGACCATGAGGACGCCGTCTGGCGCACCCTGTCCTACCTCGACGGCGTCTCGTTCGCGCGCCGCGCGCGGGCCGCCGGACTGTTCTCCGCGGCCCTGATGGACACGATCTGCCCGCCCTCGACGGTGTACGCGGCGTACAACGCCTGGGGCGGCGAGCACCGAGAGATCGATGTGTACCCGTACAACGGGCACGAGGGCGGCCAGGCGTACCGGTTCGCGCCCACCGTGGCGTGGCTGCGCAAGCACCTGGGCTGAMAQFDLPVPELEQYRPAVDEPDDFDEFWRTTIAEARGLGDDVRVERVDAGLTALTVDDVTFAGFGGHPIKAWLVRPSQVDGPLPTVVEFLGYGGGRGLAHEHLGYAAAGFAHLVVDTRGQGSAWGSGGDTPDPVGSGPASPGFMTRGILDPAEHYYRRVFTDGVRAVDAVRQIDGIDPARVAVAGTSQGGGIAIAVAGLLPDVAAAAPNVPFLCHFRRAVQIVDSHPYGEITQYLSVHRDHEDAVWRTLSYLDGVSFARRARAAGLFSAALMDTICPPSTVYAAYNAWGGEHREIDVYPYNGHEGGQAYRFAPTVAWLRKHLGPGPT0011020_431DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-CEPHALOPORIN_METABOLISM,PGPT0011020-cah-K01060NANA
AK018_06171936ispE_2COG19474-diphosphocytidyl-2-C-methyl-D-erythritol kinaseGTGAGTCTCGCCGCCGCCCCCACCCCGTCCGTCCGCGTCCGCGCCCCGGGGAAGGTCAACCTGTCCCTGCACGTGGGACCGTTGGACGACGACGGCTACCACCCGCTGGTCTCCGTCTTCCAGGCCGTCTCGCTCGCCGAGGAGGTCACCGCGACCCAGGTCGGCGACGGTGCCGGGATCTCGCTGACTGTGGACGGGCCGCAGGCCGACCGGGTGCCGCTGGACGCGACCAACCTCGCCTGGCGGGCCGCGGAGCTGCTCGCACGGCACGTGGGCATGGCCCCCGACGTCGCGCTGCACCTCGCCAAGGGCGTGCCCGTCGCGGGCGGGATGGCCGGCGGGTCGGCCGACGCAGCCGCCACCCTGGTCGCCTGCGACGCCCTGTGGGGCACCGGGCTGTCCCGCCAGGACCTCGTGGCGCTCGGCGGCGAGCTCGGTTCCGACGTGCCCTTCGCGCTGCACGGCCACACCGCCGTCGGCACCGGGCGGGGCCACCTGCTCACCCCGGCGATGACCCGCGGCGAGTTCCACTGGGCGTTCGCCGCGCAGGACGAGGGCCTGTCGACGCCCGCCGTCTACGGACGCTTCGACGAGCTCGTGGACGCGGGCCGCCTCGCGCCGACCGCCGAGGTCGACGCCGACACCGCGCTGATGCAGGCCCTGCGGGCTGGCGACCCCACGGCCCTCGGCGCCGCCCTGCACAACGACCTCCAGGCAGCCGCGCTCGACGTGCGCCCCGAGCTGGAGCGGACCCTCGAGATCGCCCGCAACGGCGGCGCCCTCGGTGCCATGGTCTCCGGGTCGGGGCCGACCGTCGCCGCGCTCGCCCGGTCACGGCAGCACGCGCTCGCGATCGCGGCCACCTGGACCGCCGAGGACGCCGCCGACTCGGTGTGGTGCACGACGGCGCCCGCCGCCGGGGCCCGGGTCCTCTGAMSLAAAPTPSVRVRAPGKVNLSLHVGPLDDDGYHPLVSVFQAVSLAEEVTATQVGDGAGISLTVDGPQADRVPLDATNLAWRAAELLARHVGMAPDVALHLAKGVPVAGGMAGGSADAAATLVACDALWGTGLSRQDLVALGGELGSDVPFALHGHTAVGTGRGHLLTPAMTRGEFHWAFAAQDEGLSTPAVYGRFDELVDAGRLAPTAEVDADTALMQALRAGDPTALGAALHNDLQAAALDVRPELERTLEIARNGGALGAMVSGSGPTVAALARSRQHALAIAATWTAEDAADSVWCTTAPAAGARVLPGPT0007605_880DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007605-ispE-K00919NANA
AK018_06172873ksgA_2COG0030Ribosomal RNA small subunit methyltransferase AATGACCACCACCCCTGGCGCCCTGCTCGGCCCTGCGGAGATCCGCGAGCTGGCAGGGCGCCTCGGCGTCCGGCCCACCAAGACGCTCGGGCAGAACTTCGTGCACGACGGCGGCACGGTGCGCAAGATCGTCCGTGCGGCCGGGGTGCAGCCCGGCGACCGGGTCGTCGAGGTCGGCCCCGGGCTCGGGTCGCTGACCCTCGGGCTCCTCGAGGCCGGCGCGTCGGTGGTGGCCGTCGAGATCGACCCCGTGCTGGCCGGTCAGATCGCCGAGACCGTGCACCGGCACCTGCCGGACGCCGACTTCGAGGTGGTGACCGCCGACGCGCTGGACGTCACCGACCTGCCGGGCGCACCGCCGTCGGCCCTCGTCGCGAACCTGCCGTACAACGTGGCCGTCCCGGTGCTGCTGACCTTCCTGGAACGGTTCGACTCCCTGGAGTCGGTGCTCGTGATGGTGCAGGCCGAGGTCGCCGACCGGCTCGCGGCACCGCCCGGGTCACGCACGTACGGCGTGCCGTCCGCCAAGGCCGCCTGGTACGGCGCCGCCCGGCGGTCGCTCAACGTGTCCCGGCACGTGTTCTGGCCCGAGCCCAACGTGGACTCGGCCCTGGTGGCGATCGAACGCCACGAGCCCCCGGCGACCACGGCGCCGCGCGAGCAGGTGTTCGCCGTCGTCGACGCCGCGTTCGCGCAGCGCCGCAAGACGCTGCGCGCCGCGTTGTCGGGCACGTTCGGCTCCGGGGCCGCCGCCGAGGAGGCCCTGGTCGCCGCGGGCGTCGACCCGCGGCTGCGTGGCGAACGTCTCTCGATCGCCGATTTCGCCCGGATCGCCGAGCGCCTTCCGCCCGCTGCTGGCACGGTGGACGGGTGAMTTTPGALLGPAEIRELAGRLGVRPTKTLGQNFVHDGGTVRKIVRAAGVQPGDRVVEVGPGLGSLTLGLLEAGASVVAVEIDPVLAGQIAETVHRHLPDADFEVVTADALDVTDLPGAPPSALVANLPYNVAVPVLLTFLERFDSLESVLVMVQAEVADRLAAPPGSRTYGVPSAKAAWYGAARRSLNVSRHVFWPEPNVDSALVAIERHEPPATTAPREQVFAVVDAAFAQRRKTLRAALSGTFGSGAAAEEALVAAGVDPRLRGERLSIADFARIAERLPPAAGTVDGNANANANANA
AK018_061731338hypothetical proteinATGACTTCCGAGACCCACGAGTCACGGCCGACCACGGCCGAGACCCGCGCCGTCACTCGGACGCGCCGCACCCGCCGTCGTCGCGCGGTCCTCGCCGCGTCCACGGCCGGTGCGCTGGTCCTCGGCGCCGGTTCCGCCGTCGCCGTCTCGAACGCCTACAAGACCGTCACGCTCGACATCGACGGCGAGACCCGCGACGTCGGCACGTTCGCCGGCGACGTCGAGGGCCTGCTCGCCGAGGAGGGCATCGACGTCACCGACCGTGACGTGGTGGCCCCCGCGACCGCGACCGCGCTGAGCTCCGGCAGCGACGTCGTCGTGCGCACCGCCAAGCAGCTCGACATCCAGGTCGACGGCGAGGACCACTCCACGTGGGTCGCCGCCGCCGACGCGCAGGAGGCGCTGAACCTCCTCAGCCAGCGCGGCTCCGACGTCGCCCTGGTCGCCTCGCGGACCGCCGAGCGCGCCGAGTTCCCGCTCGAGCTGCACCAGGGCGAGCAGGTCGCCGTCGTGCACGACGGCGAGACCGACGTCGTCGACGGCTCCGAGGAGATCGACGACGTCCTCGAGGCCGCCGACGTCGAGATCGACGGCGACGACCTCGTCTCCGTCACCGACGCCGCCACCGCCGGCGTGAAGGCGAAGGACCTGCCCGACGGCACCGACGTGCCCGCGGTCGCGGCCGTCGTCGAGCGCGTCGAGGTCGAGCAGGTCACGAAGGTCAAGACCATCGAGCGCGACGTCGAGGTCAAGCAGAGCGACGACCGCTACGAGGACCTCGACCCCAAGGTCAAGAAGAAGGGCCGCGACGGCTCGCGCACCGTGGTCCGCGAGATCACCACGATCGACGGCGAGGAGGTCTCGAACGAGAAGATCACCTCGATGGTGACTATCGAGCCCCGTACCCGCGTGCTCATCGAGGGCACCAAGGAGCGCCCCGAGCCCGAGCCCGAGCCCGAGCCGGAGCCCGCCACCAGCTCCTCGTCGAGCAGCAGCTCCTCGTCCGGCTCCTCCGGCTCGTCCGGCACCACCTACTCCGGCTCCAACCGCTCGATCGGTCAGCAGATGGCCGCCGCCCGCGGCTGGACCGGGTCGCAGTGGACCTGCCTCGAGTCGCTGTGGACCAAGGAGTCCAACTGGTCGCACACCGTCGCCAACCCGTCCTCGGGCGCCTACGGCATCCCGCAGTCGCTGCCGGGCTCCAAGATGGCCTCGCACGGCTCGGACTGGCAGACCAACCCGGCCACGCAGATCGCCTGGGGCCTGGACTACATCGCCGGGCGCTACGGCACCCCGTGCGGCGCCTGGAGCCACTCGCAGGCGAACAACTGGTACTGAMTSETHESRPTTAETRAVTRTRRTRRRRAVLAASTAGALVLGAGSAVAVSNAYKTVTLDIDGETRDVGTFAGDVEGLLAEEGIDVTDRDVVAPATATALSSGSDVVVRTAKQLDIQVDGEDHSTWVAAADAQEALNLLSQRGSDVALVASRTAERAEFPLELHQGEQVAVVHDGETDVVDGSEEIDDVLEAADVEIDGDDLVSVTDAATAGVKAKDLPDGTDVPAVAAVVERVEVEQVTKVKTIERDVEVKQSDDRYEDLDPKVKKKGRDGSRTVVREITTIDGEEVSNEKITSMVTIEPRTRVLIEGTKERPEPEPEPEPEPATSSSSSSSSSSGSSGSSGTTYSGSNRSIGQQMAAARGWTGSQWTCLESLWTKESNWSHTVANPSSGAYGIPQSLPGSKMASHGSDWQTNPATQIAWGLDYIAGRYGTPCGAWSHSQANNWYNANANANANA
AK018_061741320rpf2_3COG3583Resuscitation-promoting factor Rpf2GTGAACGACTGGCCCGCCGACTCCGTCACGCCGCCCACCGCCCCCGTCCCCGTGACGGCGTCGGGCGCCACCGCGAGCGCCACGGACCCCGCCGAGGCCGCGCCGAGGCGCCGCCGCCGGTGGCCGCTCATCACGATCGCGACCGTCCTGGGCGTCGCCGTCGCCGGCGGCGTGGCCGCCGCCGTCGTGGAGCAGCTCCGCAAGGACGTCACCCTCGACGTCGACGGTGAGATGAGCACCGTGTCCACGTACGCGAGCACCGTCGACGACCTGCTGGCCGAGGAAGGGGTGCGCGTCGACGACAACGACGCCGTCACCCCGGTCGGCACGGACGAGCTGCGCGACGGCGCCGTCGTCGAGGTCCGCTACGGGCACCAGATCACCGTGGAGACCGACGGCGACTCCCGCGACGTGTGGGTCGCCGCCCTCGACGCCGACGAGGTCCTCGACCGCTTCGCCGACCGGGCAGACCAGGTGCGCCTGCTGCCGTCGCGGTCCGCGGACCGTGCCAGCCTGCCGATCCGGCTCGACGCCGAGCAGTCGGTCGTCCTCGTCGTCGGCGGCGAGCGGACGGTCGTCGACGACGGCGCCGTCTCCCTCGACGCCCTCCTCGAGGCCGAGGGCGTGACCCTCGACGAGGACGACATCGTCCACGTCGACCAGATCACGCCGGAGAACCCGGGCGACCCGACCGTCCGCGTCGTCATCCAGGTCGTCGATGTCGAGAAGGTCACCAAGACCAAGAAGGTCGGCTACGACACGGTCACCAGGACCGACCCCGACCGGTACGCCGACCAGGGCTCCTACGTGGCGACCGAGGGCAAGAAGGGCGAGCGCACCATCGTCCACCGCGTGACCCGCACCGACGGCGAGGTCACCGACCGCGAGAAGCTCTCGAACAAGGTCACGACCAAGCCCGTCGACGAGGTGATCGTCAAGGGCACCAAGGAGCGCCCGGAGCCGGAGCCCGAGCCGGAGCCGGAGCCGGAGAGCTCCTCGTCGTCCGGCAGCTCGTCCTCGAGCAGCTCGTCGTCCTCCTCGGGCTCGTCCTCGTCCTCGAGCTCGGGCGGCAGCGCGCCGTCCGGCAGCGTCTGGGCCGCGCTCGCGCAGTGCGAGTCCGGCGCTAACCCGAGCACCAACACCGGGAACGGCTACTACGGGATGTACCAGTTCTCGCTGTCGACCTGGCAGTCGGTCGGGGGCAGCGGGCTGCCGTCGGACGCCTCGGCCGCCGAGCAGACCAAGCGGGCGCAGATCCTGCAGTCCCGTGCGGGATGGGGCCAGTGGCCGCACTGCGCGTCCAAGCTGGGCCTGCTCTGAMNDWPADSVTPPTAPVPVTASGATASATDPAEAAPRRRRRWPLITIATVLGVAVAGGVAAAVVEQLRKDVTLDVDGEMSTVSTYASTVDDLLAEEGVRVDDNDAVTPVGTDELRDGAVVEVRYGHQITVETDGDSRDVWVAALDADEVLDRFADRADQVRLLPSRSADRASLPIRLDAEQSVVLVVGGERTVVDDGAVSLDALLEAEGVTLDEDDIVHVDQITPENPGDPTVRVVIQVVDVEKVTKTKKVGYDTVTRTDPDRYADQGSYVATEGKKGERTIVHRVTRTDGEVTDREKLSNKVTTKPVDEVIVKGTKERPEPEPEPEPEPESSSSSGSSSSSSSSSSSGSSSSSSSGGSAPSGSVWAALAQCESGANPSTNTGNGYYGMYQFSLSTWQSVGGSGLPSDASAAEQTKRAQILQSRAGWGQWPHCASKLGLLNANANANANA
AK018_061751122rpf2_4COG3583Resuscitation-promoting factor Rpf2GTGCAGGGCGCGGTGGTCGGCGTGCTGGCCCTGGGAGCGGTGGGTGTCGTCGACGCCCACTCGCAGGTGACGGTCGACGTGGACGGCCAGGTCCGCACGCTGGACGGGTACGGGGACACGGTCGGTGAGGTGCTGGCGCTGCACGGCATCCACCCCGGCCCGGACGACCTCGTCCAGCCGGCGGTCGACGCCACCGCCCCGGACGACGGCGAGGTCGTGGTCCGCACCAGCAAGGACGTCACGCTCGAGATCGACGGGGAGACCGTCACCTTCCCGACGACGGCGCACACCGTCGGTGAGCTGCTCGCGGCGATCGGACCGCGCGGCGAGGGGGCCGTGACGACGTCGTCGCGCTCCGCGCCGCTCGGACGGGAACCCGTCCGGGTGTCGACGCTCAAGACGGTGCGGGTCGCCGTGGACGATGCGGTGGTGCCGCTGCGCACCACGCGGTCGACGGTGCGCGAGGTGCTGTCCGAGGTCGGCATCACCCTCGGTGCGCAGGACACGACGTCGGTGCCGCTGGGTGCGGCGGCGGTGGACGGCATGCTCGTGGTGGTCAACCGGGGGCGGACCGGGTCGGACATCGTCACCGAGGTCATGCCGTTCGAGACGGAGCGGGTCGAGTCCGACTCCCTGCCCCAGGGTCACGAGGTGGTCCAGACGCGTGGCGTGCCGGGGGAGCGGGTGACGACCTACGAGGTCCGCACGCTCGACGGCGCCGAGGTGGAGCGTGCCGTGGTGGACCGGCGCGTCACGCAGGAGCCGGTGACGGAGGTCGTGCTGGTGGGCACCCTCGACGTGTCGGACATCCAGGTCGACCCCGGCTCGGCGAAGGCGGTCGCACGCTCGCTCGCCGCCGAACGGGGCTGGGGTGACGACCAGTTCGTGTGCCTCGACAAGCTCTGGACCAAGGAGTCGAACTGGCGCTGGAACGCCGAGAACCCGTCCTCGGGGGCGTACGGCATCCCGCAGGCGTTGCCGGGCTCCAAGATGGCGTCGGCCGGGTCCGACTGGCGGACCAACCCCACGACGCAGATCACCTGGGGTCTGGGCTACATCTCCGGCCGGTACGGCAGCCCGTGCGCCGCGTGGAACCACTCGATGTCGGTCGGCTGGTACTGAMQGAVVGVLALGAVGVVDAHSQVTVDVDGQVRTLDGYGDTVGEVLALHGIHPGPDDLVQPAVDATAPDDGEVVVRTSKDVTLEIDGETVTFPTTAHTVGELLAAIGPRGEGAVTTSSRSAPLGREPVRVSTLKTVRVAVDDAVVPLRTTRSTVREVLSEVGITLGAQDTTSVPLGAAAVDGMLVVVNRGRTGSDIVTEVMPFETERVESDSLPQGHEVVQTRGVPGERVTTYEVRTLDGAEVERAVVDRRVTQEPVTEVVLVGTLDVSDIQVDPGSAKAVARSLAAERGWGDDQFVCLDKLWTKESNWRWNAENPSSGAYGIPQALPGSKMASAGSDWRTNPTTQITWGLGYISGRYGSPCAAWNHSMSVGWYNANANANANA
AK018_06176936tatD_2COG0084putative metal-dependent hydrolase TatDATGGGTCGCAGCAAGCGGGAGCGGGGTTTCCCGCCGGACCCGGAGCCCTTGCCCGTCCCGGTCGTCGACAACCACACCCACCTGGACGTCATCGACGCGGTGCTGGACGAGCGTGCCCTGCAGGGCGCACCCGTCCCGACGGTGGCGGACCACCTGGAGAGGGCTGCCGCCGTCGGTGTCGACCGGCTGGTGCAGGTCGGTTGCGAGCTGCCGACGATCGCGTGGACGGACACCCTGCTGCGCGACCCAGCGTACGGGGCGAGCCTGCTCGGGGCCGTCGCGATCCACCCGAACGAGGCCGTGCTGCACGCGGGTGTCCGTGAGGTCGGGCCCGACGGCCTCGAGCCGGACCCGCAGCCGCACCACGCGACGTCGCTCGACGACGCGGTCGCCCGGGTGGCCGCCGTCGCCCGGGACAACCCGCGCATCCGTGCGATCGGGGAGACGGGCATGGACCTGTTCCGCACCGGACCGCGGGGCGAGGCCGCCCAGCGCGAGTCGTTCCGCGCCCACGTGGCGCTGGCCAAGGAGCTGGGGCTGGCGCTGCAGATCCACGATCGCGACGCCCACGAGCAGGTGATCGACGTGCTGCTCGCCGACGGCGCGCCGGAGCGCACGGTGTTCCACTGCTACTCCGGCGACGAGCAGATGGCTGCCCTGGCGGCGGAGCACGGCTGGTACCTGTCGTTCGCCGGGCCGGTCACCTACCCGAAGAACGACCACCTGCGTGCCGCGCTGCGCACGATCCCCCTGGACCACGTGCTCGTGGAGACCGACGCGCCGTTCCTGCCGCCCCACCCGTACCGGGGCCGACCGATCGGCCCGTACGTCGTCGGGCACACCGTCCGGGCGATGGCCGAGATCCTCGACCGGCCGCTCGAGGAGGTCTGCGACACGGTGTCTGCGACGTCCGTGGAGGTCTACGGAGCGTGGTGAMGRSKRERGFPPDPEPLPVPVVDNHTHLDVIDAVLDERALQGAPVPTVADHLERAAAVGVDRLVQVGCELPTIAWTDTLLRDPAYGASLLGAVAIHPNEAVLHAGVREVGPDGLEPDPQPHHATSLDDAVARVAAVARDNPRIRAIGETGMDLFRTGPRGEAAQRESFRAHVALAKELGLALQIHDRDAHEQVIDVLLADGAPERTVFHCYSGDEQMAALAAEHGWYLSFAGPVTYPKNDHLRAALRTIPLDHVLVETDAPFLPPHPYRGRPIGPYVVGHTVRAMAEILDRPLEEVCDTVSATSVEVYGAWNANANANANA
AK018_061771797metG_2COG0073Methionine--tRNA ligaseATGACCCACATCCTCTCGGCCGTGGCATGGCCCTATGCCAACGGCCCGCGGCACATCGGCCACGTCGCCGGCTTCGGCGTTCCCTCCGACGTCTTCAGCCGGCACATGCGGATGGCGGGTCACGACGTGCTGATGGTCTCCGGCACGGACGAGCACGGCACCCCGATCCTGGTGCAGGCGGAGCAGGAGGGCGTCACCCCGCAGGAGCTCGCCGACCGGTACAACCGCGTCATCGTCGAGGACCTGCAGTCCCTGGGCCTGAGCTACGACCTGTTCACGCGCACCACGACGCGTAACCACTACGCCGTCGTGCAGGAGATGTTCCGCACGGTCCACCAGAACGGCTACATGGTCGAGAAGTCGACGATGGGCGCCATCTCGCCGTCCACGGGCCGCACGCTGCCCGACCGCTTCATCGAGGGCACCTGCCCCATCTGCGGCTACGACGGCGCTCGCGGCGACCAGTGCGACAACTGCGGCAACCAGCTCGACCCGATCGACCTGAAGAACCCGCGCAGCCGCATCAACGGCGAGACGCCGAAGTTCGTCGAGTCGAACCACTTCTTCCTCGACCTGCCGGCCTTCGTGGACGCGCTCGCCTCCTGGCTCGAGACCCGTCGGGGCTGGCGGCAGAACGTGCTGAACTTCAGCCGCAACCTGCTCGACGACGTCCGCCCGCGCGCCATGACGCGCGACATCGACTGGGGCATCCCCGTCCCGCTGGACGGCTGGTCCGACAACCCGAACAAGCGGCTCTACGTCTGGTTCGACGCCGTCATCGGCTACCTGTCCAGCTCGATCGAGTGGGCGCGTCGCCGCGACACCCCCGAGGCGTGGCGCGACTGGTGGACGAACCCGGACGCCCGCTCGTTCTACTTCATGGGCAAGGACAACATCACGTTCCACTCCCAGATCTGGCCGGCGGAGCTGCTCGGGTACGACGGCGGAGGTGCGCACGGGGGCGAGCCCGGCCCGTACGGCTCGCTCCAGCTCCCCACCGAGGTGGTCTCCAGCGAGTTCCTCAACGTCGAGGGGCAGAAGTTCTCCTCCTCGCGCGGCGTGGTCATCTACGTGCGCGACATGCTGGCCCGCTACCAGCCGGACGCGTTCCGCTACTACGTGGCCGCCGCCGGACCGGAGAACCAGGACGTCGACTTCACGTGGGAGAGCTTCCTACGGCGCACCAACGACGAGCTCGTCGCCGGCTGGGGCAACCTGGTCAACCGCACGGCCTCGATGGTGCACAAGAACTTCGGCGAGATCCCCACCGCGGGCGAGCAGGCCGACGTCGACCGCACGGTGCTCGCCACCACGGGTGAGGCGTTCGCCAAGGTCGGCTCGCTGATCGAGTCCAACCGGCAGCGGGCCGCCGTCGCCGAGGCGATGCGGGTGGTCGGCGAGGTCAACCGGTACGTCTCCGAGACCCAGCCGTGGAAGCTCAAGACCGACCCGGACCGGCTCGCCACCGTGCTGCACACCACCACCCAGGCCGTCAGCGACTGCAACACGCTGCTCGCGCCGTTCCTGCCGCACTCGGCCCAGTCGGTGCACGAGGTGCTCGGCGGCACGGGCGAGTTCGCGCCGCAGCCGGTGGTCGAGGAGGTCACCGACCTCGACGACGACTCGCGCCACTACCCGGTCATCACCGGCAACCGCGACGGCGGCTACGAGTTCCCGTCGTGGGAGTCCCGCGCGGTGACCCCCGGAACCCCGATCGCCAAGCCCACGCCGGTGTTCACCAAGCTCGACGACTCGATCGTCGACGAGGAGCTGGAACGCCTGCGCGAGAAGGCCTGAMTHILSAVAWPYANGPRHIGHVAGFGVPSDVFSRHMRMAGHDVLMVSGTDEHGTPILVQAEQEGVTPQELADRYNRVIVEDLQSLGLSYDLFTRTTTRNHYAVVQEMFRTVHQNGYMVEKSTMGAISPSTGRTLPDRFIEGTCPICGYDGARGDQCDNCGNQLDPIDLKNPRSRINGETPKFVESNHFFLDLPAFVDALASWLETRRGWRQNVLNFSRNLLDDVRPRAMTRDIDWGIPVPLDGWSDNPNKRLYVWFDAVIGYLSSSIEWARRRDTPEAWRDWWTNPDARSFYFMGKDNITFHSQIWPAELLGYDGGGAHGGEPGPYGSLQLPTEVVSSEFLNVEGQKFSSSRGVVIYVRDMLARYQPDAFRYYVAAAGPENQDVDFTWESFLRRTNDELVAGWGNLVNRTASMVHKNFGEIPTAGEQADVDRTVLATTGEAFAKVGSLIESNRQRAAVAEAMRVVGEVNRYVSETQPWKLKTDPDRLATVLHTTTQAVSDCNTLLAPFLPHSAQSVHEVLGGTGEFAPQPVVEEVTDLDDDSRHYPVITGNRDGGYEFPSWESRAVTPGTPIAKPTPVFTKLDDSIVDEELERLREKANANANANANA
AK018_06178576pncA_2COG1335Nicotinamidase/pyrazinamidaseATGAGTACGCGAGCACTCCTCGTCGTCGACGTCCAGCCGACCTTCTGCGAGGGCGGCGAGCTCCCGGTCGACGGCGGCAACCGCGTGGCCCAGGACGTGGCCGCGTACGTCGCCGTGCACCGCGACCGCTACGGCCTGGTCGTCACGACCCAGGACTGGCACATCGACCCGGGTGAGCACTTCAGCTCCGAACCCGACTTCGTGAACTCCTGGCCGGTGCACGGCGTCGCGGAGTCCCCCAACGCCGCGCTGCACCCGGCGCTGGCCGACCTGACCGCCGACGTCGCCGTCCGCAAGGGGCAGTACGACCACGGGTACTCCGGGTTCGACGGCGCGGACGAGGTCGGGCGCTCACTCGACCAGGTGCTGCGCGAGGCGGACGTCCGCGAGGTCGACGTGGTCGGGCTCGCCGAGTCGCACTGCGTGAAGTTCACGGCCCTCGACGCCGAGCGGCACGGGTTCGAGACCCGGGTGCTCACCGACCTCACCGCCCCCGTGTCGGCCGAGCAGGGCGAGCAGGCCCATCGCGAGCTGACCGAGGCCGGCGTCGAGCTGACCCCCTCCACCGCGAGGTAGMSTRALLVVDVQPTFCEGGELPVDGGNRVAQDVAAYVAVHRDRYGLVVTTQDWHIDPGEHFSSEPDFVNSWPVHGVAESPNAALHPALADLTADVAVRKGQYDHGYSGFDGADEVGRSLDQVLREADVREVDVVGLAESHCVKFTALDAERHGFETRVLTDLTAPVSAEQGEQAHRELTEAGVELTPSTARPGPT0013470_1979DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013470-pncA-K08281NANA
AK018_06179882rsmI_2COG0313Ribosomal RNA small subunit methyltransferase IATGAGTCGTGTCGCCGAGTCCGGGTCCGTCGTCCTGGCCGCCACCCCCATCGGCAACGTCGAGGACGCCTCCGCGCGGCTGCTGCGACTGCTGGCCGACGCCGACGTCGTCGCCGCCGAGGACACCCGCCGGCTGCACGCCCTCGCCGCGCGGCTCGACGTCCGCATCGGCGGACGCGTCGTGTCCTACCACGAGCACAACGAACGGGACCGCGCCGACGACCTGCTCGACGTCGTCGACGACGGCGGCACCGTCCTGGTCGTCACCGACGCCGGCATGCCCGCCGTCTCCGACCCGGGGTACCGGCTCGTCTCACGTGCCGTCGAGCGCGGCCTCCCCGTCACGAGCGCACCCGGCGCCTCGGCCGTGCTCACCGCGCTGGCGCTGTCCGGGCTGCCCACCGACCGGTTCACCTTCGACGGGTTCGTGCCCCGCAAGGCGGGCGACCGCACGCGATGGCTGGAGGCGCTCACGGACGAGCCCCGCACGATGGTCTTCTTCGAGGCGCCGCACCGCGTCGTCGAGACCCTCGCCGCCATGGCGCAGGCGTTCGGGCCGGAGCGACCCGCCGCCGTCTGCCGCGAGCTGACCAAGCTCTACGAGGAGGTCCTGCGCGGGACCCTGGGCGAGCTGGCGGAACGGGCCGCCGAGCGGGCGGACGCCGGGGAGCCGCTGCGCGGCGAGATCTGCGTCGTCGTCGGCGGGGCGTCCGCACCCGCGGCACCGGGCGTCGAGGACCTGGTGCCGCAGGTCCAGGAACGGGTCGCGGCGGGAGAGCGGCTCAAGACCGTCGCCGGCGAGATCGCCACCGCCACCGGGGTGTCGAAGCGCGAGCTGTACGAAGCCGTGCTGGCGGCCCGACCGACCCCTCCCGCGAGGTAGMSRVAESGSVVLAATPIGNVEDASARLLRLLADADVVAAEDTRRLHALAARLDVRIGGRVVSYHEHNERDRADDLLDVVDDGGTVLVVTDAGMPAVSDPGYRLVSRAVERGLPVTSAPGASAVLTALALSGLPTDRFTFDGFVPRKAGDRTRWLEALTDEPRTMVFFEAPHRVVETLAAMAQAFGPERPAAVCRELTKLYEEVLRGTLGELAERAAERADAGEPLRGEICVVVGGASAPAAPGVEDLVPQVQERVAAGERLKTVAGEIATATGVSKRELYEAVLAARPTPPARNANANANANA
AK018_061801998hypothetical proteinGTGAGCGCCCACGACGACGGTACGTCCACCGGAGATCAGCCCGAGGTGACCGCCGACGCGCCACGGCCTCGGCAGGAGCTCCCGTCCCGGCGGGAGATCCACGGGCACCGGCGCACGGACACGCGCGGCATCCCGGTGGTCACGGGTGCGATCAAGGCGCTGACGGGTTCGATCCCTGCCGTGGGGAAGCGGTCGGAGGGGGCGGGCGGTCCGTCGACGGGCACGACGGCGGCCGTCCCGTCTCCGGCACCCGGGACGTCGGGCCACACGTCCTCAGGCCGCACCGCGCCCGAGGCGAGCCTGGCGTCACCGGTGGCGACGACGGCGTCGCCCGCTGCGCCGTCGGACGGCGACGACAGCGGCTCGGCGACGTCCCCGGCGGAGAGGACCGGGTCGCCGGACGAGCCGGAGGTCTCCCACGAGCGGCGGCTGCTCGTGGCGCTGCTGGGTGAGCGCCGCCTGGCGCTGGCGGACAGCCGCCGCGCCCGGCTGATCGGCTGGCTGGGCACGCTGGTGGTGACGGCGGTGGCTGCGGTGGCGCGGCTGTGGCAGCTCGGCCGCCCGGAGACGCTCGTCTTCGACGAGACCTACTACGTCAAGGACGCCCACACCCTCGGCTCCGAGGGGGTCGAGCTGCAGTGGCCCGACGACCCGAACGCGGCGTTCGAGGCCGGCGACGTCTCCAGCTACCTGGACCAGGCCGCCTACGTGGTGCACCCCCCGGTGGGCAAGTGGATGATCTGGCTCGGCATGGAGGCCGGGGGCGGTGCGACGAACCCGTTCGCGTGGCGCCTGGCGAGCGCCGTCGTCGGCATCCTGGCGGTGCTGCTCCTGGTCCGGATCGCCCGGCGGCTGTTCGCCTCGACGACGATGGGTCTGGTCGCGGGCTTCCTGCTGGCGATCGACGGGCAGGCGATCGTGCACTCGCGCACGGCGTTGCTGGACCAGTTCCTCATGTTCTGGGTGGTGGTGGCGTTCGGCTGCCTGGTGCTGGACCGCGAGCAGGCCCGACGTCGGCTCGCGGCCCGCGTGGGTGCGGTGCTGGACGCCGGGGGTTCCGTCGCCCGCTACGGGCCCCGGCTGGGCTTCCGGTGGTGGCGTCTCGCGGCCGGTGTCTCGCTGGGGCTGGCGTGCGGCGTGAAGTGGTCGGGCCTGTGGTTCGTGGCCGTGTTCGGGCTGCTGACGGTGCTGTGGGACGTGACGGCCCGGCGTCGGGCCGGGATCGGGCGCTGGCTGGAGGACGGGGTGCTGGCCGACGGCGTACCGGCGTTCCTGCAGATCGTGCCGGTCGCGCTGGTCACGTACGTCGCGTCGTGGTGGTCGTGGATCGTGTCGTCGAACCCGGCCGGGTACTACCGCGACTGGGCGGCGGACAACCCCGACGAGACCGTGTCGTGGATCCCGGACTGGATGGAATCGCTGTGGTACTACCACCAGCAGATGTTCAGCTTCCACACCGGGTTGAGCTCGGAGCACGCCTATGCGGCGAGCCCGTGGGGCTGGATCGTGCAGTGGCGGCCGACGTCGTTCTACTGGGAGCGCACTTCGCCCGGTGAGGGGGCGTGCCCGGCGGACGCGGACGGCGCCTGTGCGGTCGCGGTGACAGCGCTCGGCAACCCGCTGCTGTGGTTCCTGGGGGCGCTGGCGATCGTGGTGACGGTCCTGCTGGGGATCTGGCTGCGCGACTGGCGGGCTCTGGCGGTGCTGTCCGGCGTCGTCGCGGGCTGGGCGCCCTGGTTCCTGTACACCGACCGGACGATCTTCACGTTCTACTCGATCGTGTTCCTGCCGTTCGTGGTGCTCACGCTGTGCTACCCGATGGTGGTGGCCCTCGAGCGTTCGCGCTGGCGGCAGGGCCGGGGTGGCACCCTGGCGGTGATCGCGGGGATCGTGCTCGCCATCGTACTGGTGTCGGTGGCGTTCTACCCGTTCTGGTCGGCGATGCAGGTGCCGTACGACTACTGGCGCGAGGTCATCCGCTTCCAGAACTGGATCTGAMSAHDDGTSTGDQPEVTADAPRPRQELPSRREIHGHRRTDTRGIPVVTGAIKALTGSIPAVGKRSEGAGGPSTGTTAAVPSPAPGTSGHTSSGRTAPEASLASPVATTASPAAPSDGDDSGSATSPAERTGSPDEPEVSHERRLLVALLGERRLALADSRRARLIGWLGTLVVTAVAAVARLWQLGRPETLVFDETYYVKDAHTLGSEGVELQWPDDPNAAFEAGDVSSYLDQAAYVVHPPVGKWMIWLGMEAGGGATNPFAWRLASAVVGILAVLLLVRIARRLFASTTMGLVAGFLLAIDGQAIVHSRTALLDQFLMFWVVVAFGCLVLDREQARRRLAARVGAVLDAGGSVARYGPRLGFRWWRLAAGVSLGLACGVKWSGLWFVAVFGLLTVLWDVTARRRAGIGRWLEDGVLADGVPAFLQIVPVALVTYVASWWSWIVSSNPAGYYRDWAADNPDETVSWIPDWMESLWYYHQQMFSFHTGLSSEHAYAASPWGWIVQWRPTSFYWERTSPGEGACPADADGACAVAVTALGNPLLWFLGALAIVVTVLLGIWLRDWRALAVLSGVVAGWAPWFLYTDRTIFTFYSIVFLPFVVLTLCYPMVVALERSRWRQGRGGTLAVIAGIVLAIVLVSVAFYPFWSAMQVPYDYWREVIRFQNWIPGPT0024545_1465DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_MANNOSYLTRANSFERASE_ACTIVITY,PGPT0024545-pmt-K00728NANA
AK018_061811530COG3525Beta-N-acetylhexosaminidaseATGCTTCCGCTCATCCCGTGGCCCACCCAGGTCACCGAGGCCGACGCCCCCGCCGTCGACCTGCCCGCCGTCCGCGTCGACGCACCCGAGCCGGCGCTCGCCGCCGTCGTCGCCGAACAGCTCACCGCCGCCGGCGTCCCGATCTCCCAGGCTGCCGACGTCGGCAGCACGCCGCGAGATCGGCACTCCGAGGTGCCGACCTCGCCGCAGAGTACCGACGTCGGCACTCCGGGCGGGGTCGTGACGTTCACCCTGCGGATCGACCCGGCCGCCGGACCCGACGGCTCCGACAGCCCCGAGCGGTACACCCTGCGCGTCGGCGACGGCGAGATCCGTGCCACCGCCGCCGAACCCGTCGGGCTCCTGCACGCCGCGCGCACCCTGCGCCAGCTCGTGGTCCCGGCCGCCACCGACGGCTCCGGCGACGGCGCCGCCCGGGTGCCCGCCGTCGTCGTGCACGACGCCCCGCGCTACACCTGGCGCGGCCTGAGCTTCGACGTCGTGCGGCACTGGTTCGGCCCGGACGACATCCGTGCGGTCGTGGACCTCGTCGCCGCGTTCAAGCTGCGGGTGCTGCACCTGCACCTGACCGACGACCAGGGCTGGCGCATCGAGATCCCCTCCCGCCCGGAGCTCGAGAAGGCCTCCGACAACCAGGTCGGCGGCGGCACGGCCGGCTACCTCACCGTCGACGACTACGCCGCGCTGCAGGAGTACGCCGCCGCGCGGTACGTCACGATCGTGCCGGAGTTCGACATGCCCGGGCACGTCAACGCCGCCACCCACGTCTACGGGACGCTGACCTCCGACGGGCTCGCCACCGACGCCTACGACGGCATCGAGGTCGGGTTCTCGCGCCTGTGGTTCGACAACCCGGCCACCGAGCCGTTCCTGCGCGACGTGATCGGCGACCTGGCGCGCATGACCCACGGCGAGTGGGTGCACGTCGGCGGCGACGAGGTGCTCACCATGGACCACGGCGAGTTCGCGCAGTTCGTCGAGCTCGCCGCCCGGATCGTGCGCGAGCACGGCAAGACGCCGATCTTCTGGCAGGAGGGCGCCCGCGGCCCCGTCGAGCCCGGCACCCTGCTGCAGTACTGGGAGCCCAAGGGCGAGGAGTTCGAGCGGTTCGTCGCCGCGGCCGACGCCGGGGCACGGTTCGTCATGTCGCCCGGCAACCACGCCTACCTCGACATGAAGTACACGTCCGAGCACCCGCTCGGGCTGGAGTGGGCCGGCACCGTCGAGCTGCGCGACTCCTACGAGTGGGAGCCCACGGCCGTCATCGACGGGCTGCCGGCGTCCGCGGTCGAGGGCGTGAGCGCCGCCGTCTGGACCGAGACCCTGACGACGCGCGACGAGCTGTTCTCGATGCTGCTGCCGCGCCTCGGCGCCGTGGCGGAGGTCGCCTGGGCGGCGCCCGACGCGAAGGACTGGGAGTCGTTCCGCGGCCGCACCGCCGCCGCGGCGCCGGCCTGGAGCACCGCCGGCTGGGCGTTCCACCCCACGCCGCAGGTCGACTGGCGGTAGMLPLIPWPTQVTEADAPAVDLPAVRVDAPEPALAAVVAEQLTAAGVPISQAADVGSTPRDRHSEVPTSPQSTDVGTPGGVVTFTLRIDPAAGPDGSDSPERYTLRVGDGEIRATAAEPVGLLHAARTLRQLVVPAATDGSGDGAARVPAVVVHDAPRYTWRGLSFDVVRHWFGPDDIRAVVDLVAAFKLRVLHLHLTDDQGWRIEIPSRPELEKASDNQVGGGTAGYLTVDDYAALQEYAAARYVTIVPEFDMPGHVNAATHVYGTLTSDGLATDAYDGIEVGFSRLWFDNPATEPFLRDVIGDLARMTHGEWVHVGGDEVLTMDHGEFAQFVELAARIVREHGKTPIFWQEGARGPVEPGTLLQYWEPKGEEFERFVAAADAGARFVMSPGNHAYLDMKYTSEHPLGLEWAGTVELRDSYEWEPTAVIDGLPASAVEGVSAAVWTETLTTRDELFSMLLPRLGAVAEVAWAAPDAKDWESFRGRTAAAAPAWSTAGWAFHPTPQVDWRPGPT0012150_4071DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSAMINIDASE,PGPT0012150-HEXA_B_like|exo|chb-K12373NANA
AK018_061821650hypothetical proteinATGGAGTACGTGCCTGCGCGAAACGTCCGATTCGTCCTCGTGGTGCTCGGCCTCGTCGCCCTCGTCGGCTGCGGTCCGGCCTCGCCCGAGCCCGTCCCGGAACCCGACGGCCCCGCGGTGCACCGCGTCGTCGACGCACCCGACGCGCACACGGTGCTCCTGGACGCCGCGGAGCCGGCCGAGCTCGCCCTCACCGCGAGCCAGCAGGTCTACCGCCGGGCGCCCGTCGTCGTGCTCGCGGCGGAGACCCGCGACGACGACGGCGCCCACCTGCGTGCGGTCCACGCCGCGGCCGCGGAGGAGCTCGAGGCGCCGGCCCTGCTGGTCGGCGGCTCCGTGTCGGAGCACGGCGTGACCGACGAGCTCGAACGGCTCGGTGCGCGGGTGGCGGTCGTCGTCGTCCCCGACCCGTCATCCGCTGCCGACGGCTCCGACGACGGCTCGGGAGCGGCGCCGTCGGCGTCCGCGACGCCGGCCCCGGCGTCGGCGGAGAGCGTGGCGGAGGCGGCCGGCGTGGAGACGGTCCGGCTCGAGGTGTCCGACCCGCTGCCGAGCGTCGAGACCGAGCGGTCTCTGCCCGACGACGACGCCGAGCGGCTGCGGGCGGACGTCGACGCCGCGCTCGCCGGGGCGCCGACCGGCGCGGCACCTGCCGAGTCGTCGACCTTGCGCGAGGTCCTGGCGCTCACCGACCCGCAGCCCGGCCACGAGGCGGCCGTCGCGACGCTGCGCGCCGCAGGAGCGGTGGACCATGCCGTGCCCGGCGGTGACATCGCAGGCTCGCCGGAGTCGATCGAGCGGATCGACGCGGCGCAGGCGCTCGCGGTGATCGGCGTCGGCCCGTCCTTCGGGACGCCCGCGGAGTTTGCGTGGCGGGTCGCGGCGGCCGAGCGGGGCGACCTGCTGCCGACCGGCACCCAGCACCTGCTGCCCGCCCGGTACGTCTCGGTCGCCGGGGACCGACGCTCCGACCCCGCCGACGTGGTGGCCGAGGCCGCCGGGACGGCCGAGGCCTACGCCGGGCTCGACGGTGGGCCGGTCGTGCCGACCGTCGTCGTGCAGGCGAGCGCGGCGGCCGGGCACCCCACCGAGGACGGCGACTGGGTCGCGGAGGAGCCCGCCGCCGAGCTCGAACCGCTGGTCGACGCCGCGCGGGAGGCCGGCCAGTACGTGCTGCTCGACGTCGGTGCGGGGACGGGCGCGCTGGTCGAGGAGATCGAACCCTACGAGGACCTGCTGGCCCGTCCCGGCGTGGGTGTCGCGCTGCACCCCGAGGACCGGCGGTCGGACGGCGTCAACCCGCCCGGGCAGGTCCCGATGGCGGAGCTGCGGGACGCGATCGCCTATATTGAAGGAGTGGTAACGAATCACGGTCTGCCCCCAGCGATGGTCGTCGTGCACCAGACACGACCCGAGTCCGTCGTCGACCGTGCCCAGCTCGGCAGGGCGGCGGCCGGCGCCGCCGTCGAGGTCGTGGTCACCGCGGACCGCACCGGTGCCATGACCGCCACCGACTGGGTGTGGGGGCGAGTGACCGACGACCTTCCCGACGGGGTCCACCCCGGCTGGTCCGGACCATCGCTGGTCCCGTACCAGACCCCCGACCTCGTCCCGACGGACCCGGCGCCGCTGCTCGTCGCCGGGTCCTGAMEYVPARNVRFVLVVLGLVALVGCGPASPEPVPEPDGPAVHRVVDAPDAHTVLLDAAEPAELALTASQQVYRRAPVVVLAAETRDDDGAHLRAVHAAAAEELEAPALLVGGSVSEHGVTDELERLGARVAVVVVPDPSSAADGSDDGSGAAPSASATPAPASAESVAEAAGVETVRLEVSDPLPSVETERSLPDDDAERLRADVDAALAGAPTGAAPAESSTLREVLALTDPQPGHEAAVATLRAAGAVDHAVPGGDIAGSPESIERIDAAQALAVIGVGPSFGTPAEFAWRVAAAERGDLLPTGTQHLLPARYVSVAGDRRSDPADVVAEAAGTAEAYAGLDGGPVVPTVVVQASAAAGHPTEDGDWVAEEPAAELEPLVDAAREAGQYVLLDVGAGTGALVEEIEPYEDLLARPGVGVALHPEDRRSDGVNPPGQVPMAELRDAIAYIEGVVTNHGLPPAMVVVHQTRPESVVDRAQLGRAAAGAAVEVVVTADRTGAMTATDWVWGRVTDDLPDGVHPGWSGPSLVPYQTPDLVPTDPAPLLVAGSNANANANANA
AK018_06183975hypothetical proteinGTGCACGACGAGATCACCCAGGTCGCCCGCCACCGCCAGGTCCGCGGCGGAGCCCGTCTGGCGGGCGTGGTGTCGGACCTCGCCCGCCCCGTCACCGTGGTCGACTCCTCGATGCCGGTGGGCCAGCTCGAGGTGATGTTCCGCAACCCCGAGGTGACCTGCGTCGTCGTGCAGGAGGCAGGGGGCGAGCGCACCGGCATGATCATGCGGACCGGGCTGACCGCGGCGCTGACGGGCCGCCTGGGCTACGGACGGGCCGTCCTCGAGCGCAAGCCGGTCGCGAGCGTCACCGACTGGACGCCCATGGTGGTACGCCCGGACGACGCTGTCTCCACGGTCGCCACCCGGGCCATGGAACGCCCCGAGGAGCACCGGTACGACGACGTCCTGGTCGCCGGGCGCACCTGGGGGAGCGCCGGGACGGCCGATCTCATGCGGTCGCTGGTCGCCGCCCTGGCCGAGCGGTCCTCCCAGGACCCCCAGACCCGCCTGCCGACGCGTGCCGCGACCTGGCACTCCCTCGCGCGGCGCTGCGACCTGGTGCGGACCTCCGGCACCCGGGTCGTCGTCGTGCTGCTGGACGTGCGGGGCATGTCGCGGCTCAACGCACGGCACGGGCTGGCTGTCGGGGACACGGTCCTGGTCGAGCTGGCCCACCGGCTGCGGACCGGCCTCCCACGCGGGTGCGAGGCCGGGCGGGTGGACGGCGATCGGTTCGCGGTCCTGGCGACGCTGCCCCCGATGGACGACATCCACGCGGCCGCCTCGTCGGACCAGCTGCGCCGGCACGTGCTCGCCCAGCTGGTGGAACCCTCCGGCGGCGTGGACGCACCGGCCTGGCCCGAGCTGCGGTCGGCCGTCGTCTGGTCGGTGGCCGGTGCCGCCGTCGCCGAGGAGCTGGTGCGCGAGGCCGAGTCCCGGCTCGCGCGGACGGCCCTGCCCGTCGAGACCGCCGCCCGGGTCCCGCAGAGCTGAMHDEITQVARHRQVRGGARLAGVVSDLARPVTVVDSSMPVGQLEVMFRNPEVTCVVVQEAGGERTGMIMRTGLTAALTGRLGYGRAVLERKPVASVTDWTPMVVRPDDAVSTVATRAMERPEEHRYDDVLVAGRTWGSAGTADLMRSLVAALAERSSQDPQTRLPTRAATWHSLARRCDLVRTSGTRVVVVLLDVRGMSRLNARHGLAVGDTVLVELAHRLRTGLPRGCEAGRVDGDRFAVLATLPPMDDIHAAASSDQLRRHVLAQLVEPSGGVDAPAWPELRSAVVWSVAGAAVAEELVREAESRLARTALPVETAARVPQSPGPT0026000_593DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0026000-tpbB-K21021NANA
AK018_06184855yvgN_3COG0656Glyoxal reductaseATGATGCTGAACGAGACCTACACGCTCTCGAACGACCTGACGATCCCGAAGCTGGGTCTGGGGACCTGGTTCATCGACGACGACGTGGTCGCGCAGGCCGTCCGTGACGCCGTCGAGATCGGCTACCGCAACATCGACACCGCCCAGGCGTACGGCAACGAGCGCGGTGTCGGGGAGGGCGTGCGTACCAGCGGCGTCCCGCGCGAGGAGATCTTCGTGTCGACCAAGCTGGCCGCCGAGGTCAAGACCTACGACGACGCCGTGGCGGCGATCGACGGGTCCCTGGAGACCATGGGGCTGGACTACGTGGACCTGATGCTGATCCACAGCCCGCAGCCCTGGGACGACTTCCGGGGTGGCGACTACGCCGACGGCAACCGTGAGGCCTGGCGTGCTCTCGAGGAGGCGTACGAGGCGGGCAAGCTGCGGTCGATCGGGGTGTCCAACTTCGAGCAGAAGGACCTGGAGAACCTGCTCGCCGGCGCCACGGTGAAGCCCCACGTCAACCAGCTGCTGGTGCACGTGGGCAACACGCCCTTCGAGCTCCTCGAGTTCTGCGAGAGCCAGGGCATCCTCGTCGAGGCGTACTCACCCATCGCGCACGGCGAGATCCTCGAGAACGCGCACGTGGCCGAGATGGCCGCGAAGTACGGCGTGACGGTGCCGCAGCTGTGCATCCGCTACACGCTGCAGCTCGGCACCGTGCCGGTGCCGAAGACGGCCAACCCCGCGCACATGCGCAGCAACGCCGAGGTCGACTTCGAGATCTCGGACGAGGACATGGAGACGTTGTGCGGCGTGCACTTCCGCGACTACGGCGACAGCAGCGTCTTCCCCGTCTACGCCGGCGGCTGAMMLNETYTLSNDLTIPKLGLGTWFIDDDVVAQAVRDAVEIGYRNIDTAQAYGNERGVGEGVRTSGVPREEIFVSTKLAAEVKTYDDAVAAIDGSLETMGLDYVDLMLIHSPQPWDDFRGGDYADGNREAWRALEEAYEAGKLRSIGVSNFEQKDLENLLAGATVKPHVNQLLVHVGNTPFELLEFCESQGILVEAYSPIAHGEILENAHVAEMAAKYGVTVPQLCIRYTLQLGTVPVPKTANPAHMRSNAEVDFEISDEDMETLCGVHFRDYGDSSVFPVYAGGPGPT0001320_1275DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
AK018_061861143hypothetical proteinGTGGACACCTCGCCGGCAGGACTCGCAGCCCTCGCGCTGATCGTCCTGCTGCTCGGGTTCTGGGTCCCGCAGCAGGTGCACCGGCGTCAGCTGCTCGCCGACGCCCGCACGGGCGACCGGTTCTCCGGCGGGCTGCGGGTCCTGACGGTGGCCGACGGAGCAGGGAAGGGGCGGCCGATGCGTCCGACTCGCACGACCGGCGGGACCGGTGGGAGCGTCCCCCTCGTGGGCCCGCCACCGGCACGGTCCTCCTCGACGGCTCCCGGTCCCGGCCGGCTCGCCGTCCTGGAGCGGCGCGCCGCCCGCGCGCGGCGCCGACTGGTGATGACGCTGGCGCTCGTCCTGCTCACGGCGGGCGCCTGGACCGCCGTCGGCCTCGGCTACCTGGTCTGGCAGGCGGCCGTGGTGCCCTCGGCGCTGCTCCTCGTCGTGCTCGTCCTGGGGCGGTTGGCGGTGCTGTCCGCCCGGCGGTCCGACGCGCGCTGGCGTGCCGAGCGCCGGGCCCAGCAGCAGCGCGCCACCCAGCGCCGCACCCTGGCGCACGGCGGCCCGTACGCGCCGCGCAACCGGGCCCGCGTCACGGGACGGGCCGTGCACCCCTCGGACACGAGCACCCAGATGATCCCGCGGGTGCAGACCGACGGCACGCCGTCGGCACGCGCACGTGCGGCGTCGTCCCCGGCCGGTAACGACGCGGGCGCCGAGCGCGCGGACGACGCCGACCCCGAGCGAGGCGCGGCCGGCTCCGGCCGCGCGGCCGACTCCGGTCACGAGCGGGTCGATTCCGGCCCGACGGCGGACGCCGGCCCGGTCCTCGGCGCCTCCGGCGGGACGCCGTGGCGCGTCGGGGGAGAGCCGTGGGAGCCGGTCCCCGTCCCGTTGCCGACCTACGTGACCAAGGCGCAGGCGCCGCGGCGTGAGCAGGAGACGACCGTGCCGGTGCACGCCCCGCGTCCGACGACGGCGGCACCGTCGGGGAGCGACGCCCCGTCCGTCGTTCCCGACCACGGGACGCACGAGGACTCGGCCGCACCGCCGTCGGGCGACTCGGCGCAGCCCGCCGGCGACGAGCCGCGGCCGAGGACCGAGACCCTCGGTCTGCCGCTGGAGCAGATCCTCGCGCGCCGCCGCGCTGCGGGCTGAMDTSPAGLAALALIVLLLGFWVPQQVHRRQLLADARTGDRFSGGLRVLTVADGAGKGRPMRPTRTTGGTGGSVPLVGPPPARSSSTAPGPGRLAVLERRAARARRRLVMTLALVLLTAGAWTAVGLGYLVWQAAVVPSALLLVVLVLGRLAVLSARRSDARWRAERRAQQQRATQRRTLAHGGPYAPRNRARVTGRAVHPSDTSTQMIPRVQTDGTPSARARAASSPAGNDAGAERADDADPERGAAGSGRAADSGHERVDSGPTADAGPVLGASGGTPWRVGGEPWEPVPVPLPTYVTKAQAPRREQETTVPVHAPRPTTAAPSGSDAPSVVPDHGTHEDSAAPPSGDSAQPAGDEPRPRTETLGLPLEQILARRRAAGNANANANANA
AK018_06187636rimJ_3COG1670[Ribosomal protein S5]-alanine N-acetyltransferaseATGAGCGACGCCAAGAGGTGGGCCGTGACCAGGCCGTGGCCCGTGACGCTGCGTGAGGACACGCCGTCGGGCGCCGTGGTGCTGCGCCCGCTGCGCCGCCGCGACGGCGGTGAGTGGATGCGGCTGCGGCGCGTGAACGCCGACTGGCTGGAGCCCTGGGAGGCGACGACGCCGGGGGAGCGGCCGGGCGCGACGACGTTCGGCGAGTACGTGCGTGCGCTGACGTCGCAGGCGCGTGCCGGCACGGCGCTGCCGTTCGTCATCGAGCTGGACGGGGCGCTGGCCGGGCAGCTCACCGTGTCGGCGATCCAGCTCGGGTCGCTGTGCTCGGCGAGCATCGGCTACTGGGTCGCCCGCGAGCACGCCGGACGCGGCGTCGTGCCGACCGCGGTGGCGATGGCCACCGACTACTGCTTCCAGATCGTCGGGCTGCACCGCATCGAGATCAACATCCGCCCGGAGAACGCGGCGAGCCTGCGGGTGGTCGAGAAGCTCGGCTTCCGCGACGAGGGGATCCGCGAGCGGTACCTGCACATCCAGGGTGCCTGGCGCGACCACCGCTCCTTCGCGCTGACCGCGGAGGAGGTGCCGCAGGGCCTGCTGGCCCGGTGGCAGCAGGTGCGCGACGGCGCGTAGMSDAKRWAVTRPWPVTLREDTPSGAVVLRPLRRRDGGEWMRLRRVNADWLEPWEATTPGERPGATTFGEYVRALTSQARAGTALPFVIELDGALAGQLTVSAIQLGSLCSASIGYWVAREHAGRGVVPTAVAMATDYCFQIVGLHRIEINIRPENAASLRVVEKLGFRDEGIRERYLHIQGAWRDHRSFALTAEEVPQGLLARWQQVRDGANANANANANA
AK018_06188654COG02125-formyltetrahydrofolate cyclo-ligaseATGCACGGCGACCTCAAGCCCTCCAGCGTCCACCAGCCCTACCCGGTCGCCCCCGGGATGGAGCCCGAGGACGCCAAGGACGAGCTGCGGCGCGCCATCCGGCACCAGCGCGAGGGCAGGTCGCCGCGACTGCGCGAGGAGGCCGCCTCCGCGTTCGCCGAGGTGCTCGCCACCGTGCCCGCCGTCCAGGAGGCCGACGTCGTGGCCACCTACGCGGCACGCCCCACCGAGCCCGGCACCGGTGCCCTGCTGGAGCGGCTCGCCGCCCGCGGCACCCGCATCCTGCTGCCGGTCCTCGGTGCCGGCCTGGCCCGCGACTGGGCCGAGTACACCGGCCCCGACGACCTGCTGGAGCGTGCACCGGGTCGCCCGCCCGAGCCGGGCGGCCAGAACCTGGGGGCGGACGCCATCCTCGAGGCCGACGTCGTCATCTCCCCCGCGCTGGCCGTGGACACCTCGGGCACCCGCCTCGGTCAGGGCGGCGGCTGGTACGACCGCGTGCTCAAGCAGGCACGCCCCGAGGTCCGGGCGGTCGCGGTGGTGTTCCCCGAGGAGCTGTACGACGCCGCCGAGCGCCCCCTGCCGTTCGAGAGCCACGACGTGCGCGTGCACGCCGTGGCCACCCCCGAGGGCTGGTGGCCGCTGCCGGCCTGAMHGDLKPSSVHQPYPVAPGMEPEDAKDELRRAIRHQREGRSPRLREEAASAFAEVLATVPAVQEADVVATYAARPTEPGTGALLERLAARGTRILLPVLGAGLARDWAEYTGPDDLLERAPGRPPEPGGQNLGADAILEADVVISPALAVDTSGTRLGQGGGWYDRVLKQARPEVRAVAVVFPEELYDAAERPLPFESHDVRVHAVATPEGWWPLPAPGPT0008170_959DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934NANA
AK018_061892658quiP_2COG2366Acyl-homoserine lactone acylase QuiPGTGTCAGAGCGCGCCACCTCCGAACCGACCGGACCCGACGAGCCGCAGACGGCCGACGACGACCGCCCCGACGCCGGACCGAGGCCCGGCTCCCGCCTGCGCCGGGCCGCCGTCGGCCTGAGCGTGCTGATCGTGCTCGCCGTCGTGGCGTCGGTGTCGTTCACGGTGGTCACCGTGCGCGCCCCGCTGCCCGAGGTCAGCGGGACCCAGACCGTCCCGGGGCTCGAGGGTGAGGTGACGGTGCAGCGCGACGCCCAGGGCGTGCCCCACGTGACCGCCTCGAACGCGCAGGACCTGTTCGTCGCGCAGGGCTACCTGCACGCCCAGGACCGGTTCTTCCAGATGGACTACCGCCGCCACGTCACCGCGGGCCGGCTCGCCGAGCTCGTCGGCGACGTGCCCGAAGCGGTGCAGGCGGACCAGGTGATCCGCACGTTCGGCTGGCGCGAGGTCGCCGAGGACGAGTGGGACCTGGTCTCGCCCGAGACGCGCGCCGCCCTGCAGGCCTACGCCCAGGGCGTCAACGCCTACCTCGCCGACCGCGGCCCCGACGACCTCGGCGTCGAGTACACCGTGCTCGGCACCCGGGTGGACCTGTCCGCCCCCGACCCGTGGGACCCCGTCGACTCGCTGGCCTGGCTCAAGGCGATGGCGTGGGACCTGCGCGGCAACTACGACGACGAGCTCGACCGGGCGCTCGCGTTCAGCACCGTCGAGGACGTCGAGCTGGTCGACGAGCTCTTCCCGAGCTTCGCCGCGGGCGGCAACACGCCGATCCTGCAGCAGAGCGACCTCGCCACGGGCGACGGCTCGCGCGCCGAGCAGGCCTCGACGTCCTCGGCCTCCTTCGGTTCGGCGCTGCTCGACGAGGCGGTCGCCTCCGCCCGCGACGCCGTATCCGCGGTGCCGGTGATGGTCGGTCGGGGCGAGGGCACCGGGTCGAACTCGTGGGTCGTCTCCGGCGAGCACACCGCCTCCGGCGCGCCTCTGCTGGCCAACGACCCGCACCTGTCCCTCGAGATCCCGGGCGTGTGGTCGCAGGTCGGCCTGCACTGCGAGCAGGTGGGCGACGAGTGCCCGTACGACGTCGCCGGGTTCGGGTTCGCCGGGTTCCCCGGGGTGATCATCGGGCACAACGCCGACCTGGCCTGGGGCCTGACGAACATGAACGCCGACGTCACCGACTTCTACATCGAACGGGTCCGCGACGACACGTGGCTGCGCGACGCCGAGTCCGAGGAGTGGGTGCCCATGGAGACCCGCACCGAGACGATCCGGGTCAACGGCGGGGAACCGATCGAGCTGCAGGTGCGGTCCACCGACCACGGGCCGGTGCTGTCGTCGGCGCTCGACGTCGACGAGGTCGTCGGCGCTCCCACCGAGACCGGGACCGGCTTCGGCGAGTACGCGGTGTCTCTCGCCTGGACGGCGCTGGAGCCGGGGCGGACGGCGGACGCCGTGCTCGCCATGATGACGGCGGCCGGCGCCCAGGACGTGCAGGACGCGGCCGCCCTGTTCGACGTGCCGGCCCAGAACATCGTGTTCGCCACCGCCGACGGGCACATCGGCTACCAGGCGCCGGGCAGGATCCCCGTGCGGGACCGCGTCCGGGGGCCCGTCCCCTCCGACGGCACGTGGCCGCGGCCCGGCTGGGATCCCGCCTACGACTGGCAGGGGTACGTGGACCCGGCCGACATGCCGCGCTCCCTGGACCCGGAGTCCGGATTCGTCGTCGCCGCCAACCAGGCCGTCCTGCCGGCGGGCACGCGACCGTACCTGTCGAGCGACTGGGACCCCGGGTTCCGGTCCGAGCGCATCCGTTCCCTGCTGACGGAGCAGATCGACGCCGGGCGGCCGTTCACCGTCGAGGACATGGAGCGCATCCAGCAGGACGACTGGTCACCCTTCGCGGACGCGCTGGTGCCCGTGCTGCTCGACGTCGACATCCCCGACTCCTACGACGCCGCGGGCCAGGAGCTCCTGGCCGGCTGGGACTACTCGACGGGCACGGACTCGGCGGCCGCCGCCTACTTCAACGCCGTGTGGCGCAACCTGCTCGCCGCGACCTTCGAGGACGACCTGCCCCCGCAGATGGCGCCGACCGGTGGCGCGCGCTGGCTGGTGGTGGTCCGCGACATGCTGGAGCGGCCCGACGACCCGTTCTGGGACGACCGCTCCACCGTCGGCGTGGTCGAGACCCGCGACGAGGCGCTCCTGCGGGCCCTCGTGACGGCCCGACGGGACCTCACCGTCGAGCTGTCCAAGGACCCGGCCGACTGGGACTGGGGCTCCGTGCACGAGCTGTCCCTGCAGCACCCCGTCCTGGGCGGCGACGACGTGCCGGCGCTGGTGCGCGACTACGTCAACCCGCGCCCGGTGCAGCTGCCCGGCGGCAGCTCCATCGTCAACGCCACCGCCTGGGACGCCTCGACCGGCAGCTTCGCCGTCACGACGGGTCCGTCGATGCGCATGGTCGTGGACCTGGGCGACCTGGACTCCTCGACGTGGGTCGAGGTCACCGGGGTGTCCGGCCACCCGGCGTCGCGGCACTACGGCGACCAGCTCGACGCGTGGGCGGCGGGGGAATCGTTCCCGTTCCCGTTCTCCCGCGAGGCGGTGTCGGGCGCCGCCGAGGAGACCGCCACGCTGCAGCCCTGAMSERATSEPTGPDEPQTADDDRPDAGPRPGSRLRRAAVGLSVLIVLAVVASVSFTVVTVRAPLPEVSGTQTVPGLEGEVTVQRDAQGVPHVTASNAQDLFVAQGYLHAQDRFFQMDYRRHVTAGRLAELVGDVPEAVQADQVIRTFGWREVAEDEWDLVSPETRAALQAYAQGVNAYLADRGPDDLGVEYTVLGTRVDLSAPDPWDPVDSLAWLKAMAWDLRGNYDDELDRALAFSTVEDVELVDELFPSFAAGGNTPILQQSDLATGDGSRAEQASTSSASFGSALLDEAVASARDAVSAVPVMVGRGEGTGSNSWVVSGEHTASGAPLLANDPHLSLEIPGVWSQVGLHCEQVGDECPYDVAGFGFAGFPGVIIGHNADLAWGLTNMNADVTDFYIERVRDDTWLRDAESEEWVPMETRTETIRVNGGEPIELQVRSTDHGPVLSSALDVDEVVGAPTETGTGFGEYAVSLAWTALEPGRTADAVLAMMTAAGAQDVQDAAALFDVPAQNIVFATADGHIGYQAPGRIPVRDRVRGPVPSDGTWPRPGWDPAYDWQGYVDPADMPRSLDPESGFVVAANQAVLPAGTRPYLSSDWDPGFRSERIRSLLTEQIDAGRPFTVEDMERIQQDDWSPFADALVPVLLDVDIPDSYDAAGQELLAGWDYSTGTDSAAAAYFNAVWRNLLAATFEDDLPPQMAPTGGARWLVVVRDMLERPDDPFWDDRSTVGVVETRDEALLRALVTARRDLTVELSKDPADWDWGSVHELSLQHPVLGGDDVPALVRDYVNPRPVQLPGGSSIVNATAWDASTGSFAVTTGPSMRMVVDLGDLDSSTWVEVTGVSGHPASRHYGDQLDAWAAGESFPFPFSREAVSGAAEETATLQPPGPT0028075_197DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
AK018_06190339hypothetical proteinGTGCCCACCTACGCCTACCGGTGCGCCGACTGCGGCCACGCCTTCGACATCCGTCAGGCGTTCACCGACGACGCGCTGACCGTCTGCCCGGAGTGCTCGGGCACCCTGCGCAAGCAGTACGGATCGGTCGGTGTGACGTTCAAGGGGTCCGGGTTCTACCGGACCGACTCGCGCGCCGGGTCGTCGTCGAAGAGCTCCGCGGGCGGTTCGTCCTCGTCGAGCAAGGAGTCCTCCTCGGCCAAGGGCTCGTCCTCGTCCGGTGGCGGCAGCTCGTCGGGGTCGTCCTCGTCGGGTTCGGGCAGCTCGTCGGGTTCGGCGTCGAAGGCCGCCTCCGCCTGAMPTYAYRCADCGHAFDIRQAFTDDALTVCPECSGTLRKQYGSVGVTFKGSGFYRTDSRAGSSSKSSAGGSSSSSKESSSAKGSSSSGGGSSSGSSSSGSGSSSGSASKAASANANANANANA
AK018_06191645hypothetical proteinATGGAACGTGACCTCGCACGCGCGCTGCACCGCATCCGGACGCTGATCTGGCGGGCTCGGTTCGTCGTGGCCGCCGGCTGCTGCGGGCTCGCGGCGGCCGTCGCCGTCGACGCCCTGCGACCGCCCCCGCCCCCGGTCGAGCACGTCGTGGTCACCGCGCGGGAGGTGCCTGCGGGCGCGTCGATCACCGCCTCCGACGTCGCCACCACGGCCGTGGCCGCCGACCTGATGCCTGCGGGGCTGGTCACCGACGTCGACGAGCTGGTCGGCCGCACGGCCGCGGTGCCGCTGCCGGCCGGGGTCCCCCTGCACCGCGGCCTGGTCCCCGCCGACGCCGTCCGAGCCCCGGCCGGACGCGTGGTGGTCGCCGTCCGTGTCACCGAGCCGGGCTGGCTGCGCCCGGGAGACCGGGTCGACCTGCTCGCCGGGCAGGGCGACGACGGCGGGAGCCGGCTGGCGCGCCGCGCCCTGGTCCTGCCGCCCCAGGAGGGCCCGGGGTCCGGCGGGTCGAGCGGCGGCCTCCTGCAGGGCACCGGTCCGGCCGCGGACGCGCCGCCGACGCTGGTCGCCGTGGATCCCGACGAGGCCGCCGCCGTCTCCGCGGCATCCGGCGGGCGCACCGTCGTCGCGGTGCTCGTGCCCTGAMERDLARALHRIRTLIWRARFVVAAGCCGLAAAVAVDALRPPPPPVEHVVVTAREVPAGASITASDVATTAVAADLMPAGLVTDVDELVGRTAAVPLPAGVPLHRGLVPADAVRAPAGRVVVAVRVTEPGWLRPGDRVDLLAGQGDDGGSRLARRALVLPPQEGPGSGGSSGGLLQGTGPAADAPPTLVAVDPDEAAAVSAASGGRTVVAVLVPPGPT0016005_1656DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279NANA
AK018_06192405mscL_2COG1970Large-conductance mechanosensitive channelATGCTGGCCGGATTCAAGCAGTTCATCATGCGCGGGAACGTGGTCGACCTGGCGGTCGGCATCGTCATCGGCGGCGCCTTCGCCACCGTGATCACCGCCTTCGTCGACGGGCTGCTGACCCCGCTGATCGCGGCCGTGTTCGGCCAGCCGGACCTGACCGCCGTCGGCAACTTCGAGCTCAACGGCGCGGAGTTCAGCATCGGCCTGGTGCTCGACGCGCTGCTGAAGTTCCTCATCGTGGCCGCCGCGCTGTACTTCTTCGTGGTGATGCCGATGAACCACCTGGCCGAGCGGCGCGCCCGCGGCCAGGAGCCCGAGCCGGAGCCGGTCCCCGAGCCCGACGTGGTGCTGCTCACCGAGATCCGCGACCTGCTGGCGGGCGGCGGGCCGCAGCGGCGCCACTGAMLAGFKQFIMRGNVVDLAVGIVIGGAFATVITAFVDGLLTPLIAAVFGQPDLTAVGNFELNGAEFSIGLVLDALLKFLIVAAALYFFVVMPMNHLAERRARGQEPEPEPVPEPDVVLLTEIRDLLAGGGPQRRHPGPT0013771_726DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013771-mscL-K03282NANA
AK018_06193180hypothetical proteinGTGAGCGACGACCCCGCACCGCAGGACCGCCCCGACGAGGCCGCGGTCCGCCGTCGTCCCCGCCGTGCCGTGCGCCGGGGCACCGAGCGCGAGACCGTCTGGGGCGCGACATCGGACGACGAGGCCGCGCACGACTCCAACGACGAGCGGCTGCGTCGCGACGTCCCGCCCCACTGGTGAMSDDPAPQDRPDEAAVRRRPRRAVRRGTERETVWGATSDDEAAHDSNDERLRRDVPPHWNANANANANA
AK018_061951215entS_4Enterobactin exporter EntSATGCTCGAGGCGATCACCCCCGCCCGGATGGGGACCCCCTTCCGCTGGCTGCTCGCCTCCAGCTGGACCAGCAACATCGGCGACGGCATCGCCCTCGCCGCCGGCCCCCTGCTCATCGCCTCCCTCACCGACTCCGCGTTCCTCGTCGCCCTCGCCGCCCTGCTGCAACGCCTCCCCTGGGTGGTCCTCGGACTCTGGGCGGGGGCGCTCGCCGACCGACTCGACCGCCGCCGGCTCGTCATCGTCGCCAACGCCCTGCGCGCCGTCGTCGTCGCCGTGCTCTGCGCCTTCATCGCCACCGACCACGTGGACGTCACCCTCGTCCTCGTCGCCATGCTGCTCATGGGCGTCGCCGAGGTCTTCGCCGACACCACCGCCCAGACCCTGCTGCCCATGGTCGTCGCACCCCGCGACCTCGGCACCGGCAACGCCCGCCTCCAGGCCGGGTTCCTCACCGGCAACCAGCTGGTCGGCCCTCCCGTCGGGGCCGCCCTCTTCGCCGCCGGCTCCGCCTGGCCCTTCGTCGTGCAGGTGGTGTGCGTGGCGCTCGCCGTGGTGCTGGTCGGCCGGATGGCGCTGCCGGCGGTGCCTCCGCCGTCGTCGTCCGGGACCCGCCGCGAGATCCGTGACGGGCTGCGCTGGCTGTGGCACCACCCGCCGGTGCGCACGCTCGCGCTGGTGATCTTCTCGTTCAACCTCACCTGGGCGGCGCCGTGGGGCGTGCTGGTGCTGTACTCGCTGGAGCGGGTGCAGATGGGCCCCGTCGGCTACGGGCTGCTCATCACGTCCTCGGCCGTCGGCGGGATCCTCGGCACGCTGCTGTACGGGGGACTGGAGCGTCGGTTCTCCCTCGCGAACCTCATGAAGGTCTGCCTGTCGCTGGAGGTCGTGTTCCACCTGGTGCTCGCCCTGACCACGACCGGCTGGGTGGCGATGGTGTGCCTGTTCATGTTCGGCGCGTACACGTTCGTGTGGGGCACGGTCTCCAACACGGTGCGTCAGCGGGCCGTGCCCACCGCCTACCAGGGGCGGGTCGGGTCGGTGTACCTCATCGGACTGTTCGGCGGCATCGTGGTCGGCAACGCCCTCGGGGGCGTGCTGGCCGAGTGGTGGGGGTTGACGGCGCCGTTCTGGTTCGCGTTCGTCGGCGCCGGGATCACGCTCGCGCTGGTGTGGCGCCAGCTCGCGCACATCGCGCACGCCGAGGCTGCCTGAMLEAITPARMGTPFRWLLASSWTSNIGDGIALAAGPLLIASLTDSAFLVALAALLQRLPWVVLGLWAGALADRLDRRRLVIVANALRAVVVAVLCAFIATDHVDVTLVLVAMLLMGVAEVFADTTAQTLLPMVVAPRDLGTGNARLQAGFLTGNQLVGPPVGAALFAAGSAWPFVVQVVCVALAVVLVGRMALPAVPPPSSSGTRREIRDGLRWLWHHPPVRTLALVIFSFNLTWAAPWGVLVLYSLERVQMGPVGYGLLITSSAVGGILGTLLYGGLERRFSLANLMKVCLSLEVVFHLVLALTTTGWVAMVCLFMFGAYTFVWGTVSNTVRQRAVPTAYQGRVGSVYLIGLFGGIVVGNALGGVLAEWWGLTAPFWFAFVGAGITLALVWRQLAHIAHAEAANANANANANA
AK018_06196519hypothetical proteinATGCCGCTCTCCGACGTCGAACCCCGCCTCGACTCCGCCGACCCGGCCGCTCAGTTCGTGGCGTACCTCGACTACTACCGGGCCGCCGTGGCGCGGAAGCTCGAGGGGCTCACCGACGCCCAGCTCACGACCAGCGTGCTGCCGTCCGGGTGGACGCCCGCCGAGTTGCTGGTCCACCTGGTCCACATGGAACGCCGCTGGTTCGTGTGGGGGTTCCTCGGTGAGCAGGTCGACGATCCGTGGGGCGACCACGCCGACGGCGACCCCGAGGGCCCCTGGCGGGTGCCCGACGGCGTCACCGCGGCTGCGCTGGTCGACGCCCTGCACGCCGGTGGGGAGCGGACCCGCGCGGTGCTGGCCGGGCACGACCTCGCCGACCGTGCCGCCGTCGGCGGGCGCTTCACCGCCGACCCGCCGACGCTGCTGTGGATCTGCTTCCACGTGCTCCAGGAGTACGCCCGGCACGCCGGGCACCTCGACGTCGCCCGCGAGCTGGCCGACGGAGCGACCGGGGAGTAGMPLSDVEPRLDSADPAAQFVAYLDYYRAAVARKLEGLTDAQLTTSVLPSGWTPAELLVHLVHMERRWFVWGFLGEQVDDPWGDHADGDPEGPWRVPDGVTAAALVDALHAGGERTRAVLAGHDLADRAAVGGRFTADPPTLLWICFHVLQEYARHAGHLDVARELADGATGENANANANANA
AK018_061981362nanK_3N-acetylmannosamine kinaseATGAACTATTGCGCGTCGGTGGGCTACAGTCAAGGCGTGACCGCACAGCCGACGACGACGCAGCGCACCGCGGGTGCGTCCGCCGGCTCCGGCGAGCGGGCCTCTCGCCAGCACACCCTGCGCGAACGCAACCTGCGCCTCGTCGCACGGGCCGTCTACGACGCCGCGGCCGCCGCCTCGCCCGGCGAGCCGGCCACCGTCCCACCGTCCCGTGCCCACGTCGCCGCCGCCACCGGACTCACCCGAGCGACCGTCTCCACCCTCGTCGACCGCCTCGTCGCCGCCCGCCTCGTCGCCGAGCTCCCGCCCGTGGCCACCCAGCGCGCCGGCCGCCCCGCCGTCCCGCTCGTGCCCGCGCCACGGACCGTCGTCGGCCTCGGGCTCGAGGTCAACGTCGACTACCTCGGCGTGCGCGCCCTCGACCTCGCCGGCGACACCGTCGCCGAGCACGTCGAACCCGGCGCCTTCCACGACTCCGACCCCGCCGCCGTGCTCGCCCGCCTCGGCGCCCTCGCGTCCGACGCCGTCACCCGCCTCGAGGCCGACGGCATGCGAGTCGCCGGCGCCCGCCTCGCCCTGCCCGGCCTCGTCGACGCCCGTACCGGCGAGCTCGAGGTCGCCCCCAACCTCGGCTGGTCCTCCCTCGACCCCGTGCCGCTGCTCGGACTGCCCGACGTCGCGGTCCAGGTCGCCAACGAGGCCAAGCTCGCCGCCCTGGCCGAGCTCGCCGGCGACGCCCCCGACTCCTTCCTCTACGTCTCCGGGGACGTCGGCATCGGCGCCGGCATCGTCGTTGACCGCGCCCTGTTCCTCGCCGAACGCGGGTGGAACGGCGAGGTCGGGCACGTCGTCGTCGACCCCGCCGGACCGCGTTGCACCTGCGGCGCGCACGGCTGCCTCGAGCAGTACGCCGGCAAGGAGTCGATCCTGCGGGCCGCCGGGCTGCCCGGGGACGCGCCGCTCGGCGAGCTCGTCGGGCTGTTGCGGTCCAACGGCGGTCCCCGGGCAGGCGGCGACGGCCTCGGCGTCGTCGGTGGTTCCGGTGCTCCGCCGTCCGACGACGGCACCCCGGCCGCGCAGGCAGGTGCCGCCGTCGGGCGGGCCGGGCGGGCGCTCGGCTCGGCGCTCGCGGACTTCGTGAACCTCACGGGCGTCTCGACCGTCGTGCTCGGCGGGGTGTACACGGACCTGGAGCCCTGGCTGCGGGAGCCGGTCGAGGCAGGGCTGGCCGAGCGGGTGCTCGCGGCGCCGTTCGCGCCGGTGGCGGTCCGGTCCGCGCGGGCCGGCGTCCACGCGGCGCTCAGCGGGGGAGCGCGCGAGGTGCTGCGCGAGGTCGTGGCCGACCCAGCCGCGTGGGGCTGAMNYCASVGYSQGVTAQPTTTQRTAGASAGSGERASRQHTLRERNLRLVARAVYDAAAAASPGEPATVPPSRAHVAAATGLTRATVSTLVDRLVAARLVAELPPVATQRAGRPAVPLVPAPRTVVGLGLEVNVDYLGVRALDLAGDTVAEHVEPGAFHDSDPAAVLARLGALASDAVTRLEADGMRVAGARLALPGLVDARTGELEVAPNLGWSSLDPVPLLGLPDVAVQVANEAKLAALAELAGDAPDSFLYVSGDVGIGAGIVVDRALFLAERGWNGEVGHVVVDPAGPRCTCGAHGCLEQYAGKESILRAAGLPGDAPLGELVGLLRSNGGPRAGGDGLGVVGGSGAPPSDDGTPAAQAGAAVGRAGRALGSALADFVNLTGVSTVVLGGVYTDLEPWLREPVEAGLAERVLAAPFAPVAVRSARAGVHAALSGGAREVLREVVADPAAWGNANANANANA
AK018_061991164xylA_3Xylose isomeraseGTGAGCGACATCAAGTACTCGTTCGGCCTGTGGACCGTCGGCTGGCCGGCCAACGACCCCTTCGGCTCCGCCACTCGGCCGGACCTCGACCCGGCCGAGTCCGTGCGCAAGCTCGCCGACCTGGGCGCCTGGGGCTTCACGTACCACGACAACGACGTGTTCCCCTTCGGCGCCTCGGAGTCCGAGCGCCAGGCCGGCATCGACGCCGTCAAGAAGGCGTCCGAGGAGTCGGGTCTGGTCTGCGAGATGGTCACCACCAACACGTTCAGCCACCCGATCTTCAAGGACGGCGCGTTCACGTCGAACAACCGCGACGTGCGCCGCTTCGGCCTGAAGAAGGTGCTGCGCAGCGTCGACAACGCCGCCGAGATGGGCGCCTCCACGTTCGTCATGTGGGGCGGCCGCGAGGGCACCGAGTACGACAACTCCAAGGACCTGCACGCCGCGCACGCCCGGTACGCCGAGGGCATCGACACCGTCGCCGCCTACATCAAGTCCAAGGGCTACGACCTGCGCATCGGCCTCGAGCCGAAGCCGAACGAGCCCCGCGGCGACATCTTCCTGCCCACCATCGGCCACGCCATCGCCCTGATCGACACGCTCGACAACGGCGACATCGTGGGCCTCAACCCCGAGACCGGGCACGAGCAGATGGCCGGCCTCAACTACACCCACGGCCTCGCCCTGGCCCTGTACTGCGGCAAGCTGTTCCACATCGACCTCAACGGTCAGCACGGCCCCAAGTACGACCAGGACCTCGTGTTCGGCCACGGCGACCTGCTCAACGCGTTCTTCACCGTCGACCTGCTGGAGAACGGGTTCCCGAACGGCGGGCCGCGCTACGAGGGCCCCCGCCACTTCGACTACAAGCCCTCGCGCACCGAGTACCTCGACGGCGTGTGGGAGTCGGCCAAGGCCAACATGGAGACCTACGACATGCTCGCCGCCAAGGCTGCCGCGTACCGGCAGGACCCGGAGGTCCAGGCCGCGTTCGAGCACGCCGGGATCTTCGAGCTCGGGCAGTCGACGCTGGCCGAGGGCGAGTCGTTCGACGCCTTCATGGCCGACACCTCGGTCGAGGGCATCGACGTCGACGCCGCCGCCGAGCGCGACTACGGGCTGGTCAAGCTGCACCAGCTCGCGCTGAAGCACCTCATCGGCTGAMSDIKYSFGLWTVGWPANDPFGSATRPDLDPAESVRKLADLGAWGFTYHDNDVFPFGASESERQAGIDAVKKASEESGLVCEMVTTNTFSHPIFKDGAFTSNNRDVRRFGLKKVLRSVDNAAEMGASTFVMWGGREGTEYDNSKDLHAAHARYAEGIDTVAAYIKSKGYDLRIGLEPKPNEPRGDIFLPTIGHAIALIDTLDNGDIVGLNPETGHEQMAGLNYTHGLALALYCGKLFHIDLNGQHGPKYDQDLVFGHGDLLNAFFTVDLLENGFPNGGPRYEGPRHFDYKPSRTEYLDGVWESAKANMETYDMLAAKAAAYRQDPEVQAAFEHAGIFELGQSTLAEGESFDAFMADTSVEGIDVDAAAERDYGLVKLHQLALKHLIGPGPT0017550_1762DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017550-xylA-K01805NANA
AK018_06200903hypothetical proteinGTGGCGGTCAACTGGGAGCGAATCGGTCAGACAGAGTTCGACCGCGCCATCGACGCGCTCCTGGGCGCGATGTGGCACGCGGTCGATGAAGCGACTTACCACTCTCCCGACGGCCGAGGCGGCGACGGGGGCATCGACTTCGTCGCCGACGCGCCATCGGGCAAGACCATCTACCAGTACAAGTACTTCCCAGACGGGCTACGAACGAGCGGCACCTCCCGCAAGACGCAGATCCGCAAATCGTTCCGCGCAGCTCTCAAACACGATCCCGCTCGATGGGTACTAGTGGCGCCGTGCAAGTTGACGCCCCAGGAACGCACCTGGGTGCTGCAGCTCGGCGACGGTCACGACGTCACTGTTGAGATCCTGGATCGAGTCGAGCTCGATCTCCTGCTCATCAACAACGATGACGTTCGCCGCTACATCGACCGCAAGGTGCTGCTTGAAGACGTACGCGACCACCAGGTGGCAACCGCGGCCGTCACCGATACTGACGATCTCGCTGCCAAGGTCCGGGCGCTCGGAAACAAGGCTGCCGACATGGACCTCTATTGGCGACCTGACTACACACTGGTTGACGGCACCGTGACCGTCACTGCGCGACCAAAACGGCCCGACGCCGAGCGGATAAACCCGATCAAGTTCGACCTCGCCCTGGACGAGGACGCCACACCAGAGCAGCGCGAATCGTTCCGCCGCGTCCTTGGCTACGGAGTAGGTGAAGAGATCGAGTTTCCCGGCGTCGCGACGTTCAAGTCCGGCCCCGACTTCATGCGCACTGACGGACCTGGGACCTTCAGACTTGGCAAGGCAGAGCGCCGCGGTCTCGGTGAGAAAGTTCGCCTTGAACTGGTGACCCGGGACGACTCCCCCCTGGGAACTTATGAGGCTCATCCGATCTGAMAVNWERIGQTEFDRAIDALLGAMWHAVDEATYHSPDGRGGDGGIDFVADAPSGKTIYQYKYFPDGLRTSGTSRKTQIRKSFRAALKHDPARWVLVAPCKLTPQERTWVLQLGDGHDVTVEILDRVELDLLLINNDDVRRYIDRKVLLEDVRDHQVATAAVTDTDDLAAKVRALGNKAADMDLYWRPDYTLVDGTVTVTARPKRPDAERINPIKFDLALDEDATPEQRESFRRVLGYGVGEEIEFPGVATFKSGPDFMRTDGPGTFRLGKAERRGLGEKVRLELVTRDDSPLGTYEAHPINANANANANA
AK018_06201240hypothetical proteinATGGGTGAACCGAACAAGCGCATGGTGCAGCGTCGCGACGACGGCGATTGGGAGGTGCGCCGCCCCGGCGCGAATCGGGCGAGCGCCGTGACCTCAACACAGGCCGATGGAATCAAGCGCGCTCGCGAAGTCCTCGGCAATACCGGTGGAGGCGAGATGCAGGTGCGCGGCCGTAACGGCACGATCCGCGCTCAAGACACGATCCCCGACGGCAACGACCCGCGCCGGTCGAAGGGCTAGMGEPNKRMVQRRDDGDWEVRRPGANRASAVTSTQADGIKRAREVLGNTGGGEMQVRGRNGTIRAQDTIPDGNDPRRSKGNANANANANA
AK018_062022625hypothetical proteinATGCACTTCACGCTGAAGGACTACCAGACCGAGGCGGTCCGGCAGATCCTCACCACGCTCGGCTACGCCCGCGAGGACTGGCACGGGCGGCAGCGCCGGACCGCGTTCGCACTCTCCTCCACCACCGGCTCCGGCAAGACGGTCATCGCCGCAGCCGCGATCGAGGCGCTGCTGCACGGCAGCGACGAGTTCGACGTCGAGGCCGACCCGTCGGCGGTCGTGCTGTGGGTCAGCAAGGACCCGGAGCTCAACAAGCAGACGAAGAGCCGCTTCATCGAGTGCGCCGACCGGATCCCGTCCGGCGACCTGGTGCTGCTCGACAAGGACTACGCCGAGGAGTCGCTGCAGACGGGGACGGTCTACTTCATCAACCCCGACAAGCTCCGCGACGGCGGCTTGTTCGTGAAGCACACCGACACCCGGCACGTCACGTTCTGGGAGATCCTCGCGAACACCATCAAGGACGAGGACAAGACCCTCTACATGGTGCTCGACGAGGCGCACGAGGGCATGAAGGCCCAGACGAGCGGCGAGCAGACCATCGTCCAGAAGATCATCAACGGCAACGGCGTGAACCCCGCGGTACCGGTCGTGTGGGGCATCTCGGCCACGGTGAAGCGCTACGACGAGGCGATGTCGAAGGCGGAGGCGTTCACCAAGGAAAAGAACGTCGTCATTGACCCGAAGGACGTGCAGGACTCCGGCCTGCTGAAGAACGCCCTCACGCTCGACATCCCCGACGAGGACGGCGACTTCTCCACGACCATGATCCGCGACGCCACGCTCGACTTCGTCGAGGTGTGCGAGCTCTGGGACACCTACTGCGACGAGCAAGGCGTCGACCCGGTGGTGCCGCTCTTGATCGCGCAGATCCCGAACAGGACGGCTGGGGAGAAGGACACCGAGAAGGGCCGGAAGGAGGAGGAGCAGATCATCCACCTCGTCCTCGAGACGATCCGCAAGCACTGGCCCGACCTGCCCGTCGACGGAGTCGCCCACGTGCTGGGCGGCCACGCGACGATCGAGATCGGCGCGTACGAGATCCCCAAGGTCGAGCCGCAGAACGTCGAGCACGACCATAGGATCCACGTGCTCATCGCCAAGGACGCCGTCTCGACCGGTTGGGACTGCCCGCGAGCCGAGGTCCTCATCTCCCTCCGCCCCGGCAAGGACGACACCTACGTGACGCAGCTGCTCGGACGCATGATCCGGACGCCGCTCGCGCAACAGACCAGCGTCGAGCGTCTGAATTCCGCCTCGTGCTACCTCCCGCACTTCGACAAGCAGACGGCGAAGCTGGTCGCAGAGGAGATCATGGGCCTGCGCGAGCCGCGCTCGGGCGAGCGGGGCGCGGCCGTCGCGAAGGTGATGCTGAAGCCGGTCACGCTGTACCGCAACGACGAGGTGCCCGCAGAGGTCTTCGAGTTGATCGAGGGCCTGCCGTCGTTCGCGAAGCCAGCGGCGGCACCGAAGCCCATCAAGCGGATCCTGAAGGCCGCCCAGGCGCTCGCCCAGGACGAGCTCGTGCCGGACGCCGACAAGACCGCGCACGAGACGATGTTCGAGGTGCTCGACGCCGTCACCGAGGAGCACCGCGACGCCGTCGAGGCCGCGGCGAAAGACATCGTCACCGCCAACGTCCGCAGGATCCTGGTCCAGCGCGGCGAGGAGGAGGCGACCGACGACACGATGTCCCGGGATGCTGACGCCGCGACCGTCGACGACGCGCTCCGTCAACTGCGACGGCAGATCACGACCTCCGTCGTCAACGGCTACCTCTCGCGCAACATGATGGCTGCGATCAACGTGGCCGCCGAGCGCGGAGAAGGCCCGTGGGCGGTGGACATCACGGCGATCCGCGCCGAGGTCGCGGCCCTCGCGTTCATCGGCGTCGACGTCCAGAAGTCCGTCGAGGACGCCGCCGACTCGCTGGTCCGGCTCTGGCTGACGACCAAGGTGAAGGCGATTGCGAAGCTCCCCGACTCCCGCCAGCCCACGTACGAGGCGATCCAGGACATGGCCCGGGAGCCGGAGCCCGCCCCGATTGAGATCAAGGCCGACGACCGCGTCGACTCCGTCGACACGGACAGGAGCCCGCTGCCGACCGAGAAGAAGCATCTCCTCGCCACCGCGGACGGCGACTTCCCGCTCGAGCTGAAGATGGCTAAGAACCGGTGGGAGCGCGCGACGATCAAGCACGAGCAGAGCCTCGGCACGCTTGCCGGGTGGTACCGCAACCCGTCGGCAGCTGGCGAGCACTCGCTGCGGATCGCGCACAAGTCGGGTGACTCGTGGAAGTCCGTGCAGCCCGACTTCGTGTTCGTGCACGAGACCGACAACGGCCTCGCACCGTCGATCGTCGACCCGCACGGCGCTCATCTTGGCGACTCGGCACCGAAGCTGAAGGCGTTGGCGGAGTACGCGGACGAGTACGGCGACCAGTTCGAACGGATTATCGCCGTGGGCGTCGAGAACGACGACGTGCTCTACGGCCTGGACCTGAAGAACTCGAAGATCCGCCGCGCGGTCTACGAGTCCCCGGCAGACACCGACTCGATCAAGCGGCTGTACGCGGACCACGGCGTGAAGTACACGACTATCCCGGAGGATGTGCTGACAACGTGAMHFTLKDYQTEAVRQILTTLGYAREDWHGRQRRTAFALSSTTGSGKTVIAAAAIEALLHGSDEFDVEADPSAVVLWVSKDPELNKQTKSRFIECADRIPSGDLVLLDKDYAEESLQTGTVYFINPDKLRDGGLFVKHTDTRHVTFWEILANTIKDEDKTLYMVLDEAHEGMKAQTSGEQTIVQKIINGNGVNPAVPVVWGISATVKRYDEAMSKAEAFTKEKNVVIDPKDVQDSGLLKNALTLDIPDEDGDFSTTMIRDATLDFVEVCELWDTYCDEQGVDPVVPLLIAQIPNRTAGEKDTEKGRKEEEQIIHLVLETIRKHWPDLPVDGVAHVLGGHATIEIGAYEIPKVEPQNVEHDHRIHVLIAKDAVSTGWDCPRAEVLISLRPGKDDTYVTQLLGRMIRTPLAQQTSVERLNSASCYLPHFDKQTAKLVAEEIMGLREPRSGERGAAVAKVMLKPVTLYRNDEVPAEVFELIEGLPSFAKPAAAPKPIKRILKAAQALAQDELVPDADKTAHETMFEVLDAVTEEHRDAVEAAAKDIVTANVRRILVQRGEEEATDDTMSRDADAATVDDALRQLRRQITTSVVNGYLSRNMMAAINVAAERGEGPWAVDITAIRAEVAALAFIGVDVQKSVEDAADSLVRLWLTTKVKAIAKLPDSRQPTYEAIQDMAREPEPAPIEIKADDRVDSVDTDRSPLPTEKKHLLATADGDFPLELKMAKNRWERATIKHEQSLGTLAGWYRNPSAAGEHSLRIAHKSGDSWKSVQPDFVFVHETDNGLAPSIVDPHGAHLGDSAPKLKALAEYADEYGDQFERIIAVGVENDDVLYGLDLKNSKIRRAVYESPADTDSIKRLYADHGVKYTTIPEDVLTTNANANANANA
AK018_062031578hypothetical proteinATGCTGTTCACGTACCACGGCAACGTCGACGTGATCTACATCGACCCTCCGTACAACACCGGTGGCAAGGGGTCCTGGCTCTACAACGACGACTACGTCGACACCGACGACTCCTACCAGCACTCGAAGTGGCTCGCCTTCATGGAGCGCCGGCTCAAGCTCGCGAAGAGGCTCCTGAAGCCGAGCGGAGCGATCATGGTGTCGATCGGCGACCACGAGCAGCATCGGCTGCGGATGCTGATGGACGCGGTCTTCGGCACCGAGAACCAGGTGGCTCAACTCGCCGTCGAGATGTCGACGACCTCCGGCCCGAAGACGACGAACGCACAGCAGGGCACCATCGTCAAGAACGTCGAGTACGTCCTGATCTATCGACGCTCCGCTGCATTCGACACCCAGGTCCGGCACACCCCGCTGTACGACTCGGTCAAGGGCTGGGACAAGGACTACTCGCTCTGGCTCAACGACGACGGCACTATCACGAACTTCTACGAGGAGCTGGCGGCGGATCCCTCGGTCCGCGCGGACATCGTGGCCGCCAAGCTGGTCAAGAAGGACGGCACGTTCCAGGGTGCATCGGCGATGGATCGACTGCTCGCGTTCTCCGACGCCGCCAATGCGTTCATCGAGGCCAACCTCGACCGCATCGCACGACGCGACAACCCCCCTGTGTCCGTGAAGGACGTGGATGCTCCCGTCAGAGGATGGATCGAGGTCGAGGCCGATCACCGCACATACCTCGTCACCAGGTTGAGGAGCGGCACGATCAACCAGGTCTACACGCTGCGGCGGAACTACCGAGTGTCCGATGAGAACAACGGCAAGCTCGGCCGCTCGGTCATCCGAGGAGACCTCTGGCGGGGCTTCTATCAAGACATGGGCACCGTGTCCCGCGAAGGCGGCGTCGGGTTCTCGAACGGCAAGAAGCCGGTGCGGCTCATCCGGCAGCTCGTCAGGTGGGCGAACAACTCGCCTGATGCGCTGATCCTCGACTTCTTCGCCGGCTCGGGCACCACGGCTCATGCCGTGATGGCCATGAACGCCGAGGACGACGGCAGGCGAACGGCCGTTCTTGTCACGAACAACGAGGTAAACGAGGAGACGTCGAAGAAACTGCGGAGAGCGGGCCACCGCCCCGGCGACGATGAGTGGGAGTCAGGCGGCGTCTGCAGAGCGGTGACGATCCCGCGCCTCACGAACGCCGCAGCCGCCACGGACGCCAACGTCGAGTTCCTCACCCTCACCTACGAGAACCCGGCTCTGGTCGAGCTCGACATGGCCTTCGAGCGGATCGCGCCGCTGCTCTGGATGCGCGCCGGCTCCGAGGGCCGCCGCATCGACGAACGCACTGACGCCTTCGACGTGGCAGACACGTACGCGATTCTGTTCGACATCGACGCCTCGAAGCTGTTCCTCGCGGCCGTCGACAAGGCCGAGGGCTTGCGGATCGCCTACATCGTCACCGACGACGAGACGCAGTACCAGGCCGTCGCCGGCCAGCTCCCCGGCGGCGTCGAGCCAGTGCGGCTGTACGAGTCCTACCTGCGGACGTTCCAGATCAACACGGGAAGGGCCTGAMLFTYHGNVDVIYIDPPYNTGGKGSWLYNDDYVDTDDSYQHSKWLAFMERRLKLAKRLLKPSGAIMVSIGDHEQHRLRMLMDAVFGTENQVAQLAVEMSTTSGPKTTNAQQGTIVKNVEYVLIYRRSAAFDTQVRHTPLYDSVKGWDKDYSLWLNDDGTITNFYEELAADPSVRADIVAAKLVKKDGTFQGASAMDRLLAFSDAANAFIEANLDRIARRDNPPVSVKDVDAPVRGWIEVEADHRTYLVTRLRSGTINQVYTLRRNYRVSDENNGKLGRSVIRGDLWRGFYQDMGTVSREGGVGFSNGKKPVRLIRQLVRWANNSPDALILDFFAGSGTTAHAVMAMNAEDDGRRTAVLVTNNEVNEETSKKLRRAGHRPGDDEWESGGVCRAVTIPRLTNAAAATDANVEFLTLTYENPALVELDMAFERIAPLLWMRAGSEGRRIDERTDAFDVADTYAILFDIDASKLFLAAVDKAEGLRIAYIVTDDETQYQAVAGQLPGGVEPVRLYESYLRTFQINTGRAPGPT0027230_449DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_III_R-M_SYSTEM,PGPT0027230-mod-K07316NANA
AK018_06204945hypothetical proteinGTGGCGGTGGTCGCCGTCGTCGTCGCGCCGTTGGCCGCCATCGTCCTGCTGGTCGCGGTCGTTGTCACCGCGGTGACCGGCACCGCCGACACCGGCACCATGCAGGTCGCAGACGGCACGGTCTCGTACACCGTGGACGGCTCAACCTTCGTCGACAACGACCCGTCCGCGAACGCATGGGGCGGCTACGTCAACGGCCGCATCCCCGCCTCGGAGCTGTGTCCGGTGCCGACGGCGGCTGGGCATCAGGCCCGCTGTGATGCGGCCGAGGCGTTCGGTGACCTGACGGCGGCGTTCAGGCAGGAGTTCGGGCACGACATCGCCGTGACGGACGCCTACCGCTCTTATTCCGAGCAGGTGTGGACGAAGGCGTCGAAGGGGTTCCTGGCGGCGACGCCGGGCTACTCGAACCACGGCTGGGGGCTCGCGTTCGACTTCGGCAGCGGGATCAACGACTACGGCAGCGCGGCGTACGCGTGGTTGAAGACGAACGGCTACCGGTTCGGGTTCTTCCACCCGACGTGGGCCGAGCCGGACTCGCCGGACTTCAGCAAGGCCGAGCCGTGGCACTGGCAGTTCGTCCCCTCGGCGTTGCAGGCGCAGCGGCAGGCGACGTCGGGCACGTCGGACGGCACACCCGACGGCAACCGTGCCCTGGGCCGCTCGCTGGCCGCCGCCCAGGGGTGGGCGGGCTCGCAGTGGGGGTGCCTGGAGAAGCTGTGGACCGCCGAGTCGGGCTGGAACCACCGCGCCGCGAACCCGACCTCGAGCGCGTACGGCATCCCGCAGTCCCTACCCGGGAAGAAGATGGCGGCCGCCGGCGCCGACTGGCGCACCAATCCAGCCACCCAGATCGACTGGGGCCTGGACTACATAGCCGACCGCTACGGCACCCCGTGCCGGGCGTGGGCGTTCTGGAACAGCCACACCCCGCACTGGTACTGAMAVVAVVVAPLAAIVLLVAVVVTAVTGTADTGTMQVADGTVSYTVDGSTFVDNDPSANAWGGYVNGRIPASELCPVPTAAGHQARCDAAEAFGDLTAAFRQEFGHDIAVTDAYRSYSEQVWTKASKGFLAATPGYSNHGWGLAFDFGSGINDYGSAAYAWLKTNGYRFGFFHPTWAEPDSPDFSKAEPWHWQFVPSALQAQRQATSGTSDGTPDGNRALGRSLAAAQGWAGSQWGCLEKLWTAESGWNHRAANPTSSAYGIPQSLPGKKMAAAGADWRTNPATQIDWGLDYIADRYGTPCRAWAFWNSHTPHWYPGPT0024055_190DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
AK018_06205744hypothetical proteinATGCACCAGCAGAGGCGACGACGGCGGATCTCGCCATGGGTTTACGGTCTCGCGGCGCTGGTCACCGTCGTGGCCGTCGTAGCCACCGCGGGGTGGTTCGCGCTCCGTGGCGTGCCCGACGACGGTACGCCCGGCCACGCTGGTGCGGTACCGAGCGGGTCGTCACCGCTAGGCGAGTCGACCTCGGCGCCTTCGCCGACGCCGTCGACCCTGCACGAGCGGGCTGAGCACCGCGAGGAGCACGCTGCCGATCTGGCCGCCGAGGCGGGTGACGCCGGACGAGTTGGTGACGACGATGCCGCGGATCCCGCCGTCGGCCCAACCGGGGTCACGGACGCGGACCTCGCGGCCGCACGGGGATGGATCACGACCGCCCTGGCCTGGCGTGAGGACGAGGCGACGCTCGGGCCCTGGGGCCGTGCGGTCGAGCGAGCGAACGCCGAGTGGGCGCACCCCGACGTGCAGGTGACGGTCGTACCCTCGACCGCGCTCGAGGCGATCGCTTCGGACGCGACGGTCCACGGCGCGCTGCCTCGCGTCGTCGAGATCGTCGACGAGACCGACCCGGAATGGGCCGCACCCGGTGAGGTCACGCTGCGCGCCGCCGTCGTGTTCGGCGCCGGAAGCGGCTGGACCCGGCCGGGACTGCGGCTGCTCGTCGGGCTCAAGATCGCAGACGGCGAGGTGACGGCCGTGTTCATCGACGACGGGTACGTCGTCTCCGATCCGGAGCTCCTGCCATGAMHQQRRRRRISPWVYGLAALVTVVAVVATAGWFALRGVPDDGTPGHAGAVPSGSSPLGESTSAPSPTPSTLHERAEHREEHAADLAAEAGDAGRVGDDDAADPAVGPTGVTDADLAAARGWITTALAWREDEATLGPWGRAVERANAEWAHPDVQVTVVPSTALEAIASDATVHGALPRVVEIVDETDPEWAAPGEVTLRAAVVFGAGSGWTRPGLRLLVGLKIADGEVTAVFIDDGYVVSDPELLPNANANANANA
AK018_06206372hypothetical proteinATGACAACCACATGGACGGGCACGGCCGACGGCGACGACACGGTGACGATCCCGGCGCTCGACTTCGGCTGGCTCGACGGCGCCAGCACCGGAGCGGCCGGTACGACGCTGCGTGAGATCGCGGGCAGCGTGCTCGCCGCCGGGCTGCTCCTGTGTTCGATCGTGTTCGTCACCGGCGTCGTCTTCTGGGTCGCCGCCCGGGCCTCGGGCGGAACGGTGGGCGGCAAGAACTCCTCGTTCTTCGCCGGTGGCGCCGGGGCAGCGCTGCTGGGAATGGTCCTGCTCGGCTCCCTGGTGGGCGCGACCGGCTGGGGCGCGGATACGGTCGGCCAGTGGGTGACAACGGTCTTGCCGATCGACTTCGGCGGTTGAMTTTWTGTADGDDTVTIPALDFGWLDGASTGAAGTTLREIAGSVLAAGLLLCSIVFVTGVVFWVAARASGGTVGGKNSSFFAGGAGAALLGMVLLGSLVGATGWGADTVGQWVTTVLPIDFGGNANANANANA
AK018_06207585hypothetical proteinGTGACCGGCCACGGGCGCGCGACGGCGCTCGTCGAACGGATCGCCGACGAGGCACGCCCCTCCTGGCGACCGATCGCCGCCCTCGCCGTCGTCGCTGTCGTCTGGGCGGTGTGGCTGACCGGACCAGGTTGGACGACTCCCGCGTTCGTCGTCGCCGCGCTGGCGGGCGCGGCACTGGGCGTGATCGATGTGCGAGACCAGCGTCTGCCGGACGTGATCCTCTACCCGGCATTGAGCGTCTGCGCGGCACTGCTGGTCGCGGCCGCCGTGGTGACCGGCGCGTGGGAGAACCTCGCTCGCGCGGGCCTGGGCGCCGCCGCGCTCGGCATCGTGTACCTCGTGCTGAGCCGCATCGGGCCACGGGGACTCGGCCTCGGCGACGTCAAGCTCGCCGTACTCCTGGGGATGCTCGCCGGCTGGCAGGGCTGGCAGGCTGTCCTCTGGACGGGAGCGCTGCCGTTCATGCTCGGCGGCCTCGCGGCTGCCATCCTGCTCGTCACCCGTCGAGCGACCCGCCAGACGATGCTCCCGTTCGGTCCTCTCATGCTCGTGGGCGCGGCCGTCGCGATGACGTGGGTGCGATAGMTGHGRATALVERIADEARPSWRPIAALAVVAVVWAVWLTGPGWTTPAFVVAALAGAALGVIDVRDQRLPDVILYPALSVCAALLVAAAVVTGAWENLARAGLGAAALGIVYLVLSRIGPRGLGLGDVKLAVLLGMLAGWQGWQAVLWTGALPFMLGGLAAAILLVTRRATRQTMLPFGPLMLVGAAVAMTWVRPGPT0015925_2623DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654NANA
AK018_062082397hypothetical proteinATGGTCCTTCCCAGTCACACCCCCGGCATCGCGGCCGCCGACGCCGACGGCGACGACGTCGACCTCGGCGTCGAGCTCGACTTCGACGCGTTCCCCTTCATGGCCCAGCTCCAGGAGTGGGCGGGCGGCATCCAGGCGGTCTGCCTCATCGTGCTGGGCATCTTGTTCGTGGTCGCGATCGTCGCGTGGATCGCCGGCAAGGCCTCGGCCAGCCAGCAGGTGCAGCGCGTCTCGGTCGGTGCCCTGATCGTCTGCGCGATCGGCGCGGCCCCTGACCGGCGCGGCGTTCGCGATCACCGGGTACTTCGCGGGCTTCGACCTCGGGTTCTGACGGTGCGTACGCGCGAGTCCCGGAACGCGAGGATCCGACGGCGCCCGCCGCGCCGCCGTCGGTGGCCTCTACGCCGTCCTGCCCGACGGCGCCACTCGCTCGCGATGATCCCCACCGTCGTCGCCGTGGCCACCCTGACCAGCGGTTCGTGGTGGAACCCGCTGGACTGGGAAGGCTTCGTCGACGGGATCATCGAAGGCATGGGCGATGCCCTGGTCTGGCTGCTCAACCTCGCGTTCAACAACCCCCTCACGGTCATCTCGGCCTCGGAGTGGCAGGCAGCCTTCGGCCAGGCGGCCAAGTGGGGCGGGGTGTTCGCCGTCGTCGCCGTGGCGATGTGCGCGGTAGAGATCATCGCGGGGATGATCTCCTCCGACCACGGCCGCATCCTGCGCGGCTGGGTGTGGGCGATCCTCGCCTGGCCCCTGACGGCCGCGAGCCTGCTGGTGTACTCCCGGCTGGTGAACGCCTCGGACTGGCTGACCACCGGAATTCTCAACTCCATCACCGCGCCCGAGGTTGTCGCCGGGTCTGCCGCCGTCACCGGGGCAACGTCGGCCGCGACGACGGCGATGGTGTCCATGCTGCTCGGCGTCGGGACGCTGTCGACGTGGTGGCTCGCGCTCATCTTCGTCGGACTCGCGATGCTGCCCGTGATCGGCTTGGTGATCGTGCTCGGCATCGTGACCTTCGGGCAGATCGCCCTGGCCGCGTTCGCACCCGTCGCACTGATGCTCATCGGGTTCCGCGGCACACGGCCGATGTCGAGCAAGTGGCTGCAGATGGCCGTCGCGCTGCTGCTCACCAAACCTATCGCGGCGGGCATCGTCGCACTGGGATCCGCACTCGGATCCGAGGGCGGGGCAGACGGGCTCATCCTCGGGATCATTGCGATCACCATGGCTGTGGGATCACCCGCTCTGGCGTTCTCGTTCGTCGGGTTCGCCGGAGCGCAACTCGGCGGGGCGATGACCGCGCATGCGGACAAGCTCAAGGGGCTGACGAACTCGATGACGCACGCGGGCGCGAACCAGGGGATGGCTGCACTGCGCGAGCGACTCGGCGGCTCGGCCAGGGCCGCTGCCGCGGCCGCAGGAGCGGGAGCCGACGGCGTGGGCTTCGGTGGCTCCGGGCCGACGACGGCGCCCGGCGCGGGTTCGCGGCGCCCGACGGCGAGCGACCCTCACTCGAAGACGGGGAACATGACCAAGGGTCATGGTGAGGGGCGCGGTGCCGGGCAGCGTGGGGCGAACGGTTCGGGCAAGGGCTCGGGTGAGACCGGCAGGGGCGCCGCTCGCGGATCGACCGATCCGATGAACGGCGGCAGCGCCGCAGACGTACACGACAACCAGGTCGGCGGTGGAGCAAGCACCGCCGACCCGGCAGGGACAGGCTCTCACGGCACCGCTGGCCCGAGCGTGGCCGACACCGGCTACGACGAAGCCAGGGCCGAACCTGCGGGCCCCTCGCCTCAGGAGTACGGCTGGCCCGACGACGCCGTTCCGGCGGCTCCGGTAGACGACGGTCAGGTGAGCGGTGATGCGTCTCGCCTCGCGGGACCGGTCAGTGACGCCGCCACGCCCCCCGTGGGGCAGGCCGAAAGCAGCGCGACGACCGGACAACCTGCCGACGCAGCCGGGGCGACAGGAGCACCTACGTCCGGCGCGAGGGGTGCCGCTACTTCCCATGGCGGTGGATCGCCTTCGCTGTCCGGTGAGTCTGGCGCCTCATCGCCTGCTGGACGCAACGACACAACGTCCAGTGCCAGCCGTCCCGCTGGTGGCACGGCTCCTCGTCGGCAGGGCGCAGGAGGCGCCGGGGCATCGCACGGGACGGCCCAGCGCTCGGGCCCCTCGGAGACCAGGGCCGAGCCGGCTCCGTCCGCAGCCTGGCCAGCGGCACCGGCCGGCCAGGCGTCCACACCCCCAACTCCGGCCCACGAGCAGCCGAACGAGCCTGAGCGCCCGGGCCGGCCGTCGTCGGGCGCGCCTAGGATTCCGGACCCTGCGCCGCCCGCTGAGCCGGAGTCCGAGTCCGGCCCCAATCCGTTCGGAGGTGCCCGATGAMVLPSHTPGIAAADADGDDVDLGVELDFDAFPFMAQLQEWAGGIQAVCLIVLGILFVVAIVAWIAGKASASQQVQRVSVGALIVCAIGAAPDRRGVRDHRVLRGLRPRVLTVRTRESRNARIRRRPPRRRRWPLRRPARRRHSLAMIPTVVAVATLTSGSWWNPLDWEGFVDGIIEGMGDALVWLLNLAFNNPLTVISASEWQAAFGQAAKWGGVFAVVAVAMCAVEIIAGMISSDHGRILRGWVWAILAWPLTAASLLVYSRLVNASDWLTTGILNSITAPEVVAGSAAVTGATSAATTAMVSMLLGVGTLSTWWLALIFVGLAMLPVIGLVIVLGIVTFGQIALAAFAPVALMLIGFRGTRPMSSKWLQMAVALLLTKPIAAGIVALGSALGSEGGADGLILGIIAITMAVGSPALAFSFVGFAGAQLGGAMTAHADKLKGLTNSMTHAGANQGMAALRERLGGSARAAAAAAGAGADGVGFGGSGPTTAPGAGSRRPTASDPHSKTGNMTKGHGEGRGAGQRGANGSGKGSGETGRGAARGSTDPMNGGSAADVHDNQVGGGASTADPAGTGSHGTAGPSVADTGYDEARAEPAGPSPQEYGWPDDAVPAAPVDDGQVSGDASRLAGPVSDAATPPVGQAESSATTGQPADAAGATGAPTSGARGAATSHGGGSPSLSGESGASSPAGRNDTTSSASRPAGGTAPRRQGAGGAGASHGTAQRSGPSETRAEPAPSAAWPAAPAGQASTPPTPAHEQPNEPERPGRPSSGAPRIPDPAPPAEPESESGPNPFGGARNANANANANA
AK018_062091494hypothetical proteinATGACCCGGACCAGCGATCGCACTACGGAGGACCTCGTGCCGTCGGCGTCGTTCGCGCCGCTGTCGCGCTCGGGCGTGATGCTCGGGCTGTCCGGCCCGCAGCTCGCACTCGTCGCGATCGCGATCTCGCGGCCGATGTGGCAGCTCACCGTCGGCAAGGACCTGTCCGGCGCGCTGTGGTCGCTTGTCTGGTGGACGATGCCGATCGCGGTGGTTGCCGTGGGTTCCTGGGGCGGGCGGTCGTTCCTGGAGCGGCTCACCACCGTGGGCCTGTTCGCCCTGCGGAAGGTGTTCCGCCGGGCCTCTACGGTCGTGAAGGTCAACGCCGCCCACGTTGAGGGGCGTATCGCGGTCCCTGGCGCGGCGGGGGAGCGGCTGCACTCGTTTGCGCTGGTCGGTGTCGAGTACGGCCAGGGTGCGGCGTTCGTGTGGGACGCCGTCGCGCAGACCGCGACCGCAGCTCTGCGGTTCACCACCGACTCGTGGGACCTTGCGGACGACCAGGTGAAGGCCGCCCGCGCGGCCGCCGTCGGGGACCTGTGCTCGAGGCTCACCACGGCTGACGGTGTGCAGCGCGTCGCCGTGCATGCCCGCTCGTACCCGGGCGCTGCCACCCGTCTTCCCGCCCCGCGCCTCCCCGCCTCGACGGCGGCCGGGGCAATGGTCGCCGACGAGCACGCCGAGCTTCTCGCCACGCCCGCCGTCGGGCAGATCCTGCACCGCGACGTCGTCGTGACGATCACCCTCGCCGCAGGCGCTGTCTCCCGGGACGTCGATGCCGCGGGCGGTGGGATCACCGGCGTCTCCAACGTCTTGGCTGATCGGGTCCAGCAGGTCGCGGCCGGGCTGCCCGCGTGCGGCGTGCGCGTCGAGGACGCGACCTGGATGAACGAGGCCCAGATGCGCGGTGCCGTCCGTCTGGCCTACGACCCCGACGCCGCACCGTGGCTCGCCGAGCAGGACTGGCAGCTCCCGCCCGACGCGATGCTCGCCCAGGTCGTCACCGAACGCCTCGACCACCTGGTCACCGACTCCGCCGTGCACCGGTGCTGGTGGGTCGAGCGGATGCCTGCCCTGCCCGCCCGGGCCGGGTTCCTCGCCCCGCTCATCAGCGGCGGACGCGTACCGCACACCGTCACCCAGGTGTGGGAAGCCGTGGACGTGCACCGGGCCGAGAAGCGCCTCAACAACGCCGTAGCCTCGCGCGCGACCGCCGAGAAGGTCAACGTGTTCCTCGGCCGGCCCACCACGACCGCGCACACCGCCGAGGGCAAGGAGCTCGCCAAGCGCCGCGCCGAGCTCGAGCTCGGCTACGGCGACGTGCGCTACTCCGCCTGGATCACCGTCCAAGCCCCGTCGCTGGACGAGCTGGAACGCTCCGACCTGTGGGTCGCCGGCTCGACGCCCGGGATGAAGGTCAAGCTCCTGCGCGGCGACCAGTGGGCCGCGTTCAACACCGCCGTCCTGCCGCTCGGGATCGGAGCACGCGCATGAMTRTSDRTTEDLVPSASFAPLSRSGVMLGLSGPQLALVAIAISRPMWQLTVGKDLSGALWSLVWWTMPIAVVAVGSWGGRSFLERLTTVGLFALRKVFRRASTVVKVNAAHVEGRIAVPGAAGERLHSFALVGVEYGQGAAFVWDAVAQTATAALRFTTDSWDLADDQVKAARAAAVGDLCSRLTTADGVQRVAVHARSYPGAATRLPAPRLPASTAAGAMVADEHAELLATPAVGQILHRDVVVTITLAAGAVSRDVDAAGGGITGVSNVLADRVQQVAAGLPACGVRVEDATWMNEAQMRGAVRLAYDPDAAPWLAEQDWQLPPDAMLAQVVTERLDHLVTDSAVHRCWWVERMPALPARAGFLAPLISGGRVPHTVTQVWEAVDVHRAEKRLNNAVASRATAEKVNVFLGRPTTTAHTAEGKELAKRRAELELGYGDVRYSAWITVQAPSLDELERSDLWVAGSTPGMKVKLLRGDQWAAFNTAVLPLGIGARANANANANANA
AK018_062101278hypothetical proteinATGTGGGGTCCGGCCGGTGTCGGGGTGCCGAAGCACGTCACGTCTGCGGCACGGATCGGTGTGCTCACCCCGTTCGTCGCGCCCGCGACGACGTCGATCCCTGGGCCGGTCATCGGGATCGAGGCGACCAGCGGCCAGCCGTTCACCTTCGACCCGTGGGGCGCCGTGCAGGCCAAACATGCAGCGTCCCCGGGCGTCGTCGCGTTCGGGCTGCAGGGCACCGGCAAGTCCTTCTGCGTCAAGACCGCGATGCTGCGCGAGATCGGATGGGGCCGACAGGTCATCGTGTCCTCGGACCCCAAGGGGGAGTGGGTGCCGTTGGCCGGGGCGCTCGGCGGGCAGGTCGTCGCCGTCGGACCGGGCAGCGGCAACGTCATCAACCCGCTCGACGAGGGCACCCGCCCGCTCGACGTCGACCCGGCCACCTGGCGCGGACTCGTCGGCTCCAGGCGATCGCTCGCCCTGGAATCTATCTGCACGACCCTGCGACCAGGCCGGCTGCTCGACGAGTTCGAGCGCACCGTCCTGGATCGTGCCGTCGAAGCCATCGACTCTGGCGCCGTGGCGGCGACCGTCGAGGCCGTCGTCGACTGGCTCGAGCGACCGCCGTCGACCCTGCGCGACGAGCTCGGCGACGCCGGGGCTGAGGCACCCACGGCGCTCCGCCTCGTGCTCGGCCGCCTCGTCCGCGGGCCGCTGGCTGGCATGTTCGACGGCGACTCCACTGTGGAACTCGACCCGACGGCACCGATCACCGTCATCGACACCTCCGCCATCGTCGGCGCAGCGCCGGAACTGCGCGCGATCGCCCAGGCAGCCACCTCGGCATGGATCGACGCGACGCTGCGCTCGGGGGACGGCCGCTGGCGATGCGTGGTGTCTGAGGAAGGCTGGGACGAGTTGCGCAACCGCGCTCAGGCTCAGGCGATGGACGAGCGGCTGCGCATGACCAGCCAGTGGCGCTGTTCCAACTGGTTGATCTTCCACGAGCTTGCCGACATCACTCAGTTTGGCGAGGCAGGCTCGGCGCACCGCAACCAGGTCAAGGGCATTATCACCAAGTCGGCGATCAAGATCCTCTACAAGCAGTCCGCGGCCTCGATGGCGCTGCTCGACGAGATCGTGCGGCCCACGGCCACCGAGGCCGACCTGCTCATGTCCCTGCCGCAGGGCGTCGGTGTCTGGCACATCGGTGAGTCGACACCGGTCCTCGTCGCTCCGGTCGCGGGCCCGACCTCCTACGCCGTGATCAACACCAGCGCCGGGCGTGAAGGCTGAMWGPAGVGVPKHVTSAARIGVLTPFVAPATTSIPGPVIGIEATSGQPFTFDPWGAVQAKHAASPGVVAFGLQGTGKSFCVKTAMLREIGWGRQVIVSSDPKGEWVPLAGALGGQVVAVGPGSGNVINPLDEGTRPLDVDPATWRGLVGSRRSLALESICTTLRPGRLLDEFERTVLDRAVEAIDSGAVAATVEAVVDWLERPPSTLRDELGDAGAEAPTALRLVLGRLVRGPLAGMFDGDSTVELDPTAPITVIDTSAIVGAAPELRAIAQAATSAWIDATLRSGDGRWRCVVSEEGWDELRNRAQAQAMDERLRMTSQWRCSNWLIFHELADITQFGEAGSAHRNQVKGIITKSAIKILYKQSAASMALLDEIVRPTATEADLLMSLPQGVGVWHIGESTPVLVAPVAGPTSYAVINTSAGREGNANANANANA
AK018_06211810hypothetical proteinATGGAGGAGTTCGAGCGCGCCTTCGAGGCGTGGATGGGGACGCAGGCCGAGTCGGACCACCTGGAGTCGCGCGGCCTCTTCCCCACGGTCTGGGCGCGCGAGCACCAGGACCCGACCGAGGTTCAGAAACTCGAACTTGAGGTCGCGCAGGCGGCAGGGGCCGCGGCGAGAGCCGTTTCCACCACCGGGGCCTACATCGCGGTGCAGGGCCAGGGCGTGATTGACCCGATCGCGAACTGGTTCACGATGACTAACCCCAAGGCCGTCTTTTCTCCCAGGGACATTCGCTCGACGGCCGCGAACGTCAAGGGTCGCCTCGACAGCATGCTGATGGAGGCCGAGGCGATGGCCAACTCAGAGGTTCCCGCGTTCTCCCCTGCGCACATGCACCCCGTCGTGTGGTCGGCTGCCGCGACGCATTGGACGACACATCAGTACCGGGTGGCAGTGCGCGAGGCCGCAGAGGCCTTGAGTATCGAATGGAAGACTCGCCTTGATCGTCACGATGTTGACGACACGTCTTTCTGGCAACAGGCACTGTCGGCCGGTGACCCTAAGCCGGGCGTTCCGAAACTGGTCTGGCCCGGTGACCCCGACGCCAAGACCACCAAGAGCATGAAAGGCGGACTCGCACCGCTGGCCGGTGCCCTGAACCAGCTCGCAACCGGACTCAATTTAACCATCCGTAATGTCACCACCCACAGCCGCGAAGAACTCACCGAACAAGATGCTATGGAACGTCTCGCCGCGTACAGCTATTTCGCACGCCTGCTCGACCAGTGCGAAATCGCCACACACGACGGCGCGTGAMEEFERAFEAWMGTQAESDHLESRGLFPTVWAREHQDPTEVQKLELEVAQAAGAAARAVSTTGAYIAVQGQGVIDPIANWFTMTNPKAVFSPRDIRSTAANVKGRLDSMLMEAEAMANSEVPAFSPAHMHPVVWSAAATHWTTHQYRVAVREAAEALSIEWKTRLDRHDVDDTSFWQQALSAGDPKPGVPKLVWPGDPDAKTTKSMKGGLAPLAGALNQLATGLNLTIRNVTTHSREELTEQDAMERLAAYSYFARLLDQCEIATHDGANANANANANA
AK018_06212834hypothetical proteinATGACACACCCAGATCTTGAGGACGTCCTCTCCCTCCGTCACGCCACGGAGGTTGACGACTCCAACGAAGTGGCCGCGCTTGCCGTAGAGCCGGACAACGGAGACGACATCGTCTGCGGATACATCTCCGAGCAGGGGCGAGTACTCGCGTGGAGGGCATCAAACGGCGGACACGTGCTCTACGAGAGCGCCATCGCAGTGTCGGATGACTACGACTGGGACGATGTCGGGACGCCGCGCGTATACCGGTTCACTACGGCCGACGAGAAGAGCATCGTCGCTGACGCACGTCGCCTCTTCCTGGCCCAGAGCCTGGACAACGGCGCAGCGCTCGCGTTCGCCGGTTGGCGCAACCGCATCGTCGCGCTCGTGCCGGAAGAGGTTGGACCCAAGGAGTCGAAGATTATTCGAACGACGGCGGACGGTGACATCGAAGCGACTCACGCGTACAACTTGCTCGACGCCTTTGGGAAGTACGCGGAGTGGCTCGGCGATCTTGCGGCCGAATTCGGTGGCACCGATGACAAGCTGGCAGCCGGGATCGAGACACCCGACATGACAGGCCTCGACCCCATCGCCAGCACCATCCCCCAGGCGTGGCTCATGCGTGAGGCGGCAGAAGCGCAATTGTCACAGGCGCGTCAAACCCTCAAGATCGGTCTCGCAGGGCTAGCGCGCTTTTCGAAGTTCAAGGGTTCCGACTCGGCTCTTTCAGTCTCGGAACTCGCCCGCTCACTGCACACCGACCGCCCAAACCTCAGCCGTGCCATCAAGTCGGCTGAGCGCGACCCGGAGATCTCCCAGCTGCTGAACTCTCTGCAACAAGACGACTGAMTHPDLEDVLSLRHATEVDDSNEVAALAVEPDNGDDIVCGYISEQGRVLAWRASNGGHVLYESAIAVSDDYDWDDVGTPRVYRFTTADEKSIVADARRLFLAQSLDNGAALAFAGWRNRIVALVPEEVGPKESKIIRTTADGDIEATHAYNLLDAFGKYAEWLGDLAAEFGGTDDKLAAGIETPDMTGLDPIASTIPQAWLMREAAEAQLSQARQTLKIGLAGLARFSKFKGSDSALSVSELARSLHTDRPNLSRAIKSAERDPEISQLLNSLQQDDNANANANANA
AK018_062131986hypothetical proteinATGAGCCAGGGGTACGTTCCGCAGCGTCGTGCACGCACCGACCAACTCTCCGGTTCCGCGGCCGCGCTGTTCGGCCGAGCCGACGACGAGGACGCGACAGCAGCGAATCCCGAGGGCCAGCAGCGCGGCCCAGCCTGGCTCGAGCACGTCGAGCATCGACTCCGCTCGACGAGGCTCGCGTGGTGGCTGCGGCGATACGGCGGCGTCTACCGGCGCATGGCTGCGCTTAACGACACCGAGGTCGCCCAGATGCTCGGCATCGCCTGGCTCGCCTACGCGTGTACGACGGTGATCGCTGCGCTCGTCGTCGGCCCGTTGTCCGTCGTCGTCATCGTTCCGCTCGGCCTCGCCGCCATAGCAGCCACGGCCGTCGCACTGGTCTGGTGGTTCGGCTACCGCCGGTCGGGCGCGCAGCTTCGCCACCAGATGCTCGCCCGCGACGGTCTCGCACGCGGCAGGGAGGTCGCCGAACAGGTCGGGGCGTTCGTCCATGTCACCGTGGCCGAGACGGTCCGCCCAACGTTCACCGCCAAGGCGCAGAACGAGGGCCGCACCGTTAACCCCGAGGACGTCGCGTTCCTGCTGGGACACACTTACGGCGAGGAGGTCTGGGTCAGCCTGGAGCGACCGGTCTACGTGCTCGGCCCGGCGCGGTCGGGCAAGGGTGTCGGCGTCGTCGTCCCGGCCATCCTCGCCGCGCCCGGTGCGTGCATCACGACGTCGACACGCACGGACAACCTCGAAGCCACCGCCGTCAGCCGGGCGGAGCGCGGCCCGGTCGAGGTGTTCAACCTCGAGGCGTCGGGCGGTCGCCCGCACACGATCCGGTGGAGCCCGCTGGAAGGCTGCGAGGTCCCGCGCATCGCGATGAAGCGCGCCAAGCTCCTGGTCGGTGCCTCCGGGCTGGGTGGGGACAACGCCGTATGGGCTACGAGCGCGGGTGGCATCGTCATGGCTCTGCTGTACGCGGCGGCGATCTCGGGACGGACCATCGCCGACGTCTACCGGTGGTCCAAGAGCCCCGACGCCTGCAAGGAGGCCATGCAGGTGCTCGAACGCGCCGCCCACCTGCCCGAGTACTGCTCGGCCTCGGGCGAGCAGGTCGACTGGCACACCACGATCCGCTACGTCATGGGCGAGGAAGTGCGGATGAAGGCGAACAAGTGGTTCGGCGTCGAGAACGCGTTCGTACCGCTCATGGACCCGCACGTACGCGACCGCCTCGCCATCCGCCTCACCGACGACGCCGGCCACCGGCTCCCGGGCACCTTCGACACCGAGGCGTTCCTGCGCAAGCGCGGCACCTGTTACATGATCTCGGCCGGCACCTCGACCACCGCAGAGACCTCCGGCACCGTCGGTACCTTCTACTCGCTGTTCCTCGACCACGTCACCGATATCGCCCACGAACTCGCCCAGCGCTCGCCGGGCGGACGCCTCGACCCGCCGTTGACACTGGTCCTGGACGAGCTCGCGAACATCCACCCCTGGCCGGGTGCCGCACGGATGAGCTCGGCCGGCTCGGGGGAGGGCATCCAACTCGTCGCGGTCTTCCAGTCCCGCTCCCAGGGGCAGGACGCCTACGGCGACGACGTCGAGGAGACGATCTGGAACAACTGCCTCAACGTGCTGCTCCCAGGCGTCAAGGCACCCGAGGTGCTGTCCGCGCTCTCGCAGACCCTCGGGGCCGAGGATCGCTCCACCACCTCGGCGAGCTACAGCCTCCGTGAACCCTTCAGCCGCTCCTGGCAGACGCAGATCTCTCAGCAGGCCACGATCGAGCCAGGGGAGATGCGCCGCCTACCCAAGGGGCACGCGCTCGTCGTCGAAGCGGCGATGCGCCCGATGCTCGTCGACCTCATTCCGTACTGGCGTGGGCCCCACGCGGAGGCCGTCACCCGAAGCAAGGCCTGGTACGCAGAACACGACGGGCAAGCCGTCCCGCCCGCGACCACGGCCCGTCGCGAATCTGGCGAGGTGGCGTGAMSQGYVPQRRARTDQLSGSAAALFGRADDEDATAANPEGQQRGPAWLEHVEHRLRSTRLAWWLRRYGGVYRRMAALNDTEVAQMLGIAWLAYACTTVIAALVVGPLSVVVIVPLGLAAIAATAVALVWWFGYRRSGAQLRHQMLARDGLARGREVAEQVGAFVHVTVAETVRPTFTAKAQNEGRTVNPEDVAFLLGHTYGEEVWVSLERPVYVLGPARSGKGVGVVVPAILAAPGACITTSTRTDNLEATAVSRAERGPVEVFNLEASGGRPHTIRWSPLEGCEVPRIAMKRAKLLVGASGLGGDNAVWATSAGGIVMALLYAAAISGRTIADVYRWSKSPDACKEAMQVLERAAHLPEYCSASGEQVDWHTTIRYVMGEEVRMKANKWFGVENAFVPLMDPHVRDRLAIRLTDDAGHRLPGTFDTEAFLRKRGTCYMISAGTSTTAETSGTVGTFYSLFLDHVTDIAHELAQRSPGGRLDPPLTLVLDELANIHPWPGAARMSSAGSGEGIQLVAVFQSRSQGQDAYGDDVEETIWNNCLNVLLPGVKAPEVLSALSQTLGAEDRSTTSASYSLREPFSRSWQTQISQQATIEPGEMRRLPKGHALVVEAAMRPMLVDLIPYWRGPHAEAVTRSKAWYAEHDGQAVPPATTARRESGEVANANANANANA
AK018_06214750hypothetical proteinATGGGCTACGACGGCACCGAGCAGGCCTGGTGTCCCGACACTCGTCGGGACGCAACACGGGTGAGCCGGCCGCCGCAGGTGTCGCACGGCGACGGCGGGCCGCCCGCCAACGATCCGTTCAGCAGGTCCGGCGGACTGGGGCCGTTCGCGAAGGCCAAGGGCGGCGGTTGGGCGCGCGCAGATGCGATGTTCCCGATCCACCATGACCCTGGCGTCTTCTCCTGGATGGACGCCGACGTCGCCACCCGCGCCGCGGCGATGCAGCGCCTGGACAGGTTCGTCGAGTGGCTGTGCGCCACCTTCGCGTTCGGTGAGGTCATCACCCCGTGCTGGAGCCTGCACCCCGCGATCGTCCAAGAGCTGTGGGCGCTGGAGCGGTATCACCGCCTCGCCCACGACGACGGCGCGAACCTCGCCGAGCCCGTCCGCTGGCTCAACCAGCTCGCCTCGACCCGCACCCGACTCGGCGCGGAGTGGCGGGCGCGGGGCTGCGACTACCAGCACGTCGAACCCATCGCCGAGGCCGCCAGCCGCATCGCCGAGCGTCGCGGCTACTACCTCGCCGACTACTGGCCCGACGGCGAGATCCCGCTCGAGGACCCGCCCGGTGGGTTCGCCTGGCAGCGGTGGTCGTGGCCCGACGCCGACGAGTCCGGCGCTGAGATCACTCCGCCCGACCACGTCGAGTCCGGCAGAGTTCGAGGACGTCGAGAAAGTGCGCGAGATGGTGGGCGGGGGAGTCCAGCATGAMGYDGTEQAWCPDTRRDATRVSRPPQVSHGDGGPPANDPFSRSGGLGPFAKAKGGGWARADAMFPIHHDPGVFSWMDADVATRAAAMQRLDRFVEWLCATFAFGEVITPCWSLHPAIVQELWALERYHRLAHDDGANLAEPVRWLNQLASTRTRLGAEWRARGCDYQHVEPIAEAASRIAERRGYYLADYWPDGEIPLEDPPGGFAWQRWSWPDADESGAEITPPDHVESGRVRGRRESARDGGRGSPANANANANANA
AK018_06215708hypothetical proteinATGGGGTGCCCAGACATGACGACAACGACACAGCAGCGCTCCACCGACGCCAGTGCCAGCGTCGCCGCCGAGCCTGGGGCCGACCAGATCGCCCCGCCGCCAAAGTTCCGACGGCGCCCGCTTCTCGTCATCGCCTCGGTGGCCGCCGTGGCGCTGGGTGCCCTGGCGTCCGTGTGGGCCTATCAAGGCGCGTCGGACGCTCAGGACGTGCTCGCGGTGCGCACGACGGTGGAGCGCGGGCAGGTCATCGAGTCCGACGACCTCATGACGGTGCCCATGACGGTCGACCCTGCCCTGCACCCGCTCCTGGCGTCGCAGCTCGACGCGGTTGTCGGTCAGCGAGCCGCGCTCGACCTCGTCGCCGGGGGAGTCGTCACCGCCGACCAGGTCACCGAGACGGCGCTACCCGCCGCGGGGATGTCCGTCGTCGGCCTCAACCTCACCGCCTCCGCACTGCCCGCGGACCAGGTCCGCGTCGGAGACCGGGTCCGCGTCGTCCTCACCTCCGATCCGGTGACGGGTACCGGCTCCGCGCCGGACGAACCAGTGGCGATCGGTGCGGAGGTATCCGGTTCCGGGGTTGATGACGCCTCGGGTAACACGATCCTCAACGTCCAGGTCGCCCACGACGACGCCCCGCTCGTCGCCGACAAGGCCGCGGCGGGCCAGGTCGCCGTGGTCCTCGACGAACCGGGCGACCAGGAGTGAMGCPDMTTTTQQRSTDASASVAAEPGADQIAPPPKFRRRPLLVIASVAAVALGALASVWAYQGASDAQDVLAVRTTVERGQVIESDDLMTVPMTVDPALHPLLASQLDAVVGQRAALDLVAGGVVTADQVTETALPAAGMSVVGLNLTASALPADQVRVGDRVRVVLTSDPVTGTGSAPDEPVAIGAEVSGSGVDDASGNTILNVQVAHDDAPLVADKAAAGQVAVVLDEPGDQENANANANANA
AK018_06216795hypothetical proteinATGGCCCTGATCGCGCTCACCTCAGCCAACGGCTCTCCAGGGGTCACGACGACGGCGCTCGGCCTCGCCCTGTCCTGGCCGCGGCCGGCAGTTCTCGTCGATGCCGACCCGACCGGTTCGCGAGCCATCCCCGCCGGGTACCTGCGCGGCGGTGAGCTGCCCACCACGCGCACCGTCGTCGACCTCGCCGTCTCCCTCCGGGATGGCACCCTCGTCGCCGACCTGCCGACGTCGGTCTTCGCCCTGCCCGACTCGCGTGTGCAGGTGCTGGCCGGCCCCCTCAACCACCTTCAGTCACAGGCGCTCGGACCGTTGTGGGAGCCGCTGGCCGCCGCATTGAAGGCGCTGGAAAACAACGGCCAGGACGTCATCATCGACGTCGGCCGCCTCGGCATGGACGGCAGCCCTACCGGGCTGCTCACCGCCGCGGACCTCGCGCTCCTGGTCACGCGGTCGAGCCTGCCCGCACTCGTCGGGGCATCGTCCTGGGCACCGACGATCCGGGAATGGTTCGAGCGGTCCGGTGCAGGCTCCAGCCTGGGAGCACTCGTCGTCGGACCGGGTCGCCCCTACGGCGACCGCGAGGCCGCCAAGGTGCTCGGCATGCCCGTGGCCGCGTCGCTGGCGTGGGACCCCGAGTCGGCATCCGTCTACTCCGACGGCGCCACACCGGGACGCAAGTTCCAGACCGGTGCGCTGGCCAAGTCGTTGCGCGCCGCCGTCCAAGGGCTCGGTTCCACCCTCACCGCGGCACGCACCGACCTCGGCCTGGCCGTCGAAGGGAGCTGGTCGTGAMALIALTSANGSPGVTTTALGLALSWPRPAVLVDADPTGSRAIPAGYLRGGELPTTRTVVDLAVSLRDGTLVADLPTSVFALPDSRVQVLAGPLNHLQSQALGPLWEPLAAALKALENNGQDVIIDVGRLGMDGSPTGLLTAADLALLVTRSSLPALVGASSWAPTIREWFERSGAGSSLGALVVGPGRPYGDREAAKVLGMPVAASLAWDPESASVYSDGATPGRKFQTGALAKSLRAAVQGLGSTLTAARTDLGLAVEGSWSNANANANANA
AK018_062171584hypothetical proteinGTGAACGAGTTCCTCGACGGCGCGGCACCCGACGGTGCCGGCGACCCGACGAACCTGCCGATCTTCGGCGCCCAGCCGAGCGACACCGCGGATCCGCCAGTTGCGGCAACGCCCACGCAGCCCGCAGCGCACTCGCTCGCCGGACGACTCGGAGCGCCGAATGCGCCCGCGCCCGAGGAAGCACGCCCCGAGACACCGCATGTGGCGGGCCCGACGTCGGAGGCTCAAGCGCCGGCAGGCAGCCTCGACTGGCAGCTCGTCGCCGAGCTACGAACCCAGGCCTCGGACCTGCTGATGGCGTCCCTGGGCGACGAGCGTGGCCAGGACGTTGAGGCCGAGCGTGAGCGCGGTCGGGCGATCATCCACGAGCTGCTCGCCACCACCGCCGCCGACCGGATCCACGACGGCGAGCCCGCATGGAGCCTAGAAGTTCAGGCACGGCTGGCCGGGGCCGTCTACAACGCGCTGTTCGGCCTCGGGCGGCTGCAGCCCTACGTGGACGACGACTCGGTGGAGAACATCATCATCACCGGGGCCGACACGGTGTTCCTGGAGAAGACCGACGGCGACCTCGTGCGCGTCGAACCGGTGGCGGAATCGGACGCCGAGCTGCTGGAGTTCCTCCAGTTCGTCGCCGCTCGCCAGGAGTCAACCGCCCGGTCGTTCTCCGCGGCGTCCCCGACGATGCATATGCGCCTGGACGGTGGGCCACGCCTGGCCGCCGCCGCATGGATCACCGCGTTCCCCGTCGTCGTCATCCGCCGCCACCGCCTCGTGCGGGTCACGCTCGACGACCTCGTCGCCCGCGACATGCTCACCCCCGTCCAGGCGTCGCTGCTGTCGGCGGCGGTCAAAGCCGGGCTGTCGATCGTCGTCGCCGGCCCGCAGGGCGCAGGCAAGACGACCATGGTCCGCGGCCTGTGCGCCGAGATCCCCCAGCACGAGAAGCTCGGCACCTTCGAGACCGAGTACGAACTGCACCTGCACGAGCTCAAGGACGTCCACCCCATCGTCGTCCCGTTCGAGGCGCGCCCCGGCTCGGGCGAGGTCGGCCCCGACGGCAAGCGGGCGGGGGAGTACACCCTCGACGAGGCGCTCTACGACTCGTTTCGCATGGCCCTGTCCCGCCAGATCGTCGGCGAGGTTCGCGGCTCGGAGGTCTGGGCGATGCTCAAGGCGATGGAGTCCGGCGCCGGGTCGATCTCCACCACGCACGCCGCCGACGGCGAAGCGGCGATCCGTAAGCTCGTCACCTGCGGGATGGAGGCCGGCCAGGCGAAGGACGTCGTGACCGCCAAGCTCGCTGAGGCGATCGACCTCGTCGTTCAGGTCCACCTGGACACCACCGAGGTCGGCCCGAACCAGTGGCACCGCACCCGCTGGGTGTCCGAGATCCTCCACGTCACACCGGGCGAGGAAGCCAAGGGCTACGCCACCACACGCGTCTACGTCCCCAACCCTGACGGTGGACCGGCCCTGCCCAGAACCTTGCCCGACGAGCTACGTGGCCTGGAACGGCACGGGTTCGACCTGGCCGGGTACATCGCCTCCGCACCCGGCACGACGCACGCGGGGGTCGCCTGAMNEFLDGAAPDGAGDPTNLPIFGAQPSDTADPPVAATPTQPAAHSLAGRLGAPNAPAPEEARPETPHVAGPTSEAQAPAGSLDWQLVAELRTQASDLLMASLGDERGQDVEAERERGRAIIHELLATTAADRIHDGEPAWSLEVQARLAGAVYNALFGLGRLQPYVDDDSVENIIITGADTVFLEKTDGDLVRVEPVAESDAELLEFLQFVAARQESTARSFSAASPTMHMRLDGGPRLAAAAWITAFPVVVIRRHRLVRVTLDDLVARDMLTPVQASLLSAAVKAGLSIVVAGPQGAGKTTMVRGLCAEIPQHEKLGTFETEYELHLHELKDVHPIVVPFEARPGSGEVGPDGKRAGEYTLDEALYDSFRMALSRQIVGEVRGSEVWAMLKAMESGAGSISTTHAADGEAAIRKLVTCGMEAGQAKDVVTAKLAEAIDLVVQVHLDTTEVGPNQWHRTRWVSEILHVTPGEEAKGYATTRVYVPNPDGGPALPRTLPDELRGLERHGFDLAGYIASAPGTTHAGVAPGPT0016025_336DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
AK018_06218906hypothetical proteinATGCCGCTACTCATCCCCGCCCTCGGCGGCGCACTCATCGTCGCCGGAATGATCGGCGTCATCGTGGGCCTGACCCCGCGATCTCCCGCCGACCCTGCGCCGCGGACCTCACGCCCCTCACCGCTGGTGGCCCGATGGCGGCGCCTGACCAAGCGGACCAAGGTGTTGCTCGCCGTCGGCCTCGCCGCAGGCGTCGTCGCGTGGCTCATCACCGGGTGGGCGATCGCCATCGTCCTTGGCCCCCTGGCCGTCGCAGGGCTCCCTGCACTCCTGTCTGCCCCGGGCACCGACGAGCAGATCGCCAAGCTGGAGGGCCTCGAAGAGTGGACGCGGGGGCTCGCGAGCGTGCTGACCGTCGGCGTCGGGCTCGAAGAAGCCATCCGAGCCACCCTGCGGTCGGCCCCCGAGGCGATCCGGCCCGAGGTGACCGCGCTGGTCGCCCGGCTGCGTGCCCGCATGGGCACCGAGGCCGCGCTGCGGGCCTTCGCCGACGACCTGGATGACACCACCGGCGACATGGTCGCCGCGTTCCTCATCCTCGGCGCCCGCAAGCGTGGCCAGGGCTTGGCCGATGTGCTCACTTCGCTTGCCGAGTCCGTCTCGTCGGACGTCCGTGCGCGGCGCGCTATCGAGGCCGACCGTGCCAAGCCCCGCACCACCGCCCGGTGGGTCACGATCATCACCATCGCGGTGCTCGCCTACCTGCTGATCTTCACCGGCGAGTACGTCGCTCCCTACGGCACGGCTCTGGGCCAGCTGCTGCTCACCCTCTTGCTCAGCATCTACGTCCTGCTGCTGTGGTGGATGCGCCAGATGGCCAAGGGCGAGCGGCTGCCCCGGTTCCTGGGCCTGTCCGGCCTCGCCGGGACCGGGTCCCGGACGACCGCAGGGGCAGGTGCGCGATGAMPLLIPALGGALIVAGMIGVIVGLTPRSPADPAPRTSRPSPLVARWRRLTKRTKVLLAVGLAAGVVAWLITGWAIAIVLGPLAVAGLPALLSAPGTDEQIAKLEGLEEWTRGLASVLTVGVGLEEAIRATLRSAPEAIRPEVTALVARLRARMGTEAALRAFADDLDDTTGDMVAAFLILGARKRGQGLADVLTSLAESVSSDVRARRAIEADRAKPRTTARWVTIITIAVLAYLLIFTGEYVAPYGTALGQLLLTLLLSIYVLLLWWMRQMAKGERLPRFLGLSGLAGTGSRTTAGAGARPGPT0022290_2134DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
AK018_06219912hypothetical proteinATGACCACGGGACTGCAGATCGCACTGGCCGGCGGCGCCCTGGTGGGACTCGGCGTCGCGCTGCTCCTGTGGCGCCTGGCGCCCGCGCGGCCCGACGCCGCCGACGTCGTACGGCGATACTCCCCGCAGGGCGTCCGTGATCGCGAGGCCACCGCCACCGCCGCAATGAGCACCACGAGCGCGACAGAACGCCTCGGCGTCTGGGCCCTGCGTACCGTCCCCGCCCCTTGGTGGGGCCGAACCCCGACGCGTGAGCTCGCCCTGTTGCAGATCCCGCTGCACCGCCACTACGGCAGCAAGATCCTCTACGCGCTCGTCGGTCTGGTGATCCCGCCCGTCGGGGTCTACGTGCTGTCCGTCGTCGGGATCACCCTGCCGTTCGCCGTGCCCGCGGCCGGATCGCTCGTGGCTGCCGCGGTGCTGTTCTGGCTGCCTGACTTCAATGCCCGCGACGACGCCCGCAAGGCACGGGCGGAGTTCAACCGGGCGCTGGGCGCCTATATCGACCTCGTCGCGCTCGAACGCCTCGGCGGATCAGGCAGCCGCGAGGCCATGGAGCTGGCCGCGAAGGTCGGCGACAACTGGGTCTTCCGGCGTATCAGTGAGGAGCTCGCCCGTTCGCGCTGGTCCGGCGTCGCCCCGTGGGACGCCCTGCACGCGCTTGCCGACGAGCTCGGCCTGCCCGATCTGGCCGACCTCGGCGACGTCATGCGCCTGACCAGCGAGGGCTCGCAGGTGTACGACCAGCTCAGAGCTAGGTCCGAGTCGGTGCGAGCCGCGATGCTCGCGGCCGAACTGGCCAAGGCCAACGCCGCCGGCGAACGCATGACACTGCCGATGTCGCTGCTGTCCGTGGTGTTCCTCGTGATCCTCGTCGTTCCCGCGCTCCTGCAACTGACGGGAGGCGCGTAAMTTGLQIALAGGALVGLGVALLLWRLAPARPDAADVVRRYSPQGVRDREATATAAMSTTSATERLGVWALRTVPAPWWGRTPTRELALLQIPLHRHYGSKILYALVGLVIPPVGVYVLSVVGITLPFAVPAAGSLVAAAVLFWLPDFNARDDARKARAEFNRALGAYIDLVALERLGGSGSREAMELAAKVGDNWVFRRISEELARSRWSGVAPWDALHALADELGLPDLADLGDVMRLTSEGSQVYDQLRARSESVRAAMLAAELAKANAAGERMTLPMSLLSVVFLVILVVPALLQLTGGAPGPT0022295_1311DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511NANA
AK018_06220204hypothetical proteinATGAGCAAGTTCATCGCCACCGTCTACCTGTTCGGCCTCGACATCGTCGACGGCGTCAAACGCCGGATTGGCCCCGACGAACGCGAGCGAGGCTCGGTGAGCATCGAGCAGGTCGTCATCACGGCCGCGCTGCTCATCGCCGCGGTCGCGCTGGTCGCGATCATCGGCAACGCGATCAGCGACCGGGCTGCCGAGATCAGCTGAMSKFIATVYLFGLDIVDGVKRRIGPDERERGSVSIEQVVITAALLIAAVALVAIIGNAISDRAAEISNANANANANA
AK018_06221321hypothetical proteinATGCCCGTCGTGTTGACCCTGTTCTTCCTCGGGCTCCAGGCGGCGCTGCTCTACATGGGGCGCACGGCGGCAGTGGCCGCAGCCCAGGAGGGGGCGCAGGTCGCAGCGGGGGAGTCCGGGACCATCGCCGACGGGATCACCGCAGCCCAAGGGCTCGCTGACGCCTCGGTCATGGTCCTGGAATCGACGTCGGTCACCGGCTCGATGACGGCGACGGAGGCACACATGACCGTCTCGGTCCGGGTCGCCTCGCTCGTCCCGGGGTGGCAGCCGAACGTCACGGCATCGGCCGCCATGCCCGTCGAGGAGGTGACCGGATGAMPVVLTLFFLGLQAALLYMGRTAAVAAAQEGAQVAAGESGTIADGITAAQGLADASVMVLESTSVTGSMTATEAHMTVSVRVASLVPGWQPNVTASAAMPVEEVTGNANANANANA
AK018_06222462hypothetical proteinATGAGGACGGCGCCGCGCCATGCACGACGGCGGCACGCCTGGTCGGTTCGTGACCGTGAGCGGGGCTCCACGAGCCTCGAGCTCGCCGTGCTCGCACCCGCCCTGCTGGTGCTGCTCGCCCTCATCGTGGTTGCAGGCCGCGTGGCCGTCGCCCACCAGGCGGTCGATGCCGCGGCAGCGCAGGCCGCGCGCGCCGCGTCGCTGGAACGCACCCCGAGGGCGGCCGCCGACCGCGCGCACGCCGTCGCCGACGCGACCCTCGACAACTCCGGGCTGCACTGCACGGGCACGTCGATCTCCGTGGACGCCGGTGGGTTTGCGGCGCCGGTTGGCACTCCGGCCAGCGTGACGGCGACCGTGACGTGCACCGTCGACCTGTCCGGCCTGCCCGTGCCCGGCGTCGGGTCGCAGACCATCACCAAGTCCGCGTCCAGCGCCCTCGACACCTACCGGGAGAGGTGAMRTAPRHARRRHAWSVRDRERGSTSLELAVLAPALLVLLALIVVAGRVAVAHQAVDAAAAQAARAASLERTPRAAADRAHAVADATLDNSGLHCTGTSISVDAGGFAAPVGTPASVTATVTCTVDLSGLPVPGVGSQTITKSASSALDTYRERNANANANANA
AK018_06223453hypothetical proteinATGCGCCCCCTCCGCCTGCTCATCTCGCCCTGGTTCCCCCGTGAGGACGGCGAGCGCGGGTCCATGTCCGCGTGGGCGGCGGTCACGACGCTCGCGATGCTGCTCTTCGTCGGTATCGGCGTCGACTTCGGAGGCCAGCTGCACGCGATCCAGAACACCCGCGCCGTCGCCGCCGAGGCCGCCCGCATCGGCGGGCAGCAGCTCAACGCCCCGGTCGCGATCCGCGGGCAGGGCACCGAGGCCTCCCCGGCCGCAGCACGGGCCGCCGCCGCGGCCTACATCGAGGGTGCCGGGCTGACCGGGTCCGCTTCGATCGTCGAGGGGCAGATCGTCGTCGACACGAGCGCCACGTACCAGACGAAGATCCTGTCCCTGGTCGGCATCGATAGCCTGCCAGCGAGCGGGCACGCCAGCGCCCGGATCGCACGCGCCGTCGAAGGGGTCGAACAGTGAMRPLRLLISPWFPREDGERGSMSAWAAVTTLAMLLFVGIGVDFGGQLHAIQNTRAVAAEAARIGGQQLNAPVAIRGQGTEASPAAARAAAAAYIEGAGLTGSASIVEGQIVVDTSATYQTKILSLVGIDSLPASGHASARIARAVEGVEQNANANANANA
AK018_062243039hypothetical proteinGTGAACGCGCGACGTCGTCTGCTCGGCCTGGCCGCACTGGTCGCGATCCTCGCGATCATCATCGGCCTGCCCGTCGTGCTCTTCGCCGTCGGGGCTAACCCGTTCGCTGACGGCGTCTCGTGGGGAGTCCTGACCCGGCCCGACGACGGATCGCTCGCGCTGGCCGCGATCAAGGTGATCGCGTGGATCGCCTGGGCTGTCCTCACCATCGCCCTGCTCGTCGAGATCGTCGCCCGGGTACGCGGCATCCGCCCGCCGCGCCTGCCCGGACTCGCGCTGCCGCAGGGCTGGGCGCAGGGCCTTGTCGGGGCGGCCGTTGCGCTGTTCGCCGCGGCCGGCCCGACGGCGGTCGACTCGTCACCGGCACACGCCGCCCCACTTGCCACGGTCGAGCCAGACGTTGTTGCCGCCGACGTCGATCGTGCGGCCACGGATGGCGCGGCCCGCCCGCAGGAGCAGACGAAGGAACGCGACGCACCATCGACTGTCGCGTACACGGTGCAGCCGAACGATTCCTTGTGGTCCATCGCCGAGAAGCGCCTCGGGGACGGTCACCGGTTCACCGAGCTCGTCGACCTGAACGCCGACCTGCTCGGCGGCAAGGCCGACTTCCTCAAACCCGGCTGGGTTCTCTCCCTCCCGGCATCGCCCGAGCCTCCCGCCGCACCCGCCGACGACCGGCGCACAGTGACGGTCCAGCCCGGCGACTCCCTGTCGTCGATCGCCGCCGCCGAACTGGGCGACCCCGACCGGTACCGGGAGATCTTCGACGCCTCGACGGGCATCACCCAACCCGATGGGGCGCGCCTGTCGGACCCCGACCTCATCCAGCCCGGCTGGACGCTCGTCATCCCCGCCGTGCGCGGCGATGGCGAGCCGGGCGCGTCTCCGACGCCGGATCCGACTGACCTACCTGCCGCCGAGATGTCGACCGCGGAACCGAAGGAGTCGGAAGCGGTGGACGCGGCACCGCGACCCGAGCGCGGACCCGGGGCGTTGTCCGCTCTGCCCGGCGTGGCTCCGACCGCTCCGGCCGCCGCGCAGAACGCTCCCGACGCCGGAGCAGCCGAGACGGCGGCAAGCGGCAACGTCGGTGAACCGGACTCGGCCGACGCATGGAAGGTTGCGACAGGTTTGGGCATCGGGACGATCCTGGCGGCCGGAGCGATCGCCGTCGTCGCCCGCCGCCGAAGCGCCCAGCAGCGCCGCCGCAAGCCGGGCCAGACAATCCCGATGCCCGAGGGCAGCGCCGCGTCCCTGGAACAAGAGCTGCGGACGGCCGCCGACGAACTCGCCGTCCAGAGAGTTGATGATGCCCTGCGAGGACTCGCGCGCCAGTGCTCGGAAGCGGGCGAGCCCTTGCCTGGCGTGCGAGCCGCGAGGCTCACGGTCGACCGGTTCGAACTCTACCTCGAGGAACCCGAGCACCTCCCAGCGCCCTGGCGGGACATCGACGACGGCTCCATCTGGGCTCTCGACGCAGGCACGACACTCGCCGCGGACTCGGCGTCCACCTCGGTCCCGGCCCCGTACCCGGCACTCGTCACCGTCGGTCACGACGACAGTGCCGGCCACATCTTCCTCAACCTCGAACGCATCGGGGCGCTCGGTGTCACCGGTACCGAAGAGAACACACGCGCGATCGTCGCGGCCCTGACCCTCGAACTGGCCATGTCAATGTGGGCGGACGACCTCCAGGTCACCGTCGTGGGCTGGTTCGCCGACGTCGAAGGCGTCCTGCGCAGTGGCCGGATCCGGTGGGTCCCGACCATTGACCGACTGCTCGACCAGCTCGCCGGACGCGCCGGGTCCGACCGCCAAGCGATCGCCGAGGCAGGCGTGCGCGACCTTGGTGCCGCTCGCTCCGCAGGCTTGGTGCCAGACGCCTGGACGCCGGAGATCGTCGTCGTCGCTGACTTCATGACCGAAGCGCAGAAGTCCAAGCTCGCGGCGCTCACTGCCCAGACGCCGAAGGTCGCCGTCGCAGCCATCACCAGCGGCGTGAGCGTCGGACAGTGGGAGATCCGCACGTCGCCCGGCCAGTCACGCGCGATCCTCGACCCCATCGCCATGCCGCTCACACCGCAACGCCTGGCCCTCGACCAGTACGACGACCTCCTGGGCCTCGTCGCACTCGCCGACCCGGCGGGCTTGGTCGGCGACGGTGATCCAGAACCGTCCGTCGCGCAGGTCGAGACCTTGGAACCGGTTCCGGAGCCTGAGCTCGATGCGGACGACGGCGAGCCTGCCGGACATGACGAGGCACCGACCACGCCGAGTGCACCGCGGCTCCTCGTCCTCGGGTCCGTCGACCTCGTCGGTGCTACCGGGACGGTCGAGGACTCCAGAAAGGCGCGACTGCTCGAACTGGCCGCCTACCTCGCACTGCACCCGAACGCGACCGCCCCCGCGATCGACGATGCCATCTGGCCCGACCGCAGAACCGAGGACAACCTCAACACCCGCAACACCGCGACGTCGAAGCTGCGCCGGTGGGTCGGGCAAGACGAGTCCGGCCAGGTCTTCCTCCCGCGCCACGCCGCCGGCGGCGGATACGGGTTCACCGACCACGTCACGAGCGACGTCGGCGACTGGGACGCCTTGCTGGGCGGAGACCCGCTGAACGCCTCGACCGAGAACCTGGAGGCCGCACTCGACCTCGTGCGCGGCATCCCTTTCGAGGGGACTCATCGCAGGCGCTACGCATGGTCGGAGCCGATTCGACAACGCCTCGTGTCGGAGATCGTCGACGCCTCGTACGCCCTCACCAAGCGCCGGCTCATGGAGGGTCACTGGCGAGCGGCCGAGGCCGCTGTCACTGTCGGCCTCCTGGTCGATCCTGCCCAGGAGGCCCTGTGGCGGCTGCGCATCCTTGCCGCCCATGAATCGCACAACCCAGCCGCCGAGGCCGAGGCCATCGACCGCCTGCTGGCCATCACCGAAGAGCTCGAGGTCGACCTCGAACCCGAGACCGAGCAACTCCTCGCCGAGCTCAAGAACCCCGGCGAGCCGACCAAGACCCGCCTTCGTGCCCTGTGAMNARRRLLGLAALVAILAIIIGLPVVLFAVGANPFADGVSWGVLTRPDDGSLALAAIKVIAWIAWAVLTIALLVEIVARVRGIRPPRLPGLALPQGWAQGLVGAAVALFAAAGPTAVDSSPAHAAPLATVEPDVVAADVDRAATDGAARPQEQTKERDAPSTVAYTVQPNDSLWSIAEKRLGDGHRFTELVDLNADLLGGKADFLKPGWVLSLPASPEPPAAPADDRRTVTVQPGDSLSSIAAAELGDPDRYREIFDASTGITQPDGARLSDPDLIQPGWTLVIPAVRGDGEPGASPTPDPTDLPAAEMSTAEPKESEAVDAAPRPERGPGALSALPGVAPTAPAAAQNAPDAGAAETAASGNVGEPDSADAWKVATGLGIGTILAAGAIAVVARRRSAQQRRRKPGQTIPMPEGSAASLEQELRTAADELAVQRVDDALRGLARQCSEAGEPLPGVRAARLTVDRFELYLEEPEHLPAPWRDIDDGSIWALDAGTTLAADSASTSVPAPYPALVTVGHDDSAGHIFLNLERIGALGVTGTEENTRAIVAALTLELAMSMWADDLQVTVVGWFADVEGVLRSGRIRWVPTIDRLLDQLAGRAGSDRQAIAEAGVRDLGAARSAGLVPDAWTPEIVVVADFMTEAQKSKLAALTAQTPKVAVAAITSGVSVGQWEIRTSPGQSRAILDPIAMPLTPQRLALDQYDDLLGLVALADPAGLVGDGDPEPSVAQVETLEPVPEPELDADDGEPAGHDEAPTTPSAPRLLVLGSVDLVGATGTVEDSRKARLLELAAYLALHPNATAPAIDDAIWPDRRTEDNLNTRNTATSKLRRWVGQDESGQVFLPRHAAGGGYGFTDHVTSDVGDWDALLGGDPLNASTENLEAALDLVRGIPFEGTHRRRYAWSEPIRQRLVSEIVDASYALTKRRLMEGHWRAAEAAVTVGLLVDPAQEALWRLRILAAHESHNPAAEAEAIDRLLAITEELEVDLEPETEQLLAELKNPGEPTKTRLRALNANANANANA
AK018_06225621hypothetical proteinATGCCGACGCGACCGGCTCTGGCGGTGTGCGCCGTCGGGTTCACGGTGCTGCTTGCCGCCTGCACAGGCGGAAGCAACGGCCAGCCCACGCCGACGGCGACCACACAGTCGTCGGCGACCGCATCGCCGACGACGTCACCCACCCCGACGCCGACCCTGAGCGAGGAAGAGGCCGCCCAGCAGGCCAACGTCGAGGACGCGCAGGTCCGCTTCGCGGACTACCTCGAGGTGAGCGATCGGGTCCTCGCAGAGCCGGGCAACGGTGATCCCCTCCGCACAGTGCGCCCGTACATCGGCTCGGAGGAGATGGTGACGTGGTGGCAGTCCGTGCCGCAGCAGTTCGCCGACCAAGGGCTCCACCAGACCGGGACGTCCACCCTGGTGTCCGTGGATGTCACCGACTACGAGGGTGATCCCTTGAGCGAGGGCACGCAGATCGTGACGATGGAGGCGTGCGTCGACTTCACAGACGTCGAGGTCGTCGATGCCGACGGCAACCCGGCCGAGTCGAGCTATGCGGCGACGACGCCGGTTGTCCAGGACGTCGTCATGCAGCGGCAGCCGGATAGTCGCTGGACCGTCCAGGAAGCCGCGACCAGGCAGCCGTTCACGGAGTGCTGAMPTRPALAVCAVGFTVLLAACTGGSNGQPTPTATTQSSATASPTTSPTPTPTLSEEEAAQQANVEDAQVRFADYLEVSDRVLAEPGNGDPLRTVRPYIGSEEMVTWWQSVPQQFADQGLHQTGTSTLVSVDVTDYEGDPLSEGTQIVTMEACVDFTDVEVVDADGNPAESSYAATTPVVQDVVMQRQPDSRWTVQEAATRQPFTECNANANANANA
AK018_06226942hypothetical proteinATGCGGTACGCAGTCAGGGTCGTCTTCGCCGCAGTGGCTGCGGCGATGACTTTGCTGCTTGCCGTCGCGATCCCAGCGTCGGCCGCCGACCCCGTGACGTGTCCGCCGGGCCAGACACCCATCGGCGGCACCTGTTACATCACGATCACCGACCCCGGCGAGGGCGGCGGTGGCGGCGGCAGAGGGGGCGGCGACTCGGGTGGTGCCGAGAACGTCAGCCATGAGCCGGCTACATGCCGCTACGGGCCGCACGAGGTGCCGTGCGCGGTCGAGGGCTACGTCTGGAACGCCTCGCGCTTGTGCTATGCCCGGCTCGCGGACCCCCAGCCGCCGCCCGACGACCCGGCCTGGGAGGGGCGCACCGAGGGCGTGATCGTCTCGTGCACTCCGCCGTGGTGCATCGTCGACGGCGTCGGCATGGACGACTGCTGGAACGACTACTACTGGGCCGAAGCGGCGCCCGCAGCGAGCGGACCGTCCCCGCGGGACCTCGCCGACCGCGCCGTCGAGGCGATGAACCTGCGCGCGATCACGATCGGCATCGTCCCGAAACCCGTGGCCGGGAGCGTCGGCCTGGTCGGTATGCCCACCTGGATGTGGGCAGCCGAGCCCTCGGAATCGTCGACCGGGCCGACCACGAGATCGGCGTCTGCGGGCGGGACCACGGTGACGGCGACCGGGCGGCTCGACCGAATCGTCTGGTCGATGGGTGACGGAACTACGGTCTCCTGCGGCGTCGGGACGCCGTATGTGGACAGCTACGGGAAGGCAGCGTCGCCCGACTGCGGACACCACTACACCGAGCAGGGTCGCTACGCAGTCACGGCGACGTCCTACTGGACCGTCGAGTGGTCCGGCGGCGGTCAGAACGGGTCGATCCCGCTGGAGTTCTCGAACTCGACGCAGATCACGATGGGCGAGGCCCAGGTGCTCGTGCAGTAGMRYAVRVVFAAVAAAMTLLLAVAIPASAADPVTCPPGQTPIGGTCYITITDPGEGGGGGGRGGGDSGGAENVSHEPATCRYGPHEVPCAVEGYVWNASRLCYARLADPQPPPDDPAWEGRTEGVIVSCTPPWCIVDGVGMDDCWNDYYWAEAAPAASGPSPRDLADRAVEAMNLRAITIGIVPKPVAGSVGLVGMPTWMWAAEPSESSTGPTTRSASAGGTTVTATGRLDRIVWSMGDGTTVSCGVGTPYVDSYGKAASPDCGHHYTEQGRYAVTATSYWTVEWSGGGQNGSIPLEFSNSTQITMGEAQVLVQNANANANANA
AK018_06227318hypothetical proteinATGGACCTGCTGGCCGGGATTCCGGATCCGCGGCGGGCTCGTGGGGTGCGGTATCCGGTGGTCGGCCTGCTCGCGGTGGCGGTGTGCGCGGTGCTGGCCGGTGCGCGCGGGTTCACCGCGATCGGGGAATGGGCTCGCGACGCCGGCCCGGTCGAGCTCGCTCGACTCGGGCTGCGTGGCGGGCCGGACGAGTCGACGTTGCGCCGACTGTTCGAACGAACAGAGCTTGGCTCTGGTCGCTACTGCACGAGCACCTGGGCCTCGCCCATCGTGATCTGCGTCGAGTTCGAGAACTCCAGCGGGATCGACCCGTTCTGAMDLLAGIPDPRRARGVRYPVVGLLAVAVCAVLAGARGFTAIGEWARDAGPVELARLGLRGGPDESTLRRLFERTELGSGRYCTSTWASPIVICVEFENSSGIDPFNANANANANA
AK018_06228264hypothetical proteinATGTCGTCGACAGGCCGGAGGTTCAGTCCACAGTTCAAGGCCGAAGCGGTTCAAATGGTCTTGTCGACTGGGAGGCCGATTGCCGAGATCGCTCGTGACCTCGGTATCCATGATGGGACGCTTGGGAACTGGGTCCAGTTATGGCGCCAGGAGCACCCCGAGCCGGAACCGGAGATGACGCCGATGGACCACGCAAGGATGCGCCAGCTGGAGGACGAGTTCCTGAGAAAAGCCGCGGCCTTCTTCGCGAAGACGCTGGATTGAMSSTGRRFSPQFKAEAVQMVLSTGRPIAEIARDLGIHDGTLGNWVQLWRQEHPEPEPEMTPMDHARMRQLEDEFLRKAAAFFAKTLDNANANANANA
AK018_06229111hypothetical proteinATGAGCGCGGAGAAGGCGAATTACCCGCTGGCGATGATGTGCCGGGTGCTGGGCGTGGCCCGCTCGACGTACTACGGGCTCTTCGCCGATCCGGTGGGGATCAGGGCGTGAMSAEKANYPLAMMCRVLGVARSTYYGLFADPVGIRANANANANANA
AK018_06230381malT_5HTH-type transcriptional regulator MalTATGGGGATCCGGGACGACGGCTCCGGCGACCGGGACGTCCACGACGACGGCCTGCGGCCCATCGCCGAGCGGGTGAGCGCCCTGCACGGCACGTTCCTCGTCGACGCGACCCGCGGGTGGGGGTCGAACCTGGCGATCACGCTGCCGCTGGACCCGCCGACGCCGGAGCTCGGCCTGGACGCCGACGTCGCCCTGACCCGCCGCGAGCGCGACGTGCTCGCGCTCGTCGCCGCCGGCCGCCGCAACGGCGAGATCGCCGAGCAGCTGTCGATCAGCGCGAACACCGTGAAGTTCCACGTCGCGAACCTGCTGCGCAAGGTGGGCGCGGCCAACCGAGCCGAGCTGGCGGCGCTCGCAGGCGGCGGCTCCCGGCGCGGCTGAMGIRDDGSGDRDVHDDGLRPIAERVSALHGTFLVDATRGWGSNLAITLPLDPPTPELGLDADVALTRRERDVLALVAAGRRNGEIAEQLSISANTVKFHVANLLRKVGAANRAELAALAGGGSRRGNANANANANA
AK018_062312649hypothetical proteinATGGGCAGCACCGGCGGCCTGCTGGGTCGCGCGGACGAGCTGCGGCAGGTCGCCGCCCTGATCGGTGCTGCACGCAACAGGCACCGGGGTGCGCTGGCGGTGCTGGGCGACCCCGGCGTCGGCAAGACCTCCCTGCTGTTGGCCGCGTGCACCGACACCGACGCGCGCGTGGTGCACGTCGACGGCTTCGAGTCGGAGTCGTCGATGCCCTTCGCCGCCGTCGAGCGCCTCACCGGCGTGCCGCGCGAGTTCGTCGACGGCGTGCCGACCCGGCAGCGGGAGGCGCTGCAGGTCGCCACGGGACGCAGCGACGGTCCGCCGCCGGACCGGTTCCTGGTCGGCCTCGCCGTGCTGAGCACGCTCGCCGCGGCGGGCACCGGACGTCCCCTGGTCTGCGCGGTCGACGACGCCCACCTGGTCGACCGGGAGAGCCTCGCCGTCCTGGCGTTCGTCGGCCGACGGCTGCAGGCCGAGCGGGTGGCGCTGATCCTGGCCGGTCGGGACGAACCGGCCCTGACCGAGCACCTCACCGGCGTGGCCCTCCTGCGGCTGGTCGGCCTCGCACCCGAGCCGGCGGCCGCCCTGCTGAACCGCGCGACGTCGCGACCCTTCACCGCGACCGCCACGACCGCCGTCGTCCGGGCGACCGGCGGCAACCCCCTCGCCCTCGTCGACCTCGCCACGGACCCCGTGCTGCGCGAGCTGCCCACGCTGGGCCTCGGACCCGACCCCGTGCCCATCGGCCGGCACCTCGAGGCCCACTACCTGCGCCGGGTCATGGTCCTCGCCGGCGACGTGCAGCGCTGGCTGCTGCTGGCCGCCGCCGACCCCACCGGTGACCCGACGCTGCTGGCCGGCGCCGCGGACCGGCTCGGCCTCCCGCCGGACGCGGGGGACGACGCCGAGACGGCCGGCCTCGTCCGCCTGGTCCCGCAGGTGCGGTTCCGGCACCCGCTCGTGCGGTCCGCGATCTACACCTCGGCGTCGGGCAGGCAGCGCGGTGCCGTCCACCGGGTGCTCGCCGGCGCCGCCGACCAGCTCGGGCTGGTCGAGGCCGAGGCCTGGCACGCCTCGCGCGCCGTGCGGGACACCGACGAGGACGTGGCCACCCGGCTCGACCGGGCCGCCGAGCTCGCCGCCCGACGTGGCGGCACCTCCTCCCGAGCGAGCATCCTGGCCCGGGCCGCCGACGTCTCCCCACCCGGGCCCCAGCGCGGACAACGGCTCGTCGCCGCGGCCGAGGCCGCGCTCGCCGCCGGTGCGGCCGACGTCGCCGACCGCCTCCTCGCCCACGTGCCCCACACCGACCTCGACCCCGTCACCCGGGGTCGACGGATCGAGGTGCGGGCCGGCGTCGCCCTGTTCGTCGCCGACCCGTCCGGGGTGCGGCGCACGACGGCCGACCACCTGCGCGCCGCGGAGCAGTTCCGGGGCCGCGACCGGGCGCGCGAGCAGGACGCGCTGCTCAGGGAGTTCGAGACCTGCCTGACCACCGAGCACCTTGCCGAGGACGTGGCACTGGACGAGCTCGGCCGACGCATCGCCGACGGCGCCGACAGCGACGTGTCCGTGGACGTCGTGCTGCGCGGGATCTCCGCCATGGCCCTCGCGCCCGCCGAGGAGGCCGTCGCCCCCGTGCGACAGGCCCACACCGCGCTGCTCGCGCTCCCCGACTCCCAGATGCTGCACCGAGCCGGGCTCCTCACCGCGCTCGCCATGTTCCTGTGGGACGACGCCGCGTGCCGCGCGGCGCTGGACCGCGCGGTCCGGGCGGCACGCCGGTCCGGTGCGCTGCAGGCGCTGGACTCCCTGCTGTGGACGGGCGCCCTCGCCGAGCTCGCCGCCGGCAGCGTCCGGCGCGCCGTCGCGCACGACCAGGCCCTGCGGGAGGTCCGGCGCGCCATGGGGTACGACGGCGCCAACGTCGTCAACGCGGCGCTGCTCGCCTGGACGGCCCCCGAGAAAACCGTGCTGGCCCTCGCCGACGGCGCCGACGGCACCGGGTTCGGTGGCGTGGGTTCCTCCGCGCGCGCGGCCCTCGCGGTACGGCTCCTCTCCGAGCGGCGGTACAAGGAGGCGCCTCGACGGCGGCTCCCACGTCAGCGCTCCCGCCCGGCACCGTGCCGACGAGGTCATGGCGATGCTGCTGGACCCGCAGGTGCGCGCCGTCGTGCCGCCGTGGGGCGGGGAGACCGCCGTCGACCTGGTCCCGCTGCTGGACTTCGACGCGCTGCGCGACGCCGAACCGACCTGGGTGGTGGGGTTCTCCGACATCTCCACGCTGCTGACCCCGCTGACCCTGGTCTCAAGCTGGGCGACGCTGCACGGCACGAACCTCATGGACACCCCGTACGAGCAGGTGCCGACGCTGGCGCACTGGCTCGACGTCGCCACCGGCTCGGCCCGGCCCGACGGCGTCGTCAGGCAGTCCGCACCAGGGGTCCACCGAGCCGACGGGTTCGACCGGTGGGAGGACGACCCGACCGTGACCGCCTACACCTGGGACGGTACGGGCTCGTGGCGACGGCTCGACGGCGACGGCCCGGTCGACGCGTCGGGCCGGGTGATCGGCGGCTGCCTCGAGACGCTCGGGTCGCTGGGCGGCACCCGGTACGCCGACACGTCCGCGCTGCGCGGCCCCGACGGTAAMGSTGGLLGRADELRQVAALIGAARNRHRGALAVLGDPGVGKTSLLLAACTDTDARVVHVDGFESESSMPFAAVERLTGVPREFVDGVPTRQREALQVATGRSDGPPPDRFLVGLAVLSTLAAAGTGRPLVCAVDDAHLVDRESLAVLAFVGRRLQAERVALILAGRDEPALTEHLTGVALLRLVGLAPEPAAALLNRATSRPFTATATTAVVRATGGNPLALVDLATDPVLRELPTLGLGPDPVPIGRHLEAHYLRRVMVLAGDVQRWLLLAAADPTGDPTLLAGAADRLGLPPDAGDDAETAGLVRLVPQVRFRHPLVRSAIYTSASGRQRGAVHRVLAGAADQLGLVEAEAWHASRAVRDTDEDVATRLDRAAELAARRGGTSSRASILARAADVSPPGPQRGQRLVAAAEAALAAGAADVADRLLAHVPHTDLDPVTRGRRIEVRAGVALFVADPSGVRRTTADHLRAAEQFRGRDRAREQDALLREFETCLTTEHLAEDVALDELGRRIADGADSDVSVDVVLRGISAMALAPAEEAVAPVRQAHTALLALPDSQMLHRAGLLTALAMFLWDDAACRAALDRAVRAARRSGALQALDSLLWTGALAELAAGSVRRAVAHDQALREVRRAMGYDGANVVNAALLAWTAPEKTVLALADGADGTGFGGVGSSARAALAVRLLSERRYKEAPRRRLPRQRSRPAPCRRGHGDAAGPAGARRRAAVGRGDRRRPGPAAGLRRAARRRTDLGGGVLRHLHAADPADPGLKLGDAARHEPHGHPVRAGADAGALARRRHRLGPARRRRQAVRTRGPPSRRVRPVGGRPDRDRLHLGRYGLVATARRRRPGRRVGPGDRRLPRDARVAGRHPVRRHVRAARPRRNANANANANA
AK018_06232954hypothetical proteinATGCGACGTACTCTCCTGACGCGGGCCGCGACGGCCGTCGCGGCCGCAGGACTCGCCCTTCCCCTGGCAGCAGCCGCCCCGGCCGCCGCCGACGCCCCCCAGAAGGACTGGGCCCCCGGTTCTGCCTCCGAGTGCTCCGGCCGGTCCGTCCCGGCGAGCAAGATCTCGTTCCAGCTCTACAGCTACAGCAGCTGGCAGCAGGAGATCGGGGTCGACGCCGTGCTCGCCGAGCTGGCGGAGATCGGCTACAAGAACGTGGAGCCGTTCGGCGGCAGCTACGAGGGCCGCACCGCGGAGGAGTTCCGCGCCCTGCTCAAGGAGCACCACCTCAAGGCTCCGAGCTCGCACGGTGACACCGACCCCGAGACCTTCGACGAGACGCTCGAGTTCGCCAAGACGCTCGGCCAGAAGTACACCGGTTCCGGCGGCTGGTCCGGACCCGGCGTCCCGTTCTTCGGCGGCACCACGACATGGGAGAGCGCCCTGGAGACCGCCGAGGCCATGAACGCCGCCGGCGAGCGGTCCGTCAAGGCCGGCACCGGCAAGCACTTCGGCCACAACCACTGGAACGAGTTCGTCCTCCAGGTCACCGACCCCGCGACGGGCGAGTCGATGAGCTGGTGGGAGGCCGTGGTCCGCAACACCGACCCGCGGTACGTCGCGTTCCAGGTCGACGTCTACTGGGCCACCGACGGCGGCGCCGACGTCGTCGAGCTGCTCGACGAGTACGGCGACCGCATCGACCTGCTGCACATCAAGGACGGCGACCTGTCCGGCCCGACCCCGGCGTTCGGCACCCAGACCGTCGTCGGCGAGGGTGACATCGACTGGCCGTCGATCCTCGAGGCGGCCCAGGGCAAGGTCAAGTACTACGTCGTCGAGATGGACGGCGCTCCCACCGATGCGAGCTTCGCGCGCGAGAGCTTCGAGTACCTCACCTGCCTCGACTTCTGAMRRTLLTRAATAVAAAGLALPLAAAAPAAADAPQKDWAPGSASECSGRSVPASKISFQLYSYSSWQQEIGVDAVLAELAEIGYKNVEPFGGSYEGRTAEEFRALLKEHHLKAPSSHGDTDPETFDETLEFAKTLGQKYTGSGGWSGPGVPFFGGTTTWESALETAEAMNAAGERSVKAGTGKHFGHNHWNEFVLQVTDPATGESMSWWEAVVRNTDPRYVAFQVDVYWATDGGADVVELLDEYGDRIDLLHIKDGDLSGPTPAFGTQTVVGEGDIDWPSILEAAQGKVKYYVVEMDGAPTDASFARESFEYLTCLDFNANANANANA
AK018_06233327hypothetical proteinATGACCGAGAAGGAACCCTCCGGCGCCGAGCGCATGTTCGGCGACTTCGCGCCCGGCCTCGTGCACTACACCGACGACGTGCTGTTCGGCGACGTGTGGGAGCGGCCCGGCCTGTCGCCCAAGGAGCGCAGCCTGGTGACCGTCTCCGTGCTGGCCACGAACGGGAACACCGAGCAGCTCACCTTCCACATCTGGCTGGCCAAGGAGAACGGCAACTCGGAGGAGGAGGTCGTCGAGGCCCTCACCCACCTCGCGTTCTACGCCGGCTGGCCCCAGGCGATGGCTGCCATGGCCGTCGCGAAGCAGGTCTTCCGCGGGGAGTCCTGAMTEKEPSGAERMFGDFAPGLVHYTDDVLFGDVWERPGLSPKERSLVTVSVLATNGNTEQLTFHIWLAKENGNSEEEVVEALTHLAFYAGWPQAMAAMAVAKQVFRGESPGPT0005005_4090DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
AK018_06234372hypothetical proteinATGACCACCTGGACACCCGAGGAGCTCGACGCGGTCGGCGACGCCGGCGAGCTCTCCATCGCCCCCGCCCGTACCGACGGGACCTTTCGCCGGCCGATCCCTATCTGGGTCGTGCGGGTCGGCGACGAACTGTACGTCCGATCCTTCAACGGGCCCGACGGCGGCTGGTACCGACAGGCGCTGCGCACCGGCCGCGCCCGGATCGACGCGGGCGGGGTGGAGCGTGAGGTCGCGCTGTCCGAACCGGCCACGGACGTCACCGACGAGGTCGACGACGCCTACCGCGCCAAGTACGGCCGCTACAGCAGCTATGTCGCACCGATGGTCGCGCCCGCGGCCGTCGCGTCGACGCGACGCCTCGACCCCCGCTGAMTTWTPEELDAVGDAGELSIAPARTDGTFRRPIPIWVVRVGDELYVRSFNGPDGGWYRQALRTGRARIDAGGVEREVALSEPATDVTDEVDDAYRAKYGRYSSYVAPMVAPAAVASTRRLDPRNANANANANA
AK018_06235915hypothetical proteinATGGACATCCGCCAGGACGTGAAGGAGTTCCTCACCTCGCGTCGCGCCAGGGTCACACCGGCCGACGCCGGTCTGCCGGCCGGCAGCAACCGGCGTGTGCCGGGCCTGCGACGCAGCGAGGTGGCGATGCTCGCCGACATGAGCGTCGAGTACTACGCACGCCTGGAGCGCGGGAACCTGGCGGGCGTGTCCGACCCGGTGCTGGAGTCCCTCGCTCGCGCGCTGCAGCTCGACGAGGCCGAGCGCTCCCACCTGTTCGACCTCGCGCACACCGCGAACCGCGCCGCACCGACGCGACCCCGACGTCGCGGGACCGCGCGATGGGTCGCACGACCCTCGCTGCAGGCCGCGCTCGACGCGGTGACGGCCGGCCCGGCGTTCGTCCGCAACGGCCGCATGGACATCCTCGCCGCCAACCGGTTGGGCTGGGCCTTCTACGACGACGTGCTCACCGGAGCCACGGGGACGCCGAACCTCGCCCGGTTCACGTTCCTGGACACCGAACACGCCGAACGGTTCTACCCGGACTGGAACCTGGCGGCCGACATCGTGGTCGCCATCCTGCGGATCGAGGCGGGGCGCGACCCGCACGACAAGGGGTTGCACGACCTCGTCGGCGAGCTGTCCACCCGGTCGGCCGAGTTCCGCACCCGCTGGGGCGCCCACGACGTCCGGCACCACGGCAGCGGCACGAAGGGTTTCCACCACGCCGTGGTCGGCGACCTCGAGCTCGCCTACGAGGGCATGGAGCTGACCGCCGAGCCGGGGCTGTCGCTGACGATCTACACCGCTCAGGCGGGCAGCGCCTCCGAGGAACGCCTCCGCCTGCTCGCGAGCTGGGCGGCCTCCCAGGACTGGCCCGGCCACCCCGCCGTCGTACCCGACCCCGACCCCGTCGAAAGGACGACCCCATGAMDIRQDVKEFLTSRRARVTPADAGLPAGSNRRVPGLRRSEVAMLADMSVEYYARLERGNLAGVSDPVLESLARALQLDEAERSHLFDLAHTANRAAPTRPRRRGTARWVARPSLQAALDAVTAGPAFVRNGRMDILAANRLGWAFYDDVLTGATGTPNLARFTFLDTEHAERFYPDWNLAADIVVAILRIEAGRDPHDKGLHDLVGELSTRSAEFRTRWGAHDVRHHGSGTKGFHHAVVGDLELAYEGMELTAEPGLSLTIYTAQAGSASEERLRLLASWAASQDWPGHPAVVPDPDPVERTTPNANANANANA
AK018_06236414hypothetical proteinATGAAGGTCCTCACCGCTCCCCCGACCACCAAGAACCCGCCGGAGCAGTTCACCGGCGACGTCTGGCTCGACCCCGTCGCCTATCCGCAGGACGCCGGGCAGACCATGGTCGTCGCCAAGGTCAAGTTCGCCCCGGGAGCCCGCACCGCGTGGCACTCGCACGCTCGCGGCCAGACGCTGCACGTCACCAACGGGTTCGCGCTCGTCGGCACCCGTGACGGCACGGTCGTCAGGGCCGGGCAGGGCCAGACGATCTACTGCCCGCCGGACGAGGAGCACTGGCACGGCGCGACGCCGGACAGCTTCATGGAGCACCTCGCGATGCTCGAGAACACCGACGACCCCGCGACCTCCACCCGCTGGCTGGAGCACGTCACCGACGAGGAGTACGCCCGGCCCGCCACCGCGGCCTGAMKVLTAPPTTKNPPEQFTGDVWLDPVAYPQDAGQTMVVAKVKFAPGARTAWHSHARGQTLHVTNGFALVGTRDGTVVRAGQGQTIYCPPDEEHWHGATPDSFMEHLAMLENTDDPATSTRWLEHVTDEEYARPATAAPGPT0005005_56DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
AK018_06237249hypothetical proteinGTGCGAACAGAGACGCTCGACGCGTGTGGGACGACGGGGCCCGACCCGTCCGGGCCTCGCGCCGCGTCCACCTGCACTTCCACCACGCACGCGATCCTGCGCGGGCGGGGCGTGCCGGTCGTGGACTGGGAGGGATGGCTGCGCATCGACGCGGCCGAGCAGCGGCTCGGTGCGGCGTCGGGCCGGGAGCGGACCAAGATCGTGGACCGGTCCGAGCTCGTCGCGCTCGGCGCCGGGGTGACGGTCTGAMRTETLDACGTTGPDPSGPRAASTCTSTTHAILRGRGVPVVDWEGWLRIDAAEQRLGAASGRERTKIVDRSELVALGAGVTVNANANANANA
AK018_062381392hypothetical proteinATGCACCGCAGCAGAACCACCCAGCCCTCGTCCCGGGTCGTCCGAGGGCTCCGTCTACCCGCTCTCGTCGCCACCGGAGCCCTCGTCCTGGCAGCGTGCTCGACGCCGTCGGGCGCCGGCGGCCCGGACGACCAGGTGACGCTCACCTACTGGATGTGGGACGCCAACCAGGTGCCCGGCTACCAGCAGTGCGCCCAGGACTTCGAGGCGGAGAACCCGGACGTGCTCGTGAACCTGGAGCAGTACGGCTGGGACGACTACTGGACCCAGCTCACGGCCCGCATGGTCGCCGAGAGCGCCCCGGACGTCTTCGTCGACCACGCCCAGCAGTTCGGCAAGTACGCGAGCTTCGACCAGATCCTCGACATCAGCGACCGCGTCGAGGACTCCGGCCTCGACCTGGGGCAGTACCAGGACGGTCTCGTCGACCTGTCGCGCGGCCCCGACGGCGGCCTGTACGGCCTGCCGAAGGACTGGGACACCGTGGGCCTGTTCTACAACGCCGACATGGTGGCCGAGGCCGGGTACGCGCCCGAGGACCTGCGGGAGCTCGAGTGGAACCCGCGCGACGGCGGGACTTTCGAGGAGTTCCTGGCCCGGATGACCGTGGACGAGAACGGGGTCCGGGGCGACGAGCCCGGGTTCGACCCGAGCCGTGTGGACGTCTACGGGCTCGGGTACAACGAGAGCGGCGGCGGGTTCGGCCAGGTGCAGTGGGCGCCCTACGCGCTGAGCAACGGCTGGACCTACGCCGACACGAACCCGTGGCCGACGTCGTTCCACTACGACGACCCGGCCCTGGCCGAGGCGGTCGGATGGTGGCGCTCCCTCATCGACAAGGGGTACATGCCGCCCCTGCCGGTGGCGACGTCCGGCATCGGGACGATCGAGTCCCTCGGCTCGGGCGGGTACGCCGCCCTGATCGAGGGGTCGTGGAACTCCCGCGCGATGGCGGAGCTGCAGGGCGTCGATGTCCGGGTGGCACCCACCCCGGTCGGGCCGACCGGGCAGCGGGCGTCGGTGTTCAACGGGCTGTCGGACGCGATCTACGCCGGCACCGAGCATCCCGACGAGGCCTGGCGCTGGGTCGAGTACCTGGCGAGCCCCGCGTGCCAGGACGTCGTCGCCGCCGAGGCGCGCGTTTTCCCCGCGATCTCCAGCTCGTCGGAGCAGGCCGTGGCCGCGTTCTCCGAGATCGGCATCGACGCGGAGGCCTTCGCCGTCCACGTCGAGGACGGCACCGGCACGTTGTCCCCGGTCACCGACCGGTGGACCGAGGTCCAGTCGATCATGCAACCCGCAATGGACGAGGTCATGTCCTCGACGAGCGACCCGGGGCCGATCCTGTCCGACGCCGACGCCCGGGTCGAGCGGATGATGGCGGACGGGTGAMHRSRTTQPSSRVVRGLRLPALVATGALVLAACSTPSGAGGPDDQVTLTYWMWDANQVPGYQQCAQDFEAENPDVLVNLEQYGWDDYWTQLTARMVAESAPDVFVDHAQQFGKYASFDQILDISDRVEDSGLDLGQYQDGLVDLSRGPDGGLYGLPKDWDTVGLFYNADMVAEAGYAPEDLRELEWNPRDGGTFEEFLARMTVDENGVRGDEPGFDPSRVDVYGLGYNESGGGFGQVQWAPYALSNGWTYADTNPWPTSFHYDDPALAEAVGWWRSLIDKGYMPPLPVATSGIGTIESLGSGGYAALIEGSWNSRAMAELQGVDVRVAPTPVGPTGQRASVFNGLSDAIYAGTEHPDEAWRWVEYLASPACQDVVAAEARVFPAISSSSEQAVAAFSEIGIDAEAFAVHVEDGTGTLSPVTDRWTEVQSIMQPAMDEVMSSTSDPGPILSDADARVERMMADGPGPT0016545_1703DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_06239951dasC_9COG0395Diacetylchitobiose uptake system permease protein DasCGTGTCGACGACGACCACCACCTCCGGTGCGGCCACGGCCGACGCGCCGCACGGATCCTCGGTCCGGCCGGAACGACGGCGCATCCCCTGGGGACGCATCGGCGGCTGGATCTGCCTCGTGGTGATCCTGCTGATCACGATCTTCCCCTTCTACTGGATGCTGCGCACCGCACTGTCGGACAACCGGGCGCTCGCCCTCGAGGCCGACAGCCTGCTGCCCGCCGAGTTCACCCTCGACGCCTTCCGCCGCGTCTTCGGGCTGACCACGCTCGAGGAGTCGCTCGCCCAGGGCGGCGCCGGCGGCCGGATCAACTTCTGGCTCTACCTGCGCAACTCGGTGATCGTCGCGGCGTCGATCACGATCGGTCAGGTGCTCTTCTCGGCCATGGCCGCGTACGCGTTCGCGCGGCTGCGGTGGCCCGGACGCAACATCGTGTTCGCGCTGTTCCTGTCGGCGCTCATGGTGCCGGGCATCTTCACCGCGATCCCGAACTTCGTGCTCGTCAAGGAGCTGGGGCTGCTCAACACCTTCCCCGGGCTGATCCTTCCGACGTTCTTCATGACGCCGTTCGCGATCTTCTTCCTGCGCCAGTTCTTCCTCGGCATACCACGCGAGGTGGAGGAGGCGGCGCTCATCGACGGTGCGGGGCGGGCCCGGGTCTTCCTGCGGATCGTGCTGCCCATGACGGCGGCCCCGATCACCACCCTGGCCGTGCTGACGTACATCACGGCCTGGAACGAGTACTTCTGGCCGCTGCTGGTCGGGCAGAGCGACGACGTGCGCGTCCTGACGGTCGCTCTGGGCATCTTCCGCTCGCAGACGCCGCAGGGCAGCCCGGACTGGTCGGGCCTGATGGCCGCGACGCTGGTCGCCGCGCTGCCGATCGTCCTGCTCTTCGTGGCGCTCGGGCGCCGCATCGTCAGCTCCATCGGCTTCTCCGGGATCAAGTGAMSTTTTTSGAATADAPHGSSVRPERRRIPWGRIGGWICLVVILLITIFPFYWMLRTALSDNRALALEADSLLPAEFTLDAFRRVFGLTTLEESLAQGGAGGRINFWLYLRNSVIVAASITIGQVLFSAMAAYAFARLRWPGRNIVFALFLSALMVPGIFTAIPNFVLVKELGLLNTFPGLILPTFFMTPFAIFFLRQFFLGIPREVEEAALIDGAGRARVFLRIVLPMTAAPITTLAVLTYITAWNEYFWPLLVGQSDDVRVLTVALGIFRSQTPQGSPDWSGLMAATLVAALPIVLLFVALGRRIVSSIGFSGIKPGPT0016540_1047DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_06240942melD_11COG1175Melibiose/raffinose/stachyose import permease protein MelDATGGCAGTCGTGACACCGCCGGCCCCGCCGGCACCCGGAGTCCGCGCACCGCAACGGTTGCGCCCCTCCGGCCGACCGCGCGGAGACCTGCGCGCGGCGATGGTCTTCCTCCTCCCCGCGACGATCGGGTTCGTGGTGTTCTACCTCGTCCCCGCCGTGCGCGGGGCCTGGTTCAGCCTCACGGACTACTCGGTGCTGGCACCACCGCAGTTCGTCGGGCTCGACAACTACCGGCGCCTGGTCGAGGACCCGCTCTTCTGGAACGCGATGGGCGTCACCGGGTACTACGTCGTCATCAACATCGTCGTCCAGACGGTCGTCGCCGTCGGCCTCGCGGTGCTGCTGCAGCGGATGACCCGGTCGATCCTCGTGCGTGGTGCGGCATTGCTGCCGTACTTCGTGGCGAACGTCGTCGTCGCGCTCGTCTGGTTCTTCATGCTGGACTATCAGATCGGCATCGTGAACGTCCTCCTGGGCAAGGTCGGGATCGACCCCCAGGCGTTCTTCGGCGACCCGGCTCTCGCGCTGCCGACGATCGCGCTGATCAACGTCTGGCGGCACATGGGCTACACGGCCCTGCTGGTCTTCGCGGGGCTCCAGACCATCCCACCGCAGGTCTACGAGGCGGCCTCGCTGGACGGGGCCTCGGCGTGGCGCCAGTTCCGCTCGATCACGCTGCCGCTGCTGCGGCCGGTGCTCGCCCTCGTGCTCGTCGTGACCGTCACCGGGTCGTTCCAGATCTTCGACACCGTGGCCGTGACGACCGGCGGCGGCCCGGTCGACGCCACGCGCGTCATCTACCTCTACATCTACGACCTGGCGTTCGCCCAGCTCGACTTCGGCTACGCGTCCGCGCTGTCCGTCGTCCTGTTCGCCGTCCTGCTGATCGTCGCGCTCGTGCAGCTCCGGCTGCTGCGGGCGGGCGAGTCGGACAACTCCTAGMAVVTPPAPPAPGVRAPQRLRPSGRPRGDLRAAMVFLLPATIGFVVFYLVPAVRGAWFSLTDYSVLAPPQFVGLDNYRRLVEDPLFWNAMGVTGYYVVINIVVQTVVAVGLAVLLQRMTRSILVRGAALLPYFVANVVVALVWFFMLDYQIGIVNVLLGKVGIDPQAFFGDPALALPTIALINVWRHMGYTALLVFAGLQTIPPQVYEAASLDGASAWRQFRSITLPLLRPVLALVLVVTVTGSFQIFDTVAVTTGGGPVDATRVIYLYIYDLAFAQLDFGYASALSVVLFAVLLIVALVQLRLLRAGESDNSPGPT0016535_4294DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_062412217rafA_2Alpha-galactosidaseATGACGATCCAGACGTACCTGACGGCTACCGCGGCCACCGCGGACGCCGACACCTTCCGCGAGGCCGACGGCCTGTGGCACCTGCGGGCCGCCGGGGTGAGCCTGGTCCTCGAGGTCACCCGTAGGGCTCTCCCGCGGATCCTGCACTGGGGCGCCGACCTGGGGGACCTGCCCGCGGACGAGCTGGACGCCCTGCACGCGGCCGCCGTACCGCCTGTCGCCTCCGGCACGCCCGACGCACCCGTGCCCCTGACGATCCTGCCCGAGCAGTCCGCCGGCTGGCTCGGCACCCCCGGCGTCACCGGCCACCGGGACGGCGCCGACTTCTCCACGCGGTTCCTCGTCGACGAGGTGCGGCTCGAGCACGACGTCGAGCGCGACGGCGCACCCGTGGCGCACCGGATGACCGTCGACGCCCGCGACGCCGAGGCCGACCTGGCCCTGCGGATCGAGATCGAGATGCTCCCCGGCGGGCTCGTGCGTGCCCGCGGGCGGCTGCAGAACACCGGCGCCGCGGTCTTCACCGTGGGATCCCTCGACCTCGCGCTGCCCCTGCCGCGGGAGGCCGACCAGATCCTCGACTTCACCGGCCGCCACCTGCGCGAGCGCAGCCCGCAGCGGCACGACTTCGTGGCCGGGACCCACCTGCGCGAGTCCCGGCGTGCACGCTCCCACGACGGGACCCTGCTGATGACCGCCGGACGCCGCGGGTTCGGCTACCGCTCCGGCGAGGTCTGGGGCGTGCACGTCGCCTGGTCGGGCAACACCCGGACCTTCGCCGAGCAGGGCATGCCCACCGGTGAGCGGCTGCTCGGCGCCGGCGAGCTGCTCCTGGCGGGCGAGGTGCGGCTCTCCGCCGGCGAGACGTACGACAGCCCGTGGGTCTACGCCTCCTACGGCGACGGTCTCGACGAGCTCTCCCACCGGTTCCATACCTATCTCCGGTCCCGGCCGCACCACCCGAGCTCCCCGCGCAAGTCGCTCGTCAACGTCTGGGAGGCCGTGTACTTCGACCACGACCTCGACCGGCTCACGGCGCTCGCCGACGCCGCGTCCGCCGCCGGCGTCGAGCGGTACGTGCTCGACGACGGCTGGTTCCGCGGGCGCCGCGACGACACCGCCGGACTCGGCGACTGGACCGTGGACGCCGACGTGTGGCCCGAGGGCCTGCACCCGCTCGCCGACCACGTCACCGGGCTGGGCATGGAGCTGGGTCTCTGGTTCGAGCCGGAGATGGTCAACCCCGACTCCGACCTCGCCCGTGCCCACCCGGAGTGGATCCTGCAGACCGGGAACCGGATGCCGCCGGAGGCACGTCACCAGCAGGTCCTCGACCTCGCCCACACCGGCGCGTGGGAGCACGTCTACGGCCAGATCGACGCGATCCTCGCCGAGTACCCGATCGGCTTCGTCAAGTGGGACCACAACCGCGACCTGGTCGAGGCCGGTCACACCGCGACCGGCGGGGCGGGGGTCCACGCCCAGACGCTCGCCGCGTACCGGCTGCTGGACGCGCTGCGCGCCGCGCACCCGCACGTCGAGTTCGAGTCCTGCGCGGGCGGGGGCGGCCGGGCGGACCTGGGCATCCTCGAGCGCACCGAGCGGATCTGGACCTCCGACTGCATCGACGCGCTCGAACGGCAGACGATCGAGGCCGGTACCGGTCTGCTCGTCCCGCCGGAGATGCTCGGCTCCCACATCGGGTCGCCGACGTCGCACACCACCGGGCGCCGGCACGAGCTGAGCTTCCGCGGGGCCACCGCGTTCTTCGGCCACCTCGGCATCGAGTGGGACCTCACCGCCGCCTCCGAGGCCGAGCGGAGCGAGGTCGCCCGCTGGGTGGCGGCCTACCGGGAGCACCGCGACCTGCTGCACCACGGTCGGAGCGTCCGCACCGACGACCCCGACCCCGCCCTACGGGTGCACGGCGTCGTCCGCGAGGGCTCCGGCGAGGCGATCTTCGCCGTCGTGCAGCTGACGACCGGTGTGTGGGCTCCACCCGGCCGCATCCGCCTGCCGGGGCTGGACCCGGACACCACCTACGACGTCCGGCCCCTGGCTCCGGGCGACGACGTCGAGCCCGGGCACGGCGAGGCGCTTCCTCCGTGGTGGTCCAGGGGCGTACGGCTGAGCGGTCGGACCCTCGCCGCTGCCGGGATCCAGGCACCTCACCAGTTCCCCGAACGGAGCGTCCTGCTCCACGTGACCGCGGTCTGAMTIQTYLTATAATADADTFREADGLWHLRAAGVSLVLEVTRRALPRILHWGADLGDLPADELDALHAAAVPPVASGTPDAPVPLTILPEQSAGWLGTPGVTGHRDGADFSTRFLVDEVRLEHDVERDGAPVAHRMTVDARDAEADLALRIEIEMLPGGLVRARGRLQNTGAAVFTVGSLDLALPLPREADQILDFTGRHLRERSPQRHDFVAGTHLRESRRARSHDGTLLMTAGRRGFGYRSGEVWGVHVAWSGNTRTFAEQGMPTGERLLGAGELLLAGEVRLSAGETYDSPWVYASYGDGLDELSHRFHTYLRSRPHHPSSPRKSLVNVWEAVYFDHDLDRLTALADAASAAGVERYVLDDGWFRGRRDDTAGLGDWTVDADVWPEGLHPLADHVTGLGMELGLWFEPEMVNPDSDLARAHPEWILQTGNRMPPEARHQQVLDLAHTGAWEHVYGQIDAILAEYPIGFVKWDHNRDLVEAGHTATGGAGVHAQTLAAYRLLDALRAAHPHVEFESCAGGGGRADLGILERTERIWTSDCIDALERQTIEAGTGLLVPPEMLGSHIGSPTSHTTGRRHELSFRGATAFFGHLGIEWDLTAASEAERSEVARWVAAYREHRDLLHHGRSVRTDDPDPALRVHGVVREGSGEAIFAVVQLTTGVWAPPGRIRLPGLDPDTTYDVRPLAPGDDVEPGHGEALPPWWSRGVRLSGRTLAAAGIQAPHQFPERSVLLHVTAVPGPT0018835_894DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
AK018_062421143mlc_4COG1940Protein mlcATGACGCCAGCACCGTGGGGCCCCCTCAGCGGCCCGGGCCACGCCGTCGCGCTCGACGTGCTGCTCGACGGTCCGCTGTCGCGGGCCGAGCTCTCCCGGCGGCTGGACCTCTCCGCCGGGAGCCTCACCCGCCTCACCAAGCCGCTGCTCGACGCCGGCCTGCTGGTGGAGGTCGACGACTCCCCCGCCGGATCGCGGGTCGGGCGGCCCTCGCGGCCGCTGGACATCGTCCCCGAGGCCCACCACTTCGTCGGGGTCAAGATCACCGGGGACACCGCGCACGGGGTGCTGACGACGCTGCGTGCCGGCGTGGTGGCCTCCGCCGACGCGCCGTTGGACGGCCATTCGCCGTTCGCCGTCGCCGACACCGTCGCGCAGCTGATCGGCGAGCTGGTCACCCGCGCGCCGCACGACGTCACGGCGGTCGGCGTCGCACTCGGCGGCCACGTCGTCGCCGCCTCCGACGTCGTGCGCGCCCCCTTCCTCGGCTGGACCGACGTGCCGCTGGGCGACATGCTGCGCTCGCGCACGAGCCTGCCCGTGGTGGTCGCGAACGACGTCACGGCACTCACCGAGGCGACGCACTGGTTCGGCGCCGGACACGGCGCCGCCACGTTCTCGCTGATCACCCTGGGAGCCGGTGTCGGATTCGGGCTCGTCGCGCACGGCCGGCTCGTGACGAGCGAGGACGCGAGCCTCGGCCTCGCCAGCCACCACCCGCTCGACCCCTCGGGTCCCCCGTGCTTCGCCGGGCACCGCGGGTGCGCCGTGGCCATGCTGACGATCCGGTCGATCACCACGCAGGTCGCCGTCGCCCTCGGACGAGAGGTCGCCTACGACGAAGCGCTCGACCTCGCCGAGGCCGGCGACCCGGCGGCCCGCCGCGTCGTGGACGACGCCGGACGCGCGCTCGGTCGCTTCGTCGCCGCCGCCGCCAACTTCACGATGCCCGAGCGGGTGGTGCTCGGGGGCGAAGGAGTCCGGCTCGTCGACGTCGCGCGGGAGGCGATGCACGCGGGCCTGCGCGCGGACCGGGACCCGCTCGCGCACGACCCGGTGATCGCGACCCTCAGCCCTTCGTTCACCGAGTGGGCGCGCGGTGCCGCAGTCATCGCGATCCAGACGTTCGTCCTCGGAACCTGAMTPAPWGPLSGPGHAVALDVLLDGPLSRAELSRRLDLSAGSLTRLTKPLLDAGLLVEVDDSPAGSRVGRPSRPLDIVPEAHHFVGVKITGDTAHGVLTTLRAGVVASADAPLDGHSPFAVADTVAQLIGELVTRAPHDVTAVGVALGGHVVAASDVVRAPFLGWTDVPLGDMLRSRTSLPVVVANDVTALTEATHWFGAGHGAATFSLITLGAGVGFGLVAHGRLVTSEDASLGLASHHPLDPSGPPCFAGHRGCAVAMLTIRSITTQVAVALGREVAYDEALDLAEAGDPAARRVVDDAGRALGRFVAAAANFTMPERVVLGGEGVRLVDVAREAMHAGLRADRDPLAHDPVIATLSPSFTEWARGAAVIAIQTFVLGTNANANANANA
AK018_062431218pbuECOG2814Purine efflux pump PbuEATGCCCCTGCGCCTCCCGCGTTCCCAGCGCCTCCCGCTCGCGATCTACGTCCTGACCGCCGGCACGTTCCTCATGGGGACGACCGAGTTCGTCGTGGCGGGTCTCCTGCCCGAGCTGGCGGGGGACTTCGGTACGTCGGTCGCCCGCGCCGGGCTGGCCATCACTGTCTTCGCCGTCGGGATGATCCTCGGCGCGCCGTCGATGGCGCTCCTGACGCTGCGTGTCCCGCGGCGGGTGACGCTGACCTCGGCGCTGGTCGTCTTCGCCGTCGGGCACGTCGTCGCCGCGCTCACCGCGAGCTTTGCCGTGCTGCTGGCCGCCCGGTTCCTGACGGCGCTCGCCACCGGCGCGTTCTGGGCCGTGGCGGCGGTCGTGGCGAGCCGGATCGCCGGTCCGGCCGCGAGCTCGCGTGCGCTGGGTGTCGTCCTGGGCGGCGGGATGCTCGCGAACGTCCTGGGTGTCCCGATCGGCTCCCTGGGCGGTCAGCTCGTCGGCTGGCGCGGCCCCTTCTGGGCGCTCGCCGCCCTCGGCCTGCTCCTCGCGGTGGCGGTCGCCCGCGTCGTGCCGGCCGACGAGCGGGCGGCACCCGCGGCGTCGGTGCGGGCCGAGCTCGCCGCGCTCCGGTCGGGTCTCCTGTGGCTGACGCTCGCCACCTGCGCCGCCGTGACCGCCGGTGCGCTGTCGATCTACAGCTTCGTGTCGCCGTTGCTGACCGAGGGCGCGGGTCTGCCGGCCGCGGCGGTGCCGCTCGCTCTGGTGATGTTCGGGGCGGCGGCGCTCGTCGGTTCCGTGGTGGGTGGCCGGGCCGGCGATCGGCATCCGTTCGGTACACCCCTGGTGACGGCGGCGGTGACCGTGGTCGCCGCCGGCGGGTTGCTGCTCACCACGGGGTCGCCGCTGGCGACCCTGGCGCTGTTCGTCCTGCTGGGGCTGGTGGGGCTCTCCGCGAACCCTGTGCTCGTGAACCTGGCCGTCCGCTACGGGGGAGACGCGCCGACGCTGGCCAGCGCGATGGCGACCTCGATGTTCAACCTGGGAACGGCGGTCGGGACCGGGATCACCGGTGTCGCGATGGACGGTGCGCTGGGCGTGCGTGCACCGGTGGCGGTCGGTCTCGCGTTCGCCCTGCTGGTCTTCCTCCCGCTCGTCCTGCTGCGCGGTGTCGAGCGTCGCGTGCCGGCGGGGTGCCGGGTCGTCGTGGACCTGTCCGTTCCCTGAMPLRLPRSQRLPLAIYVLTAGTFLMGTTEFVVAGLLPELAGDFGTSVARAGLAITVFAVGMILGAPSMALLTLRVPRRVTLTSALVVFAVGHVVAALTASFAVLLAARFLTALATGAFWAVAAVVASRIAGPAASSRALGVVLGGGMLANVLGVPIGSLGGQLVGWRGPFWALAALGLLLAVAVARVVPADERAAPAASVRAELAALRSGLLWLTLATCAAVTAGALSIYSFVSPLLTEGAGLPAAAVPLALVMFGAAALVGSVVGGRAGDRHPFGTPLVTAAVTVVAAGGLLLTTGSPLATLALFVLLGLVGLSANPVLVNLAVRYGGDAPTLASAMATSMFNLGTAVGTGITGVAMDGALGVRAPVAVGLAFALLVFLPLVLLRGVERRVPAGCRVVVDLSVPPGPT0028020_138DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-PHENICOL_RESISTANCE,PGPT0028020-cmlR|cmx-K18553NANA
AK018_06244762iclR_3COG1414Transcriptional repressor IclRGTGGCGGAGTCGGGGCAGAACGGGGGCGTGCAGTCCGTGGCGAGGGCCTTCGGGCTGCTCGAGGTGATCGGTGAGCGCGGCGGCGAGGCCGGGCTGAGCGAGCTCGCCGAGGCCACGGGCCTCGCGATGCCGACCATGCATCGGCTGCTGCGCACCCTCGTGCAGCTCGGCTACGTGCGCCAGCTGCCCTCCCGGCGCTACTCCCTGGGTCCCGGCCTGATCCGTCTGGGTGACCAGGCGACCCGGCTGCTCGCCACCTGGGCCCGTCCCACGCTCGTCGAGCTCGAGGAGGCGACCCGGGAGACCGCGAACCTGGCTCTGCTCGACGGTGACAAGGTGGTCTACGTCGCCCAGGTGCCTTCCCACCATCAGGTGCGCATGTTCACCGAGGTCGGGCGGCGCGTCTTCGCCCACTCGACGGGCGTGGGCAAGGCCATGCTGGCGCAGCTCGAGGACGACGAGGTCGTCGCCGTCGTGCGACGCACGGGCATGCCGCGCTATACGGACAACACCCACACGAGCGAGTCAGGTCTCCTGGCGGACCTGGCCGCGATCCGCGATCGGGGCTACGCCGTCGACGAGGGCGAGCAGGAGGTCGGCGTGCGGTGCTACGCGGTGCCCGTGCCCGGGGCCCCCACGCCGACCGCGGTCTCGGTCTCCGGCCCGGACACGCGCGTCACGATCGCCGCCGCGAGCTGGATGCTGCCCGCGCTGGGGCGGGCGGCCGAGGAGCTGGCGGACGCCCTGGCCGCGACGGAGTAGMAESGQNGGVQSVARAFGLLEVIGERGGEAGLSELAEATGLAMPTMHRLLRTLVQLGYVRQLPSRRYSLGPGLIRLGDQATRLLATWARPTLVELEEATRETANLALLDGDKVVYVAQVPSHHQVRMFTEVGRRVFAHSTGVGKAMLAQLEDDEVVAVVRRTGMPRYTDNTHTSESGLLADLAAIRDRGYAVDEGEQEVGVRCYAVPVPGAPTPTAVSVSGPDTRVTIAAASWMLPALGRAAEELADALAATENANANANANA
AK018_06245972ghrA_2Glyoxylate/hydroxypyruvate reductase AGTGCCGGTGCCTAGCGGCACCCAGCGGCGGATCGTCGTCGGCCAGGTGCCGATGGACGGGGCCACCCTCCGGCGGCTGCAGGAGCTCGCGACCGGCTTCGAGGTCGTCGTCGACCGGAACCCCTCGCCCGACCTCCTCGCCACCGCCGAGGTGGTCGCCGGGCGGATCGAGCCGGAGACGCTCGCGGTCGCGACCGCGCTGCGGTGGAACCACCTGTGGACGGCCGGTGCCGACGCGGACCTCTCCGCCGAGATGCGGGGGGCCGAGGGCGTCGCGGTGACCTCGTCGGCGGGTAACGGCGCCGTGCCGCTCGCCGAGCACGCGCTGATGCTGATGCTCATGCTGGACCGGGACGCCCCCCGACTGCTGTCCGCGCAGCGCAAGCGGAGCTGGGACAGGTTCCGGCACGCCGAGCTGGCCGGTCAGACGGTCGGCATCGTCGGCATGGGGGCCGCCGGGCAGGATCTCGTGGGCAAGTCCCGTGCGTTCCACCTGCGTGTCGTGGGCCTGCGCAACCGTCCCGAGGTCGCCGTCCCCGGTGTCGAGCGGATGTATGGACCGGACGAGATCCACGCGTTCGCCGCCGAGTGCGACTACCTGGTCGTCGCGGCCCCGCTGACGGCGGGCACGCGCGGCATGATCGACGCGGGGGTGCTGGCGGCGATGCGCTCCACGGCTGCTCTGGTGAACGTCTCCCGGGGGGAGATCGTGGACGACCAGGCGCTCCTCGCAGCCCTCACCGAGGGCCGGATCGCCGGTGCCGGGCTCGACGCGCACAGCGTCGAGCCCTTGCCGGCCGACTCGCCGTGGTGGTCCGCCCCGGGTGTCATCGTCACCCCGCACAACGGCGCGACCACACCCCAGACGATCGACCGCTCCGTCGAGATCTTCCTCGACAACGTGGGGCGGTACGTGGGGGGCGTTCCGTTGCGCAACCTCGTCGACAAGGCGTCCGGATACGCCCTGGTGTGAMPVPSGTQRRIVVGQVPMDGATLRRLQELATGFEVVVDRNPSPDLLATAEVVAGRIEPETLAVATALRWNHLWTAGADADLSAEMRGAEGVAVTSSAGNGAVPLAEHALMLMLMLDRDAPRLLSAQRKRSWDRFRHAELAGQTVGIVGMGAAGQDLVGKSRAFHLRVVGLRNRPEVAVPGVERMYGPDEIHAFAAECDYLVVAAPLTAGTRGMIDAGVLAAMRSTAALVNVSRGEIVDDQALLAALTEGRIAGAGLDAHSVEPLPADSPWWSAPGVIVTPHNGATTPQTIDRSVEIFLDNVGRYVGGVPLRNLVDKASGYALVNANANANANA
AK018_06246909garRCOG20842-hydroxy-3-oxopropionate reductaseATGACCACCATCGGTTTCATCGGACTCGGAGTGATGGGCGCCCCCATGGCGGCGAACCTCGTGAGCGCAGGGTTCGACGTCGTCGGGTACAACCGCTCGGCACCCAAGCGGGCGGCGCTCGTCGAAGCCGGCGGGCGGGCGGCCGAGTCGGTCGCCGACGCCGCCCGCGGCGCCGACATCGTCGTGACCATGCTCCCGGACAGCCCGGACGTCGAGGAGGTCGTGCTCGGTGAGGGCGGCGTCCTCGAGCACGCCGCGCCCGGGACGCTGCTCATCGACGCCAGCACGATCCGCCCCGACGTGAGCCGTGCCGTCGCCGAGCAGGCTCGTGCCCGGGGCGTCCGCCCGCTGGACGCGCCGGTCAGCGGCGGCGAGGCCGGTGCGATCGAGGGGGTGCTCTCGATCATGGTCGGCGGCGAGGCGGCGGACTTCGACGCCGCGCAGCCGGTGCTGAGCGTCGTCGGCTCGACCGTCGTCCACGTCGGACCCGACGGGGCCGGCCAGACGGTGAAGGCCGCGAACCAGCTCATCGTCGCGGGCAACATCGAGCTGCTTTCCGAGGCCGTCGTGTTCCTCTCGGCGCACGGCGTCGACCTCGGGTCCGCCGTCGAGGTGCTCGGGGGCGGTCTGGCCGGCAGCACGGTGCTGCAGCGCAAGGCGCCGGGCATGCTCGAGCGTCGCTTCGAGCCGGGCTTCCGGGTCGACCTGCACCACAAGGACCTCGGCATCGTGCTCGATGCTGCGCGCGCCGCCGGCGTCGCCGTCCCGCTGGGCGCGAGCGTCGCCGACCTCATGGCGTCCCTGCGCGCGCAGGGTGGCGGCTCGCTCGACCACTCGGCGCTCCTGCTGCAGGTCGAGCGCCTGTCCGGCCGAGCCGCCGAGGAGCTGGGTGGCGGTGCCGGTGCCTAGMTTIGFIGLGVMGAPMAANLVSAGFDVVGYNRSAPKRAALVEAGGRAAESVADAARGADIVVTMLPDSPDVEEVVLGEGGVLEHAAPGTLLIDASTIRPDVSRAVAEQARARGVRPLDAPVSGGEAGAIEGVLSIMVGGEAADFDAAQPVLSVVGSTVVHVGPDGAGQTVKAANQLIVAGNIELLSEAVVFLSAHGVDLGSAVEVLGGGLAGSTVLQRKAPGMLERRFEPGFRVDLHHKDLGIVLDAARAAGVAVPLGASVADLMASLRAQGGGSLDHSALLLQVERLSGRAAEELGGGAGAPGPT0018170_90DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042NANA
AK018_06247837hyiCOG3622Hydroxypyruvate isomeraseATGGACGACGATGCCCAGCACACGGGCGGACGCACGCTCGCGGTGAACTGCTCCCTGCTGATGAAGGACCTCCCGGTCCCCGAGCGTCTGGAGCGTGTGCGCGCGGCGGGCGCGACCGCCGTCGAGTTCTGGTGGCCCTTCGCGACGGCCGCCCCGGACACGTCAGAGGTCGACGCCTTCGCCACCGCGATCGAGGAGTCCGGGCTGACGCTCGTCGGGCTCAACCTGTTCGCCGGCGACATGGCCGGCGGCGACCGGGGCGTGCTTTCGTGGCCCGGCCGGGAGGACGAGCTGCGGACGAGCGCCGAGGTCGCCCGGACCCTCGGGCGGCGGCTCGGCGTCCGCCGCTTCAACGCGCTGTACGGCAACCGTTCTGACGGCCTCGACCCCGCCGAGCAGGACGCCCACGCCGACCGGATGCTGCGCGAGATCGCCCCGGTGCTCGGGCAGGAGGACGGCGTCGTCATGATCGAGCCGGTCAGCGGTGCCGCGGCCTACCCCGTCCGCACCGCCGACGACGCCGCCGCCGTCGTGGCCCGCGCGCACACCTCCGGCGGACCCGCGAACGTCGGCATCCTGCTCGACCTCTACCACCTGGCGGTCAACGGCGACGACGTCCCCGCGGCGATCGATCGCCACGGTGTCGACGCGGCCCACGTACAGCTGGCGGACGCCCCCGGACGCGGGGCCCCGGGCAGCGGTGACCTGCCCCTGACCGACTGGGTCCGGCGGCTGCGCGACGTCGGGTACGGCGGCCGCGTCGCGCTCGAGTACGCCGACCCCTCCCCCGACCCCCTCTCCCTCGTGGACCTCGACGCATGGAAGGACCTGGCATGAMDDDAQHTGGRTLAVNCSLLMKDLPVPERLERVRAAGATAVEFWWPFATAAPDTSEVDAFATAIEESGLTLVGLNLFAGDMAGGDRGVLSWPGREDELRTSAEVARTLGRRLGVRRFNALYGNRSDGLDPAEQDAHADRMLREIAPVLGQEDGVVMIEPVSGAAAYPVRTADDAAAVVARAHTSGGPANVGILLDLYHLAVNGDDVPAAIDRHGVDAAHVQLADAPGRGAPGSGDLPLTDWVRRLRDVGYGGRVALEYADPSPDPLSLVDLDAWKDLANANANANANA
AK018_06248429hypothetical proteinATGTCCACGCACACCCTCCGACCCGCCATCACCTACGAGACCGCCGCGGAAGCGGTCGCGATCGCCCTCGAGGTCGCGGAGCGCTCCGCCGTGCGCGCCGTCGTCACCGTCGTCGACCCCGGGATGACGCCGGTCGCATTCGCCCGGGCGGACGGCGCCACCCCGCACAGCATCGAGACGAGCCGTCGCAAGGCCGCGACCGCCGCCTCCACGGGCAGGCCCACCGCGCAGATGGCTCCGGACCTCGCCGTCGCGCTGGAGCACGGCAGCGGCGGGCTGCTCACCCGCATCAAGGGCGGCGTCCCCCTGGTCTTCGACGGCGTGCACGTCGGCGGCCTGGGCGTGGCCGGGGGCCATCCGGACCAGGACGCGGAGATCGCCGACGAGGTGCTGGACCGGCTCGGCGCCGAGAGCGAGGCGGCCCGATGAMSTHTLRPAITYETAAEAVAIALEVAERSAVRAVVTVVDPGMTPVAFARADGATPHSIETSRRKAATAASTGRPTAQMAPDLAVALEHGSGGLLTRIKGGVPLVFDGVHVGGLGVAGGHPDQDAEIADEVLDRLGAESEAARNANANANANA
AK018_062492196glcBCOG2225Malate synthase GATGAGCGACCGTCGTACCCCGCGCGCCGGGCTCGACGTGGCCGACGGGATCGTCGAGTTCGTCGAGGAGTCCGCGCTGCCCGGAACGGGCCTCGACCCGGCCCGGTTCTGGCAGGACCTCGCCGACCTCTTCCGGGACCTCGGGCCGGCCAACCGTGAGCTGCTCGCCGAGCGGGACCGCCTGCAGCGGCAGATCGACCGGTATCACGCCGAGCACCCCGGCCGCCCCGACCCGGCCGCTTACCGCGCGTTCCTCGAAGAGATCGGCTACCTGCGGCCGGAGCCCGCGGACGTCACGGTCACGACCGACCGCGTCGACCCAGAGATCGCCACGACCGCGGGCCCCCAGCTCGTCGTCCCGGCGCTCAACGCCCGGTTCGCCGTCAACGCCGCCAACGCCCGGTGGGGCTCGCTCTACGACGCCCTCTACGGGACCGACGCCCTACCGGACGAGGGCCCGGAAGCCAGGACGCCGGGGTACAACCCCCGTCGCGGCGCAGCGGCGGTGCGGCGCGGGCGCGAGCTGCTAGACACCGTCGCCCCGCTCGCTCACGGCTCGCACGCCGACGCGGTGGGCTATCGAGTCGAGAACGGCGCCCTCGTGGTGCTCACCGACCACGGGCCGACGAGCCCCCTGGCCCCGGAGGTGCTCGCCGGGTACGCAGGGTCCCCGGAGGATCCTTCGTCGGTGCTGCTGCGCCACCATGGGCTGCACGTCGAGATCGTCGTGGACCGCTCCCACCGGGTCGGCCGCGACGACGCCGCGGGCGTGGCCGACATCGTCGTCGAGGCTGCCCTCACGACGATCGTCGACCTCGAGGACTCCGTCGCGGCGGTGGACGGTGCGGACAAGGCCCTGGGCTACCGCAACTGGTGGGAGCTCATGCGCGGCTCGCTCGGCGCCGAGGTGACCAAGGGCGGGACCAGCTTCCGCCGCACCTTGGCCGAGGACCGCTGCTGGACCGCACCGGACGGCACCCCGATACGGCTGCCCGGCCGAGCTCTGCTGCTCGTCCGCAACGTCGGGCACCTGATGACGACGGACGCCGTGCTCGACGGACAGGGCGCCGAGGTGCCCGAGGGCATCCTCGACGCCGCGATGACGGCGCTCGGCGCGCTCGCTGACCTGCAGGGCCCCACGGCCGGCGGGAACTCGCGCACCGGCTCCGTGTACATCGTCAAGCCCAAGATGCACGGCCCCGCGGAGGTGGCCTTCACCGTCGACCTCTTCGGCCGCGTCGAGACAATGCTCGGGCTCCGGCCGAACACCCTCAAGATCGGCATCATGGACGAGGAGCGCCGCACCTCGGTCAACCTGCGTGCGTGCCTGCACGCCGCCCGCGAGCGCGTGGCGTTCGTCAACACCGGCTTCCTGGACCGCACCGGGGACGAGATCCACACCTCGCTGCACGCCGGTCCCGTGGTCCCCAAGCGCACGATGCGGGACGAGCCGTGGCTGGCCGCCTACGAGCGGTCGAACGTCGACGCCGGGATCACCAGCGGTCTGCTCGGCCACGGCCAGATCGGCAAGGGCATGTGGGCGATGCCCGACCTCATGCACGCGATGCTCGAGCAGAAGGGCGCGCAGGTGCGGGCCGGGGCGACGACCGCCTGGGTCCCCTCGCCGACGGCGGCGACGCTGCACGCGCTGCACTACCACGAGGTCGACGCCTTCGCGGTCGGCGCGGAGCTCGGCCGCCGTCCCGGCGCGCCGCTCGACGACCTTCTCGTCCCGCCGCTGGCGGACGGCGAGATCCCGGCCGACGTCGTGCGCACCGAGCTCGACACGAACGTCCAGTCGATCCTCGGCTACGTCGTGCGCTGGGTCGACCAGGGCGTCGGGTGCTCGAAGGTGCCCGACCTCGACGGGGTCGCCCTCATGGAGGACCGCGCGACGTTGCGCATCTCCAGCCAGCTGCTCGCCAACTGGTTGGCCCACGGTGTCGTCGGTGTCGACGACGTCGACGAGAGCCTGCACCGCCTGGCACCGGTGGTCGACGAGCAGAACGCCCACGACCCCGCGTACGAACCACTCGTCGGGCCCGCGGGGCCCGGCACGGCCTTCCGCACGGCGCGGGCACTCGTCCTCGAGGGCGCCGAGCAGCCCAACGGGTACACGGAGCCGCTGCTCCACCGGATGCGCCGAGAGAAGAAGGCGGAGCAGACCATGACGACGACGGGAGCGGGCGAACGATGAMSDRRTPRAGLDVADGIVEFVEESALPGTGLDPARFWQDLADLFRDLGPANRELLAERDRLQRQIDRYHAEHPGRPDPAAYRAFLEEIGYLRPEPADVTVTTDRVDPEIATTAGPQLVVPALNARFAVNAANARWGSLYDALYGTDALPDEGPEARTPGYNPRRGAAAVRRGRELLDTVAPLAHGSHADAVGYRVENGALVVLTDHGPTSPLAPEVLAGYAGSPEDPSSVLLRHHGLHVEIVVDRSHRVGRDDAAGVADIVVEAALTTIVDLEDSVAAVDGADKALGYRNWWELMRGSLGAEVTKGGTSFRRTLAEDRCWTAPDGTPIRLPGRALLLVRNVGHLMTTDAVLDGQGAEVPEGILDAAMTALGALADLQGPTAGGNSRTGSVYIVKPKMHGPAEVAFTVDLFGRVETMLGLRPNTLKIGIMDEERRTSVNLRACLHAARERVAFVNTGFLDRTGDEIHTSLHAGPVVPKRTMRDEPWLAAYERSNVDAGITSGLLGHGQIGKGMWAMPDLMHAMLEQKGAQVRAGATTAWVPSPTAATLHALHYHEVDAFAVGAELGRRPGAPLDDLLVPPLADGEIPADVVRTELDTNVQSILGYVVRWVDQGVGCSKVPDLDGVALMEDRATLRISSQLLANWLAHGVVGVDDVDESLHRLAPVVDEQNAHDPAYEPLVGPAGPGTAFRTARALVLEGAEQPNGYTEPLLHRMRREKKAEQTMTTTGAGERPGPT0001445_85DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638NANA
AK018_062502202hypothetical proteinATGACGACCGGAACGGACGAGACGACGCGCGGCACCCGCCTCGACGGCCTCACCCGCATCGGCCAGGTGAACCTGACCGAGGACGACGTGCGGCTCCTGGACGTCGAGTACTGGACCGACCTGTGGCGGCGCATGCGGCTCGAGGCCGTCCTGCTCAACTGCGGCGGCATCATGTCCTACCACCCCACGCGCCTGTCGGGGCACCCGGTCGCCCGCGGCGTCGACGAGCGGGACCTGTTCGGTGAGCTCGTCGACGCCGCGCGCGGCCAGGGGATCGAGGTGATCGGGCGTCTCGACGTCGGAGTCGTGGACCAGCGGTTCCGCGACCTGCACCCGACGTGGATGATGACCGACGCCGAGGGCCGCTCGCGGACGCTCAACGACGTCACCGGCGGCACGTGGGGCCGGCCCGGCGGCCACCGGCTGGAGAACGAGATGTACTACTCGTGCATCAACTCCGGACTGTTCACCGAGTACCTGCCCGAGCTGCTGCGCGAGGTCGCCGAAGGCTACGACGTCGCCGGCTTCTTCACCAACGGCTTCCCCACGGTGGCCCTGGCGCCGCCGTCGCTGCGCATGGCGTGCCACTGCGACCGCTGCCGGACGCTGTGGCGGGAGCACAGCGGCGCCTCGGACTACCCGGTCACCGACGACCCGTCCGACCCGACCTTCCGCGAGTACGTCCGCTTCCTGCGCACGACGGCGCTGGAGCGGATGCGCGAACTGGTGTCGTTCACGCGACGCCTGAGGCCTGGTCTGTCCTTCAACACGTCCGCGGTGCCGCACCTCGGCGGCGGGCTGCCGTGGAACGAGTGGGCCCGTGAGCTCACGCTCGTCATGTGCGACAACCAGGACCGGTCCGGGGACTACGGACGCACCGCCCCCTCGCACGGGCTCTGGGAGGTCGGGCTGAGCTCGGAGGTGGTGCGCTCGGTCGCCGCAGGGCGACCCGCCGGTCGCATCCAGTCGACCGCCCGCCTGCGCGGCGGCGGCCGGCACACCTCGAAGGAGCCGGCCGAGCTGCGGCTGCAGATGGCCGAGGCCCTGGCCCACGGCGAGCTGCCGGTGTGGCACGCCGTCTCCGGCAAGCAGCACAACCGGCGCTGGGTCGACGGCGTGGTGGAGTTCGACGCCTGGCTCGCCGAGCACGCCGGCGCCCTCGCAGATCGTCGGTCCCTGGCCGACGTCGGGATCGTGTGGTCGCAGGCAAGCGCCTGGCTCCAGGCGTGGGGGGCCGGGGCTCCGGGTCCGGCGTTCGGCGACGCCGTCGCCGGGTGGCACCTCCTGCTGTCCCGCTGCCGCGTCCCGAACCAGCTCGTCCTGGCCGACGGCACCGAGTCCTTCGACGGCCTGTCGACGCTGGTCCTGCCGAGCGGCCTCGCCCTGGACACGCACTCCGTGCGGCGGGTCGAGCAGTTCGTCGCCGACGGCGGCCATCTGCTCGTCCTGGGAACCGCAGGCATGGTCGGCCCATGGGGCGAACCGCACGCGGGAGACCCCGTCGGGGCGCTCGTCGGGGTCCGCCGGACACCGCCCGCGGCCGACAGCTTCGACCTCGTGTCGTACCTGCACGTGGGCGACGACCCCTTCGTCCACCGGCTGCTCCCCGATCTCGCTCCGGACGAGGTCGTCGCGGGCGGGAACTGGCTCACGGACATCGCTCCGGCCGACGACACCGTGTCCACGGCGATGCTCTGGAACCGGTCCGAGCACATGATCCCGACCCATGCCTCCGGCCTGCCCCCGGCGAGCGACCGGCCGGCACTCGCCTGGAGCGAGGACGGGAGCCGCCGCGCGTTCCTCGGCACCGACCTGGACGCGCGGTTCTTCGTCGACCGCGCCACCGAGCACCGTGGGATCCTCGGGGGGCTCGTCTCGTGGACGCTCGGTACCGAGGGCCCGACGGTGTCGGCATCCGGCGAGGGCGTCGTCGACGTCCGGAGCTGGCGCACCGCGCAGGGCCTCGTCGTGGCCCTGGTGAACCTCGACAACCCGGGCGCGCAGGACGAGCCGGTGGAGCGGTTCCGGCCCGTGGGACCGCTGACCGTGCGCGTGCGGGGCGTCCGGCCGGACGCGACGGTCCGCCTCGCCCGCAGGGGCGGCGACGTCGCCACGACGTCGACGGGCGACCACCTCGAGTTCGTCGTCGACCGGGTGGTCGACCTCGAGCTCGCCACCATCAGCGAGGAAGGAACGGCATGAMTTGTDETTRGTRLDGLTRIGQVNLTEDDVRLLDVEYWTDLWRRMRLEAVLLNCGGIMSYHPTRLSGHPVARGVDERDLFGELVDAARGQGIEVIGRLDVGVVDQRFRDLHPTWMMTDAEGRSRTLNDVTGGTWGRPGGHRLENEMYYSCINSGLFTEYLPELLREVAEGYDVAGFFTNGFPTVALAPPSLRMACHCDRCRTLWREHSGASDYPVTDDPSDPTFREYVRFLRTTALERMRELVSFTRRLRPGLSFNTSAVPHLGGGLPWNEWARELTLVMCDNQDRSGDYGRTAPSHGLWEVGLSSEVVRSVAAGRPAGRIQSTARLRGGGRHTSKEPAELRLQMAEALAHGELPVWHAVSGKQHNRRWVDGVVEFDAWLAEHAGALADRRSLADVGIVWSQASAWLQAWGAGAPGPAFGDAVAGWHLLLSRCRVPNQLVLADGTESFDGLSTLVLPSGLALDTHSVRRVEQFVADGGHLLVLGTAGMVGPWGEPHAGDPVGALVGVRRTPPAADSFDLVSYLHVGDDPFVHRLLPDLAPDEVVAGGNWLTDIAPADDTVSTAMLWNRSEHMIPTHASGLPPASDRPALAWSEDGSRRAFLGTDLDARFFVDRATEHRGILGGLVSWTLGTEGPTVSASGEGVVDVRSWRTAQGLVVALVNLDNPGAQDEPVERFRPVGPLTVRVRGVRPDATVRLARRGGDVATTSTGDHLEFVVDRVVDLELATISEEGTANANANANANA
AK018_06251765catDCOG05963-oxoadipate enol-lactonase 2ATGACCGACGTGCGATGGACCGCCAGCGAGGGGCCCCGGTCCGGACGCGAGGCGGTGCTGCTGAGCAACCCCCTCGGCGCGCCGCTGGAGCTGTGGGACGAGGTGACCGAGGCCCTGGCGCCGAGCTTCCGTGTCATCCGCTACGACTCGCCGGGGCACGGGGGCACCCGCCTGCGCGGCGGGATCACGATCAACTCGCTCACCGACGTCGCGCTGGAGGTGCTGGACGCCGCGGAGGCCGACCGCGCCCACGTGGTCGGTCTCTCGCTCGGGGCGATGGTCGGCCTGTCGCTGGCGGCCCGCGCACCCGAGCGGACGGCTAGCCTGGCCGTGCTGTGCAGCAGCGCCTACTTCCCCGACGAGCGGCTGTGGCAGCAGCGCGCCGCGACGGCACGGAACGGCGGGATGGAGGAGCTCGCGCAGGGGTCCCTGGCCCGCTGGTTCACGCCCGCGTGGGCGCAGGAGCACCCGACGGCGATCGCCGCGGCCCGCGAGATGTTCCTGGGAACCGACCCCGAGGGATACGCACGGACGGCCGAGGCCGTCGGAGCGCTCGACCTGCGCCCGTCCCTGCCGACGATCACGGCAGAGACGCTCGTCGTGGCCGGGGACGCCGACCCGTCCACTCCCCCGGCGATGCTGCGCGCCATCGCCGACGCCGTGCCCGGGGCCCGGTACGAGGAGCTCGCGGGGGCGCACTGGCTCCCCGTCGAGCGCGCGGACGCCGTGGTGGAGCTGCTCGTACCGCTCCTCACAGGACAGTAAMTDVRWTASEGPRSGREAVLLSNPLGAPLELWDEVTEALAPSFRVIRYDSPGHGGTRLRGGITINSLTDVALEVLDAAEADRAHVVGLSLGAMVGLSLAARAPERTASLAVLCSSAYFPDERLWQQRAATARNGGMEELAQGSLARWFTPAWAQEHPTAIAAAREMFLGTDPEGYARTAEAVGALDLRPSLPTITAETLVVAGDADPSTPPAMLRAIADAVPGARYEELAGAHWLPVERADAVVELLVPLLTGQPGPT0004995_745DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
AK018_06252639gntRputative D-xylose utilization operon transcriptional repressorGTGTCCACGACGACCCTGAGCGACGCCGTCTTCGACTCGCTGCGCCAGCGCATCGCGACCGGGGAGGTCGCTCCGGGAGAGCGCGTGACCGAGGCGCGGGTCGTCAGCGAGTACGAGATCGCCCGCCCGACGGCGAAAGCGTGCATCGAGCGCCTCGTCAGCGTCGGCCTGCTGCAGCGGGCCACCTACAAGTCCGCGACGGTCACCGAGCTCACGGCCGGCGACGTCGACGACCTCTTCCTGGCACGCACCACGATCGAGGTCACGGCCGCGCGGCTCCTCGCCCAGGTCGGCGAGGTGCCGCGCGCCATGCTCGAGGCGCAGCGTGCCCTCGACATCGCCGGAGAGTTCGACGACCGGCCCGGGCTGGTGCGCGCCGACATCGACTTCCACTCCTCCATGGTCCGGGCGAGCGGCAGCAAGCGTCTGGCCCGGATGTACGAGATGGTCACCGGGGAGATCTTGCTGACCATCGGGAGCGCCGGCCACCGCCGCGCGTCCATCGCGGACGTCGCTGCCGAGCACTCCGGCGTCCTCGACGCCCTGCGCTCGCGCGACGCCGACACAGCGGTGCGGCGTCTGACCCACCACCTCGACTCGGCGCACCTGCGCGTGCGCCGGGCGTTCGAGTCCGCCTGAMSTTTLSDAVFDSLRQRIATGEVAPGERVTEARVVSEYEIARPTAKACIERLVSVGLLQRATYKSATVTELTAGDVDDLFLARTTIEVTAARLLAQVGEVPRAMLEAQRALDIAGEFDDRPGLVRADIDFHSSMVRASGSKRLARMYEMVTGEILLTIGSAGHRRASIADVAAEHSGVLDALRSRDADTAVRRLTHHLDSAHLRVRRAFESANANANANANA
AK018_06253786rutD_4Putative aminoacrylate hydrolase RutDTTGGCTGAGCTGACCCGCAACCTGCACCGGGCCTTCTACCCGTCCCGGCTGCCGGGTGCGCGCGAGCCCCTGCTGCTGCTCAACTCGTTGGCGACGACCACCGAGATCTGGGTGCCCATGCTGTCGCGACTGACCGCCTCGACGAGCGTGCTGTGCGTCGACTATCCCGGGCACGGGCTGTCACCGGCTCGGGAGATGCCCGCCGACCTCGACGAGCTGGCGGCGAGCATGCTGGAGGTGATGGACGACTTCGGTCTCGAGCGCGTCCACGTCGCGGGCGTCTCCATCGGAGGCATGACGGCGCTGCGGCTCGCCGACCTCGCCCCCGACCGCATCTCCTCCATCACCGTGATCGGGTCGACCCCGGTCATGGACCTCGAGATGTGGCAGGCCCGCAAGGAGCTGGTGGGCCAGTGGGGCACCCGGGGGATCGTCCCCGACGTCATCGAGCGCTGGTTCACCCCGGAGTACGGCGCCGCGTTCCCCGACGTCGTCGCGCAGTACACGGCCATGCTCGAGAGCACCGCAGACAGCGCCTACGCGGTGTTCTGCGACGTGCTCGGCCCGGCCGACCTGCGCGGCTCGCTCGAGAAGATCCGCTGTCCGACCCTGGTGGTCTCGGGGTCACGCGACGCCGCCGCCACCGTGGAGGACGGTCGGACGATCGTGGCCGGCGTGCCGCAGGCCCGCCACGTGGTGGTGGACGATGCGGCGCACATGCTGCAGGCGATGGCGACGGACGAGGTGGCCGACCTGATCCTGGAGCAGGTCCGCCACGACGGCTGAMAELTRNLHRAFYPSRLPGAREPLLLLNSLATTTEIWVPMLSRLTASTSVLCVDYPGHGLSPAREMPADLDELAASMLEVMDDFGLERVHVAGVSIGGMTALRLADLAPDRISSITVIGSTPVMDLEMWQARKELVGQWGTRGIVPDVIERWFTPEYGAAFPDVVAQYTAMLESTADSAYAVFCDVLGPADLRGSLEKIRCPTLVVSGSRDAAATVEDGRTIVAGVPQARHVVVDDAAHMLQAMATDEVADLILEQVRHDGPGPT0004995_1300DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
AK018_062542052hypothetical proteinGTGACCACGACCTCCGACACGACCGAGCAGCGGTGGTGGCACGCCCCGTTCCGGCTGCTCCAGACCAACCTGCGCGAAGAGGACGCGCTGCTCGACGCCGAGTCCGCCGTCGACCGGATCGTCGATCTCGGCTACGACACGTGGCTGTGCAACGCGGGCGGGATCGCGTACTTCTACCCGGTCGACGAGCCCTACCAGCGTACCGCGGCGCGGCTCGCCGAGCGGGCCTCGGGCGACATGGTGGGAGACGTCCTCCGGGCGGCGCACGACCGCGACGTCCGGGTGCTGTCCCGCTTCGACTTCTCGCGGTTGCCGTCCGACATCGTCGCCGAGCACTCCGACTGGGCGTTCCTCGACCAGGACGGCCAGAGGTACACCGAGGACGGGCTGACGGCCCTCTGTCCGCGCAGCGACTACCACGAGGTTTTCGTGCCGCGGATCCTGCGCGACTTCGTCCGGCGCTACCCGGTGGACGGCATCTTCTTCAACTGGCTGCAGTACCCCGAGGTCGCCTACAGCGGCCGCTACAAGGGTGTCTGCCAGTGCGACCGGTGCCGTGCAGCCTTCGCCACCGAGCACCCCGGCACACCGCACCCGAAGGCGCTCGGTGACGCGGCGTACGACCGCTGGCTGGGCGTGGCCCAGCGGCGTCTCGCCGACCTGGCCGAACGCTACTCGCAGGTGGTCAACGAGGTGCGGCCCGGCACACCCCTCATGCTCGCCGACGTGCGCCGTGACATCGCCTTCCTGGAGATCAACTCCTCGCTGGGCGGGCACGACGGCGACGCCTGGTGGGTCCACACGCCGAGCGAGATCGCCAGCGTGAACCGGACCTGCGACCCTCGTGTCCCGGCTCTGGTCCACTCCTCGGTGAACATGGGGCTGCCGTACCGGCAGATCGCCGAGGAGCCCACGCAGTTCCGACGCTACGTCGCCCAGGCGCTGTCACGCGGGGCCCTGCCGTCGTCGGTCGTCGTGGGGACCGTCGACGCGGGCAGGTTCCCGTGCCTGTCGGCGGCGTCCGACCTGCTCGGATTCCTGCGCGACCGCGAGGACCGGTACGCCGGCTACCGGTCGACCGCCCGCGTCGCCGTCCTGCGCCCGCGAGGCGGAACGGCGATGAGTGCCATGCAGCACCCCGTCGACCATGCCGAGTACCGGGGCGTGTACACGGCGCTGCAGGAGTCGCACGTACCGTTCGACGTGCTCGGTCTGCAGTATCAGGACCAGCTGGCGCGGGACGAGGTCATGGCCCGGTACGACGTCGTGGTCGTCCCCGGAACCCTCGGGATCGACGAGGTGTTCGGCCACTCCCTCGACGAGTTCGTCCGGGCGGGGGGTTCGCTCCTGATCACCGGCGACGGGTTCCGCGACGGTCGACCGGTGCTGGCGTCTGCGCCGGCGACGGGGCTGACCGAGCGCCTGTCGGGCGTCGCCGAGCTCGGCGGGCGGTACGTCGGGCCGGCGGACGGCCGGGTCGACGTCCCGTTGCACCCGGTGCTGGGTCACTTCGACCGCGTCGTGGCACGGGACGGGGTCACGGCCGGACCGCTCTCGCTGAGCACGCAGACGCCCTTCGGCCCGCCGGAGATCACCGGGGGCAACACGACCGCGGGCGGGTACCCCGCCCTGCTGCGGGGCACCTTCGGCACCGGGCGCGTGAGCCAGTTCCCCTGGGCGGTGGGTACCACCGTGCACCGCTCGGGACTCACCGGTCTCGGAGACCTCGTGGCCGAGGAGGTGCGGGCCCTGCTGCCGGGCACCGAGATCGTCGAGGTCGACCTGCCGCGCGCGGTCGAGCTGACCGTCGGCCTCAGCGGGGACCGGGTGCTGCTGCACCTGGTCAACCACACGGGGGGGCGCGGAGACCGGGTCCGCGACCCCGTCCCGGTCGCCGGATCGGTGACCGTCACGGGGTCGATGGCGACACGCGCGGCCCGAGGAGCCACGGCACTGGTCACCGGTCGCCGTATCGATCCCGTCGAGGTGGCCGGCGGCCTGCGGCTGCCCGTCACCGTCGACGACGTCCTGGAGGTAGTCGAAATTGGCTGAMTTTSDTTEQRWWHAPFRLLQTNLREEDALLDAESAVDRIVDLGYDTWLCNAGGIAYFYPVDEPYQRTAARLAERASGDMVGDVLRAAHDRDVRVLSRFDFSRLPSDIVAEHSDWAFLDQDGQRYTEDGLTALCPRSDYHEVFVPRILRDFVRRYPVDGIFFNWLQYPEVAYSGRYKGVCQCDRCRAAFATEHPGTPHPKALGDAAYDRWLGVAQRRLADLAERYSQVVNEVRPGTPLMLADVRRDIAFLEINSSLGGHDGDAWWVHTPSEIASVNRTCDPRVPALVHSSVNMGLPYRQIAEEPTQFRRYVAQALSRGALPSSVVVGTVDAGRFPCLSAASDLLGFLRDREDRYAGYRSTARVAVLRPRGGTAMSAMQHPVDHAEYRGVYTALQESHVPFDVLGLQYQDQLARDEVMARYDVVVVPGTLGIDEVFGHSLDEFVRAGGSLLITGDGFRDGRPVLASAPATGLTERLSGVAELGGRYVGPADGRVDVPLHPVLGHFDRVVARDGVTAGPLSLSTQTPFGPPEITGGNTTAGGYPALLRGTFGTGRVSQFPWAVGTTVHRSGLTGLGDLVAEEVRALLPGTEIVEVDLPRAVELTVGLSGDRVLLHLVNHTGGRGDRVRDPVPVAGSVTVTGSMATRAARGATALVTGRRIDPVEVAGGLRLPVTVDDVLEVVEIGNANANANANA
AK018_06255909araQ_10COG0395L-arabinose transport system permease protein AraQATGATCGAGACGCCCACCCAGGTGACCCCGCGGTCAGAGCCGGCCGCGCCGGACCTGACCGCGCGCCGCCGCGGCAGGTCACCGTCCGACAGTCGAGGTCCCGTGGCCACCGGGCTGATCTACGTCGGCCTGGTGCTGGGTGCGATCGTGACGCTCAGCCCGCTCGTCTGGAACGTGCTCAGCTCGTTCAAGCCGTCGGGCGAGATCCTGCTCGCGCAGAGCTGGTGGCCGGAGACGTTCACGCTCGAGAACTTCGCCGAGCTGCTCTCGGGCGGCGAGTTCCCCCGCTACTTCTTCAACAGCGTCGTGGTGTCCGTGGCGATCGTGCTCGGCAACATCCTGCTGTGCTCGGCAGTGGGGTACGCGCTGGCCAAGCTGCGGTTCCCGGGCCGCGGCGTCGTGTTCGGCGCGGTGCTCGTGACGTTCATGGTGCCGTCACTGGTGCTCTTCGTCCCGCAGTTCGTCACCGTCGCCAGCCTCAACCTGACGAACACCTACGGTGGCCTGATCCTCCCGCTGATCATCACGCCCCTGGGGGTGTTCGTCATGCGGCAGTTCATCTCGCAGCTGCCTGACGAGCTCCTCGAGGCCGCGCGGATGGACGGCGCCGGCGAGGCGCGGCTGTTCTTCCGGATCGTGCTGCCGCTGTGCGGACCGGCGGTCGCGACGGTGGGCATCCTGTCGTTCGTCATGTCCTGGAACAACCTGCTCTGGCCCCTCGTGGTCGCGCAGACGAGCGACATGTACACGCTCCCGGTCGCTCTGACCACCATCTCGCAGGCCGAGGGCAGCGTGAGCTACGGGCCGCTGCTGGCGGGCTCGTTGCTGACGATCCTGCCCATCATCGTCGTCTTCATCTTCTTCCAGCGGTACTTCATCGCCGGCATCGCCTCGACGGGAATCAAGTGAMIETPTQVTPRSEPAAPDLTARRRGRSPSDSRGPVATGLIYVGLVLGAIVTLSPLVWNVLSSFKPSGEILLAQSWWPETFTLENFAELLSGGEFPRYFFNSVVVSVAIVLGNILLCSAVGYALAKLRFPGRGVVFGAVLVTFMVPSLVLFVPQFVTVASLNLTNTYGGLILPLIITPLGVFVMRQFISQLPDELLEAARMDGAGEARLFFRIVLPLCGPAVATVGILSFVMSWNNLLWPLVVAQTSDMYTLPVALTTISQAEGSVSYGPLLAGSLLTILPIIVVFIFFQRYFIAGIASTGIKPGPT0016540_2338DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_06256930lacF_12Lactose transport system permease protein LacFGTGACGACGCCCACGACGAGACAGACGTCCACCCGCAGGCCGGCGCCGGCTCGCAGGACGAAGAACTCCCAGGCGCTGGCCGGGTGGTTGTTCTCGTTACCGTTCGTGGCGGTCTTCGCGGTCTTCTTCGCGTGGCCGATCCTGTGGTCCCTCGCCATGAGCCTGACCGACATGACGAGCCGGGACCTGCGGACGCCCTTCAACGTGGAGCTGGTGGGGCTCGACAACTTCACCGCCGTCCTGACCGACCCGGTCTTCTGGCGGTCGCTGGGGAACACCGGTGTCGTCGTGCTGGTCGCCGTCCCGGCCGTCCTCGTGATCGCCCTGTTCCTCGCCGTGGCCCTCAACCGTGGCATCCGTCGCGGCAAGGCCTTCTTCCGGACCGTCTACTACATCCCCGTGGTCACCAGCATCGTGGCCATCGCGGTGGTCTGGAAGTTCCTCTTCGCCGACAACGGCACCGTCAACGCGCTGCTGGCCACCGTCGGGATCGACGGCCCCGCCTGGCTCGCCGACACCTTCTGGGCGTTGCCGACCATCATCCTGCTGGTCATCTGGCGGCTGTTCGGCCTGGTCATGGTGCTCTTCCTCGCGGGCCTGCAGGCGATCCCCCAGGACGTCCACGAGGCGGCCCGCGTGGACGGTGCGGGCTCCTGGCGCCGGCTGGTCTCGATCACCGTGCCGATGCTCATCCCCACGATCCTGCTGGCGAGCGTGCTGATGACCGTCTTCATCGTGCAGGTCTTCGAGGAGCCGTTCGTCATCACGCAGGGCGGTCCGCTGAACTCGACCCAGTCGGCGGTGATGTACATCTACGACGAGTTCGGGTTCGGGCAGTACGGGACGGCCGCCGCCGCGAGCTACATCCTCTTCCTGGTCATCGGCCTGCTGTCGTTGATCCAGTTCCGAGTCCTCAGGAGCCGAGCATGAMTTPTTRQTSTRRPAPARRTKNSQALAGWLFSLPFVAVFAVFFAWPILWSLAMSLTDMTSRDLRTPFNVELVGLDNFTAVLTDPVFWRSLGNTGVVVLVAVPAVLVIALFLAVALNRGIRRGKAFFRTVYYIPVVTSIVAIAVVWKFLFADNGTVNALLATVGIDGPAWLADTFWALPTIILLVIWRLFGLVMVLFLAGLQAIPQDVHEAARVDGAGSWRRLVSITVPMLIPTILLASVLMTVFIVQVFEEPFVITQGGPLNSTQSAVMYIYDEFGFGQYGTAAAASYILFLVIGLLSLIQFRVLRSRAPGPT0016535_4432DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_062571254ugpBCOG1653sn-glycerol-3-phosphate-binding periplasmic protein UgpBATGACGACTGCCGCACTGACCGCCACCGCTCTCCTGCTCACGGCCTGCGGTCGATCCGACGCCGGGTCGACCGTCGAGACCGCCGAGGCGATCGGTGACGCGCCGGCCACCGGCGAGATCACCATCTGGGCGGCCGAGAACGAGGGCAGGGCCCTGTCCGCCGCTGCCGAGGAGTTCCAGGCGGATAACCCGGACGTCACGATCACCGTGACGCCGGTGTCGTTCGACGAGCTCCCTCGCAAGGTGGACACGGCCATCGCCAGCGGTGAGGTCCCGGACATCATCCAGCCGAGCACCGGTCTGCAGTCCTACGTGTCCGCGGGCGGCATCGCCCCCGTCCCCGACGGTGTCACGGACACCTCGGAGTTCTTCGACTCGGCGGTCTCCGCCGTCACATTCGACGACGTCCTGTACGCCGTGCCGTGGTACGTGACCGTGCAGTCCTTCTACTACCGCGCCGACCTGGCCGAGGAGGCGGGAGTCGACGCGCCCACCACCTGGGAGGAGAACCTCGAGTTCGGCGCCGCGCTCCGTGACAGCGGTGCCGACAGCGGGACCTTCGTCGCGCCGTCGGGCACCCTCGCCTGGCAGACGATCCTGCCGATGATCTACCAGGCCGGCGGCTCCGTCATCGACGACGGGGAGTTCACCCTGGACACCCCCGAGGTCGTCGAGGCGCTCGGCCACTACCAGGAGTTCTTCGCCCAGGACATCTCCGACGTGCAGAAGGTGATCACCGCAGCCGGCGAGATCGAGGCCGCCTTCGCCGACGGCAGCATCGGGTCCTACATGACCGGGTCGTACTCCTACGACTTCGCGCTCGACGCCCTGGGCGGCGACGCGTCGAAGATCGGTCTCGCCCCCCTGCCGGAGGGGCCCGTCAACGGGATGGGCTACATCGGCGGTTCCGGGCTCGCCGTCATGGCCGACTCCGACAACCAGGAGTCCGCCTGGAAGTTCGTCCGGCACGCCACGTCGCCGGAGAGCGCCGAGGAGGCCTACGAGATCTCGGGAGTGCTTCCGGCGGCCCAGGAAGCCTGGGACTCCGGAGTGCTCGCGGAGAGCCCGACGGCCGAGACGTTCGCGACCCAGCTCGAGAACAGTGTGCCGCTGCCCCAGGTGCTCACCTGGACGCAGATCCGCGACCTCCTGGCGACCTACGGCGAGCAGCTCGCCCGGGAGGTCATCACGCCCGAGGAGGCCGCAGCGGAGATGCAGCGCGAGGCCGAGGCCATCGGGACGGGTGAGCAGTGAMTTAALTATALLLTACGRSDAGSTVETAEAIGDAPATGEITIWAAENEGRALSAAAEEFQADNPDVTITVTPVSFDELPRKVDTAIASGEVPDIIQPSTGLQSYVSAGGIAPVPDGVTDTSEFFDSAVSAVTFDDVLYAVPWYVTVQSFYYRADLAEEAGVDAPTTWEENLEFGAALRDSGADSGTFVAPSGTLAWQTILPMIYQAGGSVIDDGEFTLDTPEVVEALGHYQEFFAQDISDVQKVITAAGEIEAAFADGSIGSYMTGSYSYDFALDALGGDASKIGLAPLPEGPVNGMGYIGGSGLAVMADSDNQESAWKFVRHATSPESAEEAYEISGVLPAAQEAWDSGVLAESPTAETFATQLENSVPLPQVLTWTQIRDLLATYGEQLAREVITPEEAAAEMQREAEAIGTGEQPGPT0016545_9861DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_06258393cidAHolin-like protein CidAATGAGCGGATCCGCGAACCCGCCTCCGGAAGCGGCCGGGCGCGCCGTCGTCGGCCTCACGGTCCTCTACGGCCTCTACGCGATCGGGGCCGTCGTGTCGGCGGCGGCCGGCCTGCCCGTACCGGGGGGCATCCTCGGTATGGTGCTGCTGCTCGCGCTGCTGCAGACGCCGTGGGGCGACCGGATCGAGCGCTGGGTCGGCGGCATCGGCACGGTGCTCGTCGCCCTGCTGCCACTTCTGCTCGTCCCGGTCGCGGTCGGCGTCGTGGCCGAGCTGTCGGTCCTGCGCACGCAGTGGTGGGTCGTCGCCCTGGCGGTCCTGGCCAGCTGGACCGTGGCGGTCACGGTCGTGGCCGGCGTGTCCCGGTGGACGTTCGCGAGGAGGCGGGCGTGAMSGSANPPPEAAGRAVVGLTVLYGLYAIGAVVSAAAGLPVPGGILGMVLLLALLQTPWGDRIERWVGGIGTVLVALLPLLLVPVAVGVVAELSVLRTQWWVVALAVLASWTVAVTVVAGVSRWTFARRRANANANANANA
AK018_06259720lrgBAntiholin-like protein LrgBGTGAGCACGCTCGTGACCGACGTCCCGGTCTGGGGGACGGTGCTCACGCTCGCCGGATGGCTCCTGGCAGTCGGCGTCCTGCGTGCCGTCCCTGCCGTCGGGCGCGCCGTGCCACCGATCCTGGTGGCGATCGTCGTGGTCGCCGCGGTCCTGCTCGTCGCGGGCGCCCCCTACGGCGAGTACGCGCGCACCGCGGAACCGATCTCCGTCCTGCTCGGACCGGCCGTCGTCGCCCTGGCGCTGCCCGTCCACCGCTACCGGGCACAGATCGCGCCCGTCCTGCCGGGGCTGCTGACCGCCGCGCTCGCGGGCGTCGTGACCGCCGCCGCCGTCGTGCTGCTGGCGGCCGCGACCCTCGACGTCGACCCCGCCGTCGTCGCCACCCTCGTGCCGATGCACGCCACCTCCCCGGTCTCCTCGGCGGTGAGCGCGGGCCTGGGCGGTTCGGCAGGGACCGCAGCCGTCGTGGCGATCTTCGCCGGGGTCCTGGGAGCGTCGGCGGGCCCGCCCCTGCTTCGCGCGCTGCGGATCACCGACCCCCGGGCACGAGGCCTCGCGATCGGGGTCTCCTCGCACGCCATCGGGACCAGCCGCGCCCTCGAGATCGACGCCGAGACCGGCACCTACGCGGCCATCGGCATGTCTTGCGGAGCGGTCCTCGTCGCCACGACCAGCGCCGTCGTCGCCGCCGTCCCCGGCCTCGCCGCGCTCCTACCCTGAMSTLVTDVPVWGTVLTLAGWLLAVGVLRAVPAVGRAVPPILVAIVVVAAVLLVAGAPYGEYARTAEPISVLLGPAVVALALPVHRYRAQIAPVLPGLLTAALAGVVTAAAVVLLAAATLDVDPAVVATLVPMHATSPVSSAVSAGLGGSAGTAAVVAIFAGVLGASAGPPLLRALRITDPRARGLAIGVSSHAIGTSRALEIDAETGTYAAIGMSCGAVLVATTSAVVAAVPGLAALLPNANANANANA
AK018_06260885hypothetical proteinGTGCTGCACGGCGTGGCGTGCGGGCTCGCGTCGTCGGCGCTGACGACGTACGTCGTCGACCTGGCGCCGGACCGGCCGCGCTGGCTGGCCGCCGCCACGGCGGCCGGGTCGCCGTTGATCGGTCTCACCCTCGGCGCGCTGGGCACCGGGGCGCTCGCGGAGCACGGCCCGGCGCCCGAGCGGACGCCGTACCTGGTGGTCACGGCCGTGCTCGCGGTCTGCGCCGTGCTGCTGGTCGGCAGCCCCGAGCCGGTCGGACGCCGTGCGGGGGCCCTCGCGTCCCTGCGCCCCCGGGTCGCCCTGCCGCCGGCGACGCGCCCCCTGCTGCCCGCAGCGATCGCCGTGTTCTGCGCCACCTGGGCGCTGGGTGGCTTCTACCAGGCGTTCAGCCCCACCATCGCCGCCCGCGACCTGGGCTCCGACAGCACGCTGGTCGCGGGGACCGTCTTCGCGGCCTTCATGGCCCCGTACGCGTTCGGGGGGCCGCTGACCGGACGGCTCGCCGCGGGTGCGGCCCAGCGGCTCGGCATCGTCGTGTTCGCGCTGGCCGTGACGGGCGTCGTCGTGGGCCTGCACACCGGGTCCGTCGTGACCGTCGTGCTGTGCGACGTCGTCGCCGGCGCGGGGCAGGGCGCGGCGTTCACCGGGACGATGCGCGGACTGCTCGCCCGGACGGCGCCGCCCGAGCGGGCCGGTCTCATGGCCACGGTCTACCTGTTCTCCTACGGGGGAGCGGCGGTGCCGAGCCTGGTCGCGGGCCGCCTGTCCGCCACGCTCGAGCTGTCACAGATCGCCGTCGGCTACGCGGTGCTCGCGCTCCTGGCGGTCGGTGTCGTGCTCGGGTCCTCGGGCCGGCCGAGGGTGAGGGTGCGCACCCGTCCGTGAMLHGVACGLASSALTTYVVDLAPDRPRWLAAATAAGSPLIGLTLGALGTGALAEHGPAPERTPYLVVTAVLAVCAVLLVGSPEPVGRRAGALASLRPRVALPPATRPLLPAAIAVFCATWALGGFYQAFSPTIAARDLGSDSTLVAGTVFAAFMAPYAFGGPLTGRLAAGAAQRLGIVVFALAVTGVVVGLHTGSVVTVVLCDVVAGAGQGAAFTGTMRGLLARTAPPERAGLMATVYLFSYGGAAVPSLVAGRLSATLELSQIAVGYAVLALLAVGVVLGSSGRPRVRVRTRPNANANANANA
AK018_06261684hypothetical proteinGTGCCCGCCGCCGTCGTCGACCTGGTGGGTTTCGCCGCCTACTCCGAGCTGGCCGAGTTCGGGCTGCTCGCCACCCGGTCGGTGGACGCTCCCGACCTGGCCGTCCGCCAGGCGCTCGCCGACGGCGCCGACCGTGCGCTCGACCGCGAGCGGGCCGTCCTGGCCGTGGTCGAGGGCTCGGCGGCCGAGGTCATGGCCCCCTTCGCCGACGCGCTGACCGAGTTCGACACCCGGACCCGCACCGACGACTGGGCCGAGGGCGTGCTCAAGGGCGTCGTCGGGCACGGGGTCGCCCAGGACTTCTGCCGCGCCCTGGCGGCCGGCGTGGAGGACCCCGTCGGCAAGAAGCTGCGCGAGGTGCTCGACCGGCCCGCACCCGGTCCGGCAGCGGGCGCGGAGGCGGGGGCCGACGCCGAGGCGATCGAGGTGCTGGGCCGTCTCGGGGCCGGCGACGAGGTGCTGGCCTCCCGCCTGGCCCTGTGGGGGCGGCGTGTGGTGGGCGAGGCGCTGAGCCTGGTGACGGTGCTGCTGGACCAGCACCCGGGTCTCGACGAGCTGGCCGCACGGGCCCCCGCGGCCCACGGCGCCGACGACGTCGCGCCCGACGGCGCCCGCACGTGGCTCGTCGCGCGGCTCACCGCCGAGCACACGCGGCGCATGGACCGGCTCCGGCTCGCGGCCTAGMPAAVVDLVGFAAYSELAEFGLLATRSVDAPDLAVRQALADGADRALDRERAVLAVVEGSAAEVMAPFADALTEFDTRTRTDDWAEGVLKGVVGHGVAQDFCRALAAGVEDPVGKKLREVLDRPAPGPAAGAEAGADAEAIEVLGRLGAGDEVLASRLALWGRRVVGEALSLVTVLLDQHPGLDELAARAPAAHGADDVAPDGARTWLVARLTAEHTRRMDRLRLAANANANANANA
AK018_062621656deaD_5ATP-dependent RNA helicase DeaDGTGACCACAGACACCACCGCCGAGAACGCCGCCACGGCGCCCGGCACCAGCGAGCCCGACTACTCCACCCCGGCGGCGATCCAGGCGCAGGACGTCAGCTTCGCCGACTTCGGGGTCCGCACCGAGATCGTCGAGGCCCTGCGGGACTCCGGCATCACCCACCCGTTCCCCATCCAAGCCATGACCCTGCCGGTCGCGCTCCAGGCGCACGACATCATCGGCCAGGCCAAGACGGGTACCGGCAAGACCCTCGGGTTCGGCGTGCCGCTGCTGCACCGCGTCGCCGCCCCGGGCGAGCCCGAGTACGACCTGCTGCCTGCCCCGGGCAAGCCGCAGGCGATCGTCGTCGCCCCCACCCGCGAGCTCGCCGTCCAGGTCGCCAAGGACCTCGAGTCGGCCTCGACGCGCCGCTCGGTCCGCATCGTCCAGATCTACGGCGGTCGCGCCTACGAACCGCAGATCGAGACCCTGAACAACGGCGTCGAGGTCGTCGTCGGCACGCCGGGGCGCATCGTCGACCTGATGAACCAGGGCCACCTGAACCTGTCCCGCGCCGCCACCGTCGTCCTCGACGAGGCCGACGAGATGCTCGACCTCGGCTTCCTGCCCGACGTCGAGAAGATCCTGGCGCGCACCCCCGCCGTGCGGCACACGATGCTGTTCTCGGCGACCATGCCCGGCCCCGTGGTCTCCATGGCCCGCCGGTACATGAAGCAGCCGACGCACATCCGCGCGGCCGACCCGGACGACGACGGGGCGACGGTGAAGAACACCCGCCAGGTCGTCTACCGCGCGCACGCGCTGGACAAGGTCGAGGTCCTGGCCCGGATCCTGCAGTCCGAGGGCCGTGGCCGCACCATCGTGTTCACCCGGACCAAGCGCACCGCCGCGAAGGTCTCCGACGAGCTGCGCACGCGCGGGTTCGCCGCCGGCGCCATCCACGGCGACCTCGGCCAGGGGGCCCGCGAGCAGGCGCTGCGCGCGCTGCGCCACGGCAACATCGACGTGCTGGTGGCCACCGACGTCGCCGCCCGCGGCATCGACGTCACCGACGTCACGCACGTGATCAACTACCAGTGCCCCGAGGACGAGCGCACCTACCTGCACCGCATCGGCCGGACCGGCCGTGCCGGCAACAAGGGCACCGCGATCACGTTCGTCGACTGGGACGACGTGCCCCGCTGGCAGCTCATCAACAAGGCGCTCGACCTCGGCTTCCCCGAGCCCGTCGAGACCTACTCCTCCTCGCCGCACCTGTACACCGACCTCTCGATCCCCGAGGGCACCAAGGGCCGGCTGCCGAAGGAGAAGCGCCGGCTCGGCGGCCTGGAGGCCGAGGAGCTCGAGGACCTCGGCGAGACCGGCAAGCGCTCGGGCGGCCAGGACCGTCAGGGCGGTCGCGGCGGTCAGGGTCGTGGCGGCCAGGGCGGTCGCGGTGGTCAGGGCCGTGGCGGCGGACGGTCCCGTGGCGGCCGCGGTGGCCAGGGTCAGCGGTCCGACGGCGCAGCCCGCCCGGAGCAGTCCGGCCCCGCCGGCCAGGGCTCCGACCAGGCCGCGAACGGCGAGGGTGGTCAGCGCCGCCGTCGCCGTCGTCGTCGCCGCAGCGGTGCCGGCGAGGGCCAGGGCGGCAGCGCGCCGTCGGCCACCACCGACTGAMTTDTTAENAATAPGTSEPDYSTPAAIQAQDVSFADFGVRTEIVEALRDSGITHPFPIQAMTLPVALQAHDIIGQAKTGTGKTLGFGVPLLHRVAAPGEPEYDLLPAPGKPQAIVVAPTRELAVQVAKDLESASTRRSVRIVQIYGGRAYEPQIETLNNGVEVVVGTPGRIVDLMNQGHLNLSRAATVVLDEADEMLDLGFLPDVEKILARTPAVRHTMLFSATMPGPVVSMARRYMKQPTHIRAADPDDDGATVKNTRQVVYRAHALDKVEVLARILQSEGRGRTIVFTRTKRTAAKVSDELRTRGFAAGAIHGDLGQGAREQALRALRHGNIDVLVATDVAARGIDVTDVTHVINYQCPEDERTYLHRIGRTGRAGNKGTAITFVDWDDVPRWQLINKALDLGFPEPVETYSSSPHLYTDLSIPEGTKGRLPKEKRRLGGLEAEELEDLGETGKRSGGQDRQGGRGGQGRGGQGGRGGQGRGGGRSRGGRGGQGQRSDGAARPEQSGPAGQGSDQAANGEGGQRRRRRRRRRSGAGEGQGGSAPSATTDPGPT0013740_2344DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
AK018_06263300hypothetical proteinATGCAGCTCACGTTCACCGCGCCCCTGTGGCAGTGGGACGCGCGCCAGGACGACGCCTGGTGGTTCGTGACGGTCCCGCCCGACGAGTCCGACCTGCTCGCCGAGGTGCCCCTGCCGCCCCGCGGCTTCGGGTCGATCCGCGTGCAGGTCACGGTGGGCGCCACGACGTGGCGCACCTCCGTGTTCCCCTCGAAGGAGCAGTCCGGCTACGTCCTGCCGATGAAGAAGGCCGTGCGACGCGCCGAGGGGCTCGCCCCCGGGGAGCCGGTCGAGGTCATGCTGACACCGCTCGACCTCTGAMQLTFTAPLWQWDARQDDAWWFVTVPPDESDLLAEVPLPPRGFGSIRVQVTVGATTWRTSVFPSKEQSGYVLPMKKAVRRAEGLAPGEPVEVMLTPLDLNANANANANA
AK018_06264636hypothetical proteinGTGGACCAGGTGATCGAGCTGACCCTCTTCACCCAGGCGTTCGTCACGCTGTGGGTGATCATGGACCCGCCCGGCACCATCCCGGTGTTCCTGGCGCTGACCTCCACCATGGGGGCCAAGCAGCGCAGCCGGGCGGCGCTGCAGGCCGTGACGGTCGCGTTCGGCGTGATCGTGACCTTCGCGCTGTTCGGCCAGCAGCTGCTGTCGTACATGGGCATCTCGCTGGCCGCCCTGCAGGCGTCGGGCGGTCTGCTGCTGCTCATCGTGGCGATGCAGCTGCTGACCGGGCACTTCGAGAACGGTGAGGCGACGGCGGCGACCCCGGGGGCGAACGTCGCGCTGGTTCCGCTGGGGACACCGCTGCTCGCCGGGCCGGGCGCGATCGTGGCGACGATGGTCTTCGTCCAGCAGGCGAACACCGAGGACGACTGGGTCCCGTCGGCGGTCGCGATCGCGCTGGCCATCGTGCTCGTGCACGTCTCGCTCTACCTGGCCATGCGGTTCGCCGAGGTGCTGCACCGGGTGCTCAAGGACTCCGGGGTCACCCTCATCACGCGGATCGCCGGCATCCTGCTGGCCGCCATCGCCGTCCAGCAGATCGCGGACGCCGTCATGGAGTTCATCGCCACCGCGTGAMDQVIELTLFTQAFVTLWVIMDPPGTIPVFLALTSTMGAKQRSRAALQAVTVAFGVIVTFALFGQQLLSYMGISLAALQASGGLLLLIVAMQLLTGHFENGEATAATPGANVALVPLGTPLLAGPGAIVATMVFVQQANTEDDWVPSAVAIALAIVLVHVSLYLAMRFAEVLHRVLKDSGVTLITRIAGILLAAIAVQQIADAVMEFIATAPGPT0029250_1274DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029250-marC-K05595NANA
AK018_06265801COG06133',5'-nucleoside bisphosphate phosphataseATGGAGGCGGCGGCCGCGGCGGGCGTGACCGTCGTCGCCCTCACCGACCACGACACCACCGCCGGCTGGGACGAGGCGGCCGCCGCGGTGCCGGGCACGCACGTGGCGCTGGTGCGCGGCATCGAGATCTCGACGCGTGCCCACACCTCGGCCGGCGGCATCAGCGTCCACCTGCTGGCCTACCTGCACGACCCGCAGCACCCCACGCTCCGGTCCGAGCTGGAACGGACGCGTGACGACCGCGTGCAGCGTGCCCGGCGCATGGCCGAGCACCTGGCCGAGGACTTCCCGCTGACGTGGGACGACGTCGTGGCGCAGACCCACGACGGGGCCACGGTGGGGCGTCCGCACCTGGCCGACGCCCTCGTCGCGGCGGGCGTGGTCGCGCACCGCGACGAGGCCTTCGCGACGATGCTGCACCCCGGCGCCCCGTACTACGTGCCGCACTACGCGCCGGACACCGCCGACGCCGTGCGCGCGGTGCTGGCCGCCGGCGGCGTGCCCGTGATGGCGCACCCGCGTGCGGGCACCCGTGGCCGGGTGGTCACCGAGGACACCATCGCCGAGCTGGCGCAGGCCGGGCTGGCCGGCCTGGAGGCCGACCATCGCGACCACACGGACCCCGACCGTGCGCGGATGCGCGACCTCGCGCACGAGCTGGGGCTGCTCGTCACCGGGTCGAGCGACTACCACGGGGCGGGCAAGCACAACCGTCTGGGCGAGCACCGGACCGACCCCGCGGTGCTGGCCGAGATCGAGGAGCGAGGAACGCTGGAGGTGCTGCGCCCGTGGACCAGGTGAMEAAAAAGVTVVALTDHDTTAGWDEAAAAVPGTHVALVRGIEISTRAHTSAGGISVHLLAYLHDPQHPTLRSELERTRDDRVQRARRMAEHLAEDFPLTWDDVVAQTHDGATVGRPHLADALVAAGVVAHRDEAFATMLHPGAPYYVPHYAPDTADAVRAVLAAGGVPVMAHPRAGTRGRVVTEDTIAELAQAGLAGLEADHRDHTDPDRARMRDLAHELGLLVTGSSDYHGAGKHNRLGEHRTDPAVLAEIEERGTLEVLRPWTRNANANANANA
AK018_06266744menH_62-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseGTGACTGTTCCGCTGATGTCCCGCACCGACACGCCGACGCCGACCCAGCAGGTCGGCGTCGTGCTCGTGCACGGCATGCGCCAGGACGCCTCGGCCTGGCGGGACCAGGTGGCGCACCTCGAGGACCTCGGCCACGCCGCCGTCCCGGTCGACCTGCCCGGGCACGGCCGCCACCTGGCCGAGCGCTTCTCCTTCCGGCGCGCCTGGGAGCACCTGGACGACGCCGTCGCCTCGTTCCCGCAGGGCACCCCGGTGGTGCTGGTGGGCCAGTCGCTGGGCGGCTACGTGTCGCTGGGCTGGGCCGCCGACCGCGCGCACGACGTCACGCGGCCGCTGCTCGGCGTCGTGGCCTCCGGGTGCAGCACCGAGCCCCGCGGCAAGCCCGTCCGGCTGTACCGGGACGTGGCCGACGGCGTCGCCCGAGCCGGGCAGGCCGTCCGCCGTCGGCTGCCCGGGTCCGTCCCGACGACGGACGACCGACCCGGATGGGACCTCGTCACCGACGCGCTCGGCGAGCTGGCCGGCCGGTCGGCGCTGGCGGACCTCGGCACGATGTCGGTGCCGGTGTGGCTCGTCAACGGCTCCCGGTGCCATCTGCGCTGGCAGGAGCAGCGCTTCGCGCGGGCGGCCGACCGGGGGGCGCTCGTCGTCGTCCCCGGGATCGGACACGACGTACATCTCGATGCACCCGACGAGTACAACCGGGTGCTGAGCCGCGCCCTGGCCGACTTCGCACGCCGGTGAMTVPLMSRTDTPTPTQQVGVVLVHGMRQDASAWRDQVAHLEDLGHAAVPVDLPGHGRHLAERFSFRRAWEHLDDAVASFPQGTPVVLVGQSLGGYVSLGWAADRAHDVTRPLLGVVASGCSTEPRGKPVRLYRDVADGVARAGQAVRRRLPGSVPTTDDRPGWDLVTDALGELAGRSALADLGTMSVPVWLVNGSRCHLRWQEQRFARAADRGALVVVPGIGHDVHLDAPDEYNRVLSRALADFARRNANANANANA
AK018_062671530pepPI_2Xaa-Pro aminopeptidase 1ATGAGCGACACCACCCCGGTCGACCGGCCCGCGGACGAGCAGATCACCGAGCGCGGGAGCAACCGGTCCCAGCGCCCCACCTCGGACGCCTTCAAGCACTTCATCACCTCGCAGTGGGGTCCGCGGCAGGACCTCGGCGTCACGCCCGGCCGCGCCGCGCCGTACACCGCGGCCCGCCGCACGCGCCTCTCCGCGCGCTTCCCCGGCACCCGGCTGGTCCTGCCGGCCGGGCCGCTGAAGCAGCGCTCGAACGACACCGACTACCGGTTCCGGCCGCACTCGGCGTTCGCGCACCTGACCGGGTTCGGCACCGACCAGGAGCCGGACGCCGTGCTCGTGCTGCACCCCACGGCGGAGGGCGAGGGTGACGGCGGGTCGCACCACCACGCCGTGCTGTACGTCCGCCCCCTGGCCCCGCGGGACACCGAGGAGTTCTACGCCGACGCCCGCTACGGCGAGTTCTGGGTGGGCGCCCGGCCCACCCTCGACGACGTCACCACCGCCACCGGCATCGAGGCGCGGCACGTCGACGAGCTGCGCGAGGCCCTGGCCAAGGACGTCGGCGCCGACGGTGTGCAGGTGCTGGTGATCGCGGAGGCCGACGAGGAGATCGCCGAGCTGATCGAGGCGATCCGCACCGAGGCCGGCACCGAGGAGTCCGCCTCCGACGACGCGCTGGCCGAGGCGGCCTCCGAGCTGCGCCTGGTCAAGGACGAGCTCGAGATCGAGCTCGTGCGCGAGGCCGTGGACCGCACGATCGACGGGTTCGCGGAGGTCGTCCGCGCCCTGCCGCGCGCCGTCGAGCACCGCCGCGGCGAGCGCGTCATCGAGACGACGTTCGACGCGCACGCCCGGCTCGAGGGCAACACCGTCGGCTACGAGACCATCGCCGCCGCCGGCGAGCACGCCACCACGCTGCACTGGATCACCAACGACGGCGTCGTGCGCTCCGGCGAGATGGTGCTGCTCGACGCGGGCGTCGAGATCGACGAGCTGTACACCGCCGACGTCACGCGCACGCTGCCCGTGGACGGCGAGTACACCGACGTCCAGCGCCGCATCTACACCGCCGTGCTCGACGCCGCGGACGCCGCGTTCGCCGTGGCGAAGCCCGGGGCGAAGTTCCGCGACATCCACGCCGCCGCGATGGAGGTCATCGCCGCCCGGCTCGAGGAGTGGGGGCTGCTGCCGGTGAGCGCCGAGGAGTCCCTGTCCCCCGAGGGCCAGCAGCACCGCCGCTGGATGGTGCACGGGACCTCGCACCACCTCGGTCTCGACGTGCACGACTGCGCCCAGGCCCGCCGCGAGATGTACCTGGACGGCGTGCTCGAGCCGGGGATGGTGTTCACCATCGAGCCCGGGCTCTACTTCAAGGCCGACGACCTGGCCGTGCCCGAGGAGTACCGCGGCATCGGGGTACGCATCGAGGACGACGTCCTGGTCACCGCCGACGGCAACGAGAACCTCTCCGCGGCGCTCCCCCGGCGCCCCGAGGACGTCGAGGCCTGGATGGCGCGCGTGCGCGCCTGAMSDTTPVDRPADEQITERGSNRSQRPTSDAFKHFITSQWGPRQDLGVTPGRAAPYTAARRTRLSARFPGTRLVLPAGPLKQRSNDTDYRFRPHSAFAHLTGFGTDQEPDAVLVLHPTAEGEGDGGSHHHAVLYVRPLAPRDTEEFYADARYGEFWVGARPTLDDVTTATGIEARHVDELREALAKDVGADGVQVLVIAEADEEIAELIEAIRTEAGTEESASDDALAEAASELRLVKDELEIELVREAVDRTIDGFAEVVRALPRAVEHRRGERVIETTFDAHARLEGNTVGYETIAAAGEHATTLHWITNDGVVRSGEMVLLDAGVEIDELYTADVTRTLPVDGEYTDVQRRIYTAVLDAADAAFAVAKPGAKFRDIHAAAMEVIAARLEEWGLLPVSAEESLSPEGQQHRRWMVHGTSHHLGLDVHDCAQARREMYLDGVLEPGMVFTIEPGLYFKADDLAVPEEYRGIGVRIEDDVLVTADGNENLSAALPRRPEDVEAWMARVRAPGPT0006770_2963DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006770-pepP-K01262NANA
AK018_06268906hypothetical proteinATGAGCCGCTCCGACGAGATCATCCTGGCCGCCGACACCTACCGGGCCGCACTGACCCGCTCGGTCCGGGCCGGCGAGGCCGTCAAGATCCGCTACGGCGCCTACCGGGCGAGGGCCGACGGCGAGATCGGCCTGACGGACCACGTCCTGGCGCTGCGACGTCAGCTGCGCGACCCCGTGTTCAGCCACGAGACCGCTGCTGTGCTGCTCGGCTGCTCGCTCTGGCACCGCCCGGAGCGGGTGCACGTGATGCGACCGTACCGGCGCTCGGGCCACGCCTCACGAGACGTGCAGTGGCATCTCGGCACCGTCCCCGCGGAGGAGCTGCTCCGTCTCCGGGGACTCGAGGTGACGACGCTGGCCCGGACGGTCGTCGACTGCGCCCTGACGTCGCATCCACTGCAGGCACTGGTCGTCGCCGACTCCGCACTGCGGCTGGACCCTCCCCTGGACCTGACGGCGGCGCACCGCGTGCTGCGGCGTTCGCGTCGTCGCCAGGGCCGGGCACGTGCGCGCTGGGTCCTCGACCATGCCGACGGCGGGTCGGAGTCCCCCTGGGAGACCTGGACACGCTACGTGTGTCTGCGCGCCGGGATGCCCCGTCCGATCACCCAGGCACCCGTCAGGACCCGGGCCCGTCTCTACCGCTGCGACCTCGGCTGGCCCGAGCACGGCGTGTACGTCGAGTTCGACGGTCGCATCAAGTACGCACGGTCCGGCACCGCGGAGCTGCTGCGCGAGAAGAAGCGGTCCGACGACCTGCGTGAGGCAGGAGTGGTCCCGGTCCGGGTGCTGGCGACGCAGCCGTCGGGCGTGCCGCGGGTCGTGGGCGCCGTCGCGCGGAGGTTTCCTCCGGAGGTGGCGGCGCGATTCCGGGTGAATCCCCTGCTTCCGGCGCCGACCTGAMSRSDEIILAADTYRAALTRSVRAGEAVKIRYGAYRARADGEIGLTDHVLALRRQLRDPVFSHETAAVLLGCSLWHRPERVHVMRPYRRSGHASRDVQWHLGTVPAEELLRLRGLEVTTLARTVVDCALTSHPLQALVVADSALRLDPPLDLTAAHRVLRRSRRRQGRARARWVLDHADGGSESPWETWTRYVCLRAGMPRPITQAPVRTRARLYRCDLGWPEHGVYVEFDGRIKYARSGTAELLREKKRSDDLREAGVVPVRVLATQPSGVPRVVGAVARRFPPEVAARFRVNPLLPAPTNANANANANA
AK018_06269807hypothetical proteinATGAGCCGTTCGAATCCCCTGCCTCGGGTCCCCACGCCGCCTCAGGGGGACGAGGTCGCCGCCTACGACTCGTACCTCGAGGCGCAGAAGGCCGTCGACTACCTCTCGGACGAGAAGTTCCCCGTCCAGCACGTCACCATCGTGGGCACCGACCTGCGGATGGTCGAGCGCGTCACCGGACGGCTGACGTACGGCCGGGTGGCGCTGGCCGGCGCCCTGTCCGGCGCCTGGTTCGGCTTCTTCGTGGGCCTGCTCCTGATGTTCTTCGCTGCGGGCGAGACCAGCGTGCTGCTCGTCGCGCTGGCGCTCGGCGCCGGGTTCGGACTGATGTTCTCGGTGCTCTCCTACGCCTTCACCGGCGGGCGGCGGGACTTCACGTCGCAGTCGCAGATCGTGGCGTCCACGTATGCCCTGCTGTGCGCCACCGACCACGCGGCCGAGGCGCGGACCATGCTGCAGAACGCACCGGGCGGGCTGGGAAGGCCCCGGCGCCGGGAGCGGCCGGCCGCTCCCGCGGCCCCGTCGTCCCCGGACCCGCGATGGACGATGCCCGACGGCGCCCCGCGCTACGGCGCGATGCGGCCCGGCGGGGAACCGGGTCCGGCCGCGACCCCGAGCGGGTCGGGATCGTCGACGTCGGCCGTCGCCGGCGGTGAGGGGCCCTCGCAGCCGCAGCCGGGCCCCGACGAGCGGCCGCCCGCGGTGCCGTCGCAGGGCGGGGAGCCGCCGTCGTCGACCTCCACGCCGACGGCTCCGCCGCCGTCCTCGGACCCCGACGACCCGTACGCGCCGCCGCCGGAGCGCTGAMSRSNPLPRVPTPPQGDEVAAYDSYLEAQKAVDYLSDEKFPVQHVTIVGTDLRMVERVTGRLTYGRVALAGALSGAWFGFFVGLLLMFFAAGETSVLLVALALGAGFGLMFSVLSYAFTGGRRDFTSQSQIVASTYALLCATDHAAEARTMLQNAPGGLGRPRRRERPAAPAAPSSPDPRWTMPDGAPRYGAMRPGGEPGPAATPSGSGSSTSAVAGGEGPSQPQPGPDERPPAVPSQGGEPPSSTSTPTAPPPSSDPDDPYAPPPERNANANANANA
AK018_062701152mrp_2COG0489Iron-sulfur cluster carrier proteinATGAGCACCACCGATCTCGAGGCCCGCGTCCGCGACGCCCTGTCCGGTGTCGTCGACCCGGAGATCCGCCGCCCCCTGACCGAGCTGGACATGATCCGCTCGATCGAGGTCGAGACCGCGCAGGACCCCGCGGACGGCGCCCACGTCACCGTGGGGGTGGACCTCACGATCGCCGGGTGCCCGATGAAGAACACGCTCGTCACCGACGTCACCGAGGCGACCCGCGCGGTCGTGGGCGTCGGCCGGGTCGACGTCGACCTGGGCGTCATGACCCCCGAGCAGCGTCAGTCCCTGCGCTCGCGCCTGCGGGGCGGCAGCGGCGACCCGAGCATCCCGTTCGCCCAGCCGGACAGCCTGACGAAGGTCTACGCGGTGGCCTCGGGCAAGGGCGGCGTCGGCAAGTCGAGCGTCACGGCCAACCTCGCCGCGGCGATGGCGGCCGACGGGCTCACCGTCGGGGTCGTCGACGCCGACATCTACGGCTTCTCCATCCCCCGCATGCTCGGCGTCGACCGCCAGCCCACCCGGGTCGACTCGATGCTGCTGCCGCCGATCGCGCACGGCGTCAAGGTGGTCTCCATCGGCATGTTCGTGCCCCAGGGCCAACCGGTCGTGTGGCGCGGGCCCATGCTGCACCGCGCGCTCGAGCAGTTCCTCTCCGACGTGTTCTGGGGCGACCTGGACGTGCTGCTGCTCGACCTGCCGCCCGGCACCGGCGACATCGCCATCTCGGTCGCCCAGCTCCTGCCCGGCAGCGAGATCCTCGTGGTCACGACCCCCCAGACGGCCGCCGCCGAGGTGGCCGAGCGGGCCGGGTCGGTGGCCACCCAGACCTCGCAGGGCGTGATCGGCGTCGTCGAGAACATGTCGTGGCTGGAGCAGCCCGACGGCACGCGCCTGGAGGTCTTCGGCGCCGGCGGCGGAAGCACCGTCGCGCAGCGGCTCAGCACCGTCGTCGGGCAGGACGTCCCGCTGCTCGGCCAGGTGCCGCTCGACGTGGCCGTGCGCGAGGGGGGCGACGAGGGCACCCCGGTCGTGCTCAGCGACCCAGAGGCTCCCGGGGCCCGGGTGCTGCGCGACGTCGCCCGGCAGCTCGCCGGACGGGAGCGGGGTCTGGCGGGCCGCCGGCTCGGGGTCACCCCGGTCGGCTGAMSTTDLEARVRDALSGVVDPEIRRPLTELDMIRSIEVETAQDPADGAHVTVGVDLTIAGCPMKNTLVTDVTEATRAVVGVGRVDVDLGVMTPEQRQSLRSRLRGGSGDPSIPFAQPDSLTKVYAVASGKGGVGKSSVTANLAAAMAADGLTVGVVDADIYGFSIPRMLGVDRQPTRVDSMLLPPIAHGVKVVSIGMFVPQGQPVVWRGPMLHRALEQFLSDVFWGDLDVLLLDLPPGTGDIAISVAQLLPGSEILVVTTPQTAAAEVAERAGSVATQTSQGVIGVVENMSWLEQPDGTRLEVFGAGGGSTVAQRLSTVVGQDVPLLGQVPLDVAVREGGDEGTPVVLSDPEAPGARVLRDVARQLAGRERGLAGRRLGVTPVGPGPT0013215_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
AK018_062711230galK_2COG0153GalactokinaseATGACGTCTCCCGAGTGGCTCGAGTCCTGGTCCGCCGACGACGGCGCCGCACGCGTCCGCACCCTGTTCCGCGAGGTCTTCGGCAGCGACGCCGACCTCGACGGGGTCTGGTCCGCGCCGGGCCGCGTGAACCTGATCGGCGAGCACACCGACTACAACGCCGGCCTGGCCCTGCCGGTGGCTCTCCCCCACCGCACGTACGTGGCGCTGCGGGGCCGCCCGGACGACGTCGTGCGGCTCTCGTCCGCGCAGGCCCGGGGCGAGACCTGGGAGACGCGCCTGGCCGACGTCGCCCCCGGTGACACCAAGGGCTGGGGCGCCTACGTGGCCGGCGTGGCCTGGGCGCTGCGCGCCGCGGGGCACGACGTCGGAGGCTTCGACGCCGTCGTGGACTCCTGCGTCCCGTTCGGTGCCGGCCTGTCGTCCTCCGCGGCGCTCGAGTGCGCCGTGGCGGTGGCGCTCGACGCCGTGCACGGGCTCGGTCTCGCGGCCGACGACGTTGGTCGCGCCGACCTGGCCGCCGCGTGCGTGCGTGCCGAGAACGAGATCGCCGGGGCACCGACCGGCGGCATGGACCAGGCGGCGTCGCTGCGCTGCTCGGCCGGCCACGCGCTCCTGCTCGACTGCCGCCCGGGCCTGTCCGCGCTGGAGTCGGCCGACGCCGTGCCGTTCGACCTCGCCGGGGCCGGCCTGACCCTGCTCGTGGTCGACACCCGTGCCGAGCACGCCCTGGTCGACGGCCAGTACGCCGCGCGCCGCGCGTCCTGCGAGCGCGCCGCCGACACGCTCGGCGTCGACTCGCTCCGGGAGATCTCCCCGGGCGATCTCGAGGAGGCGCTGACCCGGCTCGCGGCGGCCGACGACGGCGACGTGCTGCGCCGGCGGGTGCGTCACGTGGTCACCGAGATCGCCCGCACCGAGGACTTCGCGGCTCTCGTGCGCGACGGACGCGTCGACGAGGTCGGGCCGCTGATGAACGCCTCGCACGTCTCGCTGCGCGACGACTACGAGGTCTCGGCCCGCGAGCTGGACCTCGTCGTCGACACGGCGCTCGCCGCCGGCGCGCTCGGGGCCCGGATGACGGGTGGCGGCTTCGGCGGCTCGGCGATCGCGCTGGTGCGCGCCGATCAGGTCGACGCGGTCGCGGCCGCCGTGCACGAGGCGTTCGTCGCCGCCGGTCTCACGGCTCCCGGGTTCCTGCTCGCGCCGCCGTCGTCCCCGGCGCACTGAMTSPEWLESWSADDGAARVRTLFREVFGSDADLDGVWSAPGRVNLIGEHTDYNAGLALPVALPHRTYVALRGRPDDVVRLSSAQARGETWETRLADVAPGDTKGWGAYVAGVAWALRAAGHDVGGFDAVVDSCVPFGAGLSSSAALECAVAVALDAVHGLGLAADDVGRADLAAACVRAENEIAGAPTGGMDQAASLRCSAGHALLLDCRPGLSALESADAVPFDLAGAGLTLLVVDTRAEHALVDGQYAARRASCERAADTLGVDSLREISPGDLEEALTRLAAADDGDVLRRRVRHVVTEIARTEDFAALVRDGRVDEVGPLMNASHVSLRDDYEVSARELDLVVDTALAAGALGARMTGGGFGGSAIALVRADQVDAVAAAVHEAFVAAGLTAPGFLLAPPSSPAHPGPT0017840_520DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017840-galM-K00849NANA
AK018_06272348hypothetical proteinGTGACCACGCCGCACGACCGGCCCGACCGGTCCTCGACGCAGCGCAGCGAGGACATCGCCGCGCTGGAGCAGGAGCTGGCCCGCGTCGTGGCCGAGGCGGAGGCCCGCCTGGCCGAGGTGCGTCGAGAGCTGGCCGAGCGGCGCCTGCAGGAGGCCCAGCACGCCGAGATCGACCGGCTCGAGGAGCATCTCGCCGACGCCACCGTGCGCTGGCGCGAGGTGGGGGAGTTCTTCGAGGACGCGCTGCAGCTGCTGCGCAGCGGTCGGCCCGACGACGAGCCTGCGCCGGGAGCGGCACCGGCGTCCGACGACCTGGGCCCGTCGCCGGCGGAGGACTCCCCGGCCTGAMTTPHDRPDRSSTQRSEDIAALEQELARVVAEAEARLAEVRRELAERRLQEAQHAEIDRLEEHLADATVRWREVGEFFEDALQLLRSGRPDDEPAPGAAPASDDLGPSPAEDSPANANANANANA
AK018_062731233hypothetical proteinATGACCGACGTCGTCGCCCAGACGTCCGTGACCGCCGCGAACGACGCGCAGGTCGAGCCGAAGCGTCTGCGCAGTCCTTTCGAACGGTTCGGGCTGACCGGTCGGCCGCTGCGCACCGCGAACTGGCTCGGCGTCGTCGCCGGCGTCTACGTGCTCATCACGGCCGTGGAGCTCATCGGCTCCGGGTTCAAGGCGTCGACGGGCAGCGCGGCCGAGGATCTCTTCGCGTTCGCGTCGAACCCGTTCGTGGCCCTCATGGTCGGCGTGCTGTTCACCGCCGCCACCCAGTCGAGCTCGACCACGACCTCGGTCACCGTCGGTCTCGTGGCCGGCGGGCTCCCGATCGAGATCGCGATCCCGATGCTCATGGGCGCGAACATCGGCACCACGCTGACCAACACCCTGGTCAGCCTGGGCATGGCGCGCGACCGCGACAGCTTCCGGCGGGCCTTCTCCGCGGCGACCGTGCACGACTTCTTCAACCTGCTCGCCGTCGCGATCTTCCTTCCGCTCGAGATGGCGTTCGGCCTGCTGCAGCGTGCCTCCTCCTGGCTCGCCGAGGCCACCTCGGGCGGTGACGGCGGATTCGTCGCGACCGCCTTCTCCGCGGTCGGCACCGCCGTGGACACGGTCACCGAGCCGCTGGCGGACCTGCTCGAGGCCGGGACCTCGTTCCTGCCCGACCCGTGGCACGGCGTGCTCATGATCGTCCTCGGCATCGGCCTCATCCTCGGCGTCATCAACTGGCTCGGACGCCTGCTCAAGGTGCTCATGGTGGGCAAGGCCGCCGAGATGCTCCACGCGTCCGTGGGTCGCGGCCCGATCAGCGGCGTCGCCAGCGGCGCGGCCGTGACGATGATGGTCCAGTCCTCCTCGACGACGACGAGCCTGATGATCCCGCTGGCCGGTTCGGGGACCTTCTCCCTGAAGCAGGTCTACCCGTTCACCGTCGGCGCCAACATCGGCACCACGATCACCGCGCTCATCGCCGCCTTCGCCTTCACCGGTGCCGAGGGCGAGCTCGCGCTGCAGGCTGCGTTCGTGCACGTGCTGTTCAACGTCTTCGCCGCGCTGGTGATCTTCGGTCTGCCGATCCTGCGTCAGGTGCCGCTGCGCGGGGCCGTGTGGCTGGGCGACGTCGCCGCCACGAACAAGCTCTGGGCGGCCGGTTGGGTGCTCGGTGTGTTCGTCGGCGTCCCGATGGCGCTCATCGCCCTGACCGCCGTCCTGTGAMTDVVAQTSVTAANDAQVEPKRLRSPFERFGLTGRPLRTANWLGVVAGVYVLITAVELIGSGFKASTGSAAEDLFAFASNPFVALMVGVLFTAATQSSSTTTSVTVGLVAGGLPIEIAIPMLMGANIGTTLTNTLVSLGMARDRDSFRRAFSAATVHDFFNLLAVAIFLPLEMAFGLLQRASSWLAEATSGGDGGFVATAFSAVGTAVDTVTEPLADLLEAGTSFLPDPWHGVLMIVLGIGLILGVINWLGRLLKVLMVGKAAEMLHASVGRGPISGVASGAAVTMMVQSSSTTTSLMIPLAGSGTFSLKQVYPFTVGANIGTTITALIAAFAFTGAEGELALQAAFVHVLFNVFAALVIFGLPILRQVPLRGAVWLGDVAATNKLWAAGWVLGVFVGVPMALIALTAVLNANANANANA
AK018_06274822xthA_2COG0708Exodeoxyribonuclease IIIATGGCGCGCGTGCTGACTGTCGCCACCGCCAACGTCAACGGGATCCGAGCCGCCGTCCGCCGCGGCATCGACGACTGGATCGCCCGGTGGGATCCGGACGTCCTGCTCCTGCAGGAGGTCCGTGCTCCCGACGAGCTGGTCCGGGCCCACTTCGCCGACCGCCACGTCGCGCACGTGCCGAGCCGGCTCAAGGGACGGGCGGGTGTCGCGGTGGTCTCGCGGCTGCCCCTCGCCGCGGTGCGCGACGGCGTCGAGGCGGACGACGTCGCCGAGCCCGACGTCGACAGCGGGCGCTGGCTCGAGGCCGACCTCGAGCTCGGTGACGGGGGCCGTCTCACGGTCGTCTCGGCCTACCTCCACTCGGGGTCCGCCAAGCCCGGCCAGGAGCACACGATGACCGCGAAGTACGCCCATCTCGACAAGGTCTCCCGGCGGCTGGACGCGCTCGCCGCGGGGTCGGACCCGGTCCTGGTGGCGGGTGACGTGAACATCGCCCACCGCGAGGTCGACATCGCGAACTGGAAGGGCAACCTGAAGAGCTCGGGGTTCCTGCCGGCCGAACGGGCGTACCTCGACCGGTGGTTCGAGGCGGGCTGGACGGACCTGGGCCGCGCCCACGGCGGCGAGGGGCCGGGGCCGTACACCTGGTGGACCTGGCGGGGGCAGGCGTTCGACAACGACCGGGGCTGGCGGATCGACTACCAGCTCGCCAACCCGCCGCTCGCGGACCGGGCCGTGAAGGTGCAGGTGGACCGGGCGCCGTCCTACGACGCGCGGTGGAGCGACCACGCCCCGGTGGTGGCGACCTACGACCTCGGCTGAMARVLTVATANVNGIRAAVRRGIDDWIARWDPDVLLLQEVRAPDELVRAHFADRHVAHVPSRLKGRAGVAVVSRLPLAAVRDGVEADDVAEPDVDSGRWLEADLELGDGGRLTVVSAYLHSGSAKPGQEHTMTAKYAHLDKVSRRLDALAAGSDPVLVAGDVNIAHREVDIANWKGNLKSSGFLPAERAYLDRWFEAGWTDLGRAHGGEGPGPYTWWTWRGQAFDNDRGWRIDYQLANPPLADRAVKVQVDRAPSYDARWSDHAPVVATYDLGNANANANANA
AK018_06275483hypothetical proteinATGATCACCGTGCGACCGCACCTGTGGTTCGGGAACGACCGGGCGCTCGAGGCGGCGGCGTTCTACGCCGACCACATCCCCGGTTCCAGCGTGGACCGTGTGCTGACGGCATCGGAGGGCATCCCGGGAGCGACGGCGGGCGCTCCGTTCATCGTCGAGTTCACCGTCTGCGGGCTCGAGGTCGTGGGGCTCAACGCCGGACCCGCGCTGCAGCTCGACGAGGCGTTCAGCCTCTACCTGCTTTGCGACGACCAGGCGGAGGTCGACCACTACTGGGACCTCCTGACCGCCGACGGCGGCAAGCCCGGGCCGTGCGGCTGGTGCACGGACCGCTTCGGCGTGAGCTGGCAGGTGATCCCCCGCCAGCTCGAGGAGCTGTGCGGCGACTACACCACGGCCGCGAACCAGCGCACCGTGCAGGCCATGCTGCAGATGGGCAAGATCGACGTCGCGACGCTGGAGGCCGCCCACCGCGGTGAGTGAMITVRPHLWFGNDRALEAAAFYADHIPGSSVDRVLTASEGIPGATAGAPFIVEFTVCGLEVVGLNAGPALQLDEAFSLYLLCDDQAEVDHYWDLLTADGGKPGPCGWCTDRFGVSWQVIPRQLEELCGDYTTAANQRTVQAMLQMGKIDVATLEAAHRGENANANANANA
AK018_06276420hypothetical proteinATGCGCACCACACGCCTCTGGGCCACCGCCGCCACGGCCGCGTTGGCCGTCGGCACCCTGACCGCCTGCGGCGGCGACTCCCCCGAGGAGAACGCCGCCGACGCCTGCACCGACTGGGACACCTACACGGCGGCCCTCGGCGATCTCGTCGGCACGCTCGGGTCCGAACCGACCGTCGGCGAGGTCGAGGACGCCCGCGACGCCGTCGACGACGCCTGGGACGACCTGGAGGAGTCGCTGGGCGACGTGGCCGAGGACCGCGCCGAGGAGCTGGAGAACGCCTGGGACGAGCTGAGCGACGCCGTCGACGACCTGGACGACGACGCCACGCTGGGCGAGGCCGCGCAGCAGATCTCCGCCCAGGCTCAGGAGGTGCAGTCCGCGAACACGGACGTCACCGCCGAGCTCGGCTGCGAGTAGMRTTRLWATAATAALAVGTLTACGGDSPEENAADACTDWDTYTAALGDLVGTLGSEPTVGEVEDARDAVDDAWDDLEESLGDVAEDRAEELENAWDELSDAVDDLDDDATLGEAAQQISAQAQEVQSANTDVTAELGCENANANANANA
AK018_06277882folD_2COG0190Bifunctional protein FolD proteinGTGACCGCGCAGAGGCTGGACGGCAAGGCGACCGCCGCCGCGATCAAGGACGAGCTCCGCGGGCGGGTCGCCGCGCTGCGCGAGCAGGGGATCACCCCGGGGCTGGGCACGCTGCTCGTGGGCGACGACCCCGGCTCCCAGTGGTACGTCGCCGGCAAGCACCGCGACTGCGCCGAGGTCGGCATCGAGTCCCTCCGCGAGGACCTGCCGGCCGACGCCACGCAGGCCGACATCGAGGCCGCCGTCGCGCGCCTCAACGACGACCCGGCCTGCACCGGCTTCATCGTCCAGCTCCCGCTCCCGCCGGGGATCGACACGAACCGCGTCCTCGAGCTCGTCGACCCGGCCAAGGACGCCGACGGGCTGCACCCGACGAACCTGGGCCGGCTCGTGCTGCGCGTGAGCGGCGACATCACCTCCCCGCTGCCGTGCACGCCGCGCGGCATCGTCGAGCTGGTCGAGCGGCACGGCGTCGACTGGGCGGGCAAGGAGGTCGTGGTCCTCGGCCGCGGCGTGACCGTGGGCCGCCCGATCGGGCTGCTGCTGACCCGCAAGTCCGTCAACGCCACCGTGACGCTGACGCACACCGGCACCCGTGACCTGCCGGACCTGGTGCGCCGGGCCGACGTCGTGATCGCGGCGGCGGGGGTCGAGGGCATCGTCACCGCCGACATGGTCAAGCCGGGTGCGGTGCTCATCGACGTCGGCGTCTCGCGGCGCACCGACCCCGAGACCGGCAAGTCCCGGGTGGTGGGCGACATCGCGCCCGAGGCCCGCGAGCAGGCGGCCTGGTACTCGCCGAACCCCGGGGGAGTGGGCCCGATGACCCGGGCGATGCTCCTGGCGAACGTCGTCGACACCGCTGAGCGTCAGGCCGGTTGAMTAQRLDGKATAAAIKDELRGRVAALREQGITPGLGTLLVGDDPGSQWYVAGKHRDCAEVGIESLREDLPADATQADIEAAVARLNDDPACTGFIVQLPLPPGIDTNRVLELVDPAKDADGLHPTNLGRLVLRVSGDITSPLPCTPRGIVELVERHGVDWAGKEVVVLGRGVTVGRPIGLLLTRKSVNATVTLTHTGTRDLPDLVRRADVVIAAAGVEGIVTADMVKPGAVLIDVGVSRRTDPETGKSRVVGDIAPEAREQAAWYSPNPGGVGPMTRAMLLANVVDTAERQAGPGPT0008075_1548DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008075-folD-K01491NANA
AK018_062781284glyA1_2COG0112Serine hydroxymethyltransferase 1ATGAGCACTCCCGACCCCACGTTCGACGCCCCTCTCGCCGAGGTCGACCCGGAGATCGCCGCCGTCCTCGACGGCGAGCTGGCCCGGCAGCGCGACACCCTCGAGATGATCGCGTCGGAGAACTTCGTGCCCCGTGCCGTGCTGCAGGCACAGGGCTCGGTGCTGACGAACAAGTACGCCGAGGGCTACCCCGGCCGCCGCTACTACGGCGGGTGCGAGCAGGTCGACATCGCCGAGAACCTCGCGATCGAGCGGGCCAAGGCGCTGTTCGGCGCCGAGTACGTCAACGTCCAGCCGCACTCCGGCGCCCAGGCGAACGCCGCCGTCCTGCACGCTCTCATCAAGCCCGGCGACAAGATCATGGGGCTCGAGCTGGCGCACGGCGGCCACCTGACCCACGGCATGAAGATCAACTTCTCCGGCAAGCTCTACGACGTCGCCGGCTACGGCGTCGACCCGCAGACCTACCGGATCGAGATGGACGAGGTGCGCAAGCGGGCGCTGGAGCACCGCCCCGACGTCATCATCGCCGGCTGGTCGGCGTACCCCCGCGAGCTCGACTTCGCGGCCTTCCGCGAGATCGCCGACGAGGTCGGCGCCAAGCTCTGGGTCGACATGGCCCACTTCGCCGGCCTCGTGGCCGCGGGTCTGCACCCGTCCCCGGTGCCGCACGCCGACGTCGTCTCCTCGACGGTGCACAAGACCATCGGCGGCCCGCGCTCCGGTTTCATCCTGTCCTCGGACGAGCACGCCAAGAAGCTCAACTCCGCGGTGTTCCCCGGCCAGCAGGGCGGCCCGCTCATGCACGTCATCGCCGGCAAGGCGGTGGCGTTCAAGATCGCGGGCACCGACGCGTTCGTCGAGCGTCAGGAGCGCACCCGCCGCGGCGCGCGGATCATCGCCGACCGTCTCGCCCAGGCCGACGTCGCCGAGACGGGGGTGTCGGTGCTCACCGGCGGCACCGACGTCCACCTGGTGCTCGTGGACCTGCGGAACTCCGCGATGGACGGCCAGCAGGCCGAGGACCTCCTGCACTCGGTCGGCATCACGGTGAACCGCAACGCGGTCCCGTTCGACCCGCGCCCGCCGCGCGTGACCTCGGGTCTGCGGATCGGTACCCCGGCGTTGGCGACCCGCGGGTTCGGCGACGCCGAGTTCACCGAGGTGGCCGACATCATCGCGACCGCCCTGCGCGCGGGCACCGCGGCCGACGCCGAGGCGCTCACGGCCCGCGTCGCGCAGCTCACCGCGGACTTCCCGCTCTACCCGGGGCTGTCCCAGTGAMSTPDPTFDAPLAEVDPEIAAVLDGELARQRDTLEMIASENFVPRAVLQAQGSVLTNKYAEGYPGRRYYGGCEQVDIAENLAIERAKALFGAEYVNVQPHSGAQANAAVLHALIKPGDKIMGLELAHGGHLTHGMKINFSGKLYDVAGYGVDPQTYRIEMDEVRKRALEHRPDVIIAGWSAYPRELDFAAFREIADEVGAKLWVDMAHFAGLVAAGLHPSPVPHADVVSSTVHKTIGGPRSGFILSSDEHAKKLNSAVFPGQQGGPLMHVIAGKAVAFKIAGTDAFVERQERTRRGARIIADRLAQADVAETGVSVLTGGTDVHLVLVDLRNSAMDGQQAEDLLHSVGITVNRNAVPFDPRPPRVTSGLRIGTPALATRGFGDAEFTEVADIIATALRAGTAADAEALTARVAQLTADFPLYPGLSQPGPT0008090_3305DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600NANA
AK018_062801032abn-ts_2Intracellular endo-alpha-(1->5)-L-arabinanaseGTGAGCCGCTGGCGCGCCGTCGTCGGCCTCGTCGCCGTCGTCGTGATCGGCGCCGGGGTCGCGCTCGCCGCGCTCCGGCCCTGGCAGACGGCGAGCGAGCCCGAGCCGCTGGCCCTCGACGGCGACCTGGCCACCCACGACCCGGCGCTCGTCGTCGGGGACGAGGGGGAGCCCTGGTTCGTCTACTCCACCGGCGCCCCGGGCAAGTCCCGGGGCGCCCCGCTGGTGCACCGGTCCGACGACGGCGGGAGCACCTGGCAGGCCGCCGGGACGGCCTGGTCGACCGACGAGGACCCGCAGTGGGTCCGCGACTTGATCGACGGTGTCGAGCACTTCTGGGCGCCGGAGCTCGTCGAGCACGACGGCACCTGGTACCTGTACTACTCGGCGTCCACGTTCGGCTCGAACACGTCGGCCATCGGGCTGGCCACCGGGTCCACGCTGGACCCGGAGGACCCGGACTACGGCTGGACGCACCAGGGCGCGGTCTGGCGCTCGCAGGCCGGCGACCCCTACAACGCCATCGACCCCGGGGTGATCACCGACGCCGACGGCACGCCGTGGTTGTTCTACGGCTCCTTCTGGGAGGGCATCCACGTGCTGCCCCTCGACTGGCCCTCCGGGATGCCGGCGGAGGACGCCGACCCCGTGCAGGTGGCGAGCCGGCCCGGCGTCACGCACAACCCGATCGAGGCGCCGTACGTCGTCGAGCGGGACGGCTGGTACTACCTGTTCGTCTCGTGGGGGAAGTGCTGCTCGGGCGTGAGCTCGACGTACTCGATCCACGTGGGCCGTTCCCGGGACGTCACCGGACCGTTCGTGGACGCCGACGGCGTCGACATGGCCGACGGCGGCGGGACGCTCGTGCTCGGGTCGCGGGACTCCCTGATCGGCCCGGGCGGGCAGTCCCTCTCGGAGGGCTACCTCGGGTACCACTTCTACGACGGCGACAACGCCGGCGCCCACCGGCTCGCGATCCAGCGGCTCGGCTGGGACGACGGCTGGCCGGTGGCGACGACGGCGGTCCCCTGAMSRWRAVVGLVAVVVIGAGVALAALRPWQTASEPEPLALDGDLATHDPALVVGDEGEPWFVYSTGAPGKSRGAPLVHRSDDGGSTWQAAGTAWSTDEDPQWVRDLIDGVEHFWAPELVEHDGTWYLYYSASTFGSNTSAIGLATGSTLDPEDPDYGWTHQGAVWRSQAGDPYNAIDPGVITDADGTPWLFYGSFWEGIHVLPLDWPSGMPAEDADPVQVASRPGVTHNPIEAPYVVERDGWYYLFVSWGKCCSGVSSTYSIHVGRSRDVTGPFVDADGVDMADGGGTLVLGSRDSLIGPGGQSLSEGYLGYHFYDGDNAGAHRLAIQRLGWDDGWPVATTAVPPGPT0019090_529DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINANASE,PGPT0019090-abnA-K06113NANA
AK018_062811515abfA_3Intracellular exo-alpha-(1->5)-L-arabinofuranosidaseATGCTGTCCGCATCCGTCACCGTCGACCCGGCCTTCGTCGTCGGACCCGTGCGTCGTCGCACGTTCGGTTCGTTCGTCGAGCACCTGGGCCGTTCCGTCTACACCGGGATCCACGACCCGGAGCACCCGACCGCCGACGCCGACGGGTTCCGCGGCGACGTCGTCGAGCTCACCCGAGAGCTGGGCGTCTCGACCGTCCGCTACCCGGGCGGCAACTTCGTCTCCGGCTACCGCTGGGAGGACGGCATCGGCCCGGTCGAGGACCGCCCGCGCCGTCTCGACCTGGCCTGGCACTCCACCGACCCCAACCTGGTCGGGGTCGACGAGTTCATGCGCTGGGCCGAGCGCACCGGCGTCGAGCCCATGATGGCCGTCAACCTCGGCACGCGCGGCGTGCAGGAGGCGCTCGACCTGCTCGAGTACTGCAACGTCCCCGGCGGCACCGCCTGGAGCGACCTCCGTCGGGCGAACGGCGCCGAGGAGCCGTACCGCGTGTCGATGTGGTGCCTGGGCAACGAGATGGACGGGCCGTGGCAGATCGGCGCGAAGACCGCCGCCGAGTACGGCCGCCTCGCCGCCGAGACCGCGCGGGCCATGCGCATGATCGACCCGGACCTCGAGCTGGTCGTGTGCGGGTCGTCCAACTCCGGCATGCCCACCTTCGGCGCCTGGGAGCACACGGTGCTCACCGAGGCGTACGAGCACGTCGACCACGTCTCGGCGCACGCCTACTACTACGAGGAGGACGGCGACCTCGCCTCGTTCCTCGCGTCGGCCGTCGACATGGACCACTTCGTCGACTCCGTCGCGGCCACGGCCGACGCCGTGCGGGCGGCCGGCAAGCACACCAAGCGGATCCACATCTCGTTCGACGAGTGGAACGTCTGGTACCAGAAGCGCGCCGAGTCACGTCCGCCGTCGGGCGACGACTGGCCGGTCGCGCCCGTGCTCCTCGAGGACCGGTACAACGTGGCCGACGCCGTCGTGGTGGGCAACCTGCTCATCAGCCTGCTGCGGCACACCGACCGCGTGCACGCGGCCTCGCAGGCCCAGCTCGTCAACGTCATCGCGCCGATCATGACGGAGCCGGGCGGCCGGAGCTGGAAGCAGACGATCTTCCACCCGTTCGCCCTGACCTCCCGGTACGCGGCGGGCGAGGTGCTGCGCCTGGCGATCGACGCGCCGACGACGGACACGGCCCGCTTCGGCGAGGTCCCCGTGCTCGACGCCGTGGCCACCCACGACGCCGGGACCGGGGAGGTCGTGGTGCTGGCGACGAACCGGTCGGTCACCGACGAGGTCACGCTCGACGTCGACCTGCGCGGCTTCGAGGGGTTGCGGGTCGTCGAGGCGCTCACCCTGTCCAACCCCGACCACACCTGGACGGCCACCGCCGACGACGACTCGTCGGTCGCACCCCGGCCCAACGCGACCGCGCAGGTCGCCGACGGCCGGCTTCGCGCCGTCCTGCCGCCGGTGTCGTGGAGCATCGTCAGGCTCGGGCCCGCGGCGTGAMLSASVTVDPAFVVGPVRRRTFGSFVEHLGRSVYTGIHDPEHPTADADGFRGDVVELTRELGVSTVRYPGGNFVSGYRWEDGIGPVEDRPRRLDLAWHSTDPNLVGVDEFMRWAERTGVEPMMAVNLGTRGVQEALDLLEYCNVPGGTAWSDLRRANGAEEPYRVSMWCLGNEMDGPWQIGAKTAAEYGRLAAETARAMRMIDPDLELVVCGSSNSGMPTFGAWEHTVLTEAYEHVDHVSAHAYYYEEDGDLASFLASAVDMDHFVDSVAATADAVRAAGKHTKRIHISFDEWNVWYQKRAESRPPSGDDWPVAPVLLEDRYNVADAVVVGNLLISLLRHTDRVHAASQAQLVNVIAPIMTEPGGRSWKQTIFHPFALTSRYAAGEVLRLAIDAPTTDTARFGEVPVLDAVATHDAGTGEVVVLATNRSVTDEVTLDVDLRGFEGLRVVEALTLSNPDHTWTATADDDSSVAPRPNATAQVADGRLRAVLPPVSWSIVRLGPAAPGPT0018655_1402DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
AK018_06282909araQ_11COG0395L-arabinose transport system permease protein AraQATGACTACGGACCTCGAGACGACCCAGGCCCCGTCGCGTCGTACCCGGCGCGCGAGCTCCAAGAACAGCCGGCGGATCGGTTCGCACGCGTTCCTGCTGATCATGGCGCTGTACTTCGTCATCCCGCTGTGGTTCCTCATCGTCGGCTCGACCAAGTCCAACAGCGGGCTGTTCGTCGGGTCCGGCGGGGCGCTGTGGTTCAACGACGAGTTCAACCTCGTCGAGAACATCCGCGGGCTCTTCGAGCACCAGGGCGGGATCTACTGGATCTGGCTGCGCAACTCGTTCGTCTACGCCTTCGCCGGCGGGGTCGGCGCCACCGTGCTGGCGGTCTTCGCCGGGTACGGCCTGGCCAAGTACCGGTTCCGGGGGCGTGGTGCCTACTTCACCGTGCTGCTCGGGTCCGTCATGGTGCCGCTGACGGCGCTGACGATCCCCACGTTCGTGCTGCTCAGCGACATCGGCCTGATCAACACCATGTGGGCGGTCATCCTGCCCTCCCTGCTCAGCCCGATCGGCGTCTACCTGATCCGCGTCTATTCCCAGGACGCGATCCCGGACGAGATGCTCGACGCGGGCCGCGTGGACGGCGCCGGGGAGCTGCGGCTCTTCTTCCGGGTGTCGTTGCCGCTGCTGCGTCCCGCCATGGTGACGGTGCTGCTGCTCGCGACGGTGTTCAGCTGGAACAACTTCTTCCTCCCGCTGGCCGTGCTGCGCGACACCGACCTGCTGCCGGTGACGGTCGGCCTGAACCAGTGGCAGGCCCTGTCGAACGCCGGTGCCGGCGGCGAGCAGGTGTGGAACCTCATCGTCACCGGTGCGCTGGTGTCGATCATCCCGCTGATCGCCGCGTTCCTCGGCCTGCAGAAGTACTGGCAGGGCGGGCTCTCCCTCGGGTCGATCAAGTAGMTTDLETTQAPSRRTRRASSKNSRRIGSHAFLLIMALYFVIPLWFLIVGSTKSNSGLFVGSGGALWFNDEFNLVENIRGLFEHQGGIYWIWLRNSFVYAFAGGVGATVLAVFAGYGLAKYRFRGRGAYFTVLLGSVMVPLTALTIPTFVLLSDIGLINTMWAVILPSLLSPIGVYLIRVYSQDAIPDEMLDAGRVDGAGELRLFFRVSLPLLRPAMVTVLLLATVFSWNNFFLPLAVLRDTDLLPVTVGLNQWQALSNAGAGGEQVWNLIVTGALVSIIPLIAAFLGLQKYWQGGLSLGSIKPGPT0016540_1155DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_06283981lacF_13Lactose transport system permease protein LacFATGACAACGTCGTCGACGGCAGTCGACCAGACTGCCGGACCCGCGGCTGCGGGTGCCCGCGGCGGCAAGCTCCGCAGGAGCTCGTCCACCAGCACCATCGACAGCAAGCGGCAGTGGTGGGGATGGATCTTCACCACCCCGTTCACCATCGTCTTCGTGCTGTTCCTCATCGTGCCGCTCTCCTACGCGTTCTGGATGAGCCTGCACAACAAGGGGATCGCCACCGGCGGTGAGTCGGTCTTCGTCGGGATCGACAACTACGTCCGCGCCTTCACCGACCCGATCTTCCTCGACGGGCTGCTGCTGGTGGCACGGTTCGTGGCCGTGATGGTCCCGATCCAGATCGGCGTCGCGCTGCTGTGCGCGCTGGTGCTCGACACGCTCGCCACGCAGCTCAGCAAGGCCTCGCGGCTGCTCATCTTCGTGCCGTACGCCGTCCCGGCGGTCATCGGCGCCCTGATGTGGGGCTTCCTCTACAGCCCGCGCTTCGGGCCCGCCCAGGACCTCTTCGGGCTCTTCGGCCTCACGGCGCCCGACTTCCTCAGCTCGTCGATGATCTTCACCTCGCTGGTGAACATCGTGACGTGGCAGTGGGTCGGCTACTACATGATCATCATCTACGCCGCCCTGCGGACCATCGACCCCTCGGTCTACGAGGCCGCCCGCATCGACGGCGCGAACGGCGCCCAGATCGCGCTGCGCATCAAGGTGCCGATGGTGTCGTCGTCGATGGTCATGGTCGTGATCTTCTCGTTGATCGGCACGCTGCAGTTCTTCACCGAGCCCACGGTGCTGCGCTCGGTCGCGCAGGGCGCGATCCCGCCGGACTACACGCCGAACATGTACGCGTACTCGCTGGCGTTCTCGTACAGCCAGTTCAACTACGCGTCCACGATCGCCTTCGCACTGGGCATCTTCGTGTTCATCGGGTCGTACCTCTTCCTGTACCTGACCCGCAAGCAGAGCGGACTGAAGTCATGAMTTSSTAVDQTAGPAAAGARGGKLRRSSSTSTIDSKRQWWGWIFTTPFTIVFVLFLIVPLSYAFWMSLHNKGIATGGESVFVGIDNYVRAFTDPIFLDGLLLVARFVAVMVPIQIGVALLCALVLDTLATQLSKASRLLIFVPYAVPAVIGALMWGFLYSPRFGPAQDLFGLFGLTAPDFLSSSMIFTSLVNIVTWQWVGYYMIIIYAALRTIDPSVYEAARIDGANGAQIALRIKVPMVSSSMVMVVIFSLIGTLQFFTEPTVLRSVAQGAIPPDYTPNMYAYSLAFSYSQFNYASTIAFALGIFVFIGSYLFLYLTRKQSGLKSPGPT0016535_2286DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_062841380hypothetical proteinATGCGCATCTCACAGCGACGTGGAGCAGCAGCCGTCGCGGCCACCGTGGCGGCCGGTGCGATCCTCACCGCCTGCTCGTCCGGCGGGTCCGAGGACGGCCAGACCGACGCAGGGTCCGCCGCCGGCGGCGAGGACGCGACCTGCACGAACGAGATCCTGAACGCCGACGCTCCCCAGGTGAGCGTCTGGGCCTGGTACCCCGCCTTCGAGTCGGTCGTGGACCTCTTCAACGAGACCCACGACGACGTCCAGGTCTGCTGGACGAACGCCGGTCAGGGCGCCGACGAGTACAACAAGTTCTCGACGACCATCGAGGCCGGCAGCGGTGCGCCCGACGTCATCATGCTCGAGTCCGAGATCCTGCCGACCTACACGATCCTCGACTCGCTGGTCGACCTGTCGGAGTACGGTGCCGGCGAGCTGGAGAGCCAGTTCACCACCGGTTCCTGGTCGGACGTCTCCAACGGCGACTCGGTCTACGCCGTCCCCGTGGACGGCGGCCCGATGGGCATGCTGTACCGCGCCGACATCTTCGACGAGTACGGCGTCGAGCCCCCCACCACGTGGGACGAGTTCGCCCAGGCGGCCCAGGACCTGCGGGACGCCGGCTACGACGGCTACATCACGAACTACCCGACCAACGGCAATGCGCTGAACTACGCGCTGTTCGCCCAGAACGGCTGGTCGCCGTTCGAGTACGACAACGCGAACCCGGCCGAGATCGGCATCGACGTCGCCACGCCGGAGGCCGAGGAGGTCCTGTCCTACTGGAACGACCTCATCGAGTCCGACCTGGTCGCCACCGACGACGCCTTCACCTCCGACTACAACACGAGCCTGGTCGACGGCACCTACGCCGTCTACCTCGCCGCCGCGTGGGGTCCGGGCTACCTGCAGGGTCTGTCCGACGCCGACTCGGGCGCCGAGTGGAAGGCGGCACCGCTGCCGCAGTGGGACCCGGCGAACCCGGTCCAGGTCAACTGGGGCGGCTCGACCTTCGCCGTGACCGAGCAGGCCGCCGACCCCGAGCTGTCCTACACCGTCGCCAGCGAGCTGTTCGGCACGATGGACGCCTGGGAGCTCGGCATCGACGAGGCTGCGCTGTTCCCGCAGTGGCTCGAGGCGCTGGAGTCGGACTTCTTCGTCGAGAAGGAGTACGAGTTCTTCGGCGGGCAGCAGATCAACAAGGACGTCTTCATCGAGGCCGCGAACGGCTACGAGGGCTTCTCCTTCAGCCCGTTCCAGGTCTACGCCTACGACCAGCAGACGCAGGCGCTGTACGACATGGTCGAGTCCGGCGGCGACGCCGCCGGCGCGCTGCAGACCATCCAGGACGCCCTGGTGACCTACGCCCAGCAGCAGGGCTTCACCGTCAAGTGAMRISQRRGAAAVAATVAAGAILTACSSGGSEDGQTDAGSAAGGEDATCTNEILNADAPQVSVWAWYPAFESVVDLFNETHDDVQVCWTNAGQGADEYNKFSTTIEAGSGAPDVIMLESEILPTYTILDSLVDLSEYGAGELESQFTTGSWSDVSNGDSVYAVPVDGGPMGMLYRADIFDEYGVEPPTTWDEFAQAAQDLRDAGYDGYITNYPTNGNALNYALFAQNGWSPFEYDNANPAEIGIDVATPEAEEVLSYWNDLIESDLVATDDAFTSDYNTSLVDGTYAVYLAAAWGPGYLQGLSDADSGAEWKAAPLPQWDPANPVQVNWGGSTFAVTEQAADPELSYTVASELFGTMDAWELGIDEAALFPQWLEALESDFFVEKEYEFFGGQQINKDVFIEAANGYEGFSFSPFQVYAYDQQTQALYDMVESGGDAAGALQTIQDALVTYAQQQGFTVKPGPT0016545_3806DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_062851017ccpA_15COG1609Catabolite control protein AATGGCAGTGACCATGCACGACGTGGCGCAACGGGCCGGCGTCTCGATCAAGACCGTCTCGAACGTCGTCAACGGGTACCCGCACATCCGGCCCGAGACGCGGCGTCGTGTCCAGGACGCGATCGACGAGCTGGGCTACCGGCTCAACACGACCGCCCGCAACCTGCGCCAGGGGCGCACCGGCATGATCGGGCTGGCTCTGCCGGAGCTGTCCCTGCCGTACTTCGCCGAGCTGGCGGACTCCGTCATGCGAGCCGCCGAGGCCCGCGGCGTGGTGGTGCTGCTGGAGCAGACGGGCGCGCAGCGGGAGCGCGAGCTCCAGGCGCTCGACTCGCCGCACCGTCGGCTCACCGACGGGCTGCTGTTCTCCCCGCTGGCCCTCGATCCCGAGGAGACCGAGCGCCTCCAGGTCGACTACCCGATGGTCCTCCTCGGCGAGCGCATGTTCGGCCCGGTCGACCACGTCACGATGGCCAACGTCGAGGCGGCCAGGGCGGCCACCCTGCATCTCGTCGAGCGCGGGTGCCGCCGGATCGCGACGGTCGGTGCGCACCCCGGCGAGACCATGGGGTCCGCCCGGCTGCGCCTCGACGGGTACCGCAAGGCGCTCGCCGAGGCGGGACTGCCCTTCGACCCCGACCTGGTCGCCGACGCCGGGCTCTGGCACCGCTCGACCGGCGCCGAGGCCATGACACGGCTGCTCGACGCCGGGGTGCAGCTCGACGGCGTCTTCGCCATGAACGACGCCCTCGCGCTCGGTGCGCTGCACGTGCTCCACACCCGGGGCGTCGCGGTGCCGCGCGACGTGGCGGTCATCGGCTTCGACGACATCGACGACGCCCGCTACTCCGAGCCGCTGCTGAGCACGGTCGACCCCGGGCGGGAGCAGATCGCCGGCACCGCCGTGGACCTGCTGCTGGAACGCATCGCGGGCTCCACCGCCTCGCCCCGACGGGTCGTCGCGGACTTCCGCATCGTCGCCCGGGAGTCGTGCCTGCTGGGGCAGGACGTGCACTGAMAVTMHDVAQRAGVSIKTVSNVVNGYPHIRPETRRRVQDAIDELGYRLNTTARNLRQGRTGMIGLALPELSLPYFAELADSVMRAAEARGVVVLLEQTGAQRERELQALDSPHRRLTDGLLFSPLALDPEETERLQVDYPMVLLGERMFGPVDHVTMANVEAARAATLHLVERGCRRIATVGAHPGETMGSARLRLDGYRKALAEAGLPFDPDLVADAGLWHRSTGAEAMTRLLDAGVQLDGVFAMNDALALGALHVLHTRGVAVPRDVAVIGFDDIDDARYSEPLLSTVDPGREQIAGTAVDLLLERIAGSTASPRRVVADFRIVARESCLLGQDVHPGPT0021075_439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
AK018_062861530abfA_4Intracellular exo-alpha-(1->5)-L-arabinofuranosidaseATGGCTGACGCCCGCATCACCCTCCACCCCGACTTCCGGCGGGGCACCGTCGACCGGCGCCTGTTCGGCTCGTTCGTCGAGCACCTCGGCCGCGCCGTCTACACCGGCATCTACGAGCCCGAGCACGCGCAGGCCGACGAGCACGGTTTCCGCCGCGACGTCGCGGACCTCATCACCGAGCTCGGCGTCCCGATGGTGCGCTACCCCGGCGGCAACTTCGTGTCCAACTACGTCTGGGAGGACGCCGTCGGCCCGGTGGAGGAGCGCAAGCCCTTCCTGGACCTGGCCTGGCGCACCGTCGAGCCCAACCTCGTGGGCACCGACGAGTTCCTGCAGTGGGCCGAGCGCGAGGGCATCGAGCCGATGATGGCCGTCAACCTCGGCACCCGGGGCGTCGACGCCGCCGCGGCCCTCCTCGAGTACTGCAACGGCGAGGCCGGCACCCGCTGGGCCGACCTGCGCATCGCCAACGGCCGCACCGAGCCCTACGGCGTGAAGCTCTGGTGCCTCGGCAACGAGATGGACGGCCCCTGGCAGATCGGCCACAAGGACGCCCACGAGTACGGCAAGCTCGCCGCCGAGGCCGGCAAGGCGATGAAGCTCGTGGACCCCTCCATCGAGCTCGTCGTGTGCGGGTCCAGCTCGATGCAGATGCCGACCTTCGGCGAGTGGGAGCGCGTCGTGCTGTCCTACACGTACGACATCGTCGACCACATCTCGATGCACGCGTACTACGAGGAGCACGGCGGCGACCGCCGGTCCTTCCTCGCGTCCGGCACGGCGATGGACCAGTTCATCGACCGCGTCGTCGCCTCGGCCGACGCCGTCGGGGCCGAGCGGCGGTCGGACAAGAAGATCACCATCTCCTTCGACGAGTGGAACGTCTGGTACCTCGAGACCCGGTTCCCCGGCGAGTCCAACCTGCCCATCCAGCGGGACGCCCCGCGCATCATCGAGGACGTCTACTCCGGGCTGGACGCCGTCGTCGTGGGCGACCTCCTCGTCACCCTGCTCAACCACGCCGACCGCGTCCCGGTCGCCGCGCTGGCACAGCTCGTCAACGTCATCGCCCCGATCATGACCGAGCCCGGCGGGGAGGCGTGGCGTCAGCCCACCTTCCACCCGTTCGCCACCACCGCGCGGCTCGCCCAGGGCACCGCGCTGGACGTGCGCGTCGAGGCGCCGTCGTACGAGACCACGCGCCACGGCGCGGCCCCCACCGTCACGGCGGCCGCGACCGTCGGCGACGACGGCGCGCTGGGGCTGTTCCTCACGAACCGCACCGACCGAGTCGTCGAGGTCGACCTGGCGCACGTCGGCGCCGCGCTCTCGCTCACCGAGGGTCACCAGATGGTCGCCGACCACGAGCCGGCCGTGCACGGTCCCGAGCACGCCGCGAAGGTGGCCGAGACGTGCTGGTCCTCCGTCGACGTGGCGTCCGCCGTCACCGGCGCCGCGAGCGGGACGACGACGGTCCGCCTGGCGCCGGAGTCGTGGACCGCGTTCTCGGGGACGTTCGCCCGCGCCTGAMADARITLHPDFRRGTVDRRLFGSFVEHLGRAVYTGIYEPEHAQADEHGFRRDVADLITELGVPMVRYPGGNFVSNYVWEDAVGPVEERKPFLDLAWRTVEPNLVGTDEFLQWAEREGIEPMMAVNLGTRGVDAAAALLEYCNGEAGTRWADLRIANGRTEPYGVKLWCLGNEMDGPWQIGHKDAHEYGKLAAEAGKAMKLVDPSIELVVCGSSSMQMPTFGEWERVVLSYTYDIVDHISMHAYYEEHGGDRRSFLASGTAMDQFIDRVVASADAVGAERRSDKKITISFDEWNVWYLETRFPGESNLPIQRDAPRIIEDVYSGLDAVVVGDLLVTLLNHADRVPVAALAQLVNVIAPIMTEPGGEAWRQPTFHPFATTARLAQGTALDVRVEAPSYETTRHGAAPTVTAAATVGDDGALGLFLTNRTDRVVEVDLAHVGAALSLTEGHQMVADHEPAVHGPEHAAKVAETCWSSVDVASAVTGAASGTTTVRLAPESWTAFSGTFARAPGPT0018655_1119DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
AK018_06287498hypothetical proteinATGAGCCGGTCGCGCTCCGCCGTCGGCGACGTGTCGGCACCCTGCACCCCGCTGTCGTCCGACGCCCCGGAGTCGGGCGCCTCGGCCCCGTCCGCCGGGTCCACGGTCGTCGTCCCGGTGGTCGACTCGCTGGTCGACGCCGCCGCGTCGTCGTCCGCGTCCTCCGTGGTGGTCGTCGCCGAGGAGGCCTCGGCCGGCTCGTGCACCGAGGACCAGTCCGGCACGTCGGCGCTGGGCGCCGTCGGGGCAGCGGCGCGGTCGGCGAGGTCGAACACCTCGACACGACGGGTGTGGCCCGTCTCCGGCAGCGGCTCGGTCCGCTTCGTGGTGCCGGCGGAGGCCCGCCCGGTCGTCGCCGGGCCGGGGGCCGGAGCGGTCGCCTGCGCCTCGGGCGCAGCGGGAGCCTCGACCGGCACGGCGGGCTCGTGCATGGCGAAGGCCTGCCGGACGCGCGACTCGAACGCGGGCAGCTCCTCGAACGCCGTCGCGGGCTCGTAGMSRSRSAVGDVSAPCTPLSSDAPESGASAPSAGSTVVVPVVDSLVDAAASSSASSVVVVAEEASAGSCTEDQSGTSALGAVGAAARSARSNTSTRRVWPVSGSGSVRFVVPAEARPVVAGPGAGAVACASGAAGASTGTAGSCMAKACRTRDSNAGSSSNAVAGSNANANANANA
AK018_062881047yjfFInner membrane ABC transporter permease protein YjfFATGACCGCGACGACGCCCCAGAAGACTGCGACGCCGTCCGGCCCCGACGGGCCGGGCGGGAACGGGTCGCGGCTGCCGGCGCTCACGCGACGGCTGCGCATCGACCGGCGGTACCTGCCGGTGCTCGGCACCTTCGTGGTGCTCGCCCTGATCCTCGCGATCGGCGGCGTGCGCTACGAGAACTTCCTGTCGACCGGAGTCCTGGCGAACCTGTTCATCAACAACTCGTTCCTCATCGTGCTCGCGGTGGGCATGACGTTCGTCATCCTGACCGGCGGCATCGACCTGTCGGTCGGTGCGGTGCTGGCCCTGTCGGCGGTCTCGACCGCGTTCCTGCTGGACGCGGGCCTCCCTGTGGCGGTCGTGCTCCCCGCCGCGGTGCTCATCGGCTCGATCATCGGGCTCCTCATCGGGCTGATGGTGCACGTGTTCGAGGTGCAACCGTTCATCGCGACGCTGGCCGGGATGTTCTTCGCGCGCGGGCTCTGCTTCGTCATCGCCCCGGAGTCGATCCCGATCACCGACGAGGCGTTCGTGGCGCTGGCCGGCTGGGACACCTGGATCGGCGGCCAGTGGCGGATGACCACGAGCGTCATCATCGCGCTGGTCGTCATCGGCGTCGCCTTCTACCTGCTGCACTACACGCAGTTCGGGCGGACGGTGTACGCGATCGGCGGCGGCGAGCAGTCCGCCCAGCTCATGGGTCTGCCCGTGGCGCGCACCAAGGTGCTGGTCTACGTCATCTCGGGCACCTGTGCCGGTCTCGGCGGTCTCCTCTTCGCGATGTACTCGCGGTCGGGGTACTCGCTGACCGGTGTCGCGATGGAGCTCGACGCGATCGCCGCGGTCGTCATCGGCGGCACCCTGCTCACCGGTGGCACCGGGTTCGTCCTCGGGTCGGTGCTCGGTGTCCTGGTGCTGGGCCTGATCCAGACGATCATCACCTTCGAGGGCACGCTGAGCTCCTGGTGGACGAAGATCTTCATCGGCGTGCTGCTGCTGGTGTTCGTCGTCCTGCAGCGGGTGCTCAGCCTCCGCAAGACCTGAMTATTPQKTATPSGPDGPGGNGSRLPALTRRLRIDRRYLPVLGTFVVLALILAIGGVRYENFLSTGVLANLFINNSFLIVLAVGMTFVILTGGIDLSVGAVLALSAVSTAFLLDAGLPVAVVLPAAVLIGSIIGLLIGLMVHVFEVQPFIATLAGMFFARGLCFVIAPESIPITDEAFVALAGWDTWIGGQWRMTTSVIIALVVIGVAFYLLHYTQFGRTVYAIGGGEQSAQLMGLPVARTKVLVYVISGTCAGLGGLLFAMYSRSGYSLTGVAMELDAIAAVVIGGTLLTGGTGFVLGSVLGVLVLGLIQTIITFEGTLSSWWTKIFIGVLLLVFVVLQRVLSLRKTPGPT0016630_262DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016630-ytfT|yjfF-K23509NANA
AK018_062891077fruFFructose import permease protein FruFATGCCTGCGACCACGGGAGCGTCGACGCGCACCGCAGGCCCGGGTGGGCTGCGGCGCCTCGCGCACCACACCATCTTCTGGCCCGTCGTGGCGCTGATCGCGCTGCTGGTGGCCAACACCCTGTACAGCCCCGATTTCCTGGCCGTGTCGATCCTCGACGGGCACCTGTTCGGCGCGCCGATCGACATCCTGCGCAACTCGGCGCCGCTGCTGCTGGTCTCGCTGGGCATGACCCTGGTCATCGCCACCCGCGGCATCGACCTCTCCGTCGGCGCGGTGGTCGCGATCGCCGGGGCGCTGTCGCTGAGCTTCATCGCGACGTCGCCGGACCCGGGCTCGGTGACGACGGTGCTCATCGCCATCGCCATCGCCCTCGCCCTGTGCCTGCTGCTCGGCGTGTGGAACGGGTTCCTGGTCTCGGTGGTGGGCATCCAGCCGATCATCGCGACCCTGATCCTCATGACCGCCGGACGCGGCGTCGCGATGCTCATCACCGAGGGGCAGATCACCACGGTGAACAGCGCGCCCTTCAAGACGCTCGGCGCCGGGTTCTGGCTCGGGCTGCCCGCGGCGGCGCTCATCGCCTACGGCGTCTACGTCGTCGTGGCGCTGATCACCCGCCGCACCGCCCTGGGCATGCTGGTCGAGTCCGTCGGCATCAACCCGTCGGCCAGCCGCCTGGCCGGCGTCAAGGCGCGGACCATCGTGTGGACGGTGTTCGCCCTGTCCGGGCTCTTCTCCGGGCTGGCCGGACTGATCCTGGCGTCCAACGTCATGGCGGCCGACGCCAACAACGCCGGCCTGTTCATCGAGCTCGACGCGATCCTCGCCGTCGTCATCGGCGGCACCTCGCTCCAGGGCGGCAAGTTCTCGCTGTCCGGGACGCTCGTCGGCGTGCTCATCATCACGACCCTGACCCTGACCGTGACGATCGTCGGCATCTCCCCGCTGGTCACCCCGCTGTTCAAGGCGCTCGTCGTGATCGCCGTGACCCTGCTGCAGTCGCCGAGGGTCCGCGAGAGACTCGCCGCCCGGCAACGGCAGCGCGTGGCGACGCCCGAGGAGGTGGCGGCCTGAMPATTGASTRTAGPGGLRRLAHHTIFWPVVALIALLVANTLYSPDFLAVSILDGHLFGAPIDILRNSAPLLLVSLGMTLVIATRGIDLSVGAVVAIAGALSLSFIATSPDPGSVTTVLIAIAIALALCLLLGVWNGFLVSVVGIQPIIATLILMTAGRGVAMLITEGQITTVNSAPFKTLGAGFWLGLPAAALIAYGVYVVVALITRRTALGMLVESVGINPSASRLAGVKARTIVWTVFALSGLFSGLAGLILASNVMAADANNAGLFIELDAILAVVIGGTSLQGGKFSLSGTLVGVLIITTLTLTVTIVGISPLVTPLFKALVVIAVTLLQSPRVRERLAARQRQRVATPEEVAAPGPT0016630_197DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016630-ytfT|yjfF-K23509NANA
AK018_062901539fruK_1COG1129Fructose import ATP-binding protein FruKATGACGAGCTCCACGAGCGCGGACCGGCCGGTCGTCGAGATGTCCGGGATCTCCATCGAGTTCCCGGGTGTCAAGGCGCTCGACCAGGTCGACTTCAGGCTCTTCCCCGGTGAGGTGCACGCCCTGATGGGCGAGAACGGGGCCGGGAAGTCCACCCTCATCAAGGCACTCACGGGTGTCTACGGCATCGACGCCGGCCAGATCGTCGTCGACGGTGCCCCGCACCGTTTCTCGGGACCGGGCGAGGCGCAGGACGCCGGGATCGCGACGGTGTACCAGGAGGTCAACCTCTGCGAGAACCTCACGGTCGCCGAGAACATCATGCTCGGCCACGAGCCGCGCCGGCTCGGGGCGATCGACTGGCGGGCCACCCGGCGCGCCGCGTCGGACCACCTGGCCACCATGGGTCTCGACCTCGACCCTGCCTCGTCGCTGGGCTCGCACTCGATCGCCGTCCAGCAGCTGGTCGCGATCAGCCGCGCCATGGTCGTCGACGCCAAGGTCCTGATCCTCGACGAACCGACGTCCAGCCTGGACGCCGACGAGGTCGCCCAGCTCTTCGCCGTCGTGCGGCGGCTGCGGGACCAGGGCGTGGCGATCCTGTTCGTCTCGCACTTCATCGAGCAGGTCTACGAGATCTCCGACCGCATGACCGTGCTCCGCAACGGTCAGCGGGTCGGCGAGTACCGCACGAGCGAGCTCGACCGGCTCGAGCTGGTCTCGACGATGATCGGGCGCTCGATGGAGCTGCTCGACGACCTGCAGGTCTCCACCGATCACGCGGTCGACGTCGAGCAGGGAACCGTCCCGTTCCTCCAGGCGGTCGGTCTGGGCCGCAAGGGCGACGTCCAGCCGTTCGACCTCGAGGTGTACGCCGGCGAGGTCGTCGGGCTCGCCGGGCTGCTGGGGTCGGGGCGCACGGAGGTCGCGCGGCTGCTCGCCGGCGCCGACCGCGCCGACGCCGGCTCCACCCGCATCAAGGACGTGCTGACGCGGCTGCGGAACCCGCGCTCGGCGATCTCCCGCGGCATCGCGTTCTCCTCGGAGGACCGCAAGGCCGAAGGAGTCGTCGGCGACCTGACGGTCCGCGAGAACATCGTCCTCGGCCTGCAGGCGGGCCGCGGCTGGATGCGGCGGCTGCCGCGCCGGCAGGTCGACGAGATCGTCGACAAGTACATGGCGGCGCTCAACGTGCGCCCGGCGAACCCGGACGCGCTGCTGCGGAACCTCTCGGGCGGCAACCAGCAGAAGGTGCTGCTCGCCCGCTGGCTGGCGACCGCCCCCGAGCTGCTCATCCTCGACGAGCCCACCCGTGGGATCGACGTGGGGGCCAAGGCGGAGATCCAGAAGCTCGTCGCCGAGCTCGCCTCCCAGGGCATGGCCGTCGTGTTCATCTCGGCCGAGCTGGAGGAGGTCCTGCGCCTGAGCCACCGGATCGGCGTCATGCGCGACCGGCAGAAGGTGGCCGAGATCGTCAACTCCGAGGACGTCGGCGTCGACGACGTCGTCAATCTCATCGCGAGCGGAGGTGGGCACTGAMTSSTSADRPVVEMSGISIEFPGVKALDQVDFRLFPGEVHALMGENGAGKSTLIKALTGVYGIDAGQIVVDGAPHRFSGPGEAQDAGIATVYQEVNLCENLTVAENIMLGHEPRRLGAIDWRATRRAASDHLATMGLDLDPASSLGSHSIAVQQLVAISRAMVVDAKVLILDEPTSSLDADEVAQLFAVVRRLRDQGVAILFVSHFIEQVYEISDRMTVLRNGQRVGEYRTSELDRLELVSTMIGRSMELLDDLQVSTDHAVDVEQGTVPFLQAVGLGRKGDVQPFDLEVYAGEVVGLAGLLGSGRTEVARLLAGADRADAGSTRIKDVLTRLRNPRSAISRGIAFSSEDRKAEGVVGDLTVRENIVLGLQAGRGWMRRLPRRQVDEIVDKYMAALNVRPANPDALLRNLSGGNQQKVLLARWLATAPELLILDEPTRGIDVGAKAEIQKLVAELASQGMAVVFISAELEEVLRLSHRIGVMRDRQKVAEIVNSEDVGVDDVVNLIASGGGHPGPT0016635_260DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016635-ytfR-K10820NANA
AK018_06291891COG3662putative proteinTTGTGCGCTATCGTGGGCCGCATGGCCCTCGACGACGAAGTGGGACTCTCCAAGGCGGACCGGCGCCACGCTCTCGACGCGATCGAGACGACGGCGCTGCGCGAGTCGGCCAACTGGTTCCAGCTCCTGGCCGGCACGTCGAACGTCGTCATGCAGCTCGCGGCACGACCCGTGGGCCATGGCGTGAAGGACAGCACGGTCGACGAGGGCAACCTGTTCCTCAACCCCGCGCGCCGACGCCGCACGACGATCGGCTACATCGCGGTGGCGATGTTCGGCGACGCGGAGGAACGCGCGGCCTACCGCCGCGCCACGAACCGTTCGCACGCCCAGGTGCGCTCGCCCGAGGGAGCCGAGGTGACCTACGACGCCTTCGACCCGGCGCTGCAGCTCTGGGTCGCCGCGTGCCTGTACAAGGGCGCGGAGCACGCCTACCAGCGGGTGCACGGCCCCCTGACCGGCGACTTCGCAGAGCGGTTCTACCGCCAGGGCATGGTGTTCGGGACCACCCTGCAGCTCCCGGCCGAGGCGTGGCCCGCGACCCGCGAGGACTTCGACGCGTACTGGACCGCCTCGCTCGACGAGCTCGAGATGGACGACGCGACGCGGCAGTACCTGATGCGCGTCGTCCACCTGGAGTACCTCGACCGCAAGATCCCGCCGTGGCTGATGCGGTGGCGCGTCCGCCTGGTCACGGGCTACCTGGAGCCCCGCTTCCGCGAGCTGATGCACCTCGAGTGGACCCCCGACGACGAGGCGAGGTTCGCGCGGTTCAACCGGCGCATGACGCGCTTCATGCGCCTCGCCCCACGCCGGCTGCGTGAACGGCCGTTCACCCGGAGCCTACGTGACGTGCGGCGGAGGCTCGCCACCGGCACGTCGTTGTTCTGAMCAIVGRMALDDEVGLSKADRRHALDAIETTALRESANWFQLLAGTSNVVMQLAARPVGHGVKDSTVDEGNLFLNPARRRRTTIGYIAVAMFGDAEERAAYRRATNRSHAQVRSPEGAEVTYDAFDPALQLWVAACLYKGAEHAYQRVHGPLTGDFAERFYRQGMVFGTTLQLPAEAWPATREDFDAYWTASLDELEMDDATRQYLMRVVHLEYLDRKIPPWLMRWRVRLVTGYLEPRFRELMHLEWTPDDEARFARFNRRMTRFMRLAPRRLRERPFTRSLRDVRRRLATGTSLFNANANANANA
AK018_062922865QRSL1_5Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrialATGAACCAGCAGTCCCGTCGGCGGCACCGCGTCCGCCGGAAGGCCTCGGGCGTCGCGGTCACGACAGCGACGCTCGCCGCGTTCTGCCTCGCCCCCGCCTCCGCCTACAACCCCGTCCCCGTCGTCACCGGGGACGCCTGGAACGTCCACGACGCCGCCAGCCCCGGCGTCGACACCGGCAGCGTGATGGACGCCGAGAGCCGGGCCCTGATGGGCTACGGCGGCCTGCGGATCCAGGTCGAGGGGGGCACCTCGCCGCTCGGCGGGATCCTCCTGCGCGGTTTCGAGCTCACCTACGACGAGCAGGACACCTTCTCCACCACGCAGGGCGTCGACGTCGACGGCGTCGTCGTGCAGCGCGAGCTGCGCGTCGACCAGGCCGCGAGCTACGGCCGGTTCCTCGACTCCTTCACCAACACCACCGACGCCCCGGTGACCGTCGAGACCGCCTTCGGCGGCCAGCTCGGGTACGACACCGGCACCAACCAGAGCGCGATCGCCGGCACCTCCGACGGCGACACCACCATCTCCGACGCCGACGGGTGGGCCAGCTGGTACACCCCGAGCGACGGTCCGGGGTCGGCGAGCCGGAACGGCCCTTCGGCCACCGCGTTCGGCAGCCCCGGCTTCGGCCCCGCCCTGGAGCGCATGGGCAACTTCCTCCGCGACCCGTTCACGAACGACCTGCCGACCGAGGGCGACGAGGCGAACCACCCGGCCTTCGTGAACAGCCTGACGATCGCCCCGGGCGAGACCGTCTCGCTGGCGCACTTCGTGGTCACGGGACTCTCCGAGACGTCCGCCGTCGTGGACGGCGCCGAGGTGCCCGAGCCCGGCTCCCAGGTGGACCTGGTGGAGGCGAAGGCCGCCGCGCTGAGCACGGATCCCGACCTCGCAGGACTCACCCCCGCCGAGGTCTGCTCCTTGGCGAACTTCGACCTCGCGGCGCTCGGCGTCACCGACTGCTCGACGCCCTCGGGCGAGGTCCAGGGCGGGATCGACCAGGTCGCCGCCCCCGTGACGCTGACGACCAGCACCTCGTACGACGTCGTGGGCAAGACGATCACGGACCTGATCACCGACATGGAGTCCGGCGAGACCACGGCCGCGGAGATCACCCAGGCCTACCTCGACCGCATCGCGGCCTACGACCGTGGCCCGTTCGGGCTGCACTCGGTCATCGCCGTCGCGCCGACCGCGATCGAGCAGGCGGAGGAGGCCGACGCCGCCCGAGCGGACGGCTCGGAGCTGCCGCTGCTCGGCGTGCCGATCCTGGTCAAGGACATCATCGACACCAAGGACATGCCCACCACGGGCGGTTCCCTGGTCTTCGACGGCTACCAACCGACCGAGGACGCCTGGCAGGTGAAGAAGCTGCGCGAGGCCGGCGCCATCATCCTCGGCAAGTCGAACCTCGCGGAGTTCGCGAACGACGGTCACTACAGCCCGAGCGCCTACGGCCAGGTGTGGAACGCCTACGACCCGTCGCGCAGCCCGATCGGGTCCAGCGGTGGCACCTCCGTCGCGGTCGCCTCGAGCTTCGCAGCCGCCGGGTTCGGCACGCAGACCGGTGACTCGCTCTGGGGCCCGTCGGGTGCCGCGAGCCTGTTCTCGCTGCGCGGTACCGACGGCATGCAGAGCAGCGCGGGCACCATGCCGCTGACGATCATCCAGGACTACGTCGGCTTCATCAGCCAGTCCACCGAGGACCTGGCTCTCCTGCTCGAGGCCACCGCGGTGGACAACCCCGACGACGTGCTCGACGACGTCGCCAACGGGCACCGCCCGGACGACTGGACCGAGTACTTCTCGCCCGACGTGCTCGACGGCAAGGTCATCGGCGTCCCCGAGGGCGCGTTCGACGACCCGTTCGGCACCACCGTGGTCAGCGACGCGCTGCGCGCCCAGTTCTCCGTGTTCGAGGACCTCGGCGCGACCGTGATCGAGATCCCGGAGGGTCCGGACGCCGGCCCGCGGGAGTTCGGCGGGGACACCAACTACGAGGGCTGGGCGCAGTGGATCGAGGCGCACCCGGACAACCCCTACACCTCGCCCGAGGAGATCACCCGCAGCCCGCTGCGGATCCCGACCCGCATCAACACCTCGGAGTACACCGGGGCGGGCCGCATGACCGACGAGGACCAGCGGGCGTTCGAGCAGTGGCGCGCCGACTGGCGGGCCGACCTCGGTGACTGGATGGACGACCACGGGGTCGACGCCGTGCTCTACGCGGCCGAGCTCAGCGACATCCACCTGAACGACTCGATCATCCCGAGCTTCGGACGGATCAACCCGGAGTCGTCGTACGCCGGGGTGCCCACGGCGATCTTCCCGGCCGGCGTCAACGCCCACGGCAACCCGATCGGGTTCCAGCTCCAGGGCAAGGAGTTCCAGGACGCCGAGCTGCTGGGCATGGCGTACGCCTTCGACCAGGCCACGGACGGTCGCGTGCTGCCGGAGATCACGCCGGCACTCGCGCACGACGCCGACGCTCCGGCCCAGGTCGTCGACCCGCTGCCCGCGCTGCCGCAGGCGGTGGCCGAGCGTCCGGCCTTCGTGCTGGACACCACGGCGACGGTCGCCACCAAGGCGAAGGGCCGGGCACCGGCCAAGGTCACCTTCGCCGTGGACTGCACGGGTGCCGGTGCCTGCTCCGGCCGGCTGGAGGCCGCGTACGACGGCGAGACGTTCGGTGCGCGCAGCCTGCGGGTGACGGACTCCGGCAAGTCGGTGTCCTTCTCCCTGCCGGACGCCGCCGCTGCTGCGTGGACGGCCGGCGAGACGGTGACGTTCGACGTCACCCTGTCCGGCAAGAAGACGACCGTCGCGCCGACGGACGCCGTGGAGGTGGTCGCTGCTCCGTGAMNQQSRRRHRVRRKASGVAVTTATLAAFCLAPASAYNPVPVVTGDAWNVHDAASPGVDTGSVMDAESRALMGYGGLRIQVEGGTSPLGGILLRGFELTYDEQDTFSTTQGVDVDGVVVQRELRVDQAASYGRFLDSFTNTTDAPVTVETAFGGQLGYDTGTNQSAIAGTSDGDTTISDADGWASWYTPSDGPGSASRNGPSATAFGSPGFGPALERMGNFLRDPFTNDLPTEGDEANHPAFVNSLTIAPGETVSLAHFVVTGLSETSAVVDGAEVPEPGSQVDLVEAKAAALSTDPDLAGLTPAEVCSLANFDLAALGVTDCSTPSGEVQGGIDQVAAPVTLTTSTSYDVVGKTITDLITDMESGETTAAEITQAYLDRIAAYDRGPFGLHSVIAVAPTAIEQAEEADAARADGSELPLLGVPILVKDIIDTKDMPTTGGSLVFDGYQPTEDAWQVKKLREAGAIILGKSNLAEFANDGHYSPSAYGQVWNAYDPSRSPIGSSGGTSVAVASSFAAAGFGTQTGDSLWGPSGAASLFSLRGTDGMQSSAGTMPLTIIQDYVGFISQSTEDLALLLEATAVDNPDDVLDDVANGHRPDDWTEYFSPDVLDGKVIGVPEGAFDDPFGTTVVSDALRAQFSVFEDLGATVIEIPEGPDAGPREFGGDTNYEGWAQWIEAHPDNPYTSPEEITRSPLRIPTRINTSEYTGAGRMTDEDQRAFEQWRADWRADLGDWMDDHGVDAVLYAAELSDIHLNDSIIPSFGRINPESSYAGVPTAIFPAGVNAHGNPIGFQLQGKEFQDAELLGMAYAFDQATDGRVLPEITPALAHDADAPAQVVDPLPALPQAVAERPAFVLDTTATVATKAKGRAPAKVTFAVDCTGAGACSGRLEAAYDGETFGARSLRVTDSGKSVSFSLPDAAAAAWTAGETVTFDVTLSGKKTTVAPTDAVEVVAAPPGPT0006115_22DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_2,PGPT0006115-EC_3_5_1_4|amiE-K01426NANA
AK018_062931125araR_3COG1609Arabinose metabolism transcriptional repressorGTGACCCAGGACACCGCACGGGCCCCGCTGCCCGCCGAGCGCGACGCCCACCTGCTCGGGGTGCTCGAGCGCGACGGCGTCGTGCGCGTCGCCGACCTGACCGCCGAGCTCGGGGTCACCGCCGTGACGGTGCGCCGCGACATCGCGCGCCTGGAGCGCGAGGGCCGGCTGGCCCGGGTGCACGGCGGCGCCGTCGCCGTGCGGGCGGAGCGGACGGCGGACCGCCGCGAGGACACCCCCGCCGAGACCCCGGACGCCGAGCCGCGGACCACCGGTTCCATCGGCGTGCTGGTGCCGTCCCTGGACTACTACTGGCCCGAGGTCGTGCGCGGCATGGAGGCCGAGGCCCGGCGGCACGGACTGCGGATCGTCCTGCGCGGGTCCTCCTACGACACGACGGACGAACGCCCGGCGCTGCGACGCCTGGTCGAGTCCGAGGAGGTCCGGGGCCTCGTCTGCGCGCCGCGGATGGACGGCCGCACCGCCCCCGACGTCGTCGAGTGGCTGGCCGCCTCCGGGGTGCCGCACGTGCTCGTCGAGCGCGAGGCGGCGCGCGGCCCGCACCGCGCGGCGCTCGAGTCCGTCGTCTCCGACCACGCGCTCGGGGCGCTCATGGCCGTGCACCACCTGGCCGATCTCGGGCACCGACGCGTCGGTCTGGTGCTGTCCCGCGAGTCGCCGACGTCGCGCAAGATCGCCGCCGGGTGGCGGGCCGCCTGCCACGAGCTGGGGCTGACGAGCGCGGAGCACTTCGAGCGGCTCGCCCCGGACCGCAAGCGCCCCGAGTTCGCCGGCGTGGTGGACGACGTCGTCAGCACGGCGCTCGGCTCCGGCACCACGGGACTGCTGGTGCACTCGGACCCCGAGGCCTCCGCCATCGCGCAGCGCGCCATGGACCGCGGGCTGTCCGTCCCCGGCGACCTGTCGGTCGTCGCCTACGACGACGAGGTGGCGAGCCTGTTCAGCCCCGCCATGACCGCGGTGCACCCCCCGCGGGACGCCGTCGGGCACGCCGCCGTGGACCTGCTGGTCAAGCGGCTCTCCGACCCGTCCCGGCCCGTGCACCGCGAGGCGATCAGCCCGCGGCTCATGGTGCGCGAGTCCACCGGCCCGGTGCCGCGGTAGMTQDTARAPLPAERDAHLLGVLERDGVVRVADLTAELGVTAVTVRRDIARLEREGRLARVHGGAVAVRAERTADRREDTPAETPDAEPRTTGSIGVLVPSLDYYWPEVVRGMEAEARRHGLRIVLRGSSYDTTDERPALRRLVESEEVRGLVCAPRMDGRTAPDVVEWLAASGVPHVLVEREAARGPHRAALESVVSDHALGALMAVHHLADLGHRRVGLVLSRESPTSRKIAAGWRAACHELGLTSAEHFERLAPDRKRPEFAGVVDDVVSTALGSGTTGLLVHSDPEASAIAQRAMDRGLSVPGDLSVVAYDDEVASLFSPAMTAVHPPRDAVGHAAVDLLVKRLSDPSRPVHREAISPRLMVRESTGPVPRPGPT0017992_1405DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_062941962hypothetical proteinATGGCTACCGCAGAACGCTTCACCGGGCCCCTGGCCGCGGCCGTCGGCGCCGACGAGGCCCACCACACCGCGATCCGGGAGCTGCTGCGCTCCCCCGAGGCCGCGCTCCCGCTCGCCGCGGCCACCGACCGCGGCATGTGGGAACCCGGCACCGGTGCCGTGCACCGCGCGTCCGCCGCGGCCGTCGTCGACCGTGCTCGCTCCGACCTCGGCACCCCCTGGCCGCAGCCGCTGGCCAGCACCGCCGTCCGGGTGCACCGCGACGGCGACCGCGACACCCACGAACAGCTCGTCTTCACCCGCCAGCGCCGGCTGTCGCGGGCCGTGGTCGCCGCCGCCGTGACCGGCGACGACGTCTGGACCGACGAGGTCGCCGACGGCCTGTGGATGCTGTGCGAGCAGAGCTCGTGGTGCTGGCCCGCCCACGACGACACCCGGGCCGTCCACGGCGCCGTGCTGCCCACCGTCACCGACCCGTTCCTCGACCTCGGGGCCGGTGAGGTCGTCGGCCAGCTCGCCTGGACCGACCACCTGCTCGGCGCGGCCCTCGACGCCCGCTACCCCGGCCTGCGCACCCGCCTGCGCCACGAGGCCCGCACCCGCGTGGTCGAGCCGTTCCTGCGCCGTCGCGACTGGCACTGGCTCGGCCTGGACGGGCACGTGCACAACTGGAACCCGTGGATCCACGGCAACGTGCTGCTCGCCGCCCTGCGCCTCCTCGACGGCCCCGACGACGCCGCCGACCGCGCCGTCGTCGTCGACCTGTGCCTGCAGGGCATCGACCGGTACGTCGCCTCCCTGCCCGCCGACGGCGCCATCGACGAGGGCTACGGCTACTGGTGGAACGGCGCGTGCCGCACGCTGGAGGCGCTCGACGTGCTCCGGCACGCCACCGGCGGCGCGCTCGACGCCCTCGACCCCGCCGTCGTGCCGCCCGCCCTGCGCGAGACCGTCGCGTTCCCGCACCGCATGCAGCTCGGCGGGTCCTGGTACCTGTCCGTCGCGGACTCCCAGGCGCGACCCACCGACGTCCACCCCTGGCACGCGCTGCACCGCGCCGCCCGCGCCGTCGGGGACGATGCCGCCGCCGCCTACGCCGCAGCCCAGGTGGGTCCCCGCGACCCCGTCGCCGACGCCGGGGCCGGACTCGGGCGGCTGTTGCGCGGCCTGACCGACACCGCCTGGCACGACGCCGTCGCCGCCGGGGCGGACCCGCCCCTGCCCCGCCGCACCTGGTGGGGGTCCACCCAGGTGCTGCTGGTCCGCGAGCGCCCCGGCACCCCCGACGGGCTGGCGCTCGCCACCAAGGGCGGCCACAACGGCGAGGCGCACAACCACAACGACGTCGGCTCCGTCGTCGTCGCGTCCGACGGCGTCCCGGTCGTGGTGGACGCCGGCCGCCCCACGTACACCGCGCAGACGTTCGGGCCCGACCGCTACGACATCTGGACGATGCAGTCCTCCTGGCACTCGGTGCCCGAGGTGGCGGGCACCGCCCAGGGTGTCGGCTCCGCGTTCGCGGCCCGCGACGTCGCGCTCCTGACCGACGGCGGCGTCGAGGGACTCTCCCTCGACCTCGCCGGCGCCTACCCCGTGGCGGGGCTCGCGTCCTGGCGGCGCAGCACCCGCCTGGAGCGGTCCGACGGCGCCGCGCGGGTCGTGGTGGCCGACTCCTGGGACCTCGCCCCGGACGCGGGCGACGGACCGACGACCGTGCGGTTCCTGCTCGCCGGGGACGTCACGCTCACCCCGGGACGCGCCGTCGTCCGGCCCCTCGAGGACGCGGCGCCCGTGGAGCTGACGTGGCCCGCCGAGATACCCGCCGCGCTCGTGGACCGGCCGCTGGACGACCCCCTGCTCCGCGACGTCTGGGGCGACCGGCTCACCCGGCTCGACCTCGACGTCACCGACCGACACGACCTGCGCACGGTCGTGGCCCTGACGCCCCGGGAGGCCTCGTGAMATAERFTGPLAAAVGADEAHHTAIRELLRSPEAALPLAAATDRGMWEPGTGAVHRASAAAVVDRARSDLGTPWPQPLASTAVRVHRDGDRDTHEQLVFTRQRRLSRAVVAAAVTGDDVWTDEVADGLWMLCEQSSWCWPAHDDTRAVHGAVLPTVTDPFLDLGAGEVVGQLAWTDHLLGAALDARYPGLRTRLRHEARTRVVEPFLRRRDWHWLGLDGHVHNWNPWIHGNVLLAALRLLDGPDDAADRAVVVDLCLQGIDRYVASLPADGAIDEGYGYWWNGACRTLEALDVLRHATGGALDALDPAVVPPALRETVAFPHRMQLGGSWYLSVADSQARPTDVHPWHALHRAARAVGDDAAAAYAAAQVGPRDPVADAGAGLGRLLRGLTDTAWHDAVAAGADPPLPRRTWWGSTQVLLVRERPGTPDGLALATKGGHNGEAHNHNDVGSVVVASDGVPVVVDAGRPTYTAQTFGPDRYDIWTMQSSWHSVPEVAGTAQGVGSAFAARDVALLTDGGVEGLSLDLAGAYPVAGLASWRRSTRLERSDGAARVVVADSWDLAPDAGDGPTTVRFLLAGDVTLTPGRAVVRPLEDAAPVELTWPAEIPAALVDRPLDDPLLRDVWGDRLTRLDLDVTDRHDLRTVVALTPREASNANANANANA
AK018_062951917hypothetical proteinATGCTCGAGTCGACGACGCTCGCCGCAGGGTCCGCCGCCGCGGACGCCTGGGACCGGGACCGGTGGGCCGCCCACGCGGACCGGATGCTCGCGGCCGTCGTCCCGTTCACCTCTCCCGGCGGCTCGCTGGTCACCCTGCCCGGTGCCGAGGGCGGCTACGGCCGGACGATCGACGGCCTCGAGGGCTTCGCCCGCACCTTCCTGCTCGGCGGCTTCCGCCTCGCGGGGGAGCGAGGCGCGGACCCCCACGGGTACGCCGACCGGTTCGCCGCCGGCCTGGACGCCGGCACCGACCCGCACCACCCGGAGCGCTGGCAGCGCCTGTCCGAGCACGCCCAGGCCAAGGTCGAGGCCGCCTCCATCGCGCTGGTGCTCGACATGACCCGCCCCTGGATCTGGGACCGCCTCGACGCCCGCGTGCAGGAGCAGGTCGTCGACTACCTCGCCGAGGCCGTCGGCGACGACACCTACCCCCGCATCAACTGGGTCTGGTTCCGCCTCGTGGTGCAGACGTTCCTGCGCGGCGTCGGCGGGCCGCACTCCGTGGCCGAGATGTGCGAGGACCTCGCCACCCACGACACCTTCGCCCGTCGCGACGGCTGGCTCGCCGACGGCGCCGAGCGGTCCTTCGACCACTACAACGGCTGGGCCCTGCACCTGTACCCGACGCTCTGGGCGCGGATGGCCGGTGCCGCCGACCTGGCCGCCGCCCGACGCGCGGACGACGTCGCCCGGCTCGACCGGTTCCTCACCGACGCCCTGGCGCTGGTCGGCGGGGACGGCTCCCCGCTGGTCCAGGGCCGGTCGCTCGCCTACCGCTTCGCCGCCGCCGCGCCGTTCTGGGTCGGCGCGATCGCCGAGGTCCCCTCGCACGCGCCGGGCCTGCTGCGCCGTGCCGCCTCCGCCGTCGTCGGCCACTTCGCCGACCACGGCGCCCCGGACGACGACGGGCTGCTCACGCTGGGCTGGCACCACGCCTGGCCCCGGATCGCCCAGGCCTACTCCGGTCCCGGCTCGCCGTACTGGGCGAGCAAGGGGATGCTCGGCCTCGCGCTGCCCGCCGACCACCCCGCCTGGACGGCCCCCGCCGAGCCGCTGCCCGTCGAGTCCGGCGACGTGCTGCGCACCGTCGCCGCCCCCGGCTGGATCGTCTCGGGCACCCGCGCCGACGGGATCGTGCGGGTCGTCAACCACGGCACCGACCACGCCCTGCCCGGCGCCGACGTCGGTGACTCGCCGTTGTACGCGCGGCTCGGCTACTCGACGGCCACCAGCCCGTGGCTCGACGAGGCGAGCTGGGCCTCCCCGGCCGAGCAGTCCGTGACCCTCGTGGACGCCGCCGGACGGGCCAGCCACCGCGCCGGGTTCGAGACCCTCCGCGCACCGGACCTCGCCGCCGACGGCGGCACCCCGGTCGCCGTCGCCGCCTCCCGCGCCGCCGCGCACTGGCTCGACGTCGCCCCCGGACAGCGCGACCACGGCTCCGGACGCCACGGCACGACGGCGCCGGCCGGCACGATCTCGACCGTCTCGCTGGTCCGCGGCCCCTGGGAGGTGCGCTGCGTCCGCGTCGAGGAGGTGCCCGACGGCGCCGCCCCGGTCGCGCTGCGCGTCTCCGGCTGGCCCACGGTCGCCGGCGACGGGCTCGACTCCCGCGTCGATCCGCTGCTCGGCGACTGGCAGCCGGTCGTCACCGAACGTGCCGACGTCAGCCCGCTGGGCGACCCCGCGCGCGTGCCGGCGCTGGACACCGCGGTCGAGACCGGACGGTGGCTCGCGGCGCTGGTGACCCTGCGCGGCGACGTCCCCGACCGACCCGACCCCCCGGCGGACGACCCCGCCGCCCTCACGCTCGACGGCACCGACGCCGTCGTCCGATGGCCCGACGGCGTCACCACGACGACCCGGCTGGTCTGAMLESTTLAAGSAAADAWDRDRWAAHADRMLAAVVPFTSPGGSLVTLPGAEGGYGRTIDGLEGFARTFLLGGFRLAGERGADPHGYADRFAAGLDAGTDPHHPERWQRLSEHAQAKVEAASIALVLDMTRPWIWDRLDARVQEQVVDYLAEAVGDDTYPRINWVWFRLVVQTFLRGVGGPHSVAEMCEDLATHDTFARRDGWLADGAERSFDHYNGWALHLYPTLWARMAGAADLAAARRADDVARLDRFLTDALALVGGDGSPLVQGRSLAYRFAAAAPFWVGAIAEVPSHAPGLLRRAASAVVGHFADHGAPDDDGLLTLGWHHAWPRIAQAYSGPGSPYWASKGMLGLALPADHPAWTAPAEPLPVESGDVLRTVAAPGWIVSGTRADGIVRVVNHGTDHALPGADVGDSPLYARLGYSTATSPWLDEASWASPAEQSVTLVDAAGRASHRAGFETLRAPDLAADGGTPVAVAASRAAAHWLDVAPGQRDHGSGRHGTTAPAGTISTVSLVRGPWEVRCVRVEEVPDGAAPVALRVSGWPTVAGDGLDSRVDPLLGDWQPVVTERADVSPLGDPARVPALDTAVETGRWLAALVTLRGDVPDRPDPPADDPAALTLDGTDAVVRWPDGVTTTTRLVNANANANANA
AK018_062961326hypothetical proteinATGAAGCGCACGATCCCCACCGCGGCCGGTGCGGCCGCCGCGGTCGTCCTGGCCCTGACCGCGTGCAGCGGCGGCACCGCCGACGAGGCCGGTGGCGGCGGTGACGACACCGCGGCGCCCGCCGAGGACGAGGCCGTCACGTTGTCCCTGGCCGGGTGGAGCCTGTCGACCACGCCGGAGTTCCAGACCCTCGCGGACGCGTTCCACGAGGAGAACCCGAACGTGACCGTCGAGCTCCAGGAGTACGACGCCTCGGAGTACGACACCCAGATGACCGCCGACCTCGCGGCCGGCAGCGCCCCCGACATGTACGTGCTGAAGAACCTCAAGAACTTCTGGACGTACTACGACGGCGCACAGCTCCTCGACGTCTCGGACGTCACCGCGGAGCTCGACCCGGCCACCGGCGGCGCCGACTTCTACGAGGTCGACGGCGCGAGCTGGGCGGTGCCCTACCGCCAGGACTCCTGGTTCCTCTACTACAACCAGGACCTGTTCGACGAGGCCGGCGTGGACGCCCCGGACGGCTCGTGGACCTGGGACGACTACGTCACCGCGGCGCAGGACGTCACCGAGGGGCTCGGGGACAGCGACGCGCTCGGCGCCTACCAGCACTCCTGGCAGTCCGTGGTTCAGGGCTTCGCCCTGGCCCAGAGTGAGGGCGCCGAGCTCACCAGCGGCGACTTCGGCTACCTCGAGCCGTTCTACGACCGTGCCGTCGAGCTGCAGGACAGCGACGCCCAGGTCGACTTCGGCACCGTGACCACGAACCAGCTCACCTACCAGGCGCAGTTCGGCACCCAGCAGGCCGCCATGATGCCGATGGGCTCCTGGTACGTGGCCACGCTGCTGGCGCAGCAGGAGTCCGGCGACGCCGACGAGTTCACCTGGGGCATGGCCCCGATCCCGCAGGTCGACTCCTCGACCACCGGCATGGACGCCACCCCGGTGACGTTCGGCGACCCGACCGGTCTGGGCATCAACCCGGCCATCGACGAGGCCAAGGTCGACGCCGCGAAGGAGTTCCTGGCCTTCGCCGCCGGTGAGGGCGGCGCGGACGCGCTCGCCGCGATCGGCATCACCCCGGCCCTGCTGAGCGACGGCGTCGTGGACACCTACTTCGGCCTCGACGGGGTCCCGGGCGACGAGCTGTCGCAGTTCGCGTTCGCCACGCACGACACCCGCCCGGAGAACCCGGTCGACCCGGACACCGCCGCCCTGCAGAACATCCTGGGCGACACCCACTCGGAGATCATGTCCGAGTCGTCGTCCGTGGCCGACGCGATCGCCGGCGCCGAGGACCGCGCCGCCTCCGAGGTCGGCTGAMKRTIPTAAGAAAAVVLALTACSGGTADEAGGGGDDTAAPAEDEAVTLSLAGWSLSTTPEFQTLADAFHEENPNVTVELQEYDASEYDTQMTADLAAGSAPDMYVLKNLKNFWTYYDGAQLLDVSDVTAELDPATGGADFYEVDGASWAVPYRQDSWFLYYNQDLFDEAGVDAPDGSWTWDDYVTAAQDVTEGLGDSDALGAYQHSWQSVVQGFALAQSEGAELTSGDFGYLEPFYDRAVELQDSDAQVDFGTVTTNQLTYQAQFGTQQAAMMPMGSWYVATLLAQQESGDADEFTWGMAPIPQVDSSTTGMDATPVTFGDPTGLGINPAIDEAKVDAAKEFLAFAAGEGGADALAAIGITPALLSDGVVDTYFGLDGVPGDELSQFAFATHDTRPENPVDPDTAALQNILGDTHSEIMSESSSVADAIAGAEDRAASEVGPGPT0016545_5285DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_06297963ngcF_2COG1175Diacetylchitobiose uptake system permease protein NgcFATGGCGACGATCGCCGTCGACGACCGCAGCAGCGGGGCGTCCGGCCCGAGCCCCGCGGCCCCGCCCGGCCCCCGGCGGCGTCGGCCGGGCAGCCGGCTCAAGCTGCGCAACACCCTCATCGGGTGGAGCTTCATCCTGCCGAACTTCCTCGGCTTCGGTCTGCTGACCCTCATCCCCGTCGTCACGCTGTTCTACCTGTCGCTGACGGAGTGGAACGTGTTCGGCGGCGCCGAGTTCATCGGCCTGGACAACTACACGCGGATGATCGGCGACACCAGCTATCACACCGCGCTGTTCAACACGATCTACTACTCCGCCGTCCACATCCCCGCCACGCTGGTGGCGTCGCTGGGCCTGGCGCTGCTGCTCAACCGCAAGCTGCGCGGCGTGGCGTTCTTCCGCACGGTGGCGTTCTTCCCGTACATCACCTCGATCGTCGCCATCGCGGTCGTGTGGAACATGCTGTTCAGCCCGGAGTACGGCCCGATCAACCAGTTCCTGACGTTCCTCGGTGTGGACAACCCGCCCGGGTGGACGACGTCGGCGGACTCCTCGATGCCCGCCGTGATCATCGTCGGCGTGTGGCGCGAGATGGGCTACTACATGCTGCTGCTGCTCGCCGGTCTGCAGACCGTGCCGTGCGAGCTCTACGAGGCCGCCCGCGTCGACGGCGCCGGCGCCTGGGGCCGCTTCTGGAACGTCACGCTGCCGTGCCTGCGCCCCACGATGTTCTTCGTCACCGTGATCCTGACGATCAACAGCCTCAAGGTCTTCGACCTCATCCTCGTCATGACCGACGGCGGGCCCGGCCAGTCGACGCTGGTGCTGAGCCAGTTCATCTACTCCAAGGGCTTCGAGGAGAACCAGTTCGGGTACGCCTCCGCGGTGGCCGTGACCCTGTTCTTCATCTGCATCGCCGTGACGATCTTCCAGTTCTTCTGGAACCGCAGGAAGGACGCCTGAMATIAVDDRSSGASGPSPAAPPGPRRRRPGSRLKLRNTLIGWSFILPNFLGFGLLTLIPVVTLFYLSLTEWNVFGGAEFIGLDNYTRMIGDTSYHTALFNTIYYSAVHIPATLVASLGLALLLNRKLRGVAFFRTVAFFPYITSIVAIAVVWNMLFSPEYGPINQFLTFLGVDNPPGWTTSADSSMPAVIIVGVWREMGYYMLLLLAGLQTVPCELYEAARVDGAGAWGRFWNVTLPCLRPTMFFVTVILTINSLKVFDLILVMTDGGPGQSTLVLSQFIYSKGFEENQFGYASAVAVTLFFICIAVTIFQFFWNRRKDAPGPT0016535_3312DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_06298897araQ_12COG0395L-arabinose transport system permease protein AraQATGACCACCGTCTCCCCGACGACTCCCGTCGACGCGTCGACCTCGCCGCTGCGGCCCGCCCAGGTGCGCGCCCGGTGGAAGCGCCAGGCGTCCCGCGCCGTCGGCTACGCCGCGCTGCTCGTGGCCGCCGCCGGCATCCTGCTGCCGTTCGTGTGGATGGTCATCTCCTCGCTGAAGGAGAACAACCAGGTCTTCACCGTGCCGCTGCAGTGGATCCCGGACCCCGTCGTGTGGCAGAACTACATCGACATCTGGGCCAAGTCCGACATGGTCACCTGGATCAAGAACACGCTGATCCTGTCCGTGAGCGTGACGTTCCTGCAGGTGCTCACCGGCAGCTTCGCGGCCTACGGGTTCTCCAAGATGCGGTTCCCCGGCCGCGACGCGCTGTTCCTGCTGTACGTGGCGACCATCGCGGTGCCGTGGCAGGCGTACATGATCCCGCAGTTCGTCATGCTCTCGAACATCGGGCTGTCGAACACCCTGTGGTCCATCCTGGCGCTGCAGACCTTCAGCGCGTTCGGCGTGTTCCTCATGAAGCAGTACTACGAGTCGATCCCGGAGTCGCTGTCCGAGGCGGCCCGGATCGACGGCATGAGCGAGTACGGCATCTGGCGGCGCATCATCCTGCCGCTGTCCACGCCGGCGATCGCCAGCCTGACGCTGCTGACCTTCGTCAACACCTGGAACGACTACCTCGGGCCGCTGATCTACCTGCGCAGCCCGGAGCTGTGGACGCTGCAGCTCGGTCTGCAGACCTTCGTCGGGCAGTACAACGCCGAGCACGCGCTCATCATGGCCGGCTCGGTGATCTCGGTGCTGCCGATCGCCGTCATCTTCCTGCTCGGCCAGAAGTTCTTCGTCCGCGGCATCGCCACCACGGGGGTCAAGGGATGAMTTVSPTTPVDASTSPLRPAQVRARWKRQASRAVGYAALLVAAAGILLPFVWMVISSLKENNQVFTVPLQWIPDPVVWQNYIDIWAKSDMVTWIKNTLILSVSVTFLQVLTGSFAAYGFSKMRFPGRDALFLLYVATIAVPWQAYMIPQFVMLSNIGLSNTLWSILALQTFSAFGVFLMKQYYESIPESLSEAARIDGMSEYGIWRRIILPLSTPAIASLTLLTFVNTWNDYLGPLIYLRSPELWTLQLGLQTFVGQYNAEHALIMAGSVISVLPIAVIFLLGQKFFVRGIATTGVKGPGPT0016540_2592DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_06299726hypothetical proteinATGACCGCGAGCACCCGACACCAGGGCCGCCGCCGGCTCGTCAGCCAGGAGATGTACGAGACGGTGTTCGGCACCGTGTACATCGGGCTGGCCATCAACGTCCTGCTCGTGGTGGCCACGCTGCCGCTGCTCGTGGTGCTGCTGACCACCGACCCGACCGTGTCGTGGCCGGCGCTCGCGCTGCTCGCCCCGCTGCTGGCCCCGGCCCTGGTCGCCGCCTTCGCGGTGTTCACGGCGTTCTCCACCGACGGCTCGACGACCGCGGTGCGGACCTTCTGGCGGGCCTACCGCCGGCACGCGCGCCGGGCGCTGGCGATCGGCGCGCTGGCGAGCGCCGCCGTCGTCGTCCTGGCCGTGGACGTCGTCGCCGTCTGGGGCGCTCGGATCGGCGCCGCCGCGATCCCGGTGTTCGGCACCCTGCTGGTGCTGGCCGTGCTCACCGCCCTGGTCGCGCTCGCCGCGACCCCGGTGCTGCCCGGCGTGCGGCTGCGCGACCTGCTGCGCACCAGCCTCTACCTCGCGGTGCGCCGCTGGTACCTCAGCGTCACCGCGCTGGCGGTACTCGGCCTGCTCGCCGGCGTGGTGGTGACCAGCCCCGCCATCGGGCTCGGGTTCGCCACCGCACCCCTGCTGTTCGTCGTCTGGGGCGGCTGCCGCGTCGCGCTGCGGTCCGTCGTGCCCGACGGCGCCACCCCGGCCGCGCACGGCACCGCCGTCCCCTCCTGAMTASTRHQGRRRLVSQEMYETVFGTVYIGLAINVLLVVATLPLLVVLLTTDPTVSWPALALLAPLLAPALVAAFAVFTAFSTDGSTTAVRTFWRAYRRHARRALAIGALASAAVVVLAVDVVAVWGARIGAAAIPVFGTLLVLAVLTALVALAATPVLPGVRLRDLLRTSLYLAVRRWYLSVTALAVLGLLAGVVVTSPAIGLGFATAPLLFVVWGGCRVALRSVVPDGATPAAHGTAVPSNANANANANA
AK018_063001293uglUnsaturated chondroitin disaccharide hydrolaseATGTCCTCCACCGACGTGCGCGACTCCGCGCCGGGCGCCGACCCGCGACCTGCCGACCACCCCGGGGCGCTCGCGGCCGCCGTCGACGCCGCCGTGGCCACCGTGCGCCGCAACGCCGCGGCGTTCGGCGCGCTGTACCCCGACTCCACGACCCGCGACGACCGCTACCCGCTGCGCCCGGCCACCGACCGGTTCGCCGAGGGCGCCAACCGCGACTGGACCACCAGCTTCTGGCCCGGCATGCAGTGGCGTGCCGTCGAGCTCACCGGTGACGCCGACCTGCGGACCGCCGCCCTGGCGCACGCCGCCGACTTCGCCCGCCGCGTGCACGCCGGGGAGGACCTCGACACGCACGACCTCGGGTTCCTCTACACGCTGTCCTGCGTCGAGGCGTGGCGGCTGGCGGGCGACGAGGCCGCCCGGGACGCGGCGCTCGCGGCGGCGGACCACCTCATGACGCGGTTCCTGCCCTCGGCGGGGATCATCCAGGCGTGGGGCGACCTGTCCGACCTGGCCCAGCGCGGCCGGACCATCGTCGACAGCCTGATGAACATGCCGCTGCTGACCTGGGCCACGGAGATCACCGGCGACCAGCGGTATGCCGACGTCGTGGCCCGGCACGTGGTGCAGGTGCGCACCCACCTGCTGCGCGACGACGACTCGACCTTCCACACCTTCTACTGGGACCCCGAGACCGGTGAGCCGCTGCGCGGCGGCACCGAGCAGGGTGCCGGCGACGAATCCTGCTGGGCGCGCGGGCAGGCGTGGGGCATCTTCGGCTTCGCCCTGCACCACCGCACCTCGGGCGACCCGGAGTCGCTGCGGGCCTCGGAGCGGTGCGCCGAGTACTTCCTGGCGCACCTGCCCGCCGACGGCGTGCCGTTCTGGGACCTGGTGTACTCCGACGGAGCGGACGCGCCGCGCGACTCGTCCTCCGGGGCGATCGCGGCCTGCGGCCTGCTGGAGCTCGCCTCGGTGTCGCCCGACGCCGACCGCGCGGCCCGGTACGCCGCCGCCGCGCGGCGGATGGTCGCCGACCTCATCGCCGGGTACACCCCGGCCGCGCCCGAGGCCGCCGACGCGCTGCTGCTGCACTCGGTCTACGACGCCCCGAAGAACAAGGGTGTGGACGAGGGCTGCCTGTGGGGCGACTACTACTACCTGGAGGCGCTGACCCGCCTGACGCTGCCCGGCTGGGTCTCGCCGTGGTGGCCGGCCGCCACGGCCGTGCCCACCCGCCCCACGCCGACCGCAGGCACGACCGCCACCGACACCGACGGAGGGACCGCATGAMSSTDVRDSAPGADPRPADHPGALAAAVDAAVATVRRNAAAFGALYPDSTTRDDRYPLRPATDRFAEGANRDWTTSFWPGMQWRAVELTGDADLRTAALAHAADFARRVHAGEDLDTHDLGFLYTLSCVEAWRLAGDEAARDAALAAADHLMTRFLPSAGIIQAWGDLSDLAQRGRTIVDSLMNMPLLTWATEITGDQRYADVVARHVVQVRTHLLRDDDSTFHTFYWDPETGEPLRGGTEQGAGDESCWARGQAWGIFGFALHHRTSGDPESLRASERCAEYFLAHLPADGVPFWDLVYSDGADAPRDSSSGAIAACGLLELASVSPDADRAARYAAAARRMVADLIAGYTPAAPEAADALLLHSVYDAPKNKGVDEGCLWGDYYYLEALTRLTLPGWVSPWWPAATAVPTRPTPTAGTTATDTDGGTAPGPT0019355_235DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_GLYCOSIDE_UTILIZATIONPLANT_DERIVED_GLYCOSIDE-GLYCOSIDASES|GLYCOSYLHYDROLASES,PGPT0019355-ugl|EC_3_2_1_180-K18581NANA
AK018_06301765kduD2-dehydro-3-deoxy-D-gluconate 5-dehydrogenaseATGATCCTCGACCAGTTCCGGCTCGACGGAAAGGTCGCGCTCGTGACGGGCACGAGCCGCGGCCTCGGCCAGGGCGCCGCGGTGGCGCTCGCCGAGGCGGGGGCCGACGTCGCGCTCCTGGACCGCAGCGAGCCCACCGAGACGATCTCCCGCATCAAGGCCCTGGGCCGCCGTGTGCACAGCGTGCAGCGGGACCTCGCCACGGCGACGGCGGAGGAGCTCGACGCCGCCGTCGCGGAGGTCGAGGACGTGCTCGGCCCGGTCGACGTGCTCGTCAACAACGCCGGCACCATCCGTCGGGCGCCGGCCGCCGAGCACCCGGCCGAGGACTGGGACACGGTGCTGGCCGTCAACCTCGACGCCGTGTTCCACCTGTCCCGCGCCGTCGGGCGGGGCATGCTCGAGCGCGGGTCGGGGAGCATCGTCAACGTCGCCTCGATGCTGTCCTTCCAGGGCGGCATCCTGGTGCCCGGCTACGCGGCCTCCAAGCACGCCGTCGTCGGCCTGACCAAGGCGCTCGCCAACGAGTGGGCCGGCCGCGGCGTCAACGTCAACGCCGTCGCCCCCGGCTACATGGCCACCGACAACACCGCCCCCATCCGGGCGGACGCCGAGCGGGAGCAGTCCATCTCGGCGCGCATCCCCGCCGGACGGTGGGGCACCCCGGAGGACCTCGCCGGGATCTTCGTCTACCTCGCCTCGCCCGCCTCCGCCTACGTGCACGGTGCCGTCGTCCCCGTCGACGGCGGCTGGCTCGTGCGCTGAMILDQFRLDGKVALVTGTSRGLGQGAAVALAEAGADVALLDRSEPTETISRIKALGRRVHSVQRDLATATAEELDAAVAEVEDVLGPVDVLVNNAGTIRRAPAAEHPAEDWDTVLAVNLDAVFHLSRAVGRGMLERGSGSIVNVASMLSFQGGILVPGYAASKHAVVGLTKALANEWAGRGVNVNAVAPGYMATDNTAPIRADAEREQSISARIPAGRWGTPEDLAGIFVYLASPASAYVHGAVVPVDGGWLVRPGPT0018065_635DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_OLIGOGALACTURONIDE_DEGRADATION,PGPT0018065-kduD-K00065NANA
AK018_06302819kduICOG37174-deoxy-L-threo-5-hexosulose-uronate ketol-isomeraseATGGAACAGCGTTACGCCACGAACCCGGAGCAGATCCCCGGCCTGACGACGCAGGAGCTGCGCGACAAGTTCCTCGTCGAGGACCTCTTCGTGCCCGGCGAGGTCCGGACCGTCTACACCCACCACGACCGCATCGTCCTGGGCGGGGCCCTGCCCGGCGCCGAGCCGGTCGCCCTGCCGAACCCGGAGGAGCTGCGTGCCGAGTACTTCCTGCAGCGCCGCGAGGTGGGGATCGTCAACGTCGGCTCGCCGGGCACGGTCGTGGCCGACGGCGAGACCTACGAGCTGCCGACCCGCGCCCTGCTGTACATCGGCAGCGGCACCCAGGACGTGTCGTTCGCGGGGGAGGGCGCGGCGTTCTACCTGTTCTCCGCCCCGGCTCACACCTCGTACCCGACCGTGCTGACGCTGCCCGGCGAGGGCAACACGCTCGAGCTCGGCGACCAGGTGACGTCGAACCGGCGCTCGCTGGAGCAGGTCGTGCACGCCAAGGGCGTGCAGTCCTGCCAGGTCGTCATGGGCGTCACGCGGCTGCACGAGGGTTCGATGTGGAACACGATGCCGGCGCACACCCACGACCGGCGCACCGAGTGCTACCTGTACTTCGACCTGCCCGAGGACGCCCGGGTGCTCCACCTGTGCGGCGAGCCGACCGAGACGCGGCACCTGACGGTGGCCGACCGCCAGGCGATCATCTCGCCGTCGTGGTCGGTGCACTCCGGGGTCGGCACGGCCAACTACTCGTTCGTCTGGGCGATGGCGGGGGAGAACCAGGACTTCACCGACATGGACGCGGTGCCGCCGACCGAGATCCGCTGAMEQRYATNPEQIPGLTTQELRDKFLVEDLFVPGEVRTVYTHHDRIVLGGALPGAEPVALPNPEELRAEYFLQRREVGIVNVGSPGTVVADGETYELPTRALLYIGSGTQDVSFAGEGAAFYLFSAPAHTSYPTVLTLPGEGNTLELGDQVTSNRRSLEQVVHAKGVQSCQVVMGVTRLHEGSMWNTMPAHTHDRRTECYLYFDLPEDARVLHLCGEPTETRHLTVADRQAIISPSWSVHSGVGTANYSFVWAMAGENQDFTDMDAVPPTEIRPGPT0018245_66DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_OLIGOGALACTURONIDE_DEGRADATION,PGPT0018245-kduI-K01815NANA
AK018_06303642hypothetical proteinGTGACTCTCCCGCTCCCCGCCACCGCGGTCGCCACGGCGCTGTGCTGCGCCCTCCTCGCCGCCCTGCTCACGCCCTGGGCACGCCGGTTCGTCGTCAGCGAGTCCCGGCTGCTCCGCGGATGGGTCACGGGCCCGCTCGCGGGCCTCGGAGGCGTCGGCGCCGCGCTCGTCGCGACGTCCTGGGCGGAGCTGGTCGCCGTCGCCGTCGTGGCGGTCGCAGCCGGTCTGCTGATCCCGATCGACCTGGCGACCTACCGCCTGCCGGACCTCGTCGTCGGCTCGGCCGCTCTCGGGCTCCTCGCAGCCCTCGTCGTGGCGGCGGGCGTCGACGACGCCTGGCCGCGGCTGCTCACGGCGGCGCTCGCCGGCGTCGCCCTGTTCGCCGTCTACCTCGTGCTGGCCATGATCTCCCCCAGCAGCCTCGGTTTCGGGGACGTCAAGCTCGCCGGGCTGCTGGGCCTCCTGCTCGGATGGTGGGGGTGGCAGGCCGTCGCATACGGGACGCTGGCGGCGTTCGTCGTCTTCGCCGTCGGCGCGCTGGTGCTCCTGGCCGCGCGTCGCACCTCGCTGCGCGACGACCTGCCCTTCGGGCCCGCCATGATCCTCGGCGCGGCCCTCGGCCTCGCCGCGGTGGCCGCCTGAMTLPLPATAVATALCCALLAALLTPWARRFVVSESRLLRGWVTGPLAGLGGVGAALVATSWAELVAVAVVAVAAGLLIPIDLATYRLPDLVVGSAALGLLAALVVAAGVDDAWPRLLTAALAGVALFAVYLVLAMISPSSLGFGDVKLAGLLGLLLGWWGWQAVAYGTLAAFVVFAVGALVLLAARRTSLRDDLPFGPAMILGAALGLAAVAAPGPT0015925_2543DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654NANA
AK018_06304222hypothetical proteinATGCACCTCCTGAACCTCATCTCTGACCGTTTCATGACCGTGGCGGCGCGCCGCAGCGACCGTGGTGCCACCGCCGTCGAGTACGGCCTGCTGGTCGGCCTGATCGCCGTGGCGATCATCATCGCCGTGACGGCGCTCGGCGACAGCCTCGATACGATGTTCGACGCCATCGGCACCGAGCTCGGCGACATCACCACCGACATCGGCACCGCCGGCGACTGAMHLLNLISDRFMTVAARRSDRGATAVEYGLLVGLIAVAIIIAVTALGDSLDTMFDAIGTELGDITTDIGTAGDPGPT0015910_276DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0015910-flp|pilA-K02651NANA
AK018_06305408hypothetical proteinATGACGATCCACCGCACCTCGCGCGCTGCCGACCGCGGCGCCGCCGCTGTCGAGTTCGCCTTGGTCGCGCCGATCCTGCTCGCCCTCATCCTGGGGGTCATCAACTTCGGCTACGTGTACCACGTCCAAACTGTGCTGGGGAACGCCGCACGGGACGGGGTGCGCGTCCTGGCGCTCTCTGACGACGCCGACCCCGCCGGCCAGGCCATCGCCACGGCAATCGACTCCGCCGGGCCGACTGTGTCGATCGACTCCGGGAACGTCACCGCAACGCCGGCCACGGGCTGCGACACGGCCGGGGCGCCGGAGAATGCCACCGTGTCCATCACCGTCAACGACGTCTCGCTGCTCGGCGGCCTGTTCGCCGTCGACCTCACCGGATCGGGGACCATGCGATGCAACGGCTGAMTIHRTSRAADRGAAAVEFALVAPILLALILGVINFGYVYHVQTVLGNAARDGVRVLALSDDADPAGQAIATAIDSAGPTVSIDSGNVTATPATGCDTAGAPENATVSITVNDVSLLGGLFAVDLTGSGTMRCNGNANANANANA
AK018_063061035hypothetical proteinATGCAACGGCTGACCGACCGCCTCCGCCGGCTCCGCGCCACCGCCGACCGCGGAGCCTCCGCTGTCATGGTGGGCCTGCTGGCCATACCGCTGTTCGCCGTAGCCGCGCTCGCCGTCGACATCGCCGCGATGCACGCCGACAGGCAGATCCTGCAGACCGGGGCCGACGCCGCCGCGCTGGCCGTCGCCCAGGACTGCGCCCGCGACGAGTGCACCGGCACCGACGCGACGGCCGAGGAGCTGGCCGACGCCAACACCCCGTTCGGCGGGGAGGCCACGGCGACCATCACGACCCTCGACGAGGCGGCCGGCGTGGTGACCGTGCGGACCGACTCGTCGCGGAACCACTTCTTCGCCCCCGTGATCGGGCAGGACGAGGGCGACATCGCAGCGGTCGCGACCGCCCGGTGGGGCTACCCCACCGCCGGATCCGGGATGCTCCCGTACATCCTGTCGTACTGCGAGATCCTGCATCAGGCCGGCGCCACCGAGGTCCGGGAGGATGGCGAGCTCGTCGGCATCGACTTCCCCGAGGACGCCGACCCGGTGACCATGCTGTTCACGAAGAACAGCGACTCGGACTGCACCGGACCGTCAGGCAACGCTCTCCCCGGCGGGTTCGGCTGGCTCGAGGCCACCGCCGATTGCACCGGGCCGGTCGCGGAGGTCGGCGACTGGGTGCCGTCCGATCCCGGCAAGAGCGAACCGTCGAGCTGCAGTGCCGCCGACTTCGCGGACATGATCGGCGAGACGATCCTCATTCCCATCTTCGACGACGAGCGCGGCTCCGGGGCCAACGGCGAGTACCAGCTGTTCGGCTGGGCCGCGTTCACCCTCGAGGAGTACTCCTTCGTGAAGAACTCCAGCCCCGGCACGACCGCCGACCTGTGCGACGACGGCAAGCCGGGCAAGGACGCCAACTGTCTGCGCGGCACGTTCGAGCGCTTCGTCGACGTCACCGGCGGGTTCGAGCTCGGCACCGACGGACCCCAGCTCGGCGCCGCCGTCGTCGAGCTCACCCTGACGGAAGACTAGMQRLTDRLRRLRATADRGASAVMVGLLAIPLFAVAALAVDIAAMHADRQILQTGADAAALAVAQDCARDECTGTDATAEELADANTPFGGEATATITTLDEAAGVVTVRTDSSRNHFFAPVIGQDEGDIAAVATARWGYPTAGSGMLPYILSYCEILHQAGATEVREDGELVGIDFPEDADPVTMLFTKNSDSDCTGPSGNALPGGFGWLEATADCTGPVAEVGDWVPSDPGKSEPSSCSAADFADMIGETILIPIFDDERGSGANGEYQLFGWAAFTLEEYSFVKNSSPGTTADLCDDGKPGKDANCLRGTFERFVDVTGGFELGTDGPQLGAAVVELTLTEDNANANANANA
AK018_06307759hypothetical proteinGTGAATCGTCGCATCATCGCGGCCGTCGTGGCCGCACTCCTGGCGCTCGCCGGGGGCGTGCTCACCTACACCTACGCCGCCGGCGCCGACAGCCGGGCCATGGCGGACCTGGAGCCCACTGCGGTGCTGACCGTCGTGGACCCCGTCTCCGAGGGCACTCCGGCGGACGCGCTGACGCTCGACGAGGACGTCGTGAGCACGGAGGTGCCGGCCAGGACGGTCGTCCCGGGGGCGGTGAGCGACCTGGCCGACCTCGAGGGGTTGATCGCCACGGCCGACCTGCTTCCCGGCGAGCAGGTCGTGGCCGAACGGTTCGTCGACCCCGAGGACCTCGACGGACCCGTCGAGGTGCCGGAGGGCTTCCACACGCTGAGCCTCCAGCTCACCACGGAGCGGGTCGTCGGCGGGGCCGTGCAGCCCGGCGACACGGTCGGCGTCTTCGTCTCGATGGAGAGCCCGGAGGACGGCGACGACGGGAATGAGGACGGTGAGGACGCGACGTCGTCGACGCACCTCGTCTTCCACAAGGTGCTTGTCACCGACGTCCGCGGCGGCATCCAGCAGCAGCGCACCGAGGACGGCGAGGAGACCGAGACCGCCCCGGAGGACGCCATCATGGTCACCATCGCGCTGTCCCCGCCGGACGCCGAGAAGTTCGTCTTCTCGGCGGAGTACGCCAGCATCTGGCTCTCCCTCGAACCCGAGGAGGCGAGGGAGGGACAGACACGGGTGGTCGACCCGGAGGTGATCTTCGAGTGAMNRRIIAAVVAALLALAGGVLTYTYAAGADSRAMADLEPTAVLTVVDPVSEGTPADALTLDEDVVSTEVPARTVVPGAVSDLADLEGLIATADLLPGEQVVAERFVDPEDLDGPVEVPEGFHTLSLQLTTERVVGGAVQPGDTVGVFVSMESPEDGDDGNEDGEDATSSTHLVFHKVLVTDVRGGIQQQRTEDGEETETAPEDAIMVTIALSPPDAEKFVFSAEYASIWLSLEPEEAREGQTRVVDPEVIFEPGPT0016005_1778DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279NANA
AK018_063081218Iron-sulfur cluster carrier proteinGTGAACAACGTCCTGCTCGCCACCGACTCCCGGGCGCTCCTCGACCGCGTGCACGCCGCGGCCGACGGTGCCTGCATCGGGGTGCACGCCAGCCCGCTGCCCACCGACCCCGCCGTGTTCCTCGGCCAGGTCCGCCGCACCGAGCTGCCGGATATCGTCGTCCTCGACGCCTCCCAGGCTCGTCCGCAGGCGGTGGCCCTCGCCGGCAGCTTCGACCGGCTCTTCCCCGGCATCGGGCTCGTGCTGGTCGCCGAGCCGGACGACAGCCTCGTCATCGAGGCCCTGCGGGCGGGCGTGCGCGACGTCGTCCCCCCGGACGTGACCGTGGAGCAGATGCGTGAGGTGCTCGCCCGCGTCGGGGACGCCACGCGCGTGCGGCGCGGGGCGGGGCACTCCGGCGAGATGGCGCTCGGCGCGGCGAGCTGGGACCCGGTCGTCGACGCCACCGGCCCCAGCCGGGTCATCTCCGTCCTGTCCCCCAAGGGGGGCGTCGGCAAGACGACGGTCGCGACCAACCTCGCCGTCGGGCTGGCCGCTGCCCAGCCCGGGTCGACGGTGCTCGTCGACCTCGACCTGCAGTTCGGGGACGTCGCCACCGCCCTCGGGCTCGAACCGGAGTCGACCCTCGGGGACATCGTCACCCACGGCGGCCACCAGGACCCGATCGCGCTGAAGACGCGGCTCACCCAGCACTCGTCCGGTCTGCTCGTCGCCGGGGCGCCGAGCGACCCGGCCTCCGCCGACGTCGTCACGCCGGAGCACGTCGGGGCGCTGCTGGACCAGCTCACCGAGCTCTTCCCCTACGTCGTCATCGACACCGCCGCCGGCCTCGGGGCGCACACGCTCGCCGCCGGGGACCACACGACCGACCCGCTGCTCGTCACGAGCATGGATGTGCCGGGCGTGCGGGGCCTGCGCAAGGAGCTCGACGCCCTCAACGACCTCGGCATGATGACCGAGTCGCGCCGCATCCTGCTCAACTTCGCCGACCCGCGGGCCGGCCTGAGCCTCGGCGACGTCGAGGCGACGCTCGGGGTCCGGGTCGACCTGTCGATGCCGCACACGCGCGCCGCGGTCGTCTCGATGAACATGGGCGAACCGCTGACGACCCGCCAGCCCCGCGACGCCGCGGCCAAGGTACTGCGCAAGCTCCAGGCGACCTACCAGGGCGCCAACGCCCCGCGGGGCCGCAAGTCCGGCAAGAAGGTGAGGTCCTGAMNNVLLATDSRALLDRVHAAADGACIGVHASPLPTDPAVFLGQVRRTELPDIVVLDASQARPQAVALAGSFDRLFPGIGLVLVAEPDDSLVIEALRAGVRDVVPPDVTVEQMREVLARVGDATRVRRGAGHSGEMALGAASWDPVVDATGPSRVISVLSPKGGVGKTTVATNLAVGLAAAQPGSTVLVDLDLQFGDVATALGLEPESTLGDIVTHGGHQDPIALKTRLTQHSSGLLVAGAPSDPASADVVTPEHVGALLDQLTELFPYVVIDTAAGLGAHTLAAGDHTTDPLLVTSMDVPGVRGLRKELDALNDLGMMTESRRILLNFADPRAGLSLGDVEATLGVRVDLSMPHTRAAVVSMNMGEPLTTRQPRDAAAKVLRKLQATYQGANAPRGRKSGKKVRSPGPT0016020_995DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016020-cpaE-K02282NANA
AK018_063091512hypothetical proteinATGGATCTGGCATCCCGGCTGGCCGCCGCCAAGCGCGTCTCCGGCCAGAGGCCCGTCGACCCCGCCGGCCGTCACCGGCTCGACGAGCAGCCGCCCGCCGACGCCGAGCTGACCGTCCCGCTGCCCCCGCAGCAGGCCCCGCGGCCGGCGACCCCGGAACGTCCCGAGCGTCCCGCCGCCGAGAACGGTGCCCGGCCGACCCGTCCGGCGACCACGGACGAGCGCGACCCGCTGACGCAGCTCAAGGAGCGGGCCACCACGGAGCTCTACTCGCGGCTGGGCTCCCGGCTGACCGACCCACGGCTGGACGAGGCGCAGCTCCACCAGCTCGTCCGCTCCGAGCTCGCCTCCGTCGTCGAGGCGCAGCGGTCCCCGCTGTCGAGCGACGAGCGTCAGCGCCTCATCGAGGAGGTGCGCAACGACGTCCTCGGGCTCGGTCCGCTGCAGGTCCTGCTCGACGACCCGGAGATCAGCGAGATCATGGTCAACGGCCACGACTCCGTGTATGTCGAGCGCGCCGGCCTCCTGCACCGGTCCACGGCCCGCTTCACCTCGGAGGAGCACCTGCGGCAGATCATCGAGCGCATCGTGTCCCGCATGGGCCGGCGCGTCGACGAGGCGTCACCGCTCGTGGACGCCCGCCTCGACGACGGGTCGCGCGTCAACGCGATCATCCCGCCGCTGGCCTTCCACGGTTCCGCGCTGACCATCCGCAAGTTCGCGCAGAACCCGTACACCGTTGAGGACCTGCTGCGGTTCGGCACCATGACCTCGGAGATGTCCGACCTGCTGCGGGCCTGCGTCGAGGCCAAGCTCAACGTCATCGTCTCCGGCGGGACCGGTACCGGAAAGACGACGCTCCTCAACGTGCTGTCCGCGTTCATCCCGGGCGACGAGCGCATCATCACGATCGAGGACGCGATCGAGCTCCAGCTCCAGCAGGAGCACGTGGTGCGGCTCGAGTCCCGCCCGCCGAACCTCGAGGGCCGCGGCGAGATCACGATCCGCGACCTGGTGCGCAACTCCCTGCGCATGCGCCCCGACCGCATCGTCGTCGGTGAGGTCCGTGGCGGGGAGACGCTCGACATGCTGCAGGCCATGAACACCGGTCACGACGGGTCGCTGTCCACCGTGCACGCGAACTCGCCGCGCGACGCCGTGTCCCGCCTGGAGACGCTCGTGCTGATGGCCGGGATGGACCTGCCGTTGCGGGCCGTCCGCGAGCAGATCTCGTCGGCCGTCGACGTCGTCGTCCAGCTCAGCCGGTTGCGCGACGGCACCCGCCGCGTCACGTCGGTCACCGAGGTGCATGGCATGGAGGGCCAGACGGTCACACTGCAGGACATCTTCACCTTCGACTACGCCGCCGGGACCGACCCCGAGACGGGCCGGTTCCTCGGGCGTGCCCGGCCCACGGGCGTGCGGCCGCGGTTCGCCGAGCACATCCAGGAGGTGGGCGTCTCGCTGTCGCCCACGATCTTCGGTGCCGACCAGTTGGCGCGGCTCCGATGAMDLASRLAAAKRVSGQRPVDPAGRHRLDEQPPADAELTVPLPPQQAPRPATPERPERPAAENGARPTRPATTDERDPLTQLKERATTELYSRLGSRLTDPRLDEAQLHQLVRSELASVVEAQRSPLSSDERQRLIEEVRNDVLGLGPLQVLLDDPEISEIMVNGHDSVYVERAGLLHRSTARFTSEEHLRQIIERIVSRMGRRVDEASPLVDARLDDGSRVNAIIPPLAFHGSALTIRKFAQNPYTVEDLLRFGTMTSEMSDLLRACVEAKLNVIVSGGTGTGKTTLLNVLSAFIPGDERIITIEDAIELQLQQEHVVRLESRPPNLEGRGEITIRDLVRNSLRMRPDRIVVGEVRGGETLDMLQAMNTGHDGSLSTVHANSPRDAVSRLETLVLMAGMDLPLRAVREQISSAVDVVVQLSRLRDGTRRVTSVTEVHGMEGQTVTLQDIFTFDYAAGTDPETGRFLGRARPTGVRPRFAEHIQEVGVSLSPTIFGADQLARLRPGPT0016025_725DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
AK018_06310930hypothetical proteinATGAGCCCGGTCCTGTGGGGGCCGCTCGCCGTGGGTCTCGCCCTCGTCCTCGCCGGGTTCGTGCTGGTCGCCCCGCACCGGGCGCACCTGCCGAAGTCCCGGCGTCGTCCGGAGGCCGTCCCCGAGGACGGTGCGCTCGCCGAGGCCGCTGCGACGGCGACCCGGCTCGTGGCCAAGGCGATGCGGCGCCGCGAGGGCAGCGTGGCGATCGCGCTCGACCTGGCCGGCGTCCGCCGGCGGCCCCAGGACGTGGTGTTCCTGGTCCTGGTGGCGTTCGTGGTGCTCGGCGCGGTGGGCCTGCTGATCGGCGGGCCGTGGCTGATGATCCTCTTCGCGCTCGTGGCGCCGGTCGCCACGGTGCTCTGGGTGCGCGTGCGGACCAGGCGACGGCGGGCGGCCTTCGCCGACCAGCTCGACGACACCCTCCAGCTCATCGCGGGCAGCCTGCGGGCCGGGCACAGCCTGCTGCAGGCGCTGGCGGGCGTCGCGCAGCAGGCCGACGACCCGACCAGTTCAGAGCTCGCACGGATCGTCAACGAGACGCGCGTCGGTCGGCCGCTCCCGGTGGCGCTGGAGGAGGCGGCGATCCGCATGGCGAACGAGGACTTCAGCTGGGTCGCCCAGGCCATCACCATCAACCGCGAGGTCGGCGGCAACCTTGCCGACGTGCTCGAGGGTGTCGGCGTCACCATCCGGGAGCGGAACCAGATACGTCGGCACGTGGATTCCCTGTCGGCTGATGGGCGCCTCTCCGGCATCATCCTCGTCGCCCTGCCCTTCCTTGTCGCGGGGTTCCTTCTGCTGACGAACCCCACCTACCTGGCCCCGTTCATCCAGAACCCGATCGGAATTGCCGCGCTCGTCGTCGCCGCGATCCTGCTCGTCATCGGGACGTTCTGGATGCGCAAGGTCGTGACGATCAGGTTCTGAMSPVLWGPLAVGLALVLAGFVLVAPHRAHLPKSRRRPEAVPEDGALAEAAATATRLVAKAMRRREGSVAIALDLAGVRRRPQDVVFLVLVAFVVLGAVGLLIGGPWLMILFALVAPVATVLWVRVRTRRRRAAFADQLDDTLQLIAGSLRAGHSLLQALAGVAQQADDPTSSELARIVNETRVGRPLPVALEEAAIRMANEDFSWVAQAITINREVGGNLADVLEGVGVTIRERNQIRRHVDSLSADGRLSGIILVALPFLVAGFLLLTNPTYLAPFIQNPIGIAALVVAAILLVIGTFWMRKVVTIRFPGPT0022290_1394DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
AK018_06311906hypothetical proteinATGCCGACACCCGTGCTCCTCGCCGTTCTCACCGTCTCCCTCGCCGTCGGGCTGGGCATCTGGCTCGTCTTCGGCGCGTTCGCGCCGGAGCGGCGCCGTGCGGTGGAGAACCTGCACCGCGGGCATGTAGCCACGCCGGTGGCCCGGTCCCTCACCGCGCCCACCGGGGCGCGCCCGGCCCGGGCGTCCCTCGGCCGCCGGCTGACCGCCGCGCCGTTGGTCGGCCTGCTCGAACGGCAGTACGTCCGAGCCGGTCGCCCGCCGGACTGGCCCGTCGACCGTCTGCTCACGGTCAAGCTGCTGTGGGCGCCCATCGGCATCCTGCTCGTGCTGTGGGCGGTGGCGAGCAACGCCTCGCCCCTGATGACGGGGACGATCTTCGCGGTCGCCGTCGTCACGTACTTCCTGCCGGAGCTGCTGCTGCTCAGCAGCGCGCAGAAGCGGGAGCAGCTGATCCAGGCCGAGCTGGCCGACACCCTCGACCAGCTGACCATCGTCGTCGAAGCGGGCACGGGGTTCGACTCCGCGATCTCTCGGGTCGCACAGAACGGTCACGGCGTGCTGGCTGAGGAGCTGACGCGCACTCTGCAGGACATGCGCATGGGTCTCTCGCGGCGGCAGGCGCTGGAGGACCTGGCCGAGCGCACGGAGGTGGTCGACCTGCGCAGGTTCGTCCGTGCGCTGCTGCAGGCGGACGCCCACGGCATCTCGATCGGTGAGGTGCTGCGGACCCAGGCGGCCGAGATGCGGGTGCGCCGCCGTCAGCGGGCCGAGGAGAGGGCGCAGCGCGTGCCGGTGCTCGTGCTCATGCCGCTGATGCTGTGCATCCTGCCGGTGCTGTTCATCGTCATCATGACGCCGGTCGTGATCGACATCCTGGGCGCCTTCATGAGCCTGGACATCTGAMPTPVLLAVLTVSLAVGLGIWLVFGAFAPERRRAVENLHRGHVATPVARSLTAPTGARPARASLGRRLTAAPLVGLLERQYVRAGRPPDWPVDRLLTVKLLWAPIGILLVLWAVASNASPLMTGTIFAVAVVTYFLPELLLLSSAQKREQLIQAELADTLDQLTIVVEAGTGFDSAISRVAQNGHGVLAEELTRTLQDMRMGLSRRQALEDLAERTEVVDLRRFVRALLQADAHGISIGEVLRTQAAEMRVRRRQRAEERAQRVPVLVLMPLMLCILPVLFIVIMTPVVIDILGAFMSLDIPGPT0022295_1543DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511NANA
AK018_06312231hypothetical proteinATGAGCAACCCTCAAGCAGTCCCCGAAGCCCGACCCCGCAAGCTGTACCGCCCGAGCCAGGGCCGCGTGTTCGGCGGAGTGTGCGCCGGCATCGCGGACTACCTCGGCTGGGACCGGACGCTGGTCCGCGTCCTGACCGTCGCGTCCGTGTTCATCCCCGGCCCGCAGGTGCTGGCGTACATCGTCTTCTGGATCCTCATGCCGGACGAGCGCAAGGCGTTTGCCGCCTGAMSNPQAVPEARPRKLYRPSQGRVFGGVCAGIADYLGWDRTLVRVLTVASVFIPGPQVLAYIVFWILMPDERKAFAAPGPT0027520_1486DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-PspC-PspB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027520-toxin_pspC-K03973NANA
AK018_06313567hypothetical proteinATGTTCGACCAGTCCCTGAGCGACCTGCTCTGGCTCTCCCCGACCGAGGCCGTCGCCGTCGTGCTCGCGACGACCGGCATGTACCTGGCGATGATGCTGCTCGTGCGGGTGATCGGGCAGCGGATGCTCGGCGCGATGTCGAACTACGACCTCGTCGCGATCATCGCGTTCGGCGCGATCCTGGGGCGCGCGGCCCTCGGTGACGTCGCCGTCCTCGGCGGCGGCCTGGTCGCCATGCTGACGCTCATCGCGCTGCAGTCGATCGCGGGGGCGCTCATCGTGCGACCGTTCGGCGCGCGCGCGATCACGTCCCAGCCCGTCCTGCTCATGACCGACGGGACGGTGCTGCCCGACCAGCTCCGCCGCGCCCACGTCACCCTGAGCGAGCTGCGCTCCACGCTCCGGCTCGCCGGGGTCCACCGGTACGACGACGTCGCCGTCGCCCTGCTCGAGTCGACCGGGTCGATCAGCGTGCTGCGCCGCGGCACGCCGATCGACGCCGCGCTGCTGGAAGGAATCCACGGCGAGGAGCTGGTCCCGGAGCACCTGGTGTCCCGCGCTCGGTGAMFDQSLSDLLWLSPTEAVAVVLATTGMYLAMMLLVRVIGQRMLGAMSNYDLVAIIAFGAILGRAALGDVAVLGGGLVAMLTLIALQSIAGALIVRPFGARAITSQPVLLMTDGTVLPDQLRRAHVTLSELRSTLRLAGVHRYDDVAVALLESTGSISVLRRGTPIDAALLEGIHGEELVPEHLVSRARNANANANANA
AK018_06314822hypothetical proteinATGATCACGCTGCTCAAGCACGAGGTCCTGCAGACCCGGGCGATGCTCGGGGTCGCCGTCGGGGCCGCGCTGCTGCTGATGCTCACCGGCGCGGCGCTCACCGCGACGACCTGGCCGGTCGTGTCCCAGCTCGGCCTCGTCCTGGCCCTCCTGGCGGGGGTGGGGCTCGTGCCCGCCGCGCAGCTCCTCCTCGCCGTCCAGTACTGGCGGACCAGCTACGGCCGGGTCGGCTACCTGACCCAGACGTTGCCGGTGAAGGGCACGACGGTCTACTGGGCCAAGACGACCTGGGCCTGGGTCGTCTCCCTGGTCCTGGTGGGCCTCGTCCTCGCCGTCGGCCTGCCGCTCGCCGACCTGGTCGGCCGCGCCACCGGCGAGGAGGTGGGTGTCGCCGAGGGCCTGCGGACCGCCTGGGACGCGCTGACGGCGGTCTCGCCCGCCTGGGTGGCGCCGGCGACGGTCGCGCTGGCCGTGGTGATGATCCTGCTGCCGCCCACGCAGTACTTCTTCGCCGCCTCGATCGGCAGCCAGGCACCGCTGAACCGGCTCGGCGTCGGCGGTCCGATCCTCGTGTGGGTCGGCCTCTACGTCGCCGTGCAGGTGCTCACGTTCGCGTCCCTCGTCGCCGTCCCGGTCGCGATCGGCGACGACGGCGGCGAGCTCGCCCTGGTGCCGTTCCACCTGATCGCCGAGATGGCCGCGGGCACCAGCGGACCGTCCGACGTCGTGCCCATCGGGTTCGTGCCTGCCCTGCTGCTCACCGGGGTGGTGTGCGTCGTGTGGTCGCTGCGCTCCTGGAAGCGCACGGTGTCCCTGGTCTGAMITLLKHEVLQTRAMLGVAVGAALLLMLTGAALTATTWPVVSQLGLVLALLAGVGLVPAAQLLLAVQYWRTSYGRVGYLTQTLPVKGTTVYWAKTTWAWVVSLVLVGLVLAVGLPLADLVGRATGEEVGVAEGLRTAWDALTAVSPAWVAPATVALAVVMILLPPTQYFFAASIGSQAPLNRLGVGGPILVWVGLYVAVQVLTFASLVAVPVAIGDDGGELALVPFHLIAEMAAGTSGPSDVVPIGFVPALLLTGVVCVVWSLRSWKRTVSLVNANANANANA
AK018_06315750COG1131Multidrug efflux system ATP-binding proteinATGAGCACCACACCGACCCTGCGGCAGGAGAGTGAGCCCGCCATGACCGACGACGCCGCCCTCGTCCACGTGCGGGGCCTCACCGTGCGCTACGGAGCGCGCACCGCCCTCGACGCACTCGACCTCGACCTGGCCCCGGGCCAGATCGTCGGGTTGCTCGGCGAGAACGGCTGCGGCAAGTCCACGCTGCTCAAGACGCTCGCCGGCGTCTACGCCGACCACGAGGGTGAGATCCGGATCGCCGGGCACCGGCTCGGGCCGCGGAGCAAGGCTGTCGTGTCCTACCTGCCCGACCGCAGCGCCCTGCCCGAGCGCGCCCGGGTGCGGTACTGCCTGGAGCTGTTCGCGGACTTCTACCCCGACTTCGACCGGGACCGCGCCGAGGCGCTCCTGGCGCACTTCCGCCTGGACCCGGCGATGCGGCTCAAGGAGATGTCGAAGGGCATGCGCGAGAAGGTGCACATCGCGCTCGCGATGGCCCGCCGCGCCCGCGTCTACCTCCTGGACGAGCCGATCTCCGGCGTCGACCCCGCCGCCCGCGAGGGGATCCTCGAGGGCATCATGCACCAGCTCGACCCCGACTCCCTCCTGGTCGTCGCGACCCACCTCGTGCACGACCTGGAGACGTCCCTGGACTCCGTGGTGATGATGCGGCACGGCCGCGTCCTGCTCACCGGCGACGTCGACGACCTGCGCGCCGAGCACGGCGCCAGCCTGGAGCAGATCTTCCGGAAGGTGTACGGCTCATGAMSTTPTLRQESEPAMTDDAALVHVRGLTVRYGARTALDALDLDLAPGQIVGLLGENGCGKSTLLKTLAGVYADHEGEIRIAGHRLGPRSKAVVSYLPDRSALPERARVRYCLELFADFYPDFDRDRAEALLAHFRLDPAMRLKEMSKGMREKVHIALAMARRARVYLLDEPISGVDPAAREGILEGIMHQLDPDSLLVVATHLVHDLETSLDSVVMMRHGRVLLTGDVDDLRAEHGASLEQIFRKVYGSPGPT0006725_26696DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_06316384hypothetical proteinATGGAGTTCGACACCGGCTCGCCGATCTGGGGGCAGCTCGTCACCGAGTTCTCCCGCCGGATCGTCACGGGCACCTGGGCCGCGGGCAGCCGCATCCCCGGCGTCCGGGACCTGGCAGGCGAGCTGGGCGTCAACCCCAACACCGTCCAGCGGGCGCTCGCCGAGCTGGAACGCCAGGAGGTGTGCCGCTCGGAGCGCACCGCGGGCCGGTTCGTCACGTCGGACACGAACCGCGTCGACACGCTGCGCGCCGAGCTGGCCCGGGAGGTCGCCGACGGGTTCGTCCGGCGGGCCCGCGGGCTCGGCATGACACCCAGCCAGGCGCAGCGACTGATCGAGGAGCGATGGCATGAGCACCACACCGACCCTGCGGCAGGAGAGTGAMEFDTGSPIWGQLVTEFSRRIVTGTWAAGSRIPGVRDLAGELGVNPNTVQRALAELERQEVCRSERTAGRFVTSDTNRVDTLRAELAREVADGFVRRARGLGMTPSQAQRLIEERWHEHHTDPAAGENANANANANA
AK018_06317309hypothetical proteinGTGACCCTCGACCCGGACCGTCCGCCGGACCCGACCTCGCGCGAGCTGGCGTTGCTGGTCACCGAGGTGGCGTGCAGCTCCGGCCAGGACGCCGCGGGCCGCGTGCGGGTGGCCGAGCAGCGCGAGACGACGACGGCGGTCCACCTGGCCGTCGTCGTCGACCCGCAAAGTGGTGCGCACGACTGCCGGTCCAACCCGGCGACCCCCTATGCCGTCGAGCTGGACGAGCCGCTGGGGGAGCGGGTGGTGCTGGACGCGGGTGTGGCGCCGCCGCGTGAGCTCATGATGCCGGACCCGGCGGCGCCGTAGMTLDPDRPPDPTSRELALLVTEVACSSGQDAAGRVRVAEQRETTTAVHLAVVVDPQSGAHDCRSNPATPYAVELDEPLGERVVLDAGVAPPRELMMPDPAAPNANANANANA
AK018_06318210lysC_1AspartokinaseATGAAGTCGCACCCGGGCATCTCCGCCCGCCTGTTCGGCGCGCTGCGGGACGCGGGCATCAACATCGAGATGATCTCCACCTCGGAGATCCGCATCTCGGTGGTCACCCGTGCCGACAACCTGGACGACGCCGTGCGCGCCATCCACACCGCGTTCGAGCTCGACTCCGCCGAGGGCGAGGCCGTGGTCTACGCCGGGACGGGGCGGTGAMKSHPGISARLFGALRDAGINIEMISTSEIRISVVTRADNLDDAVRAIHTAFELDSAEGEAVVYAGTGRPGPT0014040_2588DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0014040-lysC-K00928NANA
AK018_063191113asd_1COG0136Aspartate-semialdehyde dehydrogenaseATGGCCCAGATCAACACCACGGGCGTGAACGTCGCCGTCGTCGGCGCCACCGGTCAGGTCGGCGCCGTGATGCGCACGCTGCTCGCCGAGCGCGCCTTCCCGATCAAGGAGCTGCGGCTGTTCGCCTCGGCGCGGTCGGCCGGCTCGACGATCACCTACGAGGGCGTCGAGGTCACCGTCGAGGACACGGCCGCCACGGCGACCGAGGACCTCGCGGACATCGACATCGCCCTGTTCTCCGCGGGCGGCGGGACGTCGCGCGAGCACGCGCCGCGGTTCGCGGAGGCGGGCGCCGTCGTCATCGACAACTCCTCCGCCTGGCGTCTCGATCCCGAGGTGCCGCTGGTGGTCTCCGAGGTGAACCCGGAGGCGATCAGCGAGGCCGCCAAGGGCATCATCGCCAACCCGAACTGCACCACGATGGCCGCGATGCCGGTGCTCAAGCCGCTGGCCGCCGAGGCCGGGCTGGAGCGTCTGCGGGTCGCCACCTACCAGGCGGTGTCCGGGTCGGGGCTCGGCGGCGTCAAGGAGCTCGCCGACCAGGCGCGCGCCGCGACGTCCGTTGACCTCGAGGGGCTCACCCACGACGGGTCGGCGGTGGAGTTCCCGGCGCCGGAGAAGTACGTGGCGCCGATCGCGTTCGACGTCGTGGCGCTGGCCGGCGCGATCGTCGACGACGGGTCGGAGGAGACGGACGAGGAGCAGAAGCTCCGCAACGAGTCCCGCAAGATCCTGGGTCTGCCGGACCTCGCCGTCGCGGGCACCTGCGTGCGCGTGCCGGTGTTCACCGGTCACTCCCTGGCGATCCACGCCGAGTTCGGCGACGCGATCACCCCGGACCGCGCCCGCGAGCTGCTCGCCGACGCCCCGGGCGTCGAGCTGGCGGACGTCCCGACCCCGCTGGGCGCGGCCGGCGCCGACCCGTCGTTCGTCGGCCGGATCCGCACCGACCAGTCCGTCCCGGACGGTCGCGGGCTGGTGCTGTTCGTCGCGAACGACAACCTGCGCAAGGGTGCCGCGCTCAACGCCATCCAGATCGGCGAGCTCGTGGCGGCCGACATCGCCGAGCTGGCGACCTACGACGCCACGGACGCCGAGTCGGTGACGGCCTGAMAQINTTGVNVAVVGATGQVGAVMRTLLAERAFPIKELRLFASARSAGSTITYEGVEVTVEDTAATATEDLADIDIALFSAGGGTSREHAPRFAEAGAVVIDNSSAWRLDPEVPLVVSEVNPEAISEAAKGIIANPNCTTMAAMPVLKPLAAEAGLERLRVATYQAVSGSGLGGVKELADQARAATSVDLEGLTHDGSAVEFPAPEKYVAPIAFDVVALAGAIVDDGSEETDEEQKLRNESRKILGLPDLAVAGTCVRVPVFTGHSLAIHAEFGDAITPDRARELLADAPGVELADVPTPLGAAGADPSFVGRIRTDQSVPDGRGLVLFVANDNLRKGAALNAIQIGELVAADIAELATYDATDAESVTAPGPT0014045_760DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133NANA
AK018_06320567hypothetical proteinATGGACGCCGCGGACACCTGGTCGAGCCTGACCTTCGTCGTCGCGGGGCTGTGGATCATCGCCCGACGGCGGCACCCCGGCGACGGCGACGGGTCGGGCGCGGCGGCCCGCACCCGGGTCGCGCTCGGCGTCCTGGCGATCGGCATCGGCGTCGGGTCCGTGATCCAGCACGGTCCGGCGCCGGCCTGGAACCCGGTCGTCCACGATCCACCGCTGTTCGGCGCGTACGCCCTGGTCGCCGCGGACGCGGTCGCGGACCTCACGGGCCGTCGGATGCGCAGCTGGTGGTGGCTGGTCCCGACGTTCGGCGACCTGGTGCTCGCGGCCGTCGACCCGTGGGTCTCGATCGTGGCTCAGGGCGTGGCCTCGGGCATCGCCGTGGTGCTGATCCTCCTGCGGGCCGCCCTCCGGCCGACGCTGCGCGCTCGGCTCGTGAGCGCCGTCGTCGTCCTGGGGGCCGGAGCTCTGATCGGGTTCGTCGAGCCGTGGGGCCACGTGGTGTGGCACGCGTTCGCGGCCGTCGCGATCGTCGTCGCGTCGCCCGCCGTCGGGGCGCGCCCGTCCTGAMDAADTWSSLTFVVAGLWIIARRRHPGDGDGSGAAARTRVALGVLAIGIGVGSVIQHGPAPAWNPVVHDPPLFGAYALVAADAVADLTGRRMRSWWWLVPTFGDLVLAAVDPWVSIVAQGVASGIAVVLILLRAALRPTLRARLVSAVVVLGAGALIGFVEPWGHVVWHAFAAVAIVVASPAVGARPSNANANANANA
AK018_06321462hypothetical proteinGTGCGGCCCCGGAGCCGTGACGGACGCTGGCACCACCGTGCCGCGCTCGCCGTGGTCCTCGGCTTCCTCGCCCTGGTGGCGGGCCACGGGTTCGCCGTGGCGGCACCGCCGGCGGGCGACCTCACCGTCGCCGCGGCCGGACATCATGTCCAGGCACCGGTCCCGCCGACCGACTCCGTCGCACCGGCCGTCGCGGCGGCGGAGGTCTCGGCCGACCCGGAGGCGCAGGTCTCGACCGGCGCGGCACCCGCCATCCCGTGCGTCGACTGCGGCGTCCCGCACCACGACGCGGCCATGATCTGCGCCTTCATGCTGCTCGTCGTCGTGCTCCTCGCCCTGGCGGGTCCTCGTCGCATCGCGTGGGGCCTGCCGTCCGACCTGCCGCGCGTCACCAGCCGCCGCGCGGTCCCGCGGTTCCTTCCCGCCCCGGATCTCTGGGCCCTCGGGATCAGCCGGACGTGAMRPRSRDGRWHHRAALAVVLGFLALVAGHGFAVAAPPAGDLTVAAAGHHVQAPVPPTDSVAPAVAAAEVSADPEAQVSTGAAPAIPCVDCGVPHHDAAMICAFMLLVVVLLALAGPRRIAWGLPSDLPRVTSRRAVPRFLPAPDLWALGISRTNANANANANA
AK018_06322606hypothetical proteinATGCCGTTCCACCGTGCCCGCCAGTGGGCCCTGCTGACCCTGACCGCCTCCCTCGCCGCGCTGACGCTGGCCGCCTGTTCCGCGGGCGGGCCCACGCCGACGACGGACGACGAGACCGCCTCGTCCGCAGCGCTCGCCGACGCGGGGCTCGACGGTCTCGACGGCCGCGAGATCGTCGACACGCTCGACGCCCTGCCCCTCGCCGACCGCCCGACCGACCTCATGGTCTCGGTCCGCCCCGACCAGCTGCTCGTCACAACGGCCGACCAGGAGGAGACCACGGTCTCCCTGGAGGGCGAGGACTTCTACGTGTCGATCGCGCCGTACGTGGACCAGACGCACGAGTGCTACTTCCACAGCCTGACCACCTGCACCGGCGAGCTGCAGCTCGCCGAGGTGGACGTCCTCGTCACCGACGACGCGACCGGTGAGGTCGTGCTGGACGAGACCCGGACGACGTTCGACAACGGCTTCGTCGGCCTGTGGCTGCCACGCGACCTGGAGGCCACCGTGACGATCGAGCACGACGGGATGTCGGCCAGCACGCCGCTGTCCACGGCCGGTGCCGACGACGCGACCTGCGTCACCACGATGCAGCTGACCTGAMPFHRARQWALLTLTASLAALTLAACSAGGPTPTTDDETASSAALADAGLDGLDGREIVDTLDALPLADRPTDLMVSVRPDQLLVTTADQEETTVSLEGEDFYVSIAPYVDQTHECYFHSLTTCTGELQLAEVDVLVTDDATGEVVLDETRTTFDNGFVGLWLPRDLEATVTIEHDGMSASTPLSTAGADDATCVTTMQLTNANANANANA
AK018_06323372hypothetical proteinGTGTTCGACGGGCCTGAACCTCTCTACGTCCAGATCGCCCAGATGATCCGGTCGCAGGTCCTCGCGGGAGAGCTCGCGGAGGACGAGCAGGTCATGTCCACCACCCAGTTCGCCACGACGTTCCGCATCAACCCCGCCACCGCAGCCAAGGCCTTCACCGGCCTGGTCGACGAGGGCGTGCTCTACAAGCGACGGGGCCTGGGCATGTTCGTCGCACCGGGTGCCCGGCAGCGGCTGCTCGAGCACGACCGCACGGCCTACTTCGCCGAGGTCCTCGCCCCGGCGCTCGCCCAGGCGAAGGTCCTCGGCATCTCCGACGACGAGATCGTCGACCACATCCGCAGCCGCTCGACCACTACGGAGGAGTCATGAMFDGPEPLYVQIAQMIRSQVLAGELAEDEQVMSTTQFATTFRINPATAAKAFTGLVDEGVLYKRRGLGMFVAPGARQRLLEHDRTAYFAEVLAPALAQAKVLGISDDEIVDHIRSRSTTTEESNANANANANA
AK018_063241005hypothetical proteinATGACGGCCCCCGCCCCCTTCGGCGCCCGGCTGGACGACGTCGTCGTCCGGTTCGGCCGGCAGCGCCGGGTGACCCGCGACGGCGGCACCTTCCGCGAGGACGCCTCGACGGCCCTCGACGGTGCGAGCCTGACGATCCGGCCCGGCACCATCACCGGCGTGCTCGGCCGCAACGGCGCCGGCAAGACCACGATGCTCTCCCTGCTCGCCGCCTACCGGCGACCCACCAGCGGCCGTGTCGCCGTCGGCCCCGAGGGCGAGGCGGCCGCCTGGGAGGACCCGTGGGAGAACCCGTGGGTCACCGCGAACGTCCAGCTCGTCAGCGAGGGCGGCGGCGTCCAGGACGACGAGAAGCTGCGCGAGACGCTGCGGTACTACGCCGACCTGCGCCCGCACTGGGACGCCGACACGGCCGAACGGCTCCTGGACCTGTTCGAGATCAGCACCCGCAAGAAGCCGAACGCCCTGTCGCGGGGCAAGCGGTCCGCCGTCGGCGCTGTCCTCGGCCTCGCGTCCCGGGCACCGCTGACCATCTTCGACGAGGTCTACCTCGGCATGGACGCCCCGACGCGGTACGCGTTCTACGACGAGATCCTCGCCGACTACGCCGCCCACCCGCGCACCATCCTGCTGTCCAGCCACCTCGTCGAGGAGGTCGAGCGGCTGTTCGAGGACGTCGTCGTGCTCGACCGCGGCCGCGTCCTCCTCGCCGAGACCGCCGAGGAGATGGCCCGGCGCGGCTTCAGCCTCACGGGGCCGACGACGGCGGTCGAGCGCCTCGCCGGGGACCGGAAGGTCCTGCACCGCCAGCAGCTCGGCGGGACCGTCCAGGTCACCCTCGAGGGGGCGCCCGACGACGGGACCCGCGCCGCCGCCCGGGAGGCCGGCGTCGAGCTGGGTCACCTGCCGCTGCAGGACCTCTTCGTGCGTCTCACCGACCCGGCCGCCCACCGGGCGACGGTCACCGGCCGCGACGCCGACGCGTCGAGGGGAGCAGGGCGATGAMTAPAPFGARLDDVVVRFGRQRRVTRDGGTFREDASTALDGASLTIRPGTITGVLGRNGAGKTTMLSLLAAYRRPTSGRVAVGPEGEAAAWEDPWENPWVTANVQLVSEGGGVQDDEKLRETLRYYADLRPHWDADTAERLLDLFEISTRKKPNALSRGKRSAVGAVLGLASRAPLTIFDEVYLGMDAPTRYAFYDEILADYAAHPRTILLSSHLVEEVERLFEDVVVLDRGRVLLAETAEEMARRGFSLTGPTTAVERLAGDRKVLHRQQLGGTVQVTLEGAPDDGTRAAAREAGVELGHLPLQDLFVRLTDPAAHRATVTGRDADASRGAGRPGPT0006725_3597DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_06325771hypothetical proteinATGAACGGCACGGCAGCCCTCGTCGACCGCGTCGCACTGGTCCGCCGCGTCGAGTCGGCCGCCACCCGGCGCGCCGCGAGGTCGCTCGGCGTCCCGAACGTCGTCGTCGGCTCCGGGTTCTGGGTCGTGCTGGCCGTCGTCGCGGTGACCGTGCCCCTGATCGTCGACCGCTCCGGCCACCAGATGGACGTCGGAGTCCTGGCGACCGGCGGGTACAGCGCCCGCTGGTTCGCCTTCGCCCTCGGGCTGATCATGTTCGTCACGATCACCGCCACCCACGTCGCCGCCGGTGGCACGCGCCGGACGTTGTTCCGCGGGGCGCTGCTCGCCACGGCGGGAGGCGGGGTCTTCTACGGACTGGCCCACACCCTCGCACAGCTCGGGGAGCGTCGGCTCTTCGACGAGCTCGGGTGGCCGTGGGAAGCGCCGGACTTCCTGGTCTTCGGCGGGCAGTCCGGCGACCTGCTCCTGACGCTCGTCGGTGCCACCCTGACGATCGCGGTGTACATCCTCGTCGGCGTCGCGGTGGCCGTCGGTTACCTGCACCACGGGGCCTGGCGGGGCACGCTGCTGCTCGTCCCGAACGCGGTGCTGCTCGCACTGGCGGAGGTGGCCGGTCGCGCTGCATCCTGGACGGACGACGTCGGTCTCGGGCTCGAGCGCGCGTCCGCCGTCGCGGTGACCCTGCTGGTCCTCGCCGTCGTCGTCGCCCTGTCCGCCGGCTGGCTGCGCGCGATGCTGTTCCGCCTCCCGATCCGGCCGTCGAGGTGAMNGTAALVDRVALVRRVESAATRRAARSLGVPNVVVGSGFWVVLAVVAVTVPLIVDRSGHQMDVGVLATGGYSARWFAFALGLIMFVTITATHVAAGGTRRTLFRGALLATAGGGVFYGLAHTLAQLGERRLFDELGWPWEAPDFLVFGGQSGDLLLTLVGATLTIAVYILVGVAVAVGYLHHGAWRGTLLLVPNAVLLALAEVAGRAASWTDDVGLGLERASAVAVTLLVLAVVVALSAGWLRAMLFRLPIRPSRNANANANANA
AK018_06326768hypothetical proteinATGACCGCACCGACCGTGGCCCCCGGCACCGCACAGCGTCGTCGCACCCGCATCGACCCCGGGGTCCGCGCCGCTCGACGGCGCTTCCTGCGCGTGCTCACGATCGTCGGGCTCTGGTTCTGGGCCTTCTGGGCCCTGCTCGTCGTCGGCGTCCTGATCGTCGTCGAGCAGGTGGGCGGCGAGGCCGGCGGGTTCACCTACGACGTCTCCGGCAGCCCGGCCCGGTGGATTCCCTTCGTCGTCGGCATCGTCGTCACCGCAGGTGTGCTGCCGGTGCACGTCGGTGCCGGGGGGACGCGCCGCGCCTGGGTCGACGGCGCCACCCGGGCCGCCGTCGTCGTCGGTCTGGCGTTCGGCGTGCTGACGGTGGTGCTCGCGCTCGTCGAGCAGCAGGTCTACGCCGCAGGGGATCGCCCGTGGCAGGTCGACACCGGGACGGTCGCCCTCGACACGGCCGGCGGGATCGCCGTCGCCGTGGCCGCCGAGTCCCTGGTCATGGTCACCTACCTGCTCGTCGGTGTCGCGATCGCCGCCGGCTTCCGACGGTTCGGGCCCTGGCGCGGGACGCTCCTCGTCGCACCGCTCCTCCTTCCCTGCGCGCTCGTCGACATCGCCACACGGACCGGCATCGCCGGCATCCCGTGGCGCGGCGGGTACGACGACGTCGCCCTCGGTGCACTGTTCGGCGTCGGCGGCGCCCTGGTCGTCGCCGCGCTCGCCTACGTCGTCGCCCGCCTCGTGCTGCGCTCCGCGCCGCTGCGTCCCTGAMTAPTVAPGTAQRRRTRIDPGVRAARRRFLRVLTIVGLWFWAFWALLVVGVLIVVEQVGGEAGGFTYDVSGSPARWIPFVVGIVVTAGVLPVHVGAGGTRRAWVDGATRAAVVVGLAFGVLTVVLALVEQQVYAAGDRPWQVDTGTVALDTAGGIAVAVAAESLVMVTYLLVGVAIAAGFRRFGPWRGTLLVAPLLLPCALVDIATRTGIAGIPWRGGYDDVALGALFGVGGALVVAALAYVVARLVLRSAPLRPNANANANANA
AK018_06327987drrA_7Daunorubicin/doxorubicin resistance ATP-binding protein DrrAATGACCGAACCAGTCGTGGAGGTCAGCCACCTCCGCAAGACCTACGGCGACAAGGTCGCCGTCGACGACGTGTCCTTCGCCGTCAGCCCCGGCGAGATCTTCGGGATCCTCGGGCCCAACGGGGCCGGCAAGACCACGGCCGTCGAGACCCTGGCCGGCATGCGCCGGGCCGACGGCGGCACCACCCACGTGCTGGGTCACGACACCCAGAAGCACCCCACGGCCGTCCGCGACGTGCTCGGCGTGCAGCTCCAGGAGGCGACGCTGCACGACAAGATCACCGCGGGTGAGGCCATCCGGCTCTTCGCCGGCTTCTACTCGGACCCGGCCGACCCCGACGAGCTGCTCGCGCTGCTGGACCTGACCGACCATGCGGACAAGCAGTTCCGCAACCTCTCCGGGGGGCAGAAGCAGCGGCTGTCGATCGCGCTCGCCCTGGTCGGCAACCCGCAGGTCGCCATCCTCGACGAGCTCACCACGGGGCTCGACCCCCAGGCACGCCGCAACACCTGGGACCTCATCGACCGGGTGCGCGACACCGGCGTCACCATCCTGCTGGTCACGCACTTCATGGACGAGGCCGAGCGGCTGTGCGACCGGCTCGTGGTCATCGACGGCGGGCGCATCGTGGCCGAGGGGACGCCCCGCGGACTCATCGACGGCCTCGAGGGTGACCGGACCGTCGTGCTGCGCTTCCCCGACGAGGTCGCCGGCGCGGCCCGCGAGGTGCTCGACCGGCTCGCCGCGACGCATCCCGACGTCACCCGCGTCGAGGAGATGGACGGCGTGCCCGGCGAGATCGCCGTCACCGGCACGCCCCGCGTGCTCTTCGCCGTCGTCCCCGCCCTGGCCGAGGCCGACCTCGTGCCCGACGACGTGCGCACCGTCACCCGGACCCTCGAGGACGTCTTCCTCGCCGTCACCGGGCGGACCTACGCCGAGCAGGGCGAGGAGCCCGCGCTCGCCTCGGAAGGAGACCGGTCATGAMTEPVVEVSHLRKTYGDKVAVDDVSFAVSPGEIFGILGPNGAGKTTAVETLAGMRRADGGTTHVLGHDTQKHPTAVRDVLGVQLQEATLHDKITAGEAIRLFAGFYSDPADPDELLALLDLTDHADKQFRNLSGGQKQRLSIALALVGNPQVAILDELTTGLDPQARRNTWDLIDRVRDTGVTILLVTHFMDEAERLCDRLVVIDGGRIVAEGTPRGLIDGLEGDRTVVLRFPDEVAGAAREVLDRLAATHPDVTRVEEMDGVPGEIAVTGTPRVLFAVVPALAEADLVPDDVRTVTRTLEDVFLAVTGRTYAEQGEEPALASEGDRSPGPT0006725_2533DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_06328810hypothetical proteinATGACCACGACGACCGCTTCGGTGCGCCGAACCGGCAGCCGCGCCGGATGGCGCGGGTTCCGACGTCTGCTGACCACCGAGTTCCTGGTGTGGTTCCGCGACTTCGCCGCCCCCTTCTTCGGGGTCGTCTTCCCCACGCTCATCCTGCTCGGGGTCGGCTTCCTCATTCCCGGCATGCGTGAGCCGATCCTGGAGGCGCCGCCGGACTCGGTCTGGTACGGCGTCACCCCGATCGCGACCTACGTGCCCACCATCCTCGCGATGGCCGTGGGGACCGCCTCGCTCACCGTCATGCCCGTCACCCTCGCGACCTACCGCGAGAAGGGGGTGCTGCGGCGGATGTCCACCACGCCGATGCGACCGCAGGGCATCGTCGCGGCGCACCTGGTCATCAACTCGATCACCACGCTCATCGGTGTCGGGCTGGCGCTGCTGGTCGCGGCCCTGGCCTTCGGGGTCCCCGCGCCGCAGCAGCTCGGCGTCGTCGTGCTCGGCTTCCTGCTGGGGATGGCGGTGATGCTCGCGCTCGGCATGCTCGTCGCGGCGGTGGCGCCCCGGGCGTCGGCCGCGAACGGCATCTCGATGTCGGTCTACTTCCCGATGCTGCTGCTGGCGGGGGTGTGGACGCCCGGACCGGTCATGCCGGAGCTGCTGCAGCAGATCGGTCAGTTCAGCCCGCTGGGTGCCGCCGCGCAGGCGTTGTCGATCGGCTGGTTCGAGAGCGGGTTCCCGCTGCTGCAGCTCGTCGTCATGGCGGTGTGGACGGCGGTGCTGCTGCCGCTGGCGATCCGGCTCTTCCGGTGGACGTGAMTTTTASVRRTGSRAGWRGFRRLLTTEFLVWFRDFAAPFFGVVFPTLILLGVGFLIPGMREPILEAPPDSVWYGVTPIATYVPTILAMAVGTASLTVMPVTLATYREKGVLRRMSTTPMRPQGIVAAHLVINSITTLIGVGLALLVAALAFGVPAPQQLGVVVLGFLLGMAVMLALGMLVAAVAPRASAANGISMSVYFPMLLLAGVWTPGPVMPELLQQIGQFSPLGAAAQALSIGWFESGFPLLQLVVMAVWTAVLLPLAIRLFRWTPGPT0006730_14107DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_06329735hypothetical proteinATGAAGCCGTTCCTGCTGCTGGCGACGCGGCCCGAGGACGTCGCCGCGGACGGGGAGTACGAGGCGTTGTGCCGGTTCGGCGGGCTCGCCCCCGACCAGCTCCACCGGGTCCGGCTGGAGGCAGACCCCATGCCGCGCGTCGACCTCGACGCCTACTCGGGGGTCATCGTCGGCGGCGGCCCGTTCAACTCGTCCGACCCCGACGACGTGAAGTCTGACGTGCAGCACCGGGTGGAGCGGGAGATGGCGGGTCTGCTCGACGAGGTCGTCGACCGTGACTTCCCGTTCCTCGGCGCCTGCTACGGCGTCGGGACCCTCGGCACCTACATCGGGGGAGTGGTGGACCGCCACTACGGCGAGGACGTCGGCGTCGTCACCGTCGAGCTCACCCAGGAGGGCGCGGACGACCCGCTCCTGGCGGGGGTGCCGCCCGCGTTCGCCGCGTTCGTCGGTCACAAGGAGGCGATCCGCGAGCTGCCGCCCCACGCGGTGCGGCTGGCGTTCTCCCCGTGGTCGCCGGTGCAGATGTTCAAGGTCCGCGAGAACGTCTACGCCACCCAGTTCCACCCGGAGCTCGACCTGGCGGGGCTGACCGAACGGGTTCGCGTCTACCGGCACCACGGGTACTTCGACCCGGAGGAGGCGGGGGCCGTCGTCGCGCGGGCGTCGGCCCGGCCCGTCACCGAGCCGATGCGGGTCCTGCGCAACTTCGTGGCGCGCTACGCCCGGGCCTGAMKPFLLLATRPEDVAADGEYEALCRFGGLAPDQLHRVRLEADPMPRVDLDAYSGVIVGGGPFNSSDPDDVKSDVQHRVEREMAGLLDEVVDRDFPFLGACYGVGTLGTYIGGVVDRHYGEDVGVVTVELTQEGADDPLLAGVPPAFAAFVGHKEAIRELPPHAVRLAFSPWSPVQMFKVRENVYATQFHPELDLAGLTERVRVYRHHGYFDPEEAGAVVARASARPVTEPMRVLRNFVARYARAPGPT0021580_6485DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
AK018_06330501rppH_1RNA pyrophosphohydrolaseATGCCGATTCCCGACCACGTCGTGTCCCTGCGTGCCCGCGTCGGCACGGACCTGCTCTGGCTGCCCGGGGTCACCGCCGTCGTGCGCGACGACGACGGTCGCGTGCTGCTGGGACGGCGCGCCGACTCGGGCGAGTGGGCCCTGCCCAGCGGCATCCTCGACCCCGGCGAGCAGCCCGCCGTCGGGATCGTGCGCGAGGTCCTCGAGGAGACCGCCGTGGAGATCGAGGTCACGGCGCTCGCCGCGGTGTTCAGCACGCCCGTGATCACCTACCCCAACGGCGACCGGACCACCTACCTGGACTCGCTGTTCTGCGCGCGCCCCGTGTCCGCCGAGGCCGCCGCCGGCGCGCGGGTGGCCGACGACGAGTCGCTCGCGGTCGACTGGTTCCCCGACGACGGGCTGCCCGACGTCCTCGCGGACTCGGCGCGCGAGCGGCTCGCGCTGGAGCGCACCTTCCGTGCCGACCCCGCCGCGGGAGCCCTGTTCGCGCGCCCGTGAMPIPDHVVSLRARVGTDLLWLPGVTAVVRDDDGRVLLGRRADSGEWALPSGILDPGEQPAVGIVREVLEETAVEIEVTALAAVFSTPVITYPNGDRTTYLDSLFCARPVSAEAAAGARVADDESLAVDWFPDDGLPDVLADSARERLALERTFRADPAAGALFARPPGPT0024450_28DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117NANA
AK018_063311137aroG_1COG0722Phospho-2-dehydro-3-deoxyheptonate aldolase, Phe-sensitiveATGAGCACCACGACCTCCGACACCACCCCTTCCGCGCGCACCACCGACGTCGAGCGAGATACTGAGCTGATGGCCGAGACCTCCGACCTGCGCGTCCGTGCGCTGGACCCGCTGCCCGCACCGCGTTCGATGCGCGCCCGGCTGCCCCTGGGCACCGCCCGCAGCAACCTCGTGACGACCTCGCGGCGTGAGGTGCGCGACGTGCTGCGCGGCGAGGACGACCGGCTCGTCGTCATCGTGGGGCCCTGCTCGGTGCACGACCCGGAGGCCGCCCTCGACTACGCCCGCCGGCTCGCGCCGCTGGCCCGCGACCTGGCCGAGGAGCTCGTGGTGGTCATGCGGGTCTACTTCGAGAAGCCGCGCACCACGGTCGGGTGGAAGGGGCTCATCAACGACCCGCACCTGGACGGCTCGCACGACGTCCACCACGGCCTGCGGCTCGCCCGCGAGGTCCTGCTGGGTGTGCTCGACGCCGGTGTCCCGGCCGCGTGCGAGTTCCTCGAGCCAACCTCTCCGCAGTACATCGCCGACGCCGTCACGTGGGGTGCGATCGGCGCGCGCAACGCGGAGTCGCAGGTCCACCGTCAGCTCGCGTCGGGGCTGTCGATGCCGGTCGGGTTCAAGAACGCCACGGACGGGGACGTGCAGATCGCGGTGGACGGCTGCATCACCGCCGCCAGCGAGCACACGTTCTTCGGGGCGGATGCCGAGGGTCGGGCGGCCGCCGTCGAGACCGCGGGCAACCCGGACTGCCACGTCATCCTGCGCGGTGGCCGCGGCGGTCCGAACTACGGGGTCTCCGACGTCGCCGACGCGCTGGCCGTGGCCCGCACCTCCGGTCTGGGCGGTGCCGTGGAGGAGGGCGTGGTCGTGGACGCCTCGCACGGCAACTCCGGCAAGGACCACGTGCGTCAGGCCGAGGTCGTGCGCGAGATCGCGGCACGTCTCGCCGACGGGGAGCGGGGCATCACCGGGCTGATGCTGGAGAGCTTCCTCGAGGCGGGCGCGCAGAAGCCGGCGCCGCTGGACGAGCTCGTCTACGGCCAGTCCGTCACGGACAAGTGCATGGACTGGGGCACGACGGCGGAGCTTCTGACGGTCCTGGCCGACGCGGTCCGCGCGCGGCGCGCTTCCTGAMSTTTSDTTPSARTTDVERDTELMAETSDLRVRALDPLPAPRSMRARLPLGTARSNLVTTSRREVRDVLRGEDDRLVVIVGPCSVHDPEAALDYARRLAPLARDLAEELVVVMRVYFEKPRTTVGWKGLINDPHLDGSHDVHHGLRLAREVLLGVLDAGVPAACEFLEPTSPQYIADAVTWGAIGARNAESQVHRQLASGLSMPVGFKNATDGDVQIAVDGCITAASEHTFFGADAEGRAAAVETAGNPDCHVILRGGRGGPNYGVSDVADALAVARTSGLGGAVEEGVVVDASHGNSGKDHVRQAEVVREIAARLADGERGITGLMLESFLEAGAQKPAPLDELVYGQSVTDKCMDWGTTAELLTVLADAVRARRASPGPT0012920_2943DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012920-3_deoxy_7_phosphoheptulonate_synthase|aroF|aroG|aroH-K01626NANA
AK018_06332996hypothetical proteinGTGCCCGGCCGCCCCCGCCCCCTCGCCCCGCGCCTGCTCCGCCTGGCTGCGCAGCAGGAGGGGCTGCTGTCGGTGCGTCAGTGCATCGACTCCGGGATGAACCACGAGCAGATCGCGGCCAGGGTCCGCACCAAGGACTGGGAACGCCCGGCACGCGGCGTCGTGGACACCGGCCACCCCGCCACCCGGGACCGGGCCGACGACCCGATCGAGCACCGACGCCGCCGGGCCGCTGTGCTCGGGCTTCTCGCGCACCCGGGGTCGGTCGCCACCGGCGTCTGCGCCCTGGTGCTGCACGGCGTCCAGGGCGCGCCGATCGAGGTGGCCCCGGAGGTGGCGATGCCGACCGGGGCACCACGAGCCGCGCGGCCGCCGGTCCGGCTGCGCCGCTCACCCGTCCCGGTGTCGGTCGACGTCGACGGGTTCCGCTGCGTCCCCGTCGACGTGGCGCTGGCCCAGGCCGTCCCGGAGCTGCGCCGTCGGCCCGCCGTGGCCCTGATGGACTCCGCGCTGCACCGCGGTCTTCTGACGCCGACCGGACTGGTGGCGGCGCATCGAGCCGCCGCAGGTCGCCGGGGCGTGGCGCGCACGCGCTCGTGGTGGGGGCTGGCCGACGGCCGGGCGGAGTCGCCGGCCGAGACGTGGGCGCGCCTCGACTGCCTCGACGCCGGGTTCCCGCCGGACGCGCTGCAGCTCGCCGTCGCCGGCGCCGCGGGCGACGTGTTCGCCCGGGTCGACCTCGCCTGGCGACTCCCCGGCGGCACGGCGCTGCTGGTGGAGATCGACGGGCGCGACGTCCACTCCGCACCGGAGGCCGTCTACCGCGACCGCGTCCGGCAGAACCGGATCGACACGTCACGGACCGTCGTCCGTCGCTTCACCGGCGCCGACGCCTGGCACGGACGCGTCGGGGCCGAGGTCGCGAGGGTCCTGCGTCCGGCCGGGTGGCGACCCGCGCCGCTGTCCGCCGGCACCGTGCTACGGGTCGATGCCTGAMPGRPRPLAPRLLRLAAQQEGLLSVRQCIDSGMNHEQIAARVRTKDWERPARGVVDTGHPATRDRADDPIEHRRRRAAVLGLLAHPGSVATGVCALVLHGVQGAPIEVAPEVAMPTGAPRAARPPVRLRRSPVPVSVDVDGFRCVPVDVALAQAVPELRRRPAVALMDSALHRGLLTPTGLVAAHRAAAGRRGVARTRSWWGLADGRAESPAETWARLDCLDAGFPPDALQLAVAGAAGDVFARVDLAWRLPGGTALLVEIDGRDVHSAPEAVYRDRVRQNRIDTSRTVVRRFTGADAWHGRVGAEVARVLRPAGWRPAPLSAGTVLRVDANANANANANA
AK018_06333645sigK_1COG1595ECF RNA polymerase sigma factor SigKATGTCCCGGAACGTCCGGGACACACGACGGGAAAGGGTGCAGATCGACCGCGAGCCGTCGGTGGGGCACACTGTCCGAGTGCCATCACCCGAGACGACGCCGCTCGACGACGCCCTCGTGGCGTGCGCCGCAGGGACGCCGGACTCGTTCGGGCCGGTCTACGACGCACTCGCTCCCGCCGCGTACGGCACGGCGATCGGTGTGCTTCGCGACCCGGACCACGCCGCCGAGGTGACTCAGGAGGTGATGGTCGAGGTGTGGCAGACCGCAGCCAAGTTCGACCCCGCCCGCGCCTCGGCGCGCACGTGGGTCGTCACCCTGGCCCGCCGCCGGGCGGTGGACCGCGTGCGTGCCGAGCAGGCGCGCCGCGACCGCGACCAGCGCGACCTCGACTCGAGCGTCGCCGGCTCCGGCTACGACGTCGTCTCCGAGGACGTCGAGCGCCGGCTCGAGGGTGCCGCGGTGCGGCGCTGCCTCGACTCGCTCACGGGCACGCAGCGCGAGGCCGTCGTCGACGCCTACTACGGCGGCCGCACCTACCGCGAGGTGGCGGTGCGGCTCGGGGCCGCTCTGCCGACCGTCAAGACCCGCATCCGGGACGGCCTGATCCGGCTCCGCAACTGCCTGGGGGTGAACCATGGCTGAMSRNVRDTRRERVQIDREPSVGHTVRVPSPETTPLDDALVACAAGTPDSFGPVYDALAPAAYGTAIGVLRDPDHAAEVTQEVMVEVWQTAAKFDPARASARTWVVTLARRRAVDRVRAEQARRDRDQRDLDSSVAGSGYDVVSEDVERRLEGAAVRRCLDSLTGTQREAVVDAYYGGRTYREVAVRLGAALPTVKTRIRDGLIRLRNCLGVNHGPGPT0014960_7929DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_06334786hypothetical proteinATGGCTGACAGCACGCACGACGCCTGGGACCTCCTGCCCGCCTACGCGCTCGACGCCGTCGACGACCTGGAGCGCCGCGCGGTCGAGCGGCTCCTCGACACCGACCCGGCGGCCCGGCGGGCCCTGGACGAGTACCGCGAGGTGGTCGCGGCCTTCACGGTCGACACCCAGCCGCCTCCTGAGCTGCGCGACGCCGTGATGTCCCGTATCGCGCAGCGGACGACGGCGGCACCCGGCGAGCGCTCCGCGGTCGACGACGGAGCGTGGCCCGGCCCCGACGGCGAGACCCGGAGCGCTCACCCCTCCGGCGACGAGAACGTCGTGCCGATGGCCCGCCGTCGTCGCCGCTGGGGTCTGGTCGCGGCCGCAGCCGCCGCCGTGGTCGCCGTGGCGGTGCCCACGACCGTCGCGATCCAGGCGACCGTCGAGCAGAGCCAGCTGCAGCAGCAGGTCGACACGGTTGCCCAGATGATGGCCGACCCGTCGGCGCAGCTCCTGCGCAGCGAGGTCGCCGGTGGTGGACAGGCGTCCGTGCTGGTGGCCGGCGACGACTTCCTGTTCAGCGCGAGCGAGCTGCCCGACGTCGGTGCCGACTCGACCTACCAGCTCTGGCTGGTCGGTGCCGAGGGCGGCGTGACGTCGGCCGGTCTGCTGGACCCCCAGGAGGGCGCCGTCGAGCGGCTGCTGCAGGGGGTCGACGGCGTCGGGCTGGCGGTGTCGGTCGAACCGGCCGGCGGCTCGGAGCAGCCGACCACGGACCCGGTCGTCGTTCTCGCGGAGGGATGAMADSTHDAWDLLPAYALDAVDDLERRAVERLLDTDPAARRALDEYREVVAAFTVDTQPPPELRDAVMSRIAQRTTAAPGERSAVDDGAWPGPDGETRSAHPSGDENVVPMARRRRRWGLVAAAAAAVVAVAVPTTVAIQATVEQSQLQQQVDTVAQMMADPSAQLLRSEVAGGGQASVLVAGDDFLFSASELPDVGADSTYQLWLVGAEGGVTSAGLLDPQEGAVERLLQGVDGVGLAVSVEPAGGSEQPTTDPVVVLAEGNANANANANA
AK018_06335708hypothetical proteinATGAACGCATCCACTCGCACCCGCACCGCCGCCGCCGGCTTCGCCACCCTGGCCCTGCTGGCCCTGGGCGCCTGCTCCTCCGACGACACCGGCGACGACATGTCGGGTTCGGAGGACACGATGACCGAGGAGTCCATGGAGGAGGACATGGAGTCGGAGGACGACATGGCCGAGGAGTCCATGGAGTCCGAGGACGACATGACCATGGACCCCGCCGCGAACCTCGTCGGCCCCGGCTGCGAGGACTACGCCTCGCAGGTGCCGGACGGCGCCGGCTCGATCGAGGGCATGTCCACGGAGCCCGTCGCGGTGGCCGCCTCCAACAACCCGCTGCTGACCACTCTGGTCTCCGCCGTCAGCGGTGAGCTCAACCCCGACGTGAACCTCGTCGACACCCTCAACGGCGGCGAGTTCACCGTGTTCGCCCCGGTGGACGACGCCTTCGCGGCCGTCGACGCCGAGACCATCGACACGCTGTCCACCGACGCCGACCTGCTGACCTCGGTGCTGACCTACCACGTCGTCGAGGGCCAGGCGCTGCCCGAGGACGTCGTCGGTGAGCACACCACCGTCCAGGGCGACACCGTCGAGGTGACCGGCGAGGGCGACGAGCTCATGGTCAACGACGCCAACGTCGTCTGCGGAGGCGTCATGACGCAGAACGCCACCGTCTACCTCATCGACTCGGTGCTCATGCCGTCGATGTGAMNASTRTRTAAAGFATLALLALGACSSDDTGDDMSGSEDTMTEESMEEDMESEDDMAEESMESEDDMTMDPAANLVGPGCEDYASQVPDGAGSIEGMSTEPVAVAASNNPLLTTLVSAVSGELNPDVNLVDTLNGGEFTVFAPVDDAFAAVDAETIDTLSTDADLLTSVLTYHVVEGQALPEDVVGEHTTVQGDTVEVTGEGDELMVNDANVVCGGVMTQNATVYLIDSVLMPSMNANANANANA
AK018_06336618hypothetical proteinATGAGCGACATCTGGCGATTCGACGGGCGCATCCTCGGCGTCGGGACGGCGTCCGGGACGCGGGTCGTGGTCGGTATGTGGGACCGCTCGCCGTTCGGGGCGTTCGCCGACGCGATGGTGGAGGACGCCGCCGGGCGCCGCCTGCTGCTGGCCCCGGGACACGTCGCCGACTTCGTCGCCACGACCTACGGGTTCGACGACGTCGTCGAGACGCCGGTGCGGGTCGGGCACGACGGCGGCACCCCGGCGCCGGGCGGGTGGCTCACCGCCGAGGCCGGTCCGCTCCGCCTGCGTGCCGCCGTCGGGCACCGCACCGCGCTGGGCCGACTGCTCCGGCTGGTCCCGCGGCGGCTCGCCACCGCGCCGTCGTTCACCGTGCTCACCGACCCGGTCGCCCGGCTCGTGCTCGACGGGGTCCGGACGCGCGGCAGCGCCGGGAACGGGCGGCTCGAGACCTACGGGGCCACGGACGTCCACGCCGTCACGCAGGTCCACGCCACCTGGGAGGGGGAGGAGCTCGGGGCGCTCGCGGACGTCGACCCGCCGGTCCGCTTCGGGTTCGGCTCGACGCCCCGCTCACCGGTCCTGACCAGCGTCACCACGACCGTGCGGGGCTGAMSDIWRFDGRILGVGTASGTRVVVGMWDRSPFGAFADAMVEDAAGRRLLLAPGHVADFVATTYGFDDVVETPVRVGHDGGTPAPGGWLTAEAGPLRLRAAVGHRTALGRLLRLVPRRLATAPSFTVLTDPVARLVLDGVRTRGSAGNGRLETYGATDVHAVTQVHATWEGEELGALADVDPPVRFGFGSTPRSPVLTSVTTTVRGNANANANANA
AK018_063371197ddmA2Dicamba O-demethylase 2, ferredoxin reductase componentATGGACCCGATCGTCGTCGTGGGAGGTGGGCTCGCTGCGGCCCGCGCCACCGAGGGCCTGCGCCACGGCGGCTACGACGGGCCGCTCGTGGTGGTGGCCGGCGAGTCAGCCGTCCCCTACGAGCGCCCGCCGCTGTCCAAGGAGTACCTGCGCGGCGAGGCCGAGAAGTCCGACCTGCGCCCCCTCGACGCCGACTGGTACGCCGACCAGAGCGTCGACCTGCGCACCGGAACCAGCGCCACCGGGCTCGACGTCGGCGCGCGGTCGATCACGACGGCGCCCGGCGGGTCCCAGCGCTACTCACGGCTGATCCTGGCCACCGGCTCCCGGGTGCGACGGCTCGACGTGCCGGGTGCCGAGCTCGACGGCGTCCACTACCTGCGCTCCGTGCGCGACGCCGACCGGCTCGCCGAGGCGCTCGACGTCGACGGACCGGTCGTGGTGGTCGGCGACGGGTGGATCGGCATGGAGGTCGCGGCGTCGGCCCGCCAGCTCGGCCGGGACGTGACGGTCGTCGGCCGCGGCCCGCACCCGCTGGCCTCCCTCGGCGACGAGGTCGCCCGGATCTTCACCGGAGTGCACGAGGACAACGGCGTGCGTATCCTGCACGAGCGATCCGTCACGGCCCTGAGCAGCGACGACGCCCGGGTCCGTGGCGTGGAGCTCGACGACGGCACCGTGCTCGACGCCCGCACCGTCGTCGTCGGCATCGGGGTCACGCCGGAGATCGGGCTCGCCGCCGAGGCGGGCATCGACCTCGTCGACGGGTTCGGCAGCGGGATCGCCGTCGACGGCACGCTGCGCACCTCCGCACCCGACGTGTGGGCCGTCGGCGACATCGCCGCCGTCCCGTCGAGTCGGTACGACCGGCGGCTGCGCATCGAGCACTGGGCCGTCGCCGACGAGACCGGCAAGCACGCCGCCCGGTCGGTGCTGGGCTCCGGCGAACCGTACGACGTGCTCCCCTACTTCTTCTCCGACCAGTTCGACCTCGGCATGGAGGCCAAGGGCCTGACCGAGGGAGAGGTCGTGATCAGCGGGTCCGCCGAGGACCGCGAGTGCGTCGTGTTCTGGGTCGACGGCGAGCGGGTCAACGGCGCGATGGGCGTCAACGTCTGGGACCGGATGGACCACGCCGAGGAGCTGATCCGCCGCGACGGCCCGGTCGACCGGCGCGAGCTGGAACGCTTCGTCTGAMDPIVVVGGGLAAARATEGLRHGGYDGPLVVVAGESAVPYERPPLSKEYLRGEAEKSDLRPLDADWYADQSVDLRTGTSATGLDVGARSITTAPGGSQRYSRLILATGSRVRRLDVPGAELDGVHYLRSVRDADRLAEALDVDGPVVVVGDGWIGMEVAASARQLGRDVTVVGRGPHPLASLGDEVARIFTGVHEDNGVRILHERSVTALSSDDARVRGVELDDGTVLDARTVVVGIGVTPEIGLAAEAGIDLVDGFGSGIAVDGTLRTSAPDVWAVGDIAAVPSSRYDRRLRIEHWAVADETGKHAARSVLGSGEPYDVLPYFFSDQFDLGMEAKGLTEGEVVISGSAEDRECVVFWVDGERVNGAMGVNVWDRMDHAEELIRRDGPVDRRELERFVPGPT0019730_2017DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
AK018_06338603hypothetical proteinATGGCCGACGACGCGGCGACGCCGCTCTCGCAGCGCACCGCAGGGACAGCCCGCCGACTGTGGGGGCTCGTCTATCTGCGGGCCGCCGCCTATCTCGTCGTCGGCGTCCTGCTGCTGATCAACCCCGACGAGGGGATCACCTGGCTGCGCTGGCTCGTAGGACTCGTCATCGTCGCGCAGGGCGCCCTCCTCGCGATCGAGAACCGACCGGCGAAGGAGTCGGGACCGGCGGCCCAGGAGATCACCGTCCGGTTCGTCGTCGGGCTCGCGAGCGTGGTCGCCGGACTGCTGGTGGTGCTCTGGCCCTCCATGACCGCCGACCTGCTCGTCCTCGTCGTCGGTGTCTGGGCCTGCGCGGCCGGCGTGATGGGTGTCGTCGCCGGCCTGCGCGGCCGCACCGCGCGCACCATGGCCTGGGACTGGCAGCTCGTCAACGCGGTGCTGTGGGTCGTGCTCGGCGTCGTCCTGCTCGCCCAGCCCGCCGAGGGCGCGACGACGATCGCCCTGCTGCTGTCGCTGTACCTGCTGCTCTCCGGTGCCGTGCTCCTCGTCGGCGCGCTGGCGACCAGTACCCGGCAGAAGGACCTCGACGCCGCCACCTGAMADDAATPLSQRTAGTARRLWGLVYLRAAAYLVVGVLLLINPDEGITWLRWLVGLVIVAQGALLAIENRPAKESGPAAQEITVRFVVGLASVVAGLLVVLWPSMTADLLVLVVGVWACAAGVMGVVAGLRGRTARTMAWDWQLVNAVLWVVLGVVLLAQPAEGATTIALLLSLYLLLSGAVLLVGALATSTRQKDLDAATNANANANANA
AK018_06339975galRCOG1609HTH-type transcriptional regulator GalRATGCCCGTCACCAGTGCCGATGTCGCACGCGCCGCCGGCGTGTCCCGGACCACCGTCAGCTACGTCCTCAACGACACCCCCGGCACGAACATCTCGACCGCGACGCGGGACCACGTCCTGGCCACGGCCGCCGACCTCGGGTACGCGCCGTCGGCCGCCGCTCGTGCCCTGCGCCGGGGTCAGAGCGACCTGGTCGTGTGCGTCCTGCCCGACTGGCCCACCGGCCCCGTCGTCGACACCGTCCTGGACCTGCTGACCGACAACCTCGCCCAGCGCGGGCTCTTCCTGCTGGTGCACCACCACCGCTCGACGCGACCGCTGCGCGAGCTGTGGAAGGCCGTGACACCCCGCGTCGTCGTCGGCCTCACGCACTTCCCCACCGAAGACCTACGGGCGCTGCGTCAGGCCGGCATCGAGGTCGTGGGGGCAGGGTCCGTGGACGACGGCGGACACCCCGGCATCGACGCCGGCAACCAGCGGGGCCTCGGCGAGCTGCAGGTGGAGCACCTGGTGGCGCAGGGGTACCGACGCCTGGCCATCGCCACCACGCCGGACGATCGGCTGCGCGAGTTCGCCGAGCTGCGCACGGACGGCGTGCGCCGGGCCTGCGCGCAGGCCGGACTGCCCGAGCCGCAGCTCGCCGTCGTCGACCCCGGCGTGCCGGCGACGGACGTCGTGCAGCGGTGGTCGCGTGACGGCGTCGACGCGGTCGCCTGCTACAACGACGAGGTCGCGCTCGCCGTGCTGGCCGGGGCGCGCGCGGAGGGCGTCGAGGTGCCCGGTCGCCTCGCGGTCATCGGGCTCGACGACGTGCCGGCCGCCGCGCTGGCGGATCCGCCGCTGACGACGATCGCCCAGCCCAGCGCCGCGCAGGCGCAGCACCTGGCCGCGAGCGTGGAGGCCGTGCTGGACGGCAAACCCCTGCCGCCGGGACCCACGGAGCCGAGTCGTGTCGTCGTCCGCGCCTCGACATGAMPVTSADVARAAGVSRTTVSYVLNDTPGTNISTATRDHVLATAADLGYAPSAAARALRRGQSDLVVCVLPDWPTGPVVDTVLDLLTDNLAQRGLFLLVHHHRSTRPLRELWKAVTPRVVVGLTHFPTEDLRALRQAGIEVVGAGSVDDGGHPGIDAGNQRGLGELQVEHLVAQGYRRLAIATTPDDRLREFAELRTDGVRRACAQAGLPEPQLAVVDPGVPATDVVQRWSRDGVDAVACYNDEVALAVLAGARAEGVEVPGRLAVIGLDDVPAAALADPPLTTIAQPSAAQAQHLAASVEAVLDGKPLPPGPTEPSRVVVRASTNANANANANA
AK018_06340288hypothetical proteinGTGTGGCCCGTGTCCGCACCGCCCCCGTCGGCCTCCCGTGACCGCCTCCACGGACTCCTGCGCCTCGTCCTGGTGATCGGCACCGGCCTCGCGGTCGCCGACGGCTTCCGCTGGGGGAACCGGCTCTACCTGTCGACGCAGTTCGCCGACGTCGACCTCGCCTACGCGGCCGACCTGGCCGCGCATGCCCGGGACGCCCTGGCGCACGGCCTGGTCTGGCTCGTCGTCGCGGCTCTGGCGACCGTCGTCGCGTGGCTCCTGCATCCGCGGTCACGGCCCGCCGCGTAGMWPVSAPPPSASRDRLHGLLRLVLVIGTGLAVADGFRWGNRLYLSTQFADVDLAYAADLAAHARDALAHGLVWLVVAALATVVAWLLHPRSRPAANANANANANA
AK018_063411716malL_3COG0366Oligo-1,6-glucosidaseGTGAAAGACCTGCTCGACCGACCCGTCGTCAACATCGACGGCACCGACGCCTCGCCCGACCCGAACTGGTGGCGACAGGCCGCCGTCTACCAGATCTACCCGCGCTCCTTCGCCGACAGCAACGGCGACGGCATCGGCGACCTGCGCGGCATCACCACACGCGTGGACTACCTCGCCGCACTGGGAATCGACGCCGTGTGGCTCAGTCCGTTCTACCCGTCCGGACTGGCCGACGGCGGCTACGACGTCGCCGACTACCGCGACGTCGACCCGCGCATCGGGACGCTGGCCGACTTCGACGAGATGGTCGCTACGCTGCATGGCGCCGGCATCCGCGTCGTCGTCGACATCGTGCCGAACCACACGTCGAACGAGCACGAGTGGTTCCGCGCCGCGCTGGCCGCCGGGCCGGGCAGCCCCGAGCGGGAGCGCTATATCTTCCGCGACGGCACCGGACCGGACGGCGCCGAGCCGCCGACCGACTGGGAGTGCATGTTCGGCGGTCCCGCCTGGGACCGCGTCACGGAGCCCGACGGCACGCCCGGCCAGTGGTACCTGCACCTGTTCGCCCCCGAGCAGCCCGACCTCAACTGGGCCAACCCCGAGGTGCGCGACGACTTTCTGCACACGCTCCGATTCTGGTCCGACCGCGGCGTCGACGGCTTTCGCATCGACGTCGCCCACTCCCTGACCAAGGACCTCACCGAACCGCTGCCCTCGGCGGCGCAACTGGCGGCGCACCCGCGCGACAACGGCGACCACCCCCTGTGGGACCGCAACGACGTGCATGAGATCTACGCCGCGTGGCGTCGGGTCTTTGACTCCTACGACCCACCGCGCACCGCGGTCGCCGAGGCCTGGGTGGAGCGGCACCGTCGACCGCGCTACGCCAGCGCAGAGGGTCTCGGGCAGGCGTTCGAGTTCGACCTGCTGGTCGCCGAATTCGACGCCGCCGCGTTCCGCGAGGTCGTCACGGACAGCCTCAAGCTCGCCGCGGTCTCCGGCTCGTCGTCCACGTGGGTGCTGTCCAACCACGACGTGGTGCGCCACGCGACCCGATACGGATTGCCGCCGCTGCCGACGCCGCCGGGTCGCACGGTGTCCGCGGACACGCTGGGCGGGGGGGGGGTGCCCACGGGGGCGGCCGCGTCGGCGCGCGACCGCGCGGCGGGCGAGCGCAAGGCCCGGGCAGCGACCCTGTTCGAGCTGGCACTGCCGGGGTCCGCGTACCTCTACCAGGGCGAGGAGCTCGGGCTGCACGAGGTCGGCGACATCCCGGACCACGCCCGCCAGGACCCGACGTTCTTTCGCAGCCCCGGCGTCGACAAGGGCCGCGACGGCTGCCGCGTTCCGCTGCCGTGGACCGCCGGCGGCCCGTCGTTCGGCTTCGGCGATTCCGCCGCACACCTGCCCCAGCCGCCCTGGTTCGCCGACCACGCCGCCGACGTCCAGGACGGCGTCGAAGGCTCCACGCTGTCGATGTACCGCGCCGGCCTCGCGCTGCGGCACAAGCTCCAGACGGCGGAGCGACTCGAGTGGCTCGAGACCGGCGCCGCTGACGTGCTCGCCTTCCGCCGCCCGAACGGCTGGACGTGTGTCACAAACTTCGGAGACACGCCCGCCCCGCTGCCCGCAGGCGACGTCCTGCTCACCAGTGGACCGCTCGCCGGCGGCGCGCTGCCCGGTGCGACGACGGCGTGGGTCCTGCCAGGATGAMKDLLDRPVVNIDGTDASPDPNWWRQAAVYQIYPRSFADSNGDGIGDLRGITTRVDYLAALGIDAVWLSPFYPSGLADGGYDVADYRDVDPRIGTLADFDEMVATLHGAGIRVVVDIVPNHTSNEHEWFRAALAAGPGSPERERYIFRDGTGPDGAEPPTDWECMFGGPAWDRVTEPDGTPGQWYLHLFAPEQPDLNWANPEVRDDFLHTLRFWSDRGVDGFRIDVAHSLTKDLTEPLPSAAQLAAHPRDNGDHPLWDRNDVHEIYAAWRRVFDSYDPPRTAVAEAWVERHRRPRYASAEGLGQAFEFDLLVAEFDAAAFREVVTDSLKLAAVSGSSSTWVLSNHDVVRHATRYGLPPLPTPPGRTVSADTLGGGGVPTGAAASARDRAAGERKARAATLFELALPGSAYLYQGEELGLHEVGDIPDHARQDPTFFRSPGVDKGRDGCRVPLPWTAGGPSFGFGDSAAHLPQPPWFADHAADVQDGVEGSTLSMYRAGLALRHKLQTAERLEWLETGAADVLAFRRPNGWTCVTNFGDTPAPLPAGDVLLTSGPLAGGALPGATTAWVLPGPGPT0018560_3552DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_06342903melC_5COG0395Melibiose/raffinose/stachyose import permease protein MelCGTGACGACGACACCCGTGGCATCCACGACAATCAACCGGCCCCCCGTCGCGGCCACCGGGGCCCCGCGCCGCGCGCGGCGGGCAGAGCGGACGAACCGACCAGGGACGATCGTCCTCGTCCTGTGCGCCGTCACCGTGTTGCTTCCGCTCTACGTGACCGTCGCGATGGCGTTCAAGACGCCGGGCCAGGCGGTCGACGGGAACGCCTTCTCCCTGCCCGTGCCGGTCAGCGTCCAGGGCTTCGTCGAGGCGTGGCAGCTCACCCGGTTCCCCGTCGGGCTCGCGATGTCGCTGCTCGTGACCGCGGGGACGGTCGCGGCGACGATCCTCCTGGCCGCGCTCGCGTCGTACGCGATCATGCGCAACTGGGAACGCCGCCTGTTCCGCTGGTCGTTCTTCTACCTGCTCGCGGCGATGTTCATCCCGTTCCCCGTGGTGGCACTGCCGCAGATCCAGCTCACCGGACGGCTCGGCCTCGACAACCCGGTGGGCGTCATCCTGCTCGCCACGATGTTCCAGCTGAGTTTCAGCGTGCTGCTGTTCACTGCGTTCCTGCGGTCGATCCCGCCAGAGCTCGAGCAGAGCGCGCGGATCGACGGCGCGACGACCTGGCAGACGTTCTGGCGGCTCATCTTCCCGCTGCTCGCCCCCATGAGCGCCACGGTCGGGATCTTCGCCTTCCTCTACGCCTGGAACGACTTCATGATGCCGTCGCTCATCATCTCCGACCCGGCGCTGCAGACGCTTCCGGTGCGCCAGCAGCTGTTCCAGACGCAGTTCAGCAACAACTACCACGTGTCCTTCGCGTCCTACCTCATGGCGATGGCGCCCGCGATCGTCGCCTATCTGTTCGCGCAGCGCTGGGTGATGGCCGGCGTCACCCAGGGCGCCGTGAAGGGCTGAMTTTPVASTTINRPPVAATGAPRRARRAERTNRPGTIVLVLCAVTVLLPLYVTVAMAFKTPGQAVDGNAFSLPVPVSVQGFVEAWQLTRFPVGLAMSLLVTAGTVAATILLAALASYAIMRNWERRLFRWSFFYLLAAMFIPFPVVALPQIQLTGRLGLDNPVGVILLATMFQLSFSVLLFTAFLRSIPPELEQSARIDGATTWQTFWRLIFPLLAPMSATVGIFAFLYAWNDFMMPSLIISDPALQTLPVRQQLFQTQFSNNYHVSFASYLMAMAPAIVAYLFAQRWVMAGVTQGAVKGPGPT0016340_121DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_06343912melD_12COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACCACACTCACGACGACGGCGCCCGGCAGCGCCGGACACACGCGGCGCCGGCTCCGGCGAGTCGACCCGGTCTACTACCTCTTCCTGCTGCCGAGCCTGGTCCTGTTCACCCTGGCGATCACGGTCCCCGGGATCGTCGGCATCTTCTTCAGCTTCACGAACTCGATCGGCATCGGCGACTGGGAGTTCATCGGCCTCACCAACTACGTTGCCGCCTTCGGCGACCCCGCCATCCTGCAGAGCTACTTGTTCACGTTCGGCTTCGCGCTCGCGACCGTCGTCGTGGTGAACGTGGTGGCCTTCGGCCTGGCAGTCGGCCTGACTTCACGCATCCGGATGAAGGTGGGCCTGCGGGCCGTCTTCGTCATCCCGATGGTCGTGTCCGGCATCATCATCGCCTACGTCTTCAACTTCCTGTTCTCGAACTCCCTGCCCGTCGCCGGGCAGGCGCTCGGCATCCCGTTCCTCTCGACCAGCCTGCTGGCCAACCCCGACCTCGCCTGGGTCGCGATCGTCGTCGTGACGGCCTGGCAGGCGATCCCCGGGGCGCTGCTCATCTACATCGCGGGGCTGCTCGCCATCCCGGGCGACGTGTACGAGGCCGCCGACATCGACGGTGCGAGCAAGCGCCAGCAGCTGACGCGGATCACCCTGCCGCTGATGTCCGGCTACGTCGTCATCAACGTCATCCTCGGCTTCAAGAACTTTCTCAACGCCTACGACATCATCGTCGGCCTCACCGGCGGCGGGCCCGGCACCGCCACCCGCAGCATCGCCATGACCATCATCTCCGGCTTCAACGGCGGCGATTACGCCTACCAGATGGCCAACGCGACGATCTTCTTCGTCGTCGCCGTCCTGATCGCCGTGCTGCAGCTCAAGCTGACGCGCGGAAGGAGCGCACTGTGAMTTLTTTAPGSAGHTRRRLRRVDPVYYLFLLPSLVLFTLAITVPGIVGIFFSFTNSIGIGDWEFIGLTNYVAAFGDPAILQSYLFTFGFALATVVVVNVVAFGLAVGLTSRIRMKVGLRAVFVIPMVVSGIIIAYVFNFLFSNSLPVAGQALGIPFLSTSLLANPDLAWVAIVVVTAWQAIPGALLIYIAGLLAIPGDVYEAADIDGASKRQQLTRITLPLMSGYVVINVILGFKNFLNAYDIIVGLTGGGPGTATRSIAMTIISGFNGGDYAYQMANATIFFVVAVLIAVLQLKLTRGRSALPGPT0016335_1088DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_063441317hypothetical proteinATGACGGCCGGCATGTGGCGAACACCCTCCCCCGGGACGGCGGCCCCCGCCGGGCCCCGCCGGGCAGTACGCACGACGGCGGGATGCGTGGGCGTGGTCCTGGCAGCCGGCCTGCTCACCGGCTGCGGCGCCGGCGAGGACGGCGCCGAGACCGTCCGCTTCACCTTCAGCAAGCGCGAGGCCATCGACTTCATGACCGGTGTGGTCGACGAGTACAACGCCTCCCAGGACGACGTCGAGGTCGTGCTCGACACGTCGGGCGTCGACGTCGTCTCCGCGAGCTTCGTGCGCGGCAACCCGCCCGATCTCATGCTCGCGAACTACAACATGGAGGTCGCGCGGTTCGTCGAGCGCTGCACGCTCAGGGACCTGTCGGACACCCAGGCCGCGAGCCAGGTGCGCGAGGACCTGCAGCCGCTCATGGACCAGTACGGGCGCTGCGAGGACCGCACGAGCGCCCTGCCGTACTCGGTGATGGCGTCCTCGGTGATCTACAACAAGGAGATCTTCGCCGAGTACGACCTCGAGGTGCCGCAGACATGGAGCGAGCTGCTCGACGTCGCCGACACGCTCGCAGCGGCGGGCGTGACGCCGTTCTACGGCACGTTCAAGGACGACTGGACCGTCGGCCAGGGGTGGTTCGACTATGCCGTCGGCGGCCAGGTCGACACCATCGAGTTCTTCGACCGGCTCGCCGCCGAGGGCACGGACGTCGGCCCCGACTCCGCGGTGTCGTTCCAGCAGGACTTCGCGGACCCGCTCGCGCAGATGACCGAGCTCACCAGCACCTACACCAACGCGGACGCTCCGAGCCGCGCCTACGGCGACGGCAACCTCGCCTTTGCCCAGGGCGAGGCCGCAATGTACCTGCAGGGGCCGTGGGCCCTCGGCGAGATCGCCAAGACCTCGCCCGACCTGGACGTCGGCACCTTCCCCCTGCCGATGACCGAGGACCCGGACGACCTCAAGGTCCGCGTCAACGTCGACCTCGCCGCGATGATCCCCGAGGGCGCGGCACACCCCGACGCAGCCCGCGACTTCCTCGAGCACCTGTACCGGCCCGAGGTGATCCAGGCGTACAACGAGTCCCAGCTCGGCTTCGCACCGACCGTCCACGCGCCGCCCCCGAGCGACCCGCGCATCGAAGGTATGACCGAGTACTACGACGCCGGCCAGGTGTACCAGGGGGCGTCGGTGCTCGTCCCCAAGACCATCCCCGTCTTCAGCTACGCCCAGGCCGTCGTCCTCGGCGACGACCCCGCGCGGTGGCTACGGACCCTCGACGCCGACTGGGCCCGCCTGGCCCTGCGCCAGTAGMTAGMWRTPSPGTAAPAGPRRAVRTTAGCVGVVLAAGLLTGCGAGEDGAETVRFTFSKREAIDFMTGVVDEYNASQDDVEVVLDTSGVDVVSASFVRGNPPDLMLANYNMEVARFVERCTLRDLSDTQAASQVREDLQPLMDQYGRCEDRTSALPYSVMASSVIYNKEIFAEYDLEVPQTWSELLDVADTLAAAGVTPFYGTFKDDWTVGQGWFDYAVGGQVDTIEFFDRLAAEGTDVGPDSAVSFQQDFADPLAQMTELTSTYTNADAPSRAYGDGNLAFAQGEAAMYLQGPWALGEIAKTSPDLDVGTFPLPMTEDPDDLKVRVNVDLAAMIPEGAAHPDAARDFLEHLYRPEVIQAYNESQLGFAPTVHAPPPSDPRIEGMTEYYDAGQVYQGASVLVPKTIPVFSYAQAVVLGDDPARWLRTLDADWARLALRQPGPT0016330_968DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
AK018_063451260nagC_4COG1940N-acetylglucosamine repressorATGACCGACGGCCTGGAGGCGACAACGCCCTCCACGCACCTGCTGCGACGGCTCAACGCCGAGCGCGTGCTGCGGGAGGTGTGGGACGGCGATCCCGTGACGGCGAGCGCGCTCATGGCCGCCACCGGCCTCGCGCGCTCTACCGTGCTGGCGCTGTGCCGCGACCTCATGGACCGGGGGTGGCTCGCGGAGCTCGACGACGCCCGTGCCGCGGGGTCGTACACGAAGGGTCGGCCGGCGCTGAGGTACGCGTTCCGCCCGGACGCGGCGACGGTCGTCGGGGTAGACGCCGGGCAGCACCGCATCTCGGCCGCCGTCGCTGACCTGCACGGCACGGTGCTGGCCGAGCACTCCGAGCACGTCGACCCGGACGGCAGTGCGAAGGTGCGCCGGGCCGCCGTCGTCCACACGGTCGACGCGGCCATGGCCGGTGCTCGCCGGAGCGATGGCGCGGTGGTGGCCGCCGTGATCGGCGTGCCCGCGCCGGTCGAGGATGCGGGGACACCGGCGGGCGAGCGCAATCCGTTCTGGGCGCGGATGAACCCCGGGCTGGCCGACCTGTTCGCGCCCCGCGGCTGGGACACCGTCGTCGAGAACGACGCCAACCTCGCTGCGGTGGCCGAGGCCGAACACTCCGGCGGTGCCCAGTCGTACGCGGCGCTCCTGGTCGGGGAGCGCTTCGGCGCGGGGATCGTGCTCGACGGCGCGCTGCGGCGCGGCCCCCGGGGATCCGTCGGCGAGCTCCGGATCCTCGACCTGGTCGCGGGGGTCGGGGACACCTTCGGCCTGGGCGCTGTCGCCCGAGACGAGGCGCACCGGGTCCTCGCCGAAGGCCGCGCCGAGGGCAGCGTCCTCGCGCACGTCGCCCCCGACCGGCTGGACGCGGAGCACGTGCTCGCAGCGGCCCGCGAGGGTGACGCCGTCGCCGCCGACATCCTCGAGCGGCTCGCGGACCGGCTGGCGCGGGTGTGTGCGGTGCTCTCGGGGTTGCTGGACCTCGACCGGGTCGTCGTCACAGGGGCCATGGCCCCGTCCCTCGGCGAGGTCGTGGACCGAGCACGCGAACTGCTTCTGGATCACTTGGACGACCCGGCCGTGGAGGTCATCATCTCCGACCGCGGACCGGACGTCGTGCGGTTGGGCGCTGTGCGGCAGGCCGTCGACCACGTCCGGGCGCACGCACTCGACCGGGACCTGCCCACGGCCGAGGACGAGGACCCGGCACCGCCGCAGCACCCGAGGTCGACGTCCGCGAACTAGMTDGLEATTPSTHLLRRLNAERVLREVWDGDPVTASALMAATGLARSTVLALCRDLMDRGWLAELDDARAAGSYTKGRPALRYAFRPDAATVVGVDAGQHRISAAVADLHGTVLAEHSEHVDPDGSAKVRRAAVVHTVDAAMAGARRSDGAVVAAVIGVPAPVEDAGTPAGERNPFWARMNPGLADLFAPRGWDTVVENDANLAAVAEAEHSGGAQSYAALLVGERFGAGIVLDGALRRGPRGSVGELRILDLVAGVGDTFGLGAVARDEAHRVLAEGRAEGSVLAHVAPDRLDAEHVLAAAREGDAVAADILERLADRLARVCAVLSGLLDLDRVVVTGAMAPSLGEVVDRARELLLDHLDDPAVEVIISDRGPDVVRLGAVRQAVDHVRAHALDRDLPTAEDEDPAPPQHPRSTSANNANANANANA
AK018_063461152bfrACOG1621Beta-fructosidaseATGACATGCCTGCCGGGCCTTGCCACCAATCCCGGCCTGCACTGGGACGAGCTCGACGTCGTCCTCTCCCCCGGCGACGGGGACGACGGAGTCTGGTCCGGAACTGTCGTCCCCACGCCCGACGGCGCAACGCTCCTCTACACCGCGGTCGACGTCCCGGACGTCCAGATCGGCCGGGTCCGGAGCGCCCGACCCACCGACGACACCTGGACCGCCTGGACCAAGGGGCCGGTGGTCGCGACGGTCCCGGACGAGGTCGAGGTGATCGCGTACCGAGACCCGTACGTCTTCCACGACGGTGACCACTGGCGGATGCTCATGGGCGTCGGCTTCACGGACGGCGCAGCAGCAGCGTTGGTCTACGCGTCGGACGACCTCGAGAACTGGGTGTACGACGGCGTGCTCGCCGCCCGCCACGGCAACGAGACGGACCCCGAGTGGACCGGCACCGTGTGGGAGTGCCCGCAACTGTTCCCCGTCGGCGACCGCTGGGTGCTGGTCGTGTCGGTCTGGGAGCCGGAGGTACCCCACTACGTCGCCTACGCGATCGGCAGCTACGCGGACGGTCGCTTCCACGCGGAGAGCTGGCACCGGCTGTCCTACGGCCCGGCCTACTACGCCGCATCGACGTTCGTCGACGCCGACGGCGGACGTGGCCTGATCCACTGGCTGCGGGGAGTCGGCGACCTTGACGGTCGCTGGGCCAGCGCGCACAGCCTCCCGCACCGCCTGAGCCTCGAGGCAGGCCGTCTGGTCGCCGCTCCGCCACCGGCCGTGGACGCACTGCGCGCAAGGACCGTCGAGGTCGACGGCACGGCGAGCCGCACCGTGGCTCCGTTGCCGACCGCCTGCGACGTCGAGTGGACAGCGATCGCCGATTCCACGCTGCGCCTGACCGCACCCGACGGCTCGGAGGGGGCGACGCTCACGGCGTCACCCACGGCACTCGAGGTGCGGACGGCGGACGGCGACTGGGGGTCCGTCCCGCTCGTCGATCCCCGCGTCCGGGTGATCCTTGACGGCCCCGTGCTCGAGGTCTTCACCACCGCGGGTGTTCTCGCGGCCCACACCCCCTGGCACACCGGTGAGTCCGCTCTGGAGGTCCGCGGAGCGACGGCCCGCGTGCACCGCCTCGACAGCACCCGTTCCTGAMTCLPGLATNPGLHWDELDVVLSPGDGDDGVWSGTVVPTPDGATLLYTAVDVPDVQIGRVRSARPTDDTWTAWTKGPVVATVPDEVEVIAYRDPYVFHDGDHWRMLMGVGFTDGAAAALVYASDDLENWVYDGVLAARHGNETDPEWTGTVWECPQLFPVGDRWVLVVSVWEPEVPHYVAYAIGSYADGRFHAESWHRLSYGPAYYAASTFVDADGGRGLIHWLRGVGDLDGRWASAHSLPHRLSLEAGRLVAAPPPAVDALRARTVEVDGTASRTVAPLPTACDVEWTAIADSTLRLTAPDGSEGATLTASPTALEVRTADGDWGSVPLVDPRVRVILDGPVLEVFTTAGVLAAHTPWHTGESALEVRGATARVHRLDSTRSPGPT0018815_2905DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FRUCTOFURANOSIDASE,PGPT0018815-sacA-K01193NANA
AK018_06347621garD_3COG2721Galactarate dehydratase (L-threo-forming)GTGCTCGCCGAGACGCCCGAGGTCTACGGCGCCGAGCACCTGCTCACCGCGCGGGCCACCCGGCCCGAGGTCGCCCAGAAGCTCCTCGACCAGCTCGAGTGGTGGCGCGGATACATGGCCGCCGGGCAGGGGACGCTCGACAACAATCCGTCCCCGGGCAACAAGGCCGGCGGGCTGACCACCATCCTGGAGAAGTCGCTCGGGGCGGTCGCCAAGGGCGGCCAGGCCGACCTGTCGGCCGTGTACGACTACGCCGAGCCGATTACTGACCCCGGTTTCACGTTCATGGACACCCCTGGCTACGACCCCGTCTCGGTGACGGGCATCGTGGCCGGCGGCGCGAACGTCGTCGTGTTCACCACGGGTCGCGGGTCGGTGTTCGGCTGCCGCCCCACGCCGTCGATCAAGGTCGCCACGAACACGCCGATGTACGAGCGCATGCGCGAGGACATGGACCTCGACGCCGGGCGCATCGTCGACGGCACGGCGTCGCTGGAAGAGGTCGGCGCCGAGCTGCTCGCCATGATCCTCGCGGTCGCCTCCGGTGAGCAGACCGTCTCCGAGGAACTCGGCATCGGCGCCGAGGAGTTCATCCCCTGGCACCTCGGCGCCGTGACCTGAMLAETPEVYGAEHLLTARATRPEVAQKLLDQLEWWRGYMAAGQGTLDNNPSPGNKAGGLTTILEKSLGAVAKGGQADLSAVYDYAEPITDPGFTFMDTPGYDPVSVTGIVAGGANVVVFTTGRGSVFGCRPTPSIKVATNTPMYERMREDMDLDAGRIVDGTASLEEVGAELLAMILAVASGEQTVSEELGIGAEEFIPWHLGAVTPGPT0018305_245DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018305-uxaA-K01685NANA
AK018_06348900atpG_2ATP synthase gamma chainATGGCCGGAGGATCCCAGCGCGTCTACAAGCAGCGGATCAAGTCGACGCAGTCGCTGAAGAAGGTGTTCCGCGCGCAGGAGCTGATCGCGGCGTCCCGCATCGGCAAGGCCCGCGGTCGCACGGCAGCCGCGGCCCCGTACGAGCGGGCGATCACCCGCGCGGTGTCGGCGGTCGCGACGCACACGGCGACCGACCACCCGCTGACCACCGAGCGCACTGACACGAACCGGGTCGCGGTCCTCGTGATCGCGTCGGACCGCGGCATGGCGGGGTCCTACTCGGCCTCGATCATCCGCGAGGCCGAGCGGGTCGTGGCCCGGCTGACCGCCCAGGGCAAGGAGGTCTCCCTCTACGCCACCGGTCGCCGTGCGATCTCGTACTTCCGCTACCGCGAGCGTGAGCTGGCGGGCGAGTGGTCGTACGGGTCGGACAGCCCGGAGGCCGAGGTGGCCGGCGAGATCGCCGACACCCTGCTCGGGGCGTTCCTCGCCCCGGCGGCCGAGGGCGGCGTCGGCGAGCTGCACGTGGTCTACACGCAGTTCGTCAACATGGTCAGCCAGAAGCCGCGGGTCGTGCGGATGCTGCCGCTCGAGGTCGTGGAGGGCGTCGCCGTGCCCGGCGAGAACGACGCCCTGCCGCTGTACGACTTCGAGCCGTCGCCCGAGGGCGTGCTCGACGCCCTGCTGCCGCGGTACGTGCGCAGCCGCATCTTCAGCTTCATGCTGGAGGCCGCGGCCTCCGAGCTGGCCTCGCGCCAGCGTGCGATGCACACGGCGACCGACAACGCCGAGGACCTGATCCGTACCTACACGCGCCTGGCGAACCAGGCCCGCCAGGCGGACATCACCCAGGAGATCAGCGAGATCGTCTCGGGTGCTGACGCCCTCGCGGCGTCGTGAMAGGSQRVYKQRIKSTQSLKKVFRAQELIAASRIGKARGRTAAAAPYERAITRAVSAVATHTATDHPLTTERTDTNRVAVLVIASDRGMAGSYSASIIREAERVVARLTAQGKEVSLYATGRRAISYFRYRERELAGEWSYGSDSPEAEVAGEIADTLLGAFLAPAAEGGVGELHVVYTQFVNMVSQKPRVVRMLPLEVVEGVAVPGENDALPLYDFEPSPEGVLDALLPRYVRSRIFSFMLEAAASELASRQRAMHTATDNAEDLIRTYTRLANQARQADITQEISEIVSGADALAASPGPT0014297_1337DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014297-atpG-K02115NANA
AK018_063491632atpA_2ATP synthase subunit alphaATGGCTGAGCTGACGATCCGGCCGGAAGAGATCCGCGCCGCGCTGGACAGCTTCGTGAAGTCCTACGAGCCCGAGGGCGCGGTGACCGAGGAGGTCGGCCGCGTCACCTTCGCCGCCGACGGCATCGCCAACGTCGAGGGCCTGCCCGGCGCCATGGCCAACGAGCTGCTGCGTTTCGAGGACGGCACGCTCGGCCTGGCGCTGAACCTGGACGTCCGCGAGATCGGTGTCGTCGTCCTCGGCGAGTTCACCGGCATCGAGGAGGGCCAGGAGGTCCGCCGCACGGGCGAGGTCCTCTCGGTCCCCGTCGGCGAGGGCTACCTCGGCCGCGTCGTCGACCCGCTGGGCAACCCGGTGGACGGTCTGGGCGACATCGAGACCGAGGGCCGCCGTGCCCTCGAGCTCCAGGCACCCGGCGTCATGCAGCGCAAGTCGGTGCACGAGCCGCTGCAGACCGGCATCAAGGCGATCGACTCGATGATCCCGATCGGTCGTGGTCAGCGTCAGCTGATCATCGGCGACCGCCAGACCGGCAAGACGGCGATCGCGATCGACACGATCATCAACCAGAAGGCGAACTGGGAGTCCGGCGACCCCGAGAAGCAGGTGCGCTGCATCTACGTCGCGGTGGGCCAGAAGGGTTCGACCATCGCCTCGGTGCGCGGCGCCCTCGAGGAGGCCGGAGCGCTGGAGTACACGACGATCGTCGCGGCCCCGGCCTCCGACCCGGCCGGCTTCAAGTACCTCGCCCCCTACACCGGCTCGGCCATCGGCCAGCACTGGATGTACGGCGGCAAGCACGTGCTGGTCATCTTCGACGACCTGTCCAAGCAGGCCGAGGCCTACCGCGCCACGTCGCTGCTGCTGCGCCGCCCGCCGGGCCGCGAGGCCTACCCGGGTGACGTCTTCTACCTGCACTCCCGGCTGCTGGAGCGTTGCGCGAAGCTGTCGGACGAGATGGGCGCGGGCTCGATGACCGGTCTGCCGATCATCGAGACGAAGGCGAACGACGTCTCGGCGTACATCCCGACGAACGTCATCTCCATCACCGACGGTCAGATCTTCCTGCAGTCCGACCTGTTCAACGCCGACCAGCGCCCGGCGGTCGACGTCGGTATCTCCGTCTCCCGCGTCGGCGGTGACGCCCAGGTCAAGGCCATGAAGAAGGTCTCGGGCACGCTGAAGCTCGAGCTGGCCCAGTACCGCGCGCTCGAGGCGTTCGCGATGTTCGCCTCCGACCTCGACGCCGCCTCGCGCGGCCAGCTGGCCCGCGGCGCCGTGCTGATGGAGCTGCTCAAGCAGCCGCAGTACACCCCGTACCCGGTCGAGGAGCAGGTCGCCTCCATCTGGGCCGGTACCCGTGGCAAGCTCGACGACGTCCCGGTGGACGACGTCAAGCGGTTCGAGTCGGAGTTCATCGAGCACCTGCGCCGCAACACCGAGGTGTTCACGACGATCACCGAGACCGGCAAGCTGGAGCAGGAGACCGAGGACGCGCTGACCGCGGCGGTCGAGGACTTCCGCGACGGCTTCCTCAAGGGCGACGGCACCCCGCTCGTCGGCGGCGAGGCGGACTCCGAGGCCGCCGCGGACGCCGAGCAGGAGCAGCTCGTCGTGCAGAAGAAGGGCTGAMAELTIRPEEIRAALDSFVKSYEPEGAVTEEVGRVTFAADGIANVEGLPGAMANELLRFEDGTLGLALNLDVREIGVVVLGEFTGIEEGQEVRRTGEVLSVPVGEGYLGRVVDPLGNPVDGLGDIETEGRRALELQAPGVMQRKSVHEPLQTGIKAIDSMIPIGRGQRQLIIGDRQTGKTAIAIDTIINQKANWESGDPEKQVRCIYVAVGQKGSTIASVRGALEEAGALEYTTIVAAPASDPAGFKYLAPYTGSAIGQHWMYGGKHVLVIFDDLSKQAEAYRATSLLLRRPPGREAYPGDVFYLHSRLLERCAKLSDEMGAGSMTGLPIIETKANDVSAYIPTNVISITDGQIFLQSDLFNADQRPAVDVGISVSRVGGDAQVKAMKKVSGTLKLELAQYRALEAFAMFASDLDAASRGQLARGAVLMELLKQPQYTPYPVEEQVASIWAGTRGKLDDVPVDDVKRFESEFIEHLRRNTEVFTTITETGKLEQETEDALTAAVEDFRDGFLKGDGTPLVGGEADSEAAADAEQEQLVVQKKGPGPT0014298_595DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014298-atpA-K02111NANA
AK018_06350816atpH_3ATP synthase subunit deltaATGCGAGGCACGAGCGGAGCATCCCTGGCAGCCGCCCAGGAGCGGTTCGAGCCGGTGCTGCGGTCCGCAGGGACCGACGCCGCCACGCTGGGCGAGCAGCTGTTCGCCGTCGTGAGCGCGCTCGACGGGTCGGCCCCGCTGCGCCGCTCGCTCGCGGACCCCTCGCGGGACGGCGAGGACAAGGCCCGTGTCGTCGCGGCGGTGCTGGCCGACGGTTTCGACGAGCGCGTGGTCGACTTGGTGGCCGGGCTGGCCCGGTCGCGGTGGTCGAGCGACGCCGACCTCGGTGACGCGGTCGAGCGACTGGCGGTCGACGCCGTGCTCGCCGCCGCCGAGTCCCGCGACGCGCTCGAGACGGTCGAGGACGAGCTCTTCGTCCTCACCCGTGCGCTGGTGGGCCAGCGGCAGGCACGTCAGGCGCTCTCCGACGAGACGACGGAGCCCGCGCGGCGCGTCGCCCTGGTCGAGACGCTGCTCGACGGCAAGGCCGACGAGATCACGGTGGCGCTCGCCCGCCGTGCGACGACGTCCCCGCGGGGCCGTCGTTTCGTCCCGACGCTGACCTGGTACGGCGACGTCGCGGCCGAGCGGCGCAACCGCCTGGTGGCGTCGGTGACGAGCGGCTCGGTGCTCTCCGCGGCGCAGGAGGAGCGTCTCGGCGCCCTCCTCGAGCGGGCCTACGGGCGTGCCGTCCAGCTCAACGTCACGGTCGACCCGACCGTGATCGGCGGGCTGCGTATCCAGGTCGGCGCCGATGTCGTCGACTCCACCGTGCTGTCCCGCCTGGCTGACGCCCGTCGCCGGCTGGCCGGCTGAMRGTSGASLAAAQERFEPVLRSAGTDAATLGEQLFAVVSALDGSAPLRRSLADPSRDGEDKARVVAAVLADGFDERVVDLVAGLARSRWSSDADLGDAVERLAVDAVLAAAESRDALETVEDELFVLTRALVGQRQARQALSDETTEPARRVALVETLLDGKADEITVALARRATTSPRGRRFVPTLTWYGDVAAERRNRLVASVTSGSVLSAAQEERLGALLERAYGRAVQLNVTVDPTVIGGLRIQVGADVVDSTVLSRLADARRRLAGPGPT0014299_367DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014299-atpH-K02113NANA
AK018_06351588atpF_2COG0711ATP synthase subunit bATGGCGGCGGCGCACACCGCCGCCCCGGTCATCGTGGCGGCGGAAGAAACGGCAGCGGAGGGGATCGATCTCTTCATCCCCGCCTGGTACGACATCATCTGGTCGTCGGTCGTCCTCGCCGTCATCGCGGTCGTCTTCTACCGTTACGTCCTGCCTCGGTTCCAGGCGGTCCTGGACGAGCGCACGACGAAGATCGAGGGCGGTCTGGCCAAGGCCGAGCAGGCGCAGCAGGAGGCTGCGGCAGCGCTGGCGGAGTACCACCAGCAGCTCGCCGAGGCCCGCGCCGAGGCCTCCAAGACGCGCGAGGAGGCTCGTGCCGAGGGCACGGCCATCGTCGCCGAGCTGAAGGCCAAGGCCAACGACGAGGCGGCACGCATCGTCGAGACCGCGCACCGGCAGATCGAGGCCGAGCGTCAGTCCGCGGCGGTCTCGCTGCGGACCGAGGTCGGTACGCTGGCCACACAGCTCGCCTCGAAGATCGTCGGTGAGTCCCTCGAGGACAGCGCGCGTCAGTCGCGGGTCGTCGACCGGTTCCTCGACGAGCTGGAGGCCGAGCAGTCGGCGACCACGAGGGTCGAGGAGGGCTGAMAAAHTAAPVIVAAEETAAEGIDLFIPAWYDIIWSSVVLAVIAVVFYRYVLPRFQAVLDERTTKIEGGLAKAEQAQQEAAAALAEYHQQLAEARAEASKTREEARAEGTAIVAELKAKANDEAARIVETAHRQIEAERQSAAVSLRTEVGTLATQLASKIVGESLEDSARQSRVVDRFLDELEAEQSATTRVEEGPGPT0014301_956DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014301-atpF-K02109NANA
AK018_06352237atpH_4ATP synthase subunit cGTGGACGTCACCACCCTCGCCGAGGTCACCGGTAACCTCAACGCTGTCGGCTACGGCCTCGCCGCGGTCGGCCCGGGCATCGGTCTCGGCATCCTCATCGGCAAGACGATCGAGGGCATGGCTCGCCAGCCCGAGGTCGCCGGTCAGCTGCGCGCCACCATGTTCCTCGGTGTCGCGTTCGTCGAGCTGCTCGCCCTCCTCGGCCTCGTCGCCGGCTTCCTGTTCCCGGCCGCGTGAMDVTTLAEVTGNLNAVGYGLAAVGPGIGLGILIGKTIEGMARQPEVAGQLRATMFLGVAFVELLALLGLVAGFLFPAAPGPT0014302_2006DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014302-atpE-K02110NANA
AK018_06353756atpB_2COG0356ATP synthase subunit aGTGCCGTCCATCGACGAATTCTTCCCGCCCGCGATCCTCTTCGAGGACACGATCTTCCAGATCGACCGGATCTGGATCATCCGCATCATCGCGATGGCGGTGCTGCTGACCGTCTTCGTGGTGGCCGCCCGGCGCGCGAAGCTCGTGCCGGGACGGTTCCAGGGCGCGATCGAGATGATCCTCGACTTCGTCCGCGTGCAGATCGCCGAGGAGATCCTCGGCAAGGCGAACGCCCGGCGCTTCGTCCCGATGCTGACGACGATCTTCCTGGCGATCCTCGCGTTCAACCTCACGGGCATCATCCCGTTCCTCAACATGGCCGGCACCGCCCGCATCGGGCTGCCGATCGTCCTCGCCCTGTGGGTCTTCGTCACCTACTGGTGGATCGGCGTCAGCAAGCACGGGCTCGGCGGCTACCTGAAGAACAACCTCTTCCCGCCCGGCATCCCGTGGCCGATCTACTTCATCGTCACGCCGATCGAGCTGCTGCAGATCCTCGTGGTCCGCCCGGCCTCGCTCGCGCTGCGACTCGCGGCCAACATGATCGCCGGGCACATCATGCTCGTGCTCTGCTTCGCGGCGACGCACTTCTTCCTGCTCGAGGCGTCGTGGGCGCTCAAGCCCATCGGCGCACTGACCCTCGCGGGCGGCTTCGCCGTCACGCTGTTCGAGATCCTGGTCGCTCTGCTGCAGGCGTACATCTTCGCCCTGCTCGCCGCGGTCTACATCAGCCTGTCGCTGGAGGAGGAGCACTGAMPSIDEFFPPAILFEDTIFQIDRIWIIRIIAMAVLLTVFVVAARRAKLVPGRFQGAIEMILDFVRVQIAEEILGKANARRFVPMLTTIFLAILAFNLTGIIPFLNMAGTARIGLPIVLALWVFVTYWWIGVSKHGLGGYLKNNLFPPGIPWPIYFIVTPIELLQILVVRPASLALRLAANMIAGHIMLVLCFAATHFFLLEASWALKPIGALTLAGGFAVTLFEILVALLQAYIFALLAAVYISLSLEEEHPGPT0014303_2179DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014303-atpB-K02108NANA
AK018_06354480hypothetical proteinATGACCGAGCAGAACGCCACACCGGGCACGCCGGACGACCCGGCTGAGGAGGCCGCGGGACGGTCGTTCGAGGAGGTGCAGTCCTCGGAGCGGACGATGCTCCGCCGCGCGCTGCGCTCCACGCTGCTGCTCGTCGGGGCGCTCGTGGTGCTCGGCGGTCTCGTGGGGTGGTTCGTCGCCGGAGCGGCCGGCGTGTGGGGCGCCCTGGTGGGCGCCGGCCTGGCGGCCTTCTTCTGCGCGACGACGATCTGGTCCATGCTGCGCACGGTCGGCACGTCGCCCACGGCGATGGCGGCCGGGGTGATGGGCGCCTGGCTGGCCAAGATCGTGGTGCTCCTGGTGGTGCTGGTGCTGCTGCGCGGTGCCGACTTCTACGACCCCTACGTGCTCTTCGTCGTCCTGGCCCTCGGTGCGGTGGGGTCCGCCCTGCTGGACTACCAGGCGGTGCGCGGGGCGCGGATGCCCTACGTGCAGCCCTGAMTEQNATPGTPDDPAEEAAGRSFEEVQSSERTMLRRALRSTLLLVGALVVLGGLVGWFVAGAAGVWGALVGAGLAAFFCATTIWSMLRTVGTSPTAMAAGVMGAWLAKIVVLLVVLVLLRGADFYDPYVLFVVLALGAVGSALLDYQAVRGARMPYVQPNANANANANA
AK018_063551230wecA_2COG0472Decaprenyl-phosphate N-acetylglucosaminephosphotransferaseGTGAGGGCCTATCTGCTGGTCATGCTCATCGCCGCGGCGGTGACCTACCTGGCCACCCCCGGCGCACGCTGGGTCGCCCGGCGCACCAACGCGATCTCCGCGGTCCGCGCCCGCGACGTCCACGTCCAGCCGACGCCGCGCCTGGGTGGGCTGGCGATGCTGCTCGGGATCGTCGTGGCCGTCCTGCTGGCCTCCCGGATGCCGTTCCTCGCGGGCGTCTTCGACGAGCCGCAGGTCTTCGGCGTGGTCGGCGGCGCCGTCATCGTCTGCCTGCTGGGGTGGGCCGACGACGTCTGGGACCTGGACTGGATGACGAAGCTGGCCGGGCAGATCCTCGCCGCCGGCTTCCTGGCGATCAACCAGGTCCAGCTGACCGCGCTGCCGATGCCGGGCGGGCTGACCATCCCGTCGGCGCGGCTGTCGCTGTTCGTGACGATCCTCGTGATCGTCGTGGCGATGAACGCCGTGAACTTCGTCGACGGTCTCGACGGGCTCGCGGCCGGGATCGTCGCCATCGGCGGGTCGGCGTTCTTCCTCTACACCTACTTCCTCACCCAGCAGGCCAGCCCCGCGGACTACTCGAGCTTCGCCACGATGATGACGGCCGTGCTCGTCGGCGTCTGCCTCGGTTTCCTGCCGCACAACTTCTACCCCTCGCACATCTTCATGGGCGACTCGGGGTCGATGATCCTGGGGCTGGTCTTCGCCGGTGCGGCGATCTCGATCACCAGCAGCTTCGACCCGACCGTCACCGACGCGCTGTCGGGCGCCCAGCGTGCCACGATCTTCATCCCGCTCCTGCTGCCGCTGGCCGTGACGCTGCTGCCGCTGCTGGACATGACGATGGCGGTCGTGCGCCGGCTGGCCGCCGGCAAGTCGCCGATGGCTCCCGACCGCATGCACCTGCACCACCGGATGCTGGCCCTGGGGCACTCCCACCGCCGCGCCGTGCTCATCCTGTACGTCTGGACGGCGGTCTTCGCCTTCGGCACGGCGGCGCTGGTGCCGTGGCGGTGGCAGGTGGTGCTGGCCTGGCTGGTCGTCGCGGTCGTGATCGCCCTGGTGCTGACCCTCGGCCCGCTGCGCACGCGCGGGCGTTTCCTCGACGACGACGTGGCCTCGGGCGCCCATCCCGTCGCCGCGACGTCGTCCTCGCCGACCGTCCCCGAGAAGGAGACCGACCATGACCGAGCAGAACGCCACACCGGGCACGCCGGACGACCCGGCTGAMRAYLLVMLIAAAVTYLATPGARWVARRTNAISAVRARDVHVQPTPRLGGLAMLLGIVVAVLLASRMPFLAGVFDEPQVFGVVGGAVIVCLLGWADDVWDLDWMTKLAGQILAAGFLAINQVQLTALPMPGGLTIPSARLSLFVTILVIVVAMNAVNFVDGLDGLAAGIVAIGGSAFFLYTYFLTQQASPADYSSFATMMTAVLVGVCLGFLPHNFYPSHIFMGDSGSMILGLVFAGAAISITSSFDPTVTDALSGAQRATIFIPLLLPLAVTLLPLLDMTMAVVRRLAAGKSPMAPDRMHLHHRMLALGHSHRRAVLILYVWTAVFAFGTAALVPWRWQVVLAWLVVAVVIALVLTLGPLRTRGRFLDDDVASGAHPVAATSSSPTVPEKETDHDRAERHTGHAGRPGPGPT0015240_318DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISMCE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015240-wecA|tagO|rfe-K02851NANA
AK018_06356663COG0009Putative threonylcarbamoyl-AMP synthaseGTGCACGACGTGACCGACGAGAACTCCTGGGGCCCCGCGATCGACGAGGCCGTGAACACGATCTCCCGGGGCGGACTCGTCGTCCTCCCGACCGACACGGTGTACGGGATCGGCGCGGACGCCTTCGACGCGGACGCCGTGGCCGCGCTCCTCGCGGCGAAGGGACGGGGCCGGCAGATGCCGCCCCCGGTGCTCGTGCCCGACGCCCGCACCCTGGACGGGCTCGCCGTCGACGTGGCCCCGGAGGCGCGGGCGCTGGTCGAGGCCTTCTGGCCGGGCGGGTTCACCATCATCCTGCGGTCGCAGCCGTCCCTGCACTGGGACCTGGGGGAGACCAACGGCACCGTGGCGCTGCGCATGCCCGACCACCCGGCCGCCCTCGCGCTGCTGCGCCGGACCGGACCTCTCGCCGTCTCCAGCGCCAACCGCACGGGCCGGCCGGCCGCCACCGAGGCGACGGACGCGGTCGAGCAGCTCGGTGACGCGGTGGGCTGCTACCTCGACGGCGGCACGGCCTCCGGCGGTGTCGCGTCGACGATCGTCGACGCGACCGGTCCGCGGCTGCGCGTCGTGCGGGCCGGCGCCGTGCCGCTCGACGCGCTGCGCGAGGTCGCCCCGGTGCTCGGCGTCGACGAGACCGCGGAGGAGGAGACCTCCGGGTGAMHDVTDENSWGPAIDEAVNTISRGGLVVLPTDTVYGIGADAFDADAVAALLAAKGRGRQMPPPVLVPDARTLDGLAVDVAPEARALVEAFWPGGFTIILRSQPSLHWDLGETNGTVALRMPDHPAALALLRRTGPLAVSSANRTGRPAATEATDAVEQLGDAVGCYLDGGTASGGVASTIVDATGPRLRVVRAGAVPLDALREVAPVLGVDETAEEETSGNANANANANA
AK018_06357948prmC_7COG2890Release factor glutamine methyltransferaseATGCCTGAGCCGGTCGGTGCGCTGCTGCGCGGTGCGACGCAGCGCCTCGCCGCGGCCGGTGTCCCGTCCCCGCGCACCGACGCCGAGCTGCTCCTGGCCCACGTGCTGTCCCTGCCGCGCGGCGAGGTCCGGCGCCTCGCCCTCCTGGACGCCCCGGTGCCCGACGGCGGCACCCCGGACGCCGGGGCCGCGGTACGCCGCTTCGCGGCACTGGTCGACCGCCGCGCCGCCCGGGAGCCGCTGCAGCACCTCACCGGGGTGGCTCCCTTCCGGCACCTGGAGCTGTCCGTCGGCCCGGGGGTGTTCGTGCCCCGGCCCGAGACCGAGCAGGTCGCCCAGGTCGCGATCGACGAGGCGACGGGCGTCGCCGCCGCCCGGGGCCGCGCCGTCGTCGTCGACCTGTGCACCGGCTCCGGAGCGATCGCGCTGGCGGTGGCCACCGAGGTGGCCGGTGCCGAGGTGCACGCCGTCGAGCTGGACGGCGCCGCGCACGGGTGGGCCGCCCGGAACGTCGCGGCGGTCGCCGCGGCCGCCGGGACCGAGGTCCACCTGGTCCGCGGGGACGCCCGCACGGCGCTGACCGGCCTGGACGGGACGGTCGACGTCGTCGTCTCGAACCCGCCGTACGTCCCCCCGGACGCCGTGCCCCGCGACCCCGAGGTCGCCGGTCACGACCCGGACGTCGCGCTGTACGGCCTGGGCGCCGACGGCCTGGAGGTGCCGCGCGGGATCGCCCGCGCCGCGGCGCGGCTGCTGCGCCCCGGCGGGCTGTTCGTCATGGAGCACGCCGAGACCCAGGCCGCCGGTGCGCGGTCGCTGGCGGCCGCCGCCGGGTTCGTCGACGTGCGCACCGCGGACGACCTGACCGGCCGCCCCCGCATGGCGGTGGGGCGACGGCCCGCGGGCGCCGCGGCCGGGCGGGGAACCGTGACAGACTGGGGCGAGTGAMPEPVGALLRGATQRLAAAGVPSPRTDAELLLAHVLSLPRGEVRRLALLDAPVPDGGTPDAGAAVRRFAALVDRRAAREPLQHLTGVAPFRHLELSVGPGVFVPRPETEQVAQVAIDEATGVAAARGRAVVVDLCTGSGAIALAVATEVAGAEVHAVELDGAAHGWAARNVAAVAAAAGTEVHLVRGDARTALTGLDGTVDVVVSNPPYVPPDAVPRDPEVAGHDPDVALYGLGADGLEVPRGIARAAARLLRPGGLFVMEHAETQAAGARSLAAAAGFVDVRTADDLTGRPRMAVGRRPAGAAAGRGTVTDWGENANANANANA
AK018_063581092prfA_2COG0216Peptide chain release factor 1GTGACCGAGGACTTCGCGGTGGCCCGGCCGCTGCTGGCGGAGCACGCCGAGATCGAGCGTGAGCTCGCCGATCCGGCGGTGCACGCCGACCAGGGCAGGGCCCGCACCCTCGGACGGCGCTACGCCGAGCTGAACCGCGTCGTCGGCGCCTACCGCGCCTGGGAGTCCGCGCGCGACGACGCCACCGCGGCGGCCGAGCTCGCCGCCGAGGACGAGTCGTTCGCGGCCGAGGTCCCCGCCCTGCGCGAGGCCGAGGCCGACGCCGCCGAGCACCTGCGCCGCGTGCTCGTCCCGCGTGACCCGGACGACGGTCGCGACGTCATCCTGGAGATCAAGGCCGGCGAGGGCGGCGACGAGTCCGCGCTGTTCGCCGGCGACCTGCTGCGCATGTACCTGCGCTTCGCCGAGCGCCGCGGCTGGGCCACCCAGGTGCTCGAGTCCACCGAGACCGAGCTCGGCGGCTTCAAGGACGTCCAGCTCGCCGTGAAGTCACGCGGCACCCCCGACGACCCCGCCGACGGCGTCTGGGCGAACCTCAAGTACGAGGGCGGCGTGCACCGCGTCCAGCGGGTCCCGGTGACCGAGTCCCAGGGGCGCATCCACACCTCCGCGGCCGGCGTGCTCGTCCTGCCCGAGGTCGACGACCCGGGCGAGGTCGAGATCGACCCGAACGACCTGCGCATCGACGTCTACCGGTCCTCCGGCCCGGGCGGGCAGTCGGTCAACACCACCGACTCGGCGGTGCGCATCACGCACGAGCCGACGGGCATCGTCGTGTCCATGCAGAACGAGAAGTCCCAGCTGCAGAACAAGGAGCAGGCGATGCGCGTGCTCCGTGCGCGGCTGCTGGCCGCGCAGCAGGAGGAGGCGGCAGCCGCCGCGGCGGACATCCGCCGGTCCCAGGTGCGCACGGTCGACCGCAGCGAGCGCATCCGGACGTACAACTTCCCGGAGAACCGCATCGCCGACCACCGCACGGGCTACAAGGCCTACAACCTCGACCACGTGCTGGCCGGCGACCTCGACCCCGTCGTGCGGTCCGCGGTGGACGCCGACGAGGCGGCGCGGCTCGCCGCCGCCGGCGATGCCTGAMTEDFAVARPLLAEHAEIERELADPAVHADQGRARTLGRRYAELNRVVGAYRAWESARDDATAAAELAAEDESFAAEVPALREAEADAAEHLRRVLVPRDPDDGRDVILEIKAGEGGDESALFAGDLLRMYLRFAERRGWATQVLESTETELGGFKDVQLAVKSRGTPDDPADGVWANLKYEGGVHRVQRVPVTESQGRIHTSAAGVLVLPEVDDPGEVEIDPNDLRIDVYRSSGPGGQSVNTTDSAVRITHEPTGIVVSMQNEKSQLQNKEQAMRVLRARLLAAQQEEAAAAAADIRRSQVRTVDRSERIRTYNFPENRIADHRTGYKAYNLDHVLAGDLDPVVRSAVDADEAARLAAAGDANANANANANA
AK018_06359213rpmE_2COG025450S ribosomal protein L31ATGAAGAGCGGTATCCACCCCGAGTACGTCACCACCGAGGTCACCTGCACCTGCGGCAACACGTTCGTCACCCGCAGCACCGAGACCTCCGGCAAGATCAACGCCGACGTCTGCAGCGCCTGCCACCCGTTCTACACGGGCAAGCAGAAGATCCTCGACACCGGTGGTCGTGTGGCCCGGTTCCAGGCTCGCTACGGCAAGAAGAACAAGTAGMKSGIHPEYVTTEVTCTCGNTFVTRSTETSGKINADVCSACHPFYTGKQKILDTGGRVARFQARYGKKNKPGPT0014325_3478DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909NANA
AK018_063601941rho_2Transcription termination factor RhoGTGACGAACAGCACCGACAGCCTGAGCTCGATGAAGCTTGCCGAGCTCCAGGCGATGGCGTCCCAGATGGGCGTCAAGGGAACGAGCCGGATGCGCAAGAGCGACCTGGCCGACGCGATCCGCGCCAACCGCGCGTCCGGCGGCAGCCGCCGGGACGACGCCGGCCGGGCGCCCGAGCGCCGGGCCGCGAGCGGGGACGCCCCCGCCACGACGGCCTCCGCCGACCCCGTGGCCGCCGCGTCGACCGCCGCGCCCGCCGTCCGGACCGAGGCTCCCGCCGAGGACGCCCCGCGCCGCCGCCGTGCGGTGCGCACCTCGGGCGGCCCCGCCGCTCCGGAGCAGGGCTCCGGTCGTGCCGGCGGCGCGGAGTCCGCGAGCGACCGCGAGGCCCGGCTGGCCGAGCTCGCCGACGCCGTCGCCGCGCCCAAGGAGCGCCAGCCCCGGTCGGACCGCCAGGACGGCGGCCACCGCGGCGACTCCGCGAACCAGGGCGACGGTGGCGACAACCGCCGTCGCGGGGGTCAGGACGGCCAGGACGGGTCCGGCGACAACCGCGGCGACCAGGGCGGCCAGGGCCGTCAGCAGGGCGACCAGCGCCAGCGCGGCGGTGACCAGCAGGAGCGCTCGGGCTCCCGGCGCCGGCGCGGCCGCGACCGCGGTCGCGACCGTCGCCGCAACCGCGGCGGGCGCGGCGGCAACGGGCCGGACATGCCCCTGGAGGAGCCGGAAGTCAGCGAGGACGACGTGCTGCTCCCCGTCGCGGGCATCCTCGACATGCGCGACAACTACGCGTTCGTGCGCACCAGCGGCTACTTGCCCGGGCCCAAGGACGTCTACGTCTCGATGAACCAGGTCCGCAAGTCGGGCCTGCGTCGCGGTGACGCCGTCGTCGGCGCGATCCGCCAGCCCCGCGACGGCGAGGACCAGCCGAACAACGGCGGCGGGGGCGGCAAGAACAACCCGCGCAACAAGTTCTCCGCCCTCGTGCGCCTCGACTCCGTCAACGGCATGACGCCGGAGGAGGCCCGGCAGCGTCCGGAGTTCACCAAGCTGACGCCGCTGTACCCGCAGGAGCGCCTGCGCCTGGAGAACCCCGAGGCGACCCGGCTGACCCCGCGCGTCATCGACATCGTGGCGCCGGTCGGCAAGGGGCAGCGCGGTCTGATCGTCTCCCCGCCCAAGGCCGGCAAGACGATCATCATGCAGCAGATCGCCAACGCGATCACGGCGAACAACCCCGAGGTCCACCTCATGGTGGTGCTCGTGGACGAGCGCCCCGAAGAGGTCACGGACATGGAGCGGACGGTCAAGGGCGAGGTCATCGCCTCGACGTTCGACCGCCCGGCGTCCGACCACACGATCGTCGCCGAGCTCGCGATCGAGCGGGCCAAGCGTCTGGTCGAGCTCGGCCAGGACGTCGTGGTGCTGCTCGACTCCATCACCCGCCTGTCGCGCGCCTACAACCTGGCGGCCCCGGCGTCGGGCCGGATCCTGTCCGGCGGTGTGGACGCCGCGGCGCTCTACCCGCCGAAGAAGTTCTTCGGCGCGGCCCGCAACATCGAGGAGGGCGGCTCGCTGACGATCCTAGGCTCCGCCCTGGTGGAGACGGGCTCGAAGATGGACGAGGTGATCTTCGAGGAGTTCAAGGGCACCGGCAACATGGAGCTGCGGCTGTCGCGCAACCTCGCGGACCGGCGGATCTTCCCGGCGGTGGACGTCAACGCGTCCGGCACCCGTCGCGAGGAGATCCTCATGTCCAAGGAGGAGCTCGGCATCGTCTACAAGCTGCGCCGGGTCATGGGTGCGCTGGACCAGCAGCAGGCGATCGAGCTGCTGCTCGGCAAGCTCAAGGACACCAAGACGAACGTCGAGTTCCTGCTGCAGGTCCAGAAGACCACGCCGTCCGGCCTCACGGACGACCGTCCCGGCGAGACCGTCTGAMTNSTDSLSSMKLAELQAMASQMGVKGTSRMRKSDLADAIRANRASGGSRRDDAGRAPERRAASGDAPATTASADPVAAASTAAPAVRTEAPAEDAPRRRRAVRTSGGPAAPEQGSGRAGGAESASDREARLAELADAVAAPKERQPRSDRQDGGHRGDSANQGDGGDNRRRGGQDGQDGSGDNRGDQGGQGRQQGDQRQRGGDQQERSGSRRRRGRDRGRDRRRNRGGRGGNGPDMPLEEPEVSEDDVLLPVAGILDMRDNYAFVRTSGYLPGPKDVYVSMNQVRKSGLRRGDAVVGAIRQPRDGEDQPNNGGGGGKNNPRNKFSALVRLDSVNGMTPEEARQRPEFTKLTPLYPQERLRLENPEATRLTPRVIDIVAPVGKGQRGLIVSPPKAGKTIIMQQIANAITANNPEVHLMVVLVDERPEEVTDMERTVKGEVIASTFDRPASDHTIVAELAIERAKRLVELGQDVVVLLDSITRLSRAYNLAAPASGRILSGGVDAAALYPPKKFFGAARNIEEGGSLTILGSALVETGSKMDEVIFEEFKGTGNMELRLSRNLADRRIFPAVDVNASGTRREEILMSKEELGIVYKLRRVMGALDQQQAIELLLGKLKDTKTNVEFLLQVQKTTPSGLTDDRPGETVNANANANANA
AK018_06361960thrB_2COG0083Homoserine kinaseATGCAGCTCGGAACCGATCACGTCCTGGTGCGGGTGCCCGCCACCAGCGCCAACCTCGGTCCGGGGTTCGACGCCATGGGCCTCGCGCTGGGCCTCCACGACGAGATCGAGGTCGACCTCCTGGCCAGCGACGAGATCACGGTCGACGTCGTCGGGGAGGGTGCCGGCCAGGTGCCGAACGGCGAGGACCACCTCGTGGTGCGGGCGCTGCGGCACACGCTCGAGCTCGCCGGCGCGCCGCTGACCGGCCTGCGCATGCGGTGCACGAACCGGATCCCGCACGGACGCGGCCTCGGCTCCTCGGCGGCCGCGGTCGTCTCGGGCGTCGTGGCCGCGCGGGGGCTGCTCGCGGACCCTCAGTCCCTCGACGTGACGACGATGCTGCGCATCGCCACCGAGTTCGAGGGGCACCCCGACAACGCGGCGCCCGCGCTGCGCGGCGGTGCCACGCTGGCCTGGTCGGGGGCGTCCGGCGCCCAGGCGGTCGACCTGGAGGTCGACCCCCGGATCACCGCGACGGTGCTGGTCCCCGACACCCAGCTCGCCACCAGCCGGGCCCGCGGCGTGCTCCCCGCGCAGGTGCCGCACGCCGACGCGGCCTTCACGGCCGGCCGTGCGGCGCTCCTCGTGGAGGCGCTGGCGCGCCGCCCGGAGCTGCTGCTGGACGCCACCGAGGACCGGCTGCACCAGGGCTACCGGGCCGAGGTGATGGCCGCGACCGCGGAGCTCGTGCGCGCGCTGCGGGCCGAGGGGTACGCTGCGACCGTCTCGGGTGCGGGCCCGACCGTGCTCGTGCTCGCCGCCGAGCGGCAGACCGCCGGCCTGGACGGCGTGCTCGCCGGCCTGGTGGACGGCGTCGCAGGCTGGCGTGCCTGGCGGCCGGGGATCGACACCACCGGGGCCGTCTGCAGAAGTGGTAGCATGGACCAAGCCTTCGGGACGGTGGCAGGACGAGCATGAMQLGTDHVLVRVPATSANLGPGFDAMGLALGLHDEIEVDLLASDEITVDVVGEGAGQVPNGEDHLVVRALRHTLELAGAPLTGLRMRCTNRIPHGRGLGSSAAAVVSGVVAARGLLADPQSLDVTTMLRIATEFEGHPDNAAPALRGGATLAWSGASGAQAVDLEVDPRITATVLVPDTQLATSRARGVLPAQVPHADAAFTAGRAALLVEALARRPELLLDATEDRLHQGYRAEVMAATAELVRALRAEGYAATVSGAGPTVLVLAAERQTAGLDGVLAGLVDGVAGWRAWRPGIDTTGAVCRSGSMDQAFGTVAGRAPGPT0020275_1626DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020275-thrB-K00872NANA
AK018_063621107thrC_2COG0498Threonine synthaseATGCCGGCCCATCAGTGGCGGGGTGTCATCGCCGAGTACGCCGACCGGTTGCCGGCCCACGTCGCCGAGAAGATCGTGACCCTCGCCGAGGGCGGGACGCCGCTCGTCGAGGCCCCGGCGCTGTCCCGGCGCACCGGCGCCGACGTCTACGTCAAGGTCGAGGGGATGAACCCGACCGCGTCGTTCAAGGACCGCGGGATGACGACGGCGATCTCCGCCGCCGCCGCCCGCGGCGCCCAGGCCGTCGTGTGCGCCTCCACGGGCAACACCTCGGCCTCGGCCGCCGCCTACGCCACCCGCGCCGGGATGGTCTGCGCCGTCCTCGTGCCGGACGGCAAGATCGCCATGGGCAAGCTGAGCCAGGCGATCGCGCACGGCGCCAAGCTGCTCCAGGTGGACGGCAACTTCGACGACTGCCTCGTGGTGGCACGCAAGCTGTCCGAGGCCTACCCGGTCGAGCTCGTCAACTCGGTCAACCCCGACCGGATCGAGGGGCAGAAGACCGCCGCCTTCGAGGTGGTCGACGCCCTCGGCGACGCCCCGGACATCCATGCCCTGCCGGTGGGCAACGCGGGCAACATCACGGCCTACTGGAAGGGCTACCGGGAGTACGCCGGGATCCCGACGAGCGAGGAGGGACCCGGTGCGGCGCCCGAGGCCGTGGCGACGCGGACCCCGGCGATGTGGGGGTTCCAGGCCGCCGGTGCCGCGCCGATCGTCGCCGGGCACCCCGTCGACCCCGAGACCATCGCCACGGCGATCCGCATCGGCAACCCCGCCTCCTGGGCGCAGGCCGAGGCGGCCCGGGACGACTCGGGCGGCGTCATCGAGGCCGTCTCCGACTCCGAGATCCTCGCGGCGCACCGGGTGCTCTCGGCCGACGTGGGCGTCTTCGTCGAGCCGGCCTCGGCCGCCGGCGTCGCGGGCCTGCTCTCGCGCGCCGAGCGCGGCCTCGTCCCGGCGGGTGCCCGGGTGGTCGTGACCGTCACGGGCCACGGCCTGAAGGACCCGCAGTGGGCCCTGCGCACGCCCGACGGCGGCGACGTGACCCCGACCCGGGTCGGCGCGGACGTCGTCTCGGTCGCCGACGCTCTCGGGCTGGGCTGAMPAHQWRGVIAEYADRLPAHVAEKIVTLAEGGTPLVEAPALSRRTGADVYVKVEGMNPTASFKDRGMTTAISAAAARGAQAVVCASTGNTSASAAAYATRAGMVCAVLVPDGKIAMGKLSQAIAHGAKLLQVDGNFDDCLVVARKLSEAYPVELVNSVNPDRIEGQKTAAFEVVDALGDAPDIHALPVGNAGNITAYWKGYREYAGIPTSEEGPGAAPEAVATRTPAMWGFQAAGAAPIVAGHPVDPETIATAIRIGNPASWAQAEAARDDSGGVIEAVSDSEILAAHRVLSADVGVFVEPASAAGVAGLLSRAERGLVPAGARVVVTVTGHGLKDPQWALRTPDGGDVTPTRVGADVVSVADALGLGPGPT0009175_5390DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0009175-thrC-K01733NANA
AK018_063631398hom_2COG0460Homoserine dehydrogenaseGTGCCCGCTGCAGACCACCGGCCCGCCGTGACCGCGACGTCGGACACCGACCGTCGTGAGCAACGCGCCCTGCGGGTCGCCCTGCTCGGGTGCGGCGTGGTCGGCACCGAGGTCGCCCGCGGCCTGCTCGAGAACTCCGCCGAGCTGGCCGCCCGTGCCGGGGCGCCGCTGGAGGTCGTGGGCATCGCCGTGCGGGACGCCTCGCGCGAGCGGCCCGGCATTCCCGCCGACCTGCTGACCGAGGACGCCGGGGCGCTCGTCGACGCCGCCGACGTCGTCGTCGAGCTCATGGGCGGCATCGAGCCGGCGCGCACGCTCATCCTGCGGGCGCTCGAGCGCGGCGCCAGCGTCGTCACGGCGAACAAGCAGCTCCTGGCCGAGCAGGGCCCGGTCCTGTTCGAGGCCGCCGACGCGGCGAGTGCGGACCTGTCGTTCGAGGCCGCCGTCGCCGGGGCGATCCCGATCGTGCGCCCGGTGCGCGAGTCGTTGGCCGGGGACCAGGTCGAGCGGGTCCTCGGCATCGTCAACGGCACGACGAACTACGTCCTGGACGAGATGACCACGCAGGGCATGGACCTCGAGGACGTCGTCAAGCGGGCCCAGGAGCTCGGGTACGCCGAGGCCGACCCGACGGCCGACGTCGACGGCTACGACGCCGCGGCCAAGGCGGCCATCCTCGCCTCGTTGGCGTTCCACACCCGCGTCTCGATCCACCAGGTGGCGCGCGAGGGAATCCGCCACATCACCAGCGACGACGTCGACTGGGCCCGACGCACGGGCTACGTCCTCAAGCTGCTCGCCATCGCCGAGCGCACCGACGAGGGCGTCGCCGCGCGCGTCCACCCGGCCCTGGTGCCGACCGACCACCCGCTGGCCGCGGTGCGCGGCGCGTTCAACGCCGTCTTCGTCGAGGCCGAGGGTGCCGGGCCGCTGATGTTCTACGGCCAGGGCGCGGGCGGACGGCCCACCGCCTCGGCCGTGCTCGGCGACGTCGTGTCGGCGGCGCGCGACCGCCTCATCGGGGGCAAGGGACCCCACGAGTCGGCCTACGCCTCGCTGCCCGTGCTGTCCGCCGAGGCCGCCGTCACCCGCTACCAGGTGCGCCTCGAGGTCGCGGACCGCACCGGTGTCCTGGCCCAGGTCGCCGGGGTCCTGGCCGACCACGGCGTGTCCATCGACACCGTGCGGCAGAGCGAGGCGCTCACCGCGCCCTTCGAGGCCGAGCCCGCCTCGGAGCCGGCGCCCGGTGCCGTGCCCGACGAGGGCGAACCGGTGGCCCGTCTCGTCATCACCACCCACGCTGCCCGCGAGGCGTCGCTCGCCGCGACGGTCTCGGCGCTGCGCGACCTGGAACCCGTTCGTCAGATCACGTCAGTCCTGCGAGTCGAGGGAGTCTGAMPAADHRPAVTATSDTDRREQRALRVALLGCGVVGTEVARGLLENSAELAARAGAPLEVVGIAVRDASRERPGIPADLLTEDAGALVDAADVVVELMGGIEPARTLILRALERGASVVTANKQLLAEQGPVLFEAADAASADLSFEAAVAGAIPIVRPVRESLAGDQVERVLGIVNGTTNYVLDEMTTQGMDLEDVVKRAQELGYAEADPTADVDGYDAAAKAAILASLAFHTRVSIHQVAREGIRHITSDDVDWARRTGYVLKLLAIAERTDEGVAARVHPALVPTDHPLAAVRGAFNAVFVEAEGAGPLMFYGQGAGGRPTASAVLGDVVSAARDRLIGGKGPHESAYASLPVLSAEAAVTRYQVRLEVADRTGVLAQVAGVLADHGVSIDTVRQSEALTAPFEAEPASEPAPGAVPDEGEPVARLVITTHAAREASLAATVSALRDLEPVRQITSVLRVEGVPGPT0020155_94DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020155-hom-K00003NANA
AK018_063642682hypothetical proteinGTGCGCATCACCATGCGACGACGCCCGGTCGTGGGCGCGCTCGCCGCGTTCGGCCTCGCTGCCACCACCGTGGCGCTGCCGAGCACCGCGACCGCCGACGACCCGGACGGGCTGGAACCCCTGGCCCCCGTGCACACCGCACCCACGAGCGACCAGGACACGCTGGTCAACGAGACGCCCGGCGCCTGGTTCGTGGAGCTCGAGACCGCCCCGACCGCGCAGGGCGGCAGGGCGGCGGCCGTGCGCAGCGACCACGCGGCGTTCCGCCGTGCGGCCCGCACGGCCGGTGTCGAGTACACCGAGCGCGAAGAGTTCACCACCCTGTTCAACGGCTTCTCCGTCGACATGGACAGCTCGCAGCTCGGCCGCCTGCAGCGGACCGAGGGCGTCGCTGCCATCTACCCGATGGTCCAGGTCGCCGTCCCGGAGCCCCAGACCGCCGCGATCCCCGACATGGCGACCGCGCTGGCGATGACCGGCAGCGACGTCGCGCAGAACGAGCTCGGCCTCACCGGCGAGGGCGTCAAGGTCGCGGTGATGGACACCGGCATCGACTACGAGCACCCCGACTTCGGCGGCGGCGAGTTCCCGACCGAGCGGATCCCCTACGGCTACGACTTCGTCGGTGACGACTACGACGCCGGGTCGTCCGACCCCGCCGCGCGTGTCCCGCAGCCCGACGGCGACCCGATGGACTGCCAGGGTCACGGCACCCACGTGGCCGGCATCGTCGGTGCCGACGGTGACGTCCTCGGCGTCGCCCCGGGGGTCACCTTCGGCGCGTACCGGGTCTTCGGCTGCGAGGGTTCCACCGAGGCCGACATCATGATCTCGGCCATGGAGAAGGCCCTCGAGGACGACATGGACATCCTCAACATGTCGATCGGCTCGTCCTTCACCTGGCCGGACTACCCGACCGCGACCGCCTCGGACGCCCTGGTGGACGCCGGCATGGTCGTCGTCGCCTCCATCGGCAACTCGGGCCGCACCGGCGTCTACTCCACCGGCGCCCCGGGCGTGGGCGAGAAGGTCATCGGCGTCGCGTCCGTGGACAACACGCACTCCGACGCCGCGCTGGCGATCGCCGAGCCCTCCGGCACCGAGGTGCCGTACACGGTGCTCTCCGACGTCGCCGCGCCGCCCACCTCCGGCTCCACCGACCCGCTGGTGTACGTCGGCCGCGGCTGCGTGGCCACCGAGGGTGACGAACTTCTCGCCGACCCCGCGGGCATGACCGCGCTGGTCGACCGCGGCACCTGCACCTTCGACGAGAAGTACTCCTCCGCGGTGGCCGCCGGTGCGACCGCCGTCGTCATCGCCAACAACGCCGCCGGCCTGTTCAACGGCGGCGGCGTCGTGGACGCCGGTGTCCCGGGCATCGGGATCAGCCTGGCCAGCGGCGACGCGCTCAAGGCCGAGATCGACGGCGGGGCCGACGTCACCCTGGCCTGGACCGACCAGACCGCGTCCGTCGTCAGCCCGACCGGTGGTACGAAGAGCGACTTCAGCTCCTACGGGCTCTCTCCCGACCTGACGCTGAAGCCGGACCTGGCCGCGCCGGGCGGGAACATCCGCTCGACGTACCCGCTGGCCAAGGGCGGCTACGCCACGCTGTCGGGCACGTCGATGGCGTCCCCGCACGTCGCCGGCGCCACCGCGCTGCTGCTCGAGGCGGACCCGGAGATCGGCACCACCGAGATGCGGGACCTGCTGCAGAACACGGCCGAGCCGTTCCTCTACCCCGGGTTCCCCTTCCTGGAGACCGTGCACGGTCAGGGCGCCGGCCTGATCGACGTCCCGGCCGCCTACGCCGCGACGACGTCGGTCACCCCGGCGAAGATCTCGCTCGGAGAGTCCGAGACCGGCCCGGTCACCACCGAGCTCACGGTTGCCAACGACAGCGACCGCGAGGTCACCTACGAGCTGTCGAGCATCGACGCGCTCGCGACCGGCGGCGACACCTTCGCGCCGGGACTCTACGTACCGACGGCTCCGACCGAGTTCTCGCCCGAGACGGTCACCGTTCCCGCTGGCGCCTCGGCCGTCGTCGACGTGACGATCACGGCTCCCGGAGCCGATCCGTCGCTGCAGCTCATCTACGGCGGGTACGTGATGGTCACCGGCGACGACGGCTCGGAGACCTCCGTGCCGTTCGCCGGCTACGACGGCGACTACCAGGACATCGAGGCGATCACCCCGATCGACCTCGGCGACGGCCAGATGATCGACGTGCCGTGGGTCTCGCGCATCACGGAGTGCGCGGAGTTCGTCGAGTTCGACTGCATCGACCCCGCCGGGACGTTCAGCGAGGCCGGCGGCGACACGTTCACGCTCGACTGGGTCGACGGTCTGCCCGACTACCCCTACGTGGTGGCGCACTTCCACCACCAGGTCGAGGACTTCGAGATCTCGGTGATCGACAGCAAGGGTCGGACGAAGGGCGCCTTCACGGTCGCCGCCGACCTCGGCTCCCTCGGGCGCAGCGAGACCTCCACCGGGATCCAGGCGTTCGTCTGGGACGGCACCGCGACCAAGAAGCGGGGCAACACCGAGGTCACCAAGACGCTGAAGGACGGCGACTACCAGCTCCACATCGACGCCCTCAAGGCGAACGGTGACCGGTCGAACCCCGACCACTGGGAGACCTGGACGTCCCCGGTGTTCACCATCGACCGTCACTGAMRITMRRRPVVGALAAFGLAATTVALPSTATADDPDGLEPLAPVHTAPTSDQDTLVNETPGAWFVELETAPTAQGGRAAAVRSDHAAFRRAARTAGVEYTEREEFTTLFNGFSVDMDSSQLGRLQRTEGVAAIYPMVQVAVPEPQTAAIPDMATALAMTGSDVAQNELGLTGEGVKVAVMDTGIDYEHPDFGGGEFPTERIPYGYDFVGDDYDAGSSDPAARVPQPDGDPMDCQGHGTHVAGIVGADGDVLGVAPGVTFGAYRVFGCEGSTEADIMISAMEKALEDDMDILNMSIGSSFTWPDYPTATASDALVDAGMVVVASIGNSGRTGVYSTGAPGVGEKVIGVASVDNTHSDAALAIAEPSGTEVPYTVLSDVAAPPTSGSTDPLVYVGRGCVATEGDELLADPAGMTALVDRGTCTFDEKYSSAVAAGATAVVIANNAAGLFNGGGVVDAGVPGIGISLASGDALKAEIDGGADVTLAWTDQTASVVSPTGGTKSDFSSYGLSPDLTLKPDLAAPGGNIRSTYPLAKGGYATLSGTSMASPHVAGATALLLEADPEIGTTEMRDLLQNTAEPFLYPGFPFLETVHGQGAGLIDVPAAYAATTSVTPAKISLGESETGPVTTELTVANDSDREVTYELSSIDALATGGDTFAPGLYVPTAPTEFSPETVTVPAGASAVVDVTITAPGADPSLQLIYGGYVMVTGDDGSETSVPFAGYDGDYQDIEAITPIDLGDGQMIDVPWVSRITECAEFVEFDCIDPAGTFSEAGGDTFTLDWVDGLPDYPYVVAHFHHQVEDFEISVIDSKGRTKGAFTVAADLGSLGRSETSTGIQAFVWDGTATKKRGNTEVTKTLKDGDYQLHIDALKANGDRSNPDHWETWTSPVFTIDRHPGPT0020990_208DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020990-vpr-K14647NANA
AK018_063651437lysA_2COG0019Diaminopimelate decarboxylaseGTGAGCGCCGCCGGCCACCCCACCGCGACGGGGACGACGACGGCGCTGCCGACCGGCGGCGCCGACGCGGCCGGCGTGCCCTGGCCCTCCACGGCGCGGCGTCGCGACGACGGAGAGCTGGAGGTCGGCGGGGTCGGCGTCGGTGATCTCGCGGCCGAGCACGGCACCCCCGCCTACGTGCTGGACGAGGCCGACTTCCGCGCCCGGGCGCGTGCCTACCGCCAGGCCTTCGAGGCGGCGTTCGAGCAGGTCGGTGCCGGCGTCGACGTCTACTACGCGGGCAAGGCGCTGCTGACCGTCGCCGTCGCGCGGTGGGCGACCCAGGAGGGCCTGCGCGTGGACACCGCCTCCGGCGGGGAGCTCGCGGTCGCGCTGCGCGCCGGCGTGCCGGGTGCCGCCATCGGCCTGCACGGCAACAACAAGGCGGACGAGGAGATCCTCGCCGCCCTCGACGCAGGGGTCGGACGGATCATCGTCGACTCCCGGGTCGAGATCGACCGCGTGGCCGACCTCGCCGCCGCGCGCGGCGTCGTCGCGCCCGTGATGCTCCGCGTCACCACCGGCGTCCACGCCGGTGGCCACGAGTACATCTCCACCGCCCACGAGGACCAGAAGTTCGGTCTGTCGGTCACGGCGGGGGACGACGGCGACACCTCCCCGGCGCTCGCGGCGCTCGAGGCGATCGTGGCGCGGCCCGAGCTGGAGCTGCTCGGCATCCACTCGCACATCGGCTCCCAGATCCTCGACCCGTCGGGCTTCGAGGCCGCGGCTCGCGTGGTGCTGCGGCTGCGGGCCGACCTGGCCGAGCGCACCGGCGTCGTCGTCGAGGAGGTCGACCTCGGTGGGGGGTACGGCATCGCCTACCTGCCCACCGACGAGGCGCTCGAGCCCGCACCGGTGGCGCGCGACGTCGCCGAGGCGGTCGCCGCCGTGTGCACCGAGCTGTCGATGCCGCTGCCGCGGTTCTCCATCGAGCCGGGCCGGGCGATCGTCGGGCCCGCGGGGATCACCCTCTACACCGTCGGCACGGTCAAGCCCGTCACGGTGTCCGGCAGCTCGGCCGACGACGAGACCTTCACGCGGCTCTACGTGTCGGTCGACGGCGGCATGAGCGACAACATCCGGCCCGCCCTGTACGGCGCCGACTACCACGCGGAGCTCGTCGGCCGGTCCTCGGACGCGGCGAAGGTGCTGGCCCGGGTGGTCGGCAAGCACTGCGAGAGCGGCGACATCGTCGTGCACGAGGTCGTCCTGCCCTCGGACGTGCGCGCCGGGGACCTGCTCGCCGTCGCCGCGACCGGTGCCTACGGCCGGTCCATGGCGTCGAACTACAACGCCCTGACGCGGCCGCCGGTCGTCGCCGCGGCGGACGGGGCCTCGCGGGTGCTGGTGCGCCGCGAGACCGTCGAGGACCTGCTCGCGCTCGACCTCGGCTGAMSAAGHPTATGTTTALPTGGADAAGVPWPSTARRRDDGELEVGGVGVGDLAAEHGTPAYVLDEADFRARARAYRQAFEAAFEQVGAGVDVYYAGKALLTVAVARWATQEGLRVDTASGGELAVALRAGVPGAAIGLHGNNKADEEILAALDAGVGRIIVDSRVEIDRVADLAAARGVVAPVMLRVTTGVHAGGHEYISTAHEDQKFGLSVTAGDDGDTSPALAALEAIVARPELELLGIHSHIGSQILDPSGFEAAARVVLRLRADLAERTGVVVEEVDLGGGYGIAYLPTDEALEPAPVARDVAEAVAAVCTELSMPLPRFSIEPGRAIVGPAGITLYTVGTVKPVTVSGSSADDETFTRLYVSVDGGMSDNIRPALYGADYHAELVGRSSDAAKVLARVVGKHCESGDIVVHEVVLPSDVRAGDLLAVAATGAYGRSMASNYNALTRPPVVAAADGASRVLVRRETVEDLLALDLGNANANANANA
AK018_063661668argS_2COG0018Arginine--tRNA ligaseGTGACACCCGACGAGCTCTCCGAAGCACTCAGCGCTGCCCTCTCCTCGGCCGTGGCCGACGGCACCCTCGCCCTCGACGCCGACGCCCTGCCGTCGACCGTCCACGTCGAGCGACCGAAGCAGCGCGAGCACGGGGACTGGGCGACCAACGTCGCGCTCCAGCTGGCCAAGAAGGCCGGCACGACGCCGCGGGCGCTCGCGGAGGACCTGGCCGGGCGCCTGGGCTCGACCCCGGGCATCAAGGCCGTCGACGTCGCCGGACCCGGCTTCCTCAACATCACGCTGGAGGCCGGCGCCGCGGGCGAGCTGGCCCGGACGATCGTCCAGGCGGGCGCCGAGTACGGCCGGTCCGACGCACTGGACGGGCAGGTCATCGACCTCGAGTACATCTCCGCCAACCCGACCGGTCCGCTGCACATCGGCCACACCCGCTGGGCGGCCCTGGGTGACTCCCTGGTCCGGATCCTGCGCGCCGCCGGCGCCGACGTCACGGCCGAGTACTACATCAACGACGCCGGCGCGCAGATGGACCGCTTCGGCGCCTCCGTGCTCGCGCAGATCCACGGCACCGAGGTGCCCGAGGGCGGCTACCGCGGCGAGTACGTCGCCGAGCTGGGCCGCCAGGTGCTGGCCGCGAACCCGCAGATCGTCGACCTGCCCGAGGACGAGGGCGTGGCGCTCGCCCGCGACGAGGCCTACCGGCTGCAGCTCGCGGAGATCCGCGACGTGCTGGACTCCTTCGGCGTGCACTTCGACGTCTGGTTCTCCGAGCGGACGCTGCACGATTCCGGCGCGGTGACGACGGCGGTCGAGCGCCTGCGCGAGCAGGGCCACGTCTACGACGACGGCGGAGCGGTCTGGCTGCGCACCACGGACTTCACCGACGACAAGGACCGTGTGCTGATCCGCGCGAACGGCGAGCCGACGTACTTCGCCGCCGACGCCGCGTACTACCTGTCCAAGAAGGACCGCGGGTTCCCGGGCAAGATCTACCTGCTGGGCGCGGACCACCACGGGTACATCAACCGGCTCAAGGCCATCTCGGCCGCCGCCGGGGACGACCCCGCCGCCAACATCGAGATCCTCATCGGCCAGCTCGTCTCCGTCCAGGGCGCCAAGCTCTCCAAGCGGGCCGGCAACATCATCGAGCTGCGCGACCTCGTGGAGTGGATCGGCGCCGACGCGGTGCGGTACTCCCTGTCGCGGTACCCGGCCGACACCCCGCTGGAGCTCGCCGGCGAGGAGATGCTCAAGCAGTCCAACGACAACCCGGTCTTCTACGTCCAGTACGCGCACTCGCGCACCTGTGCCGTGGACCGCAATGCGGCCGACCGGGCGGTGCGTCGCGTGCTCGACGACGGCGCCGACGGGTTCGACCCGGCACTGCTCGACCACCCGACCGAGGCCGTGCTCATCGGTCGCCTGACCGAGTTCCCGCGGATCGTCGCCCAGGCGGCCGAGCTGCGCGAGCCGCACCGCATCGCCCGCTACCTCGAGGGGCTCGCCGCCGACTACCACAAGTGGTACGCCGAGTGCCGGGTGCTGCCGTACCCCGACGAGGACGTCCAGGACGTGCACCGCACGCGCCTGTGGCTGAACGACGCCGTCCGCCAGGTCCTGGCCAACGGTCTCGACCTGCTGGGCGTCAGCGCGCCGGAGCGGATGTGAMTPDELSEALSAALSSAVADGTLALDADALPSTVHVERPKQREHGDWATNVALQLAKKAGTTPRALAEDLAGRLGSTPGIKAVDVAGPGFLNITLEAGAAGELARTIVQAGAEYGRSDALDGQVIDLEYISANPTGPLHIGHTRWAALGDSLVRILRAAGADVTAEYYINDAGAQMDRFGASVLAQIHGTEVPEGGYRGEYVAELGRQVLAANPQIVDLPEDEGVALARDEAYRLQLAEIRDVLDSFGVHFDVWFSERTLHDSGAVTTAVERLREQGHVYDDGGAVWLRTTDFTDDKDRVLIRANGEPTYFAADAAYYLSKKDRGFPGKIYLLGADHHGYINRLKAISAAAGDDPAANIEILIGQLVSVQGAKLSKRAGNIIELRDLVEWIGADAVRYSLSRYPADTPLELAGEEMLKQSNDNPVFYVQYAHSRTCAVDRNAADRAVRRVLDDGADGFDPALLDHPTEAVLIGRLTEFPRIVAQAAELREPHRIARYLEGLAADYHKWYAECRVLPYPDEDVQDVHRTRLWLNDAVRQVLANGLDLLGVSAPERMNANANANANA
AK018_063681518prpD2_3COG20792-methylcitrate dehydratase 2ATGCTCGACCACACCGTCCGCACCTATCGAGCCGACGAGCCGCTGGCCCGCACCGACCAGCTCGCCTGGAAGATCGCCGACGTCGCGGCGGAGCAGCTCGAGCCGCTCCCGGAGGTCACCGACATGGTGATCAACCGGATCATCGACAACGCCGCGGTGGCCACGGCGTCCCTGGGCCGCGCGCCGATCCTGGCCGCCCGCGCCCAGGCAGAGGCGCACCCGGTCTCGCGCGGCGGCTCCGGGTCGACCGTCTTCGCCTCGCAGCACCGCACCAGCCCCGAGTGGGCGGCCTGGGCCAACGGTGTGGCCGTGCGCGAGCTGGACTACCACGACACGTTCCTCGCCGCGGAGTACTCCCACCCGGGCGACAACATCCCCCCGATCCTCGCCGTCGCCCAGCACCTGGGCCGGGACGGCGCCGAGCTGCTGCGCGGCATCGTCACCGGGTACGAGATCCAGGTGAACCTGGTCAAGGGCATCTGCCTGCACGAGCACAAGATCGACCACGTCGCGCACCTCGGACCGAGCGCCGCGGCGGGGATCGGCACGCTGCTGGGGCTGCCGAACGAGACCATCTACCAGGCCGTCGGCCAGGCCCTGCACACGACGACGGCGACGCGACAGTCCCGCAAGGGCGAGATCTCCACCTGGAAGGCCCACGCACCCGCCTTCGCCGGCAAGATGGCGATCGAGGCGGTCGACCGGGCCATGCGCGGCCAGACGTCCCCGAGCCCGATCTACGAGGGCACGGACGGCTTCATCGCCTGGATGCTCTCGGGTCCCGAGGCGCGCTACACGGTGCCGCTGCCCACCCGGGGCGAGGATCGCCGCGCCATCCTGGACACCTACACCAAGGAGCACTCCGCCGAGTACCAGGCCCAGGCGTGGATCGACCTGGCACGCCGGCTGGGCACCGAGCGTCCCGAGCTGCGCGAGGCCAAGTCGGTGCGCTCCATCGTGCTGCACACGTCGCACCACACCCACTACGTCATCGGCTCCGGGTCCGGCGACCCGCAGAAGTACGACCCGACGGCGAGCCGCGAGACGCTCGACCACTCGATCCCGTACATCTTCACCGTCGCGCTCCAGGACGGCGCCTGGGACCACGTCGCCAGCTACGCCCCGGACCGCGCCGGCCGACCGGACACCGTCGAGCTGTGGCGCAAGATCACCACCGCCGAGGACCCGGAGTGGACGCGCCGCTACCACTCCGCCGACCCGGACGAGAAGTCGTTCGGCGGCCGGGTGGAGATCGAGCTGGCCGACGGCGAGACGATCGTCGACGAGATCGCCGTCGCGGACGCCCACCCCTACGGCGCACGGCCCTTCGGCCGAGAGCAGTACGTCGCCAAGTTCCGCTCCCTGGCCGAGGGCGTGCTGGCCGACGACGAGATCGACCGCTTCCTCGACGTCGTGCAGCGGCTGCCGAAGCTGAGCGCGGAGGAGCTCGCCGGGCTGACCGTCACCCCGGCGTCCGACCCGATGGCCGGCGCCGACCTGCGGGGCGGGATCTTCTGAMLDHTVRTYRADEPLARTDQLAWKIADVAAEQLEPLPEVTDMVINRIIDNAAVATASLGRAPILAARAQAEAHPVSRGGSGSTVFASQHRTSPEWAAWANGVAVRELDYHDTFLAAEYSHPGDNIPPILAVAQHLGRDGAELLRGIVTGYEIQVNLVKGICLHEHKIDHVAHLGPSAAAGIGTLLGLPNETIYQAVGQALHTTTATRQSRKGEISTWKAHAPAFAGKMAIEAVDRAMRGQTSPSPIYEGTDGFIAWMLSGPEARYTVPLPTRGEDRRAILDTYTKEHSAEYQAQAWIDLARRLGTERPELREAKSVRSIVLHTSHHTHYVIGSGSGDPQKYDPTASRETLDHSIPYIFTVALQDGAWDHVASYAPDRAGRPDTVELWRKITTAEDPEWTRRYHSADPDEKSFGGRVEIELADGETIVDEIAVADAHPYGARPFGREQYVAKFRSLAEGVLADDEIDRFLDVVQRLPKLSAEELAGLTVTPASDPMAGADLRGGIFNANANANANA
AK018_06369909prpB_2COG25132-methylisocitrate lyaseATGCTGTTCTCGGACCTCACCCCTGCCGCCAAGCGCGCCGCGTTCCGCGAGCGCCTGACCTCCGGGGAGCTGCTGCAGCTCCCCGGGGCGTTCAACCCGCTCTCGGCCCGGCTGATCGAACGCCACGGGTTCGACGGCGTCTACGTCTCGGGTGCCGTCGTCGCGGCCGACCTGGGCCTGCCCGACGTCGGTCTGACGACGCTGAGCGAGGTCGCCGGCCGGGCGGGCCAGATCGCCCGCATGACCGACCTGCCGACGCTGGTGGACGCCGACACCGGGTTCGGCGAGGCCATGAACGTGGCCCGCACGGTCCAGACCATGGAGGACGCCGGCGTCGCCGGGCTCCACATCGAGGACCAGGTCAACCCCAAGCGCTGCGGCCACCTCGACGGCAAGCAGGTGGTCGACGAGGCCACCGCCCTGCAGCGGATCCGCGCGGCCGTCACCGCTCGCCGGGACGAGAACCTGCTGATCATGGCGCGCACCGACATCCGGGCGGGGGCGGGTCTGGACGCCGCGATCGACCGTGCCCGGGCGCTCGTGGAGGCCGGGGCGGACGCCGTCTTCCCGGAGGCGATGCGCGACCTCGACGAGTTCGCCGCGATGACGGACGCGCTCGAGGTGCCGGTCCTGGCGAACATGACCGAGTTCGGCAAGTCCGAGCTGTTCACCGCCGACCAGCTGCGCGACGCCGGGATCGCCCTGGTGATCTATCCCGTCTCGCTGCTGCGCCTGGCCATGGGCGCCGCCGACCGCGGGCTGACGGCGCTGCGGGCCGAGGGGTCGCTCGCCTCGCAGGTCGAGCACATGCAGACCCGGGCCGACCTGTACGACCTGCTCGACTACCCGGCGTACAACACCTTCGACGCCGGGGTGTACGACTTCTCCCTCGAGGGCCACCACCACTGAMLFSDLTPAAKRAAFRERLTSGELLQLPGAFNPLSARLIERHGFDGVYVSGAVVAADLGLPDVGLTTLSEVAGRAGQIARMTDLPTLVDADTGFGEAMNVARTVQTMEDAGVAGLHIEDQVNPKRCGHLDGKQVVDEATALQRIRAAVTARRDENLLIMARTDIRAGAGLDAAIDRARALVEAGADAVFPEAMRDLDEFAAMTDALEVPVLANMTEFGKSELFTADQLRDAGIALVIYPVSLLRLAMGAADRGLTALRAEGSLASQVEHMQTRADLYDLLDYPAYNTFDAGVYDFSLEGHHHPGPT0001555_339DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001555-prpB-K03417NANA
AK018_063701149gltA_32-methylcitrate synthaseATGACCGAGTCCCGCCGCACCGACGAACCAGAGATCCACAAGGGGCTCGCCGGTGTGTACGCCGACACCACGGCCGTGTCCAAGGTCGACCCGGCGTCGAACTCCCTGCTGTACCGGGGCTACCCCGTGCAGGACCTGGCCGACACCCAGCCCTTCGAGGCGGTGGCCCACCTGCTGTGGCACGGCGAGCTGCCCACGGACGCCCAGCTGGAGACCCTGCGGGCGACCGAGCGTGCGCACCGCGAACTCGGCGACGACGTGCGCACGGCGATCGACCTGCTGCCCACCGACGCCCACCCCATGGACGACGTGCGCACGGCGCTGAGCGTCATCGGCGCACGGGAGACCGCCGGGGTCGACCTGCTCGCGCTGGCCGACGCGGGGACGACGGCGGAGCACGCCGTGCGGCTGTTCGCCGAGCTGCCCGCGGTGGTCGCCTACACCCAGCGGCGCCGCCACGGCCAGGAACCCGTCGCCCCACGCGACGACCTGGACCACGCGGCGAACACGCTGTGGATGACGTTCGGCACCGAGCCGGACGAGACCGTCGTGGACGCCTTCAACCGTTCGATGATCCTGTACGCCGAGCACTCCTTCAACGCCTCGACGTTCACCGCCCGGGTGGTGGCCTCCACCCTCAGCGACGTGCACTCGGCCGTCGTCGCCGCCGTCGGCGCCCTCAAGGGGCCGCTGCACGGCGGGGCGAACGAGGCGGTCATGCACGCCTTCACGGAGATCGGCTCGGCCGACCGGGCCGAGGCGTGGCTGGACGAGGCGCTGGCGGCCAAGCGCAAGGTCATGGGCTTCGGCCACCGGGTCTACAAGCACGGCGACTCCCGGGTGCCGACGATGAAGTCCGCCCTGGACGACCTGGTCGAGCACTTCGACCGCCAGGACCTCGGCGACCTGTACGCGGCGCTGGAGTCGGCGTTCGTCGAGCGCAAGGGGATCTACCCGAACCTCGACTACCCGGCCGGGCCCGCCTACCACCTCATGGGGTTCGACACCGAGACGTTCACCCCGCTGTTCGTCGCGGCCCGTGTCACCGGCTGGACGGCGCACATCGCCGAGCAGCAGGCGGCGAACTCGCTGATCCGCCCGCTGTCGTCGTACGTGGGGCACGAGCGCCGGGACGTCCCGCGTCCCTGAMTESRRTDEPEIHKGLAGVYADTTAVSKVDPASNSLLYRGYPVQDLADTQPFEAVAHLLWHGELPTDAQLETLRATERAHRELGDDVRTAIDLLPTDAHPMDDVRTALSVIGARETAGVDLLALADAGTTAEHAVRLFAELPAVVAYTQRRRHGQEPVAPRDDLDHAANTLWMTFGTEPDETVVDAFNRSMILYAEHSFNASTFTARVVASTLSDVHSAVVAAVGALKGPLHGGANEAVMHAFTEIGSADRAEAWLDEALAAKRKVMGFGHRVYKHGDSRVPTMKSALDDLVEHFDRQDLGDLYAALESAFVERKGIYPNLDYPAGPAYHLMGFDTETFTPLFVAARVTGWTAHIAEQQAANSLIRPLSSYVGHERRDVPRPPGPT0001480_843DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659NANA
AK018_06371546hypothetical proteinGTGCCACGGGCCGCGCGGGTGTGCCACGATCTGCGGGTGCACGTACTGCTCGTCACCACCGTCGAGGCCGACGGCGCGGCCCCCGACGTCGCCGCGGCCTGGGTCCGGGGCTCCGCCCGCTGCGAGGTGCGGCGGCTCGTCCTGGCGGCCCCGGTGCCGGCGCCCGGTCCGGCGTCGCCCTGTCAGGATCCGGCACCGGTCTTCGTCCCGACCGAGGCGCTCGGCCTGACCACGGTCGACCGGCCGTCCGAGACCCCCGAGCGTGCCGCGCTGCGGGCGGCGGTGCAGGCGGCCGACCTCGTCGTCGTGCACATGACCGTCCTGGACGGTGCCGGGCTGCACGACGGCCCGGTCGCCCAGGCCGCTGCCGCCGCCGCGCCCGCCGTCGTCCCCGTCGTCGTGCTCGCCGGCCGCAGCGAGGTCACCCGCCGCGAGCTCGCCGCGGCCGGGGTCGCGGGCGTGCACGAGGTCGGCGACCCGTGGGACCCGGTCGCCGTCGAACGCGTGGCGCGCACCTGGGCGCCCGCGTGGCACGCGGGAACGTGAMPRAARVCHDLRVHVLLVTTVEADGAAPDVAAAWVRGSARCEVRRLVLAAPVPAPGPASPCQDPAPVFVPTEALGLTTVDRPSETPERAALRAAVQAADLVVVHMTVLDGAGLHDGPVAQAAAAAAPAVVPVVVLAGRSEVTRRELAAAGVAGVHEVGDPWDPVAVERVARTWAPAWHAGTNANANANANA
AK018_063721215nadA_1Quinolinate synthase AATGGTGGCCGTGACCACAGTGCTGAACGAGACCTCGAACTTCGTCGAGCCTGCCCCGTCGGCCCTGCTCCTGCTGGGCCAGGACCGCGACCTCGCCTCCGAGCGCGGCGTGGAGTGCACGGGTGCGCTGCCGTCCCCGTCCGACCCGGATCTGGTCGAGCGTGCCCGGGCCGCCCGGGAGGCGCTGGGCGACCGCGCCTTCGTGCTGGGGCACCACTACCAGCGCGACGAGGTCATCGACTTCGCGGACGTCACCGGCGACTCGTTCAAGCTCGCCCAGAAGGCGGCGGCCCGCCCGGAGGCGGAGTTCGTGCTGTTCTGCGGCGTGCACTTCATGGCCGAGTCCGCCGACATCCTGACCTCCGACGCCCAGCAGGTGGTGCTGCCGGACATGGCGGCGGGCTGCTCGATGGCGGACATGGCCGAGATCTCGCAGGTCGAGGAGGCCTGGGCGGTGCTGGAGGACGCGGGGGTCGCCGCCGACACCGTGCCGGTGACGTACATGAACTCCACGGCGGCGATCAAGGCGTTCACGGGTCGTCACGGCGGCACCGTGTGCACGTCGTCGAACGCGCAGGTGGCGCTGCGCTGGGCGTTCGACCGGGTCGGCGGCCTGGACGGCACCGGCAAGGTGCTCTTCATGCCGGACCAGCACCTCGGCCGGAACACGGCGGTGCTGCAGCTCGGCATGAGCCTGGACGACTGCGTCGTCTTCGACCCCCGCAAGCCGGGCGGCGGCCTGACGGAGGCCGAGCTGCGCGACGCCCGCATGATCCTGTGGCGGGGCCATTGCTCGGTGCACGGCCGGTTCTCGGAGCGCAACGTCACCGACATCCGCGCGGCGGTCCCGGACGTCAACGTCCTGGTGCACCCCGAGTGCAAGCACGAGGTGGTCACGGCCGCGGACATGGTGGGGTCCACCGAGTACATCATCAAGGCGCTCGACGCCGCGGAGCCGGGTTCGTCGTGGGCGATCGGCACCGAGCTGAACCTGGTGCGTCGCGTCGCCCGCGCCCACCCGGACAAGCAGGTCCACTACCTGGACTCGACCGTCTGCTTCTGCTCGACGATGAACCGCATCGACCTGCCCCACCTGGTGTGGGCGATGGAGTCCCTCGTCGAGGGGCGCGTCGTCAACCGGATCGTCGTGGACGCCGACGACGCGCACTGGGCCCGGGTGGCCCTCGACCAGATGCTGGCGCTGCCGGGGATCTGAMVAVTTVLNETSNFVEPAPSALLLLGQDRDLASERGVECTGALPSPSDPDLVERARAAREALGDRAFVLGHHYQRDEVIDFADVTGDSFKLAQKAAARPEAEFVLFCGVHFMAESADILTSDAQQVVLPDMAAGCSMADMAEISQVEEAWAVLEDAGVAADTVPVTYMNSTAAIKAFTGRHGGTVCTSSNAQVALRWAFDRVGGLDGTGKVLFMPDQHLGRNTAVLQLGMSLDDCVVFDPRKPGGGLTEAELRDARMILWRGHCSVHGRFSERNVTDIRAAVPDVNVLVHPECKHEVVTAADMVGSTEYIIKALDAAEPGSSWAIGTELNLVRRVARAHPDKQVHYLDSTVCFCSTMNRIDLPHLVWAMESLVEGRVVNRIVVDADDAHWARVALDQMLALPGIPGPT0013365_341DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013365-nadA-K03517NANA
AK018_06373600inhA_3Isonitrile hydrataseGTGAGCACCGACGGCGGGCTGCACATCGGGATCTTCGTCTTCGACGAGGCCGAGGAGCTCGACGTCGTGGGGCCGTTCGAGGTCCTGGCCGCCTGGGAGCAGCACTCGGCGATCAAGCCGCACGTGAGCACGTTCTCGCACGACGGCGAGGGGGTACGTCTCGCCAAGGGCCTGCGGATGGTGCCGGCCCGTTCGGCGGACGACGTCGGTCCCCTGCACCTGCTCGTCCACCCGGGCGGGTGGGGCACCCGGGCGCTGATCGCCGACCCGGGGCACCTCGAGTGGCTGCGGATGGTCCACGCCCAGACGCCGGTGGTCGCGGCGGTGTGCACGGGGACGCTGGTCCTGGCGGCGGCCGGTCTCCTGGCCGGCCGCCCGGCGACGACCCACCGGGACCACTACGACGAACTCGCGCGGATCGACCCGAGCGTGCTGGTCGACACCGAGGCGCGGTTTGTCGACGACGGCGACGTGGTCACGTCGGCGGGCGTCTCGGCGGGGATCGACATGGCGCTGCACCTGGTGGCCCGCCTGGAGTCCCCGGAGGTCGCGCGCCGGGTCCGCGGTGCGCTGCAGTACGAGCCCGACCCGCCGGTCTGAMSTDGGLHIGIFVFDEAEELDVVGPFEVLAAWEQHSAIKPHVSTFSHDGEGVRLAKGLRMVPARSADDVGPLHLLVHPGGWGTRALIADPGHLEWLRMVHAQTPVVAAVCTGTLVLAAAGLLAGRPATTHRDHYDELARIDPSVLVDTEARFVDDGDVVTSAGVSAGIDMALHLVARLESPEVARRVRGALQYEPDPPVNANANANANA
AK018_06374543hypothetical proteinATGACCCGGATGCTGCAGCTCGCCAGGGCCTCCCTGCTCCCCCGCCGTCGCAAGCCCGACCAGGGGATGCTCGACCCGTCGACCACGGTCCTGCGCGTCCACCCCGGCGACCTGGACATGTACTTCCACGTCAACAACGGGTCCTACCTGCAGATGATGGACGTGGGCCGGTCCAACTACCTGGCCGACATCGGCGGGTTCGACCGACTCAGGACGCGCGGCTGGTACCCCGTGGTCGCGGCGTCGACCATGACGTACAAGCGCTCGCTGCAGCTCTTCGACCGCGTCACCCTCACCACGCGCACCCTCGGGTGGGACGAGCGGGTCGTCTACCTCGAGCAGGTGTTCACCGCGCGCGACCGGTTCTGCGCGCGCGGCCTCGTCGCCGGGAGGTTCCTCGGCAAGGACGGCACGCGCGTCGCGCCGTCCGACGTCGTGGCCCTGCTCGGCGACGACGCCCCGGCGGCCAGCCCCGAGCTGCCCGACGACGTGGCGGCGTGGGCCCGGGCCGTGGACGTCGCCCACCGGGACGTCCGCGCCTGAMTRMLQLARASLLPRRRKPDQGMLDPSTTVLRVHPGDLDMYFHVNNGSYLQMMDVGRSNYLADIGGFDRLRTRGWYPVVAASTMTYKRSLQLFDRVTLTTRTLGWDERVVYLEQVFTARDRFCARGLVAGRFLGKDGTRVAPSDVVALLGDDAPAASPELPDDVAAWARAVDVAHRDVRANANANANANA
AK018_063751392dapE_7Succinyl-diaminopimelate desuccinylaseGTGACGACTCCCACCCCGGACACCCCGGACCTGACCGCCGCCCTGCGCGCCCACGTCGACGACCTCTTCCCCGCCGTGCAGACCGACCTCGAGGCGCTGGTGCGCATCCCGAGCGTCTCCGCCTCCGCCTTCGACCCCGCGCACGTGGCCGCGTCCGCCGAGGCGGTCGCCGACCTCCTGCGCGACGCCGGGCTGCCGGAGGTGCAGGTCCTGCGCTCCGCCCGGCCGGACGGCAGCCCCGGAGCACCCGCCGTCGTCGCCCGACGTCCGGCGCCCGACGGCGCCCCGACCGTGCTTCTCTACGCGCACCACGACGTGCAGCCCCCCGGCGACCCGGCCGACTGGACCTCCGACCCCTTCGTGCCGACGCAGCGCGGCGAGCGGCTGTTCGGCCGGGGTGCCGCCGACGACAAGGCCGGCGTCATGGCCCACGTGGGTGCTCTGCGCGCCCTGGCGGCGCTGGGGGAGGCCCCCGGGGTCGGCGTGACGGTGTTCGTCGAGGGCGAGGAGGAATCGGGGTCGCCGAGCTTCGCGCGGTTCCTCGCCGACCACCACGAGCTGCTGGCGGCGGACGTGATCGTCGTGGCGGACTCCACGAACTGGAAGGTGGGCGTGCCCGCGCTGACGACGTCGCTGCGCGGTCTCGTGGACGGCGTCGTCACCGTCGAGGTGCTGGACCACGCCGTGCACTCGGGCATGTTCGGCGGGCCGGTGCTCGACGCGAACCTCGCGATGGCACGGCTCCTGACCTCGCTGCACGACGACGTCGGCAACGTCGCCGTGACGGGGCTGACCGGGGCGGGCGAGCCGGAGGTGGACTACGTCGAGGAGGACTTCCGCGCCGACGCCGGCGTGCTCGACGGCGTGCGGCTCGCGGGCGAGGGGACCATCGCCGGGCGGCTGTGGACCAAGCCGGCGGTGGCCGTGATCGGCCTGGACGCCACCGACGTCGCGCACGCCTCCAACACGCTGGCGCCCAGCGCCGCGGCGAAGCTGTCCGTGCGCATCCCGCCGGGGGTCGACCCGCGCTCCGCCGAGGACGCGCTGCGGGCCCACCTGGAGGCTCACGCCCCGTTCGGCGCCCGCGTGACGTGGACGCCGGGCGAGCAGGGCAAGGCCTTCGGGGCCCCGGCGGACTCCGCCGCGATGCAGGCGGCACGGGCCGCGTTCGCGACCGCGTGGGGGACCGACCCCGTGGACATCGGCGTCGGCGGGTCGATCCCGTTCATCGCGGACCTGCTGGAGGCCTACCCGCAGGCCGCGGTGCTGGTCACCGGCGTGGAGGACCCGGACTCGCGGGCGCACGGCGCCGACGAGTCCGTGCACCTGGGCGAGCTGCGCAAGGTCGTGCTGGCCGAGGCGCTGCTGCTGCGCGGGCTCGCGCGCGGCTGAMTTPTPDTPDLTAALRAHVDDLFPAVQTDLEALVRIPSVSASAFDPAHVAASAEAVADLLRDAGLPEVQVLRSARPDGSPGAPAVVARRPAPDGAPTVLLYAHHDVQPPGDPADWTSDPFVPTQRGERLFGRGAADDKAGVMAHVGALRALAALGEAPGVGVTVFVEGEEESGSPSFARFLADHHELLAADVIVVADSTNWKVGVPALTTSLRGLVDGVVTVEVLDHAVHSGMFGGPVLDANLAMARLLTSLHDDVGNVAVTGLTGAGEPEVDYVEEDFRADAGVLDGVRLAGEGTIAGRLWTKPAVAVIGLDATDVAHASNTLAPSAAAKLSVRIPPGVDPRSAEDALRAHLEAHAPFGARVTWTPGEQGKAFGAPADSAAMQAARAAFATAWGTDPVDIGVGGSIPFIADLLEAYPQAAVLVTGVEDPDSRAHGADESVHLGELRKVVLAEALLLRGLARGNANANANANA
AK018_06376651putative proteinGTGTTCTCCCGCAAGCGTGACCTCGCCGAGACGCCCGCCGCCGGTGCGTCCGACACGACCGACCCCGTGACCGCCGACTCGCCGACCGAGGCGGCTCGCCTCGAGGGCAAGGGCCGGCCCACGCCGAAGCGCAGCGAGTCCGAGGCGCGCAACAAGCGCCCGCTCGTGCCGGACGACCGCAAGGCCGCCCGCAAGGCGTCCAAGGAGAAGATGCGCGAGGCGCGCAACGTCGAGTACCGCGCGATGCAGAACAACGACGAGCGGCACATGCCCGTGCGCGACCGCGGCCCGGTGCGCCGCTACGTGCGCGAGTACGTGGACGCCCGGTGGAATCTCGGCGAGTTCTTCCTGCCGATCGCGTTCGTCTTCATCTTCCTGAACATCCTCGTGATGCAGCAGCAGGCGCTGGCGATGCTGGTGCTGCTCATGCTCTACGCGGTCGTCTTCATCACGCTGCTGGACGCCGTGGTCATGTGGCAGCGCCTCAAGCGGCGCCTGCGGGACAAGTTCGGCACCCTGGGCGACGACGGGAAGAAGACGTTCGACGTACCCCGCGGCACCATGATGTACGCCGTCATGCGCGCCTTCCAGATCCGTCGCTCGCGGCTGCCCAAGCCGATCCACAAGAAGCACGGCGTCTGGCCCGAGTGAMFSRKRDLAETPAAGASDTTDPVTADSPTEAARLEGKGRPTPKRSESEARNKRPLVPDDRKAARKASKEKMREARNVEYRAMQNNDERHMPVRDRGPVRRYVREYVDARWNLGEFFLPIAFVFIFLNILVMQQQALAMLVLLMLYAVVFITLLDAVVMWQRLKRRLRDKFGTLGDDGKKTFDVPRGTMMYAVMRAFQIRRSRLPKPIHKKHGVWPENANANANANA
AK018_063771014gpr_4COG0667L-glyceraldehyde 3-phosphate reductaseATGGTCAACTACCGTTACCTCGGCAACAGTGGTCTCAAGATCTCGGAGATCACCTACGGCAACTGGCTCACCCACGGGTCCCAGGTCGAGAACGACGTCGCCACGCAGTGCGTGCGCGCCGCGCTCGACGTCGGCATCACCACCTTCGACACGGCGGACGTCTACGCCAACACCAAGGCGGAGCAGGTCCTCGGCGACGCCCTGAAGGGCGAGCGCCGCGAGTCCCTCGAGATCTTCACCAAGGTCTACTGGCCTACGGGCCCCGGTGGCCCCAACGACACGGGCCTGTCGCGCAAGCACGTCATGGAGTCGATCAACGGCTCCCTGCAGCGGCTGGGCACCGACTACGTCGACCTGTACCAGGCGCACCGCTACGACACGGAGACGCCGCTCGAGGAGACGATGCAGGCGTTCGCCGACATCGTGCGCCAGGGCAAGGCCCTCTACATCGGCGTCTCGGAGTGGACGGCGGACCAGATCCGCGCCGGTGCCGCGATGGCCAAGGACCTCGGCTTCCAGCTCATCTCGTCGCAGCCGCAGTACTCGATGCTGTGGCGCGTGATCGAGGACGAGGTGGTCCCCGCCTCGAAGGAGGCCGGCCTGTCCCAGATCGTCTGGTCCCCCATGGCCCAGGGCGTGCTGTCCGGCAAGTACGTGCCCGGCAAGGAGCTGCCGGCCGGGTCGCGGGCCACGGACTCCAAGGGCGGCGCCCGCATGATCGAGCGGTTCATGCGCGACGACGTCCTCGAGCGGGTCCAGGGGCTCAAGCCGGTCGCCGACGAGCTGGACCTGTCGATGGCCCAGCTCGCCGTCGCGTGGGTCCTGCAGAACGACAACGTCGCGGCCGCCCTCGTGGGCGCCTCGCGGCCCGAGCAGGTGGCCGAGAACGTCAAGGCCTCCGGGGTGACGATCCCCGCCGAGCTCATGGCGCGCATCGACGAGGTCCTCGGCGACGTCGTCGAGCGGGACCCGGCGAAGACCGCCGAGGGCGCACCGCAGACGCGCGTCGTCTGAMVNYRYLGNSGLKISEITYGNWLTHGSQVENDVATQCVRAALDVGITTFDTADVYANTKAEQVLGDALKGERRESLEIFTKVYWPTGPGGPNDTGLSRKHVMESINGSLQRLGTDYVDLYQAHRYDTETPLEETMQAFADIVRQGKALYIGVSEWTADQIRAGAAMAKDLGFQLISSQPQYSMLWRVIEDEVVPASKEAGLSQIVWSPMAQGVLSGKYVPGKELPAGSRATDSKGGARMIERFMRDDVLERVQGLKPVADELDLSMAQLAVAWVLQNDNVAAALVGASRPEQVAENVKASGVTIPAELMARIDEVLGDVVERDPAKTAEGAPQTRVVPGPT0010570_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSTUMORICIDAL_COMPOUNDSTUMORICIDAL-TYPE_II_POLYKETIDE-MITHRAMYCIN_METABOLISM,PGPT0010570-mtmW-K15967NANA
AK018_06378831hypothetical proteinATGAGCACCATCGCCGTCACCCGGCCCACGACCCGCCCACCGATGCGCCCGGCCCGCCGGGCCGCCCAGCTCGTGCTCGGGCTGGTCGCCTACGCCTGGTCGATGGCGATGCTGCTGCACGCCGGTCAGGGCGCCATGCCGTGGGACGTCCTGCACCAGGGGATCGTCCGCACCACCGGCTGGTCGTTCGGCGTCGTCGTCGCGCTGACCTCCGTCGTCGTGCTGGCCGCCTGGGTCCCGCTGCGGCAGCGGCCCGGCGTCGGCACCGTCGCGAACGTCGTGATCATCTCCGTCTGCGTCGGTCCCAGCCTGGTGGCCGTCCGCGCGCTGGTCCCCGACCCCGGCACCGGTGCGGCGGTCGTACTGGCCGCCGGCGGCATCGCGCTGAACGGCGCGGCCACCGCCGCCTATGTGGGGGCCCGGCTCGGACCCGGTCCCCGCGACGGGCTCCTGACCGGGATCGTCGAGCGCTCCGGCGCCTCGGTGCGGCTCGTCAAGACCGGCATCGAGGGGAGCGTCGTGCTCCTCGGGTGGCTGCTGGGCGGCACCGTGGGATGGGCCACCGTCGCCTACGCCCTCCTGGTCGGCGTCGTCGTCCAGGCCGTGGCCCGGCACCGGTGGCTCGTGCCGACCGGGCTCGTCGCGGCACCGGCACGCCGTCCGCACCGCCCGCGACGCCCGCGACGCCCGCGACGCCCGGCCGTCGGTCGCACCGGGACGCACGACGCCGTGCCCCCGTCCCGTGAGCAGGTCCAGGAGGCACGGCGTCGGCGGGCCCGGCAGATCGCCCGCGCCCTGGAGGCGTTGGGCGACCAGGACCGGACCCTGTAGMSTIAVTRPTTRPPMRPARRAAQLVLGLVAYAWSMAMLLHAGQGAMPWDVLHQGIVRTTGWSFGVVVALTSVVVLAAWVPLRQRPGVGTVANVVIISVCVGPSLVAVRALVPDPGTGAAVVLAAGGIALNGAATAAYVGARLGPGPRDGLLTGIVERSGASVRLVKTGIEGSVVLLGWLLGGTVGWATVAYALLVGVVVQAVARHRWLVPTGLVAAPARRPHRPRRPRRPRRPAVGRTGTHDAVPPSREQVQEARRRRARQIARALEALGDQDRTLNANANANANA
AK018_063791437norG_1COG1167HTH-type transcriptional regulator NorGGTGACCGCACCCACCGCCCCCGTCGACGCGCTCCGCCACCTGTCCGCGCCGTCGGCGGCCCGGCTGCTCGGCGGGTGGCGCCGCCCCGGTCCCGCCTACCAGGCGCTGGCCGACGCGCTGCGCGCCGCCGTGCTGTCCGGCACCCTGCCTCCCCTGACCCGGCTGCCGTCCGAGCGCGACCTCGCCGACGCGCTCGGGGTCTCCCGCACCACGACGTCGGGCGCGTACGCGCGGCTGCGCGAGCTCGGGTTCGCCACGAGCCGGGTCGGGTCCGGCACCGTGGCGGTCCTCCCCCGCGGTCCTGCCGCCGCGTCGGCCCGGCGGCCGCCCGCCGGCGACGCGCCCCTGACCGACCTCGGCGACGAGCACGTCATCGACCTCGCCCAGGCGACGCCGTCGGCGAGCGACGCCCTGCACGGCGCCTACGCGCGCGCCCTCGAGGAGCTGCCCGCACACCTGTCCGGCGGCGGCTACGCCCACCTGGGCATCGAGTCCCTCCGGGCGGCGATCGCCGCCCGGTACACGGCGCGCGGCGTGCCCACCGACGTCGACCAGATCCTGGTCACCACCGGCGCGCAGCAGGCGATCGCGCTGCTGGCCGGCACCCTGCTCGCCCGCACCGAGCACGCCCTGGTCGAGTCGCCCACCTACGTGCACGCGATCGGAGCGCTGCGGGCCGCCGGGGCGCGCGTCGTCGGAGTACCGGTCGGCGACGTGGAGGCGATGGCGTCGGCAGTCCGCCGCACGGGCGCGCGGCTCGTCTACCTGGTGCCCGACTTCCACAACCCGACCGGCCGCACCCTGACCGCCGCCGAGCGCGCGGCGCTCGGCACGCTGACCGCGCAGGGCCTCACCGTGGTCGGCGACGAGACCCTGACCGACCTGGACCTCGACGGGGTCGGCGTCCCCGCACCGTTCGCGGGCACCGGCGAGGACCCGCGGCTGATCAGCGTCGGTTCCGCGTCGAAGACCTTCTGGGGCGGCATGCGCGTGGGCTGGGTCCGCGCCGCCCCGCAGCTCGTGCAGCGCCTCGCGCGCGTCCGCCAGCGGCTCGACGTCGCCACCCCCGTGCTGGAACAGCTCGCGGTGGCCGACCTGCTCGACCGGCGCGAGGAGGTCCTGCCGGCCCGTCTCGCCGACCTGCGCTCCCGCCGCGACCTGCTCGTGGAGTCCGTGCGCCGCCGGTTCCCCTCCTGGGACGTGCCCCGGCCGCCCGGCGGCCTGTGCCTCTGGATCGGGCTCGGACGGCCCGTGGGCCCCGCCCTGGCCGCGGCCGCGGTCGCCGACGGGCTGCGGCTGTCCGCCGGCCCGCAGTTCACCCCGGACGGCACCGCCGCCGACCACCTGCGCCTGACGTGGACCCGGTCGCCCGAGGTCCTGACGGATGCGGTGGAGCGGCTCGCCCGGTCCTGGGCACGGGTGACGCGGGAGGGGTGAMTAPTAPVDALRHLSAPSAARLLGGWRRPGPAYQALADALRAAVLSGTLPPLTRLPSERDLADALGVSRTTTSGAYARLRELGFATSRVGSGTVAVLPRGPAAASARRPPAGDAPLTDLGDEHVIDLAQATPSASDALHGAYARALEELPAHLSGGGYAHLGIESLRAAIAARYTARGVPTDVDQILVTTGAQQAIALLAGTLLARTEHALVESPTYVHAIGALRAAGARVVGVPVGDVEAMASAVRRTGARLVYLVPDFHNPTGRTLTAAERAALGTLTAQGLTVVGDETLTDLDLDGVGVPAPFAGTGEDPRLISVGSASKTFWGGMRVGWVRAAPQLVQRLARVRQRLDVATPVLEQLAVADLLDRREEVLPARLADLRSRRDLLVESVRRRFPSWDVPRPPGGLCLWIGLGRPVGPALAAAAVADGLRLSAGPQFTPDGTAADHLRLTWTRSPEVLTDAVERLARSWARVTREGNANANANANA
AK018_06380207hypothetical proteinATGATCCGGCCGCGCTGGGAGTGGGCCTGGGAGACCGACGCCGGGGACCGCGTCGCCTCGCCGAGCCCGGTGTTCACCACGCAGTACGACGCGGAGGAGTGGCTCGGCGAGCACTGGCGCGAGCTCGCCGCCGCCGGCGCGGTCCGCGCGCGGCTGCTGCACGAGGGCAGCCAGGCCACGCCGACCGTCGAGCTGCGGGCCCCCTGAMIRPRWEWAWETDAGDRVASPSPVFTTQYDAEEWLGEHWRELAAAGAVRARLLHEGSQATPTVELRAPNANANANANA
AK018_063811074pyrD_1COG0167Dihydroorotate dehydrogenase (quinone)ATGACCCCCTACGCCCTGTTCTTCCGCACCGTCTTCCGGCGGATGGACCCCGAACGGGCGCACGAGCTCGCCTTCCGTGCCATCGAGGTGGCGGGCCGGCTGCCGGTGGTCCGCGACGTCGTGCAGGGCGCGCTGGCCCCGTACCTCGGCCGCGGTACCGGCGGACCGGGCAGCGTCGACGTCCTGGGCCGCACGGTGCCGGCGCCGTTCGGGCTGGCCGGCGGGTTCGACAAGAACGCGCGCGCGGTGCGCGGTCTGACGATGCTGGGGTTCGGGTTCGTCGAGGTGGGGACGGTCACGCCGCGGCCGCAGCCCGGCAACGAGGCGCCGCGCATGTGGCGCGAGCTCGACGTGGCCGGTGTGCGCAACCGGATGGGGTTCAACAACGACGGTGCGGTCGAGATGGCCGAGCGGCTGCGCGCGCTGCGGTCCACGCCGGCCGGCCGGGCCGCCGTCGTCGGGGTGAACATCGGCAAGAACAAGGACACGTCCGCCGCCGACGCCGCCCGGGACTACGCCACCGGCGCTCGGCTGCTGGCGCCCTACGCCGACTACCTGGTCGTCAACGTCTCCTCGCCGAACACCCCCGGCCTGCGCGACCTGCAGACCACCGCCGAGCTGCGGCCGATCCTGACCGCGGCGCGGGAGGCGGCGGACTCCGCCACGTCCGGGGACGACCGGACGCCGCTGCTGGTCAAGATCGCCCCCGACCTGGCCGACGACGACGTGGACGCGGTCGCGGACCTCGTCGCCGAGCTGGGGCTCGACGGCGTCGTCGCGGTGAACACGACGATCGACCACGAGCGAGGGCCGGGCGGTCTGTCGGGCCCGGTGCTCCTCCCGCGAGGGCTGGAGGTCGTCGCCCGGCTGCGTGGCCGGCTGGGACCCGACCCCGTGATCATCGGCGTGGGCGGCGTGGCCGACGCCGACGACGTGCGGGCCTACCTGCGGGCGGGAGCGGACCTGGTGCAGGGGTACACGTCGTTCGTCTACCGCGGTCCGCTGTGGCCGTCGTCGATCAACCGGGCCCTGACGCGGTCGGCGGGCTCGGTCAGCTCGGGGACCGTCGCATGAMTPYALFFRTVFRRMDPERAHELAFRAIEVAGRLPVVRDVVQGALAPYLGRGTGGPGSVDVLGRTVPAPFGLAGGFDKNARAVRGLTMLGFGFVEVGTVTPRPQPGNEAPRMWRELDVAGVRNRMGFNNDGAVEMAERLRALRSTPAGRAAVVGVNIGKNKDTSAADAARDYATGARLLAPYADYLVVNVSSPNTPGLRDLQTTAELRPILTAAREAADSATSGDDRTPLLVKIAPDLADDDVDAVADLVAELGLDGVVAVNTTIDHERGPGGLSGPVLLPRGLEVVARLRGRLGPDPVIIGVGGVADADDVRAYLRAGADLVQGYTSFVYRGPLWPSSINRALTRSAGSVSSGTVAPGPT0021190_1444DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021190-pyrD-K00254NANA
AK018_06382453hypothetical proteinATGAGTACCTCGACACCCGCTGCGACGGGGAAGGGCTTCGGCCGCCTCCTCGTGACCGTGTACGGCGTGCTGGCGTTCGCCGCCGTCGGCCGCTCGGCCTACCAGGTGCTGACCAAGCTCGAGCACGCACCGGTCGCCTACTTGCTGTCCCTGCTGGCCGCGCTGGTCTACGTCGTCGCGACCGTGGCGCTCGCGCTCGGGTCCCGCCCGCGCTGGCGTCGCACGGCGTGGTGCGCCGTCGCCGTCGAGGCGGCCGGCGTGGTGAGCGTCGGCGTGCTCTCGACGACGCACCCCGAGTACTTCGGTGAGGCCACCGTCTGGTCGTCGTTCGGACAGGGGTACGGGTACGTGCCGCTGGTCCTGCCGTTCGTCGGGCTGTGGTGGCTCTGGCACACTCGCCCCCGGAGCGATGATCCTGCGAGCTCGCCGGCCCGACCGACGGAGGCACGATGAMSTSTPAATGKGFGRLLVTVYGVLAFAAVGRSAYQVLTKLEHAPVAYLLSLLAALVYVVATVALALGSRPRWRRTAWCAVAVEAAGVVSVGVLSTTHPEYFGEATVWSSFGQGYGYVPLVLPFVGLWWLWHTRPRSDDPASSPARPTEARNANANANANA
AK018_06383360hypothetical proteinGTGGTCCTTCCCCTGGTCGTCCTCGCCGTCGCGCTGTGCCTGGCGCTCGCGGGGTGGGCGGCGTGGTTCGCGCTGCGCGACCGCGCGGTGGTGCTGCGCCAGCTGTTCGCGGCCGGCGCCGTCGAGGCCGTCCTCGTCGTGCAGGCCGTCGTCGCCGGTGTCCTGCAGGCCGGGGGCCACGCCGTCGACGGCCCGCTGTTCTGGGGCTACCTGCTCACCGCGGCCCTGCTGCTGCCGCTCGCCGCTGTGTGGGCGTTCGCCGAGCGCACGCGGTGGTCGTCCGTGGTGCTGCTCGTCGCGGCGCTGACGGTGGCGTTCCTGCAGTGGCGCCTGTGGATCATCTGGACGGAGGGCGCATGAMVLPLVVLAVALCLALAGWAAWFALRDRAVVLRQLFAAGAVEAVLVVQAVVAGVLQAGGHAVDGPLFWGYLLTAALLLPLAAVWAFAERTRWSSVVLLVAALTVAFLQWRLWIIWTEGANANANANANA
AK018_063841506pepA_1COG0260putative cytosol aminopeptidaseGTGGCTGACCTCACTCTGACCGGCAAGAATCCGACCTCTCTGACGGCCGACGCCCTCGTCGTCGGCACCTGTTCCACCTCCGACGGCGTGGCCGTCGTCGCCGACCAGCTCCCCGCAGCGGTCGTGGAGCAGATCGAGACGCTCGCACCGCGGCTGGGGGTGACCGGCGACCTCGGCGAGGTCCGCACCCTCCCGGCGGGCAAGGACGTCTCCGCGGACGTCCTGGTGCTCACGGGTCTCGGGGAGCGTGACGCGGACGGCACGTTCGCCCGCGAGTCGCTGCGTTCCGCGGCGGGCTCGGCGGTACGGACCCTGGCTGGTTCGACGTCGGCGGTCGTGGCGCTGCCGGCGGTGGACGAGGCCGAGCTGGGCGCCGTGGCGGAGGGCGCGCTGCTCGGCGCCTACGCGTTCACGTCCTACCGCGGCGAGGAGGCTGCCGCGAAGCAGGCCCCGGTGCAGCGGCTGCAGCTCGCGACGTCGTTCGCCCGCTCGGGCGCGGCCCGTGCGGCGGTGTCCCGCGCCGAGGTGCTGGCCGCCGCGGTGCACGGCACCCGCGACCTGGTCAACACCCCGCCGAACGACCTGTTCCCCGCGGCGTTCGCCGACGCGGCCAAGGCCGCGGTCAAGGAGCTGGGCGTCAAGGGCGTCAAGGTGACGGTCCTGGACGACAAGCAGCTCGCGGCCGGCGGCTACGGCGGTCTCACCGGCGTCGGTCAGGGCTCGGCGCGCGGGCCGCGCCTGGTGAAGGTGGCGTACGCCCCGGCCAAGGCGTCCGAGCGCGTCGCCCTGGTGGGCAAGGGCATCACGTTCGACACCGGCGGCATCTCGCTGAAGCCGGCGGCGGGCATGGAGACCATGAAGCTGGACATGGCCGGCGCGGCGGCGGTGCTGCACACGGTGCTCGCCGCGGCGCGGCTCGGCCTGCCGGTGGCGGTCACGGGGTACCTCTGCCTGGCGGAGAACATGCCCGGGAGCAACGCCCAGCGTCCCTCGGACGTGGTGCGCATCCGGGGCGGCAAGACCGTCGAGGTCCTCAACACCGACGCCGAGGGCCGCCTGGTCATGGCGGACGGCCTGGTGTCCGCCGTCGAGGACGGCCACGACGTCGTTCTGGACATCGCGACCCTCACCGGCGCGCAGATGGTCGCGCTGGGCAAGCGGGTCAGCGGCGTCATGGGCACCGACGCGGTCCGTGACGAGGTCAAGGTCGCCGCTGACACGGTGGGCGAGGAGTTCTGGCCGATGCCCCTGCCGGAGGACCTGGCCGAGGGGCTGAAGTCCAAGGTCGCCGACATCTCCAACGTGGGCGACCGGTGGGGCGGCATGCTCACGGCGGGTCTGTTCCTGCGCACGTTCGTCGAGGACACGCCGTGGGCGCACCTCGACATCGCCGGACCGGCCTTCAACGAGAAGGGGCCGTTCGGCTACACGCCCGCGGGCGGTACCGGCGTCGGCGTGCGGACCATGCTGGGCTTCCTCGAGGGCCGCAGCGGCGCCGAGGGCTGAMADLTLTGKNPTSLTADALVVGTCSTSDGVAVVADQLPAAVVEQIETLAPRLGVTGDLGEVRTLPAGKDVSADVLVLTGLGERDADGTFARESLRSAAGSAVRTLAGSTSAVVALPAVDEAELGAVAEGALLGAYAFTSYRGEEAAAKQAPVQRLQLATSFARSGAARAAVSRAEVLAAAVHGTRDLVNTPPNDLFPAAFADAAKAAVKELGVKGVKVTVLDDKQLAAGGYGGLTGVGQGSARGPRLVKVAYAPAKASERVALVGKGITFDTGGISLKPAAGMETMKLDMAGAAAVLHTVLAAARLGLPVAVTGYLCLAENMPGSNAQRPSDVVRIRGGKTVEVLNTDAEGRLVMADGLVSAVEDGHDVVLDIATLTGAQMVALGKRVSGVMGTDAVRDEVKVAADTVGEEFWPMPLPEDLAEGLKSKVADISNVGDRWGGMLTAGLFLRTFVEDTPWAHLDIAGPAFNEKGPFGYTPAGGTGVGVRTMLGFLEGRSGAEGNANANANANA
AK018_063851785hypothetical proteinATGTCTGAGAACGTGCAGCTGCCGGCGCTCGGCGAGTCCGTCACCGAGGGAACCGTCACCCGCTGGCTGAAGTCCGTCGGGGACTCCGTGGAGGTCGACGAGCCCTTGCTCGAGGTCTCCACCGACAAGGTCGACACCGAGATCCCCTCCCCCGTCGCCGGGGTGCTGGAGAAGATCCTCGCCGACGAGGACGAGACGGTCGAGGTCGGCGCCACCCTGGCCGTCATCGGCGACGGCTCCGGCGGCGGGTCCGACGACGACGCGCCGGCCGCGGAGTCGGCCCCGGCCGAGGAGTCCGCTCCGGCCGAGGAGAGCCCCGAGCCCGAGGCCCCGCAGGCCGAGGAGAAGCCTGCCGAGGACGAGGCCGCGTCGTCGGCCGGGTCCGCCGGGTCGTCCGCCCCGTCCGGCGGCGGCGAGGGCACCGAGGTGACCCTGCCCGCGCTCGGCGAGTCCGTCACCGAGGGCACCGTGACGCGGTGGCTCAAGGAGGTCGGTGACGAGATCGCCGTCGACGAGCCGCTGCTGGAGGTCTCCACCGACAAGGTCGACACCGAGGTCCCCTCGCCGGTCGCCGGCACGGTCCAGGAGATCCGGGTCAGCGAGGACGAGACCGTCGAGGTCGGTGCCGTGCTGGCGATCGTCGGCTCGGGCGCCGCACCCGCGGCCCAGGAGTCCGCCCCGGAGCCGCAGGCCGAGGAGAAGCCTGAGCCGGAGAAGCCGGAGCCCGCTCCCGAGCCGAAGTCGGAGGAGAAGGCCGAGGAGAAGCCCGCCGCGTCCCCGGCACCCGCGCCCGCCGCGGAGAAGAAGCCCGAGCCGAAGGCCGAGGCCCCCGCGGCGCAGGAGAAGCCGGCCGGCGGCCGTTCCTACCTGACCCCGCTGGTGCGCAAGCTCGCGGCGGAGAAGGGCGTCGACGTCTCGGCGATCGAGGGCACAGGCGTCGGCGGCCGCATCCGCAAGGAGGACGTCCTGGCCGCGGCCGAGAAGGCCGCCGCCCCGACCGAGGCTCCCGCCGCCTCCGCGCCGTCGGCCCCGAAGAAGCCGAGCATCCGCGAGGTCTCGCCGCTGCGCGGCACCACCGAGAAGATGTCCCGGCTGCGCAAGGTCGTCGCCGAGCGGATGCACGAGGCGCTGCAGACGCAGGCCCAGCTCACCACCGCGGTCGAGGTCGACGTCACCAAGGTCTCGAAGCTGCGCCAGCGTGCGAAGGCCGACTTCAAGGCTCGCGAGGGCGCCAACCTGACGTTCCTGCCGTTCTACACGCAGGCCGCCGTCGAGGCGCTGAAGGCCTTCCCCAAGGTCAACGCCTCGATCGACACCGACAAGGGCGAGATCACCTACCACTCCTCGGAGAACGTCGGCATCGCCGTGGACACCGAGCGTGGCCTCGTGGTCCCGGTCATCAAGAACGCCGGTGACCTCAACCTGGCGGGCATCGCGCGGCAGATCGGCGACCTCGCCACCCGCACGCGTGACAACAAGATCGGCCCGGACGACCTGAGCGGGGCCACGTTCACCATCACGAACACCGGCTCCGGCGGTGCCGTGTGGGACACCCCGATCGTCCCGGTGGGCCAGGTCGCGATCCTCGGCACCGGCACGATCACGAAGAAGCCCGTGGTCGTCACCGGCCCCGACGGCGAGGAGACCATCGCGATCCGCCAGATGGCGATGCTCTTCCTGTCCTACGACCACCGCCTGGTCGACGGCGCCGACGCCGCACGGTTCCTGACCGCTGTGAAGAAGCGCATCGAGGAGGCGGCGTTCGAGGCCGAGGTCGGTCTCTGAMSENVQLPALGESVTEGTVTRWLKSVGDSVEVDEPLLEVSTDKVDTEIPSPVAGVLEKILADEDETVEVGATLAVIGDGSGGGSDDDAPAAESAPAEESAPAEESPEPEAPQAEEKPAEDEAASSAGSAGSSAPSGGGEGTEVTLPALGESVTEGTVTRWLKEVGDEIAVDEPLLEVSTDKVDTEVPSPVAGTVQEIRVSEDETVEVGAVLAIVGSGAAPAAQESAPEPQAEEKPEPEKPEPAPEPKSEEKAEEKPAASPAPAPAAEKKPEPKAEAPAAQEKPAGGRSYLTPLVRKLAAEKGVDVSAIEGTGVGGRIRKEDVLAAAEKAAAPTEAPAASAPSAPKKPSIREVSPLRGTTEKMSRLRKVVAERMHEALQTQAQLTTAVEVDVTKVSKLRQRAKADFKAREGANLTFLPFYTQAAVEALKAFPKVNASIDTDKGEITYHSSENVGIAVDTERGLVVPVIKNAGDLNLAGIARQIGDLATRTRDNKIGPDDLSGATFTITNTGSGGAVWDTPIVPVGQVAILGTGTITKKPVVVTGPDGEETIAIRQMAMLFLSYDHRLVDGADAARFLTAVKKRIEEAAFEAEVGLPGPT0001390_1416DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001390-aceF|pdhC-K00627NANA
AK018_063861299hypothetical proteinATGGGACCCGTGCAGACCGACACCGTGCTCGCCGTCCCGACCGACCCCGCCGCCCGCGACGCCCTCCTCGAGCGGGTACGGGCGATCACCGACGTCGACCACCCGGCCCTCGAACCCGTCGGCGCCGCCGTCGCGCGACCCGACGGCGGGCTCGTCGTCCCCCGCGGCGACAGCACCACCACCGAGCTCGCCACCGTGCTGGCGGTGCGCGGCCGGTGCAGCGCCCCGGAGGCCGCCGGGCTCGCGGTCGCGCTCGGCCAGGCCCTGGCCGCCCTGCACAGCTCCGAGATCGTGCACGGCGGCCTCGACGTCGCCGACGTCGTGCTCGACCTCGAGGGCCACGGCCGGCTGCGACCCCGCCTCGACGTGCCGCCGGCCCGGGCGGGCGAGGCGGACGACGTGCACGACGTCGCCGCGCTCGTCGACCGGCTCCTCGGCGACACCGACGACGACAGCGCGACGGCCCTGCGCGCCGCGCTGGCGCCGGCCCTGGCGGCGGACCCGCGGATCCGGCCCGCCGCCGGCACGCTCGCGGCCGACGTGCACGACGCCGTCGCACCACAGCCCGTCCGCCTGCCCGAGCCGGCGGTCCTGGCGGCGGCGGCGCTCGCGGGCGGACGGCGGCAGACCGACGCCGCACGCGGCCCCGGACACGTGCGCGCCCGCCGGGTACCGCAGCCGTCCCGCGGGACGGTGGCGACCGCTCAGGACGGGCGCCGGACCCGGCGCCAGGATCGACGGCGCCGGTCCGACGATGCGCGACGTGGGCCGGTGCCGCGGGGCACGCTGGTCGCCGGTGCGGGCGTCCTCGCCGTCGCGGCGGTCGCGTTCCTGGTGCTCGACGGTCCCCTCGGACCGTCCGCGGGGGCGGGGCCGGCCGTGCCGGCGCCCGCGGCGCCTGCATCGGCAGCGCCGGCCGGGCCGGGCCCTCTCACCGACGTGGACGATCCTGCCGGCGCGGCGGCGGCGTTGACGAGGCTCCGGCCGACCGTGCTCGCGGGAGAGCGTGACGTCGACGAGCTCGCCGTGCCCGGATCGCCGGCCCACGAGGACGACCTGGCCCTCGTCGCGCGGGCGTCCGACGTCCGGCTGACGGTCCCCGACGTGGACGTCCTCGCGACCGAGCCCGTGGCCACGCCGGGCGACGGGACCGCCACCGTGCTCGTGCGGTACACGGTGGGGGCGCACGAGCAGAGCGTCGACGGGACGGTGACCGCCGTGCCCGCGGGGGAGCCGCGCACCGACCGGCTGCACCTGGCGTGGACCGACGACGGCTGGCGCGTCCGCTCCGTCGGCTGAMGPVQTDTVLAVPTDPAARDALLERVRAITDVDHPALEPVGAAVARPDGGLVVPRGDSTTTELATVLAVRGRCSAPEAAGLAVALGQALAALHSSEIVHGGLDVADVVLDLEGHGRLRPRLDVPPARAGEADDVHDVAALVDRLLGDTDDDSATALRAALAPALAADPRIRPAAGTLAADVHDAVAPQPVRLPEPAVLAAAALAGGRRQTDAARGPGHVRARRVPQPSRGTVATAQDGRRTRRQDRRRRSDDARRGPVPRGTLVAGAGVLAVAAVAFLVLDGPLGPSAGAGPAVPAPAAPASAAPAGPGPLTDVDDPAGAAAALTRLRPTVLAGERDVDELAVPGSPAHEDDLALVARASDVRLTVPDVDVLATEPVATPGDGTATVLVRYTVGAHEQSVDGTVTAVPAGEPRTDRLHLAWTDDGWRVRSVGNANANANANA
AK018_063871041iolW_1COG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolWATGATCACGCCACGCGTCGCCATCGTCGGGTACGGGGGAGCCGGTCGGGGGATCCACGCCGCCCTGGCGCGGGAGGCCGGTCTCCCCGTGACCGGGGTCGTCACCCGCGACCAGGGCCGCCGCACCCAGGCCGCGGGGGACTGGCCGGGAGCACGGCTGCACGACGACCTCGACGCCCTGGTCGAGGCCCGGTCGACCTACGACGTCGTCGTGGTCGCCAGCCCCACGCACCTGCACGCCGAGCAGGCGGCCGTGCTCGCCCGCGCCGGGATCCCGTTCGTGCTCGACAAGCCCGTCGGCGTCGACGCCCACGAGGCGCGCGCGGTCGTCGCCGAGGCGGACGCGACCGGGACCCCGTGCACCGTGTTCCACAACCGGCGCTGGGACCCCGAGCAGCTCACGCTCGCCGCACTGCTGGGACGCGGCGAGCTGGGCGACGTGCACACGTTCGAGCGCCGCTGGGAACGGTGGCGGCCCGTGCCGCGCAAGCGGTGGAAGGAGAACGACCCCGACGGCGGCGGCCTGCTGCTCGACCTCGGCCCGCACCTCGTGGACTCGGCCACCCGACTGTTCGGACGGGTCACCGACGTGTGGGCGCAGACCCGGGCGCTGACCACCCCCACCGAGGACGACGTCTTCCTCGTGCTCACCCACGAGCCCGGCGGCGGGCTCGCCGCGAGCCCCCACGCCGTCGTCTCCCGGCTGTGGGCGGGCTCCGTGGTCGGTGCACCCGGTCCCCGCACCCGCGTGCTCGGCAGCCGGGGTGCCTACCTGGTGACCTCGTTCGAGCAGGACGCGTCCCCGCTCGAGCGGTTCGACGACGACGCACCCGCCGGCACGCACGGGTGGCTGACCCGCGGCCGGGACCGCACCCCCGTGCCGACGGCGTCCGGCGGCCACGCCGACTTCTACCGGGCGCTCGGCCCCTGGCTCGCCGGCGAGGAACCCGCGCCCGTGGACCCCGCGGACGCCGTACGCACCGCGGAGGTGCTCGACGCCGCGCGGGTCGCGGCCCGGGAGGGACGCCGGGTCCGCCTCTGAMITPRVAIVGYGGAGRGIHAALAREAGLPVTGVVTRDQGRRTQAAGDWPGARLHDDLDALVEARSTYDVVVVASPTHLHAEQAAVLARAGIPFVLDKPVGVDAHEARAVVAEADATGTPCTVFHNRRWDPEQLTLAALLGRGELGDVHTFERRWERWRPVPRKRWKENDPDGGGLLLDLGPHLVDSATRLFGRVTDVWAQTRALTTPTEDDVFLVLTHEPGGGLAASPHAVVSRLWAGSVVGAPGPRTRVLGSRGAYLVTSFEQDASPLERFDDDAPAGTHGWLTRGRDRTPVPTASGGHADFYRALGPWLAGEEPAPVDPADAVRTAEVLDAARVAAREGRRVRLPGPT0018530_219DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0018530-iolW-K16044NANA
AK018_063882268apeX_1COG2409Apo-petrobactin exporterATGCTGAGTAAAAGGTGGTCGGGCATCGCCCGCGGTCTGGTCATTCTGGCAGCGATCGGCGTGTGGCTCGCCGTGGGCGCGTTCGGGGGGCAGGCCCAGGGAAACCTGAGCAGCGTCCAGACGAACGACTCCGCCGCGTTCCTGCCCGAGAGCGCCGAGTCCACGCGGGCGTCCGAGCTCGCCGCCGAGTTCACCGACGACACCACCCTGCCGGCACTGGTCGTCGCCGAGAACGCCGACGGCTCCGAGCTCACCCCGGACCAGCTCGCCGCGATGCAGGCGTACGTCGACGCGGTGCCCGACACGCCGCTGGAGGGTGCCTCCGGTGACGAGCCGAGCACCGTCGGCGCCGCCAGCATCGCCGAACCCACCCTGATCCCGTCCGAGGACGGCCAGGCCGCGCTCGTCATCGTCTCCCTCGACGCCTCCGTGGCCGACCAGAGCATCGGGGAGGACGAGTCGAGCGTCACCGAGGCCACCATCGCCGCGCTGCGCGCCCTGGCCGCCGAGGGCTCGGCCGACGGCGGTCTGGCCGACTCGGGCCTGGAGGCGTGGGTGACCGGGCCCGCGGGCTTCGTCGCCGACCTGACCAACGCCTTCGGTGCCATCGACACCGTGCTGCTCCTCGTGGCCCTCGGCGCCGTGCTCATCATCCTCGCCCTCGTCTACCGCTCGCCGTTCCTGCCCTTCGTCGTCATCTTCACCGCCGTGCTCGCGCTGGCGCTCGCCGGCCTGGTCGTCTACCAGCTGGCCGCCAACGACGTGCTCACCCTCAACGGGCAGTCGCAGGGCATCCTGTCGATCCTCGTGGTGGGTGCCTCGGTGGACTACTCGTTGCTCGTCGTGGCCCGATATCGCGAGGAGCTCGCCCTCGTGCAGTCGCCGTACACCGCGCTGCGCCGCGCCCTGCGCGCCTCGATCGAGCCGATCTCCGCCAGCGCAGGCACCGTCATCGCCGGCCTGCTCTGCCTGCTGCTGTCCGACCTGTCGTCGAACCGCAGCCTCGGACCGGTCGCCACGATCGGCATCGTCGCAGCGTTCCTGTCCGCGCTGACGCTCCTGCCCGCCCTGCTCCTGATCGGCGGGCGACGCGCCCGCTGGGTGTTCTGGCCGCGCGTCCCGCGCACGGCCAGCGGCACGTCGGGCGAGGACGCGTCCGACGACGCCCCGGCCGTGGCCGGGCACGGTCTGTGGTCCCGCGTGGCCGGGTTCGTCGGGCGCCACGACCGCCCCGTCTGGATCATCACGGCGGTCGTGCTCGCCGCGGGCGCCGCCTTCGTGCCCACCCTCGACGCGAGCGGGACGGGCGACTCCGAGGTCTTCCTGACCCAGGTCGACTCGGTCGACGGCGAGGAGGTCCTCACCGACCACTTCGACGGCGTGTCCACCCAGCCCGTGACCGTCATCGCCCCAGAGGGCGACCTCGAGGCGGTCGTCGAGGCGGCGGAGAGCACCGCGGGCGTCGCCGCGGCCACCCCGGTCACGGACCAGCCCGCCGCGGCCCCCGGCGCGCCGCCGCAGGGCGACCCCCTCGTCGTGGACGGCAACGTGCGGGTCGACGTCACGACCGACGCCCCCTCCGACAGCCAGGAGGCCACCGAGGCGGTCCAGGCCGTGCGCGACTCGGTGCAGGGCGTCTCGCCCGACGCCGTCGTCGGCGGTGCCGCGGCCGAACGGCTCGACACCCAGCTCGCCGGGCAGCGCGACCTGCGGGTCATCGTGCCGGTCGTCCTCGTGGTGATCCTGCTGATCCTCATGCTGCTGCTGCGCTCGGTGCTCGCCGCCGCGCTGCTGATGGCCGCCAACGTCCTGTCGTTCGGGTTCGCCCTCGGTGTCTCGGCGATCCTGTTCAACCACGTGTTCGGCTTCCCCGGGGCCGACCCCAGCGTGCCGCTCTACGCGTTCTGCTTCCTGGTCGCGCTCGGCGTCGACTACTCGATCTTCCTCATGACGCGGGTGCGGGAGGAGAGCCTGCGCCTCGGCACCCGCCGCGGGGTGCTGCGCGGCCTGGCGGTCACGGGATCGGTGATCACCTCGGCGGGCGTGGTGCTCGCGGCGACGTTCGCGGCCCTGGGCGTCATCCCGCTGCTGTTCCTGGCCCAGCTCGCCTTCATCGTCGCCTTCGGCGTGCTCGTCGACACCCTCGTGGTGCGCAGCCTCCTGGTGCCGGCCCTGGTCCACGACGTCGGCGACCGCACCTGGTGGCCGGCGCAGCTGGCGCGTCGTCCGGTGGCGGCCGAGCAGGGGTCGGGCACGATGGGCACATGAMLSKRWSGIARGLVILAAIGVWLAVGAFGGQAQGNLSSVQTNDSAAFLPESAESTRASELAAEFTDDTTLPALVVAENADGSELTPDQLAAMQAYVDAVPDTPLEGASGDEPSTVGAASIAEPTLIPSEDGQAALVIVSLDASVADQSIGEDESSVTEATIAALRALAAEGSADGGLADSGLEAWVTGPAGFVADLTNAFGAIDTVLLLVALGAVLIILALVYRSPFLPFVVIFTAVLALALAGLVVYQLAANDVLTLNGQSQGILSILVVGASVDYSLLVVARYREELALVQSPYTALRRALRASIEPISASAGTVIAGLLCLLLSDLSSNRSLGPVATIGIVAAFLSALTLLPALLLIGGRRARWVFWPRVPRTASGTSGEDASDDAPAVAGHGLWSRVAGFVGRHDRPVWIITAVVLAAGAAFVPTLDASGTGDSEVFLTQVDSVDGEEVLTDHFDGVSTQPVTVIAPEGDLEAVVEAAESTAGVAAATPVTDQPAAAPGAPPQGDPLVVDGNVRVDVTTDAPSDSQEATEAVQAVRDSVQGVSPDAVVGGAAAERLDTQLAGQRDLRVIVPVVLVVILLILMLLLRSVLAAALLMAANVLSFGFALGVSAILFNHVFGFPGADPSVPLYAFCFLVALGVDYSIFLMTRVREESLRLGTRRGVLRGLAVTGSVITSAGVVLAATFAALGVIPLLFLAQLAFIVAFGVLVDTLVVRSLLVPALVHDVGDRTWWPAQLARRPVAAEQGSGTMGTNANANANANA
AK018_06389504hypothetical proteinATGAACCCGCAGAGCCGGTCCGGCACGGAACCGGATCCCACGAGCGAGGACCCGCGCCAGTGGCCCACCGGCCGGCTCCTCTTCACGGTCACGCGCCGGATCGAGCACGACTGGAACGCGCACCTGGCCGCCTGGGACCTCAACCACGCCGGCCACCCCGCGCTCCTGCACCTGCTGGGCGGCCCGCTCACCCAGCGCGAGATCGCCACCCGCAACGAGGTCACCGAGCAGACCATGAGCCGTGTCCTCGCCCGCCTGGAGCGGTCCGGCTACGTGACGCGGGAGGACGACCCGCGCGACCGCCGTCGTCGCGCCGTCACCATCACCGACCTCGGCCGGCGCGTCGCGCTGGAGGCCGCACAACTGCGCCCCGCCGAAGACCTCACCTCCCGGGGCCTCGACGAGCACCAGGTCGCGACGCTGCGCGAGCTCCTCGTGGCGATGGTGCGCGCGCAGCGCGGCGACGACTCCCCCGCGCAGCGGCCCGACGGCGAGACGCTCTAGMNPQSRSGTEPDPTSEDPRQWPTGRLLFTVTRRIEHDWNAHLAAWDLNHAGHPALLHLLGGPLTQREIATRNEVTEQTMSRVLARLERSGYVTREDDPRDRRRRAVTITDLGRRVALEAAQLRPAEDLTSRGLDEHQVATLRELLVAMVRAQRGDDSPAQRPDGETLPGPT0013155_513DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
AK018_06390735lipB_1OctanoyltransferaseATGGACGTCGTCACCCTGGACGGGCTCACCGACTACCACGAGGCGTGGGAGCTGCAGCGCGCCGTGCACGACGCCGTGCACCGCGGCGAGCGCGCCGACACGCTGCTCCTCGTGCAGCACCCGGACGTCTACACCGCCGGTCGGCGCACGCGGCGCGACGAGCGACCCGACGACGGCACCCCGGTGGTCGACGTCGACCGCGGCGGCAAGATCACCTGGCACGGCCCGGGCCAGCAGGTCGTGTACCCGATCGTCCGCCTCGCCGAGCCGGTCGACGTCGTGGCCTACGTCCGCGCCCTCGAGCAGGCCGTCATGAGCGTCTGCGACGGCCTCGGGCTGACGACCGCACGCGTCGAGGACCGCAGCGGCGTCTGGCTCCCGGCCGACCCGCCGCCGTCGGGCACCCCCACGCCGCCGCGCCGCGCCCGCAAGGTGTGCGCCGTCGGCGTCCGGGTCGCCAAGGGCGTCACGATGCACGGCCTCGCGCTCAACTGCGACCCGGACCTGAGCCGGTTCGACCACATCGTGCCCTGCGGCATCACCGACGCCGACGTCACCTCGCTCAGCGCCGAGACGGGACGGACCGTGACGCCCTCCGACGTCGCGGCACCCCTGGTCAGCGCGCTGCACCGCGACCTCGCGCCGCTGCGCGCCCACCCCACCGCGGATGTCGTGCATCTCACGTCCACGGGCCGGGACCGGTCCGGGGAGCCGGCACCGGCTCGCGTAGGCTGAMDVVTLDGLTDYHEAWELQRAVHDAVHRGERADTLLLVQHPDVYTAGRRTRRDERPDDGTPVVDVDRGGKITWHGPGQQVVYPIVRLAEPVDVVAYVRALEQAVMSVCDGLGLTTARVEDRSGVWLPADPPPSGTPTPPRRARKVCAVGVRVAKGVTMHGLALNCDPDLSRFDHIVPCGITDADVTSLSAETGRTVTPSDVAAPLVSALHRDLAPLRAHPTADVVHLTSTGRDRSGEPAPARVGPGPT0003925_499DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003925-lipB-K03801NANA
AK018_063911011lipA_1COG0320Lipoyl synthaseGTGACGATCGCACCCGAGGGCCGCCGCATGCTGCGGGTCGAGGCCCGCAACTCCACCACGCCGATCGAGAAGAAGCCCGAGTGGATCAAGACCCGTGCGGTCATGGGTCCCGAGTACCGAGAGCTCAAGGGCCTGGTCAAGGGCGGCGGGCTGCACACCGTCTGCGAGGAGGCGGGCTGCCCCAACATCTTCGAGTGCTGGGAGGACCGCGAGGCGACCTTCCTCATCGGCGGCGACCAGTGCACGCGGCGGTGCGACTTCTGCCAGATCGACACCGGCAAGCCCGCCGAGTTCGACGCCGACGAACCGCGGCGCGTGGCCGAGTCGGTCCAGCAGATGGGGCTGAGGTACTCGACCGTCACGGGCGTGGCTCGCGACGACCTCGCGGACGGCGGCGCCTGGCTGTATGCCGAGACCGTCCGCCAGATCCACGCCATGAACCCCGGCACCGGCGTCGAGCTGCTCATCCCGGACTTCAACGCGATCCCCGAGCTGCTCGACCAGGTCAACGACTCGCGGCCCGAGGTCATGGCGCACAACGTCGAGACCGTCCCGCGCATCTTCAAGCAGATCCGCCCCGCGTTCCGCTACGAGCGCTCGCTGTCCGTGCTCACGCGGGCCCGCGAGGCCGGCCTGGTCACCAAGTCCAACCTCATCCTCGGCATGGGCGAGACCGTCGACGAGGTCAAGCAGGCCCTGGTCGACCTGCACGAGGCCGGCTGCGACCTGATCACCATCACCCAGTACCTGCGCCCCTCGCTGCGCCACCACCCGGTCGAGCGCTGGGTGCGGCCCGAGGAGTTCGTCGAGCTCTCCGAGTTCGCCGAGTCCACCGGGTTCCTCGGCGTGATGGCCGGACCGCTGGTGCGGTCCTCCTACCGGGCCGGGCGGCTCTGGGGGCAGGCCATGACCAAGCGCGGCCGACAGGTCCCCGACGCCCTGGCGCACCTCACCGAGCCGATGACGGCCCGGCAGGAGGCGGCGAGCCTCGTGACCCCGCAGGGCCAGTAGMTIAPEGRRMLRVEARNSTTPIEKKPEWIKTRAVMGPEYRELKGLVKGGGLHTVCEEAGCPNIFECWEDREATFLIGGDQCTRRCDFCQIDTGKPAEFDADEPRRVAESVQQMGLRYSTVTGVARDDLADGGAWLYAETVRQIHAMNPGTGVELLIPDFNAIPELLDQVNDSRPEVMAHNVETVPRIFKQIRPAFRYERSLSVLTRAREAGLVTKSNLILGMGETVDEVKQALVDLHEAGCDLITITQYLRPSLRHHPVERWVRPEEFVELSEFAESTGFLGVMAGPLVRSSYRAGRLWGQAMTKRGRQVPDALAHLTEPMTARQEAASLVTPQGQPGPT0003935_1180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003935-lipA-K03644NANA
AK018_06392735putative proteinATGGCCCGCACGAAGTCCGACGCCGGCGAGCCCGCCGAGGCGTCCTCCAAGAAGCAGAAGAAGCCCAAGAAGCAGCGCTGGTACCACCAGGTGTGGGCCGCCTACCAGATGACCCGGCGCCAGGACCCGATGGTCACCTGGCTGATGCTCGCGGTCTTCCTGGGCATCGTGGCGGTCGCGCTGCTGATCGGTGTGCTCACCGGCCACTGGGTCTACGCCCTCATCGTCGGTGTCCCGTTCGGTGTGCTCGGCGCGATGTTCGTGCTGACGCGCAAGGCCGAGCGCGCTGCCTACACCCAGATCGCCGGGCAGCCGGGAGCCGTCCGCGCCGCCCTGGGCACCGTGCGGGGCGGATGGAACTTCGACGACGAGCCCGTCGCGGTGACCCGGCAGCAGGACCTCGTCTTCCGCGGCGTGGGCCGCCCCGGCGTCGTGCTGGTGTCCGAGGGCCCCGCGCACCGCGTGACCAAGCTGCTCGCCGACGAGCGCAAGCGCACCGTGCGCGTCCTGCCGAACGTCCCCGTCACGCTCATCCAGGTGGGCGACGGCGAGGGCCAGGTCCCGCTGCCGAAGGTCGCCCGCCAGGTGCAGAAGATGAAGAAGCAGCTCACCCGCGCCGAGGCGGCCGAGGTCGGCAAGCGGCTCAAGGCCCTCGGCGGCGTGCGCCTGCCGGTGCCGAAGGGTGTGGACCCGATGAACGCCCGCCCCGACCGCAAGGGGCTGCGCGGCCGCTGAMARTKSDAGEPAEASSKKQKKPKKQRWYHQVWAAYQMTRRQDPMVTWLMLAVFLGIVAVALLIGVLTGHWVYALIVGVPFGVLGAMFVLTRKAERAAYTQIAGQPGAVRAALGTVRGGWNFDDEPVAVTRQQDLVFRGVGRPGVVLVSEGPAHRVTKLLADERKRTVRVLPNVPVTLIQVGDGEGQVPLPKVARQVQKMKKQLTRAEAAEVGKRLKALGGVRLPVPKGVDPMNARPDRKGLRGRNANANANANA
AK018_06393486hypothetical proteinATGCCATCACGCGAGGATTTCGGGTCCTGGATGTCCGGCGGCGACGTCCCGACAGGTGAGACGCCGGGCGGACGCGACTCGCTGGGGCTGCCGCACTCCGGGCCCGGGTCGCGTGCGCGGCTGGGTCGCCGCGTCGTCGCGCTCGCGGTCGACTACGCGATCGCCACGGCCATCGCCGTCCTGATCTTCCGTCCGCGCGCCGAGGGCTACTTCGAGATGATCTCGGAGCTGCCCGCCTGGTCCCAGCTCCTGGTCTTCGGTGCGATGAACCTGATCCTCGTCGGCTCGATCGGCTCCACCATCGGCCACCGCTTCCTCGGGATGCAGGTGCGCCCGCTCGGCGACCCCGGACGTGACTACGTCGGCTTCGGCCGGGCCGCGGTGCGCACGGTGCTGCTGTGCCTGGTGATCCCCGCCGTCGTGTGGGACTCCGACGGCCGCGGCCTGCACGACAAGGCGGCCGGGACCGTCATCGTGCGTCGTTGAMPSREDFGSWMSGGDVPTGETPGGRDSLGLPHSGPGSRARLGRRVVALAVDYAIATAIAVLIFRPRAEGYFEMISELPAWSQLLVFGAMNLILVGSIGSTIGHRFLGMQVRPLGDPGRDYVGFGRAAVRTVLLCLVIPAVVWDSDGRGLHDKAAGTVIVRRNANANANANA
AK018_06394939hypothetical proteinGTGCTTGAGCAGACCGCCGATGTACCAGCGGGCCATGTCGGACAGGCCGCCGTAGCCCTTCTCGTCGTAGAACAGCGGCTCACCGTTCAGCCACAGCGACTGGTGCGAGTGCATGCCCGAGCCGTTGTCGCCGAAGATCGGCTTCGGCATGAAGGTGACCGACTTGCCGGCGTTGAAGCCGACATTCTTGATGACGTACTTGAACTTCATCAGGTCGTCGGCGGCGTGCAGCAGGGTGTTGAACTTGTAGTTGACCTCCTGCTGGCCGGCGGTGCCCACCTCGTGGTGCGCGCGCTCGACGTCCAGGCCCACCTGGCCGAGCGTCGTGACCATCTCGTCGCGCAGGTCCGCGAAGCGGTCGCTCGGGGAGGTGGGGAAGTAGCCGCCCTTGTAGCGGGTCTTGTAGCCGAGGTTCCCGCCCTCCTCCTCGCGGCCGGTGTTCCACGCGGCCTCGACGGAGTCGATCTCGTAGAAGCTGCGCTGCGAGTTCGTCTCGAACCGGGCGGAGTCGAAGATGTAGAACTCGGCCTCGGGAGCGAAGAACGCGGTGTCCGCCAGGCCGGTGGACGCGAGGTAGGCCTCGGCCTTGGCCGCGATGTTGCGCGGGTCGCGGGCGTAGGGCTCGTCCGTGAAGGGGTCGACGATCGAGAAGTTCATCACGAGCGTCTTGCGCTTGCGGAACGGGTCGATGAAGGCCGTCTTCACGTCCGGGACGAGCTTCATGTCCGACTCGTGGATCGCCTGGAACCCGCGGATCGAGGAGCCGTCGAACATCAGACCCTCGGTGAAGGAGTCCTCGTCGAACTGCGCCACGGGGATGTTGAAGTGCTGCATGACACCCGGCAGGTCGATGAACCGGACGTCGATGAACTCCACCCCCTCGTTGCGGGTGAAGGCGATTGCCTCCTCGGCATTGGTGAACATGCATGCTCCTCTTGAMLEQTADVPAGHVGQAAVALLVVEQRLTVQPQRLVRVHARAVVAEDRLRHEGDRLAGVEADILDDVLELHQVVGGVQQGVELVVDLLLAGGAHLVVRALDVQAHLAERRDHLVAQVREAVARGGGEVAALVAGLVAEVPALLLAAGVPRGLDGVDLVEAALRVRLEPGGVEDVELGLGSEERGVRQAGGREVGLGLGRDVARVAGVGLVREGVDDREVHHERLALAERVDEGRLHVRDELHVRLVDRLEPADRGAVEHQTLGEGVLVELRHGDVEVLHDTRQVDEPDVDELHPLVAGEGDCLLGIGEHACSSNANANANANA
AK018_063951449lcfB_4COG0318Long-chain-fatty-acid--CoA ligaseGTGACGCTCACCTACGCCGAGCTCGACGACCGGGCCACGCAGCTCGCCGCCGCGCTGCGCGCCGCGGGCTACGGCGTCGGCGACCGCGTCGCCACCGTCACCGGCAACAGCGCCGACCAGGTCGTGCTGTTCTTCGCCTGCGCCCGGGCAGGACTCGTGCTCGCCCCGCTGTCGTGGCGCTCCTCCCCCCGCGAGCTCGCCGACCAGATCGACCGCGCGGACCCGGCCCTGGTCCTCGTCGAGCAGGAGTTCGCCACCCTGGCCGCGGCGGCGCTCGACCGGCTCGTCCTGCCGCCGCGGTCCACCGGGCTGGGCCGCTCCGGCGTCGAGGCCGCGGTGCCGCCGCCCTCGCGACGCCGGGACGACGGCACCGGCGAGCAGCGCGACGTGCAGGACGACGACCCGTTGCTGCTGCTGTTCACCTCGGGCACCGCGGGCCGGTCCAAGGGCGCCGTGCTGACCCACGCGAGCTGCTTCTGGACCAACCTGGCCTTCTCGCGCACGGTGGAGATGTCGCACGACGACGTCGTCCTCAGCGTCCTGCCGCAGTTCCACGCGGGCGGGTGGAACATCCAGCCCCTGCTGGCCTGGTGGAGCGGGGCCACCGTCGTGCTCGAGCGCACCTTCGAGCCCGAGCGCGTGCTCCGGCTGATCGCCGAGCGGCACGTCACCACCATGATGGGCGTGCCCACCCAGTACCTGCTGCTGGCCGAGCACCCCGGCTTCGCCCGCACCGACCTGTCCTCGCTGCGCACCGCCGTCGTGGGCGGGGCGCCGATGCCGGAACCGCTGCTGCGCACGTGGCACCGCCGCGGCGTCGCCCTCACCCAGGGGTACGGCCTCACCGAGGCCGGACCCAACGTCCTGTGCCTGCCCGACGACGAGGCCCGCGAGCGCCCCGGGTCGGCCGGCAAGCCGTACCCGCACGTGGACGTCGCGATCGCCGACCCGACCACCGGCGAGCACCTGGACGGCGCCGCCACCGGCGAGCTGCTGGTGCGGGGGCCGGGCCTGTTCGCCGGGTACTTCCGCGACCCGCAGGCCACGGCGGAGGCGTTCGCGGGCGGCTGGCTGCGCACCGGGGACCTGGTGGAGCGGGACGCCGACGGCTACCACCGGATCGTGGACCGCCTCAAGGACCTGTTCATCGTCGGCGGGGAGAACGTCAGCCCGGCCGAGGTCGAGGCGGTGCTGCACCGGCACCCCGGCGTCGCCGAGGCGGCCGTCGTCGGGGTGCCTGACGACCGGTGGGGCGAGGTCGGGCACGCCTTCGTCGTGCCCCGGGCCGGGTACGCCACGGACGCCGAGGAGCTGGAGGCGTACTGCCGCGCCGAGCTCGCGCACTTCAAGGTCCCGCAGCGGTTCGCGCTCGTCGACGCGCTGCCCCGCACGTCCCTGCACAAGATCCCCCGGCACGCCCTGCGTGCACGCACCGAGGAGGCCCGATGAMTLTYAELDDRATQLAAALRAAGYGVGDRVATVTGNSADQVVLFFACARAGLVLAPLSWRSSPRELADQIDRADPALVLVEQEFATLAAAALDRLVLPPRSTGLGRSGVEAAVPPPSRRRDDGTGEQRDVQDDDPLLLLFTSGTAGRSKGAVLTHASCFWTNLAFSRTVEMSHDDVVLSVLPQFHAGGWNIQPLLAWWSGATVVLERTFEPERVLRLIAERHVTTMMGVPTQYLLLAEHPGFARTDLSSLRTAVVGGAPMPEPLLRTWHRRGVALTQGYGLTEAGPNVLCLPDDEARERPGSAGKPYPHVDVAIADPTTGEHLDGAATGELLVRGPGLFAGYFRDPQATAEAFAGGWLRTGDLVERDADGYHRIVDRLKDLFIVGGENVSPAEVEAVLHRHPGVAEAAVVGVPDDRWGEVGHAFVVPRAGYATDAEELEAYCRAELAHFKVPQRFALVDALPRTSLHKIPRHALRARTEEARPGPT0008380_15103DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
AK018_06396651hypothetical proteinATGAGCAACGCGCCGCGCACCGCCCGCGGGAACCGGACCCGCGCGAAGATCCTCGCCGCCGCCGAGCAGGTGTTCGCGGACCTGGGCTACCACGACGCCTCGATCGTGAAGATCACCGAGGCCGCCGGCGTCGCGATGGGCACCTTCTACCTGTACTTCGAGGGCAAGCACGCCGTCTTCGTCGAGCTCGTGGACGACCTCAACCAGCGGGTGCGCCAGGCCATGTACGAGGCGAGCTCCCAGGCGTCCAACCGCCTGGAGGCCGAGCGGGCCGGGTTCCGCGCCTTCTTCCGGTTCACCGCCGAGCACCCCGCGCTGTACCGCGTGGTGCGGCAGGCCGAGTTCGTGGCACCGGACGCGTTGCGCCGCCACTACCAGAACATCGTCGAGGGGTACGTCACCGGACTGGACAAGGCGCGGGCGAACGGCGAGGTCGGCGACGTCGACCCCACCGTGGCCGCCTGGGCGCTGATGGGCATCGGCGAGATCGTCGGGATGCGCTGGGTGCTGTGGGGCGGGGCCGACGGCCCGGCCGACGGCGGCGGGCCGGGGCAGGACGACCGGCTCCCGGAGATCCCCGAGGACGTCTTCGCCCAGACCATGCAGTTCATCGAACGGGCGCTGGCGCCCCAGGAAGGACCGTCCGCATGAMSNAPRTARGNRTRAKILAAAEQVFADLGYHDASIVKITEAAGVAMGTFYLYFEGKHAVFVELVDDLNQRVRQAMYEASSQASNRLEAERAGFRAFFRFTAEHPALYRVVRQAEFVAPDALRRHYQNIVEGYVTGLDKARANGEVGDVDPTVAAWALMGIGEIVGMRWVLWGGADGPADGGGPGQDDRLPEIPEDVFAQTMQFIERALAPQEGPSANANANANANA
AK018_06397756bdhA_1D-beta-hydroxybutyrate dehydrogenaseATGAGCACCGAGACGTACCTGGACGGCCGCCGCGCCGTCGTCACCGGCGGCGGCAGCGGGATCGGCGCGGCCTGCGCCGCGGCGCTCGCCGCCCGCGGGGCCCACGTGGTCGTCGCGGACCGCGACGCGGAGGCGGCGAAGCGCGTCGCGGCCGACGTCGACGGGGAGGCCTGGGTGGTCGACCTGGCCGACACCGCCGCGCTGGACGACCTGACGCTCGACGCCGACGTGCTGGTCAACAACGCCGGCATCCAGCGGGTGAGCCCGATCGAGGACTTCGACCCCGACGCGTTCCGGCTCATCCAGCGCATCATGCTCGAGGCGCCGTTCCTGCTGGTCCGGGCGGCCCTGCCCGGGATGTACGAGCGCGGCTGGGGCCGCATCGTCAACCTCTCCTCCGTGCACGGGCTGGTCGCCTCGCCGTTCAAGTCCGCCTACGTCGCGGCCAAGCACGGCCTCGAGGGCCTGTCGAAGGTCACCGCGCTGGAGGGCGGCCCGCACGGGGTCACCAGCAACTGCGTCAACCCGGGCTACGTGCGCACGCCGCTGGTCGAGAAGCAGATCGCCGACCAGGCCCGGGTGCACGGCATCGACGAGTCCGAGGTGCTTCAGAAGGTGCTGCTGACCGAGTCGGCCATCAAGCGGCTCACCGAGCCGGCGGAGGTCGGCGAGCTGGTCGCCTGGCTCGCGGGGCCGTCCGCCCGGATGGTCACGGGGGCCTCGTGGACCGTCGACGGCGGCTGGAGCGCCAAGTGAMSTETYLDGRRAVVTGGGSGIGAACAAALAARGAHVVVADRDAEAAKRVAADVDGEAWVVDLADTAALDDLTLDADVLVNNAGIQRVSPIEDFDPDAFRLIQRIMLEAPFLLVRAALPGMYERGWGRIVNLSSVHGLVASPFKSAYVAAKHGLEGLSKVTALEGGPHGVTSNCVNPGYVRTPLVEKQIADQARVHGIDESEVLQKVLLTESAIKRLTEPAEVGELVAWLAGPSARMVTGASWTVDGGWSAKPGPT0008310_2599DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008310-bdh-K00019NANA
AK018_06398978menH_72-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseGTGACCGCCGCGCCGGACGCGGTCGCGCTGCGCCACGTCGTGCCCGGGCACCGCTACCGGACGCTCGACGTCCCGGTCGACGGCGGTGCGCTGCGGGTGGGCGTGTGGGACCCGGTCGACGCCGACGGCGTCGTCGCGTCCGACGCCCCCACCCTGCTGGCGGTGCACGGCATCACCGCCTCGCACCTGGCCTGGCCGCTGCTGGCCGGGGAGCTGCCCGGCGTGCGGGTCGTGGCGCCCGACCTGCGCGGCCGGGGGCGCAGCCGCGACCTGCCCGGTCCCTGCGGCATGACCCGGCACGCCGACGACGTCGCCGCGGTGGCCCGGGCGGTGGCCGACGGCCCGGTGCCGGTGCTCGGGCACTCCATGGGTGGCTTCGTCGCCGTGACCCTCGCCGATCGGCACCCCGACGTCGTGGCGGGCCTGCTGCTCGTCGACGGCGGCGTGCCCCTGCCCGAGCCGCCCGGGCTCGATCCCGCGGCGACGCCGGCCGAGCGCCTGCGGGCCGTGCTCGGCCCGGCGGCCGACCGGCTGCGGCGCACGTTCCCCGACGCGGAGGCCTACCGGTCCTTCTGGTCGCAGCACCCGGCGTTCACCGCCGTGTGGGGGCCGGCCGTGCTGGACTACGTCGACTACGACCTCGTGGCCACGCCGGACGGCCTGCGCCCGGCGTCGAACCCGGAGGCGGTGGCCGCGGACGCCCTCGACCTGCACGACGGCGGGCCGGTCGCGGGCGCCCTGGCCCGCCTGGAGCGGCCGACGACGCTGCTGCGGGCTCCCCGCGGACTGCTGGACGAGCCGAGCCCGCTGTACGACCCCGCGCACGTGGCACGCTGGACCCAGCGGGCCCCGGCGCTGCGGCCCCGCGACGTGCCGGACGTCAACCACTACACGATCATCATGGGCCGTGACGGCAGCGCCGCCGTCGCGGCGGAGACGCGCGCCCTGCTGGGCGCCCGCACCGAGGAGGTCCGATGAMTAAPDAVALRHVVPGHRYRTLDVPVDGGALRVGVWDPVDADGVVASDAPTLLAVHGITASHLAWPLLAGELPGVRVVAPDLRGRGRSRDLPGPCGMTRHADDVAAVARAVADGPVPVLGHSMGGFVAVTLADRHPDVVAGLLLVDGGVPLPEPPGLDPAATPAERLRAVLGPAADRLRRTFPDAEAYRSFWSQHPAFTAVWGPAVLDYVDYDLVATPDGLRPASNPEAVAADALDLHDGGPVAGALARLERPTTLLRAPRGLLDEPSPLYDPAHVARWTQRAPALRPRDVPDVNHYTIIMGRDGSAAVAAETRALLGARTEEVRNANANANANA
AK018_06399873scoA_1COG1788putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit AATGAGCACACCCCTTCCCCCGGCCGCCGAGCCGACCGGGCTCGACAAGGTCGTCGGCAGCGCCGCCGAGGCCGTGGCCGACATCCCGGACGGCGCCTCGCTCGCCGTCGGCGGGTTCGGCCTGTGCGGCAACCCGATCGCCCTGATCGAGGCGCTGCTGGCCCAGGGCACGAGCGACCTGTCGGTCGTGAGCAACAACTGCGGCGTCGACGACTGGGGTCTCGGCGTCCTGCTGAACGCCGGGCGCCTCCGCAAGATGACGTCGTCGTACGTCGGCGAGAACAAGGAGTTCGAGCGCCAGTTCCTCACCGGTGAGCTCGAGGTCGAGCTCACCCCGCAGGGCACGCTCGCCGAGAAGCTGCGCGCCGGCGGCGCGGGCATCGCCGCGTTCTACACGCGCACCGGCGTCGGCACGCAGGTGGCCGACGGCGGTCTGCCGCGCCGGTACGACGGCGCCGGCGGGATCGCGGTCGGCAGCCCCGCCAAGGAGATCCGCTCCTTCCCCGTGGCGGCGGCCGACGGCGTCCACGACCAGGAGTTCGTCCTCGAGGAGGCGATCAGCACGGACTTCGCGCTGGTGCACGCCGCCAAGGGCGACCGGTTCGGCAACCTCGTCTTCCACCGCTCGGCGCGCAACTTCACGCCGCTGGCCGCGATGGCCGGTCGCGTCTGCGTGGCCCAGGTCGAGGAGCTGGTCGAGCCCGGCGAGATCGACCCCGACGACGTCCACCTGCCCGGGGTGTTCGTGCACCGCATGGTCGTCGTCGGCCCCGACATCGAGAAGCGGATCGAGCGCCGCACGGTGCGCGAGGACGCGTCCCCGGCCGGCACCGCAGGCACGACGAACGGCACGACCGCACGGAAGGAGGGCTGAMSTPLPPAAEPTGLDKVVGSAAEAVADIPDGASLAVGGFGLCGNPIALIEALLAQGTSDLSVVSNNCGVDDWGLGVLLNAGRLRKMTSSYVGENKEFERQFLTGELEVELTPQGTLAEKLRAGGAGIAAFYTRTGVGTQVADGGLPRRYDGAGGIAVGSPAKEIRSFPVAAADGVHDQEFVLEEAISTDFALVHAAKGDRFGNLVFHRSARNFTPLAAMAGRVCVAQVEELVEPGEIDPDDVHLPGVFVHRMVVVGPDIEKRIERRTVREDASPAGTAGTTNGTTARKEGPGPT0008325_14DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008325-scoA-K01028NANA
AK018_06400702scoB_1COG2057putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit BATGGCGCTCACCCGCGACGAGATGGCCGCCCGCGCCGCCCGCGAGCTGCTCGACGGCTGGTACGTGAACCTCGGCATCGGCCTGCCCACGCTGGTGCCGAACTACGTGCCGGCGGACAAGCACCTGGTGCTGCAGAGCGAGAACGGCATCCTGGGCGTCGGCCCGTTCCCCACCGAGGACGAGGTCGACCCCGACCTCATCAACGCCGGCAAGCAGACCGTGACCACGCTGCCCGGCGCGGCGATCTTCGACTCGGCGACGAGCTTCGCCATGATCCGGGCCGGCAAGATCGACGCCGCGATCCTCGGGGCGATGCAGGTCTCGGCCACGGGCGACCTCGCGAACTGGATGATCCCCGGCAAGATGATCAAGGGCCCCGGGGGCGCCATGGACCTCGTCCACGGCGCCGCCCGGCTCATCATCGTCATGGAGCACACCGCCCGGGACGGGTCGCCGAAGATCGTGCACGAGTGCTCGCTGCCGCTGACGGGCCGGGAGGTGGTGCACCGCATCATCACCGACCTCGCCGTCCTCGACGTCACCGGTGACGGCCTCGTGCTGCGCGAGCTCGCCCCCGGCGTGACCGAGGAAGAGGTCCGCGAGCGCACCGAGCCGGAGATCACCGTCGAGCTGGACGACTCCCCGCTGGCGGCGGCACCGCACGCCGTGCGTCCGCCGGCGGCGGTCGGGGGCACCGCGTGAMALTRDEMAARAARELLDGWYVNLGIGLPTLVPNYVPADKHLVLQSENGILGVGPFPTEDEVDPDLINAGKQTVTTLPGAAIFDSATSFAMIRAGKIDAAILGAMQVSATGDLANWMIPGKMIKGPGGAMDLVHGAARLIIVMEHTARDGSPKIVHECSLPLTGREVVHRIITDLAVLDVTGDGLVLRELAPGVTEEEVRERTEPEITVELDDSPLAAAPHAVRPPAAVGGTAPGPT0008330_31DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008330-scoB-K01029NANA
AK018_064011134menH_82-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseGTGAGCGGGCGTCCGGTCCACCGCAGCGACGTCACCACGTCCCGGGGCACGTTCCACGTGCGCGACACCGGCCCGGGCGGTGCGGCGACCCTGCTGTGCGTGCACGGCAACTGCTCGTCGTCGGCCTTCTTCGCCCGCCTGCTCGCGGCGCTGCCCGACGACGTGCGCGGCGTGGCCGTGGACCTGCGCGGGTTCGGCGACAGCGAGCCGTTGCCGATCGACGCCACGCGCGGGCTGCGCGACCTCGCCGACGACGTGGCGGCTGTGGTCGCGGCGCTGGGGCTGGACTCGCCCGGTGCTCCCCCGCTGACGGCGCTCGGCCACTCGGCCGGCGCCGGGGTGGTGCTGCAGCTCGCGATCGACGACGCCGTGCGGTTCGCGGCGCTGGTGCTCGAGGCGCCGATGTCCCCGTACGGGTTCGGGGGCACCCGGGACCTGGCGGGGACGCCGACGTCCCCGGACCACGCCGGGTCCGGCGGCGGCACCGCCAACCCGGACTTCGTGGCCGCCATCGCCGCGGGCGACCGCTCCCACGAGCCGGGGTCGCCCCGCGGCGTCCTGCGCGGCTTCTACGTGGCCGACCCCGCCACGATCGCCGACCAGGAGGAGGAGCTGCTGGACTCGGTGCTCAGCACCCGCACCGGGCCGGACCACTACCCGGGCGACCTGACGCCGTCGGACCGCTGGCCGTCCGTGGCGCCGGGGACCCGCGGCATGAACAACGCGATCTCCCCGCGCTACCTCGACCTGTCCGGGTTCGCCGCGGTCACCCCGCAGCCCCCGGTGCTGTGGGTCCGCGGCGACGCCGACGCGATCGTCTCGGACACCTCGGCGCTCGACCTGGCCCAGCTCGGGGCGCTGGGGGCCGTGCCCGGGTGGCCCGGGGTCCAGGCGTGCCCGCCGCAGCCGATGGTCGGCCAGACCCGGGCCGTGCTGGAGGACTACGCGGCCCGCGGCGGGGCGTACCGTGAAGTCGTGCTCTCCGGCGTGGGCCACTCGCCGCACCTGGAGAGCCCGGACGAGGTGCTCGCGCTCGTCGTGGACGCCGTGCGCGCCCCCGTCCGGACCATCGAGCCCGTGGCGGCCGCCGGTGATCCCGGCCCCGCCCTCGACGACGAGGAGCGAGCCTCATGAMSGRPVHRSDVTTSRGTFHVRDTGPGGAATLLCVHGNCSSSAFFARLLAALPDDVRGVAVDLRGFGDSEPLPIDATRGLRDLADDVAAVVAALGLDSPGAPPLTALGHSAGAGVVLQLAIDDAVRFAALVLEAPMSPYGFGGTRDLAGTPTSPDHAGSGGGTANPDFVAAIAAGDRSHEPGSPRGVLRGFYVADPATIADQEEELLDSVLSTRTGPDHYPGDLTPSDRWPSVAPGTRGMNNAISPRYLDLSGFAAVTPQPPVLWVRGDADAIVSDTSALDLAQLGALGAVPGWPGVQACPPQPMVGQTRAVLEDYAARGGAYREVVLSGVGHSPHLESPDEVLALVVDAVRAPVRTIEPVAAAGDPGPALDDEERASNANANANANA
AK018_064021221COG0183putative acetyl-CoA acetyltransferaseATGACCAGCACGACCGACCTGCGACCCGACGACGTGGTCGTCGTCTCCGCCGCCCGGACCCCGCAGGGGCGCCTCGGCGGCTCCCTCGCCTCGCTCTCGGCGGTGCAGCTCGGCGCCGTGGCGTCCCGGGCCGCGCTGGACCAGGCGGGTGCGCTCGCCGCCGACGTCGACACGGTGGTCCTCGGCCAGGTGCTGCAGGCCGGCGCGGGGCAGAACCCGGCCCGGCAGACCGCCGTCGCCGCCGGGGTGTCCATGACGGTGCCCGCGGTGACCGTCAACAAGGTGTGCCTGTCCGGGCTCACCGCCGTCGTCGACGGGGCCCGGCTGCTGCGCACCGGCGAGGCGTCGGTGGTGCTCGTCGGCGGCCAGGAGTCGATGACGAACGCCCCGCACCTGCTGCCCGGCGCCCGGGCGGGCTTCCGCTACGGTGACGCCACGCTCCTCGACGCCGTCTCCCGCGACGGGCTGTCCGACGCGTTCGACGGCCAGGCGATGGGCCTGAGCACCGAGGAGCACAACACGGGCTCGGTGCACGTGGACCGCACCGAGCAGGACGCGGTGGCGGCGGCCTCGCACCAGCGGGCCGCGCGGGCCGCCAAGGACGGGTTGTTCACCGCCGAGCTGGCGCCGGTGGAGGTGCCGCAGCGCAAGGGCGACCCCGTGGTGGTCTCCTCCGACGAGGGGGTCCGCCCGGACACCACGTCCGAGAGCCTGGCGCGGCTGCGCCCGGCGTTCTCCGCCGAGGGCACGATCACGGCGGGCAACGCCTCGCAGATCTCCGACGGCGCCGCCGCGCTGGTGCTGACCACGCGCTCGCGCGCCGAGGCGGCCGGCGTGCCGGTGCTGGCGACCGTGCGCTCGGCCGGGCAGGTGGCCGGGCCGGACACCTCCCTGCACTCCCAGCCGGCGAACGCCATCACCGCGGCGCTGGGCCGCGAGGGCTGGACGGCCGAGGACCTCGACCACGTCGAGATCAACGAGGCCTTCGCCGTCGTGTCCGCGGCGTCCGCCCGCGTGCTGGGGCTGCCGGCGGAGATCGTGAACCCGCACGGCGGCGGCATCTCGCTCGGGCACCCCATCGGGGCGTCCGGCGCACGCCTGGCCGTGCACGCCGCGCACGAGCTGGCCCGCCGCCGGGCCGACGGCGAGACCGGCGTCCGCGCCGCCGTCGCGCTGTGCGGAGGCGGCGGACAGGGCGAGGCGCTCCTGCTGGAGGCCTGAMTSTTDLRPDDVVVVSAARTPQGRLGGSLASLSAVQLGAVASRAALDQAGALAADVDTVVLGQVLQAGAGQNPARQTAVAAGVSMTVPAVTVNKVCLSGLTAVVDGARLLRTGEASVVLVGGQESMTNAPHLLPGARAGFRYGDATLLDAVSRDGLSDAFDGQAMGLSTEEHNTGSVHVDRTEQDAVAAASHQRAARAAKDGLFTAELAPVEVPQRKGDPVVVSSDEGVRPDTTSESLARLRPAFSAEGTITAGNASQISDGAAALVLTTRSRAEAAGVPVLATVRSAGQVAGPDTSLHSQPANAITAALGREGWTAEDLDHVEINEAFAVVSAASARVLGLPAEIVNPHGGGISLGHPIGASGARLAVHAAHELARRRADGETGVRAAVALCGGGGQGEALLLEAPGPT0008320_4512DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
AK018_064034776gdh_1COG2902NAD-specific glutamate dehydrogenaseATGACCGACGACGCTGTGCCGAGCCCGCAGATCCAGGATGCCGTGGACGACCTCCCGGCCGAGCTGCGGCGCTGTGCCACCCATCTGCTGAGCGCCTGGACCGACGAGGACGCCACGGAGCGCGAGCCCCGCGACATCGTCGGTGCCGTCGCCTCGACCTGCCGGTTCGCCGAACAGCGCGAACCCGGCGAGACCCTGGTGCGGGCGTTCACCCCCACCCTGCGCGAGGACGGCTGGACGTCGCGCCGCACCGTCGTCGACATCTGCACCGACGACGCGCCCTTCCTGGTCGACTCGGTCGACGGGGCCGTCGCCCGCCACGGCGGCACCGTCCACCTCATGCAGCACCCCGTGGTCGGGGCGCAGCGCGACGAGTCCGGCCGGCTGCTCGAGATCGCGTCGCGCGGCGGACGCGCCGAGTCGTGGATGCACCTGGAGACCGACCGCATCACCGACGCCGAGGACCGCGACGCCCTCGAGGCGCGGCTGCGCGACGTCGTCGCCGACGTCCACGCGTCCGTCGACGACTGGACGGCGATGCGCCGCGCCTGCCTCGACCTCTGCACCGACCTGCGCGTCCAGCCGCCGCCCACCGCCGACCCGGACACGGTCGCGCCCACGATCGAGTTCCTCACCTGGCTCGCCGAGGACCACTTCACGTTCCTCGGCTACCGCGAGTACGCCCTGGAGGAGCGCGACGGCGAGGACGTGCTGCGCCCGCTGACCCACACCGGCCTGGGCATCCTGCGCAAGCCGACGACCGACATCGTGCACCTGCGCCCCGAGGCCCGGCGCACCGCCCGCGAGCCGCGGCTGCTGACGATCACGAAGGCCAACTCGCGCGCGACGGTGCACCGCGACGTCTACCTCGACTACGTCGGCGTGCGGACCTTCGACCACGCCGGCAACGTCACCGGCGAGCGCCGCATCGTGGGGATGTTCACCTCGGCCGCCTACGCCTCCTCGGTGCTGACCCTGCCGATCGTGGCCGCGAAGGCGCGCGCCGTGCTCGCCGCCTCCGGGCTCGCCCCGACCTCGCACTCCGGCAAGGACCTCCTGCAGGTCCTGGAGCAGTACCCGCGCGACGAGCTCTTCCAGGACACCCCGGAGCACCTGTACGCCGTCGCCAGCCAGGTCAGCCGCCTGCGTGAGCGGCGCCGGTCGCGGATCTTCCTGCGTCCCGACGAGTTCGGTCGTTTCGTCTCGGCCCTGGTCTACCTGCCGCGAGACCGCTACACCACGGCGGTGCGGCTGCGGATCGAGGCGCTGCTGCACCAGACCTTCTCCGCCGAGCGCGTCGAGCACACCACCCGCGTGGACGACTCGCCGCTGGCGCAGCTGCACTTCGTGGTGCGCCTGCCCCGGGGCACGGCGATCCCCGACGTCGACGAGGACGAGCTGCAGCGCGGGCTCGAGGACGCCGTGCGGACCTGGTCGGCCGCCCTGGTCGACGCCCTGCACCACACGCACGGCGAGGAGGAGGCCGCCGAGGTCCTGGCGCGCTACGGCTCCGCCTTCCCCGAGGCCTACAAGGAGCAGGTCGAGCCGTCGGCGGCCGTGGGGGACATCGGACGCCTGGACTCCCTGAGCCCGGACGACCCGATCGCGGTGCACCTGTACGCCCCGGAGGACGCCGACACCGGCGTGCGACGGCTCACGGTCGCCTCGCTGGAGGAGCAGCGGCTGACCCGGGTGCTCCCGATGCTCACCGACCTGGGTGTGGACGTGCTCGACGAGCGCCCCTACACGATCCGGCTCGCCGACGGCGGCACCCGGTACCTGTCGGACTTCGGCGTCACCGCTCCCGACCCCGCGCTGTGGGAGGCCGACGGCGCGGCGGAGGCGCTCGAGGAGGCCTTCCGGGCGGTGTGGTCCGGGGAGGCCGAGAGCGACGCCCTCAACGCGCTGGTGCTGCACGCCGGCCTGGCATGGCGCGACATCGTCGTCCTGCGCGCGATCGGGCGGTACCTGCGCCAGACGGGGTCGGCGTTCTCGATGGAGTACATCGACGCGGCGCTCATCGCCCACCCGCACCTGGCCACCGACCTGGTCCGGCTGTTCGCGCTGCGCTTCGACCCGGACCTCGACGTCGACCGCGACGCCGAGGTCGACCGGGCCGCCGACGCCCTGCTCGGCGCGCTGGACGACGTCGCCAGCCTCGACCACGACCGCATCCTGCGGGCCTTCCTGGGGGTGGTGCGTGCCACGCTGCGCACCAACTTCTACACCCGCGACGCCGCGGGAGCGCCGACGCCGTGGGTGTCGATGAAGTTCGACTGCGCCCGGGTGCCCGACCTGCCGCGCCCGCACCCCATGGCCGAGATCTGGGTCTACTCCCCGCAGGTCGAGGGCGTCCACCTGCGCTTCGGGGCGGTAGCCCGCGGCGGCCTGCGCTGGAGCGACCGGCGCGAGGACTTCCGCACCGAGGTGCTGGGCCTGGTCAAGGCGCAGATGGTCAAGAACGCGGTGATCGTGCCGACCGGCTCCAAGGGCGGGTTCGTCGCCAAGCAGCTGCCGGACCCGGGCGACCGCGAGGCGTGGCTCGCCGAGGGCCGGGCCGCCTACCGCACGTTCATCCGGGGGATGCTCGACCTCACCGACAACCGGGACGGTACCGAGGTGGTGCCGCCCGAGCGGGTCGTGCGTCACGACGGCGACGACCCCTACCTCGTGGTCGCTGCCGACAAGGGCACGGCGTCCTTCTCCGACATCGCCAACGAGATCTCCGCCGAGTACGGGTTCTGGCTCGACGACGCCTTCGCCTCGGGCGGGTCGGACGGCTACGACCACAAGGCCATGGGGATCACGGCCCGTGGCGCCTGGGAGTCCGTGAAGCGGCACTTCCGCGAGCTCGACCACGACACGCAGTCCGAGGACTTCACGGTCGTCGGGGTCGGGGACATGTCCGGCGACGTCTTCGGCAACGGCATGCTGCTCTCGGAGCACATCCGGCTCGTGGCCGCCTTCGACCACCGGCACGTGTTCGTCGACCCCGACCCGGACGCCGCCACGTCGTTCGCCGAGCGGCGGCGGCTGTTCGAGCTGCCCGGGTCCACCTGGGCGGACTACGACGCCGACCTGCTCTCGCCCGGCGGCGGCGTGTTCCCGCTGTCGGCCAAGTCGGTCCGCGTGACCCCGCAGATCGCCGAGGCGCTGGGCCTCCCCGAGGGTGTCACCGCCCTCACCCCGACCGAGCTGAAGCGCGCCGTGCTCCTGGCGCCCGTGGACCTGCTCTGGAACGGCGGCATCGGCACCTACGTCAAGGCCGCCGCGGAGTCCCACGACGAGATCGGCGACCGGGCCAACGACGCGATCCGCGTCGACGGCGGCGACCTGCGGGTGCGGGTCGTGGGGGAGGGCGGCAACCTCGGCGTGAGCCAGCGGGGCCGCATCGAGGCGGCCATGGCAGGCGTGCAGATCAACACCGACGCCATCGACAACTCCGCCGGGGTGGGCACCTCGGACCACGAGGTCAACATCAAGATCCTGCTCGGTGCCGTGACGCGCGACGGCCGCCTGGACCTCGCCGACCGCAACAAGCTGCTGCAGTCGATGACCGACGAGGTCGCGGAGCAGGTGCTGCGCGACAACTACGAGCAGAACGTGCTGCTGGGCAACTCGCGGGCGAACGCCGCGGTCATGCTGCCGGTGCACGCCCGCCTCATGGACTGGCTCGAGCAGCGCGGAGAGCTCGACCGCGCGCTGGAGGTGCTGCCCGACGTCGCCGAGATCACCCGGCGCGTCGAGCAGGAGCAGGGCCTGACCCGCCCGGAGTTCGCCGTCCTGGTGGCCTACGCGAAGCTCGCGCTCAAGGAGGACCTCAACGCGACCGACCTCGCCGACGACCCCTGGTTCGTGCGCACCCTCGCCGCGTACTTCCCGGCGCCGGTGCGCGAGGAGTACGGCGAGGACCTGGCCGCCCACCCGCTGCAGCGCGAGATCGTCGTGAACGCCGTGGTGAACTCGATGGTCAACCGCGGGGGCATCACCTTCGCCTACCGGGCCACGGACGAGACGGGGGCCTCGACCGACCAGATCGCGCGCGCCTTCGTCGCGGCCCGCGAGATCTTCGACCTGCGGGGCTTCGTGGAAGCCGTCGAAGCGACCGACAACGTCGTGGCCACCGCGGTGCAGACCGACCTGTACCTGGAGTTCCGCCGGCTGCTCGACCGCGCCGCGCGGTGGTTCGTGCACCACCGCTCCGACGGGCTCGACGTCGGCGCCGAGATCGAGGCCTTCGCCGGGCCCGTGCGCACCTACGGCTCCCGGCTGGGCGAGCTGTTCCAGGGCGAGGAGCTGCGTCAGTGCGCCGAGCAGGTCGAGGCCCTGGAGGCGGCGGGGTGCGGCCCGGAGCTCGCCCGTCGCGGTGCGAGCCTGCTCGGGGCGCTGCCCCTGCTCGACGTCGCCGAGCTCGCGGAGACCCGCGGCTGGGGCCTGGACGAGGTGGCGCAGACGTACTTCGCGCTGTCCGGCCGTCTCGGGGTCCCGGACATGCTCACCCGGGTCTCTGGGCTGCCGCAGGACGACCGCTGGGACTCGATGGCGCGCGCCGCGCTGCGCGACGACCTCTACGCGGTCACGATCGCCCTGACCGCCTCGGTGCTGGAGGTCACGGAGTCCGGCTCCGCGGAGGAGCGGATCGACGCCTGGGTCGAGGACGGGGGCGCGGCCGCCGGCCGGGCGCTCGAGGCCCTGGAGACCGCGTCCGGCGTGGAGGACCCGGGTATCGCCACGCTGTCCGTGGCGCTGCGCCAGCTGCGGTCCCTGGTCCGCTGAMTDDAVPSPQIQDAVDDLPAELRRCATHLLSAWTDEDATEREPRDIVGAVASTCRFAEQREPGETLVRAFTPTLREDGWTSRRTVVDICTDDAPFLVDSVDGAVARHGGTVHLMQHPVVGAQRDESGRLLEIASRGGRAESWMHLETDRITDAEDRDALEARLRDVVADVHASVDDWTAMRRACLDLCTDLRVQPPPTADPDTVAPTIEFLTWLAEDHFTFLGYREYALEERDGEDVLRPLTHTGLGILRKPTTDIVHLRPEARRTAREPRLLTITKANSRATVHRDVYLDYVGVRTFDHAGNVTGERRIVGMFTSAAYASSVLTLPIVAAKARAVLAASGLAPTSHSGKDLLQVLEQYPRDELFQDTPEHLYAVASQVSRLRERRRSRIFLRPDEFGRFVSALVYLPRDRYTTAVRLRIEALLHQTFSAERVEHTTRVDDSPLAQLHFVVRLPRGTAIPDVDEDELQRGLEDAVRTWSAALVDALHHTHGEEEAAEVLARYGSAFPEAYKEQVEPSAAVGDIGRLDSLSPDDPIAVHLYAPEDADTGVRRLTVASLEEQRLTRVLPMLTDLGVDVLDERPYTIRLADGGTRYLSDFGVTAPDPALWEADGAAEALEEAFRAVWSGEAESDALNALVLHAGLAWRDIVVLRAIGRYLRQTGSAFSMEYIDAALIAHPHLATDLVRLFALRFDPDLDVDRDAEVDRAADALLGALDDVASLDHDRILRAFLGVVRATLRTNFYTRDAAGAPTPWVSMKFDCARVPDLPRPHPMAEIWVYSPQVEGVHLRFGAVARGGLRWSDRREDFRTEVLGLVKAQMVKNAVIVPTGSKGGFVAKQLPDPGDREAWLAEGRAAYRTFIRGMLDLTDNRDGTEVVPPERVVRHDGDDPYLVVAADKGTASFSDIANEISAEYGFWLDDAFASGGSDGYDHKAMGITARGAWESVKRHFRELDHDTQSEDFTVVGVGDMSGDVFGNGMLLSEHIRLVAAFDHRHVFVDPDPDAATSFAERRRLFELPGSTWADYDADLLSPGGGVFPLSAKSVRVTPQIAEALGLPEGVTALTPTELKRAVLLAPVDLLWNGGIGTYVKAAAESHDEIGDRANDAIRVDGGDLRVRVVGEGGNLGVSQRGRIEAAMAGVQINTDAIDNSAGVGTSDHEVNIKILLGAVTRDGRLDLADRNKLLQSMTDEVAEQVLRDNYEQNVLLGNSRANAAVMLPVHARLMDWLEQRGELDRALEVLPDVAEITRRVEQEQGLTRPEFAVLVAYAKLALKEDLNATDLADDPWFVRTLAAYFPAPVREEYGEDLAAHPLQREIVVNAVVNSMVNRGGITFAYRATDETGASTDQIARAFVAAREIFDLRGFVEAVEATDNVVATAVQTDLYLEFRRLLDRAARWFVHHRSDGLDVGAEIEAFAGPVRTYGSRLGELFQGEELRQCAEQVEALEAAGCGPELARRGASLLGALPLLDVAELAETRGWGLDEVAQTYFALSGRLGVPDMLTRVSGLPQDDRWDSMARAALRDDLYAVTIALTASVLEVTESGSAEERIDAWVEDGGAAAGRALEALETASGVEDPGIATLSVALRQLRSLVRPGPT0014290_1296DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014290-gdhB-K15371NANA
AK018_064041515hypothetical proteinATGTCACTCTGGGGCATGGCCCTCACGACGACGTCACGGCCGCCGGCGACGCCCCCCGCGCCGCCCCCGGCCGAGTCCGAGCCCGACGCGCTGACGATCGGGCGACGCATCCGGCACCTGCGCCTGCAGCGGGGCATGACCCTCGGTGAGCTCGGGGACGCTGTCTCACGTGCCCCGTCGCAGATCTCCATGCTCGAGAACGGAAAGCGCGAACCGACCATCGCGCGGCTGCAGGCGGTGGCGAAGGCGCTGGGCACGAGCGTGGACGACCTGCTCTCGCCCGAGCCCCCCTCGCGCCGGGACGCCCTGGAGATCGAGCTGGAGCGGGTGCAAAGGGGGCCCCTCTTCTCCGCGCTCGGGGTGAAGCCGGTGCGGGTCGGCAAGTCGCTGCCGACCGACGCCCTCGAGGCGATCGTCTCCCTGCAGGCGGAGCTGGAACGGCTGCACTCCGAGCGGGCGCTCACCCCGGAGGAGGCGCGGCGGGCCAACACCGAGCTGCGCGCCGACATGCGCGCGCAGGACAACTACTTCCCGGACCTGGAGATCGTGGCCCGCTCGTTGCTGGACGACGTCGGGCACACCCGCGGTCCGGTGCCGCAGCGCGCGGCCGTCGACATCGCCAAGCACCTGGGCTTCACGATCCACTACGAGTCGGACCTGCCGCACTCGACCCGTGCCGTCATCGACCAGCGCCACCACCGGGTCTACCTGCCCAGCAACGGCATCCGCGGGCGCTCCGATGCCCGGTCGGCGCTGCTGCAGGCGCTCGCCTCGCACGTGCTGGATCACGCCGAGCCGCGCGACTACGGCGAGTTCCTGCGCCAGCGGGTGGAGGCCAACTATCTGTGCGCGGCGCTGCTGCTGCCCGAGCGCGAGGCCGTCAAGCACCTGCGCGAGGCCAAGGACGCCCGGGCGATCTCGATCGAGGACCTGCGCGACGCCTTCGCCGTCTCCTACGAGACGGCGGCGCACCGGTTCACGAACCTGGCCACCCGCCACCTCGGCATCGGCGTGCACTTCATGAAGGTCCACGAGTCCGGGGCGATCCACAAGGCCTACGAGAACGACGGAGTGCGGTTCCCCGCCGACGCGCTCGGCACCGTCGAGGGCCAGCACGTGTGCAAGCAGTGGACGGCCCGGGTCGTGTTCGACGTCGAGGACCGCCTCAGCCCCTATTACCAGTACACCGACACCCCCACCGGGACGTACTGGTGCACCTCGCGGGTCTCCGACACCCCCGACGGCCGGTTCTCCGTCAGCGTCGGCGTGCCCTACGCCGAGGTGAAGTGGTTCCTGGGCCGGGAGACGACGGCGCGGTCCACCTCGCGATGCCCGGACGAGTCCTGCTGCCGCCAGCCGTCGCGGCCGCTGGCCGAGCGCTGGGACGGCCACGCGCTGCCCAGCGCCCGCCCGCACGCCTCGATGCTCGCGGCGATGCCGTCCGGGGCGTTCCCCGGCGTGGACACGACGGCGGTCTACGAGTTCCTGGAGCGGCACGCCCCGGCCGCCGGCTGAMSLWGMALTTTSRPPATPPAPPPAESEPDALTIGRRIRHLRLQRGMTLGELGDAVSRAPSQISMLENGKREPTIARLQAVAKALGTSVDDLLSPEPPSRRDALEIELERVQRGPLFSALGVKPVRVGKSLPTDALEAIVSLQAELERLHSERALTPEEARRANTELRADMRAQDNYFPDLEIVARSLLDDVGHTRGPVPQRAAVDIAKHLGFTIHYESDLPHSTRAVIDQRHHRVYLPSNGIRGRSDARSALLQALASHVLDHAEPRDYGEFLRQRVEANYLCAALLLPEREAVKHLREAKDARAISIEDLRDAFAVSYETAAHRFTNLATRHLGIGVHFMKVHESGAIHKAYENDGVRFPADALGTVEGQHVCKQWTARVVFDVEDRLSPYYQYTDTPTGTYWCTSRVSDTPDGRFSVSVGVPYAEVKWFLGRETTARSTSRCPDESCCRQPSRPLAERWDGHALPSARPHASMLAAMPSGAFPGVDTTAVYEFLERHAPAAGNANANANANA
AK018_064051350icl_1COG2224Isocitrate lyaseATGACCGCGACCCTCGAGACCGAGACCCCGACCACCGGCACCCCGACCACGGCGCCGACCGCCCGTCCCGGCGACCAGGTCGCCACCGCCGCGGCGCTCGCCGAGCAGTGGGCCACGGACCCGCGCTGGGCCGGCGTCACCCGGGACTACACGGCCGAGGACGTCGTCGCGCTGCGCGGTTCGGTGGGCGAGGAGCACACGCTGGCCCGGCGCGGGTCCGAGCTGCTGTGGGAGCTCCTGCACACCGAGGACTACGTCAACGCCCTCGGCGCGCTGACCGGCAACCAGGCCGTGCAGCAGGTCAAGGCCGGTCTGAAGGCCATCTACCTGTCCGGCTGGCAGGTGGCCGGCGACGCCAACCTCTCGGGCCAGACCTACCCCGACCAGTCGCTCTACCCGGCGAACTCGGTGCCGGCCGTCGTGCGGCGCATCAACAACGCGCTGCTGCGGGCGGACCAGATCGACGTCTCTGAGAACGCAGGGAATGGTCCCTCACGCAACTGGCTGGCCCCGATCGTGGCCGACGCCGAGGCCGGGTTCGGCGGGCCGCTCAACGCCTACGAGCTCATGAAGTCGATGATCTCCTCCGGCGCCTCCGGCGTGCACTGGGAGGACCAGCTCGCGTCCGAGAAGAAGTGCGGCCACCTGGGCGGCAAGGTGCTCATCCCCACCAAGCAGCACGTGCGCACCCTGAACGCCGCACGGCTCGCCGCCGACGTCTCCGACGTGCCGAGCGTCATCATCGCCCGCACGGACGCCGAGGCGGCCACCCTGATCACCTCCGACATCGACGAGCGCGACCAGCAGTTCCTCACCGGGGAGCGCACCTCGGAAGGGTTCTACAAGGTCCGCAACGGCATCGAGCCCTGCATCGCCCGGGCCCACGCCTACGCCCCGTACGCCGACCTCATCTGGATGGAGACCGGCACCCCCGACCTCGACCTGGCCCGCCGGTTCGCCGAGTCGGTCAAGGCCGAGTTCCCCGACCAGATGCTCGCGTACAACTGCTCGCCGTCGTTCAACTGGAAGAAGCACCTCGACGACGACACCATCGCGACGTTCCAGCGCGAGCTCGGCGCCATGGGCTTCACGTTCCAGTTCATCACCCTGGCGGGCTTCCACGCCCTCAACCACTCCATGTTCGATCTGGCCCACGGTTACGCCCGTGAGCAGATGACGGCCTACGTGCAGCTGCAGGAGGCCGAGTTCGCCTCCGAGACCCGCGGCTACACCGCCACCAAGCACCAGCGGGAGGTGGGCACGGGGTACTTCGACCGCGTGTCGACGGCGCTCAACCCCGACGCCGCCACCCTCGCCCTCGCCGGCTCCACCGAGGCCGCTCAGTTCTGAMTATLETETPTTGTPTTAPTARPGDQVATAAALAEQWATDPRWAGVTRDYTAEDVVALRGSVGEEHTLARRGSELLWELLHTEDYVNALGALTGNQAVQQVKAGLKAIYLSGWQVAGDANLSGQTYPDQSLYPANSVPAVVRRINNALLRADQIDVSENAGNGPSRNWLAPIVADAEAGFGGPLNAYELMKSMISSGASGVHWEDQLASEKKCGHLGGKVLIPTKQHVRTLNAARLAADVSDVPSVIIARTDAEAATLITSDIDERDQQFLTGERTSEGFYKVRNGIEPCIARAHAYAPYADLIWMETGTPDLDLARRFAESVKAEFPDQMLAYNCSPSFNWKKHLDDDTIATFQRELGAMGFTFQFITLAGFHALNHSMFDLAHGYAREQMTAYVQLQEAEFASETRGYTATKHQREVGTGYFDRVSTALNPDAATLALAGSTEAAQFPGPT0001550_1116DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLYOXYLIC_ACID_BIOSYNTHESIS,PGPT0001550-aceA-K01637NANA
AK018_064061746aceB_1Malate synthaseATGACCACCATCGCCGACCCGCCCCGCACGCAGTCCCCCCGCTCGACCGGCTCGCCCGCCACGCCCCCGCGCGGCATCGCCCTGGCCGACTCGGCCACCGTGGCCGAGGGCACGATCGACGTCGTCGGCCCGATCGAGCCGGGCTTCGAGGAGATCCTCACCCCGCAGGCGCTGGAGTTCCTGGCGCTGCTGCACGACCACTTCGCCGACGCGCGGTGCGAGCTGCTGCTCACCCGCCAGCGGCGCACCCGGCAGATCGCCGACGGCGCCGACCCGGACTTCCTGCCCACCACCCGGCCCGTGCGGGACGACCCGTCCTGGCGCGTCGCCGGCTCGACCGGGGCGCCCGGACTGTCCGACCGCCGCGTCGAGATCACGGGGCCGACCGACCCGAAGATGACCATCAACGCCCTCAACTCGGGCGCGAAGGTCTGGCTCGCCGACGCCGAGGACGCCTCGAGCCCGACCTGGGGCAACGTCGTCGGCGGCCAGCTCTCGCTGCGCTCGGCGATCCGGGGCGAGCTGTCGTTCGACGGCCCGTCGCCCGACGGCGGTCGTACCCCGGGCAAGCACTACGCGCTGCGGACCTCCGAGCTGACCGAGATGCCGACGATCGTGTTCCGCCCGCGCGGCTGGCACCTGTTCGAGTCGCACCTGGCCTACACGGGCACGGACGGTTCCACCCAGCCGGCGTCCGGGTCGCTGGTCGACTTCGGCCTGTACTTCTTCCACAACGCCCGCGAGCTGATCTCCCGGGGGCGTGGACCGTACTTCTACCTGCCGAAGCTGGAGAGCCACCGCGAGGCGCGGCTGTGGAACGAGGTCTTCGAGCTGGCCCAGCACGCCCTGGACATCCCGCAGGGCACCATCCGGGCCACCGTGCTCATCGAGACCCTGCCGGCCGCGTTCGAGATGGAGGAGATCCTTTACGAGCTGCGCGACCACTGCGCCGGGCTGAATGCCGGGCGCTGGGACTACCTGTTCAGCGTCATCAAGTGCTTCCGCTCGCGCGGCGACTCCTACGTCCTGCCCGACCGGGCGCAGGTGACGATGACGGCGCCGTTCATGCGGGCGTACACCGAGCTGCTGGTCGCCACCTGCCACCGGCGCGGGGCGCACGCCATCGGCGGCATGAGCGCCTTCATCCCCGACCGTCGCAACCCGGAGACCACGGAACGTGCCTTCGCCCAGGTGAGCCGCGACAAACAGCGCGAGGCCGGCGACGGATTCGACGGCTCCTGGGTCGCGCACCCGGACCTCATCGGCATCGCCCGCGAGGCGTTCGACGAGGTGCTGGGCGAGCGGGAGAACCAGGTCGAGCGGCTGCGCGACGACGTCACGGTGGGCCAGGCCGAGCTCCTCGACGTCGCCTCCGCGCGGCGCGAGGGCGCGACCATCACCGAGGCCGGGCTGCGCACCAACATCTCCGTCGGCGTGCGGTACATCGCGTCCTGGCTGCGGGGCACCGGCGCCGCGGCGCTGGACAGCCTCATGGAGGACGCGGCGACGGCGGAGATCTCGCGGTCGCAGGTCTGGCAGTGGATGCATTCGGAGACCCGCACCGAGGACGGGGTCACCATCACCCGCGAGCTGTGCGAGTCGATGCTGCAGGAGTTCCTGCGGACGACGCCGCGGACCCCGGGTGACCGGCTCGACGAGGCCGTGACGATCTTCCGCGAGGTCGCGATGGGCGACGAGTTCCCGCCCTTCCTCACCACGAGCGCCTACGCCCGGTACTTCGGCTGAMTTIADPPRTQSPRSTGSPATPPRGIALADSATVAEGTIDVVGPIEPGFEEILTPQALEFLALLHDHFADARCELLLTRQRRTRQIADGADPDFLPTTRPVRDDPSWRVAGSTGAPGLSDRRVEITGPTDPKMTINALNSGAKVWLADAEDASSPTWGNVVGGQLSLRSAIRGELSFDGPSPDGGRTPGKHYALRTSELTEMPTIVFRPRGWHLFESHLAYTGTDGSTQPASGSLVDFGLYFFHNARELISRGRGPYFYLPKLESHREARLWNEVFELAQHALDIPQGTIRATVLIETLPAAFEMEEILYELRDHCAGLNAGRWDYLFSVIKCFRSRGDSYVLPDRAQVTMTAPFMRAYTELLVATCHRRGAHAIGGMSAFIPDRRNPETTERAFAQVSRDKQREAGDGFDGSWVAHPDLIGIAREAFDEVLGERENQVERLRDDVTVGQAELLDVASARREGATITEAGLRTNISVGVRYIASWLRGTGAAALDSLMEDAATAEISRSQVWQWMHSETRTEDGVTITRELCESMLQEFLRTTPRTPGDRLDEAVTIFREVAMGDEFPPFLTTSAYARYFGPGPT0001445_1498DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638NANA
AK018_064071200hypothetical proteinATGGGGACCAGGAAAGACCACGACGCTGGGAGCGAGCAGGACGCCCCTCCGCCCACCGTCGATCCCAGGCCGCTGACGGATGCTGCCGCGGAGACGCGTCGGGAGATCGGCCGGTTCAACCTCGCCATCGCCGGTGGCACCGGCGTCGGGAAGTCCTCGCTGCTCAACGCCGTCTTCGGCGAGGAGCGCGCGGAGACCGGCATCGGCCTCCCGATCACGCAGGGGATCCACTATCACGTCAACCATGACGGCTCGCTCGGCGTGTGGGACTTCGAGGGGTTCGAGCTCGGTTCCAGCCTGACCCCGGCGGAGATGGTCGCGGACAACCTCTCGACCATCTCTCGTCGACCGGCCGACGAGCAGATCGCGGTGGTCTGGTACTGCGTGCTGTCCACGTCCGGACGGCTCTCCGAGGCCGACATCGACGCCATCAGGGCCCTGGCTGTTGCGGGAAAGCATGTCATCCTCGTCCTGACCAAGGTGCGGCGCAGCCGCAACATCGGCGGCAGATGGACCATCGACCGCGACGCTCAAGATCTCCTCGACTTCCTCGAGAGCCCCCAGGACCGGGACGGTCGCCCCATCGTGCTTCCGGTGGCCCGGGTCGTCGCGACCGCAGCGGTCGACCAGGGGAGATACGGGCCGAGGCACGGCCTCACCGAGCTCGTGACGGCGACGCTCGATCTGTCGCCCGACGACGCCAAGGACGCGTTCGGCGTGGCTCAGCGGCTGTCGCTCCCGCTCAAGCGCCAGATCGCCCGGCGATCCGTCGGCGCCGCCGGGGTGAGCGCCGCGGCGGCCGCGGCGGTGCCCGTCCCTTTCGCCGACGCCGCCGCGCTGGCTCCGATCCAGCTGGCGATGATGGGCAAGGTCTCGGCGATCTACGGGATGGACCTCAAGGTCATGCTCAGCGCCCAGGCGTTGAGCCAGCTGGCGACGCAGGTCGCAGGCAAGGCCCTGGCACGTAGTGTGGTCAAGCTGATCCCCGGCGCCGGCCTGGCGATCAATGCGAGCGTCGCCGCCGCGCTGACCGTGGCGACCGGCGAAGCCTGGGTGCGCATCTGCGAGAAGGTGTTCACCGGCGAGATCGACCTCGCCGACGTCGAAGCGCTCTGGTCGTCGTACGGGCCCACGGTGTCCCAGGTGCTCCCGTGGGTCGTCAAGTTCAGGAACGGCGCGAAGATCCCCGCGACCGTGTAGMGTRKDHDAGSEQDAPPPTVDPRPLTDAAAETRREIGRFNLAIAGGTGVGKSSLLNAVFGEERAETGIGLPITQGIHYHVNHDGSLGVWDFEGFELGSSLTPAEMVADNLSTISRRPADEQIAVVWYCVLSTSGRLSEADIDAIRALAVAGKHVILVLTKVRRSRNIGGRWTIDRDAQDLLDFLESPQDRDGRPIVLPVARVVATAAVDQGRYGPRHGLTELVTATLDLSPDDAKDAFGVAQRLSLPLKRQIARRSVGAAGVSAAAAAAVPVPFADAAALAPIQLAMMGKVSAIYGMDLKVMLSAQALSQLATQVAGKALARSVVKLIPGAGLAINASVAAALTVATGEAWVRICEKVFTGEIDLADVEALWSSYGPTVSQVLPWVVKFRNGAKIPATVNANANANANA
AK018_064083294hypothetical proteinGTGCGCCACCCGAACGAGGCCGACTGGGAACAGCTCGCCCGCGAGCACCTGGCCGAGTTCGGCTGGGCCCCGCTGGAGGGCAAGGACATCGCGCCGGGCGCGACCTCCGCCGTCGGGCATCCGGGGTACACGGCGCTGGGGGAGCAGCCCCAGCGCGAGTCCTGGTCCGAGCTCGCGATCCCGTCGCGCATGAAGGCCGCGCTGCGCCGGCTTAACCCCGACGTGCCGCGCGAGCATCTCGACCAGGCGCTCGCCGAGGTCCTGCGCCCCTCGTCCCAGGACGCGATCACCGAGAACCACCGCATGCATGCCGTCCTCGCAGGCGGCTACCGGATCACGTACACGGCGGACGGCGCCGAGCACCACCCGACCCTGCGCCTGGTCTCCGCCCGCGAGCACGAGAACGAGTGGCTCGCCGTCAACCAGGTGACCGTCATCGACCGTGAGGTCGAGCGGCGCTTCGACCTCGTGCTCTACCTCAACGGCATGCCCGTGGCGATCGTCGAGCTGAAGAACGCGGGCACCCGCCAGGCCGACGTCGCCGCGGCACACGCCCAGCTCGCCACCTACGTGCGCGAGCTGCCGATGGCCTTCCGCTTCTGCGTGATGACGCTCGCCAGCGACGGCGTCGTCGCCAAGTACGGCACCCCCTTCACCCCGCTGAACCACTACGCGCCGTGGAACGTGGACGACGACGGGCGTGTCGTCGGACCCGACGGGCGCCCGCAGGGGGAGGGGAACCTGCACCTCGTCGACGACGCCGGTCTGCCCGGTCATCTCGAGCCGGTCACCCCGCTGGAGGTCACCCTCTCCGGCCTGTTCAACCCCGAGAGGTTCCTCCAGCTGCTGCGCGGGTTCGTCGCCTTCGACTCCGACGAGGACGGCCTGGCCAAGCGCGTCGCCAAGCCGCACCAGTACTTCGCGGTCACCAAGGCGGTCGGGGAGACCGTCCGGGCCGTCGACGGCGACGGCCGGGCCGGCGTCGTCTGGCACACGCAGGGGTCGGGCAAGTCGATGGAGATGGAGCTGTACGCGGCCGCGGTCGCCCGCCACCCCCAGCTGCTCAACCCCACGATCGTGGTCATCACCGACCGCACCGATCTGGACGACCAGCTCTACGAGACGTTCCAGCGCTCGGAGCTGCTGCCCGAGAGCCCCCGCCAGGTCCTGCGCCGCGCCGAGCTGCGCGACGAGCTCGCGAACCGCACCACCGGTGGCATCTACTTCACGACCCTGCAGAAGTTCGGCCTGACCAAGGCCGAGAAGGACGCTGGTGCCAAGCACCCCGTGCTGTCCGAGCGGCGCAACATCGTCCTCATCGTCGACGAGGCGCACCGCAGCCACTACGGCGACCTCGACGGCTACGCGTGGCACCTGAAGAACGCGCTGCCGCACGCCACGCTCATCGCCTTCACCGGGACCCCGATCTCGGAGCAGGACCGTGACACCGAGGCCGTGTTCGGCGACGTCATCGACGTCTACGACCTCACGCGGGCCGTGGCCGACGGCGCCACGGTGCCGGTCTACTTCGAGTCCCGCCTCGTCAAGGTCGGGTTCCCGGACGACGTCGACCCGGAGGCCATCGACGCCGCGGCCGACGAGGCCACGATCGGGCTCGACGACGCCGAACGCTCCCGGATCGAGAAGTCCGTCGCGGTGGTCAACGCCGTCTACGGCGCGCCCGCCCGGCTCAGGACGCTCGCCGAGGACCTGCTCGAGCACTGGGACGCGCGACGCGACGTCGTCGTCGAGAGCGTGAGGCCGTCGTCGGGCGGCGCCGTGTCGGACGCGGCGCCGGGCAAGGCCCTCGTGGTCTGCTCCACCCGGGAGATCTGTGCTCGGCTCTACCAGCAGATCACCGAGCTGCGCCCCGAGTGGCATTCGGACGAGCTGTCGACCGGTCGCGTCAAGGTGCTGTACTCCGGGACCCCGCAGGACCCGGAGCACATCGCGCAGCACGTGCGCCGACCGAGCGAGAACGCTGCCCTGAAGAAGCGGCTGAAGGACCCCGACGACGAGCTCGAGATCGTCATCGTCAACGACATGCTGCTGACCGGCTACGACTCGCCCTCGCTGCACACGCTGTACCTCGACCGGCCGCTGCGCGGGGCGCTGCTCATGCAGACCCTCGCCCGCGTGAACCGGACCTTCCGCGGCAAGGACTCCGGGCTGCTCGTCGCCTACGCGCCCGTGGCCGAGAACCTCCAGGCGGCGCTGGCCGAGTACACCGTGCGGGACCAGTCCGAGAAGCCCGTGGGGCAGGACCTCGACACCGCCGCCGAGGTAGCGCGTGCACACATCGAGCAGGTCGCCGCGCTGGTCGATCCGAGCGGATGGCGCGAGACGTGGGCGGAGCGCCGCCACGAGCGGCGGGCCGGCATCGACGCGGTCATGCGGGCGGTCAACTACCTGCGCAGCCCCCGGACACCGGGCAACCAGGTCGGTCCCGACGAGGAGTCGGTGGCCGACGCATTCCGCCGGCTCGCGCCGGCGCTGCGGCGTTCGTGGGCGCTCGCAGGCCGACACGCGTCGTTGGCCGGGTACGGCGACGACGTGCGCTTCTACGAGCAGGTCCGCACCTGGATGGGCAAGATGGATGCCCAGGACCGGCAGGCGTCCGGCGAGCCGATCCCCGACGAGGTGCAGCGACTGCTCAACCAGCTCACGGCCACCGCGGTGGACGCCGACGACGTCGTCGACATCTACGACGCCGCGGGCCTGCCCCGGCCCCGGCTCGACCAGATCGACGCGGACTTACTCGCGAAGGCGAAGGACTCGCCGAACCCGCAGGTCGCGATCGAGGCGCTGCGGGCCTTGATCACCGCCGAGGCGCGCAGTTCGACCGAGGGGAACCTGGTGCGCCGGGAGGCGTTCTCGGAGCGTCTGGCGACCTTGATGCGCAGGTACACGAACTCGAACCTGACCTCCGCGGAGGTGATCACGGCCCTGGTCGAGATGGCGCACGAGGTGGCGGCCGAGGCCTCGCGCGGGGAACGGTTCGACCCGCCGCTCGGCCACGACGAGCTCGCGTTCTACGACGCGGTCGCCTCGAACGCCTCGGCGGTGGAGCTCCAGGGCGACGCCAAGCTCGCCGAGATCGCCCGCGACCTGGTCGCCGTCATGCGGAAGAACGACCAGGTCGACTGGACCGTTCGCGACGACGTGAAGGCCAAGATGCGCTCGTCGATCAAGCGGCTGCTCATCAAGCACAAGTACCCGCCGGACCAGCGGATCGACGCCATCGTGCTGGTCATGAACCAGATGGAGGCGTTGGCGACCCGCCGCGCGGCGTGAMRHPNEADWEQLAREHLAEFGWAPLEGKDIAPGATSAVGHPGYTALGEQPQRESWSELAIPSRMKAALRRLNPDVPREHLDQALAEVLRPSSQDAITENHRMHAVLAGGYRITYTADGAEHHPTLRLVSAREHENEWLAVNQVTVIDREVERRFDLVLYLNGMPVAIVELKNAGTRQADVAAAHAQLATYVRELPMAFRFCVMTLASDGVVAKYGTPFTPLNHYAPWNVDDDGRVVGPDGRPQGEGNLHLVDDAGLPGHLEPVTPLEVTLSGLFNPERFLQLLRGFVAFDSDEDGLAKRVAKPHQYFAVTKAVGETVRAVDGDGRAGVVWHTQGSGKSMEMELYAAAVARHPQLLNPTIVVITDRTDLDDQLYETFQRSELLPESPRQVLRRAELRDELANRTTGGIYFTTLQKFGLTKAEKDAGAKHPVLSERRNIVLIVDEAHRSHYGDLDGYAWHLKNALPHATLIAFTGTPISEQDRDTEAVFGDVIDVYDLTRAVADGATVPVYFESRLVKVGFPDDVDPEAIDAAADEATIGLDDAERSRIEKSVAVVNAVYGAPARLRTLAEDLLEHWDARRDVVVESVRPSSGGAVSDAAPGKALVVCSTREICARLYQQITELRPEWHSDELSTGRVKVLYSGTPQDPEHIAQHVRRPSENAALKKRLKDPDDELEIVIVNDMLLTGYDSPSLHTLYLDRPLRGALLMQTLARVNRTFRGKDSGLLVAYAPVAENLQAALAEYTVRDQSEKPVGQDLDTAAEVARAHIEQVAALVDPSGWRETWAERRHERRAGIDAVMRAVNYLRSPRTPGNQVGPDEESVADAFRRLAPALRRSWALAGRHASLAGYGDDVRFYEQVRTWMGKMDAQDRQASGEPIPDEVQRLLNQLTATAVDADDVVDIYDAAGLPRPRLDQIDADLLAKAKDSPNPQVAIEALRALITAEARSSTEGNLVRREAFSERLATLMRRYTNSNLTSAEVITALVEMAHEVAAEASRGERFDPPLGHDELAFYDAVASNASAVELQGDAKLAEIARDLVAVMRKNDQVDWTVRDDVKAKMRSSIKRLLIKHKYPPDQRIDAIVLVMNQMEALATRRAAPGPT0027170_608DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_I_R-M_SYSTEM,PGPT0027170-hsdR-K01153NANA
AK018_06409330hypothetical proteinGTGAGTCGCGGCATCGACCAACGGATCGCCGACATCCTGCATGCGATCGACCGGTGCCAGAGGTACGTCGGCTCGCTCGATGGCGGCGATCAGGCCGACCTCGTCGACATGGCTGAGGACGCCATCGAGCGGAACCTCCAGATCATCGGCGAGGCCGCCAACCACCTGCCGGACAAGATCACCGACGCACACCCGGAGATTGCCTGGCCGCAGATCCGTGGCTTCCGCAACATCCTCGTCCATCAGTACTTCGGGGTCGACGTTGCCGTCGTCCGCGACGTGATCGAGAACCACCTGCCGCCACTGGCCGAGGCGCTGCGCGGGCACTGAMSRGIDQRIADILHAIDRCQRYVGSLDGGDQADLVDMAEDAIERNLQIIGEAANHLPDKITDAHPEIAWPQIRGFRNILVHQYFGVDVAVVRDVIENHLPPLAEALRGHNANANANANA
AK018_06410330hypothetical proteinATGCCGAGGACCGCCGCCACCCCCGAGAGCCTCGCCCTGCGCGAGATCCTCGACGCGCGCCGCGACGAGTTCGATGCCCTCCTGACGAGGTACGGTGCGACCAACCCGCGGCTGTTCGGCTCCGTCGCCCGCGGCACGGCACGCGCCGACAGCGACATCGACATCCTCGTCGAACTTGACCCGGCCGACGGGAACCTCCTCATGCGCGCTTCCGGGTTGATGGAAGAGACCCGACTCCTCTTCGGCCGCGATGACATCGACGTGTTCCCGGTCCAGCTGCTCAAGAGACCGATCTCGCAGTCGGCCATCGAGGATTCGGTCGCACTGTGAMPRTAATPESLALREILDARRDEFDALLTRYGATNPRLFGSVARGTARADSDIDILVELDPADGNLLMRASGLMEETRLLFGRDDIDVFPVQLLKRPISQSAIEDSVALNANANANANA
AK018_06411735putative proteinATGGCCCGCACGAAGTCCGACGCCGGCGAGCCCGCCGACGCGTCCACGAAGAAGCAGAAGAAGCCCAAGAAGCAGCGCTGGTACCACCAGGTGTGGTCCGCGTACCAGATGACCAGGCGACAGGACCCCATGGTCACCTGGATCATGCTGGCGGTCTTCCTCGGCGTCCTCGCCGTCGCGCTGCTCATCGGCGCCCTGACCGGCAACGTGATCTACGCCTCGATCATCGGCCTGCCGTTCGCCCTGCTCGCCGCGATGTTCGTCCTGACGCGCAAGGCCGAGCGGGCGGCGTACACCCAGATCGCCGGCCAGCCGGGCGCCGTGCGCGCCGCGCTGGGCACCGTCCGCGGGGGCTGGAACTTCGACGACGAGCCGGTGGCGGTCAACCGTCACCAGGACCTCGTCTTCCGCGGCGTGGGACGCCCCGGCGTCGTGCTGGTCTCCGAGGGCCCCGCGCACCGCGTCCAGCGGATGCTGGCCGACGAGCGCAAACGCACCACGCGCATCCTGCCCAACGTCCCGGTCGCCACGATCCAGGTCGGCGACGAGGAGGGCCAGGTGCCGCTGCCCAAGGTCGCCCGCAAGGTCCAGCGCATGAAGAAGCAGCTCACGCGGGCCGAGGCCGGCGAGGTCGGCAAGCGCCTCAAGGCGCTCGGCGGGGTCCGCCTGCCGGTGCCCAAGGGCGTCGACCCCATGAACGCCCGCCCCGACCGCAAGGGGATGCGCGGGCGCTGAMARTKSDAGEPADASTKKQKKPKKQRWYHQVWSAYQMTRRQDPMVTWIMLAVFLGVLAVALLIGALTGNVIYASIIGLPFALLAAMFVLTRKAERAAYTQIAGQPGAVRAALGTVRGGWNFDDEPVAVNRHQDLVFRGVGRPGVVLVSEGPAHRVQRMLADERKRTTRILPNVPVATIQVGDEEGQVPLPKVARKVQRMKKQLTRAEAGEVGKRLKALGGVRLPVPKGVDPMNARPDRKGMRGRNANANANANA
AK018_064121011lipA_2COG0320Lipoyl synthaseGTGACCATCGCACCCGAGGGCCGCCGCCTGCTGCGCGTCGAGGCCCGCAACGCCGAGACCCCCATCGAGAAGAAGCCCGAGTGGATCAAGACCCGAGCGGTCATGGGCCCGGAGTACAAAGAGCTCAAGGGCCTGGTGAAGGGTGGTGGGCTGCACACCGTCTGCGAGGAGGCGGGCTGCCCCAACATCTTCGAGTGCTGGGAGGACCGCGAGGCGACCTTCCTCATCGGCGGTGACCAGTGCACCCGCCGGTGCGACTTCTGCCAGATCGACACCGGCAAGCCGGCCGACTTCGACGCCGACGAGCCGCGCCGCGTGGCCGAGTCGGTCCAGCAGATGGGTCTGAAGTACTCCACGGTCACGGGCGTCGCCCGCGACGACCTGGCCGACGGCGGCGCCTGGCTGTACGCCGAGACCGTCCGGCAGATCCACGCGCTCAACCCGGGTACCGGCGTCGAGCTGCTCATCCCGGACTTCAACGCGATCCCCGAGCTGCTCGACGAGGTCAACGACTCGCGCCCCGAGGTGATGGCGCACAACGTCGAGACCGTGCCGCGCATCTTCAAGAAGATCCGCCCGGCCTTCCGCTACGAGCGGTCGCTGTCGGTGCTGACCCGTGCGCGCGAGGCCGGCCTGGTGACCAAGTCGAACCTCATCCTCGGCATGGGCGAGACCATCGAGGAGGTCAAGTCCGCGCTGGACGACCTGCAGTCGGCCGGGTGCGACCTCATCACGATCACCCAGTACCTGCGCCCGTCCGTGCGCCACCACCCCGTGGAGCGCTGGGTGCGCCCCGAGGAGTTCGTCGAGCTGAGCGAGTACGCCGAGGAGATCGGGTTCCTCGGCGTCATGGCCGGCCCGCTGGTGCGGTCCTCGTACCGCGCCGGACGCCTGTGGGGCCAGGCCATGACCAAGCGCGGCCAGGCCGTCCCGGAGGCACTCGCACACCTGACCGAACCCACGACCGCACGCCAGGAGGCGGCGAGCCTCGTCGCTCCCCGCGCCCAGTAGMTIAPEGRRLLRVEARNAETPIEKKPEWIKTRAVMGPEYKELKGLVKGGGLHTVCEEAGCPNIFECWEDREATFLIGGDQCTRRCDFCQIDTGKPADFDADEPRRVAESVQQMGLKYSTVTGVARDDLADGGAWLYAETVRQIHALNPGTGVELLIPDFNAIPELLDEVNDSRPEVMAHNVETVPRIFKKIRPAFRYERSLSVLTRAREAGLVTKSNLILGMGETIEEVKSALDDLQSAGCDLITITQYLRPSVRHHPVERWVRPEEFVELSEYAEEIGFLGVMAGPLVRSSYRAGRLWGQAMTKRGQAVPEALAHLTEPTTARQEAASLVAPRAQPGPT0003935_1180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003935-lipA-K03644NANA
AK018_06413717lipB_2COG0321OctanoyltransferaseATGGACGTCGTCTCCCTGCCGGGCCCGGTCGACTACCACGAGGCCTGGGACCTGCAGCGCCGCACGCACGCCGCCGTGCACGCGGGCCAGGACGCAGGACGCCTCTTCCTGCTCGAGCACGCCTCGGTGTACACGGCCGGACGACGGACCCGCCGGGCCGAGTACCCCACCGACGGCACCGCGGTCGTGGACGTCGACCGCGGCGGCAAGATCACCTGGCACGGGCCCGGCCAGCTCGTCGCCTACCCGATCGTCCCCCTGCGCTCCCCCGTCGACGTCGTCGCGTACGTCCGCACGCTCGAGGCCGCCGTCATGGACGTCTGCCGCGGGCTGGGGCTCGAGCCGGTCCGCGTCGAGGGCCGGTCCGGCGTGTGGTTCGCGGCCGACGAGGGCACCCAGAGGCCCGACGGCGGTGCCCCGCGCCGGGCCCGCAAGGTCTGCGCGATCGGCGCCCGCGTGGCCCGCGGCGTGACGATGCACGGCCTGGCCCTGAACTGCGACCCGGACCTGACCGCGTTCGACGCCATCGTGCCCTGCGGCATCGACGACGCCGACGTCACCTCGCTGACGGCCGAGACCGGACGGCACATCACGGTCGACGACGTCCGGGACGCCCTGACCGAGGCCCTGGTCGGGCACCTGACACCCCTGGTGACCCACCTCACGCCCACGCAGCAAGACGTCGCGCCGGGGACGCGCGACGCCGTCGTAGGCTGAMDVVSLPGPVDYHEAWDLQRRTHAAVHAGQDAGRLFLLEHASVYTAGRRTRRAEYPTDGTAVVDVDRGGKITWHGPGQLVAYPIVPLRSPVDVVAYVRTLEAAVMDVCRGLGLEPVRVEGRSGVWFAADEGTQRPDGGAPRRARKVCAIGARVARGVTMHGLALNCDPDLTAFDAIVPCGIDDADVTSLTAETGRHITVDDVRDALTEALVGHLTPLVTHLTPTQQDVAPGTRDAVVGPGPT0003925_1353DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003925-lipB-K03801NANA
AK018_06414450hypothetical proteinATGAGCGAGGACCCGCGCCAGTGGCCCACGGGGCGCCTCCTCTTCTCGGTCGCGCGCCGGATCGAGCAGGACTGGAACGCGCACCTGGCGACCTGGGACCTCAACCACGCCGGGCACCCCGCGCTCCTGCACCTGATGGGCGGACCGCTCACCCAGCGCGAGATCGCCGCCCGCAACGGGGTCACCGAGCAGACCATGAGCCGCATCGTGGCTCGCCTCGAGCGCTCCGGCTACGTGACGCGGGACGACGACCCGCGCGACCGCCGTCGTCGCGCCGTCACCATCACCGACCTCGGCCGGCGCGTCGCGCTGGAGGCGGCGCAGTTCCAGCCCGCCGAGGACCTCACCTCGCGCGGCCTCGACGAGGACCAGGTCGAGGCCCTGCGCGAGCTCCTCGTGGCGATGGTGCACGCCCAGCGCGCGGAGCCCCGCAGCCCCGCCGAGCAGTAGMSEDPRQWPTGRLLFSVARRIEQDWNAHLATWDLNHAGHPALLHLMGGPLTQREIAARNGVTEQTMSRIVARLERSGYVTRDDDPRDRRRRAVTITDLGRRVALEAAQFQPAEDLTSRGLDEDQVEALRELLVAMVHAQRAEPRSPAEQPGPT0013155_513DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
AK018_064152361apeX_2COG2409Apo-petrobactin exporterATGCTGAGTAAAAGGTGGGCGGGTATCGCCCGTGGTCTGGTCATTCTGGCAGCGATCGGCGTCTGGCTCGCCATCGGGGCGTTCGGTGGGCAGGCCCAGGGCAACCTGAGCAGCGTCCAGGAGAACGACTCCGCCGCGTTCCTGCCCGAGAGCGCCGAGTCGACCCGGGCGGCCGAGCTCGCCGCGGAGTTCACCGACGACACGACCCTGCCCGCCCTGCTCGTGGCCGAGGCCGGTGACGGCGCCACCCTGACCCCCGAGCAGCTCGCGGACGTGCAGGCGTACGCCGAGGCGGTGCCGGACGCGCCGCTCGAGGGAGCCACCGGCGACGAGCCCGCCACGGTGGGCGAGGCCAGCGTCGCCGACCCGGCGGTCATCCCGTCCGAGGACGGCGAGGCGGCGCTGGTGCTGGTCTCCCTCGACGCCTCGCTCGCCGACGAGGTCGTCGGCGAGGACGAGTCCAGCGTGACCGAGGCCGCCGTCACGGCGCTGCGCGACCTCGCCGAGCAGGGTGCCGGCGACGGCGGGCTGGCCGACACCGGGCTCGAGGCATGGGTCACCGGACCGGCCGGCTTCGTCGCCGACCTCACCAACGCGTTCGGCGCCATCGACACCGTGCTGCTCCTCGTCGCCCTCGGCGCCGTCCTCGTCATCCTCGCCCTGGTCTACCGCTCGCCGTTCCTGCCGTTCGTGGTCATCTTCACCTCCGTGCTCGCGCTGTCCCTCGCCGGGCTCGCCGTCTACCAGCTGGCGGCGAACGACGTGCTGACCCTCAACGGCCAGTCCCAGGGCATCCTGTCGATCCTCGTGGTCGGCGCGTCCGTGGACTACTCCCTGCTCGTCGTGGCCAGGTACCGCGAGGAGCTGGGGCGGCTGTCGTCGCCCTACACCGCCCTGCGCCGCGCCGTCCGGGCGTCGATCGAACCCATCACGGCCAGCGCGGTCACCGTCATCGCCGGCCTGCTCTGCCTGCTGCTGTCCGACCTGTCGTCCAACCGCAGCCTGGGGCCCGTCGCCGCCATCGGCATCGTCGCGGCGTTCCTGTCCGCGCTGACCCTGCTGCCGGCGCTGCTGCTCGTCGGCGGGAAGCGTGCCCGCTGGGTGTTCTGGCCCCGGGTCCCCCGGGTGCCGGCCGCCGCCGAGGACGCGACGGCGTCCGACGCCGGCACGTCCGCCGCGCACGACGCCGAGCCGGACGCCACGCACGGCGCCGCGCCGCGCCACGGCCGCCACAGCGCTGCGGGCGCGACGGACGACGCACCGGCCGTCGCCGGGCACGGCCTGTGGTCCCGCGTGGCCGGCTTCGTCGGTCGCCACGACCGGCCGGTCTGGATCGTCACCGCGATCGTGCTCCTCGCCGGTGCCGCCTTCGTGCCCACGCTGAACGCCGGCGGCACGGGCGACTCCGACGTGTTCCTCACCCAGGTCGACTCCGTCGACGGCGAGGAGGTCCTCACCGCGCACTTCGAGGGCGTGTCCACCCAGCCGGCCACCGTCATCGTCCCCGAGGGCGACCTGGACGCCGTCGTGGAGGCCGCCGAAGGCACCGCGGGGGTCTCCGAGGCCGCCCCGGTGACCGACCAGCCGGCCCCCGCGCCCGGGGCGCCGGCCGGCGGCGACCCGCTCGTGGTCGACGGCCTGGTTCGCGTGGACGTCGTCACCGACGCGCCCTCCGACAGCCAGGAGGCCACCGAGGCCGTCTCGGCCCTGCGCGACTCGCTGCAGGACGTCTCGCCCGACGCCCTCGTCGGCGGCGCCGCCGCCGAACGCCTGGACACCCAGCTCGCCGGCCAGCGCGACCTGCAGGTCATCGTGCCCGTCGTGCTCGTCGTCATCCTGCTGATCCTCATGCTGCTGCTGCGCTCCGTGCTGGCCGCCGCGCTCCTCATGGGTGCCAACGTGCTGTCGTTCGGCTTCGCCCTCGGCGTCTCGGCGATCCTGTTCAACACCGTCTTCGACTTCCCGGCGACCGACCCCAGCGTGCCGCTGTACGCGTTCGCGTTCCTCGTCGCGCTCGGCGTCGACTACTCGATCTTCCTCATGACCCGCGTGCGGGAGGAGAGCCTGAAGATCGGGACGCGGCCGGGGGTGCTGCGCGGGCTCGCGGTCACGGGGTCGGTCATCACCTCGGCCGGTGTCGTGCTCGCGGCGACGTTCGCGGCCCTCGGCGTCATCCCGCTGGCGTTCCTCGCCCAGCTCGCCTTCATCGTCTCCTTCGGCGTGCTGATCGACACCCTCGTGGTCCGCAGCCTGCTGGTGCCGGCGCTGGTCCACGACATCGGCGACCGCACGTGGTGGCCGTCCCGCCTGGCGCGTCGCCCGGTGGCGGTCGAGCAGGGGTCGGGCACCATGGGCACATGAMLSKRWAGIARGLVILAAIGVWLAIGAFGGQAQGNLSSVQENDSAAFLPESAESTRAAELAAEFTDDTTLPALLVAEAGDGATLTPEQLADVQAYAEAVPDAPLEGATGDEPATVGEASVADPAVIPSEDGEAALVLVSLDASLADEVVGEDESSVTEAAVTALRDLAEQGAGDGGLADTGLEAWVTGPAGFVADLTNAFGAIDTVLLLVALGAVLVILALVYRSPFLPFVVIFTSVLALSLAGLAVYQLAANDVLTLNGQSQGILSILVVGASVDYSLLVVARYREELGRLSSPYTALRRAVRASIEPITASAVTVIAGLLCLLLSDLSSNRSLGPVAAIGIVAAFLSALTLLPALLLVGGKRARWVFWPRVPRVPAAAEDATASDAGTSAAHDAEPDATHGAAPRHGRHSAAGATDDAPAVAGHGLWSRVAGFVGRHDRPVWIVTAIVLLAGAAFVPTLNAGGTGDSDVFLTQVDSVDGEEVLTAHFEGVSTQPATVIVPEGDLDAVVEAAEGTAGVSEAAPVTDQPAPAPGAPAGGDPLVVDGLVRVDVVTDAPSDSQEATEAVSALRDSLQDVSPDALVGGAAAERLDTQLAGQRDLQVIVPVVLVVILLILMLLLRSVLAAALLMGANVLSFGFALGVSAILFNTVFDFPATDPSVPLYAFAFLVALGVDYSIFLMTRVREESLKIGTRPGVLRGLAVTGSVITSAGVVLAATFAALGVIPLAFLAQLAFIVSFGVLIDTLVVRSLLVPALVHDIGDRTWWPSRLARRPVAVEQGSGTMGTNANANANANA
AK018_064161041iolW_2COG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolWATGATCACGCCACGCGTCGCCATCATCGGGTACGGGGGAGCCGGCCGGGGGATCCACGCCGCCCTCGCACGGGAGGCCGGCCTCCCCGTCACCGGTGTCGTCACCCGCGACCAGGGTCGCCGCACCCAGGCCGCGGGCGACTGGCCCGGCGCCCGGCTGTACGACGACCTGGAGGCCCTGCTGGCCGCGCGCTCGACCTACGACGTCGTCGTGGTCGCCAGCCCCACCCAGCTCCACGCCGCCCAGGCCGCGGCGCTGGCCCGGGCGGGCGTCCCGTTCGTCCTGGACAAGCCGATCGGCGTCGACGCCCACGAGGCGCGCGCCGTGGTCGCCGAGGCGGACGCGACCGGCACCCCCTTCACGGTGTTCCAGAACCGGCGCTGGGACCCCGAGCAGCTCACGCTCTCCGCGCTCCTGGGGCGCGGGGAGCTGGGCGACGTGCACACCTTCGAACGGCACTGGGAGCGCTGGCGGCCGGTGCCGCGCAAGCGGTGGAAGGAGAACGACCCCGACGGCGGCGGTCTCCTGCTCGACCTCGGGCCGCACCTCGTGGACTCCGCCACCCGGCTGTTCGGCCGGGTGACCGGTGTGTGGGCCCAGCTGCGGGCCCTGACCACGCCGACCGAGGACGACGTCTTCCTCGTCCTGACGCACGAGGCCGGCGGCGGGCTGGCCGCCAGCCCGCACGCCGTCACCTCGCGGCTGTGGGCCGGCTCCGTCGTCGCCGCGCCCGGGCCGCGCACCCGTGTGCTCGGCACCGACGGCGCCTACCTCGTGACCACCTTCGAGCAGGACGCCTCGCCGCTCGAGCGGTTCGACGACGACGCCCCGGCCGGCACCCACGGGTGGTTCACCCGCGGGCGCGAGCGGCGGCCCGTCCCCGCCGCCGCGGGCGGCCACGCCGACTTCTACCGGGCCCTCGGCCCCTGGCTGGACGGTGAGGAGCCCGCGCCCGTCGACCCGGCCGACGCCGTGCGTACCGCCGAGGTCCTCGACGCGGCGCGCGTGGCCGCCCGCCAGGGACGCCGCGTCGAGCTCTGAMITPRVAIIGYGGAGRGIHAALAREAGLPVTGVVTRDQGRRTQAAGDWPGARLYDDLEALLAARSTYDVVVVASPTQLHAAQAAALARAGVPFVLDKPIGVDAHEARAVVAEADATGTPFTVFQNRRWDPEQLTLSALLGRGELGDVHTFERHWERWRPVPRKRWKENDPDGGGLLLDLGPHLVDSATRLFGRVTGVWAQLRALTTPTEDDVFLVLTHEAGGGLAASPHAVTSRLWAGSVVAAPGPRTRVLGTDGAYLVTTFEQDASPLERFDDDAPAGTHGWFTRGRERRPVPAAAGGHADFYRALGPWLDGEEPAPVDPADAVRTAEVLDAARVAARQGRRVELPGPT0018530_219DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0018530-iolW-K16044NANA
AK018_064171350hypothetical proteinGTGCAGACCGACACCGTGCTCACCGTCCCCTCCGACGCGACCGCCCGCGACGCCCTCCTGGACCGCCTGCGTCGGCTGGCCACGATCGACGCCGCCCGGGTGGAACCCGTCGGAGCCGCCGTCGCACGCCCGGACGGAGCGCTCGTCGTGCCGCGCGGCTCGACGTCCGCGACGGACCTCGCCACCGTGCTCGCCGTGCGCGGGCGCTGCGACGGGCCCGAGGCGGCGGGACTCGCCGCCGACCTCGCCCAGGGGCTCGCCACGCTGCACAGCGCGGGCGTCGCGCACGGCGGGCTCGACGTCGGCGACGTCCTCGTCGACCTCACCGGGCGGGCCCTGCTGCGGCCGCGCCTGACTCCGCCGGCGGACCCCGCGCACGCCACGGAGAGCGCGGACGTGCACGCCCTGGCCCGACTCGTGGAGACCCTGCGCGGCCACGACCCCTCGGACGCCGCGACCGCGCTGCGCGCCGTGCTGGCCCCGGCGCTCGCGGACGACCCGCGGGTGCGGCCCGAGGCGGGCACGCTCGCCGCCCGCGTCCACGAGGCCGCGAGCCCGGAACCGGTCCGGCTGCCCGAGCCGGCGGCACTTGCCGCCGCGGCGCTGGGGGCGCACCGGCAACGGCCCGGCGGCAAGGACGACGTGGTGGGCTCGGAGCCACGGCACCGGCGCGCTCGACGAGCAGCGGGTGCGGTCGATCCGCCCGGGGCCGGCGGCCGTGTCCCGTCGCGGGCCGAGCGGCGGGCCCGGCGGACGGCGGCCCGGCGTCCGGTCTCGGCGTGGCGGCCGGTGCTGGCGGGAGCCGGCGTCCTGGCCTCCATGGGCGTGCTGGTGGCCGGGGGACTGGCGGTGACGGCCGGGCCGGGGCCCACGGGCCACCCGTCGACCCCGGTGGCGGCGTCCGCGCCCGCCACGGCGTCCGCGGCAGGTCCCGGGCCCGCCGCAGGTCCGGGCGCCGCGGACGGTGCGGCGACGACCGACCGCCACGACCCGGCCGGCGCCGCGGCCGAGCTGACGCGGCGCCGTGCCGGCCTGCTGACGGGCGAGCACGCCGTGGCGGAGGTGGCGCTGCCCGGCTCGGACGCCCACGGCGCGGACACGTCGCTGGTCGAGCGTGCGACGGCGTCGGGGACCCGGCTCGTCGGGACCGAGGTGACGGTGCTGTCGGCGCGGCTGGCCGCCGAGCCGTCGACCGGCACCGCCGAGGTCGTGGTGCGCTACGTCGTCGAGGAGCACACCCAGGTCGACGGTGACGGCGCGGCCACCACCGTGCCGGCCGGCGCGCCCCGCACCGACACGGTCCGGCTCGCCTGGACCGCCGACGGGTGGCGCGTCACCGACGTCGTGTGAMQTDTVLTVPSDATARDALLDRLRRLATIDAARVEPVGAAVARPDGALVVPRGSTSATDLATVLAVRGRCDGPEAAGLAADLAQGLATLHSAGVAHGGLDVGDVLVDLTGRALLRPRLTPPADPAHATESADVHALARLVETLRGHDPSDAATALRAVLAPALADDPRVRPEAGTLAARVHEAASPEPVRLPEPAALAAAALGAHRQRPGGKDDVVGSEPRHRRARRAAGAVDPPGAGGRVPSRAERRARRTAARRPVSAWRPVLAGAGVLASMGVLVAGGLAVTAGPGPTGHPSTPVAASAPATASAAGPGPAAGPGAADGAATTDRHDPAGAAAELTRRRAGLLTGEHAVAEVALPGSDAHGADTSLVERATASGTRLVGTEVTVLSARLAAEPSTGTAEVVVRYVVEEHTQVDGDGAATTVPAGAPRTDTVRLAWTADGWRVTDVVNANANANANA
AK018_064181752hypothetical proteinATGTCTGAGAACGTGCAGCTGCCGGCACTCGGCGAGTCCGTCACCGAAGGTACCGTCACGCGGTGGCTGAAGTCCGTCGGTGACACCGTCGAGGTCGACGAGCCCTTGCTCGAGGTCTCCACCGACAAGGTCGACACCGAGGTCCCCTCCCCCGTCGCCGGCGTCGTCGAGCAGATCCTGGCCGAGGAGGACGAGACCGTCGAGGTCGGCGCCGTGCTCGCCGTCATCGGCGACGGTTCCGGCTCCGGCTCCTCCGACGGCGGCTCGCAGGAGGCGCCCGCCGAGGAGTCCGCCGCCGAGTCCGCCCCCGCCGAGGAGTCTCCCGCGGAGTCCGCCCCGGCCGCCGAGGAGTCGGCGCCGCAGCCGTCCTCCGGCGGCGGTGACGGCACCGAGGTCACCCTGCCCGCGCTGGGCGAGTCGGTCACCGAGGGCACCGTGACGCGGTGGCTCAAGGAGGTCGGCGACAGCATCGAGGTCGACGAGCCCCTGCTCGAGGTCTCCACCGACAAGGTCGACACCGAGGTCCCCTCCCCCGTGGCGGGCACGGTGCAGGAGATCAAGGTCGCCGAGGACGAGACCGTCGAGGTCGGCGCCGTGCTCGCGATCGTCGGTTCGGGCGCCGCCCCCGCCGCGGAGAAGCCGGCCGAGAAGAGCGAGCCCGCGCCCGCTCCCGCGGCCGAGAAGCCCGCCGAGAAGTCCGAGCCGGCCCCCGAGCCGAAGGCCGAGAAGCCCGCCGAGTCGCCGGCGCCGGCCGAGTCGCCCGCCCCGGCGAAGTCCCCGGAGCCGGCTCCCGCGGCGGAGAAGCCCGCGGGCGGCCGCAGCTCGTACCTGACGCCGCTGGTGCGCAAGCTCGCCGCGGAGAAGGGCGTCGACGTCTCGACCGTCGAGGGCACCGGTGTCGGCGGACGCGTCCGCAAGGAGGACGTCCTGGCCGCGGCCGAGAAGGCCGCCGCTCCGGCCGCCGAGCCCGCGCCCGCGTCCGCACCGTCGTCGGCCCCGAAGAAGCCGACCGTCCCCGAGGTCTCGCCGCTGCGCGGCACCACGGAGAAGATGTCGCGCCTGCGCAAGGTCGTGGCCGAGCGCATGCACGAGGCGCTGCACACGCAGGCCCAGCTCACCACCGCGGTCGAGGTCGACGTCACCAAGGTCTCGAAGCTGCGCCAGCGGGCGAAGGCCGACTTCACGGCGCGCGAGGGCGCGAACCTCACGTTCCTGCCCTTCTACACCCAGGCCGCCGTCGAGGCGCTCAAGGCCTTCCCGAAGGTCAACGCGTCGATCGACACCGACAAGGGCGAGATCACCTACCACTCCTCGGAGAACGTCGGCATCGCCGTGGACACCGAGCGTGGCCTCGTCGTGCCGGTGATCAAGAACGCCGGTGACCTGAACCTGGCCGGCATCGCCCGTCAGATCGGTGACCTCGCGACCCGCACCCGCGACAACAAGATCGGGCCGGACGACCTCAGCGGCGCCACCTTCACCATCACGAACACCGGCTCCGGCGGTGCCGTGTGGGACACCCCGATCGTCCCGGTGGGCCAGGTCGCGATCCTGGGCACGGGCACCATCACGAAGAAGCCCGTGGTCGTCACCACCCCGGACGGCGAGGAGACCATCGCGATCCGTCAGATGGCGATGCTGTTCCTGTCCTACGACCACCGCCTGGTCGACGGCGCCGACGCCGCCCGCTTCCTCACCGCGGTGAAGAACCGCATCGAGGAGGGCGCGTTCGAGTCCGAGGTCGGTCTCTGAMSENVQLPALGESVTEGTVTRWLKSVGDTVEVDEPLLEVSTDKVDTEVPSPVAGVVEQILAEEDETVEVGAVLAVIGDGSGSGSSDGGSQEAPAEESAAESAPAEESPAESAPAAEESAPQPSSGGGDGTEVTLPALGESVTEGTVTRWLKEVGDSIEVDEPLLEVSTDKVDTEVPSPVAGTVQEIKVAEDETVEVGAVLAIVGSGAAPAAEKPAEKSEPAPAPAAEKPAEKSEPAPEPKAEKPAESPAPAESPAPAKSPEPAPAAEKPAGGRSSYLTPLVRKLAAEKGVDVSTVEGTGVGGRVRKEDVLAAAEKAAAPAAEPAPASAPSSAPKKPTVPEVSPLRGTTEKMSRLRKVVAERMHEALHTQAQLTTAVEVDVTKVSKLRQRAKADFTAREGANLTFLPFYTQAAVEALKAFPKVNASIDTDKGEITYHSSENVGIAVDTERGLVVPVIKNAGDLNLAGIARQIGDLATRTRDNKIGPDDLSGATFTITNTGSGGAVWDTPIVPVGQVAILGTGTITKKPVVVTTPDGEETIAIRQMAMLFLSYDHRLVDGADAARFLTAVKNRIEEGAFESEVGLPGPT0001390_1416DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001390-aceF|pdhC-K00627NANA
AK018_06419354hypothetical proteinATGTCGTTGAGGTCTGCGCTGGACCGTCTCCTCGGACGGTCCGCACCGTCGTCGCCCGCCGCCGCGCCCGCCGGGGGTGGTCGAGCCGCCGCCGTCGGCCACCTCGAGGAGTTCGCCCGCACGCGCGTCGGCGTCGAGGCCTACGTCGAGCCGCCGAACGCGCAGACGCCGACCACCGTGCTGCTCGTGGCGACCACGGGGGAGTGGACACGGCGGCGCGTGCCGGACGAGCGCACCGGTTTCGAGGTCGCCCGCTCGCTCGGTGTGCCGGTCTACAACGTCCGCTTCACCGGGTACCCGCAGCGGATGCGCGACTGGAACTCCGCCCAGCGCCAGGCGCGCAAGCGCCGCTGAMSLRSALDRLLGRSAPSSPAAAPAGGGRAAAVGHLEEFARTRVGVEAYVEPPNAQTPTTVLLVATTGEWTRRRVPDERTGFEVARSLGVPVYNVRFTGYPQRMRDWNSAQRQARKRRNANANANANA
AK018_064201509pepA_2COG0260putative cytosol aminopeptidaseGTGCGCGTGGCTGACCTCACTCTGACCGGTAAGAACCCGACCTCCCTGACCGCTGACGCCCTCGTGGTGGGCACCTGCTCGACCTCCGACGGCGTGGCCGTCGTGGCCGACCAGCTCCCCGCCGCGCTGGTCGAGCAGCTCGAGACGCTCGCACCGCGACTCGGTGTGACCGGCGCCCGGCAGGAGGTGCGCACGGTGCCGGCCGGCAAGGACGTCTCGGCCGACGTGCTGGTCCTGACCGGGCTGGGCGAGCGGGACGCGGACGGCACCTTCGACCGCGAGACGCTCCGCGGCGCCGCCGGTGCGGCCGTCCGCTCGCTGGCCGGTTCGCGGTCGGCGGTCGTGGCCCTGCCTGCGGTCGACGAGGAGGAGCTCGGCGCCGTCGTCGAGGGCGCCCTGCTCGGCGCGTACGCCTACACGGCCTACCGCGAGGAGAAGGCCGCGACCAGGCTCGCCCCGGTGGAGACCCTGCAGGTCGCCACCCCGTTCGCCCGCTCGGCCCGCGCCAAGGCGGCCGTGGCCCGCGCCGAGGTGCTCGCCGCGGCCGTGCACGGCACGCGCGACCTGGTGAACACCCCCGCCAACGACCTCTACCCCGCCTCCTTCGTCGACGCGGTGAAGTCCGCCGTCAAGGAGCTCGGCGTCAAGGGCGTCAAGGTGTCGGTCCTCGACGACAAGCAGCTCGCCACCGGCGGGTACGGCGGCCTGACCGGCGTCGGCCGGGGCTCGGCCCGCGGCCCTCGCATGGTCAAGCTCTCCTACTCCCCGCCCAAGCCGACCGACAAGGTCGCGCTGGTGGGCAAGGGCATCACCTTCGACACCGGCGGCATCTCCATCAAGCCGGCGGCCAACATGGGTGCGATGAAGTCCGACATGGCCGGCGCCGCCACGGTGCTGCACGCCGTGCTCGCCGCGGCCCGCCTGGGTCTGCCGGTGGCCGTGACCGGCTACCTGTGCCTGGCCGAGAACATGCCCGGCAGCAACGCCACCCGTCCCGGCGACGTCCTGACCATCCGCGGCGGCAAGACGGTCGAGGTGCTCAACACCGACGCCGAGGGCCGCCTGGTCATGGCCGACGGCCTCGTCTCGGCGGTCGAGGACGGCCACGACGTCGTCCTCGACATCGCCACGCTGACCGGCGCGCAGATGGTCGCGCTCGGCAAGCGTGTCGGCGGCGTCATGGGCACCGACGACGTGCGCGACGAGGTCAAGGTCGCCGCGGACACCGTGGGCGAGCTGTTCTGGCCGATGCCGCTGCCCGAGGAGCTCGGCGACGGGCTGAAGTCCAAGACCGCCGACATCGCCAACGTCGGCGAGCGCTGGGGCGGCATGCTCTCGGCGGGGATCTTCCTGCAGTCCTTCGTCGGCGACACCCCGTGGGCCCACCTGGACATCGCCGGCCCGTCGTTCAACGACGCCGGCGCGTTCGGCTACACCCCGGTCGGCGGCACCGGCGTCGGCCTGCGCACGCTGGTCGGCTTCCTCGAGGGCCGCGGCACCACCGACTGAMRVADLTLTGKNPTSLTADALVVGTCSTSDGVAVVADQLPAALVEQLETLAPRLGVTGARQEVRTVPAGKDVSADVLVLTGLGERDADGTFDRETLRGAAGAAVRSLAGSRSAVVALPAVDEEELGAVVEGALLGAYAYTAYREEKAATRLAPVETLQVATPFARSARAKAAVARAEVLAAAVHGTRDLVNTPANDLYPASFVDAVKSAVKELGVKGVKVSVLDDKQLATGGYGGLTGVGRGSARGPRMVKLSYSPPKPTDKVALVGKGITFDTGGISIKPAANMGAMKSDMAGAATVLHAVLAAARLGLPVAVTGYLCLAENMPGSNATRPGDVLTIRGGKTVEVLNTDAEGRLVMADGLVSAVEDGHDVVLDIATLTGAQMVALGKRVGGVMGTDDVRDEVKVAADTVGELFWPMPLPEELGDGLKSKTADIANVGERWGGMLSAGIFLQSFVGDTPWAHLDIAGPSFNDAGAFGYTPVGGTGVGLRTLVGFLEGRGTTDNANANANANA
AK018_06422450hypothetical proteinGTGAGCGACGAGCGCGCCCCGGCGACCGGCCGCGGCTTCGGCCGGTTGCTGGTCACCGTCTACGGCATCCTGGCGTTCGCCGCGCTGGGCCGGTCGAGCTACCAGGTGCTGACCAAGCTCGCCGACGCGCCCGCGGCCTACCTGCTGTCGCTGCTGGCCGCCGTCGTCTACGTGGTGGCCACGGTCGCCCTCGCCCTCGGCGCGCGCCCGCGCTGGCGGCGGGCCGCCTGGGCCGCCGTCGTCGTCGAGGCGGTCGGCGTGCTGACGGTGGGCACCCTCTCGCTGACGCACCCCGAGTACTTCGCCGAGCCGACCGTCTGGTCCGGCTTCGGCCAGGGGTACGGGTACGTCCCGCTCGTCCTGCCGTTCGTGGGGTTGTGGTGGCTCTGGCACACTCGCCCCGGACGCAACGCCCCGACGTCCGCGCCGGCCCGACCGACGGAGGCCTGAMSDERAPATGRGFGRLLVTVYGILAFAALGRSSYQVLTKLADAPAAYLLSLLAAVVYVVATVALALGARPRWRRAAWAAVVVEAVGVLTVGTLSLTHPEYFAEPTVWSGFGQGYGYVPLVLPFVGLWWLWHTRPGRNAPTSAPARPTEANANANANANA
AK018_064231080pyrD_2COG0167Dihydroorotate dehydrogenase (quinone)ATGACGCCCTACACCCTGCTGTTCCAGACCGTCTTCCGGCGGATGGACCCCGAGCGTGCGCACGAGCTCGCGTTCCGCGCCATCGAGACCGCCGGCCGGGTGCCGTTGCTGCGCGACGTCGTCCAGGGTGCCCTCGCCCCCTACCTCGGCCGCGGCGCCGGCGGACCCGGCAGCGTCGAGGTGCTCGGCCGGACGGTCCCGGCGCCCTTCGGGCTCGCCGGCGGCTTCGACAAGAACGCCCGCGCGGTGCGCGGGCTGACGATGCTCGGCTTCGGGTTCGTCGAGGTCGGCACGGTCACGCCGCGCCCGCAGCCCGGCAACGACGCACCCCGGATGTGGCGCGAGCTCGACCTGCACGGTGTGCGCAACCGGATGGGCTTCAACAACGACGGCGCCGTCGAGATGGCCGAGCGGCTGCGGCGGCTGCGGTCCACGCCCGCCGGTCGTGCCGCCGTCGTCGGCGTCAACATCGGCAAGAACAAGACCACGTCGGCCGAGCACGCCGCCGACGACTACGCCCGGTGCGCCCGGCTGCTGGCGGTGGAGGCCGACTACCTCGTGGTCAACGTCTCCTCGCCCAACACCCCCGGCCTGCGGGACCTGCAGACCACCGCCGAGCTGCGGCCGATCCTCGTCGCGGCCCGGACCGCGGCCGACGAGGCCACGCGGGCCGCGGGGGTGCGGCGCACGCCGCTGCTGGTGAAGATCGCCCCGGACCTGGCCGACGAGGACGTCGACGCGGCCGCGGACCTCGTGACCGAGCTGGGCCTCGACGGCGTCGTGGCCGTCAACACCACGCTCGGCCACGACCGCGGACCCGGCGGGCTGTCCGGGCCGCTGCTGCTGCCCCGGGGCCTGGAGGTGGTGCGGCGCCTGCGCGACCGGCTCGGACCCGATCCGGTGGTGATCGGCGTCGGCGGTGTCACCGGCGCCGACGACGTGCGTGCGTACCTGCGCGCCGGGGCCGACCTGGTCCAGGGCTACACGTCCTTCGTCTACCGCGGCCCGTTCTGGCCGTCCGCGATCAACCGCGCCCTGACCAGGTCCCAGGGCTCGTCGAGCGCCGGGAGGGTCGCATGAMTPYTLLFQTVFRRMDPERAHELAFRAIETAGRVPLLRDVVQGALAPYLGRGAGGPGSVEVLGRTVPAPFGLAGGFDKNARAVRGLTMLGFGFVEVGTVTPRPQPGNDAPRMWRELDLHGVRNRMGFNNDGAVEMAERLRRLRSTPAGRAAVVGVNIGKNKTTSAEHAADDYARCARLLAVEADYLVVNVSSPNTPGLRDLQTTAELRPILVAARTAADEATRAAGVRRTPLLVKIAPDLADEDVDAAADLVTELGLDGVVAVNTTLGHDRGPGGLSGPLLLPRGLEVVRRLRDRLGPDPVVIGVGGVTGADDVRAYLRAGADLVQGYTSFVYRGPFWPSAINRALTRSQGSSSAGRVAPGPT0021190_1444DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021190-pyrD-K00254NANA
AK018_06424210hypothetical proteinATGATCCGGCCGCGCTGGGAGTGGGCCCTCGACGACGACGCCGGCACGCCGCTGGCCGCGGCCCTGAGCCCCGCCTTCACCACCCAGTTCGACGCCGAGGAGTGGCTCGGCGAGCACTGGCGGGCCCTGGCCGCCGCCGGTGCCGCCCAGGCGCGCCTGCTGCACGACGGCACCCAGGCCACTCCCACGGTGGAGCTGCGCAAGCCGTGAMIRPRWEWALDDDAGTPLAAALSPAFTTQFDAEEWLGEHWRALAAAGAAQARLLHDGTQATPTVELRKPNANANANANA
AK018_064251467norG_2COG1167HTH-type transcriptional regulator NorGGTGACCACCACCACATCCGGTCCACCCGCCGCTGTCCGATCCGTCTCCCCGCAGGCCACGGTGCGGCTGCTCGACGCGTGGCACACGACCGGGCCGGCCTACGCGGCGCTGGCCGACGCGCTGCGCTCCGCCGTCCTCGCCGGCTCCCTGCCCGTCCTGACCCGGCTGCCGAGCGAACGCGAGCTCGCCCGGGCGCTGGGCGTCTCGCGGGCCACGACGTCGGCCGCCTACGCCCGGCTGCGGGACCTCGGCTTCGCCACCAGCCGCGTGGGCTCCGGGACGGTCGCCGCGCTGCCGCGGGACGCCTCCCGGCACGAGGCCGCCACCCCGCCCCCGGCCGGCGACGCTCCCGCCAGCGACACCACGTCGGCGGACCCGACCGCCTCCGCCGCGGACGACACCATCGACATGTCCCAGGCGACCCCGTCCGCGTCCCGGGCCCTGCACGGCGCCTACACCCGCGCGCTCGAGGCGCTGCCCGCCTACCTGGACGGCGGCGGGTACGCCCACCTCGGTGTCGAGGCGCTGCGCGCCGCCGTGGCCGCGCGGTACACCGCCCGCGGCGTGCCGACCGACCCCGACCAGATCCTCGTCACCACGGGCGCGCAGCAGGCGATCGCGCTGCTGACGACCACGCTGGTGGCGCGCACGGAGCACGTCGTGGTCGAGTCCCCCACCTACGTGCATGCTCTGGAGGCGATGCGCCGCACCGGCGCCCGCGTCGTCGGCGTGCCCGTCGGCGACGTCGAGGCGATCGAGTCGGTGGTCCGGCGCACCGGCGCGCGGTTCGTCTACCTCGTGCCGGACTTCCACAACCCGACCGGACGCTCCCTGTCCGCCGACGAGCGCCGTGCCCTGGCCGACCTCGTCGCCCGCCACGACGTGACCGTCGTCGGCGACGAGACGCTGACCGACGTCGACCTCGTCGGTGCCGGGGTGCCCGCACCCGTGGTCGGCGACGGGACCGACCCGCGGCTCGTCGCGGTCGGCTCCGCGTCGAAGTCGTTCTGGGGCGGGCTGCGCGTGGGCTGGGTGCGCGCCGACCCGCAGCTCGTCCGTCGGCTCGCGCACACCCGCCAGGTCCTGGACGTCGCCACCCCGGTGCTCGAACAGCTCGCGGTGACGGACCTGCTCGAGCACCGTGCCGCGATCCTGCCGGACCGCCTCGCGGCCCTGCGGGCCCAGCGGGACGACCTGGTCGACCTGCTGCACGAGCGGCTCCCGGCCTGGGACGTGCCCCGCCCGGACGGCGGGCTGTGCCTGTGGGTCGGCGTGGGCCGACCGGTCGGGCGGGCGCTGGCCGCTGCGGCCGTCACCGAGGGCCTGCGCGTCTCCCCGGGTCCGCTGTTCACCCCGGACGGCTCGGGGCAGGACCGGGTGCGCCTGACCTACACCAGGCCGGCCGGGCAGTACGAGCCGGTCGTCGACCGGCTCCGGCGAGCGTGGGAGCGGGTCGGCGGGCGATGAMTTTTSGPPAAVRSVSPQATVRLLDAWHTTGPAYAALADALRSAVLAGSLPVLTRLPSERELARALGVSRATTSAAYARLRDLGFATSRVGSGTVAALPRDASRHEAATPPPAGDAPASDTTSADPTASAADDTIDMSQATPSASRALHGAYTRALEALPAYLDGGGYAHLGVEALRAAVAARYTARGVPTDPDQILVTTGAQQAIALLTTTLVARTEHVVVESPTYVHALEAMRRTGARVVGVPVGDVEAIESVVRRTGARFVYLVPDFHNPTGRSLSADERRALADLVARHDVTVVGDETLTDVDLVGAGVPAPVVGDGTDPRLVAVGSASKSFWGGLRVGWVRADPQLVRRLAHTRQVLDVATPVLEQLAVTDLLEHRAAILPDRLAALRAQRDDLVDLLHERLPAWDVPRPDGGLCLWVGVGRPVGRALAAAAVTEGLRVSPGPLFTPDGSGQDRVRLTYTRPAGQYEPVVDRLRRAWERVGGRNANANANANA
AK018_06426819hypothetical proteinATGACCGCAGACGTGCACCACCCGACCCGCCTCGACGTCCGGACCGGCATGCGCCCGGTGCGTCGCGCGGCCCAGCTCCTGCTGGGTCTGACGGCCTACACCGTCTCGATGGCCATGATGCTGCAGGCCGGCCAGGGCGGGATGCCCTGGGACGTGCTGCACCAGGGCCTCGTGCGCACCACCGGGTGGTCCTTCGGCGTCGCCGTCGCGCTGACGTCCCTCGCCGTGCTGGCGCTGTGGGTCCCGCTGCGGCAGCGCCCCGGGGTCGGGACGGTCGCGAACGTCGTGGTGATCTCGGTGCTGATCGGCCCCTGCCTGGCACTGGTCGAGCGGTTCGTGCCCGCCCCCGGCGTCGTCGCGCAGGTGCTGCTGGGCCTCGGCGGCATCGTGCTCAACGGCCTCGCCACCGCCGCCTACGTCGGCGTGCGGCTCGGGCCGGGGCCCCGGGACGGGCTCATGACCGGCCTCGTCGCGCGCACGGGCTGGTCCGTGCGCGGGGTCAAGACCGGCATCGAGATCAGCGTCGTGGCCGTGGGCTGGGTGCTCGGCGGCACCTTCGGCTGGATGACCGTCGCCTACGCGCTCGGGGTGGGGCCCGTCGTGCAGGCGGCCGCGCGATGGCGGTGGCTCGTGCCCGACGGGCTGGCGGCTCCCGCGCGGCCGACGCCGGCCCGGCGGCCGACGGACCCCGGGGCCCGCGGGGCCTCGGCCGGTGCCGGGGACGGCGAGACCGAGCGCCGGCACGCCGAGCGGCGCCGTCGTGCCCGGCAGATCGCCCGGGCCCTGGAGACGTTCGGCGACCAGGACCGCACGCTCTGAMTADVHHPTRLDVRTGMRPVRRAAQLLLGLTAYTVSMAMMLQAGQGGMPWDVLHQGLVRTTGWSFGVAVALTSLAVLALWVPLRQRPGVGTVANVVVISVLIGPCLALVERFVPAPGVVAQVLLGLGGIVLNGLATAAYVGVRLGPGPRDGLMTGLVARTGWSVRGVKTGIEISVVAVGWVLGGTFGWMTVAYALGVGPVVQAAARWRWLVPDGLAAPARPTPARRPTDPGARGASAGAGDGETERRHAERRRRARQIARALETFGDQDRTLNANANANANA
AK018_064271014gpr_5COG0667L-glyceraldehyde 3-phosphate reductaseATGGTCAACTACCGGTACCTCGGCAACAGTGGTCTCAAGATCTCCGAGATCACCTACGGCAACTGGCTCACCCACGGCTCCCAGGTCGAGAACGACGTCGCCACGCAGTGCGTGCGCGCGGCGCTCGACGCGGGCATCACGTCCTTCGACACCGCGGACGTCTACGCGAACACGAAGGCGGAGCAGGTCCTCGGCGACGCTCTGCAGGGCGAGCGCCGCGAGTCGCTGGAGATCTTCACCAAGGTCTACTGGCCCACGGGCCCGGGAGGCCCCAACGACACCGGTCTGTCGCGCAAGCACGTCATGGAGTCGATCAACGGCTCGCTGCGTCGCCTCGGCACCGACTACGTCGACCTGTACCAGGCGCACCGGTACGACACCGAGACGCCGCTCGAGGAGACGATGCAGGCGTTCGCCGACATCGTGCGCCAGGGCAAGGCGCTCTACATCGGCGTCTCGGAGTGGTCGGCCGACCAGATCCGCGCGGGCGCCGCGCTGGCGAAGGACCTCGGCTTCCAGCTCATCAGCTCCCAGCCGCAGTACTCGATGCTGTGGCGGGTCATCGAGGACGAGGTCGTCCCGGCCTCCCGAGAGAACGGCCTGTCCCAGATCGTCTGGTCCCCCGTCGCCCAGGGCGTGCTGACCGGCAAGTACGTGCCCGGCCGGCCGCTGCCGTCCGGGTCCCGCGCCACGGACGACAAGGGCGGGGCCAAGATGATCCAGCGGTTCATGAACGACGACGTCCTGGGCCGCGTGCAGCAGCTCAAGCCGGTCGCGGACGAGCTCGGCCTGACGATGGCCCAGCTCGCCGTGGCGTGGGTGCTGCAGAACGACAACGTCGCGGCAGCGATCGTGGGCGCGTCGCGTCCGGAGCAGGTGGCCGAGAACGTCAAGGCCTCCGGCGTCGAGATCCCCGCGGCGCTCATGTCGCAGATCGACGAGGCCCTCGGCGACGTCGTCGAGCGCGACCCCGCCAAGACCCTCGAGGGGGCACCGCAGACGCGCGTCGTCTGAMVNYRYLGNSGLKISEITYGNWLTHGSQVENDVATQCVRAALDAGITSFDTADVYANTKAEQVLGDALQGERRESLEIFTKVYWPTGPGGPNDTGLSRKHVMESINGSLRRLGTDYVDLYQAHRYDTETPLEETMQAFADIVRQGKALYIGVSEWSADQIRAGAALAKDLGFQLISSQPQYSMLWRVIEDEVVPASRENGLSQIVWSPVAQGVLTGKYVPGRPLPSGSRATDDKGGAKMIQRFMNDDVLGRVQQLKPVADELGLTMAQLAVAWVLQNDNVAAAIVGASRPEQVAENVKASGVEIPAALMSQIDEALGDVVERDPAKTLEGAPQTRVVPGPT0010570_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSTUMORICIDAL_COMPOUNDSTUMORICIDAL-TYPE_II_POLYKETIDE-MITHRAMYCIN_METABOLISM,PGPT0010570-mtmW-K15967NANA
AK018_06428681putative proteinGTGTTCTCCCGCAAGCGTGATCTCGCCGATTCTCCCGCGACGTCCCCCGCAGCGGGGCAGTCCGCCTCGTCCGCCGACGTCGCGGCGACGTCCTCCGCCGCCGACTCCACCGACACGCCCTCGTCCGGGGCGCCGTCGAAGGGCCGCCCGACGCCGAAGCGCAGCGAGTCCCAGGCGAAGAACAAGCGCCCGCTGGTCCCGAACGACCGCAAGGCCGCCCGCAAGGCGTCCAAGGAGAAGATGCGCGCGGAGCGCAACCGCGAGTACCAGGCGATGCAGACCGGTGACGAGCGGTTCATGCCGGCGCGCGACAAGGGCCCCGTCCGCCGCTACGTGCGCGACTACGTCGACGCCCGCTGGAACGTCGGCGAGTTCTTCCTGCCGGTGGCGTTCGTCTTCATCTTCATGAACCTGATCTTCCTGCAGAACCCGACGATGGCGACGCTGGTGCTGCTCGCGCTGTACGCGGTGGTGTTCATCACGCTGATCGACGTCGTCGTCATGTGGCAGCGCCTCAAGCGCCGGCTGCGCGACAAGTTCGGCACGCTCGGCACGGACGGGAAGAAGGAGTACTACGTCCCGCGCGGCACGATGATGTACGCGGCGATGCGTGCGCTGCAGATCCGTCGGTCCCGGCTGCCGAAGCCGATGCACAAGAAGCACGGTCACTGGCCCGAGTGAMFSRKRDLADSPATSPAAGQSASSADVAATSSAADSTDTPSSGAPSKGRPTPKRSESQAKNKRPLVPNDRKAARKASKEKMRAERNREYQAMQTGDERFMPARDKGPVRRYVRDYVDARWNVGEFFLPVAFVFIFMNLIFLQNPTMATLVLLALYAVVFITLIDVVVMWQRLKRRLRDKFGTLGTDGKKEYYVPRGTMMYAAMRALQIRRSRLPKPMHKKHGHWPENANANANANA
AK018_064291389dapE_8Succinyl-diaminopimelate desuccinylaseGTGGGCGCCGTGACTCACACCGATGCGGACGTCGCCGCCCTGCGCGCGCACGTCGACCAGCTGTTCCCCGCCGTCCAGGCCGACCTCGAGTCCCTGGTCCGCATCCCGAGCGTCTCGGCGAGCGCCTTCGACCCGTCGCACGTCGTGGCCAGCGCCGAGGCCGTGGCCGCGCTGCTGCGCGACGTCGGGCTGCCCGAGGTCCGGATCCTGCGCTCCGAGCGGCCCGACGGCACCCCCGGCGCGCCCGCCGTCGTCGCCCGGCGACCCGCTCCGGCCGGGGCACCGACCGTGCTGCTCTACGCCCACCACGACGTCCAGCCGCCCGGGGACGCCGCCACCTGGGACACCGAGCCCTTCGAACCCGTCCAGCGCGGCGAGCGGCTCTTCGGACGCGGCGCGGCCGACGACAAGGCCGGGGTCATGGCGCACGTCGGTGCGCTGCGGGCCCTGGCCGCGCTGGGCGAGGAGCCCGGCGTCGGCGTGACCGTGTTCGTCGAGGGCGAGGAGGAGGCCGGCTCGCCCAGCTTCTCGCGCTTCCTCGCCGACCACCACGCGCTGCTCTCCGCCGACGTCATCGTGGTGGCCGACTCCACCAACTGGAAGGTCGGCGTCCCGGCGCTCACGACGTCGCTGCGCGGCCTCGTCGACGGCGTGGTCGGCGTCGAGGTGCTCGACCACGCCGTGCACTCCGGCATGTTCGGCGGGCCCGTGCTGGACGCCAACCTGCTGCTGGCGCGACTGCTCACCACGCTCCACGACGACGCGGGCACCGTGGCCGTCGACGGCCTGACCAGCGCCGGCGAGCCGGAGGTGGACTACGCGGAGGCCGACTTCCGCGCCGACTCCTCGGTGCTCGACGGCGTGCGGCTGGCCGGCGAGGGCACGATCGCGGGCCGCCTGTGGACCAAGCCCGCGATCTCGGTGATCGGCGTGGACGCCACGGACGTCGCCCACGCGTCGAACACGCTGGCGCCGCGGGCGGCGGCCAAGCTGTCGGTGCGGATCCCGCCGGGCCTGGACCCCCAGGCCGCCGAGGACGCGCTGCGCGCGCACCTGACGGCGCACGCCCCGTTCGGGGCCCGGGTGACGTGGACGCCGGGCGAGCAGGGCAAGGCCTTCGGGGCGCCGGACGACTCCGCGGCCATGCGGGCCGCGCGCTCGGCGTTCGCCGCGGCGTGGGGTACCGACCCGGTCGACATCGGCGTCGGCGGCTCGATCCCGTTCATCGCCGACCTGCTCGAGGCCTTCCCGGAGGCGGCCGTGCTCGTCACCGGCGTGGAGGACCCGGACTCGCGAGCCCACGGCGCGAACGAGTCGGTGCACCTCGGTGAGCTGCGCAAGGTCCTGGTGGCCGAGGCGCTGCTCCTGCGGGGACTCGGCGGACGCTGAMGAVTHTDADVAALRAHVDQLFPAVQADLESLVRIPSVSASAFDPSHVVASAEAVAALLRDVGLPEVRILRSERPDGTPGAPAVVARRPAPAGAPTVLLYAHHDVQPPGDAATWDTEPFEPVQRGERLFGRGAADDKAGVMAHVGALRALAALGEEPGVGVTVFVEGEEEAGSPSFSRFLADHHALLSADVIVVADSTNWKVGVPALTTSLRGLVDGVVGVEVLDHAVHSGMFGGPVLDANLLLARLLTTLHDDAGTVAVDGLTSAGEPEVDYAEADFRADSSVLDGVRLAGEGTIAGRLWTKPAISVIGVDATDVAHASNTLAPRAAAKLSVRIPPGLDPQAAEDALRAHLTAHAPFGARVTWTPGEQGKAFGAPDDSAAMRAARSAFAAAWGTDPVDIGVGGSIPFIADLLEAFPEAAVLVTGVEDPDSRAHGANESVHLGELRKVLVAEALLLRGLGGRNANANANANA
AK018_06430546hypothetical proteinATGACCCGGATGCTCCAGCTCGCCCAGGCCTCCCTCCTGCCCCGTCGGGCCCGCCCCGACATGGCACTCCTGGACACCTCGACCACGGTGCTGCGCGTCCACCCGGGCGACCTGGACCTGTACCTCCACGTCAACAACGGCTCGTACCTGCAGATGATGGACGTGGCCCGGTCCAACCTCCTCGCCGACCTCGGCGGCCTCGCCCGGCTCAAGGCGCACGGCTGGTACCCCGTCGTGGCGGCCTCCACGATGACGTACAAGCGGTCGCTGCAGCTCTTCGACCGGGTGACGATCGCGACGCGGGTCGTCGGCTGGGACCAGCGGGTCGTCTACCTCGAGCAGGTCTTCACACGGCGCGACGACGAGTTCTGCGCGCGCGGCTGGGTCGCGGGACGGTTCCTCGGCCGCGACGGGATCCGCGTGGCACCGCGGGAGGTCGTCGCCCTGCTCGCCGACGCCGAGCTCGACAGCCCCGAGCTGCCGGCCGACCTGGCGGCGTGGGCCCGCTCGGTCGACGTCGCGCACCGCGACGTCGACCGAGCCTGAMTRMLQLAQASLLPRRARPDMALLDTSTTVLRVHPGDLDLYLHVNNGSYLQMMDVARSNLLADLGGLARLKAHGWYPVVAASTMTYKRSLQLFDRVTIATRVVGWDQRVVYLEQVFTRRDDEFCARGWVAGRFLGRDGIRVAPREVVALLADAELDSPELPADLAAWARSVDVAHRDVDRANANANANANA
AK018_06431591inhA_4Isonitrile hydrataseGTGAGTACCGACGGCGGGCTGCACATCGGGATCTTCCTGTTCGACGACGCCGAGGAGCTCGACGTCGTGGGTCCCTTCGAGGTCCTGGCGGCGTGGGAGGAGCACTCCGCGCTCAAGCCGCACGTGAGCACCTTCTCGCGCGACGGCGACGGCGTGCGCCTCGCCAAGGGGATGCGGCTGGTGCCGGCCCGGTCTGCGGACGACGTCGGCCCCCTGCACGTGCTGGTGCACCCCGGCGGGTGGGGCACCCGGGCCCTCGTCGGCGACCACGGCCACCTCGAGTGGCTGCGTCGGGTCCACGCCCAGACCCCGGTCGTGGCGAGCGTGTGCACCGGGGCGCTCGTGCTCGCCGCCGCGGGGCTGCTGGCGGGACGTCCGTCGACCACGCACCGTCACCACTACGACGAGCTGGCGCAGATCGACCCCTCGACGGTCATCGACACCGAGGCGCGGTTCGTCGACGACGGCGACGTCGTCACCTCCGCCGGCGTGTCGGCGGGGATCGACATGGCGCTGCACCTGGTCGAGCGCCTGGAGTCGGCCGACGTCGCCGGCGCGGTGCGCGACGCCCTGCAGTACGGGGATACCTGAMSTDGGLHIGIFLFDDAEELDVVGPFEVLAAWEEHSALKPHVSTFSRDGDGVRLAKGMRLVPARSADDVGPLHVLVHPGGWGTRALVGDHGHLEWLRRVHAQTPVVASVCTGALVLAAAGLLAGRPSTTHRHHYDELAQIDPSTVIDTEARFVDDGDVVTSAGVSAGIDMALHLVERLESADVAGAVRDALQYGDTNANANANANA
AK018_064321203nadA_2Quinolinate synthase AGTGACTGTGCTGAACGAGACGTCGAACTTCGTCGAGCCGGCGCCCTCGGCGCTGCTGCTGCTCGGTCAGGGCCGCGACCTCGCCTCCGAGCGCGGGGTGGAGTGTACCGGCGCGCTGCCGGCGCCGTCGGACCCCGACCTGGTGGACCGCGCCCGCGCCGCCCGCGCCGCGCTGGGTGAGCGCGCCTTCGTGCTGGGCCACCACTACCAGCGTGACGAGGTGATCGACTTCGCCGACGTCACCGGTGACTCCTTCAAGCTCGCCCAGCGGGCGGCGGCCCGCCCCGAGGCCGAGTTCGTCCTCTTCTGCGGCGTGCACTTCATGGCCGAGTCGGCCGACATCCTCACCGCGGACTCCCAGCAGGTCGTGCTGCCGGACATGGCGGCCGGCTGCTCGATGGCGGACATGGCCGAGATCTCCCAGGTCGAGGAGGCCTGGGAGGTGCTGGCCGACGCCGGGGTCGCGGGTGACACCGTGCCGGTGACCTACATGAACTCCTCGGCGGCGATCAAGGCGTTCACCGGCCGCCACGGCGGGACCGTGTGCACGTCGTCGAACGCCCAGGTGGCCCTGCGCTGGGCCTTCGACCAGGTCGGCGGCGTCGACGGCACCGGCAAGGTGCTGTTCATGCCGGACCAGCACCTGGGCCGCAACACCGCGGTGAACCAGCTCGGTCTGTCCCTCGACGACTGCGTCGTGTTCGACCCGCGCAAGCCGAACGGTGGCCTGACCGACGCCGAGCTGCGCGACGCCCGGATGATCCTGTGGCGCGGGCACTGCTCGGTGCACGGACGGTTCTCGGTGCAGAACGTCGAGGCGATCCGCGCCACGGCGCCGGACGTCAACGTCATGGTCCACCCGGAGTGCCGCCACGAGGTCGTCGCGGCGGCGGACCGGGTCGGCTCGACGGAGTACATCATCAAGGCCCTCGACGCCGCCGAGCCCGGCTCGACCTGGGCGATCGGCACCGAGCTGAACCTCGTGCGCCGGCTGGCCAAGGCCCACCCGGACAAGCAGGTGCACTACCTGGACTCGACGGTGTGCTTCTGCTCCACGATGAACCGGATCGACCTGCCGCACCTGGTGTGGGCGATGGAGTCGCTCGCCGAGGGACGCGTGGTCAACCGGATCGTCGTCGACGCCGACGACGCCCACTGGGCCCGCGTGGCCCTCGACCAGATGTTGGCGCTGCCGGGGATCTGAMTVLNETSNFVEPAPSALLLLGQGRDLASERGVECTGALPAPSDPDLVDRARAARAALGERAFVLGHHYQRDEVIDFADVTGDSFKLAQRAAARPEAEFVLFCGVHFMAESADILTADSQQVVLPDMAAGCSMADMAEISQVEEAWEVLADAGVAGDTVPVTYMNSSAAIKAFTGRHGGTVCTSSNAQVALRWAFDQVGGVDGTGKVLFMPDQHLGRNTAVNQLGLSLDDCVVFDPRKPNGGLTDAELRDARMILWRGHCSVHGRFSVQNVEAIRATAPDVNVMVHPECRHEVVAAADRVGSTEYIIKALDAAEPGSTWAIGTELNLVRRLAKAHPDKQVHYLDSTVCFCSTMNRIDLPHLVWAMESLAEGRVVNRIVVDADDAHWARVALDQMLALPGIPGPT0013365_341DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013365-nadA-K03517NANA
AK018_06433531hypothetical proteinGTGCACGTACTGCTGCTGGCCACCGTCGACGGTGGACCGGACGACCCCGACCGCACCGTCGCGACGGCGCTGGCCGCCGCCTGGACCGCCGCCGCTCCCCGCTGCGTCGTCGAACCCATGGTGCTGCCGCCCGGCCCCGCCGCGTCGACCGGCCCGCCCGACGGGTCGCCGTCGCCCGGGGTCTTCGTCCCCACGACCGAGCTCGGGCTGTCCAGCGTCGTGCCGCCCGCCCCGCGGCCGGAGGTGCGGCTGCTGCACGAGCGCGTCGCGGAGGCCGACCTCGTCGTCGTGCACACCCCCGTCCTGGACGGCGCCGCGCTGCACGCCGGACCGGTGCACTCCGCTGCGCAGGCCGCCGCGCCCCACGCCGTGCCCGTCGTCGTGCTGGCCGGACGCAGCGAGGCCACGCGCCGCGAGCTCGCCGGAGCAGGGGTCGCCGGGGCGCACGAGGTCGGTCCCGTGCCCGCCGAGGACGCCGTCGCCCGCGTCGCGCGGACCTGGGCGCCCGCGTGGGCCGTCGACGACGAGTGAMHVLLLATVDGGPDDPDRTVATALAAAWTAAAPRCVVEPMVLPPGPAASTGPPDGSPSPGVFVPTTELGLSSVVPPAPRPEVRLLHERVAEADLVVVHTPVLDGAALHAGPVHSAAQAAAPHAVPVVVLAGRSEATRRELAGAGVAGAHEVGPVPAEDAVARVARTWAPAWAVDDENANANANANA
AK018_064341593katA_3COG0753CatalaseATGCCCGAGACCCCCCAGCCCCACGACGGCACCTCGATCAAGACCGCGCCCTCGGCCGAGGCTCGCCAGGGCTCCACCACCGACACCGGCGCTCCGGCGCTCAGCGACCGCAACAGCCTGACGATCGGGGCCGACGGCGCGATCGTGCTGCACGACGTGCACCTGATCAACCAGATGGCGCACTTCAACCGTGAGCGCATCCCGGAGCGCAACGTCCACGCGAAGGGCTCGGGTGCGTTCGGCGTCTTCGAGACCACCGAGGACGTCTCGGCGTACACGAAGGCCGGCCTGTTCCAGCCGGGGGTGCGCACCGAGATGCTGGCGCGCTTCTCCACGGTGGCCGGCGAGCAGGGCTCGCCCGACACGTGGCGCGACCCGCGCGGCTTCGCCCTGAAGTTCTACACGGACGAGGGCAACTACGACCTGGTCGGCAACAACACGCCGATCTTCTTCATCCGGGACACGATGAAGTTCCCGCACTTCATCCGCAGCCAGAAGCGCCGCGGCGGGACGGGCCTGCGGGACAACAACATGCAGTGGGACTTCTGGTCGCTGAACCCGGAGTCGGCCCACCAGGTCACCTACCTCATGGGAGACCGCGGCATCCCGAAGACGTACCGGCACATGAACGGGTACGGCTCGCACACCTACCTGTGGGTCAACGCCGCGGGCGAGAGGTTCTGGGTCAAGTACCACTTCCACTCGAACCAGGGGGTGGAGGGCCTGACCGACGAGGACGCCACCCGGATCGCGGGGGAGGACGCGGACTTCCACCGCCGTGACCTGTCGGACGCCATCGACCGCGGTGACTTCCCGTCCTGGACGCTGTCCGTGCAGGTGATGCCGTACGAGCAGGCGATGACCTATCCCACCAACCCGTTCGACCTGACGAAGATCTGGCCGCACCGCGACTACCCGTTGATCAAGGTCGGCACGATGACGCTGAACAAGAACCCGGACAACTTCTTCGCGCAGATCGAGCAGGCTGCGTTCGAGCCGTCGGCGCTGGTGCCGGGCATCGGGTTCAGCCCGGACAAGATGCTGCTGGGCCGAGCGTTCGCGTACGCGGACACGCACCGGCACCGTATCGGGCCCAACTACCTGCAGCTGCCGGTCAACCGCCCGCACGTGGAGACCAACTCCTACACCCAGGACGGCCCGATGGCGTACGAGCACCGGGGCGACGACCCGGTGTACGCGCCCAACTCGTTCGGGCGCGGGTACGCCGACGAGACCGGCGTCGTCGACACCTCGTGGGAGTCCGACGGCCCGATGGTCCGGCAGGCGTACACGCTGCGGGAGAACGACGACGACTTCTCGCAGGCGGGCGCGCTGGTGCGTGACGTGTGGAACGACGAGCAGCGCGCCGCGTTCGTCAAGACCGTCGCCGGGCACCTGCTGGGCGGGGTGAAGGGCGACGTGCTGGAGCGGGCGTTCGACTACTGGAAGCGCGTCGACGCCGACACCGGCAAGCAGATCGAGGAGCTCGTGCGCGCCGAGGCGGACCTGGGTGCGCCCGGCGCGCAGCCGGGTGCCGCGAAGGACGAGGCCTCGGACCCGATCGTGGAGCCGCGCACGCACGCGCGTTCCTGAMPETPQPHDGTSIKTAPSAEARQGSTTDTGAPALSDRNSLTIGADGAIVLHDVHLINQMAHFNRERIPERNVHAKGSGAFGVFETTEDVSAYTKAGLFQPGVRTEMLARFSTVAGEQGSPDTWRDPRGFALKFYTDEGNYDLVGNNTPIFFIRDTMKFPHFIRSQKRRGGTGLRDNNMQWDFWSLNPESAHQVTYLMGDRGIPKTYRHMNGYGSHTYLWVNAAGERFWVKYHFHSNQGVEGLTDEDATRIAGEDADFHRRDLSDAIDRGDFPSWTLSVQVMPYEQAMTYPTNPFDLTKIWPHRDYPLIKVGTMTLNKNPDNFFAQIEQAAFEPSALVPGIGFSPDKMLLGRAFAYADTHRHRIGPNYLQLPVNRPHVETNSYTQDGPMAYEHRGDDPVYAPNSFGRGYADETGVVDTSWESDGPMVRQAYTLRENDDDFSQAGALVRDVWNDEQRAAFVKTVAGHLLGGVKGDVLERAFDYWKRVDADTGKQIEELVRAEADLGAPGAQPGAAKDEASDPIVEPRTHARSPGPT0014380_2139DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
AK018_064351404hypothetical proteinGTGAGCACCTCGTCCGGTCCGTCCGCCGCCCCGCCGCGGCGCCGCCGTCGTGCCCTGTGGTGGTGGATCGGCGCGGTCGTGGTGCTGCTCGTCGCGGGGGCCGTCGTCGTCGCGGCCGAGCTGGAGCACCGCGCGTGGGTCGAGGCCGAGGCGGAGTACGACGCCGAGGTCGCCCGCCTGGACGCCGAGGCCGAGGACTCCCGCGCCGCGGCCGAGGAGGCCTACGCGGCGAGCCGAGAGACGCTCGTCGCCGCGATCGACGACGGCAGGCCCGTCCTGCGCGACAGCAAGGGCCAGGTGGACGACCCGGCGGTCCGCCGCGACCTGCGCACGGCGCTGACGGACGCCGAGGCGCTGCGCGACACCGAGGTCTCCTACCCGGTCACCACCCGCACGGTCGAGGAGGTCACCCGCCCGAACCCGTTCCTCGCCGAGACGCTGCCGCAGGTCCGGGTCGAGCTCGTCGAGGCGGCGGAACCCGCGCCGGCCGACCTCGACGCCGCGGCGGCCGACGTCGCGGAGGCGACCGCCGTCGTCGAGCAGGCCCGCCGCGAGTGGTCCCTGGCCGCGCTGGAACCCGCCGTCGTCGAGGGGCGCGACGCCGCCACCGACCTGGACGGTCAGGTCGACGCCGCTGCGCTGGCACCGCTGCAGGACGCCGTCACCCGGGCCGAGGAGGTGCTCGACGCCGGGGCGGACGCCGTCGACCCCGACGAGGCCGTGGCCCTGCGCGACACGCTGCTCACCACCACCGAGGACCTGTGGAGCGACCGGCTGGACCAGATCGTCACCGAGCGACGCCGCACAGCGCGCGCCGACGGCGTCGACTGCCGCGTCGACCGCTGCGTCGCGCTGACCTTCGACGACGGACCCGTCGCCGAGACCGAACGCCTGCTGCGCATCCTGGAACGCAAGGACGCGCCCGCCACCTTCTTCATGGTCGGGGACAACGTCGCCAAGAACCCGGACATCGCCCGGGCCGTCGCCGACGCCGGACACCTCGTCGCCAACCACACGTGGAACCACCCGCAGCTCACCACGCTCGACGACGCCGAGGTGCGCGACGAGCTGCGCCGCACCTCCGACGCGATCCGTGAGGCCACCGGGACCGCACCGTTCCTGCTGCGGCCGCCCTACGGCGACGTCGACGCCCGGGTCCGGGCGCTCGCCACCCGCACCGGGCTCGACGTCATGACCTGGAACCTCGACACGCTCGACTGGCAGACGCGGGACGCGAAGGAGACGCGCCGGGCGGTGCGACGCGACGTGGAGCCGGGCAGCAACATCCTCCTGCACGACATCCACAGCACGACCGTCGACGCCGTCGGCAAGATCATCGAGGACCTGCGCGACGAGGACTACGTGCTCGTCACGGCGGACCTGCTCGTCGACGACGAGGACTGAMSTSSGPSAAPPRRRRRALWWWIGAVVVLLVAGAVVVAAELEHRAWVEAEAEYDAEVARLDAEAEDSRAAAEEAYAASRETLVAAIDDGRPVLRDSKGQVDDPAVRRDLRTALTDAEALRDTEVSYPVTTRTVEEVTRPNPFLAETLPQVRVELVEAAEPAPADLDAAAADVAEATAVVEQARREWSLAALEPAVVEGRDAATDLDGQVDAAALAPLQDAVTRAEEVLDAGADAVDPDEAVALRDTLLTTTEDLWSDRLDQIVTERRRTARADGVDCRVDRCVALTFDDGPVAETERLLRILERKDAPATFFMVGDNVAKNPDIARAVADAGHLVANHTWNHPQLTTLDDAEVRDELRRTSDAIREATGTAPFLLRPPYGDVDARVRALATRTGLDVMTWNLDTLDWQTRDAKETRRAVRRDVEPGSNILLHDIHSTTVDAVGKIIEDLRDEDYVLVTADLLVDDEDPGPT0018645_551DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
AK018_06436648hypothetical proteinATGACCCGCATCGTGCTGCGGCCGACGGGCAACCCGCTGCCGCTGGGGTTCATGGCCCTCGCGGTGGCCACCGTGGGGTTCAGCTGCCTGCAGCTCGGGATCCTCAGCACGTCGGAGGAGAGCACGGTGGCGCTCGCCGTCCTGGTGCTCACCGTCCCGCTGCAGCTGCTGGCGGCGATCATCGGGTTCGGCGCCCGGGACCCCATCGCCGGCACCGGGATGGCGGTGGTGTCGGGGGTGTGGGCGATGCTCGCCGTGTCCACGCTCACCTCGCCGCCCGGGTCGTCGAGCCCGGCGCTGGGCGTGCTGCTGATGACCGCGGCGCTGGCCATGGTGGTCCCCGCGACGGCGGCCGGCGGCAAGGTGGTGGCCGCCGCCGTCATGATCGGCTCCGGCGTCCGCTTCGCGGTCACCGGCATCTCGGAGTTCACCGGCTCCGGCGGGTGGGAGACGACCGCCGGCGTCCTCGGCCTGGTCCTGGCCGTGATGGCGCTGTACGCCGCGCTCGGGTTCGTCCTCGAGGAGGTCGACCACCCGGTCCGCCTGCCGGTGCTGCGCCGTGGTGCCGGCCTCAAGCCGCTGCGCGACGACCTCGAGGAGCAGGTCGAGGGCATCGCCCGCTCGGCGGGGGTGCGCCACCAGCTCTGAMTRIVLRPTGNPLPLGFMALAVATVGFSCLQLGILSTSEESTVALAVLVLTVPLQLLAAIIGFGARDPIAGTGMAVVSGVWAMLAVSTLTSPPGSSSPALGVLLMTAALAMVVPATAAGGKVVAAAVMIGSGVRFAVTGISEFTGSGGWETTAGVLGLVLAVMALYAALGFVLEEVDHPVRLPVLRRGAGLKPLRDDLEEQVEGIARSAGVRHQLNANANANANA
AK018_06437843bpoA2_2Non-haem bromoperoxidase BPO-A2ATGGGTTACATCACCGTCAGCCGCGAGAACAGCACCGACGTCGAGATCTCCTACGAGGACCACGGCACCGGCCAGCCCGTCGTCCTCATCCACGGTTACCCGCTCGACGGCACCAGCTGGGAGCTGCAGGCCCGCGAGCTCCTGGACGCCGGGTACCGCGTCATCACCTACGACCGCCGCGGATTCGGCCGGTCGAGCAAGGTCGGCGCCGGGTACGACTACGACACCTTCGCCGCGGACCTCGACACCCTGCTCGAGACCCTCGACCTGCGCGACGTCGTCCTCGTCGGGTTCTCCATGGGCACCGGCGAGCTCGCACGGTACGTCAAGAACCACGGCCACGACCGGGTCGCCAAGCTGGCGTTCCTCGCCTCGCTCGAGCCGTTCCTCGTCCAGCGGGACGACAACCCCGACGGCGTGCCGCAGTCGGTCTTCGACGGGATCGTCGAGGCCGCCCGCTCCGACCGCTACGCCTGGTTCACGCAGTTCCACCAGGACTTCTACAACCTCGACGAGACCCTCGGCAGCCGGATCTCGGAGGAGGTCGTCCGGGCCAACTGGAACACCGCCGTCGGATCCGCGCCCGTCGCGGCCTACGCCGTCGTCCCCAGCTGGATCGAGGACTTCCGGCCCGACGTCGAGGCCGTCCGCGCCGCGGCCAAGCCGACCCTCATCCTGCACGGGACCAAGGACAACATCCTGCCGATCGACGCCACCGGGCGACGGTTCCGCGACGCCCTGCCCGAGGCGCAGTACGTCGAGATCGAGGGAGCGCCCCACGGCCTGCTCTGGACGCACGCGTCCGAGGTCAACGAGGCGCTGCTCGGATTCATCCGCTCCTGAMGYITVSRENSTDVEISYEDHGTGQPVVLIHGYPLDGTSWELQARELLDAGYRVITYDRRGFGRSSKVGAGYDYDTFAADLDTLLETLDLRDVVLVGFSMGTGELARYVKNHGHDRVAKLAFLASLEPFLVQRDDNPDGVPQSVFDGIVEAARSDRYAWFTQFHQDFYNLDETLGSRISEEVVRANWNTAVGSAPVAAYAVVPSWIEDFRPDVEAVRAAAKPTLILHGTKDNILPIDATGRRFRDALPEAQYVEIEGAPHGLLWTHASEVNEALLGFIRSPGPT0013125_818DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433NANA
AK018_06438618hypothetical proteinATGGTGAACGCCGACGACCAGGCGGTGCGCGCGACGATCGTCGCCGCCGCCGACCGGCTGTACTACGCCCGAGGTATCCAGAACGTCGGGATGGACGCCGTGCGCGCCGAGGCCGGCTCGTCGCTCAGGCGCATCTACGGGCTCTTCCCGTCCAAGGACCTGCTGGTCGCCGCCGTGCTGGACCATCGCACCGCGATCTGGTGGAACGGTGTCGACCGGGCCGCTGCGGGGGCGCAGACGCCTCGGGAGCAGCTGCTCTCCGTCTTCGACTTCCTGGACTCCTGGTTCCGCCAGGACGACTTCCGCGGCTGCGCCTTCATCAACTCGTTCGGTGAGCTCGGCGCGACCTCGCCCCGGGTGTCGGAGAAGGTCCGTGCACAGAAGGAGTCGTTCCACAGCCATGTGCGGGACCTGGTTCGTCGCGCGGGTCTGGCCGACGGTGTCGCGCTGCAGGTGACGCTTCTGGTCGAGGGTGCGCAGACCGTCGCCGCGATCACACGGGACCGCGACGTCGTGCCGCAGGCCCGCCGCGCCGCCGTCGTCCTGCTCGACGCTGCGGCGGCCGAGGCGGGCGACAGCCGGGCGGGGCAGGGTGCGGTGACGGCTGACGGACGGTGAMVNADDQAVRATIVAAADRLYYARGIQNVGMDAVRAEAGSSLRRIYGLFPSKDLLVAAVLDHRTAIWWNGVDRAAAGAQTPREQLLSVFDFLDSWFRQDDFRGCAFINSFGELGATSPRVSEKVRAQKESFHSHVRDLVRRAGLADGVALQVTLLVEGAQTVAAITRDRDVVPQARRAAVVLLDAAAAEAGDSRAGQGAVTADGRNANANANANA
AK018_06439840azoB_3NAD(P)H azoreductaseGTGCGCATCCTGATCACCGCGGTCCGCGGCAAGACCGGATCGGCGCTCGCCGAGCGCCTGGCGTCGCGCGACGACATCGAGCTCCGGGGCGGCAGCAGCGACCCGAGGCTCGTCGACGCGCGAGGTGTCGTCCCGGTCGACTTCTCGTGGGACCGGCCGGAGCACTGGCCGGCCGCGAGCGCCGACGTCGACGCCGTCTTCGTCGTCGTCCCGCTCCGCGTGGACGCCCCCGCCCTCGTCGCCTCGTATCTCGCGACGACACCATCGACCACGCACGTCGTGCTGCTCTCCGAACGTGACCCGGAGAGGTCCGGTACCCAGGGCTGGTCGGCGCGCGTGGAGCACTCCGTCCGGACCAGCGGTCGCTCATGGACGCTGCTGCGGCCCGGATGGTTCATGCAGGTCATGTCCGACCCACGGTTCCTCCGTGACGAGATCGCCGGCGGACGCTTCGGGTTCCCGCACCCCGGTGCGTCGGTGGCATGGATCGACACCCGTGACATCGCGGAGGTCGCCGAGCTCGCCCTGATCGACCGTCGGCACGTCGGCAGGACCTACGAGCTGTCCGGGCCGGAGTCGTTTCCCCCGGCCCGCGTCGCCAAGATCCTGTCGGAGGCCCTGGACCGTCCCGTCGCGTACGTCGAACCCGGGGACGAAGAAGCGCTCGACGGCACCAGCGGCTTCGAGCGGGAGCTCACGGCGCTCACGTACGAGCGCGTCCGCGACGGCCACTTTGCGGTCGTGACCGACGCGGTGCCGCGCCTCACCGGGAAGCCCGCGCGCTCCCTCCAGGCGTTCATCGCCGAGGCGGCAGCCGCCGGGGCCTGGAAGACCGCCTGAMRILITAVRGKTGSALAERLASRDDIELRGGSSDPRLVDARGVVPVDFSWDRPEHWPAASADVDAVFVVVPLRVDAPALVASYLATTPSTTHVVLLSERDPERSGTQGWSARVEHSVRTSGRSWTLLRPGWFMQVMSDPRFLRDEIAGGRFGFPHPGASVAWIDTRDIAEVAELALIDRRHVGRTYELSGPESFPPARVAKILSEALDRPVAYVEPGDEEALDGTSGFERELTALTYERVRDGHFAVVTDAVPRLTGKPARSLQAFIAEAAAAGAWKTANANANANANA
AK018_06440429yjgHCOG0251RutC family protein YjgHATGACCACGCCCCAGTTCTTCACCACGCCCGGCTACGGCGACATGTTGCGCGAGAAGCTCCACTACGAGCAGGCCGTGCGGATCGGTGACACCATCCACCTCTCCGGCCAGGGAGGATGGGACGACGAGTTCCGGTTCCCGGAGAACCTCGAGGAGGAGATCGTCCGGGCGTTCGACAACGTCGAGAGGACGCTCGCCCTGGCAGGCGCCGGCTGGCCCGACGTGGTCGCCGTCGACAGCTACCACGTCCCGACCGCCACCGACGAGATCGGCGACGAGCACACCGCGGTGATGACCGATCAGTTCCGACGCCGGATGGGCGACCGAACGCCCGTGTGGACCGAGGTGGGCGTCGCCGCCCTCGGCGCCGTCGGGATGCGGGTCGAGATCCGGGTCACCGCGGTCGCGCCTCCCCGCACCGACTCCTGAMTTPQFFTTPGYGDMLREKLHYEQAVRIGDTIHLSGQGGWDDEFRFPENLEEEIVRAFDNVERTLALAGAGWPDVVAVDSYHVPTATDEIGDEHTAVMTDQFRRRMGDRTPVWTEVGVAALGAVGMRVEIRVTAVAPPRTDSNANANANANA
AK018_06441507hypothetical proteinATGGCAGAACCGACCGGTGACCTGCAGGTCGAGCCTGCCGCCGATGACGTGCGTTGGCTCTCGCCGAGCGAGAAGGAGGCGTGGACGGGCGCGGTCTCGCTGATGCTCCTGCTCCCGGGCCGCCTCGAGTCGGCCGTGCAACGCGCCGCCGGCCTCACCCTCTTCGAGTACCTGACGCTGAGCCACATGTCGGAGGCGGAAGATCGCTGCCTGGTGATGAGCGAGCTGGCCTACCTCACCAACGGCTCGCTGTCCCGGCTCTCCAACGTGATGCGCCGGTTCGAGGCGCGGGGCTGGGCCCGCCGGTATCCCGACCCCGACGACGGTCGCCGGACGATCGCGGCCCTCACCGACGAGGGGTACGCGAAGGTCGTCGAGGCGGCGCCCGCGCACCTGCGCTCGGTCCGCGAGCACGTCCTCGACCCGTTGACCGTCACCGACCAGCGGGCGCTGGCCAGGATCGCCGCCAAGCTGCACACGCGCCCGGAGGACTTCGCCGCGTCGTGAMAEPTGDLQVEPAADDVRWLSPSEKEAWTGAVSLMLLLPGRLESAVQRAAGLTLFEYLTLSHMSEAEDRCLVMSELAYLTNGSLSRLSNVMRRFEARGWARRYPDPDDGRRTIAALTDEGYAKVVEAAPAHLRSVREHVLDPLTVTDQRALARIAAKLHTRPEDFAASNANANANANA
AK018_06442552hypothetical proteinGTGACGAACGACGACCACGGCGATGCGCTGCTCGCGCTGCTGAACTCCACACCCGTCACGGACGGCGTCGCCGAGGACCTGATGGCCGACCCGGCCTACGCGGCAGGCCTCGCGCGACGCTTCGGCGGGGAGGGGACGGCGAGCGAGGTGCACGAGCTGGCGCGAGCTCGGGACGGCCTGCAGGACGTCGCGCGCACGGGCACGGTCGGGGTCGAGCTGGACCAGATCCTTCATGACGTCGCGCAGGCGCCGTCGCCGCTCACCCCGGACGGCCTGCACTGGCACCTCGCCGGCCCTGCCGCGGCGCTGCCGGCGGCGCGCGCGATCATCGCGTGGTCCGACCTCGTCACCCGTCGACCCGGCAGGCTCCGCCCGTGCGGGAACCCCGACTGCCGGCGGTTCCTCGTCGACCGGTCCAAGGGCAACACGGGGCGATGGTGCTCCATGGCCACCTGCGGCAACCGCATGAAGGCGCGCCGCCACTACTCGCGACAGCACGCCGCCGCCGAGCCCGAGGGGCGAGACCGGGACGAGCCGCGTCGGACCTCTTGAMTNDDHGDALLALLNSTPVTDGVAEDLMADPAYAAGLARRFGGEGTASEVHELARARDGLQDVARTGTVGVELDQILHDVAQAPSPLTPDGLHWHLAGPAAALPAARAIIAWSDLVTRRPGRLRPCGNPDCRRFLVDRSKGNTGRWCSMATCGNRMKARRHYSRQHAAAEPEGRDRDEPRRTSNANANANANA
AK018_06443864dhaA_2Haloalkane dehalogenaseGTGGTGAGCACCTACCACCGCTTCGTGGACATCGAGGGGCTGCGAGTCTTCTACCGGGAGGCGGGCGACCCCGAGGCTCCGACCGTCGTGCTGCTGCACGGCTACCCCACCAGCTCGTTCATGTTCCGCCACCTCATCCCCGAGCTGGCGGGCGACTTCCACGTGGTCGCGCCTGACCACATCGGGTTCGGGCTCTCCGACGCGCCGTCGGCGGACGAGTTCGGGTACACCTTCGACGCCCTGGCCGCGCACACCGCGAAGTTCCTCGACGCGCTCGGCGTCGATACCTTCGCGATCTACGTCCAGGACTACGGGGCCCCGATCGGCTGGCGCCTCGCGCTGGATGACCCCGACAGGGTGTGGGCCGTCGTCAGCCAGAACGGCAACGCGTACGAGGAGGGCTTCGTCGAAGGGTTCTGGTCGGATGTGTGGGCCTACGCCGCCGAGCCGAACGCCGAGACCGAGGCCGCGTTGCGACCGGCCCTGGGTGAGGAGGCCATCCGGTGGCAGTACACCCACGGCGTGCCCGACCCGGCCGTGGTCAGCCCGGACACCTGGCGGCACGACGCCGCGCTGGTCGCCCGGCCCGGAAACGACCGGGCCCAGCTCGCGCTCTTCCGCGACTACGTCACCAACGTCAGGCTCTACCCGGCCCTGCACGAGTACCTGCGCGACTCCCGGGTCCCGGTCCTCGCTGTCTGGGGCGCGAACGACGAGATCTTCGGGCCCGCGGGCGCCGAGGCGTTCCGCCGCCACGCCCACGACCCGGAGATCCACCTGCTCGACGGCGGGCACTTCCTGCTCGAGAGCGCCCTCGACGAGGTGGCGCCACTGATGCGCCGGTTCCTCGCCCGCCACTCCTGAMVSTYHRFVDIEGLRVFYREAGDPEAPTVVLLHGYPTSSFMFRHLIPELAGDFHVVAPDHIGFGLSDAPSADEFGYTFDALAAHTAKFLDALGVDTFAIYVQDYGAPIGWRLALDDPDRVWAVVSQNGNAYEEGFVEGFWSDVWAYAAEPNAETEAALRPALGEEAIRWQYTHGVPDPAVVSPDTWRHDAALVARPGNDRAQLALFRDYVTNVRLYPALHEYLRDSRVPVLAVWGANDEIFGPAGAEAFRRHAHDPEIHLLDGGHFLLESALDEVAPLMRRFLARHSPGPT0013255_10DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_06444450hypothetical proteinATGGCCACGACCATCAGCCACACCGTCGAGATCGACCGGACGCCGATCGCCGCCTGGGCCGTGCTCGCCGACACCGCTCGCTACCCGGACTGGAACCCGTTCATCACGCGCCTCTCCGGGGACCTCGATGTCGGGTCCCGGCTCGAGGCGGTGATCGAGCCTCCCGGCCGGCGCCCGATGACGTTCCGGCCCACGGTGATCGACCAGCGCCCGGGCGAGGTGCTGCGCTGGCGGGGCCGGCTCCTGCTGCCCGGCCTCTTCGACGGCGAGCACCGCTTCGAGCTCGAGGCACTGCCGTCCGGCAGCACGCGGTTCACGCAGAGCGAGACGTTCAGCGGGATCCTGGTCCCGCTGCTCCGGTCGGTCCTCGCCCCGACACGGCTCGGGTTCGAGCAGATGAACGACGCGCTGAAGGCGCGCGCGGAAGGACTGCCGGCCGCCCGGTCGTGAMATTISHTVEIDRTPIAAWAVLADTARYPDWNPFITRLSGDLDVGSRLEAVIEPPGRRPMTFRPTVIDQRPGEVLRWRGRLLLPGLFDGEHRFELEALPSGSTRFTQSETFSGILVPLLRSVLAPTRLGFEQMNDALKARAEGLPAARSNANANANANA
AK018_06445549hypothetical proteinTTGGTCCGTGCATCGACGGGACGACGGGCGGACATCGTCCGAGCGGCACGCGAGATCCTCGACGGCGAGGGTGCCGACGCCGTCACCATGCGGGCGGTCGCCGCCCGGCTCGGCATCCGTGCACCGTCCCTGTACAACCACGTGCCGGGTAAGCAGGCGTTGGAGAACCTGCTGATCTCCGACGGGTTCGAGGAGCTGACGTCCGCGCTGCTCGGGGCGTTGGAGGGCGCGGCCGGCCGCGACGTCGTCGTGATCGGGCAGGCGTACCGAGACTTCGCGCGCCGGTACCCCCACCTCTACCGGTTGATGACGGAGACGGAGCTCGACCGGGACGGGCTGACACCCGGCGTCGAGTCGGCAGCGGCGCGCCCGCTGGTCGAGGCGCTGCACGGTGACGAGACGCGGGCGCGCGCCGTGTTCGCGTTCATGCACGGGATGACATCGTTGGAGCTCCGCCGCCGCTTCCCGCCGGGAGCCGATCTCGACGCCGCCTGGGCTGTGGGGCTGGCGCAGCTTGCCGCCGACCCGGCACCGCCGACCGCCTCATGAMVRASTGRRADIVRAAREILDGEGADAVTMRAVAARLGIRAPSLYNHVPGKQALENLLISDGFEELTSALLGALEGAAGRDVVVIGQAYRDFARRYPHLYRLMTETELDRDGLTPGVESAAARPLVEALHGDETRARAVFAFMHGMTSLELRRRFPPGADLDAAWAVGLAQLAADPAPPTASNANANANANA
AK018_06446567hypothetical proteinGTGCAGAAGTCCCTGACCCCGGCCGGCCGCCGCATCGTCGCGGCCGCCGAGGAGCTGTTCTACACCCGCGGCATCACCGCGGTCGGCGTGGACCTCGTCGCCGAACGCTCGGGGGTCACCAAGCGGACCCTCTACAACCGGTTCGGGTCCAAGGACCGGCTCGTCGCCGTCTACCTAACCCAGCGCGACGAGCGGTGGCGTGCGCTCGTGCGTGCCGCCGTCGACCGCTGCGACGACCCCCTCGACGCCGTCACCGCGCCGTTCGACGCCCTGACGACGTGGAGCGAGACCAACGACCGCGGGTGCGCGTTCGTCAACGCGCTGGCCGAGCTCCCGGACCCCGAGCACCCGGCGCGCGCGGTGGTCGTCGACCAGAAGCGCTGGCTGCGCGACCTGTTCGCCGAGCTCGCCACGACAGCGGGCTGCGCCGAGCCGGGCCTCCTCGCACACCGTCTGCTCGTGCTGCACGAGGGCGCGCTGGCCACGCAGCCGCTGCCCATCGAGACGCTGACGGTCACGTGCGACCTGGCACGGGAACTGGTCCGGGCCGCGACCCGGCATTCATGAMQKSLTPAGRRIVAAAEELFYTRGITAVGVDLVAERSGVTKRTLYNRFGSKDRLVAVYLTQRDERWRALVRAAVDRCDDPLDAVTAPFDALTTWSETNDRGCAFVNALAELPDPEHPARAVVVDQKRWLRDLFAELATTAGCAEPGLLAHRLLVLHEGALATQPLPIETLTVTCDLARELVRAATRHSNANANANANA
AK018_064471050ccr_4Crotonyl-CoA reductaseATGACCCCGTCCACCACCATGCGAGCGGTGCAGATCGCCGAGCACGGCGGCCCGGAAGTCCTGCACCTCACGGAGGTCGCCGTCCCGACGCCGGGCGACGACGAGGTGCTCGTCGAGGTCGCCGCCGTCGCCCTCAACAACACCGACCTGTGGACCCGGGAGGGCGCCTACGGCCTGGCCGGCGACCCGGACGCCCGCGCCGGCTGGCGCGGACCCCTCGACTTCCCCCGCACCCAGGGTGCCGACGTCGCCGGCCGCGTGACCGCCGTCGGACCGGGAGTCGACGCCGACCTGGTGGGCCGCCGCGTCGTCGTCGACCCGGCCCGCTACGCCGGGGACGGGCCCGACGCCCACCCGGTCGGGCTCCTGGGCAGCGAGCGCGACGGCGGCTACGCCGAGTACGTGACCGCGCCGGCCGACCAGGTCCACGACCTGACCCGCTCGCCGCTCACGGACGACCAGCTCGCCGCCCTGCCCACGGCGTACGGCACCGCGCTCGGCATGATCGAGCGCGGCGGCCTCGCACCCGGCGAGACGGTGCTGGTCACCGGGGCGTCCGGCGGCGTCGGTCTCGCGGCCGTCCAGCTCGCCCGCGCCCGCGGCGCGCACGTGGTCGCCGTGAGCAGCGGCTCCAAGCTCGACGCCGTGCGCGACGCCGGAGCCCACCAGGTGCTCGACCGCGCCCGCGACGTCGTCGACCAGGCCGGCGCCGCCGCACCGGACGGCTACGACGTCGTCCTCGACGTCGTCGCCGGGGACCTCGTGGGCGACGGGCTGCCGCTGCTGCGCGAGGGCGGCCGGTGGGTGGTCGCCGGGGCGCTCGGCGGCTACGACGTGTCCTTCGACGTGCGGCGCCTCTACCTGCACAACGCTCAGTTCATCGGGTCCTCCATGCACACGCGGACGCACTTCGCGCTGCTGATGGAGCTCGCGCGCGCCGGCGAGATCTCCCCGGTCGTCGCGGCCACGTTCACCCTCAAGCAGGCCGCTGCGGCGCAGGACGAGCTCGCACGCCGCGGACACGTCGGCAAGCTCGTCCTGCACCCCTGAMTPSTTMRAVQIAEHGGPEVLHLTEVAVPTPGDDEVLVEVAAVALNNTDLWTREGAYGLAGDPDARAGWRGPLDFPRTQGADVAGRVTAVGPGVDADLVGRRVVVDPARYAGDGPDAHPVGLLGSERDGGYAEYVTAPADQVHDLTRSPLTDDQLAALPTAYGTALGMIERGGLAPGETVLVTGASGGVGLAAVQLARARGAHVVAVSSGSKLDAVRDAGAHQVLDRARDVVDQAGAAAPDGYDVVLDVVAGDLVGDGLPLLREGGRWVVAGALGGYDVSFDVRRLYLHNAQFIGSSMHTRTHFALLMELARAGEISPVVAATFTLKQAAAAQDELARRGHVGKLVLHPPGPT0006375_793DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
AK018_06448702hypothetical proteinATGAACACGTTCGTCCACCGCTACGAGCTCGACACGAGCCGACCGACGGTCAGGTCCTCCGCCCGGGACGCCGCGACGCGGGCGCTGCTGCCCGCCGTCGTCGGCTGGCTCGTGCTCATCGGTGTCGGCTTCCTGATCGTCGGACCCCTGGACGACTACCCCGAGGGGAACGCGGTCGAGCAGTGGTTCGCCGACCACCGGACCCCCACGATGAACACCGTCTCGGAGTGGGTGGGGCACCTCGGCATGACCGAGGTGGTCATCGGCGTGACCGTGCTGACCGTCGCGATCCTGTGGTGGCGCACCCGCCAGTGGTGGTTCGCCGTCGTCCCCGCCCTCGCGGTGTCCCTGCAGTCGCTGCTGTTCATCACCTCCTCCGCGCTGGTGGGCCGCGAGCGCCCCGACGTCGAGAAGCTGGACGAGGCGCCGCCGACGTCGAGCTTCCCGAGCGGGCACACGGGGGCGTCGACGGCACTGTGGCTGACGATGGCGATGCTGGCCCAGCGCATCGAGAACCCCATGCTGCGCACCGTGGTCACGGTGGTGTGCACGGTGATCCCGTTCGCCGTGGGCATCTCACGCATCTACCGGGGCATGCACGGTCCCCTGGACGTCGTGTTCGGCATCCTCAACGGGGTGCTGTGCCTGGTGGTGGCGTGGTGGTACCTGCGCCGGGACACCTCGCAGGCCCGGGTGCGCTGAMNTFVHRYELDTSRPTVRSSARDAATRALLPAVVGWLVLIGVGFLIVGPLDDYPEGNAVEQWFADHRTPTMNTVSEWVGHLGMTEVVIGVTVLTVAILWWRTRQWWFAVVPALAVSLQSLLFITSSALVGRERPDVEKLDEAPPTSSFPSGHTGASTALWLTMAMLAQRIENPMLRTVVTVVCTVIPFAVGISRIYRGMHGPLDVVFGILNGVLCLVVAWWYLRRDTSQARVRNANANANANA
AK018_06449681hypothetical proteinATGCCTCGACAGTCCGCCCGTGCCCGCGCCCTGGTCCGCGCCGGCGCCTTCGCCGTGGCCGGCTTCGTGCCCGTGCTGGTCCTCGCCTGGTTCGTCCGGACGAACCAGGCGATCCACGACGCCGACCAGGCCGTGGTCGACGCCGCGACGCGGGTCACGCTGGACCACCCGTGGCTGCAGGACTTCTTCGTCACGTGGTCGGCCGTCACCCAGCCCGGCTGGGTGGTGCTCGCCGGCGCCCTGCTCGCCCTGTGGATGTGGCGACGTCACGGCTACCCCGGCCGGGCCCTGTGGGCGGTGGGGACGCTCCTCGTGTCGTGGGGGCTGGCGAACCTGGCCAAGCTCGCCGTCGGCCGGGTGCGCCCGGAGGTCGACGACGTCATCCTCGACGCCCCCGGGCTGAGCTTCCCGTCCGGGCACGCGACGTCGTCCGCGACCGCCGCCATCACGCTGACGCTGCTGGTCTGGCCCGTCCTGGGCCGCACGGGGCGTGTCGTCGTGCCGGCGGTCGCAGGCGTCTTCACCCTGATCACCGCCGCCGACCGGATCTTCCTCGGCGTCCACTACCCCACGGACGTCGTCGCCGGCATCCTCCTCGGGGCCACCGTCTCCGGGGCGTCCTACCTCGGCTACCGCGGGTGGGCACCCACCACCCGCACGACAGATGCGGAGCATCGATGAMPRQSARARALVRAGAFAVAGFVPVLVLAWFVRTNQAIHDADQAVVDAATRVTLDHPWLQDFFVTWSAVTQPGWVVLAGALLALWMWRRHGYPGRALWAVGTLLVSWGLANLAKLAVGRVRPEVDDVILDAPGLSFPSGHATSSATAAITLTLLVWPVLGRTGRVVVPAVAGVFTLITAADRIFLGVHYPTDVVAGILLGATVSGASYLGYRGWAPTTRTTDAEHRNANANANANA
AK018_06450966tdh_2L-threonine 3-dehydrogenaseATGAGCACCATGCCCGCGCTGCAGACCGTCCCTGGTTCGGCCCGGCCCGACCTCGCACAGGTCCCGGTGCCGGAACCCACCGAGGAGCAGATCCTCGTCCGGACCCGAGCCGTCGCCGTCAACAACGCCGACGTCGCCGTCGCCGCGGACGTGCGCGTCCCCGGCTTCGAGTTCTGCGGCGAGGTCGTCGCGGTCGGGACGGCCGTGGAGTCCGTCGCACCCGGGCAGCGTGTCGCGGGGGTCGGAGCGGGGGCGTTCGCCGAGTACGTGGCCGTCCCTCATCGGCACGTGATGTCGGTGCCCGAGGGGGTCCCCTCCGACGTGGCCGCCGCGCTGCCCACCGCTCTGCTCACCGAGTACGGTGCGCTGCGCCGCGCCGGCCTGCAGGCGGGTGAGACCGTGCTGATCACGGCGGCGACCTCGGCGATCGGGCTGGTCGGCATGCAGGTCGCGGCCGAGCTGGGCGCTGCCCGTGTGCTCGCGACGACGCGGAACGAGGAGCGGCGGACACTGCTGGAGCGGGCAGGTGCGGACGCTGTCGTGGTCACGAGCAGCGAGGACCTGGCGGCCCGGGTGCGGGAACTGACCGACGGCACGGGTGCCGACGTCGTCCTGGACCACGTCGGCGGGGACGCTCTCGACGGGGCGATCGCCGCAGCGCGGCCCGGCGGCCGGGTGATCAGCGTGGGACGCCTGGCAGGGCCCACGGCGGAGATCGACCTCTTCGCCCTGGCCCGCAGCGGTGCCGTCCTGCAGTCCGTCTCCTTCGGCTTCACGCCGGTGGAGATCATCGGCAGGCAGCTCGACGGAGTGACACGAGACCTATCGGACGCCGTCTCCCGAGGACGCGTCGCACCGGTGATCGGCCGGCGCGTCCCCTTCGCCGACCTGCCGGAGACGCTCGCGGCGCTGGCCGCCGGCGAGCACGTCGACGGCAAGACCGTGGCCGTGCTCGACGGCCGGTGAMSTMPALQTVPGSARPDLAQVPVPEPTEEQILVRTRAVAVNNADVAVAADVRVPGFEFCGEVVAVGTAVESVAPGQRVAGVGAGAFAEYVAVPHRHVMSVPEGVPSDVAAALPTALLTEYGALRRAGLQAGETVLITAATSAIGLVGMQVAAELGAARVLATTRNEERRTLLERAGADAVVVTSSEDLAARVRELTDGTGADVVLDHVGGDALDGAIAAARPGGRVISVGRLAGPTAEIDLFALARSGAVLQSVSFGFTPVEIIGRQLDGVTRDLSDAVSRGRVAPVIGRRVPFADLPETLAALAAGEHVDGKTVAVLDGRPGPT0013255_4206DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_06451831ribX_6Riboflavin transport system permease protein RibXATGAGCACCACCACACCTACCGATGCCCGCACCACGAGCGCGACACCGAGGACGACACCGCGGCGTCGTCGCGACGCCGGCAAGAGACGCCAGGTCGTCGGCTCACTCGTCGTCCTCGCGGTACTTCTTCTCGCCTGGCAGTTCCTTCCCACCGCGCTGGGGACGCCGTCGTACGTCGTGCCCGTGTTCAGCGACGTCCTCGCCGCGCTGACCGACCCGGCCGCCTTCCCCGTCTACCTCGAGGCCACCGTGGCCACGATGACCGAGGTCCTGCTCGGCCTCGCGATCGGGGTGACGCTCGGGCTCGTGCTGGCCATCGCCCTCGCCCAGCTGCCCACGGTGTACGGGATCGTCTTCCCCTACATCGTCGCGATCGAGTCCATCCCGAAGGTCGCGGTCGCCCCGTTGTTCGTGATCTGGTTCGGGTTCGGCCTGTCGTCGAAAGTCGTGGTCGTGGTACTCCTGGCTTTCTTCCCCGTGCTGGTCAACACCCTCCACGGGCTGCGCGGAGTCGACAAGGACCAGGTGGACCTCTTTCGCGTCAACGGGGCCAGCCCCATGCAGATGCGCCTCCGCCTGCTCGTCCCTGCCGCGCTGCCTCAGATCTTCAGCGGACTCGAGCTGGCGGTGGCCAACGCGATGATTGGAGCGATCGTGGCAGAGTTCGTGGGTGCCCAGCAGGGCCTCGGTGTGCTGATCCTGCAGGCGCAGGGCCGGATGGAGACGCCGGCGGTCTTCGCCCTGCTGATCATCCTGTCCGCACTCGGCATCACCCTGAACGTCCTGGTCCGGCTGCTCCGCCGCGTCGTGGTGACCTGGGAACAGCACTGAMSTTTPTDARTTSATPRTTPRRRRDAGKRRQVVGSLVVLAVLLLAWQFLPTALGTPSYVVPVFSDVLAALTDPAAFPVYLEATVATMTEVLLGLAIGVTLGLVLAIALAQLPTVYGIVFPYIVAIESIPKVAVAPLFVIWFGFGLSSKVVVVVLLAFFPVLVNTLHGLRGVDKDQVDLFRVNGASPMQMRLRLLVPAALPQIFSGLELAVANAMIGAIVAEFVGAQQGLGVLILQAQGRMETPAVFALLIILSALGITLNVLVRLLRRVVVTWEQHPGPT0001145_6176DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
AK018_06452768cmpD_2Bicarbonate transport ATP-binding protein CmpDGTGAGCGCGCTGGTCGAGCTCGACCGGCTCGGAAAGGTCTACAGCACGCGCACCGGCGACGTCACGGCTCTCAGCGAGGTCACCCTCAGGATCGAGGACGGCGAGTTCGTCGCCGTCGTCGGGCCCTCGGGGTGTGGCAAGACGACGCTGCTCAAGATCCTGGCGAACCTCGAGCAGCACACGTCGGGCGTCGGCATCCTGGGCAACAAGGAGCTCGGGGCGAACCGCTCCGACGACGTCGGGATGGTCTTCCAGAAGGCCACCCTGCTGCCATGGCTCGACATCCTGTCCAACGTGCTGCTCCCGGTGACCCTGAAACGGCGCGCCACGGCCGCCGACAAGGAGAACGCCATGGACCTCCTGCGCATGGTGGGGCTCGGGGAGTTCGCCACGAAGCGGCCCCACGAGCTCTCCGGCGGGATGCAGCAGCGGGCCGCGATCTGTCGAGCACTGGTGCACGAGCCTTCCCTGCTGCTCATGGACGAGCCCTTCGGCGCGCTCGACGCGATGACCCGAGACGTGCTCAACGTGGAGGTCAACCGGATCTGGCGAGACACCCACAAGACGGCCGTCCTGATCACCCACTCGATCCCGGAGGCGGTGTTCCTCGCGCAGCGCGTGATCGTCATGAGCCCCCGCCCAGGGCGCATCGTCGACGAGATCACGGTCCCGTTCGGCCCCGAACGCACCCTCGAGCTCATGGGGACTCCCGAGTTCGGTTCCCTGTGCGCCCAGATCCGCCGACACTTCGAGGTGAGCGCAGCATGAMSALVELDRLGKVYSTRTGDVTALSEVTLRIEDGEFVAVVGPSGCGKTTLLKILANLEQHTSGVGILGNKELGANRSDDVGMVFQKATLLPWLDILSNVLLPVTLKRRATAADKENAMDLLRMVGLGEFATKRPHELSGGMQQRAAICRALVHEPSLLLMDEPFGALDAMTRDVLNVEVNRIWRDTHKTAVLITHSIPEAVFLAQRVIVMSPRPGRIVDEITVPFGPERTLELMGTPEFGSLCAQIRRHFEVSAAPGPT0001140_6461DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
AK018_064531362hypothetical proteinGTGAACATCCCCCGCTACACCGAGGGCATCCCTGCGATCGACCACCACTCGCACGCCGGATACGTCCGGCCCGGCCAGCCCGTCACCGGCGTCGACCACTACCTGCTCGAGGTGGCCCACGGCCACGTCGAGGGCCGTGTCCCCCACGCCGACTACCAGCGCTACATGAGCCTGCACGAGAGCGGCGACGAGACGGGCGCCCACCGGCTGGCGGTCGAGCTGGGGATACCGGACCTGATCCGGGAGAGCCGCACGTTCCAGCAGACTTCCGTCCACGCCGTCGCCCTGCGCGAGGGGTGCGAGGCCCTGTACGGACCGGTGCCGAGCGACCGGATCGACGAGGTCAGCCGCCACGCGCGGCAGACCGACCCGGCCGGGCTCTACGACCGCGCCCTGCTGCTCTCGGGGACGTCGGCGGTGCTCACCGACATCCCCGAGATCGACTCCGAGGTCTGGCCGCACGAGCGGTACAAGCCGATCGCGAGGATCGACCCGTACCTCTACCCGTTCGGCCACCCGCGCTGGGAGGGGCGAGGGACCGACGCACCCCGGTTCCGCCGGATCTTCTGGAGGATCCTTCAGCGCCAGCTCGAGATCGCCGGGACCTCTCTGCCGACCACCCTCTCGGAGTACACGGACTTCGTGCTCTCCTCGCTGGCACGCCGACGAGACGCCGGCTTCGTCGGGCTCAAGATCGCATCGGCGTACGTACGGTCCCTGGACTTCGTCCGCACCGACCACGCGACCGCCGAGGCCGCCTGGCACACCCTGCGCACCGGAGCCGACCAACCGTTCGACGGTCGCGAGGGTGAGGCGGATCTCGAGCCGGCCGCCCACAAGGCGCTGGCCGACCACCTGGCCTACGCCATCGCCGAGTGGGCCGTCGGGGCCGGGCTGCCGATGCAGATCCACACCGGGTTCGGCCACACGGAACCCGGTCTGCGCATCTCGACGGCGAACCCGCTCCTGCTCGAGGAGTTCCTCGGCGACCCGGCCCTCAACACCCTGCGGGTCGTGCTGATCCACGGCGGCTACCCGTACTCCTCGAACCTGGCGGCGCTCGCGCAGATGCACGGCAACGTCCGCCTGGACTTCTCCTGGATGCCGTACCTGCACCACCACGCCGTGGTGCGCGTCCTCGAGGAGTGGCTCGAGCTGCTGCCGGCCGACCGTGTCCTCTTCGGGACCGACACCGGCTCCCCGGAGCTCCATGTCTCGGCCACGGCACGGAGCCGCACGGCGCTGGACCGGGTGCTGCACGCCGGCGTGACCGACCGGCTCTGGACCGTCGGTCAGGCCACCTGGCTGGCGGAACGGGTGCTGCACCGCAACCTCTGCGACGTCTACGGGATCGACCCGTGAMNIPRYTEGIPAIDHHSHAGYVRPGQPVTGVDHYLLEVAHGHVEGRVPHADYQRYMSLHESGDETGAHRLAVELGIPDLIRESRTFQQTSVHAVALREGCEALYGPVPSDRIDEVSRHARQTDPAGLYDRALLLSGTSAVLTDIPEIDSEVWPHERYKPIARIDPYLYPFGHPRWEGRGTDAPRFRRIFWRILQRQLEIAGTSLPTTLSEYTDFVLSSLARRRDAGFVGLKIASAYVRSLDFVRTDHATAEAAWHTLRTGADQPFDGREGEADLEPAAHKALADHLAYAIAEWAVGAGLPMQIHTGFGHTEPGLRISTANPLLLEEFLGDPALNTLRVVLIHGGYPYSSNLAALAQMHGNVRLDFSWMPYLHHHAVVRVLEEWLELLPADRVLFGTDTGSPELHVSATARSRTALDRVLHAGVTDRLWTVGQATWLAERVLHRNLCDVYGIDPNANANANANA
AK018_064541107thiY_2COG0715Formylaminopyrimidine-binding proteinGTGTCCGTCCACTCCCGTCGGTCGCTCTTCGGAGCCACCGCCACCCTCCTGCTCAGCGCCACGGCGCTGACGGCCTGCTCGTCCGGCACCGGATCCGCTGACAGCACGGACGAGCCCGTCACCGTCCGCTTCGGCATCCCCACCCAGATGGGGGCCAACAACTCCCCGATGGCTGTCGGACAGCACCTCGGATACTTCGAGGAGGAAGGCATCGACCTGGAGATCGTCCACACGACCGACTCGACCTCGATCGTCCAGGGGATCAACACCGGCGCCCTGGAGATCGGCTCCACACCGCCCGAGCCGCTGTGGCAGGCGATCGAGTCCGGAACCGACCTGCGGCTCGTCTACAACTACATCCGTCAGCAGACCGGGTCGATCGTCTCGCTCGCCGACGGACCGGTCCAGGAGCTCACCGACCTCGAGGGAGCCGCCGTCGGGCAGGCCAGCCTCGGCAGCAGCAACCTGCTGCTCTCCAACGGGATCCTCGACTCGGTCGGGTTCACCGAGGGTGTGGACTTCACCAACGTCGCGGTGGGGACCGGAGCCGCAGCCCTGCAGGCGATGGAGACCGACGAGGTCCAGGCGCTCTCCCTGTGGGACACCGAGTACGCGGCGTTCGAGGCCACCGGCGCCGAGCTGAACTACTTCACCACGCCCGAGGTCGAGTCGCTCTTCTCCACGACCTACTTCACCTCCCCGGACTACGTCGAGTCCTCGCCGGAGGTCCTCGAAGGGTTCGGTCGCGCGGTCGCCAAGGCCACGCTCTTCACGGCGACGCGCCCCGAGGCGGCGTTGCAGATCATGTACGCCGACTACCCGCAGACACGACTCGCGGGCGTGAGCGAGGAGGAGCAGCTGGCAATCGACCTCACCTCCCTCGAGCGCCGGATCGACCTGCTGATCGCCGGCGACCCGGCGGCGAACGGGACCTGGGGCGCCTACTCGGCCGAGGCCGTGACCTCGTGGGCGGACTTCGCGGAGTCGGCGGGCATCGTCGGCGAGCCTGTCGACGCCCAGGCGCACGTGCAGAACACGTTCGTCGAGGCGTACAACGACTTCGACCAGAACGCCGTCGTGGCGGCCGCCGAGGAGTGGTCCGAGTGAMSVHSRRSLFGATATLLLSATALTACSSGTGSADSTDEPVTVRFGIPTQMGANNSPMAVGQHLGYFEEEGIDLEIVHTTDSTSIVQGINTGALEIGSTPPEPLWQAIESGTDLRLVYNYIRQQTGSIVSLADGPVQELTDLEGAAVGQASLGSSNLLLSNGILDSVGFTEGVDFTNVAVGTGAAALQAMETDEVQALSLWDTEYAAFEATGAELNYFTTPEVESLFSTTYFTSPDYVESSPEVLEGFGRAVAKATLFTATRPEAALQIMYADYPQTRLAGVSEEEQLAIDLTSLERRIDLLIAGDPAANGTWGAYSAEAVTSWADFAESAGIVGEPVDAQAHVQNTFVEAYNDFDQNAVVAAAEEWSEPGPT0001135_1345DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
AK018_06455597puuR_3HTH-type transcriptional regulator PuuRATGACGACGCCGGACAACTCGGCACTCGGCTCACGGGTCCGCGAGCTCCGCGCCGTCACGGGCCTGTCGATGCGGAACCTCGCCGCGCGAGCCGGGGTCAGCGCCGGCTACATCAGCCAGATCGAGCACGGCCAGGCCAACCCGAGCCTGACCGTCCTGCGCTCGATCGCGGAGACGTTCGGCGTCCCGTGGCTGGAGCTCTTCCAGTCCCCCACCACCACCGGCCGAGTCCTGCGCGCAGCGGACCGGCCCCGCATCCTCACCGACGGCGGCGTGACCCACTACGAGGTCACCCAACCGCCCCTCGGCAACGTCGAGGTCCTCGTCACCGAGTACGCCCCCGGCCAGGGCACAGGAGACGAGGGATACACCCACGGAGAGTCGCAGGAGATCTGCCTCGTCACCCGGGGCCGTCTCCAGATCACCGTCGACGGCGAGACCACCACTCTCGCCACCGGCGACAGCATCGAGTACCGCACGAACGTGCCGCACGCCGTCCACAACGCGGGGCCCGAGCCCGCCGAGGCCGTCTGGGTGGTGTCCCCACCATCCTTCCCCGGTTCGTCCGGCCGCAGCGCCTCCAGCGCCGACGCCTGAMTTPDNSALGSRVRELRAVTGLSMRNLAARAGVSAGYISQIEHGQANPSLTVLRSIAETFGVPWLELFQSPTTTGRVLRAADRPRILTDGGVTHYEVTQPPLGNVEVLVTEYAPGQGTGDEGYTHGESQEICLVTRGRLQITVDGETTTLATGDSIEYRTNVPHAVHNAGPEPAEAVWVVSPPSFPGSSGRSASSADANANANANANA
AK018_06456360hypothetical proteinATGACGATCCGACTCACGGTCGCGGGCCGTGACCTCACCGCCACCCCGGCGGACGGCGCGGCCGCGCGCGACTTCCTCGCGCTGCTGCCGCTGACCCTCACCCTCGACGACTTCCACGGCATCGAGAAGGTCGCCGACCTGCCGTCCCGCCTCTCCACGGCGGGCGAGCCGGACGGGACCACCGGGAACGCCGGCGACCTCATGTACTACGCCCCCTGGGGCAACCTCGCGATCTTCTACCGCGACTTCGGTCACGCGCCGGGTCTGGTGCGGCTCGGGGCGTTCGACGACGCGGACGCGGCCGCCGTGCTGGGCGCGCTGGACGGTCCGACCGAGGTCACGATCTCGGTCGTCGACTGAMTIRLTVAGRDLTATPADGAAARDFLALLPLTLTLDDFHGIEKVADLPSRLSTAGEPDGTTGNAGDLMYYAPWGNLAIFYRDFGHAPGLVRLGAFDDADAAAVLGALDGPTEVTISVVDNANANANANA
AK018_06457972tdh_3L-threonine 3-dehydrogenaseATGCGAGCACTCGGACTGACCACCTACGGCGGACCCGAGGTCCTGCGCCCCGTGGCGTTGCCCGACCCTCATGCGGGACCGGGCGAGGTCCGGGTCCGCGTCCGCGCCGCCGCCGTCAACCCGGCAGACGTCATGCTCCGCGACGGGTCGCTGGCCGCGATCTACGACGGCCTCGAACCGCCGTACGTCCCGGGGATGGACGTCGCGGGAGTCGTGGACGAGGTAGGCCCGGACGTGGACCCGGCCCTCGCCGTCGAAGCGGGACGGGCCGTCGTCGGCATCGTCGACAACACCGGGAGCCACGGCGGCTACAGCGAGCACGTCGTGCTGCCGGCCGCGTCCGTCACCGCGGCACCGGCCGGGGCGAGCTTCGCCGAGGCCGCGTCCTTCCTCATGAACGCGCTCACCGCCCGCAACGCCCTCGACGTCCTCGCCCTGCCCGAGGGATCCTCCGTGCTCGTGACCGGTGCGGCCGGGGCGGTCGGCGGCTACGCCGTCGCGCTGGCGCACGCCGAGGGCCTCCGGGTGGTCGCTCTCGCCTCACCCGCCGACGAGGCGGCCCTGCGCGCGGCCGGCGCGGACGAGTTCGTCCCGCGCGGGGACGACGCCGTCGTGGACGTCCTCGGCCTCGTGCCCGGCGGCGTCGACGCCGTGATCGACGCCGCCTGCCTGTACGACCGGATCACCCCGGCCGTCCGCGACGGCGGCATGCTCGTCGACCTGCGCTTCTGGGACGGCGACCCCGGGCGCGGCATCCGTGTCGCGCACGTCAACGTCCGCGAGCGTGCCACCGACCACGCCGCGATCGTCCGGCTGCGCGAGCAGGTCGAGGCGGGCCTGCTCGCGATGCGCGTGGCGGAGACCTTCTCCGCGGCCGACGTCTTCGACGCCCACCACCGCCTCGACCGGGGCGGACTGCGCGGACGGATCGTGCTGCTCTTCGGCGACGGTCGCGAGGGGACCACGCCGTGAMRALGLTTYGGPEVLRPVALPDPHAGPGEVRVRVRAAAVNPADVMLRDGSLAAIYDGLEPPYVPGMDVAGVVDEVGPDVDPALAVEAGRAVVGIVDNTGSHGGYSEHVVLPAASVTAAPAGASFAEAASFLMNALTARNALDVLALPEGSSVLVTGAAGAVGGYAVALAHAEGLRVVALASPADEAALRAAGADEFVPRGDDAVVDVLGLVPGGVDAVIDAACLYDRITPAVRDGGMLVDLRFWDGDPGRGIRVAHVNVRERATDHAAIVRLREQVEAGLLAMRVAETFSAADVFDAHHRLDRGGLRGRIVLLFGDGREGTTPPGPT0013255_9511DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_064581449lcfB_5COG0318Long-chain-fatty-acid--CoA ligaseGTGACGCTCACCTACGCCGAGCTCGACGACCGGGCCACGCAGCTCGCCGGCGCGCTGCGCGAGGCCGGCTACGGCGTCGGCGACCGCATCGCCACCGTCACCGGCAACAGCGCCGACCAGGTCGTGCTGTTCTTCGCCTGCGCCCAGGCGGGGCTGGTGCTCGCCCCGCTGTCGTGGCGCTCCTCCCCCCGCGAGCTCGCCGACCAGATCGACCGCGCCGACCCCGCTCTCGTGCTCGTGGAGCAGGAGTTCGCCACTCTGGCCGCCGCGGCGCTCGACCGGCTCGTCCTGCCCCCGCGCACCACCGGGCTGGGCCGCTCCGGCGTCGAGGCTGCCGTCCCGGCGCCCTCGCGTCGCCGGGACGACAGCCCCGGCGAGCAGCGCGACGTGCAGGACGACGACCCGCTGCTGCTCCTGTTCACCTCGGGCACCGCGGGCCGCCCCAAGGGCGCCGTGCTGACCCACGCGAGCTGCTTCTGGACCAACCTGGCCTTCTCGCGCACGGTGGAGATGTCGCACGACGACGTCGTCCTCAGCGTGCTGCCCCAGTTCCACGCGGGCGGGTGGAACATCCAGCCCCTGCTGGCCTGGTGGAGCGGTGCGACCGTGGTGCTCGAGCGCACCTTCGAGCCCGAGCGGGTGCTCCGGCTGATCGCCGAGCGGCGTGTGACGACGATGATGGGCGTGCCCACCCAGTACCTGCTCCTGGCCGAGCACCGCGGCTTCGCCCGCACCGACCTGACCTCGCTGCGCACCGCCGTCGTCGGCGGGGCGCCGATGCCGGAGCCGCTGCTGCGCACGTGGCACCGCCGCGGTGTCGCCCTGACCCAGGGGTACGGCCTCACCGAGGCCGGGCCGAACGTGCTGTGCCTGCCCGACGACGAGGCCCGCGAGCGCCCCGGGTCGGCCGGCAAGCCGTACCCGCACGTGGACGTCGCGATCGCCGACCCGGCCACGGGCGAGCGCCTGGAGGGCGCCGCCACCGGTGAGCTGCTCGTGCGGGGGCCGGGGCTGTTCGCCGGGTACTTCCGTGACCCGCGGGCCACGGCGGAGGCGTTCGCGGGCGGCTGGCTGCGCACCGGGGACCTGGTCGAGCGGGACGCGGACGGCTACCACCGGATCGTGGACCGCCTCAAGGACCTCTTCATCGTCGGCGGGGAGAACGTCTGCCCGGCCGAGGTCGAGGCGGTGCTGCACCGGCACCCGGGCGTCGCCGAGGCGGCCGTCGTCGGCGTGCCCGACGACCGCTGGGGCGAGGTGGGCCACGCGTTCGTCGTGCCCCGGGCCGGTTACGCCACGGACGCCGAGGAGCTGGAGGCGTACTGCCGCGCCGAGCTCGCGCACTTCAAGGTCCCGCAGCGGTTCGAGCTCGTCGACGCGCTGCCCCGCACGTCCCTGCACAAGATCCCCCGGCACGCCCTGCGTGCCCGCACCGAGGAGGCCCGATGAMTLTYAELDDRATQLAGALREAGYGVGDRIATVTGNSADQVVLFFACAQAGLVLAPLSWRSSPRELADQIDRADPALVLVEQEFATLAAAALDRLVLPPRTTGLGRSGVEAAVPAPSRRRDDSPGEQRDVQDDDPLLLLFTSGTAGRPKGAVLTHASCFWTNLAFSRTVEMSHDDVVLSVLPQFHAGGWNIQPLLAWWSGATVVLERTFEPERVLRLIAERRVTTMMGVPTQYLLLAEHRGFARTDLTSLRTAVVGGAPMPEPLLRTWHRRGVALTQGYGLTEAGPNVLCLPDDEARERPGSAGKPYPHVDVAIADPATGERLEGAATGELLVRGPGLFAGYFRDPRATAEAFAGGWLRTGDLVERDADGYHRIVDRLKDLFIVGGENVCPAEVEAVLHRHPGVAEAAVVGVPDDRWGEVGHAFVVPRAGYATDAEELEAYCRAELAHFKVPQRFELVDALPRTSLHKIPRHALRARTEEARPGPT0008380_15103DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
AK018_06459651hypothetical proteinATGAGCAACGCGCCGCGCACCGCCCGTGGGAACCGGACCCGCGCGAAGATCCTCGCCGCGGCCGAGCAGGTGTTCGCCGACCTGGGCTACCACGACGCCTCCATCGTGAAGATCACCGAGGCTGCCGGCGTCGCGATGGGCACCTTCTACCTGTACTTCGAGGGCAAGCACGCCGTCTTCGTCGAGCTCGTGGACGACCTGAACCAGCGGGTGCGCCACGCCATGTACGAGGCGAGCTCGCAGGCGCCGAACCGGCTGGAGGCCGAGCGAGCCGGGTTCCGCGCGTTCTTCCGGTTCACCGCCGAGCACCCGGCGCTGTACCGGGTGATCCGGCAGGCGGAGTTCGTCGCCCCGGAGGCCCTGCGCCGCCACTACCAGAACATCGTCGAGGGGTACGTCACCGGCCTGGACAAGGCGCGGGCGAACGGCGAGGTCGGCGACGTCGACCCCACCGTGGCCGCCTGGGCGCTGATGGGCATCGGCGAGATCGTCGGGATGCGCTGGGTGCTGTGGGGCGGGGCCGACGGCCCGGCCGACGGGGGCGCACCGGGCCAGGGCGACCGGCTCCCGGAGATCCCCGAGGACGTGTTCGCCCAGACCATGCAGTTCATCGAGCGGGCGCTGGCGCCCCAGGAAGGATCGTCCGCATGAMSNAPRTARGNRTRAKILAAAEQVFADLGYHDASIVKITEAAGVAMGTFYLYFEGKHAVFVELVDDLNQRVRHAMYEASSQAPNRLEAERAGFRAFFRFTAEHPALYRVIRQAEFVAPEALRRHYQNIVEGYVTGLDKARANGEVGDVDPTVAAWALMGIGEIVGMRWVLWGGADGPADGGAPGQGDRLPEIPEDVFAQTMQFIERALAPQEGSSANANANANANA
AK018_06460756bdhA_2D-beta-hydroxybutyrate dehydrogenaseATGAGTACCGAGACGTACCTGGACGGCCGCCGTGCCGTCGTCACCGGCGGCGGCAGCGGGATCGGCGCGGCCTGCGCGGCGGCGCTGGCCGCCCGCGGGGCCCACGTCGTCGTGGCGGACCGGGACGCGGAGGCGGCGAAGCGGGTCGCGGCCGACGTCGACGGGGAGGCCTGGGTGGTCGACCTGGCCGACACCGCCACGCTGGACGACCTGACGCTCGACGCCGACGTGCTGGTCAACAACGCCGGCATCCAGCGGGTGAGCCCGATCGAGGAGTTCGACCCGGAGGCGTTCCGTCTCATCCAGCGCATCATGCTCGAGGCGCCGTTCCTCCTGATCCGGGCGGCTCTGCCGGGGATGTACGCCCGGGGCTGGGGCCGGGTCGTCAACCTCTCCTCCGTGCACGGGCTGGTCGCCTCGCCGTTCAAGTCCGCCTACGTGGCGGCCAAGCACGGCCTGGAGGGACTGTCGAAGGTCACCGCGCTGGAGGGCGGCCCCCACGGGGTGACCAGCAACTGCGTCAACCCGGGCTACGTGCGCACGCCGCTGGTCGAGAAGCAGATCGCCGACCAGGCCCGCGTGCACGGCATCGACGAGTCCGAGGTGCTGGAGAAGGTGCTGCTGACCGAATCGGCGATCAAGCGGCTCACTGAGCCGACGGAGGTCGGCGAGCTGGTCGCCTGGCTCGCGGGGCCGTCCGCCCGGATGGTCACGGGGGCCTCGTGGACCGTCGACGGCGGCTGGAGCGCCAGGTGAMSTETYLDGRRAVVTGGGSGIGAACAAALAARGAHVVVADRDAEAAKRVAADVDGEAWVVDLADTATLDDLTLDADVLVNNAGIQRVSPIEEFDPEAFRLIQRIMLEAPFLLIRAALPGMYARGWGRVVNLSSVHGLVASPFKSAYVAAKHGLEGLSKVTALEGGPHGVTSNCVNPGYVRTPLVEKQIADQARVHGIDESEVLEKVLLTESAIKRLTEPTEVGELVAWLAGPSARMVTGASWTVDGGWSARPGPT0008310_2599DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008310-bdh-K00019NANA
AK018_06461978menH_92-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseGTGACCGCCGCACCGGACGCCGTCACGCTCCGGCACGCCGTGCCCGGGCACCACTACCGGACGCTCGACGCCCCGGTCGACGGCGGTGCCCTGCGGGTGGGCGTGTGGGACCCGGTCGACGACGCCGGCTCCGCGCTCGTCGACGCCCCGACGGTCCTCGCGGTCCACGGCATCACCGCCTCGCACCTGGCCTGGCCGCTGTTGGCCGGGAAGCTCCCCGGGGTGCGGGTGGTGGCGCCCGACCTGCGCGGCCGGGGACGCAGCCGTGACCTGCCGGGGCCCTTCGGCATGGCTCGGCATGCCGACGACGTCGCCGCGGTGGCCCGTGCCGTCGCGGACGGCCCGGTGCCGGTGGTCGGGCACTCCATGGGTGCCTTCGTCGCCGTGGCCCTGGCCGACCGGCACCCCGAGGTCGTCGCGGGTCTGCTGCTCGTCGACGGCGGCGTGCCCCTGCCCGAGCCGCCCGGGCTCGCCCCGGACGCCACGTCCGCCGAGCGGCTGCGCGCCGTGCTCGGGCCGGCGGCCGACCGGTTGCGGCGCACGTTCCCCGACGCCGAGGCCTACCGATCCTTCTGGTCGCAGCACCCGGCGTTCACCGCCGTGTGGGGACCGGCCGTGCTGGACTACGTCGACTACGACCTGGTGGCCACGCCGGACGGGTGGCGTCCGGCGTCGAACCCGGACGCGGTCGCCAGCGACTCCCTCGACCTGCACGACGGCGGACCCGTGGGCAGCGCACTGACGCGCCTGGAGCGGCCGACGACCCTGCTGCGCGCTCCCCGCGGGCTGCTGGACGAACCGAGCCCGCTGTACGACCCCGCGCACGTGGCACGCTGGACCCGGCGGACCCCGGCGCTGCGGCCCCGCGACGTGCCGGACGTCAACCACTACACGATCATCATGGGCCGTGACGGCAGCGCCGCCGTCGCGGCGGAGACACGCGCCCTGCTGGGCGCCCAGGACGAGGAGGTCCGATGAMTAAPDAVTLRHAVPGHHYRTLDAPVDGGALRVGVWDPVDDAGSALVDAPTVLAVHGITASHLAWPLLAGKLPGVRVVAPDLRGRGRSRDLPGPFGMARHADDVAAVARAVADGPVPVVGHSMGAFVAVALADRHPEVVAGLLLVDGGVPLPEPPGLAPDATSAERLRAVLGPAADRLRRTFPDAEAYRSFWSQHPAFTAVWGPAVLDYVDYDLVATPDGWRPASNPDAVASDSLDLHDGGPVGSALTRLERPTTLLRAPRGLLDEPSPLYDPAHVARWTRRTPALRPRDVPDVNHYTIIMGRDGSAAVAAETRALLGAQDEEVRNANANANANA
AK018_06462873scoA_2COG1788putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit AATGAGCACACCCCTTCCCCCGGCCGCGGAGCCGACCGGCCTCGACAAGGTCGTCGGCAGCGCTGCGGAGGCCGTCGCCGACATCCCGGACGGCGCGTCGCTCGCCGTCGGCGGTTTCGGCCTGTGCGGCAACCCGATCGCCCTGATCGAGGCGCTGCTGGCCCAGGGCACGAGCGACCTGTCGGTCGTGAGCAACAACTGCGGCGTCGACGACTGGGGTCTCGGCGTGCTGCTGAACGCCGGACGTCTCCGCAAGATGACGTCGTCGTACGTCGGCGAGAACAAGGAGTTCGAGCGCCAGTTCCTCACCGGCGAGCTCGAGGTCGAGCTCACCCCGCAGGGCACGCTCGCCGAGAAGCTGCGCGCCGGCGGCGCGGGCATCGCCGCGTTCTACACGCGCACCGGCGTCGGCACGCAGGTGGCCGACGGCGGTCTGCCGCGCCGGTACGACGGCTCCGGCGGGATCGCGGTCGGCAGTCCCGCCAAGGAGATCCGCACCTTCCCCGTGGCGGCGGCCGACGGCGTCCACGACCAGGAGTTCGTCCTCGAGGAGGCGATCAGCACGGACTTCGCCCTGGTGCACGCCGCGAAGGGCGACCGGTTCGGGAACCTCGTCTTCCACCGCTCGGCACGCAACTTCTCCCCGCTGGCGGCGATGGCCGGCCGCGTGTGCGTGGCCCAGGTCGAGGAGCTGGTCGAACCCGGCGAGATCGATCCCGACGACGTCCACCTGCCCGGCGTGTTCGTGCACCGCATGGTCGTCGTCGGCCCCGACGTCGAGAAGCGCATCGAGCGCCGCACGGTGCGCGAGGACGCGTCCCCGGCCGGCACCGCAGGCACGACGAACGGCTCCACCGCACGGAAGGAGGGCTGAMSTPLPPAAEPTGLDKVVGSAAEAVADIPDGASLAVGGFGLCGNPIALIEALLAQGTSDLSVVSNNCGVDDWGLGVLLNAGRLRKMTSSYVGENKEFERQFLTGELEVELTPQGTLAEKLRAGGAGIAAFYTRTGVGTQVADGGLPRRYDGSGGIAVGSPAKEIRTFPVAAADGVHDQEFVLEEAISTDFALVHAAKGDRFGNLVFHRSARNFSPLAAMAGRVCVAQVEELVEPGEIDPDDVHLPGVFVHRMVVVGPDVEKRIERRTVREDASPAGTAGTTNGSTARKEGPGPT0008325_14DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008325-scoA-K01028NANA
AK018_06463702scoB_2COG2057putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit BATGGCGCTCACCCGCGACGAGATGGCCGCCCGCGCCGCCCGCGAGCTGCTCGACGGCTGGTACGTGAACCTCGGCATCGGCCTGCCCACGCTGGTGCCGAACTACGTGCCGGCGGACAAGCACCTGGTGCTGCAGAGCGAGAACGGCATCCTGGGCGTCGGCCCGTTCCCCACCGAGGACGAGGTCGATCCCGACCTCATCAACGCCGGCAAGCAGACGGTAACCACGCTGCCCGGCGCCGCGATCTTCGACTCGGCGACCAGCTTCGCGATGATCCGGGCCGGCAAGATCGACGCCGCGATCCTCGGGGCGATGCAGGTCTCCGCCGCCGGCGATCTCGCGAACTGGATGATCCCCGGCAAGATGATCAAGGGGCCCGGGGGCGCCATGGACCTCGTCCACGGTGCCGCGCGGCTCATCATCGTCATGGAGCACACCGCCCGGGACGGGTCGCCGAAGATCGTGCACGAGTGCTCGCTGCCGCTGACGGGCCGGGAGGTCGTGCACCGCATCATCACCGACCTCGCCGTCCTCGACGTCACCCCCGACGGCCTCGTGCTGCGCGAGCTCGCCCCCGGCGTGACCGAGGAGGAGGTCCGCGAGCGCACCGAGCCGGCGATCACCGTCGAGCTGGACGACTCCCCGCTGGCCGCGGCCCCGCACGCCGTGCGCCCGCCGGCCGCGGTCGGGGGCACCGCGTGAMALTRDEMAARAARELLDGWYVNLGIGLPTLVPNYVPADKHLVLQSENGILGVGPFPTEDEVDPDLINAGKQTVTTLPGAAIFDSATSFAMIRAGKIDAAILGAMQVSAAGDLANWMIPGKMIKGPGGAMDLVHGAARLIIVMEHTARDGSPKIVHECSLPLTGREVVHRIITDLAVLDVTPDGLVLRELAPGVTEEEVRERTEPAITVELDDSPLAAAPHAVRPPAAVGGTAPGPT0008330_31DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008330-scoB-K01029NANA
AK018_064641134menH_102-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseGTGAGCGGGCGTCCGGTACGTCGCAGCGACGTCGCCACGGCCCGCGGCACGTTCCACGTCCGTGACACCGGCCCGGGCGGCGCGGCGACCCTGCTGTGCGTGCACGGCAACTGCTCGTCGTCGGCGTTCTTCGCCCGCCTGCTCACGACGCTGCCCGACGACGTGCGCGGCGTGGCCGTGGACCTGCGCGGGTTCGGCGACAGCGAGCCGCTGCCGATCGACGCCACCCGCGGGCTGCGCGACCTCGCCGACGACGTGGCGGCGGTGCTCGCGGCGCTGGGGCTGGACTCGACCGGTGCTCCCCCGCTGACGGCACTCGGCCACTCGGCCGGGGCCGGGGTCGTGCTGCAGCTCGCGATCGACGACGCCGCGCGGTTCGCCGCGCTGGTGCTCGAGGCGCCGATGTCCCCGTACGGGTTCGGCGGCACCCGCGACCTGGCGGGGACGCCGACCGCTCCCGACCATGCCGGGTCCGGCGGCGGGACGGCCAACCCGGACTTCGTGGCCGCGATCGCGGCGGGCGACCGGTCCCACGAGCCGGGGTCCCCCCGCGGCGTGCTGCGCGGCTTCTACGTCGCCGACCCCGTCACGATCGCCGACCAGGAGGAGGAGCTGCTGGACTCGGTGCTCAGCACCCGCACCGGACCCGACCACTACCCGGGCGACCTGACGCCGTCGGACCACTGGCCGTCCGTGGCGCCCGGCACGCGCGGCATGAACAACGCCATCTCCCCGCGCTACCTCGACCTGTCCGGGTTCGCCGCGGTCACCCCGCAGCCCCCGGTGCTGTGGGTGCGCGGCGAAGCCGACGCGATCGTCTCGGACACCTCGGCGCTCGACCTGGCCCAGCTCGGGGCGCTGGGAGCCGTGCCGGGCTGGCCCGGCCCCCAGGCGTGCCCGCCGCAGCCCATGGTCGGCCAGACCCGGGCCGTGCTGGAGGACTACGCGGCCCGCGGCGGGGCGTACCGTGAGGTCGTGCTCTCCGACGTCGGCCACTCGCCGCACCTGGAGAGCCCGGACGAGGTGCTCGCGCTCGTCGTGGACGCCGTGCGCGCCCCCGTCCGGACCATCGAGCCCGTGGCGGCCGCCGGCGATCCCGGCGCCGCCCTCGACGACGAGGAGCGAGCCTCATGAMSGRPVRRSDVATARGTFHVRDTGPGGAATLLCVHGNCSSSAFFARLLTTLPDDVRGVAVDLRGFGDSEPLPIDATRGLRDLADDVAAVLAALGLDSTGAPPLTALGHSAGAGVVLQLAIDDAARFAALVLEAPMSPYGFGGTRDLAGTPTAPDHAGSGGGTANPDFVAAIAAGDRSHEPGSPRGVLRGFYVADPVTIADQEEELLDSVLSTRTGPDHYPGDLTPSDHWPSVAPGTRGMNNAISPRYLDLSGFAAVTPQPPVLWVRGEADAIVSDTSALDLAQLGALGAVPGWPGPQACPPQPMVGQTRAVLEDYAARGGAYREVVLSDVGHSPHLESPDEVLALVVDAVRAPVRTIEPVAAAGDPGAALDDEERASNANANANANA
AK018_064651221COG0183putative acetyl-CoA acetyltransferaseATGACCAGCACGACCGACCCGCGAGGAGACGACGTGGTCGTCGTCTCCGCCGCCCGCACCCCGCAGGGACGCCTCGGCGGCTCCCTCGCCTCGCTGACGGCGGTGGAGCTCGGCGCCGTGGCGGCACGGGCCGCGCTCGAGCAGGCGGGGGCGCTCGCCGCCGACGTCGACACGGTGGTCCTCGGCCAGGTGCTCCAGGCCGGCGCCGGGCAGAACCCCGCCCGGCAGACCGCCGTCGCCGCCGGGGTCGGCATGAACGTGCCCGCGGTGACCGTCAACAAGGTGTGCCTGTCCGGGCTCACCGCCGTCGTCGACGGCGCCCGGCTGCTGCGCACCGGCGAGGCGTCCGTGGTGCTCGTCGGCGGCCAGGAGTCGATGACGAACGCCCCGCACCTGCTGCCCGGCGCCCGGGCGGGCTTCCGCTACGGCGACGCGACCCTCCTCGACGCCGTCTCCCGCGACGGGCTGTCGGACGCGTTCGACGGCCAGGCGATGGGCCTGAGCACCGAGGAGCAGAACACGGGGTCGGTGCACGTGACGCGCACCGAGCAGGACGAGGTGGCCGCGGCGTCCCACCAGCGGGCCGCCCGCGCCGCCAAGGACGGGGTGCTCACCGCCGAGCTCGCCCCGGTGGAGGTGCCGCAGCGGCGCGGGGAGCCCGTCGTCGTCTCCTCTGACGAGGGGGTCCGCCCCGACACGACCGCCGAGAGCCTCGCGCGGCTGCGCCCCGCCTTCTCGCGGGAGGGCACGATCACGGCGGGCAACGCCTCGCAGATCTCCGACGGCGCCGCGGCGCTGGTGCTGACCACGCGCTCGCGGGCTGAGACGGCGGGCGTTCCGGTGCTGGCGACCGTGCGCTCGGCCGGTCAGGTCGCCGGGCCGGACACGTCGCTGCACTCCCAGCCGGCGAACGCGATCGCCGCGGCGCTGCGTCGCGAGGGCTGGTCGGCCGAGGACCTCGACCACGTCGAGATCAACGAGGCCTTCGCCGTCGTGTCCGCGGTGTCCACCCGGGTGCTGGGGCTCTCCCCGGACGTCGTGAACCCGCACGGCGGCGGCATCTCGCTAGGGCACCCCATCGGGGCCTCCGGCGCGCGGCTCGCGGTGCACGCCGCGCACGAGCTGGCCCGGCGTCGGGCCGACGGCGAGACCGGACTGCGTGCCGCCGTCGCGCTGTGCGGAGGCGGCGGACAGGGCGAGGCGCTCCTCCTGGAGGCCTGAMTSTTDPRGDDVVVVSAARTPQGRLGGSLASLTAVELGAVAARAALEQAGALAADVDTVVLGQVLQAGAGQNPARQTAVAAGVGMNVPAVTVNKVCLSGLTAVVDGARLLRTGEASVVLVGGQESMTNAPHLLPGARAGFRYGDATLLDAVSRDGLSDAFDGQAMGLSTEEQNTGSVHVTRTEQDEVAAASHQRAARAAKDGVLTAELAPVEVPQRRGEPVVVSSDEGVRPDTTAESLARLRPAFSREGTITAGNASQISDGAAALVLTTRSRAETAGVPVLATVRSAGQVAGPDTSLHSQPANAIAAALRREGWSAEDLDHVEINEAFAVVSAVSTRVLGLSPDVVNPHGGGISLGHPIGASGARLAVHAAHELARRRADGETGLRAAVALCGGGGQGEALLLEAPGPT0008320_4512DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
AK018_064664785gdh_2COG2902NAD-specific glutamate dehydrogenaseATGACCGACGACGCCGCCCAGGACCCGCACATCCACGAGGCGCTCTCCGAGCTCCCGACCGAGCTCCGGCGCAGCGCCCGACACCTCCTGACGGCGTGGTCCGCCGAGGACCTCGCGGAGCGTGAGCCCCGCGACGTCGTCGGCGCCGTCGCCTCGACCTGCCGGTTCGCGGCCCGCCGCGAGCGCGGCGAGACCCTGGTGCGCGCCTTCACCCCGACGCTGCGCGAGGACGGCTGGACGTCGCGGCGCACCGTCGTCGACGTCTGCACCGACGACGCGCCGTTCCTCGTCGACTCCGTGGACGCGGCCGTCGCCCGGCACGGGGGGACCGTCCACCTGCTCCAGCACCCCGTCGTGGGCGTGCACCGCGACGCGGACGGCGAGCTCGTCGAGATCGGCGCGCACGGCGGGCGGCCCGAGTCGTGGATGCACCTCGAGACCGACCGGATCGCGGACGAGGCCGAGGTGGACGAGCTGGTCGAGCGGCTGCGCGACGTCGTCGGGGACGTCCACCTCTCGGTCGGCGACTGGGCGCCCATGCGGCGGGCGTGCCTCGACATCTGCACCGACCTGCGGGTCGCGCCGCCGCCCACGGTCGACGCCGACGCGATCAAGCCGGCGGTCGAGTTCCTCACCTGGCTCGCCGAGGACCACTTCACGTTCCTCGGCTACCGCGAGTACACCCTGGAGAACCACGACGGCGAGGACGTGCTGCGCCCCGACCCCGGCACGGGCCTGGGCATCCTGCGCAAGGCGACCTCCGACGTCGTGCACCTGCGCCCCGAGGCGCAGCGCACCGCGCGCGAGCCCCGGCTGCTCACCATCACCAAGGCGAACTCGCGCGCCACCGTGCACCGCGACGTCTACCTGGACTACATCGGCGTGCGGACCTTCGACGACGACGGGAACGTCACCGGTGAGCGCCGCATCCTGGGGATGTTCACGTCGGCGGCGTACGCGTCGTCGGTGCTGACGCTGCCGATCGCCGCCGACAAGGCGCGGGGCGTGCTGCGCGCGTCCGGGTACTCGGCGAGCTCGCACTCCGGCAAGGACCTGCTGCAGGTGCTGGAGCAGTACCCGCGCGACGAGCTCTTCCAGGACTCCCCGGAGCACCTGCTGGAGGTGGCGAGCCAGGTGTCCCGGCTGCGCGAGCGCCGCCGTTCCAAGATCTTCCTGCGTCCCGACGAGTTCGGGCGGTTCGTCTCGGCGCTGGTGTACCTGCCGCGCGACCGCTACAACACGACGGTGCGGCTGCGCATCGAGGCGTTGCTGCGCACGGCGTTCGCCGCCGAGCGCGTCGAGCACACCACCCGGGTCGACGACTCGCCGCTCGCCCAGCTGCACTTCATGGTGCGGGTGCCGCGCGACGCGGGGATCCCGGAGATCGACGAGGCCGACCTGCAGGGGCGACTCGAGGACGCGGTGCGCACGTGGACGGCGGCGCTGGTCGACGAGCTGCACCACGCCCACGGCGAGGAGGACGCCGCCGACGTGCTGGCCCGGTACGGCTCGGCCTTCCCCGAGGCGTACAAGGAGCAGATCTCCCCGGCCGCCGCGGTGGGCGACATCGCGCGGCTGGACTCGTTGTCCGACGACCACCCGATCGCGGTGCACCTGTACGACCCGGGCGACGAGGACCGCAGCGTGCGCCGGCTCACCTTCGCGTCCCTGCGCGAGCACCGGCTCACGCAGGTGCTGCCGGTGCTGACCGACCTGGGTGTCGACGTCCTCGATGAGCGGCCCTACACGGTCCGCCCCGCGGACGGCAGGCCGCGGTACATCTCGGACTTCGGCCTGACGGCGGCCGACCCGGCGCTGTGGGACGACGACGGCGCCGCGAGCGCGCTGGAGGAGACCTTCCGCGCGGTGTGGGCCGGGGCGGCCGAGAGCGACCTGCTGAACGCGCTGGTGCTGCGTGCCGGGCTGTCGTGGCGGGACGTGGTGGTGCTGCGGGCCGTGGGCCGGTACCTGCGTCAGGCGGGCTCGGCGTTCTCGATGGAGTACATCGACGAGGCGCTGCTCGCGCACCCGGAGCGGGCCGCTGACCTGGTGCGGCTGTTCGAGCTGCGGTTCGACCCGGACCTCGACGTCGACGCCGAGGCGCGGGACCAGGAGGTGCAGGCGGCGACCGACGCCCTGCTGGAGGCGTTCGACGCCGTCGCCAGCCTGGACCACGACCGCATCCTGCGGGCGTTCCTGGGCATCGTCACGGCGACCCTGCGCACCAACTTCTTCCGCCGGGACGCGGCGGGCGAGCCGCCGTCGTGGGTGTCGATGAAGCTCGACTGCGCCCGGGTGCCGGACCTGCCGCTGCCACACCCGATGGCGGAGATCTGGGTCTACTCCCCGCGGGTCGAGGGCGTGCACCTGCGGTTCGGGAAGGTCGCCCGCGGAGGACTGCGCTGGAGCGACCGCCGCGAGGACTTCCGCACGGAGGTGCTGGGGCTCGTCAAGGCGCAGATGGTCAAGAACGCCGTCATCGTGCCGACCGGGTCCAAGGGCGGTTTCGTGGCGAAGCGCCTGCCGGACCCGTCCGACCGGGCCGCCTGGCTGGCCGAGGGGCAGGAGGCCTACCACACGTTCATCCGCGGGATGCTCGACATCACGGACAACCGCGAGGGGACCGAGGTGGTGCCGCCGGAGCGGGTGGTGCGCCACGACGGCGACGACCCGTACCTGGTGGTCGCCGCGGACAAGGGCACGGCGTCGTTCTCCGACATCGCCAACGAGATCTCGGCCGAGTACGGCTTCTGGCTGGACGACGCGTTCGCCTCGGGCGGTTCGGACGGCTACGACCACAAGGCCATGGGCATCACGGCCCGTGGTGCGTGGGAGTCGGTGAAGCGGCACTTCCGCGAGCTGGGCCACGACACGCAGACCGAGGACTTCACGGTGGTGGGCATCGGCGACATGTCCGGGGACGTGTTCGGCAACGGGATGCTGCTCTCGGAGCACATCCGGCTCGTGGCCGCGTTCGACCACCGGCACGTGTTCGTCGACCCCGACCCGGACGCCGCGGCGTCGTACGCCGAGCGGCGCCGCCTGTTCGAGCTGGGCCGGTCCACGTGGGACGACTACGACCGCGACCTGATCTCCGCGGGCGGCGGCGTCTTCCCCCTGACGGCCAAGTCGATCCCGGTCAGCGCGGAGATGGCGGCGGCGCTCGGGCTGGACGAGGGCACCTCGCGCCTGACCCCGAACGAGCTCAAGCGCGCCGTCCTGCTGGCCCCGGTCGACCTGCTGTGGAACGGGGGGATCGGCACGTACGTCAAGGCGGCGGGCGAGACGCACGAGGAGATCGGCGACCGGGCGAACGACGCGATCCGCGTCGACGGCGCCGCGCTGCGGGTCCAGGTGGTCGGCGAGGGCGGCAACCTGGGGGTCAGCCAGCGGGGCCGCGTCGAGGCCGCGCAGCACGGCGTCCAGATCAACACCGACGCCATCGACAACTCCGCCGGGGTGGGCACCTCGGACCACGAGGTCAACATCAAGATCCTGCTGGGGTCGGTGGTGCGCGACGGCCGCCTCGGCCTCGAGGAGCGCAACGACCTGCTGGAGTCGATGACCGAGGAGGTCGCGGCGCAGGTGCTGCGCGACAACTACGAGCAGAACGTGCTGCTCGGCAACTCGCGGGCCAACGCCGCGGTCATGCTGCCCGTGCACGCGCGGCTCATGGAGTGGCTGGAGGGCCGCGGCGATCTGGACCGCGACCTGGAGGCGCTGCCCGACGGCGCCGAGATCGCCGCGCGCATCGAGCAGCACCAGGGGCTGACCCGCCCGGAGTTCGCCGTGCTGATGGCCCACGCCAAGCTGGCGCTGAAGACGGACCTGACCGACACCGACCTGGCCGACGACCCGTGGTTCGAGCGGACGGTGGACGCCTACTTCCCGGACCAGGTGAGCGAACCGTTCGCCGCGGACATGGCCGACCATCCCCTGCGCCGCGAGATCATCGTCAACGCCGTGGTGAACTCGATGGTCAACCGCGGCGGCATCACGTTCGCCTACCGCGCCGGCGACGAGACGGGGGCCCCGACCGAGCAGATCGCCCGGGCGTTCGTCGCCGCCCGCGAGATCATGGACCTGCGGGGATTCGTGACGGCGGTCGAGGCCACCGACACCGTCGTCGACACCCGGGTGCAGACGGACCTGTACCTCGAGTTCCGGCGGCTGCTGGACCGCACGGCACGCTGGTTCGTGCAGCACCGCTCGGACCGCATCGACGTGGGCGCCGAGATCGAGTCCTTCGCGGAACCGGTGGGTGCGTTCGTGCCGCGTCTCGGCGAGCTGTTCCAGGGCGAGGAGCTGCGGCAGTACACCGCGCGGGTGGCCGAGCTGGAGGACGCCGGCTGCGGCGCCGAGCTGGCCCGGCGGGGCGCGGGGCTGCTGGGGTCGCTGCCGCTGCTGGACGTCGCGGACCTGGCGGCCGCGCAGGACTGGGATCTCGAGCAGGTCGCGCGGACGTACTTCGCGCTGTCGGCCCGCATCGGCGTCCCGGACCTGCTGACGGGCGTGTCCGGGCTGCCGCAGGACGACCGCTGGGACTCGATGGCACGCGCCGCGCTGCGCGACGACCTGTACGCCGCCACGGTGGCACTGACGGCATCGGTGCTCACCGGGACGGACGCAGGGACGGCCGACGAGCGGATCGCGGCGTGGTTGGACGACGGCGGCGCGGTCGCGCGGCGCGCGATGGATGCGCTGGCCACGGCGCACTCGGTGGACGAGCCCGGGATCGCGACCCTCTCGGTGGCGTTGCGCCAGCTGCGGTCCCTGGCTCGCTGAMTDDAAQDPHIHEALSELPTELRRSARHLLTAWSAEDLAEREPRDVVGAVASTCRFAARRERGETLVRAFTPTLREDGWTSRRTVVDVCTDDAPFLVDSVDAAVARHGGTVHLLQHPVVGVHRDADGELVEIGAHGGRPESWMHLETDRIADEAEVDELVERLRDVVGDVHLSVGDWAPMRRACLDICTDLRVAPPPTVDADAIKPAVEFLTWLAEDHFTFLGYREYTLENHDGEDVLRPDPGTGLGILRKATSDVVHLRPEAQRTAREPRLLTITKANSRATVHRDVYLDYIGVRTFDDDGNVTGERRILGMFTSAAYASSVLTLPIAADKARGVLRASGYSASSHSGKDLLQVLEQYPRDELFQDSPEHLLEVASQVSRLRERRRSKIFLRPDEFGRFVSALVYLPRDRYNTTVRLRIEALLRTAFAAERVEHTTRVDDSPLAQLHFMVRVPRDAGIPEIDEADLQGRLEDAVRTWTAALVDELHHAHGEEDAADVLARYGSAFPEAYKEQISPAAAVGDIARLDSLSDDHPIAVHLYDPGDEDRSVRRLTFASLREHRLTQVLPVLTDLGVDVLDERPYTVRPADGRPRYISDFGLTAADPALWDDDGAASALEETFRAVWAGAAESDLLNALVLRAGLSWRDVVVLRAVGRYLRQAGSAFSMEYIDEALLAHPERAADLVRLFELRFDPDLDVDAEARDQEVQAATDALLEAFDAVASLDHDRILRAFLGIVTATLRTNFFRRDAAGEPPSWVSMKLDCARVPDLPLPHPMAEIWVYSPRVEGVHLRFGKVARGGLRWSDRREDFRTEVLGLVKAQMVKNAVIVPTGSKGGFVAKRLPDPSDRAAWLAEGQEAYHTFIRGMLDITDNREGTEVVPPERVVRHDGDDPYLVVAADKGTASFSDIANEISAEYGFWLDDAFASGGSDGYDHKAMGITARGAWESVKRHFRELGHDTQTEDFTVVGIGDMSGDVFGNGMLLSEHIRLVAAFDHRHVFVDPDPDAAASYAERRRLFELGRSTWDDYDRDLISAGGGVFPLTAKSIPVSAEMAAALGLDEGTSRLTPNELKRAVLLAPVDLLWNGGIGTYVKAAGETHEEIGDRANDAIRVDGAALRVQVVGEGGNLGVSQRGRVEAAQHGVQINTDAIDNSAGVGTSDHEVNIKILLGSVVRDGRLGLEERNDLLESMTEEVAAQVLRDNYEQNVLLGNSRANAAVMLPVHARLMEWLEGRGDLDRDLEALPDGAEIAARIEQHQGLTRPEFAVLMAHAKLALKTDLTDTDLADDPWFERTVDAYFPDQVSEPFAADMADHPLRREIIVNAVVNSMVNRGGITFAYRAGDETGAPTEQIARAFVAAREIMDLRGFVTAVEATDTVVDTRVQTDLYLEFRRLLDRTARWFVQHRSDRIDVGAEIESFAEPVGAFVPRLGELFQGEELRQYTARVAELEDAGCGAELARRGAGLLGSLPLLDVADLAAAQDWDLEQVARTYFALSARIGVPDLLTGVSGLPQDDRWDSMARAALRDDLYAATVALTASVLTGTDAGTADERIAAWLDDGGAVARRAMDALATAHSVDEPGIATLSVALRQLRSLARPGPT0014290_1296DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014290-gdhB-K15371NANA
AK018_064671515hypothetical proteinGTGTCACGCTGGGGCATGGCCATCACGACGCCGCACCGCACGCCGGCCGCCCCGCCCGCGCCGCCGCAGGTCACCGCCGAGCCCGACGCCCTGACGATCGGGCGGCGCATCCGGCACCTGCGCACGCAGCGGGGCATGACGCTCGAAGAGCTCGGAGACGCCATCTCACGTGCACCGTCTCAGGTCTCCATGCTGGAGAACGGCAAGCGCGAACCCACGATCGCCCGCCTGCAGGCCGTGGCGCGGGCGCTGGGCACCAGCGTCGACGACCTGCTCTCCCCGGAGGCCCCGTCCCGGCGCGACGCCCTGGAGATCGAGCTGGAGCGCGTGCAAAGAGGACCGCTCTTCTCCGCGCTCGGCGTCAAGCCGGTGCGCGTCGGCAAGTCGCTGCCGACCGACGCCCTCGAGGCGATCGTGTCGCTGCAGGCCGAGCTGGAGAGGCTGCACTCCGAGCGCGCACTGACCCCGGAGGAAGCCCGGCGGGCCAACACCGAGCTGCGCGCCGACATGCGCGCGCAGGACAACTACTTCCCCGACCTGGAGATCGTGGCCCGCTCCCTGCTCGACGACGTCGGCCACACCCGCGGGCCGGTGCCCCAGCGCGCGGCAGTCGACATCGCGACGCACCTCGGCTTTTCCATCCACTACGAGTCGGACCTACCGCACTCGACGCGCGCCGTCATCGACCAGCGCCACCACCGCGTCTACCTGCCCAGCAACGGCATCCGCGGACGCTCCGACGCCCGCTCCGCACTGCTGCAGGCGCTGGCCTCGCACGTGCTGGAGCACGCCGAGCCCCGCGACTACGGCGAGTTCCTGCGCCAGCGGGTGGAGGCCAACTACCTGTGCGCGGCGCTGCTTCTCCCTGAGCGGGAGGCCGTCAAGCACCTGCGCGAGGCCAAGGACGCCCGGGCCATCTCCATCGAGGACCTGCGCGACGCGTTCGCCGTCTCCTACGAGACCGCCGCGCACCGGTTCACCAACCTGGCCACCCGCCACCTCGGCATCGGCGTGCACTTCATGAAGGTCCACGAGTCGGGGGCGATCCACAAGGCCTACGAGAACGACGGCGTCCGGTTCCCCGCCGACGCGCTCGGGACGGTCGAGGGCCAGCACGTGTGCAAGCAGTGGACGGCCCGCGTCGTGTTCGACGTCCAGGACCGCCTCAGCCCGTACTACCAGTACACCGACACCCCCACCGGGACGTACTGGTGCACCTCGCGGGTCTCCGACACGCCCGACGGGAGGTTCTCCGTCAGCGTCGGCGTGCCGTACGCGCAGGTGAAGTGGTTCCTGGGCCGGCAGACGACGGCGCGGTCCACGTCCCGCTGCCCGGACGAGTCGTGCTGCCGCCAGCCCTCGCGCCCGCTCGCCGACCGCTGGGACGGCCACGCGCTGCCCAGCGCCCGCCCCCACGCCTCCATGCTCGCCGCCATGCCGTCCGGCGCGTTCCCGGGTGTGGACACCACCGCGGTCTACGAGTTCCTGGAGCGGCACGCCCCGCACGCCGGCTGAMSRWGMAITTPHRTPAAPPAPPQVTAEPDALTIGRRIRHLRTQRGMTLEELGDAISRAPSQVSMLENGKREPTIARLQAVARALGTSVDDLLSPEAPSRRDALEIELERVQRGPLFSALGVKPVRVGKSLPTDALEAIVSLQAELERLHSERALTPEEARRANTELRADMRAQDNYFPDLEIVARSLLDDVGHTRGPVPQRAAVDIATHLGFSIHYESDLPHSTRAVIDQRHHRVYLPSNGIRGRSDARSALLQALASHVLEHAEPRDYGEFLRQRVEANYLCAALLLPEREAVKHLREAKDARAISIEDLRDAFAVSYETAAHRFTNLATRHLGIGVHFMKVHESGAIHKAYENDGVRFPADALGTVEGQHVCKQWTARVVFDVQDRLSPYYQYTDTPTGTYWCTSRVSDTPDGRFSVSVGVPYAQVKWFLGRQTTARSTSRCPDESCCRQPSRPLADRWDGHALPSARPHASMLAAMPSGAFPGVDTTAVYEFLERHAPHAGNANANANANA
AK018_064681323icl_2COG2224Isocitrate lyaseATGACCGCGATCCTCGACACCGCCACCCCCACCGGCACGACCCGCCCCGGCGACCAGGTCGCCACGGCGGCGGCGCTCGCCGAGCAGTGGGCCACCGACCCGCGCTGGGCCGGCGTCACCCGGGACTACTCGGCCGAGGACGTCGTCGCGCTGCGCGGGTCGGTCGCCGAGGAGCACACCCTCGCCCGCCGCGGCTCCGAGCTGCTGTGGGAGCTGCTGCACAGCGAGGACTACGTCAACGCCCTCGGCGCTCTCACCGGCAACCAGGCCGTGCAGCAGGTCAAGGCCGGCCTCAAGGCGATCTACCTGTCCGGCTGGCAGGTGGCCGGAGACGCCAACCTCTCGGGCCAGACCTACCCCGACCAGTCGCTCTACCCCGCCAACTCGGTGCCCGCCGTCGTGCGGCGCATCAACAACGCGCTCCTGCGCGCCGACCAGATCGACGTGTCCGAGAACGGCGCCCCGACCCGCAACTGGCTCGCCCCGATCGTGGCCGACGCCGAGGCCGGGTTCGGTGGCCCGCTCAACGCCTACGAGCTCATGAAGTCGATGATCGCCTCGGGCGCCTCGGGCGTGCACTGGGAGGACCAGCTCGCCTCCGAGAAGAAGTGCGGCCACCTGGGCGGCAAGGTGCTCATCCCCACCAAGCAGCACGTGCGCACCCTCAACGCCGCACGGCTCGCCGCCGACGTCTCCGACGTGCCCAGCGTCGTCATCGCCCGCACCGACGCCGAGGCCGCCACCCTGCTGACCTCCGACGTCGACGAGCGCGACCGGCCGTTCCTCACCGGTGGCCGCACCGGCGAAGGGTTCTACGAGGTCCGCAACGGCATCGAGCCCTGCATCGCCCGGGCCCACGCCTACGCCCCCTACGCCGACCTCATCTGGATGGAGACCGGCACCCCCGACCTCGACCTGGCCCGCCGGTTCGCCGAGGCCGTCAAGGCCGAGTTCCCCGACCAGATGCTGGCCTACAACTGCTCGCCGTCGTTCAACTGGAAGAAGCACCTCGACGACGACACCATCGCGAAGTTCCAGCGCGAGCTCGGCGCCATGGGCTTCAGCTTCCAGTTCATCACCCTGGCGGGCTTCCACGCCCTCAACCACTCCATGTTCGATCTGGCCCACGGTTACGCCCGTGAGCAGATGACGGCCTACGTGCAGCTGCAGGAGGCCGAGTTCGCCTCCGAGACCCGCGGCTACACCGCCACCAAGCACCAGCGCGAGGTGGGCACCGGCTACTTCGACCGCGTGTCGACGGCGCTCAACCCCGACGCCGCCACCCTGGCGCTGGCCGGCTCCACCGAGGCCGCGCAGTTCTGAMTAILDTATPTGTTRPGDQVATAAALAEQWATDPRWAGVTRDYSAEDVVALRGSVAEEHTLARRGSELLWELLHSEDYVNALGALTGNQAVQQVKAGLKAIYLSGWQVAGDANLSGQTYPDQSLYPANSVPAVVRRINNALLRADQIDVSENGAPTRNWLAPIVADAEAGFGGPLNAYELMKSMIASGASGVHWEDQLASEKKCGHLGGKVLIPTKQHVRTLNAARLAADVSDVPSVVIARTDAEAATLLTSDVDERDRPFLTGGRTGEGFYEVRNGIEPCIARAHAYAPYADLIWMETGTPDLDLARRFAEAVKAEFPDQMLAYNCSPSFNWKKHLDDDTIAKFQRELGAMGFSFQFITLAGFHALNHSMFDLAHGYAREQMTAYVQLQEAEFASETRGYTATKHQREVGTGYFDRVSTALNPDAATLALAGSTEAAQFPGPT0001550_1116DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLYOXYLIC_ACID_BIOSYNTHESIS,PGPT0001550-aceA-K01637NANA
AK018_064691737aceB_2Malate synthaseATGACCATCACCGACCTGCCCCGCTCCACCCGCTCCGCGGGTTCGCCGGCCACGCCGCCCCGCGGCATCGCGCTGTCCGACTCGCTGAACGCCGCCGAGGGAAGCATCGACGTCGTCGCACCGATGGAGCCCGGCTTCGAGGAGATCCTCACCCCCGAGGCGCTCGACTTCCTCGCCCTGCTGCACGACCACTTCGCCGACACCCGCTGCGAGCTGCTGCTGACCCGTCAGCGCCGCACCCGCGAGATCGCGGGCGGCACCGACCCGGACTTCCTGCCCACCACGCGACCCGTCCGCGACAACCCGTCCTGGCGGGTGGCCGGTGCCGACGGCGCACCGGGCCTGTCCGACCGGCGCGTCGAGATCACCGGGCCGACCGACCCCAAGATGACCGTCAACGCGCTCAACTCCGGCGCGAAGGTGTGGCTCGCCGACGCCGAGGACGCCTCCAGCCCCACGTGGGCGAACGTCGTCGGCGGTCAGCTCGCCCTGCGCTCCGCGATCCGCGGCGAGCTGACGTTCGACGGCCCCTCTCCCGACGGCGGCCGCACCCCGGGCAAGCACTACGCGCTGCGCACGACCGAGCTCACCGAGATGCCGACCATCGTGTTCCGGCCCCGCGGCTGGCACCTGTTCGAGAAGCACCTCGCCTACACCGGCACCGACGGCTCCTCGCAGCCGGCGTCCGGCTCCCTGGTCGACTTCGGGCTGTACTTCTTCCACAACGCCCGCGAGCTCATCGCGCGCGGTCGCGGTCCGTACTTCTACCTGCCGAAGCTGGAGTCCCACCGCGAGGCCCGGCTGTGGAACGAGGTCTTCGAGCTCGCCCAGCACGCTCTCGACATCCCGCAGGGCACGATCCGCGCGACCGTGCTCATCGAGACCCTGCCGGCCGCGTTCGAGATGGAGGAGATCCTCTACGAGCTGCGCGACCACTGCGCCGGGCTCAACGCCGGGCGCTGGGACTACCTGTTCAGCGTCATCAAGTGCTTCCGGAGCCGGGGCGACTCGTACGTGCTGCCCGACCGGGCGCAGGTGACCATGACGGCGCCGTTCATGCGGGCTTACACCGAGCTGCTCGTGGCCACCTGCCACCGGCGCGGGGCACACGCCATCGGCGGCATGAGCGCCTTCATCCCCGACCGCCGCTCCCCCGAGGTGACCGAGCAGGCCTTCGCCAAGGTCCGCGCCGACAAGGACCGCGAGGCCGGGGACGGCTTCGACGGCTCCTGGGTGGCGCACCCCGACCTCATCCCGATCGCGCGCGCCGCGTTCGACGAGGTGCTGGGCGAACGGGAGAACCAGGTCGACCGGCAGCGCGACGACGTCACCGTGGGCCAGGCCGAGCTGCTCGATGTCGCCTCCGCGCGGCGCGCCGGGGCCACCGTCACCGAGGCCGGCGTGCGGACCAACATCTCCGTCGGCATCCGCTACATCGCCTCCTGGCTGCGGGGCACCGGCGCCGCGGCGCTCGACAGCCTCATGGAGGACGCCGCGACGGCGGAGATCTCCCGCTCCCAGGTGTGGCAGTGGATGCACGCCGGGACCGTGACCGACGACGGCGTCACCATCACGCGCGAGCTGTGCGAGGCGATGGTCCGCGAGTTCCTCCGGTCCACGCCGCGGGCGGCCGGCGACCGGCTCGACGACGCCGCGGCGATCTTCCGCGAGGTGGCGCTCGGCGACGAGTTCCCGCCGTTCCTCACCACGAGCGCGTACGCCCGGTACTTCGGCTGAMTITDLPRSTRSAGSPATPPRGIALSDSLNAAEGSIDVVAPMEPGFEEILTPEALDFLALLHDHFADTRCELLLTRQRRTREIAGGTDPDFLPTTRPVRDNPSWRVAGADGAPGLSDRRVEITGPTDPKMTVNALNSGAKVWLADAEDASSPTWANVVGGQLALRSAIRGELTFDGPSPDGGRTPGKHYALRTTELTEMPTIVFRPRGWHLFEKHLAYTGTDGSSQPASGSLVDFGLYFFHNARELIARGRGPYFYLPKLESHREARLWNEVFELAQHALDIPQGTIRATVLIETLPAAFEMEEILYELRDHCAGLNAGRWDYLFSVIKCFRSRGDSYVLPDRAQVTMTAPFMRAYTELLVATCHRRGAHAIGGMSAFIPDRRSPEVTEQAFAKVRADKDREAGDGFDGSWVAHPDLIPIARAAFDEVLGERENQVDRQRDDVTVGQAELLDVASARRAGATVTEAGVRTNISVGIRYIASWLRGTGAAALDSLMEDAATAEISRSQVWQWMHAGTVTDDGVTITRELCEAMVREFLRSTPRAAGDRLDDAAAIFREVALGDEFPPFLTTSAYARYFGPGPT0001445_1498DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638NANA
AK018_06470435hypothetical proteinATGGACACCACCCCGACGCCGGTCCGCCCCGGTGACCACGTGTACGACGACGCCGACCGCCTCGCGCTGGCCACGACGCTCGCGGCTGCGGCACTCCCCCGCAGCCGAACGCTGTGCCTGTCGTGGATCGACGCCGACCACCGCGCCGCCGGCGTCGCCGTCCCGATCCGCGAGGTCCCCGAGTACCCCGACGTCGACGACGCCCGACGCTTCGGCATGGTGATCGCCTCGGTCACGCAGGAATCGGTCCCGGGCGGATCGGTGGTCGCGGTGCTGTGCCGGCCCGGCGACGCCACGATCTGCGACGTCGACCGTGCCTGGAACCTTGCGCTGCGCGAGCAGTCGGCGACGCACGGCTTCCGGCTGCACGGCATCTTCGTGGCCGCCGGTGGCGGTGTGCGGCCCCTGACGATGGACGACGCGCTCACCGGATGAMDTTPTPVRPGDHVYDDADRLALATTLAAAALPRSRTLCLSWIDADHRAAGVAVPIREVPEYPDVDDARRFGMVIASVTQESVPGGSVVAVLCRPGDATICDVDRAWNLALREQSATHGFRLHGIFVAAGGGVRPLTMDDALTGNANANANANA
AK018_06471921hypothetical proteinATGTCTTCCGTCTCGAGCAAGACCACCGCCGGAGAGGTCCTCGCCGTCGTGGTGGCCGATCACGTCCGCCGTATCGAGCAACGCGTCCCACCCGCCCTGTCCGACGAGGACGACGCGGTGCACCGGCTGCGTACCGCCGTGCGTCGGCTTCGGACGGTGCTGGCGGTGTACCGCCCGGTCTTCGACCGGGACGAGGTCGAGGCGCTACGGGGCCGGCTCGCCGAGTTCGGAGACGTGCTGGGCGAGGTCCGCGACCTCGAGGTGCGCCGCGCGGACGTCGCGGCGGTCGGTAGTGCGGCACGCGTGCCTCTGGAGGCCCGTGACCGGCTCGTGGCCGAGCTGGACCACCAGCACGACGAGGCACACCGACGCCTGGTCGAGTGGTGCAACGAGCAGGAGTTCGCCGACCTGACCGCCGAGCTGACACGCTGGGTCAGCTCGCCGCCGCCCGGGCACAAGGCGCACAAGTCCGCACGCAAGCAGGTGAGGCGCCGGCTGGACAAGGCCACCCGGAAGGTCCTCAAGGCTGCGGAGGCCGTCGACCTGGAGCAGCTGGCTCGATCGACCGGCGACGAGCTGGACGGGCTCATCCCCGAGGCGCACCGGCTGCGCAAGGCCGGCCGGAGGCTGTCCCAGTCGACCCGTGCGGTCACGCGCAAGCCGGCCAAGGTGCTCGGGAGCTCGCGGCGGCAGGTCGGAGCCCTCGGCAAGGCGTTGCAGTCGTCCCTGGGGGATCACCGGGATGCGATTCTGCTGGCGAGGTACGCCGCCGAGGTGGGTGCCTCGGTGGCGTCCGACGGCGGAGACCGCGCGGCGTACGACCGGCTCGCGCGGGCTGCCACGCGTCGAGGACAGGCTCACGTCGCGGAGGCCGTCGCCGCCGTCGAGGCTCTCCGCCGTGCCTCCATCGCCGCGAGGTAGMSSVSSKTTAGEVLAVVVADHVRRIEQRVPPALSDEDDAVHRLRTAVRRLRTVLAVYRPVFDRDEVEALRGRLAEFGDVLGEVRDLEVRRADVAAVGSAARVPLEARDRLVAELDHQHDEAHRRLVEWCNEQEFADLTAELTRWVSSPPPGHKAHKSARKQVRRRLDKATRKVLKAAEAVDLEQLARSTGDELDGLIPEAHRLRKAGRRLSQSTRAVTRKPAKVLGSSRRQVGALGKALQSSLGDHRDAILLARYAAEVGASVASDGGDRAAYDRLARAATRRGQAHVAEAVAAVEALRRASIAARNANANANANA
AK018_06472627hypothetical proteinATGACGCGCACGACCCGGCACCACCTGACCTCGACTGCGATCCTGCTCACCTCCGTCCTGCTCGTCGCTGGCTGCACCGACGACGACGCCGAACCGGAAGCCTCCTCGAGCGAGCTACCGCTTCCCGCCTCGGTTACCGCCTCGCCCTCCGACGAGCCGTCCCCGACGCCATCGCCGTCACCGAGCGGACCGGAGAAGCCCGAACGGCCCGCCGCCATGGACAAGAAAGACGGCGATGGCGCGGCAGCCGCGGCCGAGTACTTCTTCCAGCTCGAGCACTACATGTTCGTGTCTGGCGACAAGTCTGATTACGCCAACATGGCCCACCAGGCGTGCGGCTACTGCGACTCAAACCTGGAGAACTTCAAGTGGCTAGAGAAGAACCAGGCCACCTACGAAGGTGGTGATCAGTCGGTCGAGGTTCTGACCACCTACCTTCGGGACCCCGTCACCGCAATCTGGCCCATCGATGTCCGTGTGAACACCAAGTCGTTCACGATCCGCGACGCCAGCGGGGAGGAAGTGGAGAACGTCGATTCCCACTCGACCGACCTCCGCGTAGAGATCGGTCTTCGTGACGGCGCTTGGGTGGTGACCGGAGTTCCCGCCATGCCTGAGGACACCTGAMTRTTRHHLTSTAILLTSVLLVAGCTDDDAEPEASSSELPLPASVTASPSDEPSPTPSPSPSGPEKPERPAAMDKKDGDGAAAAAEYFFQLEHYMFVSGDKSDYANMAHQACGYCDSNLENFKWLEKNQATYEGGDQSVEVLTTYLRDPVTAIWPIDVRVNTKSFTIRDASGEEVENVDSHSTDLRVEIGLRDGAWVVTGVPAMPEDTNANANANANA
AK018_064731026purR_5HTH-type transcriptional repressor PurRATGGCACGGAAGATGTGGATGCGCGGCACGGTGGCAGCGCTGTCGGCGACGGCCCTGCTGGCCCTGGGTGCGTGCAGCAGCGAGCAGGCCCCTGCTGCCGAGGGCGAGGAGACCACGTCCGACGACGGCGGCGAGACGGAGGAGGCCGGCGACGAGCTCATCTCGATCGGCTTCTCGCAGGTCGGCGCCGAGTCGGGCTGGCGCGCCGCGAACACCAAGTCCATCCAGGACACGCTGACCGCGGACAACGGCTTCGACCTGAGCTTCTCGGACGCCCAGCAGAAGCAGGAGAACCAGATCCAGGCGATCCGGTCCTACATCGCCCAGGGCGTGGACGTCATCTCGTTCTCCCCGGTCGTCGAGACCGGCTGGGGCCCGGTGCTGGAGGAGGCCAAGGCGGCCGACATCCCGGTGATCCTGACCGACCGCGCCGTCGACACCGAGGACGACACCCTCTACGAGTCCTTCATCGGCTCCGACTTCGTCCTCGAGGGCGAGATGGCCGGCGAGTGGGCCGTCGAGCAGTACGACGGCGAGGGCTACCAGATGGTCGAGCTGCAGGGCACGACCGGCTCCGCCCCGGCGATCGACCGCAAGGAGGGCTTCGCCGACGCGATCTCGGGCAGCGACATCGAGGTCATCGACTCCCAGACCGGTAACTTCACCCGGACCGAGGGCAAGCAGGTCATGGAGGGCTTCCTGCAGAAGTACGACGAGATCGACCTCGTCTTCGCCCACAACGACGACATGGGCCTGGGTGCCATCGAGGCCATCGAGGCCGCCGGCATGACGCCGGGCGAGGACATCAAGATCATCACGATCGACGCGGTCAAGGACGGCATGCAGGCCCTGGCCGACGGCAAGATCAACTACATCGTCGAGTGCAACCCGCTGCTCGGACCGGACCTGGCCGAGGTGGCCCAGAAGGTCGTCGCCGGCGAGGATGTCGAGAAGCGCATCGTGGTCGAGGACAAGACCTTCGACCAGGAGGCCGCCGTCGAGGCCCTGCCCTCCCGCGAGTACTGAMARKMWMRGTVAALSATALLALGACSSEQAPAAEGEETTSDDGGETEEAGDELISIGFSQVGAESGWRAANTKSIQDTLTADNGFDLSFSDAQQKQENQIQAIRSYIAQGVDVISFSPVVETGWGPVLEEAKAADIPVILTDRAVDTEDDTLYESFIGSDFVLEGEMAGEWAVEQYDGEGYQMVELQGTTGSAPAIDRKEGFADAISGSDIEVIDSQTGNFTRTEGKQVMEGFLQKYDEIDLVFAHNDDMGLGAIEAIEAAGMTPGEDIKIITIDAVKDGMQALADGKINYIVECNPLLGPDLAEVAQKVVAGEDVEKRIVVEDKTFDQEAAVEALPSREYPGPT0016625_166DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016625-ytfQ-K23508NANA
AK018_064741572fruK_2COG1129Fructose import ATP-binding protein FruKATGGCCGCCCGTGACACGTCCACGCCGACGGCGGCACGCCCCGTCGTCGAGATGTCCGGGATCACCGTGGACTTCGCAGGGGTGCGGGTGCTCGACGGCGCGGACCTGACCGTCCACGCCGGTGAGGTGCACGCGCTGATGGGGGAGAACGGTGCCGGCAAGTCCACCCTCATCGGGGCGTTGACGGGCACGGTGCCGATCGTCGCGGGCACGGTCCTGGTCGGCGGCGAGACCCTGACGCCGACGAGCGTCGCCGACAGCCGGGCGGAGGGGATCGCGACTGTGTTCCAGGAGTCGCACCTGAGCCCGCAGCTCTCCGTGGCCGAGAACATCATGATCGGTCACGAGGTGCGGGGCCGGTTCGGCATCCGCTGGGCGCGGAGCCGCGAGCGCGCCTCGGCCGCCCTGGCGACGCTGGGGATCCAGGACGTCGACCCGCGCACGCCGTTGGAGGAGCTGTCGCCCGCGACCAAGCAGCTCGTCGCCGTGGCCCGGGCGATCGTCCTGGAGCCGCGCGTGCTCGTGCTGGACGAGCCCACCTCGAGCCTGGACGAGGCCGAGGCGGCCCGGTTGCTGGGGGTGGTCCGGCGCCTGCGGGACCAGGGCGTCGCGGTGCTGTTCGTCTCACACTTCCTGGAGCAGGTGCTCGAGGTGAGCGACCGGATGACGGTGCTGCGGGGCGGTCGCGTCGTAGCCGAGTACGACACGGCGCAGGTGGAGCGGGCCGAGCTCATCTCCAAGATGATCGGCGAGGACATCGACGCGCTCCAGGCCCTGCACTCCGAACGGCTGGAGCACCACTACGCGGAGTCGGGGCGCGTCACGCTGCGGGCGACCTCCATCGGACGCCGCGGGACGCTCGAGCCCACCGACGTCGACCTCAGCCGGGGCGAGGTCGTGGGGTTCGCCGGTCTGCGCGGGTCGGGACGCACCGAGCTCGCCCGCCTGATGAGCGGCGTCGAGCGTGCCGACCACGGCGAGCTCTGGCTGGACGGCGCCCCGGTGCAGCTGCGGGGTCCGGCCTCGGCCCTGCGGCACCGGATCGCGGTGTCGACCGAGAACCTGCGCCACGAGGGCATCGTCGCGGAGCTGACCGCGCGGGAGAACATCGTGCTGGCCCTGCAGGCGCTGCGCGGCTGGACCCGCCCGTTGTCCCGCGCCGAGCAGGCGGCGGTGGTCGACACCTATCTCCACGCCCTGCACCTGTCGCCCGAGGACCTCGACCGGCCGGCGGGGGAGCTGTCGGGGGGCACGCAGCAGAAGGTGGTGCTGGCCCGGCTGCTGGCCACCCGGCCGCACGTGCTGATCCTGGACGAGCCGACCCGCGGCATCGACATCGGGGCCAAGCTGGACATCCAGCGTCGCGTCGCCAAGCTGGCGGGCGAGGGGGTGGCCGTCGTCTTCATCTCCTCCCAGCTCGAGGAGGTGGTGCGGCTCAGCGACCGCATCGTGGTCCTCAAGGACCGGGAGAAGATCGGTGAGCTGAGCAACGGTCCCGGGGTCACGGTGGACACGGTCGTGGAGATGATCGCGGCAGAGCTGGACGGGCTCGTGACCGGCGACGACGCCTGAMAARDTSTPTAARPVVEMSGITVDFAGVRVLDGADLTVHAGEVHALMGENGAGKSTLIGALTGTVPIVAGTVLVGGETLTPTSVADSRAEGIATVFQESHLSPQLSVAENIMIGHEVRGRFGIRWARSRERASAALATLGIQDVDPRTPLEELSPATKQLVAVARAIVLEPRVLVLDEPTSSLDEAEAARLLGVVRRLRDQGVAVLFVSHFLEQVLEVSDRMTVLRGGRVVAEYDTAQVERAELISKMIGEDIDALQALHSERLEHHYAESGRVTLRATSIGRRGTLEPTDVDLSRGEVVGFAGLRGSGRTELARLMSGVERADHGELWLDGAPVQLRGPASALRHRIAVSTENLRHEGIVAELTARENIVLALQALRGWTRPLSRAEQAAVVDTYLHALHLSPEDLDRPAGELSGGTQQKVVLARLLATRPHVLILDEPTRGIDIGAKLDIQRRVAKLAGEGVAVVFISSQLEEVVRLSDRIVVLKDREKIGELSNGPGVTVDTVVEMIAAELDGLVTGDDAPGPT0016635_235DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016635-ytfR-K10820NANA
AK018_064751020lacI_5COG1609Lactose operon repressorATGGTGAGTCCCGGAGTCGATAAGCCGAACATCCGGCAGGTCGCCCAGCTCGCCGGCGTGTCGCACATGACCGTGTCGCGGGTGCTCAACGACCACCCGAACATCCGCGAGGCCACCCGGCGCCGCGTCGAGGAAGCCATCGCGGAGCTCGGCTACCGCCCGAGCATGACGGCCCGCGCCCTCGCCACCCAGCGCAGCCACCGCATCGGCGTCCTCGTCGAGAGCGCGGTGACCCACGGGCCGGTCAGCACGCTGTACGCCGTGGAGTCCGCCGCCCGGGCCTCGGGCTACGAGGTCAGCTCGGTGCTGCTGCGGGCCGGGGAGGAGATCACCCCCCAGGAGGCCGTCGACCACCTGATCATGCTGGGCGTCGACGCGCTGTGCGTCGTCGCTCCCCGCTCGTCGTCGATCGCGGCGCTGCGCCGCATCTCCGTCGGCGTCCCCGTCCTCGTGGTCAAACCCGACAAGGACCCGACGTTCCTCACGGTGACCGTCGACCAGCAGGCGGGCACCGTGCTCGCCGTCGACCACCTCGTCTCGCTCGGGCACCGCGACATCCTGCACATGGCCGGCCCGCTCGACTGGCTCGACGCGCGTGCCCGCGAGCGGGCCTTCCACGCGCGGGCGAAGTCCTGGGGGATCCGTGAACGACCGATCGTCGTCGGGGACTGGACGGCGGACTTCGCCTACGACTTCGCCCGCGGGATCCGCGAGCTCCCGGACTACACGGCGGTCTTCGTCGCGAACGACGACATGGCGGTCGGGCTCGTCCACGGGCTGCACGAGCGGGGCTTCTCCGTGCCGGACGACCTCAGCGTGGTCGGGTTCGACGACATCCCGCTGGCACGGCACGTCATCCCGCCGCTGACCACCGTGCGACAGGGCTTCGATGCGCTCGGGGTCTCCGTCGTCGACGTGCTGCGGGCGGCGATCGAGGAGCGGGAGATCCCGGCCGTGACGCGCATCCCCGCCGAGATCGTCGCGCGCGACTCCAGTGCGCCGCCGAGGAAGGCCGGCTGAMVSPGVDKPNIRQVAQLAGVSHMTVSRVLNDHPNIREATRRRVEEAIAELGYRPSMTARALATQRSHRIGVLVESAVTHGPVSTLYAVESAARASGYEVSSVLLRAGEEITPQEAVDHLIMLGVDALCVVAPRSSSIAALRRISVGVPVLVVKPDKDPTFLTVTVDQQAGTVLAVDHLVSLGHRDILHMAGPLDWLDARARERAFHARAKSWGIRERPIVVGDWTADFAYDFARGIRELPDYTAVFVANDDMAVGLVHGLHERGFSVPDDLSVVGFDDIPLARHVIPPLTTVRQGFDALGVSVVDVLRAAIEEREIPAVTRIPAEIVARDSSAPPRKAGPGPT0017992_8402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_064761512araA_2L-arabinose isomeraseATGAGCAAGCCCTACGGTGACCGCGAGGTCTGGTTCCTCACCGGCAGCCAGGACCTGTACGGTCCCGAGACGCTGGAGCAGGTCGCCCAGCAGTCCCAGGAGGTCGCCGCCGCGCTGGACGCGTCGGGCGACGTCCCCGCGAAGGTCGTGTGGAAGCCGGTCCTGAAGGACTCCGCCGCCATCCGCCGCGCGATGCTGGAGGCGAACAGCGACGACGGCGTCCTCGGCGTCGTGACCTGGATGCACACCTTCAGCCCGGCCAAGATGTGGATCGCCGGCCTGGACGCCCTGCGCAAGCCGCTGCTGCACCTGCACACGCAGGCGAACGTCGAGCTCCCCTGGTCGGAGATCGACATGGACTTCATGAACCTCAACCAGGCCGCGCACGGCGACCGCGAGTACGGCTACATGCTGACCCGCCTCGGCGTCGCCCGCACCACCGTGGTGGGCCACGTGTCCGACCCCGCGGTGCAGCGGCGCGTCGGCACCTGGGTCCGCGCGGCGGCCGGCCGCCTGGCCACCCAGGAGCTGAAGCTGGTCCGCTTCGGCGACAACATGCGCAACGTCGGCGTCACCGAGGGCGACAAGACCGAGGCCGAGCTGCAGTTCGGCGTCAACGTCAGCACCTGGGGCGTCAACGACCTCGTCGCCGCGGTCGAGGCGGTCGCCGAGTCCGACGTCGACGCGCTGGTCGCCGAGTACGCCGAGCTCTACGACGTCGCCGCCGAGCTGCAGGCCGGGGGAGAGCGTCACGAGTCGCTGCGCTACGCGGCCCGCCAGGAGCTGGCCATGGAGGCGTTCCTCGTCGAGCGCGGGGCCAAGGCGTTCACGACGAACTTCGAGGACCTGGGCGCGCTGCGCCAGCTGCCGGGTCTCGCCGTGCAGCGCCTCATGGCCAAGGGCTACGGGTTCGGCGCCGAGGGCGACTGGAAGACCGCCGTCCTGGTCCGCGCCGCGAAGGTCATGGGCGAGGGGCTGCCGGGCGGCGCCTCCCTCATGGAGGACTACACCTACGACCTCACGCCGGGGTCGGAGCTGATCCTCGGGGCGCACATGCTCGAGATCTGCCCGACCCTGACGACCGCGAAGCCCCGGGTCGAGATCCACCCGCTCGGCATCGGCGGCAAGGAGGACCCGGTGCGCATGGTGTTCGACACCGACGCGACCGAGGGCGCCGTCGTCGTGTCGCTGGCCGACATGCGCGACCGCTTCCGCCTGACCGCCAACGTCGTCGACGTGGTCCCGCCGGCCCAGGAGCTGCCGAACCTGCCGGTCGCCCGTGCCGTGTGGAAGCCGCGTCCGGACTTCGCGACGTCGGCCGAGTCCTGGCTGACCGCCGGCGGTGCGCACCACACCGTGATGTCGACCGCCGTCGGTATCGAGGCGTTCGAGATGTTCGCCGAGATCTCGGGCACCGAGCTGCTCGTCATCGACGAGAGCACCACGCGGCGCGGCTTCGCGGACCAGGTGCGCTGGAACCAGGTCTACTACAAGCTCGCCCAGGGGCTCTGAMSKPYGDREVWFLTGSQDLYGPETLEQVAQQSQEVAAALDASGDVPAKVVWKPVLKDSAAIRRAMLEANSDDGVLGVVTWMHTFSPAKMWIAGLDALRKPLLHLHTQANVELPWSEIDMDFMNLNQAAHGDREYGYMLTRLGVARTTVVGHVSDPAVQRRVGTWVRAAAGRLATQELKLVRFGDNMRNVGVTEGDKTEAELQFGVNVSTWGVNDLVAAVEAVAESDVDALVAEYAELYDVAAELQAGGERHESLRYAARQELAMEAFLVERGAKAFTTNFEDLGALRQLPGLAVQRLMAKGYGFGAEGDWKTAVLVRAAKVMGEGLPGGASLMEDYTYDLTPGSELILGAHMLEICPTLTTAKPRVEIHPLGIGGKEDPVRMVFDTDATEGAVVVSLADMRDRFRLTANVVDVVPPAQELPNLPVARAVWKPRPDFATSAESWLTAGGAHHTVMSTAVGIEAFEMFAEISGTELLVIDESTTRRGFADQVRWNQVYYKLAQGLPGPT0017450_148DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017450-araA-K01804NANA
AK018_06477708ulaF_2COG0235L-ribulose-5-phosphate 4-epimerase UlaFATGTCGAACGACGCATCCCTGACCGAGGTGCCGGCCCACCTGCGCACCGCCGTCGACGCCGCCAAGCAGAAGGTCGCCGACCTGCACGCCGAGCTGCCCCGCTGGGAGCTCGTCGTGTGGACGGCCGGCAACGTCTCCGAGCGGGTCCCGAATGACCAGGGGGAGGACCTGCTGGTCATCAAGCCCTCCGGCGTCTCCTACGACGACATCACCCCCGAGGCCATGGTCGTGTGCGACCTCGCGGGCAACCTCGTCGAGGGCGACCGCTCGCCGTCGTCGGACACCGCCGCGCACGCCTACGTGTACGCGCACATGCCCGAGGTCGGCGGCGTGGTGCACACGCACTCGACCTACGCCACGGCGTGGGCCGCCCGGGGCGAGGAGATCCCCTGCGTGCTGACGATGATGGCCGACGAGTTCGGCGGCCCGATCCCCGTCGGCCCGTTCGCGATCATCGGCGACGACTCGATCGGTCGCGGCATCGTCGAGACCCTGCGCGGGTCCCGCTCCAAGGCCGTGCTGATGAAGAACCACGGCCCGTTCACCATCGGCGGCGACGCCAAGGCCGCCGTCAAGGCCGCGGTGCTCTGCGAGGAGGTCGCGCGCGCCGTGCACGTCTCCCGCCAGATCGGCGAGCCGCTGCCGATCGAGCAGCAGTACGTCGACTCCCTGTACGACCGCTACCAGAACGTCTACGGCCAGCGCTGAMSNDASLTEVPAHLRTAVDAAKQKVADLHAELPRWELVVWTAGNVSERVPNDQGEDLLVIKPSGVSYDDITPEAMVVCDLAGNLVEGDRSPSSDTAAHAYVYAHMPEVGGVVHTHSTYATAWAARGEEIPCVLTMMADEFGGPIPVGPFAIIGDDSIGRGIVETLRGSRSKAVLMKNHGPFTIGGDAKAAVKAAVLCEEVARAVHVSRQIGEPLPIEQQYVDSLYDRYQNVYGQRPGPT0017420_501DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATIONPLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017420-araD|ulaF|sgaE|sgbE-K03077NANA
AK018_064781614xylB_4Xylulose kinaseATGACGCGGCAGGACGAGGCGACCGACATCCGGGACGCCATTCAGGCCGGGCGGACCACGCTCGGCATCGAGCTCGGCTCGACCAACATCAAGGCGGCCCTCATCGGGCCGGACCACGACGTGCTCGCCAGCGGCTCCCACGCCTGGGAGAACGAGCTGGCCGACGGGCTGTGGACCTACTCGCTGGACGCCGTCCACGCCGGCCTGCAGGGTGCCTACGCAGCGCTGGTGGCCGACGTCGAGCAGCGGTACGGCGTGCGTCCCACGACCTACGGCGCGCTCGGCGTCTCGGCGATGATGCACGGGTACCTCGCCTTCGACGCCGACGACGAGCTGTTGGTGCCGTTCCGCACCTGGCGCAACACCAACACCGGCACGGCGGCCGCGGAGCTGTCCGAGCTGTTCGGCTACAACATCCCGCTGCGCTGGTCGATCGCGCACCTGTACCAGGCGATCCTCGACGACGAGCCCCACGTGCCGCAGATCGCCTCGTTCACGACGCTCGCCGGGTACGTCCACCGGGTGCTGACCGGCCGGCACGTCCTGGGCGTCGGCGACGCCTCGGGCATGTTCCCGGTCGACCCCGCGACCCGCGACTACGACCAGCGCCTGCTGCAGCAGTTCCGCCACCTCGTGGCGGCCAAGCGCCCCGGTCTGCACGTCGAGGGGCTCCTGCCCGAGGTCCTGGTCGCCGGTGCCGACGCCGGGCACCTGACCCCTCAGGGCGCCGCGCTGCTGGACCCCAGCGGCGAGCTGCAGCCGGGCGTCGTGCTGTGCCCGCCCGAGGGCGACGCGGGCACCGGCATGGTCGCGACCGACGCCGTCGCGCCGCGGACCGGCAACATCAGCGCCGGCACCTCCATCTTCGCGATGGTCGTGCTCGAGAAGCCGCTGACGAGCGTGCACCACGAGCTGGACCTGGTCACGACCCCCGCCGGGGACCTCGTGGCGATGGTGCACTGCAACAACGGCGCGAGCGAGCTCGACGCCTGGGCCGGGGTGTTCTCCGAGTTCGCCGCGGCGCTGGGTCACCCGAGCGCGGCGGACGACGTCTTCGGCGCGCTCTTCACGGCCGCGCTGGACGGTGAGGCCGACGGCGGCGGGCTGCTGGCCTACAACTACCTCGCCGGGGAGCCCATCACCGGCCTCGAGGAGGGGCGTCCGCTCGTCGTCCGCACCCCGGACAGCCGGCTGACGCTGGCCAACATGATGCGTACCCAGATCTACGGCGCCTTCGGCACGCTGGCGCTCGGCATGAAGGTGCTGCACGGCGAGGGTGTCGCCATCGACACCATGTTCGCCCACGGCGGCATGTTCCGGACCGCCGGGGTCGCCCAGCGCTTCCTGGCCGCCGCCGTCGACGCCCCGGTCGCCGTCGCGCAGACGGCCTCCGAGGGCGGCGCGTGGGGCATCGCGGTGCTCGCCGCCTTCACCCGGGCCGCCGCCGAGCAGCCGGGCCTCACCCTGGACGGCTACCTGACCGACCGCGTCTTCGCCGACGCGGCGGTGGACGTCGCCCAGCCCGACGCCGGGGACGTCGCCGGGTTCGCCGCCTACCTCGACCGGTACTCCGCAGGGCTCGCCGTCGAGCGGGCCGCCACCGAAGCCCTCTGAMTRQDEATDIRDAIQAGRTTLGIELGSTNIKAALIGPDHDVLASGSHAWENELADGLWTYSLDAVHAGLQGAYAALVADVEQRYGVRPTTYGALGVSAMMHGYLAFDADDELLVPFRTWRNTNTGTAAAELSELFGYNIPLRWSIAHLYQAILDDEPHVPQIASFTTLAGYVHRVLTGRHVLGVGDASGMFPVDPATRDYDQRLLQQFRHLVAAKRPGLHVEGLLPEVLVAGADAGHLTPQGAALLDPSGELQPGVVLCPPEGDAGTGMVATDAVAPRTGNISAGTSIFAMVVLEKPLTSVHHELDLVTTPAGDLVAMVHCNNGASELDAWAGVFSEFAAALGHPSAADDVFGALFTAALDGEADGGGLLAYNYLAGEPITGLEEGRPLVVRTPDSRLTLANMMRTQIYGAFGTLALGMKVLHGEGVAIDTMFAHGGMFRTAGVAQRFLAAAVDAPVAVAQTASEGGAWGIAVLAAFTRAAAEQPGLTLDGYLTDRVFADAAVDVAQPDAGDVAGFAAYLDRYSAGLAVERAATEALPGPT0017410_891DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017410-araB|L_ribulokinase-K00853NANA
AK018_064791017lacI_6COG1609Lactose operon repressorATGGCCGACGTGGCCGCGCTCGCCGGCGTGTCCCACCAGACCGTCTCGCGTGTGCTGAACGAGCACCCGAGCGTGCGCGAGGCCACGCGGGAGAGGGTCCAGGCGGCGATCGACGAGCTCGGCTACCGCCGCAACAGCGCGGCACGTGCCCTGGTGACGTCACGGTCGGCGACCCTCGGTGTCGTGACCACGGGCTCGGCGCTCTTCGGCCCGACCAGCACGCTCATCGCCGTCGAGGAGGCGGCGCGGGACCGGAGCTACTTCGTCTCGGTCGCCACGCTGCGCAGCTACGACACCGCGTCGATGCACCAGGCGCTCGAGCACTTCATGGCCCAGGGCGTCGACGGGATCGTCGTCATCGCCCCGCACGCGGCGGTGGCCTCCGCGGTGGAGTCGTTCCGCGCACCGGTCCCGGTGGTCGTGGTGGCGGCGCTGGAGGGCGCGACGACGTCGGACGGGCCGGCGTCGTCGCCGATGTCGGTCGCCGTCGACCAGCGGGCCGGTGCGCGCCTGGCCACCGAGCACCTGCTCGACCTGGGTCACGCGAACGTGGTCCACGTCGCGGGGCCGCAGGACTGGTTCGACGCCCGTGAGCGCTGGGCCGGCTGGCGTGAGGCCCTGGTGGCGCGGGGGATCCGTCCCGCCCGGCCGCGCGAGTGCTCGTGGTCCGCGGGGGACGGCTACGCGGCCGGCCGCGACCTGGCCGAGGCGGTCGGGTCGGGCGAGGGGCCGACGGCGGTCTTCGCCGGCAACGACCAGCTCGCCCTCGGCGTGCTGCGCGCGCTGTGGGAGCGCGGGCTGCGGGTCCCCGACGACGTCTCCGTGGTGGGGTTCGACGACGTCGCGGGGTCGGCGTACTTCGTGCCGCCGCTGACGACCGTGCGACAGCCGTTCGCCGAGCTCGGCGCCCGGTCGGTGGCGATGGTGCTCAGCTCCCTGGAGGGGGAGCCCGTGGCGGTCCAGCGCATCGAGCCGGAGCTCGTCGTGCGCTCGTCGACGGCGCCTCCGCCCCCCTGAMADVAALAGVSHQTVSRVLNEHPSVREATRERVQAAIDELGYRRNSAARALVTSRSATLGVVTTGSALFGPTSTLIAVEEAARDRSYFVSVATLRSYDTASMHQALEHFMAQGVDGIVVIAPHAAVASAVESFRAPVPVVVVAALEGATTSDGPASSPMSVAVDQRAGARLATEHLLDLGHANVVHVAGPQDWFDARERWAGWREALVARGIRPARPRECSWSAGDGYAAGRDLAEAVGSGEGPTAVFAGNDQLALGVLRALWERGLRVPDDVSVVGFDDVAGSAYFVPPLTTVRQPFAELGARSVAMVLSSLEGEPVAVQRIEPELVVRSSTAPPPPPGPT0017992_8402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_06480582hypothetical proteinATGAGCGACACCACCGCCACGTCCGGCCGCCCCGGGGACGGGTCCGCCCACCCGGAGGCGCCGACCCGCATCGCCCTCGTCGACGACTCCCACGCCGGCGAGCTGCTGACGCTGCGCCGTGCCGCGTTCGTCTCGGAGGCGCAGGTCTACGGTGACCCGAACATCCCGCCGCTGACGCAGACGCTGCACGAGCTGCGCGAGGACATGGCGCGCGACGACGTGGTGACCATCGGTGCCTGGACGGGCGAGCGCCTCGTCGGCTCGATCCGCGTCGAGCTCGAGGACGGCCGTGCCACGCTCGGCCGGCTGGCGGTCGCTCCGGACCAGCAGGGACGGGGGCTGGGGACGACCCTGCTGTTCGCGATCCTGGACCACCTGCCCGAGGACGTCTCGGAGATCTGGGCCTTCACCGGCAAGGACTCCCAGCAGAACCTGGCGATGTACACCAAGCACGGCTACGAGGCGCAGTACGACGAGGCCGCCGGCGAGCTGACCTACACCTACCTGCGCCGCGTGCTGCACGAGGTCGACGCGCGCAACGCCGCCGAGCGGCCGGCAGGCACGCCCGCCGAACGGCCGTGAMSDTTATSGRPGDGSAHPEAPTRIALVDDSHAGELLTLRRAAFVSEAQVYGDPNIPPLTQTLHELREDMARDDVVTIGAWTGERLVGSIRVELEDGRATLGRLAVAPDQQGRGLGTTLLFAILDHLPEDVSEIWAFTGKDSQQNLAMYTKHGYEAQYDEAAGELTYTYLRRVLHEVDARNAAERPAGTPAERPNANANANANA
AK018_06481900purU_2COG0788Formyltetrahydrofolate deformylaseATGGCGTGCGTGACCACGCAGCCGACATCTCCGCCCGCCGCGCCCGCCACCGCACCGCCCACCGAGTGGGTGCTGACGCTGTCCTGCCCCGACCGGCCGGGCATCGTCCACGCCGTCAGCGGGATGCTCGCCCAGCACGACGGCAACATCACCGAGTCCCAGCAGTTCGGCGACCCGAGCTCCGGACTGTTCTTCATGCGGGTGCAGGTCCAGTCGCACGCCTCGCGCGAGGAGCTGGAGAGCGCGCTGGGCGCGGTCGCCGGCCGGTTCGAGATGTCGTGGCGCCTCGACGTCGTCGGACGCCCCGTGCGCACGCTCGTCATGGTCTCCCGGGCGGCGCACTGCCTGGTCGACCTGCTCTACCGCGAGCGCGACCAGGGTCTGCCCATCGACGTCGTCGGGGTCGTGGGGAACCACCCCGACCTCGCGGACATCGCCGACTTCTACGGCAAGCCGTTCCACCACGTCCCGGTGACGGCGGCGACCAAGACCGAGGCCGAGGACCGGCTGCGGGCCCTGGTGACCGAGCTCGACGTCGAGCTGGTGGTGCTCGCCCGGTACATGCAGATCCTCTCGGACGAGCTGTGCCGCGACCTGGCCGGCCAGGTCATCAACATCCACCACTCGTTCCTGCCGTCGTTCAAGGGTGCGCGGCCCTACGCCCAGGCGCACGACCGCGGCGTGAAGCTCATCGGGGCGACCTCGCACTACGTGACCGGCGACCTGGACGAGGGACCGATCATCGAGCAGGACGTCGAGCGGGTCGACCACTCCCGGGCCGTGCGCGACCTCGTGGCCCTGGGCGAGGACGTCGAGCGGCGCACGCTCGCCCGCGCGGTGCGGTGGCACGCCGAGCACCGGGTGCTGCTCAACGGCCACCGCACGGTCGTCTTCCACTGAMACVTTQPTSPPAAPATAPPTEWVLTLSCPDRPGIVHAVSGMLAQHDGNITESQQFGDPSSGLFFMRVQVQSHASREELESALGAVAGRFEMSWRLDVVGRPVRTLVMVSRAAHCLVDLLYRERDQGLPIDVVGVVGNHPDLADIADFYGKPFHHVPVTAATKTEAEDRLRALVTELDVELVVLARYMQILSDELCRDLAGQVINIHHSFLPSFKGARPYAQAHDRGVKLIGATSHYVTGDLDEGPIIEQDVERVDHSRAVRDLVALGEDVERRTLARAVRWHAEHRVLLNGHRTVVFHPGPT0008155_752DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433NANA
AK018_06482882catE_2COG2514Catechol-2,3-dioxygenaseATGCACCCCGCGACCGGTCGTCCCGAGGATCTCCTCGCCCCCGAGACCACGATGGGAGCCGTCACGCTCCACGTCGGCGACCTCGCCGCGATGAGCGCGTACTACCGGGAGGCGATCGCGCTCACCGAGCTGCCCGGGCTCGGAGCGCCCGACCGCGTCGTCCTGGGGCGGGGGCGCACGCCCGTCGTCGTGCTGCAGCACACGCCGGGGCTGCCGGCGACGTCGCGGCACCAGGCAGGGCTGTTCCACACCGCCGTCCTGTTCGACACCGAGGAGGCGCTGGCGGCCGCGGTGGCGCACGCCGCCCGGCACCCGCTGTCCCGGTTCGTCGGGAACGCCGACCACTGGGTCTCCCGGGCGTTCTACTTCACCGACCCCGAGGACAACGGCATCGAGCTGTACTGGGACCGGCCGCGCGAGACCTGGCAGCGGTCCGGCGGCCGGGTGGCGATGGGGACGGACTGGTTCGACCCGAACGCCTACCTGCAGCAGCACCTCAGCGAGTCGGCGCTGGACGGCGCCGCGGGGCAGGGCGCCCAGGTGGGGCACGTCCACCTGCAGGTCGGCGATGTCCCGACCGCCCGGCAGTTCTACGTCGACACCCTCGGGTTCGAGATCATGGCGGACCTGCCCGGTGCGCTGTTCGTCGCGGCCGGCGGCTACCACCACCACCTGGCGGTCAACACGTGGAACAGCGCCGGGGCGGGGCCGCGGGCGGCGTCCCTGGGGCTCGGTCAGGTGGCGCTCACCGTGCCGGGCCAGGACGACGTCGACGCGCTGCGCGACCGGTTGCGGCACGCACGCGTCCCCGTGCGCGACGACGGACGGACGCTCCGGTTCGACGACCCGTGGAGGACGCTGGTCGAGGTCTCGGTCGGCTGAMHPATGRPEDLLAPETTMGAVTLHVGDLAAMSAYYREAIALTELPGLGAPDRVVLGRGRTPVVVLQHTPGLPATSRHQAGLFHTAVLFDTEEALAAAVAHAARHPLSRFVGNADHWVSRAFYFTDPEDNGIELYWDRPRETWQRSGGRVAMGTDWFDPNAYLQQHLSESALDGAAGQGAQVGHVHLQVGDVPTARQFYVDTLGFEIMADLPGALFVAAGGYHHHLAVNTWNSAGAGPRAASLGLGQVALTVPGQDDVDALRDRLRHARVPVRDDGRTLRFDDPWRTLVEVSVGPGPT0005050_285DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-CATECHOL_RESISTANCE,PGPT0005050-catE-K07104NANA
AK018_06483615hypothetical proteinATGAGCAGCATCAGCATCATCGGCGCCGGGAACATGGGTGCCGCCATCGCCCGCCTCGCTCTCGCCGCCGGCACGCCGGTCCAGGTCGTGACCCGCGACGTCTCCGCGGCGCAGGCCGTCGACCCGGCCGTGACCGCCACCGCCTTCGGCGAGCCGCTGACCGGTGACGTCGTGGTCCTCGCCCTGCCGTACCCCGCGCTGGACGACGTCGTGGCCACCTACGGCGACCAGCTCGCCGGCCGGACCGTCGTCGACATCACCAACCCGCTCGACTTCTCGACCTTCGACTCGCTGGTCGTGCCTGCGGACTCCTCGGCGGCCGCCGAGCTGGCCGCCGCGCTCCCCGGTGCCTCCGTGCTCAAGGCGTTCAACACGAACTTCGCCGCCACCCTCGCCACCGGCACCGTGGGCGACGTGCCGACCACCGTGCTCGTCGCGGGCGACGACGCCGACGCCAAGACCGCCTTCACCGCGGCCTTCGACGGCTCGGCCGTGCGCGTCGTCGACGCCGGCTCCCTCGCGCGAGCCCGCGAGCTCGAGGCGCTCGGCTTCCTGCAGCTGACCCTGGCCGCCGGCGAGAAGACCTCGTGGACCACCGGGTTCGCGCTGCTCTGAMSSISIIGAGNMGAAIARLALAAGTPVQVVTRDVSAAQAVDPAVTATAFGEPLTGDVVVLALPYPALDDVVATYGDQLAGRTVVDITNPLDFSTFDSLVVPADSSAAAELAAALPGASVLKAFNTNFAATLATGTVGDVPTTVLVAGDDADAKTAFTAAFDGSAVRVVDAGSLARARELEALGFLQLTLAAGEKTSWTTGFALLNANANANANA
AK018_06484501hypothetical proteinATGGACGACGGTGCACCCCCGCGCTGGCTCGACGACGAGCAGATGCGCAGCTGGCTCCGCCTGCAGGCCGTGATCGGTCTGCTGCCCGCCCTGCTGGACCAGCAGCTGCGGCGCGACGCCCACCTGACCCACTTCGAGTACCTGACGCTGGCGATGCTGTCCGAGGCCCCGGACCGGTCGCTGCGCATGAGCGACCTCGCCCGGCTCACCAGCGCCACGCTGCCGAGGCTCTCGCACGTCGCGCGGCGGCTCGAGGAACGGGGCTACCTGGACCGCGGGCCCGCGCCCGACGACCGGCGGGCCACCGTCGCGCACCTGACCGAGGACGGGTGGGACAAGGTCGTCGCGAGCGCACCCGGCCACGCCCGCACGGTGCTGGAGACCGTCTACGACGACCTCGCCCCCGAGGACCTGCGAGCCCTGACCCGTGTCCTCGACGCGATCCTGGCGCACGTCGACCCGCACGACACGTTCGGCCTCGCCGACCACGAGCGCCGCTGAMDDGAPPRWLDDEQMRSWLRLQAVIGLLPALLDQQLRRDAHLTHFEYLTLAMLSEAPDRSLRMSDLARLTSATLPRLSHVARRLEERGYLDRGPAPDDRRATVAHLTEDGWDKVVASAPGHARTVLETVYDDLAPEDLRALTRVLDAILAHVDPHDTFGLADHERRNANANANANA
AK018_064851110chvE_1COG4213Multiple sugar-binding periplasmic receptor ChvEATGACGCGACGAGTGGCAGCAGCGGCTGCCGCACTGGTCAGCACGGGCGTGCTCGCCCTGTCGGGCTGCGGGGTGCTCGACGGGACGGAGACGATCGGTGTGGCGATGCCCACCGAGTCCTCCGAACGATGGATCACCGACGGCGAGACGCTGGCCGACGGCCTGGAGGGGGCCGGGTACGAGGTCGACCTGCGGTACGCCGGGGACGACATCGCCCAGTACCGGCAGGCCGACCAGGTCCAGGAGATGATCGACGACGGCGTGGAGCTGCTGATCGTCGCGGCCGTCGACGGCGCCGGGCTCGTGGACCAGCTGGCCGCGGCCGAGGCGGCGGGGATCCCGGTGATCGCCTACGACCGGCTCCTGCTGGACTCCGAGCACGTCGACCACTACGTCACCTTCGACAACTACGGCGTGGGGGTCGCCCAGGCCCAGGCCCTGCTGCGGGGGCTCGGTGTCGTCGACGCCGACGGGGCGCCCACGGGCGACGGCGGGCCCTACAACATCGAGCTGTTCGCCGGGTCGCTGGACGACAACAACGCGCTGATCTTCTGGGAGGGCGCGATGGACACGTTGCGGCCCTACCTCGACGACGGCACGCTGCGGGTGCCGTCCGGCCAGACCGAGGTCGCGTTCGCCGAGACCTACCGCTGGTCGGAGGACACCGCCCGTGACCGGATGGGCAGCCTGCTGTCCCAGTACTACGACGACGGCACCGAGCTGCACGGGGTGCTCTCCCCGTACGACGGCATCTCCCGGGGGGTCATCGCGGCCCTCGGGCTGTGGGGGATCGGTCCGACCCTCGGCGAGGGGCTCCCCGTCGTCACCGGTCAGGACGCCGAGGCCGGCTCGGTGCAGCTGATGCGTCAGGACATGCAGCACTCGACGATCTTCAAGGACACCCGGGTGCTCGCCGACCGTGCGGTCGACGCGGCCCTGGCGTACCTGGAGGGCGGGGAGCCGGAGGTCACCGACACCACCACCTACGACAACCGCGTCAAGGTGGTGCCCACCTACACCCTGGACATCGAGACGGTGTACCGCCGGGACATCGAGGAGGTCCTGGTGGCCAGCGGCTACCTGACCGAGGAGGAGATCTCGGCCGGCTGAMTRRVAAAAAALVSTGVLALSGCGVLDGTETIGVAMPTESSERWITDGETLADGLEGAGYEVDLRYAGDDIAQYRQADQVQEMIDDGVELLIVAAVDGAGLVDQLAAAEAAGIPVIAYDRLLLDSEHVDHYVTFDNYGVGVAQAQALLRGLGVVDADGAPTGDGGPYNIELFAGSLDDNNALIFWEGAMDTLRPYLDDGTLRVPSGQTEVAFAETYRWSEDTARDRMGSLLSQYYDDGTELHGVLSPYDGISRGVIAALGLWGIGPTLGEGLPVVTGQDAEAGSVQLMRQDMQHSTIFKDTRVLADRAVDAALAYLEGGEPEVTDTTTYDNRVKVVPTYTLDIETVYRRDIEEVLVASGYLTEEEISAGPGPT0015735_76DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0015735-sbpA-K10546NANA
AK018_06486744frcA_1COG1129Fructose import ATP-binding protein FrcAATGAGGCCGCCACAGTCCCGCACGCCCCTGCTCGCCCTGCACGAGGTGAGCAAGTACTTCGGTGCCGTCGAGGCGCTGGTGGGCGTGGACCTCGAGGTGCACGCCCACGAGGTGGTCGCGCTCGTCGGGGACAACGGTGCCGGCAAGTCGACGCTGGCGCAGGTCGTGGCCGGGGTGCTGTCGCCGGACGCCGGGCAGATCGAGATCGCCGGTCGGCCGGTGACCATCTCCTCGCCGTCGGCGGCCAACGAGCTCGGCGTGGCCAGCGTGTTCCAGGACCTGGCCGTCTGCGAGAACCTCGACGTCACCGCCAACGTGTTCCTCGGCCGCGAGCAGCGCAACCGCCTCGGGCTGATGCACGAGGGGGAGATGGAGGTCGAGACCCGCCGGCTGCTGCAGCGGCTGACGGTGCGGATCCCCTCGGTGCGCACCACGCTCCGTCAGCTCTCGGCGGGGCAGCGGCAGGCCGTCGCGATCGCCCGCACCCTCATCGGCGACCCGCGCATCGTGGTGCTCGACGAGCCCACGGCGGCGTTGTCGGTGGCGCAGACCGGTGAGGTCCTGACCCACATCCAGCGCCTGCGCGACCTGGGGCTGGGCGTGATCCTCATCAGCCACAACCTCAACGACGTCCGGGCCGTCGCGGACCGCATCGAGGTGCTGCGCCACGGGCGCAACAACGGCTCCTTCCCGGCCACGGCGTCGCACGAGTCCATCCTGGCCGCCATCACCGGAGCGGCCTGAMRPPQSRTPLLALHEVSKYFGAVEALVGVDLEVHAHEVVALVGDNGAGKSTLAQVVAGVLSPDAGQIEIAGRPVTISSPSAANELGVASVFQDLAVCENLDVTANVFLGREQRNRLGLMHEGEMEVETRRLLQRLTVRIPSVRTTLRQLSAGQRQAVAIARTLIGDPRIVVLDEPTAALSVAQTGEVLTHIQRLRDLGLGVILISHNLNDVRAVADRIEVLRHGRNNGSFPATASHESILAAITGAAPGPT0016660_1092DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016660-xylG-K10545NANA
AK018_064871185nagC_5COG1940N-acetylglucosamine repressorATGGCGCGGACGCAGTCGTCGCTGCGGGAGGCCAACCGTGCTCGAGTGGTCGACGCGGTCAAGAAGCACGGGAGCCTCACCCAGGTGGAGCTGACGGGCGCCACGGGGCTGTCCGCGGCCACGGTGTCGACCATCGTCAAGGAGCTCGTGGCCGCCGAGGTCGTCGAGGTCCGCAACACCGTCCGGTCCGGCCGGCGGGCCCAGCTCGTCACGCTCGCCCACCGGGTCGGCCTCGTGGCCGGCGTCGTCGTCGGGTACCGCACGATGCGGGTGGCGATCGCCGACGTCGCGCACGAGATCCTCGCCGAGCAGAGCCTGCCCCTGCCCGCAGACCACCGCTCCGACACGAGCCTCGACCGGGCCGCCCTCCTCGTCGTCGACCTGCTCGACCGCATCGGGTCGACCCTGGACGAGCTGCTCAGCATCGGGCTGGGCGTCCCCGCGCCGGTTCATCCCACGACGGGGATGCTCAGCGTCCGCGGTGTGCTGCGCGGCTGGGACGCCGTCCAGATCGGCCAGGTGCTGGAGAAGCGGCTCGCCCGGCACGTGTACGTCGACAACGACGCGAACCTCGGTGCGCTCGCCGAGTCGACGATGGGCGTGGGCCGACCGTGGCGCGACATGATCTACGTCAGCGTCGCGCACGGTGTCGGGGCCGGACTCGTCATCGGCGGGACGGTGCACCGCGGGGTCGACGGCACGGCCGGGGAGATCGGGCACGTCCAGGTCGACCCGGCCGGACGCATCTGCCTGTGCGGCAGCCGGGGCTGCCTGAACACCGTGGTCGGCCTGCCGGCGCTGCTGGAGCCTCTGCAGACCAGTCACGGCCACCTCTCCCTGCGCGACGTCGTGCGGCTGGCCGGCGACGACGACCCGGGATGCCGGGAGATCGTGGCCGACGCGGGAGAACGTGTCGGCGGTGTCGTCGCCGCCCTGGCGACGGGTCTGGGCATCCAGGGCGTCGTCGTCGGCGGTGAGCTGGCAGCGACGGGGGAGACGTTTCTGGCACCCTTGCGTGCGGCGCTCGAACGGCGCACGGTGCTCAACCAGGCCGGAGGCCCGGAGGTCGTCCCCTCCGCGCTGGGGACGCGGGCCGAGCTGGTGGGCGCCGTCGCGCTCGCTCTCGAGCACACCGACGTGTTCGACCGACATGACCGCACCGACGAGGAGATGGCTGGACGATGAMARTQSSLREANRARVVDAVKKHGSLTQVELTGATGLSAATVSTIVKELVAAEVVEVRNTVRSGRRAQLVTLAHRVGLVAGVVVGYRTMRVAIADVAHEILAEQSLPLPADHRSDTSLDRAALLVVDLLDRIGSTLDELLSIGLGVPAPVHPTTGMLSVRGVLRGWDAVQIGQVLEKRLARHVYVDNDANLGALAESTMGVGRPWRDMIYVSVAHGVGAGLVIGGTVHRGVDGTAGEIGHVQVDPAGRICLCGSRGCLNTVVGLPALLEPLQTSHGHLSLRDVVRLAGDDDPGCREIVADAGERVGGVVAALATGLGIQGVVVGGELAATGETFLAPLRAALERRTVLNQAGGPEVVPSALGTRAELVGAVALALEHTDVFDRHDRTDEEMAGRNANANANANA
AK018_064881179xylH_1COG4214Xylose transport system permease protein XylHATGAACGTCATCGCCGGAGCCCGGGACCTCGCGACCCGGCACCTGCGCGAGAGCGGCATCTTCATCGCGTTCGCCGCGCTCGTGATCCTCTTCGCCGCGCTGAACCCCAACTTCCTCAGCGCGAACAACCTGACGAACATCATCCTGCAGTACTCCTACATCCTGATCCTCGCGATCGGGATGGTGATGGTGATCGTCGCCGGACAGATCGACCTGTCGGTCGGATCGGTGGTGGCCCTCACCGGGGCCGTCTCGGCGGTGGTCGTCATCAGGATGGGCATGCCGTGGTACGTCGGTGTGCTCGCTGCCCTCGTCGTCGGCCTGCTGGTCGGCATCTGGCAGGGATTCTGGGTGGCCTACGTCGGCATCCCCGGGTTCATCGTGTCGCTCGCCGGCATGCTGCTCTTCCGCGGCCTGACCTACCTGGTGCTCGACAACGTCTCGCTCTCGCCGTTCGGCGGGACCTACTACGAGATCGCCAACGGGTTCCTCAACGGTCTGCTCGGCGGGATGGGCTTCGACGTCTTCACCCTGGTCATCTTCGGCATCGCGGTGGCCGGCTACGCCGTCAGCCAGTGGCGCAGCCGCCAGGGCAAGATCGCCTACCAGCAGCAGGTCGAGACGCTGGGCCTGTTCGTGCTGAAGATCGTCCTCGTCGCCGCCGTGGTCATGTGGTTCGGCTACCAGCTGTCCACCTACCGCGGGCTCCCGCTGGTGCTCATCATCCTGGCGGTGCTGATCATCGTCTACGCGCTGGTGACGCAGAAGTCGGTCTTCGGCCGGCACATCTACGCCGTCGGCGGCAACCGCCACGCCGCCGAGCTGTCCGGCGTGAAGGTCCGCCGCATCAACTTCTGGGTCTTCGTCAACATGGGCGTCCTGGCCTCCGTGGCCGGCATCGTGTACTCCTCGCGCATGAACGCCGCCCAGCCGGGCGCCGGCAACATGTTCGAGCTCGACGCGATCGCCGCCTGCTTCATCGGTGGCGCCTCCACCACCGGCGGTATCGGCCGTGTGGGCGGCGCGATGATCGGTGGTCTGATCATGGCGGTCATGTCCAACGGCATGCAGCTCATGGGTGTGCCGCAGTCGATGCAGCAGGTGGTCAAGGGCCTCGTGCTCCTGCTCGCCGTCGCCTTCGACATCTGGAACAAGAAGCGCGCCGCCTCGGCACGCTGAMNVIAGARDLATRHLRESGIFIAFAALVILFAALNPNFLSANNLTNIILQYSYILILAIGMVMVIVAGQIDLSVGSVVALTGAVSAVVVIRMGMPWYVGVLAALVVGLLVGIWQGFWVAYVGIPGFIVSLAGMLLFRGLTYLVLDNVSLSPFGGTYYEIANGFLNGLLGGMGFDVFTLVIFGIAVAGYAVSQWRSRQGKIAYQQQVETLGLFVLKIVLVAAVVMWFGYQLSTYRGLPLVLIILAVLIIVYALVTQKSVFGRHIYAVGGNRHAAELSGVKVRRINFWVFVNMGVLASVAGIVYSSRMNAAQPGAGNMFELDAIAACFIGGASTTGGIGRVGGAMIGGLIMAVMSNGMQLMGVPQSMQQVVKGLVLLLAVAFDIWNKKRAASARPGPT0016525_631DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0016525-gguB|ABC_GGU_P-K10547NANA
AK018_064891560xylG_4COG1129Xylose import ATP-binding protein XylGATGAGCACGATCCTGGAGATGCGCTCCATCACCAAGGAGTTCCCGGGCGTCAAGGCGCTGTCCGGAGTCGACCTCGACGTCGGCGAGCAGGAGATCCACGCGATCTGCGGCGAGAACGGTGCCGGCAAGTCGACGCTGATGAAGGTGCTCTCGGGGGTCTACCCCCACGGCAGCTACGACGGCGAGATCGTCTTCGAGGGCGAGACGGTGCGGTTCGGGTCGATCAACGACTCCGAGGACCAGGGCATCGTCATCATCCACCAGGAGCTCGCCCTGGTGCCGTACCTCTCGGTGGCCGAGAACATCTTCCTCGGCAACGAGAAGCGCGGCCCCCTCGGGCTGATCGACTGGAACGACGCCAACCACCGCGCGGCCGAGCTGCTCGAGCGGGTCGGGCTGCACGAGAACCCCATGACGCCCGTGCAGCAGCTCGGCGTGGGCAAGCAGCAACTCATCGAGATCGCCAAGGCGCTGTCGAAGAAGGTCAGGCTGCTCATCCTCGACGAGCCGACCGCCGCCCTGAACGACACGGACTCGGCCCACCTGCTCGACCTGCTGCGAGCGCTGCGGGACGAGGGCATCACCTGCATCATCATCTCGCACAAGCTCAACGAGATCGCGGACATCGCCGACCGCACGACGATCATCCGCGACGGCGAGACGATCGAGACGATCGACATGTCCGAGCCGGACTCCACGCAGGACCGGATCATCCGCGGCATGGTGGGTCGTGACCTCGAGAACCGCTACCCGCACCGCACGCCGGAGATCGGCGAGGAGGTGCTGCGGATCGAGAACTGGAGCGTGGACCACCCGACCCAGGCCGGGCGCCAGGTGATCTCCGACGCCTCCTTCAACGTCCGTGCCGGCGAGGTCGTCGGGATCGCCGGCCTCATGGGTGCCGGCCGCACCGAGCTCGCCATGAGCGTCTTCGGGCACAGCTACGGGCGGAACATCCGTGGAACCGTCTACAAGGACGGCCGGGCCGTCCAGGTCCGGGACGTGTCCGAGGCGATCCGCCACAAGATCGCGTACGCGACGGAGGACCGCAAGCGGTACGGGCTCAACCTGCTCGACGACATCCGGCACAACATCTCCTCGGCCGGGCTGCGCCAGCTCGCGCCCGGCGGGTGGGTCAACGCCAACGAGGAGCTGAAGGTCGCCGAGGAGTACCGCGAGTCGCTCAACGTCAAGACGCCCCACGTGCTGGCGAACGTCGGCAAGCTGTCCGGCGGCAACCAGCAGAAGGTCGTGCTGTCCAAGTGGCTGTACACCGACCCGGACGTGCTCATCCTCGACGAACCGACGCGCGGCATCGACGTCGGCGCCAAGTACGAGATCTACACGATCATCAACACGATGGTCGCCGCCGGGAAGGCGGTCATCGTCATCTCCTCGGAGCTGCCCGAGCTGCTCGGCATCTGCGACCGCGTGTACACCCTGGCCTTCGGCCGGATCACCGGTGAGCTCCCGGTCGCCGAGGCGACCCAGGAACGACTCATGGAGCTCATGACCCTCGAGCGCGACCAGCCCCTGCCCACGAAGGAATCGATCTCATGAMSTILEMRSITKEFPGVKALSGVDLDVGEQEIHAICGENGAGKSTLMKVLSGVYPHGSYDGEIVFEGETVRFGSINDSEDQGIVIIHQELALVPYLSVAENIFLGNEKRGPLGLIDWNDANHRAAELLERVGLHENPMTPVQQLGVGKQQLIEIAKALSKKVRLLILDEPTAALNDTDSAHLLDLLRALRDEGITCIIISHKLNEIADIADRTTIIRDGETIETIDMSEPDSTQDRIIRGMVGRDLENRYPHRTPEIGEEVLRIENWSVDHPTQAGRQVISDASFNVRAGEVVGIAGLMGAGRTELAMSVFGHSYGRNIRGTVYKDGRAVQVRDVSEAIRHKIAYATEDRKRYGLNLLDDIRHNISSAGLRQLAPGGWVNANEELKVAEEYRESLNVKTPHVLANVGKLSGGNQQKVVLSKWLYTDPDVLILDEPTRGIDVGAKYEIYTIINTMVAAGKAVIVISSELPELLGICDRVYTLAFGRITGELPVAEATQERLMELMTLERDQPLPTKESISPGPT0016530_155DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0016530-gguA|ABC_GGU_A-K10548NANA
AK018_06490738hypothetical proteinGTGACGACGAACCCGACACCCGTCGGCACCGTGACCCACGCCGGGGTGGACACCGACGGCACGCGCCGCCGGGTCCTCGAGCTGGTCGCCACCGAGGGCCCCGTCACCGCCGGTGACCTGGCCCGCACGCTCCGGCTGACCTCGGCGGCCGTGCGCCGGCATCTGGCCTGCCTCGAGCAGGACGGCACGATCGCGGTGCACGAGACCGCTCCGGCGGCCCGCCAGGCACGTCGTGGCCGCCCGGCGCGGCGCTACGTGGTCAGCACGGCGGGGCAGGCCGAGCTCGGGGGCGAGGACGTCGAGCTCGCGACGCAGGCGATGCGCTACCTGCGCCGCACGGCCGGGGACGCGGCGGTGGCGGAGTTCGCCGCCGAGCGCAACGACGCCGTCGTCCGCCGCTACGCCCCGCGCCTGACCGGCGCCGACCCGCACGAGCGGGCCGCCCAGCTGGCGGACCTGCTCGCCGCCGACGGCTACGCCGCCTCGGTACGGCCCGTGGCCGGGCCCCAGATCCCCACCGTCCAGCTGTGCCAGGGCCACTGCCCGGTCCAGCACGCGGCGGAGGACTTCCCCGAGCTGTGCGAGGCGGAGGCCGACGCCTTCGCCCGGCTGCTCGGTACGCACGTCCAACGGTTGGCCACCCTCGCAGGCGGCGCGCACGCCTGCGTGACCAACGTCCCGCTTGCTCCCCCCACCCCCGCCGGCCGCTCCCGCGGTACGCAGGAAGGAACACGATGAMTTNPTPVGTVTHAGVDTDGTRRRVLELVATEGPVTAGDLARTLRLTSAAVRRHLACLEQDGTIAVHETAPAARQARRGRPARRYVVSTAGQAELGGEDVELATQAMRYLRRTAGDAAVAEFAAERNDAVVRRYAPRLTGADPHERAAQLADLLAADGYAASVRPVAGPQIPTVQLCQGHCPVQHAAEDFPELCEAEADAFARLLGTHVQRLATLAGGAHACVTNVPLAPPTPAGRSRGTQEGTRNANANANANA
AK018_06491636hypothetical proteinATGACCTTCTACACCTTCGCCCAGCCCGCCGACCTGGCGCAGCTCGCACGCCGCATCTGGTACTGGCCCGTGGTCCGCGGCGTGCTCGCCGTGGCCTTCGGGCTGCTGGCGATGTTCCTGCCGCGCGACGTCCCCGGTCTGCTCGTGCAGGTCTTCGGTGCCTTCGTGCTGGTGGACGGCATCGTCTCCCTCGTGGACGGGCTGCGGCGCCGCGGGACGCAGGCCGGCTCGGCGAACCTGGGCATCGGTGTCGTCGCGATGGCCTTCGGCGCGGCGCTGCTGTTCCTGCCCGAGGTGTTCCTGACGATCGCCGTGGTGCTGATCGGCATCTGGGCGATGATCTTCGGTCTGCTGCAGATCGTCGGGGCGTTCGCCGTGCGGGGCCGCGGAGGGGCGTCGTGGGTGCTCAGCCTGCTCTCGGGGCTGCTCTTCGTGGCACTGGCGCTGGTCTGCTTCGCCAACCCGGGGACGGCGATCACCGCGATGGCCTTCGTGGTCGGGGCGTTCGCCGTCGTGATCGGGGTCGCCCTGGTCGCGCTGGGCCTCAAGCTGCGCTCGCTGGGGCAGCAGGGCGGCACCGGTGGCTCCGGTGGCTCCCGCCCGGACGTCATCGAGGGCGAGATCGTCGACGAGTGAMTFYTFAQPADLAQLARRIWYWPVVRGVLAVAFGLLAMFLPRDVPGLLVQVFGAFVLVDGIVSLVDGLRRRGTQAGSANLGIGVVAMAFGAALLFLPEVFLTIAVVLIGIWAMIFGLLQIVGAFAVRGRGGASWVLSLLSGLLFVALALVCFANPGTAITAMAFVVGAFAVVIGVALVALGLKLRSLGQQGGTGGSGGSRPDVIEGEIVDENANANANANA
AK018_06492957drrA_8Daunorubicin/doxorubicin resistance ATP-binding protein DrrAGTGCCCACCACCGATGCGCCATCCGGCGCCGCCGTCGTCGCGCGCGGCCTGCGCAAGACGTACGGCGGCCGTGACGTCGTCGACGGGCTCGATCTGCAGGCTACCGCCGGAGCGGTGACCGCGGTGCTCGGGCCCAACGGCGCCGGCAAGACCACCACCGTCGAGTGCTGCGAAGGTCTGCGGACCCCCGACGGCGGCACGGTGCGCGTTCTCGGCCTCGACCCGGTGGCCGACGCCGTGCACCTGCGGCCCCGCGTGGGCGTCATGCTGCAGGACGGCGGGCTGCCCACCGGCGTGCGGGCCGGCGAGATGCTGCGGCACGTGGCGGCGATGTACGCCGCACCGCGCGACCTCGGCGAGCTCTCCGCCCGGCTGGGCCTCGACGCCTTCGCCCGGACCACGGTCCGTCGGCTCTCCGGCGGGCAGCGTCAGCGGCTCGCCCTGGCGGCCGCCGTCGTCGGGCGCCCCGACGTCGTGTTCCTCGACGAACCCAGCGCCGGCCTGGACCCGCAGTCGCGGCACGCCGTGTGGGACCTGGTGCGCGAGCTGCGCGCCGAGGGCGTCGCCGTCGTCCTGACCACGCACCTGATGGCCGAGGCCGAGGACCTCGCCGACCGGGTCCACGTCGTCGACCACGGGCGCGTCATCGCCTCCGGCAGCGTGCCCGAGCTCGTCGCGAGCGGCCCCGGCACCTCCCCCACGGTCCGGCTGGACGCGCGGCCCGGCCTGGACGTCGACGCCCTGCAGGAGCACCTCGGCGCCCTCGACGGCGGCACCTGGACGGTCACCGAGCCGTCCCCCGGGGAGTACACCGTGGCCGGCAGGACCGGACCCGCCACGCTCGCGGCGCTCACCGCCTGGCTCGCCGACCACGACGTCCTGGCCCGTCGGATCGCCGTCGGCCGGCGCACCCTCGAAGACGTCTTCCTCGACCTGACGGGACGGCACCTGCGATGAMPTTDAPSGAAVVARGLRKTYGGRDVVDGLDLQATAGAVTAVLGPNGAGKTTTVECCEGLRTPDGGTVRVLGLDPVADAVHLRPRVGVMLQDGGLPTGVRAGEMLRHVAAMYAAPRDLGELSARLGLDAFARTTVRRLSGGQRQRLALAAAVVGRPDVVFLDEPSAGLDPQSRHAVWDLVRELRAEGVAVVLTTHLMAEAEDLADRVHVVDHGRVIASGSVPELVASGPGTSPTVRLDARPGLDVDALQEHLGALDGGTWTVTEPSPGEYTVAGRTGPATLAALTAWLADHDVLARRIAVGRRTLEDVFLDLTGRHLRPGPT0006725_5371DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_06493777hypothetical proteinATGAGCACCGCGAACCCGACGGCGGCCCACCCGGGCGCGGCCTCCCCCGCCCGCCGCGTGGCGGCGCAGGCCTCGTTCGAGACCCGCGCGATCCTGCGCAACGGCGAACAGCTCCTCGTGACGATCGTCGTCCCGGTGCTGCTGCTCGTCGGCCTGGTGCGCACCTCGCTGGTCGAGCTCGACACCGCCGGCGCGACGCGCATCGACTTCGTCACCCCCGGCGTGCTCGCCCTGGCCTGCGTCACGACGGCCTTCACCTCGCAGTCCATCGCCACCGCCTTCGACCGCCGCAACGGCGTGCTGCGGCTGCTCGCCACCACTCCCCTGGGCCGCGGCGGGCTGCTGGCGGGCAAGATCCTCGGTGTGCTCGCCGTGGAGGCGGTGCAGGTCGTCGTGATCGGCGGCGTGGCGCTCGCGCTCGGGTGGGAGCCGGTCCTCGCGGGTCTGCTGCCCGCCGCCGGGCTCCTGCTGCTCGGCACCGCCGCGTTCACCGCGCTGGCCCTGCTGCTGGCGGGCACGCTGCGCGCCGAGGGCGTCCTCGCCGTGGCCAACCTCGTGCTCGTCCTCCTCGTCGTCGGCGGCGGGCTCATCGTGCCGCCGTCCGAGCTTCCCGGGGCGCTCGCCCACCTGGCGGCGTTCCTGCCGTCCGGCGCGCTCGGCGAGGGCCTGCGCGGGGCGCTGCTCGGGACCGGTGTGCCGGCCCTCAGCGTCGTGGTCCTCGTGGCCTGGACGGCGGCCTTCGGGGCCGGCGCCGGGCGCCTCTTCCGCTGGCACTGAMSTANPTAAHPGAASPARRVAAQASFETRAILRNGEQLLVTIVVPVLLLVGLVRTSLVELDTAGATRIDFVTPGVLALACVTTAFTSQSIATAFDRRNGVLRLLATTPLGRGGLLAGKILGVLAVEAVQVVVIGGVALALGWEPVLAGLLPAAGLLLLGTAAFTALALLLAGTLRAEGVLAVANLVLVLLVVGGGLIVPPSELPGALAHLAAFLPSGALGEGLRGALLGTGVPALSVVVLVAWTAAFGAGAGRLFRWHPGPT0006730_16705DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_06494954ctaA_1Heme A synthaseGTGAGCTCGACCGCGCCCGCCGAGGCCTCCCGCACCCCCGCACGCCGTGACCGGCTCGCCCGTCTCCGCGGCGCGACCCGGGGCGTGCTCGTCGCCAACGTGGTCGCCCAGATCGGCATCATCGTCACCGGCGGTGCCGTGCGGCTCACCGGCTCCGGGCTCGGCTGCTCGACGTGGCCGCAGTGCGAACCGGGCAGCTTCACGCCCGTCTTCCACGCCGAGGCCGGCATCCACCCCTACGTGGAGTTCGGCAACCGGTTGCTGACGTTCGTGCTGGCCGCGATCGCCATCGCGGTGCTGGTGCTCGTGGTGACGGACCGCCGGCGCACGCGCGCCTACCGCGCGCTCGGCGTCGTCCCGCTGGCGGGCGTCGCCGCCCAGGCGATCATCGGCGGCGTGGTGGTGCTGCTCGACCTGCACCCGGCCTGGGTGTCGCTGCACTTCGTCGTCTCGGCGGCGCTGGTCTGGCTCTCGGCGTACCTGCTGCACCGGCACGGCGAGGGCGACGGGGCCCCGATGCCGGTCGCGTCGCGGGGGGCGACGGTCGCGGGCCGCGCCCTCGGCCTGCTGGTCGTCCCCGTCGTCGTGCTGGGCGTCGTGGTCACCGCCGCCGGACCGCACTCCGGCGACGCCGAGGTCGGCTACCGCCTCGCGGTGGACCCGCTGCTGATGACCCGCGCGCACTCGGCCTCGGTGTGGCTGTTCACGGGCGTCCTGGTGCTGCTGCTGGTCCTGCTGCACCGGACGCCGACGAGCGCCGACGACCGGCTCGTGCCGCGGGCGCGTCGGGGCGCCCGGGTCCTGCTCGTGGTCACCCTGGCCCAGGGAGCGATCGGGTACGCCCAGTACTTCACCGGGCTTCCCGAGCTGCTGGTCGGCCTGCACATGCTCGGGGCCGGCCTGCTCACCTGGGCGACCGCGAACGCCGTCCTGCGGCTCCGCGCCCGGGCCTGAMSSTAPAEASRTPARRDRLARLRGATRGVLVANVVAQIGIIVTGGAVRLTGSGLGCSTWPQCEPGSFTPVFHAEAGIHPYVEFGNRLLTFVLAAIAIAVLVLVVTDRRRTRAYRALGVVPLAGVAAQAIIGGVVVLLDLHPAWVSLHFVVSAALVWLSAYLLHRHGEGDGAPMPVASRGATVAGRALGLLVVPVVVLGVVVTAAGPHSGDAEVGYRLAVDPLLMTRAHSASVWLFTGVLVLLLVLLHRTPTSADDRLVPRARRGARVLLVVTLAQGAIGYAQYFTGLPELLVGLHMLGAGLLTWATANAVLRLRARAPGPT0008525_2830DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008525-ctaA-K02259NANA
AK018_06495660hypothetical proteinGTGAGCGACCGCGGGACCGCCGGCCCCGGCACGGGGGTGGACCAGGTCGCGCCGCGGCCCGTGGTCGGGCGCTCCGCGCTGCACGCCGGGCGCATCTTCGACGTCGTCCGGGACGACGTCGACCTCGGTGACGCCGGGGTCGTGACGCGTGAGTACCTGGACCACCCCGGCGCCGTCGCTATCGTCGTGCTCGACGCCGACGACCGCGTCCTGCTGCTGCGCCAGTACCGGCACCCGGTGCGCACGATGATGTGGGAGGTCCCGGCCGGCCTGCTCGACGTCCCGGCGGAGCCGGCCGTGGAGGCGGCAGCACGCGAGCTCGCGGAGGAGGCGGACCTCGTCGCCGACCGCTGGGACGTCCTCGTCGACTACGCGACGACGCCCGGGGCGAGCAACGAGTCGGTGCGGGTGTTCCTCGCCCGGGACGTGCGCGAGGTGGCTCCGGAGGACCGCCACGAGCGTCATGGCGAGGAGGCGGAGATCGTCACCGCCTGGGTCCCGCTGGACGACGCCGTCGCGCGGGCGCTCGCCGGCGACCTGCACAACCCCTCGGCGGTGGTCGGGATCCTGGCAGCGGCCGCGAGCCGCGCCGACGGGTGGACGTCGCTGCGACCCGTCGACGTGGAGTGGCCGTACCGCCGGGGCGTGCTGCCCGACTGAMSDRGTAGPGTGVDQVAPRPVVGRSALHAGRIFDVVRDDVDLGDAGVVTREYLDHPGAVAIVVLDADDRVLLLRQYRHPVRTMMWEVPAGLLDVPAEPAVEAAARELAEEADLVADRWDVLVDYATTPGASNESVRVFLARDVREVAPEDRHERHGEEAEIVTAWVPLDDAVARALAGDLHNPSAVVGILAAAASRADGWTSLRPVDVEWPYRRGVLPDPGPT0021525_3646DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021525-nudF-K01515NANA
AK018_064961689pyrG_1COG0504CTP synthaseGTGGCTGACACCGTGAACCGAACCTCGTCCCGTTCCTCGAGCCGCGCCGGTGCCACGCACCCGACGCGCCACATCTTCGTGACGGGCGGTGTCGCCTCGTCGCTCGGCAAGGGGCTGACCGCCTCCTCCCTCGGCCGTCTGCTCCGGTCCCGCGGGCTGCGGGTCACGATGCAGAAGCTCGACCCCTACCTCAACGTCGACCCGGGCACCATGAACCCGTTCCAGCACGGCGAGGTGTTCGTCACGGAGGACGGAGCCGAGACCGACCTGGACATCGGCCACTACGAGCGCTTCCTCGACGTCGAGCTGCCGGCCTCGTCGAACGTCACCACCGGCCAGGTCTACTCCCGCGTCATCGCCAAGGAGCGTCGCGGGGAGTACCTCGGCGACACCGTGCAGGTCATCCCGCACATCACGGACGAGATCAAGGCGCGGATGCGCGACCAGGCCGGCCCCGACGTCGACGTGATCATCACCGAGATCGGCGGCACCGTCGGCGACATCGAGTCCCAGCCGTTCCTCGAGGCCGCCCGCCAGGTCCGTCACGAGCTCGGCCGCGACGACTGCTTCTTCCTGCACGTCTCGCTCGTGCCGTACATCGGGCCGTCGGGCGAGCTCAAGACCAAGCCGACCCAGCACTCGGTCGCCGCCCTGCGGTCGATCGGTATCCAGCCCGACGCCATCGTGCTGCGCTCGGACCGGACGGTGCCGACGTCCATCAAGCACAAGATCGCGATGATGTGCGACGTCGAGAACGAGGCGGTCGTCAACGCGGCGGACGCGCCGAGCATCTACGACATCCCGCGGGTGGTGCACTCCGAGGGCCTGGACGCCTACGTGGTGCGACGGCTCGACCTGCCGTTCCACGACGTCGAGTGGGGCGGCTGGAACCGTGTCCTGGAGCGGGTCCACGAGCCGGAGCACAACGTCGAGATCGCCCTGGTGGGCAAGTACATCGACCTGCCGGACGCCTACCTGTCGGTCACCGAGGCGCTGCGCGCCGGCGGCTTCGACAACGACACCCGGGTCGCGATCCGGTGGGTCGCGGCCGACGACTGCAGCACGCCCGCCGGCGCGCAGGAGGCGCTGTCCGGCGTGGACGCCATCCTCGTGCCGGGCGGCTTCGGCGTGCGCGGCATCGACGGCAAGGTCGGTGCGCTGCGCTGGGCGCGGGAGAACCTCGTGCCCACGCTGGGCATCTGCCTCGGCCTGCAGTCGATGGTCATCGAGTACGCGCGCCACGTCCTCGGCCTGGCGCAGGCCTCGTCGACCGAGTTCGACCCGGACTCCTCGGACCCCGTGATCGCCACGATGGCCGAGCAGCTCGCGATCGTCGGCGGCGACGGCGACCTGGGCGGCACGATGCGCCTCGGTGCCTACCCCGCCACCCTCGCCGAGGGCTCCGTGGTCGCCAAGACTTACGGCGCCACGGACGTCTCCGAGCGTCACCGCCACCGCTACGAGGTGAACAACCTCTACCGCGACCGCCTCGAGGAGGCCGGCCTGCGGATCAGCGGCACCTCGCCGGACGGCGACCTCGTCGAGTTCGTCGAGCTGCCCGCCGACGTCCACCCGTACTACGTGAGCACCCAGGCGCACCCGGAGTTCAAGTCCCGTCCCACGGGCTCGCACCCCCTGTTCTCGGGTCTCGTCGCCGCGGCGCTGGTCCGCCAGGGCGCGACCGCGTGAMADTVNRTSSRSSSRAGATHPTRHIFVTGGVASSLGKGLTASSLGRLLRSRGLRVTMQKLDPYLNVDPGTMNPFQHGEVFVTEDGAETDLDIGHYERFLDVELPASSNVTTGQVYSRVIAKERRGEYLGDTVQVIPHITDEIKARMRDQAGPDVDVIITEIGGTVGDIESQPFLEAARQVRHELGRDDCFFLHVSLVPYIGPSGELKTKPTQHSVAALRSIGIQPDAIVLRSDRTVPTSIKHKIAMMCDVENEAVVNAADAPSIYDIPRVVHSEGLDAYVVRRLDLPFHDVEWGGWNRVLERVHEPEHNVEIALVGKYIDLPDAYLSVTEALRAGGFDNDTRVAIRWVAADDCSTPAGAQEALSGVDAILVPGGFGVRGIDGKVGALRWARENLVPTLGICLGLQSMVIEYARHVLGLAQASSTEFDPDSSDPVIATMAEQLAIVGGDGDLGGTMRLGAYPATLAEGSVVAKTYGATDVSERHRHRYEVNNLYRDRLEEAGLRISGTSPDGDLVEFVELPADVHPYYVSTQAHPEFKSRPTGSHPLFSGLVAAALVRQGATAPGPT0021215_1418DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021215-pyrG-K01937NANA
AK018_064971656murJ_3lipid II flippase MurJGTGAGCGCACCGGGCGGTCGCCGGGTCGGGGCCACGGTCGCCGGGGCGGCGGTGCTCATCACCGTCGTCACCCTGGCGAGCCGCGTCGTCGGGTTCGGGCGCTGGCTGGCCCAGGCCCGGTTCGTGGGGACCGACGGCGTCGACGCCCCCCTGAACGCCGCGAACCTGCTGCCGAACGTCCTCTTCGAGATCGCGGCCGGCGGCGCCCTGACCGGTGCGGTCGTGCCGCTGCTGTCGGGCTTCCTCGTGCGCGGCGACCGGACCGACGCCTCGCGCACCGCCTCGGCGTTGCTCGGGTGGACCGTCGTCGTGCTGGTCCCGGTCGCGGGCCTGATGGCCCTGCTGGCCGACCCGCTCGCCGAGCACGTGCTCCGCCTGCACGACCCGGTCAACGTCGCCGTGGCGGCCGACTTCCTGCGCGTCTTCGCCGTGCAGGTGCCGCTGTACGGGCTCGCGGTGGTGCTCGGCGGCATCCTGCAGGCGCACCACCGCTTCTTCTGGCCCGCCTTCGCGCCGCTGGTGTCCAGCCTCGTGGTCATCGGCGTCTACGCCCGGTTCGGCACCCTGGCCGACGGCAACCAGCAGGACGTCGCCGAGCTGACGTCCCAGGCGCTCGGCTGGCTGGCCTGGGGCATGACGGCCGGTGTGGCGTTCCTCGCCCTGCCGCTGGTGGTGCCCGTGGCCCGCACGGGGCTGCGGATCCGGCCCACGCTGCGGTTCCCGGACGGCGAGGGGCGGCGTGCGGCCCGTCTCGCCTCGGCCGGCATCGGGGCCCTGGTGGCGCAGCAGCTCGCGCTGCTGGCCACGATGGCGTCCGCGAACGAGGCCGGCGGCGACGGGACGTGGACGATCTTCCTGTACGCGCAGAACGTCTACTTCCTGCCGTACGCCGTCCTGGCGTTCCCCATCGCCACGAGCGCCTTCCCCCGCTTCTCCGCGCTGGCGTCCGAGGGACGCGGCGACGAGCTCGCGCGGCTGGTGTCGTCGACGACGCGGGTCCTCGTCGTCGTCTCGGCGGCGGGCGCCGCCGCGCTGGTCGCCGCCGCGCCCCTGGTCGAGAACGTCTTCGCGGGCGTCGCGGACGGTGACGCCGACGGCCTCGCGGCCGCGCTGGCCTGGATGGCGCCGGGACTGCTCGGGTACGCGCTGATCCTGCAGCTGTCCCGGCTCCTGTACGCGGTCGGTGCCGCGCGGGCCGCCTGGGTCTCCACCGCGGCCGGCTGGGCCGTCGTCGCGGTCGGGGTGGGACTCGCGGTCCCCGTGTTCGCCGGGGGAGGGGACATCGAGACGGCCGTGCTGGCCTGGCTCGGCGGCGCCACGACGGTCGGCATGACCGTGGCCGGTGCCGCCCTGCTGCTCGCGGTGCGGCGTCGGGTCGGCGCACCCGCCCTGGACGGCGTGCTGCGCACGGGCGCCGTGACGGTGGCCGCGGCCGCGGTCGGGGCGCTGGCGGGCCGCTGGGCCGTCCCGGTGGCCGACCGGGGCGCGGGTGACGACGCCGCCCTCGACGCCGGGTGGATCGCGGCCGACGTCGGCTGGGGGCTGCTCGCGGGGCTGCTCGCGGCCGCGGTCGTCCTCGTGGTCGCCGCGGCCACCGACCCGGCCGTGCGCTCGCGCACCGCGGGCGTCGCCGGGCGTCTGCTGCGCCGGCGGTGAMSAPGGRRVGATVAGAAVLITVVTLASRVVGFGRWLAQARFVGTDGVDAPLNAANLLPNVLFEIAAGGALTGAVVPLLSGFLVRGDRTDASRTASALLGWTVVVLVPVAGLMALLADPLAEHVLRLHDPVNVAVAADFLRVFAVQVPLYGLAVVLGGILQAHHRFFWPAFAPLVSSLVVIGVYARFGTLADGNQQDVAELTSQALGWLAWGMTAGVAFLALPLVVPVARTGLRIRPTLRFPDGEGRRAARLASAGIGALVAQQLALLATMASANEAGGDGTWTIFLYAQNVYFLPYAVLAFPIATSAFPRFSALASEGRGDELARLVSSTTRVLVVVSAAGAAALVAAAPLVENVFAGVADGDADGLAAALAWMAPGLLGYALILQLSRLLYAVGAARAAWVSTAAGWAVVAVGVGLAVPVFAGGGDIETAVLAWLGGATTVGMTVAGAALLLAVRRRVGAPALDGVLRTGAVTVAAAAVGALAGRWAVPVADRGAGDDAALDAGWIAADVGWGLLAGLLAAAVVLVVAAATDPAVRSRTAGVAGRLLRRRPGPT0024200_787DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_LIPID_II_FLIPPASE_ACTIVITY,PGPT0024200-murJ|mviN-K03980NANA
AK018_06498876hypothetical proteinATGCGCGCGGCGCGGGTGCTGGCGGCCGGGCTGGTCGCCGCGGCCACGACCGCCGTCGTGCGCCGTGCCCTGTCCGCAGCGCCCCCCGGCGGGCCCGACCGGTGGACGCGGACCAACCACCGCGACGAGCCGGTCTCGATGCTCGAGGGCCCGGCCGCGGCCGCCGGGCTGGTCGCGGGAGCCGCGGCCTGCGGTGCTGCGCCGTGGACCCGGGCGGCACTGGTGATCGCCACCGGCGCGGCCGGGGCCTTCGGCGTCGTCGACGACCTCGCCGAGGACACCGCGACGCGCACCAAGGGACTGCGCGGGCACCTCGGGGCGCTGGCGCGCGGCGAGCTCACGACGGGCGGGCTCAAGGTCCTCGGGATCGGGGCGACGGCCCTCGTCGCCGCCGGGGTCGGCACGCCGCGACGGCGGAGCGCGGCCGGGCACGCGGCCGACGTCGCCGTCAACGGCGCGCTCATCGCCGGGACGGCCAACCTGGTCAACCTGCTCGACCTGCGTCCGGGCCGTGCCCTCAAGGCCACCGGGGCGCTCGCCGCCCCGGTGCTCGCCGCTCGGGAGCCGGGGTCGACCGGGGCGCTGCTCGGGGTCGTGGCGGCCTCGGCCCCGGCCGACCTGGCCGAGCGCGACATGCTGGGCGACGGCGGGGCGAACGCGCTGGGCGCCTTCGTCGGCACGCAGTGGGCCTGCGCGGCCTCCCGCCCGGTCCGGGTGGCGGCCCTGGCGACCGTGGTGGGGCTGACGCTCGCCTCGGAGCGGGTCAGCTTCTCCGCCGTCATCGACCGCACCCCCTGGCTGCGTCGCGTCGACGGGCTCGGCCGACGTCCCGCCGAGCCGGCCGCCGGCGACGACGTCGGAGGCACGGCGGGGTGAMRAARVLAAGLVAAATTAVVRRALSAAPPGGPDRWTRTNHRDEPVSMLEGPAAAAGLVAGAAACGAAPWTRAALVIATGAAGAFGVVDDLAEDTATRTKGLRGHLGALARGELTTGGLKVLGIGATALVAAGVGTPRRRSAAGHAADVAVNGALIAGTANLVNLLDLRPGRALKATGALAAPVLAAREPGSTGALLGVVAASAPADLAERDMLGDGGANALGAFVGTQWACAASRPVRVAALATVVGLTLASERVSFSAVIDRTPWLRRVDGLGRRPAEPAAGDDVGGTAGPGPT0015240_2799DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISMCE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015240-wecA|tagO|rfe-K02851NANA
AK018_064991092hypothetical proteinGTGATCGACTTCCGCTACCACCTCGTCTCGCTGATCAGCGTCTTCCTGGCGCTCGCGGTCGGCATCATCCTCGGCGCCGGTCCGCTGCAGAACGCCATCGGCGACCAGCTGACCGACCAGGTGGAGGCCCTGCGGACCGAGCGCACCGCGCTGCGCGACAGCCTCGGGCAGACCGAGGCGGAGCTCGCCGACCAGCAGGCCTACGCCCTGGCGGCGGGCGCCGAGCTGGTCGACGGTTCGCTCGAGGACCTGAGCGTCGCCGTCGTCGACGTCGACGGCATCGCCGAGACCCTCGAGCTCGACGTCGTCAACCAGCTGGAGGCGGCCGGCGCGCGCGTGGTGGCCCAGTCCTCGATGACCGACTCCTGGAGCACCGTGGACGACTCGGTGCTCCGCGACACCGTCGCGGACGGGCAGCGGGGTCAGCTCGACGACATGGTGCCCGAGGAAGCGACGACCTCGCAGGTGCTCGGCACCGTGCTGGGCGTCGCGCTGACCGAGGGCGACGAGCAGGTCCCCGGGGCGCGCAGCGACCGGGCCGTCGAGCTCTACCAGCTCCTCGCGCAGGTCGGCCTGGTCGACTCCCGGTTCGCGCCGTCGGCGCCGGCCGACGCCGTGCTGCTGCTGACCGCGGGGCTGCCGGAGGAGAACGGGGCCTCCACGTCCGAGACGCCCGAGGTCGGCGAGGACGTCGACGTCGCGAGCACCGTCACCGCCGTGCAGGCCGTGGCCGGGACGGTCGTGGTGGCCGGCCCGACGGCGACCGACGGCGACCTGCTCACCGAGCTGCGCGCCGTCGAGGACGTCACCGCCTCCACCAGCACGGTCAGCGGCATCGAGCAGGAGGTCATGCGGATGAACGTGCCGCTCGCGATCGCCGCGCAGGACGACGACCAGGTGGGGCACTACGGCTTCGAGGAGGGTGCGCAGGTCATCCCGCCGGTGGTGCGGACGCCGCCGGCCGAGGACGACGCCGAGGGGACGGGCGACGGCACGACCGACGCGACCGAGGACTCCGCCGACGACGCCGCCGCGCCGGACGACTCGTCCGCCGACGCGTCCGCCGACGCCGACAGCACCCAGGACTCCTGAMIDFRYHLVSLISVFLALAVGIILGAGPLQNAIGDQLTDQVEALRTERTALRDSLGQTEAELADQQAYALAAGAELVDGSLEDLSVAVVDVDGIAETLELDVVNQLEAAGARVVAQSSMTDSWSTVDDSVLRDTVADGQRGQLDDMVPEEATTSQVLGTVLGVALTEGDEQVPGARSDRAVELYQLLAQVGLVDSRFAPSAPADAVLLLTAGLPEENGASTSETPEVGEDVDVASTVTAVQAVAGTVVVAGPTATDGDLLTELRAVEDVTASTSTVSGIEQEVMRMNVPLAIAAQDDDQVGHYGFEEGAQVIPPVVRTPPAEDDAEGTGDGTTDATEDSADDAAAPDDSSADASADADSTQDSNANANANANA
AK018_065001194hypothetical proteinATGAGAATGATCCTGCGCCGGGCCGACCGCAGCCCCGACACCAGCGACGACGCCGCCGACGGCGGTGGCACGGCGCGTGTCGGCGCGCGGACGAAGGACCTCACCAAGCGGCTCCGCCCGGGCGACGTGGCCGTGATCGACCACGCCGACATCGACCGGGTGGCGGCCGAGGCGCTGGTCGCCGTCGGACCGTCCGCCGTGCTGAACGCGGCCGCCTCGACGACCGGCCGCTACCCGAACGCCGGTCCCGACATCCTGCTGCAGGCCGGCATCGTCCTGGTCGACGACATCGGCCCGGAGATCATGACCGTGCGCGACGGCGCCCGCGTGAGCGTCGAGGGCGGCGAGGTCCGCGTCGACGGCCAGGCCTTCGCGTCCGGGACCCGCCAGACGCCCGAGACCGTCGCCCGCGACCTCGCGGAGGCCCGCGAGGGCCTGTCGGACGAGATCGAGCGGTTCGCCGAGAACACGCTGTCCTACCTGCGCCGCGAGCGCGACCTGCTGCTGGACGGCGTGGGCGTGCCGGACGTGCGCACCACGGTCGAGGGCCGGCACGTCCTCATCGTCGTGCGCGGCTACCACTACCGCGAGGACCTGGCGATGCTGCGGTCCTACATCGCCGAGAACCGGCCGGTGCTGGTCGGTGTCGACGGCGGCGCGGACGCGATCCTCGACGCCGGGTACCAGCCGGACATGATCGTGGGCGACATGGACTCCGTCTCGGACCAGGCGCTGTCGTGCGGCGCCGAGATCGTGGTGCACGCCTACCGGGACGGCAACGCCCCCGGTCTGGAGCGCGTGCGCGCCCTGGGGGTGGACCCCGTGGTGTTCCCGGCCACCGGGACCAGCGAGGACATCGCGATGCTGCTCGCCGACGACAAGGGCGCCGAGCTGATCGTCGCCGTCGGGACGCACGCCACGCTCGTGGAGTTCCTCGACAAGGGCCGCGCCGGCATGGCGAGCACCTTCCTGACCCGGCTGCGCATCGGCGGCAAGCTCGTCGACGCCAAGGGCGTCTCCCGGCTGTACCGCACCCGGATCTCCAACCTGCAGCTCACGCTGCTGTCGCTGGCCGGCGTCGCGGCGGTGCTCGCCGCCCTGTGGTCGACGGCGGCCGGGCAGACCGCCTTCGGGCTCGTCGGAGCCCAGATCGACGACCTCGTGTCGTGGATCGGCAGCCTCTTCGGCGGCTGAMRMILRRADRSPDTSDDAADGGGTARVGARTKDLTKRLRPGDVAVIDHADIDRVAAEALVAVGPSAVLNAAASTTGRYPNAGPDILLQAGIVLVDDIGPEIMTVRDGARVSVEGGEVRVDGQAFASGTRQTPETVARDLAEAREGLSDEIERFAENTLSYLRRERDLLLDGVGVPDVRTTVEGRHVLIVVRGYHYREDLAMLRSYIAENRPVLVGVDGGADAILDAGYQPDMIVGDMDSVSDQALSCGAEIVVHAYRDGNAPGLERVRALGVDPVVFPATGTSEDIAMLLADDKGAELIVAVGTHATLVEFLDKGRAGMASTFLTRLRIGGKLVDAKGVSRLYRTRISNLQLTLLSLAGVAAVLAALWSTAAGQTAFGLVGAQIDDLVSWIGSLFGGNANANANANA
AK018_065011704recN_1COG0497DNA repair protein RecNGTGCTCGAGGAGATCGCGATCGAGGACCTCGGGGTGATCCGCTCGGCGCGGGTCCCGCTGTCCGCCGGCCTGACCGTGATCACCGGTGAGACCGGGGCGGGCAAGACCATGGTGCTCACGGGCCTGGGGCTGCTCATGGGCGGCAAGGCCGACCCCGGCAGCATCCGGCCGGGGGCCTCGCGCGCCGTCGTCGAGGGGCGCCTCGACCTGGCCCGTCACCCGGAGGTCGTCGGTCGCGTCGACGACGCCGGGGGCAGCGTGGACGACGACGGCACGGTCGTCGTGCTGCGCACGGTCGCGTCCGGGCGGTCGCGGGCCCATCTCGGCGGCCGGGGGGTGCCGCAGGGCGTCCTCGCGGAGGTCGCCGACGAGCTCGTCACCGTGCACGGGCAGTCCGACCAGCTGCGGCTGCGCACGCCCGCCAAGCAGCGCGAGGCCCTCGACCGGTTCGCCGGGACGGAGCACGCCGAGGTGCTCGCCGCCTACCGGGCGGCCTGGAGCGAGCGGGCCGGGCTGCAGGCGGAGATCGACGACCTGACCTCGCGCGCCGCCGAGCGGGCACGCGAGGCCGAGCTGCTGCGCCTCGGGCTGGCCGAGGTCGAACGCGTCGACCCCCAGCCCGGGGAGGACGCCGAGCTGACGGCGCTGACCGCCCGCCTCGGCAACGCCGAGGCGCTGCGGCAGGCGGCGCAGCAGGCGCACGACGCCGTCGTCGGACTCGACATGGAGACCGAGGGCTCGGCGGTGCACGCCCTGGAGCAGGCCAAGCGTTCCCTGGACGCCGTCGCCGAGTCCGACCCCGCGCTGGCCGAGCAGGCCGGTCGCCTCGCCGAGGCCGCCTACGTCATCACCGACGTGGCGACCGAGCTGTCCGGCTACGTCGCCGACCTGCAGGCCGACCCGGCCGCGCTGGAGACCGCGCACCAGCGTCTGGCCGAGCTCGGTGCGCTCACCCGCAGCTACGGCGAGACGATCGACGACGTCCTGCAGTGGGCCTCCGACGCCGGGCTGCGGCTCCTGGACCTGGACGACGGCGACGAGCGGGTCACCGCGATGCGCGACCGGGTCACCGAGCTGGACGCCCGGCTCGTCTCCCTCGCGGCCCGGGTCACGGCCGGGCGACGTACCGCCTCCGACCGGCTCGCCGAGGTCGTCACGACCGAACTGGCCGGGCTGGCCATGTCGGGGGCGCGTCTGCAGGTCGACGTCGGCGAGGCCGACCCCGGGCCGTCGGGGGCGGACCAGGTGGTGTTCCTGCTCGAACCGCACCCCGGCGCTCCGGCCCGCCCGCTCGGCAAGGGCGCGTCCGGTGGTGAGCTGTCCCGCGTCATGCTCGCGGTCGAGGTCGCCCTGGCCACCGCCGGCGAGGACACCGTGCTGCCCACCTTCGTCTTCGACGAGGTCGACGCCGGCGTCGGGGGACGAGCGGCGGTCGAGGTCGGTCGACGGCTCGCCCGGCTGGCGCGCAGCACCCAGGTGGTGGTCGTCACCCACCTGGCGCAGGTGGCGGCCTTCGCCGACACCCACCTGGTGGTGACGAAGGCCACCGAGGGCGACGACGTCACCACCGTGACCGGCGTCCACGAGGTCGCGGAGGACGAGCGGGTCCGTGAGCTGGCCCGGATGCTGTCCGGCCAGGACGACTCGGCGACGGCGCGGCAGCACGCCCTCGAACTGCTCGAGTCCTCGGCCGTGGGACGATAGMLEEIAIEDLGVIRSARVPLSAGLTVITGETGAGKTMVLTGLGLLMGGKADPGSIRPGASRAVVEGRLDLARHPEVVGRVDDAGGSVDDDGTVVVLRTVASGRSRAHLGGRGVPQGVLAEVADELVTVHGQSDQLRLRTPAKQREALDRFAGTEHAEVLAAYRAAWSERAGLQAEIDDLTSRAAERAREAELLRLGLAEVERVDPQPGEDAELTALTARLGNAEALRQAAQQAHDAVVGLDMETEGSAVHALEQAKRSLDAVAESDPALAEQAGRLAEAAYVITDVATELSGYVADLQADPAALETAHQRLAELGALTRSYGETIDDVLQWASDAGLRLLDLDDGDERVTAMRDRVTELDARLVSLAARVTAGRRTASDRLAEVVTTELAGLAMSGARLQVDVGEADPGPSGADQVVFLLEPHPGAPARPLGKGASGGELSRVMLAVEVALATAGEDTVLPTFVFDEVDAGVGGRAAVEVGRRLARLARSTQVVVVTHLAQVAAFADTHLVVTKATEGDDVTTVTGVHEVAEDERVRELARMLSGQDDSATARQHALELLESSAVGRNANANANANA
AK018_06502975nadKNAD kinaseATGACGCGCCGCGTCCTGATCGTGACCCACGGCGGGCGGCCCCGTGCCGTGGCCGCGATGTCCGAGGCGGTCTCCGAGCTCGAGTCCGCAGGGTTCGAGGTCACGCTGCACGACGACGACCTCGCCGAGACCTTCGGCGACCGGATCTCCTCGGTGCGCCTGCGCGAGGGCGTCGCCGAGTCCGAGGTCGTCATGGTCCTCGGCGGTGACGGCACGATCCTGCGCGCAGCCGAGCTGACGCACGGGACCGAGGTGCCCCTGCTGGGCGTGAACCTGGGGCACGTCGGGTTCCTGGCCGAGTCCGAGCGGGAGAACCTGCACGACGCCGTGCGCCGGCTGGCGGCCCACGACTACGTCGTCGAGGAGCGCCGGGTGGTGGACGTCGTCGTCCACCGTCCCGGGGAGGACGAGCCGGTGACCGGCTGGGCGCTCAACGAGGCAACCATCGAGAAGGGCGACCGCGAGCGCATGCTCGAGGTCGGCATCGCCGTGGACGGTCGGCCGCTGAGCTCCTTCGGGTGCGACGGCGTCCTCGTCTCGACCGCGACGGGGTCGACGGCGCACGCCTTCAGCGCCGGCGGACCGGTGATGTGGCCGGACGTCGACGCCGTGCTGCTCGTCCCGCTGTCGGCGCACGCGCTGTTCTCGCGGCCCCTGGTCATCAGCCCGCGCTCGGAGTACGTCGTGGAGGTGCTGGAGCGCAGCCCGATCCCCGGGGTGCTGACCTGCGACGGGCGCCGCAGCATCGACCTGCCGCCCGGCTCCCGCGTGCACGTCCGCAGCGGCGCCGTGCCGCTGCGGTTCGCACGGCTGATGCCGGCGCCGTTCACCGACCGGCTCGTGTCCAAGTTCAACCTGCCCGTCGTCGGCTGGCGGCAGGCCGCCGACGGTGCGGCACAGCGGTCCGTGCCCACCGAACAGGGTCCGCCCGAGGGCTCCGCCCCGGGCCCGGACCCGGTCCAGAAGGAGGTGTGAMTRRVLIVTHGGRPRAVAAMSEAVSELESAGFEVTLHDDDLAETFGDRISSVRLREGVAESEVVMVLGGDGTILRAAELTHGTEVPLLGVNLGHVGFLAESERENLHDAVRRLAAHDYVVEERRVVDVVVHRPGEDEPVTGWALNEATIEKGDRERMLEVGIAVDGRPLSSFGCDGVLVSTATGSTAHAFSAGGPVMWPDVDAVLLVPLSAHALFSRPLVISPRSEYVVEVLERSPIPGVLTCDGRRSIDLPPGSRVHVRSGAVPLRFARLMPAPFTDRLVSKFNLPVVGWRQAADGAAQRSVPTEQGPPEGSAPGPDPVQKEVPGPT0013490_1589DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013490-ppnK-K00858NANA
AK018_06503891tlyA_1COG118916S/23S rRNA (cytidine-2'-O)-methyltransferase TlyAATGCCGAACCGTGCCGACTCAGAGCTCGTGCGGCGCGGACTGGCCCGGTCTCGTCGGCAGGCGTCCGCCTTCGTCGCGGCCGGCCGGGTCCGGGTCGGCGACGAGGTCGTCACGAAGTCCTCCGCCGCCGTCGCGCAGGACGCCCCGCTCACCGTCGCCCCCGACCCGGACGACCCCGGGTACGCCTCGCGCGCCGGCGCGAAGCTCGCCGGCGCCCTCGAGGCGCTCGCCGCGGACCCGGTCGGGCGAGCGGTGACCGACCGGCTGCCGGGTGCGCACTGCCTCGACGTGGGCGCCTCCACCGGCGGCTTCACCGACGTGCTGCTGCGCCGCGGTGCTGCCGGCGTCGTCGCCGTCGACGTCGGGCACGACCAGCTCGTGGACACGTTGCGCGCCGACGACCGCGTCACGGTCGTCGAGGGATTCAACGTCCGCGACCTCGGGCCCGCGGACCTGCCTCGGCCCCCGGACGTCGTGGTCGGCGACCTGTCCTTCATCTCGCTGCGCCTCGTCCTGGGCCCCGTCGCGACGTCGGTGCCCACCGGTACCGACGTCCTGCTGCTGGTCAAGCCGCAGTTCGAGGTCGGACGCGACCGGCTCGGCAGCGGCGGCGTGGTCCGCGACGCGGCCCTGCACGCGCAGTCCGTCACGGACGTCGTCGTCGCGGCGGCGCCGCTCGGCCTCACGGCCCGCGCGCTCGTGCCCAGCCCGCTGCCCGGACCCAGCGGGAACCGTGAGTACTTCGTCTGGCTGCGGCGCACGTCGACGGCCGTCCCCGCCGACGGCGACGCCGTTCGGTCCGTCGCCGACCGTGCGGCCGCCTGGCTGCCGGACGGTCAGCTGCCGCCGGTCCTCGCCCTGGGCGGGCCCGGCACCGGAGGTGAGAGATGAMPNRADSELVRRGLARSRRQASAFVAAGRVRVGDEVVTKSSAAVAQDAPLTVAPDPDDPGYASRAGAKLAGALEALAADPVGRAVTDRLPGAHCLDVGASTGGFTDVLLRRGAAGVVAVDVGHDQLVDTLRADDRVTVVEGFNVRDLGPADLPRPPDVVVGDLSFISLRLVLGPVATSVPTGTDVLLLVKPQFEVGRDRLGSGGVVRDAALHAQSVTDVVVAAAPLGLTARALVPSPLPGPSGNREYFVWLRRTSTAVPADGDAVRSVADRAAAWLPDGQLPPVLALGGPGTGGERNANANANANA
AK018_06504177hypothetical proteinATGTCGGACGACGCAGCCGACGTCGGCGAGCAGCCGGCCGGCCGCTCCGCCTCGTTGACCCCGCTGGACGGGATCGAGGACCTGCCGACCGGCGAGCACCCGTCGCGGTTCGAGGCCGTGCACCAGCACCTGCGGGCACGGCTGGACGACCCCGGGACGGACGGAGCGGGGGACTGAMSDDAADVGEQPAGRSASLTPLDGIEDLPTGEHPSRFEAVHQHLRARLDDPGTDGAGDNANANANANA
AK018_065051011COG0647D,L-glycerol 3-phosphate phosphataseGTGAGCGCCGGGCTCGCCGCGAGCGAGACGCCGCTGGCCGAGGCCTACGACCTCGCCCTGGTCGACCTGGACGGTGTCGCCTACCAGGGGCACCTGCCCATCGACCACGCGGCACCGAGCCTGGCGTCGGCGCGGGCGAGCGGCCTCGACCTGCTGTTCGTGACGAACAACGCCTCGCGTGAGCCCGAGGAGGTGGCCGGGCAGCTCAGCAGCCTGGACATCCCGACGGAGGCCGACGAGGTCATGACGGCCGCGCAGGCGTGCGCCACCCTGTTGCGCACGCGGCTCGAGCCCGGCGCCCGGGTGCTCGTCGTGGGTGGCCGCGGCCTGGTGACGGCAGTGCGGGAGGCGGGCTTCGAGGTGGTCGGCAGCGCCGAGGACGCCCCGGAGGCCGTCGCCCAGGGGTTCGCCCCCGAGCTCGGCTGGAGCGACCTGGCCGAGGCGGCGTACGCCGTGGCCGGCGGCGCCTGGCACGTCGCGAGCAACCGGGACATGTCCCTGCCGACCGCCCGCGGGTTCGCCCCGGGCAACGGCGCGCTCGTCGCCGCCGTGTCGGCGGCGACGGGGGTCGAGCCCGACAGCGCCGGCAAGCCGTCGCCCACGATGTACCGCATGGCCGTGGAACGGGCGGGCGCGTCCCGTCCTCTCGTCATCGGCGACCGGCTCGACACCGACCTCGCCGGAGCCCGGGCGGCGGGATACGCCGGGCTGCACGTCCTGACCGGGGTGTCCTCCGCGCGCGACGCCGTGCTGGCCGAGCCGGGCCTGCGCCCGCACTTCGTGGGCGCCGACCTGCGCTCCCTCCTCGTCGCGCACGAGACGCCCGTGCTGACCGACGGCTGGTGGAGGTGCGCCGACCGGGCCGCGCGCGTCGTCGACGGACGGCTCGAGCTCGACCGGCACGGCCCGGCGGGCCTCGACGTGGTCCGCGCCGCGTGCGCCGCCGCGTGGGACGCTGCGGACGCCGGTGAGCCCGTGGCGGCCGACAGCGTGCCGGAGCTGACCGCCTGAMSAGLAASETPLAEAYDLALVDLDGVAYQGHLPIDHAAPSLASARASGLDLLFVTNNASREPEEVAGQLSSLDIPTEADEVMTAAQACATLLRTRLEPGARVLVVGGRGLVTAVREAGFEVVGSAEDAPEAVAQGFAPELGWSDLAEAAYAVAGGAWHVASNRDMSLPTARGFAPGNGALVAAVSAATGVEPDSAGKPSPTMYRMAVERAGASRPLVIGDRLDTDLAGARAAGYAGLHVLTGVSSARDAVLAEPGLRPHFVGADLRSLLVAHETPVLTDGWWRCADRAARVVDGRLELDRHGPAGLDVVRAACAAAWDAADAGEPVAADSVPELTAPGPT0024450_441DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117NANA
AK018_06506687hypothetical proteinATGCGGGACCTGCACAAGGAGGCGCGGGAACGGCTGCGCGGCCTGAGCAAGGAGAACGCCGAGCGGGTCGGCGCACACCTCGTCATGGCCGGACGCCTGCTCGACACCGACCCCGAGGCGGCCTACGCCCACGCACAGGCCGCCGTCCGACGCGCCGGACGCGTCGACGTCGTGCGCGAGGCGGCCGGCATCGCCGCCTACCGGACCGGTCGGTTCGCCGAGGCCCTGCGCGAGCTGCGCACCGTGCGACGGCTCAACGGTTCCTCGGAGCACCTGCCGCTCATGGCCGACGCCGAACGCGGGCTGGGTCGGCCGGAGCGTGCCATCGCGCTGGCGGCCTCCGAGGAGGCGCGCACCCTGGACGCCGAGACGCGCACCGAGCTGGCGATCGTCGTCAGCGGGGCTCGCTCCGACCTCGGTGAGCACGACGCCGCACTCGTGGTGCTCGACCGGATCCCGGCCGCCGAACGGAAGGGTGACCTCGGGCTGCGCGTGCTGCAGGCACGCGCCGTCGCCCTCGAGGCCGCCGGCCGGACGGACGAGGCGGCCAGGGTCCTCGCCGGTATCGACCCGGACGCCCTGCAGCGCGCCGTCGGCGGCGGCGAGATGCCGGCCGACGACGTCGTCGTCTTCGACGCCTACGACGAGTCGGCGGACGAGGGGAACGAGGCGGAGGCCGACGCGTGAMRDLHKEARERLRGLSKENAERVGAHLVMAGRLLDTDPEAAYAHAQAAVRRAGRVDVVREAAGIAAYRTGRFAEALRELRTVRRLNGSSEHLPLMADAERGLGRPERAIALAASEEARTLDAETRTELAIVVSGARSDLGEHDAALVVLDRIPAAERKGDLGLRVLQARAVALEAAGRTDEAARVLAGIDPDALQRAVGGGEMPADDVVVFDAYDESADEGNEAEADAPGPT0024450_6DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117NANA
AK018_06507765hypothetical proteinGTGGCGGAGGACGCCCACATCGGCCAGCTCTCCCGCGAGACCCGTTCGCGGCTGCGGGGTCTGAGCAAGGAGAATGCCGAAGGCGTCGGTGCCCACCTGGTGATGACGGGTCGTCTGCTGGACGTCGACCCCGAGCGGGCCTACCAGCACGCCCAGGCCGCCGTGCGGCGCGCCGGACGCATCGACGTCGTGCGCGAGGCCGCCGGACTAGCGGCGTACGCGTCCGGCCGGTACGCCGAGGCGCTGCGCGAGCTGCGCACCGTCCGGCGCCTGAACGGCTCGTCCGAGCACCTGCCGTTGATGGCCGACGCCGAACGCGGTCTCGGCCGCCCGGAGCGCGCCATCGCACTGGCGCGCACCGAGGAGGCGAGCACGCTCGACGCCGACGCGCGGACCGAGCTCGCGATCGTCGTCAGCGGGGCCCGCAGCGACCTCGGTGAGCACGACGCAGCGCTCGCCGTGCTCGACCGCATCCCGGTCGCCGAACGGCAGGGTGACCTGGGGCTGCGCGTGCTGCAGGCCCGTGCGGTGGCGCTCGAGACCGCCGGCCGGGCCGACGAGGCCGCCGAGCTGCTGGCCGGCGTGGACCGGGCCGCCCTGGACCGGGCGCTCGGGGTGGACGACGCGCCGGACGACGACGTCGTGGTGTTCGACACGTTCGACGAGGAGCCCGCGCCCGCGGACGCCGACGACGACCCGGCGCAGGACGCGGGCTCGGCCGACGCGGCCGGGACGCGGCGGGGTGGCGCCGAGGACGACCGGTGAMAEDAHIGQLSRETRSRLRGLSKENAEGVGAHLVMTGRLLDVDPERAYQHAQAAVRRAGRIDVVREAAGLAAYASGRYAEALRELRTVRRLNGSSEHLPLMADAERGLGRPERAIALARTEEASTLDADARTELAIVVSGARSDLGEHDAALAVLDRIPVAERQGDLGLRVLQARAVALETAGRADEAAELLAGVDRAALDRALGVDDAPDDDVVVFDTFDEEPAPADADDDPAQDAGSADAAGTRRGGAEDDRPGPT0024450_6DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117NANA
AK018_065081011COG0647D,L-glycerol 3-phosphate phosphataseGTGACCGCCACGCTGCGCGCGTGCGGGACGCCGCTCGCCGAGGCGTACGACCTGGCGCTGGTCGACCTCGACGGCGTCGCCTACGCCGGGCACCTGCCCATCGAGCACGCTGCTGCGAGCCTCGTGGCTGCCCGCGAGCGCGGCCTGGCGCAGGTGTTCGTGACGAACAACGCCTCGCGGGAGCCCGAGGACGTGGCCGGGCAGCTGTCCGAGCTGGACATCCCGACCCGCGCGGACGACGTCATGACGGCGGCCCAGGCGTGCGCCGCGCTACTGCGCACCCGCCTCGACCCGGGTGCCCGCGTGCTCGTGGTCGGGGGCGCCGGGCTGGTCACCGCCGTGCGCAAGGCCGGTTTCGTCGTCGTGCGTTCCGCGCAGGACGATCCCGCGGCGGTCGCCCAAGGCTATGCCGCCGAGCTCGGCTGGCACGACCTGGCCGAGGCCGCCTACGCCGTGGCCGCCGGCGCCTGGCACGTGGCGAGTAACCGGGACATGTCGCTGCCCACCGCCCGGGGGTTCGCGCCCGGCAACGGGGCGCTCGTCGCCGCCGTGGTGGCGGCCACGGGGGTGGAGCCCGACAGTGCCGGCAAGCCCGCCCCGACGATGTACCGGTTGGCCGTCGACGAGCACGGGGCCGAGCGCCCGCTGGTGATCGGCGACCGTCTCGACACGGACCTGGCCGGGGCGCGGTCGGCCGGCTACCCGGGGCTGCACGTGCTCACGGGGGTCTCCTCGGCGCGCGACGCCGTCCTGGCGTCCCCGGGTCTGCGCCCCGACTTCGTCGGAGCCGACCTGCGCTCGCTGCTCGAGCCGCACCCCGCGCCCGAGCAGGAGGACGGCTGGTGGCGCTGCGGCGGTCGAGCGGCCCGTGTCGTGGACGACCGCCTCGAGCTGGACCGTGAGGGATCCGCGGGCATCGACCTGGTGCGGGCCGCCTGCGCCGCAGCCTGGGACGCCGTCGACGCCGGGAACCGGCTGGACGCGGAATCCGTCCCGGACCTGCAGGGCTGAMTATLRACGTPLAEAYDLALVDLDGVAYAGHLPIEHAAASLVAARERGLAQVFVTNNASREPEDVAGQLSELDIPTRADDVMTAAQACAALLRTRLDPGARVLVVGGAGLVTAVRKAGFVVVRSAQDDPAAVAQGYAAELGWHDLAEAAYAVAAGAWHVASNRDMSLPTARGFAPGNGALVAAVVAATGVEPDSAGKPAPTMYRLAVDEHGAERPLVIGDRLDTDLAGARSAGYPGLHVLTGVSSARDAVLASPGLRPDFVGADLRSLLEPHPAPEQEDGWWRCGGRAARVVDDRLELDREGSAGIDLVRAACAAAWDAVDAGNRLDAESVPDLQGPGPT0024450_432DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117NANA
AK018_06509207hypothetical proteinATGACCCAGGATCCGACCGGGACCGGGCCTGCGCCGTCCGGCCCCGGGTCCGAGGCCCTCTCGGACCTGCGTGACCTCGCCGACCTCCCCGTGGCCGAGCACGCGGCACGCTTCGACGCCGTGCACGACCGGCTGCGCGCCCGGCTCGACCAGGACGACGAGACCACGAGCCCGGAGGCGGGCGACGCCGACAGGACGGGGCGCTGAMTQDPTGTGPAPSGPGSEALSDLRDLADLPVAEHAARFDAVHDRLRARLDQDDETTSPEAGDADRTGRNANANANANA
AK018_06510924tlyA_2COG118916S/23S rRNA (cytidine-2'-O)-methyltransferase TlyAATGCCCGGCCGCGTGGACGTCGAGCTCGTGCGGCGCGGCCTCGCCCGGTCCCGGGCGCAGGCCGCCGCTCTCGTGAGCTCGGGCAGGGTGCTGTCCGACGGCCGACCGGTCGCCAAGCCCGCCGCCCCGACCGGACCTGACACCGTGCTGGCCGTGGTCCCGGACGCCGACGACGCCGGGCACGTCTCGCGCGCGGGCGGCAAGCTGGCCGGCGCCCTGGACGCGCTGGCTGCGCACCCGCGGGGCAGCGGCGTCACCGACCAGGTGCAGGACGGCGTGTGCCTCGACCTGGGGGCCTCGACGGGCGGGTTCACCGACGTCCTGCTGCGCCGCGGTGCCGCCGGCGTCGTCGCCCTCGACGTGGGGCACGGCCAGCTCGTGCCCGAGCTGCGCGCCGACCCGCGCGTCACCGTCGTCGAGGGCTTCAACGTCCGCGACCTGACGGCCGACGACCTGCAGTCCCCGCCGGACCTGGTGGTGGGGGACCTGTCGTTCATCTCGCTGCGCCTCGTGGTGCCTGCCGTCGCCCGGTCCGTCGGCGCCGGCGTCCCGGCGGTGCTGCTCGTCAAGCCGCAGTTCGAGGTGGGACGCGAACGACTCGGGCACGGCGGCGTGGTGCGCGACCCGGCGCTGCACGTCTGCAGCGTCGTCGACGTCGCGGCGGCCGCCCGGCACGTCGGCCTGGTGCCGCGCGGAGTCGTGCCGTCCCCGCTGCCCGGCCCGAGCGGCAACCGGGAGTACTTCGTGTGGTTCGTCCGGGCCGACGACCCGAGCGTGGAGGCCCCGCCGACGGGACCGGTGCCACCCGGCGCCGGACCGGACGACGCCGTGGTCGCTGCGGCCGAGCGGGCCGTCGCGTGGCAGCCGGGTGACGGGCTGCCGCCGGTCGAGCTGTGCGGCACCGTCCCGGAAGGAGCGTCATGAMPGRVDVELVRRGLARSRAQAAALVSSGRVLSDGRPVAKPAAPTGPDTVLAVVPDADDAGHVSRAGGKLAGALDALAAHPRGSGVTDQVQDGVCLDLGASTGGFTDVLLRRGAAGVVALDVGHGQLVPELRADPRVTVVEGFNVRDLTADDLQSPPDLVVGDLSFISLRLVVPAVARSVGAGVPAVLLVKPQFEVGRERLGHGGVVRDPALHVCSVVDVAAAARHVGLVPRGVVPSPLPGPSGNREYFVWFVRADDPSVEAPPTGPVPPGAGPDDAVVAAAERAVAWQPGDGLPPVELCGTVPEGASNANANANANA
AK018_06511957ppnKCOG0061NAD kinaseATGACCCGGCGGGTGCTCATCGTCACGCACGGCGGTCGGCCGGAGGCGGTGGCCGCCATGTCCGAGGCCGTCGAGGAGCTCGAGCGCGCCGGGTTCGAGGTGGCGCTGCACGACGACGACCTCGCCGAGTCGTTCGGCGACCAGATGTCCGCCGCGCGTCTGAGCGAGGGGGTCGCGGAGTCCGAGGTCGTCATGGTGCTCGGCGGGGACGGCACGATCCTGCGGGCCGCCGAGCTGACGCACGGCAGCCGGGTCCCGCTCCTCGGCGTCAACCTGGGCCACGTCGGCTTCCTCGCCGAGTCGGAGCGGGAGAACCTGCACGACGCCGTGCGCCGCGTCGCCGCCCGCGACTACGTCGTCGAGGAGCGGTGCGTGGTCGACGTCGTCGTCGAACGCCCCGGCGAGTCCGAACCCGTCACCGGGTGGGCGCTCAACGAGGCCACGGTGGAGAAGGCCTCCCGCGAACGGGTGATGGAGGTGGGCATCGGCGTCGACGGACGTCCGCTCAGCTCGTTCGGGTGCGACGGCGTCGTGGTCTCGACGGCCACCGGGTCGACGGCGCACGCCTTCTCGGCGGGCGGGCCGGTCATGTGGCCCGACGTGGACGCCGTGCTGCTCGTCCCGCTGGCGGCGCACGCCCTGTTCGCCCGACCGCTGGTGATCGGTCCGGGATCGTCCTACACGGTGAAGATCCTCGACCGCAGCCCGGTGCCGGGGGTGCTCGCCTGCGACGGCCGGCGCACCATCGAGCTTCCCGTGGGGTCCCGGGTGCACGTGCGCCGGGGTGCCGTGCCGCTGCGGTTCGCGCGGCTGGCGCACGCGCCGTTCACGGACCGGCTCGTCTCGAAGTTCAACCTGCCGGTGATCGGTTGGCGCGAGGCCGCCGCTGACGGTGCGCGGCGGCCGGCACCATCCCGCGGCGACGCCGCGAACGACCACCACGAGAAGGAGGCGTGAMTRRVLIVTHGGRPEAVAAMSEAVEELERAGFEVALHDDDLAESFGDQMSAARLSEGVAESEVVMVLGGDGTILRAAELTHGSRVPLLGVNLGHVGFLAESERENLHDAVRRVAARDYVVEERCVVDVVVERPGESEPVTGWALNEATVEKASRERVMEVGIGVDGRPLSSFGCDGVVVSTATGSTAHAFSAGGPVMWPDVDAVLLVPLAAHALFARPLVIGPGSSYTVKILDRSPVPGVLACDGRRTIELPVGSRVHVRRGAVPLRFARLAHAPFTDRLVSKFNLPVIGWREAAADGARRPAPSRGDAANDHHEKEAPGPT0013490_2254DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013490-ppnK-K00858NANA
AK018_065121707recN_2COG0497DNA repair protein RecNGTGCTCGAGGAGATCGCTATCGAGGACCTCGGGGTGATCCGCGCGGCGCGGGTCCCGCTGTCCGCCGGGCTGACGGTCATCACGGGTGAGACCGGTGCCGGCAAGACGATGGTCCTGACCGGTCTGGGGCTGCTGATGGGCGGCAAGGCCGACCCGGGCGGCGTCCGGCCGGGTGCGGAGCGCGCCGTCGTGGAGGGACGGCTCGACCTGAGCCGTTTCCCATCCGTCGCCGCCCGGGTGGACGACGCCGGCGGCACGGTCGACGACGACGGCAGCGTCGTCGTGCTGCGCACGGTGGCGGGCGGTCGTTCCCGCGCCCACCTGGGCGGTCGGGGCGTGCCGCAGGGGGTGCTCGCCGAGATCGCCGACGAGCTCGTGACGGTCCACGGCCAGGCGGACCAGCTGCGGCTGCGCACGCCCGGCAAGCAGCGCGAGGCGCTCGACCGCTTCGCGGGGCGGGCGCACGCCCAGGTGCTGGCGGACTACCGGGCGGCCTGGTCCGAGCGGGCCGGTCTGCAGTCCGAGATCGAGGACCTCACGGCTCGCGCGGCGGAGCGGGCGCGAGAGGCCGAGCTGTTGCGCCTCGGGCTGGCCGAGGTCGAGCGCATCGACCCCCAACCGGGTGAGGACGTCGAGCTGACGACGCTCGTCGGTCGGCTCGGCAACGCCGAGCAGCTGCGCCAGGGCGCCCAGCTCGCGCACGACGCCGTCGCCGGCGAGGACATGGAGACCGAGGGGTCGGCCGTGCACGCGGTCGAGCGGGCGCGGCGGGCGCTGGACGCCGTGGCCGGCGACGACCCCGCGCTGGCCGAGCAGGTCGGCCGACTCACCGAGGCGGGGTACGTGTTGGCGGACGTCGCCACCGAGCTCTCCTCGTACGTCGCGGACCTGCAGGCCGACCCCGCCGCCCTGGAGACCGCGCACGCCCGCCTGGCCGAGCTGGGCACGTTGACGCGCAGCTACGGGGACACCGTCGACGACGTCCTGCGCTGGGCCTCCGAGGCGGGGCTGCGGCTGCTCGACCTGGACGACGGCGGCGAGCGCGTCGAGGCGATGCGCGCGCGGGTCGCCGAGCTGGACGAGCGGCTCTTGGAGCTGGCCGAGCAGGTCACCCGGGGCCGGTCGACGGCGGCCGGACGCCTCGCCGAGGCCGTCACCGCCGAGCTCGGCGGTCTCGCGATGGGTGGCGCCAGCCTGCAGGTGAGCGTGCTGCCGGCCGAACCCGGCCCGCAGGGCGCCGACCAGGTGTCCTTCGAGCTGGTGGCCCACCCCGGGGCTCCGGCGCGGCCCCTCGGCAAGGGCGCCTCGGGCGGTGAGCTGTCCCGCGTGATGCTCGCCGTCGAGGTGGCGTTGGCCACGGCCGCGGACGACGCCGCGGGCACGGTGCTGCCCACGTTCGTGTTCGACGAGGTGGACGCCGGCGTCGGTGGCCGGGCCGCCGTCGAGGTGGGCCGCCGTCTGGCCGCGCTCGCCCGGCGCACGCAGGTGGTGGTGGTCACGCACCTGGCGCAGGTCGCGGCGTTCGCGGACACCCACCTGGTGGTGACCAAGTCCACCGACGACGTCGACACCGTCACGGGGGTGCGCCCCGTCGTCGACGACGACCGGGTGCGCGAGCTGGCCCGGATGCTCTCCGGGCAGGACGGTTCCGAGACGGCTCGTCAGCACGCGGTGGAACTGCTGGAGTCCTCCGCCGTGGGACGATGAMLEEIAIEDLGVIRAARVPLSAGLTVITGETGAGKTMVLTGLGLLMGGKADPGGVRPGAERAVVEGRLDLSRFPSVAARVDDAGGTVDDDGSVVVLRTVAGGRSRAHLGGRGVPQGVLAEIADELVTVHGQADQLRLRTPGKQREALDRFAGRAHAQVLADYRAAWSERAGLQSEIEDLTARAAERAREAELLRLGLAEVERIDPQPGEDVELTTLVGRLGNAEQLRQGAQLAHDAVAGEDMETEGSAVHAVERARRALDAVAGDDPALAEQVGRLTEAGYVLADVATELSSYVADLQADPAALETAHARLAELGTLTRSYGDTVDDVLRWASEAGLRLLDLDDGGERVEAMRARVAELDERLLELAEQVTRGRSTAAGRLAEAVTAELGGLAMGGASLQVSVLPAEPGPQGADQVSFELVAHPGAPARPLGKGASGGELSRVMLAVEVALATAADDAAGTVLPTFVFDEVDAGVGGRAAVEVGRRLAALARRTQVVVVTHLAQVAAFADTHLVVTKSTDDVDTVTGVRPVVDDDRVRELARMLSGQDGSETARQHAVELLESSAVGRNANANANANA
AK018_065131203hypothetical proteinATGAGCCCGATGAGACCGATCCTGCGCCGGGCCGACCGGGCCCCCGAGACCAGCGACGACACCGCCGAGCCGGGTGGCCCGGCGCGCGTCGGTGCGCGGACGAAGGACCTGACCAAGCGGCTCCGGGCCGGTGACGTGGCGATCATCGACCACGCCGACGTCGACCGGGTCGCCGCCGACGCCCTCGTCGCCGCCGGCCCGTGCGCGGTGCTCAACGCCGCGGCGTCGACCACCGGCCGCTACCCCAACGCCGGTCCGGACATCCTCGTGCGTGCGGGCATCGTGCTCATCGACGCCCTCGGACCGCAGATCATGGATGTGGCCGAGGGCGCCCGCGTGACGTTCGACGGCGGCACGGTGCTGGTCGACGGCACCGAGTACGCCACGGGCACCCGCCAGACCCCCGAGACGATCGAGCGGGACCTGGCCGCGGCACGCGAGGGGCTGTCCGACGAGATCGAGAGCTTCGCGGAGAACACCCTCACCTACCTGCGCCGGGAGCGGGACCTGCTGCTCGACGGCGTCGGCGTGCCCGACGTGCGCACCCGCTTCGGGGGGCGCCACGTGCTGATCGTGGTGCGCGGCTACCACTACCGCGAGGACCTCGCGATGCTGCGGTCCTACATCGCCGAGAACCGGCCCGTGCTCGTCGGCGTGGACGGCGGGGCCGACGCGATCCTGGACGCCGGGATGCAGCCCGACATGATCGTCGGCGACATGGACTCGGTCTCGGACAAGGCGTTGACCAGCGGCGCCGAGATCGTCGTCCACGCCTACCGCGACGGCAACGCCCCGGGCATGGACCGGGTGCGGGCGCTCGGGGTCGACCCGGTCCCGTTCCCGGCGACCGGGACCAGCGAGGACATCGCGATGCTGCTCGCCGACGACAAGGACGCCGAGCTGATCGTCGCCGTCGGGACCCACGCCACCCTGGTGGAGTTCCTCGACAAGGGGCGTGCCGGCATGGCCAGCACGTTCCTGACGCGCCTGCGGGTGGGTGGCAAGCTCGTCGACGCCAAGGGCGTCTCGCGCCTGTACCGGACCCGGATCTCCAACCTCCAGCTGACGCTGCTGTCGCTGGCCGGCGTCGCCGCCGTCCTCGCCGCGCTCTGGTCCACGGCCGCCGGGCAGACGGCGTTCGGACTCGTCGGCGCGCAGTTCGACGACATCGTGTCGTGGGTCGGTAGCCTCTTCGGCGGCTGAMSPMRPILRRADRAPETSDDTAEPGGPARVGARTKDLTKRLRAGDVAIIDHADVDRVAADALVAAGPCAVLNAAASTTGRYPNAGPDILVRAGIVLIDALGPQIMDVAEGARVTFDGGTVLVDGTEYATGTRQTPETIERDLAAAREGLSDEIESFAENTLTYLRRERDLLLDGVGVPDVRTRFGGRHVLIVVRGYHYREDLAMLRSYIAENRPVLVGVDGGADAILDAGMQPDMIVGDMDSVSDKALTSGAEIVVHAYRDGNAPGMDRVRALGVDPVPFPATGTSEDIAMLLADDKDAELIVAVGTHATLVEFLDKGRAGMASTFLTRLRVGGKLVDAKGVSRLYRTRISNLQLTLLSLAGVAAVLAALWSTAAGQTAFGLVGAQFDDIVSWVGSLFGGNANANANANA
AK018_065141065mctBCopper transporter MctBGTGATCGACTTCCGATACCACCTCGTCTCGCTGATCAGCGTCTTCCTCGCGCTCGCGGTCGGCATCATCCTCGGCGCCGGGCCGCTGCAGAACGCCATCGGCGACCAGCTGACCGACCAGGTGGAGGCGCTGCGCGACGAACGCACGGCCCTGCGCGACAGTCTCGCCGAGACCGAGGCGGAGCTGTCCGACCAGAACGCGTTCGCCCTGGCGGCGGGTGCCGAGCTGGTCGACGGATCGCTGGCCGGCGTGGCCGTCGCGGTGGTCGACGCGGACGCGGTGCCCGACACCCTGGAGATCGAGGTCGTCAACCAGCTGGAGGCGGCCGGTGCCCGTGTCGTCGCCCAGACCTCCCTGACCCCGGCGTGGTCGTCGCTCGAGGACGAGGTGCTGCGGGGCACCGTGGCGGACGGGCAGCGCTCGCAGCTGGGCGACCTGGTGCCGCAGGACGCCACCACGTCCGAGGTGCTCGGCACCGTCCTGGGGCTGTCGCTGACCGAGGCCGACGCGCAGGGCTCCGGCGCTCGCGCGGAACGCGCGGTCGAGCTCTACCAGCTGCTGGCCTCCGTGGGCCTGCTGGAGTCGCGGTTCGCGCCGTCCGCCCCCGCCGACGCCGTGCTCCTCCTGGCCCCGGGTGGTGAGGACGCCGCGGCGACCGCCTCGCCCGACGACGAGGCGCCCGCGGAGGACGTCGACATGGTCAGCACGGTCTCCGCTCTCGAGGAGATCGCCGGGACGACGGTCGTGGCCGGACCGACGCTCCTCGAGGGCGACCTGGTGGCCGACGTCCGCGGCGACGAGCAGGTGGCGGGGTCCGTGAGCACCGTCAGCGGGATCGAGCAGGAGATCCTGCGCATGGACGTGCCCCTGGCCCTCGCCGCGCAGCACGCGGGACAGGTCGGGCACTACGGCTTCGAGGAGGGCGCCACGCCGGTACCGCCCGCCGTGGACCTGAGCGCCGGGGACGACACCTCCGACGGCGCCGACGACAGCGGGGACGACTCCGGAACCGACGGCTCCGGGGCGCAGGACGCCACCGGTGACGAGACGGAGGAGAGCTCCTGAMIDFRYHLVSLISVFLALAVGIILGAGPLQNAIGDQLTDQVEALRDERTALRDSLAETEAELSDQNAFALAAGAELVDGSLAGVAVAVVDADAVPDTLEIEVVNQLEAAGARVVAQTSLTPAWSSLEDEVLRGTVADGQRSQLGDLVPQDATTSEVLGTVLGLSLTEADAQGSGARAERAVELYQLLASVGLLESRFAPSAPADAVLLLAPGGEDAAATASPDDEAPAEDVDMVSTVSALEEIAGTTVVAGPTLLEGDLVADVRGDEQVAGSVSTVSGIEQEILRMDVPLALAAQHAGQVGHYGFEEGATPVPPAVDLSAGDDTSDGADDSGDDSGTDGSGAQDATGDETEESSNANANANANA
AK018_06515879hypothetical proteinATGGGGCTGGGCCGGGTCCTGCTGGCCGCCGGTGCCGCGGCGGCCGCCACGGCCGTGAGCCGACGCCTCCTGGCGGCCGCGCCCCCCGGGGGTGCGACGCGCTGGGAACGGACCAACCATCGCGGCGAGACGGTCTCGATGCTGGAGGGCCCCGCCGTCGCCGTCGGTCTCGTCGGCGGCGCCCTCGCAGCGTCGGGCGAGGCGCGGTCGCGGGTCGCGGTCGCCCTGGCCACGGCGGGCGGCGGCGCGTTCGGCGTCGTCGACGACCTGGCGGAGGACACCACCGTGCGGACCAAGGGACTGCGCGGCCACCTGGGCGCTCTGGCCCGGGGGCGGGTGACGACCGGAGGGCTCAAGGTCCTGGGCATCACGGCGACCTCGCTCGCCGCCGCCGCGGTCGCGCCACCCCGGGGGAGGGCCGGGGTCCGGCGCGCGGCCGACGTCCTGGTCGACGGCGCGCTGATCGCCGGCACGGCGAACCTCGTCAACCTGCTGGACCTGCGCCCGGGCCGTGCCCTGAAGGCCTCGCTGGCGCTGGCGGCGCCCGCGGGCGTCGCACCCGGCGGCGGCGCGCTGCTGGGCGCCGCCGCGGCCGCCGCGTCCCGGGACCTCGCCGAGTCGGACATGCTCGGTGACGGTGGGGCGAACGCGCTCGGCGCCTACGTGGGGGCCCGCTGGGTCGTCGCCGCACCGCGGCCCGTGCGTCTCGCCGCGCTCGCCGCCGTCGTCGGGCTGACGCTGGTCTCGGAACGCGTGAGCTTCTCGGCCGTGATCGGCCGCACCCCGTGGCTGCACCGGATCGACCAGGTCGGACGGCGGCCCGCGCCGGCGCCCGCCACCGTGCCGCCGGGGGAGCAGGGCGAGGGCTCCGCGGCGTGAMGLGRVLLAAGAAAAATAVSRRLLAAAPPGGATRWERTNHRGETVSMLEGPAVAVGLVGGALAASGEARSRVAVALATAGGGAFGVVDDLAEDTTVRTKGLRGHLGALARGRVTTGGLKVLGITATSLAAAAVAPPRGRAGVRRAADVLVDGALIAGTANLVNLLDLRPGRALKASLALAAPAGVAPGGGALLGAAAAAASRDLAESDMLGDGGANALGAYVGARWVVAAPRPVRLAALAAVVGLTLVSERVSFSAVIGRTPWLHRIDQVGRRPAPAPATVPPGEQGEGSAAPGPT0015240_2753DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISMCE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015240-wecA|tagO|rfe-K02851NANA
AK018_065161704murJ_4lipid II flippase MurJGTGAGCGGGCCGGACGGGACGGCCGGGCGCCGCGCCGCGACGACGATCGCCGGGGCCGCGGTGCTCATCACCGTCGTGACCCTGGCGAGCCGGGTCGTCGGCTTCGGGCGGTGGCTCGCCCAGGCGCACTACGTCGGCACCGACGGCGTCGACGCGCCGCTCAACGCCGCCAACCTGCTGCCCAACGTCCTGTTCGAGATCGCCGCGGGCGGCGCGCTGACCGGCGCGGTCGTCCCCCTGCTGTCCGGGTTCCTGGTGCGGGGAGACCGGGCGAACGCCTCGCGCACGGCGTCCGCCCTGCTCGGCTGGACCGTCGTCGTGCTGGTGCCGGTCGGTGCGCTGATGGCGCTGCTGGCGGACCCGCTGGCCGAGTACGTGCTGCGGCTGCACGACCCGGTCAACGTCGCGGTCGCCGCGGACTTCCTGCGGGTGTTCGCCGTCCAGATCCCGCTCTACGGCCTCGCCGTCGTGCTCGGCGGCGTCCTGCAGGCGCACCGCCGGTTCTTCTGGCCGGCGTTCAGCCCGCTCGTGTCCAGCGTCGTGGTGATCGGGGTCTACGCCCGGTTCGGCGCGCTGGCCGACGGCAACCAGCAGGACGTGGCCGCCCTGACGTCCGAGGCGCTCGGCTGGCTGGCGTGGGGCATGACGGCCGGCGTCGCCTTCCTCGCCCTGCCGCTCGTCGTCCCGGTGCTGCGCACCGGGCTGCGCCTGCGCCCGACCCTGCGCTTCCCGGCGGGGGAGGGCCGGCGCGCGGCACGGCTCGCCTCGGCGGGCGTCGGAGCGCTCGTCGCCCAGCAGCTCGCCCTGCTGGCGACCATGGCGTCGGCCAACGAGGCCGGCGGCGACGGGACCTGGACGATCTTCCTGTACGCGCAGAACGTCTACTTCCTGCCCTACGCCGTGCTGGCGTTCCCGATCGCCACCAGCGCCTTCCCGCAGTTCTCGGCGCTGGCCGCGGAGGGCCGGAGCGAAGACCTCGCACGGCTGGTGTCCTCGACGACGCGGGTGCTGGTCGTGGTATCGGTGGCCGGTGCCGCGGCGCTCGTGGCCGCCGCGCCGCTGGTGGAGAACGTCTTCGACCTGATCATGGCGGAGGGGTCCGACGCCGGCGGGATGGCCGTCGCGCTGACCTGGATGGCGCCCGGCCTGCTCGGCTACGCGCTCATCCTGCAGCTGTCCCGGCTGCTGTACGCGGTCGGGGCGGCCCGGGCGGCCGTCGTCGCGACGGCCTCCGGCTGGCTGGTGGTGGCGGCGGGCACGCTGGTGCCGGTGGTTCTCACGGCGGGCGACGACGGGACGGGTTCGCGCGAGTGGGTGCTGGGCGCCCTCGGCGCGGCGACGACCGTCGGGATGAGCGTGGCCGGTCTGGCCCTGCTGACCGCCGTCCGACGCCGGGTCGGCCCGGCGGCCCTGCGGACGGTGCCGCGCACGCTGCTCGTGGCCCTGCTCGCCGGCGGGTTCGGTGCCGTGCTCGGCCGCTGGAGCGTGCCGGTGGCGGACCGCAGCGTGGCCACCGGGCCGAACGGTGCGGACGGCACGCCCGTGACGACACCGTTCAGCACGGAGGCGATCGTCACGGACATCGGTCTGGGGCTCGTCGCCGGTCTCGTCGCCATGGGGGTAGTCGTGGTCGTGGCCGGCGTGACCGACGCCGCGGTACGGTCCCGGATCTCCGCCGTCGGGCGCCGCCTGCTGCGGCGGTAGMSGPDGTAGRRAATTIAGAAVLITVVTLASRVVGFGRWLAQAHYVGTDGVDAPLNAANLLPNVLFEIAAGGALTGAVVPLLSGFLVRGDRANASRTASALLGWTVVVLVPVGALMALLADPLAEYVLRLHDPVNVAVAADFLRVFAVQIPLYGLAVVLGGVLQAHRRFFWPAFSPLVSSVVVIGVYARFGALADGNQQDVAALTSEALGWLAWGMTAGVAFLALPLVVPVLRTGLRLRPTLRFPAGEGRRAARLASAGVGALVAQQLALLATMASANEAGGDGTWTIFLYAQNVYFLPYAVLAFPIATSAFPQFSALAAEGRSEDLARLVSSTTRVLVVVSVAGAAALVAAAPLVENVFDLIMAEGSDAGGMAVALTWMAPGLLGYALILQLSRLLYAVGAARAAVVATASGWLVVAAGTLVPVVLTAGDDGTGSREWVLGALGAATTVGMSVAGLALLTAVRRRVGPAALRTVPRTLLVALLAGGFGAVLGRWSVPVADRSVATGPNGADGTPVTTPFSTEAIVTDIGLGLVAGLVAMGVVVVVAGVTDAAVRSRISAVGRRLLRRPGPT0024200_787DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_LIPID_II_FLIPPASE_ACTIVITY,PGPT0024200-murJ|mviN-K03980NANA
AK018_065171686pyrG_2COG0504CTP synthaseGTGGCTGACACCAACCGAACCTCGTCCCGTTCCTCCAGCCGCGCCGGTGCCTCGCACCTGACGCGCCACATCTTCGTGACGGGTGGTGTCGCCTCCTCCCTCGGCAAGGGGCTGACCGCCTCGTCGCTCGGGCGCCTGCTGCGCTCGCGGGGCCTGCGGGTCACGATGCAGAAGCTCGACCCGTACCTCAACGTGGACCCGGGCACCATGAACCCGTTCCAGCACGGCGAGGTGTTCGTCACCGAGGACGGCGCCGAGACCGACCTCGACATCGGACACTACGAGCGGTTCCTCGACGTGGAGCTGCCGGCGTCGTCCAACGTCACCACCGGCCAGGTCTACTCCCGCGTGATCGCCAAGGAGCGTCGCGGCGAGTACCTCGGCGACACGGTGCAGGTCATCCCGCACATCACCGACGAGATCAAGCTGCGGATGCGGGACCAGGCGGGCCCCGACGTCGACGTGATCATCACCGAGATCGGCGGCACCGTCGGCGACATCGAGTCCCAGCCCTTCCTCGAGGCGGCCCGGCAGGTGCGGCACGAGCTCGGCCGCGACGACTGCTTCTTCCTGCACGTCTCGCTGGTGCCCTACATCGGGCCGTCCGGGGAGCTGAAGACCAAGCCGACCCAGCACTCCGTGGCGGCGCTGCGCAGCATCGGCATCCAGCCCGACGCGATCGTGCTGCGCTCGGACCGCACCGTGCCGACGTCGATCAAGCACAAGATCGCGATGGCCTGCGACGTGGACGACGACGCCGTGGTCAACGCGGCCGACGCCCCGAGCATCTACGACATCCCGCGCGTCGTGCACGGCGAGGGCCTGGACGCCTACGTGGTGCGCCGTCTGGACCTGCCGTTCCACGACGTGGAGTGGGGCGGCTGGAACCGTGTCCTGGAGCGGGTCCACGAGCCGGACCACCACGTCGAGATCGCCCTGGTCGGCAAGTACATCGACCTGCCCGACGCGTACCTGTCGGTGACCGAGGCGCTGCGCGCCGGCGGGTTCGACAACGACGCCCGCGTCGCGATCCGCTGGGTGGCGGCCGACGACTGCCGCACCCCGGCCGGCGCCGAGGAGGCGCTGGCGGGCGTGGACGCGATCCTCGTGCCGGGCGGTTTCGGCGTGCGGGGCATCGACGGCAAGGTCGGCGCCCTGCGGTGGGCCCGCGAGAACCTCGTGCCGACCCTCGGCATCTGCCTGGGCCTGCAGTCGATGGTCATCGAGTACGCGCGCAACGTCCTCGGCCTGTCCGACGCCTCGTCGACCGAGTTCGACCCGGACTCGGCGAACCCGGTGATCGCGACGATGGCGGAGCAGCTCGCGATCGTCGGCGGCGACGGGGACCTGGGTGGCACGATGCGTCTCGGCGCCTACCCCGCCCGCCTGGCGGAGGGGTCGGTGGTCGCCGGGGCGTACGGCGCCACGGAGGTCTCCGAGCGGCACCGGCACCGCTACGAGGTCAACAACCTGTACCGGTCCCGCCTGGAGGAGGCCGGTCTGCGCATCAGCGGCACCTCGCCCGACGGTGACCTCGTGGAGTTCGTCGAGCTCCCGGCGGACACCCACCCGTACTACGTCAGCACCCAGGCCCACCCGGAGTTCAAGTCGCGTCCGACCCGTTCGCACCCGCTGTTCTCCGGCCTGGTCGCCGCCGCGCTCGTGCGGCAGGGTGCGACGGCGTGAMADTNRTSSRSSSRAGASHLTRHIFVTGGVASSLGKGLTASSLGRLLRSRGLRVTMQKLDPYLNVDPGTMNPFQHGEVFVTEDGAETDLDIGHYERFLDVELPASSNVTTGQVYSRVIAKERRGEYLGDTVQVIPHITDEIKLRMRDQAGPDVDVIITEIGGTVGDIESQPFLEAARQVRHELGRDDCFFLHVSLVPYIGPSGELKTKPTQHSVAALRSIGIQPDAIVLRSDRTVPTSIKHKIAMACDVDDDAVVNAADAPSIYDIPRVVHGEGLDAYVVRRLDLPFHDVEWGGWNRVLERVHEPDHHVEIALVGKYIDLPDAYLSVTEALRAGGFDNDARVAIRWVAADDCRTPAGAEEALAGVDAILVPGGFGVRGIDGKVGALRWARENLVPTLGICLGLQSMVIEYARNVLGLSDASSTEFDPDSANPVIATMAEQLAIVGGDGDLGGTMRLGAYPARLAEGSVVAGAYGATEVSERHRHRYEVNNLYRSRLEEAGLRISGTSPDGDLVEFVELPADTHPYYVSTQAHPEFKSRPTRSHPLFSGLVAAALVRQGATAPGPT0021215_1418DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021215-pyrG-K01937NANA
AK018_06518660hypothetical proteinGTGAGCCGCGGGACCGGGGCCGGGCTCGAGCCCGGCAGGGACGCCGTCGCGCCGCGGCCCGTCGTCTCCCGCACCGCGGTGCACGCGGGCCGGATCTTCGACGTCGTGCGTGACGACGTCGACCTCGGCGACGCCGGCGTCGTCACGCGCGAGTACCTGGACCACCCCGGGGCCGTCGCCGTCGTCGTGCTGGACGACCAGGACCGGGTGCTGCTGCTGCGCCAGTACCGGCACCCCGTGCGGGCGATGATGTGGGAGGTGCCGGCCGGCCTGCTGGACGTGCCCGACGAGCCGGCGGTGGACGCCGCGGCACGCGAGCTGGCCGAGGAGGCCGACCTGCGGGCGCGGCGCTGGGACGTGCTGGTCGACTACGCGACGACGCCCGGTGCGAGCAACGAGTCCGTGCGCATCTTCCTGGCGCGCGACGTCGCGCAGGTCCCCGCGGCCGAGCGGCACGAGCGCACCGGGGAGGAGGCGGAGATCGCCACCCGGTGGGTGCCGCTGGCGGACGCCGTCGACCGGGTGCTGTCCGGCGACCTGCACAACCCGTCGGCCGTGGTGGGGATCCTGGCGGCGGCGGCGAGCCGCGCCGACGGCTGGTCCTCGCTGCGTCCGGTGGACGTGGAGTGGCCCTACCGGCGGGGCGTCCTGCCCGACTGAMSRGTGAGLEPGRDAVAPRPVVSRTAVHAGRIFDVVRDDVDLGDAGVVTREYLDHPGAVAVVVLDDQDRVLLLRQYRHPVRAMMWEVPAGLLDVPDEPAVDAAARELAEEADLRARRWDVLVDYATTPGASNESVRIFLARDVAQVPAAERHERTGEEAEIATRWVPLADAVDRVLSGDLHNPSAVVGILAAAASRADGWSSLRPVDVEWPYRRGVLPDPGPT0021525_3646DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021525-nudF-K01515NANA
AK018_06519948ctaA_2Heme A synthaseGTGAGCACGCCCGCACCCGTCGACGCCTCGAGCACCCCTGCCCGCCGCGACCGGCTCGCCCGGTTCCGCGGCTGGACGCGCGGCGTGCTCGTCGCGAACGTCGTCGCCCAGATCGGCATCATCGTCACCGGCGGGGCGGTCCGGCTCACCGGGTCGGGCCTCGGCTGCTCGACCTGGCCGCAGTGCGAGCCCGGGAGCTTCACTCCCGTCTTCCACGAGGCGGCCGGCATCCACCCGTACGTCGAGTTCGGCAACCGGCTCATGACGTTCGTCCTGGCGGCGATCGCGATCGCCGTCCTGCTGCTGGTGACGACGGACCGCACGCGGTCGCCGCGCTACCGCGTCTTCGGCGTGGTGCCGCTGGCCGGCGTCGTGGCCCAGGCGCTCATCGGGGGCGTCGTCGTCCTGCTCGACCTACACCCCGCCTGGGTGTCCCTGCACTTCGTCGTCTCGGCGGCCCTGGTGTGGCTCTCCACGTACCTGCTGCACCGGCACGGCGAGGGCGACGGCGCACCCGCGCCCGTGGGCGGACGGGCCACCAGCCTGACCGGGTGGGCCCTCGGCCTCCTCGTCGTGCCCGTCATCTGCCTCGGCGTGGTCGTCACCGGTGCCGGCCCGCACTCCGGGGACGCCGAGGTCGGGTACCGCCTCGCCGTCGACCCCCTGACCATGACGCGCGCGCACTCGGCCTCGGTGTGGCTGTTCGTCGGCGTGCTCGCGCTGCTCCTGGTCCTGCTGCACCGCGCCGCGGACGGCGGCGACCTCGTGCGCCGCGCCCGCCGCGGGGCCTGGCTCCTGCTGCTCGTCACCCTCGCCCAGGGCGGGATCGGCTACGCCCAGTACTTCACCGGCCTGCCCGTGCTGCTCGTCGGGCTGCACATGCTCGGCGCCGGAGTGCTCACCTGGGCGACGGCGCGCGCCGTGCTGCGGCTGCGCACCCGCGCCTGAMSTPAPVDASSTPARRDRLARFRGWTRGVLVANVVAQIGIIVTGGAVRLTGSGLGCSTWPQCEPGSFTPVFHEAAGIHPYVEFGNRLMTFVLAAIAIAVLLLVTTDRTRSPRYRVFGVVPLAGVVAQALIGGVVVLLDLHPAWVSLHFVVSAALVWLSTYLLHRHGEGDGAPAPVGGRATSLTGWALGLLVVPVICLGVVVTGAGPHSGDAEVGYRLAVDPLTMTRAHSASVWLFVGVLALLLVLLHRAADGGDLVRRARRGAWLLLLVTLAQGGIGYAQYFTGLPVLLVGLHMLGAGVLTWATARAVLRLRTRAPGPT0008525_2830DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008525-ctaA-K02259NANA
AK018_06520768hypothetical proteinATGACCATGACGTCGGCGCCCACCGGGGCCGCCCCCGCCCGCCGGCGGATCGCCACCCAGGCCGCGTTCGAGACGCGCGCGATCCTGCGCAACGGCGAACAGCTGCTGGTCACCGTGGCACTCCCCGTGCTCCTCCTGGTCGGGCTCGTGCAGACGTCCGTCGTCGAGCTCGACACGGGCACGTCGACGCGCGTCGACTTCGTCACCCCCGGCGTCCTCGCCCTGGCGTGCGTCACCACGGCGTTCACGTCCCAGTCCATCGCGACGGCCTTCGACCGCCGCAACGGCGTCCTGCGGCTGCTCGCCACCACGCCGCTCGGCCGGGGCGGGCTGCTCGCCGGCAAGATCCTCGGCGTGCTCGCCGTCGAGGCGGTGCAGGTCGTCGTCATCGGCGGCGTCGCGCTCGCGCTGGGGTGGCAGCCGGTGCCGTCCGGCCTGCTGACCGCCGCAGGGCTGGTGCTGCTCGGCACCGCGGCGTTCACCGCGCTGGCGCTGCTGCTCGCCGGCACGCTGCGGGCCGAGGGCGTCCTCGCCGTCGCCAACCTCGTGCTGGTGCTGCTGGTCGTCGGCGGCGGGCTCGTCGTGCCGCCGTCCGAGCTCCCCGGGGCGCTCGCCCACCTGGCCGCCTTCCTGCCGTCGGGCGCGCTCGGCGAGGGCCTGCGCGGCGCGCTGCTGGGTACCGGCGTCCCGCCGCTGTCCGTCGTGGTGCTGCTCGGCTGGACGGCCGTGCTCGGCGCCGGGGCCGGGCGACTCTTCCGCTGGCACTGAMTMTSAPTGAAPARRRIATQAAFETRAILRNGEQLLVTVALPVLLLVGLVQTSVVELDTGTSTRVDFVTPGVLALACVTTAFTSQSIATAFDRRNGVLRLLATTPLGRGGLLAGKILGVLAVEAVQVVVIGGVALALGWQPVPSGLLTAAGLVLLGTAAFTALALLLAGTLRAEGVLAVANLVLVLLVVGGGLVVPPSELPGALAHLAAFLPSGALGEGLRGALLGTGVPPLSVVVLLGWTAVLGAGAGRLFRWHPGPT0006730_16705DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_06521963drrA_9Daunorubicin/doxorubicin resistance ATP-binding protein DrrAGTGCCCACCATCGAAGCGCCACCCGGCGCCGCCGTCGTCGTGCGCGGCCTGCGCAAGACCTACGGCGGACGCGACGTCGTCGACGGGCTCGACCTTCAGGCTACCGAAGGCGCCGTCACCGCGGTGCTCGGGCCCAACGGCGCCGGCAAGACCACGACGGTCGAGTGCTGCGAGGGCCTGCGCTCCCCCGACGGCGGCGAGGTCCGGGTGCTCGGTCTCGACCCCGTCGACGACGCGCACCGGCTCCGCGCCCGCGTCGGGGTCATGCTGCAGGACGGCGGGCTGCCCCCGGGGGGGCGCCCCCTGGCGTGGCGGCGCCACGGCGCCGCCATGGCCGCCGCCCCCCGCGCCGGCGGCGAGCTCGCCGACCGCCTCGGCCTGACCTCGTTCGCCCGCACCACCGTGCGCCGCCTCTCCGGCGGGCAGCGCCAGCGCCTCGCCCTCGCCACCTCCGTCGTCGGACGCCCCGCCGTCGTGTTCCTCGACGAACCCAGCGCCGGCATGGACCCCCAGTCGCGCCACGCCGTGTGGGACCTGGTGCGCGAGCTGCGGGCCGAGGGCGTCGCCGTCGTCCTGACCACCCACCTCATGGACGAGGCCGAGGACCTCGCCGACGTTGTGCACGTCGTCGACCACGGCCGGGTCATCGCCTCCGGCACCGTCCCCGAGCTGCTCACGGCCGGCTCCGGCACCGCGGCACCCACCATCCGCCTCGACGCGCGCCCCGGTCTGGACACCGCCGCGCTGCGGGCGCACCTGGAGCGGACGCGGCACGACGGCGGCTGGCACGTCGAGGAGTCCGCGCCCGGCGAGTACGTGGTCACCGGCGCGACCGGGCCCTCGGCGCTCGCCGCCGTCACGGACTGGCTCGCCGGCGAGGGCGTGCTCGCCCGCCGCGTGACCACCGGGCGCCGGACGCTCGAGGACGTCTTCCTCGACCTGACGGGAAGGCACCTGCGATGAMPTIEAPPGAAVVVRGLRKTYGGRDVVDGLDLQATEGAVTAVLGPNGAGKTTTVECCEGLRSPDGGEVRVLGLDPVDDAHRLRARVGVMLQDGGLPPGGRPLAWRRHGAAMAAAPRAGGELADRLGLTSFARTTVRRLSGGQRQRLALATSVVGRPAVVFLDEPSAGMDPQSRHAVWDLVRELRAEGVAVVLTTHLMDEAEDLADVVHVVDHGRVIASGTVPELLTAGSGTAAPTIRLDARPGLDTAALRAHLERTRHDGGWHVEESAPGEYVVTGATGPSALAAVTDWLAGEGVLARRVTTGRRTLEDVFLDLTGRHLRPGPT0006725_5371DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_06522624hypothetical proteinATGACCTTCTACACGTTCGCCCGGCCCGAGGACGTCGCACAGCTGGCGCGTCGGATCTGGTACTGGCCGGTGATCCGCGGGGTGCTGGCCGTCCTGTTCGGGCTGCTGGTGATGTTCCTGCCGCGGGACGTGCCGGGGCTCCTGGTGCAGGTCTTCGGGGTCTTCGTGCTGGTCGACGGCGTGGTCTCGCTGGTGGACGGGCTGCGGCGCCGCGGGACGCAGGCGGGGTCGGTCAACGTCGGCATCGGGGTGGTGGCGGTCGCGTTCGGTGCGGCGCTGCTGTTCCTGCCGGAGGTGTTCCTGACGATCGCGGTGGTGCTCATCGGGATCTGGGCGATGATCTTCGGTCTGCTGCAGGTGTTCGCGGCGTTCGCGGTGCGGGGCAAGGGTGGCGCCTCCTGGCTCCTGAGCCTGCTCTCCGGCGTGCTGTTCGTCGCGCTGGCGGTGGTGTGCTTCGCGAACCCGACGACGGCCCTGACGGCGATGGCGTTCGTGGTGGGCGTGTTCGCGGTGATCATCGGCGCCGCTCTGATCGCGCTCGGCGTCAAGTTGCGTGGCCTCGGCCGGCAGGGCGGGCCCGGCGGCGGGCACGACGTCATCGAGGGCGAGGTCGTCGACGGGTGAMTFYTFARPEDVAQLARRIWYWPVIRGVLAVLFGLLVMFLPRDVPGLLVQVFGVFVLVDGVVSLVDGLRRRGTQAGSVNVGIGVVAVAFGAALLFLPEVFLTIAVVLIGIWAMIFGLLQVFAAFAVRGKGGASWLLSLLSGVLFVALAVVCFANPTTALTAMAFVVGVFAVIIGAALIALGVKLRGLGRQGGPGGGHDVIEGEVVDGNANANANANA
AK018_06523717hypothetical proteinATGACGCAGGCACAGGTCGCCCCGCAGCACGTCGCCGGCGACGGTGACGGCACCCGCCGCCGCGTCCTCGAGCTCGTCGCCGAGCGCGGCCCCGTCAGCGCGGCCGAGCTCGCCCGCACCCTCGGCCTCACGGCCGCCGCCGTCCGGCGCCACCTCGGTTGTCTCGAGCAGGACGGCACCATCGCCGTGCACGACGCCGGTCCCGCCGGTCACGCCCGTCGCGGACGCCCCGCACGCCGCTACGTGGTCAGCACCAGCGGGCAGGCCGAGCTCGGCGGCGGCTACACCGAGCTGGCGACGCAGGCGATGCGCTACCTGCGCCGCACGGCCGGGGACGACGCCGTGGCCGAGTTCGCCGCCGAGCGCAACGCCGCCGTCGTGCAGCGCTACACCGGCCGGCTCACCGCGACGGACCCGCACGAGCGGGCCGAGCAGCTCGCGGCGCTGCTGTCCGCCGACGGCTACGCCGCCTCCGTGCGGCCCGTCGACGGGCCGCAGGTGCCCACCGTCCAGCTGTGCCAGGGACACTGCCCGGTGCAGCACGCCGCCGAGGAGTTCACCGAGCTCTGCGAGGCCGAGGCGCGCGGCTTCTCCGAGCTGCTCGGCACCCACGTCCAACGACTCGCGACCCTCGCGGGCGGCGCGCACGCCTGCGTCACCAACATCCCCCTGTCTCCCCCCAACCGCCCCCGCGGCACGCAGGAAGGAACACGATGAMTQAQVAPQHVAGDGDGTRRRVLELVAERGPVSAAELARTLGLTAAAVRRHLGCLEQDGTIAVHDAGPAGHARRGRPARRYVVSTSGQAELGGGYTELATQAMRYLRRTAGDDAVAEFAAERNAAVVQRYTGRLTATDPHERAEQLAALLSADGYAASVRPVDGPQVPTVQLCQGHCPVQHAAEEFTELCEAEARGFSELLGTHVQRLATLAGGAHACVTNIPLSPPNRPRGTQEGTRNANANANANA
AK018_065242286hypothetical proteinATGGCCGCCACGTTCACCGAGTGGGTACGTTCGCGCTCCGACGACGAGCTCGTGACGCTGCTGCGCGCCCGCCCCGACCTCGGCACCCCCGCCCCCTCCACCCTGCGCTCCTTCGCCGCGCGCGCCGGCAGCCGCACCAGCCTCGACCGGGCCGTCGCCCACCTCGACGCCGGGCGGCTGCAGATCCTCGAGTCGCTCCTCGCGCTGTCCGACTGCGGCCCCCCGGTCACGCTCGAACGGCTCGCCGCCGCGATCGGCGCACCCGAGGCAGGGTCCGCCGTCGCGCAGGTCCTGGACCGGCTGCGCGCCGCAGCGCTCGTGTGGGACGACGAGACCGGCATCCACCCCGCCCCCGGGCTCGACGAGGTGCTCGGGCCCTACCCCGCCGGGCTCGGACCGGCGGTCGCCGACGGCCCGGACCTCACCCGTCTCGACCACCTCGAACCCGCCGCACGCCACGTCCTCGACGCGCTCACCTGGGGCCCGCCCGTCGGCGTCGTCCCGGCCTCCGGCACCGGCGCCCGCCACGCCGTCGACGCCCTCGTCGAAGACGGGCTCCTGCACCGCTCCGGATCACGGCACGTGCTGCTCCCCCGCCCCGTCGGCCTCGCGCTGCGCGAAGGCCGCACCCACCAGGCACCCGACCTCGACCCACCGCGGCCCGACGCCCGCGAGGTCCCCGACCCCAGCACCGACGCCGAGGCCGCGGCCGCCGCGCTCGACCTGGTCCGCCGCGTCGCCCGCCTGATCACCGCCTGGGACGACACCCCACCGGCCGTGCTGCGCGCCGGCGGCCTCGGGGTGCGCGACCTGCGACGCACCGCCCAGCTCCTCGAGTGCGACGAACCCACCGCGGCCGTCGTCCTCGAGATCGCCGCGAGCGCCGGCCTCGTCGCCGACGACGGCGACAGCCCCGCCACCTACCGGCCCACGGTCGCGGCGGACGCCTGGGAGGGTTCGGACGACGCCGACCGCTGGGCCGTCCTGGCCCTCGCGTGGTCGACGTCGCGGCGGACCGCCTGGCAGGTGGGGTCCCGCGACGAGAAGGGCGCCGTGCGCGCACCGCTGGCGCCCGACCTCAACAAGCCGTGGGTGCCGCGGCTGCGCGACCAGGTGCTCGAGACCCTGGCCGCGCAGCCGGGCGCCGCGCTCGGGGTCGACGACGTGGCCACGGTGCTGCGCTGGCACTCACCGCGCGCGGTACCCCCGGACGCCGCCGTCGCCGGGCTGCTGCGCGAGGCCGCGCTGCTCGGGGTGACGGGTGCCGGGGCGCTGTCGGCGCCGGGACGGGCGCTCACCGCGGACCCCGACCCGGAGGCGCTCGCAGACGCCCTGCGGCAGGTGCTGCCCGCCGAGGTGCCGGAGATCCTGCTCCAGGGCGACCTGACGGGGATCGTCCCGGGCCGGCCGTCGCGGGAGCTGGCGCGGCTCATCGACCAGGCCGCGGACGTGGAGTCGCGGGGTGCGGCGACGACGGTGCGGTTCACGACGGCCTCGGTCACCCGTGCGCTGGACCACGGCCGCGCCGGCGAGGACCTGCTGTCCGAGCTGGCGTCCCGCTCCCCCGTGCCCGTGCCGCAGCCGCTGGAGTACCTGGTCAAGGACACCGCGCGCCGGCACGAGGCGCTGCGGGTGGGGGCCGCGCAGTCGTACGTGCGGGCGGCGGACCCGACGGTGCTGGCGGGACTGGCCGAGGACCCGGCGTTGGCGTCGTGGGGGCTGGTGCGGCTGGCCCCGACGGTCCTGGCGGCGGCCGTGCCGGCGTCGGAGCTTCACCAGCTGCTGCGTGAACGGGGTCTGCTGTCCGCGCTCGAGGGTCCGGACGGACGGGCGCTCGGTCGGTTGCGGCGGCCGGACCGGTTGGACCGCGGCCGGTGGTCGCGGCGCAGCGGATCCGGTGCCGTGCGGACCACGACGGACGAGGCGCGCGCCGAGCTGGTCGCCCGCATGCGGGGCGGCACGGGGGGCTCGGGGGCCTCGGGGCGCGGCGCGTCCGACGACGGCCCCCCTGACAGCCGGGGCGCTGCGGGACGCTCGGGGCCGGGCCCGGCGGGTGCCGCCGTCGTGCGGCCGGAGCCCGGCGACGCGCTGGCCGAGCTGACCGAGGCGCTGCGCGACGGGCGGTCGGTCTGGGTGGAGATGGTCGGCGGCGCCGGGTCGCTGGAGCGGCGCGAGCTCAAGCCGCTCAAGCTCGACGGCGGGCGGCTGCGCGCGCTGGACGCCGACCGGGAGGCGGAGCTGACGATCGCGGTGCACCGCATCGCGGCGGTGGAACCCACCGACTGAMAATFTEWVRSRSDDELVTLLRARPDLGTPAPSTLRSFAARAGSRTSLDRAVAHLDAGRLQILESLLALSDCGPPVTLERLAAAIGAPEAGSAVAQVLDRLRAAALVWDDETGIHPAPGLDEVLGPYPAGLGPAVADGPDLTRLDHLEPAARHVLDALTWGPPVGVVPASGTGARHAVDALVEDGLLHRSGSRHVLLPRPVGLALREGRTHQAPDLDPPRPDAREVPDPSTDAEAAAAALDLVRRVARLITAWDDTPPAVLRAGGLGVRDLRRTAQLLECDEPTAAVVLEIAASAGLVADDGDSPATYRPTVAADAWEGSDDADRWAVLALAWSTSRRTAWQVGSRDEKGAVRAPLAPDLNKPWVPRLRDQVLETLAAQPGAALGVDDVATVLRWHSPRAVPPDAAVAGLLREAALLGVTGAGALSAPGRALTADPDPEALADALRQVLPAEVPEILLQGDLTGIVPGRPSRELARLIDQAADVESRGAATTVRFTTASVTRALDHGRAGEDLLSELASRSPVPVPQPLEYLVKDTARRHEALRVGAAQSYVRAADPTVLAGLAEDPALASWGLVRLAPTVLAAAVPASELHQLLRERGLLSALEGPDGRALGRLRRPDRLDRGRWSRRSGSGAVRTTTDEARAELVARMRGGTGGSGASGRGASDDGPPDSRGAAGRSGPGPAGAAVVRPEPGDALAELTEALRDGRSVWVEMVGGAGSLERRELKPLKLDGGRLRALDADREAELTIAVHRIAAVEPTDNANANANANA
AK018_065251680hypothetical proteinATGCCCGACGGCTCCCTCATCGTCCAGAGCGACAAGTCGATCCTGCTGGAGGTCGACCACCCCCGTGCCGAGGAGGCGCGGCGCGCGATCGCGTCGTTCGCCGAGCTCGAGCGCGCCCCCGAGCACATCCACACCTACCGGCTGACGAACCTCGGCCTGTGGAACGCCCGCGCGGCCGGGCACGACGCCGAGCAGGTCGTGGACACCCTCATCGAGCACTCGCGCTACCCGGTGCCGCACGCGCTGCTGGTCGACGTCGCCGAGACGATGGGCCGCTACGGCCGGCTCACCCTGCACTCGCACCCCACCCACGGGCTGGTGCTGGAGTCCACCGACGCCGCCGTGCTGGCCGAGGTGCTCAAGTCCAAGCGGACCAAGGGCCTGGTGGGCGACCGGATCGACGACAGCTCCGTCGTCGTGCACCCGTCCGAGCGCGGCAACCTCAAGCAGGCCCTGGTCAAGCTGGGATGGCCGGCCGAGGACCTCGCCGGGTACGTCGACGGCGAGGCGCACGCCATCGACCTGCGCCCCACCACGAACCCCGTCTACCCGGGCGAGGAGGCCGCCGACTGGACGCCGCGGCCCTACCAGCAGCAGGCCGTGGACGGGTTCTTCCACGGCGGCTCCGGCGTCGTGGTGCTGCCCTGCGGTGCCGGCAAGACGATCGTCGGCGCGGGCGCGATGGCCGAGTCCAAGACCACCACGCTCATCCTGGTCACCAACACGGTCAGCGCCCGTCAGTGGCGCGACGAGCTGGTGCGCCGCACCTCCCTGACGGAGGACGAGATCGGCGAGTACTCGGGTTCCCGCAAGGAGATCCGCCCCGTCACCATCGCGACGTACCAGGTGCTGACCACCAAGCGGAAGGGCGTCTACTCCCACCTGGAGCTGCTCGACGCCCGCGACTGGGGCCTGATCGTCTACGACGAGGTCCACCTGCTGCCCGCCCCGATCTTCCGCATGACGGCGGATCTCCAGGCCCGCCGTCGCCTCGGTCTGACGGCCACGCTGGTGCGCGAGGACGGTCGCGAGGACGAGGTGTTCTCGCTCATCGGCCCCAAGCGGTACGACGCGCCCTGGAAGGACATCGAGGCGCAGGGCTACATCGCGCCCGCCGACTGTGTCGAGGTGCGCCTCACCCTGCCCGAGCACGAGCGCATGGTCTACGCGACCGCCGAGCCGGAGGACAAGTACCGGCTGGCCGCCTGCGCGCCGGGCAAGAACCGGGTCGTGGAGCAGATCGTCGCCGACCACCCCGACGACCAGGTTCTGGTGATCGGCCAGTACATCGACCAGCTCGAGGAGCTCGCCGCGCACCTCGACGCGCCGCTGATCACCGGGTCGACGACGGTCCGCGAGCGCCAGCGGCTGTTCTCGGCGTTCCGTTCCGGGGAGATCTCGCGGCTCGTGGTGTCCAAGGTCGCGAACTTCTCGATCGACCTGCCCGAGGCGTCGGTGGCGGTGCAGGTCTCGGGGTCGTTCGGGTCCCGGCAGGAGGAGGCGCAGCGCCTGGGTCGGGTGATGCGGCCGAAGCAGGACGGGCGGACGGCGCACTTCTACGCCGTCGTCGCGCGGGACACCGTGGACCAGGACTTCGCGGCGCACCGTCAGCGGTTCCTGGCCGAGCAGGGGTACGCCTACCGCATCGTCGACGCGGAGGACCTGGACGCCGTGCCGTAGMPDGSLIVQSDKSILLEVDHPRAEEARRAIASFAELERAPEHIHTYRLTNLGLWNARAAGHDAEQVVDTLIEHSRYPVPHALLVDVAETMGRYGRLTLHSHPTHGLVLESTDAAVLAEVLKSKRTKGLVGDRIDDSSVVVHPSERGNLKQALVKLGWPAEDLAGYVDGEAHAIDLRPTTNPVYPGEEAADWTPRPYQQQAVDGFFHGGSGVVVLPCGAGKTIVGAGAMAESKTTTLILVTNTVSARQWRDELVRRTSLTEDEIGEYSGSRKEIRPVTIATYQVLTTKRKGVYSHLELLDARDWGLIVYDEVHLLPAPIFRMTADLQARRRLGLTATLVREDGREDEVFSLIGPKRYDAPWKDIEAQGYIAPADCVEVRLTLPEHERMVYATAEPEDKYRLAACAPGKNRVVEQIVADHPDDQVLVIGQYIDQLEELAAHLDAPLITGSTTVRERQRLFSAFRSGEISRLVVSKVANFSIDLPEASVAVQVSGSFGSRQEEAQRLGRVMRPKQDGRTAHFYAVVARDTVDQDFAAHRQRFLAEQGYAYRIVDAEDLDAVPNANANANANA
AK018_065261290COG0628Putative transport proteinGTGCGGCGACGCGACAGTGGCACGGCCGCGCAATACGGTGCGGTCATGGCCGATCACGACGGCGACCCCGACGACGGCGCCACGGCGACCAGCCCGCCCCCGGCCGGCGACGACGGCGGACGCCCGGTGCTGCACGACTCCAAGCGCCCCCCACGCTGGGTTCCCCGCGTGCTCGTCATGGGCGCAGTCGCCGTCTTCGCGGCCGCCTGGGTGTGGGGCGCGATCCAGCAGCTCAATACCGTCTTCGTCTACCTGCTCATCGCGTTCTTCATCGCGCTGGCCCTGGAACCGATCGTCGTCTGGCTGGTGCGGCACGGCTGGCGCCGCGGCGTCGCCGCGGGCACGGCGTTCTTCGGGTCGGTGATCGTCGCGATCGTGGTGCTGGCGATGTTCGGCAACCTGTTCGTCCAGCAGCTCGTGCAGCTCGTGGGGAACCTGCCCGGCCTGTACGTGCGCATCAGCGAGAGCATCGAGGCGGGCTTCGACGTCGACCTGCCGGCGTCCGACGACCTGATCGAACAGCTCCTCGCCGAGTACGGCACCGACGTCGCCACCGGCACCCTGGCGATCGGGACCACGGTGGTCGGCGCCGTGTTCGCCTCGCTGACGATCGGGCTGGTCACCTACTACCTGATGGCTGCCGGCCCGCAGTTCCGGGCCGCCGTGTGCCGGTGGCTGAGCCCCAGCCGCCAGACCGAGGTGTTGCGGCTGTGGGAGATCACGCAGGTGAAGGTTTCCGACTTCATCAGCTCGCGCGTGGTGCTCGCGGCGCTGTCCGCGGCCTTCACGGCGGTGTTCCTCGTGATCGTGGGCACGCCGTACGCGCTGCCGCTGGCGCTGTTCACCGGCATCGTCTCGCAGTTCATCCCCACGATCGGCACCTACATCGGCGGTGCCCTACCCGTCGCCGTCGCGCTCACGTCCCAGGGGGTGCCGCAGGCGGTCGCCGTGCTGGCCTTCATCATCGCCTACCAGCAGCTCGAGAACCTGTACTTCTCCCCCAAGGTGTCCGCCCGCGCGCTGGAGATGAACCCCGCCGTGAGCTTCGTCGTCGTCCTCGCGTTCGGCGCGGTGTTCGGGGCGCTCGGGGCGTTCCTCGCGCTGCCGATCGCCGCCACCATCCAGGCCGTCGCCAACACCTACCTGACCCGCCACGAGCTGGTCGACTCCGACATGCTGCGCGACCCGTCCGGCCCGACCCCCAAGGGCGGACGCCGCGCCCGGAACCTGCGCGCGGCACGCGAGGCGGCCCGCACGGTCGCCGAGCGCCGGGCCGACGGCATCGAGTAGMRRRDSGTAAQYGAVMADHDGDPDDGATATSPPPAGDDGGRPVLHDSKRPPRWVPRVLVMGAVAVFAAAWVWGAIQQLNTVFVYLLIAFFIALALEPIVVWLVRHGWRRGVAAGTAFFGSVIVAIVVLAMFGNLFVQQLVQLVGNLPGLYVRISESIEAGFDVDLPASDDLIEQLLAEYGTDVATGTLAIGTTVVGAVFASLTIGLVTYYLMAAGPQFRAAVCRWLSPSRQTEVLRLWEITQVKVSDFISSRVVLAALSAAFTAVFLVIVGTPYALPLALFTGIVSQFIPTIGTYIGGALPVAVALTSQGVPQAVAVLAFIIAYQQLENLYFSPKVSARALEMNPAVSFVVVLAFGAVFGALGAFLALPIAATIQAVANTYLTRHELVDSDMLRDPSGPTPKGGRRARNLRAAREAARTVAERRADGIENANANANANA
AK018_06527879hypothetical proteinGTGGACGTGCTGAGAACTCGAACGAAGGCCCTCGTGGCCGCCGGGGCCCTGGGCCTGACCCTGACCGCGTGCGGCGGCGCCGACGACGCGTCCGTCGCCGCGACGGCCGGCGAGAGCGAGGGCGCCGCGCCCGCGAGTCCCGAGGCGACGGAGGCTGTCGAGGAGCCCGCGGTCGCCACCGACATCCTCGAGCTCACGGCGTGGATGCAGGAGGCGCAGCTGGAACAGGGGTCGGCGCACGTCGAGGCCGGGTTCAGCGGCAGCGGTGCCGAGCTCGCCGGGCTGTCCGGGACCAACCAGGTCATCGACTTCCGGTTCGGCGAGACACTCAAGGAGACCGCCATGTCGATGTCGATGTCGCTCATGGGCACGTCGATGGACATGATCATGGTCGACGGGTGGTTCTACATGGACATGAGCGAGGCGACCGGCGGCGAGGTGGCTTACGTCGGCACCGCCATCGAGGACCTGGCCGGCGACCCGTCCGTCGGAGGCACCCTCGGCATGGCGGAGTCGATGGACTACGTCGCCCAGGCCGAACTGATCGCCGACGCCGTGACCGCGTTCGAGCACACGGGTGTCGAGGCGGTCGATGGCCAGGAGCTCCAGAGCTACACGGTGACGATCGACCCGGCCGCGCTTCCGGCAGGCGCGGGCCCGGCCGGAGTCGACGCCTCCTCCGCGGACGTCATCTCCGAGATGGAAGCCGTCTACCGCGTCGACGCCGACGGTCTGCTGTACTCCGGCGAGACCCGGTTGGTCGCGGAGGGTGAGGAACTGATCATGACGATGCAGTACTCCGACTGGGGCGAGCCGGTCGACATCACCGCACCGCCCGCCGACCAGGTGACCGACTGGAACGAGGCCATAGGCGGCTGAMDVLRTRTKALVAAGALGLTLTACGGADDASVAATAGESEGAAPASPEATEAVEEPAVATDILELTAWMQEAQLEQGSAHVEAGFSGSGAELAGLSGTNQVIDFRFGETLKETAMSMSMSLMGTSMDMIMVDGWFYMDMSEATGGEVAYVGTAIEDLAGDPSVGGTLGMAESMDYVAQAELIADAVTAFEHTGVEAVDGQELQSYTVTIDPAALPAGAGPAGVDASSADVISEMEAVYRVDADGLLYSGETRLVAEGEELIMTMQYSDWGEPVDITAPPADQVTDWNEAIGGNANANANANA
AK018_065282145hypothetical proteinATGCAGACCGTGATCCCGTCCCTCCCGGCCGGGCGGCGACGCCCGGCCGCAACGCCCGTCGCCGCGCTGCTGCTCGCGTCGGCCCTGGCGGCCCTGCCCCTGCTCCTGGCCTCCCCCGCCGCCGCCGAGCCGCCGCTGACCGAGCTCGACGGCGAGGTCACCGACACCGCGGGAGTGCTCAGCGACGGTGACGTCGCCGAGGTGCAGGAGTCGCTCGACGAGCTCGCCGAGACCACGCCCTACCAGCTGTTCGTGGTCTACGTCGACCGGTTCGACGGCATGGACGGACGCACCTGGGCCGACTCCACGGCGAACAACGCCCGCCTCGGCACCGACGACCTCCTGCTCGCCGTCGCCGTCGAGGACCGCCTCTACGGCATGAGCTGGGACAACAACATCGAGCTGTCCGAGGACCAGCTCGACGCCGTCCGCGACGCCACCGAGGACGAGCTGCGCAACGACGAGTGGGGTGCGGCGACGGTCGCCGCGGTGGACTCCCTGCTCGCGGTGACCTCCTCCGGCGGGGCTAGCTCACCCTTCGGGGGGTCCGACGGCGGCACGTCCGGCGGGTCGGGCATCCCCGGCGTCGTCGTGGTCGGCGGCATCGTGGTGCTCGTCGTCGTCGGCGGCGCCGTCGTGGTGAGCCGGGCACGCAAGAAGGACACCGAGCTGGCCGCCCGCGGGGCCGCGGCCGCGGCGGCCCGACGCCGGGCACGGCGCGGCGAGGCACCCGACCCCCTCGCCGAGCTGCCGCTCGAGGAGCTGCGCCGCCGTGCCGGCAGCACCCTCGTGGCCGTCGACGACGCCATCCGGACCTCCGAGCAGGAGCTCGGGTTCGCCGAGGCCGAGTTCGGCGTGGACGCCACACGCGAGTTCTCCGCCGCGCTCGCCGAGGCCCGGCAACAGGTCACCGAGGCGTTCACGACCAGCCAGCGGATCGCCGACGCCGCACCCGACGAGACCACCGAGCGCGAGCTGCTCACCGCCGTCGTGCACCGGTGTAACGCCGCCGCCGACACCCTCGACGCGCAGGCGAAGGCCTTCGACGAGCTGCGGCGGTTGCACGCCCGTGCCCCCGAAGTCCTCGACGAGACCGAGCAGCGCGCCGGCGAGCTCGTCGACCGCATCGAGGTCGCACGGACCACCCTGGACGGCCTGACGGCCACCTACCCGGCCGAAGTCCTCGTCTCCGTCGCGGACAACCCCGACCAGGCGGCACGGCTGATCGCCGACGCCCGCGAGGCCGTCGCCGACGGCCGCACCGCCGTCGCCAAGCACAAGCGCTCCCTCGCCGTCGCCGAGGCCCGCGCCGCGCAGAACGCCCTCGGTCAGGCGGCCGCCCTCCTCGACGCCGTCGACTCGGCCGGCTCCGACCTCGCCACCGTGGGCACCGACCTCGGCAAGGGACTCGTGTCCATCACCCAGGACATCGCCGACGCCGACAAGCTCGCCCCCACCGACCCCGCCGTGCAGGCGGCCGTCGCCGAGGCCCGCGCCGCCGCCGACCAGGCGCGCGCCGCCCAGGACGGCGGCGACCCGCTCGCCGCCCTGACCCGCCTCACCACCGCCGAGTCCGTGCTCGACGCCGCCCTGGCCCCCCGGCGCCAGCAGGCCGAGTCCGACACCCGGGCACGCGCACTCCTGCGCGAGATCGCCGGACGCGTCGACTCCCAGATCCGCGCGACCCGCAGCTACATCGACACCCGGCGCGGCGCCGTCGGCCCGGACGCCCGCACCCGGCTCACCGAGGCCGAACGACTCCTCGCCCAGGCACGCGCCCAGCAGAGCACCGACCCGCACGCCGGCCTCGCCGCCGCCCAGCAGGCCGAACGCTACGCCCAGCAGGCCCAGCAGATGGCGCAGTCCGACACCGCCGGCTGGAACGCCCCCGGCGGGTTCGCCGGAGGCCCCGGCGGGCAATCGAACGTCGGCGGCATGATCCTGGGAGGGATCCTCCTCGACACCGCGCTCGGCGGCGGACGGCACCGACGCCGGCGCATGGGCCGACGGCGGCCCGCCGTCCGGATCGGTGGCGGGTTCGGCGGCGGCGGATTCGGGGGCGGTCGCGGCGGGTTCGGTGGCGGCCGTGGCGGTTTCGGCAGCAGCTTCGGCGGCGGACGCGGAGGTGGCGGCGGCCGGTTCTGAMQTVIPSLPAGRRRPAATPVAALLLASALAALPLLLASPAAAEPPLTELDGEVTDTAGVLSDGDVAEVQESLDELAETTPYQLFVVYVDRFDGMDGRTWADSTANNARLGTDDLLLAVAVEDRLYGMSWDNNIELSEDQLDAVRDATEDELRNDEWGAATVAAVDSLLAVTSSGGASSPFGGSDGGTSGGSGIPGVVVVGGIVVLVVVGGAVVVSRARKKDTELAARGAAAAAARRRARRGEAPDPLAELPLEELRRRAGSTLVAVDDAIRTSEQELGFAEAEFGVDATREFSAALAEARQQVTEAFTTSQRIADAAPDETTERELLTAVVHRCNAAADTLDAQAKAFDELRRLHARAPEVLDETEQRAGELVDRIEVARTTLDGLTATYPAEVLVSVADNPDQAARLIADAREAVADGRTAVAKHKRSLAVAEARAAQNALGQAAALLDAVDSAGSDLATVGTDLGKGLVSITQDIADADKLAPTDPAVQAAVAEARAAADQARAAQDGGDPLAALTRLTTAESVLDAALAPRRQQAESDTRARALLREIAGRVDSQIRATRSYIDTRRGAVGPDARTRLTEAERLLAQARAQQSTDPHAGLAAAQQAERYAQQAQQMAQSDTAGWNAPGGFAGGPGGQSNVGGMILGGILLDTALGGGRHRRRRMGRRRPAVRIGGGFGGGGFGGGRGGFGGGRGGFGSSFGGGRGGGGGRFNANANANANA
AK018_06529741COG1842Phage shock protein AATGAACCAGAAGCAGAGCATCCTCGGCCGCATCGGCCAGCTCGCGAAGGCGAACATCAACGCGCTGATCGACCGCGCCGAGGACCCGCAGAAGATGCTCGACCAGCTCATCCGCGACTACACGAACAACATCGCCGAGGCCGAGCAGGCCATCGCGCAGACCATCGGCAACCTGCGCATGGCCGAGCAGGACTACCACGAGGACACCCAGGCCGTGCAGGAGTGGGGCGCCAAGGCGCTCGCCGCCTCGCGCAAGGCCGACCAGCAGCGCGCCGCCGGCGACACCGCCAACGCCGACAAGTTCGACCAGCTCGCCAAGGTGGCGCTGCGCAAGCAGCTCGACGCCGAGAGCGAGGTCAAGTCCGCTCAGCCCATGATCGAGCAGCAGCGTGTCACCGTCGACAAGCTCAAGACCGGGCTGGCGCAGATGAAGGACAAGCTGGTCGACCTCAAGTCCAAGCGTGACCAGCTCGTCGCCCGCCAGAAGGCCGCCGAGGCCCAGCAGACCGTCCAGGGCGCCATCAGCTCGATCAACATCATGGACCCGACCAGCGAGCTCAACCGCTACGAGGAGGCCGTGCGGCGCGAGGAGGCACAGGCGATGGGCCAGGCGGAGATCGCGGCGTCGTCGCTGGAGTCGCAGTTCGCCGAGCTGGAGGGTTCGATGGAGGACATCGAGCTCGAGGCGCGGCTCGCGGCGCTCAAGTCCGGTTTGACGCCGCCGAACCAGATCGAGTCCTGAMNQKQSILGRIGQLAKANINALIDRAEDPQKMLDQLIRDYTNNIAEAEQAIAQTIGNLRMAEQDYHEDTQAVQEWGAKALAASRKADQQRAAGDTANADKFDQLAKVALRKQLDAESEVKSAQPMIEQQRVTVDKLKTGLAQMKDKLVDLKSKRDQLVARQKAAEAQQTVQGAISSINIMDPTSELNRYEEAVRREEAQAMGQAEIAASSLESQFAELEGSMEDIELEARLAALKSGLTPPNQIESPGPT0014646_730DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_SHOCK_PROTEINS,PGPT0014646-pspA-K03969NANA
AK018_06530798hypothetical proteinGTGAACCAGTACCACGACTCCTGGACTCCCCGCGTGACGGTGCTGCAGCACTCCTCGGACGTGCCGCTGGACCGGTTCACGGGTCTGCTCGGTGACGTGCACCTCGTGCGGCTCCACGACGGCGATCCCGTGCCGACCCCGGCGGAGTGCGGCGACGGTCTGGTCGTCCTCGGCGGCCAGATGAACGCCTACGCCGACGACGAGGCGCCCTGGCTGCCCGCCGTCCGCGCGCTGCTGGTCGAGGCGGTCGCAGCGGGACTGCCGACGCTCGGCATCTGCCTGGGAGCGCAGCTCATGGCGGCCGCCGGCGGGGGCAGCGTGGCGGTCGCGGCGCCGCCCGGGCGGGAGGCCGGCGTCGTCGGTGTGCACTGGCGGCCCGAAGCGCTGCAGGATCCGGTGCTCGGACCGGTGGTGCGGGCGACCGGCGCGACGGACGCCGACGAGCTGGAGGACCCGGCGTGCGCCACCCCGGTGGTCTCGATGCACGCGGACGCCGTCATCGAACCGCCCCGGGGCGCGCAGTGGCTCGGCTGGTCGGACACATACCCCTACCAGGCGTTCCGGTGGGGGTCGGCGCTCGGCGTGCAGTTCCATCCGGAGGCGAGCCCGTCATTGGCCGTGCGCTGGGCGCTGGGGTGCACCGACGTCGACACCGCCGTCGTGCACGCCCAGGTGACCGCGCACGACGACGGGCTGGCCACGACCGGCGCGCTGCTCGCGGGAGCGTTCCTCGACCAGGTGCGTGCCGCCGTCGAGCAGCACCGGCAGCCGGCGGGCACGGACGACGTCGCCGCCTGAMNQYHDSWTPRVTVLQHSSDVPLDRFTGLLGDVHLVRLHDGDPVPTPAECGDGLVVLGGQMNAYADDEAPWLPAVRALLVEAVAAGLPTLGICLGAQLMAAAGGGSVAVAAPPGREAGVVGVHWRPEALQDPVLGPVVRATGATDADELEDPACATPVVSMHADAVIEPPRGAQWLGWSDTYPYQAFRWGSALGVQFHPEASPSLAVRWALGCTDVDTAVVHAQVTAHDDGLATTGALLAGAFLDQVRAAVEQHRQPAGTDDVAAPGPT0021580_5805DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
AK018_06531603hypothetical proteinATGGCCGCCCCCTTCCCCGACCCGTCCGACGCCCCGGTGCAGCGCAGCCCGCGCACCACGTACCTGCTCGTCGACGGGGAGAACATCGACGCGACCCTGGGCATGAACGTGCTCAATCGGCGCCCGAATCCGGAGGAGCGGCCCCGCTGGGACCGCATCACGACGTTCGCGCGCAAGGTCTGGGACCAGGACGTCGTGCCGCTGTTCTTCCTCAACGCGACCAGCGGGCAGATGCCCATGTCGTTCGTGCAGGCGCTGCTCGCCATGGGCTACCGCCCGATCCCGCTGTCGGCGAGCGCCGACGAGAAGGTGGTCGACGTCGGTATCCAGCTGACGCTGGACGCGATCGCCGACCGCGACGCGGACGTGCTGCTGGCCAGCCACGACGGCGACTTCCTGCCGCAGATCCAGCACCTGCTGGACGAGGACCGGCGCGTCGGCCTGCTGGCGTTCCGCGAGTTCGTCAACGGTCAGCTCACCGCGCTGACCGAGGAGGGGCTGGAGATCTTCGACCTGGAGGGCGACGCGGACGCCTTCACGAGCGCGCTGCCGCGGGTGCGGATCATCCCGATCGAGGAGTTCGACCCGGTCCGCTTCCTCTGAMAAPFPDPSDAPVQRSPRTTYLLVDGENIDATLGMNVLNRRPNPEERPRWDRITTFARKVWDQDVVPLFFLNATSGQMPMSFVQALLAMGYRPIPLSASADEKVVDVGIQLTLDAIADRDADVLLASHDGDFLPQIQHLLDEDRRVGLLAFREFVNGQLTALTEEGLEIFDLEGDADAFTSALPRVRIIPIEEFDPVRFLNANANANANA
AK018_065321431hypothetical proteinGTGACGCAGCAGCAGGCCGACACCCCCGGCGCCGGCGACCCGGACGGTCCGGCGACCCGCACGTCGGGCCGCGGCGTCACCGTCCGGCGCTGGACCGCCGGTGTGCTCGTGGTGATCACCACCCTCATGGTGGTGGCCTCCAGCGTCGCCGTGTGGGCGCACCGGACCGTGCTGCACACCGACCAGTTCATGGATGCCGTCGGGCCCGCCGTCGAAGACCCCGCGTTCTACGAGGCGCTCGCGGACAACGTCAGCGAGCAGGCGCTGCTCGCCCTCGACCTGGACTCCCGCGTCTCGGAGCGGCTCACCGAGGCCGACGAGGCGCTCGCCGCCGCGCTGGTGGCACGCCTCGATGTCGAGCCCGGGCCGCTGACCGATGCCCTGCTCGACCGCGTCGACCGCCCCACCCTCGCCTCCCTGACCCCGGTCGTCGCGGGGTGGCTGGAGGAGCGCGTCGACACGGTGGTGCACCGGCTGATCACGTCCGAGCAGTTCCGGGACCGGCTGCCGCAGCTCGTCGAGCGTGCTCACGGGGCCGCGATCGGTCTCGCCCGGGCCGAGGTCGAGGACTACCCGAACGTCTACCTCACCGACGACGCCGTGGTGCTCAACACGATCCCGATCGTCACCGAGGCGCTGCGCGAGGCGCTCGGCGGGCTCGGCGACATGCTGCCCGACGTCACGCTGCCCGACGCCGTGTCCGAGCGGGCGCCCGAGGCGCGGGCCCAGCTCGGCGAGGCGCTCGGCCGCGAGCTGCCCGAGGAGTTCGGCCAGGTCGCCCTCATGGACCGGGAGACGTTCGAGCTGGTGCAGGGGACCGTCGTGACCGTGGACCGCGCCGTGTGGGCGCTGGTGGCGATCACGCTGCTGCTGATCGTGGCGACCGTCATGGTGGCGCCCGACCGGCGGCGCGGCACGGTGCAGCTCGGCCTCGGTGTCGTGGCGGGCGTCGTGATCGTCGTGGCGCTCGTGTCCCAGCTGCGCGGCGTCGTCGTCGACGTGGCGCGGTCACCGGACGGCGTCCGGGTCGCCGGGGCGCTCTACGACGCGGTCACCACCGGGGTGCGGGACATCTTCTGGCTGGTCGGCGCGGTGGCCCTGATCGGTGCTGTCGGCGGGCTGCTCCTGGGCCGGCCGGCATGGCTGCGCCGGGCGGGGGAGCGCCGGCCGTGGGTGCGGACGGTCTCCGGGCAGGACGGCCGGCTCGCGCGATGGGTCGGTGAGCACGCGGACGTGCTGCGGATCGCCGTGCTGGCCCTCGTGGTGCTGGCCGTCGTGGTCACCGGCTTCCACTGGGTGGCTCTCGTCCTCGCGCTGCTGCTGGGCGCTGCTGCCCTGTGGGGGATCGCCGTCGCGCAGCGCGGCGAGCACCTGCCCGGTGAGCGCGGGGCGGACCCGTTGGGCGCGGACGGCGTCGAGCCGCCCCGCTGAMTQQQADTPGAGDPDGPATRTSGRGVTVRRWTAGVLVVITTLMVVASSVAVWAHRTVLHTDQFMDAVGPAVEDPAFYEALADNVSEQALLALDLDSRVSERLTEADEALAAALVARLDVEPGPLTDALLDRVDRPTLASLTPVVAGWLEERVDTVVHRLITSEQFRDRLPQLVERAHGAAIGLARAEVEDYPNVYLTDDAVVLNTIPIVTEALREALGGLGDMLPDVTLPDAVSERAPEARAQLGEALGRELPEEFGQVALMDRETFELVQGTVVTVDRAVWALVAITLLLIVATVMVAPDRRRGTVQLGLGVVAGVVIVVALVSQLRGVVVDVARSPDGVRVAGALYDAVTTGVRDIFWLVGAVALIGAVGGLLLGRPAWLRRAGERRPWVRTVSGQDGRLARWVGEHADVLRIAVLALVVLAVVVTGFHWVALVLALLLGAAALWGIAVAQRGEHLPGERGADPLGADGVEPPRNANANANANA
AK018_06533744tcrX_2COG0745putative transcriptional regulatory protein TcrXATGGCCACCACGACCGACACCCCCGAGGCGCGGCTCGTCGTCGTCGACGACGAACCGAACATCCGCGAGCTGCTGTCCACCTCCCTGCGGTTCGCCGGATTCGAGGTGCACGCGGCCGCCGACGGTGCGAACGCCCTGCAGCTCGTGCGGGACACGGAGCCGGACCTGGTGGTCCTCGACGTCATGCTGCCGGACATGGACGGGTTTACCGTCACCCGGCGGATGCGCGCCACGGGCAAGCACACCCCGGTCCTGTTCCTGACGGCCCGGGACGACACCCAGGACAAGATCCAGGGGCTGACCGTCGGCGGCGACGACTACGTCACCAAGCCGTTCAGCCTCGAGGAGGTCGTGGCCCGCATCCGTGCCGTGCTGCGCCGCACGGCGGGCGGCGAGCCCGAGGACGACGCCGTGCTGCGCGTCGGCGACCTCGAGATGGACGAGGACTCCCACGAGGTGCGCCGCGCCGGCGTCGAGATCGAGCTGTCCCCCACCGAGTTCAAGCTGCTGCGCTACCTGATGCTCAACGCCGGTCGGGTGCTGTCCAAGGCGCAGATCCTGGACCACGTGTGGCAGTACGACTGGGGCGGCGACGCCAATATCGTCGAGTCCTACATCTCCTACCTGCGCCGCAAGATCGACCACCTCAGCGTGCCCGGTCCGGACGGCACGGACGTGGAGCTGCCCGCCCTGATCCACACCAAGCGGGGCGTCGGGTACCTGCTGCGCGTCCCGCAGCGATGAMATTTDTPEARLVVVDDEPNIRELLSTSLRFAGFEVHAAADGANALQLVRDTEPDLVVLDVMLPDMDGFTVTRRMRATGKHTPVLFLTARDDTQDKIQGLTVGGDDYVTKPFSLEEVVARIRAVLRRTAGGEPEDDAVLRVGDLEMDEDSHEVRRAGVEIELSPTEFKLLRYLMLNAGRVLSKAQILDHVWQYDWGGDANIVESYISYLRRKIDHLSVPGPDGTDVELPALIHTKRGVGYLLRVPQRPGPT0002665_1055DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002665-phoP|phoB1-K07658NANA
AK018_065341653sasA_18Adaptive-response sensory-kinase SasAATGACGGCCGGCCCTGGCCGCGAGCCGCGGTTCGCGGCGCCCGACGACGGCACCCTGGTGCCGGACGGCGGTACGCCGGCCGGCGGGACGAGCGGCACCGCAGCGACCCCCGGCACGCAGGGACCGCCGTCGGACACGACGACGGACGCTCCCGGTACGACGACGGAGGCACCGACCGGCGACGACGGCGAGCAGCGCTGGGGCTGGTTGGCGCGCATCCCGCTGCGCGCACGGCTCGTGACCATCATCGTGCTGCTGCTGGGTGCCGGGCTGGTCGCGGCCGGCATCTCCACGCGCACGGTCGTGTCGAACTACCTCATCGACGAGGTCGACACCCAGCTCCAGCAGTCGGCGCAGAGCGTGGCGCAGCTGACGGTGCGCAACCCGGGGAACACCGGGCCCCGCATCCCCAGCGAGTACGCCGTCGTGCTCCACGAGTGCAACGGCGTCGACTCCGACGGGCTCGGCTGGCCGCAGAACCTCGCGAAGTTCGGGACGCCGCAGATCCCCGACGAATCGGTGGACACCGTCGTCGAGCGCGGACTCGACCCGTTCACCGTGGACTCCGGCGGGGGCACCGACCCGTCCCAGTGGCGGGTCGTGTCGATCCCCTGCGGCACCGACCCCGCGAACATCGAGGGCGCGGCCTACGTCGCGCTGCCCCTGGCCGGGGTCGAGCAGACCAGCGACTACCTCGGCAACGCCCTGCTGTGGATCGGCCTGGGCATCGTGGTGCTCGGCGGCGGGCTCGCGTTCTGGCTGGTGCAGCACTCGCTGCGCCCGCTGCGCCAGATCGAGACCACCGCCGCGGCCATCGCCGAGGGCGACCTGTCCCGCCGCGTGCCCGACCAGCCGCCGACGACGGAGGTGGGGTCCCTCTCCCACTCGCTCAACGCGATGCTCACGCAGATCGAGGCGGCGTTCGCCGCGCAGGAGGCTTCCGAGCAGCGCATGCGCCGGTTCGTCTCGGACGCGAGCCACGAGCTGCGCACCCCGCTGGCCACCGTCAAGGGGTACGGCGAGCTCTACCGAATGGGTGCCCTGGACACCGCCGACAAGGTCGAGGACACGATGGTCCGCATCGAGGACTCCGCGCGGCGCATGGGCACGCTCGTCAACGACCTGCTGGTGCTCGCCCGCCTCGACGAGGGCCGGCCGATGCGGCACGAGCCCGTGGACCTTGCCGAGCTGGCACAGGACACGGCCCAGGACCTGCACGCCCTCGACCCGACCCGCGACGTCGCGGTGACCGGCCTGCGACCGGGCGAGGCACCGCCGTCGTCCCTGGTCGTCACCGGCGACCACGACCGCCTGCGCCAGGTGCTGACCAACCTGGTCGGCAACGTCGCCCGGCACACTCCTGCCGGGACGCCGGCCGAGCTCGCGCTCGGGGCGTCGGCCGACGGCGGCGCGGTCGTCGAGGTCCGCGACCACGGGCCGGGCGTCTCGGCCGAGCAGGGCGAACGGATCTTCGAGCGCTTCTACCGCGCCGACTCCTCACGGAACCGGGAGTCCGGCGGATCCGGGCTGGGGCTGGCCATCGTGGCCGCGATCCTGGGCGCCCACGGCGGCCGCGCCACGGTGACGGAGACCTCCGGTGGCGGCATGACCGTGCGGGTTCAGTTGCCGCGCTCGGACCGCTACGATGCGTGAMTAGPGREPRFAAPDDGTLVPDGGTPAGGTSGTAATPGTQGPPSDTTTDAPGTTTEAPTGDDGEQRWGWLARIPLRARLVTIIVLLLGAGLVAAGISTRTVVSNYLIDEVDTQLQQSAQSVAQLTVRNPGNTGPRIPSEYAVVLHECNGVDSDGLGWPQNLAKFGTPQIPDESVDTVVERGLDPFTVDSGGGTDPSQWRVVSIPCGTDPANIEGAAYVALPLAGVEQTSDYLGNALLWIGLGIVVLGGGLAFWLVQHSLRPLRQIETTAAAIAEGDLSRRVPDQPPTTEVGSLSHSLNAMLTQIEAAFAAQEASEQRMRRFVSDASHELRTPLATVKGYGELYRMGALDTADKVEDTMVRIEDSARRMGTLVNDLLVLARLDEGRPMRHEPVDLAELAQDTAQDLHALDPTRDVAVTGLRPGEAPPSSLVVTGDHDRLRQVLTNLVGNVARHTPAGTPAELALGASADGGAVVEVRDHGPGVSAEQGERIFERFYRADSSRNRESGGSGLGLAIVAAILGAHGGRATVTETSGGGMTVRVQLPRSDRYDAPGPT0004100_301DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
AK018_06535729hypothetical proteinATGGGCGTGGTCAACGCCGACGCACCGCAGTGGTTCCTCTCTGCGTTCGTCCGCTCGTGCCTCGGAGCCGGGGCGACCGCCTCGGAGGACGCGATCCGCACGGTCGGTGAAGAGCTGATCAACCGCTGGTCCGAGCCCGACCGGCACTTCCACAACCTGCGCCACCTCGCCGCGGTGCTGCACCGCGTCGACGAGCTGGCGCACGAGACGCACGAACCCGACCTGGTCCGCCTCGCGGCCTGGTACCACGGCGCCGTGTTCGACGCCGACCGCAAGGTGGCCTACGCGACCACCGGCGGTGAGCAGACGACGCTCAGCGGCGAGCTCGCCCGCACCCAGCTCGAGGCGCTCGGCCTGTCCGCCGAGTCCGCGGACCGCGTGGCCGAGCTCGTCGACACCCTGGCGCGGCACAAGCCGCAGTCCGGGGACTTCGACTCCGCGGTGCTCAACGACGCCGACCTGGGCATGCTCGCCGCCGAGCCGCAGCGCTACAAGGAGTACGTGCGCTCCATCCGCGCCGAGTACGCCCACATCCCGCTCGGCGACTACCTCGACGCCCGGATCAAGGTGCTCACCAAGCTCCTGGGGCGCTCGCGGCTCTACGCGAGCCCGCTCGGGGCCACGTGGGAGGAGCCGGCGCGGCAGAACCTCGACGCCGAGCTGCACCGGCTGGTCAAGGAGCGCAAGCAGCTCGCCGCGCAGGCGCCGGCGGGTCCGGCTCCCTGCTGAMGVVNADAPQWFLSAFVRSCLGAGATASEDAIRTVGEELINRWSEPDRHFHNLRHLAAVLHRVDELAHETHEPDLVRLAAWYHGAVFDADRKVAYATTGGEQTTLSGELARTQLEALGLSAESADRVAELVDTLARHKPQSGDFDSAVLNDADLGMLAAEPQRYKEYVRSIRAEYAHIPLGDYLDARIKVLTKLLGRSRLYASPLGATWEEPARQNLDAELHRLVKERKQLAAQAPAGPAPCPGPT0014525_51DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
AK018_06536291hypothetical proteinGTGCGGTACGAGGTCGACAGCGACCGGGTGGCTCAGGCGAGCGCTGCGGTCAACGGTTCGGTCGGGGCGATCCGGTCGGAGGTCGCGGCGATGATGCGCCATCTGCAGGACCTGCAGGCGAGCTGGCACGGCAGCGCGGCGACGTCGTTCGCCGGTGTGATGACGCAGTGGCAGTCCACCCAGACGCAGGTGGAGGTGGCCCTGGACTCCGTGACGACGGCGCTGCAGTCGGCGTCGACCACCTACGCCGAGGCCGAGAGCCAGGCGACGCGGCTCTTCGCCACCCGCTGAMRYEVDSDRVAQASAAVNGSVGAIRSEVAAMMRHLQDLQASWHGSAATSFAGVMTQWQSTQTQVEVALDSVTTALQSASTTYAEAESQATRLFATRNANANANANA
AK018_06537852groL1_2COG045960 kDa chaperonin 1GTGCTGAACAAGATCCGCGGCACCTTCAAGTCCGTCGCCGTCAAGGCCCCGGGCTTCGGCGACCGCCGCAAGGCCATGCTGCAGGACATCGCGATCCTGACCGGTGGCCAGGTCATCACCGAGACGGTCGGCCTCACGCTGGAGAACGCCACGCTCGAGGAGCTCGGCCAGGCGCGCAAGGTCGTCGTCACCAAGGACGAGACCACGATCGTCGAGGGTGCCGGCGACGCCGACCTCATCGAGGGTCGCGTGCAGCAGATCCGCTCCGAGATCGACAAGTCCGACTCGGACTACGACCGCGAGAAGCTCCAGGAGCGCCTCGCCAAGCTGGCCGGCGGCGTGGCCGTCATCAAGGCCGGCGCGGCGACCGAGGTCGAGCTCAAGGAGCGCAAGCACCGCATCGAGGACGCCGTGCGCAACGCGAAGGCCGCCGTCGAGGAGGGCATCGTCGCCGGTGGTGGCGTCGCGCTCCTGCAGGCCGGTGCCGCCGCGTTCGCCAAGCTCGAGCTCGAGGGCGACGAGGCGACCGGTGCGCAGATCGTCAACGCGGCGATCTCGGCCCCGCTCAAGCAGATCGCGATCAACGCCGGCCTCGAGGGCGGCGTCGTGGCGGAGAAGGTCAAGGACCTCACCCCCGGCTGGGGCCTGAACGCCGCCACGGGCGTGTACGAGGACCTGCTGGCCGCCGGCGTCAACGACCCGGTCAAGGTCACGCGCTCCGCGCTGCAGAACGCCGCGTCGATCGCCGCGCTGTTCCTCACCACCGAGGCGGTCGTCGCCGACAAGCCGGAGCCCGCCGCGGCCCCGGCCGGTGACGGCGGCATGGGCGACATGGGCGGCATGGGCTTCTGAMLNKIRGTFKSVAVKAPGFGDRRKAMLQDIAILTGGQVITETVGLTLENATLEELGQARKVVVTKDETTIVEGAGDADLIEGRVQQIRSEIDKSDSDYDREKLQERLAKLAGGVAVIKAGAATEVELKERKHRIEDAVRNAKAAVEEGIVAGGGVALLQAGAAAFAKLELEGDEATGAQIVNAAISAPLKQIAINAGLEGGVVAEKVKDLTPGWGLNAATGVYEDLLAAGVNDPVKVTRSALQNAASIAALFLTTEAVVADKPEPAAAPAGDGGMGDMGGMGFPGPT0014570_5573DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014570-groEL|mopA-K04077NANA
AK018_06538318hypothetical proteinGTGACCGAGGCACACGATGGAGTGACCGACGTCGAAAGGGAGAGTGCCGTGCCTGGACGAGACCCCGGCCCCAGCATCAAGGACGACGAGCTCTACGAGAAGCTCCGCGACGAGGGCAACAGCAAGGAGAAGGCCGCGCGGATCGCGAACGCCGCCGCGAACCGCGGCCGCAGCGACGTGGGCCAGGAGGGCGGCAGCTCGCCCGCCTACGAGGACTGGACCGTCGAGGAGCTGCGGGAGCGCGCCGCCGAGCTCGACGTCGAGGGACGTTCCGACATGCGCAAGGACGAGCTGATCGAGGCGCTGCGCTCGCACTGAMTEAHDGVTDVERESAVPGRDPGPSIKDDELYEKLRDEGNSKEKAARIANAAANRGRSDVGQEGGSSPAYEDWTVEELRERAAELDVEGRSDMRKDELIEALRSHNANANANANA
AK018_06539756hypothetical proteinGTGCGCCGCTGGTTCGTGGGCTTGAGCACGCCGCGTCGAACCCTCCTGCTCCTGACACTGGTCGCCGTGGTGGCCCTCGTCGTCGCGCTCGTGGTCACGACGACGCGCGGCGCGACGGCGGACGCCTCGGCTGACTCTGCCGTCGCCGATCCCGAGCGGGTCGCCGAGCTCGAGGCTGCTGAGATCGAGCGCGACGAGCAGAATCTCGTCGCATCGATCGACCACGCCTGGCACCTGCAGGACGAGCTCGTTCCCGTCCTGCACGGACTGCATGCCGTCCTGCCCGTGGACGGTTCGGCCGCGACTCCGGCCGACGTGGCCGAGATCGCGGCGTGGCACGGGACGGTGGACGGCCTGATCGCCGAGACCGATGCGCTCGCGAGCGGATCGTCGGAGCACAACATCGTGCGCAACGGCATGCTCACCTCGTTGCGGCTCATCGACGACACGCTCGACACGGTCGAGCTCGCGGTGAGCGCCGATGATCCCGCGACCGCCGAGGAGCTCGAGGAGCTCGCGGGTGAGCTGCGTACGCGAGCCGTGGAGACGTGGAGCATCGCCGCCACCCAGCTTGACCTGCGCTCGATCGCCGCCGACCGGGGGCACGTGCACATCTTCCTCCCCGTCCGTCCCGACGACGCGCTCGACGGTGGCCTCGACGGGCACGAGGTGCCGGGCGAGCACGGAGACCACGAGGACCACGAGGACCACGAGGACCACGAGGACCACGAGGACCACGAGGACCACGATCACTGAMRRWFVGLSTPRRTLLLLTLVAVVALVVALVVTTTRGATADASADSAVADPERVAELEAAEIERDEQNLVASIDHAWHLQDELVPVLHGLHAVLPVDGSAATPADVAEIAAWHGTVDGLIAETDALASGSSEHNIVRNGMLTSLRLIDDTLDTVELAVSADDPATAEELEELAGELRTRAVETWSIAATQLDLRSIAADRGHVHIFLPVRPDDALDGGLDGHEVPGEHGDHEDHEDHEDHEDHEDHEDHDHNANANANANA
AK018_06540510hypothetical proteinATGAAGGCCTCGGTCGGGGACAGGATCGTGACGGCGTCCGGCGTGGTGGGAGGTGCGGTGCGCGACGGCGTCGTCGTCGGCTGCCCGCACGAGGACGGGTCCCCGCCCTACCAGGTGCGCTGGTCCGACACCGGGGAGGAGTCGCTGGTCTTCCCCGGGCCGGACTCGCTGGTCAGACCCGCGGACGAGGAGGGCGCCGACGACGCGGACGGCGGCGAGCCGCGCCGCACCAGGTCGGTCACGTGGCGCATCCAGGTCTCGCTGGTGGAGTCGGCCGGCAGCACCACGGCGGAGGCCGTCCTGGTGGCCGGGCCGCCCGAGCATGACGACGTCGGTGCGCTGCGCGGCGTCGGGCACGCTCGCAAAGACCCGCAGGACCTGGAGATGCCGGTCATCGGCGACGAGGTGGCGGCCGGACGTGCGCTGCGTCGGCTCGCGGACGCGCTGCTCGGTCAGGCGGAGGACGACATCGGGACGGTCACGGGGCAGCGGGCGCACGTCCACGGGTGAMKASVGDRIVTASGVVGGAVRDGVVVGCPHEDGSPPYQVRWSDTGEESLVFPGPDSLVRPADEEGADDADGGEPRRTRSVTWRIQVSLVESAGSTTAEAVLVAGPPEHDDVGALRGVGHARKDPQDLEMPVIGDEVAAGRALRRLADALLGQAEDDIGTVTGQRAHVHGNANANANANA
AK018_065411302hypothetical proteinATGGCGGACCGCCCGAGCTCCGGCGAGGCCGCACCGCACCTCGAGGCGGCGCTGCGCGACGAGTGGGGCCGCCTCCTGGCCCTGCTCGTCGCGCAGTACCACCGGCTCGACCTGGCCGAGGACGCCCTCGGCGACGCCTTCGAGGCCGCGGCACGCACGTGGCCGGTCCAGGGTCCCCCGACGAACCCGGTCGGCTGGCTCCTCACCGCCGCCCGACGTCGCACCCTCGACCGGCTGCGGTCCGAGCAGGCGCTCGCCCGCGCCATGCCGCGGCTCGCGGTGGAGGCCGAGCTGACCGCCCGTGCGCGGCAGGAGTCCGGCGCCGACCTCGACCCGGTCGACGAACGGCTCCGCCTGGTGCTGCTGTGCGCGCACCCGCGCCTGTCGCGGGAGGCGGCAGCGGCGCTGACGCTGCGCCTCGTGCTCGGTGTGCCCACCGCCGACGTCGCCCGCCTGTTCCTGCAGTCCACGCCGACGATGGCGGCACGCCTGACCCGCGCCCGCAAGAAGCTGGCCGGCGAGAGGTTCGAGCTGCCTCGCGGCGACGCCCTGACGGCGCGCTCCGCCGTCGTCGGCGACGTCGCCTACCTGGCCTTCACCGCGGGGTACGCCCCGGCGTCGGGCGACGACGTGGTCCGCGTCGGGCTCGCGGGTGAGGCGATCCGCCTGGTCCGGGTGCTGCGTGACGTCCTGCCGGCGTCGACCGACCGCAGCGACGTCGACGCGCTGCTGGCCCTCATGCTGCTGCAGCACTCGCGCCGCGACGCGCGCACCGTCGACGGGCGCCCGGTGCTCCTCGCGGACCAGGACCGCTCCCGCTGGCACGGCGACGAGATCGCCGAGGCCCTCGACCTGCTCGCGCCCCTGACCGCTGCCCCGGCCTCGCCCTACCTGCTGCAGGCGCTGGTCGCCGCCGAGCACGCCATCAGCCCGGCAGCGCAGCACACGGCCTGGGAACGCATCCTCGCGCGGTACGACGAGCTCGTGGAGATCGCCGACAGCCCCGTCGTCCGCCTGAACCGTGCCGTCGCGGTGGCCGAGGTGCACGGGCCCCGCGCCGGCCTGGAGGCGCTGGCGTCCGTGGCCCTGCGCGGGCACCGGCTGCCCGCCGTGCGCGCGGAGCTCCTCGCACGTGCCGGCCGGGCCGCCGAGGCCCGGGAGGCCTACGACGCCGCGGCCGCGCTCTGCACCAACACCGCGGAGCGCGGCCACCTGCTCGCGCGCAGGGACCGCCTGGGCACGGAGCACGACGGCGCCCCGGTCGGCGACGTCACCCGTGGACGTGCGCCCGCTGCCCCGTGAMADRPSSGEAAPHLEAALRDEWGRLLALLVAQYHRLDLAEDALGDAFEAAARTWPVQGPPTNPVGWLLTAARRRTLDRLRSEQALARAMPRLAVEAELTARARQESGADLDPVDERLRLVLLCAHPRLSREAAAALTLRLVLGVPTADVARLFLQSTPTMAARLTRARKKLAGERFELPRGDALTARSAVVGDVAYLAFTAGYAPASGDDVVRVGLAGEAIRLVRVLRDVLPASTDRSDVDALLALMLLQHSRRDARTVDGRPVLLADQDRSRWHGDEIAEALDLLAPLTAAPASPYLLQALVAAEHAISPAAQHTAWERILARYDELVEIADSPVVRLNRAVAVAEVHGPRAGLEALASVALRGHRLPAVRAELLARAGRAAEAREAYDAAAALCTNTAERGHLLARRDRLGTEHDGAPVGDVTRGRAPAAPPGPT0014960_39DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_06542387hypothetical proteinATGACCACCTACGTCGTGCTGCTCCCCGGCGTCGAGGACGCCTGGGAGCAGGCCACCGCCGAGCAGCAGGCCCAGGTGTTCTCCCGGCACGAGGAGTTCGCCCGCCTGCTCACCGAACGAGGTCACCGGATCACCGCCGGCGAGGAGCTCACGCACTCGCGCACCGCGAAGCAGGTGAGCCGCGACCCGGCCGGCAGGACCGTCGTGACCGACGGCCCGTTCGCCGAGACCGCCGAACAGCTGTCCGGCTTCTACGTCGTCGAGTCGGACGACCTGGACGACCTGCTCCAGATCTGCGCCGTCCTGGCCGAGGACCCCGCCGCCGGCAACGTCGGCGTCCCGGTCGAGGTACGGGCCGCCGTCGACCACACGGCCGACGGCGGCTGAMTTYVVLLPGVEDAWEQATAEQQAQVFSRHEEFARLLTERGHRITAGEELTHSRTAKQVSRDPAGRTVVTDGPFAETAEQLSGFYVVESDDLDDLLQICAVLAEDPAAGNVGVPVEVRAAVDHTADGGNANANANANA
AK018_06543873hypothetical proteinGTGCGAACCCGTCCCGCGCTCGCCGCAGCGCTCGCCCCCGCCGTCCTGCTCGGGCTGACCGCCTGCTCCACGGGGTCCGACGACGGCGCCACCGCGGAGCCCGCCGCGTCCGGCAGCGCCTCGCCGACGGCGCAGTGCGCGCCCGACGACCTGCCCACGCTGACCGAGGGCACCCTGACGGTCGGTGCGGGCGAGCCGTACGAGCCCTGGTACGTGGGCGACCCGTCCTCCGGCGAGGGCTTCGAGTCGGCGCTGGTGTACGCGGTCGCCGAGGAGCTGGGCTACGACGCCGAGGACGTCATGTGGGAGACAGTGACGTTCGAGCAGATCATCTCCCCGGCGATCAAGCCGTTCGACCTCGCCGCCTACCAGACGACGATCACCGCGGAGCGGGCCGAGGCCGTCGACTTCTCCAGCCCCTACCTGACCAGCCGGCAGGGCGTCATCGTCGCCGACGAGGGCGACTACGCCGACGCGGCCTCCCTGGCCGACCTGGAGGGGGCGCGCATCGGCGTCACCGCCGCGCAGACCTCCCTGGACGCCGCCGAGTCGGCGTGGGGCGACGCGGTCGAGATCACGCCGTTCAGCGCGGCGGGCGACGGCATGACCGCGCTGACCTCCGGCACGATCGACGCGATGGTGATGGACGTCGACCAGGGCGTGGCCGCCTCCACCGTCTACTTCCCGAACACCCAGGTCGTCGGCACCCTGCCGGACGTCGGTGAGCCCGAGCAGCTCGGCCTGGTGCTCGACAAGGACTCCGGGCTCACCGCGTGCGTGTCGGCCGCCGTCGACGCCCTGGAAGAGGACGGCACACTGGACGAGCTGCGCACGCAGTGGCTGAAGTCCGACGACATCGAGCAGCTGTCCTGAMRTRPALAAALAPAVLLGLTACSTGSDDGATAEPAASGSASPTAQCAPDDLPTLTEGTLTVGAGEPYEPWYVGDPSSGEGFESALVYAVAEELGYDAEDVMWETVTFEQIISPAIKPFDLAAYQTTITAERAEAVDFSSPYLTSRQGVIVADEGDYADAASLADLEGARIGVTAAQTSLDAAESAWGDAVEITPFSAAGDGMTALTSGTIDAMVMDVDQGVAASTVYFPNTQVVGTLPDVGEPEQLGLVLDKDSGLTACVSAAVDALEEDGTLDELRTQWLKSDDIEQLSPGPT0020800_4467DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
AK018_06544873hypothetical proteinATGAGCGACGGCTGGGTCCCCTCGGAGCGCGCCCGCGAGCGGGCGGCATTCCGGCGTGCCCAGCACCGGCGTGCGCTGCTCGTCGCCGCGGTGGCGACCGCCGTCGTCCTCGCCGCCGTCGTGGCCGTGGTCACCACCGCCCCCGGCTGGGAGCGGGCCCGCGAGGCGTTCTTCTCCCCGCAGCGCGCCTGGGAGGTGCTGCCCGAGGTCGCCGAGGGCCTCTGGCTCAACCTGCGCGTGTGGGTCGTGGCCTCCGTCGTCGGGCTCGTCGTCGGTCTGGCGCTGGCCGTGCTGCGCACCTCGCGGATCCCGGCGCTGTTCCCGGCACGGATGCTCACCGTGCTGTACGTCGACGTGTTCCGCGGCGTGCCCGTGCTGCTGGTGCTGCTGCTGGTCGGGTTCGGCCTGCCCGCCCTGCGCCTGGAGTGGCTGCCGACGTCGGCGGCGTTCCTCGGCGGGCTCGCCATCCTGCTGACGTACACGGCCTACCTCGCCGAGATCTTCCGCTCGGGCATCGAGTCGGTGCACCCCTCCCAGGTCGCCGCGGCCCGGTCGCTCGGGCTCACGCGGGGGCAGGCCGTGCGCAAGGTCGTGCTGCCCCAGGCGGTGCGCAACGTCACCGCGCCGGTCGCGAGCATGCTCGTGTCGCTGCAGAAGGACTCCGGGCTCATCTCCATCCTTGGGGCGGTCGACGCGATCCGGGCCGCGCAGATCGCCACCACCGGCGACTACAACTTCACGCCCTACGTCGTGGCCGGCGTGCTGTTCCTGCTGATCTCGATCCCGCTGACCCGCCTGGTGGACGCCTGGTCGGCGCGGCAGGGCTGGCGCGGCTCGCTGCGCAGCGTCAGCGGTGCGGGGGTGGTCCGGTGAMSDGWVPSERARERAAFRRAQHRRALLVAAVATAVVLAAVVAVVTTAPGWERAREAFFSPQRAWEVLPEVAEGLWLNLRVWVVASVVGLVVGLALAVLRTSRIPALFPARMLTVLYVDVFRGVPVLLVLLLVGFGLPALRLEWLPTSAAFLGGLAILLTYTAYLAEIFRSGIESVHPSQVAAARSLGLTRGQAVRKVVLPQAVRNVTAPVASMLVSLQKDSGLISILGAVDAIRAAQIATTGDYNFTPYVVAGVLFLLISIPLTRLVDAWSARQGWRGSLRSVSGAGVVRPGPT0020795_2181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
AK018_06545783glnQ_6Glutamine transport ATP-binding protein GlnQGTGACCGCCCGTCCGACGCCGGACGGCCCCGCGCCGCTGCTGCGCCTGCGCGACGTGCGCAAGACGTTCCCGACCGGACCGGGCCGCCGCGCCGGCCGCAGGACCGTCCTGGACGGCATCGACCTCGACGTCGACGAGCACCGGTGCGTCGTGCTGATCGGGTCCTCCGGGTCCGGCAAGTCCACGCTCCTGCGGGTCGTCGACCTGCTCGAGGACGTCGACGACGGGCAGGTGCTGCTCGACGGCGTCGACGTCGCCGACCCGTGGGTCGACGCCGACGCCGTGCGGGCCCGCCTGGCGATGGTGTTCCAGTCCTACAACCTGTTCCCGCACCTGAGCGTGCTCGACAACGTCACGCTCGCCCCCCGCCTCGTGCACCGGCGCCCGCGGTCTGACGCCGAGGACGCCGGCCGGCGGATGCTCGCCCGGGTGGGGCTGGCGGACAAGGCGGCGTCCTACCCCGACCAGCTCTCCGGGGGCGAGCAGCAGCGCGCCGCGATCGCCCGCGCGCTGGTGGGCGGGCCCGAGCTGCTGCTGCTCGACGAGGTCACCTCCGCGCTCGACCCCGAGCTCGTCGGCGAGGTCCTCGACCTCCTGCTCGACCTGCGTGCCGAGGGCACCACCATGCTCGTGGCCACGCACGAGATGGACTTCGCCCGGCAGGTCGCCGACGAGGTCGTGTTCCTCCACGACGGCCGCGTCCACGAGCGCGGCACCCCGGCCGAGGTGCTCGACGCGCCGCAGCGCGAGCGGACGCGCGAGTTCCTGCGCCGGCTGCGCTGAMTARPTPDGPAPLLRLRDVRKTFPTGPGRRAGRRTVLDGIDLDVDEHRCVVLIGSSGSGKSTLLRVVDLLEDVDDGQVLLDGVDVADPWVDADAVRARLAMVFQSYNLFPHLSVLDNVTLAPRLVHRRPRSDAEDAGRRMLARVGLADKAASYPDQLSGGEQQRAAIARALVGGPELLLLDEVTSALDPELVGEVLDLLLDLRAEGTTMLVATHEMDFARQVADEVVFLHDGRVHERGTPAEVLDAPQRERTREFLRRLRPGPT0020790_1820DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
AK018_065461167hypothetical proteinATGAAGCGTCTGGTGCTGTGCTGCGACGGGACCTGGAACCATGCGGTCAACCCACAGGTGTCCAACGTCGAGAAGCTGGTGCGCAGCGTCGTGCCCGGGCAGGTGCCCGGCAGCGACGACGTGCAGGTGGTCGGGTACGTCGGCGGCGTCGGGGCGCGCGGCTACCTCGTCGACCGGCTCCTCGGCGGCGCCTTCGGCTACGGGCTCACCCGCAACGTCGTCGACGGCTACCGGTTCCTGGCCATGAACTACGCCCCCGGCGACGACATCGTCGTCCTCGGCTACTCCCGCGGCGCCTACACCGCGCGCAGCGTCGTGGGCATGCTCGCCCAGGTCGGCCTCCTGACACCCGAGTCCGTCGACGCCGGCCTGCTCGACGACGCCGAACGCACCTACCGCCGTCGGGCCCGCACCGGGGACGACGGCGGGCAGGCCGCCGCGGCGCGGGCCAAGGCCGACTTCAAGAGGGCGCACTCGCACGACGTCCGGGTGCGGTTCCTCGGCGTCTACGACACCGTCGGCGCCCTCGGCGTACCCGGTCTGACGCGGCGACGCAGCCGGTTCCACGACGTCACCCTCTCCTCCGTCGTGGACACCGCACGGCAGGGCCTGGCCATCGACGAACGCCGCATCACGTTCCAGCCGTGCCTGTGGTCCGTGCCCGACGACGACGTCCCCGACCGGGTGCAGCAGGTCTGGTTCCCCGGTGGGCACGGCGACGTCGGCGGCGGCTCCGAGCACGCCGGGCTGTCCGACGTCACGCTGACCTGGATGGCCCACGAGCTCGCAGCCGTCGGCGTGGTACTCGACGAGGCGCGCCTCGCCCGGCAGATGTGCTCCGACCCCTGGGTGCTCGACGCCCGGCCCGCCTGGTACTACCGCGTCGTCAACGCCGTCCGACGGGCCGTGCCGCGCTACGGCGTCGTCGACGGCCGGCGGGTGTTCCGGCGCGGGCTGCGGGTCCTCGCCCTGCCCGGGGACGACGGCGGCTGGCGGGACCGCGTGGCGCTCGCGGACACCGCGGTGCAGCACGTGCTGCGCGACGGCTACGCGGACCGGGCCCGGAACCTGGGGTGGTGGCTCGAGGAGGCCGGTGGGCTGGAGGCGGTGCCCACGGTCTGCGTCGGGGCGGCGCCGGAGGACGCTCGGCCCCTGCTGCGGACCTGAMKRLVLCCDGTWNHAVNPQVSNVEKLVRSVVPGQVPGSDDVQVVGYVGGVGARGYLVDRLLGGAFGYGLTRNVVDGYRFLAMNYAPGDDIVVLGYSRGAYTARSVVGMLAQVGLLTPESVDAGLLDDAERTYRRRARTGDDGGQAAAARAKADFKRAHSHDVRVRFLGVYDTVGALGVPGLTRRRSRFHDVTLSSVVDTARQGLAIDERRITFQPCLWSVPDDDVPDRVQQVWFPGGHGDVGGGSEHAGLSDVTLTWMAHELAAVGVVLDEARLARQMCSDPWVLDARPAWYYRVVNAVRRAVPRYGVVDGRRVFRRGLRVLALPGDDGGWRDRVALADTAVQHVLRDGYADRARNLGWWLEEAGGLEAVPTVCVGAAPEDARPLLRTNANANANANA
AK018_06547375Universal stress proteinATGACGGTGCTCGTGGCCTATCACGCCTCCCCGCACGGCGAGGCGGCTGTCCGGACCGCTGTGGACGAGGCGCGCCAGCGGGACACCTCGCTCCTGGTCCTGGTCCTCGACCCGTCGCCACCGGGATCCGCCGCACCCGACGAGCTCACCGCCGTCCTGGACGGCGCCCCGGCGGAGCTGGCGTTCCGGTCGGAGGACACCGAGCCCGCCGACGCCATCCTCGACGCCGCCGAGGGCTCCGGCGCCACGCTGGTGGTGCTCGGGTCGCGCAAGCGGTCGAGCCAGGGCACGTTCCTCATGGGCACGACGACGCAGCGCGTCCTGCTCGACGCCTCCGTGCCGGTGCTGGTCGTCAAGGACGCCTACGACTCCTGAMTVLVAYHASPHGEAAVRTAVDEARQRDTSLLVLVLDPSPPGSAAPDELTAVLDGAPAELAFRSEDTEPADAILDAAEGSGATLVVLGSRKRSSQGTFLMGTTTQRVLLDASVPVLVVKDAYDSNANANANANA
AK018_065481119hypothetical proteinGTGAGCCTCACCAGCGTCCTGCTCCTGCTCGCCGGGTTCGTCCTCCTCGTCGGTGGTGGCGAGGCCCTCGTCCGCGGCGCCGCCTCCCTGGCGCGCACGATGGGGATGTCGGCTCTTGTGGTGGGCCTGACGGTCGTGTCGTTCGCGACGTCGAGCCCCGAGCTGGCCGTCAGCGCAGGCTCCGCGCTCGCCGGGTCCCCCGGTCTCGCGGTCGGCAACGTCGTCGGCTCGAACATCGCCAACATCCTCCTCGTCCTCGGGGTGGCGGCACTCGTGGTCCCGCTGGCGGTGACCTCCCGGCTGGTGCGCACCGACATCCCGGTCATGGTGGGGCTGTCCGTGCTCACGCTGGTCCTGGCCCTGGACGGCACGATCAGCACCACCGACGGCGTCCTGCTGCTCGGCCTGCTGGCCGTGTACCTCGTGATGACCACGATCGTGGCGCGGCGCGAGCGCGGCACCGCCGACGAGCCCCGCGAGCAGGACGGGACCGACGCCCTGGCACGCTTCCGCACCACCCGCGCACGCTCGATCGGGGTCGACGCCGTGCTCGTCGCGGTCGGGGTGGGCCTGCTGGTGCTCGGCGCGCAGCTGCTCGTGGACGGGGCGACGCAGATCGCCTCGGCGTTCGGCGTCAGCGACCTGGTGATCGGCCTGACCGTGGTGGCGGTCGGCACCTCGCTGCCGGAGCTGGCCACCAGCGTCATCGCGGTGCGGCGCGGGGAGCGGGACATGGCGGTGGGCAACATCGTCGGCAGCAACATCTTCAACATCGGGGCCGTCCTCGGCCTGACGGCCCTGATCGCGCCGGGCGGCATCGAGGTGGACCCCGCGGCGGTCAACGTCGACCTGCCCATCATGGTGGCCGTCGCGGTCGTGCTGCTGCCGATCGCCTTCACCGGCCAGGCGATCGTGCGCTGGGAGGGCGGGCTGTTCGTGGTCCTCTACCTGGTCTACCTCGCCTACGTCCTCCTGGCAGCGACCGACCACGACGCGCAGGGCCCGTTCGGCGGGGCGATGTTCGGGTTCGTCCTGCCGGTCACGGCGGTGTGGCTGGTGGCTCTCGTCGCCTACGAGCTCGGCCTGCGGCGCGGGCGCCGCTCCCCCCACCAGATGTGAMSLTSVLLLLAGFVLLVGGGEALVRGAASLARTMGMSALVVGLTVVSFATSSPELAVSAGSALAGSPGLAVGNVVGSNIANILLVLGVAALVVPLAVTSRLVRTDIPVMVGLSVLTLVLALDGTISTTDGVLLLGLLAVYLVMTTIVARRERGTADEPREQDGTDALARFRTTRARSIGVDAVLVAVGVGLLVLGAQLLVDGATQIASAFGVSDLVIGLTVVAVGTSLPELATSVIAVRRGERDMAVGNIVGSNIFNIGAVLGLTALIAPGGIEVDPAAVNVDLPIMVAVAVVLLPIAFTGQAIVRWEGGLFVVLYLVYLAYVLLAATDHDAQGPFGGAMFGFVLPVTAVWLVALVAYELGLRRGRRSPHQMPGPT0014400_289DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0014400-yrbG-K07301NANA
AK018_06549450COG2166putative SufE-like proteinATGACCGACGACGCCGCACCCGCCCTGCCCGACTCCCTCGCCGAGATCCGCGAGGACTTCCTGGCGCTGTCCGAGTCCGAGCGCCTGCAGCTCCTGCTGGAGTTCTCCCGCGAGCTGCCCGACCCGCCGGAGCGCTACGCCGCGGCCCCGGGCATGCTGGAGAAGGTCGAGGAGTGCCAGTCCCCCGTGCGGGCGTTCGCCGAGGTGTCCGACGGCGTCGTGCACTTCTACGCCACGGCCCCGCAGGAGGCGCCCACCACGCGCGGCTTCGCCTCCATCCTCGCCCAGGGGCTGTCCGGGCTCACCCCGCAGCAGGTCCTGGACGTCCCCGAGGAGTTCCCGCTCCAGCTGGGGCTCACCCGCGCGGTGAGCGTGCTGCGCCTCAACGGCATGGCCGGCATGCTCACGCGTGCCAAGCGCCAGGTCGTCGAGCAGCTCGCGGCGGCCTGAMTDDAAPALPDSLAEIREDFLALSESERLQLLLEFSRELPDPPERYAAAPGMLEKVEECQSPVRAFAEVSDGVVHFYATAPQEAPTTRGFASILAQGLSGLTPQQVLDVPEEFPLQLGLTRAVSVLRLNGMAGMLTRAKRQVVEQLAAANANANANANA
AK018_06550966sseA_2COG2897Putative thiosulfate sulfurtransferase SseAGTGTCCGGGCTGCTCACCTCCGGCCTAGGGTGGCTCCGGACCACCGACCAGGAGGAGATCATGCCCGCACCGCTCGACCCCACGCCGCGCCTGCAGGAGTACGCCCACCCCGAGCGCCTGGTGACCACCGAGTGGCTCGCCGAGAACCTCGAGAACCCGGACCTCGTCGTCGTGGAGTCCGACGAGGACGTGCTGCTCTACGAGACCGGGCACATCCCCGGCGCGGTCAAGATCGACTGGCACACCGACCTGCTGCTGCCCGTCGAGCGCGACTACCTCGACGGCCCCGGCTTCGCCGAGCTGCTCGGTTCCAAGGGCATCGGCCGCGACACCACCATCGTGCTGTACGGCGACAAGAACAACTGGTGGGCCGCCTACACCGCGTGGGTCTTCACCCTCTTCGGCCACGCCGACGTCCGCCTGCTCGACGGCGGTCGCAACCTCTGGGTCGCCGAGGGCCGCGACCTCACCACGGACGTGCCGACGCCGACCCCGGCCGAGTACCCGTCCGTCGAGCGGGACGACACCACGTTCCGCGCCTTCAAGGAGGACGTGCTCGCGCACCTCGGCCAGGGCCCGCTGGTCGACATCCGCTCCCCGCAGGAGTTCACCGGCGAGCGCCTCCACATCCCCGACTACCCCGAGGAGGGCGTGCTGCGCGGCGGGCACATCCCCACCGCGCACAACGTCCCGTGGGCCACGGCCGTGTCCGAGGACGGCACGTACAAGCCGCGTGCCGAGCTCGAGGCCATCTACCAGGCGGGCGGCCTCGGCATCACCGACGAGGACAAGGTCATCACCTACTGCCGCATCGGGGAGCGCTCGAGCCACACCTGGTTCGCCCTGCACTTCCTGCTCGGCATCCCGGACGTGCGCAACTACGACGGGTCCTGGACCGAGTGGGGCAACGCCGTGCGCGTCCCGATCGTCGCCGGCGACCAGCCCGGCGAGGCCCCCGCGGCCTGAMSGLLTSGLGWLRTTDQEEIMPAPLDPTPRLQEYAHPERLVTTEWLAENLENPDLVVVESDEDVLLYETGHIPGAVKIDWHTDLLLPVERDYLDGPGFAELLGSKGIGRDTTIVLYGDKNNWWAAYTAWVFTLFGHADVRLLDGGRNLWVAEGRDLTTDVPTPTPAEYPSVERDDTTFRAFKEDVLAHLGQGPLVDIRSPQEFTGERLHIPDYPEEGVLRGGHIPTAHNVPWATAVSEDGTYKPRAELEAIYQAGGLGITDEDKVITYCRIGERSSHTWFALHFLLGIPDVRNYDGSWTEWGNAVRVPIVAGDQPGEAPAAPGPT0002045_853DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
AK018_065511296hypothetical proteinATGAGACATCGGTCCGCCGGTCAGGGCGAGGGTGCCGTGACCACGGGTGCTGCCGTGCCCGTACGCCGCGACCGCCGGTCCGTGCGCACCGCCTACGACGCCTTTCTCGACACCGGGACGCTCCCGGACGGCCTGGACCCGCTGGTCGCGGCGTCCTGGCGCCGCAGCCGCTCCAGCGGCGTCGACCCCGACACCCCGCACGCCACGATCGGCCTGCCCGCGGACGAGCTCGACGACTACCGCGCCGGCCACCCGCTGGCCCCGCTCATGCCGGTCGTGCGCGAGCTCGTGGTCGACGCCGCGCGGGAGGACGGGCTCGTCGTCGCCGTCTCCGACGACGCCGGACGGCTGCTGTGGGTCGAGGGCGCCCGCTCGACCCGCGCCACCGTGGAGTCCGTCGGGTTCGTCCCCGGTGCCGTGTGGCGCGAGCAGGACGTCGGCACCAACGCCCCCGGGACCGCGCTGGCCACGCGGCGTCCCGTCCAGGTGCTCGGTGCCGAGCACTTCTCCCGGCCGGTCCAACGACTCAACTGCTCGGCCGCGCCGATCCGCGACCACGACGGCACAGTCCTCGGGGTCCTCGACGTCACCGGAGGGCGTCCGGCGGCGACGCACGTCACCCTGTCGCTGGTCCGTGCCACCGTCGCCAGCCTCGAACGCGAGCTCGCCGCCCGGGCCGTCCGACAGCTCCCTGACCGCGGCAGCCCGTCCGGCACCGTCGCCGAGCCGCAACTCCAGCTGCTCGGCACGCCCGCCCTGCTGACGTCCGACGGCGAACGGCGGCTCCCCGGACGGCACGCGGAGATCCTCGCCCTGCTCGCCGAGCACCCGCGCGGCCTGACCGCCGACGAGCTCGCCGTGCTCCTGCACCCCGGAGACCTGTCCGACGTGACCGTCCGGGCCGAGATCTCCCGCCTGCGCCGCGCCGTCGGCCCCCTGGTCACCGGCTCCCGCCCGTACCGGCTCGCCCCGCACGTCCGCACCGACGTCGACGCGGTCCGCGCCCTCCTCGCCGCCGGAGAGACCGCACTCGCCCTGGCCGCCTGGACCGGGCCGCTGCTGCCCCGGTCACTCGCGCCCGGCGTCGAACGACTGCGCGCCGAGCTCACCGCCGAGGTGCGTGCCGCCGTCCTCGCCGACGCCGATCCCGAGGCGCTGGAAGCCTGGACCCGGACCGACGACGGCGCCGACGACGTCGCCGCCTGGCGGCAGCTGGTCGCCCGGGCCGCACCCGGCAGCCCCCGGTGGACGCGAGCGCGGGCCCACCTCGCCGTCGTCGACGCCGCGCTGCGCTGAMRHRSAGQGEGAVTTGAAVPVRRDRRSVRTAYDAFLDTGTLPDGLDPLVAASWRRSRSSGVDPDTPHATIGLPADELDDYRAGHPLAPLMPVVRELVVDAAREDGLVVAVSDDAGRLLWVEGARSTRATVESVGFVPGAVWREQDVGTNAPGTALATRRPVQVLGAEHFSRPVQRLNCSAAPIRDHDGTVLGVLDVTGGRPAATHVTLSLVRATVASLERELAARAVRQLPDRGSPSGTVAEPQLQLLGTPALLTSDGERRLPGRHAEILALLAEHPRGLTADELAVLLHPGDLSDVTVRAEISRLRRAVGPLVTGSRPYRLAPHVRTDVDAVRALLAAGETALALAAWTGPLLPRSLAPGVERLRAELTAEVRAAVLADADPEALEAWTRTDDGADDVAAWRQLVARAAPGSPRWTRARAHLAVVDAALRPGPT0007176_1DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138NANA
AK018_065521524thcA_2COG1012EPTC-inducible aldehyde dehydrogenaseATGACCGTCTACACGCCCCCGGGACAGTCCGGGTCGATCGTCGAGTACCGGTCCCGGTACGACCACTGGATCGGCGGCGAGTACGTCCCCCCGGCGAACGGCGAGTACTTCGAGAACCCCAGCCCCGTCACCGGGCAGACCTTCTGCGAGGTGGCCCGCGGCACCGCCGACGACATCGAGAAGGCGCTCGACGCCGCCCACGGCGCCGCCCCCGCCTGGGGCCGGACCTCCGCCACCGAACGGGCCAACATCCTCAACGCCATCGCCGACCGCATCGAGGCCAACCTCGAGAAGATCGCCGTCGCCGAGAGCTGGGAGAACGGCAAGGCCGTCCGCGAGACCCTCGGCGCGGACATCCCGCTCGCCGTCGACCACTTCCGCTACTTCGCCGGCGCCATCCGGGCCCAGGAGGGCTCGGTCTCCGAGATCGACGAGAACACCATCGCCTACCACTTCCACGAGCCCCTCGGCGTCGTCGGGCAGATCATCCCGTGGAACTTCCCGATCCTCATGGCCACCTGGAAGCTGGCGCCGGCGCTCGCGGCGGGCAACGCCGTCGTGCTCAAGCCGGCCGAGCAGACCCCCGCGTCGATCCTGTACCTGATGGACATCATCGGGGACCTGCTGCCGCCCGGCGTCGTCAACGTGGTCAACGGGTTCGGGGCCGAGGCGGGCAAGCCGCTCGCGTCCTCACCGCGGATCCGCAAGATCGCCTTCACCGGCGAGACGACGACGGGGCGGCTGATCATGCAGTACGCCTCGGCCAACATCATCCCGGTGACCCTGGAGCTCGGCGGCAAGAGCCCGAACGTGTTCTTCTCCGACGTCACCGCCGAGCGCGACGACTTCTACGACAAGGCGCTCGAGGGCTTCACCATGTTCGCCTTCAACCAGGGCGAGGTGTGCACGTGCCCGTCGCGGGCCCTGATCCAGTCCGACATCTACGACCAGTTCCTCGGCGACGCCCTGAAGCGCACCGAGGCGGCAGTCCAGGGCAACCCGCTGGACACCGAGACGATGGTCGGCGCGCAGGCCTCCAACGACCAGCTCGAGAAGATCCTGTCCTACATCGACATCGGCAAGGCCGAGGGCGCCAAGGTGCTGACCGGCGGGGAGCGGGCCGACCTGGGCGGCGACCTGTCCGGCGGGTACTACGTCACCCCGACGATCTTCGAGGGCAAGAACTCGATGCGGATCTTCCAGGAGGAGATCTTCGGGCCCGTCGTGTCGGTGACGGACTTCGCCGACTACGACGACGCGATCAAGATCGCCAACGACACCCTCTACGGCCTGGGGGCCGGGGTGTGGACCCGCAACGGCACGACGGCGTACAAGGCGGGCCGCGCCATCGAGGCCGGGCGCATCTGGACCAACTGCTACCACGCCTACCCCGCCGCCGCGGCGTTCGGCGGGTACAAGGGCTCCGGCGTCGGGCGCGAGAACCACAAGATGATGCTCGACCACTACCAGCAGACCAAGAACCTGCTCGTCAGCTACTCCGGCGTGCGGGACGGGTTCTTCTAGMTVYTPPGQSGSIVEYRSRYDHWIGGEYVPPANGEYFENPSPVTGQTFCEVARGTADDIEKALDAAHGAAPAWGRTSATERANILNAIADRIEANLEKIAVAESWENGKAVRETLGADIPLAVDHFRYFAGAIRAQEGSVSEIDENTIAYHFHEPLGVVGQIIPWNFPILMATWKLAPALAAGNAVVLKPAEQTPASILYLMDIIGDLLPPGVVNVVNGFGAEAGKPLASSPRIRKIAFTGETTTGRLIMQYASANIIPVTLELGGKSPNVFFSDVTAERDDFYDKALEGFTMFAFNQGEVCTCPSRALIQSDIYDQFLGDALKRTEAAVQGNPLDTETMVGAQASNDQLEKILSYIDIGKAEGAKVLTGGERADLGGDLSGGYYVTPTIFEGKNSMRIFQEEIFGPVVSVTDFADYDDAIKIANDTLYGLGAGVWTRNGTTAYKAGRAIEAGRIWTNCYHAYPAAAAFGGYKGSGVGRENHKMMLDHYQQTKNLLVSYSGVRDGFFPGPT0007176_549DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138NANA
AK018_06553408hypothetical proteinATGACGGACTCCGCGGACGTCTCGCGGGTCGCCGTCACCGACGCCGCGGCCGAGCTCCTCGCTCGGCTGCGGCGTCGCCACGGCGAGCTCATGTTCCACCAGTCCGGCGGGTGCTGCGACGGCTCCAGCCCCATGTGCTACCCGGCCGGCGACTTCATCACGTCCGCCGCCGACGTGCACCTGGGCGACCTGTCCCTGTCCGACGACGGCGGGCCCGGCGCCGGCGAAGCGTTCACCGTGCCGGTGTGGATGAGCCGGGCGCAGTTCGAGTACTGGAGCCACACCCACCTGACGATCGACGTCGTGCCGGGGCGGGGTGCCGGGTTCAGCGTCGAAGCGCCCGAGGGGGTGCGGTTCCTCATCCGTTCGCGGCTGTTCACCGACGAGGAGGCCGCGGCCCTGCGGTGAMTDSADVSRVAVTDAAAELLARLRRRHGELMFHQSGGCCDGSSPMCYPAGDFITSAADVHLGDLSLSDDGGPGAGEAFTVPVWMSRAQFEYWSHTHLTIDVVPGRGAGFSVEAPEGVRFLIRSRLFTDEEAAALRPGPT0017992_21DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
AK018_06554285hypothetical proteinATGGATGCACGGCAGGACGACCGCTGGTCGCAGGACGTGACCGACCGCTCCGACGCGCTCGACCTCGAGGACGACGTCTTCACCTGGGAGGACCCGGCACGCATCGCCGCGTCGCTGAAACGGTCGGCCGAGGCCAGCGACCGGCGCAAGGGCAGCGCCTACCGGTCGGCGATGTCGATGCTCACGTTCTACATGAACCGCGCCGGGTCGCAGCTGACCGACGAGCGGCGCGACGTGCTGGAGCGGGCCAAGGGCGAGCTGCGCGTGGTGTTCGGCCGGGACTGAMDARQDDRWSQDVTDRSDALDLEDDVFTWEDPARIAASLKRSAEASDRRKGSAYRSAMSMLTFYMNRAGSQLTDERRDVLERAKGELRVVFGRDNANANANANA
AK018_065551083hypothetical proteinATGTTGCATGCCGTGAGCACCGAAGTCGACGCCCTCCCGTCCGTGTCATCGCTGCCGGCATGGCTCGTGCCCTCCGTATACCTGAACTGGTCCTCGGAGTGGCTGCGCGAGTCCATCGCTATCGCGACCCGTTCGCGTGAGCACGCGCTGCCCGGCGGGCCCGACGGCCCGAAGCGGGGTGACGTCGTCGTCACCGTGCTCGGCGAGGCCGGCGTCGTCGCCTCGGTGGAGCTCATGGGCGCCTCCGACGGCGACTCCTGGATCACCGACGAGCTGTTCGGCCCCGACCGGCCGATCGTGTGGGCCGACCTGTTCGACGGCGCCGACGCCTACATCGGCTCGTCCGGCTGGCTGCCCGCCGAGCACGCCCGCGCCGTGCTGGACGGCATCGCCAACCAGTTCCACGACGGTCCGGTGCACACCATCGACCCGGGTGACTGCGGCGCGGGGCCGGCGGCCTCCGACGTCCACGTGCTGCGCATCATCGGTCACCGTGCGGTGACCGGTTGGGCCATGCGTCGCGAGGAGCGGTGCGCCACCTGCGAGCGGTTCGTCGACGTGCACGAGCTGCAGGCGCACGACGACGGCGCCGTGCGCCTCGGCACGACGACCGCCGGTGGGCGCACGCTCGAGCAGGTCATCCGCGACGTGCACCTGATGTGCGGGCAGTGCCACGACCTCATGCACGCGCACTCGGTGTCCGCGCAGCGTGCCCGCCTGCGCCCGCAGTGCCCCGGCTGCGGCGTGCGCGGCAAGACCAAGCGCATCGTGTGGGGCATGACCTTCACCGACGACGTCGTCAGCGCCGAGCCGGACGTCGTCTACGGCGGGTTCGAGGTCCCCGTGCCCGCCCCGGAGTGGTACTGCACCTCCTGCCACGCGAACTTCGGCAGCACCGTCGTGGCCTCCCGGGTCCTGGACGAGCAGGGTCCCGCCGTGCCGCAGCCGGTCACCGGTGCCATCGGTCGGCTCGACGAGGACGCGCTGCAGTCGGCCTCGACCGTCGCGGAGATGCCCGAGGGGTCGGCGGCCGACGTCGAGCCCGGGGAGTCCGCGCGCTGGGAGCCCACCAACGGGATCTGAMLHAVSTEVDALPSVSSLPAWLVPSVYLNWSSEWLRESIAIATRSREHALPGGPDGPKRGDVVVTVLGEAGVVASVELMGASDGDSWITDELFGPDRPIVWADLFDGADAYIGSSGWLPAEHARAVLDGIANQFHDGPVHTIDPGDCGAGPAASDVHVLRIIGHRAVTGWAMRREERCATCERFVDVHELQAHDDGAVRLGTTTAGGRTLEQVIRDVHLMCGQCHDLMHAHSVSAQRARLRPQCPGCGVRGKTKRIVWGMTFTDDVVSAEPDVVYGGFEVPVPAPEWYCTSCHANFGSTVVASRVLDEQGPAVPQPVTGAIGRLDEDALQSASTVAEMPEGSAADVEPGESARWEPTNGINANANANANA
AK018_06556477hypothetical proteinGTGGCCGACGTGCTGGTCCTCAACGCCGGCTACGAGCCGCTGCACCGCGTGTCCGTCAAGCACGCCATCACGATGCTGGTGCGCGAGGTGGCCGTGGTGGAGGAGTCGGTGGACGGCGTCTCCTTCGGCCCCTACCCGCTCCCCCGTGTCCTGCGGCTGGTCCGCTACGTCGCCATGCGCTGGCTGTACCGCGGCGGCGGCCGCCCGGCGGTGACCAAGGACGGCGTCAAGCGCCGCGACGGCGAGTGCGCCTACTGCGGCGGGCCGGCGCAGACCGTCGACCACGTGGTGCCGCGGTCCCGCGGGGGCGACAGCTCGTGGCTGAACCTCGTGGCGGCGTGCGAGCCCTGCAACCACCGCAAGGCGGACCGCACGCCCGTCGAGGCAGGCATGCCGCTGCAGCTCACCCCGTACGTGCCGCCCGCGGACCACGGTCTGGTACGGCGCCGCCGTCGGGCACGCTCACTGGCTGCCTGAMADVLVLNAGYEPLHRVSVKHAITMLVREVAVVEESVDGVSFGPYPLPRVLRLVRYVAMRWLYRGGGRPAVTKDGVKRRDGECAYCGGPAQTVDHVVPRSRGGDSSWLNLVAACEPCNHRKADRTPVEAGMPLQLTPYVPPADHGLVRRRRRARSLAANANANANANA
AK018_06557210lysC_2AspartokinaseATGAAGTCGCACCCGGGCATCTCCGCCCGCCTGTTCGGCGCGCTGCGGGACGCGGGCATCAACATCGAGATGATCTCCACCTCGGAGATCCGCATCTCGGTGGTCACCCGCGCCGACAACCTGGACGACGCCGTGCGCGCCATCCACACCGCGTTCGAGCTGGACTCCGCCGAGGGCGAGGCCGTGGTCTACGCCGGGACGGGGCGGTGAMKSHPGISARLFGALRDAGINIEMISTSEIRISVVTRADNLDDAVRAIHTAFELDSAEGEAVVYAGTGRPGPT0014040_2588DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0014040-lysC-K00928NANA
AK018_065581116asd_2COG0136Aspartate-semialdehyde dehydrogenaseGTGACCGACGTGGCTCAGATCAACTCCACCGGGGTCAACGTCGCCGTCGTCGGCGCGACCGGCCAGGTCGGCGCGGTCATGCGCAGGCTGCTCACCGAGCGGGCCTTCCCGATCAAGGAGCTCCGCCTGTTCGCGTCCGCGCGCTCGGCCGGCTCGACGATCACCTACGAGGGCGTCGACGTCACCGTCGAGGACGTCGCGGCCACGGAGACCTCCGCGCTCGAGGACATCGACATCGCCCTGTTCTCCGCGGGTGGCGGCACCTCGAAGGAGCACGCGCCGCGCTTCGCGGAGGCGGGCGCCGTCGTCATCGACAACTCGTCGGCCTGGCGTCTCGACCCCGAGGTCCCGCTGGTGGTGTCCGAGGTCAACCCGGAGGCGATCTCCGAGGCGGCCAAGGGCATCATCGCCAACCCGAACTGCACCACGATGGCCGCGATGCCGGTGCTCAAGCCGCTGGCCGCCGAGGCCGGGCTCGAGCGCCTGCGGGTCGCCACCTATCAGGCGGTGTCCGGGTCCGGGCTCGGCGGGGTCAAGGAGCTGGCCGACCAGGCGCGTGCCGGCGCCGCCGGCGACCTCGAGGGGCTGACCCACGACGGCTCCGCGGTGACGTTCCCGGAGCCCGAGAAGTACGTCGCGCCGATCGCGTTCGACGTCGTGGCGCTGGCCGGCGCGATCGTCGACGACGGGTCGGAGGAGACCGACGAGGAGCAGAAGCTCCGCAACGAGTCCCGCAAGATCCTCGGCCTGCCGGATCTCGCGGTCGCCGGCACCTGTGTGCGCGTGCCGGTGTTCACGGGACACTCGCTGGCGATCCACGCCGAGTTCGGCGCCGCGATCACGCCGGACCGGGCGCGCGAGCTGCTCGCCGAGGCTCCCGGCGTCGAGCTGGCGGACGTCCCGACGCCGCTGGCCGCCGCGGGTGCGGACCCGTCGTTCGTGGGCCGGATCCGCACGGACCAGTCGGTGCCGGACGGGCGCGGGCTGGTGCTGTTCGTCGCGAACGACAACCTGCGCAAGGGGGCGGCGCTCAACGCGATCCAGATCGGCGAGATCGTCGCCGCGGACATCGCCGAGCTGGCGACCTACGAGGCCGCCGACGCGACCGTCTCCTGAMTDVAQINSTGVNVAVVGATGQVGAVMRRLLTERAFPIKELRLFASARSAGSTITYEGVDVTVEDVAATETSALEDIDIALFSAGGGTSKEHAPRFAEAGAVVIDNSSAWRLDPEVPLVVSEVNPEAISEAAKGIIANPNCTTMAAMPVLKPLAAEAGLERLRVATYQAVSGSGLGGVKELADQARAGAAGDLEGLTHDGSAVTFPEPEKYVAPIAFDVVALAGAIVDDGSEETDEEQKLRNESRKILGLPDLAVAGTCVRVPVFTGHSLAIHAEFGAAITPDRARELLAEAPGVELADVPTPLAAAGADPSFVGRIRTDQSVPDGRGLVLFVANDNLRKGAALNAIQIGEIVAADIAELATYEAADATVSPGPT0014045_760DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133NANA
AK018_06559570hypothetical proteinATGACCGAACCGGTCGACACCTGGTCCAGCCTCGCGTTCGTCGTCGCGGGCGTGTGGGTGGTCGTCCGACGACGGCACTCCGGCGACGGCGCACCGTCACGCGCCGCAGCGCGCGCCCGGGCCGCGCTCGGCGTCCTGGCGATCGGCATCGGCGTCGGATCGGTCGTCCAGCACGGTCCCGCACCGTCGTGGAACCCGCTGGTGCACGATCCACCGTTGTTCGGCGCCTACGCCCTGGTCGCCGCCGACGCCGTCTCGGATCTCACCGGGCAGCGGATGCGCACCTGGTGGTGGCTGGTCCCGACGATCGTGGACCTGGCGCTCGCCGTCGTCGACCCGTGGGCGTCGGTCGTGGCGCAGGGCGTCGCCTCGGGCATCGCCGTCGTGCTGATCCTGGTGCGGGCGCTGGCCCGACCGGTGCTGCGCGTGCGGCTGGTGACCGCGGTCGTCGTCCTGGGTGTCGGTGCGCTGGTCGGTTTCGTGGACCCGTGGGGGCACAGCGTGTGGCACGTGCTGGCGGCGACGGCGATCGTGGTCGCGGCACCTGCCGTCGGGGCGCGGCCGTCCTGAMTEPVDTWSSLAFVVAGVWVVVRRRHSGDGAPSRAAARARAALGVLAIGIGVGSVVQHGPAPSWNPLVHDPPLFGAYALVAADAVSDLTGQRMRTWWWLVPTIVDLALAVVDPWASVVAQGVASGIAVVLILVRALARPVLRVRLVTAVVVLGVGALVGFVDPWGHSVWHVLAATAIVVAAPAVGARPSNANANANANA
AK018_06560372hypothetical proteinATGTTCGACGGCCCTGAACCCCTCTACGTCCAGATCGGTCAGATGATCCGGTCCCAGGTCCTCGCGGGCGAGCTCGGGGAGGACGAGCAGGTCATGTCCACCACGCAGTTCGCCACCACGTTCCGCATCAACCCGGCCACCGCGGCCAAGGCGTTCTCCGGCCTCGTCGACGAGGGTGTCCTCTACAAGCGGCGCGGGCTGGGCATGTTCGTCGCCCCCGGGGCCCGCGCACGGCTGCTCGAGCACGACCGGCAGGCCTACTTCGACGAGGTCCTCGCCCCGGCGCTCGCCCAGGCGAAGGTCCTCGGCATCACGACCGACGAGATCGTCACCCACATCCGTCACCAGCACACCACCTCGGAGGAGTCATGAMFDGPEPLYVQIGQMIRSQVLAGELGEDEQVMSTTQFATTFRINPATAAKAFSGLVDEGVLYKRRGLGMFVAPGARARLLEHDRQAYFDEVLAPALAQAKVLGITTDEIVTHIRHQHTTSEESNANANANANA
AK018_06561975hypothetical proteinATGACCGCCCCCTTCGGCGCGCGCCTCGACGACGTCGTCGTCCGGTTCGGCCGGCAGCGCCGGGTGACCAGCGACGGCGGCACCTACCGTGCGGACGCCTCGACCGCGCTCGACGGCGCGAGCCTCACGATCCGCCCGGGCACCATCACCGGCGTCCTCGGACGCAACGGCGCCGGCAAGACCACGATGCTCTCCCTGCTCGCCGCGTACCGACGCCCCACCGCCGGGACCCTCGCCGTGGGCGCCGGGGACGACCCCGCCGCCTGGGAGGATCCGTGGGAGAACCCGTGGGTCACCTCCAACGTGCAGCTCGTCAGCGAGGGCGGCGGCGTCCAGGACGACGAGAAGCTCCGCGAGACGCTGAAGTACTACGCCGACCTGCGGCCCTTCTGGGACGCCGACACCGCCGAGCGCCTGCTCGAGACGTTCGAGATCAACACCCGCAAGAAGCCGAACGCCCTCTCGCGCGGCAAGCGGTCCGCCGTCGGCGCCGTCCTCGGACTGGCCTCGCGCGCCCCGCTGACGATCTTCGACGAGGTCTACCTCGGCATGGACGCCCCCACCCGGTACGCGTTCTACGACGAGATCCTCGCCGACTACGCCGCCCACCCGCGCACCATCCTGCTGTCCAGCCACCTGGTCGAGGAGGTCGAGCGGCTCTTCGAGGACGTCGTCGTCCTCGACCGCGGCCGCGTGCTGCTCGCCGAGTCCGCCGAGGAGATGGCCGCCCGCGGGTTCAGCCTCACCGGGCCGACGACGGCGGTCGATCGCCTCGCCGGGGACCGGAAGATCCTGCACCGCCAGCAGCTCGGGGGAACCGTCCAGATCACCCTCGAGGGCGCGCCCGACGACGGCACCCGCGCCGCCGCCCGCGAGGCCGGCGTCGAGGTCGGCCACCTGCCGCTGCAGGACCTGTTCGTCCGACTGACCGACCCCGCGGCCCGCGCGGGCCACCCGGACGGAGCGGGCCGATGAMTAPFGARLDDVVVRFGRQRRVTSDGGTYRADASTALDGASLTIRPGTITGVLGRNGAGKTTMLSLLAAYRRPTAGTLAVGAGDDPAAWEDPWENPWVTSNVQLVSEGGGVQDDEKLRETLKYYADLRPFWDADTAERLLETFEINTRKKPNALSRGKRSAVGAVLGLASRAPLTIFDEVYLGMDAPTRYAFYDEILADYAAHPRTILLSSHLVEEVERLFEDVVVLDRGRVLLAESAEEMAARGFSLTGPTTAVDRLAGDRKILHRQQLGGTVQITLEGAPDDGTRAAAREAGVEVGHLPLQDLFVRLTDPAARAGHPDGAGRPGPT0006725_3597DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_06562768hypothetical proteinATGACCGGCGCCGCGCTCCTCGACGACCGGGCGACGTTCGTCCGCCAGGTCCGGCGCGCCGCCACCGCCCGCGCCACCCGCGCGATCGCCGAACCGCTCGTCGTCGTCGGCCTGGGGTTCTGGGTGGTCGTCGGGCTGGCCGGCGTCGTGGTACCGCAGATCGTCGACCGCGCCGGGAACCAGATGGACACTGGTGTGCTCGGGACCGGCGGCTACAGCGCCCGCTGGTTCGCCTTCGCCCTCGGGCTCATCATGGTCGCCACCATCGCCCCCAACCACGTGGCCGCCGGGGGCACCCGACGGTCCCTGTTCCGCGGGTCGCTGTTGGCGGCCGCCGTCGGTGGGGTCTTCAACGGGCTGGCGTACGCCGTCGCGAAGGTCGCCGAGCGGTCCTACTTCGACGCCCTGGGCTGGACGTGGGAGGCACCCGAGTTCCTGGTGTTCGGCGGCCGGTCCGGGTTCACGCTCACGGTCGTCGCCGCCGGCCTCGCCATCGCCGCCTACGTCCTGGTCGGCATCGCGGTCGCGATCGGCTACCTGCACCACGGTCCGTGGCGAGGGACGCTGCTGCTCGTGCCGAACGCCGCCGTCCTCGCGCTCGCCGAGGTCGCGACCCGGACCGAGCGGTTCCTGGAGCCGCTCGGCCCCGAGCTCACGGGCGCCGCGGCCGTGGCCGTGACCCTGGTGGCCACCAGCGCGGTCGTCGTGATCGCGGCCGGGTGGCTCCGCCTGAACCTGCGCACGCTCCCGATCCGGCCGTCGAGGTGAMTGAALLDDRATFVRQVRRAATARATRAIAEPLVVVGLGFWVVVGLAGVVVPQIVDRAGNQMDTGVLGTGGYSARWFAFALGLIMVATIAPNHVAAGGTRRSLFRGSLLAAAVGGVFNGLAYAVAKVAERSYFDALGWTWEAPEFLVFGGRSGFTLTVVAAGLAIAAYVLVGIAVAIGYLHHGPWRGTLLLVPNAAVLALAEVATRTERFLEPLGPELTGAAAVAVTLVATSAVVVIAAGWLRLNLRTLPIRPSRNANANANANA
AK018_06563756hypothetical proteinATGACCGCGACGAACGTCATCCGCACCGGCGGCCGTGCTGACCGGGCCGGCACGCGGGCCGCGCGACGCCACTTCACCCGTGCGCTGATCCTCACCGGCATCTGGTTCTGGGGCTTCTGGGCGGCGCTCGTCGTCGGGGTGCCGCTCGCCGTCGACCGGTGGGGCGGCGAGATGGCCGGCCTCACCTACGACACCGCCGGCAACCCCGCACGGTGGGTCGGCTTCGCCGTCGGGATCATCCTCACCGCCGCCGCCCTGAGGATGCACGTCGCGGCCGGTGGGACCCGCCGCGCGTTCGTCGACGGCGCCACCCGCGCTGCCGCCGTCGTCGGGGTCGCGTACGGCGTGCTCACCGTGGTGCTGGCCCTCGCGGAGGAGCAGCTCTACGCCGGCCTCGACCGCGGCTGGCAGGGCAGCGCCACCACCGTCGACCTCGACTCGGTCGGCGGCGTCCTGGTCAGCGTCGGCGCCGAGGCGCTCGTGCTGGTGACCTACCTGCTCGCCGGGGTCGGAGTCGCCACCGGCTACCGACGGTTCGGAGCATGGCGCGGCACCCTGCTCGTCGTCCCGCTGCTCGTGCCCTGCACCCTCGTCGACGCCGCCACCCGGACCGGGGTCGCCGGCATCCCGTGGCGCGGCGGGTACGACGACGTCACCACCGGCGCGCTCCTCGGCGTCGGCGGCAGCCTGGTCGTCGCCGCGGCGACGTACCTCCTGATCATCCGGCTGCTGCGGTCCGTGCCGCTGCGCCCCTGAMTATNVIRTGGRADRAGTRAARRHFTRALILTGIWFWGFWAALVVGVPLAVDRWGGEMAGLTYDTAGNPARWVGFAVGIILTAAALRMHVAAGGTRRAFVDGATRAAAVVGVAYGVLTVVLALAEEQLYAGLDRGWQGSATTVDLDSVGGVLVSVGAEALVLVTYLLAGVGVATGYRRFGAWRGTLLVVPLLVPCTLVDAATRTGVAGIPWRGGYDDVTTGALLGVGGSLVVAAATYLLIIRLLRSVPLRPNANANANANA
AK018_06564984lnrL_3COG1131Linearmycin resistance ATP-binding protein LnrLATGACCCAGCCCGTCGTGGAGGTGACGAACCTCCGCAAGACCTACGGCCCCAAGGTGGCGGTCGACGACGTGACGTTCGCCGTCCGTCCCGGGGAGATCTTCGGGATCCTCGGCCCCAACGGGGCCGGCAAGACCACCACCGTCGAGACCCTCGCCGGCCTGCGGCGCGCCGACGGCGGGACCGTCCGCGTCCTGGGCCGCGACACCCAGCGCGACCCCGCCGCGGTGAAGGACCTCCTCGGGGTGCAGCTCCAGGAGGCCGCGCTGCACGACAAGATCACCGTCGGCGAGGCGCTGCGCCTCTTCGCGGGCTTCTACCCGAACCCCGCCGACCCCGACGAGCTCCTCGCGCTGCTGGACCTCACCGAGCACGTCGACAAGCAGTTCGGCCGCCTCTCCGGGGGGCAGAAGCAGCGGCTGTCCATCGCGCTGGCGCTCATCGGCAACCCGGAGATCGCGATCCTCGACGAGCTCACCACCGGGCTGGACCCGCAGGCGCGCCGTTCCACCTGGGACCTCGTGGAACGCGTGCGCGACACCGGTGTGACGATCCTGCTGGTCACCCACTTCATGGAGGAGGCCGAACGCCTCTGCGACCGGCTCGTCGTCATCGACGCCGGCCGGGTCGTCGCCGACGGGACCCCGAGCGGGCTGATCGCCGACCTCGACACCGACCGGACCGTCGTCGTGCGCTTCACCGACGACGCCCACGAGCCGGCGCGCGCCGTGCTCGACCGGCTAGCGGCCGAGCACCCCGACGTCACCGGCGTCGCGGAGCCGAACGGCGTGCCCGGCGAGATCGCCGTCACCGGGACGCCCCGCGTGCTGTTCGCCGTCGTGCCCGCCCTCGCCGCGGCGGACCTGGTGCCCGACGACGTCCGCACCGTCACCCGCACGCTCGAGGACGTCTTCCTCGCCGTCACCGGACGCACCTACGACCAGGACGACGAACCCGCCCACGCCGCCGAAGGAGACCGGTCATGAMTQPVVEVTNLRKTYGPKVAVDDVTFAVRPGEIFGILGPNGAGKTTTVETLAGLRRADGGTVRVLGRDTQRDPAAVKDLLGVQLQEAALHDKITVGEALRLFAGFYPNPADPDELLALLDLTEHVDKQFGRLSGGQKQRLSIALALIGNPEIAILDELTTGLDPQARRSTWDLVERVRDTGVTILLVTHFMEEAERLCDRLVVIDAGRVVADGTPSGLIADLDTDRTVVVRFTDDAHEPARAVLDRLAAEHPDVTGVAEPNGVPGEIAVTGTPRVLFAVVPALAAADLVPDDVRTVTRTLEDVFLAVTGRTYDQDDEPAHAAEGDRSPGPT0006725_2533DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_06565798hypothetical proteinATGACCGCCATCGCTCCCGCCCGCCCGAGCGCCGGCTGGCGCGGGTTCGGGCGCCTGCTCACCACCGAGGCGAAGGTGTGGCTGCGCGACTACGCCTCGCCGTTCTTCGGGATCGTCTTCCCCACGATCATCCTGCTCGGCGTCGGGTACTTCATCCCGGGGATGCGCGACCCCATCACCGACGCCCCGCCGGACTCGGTCTGGTACGGGCTCACCCCGATCGCGACGTTCCTGCCCACCGTGCTCGCCATGGCGATCGGCACGGCTGCGCTGACCGTCATGCCGGTCACGGTCGCGACCTACCGCGAGAAGGGCGTGCTGCGGCGGCTCTCCACCACGCCGATGCGACCGCAGGGCATCGTCGCCTCGCACCTGATCATCAACATCATCACGACGCTCGTGGGCATCGCCCTGGCCCTCGTGGTCGCCCAGGTCGCCTTCGGCGTCCCGGTGCCCACGCAGCTCGGCGTGGTGGTGCTGGCCGCGGCCCTCGGGCTGTGCGCCATGTTCGCGCTCGGGATGCTGGTCGCCGCCGTCGCACCGCGGGCGTCCGCCGCGAACGCCATCGCGATGTCGATCTACTTCCCGATGCTGCTGGTGGCCGGGCTGTGGACGCCGGGGCCGATCATGCCCGAGCTGCTGCGGCAGATCGGCCAGTTCACGCCGCTGGGAGCGGCGGCGCAGGCGCTCACCGAGGGTTGGTTCGAGTCGGGCTTCCCGACCCTGCAGCTGGTCGTCATGGCGGTGTACACGGTCGTGCTGGTGCCGCTCGCGGTCCGGCTGTTCCGCTGGACGTGAMTAIAPARPSAGWRGFGRLLTTEAKVWLRDYASPFFGIVFPTIILLGVGYFIPGMRDPITDAPPDSVWYGLTPIATFLPTVLAMAIGTAALTVMPVTVATYREKGVLRRLSTTPMRPQGIVASHLIINIITTLVGIALALVVAQVAFGVPVPTQLGVVVLAAALGLCAMFALGMLVAAVAPRASAANAIAMSIYFPMLLVAGLWTPGPIMPELLRQIGQFTPLGAAAQALTEGWFESGFPTLQLVVMAVYTVVLVPLAVRLFRWTPGPT0006730_14107DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
AK018_06566735hypothetical proteinATGAAGCCGTTCCTGCTGCTGGCGACGCGCGCCGAGGACGTCGCCGCCGACGGCGAGTACGCGGCGATGTGCCGGTTCGGCGGCCTCGCGCCGGAGCAGCTGCACCGGGTCCGGCTCGAGGCCGGGCCGATGCCGTCGTTCGACCTGGACACCTACTCCGGGATCGTCGTCGGCGGGGGGCCGTTCAACTCCTCGGACCCGCAGGACCGCAAGTCCGAGGTGCAGCACCGGGTCGAGCGCGAGATGGCCGAGCTGCTCGCCGAGGTCGTCGACCGCGACTTCCCGTTCCTCGGAGCCTGCTACGGCGTCGGCACGCTCGGCACGTTCGCCGGGGGAGTGGTGGACCGCTACTACGGCGAGGACGTCGGGGTCGTGACGATCGAGCTCACGCAGGAGGGGCGGGCCGACCCGCTCCTGGCGGGCGTACCGCCCGCGTTCGCGGCGTACGTCGGGCACAAGGAGGCCATGCGCGAGCTCCCGCCCGGCGCGGTGCGGCTGGCGTTCTCCCCGTGGGCGCCGGTGCAGATGTTCCGGCTGCGGCAGAATCTGTACGCCACGCAGTTCCACCCGGAGCTCGACCTGGCGGGTCTGACGCAGCGCGTCCAGGTGTACCGGGAGTACGGCTACTTCGCGCCGGACGAGGCGGACGCCGTCGTCACCCGGGCCGCCGCCCGCCCGGTGACGCAGCCGATGAAGATCCTGCACCACTTCGTGCAGCGCTACCGGCAGCCCTGAMKPFLLLATRAEDVAADGEYAAMCRFGGLAPEQLHRVRLEAGPMPSFDLDTYSGIVVGGGPFNSSDPQDRKSEVQHRVEREMAELLAEVVDRDFPFLGACYGVGTLGTFAGGVVDRYYGEDVGVVTIELTQEGRADPLLAGVPPAFAAYVGHKEAMRELPPGAVRLAFSPWAPVQMFRLRQNLYATQFHPELDLAGLTQRVQVYREYGYFAPDEADAVVTRAAARPVTQPMKILHHFVQRYRQPPGPT0021580_6485DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
AK018_06567510rppH_2RNA pyrophosphohydrolaseATGCCGATCCCCGACCACGTCGTCTCCCTCCGCGCCCGCGTCGGCACCGACCTGCTGTGGCTGCCCGGGGTCAGCGCGGTGGTGCGCGACGGCGACCACCGCCTCCTGCTGGGACGGCGCGCCGACTCGGGGCAGTGGGCGCTGCCCAGCGGGATCCTGGACCCGGGCGAGGAGCCGGCCGTCGGCATCGCGCGCGAGATCCTGGAGGAGACGGCGGTGGCCGTCGAGGTCGTCGGGATCATCGGGGTGTTCTCCACCCCGGTGGTCACCTACCCGAACGGGGACCGCACGGCGTATCTCGACACCCTGTTCCGGGCCCGTCCGGTGTCCCCGGAGGCCGCACGCGCCGCCCGGGTCGCCGACGACGAGTCGCTCGAGGTCGGGTGGTTCGCCGCCCACGAGCTGCCCGAGGACCTGGCCTCGTCCACCCGGGAACGGCTGGACCGGGAGCGCGAGTTCCTCGCCGCGGACGGCGACGCGGCGATCTTCGTCCGTCCCGAGGAGTCCTGAMPIPDHVVSLRARVGTDLLWLPGVSAVVRDGDHRLLLGRRADSGQWALPSGILDPGEEPAVGIAREILEETAVAVEVVGIIGVFSTPVVTYPNGDRTAYLDTLFRARPVSPEAARAARVADDESLEVGWFAAHELPEDLASSTRERLDREREFLAADGDAAIFVRPEESNANANANANA
AK018_065681128aroG_2COG0722Phospho-2-dehydro-3-deoxyheptonate aldolase, Phe-sensitiveATGCACCCCCTGTCCCTCCCCGACGCGCCGTCGTCCGCCCGCCAGGGTGATACTGAGCTGATGGCCGAGACCTCCGACCTGCGCGTTCGCGCCCTCGATCCGCTGCCCGCGCCGCGCGAGATGCGCACCAACCTGCCGCTGGGCACCGCCCGCAGCGACCTCGTGACGACGTCGCGCCGCGAGGTCCGCGACGTGCTGCGCGGCGAGGACGACCGGCTCGTCGTCATCGTCGGCCCCTGCTCCGTGCACGACCCGGCCGCCGCGCTGGACTACGCGCAGCGCTTGGCGCCCGTGGCCCGCGAGCTGTCCGAGGACCTCGTCGTCGTCATGCGCGTCTACTTCGAGAAGCCGCGCACCACTGTCGGGTGGAAGGGCCTGATCAACGACCCGCACCTGGACGGCTCCCACGACGTGCACCACGGCCTGCACCTGGCCCGCGAGGTGCTGCTCGGGGTGCTCGACGCCGGTGTCCCGGCCGCGTGCGAGTTCCTCGAGCCGACGTCTCCGCAGTACATCGCCGACGCCGTCACGTGGGGGGCCATCGGCGCGCGCAACGCGGAGTCGCAGGTGCACCGGCAGCTCGCCTCGGGGCTGTCCATGCCGGTCGGGTTCAAGAACGCCACGGACGGGGACGTCCAGATCGCCGTGGACGGCTGCATCACCGCCGCGAGCGAGCACACGTTCTTCGGGGCGGACGCCGAGGGGCGGGCGGCCACCGTCGCGACCGTCGGCAACCCGGACTGCCACGTCATCCTGCGCGGCGGACGGGGCGGGCCGAACTACGGGTCCTCCGACGTCGCCGCCGCGCTGGGCGTGGCCCGGACGTCCGGTCTCGGCGGGGCCGTGGAGGCGGGCGTCGTGGTGGACGCCTCGCACGGCAACTCCGGCAAGGACCACGTGCGTCAGGCCGAGGTGGTGCGGGAGATCGCGGCGCGCCTGGCCGACGGCGAGCAGGGCATCTCCGGGCTGATGATGGAGAGCTTCCTCGAGGCGGGCGCGCAGAAGCCGGCTCCGCTGGACCAGCTGGTCTACGGGCAGTCGGTCACGGACAAGTGCATGGACTGGGGCACGACGGCGGAGCTGCTGTCGGTGCTGGCAGACGCGGTCCGCACGCGGCGGGCTTCCTGAMHPLSLPDAPSSARQGDTELMAETSDLRVRALDPLPAPREMRTNLPLGTARSDLVTTSRREVRDVLRGEDDRLVVIVGPCSVHDPAAALDYAQRLAPVARELSEDLVVVMRVYFEKPRTTVGWKGLINDPHLDGSHDVHHGLHLAREVLLGVLDAGVPAACEFLEPTSPQYIADAVTWGAIGARNAESQVHRQLASGLSMPVGFKNATDGDVQIAVDGCITAASEHTFFGADAEGRAATVATVGNPDCHVILRGGRGGPNYGSSDVAAALGVARTSGLGGAVEAGVVVDASHGNSGKDHVRQAEVVREIAARLADGEQGISGLMMESFLEAGAQKPAPLDQLVYGQSVTDKCMDWGTTAELLSVLADAVRTRRASPGPT0012920_2943DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012920-3_deoxy_7_phosphoheptulonate_synthase|aroF|aroG|aroH-K01626NANA
AK018_06569993hypothetical proteinGTGCCCGCGCGATTCGGTCCCGTCCCACCGGCGCTGCTCCGGCTGGCGGAGCGGCAGTACGGCCTGCTCACCGTGGCGCAGTGCCTCGCCTCCGGGATGACGCGCGGCCAGGTCCAGGCACGCTGCCAGGCCAAGGACTGGGAGCGGCCGGTCCGCGGCGTGGTGGACACGGGGCTCCCCTCCCGACGCGATCGACTCGACCGGTTCGACCTGCGCCGACACCGCGCCGCCGTGCTCGGCCTGCTCGCCCATCCCGGATCCGTCGCGACCGGGGTCTGCGCGCTGGTGCTCCACGGCGTCCAGGGCGCCCCGGTCGAGATCGCACCGGAGGTGGCGCTGCCGACAGGTGTCCCGCGGATCGCGAAGCCACCGGTCAGGCTGCGCCGGTCACCGGTCACGGAGTGGGTCGACGTCGGAGGCTTCCGCTGCGCTAACGTCGATGTGGCGATGGCGCAGGCCGTCCTCGCGTCCTCGCGACGATCCGCGGTGTCCCTCATGGACTCGGCGCTGCACCGCGGGCTGCTCGCGCCGGACGGCCTGGAGCGCGTTCGCGGGAAGGCCGCGGGGCGTCCCGGGGTGGTTCGGACCCGGAGGTGGTGGGCGCTGGCGGACGGCCGTGCCGAGTCACCCGCCGAGACCTGGGCACGGCTGTCCTGTCTCGACGCGGGATGGCCGCCCGATGCGCTGCAGCTCCGGATCGCCGCAGCCCACGGCCCGGAGTTCGCCCGCGTCGATCTCGCCTGGCGCCTCCCCGACGGCACCGCGCTGCTGGTGGAGATCGACGGGCAGGACGTCCACGCGGCGCCCGAGGCCGTCTACCGCGATCGTGACCGCCAGAACCGGCTGGTCACGCCGCGCACGATCGTCCGCCGGTTCACCGGGTCCGACGCCTGGCGTGGCCGGGTGGCGGTCGAGGTCGGCCTGGTGCTGCGCGGGACCGGCTGGCAGCATGACCCGCTGCCGGTCGACACCGTGCTCCGGCTCGATCCTTGAMPARFGPVPPALLRLAERQYGLLTVAQCLASGMTRGQVQARCQAKDWERPVRGVVDTGLPSRRDRLDRFDLRRHRAAVLGLLAHPGSVATGVCALVLHGVQGAPVEIAPEVALPTGVPRIAKPPVRLRRSPVTEWVDVGGFRCANVDVAMAQAVLASSRRSAVSLMDSALHRGLLAPDGLERVRGKAAGRPGVVRTRRWWALADGRAESPAETWARLSCLDAGWPPDALQLRIAAAHGPEFARVDLAWRLPDGTALLVEIDGQDVHAAPEAVYRDRDRQNRLVTPRTIVRRFTGSDAWRGRVAVEVGLVLRGTGWQHDPLPVDTVLRLDPNANANANANA
AK018_06570585sigK_2COG1595ECF RNA polymerase sigma factor SigKGTGGGGCACACTGTCCGGGTGCCATCACCCGAGACGACGCCGGTCGACGACGCCCTGGTGGCGTGCGCCGACGGCTCGCCGGACGCCTTCGGGCCGGTGTACGACGCCCTGGCCCCGACGGCCTACGGCACCGCGCTGGGCGTGCTCCGCGACCCCGACCACGCCGCCGAGGTGACCCAGGAGGTGATGGTCGAGGTGTGGCAGTCCGCAGCGAAGTTCGATCCCGCCCGCGCCTCGGCGCGCACCTGGGTCGTCACCCTCACGCGTCGCCGGGCGATCGACCGGGTCCGGGCCGAGCAGTCGCGCCGTGACCGCGACCAGCGCGACGTCGACAGCACGCTCGCCGCGCGCGACCGGGACGTCGTGTCCGAGGACGTCGAGCAGCGCCTCGAGGGTGCTGCCGTGCGCCGCTGCCTCGACTCGTTGACGGGGACGCAGCGCGAAGCCGTCGTCGACGCGTACTACGGCGGGCGCACCTACCGTGAGGTGGCCGAGCGGCTCGGCGCCGCCCTGCCCACCGTGAAGACCCGGATCCGCGACGGCCTCATCCGCCTGCGGGACTGCCTGGGGGTGAACCGTGGCTGAMGHTVRVPSPETTPVDDALVACADGSPDAFGPVYDALAPTAYGTALGVLRDPDHAAEVTQEVMVEVWQSAAKFDPARASARTWVVTLTRRRAIDRVRAEQSRRDRDQRDVDSTLAARDRDVVSEDVEQRLEGAAVRRCLDSLTGTQREAVVDAYYGGRTYREVAERLGAALPTVKTRIRDGLIRLRDCLGVNRGPGPT0014960_7929DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
AK018_06571735hypothetical proteinGTGGCTGACAGCACCCGCGACGCCTGGGACCTCCTGCCCGCCTACGCGCTCGACGCCGTCGACGACCTGGAACGTCGTCAGGTCGAGCGGCTCCTCGACAACGACGCCGACGCCCGGCGCGCCCTCGACGAGTACCGCGAGGTCGTGGCGGCCTTCACCGTCGAGTCGGCGCCGCCGGCCGCGATGCGCGACGCCGTGATGGCCCGGATCGTCGCGGCGCCCGGTCCGGCGCGGCACGATGACGGCACCCCGGCGGGAGCCGACGTCGTCCCGCTGGACCGTGCCCGACGGCGGCGCTGGGGCCTCGTCGCCGCGGCGGCCGCCGCCGTGGTCGCCGTCGCGGTGCCGACCACCGTGGCGATCCAGGCCACCATCGAGCAGAACGAGCTCCAGCAGCGGGTCGACACCGTCGCCGAGATGATGGCGGACCCATCCGCCCAGCTCCTGCGCAGCGAGGTGACCGGGGGCGGCAGCGCGACCGTGCTGGTCGCCGGCGACGACTTCCTCTTCAGCGCGAACGACCTGCCCGACGTCGGCGCGGACTCGACCTACCAGCTCTGGCTGGTCGGCGCCGAGGGCGGTGTGACGTCGGCGGGCCTGCTGGACCCGCAGGAGGGGTCGGTGGAGCAGCTCGTGCAGGACGTGGACGGCGTCGGGCTGGCCGTGTCCGTGGAGCCGGAGGGCGGTTCGGAGCAGCCGACGACGGACCCGGTCGTCGTGCTCGCGGAGGGATGAMADSTRDAWDLLPAYALDAVDDLERRQVERLLDNDADARRALDEYREVVAAFTVESAPPAAMRDAVMARIVAAPGPARHDDGTPAGADVVPLDRARRRRWGLVAAAAAAVVAVAVPTTVAIQATIEQNELQQRVDTVAEMMADPSAQLLRSEVTGGGSATVLVAGDDFLFSANDLPDVGADSTYQLWLVGAEGGVTSAGLLDPQEGSVEQLVQDVDGVGLAVSVEPEGGSEQPTTDPVVVLAEGNANANANANA
AK018_06572981hypothetical proteinATGTCTGCCGGACCTGCCCCGTTCCCCTGGATTCCTGATCCGGCGTGCGGTGACTGGGTGCGCGCGGGCGTCGACCCCGAGCAGTTCGCCGTCCACGTCCCGTGGACGATCCACACCTTTGTCCCGCGGGGTTTCGAGGCGTACGCCCGGGTCCTCCATCCGCTGGAGCGTGAGACGGACGACGGCCCCGAGCCCGTGCGATGGTCCGAGGTCGCGGAGGCCTTCGGCACCACGATGACCGCGACGGCGAACCTCGACCGGCTCTGCAGGCGGCCATACTCCCCGAACGACGACGTCGTCACGCCGCAGGGGGTGACGCTCGAACCGCCGACGGAGGGCAGCGTCCCGTCCGAGCTCCTGGCGCGGATCGCCCGTCACCTGGCGACGCACACGACGACTCCGGACCGCGGGGTCGTCGGTGTCTGGGAGGGGATCGGTGGCCTCGTCTCCTCGGCGGGTCGCTCATTTCACACGGTCCGCATTCCACCGCGGTGGCTCGGCGTGCTCCTGACTCCGTGGCGGCTGGTCCTGAAGGCCCGTCGTGCTTGGCAGGATCGCGCGCTGCGGCCCCGTCGGCGTGGCCGTCGTTTCGTGGCGGGGGGCGCGCCGCCGGATCCGGACGTGCCGGCTCCCGGCACCGGCATCCTCGAGGCCGAGCCGGCGGCCGGGCCTCGTCTCGAGCTGCCGTACCGCAGCCACATCCTCTTCACCGGGGGCATCGACCTCTTCGCCGATCGAGGATGGGTCCACGCCGCCCCCTGGCTCGACGACACGGGCCGTCGCCAGCAGGATCCGCGCACCCCGGCACTCTGGTGGCCCGAGGACCGTGCCTGGTTCGTGGCGAACGACGTCGACGACGCCTGGACCCTGGTGGCCGGGTCCCGGGAAATGGTCGCCGCCCTGGTCGCGGATCCCGACCTGGAAGCGCTCGAGCTGTCAGAGGGTGCGGCGATCCAGGGTCCGGAACCGGAGGCGCGTTGAMSAGPAPFPWIPDPACGDWVRAGVDPEQFAVHVPWTIHTFVPRGFEAYARVLHPLERETDDGPEPVRWSEVAEAFGTTMTATANLDRLCRRPYSPNDDVVTPQGVTLEPPTEGSVPSELLARIARHLATHTTTPDRGVVGVWEGIGGLVSSAGRSFHTVRIPPRWLGVLLTPWRLVLKARRAWQDRALRPRRRGRRFVAGGAPPDPDVPAPGTGILEAEPAAGPRLELPYRSHILFTGGIDLFADRGWVHAAPWLDDTGRRQQDPRTPALWWPEDRAWFVANDVDDAWTLVAGSREMVAALVADPDLEALELSEGAAIQGPEPEARNANANANANA
AK018_06573717hypothetical proteinATGAACGCTCGCACTCGCACCCGCACCGCCGCCGCCGGCTTCGCCACCCTGGCCCTGCTGGCCCTCGGCGCCTGTTCCTCCGACGACACCGGCGACGACATGTCCGGCTCGGAGGAGACCATGACCGAGGAGTCGCCCATGGAGGAGGAGTCCATGGAGGACGACATGGCCGAGGAGGACATGGAGTCCGACGACATGGAGTCCGACATGGCGATGGACCCCGCCGCGAACCTCGTCGGCCCCGGCTGCGAGGACTACGCCTCGCAGGTGCCCGACGGCGCCGGCTCCATCGAGGGCATGTCCACCGAGCCCGTCGCGGTGGCCGCCTCCAACAACCCGCTGCTGACCACCCTCGTCTCCGCCGTCAGCGGAGAGCTCAACCCCGACGTGAACCTCGTCGACACCCTCAACGGCGGCGAGTTCACCGTGTTCGCCCCGGTGGACGAGGCCTTCGAGGCCGTCGACGCCGAGACCATCGACACGCTGTCCACCGACGCCGACCTGCTGACCTCGGTGCTGACCTACCACGTCGTCGAGGGCCAGGCCCTGCCCGAGGACGTCCCCGGTGAGCACACCACCGTCCAGGGCGACACCCTCGAGGTGACCGGCGAGGGCGACGAGCTCATGGTCAACGACGCCAACGTCATCTGCGGCGGCGTCATGACGCAGAACGCCACCGTTTACCTCATCGACTCGGTCCTCATGCCGTCCATGTGAMNARTRTRTAAAGFATLALLALGACSSDDTGDDMSGSEETMTEESPMEEESMEDDMAEEDMESDDMESDMAMDPAANLVGPGCEDYASQVPDGAGSIEGMSTEPVAVAASNNPLLTTLVSAVSGELNPDVNLVDTLNGGEFTVFAPVDEAFEAVDAETIDTLSTDADLLTSVLTYHVVEGQALPEDVPGEHTTVQGDTLEVTGEGDELMVNDANVICGGVMTQNATVYLIDSVLMPSMNANANANANA
AK018_06574651hypothetical proteinATGGGTGACATCCGACGATTCGACGGGCGCATCCTCGGCCTCGGTACCGAGTCCGGTACGCGGGTCGTGCTCGGGTGGTGGGACGAGTCCCCGTTCGGCCCGTTCGCCGACGTGATGGTCGAGGAGGTCACGGGGCGCCGCACGCTGGTCGCGCCGCCCGAGGTGGCCGAGTTCGTCGCCACCACCTACGGGTTCGACCGCGTGCTCGAGTCGCCGGTCCGGGCCGTGCACGACGACGCGGCACCAGCGGTTGGCGGCACGGACGACGGCGGCACCCCGGCGCCCGGCGGGTGGCTGACCGCCGCGGCCGGTCCGCTCCGGCTCCGTGCCGCCGTCGGACGCCGGACCGCGCTCGGGCACGTCCTGCGCCTGGTGCCGCGGCGGATCGCCACCGCCCCCTGGTTCGCGGTGCTCTCCGACCCGGTCGCCCGGCTGCTGCTCGACGGCGTGCGCACGCGGGGCAGCGCCGGCAACGGCCGCCGGGAGAGCTACGGGGCCACGGACGTGCACGCGATCGTCGGTGTCCGGGCCACGTGGGACGGCGTCGACCTGGGGGCGCTCGCGGACGTCGACCCACCGGTGCGGTTCGGGTTCGGGTCGACCCCGCGGCGCCCGTCGTTGACGCGGGTGACGACGACGGTGCGGGGCTGAMGDIRRFDGRILGLGTESGTRVVLGWWDESPFGPFADVMVEEVTGRRTLVAPPEVAEFVATTYGFDRVLESPVRAVHDDAAPAVGGTDDGGTPAPGGWLTAAAGPLRLRAAVGRRTALGHVLRLVPRRIATAPWFAVLSDPVARLLLDGVRTRGSAGNGRRESYGATDVHAIVGVRATWDGVDLGALADVDPPVRFGFGSTPRRPSLTRVTTTVRGNANANANANA
AK018_065751980dipZCOG0785Protein DipZATGGAGACGCTCATCCTCATCGGTCTGCTCGGTGGCCTGGTCACCGGGATCTCGCCGTGCATCCTGCCGATGCTGCCGGTCATCTTCTTCGCCGGTGGCGTCGAGGGAGCCCGGCAGCGGACCACGTCCGACGGCGGTGCGGACGACGCCGTCGACGCGGACGACGCGGACGACGCGGACGGTTCCGGCGCCGACGGCGGACCGGACCCCGCCCTGTTCGCCGGCGCGCCCACGGCGGTCCGCGTCGACCGCGCGGGCCGCGTCTCCAGCGGCCCGCCGCGGGGCCGGTCCGGGGCGGTGACCCTGGAGCTCTCGGGCGACGACGCGCCGTCGGCGGGCGCCGGGACGAGCTCAGCGACCCGCCGCCGTCGGACGCCCCGCTCCTGGCGGCCGTACCTGGTGATCGCCGGGCTCGTGGTGAGCTTCAGCGTCTTCACGCTGCTCGGGTCGTTGATCCTCACGGCGCTCGGGCTGCCGCAGGACCTGCTGCGCTGGCTCGGCATCACCCTGCTGGTGGCCATCGGCATCGGCATGATCGTGCCGCGGTTCGAGGAGATCCTCGAGCGTCCGTTCCAGCGCATCGCCGCCCTCGGGTCCCGACGGTCACCGAACCAGGACCGGGGTGCGTTCCTGCTGGGTCTCGGGCTCGGCGTGCTGTACGTGCCGTGCGCCGGGCCGGTGCTGGCGGCGATCACCGTGGCGGGTGCCACCGGGCAGATCGGCCCCGGGACCGTCGCGCTGACGGTGAGCTTCGCCGTCGGCGCCGCGATCCCGCTCCTCGTGTTCGCCCTGGCCGGGCGGCGCGTGGCCGAGCGGGTGCGGGGGTTCCAGCGGCACCAGCGGGGGATCCGCATCGGCGGCGGTCTCGTCATGATCGCGCTCGCGGGTGCTCTCGCGCTGAACCTGCCGGCGCAGTTGCAGCGGGCGCTGCCGGACTACACCGGGGCGTTGCAGCAGCAGATCGACGGCAACGAGGACGTGCAGGACGCGCTGGAGCTCGGCGGCATCGTCACGGACGCCAACCGTGAGCTGGACAACTGCACCAGCGGCGACACGGAGCTGGCGGACTGCGGGACGGCGCCGCCGCTGACCGGCATCACGCAGTGGCTCAACACCCCCGACAACACCGCCGTCGACCTCGAGGAGCTGCGCGGGAAGGTGGTGCTGATCGACTTCTGGACGTACTCGTGCATCAACTGCCAGCGCGCGCTGCCGCACGTCAACTCCTGGTACGACAGCTACGAGGACGCCGGGCTCGAGGTGATCGGCGTGCACACCCCGGAGTTCGCGTTCGAGCGGGAGACCCGCAACGTGATCGCCGGCGCCGAGGACCTCGGCGTCGACCACCCGATCGCGCAGGACAACTCCTACTCGACGTGGACGGGCTACCGGAACCGTTACTGGCCGGCCGAGTACCTCATCGACGCCGACGGCACCGTCCGGTACCTGAAGTTCGGCGAGGGCGACTACGCCACCACCGAGCAGCACATCCGCGACCTGCTCCGGGAGGCCGATCCCGACGTCGAGCTCCCGGAGCCCACCGACACCGAGGACACGACGCCGGACGCCGACACCACGCCGGAGACCTACCTGGCGCTGAACAAGGTCTTCAACTACGCCGGGCCCACCGACTACGGCAGCGGGGAACGTCGCTTCGAGGCGCCCGACGAGCAGCCGGAGGACACGTTCTCGCTCGCCGGGACGTGGGAGGTCGACTTCCAGGGGGCGACGGCGGTGTCCGACGACGCGACGCTGCGGCTGGGATACCGGTCCACCGACGTGTACTCGGTGCTGGGTGGCGAGGGGACCGTGACCGCCCGCGTCCTGGCCGAGGACGGCTCCGTGCGGGCCGAGCGGGAGATCGACGTCGCCGGCAACCCGACGCTGTACGACGTGCTGCGCGGTGACGAGCACACCGAGGGCGTCGTGGAGCTGGAGGTGCCCGAGGGCGTGTCCGTGTACACCTTCACCTTCGGCTGAMETLILIGLLGGLVTGISPCILPMLPVIFFAGGVEGARQRTTSDGGADDAVDADDADDADGSGADGGPDPALFAGAPTAVRVDRAGRVSSGPPRGRSGAVTLELSGDDAPSAGAGTSSATRRRRTPRSWRPYLVIAGLVVSFSVFTLLGSLILTALGLPQDLLRWLGITLLVAIGIGMIVPRFEEILERPFQRIAALGSRRSPNQDRGAFLLGLGLGVLYVPCAGPVLAAITVAGATGQIGPGTVALTVSFAVGAAIPLLVFALAGRRVAERVRGFQRHQRGIRIGGGLVMIALAGALALNLPAQLQRALPDYTGALQQQIDGNEDVQDALELGGIVTDANRELDNCTSGDTELADCGTAPPLTGITQWLNTPDNTAVDLEELRGKVVLIDFWTYSCINCQRALPHVNSWYDSYEDAGLEVIGVHTPEFAFERETRNVIAGAEDLGVDHPIAQDNSYSTWTGYRNRYWPAEYLIDADGTVRYLKFGEGDYATTEQHIRDLLREADPDVELPEPTDTEDTTPDADTTPETYLALNKVFNYAGPTDYGSGERRFEAPDEQPEDTFSLAGTWEVDFQGATAVSDDATLRLGYRSTDVYSVLGGEGTVTARVLAEDGSVRAEREIDVAGNPTLYDVLRGDEHTEGVVELEVPEGVSVYTFTFGNANANANANA
AK018_065761569malF_2COG1175Maltose/maltodextrin transport system permease protein MalFATGACCGTCCTGCAAGAACCCCGCACCGAGTCCCACGCCCGCCGCTACGGGGCTGGCTTCCTCGTCAAGCTCGCCCTCATGGCCGTCGTCGACGCGTTCGGCGTCTACGTCCTCTGGGCCGCGTGGGTGGCCGAGTCCTGGATCATCCTCGGCGCGATGCTCGCCATGCTGGTGGTCGTCAACTGGGTGTACTTCTCCCGGCGCGCCGTCCCCCTGAAGTACGTGGTGCCCGGACTGGTCTTCCTGTTCACGTTCCAGATCTTCACGATCGGGTACACCGGCTGGGTCGCGTTCACGAACTACGGAGACGGCCACAACTCCACCAAGGAGGACGCGGTCACCGCCCTGCTCGCCCAGAATGAGCGCCGAGTGGAGGGCTCGCCCGCCTTGCCCCTGACCGTCGTGAGCGACGGCGACGAGCTGGGCTTCGTCGTCGTGCAGCCCGACGGGACGACGGCGGCCGGCGACGCCGAGCAGCCGCTGGAGCCCGTCGAGGCCACCGTCGCCGACGGGACGGTCACCGCCGTCGACGGGTGGGAGGTGCTGGACCGTCAGCAGATCATCGCCCGCCAGGGCGAGGTGACCGACCTGCGGGTGCCGGTCTCCGACGACCCCAACGACGGGTCGGTGCGCACGCAGGACGCCCGCACCGGGTACGTCTACCTGCCCACGCTCGTCTACGACGACGGCGCCGACACCATGACCGACACCGTCACCGGCACGGTCTACACCCCGAACGACGACGGGCAGTTCGAGGCCGCGGACGGCAGCACGCTGGACGTCGGATGGCGCGTGTTCGTCGGCCTCGACAACTTCACCACCGCGTTCTCCGACTCGCGCTACGCCGGCCCCTTCTTCCAGATCGTAGCGTGGACGTTCGTGTTCGCGTTCGCCTCGGTGGCCACCACGTTCCTGCTCGGCATGTTCCTCGCGACGGTGTTCAACTCCCCGATGCGCGGGCGCAAGATCTACCGGACGCTGCTGATCCTGCCGTACGCGATCCCCGGCTTCGTGGCGCCGCTGCTGTGGTCGGGCCTGCTCAACCGCAGCTTCGGGTTCGTCAACCAGGTGCTGCTCGGCGGCGCGGCCGTGCCGTGGCTCACCGACCCGTGGCTGGCGAAGCTGTCGATCATCGGCGTGAACCTGTGGCTCGGCTTCCCGTACATGTTCCTCATCTGCACCGGCGCGCTGCAGTCGCTGCCGAGCGACGTGCTGGAGGCCGCCAAGATCGACGGGGCGGGCCGCCTGCGCACCTGGAGCTCGGTGACGATGCCGCTGCTGCTGGTCTCGACGACGCCGCTGCTCATCTCGAGCTTCGCGTTCAACTTCAACAACTTCGCCCTGGTGTACATGCTCACCGGCGGTGGTCCACGGTTCGAGGACGCGTCCGTGCCGCTGGGCCACACGGACATCCTCATCACGATGGTCTACTCGGTGGCCGGGCTCGACGGCACCGCGCCGAAGAACTTCGGTCTCGCCAGCGCGCTGTCCATCGTCATCTTCGTCATCATCGCGACGATCTCGGCCATCGCGTTCAAGCGGACCCGCTCGCTCGAGGAGATCAACTGAMTVLQEPRTESHARRYGAGFLVKLALMAVVDAFGVYVLWAAWVAESWIILGAMLAMLVVVNWVYFSRRAVPLKYVVPGLVFLFTFQIFTIGYTGWVAFTNYGDGHNSTKEDAVTALLAQNERRVEGSPALPLTVVSDGDELGFVVVQPDGTTAAGDAEQPLEPVEATVADGTVTAVDGWEVLDRQQIIARQGEVTDLRVPVSDDPNDGSVRTQDARTGYVYLPTLVYDDGADTMTDTVTGTVYTPNDDGQFEAADGSTLDVGWRVFVGLDNFTTAFSDSRYAGPFFQIVAWTFVFAFASVATTFLLGMFLATVFNSPMRGRKIYRTLLILPYAIPGFVAPLLWSGLLNRSFGFVNQVLLGGAAVPWLTDPWLAKLSIIGVNLWLGFPYMFLICTGALQSLPSDVLEAAKIDGAGRLRTWSSVTMPLLLVSTTPLLISSFAFNFNNFALVYMLTGGGPRFEDASVPLGHTDILITMVYSVAGLDGTAPKNFGLASALSIVIFVIIATISAIAFKRTRSLEEINPGPT0016320_90DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016320-ganP-K15771NANA
AK018_06577909malG_2COG3833Maltose/maltodextrin transport system permease protein MalGATGACCACGACCTCGATCGCTCCCGCCCCGCCCGCCGCGCCGACGTCGCCGCCGCGGCGCCGGTCCACCGGCCGCTGGTTCGCCGAGAACGGCTGGCGTCACCTCGTCGGCGTCGTGTTCGTCGTGTACGCCGTGTTCCCGATCGTGTACATCCTCTCGGCTTCTCTGTCCGAGGGCGGCACCCTGACCGGGTCCAACCAGCTCTTCGACACGATCAGCACGGCCAACTACGCCGGCCTGGCCGACACCGCGTTCTGGTCGTGGGTGGTCAACTCCGTGCAGGTCGCCGTGGCCACCGCCGTGGGCACGGTGCTCATGGGTGCCGCGGCGGCCTACGCGTTCAGCCGCTTCCGCTTCACCGGGCGGCGCGCCGGCCTGACCACGCTGCTGATCATCCAGATGTTCCCGCAGATGCTGGCGTTCGTGGCGATCTTCCTGCTGCTCATCAGCCTCGGCGAGGTGGTCCCCGCGCTCGGGCTGAACTCCAAGGTGGCGCTGATCTGCGTCTACCTCGGTGGCGCGCTCGGGGTGAACACGTTCCTGATGTACGGGTTCTTCAACACGATCCCGCGCGAGCTCGACGAGGCGGCGAAGATCGACGGCGCCACGCACGCCCAGACGTACTGGACGATCATCCTGCGCCTGGTGACCCCGATCCTCGCGGTGGTGGCGCTGCTGTCGATCATCGCGACCTTCGGCGAGTTCGTCATCGCCCGGGTGCTGCTGCAGTCAGAGTCCAACTGGACGCTGGCCGTGGGCCTGTACTCGTGGGTCTCCAGCCTGCTCGAGGCCAACTGGGGGCTGTTCGCCGCCGGCGCGGTGATCTCGACCGTGCCGATCCTGGCGCTGTTCCTGTTCCTGCAGAAGTACATCGTCGGCGGGCTGACCGCCGGCTCGGTGAAGGGCTGAMTTTSIAPAPPAAPTSPPRRRSTGRWFAENGWRHLVGVVFVVYAVFPIVYILSASLSEGGTLTGSNQLFDTISTANYAGLADTAFWSWVVNSVQVAVATAVGTVLMGAAAAYAFSRFRFTGRRAGLTTLLIIQMFPQMLAFVAIFLLLISLGEVVPALGLNSKVALICVYLGGALGVNTFLMYGFFNTIPRELDEAAKIDGATHAQTYWTIILRLVTPILAVVALLSIIATFGEFVIARVLLQSESNWTLAVGLYSWVSSLLEANWGLFAAGAVISTVPILALFLFLQKYIVGGLTAGSVKGPGPT0016325_336DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOGALACTAN|GALACTOSE_OLIGOMER|MALTOOLIGOSACCHARIDE_TRANSPORT,PGPT0016325-ganQ-K15772NANA
AK018_06578552hypothetical proteinATGACCGAGACGCGCAGCTACACCCCGGACCTGGGGCGGCTCACGGACGCCGCCGACGACTCGTTCTCCGTGCGCCGCGCGTACGGCGAACCCTACGAGCACGAGGGCCAGCTCATCGTCCCCGTCGCCAAGGTGTGGGGCGGCATGAGCACCGGCTCCGTGGGCGGGACCGGCAACACGGCCGGGAGCGGGTCCGGCCAGGGCACGGGCAGCGGCAAGGGCACGGGCCACCTGGCCGGCTGGTCGCGCTCGTTCCACGTCGGCACACCCGCCGAGGAGTCCGACGACGGCAACGGCTCCGACGCCGGGGACGCCTCCGGTGACGCCTCCGGCGAGGCCCACGGCGAGCTCCGCGGCGAGGGGTCCGGCGAGGGCGGCGGCGGAGGCGGCGGCTACGGTCTGCAGGTCAAGCCCCTGGGCGTGTTCGTCGTCGACGCCGGCGGCACGCGCTGGCAGCCCGTGCTCGACCTGAACAAGGTGATCCTCGGCGGCCAGATCGTCGGGGTCGCGATCGCGCTCGCCACCGGGTGGGCGATCGGTCGCCGTCGCTGAMTETRSYTPDLGRLTDAADDSFSVRRAYGEPYEHEGQLIVPVAKVWGGMSTGSVGGTGNTAGSGSGQGTGSGKGTGHLAGWSRSFHVGTPAEESDDGNGSDAGDASGDASGEAHGELRGEGSGEGGGGGGGYGLQVKPLGVFVVDAGGTRWQPVLDLNKVILGGQIVGVAIALATGWAIGRRRPGPT0024995_6DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE_OTHER_SPORULATION_RELATED_PROTEINS,PGPT0024995-ytfJ-NANANA
AK018_065791881malZ_2COG0366Maltodextrin glucosidaseATGACCGACCACCTGCTCGACCAGCCGCACCACGACGGTTCCGCCCTCCACGTCCCGGCGGGGACGCCCGCGCTCGGCGACGTCGTTCCCGTGACCGTGCGCGTGCCCCGGGAATCCGGCGCCGACCGGGTGTGGGTGCGGTCGGTGCGCGACGGCGAACCGCGGCTCGTGGCGGCGCGCGACGACGGCGGCACCGCGGCTGAACGGTTCCTCACCGCCGACGTGGTGGTCCACAACCCGGTGACGCCGTACCGGTTCCTGCTCGACGGTCCGGGCGGGTACCGGTGGCTGGACGGCCGCGGCGTGCACGACCGCGAGGTGCCCGACGCCGGCAGCTTCCGCCTGACGACGCACGCCCCGGCGCCGTCGTGGCTGGGCGACGGACTCGTCTACCAGATCTTCCCCGACCGGTTCGCGCGGTCCGCCGCGGCCGCCGACCGTCCGGTACCCGACTGGGCCGTGCCGGCCGCCTGGGACGACGAGCCCGCCGGGGACGGGCCGCTCGCCGGGACCCAGTTCTACGGCGGGGACCTCGACGGCGTCGTCGAGCACCTGGACCACCTCGTGACGCTCGGGGTCGGCACCGTCTACCTCACCCCGGTGTTCCCGGGGCGGTCCAACCACCGCTACGACGCCTCCACCTTCGCCGCCGTGGACCCGCTGCTCGGCGGCGACGAGGCGTACGCGCGCTTCACGGCCGCCGCGCACGCCCGGGGCCTGCGGGTCATGGGCGACATCACCACCAACCACACCGGCGAGGACCACGAGTGGTTCCGCCGGGCGCTGGCGGACCCGACCTCGCCGGAGCACGGCATGTACGTGTGGGCGGAGCCGGCCCCCGGCAACCCGGACGTCGCGACGGCACCGGACGGCCAGGGGTACGCCTCCTGGCTGGGCTTCGGCTCGCTGCCCAAGCTCGACTGGACCGCACCCGAGACCTGGCACCGCATGGTCACCGGCCCGGACGCGCCCATCGGACGCTACCTGCGCGAACCCTTCGGCCTGGACGGCTGGCGGGTCGACGTCGCCAACATGACAGGCCGCTGGGAGGACACCGACCGGACGCACGCCGTCGCGCGCGAGCTACGTGCCGCCGTCGGACGCGAACACCCCGACGGCGCGCTGATCGCCGAGCACTTCCACGACGCCACCGCCGACCTGCTCGCCGGCGGCTGGCACGCCAACATGAACTACACCGGCTTCACCCGCCCGGCCTGGTCATGGCTGGCCGAGCACGGCTCGCCGGTGGCCGCGCACGGGCTGCCCGTGGCGGGCGCCCGGCGTCCCGGCGGCGCGATGGTCGCCGCGATGCGCGACTTCGACGCCGCCGTGCCCTGGTCGGTGACCGCCGCGCAGTGGAACATGCTCGGCTCCCACGACACGCCGCGCCTGCGCACCGTCGTCGGCTCCGACGCCCTGGCCGAGGTCGCGACCACCCTGCTGTTCACCTACCCGGGCAACCCCGTCGTGTTCGCGGGCGACGAGGTCGGCGCCACCGGCGACAACGGCGAGCACGCCCGCACCACCATGGCGTGGGACCAGGGCGCTCGCGGCGGCGGTCCGCGCTGGGACGCCTCCACGTTGGAGCGGTACCGCCGCCTCTCGGCGCTGCGGCGCGGTTCGGCGGCGTTGCGCGACGGCGGGATGCGCTGGGCCGTGGTGGACGACGACGCCGTGGTGTTCCTGCGTGAGTCGCCCGCCGAGCGGGTGCTCGTGGTCCTCGCCCGGGCACCCTGGTCCGGTGCGGTGCTGCCCGGTCGGCTGCTCGGTAGCGACGCGGAGCCGGAGCGGCTGTACGGCGAGGCGGGGCTCGACGTCGGCCCGGAGGGGATCGAGGTGTCGGGCGACGGGCCCGCGGTCGGGGTCTTCCGCCTCGCATGAMTDHLLDQPHHDGSALHVPAGTPALGDVVPVTVRVPRESGADRVWVRSVRDGEPRLVAARDDGGTAAERFLTADVVVHNPVTPYRFLLDGPGGYRWLDGRGVHDREVPDAGSFRLTTHAPAPSWLGDGLVYQIFPDRFARSAAAADRPVPDWAVPAAWDDEPAGDGPLAGTQFYGGDLDGVVEHLDHLVTLGVGTVYLTPVFPGRSNHRYDASTFAAVDPLLGGDEAYARFTAAAHARGLRVMGDITTNHTGEDHEWFRRALADPTSPEHGMYVWAEPAPGNPDVATAPDGQGYASWLGFGSLPKLDWTAPETWHRMVTGPDAPIGRYLREPFGLDGWRVDVANMTGRWEDTDRTHAVARELRAAVGREHPDGALIAEHFHDATADLLAGGWHANMNYTGFTRPAWSWLAEHGSPVAAHGLPVAGARRPGGAMVAAMRDFDAAVPWSVTAAQWNMLGSHDTPRLRTVVGSDALAEVATTLLFTYPGNPVVFAGDEVGATGDNGEHARTTMAWDQGARGGGPRWDASTLERYRRLSALRRGSAALRDGGMRWAVVDDDAVVFLRESPAERVLVVLARAPWSGAVLPGRLLGSDAEPERLYGEAGLDVGPEGIEVSGDGPAVGVFRLAPGPT0018560_2358DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
AK018_06580513hypothetical proteinATGCACGGCATCGCGGTGCTGCAGGACCTGTACGGCCGGATCTCGCCCACGGTCCACCGCGCGGTGGACGGGCTGCCCGCCTCGGCCCTGACAGAGCGGCTCGACCCGGCCGCGAACACGATCGCCTGGCTCACGTGGCACATCGGCCGCGACCAGGACGTCCAGGTCGCCGCCGCCGTCGGCCGCGACCAGGTGTACTCGCGCGGCTGGGCCGAACGGTTCGACCTGCCCTTCGGCCTGCAGGACACGGGCTACGGGCACACGCCCGACGACGTGGCGACGGTCCGCGCACCGGCCGAGCTGCTGCTCGGCTACGTGGACGAGGTCGCCGCCGAGTCGCTCGACGTGCTCGCCGGACTCACCGACGCCGACCTCGACGAGGTGGTCGACGACGCCTGGGACCCACCCGTCACCCGCGGCGCCCGGCTCGTCAGCGTCGCGAACGACTCGCTGGAGCACGCCGCCCAGATCGCCTACCTGCGCGGCGTGCTGGAGCGCACCGGTCGGGCGTAGMHGIAVLQDLYGRISPTVHRAVDGLPASALTERLDPAANTIAWLTWHIGRDQDVQVAAAVGRDQVYSRGWAERFDLPFGLQDTGYGHTPDDVATVRAPAELLLGYVDEVAAESLDVLAGLTDADLDEVVDDAWDPPVTRGARLVSVANDSLEHAAQIAYLRGVLERTGRANANANANANA
AK018_06581744hypothetical proteinGTGGCCACCGAGCAGATCGCCGTCATCTCCGACGTCCACGGCAACCTCACCGCCCTCGAGGCGGTGCTGGCAGACATCGGCTCCCGCGACATCACCCGCATCGTCAACCTCGGCGACGACGTCGGCAAGGGCCCCCGCGGCAGCGCCGTCGTCGACCGCACCGAACAGGTCTGCGAGGTCAACGTCCGCGGCAACTGGGACGACTTCCTGCCCGCGATCGCCGACGACGGCGCCCCCGAGATGCTGTGGTGGCGCGACGAGCTGCGCCCCGACCAGCGCGAGACGATCCGCCGTCGCCCCCTGTGCCACGACCTGCTCGTGTCGGGCCGGCGCATCCGGCTGTTCCACGCCTCCGCCACGAGCGTGCACACCCGGGTGCACTTCCACCACACGCCCGAGGAGTTCGCGGGCATGTTCGCCGCCACCGAGCTGACCGGACCCGGACCGGAGCCGCACCTGGTCGGCTACGGCGACGTCCACGACGCCTACGTCGAGACGCACCGCGGCCGCACGCTCTTCAACGTCGGCAGCGTCGGCAACCCGCTCGACGAACCCACGCCCGGCTACGCGATCCTGTCCGGCACGGCCGGCGTGACGCCCGCGCCGTTCGGGCTGCAGCTCGTGCGGGTGCCCTACGACGTCGACGCCGAGCTCGCCGTCGCCCGCGCCCTGGACATGCCGCAGTACGAGCCGTGGGAACGCGAGCTGCGCACCGGCGTCTACCGCGCGCTGCAGGATGCCTGAMATEQIAVISDVHGNLTALEAVLADIGSRDITRIVNLGDDVGKGPRGSAVVDRTEQVCEVNVRGNWDDFLPAIADDGAPEMLWWRDELRPDQRETIRRRPLCHDLLVSGRRIRLFHASATSVHTRVHFHHTPEEFAGMFAATELTGPGPEPHLVGYGDVHDAYVETHRGRTLFNVGSVGNPLDEPTPGYAILSGTAGVTPAPFGLQLVRVPYDVDAELAVARALDMPQYEPWERELRTGVYRALQDAPGPT0030420_552DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_RELATED_PROTEINS,PGPT0030420-ppa|prpA-K01090NANA
AK018_065821335dgt_2COG0232Deoxyguanosinetriphosphate triphosphohydrolase-like proteinGTGCACACGTTCTCGCAGGACGCGTTCGACCCCTCGGTGGTCGGGACGGGCCCGCGGCCTGCCCCCGGCGAGGAGGGCACGACGTCGTACACCGACGCCGACACCGAACGCTGGGCCGCCGAACCCCCCAAGTCCAAGCACCGCACCCCGTTCGAGCGGGACCGTGCCCGCGTCGTGCACTCCTCGGGGCTGCGCCGCCTCGGCGCCAAGACGCAGGTGCTCACCCCCGGCAGCGACGACTTCGTGCGCACCCGCCTCACGCACTCCCTCGAGGTGGCCCAGGTGGGTCGCGAGATGGGACGTGCGCTCGGCTGCGACCCCGACCTGGTCGACACCGCCTGCCTCACCCACGACCTCGGCCACCCGCCGTTCGGGCACAACGGCGAACGGGCGCTCGCGGACCTGGCGGCGGACATCGGCGGGTTCGAGGGCAACGCCCAGACGCTGCGGCTGCTGACCCGGCTCGAGCCCAAGATCGTGGCGGACGACGGCGCCTCGCGCGGCCTGAACCTCACGCGCGCTTCCCTGGACGCCAGCGTGAAGTACCCGTGGCGGCTGGGGGAGGGGCCCGAGCGTCCCGACGGCGGCACCACGCACAAGTTCGGCGTCTACCCGGACGACGCCGAGGTGTTCGCCTGGCTGCGTCAGGGAGCGCCGCGCGGGGGAGTGCGGTGCATGGAGGCGCAGGTCATGGACCTGGCCGACGACATCAGCTACTCGGTGCACGACGTCGAGGACGCCGTCGTCGGGGGACGCCTCGACCTGCGGGTGCTCGACGACGAGTCCGAACGTGCGCGCATCACCGAGTACGTGCGCGCCTGGTACGGGGACTGGAACGATGCCGACGCCCTCGACGCCGCGCTGTGCCGGCTGCGGGACACGGGCTACCTGGTGACCGACTTCGACGGGTCTCGGGCCTCGCTGGCCGCGCTGAAGGACGCGACCAGCCAGCTCATCGGCCGGTTCAGCGGGGCGGCGCAGCGGGCCACGCGTGAGGTCTACGGCGAGGGCCCGCTGACCCGGTACACGGCGCGGCTCGTGGTGCCGCCGGAGACGGCCGACGAGATCCTCGCGCTCAAGGGCGTGGCCGTCACCTACGTCATGGCTCCGCGGGAGTCCGAGCCGTTGTACGGCGCGCAGCGCGAGATCGTCACCGAGCTGGTCGAGGTGCTGTGCGACCGGGCGCCCGTGGCGCTGGAGGCGCAGTTTGCGGCCGACTGGCACGCGGCGCCCGACGACGGGGCCCGGTTGCGCGTCGTCGTCGACCAGGTGGCCTCGTTGACGGACGTCTCGGCGATGCAGCTGCACGCCCGCCTGGTGCGCGGCGACGCCTGAMHTFSQDAFDPSVVGTGPRPAPGEEGTTSYTDADTERWAAEPPKSKHRTPFERDRARVVHSSGLRRLGAKTQVLTPGSDDFVRTRLTHSLEVAQVGREMGRALGCDPDLVDTACLTHDLGHPPFGHNGERALADLAADIGGFEGNAQTLRLLTRLEPKIVADDGASRGLNLTRASLDASVKYPWRLGEGPERPDGGTTHKFGVYPDDAEVFAWLRQGAPRGGVRCMEAQVMDLADDISYSVHDVEDAVVGGRLDLRVLDDESERARITEYVRAWYGDWNDADALDAALCRLRDTGYLVTDFDGSRASLAALKDATSQLIGRFSGAAQRATREVYGEGPLTRYTARLVVPPETADEILALKGVAVTYVMAPRESEPLYGAQREIVTELVEVLCDRAPVALEAQFAADWHAAPDDGARLRVVVDQVASLTDVSAMQLHARLVRGDAPGPT0021495_1378DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021495-dgt-K01129NANA
AK018_065831956dnaG_3COG0358DNA primaseGTGGCAGGCCTGATCAAGCGCGAGGACGTGGACGCGGTCCGCGAACGCGCGCGGATCGAGGAGATCGTCGGCGCGCACGTCACCCTCAAGACCGCCGGTGTCGGGTCGCTCAAGGGCCTGTGCCCCTTCCACGACGAGCGCACTCCCTCGTTCCACGTCCGGCCCGGCGTCGGACGCTGGCACTGCTTCGGCTGCGGCGAGGGCGGGGACGTCATCTCGTTCGTGCAGAAGATCGACGGGATGGGGTTCACGGACGCCGTCGAGTACCTCGCCGACCGGGCCGGCGTGCAGCTGCGCTACGAGGACTCGCGCACCGGTGCGGCCGCCCAGCGTGGCCCGCGCGAGGAGCCCGGCCGCCGCCAGCGCCTCCTCAAGGCGCACCGCGTGGCCGCCCAGTTCTACGCCGAGCAGCTCTTCGCGCCCGGCGCGCAGGCCGCCCGGGCGTTCCTCGCCGAGCGCAGCTTCGAGCGGGCCGACGCCGAGACGTTCGGCCTCGGGTACGCCCCGACCGGGTGGGACGCGCTGATGCGGCACCTGCAGGGCCGCGGGTTCACCCAGCCCGAGCTCGTCGCCTCGGGGCTGGTCAGCCAGGGCCAGCGCGGCATCTACGACCGGTTCCGCGGCCGGCTCGTCTGGCCGATCCGGGACGTGACCGGCGCCGTCATCGGGTTCGGGGCGCGCAAGCTCTTCGACGACGACCCCGGCCCCAAGTACCTCAACACGCCGGAGACCAGCCTCTACAAGAAGGCGCAGGTCCTCTACGGGATCGACCTGGCCAAGCGCGCGATCGCGCAGAACAAGCGGGTCGTCATCGTCGAGGGGTACACCGACGTCATGGCGGCGCACCTGTCCGGCGTTGACGTCGCGGTCGCCACCTGCGGCACCGCGTTCGGCGCCGAGCACGCCAAGGTGCTGCGCCGGCTGCTGGGGGACACCAACCCGGGAGGCGGGCTGCAGCTCGCCTCGGGTGCCTCGCTGGGCGGCGAGATCATCTTCACGTTCGACGGCGACGCCGCCGGGCAGCAGGCCGCCATGCGCGCCTTCGGGGAGGACCAGCGCTTCCACGCCCAGACCTTCGTGGCGGTCGAGCGCAGCGGCATGGACCCGTGCGACCTGCGCATGGCGCGCGGTCCCCAGGCGGTCAAGGCCCTCGTCGACGGCCGGGTGCCGCTCTTCGAGTTCGTCATCCGCACCACGCTGGAGACCTACGACCTGGACACCGTCGAGGGACGCGTCAACGCGTTGCGCTCCGCCGCGCCCCTGGTCGCCGGCATCCGCGACCGTTCCATGCAGCTCGGCTACTCCCGGTCCCTGGCCCGCTGGATCGGCCTGGACCCGGAGGAGGTGCGCCGCGAGGTCGGGCGCGCCGGCAACCGACCGGCACCGGGACGACGGCGGGACGAGCGCGCCGCACCGTCCGCGCGCGACGACGGACCGCCGTCGGGCGACGAACCCGCGGCCGGGCCGGTGCTCACCGCGCCGGACCCCTCGGACCCGGTGGCGCGGATCGAACGGCTCGGTCTGGTCGTGGTGCTGCAGTACCCGCAGCACGTGCCCGACACGTTCGACTCGCTCGACGAGGACGCGTTCGCCACGCCTGCGTGGCGCGCCGTCCATGCCGCGATCCGCGCGGCCGGGGGGGTGTCCACCGGCCGCGGGCTCGGGGCCGGCCGCTGGGTCGAGGCGGTCGTCACCGAGGCCGGCGACGCCGTCGCCCCGCTCGTCACCCAGCTGTCGGTGGCCCCGGTACCCGAGGACCGCGAGAACGTCATCGCCGCCTACGTGGCCGACGTCGTGCGCAAGGTCGCCGACCTGGGGCTCACCCGCCGCATCGCGGACGCCAAGAGTCGCGTGCAACGGCTCGACCCGGCGTCGGACCCGGACGGATACCAGGCCGCGTTCGAACGGCTGCTCTCGATCGAGGCGGAACGGCGCCGGCTGCGCGAGAGCGCCTGAMAGLIKREDVDAVRERARIEEIVGAHVTLKTAGVGSLKGLCPFHDERTPSFHVRPGVGRWHCFGCGEGGDVISFVQKIDGMGFTDAVEYLADRAGVQLRYEDSRTGAAAQRGPREEPGRRQRLLKAHRVAAQFYAEQLFAPGAQAARAFLAERSFERADAETFGLGYAPTGWDALMRHLQGRGFTQPELVASGLVSQGQRGIYDRFRGRLVWPIRDVTGAVIGFGARKLFDDDPGPKYLNTPETSLYKKAQVLYGIDLAKRAIAQNKRVVIVEGYTDVMAAHLSGVDVAVATCGTAFGAEHAKVLRRLLGDTNPGGGLQLASGASLGGEIIFTFDGDAAGQQAAMRAFGEDQRFHAQTFVAVERSGMDPCDLRMARGPQAVKALVDGRVPLFEFVIRTTLETYDLDTVEGRVNALRSAAPLVAGIRDRSMQLGYSRSLARWIGLDPEEVRREVGRAGNRPAPGRRRDERAAPSARDDGPPSGDEPAAGPVLTAPDPSDPVARIERLGLVVVLQYPQHVPDTFDSLDEDAFATPAWRAVHAAIRAAGGVSTGRGLGAGRWVEAVVTEAGDAVAPLVTQLSVAPVPEDRENVIAAYVADVVRKVADLGLTRRIADAKSRVQRLDPASDPDGYQAAFERLLSIEAERRRLRESANANANANANA
AK018_06584576dps_4COG0783DNA protection during starvation proteinATGGCTGACAGCAAGAACGTGCCCTCCTACACGGTCCCGTCCCTGAGCAACGAGGACGGAGCCAAGGTCGCCGCGATCCTGCAGGAGCGACTCAACGCGCTCACCGACCTGCACCTGACGCTCAAGCACGTGCACTGGAACGTGGTGGGCCCGCACTTCATCGCGGTCCACGAGATGCTCGACCCGCAGGTGGACGCGGTGCGCCTCATGGCCGACGACGTCGCCGAACGCATCGCGACCCTCGGCGGCGAGCCGCTCGGCACCCCGGGGGCCCTGGTCGCGCAGCGGACCTGGGACGACTACCACCTGGGGCGCGCGACGACGATCGAGCACCTCGGCGCGCTCGACGAGGTCTACCGGGGCGTGATCACCGACCACCGGGTCGCCGCCGACACCACGGCCGAGCTGGACGACGTCACCAACGACCTGCTCATCGGCAACCTGCGCGAGCTCGAGCAGTTCCACTGGTTCGTGCGGGCGCACCTGGAGACCGCCGGCGGTGAGCTGTCGACGTCGGGCGAGCGTTCCGAGCTGGGTGCCGCGCGGGCGGCCCGCGAGGGCGAGCACCAGGGCTGAMADSKNVPSYTVPSLSNEDGAKVAAILQERLNALTDLHLTLKHVHWNVVGPHFIAVHEMLDPQVDAVRLMADDVAERIATLGGEPLGTPGALVAQRTWDDYHLGRATTIEHLGALDEVYRGVITDHRVAADTTAELDDVTNDLLIGNLRELEQFHWFVRAHLETAGGELSTSGERSELGAARAAREGEHQGPGPT0004055_236DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047NANA
AK018_06586516hypothetical proteinATGTTCCGACGTCGCCAGCTCCCGTCCCCCGCCCGCGCCGCGGTGCCCGTGACCGGCCGGGAACGCCTGCTGGCCGGCGCGGAGCTCGCCGACGGCGGCTGGGTCGTCGCTACCACGGCGGACCTCGCGGTCGTGTCGGGGCACGACGACGGCACCCGGCTGCTGTCGCGTCGCCCCTGGGGCGACGTGGACCGGGCGGCGTTCGACCCGGCCCGCTCCGAGCTGACCGTCGAGTGGGTCGACGGCGCGCCGGACCTGCGGCTGCGCCTCTCCGACCCGGGACGCACCAGCTTCCCGGCGGCGCTGCGCGAACGGGTCGTGTGGTCGGTGGTGCTCGCCGAGACCGTCGACGTCCCCGGCGGCCAGGTCCGCGTCGCGGTCCGTCGTCGCCTGGACGGGACCATGTACTCGCAGGCGATCTCCGACGACGGCGTCGACCTGACCCTCCCGGACGTCGCGAGAGTGGTGGACGCCACGGAGGAGAAGGTCCGCGGGGCGTGCGGACTACCCCGGTGAMFRRRQLPSPARAAVPVTGRERLLAGAELADGGWVVATTADLAVVSGHDDGTRLLSRRPWGDVDRAAFDPARSELTVEWVDGAPDLRLRLSDPGRTSFPAALRERVVWSVVLAETVDVPGGQVRVAVRRRLDGTMYSQAISDDGVDLTLPDVARVVDATEEKVRGACGLPRNANANANANA
AK018_06587258hypothetical proteinATGGGGGACATGGCACCCGAGCACTCCGGCGACCCGTCGGCCCCCGGCCTCGTCGAGCACACCGAGCACCACCGGGACGGCAGCGTGTGCGCCACGGGGCAGTTCCTCGACGGCGAGCTGCACGGGTACTGGGAGTGGTTCCGCACCGACGGCACCCGCAAGCGCTCCGGGCACTTCGACCGCGGGCGCCGGGTCGGCGAGTGGACCACGTACGACCGCGGCGGCATCGTCTACAAGGTGACGAACGTGCAGGACTGAMGDMAPEHSGDPSAPGLVEHTEHHRDGSVCATGQFLDGELHGYWEWFRTDGTRKRSGHFDRGRRVGEWTTYDRGGIVYKVTNVQDNANANANANA
AK018_06588174hypothetical proteinATGAGCATCGGTGACAAGGCCAAGCACGCTGCGGAAGAGGCCATCGGCAAGGCCAAGGAGGGCCTCGGCAAGGCGTCGGACGACGAGGGCATGGAGGCCGAGGGGCGCGGCGAGCAGTCGCAGGCGAACCTCAAGCAGGCCGGCGACGACGTCAAGGACGCCTTCAGGAAGTAGMSIGDKAKHAAEEAIGKAKEGLGKASDDEGMEAEGRGEQSQANLKQAGDDVKDAFRKNANANANANA
AK018_06590486def_6COG0242Peptide deformylaseATGGCGATGCGAGAGATCCGGGTGGTGCCCGACCCCGTGCTGCGCACGGCGTGCGACGAGATCACGACGATCGACGACCGCGTGCGGTCGCTGGTGACGGACCTGCTCGAGACCGTCGACGACGAGGGTCGTGCGGGCCTGGCCGCCAACCAGATCGGCGTCAACCTGCGGGCGTTCTCGTGGAACATCGAGGACGAGATCGGTTACGTGCTCAACCCGCGCCTGGTCGACGTGTCCGAGGAGCTGCAGGACGGCGACGAGGGCTGCCTGTCCGTGCCGGGACTCTTCTACCCGACGACGCGCGCCTGGTACGCCCGCGTCGAGGGCATCGACCTGGACGGCAACCCTGTCGTGGTCGAGGGCACGGACCTCATGGCGCGTTGCCTGCAGCACGAGTGCGACCACCTGGACGGCAAGCTCTACCTCGACCGGCTGGAGCGGGCGACGCGCAAGAAGGCGATGCGGGAGCTGCGCGAACGCCTCTGAMAMREIRVVPDPVLRTACDEITTIDDRVRSLVTDLLETVDDEGRAGLAANQIGVNLRAFSWNIEDEIGYVLNPRLVDVSEELQDGDEGCLSVPGLFYPTTRAWYARVEGIDLDGNPVVVEGTDLMARCLQHECDHLDGKLYLDRLERATRKKAMRELRERLNANANANANA
AK018_06591501hypothetical proteinATGGCCGGTGCGATCACCCGCGGTGTGCTGCTCGTGCACTCCGCGCCCCGTGCGCTGTGCCCCCATCTCGAGTGGGCGGCGGGCAACGTGCTGGGCGGGGACGTGTCGTTGGACTGGACGCCCCAGCCCGCTGCGCGCGGTCTCTACCGTGCGGAGTACCCGTGGCAGGGCGCCCAGGGCACCGGCGCGCGTCTCGCCTCGGCGCTGCGCGGCTGGGACCACCTGCGCTACGAGGTCACCGAGGACGCCAGCCACGGCGCCGACGGCGCCCGCTGGTCTCACACTCCCGAGCTCGGCATCTTCCACGCTATGACGGACGTCCACGGCAACGTGGTCGTCCCCGAGGACCGGGTGCGTGCCGCCATGGAGGGTGCGCGGGACCCGCTCGCCCTGCGCGAGGCCATGGACCTCGCCCTCGGCAGCGCGTGGGACGACGAGCTCGAGCCCTTCCGCTACGCCGGCGCCGGCGCGCCGGTGCGCTGGCTGCACCGCGTCGGGTAGMAGAITRGVLLVHSAPRALCPHLEWAAGNVLGGDVSLDWTPQPAARGLYRAEYPWQGAQGTGARLASALRGWDHLRYEVTEDASHGADGARWSHTPELGIFHAMTDVHGNVVVPEDRVRAAMEGARDPLALREAMDLALGSAWDDELEPFRYAGAGAPVRWLHRVGNANANANANA
AK018_065921086hypothetical proteinGTGAAGGACGCGGCGTGGCTTCGTCCGGCGCTTCAGCTGGCCGACCGCGGTCTCGCATGGGTCGCTGATGACCGGCGAGCGACGTACGGCTCCGCGCTGGTCCGCATCGCGTTCGGGTTCGGAGCACTCGTCTTCCTCCTCGTGCACTTCACGAACCGGCAGTACCTGTGGGGAGAAGCCGCCCGTTGGGCCGCTCCCCTGCAGTCGAACGGCGGCTTCTCCGCCCCCTTCACGGCGTTCTCGGAAGGACTCGCACCAGTACCTCTGACGCTCGGGTACCTCCTCCTCGTGGGCCTCGCCGTGCTGCTGACGATCGGATGGCGTAGCCGCGTGGTTGCGCCCGTGTTCCTGGTGCTCTGGGTGAGCCTCCTGGAGTCCAGCCCACTGACCGGCGACCAGAGCGACAACATCTTCCGGATCCTGCTGCTCTACCTATGCTTCGCCGACCTGGGCGGACGCTGGTCGCTGGACGCCCGCCGGCGCGCGAGGAAGGCAGCCCGTCACGGCGCTCCACGGCCGTTCGGACCGTTGGGCACGCCCACGTTCAACGCACGCGCTGAACAAGCCGGGACGCTGCTCCACAACTTCGCCGTGATCATGGCGGGTACTCAGATCTGCCTGATCTACGTGGCCTCAGGCCTCTACAAGGCGCAAGGAGCGCTCTGGCAGGACGGGACCGCGATCTACTATCCGCTCCAGCTCTCCCACTACCGACCGTGGCCCGAGCTCGCGGACATCCTCGTCGCGAACCCGTTCATGGTGGCCGTGGTGACCTACTTCTCGGTCTTCATCCAGCTCTTCTTCCCTCTGATGCTGCTGCAGCGCTGGACTCGGCTCATCGCGATCTCCGGCGTGCTGTCGATGCACATCGGGATCGCCGTCGTGATGGGCCTGCCCTTCTTCTCCTTGTTCATCATGGCAGGAGACTGCCTGTTCGTCCGCGACAGCACCTTCGAAGCCGTCCAGCGACGCCTCCGTCGAGCGGCGAGCCGTCGCGCCCGGCCGGTGCGTGGAGCGGGTCAGGACGGTGTTCGACGATCGACTCGGAGCGACAGCCGCTCCTACCAGACATCGTTGCGGGACTGAMKDAAWLRPALQLADRGLAWVADDRRATYGSALVRIAFGFGALVFLLVHFTNRQYLWGEAARWAAPLQSNGGFSAPFTAFSEGLAPVPLTLGYLLLVGLAVLLTIGWRSRVVAPVFLVLWVSLLESSPLTGDQSDNIFRILLLYLCFADLGGRWSLDARRRARKAARHGAPRPFGPLGTPTFNARAEQAGTLLHNFAVIMAGTQICLIYVASGLYKAQGALWQDGTAIYYPLQLSHYRPWPELADILVANPFMVAVVTYFSVFIQLFFPLMLLQRWTRLIAISGVLSMHIGIAVVMGLPFFSLFIMAGDCLFVRDSTFEAVQRRLRRAASRRARPVRGAGQDGVRRSTRSDSRSYQTSLRDNANANANANA
AK018_06593741hypothetical proteinTTGGGTCGGACATCGTCCGGTACGAGGGCGCCGTGGGTCGTCTTCGTGGCGATCCTGCTCGCGCTGATCGTGACCGTCCACGCTGCCGCCACCTTCCTCTGGATCGCCCCGCGCAACGCCATCAGCACTGCTCTCAGCGGACCTCTGGACCGCGCGATGGATCCGATGTTCCAGCAGAACTGGTCACTGTTCGCGCCGACCCCGATCAACGTCGCGAACTCCCTCGAAGTGCGTGCACTCGATGCGGAGTTGGCGCCGACGCCCTGGGTGGACGTCACAGACCTCGAGATCTCGGCCAACTTCACCCACCATCTCCTGCCCAACCGAGCGAGCCGGCCGACGAGGATGCTCGCGGCGCGCGCGCACGCCCAGTTCTCCAAGCTCTCCGACGCTGAGCTCGAAGTCCTCGGCGGGCACTACCACCAGGACGCCTGGCCGCGTCTGGCGGAAGCGCTCGAAGCTGTCGACGGGCCCTCGTCACAGGCTCGACTCGACCTAGTCATCGAGTACGACCGCGCCATGGCCGCATACGCCACCGAGTTCGTCCGTGCGACCGCGACCAGCACCGAACCGGCCTACGTCCAGTTCCGAGTGGCACGTGTGCGCGTCACTCCGTACATCCGCCGGGACGAGCAGCCGCACGATCCGTCGTACTACACCTTCGGGCGCCGGCCGATGTACGAGTTCGACAGACAGGACAGCGACCGCTTCGCACGGGCGATCGAGAGGTTCCAGCAGTGAMGRTSSGTRAPWVVFVAILLALIVTVHAAATFLWIAPRNAISTALSGPLDRAMDPMFQQNWSLFAPTPINVANSLEVRALDAELAPTPWVDVTDLEISANFTHHLLPNRASRPTRMLAARAHAQFSKLSDAELEVLGGHYHQDAWPRLAEALEAVDGPSSQARLDLVIEYDRAMAAYATEFVRATATSTEPAYVQFRVARVRVTPYIRRDEQPHDPSYYTFGRRPMYEFDRQDSDRFARAIERFQQNANANANANA
AK018_06594675hypothetical proteinGTGACTGGTGAGGACTGGCCTGCCGACGAGACGGTCACAGTCGACCTGGTCGGTCCGGACGGCGACATCGTTACGAGTGTCGAGGTGGAGACCGACGAGAACGGTTCATTCACCACGACCGTGTCCGTACCGGAGGACGCCGTCCCCGGTGACTACACGGTCGAGGCTTCGGACGAGCAGGGCAACGAGGCGAACGATGCGCTCACTGTCACGGTGGACGACCGCACACTCACGGCCCAGTTCACCTATCCGGAGCGTGAACCAGGCGATGAGCAGGAATTCTCGGCATCCGGGTTCCGCCCCGGTGAAGCCGTGCGGGCCGTCATCAACTCGGAACCTCTGAACCTGCCGGTCCGGACGGCAGACGGAGACGGTGAGGTCACCTGGACCTTCGTCGTCCCTGCCGACTTCGAGGGCGGGTCCCACACCGGCACAGCGACGAGCGTGCCGGTCGGCGACTCCGTCGTGGCGACGTTCGACGTCATCGTGACCGCGGCGCCAGCGCCTGGTGACGACACCACTTCCGATGGCACGGTGACGAACGGTGGTGGCGGCATTCTTCCGCGGACCGGCTCCGACCTGTGGGTCGAGCTCGCACTCGCCGCGTTCCTGATCGGTGCCGGTGCGGTGACGCTCGGCGTCGTGAGGCGCCGCGACCGATCGGCCACCGAGTGAMTGEDWPADETVTVDLVGPDGDIVTSVEVETDENGSFTTTVSVPEDAVPGDYTVEASDEQGNEANDALTVTVDDRTLTAQFTYPEREPGDEQEFSASGFRPGEAVRAVINSEPLNLPVRTADGDGEVTWTFVVPADFEGGSHTGTATSVPVGDSVVATFDVIVTAAPAPGDDTTSDGTVTNGGGGILPRTGSDLWVELALAAFLIGAGAVTLGVVRRRDRSATENANANANANA
AK018_06595504hypothetical proteinGTGGTCGGTGACCGTGTCAGTATCGACCCGCCGGTCGGTGGGGTGCCGACGACGACCATCTCGGACGTGCGCGGCAACACGGTCGAGCTGCGCGAGTACACGGGGTCGGGGCCTTCGGGATCCCACCACTCCACCGGCTACGACTATGACGATGCGGGCCGGTTGGTAAAGGTCGCCGACCCGGAGGGCAACTCGTGGAGCTATTCCTATGACATGCGGGGTCGGCAGGTGAGCGCGGTCGATCCGGACAGGGGTGCGACGTCGAGTACGTATGACAGTCTGGGTAACGTGGTCACGTCTACCGATGCGCGCGGTCAGACGGTGGCGTACACCTATGACCGGCTGGGGCGTCGGACGTCGTTGCGTGATGACAGTCCGAGTGGTGTGGTGCGTGCGCAGTGGTCCTACCACACGGTGGCCAGGGGCCAGTTGACGTCGTCGGTGCGGTTCGAGGACGGCGAGGCCCACACCACGACGGTTGCGGGGTACCGCGCCCCGTTATAGMVGDRVSIDPPVGGVPTTTISDVRGNTVELREYTGSGPSGSHHSTGYDYDDAGRLVKVADPEGNSWSYSYDMRGRQVSAVDPDRGATSSTYDSLGNVVTSTDARGQTVAYTYDRLGRRTSLRDDSPSGVVRAQWSYHTVARGQLTSSVRFEDGEAHTTTVAGYRAPLNANANANANA
AK018_06596243hypothetical proteinATGGTGATCATACCCTTCATTATTGGAACTCTTGCTGTTATTGGCGGCGTGCTCCTGATTTGCTACCGAGAGCGGCTGGGCGAAGCTTCGGAAAGAGCGGCGGACAGCGTTCTGCCAGGATTCCTTGCTCGGACGGCCAAGATCGACGCGTTCGGTCTCGAGATGAGCCAACGGTTCGTCGTCGGAGGCGTCGGAGCAATTCTGGTTGGAGCCCTAGTCGTCGTCATCTCGTTCTTTGTCTAGMVIIPFIIGTLAVIGGVLLICYRERLGEASERAADSVLPGFLARTAKIDAFGLEMSQRFVVGGVGAILVGALVVVISFFVNANANANANA
AK018_065971137hypothetical proteinGTGTACGATCCCGGCCGTGACGCTGAGGTTGCGCCACAGGCCGGGGGCGTGGTCTCGACGTACAGTCAGCCGGGTGCGGGTCAGGACCTGCCGCATGCCACCACGCAGGTGGCCGCGAGCGGCGACGGCGGTCAGGTCGGCGTCTCGAGGTTCGCCTATGACGCGGCGGGCAACATGACCGCACGTGACGTGGCCGGTCAGGCTGCTCAGAGCCTGTCTTGGGACCGTGAGGGCGAGCTGCGCACGGTGAGTGCTGTCGTCGATGGTGATGGCACCGTGCAGGCCGACGAGTCGGATGAGTACGTCTACTCCGCTGACGGGGACCGGCTCGTGCGCAGCCAGGGCGGCACCACCACGGTCTATCTGCCGGGTCAGGAACTCACGGTCACTTCCGGTGGGGTGCAGGCGACGCGGTACTACACGTTCGCCGGTAAGACGGTGGGGGTGCGGACGGGGAGCAGCTTCGCGGACGTGACCTCGATCTTCGCCGGCCATCACCACACCGGCAGTCTGCAGATCGCGAACGTGGCGAACACTGTGGTGCGGCGCCTGCTGGATCCGTTCGGCGCGCCGCGGGATGCTGCGGCGGGTGAGCCCACCAGCAGCGTTCAAGGGAAGTACGGATACATTGGCTTCGGGATTGGACCGGACTTCGGGTACGCAGCTGGTGCATCGGCGACCAATGGGATCTCCCCCGGTAGATCGGTGAGTGTCACAGGTGGCGTATCGTCAGGGCCGGTTGGTTTCTCAGGAGGATTGAACTGCGATACCTCGTCTGACTCTTGCCAAGTCGGGAGTTTTGGTGCCGGATACGGCGTGGGCGCGCGGGCAGGCGTGCACCTCGAAGCTGGCTATGTCTTTATGGTGGGAGAGAAAATGGCCTTGCAGACGGTCCTTTATCTATTCTTCTCAGTAACCCTCACGTTAGGGCTAGTCCTACTTGTATTCTGTCGACGATTTGGCGTTTTCTTGGAGGCGCGTAACAGAAAACTATTTGGGGAGAGCGCCGCGCAGAAGATCGAGACGCTTTCTGGAGGCTTTCGACCTACAGCCACGGCGATTGTGTTTAGTCTAATAGTTGTGATCATATCCGCCCTGATGCTAACGTCTATTGATGAAATATCGAACATTCCCTGAMYDPGRDAEVAPQAGGVVSTYSQPGAGQDLPHATTQVAASGDGGQVGVSRFAYDAAGNMTARDVAGQAAQSLSWDREGELRTVSAVVDGDGTVQADESDEYVYSADGDRLVRSQGGTTTVYLPGQELTVTSGGVQATRYYTFAGKTVGVRTGSSFADVTSIFAGHHHTGSLQIANVANTVVRRLLDPFGAPRDAAAGEPTSSVQGKYGYIGFGIGPDFGYAAGASATNGISPGRSVSVTGGVSSGPVGFSGGLNCDTSSDSCQVGSFGAGYGVGARAGVHLEAGYVFMVGEKMALQTVLYLFFSVTLTLGLVLLVFCRRFGVFLEARNRKLFGESAAQKIETLSGGFRPTATAIVFSLIVVIISALMLTSIDEISNIPNANANANANA
AK018_06598330hypothetical proteinGTGAGCGTCGCAGAGCACTACACCTACCGCGTCGTGTGGTCGCCCGAGGACCAGGAGTTCGTCGGCACCGTGCTCGAGCTACCCTCGCTCTCCTGGCTCGAGCCAGAATCGGGCTCGGCCTTCTCCGGCATCCAGCAGCTGGCGCGCGACGTCGTCGCCAACCTTGAGGAGTCGGGCGAACCGGTCCCCCAGCCGCTGTCCGAGCGCCACTACTCCGGCGAGTTCCGCGTGCGGATCCCACCGCGGACCCACCGCCGACTGGCCGAGCAGGCGGCCGAGGAGCACATCTCGCTCAACCGACTCATCTCCGACCGTCTCCCCTCAGCCTGAMSVAEHYTYRVVWSPEDQEFVGTVLELPSLSWLEPESGSAFSGIQQLARDVVANLEESGEPVPQPLSERHYSGEFRVRIPPRTHRRLAEQAAEEHISLNRLISDRLPSANANANANANA
AK018_06599330hypothetical proteinGTGCGATTCCTCGTCGACGCGCAACCGCCGCCTGCGCTCGCGCGGACGCTGACCGAGCACGGCCACCACGCCGAACACGTCATCGACATCGGCCCAGGCGACGCACCCGACGGCGACCTGTGGCGGTGCGCACTGGACAACCAAGCGGTGATCATCACGAAGGACGAAGACTTCTCAGACATGACCGCGGTCCGCAGCCCAGCGCCGGTCATCGTCTGGGTCCGCATCGGGAACACCACCCGACGAGGCATCCTCGAGTGGTTCCAGCCACTGATCGCGCAGGTGGTCGAGATGGTTGAGACCGGCAACAACGTCATCGAGCTGCGCTGAMRFLVDAQPPPALARTLTEHGHHAEHVIDIGPGDAPDGDLWRCALDNQAVIITKDEDFSDMTAVRSPAPVIVWVRIGNTTRRGILEWFQPLIAQVVEMVETGNNVIELRNANANANANA
AK018_06600225hypothetical proteinATGTCGTGGCTGGAGCGCATCGTCGTTGACCCGGACGTCGTCCACGGGCGCCCGCGCGTGCGGGGTACCCGCGTACGCGTGACCGACGTGCTCTCGCTGCTCGCCTCCGGCGCAGCCGAGGCAGAGATCCTTGAGGACTACCCCTACCTGACGGCGGAAGACATCAGGGCGTGCTTGCAGTACGCCGCCGCCCAGGCCGACCACGCCGTCCTGATCGCCTCGTAGMSWLERIVVDPDVVHGRPRVRGTRVRVTDVLSLLASGAAEAEILEDYPYLTAEDIRACLQYAAAQADHAVLIASNANANANANA
AK018_06601702hypothetical proteinGTGGATACTCGGAAGGTCATCGCGACCGCTCGGCACTGGGCCATCAGCTACTCGCTGGTCGAGGCGCGCCGCACCGAGGTGCGCCTCGACGCCGAGCGCGCACTCGACGCGCTGAAGGCGAACCTTGTTCCCGCGAGCCTCGGGGGTGAGATCGGGTGGCGCGTGCTACCCCTCGACGCGAGCGACGTGTGGGCCCTGCGCGCCGTGTCGCGTGCCGTGACGCTCGCCCCGATCGAGGCGGAGGACCAAGAGGCGGCGCGGCAGCTCGCCGACGAGGTGCCCGAGGCGCTGGCTGAGGCGGAGGCGGTGTCCGGCGCGCGCCGGCTGCTGGCGACGCAAGCCGTGCGGCAGGCCGGTGCAGAGGCCGTGGAGTTTCTCACCGAGTACGTCACCTGGGGGCTGGAGTCCGGGCTGCCCGGGGTCCTGCGTCGCCTGGAGCCTGGCGCCGAGCCGGAGGACATCACGGTCACCGACGCGCTGTCGCCGCGGGTGGGACTGGGTTCGGTCTGGCGCGGCCTGGGCGCTGCCGAGATGATTGAAGCGAGCGCACTTCCTGCTGCGAGCAGCCTGTCGGTGTCGGCCGACGACGCTGACCTGACCGAGCTGCGCTCCGTGCTCGCCTCCGGTAGCGCGACCCATCTCGCCGTCTTCAGCACGGCGCCGCACCGCGCGGCTGACCTGATGAGCGCCCTGCAGCCCTGAMDTRKVIATARHWAISYSLVEARRTEVRLDAERALDALKANLVPASLGGEIGWRVLPLDASDVWALRAVSRAVTLAPIEAEDQEAARQLADEVPEALAEAEAVSGARRLLATQAVRQAGAEAVEFLTEYVTWGLESGLPGVLRRLEPGAEPEDITVTDALSPRVGLGSVWRGLGAAEMIEASALPAASSLSVSADDADLTELRSVLASGSATHLAVFSTAPHRAADLMSALQPNANANANANA
AK018_06602711hypothetical proteinGTGCCGCTGGAGATGCTGCCCGGGACGCCGCCGATCACCGACGCGGCCCGCCGTGCGCTGGACGGCGACGGCGCGAGACCCGTGCGGGTGCACGGCAACAACCACGTGGACGGATACCTGCCCGAGGGGTTCGCCCGGTGGTGGGACCGGCCCCTGGACGTGTCGTTCGTGCTGGACCAGGTGGAGGCCCGTGGGCCGGTCGCGGTGTGCGGCTTCTCGCTCGGCGGCTACACGGCGGCGGCGCTGTGCGGCGCTCGCGTGTCCGCCGCGGCCTACGAGGCGCTGCTCACCGGTCGTGTCGAGGCGCCGCCGACGCCGGAGTACCCCGACCTGCTGTCCGCCCTGCGTGCGCGCCGGTCGGCCGCCGAGCTCGCGTCGTGGCCAGGACGGGCGGCGGCGGACCTGCGCGACACGCGCGTCACAGCCGCCTTCCTGCTGTGCCCCTCCCTAGGGCCGCTCCTCACCGAGGACAGCCTGGCCGCCGTGTCCGTACCCGTCGCCGTGCGGTGGACGGCGGCGGACGAGATCACGCCCCCGTCCGAGAACGGCGCACGCTACGCCGCACTGATCCACGGGGCCGACGGCGGCACGGTCGGCGGGCCGCGAGCCGGGCACTACGGGTTCATGCTCCCGGAGCAGGACGACCCGGCCGCCAAGTCCGACGTCGTGGCGGCGTCTCGCGACTTCCTCGCGGCTACGCTGCGGGCGTGAMPLEMLPGTPPITDAARRALDGDGARPVRVHGNNHVDGYLPEGFARWWDRPLDVSFVLDQVEARGPVAVCGFSLGGYTAAALCGARVSAAAYEALLTGRVEAPPTPEYPDLLSALRARRSAAELASWPGRAAADLRDTRVTAAFLLCPSLGPLLTEDSLAAVSVPVAVRWTAADEITPPSENGARYAALIHGADGGTVGGPRAGHYGFMLPEQDDPAAKSDVVAASRDFLAATLRANANANANANA
AK018_06603771gno_2Gluconate 5-dehydrogenaseGTGACCTACCTCGAGGACCTCTTCTCCCTGGCCGGTCGCACGGCCGTCGTCACCGGTGGCAGCTCCGGCATCGGCCGGGGGATCGTCACCGCGCTGGCGCGCGCCGGTGCCGCCGTGGTGCTCGTCGCCCGGGGACAGAAGGCCCTGGACGACACCGCCGCGCAGATCACGGCGGCCGGTGGCACGGTCGCCGTCGTGCCGGGCGACCTGTCCAGCCGGGCAGGCGTGCGCGAAGTCGCCGAGGCCGCTGTCCAACCGTTCGGCGAACCCGACGTCGTGGTCTCCAGCGCAGGGATCAACCTGCGCCCGCCCCTGGCCGAGACGGACGCGGCCACCTGGGACGCCACGATGGCCGTCAACCTCGAGGCGCCGTTCTGGCTGGGCCAGCGCTTCGGTCCCGGCATGGCCGAACGCGGCTACGGACGCCTGATCCACGTCAGCTCCCAGCAGGCCCACCGCGCGTTCGTCACCAGCGGCGTCTACGGCGTGTCCAAGGGCGCGCTCGAGTCGCTGGCCCGCTCCCAGGCCGAGGCCTGGTCACCGCGCGGCGTCACCGCCAACACCCTCGTGCCCGGGTTCGTGCTCACCCCGCTCAACCGCCGCCTGCAGGACGACCCGGACCGGGTGCAGGCGCTCGCGGACCGCACCCTCGTGGGCCGCAACAGCGTCCCGGACGACTTCGCCGGCGCCGCGGTGTTTCTCGCGAGCGCCGCGTCGGGGTACGTCACCGGGCAGTCGATCCACGTCGACGGCGGGTTCTCCGTGCACTGAMTYLEDLFSLAGRTAVVTGGSSGIGRGIVTALARAGAAVVLVARGQKALDDTAAQITAAGGTVAVVPGDLSSRAGVREVAEAAVQPFGEPDVVVSSAGINLRPPLAETDAATWDATMAVNLEAPFWLGQRFGPGMAERGYGRLIHVSSQQAHRAFVTSGVYGVSKGALESLARSQAEAWSPRGVTANTLVPGFVLTPLNRRLQDDPDRVQALADRTLVGRNSVPDDFAGAAVFLASAASGYVTGQSIHVDGGFSVHPGPT0018070_385DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_IDONATE_DEGRADATION,PGPT0018070-idnO-K00046NANA
AK018_066041206COG0628Putative transport proteinGTGGCCGAGGCCGAGAACGTCCCGCAGTGGCTGCGCACGGTCGGCGGCTGGTCGTGGCGCCTGATCGCCCTCGTGATCGTCGTCGCGCTGGTCGTGTACGCCACGGCCCAGGTCCAGCTCGTCTTCGTCGCCGTGTTCCTCGCCCTCGTGCTCACCTCGGTGTTCCGTCCGCTGGCCGACGTCTACGACCGCGTCATGCCGCGTGCGCTCGCCACGGTCCTGTCGCTGCTCACCGGCGTGATCGTCTTCGGCGGGCTGCTGACCTTCGTCGTCGCGTCCGTGGCCGGCCAGTGGACCGAGCTGGCCGGACAGTTCGACACCGGCATCCAGCAGATCCTCGCGTTCCTGCGTGACCTGCCGTTCGGGCTGTCCGTCACGGGCGACCAGATCGACGAGTGGCTCGACACCGGCGGGCAGTGGCTCGCCGACAACGCGGAGAGTCTCGCCGGGCAGGCCGTCGAACGGGCCGGCTCCGTCGTCGAGGCGTTCATCGTGCTCGCGCTGGCCATCTTCTGCACCGTGTTCTTCGTCAACTCCGGCGACCGGATGTGGCGCTGGTTCACCCACCAGCTGCCGGAGCGCAACCGCGACCGGCTCCGCGAGGTGGCCGGCGCCGGCTGGTACACGTTCTCCGGGTTCGCCCGCGGCACCGTCATCATCGCCTTCATCGACGGGATCCTCGCGTTCGTCCTGCTGAGCATCCTCGGGGTCCCGCTGGCGGCGCCCCTCGCCGTCCTGGTCCTCATCGGTGCGTTCATCCCCATCATCGGCGCGCCGCTGGCGATGATCATCGCGGCGGTGGTGGCGCTCGCGGCCGAGGGGTTCGTCACCGCGCTGATCGTGACGGTGGGCATCGCGCTGATCGGCCAGCTCGAGGGCCACGTGCTGCAGCCGCTCATCATGGGCAAGCAGGTCTCCCTGCATCCCGTCGTGGTCGCGATCGCCGTGTTCGCGGGGACGGTGCTCGCGGGGATCCTCGGTGCGGTCGTCGCCGTCCCCCTCGTGGCCGTGGTCTGGACGGTGTTCTCCACCCTGCGCGGCGACCGACCCGTCCCGCTGCCGCGCGGAGCCACGGACAGCCCGGACCCGTCCGACGACGAGGACCACGGTGCGGCGGACCGGGGTGCAGCGGACCGGGGCGCGCAGGACCAGGGCACCGAGCTGCGCGACGCCGACGAACCGGCGCCCGCGCCGGAAAGCCGCTGAMAEAENVPQWLRTVGGWSWRLIALVIVVALVVYATAQVQLVFVAVFLALVLTSVFRPLADVYDRVMPRALATVLSLLTGVIVFGGLLTFVVASVAGQWTELAGQFDTGIQQILAFLRDLPFGLSVTGDQIDEWLDTGGQWLADNAESLAGQAVERAGSVVEAFIVLALAIFCTVFFVNSGDRMWRWFTHQLPERNRDRLREVAGAGWYTFSGFARGTVIIAFIDGILAFVLLSILGVPLAAPLAVLVLIGAFIPIIGAPLAMIIAAVVALAAEGFVTALIVTVGIALIGQLEGHVLQPLIMGKQVSLHPVVVAIAVFAGTVLAGILGAVVAVPLVAVVWTVFSTLRGDRPVPLPRGATDSPDPSDDEDHGAADRGAADRGAQDQGTELRDADEPAPAPESRNANANANANA
AK018_06605603hypothetical proteinATGGAACCGTTCGTCCTGCGCAGCCCCGAGGTCACCCTCTCCGTCCCGACCGCCGCCGACGTCGACCGCGTCGCCGAGGTCTGCAGCGACCCCGACATCGCGCGGTGGACCACCGTTCCCTCGCCCTACACCCGCGCCGACGCGGAGGGTTTCATCACGCAGTTCGTGGTCCAGGGGTGGCAGCAGGAACGGGACTTCACGTGGGCGGTGCGAGCCCCGGGCGCCGTCGAGGGCCCCGTGCTCGGCATGATGGGCGTGTCGATCCGGGCCGGGGATCCGGGCAGCCCGCTGTCCGGGGAGATCGGGTACTGGACCGCGCCGGACGCCCGCGGCCGGGGCCTGACGACGGCCGCGGGCCGCCTGGTCGTGGACTGGGCGCTCGACCCCGACGGTCTGGGCCTGCAGCGCCTGCAGTGGCTGGCGTTCGTGGGCAACTGGCCCTCGCGCCGGGTCGCGTGGAAGCTCGGCTTCCGGTTCGAGGGCACCATGCGCCGGCACGGCCTGCAGCGGGGCCGCCTGCTGGACGACTGGATCGGCGCCGTCCTGCCCGACGACGTCCGCGAGCCCGTCGAGCCGTGGCCCGCCGAGGCGCCCGCCGTCTGAMEPFVLRSPEVTLSVPTAADVDRVAEVCSDPDIARWTTVPSPYTRADAEGFITQFVVQGWQQERDFTWAVRAPGAVEGPVLGMMGVSIRAGDPGSPLSGEIGYWTAPDARGRGLTTAAGRLVVDWALDPDGLGLQRLQWLAFVGNWPSRRVAWKLGFRFEGTMRRHGLQRGRLLDDWIGAVLPDDVREPVEPWPAEAPAVNANANANANA
AK018_066061371Ferredoxin--NADP reductaseATGACGCCGCAACGACGCGTGGCCGTGATCGGGGCCGGACCGTCCGGCCTGGCCACCGCACGAGCACTGGACAAGGTCGGCCTGGAGGTCGTGGGCTACGAGGCGCACGACGACGTGGGTGGCCTCTGGGACATCGACAACCCGCGCTCCACGGTCTACGAGTCGGCGCACCTCATCTCCTCGCGCACCACGACCGAGTTCACCGAGCTGCCCATGGACTCGCGGGTCGACTACCCGAACCATCGCGAGCTGCTGCGCTACTTCCGCACCTACGCCGACACGTTCGACCTGCGCCGGCACTACCGGTTCGGCACCCGCGTGACCGCCGTCGAACCCGTCGGCGCCGACCCCGGCGGACGCGACGGCTGGGACGTGCGCTCGACCGAACGAGGCGGCGCGACCGGCACCGAGCGCGTCGACCACGTCGTCATCGCCAACGGGACCCTGGCGGAACCGAACGTGCCCACGTTCGACGGCGAGTTCACCGGCGAGCTGCTGCACTCCAGCGACTACCGCAGCGCCGACGTGTTCGCCGGCAAGCGCGTCCTGGTGGTCGGGGGCGGCAACTCCGGCTGCGACATCGCCGTCGACGCCGTGCACCGGGCCGCGTCCGTGGACCTGTCCGTGCGGCGCGGCTACTGGTTCGTGCCGCGCTACCTGCTCGGACGGCCCACCGACACGCTCAACCAGGGCCGGCCCCTGCCGGCACGGATCAAGCAGGCCGTCGACTCGCGCGTCCTGACCCTCCTGAACGGCGACCCGCAGCGCTTCGGCTTCCCGGCGCCCGACCACAAGATCTACGAGTCTCACCCCGTGGTCAACTCGCTGGTGCTGCAGCACGCCGGGCAGGGCGACCTGCGCGTGCGCCGCGACATCCGTTCCTTCGACGGCGACACCGTGCACTTCGTGGACGGCACCGCCGGGCGGTACGACCTGGTGCTGCTCGCCACCGGGTACCGCCTCGACTACCCGTTCGTCGACCCGAAGCACCTCGCCTGGGACGGCCCCGGCTCCGGGGGAGCGCCCGAGCTGTTCTGCAACATCGTGCCCGCCTCCTTCAACGGCCTGTTCGTGGTCGGCATGCTGGAGGCCTCCGGCATCGGCTGGCAGGGCCGGGCGGAGCAGGCCGAGCTCGTGGCGCGCTACCTTGCCGCCGACGCCGCCGGGTCCGACGGCGACACCGCGGCCGCCGAGCGCGCCCGGAGGTTCCGCCGTCGTGCCGCGCAGCGCTGGCCCGACCTCACCGGCGGCTACCGCTACCTGGGGCTGGAACGCATGAGCTACTACGTCAACAAGGACGCCTACCGCCGCACCGTGCGCCGGTACGCCGACGAGCTCGCCGCACCCTCGGCCACCGGGGGCACGCGATGAMTPQRRVAVIGAGPSGLATARALDKVGLEVVGYEAHDDVGGLWDIDNPRSTVYESAHLISSRTTTEFTELPMDSRVDYPNHRELLRYFRTYADTFDLRRHYRFGTRVTAVEPVGADPGGRDGWDVRSTERGGATGTERVDHVVIANGTLAEPNVPTFDGEFTGELLHSSDYRSADVFAGKRVLVVGGGNSGCDIAVDAVHRAASVDLSVRRGYWFVPRYLLGRPTDTLNQGRPLPARIKQAVDSRVLTLLNGDPQRFGFPAPDHKIYESHPVVNSLVLQHAGQGDLRVRRDIRSFDGDTVHFVDGTAGRYDLVLLATGYRLDYPFVDPKHLAWDGPGSGGAPELFCNIVPASFNGLFVVGMLEASGIGWQGRAEQAELVARYLAADAAGSDGDTAAAERARRFRRRAAQRWPDLTGGYRYLGLERMSYYVNKDAYRRTVRRYADELAAPSATGGTRNANANANANA
AK018_06607921panS_2COG0385Pantothenate precursors transporter PanSATGAACATCGACGACGTCGTGGTCCACTTCTCCCCGGGCTCGATGGTGGCGCTCAACATCGTGCTCGCCCTCCTCATGCTCGGCATCGCGCTGGACACCTCGCCCGCCGACTTCCGCGTGCTGCGCCGCGCACCGCGCGCCGCCGTGCTCGCCCTGCTGGCCCAGGTGGTGCTGCTGCCCGCCGTTACCTTCGCGCTCACCCTGGTCCTGGACGTGCAGGCCTCGATCGCCCTCGGCATGATCCTCGTGGCCTGCTGCCCGCCCGGCAACGTCTCGCAGATCCTCACCTACCGGTCCGGCGGCAACGTGGCTCTGTCGGTGTCGCTGACCGCCGTCGGCAACGCCCTCTACCTGGTGGCGATGCCGCTGAACATCGCCCTGTGGGGCAGCCTGCACCCCACCGGCCGCGACATCCTCGCCGAGGTCAGCCTCGACCCGCTCGAGATGATGCTCGACATCGTGCTCATCATCGGCGTGCCCTTCGCCGCCGGGCTGCTGGTGCGCACCCGCTGGCCCGCCGTCGCCGCACGCGTCCACCGCCCCGTCCACGTCGTCAGCATCCTCGCGCTGGTCGGGTTCGTCGTGGCCGCGCTGGCCGGCAACTTCTCCGCCTTCGTCGCCTGGGTGGGCGTCGTGCTCGTCGCGGTGTTCCTGCACGACGCCGTGGCGCTCGCCCTCGGGTACGCCGCCGGCCGCGCCGGACGGCTCGGGACGCGCGAGGTCAAGGCCGTGACCTTCGAGGTCGGCATCCGCAACGCCGCCCTCGGCCTCGGTCTCGTCATGACGTTCTTCGGCGGCATCGGCGGCATGGCCGTCGTGGCCGGCTGGTGGGGCGTGTGGGACATCATCGCCGGGCTGGCCCTGGCGACCGTCTGGGCGCGACGCACCCGCGCCCGGCAGGCCGCGGAGGTCACGGCATGAMNIDDVVVHFSPGSMVALNIVLALLMLGIALDTSPADFRVLRRAPRAAVLALLAQVVLLPAVTFALTLVLDVQASIALGMILVACCPPGNVSQILTYRSGGNVALSVSLTAVGNALYLVAMPLNIALWGSLHPTGRDILAEVSLDPLEMMLDIVLIIGVPFAAGLLVRTRWPAVAARVHRPVHVVSILALVGFVVAALAGNFSAFVAWVGVVLVAVFLHDAVALALGYAAGRAGRLGTREVKAVTFEVGIRNAALGLGLVMTFFGGIGGMAVVAGWWGVWDIIAGLALATVWARRTRARQAAEVTAPGPT0013890_2203DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013890-panS|yocS|ybaS-K03453NANA
AK018_06608942COG0451putative proteinATGAGACGGGTCCTCGTCACCGGCGGCTCCGGGTTCCTCGGGTCGCACACCGTCGCGGCGCTCGCGGCCCGCGACGACGTCGCGCACGTCGTCTCCGGCGACCTGCGCCCGCCGAGCACGCCGCCCGACGGCGTCACCGCCGTCACGCTCGACGTCACGGACGCGGCGGGGGTGCGCGAGGTCGTCGCCGCCCACCGGATCGACACCGTGGTGCACCTAGCGGCGATCGTGAACCCCGGCACCCTCGACGAGGACACGGAGCGCCGCGTCGACGTCGACGGGACCCGCAACGTCCTCGAGGCGTGCGTCGCCGGGGGAGTGCGGCGGGTGGTGATCTCCTCCTCCGGCGCGGCCTACGGCTACCACGCCGGCAACCCGGTGCCGCTGCGCGAGACCGACCCGGTCCGGGGCAACGAGGAGTTCACCTACTCGCGGCACAAGCGGCTCGTGGAGGAGATGCTCGCGGACTACCGCCGCGACCGACCCGACCTGGAGCAGGTGATCCTGCGGATCGGCACCATCCTGGGGCCCGGCGTGGCCAACCAGATCACCGCGCTGTGGGACGCGCCGCGGCTGGTCCGCGTGCGCGGCGCGGACAGCCCCTTCGTGTTCGCGTGGGTCGACGACGTCACCGGCGCGATCGTCGCCGGCGCCACCGGGACCGCCACGGGTGCGTTCAACGTCTGCGGAGACGGGCGCATGACCGTCGCCGACATCGCCGACCGGCTCGGCAAGAAGACGCTCGACCTGCCCGCCGGGGTGCTGGCCGCGGCGCTGCGGGTCGGCCGCGCGCTGCGGCTGACCGTGCACGGGCCCGAACGGGTCGGGTTCCTGCGCTACCGGCCGGTCCTCGACAACACCAGGCTGCGCACCGAGCTCGACTACACCCCGCGGTACACCAGCCGCGAGGCGTTCGAGCAGTGGCTGCGGGTGCGGACGTGAMRRVLVTGGSGFLGSHTVAALAARDDVAHVVSGDLRPPSTPPDGVTAVTLDVTDAAGVREVVAAHRIDTVVHLAAIVNPGTLDEDTERRVDVDGTRNVLEACVAGGVRRVVISSSGAAYGYHAGNPVPLRETDPVRGNEEFTYSRHKRLVEEMLADYRRDRPDLEQVILRIGTILGPGVANQITALWDAPRLVRVRGADSPFVFAWVDDVTGAIVAGATGTATGAFNVCGDGRMTVADIADRLGKKTLDLPAGVLAAALRVGRALRLTVHGPERVGFLRYRPVLDNTRLRTELDYTPRYTSREAFEQWLRVRTNANANANANA
AK018_066091602ettA_5COG0488Energy-dependent translational throttle protein EttAGTGCCCGCCATCATCACCGCCCGTCCCGCCGTCGTGCTGCAGGACCTCACCTATTCCTGGCCCGACGGCGCCACCCCGATCGCCGGCGTCTCCGGCGTCTTCCCGACCGGGCGCACCGGCCTGGTCGGGGACAACGGCACCGGCAAGTCCACGCTGCTGCGGCTCGTCGCCGGCGAGCTGACACCCGTGTCGGGGAGCGTCGCCGTCGTCGGCACCGTCGGCTACCTTCCCCAGCGGCTCACCCTGGACACGTCCGCGACCGTCGCCGACCTGCTCGCCGCGCGCGACGTCGTCGACGCGGTGCGCGCCATCGCCGACGGCGACGTCCGCCCCGATCTCTTCGACGTCGTCGGCGTCGACGGGTGGGATCTCGAGGAACGTTCGGTCGCGGCGCTCGCGAGCGCCGGGCTGCCCTGCGGCGACGGGGTCCTGGACCGCCGGGTCGGCACCCTGTCCGGTGGCGAGGCCGTCCTGACGGCGCTGACCGGGCTCCGGCTGCGTGCGCCGGACGTCACGCTGCTGGACGAGCCGACGAACAACCTCGACGGCGCCTCCCGCGAGCGCCTCGCCGAGGCGGTGCGCACCTGGTCGGGTGCGCTCGTCGTCGTCTCCCACGACCGCACGCTCCTGGAGCTGACGGAGCACACCGCCGAGCTGCGCACCGGGTCGCTGGCGACGTTCGGCGGCCCGTTCAGCGCCTACGAGGCGCACCTCGCCGTCGAGCAGGAGGCCGCCGCGCGCGCGGTGCGCGACGCCGAGCAGACGTGGCGGCGCGAACGGCGCGAACGGATCGACCTCGCCGAGCGCGTGGCCCACTCGCAGCGGCAGGGCCGCAAGGACGCCGTGAACCGTCGGTTCGTCCCGGCGGCGATCCACGACCGGCGCAACTCCGCGGAGAAGTCCCAGGGTGCGCGGCGCGGGGCCGCGGCCGATGCCGAGAACGCCGCCCGTGCCGCCGTCGAGTCCGCGCAGCGGGCCGTGCGGGACGACGACCGGATCGTGATCGACCTTCCTGATCCGCAGGTTCCCGCCTCGCGGCGCCTCGCGGTGCTGACGTCCGCGAACGGCCGGGACGTCGTCGTCGCGGGTCCGGAGCGGGTGGCCCTCACCGGCCCGAACGGCGTCGGCAAGACGACGCTGCTGGAACGGCTGCTTGCGGGCCCGTCGTCGGCGGGCGAGCTGTGCACCGACCGGGTCGGCTACCTGCCGCAGCGGCTGGACGGCCTGGACGACGAGGTGACGGTGCTCGACGCCGTGCGCGCCGCGGCCCCGGGCGTGACGCCCGGGACGCTGCGGAACCGGCTCGCCCGGTTCCTGGTGCGGGGCGACCAGGTGGACCGCCCGGTGGCGACGCTCTCGGGCGGGGAGCGGTTCCGGGTCCACCTGGCCCGGCTGCTGCTGGCCGACCCGTCGCCGCAGCTGCTCGTGCTCGACGAACCGACGAACAACCTGGACCTGGCCAGCGCGGACCGCCTCGTCGAGGCGCTGCGCTCGTTCCGAGGCGCCCTGTTGCTCGTCTCCCACGACCGTGTCTTCCTCGAGCGGGTCGGCCTGCACCGGACCCTCGTGCTGGACCGTACCGGGACGCTCCACGAGCGGTGAMPAIITARPAVVLQDLTYSWPDGATPIAGVSGVFPTGRTGLVGDNGTGKSTLLRLVAGELTPVSGSVAVVGTVGYLPQRLTLDTSATVADLLAARDVVDAVRAIADGDVRPDLFDVVGVDGWDLEERSVAALASAGLPCGDGVLDRRVGTLSGGEAVLTALTGLRLRAPDVTLLDEPTNNLDGASRERLAEAVRTWSGALVVVSHDRTLLELTEHTAELRTGSLATFGGPFSAYEAHLAVEQEAAARAVRDAEQTWRRERRERIDLAERVAHSQRQGRKDAVNRRFVPAAIHDRRNSAEKSQGARRGAAADAENAARAAVESAQRAVRDDDRIVIDLPDPQVPASRRLAVLTSANGRDVVVAGPERVALTGPNGVGKTTLLERLLAGPSSAGELCTDRVGYLPQRLDGLDDEVTVLDAVRAAAPGVTPGTLRNRLARFLVRGDQVDRPVATLSGGERFRVHLARLLLADPSPQLLVLDEPTNNLDLASADRLVEALRSFRGALLLVSHDRVFLERVGLHRTLVLDRTGTLHERNANANANANA
AK018_06610297gatC_1COG0721Glutamyl-tRNA(Gln) amidotransferase subunit CATGTCCACCATCTCCCGTGACGAGGTCGCGCGTGTCGCCGCGCTGGCGCGGATCGAGCTGCGCCCAGACGAGCTGGACCGGCTCGCCGGCGAGCTCGACGTGATCGTCGAGTCCATCGCCAAGGTGAGCGAGGTCGCGACCCCTGAGGTCCCTGCCACGAGCCATCCGCTCCCGATGTCCAACGTGTTCCGCCCGGACGTCCCCGTCGCCGCGCTGCCGGTCGAGGACGTGCTCGCCGGCGCCCCCGACGCGGAGGACGGCCGGTTCGCGGTCCCGCAGATCCTCGGGGAGGACTGAMSTISRDEVARVAALARIELRPDELDRLAGELDVIVESIAKVSEVATPEVPATSHPLPMSNVFRPDVPVAALPVEDVLAGAPDAEDGRFAVPQILGEDPGPT0023460_1669DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023460-gtaC-K02435NANA
AK018_066111521gatA_1COG0154Glutamyl-tRNA(Gln) amidotransferase subunit AATGACCGACCTGACCCGTCTGTCCGCGGCCGTGCTCGCGGAGAAGCTGCGCGCCCGCGAGATCTCCAGCGTCGACCTGACCCAGGCCTTCCTCGACCGCATCGCGTCGGTCGACGACTCGGTCCACGCGTTCCTGCACGTCGACGCCGACGCCGCGCTCGCCACGGCCCGCGACGTCGACGCCCGCCGGGAGGCCGGCGAGGACCTCCACCCGCTCGCGGGCGTCCCGATCGCCGTCAAGGACGTCGTCGTCACCAAGGGCCAGCCGTCCACCGCGGGATCGAAGATCCTCGAGGGATGGATCCCGCCGTACGACGCCACGCTGGTCGAGAAGATCCGCGCCGCCGGCATGCCCATCCTCGGCAAGACGAACATGGACGAGTTCGCGATGGGTTCGTCCACCGAGCACTCGGCGTACGGCAACACCCACAACCCCTGGGACCTCGAGCGCATCCCCGGCGGGTCCGGCGGCGGTTCCGCGGCCGCGCTGGCTTCCTTCGAGGCGCCGCTGGCGATCGGCACCGATACGGGCGGCTCGATCCGCCAGCCCGGCGCCGTCACCGGCACCGTCGGGGTCAAGCCCACCTACGGCAGCGTGTCGCGCTACGGCCTGATCGCCCTGGCTTCGAGCCTGGACCAGGCCGGCCCGGTGACGCGCACGGTGCTGGACTCGGCGCTGCTGCACGAGCTCATCGGCGGGCACGACCCCCGCGACTCGACCTCCATCGACGAGCCCCTGCCGGACCTCGTCGAGGCTGCCCGGCAGGGCGCCGCGGGCGACCTGTCCGGGGTGCGCGTCGGCGTGGTGACCGAGCTGCAGGGCGAGGGCTACCAGGAGGGCGTGCAGGCTCGCTTCGACGAGTCGCTGGACATCCTGCGTGCCGCGGGCGCCGAGGTCGTCGAGGTCTCGTGCCCGCACTTCGAGTACGCGCTGGCCGCCTACTACCTGATCCTGCCGGCCGAGGCGTCCAGCAATCTCGCCAAGTTCGACGGGATGCGCTTCGGCCTGCGGGTCGAGCCCGAGGAGGGGCCGGTCACGGCGGAGCGCGTCATGGCGGCCACCCGGGGCGCGGGCTTCGGCGACGAGGTCAAGCGCCGCATCATCCTGGGTACCTACGCCCTGAGCGCCGGGTACTACGACGCCTACTACGGCAGCGCGCAGAAGGTGCGAACGCTCATCCAGCAGGACTTCGACGCGGCGTTCGAGAAGGTCGACGTACTGGTGTCCCCGACGGCACCCACGACCGCGTTCAGGCTGGGCGAGAAGCTCGACGACCCGCTGGCGATGTACCTCAACGACGTCGCGACGATCCCGGCCAACCTCGCCGGCATCCCGGGCATCTCGGTCCCGAACGGTCTGACGGCCCCGCCCGAGGGGGGCGCCGAGCTGCCCACGGGGTTCCAGATCCTCGCCCCGGCGAAGGCCGACGACCGCCTGTACCGGGTCGGTGCCGCGCTCGAGGCGGCGCTCGAGAAGTCCTGGGGCGGCCCCCTGCTCGACCGCGCGCCCGAGCTCGGCTGAMTDLTRLSAAVLAEKLRAREISSVDLTQAFLDRIASVDDSVHAFLHVDADAALATARDVDARREAGEDLHPLAGVPIAVKDVVVTKGQPSTAGSKILEGWIPPYDATLVEKIRAAGMPILGKTNMDEFAMGSSTEHSAYGNTHNPWDLERIPGGSGGGSAAALASFEAPLAIGTDTGGSIRQPGAVTGTVGVKPTYGSVSRYGLIALASSLDQAGPVTRTVLDSALLHELIGGHDPRDSTSIDEPLPDLVEAARQGAAGDLSGVRVGVVTELQGEGYQEGVQARFDESLDILRAAGAEVVEVSCPHFEYALAAYYLILPAEASSNLAKFDGMRFGLRVEPEEGPVTAERVMAATRGAGFGDEVKRRIILGTYALSAGYYDAYYGSAQKVRTLIQQDFDAAFEKVDVLVSPTAPTTAFRLGEKLDDPLAMYLNDVATIPANLAGIPGISVPNGLTAPPEGGAELPTGFQILAPAKADDRLYRVGAALEAALEKSWGGPLLDRAPELGNANANANANA
AK018_066121497gatB_1COG0064Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit BGTGACCCAGCTGGTCGACTACGCCGACGCGGTCCGACGGTTCGACCCGGTGCTCGGCATCGAGGTGCACGTCGAGCTCGGCACCCGCACCAAGATGTTCTGCGCGGCCGAGGTGGAGTTCGGCGGCGAACCCAACACGCAGACGACGCCTGTCAGCCTCGGGCTGCCCGGCGCGCTGCCCGTGGTCAACGGCACGGCCGTGGAGTACGCGATCCGGATCGGCCTGGCGCTGAACTGTCAGATCGCGGAGTCGTGCCGGTTCGCCCGGAAGAACTACTTCTACCCGGACGTACCGAAGAACTTCCAGACGTCCCAGTACGACGAGCCGATCGCGTTCGACGGCTGGCTCGACGTGGAGCTCGAGGACGGCTCGGTCCACCGGGTCGAGATCGAGCGCGCCCACATGGAGGAGGACGCCGGCAAGAACACGCACGTCGGCGGCACCACGGGGCGGATCCACGGCGCCGAGTACTCCCTGGTCGACTACAACCGGGCCGGCATCCCGCTGGTGGAGATCGTCACCAAGCCGATCACCGGCGCGGGCGACCGCGCTCCCGAGGTCGCCCGCGCCTACGTCCAGGCGCTGCGGGACATCTTCCGGGCGCTCGACGTCTCCGAGGCGCGCATGGAGCGCGGCAACGTGCGCGCCGACGTCAACGTCTCCCTGCGCCCGACCGCGCAGGACCCGCTGGGCACCCGCACCGAGACCAAGAACGTGAACTCGTTCCGGTCCGTGGAGCGCGTGGTGCGGCACGAGATCTCGCGCCAGGCCGCCGTCCTCGACGCCGGCGACGCCATCGTGCAGGAGACGCGGCACTGGCACGAGGACACGGGCGTGACGACGTCGGGCCGCGTGAAGTCCGACGCCGAGGACTACCGCTACTTCCCCGAGCCCGACCTCGTGCCGGTCGAGCCGTCGCGCGAGTGGGTCGAGGAGATCCGTTCCACGCTGCCGGAGCTGCCGCAGGCTCGCCGTCGTCGGCTGCAGACCGAGTGGGGCTACGCCGACGCCGAGATGCGGGACGTGGTCAACGCGGGTGCCGTGGAGCTCATCGAGTCGACCGTCGCCGCCGGTGCGACGCCGGCCGCCGCGCGCAAGTGGTGGATGGGTGAGCTGGCCCGCCGGGCCAAGCAGGACGAGGTCGAGCTGGCCGAGCTGCCGATCACCCCGGCCCAGATCGGCGAGCTGCAGCGGCTGGTCGACGACGGCCGCATCAACGACAAGATCGCCCGACAGGTGCTCGACGGCGTGCTCGCCGGTGAGGGCGACCCGCAGGCGGTCGTCACAGCCCGGGGCCTGGAGGTGGTCTCCGACGATGGTCCGCTGCTCGCCGCCATCGACGAGGCGCTGGCAGCCCAGCCCGACGTCGTCGAGAAGGTCCGTGGCGGCAACCAGGGCCCGGTGGGGGCCATCATCGGCGCGGTGATGAAGGCGACGCGGGGCCAGGCGGACGCGAAGCGCGTGCGCGAGCTCGTCCTGGAGAGGATCGGCAGTTGAMTQLVDYADAVRRFDPVLGIEVHVELGTRTKMFCAAEVEFGGEPNTQTTPVSLGLPGALPVVNGTAVEYAIRIGLALNCQIAESCRFARKNYFYPDVPKNFQTSQYDEPIAFDGWLDVELEDGSVHRVEIERAHMEEDAGKNTHVGGTTGRIHGAEYSLVDYNRAGIPLVEIVTKPITGAGDRAPEVARAYVQALRDIFRALDVSEARMERGNVRADVNVSLRPTAQDPLGTRTETKNVNSFRSVERVVRHEISRQAAVLDAGDAIVQETRHWHEDTGVTTSGRVKSDAEDYRYFPEPDLVPVEPSREWVEEIRSTLPELPQARRRRLQTEWGYADAEMRDVVNAGAVELIESTVAAGATPAAARKWWMGELARRAKQDEVELAELPITPAQIGELQRLVDDGRINDKIARQVLDGVLAGEGDPQAVVTARGLEVVSDDGPLLAAIDEALAAQPDVVEKVRGGNQGPVGAIIGAVMKATRGQADAKRVRELVLERIGSNANANANANA
AK018_06613591hypothetical proteinTTGAGGCCGCCGGTCCTGGCCGGGGAGATGGTGCGGCTGCGGCCGATCGAGGCCCGTGACGCCGACCGGCTCTGGGAGTCGTTGCACGACGCCGAGGGCATGCGCCTGACGGGGACGACGGCGACGTTCAGCCGCGAGCAGATCGACGACTGGGCGGCGAGCGTCGCCGACCGGGACGGTCGCCTGGACTGGGCGATCGTGCCCGGCGCGGTCCGGGACGGCGAGCCGGTCAGCGACGAGCTGATCGGCGAGATCGTGCTCAACGAGATCGACCCCGTCAGCCGCAGCGCGAACCTGCGCCTGCAGATGCTCCCGGACTACCGTGGCCGCGGGTACGGGCGGGAGGCGATCGAGCACGTGCTGCGGTTCGCGTTCGACGCCGCGCGCGAGGACGGCGGCCCGCGCCTGCACCGGGTGGGCCTCGACGTGCTCAGCATCAACCCGCGGGCCAAGGCGCTGTACGCGTCGCTCGGCTTCGTGGAGGAGGGGCGCCTGCGCGACGTCTACCGGGACGGCGACTCCTGGGCGGACGCGGTCGTGATGAGCGTCCTGGAGGACGAGTTCCGCGACCTGCAGGCCGCCGCGGGCTAGMRPPVLAGEMVRLRPIEARDADRLWESLHDAEGMRLTGTTATFSREQIDDWAASVADRDGRLDWAIVPGAVRDGEPVSDELIGEIVLNEIDPVSRSANLRLQMLPDYRGRGYGREAIEHVLRFAFDAAREDGGPRLHRVGLDVLSINPRAKALYASLGFVEEGRLRDVYRDGDSWADAVVMSVLEDEFRDLQAAAGNANANANANA
AK018_066141377phrB_1COG0415Deoxyribodipyrimidine photo-lyaseATGCCGACGTCCGTGATGTGGTTCCGCCGCGACCTGCGCCTCGCCGACAACCCGGCGCTGGTCGCCGCCGTCGAGTCCGCCCGGGACGACGACGCCGACGTCGTCGGCCTGTACGTGCTCGACGACGCGCTGTGGTCGCGCGCGGGCGCCAACCGGCTCGCCTACCTGCTGGACTCGCTGCGCGCCCTGGACGCGGCGTGCGACGGACGGCTGGTGGTCCGCCGGGGCGACCCGCGCGCCGTCGTGCCCGCCGTCGCGCGCGAGGCCGGAGCACGGGAGGTGCACGTCGCCGCCAGCCACGAACCCTACGGCCGACGGCGGGACGACGGCGTCGAGGAGGCGCTCGGCCGGGACGGGGCCGCCCTGGTGCGCACCGGGTCGGCCTACGCCGTCTCCCCCGGTCGCCTGCTCACCGGGTCCGGCACCCCGTACCGCGTGTTCACCCCGTTCCGGAACGCCTGGCTGGACCACGGCTGGCCGTCACCGGCGCGCCGGCCCCGCGAGATCCCCTGGGCCGCGCTGGACGGCGACGACCTGCCGGACGGTCCGGGACCGACCGCGCACCTGCCGCGGGCCGGTGAGGAGGCCGCCCGGCGGCGCTGGCACGACTTCGTCCGCGACGGGCTCGCGGAGTACGACGCCGGGCGTGACCGACCGGACCGGGCCGGGACGTCGGCGATGTCCGTCCACCTGCGCTGGGGCGAGATCCACCCGCGCACCATGCTCGCCGACCTCGCCGCCGCGCAGCGCGACGGCGCCCCGTCCGACGACGTCGCCACCTTCCGCTCCGAGCTCGCCTGGCGCGAGTTCCACGCCGACGTGCTCCACCACCGGCCGGCCGCCCGGACCCGGTCGGTGCGCGCCGTCGTCCCCGAGGACTCCTGGACCACGGGCGAGCAGGAGAGCCGATGGTTCGACGCCTGGGCCGCGGGGCGGACCGGCTACCCGTTCGTCGACGCGGGCATGCGCCAGCTGCTGGCCACGGGGTGGATGCACAACCGTGTCCGGATGGTCGTGGCGTCGTTCCTCGTCAAGGACCTGCACGTGCGCTGGCAGCGCGGAGCGGAGCACTTCATGGCGCACCTGGTGGACGGCGACGTCTCCCAGAACCAGCTCAACTGGCAGTGGGTGGCCGGCAGCGGGTTCGACGCCGCGCCGTACTTCCGGATCTTCAACCCGGTCACCCAGGGCGAGAAGTTCGACCCCGACGGGGTCTACGTGCGGCGCTGGGTGCCCGAGCTGGGCGACGTGCCCGGACGGGCGGTGCACCAGCCGTGGAAGCTCGACGCACCGCCCGCCGGCTACCCGGAGCCGCTCGTCGACCACGCCCACGAACGACGGGTCGCTCTCGACGACTTCCAGCGGGCCAAGGACTAGMPTSVMWFRRDLRLADNPALVAAVESARDDDADVVGLYVLDDALWSRAGANRLAYLLDSLRALDAACDGRLVVRRGDPRAVVPAVAREAGAREVHVAASHEPYGRRRDDGVEEALGRDGAALVRTGSAYAVSPGRLLTGSGTPYRVFTPFRNAWLDHGWPSPARRPREIPWAALDGDDLPDGPGPTAHLPRAGEEAARRRWHDFVRDGLAEYDAGRDRPDRAGTSAMSVHLRWGEIHPRTMLADLAAAQRDGAPSDDVATFRSELAWREFHADVLHHRPAARTRSVRAVVPEDSWTTGEQESRWFDAWAAGRTGYPFVDAGMRQLLATGWMHNRVRMVVASFLVKDLHVRWQRGAEHFMAHLVDGDVSQNQLNWQWVAGSGFDAAPYFRIFNPVTQGEKFDPDGVYVRRWVPELGDVPGRAVHQPWKLDAPPAGYPEPLVDHAHERRVALDDFQRAKDNANANANANA
AK018_066151521dtpT_1COG3104Di-/tripeptide transporterATGAGTGCGTCCGACGGCGAGCAGCCCGCAGCGTTCGAGCGTTCGGCCGACCGCGCGTTCTTCGGCCAGCCCCGCGGCCTGATGACGCTGTTCACCACGGAGCTGTGGGAGCGGTTCAGCTACTACGGGATGCGCGCCATCCTGGTGCTCTACATCACCGACGCCGTCGTCAACGGCGGGCTCGGGTACGACGAGACCACCGGCGAGGCCATCGGCTCGGTCTACGGCAGCTCGGTCTACCTGCTGTCCATCGTGGGCGGCTGGCTCGCGGACCGGGTCATCGGCGCCCGGCGCTCGGTGCTGTACGGGGGTGTGGTGATCGCGGCGGGCCACGTGTCCCTGGCGATCCCGCAGGAGTCCTTCACCTGGCTCGGGCTCGTCCTCGTGGCGCTCGGCACCGGCCTGCTCAAGCCGAACGTGTCGGCGATGGTCGGCGAGCTCTACGACCGCGACGACCCGCGCCGGGACAGCGGCTTCTCGATCTTCTACATGGGCATCAACCTCGGCTCGCTGTTCGCCCCCCTGATCGTCGGGACGGTCCAGCGCGTCTGGGGCTACCACGCCGGGTTCTCGGTCGCCGCGGTCGGGATGGCGATCGCCCTGGTGTTCTTCGTCCTCGGCCGCCGCCACCTGCACGGCGCGGGTGACGCGGTGCCCAACCCGGTCCAGCCCGAGGAGCGCTCCGGGATCGCGCGGATGCTCGCCCTCGTCGTCGTCGGCGTCGCCGTGATCTACCTGATCGCCGTGGTCGTCACCGGGTCGTGGGGCGGCACCACGTTCGTCGACGCGCTGAGCTATCTCGCCCTGGTCACCCCGGTCGTGTACTTCGTGATCATGTACCGGTCGCCGAAGGTCCTGGCGACCGAGCGGCCGCGCCTGCTGGCCTACATCCCCCTGTTCGTCGCCGCGATGCTGTTCTGGATGATCTTCGAGCAGGCAGCGACGACGCTGACCACGTTCGCCCGGGACCGCACCGAGCTGACGGTGCTCGGCCTCGAGGTCAGCCCCGCGTTCTTCCAGTCGGTCAACCCCGCCTCGATCATCCTGCTCGCCCCCGTGTTCGCCTGGCTGTGGCAGCGCACGGGCGGGCGTCCGCCGACGCCGTACAAGTTCGCGATGGGGCTCGCGCTGGCGGCGCTGTCGTTCCTGTTCCTGTCCGGGGCGTCCGCCGTCGTCGGCGACGACCGTGCCCCGGCGTGGGTGCTCATCGTCGTCTACGTCGTGCAGACCCTCGGGGAGCTGTGCCTGTCCCCGGTGGGTCTGGCGGCGACGACGCTGCTGGCGCCGCAGGCGTTCCGCGGGCAGGCGATGGCGCTGTGGTTCCTGGCCAACGCCTCCGGCCAGGCCATCACCGCCCAGCTCGTCCAGGCGACCGCCGACGTCTCCGACACCGCCTACTTCGGCTGGATCGGCGTGGTGGCGCTGGCGGTCGCCGGGCTGATGTGGGCGCTGTCGCCGTGGGTGATGCGGCACATCCGGGCGGCCGACGAGGCGGAGGGCGTGCACACCGCCGGAGCGTGAMSASDGEQPAAFERSADRAFFGQPRGLMTLFTTELWERFSYYGMRAILVLYITDAVVNGGLGYDETTGEAIGSVYGSSVYLLSIVGGWLADRVIGARRSVLYGGVVIAAGHVSLAIPQESFTWLGLVLVALGTGLLKPNVSAMVGELYDRDDPRRDSGFSIFYMGINLGSLFAPLIVGTVQRVWGYHAGFSVAAVGMAIALVFFVLGRRHLHGAGDAVPNPVQPEERSGIARMLALVVVGVAVIYLIAVVVTGSWGGTTFVDALSYLALVTPVVYFVIMYRSPKVLATERPRLLAYIPLFVAAMLFWMIFEQAATTLTTFARDRTELTVLGLEVSPAFFQSVNPASIILLAPVFAWLWQRTGGRPPTPYKFAMGLALAALSFLFLSGASAVVGDDRAPAWVLIVVYVVQTLGELCLSPVGLAATTLLAPQAFRGQAMALWFLANASGQAITAQLVQATADVSDTAYFGWIGVVALAVAGLMWALSPWVMRHIRAADEAEGVHTAGAPGPT0021010_922DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021010-TC_POT-K03305NANA
AK018_06616546hypothetical proteinATGCACGAGACCGCCACCACCCACGCCCCGACCGATCCGACGAGCGGGCCCGTCAGCTCCCCGGCAGCACGCCGGGCCCTCGCGTGCTGCCGGCTGCTGCTCGGCGTCGTCTTCCTGTGGCCCGCGCTCGACAAGGTCTTCGGACTCGGCCACGCCACCACCCCCGAGCGGTCGTGGATCGCCGGGAGCTCCCCGACCGCGGGCTACCTCACCCACCTCGACACGCCGCCGGCCGCGCTGTTCGCCGCGCTCGCCGGACCCGTCACCGACGTGCTGTTCGTCGCGGCCATGGCCGGCACCGGGCTGGCGCTCCTGCTCGGCATCGGACTGCGGGTCGCCGCCGTCGCCGGTGGGCTCGTGATGGCGATGCTGTACCTGGCGGCATGGCCGTTCGCCGCCGGGTCGCACAACCCGGTCGTGGACGAGCACCTCGTGTACGTGGGCCTCCTGGCCGCTCTGGCCCTGACGCGGTCGGGCGACACCTGGGGCCTCGGTCGTGCGTGGGCGGCCTCGGGGGTCCCCGGAGCCCGGACCTGGATGCGCTGAMHETATTHAPTDPTSGPVSSPAARRALACCRLLLGVVFLWPALDKVFGLGHATTPERSWIAGSSPTAGYLTHLDTPPAALFAALAGPVTDVLFVAAMAGTGLALLLGIGLRVAAVAGGLVMAMLYLAAWPFAAGSHNPVVDEHLVYVGLLAALALTRSGDTWGLGRAWAASGVPGARTWMRNANANANANA
AK018_066171863ilvD_3COG0129Dihydroxy-acid dehydrataseATGAGCCGCCCCCTGCGTTCGCGCACGTCGACCCACGGCCGCAACATGTCCGGAGCCCGCGCCCTGTGGCGCGCCACGGGGATGGGGTCGGAGGACTTCGGCAAGCCGATCGTCGCGATCGCCAACTCGTACACCCAGTTCGTCCCGGGGCACGTGCACCTCAAGGACATGGGCGACCTCGTCGCGGGAGCCATCCGCGAGGCCGGGGGAGTGGCCAAGGAGTTCAACACCATCGCCGTCGACGACGGCATCGCGATGGGTCACGGCGGCATGCTCTACTCGCTGCCGAGCCGCGACCTCATCGCCGACTCGGTCGAGTACATGGTCAACGCGCACTGCGCGGACGCCCTGGTGTGCATCTCCAACTGCGACAAGATCACCCCGGGCATGCTCAACGCCGCGCTGCGGCTGAACATCCCCGTGGTGTTCGTCTCCGGCGGCCCGATGGAGGCCGGCAAGGCCGTCGTCGCCGACGGGGTGGCGAAGACGAACCTCAACCTCATCAACGCGATCAACTACTCGGCCGACGAGAACGTCTCCGACGAGGCGCTGGCGAAGGTCGAGGAGAACGCCTGCCCGACCTGCGGCTCCTGCTCCGGCATGTTCACGGCGAACTCGATGAACTGCCTCACCGAGGCCCTCGGCCTGTCGCTGCCGGGCAACGGCTCGGTCCTGGCCACGCACGCCGCGCGCAAGGAGCTCTTCCTCGAGGCCGGCCGGACCGTCGTCGAGCTGGCGAACCGCTACTACGACGGCGAGGACGACACCGCGGCGCCGCGCGGGATCGCCACCAAGGAGGCGTTCGCGAACGCGATGGCGCTCGACGTCGCGATGGGCGGCTCGACCAACACGGTGCTGCACGTGCTCGCCGCCGCGCAGGAGGCCGAGGTCGACTTCACGCTCTCCGACATCGAGGAGATCTCGCGCCGGGTGCCCTGCCTGAGCAAGGTCGCGCCGAACCACCCGAACTACCACATGGAGGACGTCCACCGGGCGGGCGGCATCCCCGCGCTGCTCGGCGAGCTGCACCGGGCCGGCCTGCTCGAGAAGGACGTGTCCAGCGTGCACACGCCGACGCTGCAGGAGTGGTTGGACGACTGGGACGTGCGCGGTGGCAACGCCACCGAGCGCGCCCTCGAGCTGTTCCACGCCGCACCCGGCGGGGTGCGCACCACGCAGGCCTTCTCCACGCAGAACCGGTGGGAGTCCCTCGACACCGACGCCGCGGGGGGCTGCATCCGCGACGTCCAGCACGCCTACACCGTCGACGGCGGCCTGGCGGTGCTGCGCGGCAACCTCGCCGTGGACGGCGCCGTGTTCAAGACCGCGGGCGTCGACCCCGACGTGTTCCACTTCCGGGGCCGGGCGCTCGTGTGCGAGTCGCAGGACGAGGCGGTCGAGAAGATCCTCACCAAGCAGGTCGAGCCCGGGCACGTCGTCGTGGTGCGTTACGAGGGACCGGCCGGCGGCCCGGGTATGCAGGAGATGCTCTACCCGACCTCCTTCATCAAGGGCCGCGGTCTGGGCAAGGTCTGCGCGCTGATCACCGACGGCCGCTTCTCCGGCGGCTCGTCCGGCATCTCCATCGGGCACGTCTCCCCGGAGGCTGCCGCCGGCGGGCTCATCGGCCTGGTCGAGGACGGCGACGAGATCGAGATCGACGTCGACTCGCGTTCCATCCGCCTCGACGTCCCCGACGAGGTGCTCGCCGAGCGTCGCGCCGCGATGGAGGCCTCGGAGAACCCGTGGCAGCCGAAGGACCGCGACCGCTACGTGTCCCCGGCGCTGCAGGCGTACGCCGCGATGGCGACCAGCGCCGACAAGGGCGCCGTGCGGGACGTCTCGCTGGTCGCGCGTCGCTGAMSRPLRSRTSTHGRNMSGARALWRATGMGSEDFGKPIVAIANSYTQFVPGHVHLKDMGDLVAGAIREAGGVAKEFNTIAVDDGIAMGHGGMLYSLPSRDLIADSVEYMVNAHCADALVCISNCDKITPGMLNAALRLNIPVVFVSGGPMEAGKAVVADGVAKTNLNLINAINYSADENVSDEALAKVEENACPTCGSCSGMFTANSMNCLTEALGLSLPGNGSVLATHAARKELFLEAGRTVVELANRYYDGEDDTAAPRGIATKEAFANAMALDVAMGGSTNTVLHVLAAAQEAEVDFTLSDIEEISRRVPCLSKVAPNHPNYHMEDVHRAGGIPALLGELHRAGLLEKDVSSVHTPTLQEWLDDWDVRGGNATERALELFHAAPGGVRTTQAFSTQNRWESLDTDAAGGCIRDVQHAYTVDGGLAVLRGNLAVDGAVFKTAGVDPDVFHFRGRALVCESQDEAVEKILTKQVEPGHVVVVRYEGPAGGPGMQEMLYPTSFIKGRGLGKVCALITDGRFSGGSSGISIGHVSPEAAAGGLIGLVEDGDEIEIDVDSRSIRLDVPDEVLAERRAAMEASENPWQPKDRDRYVSPALQAYAAMATSADKGAVRDVSLVARRPGPT0001875_536DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0001875-ilvD-K01687NANA
AK018_06618504hypothetical proteinGTGCGCGTCGTCGATCTCACGGCGCAGGACGTCGACGCGGTCGAGCTGCTCTTCGCCGACGACGGCGGATACTCGCGTCGCGTCCTCGGGCGGGCGCCGCGCCGCCACGACGCGGTCGACGTCCTCACGGCCCGTCCGCCGGGGACGGACCCCGCGGCGAAGACCGTGCTCGGGGCGATCGACGACACCGGAGTGCTCGTCGGGCTGATCGACGTGATCCGCGGGTGGCCCGGGCCGGGCGACGCCCATGTCGGCCTGCTGCAGACAGCCGCGAGCCGTCACCGGCAAGGACTGGGCCGGGCGCTGCACACGGCGCTGGAGGAGCGGGTCGCGCGGTGGCCGGAGATCTCCCGACTCCGGCTCGCCGTCGTCGACACCAACCAGGAGGCGGCCGAACCGTTCTGGCGTGCGCTCGGCTACGAGCCCACGGGAGACGTGAGACCGTTCGGGTCCGGGAGCGTGCGCAGCACCGCGCGCATCTGGTCCCGCCCGGTCGACCGGTGAMRVVDLTAQDVDAVELLFADDGGYSRRVLGRAPRRHDAVDVLTARPPGTDPAAKTVLGAIDDTGVLVGLIDVIRGWPGPGDAHVGLLQTAASRHRQGLGRALHTALEERVARWPEISRLRLAVVDTNQEAAEPFWRALGYEPTGDVRPFGSGSVRSTARIWSRPVDRNANANANANA
AK018_06619204hypothetical proteinATGGCCAAGTACGCGCGGGCCGGCATCGACCACTTCTGGCGCGTCGAGAACGACGACACCCCCGCCTCGACGGTGATCCACGTCTACGAGCTGGACGAGGCCACGAGCACCTACGTCCCGGTGACGATCGCCCGCGACACCCTCGAGCTCGACCGACCGTTCCCGCTGCGCATCGACGTCCCCGGGCTCTATCCGGCCGACTGAMAKYARAGIDHFWRVENDDTPASTVIHVYELDEATSTYVPVTIARDTLELDRPFPLRIDVPGLYPADNANANANANA
AK018_06620834murQ_2COG2103N-acetylmuramic acid 6-phosphate etheraseATGCGCCACGAACCTCCCCCTGCCACAGAACAGCGCCACCCCGACAGCACCCACCTCGACTCCATGACAGCCGAGCAGATGCTCACGCTCATGGACCACGAAGACCACTACGCGGTTCGGGCCGTGGCGAGCGCATCCACCCAACTTGCCACCGTGGCGCACCGAGTCGCCAATTCCTTTCAGGCGGGTGGACAAGTCATCATGCTTGGCGCTGGGACCAGCGGGCGGATCGCCGTGCAGGAAGTCGCCGAACTGCCACCGACCTTCGGGATAGCCCACGGCCGATTCAGCGCGCTCGTTGCGAGTGGAGTGTCGCTGGGCACCTCGACCGTCACGGCAAGCGAGGACGACACGCGCACGATCTCTGCCGAACTCGCAGCGCGCGTTGTTGGCCCAGGGGACGTCGTCATCGGCGTGGCGGCCTCCGGTACGACGCCCTTCGTCATCGCCGGGTTGAGGTCAGCTCGACAACTCGGCGCACTGACCGTGGGAATCGCCAACAACGAAGGCACACCCGTGCTGACCGAGTCGGACCTGCCGATCCTCCTGGACACCGGTCCAGAGGTGCTGACCGGGTCGACAAGGATGAAGGCCGGTACGGCCCAGAAGATCGCTCTGAACAGGATCACTACCGTCGCAATGGTTCTGTCCGGCCGTGTCACCAGCAATTACATGACCGAGCTCACCGGTAGCGTCGAGAAGCTCCGCGAACGAGCGGTGCGGATCGTCTGCGACCTCGCGGGGGTTGGCGAAGTGCGGGCGCGCCACGTGCTTGAGGAGCACGACTGGCAGGTGCGAAGTGCCCTCAGTGCGGTGGTGGCAGGAGTCGAGTAGMRHEPPPATEQRHPDSTHLDSMTAEQMLTLMDHEDHYAVRAVASASTQLATVAHRVANSFQAGGQVIMLGAGTSGRIAVQEVAELPPTFGIAHGRFSALVASGVSLGTSTVTASEDDTRTISAELAARVVGPGDVVIGVAASGTTPFVIAGLRSARQLGALTVGIANNEGTPVLTESDLPILLDTGPEVLTGSTRMKAGTAQKIALNRITTVAMVLSGRVTSNYMTELTGSVEKLRERAVRIVCDLAGVGEVRARHVLEEHDWQVRSALSAVVAGVEPGPT0019040_1999DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTIONCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0019040-murQ-K07106NANA
AK018_06621876murKCOG2971N-acetylmuramic acid/N-acetylglucosamine kinaseATGACTGCCGTGTTCGTCGGGATCGACGCGGGCGGATCGAGCACGCGCGCCGTCGCGGTGCGTGACGGCCAGGTCGTCTTCGAGGGCCTCGGCGGTCCGGGCAACCCGGGAACGGTGTTGGGGCCTGAGCTCCGCGACTCGTACGCAACCGCCCTACGCGAATGTCCGACCCCGAATCGGATTGCCGCCTGCGTCGCAGGAGCCGGTTCGAAGGCGCGGCGCAATGAGATTCGGGATCTCTTGCACGACCTCGCCCCGGATGCAGAGGTCGAGGTGTTCCCGGACTACTGGGCGGCGCTCGAGGCGAGTCCCGACGCGGATGTGTGTGTCGTGGCGGGCACGGGGTCTGTGGTCTGCTCGCGCGACAGCGGCGGCGAAGTCCATGTCAGTGGGGGGCGTGGGTGGATTCTCGGTGACCCGGGATCTGCCTCGTGGCTCGGTCGTGCGGTCCTGGCCCGGTACGTCGAGGACCCCGACGGTTTCGACGGCGAATCAACAGTTCACCTCCGAGCAATCTACGGGACCGGTTCCTGGGTGCAGATCGTCCAGAAAGTTCATCGCGCGGCCGTACCACCGGCGACGCTCGCACTCGCAGCGCCCGTCCTGACCCGCCTCGCAAGCCGCGGTGTTGAATGGGCCAGAATCGAGCTCGATGAGGCAATGACGGCCCTGGCTCGGACGACGGTCTGCCACGTCGACCGATTCGTCCAATCGACGACGCCACAGGTTGCACTGTTCGGCGGGGTCTGGAACGCGCCCGTCGCCGTCGAGTCGTTCCGCAAGACTGTCGATGCGCAAACCCATGCGTGGTCCGTTTTGCCGTCGCGAGACGACCCTCTCGAGGGTGCCGTCCGCCTAGCTGCCAATGGAGACTGAMTAVFVGIDAGGSSTRAVAVRDGQVVFEGLGGPGNPGTVLGPELRDSYATALRECPTPNRIAACVAGAGSKARRNEIRDLLHDLAPDAEVEVFPDYWAALEASPDADVCVVAGTGSVVCSRDSGGEVHVSGGRGWILGDPGSASWLGRAVLARYVEDPDGFDGESTVHLRAIYGTGSWVQIVQKVHRAAVPPATLALAAPVLTRLASRGVEWARIELDEAMTALARTTVCHVDRFVQSTTPQVALFGGVWNAPVAVESFRKTVDAQTHAWSVLPSRDDPLEGAVRLAANGDNANANANANA
AK018_066221038hypothetical proteinGTGTCTGACACCGACATCACGTACGAGCCCGTTCCGCTGGTCGGGACCGAGGATGTGTCACCAGAAGCGCTTCGCGAGCAGATCGACGCCTGGGTGTCGTCTGCACCGCTCACCGACCTGGTGGCGGCCGAGGCCGGCCATGCGACGGGTTCCCTCCGCGAACGACTGGCCTACCTCGACGGCCTGAGCGCCGCGGCCTGGGACTTCCGCGCCCGGGCGTCCGTGGCCGGCAAGGTCGCCGAACGCAACCAGGTGAACTCCGTCGTTGCGCCAGATCGTGAGCGGCCCGTCCTGGCCGCGGCGACGGCGCTCGGGTTGGTCGAACCGACAGCCCCCCGCTTCTCAAACTACGACCACATCCTGTCTCTAGGAGGCCTGGTCCGCGCCTGCTTGTGGCGCACGCAGTATGCCGCCTACCTTCAGCGCGAGGTCGTCGATGCCCCCATGGTCACCGCGTTGACCGCGTTCCGGAGGCTTGCCCGCAACGAAGCCAACCCCGCCCAGGACGAGCCCACGCTGCTTACCGAGGCGGGCGTACCGATCCGTGAGTTCGAGGCCGAGGTCATGGAAGACGCACTCGTGGCAGAGTTCGGCCTCGGCGAGCTCAGCGTGGTCGCCGCCGGCGACGGACAGCTCGACGCGGACCGATTCCGTGTCGCCCTCGGGGATGCCGAGGGCGTGACCGCAACCCTGGTCGCCGCGCCCGACCCGAGATCCGAGTATCGAGCGGACACCGCGACCACCATGCGCTACTGGGCTTCCCAGGTCGCCAACCTCGAGCCCGGCCAGCGCATCCTAAACGTCACCTCATCGATCTATGTCCCCTTCCAGCACGCTGCCGCGGTGCAGAACCTCGCCCTGCCGTACGGGGTCGTTATCGACACCGTGGGGATCGACCACGACGTGATCAGACCTGTCCCGACACCCCAGGAGTTCACCGGCGTGAACTATCTTCAAGAGGTGCGGTCTGCCATCCGCGCCTACCGAAACCTGCTTGGCGCTCTCGACGCGTCCGATGCACAGGGGGATGTGTCATGAMSDTDITYEPVPLVGTEDVSPEALREQIDAWVSSAPLTDLVAAEAGHATGSLRERLAYLDGLSAAAWDFRARASVAGKVAERNQVNSVVAPDRERPVLAAATALGLVEPTAPRFSNYDHILSLGGLVRACLWRTQYAAYLQREVVDAPMVTALTAFRRLARNEANPAQDEPTLLTEAGVPIREFEAEVMEDALVAEFGLGELSVVAAGDGQLDADRFRVALGDAEGVTATLVAAPDPRSEYRADTATTMRYWASQVANLEPGQRILNVTSSIYVPFQHAAAVQNLALPYGVVIDTVGIDHDVIRPVPTPQEFTGVNYLQEVRSAIRAYRNLLGALDASDAQGDVSNANANANANA
AK018_066232130hypothetical proteinATGGAACGCAGGGTTCACCCCGTCCAACTGCTGACCCGGACAGGTGTGGGCCTGCACTATCGGTCTGTGACGTCCACAGTTGACCCGATGAGCACGGCTCTCCGAGCGCTGGTGAAGAGCTACCGAAGGGCGTTGGTCGGCCAGGGCCCGGACGGATGGGCATTCTCGCTGCATCCGGACGCGGAGCCCTTGCGGCCGGCGATCACGGCGCAGCCCGGCAGGCATCCGCTCGCACAGACCCGTGACCTCCTTGACGAGGTCCTGGGCGTCTACGCGGCTGCTGGTCGCGACCGCGACTCGAAGGTGGCTGTCGCCCGGGCTGTGTGGGGCCTCGATGCGCACCCCGTCTCGGTCAGGCACGCGTGCGAGTCGCAGCGCATCGGCGACAAGACGCGCGGGGCAGAGCGCTGGAGCGACAGCGTGATCACTGCTCGCGCGGTGCTCGATTCACTCCGGCCACGTATCCACGGCGCGTTGACCGCGCCGTTTTCCTACACGCTCCTCGACCCCGAAGGGACATTCCCGGCGACGATGCTCGCGCACGCCATCGACATCGTCGCTGACCCGAGGGCGGTCGATATCGTCGGCTACCGTAGGGCGCTCGAACTGGACGTGACGGCGAGCGTGTATGACGTCGCGGCGGAGCTGATGGAGCGGTGGTACGGTGCCGCGGAGACGAAGCATCTGCTCTACTTCCGCCTCCACGCGTACCACGCGTGGGTTGGCCGGTTCCGCCTGGCTCCAGGGCTGGCTCCAGCGCACGGTGCGCTGAAGCCGACAGGCGACGAGTATCCAGCGGCAGCCCGGGCCGCTTGGACGATCTGTCTCGACCGTGCCCTCACGGTTGAGATGGAAGTCGTCCGCGAGCGCCATGTGCGGCGGCAGAGGCTCAAGGCGCTGCCCGCTTTCGACGCGTCCCCGGGTCCACTGGCCCGCGGAATGGTCCTCATTCCGCCATCCGTCCAGCAACAGTCGGTCCTGACTCCCGACGTCGAAGCTCTTGAGCAGCTGGCACTCTTCACCCGACGCCGAATCGGGCAGGCGGGGTTTGGCCCCAGCGTCAAGATATACGTCGCCATGCGCCGCACGCTTCTTGACTCCGTCCGGTTCCCGGAGGAGCGCGCCCGGATAGCGCTGGCCGACCATTCGGTCCATTGGGACACGGTTGTCAGCGAAGACCCAGAGCTGGAGCTGTTCGTGCGTCGCGAGCTGAGCGAGCGCAGTTCAGGCGCCAAACCCGGCCTCGCCACTCATCGGCATCGCGCACGAGCCATCCTGGCGAACAAGCGCAACGACTGGACGTCCGCGCACGCCTTCGCACTGCAGGGGCTACGTGAGCTCTACGGGTACGTGAGCACTGGAGTGCTCACTGACCCGGCCGAGTTCCTCGCGGCCGCCGAACAGCTATGGCTTGCGCTCGCCGGAATCTCCGTTCGTCAGATCGAGTGGCACCTCACCCAGGGGCGGGCATCCTCCCAGTTCCTCGCCCAGCACTGCGGTACCGCTCTTAATGCCTCCCGACGGGCGCTCGAAGCCCTCGAGGAGCTTGACGGCGCTCGAGCCCTCGATTCCGACAAGGGTCGCGGGCTCCCGGAGCGTCGGGGCGAAAGCGGACGGATCGACAACCGCACCTGGTGGGTGCGAGCGCTGATTACGCGGCTTCGGGTGGGACTTGCCGTTCACACGGCCGTCAAGTCGCGTCACATCCTCGAGCGGGACCTGTGCGCCAGCACCTCGCTCGGACTGACCGAACAGGACCGACGCATGACCGACGTTGGCTATCTGTCCGAGCTGTACCGCGCGCTCTGCTCGCTGGATACCCTGACCCCGGCCCACCGCCAGGAGCTCGTCTCCCTCAGCCTGTGGCTCGCGCTGATCAAGGGAGGGGAACTGCCGCCCGTGTCGCCGATATCTTCCGCCGTCGCCGACGGACTGAGCCTCATCCTTAGTACTCAGGGGCAGTTCACGCCGTTCGTCGCCGCTCTCCGCGAGTCCGGGAGCGACGCCCTCCTGTTGAGCTGGCTCCCTTCAGGCGGCGCCACCTTCAAGTACCTCGAGACGACGGGTGGCTACAAAGCCTTCCGAGACGAGCACGACCCGCACCGCCCAACGACGCCATCGCACGACTGAMERRVHPVQLLTRTGVGLHYRSVTSTVDPMSTALRALVKSYRRALVGQGPDGWAFSLHPDAEPLRPAITAQPGRHPLAQTRDLLDEVLGVYAAAGRDRDSKVAVARAVWGLDAHPVSVRHACESQRIGDKTRGAERWSDSVITARAVLDSLRPRIHGALTAPFSYTLLDPEGTFPATMLAHAIDIVADPRAVDIVGYRRALELDVTASVYDVAAELMERWYGAAETKHLLYFRLHAYHAWVGRFRLAPGLAPAHGALKPTGDEYPAAARAAWTICLDRALTVEMEVVRERHVRRQRLKALPAFDASPGPLARGMVLIPPSVQQQSVLTPDVEALEQLALFTRRRIGQAGFGPSVKIYVAMRRTLLDSVRFPEERARIALADHSVHWDTVVSEDPELELFVRRELSERSSGAKPGLATHRHRARAILANKRNDWTSAHAFALQGLRELYGYVSTGVLTDPAEFLAAAEQLWLALAGISVRQIEWHLTQGRASSQFLAQHCGTALNASRRALEALEELDGARALDSDKGRGLPERRGESGRIDNRTWWVRALITRLRVGLAVHTAVKSRHILERDLCASTSLGLTEQDRRMTDVGYLSELYRALCSLDTLTPAHRQELVSLSLWLALIKGGELPPVSPISSAVADGLSLILSTQGQFTPFVAALRESGSDALLLSWLPSGGATFKYLETTGGYKAFRDEHDPHRPTTPSHDNANANANANA
AK018_06624279hypothetical proteinATGCACCAGCCCAGCACCCGCAAGCCGCGCCGCCGCCGCGGCGTGATGACGATCAGCAACCACACCAGCGCGCGGTGCCCGCAGAGCGGGAGAATCCGCTACCGGGACCGTGCCACCGCCCGGGATGCCCTGGAGTCCTGCCGTTGGCGGCGTGAGCGGGACCTGGCCGCATCGTCGTCCAACCGCCGCAACGAGACGCGGATTTACCGATGCACGGAGCCCGGGTGCCACGGAGGTTTCCACCTGACGTCGATCGAGCGCGGCTGGGGGGTGGCCTGAMHQPSTRKPRRRRGVMTISNHTSARCPQSGRIRYRDRATARDALESCRWRRERDLAASSSNRRNETRIYRCTEPGCHGGFHLTSIERGWGVANANANANANA
AK018_066251428hypothetical proteinATGGCGACGAAGCCGAGCGGTGCCCTCACCGTGACCGCGGTGCACGACTACGTCGCGAGTTACACCGACGCGGACGTGACAACCCGCGCCCACACAGACGGCGCGGCGGCCGTGCACAACGCGGCGGTGTGGGGTGCCAACACCCACCCGTACACGGCGGACGAGATCTGCGCTGCGCACGAAACGACAGTCGAGCTCGTTGGTCACACGTTGCGGAAGACCGCGCAGGGCCTCACCGTGCGCATTCGTGAGGTCGCCGCCGGCCACGGGTTCCTCGTCAACGACGCGGTGCGCGCCATCGACGCCTGGCACACAAGCACCATCCACCTCGCCGAGGCACGCCACGTGCGCCGGCTCCTCGGGCTCGGCACGCCTAGCCAGCTCATCTGGCTCAAGCAGGCCGTGCTGTGGCTCGTTCTCTTCGCAGGAGACCTATTCCTGCTGGCCACCGCCTTCCAGACGCTCGGGCTGAGCGACGAACGGTGGGTGTCCTGGTTCCCGTTCGGCAACGACCTGTACGTCGCCGCTCTGGCGTCCGTGACCGTGCTGGCGGTCTCCGCGCACCAGTTCGGGATCGCGCTCAAGCATCTGCAACATGACAACGAACGCCGCCGCCTCGCCCCCGACGACCGAGCGCGCGACCGTCTACCCAAGACGTCCAGGACCCGCCTGGGGATCGCCACCTTCTTCATGGCGGTGGCGGGGGCCGTCCTGATCGGCATCGTGCAGATCCGCGTGGCTTACATGTCGGCGACAGACCAGCCGATGAACACGGTGTCGTTCACCCTGCTCCAGATCGGGCTGATCGGCGGGGCGGTGTACGTCGGCTTCCACTTCTGCGACCCGTCAGCCAAGGCCTGCCACGCCGCCGCCGCCGCAGAGACAACCGCCGCACGTGCCAAGAGCGCCGCCGTCGCACAACTAGTGGACGCGGTATCACAGCACAACATGGCGATCGACGAACTCGACGCCGAGATCGCCAACGCCGGGCACCACGTGCTCGCCGACGCGGCCAACGTCGTACGGCAGGTGGCCGGGCTCTACCCGGCGCAGGTCATCCTCGCCCAGCCCGAACCGGAGCACGAGGCGTTGTTCCCCCATGGCTTCCCCGCACCGGCCGCAGTGGAGAGCCACGAACTCTACCCGCGACTCGTCGGTCTCACCGACCTTCCGGCGTTCGCTCCGCTGTCCACGGGCGACGTCATCGCCCACGAAGCGCGCGCGATCGCCAGCGTCCGGGCGCGTGAGGCCGTCCTGCTCGCCATCGAGACCGGACGCCCCAACACGCCCAGCGGCGAGACCACGACATCGGAGACCGCCGCTGCCGACGTCGACGGCGAACTGCCCCACATCGGCAGCGCGGACAGTTCGCCGTCCACCTCCCGGGCAAGCGTGGACGAGCATGACGAAGGTGAGGCTGCGGCATGAMATKPSGALTVTAVHDYVASYTDADVTTRAHTDGAAAVHNAAVWGANTHPYTADEICAAHETTVELVGHTLRKTAQGLTVRIREVAAGHGFLVNDAVRAIDAWHTSTIHLAEARHVRRLLGLGTPSQLIWLKQAVLWLVLFAGDLFLLATAFQTLGLSDERWVSWFPFGNDLYVAALASVTVLAVSAHQFGIALKHLQHDNERRRLAPDDRARDRLPKTSRTRLGIATFFMAVAGAVLIGIVQIRVAYMSATDQPMNTVSFTLLQIGLIGGAVYVGFHFCDPSAKACHAAAAAETTAARAKSAAVAQLVDAVSQHNMAIDELDAEIANAGHHVLADAANVVRQVAGLYPAQVILAQPEPEHEALFPHGFPAPAAVESHELYPRLVGLTDLPAFAPLSTGDVIAHEARAIASVRAREAVLLAIETGRPNTPSGETTTSETAAADVDGELPHIGSADSSPSTSRASVDEHDEGEAAANANANANANA
AK018_06626783hypothetical proteinATGAACGCGAGCCAGCTCATCGGCCACACAAGCGTCGGAGCGCCGGCTCCGCGCATCCCCGCCGCACCGACCGGATCCTCGCCGGCACGCGCTGGGGCCAGGCCGATCGCCATCCCTCCCTTGTCGGGCGCGCCTCGCGAGGAGATCGCCGGCCGTGCACGGCGCACCGTGACCGCGTTCGCGATGGACCGCTCCGGGTCGATGTACTGGGCGTGGGGCGACCCGTCAGACATCTGCGGAGCCGCGGCCGAGAGCATCCTCGCCCTGCAACGGCGCTCGGGCGGGGGCAAGGCGCTGATCGTGCCCTGGGGCACCACCGCCCCAACCCAGCTGGTCACCGGCCCGATGGACGTTCACAAGGGCCGCAAGGCGCTGGCCCAGGCGCTTCGGACCCACTCGACACTCGGCGGCAACGACCTGCCAGCCGCGCTCCGGCGAGTACGCGAGCGCCTGCCCGAGCTCGGCCCCGACGACACGGCCGTCGTGTTCGTCCTCACCGACGGCATCGAGGACGTCACGCCCGCCATGCATGACGCCGTCCGCGCGCTGCCCGCCGGGTCCGTGCACGTCTGCCTCATCGACCGGACCGGTGGCTGCACCCCGGAGATGGAGGCCCGCTGGCGCACCGTCCCGTTCGGGACCTTTGCGCGGCTCCCACACCTCGACGTCCGAGCGATGACCGCGGAGATGACCGACATCTACGCCGCCGCCCTCGGGCTCATCGCCCCAGCCTCTCTACGCAACCCCACCCAACCGAAGCTCGCTTCCCGGAGACCACGATGAMNASQLIGHTSVGAPAPRIPAAPTGSSPARAGARPIAIPPLSGAPREEIAGRARRTVTAFAMDRSGSMYWAWGDPSDICGAAAESILALQRRSGGGKALIVPWGTTAPTQLVTGPMDVHKGRKALAQALRTHSTLGGNDLPAALRRVRERLPELGPDDTAVVFVLTDGIEDVTPAMHDAVRALPAGSVHVCLIDRTGGCTPEMEARWRTVPFGTFARLPHLDVRAMTAEMTDIYAAALGLIAPASLRNPTQPKLASRRPRNANANANANA
AK018_066271155palPeptidoglycan-associated lipoproteinATGAACCCTCCCCTCTCCAGCCGCCCCGCACTCGTACTCCTACTCAGCCTCGGACTCGGCCTCGGCCTCGCCGCATGCTCGTCCACCGACGACCCCGCTGCCACGCCCGCGGCCGCAACGTGCGGCCAGCCGGCGCCACCTGGCGCAGGCCCGACCGTCGCGATCCTCGGCCAGACCGGAGACGGCCTGGACTACTACGCCGACGACGCCCGCCTCATCATCGACGGCGCAACGGCGATGGGCGCCCGCGTCCTGGTCAGCGGCGTGGGTGACCCTGCCCAGCCCGCGACCACACCCAGCCTCCTCGCACAGACCGCCATGGTGGGCGAAGGGCCCAACACGCTGATGCGCGACAAGGACCTGCAGTGCAAAGTCGACCTCATCAACGAAGGTCTCGCAGATCTGCGCTCCGCGCCCGCAGCCACAGTGCACGACGTGTTCGGGGCGATCGTCACGCTCGCAGACACTCTCGGGCCTGAGACGGCCGAGGTCGACGTCGTCCTGCTCGCACCCGCCGCCAGCAACGCCAGCCCCGACCTGACCGACCCGGCAGTCGCCGCAGATCCGACGGGAGTGCTCAACCAGCTCGCCGAAGCGGGCCGCATCCCGCAATGCGCTAGCTGGTCACTACACCTCGTCGGACCCGAGGTCGCCGACAACCCAGCCTTGCGAGAGTTCTGGCGCGCCTACGCCCGGCGGTGCGGCGGCAAGCTCGTTGACTGGACAACACACCTGACCCAGTTCCCCGGCCCCCGCACAGAAATCGCCGAAGCCGACACCGCGCTGATCGAGGTCACGACCACGCAGGAGACCATCGAAGCCGACCTCAGCGGCGACGTGCTGTTCGACTCCCGTCAGGCCGTGCTACGACCGGAGGCCGAGGCCAGCCTGGTCGAACTCCTCCAGCTGGCCACGGGCAGCGAGGGCCGGGTCGACATCGTCGGCCACACCGATACACGAGGCAGGTCCGACGACAACAAGGTGCTGAGTGAGCGCCGCGCACAAGCCGTCGGCGGCTGGTTTGTCAGCCACGGCATCGATCCGGCACGGGTTCACGTCTCTGGGATGGGCGAAGCCGACCCCAGGATCGCCGACGCGTCCGACGACGCGGAGCACCAGCAGAACCGCCGAGTCACCGTCTCGATCCAGCGCTGAMNPPLSSRPALVLLLSLGLGLGLAACSSTDDPAATPAAATCGQPAPPGAGPTVAILGQTGDGLDYYADDARLIIDGATAMGARVLVSGVGDPAQPATTPSLLAQTAMVGEGPNTLMRDKDLQCKVDLINEGLADLRSAPAATVHDVFGAIVTLADTLGPETAEVDVVLLAPAASNASPDLTDPAVAADPTGVLNQLAEAGRIPQCASWSLHLVGPEVADNPALREFWRAYARRCGGKLVDWTTHLTQFPGPRTEIAEADTALIEVTTTQETIEADLSGDVLFDSRQAVLRPEAEASLVELLQLATGSEGRVDIVGHTDTRGRSDDNKVLSERRAQAVGGWFVSHGIDPARVHVSGMGEADPRIADASDDAEHQQNRRVTVSIQRNANANANANA
AK018_06628888IS3 family transposase ISBli17ATGAGCTACCCGCTCGTCCGAGAGCTCGCCGAAGACGGAATCCCCGTCGCGGTGACGTGCCGGGTCCTCAACCTTGCCCGCCAGCCCTACTACCGGTGGCTCGCCGCACCGGTCAGCGATCGCGAACTCGAGCAGGCCTATCTCGCCAACGCTTTGTTCGACGCTCACCGCGATGACCCGGAGTACGGGTACCGGCTCCTGGCCGACGAGGCCCGCGAGGCCGGCCACGTCGCGTGCGACCGCACGATGTGGCGGGTCTGCCGCGACGGGCGCTGGTGGAGCGTGTTCGGCAAGAAGCGTTCGAGGAACGGCAAGAGGCCCGGCCCGCCCGCGCACGACGACCTCGTCCGGCGCGACTTCACCGCGGCGGAGCCGAACGAGCTGTGGCTGACCGACATCACCGAGCATCCCACCAGCGCCGGCAAGGTCTACCTCTGCGCGATCAAGGACGTCTACTCCAACCGGATCGTGGGCTACTCCATCAGCGACCGCATGAAGTCCTCCCTGGCCGTCGCCGCGCTCGAGAACGCCGTGGCCAGGAGGGCCGTCGAGGGCCGCACGGTGGCCGGCTGCATCGTGCACTCCGACAGAGGCAGTCAATTTCGAAGCCGACGATTTCTGGCCGCGCTGCGCCGCCATGACCTGCGCGGATCCATGGGTCAGGTCGCCTCCGCGGGCGACAACGCCGCCATGGAGTCCTTCTTCGCGCTGCTGCAGAAGAACGTCCTGAACCGGCGCCGTTGGACCACCCGTGAGGACCTGCGCATCGCGATCATCACCTGGATCGAACGGACCTACCACCGACGCCGTCGCCAGACCCGCCTCGGACGATTGACCCCCATCGAGTACGAAGCCATCATGACCACTCAGGTCGCACTCGCCGCCTGAMSYPLVRELAEDGIPVAVTCRVLNLARQPYYRWLAAPVSDRELEQAYLANALFDAHRDDPEYGYRLLADEAREAGHVACDRTMWRVCRDGRWWSVFGKKRSRNGKRPGPPAHDDLVRRDFTAAEPNELWLTDITEHPTSAGKVYLCAIKDVYSNRIVGYSISDRMKSSLAVAALENAVARRAVEGRTVAGCIVHSDRGSQFRSRRFLAALRRHDLRGSMGQVASAGDNAAMESFFALLQKNVLNRRRWTTREDLRIAIITWIERTYHRRRRQTRLGRLTPIEYEAIMTTQVALAANANANANANA
AK018_06629288COG2963Insertion element IS6110 uncharacterized 12.0 kDa proteinGTGCCCAGACCCCACCCGAAGGAGTTCCGCGACGACGTCGTGGCGATCGCCCGCCAGGACGAGACTCCGATCAAGCAGATCGCGAAGGACTTCGGCATCTCCGAGTCGTGCCTGCGCAACTGGCTCCACCAGGCCGACGTCGAAGACGGCGCCAAGCCCGGGGTGACGAAGTCGGAGTCGGCCGAGCTGCGCGAAGCGAAGAAGCGTGTGCGCCTGCTGGAGCAGGAGAACGAGGTGCTGCGCCGCGCGGCGGCGTACTTCGCCCAGGCGCACCTGCCGGGAAAATGAMPRPHPKEFRDDVVAIARQDETPIKQIAKDFGISESCLRNWLHQADVEDGAKPGVTKSESAELREAKKRVRLLEQENEVLRRAAAYFAQAHLPGKNANANANANA
AK018_06630543hypothetical proteinGTGCCGGCCGTCGACCCGGCGGACTGGTGGGTGGTCGCCGAGACGCCGGAGCGGCTCGCACTGATCCGCGAGCTCGACGCCGTCGACGACCGTGGTGCCGGCGACGTGCGCACGCACGAGATGCTGACCGTCGACAACCTCGACGAGCATGCCGTCGACCCGGTCGAGGGCTGGATGATGGGCTCGTTCGGGACGTGCGCGCTGCGCCGCGACGTCGGCGGCGAGGTCGCGACGGTGACCCTCGACCCGGACCGCCCGCCGGACCCGACGTCGCGTGAGCTGAACCTGCTGGTCACGGAGATGTCGTGCAGCTCCGGCGAGGACGCCGCGGGCCGCGTGCGGGTGGTCGAGCAGCGAGAGACGACGACGGCGGTCCGGCTGACGGTCGTCGTCGACCCGCGCGGCGGGGACCACAGCTGCCCGTCCAACCCTGCGACCCCCTACGTCGTCGAGTTGGACGAGCCGCTGGGGGAGCGGGTGGTCCTCGACGCGGCCGTGGAGCCGCCGCCCGAACTCACGATGCCGGACGCGGCGGCGCCGTAGMPAVDPADWWVVAETPERLALIRELDAVDDRGAGDVRTHEMLTVDNLDEHAVDPVEGWMMGSFGTCALRRDVGGEVATVTLDPDRPPDPTSRELNLLVTEMSCSSGEDAAGRVRVVEQRETTTAVRLTVVVDPRGGDHSCPSNPATPYVVELDEPLGERVVLDAAVEPPPELTMPDAAAPNANANANANA
AK018_06631384hypothetical proteinATGCAGTTCGACACCGGCTCGCCGATCTGGGGGCAGCTCGTCGCCGAGTTCTCCCGCCGGATCGTCACCGGCGCCTGGCCCACCAGGAGCCGCATCCCCGGCGTCCGGGACCTGGCGGGCGAGCTGGGCGTCAACCCCAACACCGTCCAGCGGGCCCTCGCCGAGCTGGAACGCCAGGGCGTGTGCCGGTCCGAACGCACCGCGGGTCGGTTCGTCACGGCGGACACCGACCGGGTGGACGCACTGCGCGCCGAGCTGGCCCGAGACGCCGTCGACGGCTTCGTCCGCCGGGCCCGCGGCCTCGGCATGACCTCCACCCAGGCGCAGCGACTCATCGAGGAGCGATGGCATGACCACCACACCGACCCTGCGGCAGGAACGTGAMQFDTGSPIWGQLVAEFSRRIVTGAWPTRSRIPGVRDLAGELGVNPNTVQRALAELERQGVCRSERTAGRFVTADTDRVDALRAELARDAVDGFVRRARGLGMTSTQAQRLIEERWHDHHTDPAAGTNANANANANA
AK018_06632750COG1131Multidrug efflux system ATP-binding proteinATGACCACCACACCGACCCTGCGGCAGGAACGTGACCCCGCCATGACCGACGACGCCGCACTCGTCAGCGTCCGCGGCCTCACGGTCCGCTACGGCCGCCGCACCGCCCTGGACGGCCTCGACCTCGACCTGCCCGCCGGGCAGATCGTCGGCCTGCTCGGCGAGAACGGGTGCGGCAAGTCCACCCTGCTCAAGACCCTCGCCGGCCTGTACGCCGACCACGACGGCGAGGTCCGGATCGCCGGTCACCGGCTCGGGCCGCAGAGCAAGGCTGTCGTGTCGTACCTGCCGGACCGCAGCGCCCTGCCGGAACGGGCCCGCGTGCGCTACTGCCTCGACCTGTTCGACGACTTCTTCCCCGACTTCGACCGCGCCCGGGCCGAAGCCCTCCTCTCCCACTTCCGCCTCGACCCCGCGATGCGGCTCAAGGAGATGTCGAAGGGCATGCAGGAGAAGGCGCACATCTCGTTGGCGATGTCCCGCCGCGCCCAGGTCTACCTGCTCGACGAACCCATCTCCGGCGTCGACCCAGCCGCCAGGGCGAGCATCCTCGACGGCATCCTGCACATGCTCGACGCCGACTCCCTGCTCGTCGTCGCCACGCACCTCGTGCACGACCTCGAGACGTCCCTGGACTCCGTGGTGATGATGCGGCACGGCCGCGTGCTGCTCACCGGCGACGTCGACGACCTGCGCGCCGAGCACGGCGCCAGCCTGGAGACGATCTTCCGAGAGGTGTACGGCTCATGAMTTTPTLRQERDPAMTDDAALVSVRGLTVRYGRRTALDGLDLDLPAGQIVGLLGENGCGKSTLLKTLAGLYADHDGEVRIAGHRLGPQSKAVVSYLPDRSALPERARVRYCLDLFDDFFPDFDRARAEALLSHFRLDPAMRLKEMSKGMQEKAHISLAMSRRAQVYLLDEPISGVDPAARASILDGILHMLDADSLLVVATHLVHDLETSLDSVVMMRHGRVLLTGDVDDLRAEHGASLETIFREVYGSPGPT0006725_26696DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
AK018_06633822hypothetical proteinATGATCACCCTGCTCAAGCACGAGTACCTGCAGACCCGGGCGATGCTCGGGGTCGTCGTCGGCATCTCCGCCGTGATCACCCTCGCGGGCGCCCTCCTCGCCGCCACACGCTGGCCCGTCATCGCCGTCCTCGGCGAGAGCGTCGCACTGATGTCGACGTTCCTCCTCGTCCCTCTGGCCCAGGTCCTCCTCGCCGCGCAGTTCTGGCGCTCCGGCTTCGGCCGCGGCGGCTACCTGACCCAGACGCTGCCGCAGAAGGGCACCACGATCTACTGGGCCAAGATGCTGTGGGCCTGGCTGGTCTCCCTGATCGGCGTCGTGGTCGCTCTCGCGATCGCTCTGCCGGCCGGAGCACTGATCATGCGCGGCACCGGCCAGGAGCAGCCGATCCTCGCGTCGCTGCGCGAGGGCTGGTCGACCCTGGCCGAGCTCGCACCGGGGTGGGGTGTCCCCGCCGCGCTCGCGACCGTCGCCGCGCTGGTCCTGGTGTGGCCCACGCAGTACTTCTTCGCGGCCTCCATCGGGAGCCAGGCCCCGCTGAACCGCCTCGGCGTGGGTGGACCGATCCTCGTCTGGGTCGCGACCTACGTCGTCGTCCAGGTGATCACGTTCGTCTCGTTCGCCACCGTCCCCGTCGCCGTCGGATTCAGCGGTGACCGGCTCACCCTCGAGACCTTCGACCTGTTCGCCGAGATGAGCGCCGGCAGCACCGGCCCGGCCGACGTCATGCCCATCGGCTTCCTCCCGGCTCTCCTGCTGACCGCGGTGGGCTGCGTCGTCTGGTCGCTGCACTCGTGGAAGCGACGGGTCTCGCTCGTCTGAMITLLKHEYLQTRAMLGVVVGISAVITLAGALLAATRWPVIAVLGESVALMSTFLLVPLAQVLLAAQFWRSGFGRGGYLTQTLPQKGTTIYWAKMLWAWLVSLIGVVVALAIALPAGALIMRGTGQEQPILASLREGWSTLAELAPGWGVPAALATVAALVLVWPTQYFFAASIGSQAPLNRLGVGGPILVWVATYVVVQVITFVSFATVPVAVGFSGDRLTLETFDLFAEMSAGSTGPADVMPIGFLPALLLTAVGCVVWSLHSWKRRVSLVNANANANANA
AK018_06634567hypothetical proteinATGTTCGACCAGTCCCTGAGCGACCTGCTCTGGCTCACCCCCACCGAGGCGCTCGCCGTCGTCCTCGCGACCACCGGCATGTACCTCGCGATGATGCTGCTGGTGCGGGTGATCGGGCAGCGGATGCTCGGGGCGATGTCGAACTACGACCTGGTCGCGATCATCGCGTTCGGCGCGATCCTGGGGCGCGCGGCGCTGGGCGACGTCGCCGTGCTCGGCGGCGGGCTGGTCGCGATGGGCACGCTCATCGCTCTGCAGTCCATCGCGGGTGCCCTGATCGTGCGCCCCCTCGGGTCCCGGGCGATCACCATGAACCCGATCGTTCTGATGGCCGACGGCAAGGTCCTGCCCGACCAGCTGCGGCGGGCCCACGTGGCCGACCGAGAGCTGCGTTCCACGCTGCGGCTCGCCGGCATCCACCGGTACGACGACGTCGCCGTCGCCCTGCTCGAGTCCACGGGTGCGATCAGCGTGCTGCGGCGCGGGACGCCGATCGACGCCGAGCTCCTCGACGGGGTCCACGGCGAGGAGCTCGTGCCCGAGCACCTCGTCGCGCGCCCCGCCTGAMFDQSLSDLLWLTPTEALAVVLATTGMYLAMMLLVRVIGQRMLGAMSNYDLVAIIAFGAILGRAALGDVAVLGGGLVAMGTLIALQSIAGALIVRPLGSRAITMNPIVLMADGKVLPDQLRRAHVADRELRSTLRLAGIHRYDDVAVALLESTGAISVLRRGTPIDAELLDGVHGEELVPEHLVARPANANANANANA
AK018_06635219hypothetical proteinATGAGCAATCCTCAGACCGCACCCCGCAAGCTGTACCGCCCGAGCCACGGCCGCATGATCGGCGGCGTGTGCGCCGGCGTCGCCGACTACTTCGGGTGGAGCCGCGGACTCGTCCGGCTCCTGACCGCGCTGTCGGTCATCATCCCCGGCCCGCAGTTCCTCGCGTACATCGTGTTCTGGATCCTGATGCCGGACGAGCGCAAGGCGCTCGCCGGCTGAMSNPQTAPRKLYRPSHGRMIGGVCAGVADYFGWSRGLVRLLTALSVIIPGPQFLAYIVFWILMPDERKALAGPGPT0027520_1486DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-PspC-PspB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027520-toxin_pspC-K03973NANA
AK018_066361884hypothetical proteinATGTATCGATTCAATCCGAGGATGGACCACAGTCGCTCCTGGTGGGCAGCGCTCGCCGACCGCATGCTCACCGCCGTCGACCCCTACCGTTCCGCAGGGGGCGCGCTGATCACGCTGCCCGGTCCGACGGGCGCGAACAGCCGGGAGATCGCCGGCCTCGAGGGCTTCGCGCGGACCTTCCTGCTCGCCGGGTTCCGCCTCGCGGGGGAGCGCGGCGACGACCCGCTCGGGTACGCCGAGCGGTACGCCGCCGGGCTCGCGGCCGGGACCGAGCCGGGCTCGCCGGAACGGTGGGTCCGCCTCGCCGAGCACGGCCAGGCCAAGGTGGAGGCCGCCTCGACCGCCCTGATCCTCGACATGACCCGGCCCTGGCTGTGGGACCGCCTCGACCCGCTCGTCCAGGAGCAGGTCGTGGACTACCTCGCCGACGCCGTCGGGGACGACACCTACCCCCGCATCAACTGGGTGTGGTTCCGCCTCGTCGTCCAGACGTTCCTGCGCTCCGTCGGCGGACCGCACTCGCTCGACGAGATGCGCGCGGACCTCGCCACCCACGACACGTTCGCCCGCGCCGACGGCTGGATGGCGGACGGCCCCGAACGGTCCTTCGACCACTACAACGGCTGGGCGCTGCACACCTACCCGGCGCTCTGGGCGCGGATGGCCGGCGCCGTCGACCTCGCCGCCGAGCGTCGCGACCGGGATGTCGCGATGCTCGACCGGTTCCTCGACGACGCCCTCGTACTCGTCGGCGGGGACGGCTCACCGCTGCTGCAGGGCAGGTCGCTCACCTACCGCTTCGCGGCCGCCGCGCCGTTCTGGGTCGGCGCGCTCGCCGAGGTGCCCGGCCACTCCCCGGGCCGGCTCCGCCACGCCGCGTCCGCCGTCGTCGGCCACTTCGCGGACCGGGGCGCGCCGGACGACGACGGCCTGCTCACCCTGGGCTGGCACCACACCTGGCCGCGGATCGCGCAGGCCTACTCCGGGTCCGGGTCGCCGTACTGGGCGTCCAAGGGGATGCTCGGCCTCGCGCTGCCGGCCGACCACCCCGCCTGGACGGAGCCCGCGGAGCCGCTGCCCGTCGAGACGGGGGACGTCCTGCGGGCGGTCCGCGCCCCCGGGTGGGTCGTCAGCGCGACGCGGGACGACGGCGTTGTGCGCGTGGTCAACCACGGCACCGACCATGCGCTGCCCGGCGCCGACGTCGGGGACTCGCCGCTGTACGCGCGGCTCGGCTACTCGACCGCGACGAGCCCGTGGCTCGACGACGCGAGCTGGGACGCCCCGTCCGACCAGTCCGTGGTGCTGGTGGACGCCGCCGGCCGGGCGACCCACCGTGCCGGGTTCGAGACGCTCGGCGACCCGCGGGTCCGCGACGGGGTCGGCGTCGCGGGATCCACGGGGCCGGCGCGCTGGATGGACCTCGAACCCGGCCAGGCCGACCACGGCTCGGGGCGGCGTGGCGCGTCGAGCGTCGCCGGCGTGCTCACCGTCGTCTCCCTGGTCCGCGGTCCCTGGGAGGTGCGGTGGGTGCGCGTCGAGTCGGTGCCCGACGGCGGTGCCGCGGCCGCGCTGCGCGTGAGCGGGTGGCCGGTGGTCGCCGGGGTTGGGCTGGTCTCGCGCCTGACGCCGCTGCTCGGCCGGTGGGACGCCGAGGAGCTCCGCGGTGACGACGTGAGCCCGCTCGGTCGCGACGCCCGCGTCCCGGTGCTGGCCGGACCGGTCGTGGTCGGGGAGTGGGTCGCCGTGCTCGTCACGCTGCGGGGCGCCCGGGCCGGCGCGGCCCAGGGGGAGGCGGGCGTCGACCTCGACGGGACCACCGCCGTCGTGCGCTGGCCCGACGGGACCCGGACCCGCACGCCGCTCCCCACCCCCTCGACGTAGMYRFNPRMDHSRSWWAALADRMLTAVDPYRSAGGALITLPGPTGANSREIAGLEGFARTFLLAGFRLAGERGDDPLGYAERYAAGLAAGTEPGSPERWVRLAEHGQAKVEAASTALILDMTRPWLWDRLDPLVQEQVVDYLADAVGDDTYPRINWVWFRLVVQTFLRSVGGPHSLDEMRADLATHDTFARADGWMADGPERSFDHYNGWALHTYPALWARMAGAVDLAAERRDRDVAMLDRFLDDALVLVGGDGSPLLQGRSLTYRFAAAAPFWVGALAEVPGHSPGRLRHAASAVVGHFADRGAPDDDGLLTLGWHHTWPRIAQAYSGSGSPYWASKGMLGLALPADHPAWTEPAEPLPVETGDVLRAVRAPGWVVSATRDDGVVRVVNHGTDHALPGADVGDSPLYARLGYSTATSPWLDDASWDAPSDQSVVLVDAAGRATHRAGFETLGDPRVRDGVGVAGSTGPARWMDLEPGQADHGSGRRGASSVAGVLTVVSLVRGPWEVRWVRVESVPDGGAAAALRVSGWPVVAGVGLVSRLTPLLGRWDAEELRGDDVSPLGRDARVPVLAGPVVVGEWVAVLVTLRGARAGAAQGEAGVDLDGTTAVVRWPDGTRTRTPLPTPSTNANANANANA
AK018_066371944hypothetical proteinATGAGCACAGGCACCTTCACCGGCCCCCTGCACGCCGCGTTCGCGCCGGTGCGTGCGCAGGCCGCGTTGCGCGAGCTGCTCCGCCCCGCCGACTCGGCACTCCCGGTCCCGCCGGCGACGGAGCGGTCGGTGTGGGCCGAGGAAGGCAGTGCCGACCGGGCGACTCGGCAGGCGCTCCGCGAGCAGGCCGCCGCAGAACGGCCGAACCCGTGGCCCACCCCGCTGGCCAGCACCGCGGCGCGCGTGCACCTCGACGGCGACCGGGACCAGCACGAACAGCTCGTGTTCGCCCGCTCCCACCGCCTCACCCGCGCCGTCGTCGCCGCGGCGACGACACCCGAGCCCGGGTGGATCGACGCCGTCGCCGACGGCCTGTGGCAGCTCTGTGAGCAGTCGACCTGGTGCTGGCCCGCCCACGACGACTCCGTGCGCCGTCGCGGCCGGGTGCTGACCGACGTCACCGACCCGGTCCTCGACCTCGGAGCGGCGGAGGTCGCCGCCCAGCTCGCCTGGACCGACCACCTGCTCGGCGCCGCGCTCGACGACCGCTACCCCGGTCTGCGCGAGCGGCTCCGCCTCGAGACGCGACGCCGCGTGCTCGACCCGTTCGTCGCCCGGCGCGACTGGCACTGGCTCGGCCTCGACGGCGACATCCACAACTGGAACCCCTGGATCCACTCCCAGGTGCTGGTCAGCGCCCTGCGGATGCTCGACACGCCGGACCAGGTCGCACTGCGCGCCGACGTCGTCGACCTCGTGATCGAGGGCCTCGACCGGTTCGTCGCCGCGCTGCCCGCCGACGGCGCGATCGACGAGGGCTACTCGTACTGGTGGAACGGCGCCGGGCGGGCGCTCGAGGCCGTCGAGCTCCTCGCCCACGCGACCGGCGGCCGGCTCGACGCGCTCGGCCGGCACGACGACGGCGCACCCCTCGTCCCCGCACTGCACGCCACCGTCGCGTTCCCGCACCGCATGCACCTCGGCGGCGAGTGGTACGTCAACGTGGCCGACGGCGTCGCCCGGCCCTGGCGCGAGCAGGCCTGGGCCGTCCTGCACCGCGCCGCGCGACGGGCCGGCGACGAGGACGCGCTCGCCCACGCGGCGTCCCACCGCACCGACGGGGCCCCCGTCGCCGACGACGGCGACGGCCTCGGGCGGCTCCTCCAGGCGCTCGTCGACCCGACCTGGTCCGCCGCCCGCGGCCGCTCCCCGCTGCCCGGCACGGTCCGCCTCGACTCGGTGCAGATCATGCTCGCCCGCGAGCGCCCCGGTTCGGCCCGGGGGCTGACGCTGGCCGTGAAGGGCGGCCACGACGCCGAGGCCCACAACCACTGCGACGTCGGGTCGTTCGTCGTCGCGTCCGACGGCGTGCCCGTCGTCGTCGACCCGGGCCGCCCGACGTACACGGCGCAGACGTTCGGCCCCGACCGGTACGCGATCTGGACCATGCGGTCGGCCTGGCACAACCTGCCGACCGTCGCGGGGGTCGAGCAGGGGGTGGGTGCGGAGTTCCGGGCACGGGACGTCGAGGTGTCCGACGGCGGCACCACGGTGGCGATGGACCTCGCGGCGGCGTACCCGGTCGACGACCTGACGGCGTGGCGGCGCACCGCACGGATCGACCGCGACGCCGGGACCGTCGTCGTGCACGACGCGTGGGAGCTGCAGGCAGCGACGACGGCCGAGGCCGCGACCACCGTGCACCTGGTGCTCGCCGGCGAGGTGCGGCTCGAGCCGGGTGCGGCCGTCGTCGTCCCGCTCGAGGGTGCCGCGCCGCTGCGGCTCGCCTGGGACCCGGCCGTCCCCGCCACGGCGGTGCGCCGGGACCTGGACGACCCGATGCTCAGCCGGGTCTGGGGGGACCACCTGACCCGGCTCGACCTGGACGTCGGCGCCCGACGGCAGCTGACGGTGACCGTAGCTCCGACGGCGGCCCTCTCCTGAMSTGTFTGPLHAAFAPVRAQAALRELLRPADSALPVPPATERSVWAEEGSADRATRQALREQAAAERPNPWPTPLASTAARVHLDGDRDQHEQLVFARSHRLTRAVVAAATTPEPGWIDAVADGLWQLCEQSTWCWPAHDDSVRRRGRVLTDVTDPVLDLGAAEVAAQLAWTDHLLGAALDDRYPGLRERLRLETRRRVLDPFVARRDWHWLGLDGDIHNWNPWIHSQVLVSALRMLDTPDQVALRADVVDLVIEGLDRFVAALPADGAIDEGYSYWWNGAGRALEAVELLAHATGGRLDALGRHDDGAPLVPALHATVAFPHRMHLGGEWYVNVADGVARPWREQAWAVLHRAARRAGDEDALAHAASHRTDGAPVADDGDGLGRLLQALVDPTWSAARGRSPLPGTVRLDSVQIMLARERPGSARGLTLAVKGGHDAEAHNHCDVGSFVVASDGVPVVVDPGRPTYTAQTFGPDRYAIWTMRSAWHNLPTVAGVEQGVGAEFRARDVEVSDGGTTVAMDLAAAYPVDDLTAWRRTARIDRDAGTVVVHDAWELQAATTAEAATTVHLVLAGEVRLEPGAAVVVPLEGAAPLRLAWDPAVPATAVRRDLDDPMLSRVWGDHLTRLDLDVGARRQLTVTVAPTAALSNANANANANA
AK018_06638522ymdB_2COG2110O-acetyl-ADP-ribose deacetylaseGTGCGCATCACCGCCGAGCAGGGCGACATCACCGAGATCCAGGTCGACGCGATCGTCAACGCCGCGAACTCCTCGCTGCTGGGCGGCGGCGGGGTGGACGGCGCGATCCACGCCGCGGCGGGCCCGCGGCTGCTCGAGGCGTGCCGGGAGCTGCGGCGCACCACGCTCCCCGACGGGCTGGGCGTGGGCGACGCCGTCGCGACGCCGGGCTTCGACCTGCCGGCCGCCTGGGTGGTTCACACGGTGGGCCCGAACCGTCATCGCGGCGAGACCGACCCGGCCCTGCTGGAGTCGTGCTTCACGACGTCCCTCGGGGTCGCCGCGGACGCGAAGTCGCGGACGGTCGCGTTCCCCGCGGTGAGCGCGGGGGTCTACGGGTGGGAGGCCGACGACGTCGCGCGGATCGCGGTGGACGCGGTCCGCGCGTGGGACGAGGAGAACCCGGCCGCCGTGGACGAGGTGCGGTTCGTGCTCTTCAGCGCACGCGTGCTGGACGCCTTCGCCGCCACCCTGGAGACCTGAMRITAEQGDITEIQVDAIVNAANSSLLGGGGVDGAIHAAAGPRLLEACRELRRTTLPDGLGVGDAVATPGFDLPAAWVVHTVGPNRHRGETDPALLESCFTTSLGVAADAKSRTVAFPAVSAGVYGWEADDVARIAVDAVRAWDEENPAAVDEVRFVLFSARVLDAFAATLETPGPT0027680_1449DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-darG-darT_TOXIN-ANTITOXIN_SYSTEM,PGPT0027680-antitoxin_darG-K23518NANA
AK018_066391215kasA_2COG03043-oxoacyl-[acyl-carrier-protein] synthase 1ATGCGGCGGACGGTGATCACGGGGATCGGGGCGATCACGCCCCTCGGGCTCACGGCGGAGGAGACCTGGTCGTCCCTCGTGGCGGGCCGCACCAGCGCAGCGCCGCTCGACGACGACTGGCCCGCCGACCTCCCCGTGCGCATGGGTGCCCGCGTGGACGACTCCTTCGCGGACGCCCTGGCCGTGCGCGAGCTGCGCCGCCTCGACCGGGGCGAACAGCTCGCGCTCGCCGCCGGGCGGCAGGCCTGGGCCGACGCCGGCACCCCGGAGGTGGAGCCCGAACGCCTCGGCGTCGCCGTGGGAACCGCCAACGGCGGGTTCGGCACGACGCTCGGCCAGCACCGCCAGCTCATCGACCGGGGACACCGTGCGGTCAGCCCGCACGCGGTGACGATGGTGATGGCCAACGGACCCGCGGCCTGGCTGTCGATCGATCTCGGGGCGAGGGCGGGCGCCCGCGCACCCGTCAGCGCCTGCGCCGCGGGCGTCGAGGCGATCCTGGCGGGCCGGTCGATGATCCGCGCCGGGGAGGCCGACGTCGTCGTCTGCGGCGGCAGCGAGGCGACGATCGTCGACCTCTGCGTCTCGGCGTTCGCGCGCTCGCGCGCCATGTCCACCCGCAACGACGCGCCGGAGCGTGCCTCGCGGCCGTTCGACGTGGACCGCGACGGGTTCGTCATGGGCGAGGGCGCCGTGCTCGTCGTCCTCGAGGCCGAGGAGCACGCCCGGGCGCGCCGCGCCCGCCTGCTCGGCGCCGTCGACGGCGGGGCACTGACCTCGGACGCCCACGACATCGTCGGCGGCGAACCCGGCAACCAGGCCCGCACCGTCTCGCTCGCGCTGCGCTCGGCGGGCCTCGCGCCGTCGGACGTCGGGCTCGTGCACGCCCACGCGACGTCCACCCCCGCCGGCGACCTCAACGAGGCCCGTGCCCTGCGCACGGTGTTCGGCGACCCGCCGCCCGTGACCGCCACGAAGGCCTCGACCGGTCACCTGCTCGGTGCGTCCGGGCCGCTCGGGGCGCTCGCCGCGCTGGGAGCCCTGGGCGCGTGGGGTGACGCCGTCGTGCCGCCGACGATCAACCTGGACCGTCAGGACCCGGAGGTCGATCTCGACGTGGTCACCGCGGCCCGACCGACGACGGCGCGGCACGCGCTGGTCGACGCGTTCGGGTTCGGCGGGCACAGCTCGGCGCTGGTGCTGTCGCGGTCCTGAMRRTVITGIGAITPLGLTAEETWSSLVAGRTSAAPLDDDWPADLPVRMGARVDDSFADALAVRELRRLDRGEQLALAAGRQAWADAGTPEVEPERLGVAVGTANGGFGTTLGQHRQLIDRGHRAVSPHAVTMVMANGPAAWLSIDLGARAGARAPVSACAAGVEAILAGRSMIRAGEADVVVCGGSEATIVDLCVSAFARSRAMSTRNDAPERASRPFDVDRDGFVMGEGAVLVVLEAEEHARARRARLLGAVDGGALTSDAHDIVGGEPGNQARTVSLALRSAGLAPSDVGLVHAHATSTPAGDLNEARALRTVFGDPPPVTATKASTGHLLGASGPLGALAALGALGAWGDAVVPPTINLDRQDPEVDLDVVTAARPTTARHALVDAFGFGGHSSALVLSRSPGPT0008360_7645DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
AK018_06640204hypothetical proteinATGGCCAAGTACGCGCGGGCCGGCATCGACCACTTCTGGCGCGTCGAGAACGACGACACCCCCGCCTCGACGGTGGTCCACGTCTACGAGCTGGACGAGGCCACGAGCACCTACGTCCCGGTGACGATCGCCCGCGACACCCTCGAGCTCGACCGGCCGTTCCCGCTCCGCATCGACGTCCCCGGGCTCTATCCGGCCGACTGAMAKYARAGIDHFWRVENDDTPASTVVHVYELDEATSTYVPVTIARDTLELDRPFPLRIDVPGLYPADNANANANANA
AK018_06641504hypothetical proteinGTGCGGGTCGTCGACCTCTCCTCGCACGACGTCGACGACGTCGTGGGGCTGTTCGCGGACGACGGCGGCTACTCCTGCCGCGTCGCGGGCCGGCCGGCCACGCGGCAGGACGCCGTCGACGCCCTCACGGCCCGTCCGCCGGGGACCGACCCCGCGGCGAAGACCGTCCTCGGCGCGTACGACGACGCGGGCGTGCTCGTGGGGCTGCTCGACGTGATCCGCGGGTGGCCGGAGGCCGACCACGCGCACGTCGGCCTGCTGCAGACCGCAGCGGGCCGGCACCGGCAGGGACTGGGGCGGGCGCTGCACGCGGCGCTGGAGCGACGGGCCGAGCGCTGGCCGGAGGTCACGACGCTGCGCCTCGCCGTCGTCGACGCCAACCGGGAGGTCGCCGAACCCTTCTGGCGCGCCCTCGGCTACGCGCCCACGGGAGACGTGAAGCCGTTCGAGTCCGGGAGCGTGCGCAGCACCGCGCGGATCTGGGCACGCCCGGTCGACCGGTGAMRVVDLSSHDVDDVVGLFADDGGYSCRVAGRPATRQDAVDALTARPPGTDPAAKTVLGAYDDAGVLVGLLDVIRGWPEADHAHVGLLQTAAGRHRQGLGRALHAALERRAERWPEVTTLRLAVVDANREVAEPFWRALGYAPTGDVKPFESGSVRSTARIWARPVDRNANANANANA
AK018_066421863ilvD_4COG0129Dihydroxy-acid dehydrataseATGAGCCGCCCCCTGCGTTCGCGCACGTCGACCCACGGCCGCAACATGTCCGGCGCCCGCGCCCTGTGGCGCGCCACCGGCATGGGGTCGGAGGACTTCGGCAAGCCGATCGTCGCGATCGCCAACTCGTACACCCAGTTCGTCCCGGGGCACGTCCACCTCAAGGACATGGGCGACCTCGTCGCGGGAGCCATCCGCGAGGCCGGGGGAGTGGCCAAGGAGTTCAACACGATCGCCGTCGACGACGGCATCGCGATGGGCCACGGCGGCATGCTCTACTCGCTGCCCAGCCGCGACCTCATCGCCGACTCGGTCGAGTACATGGTCAACGCCCACTGCGCGGACGCCCTGGTGTGCATCTCCAACTGCGACAAGATCACCCCGGGCATGCTCAACGCCGCTCTGCGGCTGAACATCCCGGTCGTGTTCGTCTCCGGCGGCCCGATGGAGGCCGGCAAGGCGGTCGTCGCCGACGGCGTGGCGAGGACGAACCTCAACCTCATCAACGCCATCAACTACTCCGCCGACGAGAACGTCTCCGACGAGGCGCTGGCGAAGGTCGAGGAGAACGCCTGCCCGACCTGCGGCTCCTGCTCCGGCATGTTCACGGCGAACTCGATGAACTGCCTCACCGAGGCCCTCGGCCTGTCGCTGCCGGGCAACGGGTCGGTGCTGGCCACGCACGCCGCGCGCAAGGAGCTGTTCCTCGAGGCCGGCCGGACCGTCGTCGAGCTGGCGAAGCGCTACTACGACGAGTCCGACGACACCGCGGCGCCCCGCGGTATCGCCACCAAGGAGGCGTTCGCCAACGCGATGGCGCTCGACGTCGCCATGGGCGGCTCGACCAACACGGTGCTGCACGTGCTGGCGGCGGCGCAGGAGGCCGAGGTCGACTTCACGCTGTCCGACATCGAGGAGATCTCGCGCCGCGTGCCCTGCCTGAGCAAGGTCGCGCCGAACCACCCGAACTACCACATGGAGGACGTCCACCGGGCCGGCGGCATCCCCGCGCTGCTCGGCGAGCTGCACCGGGCCGGGCTGCTCGAGAAGGACGTCTCCAGCGTGCACACCCCGACGCTGCAGCAGTGGCTGGACGACTGGGACGTCCGCGGCGGGAAGGCGACCGAGCAGGCCACCGAGATGTTCTACGCGGCACCGGGCGGCGTGCGCACGACGCAGGCGTTCTCCACGCAGAACCGCTGGGAGTCCCTGGACACCGACGCCGCCGAGGGCTGCATCCGCGACGTCCAGCACGCCTACACCGTCGACGGCGGTCTGGCGGTGCTGCGCGGCAACCTCGCGACCGACGGCGCGGTGTTCAAGACCGCCGGCGTCGACCCGGACGTCTTCCACTTCACCGGCCGGGCGCTCGTGTGCGAGTCGCAGGACGAGGCCGTGGAGAAGATCCTCACCAAGCAGGTCGAGCCCGGGCACGTCGTCGTCGTGCGCTACGAGGGCCCCGCCGGCGGCCCCGGCATGCAGGAGATGCTCTACCCGACCTCCTTCATCAAGGGCCGCGGTCTGGGCAAGGTCTGCGCCCTCATCACCGACGGTCGGTTCTCCGGCGGCTCGTCCGGCATCTCCATCGGCCACGTCTCCCCGGAGGCGGCCGCGGGCGGCGTCATCGGCCTGGTCGAGGACGGCGACGAGATCGAGATCGACGTCGAGTCCCGCTCCGTGCGGCTGAACGTGGCCGACGAGGTGCTCGCCGAGCGCCGTGCCGCGATGGAGGCCTCGGAGAACCCGTGGCAGCCGAAGGACCGCGACCGGTACGTCTCCCCGGCGCTGCGCGCCTACGCCGCCATGGCCACCAGCGCGGACAAGGGCGCGGTGCGCGACATCAACCTGGTCACGCGCCGCTGAMSRPLRSRTSTHGRNMSGARALWRATGMGSEDFGKPIVAIANSYTQFVPGHVHLKDMGDLVAGAIREAGGVAKEFNTIAVDDGIAMGHGGMLYSLPSRDLIADSVEYMVNAHCADALVCISNCDKITPGMLNAALRLNIPVVFVSGGPMEAGKAVVADGVARTNLNLINAINYSADENVSDEALAKVEENACPTCGSCSGMFTANSMNCLTEALGLSLPGNGSVLATHAARKELFLEAGRTVVELAKRYYDESDDTAAPRGIATKEAFANAMALDVAMGGSTNTVLHVLAAAQEAEVDFTLSDIEEISRRVPCLSKVAPNHPNYHMEDVHRAGGIPALLGELHRAGLLEKDVSSVHTPTLQQWLDDWDVRGGKATEQATEMFYAAPGGVRTTQAFSTQNRWESLDTDAAEGCIRDVQHAYTVDGGLAVLRGNLATDGAVFKTAGVDPDVFHFTGRALVCESQDEAVEKILTKQVEPGHVVVVRYEGPAGGPGMQEMLYPTSFIKGRGLGKVCALITDGRFSGGSSGISIGHVSPEAAAGGVIGLVEDGDEIEIDVESRSVRLNVADEVLAERRAAMEASENPWQPKDRDRYVSPALRAYAAMATSADKGAVRDINLVTRRPGPT0001875_536DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0001875-ilvD-K01687NANA
AK018_066431518dtpT_2COG3104Di-/tripeptide transporterATGACGGATTCCGCGGCCGGGTCGGGCCGCCCCGCCCAGCCGGCCGAGCGGTCCTTCTTCGGGCACCCGCGCGGGCTGCTGACGCTGTTCACCACCGAGGCGTGGGAACGGTTCAGCTACTACGGGATGCGCGCCATCCTGGTGCTGTACATCACCGACGCGGTGGTCGACGGCGGGCTCGGCTACGACGAGACGACCGGCAACGCGATCGGGTCGATCTACGGCAGCTCGGTCTACCTGCTGTCCATCGTCGGCGGCTGGCTGGCCGACCGCGTCATCGGTGCCCGGCGTTCGGTGCTGTACGGAGGCATCGTCATCGCCGCCGGCCACGTGGCCCTCACGGTCCCGGAGGCCGCGTTCACCTGGCTCGGCCTGGTCCTCGTGGCCACGGGCACCGGCCTGCTCAAGCCGAACGTCTCGGCGATGGTCGGCGAGCTCTACGACCGCCGCGACCCGCGCCGCGAGGCCGGCTTCTCGATCTTCTACATGGGCATCAACTTCGGGTCGTTGTTCGCACCGCTCGTGGTGGGCACCGTGCAGCGGCTCTGGGGCTACCACGCGGGCTTCCTCGTCGCCGCGGTCGGCATGGCGGTCGCCCTGGTCTTCTTCGTCGCCGGCCGCCGCTACCTCCACGGCGCCGGCGACGCCGTGCCGAACCCGGTCCGGCGCGAGGAGCGGGGCGCCATCGCACGGATCATGGTGGCGGTCGTCGCCGGCGTCGGTGTGCTCTACCTCGTGGCGGTCGCGGTCTCGGGCGGCTGGTCCGGAGGAGCGTTCGTCGACACCCTCAGCTACGTCGCCCTGGTGACCCCCGTCGTCTACTTCGTCGTGATGTACCGCTCGCCGAAGGTCACCGACACCGAGCGCCCGCGTCTGCTGGCCTACATCCCGCTGTTCGTCGCCGCCATGCTGTTCTGGATGATCTTCGAGCAGGCCGCCACGACCCTGACGACGTTCGCCCGCGACCGGACCCAGCTCGACGTCCTCGGGGTGGAGATCAGCCCGGCGTTCTTCCAGTCCGTGAACCCGGCCTCGATCATCCTGCTCGCCCCGGTGTTCGCCTGGCTGTGGCAGCGGACCGGCGGGCGCCCGCCCACGCCGTACAAGTTCGCGCTCGGGCTGGCGCTGGCCGCGGTGTCGTTCCTGTTCCTGGCGGGGGCCTCGGAGGTCGTCGGGGACGACCGCGCGCCGGCGTGGGTGCTGATCGTCGTCTACGTGATCCAGACCCTCGGTGAGCTGTGCCTGTCCCCGGTCGGGCTCGCGGCCACCACCCTGCTGGCGCCGCAGGCGTTCCGGGGGCAGGCGATGGCGCTGTGGTTCCTGGCCAACGCCTCGGGCCAGGCGATCACCGCGCAGCTCGTCCAGGCGACCGCCGGCGTCTCCGACACCGCCTACTTCGGCGGGATCGGCGTCGTGGCGCTCGCGGTGGCGGGGCTGGTCTGGGCGGTCTCGCCGTGGGTGGTCCGGCAGATCCGGGCCGCCGACGAGGCCGAGGGCGTGCACACGGCGGGCGCCTGAMTDSAAGSGRPAQPAERSFFGHPRGLLTLFTTEAWERFSYYGMRAILVLYITDAVVDGGLGYDETTGNAIGSIYGSSVYLLSIVGGWLADRVIGARRSVLYGGIVIAAGHVALTVPEAAFTWLGLVLVATGTGLLKPNVSAMVGELYDRRDPRREAGFSIFYMGINFGSLFAPLVVGTVQRLWGYHAGFLVAAVGMAVALVFFVAGRRYLHGAGDAVPNPVRREERGAIARIMVAVVAGVGVLYLVAVAVSGGWSGGAFVDTLSYVALVTPVVYFVVMYRSPKVTDTERPRLLAYIPLFVAAMLFWMIFEQAATTLTTFARDRTQLDVLGVEISPAFFQSVNPASIILLAPVFAWLWQRTGGRPPTPYKFALGLALAAVSFLFLAGASEVVGDDRAPAWVLIVVYVIQTLGELCLSPVGLAATTLLAPQAFRGQAMALWFLANASGQAITAQLVQATAGVSDTAYFGGIGVVALAVAGLVWAVSPWVVRQIRAADEAEGVHTAGAPGPT0021010_750DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021010-TC_POT-K03305NANA
AK018_066441374phrB_2COG0415Deoxyribodipyrimidine photo-lyaseATGCCGTCGACCGTCATGTGGTTCCGGCGCGACCTGCGCCTGGCCGACAACCCGGCCCTGCTCGCCGCCGTCGAGGCGGCGCGGGACGACGACGCGACCGTCGTCGCCCTGTACGTGCTCGACGAGACGCTGTGGCGCAGCGCGGGCGCCAACCGGCTCGCCTACCTGCGCGCGTCGCTGCAGGCCCTGGACGAGGCCTGCGACGGACGTCTCGTGGTCCGGCGCGGGGACCCCGCCGACGTCGTGCCGCAGGTGGTGCGCGACACCGGGGCCGGCGCCGTGCACGTCGCGGCCAGCCACGAGCCGTACGGGTGCCGCCGGGACGCCGAGGTCGCCGCCGCCCTCGACGACCTCGGCGTGACCCTGGAGCGCACCGGGTCGGCCTACGCCGTGTCCCCGGGGCGCCTGTTCACGCAGACCGGCGGGCCGTACCAGGTGTTCACCCCGTTCCGGCGGGCGTGGCTGGAGCACGGCTGGCCGTCCCCGGCCCGCCGTCCGCGGCAGGTCCCGTGGGCCGCGCTGGACGGAGACGCCCTGCCGGAGGGACCGGAGCCCACCGCACACCTGCCCCGGGCCGGCGAGGACGCGGCGCGGCGCCGCTGGCGGGACTTCCTCGCCGACGGGCTCGCCGACTACCCCGACGCCCGGGACCGCCCCGACCTCGCCGGGACCTCGGCGATGTCCGTGCACCTGCGCTGGGGGGAGATCCACCCGCGCACGATGCTCGCCGACCTCGCCGCCGCGCAGGCCGACGGCGTCGACCCGGACGCCGTGGCGACGTTCCGCTCCGAGCTGTCGTGGCGCGAGTTCCACGCCGACGTGCTGCACCACCGCCCCGACGCCCGCACCCGCTCGCTGCGCGCCGTCGTGCCCGACGACGCCTGGACGCGGGGCGAGCAGGAGGACGAGTGGCTGACGGCGTGGCGGGACGGGCACACCGGCTATCCGTTCGTCGACGCCGGGATGCGCCAGCTGCTCGCCACCGGCTGGATGCACAACCGCGTGCGGATGGTGGTGGCGTCGTTCCTCGTCAAGGACCTGCACGTGCGCTGGCAGCGCGGGGCCGAGCACTTCATGGCCCACCTCGTGGACGGCGACATGTCCCAGAACCAGCTCAACTGGCAGTGGGTCGCCGGGACCGGGCACGACGCCGCGCCCTACTTCCGCATCTTCAACCCGGTCACGCAGGGCGAGAAGTTCGACCCCGACGGGGAGTACGTGCGCCGCTGGGTGCCCGAGCTGCGCGACGTGGCCGGCCGGCGGGTGCACCAGCCCTGGAAGCTGGACACCCCGCCGGCCGACTACCCGGCACCGCTGGTCGACCACGCGCACGAGCGCAGGGTCAGCCTCGACGACTTCCAGCGGGGCCGGTGAMPSTVMWFRRDLRLADNPALLAAVEAARDDDATVVALYVLDETLWRSAGANRLAYLRASLQALDEACDGRLVVRRGDPADVVPQVVRDTGAGAVHVAASHEPYGCRRDAEVAAALDDLGVTLERTGSAYAVSPGRLFTQTGGPYQVFTPFRRAWLEHGWPSPARRPRQVPWAALDGDALPEGPEPTAHLPRAGEDAARRRWRDFLADGLADYPDARDRPDLAGTSAMSVHLRWGEIHPRTMLADLAAAQADGVDPDAVATFRSELSWREFHADVLHHRPDARTRSLRAVVPDDAWTRGEQEDEWLTAWRDGHTGYPFVDAGMRQLLATGWMHNRVRMVVASFLVKDLHVRWQRGAEHFMAHLVDGDMSQNQLNWQWVAGTGHDAAPYFRIFNPVTQGEKFDPDGEYVRRWVPELRDVAGRRVHQPWKLDTPPADYPAPLVDHAHERRVSLDDFQRGRNANANANANA
AK018_06645576hypothetical proteinGTGACACCCCCGGTGCTGCCGGGGGAGATGGTGCGGCTGCGTCCGCTCGCGGCCCGCGACGCCGACCGCCTCTGGGAGTCGCTGCACGACCCGGAGGGCATGCGCCTGACGGGGACGACGGCGAGCTTCACCCGGGAGCAGATCGACGAGTGGGCGTCCTCGGTCGCCGAGCGCGACGGCCGTTTCGACTGGGCCATCACGCCGGCCGCGGTACGGGACGGCGAGCTGGTCAGCGACGAGCTGATCGGCGAGATCGTGCTCAACGACATCGACCCGGTCAGCCGCAGCGCCAACCTGCGCCTGCAGATGCTGCCGGACTACCGGGGCCGCGGCTACGGCCGCGAGGCGATCGAGCACGTGCTCCGCTTCGCCTTCGAGGCCGACCAGCTGCGCCTGCACCGGGTGGGCCTGGACGTGCTGAGCATCAACCCGCGGGCCAAGGCGCTGTACGCGTCGCTCGGCTTCGTCGAGGAGGGGCGTCTGCGCGACGCCTACCGCGACGGGGACGACTGGTCCGACGCGATCGTGATGAGCCTCCTCGAGGACGAGTACCGGGCGATGGTGCGCACCGACTGAMTPPVLPGEMVRLRPLAARDADRLWESLHDPEGMRLTGTTASFTREQIDEWASSVAERDGRFDWAITPAAVRDGELVSDELIGEIVLNDIDPVSRSANLRLQMLPDYRGRGYGREAIEHVLRFAFEADQLRLHRVGLDVLSINPRAKALYASLGFVEEGRLRDAYRDGDDWSDAIVMSLLEDEYRAMVRTDNANANANANA
AK018_066461497gatB_2COG0064Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit BGTGACCCAGCTGGTCGACTACACCGACGCGGTCCGACGGTTCGACCCGGTGCTCGGCATCGAGGTGCACGTCGAGCTCGGCACCCGGACCAAGATGTTCTGCCCGGCCGAGGTGGAGTTCGGCGGCGACCCGAACACCCAGACGACCCCCGTCAGCCTCGGGCTGCCCGGTGCGCTGCCCGTCGTCAACGGCACCGCCGTGGAGTACGCGATCCGGATCGGCCTGGCGCTGAACTGCCAGATCGCCGAGTCCTGCCGCTTCGCCCGGAAGAACTACTTCTACCCGGACGTGCCGAAGAACTTCCAGACCTCCCAGTACGACGAGCCGATCGCCTTCGACGGCTGGCTCGACGTCGAGCTCGAGGACGGCACGGTCCACCGTGTCGAGATCGAGCGGGCGCACATGGAGGAGGACGCCGGCAAGAACACCCACGTCGGGGGTGCCGCCGGCCGGATCCACGGCGCCGACTACTCGCTCGTGGACTACAACCGTGCGGGCATCCCGCTGGTCGAGATCGTCACGAAGCCGATCACCGGCGTCGGGGACCGTGCCCCCGAGGTGGCCCGCGCCTACGTGCAGGCGCTGCGCGACATCTTCCGGGTGCTCGACGTGTCCGAGGCCCGCATGGAGCGCGGGAACGTGCGCGCCGACGTCAACCTCTCGCTGCGCGCCACGCCGGAGGCCCCGCTCGGCACCCGCACCGAGACCAAGAACGTCAACTCGTTCCGGTCGGTCGAGCGGGCCGTGCGCTACGAGGTCTCCCGGCAGGCCGCGATCCTCGACGCCGGGGACACCGTGGTCCAGGAGACCCGGCACTGGCACGAGGACACCGGCATCACCACCTCGGGCCGCGTGAAGTCCGACGCCGAGGACTACCGGTACTTCCCCGAGCCGGACCTGGTGCCGGTCGAGCCGTCCCGCGAGTGGGTCGAGGAGATCCGCGCCGGGCTGCCGGAGCTGCCGCAGGCCCACCGCCGTCGGCTCCAGGACGAGTGGGGCTACGCCGACGCCGAGATGCGCGACGTCGTCAACGCCGGCGCCCTCGACCTCATCGAGGCGACCGTCGCGGCGGGGTCCAGCCCGGCCGCGGCCCGCAAGTGGTGGATGGGCGAGCTCGCCCGCCGCGCCAAGCAGGACGAGGTCGAGCTCGCCGACCTGGCCATCACGCCGGCCCAGATCGGCGAGCTGCAGGGTCTGGTCGGCTCCGGCCGGATCAACGACAAGATCGCCCGCCAGGTCCTCGACGGCGTGCTCGCCGGCGAGGGCGACCCGGAGCAGGTCGTGGTCGCCCGCGGCCTCGAGATCGTCTCCGACGACGGCGCGCTGCTGTCCGCCATCGACGAGGCGCTGGCCGCCCAGCCCGACGTCGTCGAGAAGGTCCGCGGCGGCAACCAGGGTCCCGTCGGCGCCATCATCGGCGCCGTGATGAAGACGACCAAGGGGCAGGCCGACGCCAAGCGCGTGCGCGAACTCATCCTCGAGAGGATCGGCTCGTGAMTQLVDYTDAVRRFDPVLGIEVHVELGTRTKMFCPAEVEFGGDPNTQTTPVSLGLPGALPVVNGTAVEYAIRIGLALNCQIAESCRFARKNYFYPDVPKNFQTSQYDEPIAFDGWLDVELEDGTVHRVEIERAHMEEDAGKNTHVGGAAGRIHGADYSLVDYNRAGIPLVEIVTKPITGVGDRAPEVARAYVQALRDIFRVLDVSEARMERGNVRADVNLSLRATPEAPLGTRTETKNVNSFRSVERAVRYEVSRQAAILDAGDTVVQETRHWHEDTGITTSGRVKSDAEDYRYFPEPDLVPVEPSREWVEEIRAGLPELPQAHRRRLQDEWGYADAEMRDVVNAGALDLIEATVAAGSSPAAARKWWMGELARRAKQDEVELADLAITPAQIGELQGLVGSGRINDKIARQVLDGVLAGEGDPEQVVVARGLEIVSDDGALLSAIDEALAAQPDVVEKVRGGNQGPVGAIIGAVMKTTKGQADAKRVRELILERIGSNANANANANA
AK018_066471521gatA_2COG0154Glutamyl-tRNA(Gln) amidotransferase subunit AATGACCGACCTGACCCGCCTGTCGGCCGCCGACCTGGCGCAGAAGCTGCGCCGGCGCGAGGTGACCAGCGTCGAGGTGACGCAGGCGTTCCTCGACCGGATCGCCGCCGTGGACGGTGCCGTCCACGCCTACCTGCACGTCAACGCCGAGGAGGCGCTGGCGACCGCCCGTGACGTCGACGCCCGCCGCGAGGCCGGCGAGGAGCTGCACCCGCTGGCCGGCGTGCCGATCGCCGTCAAGGACGTCGTCGTCACTCGTGGCATGCCCTCGACGGCCGGCTCCAAGATCCTCGAGGGATGGGTGCCGCCCTACGACGCCACCCTCGTCGAGAAGATCCGCGACGCGCGCATGCCCATCCTGGGCAAGACCAACATGGACGAGTTCGCCATGGGCTCCTCCACGGAGCACTCGGCCTACGGCAACACGCACAACCCGTGGGACCTCGAGCGCATCCCGGGCGGGTCGGGCGGCGGCTCGGCCGCTGCGCTGGCGTCCTTCACCGCGCCCCTGGCGATCGGCACCGACACCGGCGGCTCCATCCGCCAGCCCGGCGCCGTCACCGGCACGGTCGGGGTGAAGCCGACCTACGGGAGCGTGTCGCGCTACGGCCTCATCGCGCTCGCCTCCAGCCTCGACCAGGCGGGTCCGGTCACCCGGACCGTCATGGACTCGGCGCTGCTGCACGAGTTGATCGGCGGGCACGACCCGCGGGACTCGACCTCCATCCCCGAGCCGCTGCCCGCGCTGGTGGAGGCCGCCGCGCAGGGTGCCGGCGGCGACCTGTCCGGCGTGCGGGTCGGCGTCGTCAGCCAGCTGCAGGGCGAGGGCTACCAGGAAGGGGTCCAGGCCCGGTTCACCGAGTCCCTCGAGCTGCTGCGTCAGGCGGGTGCCGAGGTCGTGGAGGTGTCCTGCCCGCACTTCGAGTACGCGCTGGCCGCGTACTACCTGATCCTGCCGGCCGAGGCCTCCAGCAACCTGGCCAAGTTCGACGGCATGCGCTTCGGCCTGCGGGTCGAGCCCGAGGACGGCCCCGTGACCGCCGAGCGCGTCATGGCCGCCACCCGGGGCGCCGGCTTCGGCGACGAGGTCAAGCGCCGCATCATCCTGGGCACCTACGCGCTCAGCGCCGGCTACTACGACGCCTACTACGGCAGCGCGCAGAAGGTCCGCACGCTCATCCAGCAGGACTTCGACGCCGCGTTCGAGCAGGTCGACGTGCTCGTCTCCCCGACGGCGCCGACCACGGCGTTCAAGCTCGGCGAGAAGCTCGACGACCCCCTGGCGATGTACCTCAACGACGTCGCCACGATCCCGGCGAACCTCGCGGGCATCCCCGGTATCTCGGTGCCGAACGGCCTCGCGGAGCCCACCGACGGCGGTGCCGCCATGCCGACCGGCTTCCAGGTGCTGGCCCCCGCCCAGGCCGACGACCGCCTCTACCGCGTCGGCGCCGCCCTCGAGGCCGCCCTGGAGAAGTCCTGGGGCGGCCCGCTGCTGGACCGCGCGCCCGAGCTCGGCTGAMTDLTRLSAADLAQKLRRREVTSVEVTQAFLDRIAAVDGAVHAYLHVNAEEALATARDVDARREAGEELHPLAGVPIAVKDVVVTRGMPSTAGSKILEGWVPPYDATLVEKIRDARMPILGKTNMDEFAMGSSTEHSAYGNTHNPWDLERIPGGSGGGSAAALASFTAPLAIGTDTGGSIRQPGAVTGTVGVKPTYGSVSRYGLIALASSLDQAGPVTRTVMDSALLHELIGGHDPRDSTSIPEPLPALVEAAAQGAGGDLSGVRVGVVSQLQGEGYQEGVQARFTESLELLRQAGAEVVEVSCPHFEYALAAYYLILPAEASSNLAKFDGMRFGLRVEPEDGPVTAERVMAATRGAGFGDEVKRRIILGTYALSAGYYDAYYGSAQKVRTLIQQDFDAAFEQVDVLVSPTAPTTAFKLGEKLDDPLAMYLNDVATIPANLAGIPGISVPNGLAEPTDGGAAMPTGFQVLAPAQADDRLYRVGAALEAALEKSWGGPLLDRAPELGNANANANANA
AK018_06648297gatC_2COG0721Glutamyl-tRNA(Gln) amidotransferase subunit CATGTCCACCATCTCCCGTGACGAGGTCGCGCGTGTCGCCGCGCTGGCGCGGATCGAGCTGCGCCCTGACGAGCTGGACCGGCTCGCCGGCGAGCTCGACGTGATCGTCGAGTCCATCGCCAAGGTGAGCCAGGTCGCGACCCCCGAGGTCCCCGCGACGAGCCATCCGCTGCCCATGTCCAACGTGTTCCGTCCCGACGTGCCCGTGCCGGCGCTGCCGGTCGACGACGTGCTCGCGGGTGCGCCGGAGGCCGAGGACGGCCGGTTCGCGGTGCCGCAGATCCTCGGGGAGGAGTGAMSTISRDEVARVAALARIELRPDELDRLAGELDVIVESIAKVSQVATPEVPATSHPLPMSNVFRPDVPVPALPVDDVLAGAPEAEDGRFAVPQILGEEPGPT0023460_1669DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023460-gtaC-K02435NANA
AK018_06649327COG1146FerredoxinATGACCTACGTGATCGCCGAGCCCTGCGTCGACGTCAAGGACAAGGGCTGCCTCGAGGAGTGCCCGGTCGACTGCATCTACGAAGGGCAGCGCTCGCTGTACATCCACCCGGACGAGTGCGTGGACTGCGGCGCCTGCGAGCCGGTGTGCCCGGTCGAGGCCATCTACTACGAGGACGACGTCCCCGAGGAGTGGAGCGACTACTACCGGGCGAACGTCGAGTTCTTCGACGACCTCGGCTCGCCCGGCGGCGCGGCACGGCTCGGCGTCGTGCCCCGCGACCACGCGGTCGTCGCCGCGGTCCCGCACGGCGGGGGCGCGTCGTGAMTYVIAEPCVDVKDKGCLEECPVDCIYEGQRSLYIHPDECVDCGACEPVCPVEAIYYEDDVPEEWSDYYRANVEFFDDLGSPGGAARLGVVPRDHAVVAAVPHGGGASPGPT0030810_836PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0030810-fdxA-K05524
AK018_066501359fprA_3COG0493NADPH-ferredoxin reductase FprAGTGACCGGGCGCGCGCGGCCGCTGAGCGTCGCCGTCGTCGGCGCCGGGCCGGCGGGCATCTACGCGGCCGGGCTCCTCACCGAGCTCGCGCCGGGCACGCGGGTCGACGTCGTCGAGCGTCTCCCCACGCCGTACGGCCTGGTGCGCTACGGCGTCTCCCCGGACCACCCCAAGATCCGGCGGATCATCGACTCGTTGCAGGGGATGCTCGAGCACCCCGACGTGCGGCTGCTGGCCAACGTCGAGGTCGGCACCGACGTGACGATCGACGAGCTGCGGTCCGTCTACGACGCCGTCGTGGTGGCCACCGGGGCGCAGCGCGACGCCCGCCTCGACGTCCCGGGCGTCGACCTGCCCGGGTCGTTCGGCGCGGCCGACGTCGTCTCCTGGTACGACAGCCACCCCGAGGTGCCGCGCGAGTGGCCGCTGCACGCCGAGTCCGTCGCCGTCGTCGGTGCCGGGAACGTCGCCCTCGACGTCACCCGGATGCTGATCCGCCACGCCCGGACGCTCGAGCGGACCGACCTGTCGGAGAACGTCCGCCGGGGCCTGGCCGCGAGCGCGGTCCGCGACATCCACGTGTTCGCCCGCCGGGGACCCGTCGACGTGCGCTTCTCCCCCGGCGAGCTGCGCGAGCTCGGCGAGCAGGAGGACGTCGACGTGGTCGTCGACCCGGCGCAGATCGTGCGCGACGAGCACACCGAGCGCATGGTGCGGCAGCTCGCCCCGAAGCGACAGGTCCTGCGGACGTTCGAGCGGTGGGCGGCGGTGCCCGCCGCGGACCGGCGGGCCTCGCGCCGCGTCCACCTGCACTTCCACCGTGCTCCGGCGGCGATCCTCGGCACCGACCGTGTCGAGGGGCTGCGGACCGAGCGCACGGCACCGGACGGGTTCGGGCACGCGGAGCCGACCGGTGAGCTCGAGGACCATCCGGTCCAGGCCGTCTACCGCGCCGTCGGCTACGTGGGCTCCCCGGTCCCGGGCGTGCCGTTCGACCCCGTCCGGCACGTCGTCCCGCACACGCGGGGGGCCGTGCTCGACGGCGACGGCGTCCCCGTGCCCGGCCTCTACGCGACCGGCTGGATCAAGCGGGGCCCGGTCGGGCTCATCGGTGCCACCCGGTCGGACGCCAAGGAGACCGTGGAGACGCTGCTCGCCACCGACGCCGGGCAGCGGCGGCCCGGGTCCGGGGCCGCGGACGCGATCCTGCGCGGGCGCGGCGTGCCGGTCGTGGACTGGGAGGGATGGCTGCGCATCGACGCGGCCGAGCAGCGGCTCGGTGCGGCGTCGGGCCGGGAGCGGACCAAGATCGTGGACCGGTCCGAGCTCGTCGCGCTCGGCGCCGGGGTGACGGTCTGAMTGRARPLSVAVVGAGPAGIYAAGLLTELAPGTRVDVVERLPTPYGLVRYGVSPDHPKIRRIIDSLQGMLEHPDVRLLANVEVGTDVTIDELRSVYDAVVVATGAQRDARLDVPGVDLPGSFGAADVVSWYDSHPEVPREWPLHAESVAVVGAGNVALDVTRMLIRHARTLERTDLSENVRRGLAASAVRDIHVFARRGPVDVRFSPGELRELGEQEDVDVVVDPAQIVRDEHTERMVRQLAPKRQVLRTFERWAAVPAADRRASRRVHLHFHRAPAAILGTDRVEGLRTERTAPDGFGHAEPTGELEDHPVQAVYRAVGYVGSPVPGVPFDPVRHVVPHTRGAVLDGDGVPVPGLYATGWIKRGPVGLIGATRSDAKETVETLLATDAGQRRPGSGAADAILRGRGVPVVDWEGWLRIDAAEQRLGAASGRERTKIVDRSELVALGAGVTVPGPT0013215_376DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
AK018_066511395hypothetical proteinATGCACCGCAGTGACACGACCCCGACCCAGCCCGGGATCGCCCGCCGGCTCCGCCGTCCCGCCGCCCTCGTCGCGACCGGAGTCCTCGCCCTGGCCGGGTGCGCGACGCCGTCGGGCACCGGCGGTCCGGACGGCCAGGTGACGCTCACCTACTGGATGTGGGACGCCAACCAGGTGCCCGGCTACCAGCAGTGCGCCCAGGACTTCGAGGCGGAGAACCCGGACGTGCTCGTGAACCTCGAGCAGTACGGCTGGGACGACTACTGGACCCAGCTCACGGCACGCATGGTGGCCGAGAGCGCCCCGGACGTCTTCGTCGACCACGCCCAGCAGTTCGGCAAGTACGCGAGCTTCGACCAGATCCTCGACATCAGCGATCGCGTGGAGGCCTCCGACATCGACCTGGACCAGTACCAGGACGGTCTCGTCGACCTGTCGCGCGGACCCGACGGCGGGCTCTACGGCCTGCCGAAGGACTGGGACACCGTGGGGCTGTTCTACAACGCCGACATGGTGGCCGAGGCCGGCTACGCGCCCGAGGACCTGTGGGAGCTCGAGTGGAACCCGCGCGACGGCGGGACGTTCGAGGAGTTCCTGGCCCGGATGACCGTGGACGAGAACGGGGTCCGGGGCGACGAGCCCGGGTTCGACCCGAGCCGCGTGGCCGTCTACGGCCTCGGGTACAACGAGAGCGGCGGCGGGTTCGGCCAGGTGCAGTGGGCGCCCTACGCGCTGAGCAACGGCTGGACCTACGCCGACACCAACCCGTGGCCGACGTCGTTCGACTACGACGACCCGGCCCTGGCCGAGGCGATCGGGTGGTGGCGCTCCCTGATCGAGCAGGGCTACATGCCGCCCCTGCCGGTGGCGACGTCCGGCATCGGGACGATCGAGTCCCTCGGCTCGGGCGGGTACGCCGCGCTGATCGAGGGCTCGTGGAACTCCCGGGCGATGGCGGAGCTGCAGGGCGTCGATGTCCGGGTGGCGCCCACCCCGGTCGGGCCGACCGGGGAGCGCGCGTCGGTGTTCAACGGGCTGTCGGACGCGATCTACGCCGGCACCGAGCACCCCGACGAGGCCTGGCGCTGGGTCGAGTACCTGGCGAGCCCCGCGTGCCAGGACGTCGTCGCGGCCGAGGGACGGGTGTTCCCCGCCATCTCGAGCTCCTCGGAGAAGGCCGTGGCCACGTTCTCCGAGCTCGGCATCGAGGCCGACGCCTTCGCCGTCCACGTCGAGGACGGGACCGGCACCCTGTCGCCGGTCACGGACCGCTGGTCGGAGGTCCAGTCGATCATGCAGCCCGCGATGGACGAGGTCATGTCCTCGACCGGCGACCCGGGGCCGATCCTCGCCGACGCCGACGCCCGGGTGGACCGGGTGATGGCGGACGAGTGAMHRSDTTPTQPGIARRLRRPAALVATGVLALAGCATPSGTGGPDGQVTLTYWMWDANQVPGYQQCAQDFEAENPDVLVNLEQYGWDDYWTQLTARMVAESAPDVFVDHAQQFGKYASFDQILDISDRVEASDIDLDQYQDGLVDLSRGPDGGLYGLPKDWDTVGLFYNADMVAEAGYAPEDLWELEWNPRDGGTFEEFLARMTVDENGVRGDEPGFDPSRVAVYGLGYNESGGGFGQVQWAPYALSNGWTYADTNPWPTSFDYDDPALAEAIGWWRSLIEQGYMPPLPVATSGIGTIESLGSGGYAALIEGSWNSRAMAELQGVDVRVAPTPVGPTGERASVFNGLSDAIYAGTEHPDEAWRWVEYLASPACQDVVAAEGRVFPAISSSSEKAVATFSELGIEADAFAVHVEDGTGTLSPVTDRWSEVQSIMQPAMDEVMSSTGDPGPILADADARVDRVMADEPGPT0016545_1703DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_06652954dasC_10COG0395Diacetylchitobiose uptake system permease protein DasCGTGTCGACGACGACCACCACCCCCTCCACCGCGGCCGGGCCGAGCACGGCCCCGATCGCCCCCCGACGGAAGGTGCGCCGCCCGATCCCCTGGGGACGCATCGGCGGCTGGATCTGCCTCGTGGTGATCCTGCTGATCACGATCTTCCCGTTCTACTGGATGCTGCGCACCGCGCTGTCGGACAACCGGGCGCTCGCCCTGGAGGCCGACAGCCTGCTGCCCGCCGAGTTCACCCTCGACGCCTTCCGCCGCGTCTTCGGGCTGACGACGCTCGAGGAGTCGCTCGCCCAGGGCGGTGCCGGCGGCCGGATCAACTTCTGGCTCTACCTGCGCAACTCGGTGATCGTCGCGGCGTCGATCACGCTCGGGCAGGTGCTCTTCTCGGCCATGGCCGCGTACGCGTTCGCGCGACTGCGGTGGCCCGGACGCAACGCCGTCTTCGCGCTGTTCCTGTCGGCGCTCATGGTGCCGGGCATCTTCACCGCGATCCCGAACTTCGTGCTGGTCAAGGAGCTCGGGCTGCTGAACACGTTCCCCGGTCTCATCCTGCCGACGTTCTTCATGACGCCGTTCGCGATCTTCTTCCTGCGCCAGTTCTTCCTGGGGATACCGCGCGAGGTGGAGGAGGCGGCGCTCATCGACGGCGCGGGCAGGGCCCGGGTGTTCCTGCGGATCGTGCTGCCCATGACGGCGGCCCCGATCACCACGCTGGCCGTGCTGACCTACATCACGGCCTGGAACGAGTACTTCTGGCCGCTGCTCGTGGGCCAGAGCGACGACGTGCGCGTCCTGACGGTCGCGCTGGGCATCTTCCGGTCCCAGACGCCGCAGGGCAGCCCGGACTGGTCGGGGCTGATGGCGGCGACGCTGGTCGCCGCGCTGCCGATCGTCCTGCTCTTCGTGGCGCTCGGTCGTCGCATCGTCAGCTCCATCGGCTTCTCCGGGATCAAGTGAMSTTTTTPSTAAGPSTAPIAPRRKVRRPIPWGRIGGWICLVVILLITIFPFYWMLRTALSDNRALALEADSLLPAEFTLDAFRRVFGLTTLEESLAQGGAGGRINFWLYLRNSVIVAASITLGQVLFSAMAAYAFARLRWPGRNAVFALFLSALMVPGIFTAIPNFVLVKELGLLNTFPGLILPTFFMTPFAIFFLRQFFLGIPREVEEAALIDGAGRARVFLRIVLPMTAAPITTLAVLTYITAWNEYFWPLLVGQSDDVRVLTVALGIFRSQTPQGSPDWSGLMAATLVAALPIVLLFVALGRRIVSSIGFSGIKPGPT0016540_1047DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_06653942melD_13COG1175Melibiose/raffinose/stachyose import permease protein MelDATGGCAGTCGTGACACCGCCGGCCCCGCCGGCACCCGGAGCCCGCGCACCGCGACGGCTGCGCCCCTCCGGCCGACCGCGCGGGGACCTGCGCGCGGCGATGGTCTTCCTCATCCCGGCGACGGTCGGGTTCGTGGTGTTCTACCTCGTCCCCGCCGTCCGCGGGGCCTGGTTCAGCCTCACGGACTACTCGGTGCTGGCACCACCGCAGTTCGTCGGTCTCGACAACTACCGGCGCCTGGTCGACGACCCGCTCTTCTGGAACGCGATGGGCGTGACCGGCTACTACGTCGTCATCAACATCGTCGTGCAGACGGTCGTCGCCGTCGGCCTCGCGGTGCTGCTGCAGCGGATGACCCGCTCGATCCTCGTGCGGGGGGCCGCGCTGCTGCCGTACTTCGTGGCGAACGTCGTCGTCGCGCTCGTCTGGTTCTTCATGCTCGACTACCAGATCGGCATCGTGAACGTCCTGCTGGGCAAGGTCGGGATCGACCCCCAGGCATTCTTCGGCGACCCCGCTCTCGCGCTGCCGACGATCGCGCTGATCAACGTCTGGCGGCACATGGGCTACACGGCCCTGCTGGTCTTCGCGGGTCTGCAGACCATCCCGCCGCAGGTCTACGAGGCGGCGTCCCTGGACGGGGCCTCGGCGTGGCGCCAGTTCCGCTCGATCACGCTGCCGCTGCTGCGGCCGGTGCTCGCGCTGGTGCTCGTCGTGACCGTCACCGGGTCGTTCCAGATCTTCGACACCGTGGCCGTGACCACCGGCGGCGGCCCGGTCGACGCCACCCGCGTCATCTACCTCTACATCTACGACCTGGCGTTCGCCCAGCTCGACTTCGGCTACGCGTCCGCGCTGTCCGTCGTCCTGTTCGCCGTCCTGCTGATCGTCGCGCTCGTGCAGCTCCGGCTGCTGCGGGCGGGCGAGTCGGACAACTCCTAGMAVVTPPAPPAPGARAPRRLRPSGRPRGDLRAAMVFLIPATVGFVVFYLVPAVRGAWFSLTDYSVLAPPQFVGLDNYRRLVDDPLFWNAMGVTGYYVVINIVVQTVVAVGLAVLLQRMTRSILVRGAALLPYFVANVVVALVWFFMLDYQIGIVNVLLGKVGIDPQAFFGDPALALPTIALINVWRHMGYTALLVFAGLQTIPPQVYEAASLDGASAWRQFRSITLPLLRPVLALVLVVTVTGSFQIFDTVAVTTGGGPVDATRVIYLYIYDLAFAQLDFGYASALSVVLFAVLLIVALVQLRLLRAGESDNSPGPT0016535_4294DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_066542226rafA_3Alpha-galactosidaseATGACGATGCAGACCTACCTGGCTGACACCGCTGACACCGCTGACACCGCGGCCGCCACCACCCCGGGCTCGACCGACGGGCTGTGGCACCTGCGGGCCGCCGGGGTGAGCCTGGTCCTCGAGGTCGCCCGCAGCGCTCTCCCGCAGATCCTGCACTGGGGCGCCGACCTGGGGGACCTGCCCGCGGACGAGCTGGACGCCCTGCGCGTGGCGGCCGTGCCGCCGGTGGCCTCCGGCACGCCGGACGCCCCCGTGCCCCTGACGATCCTGCCCGAGCAGTCCGCGGGCTGGCTCGGCACCCCGGGCGTCACCGGCCACCGGGACGGCGCCGACTTCTCCACGCGGTTCGTCGTGGAGGAGGTGCGGCTCGTGCACGACGTCGAGCGCGACGGCGCACCCGTGGCGCACCGGATGACCGTCGACGCCCGCGACGCCGAGGCCGACCTGACCCTGCGGATCGAGATCGAGATGCTCCCCGGCGGGCTCGTGCGTGCGCGCGGGCGGCTGCGGAACACCGGCGCCGCGGTCTTCACCGTGGGCTCCCTCGACATCGCGCTGCCCCTGCCGCGCGAGGCCGACGAGATCCTCGACTTCACCGGCCGCCACCTGCGCGAGCGCAGCCCGCAGCGGCACGACTTCGTGGCCGGGACCCACCTGCGCGAGTCCCGGCGCGCACGCTCCCACGACGGGACCCTGCTGATGACCGCCGGACGCCGCGGGTTCGGCTACCGCTCCGGCGAGGTCTGGGGCGTGCACGTCGCCTGGTCGGGCAACACCCGCACCTTCGCCGAGCAGGGCATGCCCACCGGCGAGCGGCTGCTAGGCGCCGGCGAGCTGCTCCTGGCGGGCGAGGTGCGGCTGTCCGCCGGCGAGGCGTACGAGAGCCCGTGGGTCTACGCCTCCTACGGCGACGGTCTCGACGAGCTCTCCCACCGGTTCCACACCTACCTGCGTTCCCGGCCGCAGCACCCCGGCACCCCGCGCAAGGCGCTCGTGAACGTCTGGGAGGCCGTGTACTTCGACCACGACCTCGACCGGCTCACCGCGCTCGCCGACGCCGCGGCCGCCGCCGGCGTCGAGCGGTACGTGCTCGACGACGGCTGGTTCCGCGGGCGCCGCGACGACACCGCCGGACTCGGCGACTGGACCGTCGACGACGACGTGTGGCCCGAGGGCCTGCACCCGCTCGCCGACCACGTCACCGGGCTCGGTATGGAGCTGGGCCTCTGGTTCGAGCCGGAGATGGTCAACCCCGACTCCGACCTGGCCCGCGCGCACCCCGAGTGGATCCTGCAGACCGGGAACCGGATGCCGCCGGAGGCGCGTCACCAGCAGGTGCTCGACCTCGCCCACACCGGAGCCTGGGAGCACGTCTACGGCCAGATCGACGCGATCCTCGCCGAGTACCCGATCGGCTTCGTCAAGTGGGACCACAACCGCGACCTCGTCGACGCCGGTCACACCGCGACCGGCGGGGCCGGCGTCCACGCCCAGACGCACGCCGCGTACCGGCTGCTGGACGCGCTGCGCGCCGCCCACCCGCACGTCGAGTTCGAGTCCTGCGCGGGCGGTGGCGGCCGGGCGGACCTGGGCATCCTCGAGCGCACCGAGCGCATCTGGACCTCCGACTGCATCGACGCGCTCGAACGGCAGACGATCGAGGCCGGTACCGGTCTGCTCGTCCCGCCCGAGATGCTCGGCTCGCACATCGGGTCGCCGACGTCGCACACCACCGGGCGCCGGCACGAGCTGAGCTTCCGCGGGGCCACCGCGTTCTTCGGCCACCTCGGCATCGAGTGGGACCTCACCGCCGCCTCCGAGGCCGAGCGGAGCGAGGTCGCGCGCTGGGTGGCGGCGTACCGGCAGCACCGTGACCTGCTGCACCACGGTCGGAGCGTCCGCACCGACGACCCCGACCCCGCCCTGCGGGTGCACGGCGTCGTGCGCGAGGGTGCCGGCGAGGCGATCTTCGCCGTCGTGCAGCTGACGACCGGCGTGTGGGCCCCACCGGGCCGCGTCCGCCTGCCGGGGCTGGACCCGGACACCACCTACGACGTCCGCCCCCTGGCTCCGGGAGACGAGGTCGAGCCGGGACACGGCGAGGCGCTCCCTCCGTGGTGGTCCGACGGCGTGCGGCTCAGCGGGCGGACGCTCGCCGGTGCCGGGGTCCAGCTGCCCCACCAGTTCCCCGAACGGAGCGTCCTGCTCCACGTGACCGCGGTCTGAMTMQTYLADTADTADTAAATTPGSTDGLWHLRAAGVSLVLEVARSALPQILHWGADLGDLPADELDALRVAAVPPVASGTPDAPVPLTILPEQSAGWLGTPGVTGHRDGADFSTRFVVEEVRLVHDVERDGAPVAHRMTVDARDAEADLTLRIEIEMLPGGLVRARGRLRNTGAAVFTVGSLDIALPLPREADEILDFTGRHLRERSPQRHDFVAGTHLRESRRARSHDGTLLMTAGRRGFGYRSGEVWGVHVAWSGNTRTFAEQGMPTGERLLGAGELLLAGEVRLSAGEAYESPWVYASYGDGLDELSHRFHTYLRSRPQHPGTPRKALVNVWEAVYFDHDLDRLTALADAAAAAGVERYVLDDGWFRGRRDDTAGLGDWTVDDDVWPEGLHPLADHVTGLGMELGLWFEPEMVNPDSDLARAHPEWILQTGNRMPPEARHQQVLDLAHTGAWEHVYGQIDAILAEYPIGFVKWDHNRDLVDAGHTATGGAGVHAQTHAAYRLLDALRAAHPHVEFESCAGGGGRADLGILERTERIWTSDCIDALERQTIEAGTGLLVPPEMLGSHIGSPTSHTTGRRHELSFRGATAFFGHLGIEWDLTAASEAERSEVARWVAAYRQHRDLLHHGRSVRTDDPDPALRVHGVVREGAGEAIFAVVQLTTGVWAPPGRVRLPGLDPDTTYDVRPLAPGDEVEPGHGEALPPWWSDGVRLSGRTLAGAGVQLPHQFPERSVLLHVTAVPGPT0018835_894DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
AK018_066551143mlc_5COG1940Protein mlcATGACGCCAGCACCGTGGGGACCGCTCAGCGGACCGGGCCACGCCGTCGCGCTCGACGTGCTGCTCGACGGCCCCCTGTCGCGGGCCGAGCTCTCCCGTCGGCTCGACCTCTCCGCCGGGAGCCTCACCCGCCTGACCAAGCCGCTGCTCGACGCCGGCCTGCTGGTCGAGGTCGACGACTCCCCCGCCGGATCCCGGGTCGGCCGACCGTCGCGGCCGCTGGACATCGTCCCCGAGGCGCACCACTTCGTCGGGGTCAAGATCACCGGGGACACCGCCCACGGGGTGCTGACGACGCTGCGCGCCGGCGTGGTGGCCTCCGCCGACGCACCGTTGGACGACCACTCGCCCTTCGCCGTCGCGGACACGGTCGCGGGGCTGATCAGCGACCTGGCCGCCAGGGCGCCGGCCGACGTCACCGCGGTCGGCGTCGCGCTCGGCGGACACGTCGTCGAGGCCTCGGACGTCGTCCGGGCCCCCTTCCTCGGCTGGAACGACGTCCCGCTGGGCGACATGCTGCGCTCGCGCACGGGCCTGCCCGTGGTCGTCTCGAACGACGTCACGGCGCTCACCGAGGCGACGCACTGGTTCGGCGCCGGGCACGGCGCCGCCACGTTCGCGCTGATCACCGTCGGGGCCGGGGTCGGCTTCGGACTCGTGGCGCACGGGCGGCTCGTGACGAACGAGGACGCGAGCCTGGGGCTCGCCAGCCACCACCCGCTCGACCCGTCGGGTCCCCCGTGCTTCGCCGGGCACCGCGGGTGCGCGGTGGCCATGCTGACGATCCGGTCGATCGCCACGCAGGTCTCGGTCGCCCTCGGTCGGGAGGTCGCCTACGACGAGGCGCTCGACCTCGCCGGGGCCGGCGACCCCGCCGCCCGCCGCGTCGTGGACGACGCCGGACGGGCGCTCGGCCGCTTCGTCGCCGCCGCCGCCAACTTCACGATGCCCGAGCGGGTGGTGCTGGGTGGCGAGGGGGTCCGGCTCGCCGACGTCGCGCGGGAGGCGATGCAGGCGGGCCTGCGCGCGGACCGGGACCCACTCGCGCACGACCCCGTGATCGCGACGCTCAGCCCCTCGTTCACCGAGTGGGCGCGCGGGGCCGCGGTCATCGCGATCCAGACCTTCGTCCTGGGGACCTGAMTPAPWGPLSGPGHAVALDVLLDGPLSRAELSRRLDLSAGSLTRLTKPLLDAGLLVEVDDSPAGSRVGRPSRPLDIVPEAHHFVGVKITGDTAHGVLTTLRAGVVASADAPLDDHSPFAVADTVAGLISDLAARAPADVTAVGVALGGHVVEASDVVRAPFLGWNDVPLGDMLRSRTGLPVVVSNDVTALTEATHWFGAGHGAATFALITVGAGVGFGLVAHGRLVTNEDASLGLASHHPLDPSGPPCFAGHRGCAVAMLTIRSIATQVSVALGREVAYDEALDLAGAGDPAARRVVDDAGRALGRFVAAAANFTMPERVVLGGEGVRLADVAREAMQAGLRADRDPLAHDPVIATLSPSFTEWARGAAVIAIQTFVLGTNANANANANA
AK018_06656885hypothetical proteinGTGCTGCACGGCGTGGCGTGCGGGCTCGCGTCGTCGGCGCTGACGACGTACGTCGTCGACCTGGCGCCGGACCGGCCGCGCTGGCTGGCCGCCGCCACGGCGGCCGGGTCTCCGTTGATCGGTCTCACTCTCGGCGCGCTGGGCACGGGGGCGCTCGCGGAGCACGGCCCGGCGCCCGAGCGGATGCCGTACCTGGTCGTCACGGCCGTGCTCGCGGTCTGCGCCGCGCTGCTGGTCGGCAGCCCCGAGCCGGTCGGACGTCGGCCCGGGGCCCTCGCGTCCCTGCGTCCCCGGGTCTCCCTGCCGCCGGCGACCAGGCCGCTGCTGCCCGCAGCGATCGCCGTGTTCTGCGCCACCTGGGCGCTCGGTGGCTTCTACCAGGCGTTCAGCCCGACCATCGCCGCCCGCGACCTCGGCACCGACAGCACGTTGGTCGCGGGGACCGTCTTCGCGGCCTTCATGGCCCCGTACGCGTTCGGGGGGCCGCTGACCGGACGACTCGCCGCGGGCGCGGCCCAACGGCTCGGCATCGTCGTGTTCGCGCTGGCCGTGACGGGCGTCGTCGTGGGCCTGCACACCGGGTCCGTCGTGACCGTCGTGCTGTGCGGCGTCGTCGCCGGGGCCGGGCAGGGCGCGGCGTTCACCGGGACGATGCGCGGTCTGCTCGCCCGGACGGCGCCGGCCGAGCGGGCCGGGCTCATGGCCACCGTCTACCTGTTCTCCTACGGGGGAGCGGCGGTACCGAGCCTGGTCGCGGGGCGGCTGTCCGCCACGCTCGAGCTGTCGCAGATCGCCGTCGGCTACGCGGTGCTCGCGCTCCTGGCGGTCGGTGTCGTGCTCGGGTCCTCGGCCCGGCCGAGGGCGAGGGTGGGCGCCCGTCCGTGAMLHGVACGLASSALTTYVVDLAPDRPRWLAAATAAGSPLIGLTLGALGTGALAEHGPAPERMPYLVVTAVLAVCAALLVGSPEPVGRRPGALASLRPRVSLPPATRPLLPAAIAVFCATWALGGFYQAFSPTIAARDLGTDSTLVAGTVFAAFMAPYAFGGPLTGRLAAGAAQRLGIVVFALAVTGVVVGLHTGSVVTVVLCGVVAGAGQGAAFTGTMRGLLARTAPAERAGLMATVYLFSYGGAAVPSLVAGRLSATLELSQIAVGYAVLALLAVGVVLGSSARPRARVGARPNANANANANA
AK018_06657381malT_6HTH-type transcriptional regulator MalTATGGGGATCCGGGACGACGGCTCCGGCGACCGGGACGTCCACGACGACGGCCTGCGGCCCATCGCCGAGCGGGTGAGCGCCCTGCACGGCACGTTCCTCGTGGACGCGACCCGCGGGTGGGGGTCGAACCTGGCGATCACGCTGCCCCTGGACCCGCCCACGCCGGAGCTCGGCCTGGACGCCGACGTCGCCCTGACCCGCCGCGAGCGCGACGTGCTCGCGCTCGTCGCCGCCGGCCGCCGCAACGGCGAGATCGCCGAGCAGCTGTCCATCAGCGCGAACACCGTGAAGTTCCACGTCGCGAACCTGCTGCGCAAGGTGGGCGCGGCCAACCGGGCGGAGCTGGCGGCGCTGGCGGGCGGTGCGGCCGGGCGGTCCTGAMGIRDDGSGDRDVHDDGLRPIAERVSALHGTFLVDATRGWGSNLAITLPLDPPTPELGLDADVALTRRERDVLALVAAGRRNGEIAEQLSISANTVKFHVANLLRKVGAANRAELAALAGGAAGRSNANANANANA
AK018_066583744hypothetical proteinGTGAACAAGTTCAGGCGATATCTGGCGGGCGCGTGCGCCGGGGCGCTGCTGGCCCCCCTGGTCGCACTGTCCGCGCAGGCGGACGACGCCGACCCGTCGACCACCGCCGCGCCGCCCGAGCCCGGGACGGAGAGCGCCGTCGTCACGCTGCTCACCGGCGACCGGGTGCACGTGACGACCTACCCGGACGGCGCGATCGCCGCCGACGTCGACCCGGCGGAGCGTGCCGACGGCGTCGTCCCGACCTTCAGCAAGCAGGAGTACGACGGCCACACCTACGTGGTCCCGTCGGACGTCGCCGCGCTCGTCCCGGACCTCCTCGACCCGGCGCTCTTCGACGTCCAGGAGCTCGTCGCCGCGGGCTACGACGACACGAGCAACGACGGCATCCCGGTGATCGTCGACTACGGCGACACCGTCCCGACCGCCCGCAGCCGCAGCACCCTGCCCGGCATCGAAGTCGAGCGCACGCTTGCGTCGATCGGTGCCGTGAGCGCGGACATCGACACGGACGACGCCAGGGCGCTCCTCGCGGCGCTGGACCGGCAGGCCGCGGCCGCAGAGCGCTCCCGCGCCCGGACCGGCGGCATCGAGAAGATCTGGCTCGACCACGAGGTCGAGGGTCTGCTCGACGTCAGCACCCCGCAGATCGGTGCCCCCGAGCTGTGGGAGGCCGGCTACACCGGCGAGGGCATGACGGTCGCCGTGCTCGACTCGGGCGTGGACAGCACCCACCCCGACCTGGCCGGCAAGGTCGTGGCGGAGAGGAACTTCAGCACCTCGCCCACCGCGACCGACCGCCACGGCCACGGCACCCACGTCGCGACGACGATCGCCGGCACCGGCGCCGCCTCGGACGGCACGTACCGTGGCGTCGCCTACGACGCCGAGATCATCAGCGGCAAGGTCATCAACAACTACAACTCCGGCACCATCTCGGACATCATCGCCGGCATGGAGTGGGCCGTCGCGAACGACGCCGACGTCGTCAACATGAGCATCGGCACGCGCCGCCTCTACACCGACGGCACCGACCCGGCCAGCCAAGCGGTCGACGAGCTGAGCGCCGAGCACGACACCCTGTTCGTCGTCGCGGCCGGCAACGACGGCTCCGGCTCCAACACGATCACCGCGCCCGGCGCCGCGAGCTCGGCGCTCACCGTCGGCGCCGTGAACGACGCCGACGTCGTGGCGGGCTTCTCCAGCCGTGGCCCGCGCGCGGGCGACAACGCCCTCAAGCCGGACGTGACCGCGCCCGGTGTGGGCATCGTCGCGGGCCGCGCCGCCGGCACGAGCCGCGGTTACGTCGTCGACGACCACTACACCGCTCTCAGCGGCACGTCCATGGCAACGCCGCACGTCGCGGGCGCCGCGGCCCTGCTGCTCCAGCAGCGCCCGGACCTCACCGGACAGGACGTCAAGGGCCTCCTGGCCTCGACGGCCTACCTCGCGGAAGGCACGGTGTTCGACCAGGGGACCGGCCGCGTCGACCTGCCGTACGCGATGTCGACGACGGTCCTCGCGGACACCGGCTCGCTCAGCCTGGGATTCTTCGACTACCCGCAGGACGCCACCGCTCCGGTGACCCGCTCGGTCACGTACACGAACGTCGGTGACGCCGACGTGACCCTCGCGGCGGACCTCCAGGTCACCGACGAGAACGGCGACGCCCCGGCGGCCGGTATGCTCACCTTGCACGACGACGCCGTGACCGTCCCGGCCGGCGGGACCGCGCAGCTCTCCGTGACCGTGGACCCGACGCTCGGCGAGCCCGGCGTGTACGCGGGCCACCTCACGGCGACGGACGTCGACGGCACGGAGCTCCGTGCGGGGGTGGCCTTCACCAAGGAGGCCGAGCGCTACGACCTCGTGGTCTCCACGACCGACCGCAACGGCCGGCCGGCCGGTGGCCTGAGCAGCATCGACGTCATCAACGTCGACGACCAGGCGCGCTTCTACGAGCCCGCCGTCCGCTACGACGCCGCCGGCACGGCGACGTTCCGTGTCCCGGTGGGCCACTACAGCGTCTCGGGCCTCACGTACTCCTACGACGAGTCCGGCCGGTACGCCGTCGAGGCGACCGCGACGCTGGCGCCCGAGGTCCTGGTCACCGAGGACACCGACGTGAGCTTCGACGCTCGCACCGCCGTTCCCGTCGACGTGGACACCCCGCAGGAGAGCGAGGTGCACGGGACGCAGGTCTCCTACCTGCGCACGGACGCCAAGGGCAGCCCGTACTCGCACACCTGGAGCATGTCGGCCCCGGTCGAGTCGCTCTCGGTCACCCCGACGGAGGACGTCGAGGTCGGCGGGTTCGAGTTCTACCACGCACAGACGCTCCGGGCCCCGGAGATCCGGATGACCGCCGGCGGCAGCCTCGACCTCACCGCCTACTACGCGCGGTACAGCGAGCGCCTCGACGGGGCCCTCGAGACGGAGCTGGTCGACGTCGGCTCCGGCACCGCGGAGGACTTCGCCGCGGTCGACGTCGAGGGCAAGGTCGCGCTGGTCACCCAGGACGGCTTCTCGTTCGGCGCGCAGATCGCGGCGGCCGGCGAGGCGGGGGCCGCGGCCATCGTGCTCGCCGGCAACCAGCCGGGGCTCGTCATGACCAACGGCGTCCCCGGTGCGGTCCCGCACCTGACGACGACCTTCGAGGAGGCCGAGGCCGCGAAGGCGCTCATGGTCGACGGCAGCGTCGACCTGGACGTGGTGGCGATCGCGGCCAGCCCCTACCTCTACGAGACGATGTTCCCGGAGACGGGCGGTGTCCCGTCCGAGCTGGACTACGCCGTCACGCCGGAGAACTCGGCGACGGTCACGGCCACGTACCGGGCACAGGTGGAGGGTGTCGGCATCGCCGACACGCGTCACCGCTGGCGTCCCTGGGAGTCCACGGCGTTCGGCCTGCTCCGCATGCTCGAGGCGCCCCTGGTGCGCACCGAGATGGTGACCGCTGGCGACACGCTGTGGGCTCACAACTACTACATCAACTCGACGCCGACGCGCCCGTACAGCGCCTACCTCGCCGACTCCCGTCACCCGTACGAGGCGGGCTCGACCATCGACGAGGACTTCCTCACGCAGGTCATGGCCCCCGGGTTCGCGCTCTACGGGCCGGACACGGCCACCCGCACCGGGGACGCGCTGAACCTCTACGTGCCGGAGTGGACCGACTCGGACGCGCGCTGGGGCGAGGTCTACTACCGCACGGACACCTCGTCGTTCCGGCTGTACACGGACGGTGAGCTGACGGCGCAGAGCAGCCGGGCCCGCGGCACCTTCGACGTGGGCACCGAGGCGTCCGAGCTGAGGATCGAGCTCGACGTGGCCCGGGACGCCGACTGGTGGACGATGTCCACCGAGACCTCGACGGCCTGGACCGTGCAGAGCACGCCGCAGGACGGCGAGACCGAGGTCCTGCCGCTGCTGCGGGCGCGCCTGCAGCCCGACGTGGACCTGCTCAACCGCGCGAAGGCCTCCGCCCACCACGTCGACGTCACCGTCGACCACCAGCCGGGTGCCACGGCCGCCCCGATCGCCGAGACCCGCTTCTGGGTCTCGACCGACGACGGCGAGACGTGGCGCGAGGTCCCGGTGCGCCGGCACGGCAAGGACGGGCTGCGCGCCGTCGTCAACCGGCTGCCGGCCGAGGCGGAGTACGTCTCCGTGCGGGTCGAGGTCACCGACACCGACGGCAACATGCTCGAGCAGGAGATCACCCGGGCCTACGGCCTGCGCTGAMNKFRRYLAGACAGALLAPLVALSAQADDADPSTTAAPPEPGTESAVVTLLTGDRVHVTTYPDGAIAADVDPAERADGVVPTFSKQEYDGHTYVVPSDVAALVPDLLDPALFDVQELVAAGYDDTSNDGIPVIVDYGDTVPTARSRSTLPGIEVERTLASIGAVSADIDTDDARALLAALDRQAAAAERSRARTGGIEKIWLDHEVEGLLDVSTPQIGAPELWEAGYTGEGMTVAVLDSGVDSTHPDLAGKVVAERNFSTSPTATDRHGHGTHVATTIAGTGAASDGTYRGVAYDAEIISGKVINNYNSGTISDIIAGMEWAVANDADVVNMSIGTRRLYTDGTDPASQAVDELSAEHDTLFVVAAGNDGSGSNTITAPGAASSALTVGAVNDADVVAGFSSRGPRAGDNALKPDVTAPGVGIVAGRAAGTSRGYVVDDHYTALSGTSMATPHVAGAAALLLQQRPDLTGQDVKGLLASTAYLAEGTVFDQGTGRVDLPYAMSTTVLADTGSLSLGFFDYPQDATAPVTRSVTYTNVGDADVTLAADLQVTDENGDAPAAGMLTLHDDAVTVPAGGTAQLSVTVDPTLGEPGVYAGHLTATDVDGTELRAGVAFTKEAERYDLVVSTTDRNGRPAGGLSSIDVINVDDQARFYEPAVRYDAAGTATFRVPVGHYSVSGLTYSYDESGRYAVEATATLAPEVLVTEDTDVSFDARTAVPVDVDTPQESEVHGTQVSYLRTDAKGSPYSHTWSMSAPVESLSVTPTEDVEVGGFEFYHAQTLRAPEIRMTAGGSLDLTAYYARYSERLDGALETELVDVGSGTAEDFAAVDVEGKVALVTQDGFSFGAQIAAAGEAGAAAIVLAGNQPGLVMTNGVPGAVPHLTTTFEEAEAAKALMVDGSVDLDVVAIAASPYLYETMFPETGGVPSELDYAVTPENSATVTATYRAQVEGVGIADTRHRWRPWESTAFGLLRMLEAPLVRTEMVTAGDTLWAHNYYINSTPTRPYSAYLADSRHPYEAGSTIDEDFLTQVMAPGFALYGPDTATRTGDALNLYVPEWTDSDARWGEVYYRTDTSSFRLYTDGELTAQSSRARGTFDVGTEASELRIELDVARDADWWTMSTETSTAWTVQSTPQDGETEVLPLLRARLQPDVDLLNRAKASAHHVDVTVDHQPGATAAPIAETRFWVSTDDGETWREVPVRRHGKDGLRAVVNRLPAEAEYVSVRVEVTDTDGNMLEQEITRAYGLRNANANANANA
AK018_06659951hypothetical proteinATGCGACGCTCTCTCCTGACCCGAGCCGCCACGACCGCAGCGGCCGCAGGACTCGCCCTCCCCCTCGTGGCGGCCGCGCCGGCCGTCGCCGACGCACCGCACGGCACGGCTGCCGGCGCCTCGGACCAGTGCTCCGGCCGCTCCGTGCCGGCCGGCAAGATCTCGTTCCAGCTCTACAGCTACAGCGGCTGGCAGCAGGAGATCGGGATCGACGCCGTCCTCGGCGAGCTCGCCGACATCGGCTACAAGAACGTGGAGCCGTTCGGCGGCAGCTACGAGGGCCGCACCGCCGAGGAGTTCCGCGCGCTGCTCAAGGAGCACGGTCTCAAGGCGCCGAGCTCCCACGGCAGCACCGACCCCGAGGCCTTCGAGGAGACCTTCGACTTCGCGAAGACCATCGGCCAGAAGTACACCGGCTCGGGCGGCTTCGCCGGACCCGGCGTCCCGTTCTTCGGCGGCAGCACGTCGTGGGAGAGCGCCATGGAGACCGCCGAGGCGATGAACGCCGCCGGCGAGGCCTCCGTCAAGGCCGGCACCGGCAAGCACTTCGGCCACAACCACTGGAACGAGTTCGCGCTCGACGTCACCGACCCGGCCACCGGCGAGACGATGAGCTGGTGGGAGGCCGTGGCCCAGAACACCGACCCGCGGTACGTCGCGTTCCAGGTGGACGTCTACTGGGCGACCGACGGCGGCGCCGACGTCGTCGAGCTGCTCGAGGAGTACGGCGACCGCATCGACCTGCTGCACATCAAGGACGGCGACCTGTCCGGTCCCACCCCGGCGTTCGGCACCCAGACCGTCGTCGGCGAGGGTGACATCGACTGGCCGTCGGTCCTGGAGGCGGCCCAGGGCAAGGTCAAGTACTACGTCATCGAGATGGACGGTGCACCGACCGACGCGAGCTTCGCGCGGGAGAGCTTCGAGTACCTGACCTGCGCGGACTTCTGAMRRSLLTRAATTAAAAGLALPLVAAAPAVADAPHGTAAGASDQCSGRSVPAGKISFQLYSYSGWQQEIGIDAVLGELADIGYKNVEPFGGSYEGRTAEEFRALLKEHGLKAPSSHGSTDPEAFEETFDFAKTIGQKYTGSGGFAGPGVPFFGGSTSWESAMETAEAMNAAGEASVKAGTGKHFGHNHWNEFALDVTDPATGETMSWWEAVAQNTDPRYVAFQVDVYWATDGGADVVELLEEYGDRIDLLHIKDGDLSGPTPAFGTQTVVGEGDIDWPSVLEAAQGKVKYYVIEMDGAPTDASFARESFEYLTCADFNANANANANA
AK018_06660951hypothetical proteinGTGCGTGACGCCGACGAACCCGACGTGCCCGCCGGCCCGGGTCGACAGGATCGCCTGCAGCATCGACTCCTGGGTCCCGACGGCCTCGACCACGCTGTGCGCGCCCAGCCCGTCGGTCATCTCCTTGATCCTCGCCACGCCCTCGTCACCGCGCTCGGTGACGATGTCGGTCGCGCCGAACTCCCGGGCCAGCCGCTGCCGCGACTCGTGCCGGGACATGGCGATGATGCGCTCCGCCCCGAGCTGCCGGGCGGCGAGGACCGCGCTCAGCCCGACCGCGCCGTCACCGACCACCACGACGGTCTTGCCCGGTCCCGCCTCGGCCGCCACGGCCCCGAACCAGCCGGTCCCCAGCACGTCCGAGGCCGCCAGCAGCGACGGGATCAGGTCCTCGTCGGGCTGACCCGGCGTCGCCACCAGGGTGCCGTCGGCCTGCGGGACCCGCAGGTACTCGGCCTGCGCGCCGTTCATGCCCACGTACTCCGCGTGCACGCACCGGCTCTGGTAACCGGCCTGGCAGATCGGGCAGGTGTTGTCCGAGGCCCAGAAGGACCCGACGACGAAGTCGCCGACCTCCACGTTCCTCACGTCGGCACCGATCTCCTCGACGACACCGACGTACTCGTGCCCCATGGGCATGGGGCCCGGAGCGGTCTCGATGCCGCGGTACGGCCACATGTCCGACCCGCAGACGCAGGCGGCCGTGACCTTGATGATCGCGTCGGTCGGCGCCAGCAGCGTCGGCTTCTCCCGCTCCTCCACCCGGACGTCCCCGGGTCCGTGCAGTACTGCTCCACGCATGATCGAGCTCCTCGTTCGGACGATGGCCGCCGGGCGGCCGGGGGTCGGGTCCTCGGGACCCGGGTCAGGACTCCCCGCGGAAGACCTGCTTCGCGACGGCCATGGCGGCCATGGCCTGCGGCCAGCCGGCGTAGAACGCGAGGTGGGTGAMRDADEPDVPAGPGRQDRLQHRLLGPDGLDHAVRAQPVGHLLDPRHALVTALGDDVGRAELPGQPLPRLVPGHGDDALRPELPGGEDRAQPDRAVTDHHDGLARSRLGRHGPEPAGPQHVRGRQQRRDQVLVGLTRRRHQGAVGLRDPQVLGLRAVHAHVLRVHAPALVTGLADRAGVVRGPEGPDDEVADLHVPHVGTDLLDDTDVLVPHGHGARSGLDAAVRPHVRPADAGGRDLDDRVGRRQQRRLLPLLHPDVPGSVQYCSTHDRAPRSDDGRRAAGGRVLGTRVRTPRGRPASRRPWRPWPAASRRRTRGGNANANANANA
AK018_06661327hypothetical proteinATGACGGACCGCGAACCCTCCGGCGCCGAGCGCATGTTCGGCGACTTCGCCCCGGGCCTCGTGCACTACACCGACGACGTGCTGTTCGGAGACGTGTGGAAGCGACCCGGGCTGTCGCCCAAGGAGCGCAGCCTGGTGACCGTCTCCGTGCTGGCCACGAACGGGAACACCGAGCAGCTCACCTTCCACATCTGGCTGGCCAAGGAGAACGGCAACTCCGAGGAGGAGGTCGTCGAGGCCCTCACCCACCTCGCGTTCTACGCCGGCTGGCCGCAGGCCATGGCCGCCATGGCCGTCGCGAAGCAGGTCTTCCGCGGGGAGTCCTGAMTDREPSGAERMFGDFAPGLVHYTDDVLFGDVWKRPGLSPKERSLVTVSVLATNGNTEQLTFHIWLAKENGNSEEEVVEALTHLAFYAGWPQAMAAMAVAKQVFRGESPGPT0005005_4090DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
AK018_06662372hypothetical proteinATGACCACCTGGACACCCGACGAGCTCAGCGCGGTCGGCGACGCCGGCGAGCTGCACATCGCGCCCGCGCGGACCGACGGCAGCTTCCGCCGTCCGACCACCATCTGGGTGGTGCGGGTCGGCGACGAGCTGTACGTCCGGTCCTACCACGGGCCCGACGGCGGCTGGTACCGCCAGGCGCTGCGCAGCGGTCGAGCCCGGATCGACGCCGGCGGCGTCGAGCGCGAGGTCTCGCTCACCGAGCCGACCGACGACGTCGACGCCTCGATCGACGACGCCTACCGCACCAAGTACGGGCGGTACAGCAGCTACGTCGCACCGATGATCGCGCCCCCGGCCGTCGCCGCGACCCTGCGGCTCGAGCCCCGCTGAMTTWTPDELSAVGDAGELHIAPARTDGSFRRPTTIWVVRVGDELYVRSYHGPDGGWYRQALRSGRARIDAGGVEREVSLTEPTDDVDASIDDAYRTKYGRYSSYVAPMIAPPAVAATLRLEPRNANANANANA
AK018_06663924hypothetical proteinATGGACAACCGCCAGGACGTACGTGAGTTCCTGACTTCGCGTCGCGCCAAGGTGACGCCTCAGGACGCCGGCCTCCCCCCGGGCAGCAACCGCCGCGTGCCCGGGCTGCGGCGCAGCGAGGTCGCGATGCTCGCCGACATGAGCGTCGAGTACTACGCGCGCCTCGAGCGCGGGAACCTCTCCGGCGTCTCGGACCCGGTGCTGGACTCCCTCGCTCGCGCCCTGCAGCTCGACGAGGCCGAGCGGTCGCACCTGTTCGACCTCGCCCGCACGGCGAACCGTGCCGTGCAGGTGCGGCCCCGTCGGCGCGGCACCCGGCGCTGGGTCGCCCGTCCCGCGCTGCAGCTCACCCTCGACGCCGTCACCGAGGGCCCGGCGTTCGTCCGCAACGGACGCATGGACATCCTCGCGGCCAACCGGCTCGGCTGGGCCTTCTACGCGGACGTGCTCGCGGCGGGTGACGAGACGCCGAACCTCGCGCGGTTCACGTTCCTGGACCCCGAGCGGTCCGAGAGCTTCTACCCGGACTGGGAGGCCGCGGCGGACGTCGTGGTGGCGATCCTGCGCACCGAGGCCGGCCGCGACCCGCACGACAAGGGGTTGCACGACCTCGTCGGCGAGCTGTCCACCCGGTCCCCCGCGTTCCGCACCCGCTGGGGCGCCCACGACGTGCGGCACCACGGCACCGGCAGCAAGGGGTTCCACCACGACGTCGTCGGCGACCTCGACCTCTACTTCGAGAGCATGGACCTGACCGCGGAGCCCGGGCTGTCGTTCCTCGTCTACACGGCGGAGGTCGGCAGCGCCTCCGAGGAACGCCTGCGGCTGCTGGCGAGCTGGGCCGCGTCGCACGACTGGCCCAACCACCCCGCTCTCGTCCCGACCACCTCCACCCAGGACGCTCCGACCGACGAGCACGCCTGAMDNRQDVREFLTSRRAKVTPQDAGLPPGSNRRVPGLRRSEVAMLADMSVEYYARLERGNLSGVSDPVLDSLARALQLDEAERSHLFDLARTANRAVQVRPRRRGTRRWVARPALQLTLDAVTEGPAFVRNGRMDILAANRLGWAFYADVLAAGDETPNLARFTFLDPERSESFYPDWEAAADVVVAILRTEAGRDPHDKGLHDLVGELSTRSPAFRTRWGAHDVRHHGTGSKGFHHDVVGDLDLYFESMDLTAEPGLSFLVYTAEVGSASEERLRLLASWAASHDWPNHPALVPTTSTQDAPTDEHANANANANANA
AK018_06664417hypothetical proteinATGAAGGTCCTCACCGCTCCCCCGACCACCAAGAACCCGCCGGAGCAGTTCACCGGCGACGTGTGGCTCGACCCCATCGCCTACCCGCAGGACGCCGGCCAGACCATGGTCGTCGCCAAGGTCAAGTTCGCCCCGGGAGCCCGCACGGCGTGGCACTCGCACGCTCGTGGCCAGACGCTGCACGTCACCAACGGGTTCGCGCTCGTCGGCACCCGCGACGGCACGGTCGTCAAGGCCGGGCAGGGCCAGACGATCTACTGCCCGCCGGACGAGGAGCACTGGCACGGCGCGACGCCGGACAGCTTCATGGAGCACCTCGCGATGCTCGAGAACACCGACGACCCCGCCACGTCCACCACCTGGCTGGAGCACGTCACCGACGAGGAGTACGCCCGGCCCGCCACCGCGGCCGCCTGAMKVLTAPPTTKNPPEQFTGDVWLDPIAYPQDAGQTMVVAKVKFAPGARTAWHSHARGQTLHVTNGFALVGTRDGTVVKAGQGQTIYCPPDEEHWHGATPDSFMEHLAMLENTDDPATSTTWLEHVTDEEYARPATAAAPGPT0005005_56DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
AK018_066651329pulA_1PullulanaseATGGCCGAGCAGCTCATGGTCGACTCCGTGGTCACCTGGGCCCGCGACTACAAGGTCGACGGGTTCCGGTTCGACCTCATGGGTCACCACTCCCGCGGGAACATGCTCGCCGTGCGCGAGGCGCTCGACGCGCTGACGGTCGAGTCCGACGGCGTCGACGGCTCGGCGGTCTACCTGTACGGCGAGGGCTGGAACTTCGGGGAGGTGGCGGACGACGCCCTGTTCACGCAGGCGACGCAGGGTCAGCTCGGCGGCACCGGGATCGGGACGTTCAGTGACCGGCTCCGCGACGCCGTGCACGGCGGCTCGCCCGTCGACGGCGCCTCGACGTTCACGCAGGGGTTCGGCACCGGGCTGTTCACCGACCCGAACGGGCGGGAGGCCCGGACTGGCGAGCCCGGCACGGTCAACGACGGCTCCGGCGACGAGGCGGCCGACCTCGGTCACCAGACCGACCTGGTCCGCCTGGGCCTGGCCGGCAACCTGCGCGACTTCACGTTCACCACGTCCGACGGCGAGACGACCCGGGGCGAGGACCTCGACTACCGCGGCTCCCCGGCCGGGTACGCCGACTCCCCGGAGGAGGTCGTCACCTACGTCGACGCCCACGACAACGAGACGCTGTTCGACCTGCTCACGCTCAAGCTGCCGCAGGCGACGTCGATGGACGACCGGGTCCGGATGAACACCGTCTCGCTCGCGACGACGGCACTGGCCCAGACGCCCTCGTTCTGGCACGGGGGCACGGACCTGCTCCGCTCGAAGTCGCTGGACCGCAACTCCTACGACTCCGGCGACTGGTTCAACGCCATCGACTGGACGGGTCAGGACAACGGGTTCGCCCGGGGGCTGCCGATGGCCGCGGACAACGAGGAGAAGTGGCCGCTCATGGCGCCGCTGCTGGCCGACCCGGCGCTCAAGCCGACGCCGGAGCACATCGCCACGGCCTCCGCGCAGGCGCGGGAGCTGCTGGAGCTGCGCTCCTCGACGCGGCTGTTCCGGCTGGGGTCGGCCGAGCTCATCGGTGAGAAGGTCTCCTTCCCTGGCTCGGGTCCGGACGCCGTCCCGGGTGTCATCGTCATGGCGATCGACGACACGGTCGGTGCCGACGTCGACCCGGCACTGGACGGGGCGCTCGTGGTGTTCAACGCCTCGCCCGAGGCGACCACGATCGACCTTCCGGACCTCGCCGGCCGCGACTACGCGCTCTCGCCGGTGCAGTCCGGCGGCGTCGACCCGGTGGTCCAGGAGACCTCCTGGGACGGTGATGCCGGGAGCGTGACGGTGCCGGCGAGGACCGTCGCGGTGCTGGTGGAGGCACAGGGGTGAMAEQLMVDSVVTWARDYKVDGFRFDLMGHHSRGNMLAVREALDALTVESDGVDGSAVYLYGEGWNFGEVADDALFTQATQGQLGGTGIGTFSDRLRDAVHGGSPVDGASTFTQGFGTGLFTDPNGREARTGEPGTVNDGSGDEAADLGHQTDLVRLGLAGNLRDFTFTTSDGETTRGEDLDYRGSPAGYADSPEEVVTYVDAHDNETLFDLLTLKLPQATSMDDRVRMNTVSLATTALAQTPSFWHGGTDLLRSKSLDRNSYDSGDWFNAIDWTGQDNGFARGLPMAADNEEKWPLMAPLLADPALKPTPEHIATASAQARELLELRSSTRLFRLGSAELIGEKVSFPGSGPDAVPGVIVMAIDDTVGADVDPALDGALVVFNASPEATTIDLPDLAGRDYALSPVQSGGVDPVVQETSWDGDAGSVTVPARTVAVLVEAQGPGPT0012195_142DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-PULLULANASE,PGPT0012195-pulA-K01200NANA
AK018_066661158chvE_2COG4213Multiple sugar-binding periplasmic receptor ChvEATGCGACTCGGCAAGAAGATGGGTGCGGTCGCCGCAGGTACGGCGCTGACGCTCTCCCTGGCTGCCTGCGGTGGCGAGGGCGCCGGCTCGAGCACCGACGGTGCGGCGGGCGACGGCGACGAGAACGTCAAGGTCGGCGTCGCGATGCCGACGCAGACCTACGAGCGGTGGATCCAGGACGGCGGCAACGTCGAGGCCGGGCTCGAGGAGCTCGGCTACGACGTGGACCTGCAGTTCGCGAACGACGACATCCCCACCCAGACCCAGCAGATCGACTCGATGATCACCGGGGGCGTGGACGTCCTCATCATCGCCTCGATCGACGGCACGGCCCTGACCAGCCAGCTCGAGGCCGCCGCGGCCGAGAACATCCCGGTCATCGCCTACGACCGCCTCATCCGTGACAGCGAGAACGTGGACTTCTACACCACGTTCGACAACTTCGCCGTCGGCGTCGCCCAGGCCAACGCGCTGCTGCGCGGCATGGGATACCTCGACGAGAACGGCGAGGAGACCGGTGAGGAGGGCCCGTACAACATCGAGCTCTTCGCCGGGTCCCCGGACGACAACAACGCGACCTTCTTCTACGAGGGCGCGATGTCGGTGCTCCAGCCGCTCCTCGACGACGGTACCGTCGTGGTCCCCTCGGGCCAGACGAACTTCGACACCGTGTCCACGCAGCGCTGGGAGCTCGAGACCGCCCAGAGCCGCATGGAGGACCTGCTGACCTCCACGTACACCGGCAACGACACCGAGCTGCACGGCGTGCTCGCCCCGGCCGACGTGCTCTCGCGCGGCATCAACAACGCCCTGCAGAGCGCGGGCATGGGCCCGACCCTCGAGGACGGTCTGCCCGTCATCACCGGTCAGGACGCCGAGATCGCGAACATCAAGCTGATCAACGACGGTGTGCAGTCCTCGACCATCTTCAAGGACACCCGCCTGCTCGCCGAGCAGGCCGTCGCCGCGGCGCAGTCCTTCGTCGAGGGCGAGGAGCCCGAGGCGAACGACACCGAGACGTACGACAACGGCGTCAAGGTCGTGCCCTCCTACCTCCTCGAGGTCGAGACGGTGTTCGCCGAGGACATCGAGCCCGTGCTCGTGGACTCCGGCTACTACACCATGGACGAGGTCGAGTCCGGCCAGACGGCCGAGTGAMRLGKKMGAVAAGTALTLSLAACGGEGAGSSTDGAAGDGDENVKVGVAMPTQTYERWIQDGGNVEAGLEELGYDVDLQFANDDIPTQTQQIDSMITGGVDVLIIASIDGTALTSQLEAAAAENIPVIAYDRLIRDSENVDFYTTFDNFAVGVAQANALLRGMGYLDENGEETGEEGPYNIELFAGSPDDNNATFFYEGAMSVLQPLLDDGTVVVPSGQTNFDTVSTQRWELETAQSRMEDLLTSTYTGNDTELHGVLAPADVLSRGINNALQSAGMGPTLEDGLPVITGQDAEIANIKLINDGVQSSTIFKDTRLLAEQAVAAAQSFVEGEEPEANDTETYDNGVKVVPSYLLEVETVFAEDIEPVLVDSGYYTMDEVESGQTAEPGPT0015735_55DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0015735-sbpA-K10546NANA
AK018_066671560xylG_5COG1129Xylose import ATP-binding protein XylGATGAGCACCATTCTGGAGATGCGCTCCATCACCAAGGAGTTCCCGGGCGTCAAGGCGCTGTCGGACGTCACCCTCACCGTCGAGCAGGGCGAGATCCACGCCATCTGTGGTGAGAACGGCGCCGGCAAGTCGACGCTCATGAAGGTGCTGTCGGGCGTCTACCCGCACGGCACGTACGACGGCGAGATCGTCTTCGACGGCGCGTCGGCCGAGTTCGGGTCCATCTCGGACTCCGAGGAGCAGGGCATCGTCATCATCCACCAGGAGCTCGCCCTGGTGCCCTACCTCTCCGTGGCCGAGAACATCTTCCTCGGCAACGAGACCCGCGGCCGCCTCGGACTCATCGACTGGAACAACGCCAACCATCGCGCCGCTGCGCTGATGGAGCGGGTCGGGCTGCACGAGAACCCGACGGCGCCGATCGGCCAGCTCGGTGTCGGCAAGCAACAGCTGATCGAGATCGCCAAGGCCCTCTCGAAGAAGGTGCGTCTGCTCATCCTCGACGAGCCGACCGCCGCCCTGAACGACACCGACTCCGAGCACCTGCTCGAGCTCCTCCGCGCCCTGCGCGGCGAGGGCATCACGTGCATCATCATCTCGCACAAGCTCAACGAGATCGAGGAGATCGCCGACCGCACGACGATCATCCGTGACGGGCAGACGATCGAGACGATCGACATGTCCGCCGAGGACGCCACCCAGGACCGCATCATCCGCGGCATGGTGGGTCGCGACCTCGAGCACCGCTACCCGGAGCGTGCCAGCGTCCTCGGCGACGAGGTGCTGCGGGTGGAGGACTGGAACGTCGACCACCCGACCCAGGCCGGCCGGCAGGTCATCACCGACGCGTCCTTCAACGTGCGGGCCGGTGAGGTCGTGGGCATCGCGGGTCTCATGGGCGCCGGCCGCACCGAGCTCGCGATGAGCATCTTCGGCAGGTCCTACGGGCGCAACATCCGCGGCAAGATCTTCAAGGACGGCAAGGAGATCCAGGCCCGGACGGTCGCGGAGGCGATCAAGCACCACATCGCCTACGCCACCGAGGACCGCAAGCACTACGGCCTGAACCTCATCGACGACATCCGGCACAACATCTCCGCCGCAGGCCTGCGCCAGCTGGCCCCCGGTGGCTGGGTGAACAGCAACGAGGAGCTGCGCGTCGCAGAGGACTACCGGGCCTCGCTGAACATCAAGACGCCGAGCGTCGTCGTCGACGTCGGCAAGCTCTCGGGCGGCAACCAGCAGAAGGTCGTGCTGTCCAAGTGGCTGTACACCGATCCCGACGTGCTCATCCTCGACGAGCCCACGCGCGGTATCGACGTCGGTGCCAAGTACGAGATCTACACGATCATCAACAAGATGGTCGCGGCGGGCAAGGCGGTCGTCGTCATCTCCTCCGAGCTCCCCGAGCTGCTCGGCATCTGCGACCGCGTGTACACCCTCGCCTTCGGCCGCATCACCGGTGAGCTCCCCGTCGCCGACGCGACGCAGGAACGCCTCATGGAGCTCATGACGCTCGAGCGCGACCAGCCCCTGCCCACGAACGGAACTGCCTCATGAMSTILEMRSITKEFPGVKALSDVTLTVEQGEIHAICGENGAGKSTLMKVLSGVYPHGTYDGEIVFDGASAEFGSISDSEEQGIVIIHQELALVPYLSVAENIFLGNETRGRLGLIDWNNANHRAAALMERVGLHENPTAPIGQLGVGKQQLIEIAKALSKKVRLLILDEPTAALNDTDSEHLLELLRALRGEGITCIIISHKLNEIEEIADRTTIIRDGQTIETIDMSAEDATQDRIIRGMVGRDLEHRYPERASVLGDEVLRVEDWNVDHPTQAGRQVITDASFNVRAGEVVGIAGLMGAGRTELAMSIFGRSYGRNIRGKIFKDGKEIQARTVAEAIKHHIAYATEDRKHYGLNLIDDIRHNISAAGLRQLAPGGWVNSNEELRVAEDYRASLNIKTPSVVVDVGKLSGGNQQKVVLSKWLYTDPDVLILDEPTRGIDVGAKYEIYTIINKMVAAGKAVVVISSELPELLGICDRVYTLAFGRITGELPVADATQERLMELMTLERDQPLPTNGTASPGPT0016530_155DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0016530-gguA|ABC_GGU_A-K10548NANA
AK018_066681179xylH_2COG4214Xylose transport system permease protein XylHATGAACGCCATCGCCTCGGTCCGGGACGCCCTGACCCGGAACATGCGCCAGAGCGGCATCCTCATCGCCTTCGTCGCGATCGTGGTGCTGTTCGCCGCCCTGAACGACAGCTTCCTGTCTCCCGGGAACCTGACGAACCTCGTCCTGCAGTACTCCTACATCCTGATCCTGGCCATCGGCATGGTGATGGTGATCATCGCCGGGCAGATCGACCTGTCGGTCGGGTCGGTGGTGGCACTCTCGGGTGCGGTCTCCGCCGCGGTCGTCATCCGGGAAGGCATGCCCTGGTGGGCCGGCGTCGCCGCCGCCCTGCTCGTGGGTCTGCTGGTCGGGATCTGGCAGGGCTTCTGGGTCGCCTACGTCGGCATCCCCGGCTTCATCGTGACGCTCGCGGGCATGCTGCTCTTCCGTGGCCTGACGTTCCTCGTCCTGGACAACCGGTCGCTCTCGCCGTTCGGCGGGACCTACTACGACATCGCGAACGGCTTCCTCAACGGCTGGCTCGGCGGGTACGGCTACGACGTCTTCACGCTCGTGATCTTCGGCATCGCCGTCGTCGGCTACGCCGTGTCCCAGTGGCGCTCCCGCCAGGGCAAGATCGCCTACCAGCAGTCGGTCGAGTCCCTGCCGATGTTCGCGCTGAAGCTCGTCGTCGTCGCCGCGGTGGTCATGTGGTTCGGCTACCAGCTCTCCACGTCCCGAGGCCTGCCGGTGGTGCTGATCATCCTGGCGGTGCTGATCATCGCCTACACGCTGGTCACGCAGAAGTCCGTCTTCGGCCGGCACATCTACGCCGTCGGCGGCAACCGCCACGCTGCCGAGCTGTCGGGCGTGTCCGTGCGCAAGATCAACTTCTGGGTCTTCGTGAACATGGGTGTGCTCGCTTCCGTGGCCGGTGTGGTGTTCTCCTCGCGGATGAACGGCGCCCAGCCCAGCGCGGGCGAGATGTTCGAGCTCGACGCGATCGCTGCCTGCTTCATCGGTGGTGCGTCCACCACGGGCGGCATCGGCCGGGTGGGCGGCGCCATGATCGGTGGTCTGATCATGGCCGTCATGTCGAACGGCATGCAGCTCATGGGCGTGCCGCAGTCGATGCAGCAGGTCATCAAGGGCCTGGTGCTGCTGCTGGCCGTCGCCTTCGACATCTGGAACAAGAAGCGCGCCGCCGTGGCCCGCTGAMNAIASVRDALTRNMRQSGILIAFVAIVVLFAALNDSFLSPGNLTNLVLQYSYILILAIGMVMVIIAGQIDLSVGSVVALSGAVSAAVVIREGMPWWAGVAAALLVGLLVGIWQGFWVAYVGIPGFIVTLAGMLLFRGLTFLVLDNRSLSPFGGTYYDIANGFLNGWLGGYGYDVFTLVIFGIAVVGYAVSQWRSRQGKIAYQQSVESLPMFALKLVVVAAVVMWFGYQLSTSRGLPVVLIILAVLIIAYTLVTQKSVFGRHIYAVGGNRHAAELSGVSVRKINFWVFVNMGVLASVAGVVFSSRMNGAQPSAGEMFELDAIAACFIGGASTTGGIGRVGGAMIGGLIMAVMSNGMQLMGVPQSMQQVIKGLVLLLAVAFDIWNKKRAAVARPGPT0016525_625DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0016525-gguB|ABC_GGU_P-K10547NANA
AK018_066691194nagC_6COG1940N-acetylglucosamine repressorATGGCGCGGACGCAGTCGTCGCTGCGCGAGGCCAATCGTGCCCGCGTGGTCGACGCCGTCAAGAAGCACGGCAGCCTCACCCAGGTGGAGCTGACCGGCGCCACCGGCCTGTCCGCGGCGACCGTCTCGACGATCGTCAAGGAGCTCGTGGCCGCCGAGGTCGTCGAGGTCCGCAACACGGTCCGGTCCGGTCGACGCGCTCAGCTCGTCACCCTCGCCCACCGTGTCGGCCTCGTGGCCGGCGTCGTCGTCGGCTACCGCGCCATGCGGGTCGCGCTCGCCGACGTCGCCCACGAGATCCTCGCCGAGCAGTCGCTGCCCCTGCCGGCCGACCATCGGCCCGACACCAGCCTCGACCGGGCAGCGCTGCTCGTGGTGGACCTGCTCGAACGCGTCGGATCCGATCTGGACGAGCTCCTCGGCATCGGCCTCGGGATCCCCGCGCCGGTTCACCCCGCCACGGGGATGCTCAGCGTGCGGGGCGTGCTGCGCGGCTGGGACGCCGTGCAGATCGCCCAGGTGCTCGAGAAGCGGCTCTCCCGCCCCGTCTTCGTGGACAACGACGCCAACCTCGGGGCGCTGGCGGAGTCCACGGTCGGCGTCGGCCGCCCGTGGCGGGACATGATCTACGTGGGTGTCTCCCACGGGGTGGGTGCCGGGATCGTCATCGGCGGGTCGGTGCACCACGGTGTGGACGGCACCGCGGGCGAGATCGGCCACGTCCAGGTCGACCCGGCGGGCCGGATCTGCCTGTGCGGCAGCCGAGGATGCCTCAACACCGTGGTGGGTCTGCCTGCTCTGCTCGAACCGCTAGAGACCAGCCACGGTCACCTCACCCTGGGCGACGTCGTCCGGCTGGCCCGGGCCGACGACCCGGGCTGCCGGCAGATCGTCGCCGACGCCGGCGAGCAGGTCGGGGCCGTCGTCGCCGCGCTGGCGACGGGGCTCGGACCCCAGGGGATCGTCGTCGGCGGGGAGCTCGCCGAGACCGGGGAGACCTTTCTGGCACCCTTGCGTGCGGCGGTCGAGCGTCGCACGGTGCTCCACCAGGCGGGCGGGCCCGAGGTGGTGCCCGCCGCCTGGGGTCTGCGCGCCGAGCTCGTGGGCGCCGTGGCGCTCGCCCTGCAGAGCACCGACGTGTTCGACCCCGCCCGACGCACGGACCGAAGCGACGAGGAGATGGCTGGACGATGAMARTQSSLREANRARVVDAVKKHGSLTQVELTGATGLSAATVSTIVKELVAAEVVEVRNTVRSGRRAQLVTLAHRVGLVAGVVVGYRAMRVALADVAHEILAEQSLPLPADHRPDTSLDRAALLVVDLLERVGSDLDELLGIGLGIPAPVHPATGMLSVRGVLRGWDAVQIAQVLEKRLSRPVFVDNDANLGALAESTVGVGRPWRDMIYVGVSHGVGAGIVIGGSVHHGVDGTAGEIGHVQVDPAGRICLCGSRGCLNTVVGLPALLEPLETSHGHLTLGDVVRLARADDPGCRQIVADAGEQVGAVVAALATGLGPQGIVVGGELAETGETFLAPLRAAVERRTVLHQAGGPEVVPAAWGLRAELVGAVALALQSTDVFDPARRTDRSDEEMAGRNANANANANA
AK018_06670747frcA_2COG1129Fructose import ATP-binding protein FrcAATGATGCCGCCGGTACCGCACCGCACGCCCCTGCTCGCCCTGCACGAGGTGAGCAAGTACTTCGGCGCCGTCGAGGCGCTCGTGGGGGTCGATCTGGAGGTGCACGCCCACGAGGTGGTGGCGCTCGTCGGCGACAACGGGGCCGGCAAGTCCACGCTGGCCCAGGTCGTGGCCGGCGTGCTGTCCACCGACGCGGGACAGATCGAGATCGACGGCGAACCCGTGACGCTCGGCTCGGCGTCGGCGGCGAACCGGCTCGGGGTCGCCAGCGTCTTCCAGGACCTGGCCGTCTGCGAGAACCTCGACGTGACGGCGAACCTCTTCCTGGGACGTGAGCTGCGCAACCGGGTCGGTCTCCTGCACGAGGGCGAGATGGAGGTCCAGACGCGCGAGCTGCTCGAGCGTCTGACCGTGCGCATCCCCTCGGTGCGCACCACGCTGCGCCAGCTCTCGGCCGGGCAGCGGCAGGCGGTCGCCATCGCTCGCACGCTCATCGGCAACCCACGGATCGTGGTCCTCGACGAGCCGACCGCGGCGCTGTCCGTCGCGCAGACCGGTGAGGTGCTCACCCACATCCAGCGGCTGCGGGAGATGGGCCTCGGGGTCATCCTCATCAGCCACAACCTCAACGACGTGCGGGCAGTCGCCGACCGCATCGAGGTGCTGCGCCACGGGCGCAACAACGGCTCGTTCCCGGCCACGGCGTCGCACGAGTCGATCCTGGCCGCGATCACCGGAGCGGCCTGAMMPPVPHRTPLLALHEVSKYFGAVEALVGVDLEVHAHEVVALVGDNGAGKSTLAQVVAGVLSTDAGQIEIDGEPVTLGSASAANRLGVASVFQDLAVCENLDVTANLFLGRELRNRVGLLHEGEMEVQTRELLERLTVRIPSVRTTLRQLSAGQRQAVAIARTLIGNPRIVVLDEPTAALSVAQTGEVLTHIQRLREMGLGVILISHNLNDVRAVADRIEVLRHGRNNGSFPATASHESILAAITGAAPGPT0016660_1103DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016660-xylG-K10545NANA
AK018_066711110chvE_3COG4213Multiple sugar-binding periplasmic receptor ChvEATGATGCGACGTGTGGCAGCAACGGCTGCCGTGCTGGCCTCGGCCGGCGTGCTGACCCTGTCCGGGTGCGGGGCGCTCGGCGGCGAGGACACGATCGGCGTGGCCATGCCCACCGAGACGTCCGAGCGCTGGATCGCCGACGGTGCGGCGTTGTCGGACGGCCTGCAGGAGGCAGGGTACGAGGTCGACCTGCGGTACGCCGGGGACGAGGGCGGCGGGTACCGGCAGGCCGACCAGGTGCAGGAGATGATCGACGACGGCGTGGAGCTGCTGATCGTCGCGGCCGTGGACGGTGCCGGGCTCGGCGAGCAGCTCGCCGCGGCGGCGGAGGCGGGCATCCCCGTCATCGCCTACGACCGGTTGCTGCTCGAGTCGGAGCACGTCGACCACTACGTCACGTTCGACAACTACGCGGTGGGGGTCGCGCAGGCGACCGCGCTGCTCCAGGGTCTCGGCGTCGTGGACGAGCAGGGGGAGCCGACGGGCGACACCGGCCCGTACGACGTCGAGCTCTTCGCCGGCTCCCCGGACGACAACAACACCTTCATCTTCTGGCAGGGGGCGATGGACACCCTCCAGCCGTACCTGGACGACGGGACGCTGCGGGTGCCGTCGTCGCTGACGGACGTGGGTGCCGCCAGCACGCAGCAGTGGCTGGCGGAGAACGCCCGTGAACGCATGGCCGTGCTGCTGCAGAGCCACTACGACGACGGCTCCGAGCTGGACGGCGTGCTGTCGCCGTACGACGGCATGTCCCGCGGCATCATCGAGGCCCTCCAGCTGTGGGGCCTGGGTCCGTCGCTGGCGGACGGGCTCCCCGTGGTCACCGGCCAGGACGCCGAGGCGGACTCGGTGGCGCTGATCCGGGACGGCGTCCAGCAGTCGACGGTCTTCAAGGACACGCGCGTGCTGGCCGACAGCGCGGTGGACGCCGCGCTGGCCTACCTCGAGGGCGGGCAGCCGGAGGTCGACGACACCACGACCTACGACAACGGGGTCGAGGTGGTGCCGACTCTCACGATCGACGTCGAGGTCGTCCTGCGCGACGACATCGACGAGGTGCTCGTGGACAGCGGCTACCTGACCGCGGCGGAGATCGCGGCCGACTGAMMRRVAATAAVLASAGVLTLSGCGALGGEDTIGVAMPTETSERWIADGAALSDGLQEAGYEVDLRYAGDEGGGYRQADQVQEMIDDGVELLIVAAVDGAGLGEQLAAAAEAGIPVIAYDRLLLESEHVDHYVTFDNYAVGVAQATALLQGLGVVDEQGEPTGDTGPYDVELFAGSPDDNNTFIFWQGAMDTLQPYLDDGTLRVPSSLTDVGAASTQQWLAENARERMAVLLQSHYDDGSELDGVLSPYDGMSRGIIEALQLWGLGPSLADGLPVVTGQDAEADSVALIRDGVQQSTVFKDTRVLADSAVDAALAYLEGGQPEVDDTTTYDNGVEVVPTLTIDVEVVLRDDIDEVLVDSGYLTAAEIAADPGPT0015735_76DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0015735-sbpA-K10546NANA
AK018_06672690hypothetical proteinATGACCACGCACGAGTCCTTCAAGCGCCGCGTCCGCGAGCGCATGGCCCGCACCGGCGAGCGCTACGCCGCCGCCCGCCGCACCCTGCTGTCCGCCTCGGCCGGCACGCCGGGTGCACCCGCCCGGTGGGTCAGCGAGCCCGAGCTGTCCGACACCCGGGTCCGCTCCGCGACCGGCCTCGGCTGGGACGAGTGGGTCGCCCGGCTGGACGCCGGGCCCGGCCGCACCGCCGGCCACCCCGAGATCGTCGCCTGGCTCACCGACCACGCCGAGATGTCCGGCTGGTGGGTGCAGACGGTCACCGTCGGCTACGAGCGGATCACCGGCATCCGGCTGCCGGGCCAGATGCCCGACGGCACCTTCACGGTCAGCCGGTCGAGGCTGCTCGGTGCGAGCCGGGACACGGTGCGGGCGCGCCTGCTCGACGACGGCGGTCCGGGCGCGCTGGTGCCGGGCCTGACGCTGACGCCGCGGTCCCGCCCGGGCGTTAAGAGCCCGCGCTTTACCGTCGCCGAGCCGGGGGCGGACGGTGACGTCGCCCAGGGGGTGCTGCTGCTGTCGACCGACGCCGTCGGCGACCGCTGCCGCCTGACCGTCAGCCACGAGAAGATCTCCTCGCCGGCGCAGGCCGAGCAGTGGAAGAAGTTCTGGGGCGAGTGGCTCACGACCCTGGCCGACGAGCTCGTCTGAMTTHESFKRRVRERMARTGERYAAARRTLLSASAGTPGAPARWVSEPELSDTRVRSATGLGWDEWVARLDAGPGRTAGHPEIVAWLTDHAEMSGWWVQTVTVGYERITGIRLPGQMPDGTFTVSRSRLLGASRDTVRARLLDDGGPGALVPGLTLTPRSRPGVKSPRFTVAEPGADGDVAQGVLLLSTDAVGDRCRLTVSHEKISSPAQAEQWKKFWGEWLTTLADELVNANANANANA
AK018_06673669gph_13Phosphoglycolate phosphataseATGATCTGGCTGCTCGACCTCGACAACACGCTCGTCTCCCGCGACGACGCCTTCGCCGCCTGGGCCGCGACCGCGGTGGCGGACGACGGCGGCACGGACGCCGACCTGGCGGCCATCGTCGCCGCGGACGACGGCGGGTTCTCGCCCAAGGCGGTCGTGGCGCGCGAGCTCATCGACCGGTTGGGCTGGGTCGACGACGTCGAGGCGGCGATCGACCGGTTCCGCGCGGGCATCCGCGAGCACGTGCGGGCGTACGACGGGTTGCTCGTCGACCTCGACGCGCTGCGCGCCGCCGGGGACCGGGCGGCCGTGGTGACCAACGGCGTCTCGCACCAGCAGCGCGGCAAGATCGCCCGGTGCGGCATCGCGGCGCACGTGGACGCGATCGTCGTCTCCGGGGAGGAGGGCGTCGAGAAGCCCGACCCGCGGATCGTGGAGATCGCGCTCGCGCGGCTCGGCGTGACCGACGTCGACCGCGACCGGGTCTGGATGGTCGGCGATGCCGGGCACGCCGACGTCGCCGTCGGGCGGGCCGCCGGGGTGCGCACCGGGTGGGTGTCGCACGGGCGTGCCTGGGACGACGCCGAGGGGCCGGTGCCGGACGCTGTGGGCGCCACCACCCGGGACGTCCTGGCGCTCGTGACGGCCGGTCGGCCGGTCGCGTCCTGAMIWLLDLDNTLVSRDDAFAAWAATAVADDGGTDADLAAIVAADDGGFSPKAVVARELIDRLGWVDDVEAAIDRFRAGIREHVRAYDGLLVDLDALRAAGDRAAVVTNGVSHQQRGKIARCGIAAHVDAIVVSGEEGVEKPDPRIVEIALARLGVTDVDRDRVWMVGDAGHADVAVGRAAGVRTGWVSHGRAWDDAEGPVPDAVGATTRDVLALVTAGRPVASPGPT0013410_454DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013410-yjjG-K08723NANA
AK018_06674930COG2755GDSL-like esteraseGTGCCACCGGCCGACGGCGACACGACACCGCGCCGTCACGCCGCGTTCAACCCGATCTGCTTCAACACACCTATGAGCACCCGCACCTCGCTCACGGCGCTCGCCGCGTTGGCCGCCGTCACGGTCTCCACCGCCGTGGCCGTGGAGATCCTGCGCCGCCAGGCGGCGGTGGCCCGCCGGCGGATCGGCAAGGCGCTGGGCGAGGTCGCCCCCGACGCCGACCGCGTCTGGCGCAAGAAGTACGGGGGCGAACCGCTCCAGATGCTCGTCCTGGGCGACTCCATCGCCGCCGGGCTCGGCGCCGAACGCCGCAAGGACACCCTCGGCGGGCGGGTCGCGCGCGGCGTCGCCAAGGCGCTGCAACGGCCCGTGCGGCTCCGGGTGGCGGCCGTCGTCGGCTCGGAGACCTCGGCGCTCGCGGCCCAGCTCGACGCGCTGCCGGACGGCTACCGCCCCGACGTGACCGTCGTCGTCGTGGGCGGCAACGACGTCACCCACCGCGTGCCCACCGCGGTGTCCGTGCGGCACCTCGTCGACGCCGTGGACCGGCTGCACGCGCTGGGCTCGGTCGTCGTGGTCGGCACCTGCCCGGACCTCGGCGCGCTGCGCCCGGTGCCGCAACCGTTGCGGGTGCTCGGCGCGCGGGCCTCCCGGCAGCTCGCCGCCGCCCAGTCCGTCGCCGTGCGCCGGGCCGGGGCGCACGCCGTCTCGCTGGCCGACGTCGTCGGACCGTTCTTCATCTCCTACCCCGAGGAGGCGTTCAGCCTCGACCGGTTCCATCCCAGCGCCCTGGGATACCGCCGCACCGCCAAGGCGCTGGTGCCGTCCGTGCTGGTGGCCCTCGGGGAGCGGGACGAGCTCCCGCACGGGCACCGACCGCCCGACCCGCTGGCCGGGACGGTCCGGCGGCGCCGGGCGCGGCCCGCGTAGMPPADGDTTPRRHAAFNPICFNTPMSTRTSLTALAALAAVTVSTAVAVEILRRQAAVARRRIGKALGEVAPDADRVWRKKYGGEPLQMLVLGDSIAAGLGAERRKDTLGGRVARGVAKALQRPVRLRVAAVVGSETSALAAQLDALPDGYRPDVTVVVVGGNDVTHRVPTAVSVRHLVDAVDRLHALGSVVVVGTCPDLGALRPVPQPLRVLGARASRQLAAAQSVAVRRAGAHAVSLADVVGPFFISYPEEAFSLDRFHPSALGYRRTAKALVPSVLVALGERDELPHGHRPPDPLAGTVRRRRARPANANANANANA
AK018_066751104ybdK_2COG2170Putative glutamate--cysteine ligase 2ATGACGAAGCCGCGCACGATGGGTGTCGAGGAGGAGTTCCTCCTCGTGGGTCCGGACGGGTCACCGGTCGCCAAGGCCGCCGAGGCTCTCGAGGCGTCCGGGAACTCCACCAAGGGCGGTGGCACGGGTGCCCTGGAGCCGGAGTTCATGGAGGAGCAGCTCGAGACCGCCACGCTGCCGCGCGCCTCGCTGGAGGACCTCGCCAAGGAGATCCGTGCCGGGCGGACCCGCGCGCAGGACGCCGCGGACCGGGTCGGGGCGCGGGTCGCGGCCCTGGCGACGTCGCCGATCGCGTTCACCGGCACGACGGTGTCCCGGCTGCGGTACCTGCAGGCGCGGCACACGTTCGGCATGACGGCCCGCGAGCAGCTGACCAGCGGCTGCCACGTGCACGTCGCCGTCGACGACGAGGTCGAGGGCGTGGCCGTCCTGGACCGGATCGGGCCGTGGCTGCCGACGCTGCTGGCGCTGAGCACGAACTCGCCGTACTGGCAGGGCGAGGACACCGACTACGCGAGCTTCCGGTCCCAGGTGTGGGCCCGCTGGCCGACGGCGGGACCCACGCGCCGGTTCGGCACCCCGGAGGCGTACCACGCGGCCGTGGACGCCATCGTGGCCACCGACACGGTGCTGGACCGCGGGATGGTGCACTTCGACGCGCGGCTGTCGCCCCGGTACCCCACGGTGGAGATCCGGGTCGCCGACGTCTGCCTGCATCCCGACACGGCGACGCTGCTGGCGGCGCTGGGACGCGGCCTGGTGGAGACCGCCGCCCGCGAGGCCGCCGAGGACGCCCCCGTGACGGAGACCTACCCCGAGCTGCTGCGCACGGCGGCGTGGCGGGCGGGCCGGTCGGGGCTCGCGGGCGATCTGGTCTCGCCGATCACGTGGCGTCCCGCGCCGGCGCACGACGTCGTCGGACAGCTCGTCTCGCACGTCCGCGACGCGCTGGACGACGTGGGGGACCTCGACGCCGTGACGGACCTGCTCGGCCACCTGTGGTCCACCGGCGGCGGTGCGGCGCAGCAACGTGCTTGGTTCGCCGAGTCGGGCGGAGACCTGCGGCGGGTGGCCGAGCGGGCCGTGGAGGTCACGCACTCCTGAMTKPRTMGVEEEFLLVGPDGSPVAKAAEALEASGNSTKGGGTGALEPEFMEEQLETATLPRASLEDLAKEIRAGRTRAQDAADRVGARVAALATSPIAFTGTTVSRLRYLQARHTFGMTAREQLTSGCHVHVAVDDEVEGVAVLDRIGPWLPTLLALSTNSPYWQGEDTDYASFRSQVWARWPTAGPTRRFGTPEAYHAAVDAIVATDTVLDRGMVHFDARLSPRYPTVEIRVADVCLHPDTATLLAALGRGLVETAAREAAEDAPVTETYPELLRTAAWRAGRSGLAGDLVSPITWRPAPAHDVVGQLVSHVRDALDDVGDLDAVTDLLGHLWSTGGGAAQQRAWFAESGGDLRRVAERAVEVTHSPGPT0026300_1857DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
AK018_06676729mca_4Mycothiol S-conjugate amidaseATGGACACCGACGCGTTCGCACCGCTGGACGAGGACTTCTCCACCGCGCTGGTCGTCGTCGCGCACCCCGACGACATGGAGTTCGGGGGAGCGGCGGCCATCGCCCGCTGGTCCGGTCAGGGCAGACGGATCGCCTACGTCATGGTCACCAGCGGCGAGGCCGGCATCGACGGCACGTCGCCCGAGGAGGCGCGGCCCGTGCGCGAGGCCGAGCAGGTCGACTCCGCCCGCCTCGTGGGCGTCGAGGAGGTCGAGTTCCTCGGGTTCCCCGACGGCGTGGTCGAGTACGGCCTGCCCCTGCGCGCCGCGATAGCGCACGCGATCCGCCGGCACCGGCCCGAGATCGTGATCACCCTGAACTTCCGCGAGGAGTTCCCCGGCGGTGTCCTGAACCAGGCCGACCACGTCGCGGTGGGCCGCGCCGTCGTCGACGCCGTGCGCGACGCCGCCAACCGGTGGGTCTTCGCCGACCAGCTCGACGACGGCCTCGAGCGCTGGGACGGCGTCCGTGAGGTGTGGGTCGCCGCCTCCCCGCGCGCCGAGCACGCCGTCGACGTCACGGACACGTTCGACGACGGCGTCGCCTCCCTGCGCGCCCACAGCGCCTACATCGCGGGGCTGGGCTGGGAGGACTTCGACGCCGGCGAGTTCCTCGGCCGCATCACCCGCGACAACGGCGAGGCGTTCGGCACCGAGCACGCCACCACCTTCGAGGTGCTGCGGATGTGAMDTDAFAPLDEDFSTALVVVAHPDDMEFGGAAAIARWSGQGRRIAYVMVTSGEAGIDGTSPEEARPVREAEQVDSARLVGVEEVEFLGFPDGVVEYGLPLRAAIAHAIRRHRPEIVITLNFREEFPGGVLNQADHVAVGRAVVDAVRDAANRWVFADQLDDGLERWDGVREVWVAASPRAEHAVDVTDTFDDGVASLRAHSAYIAGLGWEDFDAGEFLGRITRDNGEAFGTEHATTFEVLRMNANANANANA
AK018_06677861pflA_2COG1180Pyruvate formate-lyase 1-activating enzymeATGGCCGCCGTCCCGGTGCTGCTCGACGCCCCGTCGCGGCGCCGGGCCGGCGCCGGCCTGCGGGGCCTGGCGACCTCCGACGTCGAGCGGTCCCAGCGGCTGCGGCTCATGCGGTCCGGGGCGCTCGGCTCGGTGCACTCCTGGGAGCTCGTGACGGCCGTCGACGGTCCCGGCACGCGCCTGACGGTGTTCCTCAACGGCTGCCCGCTGCGCTGCCAGTACTGCCACAACCCCGACACGTGGTCCATGAGGGACGGCGGGCCGGTGCTGGCGAGCGACCTGCTGGGGCGCGTCGAGCGGTACCGCGGCGTGTTCTCCGCGACCGGCGGGGGCCTGACCCTCTCCGGCGGCGAGGTGCTCATGCAGCCCGCCTTCGCGGCACGGATCCTGCGCGGCGCGAAGGAGCTCGGCGTGCACACCTGCCTGGACACCTCGGGCTACCTCGGCGCGAACGCCACCGACGAGATGCTCGACGACACCGACCTGGTGCTGCTGGACATCAAGGCCGGCGACGAGGACACCTACCGGCGCGTGACCGGGCGGTCCCTGGCCCCGACGCTGGCGTTCGGGCGTCGCCTCGCCGAGCGCGGCGTGGCCGTGTGGGTGCGGTTCGTCCTGGTGCCCGGGCTGACCGACGACCCGGCGAACGTCGCGGCCGTCGCCGACCACGCCGCCGCGATCGAGGCCGTGCGGCCGGGGACCGTGCAGCGCGTCGAGGTCCTGCCGTTCCACCAGATGGCCCGGGACAAGTGGGCCGAGCTGCGGCGGGCGTACCCGCTGGCCGACACCGAACCCCCCACGCCGGAGGCCACCGAGACGGTGCGGGAGGTGTTCCGCTCGCGCGGGCTGACGACGTACTGAMAAVPVLLDAPSRRRAGAGLRGLATSDVERSQRLRLMRSGALGSVHSWELVTAVDGPGTRLTVFLNGCPLRCQYCHNPDTWSMRDGGPVLASDLLGRVERYRGVFSATGGGLTLSGGEVLMQPAFAARILRGAKELGVHTCLDTSGYLGANATDEMLDDTDLVLLDIKAGDEDTYRRVTGRSLAPTLAFGRRLAERGVAVWVRFVLVPGLTDDPANVAAVADHAAAIEAVRPGTVQRVEVLPFHQMARDKWAELRRAYPLADTEPPTPEATETVREVFRSRGLTTYNANANANANA
AK018_066782262pflB_2Formate acetyltransferaseATGAGCATCCAGGCCGAGCAGAGCACCGCAGCGGACGTCGCGTGGGAGGGGTTCGTCCCCGGCCCGTGGTGCGACGGCGTCGACGTGCGCGACTTCATCCAGCGCAACTACACCCCGTACACCGGGGACGCGACGTTCCTCGCCGGCCCGACGCCGCGCACCAGCGCGCTCTGGGCTCGCCTGAGCGAGATGTTCCCGACCGAGCGGGAGAAGGGCGTCTACGACGTCTCCGCCGACGTCCCCGCCGGCATCACCGCCCACGAGCCCGGGTACATCGACCAGGCCACCGAGATCATCGTCGGCCTGCAGACCGACGCCCCGCTGAAGCGCGCCATCATGCCCAACGGCGGCTGGCGCATGGTCGAGGGCGCCCTGAACACCTACGGCTACCCGGTGGACCAGGGCCTCAAGAAGGTCTTCACCGAGTACCGCAAGACTCACAACCAGGCCGTGTTCGACATCTACCCGCCGAACGTGCGCGCCGCCCGCAGCTCGCACGTCGTCACCGGTCTGCCGGACGCCTACGGCCGCGGCCGCATCATCGGCGACTACCGCCGCGTCGCGCTGTACGGCGTCGACGCGCTCGTCGAGGCCAAGAAGCTCGACAAGCTGACCCTCGAGGCCGAACCCTTCACCGAGGACGTGGCCCGGGCCCGCGAGGAGCACGCCGAGCAGATCCGTGCCCTCGGCGAGCTCCAGGAGATGGCCGCCTCCTACGGCGTCGACATCTCCCGCCCGGCCCGTACCGCTGTCGAGGCCGTGCAGTGGCTCTACTTCGGGTTCCTCGCCGCGGTCAAGGAGCAGAACGGCGCCGCGATGTCGCTCGGGCGCACCTCGACCTTCCTGGACGTCTACCTCGAGCGCGACCTCGCCGCCGGGCGGATCACCGAGGCCGAGGCGCAGGAGGTCATGGACGACTTCGTCATCAAGCTGCGCATCGTGCGGTTCCTGCGCACCCCCGAGTACGACGCCCTCTTCTCCGGCGACCCGACCTGGGTCACCGAGACTATCGGCGGCATGGGCACCGACGGCCGCACCCTGGTCACCAAGAACTCGTTTCGGATGCTCCAGACCCTGTACAACCTGGGCCCGGCGCCCGAGCCCAACATGACCGTGTTCTGGACCGCCGCGCTGCCCCAGGGGTTCAAGGACTTCTGCGCCCAGGTCTCCATCGACACCTCGGCCGTGCAGTACGAGTCCGACGACGAGATCCGGGCCGCCTGGGGCGACGACGCCGCCATCGCCTGCTGCGTCTCGCCGATGGCGATCGGCAAGCAGATGCAGTTCTTCGGCGCCCGGGTCAACCTCGCCAAGGCGCTGCTGTACGCGATCAACGGCGGCCGCGACGAGGTCACCGGCAAGCAGGTGTCCCCGGCGTTCGCGCCCGTGGCCGCCGGCGAACCGCTCGACTACGACGACGTGCGCGCCCGGTTCGACCGCACCATGGACTGGCTCGCCGCGACCTACGTCGAGGCGCTGAACTGCATCCACTGGTCGCACGACAAGTACGCCTACGAGCGCCTCGAGATGGCCCTGCACGACCGTGACGTGCTGCGCACCATGGCGTGCGGCATCGCCGGGCTCTCGGTCGCGGCCGACTCGCTGTCCGCGATCCGCTACGCCACCGTCACCCCGGTCCTCGATGAGGGCGGCGTCGTCGTCGACTACGACACCGTCGGCGACTACCCGGCCTTCGGCAACGACGACGACCGCGTCGACGCCATCGCCGTGGAGCTGGTCGAGACGTTCATGGCCAAGGTCCGCAGCCACCGCACCTACCGCGACGCCGTGCCGACGCAGTCGGTGCTGACGATCACCTCGAACGTCGTCTACGGCAAGGCCACCGGCAACACCCCGGACGGCCGCCGCGCCGGCGAGCCGTTCTCCCCGGGCGCGAACCCGATGAACGGCCGGGACACGCACGGGATGCTCGCCTCCGCGCTCTCGGTGGCCAAGCTGCCCTACGCCGAGGCCCAGGACGGCATCTCGCTGACCAACACCATCGTGCCCAGCGGGCTCGGCCGGACGCGTGCCGAGCGGGTGGCCAACCTGGCCGGCCTGCTGGACGCCTCGTTCGGCGCCGGCGGCTACCACATGAACGTCAACGTGCTGGTGCGCGAGACGCTGACCGACGCCATGGAGCACCCCGAGAAGTACCCCCAGCTGACCATCCGGGTGTCCGGGTACGCGGTCAACTTCGTCCGCCTGACGCGCGAGCAGCAGCTCGACGTGCTCGCCCGGACCTTCCACGGAGCGGTCTGAMSIQAEQSTAADVAWEGFVPGPWCDGVDVRDFIQRNYTPYTGDATFLAGPTPRTSALWARLSEMFPTEREKGVYDVSADVPAGITAHEPGYIDQATEIIVGLQTDAPLKRAIMPNGGWRMVEGALNTYGYPVDQGLKKVFTEYRKTHNQAVFDIYPPNVRAARSSHVVTGLPDAYGRGRIIGDYRRVALYGVDALVEAKKLDKLTLEAEPFTEDVARAREEHAEQIRALGELQEMAASYGVDISRPARTAVEAVQWLYFGFLAAVKEQNGAAMSLGRTSTFLDVYLERDLAAGRITEAEAQEVMDDFVIKLRIVRFLRTPEYDALFSGDPTWVTETIGGMGTDGRTLVTKNSFRMLQTLYNLGPAPEPNMTVFWTAALPQGFKDFCAQVSIDTSAVQYESDDEIRAAWGDDAAIACCVSPMAIGKQMQFFGARVNLAKALLYAINGGRDEVTGKQVSPAFAPVAAGEPLDYDDVRARFDRTMDWLAATYVEALNCIHWSHDKYAYERLEMALHDRDVLRTMACGIAGLSVAADSLSAIRYATVTPVLDEGGVVVDYDTVGDYPAFGNDDDRVDAIAVELVETFMAKVRSHRTYRDAVPTQSVLTITSNVVYGKATGNTPDGRRAGEPFSPGANPMNGRDTHGMLASALSVAKLPYAEAQDGISLTNTIVPSGLGRTRAERVANLAGLLDASFGAGGYHMNVNVLVRETLTDAMEHPEKYPQLTIRVSGYAVNFVRLTREQQLDVLARTFHGAVPGPT0001950_837DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-FORMIC_ACID_BIOSYNTHESIS,PGPT0001950-pflD|ybiW|tdcE-K00656NANA
AK018_066792667hypothetical proteinTTGTCACCCACCCACCGCAGAAGACCACGGCACCGCAGCCTCGCGATCACGGCCGCAGCCGCGGTCGCCATCGCCCCGCTGCCGTTGGCCACCAGCGCCGCGGCCGACACCACCGACCCGGGCACCGCCGTCGACCGGCGCTTCGACTTCGGCTCCACCAGCTCGCCCGTGGCCGACGGCCACACCCGCGTCGCACACACCACGCTGTACGACGACGGCGCGGGCTATGGCCTGTCCCGTCAGGTCGCCGTCCGCGACCGCGGCGCCCCCGACGACCTGCGCCGCGACTTCACCGTCGGCACCACGACGTTCTCGACCGACGTCCCCGACGGCACCTACTGGGTGACGGTCACCAGCGGCGACCAGATCGCCGGCAACTACACCGAGCTGACGGTCGAGGGCGAGGACCAGGGCACGCTCGAGGCCGGCGCCGCCGAGTTCGCCACCTGGGCCCAGGCCGTCGAGGTCACCGACGGTCGCCTCGACCTGGACGTCGCCCGCGACGGTCGGATCAACGGCGTCACCGTCTCCTCCCAGCTCCCGCCGACCGCTCTCGCCACCGACGTCGAGGTCAACGGCACCGCGGTCCAGGTCGGCCTCACCTGGAACGCCCCGGCCGACGCGGCGTCCTACACCGTCTACCGCAGCATCAACGGCGCGGACGAGGAGCAGATCGGCACCACCACCGAACCCGCTTTCACGGACAGCGACGACGCGATCCGTCTGGGCGACACCCTCACCTACACCGTCACCCAGACCAACGCGGCGGGCACGGAGTCCGGCCCGTCGCAGCCGCTGACCATCGAGGCGGCCGACGAGGAGCAGGACCCGCCGTCGGCCCCGACGAACCTGCGCGTCGAGGGTGACGACGACGCCACGACCTCGACCCTGCGCTGGGACGCCGCCGACGGCGCCGTGGCCTACGACGTCTACCGCACCGACCACGTCGCCCACGACTGGCAGCTCCTGGAGCGCACCGAGGACACCGCGAGCGCCCTGGAGGTCGGCTACGGCACCGAATGCTGCTTCACCTGGACCTATCAGGTCCGCGCGGTCGGCGCGGGCGGCATCTCCGAGCCCTCGCAGAACACGACGCTGGAGCAGATGATCGGCACCAACACCGTCGCCGAGATCGACACGGGCGTCGCCGGTGACGGCGCCCGCCCCTGGTTCGGCGACCTGACCGGCGACGGCCGGCCCGAGATCGTCATGGTCCAGCCGCACCACATCAACGCCGGCGCCCTGTACACCGGCCCGATGGTCGCCTCCATGACCGCGTTCACCGCCACGGGCGAGCAGCTCTGGCAGATCGGCGAGGTGGACCCGGACGGGCGCAACAACAGCCAGGACATCCCCGCCCAGGTGGTCGACACCGACGGCGACGGCGACCTGGAGGTCGTGGCCGTCATGTACCCGGACGGCGACACCGACGCCGAGGGCCGCTTCTACGTGTTCGACGGCGCCACCGGCGAGCACGTGCGCGACTTCGCGCTGCCGACGCCGGAGGCGCACGACGCCATCGTGTTCGTCGACGCCGACGGCGAGGGCCACCCGGACGAGATCCTCGTCAAGAACCGCTACTCGAAGGCCTGGCTGCTGGAGTCCGACGGCACCGTGATCTGGTCCCACGAGGGCAACACGGGGCACTACCCGTGGCCCTACGACTTCGACGGCGACGGCCGTGACGAGATCATGATCGGCTACGACATGGTCGACGCCGACGGCAACCTGCTGTGGAGCGCCGACCTGCCCGACCACGCCGACACCATCTGGGTGGCGGACATCGACTCCGACGGCACCGCGGACGTGCTGCTCGGCGGCGCCTCGACGTCGGCCCACCGCTGGGACACCGGCGAGACCATCTGGGTCAACGACGACACCGTCGAGTCGCAGAACATCATGGTCGGCGAGTACCGCACCGATCTGCCGGGCCTCGAGACGTTCGGCCTGGACCGGATCAACCGGTCCTCCAACGGCCTGGACGGGCTGTTCATGATCGACGCCCAGGGTGAGACCGTCTGGGCGGAGGAGCGCCAGACCCGCGGCTGCTACGGCACCATCCCGGAGCCGATCCACAACTGGGCCGGTGACGGTCGGGACATGATCATGGTCTGGAACCGCGGGTGCGGGGAGCCCACCGGCATCCACTCCGGCGACGGCGAGTTCGTCACCGAGCTCGACGACGCGCGTCTGTGGCACGTGGACATCTGCGGCGACGACAAGGAGGAGGTCGTCGAGTACGTCCAGGGCGAGTGGCTCGAGATCGAGGCCAACGGTCCCTGCGACCTGGACGCCAAGGTCACCGGCGAGCAGCGTCCGCAGTCGCCGCGCGAATACAACTTCACGCGGTACACCGCGGGCGAGACGCCGGTCATCGAGCGCTGGGACGCCGACGCCACCTACGACACCGGCGACGAGGTGCGTCACGACGGGGCGGTCTTCCGTGCCCAGTGGTGGACCACCGAGACGCCCGGCGTCTCCCCGTGGGGTTCGTGGCAGGAGATCGCCACGGCCGACGACGGCACCGCGTTGTGGACGGCGTCGCGAGTGTTCGACGCCGGTGACGTCGTCGTGCACGACGGCGTGACGTACGTCGCGCAGTGGTGGACCCGCAACCAGGAGCCCGGCGACCCGCACGGGCCGTGGGAGGTCGCGGACCCCTCCTGAMSPTHRRRPRHRSLAITAAAAVAIAPLPLATSAAADTTDPGTAVDRRFDFGSTSSPVADGHTRVAHTTLYDDGAGYGLSRQVAVRDRGAPDDLRRDFTVGTTTFSTDVPDGTYWVTVTSGDQIAGNYTELTVEGEDQGTLEAGAAEFATWAQAVEVTDGRLDLDVARDGRINGVTVSSQLPPTALATDVEVNGTAVQVGLTWNAPADAASYTVYRSINGADEEQIGTTTEPAFTDSDDAIRLGDTLTYTVTQTNAAGTESGPSQPLTIEAADEEQDPPSAPTNLRVEGDDDATTSTLRWDAADGAVAYDVYRTDHVAHDWQLLERTEDTASALEVGYGTECCFTWTYQVRAVGAGGISEPSQNTTLEQMIGTNTVAEIDTGVAGDGARPWFGDLTGDGRPEIVMVQPHHINAGALYTGPMVASMTAFTATGEQLWQIGEVDPDGRNNSQDIPAQVVDTDGDGDLEVVAVMYPDGDTDAEGRFYVFDGATGEHVRDFALPTPEAHDAIVFVDADGEGHPDEILVKNRYSKAWLLESDGTVIWSHEGNTGHYPWPYDFDGDGRDEIMIGYDMVDADGNLLWSADLPDHADTIWVADIDSDGTADVLLGGASTSAHRWDTGETIWVNDDTVESQNIMVGEYRTDLPGLETFGLDRINRSSNGLDGLFMIDAQGETVWAEERQTRGCYGTIPEPIHNWAGDGRDMIMVWNRGCGEPTGIHSGDGEFVTELDDARLWHVDICGDDKEEVVEYVQGEWLEIEANGPCDLDAKVTGEQRPQSPREYNFTRYTAGETPVIERWDADATYDTGDEVRHDGAVFRAQWWTTETPGVSPWGSWQEIATADDGTALWTASRVFDAGDVVVHDGVTYVAQWWTRNQEPGDPHGPWEVADPSNANANANANA
AK018_066801320hypothetical proteinTTGACGACCCTGACCGAGTCCCGCGACCGGACGACGACGGACCCGCCGGCCACGCTGCTCGACGCCGCCGGCCGCACCTACTTCCCGCTGGCGTTCGTCGCCCGCCTGCCCTTCGCGATGATGGTCGTCGGCGTCCTGACCCTGGTGGTCGCCGGCCGTGACTCGCTCACCCTCGGCGGCGCGACGTCGGGCATGGTCGGCCTCGGGGGAGCGGCGATCGGACCGCTGATCGGCGCCTGGGCCGACCGCGCCGGGCAGCGCCGCGTCCTGCTCGTCACCGCCGCGGTCAACAGCCTGCTCCTTCTCGCCCTGACGGCGGCCGTCTACTCCGCGGTGCCGGACGCCGTCGTCCTCGCGATCGCGTTCGCCATCGGCGCCAGCGCCCCGCAGGTCGCCCCCATGTCCCGCAGCCGGCTCGTCGGACTCATCCACACGCGCCTGTCCGCGGCCCGGCGGTCGGCCACGTTGAGCCGCACCATGTCGTACGAGTCCGCGGCCGACGAGATCGTCTTCGTCGTCGGCCCGTTCGTCGTCGGCCTGCTCGCCGCCGCCTTCGGCCCCGCCGCACCGATGCTCGCCGCCGCCGCACTCACCGCGCTCGCGGTCGTGGCGTTCGCGCTCCACGCCACCGCCCGCACGCCGGTCGCCGCAGCGCACGGCACATCCGGCACGACGGCGGCACCCACCGCGGGTGACGCGGCCCGCGCGACGCACGCCACGCCGTCGGCCCCCGTGCCGGCGCCCCGCACGCAGGCGCCCGTCAGCGAGCTGTGGCACCGACGAGTCCTGGTGCTGGTGGCCGGGTTCGTCGGCATCGGGCTGTTCTTCGGCGCCACCCTGACCGCCATGTCCGCCGTCACCGGGGATGCCGGGCACTCCGAGCGGGCCGGTCTGCTGTACGGGTTCATGGGCATCGGGTCGGTGGTCTCGGCGCTCGCGGTCTCCGCGCTGCCGGCGCGGTTCAGCCTCCGGGCGCGCTGGCTGACGGCCGCCGTCGTGCAGCTGGCGGGCGCCGTCGTCATCTGGACCGCGGACTCCACCGCCGTGCTGATCGCGGGCCTGCTGGTCGCAGGACTCGGCATCGGGCCGAGCCTGGTCACGATCTACTCCTTGGGCTCGGCGCGCAGCCCCCGCGGACGCGGCACCACGGTGATGACGATGCTCGGTTCGTCGGTGATCCTCGGGCAGTCGGTCGCCTCGGCGGGTACGGGCTTCCTGGCCGACGCCGCCGGCACCGGAGCCGCCCTGGCCATGCCCGCCGTCGCCGGCATGGTGATCCTCGGGGCCGCCGTGGGGAACTGGCGGCTGGGCGACCGATAAMTTLTESRDRTTTDPPATLLDAAGRTYFPLAFVARLPFAMMVVGVLTLVVAGRDSLTLGGATSGMVGLGGAAIGPLIGAWADRAGQRRVLLVTAAVNSLLLLALTAAVYSAVPDAVVLAIAFAIGASAPQVAPMSRSRLVGLIHTRLSAARRSATLSRTMSYESAADEIVFVVGPFVVGLLAAAFGPAAPMLAAAALTALAVVAFALHATARTPVAAAHGTSGTTAAPTAGDAARATHATPSAPVPAPRTQAPVSELWHRRVLVLVAGFVGIGLFFGATLTAMSAVTGDAGHSERAGLLYGFMGIGSVVSALAVSALPARFSLRARWLTAAVVQLAGAVVIWTADSTAVLIAGLLVAGLGIGPSLVTIYSLGSARSPRGRGTTVMTMLGSSVILGQSVASAGTGFLADAAGTGAALAMPAVAGMVILGAAVGNWRLGDRNANANANANA
AK018_06681510hypothetical proteinATGCCGCCTGTCGACCGCTGGGACCGCGACCTCGCCCAGGACGGGTGCGCACGCATCACCCCGCCGCGCCGTTGGCTGTTCCTGTCCCTGGCGGCCTCGCTGGTCCTCTTCCCGCTCGGTGTGAACGTCTGGCTCGCCGAGGACGCGAACCGCACCGTCGCCGGCCTGCTCCTCGGGGTGTCGTTGCTCGGCGTCGCGGTCTCGGGATGGCGGATCGCGCGGCCCGCTCGCCTCGAGGTCACGCTCGCCGGGGTCCGGTACCGACGCCTCGTCCTGGCCTGGAGCGACGTCGCCGGGGTCCGGGACCGCACCACGAGCGGCAACCGGTTCGTCCTGCTTGACCTGACGGACGACGCCGCCCCGCGCCTCGGCGCCGGACGCTCGCTGCGGCGCGGCGACGACGGGACCTGCGTGGAGATCCCCGGCCCGTTCGACCACCATGACGAGCTGGTCGCCTGGCTCGAGGACGTGCGCGTCAGGCCGCGCGACGGCGGTGCTCGGCCGGACTGAMPPVDRWDRDLAQDGCARITPPRRWLFLSLAASLVLFPLGVNVWLAEDANRTVAGLLLGVSLLGVAVSGWRIARPARLEVTLAGVRYRRLVLAWSDVAGVRDRTTSGNRFVLLDLTDDAAPRLGAGRSLRRGDDGTCVEIPGPFDHHDELVAWLEDVRVRPRDGGARPDNANANANANA
AK018_06682990hypothetical proteinATGGACGTCGTCGCCGGCCTGCTCGACGGCCCCCGTGCACGGGGCGCGTTCCTGCTGCGCAGCCACCTCACGGCGCCGTGGGGCATGCGCATCGAGGACGAGTCGCCGCTGACGATCGTGCCGGTCCTGCGCGGCCGGGTCTGGCTCGCTCCGAGCGAGACACGCGCGTCCAGGCACGACGGCGGTGCCCACGTGCCGCCGTCGGACACCGGAGCCGACGGCGGCACCTGGGTGGAGGCGGGTGACGTCGTCCTCCTGCGCGGCCCGGAGCACTACGTGGTGACCGACTCCCCGGCGACCGAGCCGACCGTCGTGGTCGGCCCGAACCCGCAGGACTGCCGCGCGATCGACGGCGGCTCGTCGGAGATGATCACGTTCGGCGTGCGCTCGTGGGGCAACGACCCCGACGGCGAGACGGTGATCATCACCGGCACCTACCCGCTGAACGGTGCGGTCGGGCGGCGGGTCCTGCGCCTGCTGCCCCACCGGGTGGTGCTGCGGCGCGGCGACATCGACGCCACCGTCATCGACCTGCTGGCCCGCGAGGTGGTCCAGGACCTGCCCGGGCAGGAGGCCGTGCTGGACCGGCTCCTCGACCTGCTGCTCATCACCTGCCTGCGCACGTGGCTCGACCGCCCCGACGCCCCCGGCTGGTACCGGGCGGACGCCGACCCCGCCGTCGGCGCGGCGCTGCGGCTCATCCACCACGACCCGGCCCGGCCGTGGAGCGTGGGTTCCCTCGCCCGGGAGGTCGGGCTGTCGCGGGCGGCCTTCGCGCGGCGGTTCACCGAGCTGGTCGGCGAACCGCCCATGGCGTACCTGACAGGGTGGCGCCTCGATCTGGCCGCCGACCTGCTGCTCGCCGACGACGGCGCCACGCTCGCCGCGGTGGCCCGCACCGTCGGGTACACGACGCCGTTCGCGCTGAGCGCCGCGTTCAAGCGGGTGCGCGGGATCAGTCCGGCCGAGCACCGCCGTCGCGCGGCCTGAMDVVAGLLDGPRARGAFLLRSHLTAPWGMRIEDESPLTIVPVLRGRVWLAPSETRASRHDGGAHVPPSDTGADGGTWVEAGDVVLLRGPEHYVVTDSPATEPTVVVGPNPQDCRAIDGGSSEMITFGVRSWGNDPDGETVIITGTYPLNGAVGRRVLRLLPHRVVLRRGDIDATVIDLLAREVVQDLPGQEAVLDRLLDLLLITCLRTWLDRPDAPGWYRADADPAVGAALRLIHHDPARPWSVGSLAREVGLSRAAFARRFTELVGEPPMAYLTGWRLDLAADLLLADDGATLAAVARTVGYTTPFALSAAFKRVRGISPAEHRRRAANANANANANA
AK018_06683876azoB_4NAD(P)H azoreductaseATGACCACACCGACCTTCCCCGCCGCGACCACCACCCCGACCGCGACCGACGCCGCACCCGCACCGACCGTCGTCGCCGGAGCCACCGGCAAGACGGGACGCCGCGTCGCCGACCGCCTCGAAGCCGCCGGGCTGCCCGTCCGCCGCGCCTCGCGACGCGCCACGCCGCGATTCGACTGGGCCGACGAGTCCACCTGGGCACCCGCGCTCGAGGGCGCCTCCGCCGTGCACGTCGCCTACGCGCCCGACCTCGCGATCCCCGGCGCACCCGAGGCCGTGGCCCGCTTCGCTGACATGGCCCGGACCGCCGGGGCGCGACGACTCACCCTGGTGACCGGGCGCGGCGAGACCGAGGCGCAGCGCGCGGAGGCCCTCGTGGCCGAGGCCTTCCCCGCCCGCACCGTGCTGCGATGCTCGTTCTTCGCCCAGAACTTCTCCGAGAGCTTCTTCCTCGACCCCGTGCTCGACGGGACGCTGGCGCTCCCGGTCGGTGACGCCGTCGACCCGTTCGTCGACCTCGAGGACGTCGCCGACGTGGCCGTCGCCGCGCTCACCGACGACCAGCACGCCGGCCAGGTCTACGAGCTCACCGGGCCGCGGCTGCTGTCCTTCGCCGACGTCGCCGCCGAGATCTCCGCCGCCAGCGGCCGCGACGTGCGCTTCGCCCCCGTGGCGCTGAGCGACTTCGCCGCCGGGCTCGCTGCCGAGGGCGTGCCGGACGACGTCGTCGCACTCATGCAGTACCTGTTCACCGAGGTGCTCGACGGCCGCGGCGCCTACGTCACGGACACGGTCGAGCAGGTGCTCGGCCGGCCGGCCCGGGACTTCCGCGAGTTCGCCGTCCGGGAAGCCTCGGCATGGCGGGCGCGATCATGAMTTPTFPAATTTPTATDAAPAPTVVAGATGKTGRRVADRLEAAGLPVRRASRRATPRFDWADESTWAPALEGASAVHVAYAPDLAIPGAPEAVARFADMARTAGARRLTLVTGRGETEAQRAEALVAEAFPARTVLRCSFFAQNFSESFFLDPVLDGTLALPVGDAVDPFVDLEDVADVAVAALTDDQHAGQVYELTGPRLLSFADVAAEISAASGRDVRFAPVALSDFAAGLAAEGVPDDVVALMQYLFTEVLDGRGAYVTDTVEQVLGRPARDFREFAVREASAWRARSNANANANANA
AK018_06684333cutA_2COG1324Divalent-cation tolerance protein CutAATGGATGACGTCGTGCAGGTCGTGACCACCATCGACTCCGGGGACTCCGCGGTGAGTCTGGTCCGTGCCGCCGTCGGTCGCCGGTTGGCGGCGTGCGGACAGGTCGACGGCCCCGTCACCAGCGCCTACTGGTGGGACGGGGCCGTCGAGACGGCGACCGAGTGGCGCGTGACCTTCAAGACCGTGGCCGCGCGGACGGACGAGCTGCAGACGTGGCTCGCTGAGGCCCACCCGTACGAGGTGCCGGAGGTGCTGGTCTCGCCGGTGACCGACGGGAACCCGGACTACCTCGCCTGGATCCGAGCGGAGGTCGGCGACCCCTCCCCGAGGTAGMDDVVQVVTTIDSGDSAVSLVRAAVGRRLAACGQVDGPVTSAYWWDGAVETATEWRVTFKTVAARTDELQTWLAEAHPYEVPEVLVSPVTDGNPDYLAWIRAEVGDPSPRPGPT0004080_1859DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-DIVALENT_CATION_TOLERANCE,PGPT0004080-cutA-K03926NANA
AK018_06685351kmtRCOG0640HTH-type transcriptional regulator KmtRATGAGTCCCGTGGCCACCACCGAGCGCAGCGCACCACCGGACCTGGAGCTCGACCACGCCGTCGACGTCCTCCGCCTGCTCGCGGACCGCACCCGACTGGCCGTCCTGGCGATGCTCGACGGGACCGAGATGTCGGTGGGCGAGATCGCCAGACGGCTCGACCGTCCCGGCCCGGCCGTCTCCCAGCACCTCGCCAAGCTCCGCGCAGCTCGCCTCGTGACGTCGCGCCGGGACGGCACGACCGTCTACTACGGCCAGCCGGACGAGCACGTCGCGGCGCTCGTCGCGAACGTGCTGCACCACACCGAGCACCTGCTCTACGAGGTGCCGCCGCACCACCGTGCCGACTGAMSPVATTERSAPPDLELDHAVDVLRLLADRTRLAVLAMLDGTEMSVGEIARRLDRPGPAVSQHLAKLRAARLVTSRRDGTTVYYGQPDEHVAALVANVLHHTEHLLYEVPPHHRADPGPT0004305_26DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004305-czrA|yozA-K22043NANA
AK018_066861266hypothetical proteinGTGCTGCACGTCCTGACCCGTCGCGTCTACCGCCGGCTCTTCCTCGCCCAGGTGGTCGCGCTCGCCGGCACCGGGCTCGCCACGGTCGCCCTCGGCCTGCTCGCCTACGACCTGGCCGGCGCCGACGCCGGCCAGGTGCTCGGCACCGCGCTCGCGGTGAAGATGGTCGCCTACGTGGTCGTCGCGCCCCTGGCCGCGGCCGCCGTCGCACGGCTCCCGCGCCGCGCGGTCATGGTCGGCTCCGACGTCGTCCGGCTGCTGGTCGCCGGGTCGCTGCCGTTCGTCGGCGAGGTCTGGCAGGTCTACGTCCTCGTCTTCGTCCTGCAGGCCGCGTCCGCCACGTTCACCCCCACGTTCCAGTCCGTGATCCCCGACGTGCTCGACGACGAGGAGGAGTACACCGCGGCGCTGTCCCTGTCCCGGCTGGCGTACGACCTCGAGGCCGTGCTCGCCCCCGTGCTCGCGGCGGCCCTGCTCCTCGTCGTGCCCAGCGCGGCCCTGTTCCTCGGCACCGCGGTCGGGTTCGGCGCGTCGGCGCTCCTCGTGGCCGCCACGGTGCTGCCGCGGCGGGGCGCGGAGAACGCCGGGGACGGCCCGCGGATGCCCTTCGGCGAGCGCGTCCGGCACGGGACCCGGCTCGTCGTGCGCACCCCGGCCCTGCGCCCGGTCCTGGCGCTGAACATGGCCGTCGCCGCGGCCGGCGCGTTCGTCATCGTCCAGACGGTGGTCGTGGCGCGCTCGACGTTCGGGCAGGGCGAGGCCGTGGTCGCGCTGCTCCTCGCCGCCAACGGCGTCGGCTCCATGGCGGCGGCCGTCGCCCTCCCGCGCGTGCTCCGCCGTCGGCCCGAGCGGTGGGTCATGGTCGGCGGGGCCGGCCTGCTCACCGCGGCCACCGCCGTCGTCCCGCTCGCCCTCGCCGCGCCGTCCGCCGGGGTCGGGCTCACGGCGGTCGCCGGACTGTGGGTCCTGATCGGCCTCGGGTGGGCGTCCGTCGAGACACCCGTCGGCCGGATCGTGCGCCGCACGATCCCGGCCGCGGACCGTCCGGCCGTCTTCGCGGCCCAGTTCGCGCTGCTGCACGCGTGCTGGCTGGTGACCTACCCGCTGGCCGGATGGCTCGGCACGGCGGTCGGCCTGCCCGCGACCGCCCTGGTCCTCACCACGCTCGCCGCCTCCGCGACCACGACGGCGGCCCTGCTGTGGCCGCGGGGTCGCACCCCGGCTGCCGCGGGGCCTGCCCGCGCGGAGCCACCGGTGCGATCATGAMLHVLTRRVYRRLFLAQVVALAGTGLATVALGLLAYDLAGADAGQVLGTALAVKMVAYVVVAPLAAAAVARLPRRAVMVGSDVVRLLVAGSLPFVGEVWQVYVLVFVLQAASATFTPTFQSVIPDVLDDEEEYTAALSLSRLAYDLEAVLAPVLAAALLLVVPSAALFLGTAVGFGASALLVAATVLPRRGAENAGDGPRMPFGERVRHGTRLVVRTPALRPVLALNMAVAAAGAFVIVQTVVVARSTFGQGEAVVALLLAANGVGSMAAAVALPRVLRRRPERWVMVGGAGLLTAATAVVPLALAAPSAGVGLTAVAGLWVLIGLGWASVETPVGRIVRRTIPAADRPAVFAAQFALLHACWLVTYPLAGWLGTAVGLPATALVLTTLAASATTTAALLWPRGRTPAAAGPARAEPPVRSNANANANANA
AK018_06687885hypothetical proteinGTGGCTCCTCGAGCGGCACGGAGGGTGCTGGGGATCGTCCTCGGCCTGCTGCTGGGGACCGCGACCGTCGTCGACTCGAACCCCACGCTGAGCGTCGAGCCGGGGGCCGGGGCGCCCGAGACCGAGGTCTCCGTCGTGGTCCAGGGGTTCACCGACTGCCCGGACGACACGACCGACGCCCGGAGGGTCGAGCTGCTGTGGGACGGCGGCGAGCTCGTCGGGACGGTCGACCTGCAGGTCGGCTCGGGGGCCACGACGATCACCGTCCCGGCGGAGTCCTCGCCCGGACCGCACGTGCTGCTCGCCCGGTGCACCGGGGACCCGGGACTGCAGGCCGAGGCGCGGTTCGACGTCTTCGGGATCTTCGAGGTGACCGTGCCCGACGTCCGCGGGACCTCGCCCGCCGAGGCGGAGGCCCGGCTCGCGGAGTCGGGGCTGGTGCTCGGTGAGGTCGTCGGGGAGGGCGACCTGGTGGCGGACCAGGACCCGCCGGCGGGGACCCCGGTCGAGCCGGAGACCGGCGTCGACCTCGTCCTGGCCCCGGTCGGGGTGGACGACCCGGAACCGGCCGACGACGGCCCTGGGGACGAACCCGGTGACGTGACCGGCGACGTCACAAGTGACCAGGACCCGGACTGGATCCTCTCGGCCCTCGGCCTCGGGATGCTCGTGCTCGCCGGTGCGGCCGGGACCGCGGCGGTGCGACGGGTCCGCCGACGCCGGGCCCGGCGGTGGGTGCGGGAGCACGTGCGCCTGAGCCCCGGCCCGACGTCGGCGCCGGAGGTGAGGGTGGCGGAGGACCCGGGGTCCGACGCGACGCTCGTGGTCCGGCTCGTCGGGTCGACCGACGCGCCGGACGAGCACCTGGAGGTGATCGGGAGATGAMAPRAARRVLGIVLGLLLGTATVVDSNPTLSVEPGAGAPETEVSVVVQGFTDCPDDTTDARRVELLWDGGELVGTVDLQVGSGATTITVPAESSPGPHVLLARCTGDPGLQAEARFDVFGIFEVTVPDVRGTSPAEAEARLAESGLVLGEVVGEGDLVADQDPPAGTPVEPETGVDLVLAPVGVDDPEPADDGPGDEPGDVTGDVTSDQDPDWILSALGLGMLVLAGAAGTAAVRRVRRRRARRWVREHVRLSPGPTSAPEVRVAEDPGSDATLVVRLVGSTDAPDEHLEVIGRNANANANANA
AK018_06688588hypothetical proteinATGACCGGCACCGCGACCGCGCCGAGGACGTCGGCGCGCGTCTTCCTCCTGGACGACGGCAGCGGCCGCGACACCGCGGAGGTGCTGGGCGAGGCCGTGCACCGACAGGGGGTCGCCGGGACGGCGCTGGCGGGGGTGCGCCATGCGACCTCGGCCACCTCCGAGGCCGTCGCGGCCGAGATCGCCGCCGTCGCCGACGGGCTGCTCGACCTCGACCTCGGCGACGTCCTGCTGCGCGGATGGCGCTCCTCCGCGGACCTCCTGGCGGCGGGCCGCCGCACGGCCCGGTCCCCGGGCCGGGAGGTGGTCGCGCTCGCCACCCACCGCGTCACCGGCAGCCACCACCCGCGGGTCGACCTGATGGTCGACGGGGTGCGGCTGCGCCGGTTCACCTTCGAGCTGTCCGTCGTGCTCGTGCTCACGGGCGTCGCCGCCGTCGTCGAGGGCGGCGCGCTGGTCGCCGTCCGCGGCGGCTCGGCCGAGATCACCGGCACGCTCTCCCTGGACGGCGTGCGGCTGGTGGAACGGCGGCGCACGGTCGACGTCCGGCTCCTGGTCCACCTGCGCCGGCCGCTCGTGCTGGCCTAGMTGTATAPRTSARVFLLDDGSGRDTAEVLGEAVHRQGVAGTALAGVRHATSATSEAVAAEIAAVADGLLDLDLGDVLLRGWRSSADLLAAGRRTARSPGREVVALATHRVTGSHHPRVDLMVDGVRLRRFTFELSVVLVLTGVAAVVEGGALVAVRGGSAEITGTLSLDGVRLVERRRTVDVRLLVHLRRPLVLANANANANANA
AK018_066891506mco_2Multicopper oxidase mcoATGACTCCTCCCGATGCCCCGCTCCTCGACCGTCGATCCTTCCTGACCCTGGCCGGGGCCGGGATCGGGACCGCCGTCCTGGCCGCCTGCGCTCCCTCGGGCCCCGGCACGCCACCGGCCACCGCCCCGTCGCCGTCCCCCGCGAGCACCCGACCTGCCGGTGCCGGCGGGACCCTCCGCGTCCCCGCACTCCTCACCGGGGCACCCGGACCCGAGGGCCCGGTCTTCGACCTCGCCGCGCAGGTCGGCCGCACCGAGATCGTCCCCGGGACGTCGACGGAGACCTGGGGGTTCGACGGCCCCGTGCTGGGACCGACGCTGCGGGTGTCACGCGGCGACCGGGTGCGCATGCGGATCCGCAACGATCTCGCCGAGACGACGACGGTCCACTGGCACGGCATGCACCTGCCCGCGGCGGCCGACGGCGGGCCGCACCAGCCGATCGGGCCCGGCGAGACCTGGGACGTGAGCTGGCAGGTCGACCAGCCTGCCGCGACGCTCTGGTACCACCCTCACCCGCACGGGGCGACGGAGCGGCACGTGTACCGGGGCCTGACGGGCCTCCTGATCGTCGACGACGAGGACGAGGCGGCCCTCGGACTCCCCCGCGAGTACGGTGTCGACGACATTCCTCTGATCGTCCAGGACAAGGAGCTCGACGACACCGGTGCGCTGGTGGAGACCGAGCGCCGCGGACCGGGGATGCTCGGCAGCACGGTGCTCGTCAACGGGGTCGCCGACGCGAGCCTCGAGCTCGCCGCCCGGTCGACCCGGCTGCGGATCCTCAACGGTTCCACGGCCCGCAGCTACGCCTTCGGCCTCTCCGACGGCCGTCCCGTGGACCTCGTGGCCTCCGACGGCGGCCTGCTGCCCGAGCCGGTCCGCACCCCGCGTGTGCAGCTCACCCCGGGCGAGCGGGCCGAGATCGTCGTGCACGTCGAGCCGGGCGAGTCGCTGGTGCTGCGGTCGTTCCCGCAGGACCTCGGGGACGTCGCCGGGACGACGGGCGGGGAGGACGAGCTCGACGTACTCGCCCTCTCCGCCCCGGCCGGGCTCCCCGCGAGCGCCCCGGTCCCGTCGCGGCTGGTCGAGGTCCCGCGGTACGACCCTGCGGAGGCCGTGCGGACACGCCGGTTCGAGATGCGGACCGACCGCATCAACGAGCAGCCGATGGACATGTCGCGGATCGACGAGGTGGTCACCGTCGACGAGCTCGAGGTGTGGGAGGTGCTGAACACCACGCGCACGCCCCACAACTTCCACGTCCACGACGTCCAGTTCCAGGTCGCCGACCTGGGCGGCGAGCAGCCGCCGCCCCATCTGGCCGGGTGGAAGGACACCGTCTACCTGCCCCCCGGGGTGCCCGTGCGGCTCGCGCTGCGCTTCACGGAGCACACCGACCCTGACCTGCCGTACATGTACCACTGCCACCTGCTGTGGCACGAGGACATCGGCATGATGGGGCAGTTCGTCGTCGTCGACCCCGAGGAAAGGGTCGGGTCCTAGMTPPDAPLLDRRSFLTLAGAGIGTAVLAACAPSGPGTPPATAPSPSPASTRPAGAGGTLRVPALLTGAPGPEGPVFDLAAQVGRTEIVPGTSTETWGFDGPVLGPTLRVSRGDRVRMRIRNDLAETTTVHWHGMHLPAAADGGPHQPIGPGETWDVSWQVDQPAATLWYHPHPHGATERHVYRGLTGLLIVDDEDEAALGLPREYGVDDIPLIVQDKELDDTGALVETERRGPGMLGSTVLVNGVADASLELAARSTRLRILNGSTARSYAFGLSDGRPVDLVASDGGLLPEPVRTPRVQLTPGERAEIVVHVEPGESLVLRSFPQDLGDVAGTTGGEDELDVLALSAPAGLPASAPVPSRLVEVPRYDPAEAVRTRRFEMRTDRINEQPMDMSRIDEVVTVDELEVWEVLNTTRTPHNFHVHDVQFQVADLGGEQPPPHLAGWKDTVYLPPGVPVRLALRFTEHTDPDLPYMYHCHLLWHEDIGMMGQFVVVDPEERVGSPGPT0004130_454DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-LACCASES_ACTIVITY,PGPT0004130-cueO-K14588NANA
AK018_06690474hypothetical proteinATGAGCACTCGTCCCCGCCCGCACGCCGCGGCCTCGCCCGCCCGGCCCGCCTCGTCGACCCGCCGCGCGCTCGGGCGCCTCGTGCTCCCGGCCGTCCTGCTGGGGCTGTCCGCCTGCGCTGCCGACCCCGGCCCGTCCGCCGCGGGGCCGTCCGCCGCGACCGCGACGCCGGGGCCGACGGGATCCGCAGCGGCCGACGACGCCGGCACGTCCGCTCGGGCCGCTGCCGACGTGCAGGTCAGCATCACCGACACCTCGTTCTCCGTGGGTGCGGAGACGATCGCCGCGGGGGAGAGTGTGCTGGTGACGAACGACGGCCGCCTGGAGCACTCGTGGACCTCCGAGGAGGCCGGTGTGGACACCGGCGTGCTCGGTCCCGGCGAGAGCGTCACGGTCACGGCGGGGACCACGGGGACGTTCACGTTCTCGTGCACCGTGCACCCGCTGATGACCGGGACGGTCACCGTCTCCTGAMSTRPRPHAAASPARPASSTRRALGRLVLPAVLLGLSACAADPGPSAAGPSAATATPGPTGSAAADDAGTSARAAADVQVSITDTSFSVGAETIAAGESVLVTNDGRLEHSWTSEEAGVDTGVLGPGESVTVTAGTTGTFTFSCTVHPLMTGTVTVSNANANANANA
AK018_06691360hypothetical proteinATGACGATCCGACTCACGGTCGCGGGCCGTGACCTCACCGCCACCCCGGCGGACGGCGCGGCCGCGCGCAACTTCCTCGCGCTGCTGCCGCTCACCCTCACCCTCGACGACTTCCACGGCATCGAGAAGGTCGCCGACCTGCCGTCCCGCCTCTCCACGGCGGGCGAGCCGGACGGGACCACCGGGAACGCCGGCGACCTCATGTACTACGCCCCCTGGGGCAACCTCGCGATCTTCTACCGCGACTTCGGCCACGCGCCGGGCCTCGTGCGGCTCGGGTCGTTCGACGACGCGGACGCGGCCGCCGTGCTGGGCGCGCTGGACGGTCCGACCGAGGTCACGATCTCGGTCGTCGACTGAMTIRLTVAGRDLTATPADGAAARNFLALLPLTLTLDDFHGIEKVADLPSRLSTAGEPDGTTGNAGDLMYYAPWGNLAIFYRDFGHAPGLVRLGSFDDADAAAVLGALDGPTEVTISVVDNANANANANA
AK018_06692972tdh_4L-threonine 3-dehydrogenaseATGCGAGCACTCGGACTGACGACCTACGGCGGACCCGAGGTCCTGCGCCCCGTGGAGCTGCCCGAGCCCCACGCCGGTCCCGGCGAGGTCCGCGTGGCGGTCCGTGCGGCCGCGCTCAACCCCGCGGACGTGATGCTCCGCGACGGGTCGCTGGCGGCGGTGTACGAGGGTCTCGAACCGCCGTACGTGCCGGGCATGGACGTCGCCGGCCTCGTGGACGAGGTCGGGCCCGACGTCGACCCCGAGACCGCCGTCGAGACCGGCCGCTTCGTGGTCGGCGTCGTCGACAACACCGGGAGCCACGGCGGCTACAGCGAGCACGTCGTGCTGCCGGCCGCGTCCGTCACCGCGGCACCGGCCGGGGCGAGCTTCGCCGAGGCCGCGTCCTTCCTCATGAACGCGCTCACCGCCCGCAACGCCCTCGACGTCCTCGCCCTGCCCGAGGGATCCTCCGTGCTCGTGACCGGTGCGGCCGGGGCGGTCGGCGGCTACGCCGTCGCGCTGGCGCACGCCGAGGGCCTCCGGGTGGTCGCTCTCGCCTCCCCCGCCGACGAGGCGGCCCTGCGCGCGGCCGGCGCGGACGAGTTCGTCCCGCGCGGCGACGACGCGGTCGTGGACGTGCTCGGCCTGGTGCCCGGCGGTGTCGACGCGGTGATCGACGCCGCCTGCCTGTACGACCGGATCACCCCGGCCGTCCGCGACGGGGGCACGCTCGTCGACCTGCGGTTCTGGGACGGCGACCCCGGGCGCGGCATCCACGTCGCGCACGTCAACGTCCGCGAGCGCGCCACGGACCACGCAGCGATCGTCCGGCTGCGCGAGCAGGTCGAGGCGGGCCTGCTGCCGATGCGCGTGGCGGAGACCTTCTCCGCGGCCGACGTCTTCGACGCCCACCGCCGCCTCGACCGGGGCGGTCTGCGCGGACGGGTCGTGCTGCTCTTCGGCGACGGTCGCGAGCGGACCACGGCGTGAMRALGLTTYGGPEVLRPVELPEPHAGPGEVRVAVRAAALNPADVMLRDGSLAAVYEGLEPPYVPGMDVAGLVDEVGPDVDPETAVETGRFVVGVVDNTGSHGGYSEHVVLPAASVTAAPAGASFAEAASFLMNALTARNALDVLALPEGSSVLVTGAAGAVGGYAVALAHAEGLRVVALASPADEAALRAAGADEFVPRGDDAVVDVLGLVPGGVDAVIDAACLYDRITPAVRDGGTLVDLRFWDGDPGRGIHVAHVNVRERATDHAAIVRLREQVEAGLLPMRVAETFSAADVFDAHRRLDRGGLRGRVVLLFGDGRERTTAPGPT0013255_9511DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
AK018_06693246sodA_1COG0605Superoxide dismutase [Mn]GTGCTCGGCTGGGACTCCATCGGCCAGCGGCTGCTCATCTTCCAGCTCTTCGACCAGCAGGCCAACGTCCCGGTCGGCATCACCCCGCTGCTCATGCTCGACATGTGGGAGCACGCCTTCTACCTGGACTACCTCAACGTCAAGGCCGAGTACGTCAAGGCGTTCTGGAACCTCGCCAACTGGCAGGACGTCGCCGCCCGCCTCGAGCGCGCCCGCACCGCCACGAACGGCCTCCTGACCGCCTGAMLGWDSIGQRLLIFQLFDQQANVPVGITPLLMLDMWEHAFYLDYLNVKAEYVKAFWNLANWQDVAARLERARTATNGLLTAPGPT0004190_2628DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004190-chrC|sodB|sodA-K04564NANA
AK018_06694402hypothetical proteinGTGAAGATCGAGATCCGGCTCTTCGTCTGGACCGCGCCGTTCTTCGTGGTCGTCGGTGTGCTGTACGGCCTGTTCACCGGCTTCACCGAGCCGGTGGGATACCTCGGCATCCCGCTCGTCGGAGCCCTCATGGCCATGATCGGGGCCTACCTGGTCGTCCAGGCGAAGCACACCGACCCGCGTCCGGAGGACGACGAGAACGGTGAGATCGAGCAGGGGGCCGGCGACCAGGGCGTGTACGCCCCGTGGTCCTGGTGGCCGCTCGTGATCGGTGCCGCCGCGGCCGCCGCCTTCCTGGGGCTCGCCGTCGGCTGGTGGGTGTTCTACATCGCCACGATCGTCGGCGTCGTCGGGCTCATCGGCTGGGTCTTCGAGTTCAGCCGGGGACAGCACGCCCACTGAMKIEIRLFVWTAPFFVVVGVLYGLFTGFTEPVGYLGIPLVGALMAMIGAYLVVQAKHTDPRPEDDENGEIEQGAGDQGVYAPWSWWPLVIGAAAAAAFLGLAVGWWVFYIATIVGVVGLIGWVFEFSRGQHAHNANANANANA
AK018_066951836ctaD_2COG0843putative cytochrome c oxidase subunit 1ATGGCCACCACCGAGACCGCCTACGGCGCCGAGGTCGTCCCCGGCCTGCAGCCGAGGCGCCAGACGCTGGGTCGCACCGTGGTCAAGTGGATCACCTCCACCGACCACAAGACGATCGGGTACATGTACCTCATCACGTCGTTCCTCTGGTTCGCCGTGGGAGGCATCCTCGCGCTGCTCATCCGCGCCGAGCTCTTCGAGCCGGGCATCCAGCTCGTGCAGAGCAAGGAGCAGTACAACCAGCTCTTCACGATGCACGGCACGATCATGCTGCTGCTGTTCGCGACGCCGCTGTTCGCGGGCTTCGCCAACGTCATCATGCCGCTGCAGATCGGTGCGCCGGACGTCGCGTTCCCGCGCCTGAACATGTTCGCGTACTGGCTGTTCCTGTTCGGCGGGCTCATCGCCGCCGGCGGCTTCTTCACCCCGCAGGGCGCGGCCTCCTTCGGCTGGTTCGCCTATGCGCCGCTGTCGAACACGACGTTCAGTCCAGGGCTCGGGGGAGACCTGTGGGTCTTCGGCCTCGCCCTGGGTGGTTTCGGCACCATCCTCGGTGCCGTCAACTTCATCACCACGATCATCTGCATGCGTGCGCCCGGCATGACGATGTTCCGGATGCCGATCTTCACCTGGAACACCCTGGTCACCAGCCTGCTGGTCCTCATGGCGTTCCCGCCGCTGGCCTCGGCGCTGTTCGCGCTCGGTGCGGACCGCCGGTTCGACGCCCAGGTGTTCAACCCGGACAACGGGGGAGCGGTGCTGTGGCAGCACCTGTTCTGGTTCTTCGGCCACCCCGAGGTGTACATCATCGCGCTGCCGTTCTTCGGCATCGTGTCCGAGATCTTCCCGGTCTTCAGCCGGAAGCCGATCTTCGGCTACAAGGGCCTGGTCTACGCGACGATCGCGATCGCCGCCCTGTCGGTGACGGTGTGGGCCCACCACATGTACGTCACCGGTGCGGTGCTGCTGCCGTTCTTCGCCTTCATGACGATGCTCATCGCGATCCCGACCGGCGTGAAGTTCTTCAACTGGATCGGCACGCTGTGGCGAGGGAAGATCACCTTCGAGACACCGATGCTCTGGTCGATCGGCTTCCTGGTGACCTTCCTCTTCGGTGGTCTGACCGGCATCATCCTGTCCAGCCCGGCGCTCGACTTCCACCTGTCCGACTCGTACTTCGTCGTGGCGCACTTCCACTACGTCGTCTTCGGCACCGTGGTGTTCGCGATGTTCGCCGGCTTCTACTTCTGGTGGCCGAAGTTCACCGGGCGCATGCTCAACGAGCGACTCGGCAAGATCCACTTCTGGATCCTGTTCGTCGGCTTCCACATGACGTTCCTCGTCCAGCACTGGCTGGGCGTCGAGGGCATGGCCCGCCGGTACGCGGACTACCTGCCCGAGGAGGGCTTCACCTGGGAGAACCAGCTCTCGACGGTCGGTGCGTTCATCCTCGCCGCCTCGACGCTGCCGTTCCTGTGGAACGTGTACACCACGTGGCGGAACGCCCCCAAGGTGCAGGTCGACGACCCGTGGGGCTACGGCCGCTCGCTCGAGTGGGCGACGTCCTGCCCGCCGCCGCGGCACAACTTCACCTCGCTGCCGCGGATCCGCTCGGAGTCGCCGGCGTTCGACCTCCACCACCCGGAGGTCGCCGCGATGGAGGACCCTCACCTGAACGAGGGCGCCCTCGAGCGGGTCTACGGCGGAGCGGACCGCACCGGCCAGCACGAGATGGTCGAGGAGCTCAGCTGGAAGGACTACCCCGAGAAGCACCAGTCGAGCACGACCGTCCTCGACGCTGACCGCCCGGTCGAGGGCGAGGAGGACTCCAAGTGAMATTETAYGAEVVPGLQPRRQTLGRTVVKWITSTDHKTIGYMYLITSFLWFAVGGILALLIRAELFEPGIQLVQSKEQYNQLFTMHGTIMLLLFATPLFAGFANVIMPLQIGAPDVAFPRLNMFAYWLFLFGGLIAAGGFFTPQGAASFGWFAYAPLSNTTFSPGLGGDLWVFGLALGGFGTILGAVNFITTIICMRAPGMTMFRMPIFTWNTLVTSLLVLMAFPPLASALFALGADRRFDAQVFNPDNGGAVLWQHLFWFFGHPEVYIIALPFFGIVSEIFPVFSRKPIFGYKGLVYATIAIAALSVTVWAHHMYVTGAVLLPFFAFMTMLIAIPTGVKFFNWIGTLWRGKITFETPMLWSIGFLVTFLFGGLTGIILSSPALDFHLSDSYFVVAHFHYVVFGTVVFAMFAGFYFWWPKFTGRMLNERLGKIHFWILFVGFHMTFLVQHWLGVEGMARRYADYLPEEGFTWENQLSTVGAFILAASTLPFLWNVYTTWRNAPKVQVDDPWGYGRSLEWATSCPPPRHNFTSLPRIRSESPAFDLHHPEVAAMEDPHLNEGALERVYGGADRTGQHEMVEELSWKDYPEKHQSSTTVLDADRPVEGEEDSKPGPT0004025_452DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
AK018_06696924ctaC_1COG1622Cytochrome c oxidase subunit 2TTGCACTCGAAGAGCACCACCCGCACCCGGCGGAAGATGGCGCTGCGTGCGACGGCGCTCGCCGTCGCCGTCGCGGCGTTCGCCACCGGCTGCGCCAGCGACGCCGTCCAGCGCGGATACCTCCCGGGTTACACCGACGGGCAGGTGACGAACCAGACCGAGCGGATCACCAACCTGTGGAACGGCTCGTGGGTCGCCGCGCTCGCCGTCGGCGTCATCACCTGGGGCCTCATGCTCTGGTGCGTCGCCGCCTACCGCAAGCGCCGCGGCGACGAGCGTCTGCCGGTCCAGACGCGGTACCACATGCCGCTCGAGATCATGTACACGATCGTGCCGACGCTCATGATCCTCGTGCTGTTCTTCTACACGAACCGCGACATGACGGCGATCCTCGACACCTCCGAGGAGCCCGACGTCAACATCCAGGTCATCGGCAAGCAGTGGAGCTGGGACTTCAACTACCTCGACGACGACGTCTACGAGACCGGCCAGCACCTGCTCGAGCCGGGTTCCGTGACGGAGGAGGAGACGGTCGACGACGCTCCCGGGACCTCCGAGGACCTGCCGACGCTGTACCTGCCCGTCGGTGAGCGCGTCGAGTTCACCGTCGACTCCCGTGACGTCATCCACTCCTTCTGGATCCCGGCGTTCCTGTTCAAGATGGACATGATCCCGGGCAAGACGAACACGTTCCAGGTCGTCCCCGAGCGTGAAGGCACCTACGCCGGCAAGTGCGCCGAGCTCTGTGGCGAGTTCCACTCCGGCATGCTCTTCAACGTCGAGGTCGTCGACCGCGCCGAGTACGACGCACAGATGGAGGAGCTGCGCGCTCAGGGTCAGACCGGCGAGCTCGGTCTGGACCTGAACCGCCAGCAGCACTCCGAGTTCTCCACTGACGAGACGATCCCGGAGGTCGAGGGCTGAMHSKSTTRTRRKMALRATALAVAVAAFATGCASDAVQRGYLPGYTDGQVTNQTERITNLWNGSWVAALAVGVITWGLMLWCVAAYRKRRGDERLPVQTRYHMPLEIMYTIVPTLMILVLFFYTNRDMTAILDTSEEPDVNIQVIGKQWSWDFNYLDDDVYETGQHLLEPGSVTEEETVDDAPGTSEDLPTLYLPVGERVEFTVDSRDVIHSFWIPAFLFKMDMIPGKTNTFQVVPEREGTYAGKCAELCGEFHSGMLFNVEVVDRAEYDAQMEELRAQGQTGELGLDLNRQQHSEFSTDETIPEVEGPGPT0004030_2615DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004030-foxB|coxB|ctaC-K02275NANA
AK018_066971158nifS_1COG1104Cysteine desulfurase NifSGTGACACATCCCACCTCGTCGACGCCGACCCGGACCCCTCTGGACAACGGCGGCTCGGCACCCCTGCACCCCCTGGCCCGGCAGGCCCTGGTCCAGGCCCTCGACGAGGGCTGGGCGGACCCCCGGCGCCTGCACGCCGAGGGGCGGCGGGCGGCCGCACTGCTCGACGGCGCGCGCGAGGCCGTGGCCGGCGTGCTGGGCGTGCGCACCGAGGAGGTCCGGTTCACGCCGTCGCACACGGCCTCGCTGCACTCCGCGGTGGCGCAGGTGGTCCGGGCCCGACGGCGGCACGGGCGCGGCGTCGTCGTCGGTGCGGCCGAGCGCGCGGCGATCCTGCACGCGGCCGACCACGCCGCGGGCCCCGGCGGACGCACCACGACCGGCGTCGACCGGCAGGGGCGCGTGGACGCCGACGAGCTCTCCCGGGCCGCCCGCACCGACGGCGTCGCCCTGGCGGCGCTGCAGCACGCCAACGGCGAGGTCGGCACGCGCCAGCCCGTCGCGGCGGTGCACGCCGCGCTGGAGGGCTCGGGCGTGCCCCTGCTCGTGGACGCGGGCGCGTCGGTCGGGCACACGGAGCTGCCGACGGCGTGGGACCTGCTGGCGGCGGACCCGGCGGACTGGGGCGGTCCGCGGGGCGTGGGCGTCCTGGCGGTGCGGCACCGCACCCGGACGGTGCCCGACGGGCCCGAGGACCCGGATCCCTGGGCCCCCGGCGGCGTCAGCGTGCCCGCGGCGTTCGCCGCCGCCGTCTCCCTGCAGGCGGTCGCCCGGGACGTCGCCGCCGAGGACGTCCGCCGCCGCGCCCTGGTCGACCGGATCCGGTCCGCCGTCGCGCAGATCCCGGACGTCGAGGTGGTGGGCGACCCGGTCGACCGGCTCCCCCACGTCGTGACGTTCTCGTTCCTCTACGTCGACGGCGAGGCGATGGTGACCGAGCTGGACCGCGCGGGGTTCGCCGTCGGCTCCGGGTCGGCCTGCACGGCGAGCACCCTGGAGCCGTCGCACGTCCTGGCGGCGATGGGCGTGCTCACGCACGGCAACGTGCGCCTCGCGCTGGACCGGTCGACCACGGACGAGGACGTCGACCGGTTCCTAGCCGTGCTGCCGGGCGCGGTCGCGCGCGTGCGCGACGCGCTGGGGGTGTCCGGGCTGTGAMTHPTSSTPTRTPLDNGGSAPLHPLARQALVQALDEGWADPRRLHAEGRRAAALLDGAREAVAGVLGVRTEEVRFTPSHTASLHSAVAQVVRARRRHGRGVVVGAAERAAILHAADHAAGPGGRTTTGVDRQGRVDADELSRAARTDGVALAALQHANGEVGTRQPVAAVHAALEGSGVPLLVDAGASVGHTELPTAWDLLAADPADWGGPRGVGVLAVRHRTRTVPDGPEDPDPWAPGGVSVPAAFAAAVSLQAVARDVAAEDVRRRALVDRIRSAVAQIPDVEVVGDPVDRLPHVVTFSFLYVDGEAMVTELDRAGFAVGSGSACTASTLEPSHVLAAMGVLTHGNVRLALDRSTTDEDVDRFLAVLPGAVARVRDALGVSGLPGPT0000065_4590DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
AK018_06698258tusA_1Sulfur carrier protein TusAGTGAGCACCGTGCCGGAGGTCGTCGACGCGCGCGGGCTGCGCTGCCCGCTGCCCGTGGTGCGGCTGGCCGCCCGCGCGAAGGAGCTGGCCGCCGGCAGCGAGGTCACGGTGCTCGCCACCGACCCGGCCGCGCGGTACGACGTGCCGGCCTGGGCGCGGCTGCGGGGCCACGTGATGGTGGCCGAGGAGCACCACCCCGGGAACGACGAAGCGGACGGCGGGCCCTGGTGGGCCCTGACCGTCCGCCTCGAGGACTAGMSTVPEVVDARGLRCPLPVVRLAARAKELAAGSEVTVLATDPAARYDVPAWARLRGHVMVAEEHHPGNDEADGGPWWALTVRLEDPGPT0000065_367DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
AK018_06699351ProteinATGACCGACACCACCGAGATCGCCACGCACGGCGTCGAGCTCTCCGAGGTCGCCGCGAACAAGGTCCGCAGCCTCCTCGAGCAGGAGGGGCGCGACGACCTGCGCCTGCGCGTCGCCGTCCAGCCCGGCGGCTGCTCCGGCCTCATCTACCAGCTGTACTTCGACGAGCGTCTGCTCGACGGGGACGCGCTGCGCGACTACGACGGCGTCGAGGTCGTCGTGGACCGCATGAGCGTGCCCTACCTGGACGGCGCGAAGATCGACTTCGCCGACACGATCGAGAAGCAGGGCTTCACGATCGACAACCCCAACGCCGGCGAGTCCTGCGCCTGCGGCGGCTCCTTCGGCTGAMTDTTEIATHGVELSEVAANKVRSLLEQEGRDDLRLRVAVQPGGCSGLIYQLYFDERLLDGDALRDYDGVEVVVDRMSVPYLDGAKIDFADTIEKQGFTIDNPNAGESCACGGSFGNANANANANA
AK018_06700267tusA_2Sulfur carrier protein TusAGTGAGCGGGACGCCGGAGCACGAGGCGGTCGTGGTCGACGCGCGCGGGCTGCGGTGCCCGCTCCCCGTGGTCCGCCTGGCGGCGGCCGCCCGGACGCTGGCGGCGGGGACCCGCGTCGACGTCCTGGCCACGGACCCGGCGGCACGCTACGACGTCCCGGCGTGGGCCCGCATGCGGGGGCACGAGATGGTGGGCGACGAGGTCGCCGCCGCCGGCGAGGACGACGAGCACCGGGTGCTGTCGGTCCGCCTGGGCAGCCCGGCATAGMSGTPEHEAVVVDARGLRCPLPVVRLAAAARTLAAGTRVDVLATDPAARYDVPAWARMRGHEMVGDEVAAAGEDDEHRVLSVRLGSPAPGPT0000065_356DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
AK018_067011200nifS_2COG1104Cysteine desulfurase NifSATGGTTCCCGGCAGTGCCGGCACCCCGGACGGAAGGCGACGTGTGACAGATCCCACCTCCTCCACGGTACGGGCGTACCTGGACAACGCGGGCGGTGCCCGCTGGCACCCCGCGGCCAGGCAGGCGTTCCTGCAGGCCGTGGACGACGGGTGGTCGGACCCGCGACGCCTGCACACGGAGGGTCGGCGCGCGGCCGCCCTGCTCGACGGCGCCCGTGAGGCCCTCGCCGCGGGGCTCGGCGCACGGACCGAGGAGATCCGGTTCACGCCCTCCCACAGCGCGTCCCTGCACCAGGCCACCGCGCAGCTGTCCCGGGCTCGACGGCGCAGCGGGCGTGACGTCGTCGTCGGTGCGACCGAACGGGCGGCGCTGCTGCACGGGGCCTCGCACGCCACCGCCGCGCTGGGCGGGGCACGCCGCACCGTGGCCGTGGACCGGCTCGGCCGGGTCGACGCCGCGACCTTCGCCGCCGAGCTGCGCGACGGCGTCGCCCTGGCGGCGCTGCAGCACGCGAACGGCGAGGTGGGCACCCTCCAGCCGCTGCCGGAGGTGCACGCCGCGGCACGGGAGCACGGGGTGCCGCTCCTGGTCGACGCCGGCGCGAGCGTGGGGCACGTCCCGGTGCCGGAGGCGTGGGACGCCCTCGCCGCCGACCCGGCGGACTGGGGCGCCCCGGCCGGCACGGGTGTCGTGGCGGTGCGCCAGCGGGTCCGGACGGTCCCCACGGGGCCGGAGGACCCGGAACCCTGGGCGCCCGGCGGCGTCAACGTGCCCGCCGCCTTCGCCGCGGCGGTGGGTCTGCAGGCGGTCCGGCAGGACCTCGCCGCGGCGGACGCCCGGCGCCGGACGCTGGTGGACCGGATCCGGGCGGAGGTCACGCGGATCCCGGACGTGGAGGTCGTCGGTGACCCCGACCGACGGCTGCCGCACGTCGTGACGTTCTCGTTCCTCTACGTCGACGGCGAGGCGCTGACGACCGAGCTGGACAGGGAGGGTTTCGCCGTCGGGTCGGGGTCGGCGTGCACGGCCGGGACGCTGGAGCCCTCCCACGTCCTGGCCGCGATGGGCGTGCTCACGCACGGCAACGTGCGGCTCGCCCTGGACCGGGCGACGACGGAGCAGGACGTCGAGCGGTTCCTGGCGGTGCTGCCCGGCGCGGTGGCGCGGGTGCGCCGCATGCTCGGCGTGGAGGACCTGTGAMVPGSAGTPDGRRRVTDPTSSTVRAYLDNAGGARWHPAARQAFLQAVDDGWSDPRRLHTEGRRAAALLDGAREALAAGLGARTEEIRFTPSHSASLHQATAQLSRARRRSGRDVVVGATERAALLHGASHATAALGGARRTVAVDRLGRVDAATFAAELRDGVALAALQHANGEVGTLQPLPEVHAAAREHGVPLLVDAGASVGHVPVPEAWDALAADPADWGAPAGTGVVAVRQRVRTVPTGPEDPEPWAPGGVNVPAAFAAAVGLQAVRQDLAAADARRRTLVDRIRAEVTRIPDVEVVGDPDRRLPHVVTFSFLYVDGEALTTELDREGFAVGSGSACTAGTLEPSHVLAAMGVLTHGNVRLALDRATTEQDVERFLAVLPGAVARVRRMLGVEDLPGPT0000065_4590DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
AK018_06702927ctaC_2COG1622Cytochrome c oxidase subunit 2TTGCACTCGAAGAGCTCCACCCGCACCCGGCGGACACGGGCCCTGCGCGCGACGGCGATCGCCGTCGGCGTCGCGGCCCTGGCCACCGGCTGCGCCAGCGACGTCGCCCAGCGCGGTTACCTGCCCGGTTACACCGACGGGGAGGTGACCAACCAGACCGGCCGGATCACGGACCTGTGGGTCGGGTCCTGGGTGGCCGCCCTCGCCGTCGGCGTCATCACCTGGGGCCTGATGCTCTGGTGCGTGGCCGCCTACCGCAAGCGTCGCGACGACCACCGGCTGCCGGTCCAGACGCGGTACCACATGCCGCTCGAGATCATGTACACGATCGTCCCGACGCTCATGATCCTCGTGCTGTTCTTCTACACGAACCGCGACATGACCGAGATCCTGGACACCACCTCCGAGGAACCGGACGTCAACATCCAGGTCATCGGCAAGCAGTGGAGCTGGGACTTCAACTACCTCGACGACGACGTGTACGAGACCGGCCAGCAGCTGCTCGAGCCGGGCTCCGTCACCGACGAGGACACCGTGGACGGCGCCGTCGGCACCTCGGAGGACCTGCCGACGCTCTACCTGCCCGTCGGCGAGCGGGTCGAGTTCACCGTCGACTCCCGCGACGTCATCCACTCGTTCTGGATCCCCGCGTTCCTGTTCAAGATGGACATGATCCCGGGCAAGACGAACACCTTCCAGGTCGTCCCCGAGCGCGAGGGCACCTACGCCGGCAAGTGCGCCGAGCTCTGCGGCGAGTTCCACTCCGGCATGCTGTTCAACGTGCAGGTGGTCGACCGCGCCGAGTACGACGCCCAGATGGACGCGCTGCGCGACCGGGGCCAGACCGGCGAGCTCGGTCTCGACCTGAACCGTCAGCAGCACTCCGAGTTCTCCATCGAAGACACCACCCCGGAGGTCGAGGGCTGAMHSKSSTRTRRTRALRATAIAVGVAALATGCASDVAQRGYLPGYTDGEVTNQTGRITDLWVGSWVAALAVGVITWGLMLWCVAAYRKRRDDHRLPVQTRYHMPLEIMYTIVPTLMILVLFFYTNRDMTEILDTTSEEPDVNIQVIGKQWSWDFNYLDDDVYETGQQLLEPGSVTDEDTVDGAVGTSEDLPTLYLPVGERVEFTVDSRDVIHSFWIPAFLFKMDMIPGKTNTFQVVPEREGTYAGKCAELCGEFHSGMLFNVQVVDRAEYDAQMDALRDRGQTGELGLDLNRQQHSEFSIEDTTPEVEGPGPT0004030_2615DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004030-foxB|coxB|ctaC-K02275NANA
AK018_067031839ctaD_3COG0843putative cytochrome c oxidase subunit 1ATGGCCACCACCACCGAGACCGGCTACGGCGCCGAGGCGATCCCCGGGCTCCAGCCGGCCCGCCAGACGCTGGGCCGCACCGTCGTCAAGTGGATCACCTCCACCGACCACAAGACGATCGGATACATGTACCTGATCACGTCGTTCTTCTGGTTCGCCGTGGGAGGCATCCTCGCCCTGCTGATCCGTGCCGAGCTCTTCGCTCCCGGCATCCAGATCGTGCAGAGCAAGGAGCAGTACAACCAGCTCTTCACCATGCACGGCACGATCATGCTGCTGCTGTTCGCGACGCCCCTGTTCGCGGGATTCGCCAACGTGATCATGCCGCTGCAGATCGGCGCGCCCGACGTCGCGTTCCCGCGGCTGAACATGTTCGCCTACTGGCTGTTCCTGTTCGGCGGGCTCATCGCCGCCGGCGGGTTCTTCACCCCGCAGGGCGCCGCGTCGTTCGGCTGGTTCGCCTACGCACCGCTGTCCAACACGACCTTCAGTCCGGGGTTGGGTGGAGACTTGTGGGTGTTCGGGTTGGCCCTCGCCGGCTTCGGCACCATCCTCGGTGCCGTCAACTTCATCACCACGATCATCTGCATGCGCGCGCCCGGCATGACGATGTTCCGGATGCCGATCTTCACCTGGAACACCCTGGTCACCAGCCTCCTGGTGCTCATGGCCTTCCCGCCGCTGGCCTCCGCGCTCTTCGCGCTCGGCGCCGACCGCCGCTTCAACGCCCAGGTCTTCAACCCGGACAACGGCGGAGCGGTGCTGTGGCAGCACCTGTTCTGGTTCTTCGGGCACCCCGAGGTGTACATCATCGCGCTGCCGTTCTTCGGCATCGTCTCGGAGATCTTCCCGGTCTTCAGCCGCAAGCCGATCTTCGGCTACAAGGGCCTGGTCTACGCGACCATCGCGATCGCCGCCCTCTCCGTGACCGTGTGGGCGCACCACATGTACGTCACCGGCGCCGTGCTGCTGCCCTTCTTCGCCTTCATGACGATGCTCATCGCGGTCCCGACCGGCGTGAAGTTCTTCAACTGGATCGGCACGCTGTGGCGAGGAAAGCTGACGTTCGAGACACCGATGCTCTGGTCCATCGGCTTCCTCGTGACGTTCCTCTTCGGCGGTCTGACGGGCATCATCCTGTCCAGCCCGGCGCTCGACTTCCACCTGTCCGACTCCTACTTCGTGGTGGCGCACTTCCACTACGTCGTCTTCGGCACCGTGGTGTTCGCGATGTTCGCCGGCTTCTACTTCTGGTGGCCCAAGTTCACCGGGCGGATGCTCGACGAGCGGCTCGGCAAGATCCACTTCTGGGTCCTGTTCATCGGGTTCCACATGACGTTCCTCGTCCAGCACTGGCTGGGCGTCGAGGGCATGGCCCGCCGGTATGCGGACTACATGCCCGGTGAGGGCTTCACCTGGGAGAACCAGCTGTCCACGGTCGGTGCCTTCATCCTCGCCGCCTCGACGCTGCCGTTCCTGTGGAACGTGTACGTGACCTGGCGCAAGGCGCCCAAGGTCGAGGTCGACGACCCGTGGGGCTACGGCCGCTCGCTCGAGTGGGCGACGTCCTGCCCGCCCCCGCGGCACAACTTCGCCTCGCTGCCCCGGATCCGGTCCGAGTCGCCCGCGTTCGACCTGCACCACCCCGAGGTCGCCGCGATGGAGGACCCGCACCACAACCAGGGCATGCTCGACGAGGTCTACGGCGGCGCCGACCGTCGGGGCCAGGCGGAGCACGTCGAGGACCTCACCATGAAGGACTACCCGGAGAAGCAGCAGTCGAGCACCGCGGTGATCGACGCCGAGCGTCCGCAGGACGACGAGGAGGACACCAAGTGAMATTTETGYGAEAIPGLQPARQTLGRTVVKWITSTDHKTIGYMYLITSFFWFAVGGILALLIRAELFAPGIQIVQSKEQYNQLFTMHGTIMLLLFATPLFAGFANVIMPLQIGAPDVAFPRLNMFAYWLFLFGGLIAAGGFFTPQGAASFGWFAYAPLSNTTFSPGLGGDLWVFGLALAGFGTILGAVNFITTIICMRAPGMTMFRMPIFTWNTLVTSLLVLMAFPPLASALFALGADRRFNAQVFNPDNGGAVLWQHLFWFFGHPEVYIIALPFFGIVSEIFPVFSRKPIFGYKGLVYATIAIAALSVTVWAHHMYVTGAVLLPFFAFMTMLIAVPTGVKFFNWIGTLWRGKLTFETPMLWSIGFLVTFLFGGLTGIILSSPALDFHLSDSYFVVAHFHYVVFGTVVFAMFAGFYFWWPKFTGRMLDERLGKIHFWVLFIGFHMTFLVQHWLGVEGMARRYADYMPGEGFTWENQLSTVGAFILAASTLPFLWNVYVTWRKAPKVEVDDPWGYGRSLEWATSCPPPRHNFASLPRIRSESPAFDLHHPEVAAMEDPHHNQGMLDEVYGGADRRGQAEHVEDLTMKDYPEKQQSSTAVIDAERPQDDEEDTKPGPT0004025_452DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
AK018_06704402hypothetical proteinGTGAAGGTCGAGATCCGGCTGTTCGTGTGGCTGGCCCCCTTCTTCGTGCTCGTCGGGATCCTGTACGGCATCTTCACGCGGTGGACCGAGCCGGTCGGCTTCCTGGGGATCCCGCTCGTCGGTGCCCTGATGGCGATGATCGGTGCCTACCTGGTGGTCCAGGCCAAGCACACCGACCCCCGTCCCGAGGACGACGAGAACGGTGAGATCGAGCAGGGCGCCGGCGACCAGGGCGTCTACGCCCCGTGGTCCTGGTGGCCGCTGGTCATCGGTGCCGCGTCCGCCGTCGCGTTCCTCGGCCTCGCGGTCGGCTGGTGGGTCTTCTACATCGCCACCATCCTCGGCATCATCGGGCTCGTCGGCTGGGTCTTCGAGTTCAGCCGCGGCCAGCACGCGCACTAGMKVEIRLFVWLAPFFVLVGILYGIFTRWTEPVGFLGIPLVGALMAMIGAYLVVQAKHTDPRPEDDENGEIEQGAGDQGVYAPWSWWPLVIGAASAVAFLGLAVGWWVFYIATILGIIGLVGWVFEFSRGQHAHPGPT0004025_23DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
AK018_06705657Oxidoreductase P35ATGAAGGTCGCCATCCTGGGCACCGGGGCGATCGCCCACCATCACGCCGACGCCGTGCACGCCCTGGCGCAGCAGCCGGGCCTCGAGCAGGTCGAGCTCGTCGCCGCCGTCGACATCGACGCCGCGCGCGCGGAGGAGTTCGCCACCCGGCATTCCGCGCCCCGCCACGGCACCGACCTGCAGGCGCTGCTCGACGACGGCGGTGTCGACGTGCTGCACATCTGCACCCCGCCGTCGCTGCACCTGGAGCAGGCCCGCGCGGCGTTGGCCGCCGGAGTGCACGTCGTCGTCGAGAAGCCGGCCGTGCTGTCGCTGGAGCAGATCGACGCCCTGGCCGAGGCCGAGCGTGCCTCGACCGCGACAGTCACCCAAATCGTCCAGCACCGGTTCGGCCCCGGGGCGCTGCGCCTGCGCCGGGTGCTCGCCGACGGGACGCTGGGACGTCCGCTCGTGGCGACCTGCGACACGATGTGGTTCCGGCCCCCGGAGTACTTCGAGGTGCCGTGGCGCGGCCGGTTCGACACCGAGGGCGGCGGGCCCACGATGGGGCACGGCATCCACCAGTTCGACCTGATGCTGTCGATCCTGGGCGACTGGTCCGAGGTGCGGGCGATGGCGGGCCGGCGGGGCCCCCCCCCCCCCACCCCCGGCCTGTGAMKVAILGTGAIAHHHADAVHALAQQPGLEQVELVAAVDIDAARAEEFATRHSAPRHGTDLQALLDDGGVDVLHICTPPSLHLEQARAALAAGVHVVVEKPAVLSLEQIDALAEAERASTATVTQIVQHRFGPGALRLRRVLADGTLGRPLVATCDTMWFRPPEYFEVPWRGRFDTEGGGPTMGHGIHQFDLMLSILGDWSEVRAMAGRRGPPPPTPGLPGPT0022715_239DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_D_MANNURONIC_ACID_MODIFICATION,PGPT0022715-wlbA|bplA-K13020NANA
AK018_06706633hypothetical proteinATGGCACGCCGCGACGTTCGGGCCCCCCGGTCATCCGGCCGTGGGGGCCCGAGCTCCTTCTACCGCACCGTCCAGCTCTTCGGCGAGGTGGCGCTGATCGGCGTCTACGTCGCGGTGGGCAGCCTGCTGCTGGTCACTCTCGTGCCGTCGCTCGCCGCGGGCGTCGCCGCACTGCGCCGTGACGTCGTCGGGGGTGACACCCGGTCCTCGCGCTTCTGGCGCGAGTGGGTCGCCGCGACCCGGTCGCTGTGGCCGCTCGGGCTGGCGGTCGTCGCCCTCGCGCTGCTCCTGCTCGGTGACTGGCAGCTCGCCACGTCGGGCGTGCTGCCCGGCGGCGAGATCGTCGCGATCGTTGTGGCGCTCTTCGCCGCCGTGGCGATCGTCGTCGTCCTGCGGGCCGCCGGCGCCTGGTCCGACGACGACGGCGAACCCGTCGAAGGAGTCACCACACGGTCGGCGCTTTCGCGCGGCAGCGACCTCGCCGTCGAGGACCTGTACGGTTCCGGCCTCCTCCTGGGTGCCGTCCTGATGACGGCCGTCCTGGTGTGGATGCTGGTGCCGCTGGTCCTCGTCGTTGGCGGTCTGCTGGTCATGGCCGTGGTCGGCGTCGAGATCCGTCGTCGGACCGTCTGAMARRDVRAPRSSGRGGPSSFYRTVQLFGEVALIGVYVAVGSLLLVTLVPSLAAGVAALRRDVVGGDTRSSRFWREWVAATRSLWPLGLAVVALALLLLGDWQLATSGVLPGGEIVAIVVALFAAVAIVVVLRAAGAWSDDDGEPVEGVTTRSALSRGSDLAVEDLYGSGLLLGAVLMTAVLVWMLVPLVLVVGGLLVMAVVGVEIRRRTVNANANANANA
AK018_06707918araQ_13COG0395L-arabinose transport system permease protein AraQATGACGACTCTCACCGAATCTCCGGCCCCCCAGACGCCTCCGGTCGATCACGAGGCCCTGGCCCGCCGCTCCGCGGCCCGCAACAAGCGCCGCGTCAAGTCGGTGATCTTCCACGCGGTGGCCGTGGGCGCCACGATCGTGGTGCTCTACCCGGCCGCGTGGATGGTCTTCGCCTCCATGAAGCCGAACTCCGACATCATCGGCAACACGCAGCTCATCCCCGACGTGTGGACCGCCGAGCACTACACCACCGCCCTGAGCGGCATCGGCGGAGTGTCCTTCTGGACGTTCTTCAACAACTCGCTGCTGCTGGCGGTTCTGTCCGTTGTCGGCACGGTGCTGTCCTCGACGGTCGCGGCGTACGCGTTCGCCCGGATCGACTTCCCCGGACGTGGGCCGCTCTTCGCGGTCATGATCGGCACGCTGCTGCTGCCGTTCCACGTCACGATCATCCCGCAGTACATCTTGTTCAACAATCTCGGCATGGTGAACACGTACTACCCGCTGCTGCTGCCGAAGTTCCTGGCGGCCGAGGCGTTCTTCGTGTTCCTCATGATCCAGTTCATCCGTGGTATCCCGCGGTCGCTGGACGAGGCCGCCCGCATCGACGGGTGCGGTCACGGGCGCATCTTCTTCCGTATCATCCTGCCGCTGATGCGTCCGGCGATCGTGACCAGCTCGATCTTCACGTTCATCTGGTCGTGGAACGACTTCCTCGGCCCGCTGCTCTACCTGAAGGACCCGGCCCTGTACACGATGCCGATCGCGCTGCGCCAGTACGTGGACCAGACGTCCGTCTCGGACTACGGTGCACAGATGGCCATGGCCGTCCTCGCGCTGCTGCCCGTGATGATCTTCTTCGTCGTGTTCCAGCGCTTCCTCATCAACGGTGTCGCCACGCAGGGCATCAAGGGCTGAMTTLTESPAPQTPPVDHEALARRSAARNKRRVKSVIFHAVAVGATIVVLYPAAWMVFASMKPNSDIIGNTQLIPDVWTAEHYTTALSGIGGVSFWTFFNNSLLLAVLSVVGTVLSSTVAAYAFARIDFPGRGPLFAVMIGTLLLPFHVTIIPQYILFNNLGMVNTYYPLLLPKFLAAEAFFVFLMIQFIRGIPRSLDEAARIDGCGHGRIFFRIILPLMRPAIVTSSIFTFIWSWNDFLGPLLYLKDPALYTMPIALRQYVDQTSVSDYGAQMAMAVLALLPVMIFFVVFQRFLINGVATQGIKGPGPT0016540_686DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
AK018_067081005lacF_14Lactose transport system permease protein LacFATGGCTTCAATCGATCCCGGCGCACCAGTCGCCGTACCCGGGCAGCCGGCACCCGCGCAGCACCTGCAGCGGACCGACGCCGAGACTCCGCTCCCCTCGCCGCGGCCGGCGAAGAGGAAGTACAAGCGCGAGGACATCCGCTCGGGCTACCTGTTCCTGTCCCCGTGGATCATCGGGTTCGTCGGCCTGACGGCCTTCCCGATGATCGCCTCGCTCTACCTGGCGTTCACGGACTACGACCTGTTCACCTCGCCGCAGTGGGTGGGGTTCGACAACTTCGTCGACCTGTTCAACGACCCGCGGTTCATCCAGTCGGCCCAGGTCACGGCCGGCTACGTCCTGCTCGGTACGCCGATCAAGCTCGGTGCAGCGCTCGCCGTGGCGATGCTGCTGAACATGAAGCACCGTGGGCAGGGTGCCTATCGGTCGATCTTCTACGCGCCGTCGCTGATCGGTGCCTCGGTGTCCATCGCCATCGTGTGGAAGGCGATGTTCATCGACGACGGCATCGTCGACCGCGTCCAGCAGGCGGTCGGCATCGACATCGGCGGCTGGGTGGGTAACCCGGCGTTCTCGCTGCCGATGCTGATCCTGCTCGGGGTGTGGGGCTTCGGTGCCCCGATGGTGATCTTCCTGGCCGGCCTGAAGCAGATCCCGGCCGAGCTGTACGAGGCCGCCGAGTGCGACGGCGCCGGCCCGGTGCGCAAGTTCTGGAACATCACGCTCCCGATGCTGAGCCCGGTGCTGTTCTTCAACCTGCTCCTCGAGACGATTGCGGCCTTCCAGGTCTTCAGCTCCGCCTACATCATCTCCGGCGGGACCGGTGGTCCGGCGGGCTCGACCATGTTCTACACGCTGTACCTGTACCTGCGCGGATTCCAGGACTTCCAGATGGGTTACGCCTCGGCGATGGCCTGGGTCCTGGTCTCCGTCATCGCGGTGATCACCGTGATCCTGTTCCGCTCGTCCAAGGGATGGGTCCACTACACGGGAGACGAACGATGAMASIDPGAPVAVPGQPAPAQHLQRTDAETPLPSPRPAKRKYKREDIRSGYLFLSPWIIGFVGLTAFPMIASLYLAFTDYDLFTSPQWVGFDNFVDLFNDPRFIQSAQVTAGYVLLGTPIKLGAALAVAMLLNMKHRGQGAYRSIFYAPSLIGASVSIAIVWKAMFIDDGIVDRVQQAVGIDIGGWVGNPAFSLPMLILLGVWGFGAPMVIFLAGLKQIPAELYEAAECDGAGPVRKFWNITLPMLSPVLFFNLLLETIAAFQVFSSAYIISGGTGGPAGSTMFYTLYLYLRGFQDFQMGYASAMAWVLVSVIAVITVILFRSSKGWVHYTGDERPGPT0016535_2340DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
AK018_067091308yesO_5COG1653Putative ABC transporter substrate-binding protein YesOATGAGGATCACGCGCAAGGCCGCAGGTGCGGCTGCCGCGACCGCTGCTGTCGCTCTCGTGCTGACCGCGTGCAGCGGCGGCGGCGACGACTCCGCCGAGGGTGGCGAGGAGGGTGGCGACGTCACCCTGACCGTCGCCTGGTGGGGCAACGACGACCGTGCCGCCCGGTACGAGGAGTCGATCGACCTCTTCGAGGAGGCGAACCCCGGCATCACCGTCCAGACCCAGTTCCAGGACTGGGAAAACTACTGGACCGCCCGCAACACGGAGGCGGCCGGCCAGTCGCTGCCCGACGTGTTCCAGATGGACCTGTCCTACCTGCGCCAGTACGGCGGGACCGGCCAGCTCGCCGACCTGTCCGAGTACACGGGCAGCACCATCGACACCTCCGGGTTCGAGGAGGCGCTGCTGTCCTCCGGCACCATCGAGGGCGCCCAGTACGGCATCCCGACCTCGCAGAACACGCTCGCGCTGTTCTACAACCAGGACGTGCTCGACACGATCGGCGTCGACCCGCTCGAGCCGGGGTACACCTGGGACGACTTCAACGCCTTCATCGCCGAGGCCTCCGAGGCCGGCGCCGGCGAGGACCCGGCCATCTACGGCTCGGGTGACTACACCGGCACCTTCTGGTTCTTCCTGCAGTGGTACCTGCAGCAGGGCGAGCAGCCGTTCACCGAGGACGGCCAGCTCAACTTCGACGAGGCCGCTGTCACCGAGTTCCTCAACCTGGCCTCCGAGCTGCGCGAGGCCGGTCAGCTCTACCCGACCGAGCGGGCCGTGCAGCTCGCTCCGCTGGGCGGGTTCACCTCGAACGAGGCCGCGGCGGAGGCGAGCTGGGACAACTTCCTGGCCGGCTACATCTCCGACGCGGGCACCGAGAACATCCACATGCTGCCGATGCCGTCGGGCGACAACGGCCCGCAGCAGTTCTGGAAGCCGTCGATGCTGCTCTCGTCGGGCGCCAACTCCGAGCACCCGGAGGAGGCTGCCGAGCTGATCAGCTTCCTGGTCAACGACCCGCAGGTCGGCGAGATCTTCGGTACCTCGAAGGGCGTGCCCGCCGTGGCCGCCCAGCGTGACGCCATGAACGTCGAGGAGGGCTCGGTCGACGCCACCGTGCTCGAGTACGAGGAGTCCGTCGCCGCGGACGTCACCGAGTCGGCACCGCTGCCGGTCGAGGGCTTCGGTTCCATCGAGGCCGAGTGGATGCGCCTGGCCGAGGAGCTCGGCTACGGAAACATCACGGTCGACGAGTTCGTCGAGCAGTGGTTCGCCTTCGCCAACGACGCCGTCGGCCAGTCCTGAMRITRKAAGAAAATAAVALVLTACSGGGDDSAEGGEEGGDVTLTVAWWGNDDRAARYEESIDLFEEANPGITVQTQFQDWENYWTARNTEAAGQSLPDVFQMDLSYLRQYGGTGQLADLSEYTGSTIDTSGFEEALLSSGTIEGAQYGIPTSQNTLALFYNQDVLDTIGVDPLEPGYTWDDFNAFIAEASEAGAGEDPAIYGSGDYTGTFWFFLQWYLQQGEQPFTEDGQLNFDEAAVTEFLNLASELREAGQLYPTERAVQLAPLGGFTSNEAAAEASWDNFLAGYISDAGTENIHMLPMPSGDNGPQQFWKPSMLLSSGANSEHPEEAAELISFLVNDPQVGEIFGTSKGVPAVAAQRDAMNVEEGSVDATVLEYEESVAADVTESAPLPVEGFGSIEAEWMRLAEELGYGNITVDEFVEQWFAFANDAVGQSPGPT0016545_4676DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
AK018_067102964pulA_2PullulanaseGTGTACACCTGGTCCACCGACGCGCTGCCCGGCGGCGCCTACGAGGTCAAGGCGGCCCACGGCCTGAGCTGGGCCGAGAACTACGGCGTCGGGGGAGCGCCCGACGGCGCGAACTACACCTTCTCCGTGGGGCAAGGTGAGACCGTGACGTTCTCCTACGACCTCGCCACGCACGAGCTGACCGTCGGGACCGAGAACCCGCCGCTGGCGGGTCTGGGCCAGCAGGCCGCGCACTGGGTGCGTGAGGACCTGCTGCTGGCCCACGGAGACCTCGGGACCGGCGACGAGTGGACGCTGTGGACCGCCCCCGAGGGCGGCCTCGAGGTCTCGGAGTCACCGGCGGGCGGCGACGCCGACGCGGTGACCGGACCGGACGGCGGCGACCTGCCCGACGGCGCGGCGTCCTACACCCTCGAACCCGGCGACCTGCCGGACGGCGTGGCCGAGGACTTCCCGGCCCTCGCCGACCACACGGCGCTCGTGCCGACGTCGGACGGCGAGGTCCTGGACCGCGCGACGGTCGAGGACCTGCTCACCGGCCAGCTCCTGGTGACCCGCACCGACGGCGACACCCTCACCGCCGCCACGGGCGTGCAGATCCCGGGCGTGCTGGACGACCTGTACGCCAAGGCTGCGGCGGATCGTACGTTCGGGGCCGCCGTGCACCCGAACCGCACGTGGGCCTCGTTCGCCCTGTGGGCGCCGACGGCCCAGGACGTCGACCTGCTGGTCTGGCCCGAGGGCCGCGACCTGGGCGACGAGCCCGACCGCTTCGACACCACGCGGGCCGACGACGGCACGTGGACGCTCGACGGCAAGGCCGAGGACAAGAAGTACCCCTGGTACGGCGCGCGCTACCGGTACGCCGTGCAGGTGTACGTGCCGGGCGGTGGGGGCGCCCCGGGCAGGATGGAGACAAACCTCGTCACCGACCCGTACTCGGTCGCGCTGACCACCGACTCGACCCACTCCGTGGTCGTGTCCCTGGACGACAAGAGGTTCCAGCCGAAGGTCTGGCGCACGACGCCGCAACCCGTCGTCGAGCGGCCCGTCGACCAGACGATCTACGAGCTGCACGTGCGGGACTTCTCGATCGCGGACTCCACGGTCCCCGAGACGGTGCGGGGCTCCTACCTGGCCTTCGCCGAGTCGGACTCGGACGGCATGACGCACCTGCGCGAGCTGGCCGAGGCCGGCATGACGACGGTGCACCTGCTGCCGACGTTCGACATCGCCTCGATCGTCGAAGACCCCGCGGACCAGGAAGCCACCGGCGACCTGTCCGGGTTCGCCCCCGACTCCACGGAGCAGCAGGCGGCCGTGGCCGGGGTCCAAGGCTCCGACGCCTTCAACTGGGGCTACGACCCGTACCACTTCACGACGCCGGAGGGCTCGTACGCCGTCGACCGCGAGGGCGGGGCCCGCGTGGCCGAGTTCCGCACGATGGTGGGCTCGCTGCACGAGGCCGGGCTCCAGGTGGTCCTCGACCAGGTGTTCAACCACACCGCCGCCAGCGGTCAGGCCGACAGGTCGGTGCTGGACAGGGTCGTGCCGGGCTACTACCACCGGCTGAACCCGACCACGGGCGCCGTGGAGACCAGCACCTGCTGCCAGAACGTCGCCACCGAGCACGCGATGGCCGAGCAGCTCATGGTCGACTCCGTGGTCACCTGGGCCCGCGACTACAAGGTCGACGGGTTCCGGTTCGACCTCATGGGTCACCACTCGCGCGAGAACATGCTCGCCGTGCGCGAGGCGCTCGACGCGCTGACGGTCGAGTCCGACGGCGTCGACGGCTCGGCGGTCTACCTGTACGGCGAGGGCTGGAACTTCGGCGAGGTGGCGGACAACGCCCTGTTCACGCAGGCCACGCAGGGTCAGCTCGGCGGCACGGGGATCGGGACGTTCAGCGACCGGCTCCGCGACGCCGTGCACGGCGGGTCGCCCGTCGACGGTCCGTCGACGTTCACCCAGGGCTTCGGCACCGGGCTGTTCACCGACCCGAACGGGCGGGAGGCCCGCACGGGTGAGCCCGGCACGGTGAACGACGGCGGGGACGACGAGGCGGCCGACCTGGCCCACCAGACGGACCTGGTCCGCCTGGGGCTGGCCGGCAACCTGCGGGACTACACGTTCCTCACCTCGGACGGCGAGACGACCCGGGGCGAGGACCTCGACTACCGCGGCTCCCCGGCCGGGTACGCCGAGTCCCCGGAAGAGGTCGTGACCTACGTCGACGCCCACGACAACGAGACGCTCTTCGACCTGCTCACGCTCAAGCTGCCGCAGGCGACGTCGATGGACGACCGCGTCCGCATGAACACCGTGTCGCTCGGCACGGCGGCACTGGCCCAGACGCCGTCGTTCTGGCACGCGGGCACGGACCTGCTCCGCTCGAAGTCGCTGGACCGCAACTCCTACGACTCCGGCGACTGGTTCAACGCCATCGACTGGTCGGGCCAGGACAACGGGTTCGCCCGCGGTCTGCCGATGGCCGCGGACAACTCCGAGAAGTGGCCGCTCATGGCGCCGCTGCTGGCCGACCCGGCGCTCAAGCCGACGCCGGAGCACATCGCCACGGCCTCCGCGCAGGCGCGGGAGCTGCTGGAGCTGCGCTCGTCGACCCAGCTGTTCCGGCTGGGGTCGGCCGAGCTCATCGGTGAGAAGGTCTCCTTCCCGGGCTCGGGTCCGGACGCCGTCCCGGGTGTCATCGCCATGGCGATCGACGACACGGTCGGTGCCGACGTCGACCCGGCACTCGACGGGGCGCTCGTGGTGTTCAACGCCTCGCCCGAGGCGGCGACGATCGACCTGCCCGACCTCGCCGGACGGGGCTTCGCGCTCTCGCCGGTGCAGGCCGGCGGCGTCGACCCCGTCGTCCAGGAGACCTCCTGGGACGGTGACGCCGGGAGCGTGACGGTGCCGGCGCGGACCGTCGCGGTGCTGGTCGAACCCACTGCCTGAMYTWSTDALPGGAYEVKAAHGLSWAENYGVGGAPDGANYTFSVGQGETVTFSYDLATHELTVGTENPPLAGLGQQAAHWVREDLLLAHGDLGTGDEWTLWTAPEGGLEVSESPAGGDADAVTGPDGGDLPDGAASYTLEPGDLPDGVAEDFPALADHTALVPTSDGEVLDRATVEDLLTGQLLVTRTDGDTLTAATGVQIPGVLDDLYAKAAADRTFGAAVHPNRTWASFALWAPTAQDVDLLVWPEGRDLGDEPDRFDTTRADDGTWTLDGKAEDKKYPWYGARYRYAVQVYVPGGGGAPGRMETNLVTDPYSVALTTDSTHSVVVSLDDKRFQPKVWRTTPQPVVERPVDQTIYELHVRDFSIADSTVPETVRGSYLAFAESDSDGMTHLRELAEAGMTTVHLLPTFDIASIVEDPADQEATGDLSGFAPDSTEQQAAVAGVQGSDAFNWGYDPYHFTTPEGSYAVDREGGARVAEFRTMVGSLHEAGLQVVLDQVFNHTAASGQADRSVLDRVVPGYYHRLNPTTGAVETSTCCQNVATEHAMAEQLMVDSVVTWARDYKVDGFRFDLMGHHSRENMLAVREALDALTVESDGVDGSAVYLYGEGWNFGEVADNALFTQATQGQLGGTGIGTFSDRLRDAVHGGSPVDGPSTFTQGFGTGLFTDPNGREARTGEPGTVNDGGDDEAADLAHQTDLVRLGLAGNLRDYTFLTSDGETTRGEDLDYRGSPAGYAESPEEVVTYVDAHDNETLFDLLTLKLPQATSMDDRVRMNTVSLGTAALAQTPSFWHAGTDLLRSKSLDRNSYDSGDWFNAIDWSGQDNGFARGLPMAADNSEKWPLMAPLLADPALKPTPEHIATASAQARELLELRSSTQLFRLGSAELIGEKVSFPGSGPDAVPGVIAMAIDDTVGADVDPALDGALVVFNASPEAATIDLPDLAGRGFALSPVQAGGVDPVVQETSWDGDAGSVTVPARTVAVLVEPTAPGPT0012195_142DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-PULLULANASE,PGPT0012195-pulA-K01200NANA
AK018_067111164chvE_4COG4213Multiple sugar-binding periplasmic receptor ChvEATGCGACTCGGCAAGAAGATGGGCGTGGTCGCCGCGGGTGCGGCGCTGGCGCTCACCCTCACCGCCTGCGCGGGTGAAGGCGCGGGCAGCGACAGCGGCAGCAGCGACAGCGGGGACTCCACGGCCGAAGGCGGCGACCTGAGCGTCGGCGTCGCGATGCCCACCGAGACGTCGGAGCGGTGGATCGCCGACGGCAACGCGGTGCAGTCCGGCCTCGAGGAGGCCGGCTACGGCGTCGACCTGCAGTTCGCGGGCGACGACATCCCCACCCAGACCCAGCAGATCGACGCCATGATCACCGGCGGCGTCGACGCGCTGATCATCGCCGCGATCGACGGCACGGCCCTGACGAGCCAGCTCGAGGCCGCCGCCGCCGCAGACATCCCGGTGGTCTCCTACGACCGCCTCATCAACGGCAGCGAGCACGTGGACTTCTACGTCTCGTTCGACAACTACAGGGTCGGCGTCGCCCAGGCGACCGCTCTCCTGTCCGGGCTGGGTCTCACCGACCGGGACGGCAACCCGACCGACGAGGAGGGCCCGTTCAACGTCGAGCTCTTCGCCGGTTCGCCCGACGACAACAACGCGACCTTCTTCTGGAACGGCGCGATGGACACGCTCCAGCCGTTCCTCGACAGCGGTGCGCTCGAGGTCCCGTCCGGCCAGACCGAGTTCGACCAGGCCGCCATCCTGCGCTGGCAGCAGGAGACCGCGCAGAAGCGCATGGAGGACCTCATCACCTCCACGTACTCCGGTGACACGGAGCTGCACGGCGTGCTGTCCCCGTACGACGGCCTCTCCCGCGGCATCATCACCGCCCTCAAGGGCGCCGGCTTCGGCGACACCATCGAGGACGGCCTGCCCGTCGTCACCGGCCAGGACGCCGAGATCGCCTCGGTCAAGCTGATCCAGGACGGCGTGCAGCAGTCCACGATCTTCAAGGACACCCGCAAGCTGGCCGACCAGGCCGTGGTCGCCACCGAGGCCTTCCTCGCGGGCGAGGAGCCCGAGGCGAACGACACCGAGACGTACGACAACGGCGTCAAGGTCGTCCCGTCCTACCTCCTCGAGGTCGACACCGTCTACGCGGACAACATCACCGAGCTGCTGGTCGACAGCGGCTACTGGACCCAGGACGAGATCGACGCCGGCCAGGCCGAGTGAMRLGKKMGVVAAGAALALTLTACAGEGAGSDSGSSDSGDSTAEGGDLSVGVAMPTETSERWIADGNAVQSGLEEAGYGVDLQFAGDDIPTQTQQIDAMITGGVDALIIAAIDGTALTSQLEAAAAADIPVVSYDRLINGSEHVDFYVSFDNYRVGVAQATALLSGLGLTDRDGNPTDEEGPFNVELFAGSPDDNNATFFWNGAMDTLQPFLDSGALEVPSGQTEFDQAAILRWQQETAQKRMEDLITSTYSGDTELHGVLSPYDGLSRGIITALKGAGFGDTIEDGLPVVTGQDAEIASVKLIQDGVQQSTIFKDTRKLADQAVVATEAFLAGEEPEANDTETYDNGVKVVPSYLLEVDTVYADNITELLVDSGYWTQDEIDAGQAEPGPT0015735_76DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0015735-sbpA-K10546NANA
AK018_06712669yknY_2COG1136putative ABC transporter ATP-binding protein YknYATGTACCAGCTCACGGACGTCACCAAGACCTACACCGGCAAGCGCACCGTCCACGCCCTGCAGTCGGTGGACCTGGAGATCGGCGACGGCGAGCTCGTCGCAATCCAGGGTCCCACCGGCGGCGGCAAGTCCACCCTGCTGCAGATGCTCGGCGGGCTCGACCGCCCGACGTCGGGCCGCGTCGTGCTCGCCGGGGACGACCTGGCGAGGCTGTCCGACGGCGCGCTCACCAAGGCCCGCGCGAAGAACCTCGGATTCGTGTTCCAGCACTACAACCTGATCCCGACGCTCACGGCCGTGGAGAACGTCGGCACCGCACTGGTGCCGCTCGGCGTGCCGGCGGCCGACCGTGCGCGGCGCTCGCTCGCGGCCCTGGAGTCGGTCGGCCTCGGCGAGCGTGCCGACCACCTGCCCGGGGAGCTGTCCGGCGGGCAGCAGCAGCGCGTCGCCATCGCGCGGGCGCTGGTCAAGGAGCCGACCGTGCTGCTCGCCGACGAGCCGACCGGCAACCTCGACGAGGCCACGCGCGACGAGATCGTCGAGCTCCTCGAAGGGCTGTGGAAGGAGCAGGGGCTGACCATCGTCATGGTCACGCACGACTCCGCCGTCGCCCGACGGGCCCAGCGGCGCCTCCGGATCGCGAGCGGGAAGGTCTCCGAGGCCGCCTGAMYQLTDVTKTYTGKRTVHALQSVDLEIGDGELVAIQGPTGGGKSTLLQMLGGLDRPTSGRVVLAGDDLARLSDGALTKARAKNLGFVFQHYNLIPTLTAVENVGTALVPLGVPAADRARRSLAALESVGLGERADHLPGELSGGQQQRVAIARALVKEPTVLLADEPTGNLDEATRDEIVELLEGLWKEQGLTIVMVTHDSAVARRAQRRLRIASGKVSEAAPGPT0013345_12715DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
AK018_067131560hypothetical proteinATGTTCCTGACCTATCTACGCCGCGAGCTGCGGCACCGCCGCAAGCAGACGACGGTCGTCGCCGTCGGCCTGGCCGTCGCGATCGCCCTGGTCATGGTGGTCTCGTCGGTGTCGTCCGGCGTGCGGGACGCCCAGGCGTCCGTGCTCGAGTCCGTCTACGGCGTCGGCACCGACGTGACCGTCACGCAGGCCGGGGCGCCGGGCGGCGGAGAAGGCCCGGGACGCTTCGAGTTCGACGCCGAGTCCGGCGAGGCCGACGAGGAGGGCACCCGCTCCCTGGACCAGTCACAGCTGACGGTCGAGCGGGGCAGCTCGTCGTTCGACGACACCGCGCTGACGTCGATCACCGGCGTCGAGCACGTCTCCGGCGCCGCCGCGACCCTGACGTTGTCCAGCACGTCGTTCAGCGGCGAGATGCCGGACTTCGAGGCGATGCGCGAGCAGATGGAGTCCGGCGGGCAGCCCGGCGCGGCGCCCGGTGAGGGCGCGCAGGACGGGTCCGACGACGGCACCACCGGTGGCGCGGACGGCGCCGGGGGCAGCGCGTTCGAGGTCGACTCGTTCACGGTGACCGGCGTGGACCCCGCGGCGACCGCCGTCGGGCCGCTCACGACCCTCGAGGTGGCCGACGGTCGTGGCCTCGAGGACGGGGACGCCGAGGTCGCCGTGCTGGATGCGACCTACGCCGAGACCGCCGAGATCGCCGTCGGCGACACGATCGACGTCGGCGGCACCGACGTCGAGGTGGTCGGCACCGTCGGCTCGAGCACCGGCGAGGGCGTCGCCACCGCGTCGGACGTGTATGTCCCGCTGGCGTTCGCCCAGGAGCTCGCCGACCTCGACGGCCAGGTCACCGACGTCTACGTCGCGGTGGACTCCGCCGACAACGTCGACGCGGTCGCCGACGCCATCGCCGCCGAGCTGCCCGACGCCTCAGTCTCCACCAGCTCCGACCTGGCCGGGGACGTCACCGGCTCGCTGTCCACGGCGTCGTCGCTGGTCTCCACCCTCGGCACCTGGCTGAGCATCGTGGTGCTCGCCGCCGCGTTCGGCCTGGCCATCCTGTTCACCGTCTCCGGCGTCAACCGACGCACCCGCGAGCTCGGGACCCTCAAGGCGATCGGCTGGTCCAAGGGCCGCGTCGTCGGGCAGGTGGCCGGCGAGTCGGTGGTCCAGGGCCTGATCGGCGGCGTGGCCGGCATCGCTCTCGGGGCCCTGGCCGTCCTCGGCATCAACCTCGCCGGAATCACGTTGACCGGTGCTTCCGGTGCGGGCGGCTTCACGTTCGGCGGTCCCGGGGCGGGCGGCCAGGCGGGCGGCGGTCAGGCCGGCGGCGGTGCGTCCGCTGGCGGCCCCGGCGCCGGTGGGGGCGGTCCCTTCGGGCAGGCCGCCGATGCCGCCTCCAGCGCCGTCGACGTGGTGCTCACCGCACCGGTCTCCGTGTGGATCGTGGTCGCCGCCGTCGGGCTCGCCGTCCTCGGCGGGCTGCTCGCCGGCGTCGTCGGCGGCTGGCGCGCCGCCCGTCTCCGCCCCGCCGAAGCCCTTCGCTCGCTCGCCTGAMFLTYLRRELRHRRKQTTVVAVGLAVAIALVMVVSSVSSGVRDAQASVLESVYGVGTDVTVTQAGAPGGGEGPGRFEFDAESGEADEEGTRSLDQSQLTVERGSSSFDDTALTSITGVEHVSGAAATLTLSSTSFSGEMPDFEAMREQMESGGQPGAAPGEGAQDGSDDGTTGGADGAGGSAFEVDSFTVTGVDPAATAVGPLTTLEVADGRGLEDGDAEVAVLDATYAETAEIAVGDTIDVGGTDVEVVGTVGSSTGEGVATASDVYVPLAFAQELADLDGQVTDVYVAVDSADNVDAVADAIAAELPDASVSTSSDLAGDVTGSLSTASSLVSTLGTWLSIVVLAAAFGLAILFTVSGVNRRTRELGTLKAIGWSKGRVVGQVAGESVVQGLIGGVAGIALGALAVLGINLAGITLTGASGAGGFTFGGPGAGGQAGGGQAGGGASAGGPGAGGGGPFGQAADAASSAVDVVLTAPVSVWIVVAAVGLAVLGGLLAGVVGGWRAARLRPAEALRSLAPGPT0013350_11244DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
AK018_06714681hypothetical proteinGTGGACGGCTTCTGGGACTTCCTCGGCTCGTACTGGTGGCTCGTCTTCCCGCTCAGCGGCGTCGTGGGCGCGTGGGCCAGCGGGTTGCGGGCGTGGGACGAGCGGCGCCGCCGCGACAAGATCGAGATGTACCGGATCAAGCACGGCGGCCAGGTGGCGGCGGCGGAGTCCGCGGAGTCGATGCAGCGCGAGATCGACCGGGCGCTGGCCGTGCACGACGAGACCGAGCACCGCTGGCTCGACTACGAGCTCGACGCCGTCAAGGTGCTCGACTACCCCCTCATGACGGACATGCGCGAACCGGTCACCGTCGACTTCCACCGGGCCCGGCGGGCAGCCGAGGAGCTGCGCCCCGAGGACCCCGCCGAGCTGCGCGACCGGCAGCTGCTGGACCGCTACCGCACCGCCGTCCTGGAGTACCAGCTCACGTTCGACGTCGCCGAGCGCGAGGCGAAGCGCCGTCAGGCCTCGGACTTCACCGCCGAGGAGCGGCGCGCCCTGGACCGGGCGAAGAAGCTGCTGGCCCTGGCCGACGACCCGGGCGCCAGCCACGCCGAACGGCAGTCCGCCTATCGCCGGGCCACGAAGGAGCTCGAGGGAATCCTCGTGCTGCCGGACCCGGCGACCGAGGCGATCGAGCGTCGGATCGCCGGCGAGCTGGGGACCCGCTCACCGGAGTAGMDGFWDFLGSYWWLVFPLSGVVGAWASGLRAWDERRRRDKIEMYRIKHGGQVAAAESAESMQREIDRALAVHDETEHRWLDYELDAVKVLDYPLMTDMREPVTVDFHRARRAAEELRPEDPAELRDRQLLDRYRTAVLEYQLTFDVAEREAKRRQASDFTAEERRALDRAKKLLALADDPGASHAERQSAYRRATKELEGILVLPDPATEAIERRIAGELGTRSPENANANANANA
AK018_067151281eno_2COG0148EnolaseGTGGCAAGCATCGAAGCCGTTGGCGCGCGCGAGATCCTGGACTCTCGTGGAAACCCGACCGTGGAGGTGGAGATCGCCCTCGACGACGGCACCTTCGCCCGTGCCGCGGTCCCGTCCGGCGCCTCGACCGGCGCCTTCGAGGCCGTCGAGCGGCGTGACGGCGACGCCGAGCGCTACCTGGGCAAGGGTGTCGAGGGTGCGGTCAACGCCGTCATCGACGACATCGCGCCCGAGCTGATCGGCTACGACGCCGAGGAGCAGCGCCTCATCGACCAGACCCTCATCGAGCTGGACGCCACCCCGAACAAGGGCAAGCTGGGCGCCAACGCGATCCTGGGCGTCTCCCTGGCCGTGGCGAAGGCCGCCGCCAAGAGCGCCGGTCTGGACCTGTTCCGCTACGTCGGCGGCCCGAACGCGCACGTCCTGCCCGTGCCGATGATGAACATCCTCAACGGCGGGTCCCACGCGGACTCGAACGTGGACATCCAGGAGTTCATGATCGCCCCGATCGGCGCGACCTCGTTCAAGGAGGCCCTGCGCACCGGCGCCGAGGTCTACCACGCCCTGAAGTCGGTGCTGAAGGCCGAGGGCCTGGCCACCGGTCTCGGCGACGAGGGCGGCTTCGCCCCGAACCTGTCGAGCAACCGTGCGGCGCTCGACCTGATCATCACCGCCATCGAGAAGGCCGGCTACACGCCGGGCATCGACGTGGCGCTGGCGCTCGACGTGGCCGCCACGGAGTTCTTCTCCGACGGCACGTACCACTGGGAGGGCGGCGCGAAGTCGCCCGAGGAGCTGATCTCCTTCTACGAGGAGCTCGTCCGCGACTACCCGCTGGTCTCCATCGAGGACCCGCTGTCCGAGGACGAGTGGGACTCCTGGTCGGCGCTCATGGACAAGGTCGGCGACAAGGTCCAGATCGTCGGCGACGACCTGTTCGTCACCAACCCCGAGCGTCTGGCCAAGGGCATCGAGACGAAGGCCGCGAACTCGCTGCTGGTCAAGCTCAACCAGATCGGTTCGCTCACCGAGACCCTCGACGCCGTGACGCTGGCGCAGCGCAACGGCTTCACCACGATGACCTCGCACCGCTCCGGCGAGACCGAGGACACCACCATCGCGGACCTGTCGGTGGCCACCAACGCCGGCCAGATCAAGACCGGTGCCCCGGCCCGCGGCGAGCGGATCAACAAGTACAACCAGCTCCTGCGCATCGAGGACGCGCTGGACGACGCCGGTCGCTACGCCGGGCGTTCGGCCTTCCCGCGCTTCCAGGGCTGAMASIEAVGAREILDSRGNPTVEVEIALDDGTFARAAVPSGASTGAFEAVERRDGDAERYLGKGVEGAVNAVIDDIAPELIGYDAEEQRLIDQTLIELDATPNKGKLGANAILGVSLAVAKAAAKSAGLDLFRYVGGPNAHVLPVPMMNILNGGSHADSNVDIQEFMIAPIGATSFKEALRTGAEVYHALKSVLKAEGLATGLGDEGGFAPNLSSNRAALDLIITAIEKAGYTPGIDVALALDVAATEFFSDGTYHWEGGAKSPEELISFYEELVRDYPLVSIEDPLSEDEWDSWSALMDKVGDKVQIVGDDLFVTNPERLAKGIETKAANSLLVKLNQIGSLTETLDAVTLAQRNGFTTMTSHRSGETEDTTIADLSVATNAGQIKTGAPARGERINKYNQLLRIEDALDDAGRYAGRSAFPRFQGPGPT0018050_5502DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018050-eno-K01689NANA
AK018_06716792COG3039IS5 family transposase ISRhosp9GTGCCCGCCCACACCCTGAGGGTCGTGACCCGCTGGATCACGGCGCACCGCCGTCGCCGCGACATCCGCCCGTGGCAGCGTGCCGCGACCGCCAGAGCGCAGGCGTTGCTGGTGCTGCGCTGGTTCAAGGACGCCGCCCGGGTCCCGCTGCTGGCGCGGGATGCGGGGATCTCTGTCGCGACGGCCTACCGGTACCTGCACGAGGCCATCGACGTCATCGCCGACCGCGCACCCGACCTGCACCACGTGCTCGCCACCGCCCGCGCCGAGGACTGGCCCTACGTCTGCCTCGACGGGACCCTGGTCCCCACGATGCAGCTGCACGGCCCGAAGAACCCCTCGGGCGCGGAGTCCTGGTACTCCGGCAAGCACCACACGCATGGCGGGAACATCCAGGTGCTGTGCGACCCGACCGGCTACCCGGTCTGGGTCTCGCCGGTCTCGCCCGGCTCGACCCACGACATCACCGCCGCCCGCGCCTTCGCCCTTCCCGCGCTCTACCCTGCAGCCGCCGCGGGTCTGCCGACGCTGACCGACGCCGGCTACCAAGGTGCCGGTGCCGGGATCTGGCACCCGCTGCGCCTGCCCGCGAACCCGCACGTCGACGACGTCACCCGCAACAAGCTCCTGACCGCCCTACGATCCGTGGCGGAACGCGGCAACGCCCTGCTCAAGAAGACCTGGCCCGCCCTGCAGGCGATCACCCTCGACCCGCACCGCCTCACCGAGATCACCGCCGCCGCCCTCGTCCTGCTCCACCTTCAACGAGGAACCCGACGATCACGCTGGTGAMPAHTLRVVTRWITAHRRRRDIRPWQRAATARAQALLVLRWFKDAARVPLLARDAGISVATAYRYLHEAIDVIADRAPDLHHVLATARAEDWPYVCLDGTLVPTMQLHGPKNPSGAESWYSGKHHTHGGNIQVLCDPTGYPVWVSPVSPGSTHDITAARAFALPALYPAAAAGLPTLTDAGYQGAGAGIWHPLRLPANPHVDDVTRNKLLTALRSVAERGNALLKKTWPALQAITLDPHRLTEITAAALVLLHLQRGTRRSRWNANANANANA
AK018_06717960hypothetical proteinTTGCTAGATGTTGTTGTCGTTGGGTCGGGCCCCAATGGCTTGGCCGCCGCGTCAACGCTAGCCCGCATAGGCCTCTCGGTAGTAGTCCTCGAAGCAATGCCTACTGCAGGTGGTGGAGCGCGAACCGTCGAACTCGATCTGGTTCCTGGCGTCCGGCACGACCTCTGTGCTGCAATTCACCCGATGGCTTGGGCGTCGCCGTTCTTTCGCGCGTTCGACTTAGCTGCGCATGGAGTCGATCTCATAACGCCTCGCGTTTCGTACGCGCAGCCGCTCTCGGGCCGCCCTGCAGCCATTGCATATCGAGACTTAACTGCGACAGCTGACCGGCTAGGTGTCGATGGTCGTGCGTGGCGCGGGCTATTCGGCCAGTTGGCTCTAGAATGGGAAGCAGTCACCGCTCTCGGCACAAGCGACAAGCGCTCACTTCCCAAGATCCACACCGGGTTCGGATCTCTTGATGCTGCAATGCGGTTTTTTCTAGTGATGCTTGAGCAGGGGTCGCGGGCTTGGGGGGCCCGTTTTCGTACAAAAGAGGCTGCTGCTCTTCTTACTGGTGTCGCCGCGCACACGATCGCGCCGATGCCGTCCTTCGCGTCTTCCGGAACTGCGTTGCTTCTTGGCACTCTGGGCCATGCGACGCCTCGTACCGACAACCGTTCGAAACTACCAAGGGACGATGTCTTCGATGGAGGTTGGCCGATCCCACGTGGGGGATCGGGGGCAATCACCAAGGCGCTTACGGATGACTTTGAAGCTCATGGCGGTACGCTCTTAACCGATTTTCCGGTGCGCTGCCGCTCTGATCTCCCTGCGGCGCGCGCATACATTTTTGATACCTCCACGCAGACACTCTTGGATGTTTTTGAGGAAGTTGTTCCTACACTCCAACGACGAAAATTGGCTCAATTCCCGTCGGGCAACGCGGCGGCTAAGAGGTGTTCTCACCAGGACGCGTGAMLDVVVVGSGPNGLAAASTLARIGLSVVVLEAMPTAGGGARTVELDLVPGVRHDLCAAIHPMAWASPFFRAFDLAAHGVDLITPRVSYAQPLSGRPAAIAYRDLTATADRLGVDGRAWRGLFGQLALEWEAVTALGTSDKRSLPKIHTGFGSLDAAMRFFLVMLEQGSRAWGARFRTKEAAALLTGVAAHTIAPMPSFASSGTALLLGTLGHATPRTDNRSKLPRDDVFDGGWPIPRGGSGAITKALTDDFEAHGGTLLTDFPVRCRSDLPAARAYIFDTSTQTLLDVFEEVVPTLQRRKLAQFPSGNAAAKRCSHQDANANANANANA
AK018_06718933melD_14COG1175Melibiose/raffinose/stachyose import permease protein MelDATGGCGACACTCGCCCCTCCTGACGCGTCGGACACCGCGGCACGGACGCCCGGACGGCGCTCGTCCTCGCGCAAGTACGCGCGCCGCATGTACCCGCACTGGTTCCTCCTGCCCGGAGCCGCGGTCTTCGTCGTGCTGTTCATCGTGCCGACGTTCGCGTCGTTCTACTACGCGTTCACCCGCTGGACGCTGTTCGACGTCGAGTTCATCGGCTTCGACAACTTCGTCACGTTCTTCAGCGACCCGCAGCTCAGCAAGGGCTTCACGAACACCCTGATCTTCGGCGCCCTGACCTCGGGCCTGAAGATCGTGCTCGGGCTGCTCCTCGGCGTCCTGCTCACCTCCAACATCTGGGCGCGCGGATACCTCCGGGCCGTGGTCTTCTTCCCCGTGCTCGTGAGCGTCGTCGGCGTGGGGATCACCTTCCAGGCGCTGATGGACCCGTACGACGGCCTCATCAACGAGTTCCTGGCGATCTTCGGCATCGACGGTCCGGGATGGCTGACGAACCCGGACCTCGCCCTCTACTCGATCATCCTGGTCGACGTGTGGCGCGGGGTCGGGCTGGCAGCGCTCATCTACATGGCAGGACTCGTCGCGATCCCCCAGGAGTACTACGAGGCGGCGCGGGTGGACGGTGCCACGGGATGGCACCGGTTCTGGAACGTCACCGTGCCGCTCGTCCGCCCGGCGACCACCACGGTCATCATCCTGTCCCTCATCGGCGGGCTCCGGGAGTTCCAGCTGATCTGGGTCATGACCGGTGGCGGACCCGGGTTCGCCAGCGACGTGCTCGCGTCGGTCATCTACAAGCAGTACGCCTACGGCTTCTTCGGCCTGTCCACCGCGGGCAACGTCGTCCTCTTCGTGGTCGTGAGCGCTGTCATCCTGCCGCTGTTCTGGTGGCTCAACCGAAAGCAGACAGAACTGTGAMATLAPPDASDTAARTPGRRSSSRKYARRMYPHWFLLPGAAVFVVLFIVPTFASFYYAFTRWTLFDVEFIGFDNFVTFFSDPQLSKGFTNTLIFGALTSGLKIVLGLLLGVLLTSNIWARGYLRAVVFFPVLVSVVGVGITFQALMDPYDGLINEFLAIFGIDGPGWLTNPDLALYSIILVDVWRGVGLAALIYMAGLVAIPQEYYEAARVDGATGWHRFWNVTVPLVRPATTTVIILSLIGGLREFQLIWVMTGGGPGFASDVLASVIYKQYAYGFFGLSTAGNVVLFVVVSAVILPLFWWLNRKQTELPGPT0016335_698DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
AK018_06719831melC_6COG0395Melibiose/raffinose/stachyose import permease protein MelCGTGAGCCGCACCGTCTCGCGCCACGTCTACGGCGCCGTCGCCGTGCTGTTGTCGGCGGCCATCTTCCTCGTCCCGTTCGCGTTCATCGTCGTGCAGTCGCTCAAGACGGGTCCGGACTCGGCGGGCCTCGAGTTCTCCTGGCCGGTCGACATCGTCTTCTGGGAGAACGTCGTCGCCGTCTTCCAGGCACGCGACTACATGCTCATCACGGCGTTCATCAACAGCACGATCCTGACGGTGCTGTCGGTGTCGATCATGGTGGTGCTGGCGGCGATGATCGGCTGGGTGCTCGCCCGGCGGCCGTCGCGCTGGAACGGGGTGATCACGTTCTTCGTGCTGGCGGGGCTGATCGTGCCGCCGGCCATCGTCCCCACCGCCCGGCTGATGCAGACCCTCGGCATCTTCAACACGATCAGCGGTCTCGTCCTCATCGAGGTCGCCTTCGGCATGTCGTTCTGCGTCCTGCTCTTCCGGGCGTTCGTCTCGAACGTCCCGCGGGAGCTCGACGAGGCGGCGACGATCGACGGCGCCGGCCCCGTCCGGCTGTTCTTCACGATCGGCTTCCCGCTGATGAAGAGCGTGATCGTCACGGCCATCGTCGTGCAGTCGGTGACGGTGTTCAACGACTTCGCGAACCCGTTGTACTTCGCCCCGGGCGAGGAGAACGCGACCGTCCAGCTGACGCTGTTCAACTTCCAGAGCCAGTTCCAGACGACCTGGAACCTGCTGTTCACCGACATCCTGCTCATCACCATCCCGCCGTTGGTGATGTACATCTTCTTCAACCGTCAGATCGTGGCCGGCATGACCTCCGGCGCCGTCAAGGGGTGAMSRTVSRHVYGAVAVLLSAAIFLVPFAFIVVQSLKTGPDSAGLEFSWPVDIVFWENVVAVFQARDYMLITAFINSTILTVLSVSIMVVLAAMIGWVLARRPSRWNGVITFFVLAGLIVPPAIVPTARLMQTLGIFNTISGLVLIEVAFGMSFCVLLFRAFVSNVPRELDEAATIDGAGPVRLFFTIGFPLMKSVIVTAIVVQSVTVFNDFANPLYFAPGEENATVQLTLFNFQSQFQTTWNLLFTDILLITIPPLVMYIFFNRQIVAGMTSGAVKGPGPT0016340_1861DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
AK018_06720288hypothetical proteinGTGAGGACGCCCTGGGCCACGGGCGACCAGACGATCTGCGAGATGCCGAGCTCGCGCGAGGCGGGGACGACCTCCGCCTCGATGATGCGCCAGAGGGCCGAGTACTGCGGCTGGTTCGAGACGAACGGGATCCGCAGCTCGCGGGCGAGCGCGGCCCCGGCGCGCAGCTGGTCGGCGGTCCACTCGCTCACGCCGATGTACAGCGCCTTGCCCGACCGGACGATGTCGGCGAAGGCCACCATCGTCTCCTCCAGGGGCGTCGCGTTGTCCCACCGGTGCGCCTGGTAGMRTPWATGDQTICEMPSSREAGTTSASMMRQRAEYCGWFETNGIRSSRASAAPARSWSAVHSLTPMYSALPDRTMSAKATIVSSRGVALSHRCAWNANANANANA
AK018_06721249hypothetical proteinATGACGACGCCGGACGCCGCGACGTTCTCGGCGACCTGCTCGGGACGCGAGGCCCCGATGAGCGCCGCGGAGACGTTGTCGTTCTGGAGGACCCAGGCCACGGCGAGCTGCGCCATGCTGAGCGAGAGCTCGTCGGCGACGGGCCGCAGCTTCTCGACACGCTCCAGGACCTCGTCCCGCAGGAAGCGGGTGATCATCTGGGCACCGCCGTTGCCGTCGGTGGCGCGGCTGCCCGACGGCGGCCGGTGAMTTPDAATFSATCSGREAPMSAAETLSFWRTQATASCAMLSESSSATGRSFSTRSRTSSRRKRVIIWAPPLPSVARLPDGGRNANANANANA
AK018_06722765IS3 family transposase ISFsp8ATGCGTCGTCACCTGGACCTGGCCACCCGGGTCCGGCAGGTGTTCACCGCGCAGCGAGGCCGGGCCGGGTGCCGCACCATCGCGGCGATCCTGACCGGCTCGGGAACCCCGGTCGCGGTGGGCACGGTCGCCAAGATCATGCGCGAGCTCGGGCTCAAGGCGATCCAGCCCCGGGCCTGGCGCCGCACCACGATCCGCGGCGAGGCGCCTGCCGACCCCGTACCGGACCTGGTCCAGCGGGACTTCCACGCCGGCGGCGTGCCGGGCGAGTGGCTGGTCGGTGACATCACCTACCTGCGCACTGGGGAAGGCTGGCTGTACCTCGCCACCGTCATCGACCTGGCCACCCGCGAGGTCGTGGGCTGGCAGATGGCCGACCACATGCGCACCACCCTGGTCACCGACGCCCTGCAGATGGCGATCGACCACGACCGTCTCGCGCCAAGCGCCGTGTTCCACTCAGACCACGGTACGCAGTACACGTCCCAGGAGTTCAAGAAGTTCTGCGGCAAGAACGACATCGCGCGATCCCGCGGCCGGACCGGCGTGTGTTGGGACAACGCCGTCGCGGAGAGCTGGTTCGCGACCCTGAAGAACGAGATGTATCACCAGCACGTATTCACAACCCGCAAACGCGCAAGATTCGCCGTCGCCGAATACATCGAGATCTTCTACAATCGGCAACGCCCACATTCCGCACTCGGCTATATCACGCCCGCAGCAGCACGCGCCGAGTCCGCGTCACAGACCGCCGTCGCGGCCTGAMRRHLDLATRVRQVFTAQRGRAGCRTIAAILTGSGTPVAVGTVAKIMRELGLKAIQPRAWRRTTIRGEAPADPVPDLVQRDFHAGGVPGEWLVGDITYLRTGEGWLYLATVIDLATREVVGWQMADHMRTTLVTDALQMAIDHDRLAPSAVFHSDHGTQYTSQEFKKFCGKNDIARSRGRTGVCWDNAVAESWFATLKNEMYHQHVFTTRKRARFAVAEYIEIFYNRQRPHSALGYITPAAARAESASQTAVAAPGPT0030468_2306DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
AK018_06723381hypothetical proteinATGAAAGAGTTGACCGAACGCTCGCGACAGCAGGCCGAACGCATCAAGGTGCTCTGCACTCAGGCGGGGCTCAAGTATCAGGAGCTCGCTCCCAACTTCGTCGGTGCGGGCATCGCAATTGGGTTCAGTGAGACCGACTGGGTGGTCGTGTCCTGTATGGGCGGGAATGAGAACTGCGCGATGGTCACGAGCGGTGTGCTTAATGACATCACCCGCGACCGTACCATGGCGCTCGAAGCGGCCAACTACTTCACGTCCAACAACACGGCGTACCCGGTCTATGGGGCGTGTCAAGGTTCTCGGACGGTCGGTGTGTGTTTTCTGGTCAGGCCGCGACGGCGGTCTGTGACGCGGACTCGGCGCGTGCTGCTGCGGGCGTGAMKELTERSRQQAERIKVLCTQAGLKYQELAPNFVGAGIAIGFSETDWVVVSCMGGNENCAMVTSGVLNDITRDRTMALEAANYFTSNNTAYPVYGACQGSRTVGVCFLVRPRRRSVTRTRRVLLRANANANANANA
AK018_06724969hypothetical proteinATGGCGTGGTGGAGCAAGAAGGACCGCGAGCCCGCAGACCGAATCGCTTCAGCCACGCTCGCTGAGTACGGGCGGTTCGCGTTTCTCGGACCGGACGCTTACGCGGGGCCGCTCGAGGCCGGGACCTCTGGCTGGGACGCGGTCAGCCCACTCGTGCTGGCCATGACCACCCCTGCGGGTCGGGCTGACGTCCTCGCCGAACTCCGTCGACACGCCGCCGACGGGCAGTGGCAGCGCGTCGGCGCGTGGAAAGTCGTCAAGGAATATGACGGCGTCAACTACGGCACCGACGCCCTTGACATCGTCCGCAGCGGGTTCCAGGCCCTCAGCGACATGCGCGTGACAAACGTCGGACACCACATCGCGTACGGCGAAGTGGAGTGGTGGGTCAAGTTCTTCGGCAGCCCGCCACCGAACAACTTCGCAGGCCCGCCCGTTTTCGACTCCAACTTCGGCCCCTCCCGCCAGAACTACCTCGATCAGGTAGCCGCCGCATCGACACGCCCTGTCGCACGGTTGCCCGAACTGCGGGGAGCGGAACCAGGCGACCTACGCGAGGCGGCCTTCAGTGTCTGGAACCTGGGCCTACTCATTTACCGAGGCGCCAACCGAATCAGCGTCGAGATTCGGTCAGAGCCAAGTGCAGTGCACGCGGCCGCCGCAGCTGCGTCCAACGCCGACCATGCGCTGGTGGTTGACCGTCTCGCAACCGAGATCCTTAACGGCGATGCGTTGTTTCGGGACTCACCTTGGCCCGCGCTAGGTGCGGCGCGATTCACCGAGGACTACCTCCGGCCACGCGCAACTGGTACGGACGGCTACGCAAGGCTCCGAGACTTCGGACTGAACGGTCTATTGATGCGTGGCCTCCTGGAAACCGACGTCCCGATAGGCGCGCTCACTGACGCCCAACGATGCCGCGTAGCGCAGCTCACTCACGCAGATGGAGGTACCCATGCAGCGAATTGAMAWWSKKDREPADRIASATLAEYGRFAFLGPDAYAGPLEAGTSGWDAVSPLVLAMTTPAGRADVLAELRRHAADGQWQRVGAWKVVKEYDGVNYGTDALDIVRSGFQALSDMRVTNVGHHIAYGEVEWWVKFFGSPPPNNFAGPPVFDSNFGPSRQNYLDQVAAASTRPVARLPELRGAEPGDLREAAFSVWNLGLLIYRGANRISVEIRSEPSAVHAAAAAASNADHALVVDRLATEILNGDALFRDSPWPALGAARFTEDYLRPRATGTDGYARLRDFGLNGLLMRGLLETDVPIGALTDAQRCRVAQLTHADGGTHAANNANANANANA
AK018_06725282hypothetical proteinGTGCAGCAGTCCCCCGGCCTGGTCGGGATGGTCTGCAAGGGTGAGATCTCAACGTCGGACCTCACCGAGGTCCTCGACTCCAGGCGCCCGGATCTGCAGTCGCTGTACGACGCGCTCGCCGCAGCGAAGGGGCCCAAGGCCCCACGCAAGATCGTCAACGCCAGCTATGACATCGCCAACATCTGGGCCGGCACCATTGACTCCACTGGCCGCACGGTCGTCTTCCGCAACGCGCGGCCACTCATGCAGCAGGTGCTCGGGAGCCTCGACCGCCCGCTCTGAMQQSPGLVGMVCKGEISTSDLTEVLDSRRPDLQSLYDALAAAKGPKAPRKIVNASYDIANIWAGTIDSTGRTVVFRNARPLMQQVLGSLDRPLNANANANANA
AK018_067261335msmE_2COG1653Multiple sugar-binding proteinATGTCTGCGCACACACATCGAGCAGGTCCGGTCGCGCTGGCCGGGCTGGCGGCCACGGGTCTCGTGCTGGCCGGCTGCGCCGGAGACGGGGACTCGAGCGACGCCGAGGCGTCGGCCGAGGGCCCGGTGACGCTGGAGTGGTTCCAGGGATCGGGCGTCGAGACCAACATCGCGACCGCCGAGGCGCTCGCTGACACGTTCAACGCATCGCAGTCGGACATCGTCGTCGAGGTCGACGCGTCGGGGCCCAGCGACTCCGCCGAGCTGGACAACCTCATGAAGACCCGCCTGGCGACCGGCGAGATGCCCGACATGTTCTGGTACAACAGCGGGTCCTTGCTGCAGGCGCTGAACCCCGACCAGACGATGCTCGACATCTCCGACGAGGGCTTCGTCGGCGACCTGGACGACTCGTGGGTCTCGGCCGTGTCGACGGACGAGGGCATCTTCGGCGTCCCGGTCCAGACGGCCGGCGGCGGCGGGATGTTCTACAGCATCCCGATCTACGAGGAGCTGGGGCTGGAGGTGCCGACCACCTGGGACGAGTTCCTGGAGAACTCCGACGCCATCCGGGACGCCGGCTACACGGCCGTCCAGCAGACGCACGGCGACGCCTGGACCGCCCAGATCATCGTCCTCGCCGACTACTACAACGTGTGGGCGAACGACAACGACTGGGCGTCGAAGTACACCGCCAACGAGGTGAACTTCGCCGACGACCCGGTCGCGGTCAAGGGCTTCACGAAGCTCCAGGACGTCTACGAGCGCGACTACCTGAACGAGGACTACGCGTCGGCCCTGCTGAACGACGGGCTCGAGGCCGTCGCGACCGGCGAGGCCGGGCACTACCCGATGCTCGGGTTCGCGCAGGCGACGATCGCCACCAACTGGCCCGACCAGGCCGAGGACGTCGGCTTCTTCGGCGTCCCGGGCGAGGCCGACACGGAGCCCGGCACGACGATCTGGATGCCGCCCGCGCTCTACGCGCCGGCCGACACCGAGCACCCGGACGCCGTCAAGGAGTTCATGGCCTTCGTCGCCAGCCCGGCGGGTTGCGACGCGGTCACCGAGGCGCTCGGCGCGACCGGTCAGTACCTGGTCGACGGGTGCACCGTGCCGGACGAGGCCCCGCGGATCGTGGCGGACTTCGGTCCGTACTTCGAGTCCGGCAACGTCGCGCCCGCGCTGGAGTTCCTCTCGCCCGTCAAGGGTCCGAACCTCATGCAGATCTCCGTCGAGGTGGGCTCGGGAGTCCGCGACGGCCAGAGCGGCGCCGAGCTGTACGACGCGGACGCCGCCAAGCAGGCGCAGCAGCTCGGTCTGCCGGGCTGGTAAMSAHTHRAGPVALAGLAATGLVLAGCAGDGDSSDAEASAEGPVTLEWFQGSGVETNIATAEALADTFNASQSDIVVEVDASGPSDSAELDNLMKTRLATGEMPDMFWYNSGSLLQALNPDQTMLDISDEGFVGDLDDSWVSAVSTDEGIFGVPVQTAGGGGMFYSIPIYEELGLEVPTTWDEFLENSDAIRDAGYTAVQQTHGDAWTAQIIVLADYYNVWANDNDWASKYTANEVNFADDPVAVKGFTKLQDVYERDYLNEDYASALLNDGLEAVATGEAGHYPMLGFAQATIATNWPDQAEDVGFFGVPGEADTEPGTTIWMPPALYAPADTEHPDAVKEFMAFVASPAGCDAVTEALGATGQYLVDGCTVPDEAPRIVADFGPYFESGNVAPALEFLSPVKGPNLMQISVEVGSGVRDGQSGAELYDADAAKQAQQLGLPGWPGPT0016330_1403DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
AK018_06727879hypothetical proteinGTGGAGGACGTCCAGGAGTTCGGTCCCGACGACGGCCCGCACTTCAGCGCGGGGACGATCGGGCTGGCCGCCGTCGTGCGGCAGCTGACCGACAACGGTCACGGCGAGGTCCTGTTCGACGCGCTGCAGACGGACACCGAGCCCGGCTACGGCTACTTCATGGAGTCGACGACGGCGAACCCGGACGGGTTCACCACGATCGGCGAGCGGTGGACGCGCGGCAGCTCGAAGAACCACATGATCCTCGCCCAGATCGTGGAGTGGTTCCAGACGGGTCTGGTCGGCATCGACCGGGCGGACGGCTCGGTCGGGTACGACGAGCTCGTCTTCAAGCCGCAGCCCGCCGGCGACCTGACCTGGGTCGAGGGCAGCTTCGACACCCCGCGCGGGGTGGCGAGCAGCCGGTGGGACAAGACCGACGAGCACTTCACCCTCACGATCGAGGTGCCGGCGAACACGACGGCCGAGGTCTGGGTGCCGACCGGCGGCGACCAGGCGGTGCTCACGCCCCCGCGGGCGACCTTCGAGCGCGTCGAGGGCGAGTTCGCGGTGTACTCCGTGGGCGCCGGCGAGTTCACCTTCGTCGCCGCGGAGGAGGGCTACGACGACATCGCCGCGGCGGTGGAGTCCTTCGCCGGTGACGGGGCCCTGTCGGAGCAGCTCGCCGACAACCTGAGCAAGTTCATCGACCGGGCCCGCCAGGCCTCGGCCGAGGGCAAGGCCCAGACCGCGGACAGCGCGCTGCGCGCGTTCCGCAACCAGATCGAGAACGCGAACTCCAAGCGCGCCTCCGACGAGGCGAAGGCGGAGCTCGCGGAGATGGCCGCGGACCTGCAGGCCCTGCTGCGCCAGGAGGGAGGCATCCCGGTCGACCGGTGAMEDVQEFGPDDGPHFSAGTIGLAAVVRQLTDNGHGEVLFDALQTDTEPGYGYFMESTTANPDGFTTIGERWTRGSSKNHMILAQIVEWFQTGLVGIDRADGSVGYDELVFKPQPAGDLTWVEGSFDTPRGVASSRWDKTDEHFTLTIEVPANTTAEVWVPTGGDQAVLTPPRATFERVEGEFAVYSVGAGEFTFVAAEEGYDDIAAAVESFAGDGALSEQLADNLSKFIDRARQASAEGKAQTADSALRAFRNQIENANSKRASDEAKAELAEMAADLQALLRQEGGIPVDRNANANANANA
AK018_06728168hypothetical proteinGTGCTCCTGGTCGAGCAGAACCTCGAGGTCATCGAACGGCTCGCCACCACCGTGGTCGTCATCGACGCCGGCCGCGTGGTCCACACCGGCGACGCCGCCGAGCTGCTCGACGACCCCGACCGCATCCAGCGCCTGCTGGGCGTGCACACCTCGGAGAACGCCGCATGAMLLVEQNLEVIERLATTVVVIDAGRVVHTGDAAELLDDPDRIQRLLGVHTSENAAPGPT0020785_1378DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
AK018_06729873livH_4COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGAGCACGATCGCCCTGCTGCTGATCACCGGGCTCGGCCTCGGTGCGCTGTACTTCCTCGTCGCCTCCGGGCTGTCGCTCATCTACGGGCTGATGGGCGTGCTGAACTTCGCCCACGGATCGTTCCTCACCCTCGGCGCCTTCGCCGGGTGGGAGGTGGCCCGCCGGCTCGGCGCCGACAGCTGGGGAGTCTTCGGCCTCGCGCTCGTCGTCGGCGCCGGCGTCGGGGCCGCGTTCGCCGCCCTCACCGAGCTGCTGCTGGTCCGGCGCCTCTACGAACGCCACATCGAGCAGGTCCTGGTGACCGTCGGCCTCGCCCTGGCGACCGTCGCCCTGTTCGAGGGGGCCTGGGGCTCGGACCCCGAGTTCATCGAGGGCCCCGCCTGGCTGCGGGGCACCACCGACGTCGCCGGCGCCCCCGTCCCCAACGACCGGTTCCTCGCGATCGGCGCGGCCGTCCTCGTCCTCGTCGGCATCGTGCTGTTCCTGCGCTACACGCGCTTCGGCCTGATCATCCGGGCCGGCGTGGAGAACCGCGCCATGGTCACGGCGCTGGGCATCGACGTCCGCAAGGCGTTCACGCTGGTCTTCGCCGTCGGCGGCGCGGCCGCGGGCCTCGGCGGGGTGCTCGCCTCGCAGTACTTCGGCTACGTGTCGCCGCACCTGGGCGCCCAGCTGCTCATCTTCGCCTTCATCGTCACCGTCATCGGCGGGCTCGGGTCGCTGACCGGCGCCGCGGTCGCCGCCGTCCTCGTCGCGGTCCTGCAGCAGTTCGCCAACTACTACTGGGGCTACGGCGACCTCGTGGTCGTCCTGCTCCTGGCGCTCGTGCTGCTCGTCCGTCCCTCCGGCCTCCTCGGGAGGAGAGCATGAMSTIALLLITGLGLGALYFLVASGLSLIYGLMGVLNFAHGSFLTLGAFAGWEVARRLGADSWGVFGLALVVGAGVGAAFAALTELLLVRRLYERHIEQVLVTVGLALATVALFEGAWGSDPEFIEGPAWLRGTTDVAGAPVPNDRFLAIGAAVLVLVGIVLFLRYTRFGLIIRAGVENRAMVTALGIDVRKAFTLVFAVGGAAAGLGGVLASQYFGYVSPHLGAQLLIFAFIVTVIGGLGSLTGAAVAAVLVAVLQQFANYYWGYGDLVVVLLLALVLLVRPSGLLGRRAPGPT0020770_7402DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
AK018_067301164hypothetical proteinATGACCACCACGCCGACCACCCAGCAGTCCTCGCCCCGGTCCGACGAGACCGCCCCGCTGCCCGCCGACGACGGTGGCACGGTGCCGGCACGACGCCGCTGGCTCCCGCCGGCCATCGGGCTCGGGCTCGTCGTCCTGCTCGCCTGCCTGCCGCTGCTCGCCATCTCCCTGCCCGGCGTGCTGCCCGGCCCCACCTACACCCCGGGCACCCTGCAGGTGCTCGCCCTGGCGCTCCTCGTCGGGGCCCTGGCCCTGAGCTACCACCTGCTGTTCGGCGTCGCCGGGCTGCTCAGCTTCGGGCACGCGCTGTACTTCGCCGTCGGGGTCTACGGGCTGGCGATCGTGCTGGACCGCACGGACCTGCCGCTGCTGCCGGCCGCCTGCGTCGTGCTCGTCGGCGGCATCGCCGTCGCGCACCTCGTGGGGGCGATCTCGCTGCGGGTCACCGGGATCTCGTTCGCGATGGTCACCCTCGCGTTCGCCCAGGCGGGCAACGTGCTGGTCCGTCGCAACCCGGCCGGTGCCACCGGCGGCGAGGAGGGCCTCGCCCTGGACACCACGCACGTCCCCGACGCCCTCGTGGGCGTGGCGAACACGCGCAACCTCTACTGGCTCGCCCTGGCCGTCCTGGTCGTCGTGTACGCGATCGTGCTGTGGGTCGAGCGCTCCCGCGCCGGCCACGTCGCCGCGGCGACCCGCGAGAACGAGATGCGCGTGCGCGTCGTCGGCGGACGCCCCTACCTGGTCAAGCTGCTCGTCTTCGTCGTCGCGGCCACCCTGGCCACCGGGGTCGGCATGGCCTACCTGCTGCTGCAGTCCGGGGCCGTCCCGCGGGTGACGTCGGCCGACTTCACGCTCACCCTGCTCGTGATGGTCGTGCTCGGCGGGGTCGGGTCGCGGTGGGGCGCCGTCGTCGGCGGCGTGCTGTACACGCTGCTCGACCAGCGACTCGGTGCGCTGGCCTCCTCCGAGGCGATCGCCGGGCTGCCGTCCGTCCTGCGCGTGCCCCTGAGCGAACCGCTGTTCATCCTGGGAACGTTGTTCGTCCTCGTGGTGCTGTTCCTGCCCGGCGGGATCGCCGGCGCGGCGCAGCGGCTTGCCCACCGGTCCGGCCGGGACCGGCAGCGCGAGGCCGCACGGGAGACGATCGAGGAGTCGGCATGAMTTTPTTQQSSPRSDETAPLPADDGGTVPARRRWLPPAIGLGLVVLLACLPLLAISLPGVLPGPTYTPGTLQVLALALLVGALALSYHLLFGVAGLLSFGHALYFAVGVYGLAIVLDRTDLPLLPAACVVLVGGIAVAHLVGAISLRVTGISFAMVTLAFAQAGNVLVRRNPAGATGGEEGLALDTTHVPDALVGVANTRNLYWLALAVLVVVYAIVLWVERSRAGHVAAATRENEMRVRVVGGRPYLVKLLVFVVAATLATGVGMAYLLLQSGAVPRVTSADFTLTLLVMVVLGGVGSRWGAVVGGVLYTLLDQRLGALASSEAIAGLPSVLRVPLSEPLFILGTLFVLVVLFLPGGIAGAAQRLAHRSGRDRQREAARETIEESAPGPT0020775_3311DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
AK018_06731420hypothetical proteinGTGGTCACCGGCCTCGGCGACGCGGCCACGTTCGACGCCTACGGCGACGCCGCGGCCAAGGTCGACTTCCTCAACCACTACTTCCCCGGTGCCCCGGACAACGAGGTCAACGACGCGATGGTCGCCGCGGTCACCGAGGCCGGCGGGACGCCCGACCTGTTCACCCCCGACGGGTTCGTCGCGGCACAGATGATCGTGCACGCGATCGCCGAGGGCGGCGACGACGTCGACGCCATGGTCGGCGCGCTGGAGGGCTGGACGTTCGACGGGCCCAAGGGCTCGACCACGATCCGCGAGACCGACCACGCGGTCCTGCAGCCGATGTACCAGGTCGGCCTCGTGGAGTCCGACGGCTCCTGGACGCCCGAGCTCGTCGACGAGGTGCCGTCCGACGCGGTCGCCCCGCCGGAGGCCGACTGAMVTGLGDAATFDAYGDAAAKVDFLNHYFPGAPDNEVNDAMVAAVTEAGGTPDLFTPDGFVAAQMIVHAIAEGGDDVDAMVGALEGWTFDGPKGSTTIRETDHAVLQPMYQVGLVESDGSWTPELVDEVPSDAVAPPEADPGPT0020765_4960DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
AK018_06732780lptB_5COG1137Lipopolysaccharide export system ATP-binding protein LptBATGCCGCACCACCAGCCCGGCACGGACCGCACCGTGCCCGCCCTCGCCACCCACGGCCTCGGCCTGCAGATCGGTGGCGCGCAGATCCTGCACGACGTGACCCTCGAGGTCGCGCCGGGCGAGATGATCGGCGTCATCGGCCCCAACGGTGCCGGCAAGACGACGCTGTTCAACCTCGTCTCGGGGGTCCTGCGCCCCACGACGGGCACGGTCCGCATCGACGGCCGCGACGTCACCGGCGACCCGGTCGCCCGACGGGCCCGTGCCGGGCTGGGCCGCACCTTCCAGACCTCCAGCGTCTTCCCGCGTCTGGACGTGCTCGAGAACGTCCGGCTCGCCGCCCAGATGCACCTGGGTCGCAGCCTGTCGGTGCTGGCGTTCCCGCACGGGCGCGACGCCGCCACCCGGCGCGCCGTCGAGCACCTCGCCGAGGTGGGCCTGGAGCACCGCCTCGGCGTCGCCGCCGGCGACCTCTCCCACGGCGACAAGCGCAAGCTGGAGATCGCCGTCCTGCTGGCCACCGACCCGAGCGTCATCCTGCTCGACGAGCCCATGGCCGGGGTCTCCTCCTCGGACGTGCCCGGGCTCAGCGAGGTCATCCGCCGGCTGCACCGCAGCGGCCGCACGGTGCTCATGGTCGAGCACCACATGGACGTCGTCCTCGGGCTCGTGGACCGGGTCGCCGTCATGCACCACGGCGAGCTGCTCGCCTACGACACCCCGGAGGCCGTGATGTCCGACCCCACCGTCCAGAGCGCCTACCTGGGAGACGTCGCGTGAMPHHQPGTDRTVPALATHGLGLQIGGAQILHDVTLEVAPGEMIGVIGPNGAGKTTLFNLVSGVLRPTTGTVRIDGRDVTGDPVARRARAGLGRTFQTSSVFPRLDVLENVRLAAQMHLGRSLSVLAFPHGRDAATRRAVEHLAEVGLEHRLGVAAGDLSHGDKRKLEIAVLLATDPSVILLDEPMAGVSSSDVPGLSEVIRRLHRSGRTVLMVEHHMDVVLGLVDRVAVMHHGELLAYDTPEAVMSDPTVQSAYLGDVAPGPT0020780_5079DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
AK018_06733420hypothetical proteinGTGGTCACCGGCCTCGGCGACGCGGCCACGTTCGACGCCTACGGCGACGCCGCGGCCAAGGTCGACTTCCTCAACCACTACTTCCCCGGTGCCCCGGACAACGAGGTCAACGACGCCATGGTCGCGGCGGTCGAGGAGGCCGGCGGGACGCCCGACCTGTTCACCCCCGACGGGTTCGTCGCGGCGCAGATGATCGTGCACGCGATCGCCGAGGGCGGCGACGACGTCGACGCCATGGTCGGCGCGCTGGAGGGCTGGACGTTCGACGGCCCCAAGGGCTCGACGACGATCCGCGAGTCCGACCACGCGGTGCTGCAGCCGATGTACCAGGTCGGCCTGGTCGAGACCGACGGCTCCTGGATGCCCGAGCTCGTCGACGAGGTGCCCGCCGACGCGGTCGCGCCGCCGGAGGCCGACTGAMVTGLGDAATFDAYGDAAAKVDFLNHYFPGAPDNEVNDAMVAAVEEAGGTPDLFTPDGFVAAQMIVHAIAEGGDDVDAMVGALEGWTFDGPKGSTTIRESDHAVLQPMYQVGLVETDGSWMPELVDEVPADAVAPPEADPGPT0020765_4960DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
AK018_06734774lptB_6COG1137Lipopolysaccharide export system ATP-binding protein LptBATGCCGCACCACCAGCCCGGCACGGACGTGCCCGCCCTCGCCACCCACGGCCTCGGCCTGCGCATCGGTGGCGCGCAGATCCTGCACGACGTGACCCTCGAGGTCGCGCCGGGCGAGATGATCGGCGTCATCGGCCCCAACGGTGCCGGCAAGACGACGCTGTTCAACCTCGTCTCGGGAGTCCTGCGCCCCACGACGGGCACGGTCCGCATCGACGGTCGCGACGTCACCGGCGACCCGGTCGCCCGGCGGGCCCGTGCCGGGCTGGGCCGCACCTTCCAGACCTCCAGCGTCTTCCCCCGTCTCGACGTGCTCGAGAACGTCCGGCTCGCCGCCCAGATGCATCTCGGGCGCAGCCTGTCGGTGCTGGCGTTCCCGCACCGGCGCGACGCCGCCACCCGGCGTGCCGTCGAGCATCTCGCCGAGGTGGGCCTGGAGCACCGCCTCGGCGTCGCGGCCGGCGATCTCTCCCACGGGGACAAGCGCAAGCTCGAGATCGCCGTCCTGCTGGCCACCGACCCGAGCGTCATCCTGCTCGACGAGCCCATGGCCGGGGTGTCCTCCTCGGACGTGCCCGGGCTGAGCGAGGTCATCCGCCGCCTGCACCGCAGCGGCCGCACCGTGCTCATGGTCGAGCACCACATGGACGTCGTCCTCGGGCTCGTGGACCGGGTCGCCGTCATGCACCACGGCGAGTTGCTCGCCTACGACACCCCGGAGGCCGTGATGTCCGACCCCACCGTCCAGAGCGCCTACCTGGGAGACGTCGCGTGAMPHHQPGTDVPALATHGLGLRIGGAQILHDVTLEVAPGEMIGVIGPNGAGKTTLFNLVSGVLRPTTGTVRIDGRDVTGDPVARRARAGLGRTFQTSSVFPRLDVLENVRLAAQMHLGRSLSVLAFPHRRDAATRRAVEHLAEVGLEHRLGVAAGDLSHGDKRKLEIAVLLATDPSVILLDEPMAGVSSSDVPGLSEVIRRLHRSGRTVLMVEHHMDVVLGLVDRVAVMHHGELLAYDTPEAVMSDPTVQSAYLGDVAPGPT0020780_5079DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
AK018_06735684hypothetical proteinGTGCCGGAGTACACGCCGTCGGCGCGCTCGGTGAGGCGGGCGTTCTCGCAGTCCGGCGTCCAGTCCCCGGCGCAGCCCATCTCGCTGTTGTGGCTGCCGGGCACGGTCACCAGGTCGATGTCCGTCTCGGGCTCCTCCTCTCCGGGCACCCCAGAGATGTCGACGCCCACGGAGGCGAACGTCGAGGCCGCGGCGCGGTCGCCGTCGGCGTCGACGGTCACCGCGCGGTACTCGACCAGGGTGCCCTCGGGCAGGGTGTCTGTGGTGTGGAAGACCCGCGGGGTGGTGTCCTCGGCGGTGCCGAGCGGGGTCCAGTCGGTGGTGCCGACCTCGCGCCACGCGAAGGAGGTCTCCGCCCAGGCGTCGTCGATCGCGGCGCGCACCGGAGCGGTTCCCGTCACGGCGGCACCGGCGGACGGCACCTCGACGGCGACGTCCCCGTCGGTCTCGGCGCCCACGGTGCGGTCGGCGACCAGCACGACGGCGGAGGTAGCCGGGACGGTCACCGTCACCTCGCCGGCGGCGTCGGCGGTGACCGGGGTGCCGTCGTCGTCCCCGGACAGCACGCTGTACGTGGCGCCCGGGGTGAGCGTGGTGAAGGTGGCCGTCCGCTCCTGCGAGGCGTTGTTCAGCGCGACGAGGTGCTCGATCTTCTCGTCGCGGTCGACGCGGCTGAAGGCGTAGMPEYTPSARSVRRAFSQSGVQSPAQPISLLWLPGTVTRSMSVSGSSSPGTPEMSTPTEANVEAAARSPSASTVTARYSTRVPSGRVSVVWKTRGVVSSAVPSGVQSVVPTSRHAKEVSAQASSIAARTGAVPVTAAPADGTSTATSPSVSAPTVRSATSTTAEVAGTVTVTSPAASAVTGVPSSSPDSTLYVAPGVSVVKVAVRSCEALFSATRCSIFSSRSTRLKANANANANANA
AK018_06736597rmpB3-hexulose-6-phosphate isomeraseATGCCCGACACCGCAACCATGCTCGACACCCGTTCGACGGCGGCCGCCGCCGTCGACCTCGTCCTCGGCGAGGTGGAGTCGCTCCTCACCCGCATCCGGCAGGAGCAGGCCGACCGGCTCCAGGAGCTGGCCGAGGCGGTCTCCGCGGCGGATCGCGTCTTCGTGCACGGTGCCGGCCGCTCCGGCATCGCCGTGCGCGGCCTGGCCATGCGCCTCATGCACCTCGGCAAGCCCACCTTCGTCGTGGGCGAGACGACGACGCCGGCGATCGGTCGTGGCGACCTGCTGCTGTCCGTGAGCGGCTCGGGCAGCACACCCGGTGTCCTGCGGGCCGCGGAGTCGGCCTGCGGGGCCGGCGCCCGGGTGGCCGCCATCACCAACAACGCCTCGTCCCCGCTCGGCCGCCTCGCCACGGTCACCCTGACCGTCGGCGCCGCGTCCAAGACCGACCACTCCGGGACGGCCTCGGCCCAGTACGCCGGGAGCCTCTTCGAGCAGGGCGTGGCCCTGGTCGGGGACGCGCTGTTCCACGACCTGTGGCAGCGCTCCGGCCTCGCCGCGGCCGACATCTGGCCGCGGCACGCCAACCTCGAGTGAMPDTATMLDTRSTAAAAVDLVLGEVESLLTRIRQEQADRLQELAEAVSAADRVFVHGAGRSGIAVRGLAMRLMHLGKPTFVVGETTTPAIGRGDLLLSVSGSGSTPGVLRAAESACGAGARVAAITNNASSPLGRLATVTLTVGAASKTDHSGTASAQYAGSLFEQGVALVGDALFHDLWQRSGLAAADIWPRHANLEPGPT0013290_249DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-FORMALDEHYDE_FIXATION,PGPT0013290-hxlB|yckF-K08094NANA
AK018_06737888IS3 family transposase ISBli17ATGAGCTACCCGCTCGTCCGAGAGCTCGCCGAGGCGGGGATCCCCGTCGCGGTGACGTGCCGGGTCCTCAACCTTGCCCGCCAGCCGTACCACCGGTGGCTCGCCGCACCGGTCAGCGATCGCGAACTCGAGCAGGCCTATCTCGCCAACGCCCTGTTCGACGCCCACCACGACGACCCCGAGTACGGGTACCGGCTCCTGGCCGACGAGGCCCGCGAAGCGGGCCATGTCGCGTGCGACCGCACGATGTGGCGGGTCTGCCGCGACGGGCGCTGGTGGAGCGTGTTCGGCAAGAAGCGTTCGAAGAACACCAAGAGGCCCGGCCCACCCGCGCACGACGACCTCGTCCGGCGCGACTTCACCGCCGAGGGGCCGAACCAGCTGTGGCTGACCGACATCACCGAGCATCCCACCAGCGCGGGCAAGGTCTACCTCTGCGCGATCAAGGACGTGTACTCCAACCGGATCGTGGGCTACTCCATCAGCGACCGCATGAAGTCCTCCCTGGCCGTCGCCGCACTCGAGAACGCCGTGGCCAGACGGGCCGCCGAGGGCCGCACGGTGGCCGACTGCATCGTGCACTCCGACCGAGGCAGCCAGTTTCGCAGCCGACGATTCCTGGCCGCGCTGCGCCGCCATGACCTGCGCGGATCCATGGGTCAGGTCGCCTCCGCGGGAGACAACGCCGCCATGGAGTCCTTCTTCGCGCTGCTGCAGAAGAACGTCCTGAACCGGCGCCGCTGGACCACCCGCGAGGACCTGCGCATCGCGATCATCACCTGGATCGAACGCACCTACCACCGACGCCGCCGCCAGCAGCGGCTCGGACGATTGACCCCCATCGAGTACGAAGCCATCATGACCACTCAGGTCGCACTCGCCGCCTGAMSYPLVRELAEAGIPVAVTCRVLNLARQPYHRWLAAPVSDRELEQAYLANALFDAHHDDPEYGYRLLADEAREAGHVACDRTMWRVCRDGRWWSVFGKKRSKNTKRPGPPAHDDLVRRDFTAEGPNQLWLTDITEHPTSAGKVYLCAIKDVYSNRIVGYSISDRMKSSLAVAALENAVARRAAEGRTVADCIVHSDRGSQFRSRRFLAALRRHDLRGSMGQVASAGDNAAMESFFALLQKNVLNRRRWTTREDLRIAIITWIERTYHRRRRQQRLGRLTPIEYEAIMTTQVALAANANANANANA
AK018_06738288IS3 family transposase ISMsm7GTGCCCAGACCCCACCCGAAGGAGTTCCGCGACGACGTCGTGGCGATCGCCCGCCAGGGCGAGACTCCGATCAAGCAGATCGCGAAGGACTTCGGCATCTCGGAGTCGTGCCTGCGCAACTGGCTTCACCAGGCCGACGTCGAGGACGGCGCCAAGCCCGGGGTGACGAAGTCGGAGTCGGCCGAGCTGCGTGAGGCCAGGAAGCGTGTGCGGCTGTTGGAGCAGGAGAACGAGGTGCTGCGCCGCGCGGCGGCGTACTTCGCCCAGGCGCACCTGCCGGGAAAATGAMPRPHPKEFRDDVVAIARQGETPIKQIAKDFGISESCLRNWLHQADVEDGAKPGVTKSESAELREARKRVRLLEQENEVLRRAAAYFAQAHLPGKNANANANANA
AK018_067391227hypothetical proteinATGACTACTTCCGTCACCGACGTCATCGGGGCGCCCACCATCGTCGCGGGCGTCGATACCCACTCCGAGACGCATCACGTGGCCGTCTTGTCGGCCACGGGAGCCAAGCTCGGCGACCTGGCCGTCCCTGCGACGGCAGCCGGCTACGACGAGCTGCTCCGGTTCGTGCGTTCGTTCGGTCAGGTCGGCCTCATCGGCGTCGAGGGCACCGGCTCCTACGGCGCCGGTCTCGCCCGCTTCCTGAGCGGTGAAGGCGTACCGATTCGGGAAGTCATCCGTCCTCGCCGCGCCCAGCGCCGCAGGGGCAAGTCTGATCCCATCGACGCCTACGCCGCTGCCGCCCAGGCGCTGGCCGAACCCGAATCGCTTCCGCTGGCCAAGGCCGGCGACAGTGCCGTCGAACAGATCCGCGTGCTGCTGATCGTGCGGCGCAGCGCCGTCAAGGCACGCGTCGCCGTGATCCGACAGATCAGATCGATGCTGGTCACCGCCCCCGAACCGCAGCGCGTGCGCTGGTCACGGTACCGGGAGCCCGAACTCATCGAGACGATCGCGGCCACCCGACCCGGTTCGGCCACCGACTCGGTGACCGCGGCGACCGGATCCGCCCTGCGAAGACTCGCACGCCGCCACCAGTACCTCACCGCCGAGATCGACGAGCTCGAGCACGACCTGCGCGTGCTGATCCAGCACACGGCGCCCGCCATGATCGCCACCAAGGGCTACGGCGTGATCACCACCGCCACGCTCCTGGTCACCGCAGGGGCCAACCCTGACCGGTTGCGGTCGGAGGCCTCGTTCTCCGCTCTGTGCGGGGCATCACCGATCCCGGCATCGTCCGGCAAGACGCACCGGCACCGACTCAACCGCGGAGGCGACCGGCAGGCGAACTGGGCGCTGCACCAGATCGCACTCGTGCGACTCTCCGCCGACCCGCGCACGAAGTCCTACGCCGCGCGCCTGCGCGCCCGCGGAAAGTCGACCAAGGACGTCCTGCGCTGCCTCAAGCGCGCCATCGCTCGCGAAGCGTTCCGACTGCTCGTCCGACCCGACCCCGTCCCCGCGACCGGTGACCTGCGCCAGCTACGCCACGAGCAGGGCAAGACCCTGGCCCAGGTCGCCGCGATCCTGGCCGTGGAGCCCGCGCGAATCAGCGAGCTCGAACGCGGACGCCGCCCCAACGCAGAGCTGGCGACCGCCTACCGCGCCCTCCTCAAGGCCGCTTGAMTTSVTDVIGAPTIVAGVDTHSETHHVAVLSATGAKLGDLAVPATAAGYDELLRFVRSFGQVGLIGVEGTGSYGAGLARFLSGEGVPIREVIRPRRAQRRRGKSDPIDAYAAAAQALAEPESLPLAKAGDSAVEQIRVLLIVRRSAVKARVAVIRQIRSMLVTAPEPQRVRWSRYREPELIETIAATRPGSATDSVTAATGSALRRLARRHQYLTAEIDELEHDLRVLIQHTAPAMIATKGYGVITTATLLVTAGANPDRLRSEASFSALCGASPIPASSGKTHRHRLNRGGDRQANWALHQIALVRLSADPRTKSYAARLRARGKSTKDVLRCLKRAIAREAFRLLVRPDPVPATGDLRQLRHEQGKTLAQVAAILAVEPARISELERGRRPNAELATAYRALLKAAPGPT0030635_888DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
AK018_067411359ISL3 family transposase ISPfr4ATGATGGGGGTTCCTACACCAACCCATCCAGAAGACCTCGACGTGAGCGACGCTACCTCCCACAGCCCTGACCTGACCACGTTCTGCCGCCTCGACGAGCTCGGCCTCGTCGTGACCGGGCAACGCCTGGCGCCCGACCGTGCGGTGCTGGAGTGCCGCGTCCTGACGCGCGAGGACGACGCGTTCTGCCGCGGATGCGGCGCCGAGGGCGTCGTGCGTGACACCGTCGCACGGGTGCTCGCGCACGAGCCCTTCGGATGGCGACCGACAACGCTGCTGATCAGGGTGCGCCGCTACCGCTGCGGAGCCTGCCGACGGGTGTGGCGCCAGGACACCACGGGCGCCGCCGAGCCACGGGCGAAACTCTCACGGGCGGCAGTGCGCTGGGCCTTGGTCGCCCTGGTGACGCAGCATCTGACGGTCGCCAGGATCGCCGAAGCTCTTGACGTGTCGTGGGACACCGCGAACGACGCCGTCCTGGCCGAAGGCCGCCGGCTGCTGATCGACGACGAGACACGGTTCAACGGCGTGACCACGGTGGGCGTGGACGAGCACGTGTGGCGGCACACCCGCCGCGGCGACAAGTACGTCACCGTGGTCATCGACCTGACCCCGACCCGCGACGGCACCGGACCCGCCCGCCTGCTCGACATGGTCGAAGGGCGATCCAAGAGCGCGTTCAAGACCTGGCTCGCCGCCCGCCCAAAGACCTGGCGCGATCAGGTGGAGGTGGTCGCGATGGACGGGTTCACCGGCTTCAAGACCGCGGCAGCCGAGGAACTGCCCGACGCGACCGCAGTCATGGACCCCTTCCACGTCGTGCGCCTCGCCGGTGACGCCCTGGACCGCTGCCGCCGCCGAGTCCAACAAGACCTGCACGGCCACCGCGGCCGCGCCAAGGATCCGCTCTACCGCGCCCGGCGGACCCTGCACACCGGCGCCGACCTGCTCACCGACAAGCAGAAGACCAGGATCGAGGCGCTGTTCGCCCGCGACGAGCACGCCGAGGTCGAGGCGACCTGGGGCATCTACCAACGCATGATCACCGCCTACCGCCACCCCGACCGCGCCACCGGCCGCGAGCTCATGGCCGCCGTCATCGCCTCCGTCAGCCGCGGCGTCCCGGCCGCGCTGAGCGAACTCGTCACGCTCGGGCGGACCCTCACCAAGCGCGCCGACGACATGCTCGCGTTCTTCGACCTGCCCGGCACCAGCAACGGCCCCACCGAGGCCATCAACGGCCGCCTCGAACACCTACGCGGCTCCGCCCTCGGCTTCCGCAACCTGACCCACTACATCGCCCGATCACTCCTCGAAGCCGGAGGCTTCAGACCACGACTACACCTTCGGATCGGATGAMMGVPTPTHPEDLDVSDATSHSPDLTTFCRLDELGLVVTGQRLAPDRAVLECRVLTREDDAFCRGCGAEGVVRDTVARVLAHEPFGWRPTTLLIRVRRYRCGACRRVWRQDTTGAAEPRAKLSRAAVRWALVALVTQHLTVARIAEALDVSWDTANDAVLAEGRRLLIDDETRFNGVTTVGVDEHVWRHTRRGDKYVTVVIDLTPTRDGTGPARLLDMVEGRSKSAFKTWLAARPKTWRDQVEVVAMDGFTGFKTAAAEELPDATAVMDPFHVVRLAGDALDRCRRRVQQDLHGHRGRAKDPLYRARRTLHTGADLLTDKQKTRIEALFARDEHAEVEATWGIYQRMITAYRHPDRATGRELMAAVIASVSRGVPAALSELVTLGRTLTKRADDMLAFFDLPGTSNGPTEAINGRLEHLRGSALGFRNLTHYIARSLLEAGGFRPRLHLRIGPGPT0030630_416DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030630-tnpA-K07485NANA
AK018_06743306hypothetical proteinGTGGGACGTCGTGGGTATCCGCCGGAGTTCCGGCGCAAGGTGTTGGACCTGCTCGAGTCGGGCCGCAAGGTCGCGGACGTGGCACGCGATCTGGAGATCAGTGAGCAGACGATCTATGTCTGGCGGCGCCAGGACCGCATCGACAAGGGCCTCGAGCCGGGCCTGACCAGTACGGAGAAGGCCGAGTTGACCGCGGCCAGGAAGCGGATCGCGGAGTTGGAGACCGAGCTGGCGATCCACCGGCGTGCGAGCGAGCTGCTGGGCAAGGTGGTGCCCCCAAAAGGCGGTTCGAGGCAATCGCGGTGAMGRRGYPPEFRRKVLDLLESGRKVADVARDLEISEQTIYVWRRQDRIDKGLEPGLTSTEKAELTAARKRIAELETELAIHRRASELLGKVVPPKGGSRQSRNANANANANA
AK018_06744843IS3 family transposase ISAar24ATGGCCGGCGAGGGGCTGCCGGTCCAGCCCGCGGCGCGGGTGCTGCGCTGCTCGGAGTCCGGCTACTACGCCTCGCGGGTCCGGGCACCTTCGGCCCGCCACGTGCGGCACGCCCTGCTGACCGAGACCATCCGCACCATCCACACCGCGTCGCGGGGCGTCTACGGCGCCCGGCGGGTGCATGCCGAGCTGACGAAGGGGCACGGCGTCCAGGTGTGGCACGGCACCGTGGAGATGCTCATGGCGCGTGCTGGCCTCAAGGGCGTCGGTGGGCGACCGAAGTGGCGTCGCGCCCGCCCGGACCTGATCTCGAGCGACCTCGTCGATCGGCAGTTCGCCCGCGATGGCGTGAACGAGCTGTGGGTCACCGACATCACCGAGCACCCGACCAGGGAGGGCAAGGTGTATTGCACCGTCGTGCTCGACGTGTGCTCCCGGCGGGTAGTCGGGTGGTCGATCGATTCCTCGCCCACCGCGGCCCTGGTAACCAACGCACTCGGCATGGCCATCGAGAACCGCCGGCCACCGGCCGGGACGATCATCCACTCCGATCACGGAGTCCAGTTCGGATCCTGGGCCTTCACCACCCGGGCCAAGGAGTCCGGCCTGGTGCCCTCGATGGGATCAATCGGCGACTGCTACGACAACGCCGTCATCGAGAGCTTCTGGTCCCGCATGCAGGTCGAACTCCTGGACCGACGTCGATGGCGCACCCGCCTGGAACTGGCGAACGCGATCTTCGAGTACCTCGAGATCTTCCACAACCGCCAACGTCGGCACTCCGCCCTCGGCTGGCTGACACCCGTAGAGTTCGAGAACACAGCAACGATCACCGTGGCCTAGMAGEGLPVQPAARVLRCSESGYYASRVRAPSARHVRHALLTETIRTIHTASRGVYGARRVHAELTKGHGVQVWHGTVEMLMARAGLKGVGGRPKWRRARPDLISSDLVDRQFARDGVNELWVTDITEHPTREGKVYCTVVLDVCSRRVVGWSIDSSPTAALVTNALGMAIENRRPPAGTIIHSDHGVQFGSWAFTTRAKESGLVPSMGSIGDCYDNAVIESFWSRMQVELLDRRRWRTRLELANAIFEYLEIFHNRQRRHSALGWLTPVEFENTATITVANANANANANA
AK018_06746288hypothetical proteinATGAGCTCGCCGATCGCCGGGTCGCCCGCGGAGATGCCGGCCGTGGCCGCGATCTGCTCCTTGGTCTCGACCTCGGTGGCGGCGTTGAGCAGCTGCTCGGTCACCGCGGCGGTGGCCTTCTCGATGCCGCGCTTGACGGCGATCGGGTTGGCACCGGCGGCGACGACGCGCAGACCCTCGCGCACGAGCGCCTGGGCCAGCACGGTGGCGGTGGTGGTGCCGTCACCCGCGACGTCGTCGGTCTTCTTGGCGACCTCCTTGACGAGCTCGGCGCCGATCTTCTCGTAGMSSPIAGSPAEMPAVAAICSLVSTSVAALSSCSVTAAVAFSMPRLTAIGLAPAATTRRPSRTSAWASTVAVVVPSPATSSVFLATSLTSSAPIFSNANANANANA
AK018_06747270hypothetical proteinATGTCCTGCAGCATGGCCTTGCGGCGGTCGCCGAAGCCCGGGGCCTTGACGGCGACGGACTTGAAGGTGCCGCGGATCTTGTTCAGCACCAGGGTCGCCAGGGCCTCGCCCTCGACGTCCTCGGCGATGATCAGCAGCGACCGGTTGGTCTTCATGACCTGGTCGAGCAGCGGCAGCAGGTCCTTGACGTTCGAGATCTTCGACTCGACGATCAGGACGTACGGGTCCTCGAGGACGGCCTCCTGGCGCTCCGGGTCCGTCTCGAAGTAGMSCSMALRRSPKPGALTATDLKVPRILFSTRVARASPSTSSAMISSDRLVFMTWSSSGSRSLTFEIFDSTIRTYGSSRTASWRSGSVSKNANANANANA
AK018_06748666hypothetical proteinGTGCGCTACTACCGCGCCACGGTGCACTACTGCCTGCTCGACGACCTGGACTCGACCGTCCTGCGCGAAGCCTGCACCGACGGCACCGAAACCATCGCCCAAGGCATCAACTGCCCCGACGACACCTTCGCCCTGGCCGGCCTGTTCTCCGTCACCGTCGCACCCAACGGATCCACCTCCCCACCCACCCTGGTCTCCGAAGGCACCTGCGTCACCACCGCCGACCTCGCCGCCGAAGCCGAACACGCGTTTCGCACCATGCCCGTCCAACCCGCCCAGATCCACCTCGAGATCGACCGCGACTGGGCCATCGTCAACTTCGGCATCCACCCCCGCACCACCGAGACCGACCAGACCATGAACACCACCCTGCTCGGCGTCCCCGTCCAGATCCGCGCCCTCCCGGTCGAGTACACCTGGGACGCCGGCGACCAGACCGACCCCGTGGTCACCGACCACCCCGGCGGCCCCTACGACACCGCGAACGCCATCCACCTGCCCTACCCCGCACCCGGCACCTACACCGCCACCCTCACCACCACCTGGCACGGCCAGTTCCGCATCACCGGCACCCCCACCTGGACCGACATCGACGGCCAACTCACCACCACCGACACCACCAACCCCATCGAAGTCCACGACGCCCACGTCCGCCTCACCGGATAAMRYYRATVHYCLLDDLDSTVLREACTDGTETIAQGINCPDDTFALAGLFSVTVAPNGSTSPPTLVSEGTCVTTADLAAEAEHAFRTMPVQPAQIHLEIDRDWAIVNFGIHPRTTETDQTMNTTLLGVPVQIRALPVEYTWDAGDQTDPVVTDHPGGPYDTANAIHLPYPAPGTYTATLTTTWHGQFRITGTPTWTDIDGQLTTTDTTNPIEVHDAHVRLTGNANANANANA
AK018_06749543hypothetical proteinATGCCGGAGTACCCGTCGGACCCCCCGCAGTTCAGGCCCAGCACCAGCTCGGAGACGTCGCACTCGGTGCGCCGGCGGGCGTTCACCGCGGGCAGCATCGCGCGGATCTCCTCGACGCCGGCGCGCACCGTGGCGCGGATGCCACCGGTCTCCTGGATCGTCATCGAGCGCACGACCGTGTCCTCGGGGATGCCGGCGAGCAACCCCGTGCTCTCGGCGGGGTCGGGGGCGCCGATCCCCGGCATCCCGAGGTCCGCGACGGTCCCGGAGCGCGCCGCCAGCGCGGCCCCGGGGACCATCTCGCAGCCCAGGCCCAGGACGAGCACGGCCGCGACGTTGGGGTGGGCGGCGTACCCGCGCAGGGTGCGCAGCAGCACCTGGCCGCCCTCGGAGTCCGGGACGAGCCCGCACCCCGAGGTGTGGGTCAGGTCGATCACGCCGTCGACGTTCTCGAACGCGTCGAGCTCGGACCGGGGGAACCGGTCGGCGATCATCTTCGCCGTCGACGCCGAGCAGTTGACGCTCGTGAGGATCGCGACGTAGMPEYPSDPPQFRPSTSSETSHSVRRRAFTAGSIARISSTPARTVARMPPVSWIVIERTTVSSGMPASNPVLSAGSGAPIPGIPRSATVPERAASAAPGTISQPRPRTSTAATLGWAAYPRRVRSSTWPPSESGTSPHPEVWVRSITPSTFSNASSSDRGNRSAIIFAVDAEQLTLVRIATNANANANANA
AK018_06750420rplPCOG019750S ribosomal protein L16ATGCTGATCCCGCGCAGGCTCAAGCACCGCAAGCAGCACCACCCCAAGCGCTCCGGCGTGGCCAAGGGTGGCACCACGATCTCGTTCGGCGACTACGGCATCCAGGCCCTCGAGCCCGCCTACGTCACGAACCGCCAGATCGAGGCTGCTCGTATCGCGATGACCCGTCACATCAAGCGTGGCGGCAAGGTCTGGATCAACATCTACCCGGACCGCCCGCTGACCAAGAAGCCGGCTGAGACCCGCATGGGTTCCGGCAAGGGCTCGCCCGAGTGGTGGGTCGCCAACGTCAAGCCCGGCCGCATCGTCTTCGAGCTGGCCGGCGTCCCCGAGGACTTGGCACGCGAGGCCCTGCGCCGCGCGATGCACAAGCTTCCGATGAAGTGCCGTTTCGTGGTGCGCGAAGGTGGTGCGAACTGAMLIPRRLKHRKQHHPKRSGVAKGGTTISFGDYGIQALEPAYVTNRQIEAARIAMTRHIKRGGKVWINIYPDRPLTKKPAETRMGSGKGSPEWWVANVKPGRIVFELAGVPEDLAREALRRAMHKLPMKCRFVVREGGANNANANANANA
AK018_06751435hypothetical proteinGTGCCGTACGTGGCCGAGACGTTCAGCGTCACCGACCAGTACCTCGAGGAGAACCCCGACCTGCTCAAGGCGTTCCTCACCGCCGAGATCAAGGGGTGGACGGACGTCTTCACCGAGTCCTCCGAGGACACGGTCGCGCTGGTCGAGCAGTACTACAACGAGGCCGCCGCGTCGTCGGAGGACGGCCTGGAGGCCGCGTTCGGCGCGCTGGCACCCGAGAAGACGCAGATGGGTCTCGAGGCCGAGAAGGAGCTCATCTCCACCGAGGAGACCGAGGCGAACGGCCTGTTCACCATCTCGGACGAGCTCAAGCAGGAGACCGTCGACTCCCTCGCCGCCGCCGGCTGGGACGTGAGCGTCGACGACCTCTTCGACACCACGATCATCGACGAGATCTACGCCGAGCAGCCCGAGCTCGTCGACTACCTGCCGTAGMPYVAETFSVTDQYLEENPDLLKAFLTAEIKGWTDVFTESSEDTVALVEQYYNEAAASSEDGLEAAFGALAPEKTQMGLEAEKELISTEETEANGLFTISDELKQETVDSLAAAGWDVSVDDLFDTTIIDEIYAEQPELVDYLPNANANANANA
AK018_06752342Alpha-L-rhamnosidaseATGCTGCCCGACGGGTCGATCAACCCGGGCGAGATGACGAGCTTCAACCACTACGCGCTCGGTGCCGTGGCCGACTGGATCTACCAGGTCGTCGGCGGCCTCCGACCCGCCGCCCCCGGCTACGACCGTGTCCGGGTCGAGCCCGTGCCGGGCCCCGGGATCGAGTGGGCCGAGACCGCGTACGAGACCCGGCACGGTCGGGTCTCGGTCGCGTGGCGGCGCGACGACGACGGCTTCACCCTCGAGGTGGCGCTGCCCGACGGGCTCCCCGCCGACATCGTCCTCCCGGACGGCCGCGTCGAGGAGGTCGCCGGCGGCACCCATCACCTGACCGCGGCCTGAMLPDGSINPGEMTSFNHYALGAVADWIYQVVGGLRPAAPGYDRVRVEPVPGPGIEWAETAYETRHGRVSVAWRRDDDGFTLEVALPDGLPADIVLPDGRVEEVAGGTHHLTAAPGPT0019195_1336DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-RHAMNOSIDASE,PGPT0019195-ramA-K05989NANA
AK018_06753336hypothetical proteinGTGCACGGCGGCCCCGAACGTACGATCCGCCGCATCCTCGGCGTACAGGTCGTCCAGCACGCCCGGGATCTGCACGCCCGTGGCGGCGGTGAGGGTGTCGCCGTCGCTGCGGGTCACCAGGAGCTGGCCGGTGAGCAGGTCCTCGACCGTCGCATGGTCCAGGGCCTCCCCGCCCGACGTCGGCACGAGCGTCGTGTGGTCGGCGAGCGCCGGGAAGTCCTCGGCCACGCCGTCGGGCAGGCCGCCGCCGGGCTCGAGGGGGTAGGACGCCGCGCCGTCGGGCAGGTCGCCGCCGTCCGGTCCGGTCACCGCGTCGGCGTCGCCGCCCGCCGGTGAMHGGPERTIRRILGVQVVQHARDLHARGGGEGVAVAAGHQELAGEQVLDRRMVQGLPARRRHERRVVGERREVLGHAVGQAAAGLEGVGRRAVGQVAAVRSGHRVGVAARRNANANANANA
AK018_06754231hypothetical proteinATGTCCGGGAACCCCGAAGCCGTCATCTCCTCGACGTACTCCGCCAGTCCCACGTCGGTCTCGCCGCCGATCTCGGCGGATCCGCGCAGCAGCGCCGACATGCTGACCGTGGGGAACTCGATGTCACGTTCGAAGAAGCTCAGCGGGCGCATGCGCACGTCGAGGAATCGCCCGGCGCCCGAGTGGACGGTCACGCCCCGGGGGGCCGTCGCACTGCCCGTCAGCAGGTAGMSGNPEAVISSTYSASPTSVSPPISADPRSSADMLTVGNSMSRSKKLSGRMRTSRNRPAPEWTVTPRGAVALPVSRNANANANANA
AK018_06755243sodA_2COG0605Superoxide dismutase [Mn]GTGCTCGGCTGGGACTCCATTGGCCAGAAGCTGCTGATCTTCCAGCTCTTCGACCAGCAGGCCAACGTCCCCGTCGGCATCACCCCGCTGCTCATGCTCGACATGTGGGAGCACGCCTTCTACCTCGACTACCTCAACGTCAAGGCCGAGTACGTCAAGGCGTTCTGGAACATCGCCAACTGGGCCGACGTCGCCGCCCGCCTCGAGCGCGCCCGCACCCAGACCGCAGGCCTCATCGCCTGAMLGWDSIGQKLLIFQLFDQQANVPVGITPLLMLDMWEHAFYLDYLNVKAEYVKAFWNIANWADVAARLERARTQTAGLIAPGPT0004190_2628DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004190-chrC|sodB|sodA-K04564NANA
AK018_06756186hypothetical proteinGTGATCTGGGAAGCCTTCAAGCCCGACACCGAACCACGCCGCACGGTCCGCGCCGAGGAACTCAGCGTCAAGGAAGCGGTGCTCGACGCGCTGCGCAAGGCGCGCGCCGCACGCGGCGGGCAGAACGCCGCGCCGCAAGCAAGCGGCGAGGGCGATTTCGTCGAGGAGCAGGGCGGCATCTACTGAMIWEAFKPDTEPRRTVRAEELSVKEAVLDALRKARAARGGQNAAPQASGEGDFVEEQGGIYPGPT0023875_1669DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023875-mrcA-K05366NANA